Answer in brief
CVE-2026-72322 records a Unknown severity vulnerability in ipv6: mcast: Fix potential UAF in MLD delayed work. The current sources do not mark it as known exploited. The current feed maps 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.
Answer in brief
CVE-2026-72322 records a Unknown severity vulnerability in ipv6: mcast: Fix potential UAF in MLD delayed work. The current sources do not mark it as known exploited. The current feed maps 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.
A CVSS score is not reported in the current record. 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). Check affected ranges and fixed versions before updating.
| Package | Affected range | Fixed version |
|---|---|---|
| Linux/Linuxgeneric | >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <f12b63ef26a035c5a29b3ef56401e38199010d4a || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <0401d6cf7877c9be36652385dfcbf7f891b8b590 || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <f03b0a45535d49bdab7e502efaacee205b2a7865 || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <9815e834f5ff8b39e0ea9f0dbd532f4a3b8f0785 || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <ebbebf6cee950d7f1c81990256c0eae9e62572ae || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <9ce741c22df4fd9546e30306317ac7df3607e48f || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <0458ba1cda830ba4ccfcd9e19c0891438bcdbe4e || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <9b26518b6896a16b809b1e42986f4ebac7bccc1e | f12b63ef26a035c5a29b3ef56401e38199010d4a, 0401d6cf7877c9be36652385dfcbf7f891b8b590, f03b0a45535d49bdab7e502efaacee205b2a7865, 9815e834f5ff8b39e0ea9f0dbd532f4a3b8f0785, ebbebf6cee950d7f1c81990256c0eae9e62572ae, 9ce741c22df4fd9546e30306317ac7df3607e48f, 0458ba1cda830ba4ccfcd9e19c0891438bcdbe4e, 9b26518b6896a16b809b1e42986f4ebac7bccc1e |
| Linux/Linuxgeneric | 2.6.12 | Not reported |
Published upstream
Aug 15, 2026
Evidence: source:cvelist:source_dates:source-dates:recordSource modified
Aug 15, 2026
Evidence: source:cvelist:source_dates:source-dates:recordFirst seen by HOL
Aug 15, 2026
In the Linux kernel, the following vulnerability has been resolved: ipv6: mcast: Fix potential UAF in MLD delayed work A race condition exists between device teardown and incoming MLD query processing, leading to a Use-After-Free in the MLD delayed work. During device destruction, the primary reference to inet6_dev is dropped, which can drop its refcount to 0. The actual freeing of inet6_dev memory is deferred via RCU. Concurrently, the packet receive path runs under RCU read lock and obtains the inet6_dev pointer. Because the memory is RCU-protected, CPU-0 can safely dereference inet6_dev even if its refcount has hit 0. However, if CPU-0 calls igmp6_event_query() and schedules delayed work, it attempts to acquire a reference using in6_dev_hold(). This increments the refcount from 0 to 1, triggering a "refcount_t: addition on 0" warning. Since the inet6_dev memory is still scheduled to be freed after the RCU grace period, the device is freed while the work is still scheduled. When the work runs, it accesses the freed memory, causing a kernel panic. Fix this by using refcount_inc_not_zero() (via a new helper in6_dev_hold_safe()) to prevent acquiring a reference if the device is already being destroyed. If the refcount is 0, we do not schedule the work.
Quoted source text, attributed separately from HOL analysis.
A CVSS score is not reported in the current record. 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). Check affected ranges and fixed versions before updating.
| Package | Affected range | Fixed version |
|---|---|---|
| Linux/Linuxgeneric | >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <f12b63ef26a035c5a29b3ef56401e38199010d4a || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <0401d6cf7877c9be36652385dfcbf7f891b8b590 || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <f03b0a45535d49bdab7e502efaacee205b2a7865 || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <9815e834f5ff8b39e0ea9f0dbd532f4a3b8f0785 || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <ebbebf6cee950d7f1c81990256c0eae9e62572ae || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <9ce741c22df4fd9546e30306317ac7df3607e48f || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <0458ba1cda830ba4ccfcd9e19c0891438bcdbe4e || >=1da177e4c3f41524e886b7f1b8a0c1fc7321cac2 <9b26518b6896a16b809b1e42986f4ebac7bccc1e | f12b63ef26a035c5a29b3ef56401e38199010d4a, 0401d6cf7877c9be36652385dfcbf7f891b8b590, f03b0a45535d49bdab7e502efaacee205b2a7865, 9815e834f5ff8b39e0ea9f0dbd532f4a3b8f0785, ebbebf6cee950d7f1c81990256c0eae9e62572ae, 9ce741c22df4fd9546e30306317ac7df3607e48f, 0458ba1cda830ba4ccfcd9e19c0891438bcdbe4e, 9b26518b6896a16b809b1e42986f4ebac7bccc1e |
| Linux/Linuxgeneric | 2.6.12 | Not reported |
Published upstream
Aug 15, 2026
Evidence: source:cvelist:source_dates:source-dates:recordSource modified
Aug 15, 2026
Evidence: source:cvelist:source_dates:source-dates:recordFirst seen by HOL
Aug 15, 2026
In the Linux kernel, the following vulnerability has been resolved: ipv6: mcast: Fix potential UAF in MLD delayed work A race condition exists between device teardown and incoming MLD query processing, leading to a Use-After-Free in the MLD delayed work. During device destruction, the primary reference to inet6_dev is dropped, which can drop its refcount to 0. The actual freeing of inet6_dev memory is deferred via RCU. Concurrently, the packet receive path runs under RCU read lock and obtains the inet6_dev pointer. Because the memory is RCU-protected, CPU-0 can safely dereference inet6_dev even if its refcount has hit 0. However, if CPU-0 calls igmp6_event_query() and schedules delayed work, it attempts to acquire a reference using in6_dev_hold(). This increments the refcount from 0 to 1, triggering a "refcount_t: addition on 0" warning. Since the inet6_dev memory is still scheduled to be freed after the RCU grace period, the device is freed while the work is still scheduled. When the work runs, it accesses the freed memory, causing a kernel panic. Fix this by using refcount_inc_not_zero() (via a new helper in6_dev_hold_safe()) to prevent acquiring a reference if the device is already being destroyed. If the refcount is 0, we do not schedule the work.
Quoted source text, attributed separately from HOL analysis.