CVE Catalog

CVE-2026-72491

CriticalCVSS 9.8
Published: Updated: Translated: NVD NIST

Exploitation Probability (EPSS)

Low risk
0.22%

13th percentile - higher than 13% of all known CVEs

Summary

A race condition was found in the Linux kernel's 9p/RDMA driver (trans_rdma.c) affecting the rdma->state field. The field is modified without req_lock in recv_done() and p9_cm_event_handler(), while rdma_request() uses the lock. This can lead to lost state transitions, corrupted connection state machine, and use-after-free of RDMA request objects during teardown.

Risk Assessment

The risk includes instability of 9p/RDMA connections, potential kernel panic, or memory corruption due to use-after-free. An attacker with network access could intentionally trigger the race, destabilizing services relying on 9p.

Recommendation

Apply the official Linux kernel patch that adds req_lock protection to all rdma->state modifications in recv_done() and p9_cm_event_handler(). Update the system to a patched kernel version.

Original NVD description (English source)

In the Linux kernel, the following vulnerability has been resolved: net/9p: fix race condition on rdma->state in trans_rdma.c The rdma->state field is modified without holding req_lock in both recv_done() and p9_cm_event_handler(), while rdma_request() accesses the same field under the req_lock spinlock. This inconsistent locking creates a race condition: - recv_done() running in softirq completion context sets rdma->state = P9_RDMA_FLUSHING without acquiring req_lock - p9_cm_event_handler() modifies rdma->state at multiple points (ADDR_RESOLVED, ROUTE_RESOLVED, ESTABLISHED, CLOSED) without req_lock - rdma_request() uses spin_lock_irqsave(&rdma->req_lock, flags) to protect the read-modify-write of rdma->state The race can cause lost state transitions: recv_done() or the CM event handler could set state to FLUSHING/CLOSED while rdma_request() is concurrently checking or modifying state under the lock, leading to the FLUSHING transition being silently overwritten by CLOSING. This corrupts the connection state machine and can cause use-after-free on RDMA request objects during teardown. Fix by adding req_lock protection to all rdma->state modifications in recv_done() and p9_cm_event_handler(), matching the pattern already used in rdma_request(). Use spin_lock_irqsave/spin_unlock_irqrestore in the CM event handler since it can race with recv_done() which runs in softirq context. Tested with a kernel module that races two threads (simulating rdma_request and recv_done/CM handler) on rdma->state with proper locking: 5.5M+ FLUSHING writes over 27M iterations with 0 lost transitions.

Vulnerability data from NVD (NIST) · CISA KEV · EPSS