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  <updated>2026-09-29T04:43:06.553088+00:00</updated>
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  <entry>
    <id>https://vulnerability.circl.lu/vuln/cve-2026-89580</id>
    <title>CVE-2026-89580 — bpf: Disable preemption in __bpf_get_stack</title>
    <updated>2026-09-29T04:43:06.566025+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>bpf: Disable preemption in __bpf_get_stack</p>
<p>get_perf_callchain() returns a per-CPU perf_callchain_entry buffer and
releases its recursion slot via put_callchain_entry() before returning,
so nothing keeps the entry reserved while __bpf_get_stack() consumes
it below.</p>
<p>A preemptible BPF program (e.g. a non-sleepable raw tracepoint program
on a PREEMPT kernel, which runs under migrate_disable() but not
preempt_disable()) can be scheduled out between obtaining the entry
and the copy. Another task scheduled on the same CPU then reuses the
same per-CPU buffer and overwrites trace-&gt;nr with a larger value.
copy_len is then computed from the inflated trace-&gt;nr and can exceed
the caller's buffer, causing an out-of-bounds write in the memcpy()
and in the build_id path.</p>
<p>The rcu_read_lock() taken here alone does not prevent this. It is
only taken on the may_fault path, and under CONFIG_PREEMPT_RCU it does
not disable preemption; it merely keeps perf's callchain buffer array
alive (freed via call_rcu()) and does nothing to stop another task
from reusing the entry.</p>
<p>Disable preemption around obtaining the callchain entry and copying
it into the caller's buffer, so the entry cannot be reused underneath
us and trace-&gt;nr stays bounded by max_depth. Build ID resolution may
fault and is therefore deferred until after preemption is re-enabled;
by then the instruction pointers have already been copied into buf,
so it operates on…</p></div>
    </content>
    <link href="https://vulnerability.circl.lu/vuln/cve-2026-89580"/>
  </entry>
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