Local service interruption via unreleased RSA buffers
Published Feb 26, 2025 · Updated May 11, 2026
Memory leak in the Linux kernel QAT RSA driver allows local users to exhaust memory by repeatedly creating form-2 private keys. qat_rsa_exit_tfm() frees selected private-key buffers but leaves other buffers referenced by the TFM context allocated after release. Exploitation requires local low-privileged access and QAT RSA use; repeated operations consume kernel memory and can interrupt service.
Summary
What happened
Memory leak in the Linux kernel QAT RSA driver allows local users to exhaust memory by repeatedly creating form-2 private keys. qat_rsa_exit_tfm() frees selected private-key buffers but leaves other buffers referenced by the TFM context allocated after release. Exploitation requires local low-privileged access and QAT RSA use; repeated operations consume kernel memory and can interrupt service.
The record
- CVE
- CVE-2022-49566
- Published
- Feb 26, 2025
- Updated
- May 11, 2026
- Vendor
- The Linux Kernel Organization
- Product
- Linux
- Classifications
- CWE-401, T1499.004
- Attack vector
- local
- Privileges
- authenticated
Timeline
How it unfolded
- Feb 26, 2025CVE publishedPublication date reported by the CVE source.
- May 11, 2026Record updatedLatest update available in the CVE record.
Exploitability
Present is not the same as exploitable
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Is a vulnerable build present?
Compare these published version ranges with your installed build and any vendor patches.
- Affected versionversion=4.8
- Affected versionversion=879f77e9071f029e1c9bd5a75814ecf51370f846 <0f967fdc09955221a1951a279481b0bf4d359941
- Affected versionversion=879f77e9071f029e1c9bd5a75814ecf51370f846 <80a52e1ee7757b742f96bfb0d58f0c14eb6583d0
- Affected versionversion=879f77e9071f029e1c9bd5a75814ecf51370f846 <a843925e0287eebb4aa808666bf22c664dfe4c53
What conditions does exploitation require?
What is affected?
Published CVSS scores
CVSS describes severity. EPSS estimates exploitation probability.
Attacks
What attackers are doing with it
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Weakness, pattern, technique
Public exploit references
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Technologies
Your stack
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Your stack
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