CVE-2026-89762

Summary

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

apparmor: fix cred UAF caused by begin_current_label_crit_section()

AppArmor's begin_current_label_crit_section() is a scary function called from lots of LSM hooks (in particular VFS/socket-related ones) that checks if the label referenced by the current creds is marked FLAG_STALE, and if so, attempts to use aa_replace_current_label() to replace the creds with an updated version that uses a new label.

The first problem with this is that it would directly lead to UAF of struct cred if anything in the kernel takes a pointer to the current creds and accesses these past a security hook invocation that replaces creds, like so:

const struct cred *cred = current_cred();
alloc_file_pseudo(...);
uid_t uid = cred->euid;

I don't know if anything in the kernel actually does this, but I think it is very surprising that this pattern could lead to UAF.

The second problem is that things go wrong when aa_replace_current_label() runs with overridden credentials. aa_replace_current_label() bails out if current_cred() != current_real_cred() (mirroring the check in proc_pid_attr_write()), but this check can't actually reliably detect overridden credentials because the overridden creds can be the same as the objective creds.

So in approximately the following scenario, things go wrong:

  1. task begins with <creds A> (as both objective and subjective creds), with refcount=2
  2. task grabs an extra reference on <creds A> for overriding
  3. task calls override_creds(<creds A>), which returns a pointer to the old subjective creds (<creds A>)
  4. task enters AppArmor LSM hook
  5. AppArmor checks that objective/subjective creds are equal
  6. AppArmor replaces both cred pointers with <creds B> and drops 2 refs on <creds A>
  7. task leaves AppArmor LSM hook
  8. task calls revert_creds(<creds A>)
  9. now task->cred is <creds A> while task->real_cred is <creds B>, but the task_struct logically holds two references to <creds B>
  10. another task drops the extra reference on <creds A> that was used for overriding, refcount drops to 0
  11. now task->real_cred points to freed creds

At this point, any access to current_cred() will be UAF.

I have a test case where I run aa-disable on a profile while a process using that profile is blocked on splice() from a FUSE passthrough file into a full pipe; after the profile update, the pipe becomes empty, splice() resumes, the credentials go out of sync, and a subsequent getuid() syscall results in a KASAN UAF splat.

To fix this, instead of directly replacing creds, do it via task_work that will run at the end of the current syscall. (The point in time at which the cred replacement happens should have no correctness impact; it is just a performance optimization to avoid unnecessarily touching the refcount of the new label.)

Note that AppArmor still performs direct cred replacements in the sb_pivotroot LSM hook after this change, and that direct cred replacements can still happen in VFS ->write() callbacks via proc_pid_attr_write().

There are two options for what to do with aa_dup_task_ctx(): Either explicitly reset new->label_replacement_pending after the entire aa_task_ctx has been copied, or switch to manually copying members over. I am switching to manually copying members over because that should make bugs more obvious.

Affected Software

VendorProductVersion RangeStatus
LinuxLinuxc75afcd153f6147d3b094f45a1d87e5df7f4f053 < 361488984d668235438faac28635f3632351407faffected
LinuxLinuxc75afcd153f6147d3b094f45a1d87e5df7f4f053 < 587a6a92b93ec314c583bbf747413af170d42540affected
LinuxLinuxc75afcd153f6147d3b094f45a1d87e5df7f4f053 < 580f777d6d9fd07fc034bd1aeba5c30fd48871a2affected
LinuxLinuxc75afcd153f6147d3b094f45a1d87e5df7f4f053 < 3f4ae5fab613dca01d6a2a8210dd832e009fcf47affected
LinuxLinux2.6.36affected
LinuxLinux0 < 2.6.36unaffected
LinuxLinux6.12.109 <= 6.12.*unaffected
LinuxLinux6.18.50 <= 6.18.*unaffected
LinuxLinux7.2.4 <= 7.2.*unaffected
LinuxLinux7.3-rc1 <= *unaffected

Weaknesses

References