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CVE-2026-93275

perf/x86/intel/pt: Fix stop/start with no update

In the Linux kernel, the following vulnerability has been resolved:

perf/x86/intel/pt: Fix stop/start with no update

If pt_event_stop() is called without PERF_EF_UPDATE flag, then
perf_aux_output_end() is not called.  A subsequent call to pt_event_start()
will call perf_aux_output_begin() again which violates the rule against
nesting and triggers a WARNING in perf_aux_output_begin().

Originally, pt_event_stop() was never called without PERF_EF_UPDATE,
because the only code paths to do so are from event overflow, and Intel PT
does not do that.

However the introduction of group throttling by commit 9734e25fbf5ae
("perf: Fix the throttle logic for a group") meant that an Intel PT event
could be throttled if it was part of a group.  Throttling calls PMU
 ->stop() / ->start() callbacks without flags.

An example is when AUX area sampling is used. The following commands
hit the issue:

  echo 10000 > /proc/sys/kernel/perf_event_max_sample_rate

  perf record -F32000 --aux-sample -e '{intel_pt//u,cycles:u}' \
  -- bash -c 'for i in `seq 1 100000` ; do true ; done'

Use PERF_HES_UPTODATE to track whether perf_aux_output_begin() and
perf_aux_output_end() are balanced.  A cleared PERF_HES_UPTODATE bit
indicates that an AUX output context is still open.

Amend pt_event_start() / pt_event_stop() accordingly so that begin/end
stay balanced:

 - In non-snapshot mode, stop() always closes the buffer (the buffer may
   have run out of space, and that accounting is done by the update), so
   a following start() opens a fresh one as before.

 - In snapshot/overwrite mode, stop() without PERF_EF_UPDATE leaves the
   buffer open so that pt_event_snapshot_aux() can still copy from it,
   and start() then only re-enables tracing instead of calling
   perf_aux_output_begin() again.

Note that pt_event_del() calls pt_event_stop() with PERF_EF_UPDATE flag set
(as is required by the documentation), so a final call to
perf_aux_output_end() is assured.
Daten sind bereitgestellt durch das CVE Programm von einer CVE Numbering Authority (CNA) (Unstrukturiert).
HerstellerLinux
≫
Produkt Linux
Default Statusunaffected
Version 52ca9ced3f70779589e6ecc329baffe69d8f5f7a
Version < 9b919fb5512f256e9e0604faf960b2bb98aab454
Status affected
Version 52ca9ced3f70779589e6ecc329baffe69d8f5f7a
Version < cab5015ee3f25f789b4a368f2abfa65536576b78
Status affected
Version 52ca9ced3f70779589e6ecc329baffe69d8f5f7a
Version < 304844b5545f444d523286da8228a1cbc46ffffa
Status affected
Version 52ca9ced3f70779589e6ecc329baffe69d8f5f7a
Version < 2e17bf3a469a41457a3bc31b1f8fd66b6ce94a6d
Status affected
HerstellerLinux
≫
Produkt Linux
Default Statusaffected
Version 4.1
Status affected
Version 0
Version < 4.1
Status unaffected
Version <= 6.12.*
Version 6.12.110
Status unaffected
Version <= 6.18.*
Version 6.18.52
Status unaffected
Version <= 7.2.*
Version 7.2.6
Status unaffected
Version <= *
Version 7.3-rc1
Status unaffected
VulnDex Vulnerability Enrichment
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Typ Quelle Score Percentile
EPSS FIRST.org 0.19% 0.073
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Es wurden noch keine Informationen zu CWE veröffentlicht.
https://git.kernel.org/stable/c/9b919fb5512f256e9e0604faf960b2bb98aab454
https://git.kernel.org/stable/c/cab5015ee3f25f789b4a368f2abfa65536576b78
https://git.kernel.org/stable/c/304844b5545f444d523286da8228a1cbc46ffffa
https://git.kernel.org/stable/c/2e17bf3a469a41457a3bc31b1f8fd66b6ce94a6d