USN-3007-1: Linux kernel (Raspberry Pi 2) vulnerabilities

Published Jun 10, 2016
·
Updated

Justin Yackoski discovered that the Atheros L2 Ethernet Driver in the Linux kernel incorrectly enables scatter/gather I/O. A remote attacker could use this to obtain potentially sensitive information from kernel memory. (CVE-2016-2117) Jann Horn discovered that eCryptfs improperly attempted to use the mmap() handler of a lower filesystem that did not implement one, causing a recursive page fault to occur. A local unprivileged attacker could use to cause a denial of service (system crash) or possibly execute arbitrary code with administrative privileges. (CVE-2016-1583) Multiple race conditions where discovered in the Linux kernel's ext4 file system. A local user could exploit this flaw to cause a denial of service (disk corruption) by writing to a page that is associated with a different users file after unsynchronized hole punching and page-fault handling. (CVE-2015-8839) Ralf Spenneberg discovered that the Linux kernel's GTCO digitizer USB device driver did not properly validate endpoint descriptors. An attacker with physical access could use this to cause a denial of service (system crash). (CVE-2016-2187) Vitaly Kuznetsov discovered that the Linux kernel did not properly suppress hugetlbfs support in X86 paravirtualized guests. An attacker in the guest OS could cause a denial of service (guest system crash). (CVE-2016-3961) Kangjie Lu discovered an information leak in the ANSI/IEEE 802.2 LLC type 2 Support implementations in the Linux kernel. A local attacker could use this to obtain potentially sensitive information from kernel memory. (CVE-2016-4485) Kangjie Lu discovered an information leak in the routing netlink socket interface (rtnetlink) implementation in the Linux kernel. A local attacker could use this to obtain potentially sensitive information from kernel memory. (CVE-2016-4486) Jann Horn discovered that the extended Berkeley Packet Filter (eBPF) implementation in the Linux kernel could overflow reference counters on systems with more than 32GB of physical ram and with RLIMITMEMLOCK set to infinite. A local unprivileged attacker could use to create a use-after- free situation, causing a denial of service (system crash) or possibly gain administrative privileges. (CVE-2016-4558) Jann Horn discovered that the InfiniBand interfaces within the Linux kernel could be coerced into overwriting kernel memory. A local unprivileged attacker could use this to possibly gain administrative privileges on systems where InifiniBand related kernel modules are loaded. (CVE-2016-4565) It was discovered that in some situations the Linux kernel did not handle propagated mounts correctly. A local unprivileged attacker could use this to cause a denial of service (system crash). (CVE-2016-4581)

Affected Software

2 affected components
Linux Kernel
Raspberry Pi Raspberry Pi 2

Event History

May 10, 2025
Advisory Published
via Ubuntu·03:27 AM
Data Sourced
via Ubuntu·03:27 AM
DescriptionAffected Software
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Frequently Asked Questions

1

What is the vulnerability ID for this security update?

The vulnerability ID for this security update is USN-3007-1.

2

What is the severity of the vulnerability USN-3007-1?

The severity of vulnerability USN-3007-1 is not specified in the provided information.

3

What is the affected software for this vulnerability?

The affected software for this vulnerability is Ubuntu (version 16.04) with Linux kernel version 4.4.0-1012.16 on Raspberry Pi 2.

4

What is the CVE ID for the Atheros L2 Ethernet Driver vulnerability?

The CVE ID for the Atheros L2 Ethernet Driver vulnerability is CVE-2016-2117.

5

Where can I find more information about this vulnerability?

You can find more information about this vulnerability on the Ubuntu website at the following URLs: [CVE-2015-8839](https://ubuntu.com/security/CVE-2015-8839), [CVE-2016-1583](https://ubuntu.com/security/CVE-2016-1583), [CVE-2016-2117](https://ubuntu.com/security/CVE-2016-2117).

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