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USN-2968-1: Linux kernel vulnerabilities

9 May 2016

Several security issues were fixed in the kernel.

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Releases

Packages

Details

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)

Ben Hawkes discovered that the Linux kernel's AIO interface allowed single
writes greater than 2GB, which could cause an integer overflow when writing
to certain filesystems, socket or device types. A local attacker could this
to cause a denial of service (system crash) or possibly execute arbitrary
code. (CVE-2015-8830)

It was discovered that the Linux kernel did not keep accurate track of pipe
buffer details when error conditions occurred, due to an incomplete fix for
CVE-2015-1805. A local attacker could use this to cause a denial of service
(system crash) or possibly execute arbitrary code with administrative
privileges. (CVE-2016-0774)

Zach Riggle discovered that the Linux kernel's list poison feature did not
take into account the mmap_min_addr value. A local attacker could use this
to bypass the kernel's poison-pointer protection mechanism while attempting
to exploit an existing kernel vulnerability. (CVE-2016-0821)

Ralf Spenneberg discovered that the USB sound subsystem in the Linux kernel
did not properly validate USB device descriptors. An attacker with physical
access could use this to cause a denial of service (system crash).
(CVE-2016-2184)

Ralf Spenneberg discovered that the ATI Wonder Remote II USB driver in the
Linux kernel did not properly validate USB device descriptors. An attacker
with physical access could use this to cause a denial of service (system
crash). (CVE-2016-2185)

Ralf Spenneberg discovered that the PowerMate USB driver in the Linux
kernel did not properly validate USB device descriptors. An attacker with
physical access could use this to cause a denial of service (system crash).
(CVE-2016-2186)

Ralf Spenneberg discovered that the I/O-Warrior USB device driver in the
Linux kernel did not properly validate USB device descriptors. An attacker
with physical access could use this to cause a denial of service (system
crash). (CVE-2016-2188)

Sergej Schumilo, Hendrik Schwartke, and Ralf Spenneberg discovered that the
MCT USB RS232 Converter device driver in the Linux kernel did not properly
validate USB device descriptors. An attacker with physical access could use
this to cause a denial of service (system crash). (CVE-2016-3136)

Sergej Schumilo, Hendrik Schwartke, and Ralf Spenneberg discovered that the
Cypress M8 USB device driver in the Linux kernel did not properly validate
USB device descriptors. An attacker with physical access could use this to
cause a denial of service (system crash). (CVE-2016-3137)

Sergej Schumilo, Hendrik Schwartke, and Ralf Spenneberg discovered that the
USB abstract device control driver for modems and ISDN adapters did not
validate endpoint descriptors. An attacker with physical access could use
this to cause a denial of service (system crash). (CVE-2016-3138)

Sergej Schumilo, Hendrik Schwartke, and Ralf Spenneberg discovered that the
Linux kernel's USB driver for Digi AccelePort serial converters did not
properly validate USB device descriptors. An attacker with physical access
could use this to cause a denial of service (system crash). (CVE-2016-3140)

It was discovered that the IPv4 implementation in the Linux kernel did not
perform the destruction of inet device objects properly. An attacker in a
guest OS could use this to cause a denial of service (networking outage) in
the host OS. (CVE-2016-3156)

Andy Lutomirski discovered that the Linux kernel did not properly context-
switch IOPL on 64-bit PV Xen guests. An attacker in a guest OS could use
this to cause a denial of service (guest OS crash), gain privileges, or
obtain sensitive information. (CVE-2016-3157)

It was discovered that the Linux kernel's USB driver for IMS Passenger
Control Unit devices did not properly validate the device's interfaces. An
attacker with physical access could use this to cause a denial of service
(system crash). (CVE-2016-3689)

Reduce your security exposure

Ubuntu Pro provides ten-year security coverage to 25,000+ packages in Main and Universe repositories, and it is free for up to five machines.

Learn more about Ubuntu Pro

Update instructions

The problem can be corrected by updating your system to the following package versions:

Ubuntu 14.04

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.

Related notices

  • USN-2967-2: linux-ti-omap4, linux-image-3.2.0-1480-omap4
  • USN-2967-1: linux-image-3.2.0-102-omap, linux-image-3.2.0-102-generic, linux-image-3.2.0-102-highbank, linux-image-3.2.0-102-powerpc64-smp, linux-image-3.2.0-102-virtual, linux-image-3.2.0-102-generic-pae, linux, linux-image-3.2.0-102-powerpc-smp
  • USN-2971-3: linux-image-4.2.0-1029-raspi2, linux-raspi2
  • USN-2971-1: linux-image-4.2.0-36-powerpc-smp, linux-image-4.2.0-36-powerpc-e500mc, linux-image-4.2.0-36-generic, linux-image-4.2.0-36-powerpc64-emb, linux-image-4.2.0-36-powerpc64-smp, linux-image-4.2.0-36-lowlatency, linux-image-4.2.0-36-generic-lpae, linux
  • USN-2970-1: linux-image-3.19.0-59-generic-lpae, linux-image-3.19.0-59-powerpc64-smp, linux-image-3.19.0-59-powerpc-e500mc, linux-image-3.19.0-59-generic, linux-image-3.19.0-59-powerpc-smp, linux-image-3.19.0-59-powerpc64-emb, linux-image-3.19.0-59-lowlatency, linux-lts-vivid, linux-image-extra-3.19.0-59-generic
  • USN-2968-2: linux-lts-trusty, linux-image-3.13.0-86-generic-lpae, linux-image-3.13.0-86-generic
  • USN-2971-2: linux-image-4.2.0-36-powerpc-smp, linux-image-4.2.0-36-powerpc-e500mc, linux-lts-wily, linux-image-4.2.0-36-generic, linux-image-4.2.0-36-powerpc64-emb, linux-image-4.2.0-36-powerpc64-smp, linux-image-4.2.0-36-lowlatency, linux-image-4.2.0-36-generic-lpae, linux-image-extra-4.2.0-36-generic
  • USN-2969-1: linux-image-3.16.0-71-lowlatency, linux-image-3.16.0-71-powerpc-e500mc, linux-image-extra-3.16.0-71-generic, linux-image-3.16.0-71-powerpc-smp, linux-image-3.16.0-71-generic, linux-image-3.16.0-71-generic-lpae, linux-lts-utopic, linux-image-3.16.0-71-powerpc64-emb, linux-image-3.16.0-71-powerpc64-smp
  • USN-2996-1: linux-image-3.2.0-104-generic, linux-image-3.2.0-104-powerpc64-smp, linux-image-3.2.0-104-powerpc-smp, linux-image-3.2.0-104-highbank, linux-image-3.2.0-104-virtual, linux-image-3.2.0-104-omap, linux-image-3.2.0-104-generic-pae, linux
  • USN-2997-1: linux-ti-omap4, linux-image-3.2.0-1482-omap4
  • USN-2965-3: linux-image-4.4.0-1010-raspi2, linux-raspi2
  • USN-2965-4: linux-snapdragon, linux-image-4.4.0-1013-snapdragon
  • USN-2965-1: linux-image-4.4.0-22-powerpc64-smp, linux-image-4.4.0-22-lowlatency, linux-image-4.4.0-22-generic-lpae, linux-image-4.4.0-22-powerpc-smp, linux-image-extra-4.4.0-22-generic, linux-image-4.4.0-22-powerpc64-emb, linux-image-4.4.0-22-generic, linux-image-4.4.0-22-powerpc-e500mc, linux
  • USN-2965-2: linux-image-4.4.0-22-powerpc64-smp, linux-image-4.4.0-22-lowlatency, linux-image-4.4.0-22-generic-lpae, linux-image-4.4.0-22-powerpc-smp, linux-image-extra-4.4.0-22-generic, linux-lts-xenial, linux-image-4.4.0-22-powerpc64-emb, linux-image-4.4.0-22-generic, linux-image-4.4.0-22-powerpc-e500mc
  • USN-3000-1: linux-image-3.16.0-73-generic-lpae, linux-image-3.16.0-73-lowlatency, linux-image-3.16.0-73-powerpc-e500mc, linux-image-3.16.0-73-generic, linux-image-3.16.0-73-powerpc-smp, linux-image-3.16.0-73-powerpc64-emb, linux-image-extra-3.16.0-73-generic, linux-lts-utopic, linux-image-3.16.0-73-powerpc64-smp