usn-3754-1
Vulnerability from osv_ubuntu
Published
2018-08-24 00:38
Modified
2026-06-03 10:45
Summary
linux vulnerabilities
Details

Ralf Spenneberg discovered that the ext4 implementation in the Linux kernel did not properly validate meta block groups. An attacker with physical access could use this to specially craft an ext4 image that causes a denial of service (system crash). (CVE-2016-10208)

It was discovered that an information disclosure vulnerability existed in the ACPI implementation of the Linux kernel. A local attacker could use this to expose sensitive information (kernel memory addresses). (CVE-2017-11472)

It was discovered that a buffer overflow existed in the ACPI table parsing implementation in the Linux kernel. A local attacker could use this to construct a malicious ACPI table that, when loaded, caused a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-11473)

It was discovered that the generic SCSI driver in the Linux kernel did not properly initialize data returned to user space in some situations. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2017-14991)

It was discovered that a race condition existed in the packet fanout 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-2017-15649)

Andrey Konovalov discovered that the Ultra Wide Band driver in the Linux kernel did not properly check for an error condition. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-16526)

Andrey Konovalov discovered that the ALSA subsystem in the Linux kernel contained a use-after-free vulnerability. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-16527)

Andrey Konovalov discovered that the ALSA subsystem in the Linux kernel did not properly validate USB audio buffer descriptors. A physically proximate attacker could use this cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-16529)

Andrey Konovalov discovered that the USB subsystem in the Linux kernel did not properly validate USB interface association descriptors. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2017-16531)

Andrey Konovalov discovered that the usbtest device driver in the Linux kernel did not properly validate endpoint metadata. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2017-16532)

Andrey Konovalov discovered that the USB subsystem in the Linux kernel did not properly validate USB HID descriptors. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2017-16533)

Andrey Konovalov discovered that the USB subsystem in the Linux kernel did not properly validate USB BOS metadata. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2017-16535)

Andrey Konovalov discovered that the Conexant cx231xx USB video capture driver in the Linux kernel did not properly validate interface descriptors. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2017-16536)

Andrey Konovalov discovered that the SoundGraph iMON USB driver in the Linux kernel did not properly validate device metadata. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2017-16537)

It was discovered that the DM04/QQBOX USB driver in the Linux kernel did not properly handle device attachment and warm-start. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-16538)

Andrey Konovalov discovered an out-of-bounds read in the GTCO digitizer USB driver for the Linux kernel. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-16643)

Andrey Konovalov discovered that the video4linux driver for Hauppauge HD PVR USB devices in the Linux kernel did not properly handle some error conditions. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-16644)

Andrey Konovalov discovered that the IMS Passenger Control Unit USB driver in the Linux kernel did not properly validate device descriptors. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2017-16645)

Andrey Konovalov discovered that the QMI WWAN USB driver did not properly validate device descriptors. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2017-16650)

It was discovered that the USB Virtual Host Controller Interface (VHCI) driver in the Linux kernel contained an information disclosure vulnerability. A physically proximate attacker could use this to expose sensitive information (kernel memory). (CVE-2017-16911)

It was discovered that the USB over IP implementation in the Linux kernel did not validate endpoint numbers. A remote attacker could use this to cause a denial of service (system crash). (CVE-2017-16912)

It was discovered that the USB over IP implementation in the Linux kernel did not properly validate CMD_SUBMIT packets. A remote attacker could use this to cause a denial of service (excessive memory consumption). (CVE-2017-16913)

It was discovered that the USB over IP implementation in the Linux kernel contained a NULL pointer dereference error. A remote attacker could use this to cause a denial of service (system crash). (CVE-2017-16914)

It was discovered that the core USB subsystem in the Linux kernel did not validate the number of configurations and interfaces in a device. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2017-17558)

It was discovered that an integer overflow existed in the perf subsystem of the Linux kernel. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-18255)

It was discovered that the keyring subsystem in the Linux kernel did not properly prevent a user from creating keyrings for other users. A local attacker could use this cause a denial of service or expose sensitive information. (CVE-2017-18270)

Andy Lutomirski and Willy Tarreau discovered that the KVM implementation in the Linux kernel did not properly emulate instructions on the SS segment register. A local attacker in a guest virtual machine could use this to cause a denial of service (guest OS crash) or possibly gain administrative privileges in the guest OS. (CVE-2017-2583)

Dmitry Vyukov discovered that the KVM implementation in the Linux kernel improperly emulated certain instructions. A local attacker could use this to obtain sensitive information (kernel memory). (CVE-2017-2584)

It was discovered that the KLSI KL5KUSB105 serial-to-USB device driver in the Linux kernel did not properly initialize memory related to logging. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2017-5549)

Andrey Konovalov discovered an out-of-bounds access in the IPv6 Generic Routing Encapsulation (GRE) tunneling implementation in the Linux kernel. An attacker could use this to possibly expose sensitive information. (CVE-2017-5897)

Andrey Konovalov discovered that the LLC subsytem in the Linux kernel did not properly set up a destructor in certain situations. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-6345)

Dmitry Vyukov discovered race conditions in the Infrared (IrDA) subsystem in the Linux kernel. A local attacker could use this to cause a denial of service (deadlock). (CVE-2017-6348)

Andy Lutomirski discovered that the KVM implementation in the Linux kernel was vulnerable to a debug exception error when single-stepping through a syscall. A local attacker in a non-Linux guest vm could possibly use this to gain administrative privileges in the guest vm. (CVE-2017-7518)

Tuomas Haanpää and Ari Kauppi discovered that the NFSv2 and NFSv3 server implementations in the Linux kernel did not properly handle certain long RPC replies. A remote attacker could use this to cause a denial of service (system crash). (CVE-2017-7645)

Pengfei Wang discovered that a race condition existed in the NXP SAA7164 TV Decoder driver for the Linux kernel. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-8831)

Pengfei Wang discovered that the Turtle Beach MultiSound audio device driver in the Linux kernel contained race conditions when fetching from the ring-buffer. A local attacker could use this to cause a denial of service (infinite loop). (CVE-2017-9984, CVE-2017-9985)

It was discovered that the wait4() system call in the Linux kernel did not properly validate its arguments in some situations. A local attacker could possibly use this to cause a denial of service. (CVE-2018-10087)

It was discovered that the kill() system call implementation in the Linux kernel did not properly validate its arguments in some situations. A local attacker could possibly use this to cause a denial of service. (CVE-2018-10124)

Wen Xu discovered that the XFS filesystem implementation in the Linux kernel did not properly validate meta-data information. An attacker could use this to construct a malicious xfs image that, when mounted, could cause a denial of service (system crash). (CVE-2018-10323)

Zhong Jiang discovered that a use-after-free vulnerability existed in the NUMA memory policy 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-2018-10675)

Wen Xu discovered that a buffer overflow existed in the ext4 filesystem implementation in the Linux kernel. An attacker could use this to construct a malicious ext4 image that, when mounted, could cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-10877)

Wen Xu discovered that the ext4 filesystem implementation in the Linux kernel did not properly keep meta-data information consistent in some situations. An attacker could use this to construct a malicious ext4 image that, when mounted, could cause a denial of service (system crash). (CVE-2018-10881)

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 filesystem that caused a denial of service (system crash) when mounted. (CVE-2018-1092)

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 filesystem that caused a denial of service (system crash) when mounted. (CVE-2018-1093)

It was discovered that the cdrom driver in the Linux kernel contained an incorrect bounds check. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2018-10940)

Shankara Pailoor discovered that the JFS filesystem implementation in the Linux kernel contained a buffer overflow when handling extended attributes. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-12233)

Wen Xu discovered that the XFS filesystem implementation in the Linux kernel did not properly handle an error condition with a corrupted xfs image. An attacker could use this to construct a malicious xfs image that, when mounted, could cause a denial of service (system crash). (CVE-2018-13094)

It was discovered that the Linux kernel did not properly handle setgid file creation when performed by a non-member of the group. A local attacker could use this to gain elevated privileges. (CVE-2018-13405)

Silvio Cesare discovered that the generic VESA frame buffer driver in the Linux kernel contained an integer overflow. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2018-13406)

Daniel Jiang discovered that a race condition existed in the ipv4 ping socket implementation in the Linux kernel. A local privileged attacker could use this to cause a denial of service (system crash). (CVE-2017-2671)

It was discovered that an information leak existed in the generic SCSI driver in the Linux kernel. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2018-1000204)

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)

References
https://ubuntu.com/security/notices/USN-3754-1 ADVISORY
https://ubuntu.com/security/CVE-2016-10208 REPORT
https://ubuntu.com/security/CVE-2017-2583 REPORT
https://ubuntu.com/security/CVE-2017-2584 REPORT
https://ubuntu.com/security/CVE-2017-2671 REPORT
https://ubuntu.com/security/CVE-2017-5549 REPORT
https://ubuntu.com/security/CVE-2017-5897 REPORT
https://ubuntu.com/security/CVE-2017-6345 REPORT
https://ubuntu.com/security/CVE-2017-6348 REPORT
https://ubuntu.com/security/CVE-2017-7518 REPORT
https://ubuntu.com/security/CVE-2017-7645 REPORT
https://ubuntu.com/security/CVE-2017-8831 REPORT
https://ubuntu.com/security/CVE-2017-9984 REPORT
https://ubuntu.com/security/CVE-2017-9985 REPORT
https://ubuntu.com/security/CVE-2017-11472 REPORT
https://ubuntu.com/security/CVE-2017-11473 REPORT
https://ubuntu.com/security/CVE-2017-14991 REPORT
https://ubuntu.com/security/CVE-2017-15649 REPORT
https://ubuntu.com/security/CVE-2017-16526 REPORT
https://ubuntu.com/security/CVE-2017-16527 REPORT
https://ubuntu.com/security/CVE-2017-16529 REPORT
https://ubuntu.com/security/CVE-2017-16531 REPORT
https://ubuntu.com/security/CVE-2017-16532 REPORT
https://ubuntu.com/security/CVE-2017-16533 REPORT
https://ubuntu.com/security/CVE-2017-16535 REPORT
https://ubuntu.com/security/CVE-2017-16536 REPORT
https://ubuntu.com/security/CVE-2017-16537 REPORT
https://ubuntu.com/security/CVE-2017-16538 REPORT
https://ubuntu.com/security/CVE-2017-16643 REPORT
https://ubuntu.com/security/CVE-2017-16644 REPORT
https://ubuntu.com/security/CVE-2017-16645 REPORT
https://ubuntu.com/security/CVE-2017-16650 REPORT
https://ubuntu.com/security/CVE-2017-16911 REPORT
https://ubuntu.com/security/CVE-2017-16912 REPORT
https://ubuntu.com/security/CVE-2017-16913 REPORT
https://ubuntu.com/security/CVE-2017-16914 REPORT
https://ubuntu.com/security/CVE-2017-17558 REPORT
https://ubuntu.com/security/CVE-2017-18255 REPORT
https://ubuntu.com/security/CVE-2017-18270 REPORT
https://ubuntu.com/security/CVE-2018-1092 REPORT
https://ubuntu.com/security/CVE-2018-1093 REPORT
https://ubuntu.com/security/CVE-2018-10021 REPORT
https://ubuntu.com/security/CVE-2018-10087 REPORT
https://ubuntu.com/security/CVE-2018-10124 REPORT
https://ubuntu.com/security/CVE-2018-10323 REPORT
https://ubuntu.com/security/CVE-2018-10675 REPORT
https://ubuntu.com/security/CVE-2018-10877 REPORT
https://ubuntu.com/security/CVE-2018-10881 REPORT
https://ubuntu.com/security/CVE-2018-10940 REPORT
https://ubuntu.com/security/CVE-2018-12233 REPORT
https://ubuntu.com/security/CVE-2018-13094 REPORT
https://ubuntu.com/security/CVE-2018-13405 REPORT
https://ubuntu.com/security/CVE-2018-13406 REPORT
https://ubuntu.com/security/CVE-2018-1000204 REPORT

{
  "affected": [
    {
      "database_specific": {
        "cves_map": {
          "cves": [
            {
              "id": "CVE-2016-10208",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:P/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-2583",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-2584",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-2671",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "negligible",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-5549",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:N",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-5897",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-6345",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-6348",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-7518",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:A/AC:L/PR:L/UI:N/S:U/C:L/I:L/A:L",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-7645",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-8831",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:P/AC:H/PR:N/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-9984",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-9985",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-11472",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:N",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-11473",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-14991",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:N",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-15649",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-16526",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-16527",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-16529",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-16531",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-16532",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-16533",
              "severity": [
                {
                  "score": "CVSS:3.1/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "CVSS:3.0/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-16535",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-16536",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-16537",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:P/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
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            "binary_version": "3.13.0-157.207"
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            "binary_version": "3.13.0-157.207"
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            "binary_version": "3.13.0-157.207"
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      "package": {
        "ecosystem": "Ubuntu:14.04:LTS",
        "name": "linux",
        "purl": "pkg:deb/ubuntu/linux@3.13.0-157.207?arch=source\u0026distro=trusty"
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      "ranges": [
        {
          "events": [
            {
              "introduced": "0"
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            {
              "fixed": "3.13.0-157.207"
            }
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          "type": "ECOSYSTEM"
        }
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      "versions": [
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  ],
  "aliases": [],
  "details": "Ralf Spenneberg discovered that the ext4 implementation in the Linux kernel\ndid not properly validate meta block groups. An attacker with physical\naccess could use this to specially craft an ext4 image that causes a denial\nof service (system crash). (CVE-2016-10208)\n\nIt was discovered that an information disclosure vulnerability existed in\nthe ACPI implementation of the Linux kernel. A local attacker could use\nthis to expose sensitive information (kernel memory addresses).\n(CVE-2017-11472)\n\nIt was discovered that a buffer overflow existed in the ACPI table parsing\nimplementation in the Linux kernel. A local attacker could use this to\nconstruct a malicious ACPI table that, when loaded, caused a denial of\nservice (system crash) or possibly execute arbitrary code.\n(CVE-2017-11473)\n\nIt was discovered that the generic SCSI driver in the Linux kernel did not\nproperly initialize data returned to user space in some situations. A local\nattacker could use this to expose sensitive information (kernel memory).\n(CVE-2017-14991)\n\nIt was discovered that a race condition existed in the packet fanout\nimplementation in the Linux kernel. A local attacker could use this to\ncause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2017-15649)\n\nAndrey Konovalov discovered that the Ultra Wide Band driver in the Linux\nkernel did not properly check for an error condition. A physically\nproximate attacker could use this to cause a denial of service (system\ncrash) or possibly execute arbitrary code. (CVE-2017-16526)\n\nAndrey Konovalov discovered that the ALSA subsystem in the Linux kernel\ncontained a use-after-free vulnerability. A local attacker could use this\nto cause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2017-16527)\n\nAndrey Konovalov discovered that the ALSA subsystem in the Linux kernel did\nnot properly validate USB audio buffer descriptors. A physically proximate\nattacker could use this cause a denial of service (system crash) or\npossibly execute arbitrary code. (CVE-2017-16529)\n\nAndrey Konovalov discovered that the USB subsystem in the Linux kernel did\nnot properly validate USB interface association descriptors. A physically\nproximate attacker could use this to cause a denial of service (system\ncrash). (CVE-2017-16531)\n\nAndrey Konovalov discovered that the usbtest device driver in the Linux\nkernel did not properly validate endpoint metadata. A physically proximate\nattacker could use this to cause a denial of service (system crash).\n(CVE-2017-16532)\n\nAndrey Konovalov discovered that the USB subsystem in the Linux kernel did\nnot properly validate USB HID descriptors. A physically proximate attacker\ncould use this to cause a denial of service (system crash).\n(CVE-2017-16533)\n\nAndrey Konovalov discovered that the USB subsystem in the Linux kernel did\nnot properly validate USB BOS metadata. A physically proximate attacker\ncould use this to cause a denial of service (system crash).\n(CVE-2017-16535)\n\nAndrey Konovalov discovered that the Conexant cx231xx USB video capture\ndriver in the Linux kernel did not properly validate interface descriptors.\nA physically proximate attacker could use this to cause a denial of service\n(system crash). (CVE-2017-16536)\n\nAndrey Konovalov discovered that the SoundGraph iMON USB driver in the\nLinux kernel did not properly validate device metadata. A physically\nproximate attacker could use this to cause a denial of service (system\ncrash). (CVE-2017-16537)\n\nIt was discovered that the DM04/QQBOX USB driver in the Linux kernel did\nnot properly handle device attachment and warm-start. A physically\nproximate attacker could use this to cause a denial of service (system\ncrash) or possibly execute arbitrary code. (CVE-2017-16538)\n\nAndrey Konovalov discovered an out-of-bounds read in the GTCO digitizer USB\ndriver for the Linux kernel. A physically proximate attacker could use this\nto cause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2017-16643)\n\nAndrey Konovalov discovered that the video4linux driver for Hauppauge HD\nPVR USB devices in the Linux kernel did not properly handle some error\nconditions. A physically proximate attacker could use this to cause a\ndenial of service (system crash) or possibly execute arbitrary code.\n(CVE-2017-16644)\n\nAndrey Konovalov discovered that the IMS Passenger Control Unit USB driver\nin the Linux kernel did not properly validate device descriptors. A\nphysically proximate attacker could use this to cause a denial of service\n(system crash). (CVE-2017-16645)\n\nAndrey Konovalov discovered that the QMI WWAN USB driver did not properly\nvalidate device descriptors. A physically proximate attacker could use this\nto cause a denial of service (system crash). (CVE-2017-16650)\n\nIt was discovered that the USB Virtual Host Controller Interface (VHCI)\ndriver in the Linux kernel contained an information disclosure\nvulnerability. A physically proximate attacker could use this to expose\nsensitive information (kernel memory). (CVE-2017-16911)\n\nIt was discovered that the USB over IP implementation in the Linux kernel\ndid not validate endpoint numbers. A remote attacker could use this to\ncause a denial of service (system crash). (CVE-2017-16912)\n\nIt was discovered that the USB over IP implementation in the Linux kernel\ndid not properly validate CMD_SUBMIT packets. A remote attacker could use\nthis to cause a denial of service (excessive memory consumption).\n(CVE-2017-16913)\n\nIt was discovered that the USB over IP implementation in the Linux kernel\ncontained a NULL pointer dereference error. A remote attacker could use\nthis to cause a denial of service (system crash). (CVE-2017-16914)\n\nIt was discovered that the core USB subsystem in the Linux kernel did not\nvalidate the number of configurations and interfaces in a device. A\nphysically proximate attacker could use this to cause a denial of service\n(system crash). (CVE-2017-17558)\n\nIt was discovered that an integer overflow existed in the perf subsystem of\nthe Linux kernel. A local attacker could use this to cause a denial of\nservice (system crash). (CVE-2017-18255)\n\nIt was discovered that the keyring subsystem in the Linux kernel did not\nproperly prevent a user from creating keyrings for other users. A local\nattacker could use this cause a denial of service or expose sensitive\ninformation. (CVE-2017-18270)\n\nAndy Lutomirski and Willy Tarreau discovered that the KVM implementation in\nthe Linux kernel did not properly emulate instructions on the SS segment\nregister. A local attacker in a guest virtual machine could use this to\ncause a denial of service (guest OS crash) or possibly gain administrative\nprivileges in the guest OS. (CVE-2017-2583)\n\nDmitry Vyukov discovered that the KVM implementation in the Linux kernel\nimproperly emulated certain instructions. A local attacker could use this\nto obtain sensitive information (kernel memory). (CVE-2017-2584)\n\nIt was discovered that the KLSI KL5KUSB105 serial-to-USB device driver in\nthe Linux kernel did not properly initialize memory related to logging. A\nlocal attacker could use this to expose sensitive information (kernel\nmemory). (CVE-2017-5549)\n\nAndrey Konovalov discovered an out-of-bounds access in the IPv6 Generic\nRouting Encapsulation (GRE) tunneling implementation in the Linux kernel.\nAn attacker could use this to possibly expose sensitive information.\n(CVE-2017-5897)\n\nAndrey Konovalov discovered that the LLC subsytem in the Linux kernel did\nnot properly set up a destructor in certain situations. A local attacker\ncould use this to cause a denial of service (system crash). (CVE-2017-6345)\n\nDmitry Vyukov discovered race conditions in the Infrared (IrDA) subsystem\nin the Linux kernel. A local attacker could use this to cause a denial of\nservice (deadlock). (CVE-2017-6348)\n\nAndy Lutomirski discovered that the KVM implementation in the Linux kernel\nwas vulnerable to a debug exception error when single-stepping through a\nsyscall. A local attacker in a non-Linux guest vm could possibly use this\nto gain administrative privileges in the guest vm. (CVE-2017-7518)\n\nTuomas Haanp\u00e4\u00e4 and Ari Kauppi discovered that the NFSv2 and NFSv3 server\nimplementations in the Linux kernel did not properly handle certain long\nRPC replies. A remote attacker could use this to cause a denial of service\n(system crash). (CVE-2017-7645)\n\nPengfei Wang discovered that a race condition existed in the NXP SAA7164 TV\nDecoder driver for the Linux kernel. A local attacker could use this to\ncause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2017-8831)\n\nPengfei Wang discovered that the Turtle Beach MultiSound audio device\ndriver in the Linux kernel contained race conditions when fetching from the\nring-buffer. A local attacker could use this to cause a denial of service\n(infinite loop). (CVE-2017-9984, CVE-2017-9985)\n\nIt was discovered that the wait4() system call in the Linux kernel did not\nproperly validate its arguments in some situations. A local attacker could\npossibly use this to cause a denial of service. (CVE-2018-10087)\n\nIt was discovered that the kill() system call implementation in the Linux\nkernel did not properly validate its arguments in some situations. A local\nattacker could possibly use this to cause a denial of service.\n(CVE-2018-10124)\n\nWen Xu discovered that the XFS filesystem implementation in the Linux\nkernel did not properly validate meta-data information. An attacker could\nuse this to construct a malicious xfs image that, when mounted, could cause\na denial of service (system crash). (CVE-2018-10323)\n\nZhong Jiang discovered that a use-after-free vulnerability existed in the\nNUMA memory policy implementation in the Linux kernel. A local attacker\ncould use this to cause a denial of service (system crash) or possibly\nexecute arbitrary code. (CVE-2018-10675)\n\nWen Xu discovered that a buffer overflow existed in the ext4 filesystem\nimplementation in the Linux kernel. An attacker could use this to construct\na malicious ext4 image that, when mounted, could cause a denial of service\n(system crash) or possibly execute arbitrary code. (CVE-2018-10877)\n\nWen Xu discovered that the ext4 filesystem implementation in the Linux\nkernel did not properly keep meta-data information consistent in some\nsituations. An attacker could use this to construct a malicious ext4 image\nthat, when mounted, could cause a denial of service (system crash).\n(CVE-2018-10881)\n\nWen Xu discovered that the ext4 filesystem implementation in the Linux\nkernel did not properly handle corrupted meta data in some situations. An\nattacker could use this to specially craft an ext4 filesystem that caused\na denial of service (system crash) when mounted. (CVE-2018-1092)\n\nWen Xu discovered that the ext4 filesystem implementation in the Linux\nkernel did not properly handle corrupted meta data in some situations. An\nattacker could use this to specially craft an ext4 filesystem that caused a\ndenial of service (system crash) when mounted. (CVE-2018-1093)\n\nIt was discovered that the cdrom driver in the Linux kernel contained an\nincorrect bounds check. A local attacker could use this to expose sensitive\ninformation (kernel memory). (CVE-2018-10940)\n\nShankara Pailoor discovered that the JFS filesystem implementation in the\nLinux kernel contained a buffer overflow when handling extended attributes.\nA local attacker could use this to cause a denial of service (system crash)\nor possibly execute arbitrary code. (CVE-2018-12233)\n\nWen Xu discovered that the XFS filesystem implementation in the Linux\nkernel did not properly handle an error condition with a corrupted xfs\nimage. An attacker could use this to construct a malicious xfs image that,\nwhen mounted, could cause a denial of service (system crash).\n(CVE-2018-13094)\n\nIt was discovered that the Linux kernel did not properly handle setgid file\ncreation when performed by a non-member of the group. A local attacker\ncould use this to gain elevated privileges. (CVE-2018-13405)\n\nSilvio Cesare discovered that the generic VESA frame buffer driver in the\nLinux kernel contained an integer overflow. A local attacker could use this\nto cause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2018-13406)\n\nDaniel Jiang discovered that a race condition existed in the ipv4 ping\nsocket implementation in the Linux kernel. A local privileged attacker\ncould use this to cause a denial of service (system crash). (CVE-2017-2671)\n\nIt was discovered that an information leak existed in the generic SCSI\ndriver in the Linux kernel. A local attacker could use this to expose\nsensitive information (kernel memory). (CVE-2018-1000204)\n\nIt was discovered that a memory leak existed in the Serial Attached SCSI\n(SAS) implementation in the Linux kernel. A physically proximate attacker\ncould use this to cause a denial of service (memory exhaustion).\n(CVE-2018-10021)\n",
  "id": "USN-3754-1",
  "modified": "2026-06-03T10:45:17Z",
  "published": "2018-08-24T00:38:00Z",
  "references": [
    {
      "type": "ADVISORY",
      "url": "https://ubuntu.com/security/notices/USN-3754-1"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2016-10208"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-2583"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-2584"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-2671"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-5549"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-5897"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-6345"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-6348"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-7518"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-7645"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-8831"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-9984"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-9985"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-11472"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-11473"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-14991"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-15649"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16526"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16527"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16529"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16531"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16532"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16533"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16535"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16536"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16537"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16538"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16643"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16644"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16645"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16650"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16911"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16912"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16913"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16914"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-17558"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-18255"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-18270"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-1092"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-1093"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-10021"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-10087"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-10124"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-10323"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-10675"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-10877"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-10881"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-10940"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-12233"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-13094"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-13405"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-13406"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-1000204"
    }
  ],
  "related": [],
  "schema_version": "1.7.0",
  "summary": "linux vulnerabilities",
  "upstream": [
    "UBUNTU-CVE-2016-10208",
    "UBUNTU-CVE-2017-2583",
    "UBUNTU-CVE-2017-2584",
    "UBUNTU-CVE-2017-2671",
    "UBUNTU-CVE-2017-5549",
    "UBUNTU-CVE-2017-5897",
    "UBUNTU-CVE-2017-6345",
    "UBUNTU-CVE-2017-6348",
    "UBUNTU-CVE-2017-7518",
    "UBUNTU-CVE-2017-7645",
    "UBUNTU-CVE-2017-8831",
    "UBUNTU-CVE-2017-9984",
    "UBUNTU-CVE-2017-9985",
    "UBUNTU-CVE-2017-11472",
    "UBUNTU-CVE-2017-11473",
    "UBUNTU-CVE-2017-14991",
    "UBUNTU-CVE-2017-15649",
    "UBUNTU-CVE-2017-16526",
    "UBUNTU-CVE-2017-16527",
    "UBUNTU-CVE-2017-16529",
    "UBUNTU-CVE-2017-16531",
    "UBUNTU-CVE-2017-16532",
    "UBUNTU-CVE-2017-16533",
    "UBUNTU-CVE-2017-16535",
    "UBUNTU-CVE-2017-16536",
    "UBUNTU-CVE-2017-16537",
    "UBUNTU-CVE-2017-16538",
    "UBUNTU-CVE-2017-16643",
    "UBUNTU-CVE-2017-16644",
    "UBUNTU-CVE-2017-16645",
    "UBUNTU-CVE-2017-16650",
    "UBUNTU-CVE-2017-16911",
    "UBUNTU-CVE-2017-16912",
    "UBUNTU-CVE-2017-16913",
    "UBUNTU-CVE-2017-16914",
    "UBUNTU-CVE-2017-17558",
    "UBUNTU-CVE-2017-18255",
    "UBUNTU-CVE-2017-18270",
    "UBUNTU-CVE-2018-1092",
    "UBUNTU-CVE-2018-1093",
    "UBUNTU-CVE-2018-10021",
    "UBUNTU-CVE-2018-10087",
    "UBUNTU-CVE-2018-10124",
    "UBUNTU-CVE-2018-10323",
    "UBUNTU-CVE-2018-10675",
    "UBUNTU-CVE-2018-10877",
    "UBUNTU-CVE-2018-10881",
    "UBUNTU-CVE-2018-10940",
    "UBUNTU-CVE-2018-12233",
    "UBUNTU-CVE-2018-13094",
    "UBUNTU-CVE-2018-13405",
    "UBUNTU-CVE-2018-13406",
    "UBUNTU-CVE-2018-1000204"
  ]
}



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Forecast uses a logistic model when the trend is rising, or an exponential decay model when the trend is falling. Fitted via linearized least squares.

Sightings

Author Source Type Date Other

Nomenclature

  • Seen: The vulnerability was mentioned, discussed, or observed by the user.
  • Confirmed: The vulnerability has been validated from an analyst's perspective.
  • Published Proof of Concept: A public proof of concept is available for this vulnerability.
  • Exploited: The vulnerability was observed as exploited by the user who reported the sighting.
  • Patched: The vulnerability was observed as successfully patched by the user who reported the sighting.
  • Not exploited: The vulnerability was not observed as exploited by the user who reported the sighting.
  • Not confirmed: The user expressed doubt about the validity of the vulnerability.
  • Not patched: The vulnerability was not observed as successfully patched by the user who reported the sighting.

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Detection rules are retrieved from Rulezet.

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