Kernel Oops via disconnected GPIB interface dereference
Published Apr 16, 2025 · Updated May 11, 2026
NULL pointer dereference in Linux kernel ni_usb 6.13 through 6.13.10 and 6.14 through 6.14.1 allows local users to trigger a kernel Oops. The disconnect path clears ni_priv->bus_interface, but later driver entry points derive usb_dev from that NULL pointer without validating it. The required sequence is physical dongle disconnection followed by a local driver call, and the resulting Oops interrupts affected kernel operation.
Summary
What happened
NULL pointer dereference in Linux kernel ni_usb 6.13 through 6.13.10 and 6.14 through 6.14.1 allows local users to trigger a kernel Oops. The disconnect path clears ni_priv->bus_interface, but later driver entry points derive usb_dev from that NULL pointer without validating it. The required sequence is physical dongle disconnection followed by a local driver call, and the resulting Oops interrupts affected kernel operation.
The record
- CVE
- CVE-2025-22052
- Published
- Apr 16, 2025
- Updated
- May 11, 2026
- Vendor
- The Linux Kernel Organization
- Product
- Linux
- Classifications
- CWE-476, T1499
- Attack vector
- local
- Privileges
- authenticated
Timeline
How it unfolded
- Apr 16, 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?
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- Affected versionversion=4934b98bb24327c32ed55c96012f019932383da5 <5dc98ba6f7304c188b267ef481281849638447bf
- Affected versionversion=4934b98bb24327c32ed55c96012f019932383da5 <a239c6e91b665f1837cf57b97fe638ef1baf2e78
- Affected versionversion=4934b98bb24327c32ed55c96012f019932383da5 <b2d8d7959077c5d4b11d0dc6bd2167791fd1c72e
- Affected versionversion=6.13
What conditions does exploitation require?
What is affected?
Published CVSS scores
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Attacks
What attackers are doing with it
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Public exploit references
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Technologies
Your stack
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Your stack
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