CVE-2016-0723
published 2016-02-08CVE-2016-0723: Race condition in the tty_ioctl function in drivers/tty/tty_io.c in the Linux kernel through 4.4.1 allows local users to obtain sensitive information from…
PriorityP425medium6.8CVSS 3.0
AVLACLPRNUINSUCLINAH
EPSS
0.38%
31.0th percentile
Race condition in the tty_ioctl function in drivers/tty/tty_io.c in the Linux kernel through 4.4.1 allows local users to obtain sensitive information from kernel memory or cause a denial of service (use-after-free and system crash) by making a TIOCGETD ioctl call during processing of a TIOCSETD ioctl call.
Affected
8 ranges
| Vendor | Product | Version range | Fixed in |
|---|---|---|---|
| debian | linux | < linux 4.3.3-6 (bookworm) | linux 4.3.3-6 (bookworm) |
| android | — | — | |
| linux | linux_kernel | <= 4.4.1 | — |
| linux | linux_kernel | >= 0 < 4.3.3-6 | 4.3.3-6 |
| linux | linux_kernel | >= 0 < 4.3.3-6 | 4.3.3-6 |
| linux | linux_kernel | >= 0 < 4.3.3-6 | 4.3.3-6 |
| linux | linux_kernel | >= 0 < 4.3.3-6 | 4.3.3-6 |
| linux | linux_kernel | >= 0 < 3.13.0-83.127 | 3.13.0-83.127 |
CVSS provenance
nvdv3.06.8MEDIUMCVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:H
nvdv2.05.6MEDIUMAV:L/AC:L/Au:N/C:P/I:N/A:C
osv6.8MEDIUM
vendor_debian6.8MEDIUM
vendor_redhat6.8MEDIUM
vendor_ubuntu6.2MEDIUM
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GHSA
GHSA-7c29-m4q4-fgp6: Race condition in the tty_ioctl function in drivers/tty/tty_io
ghsa_unreviewed·2022-05-17
CVE-2016-0723 [MEDIUM] CWE-200 GHSA-7c29-m4q4-fgp6: Race condition in the tty_ioctl function in drivers/tty/tty_io
Race condition in the tty_ioctl function in drivers/tty/tty_io.c in the Linux kernel through 4.4.1 allows local users to obtain sensitive information from kernel memory or cause a denial of service (use-after-free and system crash) by making a TIOCGETD ioctl call during processing of a TIOCSETD ioctl call.
OSV
linux-lts-utopic regression
osv·2016-04-11·CVSS 4.6
[MEDIUM] linux-lts-utopic regression
linux-lts-utopic regression
USN-2948-1 fixed vulnerabilities in the Ubuntu 14.10 Linux kernel
backported to Ubuntu 14.04 LTS. An incorrect reference counting
fix in the radeon driver introduced a regression that could cause a
system crash. This update fixes the problem.
We apologize for the inconvenience.
Original advisory details:
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7566)
Ralf Spenneberg discovered that the usbvision driver in the Linux kernel
did not properly validate the interfaces and endpoints reported by the
device. An attacker with physical access could cause a denial of service
OSV
linux-lts-utopic vulnerabilities
osv·2016-04-06·CVSS 4.6
CVE-2015-7566 [MEDIUM] linux-lts-utopic vulnerabilities
linux-lts-utopic vulnerabilities
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7566)
Ralf Spenneberg discovered that the usbvision driver in the Linux kernel
did not properly validate the interfaces and endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7833)
Venkatesh Pottem discovered a use-after-free vulnerability in the Linux
kernel's CXGB3 driver. A local attacker could use this to cause a denial of
service (system crash) or possibly execute arbitrary code. (CVE-2015-8812)
It was discovered that a race condition existe
OSV
linux-lts-wily vulnerabilities
osv·2016-03-14·CVSS 4.6
CVE-2016-3134 [MEDIUM] linux-lts-wily vulnerabilities
linux-lts-wily vulnerabilities
Ben Hawkes discovered that the Linux netfilter implementation did not
correctly perform validation when handling IPT_SO_SET_REPLACE events. A
local unprivileged attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-3134)
Ben Hawkes discovered an integer overflow in the Linux netfilter
implementation. On systems running 32 bit kernels, a local unprivileged
attacker could use this to cause a denial of service (system crash) or
possibly execute arbitrary code with administrative privileges.
(CVE-2016-3135)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with p
OSV
linux-lts-vivid vulnerabilities
osv·2016-03-14·CVSS 6.2
CVE-2016-3134 [MEDIUM] linux-lts-vivid vulnerabilities
linux-lts-vivid vulnerabilities
Ben Hawkes discovered that the Linux netfilter implementation did not
correctly perform validation when handling IPT_SO_SET_REPLACE events. A
local unprivileged attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-3134)
It was discovered that the Linux kernel did not properly enforce rlimits
for file descriptors sent over UNIX domain sockets. A local attacker could
use this to cause a denial of service. (CVE-2013-4312)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7566)
Ralf
OSV
linux vulnerabilities
osv·2016-03-14·CVSS 6.2
CVE-2016-3134 [MEDIUM] linux vulnerabilities
linux vulnerabilities
Ben Hawkes discovered that the Linux netfilter implementation did not
correctly perform validation when handling IPT_SO_SET_REPLACE events. A
local unprivileged attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-3134)
It was discovered that the Linux kernel did not properly enforce rlimits
for file descriptors sent over UNIX domain sockets. A local attacker could
use this to cause a denial of service. (CVE-2013-4312)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7566)
Ralf Spenneber
OSV
CVE-2016-0723: Race condition in the tty_ioctl function in drivers/tty/tty_io
osv·2016-02-08·CVSS 6.8
CVE-2016-0723 [MEDIUM] CVE-2016-0723: Race condition in the tty_ioctl function in drivers/tty/tty_io
Race condition in the tty_ioctl function in drivers/tty/tty_io.c in the Linux kernel through 4.4.1 allows local users to obtain sensitive information from kernel memory or cause a denial of service (use-after-free and system crash) by making a TIOCGETD ioctl call during processing of a TIOCSETD ioctl call.
Android
CVE-2016-0723: Android Security Bulletin 2016-07-01
CVE: CVE-2016-0723
Severity: MEDIUM
References: A-28409131
Upstream
kernel
vendor_android·2016-07-01·CVSS 6.8
CVE-2016-0723 [MEDIUM] CVE-2016-0723: Android Security Bulletin 2016-07-01
CVE: CVE-2016-0723
Severity: MEDIUM
References: A-28409131
Upstream
kernel
Android Security Bulletin 2016-07-01
CVE: CVE-2016-0723
Severity: MEDIUM
References: A-28409131
Upstream
kernel
Ubuntu
Linux kernel vulnerabilities
vendor_ubuntu·2016-05-09·CVSS 6.2
CVE-2013-4312 [MEDIUM] Linux kernel vulnerabilities
Title: Linux kernel vulnerabilities
Summary: Several security issues were fixed in the kernel.
It was discovered that the Linux kernel did not properly enforce rlimits
for file descriptors sent over UNIX domain sockets. A local attacker could
use this to cause a denial of service. (CVE-2013-4312)
Ralf Spenneberg discovered that the Aiptek Tablet USB device driver in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7515)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7566)
Ral
Ubuntu
Linux kernel (OMAP4) vulnerabilities
vendor_ubuntu·2016-05-09·CVSS 6.2
CVE-2013-4312 [MEDIUM] Linux kernel (OMAP4) vulnerabilities
Title: Linux kernel (OMAP4) vulnerabilities
Summary: Several security issues were fixed in the kernel.
It was discovered that the Linux kernel did not properly enforce rlimits
for file descriptors sent over UNIX domain sockets. A local attacker could
use this to cause a denial of service. (CVE-2013-4312)
Ralf Spenneberg discovered that the Aiptek Tablet USB device driver in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7515)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-75
Ubuntu
Linux kernel (Utopic HWE) regression
vendor_ubuntu·2016-04-11·CVSS 4.6
[MEDIUM] Linux kernel (Utopic HWE) regression
Title: Linux kernel (Utopic HWE) regression
Summary: USN 2948-1 introduced a regression in the Ubuntu 14.10 Linux kernel
backported to Ubuntu 14.04 LTS.
USN-2948-1 fixed vulnerabilities in the Ubuntu 14.10 Linux kernel
backported to Ubuntu 14.04 LTS. An incorrect reference counting
fix in the radeon driver introduced a regression that could cause a
system crash. This update fixes the problem.
We apologize for the inconvenience.
Original advisory details:
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7566)
Ralf Spenneberg discovered that the usbvision driver in the Linux kernel
did not properly
Ubuntu
Linux kernel (Utopic HWE) vulnerabilities
vendor_ubuntu·2016-04-06·CVSS 4.6
CVE-2015-7566 [MEDIUM] Linux kernel (Utopic HWE) vulnerabilities
Title: Linux kernel (Utopic HWE) vulnerabilities
Summary: Several security issues were fixed in the kernel.
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7566)
Ralf Spenneberg discovered that the usbvision driver in the Linux kernel
did not properly validate the interfaces and endpoints reported by the
device. An attacker with physical access could cause a denial of service
(system crash). (CVE-2015-7833)
Venkatesh Pottem discovered a use-after-free vulnerability in the Linux
kernel's CXGB3 driver. A local attacker could use this to cause a denial of
service (system crash) or possibly execute arb
Ubuntu
Linux kernel (Raspberry Pi 2) vulnerabilities
vendor_ubuntu·2016-03-16·CVSS 4.6
CVE-2015-7566 [MEDIUM] Linux kernel (Raspberry Pi 2) vulnerabilities
Title: Linux kernel (Raspberry Pi 2) vulnerabilities
Summary: Several security issues were fixed in the kernel.
Ben Hawkes discovered that the Linux netfilter implementation did not
correctly perform validation when handling IPT_SO_SET_REPLACE events. A
local unprivileged attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-3134)
Ben Hawkes discovered an integer overflow in the Linux netfilter
implementation. On systems running 32 bit kernels, a local unprivileged
attacker could use this to cause a denial of service (system crash) or
possibly execute arbitrary code with administrative privileges.
(CVE-2016-3135)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel
Ubuntu
Linux kernel (Wily HWE) vulnerabilities
vendor_ubuntu·2016-03-14·CVSS 4.6
CVE-2015-7566 [MEDIUM] Linux kernel (Wily HWE) vulnerabilities
Title: Linux kernel (Wily HWE) vulnerabilities
Summary: Several security issues were fixed in the kernel.
Ben Hawkes discovered that the Linux netfilter implementation did not
correctly perform validation when handling IPT_SO_SET_REPLACE events. A
local unprivileged attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-3134)
Ben Hawkes discovered an integer overflow in the Linux netfilter
implementation. On systems running 32 bit kernels, a local unprivileged
attacker could use this to cause a denial of service (system crash) or
possibly execute arbitrary code with administrative privileges.
(CVE-2016-3135)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did no
Ubuntu
Linux kernel (Trusty HWE) vulnerabilities
vendor_ubuntu·2016-03-14·CVSS 6.2
CVE-2013-4312 [MEDIUM] Linux kernel (Trusty HWE) vulnerabilities
Title: Linux kernel (Trusty HWE) vulnerabilities
Summary: Several security issues were fixed in the kernel.
Ben Hawkes discovered that the Linux netfilter implementation did not
correctly perform validation when handling IPT_SO_SET_REPLACE events. A
local unprivileged attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-3134)
It was discovered that the Linux kernel did not properly enforce rlimits
for file descriptors sent over UNIX domain sockets. A local attacker could
use this to cause a denial of service. (CVE-2013-4312)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical
Ubuntu
Linux kernel vulnerabilities
vendor_ubuntu·2016-03-14·CVSS 4.6
CVE-2015-7566 [MEDIUM] Linux kernel vulnerabilities
Title: Linux kernel vulnerabilities
Summary: Several security issues were fixed in the kernel.
Ben Hawkes discovered that the Linux netfilter implementation did not
correctly perform validation when handling IPT_SO_SET_REPLACE events. A
local unprivileged attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-3134)
Ben Hawkes discovered an integer overflow in the Linux netfilter
implementation. On systems running 32 bit kernels, a local unprivileged
attacker could use this to cause a denial of service (system crash) or
possibly execute arbitrary code with administrative privileges.
(CVE-2016-3135)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly
Ubuntu
Linux kernel vulnerabilities
vendor_ubuntu·2016-03-14·CVSS 6.2
CVE-2013-4312 [MEDIUM] Linux kernel vulnerabilities
Title: Linux kernel vulnerabilities
Summary: Several security issues were fixed in the kernel.
Ben Hawkes discovered that the Linux netfilter implementation did not
correctly perform validation when handling IPT_SO_SET_REPLACE events. A
local unprivileged attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-3134)
It was discovered that the Linux kernel did not properly enforce rlimits
for file descriptors sent over UNIX domain sockets. A local attacker could
use this to cause a denial of service. (CVE-2013-4312)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical access could
Ubuntu
Linux kernel (Vivid HWE) vulnerabilities
vendor_ubuntu·2016-03-14·CVSS 6.2
CVE-2013-4312 [MEDIUM] Linux kernel (Vivid HWE) vulnerabilities
Title: Linux kernel (Vivid HWE) vulnerabilities
Summary: Several security issues were fixed in the kernel.
Ben Hawkes discovered that the Linux netfilter implementation did not
correctly perform validation when handling IPT_SO_SET_REPLACE events. A
local unprivileged attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-3134)
It was discovered that the Linux kernel did not properly enforce rlimits
for file descriptors sent over UNIX domain sockets. A local attacker could
use this to cause a denial of service. (CVE-2013-4312)
Ralf Spenneberg discovered that the USB driver for Clie devices in the
Linux kernel did not properly validate the endpoints reported by the
device. An attacker with physical
Debian
CVE-2016-0723: linux - Race condition in the tty_ioctl function in drivers/tty/tty_io.c in the Linux ke...
vendor_debian·2016·CVSS 6.8
CVE-2016-0723 [MEDIUM] CVE-2016-0723: linux - Race condition in the tty_ioctl function in drivers/tty/tty_io.c in the Linux ke...
Race condition in the tty_ioctl function in drivers/tty/tty_io.c in the Linux kernel through 4.4.1 allows local users to obtain sensitive information from kernel memory or cause a denial of service (use-after-free and system crash) by making a TIOCGETD ioctl call during processing of a TIOCSETD ioctl call.
Scope: local
bookworm: resolved (fixed in 4.3.3-6)
bullseye: resolved (fixed in 4.3.3-6)
forky: resolved (fixed in 4.3.3-6)
sid: resolved (fixed in 4.3.3-6)
trixie: resolved (fixed in 4.3.3-6)
Red Hat
kernel: Kernel memory disclosure and crash in tty layer
vendor_redhat·2015-11-27·CVSS 6.8
CVE-2016-0723 [MEDIUM] CWE-416 kernel: Kernel memory disclosure and crash in tty layer
kernel: Kernel memory disclosure and crash in tty layer
Race condition in the tty_ioctl function in drivers/tty/tty_io.c in the Linux kernel through 4.4.1 allows local users to obtain sensitive information from kernel memory or cause a denial of service (use-after-free and system crash) by making a TIOCGETD ioctl call during processing of a TIOCSETD ioctl call.
A use-after-free flaw was discovered in the Linux kernel's tty subsystem, which allows for the disclosure of uncontrolled memory location and possible kernel panic. The information leak is caused by a race condition when attempting to set and read the tty line discipline. A local attacker could use the TIOCSETD (via tty_set_ldisc) to switch to a new line discipline; a concurrent call to a TIOCGETD ioctl performing a read on a give
No detection rules found.
No public exploits indexed.
Bugzilla
CVE-2016-0723 kernel: Kernel memory disclosure and crash in tty layer [fedora-all]
bugzilla·2016-01-20·CVSS 6.8
CVE-2016-0723 [MEDIUM] CVE-2016-0723 kernel: Kernel memory disclosure and crash in tty layer [fedora-all]
CVE-2016-0723 kernel: Kernel memory disclosure and crash in tty layer [fedora-all]
This is an automatically created tracking bug! It was created to ensure
that one or more security vulnerabilities are fixed in affected versions
of Fedora.
For comments that are specific to the vulnerability please use bugs filed
against the "Security Response" product referenced in the "Blocks" field.
For more information see:
http://fedoraproject.org/wiki/Security/TrackingBugs
When submitting as an update, use the fedpkg template provided in the next
comment(s). This will include the bug IDs of this tracking bug as well as
the relevant top-level CVE bugs.
Please also mention the CVE IDs being fixed in the RPM changelog and the
fedpkg commit message.
NOTE: this issue affects multiple supported version
Bugzilla
CVE-2016-0723 kernel: Kernel memory disclosure and crash in tty layer
bugzilla·2016-01-06·CVSS 6.8
CVE-2016-0723 [MEDIUM] CVE-2016-0723 kernel: Kernel memory disclosure and crash in tty layer
CVE-2016-0723 kernel: Kernel memory disclosure and crash in tty layer
A flaw was discovered in the linux kernel tty subsystem which allows for disclosure of uncontrolled memory location and possible kernel panic. The information leak is caused by a race condition when attempting to set and read the tty line discipline. An attacker can use the TIOCSETD (via tty_set_ldisc ) to switch to a new line discipline, a concurrent call to with a TIOCGETD ioctl performs a read on a given tty may be able to access memory previously allocated. Up to 4 bytes may leaked when querying the line discipline.
The problematic code:
case TIOCGETD:
return put_user(tty->ldisc->ops->num, (int __user *)p);
The flaw is triggered when ldisc's address is loaded before the new address is set and the access is perfo
http://git.kernel.org/cgit/linux/kernel/git/torvalds/linux.git/commit/?id=5c17c861a357e9458001f021a7afa7aab9937439http://lists.fedoraproject.org/pipermail/package-announce/2016-February/176464.htmlhttp://lists.fedoraproject.org/pipermail/package-announce/2016-February/176484.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-03/msg00094.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-04/msg00015.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-04/msg00045.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-07/msg00005.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-08/msg00038.htmlhttp://source.android.com/security/bulletin/2016-07-01.htmlhttp://www.debian.org/security/2016/dsa-3448http://www.debian.org/security/2016/dsa-3503http://www.oracle.com/technetwork/topics/security/linuxbulletinjul2016-3090544.htmlhttp://www.oracle.com/technetwork/topics/security/ovmbulletinoct2016-3090547.htmlhttp://www.securityfocus.com/bid/82950http://www.securitytracker.com/id/1035695http://www.ubuntu.com/usn/USN-2929-1http://www.ubuntu.com/usn/USN-2929-2http://www.ubuntu.com/usn/USN-2930-1http://www.ubuntu.com/usn/USN-2930-2http://www.ubuntu.com/usn/USN-2930-3http://www.ubuntu.com/usn/USN-2932-1http://www.ubuntu.com/usn/USN-2948-1http://www.ubuntu.com/usn/USN-2948-2http://www.ubuntu.com/usn/USN-2967-1http://www.ubuntu.com/usn/USN-2967-2https://bugzilla.redhat.com/show_bug.cgi?id=1296253https://github.com/torvalds/linux/commit/5c17c861a357e9458001f021a7afa7aab9937439https://security-tracker.debian.org/tracker/CVE-2016-0723https://support.f5.com/csp/article/K43650115http://git.kernel.org/cgit/linux/kernel/git/torvalds/linux.git/commit/?id=5c17c861a357e9458001f021a7afa7aab9937439http://lists.fedoraproject.org/pipermail/package-announce/2016-February/176464.htmlhttp://lists.fedoraproject.org/pipermail/package-announce/2016-February/176484.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-03/msg00094.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-04/msg00015.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-04/msg00045.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-07/msg00005.htmlhttp://lists.opensuse.org/opensuse-security-announce/2016-08/msg00038.htmlhttp://source.android.com/security/bulletin/2016-07-01.htmlhttp://www.debian.org/security/2016/dsa-3448http://www.debian.org/security/2016/dsa-3503http://www.oracle.com/technetwork/topics/security/linuxbulletinjul2016-3090544.htmlhttp://www.oracle.com/technetwork/topics/security/ovmbulletinoct2016-3090547.htmlhttp://www.securityfocus.com/bid/82950http://www.securitytracker.com/id/1035695http://www.ubuntu.com/usn/USN-2929-1http://www.ubuntu.com/usn/USN-2929-2http://www.ubuntu.com/usn/USN-2930-1http://www.ubuntu.com/usn/USN-2930-2http://www.ubuntu.com/usn/USN-2930-3http://www.ubuntu.com/usn/USN-2932-1http://www.ubuntu.com/usn/USN-2948-1http://www.ubuntu.com/usn/USN-2948-2http://www.ubuntu.com/usn/USN-2967-1http://www.ubuntu.com/usn/USN-2967-2https://bugzilla.redhat.com/show_bug.cgi?id=1296253https://github.com/torvalds/linux/commit/5c17c861a357e9458001f021a7afa7aab9937439https://security-tracker.debian.org/tracker/CVE-2016-0723https://support.f5.com/csp/article/K43650115
2016-02-08
Published