CVE-2025-71069
Last modified
CVE-2025-71069 is a vulnerability of currently unknown severity. In the Linux kernel, the following vulnerability has been resolved: f2fs: invalidate dentry cache on failed whiteout creation F2FS can mount filesystems with corrupted directory depth values that get runtime-clamped to MAX_DIR_HASH_DEPTH. When RENAME_WHITEOUT operations are performed on such directories, f2fs_rename performs directory modifications (updating target entry and deleting source entry) before attempting to add the whiteout entry via f2fs_add_link. If f2fs_add_link fails due to the corrupted directory structure, the function returns an error to VFS, but the partial directory modifications have already been committed to disk. EPSS estimates a 0.17% chance of exploitation in the next 30 days.
Description
In the Linux kernel, the following vulnerability has been resolved: f2fs: invalidate dentry cache on failed whiteout creation F2FS can mount filesystems with corrupted directory depth values that get runtime-clamped to MAX_DIR_HASH_DEPTH. When RENAME_WHITEOUT operations are performed on such directories, f2fs_rename performs directory modifications (updating target entry and deleting source entry) before attempting to add the whiteout entry via f2fs_add_link. If f2fs_add_link fails due to the corrupted directory structure, the function returns an error to VFS, but the partial directory modifications have already been committed to disk. VFS assumes the entire rename operation failed and does not update the dentry cache, leaving stale mappings. In the error path, VFS does not call d_move() to update the dentry cache. This results in new_dentry still pointing to the old inode (new_inode) which has already had its i_nlink decremented to zero. The stale cache causes subsequent operations to incorrectly reference the freed inode. This causes subsequent operations to use cached dentry information that no longer matches the on-disk state. When a second rename targets the same entry, VFS attempts to decrement i_nlink on the stale inode, which may already have i_nlink=0, triggering a WARNING in drop_nlink(). Example sequence: 1. First rename (RENAME_WHITEOUT): file2 → file1 - f2fs updates file1 entry on disk (points to inode 8) - f2fs deletes file2 entry on disk - f2fs_add_link(whiteout) fails (corrupted directory) - Returns error to VFS - VFS does not call d_move() due to error - VFS cache still has: file1 → inode 7 (stale!) - inode 7 has i_nlink=0 (already decremented) 2. Second rename: file3 → file1 - VFS uses stale cache: file1 → inode 7 - Tries to drop_nlink on inode 7 (i_nlink already 0) - WARNING in drop_nlink() Fix this by explicitly invalidating old_dentry and new_dentry when f2fs_add_link fails during whiteout creation. This forces VFS to refresh from disk on subsequent operations, ensuring cache consistency even when the rename partially succeeds. Reproducer: 1. Mount F2FS image with corrupted i_current_depth 2. renameat2(file2, file1, RENAME_WHITEOUT) 3. renameat2(file3, file1, 0) 4. System triggers WARNING in drop_nlink()
Metrics
Affected Software
Source: CNA advisory (CVE.org). NVD analysis pending.
| Vendor | Product | Versions |
|---|---|---|
| Linux | Linux | >= 7e01e7ad746bc8198a8b46163ddc73a1c7d22339, < 7f2bae0c881aa1e0a6318756df692cc13df2cc83; >= 7e01e7ad746bc8198a8b46163ddc73a1c7d22339, < 3d95ed8cf980fdfa67a3ab9491357521ae576168; >= 7e01e7ad746bc8198a8b46163ddc73a1c7d22339, < 64587ab4d1f16fc94f70e04fa87b2e3f69f8a7bb; >= 7e01e7ad746bc8198a8b46163ddc73a1c7d22339, < 3d65e27e57aaa9d66709fda4cbfb62a87c04a3f5; >= 7e01e7ad746bc8198a8b46163ddc73a1c7d22339, < c89845fae250efdd59c1d4ec60e9e1c652cee4b6; >= 7e01e7ad746bc8198a8b46163ddc73a1c7d22339, < 0dde30753c1e8648665dbe069d814e540ce2fd37; >= 7e01e7ad746bc8198a8b46163ddc73a1c7d22339, < d33f89b34aa313f50f9a512d58dd288999f246b0 |
| Linux | Linux | 4.2 |
References
Timeline
- Published
- Last Modified
- Status
- Deferred
Frequently Asked Questions
What is CVE-2025-71069?
How severe is CVE-2025-71069?
How do I fix CVE-2025-71069?
How Strix Helps
- How Strix found a critical auth bypass in etcdStrix autonomously discovered a critical authentication bypass in etcd, later designated CVE-2026-33413.
- Autonomous PentestingAI agents that find and validate exploitable vulnerabilities like this one across your applications.
- PR ReviewsPentest every pull request so vulnerable code is caught before it ships to production.
- AI Penetration TestingHow AI-driven penetration testing continuously covers your attack surface.
Related CVEs from 2025
- CVE-2025-71063Errands before 46.2.10 does not verify TLS certificates for …7.5
- CVE-2025-71064In the Linux kernel, the following vulnerability has been re…
- CVE-2025-71065In the Linux kernel, the following vulnerability has been re…
- CVE-2025-71066In the Linux kernel, the following vulnerability has been re…7.8
- CVE-2025-71067In the Linux kernel, the following vulnerability has been re…
- CVE-2025-71068In the Linux kernel, the following vulnerability has been re…7.8
- CVE-2025-7107A vulnerability classified as critical has been found in Sim…7.5
- CVE-2025-71070In the Linux kernel, the following vulnerability has been re…7.8
- CVE-2025-71071In the Linux kernel, the following vulnerability has been re…7.8
- CVE-2025-71072In the Linux kernel, the following vulnerability has been re…5.5
- CVE-2025-71073In the Linux kernel, the following vulnerability has been re…7.8
- CVE-2025-71074In the Linux kernel, the following vulnerability has been re…4.7
Are you affected by CVE-2025-71069?
Run a free Strix scan to check your systems for this vulnerability.
Scan your code nowSource: NVD / NIST
