SEPTEMBER 20, 2026
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Case File

CVE-2026-64467

HIGH · CVSS 8.8 EPSS 0.14%

Source: NVD + CISA KEV + EPSS · Published 2026-07-25 · Last synced 2026-08-24

CyberRota Analysis

AI-Generated

The vulnerability affects the Linux kernel's rust_binder component, specifically in how it handles the offsets array during object cleanup. On 32-bit kernels, this flaw can lead to an over-decrement of reference counts, potentially causing reference accounting corruption and unexpected notifications of reference releases. Organizations running 32-bit Linux systems, especially those utilizing the binder framework, should prioritize patching this high-severity vulnerability to prevent potential stability issues and security risks.

CVE
CVE-2026-64467
Severity
HIGH
CVSS
8.8
EPSS
0.14%
Linux

Original NVD Description

In the Linux kernel, the following vulnerability has been resolved: rust_binder: use a u64 stride when cleaning up the offsets array Allocation's Drop walks the offsets array (binder_size_t = u64 entries), cleaning up the objects, but it used usize instead of u64 for both the stride and the per-entry read. On 64-bit kernels (usize == u64) this is harmless, but on 32-bit kernels it walks the 8-byte entries in 4-byte steps, iterating an N-entry array 2N times, and reads the always-zero high word as offset 0, cleaning up the object at offset 0 N extra times. As a result the referenced node or handle ends up with a lower reference count than it actually has (a refcount over-decrement), and binder's reference accounting is corrupted; for example, the owner can be notified of a strong reference release (BR_RELEASE) even though references still remain. Change the stride to u64, and read each entry as a u64, narrowing it to usize with try_into(). On 32-bit ARM, when this over-decrement would drive a count below zero, the driver's existing refcount guard refuses it and fires: rust_binder: Failure: refcount underflow!