AUGUST 15, 2026
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Case File

CVE-2026-72431

UNKNOWN · CVSS N/A

Source: NVD + CISA KEV + EPSS · Published 2026-08-15 · Last synced 2026-08-15

CyberRota Analysis

AI-Generated

The vulnerability in the Linux kernel affects the `/proc/allocinfo` interface, where a use-after-free condition can occur due to improper handling of cached iterator state after a module is unloaded. This flaw allows for potential exploitation, leading to dereferencing freed memory, which could compromise system stability or security. System administrators and developers managing Linux environments should prioritize addressing this issue to mitigate risks associated with module management and memory safety.

CVE
CVE-2026-72431
Severity
UNKNOWN
CVSS
N/A
EPSS
N/A
Linux

Original NVD Description

In the Linux kernel, the following vulnerability has been resolved: alloc_tag: fix use-after-free in /proc/allocinfo after module unload allocinfo_start() only reinitializes the codetag iterator at position 0. For subsequent reads (position > 0), it reuses cached iterator state from the previous batch. allocinfo_stop() drops mod_lock between read batches, which allows module unload to complete and free the module memory that the cached iterator still references: CPU0 (read) CPU1 (rmmod) ---- ---- allocinfo_start(pos=0) down_read(mod_lock) allocinfo_show() ... allocinfo_stop() up_read(mod_lock) codetag_unload_module() kfree(cmod) release_module_tags() ... free_mod_mem() allocinfo_start(pos=N) down_read(mod_lock) // reuses cached iter, skips re-init allocinfo_show() ct->filename <-- UAF After free_mod_mem() frees the module's .rodata, allocinfo_show() dereferences ct->filename, ct->function which point there. Save the iterator state in allocinfo_next() and resume from it in allocinfo_start() with codetag_next_ct(), which detects module removal via idr_find() returning NULL and skips to the next module.