Where
-Infinity
0
EOL
Jan 1, 2034

End of life: 1/1/2034

First published (updated )
EOL
Jan 1, 2036

End of life: 1/1/2036

First published (updated )
EOL
Jan 1, 2036

End of life: 1/1/2036

First published (updated )
EOL
Jan 1, 2036

End of life: 1/1/2036

First published (updated )
EOL
Jan 1, 2034

End of life: 1/1/2034

First published (updated )
EOL
Jan 1, 2030

End of life: 1/1/2030

First published (updated )
EOL
Jan 1, 2036

End of life: 1/1/2036

First published (updated )
EOL
Jan 1, 2028

End of life: 1/1/2028

First published (updated )
EOL
Jan 1, 2034

End of life: 1/1/2034

First published (updated )
EOL
Jan 1, 2034

End of life: 1/1/2034

First published (updated )
EOL
Jan 1, 2034

End of life: 1/1/2034

First published (updated )
EOL
Jan 1, 2034

End of life: 1/1/2034

First published (updated )
EOL
Jan 1, 2028

End of life: 1/1/2028

First published (updated )
EOL
Jan 1, 2030

End of life: 1/1/2030

First published (updated )

Wen Xu discovered that the ext4 filesystem implementation in the Linux kernel did not properly handle corrupted meta data in some situations. An attacker could use this to specially craft an ext4 file system that caused a denial of service (system crash) when mounted. (CVE-2018-1092) It was discovered that the 802.11 software simulator implementation in the Linux kernel contained a memory leak when handling certain error conditions. A local attacker could possibly use this to cause a denial of service (memory exhaustion). (CVE-2018-8087) It was discovered that a memory leak existed in the Serial Attached SCSI (SAS) implementation in the Linux kernel. A physically proximate attacker could use this to cause a denial of service (memory exhaustion). (CVE-2018-10021)

First published (updated )
Advisory
USN-3678-4
Race Condition

It was discovered that the netlink subsystem in the Linux kernel did not properly restrict observations of netlink messages to the appropriate net namespace. A local attacker could use this to expose sensitive information (kernel netlink traffic). (CVE-2017-17449) Tuba Yavuz discovered that a double-free error existed in the USBTV007 driver of the Linux kernel. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-17975) It was discovered that a race condition existed in the Device Mapper component of the Linux kernel. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-18203) It was discovered that an infinite loop could occur in the madvise(2) implementation in the Linux kernel in certain circumstances. A local attacker could use this to cause a denial of service (system hang). (CVE-2017-18208) Silvio Cesare discovered a buffer overwrite existed in the NCPFS implementation in the Linux kernel. A remote attacker controlling a malicious NCPFS server could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-8822)

First published (updated )
Advisory
USN-3657-1
EOL
Jan 1, 2030

End of life: 1/1/2030

First published (updated )
Use After Free, Race Condition

Mohamed Ghannam discovered that the IPv4 raw socket implementation in the Linux kernel contained a race condition leading to uninitialized pointer usage. A local attacker could use this to cause a denial of service or possibly execute arbitrary code. (CVE-2017-17712) ChunYu Wang discovered that a use-after-free vulnerability existed in the SCTP protocol implementation in the Linux kernel. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code, (CVE-2017-15115) Mohamed Ghannam discovered a use-after-free vulnerability in the DCCP protocol implementation in the Linux kernel. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-8824)

First published (updated )
Advisory
USN-3581-3

Jann Horn discovered that the Berkeley Packet Filter (BPF) implementation in the Linux kernel did not properly check the relationship between pointer values and the BPF stack. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-17863) Jann Horn discovered that the Berkeley Packet Filter (BPF) implementation in the Linux kernel improperly performed sign extension in some situations. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-16995) Alexei Starovoitov discovered that the Berkeley Packet Filter (BPF) implementation in the Linux kernel contained a branch-pruning logic issue around unreachable code. A local attacker could use this to cause a denial of service. (CVE-2017-17862) Jann Horn discovered that the Berkeley Packet Filter (BPF) implementation in the Linux kernel mishandled pointer data values in some situations. A local attacker could use this to to expose sensitive information (kernel memory). (CVE-2017-17864)

First published (updated )
Advisory
USN-3523-3

It was discovered that the stack guard page for processes in the Linux kernel was not sufficiently large enough to prevent overlapping with the heap. An attacker could leverage this with another vulnerability to execute arbitrary code and gain administrative privileges

First published (updated )
Advisory
USN-3332-1
EOL
Jan 1, 2030

End of life: 1/1/2030

First published (updated )

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