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  <updated>2026-10-01T05:17:01.332299+00:00</updated>
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  <entry>
    <id>https://vulnerability.circl.lu/vuln/cve-2026-46274</id>
    <title>CVE-2026-46274 — io-wq: check that the predecessor is hashed in io_wq_remove_pending()</title>
    <updated>2026-10-01T05:17:01.992496+00:00</updated>
    <content type="xhtml">
      <div xmlns="http://www.w3.org/1999/xhtml"><p><strong>Affected:</strong> Linux</p>
<p>In the Linux kernel, the following vulnerability has been resolved:</p>
<p>io-wq: check that the predecessor is hashed in io_wq_remove_pending()</p>
<p>io_wq_remove_pending() needs to fix up wq-&gt;hash_tail[] if the cancelled
work was the tail of its hash bucket. When doing this, it checks whether
the preceding entry in acct-&gt;work_list has the same hash value, but
never checks that the predecessor is hashed at all. io_get_work_hash()
is simply atomic_read(&amp;work-&gt;flags) &gt;&gt; IO_WQ_HASH_SHIFT, and the hash
bits are never set for non-hashed work, so it returns 0. Thus, when a
hashed bucket-0 work is cancelled while a non-hashed work is its list
predecessor, the check spuriously passes and a pointer to the non-hashed
io_kiocb is stored in wq-&gt;hash_tail[0].</p>
<p>Because non-hashed work is dequeued via the fast path in
io_get_next_work(), which never touches hash_tail[], the stale pointer
is never cleared. Therefore, after the non-hashed io_kiocb completes and
is freed back to req_cachep, wq-&gt;hash_tail[0] is a dangling pointer. The
io_wq is per-task (tctx-&gt;io_wq) and survives ring open/close, so the
dangling pointer persists for the lifetime of the task; the next hashed
bucket-0 enqueue dereferences it in io_wq_insert_work() and
wq_list_add_after() writes through freed memory.</p>
<p>Add the missing io_wq_is_hashed() check so a non-hashed predecessor
never inherits a hash_tail[] slot.</p></div>
    </content>
    <link href="https://vulnerability.circl.lu/vuln/cve-2026-46274"/>
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