nested.c 33.6 KB
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// SPDX-License-Identifier: GPL-2.0-only
/*
 * Kernel-based Virtual Machine driver for Linux
 *
 * AMD SVM support
 *
 * Copyright (C) 2006 Qumranet, Inc.
 * Copyright 2010 Red Hat, Inc. and/or its affiliates.
 *
 * Authors:
 *   Yaniv Kamay  <yaniv@qumranet.com>
 *   Avi Kivity   <avi@qumranet.com>
 */

#define pr_fmt(fmt) "SVM: " fmt

#include <linux/kvm_types.h>
#include <linux/kvm_host.h>
#include <linux/kernel.h>

#include <asm/msr-index.h>
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#include <asm/debugreg.h>
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#include "kvm_emulate.h"
#include "trace.h"
#include "mmu.h"
#include "x86.h"
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#include "cpuid.h"
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#include "lapic.h"
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#include "svm.h"

static void nested_svm_inject_npf_exit(struct kvm_vcpu *vcpu,
				       struct x86_exception *fault)
{
	struct vcpu_svm *svm = to_svm(vcpu);

	if (svm->vmcb->control.exit_code != SVM_EXIT_NPF) {
		/*
		 * TODO: track the cause of the nested page fault, and
		 * correctly fill in the high bits of exit_info_1.
		 */
		svm->vmcb->control.exit_code = SVM_EXIT_NPF;
		svm->vmcb->control.exit_code_hi = 0;
		svm->vmcb->control.exit_info_1 = (1ULL << 32);
		svm->vmcb->control.exit_info_2 = fault->address;
	}

	svm->vmcb->control.exit_info_1 &= ~0xffffffffULL;
	svm->vmcb->control.exit_info_1 |= fault->error_code;

	nested_svm_vmexit(svm);
}

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static void svm_inject_page_fault_nested(struct kvm_vcpu *vcpu, struct x86_exception *fault)
{
       struct vcpu_svm *svm = to_svm(vcpu);
       WARN_ON(!is_guest_mode(vcpu));

       if (vmcb_is_intercept(&svm->nested.ctl, INTERCEPT_EXCEPTION_OFFSET + PF_VECTOR) &&
	   !svm->nested.nested_run_pending) {
               svm->vmcb->control.exit_code = SVM_EXIT_EXCP_BASE + PF_VECTOR;
               svm->vmcb->control.exit_code_hi = 0;
               svm->vmcb->control.exit_info_1 = fault->error_code;
               svm->vmcb->control.exit_info_2 = fault->address;
               nested_svm_vmexit(svm);
       } else {
               kvm_inject_page_fault(vcpu, fault);
       }
}

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static u64 nested_svm_get_tdp_pdptr(struct kvm_vcpu *vcpu, int index)
{
	struct vcpu_svm *svm = to_svm(vcpu);
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	u64 cr3 = svm->nested.ctl.nested_cr3;
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	u64 pdpte;
	int ret;

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	ret = kvm_vcpu_read_guest_page(vcpu, gpa_to_gfn(cr3), &pdpte,
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				       offset_in_page(cr3) + index * 8, 8);
	if (ret)
		return 0;
	return pdpte;
}

static unsigned long nested_svm_get_tdp_cr3(struct kvm_vcpu *vcpu)
{
	struct vcpu_svm *svm = to_svm(vcpu);

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	return svm->nested.ctl.nested_cr3;
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}

static void nested_svm_init_mmu_context(struct kvm_vcpu *vcpu)
{
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	struct vcpu_svm *svm = to_svm(vcpu);

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	WARN_ON(mmu_is_nested(vcpu));

	vcpu->arch.mmu = &vcpu->arch.guest_mmu;
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	kvm_init_shadow_npt_mmu(vcpu, X86_CR0_PG, svm->vmcb01.ptr->save.cr4,
				svm->vmcb01.ptr->save.efer,
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				svm->nested.ctl.nested_cr3);
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	vcpu->arch.mmu->get_guest_pgd     = nested_svm_get_tdp_cr3;
	vcpu->arch.mmu->get_pdptr         = nested_svm_get_tdp_pdptr;
	vcpu->arch.mmu->inject_page_fault = nested_svm_inject_npf_exit;
	reset_shadow_zero_bits_mask(vcpu, vcpu->arch.mmu);
	vcpu->arch.walk_mmu              = &vcpu->arch.nested_mmu;
}

static void nested_svm_uninit_mmu_context(struct kvm_vcpu *vcpu)
{
	vcpu->arch.mmu = &vcpu->arch.root_mmu;
	vcpu->arch.walk_mmu = &vcpu->arch.root_mmu;
}

void recalc_intercepts(struct vcpu_svm *svm)
{
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	struct vmcb_control_area *c, *h, *g;
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	unsigned int i;
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	vmcb_mark_dirty(svm->vmcb, VMCB_INTERCEPTS);
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	if (!is_guest_mode(&svm->vcpu))
		return;

	c = &svm->vmcb->control;
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	h = &svm->vmcb01.ptr->control;
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	g = &svm->nested.ctl;
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	for (i = 0; i < MAX_INTERCEPT; i++)
		c->intercepts[i] = h->intercepts[i];

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	if (g->int_ctl & V_INTR_MASKING_MASK) {
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		/* We only want the cr8 intercept bits of L1 */
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		vmcb_clr_intercept(c, INTERCEPT_CR8_READ);
		vmcb_clr_intercept(c, INTERCEPT_CR8_WRITE);
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		/*
		 * Once running L2 with HF_VINTR_MASK, EFLAGS.IF does not
		 * affect any interrupt we may want to inject; therefore,
		 * interrupt window vmexits are irrelevant to L0.
		 */
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		vmcb_clr_intercept(c, INTERCEPT_VINTR);
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	}

	/* We don't want to see VMMCALLs from a nested guest */
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	vmcb_clr_intercept(c, INTERCEPT_VMMCALL);
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	for (i = 0; i < MAX_INTERCEPT; i++)
		c->intercepts[i] |= g->intercepts[i];
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}

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static void copy_vmcb_control_area(struct vmcb_control_area *dst,
				   struct vmcb_control_area *from)
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{
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	unsigned int i;

	for (i = 0; i < MAX_INTERCEPT; i++)
		dst->intercepts[i] = from->intercepts[i];

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	dst->iopm_base_pa         = from->iopm_base_pa;
	dst->msrpm_base_pa        = from->msrpm_base_pa;
	dst->tsc_offset           = from->tsc_offset;
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	/* asid not copied, it is handled manually for svm->vmcb.  */
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	dst->tlb_ctl              = from->tlb_ctl;
	dst->int_ctl              = from->int_ctl;
	dst->int_vector           = from->int_vector;
	dst->int_state            = from->int_state;
	dst->exit_code            = from->exit_code;
	dst->exit_code_hi         = from->exit_code_hi;
	dst->exit_info_1          = from->exit_info_1;
	dst->exit_info_2          = from->exit_info_2;
	dst->exit_int_info        = from->exit_int_info;
	dst->exit_int_info_err    = from->exit_int_info_err;
	dst->nested_ctl           = from->nested_ctl;
	dst->event_inj            = from->event_inj;
	dst->event_inj_err        = from->event_inj_err;
	dst->nested_cr3           = from->nested_cr3;
	dst->virt_ext              = from->virt_ext;
	dst->pause_filter_count   = from->pause_filter_count;
	dst->pause_filter_thresh  = from->pause_filter_thresh;
}

static bool nested_svm_vmrun_msrpm(struct vcpu_svm *svm)
{
	/*
	 * This function merges the msr permission bitmaps of kvm and the
	 * nested vmcb. It is optimized in that it only merges the parts where
	 * the kvm msr permission bitmap may contain zero bits
	 */
	int i;

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	if (!(vmcb_is_intercept(&svm->nested.ctl, INTERCEPT_MSR_PROT)))
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		return true;

	for (i = 0; i < MSRPM_OFFSETS; i++) {
		u32 value, p;
		u64 offset;

		if (msrpm_offsets[i] == 0xffffffff)
			break;

		p      = msrpm_offsets[i];
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		offset = svm->nested.ctl.msrpm_base_pa + (p * 4);
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		if (kvm_vcpu_read_guest(&svm->vcpu, offset, &value, 4))
			return false;

		svm->nested.msrpm[p] = svm->msrpm[p] | value;
	}

	svm->vmcb->control.msrpm_base_pa = __sme_set(__pa(svm->nested.msrpm));

	return true;
}

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static bool svm_get_nested_state_pages(struct kvm_vcpu *vcpu)
{
	struct vcpu_svm *svm = to_svm(vcpu);
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	if (WARN_ON(!is_guest_mode(vcpu)))
		return true;

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	if (!nested_svm_vmrun_msrpm(svm)) {
		vcpu->run->exit_reason = KVM_EXIT_INTERNAL_ERROR;
		vcpu->run->internal.suberror =
			KVM_INTERNAL_ERROR_EMULATION;
		vcpu->run->internal.ndata = 0;
		return false;
	}

	return true;
}

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static bool nested_vmcb_check_controls(struct vmcb_control_area *control)
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{
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	if ((vmcb_is_intercept(control, INTERCEPT_VMRUN)) == 0)
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		return false;

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	if (control->asid == 0)
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		return false;

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	if ((control->nested_ctl & SVM_NESTED_CTL_NP_ENABLE) &&
	    !npt_enabled)
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		return false;

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	return true;
}

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static bool nested_vmcb_checks(struct vcpu_svm *svm, struct vmcb *vmcb12)
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{
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	struct kvm_vcpu *vcpu = &svm->vcpu;
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	bool vmcb12_lma;

	if ((vmcb12->save.efer & EFER_SVME) == 0)
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		return false;

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	if (((vmcb12->save.cr0 & X86_CR0_CD) == 0) && (vmcb12->save.cr0 & X86_CR0_NW))
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		return false;

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	if (!kvm_dr6_valid(vmcb12->save.dr6) || !kvm_dr7_valid(vmcb12->save.dr7))
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		return false;

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	vmcb12_lma = (vmcb12->save.efer & EFER_LME) && (vmcb12->save.cr0 & X86_CR0_PG);
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	if (vmcb12_lma) {
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		if (!(vmcb12->save.cr4 & X86_CR4_PAE) ||
		    !(vmcb12->save.cr0 & X86_CR0_PE) ||
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		    kvm_vcpu_is_illegal_gpa(vcpu, vmcb12->save.cr3))
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			return false;
	}
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	if (!kvm_is_valid_cr4(&svm->vcpu, vmcb12->save.cr4))
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		return false;

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	return nested_vmcb_check_controls(&vmcb12->control);
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}

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static void nested_load_control_from_vmcb12(struct vcpu_svm *svm,
					    struct vmcb_control_area *control)
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{
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	copy_vmcb_control_area(&svm->nested.ctl, control);
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	/* Copy it here because nested_svm_check_controls will check it.  */
	svm->nested.ctl.asid           = control->asid;
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	svm->nested.ctl.msrpm_base_pa &= ~0x0fffULL;
	svm->nested.ctl.iopm_base_pa  &= ~0x0fffULL;
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}

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/*
 * Synchronize fields that are written by the processor, so that
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 * they can be copied back into the vmcb12.
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 */
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void nested_sync_control_from_vmcb02(struct vcpu_svm *svm)
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{
	u32 mask;
	svm->nested.ctl.event_inj      = svm->vmcb->control.event_inj;
	svm->nested.ctl.event_inj_err  = svm->vmcb->control.event_inj_err;

	/* Only a few fields of int_ctl are written by the processor.  */
	mask = V_IRQ_MASK | V_TPR_MASK;
	if (!(svm->nested.ctl.int_ctl & V_INTR_MASKING_MASK) &&
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	    svm_is_intercept(svm, INTERCEPT_VINTR)) {
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		/*
		 * In order to request an interrupt window, L0 is usurping
		 * svm->vmcb->control.int_ctl and possibly setting V_IRQ
		 * even if it was clear in L1's VMCB.  Restoring it would be
		 * wrong.  However, in this case V_IRQ will remain true until
		 * interrupt_window_interception calls svm_clear_vintr and
		 * restores int_ctl.  We can just leave it aside.
		 */
		mask &= ~V_IRQ_MASK;
	}
	svm->nested.ctl.int_ctl        &= ~mask;
	svm->nested.ctl.int_ctl        |= svm->vmcb->control.int_ctl & mask;
}

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/*
 * Transfer any event that L0 or L1 wanted to inject into L2 to
 * EXIT_INT_INFO.
 */
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static void nested_save_pending_event_to_vmcb12(struct vcpu_svm *svm,
						struct vmcb *vmcb12)
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{
	struct kvm_vcpu *vcpu = &svm->vcpu;
	u32 exit_int_info = 0;
	unsigned int nr;

	if (vcpu->arch.exception.injected) {
		nr = vcpu->arch.exception.nr;
		exit_int_info = nr | SVM_EVTINJ_VALID | SVM_EVTINJ_TYPE_EXEPT;

		if (vcpu->arch.exception.has_error_code) {
			exit_int_info |= SVM_EVTINJ_VALID_ERR;
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			vmcb12->control.exit_int_info_err =
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				vcpu->arch.exception.error_code;
		}

	} else if (vcpu->arch.nmi_injected) {
		exit_int_info = SVM_EVTINJ_VALID | SVM_EVTINJ_TYPE_NMI;

	} else if (vcpu->arch.interrupt.injected) {
		nr = vcpu->arch.interrupt.nr;
		exit_int_info = nr | SVM_EVTINJ_VALID;

		if (vcpu->arch.interrupt.soft)
			exit_int_info |= SVM_EVTINJ_TYPE_SOFT;
		else
			exit_int_info |= SVM_EVTINJ_TYPE_INTR;
	}

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	vmcb12->control.exit_int_info = exit_int_info;
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}

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static inline bool nested_npt_enabled(struct vcpu_svm *svm)
{
	return svm->nested.ctl.nested_ctl & SVM_NESTED_CTL_NP_ENABLE;
}

/*
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 * Load guest's/host's cr3 on nested vmentry or vmexit. @nested_npt is true
 * if we are emulating VM-Entry into a guest with NPT enabled.
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 */
static int nested_svm_load_cr3(struct kvm_vcpu *vcpu, unsigned long cr3,
			       bool nested_npt)
{
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	if (kvm_vcpu_is_illegal_gpa(vcpu, cr3))
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		return -EINVAL;

	if (!nested_npt && is_pae_paging(vcpu) &&
	    (cr3 != kvm_read_cr3(vcpu) || pdptrs_changed(vcpu))) {
		if (!load_pdptrs(vcpu, vcpu->arch.walk_mmu, cr3))
			return -EINVAL;
	}

	/*
	 * TODO: optimize unconditional TLB flush/MMU sync here and in
	 * kvm_init_shadow_npt_mmu().
	 */
	if (!nested_npt)
		kvm_mmu_new_pgd(vcpu, cr3, false, false);

	vcpu->arch.cr3 = cr3;
	kvm_register_mark_available(vcpu, VCPU_EXREG_CR3);

	kvm_init_mmu(vcpu, false);

	return 0;
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}

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void nested_vmcb02_compute_g_pat(struct vcpu_svm *svm)
{
	if (!svm->nested.vmcb02.ptr)
		return;

	/* FIXME: merge g_pat from vmcb01 and vmcb12.  */
	svm->nested.vmcb02.ptr->save.g_pat = svm->vmcb01.ptr->save.g_pat;
}

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static void nested_vmcb02_prepare_save(struct vcpu_svm *svm, struct vmcb *vmcb12)
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{
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	nested_vmcb02_compute_g_pat(svm);

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	/* Load the nested guest state */
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	svm->vmcb->save.es = vmcb12->save.es;
	svm->vmcb->save.cs = vmcb12->save.cs;
	svm->vmcb->save.ss = vmcb12->save.ss;
	svm->vmcb->save.ds = vmcb12->save.ds;
	svm->vmcb->save.gdtr = vmcb12->save.gdtr;
	svm->vmcb->save.idtr = vmcb12->save.idtr;
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	kvm_set_rflags(&svm->vcpu, vmcb12->save.rflags | X86_EFLAGS_FIXED);
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	svm_set_efer(&svm->vcpu, vmcb12->save.efer);
	svm_set_cr0(&svm->vcpu, vmcb12->save.cr0);
	svm_set_cr4(&svm->vcpu, vmcb12->save.cr4);
	svm->vmcb->save.cr2 = svm->vcpu.arch.cr2 = vmcb12->save.cr2;
	kvm_rax_write(&svm->vcpu, vmcb12->save.rax);
	kvm_rsp_write(&svm->vcpu, vmcb12->save.rsp);
	kvm_rip_write(&svm->vcpu, vmcb12->save.rip);
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	/* In case we don't even reach vcpu_run, the fields are not updated */
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	svm->vmcb->save.rax = vmcb12->save.rax;
	svm->vmcb->save.rsp = vmcb12->save.rsp;
	svm->vmcb->save.rip = vmcb12->save.rip;
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	svm->vmcb->save.dr7 = vmcb12->save.dr7 | DR7_FIXED_1;
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	svm->vcpu.arch.dr6  = vmcb12->save.dr6 | DR6_ACTIVE_LOW;
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	svm->vmcb->save.cpl = vmcb12->save.cpl;
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}
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static void nested_vmcb02_prepare_control(struct vcpu_svm *svm)
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{
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	const u32 mask = V_INTR_MASKING_MASK | V_GIF_ENABLE_MASK | V_GIF_MASK;
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	/* FIXME: go through each field one by one.  */
	svm->nested.vmcb02.ptr->control = svm->vmcb01.ptr->control;

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	if (nested_npt_enabled(svm))
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		nested_svm_init_mmu_context(&svm->vcpu);

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	svm->vmcb->control.tsc_offset = svm->vcpu.arch.tsc_offset =
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		svm->vcpu.arch.l1_tsc_offset + svm->nested.ctl.tsc_offset;
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	svm->vmcb->control.int_ctl             =
		(svm->nested.ctl.int_ctl & ~mask) |
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		(svm->vmcb01.ptr->control.int_ctl & mask);
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	svm->vmcb->control.virt_ext            = svm->nested.ctl.virt_ext;
	svm->vmcb->control.int_vector          = svm->nested.ctl.int_vector;
	svm->vmcb->control.int_state           = svm->nested.ctl.int_state;
	svm->vmcb->control.event_inj           = svm->nested.ctl.event_inj;
	svm->vmcb->control.event_inj_err       = svm->nested.ctl.event_inj_err;
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	svm->vmcb->control.pause_filter_count  = svm->nested.ctl.pause_filter_count;
	svm->vmcb->control.pause_filter_thresh = svm->nested.ctl.pause_filter_thresh;
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	/* Enter Guest-Mode */
	enter_guest_mode(&svm->vcpu);

	/*
	 * Merge guest and host intercepts - must be called  with vcpu in
	 * guest-mode to take affect here
	 */
	recalc_intercepts(svm);

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	vmcb_mark_all_dirty(svm->vmcb);
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}

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int enter_svm_guest_mode(struct vcpu_svm *svm, u64 vmcb12_gpa,
			 struct vmcb *vmcb12)
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{
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	int ret;

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	trace_kvm_nested_vmrun(svm->vmcb->save.rip, vmcb12_gpa,
			       vmcb12->save.rip,
			       vmcb12->control.int_ctl,
			       vmcb12->control.event_inj,
			       vmcb12->control.nested_ctl);

	trace_kvm_nested_intercepts(vmcb12->control.intercepts[INTERCEPT_CR] & 0xffff,
				    vmcb12->control.intercepts[INTERCEPT_CR] >> 16,
				    vmcb12->control.intercepts[INTERCEPT_EXCEPTION],
				    vmcb12->control.intercepts[INTERCEPT_WORD3],
				    vmcb12->control.intercepts[INTERCEPT_WORD4],
				    vmcb12->control.intercepts[INTERCEPT_WORD5]);


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	svm->nested.vmcb12_gpa = vmcb12_gpa;
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	WARN_ON(svm->vmcb == svm->nested.vmcb02.ptr);

	nested_svm_vmloadsave(svm->vmcb01.ptr, svm->nested.vmcb02.ptr);
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	nested_load_control_from_vmcb12(svm, &vmcb12->control);
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	svm_switch_vmcb(svm, &svm->nested.vmcb02);
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	nested_vmcb02_prepare_control(svm);
	nested_vmcb02_prepare_save(svm, vmcb12);
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	ret = nested_svm_load_cr3(&svm->vcpu, vmcb12->save.cr3,
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				  nested_npt_enabled(svm));
	if (ret)
		return ret;

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	if (!npt_enabled)
		svm->vcpu.arch.mmu->inject_page_fault = svm_inject_page_fault_nested;

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	svm_set_gif(svm, true);
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	return 0;
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}

int nested_svm_vmrun(struct vcpu_svm *svm)
{
	int ret;
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	struct vmcb *vmcb12;
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	struct kvm_host_map map;
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	u64 vmcb12_gpa;
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	++svm->vcpu.stat.nested_run;

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	if (is_smm(&svm->vcpu)) {
		kvm_queue_exception(&svm->vcpu, UD_VECTOR);
		return 1;
	}
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	vmcb12_gpa = svm->vmcb->save.rax;
	ret = kvm_vcpu_map(&svm->vcpu, gpa_to_gfn(vmcb12_gpa), &map);
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	if (ret == -EINVAL) {
		kvm_inject_gp(&svm->vcpu, 0);
		return 1;
	} else if (ret) {
		return kvm_skip_emulated_instruction(&svm->vcpu);
	}

	ret = kvm_skip_emulated_instruction(&svm->vcpu);

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	vmcb12 = map.hva;
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	if (WARN_ON_ONCE(!svm->nested.initialized))
		return -EINVAL;

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	if (!nested_vmcb_checks(svm, vmcb12)) {
		vmcb12->control.exit_code    = SVM_EXIT_ERR;
		vmcb12->control.exit_code_hi = 0;
		vmcb12->control.exit_info_1  = 0;
		vmcb12->control.exit_info_2  = 0;
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		goto out;
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	}


	/* Clear internal status */
	kvm_clear_exception_queue(&svm->vcpu);
	kvm_clear_interrupt_queue(&svm->vcpu);

	/*
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	 * Since vmcb01 is not in use, we can use it to store some of the L1
	 * state.
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	 */
555 556 557 558 559 560 561 562
	svm->vmcb01.ptr->save.efer   = svm->vcpu.arch.efer;
	svm->vmcb01.ptr->save.cr0    = kvm_read_cr0(&svm->vcpu);
	svm->vmcb01.ptr->save.cr4    = svm->vcpu.arch.cr4;
	svm->vmcb01.ptr->save.rflags = kvm_get_rflags(&svm->vcpu);
	svm->vmcb01.ptr->save.rip    = kvm_rip_read(&svm->vcpu);

	if (!npt_enabled)
		svm->vmcb01.ptr->save.cr3 = kvm_read_cr3(&svm->vcpu);
563

564
	svm->nested.nested_run_pending = 1;
565

566
	if (enter_svm_guest_mode(svm, vmcb12_gpa, vmcb12))
567
		goto out_exit_err;
568

569 570
	if (nested_svm_vmrun_msrpm(svm))
		goto out;
571

572 573 574 575 576 577 578 579 580
out_exit_err:
	svm->nested.nested_run_pending = 0;

	svm->vmcb->control.exit_code    = SVM_EXIT_ERR;
	svm->vmcb->control.exit_code_hi = 0;
	svm->vmcb->control.exit_info_1  = 0;
	svm->vmcb->control.exit_info_2  = 0;

	nested_svm_vmexit(svm);
581

582 583 584
out:
	kvm_vcpu_unmap(&svm->vcpu, &map, true);

585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606
	return ret;
}

void nested_svm_vmloadsave(struct vmcb *from_vmcb, struct vmcb *to_vmcb)
{
	to_vmcb->save.fs = from_vmcb->save.fs;
	to_vmcb->save.gs = from_vmcb->save.gs;
	to_vmcb->save.tr = from_vmcb->save.tr;
	to_vmcb->save.ldtr = from_vmcb->save.ldtr;
	to_vmcb->save.kernel_gs_base = from_vmcb->save.kernel_gs_base;
	to_vmcb->save.star = from_vmcb->save.star;
	to_vmcb->save.lstar = from_vmcb->save.lstar;
	to_vmcb->save.cstar = from_vmcb->save.cstar;
	to_vmcb->save.sfmask = from_vmcb->save.sfmask;
	to_vmcb->save.sysenter_cs = from_vmcb->save.sysenter_cs;
	to_vmcb->save.sysenter_esp = from_vmcb->save.sysenter_esp;
	to_vmcb->save.sysenter_eip = from_vmcb->save.sysenter_eip;
}

int nested_svm_vmexit(struct vcpu_svm *svm)
{
	int rc;
607
	struct vmcb *vmcb12;
608 609 610
	struct vmcb *vmcb = svm->vmcb;
	struct kvm_host_map map;

611
	rc = kvm_vcpu_map(&svm->vcpu, gpa_to_gfn(svm->nested.vmcb12_gpa), &map);
612 613 614 615 616 617
	if (rc) {
		if (rc == -EINVAL)
			kvm_inject_gp(&svm->vcpu, 0);
		return 1;
	}

618
	vmcb12 = map.hva;
619 620 621

	/* Exit Guest-Mode */
	leave_guest_mode(&svm->vcpu);
622
	svm->nested.vmcb12_gpa = 0;
623
	WARN_ON_ONCE(svm->nested.nested_run_pending);
624

625 626
	kvm_clear_request(KVM_REQ_GET_NESTED_STATE_PAGES, &svm->vcpu);

627 628 629
	/* in case we halted in L2 */
	svm->vcpu.arch.mp_state = KVM_MP_STATE_RUNNABLE;

630 631
	/* Give the current vmcb to the guest */

632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657
	vmcb12->save.es     = vmcb->save.es;
	vmcb12->save.cs     = vmcb->save.cs;
	vmcb12->save.ss     = vmcb->save.ss;
	vmcb12->save.ds     = vmcb->save.ds;
	vmcb12->save.gdtr   = vmcb->save.gdtr;
	vmcb12->save.idtr   = vmcb->save.idtr;
	vmcb12->save.efer   = svm->vcpu.arch.efer;
	vmcb12->save.cr0    = kvm_read_cr0(&svm->vcpu);
	vmcb12->save.cr3    = kvm_read_cr3(&svm->vcpu);
	vmcb12->save.cr2    = vmcb->save.cr2;
	vmcb12->save.cr4    = svm->vcpu.arch.cr4;
	vmcb12->save.rflags = kvm_get_rflags(&svm->vcpu);
	vmcb12->save.rip    = kvm_rip_read(&svm->vcpu);
	vmcb12->save.rsp    = kvm_rsp_read(&svm->vcpu);
	vmcb12->save.rax    = kvm_rax_read(&svm->vcpu);
	vmcb12->save.dr7    = vmcb->save.dr7;
	vmcb12->save.dr6    = svm->vcpu.arch.dr6;
	vmcb12->save.cpl    = vmcb->save.cpl;

	vmcb12->control.int_state         = vmcb->control.int_state;
	vmcb12->control.exit_code         = vmcb->control.exit_code;
	vmcb12->control.exit_code_hi      = vmcb->control.exit_code_hi;
	vmcb12->control.exit_info_1       = vmcb->control.exit_info_1;
	vmcb12->control.exit_info_2       = vmcb->control.exit_info_2;

	if (vmcb12->control.exit_code != SVM_EXIT_ERR)
658
		nested_save_pending_event_to_vmcb12(svm, vmcb12);
659 660

	if (svm->nrips_enabled)
661
		vmcb12->control.next_rip  = vmcb->control.next_rip;
662

663 664 665 666
	vmcb12->control.int_ctl           = svm->nested.ctl.int_ctl;
	vmcb12->control.tlb_ctl           = svm->nested.ctl.tlb_ctl;
	vmcb12->control.event_inj         = svm->nested.ctl.event_inj;
	vmcb12->control.event_inj_err     = svm->nested.ctl.event_inj_err;
667

668
	vmcb12->control.pause_filter_count =
669
		svm->vmcb->control.pause_filter_count;
670
	vmcb12->control.pause_filter_thresh =
671 672
		svm->vmcb->control.pause_filter_thresh;

673 674 675
	nested_svm_vmloadsave(svm->nested.vmcb02.ptr, svm->vmcb01.ptr);

	svm_switch_vmcb(svm, &svm->vmcb01);
676

677 678 679 680
	/*
	 * On vmexit the  GIF is set to false and
	 * no event can be injected in L1.
	 */
681
	svm_set_gif(svm, false);
682
	svm->vmcb->control.exit_int_info = 0;
683

684 685 686
	svm->vmcb->control.tsc_offset = svm->vcpu.arch.tsc_offset =
		svm->vcpu.arch.l1_tsc_offset;

687
	svm->nested.ctl.nested_cr3 = 0;
688

689 690 691 692 693 694 695 696 697 698 699 700 701
	/*
	 * Restore processor state that had been saved in vmcb01
	 */
	kvm_set_rflags(&svm->vcpu, svm->vmcb->save.rflags | X86_EFLAGS_FIXED);
	svm_set_efer(&svm->vcpu, svm->vmcb->save.efer);
	svm_set_cr0(&svm->vcpu, svm->vmcb->save.cr0 | X86_CR0_PE);
	svm_set_cr4(&svm->vcpu, svm->vmcb->save.cr4);
	kvm_rax_write(&svm->vcpu, svm->vmcb->save.rax);
	kvm_rsp_write(&svm->vcpu, svm->vmcb->save.rsp);
	kvm_rip_write(&svm->vcpu, svm->vmcb->save.rip);

	svm->vcpu.arch.dr7 = DR7_FIXED_1;
	kvm_update_dr7(&svm->vcpu);
702

703
	vmcb_mark_all_dirty(svm->vmcb);
704

705 706 707 708 709
	trace_kvm_nested_vmexit_inject(vmcb12->control.exit_code,
				       vmcb12->control.exit_info_1,
				       vmcb12->control.exit_info_2,
				       vmcb12->control.exit_int_info,
				       vmcb12->control.exit_int_info_err,
710 711
				       KVM_ISA_SVM);

712 713 714
	kvm_vcpu_unmap(&svm->vcpu, &map, true);

	nested_svm_uninit_mmu_context(&svm->vcpu);
715

716
	rc = nested_svm_load_cr3(&svm->vcpu, svm->vmcb->save.cr3, false);
717 718
	if (rc)
		return 1;
719

720 721 722 723 724 725 726 727 728 729 730
	/*
	 * Drop what we picked up for L2 via svm_complete_interrupts() so it
	 * doesn't end up in L1.
	 */
	svm->vcpu.arch.nmi_injected = false;
	kvm_clear_exception_queue(&svm->vcpu);
	kvm_clear_interrupt_queue(&svm->vcpu);

	return 0;
}

731 732
int svm_allocate_nested(struct vcpu_svm *svm)
{
733
	struct page *vmcb02_page;
734 735 736 737

	if (svm->nested.initialized)
		return 0;

738 739
	vmcb02_page = alloc_page(GFP_KERNEL_ACCOUNT | __GFP_ZERO);
	if (!vmcb02_page)
740
		return -ENOMEM;
741 742
	svm->nested.vmcb02.ptr = page_address(vmcb02_page);
	svm->nested.vmcb02.pa = __sme_set(page_to_pfn(vmcb02_page) << PAGE_SHIFT);
743 744 745

	svm->nested.msrpm = svm_vcpu_alloc_msrpm();
	if (!svm->nested.msrpm)
746
		goto err_free_vmcb02;
747 748 749 750 751
	svm_vcpu_init_msrpm(&svm->vcpu, svm->nested.msrpm);

	svm->nested.initialized = true;
	return 0;

752 753
err_free_vmcb02:
	__free_page(vmcb02_page);
754 755 756 757 758 759 760 761 762 763 764
	return -ENOMEM;
}

void svm_free_nested(struct vcpu_svm *svm)
{
	if (!svm->nested.initialized)
		return;

	svm_vcpu_free_msrpm(svm->nested.msrpm);
	svm->nested.msrpm = NULL;

765 766
	__free_page(virt_to_page(svm->nested.vmcb02.ptr));
	svm->nested.vmcb02.ptr = NULL;
767 768 769 770

	svm->nested.initialized = false;
}

771 772 773 774 775 776 777 778
/*
 * Forcibly leave nested mode in order to be able to reset the VCPU later on.
 */
void svm_leave_nested(struct vcpu_svm *svm)
{
	if (is_guest_mode(&svm->vcpu)) {
		svm->nested.nested_run_pending = 0;
		leave_guest_mode(&svm->vcpu);
779 780 781

		svm_switch_vmcb(svm, &svm->nested.vmcb02);

782
		nested_svm_uninit_mmu_context(&svm->vcpu);
783
		vmcb_mark_all_dirty(svm->vmcb);
784
	}
785 786

	kvm_clear_request(KVM_REQ_GET_NESTED_STATE_PAGES, &svm->vcpu);
787 788
}

789 790 791 792 793
static int nested_svm_exit_handled_msr(struct vcpu_svm *svm)
{
	u32 offset, msr, value;
	int write, mask;

794
	if (!(vmcb_is_intercept(&svm->nested.ctl, INTERCEPT_MSR_PROT)))
795 796 797 798 799 800 801 802 803 804 805 806 807
		return NESTED_EXIT_HOST;

	msr    = svm->vcpu.arch.regs[VCPU_REGS_RCX];
	offset = svm_msrpm_offset(msr);
	write  = svm->vmcb->control.exit_info_1 & 1;
	mask   = 1 << ((2 * (msr & 0xf)) + write);

	if (offset == MSR_INVALID)
		return NESTED_EXIT_DONE;

	/* Offset is in 32 bit units but need in 8 bit units */
	offset *= 4;

808
	if (kvm_vcpu_read_guest(&svm->vcpu, svm->nested.ctl.msrpm_base_pa + offset, &value, 4))
809 810 811 812 813 814 815 816 817 818 819 820
		return NESTED_EXIT_DONE;

	return (value & mask) ? NESTED_EXIT_DONE : NESTED_EXIT_HOST;
}

static int nested_svm_intercept_ioio(struct vcpu_svm *svm)
{
	unsigned port, size, iopm_len;
	u16 val, mask;
	u8 start_bit;
	u64 gpa;

821
	if (!(vmcb_is_intercept(&svm->nested.ctl, INTERCEPT_IOIO_PROT)))
822 823 824 825 826
		return NESTED_EXIT_HOST;

	port = svm->vmcb->control.exit_info_1 >> 16;
	size = (svm->vmcb->control.exit_info_1 & SVM_IOIO_SIZE_MASK) >>
		SVM_IOIO_SIZE_SHIFT;
827
	gpa  = svm->nested.ctl.iopm_base_pa + (port / 8);
828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851
	start_bit = port % 8;
	iopm_len = (start_bit + size > 8) ? 2 : 1;
	mask = (0xf >> (4 - size)) << start_bit;
	val = 0;

	if (kvm_vcpu_read_guest(&svm->vcpu, gpa, &val, iopm_len))
		return NESTED_EXIT_DONE;

	return (val & mask) ? NESTED_EXIT_DONE : NESTED_EXIT_HOST;
}

static int nested_svm_intercept(struct vcpu_svm *svm)
{
	u32 exit_code = svm->vmcb->control.exit_code;
	int vmexit = NESTED_EXIT_HOST;

	switch (exit_code) {
	case SVM_EXIT_MSR:
		vmexit = nested_svm_exit_handled_msr(svm);
		break;
	case SVM_EXIT_IOIO:
		vmexit = nested_svm_intercept_ioio(svm);
		break;
	case SVM_EXIT_READ_CR0 ... SVM_EXIT_WRITE_CR8: {
852
		if (vmcb_is_intercept(&svm->nested.ctl, exit_code))
853 854 855 856
			vmexit = NESTED_EXIT_DONE;
		break;
	}
	case SVM_EXIT_READ_DR0 ... SVM_EXIT_WRITE_DR7: {
857
		if (vmcb_is_intercept(&svm->nested.ctl, exit_code))
858 859 860 861
			vmexit = NESTED_EXIT_DONE;
		break;
	}
	case SVM_EXIT_EXCP_BASE ... SVM_EXIT_EXCP_BASE + 0x1f: {
862 863 864 865 866 867
		/*
		 * Host-intercepted exceptions have been checked already in
		 * nested_svm_exit_special.  There is nothing to do here,
		 * the vmexit is injected by svm_check_nested_events.
		 */
		vmexit = NESTED_EXIT_DONE;
868 869 870 871 872 873 874
		break;
	}
	case SVM_EXIT_ERR: {
		vmexit = NESTED_EXIT_DONE;
		break;
	}
	default: {
875
		if (vmcb_is_intercept(&svm->nested.ctl, exit_code))
876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910
			vmexit = NESTED_EXIT_DONE;
	}
	}

	return vmexit;
}

int nested_svm_exit_handled(struct vcpu_svm *svm)
{
	int vmexit;

	vmexit = nested_svm_intercept(svm);

	if (vmexit == NESTED_EXIT_DONE)
		nested_svm_vmexit(svm);

	return vmexit;
}

int nested_svm_check_permissions(struct vcpu_svm *svm)
{
	if (!(svm->vcpu.arch.efer & EFER_SVME) ||
	    !is_paging(&svm->vcpu)) {
		kvm_queue_exception(&svm->vcpu, UD_VECTOR);
		return 1;
	}

	if (svm->vmcb->save.cpl) {
		kvm_inject_gp(&svm->vcpu, 0);
		return 1;
	}

	return 0;
}

911
static bool nested_exit_on_exception(struct vcpu_svm *svm)
912
{
913
	unsigned int nr = svm->vcpu.arch.exception.nr;
914

915
	return (svm->nested.ctl.intercepts[INTERCEPT_EXCEPTION] & BIT(nr));
916
}
917

918 919 920
static void nested_svm_inject_exception_vmexit(struct vcpu_svm *svm)
{
	unsigned int nr = svm->vcpu.arch.exception.nr;
921 922 923

	svm->vmcb->control.exit_code = SVM_EXIT_EXCP_BASE + nr;
	svm->vmcb->control.exit_code_hi = 0;
924 925 926

	if (svm->vcpu.arch.exception.has_error_code)
		svm->vmcb->control.exit_info_1 = svm->vcpu.arch.exception.error_code;
927 928 929 930 931

	/*
	 * EXITINFO2 is undefined for all exception intercepts other
	 * than #PF.
	 */
932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947
	if (nr == PF_VECTOR) {
		if (svm->vcpu.arch.exception.nested_apf)
			svm->vmcb->control.exit_info_2 = svm->vcpu.arch.apf.nested_apf_token;
		else if (svm->vcpu.arch.exception.has_payload)
			svm->vmcb->control.exit_info_2 = svm->vcpu.arch.exception.payload;
		else
			svm->vmcb->control.exit_info_2 = svm->vcpu.arch.cr2;
	} else if (nr == DB_VECTOR) {
		/* See inject_pending_event.  */
		kvm_deliver_exception_payload(&svm->vcpu);
		if (svm->vcpu.arch.dr7 & DR7_GD) {
			svm->vcpu.arch.dr7 &= ~DR7_GD;
			kvm_update_dr7(&svm->vcpu);
		}
	} else
		WARN_ON(svm->vcpu.arch.exception.has_payload);
948

949
	nested_svm_vmexit(svm);
950 951
}

952 953 954 955 956 957 958 959 960
static void nested_svm_smi(struct vcpu_svm *svm)
{
	svm->vmcb->control.exit_code = SVM_EXIT_SMI;
	svm->vmcb->control.exit_info_1 = 0;
	svm->vmcb->control.exit_info_2 = 0;

	nested_svm_vmexit(svm);
}

961 962 963 964 965 966 967 968 969
static void nested_svm_nmi(struct vcpu_svm *svm)
{
	svm->vmcb->control.exit_code = SVM_EXIT_NMI;
	svm->vmcb->control.exit_info_1 = 0;
	svm->vmcb->control.exit_info_2 = 0;

	nested_svm_vmexit(svm);
}

970 971
static void nested_svm_intr(struct vcpu_svm *svm)
{
972 973
	trace_kvm_nested_intr_vmexit(svm->vmcb->save.rip);

974 975 976 977
	svm->vmcb->control.exit_code   = SVM_EXIT_INTR;
	svm->vmcb->control.exit_info_1 = 0;
	svm->vmcb->control.exit_info_2 = 0;

978
	nested_svm_vmexit(svm);
979 980
}

981 982
static inline bool nested_exit_on_init(struct vcpu_svm *svm)
{
983
	return vmcb_is_intercept(&svm->nested.ctl, INTERCEPT_INIT);
984 985 986 987 988 989 990 991 992 993 994 995
}

static void nested_svm_init(struct vcpu_svm *svm)
{
	svm->vmcb->control.exit_code   = SVM_EXIT_INIT;
	svm->vmcb->control.exit_info_1 = 0;
	svm->vmcb->control.exit_info_2 = 0;

	nested_svm_vmexit(svm);
}


996
static int svm_check_nested_events(struct kvm_vcpu *vcpu)
997 998 999
{
	struct vcpu_svm *svm = to_svm(vcpu);
	bool block_nested_events =
P
Paolo Bonzini 已提交
1000
		kvm_event_needs_reinjection(vcpu) || svm->nested.nested_run_pending;
1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011
	struct kvm_lapic *apic = vcpu->arch.apic;

	if (lapic_in_kernel(vcpu) &&
	    test_bit(KVM_APIC_INIT, &apic->pending_events)) {
		if (block_nested_events)
			return -EBUSY;
		if (!nested_exit_on_init(svm))
			return 0;
		nested_svm_init(svm);
		return 0;
	}
1012

1013 1014 1015 1016 1017 1018 1019 1020 1021
	if (vcpu->arch.exception.pending) {
		if (block_nested_events)
                        return -EBUSY;
		if (!nested_exit_on_exception(svm))
			return 0;
		nested_svm_inject_exception_vmexit(svm);
		return 0;
	}

1022
	if (vcpu->arch.smi_pending && !svm_smi_blocked(vcpu)) {
1023 1024
		if (block_nested_events)
			return -EBUSY;
1025 1026
		if (!nested_exit_on_smi(svm))
			return 0;
1027 1028 1029 1030
		nested_svm_smi(svm);
		return 0;
	}

1031
	if (vcpu->arch.nmi_pending && !svm_nmi_blocked(vcpu)) {
1032 1033
		if (block_nested_events)
			return -EBUSY;
1034 1035
		if (!nested_exit_on_nmi(svm))
			return 0;
1036 1037 1038 1039
		nested_svm_nmi(svm);
		return 0;
	}

1040
	if (kvm_cpu_has_interrupt(vcpu) && !svm_interrupt_blocked(vcpu)) {
1041 1042
		if (block_nested_events)
			return -EBUSY;
1043 1044
		if (!nested_exit_on_intr(svm))
			return 0;
1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059
		nested_svm_intr(svm);
		return 0;
	}

	return 0;
}

int nested_svm_exit_special(struct vcpu_svm *svm)
{
	u32 exit_code = svm->vmcb->control.exit_code;

	switch (exit_code) {
	case SVM_EXIT_INTR:
	case SVM_EXIT_NMI:
	case SVM_EXIT_NPF:
1060 1061 1062 1063
		return NESTED_EXIT_HOST;
	case SVM_EXIT_EXCP_BASE ... SVM_EXIT_EXCP_BASE + 0x1f: {
		u32 excp_bits = 1 << (exit_code - SVM_EXIT_EXCP_BASE);

1064 1065
		if (svm->vmcb01.ptr->control.intercepts[INTERCEPT_EXCEPTION] &
		    excp_bits)
1066
			return NESTED_EXIT_HOST;
1067
		else if (exit_code == SVM_EXIT_EXCP_BASE + PF_VECTOR &&
1068
			 svm->vcpu.arch.apf.host_apf_flags)
1069
			/* Trap async PF even if not shadowing */
1070 1071
			return NESTED_EXIT_HOST;
		break;
1072
	}
1073 1074 1075 1076 1077 1078
	default:
		break;
	}

	return NESTED_EXIT_CONTINUE;
}
1079

1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102
static int svm_get_nested_state(struct kvm_vcpu *vcpu,
				struct kvm_nested_state __user *user_kvm_nested_state,
				u32 user_data_size)
{
	struct vcpu_svm *svm;
	struct kvm_nested_state kvm_state = {
		.flags = 0,
		.format = KVM_STATE_NESTED_FORMAT_SVM,
		.size = sizeof(kvm_state),
	};
	struct vmcb __user *user_vmcb = (struct vmcb __user *)
		&user_kvm_nested_state->data.svm[0];

	if (!vcpu)
		return kvm_state.size + KVM_STATE_NESTED_SVM_VMCB_SIZE;

	svm = to_svm(vcpu);

	if (user_data_size < kvm_state.size)
		goto out;

	/* First fill in the header and copy it out.  */
	if (is_guest_mode(vcpu)) {
1103
		kvm_state.hdr.svm.vmcb_pa = svm->nested.vmcb12_gpa;
1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128
		kvm_state.size += KVM_STATE_NESTED_SVM_VMCB_SIZE;
		kvm_state.flags |= KVM_STATE_NESTED_GUEST_MODE;

		if (svm->nested.nested_run_pending)
			kvm_state.flags |= KVM_STATE_NESTED_RUN_PENDING;
	}

	if (gif_set(svm))
		kvm_state.flags |= KVM_STATE_NESTED_GIF_SET;

	if (copy_to_user(user_kvm_nested_state, &kvm_state, sizeof(kvm_state)))
		return -EFAULT;

	if (!is_guest_mode(vcpu))
		goto out;

	/*
	 * Copy over the full size of the VMCB rather than just the size
	 * of the structs.
	 */
	if (clear_user(user_vmcb, KVM_STATE_NESTED_SVM_VMCB_SIZE))
		return -EFAULT;
	if (copy_to_user(&user_vmcb->control, &svm->nested.ctl,
			 sizeof(user_vmcb->control)))
		return -EFAULT;
1129
	if (copy_to_user(&user_vmcb->save, &svm->vmcb01.ptr->save,
1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142
			 sizeof(user_vmcb->save)))
		return -EFAULT;
out:
	return kvm_state.size;
}

static int svm_set_nested_state(struct kvm_vcpu *vcpu,
				struct kvm_nested_state __user *user_kvm_nested_state,
				struct kvm_nested_state *kvm_state)
{
	struct vcpu_svm *svm = to_svm(vcpu);
	struct vmcb __user *user_vmcb = (struct vmcb __user *)
		&user_kvm_nested_state->data.svm[0];
1143 1144 1145
	struct vmcb_control_area *ctl;
	struct vmcb_save_area *save;
	int ret;
1146 1147
	u32 cr0;

1148 1149 1150
	BUILD_BUG_ON(sizeof(struct vmcb_control_area) + sizeof(struct vmcb_save_area) >
		     KVM_STATE_NESTED_SVM_VMCB_SIZE);

1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174
	if (kvm_state->format != KVM_STATE_NESTED_FORMAT_SVM)
		return -EINVAL;

	if (kvm_state->flags & ~(KVM_STATE_NESTED_GUEST_MODE |
				 KVM_STATE_NESTED_RUN_PENDING |
				 KVM_STATE_NESTED_GIF_SET))
		return -EINVAL;

	/*
	 * If in guest mode, vcpu->arch.efer actually refers to the L2 guest's
	 * EFER.SVME, but EFER.SVME still has to be 1 for VMRUN to succeed.
	 */
	if (!(vcpu->arch.efer & EFER_SVME)) {
		/* GIF=1 and no guest mode are required if SVME=0.  */
		if (kvm_state->flags != KVM_STATE_NESTED_GIF_SET)
			return -EINVAL;
	}

	/* SMM temporarily disables SVM, so we cannot be in guest mode.  */
	if (is_smm(vcpu) && (kvm_state->flags & KVM_STATE_NESTED_GUEST_MODE))
		return -EINVAL;

	if (!(kvm_state->flags & KVM_STATE_NESTED_GUEST_MODE)) {
		svm_leave_nested(svm);
1175 1176
		svm_set_gif(svm, !!(kvm_state->flags & KVM_STATE_NESTED_GIF_SET));
		return 0;
1177 1178 1179 1180 1181 1182 1183
	}

	if (!page_address_valid(vcpu, kvm_state->hdr.svm.vmcb_pa))
		return -EINVAL;
	if (kvm_state->size < sizeof(*kvm_state) + KVM_STATE_NESTED_SVM_VMCB_SIZE)
		return -EINVAL;

1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198
	ret  = -ENOMEM;
	ctl  = kzalloc(sizeof(*ctl),  GFP_KERNEL);
	save = kzalloc(sizeof(*save), GFP_KERNEL);
	if (!ctl || !save)
		goto out_free;

	ret = -EFAULT;
	if (copy_from_user(ctl, &user_vmcb->control, sizeof(*ctl)))
		goto out_free;
	if (copy_from_user(save, &user_vmcb->save, sizeof(*save)))
		goto out_free;

	ret = -EINVAL;
	if (!nested_vmcb_check_controls(ctl))
		goto out_free;
1199 1200 1201 1202 1203 1204 1205

	/*
	 * Processor state contains L2 state.  Check that it is
	 * valid for guest mode (see nested_vmcb_checks).
	 */
	cr0 = kvm_read_cr0(vcpu);
        if (((cr0 & X86_CR0_CD) == 0) && (cr0 & X86_CR0_NW))
1206
		goto out_free;
1207 1208 1209 1210 1211 1212

	/*
	 * Validate host state saved from before VMRUN (see
	 * nested_svm_check_permissions).
	 * TODO: validate reserved bits for all saved state.
	 */
1213 1214
	if (!(save->cr0 & X86_CR0_PG))
		goto out_free;
1215 1216

	/*
1217 1218 1219 1220
	 * All checks done, we can enter guest mode. Userspace provides
	 * vmcb12.control, which will be combined with L1 and stored into
	 * vmcb02, and the L1 save state which we store in vmcb01.
	 * L2 registers if needed are moved from the current VMCB to VMCB02.
1221
	 */
1222 1223 1224 1225

	svm->nested.nested_run_pending =
		!!(kvm_state->flags & KVM_STATE_NESTED_RUN_PENDING);

1226
	svm->nested.vmcb12_gpa = kvm_state->hdr.svm.vmcb_pa;
1227 1228 1229
	if (svm->current_vmcb == &svm->vmcb01)
		svm->nested.vmcb02.ptr->save = svm->vmcb01.ptr->save;
	svm->vmcb01.ptr->save = *save;
1230
	nested_load_control_from_vmcb12(svm, ctl);
1231 1232 1233

	svm_switch_vmcb(svm, &svm->nested.vmcb02);

1234
	nested_vmcb02_prepare_control(svm);
1235

1236
	kvm_make_request(KVM_REQ_GET_NESTED_STATE_PAGES, vcpu);
1237 1238 1239 1240 1241 1242
	ret = 0;
out_free:
	kfree(save);
	kfree(ctl);

	return ret;
1243 1244
}

1245 1246
struct kvm_x86_nested_ops svm_nested_ops = {
	.check_events = svm_check_nested_events,
1247
	.get_nested_state_pages = svm_get_nested_state_pages,
1248 1249
	.get_state = svm_get_nested_state,
	.set_state = svm_set_nested_state,
1250
};