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50 vulnerabilities found for xeon by intel
VAR-201801-1712
Vulnerability from variot - Updated: 2026-03-09 22:55Systems with microprocessors utilizing speculative execution and branch prediction may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis. Two vulnerabilities are identified, known as "Variant 3a" and "Variant 4". CPUhardware is a set of firmware that runs in the CPU (Central Processing Unit) for managing and controlling the CPU. The Meltdown vulnerability exists in the CPU processor core, which \"melts\" the security boundary implemented by hardware, allowing low-privileged user-level applications to \"cross-border\" access to system-level memory, causing data leakage. The following products and versions are affected: ARM Cortex-R7; Cortex-R8; Cortex-A8; Cortex-A9; Cortex-A12; Xeon CPU E5-1650 v3, v2, v4; Xeon E3-1265l v2, v3, v4 ; Xeon E3-1245 v2, v3, v5, v6 versions; Xeon X7542, etc.
In this update mitigations for x86-64 architecture are provided. 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. (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-4.4.0-1011-aws 4.4.0-1011.11 linux-image-4.4.0-111-generic 4.4.0-111.134~14.04.1 linux-image-4.4.0-111-lowlatency 4.4.0-111.134~14.04.1 linux-image-4.4.0-111-powerpc-e500mc 4.4.0-111.134~14.04.1 linux-image-4.4.0-111-powerpc-smp 4.4.0-111.134~14.04.1 linux-image-4.4.0-111-powerpc64-emb 4.4.0-111.134~14.04.1 linux-image-4.4.0-111-powerpc64-smp 4.4.0-111.134~14.04.1 linux-image-aws 4.4.0.1011.11 linux-image-generic-lts-xenial 4.4.0.111.95 linux-image-lowlatency-lts-xenial 4.4.0.111.95 linux-image-powerpc-e500mc-lts-xenial 4.4.0.111.95 linux-image-powerpc-smp-lts-xenial 4.4.0.111.95 linux-image-powerpc64-emb-lts-xenial 4.4.0.111.95 linux-image-powerpc64-smp-lts-xenial 4.4.0.111.95
Please note that fully mitigating CVE-2017-5715 (Spectre Variant 2) requires corresponding processor microcode/firmware updates or, in virtual environments, hypervisor updates. Ubuntu is working with Intel and AMD to provide future microcode updates that implement IBRS and IBPB as they are made available. Ubuntu users with a processor from a different vendor should contact the vendor to identify necessary firmware updates. Ubuntu will provide corresponding QEMU updates in the future for users of self-hosted virtual environments in coordination with upstream QEMU. 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. 5.9 server) - i386, ia64, noarch, x86_64
Bug Fix(es):
-
Previously, the page table isolation feature was able to modify the kernel Page Global Directory (PGD) entries with the _NX bit even for CPUs without the capability to use the "no execute" (NX) bit technology. Consequently, the page tables got corrupted, and the kernel panicked at the first page-fault occurrence. This update adds the check of CPU capabilities before modifying kernel PGD entries with _NX. As a result, the operating system no longer panics on boot due to corrupted page tables under the described circumstances. (BZ#1538169)
-
When booting the operating system with the Kernel Page Table Isolation option enabled, the HPET VSYSCALL shadow mapping was not placed correctly. Consequently, the High Precision Event Timer (HPET) feature was not available early enough, and warnings on boot time occurred. This update fixes the placement of HPET VSYSCALL, and the warnings on boot time due to this behavior no longer occur. (BZ#1541281)
-
Previously, the routine preparing the kexec crashkernel area did not properly clear the page allocated to be kexec's Page Global Directory (PGD). Consequently, the page table isolation shadow mapping routines failed with a warning message when setting up page table entries. With this update, the underlying source code has been fixed to clear the kexec PGD allocated page before setting up its page table entries. As a result, warnings are no longer issued when setting up kexec. (BZ#1541285)
-
When changing a kernel page mapping from Read Only (RO) to Read Write (RW), the Translation Lookaside Buffer (TLB) entry was previously not updated. Consequently, a protection fault on a write operation occurred, which led to a kernel panic. With this update, the underlying source code has been fixed to handle such kind of fault properly, and the kernel no longer panics in the described situation. (BZ#1541892)
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. 7.3) - ppc64, ppc64le, x86_64
Bug Fix(es):
-
When attempting to reread parent blocks in btree traversal, the xfs code which deletes extended attributes from an inode assumed that the parent blocks were still on the cache. Under memory pressure and memory reclaim, such parent blocks were sometimes removed from the cache. Consequently, attempts to reread previously cached parent blocks caused the file system to read invalid memory. This update fixes xfs to reinitialize the pointer to the parent block buffers after the block has been reread. As a result, pointers to btree blocks now point to valid memory, and the kernel no longer crashes due to an invalid memory access. (BZ#1512811)
-
The write access check for huge pages did not function correctly on IBM z Systems. Consequently, if asynchronous I/O reads were used, buffers sometimes contained zeroes rather than data from a file, even when the io_getevents() system call reported that the associated read had finished successfully. This update fixes the write access check in the gup_huge_pmd() function in memory management, and read data is stored in asynchronous I/O buffers properly. (BZ#1513315)
-
With this update, the rule for iptables reloading has been optimized to complete faster. (BZ#1514040)
-
-----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: kernel security and bug fix update Advisory ID: RHSA-2018:0151-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:0151 Issue date: 2018-01-25 CVE Names: CVE-2015-8539 CVE-2017-7472 CVE-2017-12192 CVE-2017-12193 CVE-2017-15649 =====================================================================
- 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
- Description:
The kernel packages contain the Linux kernel, the core of any Linux operating system.
Security Fix(es):
An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited.
Note: This issue is present in hardware and cannot be fully fixed via software update. The updated kernel packages provide software mitigation for this hardware issue at a cost of potential performance penalty. Please refer to References section for further information about this issue and the performance impact.
In this update initial mitigations for IBM Power (PowerPC) and IBM zSeries (S390) architectures are provided.
-
Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation 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 cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. This fix specifically addresses S390 processors. (CVE-2017-5715, Important)
-
Variant CVE-2017-5753 triggers the speculative execution by performing a bounds-check bypass. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation 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 cross the syscall boundary and read privileged memory by conducting targeted cache side-channel attacks. This fix specifically addresses S390 and PowerPC processors. (CVE-2017-5753, Important)
-
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. In a combination with the fact that memory accesses may populate the cache even when the block is being dropped and never committed (executed), an unprivileged local attacker could use this flaw to read privileged (kernel space) memory by conducting targeted cache side-channel attacks. Note: CVE-2017-5754 affects Intel x86-64 microprocessors. AMD x86-64 microprocessors are not affected by this issue. This fix specifically addresses PowerPC processors. (CVE-2017-5754, Important)
Red Hat would like to thank Google Project Zero for reporting CVE-2017-5715, CVE-2017-5753, and CVE-2017-5754.
This update also fixes the following security issues and bugs:
Space precludes documenting all of the bug fixes and enhancements included in this advisory. To see the complete list of bug fixes and enhancements, refer to the following KnowledgeBase article: https://access.redhat.com/articles/3327131.
- 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/):
1284450 - CVE-2015-8539 kernel: local privesc in key management 1442086 - CVE-2017-7472 kernel: keyctl_set_reqkey_keyring() leaks thread keyrings 1493435 - CVE-2017-12192 kernel: NULL pointer dereference due to KEYCTL_READ on negative key 1501215 - CVE-2017-12193 kernel: Null pointer dereference due to incorrect node-splitting in assoc_array implementation 1504574 - CVE-2017-15649 kernel: Use-after-free in the af_packet.c 1519778 - CVE-2017-5753 hw: cpu: speculative execution bounds-check bypass 1519780 - CVE-2017-5715 hw: cpu: speculative execution branch target injection 1519781 - CVE-2017-5754 hw: cpu: speculative execution permission faults handling
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: kernel-3.10.0-693.17.1.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-693.17.1.el7.noarch.rpm kernel-doc-3.10.0-693.17.1.el7.noarch.rpm
x86_64: kernel-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-devel-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm kernel-devel-3.10.0-693.17.1.el7.x86_64.rpm kernel-headers-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-libs-3.10.0-693.17.1.el7.x86_64.rpm perf-3.10.0-693.17.1.el7.x86_64.rpm perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm python-perf-3.10.0-693.17.1.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: kernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-693.17.1.el7.x86_64.rpm perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: kernel-3.10.0-693.17.1.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-693.17.1.el7.noarch.rpm kernel-doc-3.10.0-693.17.1.el7.noarch.rpm
x86_64: kernel-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-devel-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm kernel-devel-3.10.0-693.17.1.el7.x86_64.rpm kernel-headers-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-libs-3.10.0-693.17.1.el7.x86_64.rpm perf-3.10.0-693.17.1.el7.x86_64.rpm perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm python-perf-3.10.0-693.17.1.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: kernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-693.17.1.el7.x86_64.rpm perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: kernel-3.10.0-693.17.1.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-693.17.1.el7.noarch.rpm kernel-doc-3.10.0-693.17.1.el7.noarch.rpm
ppc64: kernel-3.10.0-693.17.1.el7.ppc64.rpm kernel-bootwrapper-3.10.0-693.17.1.el7.ppc64.rpm kernel-debug-3.10.0-693.17.1.el7.ppc64.rpm kernel-debug-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm kernel-debug-devel-3.10.0-693.17.1.el7.ppc64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-693.17.1.el7.ppc64.rpm kernel-devel-3.10.0-693.17.1.el7.ppc64.rpm kernel-headers-3.10.0-693.17.1.el7.ppc64.rpm kernel-tools-3.10.0-693.17.1.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm kernel-tools-libs-3.10.0-693.17.1.el7.ppc64.rpm perf-3.10.0-693.17.1.el7.ppc64.rpm perf-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm python-perf-3.10.0-693.17.1.el7.ppc64.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm
ppc64le: kernel-3.10.0-693.17.1.el7.ppc64le.rpm kernel-bootwrapper-3.10.0-693.17.1.el7.ppc64le.rpm kernel-debug-3.10.0-693.17.1.el7.ppc64le.rpm kernel-debug-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm kernel-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-693.17.1.el7.ppc64le.rpm kernel-devel-3.10.0-693.17.1.el7.ppc64le.rpm kernel-headers-3.10.0-693.17.1.el7.ppc64le.rpm kernel-tools-3.10.0-693.17.1.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm kernel-tools-libs-3.10.0-693.17.1.el7.ppc64le.rpm perf-3.10.0-693.17.1.el7.ppc64le.rpm perf-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm python-perf-3.10.0-693.17.1.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm
s390x: kernel-3.10.0-693.17.1.el7.s390x.rpm kernel-debug-3.10.0-693.17.1.el7.s390x.rpm kernel-debug-debuginfo-3.10.0-693.17.1.el7.s390x.rpm kernel-debug-devel-3.10.0-693.17.1.el7.s390x.rpm kernel-debuginfo-3.10.0-693.17.1.el7.s390x.rpm kernel-debuginfo-common-s390x-3.10.0-693.17.1.el7.s390x.rpm kernel-devel-3.10.0-693.17.1.el7.s390x.rpm kernel-headers-3.10.0-693.17.1.el7.s390x.rpm kernel-kdump-3.10.0-693.17.1.el7.s390x.rpm kernel-kdump-debuginfo-3.10.0-693.17.1.el7.s390x.rpm kernel-kdump-devel-3.10.0-693.17.1.el7.s390x.rpm perf-3.10.0-693.17.1.el7.s390x.rpm perf-debuginfo-3.10.0-693.17.1.el7.s390x.rpm python-perf-3.10.0-693.17.1.el7.s390x.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.s390x.rpm
x86_64: kernel-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-devel-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm kernel-devel-3.10.0-693.17.1.el7.x86_64.rpm kernel-headers-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-libs-3.10.0-693.17.1.el7.x86_64.rpm perf-3.10.0-693.17.1.el7.x86_64.rpm perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm python-perf-3.10.0-693.17.1.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: kernel-debug-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-693.17.1.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm kernel-tools-libs-devel-3.10.0-693.17.1.el7.ppc64.rpm perf-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm
ppc64le: kernel-debug-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm kernel-debug-devel-3.10.0-693.17.1.el7.ppc64le.rpm kernel-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-693.17.1.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm kernel-tools-libs-devel-3.10.0-693.17.1.el7.ppc64le.rpm perf-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm
x86_64: kernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-693.17.1.el7.x86_64.rpm perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: kernel-3.10.0-693.17.1.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-693.17.1.el7.noarch.rpm kernel-doc-3.10.0-693.17.1.el7.noarch.rpm
x86_64: kernel-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debug-devel-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm kernel-devel-3.10.0-693.17.1.el7.x86_64.rpm kernel-headers-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-libs-3.10.0-693.17.1.el7.x86_64.rpm perf-3.10.0-693.17.1.el7.x86_64.rpm perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm python-perf-3.10.0-693.17.1.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: kernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-693.17.1.el7.x86_64.rpm perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.17.1.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-2015-8539 https://access.redhat.com/security/cve/CVE-2017-7472 https://access.redhat.com/security/cve/CVE-2017-12192 https://access.redhat.com/security/cve/CVE-2017-12193 https://access.redhat.com/security/cve/CVE-2017-15649 https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/security/vulnerabilities/speculativeexecution https://access.redhat.com/security/cve/CVE-2017-5753 https://access.redhat.com/security/cve/CVE-2017-5715 https://access.redhat.com/security/cve/CVE-2017-5754 https://access.redhat.com/articles/3327131
- 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 . Relevant releases/architectures:
Image Updates for RHV-H - noarch Management Agent for RHEL 7 Hosts - noarch
- The appliance is available to download as an OVA file from the Customer Portal. ========================================================================== Kernel Live Patch Security Notice 0046-1 December 20, 2018
linux vulnerability
A security issue affects these releases of Ubuntu:
| Series | Base kernel | Arch | flavors | |------------------+--------------+----------+------------------| | Ubuntu 14.04 LTS | 4.4.0 | amd64 | generic | | Ubuntu 14.04 LTS | 4.4.0 | amd64 | lowlatency | | Ubuntu 16.04 LTS | 4.4.0 | amd64 | generic | | Ubuntu 16.04 LTS | 4.4.0 | amd64 | lowlatency | | Ubuntu 18.04 LTS | 4.15.0 | amd64 | generic | | Ubuntu 18.04 LTS | 4.15.0 | amd64 | lowlatency |
Summary:
Several security issues were fixed in the kernel. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2018-18710)
It was discovered that a race condition existed in the raw MIDI driver for the Linux kernel, leading to a double free vulnerability. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-10902)
It was discovered that the BPF verifier in the Linux kernel did not correctly compute numeric bounds in some situations. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-18445)
Noam Rathaus discovered that a use-after-free vulnerability existed in the Infiniband implementation in the Linux kernel. An attacker could use this to cause a denial of service (system crash). (CVE-2018-14734)
Wen Xu discovered that the ext4 filesystem implementation in the Linux kernel did not properly ensure that xattr information remained in inode bodies. An attacker could use this to construct a malicious ext4 image that, when mounted, could cause a denial of service (system crash). (CVE-2018-10880)
Kanda Motohiro discovered that writing extended attributes to an XFS file system in the Linux kernel in certain situations could cause an error condition to occur. A local attacker could use this to cause a denial of service. (CVE-2018-18690)
It was discovered that an integer overflow existed in the HID Bluetooth implementation in the Linux kernel that could lead to a buffer overwrite. An attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. This flaw is known as Spectre. A local attacker could use this to expose sensitive information, including kernel memory. (CVE-2017-5753)
It was discovered that the YUREX USB device driver for the Linux kernel did not properly restrict user space reads or writes. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-16276)
It was discovered that an integer overflow existed in the CD-ROM driver of the Linux kernel. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2018-16658)
Update instructions:
The problem can be corrected by updating your livepatches to the following versions:
| Kernel | Version | flavors | |--------------------------+----------+--------------------------| | 4.4.0-133.159 | 46.3 | generic, lowlatency | | 4.4.0-133.159~14.04.1 | 46.3 | lowlatency, generic | | 4.4.0-134.160 | 46.3 | generic, lowlatency | | 4.4.0-134.160~14.04.1 | 46.3 | lowlatency, generic | | 4.4.0-135.161~14.04.1 | 46.3 | lowlatency, generic | | 4.4.0-137.163 | 46.3 | generic, lowlatency | | 4.4.0-137.163~14.04.1 | 46.3 | generic, lowlatency | | 4.4.0-138.164 | 46.3 | generic, lowlatency | | 4.4.0-138.164~14.04.1 | 46.3 | lowlatency, generic | | 4.4.0-139.165 | 46.3 | generic, lowlatency | | 4.4.0-139.165~14.04.1 | 46.3 | lowlatency, generic | | 4.4.0-140.166 | 46.3 | lowlatency, generic | | 4.4.0-140.166~14.04.1 | 46.3 | lowlatency, generic | | 4.15.0-32.35 | 46.3 | lowlatency, generic | | 4.15.0-33.36 | 46.3 | lowlatency, generic | | 4.15.0-34.37 | 46.3 | generic, lowlatency | | 4.15.0-36.39 | 46.3 | generic, lowlatency | | 4.15.0-38.41 | 46.3 | lowlatency, generic | | 4.15.0-39.42 | 46.3 | generic, lowlatency | | 4.15.0-42.45 | 46.3 | lowlatency, generic |
References: CVE-2018-18710, CVE-2018-10902, CVE-2018-18445, CVE-2018-14734, CVE-2018-10880, CVE-2018-18690, CVE-2018-9363, CVE-2017-5753, CVE-2018-16276, CVE-2018-16658
-- ubuntu-security-announce mailing list ubuntu-security-announce@lists.ubuntu.com Modify settings or unsubscribe at: https://lists.ubuntu.com/mailman/listinfo/ubuntu-security-announce . -----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-hpesbhf03805en_us
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: hpesbhf03805en_us Version: 7
HPESBHF03805 rev.7 - Certain HPE products using Microprocessors from Intel, AMD, and ARM, with Speculative Execution, Elevation of Privilege and Information Disclosure.
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2018-01-23 Last Updated: 2018-01-22
Potential Security Impact: Local: Disclosure of Information, Elevation of Privilege
Source: Hewlett Packard Enterprise, Product Security Response Team
VULNERABILITY SUMMARY On January 3 2018, side-channel security vulnerabilities involving speculative execution were publicly disclosed. These vulnerabilities may impact the listed HPE products, potentially leading to information disclosure and elevation of privilege. Mitigation and resolution of these vulnerabilities may call for both an operating system update, provided by the OS vendor, and a system ROM update from HPE.
Note:
- This issue takes advantage of techniques commonly used in many modern processor architectures.
-
For further information, microprocessor vendors have provided security advisories:
References:
- CVE-2017-5715 - aka Spectre, branch target injection
- CVE-2017-5753 - aka Spectre, bounds check bypass
- CVE-2017-5754 - aka Meltdown, rogue data cache load, memory access permission check performed after kernel memory read
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
- HPE ProLiant DL380 Gen10 Server - To be delivered
- HPE ProLiant DL180 Gen10 Server - To be delivered
- HPE ProLiant DL160 Gen10 Server - To be delivered
- HPE ProLiant DL360 Gen10 Server - To be delivered
- HPE ProLiant ML110 Gen10 Server - To be delivered
- HPE ProLiant DL580 Gen10 Server - To be delivered
- HPE ProLiant DL560 Gen10 Server - To be delivered
- HPE ProLiant DL120 Gen10 Server - To be delivered
- HPE ProLiant ML350 Gen10 Server - To be delivered
- HPE ProLiant XL450 Gen10 Server - To be delivered
- HPE Synergy 660 Gen10 Compute Module - To be delivered
- HPE ProLiant DL385 Gen10 Server - prior to v1.04
- HPE ProLiant XL170r Gen10 Server - To be delivered
- HPE ProLiant BL460c Gen10 Server Blade - To be delivered
- HPE ProLiant XL190r Gen10 Server - To be delivered
- HPE ProLiant XL230k Gen10 Server - To be delivered
- HPE Synergy 480 Gen10 Compute Module - To be delivered
- HPE ProLiant XL730f Gen9 Server - To be delivered
- HPE ProLiant XL230a Gen9 Server - To be delivered
- HPE ProLiant XL740f Gen9 Server - To be delivered
- HPE ProLiant XL750f Gen9 Server - To be delivered
- HPE ProLiant XL170r Gen9 Server - To be delivered
- HP ProLiant DL60 Gen9 Server - To be delivered
- HP ProLiant DL160 Gen9 Server - To be delivered
- HPE ProLiant DL360 Gen9 Server - To be delivered
- HP ProLiant DL380 Gen9 Server - To be delivered
- HPE ProLiant XL450 Gen9 Server - To be delivered
- HPE Apollo 4200 Gen9 Server - To be delivered
- HP ProLiant BL460c Gen9 Server Blade - To be delivered
- HP ProLiant ML110 Gen9 Server - To be delivered
- HP ProLiant ML150 Gen9 Server - To be delivered
- HPE ProLiant ML350 Gen9 Server - To be delivered
- HP ProLiant DL120 Gen9 Server - To be delivered
- HPE ProLiant DL560 Gen9 Server - To be delivered
- HP ProLiant BL660c Gen9 Server - To be delivered
- HPE ProLiant ML30 Gen9 Server - To be delivered
- HPE ProLiant XL170r Gen10 Server - To be delivered
- HPE ProLiant DL20 Gen9 Server - To be delivered
- HPE Synergy 660 Gen9 Compute Module - To be delivered
- HPE Synergy 480 Gen9 Compute Module - To be delivered
- HPE ProLiant XL250a Gen9 Server - To be delivered
- HPE ProLiant XL190r Gen9 Server - To be delivered
- HP ProLiant DL80 Gen9 Server - To be delivered
- HPE ProLiant DL180 Gen9 Server - To be delivered
- HPE ProLiant XL270d Gen9 Accelerator Tray 2U Configure-to-order Server - To be delivered
- HPE ProLiant WS460c Gen9 Workstation - To be delivered
- HPE ProLiant XL260a Gen9 Server - To be delivered
- HPE Synergy 620 Gen9 Compute Module - To be delivered
- HPE ProLiant DL580 Gen9 Server - To be delivered
- HP ProLiant XL220a Gen8 v2 Server - To be delivered
- HPE Synergy 680 Gen9 Compute Module - To be delivered
- HPE ProLiant m510 Server Cartridge - To be delivered
- HPE ProLiant m710p Server Cartridge - To be delivered
- HPE ProLiant m710x Server Cartridge - To be delivered
- HP ProLiant m710 Server Cartridge - To be delivered
- HP ProLiant DL980 G7 Server - To be delivered
- HPE Synergy Composer - To be delivered
- HPE ProLiant Thin Micro TM200 Server - To be delivered
- HPE ProLiant ML10 v2 Server - To be delivered
- HPE ProLiant m350 Server Cartridge - To be delivered
- HPE ProLiant m300 Server Cartridge - To be delivered
- HPE ProLiant MicroServer Gen8 - To be delivered
- HPE ProLiant ML310e Gen8 v2 Server - To be delivered
- HPE Superdome Flex Server - To be delivered
- HP 3PAR StoreServ File Controller - To be delivered - v3 impacted
- HPE StoreVirtual 3000 File Controller - To be delivered
- HPE StoreEasy 1450 Storage - To be delivered
- HPE StoreEasy 1550 Storage - To be delivered
- HPE StoreEasy 1650 Storage - To be delivered
- HPE StoreEasy 3850 Gateway Storage - To be delivered
- HPE StoreEasy 1850 Storage - To be delivered
- HP ConvergedSystem 700 - To be delivered
- HPE Converged Architecture 700 - To be delivered
- HP ProLiant DL580 Gen8 Server - To be delivered
- HPE Cloudline CL2100 Gen10 Server - To be delivered
- HPE Cloudline CL2200 Gen10 Server - To be delivered
- HPE Cloudline CL3150 G4 Server - To be delivered
- HPE Cloudline CL5200 G3 Server - To be delivered
- HPE Cloudline CL3100 G3 Server - To be delivered
- HPE Cloudline CL2100 G3 807S 8 SFF Configure-to-order Server - To be delivered
- HPE Cloudline CL2100 G3 407S 4 LFF Configure-to-order Server - To be delivered
- HPE Cloudline CL2100 G3 806R 8SFF Configure-to-order Server - To be delivered
- HPE Cloudline CL2200 G3 1211R 12 LFF Configure-to-order Server - To be delivered
BACKGROUND
CVSS Base Metrics ================= Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector
CVE-2017-5715
8.2 CVSS:3.0/AV:A/AC:L/PR:N/UI:N/S:C/C:H/I:L/A:N
6.8 (AV:A/AC:L/Au:N/C:C/I:P/A:N)
CVE-2017-5753
5.0 CVSS:3.0/AV:A/AC:H/PR:L/UI:R/S:C/C:L/I:L/A:L
5.4 (AV:A/AC:M/Au:N/C:P/I:P/A:P)
CVE-2017-5754
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:N/A:N
7.8 (AV:N/AC:L/Au:N/C:C/I:N/A:N)
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
On January 11, Intel announced issues with an increased frequency of reboots when using the microcodes they released to address Variant 2 of the Spectre Vulnerability for numerous processors including Broadwell, Haswell, Skylake, Kaby Lake, Ivybridge, and Sandybridge processors. Intel has now identified the root cause of these issues and determined that these microcodes may introduce reboots and other unpredictable system behavior. Due to the severity of the potential issues that may occur when using these microcodes, Intel is now recommending that customers discontinue their use. Additional information is available from Intels Security Exploit Newsroom here: https://newsroom.intel.com/press-kits/security-exploits-intel-products/ . HPE is in alignment with Intel in our recommendation that customers discontinue use of System ROMs including impacted microcodes and revert to earlier System ROM versions.
All System ROMs including impacted microcodes have been removed from the HPE Support Site. This impacts HPE ProLiant and Synergy Gen10, Gen9, and Gen8 v2 servers as well as HPE Superdome servers for which updated System ROMs had previously been made available. Intel is working on updated microcodes to address these issues, and HPE will validate updated System ROMs including these microcodes and make them available to our customers in the coming weeks.
Mitigations for Variant 1 (Spectre) and Variant 3 (Meltdown) vulnerabilities require only OS updates and are not impacted.
-
HPE has provided a customer bulletin https://support.hpe.com/hpsc/doc/public/display?docId=emr_na-a00039267en_us with specific instructions to obtain the udpated sytem ROM
-
Note:
- CVE-2017-5715 (Variant 2) requires that the System ROM be updated and a vendor supplied operating system update be applied as well.
- For CVE-2017-5753, CVE-2017-5754 (Variants 1 and 3) require only updates of a vendor supplied operating system.
- HPE will continue to add additional products to the list.
HISTORY
Version:1 (rev.1) - 4 January 2018 Initial release
Version:2 (rev.2) - 5 January 2018 Added additional impacted products
Version:3 (rev.3) - 10 January 2018 Added more impacted products
Version:4 (rev.4) - 9 January 2018 Fixed product ID
Version:5 (rev.5) - 18 January 2018 Added additional impacted products
Version:6 (rev.6) - 19 January 2018 updated impacted product list
Version:7 (rev.7) - 23 January 2018 Marked impacted products with TBD for System ROM updates per Intel's guidance on microcode issues
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-2018-1-8-2 macOS High Sierra 10.13.2 Supplemental Update
macOS High Sierra 10.13.2 Supplemental Update is now available and addresses the following:
Available for: macOS High Sierra 10.13.2 Description: macOS High Sierra 10.13.2 Supplemental Update includes security improvements to Safari and WebKit to mitigate the effects of Spectre (CVE-2017-5753 and CVE-2017-5715).
We would like to acknowledge Jann Horn of Google Project Zero; and Paul Kocher in collaboration with Daniel Genkin of University of Pennsylvania and University of Maryland, Daniel Gruss of Graz University of Technology, Werner Haas of Cyberus Technology, Mike Hamburg of Rambus (Cryptography Research Division), Moritz Lipp of Graz University of Technology, Stefan Mangard of Graz University of Technology, Thomas Prescher of Cyberus Technology, Michael Schwarz of Graz University of Technology, and Yuval Yarom of University of Adelaide and Data61 for their assistance.
Installation note:
macOS High Sierra 10.13.2 Supplemental Update 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
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-----
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References:
- CVE-2017-5753
- CVE-2017-5715
- CVE-2017-5754
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
- HP Virtualization Performance Viewer Software - v2.20, v3.0, v3.01, v3.02, v3.03
- HPE Cloud Optimizer - v2.20, v3.0, v3.01, v3.02, v3.03
BACKGROUND
CVSS Base Metrics ================= Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector
RESOLUTION
Micro Focus is actively working with its vendors to address any systems-level Spectre and Meltdown impacts.However, if you have immediate concerns or questions regarding CentOS and its approach to Spectre or Meltdown, please contact them directly. Please note that you will need to sign in using a Passport account.
3P = 3rd Party Software GN = Micro Focus General Software MU = Multi-Platform Software
System management and security procedures must be reviewed frequently to maintain system integrity. Micro Focus is continually reviewing and enhancing the security features of software products to provide customers with current secure solutions.
"Micro Focus is broadly distributing this Security Bulletin in order to bring to the attention of users of the affected Micro Focus products the important security information contained in this Bulletin. Micro Focus recommends that all users determine the applicability of this information to their individual situations and take appropriate action. Micro Focus does not warrant that this information is necessarily accurate or complete for all user situations and, consequently, Micro Focus will not be responsible for any damages resulting from user's use or disregard of the information provided in this Security Bulletin. To the extent permitted by law, Micro Focus disclaims all warranties, either express or implied, including the warranties of merchantability and fitness for a particular purpose, title and non-infringement."
Copyright 2017 EntIT Software LLC
Micro Focus shall not be liable for technical or editorial errors or omissions contained herein. 6.6) - noarch, x86_64
3
Show details on source website{
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"data": "Systems with microprocessors utilizing speculative execution and branch prediction may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis. Two vulnerabilities are identified, known as \"Variant 3a\" and \"Variant 4\". CPUhardware is a set of firmware that runs in the CPU (Central Processing Unit) for managing and controlling the CPU. The Meltdown vulnerability exists in the CPU processor core, which \\\"melts\\\" the security boundary implemented by hardware, allowing low-privileged user-level applications to \\\"cross-border\\\" access to system-level memory, causing data leakage. The following products and versions are affected: ARM Cortex-R7; Cortex-R8; Cortex-A8; Cortex-A9; Cortex-A12; Xeon CPU E5-1650 v3, v2, v4; Xeon E3-1265l v2, v3, v4 ; Xeon E3-1245 v2, v3, v5, v6 versions; Xeon X7542, etc. \n\nIn this update mitigations for x86-64 architecture are provided. 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. (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-4.4.0-1011-aws 4.4.0-1011.11\n linux-image-4.4.0-111-generic 4.4.0-111.134~14.04.1\n linux-image-4.4.0-111-lowlatency 4.4.0-111.134~14.04.1\n linux-image-4.4.0-111-powerpc-e500mc 4.4.0-111.134~14.04.1\n linux-image-4.4.0-111-powerpc-smp 4.4.0-111.134~14.04.1\n linux-image-4.4.0-111-powerpc64-emb 4.4.0-111.134~14.04.1\n linux-image-4.4.0-111-powerpc64-smp 4.4.0-111.134~14.04.1\n linux-image-aws 4.4.0.1011.11\n linux-image-generic-lts-xenial 4.4.0.111.95\n linux-image-lowlatency-lts-xenial 4.4.0.111.95\n linux-image-powerpc-e500mc-lts-xenial 4.4.0.111.95\n linux-image-powerpc-smp-lts-xenial 4.4.0.111.95\n linux-image-powerpc64-emb-lts-xenial 4.4.0.111.95\n linux-image-powerpc64-smp-lts-xenial 4.4.0.111.95\n\nPlease note that fully mitigating CVE-2017-5715 (Spectre Variant 2)\nrequires corresponding processor microcode/firmware updates or,\nin virtual environments, hypervisor updates. Ubuntu is working with Intel and AMD to provide\nfuture microcode updates that implement IBRS and IBPB as they are made\navailable. Ubuntu users with a processor from a different vendor should\ncontact the vendor to identify necessary firmware updates. Ubuntu\nwill provide corresponding QEMU updates in the future for users of\nself-hosted virtual environments in coordination with upstream QEMU. \nUbuntu users in cloud environments should contact the cloud provider\nto confirm that the hypervisor has been updated to expose the new\nCPU features to virtual machines. 5.9 server) - i386, ia64, noarch, x86_64\n\n3. \n\nBug Fix(es):\n\n* Previously, the page table isolation feature was able to modify the\nkernel Page Global Directory (PGD) entries with the _NX bit even for CPUs\nwithout the capability to use the \"no execute\" (NX) bit technology. \nConsequently, the page tables got corrupted, and the kernel panicked at the\nfirst page-fault occurrence. This update adds the check of CPU capabilities\nbefore modifying kernel PGD entries with _NX. As a result, the operating\nsystem no longer panics on boot due to corrupted page tables under the\ndescribed circumstances. (BZ#1538169)\n\n* When booting the operating system with the Kernel Page Table Isolation\noption enabled, the HPET VSYSCALL shadow mapping was not placed correctly. \nConsequently, the High Precision Event Timer (HPET) feature was not\navailable early enough, and warnings on boot time occurred. This update\nfixes the placement of HPET VSYSCALL, and the warnings on boot time due to\nthis behavior no longer occur. (BZ#1541281)\n\n* Previously, the routine preparing the kexec crashkernel area did not\nproperly clear the page allocated to be kexec\u0027s Page Global Directory\n(PGD). Consequently, the page table isolation shadow mapping routines\nfailed with a warning message when setting up page table entries. With this\nupdate, the underlying source code has been fixed to clear the kexec PGD\nallocated page before setting up its page table entries. As a result,\nwarnings are no longer issued when setting up kexec. (BZ#1541285)\n\n* When changing a kernel page mapping from Read Only (RO) to Read Write\n(RW), the Translation Lookaside Buffer (TLB) entry was previously not\nupdated. Consequently, a protection fault on a write operation occurred,\nwhich led to a kernel panic. With this update, the underlying source code\nhas been fixed to handle such kind of fault properly, and the kernel no\nlonger panics in the described situation. (BZ#1541892)\n\n4. \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. 7.3) - ppc64, ppc64le, x86_64\n\n3. \n\nBug Fix(es):\n\n* When attempting to reread parent blocks in btree traversal, the xfs code\nwhich deletes extended attributes from an inode assumed that the parent\nblocks were still on the cache. Under memory pressure and memory reclaim,\nsuch parent blocks were sometimes removed from the cache. Consequently,\nattempts to reread previously cached parent blocks caused the file system\nto read invalid memory. This update fixes xfs to reinitialize the pointer\nto the parent block buffers after the block has been reread. As a result,\npointers to btree blocks now point to valid memory, and the kernel no\nlonger crashes due to an invalid memory access. (BZ#1512811)\n\n* The write access check for huge pages did not function correctly on IBM z\nSystems. Consequently, if asynchronous I/O reads were used, buffers\nsometimes contained zeroes rather than data from a file, even when the\nio_getevents() system call reported that the associated read had finished\nsuccessfully. This update fixes the write access check in the\ngup_huge_pmd() function in memory management, and read data is stored in\nasynchronous I/O buffers properly. (BZ#1513315)\n\n* With this update, the rule for iptables reloading has been optimized to\ncomplete faster. (BZ#1514040)\n\n4. \n-----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: kernel security and bug fix update\nAdvisory ID: RHSA-2018:0151-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:0151\nIssue date: 2018-01-25\nCVE Names: CVE-2015-8539 CVE-2017-7472 CVE-2017-12192 \n CVE-2017-12193 CVE-2017-15649 \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. Description:\n\nThe kernel packages contain the Linux kernel, the core of any Linux\noperating system. \n\nSecurity Fix(es):\n\nAn industry-wide issue was found in the way many modern microprocessor\ndesigns have implemented speculative execution of instructions (a commonly\nused performance optimization). There are three primary variants of the\nissue which differ in the way the speculative execution can be exploited. \n\nNote: This issue is present in hardware and cannot be fully fixed via\nsoftware update. The updated kernel packages provide software mitigation\nfor this hardware issue at a cost of potential performance penalty. Please\nrefer to References section for further information about this issue and\nthe performance impact. \n\nIn this update initial mitigations for IBM Power (PowerPC) and IBM zSeries\n(S390) architectures are provided. \n\n* Variant CVE-2017-5715 triggers the speculative execution by utilizing\nbranch target injection. It relies on the presence of a precisely-defined\ninstruction sequence in the privileged code as well as the fact that memory\naccesses may cause allocation into the microprocessor\u0027s data cache even for\nspeculatively executed instructions that never actually commit (retire). As\na result, an unprivileged attacker could use this flaw to cross the syscall\nand guest/host boundaries and read privileged memory by conducting targeted\ncache side-channel attacks. This fix specifically addresses S390\nprocessors. (CVE-2017-5715, Important)\n\n* Variant CVE-2017-5753 triggers the speculative execution by performing a\nbounds-check bypass. It relies on the presence of a precisely-defined\ninstruction sequence in the privileged code as well as the fact that memory\naccesses may cause allocation into the microprocessor\u0027s data cache even for\nspeculatively executed instructions that never actually commit (retire). As\na result, an unprivileged attacker could use this flaw to cross the syscall\nboundary and read privileged memory by conducting targeted cache\nside-channel attacks. This fix specifically addresses S390 and PowerPC\nprocessors. (CVE-2017-5753, Important)\n\n* Variant CVE-2017-5754 relies on the fact that, on impacted\nmicroprocessors, during speculative execution of instruction permission\nfaults, exception generation triggered by a faulting access is suppressed\nuntil the retirement of the whole instruction block. In a combination with\nthe fact that memory accesses may populate the cache even when the block is\nbeing dropped and never committed (executed), an unprivileged local\nattacker could use this flaw to read privileged (kernel space) memory by\nconducting targeted cache side-channel attacks. Note: CVE-2017-5754 affects\nIntel x86-64 microprocessors. AMD x86-64 microprocessors are not affected\nby this issue. This fix specifically addresses PowerPC processors. \n(CVE-2017-5754, Important)\n\nRed Hat would like to thank Google Project Zero for reporting\nCVE-2017-5715, CVE-2017-5753, and CVE-2017-5754. \n\nThis update also fixes the following security issues and bugs:\n\nSpace precludes documenting all of the bug fixes and enhancements included\nin this advisory. To see the complete list of bug fixes and enhancements,\nrefer to the following KnowledgeBase article:\nhttps://access.redhat.com/articles/3327131. \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\n1284450 - CVE-2015-8539 kernel: local privesc in key management\n1442086 - CVE-2017-7472 kernel: keyctl_set_reqkey_keyring() leaks thread keyrings\n1493435 - CVE-2017-12192 kernel: NULL pointer dereference due to KEYCTL_READ on negative key\n1501215 - CVE-2017-12193 kernel: Null pointer dereference due to incorrect node-splitting in assoc_array implementation\n1504574 - CVE-2017-15649 kernel: Use-after-free in the af_packet.c\n1519778 - CVE-2017-5753 hw: cpu: speculative execution bounds-check bypass\n1519780 - CVE-2017-5715 hw: cpu: speculative execution branch target injection\n1519781 - CVE-2017-5754 hw: cpu: speculative execution permission faults handling\n\n6. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nkernel-3.10.0-693.17.1.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-693.17.1.el7.noarch.rpm\nkernel-doc-3.10.0-693.17.1.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-devel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-headers-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-693.17.1.el7.x86_64.rpm\nperf-3.10.0-693.17.1.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-693.17.1.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nkernel-3.10.0-693.17.1.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-693.17.1.el7.noarch.rpm\nkernel-doc-3.10.0-693.17.1.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-devel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-headers-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-693.17.1.el7.x86_64.rpm\nperf-3.10.0-693.17.1.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-693.17.1.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nkernel-3.10.0-693.17.1.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-693.17.1.el7.noarch.rpm\nkernel-doc-3.10.0-693.17.1.el7.noarch.rpm\n\nppc64:\nkernel-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-bootwrapper-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-debug-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-debug-devel-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-devel-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-headers-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-tools-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-tools-libs-3.10.0-693.17.1.el7.ppc64.rpm\nperf-3.10.0-693.17.1.el7.ppc64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\npython-perf-3.10.0-693.17.1.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\n\nppc64le:\nkernel-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-bootwrapper-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-debug-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-devel-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-headers-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-tools-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-tools-libs-3.10.0-693.17.1.el7.ppc64le.rpm\nperf-3.10.0-693.17.1.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\npython-perf-3.10.0-693.17.1.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\n\ns390x:\nkernel-3.10.0-693.17.1.el7.s390x.rpm\nkernel-debug-3.10.0-693.17.1.el7.s390x.rpm\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.s390x.rpm\nkernel-debug-devel-3.10.0-693.17.1.el7.s390x.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.s390x.rpm\nkernel-debuginfo-common-s390x-3.10.0-693.17.1.el7.s390x.rpm\nkernel-devel-3.10.0-693.17.1.el7.s390x.rpm\nkernel-headers-3.10.0-693.17.1.el7.s390x.rpm\nkernel-kdump-3.10.0-693.17.1.el7.s390x.rpm\nkernel-kdump-debuginfo-3.10.0-693.17.1.el7.s390x.rpm\nkernel-kdump-devel-3.10.0-693.17.1.el7.s390x.rpm\nperf-3.10.0-693.17.1.el7.s390x.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.s390x.rpm\npython-perf-3.10.0-693.17.1.el7.s390x.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.s390x.rpm\n\nx86_64:\nkernel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-devel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-headers-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-693.17.1.el7.x86_64.rpm\nperf-3.10.0-693.17.1.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\nkernel-tools-libs-devel-3.10.0-693.17.1.el7.ppc64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.ppc64.rpm\n\nppc64le:\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-debug-devel-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\nkernel-tools-libs-devel-3.10.0-693.17.1.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.ppc64le.rpm\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-693.17.1.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nkernel-3.10.0-693.17.1.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-693.17.1.el7.noarch.rpm\nkernel-doc-3.10.0-693.17.1.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-devel-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-headers-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-693.17.1.el7.x86_64.rpm\nperf-3.10.0-693.17.1.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-693.17.1.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.17.1.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.17.1.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-2015-8539\nhttps://access.redhat.com/security/cve/CVE-2017-7472\nhttps://access.redhat.com/security/cve/CVE-2017-12192\nhttps://access.redhat.com/security/cve/CVE-2017-12193\nhttps://access.redhat.com/security/cve/CVE-2017-15649\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/security/vulnerabilities/speculativeexecution\nhttps://access.redhat.com/security/cve/CVE-2017-5753\nhttps://access.redhat.com/security/cve/CVE-2017-5715\nhttps://access.redhat.com/security/cve/CVE-2017-5754\nhttps://access.redhat.com/articles/3327131\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\niD8DBQFaab47XlSAg2UNWIIRAgi2AKDDW6z/9di3aoNQMX6PaIOzYTu39gCgncrF\nn+VQu/CVEmiUW8aXZCnplaM=\n=Km2i\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. Relevant releases/architectures:\n\nImage Updates for RHV-H - noarch\nManagement Agent for RHEL 7 Hosts - noarch\n\n3. The appliance is available\nto download as an OVA file from the Customer Portal. ==========================================================================\nKernel Live Patch Security Notice 0046-1\nDecember 20, 2018\n\nlinux vulnerability\n==========================================================================\n\nA security issue affects these releases of Ubuntu:\n\n| Series | Base kernel | Arch | flavors |\n|------------------+--------------+----------+------------------|\n| Ubuntu 14.04 LTS | 4.4.0 | amd64 | generic |\n| Ubuntu 14.04 LTS | 4.4.0 | amd64 | lowlatency |\n| Ubuntu 16.04 LTS | 4.4.0 | amd64 | generic |\n| Ubuntu 16.04 LTS | 4.4.0 | amd64 | lowlatency |\n| Ubuntu 18.04 LTS | 4.15.0 | amd64 | generic |\n| Ubuntu 18.04 LTS | 4.15.0 | amd64 | lowlatency |\n\nSummary:\n\nSeveral security issues were fixed in the kernel. A local attacker could use this to expose\nsensitive information (kernel memory). (CVE-2018-18710)\n\nIt was discovered that a race condition existed in the raw MIDI driver for\nthe Linux kernel, leading to a double free vulnerability. A local attacker\ncould use this to cause a denial of service (system crash) or possibly\nexecute arbitrary code. (CVE-2018-10902)\n\nIt was discovered that the BPF verifier in the Linux kernel did not\ncorrectly compute numeric bounds in some situations. A local attacker could\nuse this to cause a denial of service (system crash) or possibly execute\narbitrary code. (CVE-2018-18445)\n\nNoam Rathaus discovered that a use-after-free vulnerability existed in the\nInfiniband implementation in the Linux kernel. An attacker could use this\nto cause a denial of service (system crash). (CVE-2018-14734)\n\nWen Xu discovered that the ext4 filesystem implementation in the Linux\nkernel did not properly ensure that xattr information remained in inode\nbodies. An attacker could use this to construct a malicious ext4 image\nthat, when mounted, could cause a denial of service (system crash). \n(CVE-2018-10880)\n\nKanda Motohiro discovered that writing extended attributes to an XFS file\nsystem in the Linux kernel in certain situations could cause an error\ncondition to occur. A local attacker could use this to cause a denial of\nservice. (CVE-2018-18690)\n\nIt was discovered that an integer overflow existed in the HID Bluetooth\nimplementation in the Linux kernel that could lead to a buffer overwrite. \nAn attacker could use this to cause a denial of service (system crash) or\npossibly execute arbitrary code. This flaw is known as Spectre. A local attacker could use this to\nexpose sensitive information, including kernel memory. (CVE-2017-5753)\n\nIt was discovered that the YUREX USB device driver for the Linux kernel did\nnot properly restrict user space reads or writes. A physically proximate\nattacker could use this to cause a denial of service (system crash) or\npossibly execute arbitrary code. (CVE-2018-16276)\n\nIt was discovered that an integer overflow existed in the CD-ROM driver of\nthe Linux kernel. A local attacker could use this to expose sensitive\ninformation (kernel memory). (CVE-2018-16658)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your livepatches to the following\nversions:\n\n| Kernel | Version | flavors |\n|--------------------------+----------+--------------------------|\n| 4.4.0-133.159 | 46.3 | generic, lowlatency |\n| 4.4.0-133.159~14.04.1 | 46.3 | lowlatency, generic |\n| 4.4.0-134.160 | 46.3 | generic, lowlatency |\n| 4.4.0-134.160~14.04.1 | 46.3 | lowlatency, generic |\n| 4.4.0-135.161~14.04.1 | 46.3 | lowlatency, generic |\n| 4.4.0-137.163 | 46.3 | generic, lowlatency |\n| 4.4.0-137.163~14.04.1 | 46.3 | generic, lowlatency |\n| 4.4.0-138.164 | 46.3 | generic, lowlatency |\n| 4.4.0-138.164~14.04.1 | 46.3 | lowlatency, generic |\n| 4.4.0-139.165 | 46.3 | generic, lowlatency |\n| 4.4.0-139.165~14.04.1 | 46.3 | lowlatency, generic |\n| 4.4.0-140.166 | 46.3 | lowlatency, generic |\n| 4.4.0-140.166~14.04.1 | 46.3 | lowlatency, generic |\n| 4.15.0-32.35 | 46.3 | lowlatency, generic |\n| 4.15.0-33.36 | 46.3 | lowlatency, generic |\n| 4.15.0-34.37 | 46.3 | generic, lowlatency |\n| 4.15.0-36.39 | 46.3 | generic, lowlatency |\n| 4.15.0-38.41 | 46.3 | lowlatency, generic |\n| 4.15.0-39.42 | 46.3 | generic, lowlatency |\n| 4.15.0-42.45 | 46.3 | lowlatency, generic |\n\nReferences:\n CVE-2018-18710, CVE-2018-10902, CVE-2018-18445, CVE-2018-14734, \n CVE-2018-10880, CVE-2018-18690, CVE-2018-9363, CVE-2017-5753, \n CVE-2018-16276, CVE-2018-16658\n\n\n-- \nubuntu-security-announce mailing list\nubuntu-security-announce@lists.ubuntu.com\nModify settings or unsubscribe at: https://lists.ubuntu.com/mailman/listinfo/ubuntu-security-announce\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-hpesbhf03805en_us\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: hpesbhf03805en_us\nVersion: 7\n\nHPESBHF03805 rev.7 - Certain HPE products using Microprocessors from Intel,\nAMD, and ARM, with Speculative Execution, Elevation of Privilege and\nInformation Disclosure. \n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2018-01-23\nLast Updated: 2018-01-22\n\nPotential Security Impact: Local: Disclosure of Information, Elevation of\nPrivilege\n\nSource: Hewlett Packard Enterprise, Product Security Response Team\n\nVULNERABILITY SUMMARY\nOn January 3 2018, side-channel security vulnerabilities involving\nspeculative execution were publicly disclosed. These vulnerabilities may\nimpact the listed HPE products, potentially leading to information disclosure\nand elevation of privilege. Mitigation and resolution of these\nvulnerabilities may call for both an operating system update, provided by the\nOS vendor, and a system ROM update from HPE. \n\n\n**Note:**\n\n * This issue takes advantage of techniques commonly used in many modern\nprocessor architectures. \n * For further information, microprocessor vendors have provided security\nadvisories:\n \n - Intel:\n\u003chttps://security-center.intel.com/advisory.aspx?intelid=intel-sa-00088\u0026langu\ngeid=en-fr\u003e\n - AMD: \u003chttp://www.amd.com/en/corporate/speculative-execution\u003e\n - ARM: \u003chttps://developer.arm.com/support/security-update\u003e\n\nReferences:\n\n - CVE-2017-5715 - aka Spectre, branch target injection\n - CVE-2017-5753 - aka Spectre, bounds check bypass\n - CVE-2017-5754 - aka Meltdown, rogue data cache load, memory access\npermission check performed after kernel memory read\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\n - HPE ProLiant DL380 Gen10 Server - To be delivered\n - HPE ProLiant DL180 Gen10 Server - To be delivered\n - HPE ProLiant DL160 Gen10 Server - To be delivered\n - HPE ProLiant DL360 Gen10 Server - To be delivered\n - HPE ProLiant ML110 Gen10 Server - To be delivered\n - HPE ProLiant DL580 Gen10 Server - To be delivered\n - HPE ProLiant DL560 Gen10 Server - To be delivered\n - HPE ProLiant DL120 Gen10 Server - To be delivered\n - HPE ProLiant ML350 Gen10 Server - To be delivered\n - HPE ProLiant XL450 Gen10 Server - To be delivered\n - HPE Synergy 660 Gen10 Compute Module - To be delivered\n - HPE ProLiant DL385 Gen10 Server - prior to v1.04 \n - HPE ProLiant XL170r Gen10 Server - To be delivered\n - HPE ProLiant BL460c Gen10 Server Blade - To be delivered\n - HPE ProLiant XL190r Gen10 Server - To be delivered\n - HPE ProLiant XL230k Gen10 Server - To be delivered\n - HPE Synergy 480 Gen10 Compute Module - To be delivered\n - HPE ProLiant XL730f Gen9 Server - To be delivered\n - HPE ProLiant XL230a Gen9 Server - To be delivered\n - HPE ProLiant XL740f Gen9 Server - To be delivered\n - HPE ProLiant XL750f Gen9 Server - To be delivered\n - HPE ProLiant XL170r Gen9 Server - To be delivered\n - HP ProLiant DL60 Gen9 Server - To be delivered\n - HP ProLiant DL160 Gen9 Server - To be delivered\n - HPE ProLiant DL360 Gen9 Server - To be delivered\n - HP ProLiant DL380 Gen9 Server - To be delivered\n - HPE ProLiant XL450 Gen9 Server - To be delivered\n - HPE Apollo 4200 Gen9 Server - To be delivered\n - HP ProLiant BL460c Gen9 Server Blade - To be delivered\n - HP ProLiant ML110 Gen9 Server - To be delivered\n - HP ProLiant ML150 Gen9 Server - To be delivered\n - HPE ProLiant ML350 Gen9 Server - To be delivered\n - HP ProLiant DL120 Gen9 Server - To be delivered\n - HPE ProLiant DL560 Gen9 Server - To be delivered\n - HP ProLiant BL660c Gen9 Server - To be delivered\n - HPE ProLiant ML30 Gen9 Server - To be delivered\n - HPE ProLiant XL170r Gen10 Server - To be delivered\n - HPE ProLiant DL20 Gen9 Server - To be delivered\n - HPE Synergy 660 Gen9 Compute Module - To be delivered\n - HPE Synergy 480 Gen9 Compute Module - To be delivered\n - HPE ProLiant XL250a Gen9 Server - To be delivered\n - HPE ProLiant XL190r Gen9 Server - To be delivered\n - HP ProLiant DL80 Gen9 Server - To be delivered\n - HPE ProLiant DL180 Gen9 Server - To be delivered\n - HPE ProLiant XL270d Gen9 Accelerator Tray 2U Configure-to-order Server -\nTo be delivered\n - HPE ProLiant WS460c Gen9 Workstation - To be delivered\n - HPE ProLiant XL260a Gen9 Server - To be delivered\n - HPE Synergy 620 Gen9 Compute Module - To be delivered\n - HPE ProLiant DL580 Gen9 Server - To be delivered\n - HP ProLiant XL220a Gen8 v2 Server - To be delivered\n - HPE Synergy 680 Gen9 Compute Module - To be delivered\n - HPE ProLiant m510 Server Cartridge - To be delivered\n - HPE ProLiant m710p Server Cartridge - To be delivered\n - HPE ProLiant m710x Server Cartridge - To be delivered\n - HP ProLiant m710 Server Cartridge - To be delivered\n - HP ProLiant DL980 G7 Server - To be delivered\n - HPE Synergy Composer - To be delivered\n - HPE ProLiant Thin Micro TM200 Server - To be delivered\n - HPE ProLiant ML10 v2 Server - To be delivered\n - HPE ProLiant m350 Server Cartridge - To be delivered\n - HPE ProLiant m300 Server Cartridge - To be delivered\n - HPE ProLiant MicroServer Gen8 - To be delivered\n - HPE ProLiant ML310e Gen8 v2 Server - To be delivered\n - HPE Superdome Flex Server - To be delivered\n - HP 3PAR StoreServ File Controller - To be delivered - v3 impacted\n - HPE StoreVirtual 3000 File Controller - To be delivered\n - HPE StoreEasy 1450 Storage - To be delivered\n - HPE StoreEasy 1550 Storage - To be delivered\n - HPE StoreEasy 1650 Storage - To be delivered\n - HPE StoreEasy 3850 Gateway Storage - To be delivered\n - HPE StoreEasy 1850 Storage - To be delivered\n - HP ConvergedSystem 700 - To be delivered\n - HPE Converged Architecture 700 - To be delivered\n - HP ProLiant DL580 Gen8 Server - To be delivered\n - HPE Cloudline CL2100 Gen10 Server - To be delivered\n - HPE Cloudline CL2200 Gen10 Server - To be delivered\n - HPE Cloudline CL3150 G4 Server - To be delivered\n - HPE Cloudline CL5200 G3 Server - To be delivered\n - HPE Cloudline CL3100 G3 Server - To be delivered\n - HPE Cloudline CL2100 G3 807S 8 SFF Configure-to-order Server - To be\ndelivered\n - HPE Cloudline CL2100 G3 407S 4 LFF Configure-to-order Server - To be\ndelivered\n - HPE Cloudline CL2100 G3 806R 8SFF Configure-to-order Server - To be\ndelivered\n - HPE Cloudline CL2200 G3 1211R 12 LFF Configure-to-order Server - To be\ndelivered\n\nBACKGROUND\n\n CVSS Base Metrics\n =================\n Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector\n\n CVE-2017-5715\n 8.2 CVSS:3.0/AV:A/AC:L/PR:N/UI:N/S:C/C:H/I:L/A:N\n 6.8 (AV:A/AC:L/Au:N/C:C/I:P/A:N)\n\n CVE-2017-5753\n 5.0 CVSS:3.0/AV:A/AC:H/PR:L/UI:R/S:C/C:L/I:L/A:L\n 5.4 (AV:A/AC:M/Au:N/C:P/I:P/A:P)\n\n CVE-2017-5754\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:N/A:N\n 7.8 (AV:N/AC:L/Au:N/C:C/I:N/A:N)\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\nOn January 11, Intel announced issues with an increased frequency of reboots\nwhen using the microcodes they released to address Variant 2 of the Spectre\nVulnerability for numerous processors including Broadwell, Haswell, Skylake,\nKaby Lake, Ivybridge, and Sandybridge processors. Intel has now identified\nthe root cause of these issues and determined that these microcodes may\nintroduce reboots and other unpredictable system behavior. Due to the\nseverity of the potential issues that may occur when using these microcodes,\nIntel is now recommending that customers discontinue their use. Additional\ninformation is available from Intels Security Exploit Newsroom here:\n\u003chttps://newsroom.intel.com/press-kits/security-exploits-intel-products/\u003e . \nHPE is in alignment with Intel in our recommendation that customers\ndiscontinue use of System ROMs including impacted microcodes and revert to\nearlier System ROM versions. \n\nAll System ROMs including impacted microcodes have been removed from the HPE\nSupport Site. This impacts HPE ProLiant and Synergy Gen10, Gen9, and Gen8 v2\nservers as well as HPE Superdome servers for which updated System ROMs had\npreviously been made available. Intel is working on updated microcodes to\naddress these issues, and HPE will validate updated System ROMs including\nthese microcodes and make them available to our customers in the coming\nweeks. \n\nMitigations for Variant 1 (Spectre) and Variant 3 (Meltdown) vulnerabilities\nrequire only OS updates and are not impacted. \n\n * HPE has provided a customer bulletin\n\u003chttps://support.hpe.com/hpsc/doc/public/display?docId=emr_na-a00039267en_us\u003e\nwith specific instructions to obtain the udpated sytem ROM\n \n - Note:\n \n + CVE-2017-5715 (Variant 2) requires that the System ROM be updated and a\nvendor supplied operating system update be applied as well. \n + For CVE-2017-5753, CVE-2017-5754 (Variants 1 and 3) require only\nupdates of a vendor supplied operating system. \n + HPE will continue to add additional products to the list. \n\nHISTORY\n\nVersion:1 (rev.1) - 4 January 2018 Initial release\n\nVersion:2 (rev.2) - 5 January 2018 Added additional impacted products\n\nVersion:3 (rev.3) - 10 January 2018 Added more impacted products\n\nVersion:4 (rev.4) - 9 January 2018 Fixed product ID\n\nVersion:5 (rev.5) - 18 January 2018 Added additional impacted products\n\nVersion:6 (rev.6) - 19 January 2018 updated impacted product list\n\nVersion:7 (rev.7) - 23 January 2018 Marked impacted products with TBD for\nSystem ROM updates per Intel\u0027s guidance on microcode issues\n\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-2018-1-8-2 macOS High Sierra 10.13.2 Supplemental Update\n\nmacOS High Sierra 10.13.2 Supplemental Update is now available\nand addresses the following:\n\nAvailable for: macOS High Sierra 10.13.2\nDescription: macOS High Sierra 10.13.2 Supplemental Update includes\nsecurity improvements to Safari and WebKit to mitigate the effects of\nSpectre (CVE-2017-5753 and CVE-2017-5715). \n\nWe would like to acknowledge Jann Horn of Google Project Zero; and\nPaul Kocher in collaboration with Daniel Genkin of University of\nPennsylvania and University of Maryland, Daniel Gruss of Graz\nUniversity of Technology, Werner Haas of Cyberus Technology,\nMike Hamburg of Rambus (Cryptography Research Division),\nMoritz Lipp of Graz University of Technology, Stefan Mangard of\nGraz University of Technology, Thomas Prescher of Cyberus Technology,\nMichael Schwarz of Graz University of Technology, and Yuval Yarom of\nUniversity of Adelaide and Data61 for their assistance. \n\nInstallation note:\n\nmacOS High Sierra 10.13.2 Supplemental Update may be obtained from\nthe Mac App Store or Apple\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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\nU1316sNsG/gmTuOx7wO6sqyOkYyPGZzDI882U8un+n8=\n=r0HS\n-----END PGP SIGNATURE-----\n. The vulnerability could be exploited to Local Disclosure of\nInformation. \n\nReferences:\n\n - CVE-2017-5753\n - CVE-2017-5715\n - CVE-2017-5754\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\n - HP Virtualization Performance Viewer Software - v2.20, v3.0, v3.01,\nv3.02, v3.03\n - HPE Cloud Optimizer - v2.20, v3.0, v3.01, v3.02, v3.03\n\nBACKGROUND\n\n CVSS Base Metrics\n =================\n Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector\n\n\nRESOLUTION\n\nMicro Focus is actively working with its vendors to address any systems-level\nSpectre and Meltdown impacts.However, if you have immediate concerns or\nquestions regarding CentOS and its approach to Spectre or Meltdown, please\ncontact them directly. \n Please note that you will need to sign in using a Passport account. \n\n3P = 3rd Party Software\nGN = Micro Focus General Software\nMU = Multi-Platform Software\n\nSystem management and security procedures must be reviewed frequently to maintain system integrity. \nMicro Focus is continually reviewing and enhancing the security features of software products to provide \ncustomers with current secure solutions. \n\n\"Micro Focus is broadly distributing this Security Bulletin in order to bring to the attention of users of the \naffected Micro Focus products the important security information contained in this Bulletin. Micro Focus recommends \nthat all users determine the applicability of this information to their individual situations and take appropriate action. \nMicro Focus does not warrant that this information is necessarily accurate or complete for all user situations and, consequently, \nMicro Focus will not be responsible for any damages resulting from user\u0027s use or disregard of the information provided in \nthis Security Bulletin. To the extent permitted by law, Micro Focus disclaims all warranties, either express or \nimplied, including the warranties of merchantability and fitness for a particular purpose, title and non-infringement.\" \n\n\nCopyright 2017 EntIT Software LLC\n\nMicro Focus shall not be liable for technical or editorial errors or omissions contained herein. 6.6) - noarch, x86_64\n\n3",
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VAR-201801-0826
Vulnerability from variot - Updated: 2026-03-09 21:54Systems with microprocessors utilizing speculative execution and indirect branch prediction may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis. 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 a set of firmware that runs in the CPU (Central Processing Unit) for managing and controlling the CPU. The Meltdown vulnerability exists in the CPU processor core, which \"melts\" the security boundary implemented by hardware, allowing low-privileged user-level applications to \"cross-border\" access to system-level memory, causing data leakage. The following products and versions are affected: ARM Cortex-R7; Cortex-R8; Cortex-A8; Cortex-A9; Cortex-A12; Intel Xeon CPU E5-1650 v3, v2, v4 versions; Xeon E3-1265l v2, v3, v4 Version; Xeon E3-1245 v2, v3, v5, v6 versions; Xeon X7542, etc. Description:
The microcode_ctl packages provide microcode updates for Intel and AMD processors. 7) - x86_64
- Description:
Kernel-based Virtual Machine (KVM) is a full virtualization solution for Linux on a variety of architectures. The qemu-kvm package provides the user-space component for running virtual machines that use KVM. (CVE-2017-5715)
Note: This is the qemu-kvm side of the CVE-2017-5715 mitigation. Once all virtual machines have shut down, start them again for this update to take effect. (CVE-2017-17712)
Laurent Guerby discovered that the mbcache feature in the ext2 and ext4 filesystems in the Linux kernel improperly handled xattr block caching. ========================================================================== Ubuntu Security Notice USN-3777-3 October 23, 2018
linux-azure vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 18.04 LTS
- Ubuntu 16.04 LTS
Summary:
Several security issues were fixed in the Linux kernel.
Jann Horn discovered that the vmacache subsystem did not properly handle sequence number overflows, leading to a use-after-free vulnerability. A local attacker could use this to cause a denial of service (system crash) or execute arbitrary code. (CVE-2018-17182)
It was discovered that the paravirtualization implementation in the Linux kernel did not properly handle some indirect calls, reducing the effectiveness of Spectre v2 mitigations for paravirtual guests. A local attacker could use this to expose sensitive information. An attacker could use this to expose sensitive information. This flaw is known as Spectre. A local attacker could use this to expose sensitive information, including kernel memory. (CVE-2017-5715)
It was discovered that a stack-based buffer overflow existed in the iSCSI target implementation of the Linux kernel. A remote attacker could use this to cause a denial of service (system crash). A local attacker could use this to expose sensitive information, including kernel memory. (CVE-2018-3639)
It was discovered that a memory leak existed in the IRDA subsystem of the Linux kernel. A local attacker could use this to cause a denial of service (kernel memory exhaustion). A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-6555)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 18.04 LTS: linux-image-4.15.0-1025-azure 4.15.0-1025.26 linux-image-azure 4.15.0.1025.25
Ubuntu 16.04 LTS: linux-image-4.15.0-1025-azure 4.15.0-1025.26~16.04.1 linux-image-azure 4.15.0.1025.31
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. On i386 and amd64 architectures, the IBRS and IBPB features are required to enable the kernel mitigations. Ubuntu users with a processor from a different vendor should contact the vendor to identify necessary firmware updates. Ubuntu will provide corresponding QEMU updates in the future for users of self-hosted virtual environments in coordination with upstream QEMU. 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. Regressions were discovered in the microcode updates which could cause system instability on certain hardware platforms. At the request of Intel, we have reverted to the previous packaged microcode version, the 20170707 release. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: kernel security update Advisory ID: RHSA-2018:0009-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:0009 Issue date: 2018-01-03 =====================================================================
- Summary:
An update for kernel is now available for Red Hat Enterprise Linux 7.3 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. 7.3) - noarch, x86_64 Red Hat Enterprise Linux ComputeNode Optional EUS (v. 7.3) - x86_64 Red Hat Enterprise Linux Server EUS (v. 7.3) - noarch, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional EUS (v. 7.3) - ppc64, ppc64le, x86_64
- Description:
The kernel packages contain the Linux kernel, the core of any Linux operating system.
Security Fix(es):
An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited.
Note: This issue is present in hardware and cannot be fully fixed via software update. The updated kernel packages provide software mitigation for this hardware issue at a cost of potential performance penalty. Please refer to References section for further information about this issue and the performance impact.
In this update mitigations for x86-64 architecture are provided.
Variant CVE-2017-5753 triggers the speculative execution by performing a bounds-check bypass. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation 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 cross the syscall boundary and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5753, Important)
Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation 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 cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715, Important)
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. In a combination with the fact that memory accesses may populate the cache even when the block is being dropped and never committed (executed), an unprivileged local attacker could use this flaw to read privileged (kernel space) memory by conducting targeted cache side-channel attacks. (CVE-2017-5754, Important)
Note: CVE-2017-5754 affects Intel x86-64 microprocessors. AMD x86-64 microprocessors are not affected by this issue.
Red Hat would like to thank Google Project Zero for reporting these issues.
- 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/):
1519778 - CVE-2017-5753 hw: cpu: speculative execution bounds-check bypass 1519780 - CVE-2017-5715 hw: cpu: speculative execution branch target injection 1519781 - CVE-2017-5754 hw: cpu: speculative execution permission faults handling
- Package List:
Red Hat Enterprise Linux ComputeNode EUS (v. 7.3):
Source: kernel-3.10.0-514.36.5.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-514.36.5.el7.noarch.rpm kernel-doc-3.10.0-514.36.5.el7.noarch.rpm
x86_64: kernel-3.10.0-514.36.5.el7.x86_64.rpm kernel-debug-3.10.0-514.36.5.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-debug-devel-3.10.0-514.36.5.el7.x86_64.rpm kernel-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-514.36.5.el7.x86_64.rpm kernel-devel-3.10.0-514.36.5.el7.x86_64.rpm kernel-headers-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-libs-3.10.0-514.36.5.el7.x86_64.rpm perf-3.10.0-514.36.5.el7.x86_64.rpm perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm python-perf-3.10.0-514.36.5.el7.x86_64.rpm python-perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional EUS (v. 7.3):
x86_64: kernel-debug-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-514.36.5.el7.x86_64.rpm perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm python-perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm
Red Hat Enterprise Linux Server EUS (v. 7.3):
Source: kernel-3.10.0-514.36.5.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-514.36.5.el7.noarch.rpm kernel-doc-3.10.0-514.36.5.el7.noarch.rpm
ppc64: kernel-3.10.0-514.36.5.el7.ppc64.rpm kernel-bootwrapper-3.10.0-514.36.5.el7.ppc64.rpm kernel-debug-3.10.0-514.36.5.el7.ppc64.rpm kernel-debug-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm kernel-debug-devel-3.10.0-514.36.5.el7.ppc64.rpm kernel-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-514.36.5.el7.ppc64.rpm kernel-devel-3.10.0-514.36.5.el7.ppc64.rpm kernel-headers-3.10.0-514.36.5.el7.ppc64.rpm kernel-tools-3.10.0-514.36.5.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm kernel-tools-libs-3.10.0-514.36.5.el7.ppc64.rpm perf-3.10.0-514.36.5.el7.ppc64.rpm perf-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm python-perf-3.10.0-514.36.5.el7.ppc64.rpm python-perf-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm
ppc64le: kernel-3.10.0-514.36.5.el7.ppc64le.rpm kernel-bootwrapper-3.10.0-514.36.5.el7.ppc64le.rpm kernel-debug-3.10.0-514.36.5.el7.ppc64le.rpm kernel-debug-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm kernel-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-514.36.5.el7.ppc64le.rpm kernel-devel-3.10.0-514.36.5.el7.ppc64le.rpm kernel-headers-3.10.0-514.36.5.el7.ppc64le.rpm kernel-tools-3.10.0-514.36.5.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm kernel-tools-libs-3.10.0-514.36.5.el7.ppc64le.rpm perf-3.10.0-514.36.5.el7.ppc64le.rpm perf-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm python-perf-3.10.0-514.36.5.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm
s390x: kernel-3.10.0-514.36.5.el7.s390x.rpm kernel-debug-3.10.0-514.36.5.el7.s390x.rpm kernel-debug-debuginfo-3.10.0-514.36.5.el7.s390x.rpm kernel-debug-devel-3.10.0-514.36.5.el7.s390x.rpm kernel-debuginfo-3.10.0-514.36.5.el7.s390x.rpm kernel-debuginfo-common-s390x-3.10.0-514.36.5.el7.s390x.rpm kernel-devel-3.10.0-514.36.5.el7.s390x.rpm kernel-headers-3.10.0-514.36.5.el7.s390x.rpm kernel-kdump-3.10.0-514.36.5.el7.s390x.rpm kernel-kdump-debuginfo-3.10.0-514.36.5.el7.s390x.rpm kernel-kdump-devel-3.10.0-514.36.5.el7.s390x.rpm perf-3.10.0-514.36.5.el7.s390x.rpm perf-debuginfo-3.10.0-514.36.5.el7.s390x.rpm python-perf-3.10.0-514.36.5.el7.s390x.rpm python-perf-debuginfo-3.10.0-514.36.5.el7.s390x.rpm
x86_64: kernel-3.10.0-514.36.5.el7.x86_64.rpm kernel-debug-3.10.0-514.36.5.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-debug-devel-3.10.0-514.36.5.el7.x86_64.rpm kernel-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-514.36.5.el7.x86_64.rpm kernel-devel-3.10.0-514.36.5.el7.x86_64.rpm kernel-headers-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-libs-3.10.0-514.36.5.el7.x86_64.rpm perf-3.10.0-514.36.5.el7.x86_64.rpm perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm python-perf-3.10.0-514.36.5.el7.x86_64.rpm python-perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm
Red Hat Enterprise Linux Server Optional EUS (v. 7.3):
ppc64: kernel-debug-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm kernel-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-514.36.5.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm kernel-tools-libs-devel-3.10.0-514.36.5.el7.ppc64.rpm perf-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm python-perf-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm
ppc64le: kernel-debug-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm kernel-debug-devel-3.10.0-514.36.5.el7.ppc64le.rpm kernel-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-514.36.5.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm kernel-tools-libs-devel-3.10.0-514.36.5.el7.ppc64le.rpm perf-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm
x86_64: kernel-debug-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-514.36.5.el7.x86_64.rpm perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm python-perf-debuginfo-3.10.0-514.36.5.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/updates/classification/#important https://access.redhat.com/security/vulnerabilities/speculativeexecution https://access.redhat.com/security/cve/CVE-2017-5753 https://access.redhat.com/security/cve/CVE-2017-5715 https://access.redhat.com/security/cve/CVE-2017-5754
- 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
Show details on source website{
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"data": "Systems with microprocessors utilizing speculative execution and indirect branch prediction may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis. 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 a set of firmware that runs in the CPU (Central Processing Unit) for managing and controlling the CPU. The Meltdown vulnerability exists in the CPU processor core, which \\\"melts\\\" the security boundary implemented by hardware, allowing low-privileged user-level applications to \\\"cross-border\\\" access to system-level memory, causing data leakage. The following products and versions are affected: ARM Cortex-R7; Cortex-R8; Cortex-A8; Cortex-A9; Cortex-A12; Intel Xeon CPU E5-1650 v3, v2, v4 versions; Xeon E3-1265l v2, v3, v4 Version; Xeon E3-1245 v2, v3, v5, v6 versions; Xeon X7542, etc. Description:\n\nThe microcode_ctl packages provide microcode updates for Intel and AMD\nprocessors. 7) - x86_64\n\n3. Description:\n\nKernel-based Virtual Machine (KVM) is a full virtualization solution for\nLinux on a variety of architectures. The qemu-kvm package provides the\nuser-space component for running virtual machines that use KVM. (CVE-2017-5715)\n\nNote: This is the qemu-kvm side of the CVE-2017-5715 mitigation. Once\nall virtual machines have shut down, start them again for this update to\ntake effect. (CVE-2017-17712)\n\nLaurent Guerby discovered that the mbcache feature in the ext2 and ext4\nfilesystems in the Linux kernel improperly handled xattr block caching. ==========================================================================\nUbuntu Security Notice USN-3777-3\nOctober 23, 2018\n\nlinux-azure vulnerabilities\n==========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 18.04 LTS\n- Ubuntu 16.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in the Linux kernel. \n\nJann Horn discovered that the vmacache subsystem did not properly handle\nsequence number overflows, leading to a use-after-free vulnerability. A\nlocal attacker could use this to cause a denial of service (system crash)\nor execute arbitrary code. (CVE-2018-17182)\n\nIt was discovered that the paravirtualization implementation in the Linux\nkernel did not properly handle some indirect calls, reducing the\neffectiveness of Spectre v2 mitigations for paravirtual guests. A local\nattacker could use this to expose sensitive information. An attacker could use\nthis to expose sensitive information. This flaw is known as Spectre. A local attacker could use this to\nexpose sensitive information, including kernel memory. (CVE-2017-5715)\n\nIt was discovered that a stack-based buffer overflow existed in the iSCSI\ntarget implementation of the Linux kernel. A remote attacker could use this\nto cause a denial of service (system crash). A local\nattacker could use this to expose sensitive information, including kernel\nmemory. (CVE-2018-3639)\n\nIt was discovered that a memory leak existed in the IRDA subsystem of the\nLinux kernel. A local attacker could use this to cause a denial of service\n(kernel memory exhaustion). A local attacker could use this to\ncause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2018-6555)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 18.04 LTS:\n linux-image-4.15.0-1025-azure 4.15.0-1025.26\n linux-image-azure 4.15.0.1025.25\n\nUbuntu 16.04 LTS:\n linux-image-4.15.0-1025-azure 4.15.0-1025.26~16.04.1\n linux-image-azure 4.15.0.1025.31\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. On i386 and amd64\narchitectures, the IBRS and IBPB features are required to enable the\nkernel mitigations. Ubuntu users with a processor from a different vendor should\ncontact the vendor to identify necessary firmware updates. Ubuntu\nwill provide corresponding QEMU updates in the future for users of\nself-hosted virtual environments in coordination with upstream QEMU. \nUbuntu users in cloud environments should contact the cloud provider\nto confirm that the hypervisor has been updated to expose the new\nCPU features to virtual machines. Regressions\nwere discovered in the microcode updates which could cause system\ninstability on certain hardware platforms. At the request of Intel, we have\nreverted to the previous packaged microcode version, the 20170707 release. \n-----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: kernel security update\nAdvisory ID: RHSA-2018:0009-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:0009\nIssue date: 2018-01-03\n=====================================================================\n\n1. Summary:\n\nAn update for kernel is now available for Red Hat Enterprise Linux 7.3\nExtended 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. 7.3) - noarch, x86_64\nRed Hat Enterprise Linux ComputeNode Optional EUS (v. 7.3) - x86_64\nRed Hat Enterprise Linux Server EUS (v. 7.3) - noarch, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional EUS (v. 7.3) - ppc64, ppc64le, 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\nAn industry-wide issue was found in the way many modern microprocessor\ndesigns have implemented speculative execution of instructions (a commonly\nused performance optimization). There are three primary variants of the\nissue which differ in the way the speculative execution can be exploited. \n\nNote: This issue is present in hardware and cannot be fully fixed via\nsoftware update. The updated kernel packages provide software mitigation\nfor this hardware issue at a cost of potential performance penalty. Please\nrefer to References section for further information about this issue and\nthe performance impact. \n\nIn this update mitigations for x86-64 architecture are provided. \n\nVariant CVE-2017-5753 triggers the speculative execution by performing a\nbounds-check bypass. It relies on the presence of a precisely-defined\ninstruction sequence in the privileged code as well as the fact that memory\naccesses may cause allocation into the microprocessor\u0027s data cache even for\nspeculatively executed instructions that never actually commit (retire). As\na result, an unprivileged attacker could use this flaw to cross the syscall\nboundary and read privileged memory by conducting targeted cache\nside-channel attacks. (CVE-2017-5753, Important)\n\nVariant CVE-2017-5715 triggers the speculative execution by utilizing\nbranch target injection. It relies on the presence of a precisely-defined\ninstruction sequence in the privileged code as well as the fact that memory\naccesses may cause allocation into the microprocessor\u0027s data cache even for\nspeculatively executed instructions that never actually commit (retire). As\na result, an unprivileged attacker could use this flaw to cross the syscall\nand guest/host boundaries and read privileged memory by conducting targeted\ncache side-channel attacks. (CVE-2017-5715, Important)\n\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. In a combination with the fact\nthat memory accesses may populate the cache even when the block is being\ndropped and never committed (executed), an unprivileged local attacker\ncould use this flaw to read privileged (kernel space) memory by conducting\ntargeted cache side-channel attacks. (CVE-2017-5754, Important)\n\nNote: CVE-2017-5754 affects Intel x86-64 microprocessors. AMD x86-64\nmicroprocessors are not affected by this issue. \n\nRed Hat would like to thank Google Project Zero for reporting these issues. \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\n1519778 - CVE-2017-5753 hw: cpu: speculative execution bounds-check bypass\n1519780 - CVE-2017-5715 hw: cpu: speculative execution branch target injection\n1519781 - CVE-2017-5754 hw: cpu: speculative execution permission faults handling\n\n6. Package List:\n\nRed Hat Enterprise Linux ComputeNode EUS (v. 7.3):\n\nSource:\nkernel-3.10.0-514.36.5.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-514.36.5.el7.noarch.rpm\nkernel-doc-3.10.0-514.36.5.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debug-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-devel-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-headers-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-514.36.5.el7.x86_64.rpm\nperf-3.10.0-514.36.5.el7.x86_64.rpm\nperf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\npython-perf-3.10.0-514.36.5.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional EUS (v. 7.3):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-514.36.5.el7.x86_64.rpm\nperf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server EUS (v. 7.3):\n\nSource:\nkernel-3.10.0-514.36.5.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-514.36.5.el7.noarch.rpm\nkernel-doc-3.10.0-514.36.5.el7.noarch.rpm\n\nppc64:\nkernel-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-bootwrapper-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-debug-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-debug-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-debug-devel-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-devel-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-headers-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-tools-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-tools-libs-3.10.0-514.36.5.el7.ppc64.rpm\nperf-3.10.0-514.36.5.el7.ppc64.rpm\nperf-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\npython-perf-3.10.0-514.36.5.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\n\nppc64le:\nkernel-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-bootwrapper-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-debug-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-debug-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-devel-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-headers-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-tools-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-tools-libs-3.10.0-514.36.5.el7.ppc64le.rpm\nperf-3.10.0-514.36.5.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\npython-perf-3.10.0-514.36.5.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\n\ns390x:\nkernel-3.10.0-514.36.5.el7.s390x.rpm\nkernel-debug-3.10.0-514.36.5.el7.s390x.rpm\nkernel-debug-debuginfo-3.10.0-514.36.5.el7.s390x.rpm\nkernel-debug-devel-3.10.0-514.36.5.el7.s390x.rpm\nkernel-debuginfo-3.10.0-514.36.5.el7.s390x.rpm\nkernel-debuginfo-common-s390x-3.10.0-514.36.5.el7.s390x.rpm\nkernel-devel-3.10.0-514.36.5.el7.s390x.rpm\nkernel-headers-3.10.0-514.36.5.el7.s390x.rpm\nkernel-kdump-3.10.0-514.36.5.el7.s390x.rpm\nkernel-kdump-debuginfo-3.10.0-514.36.5.el7.s390x.rpm\nkernel-kdump-devel-3.10.0-514.36.5.el7.s390x.rpm\nperf-3.10.0-514.36.5.el7.s390x.rpm\nperf-debuginfo-3.10.0-514.36.5.el7.s390x.rpm\npython-perf-3.10.0-514.36.5.el7.s390x.rpm\npython-perf-debuginfo-3.10.0-514.36.5.el7.s390x.rpm\n\nx86_64:\nkernel-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debug-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-devel-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-headers-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-514.36.5.el7.x86_64.rpm\nperf-3.10.0-514.36.5.el7.x86_64.rpm\nperf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\npython-perf-3.10.0-514.36.5.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional EUS (v. 7.3):\n\nppc64:\nkernel-debug-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\nkernel-tools-libs-devel-3.10.0-514.36.5.el7.ppc64.rpm\nperf-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-514.36.5.el7.ppc64.rpm\n\nppc64le:\nkernel-debug-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-debug-devel-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\nkernel-tools-libs-devel-3.10.0-514.36.5.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-514.36.5.el7.ppc64le.rpm\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-514.36.5.el7.x86_64.rpm\nperf-debuginfo-3.10.0-514.36.5.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-514.36.5.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/updates/classification/#important\nhttps://access.redhat.com/security/vulnerabilities/speculativeexecution\nhttps://access.redhat.com/security/cve/CVE-2017-5753\nhttps://access.redhat.com/security/cve/CVE-2017-5715\nhttps://access.redhat.com/security/cve/CVE-2017-5754\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\niD8DBQFaTW74XlSAg2UNWIIRAhXJAKCJMCaZ0NVTHbMZVqJo/apc0riu6gCeKrRp\nV5hk1dX+MUEGL5NsOPmBa6w=\n=ki2K\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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VAR-201801-1711
Vulnerability from variot - Updated: 2026-03-09 21:41Systems with microprocessors utilizing speculative execution and indirect branch prediction may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis of the data cache. Two vulnerabilities are identified, known as "Variant 3a" and "Variant 4". CPUhardware is a set of firmware that runs in the CPU (Central Processing Unit) for managing and controlling the CPU. The Spectre vulnerability exists in the CPU processor core. Because Intel does not separate low-privileged applications from accessing kernel memory, an attacker can use a malicious application to obtain private data that should be quarantined. Qualcomm Closed-Source Components are prone to multiple unspecified vulnerabilities. An attacker can exploit these issues to perform unauthorized actions. This may aid in further attacks. These issues are being tracked by Android Bug IDs A-78135902, A-66913713, A-67712316, A-79419833, A-109678200, A-78283451, A-78285196, A-78284194, A-78284753, A-78284517, A-78240177, A-78239686, A-78284545, A-109660689, A-78240324, A-68141338, A-78286046, A-73539037, A-73539235, A-71501115, A-33757308, A-74236942, A-77485184, A-77484529, A-33385206, A-79419639, A-79420511, A-109678338, and A-112279564. Intel and ARM CPU chips have an information disclosure vulnerability, which originates from a flaw in the processor data boundary mechanism. The following products and versions are affected: ARM Cortex-A75; Intel Xeon E5-1650 v3, v2, v4; Xeon E3-1265l v2, v3, v4; Xeon E3-1245 v2, v3, v5, v6; Xeon X7542 wait. Relevant releases/architectures:
Image Updates for RHV-H - noarch
- These packages include redhat-release-virtualization-host, ovirt-node, and rhev-hypervisor. RHVH features a Cockpit user interface for monitoring the host's resources and performing administrative tasks. ========================================================================== Ubuntu Security Notice USN-3522-4 January 10, 2018
linux-lts-xenial regression
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 14.04 LTS
Summary:
USN-3522-2 introduced a regression in the Linux Hardware Enablement kernel. Unfortunately, that update introduced a regression where a few systems failed to boot successfully. This update fixes the problem.
We apologize for the inconvenience.
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 14.04 LTS: linux-image-4.4.0-109-generic 4.4.0-109.132~14.04.1 linux-image-4.4.0-109-lowlatency 4.4.0-109.132~14.04.1 linux-image-generic-lts-xenial 4.4.0.109.92 linux-image-lowlatency-lts-xenial 4.4.0.109.92
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.
This specific attack has been named Meltdown and is addressed in the Linux kernel for the Intel x86-64 architecture by a patch set named Kernel Page Table Isolation, enforcing a near complete separation of the kernel and userspace address maps and preventing the attack. This solution might have a performance impact, and can be disabled at boot time by passing `pti=off' to the kernel command line.
We also identified a regression for ancient userspaces using the vsyscall interface, for example chroot and containers using (e)glibc 2.13 and older, including those based on Debian 7 or RHEL/CentOS 6.
The other vulnerabilities (named Spectre) published at the same time are not addressed in this update and will be fixed in a later update.
For the stable distribution (stretch), this problem has been fixed in version 4.9.65-3+deb9u2.
For the detailed security status of linux please refer to its security tracker page at: https://security-tracker.debian.org/tracker/linux
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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Note: the current version of the following document is available here: https://h20564.www2.hpe.com/hpsc/doc/public/display?docId=emr_na-hpesbhf03805en_us
SUPPORT COMMUNICATION - SECURITY BULLETIN
Document ID: hpesbhf03805en_us Version: 4
HPESBHF03805 rev.4 - Certain HPE products using Microprocessors from Intel, AMD, and ARM, with Speculative Execution, Elevation of Privilege and Information Disclosure.
NOTICE: The information in this Security Bulletin should be acted upon as soon as possible.
Release Date: 2018-01-10 Last Updated: 2018-01-09
Potential Security Impact: Local: Disclosure of Information, Elevation of Privilege
Source: Hewlett Packard Enterprise, Product Security Response Team
VULNERABILITY SUMMARY On January 3 2018, side-channel security vulnerabilities involving speculative execution were publicly disclosed. These vulnerabilities may impact the listed HPE products, potentially leading to information disclosure and elevation of privilege. Mitigation and resolution of these vulnerabilities may call for both an operating system update, provided by the OS vendor, and a system ROM update from HPE.
Note:
- This issue takes advantage of techniques commonly used in many modern processor architectures.
-
For further information, microprocessor vendors have provided security advisories:
References:
- PSRT110634
- PSRT110633
- PSRT110632
- CVE-2017-5715 - aka Spectre, branch target injection
- CVE-2017-5753 - aka Spectre, bounds check bypass
- CVE-2017-5754 - aka Meltdown, rogue data cache load, memory access permission check performed after kernel memory read
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
- HPE ProLiant DL380 Gen10 Server prior to v1.28
- HPE ProLiant DL180 Gen10 Server prior to v1.28
- HPE ProLiant DL160 Gen10 Server prior to v1.28
- HPE ProLiant DL360 Gen10 Server prior to v1.28
- HPE ProLiant ML110 Gen10 Server prior to v1.28
- HPE ProLiant DL580 Gen10 Server prior to v1.28
- HPE ProLiant DL560 Gen10 Server prior to v1.28
- HPE ProLiant DL120 Gen10 Server prior to v1.28
- HPE ProLiant ML350 Gen10 Server prior to v1.28
- HPE ProLiant XL450 Gen10 Server prior to v1.28
- HPE ProLiant XL170r Gen10 Server prior to v1.28
- HPE ProLiant BL460c Gen10 Server Blade prior to v1.28
- HPE ProLiant XL230a Gen9 Server prior to v2.54
- HPE ProLiant XL230k Gen10 Server prior to v1.28
- HPE ProLiant XL730f Gen9 Server prior to v2.54
- HPE ProLiant XL740f Gen9 Server prior to v2.54
- HPE ProLiant XL750f Gen9 Server prior to v2.54
- HPE ProLiant XL170r Gen9 Server prior to v2.54
- HP ProLiant DL60 Gen9 Server prior to v2.54
- HPE ProLiant XL450 Gen9 Server prior to v2.54
- HP ProLiant DL160 Gen9 Server prior to v2.54
- HPE Apollo 4200 Gen9 Server prior to v2.54
- HP ProLiant BL460c Gen9 Server Blade prior to v2.54
- HP ProLiant ML110 Gen9 Server prior to v2.54
- HP ProLiant ML150 Gen9 Server prior to v2.54
- HPE ProLiant ML350 Gen9 Server prior to v2.54
- HP ProLiant DL380 Gen9 Server prior to v2.54
- HP ProLiant DL120 Gen9 Server prior to v2.54
- HPE ProLiant DL560 Gen9 Server prior to v2.54
- HPE ProLiant XL270d Gen9 Special Server prior to v2.54
- HP ProLiant BL660c Gen9 Server prior to v2.54
- HPE ProLiant m710x Server Cartridge prior to v1.60
- HPE ProLiant DL20 Gen9 Server prior to v2.52
- HPE ProLiant DL385 Gen10 Server prior to v1.04
- HPE Synergy 660 Gen9 Compute Module prior to v2.54
- HPE Synergy 480 Gen10 Compute Module prior to v1.28
- HPE Synergy 480 Gen9 Compute Module prior to v2.54
- HPE ProLiant ML30 Gen9 Server prior to v2.52
- HPE ProLiant XL190r Gen10 Server prior to v1.28
- HPE ProLiant XL250a Gen9 Server prior to v2.54
- HPE ProLiant XL190r Gen9 Server prior to v2.54
- HP ProLiant DL80 Gen9 Server prior to v2.54
- HPE ProLiant DL180 Gen9 Server prior to v2.54
- HPE ProLiant XL270d Gen9 Accelerator Tray 2U Configure-to-order Server prior to v2.54
- HPE ProLiant WS460c Gen9 Workstation prior to v2.54
- HPE ProLiant DL580 Gen9 Special Server prior to v2.54
- HPE Synergy 680 Gen9 Compute Modules prior to v2.54
- HPE ProLiant XL260a Gen9 Server prior to 1/22/2018
- HPE ProLiant m510 Server Cartridge prior to 1/22/2018
- HPE ProLiant m710p Server Cartridge prior to 12/12/2017
- HP ProLiant m350 Server Cartridge prior to 12/12/2017
- HP ProLiant m300 Server Cartridge prior to 12/12/2017
- HP ProLiant ML350e Gen8 Server prior to 12/12/2017
- HPE ProLiant ML350e Gen8 v2 Server prior to 12/12/2017
- HP ProLiant BL460c Gen8 Server prior to 12/12/2017
- HP ProLiant BL660c Gen8 Server prior to 12/12/2017
- HPE ProLiant SL4540 Gen8 1 Node Server prior to 12/12/2017
- HP ProLiant DL380e Gen8 Server prior to 12/12/2017
- HP ProLiant DL360e Gen8 Server prior to 12/12/2017
- HP ProLiant ML350p Gen8 Server prior to 12/12/2017
- HP ProLiant DL360p Gen8 Server prior to 12/12/2017
- HP ProLiant DL380p Gen8 Server prior to 12/12/2017
- HP ProLiant DL320e Gen8 Server prior to 12/12/2017
- HPE ProLiant DL320e Gen8 v2 Server prior to 12/12/2017
- HP ProLiant ML310e Gen8 Server prior to 12/12/2017
- HPE ProLiant ML310e Gen8 v2 Server prior to 12/12/2017
- HP ProLiant DL160 Gen8 Server prior to 12/12/2017
- HP ProLiant SL270s Gen8 Server prior to 12/12/2017
- HP ProLiant SL250s Gen8 Server prior to 12/12/2017
- HP ProLiant SL230s Gen8 Server prior to 12/12/2017
- HP ProLiant DL560 Gen8 Server prior to 12/12/2017
- HPE ProLiant SL210t Gen8 Server prior to 12/12/2017
- HP ProLiant DL580 Gen8 Server prior to 12/12/2017 (v1.98)
- HP ProLiant ML10 Server prior to 12/12/2017
- HP ProLiant m710 Server Cartridge prior to 12/12/2017 (v1.60)
- HPE Synergy Composer prior to 12/12/2017
- HPE Integrity Superdome X with BL920s Blades prior to 8.8.6
- HPE Superdome Flex Server prior to 2.3.110
- HP ProLiant DL360 Gen9 Server prior to v2.54
- HPE Synergy 620 Gen9 Compute Module prior to v2.54
- HPE ProLiant Thin Micro TM200 Server prior to 1/16/2017
- HPE ProLiant ML350 Gen10 Server prior to v1.28
- HP ProLiant BL420c Gen8 Server prior to 12/12/2017
- HPE ProLiant ML10 v2 Server prior to 12/12/2017
- HPE ProLiant MicroServer Gen8 prior to 12/12/2017
- HPE Synergy 660 Gen10 Compute Module prior to v1.28
BACKGROUND
CVSS Base Metrics ================= Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector
CVE-2017-5715
8.2 CVSS:3.0/AV:A/AC:L/PR:N/UI:N/S:C/C:H/I:L/A:N
6.8 (AV:A/AC:L/Au:N/C:C/I:P/A:N)
CVE-2017-5753
5.0 CVSS:3.0/AV:A/AC:H/PR:L/UI:R/S:C/C:L/I:L/A:L
5.4 (AV:A/AC:M/Au:N/C:P/I:P/A:P)
CVE-2017-5754
7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:N/A:N
7.8 (AV:N/AC:L/Au:N/C:C/I:N/A:N)
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 system ROM updates which include an updated microcode to resolve the vulnerability:
-
HPE has provided a customer bulletin https://support.hpe.com/hpsc/doc/public/display?docId=emr_na-a00039267en_us with specific instructions to obtain the udpated sytem ROM
-
Note:
- CVE-2017-5715 requires that the System ROM be updated and a vendor supplied operating system update be applied as well.
- For CVE-2017-5753, CVE-2017-5754 require only updates of a vendor supplied operating system.
- HPE will continue to add additional products to the list. Not all listed products have updated system ROMs yet. Impacted products awaiting system ROM updates are marked TBS (to be supplied).
HISTORY
Version:1 (rev.1) - 4 January 2018 Initial release
Version:2 (rev.2) - 5 January 2018 Added additional impacted products
Version:3 (rev.3) - 10 January 2018 Added more impacted products
Version:4 (rev.4) - 9 January 2018 Fixed product ID
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-18:03.speculative_execution Security Advisory The FreeBSD Project
Topic: Speculative Execution Vulnerabilities
Category: core Module: kernel Announced: 2018-03-14 Credits: Jann Horn (Google Project Zero); Werner Haas, Thomas Prescher (Cyberus Technology); Daniel Gruss, Moritz Lipp, Stefan Mangard, Michael Schwarz (Graz University of Technology); Paul Kocher; Daniel Genkin (University of Pennsylvania and University of Maryland), Mike Hamburg (Rambus); Yuval Yarom (University of Adelaide and Data6) Affects: All supported versions of FreeBSD. Corrected: 2018-02-17 18:00:01 UTC (stable/11, 11.1-STABLE) 2018-03-14 04:00:00 UTC (releng/11.1, 11.1-RELEASE-p8) CVE Name: CVE-2017-5715, CVE-2017-5754
Special Note: Speculative execution vulnerability mitigation is a work in progress. This advisory addresses the most significant issues for FreeBSD 11.1 on amd64 CPUs. We expect to update this advisory to include 10.x for amd64 CPUs. Future FreeBSD releases will address this issue on i386 and other CPUs. freebsd-update will include changes on i386 as part of this update due to common code changes shared between amd64 and i386, however it contains no functional changes for i386 (in particular, it does not mitigate the issue on i386).
For general information regarding FreeBSD Security Advisories, including descriptions of the fields above, security branches, and the following sections, please visit .
I.
II. Problem Description
A number of issues relating to speculative execution were found last year and publicly announced January 3rd. Two of these, known as Meltdown and Spectre V2, are addressed here.
CVE-2017-5754 (Meltdown)
This issue relies on an affected CPU speculatively executing instructions beyond a faulting instruction. When this happens, changes to architectural state are not committed, but observable changes may be left in micro- architectural state (for example, cache). This may be used to infer privileged data.
CVE-2017-5715 (Spectre V2)
Spectre V2 uses branch target injection to speculatively execute kernel code at an address under the control of an attacker.
III. Impact
An attacker may be able to read secret data from the kernel or from a process when executing untrusted code (for example, in a web browser).
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, and reboot.
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, followed by a reboot into the new kernel:
freebsd-update fetch
freebsd-update install
shutdown -r now
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 11.1]
fetch https://security.FreeBSD.org/patches/SA-18:03/speculative_execution-amd64-11.patch
fetch https://security.FreeBSD.org/patches/SA-18:03/speculative_execution-amd64-11.patch.asc
gpg --verify speculative_execution-amd64-11.patch.asc
b) Apply the patch. Execute the following commands as root:
cd /usr/src
patch < /path/to/patch
c) Recompile your kernel as described in and reboot the system.
VI. Correction details
CVE-2017-5754 (Meltdown)
The mitigation is known as Page Table Isolation (PTI). PTI largely separates kernel and user mode page tables, so that even during speculative execution most of the kernel's data is unmapped and not accessible.
A demonstration of the Meltdown vulnerability is available at https://github.com/dag-erling/meltdown. A positive result is definitive (that is, the vulnerability exists with certainty). A negative result indicates either that the CPU is not affected, or that the test is not capable of demonstrating the issue on the CPU (and may need to be modified).
A patched kernel will automatically enable PTI on Intel CPUs. The status can be checked via the vm.pmap.pti sysctl:
sysctl vm.pmap.pti
vm.pmap.pti: 1
The default setting can be overridden by setting the loader tunable vm.pmap.pti to 1 or 0 in /boot/loader.conf. This setting takes effect only at boot.
PTI introduces a performance regression. The observed performance loss is significant in microbenchmarks of system call overhead, but is much smaller for many real workloads.
CVE-2017-5715 (Spectre V2)
There are two common mitigations for Spectre V2. This patch includes a mitigation using Indirect Branch Restricted Speculation, a feature available via a microcode update from processor manufacturers. The alternate mitigation, Retpoline, is a feature available in newer compilers. The feasibility of applying Retpoline to stable branches and/or releases is under investigation.
The patch includes the IBRS mitigation for Spectre V2. To use the mitigation the system must have an updated microcode; with older microcode a patched kernel will function without the mitigation.
IBRS can be disabled via the hw.ibrs_disable sysctl (and tunable), and the status can be checked via the hw.ibrs_active sysctl. IBRS may be enabled or disabled at runtime. Additional detail on microcode updates will follow.
The following list contains the correction revision numbers for each affected branch.
Branch/path Revision
stable/11/ r329462 releng/11.1/ r330908
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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===================================================================== Red Hat Security Advisory
Synopsis: Important: kernel security update Advisory ID: RHSA-2018:0018-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:0018 Issue date: 2018-01-04 =====================================================================
- Summary:
An update for kernel is now available for Red Hat Enterprise Linux 6.4 Advanced 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. 6.4) - noarch, x86_64 Red Hat Enterprise Linux Server Optional AUS (v. 6.4) - x86_64
- Description:
The kernel packages contain the Linux kernel, the core of any Linux operating system.
Security Fix(es):
An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimization). There are three primary variants of the issue which differ in the way the speculative execution can be exploited.
Note: This issue is present in hardware and cannot be fully fixed via software update. The updated kernel packages provide software mitigation for this hardware issue at a cost of potential performance penalty. Please refer to References section for further information about this issue and the performance impact.
In this update mitigations for x86-64 architecture are provided.
Variant CVE-2017-5753 triggers the speculative execution by performing a bounds-check bypass. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation 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 cross the syscall boundary and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5753, Important)
Variant CVE-2017-5715 triggers the speculative execution by utilizing branch target injection. It relies on the presence of a precisely-defined instruction sequence in the privileged code as well as the fact that memory accesses may cause allocation 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 cross the syscall and guest/host boundaries and read privileged memory by conducting targeted cache side-channel attacks. (CVE-2017-5715, Important)
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. In a combination with the fact that memory accesses may populate the cache even when the block is being dropped and never committed (executed), an unprivileged local attacker could use this flaw to read privileged (kernel space) memory by conducting targeted cache side-channel attacks. (CVE-2017-5754, Important)
Note: CVE-2017-5754 affects Intel x86-64 microprocessors. AMD x86-64 microprocessors are not affected by this issue.
Red Hat would like to thank Google Project Zero for reporting these issues. 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/):
1519778 - CVE-2017-5753 hw: cpu: speculative execution bounds-check bypass 1519780 - CVE-2017-5715 hw: cpu: speculative execution branch target injection 1519781 - CVE-2017-5754 hw: cpu: speculative execution permission faults handling
- Package List:
Red Hat Enterprise Linux Server AUS (v. 6.4):
Source: kernel-2.6.32-358.84.2.el6.src.rpm
noarch: kernel-doc-2.6.32-358.84.2.el6.noarch.rpm kernel-firmware-2.6.32-358.84.2.el6.noarch.rpm
x86_64: kernel-2.6.32-358.84.2.el6.x86_64.rpm kernel-debug-2.6.32-358.84.2.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm kernel-debug-devel-2.6.32-358.84.2.el6.x86_64.rpm kernel-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-358.84.2.el6.x86_64.rpm kernel-devel-2.6.32-358.84.2.el6.x86_64.rpm kernel-headers-2.6.32-358.84.2.el6.x86_64.rpm perf-2.6.32-358.84.2.el6.x86_64.rpm perf-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm python-perf-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm
Red Hat Enterprise Linux Server Optional AUS (v. 6.4):
Source: kernel-2.6.32-358.84.2.el6.src.rpm
x86_64: kernel-debug-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm kernel-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-358.84.2.el6.x86_64.rpm perf-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm python-perf-2.6.32-358.84.2.el6.x86_64.rpm python-perf-debuginfo-2.6.32-358.84.2.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/updates/classification/#important https://access.redhat.com/security/vulnerabilities/speculativeexecution https://access.redhat.com/security/cve/CVE-2017-5753 https://access.redhat.com/security/cve/CVE-2017-5715 https://access.redhat.com/security/cve/CVE-2017-5754
- 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. The vulnerability could be exploited to Local Disclosure of Information.
References:
- CVE-2017-5753
- CVE-2017-5715
- CVE-2017-5754
SUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed.
- HP Virtualization Performance Viewer Software - v2.20, v3.0, v3.01, v3.02, v3.03
- HPE Cloud Optimizer - v2.20, v3.0, v3.01, v3.02, v3.03
BACKGROUND
CVSS Base Metrics ================= Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector
RESOLUTION
Micro Focus is actively working with its vendors to address any systems-level Spectre and Meltdown impacts.However, if you have immediate concerns or questions regarding CentOS and its approach to Spectre or Meltdown, please contact them directly. Please note that you will need to sign in using a Passport account.
3P = 3rd Party Software GN = Micro Focus General Software MU = Multi-Platform Software
System management and security procedures must be reviewed frequently to maintain system integrity. Micro Focus is continually reviewing and enhancing the security features of software products to provide customers with current secure solutions.
"Micro Focus is broadly distributing this Security Bulletin in order to bring to the attention of users of the affected Micro Focus products the important security information contained in this Bulletin. Micro Focus recommends that all users determine the applicability of this information to their individual situations and take appropriate action. Micro Focus does not warrant that this information is necessarily accurate or complete for all user situations and, consequently, Micro Focus will not be responsible for any damages resulting from user's use or disregard of the information provided in this Security Bulletin. To the extent permitted by law, Micro Focus disclaims all warranties, either express or implied, including the warranties of merchantability and fitness for a particular purpose, title and non-infringement."
Copyright 2017 EntIT Software LLC
Micro Focus shall not be liable for technical or editorial errors or omissions contained herein
Show details on source website{
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},
"description": {
"_id": null,
"data": "Systems with microprocessors utilizing speculative execution and indirect branch prediction may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis of the data cache. Two vulnerabilities are identified, known as \"Variant 3a\" and \"Variant 4\". CPUhardware is a set of firmware that runs in the CPU (Central Processing Unit) for managing and controlling the CPU. The Spectre vulnerability exists in the CPU processor core. Because Intel does not separate low-privileged applications from accessing kernel memory, an attacker can use a malicious application to obtain private data that should be quarantined. Qualcomm Closed-Source Components are prone to multiple unspecified vulnerabilities. \nAn attacker can exploit these issues to perform unauthorized actions. This may aid in further attacks. \nThese issues are being tracked by Android Bug IDs A-78135902, A-66913713, A-67712316, A-79419833, A-109678200, A-78283451, A-78285196, A-78284194, A-78284753, A-78284517, A-78240177, A-78239686, A-78284545, A-109660689, A-78240324, A-68141338, A-78286046, A-73539037, A-73539235, A-71501115, A-33757308, A-74236942, A-77485184, A-77484529, A-33385206, A-79419639, A-79420511, A-109678338, and A-112279564. Intel and ARM CPU chips have an information disclosure vulnerability, which originates from a flaw in the processor data boundary mechanism. The following products and versions are affected: ARM Cortex-A75; Intel Xeon E5-1650 v3, v2, v4; Xeon E3-1265l v2, v3, v4; Xeon E3-1245 v2, v3, v5, v6; Xeon X7542 wait. Relevant releases/architectures:\n\nImage Updates for RHV-H - noarch\n\n3. These\npackages include redhat-release-virtualization-host, ovirt-node, and\nrhev-hypervisor. RHVH features a Cockpit user interface for\nmonitoring the host\u0027s resources and performing administrative tasks. ==========================================================================\nUbuntu Security Notice USN-3522-4\nJanuary 10, 2018\n\nlinux-lts-xenial regression\n==========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 14.04 LTS\n\nSummary:\n\nUSN-3522-2 introduced a regression in the Linux Hardware Enablement kernel. \nUnfortunately, that update introduced a regression where a few systems\nfailed to boot successfully. This update fixes the problem. \n\nWe apologize for the inconvenience. \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-4.4.0-109-generic 4.4.0-109.132~14.04.1\n linux-image-4.4.0-109-lowlatency 4.4.0-109.132~14.04.1\n linux-image-generic-lts-xenial 4.4.0.109.92\n linux-image-lowlatency-lts-xenial 4.4.0.109.92\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\nThis specific attack has been named Meltdown and is addressed in the Linux\nkernel for the Intel x86-64 architecture by a patch set named Kernel Page Table\nIsolation, enforcing a near complete separation of the kernel and userspace\naddress maps and preventing the attack. This solution might have a performance\nimpact, and can be disabled at boot time by passing `pti=off\u0027 to the kernel\ncommand line. \n\nWe also identified a regression for ancient userspaces using the vsyscall\ninterface, for example chroot and containers using (e)glibc 2.13 and older,\nincluding those based on Debian 7 or RHEL/CentOS 6. \n\nThe other vulnerabilities (named Spectre) published at the same time are not\naddressed in this update and will be fixed in a later update. \n\nFor the stable distribution (stretch), this problem has been fixed in\nversion 4.9.65-3+deb9u2. \n\nFor the detailed security status of linux please refer to\nits security tracker page at:\nhttps://security-tracker.debian.org/tracker/linux\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\niQEzBAEBCgAdFiEE8vi34Qgfo83x35gF3rYcyPpXRFsFAlpOqZMACgkQ3rYcyPpX\nRFuTTQf/btBqg9/I3XlnJFyGAmd4eQolTcU5cfDJqNhD4TZoyMocghvw1kYtu7z9\nbYVhwCRukJym8O8AXJOxvlcsP7g0ANXqVDHpzCN8byKYgzigVP9brfOu/zDa4uYY\nEYf8V3pc2QzNo5OV4G+sK5ZklkDnNIde+OxUfU0Otl9fUG2rS5JTFvaRgvGazlbb\ncN5wltoHD6DBeSRnfadwYPHQR5U+KAJNImh34Y6T73i7n5dGTnNhs6E7n0wlJL9O\nSQLwoqQeiDpcE7C4TZ1pb4AbFCZXaic+1ONbWy8D7erKNA7kV1U2LQDmPDw9kmua\nLc5heEX026Xfdy83v6NAPwR+NU8stg==\n=GGyG\n-----END PGP SIGNATURE-----\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-hpesbhf03805en_us\n\nSUPPORT COMMUNICATION - SECURITY BULLETIN\n\nDocument ID: hpesbhf03805en_us\nVersion: 4\n\nHPESBHF03805 rev.4 - Certain HPE products using Microprocessors from Intel,\nAMD, and ARM, with Speculative Execution, Elevation of Privilege and\nInformation Disclosure. \n\nNOTICE: The information in this Security Bulletin should be acted upon as\nsoon as possible. \n\nRelease Date: 2018-01-10\nLast Updated: 2018-01-09\n\nPotential Security Impact: Local: Disclosure of Information, Elevation of\nPrivilege\n\nSource: Hewlett Packard Enterprise, Product Security Response Team\n\nVULNERABILITY SUMMARY\nOn January 3 2018, side-channel security vulnerabilities involving\nspeculative execution were publicly disclosed. These vulnerabilities may\nimpact the listed HPE products, potentially leading to information disclosure\nand elevation of privilege. Mitigation and resolution of these\nvulnerabilities may call for both an operating system update, provided by the\nOS vendor, and a system ROM update from HPE. \n\n\n**Note:**\n\n * This issue takes advantage of techniques commonly used in many modern\nprocessor architectures. \n * For further information, microprocessor vendors have provided security\nadvisories:\n \n - Intel:\n\u003chttps://security-center.intel.com/advisory.aspx?intelid=intel-sa-00088\u0026langu\ngeid=en-fr\u003e\n - AMD: \u003chttp://www.amd.com/en/corporate/speculative-execution\u003e\n - ARM: \u003chttps://developer.arm.com/support/security-update\u003e\n\nReferences:\n\n - PSRT110634\n - PSRT110633\n - PSRT110632\n - CVE-2017-5715 - aka Spectre, branch target injection\n - CVE-2017-5753 - aka Spectre, bounds check bypass\n - CVE-2017-5754 - aka Meltdown, rogue data cache load, memory access\npermission check performed after kernel memory read\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\n - HPE ProLiant DL380 Gen10 Server prior to v1.28\n - HPE ProLiant DL180 Gen10 Server prior to v1.28\n - HPE ProLiant DL160 Gen10 Server prior to v1.28\n - HPE ProLiant DL360 Gen10 Server prior to v1.28\n - HPE ProLiant ML110 Gen10 Server prior to v1.28\n - HPE ProLiant DL580 Gen10 Server prior to v1.28\n - HPE ProLiant DL560 Gen10 Server prior to v1.28\n - HPE ProLiant DL120 Gen10 Server prior to v1.28\n - HPE ProLiant ML350 Gen10 Server prior to v1.28\n - HPE ProLiant XL450 Gen10 Server prior to v1.28\n - HPE ProLiant XL170r Gen10 Server prior to v1.28\n - HPE ProLiant BL460c Gen10 Server Blade prior to v1.28\n - HPE ProLiant XL230a Gen9 Server prior to v2.54\n - HPE ProLiant XL230k Gen10 Server prior to v1.28\n - HPE ProLiant XL730f Gen9 Server prior to v2.54\n - HPE ProLiant XL740f Gen9 Server prior to v2.54\n - HPE ProLiant XL750f Gen9 Server prior to v2.54\n - HPE ProLiant XL170r Gen9 Server prior to v2.54\n - HP ProLiant DL60 Gen9 Server prior to v2.54\n - HPE ProLiant XL450 Gen9 Server prior to v2.54\n - HP ProLiant DL160 Gen9 Server prior to v2.54\n - HPE Apollo 4200 Gen9 Server prior to v2.54\n - HP ProLiant BL460c Gen9 Server Blade prior to v2.54\n - HP ProLiant ML110 Gen9 Server prior to v2.54\n - HP ProLiant ML150 Gen9 Server prior to v2.54 \n - HPE ProLiant ML350 Gen9 Server prior to v2.54\n - HP ProLiant DL380 Gen9 Server prior to v2.54\n - HP ProLiant DL120 Gen9 Server prior to v2.54\n - HPE ProLiant DL560 Gen9 Server prior to v2.54\n - HPE ProLiant XL270d Gen9 Special Server prior to v2.54\n - HP ProLiant BL660c Gen9 Server prior to v2.54\n - HPE ProLiant m710x Server Cartridge prior to v1.60\n - HPE ProLiant DL20 Gen9 Server prior to v2.52\n - HPE ProLiant DL385 Gen10 Server prior to v1.04\n - HPE Synergy 660 Gen9 Compute Module prior to v2.54\n - HPE Synergy 480 Gen10 Compute Module prior to v1.28\n - HPE Synergy 480 Gen9 Compute Module prior to v2.54\n - HPE ProLiant ML30 Gen9 Server prior to v2.52\n - HPE ProLiant XL190r Gen10 Server prior to v1.28\n - HPE ProLiant XL250a Gen9 Server prior to v2.54\n - HPE ProLiant XL190r Gen9 Server prior to v2.54\n - HP ProLiant DL80 Gen9 Server prior to v2.54\n - HPE ProLiant DL180 Gen9 Server prior to v2.54\n - HPE ProLiant XL270d Gen9 Accelerator Tray 2U Configure-to-order Server\nprior to v2.54\n - HPE ProLiant WS460c Gen9 Workstation prior to v2.54\n - HPE ProLiant DL580 Gen9 Special Server prior to v2.54\n - HPE Synergy 680 Gen9 Compute Modules prior to v2.54\n - HPE ProLiant XL260a Gen9 Server prior to 1/22/2018\n - HPE ProLiant m510 Server Cartridge prior to 1/22/2018\n - HPE ProLiant m710p Server Cartridge prior to 12/12/2017\n - HP ProLiant m350 Server Cartridge prior to 12/12/2017\n - HP ProLiant m300 Server Cartridge prior to 12/12/2017\n - HP ProLiant ML350e Gen8 Server prior to 12/12/2017\n - HPE ProLiant ML350e Gen8 v2 Server prior to 12/12/2017\n - HP ProLiant BL460c Gen8 Server prior to 12/12/2017\n - HP ProLiant BL660c Gen8 Server prior to 12/12/2017\n - HPE ProLiant SL4540 Gen8 1 Node Server prior to 12/12/2017\n - HP ProLiant DL380e Gen8 Server prior to 12/12/2017\n - HP ProLiant DL360e Gen8 Server prior to 12/12/2017\n - HP ProLiant ML350p Gen8 Server prior to 12/12/2017\n - HP ProLiant DL360p Gen8 Server prior to 12/12/2017\n - HP ProLiant DL380p Gen8 Server prior to 12/12/2017\n - HP ProLiant DL320e Gen8 Server prior to 12/12/2017\n - HPE ProLiant DL320e Gen8 v2 Server prior to 12/12/2017\n - HP ProLiant ML310e Gen8 Server prior to 12/12/2017\n - HPE ProLiant ML310e Gen8 v2 Server prior to 12/12/2017\n - HP ProLiant DL160 Gen8 Server prior to 12/12/2017\n - HP ProLiant SL270s Gen8 Server prior to 12/12/2017\n - HP ProLiant SL250s Gen8 Server prior to 12/12/2017\n - HP ProLiant SL230s Gen8 Server prior to 12/12/2017\n - HP ProLiant DL560 Gen8 Server prior to 12/12/2017\n - HPE ProLiant SL210t Gen8 Server prior to 12/12/2017\n - HP ProLiant DL580 Gen8 Server prior to 12/12/2017 (v1.98)\n - HP ProLiant ML10 Server prior to 12/12/2017\n - HP ProLiant m710 Server Cartridge prior to 12/12/2017 (v1.60)\n - HPE Synergy Composer prior to 12/12/2017\n - HPE Integrity Superdome X with BL920s Blades prior to 8.8.6\n - HPE Superdome Flex Server prior to 2.3.110\n - HP ProLiant DL360 Gen9 Server prior to v2.54\n - HPE Synergy 620 Gen9 Compute Module prior to v2.54\n - HPE ProLiant Thin Micro TM200 Server prior to 1/16/2017\n - HPE ProLiant ML350 Gen10 Server prior to v1.28\n - HP ProLiant BL420c Gen8 Server prior to 12/12/2017\n - HPE ProLiant ML10 v2 Server prior to 12/12/2017\n - HPE ProLiant MicroServer Gen8 prior to 12/12/2017\n - HPE Synergy 660 Gen10 Compute Module prior to v1.28\n\nBACKGROUND\n\n CVSS Base Metrics\n =================\n Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector\n\n CVE-2017-5715\n 8.2 CVSS:3.0/AV:A/AC:L/PR:N/UI:N/S:C/C:H/I:L/A:N\n 6.8 (AV:A/AC:L/Au:N/C:C/I:P/A:N)\n\n CVE-2017-5753\n 5.0 CVSS:3.0/AV:A/AC:H/PR:L/UI:R/S:C/C:L/I:L/A:L\n 5.4 (AV:A/AC:M/Au:N/C:P/I:P/A:P)\n\n CVE-2017-5754\n 7.5 CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:N/A:N\n 7.8 (AV:N/AC:L/Au:N/C:C/I:N/A:N)\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 system ROM updates which include an updated\nmicrocode to resolve the vulnerability:\n\n * HPE has provided a customer bulletin\n\u003chttps://support.hpe.com/hpsc/doc/public/display?docId=emr_na-a00039267en_us\u003e\nwith specific instructions to obtain the udpated sytem ROM\n \n - Note:\n \n + CVE-2017-5715 requires that the System ROM be updated and a vendor\nsupplied operating system update be applied as well. \n + For CVE-2017-5753, CVE-2017-5754 require only updates of a vendor\nsupplied operating system. \n + HPE will continue to add additional products to the list. Not all\nlisted products have updated system ROMs yet. Impacted products awaiting\nsystem ROM updates are marked TBS (to be supplied). \n\nHISTORY\n\nVersion:1 (rev.1) - 4 January 2018 Initial release\n\nVersion:2 (rev.2) - 5 January 2018 Added additional impacted products\n\nVersion:3 (rev.3) - 10 January 2018 Added more impacted products\n\nVersion:4 (rev.4) - 9 January 2018 Fixed product ID\n\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-----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA512\n\n=============================================================================\nFreeBSD-SA-18:03.speculative_execution Security Advisory\n The FreeBSD Project\n\nTopic: Speculative Execution Vulnerabilities\n\nCategory: core\nModule: kernel\nAnnounced: 2018-03-14\nCredits: Jann Horn (Google Project Zero); Werner Haas, Thomas\n Prescher (Cyberus Technology); Daniel Gruss, Moritz Lipp,\n Stefan Mangard, Michael Schwarz (Graz University of\n Technology); Paul Kocher; Daniel Genkin (University of\n Pennsylvania and University of Maryland), Mike Hamburg\n (Rambus); Yuval Yarom (University of Adelaide and Data6)\nAffects: All supported versions of FreeBSD. \nCorrected: 2018-02-17 18:00:01 UTC (stable/11, 11.1-STABLE)\n 2018-03-14 04:00:00 UTC (releng/11.1, 11.1-RELEASE-p8)\nCVE Name: CVE-2017-5715, CVE-2017-5754\n\nSpecial Note:\tSpeculative execution vulnerability mitigation is a work\n in progress. This advisory addresses the most significant\n issues for FreeBSD 11.1 on amd64 CPUs. We expect to update\n this advisory to include 10.x for amd64 CPUs. Future FreeBSD\n releases will address this issue on i386 and other CPUs. \n freebsd-update will include changes on i386 as part of this\n update due to common code changes shared between amd64 and\n i386, however it contains no functional changes for i386 (in\n particular, it does not mitigate the issue on i386). \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. \n\nII. Problem Description\n\nA number of issues relating to speculative execution were found last year\nand publicly announced January 3rd. Two of these, known as Meltdown and\nSpectre V2, are addressed here. \n\nCVE-2017-5754 (Meltdown)\n- ------------------------\n\nThis issue relies on an affected CPU speculatively executing instructions\nbeyond a faulting instruction. When this happens, changes to architectural\nstate are not committed, but observable changes may be left in micro-\narchitectural state (for example, cache). This may be used to infer\nprivileged data. \n\nCVE-2017-5715 (Spectre V2)\n- --------------------------\n\nSpectre V2 uses branch target injection to speculatively execute kernel code\nat an address under the control of an attacker. \n\nIII. Impact\n\nAn attacker may be able to read secret data from the kernel or from a\nprocess when executing untrusted code (for example, in a web browser). \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,\nand reboot. \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, followed\nby a reboot into the new kernel:\n\n# freebsd-update fetch\n# freebsd-update install\n# shutdown -r now\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 11.1]\n# fetch https://security.FreeBSD.org/patches/SA-18:03/speculative_execution-amd64-11.patch\n# fetch https://security.FreeBSD.org/patches/SA-18:03/speculative_execution-amd64-11.patch.asc\n# gpg --verify speculative_execution-amd64-11.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 your kernel as described in\n\u003cURL:https://www.FreeBSD.org/handbook/kernelconfig.html\u003e and reboot the\nsystem. \n\nVI. Correction details\n\nCVE-2017-5754 (Meltdown)\n- ------------------------\n\nThe mitigation is known as Page Table Isolation (PTI). PTI largely separates\nkernel and user mode page tables, so that even during speculative execution\nmost of the kernel\u0027s data is unmapped and not accessible. \n\nA demonstration of the Meltdown vulnerability is available at\nhttps://github.com/dag-erling/meltdown. A positive result is definitive\n(that is, the vulnerability exists with certainty). A negative result\nindicates either that the CPU is not affected, or that the test is not\ncapable of demonstrating the issue on the CPU (and may need to be modified). \n\nA patched kernel will automatically enable PTI on Intel CPUs. The status can\nbe checked via the vm.pmap.pti sysctl:\n\n# sysctl vm.pmap.pti\nvm.pmap.pti: 1\n\nThe default setting can be overridden by setting the loader tunable\nvm.pmap.pti to 1 or 0 in /boot/loader.conf. This setting takes effect only\nat boot. \n\nPTI introduces a performance regression. The observed performance loss is\nsignificant in microbenchmarks of system call overhead, but is much smaller\nfor many real workloads. \n\nCVE-2017-5715 (Spectre V2)\n- --------------------------\n\nThere are two common mitigations for Spectre V2. This patch includes a\nmitigation using Indirect Branch Restricted Speculation, a feature available\nvia a microcode update from processor manufacturers. The alternate\nmitigation, Retpoline, is a feature available in newer compilers. The\nfeasibility of applying Retpoline to stable branches and/or releases is under\ninvestigation. \n\nThe patch includes the IBRS mitigation for Spectre V2. To use the mitigation\nthe system must have an updated microcode; with older microcode a patched\nkernel will function without the mitigation. \n\nIBRS can be disabled via the hw.ibrs_disable sysctl (and tunable), and the\nstatus can be checked via the hw.ibrs_active sysctl. IBRS may be enabled or\ndisabled at runtime. Additional detail on microcode updates will follow. \n\nThe following list contains the correction revision numbers for each\naffected branch. \n\nBranch/path Revision\n- -------------------------------------------------------------------------\nstable/11/ r329462\nreleng/11.1/ r330908\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://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2017-5715\u003e\n\n\u003cURL:https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2017-5754\u003e\n\nThe latest revision of this advisory is available at\n\u003cURL:https://security.FreeBSD.org/advisories/FreeBSD-SA-18:03.speculative_execution.asc\u003e\n-----BEGIN PGP SIGNATURE-----\n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\ngnwZWiZ/KuAy0C6vaHljsm0xPEM5nBz/yScFXDbuhEdmEgBBD6w=\n=fqrI\n-----END PGP SIGNATURE-----\n. \n-----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: kernel security update\nAdvisory ID: RHSA-2018:0018-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:0018\nIssue date: 2018-01-04\n=====================================================================\n\n1. Summary:\n\nAn update for kernel is now available for Red Hat Enterprise Linux 6.4\nAdvanced 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. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Server AUS (v. 6.4) - noarch, x86_64\nRed Hat Enterprise Linux Server Optional AUS (v. 6.4) - 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\nAn industry-wide issue was found in the way many modern microprocessor\ndesigns have implemented speculative execution of instructions (a commonly\nused performance optimization). There are three primary variants of the\nissue which differ in the way the speculative execution can be exploited. \n\nNote: This issue is present in hardware and cannot be fully fixed via\nsoftware update. The updated kernel packages provide software mitigation\nfor this hardware issue at a cost of potential performance penalty. Please\nrefer to References section for further information about this issue and\nthe performance impact. \n\nIn this update mitigations for x86-64 architecture are provided. \n\nVariant CVE-2017-5753 triggers the speculative execution by performing a\nbounds-check bypass. It relies on the presence of a precisely-defined\ninstruction sequence in the privileged code as well as the fact that memory\naccesses may cause allocation into the microprocessor\u0027s data cache even for\nspeculatively executed instructions that never actually commit (retire). As\na result, an unprivileged attacker could use this flaw to cross the syscall\nboundary and read privileged memory by conducting targeted cache\nside-channel attacks. (CVE-2017-5753, Important)\n\nVariant CVE-2017-5715 triggers the speculative execution by utilizing\nbranch target injection. It relies on the presence of a precisely-defined\ninstruction sequence in the privileged code as well as the fact that memory\naccesses may cause allocation into the microprocessor\u0027s data cache even for\nspeculatively executed instructions that never actually commit (retire). As\na result, an unprivileged attacker could use this flaw to cross the syscall\nand guest/host boundaries and read privileged memory by conducting targeted\ncache side-channel attacks. (CVE-2017-5715, Important)\n\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. In a combination with the fact\nthat memory accesses may populate the cache even when the block is being\ndropped and never committed (executed), an unprivileged local attacker\ncould use this flaw to read privileged (kernel space) memory by conducting\ntargeted cache side-channel attacks. (CVE-2017-5754, Important)\n\nNote: CVE-2017-5754 affects Intel x86-64 microprocessors. AMD x86-64\nmicroprocessors are not affected by this issue. \n\nRed Hat would like to thank Google Project Zero for reporting these issues. 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. Bugs fixed (https://bugzilla.redhat.com/):\n\n1519778 - CVE-2017-5753 hw: cpu: speculative execution bounds-check bypass\n1519780 - CVE-2017-5715 hw: cpu: speculative execution branch target injection\n1519781 - CVE-2017-5754 hw: cpu: speculative execution permission faults handling\n\n6. Package List:\n\nRed Hat Enterprise Linux Server AUS (v. 6.4):\n\nSource:\nkernel-2.6.32-358.84.2.el6.src.rpm\n\nnoarch:\nkernel-doc-2.6.32-358.84.2.el6.noarch.rpm\nkernel-firmware-2.6.32-358.84.2.el6.noarch.rpm\n\nx86_64:\nkernel-2.6.32-358.84.2.el6.x86_64.rpm\nkernel-debug-2.6.32-358.84.2.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-358.84.2.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-358.84.2.el6.x86_64.rpm\nkernel-devel-2.6.32-358.84.2.el6.x86_64.rpm\nkernel-headers-2.6.32-358.84.2.el6.x86_64.rpm\nperf-2.6.32-358.84.2.el6.x86_64.rpm\nperf-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional AUS (v. 6.4):\n\nSource:\nkernel-2.6.32-358.84.2.el6.src.rpm\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-358.84.2.el6.x86_64.rpm\nperf-debuginfo-2.6.32-358.84.2.el6.x86_64.rpm\npython-perf-2.6.32-358.84.2.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-358.84.2.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/updates/classification/#important\nhttps://access.redhat.com/security/vulnerabilities/speculativeexecution\nhttps://access.redhat.com/security/cve/CVE-2017-5753\nhttps://access.redhat.com/security/cve/CVE-2017-5715\nhttps://access.redhat.com/security/cve/CVE-2017-5754\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. The vulnerability could be exploited to Local Disclosure of\nInformation. \n\nReferences:\n\n - CVE-2017-5753\n - CVE-2017-5715\n - CVE-2017-5754\n\nSUPPORTED SOFTWARE VERSIONS*: ONLY impacted versions are listed. \n\n - HP Virtualization Performance Viewer Software - v2.20, v3.0, v3.01,\nv3.02, v3.03\n - HPE Cloud Optimizer - v2.20, v3.0, v3.01, v3.02, v3.03\n\nBACKGROUND\n\n CVSS Base Metrics\n =================\n Reference, CVSS V3 Score/Vector, CVSS V2 Score/Vector\n\n\nRESOLUTION\n\nMicro Focus is actively working with its vendors to address any systems-level\nSpectre and Meltdown impacts.However, if you have immediate concerns or\nquestions regarding CentOS and its approach to Spectre or Meltdown, please\ncontact them directly. \n Please note that you will need to sign in using a Passport account. \n\n3P = 3rd Party Software\nGN = Micro Focus General Software\nMU = Multi-Platform Software\n\nSystem management and security procedures must be reviewed frequently to maintain system integrity. \nMicro Focus is continually reviewing and enhancing the security features of software products to provide \ncustomers with current secure solutions. \n\n\"Micro Focus is broadly distributing this Security Bulletin in order to bring to the attention of users of the \naffected Micro Focus products the important security information contained in this Bulletin. Micro Focus recommends \nthat all users determine the applicability of this information to their individual situations and take appropriate action. \nMicro Focus does not warrant that this information is necessarily accurate or complete for all user situations and, consequently, \nMicro Focus will not be responsible for any damages resulting from user\u0027s use or disregard of the information provided in \nthis Security Bulletin. To the extent permitted by law, Micro Focus disclaims all warranties, either express or \nimplied, including the warranties of merchantability and fitness for a particular purpose, title and non-infringement.\" \n\n\nCopyright 2017 EntIT Software LLC\n\nMicro Focus shall not be liable for technical or editorial errors or omissions contained herein",
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VAR-201808-0958
Vulnerability from variot - Updated: 2026-03-09 20:38Systems with microprocessors utilizing speculative execution and address translations may allow unauthorized disclosure of information residing in the L1 data cache to an attacker with local user access via a terminal page fault and a side-channel analysis. These attacks are known as L1 Terminal Fault: SGX, L1 Terminal Fault: OS/SMM, and L1 Terminal Fault: VMM. Multiple Intel Processors are prone to a multiple information-disclosure vulnerabilities. Local attackers can exploit these issues to obtain sensitive information. This may aid in further attacks. Intel Core i3 processor, etc. are all CPU (central processing unit) products of Intel Corporation of the United States. Security vulnerabilities exist in several Intel products that use speculative execution and address translation. The following products are affected: Intel Core i3 processor; Intel Core i5 processor; Intel Core i7 processor; Intel Core M processor family; 2nd generation Intel Core processors; 3rd generation Intel Core processors; 4th generation Intel Core processors; 5th generation Intel Core processors, etc. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
====================================================================
Red Hat Security Advisory
Synopsis: Important: kernel security and bug fix update Advisory ID: RHSA-2018:2390-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:2390 Issue date: 2018-08-14 CVE Names: CVE-2017-0861 CVE-2017-15265 CVE-2018-3620 CVE-2018-3646 CVE-2018-3693 CVE-2018-7566 CVE-2018-10901 CVE-2018-1000004 ==================================================================== 1. Summary:
An update for kernel 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, noarch, x86_64 Red Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64 Red Hat Enterprise Linux HPC Node (v. 6) - noarch, x86_64 Red Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64 Red Hat Enterprise Linux Server (v. 6) - i386, noarch, 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, noarch, x86_64 Red Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64
- Description:
The kernel packages contain the Linux kernel, the core of any Linux operating system.
Security Fix(es):
-
Modern operating systems implement virtualization of physical memory to efficiently use available system resources and provide inter-domain protection through access control and isolation. The L1TF issue was found in the way the x86 microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimisation) in combination with handling of page-faults caused by terminated virtual to physical address resolving process. As a result, an unprivileged attacker could use this flaw to read privileged memory of the kernel or other processes and/or cross guest/host boundaries to read host memory by conducting targeted cache side-channel attacks. (CVE-2018-3620, CVE-2018-3646)
-
An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions past bounds check. The flaw relies on the presence of a precisely-defined instruction sequence in the privileged code and the fact that memory writes occur to an address which depends on the untrusted value. Such writes 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 influence speculative execution and/or read privileged memory by conducting targeted cache side-channel attacks. (CVE-2018-3693)
-
kernel: kvm: vmx: host GDT limit corruption (CVE-2018-10901)
-
kernel: Use-after-free in snd_pcm_info function in ALSA subsystem potentially leads to privilege escalation (CVE-2017-0861)
-
kernel: Use-after-free in snd_seq_ioctl_create_port() (CVE-2017-15265)
-
kernel: race condition in snd_seq_write() may lead to UAF or OOB-access (CVE-2018-7566)
-
kernel: Race condition in sound system can lead to denial of service (CVE-2018-1000004)
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 Intel OSSIRT (Intel.com) for reporting CVE-2018-3620 and CVE-2018-3646; Vladimir Kiriansky (MIT) and Carl Waldspurger (Carl Waldspurger Consulting) for reporting CVE-2018-3693; and Vegard Nossum (Oracle Corporation) for reporting CVE-2018-10901.
Bug Fix(es):
-
The Least recently used (LRU) operations are batched by caching pages in per-cpu page vectors to prevent contention of the heavily used lru_lock spinlock. The page vectors can hold even the compound pages. Previously, the page vectors were cleared only if they were full. Subsequently, the amount of memory held in page vectors, which is not reclaimable, was sometimes too high. Consequently the page reclamation started the Out of Memory (OOM) killing processes. With this update, the underlying source code has been fixed to clear LRU page vectors each time when a compound page is added to them. As a result, OOM killing processes due to high amounts of memory held in page vectors no longer occur. (BZ#1575819)
-
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/):
1501878 - CVE-2017-15265 kernel: Use-after-free in snd_seq_ioctl_create_port() 1535315 - CVE-2018-1000004 kernel: Race condition in sound system can lead to denial of service 1550142 - CVE-2018-7566 kernel: race condition in snd_seq_write() may lead to UAF or OOB-access 1563994 - CVE-2017-0861 kernel: Use-after-free in snd_pcm_info function in ALSA subsystem potentially leads to privilege escalation 1581650 - CVE-2018-3693 Kernel: speculative bounds check bypass store 1585005 - CVE-2018-3646 Kernel: hw: cpu: L1 terminal fault (L1TF) 1601849 - CVE-2018-10901 kernel: kvm: vmx: host GDT limit corruption
- Package List:
Red Hat Enterprise Linux Desktop (v. 6):
Source: kernel-2.6.32-754.3.5.el6.src.rpm
i386: kernel-2.6.32-754.3.5.el6.i686.rpm kernel-debug-2.6.32-754.3.5.el6.i686.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm kernel-devel-2.6.32-754.3.5.el6.i686.rpm kernel-headers-2.6.32-754.3.5.el6.i686.rpm perf-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm
noarch: kernel-abi-whitelists-2.6.32-754.3.5.el6.noarch.rpm kernel-doc-2.6.32-754.3.5.el6.noarch.rpm kernel-firmware-2.6.32-754.3.5.el6.noarch.rpm
x86_64: kernel-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm kernel-debug-devel-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm kernel-devel-2.6.32-754.3.5.el6.x86_64.rpm kernel-headers-2.6.32-754.3.5.el6.x86_64.rpm perf-2.6.32-754.3.5.el6.x86_64.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm
Red Hat Enterprise Linux Desktop Optional (v. 6):
i386: kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm
x86_64: kernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm python-perf-2.6.32-754.3.5.el6.x86_64.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm
Red Hat Enterprise Linux HPC Node (v. 6):
Source: kernel-2.6.32-754.3.5.el6.src.rpm
noarch: kernel-abi-whitelists-2.6.32-754.3.5.el6.noarch.rpm kernel-doc-2.6.32-754.3.5.el6.noarch.rpm kernel-firmware-2.6.32-754.3.5.el6.noarch.rpm
x86_64: kernel-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm kernel-debug-devel-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm kernel-devel-2.6.32-754.3.5.el6.x86_64.rpm kernel-headers-2.6.32-754.3.5.el6.x86_64.rpm perf-2.6.32-754.3.5.el6.x86_64.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional (v. 6):
x86_64: kernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm python-perf-2.6.32-754.3.5.el6.x86_64.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm
Red Hat Enterprise Linux Server (v. 6):
Source: kernel-2.6.32-754.3.5.el6.src.rpm
i386: kernel-2.6.32-754.3.5.el6.i686.rpm kernel-debug-2.6.32-754.3.5.el6.i686.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm kernel-devel-2.6.32-754.3.5.el6.i686.rpm kernel-headers-2.6.32-754.3.5.el6.i686.rpm perf-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm
noarch: kernel-abi-whitelists-2.6.32-754.3.5.el6.noarch.rpm kernel-doc-2.6.32-754.3.5.el6.noarch.rpm kernel-firmware-2.6.32-754.3.5.el6.noarch.rpm
ppc64: kernel-2.6.32-754.3.5.el6.ppc64.rpm kernel-bootwrapper-2.6.32-754.3.5.el6.ppc64.rpm kernel-debug-2.6.32-754.3.5.el6.ppc64.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm kernel-debug-devel-2.6.32-754.3.5.el6.ppc64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm kernel-debuginfo-common-ppc64-2.6.32-754.3.5.el6.ppc64.rpm kernel-devel-2.6.32-754.3.5.el6.ppc64.rpm kernel-headers-2.6.32-754.3.5.el6.ppc64.rpm perf-2.6.32-754.3.5.el6.ppc64.rpm perf-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm
s390x: kernel-2.6.32-754.3.5.el6.s390x.rpm kernel-debug-2.6.32-754.3.5.el6.s390x.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.s390x.rpm kernel-debug-devel-2.6.32-754.3.5.el6.s390x.rpm kernel-debuginfo-2.6.32-754.3.5.el6.s390x.rpm kernel-debuginfo-common-s390x-2.6.32-754.3.5.el6.s390x.rpm kernel-devel-2.6.32-754.3.5.el6.s390x.rpm kernel-headers-2.6.32-754.3.5.el6.s390x.rpm kernel-kdump-2.6.32-754.3.5.el6.s390x.rpm kernel-kdump-debuginfo-2.6.32-754.3.5.el6.s390x.rpm kernel-kdump-devel-2.6.32-754.3.5.el6.s390x.rpm perf-2.6.32-754.3.5.el6.s390x.rpm perf-debuginfo-2.6.32-754.3.5.el6.s390x.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.s390x.rpm
x86_64: kernel-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm kernel-debug-devel-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm kernel-devel-2.6.32-754.3.5.el6.x86_64.rpm kernel-headers-2.6.32-754.3.5.el6.x86_64.rpm perf-2.6.32-754.3.5.el6.x86_64.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 6):
i386: kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm
ppc64: kernel-debug-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm kernel-debuginfo-common-ppc64-2.6.32-754.3.5.el6.ppc64.rpm perf-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm python-perf-2.6.32-754.3.5.el6.ppc64.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm
s390x: kernel-debug-debuginfo-2.6.32-754.3.5.el6.s390x.rpm kernel-debuginfo-2.6.32-754.3.5.el6.s390x.rpm kernel-debuginfo-common-s390x-2.6.32-754.3.5.el6.s390x.rpm kernel-kdump-debuginfo-2.6.32-754.3.5.el6.s390x.rpm perf-debuginfo-2.6.32-754.3.5.el6.s390x.rpm python-perf-2.6.32-754.3.5.el6.s390x.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.s390x.rpm
x86_64: kernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm python-perf-2.6.32-754.3.5.el6.x86_64.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 6):
Source: kernel-2.6.32-754.3.5.el6.src.rpm
i386: kernel-2.6.32-754.3.5.el6.i686.rpm kernel-debug-2.6.32-754.3.5.el6.i686.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm kernel-devel-2.6.32-754.3.5.el6.i686.rpm kernel-headers-2.6.32-754.3.5.el6.i686.rpm perf-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm
noarch: kernel-abi-whitelists-2.6.32-754.3.5.el6.noarch.rpm kernel-doc-2.6.32-754.3.5.el6.noarch.rpm kernel-firmware-2.6.32-754.3.5.el6.noarch.rpm
x86_64: kernel-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm kernel-debug-devel-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm kernel-devel-2.6.32-754.3.5.el6.x86_64.rpm kernel-headers-2.6.32-754.3.5.el6.x86_64.rpm perf-2.6.32-754.3.5.el6.x86_64.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 6):
i386: kernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm python-perf-2.6.32-754.3.5.el6.i686.rpm python-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm
x86_64: kernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm python-perf-2.6.32-754.3.5.el6.x86_64.rpm python-perf-debuginfo-2.6.32-754.3.5.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-2017-0861 https://access.redhat.com/security/cve/CVE-2017-15265 https://access.redhat.com/security/cve/CVE-2018-3620 https://access.redhat.com/security/cve/CVE-2018-3646 https://access.redhat.com/security/cve/CVE-2018-3693 https://access.redhat.com/security/cve/CVE-2018-7566 https://access.redhat.com/security/cve/CVE-2018-10901 https://access.redhat.com/security/cve/CVE-2018-1000004 https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/security/vulnerabilities/L1TF
- 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 . Corrected: 2018-08-14 17:51:12 UTC (stable/11, 11.1-STABLE) 2018-08-15 02:30:11 UTC (releng/11.2, 11.2-RELEASE-p2) 2018-08-15 02:30:11 UTC (releng/11.1, 11.1-RELEASE-p13) CVE Name: CVE-2018-3620, CVE-2018-3646
Special Note: Speculative execution vulnerability mitigation remains a work in progress. This advisory addresses the issue in FreeBSD 11.1 and later.
For general information regarding FreeBSD Security Advisories, including descriptions of the fields above, security branches, and the following sections, please visit . Background
When a program accesses data in memory via a logical address it is translated to a physical address in RAM by the CPU. Accessing an unmapped logical address results in what is known as a terminal fault.
II. The CPU may speculatively access the level 1 data cache (L1D). Data which would otherwise be protected may then be determined by using side channel methods.
This issue affects bhyve on FreeBSD/amd64 systems.
III. Impact
An attacker executing user code, or kernel code inside of a virtual machine, may be able to read secret data from the kernel or from another virtual machine.
IV. Workaround
No workaround is available.
V. Solution
Upgrade your vulnerable system to a supported FreeBSD stable or release / security branch (releng) dated after the correction date, and reboot.
Perform one of the following:
1) 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
shutdown -r +30 "Rebooting for security update"
2) 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 11.2]
fetch https://security.FreeBSD.org/patches/SA-18:09/l1tf-11.2.patch
fetch https://security.FreeBSD.org/patches/SA-18:09/l1tf-11.2.patch.asc
gpg --verify l1tf-11.2.patch.asc
[FreeBSD 11.1]
fetch https://security.FreeBSD.org/patches/SA-18:09/l1tf-11.1.patch
fetch https://security.FreeBSD.org/patches/SA-18:09/l1tf-11.1.patch.asc
gpg --verify l1tf-11.1.patch.asc
b) Apply the patch. Execute the following commands as root:
cd /usr/src
patch < /path/to/patch
c) Recompile your kernel as described in and reboot the system.
VI. Correction details
CVE-2018-3620 (L1 Terminal Fault-OS)
FreeBSD reserves the the memory page at physical address 0, so it will not contain secret data. FreeBSD zeros the paging data structures for unmapped addresses, so that speculatively executed L1 Terminal Faults will access only the reserved, unused page.
The following list contains the correction revision numbers for each affected branch.
Branch/path Revision
stable/11/ r337794 releng/11.1/ r337828 releng/11.2/ r337828
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. ========================================================================== 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. This update fixes the problems.
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. 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. (CVE-2018-3620)
Andrey Konovalov discovered an out-of-bounds read in the POSIX timers subsystem in the Linux kernel. (CVE-2017-18344)
Juha-Matti Tilli discovered that the TCP implementation in the Linux kernel performed algorithmically expensive operations in some situations when handling incoming packets. A remote attacker could use this to cause a denial of service. (CVE-2018-5390)
Juha-Matti Tilli discovered that the IP implementation in the Linux kernel performed algorithmically expensive operations in some situations when handling incoming packet fragments. A remote attacker could use this to cause a denial of service. (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. The Red Hat Enterprise Virtualization Hypervisor is a dedicated Kernel-based Virtual Machine (KVM) hypervisor. 6.5) - x86_64
-
Gentoo Linux Security Advisory GLSA 201810-06
https://security.gentoo.org/
Severity: Normal Title: Xen: Multiple vulnerabilities Date: October 30, 2018 Bugs: #643350, #655188, #655544, #659442 ID: 201810-06
Synopsis
Multiple vulnerabilities have been found in Xen, the worst of which could cause a Denial of Service condition.
Background
Xen is a bare-metal hypervisor.
Affected packages
-------------------------------------------------------------------
Package / Vulnerable / Unaffected
-------------------------------------------------------------------
1 app-emulation/xen < 4.10.1-r2 >= 4.10.1-r2 2 app-emulation/xen-tools < 4.10.1-r2 >= 4.10.1-r2 ------------------------------------------------------------------- 2 affected packages
Description
Multiple vulnerabilities have been discovered in Xen. Please review the referenced CVE identifiers for details.
Resolution
All Xen users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot --verbose ">=app-emulation/xen-4.10.1-r2"
All Xen tools users should upgrade to the latest version:
# emerge --sync # emerge --ask --oneshot -v ">=app-emulation/xen-tools-4.10.1-r2"
References
[ 1 ] CVE-2017-5715 https://nvd.nist.gov/vuln/detail/CVE-2017-5715 [ 2 ] CVE-2017-5753 https://nvd.nist.gov/vuln/detail/CVE-2017-5753 [ 3 ] CVE-2017-5754 https://nvd.nist.gov/vuln/detail/CVE-2017-5754 [ 4 ] CVE-2018-10471 https://nvd.nist.gov/vuln/detail/CVE-2018-10471 [ 5 ] CVE-2018-10472 https://nvd.nist.gov/vuln/detail/CVE-2018-10472 [ 6 ] CVE-2018-10981 https://nvd.nist.gov/vuln/detail/CVE-2018-10981 [ 7 ] CVE-2018-10982 https://nvd.nist.gov/vuln/detail/CVE-2018-10982 [ 8 ] CVE-2018-12891 https://nvd.nist.gov/vuln/detail/CVE-2018-12891 [ 9 ] CVE-2018-12892 https://nvd.nist.gov/vuln/detail/CVE-2018-12892 [ 10 ] CVE-2018-12893 https://nvd.nist.gov/vuln/detail/CVE-2018-12893 [ 11 ] CVE-2018-15468 https://nvd.nist.gov/vuln/detail/CVE-2018-15468 [ 12 ] CVE-2018-15469 https://nvd.nist.gov/vuln/detail/CVE-2018-15469 [ 13 ] CVE-2018-15470 https://nvd.nist.gov/vuln/detail/CVE-2018-15470 [ 14 ] CVE-2018-3620 https://nvd.nist.gov/vuln/detail/CVE-2018-3620 [ 15 ] CVE-2018-3646 https://nvd.nist.gov/vuln/detail/CVE-2018-3646 [ 16 ] CVE-2018-5244 https://nvd.nist.gov/vuln/detail/CVE-2018-5244 [ 17 ] CVE-2018-7540 https://nvd.nist.gov/vuln/detail/CVE-2018-7540 [ 18 ] CVE-2018-7541 https://nvd.nist.gov/vuln/detail/CVE-2018-7541 [ 19 ] CVE-2018-7542 https://nvd.nist.gov/vuln/detail/CVE-2018-7542
Availability
This GLSA and any updates to it are available for viewing at the Gentoo Security Website:
https://security.gentoo.org/glsa/201810-06
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 2018 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.
https://creativecommons.org/licenses/by-sa/2.5
Show details on source website{
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"id": "149142"
},
{
"db": "PACKETSTORM",
"id": "148946"
},
{
"db": "PACKETSTORM",
"id": "148906"
}
],
"trust": 0.5
},
"cve": "CVE-2018-3620",
"cvss": {
"_id": null,
"data": [
{
"cvssV2": [
{
"accessComplexity": "MEDIUM",
"accessVector": "LOCAL",
"authentication": "NONE",
"author": "nvd@nist.gov",
"availabilityImpact": "NONE",
"baseScore": 4.7,
"confidentialityImpact": "COMPLETE",
"exploitabilityScore": 3.4,
"id": "CVE-2018-3620",
"impactScore": 6.9,
"integrityImpact": "NONE",
"severity": "MEDIUM",
"trust": 1.0,
"vectorString": "AV:L/AC:M/Au:N/C:C/I:N/A:N",
"version": "2.0"
},
{
"accessComplexity": "MEDIUM",
"accessVector": "LOCAL",
"authentication": "NONE",
"author": "VULHUB",
"availabilityImpact": "NONE",
"baseScore": 4.7,
"confidentialityImpact": "COMPLETE",
"exploitabilityScore": 3.4,
"id": "VHN-133651",
"impactScore": 6.9,
"integrityImpact": "NONE",
"severity": "MEDIUM",
"trust": 0.1,
"vectorString": "AV:L/AC:M/AU:N/C:C/I:N/A:N",
"version": "2.0"
}
],
"cvssV3": [
{
"attackComplexity": "HIGH",
"attackVector": "LOCAL",
"author": "nvd@nist.gov",
"availabilityImpact": "NONE",
"baseScore": 5.6,
"baseSeverity": "MEDIUM",
"confidentialityImpact": "HIGH",
"exploitabilityScore": 1.1,
"id": "CVE-2018-3620",
"impactScore": 4.0,
"integrityImpact": "NONE",
"privilegesRequired": "LOW",
"scope": "CHANGED",
"trust": 1.0,
"userInteraction": "NONE",
"vectorString": "CVSS:3.0/AV:L/AC:H/PR:L/UI:N/S:C/C:H/I:N/A:N",
"version": "3.0"
}
],
"severity": [
{
"author": "nvd@nist.gov",
"id": "CVE-2018-3620",
"trust": 1.0,
"value": "MEDIUM"
},
{
"author": "VULHUB",
"id": "VHN-133651",
"trust": 0.1,
"value": "MEDIUM"
}
]
}
],
"sources": [
{
"db": "VULHUB",
"id": "VHN-133651"
},
{
"db": "NVD",
"id": "CVE-2018-3620"
}
]
},
"description": {
"_id": null,
"data": "Systems with microprocessors utilizing speculative execution and address translations may allow unauthorized disclosure of information residing in the L1 data cache to an attacker with local user access via a terminal page fault and a side-channel analysis. These attacks are known as L1 Terminal Fault: SGX, L1 Terminal Fault: OS/SMM, and L1 Terminal Fault: VMM. Multiple Intel Processors are prone to a multiple information-disclosure vulnerabilities. \nLocal attackers can exploit these issues to obtain sensitive information. This may aid in further attacks. Intel Core i3 processor, etc. are all CPU (central processing unit) products of Intel Corporation of the United States. Security vulnerabilities exist in several Intel products that use speculative execution and address translation. The following products are affected: Intel Core i3 processor; Intel Core i5 processor; Intel Core i7 processor; Intel Core M processor family; 2nd generation Intel Core processors; 3rd generation Intel Core processors; 4th generation Intel Core processors; 5th generation Intel Core processors, etc. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\n==================================================================== \nRed Hat Security Advisory\n\nSynopsis: Important: kernel security and bug fix update\nAdvisory ID: RHSA-2018:2390-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:2390\nIssue date: 2018-08-14\nCVE Names: CVE-2017-0861 CVE-2017-15265 CVE-2018-3620\n CVE-2018-3646 CVE-2018-3693 CVE-2018-7566\n CVE-2018-10901 CVE-2018-1000004\n====================================================================\n1. Summary:\n\nAn update for kernel 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, noarch, x86_64\nRed Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64\nRed Hat Enterprise Linux HPC Node (v. 6) - noarch, x86_64\nRed Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64\nRed Hat Enterprise Linux Server (v. 6) - i386, noarch, 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, noarch, x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 6) - i386, 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* Modern operating systems implement virtualization of physical memory to\nefficiently use available system resources and provide inter-domain\nprotection through access control and isolation. The L1TF issue was found\nin the way the x86 microprocessor designs have implemented speculative\nexecution of instructions (a commonly used performance optimisation) in\ncombination with handling of page-faults caused by terminated virtual to\nphysical address resolving process. As a result, an unprivileged attacker\ncould use this flaw to read privileged memory of the kernel or other\nprocesses and/or cross guest/host boundaries to read host memory by\nconducting targeted cache side-channel attacks. (CVE-2018-3620,\nCVE-2018-3646)\n\n* An industry-wide issue was found in the way many modern microprocessor\ndesigns have implemented speculative execution of instructions past bounds\ncheck. The flaw relies on the presence of a precisely-defined instruction\nsequence in the privileged code and the fact that memory writes occur to an\naddress which depends on the untrusted value. Such writes cause an update\ninto the microprocessor\u0027s data cache even for speculatively executed\ninstructions that never actually commit (retire). As a result, an\nunprivileged attacker could use this flaw to influence speculative\nexecution and/or read privileged memory by conducting targeted cache\nside-channel attacks. (CVE-2018-3693)\n\n* kernel: kvm: vmx: host GDT limit corruption (CVE-2018-10901)\n\n* kernel: Use-after-free in snd_pcm_info function in ALSA subsystem\npotentially leads to privilege escalation (CVE-2017-0861)\n\n* kernel: Use-after-free in snd_seq_ioctl_create_port() (CVE-2017-15265)\n\n* kernel: race condition in snd_seq_write() may lead to UAF or OOB-access\n(CVE-2018-7566)\n\n* kernel: Race condition in sound system can lead to denial of service\n(CVE-2018-1000004)\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 Intel OSSIRT (Intel.com) for reporting\nCVE-2018-3620 and CVE-2018-3646; Vladimir Kiriansky (MIT) and Carl\nWaldspurger (Carl Waldspurger Consulting) for reporting CVE-2018-3693; and\nVegard Nossum (Oracle Corporation) for reporting CVE-2018-10901. \n\nBug Fix(es):\n\n* The Least recently used (LRU) operations are batched by caching pages in\nper-cpu page vectors to prevent contention of the heavily used lru_lock\nspinlock. The page vectors can hold even the compound pages. Previously,\nthe page vectors were cleared only if they were full. Subsequently, the\namount of memory held in page vectors, which is not reclaimable, was\nsometimes too high. Consequently the page reclamation started the Out of\nMemory (OOM) killing processes. With this update, the underlying source\ncode has been fixed to clear LRU page vectors each time when a compound\npage is added to them. As a result, OOM killing processes due to high\namounts of memory held in page vectors no longer occur. (BZ#1575819)\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\n1501878 - CVE-2017-15265 kernel: Use-after-free in snd_seq_ioctl_create_port()\n1535315 - CVE-2018-1000004 kernel: Race condition in sound system can lead to denial of service\n1550142 - CVE-2018-7566 kernel: race condition in snd_seq_write() may lead to UAF or OOB-access\n1563994 - CVE-2017-0861 kernel: Use-after-free in snd_pcm_info function in ALSA subsystem potentially leads to privilege escalation\n1581650 - CVE-2018-3693 Kernel: speculative bounds check bypass store\n1585005 - CVE-2018-3646 Kernel: hw: cpu: L1 terminal fault (L1TF)\n1601849 - CVE-2018-10901 kernel: kvm: vmx: host GDT limit corruption\n\n6. Package List:\n\nRed Hat Enterprise Linux Desktop (v. 6):\n\nSource:\nkernel-2.6.32-754.3.5.el6.src.rpm\n\ni386:\nkernel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nkernel-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-headers-2.6.32-754.3.5.el6.i686.rpm\nperf-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-754.3.5.el6.noarch.rpm\nkernel-doc-2.6.32-754.3.5.el6.noarch.rpm\nkernel-firmware-2.6.32-754.3.5.el6.noarch.rpm\n\nx86_64:\nkernel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-devel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-headers-2.6.32-754.3.5.el6.x86_64.rpm\nperf-2.6.32-754.3.5.el6.x86_64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Desktop Optional (v. 6):\n\ni386:\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node (v. 6):\n\nSource:\nkernel-2.6.32-754.3.5.el6.src.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-754.3.5.el6.noarch.rpm\nkernel-doc-2.6.32-754.3.5.el6.noarch.rpm\nkernel-firmware-2.6.32-754.3.5.el6.noarch.rpm\n\nx86_64:\nkernel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-devel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-headers-2.6.32-754.3.5.el6.x86_64.rpm\nperf-2.6.32-754.3.5.el6.x86_64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional (v. 6):\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 6):\n\nSource:\nkernel-2.6.32-754.3.5.el6.src.rpm\n\ni386:\nkernel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nkernel-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-headers-2.6.32-754.3.5.el6.i686.rpm\nperf-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-754.3.5.el6.noarch.rpm\nkernel-doc-2.6.32-754.3.5.el6.noarch.rpm\nkernel-firmware-2.6.32-754.3.5.el6.noarch.rpm\n\nppc64:\nkernel-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-bootwrapper-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-debug-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-debuginfo-common-ppc64-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-devel-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-headers-2.6.32-754.3.5.el6.ppc64.rpm\nperf-2.6.32-754.3.5.el6.ppc64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm\n\ns390x:\nkernel-2.6.32-754.3.5.el6.s390x.rpm\nkernel-debug-2.6.32-754.3.5.el6.s390x.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.s390x.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\nkernel-debuginfo-common-s390x-2.6.32-754.3.5.el6.s390x.rpm\nkernel-devel-2.6.32-754.3.5.el6.s390x.rpm\nkernel-headers-2.6.32-754.3.5.el6.s390x.rpm\nkernel-kdump-2.6.32-754.3.5.el6.s390x.rpm\nkernel-kdump-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\nkernel-kdump-devel-2.6.32-754.3.5.el6.s390x.rpm\nperf-2.6.32-754.3.5.el6.s390x.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\n\nx86_64:\nkernel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-devel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-headers-2.6.32-754.3.5.el6.x86_64.rpm\nperf-2.6.32-754.3.5.el6.x86_64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 6):\n\ni386:\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\n\nppc64:\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm\nkernel-debuginfo-common-ppc64-2.6.32-754.3.5.el6.ppc64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm\npython-perf-2.6.32-754.3.5.el6.ppc64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.ppc64.rpm\n\ns390x:\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\nkernel-debuginfo-common-s390x-2.6.32-754.3.5.el6.s390x.rpm\nkernel-kdump-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\npython-perf-2.6.32-754.3.5.el6.s390x.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.s390x.rpm\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nkernel-2.6.32-754.3.5.el6.src.rpm\n\ni386:\nkernel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nkernel-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-headers-2.6.32-754.3.5.el6.i686.rpm\nperf-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-754.3.5.el6.noarch.rpm\nkernel-doc-2.6.32-754.3.5.el6.noarch.rpm\nkernel-firmware-2.6.32-754.3.5.el6.noarch.rpm\n\nx86_64:\nkernel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.i686.rpm\nkernel-debug-devel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-devel-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-headers-2.6.32-754.3.5.el6.x86_64.rpm\nperf-2.6.32-754.3.5.el6.x86_64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 6):\n\ni386:\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-754.3.5.el6.i686.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\npython-perf-2.6.32-754.3.5.el6.i686.rpm\npython-perf-debuginfo-2.6.32-754.3.5.el6.i686.rpm\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-754.3.5.el6.x86_64.rpm\nperf-debuginfo-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-2.6.32-754.3.5.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-754.3.5.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-2017-0861\nhttps://access.redhat.com/security/cve/CVE-2017-15265\nhttps://access.redhat.com/security/cve/CVE-2018-3620\nhttps://access.redhat.com/security/cve/CVE-2018-3646\nhttps://access.redhat.com/security/cve/CVE-2018-3693\nhttps://access.redhat.com/security/cve/CVE-2018-7566\nhttps://access.redhat.com/security/cve/CVE-2018-10901\nhttps://access.redhat.com/security/cve/CVE-2018-1000004\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/security/vulnerabilities/L1TF\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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\n/6fv2MlabwY=kAUc\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. \nCorrected: 2018-08-14 17:51:12 UTC (stable/11, 11.1-STABLE)\n 2018-08-15 02:30:11 UTC (releng/11.2, 11.2-RELEASE-p2)\n 2018-08-15 02:30:11 UTC (releng/11.1, 11.1-RELEASE-p13)\nCVE Name: CVE-2018-3620, CVE-2018-3646\n\nSpecial Note: Speculative execution vulnerability mitigation remains a work\n in progress. This advisory addresses the issue in FreeBSD\n 11.1 and later. \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\nWhen a program accesses data in memory via a logical address it is translated\nto a physical address in RAM by the CPU. Accessing an unmapped logical\naddress results in what is known as a terminal fault. \n\nII. The CPU may speculatively access the level 1 data cache (L1D). Data\nwhich would otherwise be protected may then be determined by using side\nchannel methods. \n\nThis issue affects bhyve on FreeBSD/amd64 systems. \n\nIII. Impact\n\nAn attacker executing user code, or kernel code inside of a virtual machine,\nmay be able to read secret data from the kernel or from another virtual\nmachine. \n\nIV. Workaround\n\nNo workaround is available. \n\nV. Solution\n\nUpgrade your vulnerable system to a supported FreeBSD stable or\nrelease / security branch (releng) dated after the correction date,\nand reboot. \n\nPerform one of the following:\n\n1) 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# shutdown -r +30 \"Rebooting for security update\"\n\n2) 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 11.2]\n# fetch https://security.FreeBSD.org/patches/SA-18:09/l1tf-11.2.patch\n# fetch https://security.FreeBSD.org/patches/SA-18:09/l1tf-11.2.patch.asc\n# gpg --verify l1tf-11.2.patch.asc\n\n[FreeBSD 11.1]\n# fetch https://security.FreeBSD.org/patches/SA-18:09/l1tf-11.1.patch\n# fetch https://security.FreeBSD.org/patches/SA-18:09/l1tf-11.1.patch.asc\n# gpg --verify l1tf-11.1.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 your kernel as described in\n\u003cURL:https://www.FreeBSD.org/handbook/kernelconfig.html\u003e and reboot the\nsystem. \n\nVI. Correction details\n\nCVE-2018-3620 (L1 Terminal Fault-OS)\n- ------------------------------------\nFreeBSD reserves the the memory page at physical address 0, so it will not\ncontain secret data. FreeBSD zeros the paging data structures for unmapped\naddresses, so that speculatively executed L1 Terminal Faults will access only\nthe reserved, unused page. \n\nThe following list contains the correction revision numbers for each\naffected branch. \n\nBranch/path Revision\n- -------------------------------------------------------------------------\nstable/11/ r337794\nreleng/11.1/ r337828\nreleng/11.2/ r337828\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. ==========================================================================\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. This update fixes the problems. \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. 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. (CVE-2018-3620)\n\n Andrey Konovalov discovered an out-of-bounds read in the POSIX\n timers subsystem in the Linux kernel. (CVE-2017-18344)\n\n Juha-Matti Tilli discovered that the TCP implementation in the Linux kernel\n performed algorithmically expensive operations in some situations when\n handling incoming packets. A remote attacker could use this to cause a\n denial of service. (CVE-2018-5390)\n\n Juha-Matti Tilli discovered that the IP implementation in the Linux kernel\n performed algorithmically expensive operations in some situations when\n handling incoming packet fragments. A remote attacker could use this to\n cause a denial of service. (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. The Red Hat Enterprise Virtualization Hypervisor\nis a dedicated Kernel-based Virtual Machine (KVM) hypervisor. 6.5) - x86_64\n\n3. - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\nGentoo Linux Security Advisory GLSA 201810-06\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n https://security.gentoo.org/\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\n Severity: Normal\n Title: Xen: Multiple vulnerabilities\n Date: October 30, 2018\n Bugs: #643350, #655188, #655544, #659442\n ID: 201810-06\n\n- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -\n\nSynopsis\n========\n\nMultiple vulnerabilities have been found in Xen, the worst of which\ncould cause a Denial of Service condition. \n\nBackground\n==========\n\nXen is a bare-metal hypervisor. \n\nAffected packages\n=================\n\n -------------------------------------------------------------------\n Package / Vulnerable / Unaffected\n -------------------------------------------------------------------\n 1 app-emulation/xen \u003c 4.10.1-r2 \u003e= 4.10.1-r2\n 2 app-emulation/xen-tools \u003c 4.10.1-r2 \u003e= 4.10.1-r2\n -------------------------------------------------------------------\n 2 affected packages\n\nDescription\n===========\n\nMultiple vulnerabilities have been discovered in Xen. Please review the\nreferenced CVE identifiers for details. \n\nResolution\n==========\n\nAll Xen users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot --verbose \"\u003e=app-emulation/xen-4.10.1-r2\"\n\nAll Xen tools users should upgrade to the latest version:\n\n # emerge --sync\n # emerge --ask --oneshot -v \"\u003e=app-emulation/xen-tools-4.10.1-r2\"\n\nReferences\n==========\n\n[ 1 ] CVE-2017-5715\n https://nvd.nist.gov/vuln/detail/CVE-2017-5715\n[ 2 ] CVE-2017-5753\n https://nvd.nist.gov/vuln/detail/CVE-2017-5753\n[ 3 ] CVE-2017-5754\n https://nvd.nist.gov/vuln/detail/CVE-2017-5754\n[ 4 ] CVE-2018-10471\n https://nvd.nist.gov/vuln/detail/CVE-2018-10471\n[ 5 ] CVE-2018-10472\n https://nvd.nist.gov/vuln/detail/CVE-2018-10472\n[ 6 ] CVE-2018-10981\n https://nvd.nist.gov/vuln/detail/CVE-2018-10981\n[ 7 ] CVE-2018-10982\n https://nvd.nist.gov/vuln/detail/CVE-2018-10982\n[ 8 ] CVE-2018-12891\n https://nvd.nist.gov/vuln/detail/CVE-2018-12891\n[ 9 ] CVE-2018-12892\n https://nvd.nist.gov/vuln/detail/CVE-2018-12892\n[ 10 ] CVE-2018-12893\n https://nvd.nist.gov/vuln/detail/CVE-2018-12893\n[ 11 ] CVE-2018-15468\n https://nvd.nist.gov/vuln/detail/CVE-2018-15468\n[ 12 ] CVE-2018-15469\n https://nvd.nist.gov/vuln/detail/CVE-2018-15469\n[ 13 ] CVE-2018-15470\n https://nvd.nist.gov/vuln/detail/CVE-2018-15470\n[ 14 ] CVE-2018-3620\n https://nvd.nist.gov/vuln/detail/CVE-2018-3620\n[ 15 ] CVE-2018-3646\n https://nvd.nist.gov/vuln/detail/CVE-2018-3646\n[ 16 ] CVE-2018-5244\n https://nvd.nist.gov/vuln/detail/CVE-2018-5244\n[ 17 ] CVE-2018-7540\n https://nvd.nist.gov/vuln/detail/CVE-2018-7540\n[ 18 ] CVE-2018-7541\n https://nvd.nist.gov/vuln/detail/CVE-2018-7541\n[ 19 ] CVE-2018-7542\n https://nvd.nist.gov/vuln/detail/CVE-2018-7542\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/201810-06\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 2018 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\nhttps://creativecommons.org/licenses/by-sa/2.5\n",
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VAR-201808-0957
Vulnerability from variot - Updated: 2026-03-09 20:08Systems with microprocessors utilizing speculative execution and address translations may allow unauthorized disclosure of information residing in the L1 data cache to an attacker with local user access with guest OS privilege via a terminal page fault and a side-channel analysis. These attacks are known as L1 Terminal Fault: SGX, L1 Terminal Fault: OS/SMM, and L1 Terminal Fault: VMM. 7.2) - noarch, x86_64
- Description:
The RHV-M Virtual Appliance automates the process of installing and configuring the Red Hat Virtualization Manager. The appliance is available to download as an OVA file from the Customer Portal. (CVE-2018-3620, CVE-2018-3646)
- 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. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
APPLE-SA-2018-10-30-2 macOS Mojave 10.14.1, Security Update 2018-001 High Sierra, Security Update 2018-005 Sierra
macOS Mojave 10.14.1, Security Update 2018-001 High Sierra, and Security Update 2018-005 Sierra are now available and address the following:
afpserver Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
AppleGraphicsControl Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 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-2018-4410: an anonymous researcher working with Trend Micro's Zero Day Initiative
AppleGraphicsControl Available for: macOS High Sierra 10.13.6 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
APR Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
ATS Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
ATS Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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)
CFNetwork Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
CoreAnimation Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 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-2018-4415: Liang Zhuo working with Beyond Security's SecuriTeam Secure Disclosure
CoreCrypto Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 Impact: An attacker may be able to exploit a weakness in the Miller-Rabin primality test to incorrectly identify prime numbers Description: An issue existed in the method for determining prime numbers. This issue was addressed by using pseudorandom bases for testing of primes. CVE-2018-4398: Martin Albrecht, Jake Massimo and Kenny Paterson of Royal Holloway, University of London, and Juraj Somorovsky of Ruhr University, Bochum
CoreFoundation Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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)
CUPS Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
CUPS Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
Dictionary Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
Dock Available for: macOS Mojave 10.14 Impact: A malicious application may be able to access restricted files Description: This issue was addressed by removing additional entitlements. CVE-2018-4403: Patrick Wardle of Digita Security
dyld Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 Impact: A malicious application may be able to elevate privileges Description: A logic issue was addressed with improved validation. 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)
EFI Available for: macOS High Sierra 10.13.6, macOS Mojave 10.14 Impact: A local user may be able to modify protected parts of the file system Description: A configuration issue was addressed with additional restrictions. CVE-2018-4342: Timothy Perfitt of Twocanoes Software
Foundation Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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)
Grand Central Dispatch Available for: macOS High Sierra 10.13.6 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
Heimdal Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
Hypervisor Available for: macOS Sierra 10.12.6 Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption vulnerability was addressed with improved locking. CVE-2018-4242: Zhuo Liang of Qihoo 360 Nirvan Team
ICU Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 Impact: Processing a maliciously crafted string may lead to heap corruption Description: A memory corruption issue was addressed with improved input validation. CVE-2018-4394: an anonymous researcher
Intel Graphics Driver Available for: macOS Sierra 10.12.6 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
Intel Graphics Driver Available for: macOS High Sierra 10.13.6 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
Intel Graphics Driver Available for: macOS High Sierra 10.13.6 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
IOGraphics Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 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-2018-4422: an anonymous researcher working with Trend Micro's Zero Day Initiative
IOHIDFamily Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
IOKit Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 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-2018-4402: Proteas of Qihoo 360 Nirvan Team
IOKit Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
IOUserEthernet Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
IPSec Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 Impact: An application may be able to gain elevated privileges Description: An out-of-bounds read was addressed with improved input validation. CVE-2018-4371: Tim Michaud (@TimGMichaud) of Leviathan Security Group
Kernel Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 Impact: An application may be able to execute arbitrary code with kernel privileges Description: A memory corruption issue was addressed by removing the vulnerable code. CVE-2018-4420: Mohamed Ghannam (@_simo36)
Kernel Available for: macOS High Sierra 10.13.6 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)
Kernel Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 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-2018-4340: Mohamed Ghannam (@_simo36) CVE-2018-4419: Mohamed Ghannam (@_simo36) 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
Kernel Available for: macOS Sierra 10.12.6 Impact: Mounting a maliciously crafted NFS network share may lead to arbitrary code execution with system privileges Description: Multiple memory corruption issues were addressed with improved memory handling. CVE-2018-4259: Kevin Backhouse of Semmle and LGTM.com CVE-2018-4286: Kevin Backhouse of Semmle and LGTM.com CVE-2018-4287: Kevin Backhouse of Semmle and LGTM.com CVE-2018-4288: Kevin Backhouse of Semmle and LGTM.com CVE-2018-4291: Kevin Backhouse of Semmle and LGTM.com
Kernel Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 Impact: An application may be able to read restricted memory Description: A memory initialization issue was addressed with improved memory handling. CVE-2018-4413: Juwei Lin (@panicaII) of TrendMicro Mobile Security Team
Kernel Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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.
Kernel Available for: macOS Mojave 10.14 Impact: An application may be able to execute arbitrary code with kernel privileges Description: A buffer overflow was addressed with improved size validation. CVE-2018-4424: Dr. Silvio Cesare of InfoSect
Login Window Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
Mail Available for: macOS Mojave 10.14 Impact: Processing a maliciously crafted mail message may lead to UI spoofing Description: An inconsistent user interface issue was addressed with improved state management. CVE-2018-4389: Dropbox Offensive Security Team, Theodor Ragnar Gislason of Syndis
mDNSOffloadUserClient Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
MediaRemote Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 Impact: A sandboxed process may be able to circumvent sandbox restrictions Description: An access issue was addressed with additional sandbox restrictions. This ensures that implementation specific system registers cannot be leaked via a speculative execution side-channel. CVE-2018-3640: Innokentiy Sennovskiy from BiZone LLC (bi.zone), Zdenek Sojka, Rudolf Marek and Alex Zuepke from SYSGO AG (sysgo.com)
NetworkExtension Available for: macOS High Sierra 10.13.6, macOS Mojave 10.14 Impact: Connecting to a VPN server may leak DNS queries to a DNS proxy Description: A logic issue was addressed with improved state management. CVE-2018-4369: an anonymous researcher
Perl Available for: macOS Sierra 10.12.6 Impact: Multiple buffer overflow issues existed in Perl Description: Multiple issues in Perl were addressed with improved memory handling. CVE-2018-6797: Brian Carpenter
Ruby Available for: macOS Sierra 10.12.6 Impact: A remote attacker may be able to cause unexpected application termination or arbitrary code execution Description: Multiple issues in Ruby were addressed in this update. CVE-2017-898 CVE-2017-10784 CVE-2017-14033 CVE-2017-14064 CVE-2017-17405 CVE-2017-17742 CVE-2018-6914 CVE-2018-8777 CVE-2018-8778 CVE-2018-8779 CVE-2018-8780
Security Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 Impact: Processing a maliciously crafted S/MIME signed message may lead to a denial of service Description: A validation issue was addressed with improved logic. CVE-2018-4400: Yukinobu Nagayasu of LAC Co., Ltd.
Security Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
Spotlight Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
Symptom Framework Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6 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
WiFi Available for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS Mojave 10.14 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-2018-4368: Milan Stute and Alex Mariotto of Secure Mobile Networking Lab at Technische UniversitA$?t Darmstadt
Additional recognition
Calendar We would like to acknowledge an anonymous researcher for their assistance.
iBooks We would like to acknowledge Sem VoigtlA$?nder of Fontys Hogeschool ICT for their assistance.
Kernel We would like to acknowledge Brandon Azad for their assistance.
LaunchServices We would like to acknowledge Alok Menghrajani of Square for their assistance.
Quick Look We would like to acknowledge lokihardt of Google Project Zero for their assistance.
Security We would like to acknowledge Marinos Bernitsas of Parachute for their assistance.
Terminal We would like to acknowledge an anonymous researcher for their assistance.
Installation note:
macOS Mojave 10.14.1, Security Update 2018-001 High Sierra, and Security Update 2018-005 Sierra 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
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-----
iQJdBAEBCABHFiEEDNXJVNCJJEAVmJdZeC9tht7TK3EFAlvYkgYpHHByb2R1Y3Qt c2VjdXJpdHktbm9yZXBseUBsaXN0cy5hcHBsZS5jb20ACgkQeC9tht7TK3EcGQ// QbUbTOZRgxcStGZjs+qdXjeaXI6i1MKaky7o/iYCXf87crFu79PCsXyPU1jeMvoS tgDxz7ornlyaxR4wcSYzfcuIeY2ZH+dkxc7JJHQbKTW1dWYHpXUUzzNm+Ay/Gtk+ 2EIAgJ9oUf8FARR5cmcKBZfLFVdc40vpM3bBCV4m2Kr5KiDsqZKdZTujBQRccAsO HKRbhDecw0WX/CfEbLprs86uIXFMIoifhmh8LMebjzIQn2ozoFG6R31vMMHeDpir zf0xlVCJrJy/XywmkodhBWWrUWcM0hfsJ8EmyIBwFEYUxFhOV3D+x3rStd2kjyNL LG9oWclxDkjImQXdrL8IRAQfZvcVQFZK2vSGCYfRN0LY105sxjPjeIsJ0RORzcSN 2mlDR1UuTosk0GleDbmhv/ornfOc537UebwuHVWU5LpPNFkvY1Cv8zPrQAHewuod TmktkNuv2x2fgw9g7ntE88UBF9JMC+Ofs/FgJ67RkoT4R39P7VvaztHlmxmr/rIw TrSs7TDVqciz+DOMRKxyNPI1cpXM5ITCTvgbY4+RWwaFJzfgY+Gc+sldvVcb1x9I LlsI19MA0bsvi+ReOcLbWYuEHaVhVqZ7LndxR9m2gJ39L9jff+dOsSlznF4OLs+S t7Rz6i2mOpe6vXobkTUmml3m3zYIhL3XcdcYpw3U0F8= =uhgi -----END PGP SIGNATURE----- . Intel Core i3 processor, etc. are all CPU (central processing unit) products of Intel Corporation of the United States. Security vulnerabilities exist in several Intel products that use speculative execution and address translation. The following products are affected: Intel Core i3 processor; Intel Core i5 processor; Intel Core i7 processor; Intel Core M processor family; 2nd generation Intel Core processors; 3rd generation Intel Core processors; 4th generation Intel Core processors; 5th generation Intel Core processors, etc.
To fully resolve these vulnerabilities it is also necessary to install updated CPU microcode (only available in Debian non-free). Common server class CPUs are covered in the update released as DSA 4273-1.
For the stable distribution (stretch), these problems have been fixed in version 4.9.110-3+deb9u3. ========================================================================= Ubuntu Security Notice USN-3742-2 August 14, 2018
linux-lts-trusty vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 12.04 ESM
Summary:
Several security issues were fixed in the Linux kernel. This update provides the corresponding updates for the Linux Hardware Enablement (HWE) kernel from Ubuntu 14.04 for Ubuntu 12.04 ESM.
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. 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. (CVE-2018-3620)
Andrey Konovalov discovered an out-of-bounds read in the POSIX timers subsystem in the Linux kernel. A local attacker could use this to cause a denial of service (system crash) or expose sensitive information. A remote attacker could use this to cause a denial of service. (CVE-2018-5390)
Juha-Matti Tilli discovered that the IP implementation in the Linux kernel performed algorithmically expensive operations in some situations when handling incoming packet fragments. A remote attacker could use this to cause a denial of service. (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-3.13.0-155-generic 3.13.0-155.206~precise1 linux-image-3.13.0-155-generic-lpae 3.13.0-155.206~precise1 linux-image-generic-lpae-lts-trusty 3.13.0.155.145 linux-image-generic-lts-trusty 3.13.0.155.145
Please note that the recommended mitigation for CVE-2018-3646 involves updating processor microcode in addition to updating the kernel; however, the kernel includes a fallback for processors that have not received microcode updates.
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. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
====================================================================
Red Hat Security Advisory
Synopsis: Important: kernel security and bug fix update Advisory ID: RHSA-2018:2387-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:2387 Issue date: 2018-08-14 CVE Names: CVE-2018-3620 CVE-2018-3639 CVE-2018-3646 ==================================================================== 1. Summary:
An update for kernel is now available for Red Hat Enterprise Linux 7.4 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. 7.4) - noarch, x86_64 Red Hat Enterprise Linux ComputeNode Optional EUS (v. 7.4) - x86_64 Red Hat Enterprise Linux Server EUS (v. 7.4) - noarch, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional EUS (v. 7.4) - ppc64, ppc64le, x86_64
- Description:
The kernel packages contain the Linux kernel, the core of any Linux operating system.
Security Fix(es):
-
Modern operating systems implement virtualization of physical memory to efficiently use available system resources and provide inter-domain protection through access control and isolation. The L1TF issue was found in the way the x86 microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimisation) in combination with handling of page-faults caused by terminated virtual to physical address resolving process. As a result, an unprivileged attacker could use this flaw to read privileged memory of the kernel or other processes and/or cross guest/host boundaries to read host memory by conducting targeted cache side-channel attacks. (CVE-2018-3620, CVE-2018-3646)
-
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.
Bug Fix(es):
-
Previously, configurations with the little-endian variant of IBM Power Systems CPU architectures and Hard Disk Drives (HDD) designed according to Nonvolatile Memory Express (NVMe) open standards, experienced crashes during shutdown or reboot due to race conditions of CPUs. As a consequence, the sysfs pseudo file system threw a stack trace report about an attempt to create a duplicate entry in sysfs. This update modifies the source code so that the irq_dispose_mapping() function is called first and the msi_bitmap_free_hwirqs() function is called afterwards. As a result, the race condition no longer appears in the described scenario. (BZ#1570510)
-
When switching from the indirect branch speculation (IBRS) feature to the retpolines feature, the IBRS state of some CPUs was sometimes not handled correctly. Consequently, some CPUs were left with the IBRS Model-Specific Register (MSR) bit set to 1, which could lead to performance issues. With this update, the underlying source code has been fixed to clear the IBRS MSR bits correctly, thus fixing the bug. (BZ#1586147)
-
During a balloon reset, page pointers were not correctly initialized after unmapping the memory. Consequently, on the VMware ESXi hypervisor with "Fault Tolerance" and "ballooning" enabled, the following messages repeatedly occurred in the kernel log:
[3014611.640148] WARNING: at mm/vmalloc.c:1491 __vunmap+0xd3/0x100() [3014611.640269] Trying to vfree() nonexistent vm area (ffffc90000697000)
With this update, the underlying source code has been fixed to initialize page pointers properly. As a result, the mm/vmalloc.c warnings no longer occur under the described circumstances. (BZ#1595600)
- 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/):
1566890 - CVE-2018-3639 hw: cpu: speculative store bypass 1585005 - CVE-2018-3646 Kernel: hw: cpu: L1 terminal fault (L1TF)
- Package List:
Red Hat Enterprise Linux ComputeNode EUS (v. 7.4):
Source: kernel-3.10.0-693.37.4.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-693.37.4.el7.noarch.rpm kernel-doc-3.10.0-693.37.4.el7.noarch.rpm
x86_64: kernel-3.10.0-693.37.4.el7.x86_64.rpm kernel-debug-3.10.0-693.37.4.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-debug-devel-3.10.0-693.37.4.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.37.4.el7.x86_64.rpm kernel-devel-3.10.0-693.37.4.el7.x86_64.rpm kernel-headers-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-libs-3.10.0-693.37.4.el7.x86_64.rpm perf-3.10.0-693.37.4.el7.x86_64.rpm perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm python-perf-3.10.0-693.37.4.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional EUS (v. 7.4):
x86_64: kernel-debug-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-693.37.4.el7.x86_64.rpm perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm
Red Hat Enterprise Linux Server EUS (v. 7.4):
Source: kernel-3.10.0-693.37.4.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-693.37.4.el7.noarch.rpm kernel-doc-3.10.0-693.37.4.el7.noarch.rpm
ppc64: kernel-3.10.0-693.37.4.el7.ppc64.rpm kernel-bootwrapper-3.10.0-693.37.4.el7.ppc64.rpm kernel-debug-3.10.0-693.37.4.el7.ppc64.rpm kernel-debug-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm kernel-debug-devel-3.10.0-693.37.4.el7.ppc64.rpm kernel-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-693.37.4.el7.ppc64.rpm kernel-devel-3.10.0-693.37.4.el7.ppc64.rpm kernel-headers-3.10.0-693.37.4.el7.ppc64.rpm kernel-tools-3.10.0-693.37.4.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm kernel-tools-libs-3.10.0-693.37.4.el7.ppc64.rpm perf-3.10.0-693.37.4.el7.ppc64.rpm perf-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm python-perf-3.10.0-693.37.4.el7.ppc64.rpm python-perf-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm
ppc64le: kernel-3.10.0-693.37.4.el7.ppc64le.rpm kernel-bootwrapper-3.10.0-693.37.4.el7.ppc64le.rpm kernel-debug-3.10.0-693.37.4.el7.ppc64le.rpm kernel-debug-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm kernel-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-693.37.4.el7.ppc64le.rpm kernel-devel-3.10.0-693.37.4.el7.ppc64le.rpm kernel-headers-3.10.0-693.37.4.el7.ppc64le.rpm kernel-tools-3.10.0-693.37.4.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm kernel-tools-libs-3.10.0-693.37.4.el7.ppc64le.rpm perf-3.10.0-693.37.4.el7.ppc64le.rpm perf-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm python-perf-3.10.0-693.37.4.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm
s390x: kernel-3.10.0-693.37.4.el7.s390x.rpm kernel-debug-3.10.0-693.37.4.el7.s390x.rpm kernel-debug-debuginfo-3.10.0-693.37.4.el7.s390x.rpm kernel-debug-devel-3.10.0-693.37.4.el7.s390x.rpm kernel-debuginfo-3.10.0-693.37.4.el7.s390x.rpm kernel-debuginfo-common-s390x-3.10.0-693.37.4.el7.s390x.rpm kernel-devel-3.10.0-693.37.4.el7.s390x.rpm kernel-headers-3.10.0-693.37.4.el7.s390x.rpm kernel-kdump-3.10.0-693.37.4.el7.s390x.rpm kernel-kdump-debuginfo-3.10.0-693.37.4.el7.s390x.rpm kernel-kdump-devel-3.10.0-693.37.4.el7.s390x.rpm perf-3.10.0-693.37.4.el7.s390x.rpm perf-debuginfo-3.10.0-693.37.4.el7.s390x.rpm python-perf-3.10.0-693.37.4.el7.s390x.rpm python-perf-debuginfo-3.10.0-693.37.4.el7.s390x.rpm
x86_64: kernel-3.10.0-693.37.4.el7.x86_64.rpm kernel-debug-3.10.0-693.37.4.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-debug-devel-3.10.0-693.37.4.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.37.4.el7.x86_64.rpm kernel-devel-3.10.0-693.37.4.el7.x86_64.rpm kernel-headers-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-libs-3.10.0-693.37.4.el7.x86_64.rpm perf-3.10.0-693.37.4.el7.x86_64.rpm perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm python-perf-3.10.0-693.37.4.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm
Red Hat Enterprise Linux Server Optional EUS (v. 7.4):
ppc64: kernel-debug-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm kernel-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-693.37.4.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm kernel-tools-libs-devel-3.10.0-693.37.4.el7.ppc64.rpm perf-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm python-perf-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm
ppc64le: kernel-debug-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm kernel-debug-devel-3.10.0-693.37.4.el7.ppc64le.rpm kernel-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-693.37.4.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm kernel-tools-libs-devel-3.10.0-693.37.4.el7.ppc64le.rpm perf-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm
x86_64: kernel-debug-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-693.37.4.el7.x86_64.rpm perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm python-perf-debuginfo-3.10.0-693.37.4.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-2018-3620 https://access.redhat.com/security/cve/CVE-2018-3639 https://access.redhat.com/security/cve/CVE-2018-3646 https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/security/vulnerabilities/L1TF
- 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 . 6.4) - x86_64
-
(CVE-2018-3639)
-
kernel: kvm: vmx: host GDT limit corruption (CVE-2018-10901)
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. Unfortunately, the update introduced regressions that caused kernel panics when booting in some environments as well as preventing Java applications from starting. This update fixes the problems.
We apologize for the inconvenience. Description:
The kernel-rt packages provide the Real Time Linux Kernel, which enables fine-tuning for systems with extremely high determinism requirements.
Bug Fix(es):
- The kernel-rt packages have been upgraded to the 3.10.0-693.37.1 source tree, which provides a number of bug fixes over the previous version. (BZ#1599860)
4
Show details on source website{
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"data": "Systems with microprocessors utilizing speculative execution and address translations may allow unauthorized disclosure of information residing in the L1 data cache to an attacker with local user access with guest OS privilege via a terminal page fault and a side-channel analysis. These attacks are known as L1 Terminal Fault: SGX, L1 Terminal Fault: OS/SMM, and L1 Terminal Fault: VMM. 7.2) - noarch, x86_64\n\n3. Description:\n\nThe RHV-M Virtual Appliance automates the process of installing and\nconfiguring the Red Hat Virtualization Manager. The appliance is available\nto download as an OVA file from the Customer Portal. (CVE-2018-3620,\nCVE-2018-3646)\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. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\nAPPLE-SA-2018-10-30-2 macOS Mojave 10.14.1, Security Update 2018-001\nHigh Sierra, Security Update 2018-005 Sierra\n\nmacOS Mojave 10.14.1, Security Update 2018-001 High Sierra, and\nSecurity Update 2018-005 Sierra are now available and address\nthe following:\n\nafpserver\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nAppleGraphicsControl\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\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-2018-4410: an anonymous researcher working with Trend Micro\u0027s\nZero Day Initiative\n\nAppleGraphicsControl\nAvailable for: macOS High Sierra 10.13.6\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\n\nAPR\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nATS\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nATS\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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)\n\nCFNetwork\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nCoreAnimation\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\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-2018-4415: Liang Zhuo working with Beyond Security\u0027s SecuriTeam\nSecure Disclosure\n\nCoreCrypto\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\nImpact: An attacker may be able to exploit a weakness in the\nMiller-Rabin primality test to incorrectly identify prime numbers\nDescription: An issue existed in the method for determining prime\nnumbers. This issue was addressed by using pseudorandom bases for\ntesting of primes. \nCVE-2018-4398: Martin Albrecht, Jake Massimo and Kenny Paterson of\nRoyal Holloway, University of London, and Juraj Somorovsky of Ruhr\nUniversity, Bochum\n\nCoreFoundation\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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)\n\nCUPS\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nCUPS\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nDictionary\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nDock\nAvailable for: macOS Mojave 10.14\nImpact: A malicious application may be able to access restricted\nfiles\nDescription: This issue was addressed by removing additional\nentitlements. \nCVE-2018-4403: Patrick Wardle of Digita Security\n\ndyld\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\nImpact: A malicious application may be able to elevate privileges\nDescription: A logic issue was addressed with improved validation. 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)\n\nEFI\nAvailable for: macOS High Sierra 10.13.6, macOS Mojave 10.14\nImpact: A local user may be able to modify protected parts of the\nfile system\nDescription: A configuration issue was addressed with additional\nrestrictions. \nCVE-2018-4342: Timothy Perfitt of Twocanoes Software\n\nFoundation\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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)\n\nGrand Central Dispatch\nAvailable for: macOS High Sierra 10.13.6\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\n\nHeimdal\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nHypervisor\nAvailable for: macOS Sierra 10.12.6\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption vulnerability was addressed with\nimproved locking. \nCVE-2018-4242: Zhuo Liang of Qihoo 360 Nirvan Team\n\nICU\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\nImpact: Processing a maliciously crafted string may lead to heap\ncorruption\nDescription: A memory corruption issue was addressed with improved\ninput validation. \nCVE-2018-4394: an anonymous researcher\n\nIntel Graphics Driver\nAvailable for: macOS Sierra 10.12.6\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\n\nIntel Graphics Driver\nAvailable for: macOS High Sierra 10.13.6\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\n\nIntel Graphics Driver\nAvailable for: macOS High Sierra 10.13.6\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\n\nIOGraphics\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\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-2018-4422: an anonymous researcher working with Trend Micro\u0027s\nZero Day Initiative\n\nIOHIDFamily\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nIOKit\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\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-2018-4402: Proteas of Qihoo 360 Nirvan Team\n\nIOKit\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nIOUserEthernet\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nIPSec\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\nImpact: An application may be able to gain elevated privileges\nDescription: An out-of-bounds read was addressed with improved input\nvalidation. \nCVE-2018-4371: Tim Michaud (@TimGMichaud) of Leviathan Security Group\n\nKernel\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A memory corruption issue was addressed by removing the\nvulnerable code. \nCVE-2018-4420: Mohamed Ghannam (@_simo36)\n\nKernel\nAvailable for: macOS High Sierra 10.13.6\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)\n\nKernel\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\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-2018-4340: Mohamed Ghannam (@_simo36)\nCVE-2018-4419: Mohamed Ghannam (@_simo36)\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\n\nKernel\nAvailable for: macOS Sierra 10.12.6\nImpact: Mounting a maliciously crafted NFS network share may lead to\narbitrary code execution with system privileges\nDescription: Multiple memory corruption issues were addressed with\nimproved memory handling. \nCVE-2018-4259: Kevin Backhouse of Semmle and LGTM.com\nCVE-2018-4286: Kevin Backhouse of Semmle and LGTM.com\nCVE-2018-4287: Kevin Backhouse of Semmle and LGTM.com\nCVE-2018-4288: Kevin Backhouse of Semmle and LGTM.com\nCVE-2018-4291: Kevin Backhouse of Semmle and LGTM.com\n\nKernel\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\nImpact: An application may be able to read restricted memory\nDescription: A memory initialization issue was addressed with\nimproved memory handling. \nCVE-2018-4413: Juwei Lin (@panicaII) of TrendMicro Mobile Security\nTeam\n\nKernel\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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. \n\nKernel\nAvailable for: macOS Mojave 10.14\nImpact: An application may be able to execute arbitrary code with\nkernel privileges\nDescription: A buffer overflow was addressed with improved size\nvalidation. \nCVE-2018-4424: Dr. Silvio Cesare of InfoSect\n\nLogin Window\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nMail\nAvailable for: macOS Mojave 10.14\nImpact: Processing a maliciously crafted mail message may lead to UI\nspoofing\nDescription: An inconsistent user interface issue was addressed with\nimproved state management. \nCVE-2018-4389: Dropbox Offensive Security Team, Theodor Ragnar\nGislason of Syndis\n\nmDNSOffloadUserClient\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nMediaRemote\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\nImpact: A sandboxed process may be able to circumvent sandbox\nrestrictions\nDescription: An access issue was addressed with additional sandbox\nrestrictions. This ensures that implementation specific system\nregisters cannot be leaked via a speculative execution side-channel. \nCVE-2018-3640: Innokentiy Sennovskiy from BiZone LLC (bi.zone),\nZdenek Sojka, Rudolf Marek and Alex Zuepke from SYSGO AG (sysgo.com)\n\nNetworkExtension\nAvailable for: macOS High Sierra 10.13.6, macOS Mojave 10.14\nImpact: Connecting to a VPN server may leak DNS queries to a DNS\nproxy\nDescription: A logic issue was addressed with improved state\nmanagement. \nCVE-2018-4369: an anonymous researcher\n\nPerl\nAvailable for: macOS Sierra 10.12.6\nImpact: Multiple buffer overflow issues existed in Perl\nDescription: Multiple issues in Perl were addressed with improved\nmemory handling. \nCVE-2018-6797: Brian Carpenter\n\nRuby\nAvailable for: macOS Sierra 10.12.6\nImpact: A remote attacker may be able to cause unexpected application\ntermination or arbitrary code execution\nDescription: Multiple issues in Ruby were addressed in this update. \nCVE-2017-898\nCVE-2017-10784\nCVE-2017-14033\nCVE-2017-14064\nCVE-2017-17405\nCVE-2017-17742\nCVE-2018-6914\nCVE-2018-8777\nCVE-2018-8778\nCVE-2018-8779\nCVE-2018-8780\n\nSecurity\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\nImpact: Processing a maliciously crafted S/MIME signed message may\nlead to a denial of service\nDescription: A validation issue was addressed with improved logic. \nCVE-2018-4400: Yukinobu Nagayasu of LAC Co., Ltd. \n\nSecurity\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nSpotlight\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nSymptom Framework\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6\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\n\nWiFi\nAvailable for: macOS Sierra 10.12.6, macOS High Sierra 10.13.6, macOS\nMojave 10.14\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-2018-4368: Milan Stute and Alex Mariotto of Secure Mobile\nNetworking Lab at Technische UniversitA$?t Darmstadt\n\nAdditional recognition\n\nCalendar\nWe would like to acknowledge an anonymous researcher for their\nassistance. \n\niBooks\nWe would like to acknowledge Sem VoigtlA$?nder of Fontys Hogeschool \nICT for their assistance. \n\nKernel\nWe would like to acknowledge Brandon Azad for their assistance. \n\nLaunchServices\nWe would like to acknowledge Alok Menghrajani of Square for their\nassistance. \n\nQuick Look\nWe would like to acknowledge lokihardt of Google Project Zero for\ntheir assistance. \n\nSecurity\nWe would like to acknowledge Marinos Bernitsas of Parachute for their\nassistance. \n\nTerminal\nWe would like to acknowledge an anonymous researcher for their\nassistance. \n\nInstallation note:\n\nmacOS Mojave 10.14.1, Security Update 2018-001 High Sierra, and\nSecurity Update 2018-005 Sierra may be obtained from the\nMac App Store or Apple\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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\nt7Rz6i2mOpe6vXobkTUmml3m3zYIhL3XcdcYpw3U0F8=\n=uhgi\n-----END PGP SIGNATURE-----\n. Intel Core i3 processor, etc. are all CPU (central processing unit) products of Intel Corporation of the United States. Security vulnerabilities exist in several Intel products that use speculative execution and address translation. The following products are affected: Intel Core i3 processor; Intel Core i5 processor; Intel Core i7 processor; Intel Core M processor family; 2nd generation Intel Core processors; 3rd generation Intel Core processors; 4th generation Intel Core processors; 5th generation Intel Core processors, etc. \n\nTo fully resolve these vulnerabilities it is also necessary to install\nupdated CPU microcode (only available in Debian non-free). Common server\nclass CPUs are covered in the update released as DSA 4273-1. \n\nFor the stable distribution (stretch), these problems have been fixed in\nversion 4.9.110-3+deb9u3. =========================================================================\nUbuntu Security Notice USN-3742-2\nAugust 14, 2018\n\nlinux-lts-trusty vulnerabilities\n=========================================================================\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 12.04 ESM\n\nSummary:\n\nSeveral security issues were fixed in the Linux kernel. This update provides the corresponding updates for the Linux\nHardware Enablement (HWE) kernel from Ubuntu 14.04 for Ubuntu\n12.04 ESM. \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. A local\nattacker in a guest virtual machine could use this to expose sensitive\ninformation (memory from other guests or the host OS). (CVE-2018-3646)\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. (CVE-2018-3620)\n\nAndrey Konovalov discovered an out-of-bounds read in the POSIX timers\nsubsystem in the Linux kernel. A local attacker could use this to cause a\ndenial of service (system crash) or expose sensitive information. A remote attacker could use this to cause a\ndenial of service. (CVE-2018-5390)\n\nJuha-Matti Tilli discovered that the IP implementation in the Linux kernel\nperformed algorithmically expensive operations in some situations when\nhandling incoming packet fragments. A remote attacker could use this to\ncause a denial of service. (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-3.13.0-155-generic 3.13.0-155.206~precise1\n linux-image-3.13.0-155-generic-lpae 3.13.0-155.206~precise1\n linux-image-generic-lpae-lts-trusty 3.13.0.155.145\n linux-image-generic-lts-trusty 3.13.0.155.145\n\nPlease note that the recommended mitigation for CVE-2018-3646 involves\nupdating processor microcode in addition to updating the kernel;\nhowever, the kernel includes a fallback for processors that have not\nreceived microcode updates. \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. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\n==================================================================== \nRed Hat Security Advisory\n\nSynopsis: Important: kernel security and bug fix update\nAdvisory ID: RHSA-2018:2387-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:2387\nIssue date: 2018-08-14\nCVE Names: CVE-2018-3620 CVE-2018-3639 CVE-2018-3646\n====================================================================\n1. Summary:\n\nAn update for kernel is now available for Red Hat Enterprise Linux 7.4\nExtended 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. 7.4) - noarch, x86_64\nRed Hat Enterprise Linux ComputeNode Optional EUS (v. 7.4) - x86_64\nRed Hat Enterprise Linux Server EUS (v. 7.4) - noarch, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional EUS (v. 7.4) - ppc64, ppc64le, 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* Modern operating systems implement virtualization of physical memory to\nefficiently use available system resources and provide inter-domain\nprotection through access control and isolation. The L1TF issue was found\nin the way the x86 microprocessor designs have implemented speculative\nexecution of instructions (a commonly used performance optimisation) in\ncombination with handling of page-faults caused by terminated virtual to\nphysical address resolving process. As a result, an unprivileged attacker\ncould use this flaw to read privileged memory of the kernel or other\nprocesses and/or cross guest/host boundaries to read host memory by\nconducting targeted cache side-channel attacks. (CVE-2018-3620,\nCVE-2018-3646)\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. \n\nBug Fix(es):\n\n* Previously, configurations with the little-endian variant of IBM Power\nSystems CPU architectures and Hard Disk Drives (HDD) designed according to\nNonvolatile Memory Express (NVMe) open standards, experienced crashes\nduring shutdown or reboot due to race conditions of CPUs. As a consequence,\nthe sysfs pseudo file system threw a stack trace report about an attempt to\ncreate a duplicate entry in sysfs. This update modifies the source code so\nthat the irq_dispose_mapping() function is called first and the\nmsi_bitmap_free_hwirqs() function is called afterwards. As a result, the\nrace condition no longer appears in the described scenario. (BZ#1570510)\n\n* When switching from the indirect branch speculation (IBRS) feature to the\nretpolines feature, the IBRS state of some CPUs was sometimes not handled\ncorrectly. Consequently, some CPUs were left with the IBRS Model-Specific\nRegister (MSR) bit set to 1, which could lead to performance issues. With\nthis update, the underlying source code has been fixed to clear the IBRS\nMSR bits correctly, thus fixing the bug. (BZ#1586147)\n\n* During a balloon reset, page pointers were not correctly initialized\nafter unmapping the memory. Consequently, on the VMware ESXi hypervisor\nwith \"Fault Tolerance\" and \"ballooning\" enabled, the following messages\nrepeatedly occurred in the kernel log:\n\n[3014611.640148] WARNING: at mm/vmalloc.c:1491 __vunmap+0xd3/0x100()\n[3014611.640269] Trying to vfree() nonexistent vm area (ffffc90000697000)\n\nWith this update, the underlying source code has been fixed to initialize\npage pointers properly. As a result, the mm/vmalloc.c warnings no longer\noccur under the described circumstances. (BZ#1595600)\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\n1566890 - CVE-2018-3639 hw: cpu: speculative store bypass\n1585005 - CVE-2018-3646 Kernel: hw: cpu: L1 terminal fault (L1TF)\n\n6. Package List:\n\nRed Hat Enterprise Linux ComputeNode EUS (v. 7.4):\n\nSource:\nkernel-3.10.0-693.37.4.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-693.37.4.el7.noarch.rpm\nkernel-doc-3.10.0-693.37.4.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debug-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-devel-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-headers-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-693.37.4.el7.x86_64.rpm\nperf-3.10.0-693.37.4.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\npython-perf-3.10.0-693.37.4.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional EUS (v. 7.4):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-693.37.4.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server EUS (v. 7.4):\n\nSource:\nkernel-3.10.0-693.37.4.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-693.37.4.el7.noarch.rpm\nkernel-doc-3.10.0-693.37.4.el7.noarch.rpm\n\nppc64:\nkernel-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-bootwrapper-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-debug-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-debug-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-debug-devel-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-devel-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-headers-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-tools-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-tools-libs-3.10.0-693.37.4.el7.ppc64.rpm\nperf-3.10.0-693.37.4.el7.ppc64.rpm\nperf-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\npython-perf-3.10.0-693.37.4.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\n\nppc64le:\nkernel-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-bootwrapper-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-debug-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-debug-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-devel-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-headers-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-tools-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-tools-libs-3.10.0-693.37.4.el7.ppc64le.rpm\nperf-3.10.0-693.37.4.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\npython-perf-3.10.0-693.37.4.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\n\ns390x:\nkernel-3.10.0-693.37.4.el7.s390x.rpm\nkernel-debug-3.10.0-693.37.4.el7.s390x.rpm\nkernel-debug-debuginfo-3.10.0-693.37.4.el7.s390x.rpm\nkernel-debug-devel-3.10.0-693.37.4.el7.s390x.rpm\nkernel-debuginfo-3.10.0-693.37.4.el7.s390x.rpm\nkernel-debuginfo-common-s390x-3.10.0-693.37.4.el7.s390x.rpm\nkernel-devel-3.10.0-693.37.4.el7.s390x.rpm\nkernel-headers-3.10.0-693.37.4.el7.s390x.rpm\nkernel-kdump-3.10.0-693.37.4.el7.s390x.rpm\nkernel-kdump-debuginfo-3.10.0-693.37.4.el7.s390x.rpm\nkernel-kdump-devel-3.10.0-693.37.4.el7.s390x.rpm\nperf-3.10.0-693.37.4.el7.s390x.rpm\nperf-debuginfo-3.10.0-693.37.4.el7.s390x.rpm\npython-perf-3.10.0-693.37.4.el7.s390x.rpm\npython-perf-debuginfo-3.10.0-693.37.4.el7.s390x.rpm\n\nx86_64:\nkernel-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debug-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-devel-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-headers-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-693.37.4.el7.x86_64.rpm\nperf-3.10.0-693.37.4.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\npython-perf-3.10.0-693.37.4.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional EUS (v. 7.4):\n\nppc64:\nkernel-debug-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\nkernel-tools-libs-devel-3.10.0-693.37.4.el7.ppc64.rpm\nperf-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-693.37.4.el7.ppc64.rpm\n\nppc64le:\nkernel-debug-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-debug-devel-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\nkernel-tools-libs-devel-3.10.0-693.37.4.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-693.37.4.el7.ppc64le.rpm\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-693.37.4.el7.x86_64.rpm\nperf-debuginfo-3.10.0-693.37.4.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-693.37.4.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-2018-3620\nhttps://access.redhat.com/security/cve/CVE-2018-3639\nhttps://access.redhat.com/security/cve/CVE-2018-3646\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/security/vulnerabilities/L1TF\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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\ndsE8Ald7hA4=scjp\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. 6.4) - x86_64\n\n3. 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VAR-202202-1348
Vulnerability from variot - Updated: 2025-05-07 22:15Insufficiently protected credentials in USB provisioning for Intel(R) AMT SDK before version 16.0.3, Intel(R) SCS before version 12.2 and Intel(R) MEBx before versions 11.0.0.0012, 12.0.0.0011, 14.0.0.0004 and 15.0.0.0004 may allow an unauthenticated user to potentially enable information disclosure via physical access. Intel(R) AMT SDK , SCS , MEBx There are vulnerabilities in inadequate protection of credentials.Information may be obtained
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VAR-201807-1677
Vulnerability from variot - Updated: 2025-01-30 21:03Existing UEFI setting restrictions for DCI (Direct Connect Interface) in 5th and 6th generation Intel Xeon Processor E3 Family, Intel Xeon Scalable processors, and Intel Xeon Processor D Family allows a limited physical presence attacker to potentially access platform secrets via debug interfaces. plural Intel Xeon The product contains vulnerabilities related to authorization, permissions, and access control.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. Intel Xeon Scalable Processors and others are central processing unit (CPU) products of Intel Corporation of the United States. There are security vulnerabilities in the UEFI settings for DCI in several Intel products. An attacker can exploit the vulnerability to access sensitive information about the platform through the debug interface
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VAR-201906-0917
Vulnerability from variot - Updated: 2024-11-29 21:43Insufficient access control in the Intel(R) PROSet/Wireless WiFi Software driver before version 21.10 may allow an unauthenticated user to potentially enable denial of service via adjacent access. Intel Dual Band Wireless-AC 8260 contains a denial-of-service (DoS) vulnerability (CWE-400). Yusuke Ogawa of Cisco Systems G.K. reported this vulnerability to IPA. JPCERT/CC coordinated with the developer under Information Security Early Warning Partnership.An attacker may be able to cause a denial-of-service (DoS). IntelPROSet/WirelessWiFiSoftwaredriver is a wireless network card driver from Intel Corporation of the United States. The vulnerability stems from a network system or product that does not properly restrict access to resources from unauthorized roles that an attacker could use to cause a denial of service. Intel PROSet/Wireless WiFi Software driver是美国英特尔(Intel)公司的一款无线网卡驱动程序. Intel PROSet/Wireless WiFi Software driver 21.10之前版本中存在访问控制错误漏洞。该漏洞源于网络系统或产品未正确限制来自未授权角色的资源访问。以下产品及版本受到影响:Intel Dual Band Wireless-AC 3160;Dual Band Wireless-AC 7260;Dual Band Wireless-N 7260;Wireless-N 7260;Dual Band Wireless-AC 7260 for Desktop;Dual Band Wireless-AC 7265 (Rev. C);Dual Band Wireless-N 7265 (Rev. C);Wireless-N 7265 (Rev. C);Dual Band Wireless-AC 3165;Dual Band Wireless-AC 7265 (Rev. D);Dual Band Wireless-N 7265 (Rev. D);Wireless-N 7265 (Rev. D);Dual Band Wireless-AC 3168;Tri-Band Wireless-AC 17265;Dual Band Wireless-AC 8260;Tri-Band Wireless-AC 18260;Dual Band Wireless-AC 8265;Dual Band Wireless-AC 8265 Desktop Kit;Tri-Band Wireless-AC 18265;Wireless-AC 9560;Wireless-AC 9461;Wireless-AC 9462;Wireless-AC 9260;Wi-Fi 6 AX200;Wi-Fi 6 AX201. An attacker can exploit this issue to cause a denial-of-service condition, denying service to legitimate users. (CVE-2019-11477)
Jonathan Looney discovered that the TCP retransmission queue implementation in the Linux kernel could be fragmented when handling certain TCP Selective Acknowledgment (SACK) sequences. (CVE-2019-14835)
Update instructions:
The problem can be corrected by updating your livepatches to the following versions:
| Kernel | Version | flavors | |--------------------------+----------+--------------------------| | 4.4.0-148.174 | 58.1 | lowlatency, generic | | 4.4.0-148.174~14.04.1 | 58.1 | lowlatency, generic | | 4.4.0-150.176 | 58.1 | generic, lowlatency | | 4.4.0-150.176~14.04.1 | 58.1 | lowlatency, generic | | 4.4.0-151.178 | 58.1 | lowlatency, generic | | 4.4.0-151.178~14.04.1 | 58.1 | generic, lowlatency | | 4.4.0-154.181 | 58.1 | lowlatency, generic | | 4.4.0-154.181~14.04.1 | 58.1 | generic, lowlatency | | 4.4.0-157.185 | 58.1 | lowlatency, generic | | 4.4.0-157.185~14.04.1 | 58.1 | generic, lowlatency | | 4.4.0-159.187 | 58.1 | lowlatency, generic | | 4.4.0-159.187~14.04.1 | 58.1 | generic, lowlatency | | 4.4.0-161.189 | 58.1 | lowlatency, generic | | 4.4.0-161.189~14.04.1 | 58.1 | lowlatency, generic | | 4.4.0-164.192 | 58.1 | lowlatency, generic | | 4.4.0-164.192~14.04.1 | 58.1 | lowlatency, generic | | 4.4.0-165.193 | 58.1 | generic, lowlatency | | 4.4.0-1083.93 | 58.1 | aws | | 4.4.0-1084.94 | 58.1 | aws | | 4.4.0-1085.96 | 58.1 | aws | | 4.4.0-1087.98 | 58.1 | aws | | 4.4.0-1088.99 | 58.1 | aws | | 4.4.0-1090.101 | 58.1 | aws | | 4.4.0-1092.103 | 58.1 | aws | | 4.4.0-1094.105 | 58.1 | aws | | 4.15.0-50.54 | 58.1 | generic, lowlatency | | 4.15.0-50.54~16.04.1 | 58.1 | generic, lowlatency | | 4.15.0-51.55 | 58.1 | generic, lowlatency | | 4.15.0-51.55~16.04.1 | 58.1 | generic, lowlatency | | 4.15.0-52.56 | 58.1 | lowlatency, generic | | 4.15.0-52.56~16.04.1 | 58.1 | generic, lowlatency | | 4.15.0-54.58 | 58.1 | generic, lowlatency | | 4.15.0-54.58~16.04.1 | 58.1 | generic, lowlatency | | 4.15.0-55.60 | 58.1 | generic, lowlatency | | 4.15.0-58.64 | 58.1 | generic, lowlatency | | 4.15.0-58.64~16.04.1 | 58.1 | lowlatency, generic | | 4.15.0-60.67 | 58.1 | lowlatency, generic | | 4.15.0-60.67~16.04.1 | 58.1 | generic, lowlatency | | 4.15.0-62.69 | 58.1 | generic, lowlatency | | 4.15.0-62.69~16.04.1 | 58.1 | lowlatency, generic | | 4.15.0-64.73 | 58.1 | generic, lowlatency | | 4.15.0-64.73~16.04.1 | 58.1 | lowlatency, generic | | 4.15.0-65.74 | 58.1 | lowlatency, generic | | 4.15.0-1038.43 | 58.1 | oem | | 4.15.0-1039.41 | 58.1 | aws | | 4.15.0-1039.44 | 58.1 | oem | | 4.15.0-1040.42 | 58.1 | aws | | 4.15.0-1041.43 | 58.1 | aws | | 4.15.0-1043.45 | 58.1 | aws | | 4.15.0-1043.48 | 58.1 | oem | | 4.15.0-1044.46 | 58.1 | aws | | 4.15.0-1045.47 | 58.1 | aws | | 4.15.0-1045.50 | 58.1 | oem | | 4.15.0-1047.49 | 58.1 | aws | | 4.15.0-1047.51 | 58.1 | azure | | 4.15.0-1048.50 | 58.1 | aws | | 4.15.0-1049.54 | 58.1 | azure | | 4.15.0-1050.52 | 58.1 | aws | | 4.15.0-1050.55 | 58.1 | azure | | 4.15.0-1050.57 | 58.1 | oem | | 4.15.0-1051.53 | 58.1 | aws | | 4.15.0-1051.56 | 58.1 | azure | | 4.15.0-1052.57 | 58.1 | azure | | 4.15.0-1055.60 | 58.1 | azure | | 4.15.0-1056.61 | 58.1 | azure | | 4.15.0-1056.65 | 58.1 | oem | | 4.15.0-1057.62 | 58.1 | azure | | 4.15.0-1057.66 | 58.1 | oem | | 4.15.0-1059.64 | 58.1 | azure | | 5.0.0-1014.14~18.04.1 | 58.1 | azure | | 5.0.0-1016.17~18.04.1 | 58.1 | azure | | 5.0.0-1018.19~18.04.1 | 58.1 | azure | | 5.0.0-1020.21~18.04.1 | 58.1 | azure |
Support Information:
Kernels older than the levels listed below do not receive livepatch updates. Please upgrade your kernel as soon as possible.
| Series | Version | Flavors | |------------------+------------------+--------------------------| | Ubuntu 18.04 LTS | 4.15.0-1039 | aws | | Ubuntu 16.04 LTS | 4.4.0-1083 | aws | | Ubuntu 18.04 LTS | 5.0.0-1000 | azure | | Ubuntu 16.04 LTS | 4.15.0-1047 | azure | | Ubuntu 18.04 LTS | 4.15.0-50 | generic lowlatency | | Ubuntu 16.04 LTS | 4.15.0-50 | generic lowlatency | | Ubuntu 14.04 LTS | 4.4.0-148 | generic lowlatency | | Ubuntu 18.04 LTS | 4.15.0-1038 | oem | | Ubuntu 16.04 LTS | 4.4.0-148 | generic lowlatency |
References: CVE-2016-10905, CVE-2018-20856, CVE-2018-20961, CVE-2018-20976, CVE-2018-21008, CVE-2019-0136, CVE-2019-2054, CVE-2019-2181, CVE-2019-3846, CVE-2019-10126, CVE-2019-10207, CVE-2019-11477, CVE-2019-11478, CVE-2019-11833, CVE-2019-12614, CVE-2019-14283, CVE-2019-14284, CVE-2019-14814, CVE-2019-14815, CVE-2019-14816, CVE-2019-14821, CVE-2019-14835
-- ubuntu-security-announce mailing list ubuntu-security-announce@lists.ubuntu.com Modify settings or unsubscribe at: https://lists.ubuntu.com/mailman/listinfo/ubuntu-security-announce . ========================================================================= Ubuntu Security Notice USN-4118-1 September 02, 2019
linux-aws vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 18.04 LTS
- Ubuntu 16.04 LTS
Summary:
Several security issues were fixed in the Linux kernel.
Software Description: - linux-aws: Linux kernel for Amazon Web Services (AWS) systems - linux-aws-hwe: Linux kernel for Amazon Web Services (AWS-HWE) systems
Details:
It was discovered that the alarmtimer implementation in the Linux kernel contained an integer overflow vulnerability. (CVE-2018-13053)
Wen Xu discovered that the XFS filesystem implementation in the Linux kernel did not properly track inode validations. (CVE-2018-13093)
Wen Xu discovered that the f2fs file system implementation in the Linux kernel did not properly validate metadata. (CVE-2018-13096, CVE-2018-13097, CVE-2018-13098, CVE-2018-13099, CVE-2018-13100, CVE-2018-14614, CVE-2018-14615, CVE-2018-14616)
Wen Xu and Po-Ning Tseng discovered that btrfs file system implementation in the Linux kernel did not properly validate metadata. (CVE-2018-14609, CVE-2018-14610, CVE-2018-14611, CVE-2018-14612, CVE-2018-14613)
Wen Xu discovered that the HFS+ filesystem implementation in the Linux kernel did not properly handle malformed catalog data in some situations. (CVE-2018-14617)
Vasily Averin and Pavel Tikhomirov discovered that the cleancache subsystem of the Linux kernel did not properly initialize new files in some situations. A local attacker could use this to expose sensitive information. (CVE-2018-16862)
Hui Peng and Mathias Payer discovered that the Option USB High Speed driver in the Linux kernel did not properly validate metadata received from the device. (CVE-2018-19985)
Hui Peng and Mathias Payer discovered that the USB subsystem in the Linux kernel did not properly handle size checks when handling an extra USB descriptor. (CVE-2018-20169)
Zhipeng Xie discovered that an infinite loop could triggered in the CFS Linux kernel process scheduler. (CVE-2018-20784)
It was discovered that a use-after-free error existed in the block layer subsystem of the Linux kernel when certain failure conditions occurred. (CVE-2018-20856)
Eli Biham and Lior Neumann discovered that the Bluetooth implementation in the Linux kernel did not properly validate elliptic curve parameters during Diffie-Hellman key exchange in some situations. An attacker could use this to expose sensitive information. (CVE-2018-5383)
It was discovered that the Intel wifi device driver in the Linux kernel did not properly validate certain Tunneled Direct Link Setup (TDLS). (CVE-2019-0136)
It was discovered that a heap buffer overflow existed in the Marvell Wireless LAN device driver for the Linux kernel. (CVE-2019-10126)
It was discovered that the Bluetooth UART implementation in the Linux kernel did not properly check for missing tty operations. (CVE-2019-10207)
Amit Klein and Benny Pinkas discovered that the Linux kernel did not sufficiently randomize IP ID values generated for connectionless networking protocols. A remote attacker could use this to track particular Linux devices. (CVE-2019-10638)
Amit Klein and Benny Pinkas discovered that the location of kernel addresses could exposed by the implementation of connection-less network protocols in the Linux kernel. A remote attacker could possibly use this to assist in the exploitation of another vulnerability in the Linux kernel. (CVE-2019-10639)
Adam Zabrocki discovered that the Intel i915 kernel mode graphics driver in the Linux kernel did not properly restrict mmap() ranges in some situations. (CVE-2019-11085)
It was discovered that an integer overflow existed in the Linux kernel when reference counting pages, leading to potential use-after-free issues. (CVE-2019-11487)
Jann Horn discovered that a race condition existed in the Linux kernel when performing core dumps. (CVE-2019-11599)
It was discovered that a null pointer dereference vulnerability existed in the LSI Logic MegaRAID driver in the Linux kernel. (CVE-2019-11810)
It was discovered that a race condition leading to a use-after-free existed in the Reliable Datagram Sockets (RDS) protocol implementation in the Linux kernel. The RDS protocol is blacklisted by default in Ubuntu. (CVE-2019-11815)
It was discovered that the ext4 file system implementation in the Linux kernel did not properly zero out memory in some situations. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2019-11833)
It was discovered that the Bluetooth Human Interface Device Protocol (HIDP) implementation in the Linux kernel did not properly verify strings were NULL terminated in certain situations. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2019-11884)
It was discovered that a NULL pointer dereference vulnerabilty existed in the Near-field communication (NFC) implementation in the Linux kernel. (CVE-2019-12818)
It was discovered that the MDIO bus devices subsystem in the Linux kernel improperly dropped a device reference in an error condition, leading to a use-after-free. (CVE-2019-12819)
It was discovered that a NULL pointer dereference vulnerability existed in the Near-field communication (NFC) implementation in the Linux kernel. (CVE-2019-12984)
Jann Horn discovered a use-after-free vulnerability in the Linux kernel when accessing LDT entries in some situations. (CVE-2019-13233)
Jann Horn discovered that the ptrace implementation in the Linux kernel did not properly record credentials in some situations. (CVE-2019-13272)
It was discovered that the GTCO tablet input driver in the Linux kernel did not properly bounds check the initial HID report sent by the device. (CVE-2019-13631)
It was discovered that the floppy driver in the Linux kernel did not properly validate meta data, leading to a buffer overread. (CVE-2019-14283)
It was discovered that the floppy driver in the Linux kernel did not properly validate ioctl() calls, leading to a division-by-zero. (CVE-2019-14284)
Tuba Yavuz discovered that a race condition existed in the DesignWare USB3 DRD Controller device driver in the Linux kernel. (CVE-2019-14763)
It was discovered that an out-of-bounds read existed in the QLogic QEDI iSCSI Initiator Driver in the Linux kernel. A local attacker could possibly use this to expose sensitive information (kernel memory). (CVE-2019-15090)
It was discovered that the Raremono AM/FM/SW radio device driver in the Linux kernel did not properly allocate memory, leading to a use-after-free. (CVE-2019-15211)
It was discovered at a double-free error existed in the USB Rio 500 device driver for the Linux kernel. (CVE-2019-15212)
It was discovered that a race condition existed in the Advanced Linux Sound Architecture (ALSA) subsystem of the Linux kernel, leading to a potential use-after-free. (CVE-2019-15214)
It was discovered that a race condition existed in the CPiA2 video4linux device driver for the Linux kernel, leading to a use-after-free. (CVE-2019-15215)
It was discovered that a race condition existed in the Softmac USB Prism54 device driver in the Linux kernel. (CVE-2019-15220)
It was discovered that a use-after-free vulnerability existed in the Appletalk implementation in the Linux kernel if an error occurs during initialization. (CVE-2019-15292)
It was discovered that the Empia EM28xx DVB USB device driver implementation in the Linux kernel contained a use-after-free vulnerability when disconnecting the device. (CVE-2019-2024)
It was discovered that the USB video device class implementation in the Linux kernel did not properly validate control bits, resulting in an out of bounds buffer read. A local attacker could use this to possibly expose sensitive information (kernel memory). (CVE-2019-2101)
It was discovered that the Marvell Wireless LAN device driver in the Linux kernel did not properly validate the BSS descriptor. (CVE-2019-3846)
Jason Wang discovered that an infinite loop vulnerability existed in the virtio net driver in the Linux kernel. (CVE-2019-3900)
Daniele Antonioli, Nils Ole Tippenhauer, and Kasper B. Rasmussen discovered that the Bluetooth protocol BR/EDR specification did not properly require sufficiently strong encryption key lengths. A physicall proximate attacker could use this to expose sensitive information. (CVE-2019-9506)
It was discovered that the Appletalk IP encapsulation driver in the Linux kernel did not properly prevent kernel addresses from being copied to user space. A local attacker with the CAP_NET_ADMIN capability could use this to expose sensitive information. (CVE-2018-20511)
It was discovered that a race condition existed in the USB YUREX device driver in the Linux kernel. (CVE-2019-15216)
It was discovered that the Siano USB MDTV receiver device driver in the Linux kernel made improper assumptions about the device characteristics. (CVE-2019-15218)
It was discovered that the Line 6 POD USB device driver in the Linux kernel did not properly validate data size information from the device. (CVE-2019-15221)
Muyu Yu discovered that the CAN implementation in the Linux kernel in some situations did not properly restrict the field size when processing outgoing frames. A local attacker with CAP_NET_ADMIN privileges could use this to execute arbitrary code. (CVE-2019-3701)
Vladis Dronov discovered that the debug interface for the Linux kernel's HID subsystem did not properly validate passed parameters in some situations. (CVE-2019-3819)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 18.04 LTS: linux-image-4.15.0-1047-aws 4.15.0-1047.49 linux-image-aws 4.15.0.1047.46
Ubuntu 16.04 LTS: linux-image-4.15.0-1047-aws 4.15.0-1047.49~16.04.1 linux-image-aws-hwe 4.15.0.1047.47
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/4118-1 CVE-2018-13053, CVE-2018-13093, CVE-2018-13096, CVE-2018-13097, CVE-2018-13098, CVE-2018-13099, CVE-2018-13100, CVE-2018-14609, CVE-2018-14610, CVE-2018-14611, CVE-2018-14612, CVE-2018-14613, CVE-2018-14614, CVE-2018-14615, CVE-2018-14616, CVE-2018-14617, CVE-2018-16862, CVE-2018-19985, CVE-2018-20169, CVE-2018-20511, CVE-2018-20784, CVE-2018-20856, CVE-2018-5383, CVE-2019-0136, CVE-2019-10126, CVE-2019-10207, CVE-2019-10638, CVE-2019-10639, CVE-2019-11085, CVE-2019-11487, CVE-2019-11599, CVE-2019-11810, CVE-2019-11815, CVE-2019-11833, CVE-2019-11884, CVE-2019-12818, CVE-2019-12819, CVE-2019-12984, CVE-2019-13233, CVE-2019-13272, CVE-2019-13631, CVE-2019-14283, CVE-2019-14284, CVE-2019-14763, CVE-2019-15090, CVE-2019-15211, CVE-2019-15212, CVE-2019-15214, CVE-2019-15215, CVE-2019-15216, CVE-2019-15218, CVE-2019-15220, CVE-2019-15221, CVE-2019-15292, CVE-2019-2024, CVE-2019-2101, CVE-2019-3701, CVE-2019-3819, CVE-2019-3846, CVE-2019-3900, CVE-2019-9506
Package Information: https://launchpad.net/ubuntu/+source/linux-aws/4.15.0-1047.49 https://launchpad.net/ubuntu/+source/linux-aws-hwe/4.15.0-1047.49~16.04.1 . Unfortunately, as part of the update, a regression was introduced that caused a kernel crash when handling fragmented packets in some situations. This update addresses the issue.
We apologize for the inconvenience
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"data": "Insufficient access control in the Intel(R) PROSet/Wireless WiFi Software driver before version 21.10 may allow an unauthenticated user to potentially enable denial of service via adjacent access. Intel Dual Band Wireless-AC 8260 contains a denial-of-service (DoS) vulnerability (CWE-400). Yusuke Ogawa of Cisco Systems G.K. reported this vulnerability to IPA. JPCERT/CC coordinated with the developer under Information Security Early Warning Partnership.An attacker may be able to cause a denial-of-service (DoS). IntelPROSet/WirelessWiFiSoftwaredriver is a wireless network card driver from Intel Corporation of the United States. The vulnerability stems from a network system or product that does not properly restrict access to resources from unauthorized roles that an attacker could use to cause a denial of service. Intel PROSet/Wireless WiFi Software driver\u662f\u7f8e\u56fd\u82f1\u7279\u5c14\uff08Intel\uff09\u516c\u53f8\u7684\u4e00\u6b3e\u65e0\u7ebf\u7f51\u5361\u9a71\u52a8\u7a0b\u5e8f. \nIntel PROSet/Wireless WiFi Software driver 21.10\u4e4b\u524d\u7248\u672c\u4e2d\u5b58\u5728\u8bbf\u95ee\u63a7\u5236\u9519\u8bef\u6f0f\u6d1e\u3002\u8be5\u6f0f\u6d1e\u6e90\u4e8e\u7f51\u7edc\u7cfb\u7edf\u6216\u4ea7\u54c1\u672a\u6b63\u786e\u9650\u5236\u6765\u81ea\u672a\u6388\u6743\u89d2\u8272\u7684\u8d44\u6e90\u8bbf\u95ee\u3002\u4ee5\u4e0b\u4ea7\u54c1\u53ca\u7248\u672c\u53d7\u5230\u5f71\u54cd\uff1aIntel Dual Band Wireless-AC 3160\uff1bDual Band Wireless-AC 7260\uff1bDual Band Wireless-N 7260\uff1bWireless-N 7260\uff1bDual Band Wireless-AC 7260 for Desktop\uff1bDual Band Wireless-AC 7265 (Rev. C)\uff1bDual Band Wireless-N 7265 (Rev. C)\uff1bWireless-N 7265 (Rev. C)\uff1bDual Band Wireless-AC 3165\uff1bDual Band Wireless-AC 7265 (Rev. D)\uff1bDual Band Wireless-N 7265 (Rev. D)\uff1bWireless-N 7265 (Rev. D)\uff1bDual Band Wireless-AC 3168\uff1bTri-Band Wireless-AC 17265\uff1bDual Band Wireless-AC 8260\uff1bTri-Band Wireless-AC 18260\uff1bDual Band Wireless-AC 8265\uff1bDual Band Wireless-AC 8265 Desktop Kit\uff1bTri-Band Wireless-AC 18265\uff1bWireless-AC 9560\uff1bWireless-AC 9461\uff1bWireless-AC 9462\uff1bWireless-AC 9260\uff1bWi-Fi 6 AX200\uff1bWi-Fi 6 AX201. \nAn attacker can exploit this issue to cause a denial-of-service condition, denying service to legitimate users. \n(CVE-2019-11477)\n\nJonathan Looney discovered that the TCP retransmission queue implementation\nin the Linux kernel could be fragmented when handling certain TCP Selective\nAcknowledgment (SACK) sequences. (CVE-2019-14835)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your livepatches to the following\nversions:\n\n| Kernel | Version | flavors |\n|--------------------------+----------+--------------------------|\n| 4.4.0-148.174 | 58.1 | lowlatency, generic |\n| 4.4.0-148.174~14.04.1 | 58.1 | lowlatency, generic |\n| 4.4.0-150.176 | 58.1 | generic, lowlatency |\n| 4.4.0-150.176~14.04.1 | 58.1 | lowlatency, generic |\n| 4.4.0-151.178 | 58.1 | lowlatency, generic |\n| 4.4.0-151.178~14.04.1 | 58.1 | generic, lowlatency |\n| 4.4.0-154.181 | 58.1 | lowlatency, generic |\n| 4.4.0-154.181~14.04.1 | 58.1 | generic, lowlatency |\n| 4.4.0-157.185 | 58.1 | lowlatency, generic |\n| 4.4.0-157.185~14.04.1 | 58.1 | generic, lowlatency |\n| 4.4.0-159.187 | 58.1 | lowlatency, generic |\n| 4.4.0-159.187~14.04.1 | 58.1 | generic, lowlatency |\n| 4.4.0-161.189 | 58.1 | lowlatency, generic |\n| 4.4.0-161.189~14.04.1 | 58.1 | lowlatency, generic |\n| 4.4.0-164.192 | 58.1 | lowlatency, generic |\n| 4.4.0-164.192~14.04.1 | 58.1 | lowlatency, generic |\n| 4.4.0-165.193 | 58.1 | generic, lowlatency |\n| 4.4.0-1083.93 | 58.1 | aws |\n| 4.4.0-1084.94 | 58.1 | aws |\n| 4.4.0-1085.96 | 58.1 | aws |\n| 4.4.0-1087.98 | 58.1 | aws |\n| 4.4.0-1088.99 | 58.1 | aws |\n| 4.4.0-1090.101 | 58.1 | aws |\n| 4.4.0-1092.103 | 58.1 | aws |\n| 4.4.0-1094.105 | 58.1 | aws |\n| 4.15.0-50.54 | 58.1 | generic, lowlatency |\n| 4.15.0-50.54~16.04.1 | 58.1 | generic, lowlatency |\n| 4.15.0-51.55 | 58.1 | generic, lowlatency |\n| 4.15.0-51.55~16.04.1 | 58.1 | generic, lowlatency |\n| 4.15.0-52.56 | 58.1 | lowlatency, generic |\n| 4.15.0-52.56~16.04.1 | 58.1 | generic, lowlatency |\n| 4.15.0-54.58 | 58.1 | generic, lowlatency |\n| 4.15.0-54.58~16.04.1 | 58.1 | generic, lowlatency |\n| 4.15.0-55.60 | 58.1 | generic, lowlatency |\n| 4.15.0-58.64 | 58.1 | generic, lowlatency |\n| 4.15.0-58.64~16.04.1 | 58.1 | lowlatency, generic |\n| 4.15.0-60.67 | 58.1 | lowlatency, generic |\n| 4.15.0-60.67~16.04.1 | 58.1 | generic, lowlatency |\n| 4.15.0-62.69 | 58.1 | generic, lowlatency |\n| 4.15.0-62.69~16.04.1 | 58.1 | lowlatency, generic |\n| 4.15.0-64.73 | 58.1 | generic, lowlatency |\n| 4.15.0-64.73~16.04.1 | 58.1 | lowlatency, generic |\n| 4.15.0-65.74 | 58.1 | lowlatency, generic |\n| 4.15.0-1038.43 | 58.1 | oem |\n| 4.15.0-1039.41 | 58.1 | aws |\n| 4.15.0-1039.44 | 58.1 | oem |\n| 4.15.0-1040.42 | 58.1 | aws |\n| 4.15.0-1041.43 | 58.1 | aws |\n| 4.15.0-1043.45 | 58.1 | aws |\n| 4.15.0-1043.48 | 58.1 | oem |\n| 4.15.0-1044.46 | 58.1 | aws |\n| 4.15.0-1045.47 | 58.1 | aws |\n| 4.15.0-1045.50 | 58.1 | oem |\n| 4.15.0-1047.49 | 58.1 | aws |\n| 4.15.0-1047.51 | 58.1 | azure |\n| 4.15.0-1048.50 | 58.1 | aws |\n| 4.15.0-1049.54 | 58.1 | azure |\n| 4.15.0-1050.52 | 58.1 | aws |\n| 4.15.0-1050.55 | 58.1 | azure |\n| 4.15.0-1050.57 | 58.1 | oem |\n| 4.15.0-1051.53 | 58.1 | aws |\n| 4.15.0-1051.56 | 58.1 | azure |\n| 4.15.0-1052.57 | 58.1 | azure |\n| 4.15.0-1055.60 | 58.1 | azure |\n| 4.15.0-1056.61 | 58.1 | azure |\n| 4.15.0-1056.65 | 58.1 | oem |\n| 4.15.0-1057.62 | 58.1 | azure |\n| 4.15.0-1057.66 | 58.1 | oem |\n| 4.15.0-1059.64 | 58.1 | azure |\n| 5.0.0-1014.14~18.04.1 | 58.1 | azure |\n| 5.0.0-1016.17~18.04.1 | 58.1 | azure |\n| 5.0.0-1018.19~18.04.1 | 58.1 | azure |\n| 5.0.0-1020.21~18.04.1 | 58.1 | azure |\n\nSupport Information:\n\nKernels older than the levels listed below do not receive livepatch\nupdates. Please upgrade your kernel as soon as possible. \n\n| Series | Version | Flavors |\n|------------------+------------------+--------------------------|\n| Ubuntu 18.04 LTS | 4.15.0-1039 | aws |\n| Ubuntu 16.04 LTS | 4.4.0-1083 | aws |\n| Ubuntu 18.04 LTS | 5.0.0-1000 | azure |\n| Ubuntu 16.04 LTS | 4.15.0-1047 | azure |\n| Ubuntu 18.04 LTS | 4.15.0-50 | generic lowlatency |\n| Ubuntu 16.04 LTS | 4.15.0-50 | generic lowlatency |\n| Ubuntu 14.04 LTS | 4.4.0-148 | generic lowlatency |\n| Ubuntu 18.04 LTS | 4.15.0-1038 | oem |\n| Ubuntu 16.04 LTS | 4.4.0-148 | generic lowlatency |\n\nReferences:\n CVE-2016-10905, CVE-2018-20856, CVE-2018-20961, CVE-2018-20976, \n CVE-2018-21008, CVE-2019-0136, CVE-2019-2054, CVE-2019-2181, \n CVE-2019-3846, CVE-2019-10126, CVE-2019-10207, CVE-2019-11477, \n CVE-2019-11478, CVE-2019-11833, CVE-2019-12614, CVE-2019-14283, \n CVE-2019-14284, CVE-2019-14814, CVE-2019-14815, CVE-2019-14816, \n CVE-2019-14821, CVE-2019-14835\n\n\n-- \nubuntu-security-announce mailing list\nubuntu-security-announce@lists.ubuntu.com\nModify settings or unsubscribe at: https://lists.ubuntu.com/mailman/listinfo/ubuntu-security-announce\n. =========================================================================\nUbuntu Security Notice USN-4118-1\nSeptember 02, 2019\n\nlinux-aws vulnerabilities\n=========================================================================\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 18.04 LTS\n- Ubuntu 16.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in the Linux kernel. \n\nSoftware Description:\n- linux-aws: Linux kernel for Amazon Web Services (AWS) systems\n- linux-aws-hwe: Linux kernel for Amazon Web Services (AWS-HWE) systems\n\nDetails:\n\nIt was discovered that the alarmtimer implementation in the Linux kernel\ncontained an integer overflow vulnerability. (CVE-2018-13053)\n\nWen Xu discovered that the XFS filesystem implementation in the Linux\nkernel did not properly track inode validations. (CVE-2018-13093)\n\nWen Xu discovered that the f2fs file system implementation in the Linux\nkernel did not properly validate metadata. (CVE-2018-13096, CVE-2018-13097, CVE-2018-13098,\nCVE-2018-13099, CVE-2018-13100, CVE-2018-14614, CVE-2018-14615,\nCVE-2018-14616)\n\nWen Xu and Po-Ning Tseng discovered that btrfs file system implementation\nin the Linux kernel did not properly validate metadata. (CVE-2018-14609, CVE-2018-14610,\nCVE-2018-14611, CVE-2018-14612, CVE-2018-14613)\n\nWen Xu discovered that the HFS+ filesystem implementation in the Linux\nkernel did not properly handle malformed catalog data in some situations. (CVE-2018-14617)\n\nVasily Averin and Pavel Tikhomirov discovered that the cleancache subsystem\nof the Linux kernel did not properly initialize new files in some\nsituations. A local attacker could use this to expose sensitive\ninformation. (CVE-2018-16862)\n\nHui Peng and Mathias Payer discovered that the Option USB High Speed driver\nin the Linux kernel did not properly validate metadata received from the\ndevice. (CVE-2018-19985)\n\nHui Peng and Mathias Payer discovered that the USB subsystem in the Linux\nkernel did not properly handle size checks when handling an extra USB\ndescriptor. (CVE-2018-20169)\n\nZhipeng Xie discovered that an infinite loop could triggered in the CFS\nLinux kernel process scheduler. (CVE-2018-20784)\n\nIt was discovered that a use-after-free error existed in the block layer\nsubsystem of the Linux kernel when certain failure conditions occurred. (CVE-2018-20856)\n\nEli Biham and Lior Neumann discovered that the Bluetooth implementation in\nthe Linux kernel did not properly validate elliptic curve parameters during\nDiffie-Hellman key exchange in some situations. An attacker could use this\nto expose sensitive information. (CVE-2018-5383)\n\nIt was discovered that the Intel wifi device driver in the Linux kernel did\nnot properly validate certain Tunneled Direct Link Setup (TDLS). (CVE-2019-0136)\n\nIt was discovered that a heap buffer overflow existed in the Marvell\nWireless LAN device driver for the Linux kernel. (CVE-2019-10126)\n\nIt was discovered that the Bluetooth UART implementation in the Linux\nkernel did not properly check for missing tty operations. (CVE-2019-10207)\n\nAmit Klein and Benny Pinkas discovered that the Linux kernel did not\nsufficiently randomize IP ID values generated for connectionless networking\nprotocols. A remote attacker could use this to track particular Linux\ndevices. (CVE-2019-10638)\n\nAmit Klein and Benny Pinkas discovered that the location of kernel\naddresses could exposed by the implementation of connection-less network\nprotocols in the Linux kernel. A remote attacker could possibly use this to\nassist in the exploitation of another vulnerability in the Linux kernel. \n(CVE-2019-10639)\n\nAdam Zabrocki discovered that the Intel i915 kernel mode graphics driver in\nthe Linux kernel did not properly restrict mmap() ranges in some\nsituations. (CVE-2019-11085)\n\nIt was discovered that an integer overflow existed in the Linux kernel when\nreference counting pages, leading to potential use-after-free issues. (CVE-2019-11487)\n\nJann Horn discovered that a race condition existed in the Linux kernel when\nperforming core dumps. (CVE-2019-11599)\n\nIt was discovered that a null pointer dereference vulnerability existed in\nthe LSI Logic MegaRAID driver in the Linux kernel. (CVE-2019-11810)\n\nIt was discovered that a race condition leading to a use-after-free existed\nin the Reliable Datagram Sockets (RDS) protocol implementation in the Linux\nkernel. The RDS protocol is blacklisted by default in Ubuntu. (CVE-2019-11815)\n\nIt was discovered that the ext4 file system implementation in the Linux\nkernel did not properly zero out memory in some situations. A local\nattacker could use this to expose sensitive information (kernel memory). \n(CVE-2019-11833)\n\nIt was discovered that the Bluetooth Human Interface Device Protocol (HIDP)\nimplementation in the Linux kernel did not properly verify strings were\nNULL terminated in certain situations. A local attacker could use this to\nexpose sensitive information (kernel memory). (CVE-2019-11884)\n\nIt was discovered that a NULL pointer dereference vulnerabilty existed in\nthe Near-field communication (NFC) implementation in the Linux kernel. \n(CVE-2019-12818)\n\nIt was discovered that the MDIO bus devices subsystem in the Linux kernel\nimproperly dropped a device reference in an error condition, leading to a\nuse-after-free. (CVE-2019-12819)\n\nIt was discovered that a NULL pointer dereference vulnerability existed in\nthe Near-field communication (NFC) implementation in the Linux kernel. \n(CVE-2019-12984)\n\nJann Horn discovered a use-after-free vulnerability in the Linux kernel\nwhen accessing LDT entries in some situations. (CVE-2019-13233)\n\nJann Horn discovered that the ptrace implementation in the Linux kernel did\nnot properly record credentials in some situations. (CVE-2019-13272)\n\nIt was discovered that the GTCO tablet input driver in the Linux kernel did\nnot properly bounds check the initial HID report sent by the device. (CVE-2019-13631)\n\nIt was discovered that the floppy driver in the Linux kernel did not\nproperly validate meta data, leading to a buffer overread. \n(CVE-2019-14283)\n\nIt was discovered that the floppy driver in the Linux kernel did not\nproperly validate ioctl() calls, leading to a division-by-zero. \n(CVE-2019-14284)\n\nTuba Yavuz discovered that a race condition existed in the DesignWare USB3\nDRD Controller device driver in the Linux kernel. (CVE-2019-14763)\n\nIt was discovered that an out-of-bounds read existed in the QLogic QEDI\niSCSI Initiator Driver in the Linux kernel. A local attacker could possibly\nuse this to expose sensitive information (kernel memory). (CVE-2019-15090)\n\nIt was discovered that the Raremono AM/FM/SW radio device driver in the\nLinux kernel did not properly allocate memory, leading to a use-after-free. (CVE-2019-15211)\n\nIt was discovered at a double-free error existed in the USB Rio 500 device\ndriver for the Linux kernel. (CVE-2019-15212)\n\nIt was discovered that a race condition existed in the Advanced Linux Sound\nArchitecture (ALSA) subsystem of the Linux kernel, leading to a potential\nuse-after-free. \n(CVE-2019-15214)\n\nIt was discovered that a race condition existed in the CPiA2 video4linux\ndevice driver for the Linux kernel, leading to a use-after-free. (CVE-2019-15215)\n\nIt was discovered that a race condition existed in the Softmac USB Prism54\ndevice driver in the Linux kernel. (CVE-2019-15220)\n\nIt was discovered that a use-after-free vulnerability existed in the\nAppletalk implementation in the Linux kernel if an error occurs during\ninitialization. (CVE-2019-15292)\n\nIt was discovered that the Empia EM28xx DVB USB device driver\nimplementation in the Linux kernel contained a use-after-free vulnerability\nwhen disconnecting the device. (CVE-2019-2024)\n\nIt was discovered that the USB video device class implementation in the\nLinux kernel did not properly validate control bits, resulting in an out of\nbounds buffer read. A local attacker could use this to possibly expose\nsensitive information (kernel memory). (CVE-2019-2101)\n\nIt was discovered that the Marvell Wireless LAN device driver in the Linux\nkernel did not properly validate the BSS descriptor. (CVE-2019-3846)\n\nJason Wang discovered that an infinite loop vulnerability existed in the\nvirtio net driver in the Linux kernel. \n(CVE-2019-3900)\n\nDaniele Antonioli, Nils Ole Tippenhauer, and Kasper B. Rasmussen discovered\nthat the Bluetooth protocol BR/EDR specification did not properly require\nsufficiently strong encryption key lengths. A physicall proximate attacker\ncould use this to expose sensitive information. (CVE-2019-9506)\n\nIt was discovered that the Appletalk IP encapsulation driver in the Linux\nkernel did not properly prevent kernel addresses from being copied to user\nspace. A local attacker with the CAP_NET_ADMIN capability could use this to\nexpose sensitive information. (CVE-2018-20511)\n\nIt was discovered that a race condition existed in the USB YUREX device\ndriver in the Linux kernel. (CVE-2019-15216)\n\nIt was discovered that the Siano USB MDTV receiver device driver in the\nLinux kernel made improper assumptions about the device characteristics. (CVE-2019-15218)\n\nIt was discovered that the Line 6 POD USB device driver in the Linux kernel\ndid not properly validate data size information from the device. (CVE-2019-15221)\n\nMuyu Yu discovered that the CAN implementation in the Linux kernel in some\nsituations did not properly restrict the field size when processing\noutgoing frames. A local attacker with CAP_NET_ADMIN privileges could use\nthis to execute arbitrary code. (CVE-2019-3701)\n\nVladis Dronov discovered that the debug interface for the Linux kernel\u0027s\nHID subsystem did not properly validate passed parameters in some\nsituations. (CVE-2019-3819)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 18.04 LTS:\n linux-image-4.15.0-1047-aws 4.15.0-1047.49\n linux-image-aws 4.15.0.1047.46\n\nUbuntu 16.04 LTS:\n linux-image-4.15.0-1047-aws 4.15.0-1047.49~16.04.1\n linux-image-aws-hwe 4.15.0.1047.47\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/4118-1\n CVE-2018-13053, CVE-2018-13093, CVE-2018-13096, CVE-2018-13097,\n CVE-2018-13098, CVE-2018-13099, CVE-2018-13100, CVE-2018-14609,\n CVE-2018-14610, CVE-2018-14611, CVE-2018-14612, CVE-2018-14613,\n CVE-2018-14614, CVE-2018-14615, CVE-2018-14616, CVE-2018-14617,\n CVE-2018-16862, CVE-2018-19985, CVE-2018-20169, CVE-2018-20511,\n CVE-2018-20784, CVE-2018-20856, CVE-2018-5383, CVE-2019-0136,\n CVE-2019-10126, CVE-2019-10207, CVE-2019-10638, CVE-2019-10639,\n CVE-2019-11085, CVE-2019-11487, CVE-2019-11599, CVE-2019-11810,\n CVE-2019-11815, CVE-2019-11833, CVE-2019-11884, CVE-2019-12818,\n CVE-2019-12819, CVE-2019-12984, CVE-2019-13233, CVE-2019-13272,\n CVE-2019-13631, CVE-2019-14283, CVE-2019-14284, CVE-2019-14763,\n CVE-2019-15090, CVE-2019-15211, CVE-2019-15212, CVE-2019-15214,\n CVE-2019-15215, CVE-2019-15216, CVE-2019-15218, CVE-2019-15220,\n CVE-2019-15221, CVE-2019-15292, CVE-2019-2024, CVE-2019-2101,\n CVE-2019-3701, CVE-2019-3819, CVE-2019-3846, CVE-2019-3900,\n CVE-2019-9506\n\nPackage Information:\n https://launchpad.net/ubuntu/+source/linux-aws/4.15.0-1047.49\n https://launchpad.net/ubuntu/+source/linux-aws-hwe/4.15.0-1047.49~16.04.1\n. Unfortunately, as part of the update,\na regression was introduced that caused a kernel crash when handling\nfragmented packets in some situations. This update addresses the issue. \n\nWe apologize for the inconvenience",
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Vulnerability from variot - Updated: 2024-11-23 22:22Systems with microprocessors utilizing speculative execution may allow unauthorized disclosure of information to an attacker with local user access via a side-channel attack on the directional branch predictor, as demonstrated by a pattern history table (PHT), aka BranchScope. Intel Systems with microprocessors contain information disclosure vulnerabilities.Information may be obtained. Intel Atom C C2308 is a central processing unit (CPU) product of Intel Corporation of the United States. The ARM Cortex-A 75 is an implementation of the Cortex-A75 microarchitecture from the British company ARM. The following products and versions are affected: Intel Atom C C2308; Xeon Silver 4110; Xeon Silver 4112; Xeon Silver 4116; ARM Cortex-A 75, etc
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VAR-201906-0913
Vulnerability from variot - Updated: 2024-11-23 21:29Insufficient input validation in the Intel(R) SGX driver for Linux may allow an authenticated user to potentially enable a denial of service via local access. Intel SGX Driver for Linux is prone to a local denial-of-service vulnerability. Attackers can exploit this issue to cause a denial-of-service condition. The following products are affected: Intel SGX Linux client driver prior to 2.5 Intel SGX DCAP Linux driver prior to 1.1
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VAR-201906-1229
Vulnerability from variot - Updated: 2024-11-23 21:15Insufficient session validation in the service API for Intel(R) RWC3 version 4.186 and before may allow an unauthenticated user to potentially enable escalation of privilege via network access. Intel RAID Web Console 3 is prone to a privilege-escalation vulnerability. A remote attacker can exploit this issue to gain elevated privileges. Intel RAID Web Console 3 4.186 and prior are vulnerable. There is a security vulnerability in the service API of Intel RWC3 4.186 and earlier versions. The vulnerability is caused by the program not fully authenticating the session
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VAR-201906-0926
Vulnerability from variot - Updated: 2024-11-23 21:15Insufficient password protection in the attestation database for Open CIT may allow an authenticated user to potentially enable information disclosure via local access. Intel Open Cloud Integrity Technology (CIT) is a set of solutions from Intel Corporation for establishing a hardware root of trust and building a chain of trust between hardware, operating systems, hypervisors, virtual machines, and Docker containers. An information disclosure vulnerability exists in Intel Open CIT. A local attacker could exploit this vulnerability to disclose information
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VAR-201906-1230
Vulnerability from variot - Updated: 2024-11-23 21:12Insufficient session validation in system firmware for Intel(R) NUC Kit may allow a privileged user to potentially enable escalation of privilege, denial of service and/or information disclosure via local access. IntelNUCKit is a small desktop computer from Intel Corporation of the United States. Multiple Intel NUC Kits are prone to multiple unspecified security vulnerabilities. Attackers can leverage these issues to gain elevated privileges, cause denial-of-service conditions or obtain sensitive information
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VAR-201807-2218
Vulnerability from variot - Updated: 2024-11-23 20:59Systems with microprocessors utilizing speculative execution and branch prediction may allow unauthorized disclosure of information to an attacker with local user access via a speculative buffer overflow and side-channel analysis. Intel Systems with microprocessors contain information disclosure vulnerabilities.Information may be obtained. Multiple CPU Hardware are prone to an information-disclosure vulnerability. Attackers can exploit this issue to obtain sensitive information that may aid in further attacks. ARM CPU is a CPU (central processing unit) product of the British ARM company. Intel CPU is a CPU (central processing unit) product of Intel Corporation of the United States. This vulnerability stems from configuration errors in network systems or products during operation. 7) - aarch64, noarch, ppc64le
Bug Fix(es):
-
Kernel panic on job cleanup, related to SyS_getdents64 (BZ#1702057)
-
Kernel modules generated incorrectly when system is localized to non-English language (BZ#1705285)
-
RHEL-Alt-7.6 - Fixup tlbie vs store ordering issue on POWER9 (BZ#1756270)
-
1713059 - CVE-2019-3846 kernel: Heap overflow in mwifiex_update_bss_desc_with_ie function in marvell/mwifiex/scan.c 1716992 - CVE-2019-10126 kernel: Heap overflow in mwifiex_uap_parse_tail_ies function in drivers/net/wireless/marvell/mwifiex/ie.c 1744130 - CVE-2019-14814 kernel: heap overflow in mwifiex_set_uap_rates() function of Marvell Wifi Driver leading to DoS 1744137 - CVE-2019-14815 kernel: heap-overflow in mwifiex_set_wmm_params() function of Marvell WiFi driver leading to DoS 1744149 - CVE-2019-14816 kernel: heap overflow in mwifiex_update_vs_ie() function of Marvell WiFi driver 1771909 - CVE-2019-17133 kernel: buffer overflow in cfg80211_mgd_wext_giwessid in net/wireless/wext-sme.c 1777825 - CVE-2019-18660 kernel: (powerpc) incomplete Spectre-RSB mitigation leads to information exposure
-
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. (BZ#1594915)
Bug Fix(es):
-
ovl_create can return positive retval and crash the host (BZ#1696290)
-
THP: Race between MADV_DONTNEED and NUMA hinting node migration code (BZ#1698105)
-
RHEL7.6 - Kernel changes for count cache flush Spectre v2 mitigation (BZ#1708543)
-
Poor system performance from thundering herd of kworkers competing for mddev->flush_bio ownership (BZ#1712762)
-
[RHEL7.7] RAID1
write-behindcauses a kernel panic (BZ#1712999)
Enhancement(s):
-
[Intel 7.5 FEAT] i40evf - Update to latest upstream driver version (BZ#1722774)
-
[netdrv] i40e/i40evf: Fix use after free in Rx cleanup path [7.4.z] (BZ#1723831)
Users of kernel are advised to upgrade to these updated packages, which fix these bugs and add these enhancements. 6) - i386, x86_64
Bug Fix(es):
-
The Least recently used (LRU) operations are batched by caching pages in per-cpu page vectors to prevent contention of the heavily used lru_lock spinlock. The page vectors can hold even the compound pages. Previously, the page vectors were cleared only if they were full. Subsequently, the amount of memory held in page vectors, which is not reclaimable, was sometimes too high. Consequently the page reclamation started the Out of Memory (OOM) killing processes. With this update, the underlying source code has been fixed to clear LRU page vectors each time when a compound page is added to them. As a result, OOM killing processes due to high amounts of memory held in page vectors no longer occur. (BZ#1575819)
-
-----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
====================================================================
Red Hat Security Advisory
Synopsis: Important: kernel security and bug fix update Advisory ID: RHSA-2018:2384-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2018:2384 Issue date: 2018-08-14 CVE Names: CVE-2017-13215 CVE-2018-3620 CVE-2018-3646 CVE-2018-3693 CVE-2018-5390 CVE-2018-7566 CVE-2018-10675 ==================================================================== 1. 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 Red Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server (v. 7) - noarch, ppc64le, s390x Red Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server Optional (v. 7) - noarch, ppc64le
- Description:
The kernel packages contain the Linux kernel, the core of any Linux operating system.
Security Fix(es):
-
Modern operating systems implement virtualization of physical memory to efficiently use available system resources and provide inter-domain protection through access control and isolation. The L1TF issue was found in the way the x86 microprocessor designs have implemented speculative execution of instructions (a commonly used performance optimisation) in combination with handling of page-faults caused by terminated virtual to physical address resolving process. As a result, an unprivileged attacker could use this flaw to read privileged memory of the kernel or other processes and/or cross guest/host boundaries to read host memory by conducting targeted cache side-channel attacks. (CVE-2018-3620, CVE-2018-3646)
-
An industry-wide issue was found in the way many modern microprocessor designs have implemented speculative execution of instructions past bounds check. The flaw relies on the presence of a precisely-defined instruction sequence in the privileged code and the fact that memory writes occur to an address which depends on the untrusted value. Such writes 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 influence speculative execution and/or read privileged memory by conducting targeted cache side-channel attacks. (CVE-2018-3693)
-
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)
-
kernel: crypto: privilege escalation in skcipher_recvmsg function (CVE-2017-13215)
-
kernel: mm: use-after-free in do_get_mempolicy function allows local DoS or other unspecified impact (CVE-2018-10675)
-
kernel: race condition in snd_seq_write() may lead to UAF or OOB access (CVE-2018-7566)
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 Intel OSSIRT (Intel.com) for reporting CVE-2018-3620 and CVE-2018-3646; Vladimir Kiriansky (MIT) and Carl Waldspurger (Carl Waldspurger Consulting) for reporting CVE-2018-3693; and Juha-Matti Tilli (Aalto University, Department of Communications and Networking and Nokia Bell Labs) for reporting CVE-2018-5390.
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/3527791
- 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/):
1535173 - CVE-2017-13215 kernel: crypto: privilege escalation in skcipher_recvmsg function 1550142 - CVE-2018-7566 kernel: race condition in snd_seq_write() may lead to UAF or OOB-access 1575065 - CVE-2018-10675 kernel: mm: use-after-free in do_get_mempolicy function allows local DoS or other unspecified impact 1581650 - CVE-2018-3693 Kernel: speculative bounds check bypass store 1585005 - CVE-2018-3646 Kernel: hw: cpu: L1 terminal fault (L1TF) 1601704 - CVE-2018-5390 kernel: TCP segments with random offsets allow a remote denial of service (SegmentSmack)
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: kernel-3.10.0-862.11.6.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm kernel-doc-3.10.0-862.11.6.el7.noarch.rpm
x86_64: kernel-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-devel-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm kernel-devel-3.10.0-862.11.6.el7.x86_64.rpm kernel-headers-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-libs-3.10.0-862.11.6.el7.x86_64.rpm perf-3.10.0-862.11.6.el7.x86_64.rpm perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm python-perf-3.10.0-862.11.6.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
x86_64: kernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-862.11.6.el7.x86_64.rpm perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: kernel-3.10.0-862.11.6.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm kernel-doc-3.10.0-862.11.6.el7.noarch.rpm
x86_64: kernel-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-devel-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm kernel-devel-3.10.0-862.11.6.el7.x86_64.rpm kernel-headers-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-libs-3.10.0-862.11.6.el7.x86_64.rpm perf-3.10.0-862.11.6.el7.x86_64.rpm perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm python-perf-3.10.0-862.11.6.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
x86_64: kernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-862.11.6.el7.x86_64.rpm perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: kernel-3.10.0-862.11.6.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm kernel-doc-3.10.0-862.11.6.el7.noarch.rpm
ppc64: kernel-3.10.0-862.11.6.el7.ppc64.rpm kernel-bootwrapper-3.10.0-862.11.6.el7.ppc64.rpm kernel-debug-3.10.0-862.11.6.el7.ppc64.rpm kernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm kernel-debug-devel-3.10.0-862.11.6.el7.ppc64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-862.11.6.el7.ppc64.rpm kernel-devel-3.10.0-862.11.6.el7.ppc64.rpm kernel-headers-3.10.0-862.11.6.el7.ppc64.rpm kernel-tools-3.10.0-862.11.6.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm kernel-tools-libs-3.10.0-862.11.6.el7.ppc64.rpm perf-3.10.0-862.11.6.el7.ppc64.rpm perf-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm python-perf-3.10.0-862.11.6.el7.ppc64.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm
ppc64le: kernel-3.10.0-862.11.6.el7.ppc64le.rpm kernel-bootwrapper-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debug-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-862.11.6.el7.ppc64le.rpm kernel-devel-3.10.0-862.11.6.el7.ppc64le.rpm kernel-headers-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-libs-3.10.0-862.11.6.el7.ppc64le.rpm perf-3.10.0-862.11.6.el7.ppc64le.rpm perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm python-perf-3.10.0-862.11.6.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm
s390x: kernel-3.10.0-862.11.6.el7.s390x.rpm kernel-debug-3.10.0-862.11.6.el7.s390x.rpm kernel-debug-debuginfo-3.10.0-862.11.6.el7.s390x.rpm kernel-debug-devel-3.10.0-862.11.6.el7.s390x.rpm kernel-debuginfo-3.10.0-862.11.6.el7.s390x.rpm kernel-debuginfo-common-s390x-3.10.0-862.11.6.el7.s390x.rpm kernel-devel-3.10.0-862.11.6.el7.s390x.rpm kernel-headers-3.10.0-862.11.6.el7.s390x.rpm kernel-kdump-3.10.0-862.11.6.el7.s390x.rpm kernel-kdump-debuginfo-3.10.0-862.11.6.el7.s390x.rpm kernel-kdump-devel-3.10.0-862.11.6.el7.s390x.rpm perf-3.10.0-862.11.6.el7.s390x.rpm perf-debuginfo-3.10.0-862.11.6.el7.s390x.rpm python-perf-3.10.0-862.11.6.el7.s390x.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.s390x.rpm
x86_64: kernel-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-devel-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm kernel-devel-3.10.0-862.11.6.el7.x86_64.rpm kernel-headers-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-libs-3.10.0-862.11.6.el7.x86_64.rpm perf-3.10.0-862.11.6.el7.x86_64.rpm perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm python-perf-3.10.0-862.11.6.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm
Red Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server (v. 7):
noarch: kernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm kernel-doc-3.10.0-862.11.6.el7.noarch.rpm
ppc64le: kernel-3.10.0-862.11.6.el7.ppc64le.rpm kernel-bootwrapper-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debug-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-862.11.6.el7.ppc64le.rpm kernel-devel-3.10.0-862.11.6.el7.ppc64le.rpm kernel-headers-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-libs-3.10.0-862.11.6.el7.ppc64le.rpm perf-3.10.0-862.11.6.el7.ppc64le.rpm perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm python-perf-3.10.0-862.11.6.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm
s390x: kernel-3.10.0-862.11.6.el7.s390x.rpm kernel-debug-3.10.0-862.11.6.el7.s390x.rpm kernel-debug-debuginfo-3.10.0-862.11.6.el7.s390x.rpm kernel-debug-devel-3.10.0-862.11.6.el7.s390x.rpm kernel-debuginfo-3.10.0-862.11.6.el7.s390x.rpm kernel-debuginfo-common-s390x-3.10.0-862.11.6.el7.s390x.rpm kernel-devel-3.10.0-862.11.6.el7.s390x.rpm kernel-headers-3.10.0-862.11.6.el7.s390x.rpm kernel-kdump-3.10.0-862.11.6.el7.s390x.rpm kernel-kdump-debuginfo-3.10.0-862.11.6.el7.s390x.rpm kernel-kdump-devel-3.10.0-862.11.6.el7.s390x.rpm perf-3.10.0-862.11.6.el7.s390x.rpm perf-debuginfo-3.10.0-862.11.6.el7.s390x.rpm python-perf-3.10.0-862.11.6.el7.s390x.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.s390x.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
ppc64: kernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm kernel-debuginfo-common-ppc64-3.10.0-862.11.6.el7.ppc64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm kernel-tools-libs-devel-3.10.0-862.11.6.el7.ppc64.rpm perf-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm
ppc64le: kernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debug-devel-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-libs-devel-3.10.0-862.11.6.el7.ppc64le.rpm perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm
x86_64: kernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-862.11.6.el7.x86_64.rpm perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm
Red Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server Optional (v. 7):
noarch: kernel-doc-3.10.0-862.11.6.el7.noarch.rpm
ppc64le: kernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debug-devel-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-debuginfo-common-ppc64le-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm kernel-tools-libs-devel-3.10.0-862.11.6.el7.ppc64le.rpm perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: kernel-3.10.0-862.11.6.el7.src.rpm
noarch: kernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm kernel-doc-3.10.0-862.11.6.el7.noarch.rpm
x86_64: kernel-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debug-devel-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm kernel-devel-3.10.0-862.11.6.el7.x86_64.rpm kernel-headers-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-libs-3.10.0-862.11.6.el7.x86_64.rpm perf-3.10.0-862.11.6.el7.x86_64.rpm perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm python-perf-3.10.0-862.11.6.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
x86_64: kernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm kernel-tools-libs-devel-3.10.0-862.11.6.el7.x86_64.rpm perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm python-perf-debuginfo-3.10.0-862.11.6.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-2017-13215 https://access.redhat.com/security/cve/CVE-2018-3620 https://access.redhat.com/security/cve/CVE-2018-3646 https://access.redhat.com/security/cve/CVE-2018-3693 https://access.redhat.com/security/cve/CVE-2018-5390 https://access.redhat.com/security/cve/CVE-2018-7566 https://access.redhat.com/security/cve/CVE-2018-10675 https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/security/vulnerabilities/L1TF https://access.redhat.com/articles/3527791
- 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
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"data": "Systems with microprocessors utilizing speculative execution and branch prediction may allow unauthorized disclosure of information to an attacker with local user access via a speculative buffer overflow and side-channel analysis. Intel Systems with microprocessors contain information disclosure vulnerabilities.Information may be obtained. Multiple CPU Hardware are prone to an information-disclosure vulnerability. \nAttackers can exploit this issue to obtain sensitive information that may aid in further attacks. ARM CPU is a CPU (central processing unit) product of the British ARM company. Intel CPU is a CPU (central processing unit) product of Intel Corporation of the United States. This vulnerability stems from configuration errors in network systems or products during operation. 7) - aarch64, noarch, ppc64le\n\n3. \n\nBug Fix(es):\n\n* Kernel panic on job cleanup, related to SyS_getdents64 (BZ#1702057)\n\n* Kernel modules generated incorrectly when system is localized to\nnon-English language (BZ#1705285)\n\n* RHEL-Alt-7.6 - Fixup tlbie vs store ordering issue on POWER9 (BZ#1756270)\n\n4. \n1713059 - CVE-2019-3846 kernel: Heap overflow in mwifiex_update_bss_desc_with_ie function in marvell/mwifiex/scan.c\n1716992 - CVE-2019-10126 kernel: Heap overflow in mwifiex_uap_parse_tail_ies function in drivers/net/wireless/marvell/mwifiex/ie.c\n1744130 - CVE-2019-14814 kernel: heap overflow in mwifiex_set_uap_rates() function of Marvell Wifi Driver leading to DoS\n1744137 - CVE-2019-14815 kernel: heap-overflow in mwifiex_set_wmm_params() function of Marvell WiFi driver leading to DoS\n1744149 - CVE-2019-14816 kernel: heap overflow in mwifiex_update_vs_ie() function of Marvell WiFi driver\n1771909 - CVE-2019-17133 kernel: buffer overflow in cfg80211_mgd_wext_giwessid in net/wireless/wext-sme.c\n1777825 - CVE-2019-18660 kernel: (powerpc) incomplete Spectre-RSB mitigation leads to information exposure\n\n6. 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. \n(BZ#1594915)\n\n4. \n\nBug Fix(es):\n\n* ovl_create can return positive retval and crash the host (BZ#1696290)\n\n* THP: Race between MADV_DONTNEED and NUMA hinting node migration code\n(BZ#1698105)\n\n* RHEL7.6 - Kernel changes for count cache flush Spectre v2 mitigation\n(BZ#1708543)\n\n* Poor system performance from thundering herd of kworkers competing for\nmddev-\u003eflush_bio ownership (BZ#1712762)\n\n* [RHEL7.7] RAID1 `write-behind` causes a kernel panic (BZ#1712999)\n\nEnhancement(s):\n\n* [Intel 7.5 FEAT] i40evf - Update to latest upstream driver version\n(BZ#1722774)\n\n* [netdrv] i40e/i40evf: Fix use after free in Rx cleanup path [7.4.z]\n(BZ#1723831)\n\nUsers of kernel are advised to upgrade to these updated packages, which fix\nthese bugs and add these enhancements. 6) - i386, x86_64\n\n3. \n\nBug Fix(es):\n\n* The Least recently used (LRU) operations are batched by caching pages in\nper-cpu page vectors to prevent contention of the heavily used lru_lock\nspinlock. The page vectors can hold even the compound pages. Previously,\nthe page vectors were cleared only if they were full. Subsequently, the\namount of memory held in page vectors, which is not reclaimable, was\nsometimes too high. Consequently the page reclamation started the Out of\nMemory (OOM) killing processes. With this update, the underlying source\ncode has been fixed to clear LRU page vectors each time when a compound\npage is added to them. As a result, OOM killing processes due to high\namounts of memory held in page vectors no longer occur. (BZ#1575819)\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-2018:2384-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2018:2384\nIssue date: 2018-08-14\nCVE Names: CVE-2017-13215 CVE-2018-3620 CVE-2018-3646\n CVE-2018-3693 CVE-2018-5390 CVE-2018-7566\n CVE-2018-10675\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\nRed Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server (v. 7) - noarch, ppc64le, s390x\nRed Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server Optional (v. 7) - noarch, ppc64le\n\n3. Description:\n\nThe kernel packages contain the Linux kernel, the core of any Linux\noperating system. \n\nSecurity Fix(es):\n\n* Modern operating systems implement virtualization of physical memory to\nefficiently use available system resources and provide inter-domain\nprotection through access control and isolation. The L1TF issue was found\nin the way the x86 microprocessor designs have implemented speculative\nexecution of instructions (a commonly used performance optimisation) in\ncombination with handling of page-faults caused by terminated virtual to\nphysical address resolving process. As a result, an unprivileged attacker\ncould use this flaw to read privileged memory of the kernel or other\nprocesses and/or cross guest/host boundaries to read host memory by\nconducting targeted cache side-channel attacks. (CVE-2018-3620,\nCVE-2018-3646)\n\n* An industry-wide issue was found in the way many modern microprocessor\ndesigns have implemented speculative execution of instructions past bounds\ncheck. The flaw relies on the presence of a precisely-defined instruction\nsequence in the privileged code and the fact that memory writes occur to an\naddress which depends on the untrusted value. Such writes cause an update\ninto the microprocessor\u0027s data cache even for speculatively executed\ninstructions that never actually commit (retire). As a result, an\nunprivileged attacker could use this flaw to influence speculative\nexecution and/or read privileged memory by conducting targeted cache\nside-channel attacks. (CVE-2018-3693)\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* kernel: crypto: privilege escalation in skcipher_recvmsg function\n(CVE-2017-13215)\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: race condition in snd_seq_write() may lead to UAF or OOB access\n(CVE-2018-7566)\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 Intel OSSIRT (Intel.com) for reporting\nCVE-2018-3620 and CVE-2018-3646; Vladimir Kiriansky (MIT) and Carl\nWaldspurger (Carl Waldspurger Consulting) for reporting CVE-2018-3693; and\nJuha-Matti Tilli (Aalto University, Department of Communications and\nNetworking and Nokia Bell Labs) for reporting CVE-2018-5390. \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:\n\nhttps://access.redhat.com/articles/3527791\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\n1535173 - CVE-2017-13215 kernel: crypto: privilege escalation in skcipher_recvmsg function\n1550142 - CVE-2018-7566 kernel: race condition in snd_seq_write() may lead to UAF or OOB-access\n1575065 - CVE-2018-10675 kernel: mm: use-after-free in do_get_mempolicy function allows local DoS or other unspecified impact\n1581650 - CVE-2018-3693 Kernel: speculative bounds check bypass store\n1585005 - CVE-2018-3646 Kernel: hw: cpu: L1 terminal fault (L1TF)\n1601704 - CVE-2018-5390 kernel: TCP segments with random offsets allow a remote denial of service (SegmentSmack)\n\n6. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nkernel-3.10.0-862.11.6.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm\nkernel-doc-3.10.0-862.11.6.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-devel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-headers-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-862.11.6.el7.x86_64.rpm\nperf-3.10.0-862.11.6.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-862.11.6.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nkernel-3.10.0-862.11.6.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm\nkernel-doc-3.10.0-862.11.6.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-devel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-headers-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-862.11.6.el7.x86_64.rpm\nperf-3.10.0-862.11.6.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-862.11.6.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nkernel-3.10.0-862.11.6.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm\nkernel-doc-3.10.0-862.11.6.el7.noarch.rpm\n\nppc64:\nkernel-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-bootwrapper-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-debug-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-debug-devel-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-devel-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-headers-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-tools-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-tools-libs-3.10.0-862.11.6.el7.ppc64.rpm\nperf-3.10.0-862.11.6.el7.ppc64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\npython-perf-3.10.0-862.11.6.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\n\nppc64le:\nkernel-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-bootwrapper-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debug-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-devel-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-headers-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-libs-3.10.0-862.11.6.el7.ppc64le.rpm\nperf-3.10.0-862.11.6.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\npython-perf-3.10.0-862.11.6.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\n\ns390x:\nkernel-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debug-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debug-devel-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debuginfo-common-s390x-3.10.0-862.11.6.el7.s390x.rpm\nkernel-devel-3.10.0-862.11.6.el7.s390x.rpm\nkernel-headers-3.10.0-862.11.6.el7.s390x.rpm\nkernel-kdump-3.10.0-862.11.6.el7.s390x.rpm\nkernel-kdump-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\nkernel-kdump-devel-3.10.0-862.11.6.el7.s390x.rpm\nperf-3.10.0-862.11.6.el7.s390x.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\npython-perf-3.10.0-862.11.6.el7.s390x.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\n\nx86_64:\nkernel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-devel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-headers-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-862.11.6.el7.x86_64.rpm\nperf-3.10.0-862.11.6.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\n\nRed Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server (v. 7):\n\nnoarch:\nkernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm\nkernel-doc-3.10.0-862.11.6.el7.noarch.rpm\n\nppc64le:\nkernel-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-bootwrapper-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debug-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-devel-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-headers-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-libs-3.10.0-862.11.6.el7.ppc64le.rpm\nperf-3.10.0-862.11.6.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\npython-perf-3.10.0-862.11.6.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\n\ns390x:\nkernel-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debug-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debug-devel-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\nkernel-debuginfo-common-s390x-3.10.0-862.11.6.el7.s390x.rpm\nkernel-devel-3.10.0-862.11.6.el7.s390x.rpm\nkernel-headers-3.10.0-862.11.6.el7.s390x.rpm\nkernel-kdump-3.10.0-862.11.6.el7.s390x.rpm\nkernel-kdump-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\nkernel-kdump-devel-3.10.0-862.11.6.el7.s390x.rpm\nperf-3.10.0-862.11.6.el7.s390x.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\npython-perf-3.10.0-862.11.6.el7.s390x.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.s390x.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\nppc64:\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-debuginfo-common-ppc64-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\nkernel-tools-libs-devel-3.10.0-862.11.6.el7.ppc64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.ppc64.rpm\n\nppc64le:\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debug-devel-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-libs-devel-3.10.0-862.11.6.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-862.11.6.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\n\nRed Hat Enterprise Linux for ARM and IBM Power LE (POWER9) Server Optional (v. 7):\n\nnoarch:\nkernel-doc-3.10.0-862.11.6.el7.noarch.rpm\n\nppc64le:\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debug-devel-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\nkernel-tools-libs-devel-3.10.0-862.11.6.el7.ppc64le.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.ppc64le.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nkernel-3.10.0-862.11.6.el7.src.rpm\n\nnoarch:\nkernel-abi-whitelists-3.10.0-862.11.6.el7.noarch.rpm\nkernel-doc-3.10.0-862.11.6.el7.noarch.rpm\n\nx86_64:\nkernel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debug-devel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-devel-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-headers-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-libs-3.10.0-862.11.6.el7.x86_64.rpm\nperf-3.10.0-862.11.6.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nx86_64:\nkernel-debug-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-debuginfo-common-x86_64-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\nkernel-tools-libs-devel-3.10.0-862.11.6.el7.x86_64.rpm\nperf-debuginfo-3.10.0-862.11.6.el7.x86_64.rpm\npython-perf-debuginfo-3.10.0-862.11.6.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-2017-13215\nhttps://access.redhat.com/security/cve/CVE-2018-3620\nhttps://access.redhat.com/security/cve/CVE-2018-3646\nhttps://access.redhat.com/security/cve/CVE-2018-3693\nhttps://access.redhat.com/security/cve/CVE-2018-5390\nhttps://access.redhat.com/security/cve/CVE-2018-7566\nhttps://access.redhat.com/security/cve/CVE-2018-10675\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/security/vulnerabilities/L1TF\nhttps://access.redhat.com/articles/3527791\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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\nlZgWJhC3Yik=i4St\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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Vulnerability from variot - Updated: 2024-11-23 20:50Improper permissions in the installer for the ITE Tech* Consumer Infrared Driver for Windows 10 versions before 5.4.3.0 may allow an authenticated user to potentially enable escalation of privilege via local access. A local attacker can exploit this issue to gain elevated privileges
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VAR-201906-0925
Vulnerability from variot - Updated: 2024-11-23 20:47Insufficient password protection in the attestation database for Open CIT may allow an authenticated user to potentially enable information disclosure via local access. WordPress for FooGallery The plugin contains a cross-site scripting vulnerability.The information may be obtained and the information may be falsified. Intel Open Cloud Integrity Technology (CIT) is a set of solutions from Intel Corporation for establishing a hardware root of trust and building a chain of trust between hardware, operating systems, hypervisors, virtual machines, and Docker containers. A path traversal vulnerability exists in Intel Open CIT. A local attacker could exploit this vulnerability to disclose information
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VAR-201906-0919
Vulnerability from variot - Updated: 2024-11-23 20:45Insufficient password protection in the attestation database for Open CIT may allow an authenticated user to potentially enable information disclosure via local access. Intel OpenAttestation is an open source project of Intel Corporation for managing host integrity verification using the remote attestation protocol defined by TCG. A permissions and access control issue vulnerability exists in the authentication process in Intel OpenAttestation due to the program's failure to adequately authenticate sessions. A local attacker could exploit this vulnerability to elevate privileges
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VAR-201906-1231
Vulnerability from variot - Updated: 2024-11-23 20:43Out of bound read/write in system firmware for Intel(R) NUC Kit may allow a privileged user to potentially enable escalation of privilege, denial of service and/or information disclosure via local access. IntelNUCKit is a small desktop computer from Intel Corporation of the United States. A buffer overflow vulnerability exists in the system firmware in IntelNUCKit. This vulnerability is caused when the network system or product performs operations on the memory and does not correctly verify the data boundary, resulting in incorrect read and write operations to other associated memory locations. This vulnerability can be exploited to cause buffer overflows or heap overflows. Multiple Intel NUC Kits are prone to multiple unspecified security vulnerabilities. Attackers can leverage these issues to gain elevated privileges, cause denial-of-service conditions or obtain sensitive information
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Vulnerability from variot - Updated: 2024-11-23 20:41Improper permissions in the installer for Intel(R) Turbo Boost Max Technology 3.0 driver version 1.0.0.1035 and before may allow an authenticated user to potentially enable escalation of privilege via local access. A local attacker can exploit this issue to gain elevated privileges
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VAR-201906-0915
Vulnerability from variot - Updated: 2024-11-23 20:34Improper permissions in the installer for Intel(R) Chipset Device Software (INF Update Utility) before version 10.1.1.45 may allow an authenticated user to escalate privilege via local access. Intel Chipset Device Software is prone to a local privilege-escalation vulnerability. A local attacker can exploit this issue to gain elevated privileges. Intel Chipset Device Software prior to version 10.1.1.45 are vulnerable
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VAR-201906-0918
Vulnerability from variot - Updated: 2024-11-23 20:32Logic condition in specific microprocessors may allow an authenticated user to potentially enable partial physical address information disclosure via local access. Intel CoreX-seriesProcessors and so on are products of Intel Corporation of the United States. Intel CoreX-seriesProcessors is an X-Series central processing unit (CPU). 4thGenerationIntelCorei5Processors is a fourth-generation Corei5 series central processing unit (CPU). 4thGenerationIntelCorei3Processors is a fourth-generation Corei3 series central processing unit (CPU). There are information disclosure vulnerabilities in various Intel products that can be exploited by local attackers to disclose some physical addresses. DRAM is prone to an information disclosure vulnerability. The following products and versions are affected: Intel Core X-series Processors; 4th Generation Intel Core i5 Processors; 4th Generation Intel Core i3 Processors; Intel Pentium Processor G Series; Intel Pentium Processor 3000 Series; Intel Celeron Processor 2000 Series; Intel Xeon Processor E7 v3 Family; Intel Xeon Processor E5 v3 Family; Intel Xeon Processor E3 v3 Family
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VAR-201906-1228
Vulnerability from variot - Updated: 2024-11-23 20:23Improper permissions in the installer for Intel(R) Omni-Path Fabric Manager GUI before version 10.9.2.1.1 may allow an authenticated user to potentially enable escalation of privilege via local attack. Intel Omni-Path Fabric Manager GUI is prone to a local privilege-escalation vulnerability. A local attacker can exploit this issue to gain elevated privileges. Versions prior to Intel Omni-Path Fabric Manager GUI prior to 10.9.2.1.1 are vulnerable
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VAR-201906-0922
Vulnerability from variot - Updated: 2024-11-23 20:20Insufficient password protection in the attestation database for Open CIT may allow an authenticated user to potentially enable information disclosure via local access. Intel Open Cloud Integrity Technology (CIT) is a set of solutions from Intel Corporation for establishing a hardware root of trust and building a chain of trust between hardware, operating systems, hypervisors, virtual machines, and Docker containers. A security feature issue vulnerability exists in Intel Open CIT where the program does not adequately protect passwords. An attacker could exploit this vulnerability to disclose information
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VAR-201906-1227
Vulnerability from variot - Updated: 2024-11-23 20:16Insufficient password protection in the attestation database for Open CIT may allow an authenticated user to potentially enable information disclosure via local access. Intel Open Cloud Integrity Technology (CIT) is a set of solutions from Intel Corporation for establishing a hardware root of trust and building a chain of trust between hardware, operating systems, hypervisors, virtual machines, and Docker containers. A security signature issue vulnerability exists in Intel Open CIT. A local attacker could exploit this vulnerability to disclose information
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VAR-201906-1235
Vulnerability from variot - Updated: 2024-11-23 20:14Insufficient input validation in system firmware for Intel(R) NUC Kit may allow a privileged user to potentially enable escalation of privilege, denial of service and/or information disclosure via local access. Multiple Intel NUC Kits are prone to multiple unspecified security vulnerabilities. Attackers can leverage these issues to gain elevated privileges, cause denial-of-service conditions or obtain sensitive information. Intel NUC Kit is a small desktop computer produced by Intel Corporation of the United States. The vulnerability stems from the failure of the network system or product to properly validate the input data
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VAR-201906-0924
Vulnerability from variot - Updated: 2024-11-23 20:05Insufficient password protection in the attestation database for Open CIT may allow an authenticated user to potentially enable information disclosure via local access. Both Intel Open Cloud Integrity Technology (CIT) and Intel OpenAttestation are products of Intel Corporation. Intel Open Cloud Integrity Technology is a set of solutions for establishing a hardware root of trust and building a chain of trust between hardware, operating systems, hypervisors, virtual machines, and Docker containers. Intel OpenAttestation is an open source project for managing host integrity verification using the remote attestation protocol defined by the TCG. Input validation error vulnerabilities exist in Intel Open CIT and OpenAttestation. A local attacker could exploit this vulnerability to elevate privileges
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VAR-201906-1236
Vulnerability from variot - Updated: 2024-11-23 20:02Out of bound read/write in system firmware for Intel(R) NUC Kit may allow a privileged user to potentially enable escalation of privilege, denial of service and/or information disclosure via local access. Multiple Intel NUC Kits are prone to multiple unspecified security vulnerabilities. Attackers can leverage these issues to gain elevated privileges, cause denial-of-service conditions or obtain sensitive information. Intel NUC Kit is a small desktop computer produced by Intel Corporation of the United States. This vulnerability stems from the incorrect verification of data boundaries when the network system or product performs operations on the memory, resulting in incorrect read and write operations to other associated memory locations. Attackers can exploit this vulnerability to cause buffer overflow or heap overflow, etc
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VAR-201906-1234
Vulnerability from variot - Updated: 2024-11-23 20:02Buffer overflow in system firmware for Intel(R) NUC Kit may allow a privileged user to potentially enable escalation of privilege, denial of service and/or information disclosure via local access. Multiple Intel NUC Kits are prone to multiple unspecified security vulnerabilities. Attackers can leverage these issues to gain elevated privileges, cause denial-of-service conditions or obtain sensitive information. Intel NUC Kit is a small desktop computer produced by Intel Corporation of the United States. This vulnerability stems from the incorrect verification of data boundaries when the network system or product performs operations on the memory, resulting in incorrect read and write operations to other associated memory locations. Attackers can exploit this vulnerability to cause buffer overflow or heap overflow, etc
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VAR-201906-0916
Vulnerability from variot - Updated: 2024-11-23 20:02Reflected XSS in web interface for Intel(R) Accelerated Storage Manager in Intel(R) RSTe before version 5.5.0.2015 may allow an unauthenticated user to potentially enable denial of service via network access. Intel Rapid Storage Technology Enterprise is prone to a cross-site scripting vulnerability because it fails to properly sanitize user-supplied input. An attacker may leverage this issue to execute arbitrary script code in the browser of an unsuspecting user in the context of the affected site. This may allow the attacker to perform unauthorized actions such as reading, modifying, or deleting content, inject malicious content or cause denial-of-service conditions. Intel Rapid Storage Technology Enterprise version prior 5.5.0.2015 to are vulnerable. Intel Accelerated Storage Manager is one of the accelerated storage managers. An attacker could exploit this vulnerability to cause a denial of service
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VAR-201906-1233
Vulnerability from variot - Updated: 2024-11-23 19:38Pointer corruption in system firmware for Intel(R) NUC Kit may allow a privileged user to potentially enable escalation of privilege, denial of service and/or information disclosure via local access. IntelNUCKit is a small desktop computer from Intel Corporation of the United States. Multiple Intel NUC Kits are prone to multiple unspecified security vulnerabilities. Attackers can leverage these issues to gain elevated privileges, cause denial-of-service conditions or obtain sensitive information
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