Answer in brief
CVE-2026-68082 records a Critical severity (CVSS 9.8) vulnerability in libceph: fix two unsafe bare decodes in decode_lockers(). The current sources do not mark it as known exploited. The current feed maps Linux/Linux (generic), Linux/Linux (generic), Linux/Linux (generic). Check affected ranges and fixed versions before updating.
Analysis pending evidence review
HOL Guard separates source facts from reviewed analysis. See the methodology.
CVSS is 9.8. The current sources do not mark it as known exploited. Treat this as a source-backed prioritization signal, not a statement about your environment.
Analysis status
Analysis pending evidence review
Factual feed record only; HOL analysis is not approved for indexing. Read the methodology.
The current feed maps Linux/Linux (generic), Linux/Linux (generic), Linux/Linux (generic). Check affected ranges and fixed versions before updating.
| Package | Affected range | Fixed version |
|---|---|---|
| Linux/Linuxgeneric | >=d4ed4a530562881cc5225050e42d96034f405aae <a54be593d0b749161b08a1e56189b2cb9114267a || >=d4ed4a530562881cc5225050e42d96034f405aae <a109a556115271ca7896dcda7b4b7e45e156c227 | a54be593d0b749161b08a1e56189b2cb9114267a, a109a556115271ca7896dcda7b4b7e45e156c227 |
| Linux/Linuxgeneric | 4.9 | Not reported |
| Linux/Linuxgeneric | >=d4ed4a530562881cc5225050e42d96034f405aae <c8ade01170a27d8ede0d761c255268af81e417f8 || >=d4ed4a530562881cc5225050e42d96034f405aae <001835c599899ef1bd3506a815110a6374451554 || >=d4ed4a530562881cc5225050e42d96034f405aae <7c422364acd93d7da1dfc27d6b54635a269653a1 || >=d4ed4a530562881cc5225050e42d96034f405aae <02430f6f729b297e803d0605871f0a670b4eafd6 || >=d4ed4a530562881cc5225050e42d96034f405aae <57ba829804fe6d34bbac3b826c4b15c1caa54862 || >=d4ed4a530562881cc5225050e42d96034f405aae <89df5d71f83f8e2781286798fd8ae5e42cf5f1a7 || >=d4ed4a530562881cc5225050e42d96034f405aae <a54be593d0b749161b08a1e56189b2cb9114267a || >=d4ed4a530562881cc5225050e42d96034f405aae <a109a556115271ca7896dcda7b4b7e45e156c227 | c8ade01170a27d8ede0d761c255268af81e417f8, 001835c599899ef1bd3506a815110a6374451554, 7c422364acd93d7da1dfc27d6b54635a269653a1, 02430f6f729b297e803d0605871f0a670b4eafd6, 57ba829804fe6d34bbac3b826c4b15c1caa54862, 89df5d71f83f8e2781286798fd8ae5e42cf5f1a7, a54be593d0b749161b08a1e56189b2cb9114267a, a109a556115271ca7896dcda7b4b7e45e156c227 |
Published upstream
Aug 8, 2026
Evidence: source:cvelist:source_dates:source-dates:recordSource modified
Aug 23, 2026
Evidence: source:cvelist:source_dates:source-dates:recordFirst seen by HOL
Aug 8, 2026
In the Linux kernel, the following vulnerability has been resolved: libceph: fix two unsafe bare decodes in decode_lockers() decode_lockers() in cls_lock_client.c contains two bare decode operations that allow a malicious or compromised OSD to trigger slab-out-of-bounds reads: 1. ceph_decode_32(p) at the num_lockers field has no preceding bounds check. ceph_start_decoding() accepts struct_len=0 as valid -- the internal ceph_decode_need(p, end, 0, bad) always passes -- so when an OSD sends struct_len=0, ceph_start_decoding() returns success with p == end. The immediately following bare ceph_decode_32(p) then reads 4 bytes past the validated buffer boundary. The garbage value is passed directly to kzalloc_objs() as the locker count. The sibling function decode_watchers() in osd_client.c already uses ceph_decode_32_safe() after its own ceph_start_decoding() call. decode_lockers() was the only site using the bare variant. 2. ceph_decode_8(p) after the decode_locker() loop has no preceding bounds check. If an OSD crafts num_lockers such that the loop advances p exactly to end, the subsequent bare ceph_decode_8(p) reads one byte past the validated buffer boundary. The result is passed directly into *type, which is used as a lock type discriminator by callers, giving an OSD-controlled one-byte OOB read with direct influence over the lock type field. Fix both by replacing bare operations with their safe variants: ceph_decode_32(p) -> ceph_decode_32_safe(p, end, *num_lockers, err_inval) ceph_decode_8(p) -> ceph_decode_8_safe(p, end, *type, err_free_lockers) The goto targets differ intentionally: err_inval: is a new label returning -EINVAL directly. It is used for the pre-allocation failure path where *lockers is not yet allocated and must not be passed to ceph_free_lockers(). err_free_lockers: is the existing label. It is used for the post-allocation failure path where *lockers is allocated and must be freed. ret is set to -EINVAL before ceph_decode_8_safe() so that err_free_lockers returns the correct error code on bounds violation. Without this, err_free_lockers would return a stale ret value (0 from the successful decode_locker() loop), silently swallowing the error. -EINVAL is correct for both failure paths. The data received from the OSD is structurally malformed. -ENOMEM would misrepresent the failure class to callers and to stable@ backporters triaging error paths. Attacker model: a malicious or compromised OSD in a multi-tenant Ceph deployment can trigger this against any kernel client that issues the lock.get_info class method (e.g. during RBD exclusive lock acquisition). [ idryomov: trim changelog, formatting ]
Quoted source text, attributed separately from HOL analysis.