{"id":"USN-5975-1","summary":"linux-azure vulnerabilities","details":"Updated on 2023-04-11:\nPlease note that when USN 5975-1 was originally published, it incorrectly\nincluded the linux-gcp kernel for Ubuntu 16.04 ESM. References to that\nkernel have been removed from this USN and the correct information for it\nhas been published in USN 6007-1.\n\nOriginal advisory details:\n\nIt was discovered that the Upper Level Protocol (ULP) subsystem in the\nLinux kernel did not properly handle sockets entering the LISTEN state in\ncertain protocols, leading to a use-after-free vulnerability. A local\nattacker could use this to cause a denial of service (system crash) or\npossibly execute arbitrary code. (CVE-2023-0461)\n\nIt was discovered that the System V IPC implementation in the Linux kernel\ndid not properly handle large shared memory counts. A local attacker could\nuse this to cause a denial of service (memory exhaustion). (CVE-2021-3669)\n\nIt was discovered that an out-of-bounds write vulnerability existed in the\nVideo for Linux 2 (V4L2) implementation in the Linux kernel. A local\nattacker could use this to cause a denial of service (system crash) or\npossibly execute arbitrary code. (CVE-2022-20369)\n\nPawan Kumar Gupta, Alyssa Milburn, Amit Peled, Shani Rehana, Nir Shildan\nand Ariel Sabba discovered that some Intel processors with Enhanced\nIndirect Branch Restricted Speculation (eIBRS) did not properly handle RET\ninstructions after a VM exits. A local attacker could potentially use this\nto expose sensitive information. (CVE-2022-26373)\n\nDavid Leadbeater discovered that the netfilter IRC protocol tracking\nimplementation in the Linux Kernel incorrectly handled certain message\npayloads in some situations. A remote attacker could possibly use this to\ncause a denial of service or bypass firewall filtering. (CVE-2022-2663)\n\nJohannes Wikner and Kaveh Razavi discovered that for some AMD x86-64\nprocessors, the branch predictor could by mis-trained for return\ninstructions in certain circumstances. A local attacker could possibly use\nthis to expose sensitive information. (CVE-2022-29900)\n\nJohannes Wikner and Kaveh Razavi discovered that for some Intel x86-64\nprocessors, the Linux kernel's protections against speculative branch\ntarget injection attacks were insufficient in some circumstances. A local\nattacker could possibly use this to expose sensitive information.\n(CVE-2022-29901)\n\nIt was discovered that a use-after-free vulnerability existed in the SGI\nGRU driver in the Linux kernel. A local attacker could possibly use this to\ncause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2022-3424)\n\nIt was discovered that a race condition existed in the Kernel Connection\nMultiplexor (KCM) socket implementation in the Linux kernel when releasing\nsockets in certain situations. A local attacker could use this to cause a\ndenial of service (system crash). (CVE-2022-3521)\n\nIt was discovered that the Netronome Ethernet driver 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-2022-3545)\n\nIt was discovered that the Broadcom FullMAC USB WiFi driver in the Linux\nkernel did not properly perform bounds checking in some situations. A\nphysically proximate attacker could use this to craft a malicious USB\ndevice that when inserted, could cause a denial of service (system crash)\nor possibly execute arbitrary code. (CVE-2022-3628)\n\nZiming Zhang discovered that the VMware Virtual GPU DRM driver in the Linux\nkernel contained an out-of-bounds write vulnerability. A local attacker\ncould use this to cause a denial of service (system crash).\n(CVE-2022-36280)\n\nIt was discovered that a use-after-free vulnerability existed in the\nBluetooth stack in the Linux kernel. A local attacker could use this to\ncause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2022-3640)\n\nIt was discovered that the NILFS2 file system implementation in the Linux\nkernel did not properly deallocate memory in certain error conditions. An\nattacker could use this to cause a denial of service (memory exhaustion).\n(CVE-2022-3646)\n\nKhalid Masum discovered that the NILFS2 file system implementation in the\nLinux kernel did not properly handle certain error conditions, leading to a\nuse-after-free vulnerability. A local attacker could use this to cause a\ndenial of service or possibly execute arbitrary code. (CVE-2022-3649)\n\nHyunwoo Kim discovered that an integer overflow vulnerability existed in\nthe PXA3xx graphics driver in the Linux kernel. A local attacker could\npossibly use this to cause a denial of service (system crash).\n(CVE-2022-39842)\n\nHyunwoo Kim discovered that the DVB Core driver in the Linux kernel did not\nproperly perform reference counting in some situations, leading to a use-\nafter-free vulnerability. A local attacker could use this to cause a denial\nof service (system crash) or possibly execute arbitrary code.\n(CVE-2022-41218)\n\nIt was discovered that a race condition existed in the SMSC UFX USB driver\nimplementation in the Linux kernel, leading to a use-after-free\nvulnerability. A physically proximate attacker could use this to cause a\ndenial of service (system crash) or possibly execute arbitrary code.\n(CVE-2022-41849)\n\nIt was discovered that a race condition existed in the Roccat HID driver in\nthe Linux kernel, leading to a use-after-free vulnerability. A local\nattacker could use this to cause a denial of service (system crash) or\npossibly execute arbitrary code. (CVE-2022-41850)\n\nIt was discovered that a race condition existed in the Xen network backend\ndriver in the Linux kernel when handling dropped packets in certain\ncircumstances. An attacker could use this to cause a denial of service\n(kernel deadlock). (CVE-2022-42328, CVE-2022-42329)\n\nTamás Koczka discovered that the Bluetooth L2CAP implementation in the\nLinux kernel did not properly initialize memory in some situations. A\nphysically proximate attacker could possibly use this to expose sensitive\ninformation (kernel memory). (CVE-2022-42895)\n\nIt was discovered that the USB monitoring (usbmon) component in the Linux\nkernel did not properly set permissions on memory mapped in to user space\nprocesses. A local attacker could use this to cause a denial of service\n(system crash) or possibly execute arbitrary code. (CVE-2022-43750)\n\nIt was discovered that the network queuing discipline implementation in the\nLinux kernel contained a null pointer dereference in some situations. A\nlocal attacker could use this to cause a denial of service (system crash).\n(CVE-2022-47929)\n\nJosé Oliveira and Rodrigo Branco discovered that the prctl syscall\nimplementation in the Linux kernel did not properly protect against\nindirect branch prediction attacks in some situations. A local attacker\ncould possibly use this to expose sensitive information. (CVE-2023-0045)\n\nIt was discovered that a use-after-free vulnerability existed in the\nAdvanced Linux Sound Architecture (ALSA) subsystem. A local attacker could\nuse this to cause a denial of service (system crash). (CVE-2023-0266)\n\nKyle Zeng discovered that the IPv6 implementation in the Linux kernel\ncontained a NULL pointer dereference vulnerability in certain situations. A\nlocal attacker could use this to cause a denial of service (system crash).\n(CVE-2023-0394)\n\nKyle Zeng discovered that the ATM VC queuing discipline implementation in\nthe Linux kernel contained a type confusion vulnerability in some\nsituations. An attacker could use this to cause a denial of service (system\ncrash). (CVE-2023-23455)\n\nIt was discovered that the RNDIS USB driver in the Linux kernel contained\nan integer overflow vulnerability. A local attacker with physical access\ncould plug in a malicious USB device to cause a denial of service (system\ncrash) or possibly execute arbitrary code. (CVE-2023-23559)\n\nIt was discovered that the NTFS file system implementation in the Linux\nkernel did not properly validate attributes in certain situations, leading\nto an out-of-bounds read vulnerability. A local attacker could possibly use\nthis to expose sensitive information (kernel memory). (CVE-2023-26607)\n\nWei Chen discovered that the DVB USB AZ6027 driver in the Linux kernel\ncontained a null pointer dereference when handling certain messages from\nuser space. A local attacker could use this to cause a denial of service\n(system crash). (CVE-2023-28328)\n\n","modified":"2026-04-27T16:47:17.706134754Z","published":"2023-03-27T21:46:44Z","related":["UBUNTU-CVE-2021-3669","UBUNTU-CVE-2022-20369","UBUNTU-CVE-2022-26373","UBUNTU-CVE-2022-2663","UBUNTU-CVE-2022-29900","UBUNTU-CVE-2022-29901","UBUNTU-CVE-2022-3424","UBUNTU-CVE-2022-3521","UBUNTU-CVE-2022-3545","UBUNTU-CVE-2022-3628","UBUNTU-CVE-2022-36280","UBUNTU-CVE-2022-3640","UBUNTU-CVE-2022-3646","UBUNTU-CVE-2022-3649","UBUNTU-CVE-2022-39842","UBUNTU-CVE-2022-41218","UBUNTU-CVE-2022-41849","UBUNTU-CVE-2022-41850","UBUNTU-CVE-2022-42328","UBUNTU-CVE-2022-42329","UBUNTU-CVE-2022-42895","UBUNTU-CVE-2022-43750","UBUNTU-CVE-2022-47929","UBUNTU-CVE-2023-0045","UBUNTU-CVE-2023-0266","UBUNTU-CVE-2023-0394","UBUNTU-CVE-2023-0461","UBUNTU-CVE-2023-23455","UBUNTU-CVE-2023-23559","UBUNTU-CVE-2023-26607","UBUNTU-CVE-2023-28328"],"upstream":["CVE-2021-3669","CVE-2022-20369","CVE-2022-26373","CVE-2022-2663","CVE-2022-29900","CVE-2022-29901","CVE-2022-3424","CVE-2022-3521","CVE-2022-3545","CVE-2022-3628","CVE-2022-36280","CVE-2022-3640","CVE-2022-3646","CVE-2022-3649","CVE-2022-39842","CVE-2022-41218","CVE-2022-41849","CVE-2022-41850","CVE-2022-42328","CVE-2022-42329","CVE-2022-42895","CVE-2022-43750","CVE-2022-47929","CVE-2023-0045","CVE-2023-0266","CVE-2023-0394","CVE-2023-0461","CVE-2023-23455","CVE-2023-23559","CVE-2023-26607","CVE-2023-28328","UBUNTU-CVE-2021-3669","UBUNTU-CVE-2022-20369","UBUNTU-CVE-2022-26373","UBUNTU-CVE-2022-2663","UBUNTU-CVE-2022-29900","UBUNTU-CVE-2022-29901","UBUNTU-CVE-2022-3424","UBUNTU-CVE-2022-3521","UBUNTU-CVE-2022-3545","UBUNTU-CVE-2022-3628","UBUNTU-CVE-2022-36280","UBUNTU-CVE-2022-3640","UBUNTU-CVE-2022-3646","UBUNTU-CVE-2022-3649","UBUNTU-CVE-2022-39842","UBUNTU-CVE-2022-41218","UBUNTU-CVE-2022-41849","UBUNTU-CVE-2022-41850","UBUNTU-CVE-2022-42328","UBUNTU-CVE-2022-42329","UBUNTU-CVE-2022-42895","UBUNTU-CVE-2022-43750","UBUNTU-CVE-2022-47929","UBUNTU-CVE-2023-0045","UBUNTU-CVE-2023-0266","UBUNTU-CVE-2023-0394","UBUNTU-CVE-2023-0461","UBUNTU-CVE-2023-23455","UBUNTU-CVE-2023-23559","UBUNTU-CVE-2023-26607","UBUNTU-CVE-2023-28328"],"references":[{"type":"ADVISORY","url":"https://ubuntu.com/security/notices/USN-5975-1"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2021-3669"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-2663"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-3424"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-3521"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-3545"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-3628"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-3640"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-3646"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-3649"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-20369"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-26373"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-29900"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-29901"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-36280"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-39842"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-41218"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-41849"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-41850"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-42328"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-42329"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-42895"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-43750"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2022-47929"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2023-0045"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2023-0266"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2023-0394"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2023-0461"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2023-23455"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2023-23559"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2023-26607"},{"type":"REPORT","url":"https://ubuntu.com/security/CVE-2023-28328"}],"affected":[{"package":{"name":"linux-azure","ecosystem":"Ubuntu:Pro:16.04:LTS","purl":"pkg:deb/ubuntu/linux-azure@4.15.0-1162.177~16.04.1?arch=source&distro=esm-infra/xenial"},"ranges":[{"type":"ECOSYSTEM","events":[{"introduced":"0"},{"fixed":"4.15.0-1162.177~16.04.1"}]}],"versions":["4.11.0-1009.9","4.11.0-1011.11","4.11.0-1013.13","4.11.0-1014.14","4.11.0-1015.15","4.11.0-1016.16","4.13.0-1005.7","4.13.0-1006.8","4.13.0-1007.9","4.13.0-1009.12","4.13.0-1011.14","4.13.0-1012.15","4.13.0-1014.17","4.13.0-1016.19","4.13.0-1018.21","4.15.0-1013.13~16.04.2","4.15.0-1014.14~16.04.1","4.15.0-1018.18~16.04.1","4.15.0-1019.19~16.04.1","4.15.0-1021.21~16.04.1","4.15.0-1022.22~16.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with Ubuntu Pro (Infra-only): 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