CVE-2025-38365

  • Published: 2025-07-25T13:15:25.380

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

btrfs: fix a race between renames and directory logging

We have a race between a rename and directory inode logging that if it
happens and we crash/power fail before the rename completes, the next time
the filesystem is mounted, the log replay code will end up deleting the
file that was being renamed.

This is best explained following a step by step analysis of an interleaving
of steps that lead into this situation.

Consider the initial conditions:

1) We are at transaction N;

2) We have directories A and B created in a past transaction (< N);

3) We have inode X corresponding to a file that has 2 hardlinks, one in
directory A and the other in directory B, so we'll name them as
"A/foo_link1" and "B/foo_link2". Both hard links were persisted in a
past transaction (< N);

4) We have inode Y corresponding to a file that as a single hard link and
is located in directory A, we'll name it as "A/bar". This file was also
persisted in a past transaction ( btrfs_record_unlink_dir();

2) Task A starts a rename for inode Y, with the goal of renaming from
“A/bar” to “A/baz”, so we enter btrfs_rename();

3) Task A inserts the new BTRFS_INODE_REF_KEY for inode Y by calling
btrfs_insert_inode_ref();

4) Because the rename happens in the same directory, we don’t set the
last_unlink_trans field of directoty A’s inode to the current
transaction id, that is, we don’t cal btrfs_record_unlink_dir();

5) Task A then removes the entries from directory A (BTRFS_DIR_ITEM_KEY
and BTRFS_DIR_INDEX_KEY items) when calling __btrfs_unlink_inode()
(actually the dir index item is added as a delayed item, but the
effect is the same);

6) Now before task A adds the new entry “A/baz” to directory A by
calling btrfs_add_link(), another task, task B is logging inode X;

7) Task B starts a fsync of inode X and after logging inode X, at
btrfs_log_inode_parent() it calls btrfs_log_all_parents(), since
inode X has a last_unlink_trans value of N, set at in step 1;

8) At btrfs_log_all_parents() we search for all parent directories of
inode X using the commit root, so we find directories A and B and log
them. Bu when logging direct A, we don’t have a dir index item for
inode Y anymore, neither the old name “A/bar” nor for the new name
“A/baz” since the rename has deleted the old name but has not yet
inserted the new name – task A hasn’t called yet btrfs_add_link() to
do that.

Note that logging directory A doesn’t fallback to a transaction
commit because its last_unlink_trans has a lower value than the
current transaction’s id (see step 4);

9) Task B finishes logging directories A and B and gets back to
btrfs_sync_file() where it calls btrfs_sync_log() to persist the log
tree;

10) Task B successfully persisted the log tree, btrfs_sync_log() completed
with success, and a power failure happened.

We have a log tree without any directory entry for inode Y, so the
log replay code deletes the entry for inode Y, name “A/bar”, from the
subvolume tree since it doesn’t exist in the log tree and the log
tree is authorative for its index (we logged a BTRFS_DIR_LOG_INDEX_KEY
item that covers the index range for the dentry that corresponds to
“A/bar”).

Since there’s no other hard link for inode Y and the log replay code
deletes the name “A/bar”, the file is lost.

The issue wouldn’t happen if task B synced the log only after task A
called btrfs_log_new_name(), which would update the log with the new name
for inode Y (“A/bar”).

Fix this by pinning the log root during renames before removing the old
directory entry, and unpinning af
—truncated—

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How to fix CVE-2025-38365

CVE-2025-38365 is a unknown severity vulnerability affecting the affected product.

Description: In the Linux kernel, the following vulnerability has been resolved: btrfs: fix a race between renames and directory logging We have a race between a rename and directory inode logging that if it happens and we crash/power fail before the rename completes, the next time the filesystem is mounted, the log replay code will end […]

Exploit Difficulty: HARD
⏱️ Time to exploit: > 4 hours
🛠️ Required skills: Advanced security expertise
💰 Public exploits: Rare or not public

How to Fix:

1 Identify affected systems

- Check if you're running the affected product

2 Immediate actions

- Update to the latest patched version
- If patching is not immediately possible: restrict network exposure, apply least-privilege access

3 Verification

- Test the fix in a staging environment first
- Review logs for signs of exploitation
- Monitor for IOCs (Indicators of Compromise)

4 Long-term prevention

- Enable automatic security updates
- Set up vulnerability monitoring
- Review and harden security configurations

Exploit Difficulty Assessment

HARD
⏱️ Time to Exploit: > 4 hours
🛠️ Skills Required: Advanced security expertise
💰 Public Exploits: Rare or not public

Vulnerability Timeline

Jul 25, 2025
Vulnerability Published

CVE details first published to NVD database

Nov 12, 2025
Imported to Database

Added to this CVE tracking system

Detection Rules & IOCs

No specific detection rules generated for this vulnerability type.

No vendor/product data available.