Linux KernelOperating system · Linux

CVE-2025-21823

MEDIUM · 5.5 CVSS v3.1 Published 2025-02-27
Fix available
A fix is available. Upgrade to 5.4.291 / 5.10.235 or later.
See remediation →
57/100
Remediation priority · Elevated
Zero-click Patch available

Official description Straight from the sourceThe vendor's or NVD's own wording, published unedited. Authoritative, but often terse — it says what broke, rarely what to do.

NVD · unedited
In the Linux kernel, the following vulnerability has been resolved: batman-adv: Drop unmanaged ELP metric worker The ELP worker needs to calculate new metric values for all neighbors "reachable" over an interface. Some of the used metric sources require locks which might need to sleep. This sleep is incompatible with the RCU list iterator used for the recorded neighbors. The initial approach to work around of this problem was to queue another work item per neighbor and then run this in a new context. Even when this solved the RCU vs might_sleep() conflict, it has a major problems: Nothing was stopping the work item in case it is not needed anymore - for example because one of the related interfaces was removed or the batman-adv module was unloaded - resulting in potential invalid memory accesses. Directly canceling the metric worker also has various problems: * cancel_work_sync for a to-be-deactivated interface is called with rtnl_lock held. But the code in the ELP metric worker also tries to use rtnl_lock() - which will never return in this case. This also means that cancel_work_sync would never return because it is waiting for the worker to finish. * iterating over the neighbor list for the to-be-deactivated interface is currently done using the RCU specific methods. Which means that it is possible to miss items when iterating over it without the associated spinlock - a behaviour which is acceptable for a periodic metric check but not for a cleanup routine (which must "stop" all still running workers) The better approch is to get rid of the per interface neighbor metric worker and handle everything in the interface worker. The original problems are solved by: * creating a list of neighbors which require new metric information inside the RCU protected context, gathering the metric according to the new list outside the RCU protected context * only use rcu_trylock inside metric gathering code to avoid a deadlock when the cancel_delayed_work_sync is called in the interface removal code (which is called with the rtnl_lock held)

Technical summary Written by usOur analysis, written from the advisory, the CVSS vector and the affected-version data. It adds context the advisory leaves out, and never invents facts that are not in the source.

dbcve analysis

A detailed technical summary for this CVE is being prepared.

Affected products & versions What the vendor confirmedThe version ranges the vendor confirmed as vulnerable. If your version sits inside a range here, treat yourself as exposed until you have upgraded.

NVD · CPE data
Linux KernelOperating system
Affected:>= 4.6, < 5.4.291>= 5.5, < 5.10.235>= 5.11, < 5.15.179>= 5.16, < 6.1.129>= 6.2, < 6.6.79>= 6.7, < 6.12.16>= 6.13, < 6.13.4= 6.14

CVSS breakdown How the score is builtThe industry scoring standard. It rates how the flaw is reached, what it takes to exploit, and what an attacker gains — the score is derived from those, not the other way round.

From the vector
Attack vector
Local
Complexity
Low
Privileges
Low
User interaction
None
Scope
Unchanged
Confidentiality
None
Integrity
None
Availability
High

CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H

Remediation Closing itWhat it takes to close this. Where a vendor fix exists we point at it; where none exists we say so plainly, and can build one. Effort estimates are scoped from the advisory, not from your codebase.

dbcve · scoped
Upgrade available Upgrade to 5.4.291 / 5.10.235 / 5.15.179 or later
Fixed in 5.4.2915.10.2355.15.179
Vendor patch git.kernel.org →
Recommended fix High confidence

Upgrade to Linux kernel 5.4.291+ (if on 5.4.x), 5.10.235+ (if on 5.10.x), 5.15.179+ (if on 5.15.x), or 6.1.129+ (if on 6.1.x). For long-term support, consider moving to 6.1.x LTS and staying current with stable releases.

  1. 1. Identify your current Linux kernel version using `uname -r`
  2. 2. Determine which stable branch your current kernel belongs to (e.g., 5.4.x, 5.10.x, 5.15.x, or 6.1.x)
  3. 3. For RHEL/CentOS/Fedora systems: run `sudo dnf update` or `sudo yum update` to get the latest kernel with the security fix
  4. 4. For Debian/Ubuntu systems: run `sudo apt update && sudo apt upgrade` followed by `sudo apt-get dist-upgrade` to install the updated kernel
  5. 5. For SUSE systems: run `sudo zypper update` to apply kernel updates
  6. 6. After updating, reboot the system to load the new kernel: `sudo reboot`
  7. 7. After reboot, verify the kernel has been updated to a fixed version (>= 5.4.291, >= 5.10.235, >= 5.15.179, or >= 6.1.129) using `uname -r`
Caveat Kernel upgrades are generally safe but may require recompiling third-party kernel modules (e.g., proprietary drivers). Ensure compatibility with user-space tools and verify that any custom kernel configurations are preserved during the upgrade.

Generated from the published advisory — verify against the referenced sources before acting.

We can perform the upgrade in your staging environment and verify nothing breaks — typical engagement from $1,600. Get the upgrade done

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References Go to the primary sourcePrimary sources — vendor advisories, patches and trackers. Where our summary and a reference disagree, the reference wins.

Primary sources

Practitioner notes

Contributed

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