CVE-2026-63807
Received Received - Intake

Memory Corruption in Linux Kernel KVM Subsystem

Vulnerability report for CVE-2026-63807, including description, CVSS score, EPSS score, affected products, exploitability, helpful resources, and attack-flow context.

Publication date: 2026-07-19

Last updated on: 2026-07-19

Assigner: kernel.org

Description

In the Linux kernel, the following vulnerability has been resolved: KVM: x86/mmu: Ensure hugepage is in by slot before checking max mapping level When recovering hugepages in the shadow MMU, verify that the base gfn of the shadow page is actually contained within the target memslot, *before* querying the max mapping level given the shadow page's gfn. Failure to pre-check the validity of the gfn can lead to an out-of-bounds access to the slot's lpage_info (which typically manifests as a host #PF because the lpage_info is vmalloc'd) if the guest creates a hugepage mapping (in its PTEs) that extends "below" the bounds of a memslot. When faulting in memory for a guest, and the size of the guest mapping is greater than KVM's (current) max mapping, then KVM will create a "direct" shadow page (direct in that there are no gPTEs to shadow, and so the target gfn is a direct calculation given the base gfn of the shadow page). The hugepage recovery flow looks for such direct shadow pages, as forcing 4KiB mappings when dirty logging generates the guest > host mapping size case. When the 4KiB restriction is lifted, then KVM can replace the shadow page with a hugepage. But if KVM originally used a smaller mapping than the guest because the range of memory covered by the guest hugepage exceeds the bounds of a memslot, then KVM will link a direct shadow page with a gfn that is outside the bounds of the memslot being used to fault in memory. The rmap entry added for the leaf mapping is correct and within bounds, but the gfn of the leaf SPTE's parent shadow page will be out of bounds. BUG: unable to handle page fault for address: ffffc90000806ffc #PF: supervisor read access in kernel mode #PF: error_code(0x0000) - not-present page PGD 100000067 P4D 100000067 PUD 1002a7067 PMD 10612f067 PTE 0 Oops: Oops: 0000 [#1] SMP CPU: 13 UID: 1000 PID: 757 Comm: mmu_stress_test Not tainted 7.1.0-rc1-48ce1e26eace-x86_pir_to_irr_comments-vm #341 PREEMPT Hardware name: QEMU Standard PC (Q35 + ICH9, 2009), BIOS 0.0.0 02/06/2015 RIP: 0010:kvm_mmu_max_mapping_level+0x79/0x2b0 [kvm] Call Trace: <TASK> kvm_mmu_recover_huge_pages+0x21b/0x320 [kvm] kvm_set_memslot+0x1ee/0x590 [kvm] kvm_set_memory_region.part.0+0x3a1/0x4d0 [kvm] kvm_vm_ioctl+0x9bf/0x15d0 [kvm] __x64_sys_ioctl+0x8a/0xd0 do_syscall_64+0xb7/0xbb0 entry_SYSCALL_64_after_hwframe+0x4b/0x53 RIP: 0033:0x7f21c0f1a9bf </TASK> Don't bother pre-checking the bounds of the potential hugepage, i.e. don't check that e.g. sp->gfn + KVM_PAGES_PER_HPAGE(sp->role.level + 1) is also within the memslot, as the checks performed by kvm_mmu_max_mapping_level() are a superset of the basic bounds checks. I.e. pre-checking the full range would be a dubious micro-optimization.

CVSS Scores

EPSS Scores

Probability:
Percentile:

Meta Information

Published
2026-07-19
Last Modified
2026-07-19
Generated
2026-07-20
AI Q&A
2026-07-19
EPSS Evaluated
N/A
NVD
EUVD

Affected Vendors & Products

Showing 1 associated CPE
Vendor Product Version / Range
linux linux_kernel 7.1.0-rc1-48ce1e26eace

Helpful Resources

Exploitability

CWE
CWE Icon
KEV
KEV Icon
CWE ID Description
CWE-UNKNOWN

Attack-Flow Graph

AI Quick Actions

Instant insights powered by AI
Executive Summary

This is a Linux kernel vulnerability in the KVM (Kernel-based Virtual Machine) x86/mmu component. It occurs when recovering hugepages in the shadow MMU. The issue arises when the base gfn of a shadow page is not checked against the memslot bounds before querying the max mapping level. This can lead to an out-of-bounds access to the slot's lpage_info, potentially causing a host page fault.

Detection Guidance

This vulnerability is specific to the Linux kernel's KVM (Kernel-based Virtual Machine) subsystem and may not have direct network detection methods. However, you can check if your system is running a vulnerable kernel version using commands like 'uname -a' or 'cat /proc/version'. Look for kernel versions prior to the fix.

Impact Analysis

This vulnerability can cause a host system crash due to a page fault when a guest creates a hugepage mapping that extends beyond the bounds of a memslot. This may lead to denial of service for the host and potentially affect other guests running on the same system.

Compliance Impact

This vulnerability is specific to the Linux kernel's KVM virtualization module and involves a memory management issue that could lead to a host page fault. It does not directly impact data privacy or security controls required by standards like GDPR or HIPAA, which focus on data protection, access controls, and audit logging. The issue is more related to system stability and availability rather than compliance with these regulations.

Mitigation Strategies

Apply the latest kernel updates provided by your Linux distribution to ensure the vulnerability is patched. If you are running a virtualized environment using KVM, verify that your hypervisor is updated. Restart affected virtual machines after updating the host kernel.

Chat Assistant

Ask questions about this CVE
Hi! I’m here to help you understand CVE-2026-63807. Ask me anything about the vulnerability, its impact, or mitigation strategies.
0/70

EPSS Chart