usn-3583-1
Vulnerability from osv_ubuntu
Published
2018-02-23 09:14
Modified
2026-04-22 07:36
Summary
linux vulnerabilities
Details

It was discovered that an out-of-bounds write vulnerability existed in the Flash-Friendly File System (f2fs) in the Linux kernel. An attacker could construct a malicious file system that, when mounted, could cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-0750)

It was discovered that a race condition leading to a use-after-free vulnerability existed in the ALSA PCM subsystem of the Linux kernel. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-0861)

It was discovered that the KVM implementation in the Linux kernel allowed passthrough of the diagnostic I/O port 0x80. An attacker in a guest VM could use this to cause a denial of service (system crash) in the host OS. (CVE-2017-1000407)

Bo Zhang discovered that the netlink wireless configuration interface in the Linux kernel did not properly validate attributes when handling certain requests. A local attacker with the CAP_NET_ADMIN could use this to cause a denial of service (system crash). (CVE-2017-12153)

Vitaly Mayatskikh discovered that the SCSI subsystem in the Linux kernel did not properly track reference counts when merging buffers. A local attacker could use this to cause a denial of service (memory exhaustion). (CVE-2017-12190)

It was discovered that the key management subsystem in the Linux kernel did not properly restrict key reads on negatively instantiated keys. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-12192)

It was discovered that an integer overflow existed in the sysfs interface for the QLogic 24xx+ series SCSI driver in the Linux kernel. A local privileged attacker could use this to cause a denial of service (system crash). (CVE-2017-14051)

Otto Ebeling discovered that the memory manager in the Linux kernel did not properly check the effective UID in some situations. A local attacker could use this to expose sensitive information. (CVE-2017-14140)

It was discovered that the ATI Radeon framebuffer driver in the Linux kernel did not properly initialize a data structure returned to user space. A local attacker could use this to expose sensitive information (kernel memory). (CVE-2017-14156)

ChunYu Wang discovered that the iSCSI transport implementation in the Linux kernel did not properly validate data structures. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-14489)

James Patrick-Evans discovered a race condition in the LEGO USB Infrared Tower driver in the Linux kernel. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-15102)

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)

It was discovered that the key management subsystem in the Linux kernel did not properly handle NULL payloads with non-zero length values. A local attacker could use this to cause a denial of service (system crash). (CVE-2017-15274)

It was discovered that the Bluebooth Network Encapsulation Protocol (BNEP) implementation in the Linux kernel did not validate the type of socket passed in the BNEPCONNADD ioctl(). A local attacker with the CAP_NET_ADMIN privilege could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-15868)

Andrey Konovalov discovered a use-after-free vulnerability in the USB serial console driver in the Linux kernel. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-16525)

It was discovered that the netfilter passive OS fingerprinting (xt_osf) module did not properly perform access control checks. A local attacker could improperly modify the system-wide OS fingerprint list. (CVE-2017-17450)

It was discovered that the HMAC implementation did not validate the state of the underlying cryptographic hash algorithm. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2017-17806)

Denys Fedoryshchenko discovered a use-after-free vulnerability in the netfilter xt_TCPMSS filter of the Linux kernel. A remote attacker could use this to cause a denial of service (system crash). (CVE-2017-18017)

Gareth Evans discovered that the shm IPC subsystem in the Linux kernel did not properly restrict mapping page zero. A local privileged attacker could use this to execute arbitrary code. (CVE-2017-5669)

It was discovered that an integer overflow vulnerability existing in the IPv6 implementation in the Linux kernel. A local attacker could use this to cause a denial of service (infinite loop). (CVE-2017-7542)

Tommi Rantala and Brad Spengler discovered that the memory manager in the Linux kernel did not properly enforce the CONFIG_STRICT_DEVMEM protection mechanism. A local attacker with access to /dev/mem could use this to expose sensitive information or possibly execute arbitrary code. (CVE-2017-7889)

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)

Mohamed Ghannam discovered a null pointer dereference in the RDS (Reliable Datagram Sockets) protocol implementation of the Linux kernel. A local attacker could use this to cause a denial of service (system crash). (CVE-2018-5333)

范龙飞 discovered that a race condition existed in loop block device 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-2018-5344)

USN-3524-1 mitigated CVE-2017-5754 (Meltdown) for the amd64 architecture in Ubuntu 14.04 LTS. This update provides the corresponding mitigations for the ppc64el architecture. Original advisory details:

Jann Horn discovered that microprocessors utilizing speculative execution and indirect branch prediction may allow unauthorized memory reads via sidechannel attacks. This flaw is known as Meltdown. A local attacker could use this to expose sensitive information, including kernel memory. (CVE-2017-5754)


{
  "affected": [
    {
      "database_specific": {
        "cves_map": {
          "cves": [
            {
              "id": "CVE-2017-0750",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-0861",
              "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-2017-5669",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-7542",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-7889",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-8824",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-12153",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:H/UI:N/S:U/C:N/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-12190",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:L/UI:N/S:C/C:N/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-12192",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-14051",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:L/AC:L/PR:H/UI:N/S:U/C:N/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-14140",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-14156",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-14489",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-15102",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:P/AC:H/PR:L/UI:N/S:U/C:H/I:H/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "low",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-15115",
              "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": "medium",
                  "type": "Ubuntu"
                }
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            },
            {
              "id": "CVE-2017-15274",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-15868",
              "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-2017-16525",
              "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-2017-17450",
              "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-2017-17806",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-18017",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2017-1000407",
              "severity": [
                {
                  "score": "CVSS:3.0/AV:A/AC:L/PR:N/UI:N/S:C/C:N/I:N/A:H",
                  "type": "CVSS_V3"
                },
                {
                  "score": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2018-5333",
              "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": "medium",
                  "type": "Ubuntu"
                }
              ]
            },
            {
              "id": "CVE-2018-5344",
              "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"
                }
              ]
            }
          ],
          "ecosystem": "Ubuntu:14.04:LTS"
        }
      },
      "ecosystem_specific": {
        "availability": "No subscription required",
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        "name": "linux",
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              "introduced": "0"
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          "type": "ECOSYSTEM"
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    }
  ],
  "aliases": [],
  "details": "It was discovered that an out-of-bounds write vulnerability existed in the\nFlash-Friendly File System (f2fs) in the Linux kernel. An attacker could\nconstruct a malicious file system that, when mounted, could cause a denial\nof service (system crash) or possibly execute arbitrary code.\n(CVE-2017-0750)\n\nIt was discovered that a race condition leading to a use-after-free\nvulnerability existed in the ALSA PCM subsystem of the Linux kernel. A\nlocal attacker could use this to cause a denial of service (system crash)\nor possibly execute arbitrary code. (CVE-2017-0861)\n\nIt was discovered that the KVM implementation in the Linux kernel allowed\npassthrough of the diagnostic I/O port 0x80. An attacker in a guest VM\ncould use this to cause a denial of service (system crash) in the host OS.\n(CVE-2017-1000407)\n\nBo Zhang discovered that the netlink wireless configuration interface in\nthe Linux kernel did not properly validate attributes when handling certain\nrequests. A local attacker with the CAP_NET_ADMIN could use this to cause a\ndenial of service (system crash). (CVE-2017-12153)\n\nVitaly Mayatskikh discovered that the SCSI subsystem in the Linux kernel\ndid not properly track reference counts when merging buffers. A local\nattacker could use this to cause a denial of service (memory exhaustion).\n(CVE-2017-12190)\n\nIt was discovered that the key management subsystem in the Linux kernel did\nnot properly restrict key reads on negatively instantiated keys. A local\nattacker could use this to cause a denial of service (system crash).\n(CVE-2017-12192)\n\nIt was discovered that an integer overflow existed in the sysfs interface\nfor the QLogic 24xx+ series SCSI driver in the Linux kernel. A local\nprivileged attacker could use this to cause a denial of service (system\ncrash). (CVE-2017-14051)\n\nOtto Ebeling discovered that the memory manager in the Linux kernel did not\nproperly check the effective UID in some situations. A local attacker could\nuse this to expose sensitive information. (CVE-2017-14140)\n\nIt was discovered that the ATI Radeon framebuffer driver in the Linux\nkernel did not properly initialize a data structure returned to user space.\nA local attacker could use this to expose sensitive information (kernel\nmemory). (CVE-2017-14156)\n\nChunYu Wang discovered that the iSCSI transport implementation in the Linux\nkernel did not properly validate data structures. A local attacker could\nuse this to cause a denial of service (system crash). (CVE-2017-14489)\n\nJames Patrick-Evans discovered a race condition in the LEGO USB Infrared\nTower driver in the Linux kernel. A physically proximate attacker could use\nthis to cause a denial of service (system crash) or possibly execute\narbitrary code. (CVE-2017-15102)\n\nChunYu Wang discovered that a use-after-free vulnerability existed in the\nSCTP protocol implementation in the Linux kernel. A local attacker could\nuse this to cause a denial of service (system crash) or possibly execute\narbitrary code, (CVE-2017-15115)\n\nIt was discovered that the key management subsystem in the Linux kernel did\nnot properly handle NULL payloads with non-zero length values. A local\nattacker could use this to cause a denial of service (system crash).\n(CVE-2017-15274)\n\nIt was discovered that the Bluebooth Network Encapsulation Protocol (BNEP)\nimplementation in the Linux kernel did not validate the type of socket\npassed in the BNEPCONNADD ioctl(). A local attacker with the CAP_NET_ADMIN\nprivilege could use this to cause a denial of service (system crash) or\npossibly execute arbitrary code. (CVE-2017-15868)\n\nAndrey Konovalov discovered a use-after-free vulnerability in the USB\nserial console driver in the Linux kernel. A physically proximate attacker\ncould use this to cause a denial of service (system crash) or possibly\nexecute arbitrary code. (CVE-2017-16525)\n\nIt was discovered that the netfilter passive OS fingerprinting (xt_osf)\nmodule did not properly perform access control checks. A local attacker\ncould improperly modify the system-wide OS fingerprint list.\n(CVE-2017-17450)\n\nIt was discovered that the HMAC implementation did not validate the state\nof the underlying cryptographic hash algorithm. A local attacker could use\nthis to cause a denial of service (system crash) or possibly execute\narbitrary code. (CVE-2017-17806)\n\nDenys Fedoryshchenko discovered a use-after-free vulnerability in the\nnetfilter xt_TCPMSS filter of the Linux kernel. A remote attacker could use\nthis to cause a denial of service (system crash). (CVE-2017-18017)\n\nGareth Evans discovered that the shm IPC subsystem in the Linux kernel did\nnot properly restrict mapping page zero. A local privileged attacker could\nuse this to execute arbitrary code. (CVE-2017-5669)\n\nIt was discovered that an integer overflow vulnerability existing in the\nIPv6 implementation in the Linux kernel. A local attacker could use this to\ncause a denial of service (infinite loop). (CVE-2017-7542)\n\nTommi Rantala and Brad Spengler discovered that the memory manager in the\nLinux kernel did not properly enforce the CONFIG_STRICT_DEVMEM protection\nmechanism. A local attacker with access to /dev/mem could use this to\nexpose sensitive information or possibly execute arbitrary code.\n(CVE-2017-7889)\n\nMohamed Ghannam discovered a use-after-free vulnerability in the DCCP\nprotocol implementation in the Linux kernel. A local attacker could use\nthis to cause a denial of service (system crash) or possibly execute\narbitrary code. (CVE-2017-8824)\n\nMohamed Ghannam discovered a null pointer dereference in the RDS (Reliable\nDatagram Sockets) protocol implementation of the Linux kernel. A local\nattacker could use this to cause a denial of service (system crash).\n(CVE-2018-5333)\n\n\u8303\u9f99\u98de discovered that a race condition existed in loop block device\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-2018-5344)\n\nUSN-3524-1 mitigated CVE-2017-5754 (Meltdown) for the amd64\narchitecture in Ubuntu 14.04 LTS. This update provides the\ncorresponding mitigations for the ppc64el architecture. Original\nadvisory details:\n\n Jann Horn discovered that microprocessors utilizing speculative execution\n and indirect branch prediction may allow unauthorized memory reads via\n sidechannel attacks. This flaw is known as Meltdown. A local attacker could\n use this to expose sensitive information, including kernel memory.\n (CVE-2017-5754)\n\n",
  "id": "USN-3583-1",
  "modified": "2026-04-22T07:36:35Z",
  "published": "2018-02-23T09:14:24Z",
  "references": [
    {
      "type": "ADVISORY",
      "url": "https://ubuntu.com/security/notices/USN-3583-1"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-0750"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-0861"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-5669"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-5754"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-7542"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-7889"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-8824"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-12153"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-12190"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-12192"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-14051"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-14140"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-14156"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-14489"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-15102"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-15115"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-15274"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-15868"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-16525"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-17450"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-17806"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-18017"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2017-1000407"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-5333"
    },
    {
      "type": "REPORT",
      "url": "https://ubuntu.com/security/CVE-2018-5344"
    }
  ],
  "related": [],
  "schema_version": "1.7.0",
  "summary": "linux vulnerabilities",
  "upstream": [
    "UBUNTU-CVE-2017-0750",
    "UBUNTU-CVE-2017-0861",
    "UBUNTU-CVE-2017-5669",
    "UBUNTU-CVE-2017-5754",
    "UBUNTU-CVE-2017-7542",
    "UBUNTU-CVE-2017-7889",
    "UBUNTU-CVE-2017-8824",
    "UBUNTU-CVE-2017-12153",
    "UBUNTU-CVE-2017-12190",
    "UBUNTU-CVE-2017-12192",
    "UBUNTU-CVE-2017-14051",
    "UBUNTU-CVE-2017-14140",
    "UBUNTU-CVE-2017-14156",
    "UBUNTU-CVE-2017-14489",
    "UBUNTU-CVE-2017-15102",
    "UBUNTU-CVE-2017-15115",
    "UBUNTU-CVE-2017-15274",
    "UBUNTU-CVE-2017-15868",
    "UBUNTU-CVE-2017-16525",
    "UBUNTU-CVE-2017-17450",
    "UBUNTU-CVE-2017-17806",
    "UBUNTU-CVE-2017-18017",
    "UBUNTU-CVE-2017-1000407",
    "UBUNTU-CVE-2018-5333",
    "UBUNTU-CVE-2018-5344"
  ]
}



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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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