## Releases
* Ubuntu 16.04 ESM
## Packages
* linux \- Linux kernel
* linux-aws \- Linux kernel for Amazon Web Services (AWS) systems
* linux-kvm \- Linux kernel for cloud environments
* linux-raspi2 \- Linux kernel for Raspberry Pi 2
* linux-snapdragon \- Linux kernel for Snapdragon processors
It was discovered that a heap-based buffer overflow existed in the Marvell
WiFi-Ex 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-2019-14895, CVE-2019-14901)
It was discovered that a heap-based buffer overflow existed in the Marvell
Libertas WLAN 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-2019-14896, CVE-2019-14897)
Anthony Steinhauser discovered that the Linux kernel did not properly
perform Spectre_RSB mitigations to all processors for PowerPC architecture
systems in some situations. A local attacker could use this to expose
sensitive information. (CVE-2019-18660)
It was discovered that Geschwister Schneider USB CAN interface driver in
the Linux kernel did not properly deallocate memory in certain failure
conditions. A physically proximate attacker could use this to cause a
denial of service (kernel memory exhaustion). (CVE-2019-19052)
It was discovered that the driver for memoryless force-feedback input
devices in the Linux kernel contained a use-after-free vulnerability. A
physically proximate attacker could possibly use this to cause a denial of
service (system crash) or execute arbitrary code. (CVE-2019-19524)
It was discovered that the PEAK-System Technik USB driver in the Linux
kernel did not properly sanitize memory before sending it to the device. A
physically proximate attacker could use this to expose sensitive
information (kernel memory). (CVE-2019-19534)
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The flaw could occur when the station attempts a connection negotiation during the handling of the remote devices country settings. This could allow the remote device to cause a denial of service (system crash) or possibly execute arbitrary code.(CVE-2019-14895)\n\nA flaw was found in the fix for CVE-2019-11135, the way Intel CPUs handle speculative execution of instructions when a TSX Asynchronous Abort (TAA) error occurs. When a guest is running on a host CPU affected by the TAA flaw (TAA_NO=0), but is not affected by the MDS issue (MDS_NO=1), the guest was to clear the affected buffers by using a VERW instruction mechanism. But when the MDS_NO=1 bit was exported to the guests, the guests did not use the VERW mechanism to clear the affected buffers. This issue affects guests running on Cascade Lake CPUs and requires that host has 'TSX' enabled. 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See the\n# GNU General Public License for more details.\n#\n# You should have received a copy of the GNU General Public License\n# along with this program; if not, write to the Free Software\n# Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.\n\nif(description)\n{\n script_oid(\"1.3.6.1.4.1.25623.1.0.892114\");\n script_version(\"2020-03-03T04:00:55+0000\");\n script_cve_id(\"CVE-2018-13093\", \"CVE-2018-13094\", \"CVE-2018-20976\", \"CVE-2018-21008\", \"CVE-2019-0136\", \"CVE-2019-10220\", \"CVE-2019-14615\", \"CVE-2019-14814\", \"CVE-2019-14815\", \"CVE-2019-14816\", \"CVE-2019-14895\", \"CVE-2019-14896\", \"CVE-2019-14897\", \"CVE-2019-14901\", \"CVE-2019-15098\", \"CVE-2019-15217\", \"CVE-2019-15291\", \"CVE-2019-15505\", \"CVE-2019-15917\", \"CVE-2019-16746\", \"CVE-2019-17052\", \"CVE-2019-17053\", \"CVE-2019-17054\", \"CVE-2019-17055\", \"CVE-2019-17056\", \"CVE-2019-17075\", \"CVE-2019-17133\", \"CVE-2019-17666\", \"CVE-2019-18282\", \"CVE-2019-18683\", \"CVE-2019-18809\", \"CVE-2019-19037\", \"CVE-2019-19051\", \"CVE-2019-19052\", \"CVE-2019-19056\", \"CVE-2019-19057\", \"CVE-2019-19062\", \"CVE-2019-19066\", \"CVE-2019-19068\", \"CVE-2019-19227\", \"CVE-2019-19332\", \"CVE-2019-19447\", \"CVE-2019-19523\", \"CVE-2019-19524\", \"CVE-2019-19525\", \"CVE-2019-19527\", \"CVE-2019-19530\", \"CVE-2019-19531\", \"CVE-2019-19532\", \"CVE-2019-19533\", \"CVE-2019-19534\", \"CVE-2019-19535\", \"CVE-2019-19536\", \"CVE-2019-19537\", \"CVE-2019-19767\", \"CVE-2019-19947\", \"CVE-2019-19965\", \"CVE-2019-20096\", \"CVE-2019-2215\");\n script_tag(name:\"cvss_base\", value:\"10.0\");\n script_tag(name:\"cvss_base_vector\", value:\"AV:N/AC:L/Au:N/C:C/I:C/A:C\");\n script_tag(name:\"last_modification\", value:\"2020-03-03 04:00:55 +0000 (Tue, 03 Mar 2020)\");\n script_tag(name:\"creation_date\", value:\"2020-03-03 04:00:55 +0000 (Tue, 03 Mar 2020)\");\n script_name(\"Debian LTS: Security Advisory for linux-4.9 (DLA-2114-1)\");\n script_category(ACT_GATHER_INFO);\n script_copyright(\"Copyright (C) 2020 Greenbone Networks GmbH\");\n script_family(\"Debian Local Security Checks\");\n script_dependencies(\"gather-package-list.nasl\");\n script_mandatory_keys(\"ssh/login/debian_linux\", \"ssh/login/packages\", re:\"ssh/login/release=DEB8\");\n\n script_xref(name:\"URL\", value:\"https://lists.debian.org/debian-lts-announce/2020/03/msg00001.html\");\n script_xref(name:\"URL\", value:\"https://security-tracker.debian.org/tracker/DLA-2114-1\");\n script_xref(name:\"URL\", value:\"https://bugs.debian.org/869511\");\n script_xref(name:\"URL\", value:\"https://bugs.debian.org/945023\");\n\n script_tag(name:\"summary\", value:\"The remote host is missing an update for the 'linux-4.9'\n package(s) announced via the DLA-2114-1 advisory.\");\n\n script_tag(name:\"vuldetect\", value:\"Checks if a vulnerable package version is present on the target host.\");\n\n script_tag(name:\"insight\", value:\"Several vulnerabilities have been discovered in the Linux kernel that\nmay lead to a privilege escalation, denial of service or information\nleaks.\n\nCVE-2018-13093, CVE-2018-13094\n\nWen Xu from SSLab at Gatech reported several NULL pointer\ndereference flaws that may be triggered when mounting and\noperating a crafted XFS volume. 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An attacker controlling an SMB server could use this to overwrite arbitrary files. (CVE-2019-10220)\n\nIt was discovered that a heap-based buffer overflow existed in the Marvell WiFi-Ex 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-2019-14895, CVE-2019-14901)\n\nIt was discovered that a heap-based buffer overflow existed in the Marvell Libertas WLAN 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-2019-14896, CVE-2019-14897)\n\nIt was discovered that the Fujitsu ES network device driver for the Linux kernel did not properly check for errors in some situations, leading to a NULL pointer dereference. A local attacker could use this to cause a denial of service. (CVE-2019-16231)\n\nIt was discovered that the QLogic Fibre Channel driver in the Linux kernel did not properly check for error, leading to a NULL pointer dereference. A local attacker could possibly use this to cause a denial of service (system crash). (CVE-2019-16233)\n\nNicolas Waisman discovered that the WiFi driver stack in the Linux kernel did not properly validate SSID lengths. A physically proximate attacker could use this to cause a denial of service (system crash).\n(CVE-2019-17133)\n\nAnthony Steinhauser discovered that the Linux kernel did not properly perform Spectre_RSB mitigations to all processors for PowerPC architecture systems in some situations. A local attacker could use this to expose sensitive information. (CVE-2019-18660)\n\nIt was discovered that the Mellanox Technologies Innova driver in the Linux kernel did not properly deallocate memory in certain failure conditions. A local attacker could use this to cause a denial of service (kernel memory exhaustion). (CVE-2019-19045)\n\nIt was discovered that the VirtualBox guest driver implementation in the Linux kernel did not properly deallocate memory in certain error conditions. A local attacker could use this to cause a denial of service (memory exhaustion). (CVE-2019-19048)\n\nIt was discovered that Geschwister Schneider USB CAN interface driver in the Linux kernel did not properly deallocate memory in certain failure conditions. A physically proximate attacker could use this to cause a denial of service (kernel memory exhaustion). (CVE-2019-19052)\n\nIt was discovered that the netlink-based 802.11 configuration interface in the Linux kernel did not deallocate memory in certain error conditions. A local attacker could possibly use this to cause a denial of service (kernel memory exhaustion). (CVE-2019-19055)\n\nIt was discovered that the ADIS16400 IIO IMU Driver for the Linux kernel did not properly deallocate memory in certain error conditions.\nA local attacker could use this to cause a denial of service (memory exhaustion). (CVE-2019-19060)\n\nIt was discovered that the Intel OPA Gen1 Infiniband Driver for the Linux kernel did not properly deallocate memory in certain error conditions. A local attacker could use this to cause a denial of service (memory exhaustion). (CVE-2019-19065)\n\nIt was discovered that the AMD Audio CoProcessor Driver for the Linux kernel did not properly deallocate memory in certain error conditions.\nA local attacker with the ability to load modules could use this to cause a denial of service (memory exhaustion). (CVE-2019-19067)\n\nIt was discovered that the event tracing subsystem of the Linux kernel did not properly deallocate memory in certain error conditions. A local attacker could use this to cause a denial of service (kernel memory exhaustion). (CVE-2019-19072)\n\nIt was discovered that the Cascoda CA8210 SPI 802.15.4 wireless controller driver for the Linux kernel did not properly deallocate memory in certain error conditions. A local attacker could use this to cause a denial of service (memory exhaustion). (CVE-2019-19075)\n\nIt was discovered that the AMD Display Engine Driver in the Linux kernel did not properly deallocate memory in certain error conditions.\nA local attack could use this to cause a denial of service (memory exhaustion). (CVE-2019-19083)\n\nIt was discovered that the driver for memoryless force-feedback input devices in the Linux kernel contained a use-after-free vulnerability.\nA physically proximate attacker could possibly use this to cause a denial of service (system crash) or execute arbitrary code.\n(CVE-2019-19524)\n\nIt was discovered that the NXP PN533 NFC USB driver in the Linux kernel did not properly free resources after a late probe error, leading to a use- after-free vulnerability. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-19526)\n\nIt was discovered that the Microchip CAN BUS Analyzer driver in the Linux kernel contained a use-after-free vulnerability on device disconnect. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code.\n(CVE-2019-19529)\n\nIt was discovered that multiple USB HID device drivers in the Linux kernel did not properly validate device metadata on attachment, leading to out-of- bounds writes. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-19532)\n\nIt was discovered that the PEAK-System Technik USB driver in the Linux kernel did not properly sanitize memory before sending it to the device. A physically proximate attacker could use this to expose sensitive information (kernel memory). (CVE-2019-19534)\n\nIt was discovered that in some situations the fair scheduler in the Linux kernel did not permit a process to use its full quota time slice. 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(CVE-2019-19055)\n\nIt was discovered that the ADIS16400 IIO IMU Driver for the Linux\nkernel did not properly deallocate memory in certain error conditions.\nA local attacker could use this to cause a denial of service (memory\nexhaustion). (CVE-2019-19060)\n\nIt was discovered that the Intel OPA Gen1 Infiniband Driver for the\nLinux kernel did not properly deallocate memory in certain error\nconditions. A local attacker could use this to cause a denial of\nservice (memory exhaustion). (CVE-2019-19065)\n\nIt was discovered that the AMD Audio CoProcessor Driver for the Linux\nkernel did not properly deallocate memory in certain error conditions.\nA local attacker with the ability to load modules could use this to\ncause a denial of service (memory exhaustion). (CVE-2019-19067)\n\nIt was discovered that the event tracing subsystem of the Linux kernel\ndid not properly deallocate memory in certain error conditions. A\nlocal attacker could use this to cause a denial of service (kernel\nmemory exhaustion). (CVE-2019-19072)\n\nIt was discovered that the Cascoda CA8210 SPI 802.15.4 wireless\ncontroller driver for the Linux kernel did not properly deallocate\nmemory in certain error conditions. A local attacker could use this to\ncause a denial of service (memory exhaustion). (CVE-2019-19075)\n\nIt was discovered that the AMD Display Engine Driver in the Linux\nkernel did not properly deallocate memory in certain error conditions.\nA local attack could use this to cause a denial of service (memory\nexhaustion). (CVE-2019-19083)\n\nIt was discovered that the driver for memoryless force-feedback input\ndevices in the Linux kernel contained a use-after-free vulnerability.\nA physically proximate attacker could possibly use this to cause a\ndenial of service (system crash) or execute arbitrary code.\n(CVE-2019-19524)\n\nIt was discovered that the NXP PN533 NFC USB driver in the Linux\nkernel did not properly free resources after a late probe error,\nleading to a use- after-free vulnerability. A physically proximate\nattacker could use this to cause a denial of service (system crash) or\npossibly execute arbitrary code. (CVE-2019-19526)\n\nIt was discovered that the Microchip CAN BUS Analyzer driver in the\nLinux kernel contained a use-after-free vulnerability on device\ndisconnect. A physically proximate attacker could use this to cause a\ndenial of service (system crash) or possibly execute arbitrary code.\n(CVE-2019-19529)\n\nIt was discovered that multiple USB HID device drivers in the Linux\nkernel did not properly validate device metadata on attachment,\nleading to out-of- bounds writes. A physically proximate attacker\ncould use this to cause a denial of service (system crash) or possibly\nexecute arbitrary code. (CVE-2019-19532)\n\nIt was discovered that the PEAK-System Technik USB driver in the Linux\nkernel did not properly sanitize memory before sending it to the\ndevice. A physically proximate attacker could use this to expose\nsensitive information (kernel memory). (CVE-2019-19534)\n\nIt was discovered that in some situations the fair scheduler in the\nLinux kernel did not permit a process to use its full quota time\nslice. 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The vulnerability allows a\n remote attacker to cause a system crash, resulting in a\n denial of service, or execute arbitrary code. The\n highest threat with this vulnerability is with the\n availability of the system. If code execution occurs,\n the code will run with the permissions of root. This\n will affect both confidentiality and integrity of files\n on the system. (CVE-2019-14901)\n\n - A vulnerability was found in the Linux kernel's generic\n WiFi ESSID handling implementation. The flaw allows a\n system to join a wireless network where the ESSID is\n longer than the maximum length of 32 characters, which\n can cause the system to crash or execute code.\n (CVE-2019-17133)\n\nNote that Nessus has not tested for this issue but has instead relied only on the application's self-reported version\nnumber.\");\n script_set_attribute(attribute:\"see_also\", value:\"http://security.gd-linux.com/notice/NS-SA-2020-0014\");\n script_set_attribute(attribute:\"solution\", value:\n\"Upgrade the vulnerable CGSL kernel-rt packages. Note that updated packages may not be available yet. Please contact ZTE\nfor more information.\");\n script_set_cvss_base_vector(\"CVSS2#AV:N/AC:L/Au:N/C:C/I:C/A:C\");\n script_set_cvss_temporal_vector(\"CVSS2#E:U/RL:OF/RC:C\");\n script_set_cvss3_base_vector(\"CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H\");\n script_set_cvss3_temporal_vector(\"CVSS:3.0/E:U/RL:O/RC:C\");\n script_set_attribute(attribute:\"cvss_score_source\", value:\"CVE-2019-14901\");\n\n script_set_attribute(attribute:\"exploitability_ease\", value:\"No known exploits are available\");\n\n script_set_attribute(attribute:\"vuln_publication_date\", value:\"2020/03/04\");\n script_set_attribute(attribute:\"patch_publication_date\", value:\"2020/03/04\");\n script_set_attribute(attribute:\"plugin_publication_date\", value:\"2020/04/21\");\n\n script_set_attribute(attribute:\"plugin_type\", value:\"local\");\n script_end_attributes();\n\n script_category(ACT_GATHER_INFO);\n script_family(english:\"NewStart CGSL Local Security Checks\");\n\n script_copyright(english:\"This script is Copyright (C) 2020-2021 and is owned by Tenable, Inc. or an Affiliate thereof.\");\n\n script_dependencies(\"ssh_get_info.nasl\");\n script_require_keys(\"Host/local_checks_enabled\", \"Host/ZTE-CGSL/release\", \"Host/ZTE-CGSL/rpm-list\", \"Host/cpu\");\n\n exit(0);\n}\n\ninclude(\"audit.inc\");\ninclude(\"global_settings.inc\");\ninclude(\"rpm.inc\");\n\nif (!get_kb_item(\"Host/local_checks_enabled\")) audit(AUDIT_LOCAL_CHECKS_NOT_ENABLED);\n\nrelease = get_kb_item(\"Host/ZTE-CGSL/release\");\nif (isnull(release) || release !~ \"^CGSL (MAIN|CORE)\") audit(AUDIT_OS_NOT, \"NewStart Carrier Grade Server Linux\");\n\nif (release !~ \"CGSL CORE 5.04\" &&\n release !~ \"CGSL MAIN 5.04\")\n audit(AUDIT_OS_NOT, 'NewStart CGSL CORE 5.04 / NewStart CGSL MAIN 5.04');\n\nif (!get_kb_item(\"Host/ZTE-CGSL/rpm-list\")) audit(AUDIT_PACKAGE_LIST_MISSING);\n\ncpu = get_kb_item(\"Host/cpu\");\nif (isnull(cpu)) audit(AUDIT_UNKNOWN_ARCH);\nif (\"x86_64\" >!< cpu && cpu !~ \"^i[3-6]86$\") audit(AUDIT_LOCAL_CHECKS_NOT_IMPLEMENTED, \"NewStart Carrier Grade Server Linux\", cpu);\n\nflag = 0;\n\npkgs = {\n \"CGSL CORE 5.04\": [\n \"kernel-rt-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-debuginfo-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-devel-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-kvm-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-kvm-debuginfo-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debuginfo-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debuginfo-common-x86_64-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-devel-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-doc-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-kvm-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-kvm-debuginfo-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-trace-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-trace-debuginfo-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-trace-devel-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-trace-kvm-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-trace-kvm-debuginfo-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\"\n ],\n \"CGSL MAIN 5.04\": [\n \"kernel-rt-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-debuginfo-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-devel-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-kvm-3.10.0-693.21.1.rt56.639.el7.cgslv5_4.30.404.g206c005\",\n \"kernel-rt-debug-kvm-debug