## Releases
* Ubuntu 16.04 ESM
## Packages
* linux-aws \- Linux kernel for Amazon Web Services (AWS) systems
Roger Pau Monné discovered that the Xen virtual block driver in the Linux
kernel did not properly initialize memory pages to be used for shared
communication with the backend. A local attacker could use this to expose
sensitive information (guest kernel memory). (CVE-2022-26365)
Roger Pau Monné discovered that the Xen paravirtualization frontend in the
Linux kernel did not properly initialize memory pages to be used for shared
communication with the backend. A local attacker could use this to expose
sensitive information (guest kernel memory). (CVE-2022-33740)
It was discovered that the Xen paravirtualization frontend in the Linux
kernel incorrectly shared unrelated data when communicating with certain
backends. A local attacker could use this to cause a denial of service
(guest crash) or expose sensitive information (guest kernel memory).
(CVE-2022-33741)
{"ubuntu": [{"lastseen": "2023-05-27T14:50:21", "description": "## Releases\n\n * Ubuntu 14.04 ESM\n\n## Packages\n\n * linux-aws \\- Linux kernel for Amazon Web Services (AWS) systems\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 7.1, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.2}, "published": "2022-08-30T00:00:00", "type": "ubuntu", "title": "Linux kernel (AWS) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "LOW", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 3.6, "vectorString": "AV:L/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741"], "modified": "2022-08-30T00:00:00", "id": "USN-5572-2", "href": "https://ubuntu.com/security/notices/USN-5572-2", "cvss": {"score": 3.6, "vector": "AV:L/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2023-05-27T14:50:32", "description": "## Releases\n\n * Ubuntu 16.04 ESM\n * Ubuntu 14.04 ESM\n\n## Packages\n\n * linux \\- Linux kernel\n * linux-kvm \\- Linux kernel for cloud environments\n * linux-lts-xenial \\- Linux hardware enablement kernel from Xenial for Trusty\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 7.1, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.2}, "published": "2022-08-24T00:00:00", "type": "ubuntu", "title": "Linux kernel vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "LOW", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 3.6, "vectorString": "AV:L/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741"], "modified": "2022-08-24T00:00:00", "id": "USN-5579-1", "href": "https://ubuntu.com/security/notices/USN-5579-1", "cvss": {"score": 3.6, "vector": "AV:L/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:20", "description": "## Releases\n\n * Ubuntu 16.04 ESM\n\n## Packages\n\n * linux-gcp \\- Linux kernel for Google Cloud Platform (GCP) systems\n\nIt was discovered that the SUNRPC RDMA protocol implementation in the Linux \nkernel did not properly calculate the header size of a RPC message payload. \nA local attacker could use this to expose sensitive information (kernel \nmemory). (CVE-2022-0812)\n\nMoshe Kol, Amit Klein and Yossi Gilad discovered that the IP implementation \nin the Linux kernel did not provide sufficient randomization when \ncalculating port offsets. An attacker could possibly use this to expose \nsensitive information. (CVE-2022-1012, CVE-2022-32296)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "LOW", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "NONE", "baseScore": 8.2, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 4.2}, "published": "2022-10-21T00:00:00", "type": "ubuntu", "title": "Linux kernel (GCP) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 6.4, "vectorString": "AV:N/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-0812", "CVE-2022-1012", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-32296", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744"], "modified": "2022-10-21T00:00:00", "id": "USN-5695-1", "href": "https://ubuntu.com/security/notices/USN-5695-1", "cvss": {"score": 6.4, "vector": "AV:N/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:26", "description": "## Releases\n\n * Ubuntu 18.04 ESM\n\n## Packages\n\n * linux-azure-4.15 \\- Linux kernel for Microsoft Azure Cloud systems\n\nIt was discovered that the SUNRPC RDMA protocol implementation in the Linux \nkernel did not properly calculate the header size of a RPC message payload. \nA local attacker could use this to expose sensitive information (kernel \nmemory). (CVE-2022-0812)\n\nMoshe Kol, Amit Klein and Yossi Gilad discovered that the IP implementation \nin the Linux kernel did not provide sufficient randomization when \ncalculating port offsets. An attacker could possibly use this to expose \nsensitive information. (CVE-2022-1012, CVE-2022-32296)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "LOW", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "NONE", "baseScore": 8.2, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 4.2}, "published": "2022-10-18T00:00:00", "type": "ubuntu", "title": "Linux kernel (Azure) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 6.4, "vectorString": "AV:N/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-0812", "CVE-2022-1012", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-32296", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744"], "modified": "2022-10-18T00:00:00", "id": "USN-5687-1", "href": "https://ubuntu.com/security/notices/USN-5687-1", "cvss": {"score": 6.4, "vector": "AV:N/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:28", "description": "## Releases\n\n * Ubuntu 16.04 ESM\n * Ubuntu 14.04 ESM\n\n## Packages\n\n * linux-azure \\- Linux kernel for Microsoft Azure Cloud systems\n\nIt was discovered that the SUNRPC RDMA protocol implementation in the Linux \nkernel did not properly calculate the header size of a RPC message payload. \nA local attacker could use this to expose sensitive information (kernel \nmemory). (CVE-2022-0812)\n\nMoshe Kol, Amit Klein and Yossi Gilad discovered that the IP implementation \nin the Linux kernel did not provide sufficient randomization when \ncalculating port offsets. An attacker could possibly use this to expose \nsensitive information. (CVE-2022-1012, CVE-2022-32296)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "LOW", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "NONE", "baseScore": 8.2, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 4.2}, "published": "2022-10-17T00:00:00", "type": "ubuntu", "title": "Linux kernel (Azure) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 6.4, "vectorString": "AV:N/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-0812", "CVE-2022-1012", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-32296", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744"], "modified": "2022-10-17T00:00:00", "id": "USN-5684-1", "href": "https://ubuntu.com/security/notices/USN-5684-1", "cvss": {"score": 6.4, "vector": "AV:N/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:32", "description": "## Releases\n\n * Ubuntu 16.04 ESM\n\n## Packages\n\n * linux-aws-hwe \\- Linux kernel for Amazon Web Services (AWS-HWE) systems\n\nIt was discovered that the SUNRPC RDMA protocol implementation in the Linux \nkernel did not properly calculate the header size of a RPC message payload. \nA local attacker could use this to expose sensitive information (kernel \nmemory). (CVE-2022-0812)\n\nMoshe Kol, Amit Klein and Yossi Gilad discovered that the IP implementation \nin the Linux kernel did not provide sufficient randomization when \ncalculating port offsets. An attacker could possibly use this to expose \nsensitive information. (CVE-2022-1012, CVE-2022-32296)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "LOW", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "NONE", "baseScore": 8.2, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 4.2}, "published": "2022-10-13T00:00:00", "type": "ubuntu", "title": "Linux kernel (HWE) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 6.4, "vectorString": "AV:N/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-0812", "CVE-2022-1012", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-32296", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744"], "modified": "2022-10-13T00:00:00", "id": "USN-5679-1", "href": "https://ubuntu.com/security/notices/USN-5679-1", "cvss": {"score": 6.4, "vector": "AV:N/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:33", "description": "## Releases\n\n * Ubuntu 18.04 ESM\n\n## Packages\n\n * linux-aws \\- Linux kernel for Amazon Web Services (AWS) systems\n * linux-gcp-4.15 \\- Linux kernel for Google Cloud Platform (GCP) systems\n\nIt was discovered that the SUNRPC RDMA protocol implementation in the Linux \nkernel did not properly calculate the header size of a RPC message payload. \nA local attacker could use this to expose sensitive information (kernel \nmemory). (CVE-2022-0812)\n\nMoshe Kol, Amit Klein and Yossi Gilad discovered that the IP implementation \nin the Linux kernel did not provide sufficient randomization when \ncalculating port offsets. An attacker could possibly use this to expose \nsensitive information. (CVE-2022-1012, CVE-2022-32296)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "LOW", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "NONE", "baseScore": 8.2, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 4.2}, "published": "2022-10-13T00:00:00", "type": "ubuntu", "title": "Linux kernel vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 6.4, "vectorString": "AV:N/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-0812", "CVE-2022-1012", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-32296", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744"], "modified": "2022-10-13T00:00:00", "id": "USN-5678-1", "href": "https://ubuntu.com/security/notices/USN-5678-1", "cvss": {"score": 6.4, "vector": "AV:N/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:40", "description": "## Releases\n\n * Ubuntu 16.04 ESM\n\n## Packages\n\n * linux-hwe \\- Linux hardware enablement (HWE) kernel\n * linux-oracle \\- Linux kernel for Oracle Cloud systems\n\nIt was discovered that the SUNRPC RDMA protocol implementation in the Linux \nkernel did not properly calculate the header size of a RPC message payload. \nA local attacker could use this to expose sensitive information (kernel \nmemory). (CVE-2022-0812)\n\nMoshe Kol, Amit Klein and Yossi Gilad discovered that the IP implementation \nin the Linux kernel did not provide sufficient randomization when \ncalculating port offsets. An attacker could possibly use this to expose \nsensitive information. (CVE-2022-1012, CVE-2022-32296)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "LOW", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "NONE", "baseScore": 8.2, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 4.2}, "published": "2022-10-10T00:00:00", "type": "ubuntu", "title": "Linux kernel vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 6.4, "vectorString": "AV:N/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-0812", "CVE-2022-1012", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-32296", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744"], "modified": "2022-10-10T00:00:00", "id": "USN-5669-2", "href": "https://ubuntu.com/security/notices/USN-5669-2", "cvss": {"score": 6.4, "vector": "AV:N/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:40", "description": "## Releases\n\n * Ubuntu 18.04 ESM\n\n## Packages\n\n * linux \\- Linux kernel\n * linux-dell300x \\- Linux kernel for Dell 300x platforms\n * linux-kvm \\- Linux kernel for cloud environments\n * linux-oracle \\- Linux kernel for Oracle Cloud systems\n * linux-raspi2 \\- Linux kernel for Raspberry Pi systems\n * linux-snapdragon \\- Linux kernel for Qualcomm Snapdragon processors\n\nIt was discovered that the SUNRPC RDMA protocol implementation in the Linux \nkernel did not properly calculate the header size of a RPC message payload. \nA local attacker could use this to expose sensitive information (kernel \nmemory). (CVE-2022-0812)\n\nMoshe Kol, Amit Klein and Yossi Gilad discovered that the IP implementation \nin the Linux kernel did not provide sufficient randomization when \ncalculating port offsets. An attacker could possibly use this to expose \nsensitive information. (CVE-2022-1012, CVE-2022-32296)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "LOW", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "NONE", "baseScore": 8.2, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 4.2}, "published": "2022-10-10T00:00:00", "type": "ubuntu", "title": "Linux kernel vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 6.4, "vectorString": "AV:N/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-0812", "CVE-2022-1012", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-32296", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744"], "modified": "2022-10-10T00:00:00", "id": "USN-5669-1", "href": "https://ubuntu.com/security/notices/USN-5669-1", "cvss": {"score": 6.4, "vector": "AV:N/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:30", "description": "## Releases\n\n * Ubuntu 18.04 ESM\n\n## Packages\n\n * linux-aws-5.4 \\- Linux kernel for Amazon Web Services (AWS) systems\n\nIt was discovered that the BPF verifier in the Linux kernel did not \nproperly handle internal data structures. A local attacker could use this \nto expose sensitive information (kernel memory). (CVE-2021-4159)\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\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\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\nEric Biggers discovered that a use-after-free vulnerability existed in the \nio_uring subsystem in the Linux kernel. A local attacker could possibly use \nthis to cause a denial of service (system crash) or possibly execute \narbitrary code. (CVE-2022-3176)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the Netlink Transformation (XFRM) subsystem in the \nLinux kernel contained a reference counting error. A local attacker could \nuse this to cause a denial of service (system crash). (CVE-2022-36879)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-10-14T00:00:00", "type": "ubuntu", "title": "Linux kernel (AWS) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-4159", "CVE-2022-20369", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-26373", "CVE-2022-3176", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744", "CVE-2022-36879"], "modified": "2022-10-14T00:00:00", "id": "USN-5682-1", "href": "https://ubuntu.com/security/notices/USN-5682-1", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}, {"lastseen": "2023-05-27T16:32:35", "description": "## Releases\n\n * Ubuntu 22.04 LTS\n * Ubuntu 20.04 LTS\n\n## Packages\n\n * linux \\- Linux kernel\n * linux-aws \\- Linux kernel for Amazon Web Services (AWS) systems\n * linux-aws-5.15 \\- Linux kernel for Amazon Web Services (AWS) systems\n * linux-azure \\- Linux kernel for Microsoft Azure Cloud systems\n * linux-azure-5.15 \\- Linux kernel for Microsoft Azure cloud systems\n * linux-kvm \\- Linux kernel for cloud environments\n * linux-lowlatency \\- Linux low latency kernel\n\nIt was discovered that the framebuffer driver on the Linux kernel did not \nverify size limits when changing font or screen size, leading to an out-of- \nbounds write. A local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2021-33655)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the virtio RPMSG bus driver in the Linux kernel \ncontained a double-free vulnerability in certain error conditions. A local \nattacker could possibly use this to cause a denial of service (system \ncrash). (CVE-2022-34494, CVE-2022-34495)\n\nDomingo Dirutigliano and Nicola Guerrera discovered that the netfilter \nsubsystem in the Linux kernel did not properly handle rules that truncated \npackets below the packet header size. When such rules are in place, a \nremote attacker could possibly use this to cause a denial of service \n(system crash). (CVE-2022-36946)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-09-21T00:00:00", "type": "ubuntu", "title": "Linux kernel vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 5.0, "vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 2.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-33655", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33743", "CVE-2022-33744", "CVE-2022-34494", "CVE-2022-34495", "CVE-2022-36946"], "modified": "2022-09-21T00:00:00", "id": "USN-5624-1", "href": "https://ubuntu.com/security/notices/USN-5624-1", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:34", "description": "## Releases\n\n * Ubuntu 20.04 LTS\n * Ubuntu 18.04 ESM\n\n## Packages\n\n * linux-gcp \\- Linux kernel for Google Cloud Platform (GCP) systems\n * linux-oracle-5.4 \\- Linux kernel for Oracle Cloud systems\n * linux-raspi \\- Linux kernel for Raspberry Pi systems\n * linux-raspi-5.4 \\- Linux kernel for Raspberry Pi systems\n\nIt was discovered that the BPF verifier in the Linux kernel did not \nproperly handle internal data structures. A local attacker could use this \nto expose sensitive information (kernel memory). (CVE-2021-4159)\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\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\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\nEric Biggers discovered that a use-after-free vulnerability existed in the \nio_uring subsystem in the Linux kernel. A local attacker could possibly use \nthis to cause a denial of service (system crash) or possibly execute \narbitrary code. (CVE-2022-3176)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the Netlink Transformation (XFRM) subsystem in the \nLinux kernel contained a reference counting error. A local attacker could \nuse this to cause a denial of service (system crash). (CVE-2022-36879)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-10-13T00:00:00", "type": "ubuntu", "title": "Linux kernel vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-4159", "CVE-2022-20369", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-26373", "CVE-2022-3176", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744", "CVE-2022-36879"], "modified": "2022-10-13T00:00:00", "id": "USN-5677-1", "href": "https://ubuntu.com/security/notices/USN-5677-1", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}, {"lastseen": "2023-05-27T16:31:58", "description": "## Releases\n\n * Ubuntu 22.04 LTS\n\n## Packages\n\n * linux-intel-iotg \\- Linux kernel for Intel IoT platforms\n\nIt was discovered that the framebuffer driver on the Linux kernel did not \nverify size limits when changing font or screen size, leading to an out-of- \nbounds write. A local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2021-33655)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the virtio RPMSG bus driver in the Linux kernel \ncontained a double-free vulnerability in certain error conditions. A local \nattacker could possibly use this to cause a denial of service (system \ncrash). (CVE-2022-34494, CVE-2022-34495)\n\nDomingo Dirutigliano and Nicola Guerrera discovered that the netfilter \nsubsystem in the Linux kernel did not properly handle rules that truncated \npackets below the packet header size. When such rules are in place, a \nremote attacker could possibly use this to cause a denial of service \n(system crash). (CVE-2022-36946)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-10-04T00:00:00", "type": "ubuntu", "title": "Linux kernel (Intel IoTG) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 5.0, "vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 2.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-33655", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33743", "CVE-2022-33744", "CVE-2022-34494", "CVE-2022-34495", "CVE-2022-36946"], "modified": "2022-10-04T00:00:00", "id": "USN-5655-1", "href": "https://ubuntu.com/security/notices/USN-5655-1", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:09", "description": "## Releases\n\n * Ubuntu 20.04 LTS\n\n## Packages\n\n * linux-azure-fde \\- Linux kernel for Microsoft Azure CVM cloud systems\n\nIt was discovered that the BPF verifier in the Linux kernel did not \nproperly handle internal data structures. A local attacker could use this \nto expose sensitive information (kernel memory). (CVE-2021-4159)\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\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\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\nEric Biggers discovered that a use-after-free vulnerability existed in the \nio_uring subsystem in the Linux kernel. A local attacker could possibly use \nthis to cause a denial of service (system crash) or possibly execute \narbitrary code. (CVE-2022-3176)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the Netlink Transformation (XFRM) subsystem in the \nLinux kernel contained a reference counting error. A local attacker could \nuse this to cause a denial of service (system crash). (CVE-2022-36879)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-10-27T00:00:00", "type": "ubuntu", "title": "Linux kernel (Azure CVM) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-4159", "CVE-2022-20369", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-26373", "CVE-2022-3176", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744", "CVE-2022-36879"], "modified": "2022-10-27T00:00:00", "id": "USN-5706-1", "href": "https://ubuntu.com/security/notices/USN-5706-1", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}, {"lastseen": "2023-05-27T16:32:07", "description": "## Releases\n\n * Ubuntu 20.04 LTS\n\n## Packages\n\n * linux-gke-5.15 \\- Linux kernel for Google Container Engine (GKE) systems\n\nIt was discovered that the framebuffer driver on the Linux kernel did not \nverify size limits when changing font or screen size, leading to an out-of- \nbounds write. A local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2021-33655)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the virtio RPMSG bus driver in the Linux kernel \ncontained a double-free vulnerability in certain error conditions. A local \nattacker could possibly use this to cause a denial of service (system \ncrash). (CVE-2022-34494, CVE-2022-34495)\n\nDomingo Dirutigliano and Nicola Guerrera discovered that the netfilter \nsubsystem in the Linux kernel did not properly handle rules that truncated \npackets below the packet header size. When such rules are in place, a \nremote attacker could possibly use this to cause a denial of service \n(system crash). (CVE-2022-36946)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-09-30T00:00:00", "type": "ubuntu", "title": "Linux kernel (GKE) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 5.0, "vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 2.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-33655", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33743", "CVE-2022-33744", "CVE-2022-34494", "CVE-2022-34495", "CVE-2022-36946"], "modified": "2022-09-30T00:00:00", "id": "USN-5648-1", "href": "https://ubuntu.com/security/notices/USN-5648-1", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}, {"lastseen": "2023-05-27T16:32:13", "description": "## Releases\n\n * Ubuntu 20.04 LTS\n\n## Packages\n\n * linux-gcp-5.15 \\- Linux kernel for Google Cloud Platform (GCP) systems\n\nIt was discovered that the framebuffer driver on the Linux kernel did not \nverify size limits when changing font or screen size, leading to an out-of- \nbounds write. A local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2021-33655)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the virtio RPMSG bus driver in the Linux kernel \ncontained a double-free vulnerability in certain error conditions. A local \nattacker could possibly use this to cause a denial of service (system \ncrash). (CVE-2022-34494, CVE-2022-34495)\n\nDomingo Dirutigliano and Nicola Guerrera discovered that the netfilter \nsubsystem in the Linux kernel did not properly handle rules that truncated \npackets below the packet header size. When such rules are in place, a \nremote attacker could possibly use this to cause a denial of service \n(system crash). (CVE-2022-36946)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-09-27T00:00:00", "type": "ubuntu", "title": "Linux kernel (GCP) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 5.0, "vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 2.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-33655", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33743", "CVE-2022-33744", "CVE-2022-34494", "CVE-2022-34495", "CVE-2022-36946"], "modified": "2022-09-27T00:00:00", "id": "USN-5644-1", "href": "https://ubuntu.com/security/notices/USN-5644-1", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}, {"lastseen": "2023-05-27T16:32:15", "description": "## Releases\n\n * Ubuntu 22.04 LTS\n\n## Packages\n\n * linux-oracle \\- Linux kernel for Oracle Cloud systems\n\nIt was discovered that the framebuffer driver on the Linux kernel did not \nverify size limits when changing font or screen size, leading to an out-of- \nbounds write. A local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2021-33655)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the virtio RPMSG bus driver in the Linux kernel \ncontained a double-free vulnerability in certain error conditions. A local \nattacker could possibly use this to cause a denial of service (system \ncrash). (CVE-2022-34494, CVE-2022-34495)\n\nDomingo Dirutigliano and Nicola Guerrera discovered that the netfilter \nsubsystem in the Linux kernel did not properly handle rules that truncated \npackets below the packet header size. When such rules are in place, a \nremote attacker could possibly use this to cause a denial of service \n(system crash). (CVE-2022-36946)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-09-26T00:00:00", "type": "ubuntu", "title": "Linux kernel (Oracle) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 5.0, "vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 2.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-33655", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33743", "CVE-2022-33744", "CVE-2022-34494", "CVE-2022-34495", "CVE-2022-36946"], "modified": "2022-09-26T00:00:00", "id": "USN-5640-1", "href": "https://ubuntu.com/security/notices/USN-5640-1", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}, {"lastseen": "2023-05-27T16:32:19", "description": "## Releases\n\n * Ubuntu 22.04 LTS\n\n## Packages\n\n * linux-gkeop \\- Linux kernel for Google Container Engine (GKE) systems\n\nIt was discovered that the framebuffer driver on the Linux kernel did not \nverify size limits when changing font or screen size, leading to an out-of- \nbounds write. A local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2021-33655)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the virtio RPMSG bus driver in the Linux kernel \ncontained a double-free vulnerability in certain error conditions. A local \nattacker could possibly use this to cause a denial of service (system \ncrash). (CVE-2022-34494, CVE-2022-34495)\n\nDomingo Dirutigliano and Nicola Guerrera discovered that the netfilter \nsubsystem in the Linux kernel did not properly handle rules that truncated \npackets below the packet header size. When such rules are in place, a \nremote attacker could possibly use this to cause a denial of service \n(system crash). (CVE-2022-36946)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-09-23T00:00:00", "type": "ubuntu", "title": "Linux kernel (GKE) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 5.0, "vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 2.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-33655", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33743", "CVE-2022-33744", "CVE-2022-34494", "CVE-2022-34495", "CVE-2022-36946"], "modified": "2022-09-23T00:00:00", "id": "USN-5635-1", "href": "https://ubuntu.com/security/notices/USN-5635-1", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}, {"lastseen": "2023-05-27T16:32:22", "description": "## Releases\n\n * Ubuntu 22.04 LTS\n\n## Packages\n\n * linux-gcp \\- Linux kernel for Google Cloud Platform (GCP) systems\n * linux-gke \\- Linux kernel for Google Container Engine (GKE) systems\n * linux-raspi \\- Linux kernel for Raspberry Pi systems\n\nIt was discovered that the framebuffer driver on the Linux kernel did not \nverify size limits when changing font or screen size, leading to an out-of- \nbounds write. A local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2021-33655)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the virtio RPMSG bus driver in the Linux kernel \ncontained a double-free vulnerability in certain error conditions. A local \nattacker could possibly use this to cause a denial of service (system \ncrash). (CVE-2022-34494, CVE-2022-34495)\n\nDomingo Dirutigliano and Nicola Guerrera discovered that the netfilter \nsubsystem in the Linux kernel did not properly handle rules that truncated \npackets below the packet header size. When such rules are in place, a \nremote attacker could possibly use this to cause a denial of service \n(system crash). (CVE-2022-36946)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-09-22T00:00:00", "type": "ubuntu", "title": "Linux kernel vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 5.0, "vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 2.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-33655", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33743", "CVE-2022-33744", "CVE-2022-34494", "CVE-2022-34495", "CVE-2022-36946"], "modified": "2022-09-22T00:00:00", "id": "USN-5633-1", "href": "https://ubuntu.com/security/notices/USN-5633-1", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}, {"lastseen": "2023-05-27T16:31:44", "description": "## Releases\n\n * Ubuntu 20.04 LTS\n * Ubuntu 18.04 ESM\n\n## Packages\n\n * linux \\- Linux kernel\n * linux-aws \\- Linux kernel for Amazon Web Services (AWS) systems\n * linux-bluefield \\- Linux kernel for NVIDIA BlueField platforms\n * linux-gke \\- Linux kernel for Google Container Engine (GKE) systems\n * linux-gkeop \\- Linux kernel for Google Container Engine (GKE) systems\n * linux-hwe-5.4 \\- Linux hardware enablement (HWE) kernel\n * linux-ibm \\- Linux kernel for IBM cloud systems\n * linux-ibm-5.4 \\- Linux kernel for IBM cloud systems\n * linux-kvm \\- Linux kernel for cloud environments\n * linux-oracle \\- Linux kernel for Oracle Cloud systems\n\nIt was discovered that the BPF verifier in the Linux kernel did not \nproperly handle internal data structures. A local attacker could use this \nto expose sensitive information (kernel memory). (CVE-2021-4159)\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\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\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\nEric Biggers discovered that a use-after-free vulnerability existed in the \nio_uring subsystem in the Linux kernel. A local attacker could possibly use \nthis to cause a denial of service (system crash) or possibly execute \narbitrary code. (CVE-2022-3176)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the Netlink Transformation (XFRM) subsystem in the \nLinux kernel contained a reference counting error. A local attacker could \nuse this to cause a denial of service (system crash). (CVE-2022-36879)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-10-10T00:00:00", "type": "ubuntu", "title": "Linux kernel vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "COMPLETE", "integrityImpact": "NONE", "baseScore": 4.9, "vectorString": "AV:L/AC:L/Au:N/C:N/I:N/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 6.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-4159", "CVE-2022-20369", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-26373", "CVE-2022-3176", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33744", "CVE-2022-36879"], "modified": "2022-10-10T00:00:00", "id": "USN-5668-1", "href": "https://ubuntu.com/security/notices/USN-5668-1", "cvss": {"score": 4.9, "vector": "AV:L/AC:L/Au:N/C:N/I:N/A:C"}}, {"lastseen": "2023-05-27T16:31:29", "description": "## Releases\n\n * Ubuntu 22.04 LTS\n\n## Packages\n\n * linux-ibm \\- Linux kernel for IBM cloud systems\n\nIt was discovered that the framebuffer driver on the Linux kernel did not \nverify size limits when changing font or screen size, leading to an out-of- \nbounds write. A local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2021-33655)\n\nSelim Enes Karaduman discovered that a race condition existed in the \nGeneral notification queue implementation of the Linux kernel, leading to a \nuse-after-free vulnerability. A local attacker could use this to cause a \ndenial of service (system crash) or possibly execute arbitrary code. \n(CVE-2022-1882)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\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\nEric Biggers discovered that a use-after-free vulnerability existed in the \nio_uring subsystem in the Linux kernel. A local attacker could possibly use \nthis to cause a denial of service (system crash) or possibly execute \narbitrary code. (CVE-2022-3176)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the virtio RPMSG bus driver in the Linux kernel \ncontained a double-free vulnerability in certain error conditions. A local \nattacker could possibly use this to cause a denial of service (system \ncrash). (CVE-2022-34494, CVE-2022-34495)\n\nIt was discovered that the Netlink Transformation (XFRM) subsystem in the \nLinux kernel contained a reference counting error. A local attacker could \nuse this to cause a denial of service (system crash). (CVE-2022-36879)\n\nDomingo Dirutigliano and Nicola Guerrera discovered that the netfilter \nsubsystem in the Linux kernel did not properly handle rules that truncated \npackets below the packet header size. When such rules are in place, a \nremote attacker could possibly use this to cause a denial of service \n(system crash). (CVE-2022-36946)\n\nJann Horn discovered that the KVM subsystem in the Linux kernel did not \nproperly handle TLB flush operations in some situations. A local attacker \nin a guest VM could use this to cause a denial of service (guest crash) or \npossibly execute arbitrary code in the guest kernel. (CVE-2022-39189)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-10-14T00:00:00", "type": "ubuntu", "title": "Linux kernel (IBM) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "HIGH", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 7.2, "vectorString": "AV:L/AC:L/Au:N/C:C/I:C/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 10.0, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-33655", "CVE-2022-1882", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-26373", "CVE-2022-3176", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33743", "CVE-2022-33744", "CVE-2022-34494", "CVE-2022-34495", "CVE-2022-36879", "CVE-2022-36946", "CVE-2022-39189"], "modified": "2022-10-14T00:00:00", "id": "USN-5683-1", "href": "https://ubuntu.com/security/notices/USN-5683-1", "cvss": {"score": 7.2, "vector": "AV:L/AC:L/Au:N/C:C/I:C/A:C"}}, {"lastseen": "2023-05-27T16:32:33", "description": "## Releases\n\n * Ubuntu 20.04 LTS\n\n## Packages\n\n * linux-hwe-5.15 \\- Linux hardware enablement (HWE) kernel\n * linux-lowlatency-hwe-5.15 \\- Linux low latency kernel\n\nAsaf Modelevsky discovered that the Intel(R) 10GbE PCI Express (ixgbe) \nEthernet driver for the Linux kernel performed insufficient control flow \nmanagement. A local attacker could possibly use this to cause a denial of \nservice. (CVE-2021-33061)\n\nIt was discovered that the framebuffer driver on the Linux kernel did not \nverify size limits when changing font or screen size, leading to an out-of- \nbounds write. A local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2021-33655)\n\nMoshe Kol, Amit Klein and Yossi Gilad discovered that the IP implementation \nin the Linux kernel did not provide sufficient randomization when \ncalculating port offsets. An attacker could possibly use this to expose \nsensitive information. (CVE-2022-1012, CVE-2022-32296)\n\nNorbert Slusarek discovered that a race condition existed in the perf \nsubsystem in the Linux kernel, resulting in a use-after-free vulnerability. \nA privileged local attacker could use this to cause a denial of service \n(system crash) or possibly execute arbitrary code. (CVE-2022-1729)\n\nQiuhao Li, Gaoning Pan, and Yongkang Jia discovered that the KVM hypervisor \nimplementation in the Linux kernel did not properly handle an illegal \ninstruction in a guest, resulting in a null pointer dereference. An \nattacker in a guest VM could use this to cause a denial of service (system \ncrash) in the host OS. (CVE-2022-1852)\n\nIt was discovered that the UDF file system implementation 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) or possibly \nexecute arbitrary code. (CVE-2022-1943)\n\nGerald Lee discovered that the NTFS file system implementation in the Linux \nkernel did not properly handle certain error conditions, leading to a use- \nafter-free vulnerability. A local attacker could use this to cause a denial \nof service (system crash) or possibly expose sensitive information. \n(CVE-2022-1973)\n\nDuoming Zhou discovered that race conditions existed in the timer handling \nimplementation of the Linux kernel's Rose X.25 protocol layer, resulting in \nuse-after-free vulnerabilities. A local attacker could use this to cause a \ndenial of service (system crash). (CVE-2022-2318)\n\nIt was discovered that the device-mapper verity (dm-verity) driver in the \nLinux kernel did not properly verify targets being loaded into the device- \nmapper table. A privileged attacker could use this to cause a denial of \nservice (system crash) or possibly execute arbitrary code. (CVE-2022-2503)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nZheyu Ma discovered that the Intel iSMT SMBus host controller driver in the \nLinux kernel contained an out-of-bounds write vulnerability. A local \nattacker could use this to cause a denial of service (system crash). \n(CVE-2022-2873)\n\nSelim Enes Karaduman discovered that a race condition existed in the pipe \nbuffers implementation of the Linux kernel. A local attacker could use this \nto cause a denial of service (system crash) or possibly escalate \nprivileges. (CVE-2022-2959)\n\nRoger Pau Monn\u00e9 discovered that the Xen paravirtualization frontend in the \nLinux kernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-33740)\n\nIt was discovered that the Xen paravirtualization frontend in the Linux \nkernel incorrectly shared unrelated data when communicating with certain \nbackends. A local attacker could use this to cause a denial of service \n(guest crash) or expose sensitive information (guest kernel memory). \n(CVE-2022-33741, CVE-2022-33742)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nOleksandr Tyshchenko discovered that the Xen paravirtualization platform in \nthe Linux kernel on ARM platforms contained a race condition in certain \nsituations. An attacker in a guest VM could use this to cause a denial of \nservice in the host OS. (CVE-2022-33744)\n\nIt was discovered that the virtio RPMSG bus driver in the Linux kernel \ncontained a double-free vulnerability in certain error conditions. A local \nattacker could possibly use this to cause a denial of service (system \ncrash). (CVE-2022-34494, CVE-2022-34495)\n\nDomingo Dirutigliano and Nicola Guerrera discovered that the netfilter \nsubsystem in the Linux kernel did not properly handle rules that truncated \npackets below the packet header size. When such rules are in place, a \nremote attacker could possibly use this to cause a denial of service \n(system crash). (CVE-2022-36946)\n", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "LOW", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "NONE", "baseScore": 8.2, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 4.2}, "published": "2022-09-21T00:00:00", "type": "ubuntu", "title": "Linux kernel (HWE) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "HIGH", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 7.2, "vectorString": "AV:L/AC:L/Au:N/C:C/I:C/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 10.0, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2021-33061", "CVE-2021-33655", "CVE-2022-1012", "CVE-2022-1729", "CVE-2022-1852", "CVE-2022-1943", "CVE-2022-1973", "CVE-2022-2318", "CVE-2022-2503", "CVE-2022-26365", "CVE-2022-2873", "CVE-2022-2959", "CVE-2022-32296", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-33743", "CVE-2022-33744", "CVE-2022-34494", "CVE-2022-34495", "CVE-2022-36946"], "modified": "2022-09-21T00:00:00", "id": "USN-5623-1", "href": "https://ubuntu.com/security/notices/USN-5623-1", "cvss": {"score": 7.2, "vector": "AV:L/AC:L/Au:N/C:C/I:C/A:C"}}, {"lastseen": "2023-05-27T16:29:01", "description": "## Releases\n\n * Ubuntu 20.04 LTS\n\n## Packages\n\n * linux-oem-5.14 \\- Linux kernel for OEM systems\n\nIt was discovered that the NFSD implementation in the Linux kernel did not \nproperly handle some RPC messages, leading to a buffer overflow. A remote \nattacker could use this to cause a denial of service (system crash) or \npossibly execute arbitrary code. (CVE-2022-43945)\n\nJann Horn discovered that the Linux kernel did not properly track memory \nallocations for anonymous VMA mappings in some situations, leading to \npotential data structure reuse. A local attacker could use this to cause a \ndenial of service (system crash) or possibly execute arbitrary code. \n(CVE-2022-42703)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nIt was discovered that a memory leak existed in the IPv6 implementation of \nthe Linux kernel. A local attacker could use this to cause a denial of \nservice (memory exhaustion). (CVE-2022-3524)\n\nIt was discovered that a race condition existed in the Bluetooth subsystem \nin the 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-2022-3564)\n\nIt was discovered that the TCP implementation in the Linux kernel contained \na data race condition. An attacker could possibly use this to cause \nundesired behaviors. (CVE-2022-3566)\n\nIt was discovered that the IPv6 implementation in the Linux kernel \ncontained a data race condition. An attacker could possibly use this to \ncause undesired behaviors. (CVE-2022-3567)\n\nIt was discovered that the Realtek RTL8152 USB Ethernet adapter driver in \nthe Linux kernel did not properly handle certain error conditions. A local \nattacker with physical access could plug in a specially crafted USB device \nto cause a denial of service (memory exhaustion). (CVE-2022-3594)\n\nIt was discovered that a null pointer dereference existed in the NILFS2 \nfile system implementation in the Linux kernel. A local attacker could use \nthis to cause a denial of service (system crash). (CVE-2022-3621)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2023-01-05T00:00:00", "type": "ubuntu", "title": "Linux kernel (OEM) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 5.0, "vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 2.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-26365", "CVE-2022-33743", "CVE-2022-3524", "CVE-2022-3564", "CVE-2022-3566", "CVE-2022-3567", "CVE-2022-3594", "CVE-2022-3621", "CVE-2022-42703", "CVE-2022-43945"], "modified": "2023-01-05T00:00:00", "id": "USN-5789-1", "href": "https://ubuntu.com/security/notices/USN-5789-1", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}, {"lastseen": "2023-05-27T16:29:19", "description": "## Releases\n\n * Ubuntu 22.04 LTS\n\n## Packages\n\n * linux-oem-5.17 \\- Linux kernel for OEM systems\n\nIt was discovered that the NFSD implementation in the Linux kernel did not \nproperly handle some RPC messages, leading to a buffer overflow. A remote \nattacker could use this to cause a denial of service (system crash) or \npossibly execute arbitrary code. (CVE-2022-43945)\n\nJann Horn discovered that the Linux kernel did not properly track memory \nallocations for anonymous VMA mappings in some situations, leading to \npotential data structure reuse. A local attacker could use this to cause a \ndenial of service (system crash) or possibly execute arbitrary code. \n(CVE-2022-42703)\n\nRoger Pau Monn\u00e9 discovered that the Xen virtual block driver in the Linux \nkernel did not properly initialize memory pages to be used for shared \ncommunication with the backend. A local attacker could use this to expose \nsensitive information (guest kernel memory). (CVE-2022-26365)\n\nJan Beulich discovered that the Xen network device frontend driver in the \nLinux kernel incorrectly handled socket buffers (skb) references when \ncommunicating with certain backends. A local attacker could use this to \ncause a denial of service (guest crash). (CVE-2022-33743)\n\nIt was discovered that a memory leak existed in the IPv6 implementation of \nthe Linux kernel. A local attacker could use this to cause a denial of \nservice (memory exhaustion). (CVE-2022-3524)\n\nIt was discovered that a race condition existed in the Bluetooth subsystem \nin the 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-2022-3564)\n\nIt was discovered that the TCP implementation in the Linux kernel contained \na data race condition. An attacker could possibly use this to cause \nundesired behaviors. (CVE-2022-3566)\n\nIt was discovered that the IPv6 implementation in the Linux kernel \ncontained a data race condition. An attacker could possibly use this to \ncause undesired behaviors. (CVE-2022-3567)\n\nIt was discovered that the Realtek RTL8152 USB Ethernet adapter driver in \nthe Linux kernel did not properly handle certain error conditions. A local \nattacker with physical access could plug in a specially crafted USB device \nto cause a denial of service (memory exhaustion). (CVE-2022-3594)\n\nIt was discovered that a null pointer dereference existed in the NILFS2 \nfile system implementation in the Linux kernel. A local attacker could use \nthis to cause a denial of service (system crash). (CVE-2022-3621)\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 7.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.9}, "published": "2022-12-12T00:00:00", "type": "ubuntu", "title": "Linux kernel (OEM) vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 10.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "NONE", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 5.0, "vectorString": "AV:N/AC:L/Au:N/C:N/I:N/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 2.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-26365", "CVE-2022-33743", "CVE-2022-3524", "CVE-2022-3564", "CVE-2022-3566", "CVE-2022-3567", "CVE-2022-3594", "CVE-2022-3621", "CVE-2022-42703", "CVE-2022-43945"], "modified": "2022-12-12T00:00:00", "id": "USN-5773-1", "href": "https://ubuntu.com/security/notices/USN-5773-1", "cvss": {"score": 5.0, "vector": "AV:N/AC:L/Au:N/C:N/I:N/A:P"}}], "osv": [{"lastseen": "2022-10-29T06:46:53", "description": "Linux disk/nic frontends data leaks T[his CNA information record relates to multiple CVEs; the text explains which aspects/vulnerabilities correspond to which CVE.] Linux Block and Network PV device frontends don't zero memory regions before sharing them with the backend (CVE-2022-26365, CVE-2022-33740). Additionally the granularity of the grant table doesn't allow sharing less than a 4K page, leading to unrelated data residing in the same 4K page as data shared with a backend being accessible by such backend (CVE-2022-33741, CVE-2022-33742).", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 7.1, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.2}, "published": "2022-07-05T13:15:00", "type": "osv", "title": "CVE-2022-33740", "bulletinFamily": "software", "cvss2": {"severity": "LOW", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 3.6, "vectorString": "AV:L/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742"], "modified": "2022-10-29T06:46:51", "id": "OSV:CVE-2022-33740", "href": "https://osv.dev/vulnerability/CVE-2022-33740", "cvss": {"score": 3.6, "vector": "AV:L/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2022-10-29T06:46:53", "description": "Linux disk/nic frontends data leaks T[his CNA information record relates to multiple CVEs; the text explains which aspects/vulnerabilities correspond to which CVE.] Linux Block and Network PV device frontends don't zero memory regions before sharing them with the backend (CVE-2022-26365, CVE-2022-33740). Additionally the granularity of the grant table doesn't allow sharing less than a 4K page, leading to unrelated data residing in the same 4K page as data shared with a backend being accessible by such backend (CVE-2022-33741, CVE-2022-33742).", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 7.1, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.2}, "published": "2022-07-05T13:15:00", "type": "osv", "title": "CVE-2022-26365", "bulletinFamily": "software", "cvss2": {"severity": "LOW", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 3.6, "vectorString": "AV:L/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742"], "modified": "2022-10-29T06:46:51", "id": "OSV:CVE-2022-26365", "href": "https://osv.dev/vulnerability/CVE-2022-26365", "cvss": {"score": 3.6, "vector": "AV:L/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2022-10-29T06:46:56", "description": "Linux disk/nic frontends data leaks T[his CNA information record relates to multiple CVEs; the text explains which aspects/vulnerabilities correspond to which CVE.] Linux Block and Network PV device frontends don't zero memory regions before sharing them with the backend (CVE-2022-26365, CVE-2022-33740). Additionally the granularity of the grant table doesn't allow sharing less than a 4K page, leading to unrelated data residing in the same 4K page as data shared with a backend being accessible by such backend (CVE-2022-33741, CVE-2022-33742).", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 7.1, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.2}, "published": "2022-07-05T13:15:00", "type": "osv", "title": "CVE-2022-33742", "bulletinFamily": "software", "cvss2": {"severity": "LOW", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 3.6, "vectorString": "AV:L/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742"], "modified": "2022-10-29T06:46:53", "id": "OSV:CVE-2022-33742", "href": "https://osv.dev/vulnerability/CVE-2022-33742", "cvss": {"score": 3.6, "vector": "AV:L/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2022-10-29T06:46:53", "description": "Linux disk/nic frontends data leaks T[his CNA information record relates to multiple CVEs; the text explains which aspects/vulnerabilities correspond to which CVE.] Linux Block and Network PV device frontends don't zero memory regions before sharing them with the backend (CVE-2022-26365, CVE-2022-33740). Additionally the granularity of the grant table doesn't allow sharing less than a 4K page, leading to unrelated data residing in the same 4K page as data shared with a backend being accessible by such backend (CVE-2022-33741, CVE-2022-33742).", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "NONE", "privilegesRequired": "LOW", "baseScore": 7.1, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 5.2}, "published": "2022-07-05T13:15:00", "type": "osv", "title": "CVE-2022-33741", "bulletinFamily": "software", "cvss2": {"severity": "LOW", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "NONE", "baseScore": 3.6, "vectorString": "AV:L/AC:L/Au:N/C:P/I:N/A:P", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "impactScore": 4.9, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742"], "modified": "2022-10-29T06:46:52", "id": "OSV:CVE-2022-33741", "href": "https://osv.dev/vulnerability/CVE-2022-33741", "cvss": {"score": 3.6, "vector": "AV:L/AC:L/Au:N/C:P/I:N/A:P"}}, {"lastseen": "2022-08-10T07:07:15", "description": "\nSeveral vulnerabilities have been discovered in the Linux kernel that may\nlead to privilege escalation, denial of service or information leaks:\n\n\n* [CVE-2021-33655](https://security-tracker.debian.org/tracker/CVE-2021-33655)\nA user with access to a framebuffer console driver could cause a\n memory out-of-bounds write via the FBIOPUT\\_VSCREENINFO ioctl.\n* [CVE-2022-2318](https://security-tracker.debian.org/tracker/CVE-2022-2318)\nA use-after-free in the Amateur Radio X.25 PLP (Rose) support may\n result in denial of service.\n* [CVE-2022-26365](https://security-tracker.debian.org/tracker/CVE-2022-26365),\n [CVE-2022-33740](https://security-tracker.debian.org/tracker/CVE-2022-33740),\n [CVE-2022-33741](https://security-tracker.debian.org/tracker/CVE-2022-33741),\n [CVE-2022-33742](https://security-tracker.debian.org/tracker/CVE-2022-33742)\nRoger Pau Monne discovered that Xen block and network PV device\n frontends don't zero out memory regions before sharing them with the\n backend, which may result in information disclosure. Additionally it\n was discovered that the granularity of the grant table doesn't permit\n sharing less than a 4k page, which may also result in information\n disclosure.\n* [CVE-2022-33743](https://security-tracker.debian.org/tracker/CVE-2022-33743)\nJan Beulich discovered that incorrect memory handling in the Xen\n network backend may lead to denial of service.\n* [CVE-2022-33744](https://security-tracker.debian.org/tracker/CVE-2022-33744)\nOleksandr Tyshchenko discovered that ARM Xen guests can cause a denial\n of service to the Dom0 via paravirtual devices.\n* [CVE-2022-34918](https://security-tracker.debian.org/tracker/CVE-2022-34918)\nArthur Mongodin discovered a heap buffer overflow in the Netfilter\n subsystem which may result in local privilege escalation.\n\n\nFor the stable distribution (bullseye), these problems have been fixed in\nversion 5.10.127-2.\n\n\nWe recommend that you upgrade your linux packages.\n\n\nFor the detailed security status of linux please refer to\nits security tracker page at:\n[\\\nhttps://security-tracker.debian.org/tracker/linux](https://security-tracker.debian.org/tracker/linux)\n\n\n", "cvss3": {"exploitabilityScore": 1.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "baseScore": 7.8, "privilegesRequired": "LOW", "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H", "userInteraction": "NONE", "version": "3.1"}, "impactScore": 5.9}, "published": "2022-07-26T00:00:00", "type": "osv", "title": "linux - security update", "bulletinFamily": "software", "cvss2": {"severity": "HIGH", "exploitabilityScore": 3.9, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 7.2, "vectorString": "AV:L/AC:L/Au:N/C:C/I:C/A:C", "version": "2.0", "accessVector": "LOCAL", "authentication": "NONE"}, "acInsufInfo": false, "impactScore": 10.0, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2318", "CVE-2021-33655", "CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33742", "CVE-2022-33741", "CVE-2022-33743", "CVE-2022-34918", "CVE-2022-33744"], "modified": "2022-08-10T07:07:12", "id": "OSV:DSA-5191-1", "href": "https://osv.dev/vulnerability/DSA-5191-1", "cvss": {"score": 7.2, "vector": "AV:L/AC:L/Au:N/C:C/I:C/A:C"}}, {"lastseen": "2022-10-02T19:26:58", "description": "\nSeveral vulnerabilities have been discovered in the Linux kernel that\nmay lead to privilege escalation, denial of service or information\nleaks.\n\n\n* [CVE-2021-4159](https://security-tracker.debian.org/tracker/CVE-2021-4159)\nA flaw was found in the eBPF verifier which could lead to an\n out-of-bounds read. If unprivileged use of eBPF is enabled, this\n could leak sensitive information. This was already disabled by\n default, which would fully mitigate the vulnerability.\n* [CVE-2021-33655](https://security-tracker.debian.org/tracker/CVE-2021-33655)\nA user with access to a framebuffer console device could cause a\n memory out-of-bounds write via the FBIOPUT\\_VSCREENINFO ioctl.\n* [CVE-2021-33656](https://security-tracker.debian.org/tracker/CVE-2021-33656)\nA user with access to a framebuffer console device could cause a\n memory out-of-bounds write via some font setting ioctls. These\n obsolete ioctls have been removed.\n* [CVE-2022-1462](https://security-tracker.debian.org/tracker/CVE-2022-1462)\n\u00e4\u00b8\u0080\u013a\u008f\u015e\u00e7\u008b\u0097 reported a race condition in the pty (pseudo-terminal)\n subsystem that can lead to a slab out-of-bounds write. A local\n user could exploit this to cause a denial of service (crash or\n memory corruption) or possibly for privilege escalation.\n* [CVE-2022-1679](https://security-tracker.debian.org/tracker/CVE-2022-1679)\nThe syzbot tool found a race condition in the ath9k\\_htc driver\n which can lead to a use-after-free. This might be exploitable to\n cause a denial service (crash or memory corruption) or possibly\n for privilege escalation.\n* [CVE-2022-2153](https://security-tracker.debian.org/tracker/CVE-2022-2153)\nkangel reported a flaw in the KVM implementation for x86\n processors which could lead to a null pointer dereference. A local\n user permitted to access /dev/kvm could exploit this to cause a\n denial of service (crash).\n* [CVE-2022-2318](https://security-tracker.debian.org/tracker/CVE-2022-2318)\nA use-after-free in the Amateur Radio X.25 PLP (Rose) support may\n result in denial of service.\n* [CVE-2022-2586](https://security-tracker.debian.org/tracker/CVE-2022-2586)\nA use-after-free in the Netfilter subsystem may result in local\n privilege escalation for a user with the CAP\\_NET\\_ADMIN capability\n in any user or network namespace.\n* [CVE-2022-2588](https://security-tracker.debian.org/tracker/CVE-2022-2588)\nZhenpeng Lin discovered a use-after-free flaw in the cls\\_route\n filter implementation which may result in local privilege\n escalation for a user with the CAP\\_NET\\_ADMIN capability in any\n user or network namespace.\n* [CVE-2022-2663](https://security-tracker.debian.org/tracker/CVE-2022-2663)\nDavid Leadbeater reported flaws in the nf\\_conntrack\\_irc\n connection-tracking protocol module. When this module is enabled\n on a firewall, an external user on the same IRC network as an\n internal user could exploit its lax parsing to open arbitrary TCP\n ports in the firewall, to reveal their public IP address, or to\n block their IRC connection at the firewall.\n* [CVE-2022-3028](https://security-tracker.debian.org/tracker/CVE-2022-3028)\nAbhishek Shah reported a race condition in the AF\\_KEY subsystem,\n which could lead to an out-of-bounds write or read. A local user\n could exploit this to cause a denial of service (crash or memory\n corruption), to obtain sensitive information, or possibly for\n privilege escalation.\n* [CVE-2022-26365](https://security-tracker.debian.org/tracker/CVE-2022-26365), [CVE-2022-33740](https://security-tracker.debian.org/tracker/CVE-2022-33740), [CVE-2022-33741](https://security-tracker.debian.org/tracker/CVE-2022-33741), [CVE-2022-33742](https://security-tracker.debian.org/tracker/CVE-2022-33742)\nRoger Pau Monne discovered that Xen block and network PV device\n frontends don't zero out memory regions before sharing them with\n the backend, which may result in information disclosure.\n Additionally it was discovered that the granularity of the grant\n table doesn't permit sharing less than a 4k page, which may also\n result in information disclosure.\n* [CVE-2022-26373](https://security-tracker.debian.org/tracker/CVE-2022-26373)\nIt was discovered that on certain processors with Intel's Enhanced\n Indirect Branch Restricted Speculation (eIBRS) capabilities there\n are exceptions to the documented properties in some situations,\n which may result in information disclosure.\n\n\nIntel's explanation of the issue can be found at\n <https://www.intel.com/content/www/us/en/developer/articles/technical/software-security-guidance/advisory-guidance/post-barrier-return-stack-buffer-predictions.html>\n* [CVE-2022-33744](https://security-tracker.debian.org/tracker/CVE-2022-33744)\nOleksandr Tyshchenko discovered that ARM Xen guests can cause a\n denial of service to the Dom0 via paravirtual devices.\n* [CVE-2022-36879](https://security-tracker.debian.org/tracker/CVE-2022-36879)\nA flaw was discovered in xfrm\\_expand\\_policies in the xfrm\n subsystem which can cause a reference count to be dropped twice.\n* [CVE-2022-36946](https://security-tracker.debian.org/tracker/CVE-2022-36946)\nDomingo Dirutigliano and Nicola Guerrera reported a memory\n corruption flaw in the Netfilter subsystem which may result in\n denial of service.\n* [CVE-2022-39188](https://security-tracker.debian.org/tracker/CVE-2022-39188)\nJann Horn reported a race condition in the kernel's handling of\n unmapping of certain memory ranges. When a driver created a\n memory mapping with the VM\\_PFNMAP flag, which many GPU drivers do,\n the memory mapping could be removed and freed before it was\n flushed from the CPU TLBs. This could result in a page\n use\u00e2\u0080\u0094after-free. A local user with access to such a device could\n exploit this to cause a denial of service (crash or memory\n corruption) or possibly for privilege escalation.\n* [CVE-2022-39842](https://security-tracker.debian.org/tracker/CVE-2022-39842)\nAn integer overflow was discovered in the pxa3xx-gcu video driver\n which could lead to a heap out-of-bounds write.\n\n\nThis driver is not enabled in Debian's official kernel\n configurations.\n* [CVE-2022-40307](https://security-tracker.debian.org/tracker/CVE-2022-40307)\nA race condition was discovered in the EFI capsule-loader driver,\n which could lead to use-after-free. A local user permitted to\n access this device (/dev/efi\\_capsule\\_loader) could exploit this to\n cause a denial of service (crash or memory corruption) or possibly\n for privilege escalation. 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For more details, see:\n https://software.intel.com/security-software-guidance/deep-dives/deep-dive-indirect-branch-restricted- speculation Similar situations may exist with other mitigations for other kinds of speculative execution attacks. The situation is quite likely to be similar for speculative execution attacks which have yet to be discovered, disclosed, or mitigated. (CVE-2021-28689)\n\n - Linux disk/nic frontends data leaks T[his CNA information record relates to multiple CVEs; the text explains which aspects/vulnerabilities correspond to which CVE.] Linux Block and Network PV device frontends don't zero memory regions before sharing them with the backend (CVE-2022-26365, CVE-2022-33740).\n Additionally the granularity of the grant table doesn't allow sharing less than a 4K page, leading to unrelated data residing in the same 4K page as data shared with a backend being accessible by such backend (CVE-2022-33741, CVE-2022-33742). (CVE-2022-26365, CVE-2022-33740, CVE-2022-33741, CVE-2022-33742)\n\n - insufficient TLB flush for x86 PV guests in shadow mode For migration as well as to work around kernels unaware of L1TF (see XSA-273), PV guests may be run in shadow paging mode. To address XSA-401, code was moved inside a function in Xen. This code movement missed a variable changing meaning / value between old and new code positions. The now wrong use of the variable did lead to a wrong TLB flush condition, omitting flushes where such are necessary. (CVE-2022-33745)\n\n - P2M pool freeing may take excessively long The P2M pool backing second level address translation for guests may be of significant size. Therefore its freeing may take more time than is reasonable without intermediate preemption checks. Such checking for the need to preempt was so far missing. 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A type confusion bug in nft_set_elem_init (leading to a buffer overflow) could be used by a local attacker to escalate privileges, a different vulnerability than CVE-2022-32250. (The attacker can obtain root access, but must start with an unprivileged user namespace to obtain CAP_NET_ADMIN access.) This can be fixed in nft_setelem_parse_data in net/netfilter/nf_tables_api.c. 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CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H (CVE-2022-43945)\n\nNote that Nessus has not tested for these issues but has instead relied only on the application's self-reported version\nnumber.\");\n script_set_attribute(attribute:\"see_also\", value:\"https://ubuntu.com/security/notices/USN-5789-1\");\n script_set_attribute(attribute:\"solution\", value:\n\"Update the affected kernel package.\");\n script_set_cvss_base_vector(\"CVSS2#AV:L/AC:L/Au:N/C:P/I:P/A:P\");\n script_set_cvss_temporal_vector(\"CVSS2#E:U/RL:OF/RC:C\");\n script_set_cvss3_base_vector(\"CVSS:3.0/AV:L/AC:L/PR:L/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-2022-33743\");\n\n script_set_attribute(attribute:\"exploitability_ease\", value:\"No known exploits are available\");\n script_set_attribute(attribute:\"exploit_available\", value:\"false\");\n\n script_set_attribute(attribute:\"vuln_publication_date\", value:\"2022/07/05\");\n script_set_attribute(attribute:\"patch_publication_date\", value:\"2023/01/05\");\n script_set_attribute(attribute:\"plugin_publication_date\", value:\"2023/01/05\");\n\n script_set_attribute(attribute:\"plugin_type\", value:\"local\");\n script_set_attribute(attribute:\"cpe\", value:\"cpe:/o:canonical:ubuntu_linux:20.04:-:lts\");\n script_set_attribute(attribute:\"cpe\", value:\"p-cpe:/a:canonical:ubuntu_linux:linux-image-5.14.0-1055-oem\");\n script_set_attribute(attribute:\"cpe\", value:\"p-cpe:/a:canonical:ubuntu_linux:linux-image-oem\");\n script_set_attribute(attribute:\"generated_plugin\", value:\"current\");\n script_end_attributes();\n\n script_category(ACT_GATHER_INFO);\n script_family(english:\"Ubuntu Local Security Checks\");\n\n script_copyright(english:\"Ubuntu Security Notice (C) 2023 Canonical, Inc. / NASL script (C) 2023 and is owned by Tenable, Inc. or an Affiliate thereof.\");\n\n script_dependencies(\"ssh_get_info.nasl\", \"linux_alt_patch_detect.nasl\");\n script_require_keys(\"Host/cpu\", \"Host/Ubuntu\", \"Host/Ubuntu/release\", \"Host/Debian/dpkg-l\");\n\n exit(0);\n}\n\ninclude('debian_package.inc');\ninclude('ksplice.inc');\n\nif ( ! get_kb_item('Host/local_checks_enabled') ) audit(AUDIT_LOCAL_CHECKS_NOT_ENABLED);\nvar os_release = get_kb_item('Host/Ubuntu/release');\nif ( isnull(os_release) ) audit(AUDIT_OS_NOT, 'Ubuntu');\nos_release = chomp(os_release);\nif (! preg(pattern:\"^(20\\.04)$\", string:os_release)) audit(AUDIT_OS_NOT, 'Ubuntu 20.04', 'Ubuntu ' + os_release);\nif ( ! get_kb_item('Host/Debian/dpkg-l') ) audit(AUDIT_PACKAGE_LIST_MISSING);\n\nvar cpu = get_kb_item('Host/cpu');\nif (isnull(cpu)) audit(AUDIT_UNKNOWN_ARCH);\nif ('x86_64' >!< cpu && cpu !~ \"^i[3-6]86$\" && 's390' >!< cpu && 'aarch64' >!< cpu) audit(AUDIT_LOCAL_CHECKS_NOT_IMPLEMENTED, 'Ubuntu', cpu);\n\nvar machine_kernel_release = get_kb_item_or_exit('Host/uname-r');\nif (machine_kernel_release)\n{\n if (! preg(pattern:\"^(5.14.0-\\d{4}-oem)$\", string:machine_kernel_release)) audit(AUDIT_INST_VER_NOT_VULN, 'kernel ' + machine_kernel_release);\n var extra = '';\n var kernel_mappings = {\n \"5.14.0-\\d{4}-oem\" : \"5.14.0-1055\"\n };\n var trimmed_kernel_release = ereg_replace(string:machine_kernel_release, pattern:\"(-\\D+)$\", replace:'');\n foreach var kernel_regex (keys(kernel_mappings)) {\n if (preg(pattern:kernel_regex, string:machine_kernel_release)) {\n if (deb_ver_cmp(ver1:trimmed_kernel_release, ver2:kernel_mappings[kernel_regex]) < 0)\n {\n extra = extra + 'Running Kernel level of ' + trimmed_kernel_release + ' does not meet the minimum fixed level of ' + kernel_mappings[kernel_regex] + ' for this advisory.\\n\\n';\n }\n else\n {\n audit(AUDIT_PATCH_INSTALLED, 'Kernel package for USN-5789-1');\n }\n }\n }\n}\n\nif (get_one_kb_item('Host/ksplice/kernel-cves'))\n{\n var cve_list = make_list('CVE-2022-3524', 'CVE-2022-3564', 'CVE-2022-3566', 'CVE-2022-3567', 'CVE-2022-3594', 'CVE-2022-3621', 'CVE-2022-26365', 'CVE-2022-33743', 'CVE-2022-42703', 'CVE-2022-43945');\n if (ksplice_cves_check(cve_list))\n {\n audit(AUDIT_PATCH_INSTALLED, 'KSplice hotfix for USN-5789-1');\n }\n else\n {\n extra = extra + ksplice_reporting_text();\n }\n}\nif (extra) {\n security_report_v4(\n port : 0,\n severity : SECURITY_WARNING,\n extra : extra\n );\n exit(0);\n}\n", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2023-05-17T16:33:39", "description": "The remote SUSE Linux SLES12 host has packages installed that are affected by multiple vulnerabilities as referenced in the SUSE-SU-2022:2721-1 advisory.\n\n - In the Linux kernel 4.4 through 5.7.6, usbtest_disconnect in drivers/usb/misc/usbtest.c has a memory leak, aka CID-28ebeb8db770. (CVE-2020-15393)\n\n - A race condition in the Linux kernel before 5.6.2 between the VT_DISALLOCATE ioctl and closing/opening of ttys could lead to a use-after-free. (CVE-2020-36557)\n\n - A race condition in the Linux kernel before 5.5.7 involving VT_RESIZEX could lead to a NULL pointer dereference and general protection fault. (CVE-2020-36558)\n\n - When sending malicous data to kernel by ioctl cmd FBIOPUT_VSCREENINFO,kernel will write memory out of bounds. (CVE-2021-33655)\n\n - When setting font with malicous data by ioctl cmd PIO_FONT,kernel will write memory out of bounds.\n (CVE-2021-33656)\n\n - Product: AndroidVersions: Android kernelAndroid ID: A-173788806References: Upstream kernel (CVE-2021-39713)\n\n - An out-of-bounds read flaw was found in the Linux kernel's TeleTYpe subsystem. The issue occurs in how a user triggers a race condition using ioctls TIOCSPTLCK and TIOCGPTPEER and TIOCSTI and TCXONC with leakage of memory in the flush_to_ldisc function. This flaw allows a local user to crash the system or read unauthorized random data from memory. (CVE-2022-1462)\n\n - In various methods of kernel base drivers, there is a possible out of bounds write due to a heap buffer overflow. This could lead to local escalation of privilege with System execution privileges needed. User interaction is not needed for exploitation.Product: AndroidVersions: Android kernelAndroid ID:\n A-182388481References: Upstream kernel (CVE-2022-20166)\n\n - There are use-after-free vulnerabilities caused by timer handler in net/rose/rose_timer.c of linux that allow attackers to crash linux kernel without any privileges. (CVE-2022-2318)\n\n - Linux disk/nic frontends data leaks T[his CNA information record relates to multiple CVEs; the text explains which aspects/vulnerabilities correspond to which CVE.] Linux Block and Network PV device frontends don't zero memory regions before sharing them with the backend (CVE-2022-26365, CVE-2022-33740).\n Additionally the granularity of the grant table doesn't allow sharing less than a 4K page, leading to unrelated data residing in the same 4K page as data shared with a backend being accessible by such backend (CVE-2022-33741, CVE-2022-33742). (CVE-2022-26365, CVE-2022-33740, CVE-2022-33741, CVE-2022-33742)\n\n - nfqnl_mangle in net/netfilter/nfnetlink_queue.c in the Linux kernel through 5.18.14 allows remote attackers to cause a denial of service (panic) because, in the case of an nf_queue verdict with a one-byte nfta_payload attribute, an skb_pull can encounter a negative skb->len. (CVE-2022-36946)\n\nNote that Nessus has not tested for these issues but has instead relied only on the application's self-reported version number.", "cvss3": {}, "published": "2022-08-10T00:00:00", "type": "nessus", "title": "SUSE SLES12 Security Update : kernel (SUSE-SU-2022:2721-1)", "bulletinFamily": "scanner", "cvss2": {}, "cvelist": ["CVE-2020-15393", "CVE-2020-36557", "CVE-2020-36558", "CVE-2021-33655", "CVE-2021-33656", "CVE-2021-39713", "CVE-2022-1462", "CVE-2022-20166", "CVE-2022-2318", "CVE-2022-26365", "CVE-2022-33740", "CVE-2022-33741", "CVE-2022-33742", "CVE-2022-36946"], "modified": "2023-03-10T00:00:00", "cpe": ["p-cpe:/a:novell:suse_linux:kernel-default", "p-cpe:/a:novell:suse_linux:kernel-default-base", "p-cpe:/a:novell:suse_linux:kernel-default-devel", "p-cpe:/a:novell:suse_linux:kernel-devel", "p-cpe:/a:novell:suse_linux:kernel-macros", "p-cpe:/a:novell:suse_linux:kernel-source", "p-cpe:/a:novell:suse_linux:kernel-syms", "cpe:/o:novell:suse_linux:12"], "id": "SUSE_SU-2022-2721-1.NASL", "href": "https://www.tenable.com/plugins/nessus/163994", "sourceData": "##\n# (C) Tenable, Inc.\n#\n# The package checks in this plugin were extracted from\n# SUSE update advisory SUSE-SU-2022:2721-1. 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