OSV 1.4.0 · unreviewed · 修改于 2026-08-25 14:31
发布时间
2026-08-23 02:30
GitHub 审查时间
—
NVD 发布时间
2026-08-23 00:16
源文件
advisories/unreviewed/2026/08/GHSA-r9r5-95ff-67hq/GHSA-r9r5-95ff-67hq.json
In the Linux kernel, the following vulnerability has been resolved:
net/smc: fix TOCTOU race between smc_listen_out() and listener close
smc_listen_out() reads lsmc->sk.sk_state without the listener lock, then acquires lock_sock_nested() only after the check passes. This opens a window where smc_close_active() can transition the listener to SMC_CLOSED, call smc_close_cleanup_listen() to drain the accept queue, and release the lock, all between the lockless read and the delayed lock acquisition:
smc_listen_work (smc_hs_wq) smc_close_active()
release_sock(child) if (sk_state == SMC_LISTEN) TRUE lock_sock(listener) sk_state = SMC_CLOSED smc_close_cleanup_listen() release_sock(listener) flush_work(tcp_listen_work) lock_sock_nested(listener) smc_accept_enqueue(listener, child) /* child enqueued on dead listener */
smc_close_active() flushes only tcp_listen_work. Work items already dispatched onto smc_hs_wq for the CLC handshake continue running unguarded. smc_accept_enqueue() takes a sock_hold() on the child that is never released, so the child smc_sock, its clcsock, and the reference all leak. A remote peer that opens TCP connections while the server calls close() can exhaust kernel memory.
Move lock_sock_nested() to before the sk_state check so that the test and the enqueue are atomic under the listener lock.
该公告没有提供结构化的受影响软件包信息。