SEPTEMBER 15, 2026
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Case File

CVE-2026-80693

CRITICAL · CVSS 9.3 EPSS 0.13%

Source: NVD + CISA KEV + EPSS · Published 2026-08-28 · Last synced 2026-09-15

CyberRota Analysis

AI-Generated

The vulnerability in the Linux kernel affects the idpf driver, where improper handling of the VIRTCHNL2_OP_ALLOC_VECTORS reply can lead to a buffer overflow due to mismatched array sizes. This flaw allows for potential out-of-bounds writes, which could compromise system stability or lead to unauthorized access. Organizations using affected Linux systems, particularly those leveraging the idpf driver in control plane environments, should prioritize patching to mitigate this risk.

CVE
CVE-2026-80693
Severity
CRITICAL
CVSS
9.3
EPSS
0.13%
Linux

Original NVD Description

In the Linux kernel, the following vulnerability has been resolved: idpf: bound interrupt-vector register fill to the allocated array idpf_get_reg_intr_vecs() fills the caller-allocated reg_vals[] array from the VIRTCHNL2_OP_ALLOC_VECTORS reply in adapter->req_vec_chunks, bounding its inner loop only by the per-chunk num_vectors. The array is sized separately: idpf_intr_reg_init() allocates kzalloc_objs(struct idpf_vec_regs, total_vecs) from caps.num_allocated_vectors and only checks the returned count after the fill. The sum of per-chunk num_vectors is never reconciled against total_vecs, so a reply with a small num_allocated_vectors but chunks summing higher writes past the end of reg_vals[]. Impact: a control plane (a PF or hypervisor device model) that returns a VIRTCHNL2_OP_ALLOC_VECTORS reply whose per-chunk num_vectors sum exceeds num_allocated_vectors writes struct idpf_vec_regs entries past the end of the reg_vals kmalloc allocation (KASAN slab-out-of-bounds write). Bound the fill loop to the array capacity passed in by the callers, mirroring the sibling idpf_vport_get_q_reg(). The existing num_regs < num_vecs check then rejects an undersized reply without the out-of-bounds write happening first.