-
CVE-2026-97945
- EPSS 0.2%
- Veröffentlicht 25.09.2026 10:22:55
- Zuletzt bearbeitet 03.10.2026 11:18:19
- Erkennungen
x86/mm: Fix user-space data loss with MADV_FREE and THP
In the Linux kernel, the following vulnerability has been resolved:
x86/mm: Fix user-space data loss with MADV_FREE and THP
Some of users of Polars (a data analytics library) have lost production
data from this bug. They seem to have just the right combination of
huge pages, MADV_FREE and heavy reclaim pressure.
pmd_modify() masks the old value with (_HPAGE_CHG_MASK & ~_PAGE_DIRTY),
silently discarding the hardware dirty bit. The subsequent
pmd_mksaveddirty() call is supposed to transfer _PAGE_DIRTY into
_PAGE_SAVED_DIRTY when write-protecting, but the dirty bit was already
stripped from the value, so there is nothing left to transfer.
Contrast with pte_modify(), which keeps _PAGE_DIRTY_BITS in its mask,
and pud_modify(), which keeps _HPAGE_CHG_MASK untouched: pmd_modify()
is the odd one out. Any pmd_modify() on a writable, dirty PMD loses
the dirty state.
One visible consequence is data loss with MADV_FREE on PMD-mapped THP:
memset(buf, 0x5A, size); // PMD-mapped THP, PMD dirty
madvise(buf, size, MADV_FREE); // PMD cleaned but left writable,
// folio marked lazyfree
memset(buf, 0x5A, size); // hardware sets _PAGE_DIRTY again
mprotect(buf, size, PROT_READ); // pmd_modify() drops the dirty bit
mprotect(buf, size, PROT_READ|PROT_WRITE);
// ... memory pressure ...
Reclaim (e.g. under memcg pressure) then finds the lazyfree folio with
no dirty bit set anywhere and frees it in
__discard_anon_folio_pmd_locked(), even though the data was rewritten
after MADV_FREE; subsequent reads fault in fresh zero pages. NUMA
hinting alone can trigger the same loss, as do_huge_pmd_numa_page()
restores the PMD through pmd_modify() as well.
PMD-mapped file THPs are affected too: mprotect()/NUMA hinting dropping
the dirty bit means rewritten data is never written back.
Fix it by keeping _PAGE_DIRTY in the preserved mask, exactly like
pte_modify() and pud_modify() do. The existing
pmd_mksaveddirty()/pmd_clear_saveddirty() pair then performs the
hardware-dirty <-> saved-dirty transition based on the write bit,
preserving the shadow-stack encoding rules.Daten sind bereitgestellt durch das CVE Programm von einer CVE Numbering Authority (CNA) (Unstrukturiert).
HerstellerLinux
≫
Produkt
Linux
Default Statusunaffected
Version
bb3aadf7d446aaf22c725b274e2c194ac5cb2111
Version <
b5dec6dfb593d81fec15ba43c4fe5d58f10a49a2
Status
affected
Version
bb3aadf7d446aaf22c725b274e2c194ac5cb2111
Version <
e4d569fe2f436a9b58c048fefabf56eab68c1b7e
Status
affected
Version
bb3aadf7d446aaf22c725b274e2c194ac5cb2111
Version <
55ddbc2ca6d5db64d44c3fb8f8705b4d39eb30b7
Status
affected
Version
bb3aadf7d446aaf22c725b274e2c194ac5cb2111
Version <
a5ad97cbcfcec31430268441c10eedde73200177
Status
affected
Version
bb3aadf7d446aaf22c725b274e2c194ac5cb2111
Version <
f7491d7c81db0e7c304a7bd757a76d2fbeaff80e
Status
affected
HerstellerLinux
≫
Produkt
Linux
Default Statusaffected
Version
6.6
Status
affected
Version
0
Version <
6.6
Status
unaffected
Version <=
6.6.*
Version
6.6.158
Status
unaffected
Version <=
6.12.*
Version
6.12.111
Status
unaffected
Version <=
6.18.*
Version
6.18.53
Status
unaffected
Version <=
7.2.*
Version
7.2.7
Status
unaffected
Version <=
*
Version
7.3-rc4
Status
unaffected
VulnDex Vulnerability Enrichment
| Typ | Quelle | Score | Percentile |
|---|---|---|---|
| EPSS | FIRST.org | 0.2% | 0.088 |
| Quelle | Base Score | Exploit Score | Impact Score | Vector String |
|---|
https://git.kernel.org/stable/c/e4d569fe2f436a9b58c048fefabf56eab68c1b7e
https://git.kernel.org/stable/c/55ddbc2ca6d5db64d44c3fb8f8705b4d39eb30b7
https://git.kernel.org/stable/c/a5ad97cbcfcec31430268441c10eedde73200177
https://git.kernel.org/stable/c/f7491d7c81db0e7c304a7bd757a76d2fbeaff80e
https://git.kernel.org/stable/c/b5dec6dfb593d81fec15ba43c4fe5d58f10a49a2