CVE-2026-80916 PUBLISHED

kcov: fix data corruption and race conditions on PREEMPT_RT

Assigner: Linux
Reserved: 26.08.2026 Published: 09.09.2026 Updated: 09.09.2026

In the Linux kernel, the following vulnerability has been resolved:

kcov: fix data corruption and race conditions on PREEMPT_RT

syzbot is reporting KCOV state corruption on PREEMPT_RT kernels, for the temporary storage used for saving/restoring remote KCOV state is currently allocated as the per-CPU area.

On PREEMPT_RT kernels, softirq handlers run as preemptible task threads (e.g., ksoftirqd). If a softirq context preempts a task running a remote KCOV session, it safely saves the task's state into the per-CPU area. However, if that softirq thread is subsequently preempted by a higher- priority softirq thread on the same CPU, the second softirq will overwrite the same per-CPU area, permanently destroying the original task's KCOV state.

Fix this data corruption by moving the temporary storage from the per-CPU area to the per-thread area. Since each softirq thread now owns its own task context, nested softirq preemption no longer causes data overwrites.

Note that while the temporary storage is now on a per-thread basis, the per-CPU kcov_percpu_data.lock must be retained, for we need to ensure that kcov_remote_start() and kcov_remote_stop() operate atomically without racing against asynchronous interrupts that manipulate the current task's KCOV state.

It is likely that GFP_KERNEL allocation by vmalloc_node() in kcov_init() has already called panic() before returning NULL, for there will be no OOM-killable userspace processes when __init function of built-in module runs. But this patch also fixes crashing the kernel when vmalloc_node() in kcov_init() returned NULL, for kcov_init() left per-CPU irq_area == NULL but kcov_remote_start() depends on per-CPU irq_area != NULL, resulting in

(1) doing vmalloc() in kcov_remote_start() despite !in_task() context

(2) out-of-array-bounds access if (1) succeeded but kcov->remote_size < CONFIG_KCOV_IRQ_AREA_SIZE

(3) always leak memory allocated by (1), eventually killing all OOM-killable userspace processes

problems.

Product Status

Vendor Linux
Product Linux
Versions Default: unaffected
  • affected from 5ff3b30ab57da82d8db4f14662a2858cabfbc2c0 to ef7048d8a614c5f5a9b20513a5428101a744514e (excl.)
  • affected from 5ff3b30ab57da82d8db4f14662a2858cabfbc2c0 to 8ed3ddf23d39bf5338406bd9f8863d44748cf6ce (excl.)
  • affected from 5ff3b30ab57da82d8db4f14662a2858cabfbc2c0 to 5dc59fc959b2b5742985d7ef24bccd1868217dc2 (excl.)
  • affected from 5ff3b30ab57da82d8db4f14662a2858cabfbc2c0 to a2fb8222cde23b0001812ed3acb7c0ea36dd94e2 (excl.)
  • affected from 5ff3b30ab57da82d8db4f14662a2858cabfbc2c0 to 18799e858b407bf355383c9dd6c06477aa437134 (excl.)
  • affected from 5ff3b30ab57da82d8db4f14662a2858cabfbc2c0 to e11f5b48c82703242a3be7a7ae4b4940b4cb4610 (excl.)
  • affected from 5ff3b30ab57da82d8db4f14662a2858cabfbc2c0 to 22670d1552fe155822b2abf91f920925f7d067b4 (excl.)
  • affected from 5ff3b30ab57da82d8db4f14662a2858cabfbc2c0 to f8c9a3ec36b4ee3d4701b9be08f40e7bfbf89761 (excl.)
  • affected from 5ff3b30ab57da82d8db4f14662a2858cabfbc2c0 to 2eed77fdcb0cc48e8eccb2bcd4b7f2c6d650e84c (excl.)
Vendor Linux
Product Linux
Versions Default: affected
  • Version 5.8 is affected
  • unaffected from 0 to 5.8 (excl.)
  • unaffected from 5.10.269 to 5.10.* (incl.)
  • unaffected from 5.15.220 to 5.15.* (incl.)
  • unaffected from 6.1.185 to 6.1.* (incl.)
  • unaffected from 6.6.154 to 6.6.* (incl.)
  • unaffected from 6.12.106 to 6.12.* (incl.)
  • unaffected from 6.18.47 to 6.18.* (incl.)
  • unaffected from 7.1.11 to 7.1.* (incl.)
  • unaffected from 7.2.1 to 7.2.* (incl.)
  • unaffected from 7.3-rc1 to * (incl.)

References