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  4. CVE 2026 19575 type confusion in the devicedeinit system call
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Back to active CVEs
High · CVSS 7.8CVE-2026-19575

Type confusion in the device_deinit system call allows user-mode threads to execute arbitrary kernel codeCVE-2026-19575

Answer in brief

CVE-2026-19575 records a High severity (CVSS 7.8) vulnerability in Type confusion in the device_deinit system call allows user-mode threads to execute arbitrary kernel code. The current sources do not mark it as known exploited. The current feed maps zephyrproject/zephyr (generic). Check affected ranges and fixed versions before updating.

Analysis pending evidence review

HOL Guard separates source facts from reviewed analysis. See the methodology.

Published Oct 9, 2026Updated Oct 9, 2026Source checked Oct 9, 2026First seen by HOL Oct 9, 2026Material review Oct 9, 2026
Upstream Advisory

Key facts

Risk
High · CVSS 7.8
Exploitation
Not marked as known exploited
Affected software
1 mapped package or product
Fix availability
Not reported

Why this deserves its current priority

CVSS is 7.8. The current sources do not mark it as known exploited. Treat this as a source-backed prioritization signal, not a statement about your environment.

Analysis status

Analysis pending evidence review

Factual feed record only; HOL analysis is not approved for indexing. Read the methodology.

Affected scope and exposure questions

The current feed maps zephyrproject/zephyr (generic). Check affected ranges and fixed versions before updating.

Mapped affected packages and fixed versions
PackageAffected rangeFixed version
zephyrproject/zephyrgeneric>=4.2.0 <=4.4.2Not reported

Recommended response

  1. 1Check inventory. Check lockfiles and deployed manifests for zephyrproject/zephyr.
  2. 2Review the reported fix. Monitor this advisory for an available fix and review any installs of the affected package.

Evidence timeline and material changes

  1. Published upstream

    Oct 9, 2026

    Evidence: source:cvelist:source_dates:source-dates:record
  2. Source modified

    Oct 9, 2026

    Evidence: source:cvelist:source_dates:source-dates:record
  3. First seen by HOL

    Oct 9, 2026

Sources and claim methodology

  • GitHub security advisorygithub.com
  • GitHub security advisorygithub.com
Upstream source description

The user-mode verification handler for the device_deinit() system call, z_vrfy_device_deinit() in kernel/device.c, validated its dev argument with K_SYSCALL_OBJ_INIT(dev, K_OBJ_ANY). k_object_validate() short-circuits its type comparison when the requested type is K_OBJ_ANY, so the check reduced to "this pointer is the base address of some kernel object the calling thread has been granted" — the object's actual type was never compared, and K_SYSCALL_OBJ_INIT also skips the initialization-state check. The sibling handlers z_vrfy_device_init() and z_vrfy_device_is_ready() already used K_OBJ_DRIVER_ANY and were unaffected. A thread running in user mode can therefore pass any kernel object it holds permission on — most usefully a thread stack object obtained from the k_thread_stack_alloc() syscall or a statically defined K_THREAD_STACK it was granted in order to spawn a child user thread — whose backing memory is writable from user mode. z_impl_device_deinit() then interprets those attacker-written bytes as a struct device: it dereferences the state pointer read out of the object, calls the function pointer read out of ops.deinit, and on success writes through state again. The result is an indirect call to an arbitrary address executed in supervisor mode, plus an arbitrary kernel read and a single-byte kernel write. Exploitation gives a local unprivileged thread full kernel code execution, defeating the CONFIG_USERSPACE isolation boundary entirely; a less precise attempt yields a supervisor-mode fault and a system crash. The defect is only reachable in builds that enable both CONFIG_USERSPACE and CONFIG_DEVICE_DEINIT_SUPPORT — with de-initialization support disabled, z_impl_device_deinit() returns -ENOTSUP without ever dereferencing the pointer. In v4.2.x and v4.3.x, CONFIG_DEVICE_DEINIT_SUPPORT defaulted to y, so every CONFIG_USERSPACE build of those releases is exposed unless the option was explicitly turned off. From v4.4.0 the option is opt-in (no default, and not selected by any in-tree subsystem), so a v4.4.x build is exposed only if it enables the option explicitly. The v4.2 line is no longer maintained and receives no backport. The fix changes the object check to K_OBJ_DRIVER_ANY, which constrains the argument to the build-generated driver object type range (K_OBJ_DRIVER_FIRST..K_OBJ_DRIVER_LAST) — the real struct device instances placed by the linker — so the state and ops.deinit fields are once again kernel-controlled.

Quoted source text, attributed separately from HOL analysis.

Related CVEs

  • Integer overflow in dynamic kernel object allocation allows user-mode threads to corrupt the kernel heapSame zephyrproject/zephyr package
  • Out-of-bounds write in LE Audio Broadcast Sink when copying BASE subgroup metadata into the BASS receive stateSame zephyrproject/zephyr package
  • Race condition in ITE IT8xxx2 SHI host-command backend lets a second SPI request write an unvalidated length into the in-flight request bufferSame zephyrproject/zephyr package
  • ARM64 MMU can assign an in-use ASID to a new memory domain, breaking user-mode memory isolationSame zephyrproject/zephyr package
  • Type confusion in FalkorDB GRAPH.QUERY via the --bolt argumentAlso CWE-843
  • Redux Framework <= 4.5.11 – Authenticated (Subscriber+) Privilege Escalation via Users ExtensionSame generic ecosystem

Record context

Vulnerability class
Vulnerability
EPSS
Not reported
CWE IDs
CWE-843
Source
CVE List V5
Source checked
Oct 9, 2026
References
2 linked sources
Open source record