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Back to active CVEs
High · CVSS 7.8CVE-2026-19185

Unvalidated user-supplied buffer pointers in the I3C do_ccc system call handler allow kernel memory read/write from user modeCVE-2026-19185

Answer in brief

CVE-2026-19185 records a High severity (CVSS 7.8) vulnerability in Unvalidated user-supplied buffer pointers in the I3C do_ccc system call handler allow kernel memory read/write from user mode. 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 5, 2026Updated Oct 5, 2026Source checked Oct 5, 2026First seen by HOL Oct 5, 2026Material review Oct 5, 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
Available

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>=3.2.0 <4.5.04.5.0

Recommended response

  1. 1Check inventory. Check lockfiles and deployed manifests for zephyrproject/zephyr.
  2. 2Review the reported fix. Update zephyrproject/zephyr to 4.5.0 if you use the affected versions. Test the change in a non-production environment first.

Evidence timeline and material changes

  1. Published upstream

    Oct 5, 2026

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

    Oct 5, 2026

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

    Oct 5, 2026

Sources and claim methodology

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

The system-call verifier for i3c_do_ccc() in drivers/i3c/i3c_handlers.c validated the outer struct i3c_ccc_payload, the broadcast ccc.data buffer and the targets.payloads[] array, but did not validate the per-target data buffers those array elements point at. Each struct i3c_ccc_target_payload carries its own data pointer and data_len, and neither was passed through K_SYSCALL_MEMORY() before the payload was handed to z_impl_i3c_do_ccc() and on to the controller driver. The verifier also operated on the caller's live structure rather than a snapshot, so validated fields could be changed by a second user thread between the check and the driver's use — unlike the sibling z_vrfy_i3c_transfer(), which has always copied its message array first. The defect is only present in CONFIG_USERSPACE builds, where drivers/i3c/i3c_handlers.c is compiled. An unprivileged user-mode thread that has been granted access to the I3C controller device object — the ordinary way an application lets a user thread talk to I3C peripherals — can issue a direct CCC whose target payload data pointer names an arbitrary kernel address. Controller drivers dereference that pointer directly (for example drivers/i3c/i3c_mcux.c, drivers/i3c/i3c_cdns.c, drivers/i3c/i3c_stm32.c, drivers/i3c/i3c_npcx.c), using rnw to decide direction. A read CCC therefore causes the kernel-mode driver to write bus-received bytes into an attacker-chosen kernel address for an attacker-chosen length, and a write CCC transmits kernel memory out onto the I3C bus. The result is an out-of-bounds kernel write plus a kernel memory disclosure, i.e. escalation from a user-mode thread to supervisor privilege, defeating the isolation CONFIG_USERSPACE is meant to provide. The fix introduces copy_ccc_and_do(), which snapshots the payload, copies the target array into kernel memory with k_usermode_alloc_from_copy() (bounding num_targets to fewer than 32), validates each per-target buffer with K_SYSCALL_MEMORY() according to rnw, and copies the driver-written num_xfer and err fields back to the caller.

Quoted source text, attributed separately from HOL analysis.

Related CVEs

  • Out-of-bounds write in the NXP GAU ADC driver due to byte-versus-sample buffer size validation mismatchSame zephyrproject/zephyr package
  • RCE via exposed JDWP debug agent in P4SearchSame generic ecosystem
  • Authentication bypass via default auth token in P4SearchSame generic ecosystem
  • WordPress Starter Templates plugin <= 4.7.7 - Cross Site Scripting (XSS) vulnerabilitySame generic ecosystem
  • WordPress Presto Player plugin <= 4.5.2 - Cross Site Scripting (XSS) vulnerabilitySame generic ecosystem
  • WordPress JS Help Desk plugin <= 4.0.0 - Insecure Direct Object References (IDOR) vulnerabilitySame generic ecosystem

Record context

Vulnerability class
Vulnerability
EPSS
Not reported
CWE IDs
CWE-822
Source
CVE List V5
Source checked
Oct 5, 2026
References
2 linked sources
Open source record