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Linux Kernel CVE-2026-89927

| EUVDEUVD-2026-80527 HIGH
2026-09-16 Linux GHSA-5qjh-387m-mgrj
7.1
CVSS 3.1 · Vendor: Linux
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Severity by source

Vendor (Linux) PRIMARY
7.1 HIGH
AV:L/AC:L/PR:N/UI:N/S:C/C:N/I:N/A:H
vuln.today AI
6.5 MEDIUM

Local guest/VMM action (AV:L), deterministic overflow trigger (AC:L), requires control of a running guest so PR:L not PR:N, guest starves host so S:C, DoS-only C:N/I:N/A:H.

3.1 AV:L/AC:L/PR:L/UI:N/S:C/C:N/I:N/A:H
4.0 AV:L/AC:L/AT:N/PR:L/UI:N/VC:N/VI:N/VA:H/SC:N/SI:N/SA:H

Primary rating from Vendor (Linux).

CVSS VectorVendor: Linux

Attack Vector
Local
Attack Complexity
Low
Privileges Required
None
User Interaction
None
Scope
Changed
Confidentiality
None
Integrity
None
Availability
High

Lifecycle Timeline

8
Metadata Corrected
Sep 16, 2026 - 16:40 vuln.today
tag: Denial Of Service added
Metadata Corrected
Sep 16, 2026 - 16:40 vuln.today
tag: KVM added
Metadata Corrected
Sep 16, 2026 - 16:40 vuln.today
tag: Buffer Overflow removed
Analysis Generated
Sep 16, 2026 - 16:01 vuln.today
CVSS changed
Sep 16, 2026 - 15:22 NVD
7.1 (HIGH)
Patch available
Sep 16, 2026 - 11:03 EUVD
CVE Published
Sep 16, 2026 - 10:32 cve.org
UNKNOWN (no severity yet)
CVE Published
Sep 16, 2026 - 10:32 cve.org
HIGH 7.1

DescriptionCVE.org

In the Linux kernel, the following vulnerability has been resolved:

KVM: x86: hyper-v: Clamp stimer deadline to avoid livelock

Fix an issue where userspace or the guest can program an Hyper-V synthetic timer to have a deadline in the past via integer overflow, preventing the CPU from making progress and triggering an RCU stall.

Hyper-V's SynIC exposes 4 per-vCPU synthetic timers to the guest, which are emulated by KVM. Each is programmed through the HV_X64_MSR_STIMERi_CONFIG and HV_X64_MSR_STIMERi_COUNT MSRs. Depending on CONFIG, COUNT represents either the absolute expiration time or the period of a periodic timer, both expressed in 100ns ticks. These timers may be set both by the guest (WRMSR) and the host (KVM_SET_MSRS).

When the timer is enabled, stimer_start() translates COUNT to an absolute monotonic deadline and arms an hrtimer. If COUNT is set to a value close to U64_MAX, the deadline calculation can overflow.

ktime_add_ns(ktime_now, 100 * (stimer->exp_time - time_now))

This can result in a CPU livelock. stimer_start() arms the timer via hrtimer_start() with a deadline in the past, which causes it to immediately fire. The stimer callback then raises KVM_RQ_HV_STIMER, with the intention of causing KVM to deliver a synthetic interrupt on the next vCPU guest enter.

Then, once userspace issues KVM_RUN, vcpu_enter_guest() consumes the request, calling kvm_hv_process_stimers(). This would normally disable the timer via stimer_expiration() once the deadline is in the past. However, the deadline comparison is done between the KVM reference counter and stime->exp_time, which is a big value close to U64_MAX, so this never happens for a few thousand years.

kvm_hv_process_timers() then re-arms the timer via stimer_start(), since it was not disabled, which again fires immediately. Before entering the guest, kvm_vcpu_exit_request() checks kvm_request_pending(), which returns true due to the newly raised KVM_REQ_HV_STIMER. Then vcpu_enter_guest() aborts the guest entry, returning early into vcpu_run(), which loops back again into vcpu_enter_guest(), restarting the cycle.

Since there are no manual yields in this loop, a task with SCHED_FIFO may starve RCU grace-period kthreads, which exposes the stalls found by syzcaller:

rcu: INFO: rcu_preempt detected stalls on CPUs/tasks: rcu: (detected by 1, t=10502 jiffies, g=14269, q=1142 ncpus=2) rcu: All QSes seen, last rcu_preempt kthread activity 10500 (4294965239-4294954739), jiffies_till_next_fqs=1, root ->qsmask 0x0 rcu: rcu_preempt kthread starved for 10500 jiffies! g14269 f0x2 RCU_GP_WAIT_FQS(5) ->state=0x0 ->cpu=0 rcu: Unless rcu_preempt kthread gets sufficient CPU time, OOM is now expected behavior. ( ... ) Call Trace: <IRQ> __run_hrtimer kernel/time/hrtimer.c:1773 [inline] __hrtimer_run_queues+0x408/0xc30 kernel/time/hrtimer.c:1841 hrtimer_interrupt+0x45b/0xaa0 kernel/time/hrtimer.c:1903 local_apic_timer_interrupt arch/x86/kernel/apic/apic.c:1045 [inline] __sysvec_apic_timer_interrupt+0x102/0x3e0 arch/x86/kernel/apic/apic.c:1062 instr_sysvec_apic_timer_interrupt arch/x86/kernel/apic/apic.c:1056 [inline] sysvec_apic_timer_interrupt+0xa1/0xc0 arch/x86/kernel/apic/apic.c:1056 </IRQ> <TASK> asm_sysvec_apic_timer_interrupt+0x1a/0x20 arch/x86/include/asm/idtentry.h:697 RIP: 0010:__raw_spin_unlock_irqrestore include/linux/spinlock_api_smp.h:152 [inline] RIP: 0010:_raw_spin_unlock_irqrestore+0xa8/0x110 kernel/locking/spinlock.c:194 Code: 74 05 e8 0b f4 5f f6 48 c7 44 24 20 00 00 00 00 9c 8f 44 24 20 f6 44 24 21 02 75 4f f7 c3 00 02 00 00 74 01 fb bf 01 00 00 00 <e8> 23 6b 27 f6 65 8b 05 7c 60 5a 07 85 c0 74 40 48 c7 04 24 0e 36 RSP: 0018:ffffc900040a7320 EFLAGS: 00000206 RAX: 5de15cb931505900 RBX: 0000000000000a06 RCX: 5de15cb931505900 RDX: 0000000000000007 RSI: ffffffff8daa9dc3 RDI: 0000000000000001 RBP: ffffc900040a73b0 R08: ffffffff8fc3d0 ---truncated---

AnalysisAI

An integer overflow in KVM's x86 Hyper-V synthetic timer emulation (stimer_start(), which computes a 100ns-tick deadline using ktime_add_ns(ktime_now, 100 * (stimer->exp_time - time_now))) allows a guest or userspace VMM to program a STIMERi deadline that wraps into the past, causing the vCPU to spin through an immediate hrtimer re-arm / KVM_REQ_HV_STIMER request cycle without ever disabling the timer. The result is a host CPU livelock that starves RCU grace-period kthreads and produces the RCU stall and eventual OOM condition reported by syzkaller. …

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Attack ChainAIDerived

Hypothetical attack flow derived from CVE metadata

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Vulnerability AssessmentAI

Exploitation Requires a KVM x86 host running a guest that uses Hyper-V enlightenments with the SynIC synthetic interrupt controller enabled (the guest must be able to access HV_X64_MSR_STIMERi_CONFIG/COUNT MSRs); the attacker must control that guest's MSR writes (WRMSR) or be a userspace VMM issuing KVM_SET_MSRS. … Additional conditions and limiting factors are described in the full assessment.
Risk Assessment This is a genuine but bounded denial-of-service issue, not a code-execution priority. … Full risk analysis with EPSS, KEV, and SSVC signal comparison available after sign-in.
Exploit Scenario Full exploit scenario with step-by-step reproduction available after sign-in.
Remediation Apply the vendor-backed stable kernel updates: 5.10.270, 5.15.221, 6.1.188, 6.6.157, 6.12.110, 6.18.51 or 7.2.5 (7.3-rc1 for mainline), each of which carries the clamping fix from the corresponding git.kernel.org stable commit listed in the references (e.g. … Detailed patch versions, workarounds, and compensating controls in full report.

Recommended ActionAI

Within 24 hours, inventory all Linux KVM x86 hosts and identify which ones expose Hyper-V enlightenments and SynIC synthetic timers to guests, prioritizing multi-tenant and cloud platforms; where guests are not fully trusted, temporarily disable or withhold STIMERi synthetic-timer exposure and restrict guest WRMSR and KVM_SET_MSRS paths to trusted workloads, while enabling host monitoring for RCU stall warnings, hrtimer re-arm spin, and unexpected OOM events. …

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Threat intelligence, references, and detailed analysis are available after sign-in.

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CVE-2026-89927 vulnerability details – vuln.today

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