Linux vulnerability

In the Linux kernel, the following vulnerability has been resolved: bridge: mrp: reject zero test interval to avoid OOM panic br_mrp_start_test() and br_mrp_start_in_test() accept the user-supplied interval value from netlink without validation. When interval is 0, usecs_to_jiffies(0) yields 0, causing the delayed work (br_mrp_test_work_expired / br_mrp_in_test_work_expired) to reschedule itself with zero delay. This creates a tight loop on system_percpu_wq that allocates and transmits MRP test frames at maximum rate, exhausting all system memory and causing a kernel panic via OOM deadlock. The same zero-interval issue applies to br_mrp_start_in_test_parse() for interconnect test frames. Use NLA_POLICY_MIN(NLA_U32, 1) in the nla_policy tables for both IFLA_BRIDGE_MRP_START_TEST_INTERVAL and IFLA_BRIDGE_MRP_START_IN_TEST_INTERVAL, so zero is rejected at the netlink attribute parsing layer before the value ever reaches the workqueue scheduling code. This is consistent with how other bridge subsystems (br_fdb, br_mst) enforce range constraints on netlink attributes.

Published 13 Apr 2026Updated 14 Sep 20268 sources
CVSS 5.5

What happened

In the Linux kernel, the following vulnerability has been resolved: bridge: mrp: reject zero test interval to avoid OOM panic br_mrp_start_test() and br_mrp_start_in_test() accept the user-supplied interval value from netlink without validation. When interval is 0, usecs_to_jiffies(0) yields 0, causing the delayed work (br_mrp_test_work_expired / br_mrp_in_test_work_expired) to reschedule itself with zero delay. This creates a tight loop on system_percpu_wq that allocates and transmits MRP test frames at maximum rate, exhausting all system memory and causing a kernel panic via OOM deadlock. The same zero-interval issue applies to br_mrp_start_in_test_parse() for interconnect test frames. Use NLA_POLICY_MIN(NLA_U32, 1) in the nla_policy tables for both IFLA_BRIDGE_MRP_START_TEST_INTERVAL and IFLA_BRIDGE_MRP_START_IN_TEST_INTERVAL, so zero is rejected at the netlink attribute parsing layer before the value ever reaches the workqueue scheduling code. This is consistent with how other bridge subsystems (br_fdb, br_mst) enforce range constraints on netlink attributes.

Affected versions

Linux: 20f6a05ef63594feb0c6dfbd629da0448b43124d through before 610073ffb77ffd2b5eca182d2ac264de4834a175 (git); 20f6a05ef63594feb0c6dfbd629da0448b43124d through before ec8850be9b2b3beac1c7967d95f169dd2785979d (git); 20f6a05ef63594feb0c6dfbd629da0448b43124d through before 1ec86b4b9e28170a2565cf36f0e6e2b96b55134d (git); 20f6a05ef63594feb0c6dfbd629da0448b43124d through before 2120bd8546cd6a63c558d135773aa8f41c8259fc (git); 20f6a05ef63594feb0c6dfbd629da0448b43124d through before 630a15a31c2034b5b697f4aabc769b9d80d82446 (git); 20f6a05ef63594feb0c6dfbd629da0448b43124d through before e8ec80430bfa520e7352155d6ac632e527cba7aa (git); 20f6a05ef63594feb0c6dfbd629da0448b43124d through before c9bc352f716d1bebfe43354bce539ec2d0223b30 (git); 20f6a05ef63594feb0c6dfbd629da0448b43124d through before fa6e24963342de4370e3a3c9af41e38277b74cf3 (git); 5.8 Fixed: See vendor advisory.

Why it matters

Review the vendor advisory and exposure of the affected product to determine operational impact.

Detection & mitigation

  • Apply vendor-provided updates or mitigations.
  • Review affected product exposure and access logs.

Public PoC references

No public PoC reference has passed the current publication threshold.