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5 vulnerabilities found for Jetson TX2 by NVIDIA
VAR-201805-0963
Vulnerability from variot - Updated: 2026-03-09 22:00Systems with microprocessors utilizing speculative execution and speculative execution of memory reads before the addresses of all prior memory writes are known may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis, aka Speculative Store Bypass (SSB), Variant 4. CPU hardware utilizing speculative execution may be vulnerable to cache timing side-channel analysis. Two vulnerabilities are identified, known as "Variant 3a" and "Variant 4". CPUhardware is firmware that runs in the central processor for managing and controlling the CPU. Multiple CPUHardware information disclosure vulnerabilities. The vulnerability is caused by a race condition in the CPU cache processing. Local attackers can exploit vulnerabilities to obtain sensitive information through side channel analysis. AMD, ARM, and Intel CPUs are all CPU (central processing unit) products from different manufacturers. AMD, ARM, and Intel CPUs have security vulnerabilities. Relevant releases/architectures:
RHEL 7-based RHEV-H ELS - noarch RHEV Hypervisor for RHEL-6 ELS - noarch
-
The Red Hat Enterprise Virtualization Hypervisor is a dedicated Kernel-based Virtual Machine (KVM) hypervisor. 7.4) - ppc64, ppc64le, s390x, x86_64
-
(CVE-2018-3639)
Note: This is the libvirt side of the CVE-2018-3639 mitigation that includes support for guests running on hosts with AMD CPUs.
Bug Fix(es):
-
The "virsh capabilities" command previously displayed an inaccurate number of 4 KiB memory pages on systems with very large amounts of memory. This update optimizes the memory diagnostic mechanism to ensure memory page numbers are displayed correctly on such systems. (BZ#1582416)
-
After starting a large amount of guest virtual machines in a single session, the libvirtd service in some cases became unable to start any other guests until it was restarted. This update ensures that libvirtd properly frees memory used for D-Bus replies, which prevents the described problem from occurring. (BZ#1588390)
For the stable distribution (stretch), these problems have been fixed in version 3.20180703.2~deb9u1.
We recommend that you upgrade your intel-microcode packages. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
===================================================================== Red Hat Security Advisory
Synopsis: Important: libvirt security update Advisory ID: RHSA-2018:1669-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:1669 Issue date: 2018-05-21 CVE Names: CVE-2018-3639 =====================================================================
- Summary:
An update for libvirt 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) - x86_64 Red Hat Enterprise Linux Workstation (v. 6) - i386, x86_64 Red Hat Enterprise Linux Workstation Optional (v. 6) - x86_64
- Description:
The libvirt library contains a C API for managing and interacting with the virtualization capabilities of Linux and other operating systems. In addition, libvirt provides tools for remote management of virtualized systems.
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 is the libvirt side of the CVE-2018-3639 mitigation.
- 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, libvirtd will be restarted automatically.
- Bugs fixed (https://bugzilla.redhat.com/):
1566890 - CVE-2018-3639 hw: cpu: speculative store bypass
- Package List:
Red Hat Enterprise Linux Desktop (v. 6):
Source: libvirt-0.10.2-62.el6_9.2.src.rpm
i386: libvirt-0.10.2-62.el6_9.2.i686.rpm libvirt-client-0.10.2-62.el6_9.2.i686.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-python-0.10.2-62.el6_9.2.i686.rpm
x86_64: libvirt-0.10.2-62.el6_9.2.x86_64.rpm libvirt-client-0.10.2-62.el6_9.2.i686.rpm libvirt-client-0.10.2-62.el6_9.2.x86_64.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm libvirt-python-0.10.2-62.el6_9.2.x86_64.rpm
Red Hat Enterprise Linux Desktop Optional (v. 6):
i386: libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-devel-0.10.2-62.el6_9.2.i686.rpm
x86_64: libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm libvirt-devel-0.10.2-62.el6_9.2.i686.rpm libvirt-devel-0.10.2-62.el6_9.2.x86_64.rpm libvirt-lock-sanlock-0.10.2-62.el6_9.2.x86_64.rpm
Red Hat Enterprise Linux HPC Node (v. 6):
Source: libvirt-0.10.2-62.el6_9.2.src.rpm
x86_64: libvirt-0.10.2-62.el6_9.2.x86_64.rpm libvirt-client-0.10.2-62.el6_9.2.i686.rpm libvirt-client-0.10.2-62.el6_9.2.x86_64.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm libvirt-python-0.10.2-62.el6_9.2.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional (v. 6):
x86_64: libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm libvirt-devel-0.10.2-62.el6_9.2.i686.rpm libvirt-devel-0.10.2-62.el6_9.2.x86_64.rpm libvirt-lock-sanlock-0.10.2-62.el6_9.2.x86_64.rpm
Red Hat Enterprise Linux Server (v. 6):
Source: libvirt-0.10.2-62.el6_9.2.src.rpm
i386: libvirt-0.10.2-62.el6_9.2.i686.rpm libvirt-client-0.10.2-62.el6_9.2.i686.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-devel-0.10.2-62.el6_9.2.i686.rpm libvirt-python-0.10.2-62.el6_9.2.i686.rpm
ppc64: libvirt-0.10.2-62.el6_9.2.ppc64.rpm libvirt-client-0.10.2-62.el6_9.2.ppc.rpm libvirt-client-0.10.2-62.el6_9.2.ppc64.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.ppc.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.ppc64.rpm libvirt-devel-0.10.2-62.el6_9.2.ppc.rpm libvirt-devel-0.10.2-62.el6_9.2.ppc64.rpm libvirt-python-0.10.2-62.el6_9.2.ppc64.rpm
s390x: libvirt-0.10.2-62.el6_9.2.s390x.rpm libvirt-client-0.10.2-62.el6_9.2.s390.rpm libvirt-client-0.10.2-62.el6_9.2.s390x.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.s390.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.s390x.rpm libvirt-devel-0.10.2-62.el6_9.2.s390.rpm libvirt-devel-0.10.2-62.el6_9.2.s390x.rpm libvirt-python-0.10.2-62.el6_9.2.s390x.rpm
x86_64: libvirt-0.10.2-62.el6_9.2.x86_64.rpm libvirt-client-0.10.2-62.el6_9.2.i686.rpm libvirt-client-0.10.2-62.el6_9.2.x86_64.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm libvirt-devel-0.10.2-62.el6_9.2.i686.rpm libvirt-devel-0.10.2-62.el6_9.2.x86_64.rpm libvirt-python-0.10.2-62.el6_9.2.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 6):
x86_64: libvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm libvirt-lock-sanlock-0.10.2-62.el6_9.2.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 6):
Source: libvirt-0.10.2-62.el6_9.2.src.rpm
i386: libvirt-0.10.2-62.el6_9.2.i686.rpm libvirt-client-0.10.2-62.el6_9.2.i686.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-devel-0.10.2-62.el6_9.2.i686.rpm libvirt-python-0.10.2-62.el6_9.2.i686.rpm
x86_64: libvirt-0.10.2-62.el6_9.2.x86_64.rpm libvirt-client-0.10.2-62.el6_9.2.i686.rpm libvirt-client-0.10.2-62.el6_9.2.x86_64.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm libvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm libvirt-devel-0.10.2-62.el6_9.2.i686.rpm libvirt-devel-0.10.2-62.el6_9.2.x86_64.rpm libvirt-python-0.10.2-62.el6_9.2.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 6):
x86_64: libvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm libvirt-lock-sanlock-0.10.2-62.el6_9.2.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-2018-3639 https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/security/vulnerabilities/ssbd
- 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 . ========================================================================== Ubuntu Security Notice USN-3655-1 May 22, 2018
linux vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 14.04 LTS
Summary:
Several security issues were addressed in the Linux kernel. (CVE-2018-3639)
Jan H. Schonherr discovered that the Xen subsystem did not properly handle block IO merges correctly in some situations. An attacker in a guest vm could use this to cause a denial of service (host crash) or possibly gain administrative privileges in the host. (CVE-2017-12134)
It was discovered that the Bluetooth HIP Protocol implementation in the Linux kernel did not properly validate HID connection setup information. An attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-13220)
It was discovered that a buffer overread vulnerability existed in the keyring subsystem of the Linux kernel. (CVE-2017-13305)
It was discovered that the netlink subsystem in the Linux kernel did not properly restrict observations of netlink messages to the appropriate net namespace. (CVE-2017-17449)
It was discovered that a race condition existed in the i8042 serial device driver implementation in the Linux kernel. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-18079)
It was discovered that a race condition existed in the Device Mapper component of the Linux kernel. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-18203)
It was discovered that a race condition existed in the OCFS2 file system implementation in the Linux kernel. A local attacker could use this to cause a denial of service (kernel deadlock). (CVE-2017-18204)
It was discovered that an infinite loop could occur in the madvise(2) implementation in the Linux kernel in certain circumstances. A local attacker could use this to cause a denial of service (system hang). (CVE-2017-18208)
Kefeng Wang discovered that a race condition existed in the memory locking implementation in the Linux kernel. A local attacker could use this to cause a denial of service. (CVE-2017-18221)
Silvio Cesare discovered a buffer overwrite existed in the NCPFS implementation in the Linux kernel. A remote attacker controlling a malicious NCPFS server could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-8822)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 14.04 LTS: linux-image-3.13.0-149-generic 3.13.0-149.199 linux-image-3.13.0-149-generic-lpae 3.13.0-149.199 linux-image-3.13.0-149-lowlatency 3.13.0-149.199 linux-image-3.13.0-149-powerpc-e500 3.13.0-149.199 linux-image-3.13.0-149-powerpc-e500mc 3.13.0-149.199 linux-image-3.13.0-149-powerpc-smp 3.13.0-149.199 linux-image-3.13.0-149-powerpc64-emb 3.13.0-149.199 linux-image-3.13.0-149-powerpc64-smp 3.13.0-149.199 linux-image-generic 3.13.0.149.159 linux-image-generic-lpae 3.13.0.149.159 linux-image-lowlatency 3.13.0.149.159 linux-image-powerpc-e500 3.13.0.149.159 linux-image-powerpc-e500mc 3.13.0.149.159 linux-image-powerpc-smp 3.13.0.149.159 linux-image-powerpc64-emb 3.13.0.149.159 linux-image-powerpc64-smp 3.13.0.149.159
Please note that fully mitigating CVE-2018-3639 (Spectre Variant 4) may require corresponding processor microcode/firmware updates or, in virtual environments, hypervisor updates. On i386 and amd64 architectures, the SSBD feature is required to enable the kernel mitigations. BIOS vendors will be making updates available for Intel processors that implement SSBD and Ubuntu is working with Intel to provide future microcode updates. Ubuntu users with a processor from a different vendor should contact the vendor to identify necessary firmware updates. Ubuntu provided corresponding QEMU updates for users of self-hosted virtual environments in USN 3651-1. Ubuntu users in cloud environments should contact the cloud provider to confirm that the hypervisor has been updated to expose the new CPU features to virtual machines. 7) - noarch, x86_64
- Description:
The kernel-rt packages provide the Real Time Linux Kernel, which enables fine-tuning for systems with extremely high determinism requirements. Once all virtual machines have shut down, start them again for this update to take effect. Relevant releases/architectures:
RHV-M 4.3 - noarch
- It includes the configuration of the Red Hat Support plugin, copying downstream-only artifacts to the ISO domain, and links to the knowledgebase and other support material. There are three primary variants of the issue which differ in the way the speculative execution can be exploited. Variant CVE-2017-5754 relies on the fact that, on impacted microprocessors, during speculative execution of instruction permission faults, exception generation triggered by a faulting access is suppressed until the retirement of the whole instruction block. Note: CVE-2017-5754 affects Intel x86-64 microprocessors. AMD x86-64 microprocessors are not affected by this issue. (CVE-2017-5754)
Bug Fix(es):
-
[CVE-2017-5754] Variant3: POWER {qemu-kvm-rhev} Add machine type variants (BZ#1559948)
-
add POWER 9 to the 4.2 cluster level (BZ#1574494)
-
Description:
The kernel packages contain the Linux kernel, the core of any Linux operating system. (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 is required. Please refer to References section for further information about this issue, CPU microcode requirements and the potential performance impact.
In this update mitigations for x86-64 architecture are provided.
Software Description: - intel-microcode: Processor microcode for Intel CPUs
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). This vulnerability is also known as Rogue System Register Read (RSRE). -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
APPLE-SA-2018-10-30-9 Additional information for APPLE-SA-2018-9-24-1 macOS Mojave 10.14
macOS Mojave 10.14 addresses the following:
Bluetooth Available for: iMac (21.5-inch, Late 2012), iMac (27-inch, Late 2012) , iMac (21.5-inch, Late 2013), iMac (21.5-inch, Mid 2014), iMac (Retina 5K, 27-inch, Late 2014), iMac (21.5-inch, Late 2015), Mac mini (Mid 2011), Mac mini Server (Mid 2011), Mac mini (Late 2012) , Mac mini Server (Late 2012), Mac mini (Late 2014), Mac Pro (Late 2013), MacBook Air (11-inch, Mid 2011), MacBook Air (13-inch, Mid 2011), MacBook Air (11-inch, Mid 2012), MacBook Air (13-inch, Mid 2012), MacBook Air (11-inch, Mid 2013), MacBook Air (13-inch, Mid 2013), MacBook Air (11-inch, Early 2015), MacBook Air (13-inch, Early 2015), MacBook Pro (13-inch, Mid 2012), MacBook Pro (15-inch, Mid 2012), MacBook Pro (Retina, 13-inch, Early 2013), MacBook Pro (Retina, 15-inch, Early 2013), MacBook Pro (Retina, 13-inch, Late 2013), and MacBook Pro (Retina, 15-inch, Late 2013) Impact: An attacker in a privileged network position may be able to intercept Bluetooth traffic Description: An input validation issue existed in Bluetooth. This issue was addressed with improved input validation. CVE-2018-5383: Lior Neumann and Eli Biham
The updates below are available for these Mac models: MacBook (Early 2015 and later), MacBook Air (Mid 2012 and later), MacBook Pro (Mid 2012 and later), Mac mini (Late 2012 and later), iMac (Late 2012 and later), iMac Pro (all models), Mac Pro (Late 2013, Mid 2010, and Mid 2012 models with recommended Metal-capable graphics processor, including MSI Gaming Radeon RX 560 and Sapphire Radeon PULSE RX 580)
afpserver Impact: A remote attacker may be able to attack AFP servers through HTTP clients Description: An input validation issue was addressed with improved input validation. CVE-2018-4295: Jianjun Chen (@whucjj) from Tsinghua University and UC Berkeley Entry added October 30, 2018
App Store Impact: A malicious application may be able to determine the Apple ID of the owner of the computer Description: A permissions issue existed in the handling of the Apple ID. This issue was addressed with improved access controls. CVE-2018-4324: Sergii Kryvoblotskyi of MacPaw Inc.
AppleGraphicsControl Impact: An application may be able to read restricted memory Description: A validation issue was addressed with improved input sanitization. CVE-2018-4417: Lee of the Information Security Lab Yonsei University working with Trend Micro's Zero Day Initiative Entry added October 30, 2018
Application Firewall Impact: A sandboxed process may be able to circumvent sandbox restrictions Description: A configuration issue was addressed with additional restrictions. CVE-2018-4353: Abhinav Bansal of LinkedIn Inc.
APR Impact: Multiple buffer overflow issues existed in Perl Description: Multiple issues in Perl were addressed with improved memory handling. CVE-2017-12613: Craig Young of Tripwire VERT CVE-2017-12618: Craig Young of Tripwire VERT Entry added October 30, 2018
ATS Impact: A malicious application may be able to elevate privileges Description: A memory corruption issue was addressed with improved input validation. CVE-2018-4411: lilang wu moony Li of Trend Micro working with Trend Micro's Zero Day Initiative Entry added October 30, 2018
ATS Impact: An application may be able to read restricted memory Description: An out-of-bounds read was addressed with improved bounds checking. CVE-2018-4308: Mohamed Ghannam (@_simo36) Entry added October 30, 2018
Auto Unlock Impact: A malicious application may be able to access local users AppleIDs Description: A validation issue existed in the entitlement verification. This issue was addressed with improved validation of the process entitlement. CVE-2018-4321: Min (Spark) Zheng, Xiaolong Bai of Alibaba Inc.
CFNetwork Impact: An application may be able to execute arbitrary code with system privileges Description: A memory corruption issue was addressed with improved memory handling. CVE-2018-4126: Bruno Keith (@bkth_) working with Trend Micro's Zero Day Initiative Entry added October 30, 2018
CoreFoundation Impact: A malicious application may be able to elevate privileges Description: A memory corruption issue was addressed with improved input validation. CVE-2018-4412: The UK's National Cyber Security Centre (NCSC) Entry added October 30, 2018
CoreFoundation Impact: An application may be able to gain elevated privileges Description: A memory corruption issue was addressed with improved input validation. CVE-2018-4414: The UK's National Cyber Security Centre (NCSC) Entry added October 30, 2018
CoreText Impact: Processing a maliciously crafted text file may lead to arbitrary code execution Description: A use after free issue was addressed with improved memory management. CVE-2018-4347: an anonymous researcher Entry added October 30, 2018
Crash Reporter Impact: An application may be able to read restricted memory Description: A validation issue was addressed with improved input sanitization. CVE-2018-4333: Brandon Azad
CUPS Impact: In certain configurations, a remote attacker may be able to replace the message content from the print server with arbitrary content Description: An injection issue was addressed with improved validation. CVE-2018-4153: Michael Hanselmann of hansmi.ch Entry added October 30, 2018
CUPS Impact: An attacker in a privileged position may be able to perform a denial of service attack Description: A denial of service issue was addressed with improved validation. CVE-2018-4406: Michael Hanselmann of hansmi.ch Entry added October 30, 2018
Dictionary Impact: Parsing a maliciously crafted dictionary file may lead to disclosure of user information Description: A validation issue existed which allowed local file access. This was addressed with input sanitization. CVE-2018-4346: Wojciech ReguAa (@_r3ggi) of SecuRing Entry added October 30, 2018
Grand Central Dispatch Impact: An application may be able to execute arbitrary code with system privileges Description: A memory corruption issue was addressed with improved memory handling. CVE-2018-4426: Brandon Azad Entry added October 30, 2018
Heimdal Impact: An application may be able to execute arbitrary code with system privileges Description: A memory corruption issue was addressed with improved memory handling. CVE-2018-3646: Baris Kasikci, Daniel Genkin, Ofir Weisse, and Thomas F. Wenisch of University of Michigan, Mark Silberstein and Marina Minkin of Technion, Raoul Strackx, Jo Van Bulck, and Frank Piessens of KU Leuven, Rodrigo Branco, Henrique Kawakami, Ke Sun, and Kekai Hu of Intel Corporation, Yuval Yarom of The University of Adelaide Entry added October 30, 2018
iBooks Impact: Parsing a maliciously crafted iBooks file may lead to disclosure of user information Description: A configuration issue was addressed with additional restrictions. CVE-2018-4355: evi1m0 of bilibili security team Entry added October 30, 2018
Intel Graphics Driver Impact: An application may be able to read restricted memory Description: A validation issue was addressed with improved input sanitization. CVE-2018-4396: Yu Wang of Didi Research America CVE-2018-4418: Yu Wang of Didi Research America Entry added October 30, 2018
Intel Graphics Driver Impact: An application may be able to read restricted memory Description: A memory initialization issue was addressed with improved memory handling. CVE-2018-4351: Appology Team @ Theori working with Trend Micro's Zero Day Initiative Entry added October 30, 2018
Intel Graphics Driver Impact: An application may be able to execute arbitrary code with system privileges Description: A memory corruption issue was addressed with improved input validation. CVE-2018-4350: Yu Wang of Didi Research America Entry added October 30, 2018
Intel Graphics Driver Impact: An application may be able to execute arbitrary code with system privileges Description: A memory corruption issue was addressed with improved memory handling. CVE-2018-4334: Ian Beer of Google Project Zero Entry added October 30, 2018
IOHIDFamily Impact: A malicious application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed with improved input validation CVE-2018-4408: Ian Beer of Google Project Zero Entry added October 30, 2018
IOKit Impact: A malicious application may be able to break out of its sandbox Description: A memory corruption issue was addressed with improved memory handling. CVE-2018-4341: Ian Beer of Google Project Zero CVE-2018-4354: Ian Beer of Google Project Zero Entry added October 30, 2018
IOKit Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed with improved state management. CVE-2018-4383: Apple Entry added October 30, 2018
IOUserEthernet Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed with improved memory handling. CVE-2018-4401: Apple Entry added October 30, 2018
Kernel Impact: A malicious application may be able to leak sensitive user information Description: An access issue existed with privileged API calls. This issue was addressed with additional restrictions. CVE-2018-4399: Fabiano Anemone (@anoane) Entry added October 30, 2018
Kernel Impact: An attacker in a privileged network position may be able to execute arbitrary code Description: A memory corruption issue was addressed with improved validation. CVE-2018-4407: Kevin Backhouse of Semmle Ltd. Entry added October 30, 2018
Kernel Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed with improved memory handling. CVE-2018-4336: Brandon Azad CVE-2018-4337: Ian Beer of Google Project Zero CVE-2018-4340: Mohamed Ghannam (@_simo36) CVE-2018-4344: The UK's National Cyber Security Centre (NCSC) CVE-2018-4425: cc working with Trend Micro's Zero Day Initiative, Juwei Lin (@panicaII) of Trend Micro working with Trend Micro's Zero Day Initiative Entry added October 30, 2018
LibreSSL Impact: Multiple issues in libressl were addressed in this update Description: Multiple issues were addressed by updating to libressl version 2.6.4. CVE-2015-3194 CVE-2015-5333 CVE-2015-5334 CVE-2016-702 Entry added October 30, 2018
Login Window Impact: A local user may be able to cause a denial of service Description: A validation issue was addressed with improved logic. CVE-2018-4348: Ken Gannon of MWR InfoSecurity and Christian Demko of MWR InfoSecurity Entry added October 30, 2018
mDNSOffloadUserClient Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed with improved memory handling. CVE-2018-4326: an anonymous researcher working with Trend Micro's Zero Day Initiative, Zhuo Liang of Qihoo 360 Nirvan Team Entry added October 30, 2018
MediaRemote Impact: A sandboxed process may be able to circumvent sandbox restrictions Description: An access issue was addressed with additional sandbox restrictions. This ensures that older data read from recently-written-to addresses cannot be read via a speculative side-channel. CVE-2018-3639: Jann Horn (@tehjh) of Google Project Zero (GPZ), Ken Johnson of the Microsoft Security Response Center (MSRC) Entry added October 30, 2018
Security Impact: A local user may be able to cause a denial of service Description: This issue was addressed with improved checks. CVE-2018-4395: Patrick Wardle of Digita Security Entry added October 30, 2018
Security Impact: An attacker may be able to exploit weaknesses in the RC4 cryptographic algorithm Description: This issue was addressed by removing RC4. CVE-2016-1777: Pepi Zawodsky
Spotlight Impact: An application may be able to execute arbitrary code with system privileges Description: A memory corruption issue was addressed with improved memory handling. CVE-2018-4393: Lufeng Li Entry added October 30, 2018
Symptom Framework Impact: An application may be able to read restricted memory Description: An out-of-bounds read was addressed with improved bounds checking. CVE-2018-4203: Bruno Keith (@bkth_) working with Trend Micro's Zero Day Initiative Entry added October 30, 2018
Text Impact: Processing a maliciously crafted text file may lead to a denial of service Description: A denial of service issue was addressed with improved validation. CVE-2018-4304: jianan.huang (@Sevck) Entry added October 30, 2018
Wi-Fi Impact: An application may be able to read restricted memory Description: A validation issue was addressed with improved input sanitization. CVE-2018-4338: Lee @ SECLAB, Yonsei University working with Trend Micro's Zero Day Initiative Entry added October 30, 2018
Additional recognition
Accessibility Framework We would like to acknowledge Ryan Govostes for their assistance.
Core Data We would like to acknowledge Andreas Kurtz (@aykay) of NESO Security Labs GmbH for their assistance.
CoreDAV We would like to acknowledge an anonymous researcher for their assistance.
CoreGraphics We would like to acknowledge Nitin Arya of Roblox Corporation for their assistance.
CoreSymbolication We would like to acknowledge Brandon Azad for their assistance.
IOUSBHostFamily We would like to acknowledge an anonymous researcher for their assistance.
Kernel We would like to acknowledge Brandon Azad for their assistance.
Mail We would like to acknowledge Alessandro Avagliano of Rocket Internet SE, John Whitehead of The New York Times, Kelvin Delbarre of Omicron Software Systems, and Zbyszek A>>A3Akiewski for their assistance.
Quick Look We would like to acknowledge Wojciech ReguAa (@_r3ggi) of SecuRing and Patrick Wardle of Digita Security and lokihardt of Google Project Zero for their assistance.
Security We would like to acknowledge Christoph Sinai, Daniel Dudek (@dannysapples) of The Irish Times and Filip KlubiAka (@lemoncloak) of ADAPT Centre, Dublin Institute of Technology, Istvan Csanady of Shapr3D, Omar Barkawi of ITG Software, Inc., Phil Caleno, Wilson Ding, and an anonymous researcher for their assistance.
SQLite We would like to acknowledge Andreas Kurtz (@aykay) of NESO Security Labs GmbH for their assistance.
Terminal We would like to acknowledge an anonymous researcher for their assistance.
WindowServer We would like to acknowledge Patrick Wardle of Digita Security for their assistance.
Installation note:
macOS Mojave 10.14 may be obtained from the Mac App Store or Apple's Software Downloads web site: https://support.apple.com/downloads/
Information will also be posted to the Apple Security Updates web site: https://support.apple.com/kb/HT201222
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"db": "CERT/CC",
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},
"description": {
"_id": null,
"data": "Systems with microprocessors utilizing speculative execution and speculative execution of memory reads before the addresses of all prior memory writes are known may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis, aka Speculative Store Bypass (SSB), Variant 4. CPU hardware utilizing speculative execution may be vulnerable to cache timing side-channel analysis. Two vulnerabilities are identified, known as \"Variant 3a\" and \"Variant 4\". CPUhardware is firmware that runs in the central processor for managing and controlling the CPU. Multiple CPUHardware information disclosure vulnerabilities. The vulnerability is caused by a race condition in the CPU cache processing. Local attackers can exploit vulnerabilities to obtain sensitive information through side channel analysis. AMD, ARM, and Intel CPUs are all CPU (central processing unit) products from different manufacturers. AMD, ARM, and Intel CPUs have security vulnerabilities. Relevant releases/architectures:\n\nRHEL 7-based RHEV-H ELS - noarch\nRHEV Hypervisor for RHEL-6 ELS - noarch\n\n3. The Red Hat Enterprise Virtualization Hypervisor\nis a dedicated Kernel-based Virtual Machine (KVM) hypervisor. 7.4) - ppc64, ppc64le, s390x, x86_64\n\n3. (CVE-2018-3639)\n\nNote: This is the libvirt side of the CVE-2018-3639 mitigation that\nincludes support for guests running on hosts with AMD CPUs. \n\nBug Fix(es):\n\n* The \"virsh capabilities\" command previously displayed an inaccurate\nnumber of 4 KiB memory pages on systems with very large amounts of memory. \nThis update optimizes the memory diagnostic mechanism to ensure memory page\nnumbers are displayed correctly on such systems. (BZ#1582416)\n\n* After starting a large amount of guest virtual machines in a single\nsession, the libvirtd service in some cases became unable to start any\nother guests until it was restarted. This update ensures that libvirtd\nproperly frees memory used for D-Bus replies, which prevents the described\nproblem from occurring. (BZ#1588390)\n\n4. \n\nFor the stable distribution (stretch), these problems have been fixed in\nversion 3.20180703.2~deb9u1. \n\nWe recommend that you upgrade your intel-microcode packages. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: libvirt security update\nAdvisory ID: RHSA-2018:1669-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:1669\nIssue date: 2018-05-21\nCVE Names: CVE-2018-3639 \n=====================================================================\n\n1. Summary:\n\nAn update for libvirt 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) - x86_64\nRed Hat Enterprise Linux Workstation (v. 6) - i386, x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 6) - x86_64\n\n3. Description:\n\nThe libvirt library contains a C API for managing and interacting with the\nvirtualization capabilities of Linux and other operating systems. In\naddition, libvirt provides tools for remote management of virtualized\nsystems. \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 is the libvirt side of the CVE-2018-3639 mitigation. \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, libvirtd will be restarted\nautomatically. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1566890 - CVE-2018-3639 hw: cpu: speculative store bypass\n\n6. Package List:\n\nRed Hat Enterprise Linux Desktop (v. 6):\n\nSource:\nlibvirt-0.10.2-62.el6_9.2.src.rpm\n\ni386:\nlibvirt-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-client-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-python-0.10.2-62.el6_9.2.i686.rpm\n\nx86_64:\nlibvirt-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-client-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-client-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-python-0.10.2-62.el6_9.2.x86_64.rpm\n\nRed Hat Enterprise Linux Desktop Optional (v. 6):\n\ni386:\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.i686.rpm\n\nx86_64:\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-lock-sanlock-0.10.2-62.el6_9.2.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node (v. 6):\n\nSource:\nlibvirt-0.10.2-62.el6_9.2.src.rpm\n\nx86_64:\nlibvirt-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-client-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-client-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-python-0.10.2-62.el6_9.2.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional (v. 6):\n\nx86_64:\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-lock-sanlock-0.10.2-62.el6_9.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 6):\n\nSource:\nlibvirt-0.10.2-62.el6_9.2.src.rpm\n\ni386:\nlibvirt-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-client-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-python-0.10.2-62.el6_9.2.i686.rpm\n\nppc64:\nlibvirt-0.10.2-62.el6_9.2.ppc64.rpm\nlibvirt-client-0.10.2-62.el6_9.2.ppc.rpm\nlibvirt-client-0.10.2-62.el6_9.2.ppc64.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.ppc.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.ppc64.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.ppc.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.ppc64.rpm\nlibvirt-python-0.10.2-62.el6_9.2.ppc64.rpm\n\ns390x:\nlibvirt-0.10.2-62.el6_9.2.s390x.rpm\nlibvirt-client-0.10.2-62.el6_9.2.s390.rpm\nlibvirt-client-0.10.2-62.el6_9.2.s390x.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.s390.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.s390x.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.s390.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.s390x.rpm\nlibvirt-python-0.10.2-62.el6_9.2.s390x.rpm\n\nx86_64:\nlibvirt-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-client-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-client-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-python-0.10.2-62.el6_9.2.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 6):\n\nx86_64:\nlibvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-lock-sanlock-0.10.2-62.el6_9.2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nlibvirt-0.10.2-62.el6_9.2.src.rpm\n\ni386:\nlibvirt-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-client-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-python-0.10.2-62.el6_9.2.i686.rpm\n\nx86_64:\nlibvirt-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-client-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-client-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.i686.rpm\nlibvirt-devel-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-python-0.10.2-62.el6_9.2.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 6):\n\nx86_64:\nlibvirt-debuginfo-0.10.2-62.el6_9.2.x86_64.rpm\nlibvirt-lock-sanlock-0.10.2-62.el6_9.2.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-2018-3639\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/security/vulnerabilities/ssbd\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\niQIVAwUBWwQw7NzjgjWX9erEAQhW6Q//X3vgcTXRi0xYP3Eot/Ko6Ho/zftZVrhL\njih9zdj/hNF7QDaPBBPurmCUTdurUPfsSyrGJlp5vb/3YhEQjmUF3vLquoAHR7UV\nh5zVU11w1PPvrASwmRb1vdy9LA131YsNDeOEgYVX5GtMk8gjuu1YT6m1WD1U9/a1\nB24mY0IIyC/ZGY3B7UxyePaJyPbyqIrHyZClDvg1pczaQ+tOEA6P96/gpItkLbAU\nFeNHnLNWp4XAbEjs5XOwBL0N7QCzpuYsKKOIITML9ZRlfSojFDtOKTiAjaE8lHgH\n3KW+0zvclsNT/bcRbiGaIHl+3RF1wZ/sfi+RV0tDIQIU7m/qvx133U1rf4pvG00h\nXOXDl46Ezbey0tjKlJcRJEKSgRyqUyGalwW/Ul+snv6xM9MDqWMa+utLGBuf5aVD\nuWbTozM7qEHfx7n2XKNzJvRHVSOALYXT+XogtmOr/xAt6gxkI/hpYJKrwcQtDpVh\nWclQ1DjygI+yi1tG6t2MKuYPvkJ9hkTxsabV7t9yFoFsRT+FjMoD/VceNdpUVPeK\nP/ngU93e1TYOSF9yho92I8lsaJXc0Hk5+B0vm1kuFVX/jf604QjD6lkcQK32EH05\nsP3Sj5akazGlLx3E6A5enntdkIE6aKJOQL8VCNeg+/hqP0BZCnJJWVWIoa6+Q2oO\ndwPZvwyusgo=\n=I0hs\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-3655-1\nMay 22, 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 addressed in the Linux kernel. (CVE-2018-3639)\n\nJan H. Schonherr discovered that the Xen subsystem did not properly handle\nblock IO merges correctly in some situations. An attacker in a guest vm\ncould use this to cause a denial of service (host crash) or possibly gain\nadministrative privileges in the host. (CVE-2017-12134)\n\nIt was discovered that the Bluetooth HIP Protocol implementation in the\nLinux kernel did not properly validate HID connection setup information. An\nattacker could use this to cause a denial of service (system crash) or\npossibly execute arbitrary code. (CVE-2017-13220)\n\nIt was discovered that a buffer overread vulnerability existed in the\nkeyring subsystem of the Linux kernel. (CVE-2017-13305)\n\nIt was discovered that the netlink subsystem in the Linux kernel did not\nproperly restrict observations of netlink messages to the appropriate net\nnamespace. (CVE-2017-17449)\n\nIt was discovered that a race condition existed in the i8042 serial device\ndriver implementation in the Linux kernel. A physically proximate attacker\ncould use this to cause a denial of service (system crash) or possibly\nexecute arbitrary code. (CVE-2017-18079)\n\nIt was discovered that a race condition existed in the Device Mapper\ncomponent of the Linux kernel. A local attacker could use this to cause a\ndenial of service (system crash). (CVE-2017-18203)\n\nIt was discovered that a race condition existed in the OCFS2 file system\nimplementation in the Linux kernel. A local attacker could use this to\ncause a denial of service (kernel deadlock). (CVE-2017-18204)\n\nIt was discovered that an infinite loop could occur in the madvise(2)\nimplementation in the Linux kernel in certain circumstances. A local\nattacker could use this to cause a denial of service (system hang). \n(CVE-2017-18208)\n\nKefeng Wang discovered that a race condition existed in the memory locking\nimplementation in the Linux kernel. A local attacker could use this to\ncause a denial of service. (CVE-2017-18221)\n\nSilvio Cesare discovered a buffer overwrite existed in the NCPFS\nimplementation in the Linux kernel. A remote attacker controlling a\nmalicious NCPFS server could use this to cause a denial of service (system\ncrash) or possibly execute arbitrary code. (CVE-2018-8822)\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-3.13.0-149-generic 3.13.0-149.199\n linux-image-3.13.0-149-generic-lpae 3.13.0-149.199\n linux-image-3.13.0-149-lowlatency 3.13.0-149.199\n linux-image-3.13.0-149-powerpc-e500 3.13.0-149.199\n linux-image-3.13.0-149-powerpc-e500mc 3.13.0-149.199\n linux-image-3.13.0-149-powerpc-smp 3.13.0-149.199\n linux-image-3.13.0-149-powerpc64-emb 3.13.0-149.199\n linux-image-3.13.0-149-powerpc64-smp 3.13.0-149.199\n linux-image-generic 3.13.0.149.159\n linux-image-generic-lpae 3.13.0.149.159\n linux-image-lowlatency 3.13.0.149.159\n linux-image-powerpc-e500 3.13.0.149.159\n linux-image-powerpc-e500mc 3.13.0.149.159\n linux-image-powerpc-smp 3.13.0.149.159\n linux-image-powerpc64-emb 3.13.0.149.159\n linux-image-powerpc64-smp 3.13.0.149.159\n\nPlease note that fully mitigating CVE-2018-3639 (Spectre Variant 4)\nmay require corresponding processor microcode/firmware updates or,\nin virtual environments, hypervisor updates. On i386 and amd64\narchitectures, the SSBD feature is required to enable the kernel\nmitigations. BIOS vendors will be making updates available for Intel\nprocessors that implement SSBD and Ubuntu is working with Intel to\nprovide future microcode updates. Ubuntu users with a processor from\na different vendor should contact the vendor to identify necessary\nfirmware updates. Ubuntu provided corresponding QEMU updates for users\nof self-hosted virtual environments in USN 3651-1. Ubuntu users in\ncloud environments should contact the cloud provider to confirm that\nthe hypervisor has been updated to expose the new CPU features to\nvirtual machines. 7) - noarch, x86_64\n\n3. Description:\n\nThe kernel-rt packages provide the Real Time Linux Kernel, which enables\nfine-tuning for systems with extremely high determinism requirements. Once\nall virtual machines have shut down, start them again for this update to\ntake effect. Relevant releases/architectures:\n\nRHV-M 4.3 - noarch\n\n3. \nIt includes the configuration of the Red Hat Support plugin, copying\ndownstream-only artifacts to the ISO domain, and links to the knowledgebase\nand other support material. There are three primary variants of the\nissue which differ in the way the speculative execution can be exploited. \nVariant CVE-2017-5754 relies on the fact that, on impacted microprocessors,\nduring speculative execution of instruction permission faults, exception\ngeneration triggered by a faulting access is suppressed until the\nretirement of the whole instruction block. Note: CVE-2017-5754 affects Intel\nx86-64 microprocessors. AMD x86-64 microprocessors are not affected by this\nissue. (CVE-2017-5754)\n\nBug Fix(es):\n\n* [CVE-2017-5754] Variant3: POWER {qemu-kvm-rhev} Add machine type variants\n(BZ#1559948)\n\n* add POWER 9 to the 4.2 cluster level (BZ#1574494)\n\n4. Description:\n\nThe kernel packages contain the Linux kernel, the core of any Linux\noperating system. (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 is required. Please refer to References\nsection for further information about this issue, CPU microcode\nrequirements and the potential performance impact. \n\nIn this update mitigations for x86-64 architecture are provided. \n\nSoftware Description:\n- intel-microcode: Processor microcode for Intel CPUs\n\nDetails:\n\nIt was discovered that memory present in the L1 data cache of an Intel CPU\ncore may be exposed to a malicious process that is executing on the CPU\ncore. This vulnerability is also known as L1 Terminal Fault (L1TF). This vulnerability is also known as Rogue\nSystem Register Read (RSRE). -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\nAPPLE-SA-2018-10-30-9 Additional information for\nAPPLE-SA-2018-9-24-1 macOS Mojave 10.14\n\nmacOS Mojave 10.14 addresses the following:\n\nBluetooth\nAvailable for: iMac (21.5-inch, Late 2012), iMac (27-inch, Late 2012)\n, iMac (21.5-inch, Late 2013), iMac (21.5-inch, Mid 2014), iMac\n(Retina 5K, 27-inch, Late 2014), iMac (21.5-inch, Late 2015),\nMac mini (Mid 2011), Mac mini Server (Mid 2011), Mac mini (Late 2012)\n, Mac mini Server (Late 2012), Mac mini (Late 2014), Mac Pro\n(Late 2013), MacBook Air (11-inch, Mid 2011), MacBook Air\n(13-inch, Mid 2011), MacBook Air (11-inch, Mid 2012), MacBook Air\n(13-inch, Mid 2012), MacBook Air (11-inch, Mid 2013), MacBook Air\n(13-inch, Mid 2013), MacBook Air (11-inch, Early 2015), MacBook Air\n(13-inch, Early 2015), MacBook Pro (13-inch, Mid 2012), MacBook Pro\n(15-inch, Mid 2012), MacBook Pro (Retina, 13-inch, Early 2013),\nMacBook Pro (Retina, 15-inch, Early 2013), MacBook Pro (Retina,\n13-inch, Late 2013), and MacBook Pro (Retina, 15-inch, Late 2013)\nImpact: An attacker in a privileged network position may be able to\nintercept Bluetooth traffic\nDescription: An input validation issue existed in Bluetooth. This\nissue was addressed with improved input validation. \nCVE-2018-5383: Lior Neumann and Eli Biham\n\nThe updates below are available for these Mac models:\nMacBook (Early 2015 and later), MacBook Air (Mid 2012 and later),\nMacBook Pro (Mid 2012 and later), Mac mini (Late 2012 and later),\niMac (Late 2012 and later), iMac Pro (all models), Mac Pro\n(Late 2013, Mid 2010, and Mid 2012 models with recommended\nMetal-capable graphics processor, including MSI Gaming Radeon RX 560\nand Sapphire Radeon PULSE RX 580)\n\nafpserver\nImpact: A remote attacker may be able to attack AFP servers through\nHTTP clients\nDescription: An input validation issue was addressed with improved\ninput validation. \nCVE-2018-4295: Jianjun Chen (@whucjj) from Tsinghua University and UC\nBerkeley\nEntry added October 30, 2018\n\nApp Store\nImpact: A malicious application may be able to determine the Apple ID\nof the owner of the computer\nDescription: A permissions issue existed in the handling of the Apple\nID. This issue was addressed with improved access controls. \nCVE-2018-4324: Sergii Kryvoblotskyi of MacPaw Inc. \n\nAppleGraphicsControl\nImpact: An application may be able to read restricted memory\nDescription: A validation issue was addressed with improved input\nsanitization. \nCVE-2018-4417: Lee of the Information Security Lab Yonsei University\nworking with Trend Micro\u0027s Zero Day Initiative\nEntry added October 30, 2018\n\nApplication Firewall\nImpact: A sandboxed process may be able to circumvent sandbox\nrestrictions\nDescription: A configuration issue was addressed with additional\nrestrictions. \nCVE-2018-4353: Abhinav Bansal of LinkedIn Inc. \n\nAPR\nImpact: Multiple buffer overflow issues existed in Perl\nDescription: Multiple issues in Perl were addressed with improved\nmemory handling. \nCVE-2017-12613: Craig Young of Tripwire VERT\nCVE-2017-12618: Craig Young of Tripwire VERT\nEntry added October 30, 2018\n\nATS\nImpact: A malicious application may be able to elevate privileges\nDescription: A memory corruption issue was addressed with improved\ninput validation. \nCVE-2018-4411: lilang wu moony Li of Trend Micro working with Trend\nMicro\u0027s Zero Day Initiative\nEntry added October 30, 2018\n\nATS\nImpact: An application may be able to read restricted memory\nDescription: An out-of-bounds read was addressed with improved bounds\nchecking. \nCVE-2018-4308: Mohamed Ghannam (@_simo36)\nEntry added October 30, 2018\n\nAuto Unlock\nImpact: A malicious application may be able to access local users\nAppleIDs\nDescription: A validation issue existed in the entitlement\nverification. This issue was addressed with improved validation of\nthe process entitlement. \nCVE-2018-4321: Min (Spark) Zheng, Xiaolong Bai of Alibaba Inc. \n\nCFNetwork\nImpact: An application may be able to execute arbitrary code with\nsystem privileges\nDescription: A memory corruption issue was addressed with improved\nmemory handling. \nCVE-2018-4126: Bruno Keith (@bkth_) working with Trend Micro\u0027s Zero\nDay Initiative\nEntry added October 30, 2018\n\nCoreFoundation\nImpact: A malicious application may be able to elevate privileges\nDescription: A memory corruption issue was addressed with improved\ninput validation. \nCVE-2018-4412: The UK\u0027s National Cyber Security Centre (NCSC)\nEntry added October 30, 2018\n\nCoreFoundation\nImpact: An application may be able to gain elevated privileges\nDescription: A memory corruption issue was addressed with improved\ninput validation. \nCVE-2018-4414: The UK\u0027s National Cyber Security Centre (NCSC)\nEntry added October 30, 2018\n\nCoreText\nImpact: Processing a maliciously crafted text file may lead to\narbitrary code execution\nDescription: A use after free issue was addressed with improved\nmemory management. \nCVE-2018-4347: an anonymous researcher\nEntry added October 30, 2018\n\nCrash Reporter\nImpact: An application may be able to read restricted memory\nDescription: A validation issue was addressed with improved input\nsanitization. \nCVE-2018-4333: Brandon Azad\n\nCUPS\nImpact: In certain configurations, a remote attacker may be able to\nreplace the message content from the print server with arbitrary\ncontent\nDescription: An injection issue was addressed with improved\nvalidation. \nCVE-2018-4153: Michael Hanselmann of hansmi.ch\nEntry added October 30, 2018\n\nCUPS\nImpact: An attacker in a privileged position may be able to perform a\ndenial of service attack\nDescription: A denial of service issue was addressed with improved\nvalidation. \nCVE-2018-4406: Michael Hanselmann of hansmi.ch\nEntry added October 30, 2018\n\nDictionary\nImpact: Parsing a maliciously crafted dictionary file may lead to\ndisclosure of user information\nDescription: A validation issue existed which allowed local file\naccess. This was addressed with input sanitization. \nCVE-2018-4346: Wojciech ReguAa (@_r3ggi) of SecuRing\nEntry added October 30, 2018\n\nGrand Central Dispatch\nImpact: An application may be able to execute arbitrary code with\nsystem privileges\nDescription: A memory corruption issue was addressed with improved\nmemory handling. \nCVE-2018-4426: Brandon Azad\nEntry added October 30, 2018\n\nHeimdal\nImpact: An application may be able to execute arbitrary code with\nsystem privileges\nDescription: A memory corruption issue was addressed with improved\nmemory handling. \nCVE-2018-3646: Baris Kasikci, Daniel Genkin, Ofir Weisse, and Thomas\nF. Wenisch of University of Michigan, Mark Silberstein and Marina\nMinkin of Technion, Raoul Strackx, Jo Van Bulck, and Frank Piessens\nof KU Leuven, Rodrigo Branco, Henrique Kawakami, Ke Sun, and Kekai Hu\nof Intel Corporation, Yuval Yarom of The University of Adelaide\nEntry added October 30, 2018\n\niBooks\nImpact: Parsing a maliciously crafted iBooks file may lead to\ndisclosure of user information\nDescription: A configuration issue was addressed with additional\nrestrictions. \nCVE-2018-4355: evi1m0 of bilibili security team\nEntry added October 30, 2018\n\nIntel Graphics Driver\nImpact: An application may be able to read restricted memory\nDescription: A validation issue was addressed with improved input\nsanitization. \nCVE-2018-4396: Yu Wang of Didi Research America\nCVE-2018-4418: Yu Wang of Didi Research America\nEntry added October 30, 2018\n\nIntel Graphics Driver\nImpact: An application may be able to read restricted memory\nDescription: A memory initialization issue was addressed with\nimproved memory handling. \nCVE-2018-4351: Appology Team @ Theori working with Trend Micro\u0027s Zero\nDay Initiative\nEntry added October 30, 2018\n\nIntel Graphics Driver\nImpact: An application may be able to execute arbitrary code with\nsystem privileges\nDescription: A memory corruption issue was addressed with improved\ninput validation. \nCVE-2018-4350: Yu Wang of Didi Research America\nEntry added October 30, 2018\n\nIntel Graphics Driver\nImpact: An application may be able to execute arbitrary code with\nsystem privileges\nDescription: A memory corruption issue was addressed with improved\nmemory handling. \nCVE-2018-4334: Ian Beer of Google Project Zero\nEntry added October 30, 2018\n\nIOHIDFamily\nImpact: A malicious application may be able to execute arbitrary code\nwith kernel privileges\nDescription: A memory corruption issue was addressed with improved\ninput validation\nCVE-2018-4408: Ian Beer of Google Project Zero\nEntry added October 30, 2018\n\nIOKit\nImpact: A malicious application may be able to break out of its\nsandbox\nDescription: A memory corruption issue was addressed with improved\nmemory handling. \nCVE-2018-4341: Ian Beer of Google Project Zero\nCVE-2018-4354: Ian Beer of Google Project Zero\nEntry added October 30, 2018\n\nIOKit\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed with improved\nstate management. \nCVE-2018-4383: Apple\nEntry added October 30, 2018\n\nIOUserEthernet\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed with improved\nmemory handling. \nCVE-2018-4401: Apple\nEntry added October 30, 2018\n\nKernel\nImpact: A malicious application may be able to leak sensitive user\ninformation\nDescription: An access issue existed with privileged API calls. This\nissue was addressed with additional restrictions. \nCVE-2018-4399: Fabiano Anemone (@anoane)\nEntry added October 30, 2018\n\nKernel\nImpact: An attacker in a privileged network position may be able to\nexecute arbitrary code\nDescription: A memory corruption issue was addressed with improved\nvalidation. \nCVE-2018-4407: Kevin Backhouse of Semmle Ltd. \nEntry added October 30, 2018\n\nKernel\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed with improved\nmemory handling. \nCVE-2018-4336: Brandon Azad\nCVE-2018-4337: Ian Beer of Google Project Zero\nCVE-2018-4340: Mohamed Ghannam (@_simo36)\nCVE-2018-4344: The UK\u0027s National Cyber Security Centre (NCSC)\nCVE-2018-4425: cc working with Trend Micro\u0027s Zero Day Initiative,\nJuwei Lin (@panicaII) of Trend Micro working with Trend Micro\u0027s Zero\nDay Initiative\nEntry added October 30, 2018\n\nLibreSSL\nImpact: Multiple issues in libressl were addressed in this update\nDescription: Multiple issues were addressed by updating to libressl\nversion 2.6.4. \nCVE-2015-3194\nCVE-2015-5333\nCVE-2015-5334\nCVE-2016-702\nEntry added October 30, 2018\n\nLogin Window\nImpact: A local user may be able to cause a denial of service\nDescription: A validation issue was addressed with improved logic. \nCVE-2018-4348: Ken Gannon of MWR InfoSecurity and Christian Demko of\nMWR InfoSecurity\nEntry added October 30, 2018\n\nmDNSOffloadUserClient\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed with improved\nmemory handling. \nCVE-2018-4326: an anonymous researcher working with Trend Micro\u0027s\nZero Day Initiative, Zhuo Liang of Qihoo 360 Nirvan Team\nEntry added October 30, 2018\n\nMediaRemote\nImpact: A sandboxed process may be able to circumvent sandbox\nrestrictions\nDescription: An access issue was addressed with additional sandbox\nrestrictions. This ensures that older data read from\nrecently-written-to addresses cannot be read via a speculative\nside-channel. \nCVE-2018-3639: Jann Horn (@tehjh) of Google Project Zero (GPZ), Ken\nJohnson of the Microsoft Security Response Center (MSRC)\nEntry added October 30, 2018\n\nSecurity\nImpact: A local user may be able to cause a denial of service\nDescription: This issue was addressed with improved checks. \nCVE-2018-4395: Patrick Wardle of Digita Security\nEntry added October 30, 2018\n\nSecurity\nImpact: An attacker may be able to exploit weaknesses in the RC4\ncryptographic algorithm\nDescription: This issue was addressed by removing RC4. \nCVE-2016-1777: Pepi Zawodsky\n\nSpotlight\nImpact: An application may be able to execute arbitrary code with\nsystem privileges\nDescription: A memory corruption issue was addressed with improved\nmemory handling. \nCVE-2018-4393: Lufeng Li\nEntry added October 30, 2018\n\nSymptom Framework\nImpact: An application may be able to read restricted memory\nDescription: An out-of-bounds read was addressed with improved bounds\nchecking. \nCVE-2018-4203: Bruno Keith (@bkth_) working with Trend Micro\u0027s Zero\nDay Initiative\nEntry added October 30, 2018\n\nText\nImpact: Processing a maliciously crafted text file may lead to a\ndenial of service\nDescription: A denial of service issue was addressed with improved\nvalidation. \nCVE-2018-4304: jianan.huang (@Sevck)\nEntry added October 30, 2018\n\nWi-Fi\nImpact: An application may be able to read restricted memory\nDescription: A validation issue was addressed with improved input\nsanitization. \nCVE-2018-4338: Lee @ SECLAB, Yonsei University working with Trend\nMicro\u0027s Zero Day Initiative\nEntry added October 30, 2018\n\nAdditional recognition\n\nAccessibility Framework\nWe would like to acknowledge Ryan Govostes for their assistance. \n\nCore Data\nWe would like to acknowledge Andreas Kurtz (@aykay) of NESO Security\nLabs GmbH for their assistance. \n\nCoreDAV\nWe would like to acknowledge an anonymous researcher for their\nassistance. \n\nCoreGraphics\nWe would like to acknowledge Nitin Arya of Roblox Corporation for\ntheir assistance. \n\nCoreSymbolication\nWe would like to acknowledge Brandon Azad for their assistance. \n\nIOUSBHostFamily\nWe would like to acknowledge an anonymous researcher for their\nassistance. \n\nKernel\nWe would like to acknowledge Brandon Azad for their assistance. \n\nMail\nWe would like to acknowledge Alessandro Avagliano of Rocket Internet\nSE, John Whitehead of The New York Times, Kelvin Delbarre of Omicron\nSoftware Systems, and Zbyszek A\u003e\u003eA3Akiewski for their assistance. \n\nQuick Look\nWe would like to acknowledge Wojciech ReguAa (@_r3ggi) of SecuRing\nand Patrick Wardle of Digita Security and lokihardt of Google Project\nZero for their assistance. \n\nSecurity\nWe would like to acknowledge Christoph Sinai, Daniel Dudek\n(@dannysapples) of The Irish Times and Filip KlubiAka (@lemoncloak)\nof ADAPT Centre, Dublin Institute of Technology, Istvan Csanady of\nShapr3D, Omar Barkawi of ITG Software, Inc., Phil Caleno, Wilson\nDing, and an anonymous researcher for their assistance. \n\nSQLite\nWe would like to acknowledge Andreas Kurtz (@aykay) of NESO Security\nLabs GmbH for their assistance. \n\nTerminal\nWe would like to acknowledge an anonymous researcher for their\nassistance. \n\nWindowServer\nWe would like to acknowledge Patrick Wardle of Digita Security for\ntheir assistance. \n\nInstallation note:\n\nmacOS Mojave 10.14 may be obtained from the Mac App Store or\nApple\u0027s Software Downloads web site:\nhttps://support.apple.com/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-----BEGIN PGP SIGNATURE-----\n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\n1wZZGLtg3VubrZOsnUZzumD+0nI8c6QAnQK3P2PSZ0k=\n=i9YR\n-----END PGP SIGNATURE-----\n",
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CVE-2018-6239 (GCVE-0-2018-6239)
Vulnerability from nvd – Published: 2019-04-12 16:24 – Updated: 2024-08-05 06:01- Information disclosure
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CVE-2019-5673 (GCVE-0-2019-5673)
Vulnerability from nvd – Published: 2019-04-11 16:38 – Updated: 2024-08-04 20:01- Denial of service
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CVE-2018-6239 (GCVE-0-2018-6239)
Vulnerability from cvelistv5 – Published: 2019-04-12 16:24 – Updated: 2024-08-05 06:01- Information disclosure
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CVE-2019-5673 (GCVE-0-2019-5673)
Vulnerability from cvelistv5 – Published: 2019-04-11 16:38 – Updated: 2024-08-04 20:01- Denial of service
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