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KVM: nVMX: Enable nested virtual interrupt delivery
With virtual interrupt delivery, the hardware lets KVM use a more efficient mechanism for interrupt injection. This is an important feature for nested VMX, because it reduces vmexits substantially and they are much more expensive with nested virtualization. This is especially important for throughput-bound scenarios. Signed-off-by: Wincy Van <fanwenyi0529@gmail.com> Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
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@ -219,6 +219,10 @@ struct __packed vmcs12 {
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u64 virtual_apic_page_addr;
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u64 apic_access_addr;
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u64 ept_pointer;
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u64 eoi_exit_bitmap0;
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u64 eoi_exit_bitmap1;
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u64 eoi_exit_bitmap2;
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u64 eoi_exit_bitmap3;
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u64 xss_exit_bitmap;
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u64 guest_physical_address;
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u64 vmcs_link_pointer;
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@ -341,6 +345,7 @@ struct __packed vmcs12 {
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u16 guest_gs_selector;
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u16 guest_ldtr_selector;
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u16 guest_tr_selector;
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u16 guest_intr_status;
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u16 host_es_selector;
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u16 host_cs_selector;
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u16 host_ss_selector;
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@ -626,6 +631,7 @@ static const unsigned short vmcs_field_to_offset_table[] = {
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FIELD(GUEST_GS_SELECTOR, guest_gs_selector),
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FIELD(GUEST_LDTR_SELECTOR, guest_ldtr_selector),
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FIELD(GUEST_TR_SELECTOR, guest_tr_selector),
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FIELD(GUEST_INTR_STATUS, guest_intr_status),
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FIELD(HOST_ES_SELECTOR, host_es_selector),
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FIELD(HOST_CS_SELECTOR, host_cs_selector),
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FIELD(HOST_SS_SELECTOR, host_ss_selector),
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@ -643,6 +649,10 @@ static const unsigned short vmcs_field_to_offset_table[] = {
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FIELD64(VIRTUAL_APIC_PAGE_ADDR, virtual_apic_page_addr),
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FIELD64(APIC_ACCESS_ADDR, apic_access_addr),
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FIELD64(EPT_POINTER, ept_pointer),
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FIELD64(EOI_EXIT_BITMAP0, eoi_exit_bitmap0),
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FIELD64(EOI_EXIT_BITMAP1, eoi_exit_bitmap1),
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FIELD64(EOI_EXIT_BITMAP2, eoi_exit_bitmap2),
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FIELD64(EOI_EXIT_BITMAP3, eoi_exit_bitmap3),
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FIELD64(XSS_EXIT_BITMAP, xss_exit_bitmap),
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FIELD64(GUEST_PHYSICAL_ADDRESS, guest_physical_address),
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FIELD64(VMCS_LINK_POINTER, vmcs_link_pointer),
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@ -1142,6 +1152,11 @@ static inline bool nested_cpu_has_apic_reg_virt(struct vmcs12 *vmcs12)
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return nested_cpu_has2(vmcs12, SECONDARY_EXEC_APIC_REGISTER_VIRT);
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}
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static inline bool nested_cpu_has_vid(struct vmcs12 *vmcs12)
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{
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return nested_cpu_has2(vmcs12, SECONDARY_EXEC_VIRTUAL_INTR_DELIVERY);
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}
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static inline bool is_exception(u32 intr_info)
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{
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return (intr_info & (INTR_INFO_INTR_TYPE_MASK | INTR_INFO_VALID_MASK))
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@ -2436,6 +2451,7 @@ static void nested_vmx_setup_ctls_msrs(struct vcpu_vmx *vmx)
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SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES |
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SECONDARY_EXEC_VIRTUALIZE_X2APIC_MODE |
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SECONDARY_EXEC_APIC_REGISTER_VIRT |
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SECONDARY_EXEC_VIRTUAL_INTR_DELIVERY |
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SECONDARY_EXEC_WBINVD_EXITING |
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SECONDARY_EXEC_XSAVES;
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@ -7441,7 +7457,8 @@ static bool nested_vmx_exit_handled(struct kvm_vcpu *vcpu)
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return nested_cpu_has2(vmcs12,
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SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES);
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case EXIT_REASON_APIC_WRITE:
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/* apic_write should exit unconditionally. */
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case EXIT_REASON_EOI_INDUCED:
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/* apic_write and eoi_induced should exit unconditionally. */
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return 1;
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case EXIT_REASON_EPT_VIOLATION:
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/*
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@ -8633,6 +8650,19 @@ static inline bool nested_vmx_merge_msr_bitmap(struct kvm_vcpu *vcpu,
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vmx_msr_bitmap_nested,
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APIC_BASE_MSR + (APIC_TASKPRI >> 4),
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MSR_TYPE_R | MSR_TYPE_W);
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if (nested_cpu_has_vid(vmcs12)) {
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/* EOI and self-IPI are allowed */
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nested_vmx_disable_intercept_for_msr(
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msr_bitmap,
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vmx_msr_bitmap_nested,
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APIC_BASE_MSR + (APIC_EOI >> 4),
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MSR_TYPE_W);
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nested_vmx_disable_intercept_for_msr(
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msr_bitmap,
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vmx_msr_bitmap_nested,
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APIC_BASE_MSR + (APIC_SELF_IPI >> 4),
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MSR_TYPE_W);
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}
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} else {
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/*
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* Enable reading intercept of all the x2apic
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@ -8650,6 +8680,14 @@ static inline bool nested_vmx_merge_msr_bitmap(struct kvm_vcpu *vcpu,
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vmx_msr_bitmap_nested,
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APIC_BASE_MSR + (APIC_TASKPRI >> 4),
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MSR_TYPE_W);
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__vmx_enable_intercept_for_msr(
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vmx_msr_bitmap_nested,
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APIC_BASE_MSR + (APIC_EOI >> 4),
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MSR_TYPE_W);
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__vmx_enable_intercept_for_msr(
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vmx_msr_bitmap_nested,
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APIC_BASE_MSR + (APIC_SELF_IPI >> 4),
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MSR_TYPE_W);
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}
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kunmap(page);
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nested_release_page_clean(page);
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@ -8661,7 +8699,8 @@ static int nested_vmx_check_apicv_controls(struct kvm_vcpu *vcpu,
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struct vmcs12 *vmcs12)
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{
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if (!nested_cpu_has_virt_x2apic_mode(vmcs12) &&
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!nested_cpu_has_apic_reg_virt(vmcs12))
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!nested_cpu_has_apic_reg_virt(vmcs12) &&
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!nested_cpu_has_vid(vmcs12))
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return 0;
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/*
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@ -8672,6 +8711,14 @@ static int nested_vmx_check_apicv_controls(struct kvm_vcpu *vcpu,
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nested_cpu_has2(vmcs12, SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES))
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return -EINVAL;
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/*
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* If virtual interrupt delivery is enabled,
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* we must exit on external interrupts.
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*/
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if (nested_cpu_has_vid(vmcs12) &&
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!nested_exit_on_intr(vcpu))
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return -EINVAL;
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/* tpr shadow is needed by all apicv features. */
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if (!nested_cpu_has(vmcs12, CPU_BASED_TPR_SHADOW))
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return -EINVAL;
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@ -8979,6 +9026,19 @@ static void prepare_vmcs02(struct kvm_vcpu *vcpu, struct vmcs12 *vmcs12)
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kvm_vcpu_reload_apic_access_page(vcpu);
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}
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if (exec_control & SECONDARY_EXEC_VIRTUAL_INTR_DELIVERY) {
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vmcs_write64(EOI_EXIT_BITMAP0,
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vmcs12->eoi_exit_bitmap0);
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vmcs_write64(EOI_EXIT_BITMAP1,
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vmcs12->eoi_exit_bitmap1);
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vmcs_write64(EOI_EXIT_BITMAP2,
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vmcs12->eoi_exit_bitmap2);
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vmcs_write64(EOI_EXIT_BITMAP3,
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vmcs12->eoi_exit_bitmap3);
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vmcs_write16(GUEST_INTR_STATUS,
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vmcs12->guest_intr_status);
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}
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vmcs_write32(SECONDARY_VM_EXEC_CONTROL, exec_control);
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}
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@ -9550,6 +9610,9 @@ static void prepare_vmcs12(struct kvm_vcpu *vcpu, struct vmcs12 *vmcs12,
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vmcs12->guest_pdptr3 = vmcs_read64(GUEST_PDPTR3);
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}
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if (nested_cpu_has_vid(vmcs12))
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vmcs12->guest_intr_status = vmcs_read16(GUEST_INTR_STATUS);
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vmcs12->vm_entry_controls =
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(vmcs12->vm_entry_controls & ~VM_ENTRY_IA32E_MODE) |
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(vm_entry_controls_get(to_vmx(vcpu)) & VM_ENTRY_IA32E_MODE);
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