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KVM: SVM: Take and hold ir_list_lock when updating vCPU's Physical ID entry
commit 4c08e737f0 upstream.
Hoist the acquisition of ir_list_lock from avic_update_iommu_vcpu_affinity()
to its two callers, avic_vcpu_load() and avic_vcpu_put(), specifically to
encapsulate the write to the vCPU's entry in the AVIC Physical ID table.
This will allow a future fix to pull information from the Physical ID entry
when updating the IRTE, without potentially consuming stale information,
i.e. without racing with the vCPU being (un)loaded.
Add a comment to call out that ir_list_lock does NOT protect against
multiple writers, specifically that reading the Physical ID entry in
avic_vcpu_put() outside of the lock is safe.
To preserve some semblance of independence from ir_list_lock, keep the
READ_ONCE() in avic_vcpu_load() even though acuiring the spinlock
effectively ensures the load(s) will be generated after acquiring the
lock.
Cc: stable@vger.kernel.org
Tested-by: Alejandro Jimenez <alejandro.j.jimenez@oracle.com>
Reviewed-by: Joao Martins <joao.m.martins@oracle.com>
Link: https://lore.kernel.org/r/20230808233132.2499764-2-seanjc@google.com
Signed-off-by: Sean Christopherson <seanjc@google.com>
Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This commit is contained in:
committed by
Greg Kroah-Hartman
parent
ff536a9668
commit
3988692acc
@@ -1022,10 +1022,11 @@ static inline int
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avic_update_iommu_vcpu_affinity(struct kvm_vcpu *vcpu, int cpu, bool r)
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avic_update_iommu_vcpu_affinity(struct kvm_vcpu *vcpu, int cpu, bool r)
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{
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{
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int ret = 0;
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int ret = 0;
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unsigned long flags;
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struct amd_svm_iommu_ir *ir;
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struct amd_svm_iommu_ir *ir;
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struct vcpu_svm *svm = to_svm(vcpu);
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struct vcpu_svm *svm = to_svm(vcpu);
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lockdep_assert_held(&svm->ir_list_lock);
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if (!kvm_arch_has_assigned_device(vcpu->kvm))
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if (!kvm_arch_has_assigned_device(vcpu->kvm))
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return 0;
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return 0;
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@@ -1033,19 +1034,15 @@ avic_update_iommu_vcpu_affinity(struct kvm_vcpu *vcpu, int cpu, bool r)
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* Here, we go through the per-vcpu ir_list to update all existing
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* Here, we go through the per-vcpu ir_list to update all existing
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* interrupt remapping table entry targeting this vcpu.
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* interrupt remapping table entry targeting this vcpu.
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*/
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*/
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spin_lock_irqsave(&svm->ir_list_lock, flags);
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if (list_empty(&svm->ir_list))
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if (list_empty(&svm->ir_list))
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goto out;
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return 0;
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list_for_each_entry(ir, &svm->ir_list, node) {
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list_for_each_entry(ir, &svm->ir_list, node) {
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ret = amd_iommu_update_ga(cpu, r, ir->data);
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ret = amd_iommu_update_ga(cpu, r, ir->data);
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if (ret)
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if (ret)
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break;
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return ret;
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}
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}
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out:
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return 0;
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spin_unlock_irqrestore(&svm->ir_list_lock, flags);
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return ret;
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}
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}
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void avic_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
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void avic_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
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@@ -1053,6 +1050,7 @@ void avic_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
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u64 entry;
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u64 entry;
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int h_physical_id = kvm_cpu_get_apicid(cpu);
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int h_physical_id = kvm_cpu_get_apicid(cpu);
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struct vcpu_svm *svm = to_svm(vcpu);
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struct vcpu_svm *svm = to_svm(vcpu);
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unsigned long flags;
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lockdep_assert_preemption_disabled();
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lockdep_assert_preemption_disabled();
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@@ -1069,6 +1067,8 @@ void avic_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
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if (kvm_vcpu_is_blocking(vcpu))
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if (kvm_vcpu_is_blocking(vcpu))
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return;
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return;
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spin_lock_irqsave(&svm->ir_list_lock, flags);
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entry = READ_ONCE(*(svm->avic_physical_id_cache));
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entry = READ_ONCE(*(svm->avic_physical_id_cache));
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entry &= ~AVIC_PHYSICAL_ID_ENTRY_HOST_PHYSICAL_ID_MASK;
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entry &= ~AVIC_PHYSICAL_ID_ENTRY_HOST_PHYSICAL_ID_MASK;
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@@ -1077,25 +1077,40 @@ void avic_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
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WRITE_ONCE(*(svm->avic_physical_id_cache), entry);
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WRITE_ONCE(*(svm->avic_physical_id_cache), entry);
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avic_update_iommu_vcpu_affinity(vcpu, h_physical_id, true);
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avic_update_iommu_vcpu_affinity(vcpu, h_physical_id, true);
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spin_unlock_irqrestore(&svm->ir_list_lock, flags);
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}
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}
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void avic_vcpu_put(struct kvm_vcpu *vcpu)
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void avic_vcpu_put(struct kvm_vcpu *vcpu)
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{
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{
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u64 entry;
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u64 entry;
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struct vcpu_svm *svm = to_svm(vcpu);
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struct vcpu_svm *svm = to_svm(vcpu);
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unsigned long flags;
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lockdep_assert_preemption_disabled();
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lockdep_assert_preemption_disabled();
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/*
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* Note, reading the Physical ID entry outside of ir_list_lock is safe
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* as only the pCPU that has loaded (or is loading) the vCPU is allowed
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* to modify the entry, and preemption is disabled. I.e. the vCPU
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* can't be scheduled out and thus avic_vcpu_{put,load}() can't run
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* recursively.
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*/
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entry = READ_ONCE(*(svm->avic_physical_id_cache));
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entry = READ_ONCE(*(svm->avic_physical_id_cache));
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/* Nothing to do if IsRunning == '0' due to vCPU blocking. */
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/* Nothing to do if IsRunning == '0' due to vCPU blocking. */
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if (!(entry & AVIC_PHYSICAL_ID_ENTRY_IS_RUNNING_MASK))
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if (!(entry & AVIC_PHYSICAL_ID_ENTRY_IS_RUNNING_MASK))
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return;
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return;
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spin_lock_irqsave(&svm->ir_list_lock, flags);
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avic_update_iommu_vcpu_affinity(vcpu, -1, 0);
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avic_update_iommu_vcpu_affinity(vcpu, -1, 0);
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entry &= ~AVIC_PHYSICAL_ID_ENTRY_IS_RUNNING_MASK;
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entry &= ~AVIC_PHYSICAL_ID_ENTRY_IS_RUNNING_MASK;
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WRITE_ONCE(*(svm->avic_physical_id_cache), entry);
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WRITE_ONCE(*(svm->avic_physical_id_cache), entry);
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spin_unlock_irqrestore(&svm->ir_list_lock, flags);
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}
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}
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void avic_refresh_virtual_apic_mode(struct kvm_vcpu *vcpu)
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void avic_refresh_virtual_apic_mode(struct kvm_vcpu *vcpu)
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