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  4. CVE 2026 19736 out of bounds write in the nxp mcux trng entropy
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Back to active CVEs
High · CVSS 7.8CVE-2026-19736

Out-of-bounds write in the NXP MCUX TRNG entropy driver for non-word-multiple request lengthsCVE-2026-19736

Answer in brief

CVE-2026-19736 records a High severity (CVSS 7.8) vulnerability in Out-of-bounds write in the NXP MCUX TRNG entropy driver for non-word-multiple request lengths. 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 11, 2026Updated Oct 11, 2026Source checked Oct 11, 2026First seen by HOL Oct 11, 2026Material review Oct 11, 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>=4.3.0 <=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 11, 2026

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

    Oct 11, 2026

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

    Oct 11, 2026

Sources and claim methodology

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

The NXP MCUX TRNG entropy driver in drivers/entropy/entropy_mcux_trng.c passed the caller's byte count straight to the vendor SDK routine TRNG_GetRandomData(). On i.MX RT5xx and RT6xx parts the SDK compiles its TRNG_SW_HEALTH_TESTS variant, which always copies whole 32-bit words and draws entropy rounded up to a multiple of 128 bytes. Its "caller buffer is full" guard tests dataSize == 0, so a request whose length is not a multiple of four makes dataSize underflow past zero and the SDK keeps writing into the caller's buffer for the entire extraction: a 1-byte request results in 128 bytes written, and any non-word-multiple length overflows by up to 127 bytes. entropy_get_entropy() is a syscall, and its verifier in drivers/entropy/entropy_handlers.c validates only the requested length via K_SYSCALL_MEMORY_WRITE(). With CONFIG_USERSPACE enabled, an unprivileged user-mode thread that has merely been granted the entropy device can therefore choose both the destination address and a length such as 1, and cause the kernel to write up to 127 bytes beyond the region it proved it owns. On these Cortex-M33 targets there is no MMU, so user partitions and kernel data share one SRAM and the overflow can land in adjacent kernel state. The same defect is reached from kernel mode by any caller requesting a non-word-multiple length, including getentropy() and, in builds where sys_csrand_get()/sys_rand_get() resolve to the hardware generator, sys_rand8_get() and sys_rand16_get(). Impact is memory corruption of up to 127 bytes immediately following the supplied buffer — typically the caller's stack in kernel-mode use, or memory outside the caller's partition when driven through the syscall. The overflow offset is fully determined by the requested length and is therefore deterministic, while the written content is uncontrolled TRNG output; the practical consequences range from crashes and unpredictable state corruption to opportunistic escalation when kernel bookkeeping such as object permission bitmaps is overwritten. The affected devices are those where the MCUX SDK enables TRNG_SW_HEALTH_TESTS (MIMXRT595S, MIMXRT555S, MIMXRT533S, MIMXRT685S, MIMXRT633S), on which the TRNG is the zephyr,entropy chosen node; other SoCs using this driver take the SDK path that clamps the copy size and are unaffected. The fix routes any unaligned prefix and any sub-word tail through a local bounce word and hands the SDK only word-multiple sizes, so the SDK's word-granular writes can no longer pass the end of the caller's buffer.

Quoted source text, attributed separately from HOL analysis.

Related CVEs

  • Out-of-bounds read when the zbus proxy agent IPC backend logs a rejected peer frame's channel nameSame zephyrproject/zephyr package
  • Stack out-of-bounds write in the Goodix GT911 touch controller driver from an unvalidated device-reported touch point countSame zephyrproject/zephyr package
  • Out-of-bounds read in IPv6 route forwarding when the nexthop neighbor has no link-layer addressSame zephyrproject/zephyr package
  • Unbounded variable-length array in fuel gauge syscall verifiers allows kernel stack overflow from user modeSame zephyrproject/zephyr package
  • Predictable TCP initial sequence numbers when the RFC 6528 secret key generation fails silently in the Zephyr TCP stackSame zephyrproject/zephyr package
  • NULL pointer dereference in the ESP32 I2S driver when triggering an unsupported directionSame zephyrproject/zephyr package

Record context

Vulnerability class
Memory Corruption
EPSS
Not reported
CWE IDs
CWE-787
Source
CVE List V5
Source checked
Oct 11, 2026
References
2 linked sources
Open source record