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  <updated>2026-09-29T07:25:24.417238+00:00</updated>
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  <entry>
    <id>https://vulnerability.circl.lu/vuln/cve-2026-63799</id>
    <title>CVE-2026-63799 — sched/mmcid: Fix OOB clear_bit when CID is MM_CID_UNSET in fixup path</title>
    <updated>2026-09-29T07:25:24.421421+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>sched/mmcid: Fix OOB clear_bit when CID is MM_CID_UNSET in fixup path</p>
<p>In mm_cid_fixup_cpus_to_tasks(), when rq-&gt;curr has the target mm and
mm_cid.active is set, the CID is checked with cid_in_transit() before
setting the transition bit.  In per-CPU mode a newly forked or exec'd
task can be running with mm_cid.cid == MM_CID_UNSET because CIDs are
assigned lazily on schedule-in.  With cid_in_transit() the guard passes
for MM_CID_UNSET (no transit bit), converts it to MM_CID_UNSET |
MM_CID_TRANSIT and stores it back; later mm_cid_schedout() feeds this
to clear_bit() with MM_CID_UNSET as the bit number, triggering an
out-of-bounds write.</p>
<p>Symptoms: this is genuine memory corruption, but a bounded out-of-bounds
write, not an arbitrary one.  MM_CID_UNSET is the fixed sentinel BIT(31),
so once the bad value reaches mm_cid_schedout() the cid_from_transit_cid()
strip leaves MM_CID_UNSET, which fails the "cid &lt; max_cids" convergence
test and falls into mm_drop_cid() -&gt; clear_bit(MM_CID_UNSET,
mm_cidmask(mm)).  The cid bitmap is embedded in the mm_struct slab object
(after cpu_bitmap and mm_cpus_allowed) and is only num_possible_cpus()
bits wide, so clearing bit 31 is a deterministic OOB bit-clear at a
fixed offset of 2^31 / 8 == 256 MiB past the bitmap base.  The address is
not attacker-influenced (fixed sentinel -&gt; fixed offset) and the op only
clears a single bit; what sits 256 MiB further along the direct map is…</p></div>
    </content>
    <link href="https://vulnerability.circl.lu/vuln/cve-2026-63799"/>
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