OCTOBER 7, 2026
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Case File

CVE-2026-89775

CRITICAL · CVSS 9.3 EPSS 0.23%

Source: NVD + CISA KEV + EPSS · Published 2026-09-16 · Last synced 2026-10-07

CyberRota Analysis

AI-Generated

The vulnerability affects the Linux kernel's KVM component, specifically in the handling of negative S1 walk levels during TLB size evaluation, which can lead to incorrect TLB invalidation sizes when the MMU is disabled. This misinterpretation could potentially allow for improper memory access or exploitation in virtualized environments. Organizations utilizing Linux-based systems, particularly those leveraging KVM for virtualization on arm64 architecture, should prioritize addressing this issue to mitigate potential security risks.

CVE
CVE-2026-89775
Severity
CRITICAL
CVSS
9.3
EPSS
0.23%
Linux

Original NVD Description

In the Linux kernel, the following vulnerability has been resolved: KVM: arm64: Handle negative S1 walk levels in VNCR TLB size evaluation Computing the effects of a TLB invalidation involves looking at the size of the mapping cached by the TLB. For S1 mappings such as VNCR, this is deducted from the combination of the base granule size and the mapping level. However, this implies that the S1 MMU is *on*. When the MMU is off, we indicate this with the level being set to a "creative" value of -127 (S1_MMU_DISABLED). This ends-up being misinterpreted by pgshift_level_to_ttl() as it doesn't handle negative levels at all (the level is immediately cast to a u8 and only the bottom two bits considered), leading to an invalidation size of 0. Not helpful. Tidy-up pgshift_level_to_ttl() to handle these negative levels, and ttl_to_size() to always return SZ_1G when no valid TTL is present. This allows the removal of open-coded checks for similar situations. Note that the check for a negative value not explicitely checking for S1_MMU_DISABLED is deliberate, so that actual negative levels introduced with LVA2 and D128 can take the same path if we ever support them.