Import Source
https://github.com/microsoft/AzureLinuxVulnerabilityData/blob/main/osv/AZL-96102.json
JSON Data
https://api.osv.dev/v1/vulns/AZL-96102
Upstream
Published
2026-08-15T13:17:52Z
Modified
2026-08-31T05:26:27Z
Summary
CVE-2026-74481 affecting package kernel 6.6.150.1-1
Details

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

mm/pagereporting: use systemfreezable_wq to fix UAF during suspend

During PM freeze (e.g. S3 suspend or S4 hibernation), device drivers like virtioballoon reset their underlying virtio devices and delete their virtqueues via vdev->config->delvqs().

However, page reporting work (pagereportingprocess) was scheduled on the global systemwq. Because systemwq lacks the WQFREEZABLE flag, the PM freezer skips it, leaving pagereporting_process active during suspend.

If pages are freed into the buddy allocator while suspending (for example, when core MM invokes the balloon shrinker during S4 hibernation image saving), page reporting triggers virtballoonfreepage_report() on deleted virtqueues, resulting in a Use-After-Free / General Protection Fault:

[  196.795226] general protection fault, probably for non-canonical address 0xaa1436fe70dae6df: 0000 [#1] SMP NOPTI
[  196.825967] Workqueue: events page_reporting_process
[  196.831038] RIP: 0010:virtqueue_add_split+0x233/0x4c0 [virtio_ring]
[  196.927073] virtballoon_free_page_report+0x3a/0xe0 [virtio_balloon]
[  196.946943] page_reporting_process+0x370/0x4f0

Fix this by switching page reporting work to systemfreezablewq. This ensures that the PM freezer pauses pagereportingprocess before device drivers destroy their reporting virtqueues. Because the reporting worker is frozen, memory reclamation/freeing (e.g. via shrinker execution) can safely return pages to MM during freeze without triggering unfrozen reporting work on deleted virtqueues.

This aligns with the driver's existing design. The comment in virtballoon_freeze() states: /* * The workqueue is already frozen by the PM core before this * function is called. */

Testing: I have verified these fixes using Google’s virtualization infrastructure by running continuous suspend/resume iterations (40+ cycles) while churning memory using stress-ng (stress-ng --vm 4 --vm-bytes 60% --timeout 1) to constantly create free pages for the buddy allocator. We also set the page_reporting_order parameter to 0 to make the page reporting worker highly sensitive, forcing it to pick up any 4K free pages. This confirmed that the UAF crashes are no longer reproducible.

References

Affected packages

Azure Linux:3 / kernel

Package

Name
kernel
Purl
pkg:rpm/azure-linux/kernel

Affected ranges

Type
ECOSYSTEM
Events
Introduced
0Unknown introduced version / All previous versions are affected
Last affected
6.6.150.1-1

Database specific

source
"https://github.com/microsoft/AzureLinuxVulnerabilityData/blob/main/osv/AZL-96102.json"