Kernel memory exhaustion via unreclaimed channel lists
Published May 1, 2026 · Updated May 1, 2026
A memory leak in Linux Kernel 6.19 through 6.19.11 allows local users to exhaust kernel memory through repeated Comedi commands. The do_cmd_ioctl() exceptional exit leaves runflags unset, so do_become_nonbusy() skips freeing the allocated channel list. Reaching this path requires root or CAP_SYS_ADMIN access to Comedi device nodes, and the flaw does not grant data access or code execution.
Summary
What happened
A memory leak in Linux Kernel 6.19 through 6.19.11 allows local users to exhaust kernel memory through repeated Comedi commands. The do_cmd_ioctl() exceptional exit leaves runflags unset, so do_become_nonbusy() skips freeing the allocated channel list. Reaching this path requires root or CAP_SYS_ADMIN access to Comedi device nodes, and the flaw does not grant data access or code execution.
The record
- CVE
- CVE-2026-31750
- Published
- May 1, 2026
- Updated
- May 1, 2026
- Vendor
- The Linux Kernel Organization
- Product
- Linux Kernel
- Classifications
- CWE-401, T1499.004
- Attack vector
- local
- Privileges
- admin
Timeline
How it unfolded
- May 1, 2026CVE publishedPublication date reported by the CVE source.
- May 1, 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=4e1da516debbe6a573ffa0392e2809d180d0575c <29f644f14b89e6c4965e3c89251929e451190a66
- Affected versionversion=4e1da516debbe6a573ffa0392e2809d180d0575c <830c848aba9f047eb6b34288975ebeb8e8621451
- Affected versionversion=6.19
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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