x86.c 192.4 KB
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/*
 * Kernel-based Virtual Machine driver for Linux
 *
 * derived from drivers/kvm/kvm_main.c
 *
 * Copyright (C) 2006 Qumranet, Inc.
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 * Copyright (C) 2008 Qumranet, Inc.
 * Copyright IBM Corporation, 2008
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 * Copyright 2010 Red Hat, Inc. and/or its affiliates.
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 *
 * Authors:
 *   Avi Kivity   <avi@qumranet.com>
 *   Yaniv Kamay  <yaniv@qumranet.com>
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 *   Amit Shah    <amit.shah@qumranet.com>
 *   Ben-Ami Yassour <benami@il.ibm.com>
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 *
 * This work is licensed under the terms of the GNU GPL, version 2.  See
 * the COPYING file in the top-level directory.
 *
 */

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#include <linux/kvm_host.h>
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#include "irq.h"
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#include "mmu.h"
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#include "i8254.h"
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#include "tss.h"
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#include "kvm_cache_regs.h"
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#include "x86.h"
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#include "cpuid.h"
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#include <linux/clocksource.h>
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#include <linux/interrupt.h>
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#include <linux/kvm.h>
#include <linux/fs.h>
#include <linux/vmalloc.h>
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#include <linux/module.h>
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#include <linux/mman.h>
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#include <linux/highmem.h>
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#include <linux/iommu.h>
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#include <linux/intel-iommu.h>
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#include <linux/cpufreq.h>
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#include <linux/user-return-notifier.h>
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#include <linux/srcu.h>
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#include <linux/slab.h>
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#include <linux/perf_event.h>
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#include <linux/uaccess.h>
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#include <linux/hash.h>
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#include <linux/pci.h>
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#include <linux/timekeeper_internal.h>
#include <linux/pvclock_gtod.h>
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#include <trace/events/kvm.h>
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#define CREATE_TRACE_POINTS
#include "trace.h"
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#include <asm/debugreg.h>
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#include <asm/msr.h>
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#include <asm/desc.h>
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#include <asm/mtrr.h>
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#include <asm/mce.h>
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#include <asm/i387.h>
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#include <asm/fpu-internal.h> /* Ugh! */
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#include <asm/xcr.h>
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#include <asm/pvclock.h>
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#include <asm/div64.h>
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#define MAX_IO_MSRS 256
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#define KVM_MAX_MCE_BANKS 32
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#define KVM_MCE_CAP_SUPPORTED (MCG_CTL_P | MCG_SER_P)
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#define emul_to_vcpu(ctxt) \
	container_of(ctxt, struct kvm_vcpu, arch.emulate_ctxt)

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/* EFER defaults:
 * - enable syscall per default because its emulated by KVM
 * - enable LME and LMA per default on 64 bit KVM
 */
#ifdef CONFIG_X86_64
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static
u64 __read_mostly efer_reserved_bits = ~((u64)(EFER_SCE | EFER_LME | EFER_LMA));
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#else
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static u64 __read_mostly efer_reserved_bits = ~((u64)EFER_SCE);
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#endif
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#define VM_STAT(x) offsetof(struct kvm, stat.x), KVM_STAT_VM
#define VCPU_STAT(x) offsetof(struct kvm_vcpu, stat.x), KVM_STAT_VCPU
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static void update_cr8_intercept(struct kvm_vcpu *vcpu);
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static void process_nmi(struct kvm_vcpu *vcpu);
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static void __kvm_set_rflags(struct kvm_vcpu *vcpu, unsigned long rflags);
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struct kvm_x86_ops *kvm_x86_ops;
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EXPORT_SYMBOL_GPL(kvm_x86_ops);
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static bool ignore_msrs = 0;
module_param(ignore_msrs, bool, S_IRUGO | S_IWUSR);
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unsigned int min_timer_period_us = 500;
module_param(min_timer_period_us, uint, S_IRUGO | S_IWUSR);

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bool kvm_has_tsc_control;
EXPORT_SYMBOL_GPL(kvm_has_tsc_control);
u32  kvm_max_guest_tsc_khz;
EXPORT_SYMBOL_GPL(kvm_max_guest_tsc_khz);

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/* tsc tolerance in parts per million - default to 1/2 of the NTP threshold */
static u32 tsc_tolerance_ppm = 250;
module_param(tsc_tolerance_ppm, uint, S_IRUGO | S_IWUSR);

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static bool backwards_tsc_observed = false;

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#define KVM_NR_SHARED_MSRS 16

struct kvm_shared_msrs_global {
	int nr;
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	u32 msrs[KVM_NR_SHARED_MSRS];
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};

struct kvm_shared_msrs {
	struct user_return_notifier urn;
	bool registered;
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	struct kvm_shared_msr_values {
		u64 host;
		u64 curr;
	} values[KVM_NR_SHARED_MSRS];
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};

static struct kvm_shared_msrs_global __read_mostly shared_msrs_global;
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static struct kvm_shared_msrs __percpu *shared_msrs;
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struct kvm_stats_debugfs_item debugfs_entries[] = {
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	{ "pf_fixed", VCPU_STAT(pf_fixed) },
	{ "pf_guest", VCPU_STAT(pf_guest) },
	{ "tlb_flush", VCPU_STAT(tlb_flush) },
	{ "invlpg", VCPU_STAT(invlpg) },
	{ "exits", VCPU_STAT(exits) },
	{ "io_exits", VCPU_STAT(io_exits) },
	{ "mmio_exits", VCPU_STAT(mmio_exits) },
	{ "signal_exits", VCPU_STAT(signal_exits) },
	{ "irq_window", VCPU_STAT(irq_window_exits) },
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	{ "nmi_window", VCPU_STAT(nmi_window_exits) },
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	{ "halt_exits", VCPU_STAT(halt_exits) },
	{ "halt_wakeup", VCPU_STAT(halt_wakeup) },
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	{ "hypercalls", VCPU_STAT(hypercalls) },
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	{ "request_irq", VCPU_STAT(request_irq_exits) },
	{ "irq_exits", VCPU_STAT(irq_exits) },
	{ "host_state_reload", VCPU_STAT(host_state_reload) },
	{ "efer_reload", VCPU_STAT(efer_reload) },
	{ "fpu_reload", VCPU_STAT(fpu_reload) },
	{ "insn_emulation", VCPU_STAT(insn_emulation) },
	{ "insn_emulation_fail", VCPU_STAT(insn_emulation_fail) },
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	{ "irq_injections", VCPU_STAT(irq_injections) },
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	{ "nmi_injections", VCPU_STAT(nmi_injections) },
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	{ "mmu_shadow_zapped", VM_STAT(mmu_shadow_zapped) },
	{ "mmu_pte_write", VM_STAT(mmu_pte_write) },
	{ "mmu_pte_updated", VM_STAT(mmu_pte_updated) },
	{ "mmu_pde_zapped", VM_STAT(mmu_pde_zapped) },
	{ "mmu_flooded", VM_STAT(mmu_flooded) },
	{ "mmu_recycled", VM_STAT(mmu_recycled) },
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	{ "mmu_cache_miss", VM_STAT(mmu_cache_miss) },
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	{ "mmu_unsync", VM_STAT(mmu_unsync) },
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	{ "remote_tlb_flush", VM_STAT(remote_tlb_flush) },
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	{ "largepages", VM_STAT(lpages) },
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	{ NULL }
};

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u64 __read_mostly host_xcr0;

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static int emulator_fix_hypercall(struct x86_emulate_ctxt *ctxt);
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static inline void kvm_async_pf_hash_reset(struct kvm_vcpu *vcpu)
{
	int i;
	for (i = 0; i < roundup_pow_of_two(ASYNC_PF_PER_VCPU); i++)
		vcpu->arch.apf.gfns[i] = ~0;
}

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static void kvm_on_user_return(struct user_return_notifier *urn)
{
	unsigned slot;
	struct kvm_shared_msrs *locals
		= container_of(urn, struct kvm_shared_msrs, urn);
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	struct kvm_shared_msr_values *values;
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	for (slot = 0; slot < shared_msrs_global.nr; ++slot) {
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		values = &locals->values[slot];
		if (values->host != values->curr) {
			wrmsrl(shared_msrs_global.msrs[slot], values->host);
			values->curr = values->host;
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		}
	}
	locals->registered = false;
	user_return_notifier_unregister(urn);
}

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static void shared_msr_update(unsigned slot, u32 msr)
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{
	u64 value;
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	unsigned int cpu = smp_processor_id();
	struct kvm_shared_msrs *smsr = per_cpu_ptr(shared_msrs, cpu);
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	/* only read, and nobody should modify it at this time,
	 * so don't need lock */
	if (slot >= shared_msrs_global.nr) {
		printk(KERN_ERR "kvm: invalid MSR slot!");
		return;
	}
	rdmsrl_safe(msr, &value);
	smsr->values[slot].host = value;
	smsr->values[slot].curr = value;
}

void kvm_define_shared_msr(unsigned slot, u32 msr)
{
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	BUG_ON(slot >= KVM_NR_SHARED_MSRS);
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	if (slot >= shared_msrs_global.nr)
		shared_msrs_global.nr = slot + 1;
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	shared_msrs_global.msrs[slot] = msr;
	/* we need ensured the shared_msr_global have been updated */
	smp_wmb();
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}
EXPORT_SYMBOL_GPL(kvm_define_shared_msr);

static void kvm_shared_msr_cpu_online(void)
{
	unsigned i;

	for (i = 0; i < shared_msrs_global.nr; ++i)
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		shared_msr_update(i, shared_msrs_global.msrs[i]);
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}

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void kvm_set_shared_msr(unsigned slot, u64 value, u64 mask)
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{
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	unsigned int cpu = smp_processor_id();
	struct kvm_shared_msrs *smsr = per_cpu_ptr(shared_msrs, cpu);
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	if (((value ^ smsr->values[slot].curr) & mask) == 0)
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		return;
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	smsr->values[slot].curr = value;
	wrmsrl(shared_msrs_global.msrs[slot], value);
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	if (!smsr->registered) {
		smsr->urn.on_user_return = kvm_on_user_return;
		user_return_notifier_register(&smsr->urn);
		smsr->registered = true;
	}
}
EXPORT_SYMBOL_GPL(kvm_set_shared_msr);

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static void drop_user_return_notifiers(void *ignore)
{
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	unsigned int cpu = smp_processor_id();
	struct kvm_shared_msrs *smsr = per_cpu_ptr(shared_msrs, cpu);
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	if (smsr->registered)
		kvm_on_user_return(&smsr->urn);
}

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u64 kvm_get_apic_base(struct kvm_vcpu *vcpu)
{
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	return vcpu->arch.apic_base;
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}
EXPORT_SYMBOL_GPL(kvm_get_apic_base);

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int kvm_set_apic_base(struct kvm_vcpu *vcpu, struct msr_data *msr_info)
{
	u64 old_state = vcpu->arch.apic_base &
		(MSR_IA32_APICBASE_ENABLE | X2APIC_ENABLE);
	u64 new_state = msr_info->data &
		(MSR_IA32_APICBASE_ENABLE | X2APIC_ENABLE);
	u64 reserved_bits = ((~0ULL) << cpuid_maxphyaddr(vcpu)) |
		0x2ff | (guest_cpuid_has_x2apic(vcpu) ? 0 : X2APIC_ENABLE);

	if (!msr_info->host_initiated &&
	    ((msr_info->data & reserved_bits) != 0 ||
	     new_state == X2APIC_ENABLE ||
	     (new_state == MSR_IA32_APICBASE_ENABLE &&
	      old_state == (MSR_IA32_APICBASE_ENABLE | X2APIC_ENABLE)) ||
	     (new_state == (MSR_IA32_APICBASE_ENABLE | X2APIC_ENABLE) &&
	      old_state == 0)))
		return 1;

	kvm_lapic_set_base(vcpu, msr_info->data);
	return 0;
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}
EXPORT_SYMBOL_GPL(kvm_set_apic_base);

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asmlinkage __visible void kvm_spurious_fault(void)
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{
	/* Fault while not rebooting.  We want the trace. */
	BUG();
}
EXPORT_SYMBOL_GPL(kvm_spurious_fault);

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#define EXCPT_BENIGN		0
#define EXCPT_CONTRIBUTORY	1
#define EXCPT_PF		2

static int exception_class(int vector)
{
	switch (vector) {
	case PF_VECTOR:
		return EXCPT_PF;
	case DE_VECTOR:
	case TS_VECTOR:
	case NP_VECTOR:
	case SS_VECTOR:
	case GP_VECTOR:
		return EXCPT_CONTRIBUTORY;
	default:
		break;
	}
	return EXCPT_BENIGN;
}

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#define EXCPT_FAULT		0
#define EXCPT_TRAP		1
#define EXCPT_ABORT		2
#define EXCPT_INTERRUPT		3

static int exception_type(int vector)
{
	unsigned int mask;

	if (WARN_ON(vector > 31 || vector == NMI_VECTOR))
		return EXCPT_INTERRUPT;

	mask = 1 << vector;

	/* #DB is trap, as instruction watchpoints are handled elsewhere */
	if (mask & ((1 << DB_VECTOR) | (1 << BP_VECTOR) | (1 << OF_VECTOR)))
		return EXCPT_TRAP;

	if (mask & ((1 << DF_VECTOR) | (1 << MC_VECTOR)))
		return EXCPT_ABORT;

	/* Reserved exceptions will result in fault */
	return EXCPT_FAULT;
}

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static void kvm_multiple_exception(struct kvm_vcpu *vcpu,
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		unsigned nr, bool has_error, u32 error_code,
		bool reinject)
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{
	u32 prev_nr;
	int class1, class2;

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	kvm_make_request(KVM_REQ_EVENT, vcpu);

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	if (!vcpu->arch.exception.pending) {
	queue:
		vcpu->arch.exception.pending = true;
		vcpu->arch.exception.has_error_code = has_error;
		vcpu->arch.exception.nr = nr;
		vcpu->arch.exception.error_code = error_code;
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		vcpu->arch.exception.reinject = reinject;
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		return;
	}

	/* to check exception */
	prev_nr = vcpu->arch.exception.nr;
	if (prev_nr == DF_VECTOR) {
		/* triple fault -> shutdown */
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		kvm_make_request(KVM_REQ_TRIPLE_FAULT, vcpu);
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		return;
	}
	class1 = exception_class(prev_nr);
	class2 = exception_class(nr);
	if ((class1 == EXCPT_CONTRIBUTORY && class2 == EXCPT_CONTRIBUTORY)
		|| (class1 == EXCPT_PF && class2 != EXCPT_BENIGN)) {
		/* generate double fault per SDM Table 5-5 */
		vcpu->arch.exception.pending = true;
		vcpu->arch.exception.has_error_code = true;
		vcpu->arch.exception.nr = DF_VECTOR;
		vcpu->arch.exception.error_code = 0;
	} else
		/* replace previous exception with a new one in a hope
		   that instruction re-execution will regenerate lost
		   exception */
		goto queue;
}

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void kvm_queue_exception(struct kvm_vcpu *vcpu, unsigned nr)
{
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	kvm_multiple_exception(vcpu, nr, false, 0, false);
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}
EXPORT_SYMBOL_GPL(kvm_queue_exception);

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void kvm_requeue_exception(struct kvm_vcpu *vcpu, unsigned nr)
{
	kvm_multiple_exception(vcpu, nr, false, 0, true);
}
EXPORT_SYMBOL_GPL(kvm_requeue_exception);

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void kvm_complete_insn_gp(struct kvm_vcpu *vcpu, int err)
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{
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	if (err)
		kvm_inject_gp(vcpu, 0);
	else
		kvm_x86_ops->skip_emulated_instruction(vcpu);
}
EXPORT_SYMBOL_GPL(kvm_complete_insn_gp);
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void kvm_inject_page_fault(struct kvm_vcpu *vcpu, struct x86_exception *fault)
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{
	++vcpu->stat.pf_guest;
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	vcpu->arch.cr2 = fault->address;
	kvm_queue_exception_e(vcpu, PF_VECTOR, fault->error_code);
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}
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EXPORT_SYMBOL_GPL(kvm_inject_page_fault);
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void kvm_propagate_fault(struct kvm_vcpu *vcpu, struct x86_exception *fault)
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{
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	if (mmu_is_nested(vcpu) && !fault->nested_page_fault)
		vcpu->arch.nested_mmu.inject_page_fault(vcpu, fault);
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	else
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		vcpu->arch.mmu.inject_page_fault(vcpu, fault);
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}

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void kvm_inject_nmi(struct kvm_vcpu *vcpu)
{
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	atomic_inc(&vcpu->arch.nmi_queued);
	kvm_make_request(KVM_REQ_NMI, vcpu);
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}
EXPORT_SYMBOL_GPL(kvm_inject_nmi);

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void kvm_queue_exception_e(struct kvm_vcpu *vcpu, unsigned nr, u32 error_code)
{
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	kvm_multiple_exception(vcpu, nr, true, error_code, false);
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}
EXPORT_SYMBOL_GPL(kvm_queue_exception_e);

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void kvm_requeue_exception_e(struct kvm_vcpu *vcpu, unsigned nr, u32 error_code)
{
	kvm_multiple_exception(vcpu, nr, true, error_code, true);
}
EXPORT_SYMBOL_GPL(kvm_requeue_exception_e);

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/*
 * Checks if cpl <= required_cpl; if true, return true.  Otherwise queue
 * a #GP and return false.
 */
bool kvm_require_cpl(struct kvm_vcpu *vcpu, int required_cpl)
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{
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	if (kvm_x86_ops->get_cpl(vcpu) <= required_cpl)
		return true;
	kvm_queue_exception_e(vcpu, GP_VECTOR, 0);
	return false;
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}
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EXPORT_SYMBOL_GPL(kvm_require_cpl);
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/*
 * This function will be used to read from the physical memory of the currently
 * running guest. The difference to kvm_read_guest_page is that this function
 * can read from guest physical or from the guest's guest physical memory.
 */
int kvm_read_guest_page_mmu(struct kvm_vcpu *vcpu, struct kvm_mmu *mmu,
			    gfn_t ngfn, void *data, int offset, int len,
			    u32 access)
{
	gfn_t real_gfn;
	gpa_t ngpa;

	ngpa     = gfn_to_gpa(ngfn);
	real_gfn = mmu->translate_gpa(vcpu, ngpa, access);
	if (real_gfn == UNMAPPED_GVA)
		return -EFAULT;

	real_gfn = gpa_to_gfn(real_gfn);

	return kvm_read_guest_page(vcpu->kvm, real_gfn, data, offset, len);
}
EXPORT_SYMBOL_GPL(kvm_read_guest_page_mmu);

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int kvm_read_nested_guest_page(struct kvm_vcpu *vcpu, gfn_t gfn,
			       void *data, int offset, int len, u32 access)
{
	return kvm_read_guest_page_mmu(vcpu, vcpu->arch.walk_mmu, gfn,
				       data, offset, len, access);
}

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/*
 * Load the pae pdptrs.  Return true is they are all valid.
 */
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int load_pdptrs(struct kvm_vcpu *vcpu, struct kvm_mmu *mmu, unsigned long cr3)
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{
	gfn_t pdpt_gfn = cr3 >> PAGE_SHIFT;
	unsigned offset = ((cr3 & (PAGE_SIZE-1)) >> 5) << 2;
	int i;
	int ret;
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	u64 pdpte[ARRAY_SIZE(mmu->pdptrs)];
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	ret = kvm_read_guest_page_mmu(vcpu, mmu, pdpt_gfn, pdpte,
				      offset * sizeof(u64), sizeof(pdpte),
				      PFERR_USER_MASK|PFERR_WRITE_MASK);
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	if (ret < 0) {
		ret = 0;
		goto out;
	}
	for (i = 0; i < ARRAY_SIZE(pdpte); ++i) {
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		if (is_present_gpte(pdpte[i]) &&
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		    (pdpte[i] & vcpu->arch.mmu.rsvd_bits_mask[0][2])) {
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			ret = 0;
			goto out;
		}
	}
	ret = 1;

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	memcpy(mmu->pdptrs, pdpte, sizeof(mmu->pdptrs));
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	__set_bit(VCPU_EXREG_PDPTR,
		  (unsigned long *)&vcpu->arch.regs_avail);
	__set_bit(VCPU_EXREG_PDPTR,
		  (unsigned long *)&vcpu->arch.regs_dirty);
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out:

	return ret;
}
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EXPORT_SYMBOL_GPL(load_pdptrs);
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static bool pdptrs_changed(struct kvm_vcpu *vcpu)
{
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	u64 pdpte[ARRAY_SIZE(vcpu->arch.walk_mmu->pdptrs)];
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	bool changed = true;
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	int offset;
	gfn_t gfn;
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	int r;

	if (is_long_mode(vcpu) || !is_pae(vcpu))
		return false;

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	if (!test_bit(VCPU_EXREG_PDPTR,
		      (unsigned long *)&vcpu->arch.regs_avail))
		return true;

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	gfn = (kvm_read_cr3(vcpu) & ~31u) >> PAGE_SHIFT;
	offset = (kvm_read_cr3(vcpu) & ~31u) & (PAGE_SIZE - 1);
536 537
	r = kvm_read_nested_guest_page(vcpu, gfn, pdpte, offset, sizeof(pdpte),
				       PFERR_USER_MASK | PFERR_WRITE_MASK);
538 539
	if (r < 0)
		goto out;
540
	changed = memcmp(pdpte, vcpu->arch.walk_mmu->pdptrs, sizeof(pdpte)) != 0;
541 542 543 544 545
out:

	return changed;
}

546
int kvm_set_cr0(struct kvm_vcpu *vcpu, unsigned long cr0)
547
{
548 549 550 551
	unsigned long old_cr0 = kvm_read_cr0(vcpu);
	unsigned long update_bits = X86_CR0_PG | X86_CR0_WP |
				    X86_CR0_CD | X86_CR0_NW;

552 553
	cr0 |= X86_CR0_ET;

554
#ifdef CONFIG_X86_64
555 556
	if (cr0 & 0xffffffff00000000UL)
		return 1;
557 558 559
#endif

	cr0 &= ~CR0_RESERVED_BITS;
560

561 562
	if ((cr0 & X86_CR0_NW) && !(cr0 & X86_CR0_CD))
		return 1;
563

564 565
	if ((cr0 & X86_CR0_PG) && !(cr0 & X86_CR0_PE))
		return 1;
566 567 568

	if (!is_paging(vcpu) && (cr0 & X86_CR0_PG)) {
#ifdef CONFIG_X86_64
569
		if ((vcpu->arch.efer & EFER_LME)) {
570 571
			int cs_db, cs_l;

572 573
			if (!is_pae(vcpu))
				return 1;
574
			kvm_x86_ops->get_cs_db_l_bits(vcpu, &cs_db, &cs_l);
575 576
			if (cs_l)
				return 1;
577 578
		} else
#endif
579
		if (is_pae(vcpu) && !load_pdptrs(vcpu, vcpu->arch.walk_mmu,
580
						 kvm_read_cr3(vcpu)))
581
			return 1;
582 583
	}

584 585 586
	if (!(cr0 & X86_CR0_PG) && kvm_read_cr4_bits(vcpu, X86_CR4_PCIDE))
		return 1;

587 588
	kvm_x86_ops->set_cr0(vcpu, cr0);

589
	if ((cr0 ^ old_cr0) & X86_CR0_PG) {
590
		kvm_clear_async_pf_completion_queue(vcpu);
591 592
		kvm_async_pf_hash_reset(vcpu);
	}
593

594 595
	if ((cr0 ^ old_cr0) & update_bits)
		kvm_mmu_reset_context(vcpu);
596 597
	return 0;
}
598
EXPORT_SYMBOL_GPL(kvm_set_cr0);
599

600
void kvm_lmsw(struct kvm_vcpu *vcpu, unsigned long msw)
601
{
602
	(void)kvm_set_cr0(vcpu, kvm_read_cr0_bits(vcpu, ~0x0eul) | (msw & 0x0f));
603
}
604
EXPORT_SYMBOL_GPL(kvm_lmsw);
605

606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624
static void kvm_load_guest_xcr0(struct kvm_vcpu *vcpu)
{
	if (kvm_read_cr4_bits(vcpu, X86_CR4_OSXSAVE) &&
			!vcpu->guest_xcr0_loaded) {
		/* kvm_set_xcr() also depends on this */
		xsetbv(XCR_XFEATURE_ENABLED_MASK, vcpu->arch.xcr0);
		vcpu->guest_xcr0_loaded = 1;
	}
}

static void kvm_put_guest_xcr0(struct kvm_vcpu *vcpu)
{
	if (vcpu->guest_xcr0_loaded) {
		if (vcpu->arch.xcr0 != host_xcr0)
			xsetbv(XCR_XFEATURE_ENABLED_MASK, host_xcr0);
		vcpu->guest_xcr0_loaded = 0;
	}
}

625 626
int __kvm_set_xcr(struct kvm_vcpu *vcpu, u32 index, u64 xcr)
{
627 628
	u64 xcr0 = xcr;
	u64 old_xcr0 = vcpu->arch.xcr0;
629
	u64 valid_bits;
630 631 632 633 634 635 636 637

	/* Only support XCR_XFEATURE_ENABLED_MASK(xcr0) now  */
	if (index != XCR_XFEATURE_ENABLED_MASK)
		return 1;
	if (!(xcr0 & XSTATE_FP))
		return 1;
	if ((xcr0 & XSTATE_YMM) && !(xcr0 & XSTATE_SSE))
		return 1;
638 639 640 641 642 643 644 645

	/*
	 * Do not allow the guest to set bits that we do not support
	 * saving.  However, xcr0 bit 0 is always set, even if the
	 * emulated CPU does not support XSAVE (see fx_init).
	 */
	valid_bits = vcpu->arch.guest_supported_xcr0 | XSTATE_FP;
	if (xcr0 & ~valid_bits)
646
		return 1;
647

648 649 650
	if ((!(xcr0 & XSTATE_BNDREGS)) != (!(xcr0 & XSTATE_BNDCSR)))
		return 1;

651
	kvm_put_guest_xcr0(vcpu);
652
	vcpu->arch.xcr0 = xcr0;
653 654 655

	if ((xcr0 ^ old_xcr0) & XSTATE_EXTEND_MASK)
		kvm_update_cpuid(vcpu);
656 657 658 659 660
	return 0;
}

int kvm_set_xcr(struct kvm_vcpu *vcpu, u32 index, u64 xcr)
{
661 662
	if (kvm_x86_ops->get_cpl(vcpu) != 0 ||
	    __kvm_set_xcr(vcpu, index, xcr)) {
663 664 665 666 667 668 669
		kvm_inject_gp(vcpu, 0);
		return 1;
	}
	return 0;
}
EXPORT_SYMBOL_GPL(kvm_set_xcr);

670
int kvm_set_cr4(struct kvm_vcpu *vcpu, unsigned long cr4)
671
{
672
	unsigned long old_cr4 = kvm_read_cr4(vcpu);
673 674
	unsigned long pdptr_bits = X86_CR4_PGE | X86_CR4_PSE |
				   X86_CR4_PAE | X86_CR4_SMEP;
675 676
	if (cr4 & CR4_RESERVED_BITS)
		return 1;
677

678 679 680
	if (!guest_cpuid_has_xsave(vcpu) && (cr4 & X86_CR4_OSXSAVE))
		return 1;

681 682 683
	if (!guest_cpuid_has_smep(vcpu) && (cr4 & X86_CR4_SMEP))
		return 1;

F
Feng Wu 已提交
684 685 686
	if (!guest_cpuid_has_smap(vcpu) && (cr4 & X86_CR4_SMAP))
		return 1;

687
	if (!guest_cpuid_has_fsgsbase(vcpu) && (cr4 & X86_CR4_FSGSBASE))
688 689
		return 1;

690
	if (is_long_mode(vcpu)) {
691 692
		if (!(cr4 & X86_CR4_PAE))
			return 1;
693 694
	} else if (is_paging(vcpu) && (cr4 & X86_CR4_PAE)
		   && ((cr4 ^ old_cr4) & pdptr_bits)
695 696
		   && !load_pdptrs(vcpu, vcpu->arch.walk_mmu,
				   kvm_read_cr3(vcpu)))
697 698
		return 1;

699 700 701 702 703 704 705 706 707
	if ((cr4 & X86_CR4_PCIDE) && !(old_cr4 & X86_CR4_PCIDE)) {
		if (!guest_cpuid_has_pcid(vcpu))
			return 1;

		/* PCID can not be enabled when cr3[11:0]!=000H or EFER.LMA=0 */
		if ((kvm_read_cr3(vcpu) & X86_CR3_PCID_MASK) || !is_long_mode(vcpu))
			return 1;
	}

708
	if (kvm_x86_ops->set_cr4(vcpu, cr4))
709
		return 1;
710

711 712
	if (((cr4 ^ old_cr4) & pdptr_bits) ||
	    (!(cr4 & X86_CR4_PCIDE) && (old_cr4 & X86_CR4_PCIDE)))
713
		kvm_mmu_reset_context(vcpu);
714

F
Feng Wu 已提交
715 716 717
	if ((cr4 ^ old_cr4) & X86_CR4_SMAP)
		update_permission_bitmask(vcpu, vcpu->arch.walk_mmu, false);

718
	if ((cr4 ^ old_cr4) & X86_CR4_OSXSAVE)
A
Avi Kivity 已提交
719
		kvm_update_cpuid(vcpu);
720

721 722
	return 0;
}
723
EXPORT_SYMBOL_GPL(kvm_set_cr4);
724

725
int kvm_set_cr3(struct kvm_vcpu *vcpu, unsigned long cr3)
726
{
727
	if (cr3 == kvm_read_cr3(vcpu) && !pdptrs_changed(vcpu)) {
728
		kvm_mmu_sync_roots(vcpu);
729
		kvm_mmu_flush_tlb(vcpu);
730
		return 0;
731 732
	}

733
	if (is_long_mode(vcpu)) {
734 735 736 737
		if (cr3 & CR3_L_MODE_RESERVED_BITS)
			return 1;
	} else if (is_pae(vcpu) && is_paging(vcpu) &&
		   !load_pdptrs(vcpu, vcpu->arch.walk_mmu, cr3))
N
Nadav Amit 已提交
738
		return 1;
739

740
	vcpu->arch.cr3 = cr3;
741
	__set_bit(VCPU_EXREG_CR3, (ulong *)&vcpu->arch.regs_avail);
742
	kvm_mmu_new_cr3(vcpu);
743 744
	return 0;
}
745
EXPORT_SYMBOL_GPL(kvm_set_cr3);
746

A
Andre Przywara 已提交
747
int kvm_set_cr8(struct kvm_vcpu *vcpu, unsigned long cr8)
748
{
749 750
	if (cr8 & CR8_RESERVED_BITS)
		return 1;
751 752 753
	if (irqchip_in_kernel(vcpu->kvm))
		kvm_lapic_set_tpr(vcpu, cr8);
	else
754
		vcpu->arch.cr8 = cr8;
755 756
	return 0;
}
757
EXPORT_SYMBOL_GPL(kvm_set_cr8);
758

759
unsigned long kvm_get_cr8(struct kvm_vcpu *vcpu)
760 761 762 763
{
	if (irqchip_in_kernel(vcpu->kvm))
		return kvm_lapic_get_cr8(vcpu);
	else
764
		return vcpu->arch.cr8;
765
}
766
EXPORT_SYMBOL_GPL(kvm_get_cr8);
767

J
Jan Kiszka 已提交
768 769 770 771 772 773
static void kvm_update_dr6(struct kvm_vcpu *vcpu)
{
	if (!(vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP))
		kvm_x86_ops->set_dr6(vcpu, vcpu->arch.dr6);
}

774 775 776 777 778 779 780 781 782
static void kvm_update_dr7(struct kvm_vcpu *vcpu)
{
	unsigned long dr7;

	if (vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP)
		dr7 = vcpu->arch.guest_debug_dr7;
	else
		dr7 = vcpu->arch.dr7;
	kvm_x86_ops->set_dr7(vcpu, dr7);
783 784 785
	vcpu->arch.switch_db_regs &= ~KVM_DEBUGREG_BP_ENABLED;
	if (dr7 & DR7_BP_EN_MASK)
		vcpu->arch.switch_db_regs |= KVM_DEBUGREG_BP_ENABLED;
786 787
}

788 789 790 791 792 793 794 795 796
static u64 kvm_dr6_fixed(struct kvm_vcpu *vcpu)
{
	u64 fixed = DR6_FIXED_1;

	if (!guest_cpuid_has_rtm(vcpu))
		fixed |= DR6_RTM;
	return fixed;
}

797
static int __kvm_set_dr(struct kvm_vcpu *vcpu, int dr, unsigned long val)
798 799 800 801 802 803 804 805
{
	switch (dr) {
	case 0 ... 3:
		vcpu->arch.db[dr] = val;
		if (!(vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP))
			vcpu->arch.eff_db[dr] = val;
		break;
	case 4:
806 807
		if (kvm_read_cr4_bits(vcpu, X86_CR4_DE))
			return 1; /* #UD */
808 809
		/* fall through */
	case 6:
810 811
		if (val & 0xffffffff00000000ULL)
			return -1; /* #GP */
812
		vcpu->arch.dr6 = (val & DR6_VOLATILE) | kvm_dr6_fixed(vcpu);
J
Jan Kiszka 已提交
813
		kvm_update_dr6(vcpu);
814 815
		break;
	case 5:
816 817
		if (kvm_read_cr4_bits(vcpu, X86_CR4_DE))
			return 1; /* #UD */
818 819
		/* fall through */
	default: /* 7 */
820 821
		if (val & 0xffffffff00000000ULL)
			return -1; /* #GP */
822
		vcpu->arch.dr7 = (val & DR7_VOLATILE) | DR7_FIXED_1;
823
		kvm_update_dr7(vcpu);
824 825 826 827 828
		break;
	}

	return 0;
}
829 830 831 832 833 834 835 836 837 838 839 840 841

int kvm_set_dr(struct kvm_vcpu *vcpu, int dr, unsigned long val)
{
	int res;

	res = __kvm_set_dr(vcpu, dr, val);
	if (res > 0)
		kvm_queue_exception(vcpu, UD_VECTOR);
	else if (res < 0)
		kvm_inject_gp(vcpu, 0);

	return res;
}
842 843
EXPORT_SYMBOL_GPL(kvm_set_dr);

844
static int _kvm_get_dr(struct kvm_vcpu *vcpu, int dr, unsigned long *val)
845 846 847 848 849 850
{
	switch (dr) {
	case 0 ... 3:
		*val = vcpu->arch.db[dr];
		break;
	case 4:
851
		if (kvm_read_cr4_bits(vcpu, X86_CR4_DE))
852 853 854
			return 1;
		/* fall through */
	case 6:
J
Jan Kiszka 已提交
855 856 857 858
		if (vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP)
			*val = vcpu->arch.dr6;
		else
			*val = kvm_x86_ops->get_dr6(vcpu);
859 860
		break;
	case 5:
861
		if (kvm_read_cr4_bits(vcpu, X86_CR4_DE))
862 863 864 865 866 867 868 869 870
			return 1;
		/* fall through */
	default: /* 7 */
		*val = vcpu->arch.dr7;
		break;
	}

	return 0;
}
871 872 873 874 875 876 877 878 879

int kvm_get_dr(struct kvm_vcpu *vcpu, int dr, unsigned long *val)
{
	if (_kvm_get_dr(vcpu, dr, val)) {
		kvm_queue_exception(vcpu, UD_VECTOR);
		return 1;
	}
	return 0;
}
880 881
EXPORT_SYMBOL_GPL(kvm_get_dr);

A
Avi Kivity 已提交
882 883 884 885 886 887 888 889 890 891 892 893 894 895 896
bool kvm_rdpmc(struct kvm_vcpu *vcpu)
{
	u32 ecx = kvm_register_read(vcpu, VCPU_REGS_RCX);
	u64 data;
	int err;

	err = kvm_pmu_read_pmc(vcpu, ecx, &data);
	if (err)
		return err;
	kvm_register_write(vcpu, VCPU_REGS_RAX, (u32)data);
	kvm_register_write(vcpu, VCPU_REGS_RDX, data >> 32);
	return err;
}
EXPORT_SYMBOL_GPL(kvm_rdpmc);

897 898 899 900 901
/*
 * List of msr numbers which we expose to userspace through KVM_GET_MSRS
 * and KVM_SET_MSRS, and KVM_GET_MSR_INDEX_LIST.
 *
 * This list is modified at module load time to reflect the
902 903
 * capabilities of the host cpu. This capabilities test skips MSRs that are
 * kvm-specific. Those are put in the beginning of the list.
904
 */
905

906
#define KVM_SAVE_MSRS_BEGIN	12
907
static u32 msrs_to_save[] = {
908
	MSR_KVM_SYSTEM_TIME, MSR_KVM_WALL_CLOCK,
909
	MSR_KVM_SYSTEM_TIME_NEW, MSR_KVM_WALL_CLOCK_NEW,
910
	HV_X64_MSR_GUEST_OS_ID, HV_X64_MSR_HYPERCALL,
911
	HV_X64_MSR_TIME_REF_COUNT, HV_X64_MSR_REFERENCE_TSC,
G
Glauber Costa 已提交
912
	HV_X64_MSR_APIC_ASSIST_PAGE, MSR_KVM_ASYNC_PF_EN, MSR_KVM_STEAL_TIME,
913
	MSR_KVM_PV_EOI_EN,
914
	MSR_IA32_SYSENTER_CS, MSR_IA32_SYSENTER_ESP, MSR_IA32_SYSENTER_EIP,
B
Brian Gerst 已提交
915
	MSR_STAR,
916 917 918
#ifdef CONFIG_X86_64
	MSR_CSTAR, MSR_KERNEL_GS_BASE, MSR_SYSCALL_MASK, MSR_LSTAR,
#endif
919
	MSR_IA32_TSC, MSR_IA32_CR_PAT, MSR_VM_HSAVE_PA,
920
	MSR_IA32_FEATURE_CONTROL, MSR_IA32_BNDCFGS
921 922 923 924
};

static unsigned num_msrs_to_save;

M
Mathias Krause 已提交
925
static const u32 emulated_msrs[] = {
W
Will Auld 已提交
926
	MSR_IA32_TSC_ADJUST,
927
	MSR_IA32_TSCDEADLINE,
928
	MSR_IA32_MISC_ENABLE,
929 930
	MSR_IA32_MCG_STATUS,
	MSR_IA32_MCG_CTL,
931 932
};

933
bool kvm_valid_efer(struct kvm_vcpu *vcpu, u64 efer)
934
{
935
	if (efer & efer_reserved_bits)
936
		return false;
937

A
Alexander Graf 已提交
938 939 940 941
	if (efer & EFER_FFXSR) {
		struct kvm_cpuid_entry2 *feat;

		feat = kvm_find_cpuid_entry(vcpu, 0x80000001, 0);
942
		if (!feat || !(feat->edx & bit(X86_FEATURE_FXSR_OPT)))
943
			return false;
A
Alexander Graf 已提交
944 945
	}

946 947 948 949
	if (efer & EFER_SVME) {
		struct kvm_cpuid_entry2 *feat;

		feat = kvm_find_cpuid_entry(vcpu, 0x80000001, 0);
950
		if (!feat || !(feat->ecx & bit(X86_FEATURE_SVM)))
951
			return false;
952 953
	}

954 955 956 957 958 959 960 961 962 963 964 965 966 967 968
	return true;
}
EXPORT_SYMBOL_GPL(kvm_valid_efer);

static int set_efer(struct kvm_vcpu *vcpu, u64 efer)
{
	u64 old_efer = vcpu->arch.efer;

	if (!kvm_valid_efer(vcpu, efer))
		return 1;

	if (is_paging(vcpu)
	    && (vcpu->arch.efer & EFER_LME) != (efer & EFER_LME))
		return 1;

969
	efer &= ~EFER_LMA;
970
	efer |= vcpu->arch.efer & EFER_LMA;
971

972 973
	kvm_x86_ops->set_efer(vcpu, efer);

974 975 976 977
	/* Update reserved bits */
	if ((efer ^ old_efer) & EFER_NX)
		kvm_mmu_reset_context(vcpu);

978
	return 0;
979 980
}

981 982 983 984 985 986 987
void kvm_enable_efer_bits(u64 mask)
{
       efer_reserved_bits &= ~mask;
}
EXPORT_SYMBOL_GPL(kvm_enable_efer_bits);


988 989 990 991 992
/*
 * Writes msr value into into the appropriate "register".
 * Returns 0 on success, non-0 otherwise.
 * Assumes vcpu_load() was already called.
 */
993
int kvm_set_msr(struct kvm_vcpu *vcpu, struct msr_data *msr)
994
{
995
	return kvm_x86_ops->set_msr(vcpu, msr);
996 997
}

998 999 1000 1001 1002
/*
 * Adapt set_msr() to msr_io()'s calling convention
 */
static int do_set_msr(struct kvm_vcpu *vcpu, unsigned index, u64 *data)
{
1003 1004 1005 1006 1007 1008
	struct msr_data msr;

	msr.data = *data;
	msr.index = index;
	msr.host_initiated = true;
	return kvm_set_msr(vcpu, &msr);
1009 1010
}

1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
#ifdef CONFIG_X86_64
struct pvclock_gtod_data {
	seqcount_t	seq;

	struct { /* extract of a clocksource struct */
		int vclock_mode;
		cycle_t	cycle_last;
		cycle_t	mask;
		u32	mult;
		u32	shift;
	} clock;

1023 1024
	u64		boot_ns;
	u64		nsec_base;
1025 1026 1027 1028 1029 1030 1031
};

static struct pvclock_gtod_data pvclock_gtod_data;

static void update_pvclock_gtod(struct timekeeper *tk)
{
	struct pvclock_gtod_data *vdata = &pvclock_gtod_data;
1032 1033
	u64 boot_ns;

1034
	boot_ns = ktime_to_ns(ktime_add(tk->tkr.base_mono, tk->offs_boot));
1035 1036 1037 1038

	write_seqcount_begin(&vdata->seq);

	/* copy pvclock gtod data */
1039 1040 1041 1042 1043
	vdata->clock.vclock_mode	= tk->tkr.clock->archdata.vclock_mode;
	vdata->clock.cycle_last		= tk->tkr.cycle_last;
	vdata->clock.mask		= tk->tkr.mask;
	vdata->clock.mult		= tk->tkr.mult;
	vdata->clock.shift		= tk->tkr.shift;
1044

1045
	vdata->boot_ns			= boot_ns;
1046
	vdata->nsec_base		= tk->tkr.xtime_nsec;
1047 1048 1049 1050 1051 1052

	write_seqcount_end(&vdata->seq);
}
#endif


1053 1054
static void kvm_write_wall_clock(struct kvm *kvm, gpa_t wall_clock)
{
1055 1056
	int version;
	int r;
1057
	struct pvclock_wall_clock wc;
1058
	struct timespec boot;
1059 1060 1061 1062

	if (!wall_clock)
		return;

1063 1064 1065 1066 1067 1068 1069 1070
	r = kvm_read_guest(kvm, wall_clock, &version, sizeof(version));
	if (r)
		return;

	if (version & 1)
		++version;  /* first time write, random junk */

	++version;
1071 1072 1073

	kvm_write_guest(kvm, wall_clock, &version, sizeof(version));

1074 1075
	/*
	 * The guest calculates current wall clock time by adding
Z
Zachary Amsden 已提交
1076
	 * system time (updated by kvm_guest_time_update below) to the
1077 1078 1079
	 * wall clock specified here.  guest system time equals host
	 * system time for us, thus we must fill in host boot time here.
	 */
1080
	getboottime(&boot);
1081

1082 1083 1084 1085
	if (kvm->arch.kvmclock_offset) {
		struct timespec ts = ns_to_timespec(kvm->arch.kvmclock_offset);
		boot = timespec_sub(boot, ts);
	}
1086 1087 1088
	wc.sec = boot.tv_sec;
	wc.nsec = boot.tv_nsec;
	wc.version = version;
1089 1090 1091 1092 1093 1094 1095

	kvm_write_guest(kvm, wall_clock, &wc, sizeof(wc));

	version++;
	kvm_write_guest(kvm, wall_clock, &version, sizeof(version));
}

1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107
static uint32_t div_frac(uint32_t dividend, uint32_t divisor)
{
	uint32_t quotient, remainder;

	/* Don't try to replace with do_div(), this one calculates
	 * "(dividend << 32) / divisor" */
	__asm__ ( "divl %4"
		  : "=a" (quotient), "=d" (remainder)
		  : "0" (0), "1" (dividend), "r" (divisor) );
	return quotient;
}

1108 1109
static void kvm_get_time_scale(uint32_t scaled_khz, uint32_t base_khz,
			       s8 *pshift, u32 *pmultiplier)
1110
{
1111
	uint64_t scaled64;
1112 1113 1114 1115
	int32_t  shift = 0;
	uint64_t tps64;
	uint32_t tps32;

1116 1117
	tps64 = base_khz * 1000LL;
	scaled64 = scaled_khz * 1000LL;
1118
	while (tps64 > scaled64*2 || tps64 & 0xffffffff00000000ULL) {
1119 1120 1121 1122 1123
		tps64 >>= 1;
		shift--;
	}

	tps32 = (uint32_t)tps64;
1124 1125
	while (tps32 <= scaled64 || scaled64 & 0xffffffff00000000ULL) {
		if (scaled64 & 0xffffffff00000000ULL || tps32 & 0x80000000)
1126 1127 1128
			scaled64 >>= 1;
		else
			tps32 <<= 1;
1129 1130 1131
		shift++;
	}

1132 1133
	*pshift = shift;
	*pmultiplier = div_frac(scaled64, tps32);
1134

1135 1136
	pr_debug("%s: base_khz %u => %u, shift %d, mul %u\n",
		 __func__, base_khz, scaled_khz, shift, *pmultiplier);
1137 1138
}

1139 1140
static inline u64 get_kernel_ns(void)
{
1141
	return ktime_get_boot_ns();
1142 1143
}

1144
#ifdef CONFIG_X86_64
1145
static atomic_t kvm_guest_has_master_clock = ATOMIC_INIT(0);
1146
#endif
1147

1148
static DEFINE_PER_CPU(unsigned long, cpu_tsc_khz);
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Zachary Amsden 已提交
1149
unsigned long max_tsc_khz;
1150

1151
static inline u64 nsec_to_cycles(struct kvm_vcpu *vcpu, u64 nsec)
1152
{
1153 1154
	return pvclock_scale_delta(nsec, vcpu->arch.virtual_tsc_mult,
				   vcpu->arch.virtual_tsc_shift);
1155 1156
}

1157
static u32 adjust_tsc_khz(u32 khz, s32 ppm)
1158
{
1159 1160 1161
	u64 v = (u64)khz * (1000000 + ppm);
	do_div(v, 1000000);
	return v;
1162 1163
}

1164
static void kvm_set_tsc_khz(struct kvm_vcpu *vcpu, u32 this_tsc_khz)
1165
{
1166 1167
	u32 thresh_lo, thresh_hi;
	int use_scaling = 0;
1168

1169 1170 1171 1172
	/* tsc_khz can be zero if TSC calibration fails */
	if (this_tsc_khz == 0)
		return;

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1173 1174
	/* Compute a scale to convert nanoseconds in TSC cycles */
	kvm_get_time_scale(this_tsc_khz, NSEC_PER_SEC / 1000,
1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191
			   &vcpu->arch.virtual_tsc_shift,
			   &vcpu->arch.virtual_tsc_mult);
	vcpu->arch.virtual_tsc_khz = this_tsc_khz;

	/*
	 * Compute the variation in TSC rate which is acceptable
	 * within the range of tolerance and decide if the
	 * rate being applied is within that bounds of the hardware
	 * rate.  If so, no scaling or compensation need be done.
	 */
	thresh_lo = adjust_tsc_khz(tsc_khz, -tsc_tolerance_ppm);
	thresh_hi = adjust_tsc_khz(tsc_khz, tsc_tolerance_ppm);
	if (this_tsc_khz < thresh_lo || this_tsc_khz > thresh_hi) {
		pr_debug("kvm: requested TSC rate %u falls outside tolerance [%u,%u]\n", this_tsc_khz, thresh_lo, thresh_hi);
		use_scaling = 1;
	}
	kvm_x86_ops->set_tsc_khz(vcpu, this_tsc_khz, use_scaling);
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1192 1193 1194 1195
}

static u64 compute_guest_tsc(struct kvm_vcpu *vcpu, s64 kernel_ns)
{
1196
	u64 tsc = pvclock_scale_delta(kernel_ns-vcpu->arch.this_tsc_nsec,
1197 1198
				      vcpu->arch.virtual_tsc_mult,
				      vcpu->arch.virtual_tsc_shift);
1199
	tsc += vcpu->arch.this_tsc_write;
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1200 1201 1202
	return tsc;
}

1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229
void kvm_track_tsc_matching(struct kvm_vcpu *vcpu)
{
#ifdef CONFIG_X86_64
	bool vcpus_matched;
	bool do_request = false;
	struct kvm_arch *ka = &vcpu->kvm->arch;
	struct pvclock_gtod_data *gtod = &pvclock_gtod_data;

	vcpus_matched = (ka->nr_vcpus_matched_tsc + 1 ==
			 atomic_read(&vcpu->kvm->online_vcpus));

	if (vcpus_matched && gtod->clock.vclock_mode == VCLOCK_TSC)
		if (!ka->use_master_clock)
			do_request = 1;

	if (!vcpus_matched && ka->use_master_clock)
			do_request = 1;

	if (do_request)
		kvm_make_request(KVM_REQ_MASTERCLOCK_UPDATE, vcpu);

	trace_kvm_track_tsc(vcpu->vcpu_id, ka->nr_vcpus_matched_tsc,
			    atomic_read(&vcpu->kvm->online_vcpus),
		            ka->use_master_clock, gtod->clock.vclock_mode);
#endif
}

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1230 1231 1232 1233 1234 1235
static void update_ia32_tsc_adjust_msr(struct kvm_vcpu *vcpu, s64 offset)
{
	u64 curr_offset = kvm_x86_ops->read_tsc_offset(vcpu);
	vcpu->arch.ia32_tsc_adjust_msr += offset - curr_offset;
}

1236
void kvm_write_tsc(struct kvm_vcpu *vcpu, struct msr_data *msr)
1237 1238
{
	struct kvm *kvm = vcpu->kvm;
Z
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1239
	u64 offset, ns, elapsed;
1240
	unsigned long flags;
1241
	s64 usdiff;
1242
	bool matched;
T
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1243
	bool already_matched;
1244
	u64 data = msr->data;
1245

1246
	raw_spin_lock_irqsave(&kvm->arch.tsc_write_lock, flags);
1247
	offset = kvm_x86_ops->compute_tsc_offset(vcpu, data);
1248
	ns = get_kernel_ns();
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1249
	elapsed = ns - kvm->arch.last_tsc_nsec;
1250

1251
	if (vcpu->arch.virtual_tsc_khz) {
1252 1253
		int faulted = 0;

1254 1255
		/* n.b - signed multiplication and division required */
		usdiff = data - kvm->arch.last_tsc_write;
1256
#ifdef CONFIG_X86_64
1257
		usdiff = (usdiff * 1000) / vcpu->arch.virtual_tsc_khz;
1258
#else
1259
		/* do_div() only does unsigned */
1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273
		asm("1: idivl %[divisor]\n"
		    "2: xor %%edx, %%edx\n"
		    "   movl $0, %[faulted]\n"
		    "3:\n"
		    ".section .fixup,\"ax\"\n"
		    "4: movl $1, %[faulted]\n"
		    "   jmp  3b\n"
		    ".previous\n"

		_ASM_EXTABLE(1b, 4b)

		: "=A"(usdiff), [faulted] "=r" (faulted)
		: "A"(usdiff * 1000), [divisor] "rm"(vcpu->arch.virtual_tsc_khz));

1274
#endif
1275 1276 1277 1278
		do_div(elapsed, 1000);
		usdiff -= elapsed;
		if (usdiff < 0)
			usdiff = -usdiff;
1279 1280 1281 1282

		/* idivl overflow => difference is larger than USEC_PER_SEC */
		if (faulted)
			usdiff = USEC_PER_SEC;
1283 1284
	} else
		usdiff = USEC_PER_SEC; /* disable TSC match window below */
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1285 1286

	/*
1287 1288 1289 1290 1291 1292 1293 1294 1295
	 * Special case: TSC write with a small delta (1 second) of virtual
	 * cycle time against real time is interpreted as an attempt to
	 * synchronize the CPU.
         *
	 * For a reliable TSC, we can match TSC offsets, and for an unstable
	 * TSC, we add elapsed time in this computation.  We could let the
	 * compensation code attempt to catch up if we fall behind, but
	 * it's better to try to match offsets from the beginning.
         */
1296
	if (usdiff < USEC_PER_SEC &&
1297
	    vcpu->arch.virtual_tsc_khz == kvm->arch.last_tsc_khz) {
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1298
		if (!check_tsc_unstable()) {
1299
			offset = kvm->arch.cur_tsc_offset;
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1300 1301
			pr_debug("kvm: matched tsc offset for %llu\n", data);
		} else {
1302
			u64 delta = nsec_to_cycles(vcpu, elapsed);
1303 1304
			data += delta;
			offset = kvm_x86_ops->compute_tsc_offset(vcpu, data);
1305
			pr_debug("kvm: adjusted tsc offset by %llu\n", delta);
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1306
		}
1307
		matched = true;
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1308
		already_matched = (vcpu->arch.this_tsc_generation == kvm->arch.cur_tsc_generation);
1309 1310 1311 1312 1313 1314
	} else {
		/*
		 * We split periods of matched TSC writes into generations.
		 * For each generation, we track the original measured
		 * nanosecond time, offset, and write, so if TSCs are in
		 * sync, we can match exact offset, and if not, we can match
G
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1315
		 * exact software computation in compute_guest_tsc()
1316 1317 1318 1319 1320 1321 1322
		 *
		 * These values are tracked in kvm->arch.cur_xxx variables.
		 */
		kvm->arch.cur_tsc_generation++;
		kvm->arch.cur_tsc_nsec = ns;
		kvm->arch.cur_tsc_write = data;
		kvm->arch.cur_tsc_offset = offset;
1323
		matched = false;
T
Tomasz Grabiec 已提交
1324
		pr_debug("kvm: new tsc generation %llu, clock %llu\n",
1325
			 kvm->arch.cur_tsc_generation, data);
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Zachary Amsden 已提交
1326
	}
1327 1328 1329 1330 1331

	/*
	 * We also track th most recent recorded KHZ, write and time to
	 * allow the matching interval to be extended at each write.
	 */
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1332 1333
	kvm->arch.last_tsc_nsec = ns;
	kvm->arch.last_tsc_write = data;
1334
	kvm->arch.last_tsc_khz = vcpu->arch.virtual_tsc_khz;
1335

1336
	vcpu->arch.last_guest_tsc = data;
1337 1338 1339 1340 1341 1342

	/* Keep track of which generation this VCPU has synchronized to */
	vcpu->arch.this_tsc_generation = kvm->arch.cur_tsc_generation;
	vcpu->arch.this_tsc_nsec = kvm->arch.cur_tsc_nsec;
	vcpu->arch.this_tsc_write = kvm->arch.cur_tsc_write;

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1343 1344
	if (guest_cpuid_has_tsc_adjust(vcpu) && !msr->host_initiated)
		update_ia32_tsc_adjust_msr(vcpu, offset);
1345 1346
	kvm_x86_ops->write_tsc_offset(vcpu, offset);
	raw_spin_unlock_irqrestore(&kvm->arch.tsc_write_lock, flags);
1347 1348

	spin_lock(&kvm->arch.pvclock_gtod_sync_lock);
T
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1349
	if (!matched) {
1350
		kvm->arch.nr_vcpus_matched_tsc = 0;
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1351 1352 1353
	} else if (!already_matched) {
		kvm->arch.nr_vcpus_matched_tsc++;
	}
1354 1355 1356

	kvm_track_tsc_matching(vcpu);
	spin_unlock(&kvm->arch.pvclock_gtod_sync_lock);
1357
}
1358

1359 1360
EXPORT_SYMBOL_GPL(kvm_write_tsc);

1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405
#ifdef CONFIG_X86_64

static cycle_t read_tsc(void)
{
	cycle_t ret;
	u64 last;

	/*
	 * Empirically, a fence (of type that depends on the CPU)
	 * before rdtsc is enough to ensure that rdtsc is ordered
	 * with respect to loads.  The various CPU manuals are unclear
	 * as to whether rdtsc can be reordered with later loads,
	 * but no one has ever seen it happen.
	 */
	rdtsc_barrier();
	ret = (cycle_t)vget_cycles();

	last = pvclock_gtod_data.clock.cycle_last;

	if (likely(ret >= last))
		return ret;

	/*
	 * GCC likes to generate cmov here, but this branch is extremely
	 * predictable (it's just a funciton of time and the likely is
	 * very likely) and there's a data dependence, so force GCC
	 * to generate a branch instead.  I don't barrier() because
	 * we don't actually need a barrier, and if this function
	 * ever gets inlined it will generate worse code.
	 */
	asm volatile ("");
	return last;
}

static inline u64 vgettsc(cycle_t *cycle_now)
{
	long v;
	struct pvclock_gtod_data *gtod = &pvclock_gtod_data;

	*cycle_now = read_tsc();

	v = (*cycle_now - gtod->clock.cycle_last) & gtod->clock.mask;
	return v * gtod->clock.mult;
}

1406
static int do_monotonic_boot(s64 *t, cycle_t *cycle_now)
1407
{
1408
	struct pvclock_gtod_data *gtod = &pvclock_gtod_data;
1409 1410
	unsigned long seq;
	int mode;
1411
	u64 ns;
1412 1413 1414 1415

	do {
		seq = read_seqcount_begin(&gtod->seq);
		mode = gtod->clock.vclock_mode;
1416
		ns = gtod->nsec_base;
1417 1418
		ns += vgettsc(cycle_now);
		ns >>= gtod->clock.shift;
1419
		ns += gtod->boot_ns;
1420
	} while (unlikely(read_seqcount_retry(&gtod->seq, seq)));
1421
	*t = ns;
1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432

	return mode;
}

/* returns true if host is using tsc clocksource */
static bool kvm_get_time_and_clockread(s64 *kernel_ns, cycle_t *cycle_now)
{
	/* checked again under seqlock below */
	if (pvclock_gtod_data.clock.vclock_mode != VCLOCK_TSC)
		return false;

1433
	return do_monotonic_boot(kernel_ns, cycle_now) == VCLOCK_TSC;
1434 1435 1436 1437 1438
}
#endif

/*
 *
1439 1440 1441
 * Assuming a stable TSC across physical CPUS, and a stable TSC
 * across virtual CPUs, the following condition is possible.
 * Each numbered line represents an event visible to both
1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473
 * CPUs at the next numbered event.
 *
 * "timespecX" represents host monotonic time. "tscX" represents
 * RDTSC value.
 *
 * 		VCPU0 on CPU0		|	VCPU1 on CPU1
 *
 * 1.  read timespec0,tsc0
 * 2.					| timespec1 = timespec0 + N
 * 					| tsc1 = tsc0 + M
 * 3. transition to guest		| transition to guest
 * 4. ret0 = timespec0 + (rdtsc - tsc0) |
 * 5.				        | ret1 = timespec1 + (rdtsc - tsc1)
 * 				        | ret1 = timespec0 + N + (rdtsc - (tsc0 + M))
 *
 * Since ret0 update is visible to VCPU1 at time 5, to obey monotonicity:
 *
 * 	- ret0 < ret1
 *	- timespec0 + (rdtsc - tsc0) < timespec0 + N + (rdtsc - (tsc0 + M))
 *		...
 *	- 0 < N - M => M < N
 *
 * That is, when timespec0 != timespec1, M < N. Unfortunately that is not
 * always the case (the difference between two distinct xtime instances
 * might be smaller then the difference between corresponding TSC reads,
 * when updating guest vcpus pvclock areas).
 *
 * To avoid that problem, do not allow visibility of distinct
 * system_timestamp/tsc_timestamp values simultaneously: use a master
 * copy of host monotonic time values. Update that master copy
 * in lockstep.
 *
1474
 * Rely on synchronization of host TSCs and guest TSCs for monotonicity.
1475 1476 1477 1478 1479 1480 1481 1482
 *
 */

static void pvclock_update_vm_gtod_copy(struct kvm *kvm)
{
#ifdef CONFIG_X86_64
	struct kvm_arch *ka = &kvm->arch;
	int vclock_mode;
1483 1484 1485 1486
	bool host_tsc_clocksource, vcpus_matched;

	vcpus_matched = (ka->nr_vcpus_matched_tsc + 1 ==
			atomic_read(&kvm->online_vcpus));
1487 1488 1489 1490 1491

	/*
	 * If the host uses TSC clock, then passthrough TSC as stable
	 * to the guest.
	 */
1492
	host_tsc_clocksource = kvm_get_time_and_clockread(
1493 1494 1495
					&ka->master_kernel_ns,
					&ka->master_cycle_now);

1496 1497
	ka->use_master_clock = host_tsc_clocksource && vcpus_matched
				&& !backwards_tsc_observed;
1498

1499 1500 1501 1502
	if (ka->use_master_clock)
		atomic_set(&kvm_guest_has_master_clock, 1);

	vclock_mode = pvclock_gtod_data.clock.vclock_mode;
1503 1504
	trace_kvm_update_master_clock(ka->use_master_clock, vclock_mode,
					vcpus_matched);
1505 1506 1507
#endif
}

1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530
static void kvm_gen_update_masterclock(struct kvm *kvm)
{
#ifdef CONFIG_X86_64
	int i;
	struct kvm_vcpu *vcpu;
	struct kvm_arch *ka = &kvm->arch;

	spin_lock(&ka->pvclock_gtod_sync_lock);
	kvm_make_mclock_inprogress_request(kvm);
	/* no guest entries from this point */
	pvclock_update_vm_gtod_copy(kvm);

	kvm_for_each_vcpu(i, vcpu, kvm)
		set_bit(KVM_REQ_CLOCK_UPDATE, &vcpu->requests);

	/* guest entries allowed */
	kvm_for_each_vcpu(i, vcpu, kvm)
		clear_bit(KVM_REQ_MCLOCK_INPROGRESS, &vcpu->requests);

	spin_unlock(&ka->pvclock_gtod_sync_lock);
#endif
}

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1531
static int kvm_guest_time_update(struct kvm_vcpu *v)
1532
{
1533
	unsigned long flags, this_tsc_khz;
1534
	struct kvm_vcpu_arch *vcpu = &v->arch;
1535
	struct kvm_arch *ka = &v->kvm->arch;
1536
	s64 kernel_ns;
1537
	u64 tsc_timestamp, host_tsc;
1538
	struct pvclock_vcpu_time_info guest_hv_clock;
1539
	u8 pvclock_flags;
1540 1541 1542 1543
	bool use_master_clock;

	kernel_ns = 0;
	host_tsc = 0;
1544

1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555
	/*
	 * If the host uses TSC clock, then passthrough TSC as stable
	 * to the guest.
	 */
	spin_lock(&ka->pvclock_gtod_sync_lock);
	use_master_clock = ka->use_master_clock;
	if (use_master_clock) {
		host_tsc = ka->master_cycle_now;
		kernel_ns = ka->master_kernel_ns;
	}
	spin_unlock(&ka->pvclock_gtod_sync_lock);
1556 1557 1558 1559 1560 1561 1562 1563 1564

	/* Keep irq disabled to prevent changes to the clock */
	local_irq_save(flags);
	this_tsc_khz = __get_cpu_var(cpu_tsc_khz);
	if (unlikely(this_tsc_khz == 0)) {
		local_irq_restore(flags);
		kvm_make_request(KVM_REQ_CLOCK_UPDATE, v);
		return 1;
	}
1565 1566 1567 1568 1569 1570 1571
	if (!use_master_clock) {
		host_tsc = native_read_tsc();
		kernel_ns = get_kernel_ns();
	}

	tsc_timestamp = kvm_x86_ops->read_l1_tsc(v, host_tsc);

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1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584
	/*
	 * We may have to catch up the TSC to match elapsed wall clock
	 * time for two reasons, even if kvmclock is used.
	 *   1) CPU could have been running below the maximum TSC rate
	 *   2) Broken TSC compensation resets the base at each VCPU
	 *      entry to avoid unknown leaps of TSC even when running
	 *      again on the same CPU.  This may cause apparent elapsed
	 *      time to disappear, and the guest to stand still or run
	 *	very slowly.
	 */
	if (vcpu->tsc_catchup) {
		u64 tsc = compute_guest_tsc(v, kernel_ns);
		if (tsc > tsc_timestamp) {
1585
			adjust_tsc_offset_guest(v, tsc - tsc_timestamp);
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1586 1587
			tsc_timestamp = tsc;
		}
1588 1589
	}

1590 1591
	local_irq_restore(flags);

1592
	if (!vcpu->pv_time_enabled)
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1593
		return 0;
1594

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1595
	if (unlikely(vcpu->hw_tsc_khz != this_tsc_khz)) {
1596 1597 1598
		kvm_get_time_scale(NSEC_PER_SEC / 1000, this_tsc_khz,
				   &vcpu->hv_clock.tsc_shift,
				   &vcpu->hv_clock.tsc_to_system_mul);
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1599
		vcpu->hw_tsc_khz = this_tsc_khz;
1600 1601 1602
	}

	/* With all the info we got, fill in the values */
1603
	vcpu->hv_clock.tsc_timestamp = tsc_timestamp;
1604
	vcpu->hv_clock.system_time = kernel_ns + v->kvm->arch.kvmclock_offset;
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Zachary Amsden 已提交
1605
	vcpu->last_guest_tsc = tsc_timestamp;
1606

1607 1608 1609
	/*
	 * The interface expects us to write an even number signaling that the
	 * update is finished. Since the guest won't see the intermediate
1610
	 * state, we just increase by 2 at the end.
1611
	 */
1612
	vcpu->hv_clock.version += 2;
1613

1614 1615 1616
	if (unlikely(kvm_read_guest_cached(v->kvm, &vcpu->pv_time,
		&guest_hv_clock, sizeof(guest_hv_clock))))
		return 0;
1617 1618

	/* retain PVCLOCK_GUEST_STOPPED if set in guest copy */
1619
	pvclock_flags = (guest_hv_clock.flags & PVCLOCK_GUEST_STOPPED);
1620 1621 1622 1623 1624 1625

	if (vcpu->pvclock_set_guest_stopped_request) {
		pvclock_flags |= PVCLOCK_GUEST_STOPPED;
		vcpu->pvclock_set_guest_stopped_request = false;
	}

1626 1627 1628 1629
	/* If the host uses TSC clocksource, then it is stable */
	if (use_master_clock)
		pvclock_flags |= PVCLOCK_TSC_STABLE_BIT;

1630 1631
	vcpu->hv_clock.flags = pvclock_flags;

1632 1633 1634
	kvm_write_guest_cached(v->kvm, &vcpu->pv_time,
				&vcpu->hv_clock,
				sizeof(vcpu->hv_clock));
1635
	return 0;
1636 1637
}

1638 1639 1640 1641 1642 1643 1644 1645
/*
 * kvmclock updates which are isolated to a given vcpu, such as
 * vcpu->cpu migration, should not allow system_timestamp from
 * the rest of the vcpus to remain static. Otherwise ntp frequency
 * correction applies to one vcpu's system_timestamp but not
 * the others.
 *
 * So in those cases, request a kvmclock update for all vcpus.
1646 1647 1648 1649
 * We need to rate-limit these requests though, as they can
 * considerably slow guests that have a large number of vcpus.
 * The time for a remote vcpu to update its kvmclock is bound
 * by the delay we use to rate-limit the updates.
1650 1651
 */

1652 1653 1654
#define KVMCLOCK_UPDATE_DELAY msecs_to_jiffies(100)

static void kvmclock_update_fn(struct work_struct *work)
1655 1656
{
	int i;
1657 1658 1659 1660
	struct delayed_work *dwork = to_delayed_work(work);
	struct kvm_arch *ka = container_of(dwork, struct kvm_arch,
					   kvmclock_update_work);
	struct kvm *kvm = container_of(ka, struct kvm, arch);
1661 1662 1663 1664 1665 1666 1667 1668
	struct kvm_vcpu *vcpu;

	kvm_for_each_vcpu(i, vcpu, kvm) {
		set_bit(KVM_REQ_CLOCK_UPDATE, &vcpu->requests);
		kvm_vcpu_kick(vcpu);
	}
}

1669 1670 1671 1672 1673 1674 1675 1676 1677
static void kvm_gen_kvmclock_update(struct kvm_vcpu *v)
{
	struct kvm *kvm = v->kvm;

	set_bit(KVM_REQ_CLOCK_UPDATE, &v->requests);
	schedule_delayed_work(&kvm->arch.kvmclock_update_work,
					KVMCLOCK_UPDATE_DELAY);
}

1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691
#define KVMCLOCK_SYNC_PERIOD (300 * HZ)

static void kvmclock_sync_fn(struct work_struct *work)
{
	struct delayed_work *dwork = to_delayed_work(work);
	struct kvm_arch *ka = container_of(dwork, struct kvm_arch,
					   kvmclock_sync_work);
	struct kvm *kvm = container_of(ka, struct kvm, arch);

	schedule_delayed_work(&kvm->arch.kvmclock_update_work, 0);
	schedule_delayed_work(&kvm->arch.kvmclock_sync_work,
					KVMCLOCK_SYNC_PERIOD);
}

A
Avi Kivity 已提交
1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715
static bool msr_mtrr_valid(unsigned msr)
{
	switch (msr) {
	case 0x200 ... 0x200 + 2 * KVM_NR_VAR_MTRR - 1:
	case MSR_MTRRfix64K_00000:
	case MSR_MTRRfix16K_80000:
	case MSR_MTRRfix16K_A0000:
	case MSR_MTRRfix4K_C0000:
	case MSR_MTRRfix4K_C8000:
	case MSR_MTRRfix4K_D0000:
	case MSR_MTRRfix4K_D8000:
	case MSR_MTRRfix4K_E0000:
	case MSR_MTRRfix4K_E8000:
	case MSR_MTRRfix4K_F0000:
	case MSR_MTRRfix4K_F8000:
	case MSR_MTRRdefType:
	case MSR_IA32_CR_PAT:
		return true;
	case 0x2f8:
		return true;
	}
	return false;
}

1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752
static bool valid_pat_type(unsigned t)
{
	return t < 8 && (1 << t) & 0xf3; /* 0, 1, 4, 5, 6, 7 */
}

static bool valid_mtrr_type(unsigned t)
{
	return t < 8 && (1 << t) & 0x73; /* 0, 1, 4, 5, 6 */
}

static bool mtrr_valid(struct kvm_vcpu *vcpu, u32 msr, u64 data)
{
	int i;

	if (!msr_mtrr_valid(msr))
		return false;

	if (msr == MSR_IA32_CR_PAT) {
		for (i = 0; i < 8; i++)
			if (!valid_pat_type((data >> (i * 8)) & 0xff))
				return false;
		return true;
	} else if (msr == MSR_MTRRdefType) {
		if (data & ~0xcff)
			return false;
		return valid_mtrr_type(data & 0xff);
	} else if (msr >= MSR_MTRRfix64K_00000 && msr <= MSR_MTRRfix4K_F8000) {
		for (i = 0; i < 8 ; i++)
			if (!valid_mtrr_type((data >> (i * 8)) & 0xff))
				return false;
		return true;
	}

	/* variable MTRRs */
	return valid_mtrr_type(data & 0xff);
}

A
Avi Kivity 已提交
1753 1754
static int set_msr_mtrr(struct kvm_vcpu *vcpu, u32 msr, u64 data)
{
S
Sheng Yang 已提交
1755 1756
	u64 *p = (u64 *)&vcpu->arch.mtrr_state.fixed_ranges;

1757
	if (!mtrr_valid(vcpu, msr, data))
A
Avi Kivity 已提交
1758 1759
		return 1;

S
Sheng Yang 已提交
1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786
	if (msr == MSR_MTRRdefType) {
		vcpu->arch.mtrr_state.def_type = data;
		vcpu->arch.mtrr_state.enabled = (data & 0xc00) >> 10;
	} else if (msr == MSR_MTRRfix64K_00000)
		p[0] = data;
	else if (msr == MSR_MTRRfix16K_80000 || msr == MSR_MTRRfix16K_A0000)
		p[1 + msr - MSR_MTRRfix16K_80000] = data;
	else if (msr >= MSR_MTRRfix4K_C0000 && msr <= MSR_MTRRfix4K_F8000)
		p[3 + msr - MSR_MTRRfix4K_C0000] = data;
	else if (msr == MSR_IA32_CR_PAT)
		vcpu->arch.pat = data;
	else {	/* Variable MTRRs */
		int idx, is_mtrr_mask;
		u64 *pt;

		idx = (msr - 0x200) / 2;
		is_mtrr_mask = msr - 0x200 - 2 * idx;
		if (!is_mtrr_mask)
			pt =
			  (u64 *)&vcpu->arch.mtrr_state.var_ranges[idx].base_lo;
		else
			pt =
			  (u64 *)&vcpu->arch.mtrr_state.var_ranges[idx].mask_lo;
		*pt = data;
	}

	kvm_mmu_reset_context(vcpu);
A
Avi Kivity 已提交
1787 1788
	return 0;
}
1789

H
Huang Ying 已提交
1790
static int set_msr_mce(struct kvm_vcpu *vcpu, u32 msr, u64 data)
1791
{
H
Huang Ying 已提交
1792 1793 1794
	u64 mcg_cap = vcpu->arch.mcg_cap;
	unsigned bank_num = mcg_cap & 0xff;

1795 1796
	switch (msr) {
	case MSR_IA32_MCG_STATUS:
H
Huang Ying 已提交
1797
		vcpu->arch.mcg_status = data;
1798
		break;
1799
	case MSR_IA32_MCG_CTL:
H
Huang Ying 已提交
1800 1801 1802 1803 1804 1805 1806 1807 1808 1809
		if (!(mcg_cap & MCG_CTL_P))
			return 1;
		if (data != 0 && data != ~(u64)0)
			return -1;
		vcpu->arch.mcg_ctl = data;
		break;
	default:
		if (msr >= MSR_IA32_MC0_CTL &&
		    msr < MSR_IA32_MC0_CTL + 4 * bank_num) {
			u32 offset = msr - MSR_IA32_MC0_CTL;
1810 1811 1812 1813 1814
			/* only 0 or all 1s can be written to IA32_MCi_CTL
			 * some Linux kernels though clear bit 10 in bank 4 to
			 * workaround a BIOS/GART TBL issue on AMD K8s, ignore
			 * this to avoid an uncatched #GP in the guest
			 */
H
Huang Ying 已提交
1815
			if ((offset & 0x3) == 0 &&
1816
			    data != 0 && (data | (1 << 10)) != ~(u64)0)
H
Huang Ying 已提交
1817 1818 1819 1820 1821 1822 1823 1824 1825
				return -1;
			vcpu->arch.mce_banks[offset] = data;
			break;
		}
		return 1;
	}
	return 0;
}

E
Ed Swierk 已提交
1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842
static int xen_hvm_config(struct kvm_vcpu *vcpu, u64 data)
{
	struct kvm *kvm = vcpu->kvm;
	int lm = is_long_mode(vcpu);
	u8 *blob_addr = lm ? (u8 *)(long)kvm->arch.xen_hvm_config.blob_addr_64
		: (u8 *)(long)kvm->arch.xen_hvm_config.blob_addr_32;
	u8 blob_size = lm ? kvm->arch.xen_hvm_config.blob_size_64
		: kvm->arch.xen_hvm_config.blob_size_32;
	u32 page_num = data & ~PAGE_MASK;
	u64 page_addr = data & PAGE_MASK;
	u8 *page;
	int r;

	r = -E2BIG;
	if (page_num >= blob_size)
		goto out;
	r = -ENOMEM;
1843 1844 1845
	page = memdup_user(blob_addr + (page_num * PAGE_SIZE), PAGE_SIZE);
	if (IS_ERR(page)) {
		r = PTR_ERR(page);
E
Ed Swierk 已提交
1846
		goto out;
1847
	}
E
Ed Swierk 已提交
1848 1849 1850 1851 1852 1853 1854 1855 1856
	if (kvm_write_guest(kvm, page_addr, page, PAGE_SIZE))
		goto out_free;
	r = 0;
out_free:
	kfree(page);
out:
	return r;
}

1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867
static bool kvm_hv_hypercall_enabled(struct kvm *kvm)
{
	return kvm->arch.hv_hypercall & HV_X64_MSR_HYPERCALL_ENABLE;
}

static bool kvm_hv_msr_partition_wide(u32 msr)
{
	bool r = false;
	switch (msr) {
	case HV_X64_MSR_GUEST_OS_ID:
	case HV_X64_MSR_HYPERCALL:
1868 1869
	case HV_X64_MSR_REFERENCE_TSC:
	case HV_X64_MSR_TIME_REF_COUNT:
1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905
		r = true;
		break;
	}

	return r;
}

static int set_msr_hyperv_pw(struct kvm_vcpu *vcpu, u32 msr, u64 data)
{
	struct kvm *kvm = vcpu->kvm;

	switch (msr) {
	case HV_X64_MSR_GUEST_OS_ID:
		kvm->arch.hv_guest_os_id = data;
		/* setting guest os id to zero disables hypercall page */
		if (!kvm->arch.hv_guest_os_id)
			kvm->arch.hv_hypercall &= ~HV_X64_MSR_HYPERCALL_ENABLE;
		break;
	case HV_X64_MSR_HYPERCALL: {
		u64 gfn;
		unsigned long addr;
		u8 instructions[4];

		/* if guest os id is not set hypercall should remain disabled */
		if (!kvm->arch.hv_guest_os_id)
			break;
		if (!(data & HV_X64_MSR_HYPERCALL_ENABLE)) {
			kvm->arch.hv_hypercall = data;
			break;
		}
		gfn = data >> HV_X64_MSR_HYPERCALL_PAGE_ADDRESS_SHIFT;
		addr = gfn_to_hva(kvm, gfn);
		if (kvm_is_error_hva(addr))
			return 1;
		kvm_x86_ops->patch_hypercall(vcpu, instructions);
		((unsigned char *)instructions)[3] = 0xc3; /* ret */
1906
		if (__copy_to_user((void __user *)addr, instructions, 4))
1907 1908
			return 1;
		kvm->arch.hv_hypercall = data;
1909
		mark_page_dirty(kvm, gfn);
1910 1911
		break;
	}
1912 1913 1914 1915 1916 1917 1918 1919
	case HV_X64_MSR_REFERENCE_TSC: {
		u64 gfn;
		HV_REFERENCE_TSC_PAGE tsc_ref;
		memset(&tsc_ref, 0, sizeof(tsc_ref));
		kvm->arch.hv_tsc_page = data;
		if (!(data & HV_X64_MSR_TSC_REFERENCE_ENABLE))
			break;
		gfn = data >> HV_X64_MSR_TSC_REFERENCE_ADDRESS_SHIFT;
1920
		if (kvm_write_guest(kvm, gfn << HV_X64_MSR_TSC_REFERENCE_ADDRESS_SHIFT,
1921 1922 1923 1924 1925
			&tsc_ref, sizeof(tsc_ref)))
			return 1;
		mark_page_dirty(kvm, gfn);
		break;
	}
1926
	default:
1927 1928
		vcpu_unimpl(vcpu, "HYPER-V unimplemented wrmsr: 0x%x "
			    "data 0x%llx\n", msr, data);
1929 1930 1931 1932 1933 1934 1935
		return 1;
	}
	return 0;
}

static int set_msr_hyperv(struct kvm_vcpu *vcpu, u32 msr, u64 data)
{
G
Gleb Natapov 已提交
1936 1937
	switch (msr) {
	case HV_X64_MSR_APIC_ASSIST_PAGE: {
1938
		u64 gfn;
G
Gleb Natapov 已提交
1939
		unsigned long addr;
1940

G
Gleb Natapov 已提交
1941 1942
		if (!(data & HV_X64_MSR_APIC_ASSIST_PAGE_ENABLE)) {
			vcpu->arch.hv_vapic = data;
1943 1944
			if (kvm_lapic_enable_pv_eoi(vcpu, 0))
				return 1;
G
Gleb Natapov 已提交
1945 1946
			break;
		}
1947 1948
		gfn = data >> HV_X64_MSR_APIC_ASSIST_PAGE_ADDRESS_SHIFT;
		addr = gfn_to_hva(vcpu->kvm, gfn);
G
Gleb Natapov 已提交
1949 1950
		if (kvm_is_error_hva(addr))
			return 1;
1951
		if (__clear_user((void __user *)addr, PAGE_SIZE))
G
Gleb Natapov 已提交
1952 1953
			return 1;
		vcpu->arch.hv_vapic = data;
1954
		mark_page_dirty(vcpu->kvm, gfn);
1955 1956
		if (kvm_lapic_enable_pv_eoi(vcpu, gfn_to_gpa(gfn) | KVM_MSR_ENABLED))
			return 1;
G
Gleb Natapov 已提交
1957 1958 1959 1960 1961 1962 1963 1964 1965
		break;
	}
	case HV_X64_MSR_EOI:
		return kvm_hv_vapic_msr_write(vcpu, APIC_EOI, data);
	case HV_X64_MSR_ICR:
		return kvm_hv_vapic_msr_write(vcpu, APIC_ICR, data);
	case HV_X64_MSR_TPR:
		return kvm_hv_vapic_msr_write(vcpu, APIC_TASKPRI, data);
	default:
1966 1967
		vcpu_unimpl(vcpu, "HYPER-V unimplemented wrmsr: 0x%x "
			    "data 0x%llx\n", msr, data);
G
Gleb Natapov 已提交
1968 1969 1970 1971
		return 1;
	}

	return 0;
1972 1973
}

1974 1975 1976 1977
static int kvm_pv_enable_async_pf(struct kvm_vcpu *vcpu, u64 data)
{
	gpa_t gpa = data & ~0x3f;

G
Guo Chao 已提交
1978
	/* Bits 2:5 are reserved, Should be zero */
1979
	if (data & 0x3c)
1980 1981 1982 1983 1984 1985 1986 1987 1988 1989
		return 1;

	vcpu->arch.apf.msr_val = data;

	if (!(data & KVM_ASYNC_PF_ENABLED)) {
		kvm_clear_async_pf_completion_queue(vcpu);
		kvm_async_pf_hash_reset(vcpu);
		return 0;
	}

1990 1991
	if (kvm_gfn_to_hva_cache_init(vcpu->kvm, &vcpu->arch.apf.data, gpa,
					sizeof(u32)))
1992 1993
		return 1;

1994
	vcpu->arch.apf.send_user_only = !(data & KVM_ASYNC_PF_SEND_ALWAYS);
1995 1996 1997 1998
	kvm_async_pf_wakeup_all(vcpu);
	return 0;
}

1999 2000
static void kvmclock_reset(struct kvm_vcpu *vcpu)
{
2001
	vcpu->arch.pv_time_enabled = false;
2002 2003
}

G
Glauber Costa 已提交
2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032
static void accumulate_steal_time(struct kvm_vcpu *vcpu)
{
	u64 delta;

	if (!(vcpu->arch.st.msr_val & KVM_MSR_ENABLED))
		return;

	delta = current->sched_info.run_delay - vcpu->arch.st.last_steal;
	vcpu->arch.st.last_steal = current->sched_info.run_delay;
	vcpu->arch.st.accum_steal = delta;
}

static void record_steal_time(struct kvm_vcpu *vcpu)
{
	if (!(vcpu->arch.st.msr_val & KVM_MSR_ENABLED))
		return;

	if (unlikely(kvm_read_guest_cached(vcpu->kvm, &vcpu->arch.st.stime,
		&vcpu->arch.st.steal, sizeof(struct kvm_steal_time))))
		return;

	vcpu->arch.st.steal.steal += vcpu->arch.st.accum_steal;
	vcpu->arch.st.steal.version += 2;
	vcpu->arch.st.accum_steal = 0;

	kvm_write_guest_cached(vcpu->kvm, &vcpu->arch.st.stime,
		&vcpu->arch.st.steal, sizeof(struct kvm_steal_time));
}

2033
int kvm_set_msr_common(struct kvm_vcpu *vcpu, struct msr_data *msr_info)
2034
{
2035
	bool pr = false;
2036 2037
	u32 msr = msr_info->index;
	u64 data = msr_info->data;
2038

2039
	switch (msr) {
2040 2041 2042 2043 2044 2045 2046 2047
	case MSR_AMD64_NB_CFG:
	case MSR_IA32_UCODE_REV:
	case MSR_IA32_UCODE_WRITE:
	case MSR_VM_HSAVE_PA:
	case MSR_AMD64_PATCH_LOADER:
	case MSR_AMD64_BU_CFG2:
		break;

2048
	case MSR_EFER:
2049
		return set_efer(vcpu, data);
2050 2051
	case MSR_K7_HWCR:
		data &= ~(u64)0x40;	/* ignore flush filter disable */
2052
		data &= ~(u64)0x100;	/* ignore ignne emulation enable */
2053
		data &= ~(u64)0x8;	/* ignore TLB cache disable */
2054
		data &= ~(u64)0x40000;  /* ignore Mc status write enable */
2055
		if (data != 0) {
2056 2057
			vcpu_unimpl(vcpu, "unimplemented HWCR wrmsr: 0x%llx\n",
				    data);
2058 2059
			return 1;
		}
2060
		break;
2061 2062
	case MSR_FAM10H_MMIO_CONF_BASE:
		if (data != 0) {
2063 2064
			vcpu_unimpl(vcpu, "unimplemented MMIO_CONF_BASE wrmsr: "
				    "0x%llx\n", data);
2065 2066
			return 1;
		}
2067
		break;
2068 2069 2070 2071 2072 2073 2074 2075 2076
	case MSR_IA32_DEBUGCTLMSR:
		if (!data) {
			/* We support the non-activated case already */
			break;
		} else if (data & ~(DEBUGCTLMSR_LBR | DEBUGCTLMSR_BTF)) {
			/* Values other than LBR and BTF are vendor-specific,
			   thus reserved and should throw a #GP */
			return 1;
		}
2077 2078
		vcpu_unimpl(vcpu, "%s: MSR_IA32_DEBUGCTLMSR 0x%llx, nop\n",
			    __func__, data);
2079
		break;
A
Avi Kivity 已提交
2080 2081
	case 0x200 ... 0x2ff:
		return set_msr_mtrr(vcpu, msr, data);
2082
	case MSR_IA32_APICBASE:
2083
		return kvm_set_apic_base(vcpu, msr_info);
G
Gleb Natapov 已提交
2084 2085
	case APIC_BASE_MSR ... APIC_BASE_MSR + 0x3ff:
		return kvm_x2apic_msr_write(vcpu, msr, data);
2086 2087 2088
	case MSR_IA32_TSCDEADLINE:
		kvm_set_lapic_tscdeadline_msr(vcpu, data);
		break;
W
Will Auld 已提交
2089 2090 2091 2092 2093 2094 2095 2096 2097
	case MSR_IA32_TSC_ADJUST:
		if (guest_cpuid_has_tsc_adjust(vcpu)) {
			if (!msr_info->host_initiated) {
				u64 adj = data - vcpu->arch.ia32_tsc_adjust_msr;
				kvm_x86_ops->adjust_tsc_offset(vcpu, adj, true);
			}
			vcpu->arch.ia32_tsc_adjust_msr = data;
		}
		break;
2098
	case MSR_IA32_MISC_ENABLE:
2099
		vcpu->arch.ia32_misc_enable_msr = data;
2100
		break;
2101
	case MSR_KVM_WALL_CLOCK_NEW:
2102 2103 2104 2105
	case MSR_KVM_WALL_CLOCK:
		vcpu->kvm->arch.wall_clock = data;
		kvm_write_wall_clock(vcpu->kvm, data);
		break;
2106
	case MSR_KVM_SYSTEM_TIME_NEW:
2107
	case MSR_KVM_SYSTEM_TIME: {
2108
		u64 gpa_offset;
2109
		kvmclock_reset(vcpu);
2110 2111

		vcpu->arch.time = data;
2112
		kvm_make_request(KVM_REQ_GLOBAL_CLOCK_UPDATE, vcpu);
2113 2114 2115 2116 2117

		/* we verify if the enable bit is set... */
		if (!(data & 1))
			break;

2118
		gpa_offset = data & ~(PAGE_MASK | 1);
2119

2120
		if (kvm_gfn_to_hva_cache_init(vcpu->kvm,
2121 2122
		     &vcpu->arch.pv_time, data & ~1ULL,
		     sizeof(struct pvclock_vcpu_time_info)))
2123 2124 2125
			vcpu->arch.pv_time_enabled = false;
		else
			vcpu->arch.pv_time_enabled = true;
2126

2127 2128
		break;
	}
2129 2130 2131 2132
	case MSR_KVM_ASYNC_PF_EN:
		if (kvm_pv_enable_async_pf(vcpu, data))
			return 1;
		break;
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Glauber Costa 已提交
2133 2134 2135 2136 2137 2138 2139 2140 2141
	case MSR_KVM_STEAL_TIME:

		if (unlikely(!sched_info_on()))
			return 1;

		if (data & KVM_STEAL_RESERVED_MASK)
			return 1;

		if (kvm_gfn_to_hva_cache_init(vcpu->kvm, &vcpu->arch.st.stime,
2142 2143
						data & KVM_STEAL_VALID_BITS,
						sizeof(struct kvm_steal_time)))
G
Glauber Costa 已提交
2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159
			return 1;

		vcpu->arch.st.msr_val = data;

		if (!(data & KVM_MSR_ENABLED))
			break;

		vcpu->arch.st.last_steal = current->sched_info.run_delay;

		preempt_disable();
		accumulate_steal_time(vcpu);
		preempt_enable();

		kvm_make_request(KVM_REQ_STEAL_UPDATE, vcpu);

		break;
2160 2161 2162 2163
	case MSR_KVM_PV_EOI_EN:
		if (kvm_lapic_enable_pv_eoi(vcpu, data))
			return 1;
		break;
G
Glauber Costa 已提交
2164

H
Huang Ying 已提交
2165 2166 2167 2168
	case MSR_IA32_MCG_CTL:
	case MSR_IA32_MCG_STATUS:
	case MSR_IA32_MC0_CTL ... MSR_IA32_MC0_CTL + 4 * KVM_MAX_MCE_BANKS - 1:
		return set_msr_mce(vcpu, msr, data);
2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181

	/* Performance counters are not protected by a CPUID bit,
	 * so we should check all of them in the generic path for the sake of
	 * cross vendor migration.
	 * Writing a zero into the event select MSRs disables them,
	 * which we perfectly emulate ;-). Any other value should be at least
	 * reported, some guests depend on them.
	 */
	case MSR_K7_EVNTSEL0:
	case MSR_K7_EVNTSEL1:
	case MSR_K7_EVNTSEL2:
	case MSR_K7_EVNTSEL3:
		if (data != 0)
2182 2183
			vcpu_unimpl(vcpu, "unimplemented perfctr wrmsr: "
				    "0x%x data 0x%llx\n", msr, data);
2184 2185 2186 2187 2188 2189 2190 2191
		break;
	/* at least RHEL 4 unconditionally writes to the perfctr registers,
	 * so we ignore writes to make it happy.
	 */
	case MSR_K7_PERFCTR0:
	case MSR_K7_PERFCTR1:
	case MSR_K7_PERFCTR2:
	case MSR_K7_PERFCTR3:
2192 2193
		vcpu_unimpl(vcpu, "unimplemented perfctr wrmsr: "
			    "0x%x data 0x%llx\n", msr, data);
2194
		break;
2195 2196 2197 2198 2199 2200
	case MSR_P6_PERFCTR0:
	case MSR_P6_PERFCTR1:
		pr = true;
	case MSR_P6_EVNTSEL0:
	case MSR_P6_EVNTSEL1:
		if (kvm_pmu_msr(vcpu, msr))
2201
			return kvm_pmu_set_msr(vcpu, msr_info);
2202 2203

		if (pr || data != 0)
2204 2205
			vcpu_unimpl(vcpu, "disabled perfctr wrmsr: "
				    "0x%x data 0x%llx\n", msr, data);
2206
		break;
2207 2208 2209 2210 2211
	case MSR_K7_CLK_CTL:
		/*
		 * Ignore all writes to this no longer documented MSR.
		 * Writes are only relevant for old K7 processors,
		 * all pre-dating SVM, but a recommended workaround from
G
Guo Chao 已提交
2212
		 * AMD for these chips. It is possible to specify the
2213 2214 2215 2216
		 * affected processor models on the command line, hence
		 * the need to ignore the workaround.
		 */
		break;
2217 2218 2219 2220 2221 2222 2223 2224 2225 2226
	case HV_X64_MSR_GUEST_OS_ID ... HV_X64_MSR_SINT15:
		if (kvm_hv_msr_partition_wide(msr)) {
			int r;
			mutex_lock(&vcpu->kvm->lock);
			r = set_msr_hyperv_pw(vcpu, msr, data);
			mutex_unlock(&vcpu->kvm->lock);
			return r;
		} else
			return set_msr_hyperv(vcpu, msr, data);
		break;
2227 2228 2229 2230
	case MSR_IA32_BBL_CR_CTL3:
		/* Drop writes to this legacy MSR -- see rdmsr
		 * counterpart for further detail.
		 */
2231
		vcpu_unimpl(vcpu, "ignored wrmsr: 0x%x data %llx\n", msr, data);
2232
		break;
2233 2234 2235 2236 2237 2238 2239 2240 2241 2242
	case MSR_AMD64_OSVW_ID_LENGTH:
		if (!guest_cpuid_has_osvw(vcpu))
			return 1;
		vcpu->arch.osvw.length = data;
		break;
	case MSR_AMD64_OSVW_STATUS:
		if (!guest_cpuid_has_osvw(vcpu))
			return 1;
		vcpu->arch.osvw.status = data;
		break;
2243
	default:
E
Ed Swierk 已提交
2244 2245
		if (msr && (msr == vcpu->kvm->arch.xen_hvm_config.msr))
			return xen_hvm_config(vcpu, data);
2246
		if (kvm_pmu_msr(vcpu, msr))
2247
			return kvm_pmu_set_msr(vcpu, msr_info);
2248
		if (!ignore_msrs) {
2249 2250
			vcpu_unimpl(vcpu, "unhandled wrmsr: 0x%x data %llx\n",
				    msr, data);
2251 2252
			return 1;
		} else {
2253 2254
			vcpu_unimpl(vcpu, "ignored wrmsr: 0x%x data %llx\n",
				    msr, data);
2255 2256
			break;
		}
2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272
	}
	return 0;
}
EXPORT_SYMBOL_GPL(kvm_set_msr_common);


/*
 * Reads an msr value (of 'msr_index') into 'pdata'.
 * Returns 0 on success, non-0 otherwise.
 * Assumes vcpu_load() was already called.
 */
int kvm_get_msr(struct kvm_vcpu *vcpu, u32 msr_index, u64 *pdata)
{
	return kvm_x86_ops->get_msr(vcpu, msr_index, pdata);
}

A
Avi Kivity 已提交
2273 2274
static int get_msr_mtrr(struct kvm_vcpu *vcpu, u32 msr, u64 *pdata)
{
S
Sheng Yang 已提交
2275 2276
	u64 *p = (u64 *)&vcpu->arch.mtrr_state.fixed_ranges;

A
Avi Kivity 已提交
2277 2278 2279
	if (!msr_mtrr_valid(msr))
		return 1;

S
Sheng Yang 已提交
2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305
	if (msr == MSR_MTRRdefType)
		*pdata = vcpu->arch.mtrr_state.def_type +
			 (vcpu->arch.mtrr_state.enabled << 10);
	else if (msr == MSR_MTRRfix64K_00000)
		*pdata = p[0];
	else if (msr == MSR_MTRRfix16K_80000 || msr == MSR_MTRRfix16K_A0000)
		*pdata = p[1 + msr - MSR_MTRRfix16K_80000];
	else if (msr >= MSR_MTRRfix4K_C0000 && msr <= MSR_MTRRfix4K_F8000)
		*pdata = p[3 + msr - MSR_MTRRfix4K_C0000];
	else if (msr == MSR_IA32_CR_PAT)
		*pdata = vcpu->arch.pat;
	else {	/* Variable MTRRs */
		int idx, is_mtrr_mask;
		u64 *pt;

		idx = (msr - 0x200) / 2;
		is_mtrr_mask = msr - 0x200 - 2 * idx;
		if (!is_mtrr_mask)
			pt =
			  (u64 *)&vcpu->arch.mtrr_state.var_ranges[idx].base_lo;
		else
			pt =
			  (u64 *)&vcpu->arch.mtrr_state.var_ranges[idx].mask_lo;
		*pdata = *pt;
	}

A
Avi Kivity 已提交
2306 2307 2308
	return 0;
}

H
Huang Ying 已提交
2309
static int get_msr_mce(struct kvm_vcpu *vcpu, u32 msr, u64 *pdata)
2310 2311
{
	u64 data;
H
Huang Ying 已提交
2312 2313
	u64 mcg_cap = vcpu->arch.mcg_cap;
	unsigned bank_num = mcg_cap & 0xff;
2314 2315 2316 2317

	switch (msr) {
	case MSR_IA32_P5_MC_ADDR:
	case MSR_IA32_P5_MC_TYPE:
H
Huang Ying 已提交
2318 2319
		data = 0;
		break;
2320
	case MSR_IA32_MCG_CAP:
H
Huang Ying 已提交
2321 2322
		data = vcpu->arch.mcg_cap;
		break;
2323
	case MSR_IA32_MCG_CTL:
H
Huang Ying 已提交
2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343
		if (!(mcg_cap & MCG_CTL_P))
			return 1;
		data = vcpu->arch.mcg_ctl;
		break;
	case MSR_IA32_MCG_STATUS:
		data = vcpu->arch.mcg_status;
		break;
	default:
		if (msr >= MSR_IA32_MC0_CTL &&
		    msr < MSR_IA32_MC0_CTL + 4 * bank_num) {
			u32 offset = msr - MSR_IA32_MC0_CTL;
			data = vcpu->arch.mce_banks[offset];
			break;
		}
		return 1;
	}
	*pdata = data;
	return 0;
}

2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355
static int get_msr_hyperv_pw(struct kvm_vcpu *vcpu, u32 msr, u64 *pdata)
{
	u64 data = 0;
	struct kvm *kvm = vcpu->kvm;

	switch (msr) {
	case HV_X64_MSR_GUEST_OS_ID:
		data = kvm->arch.hv_guest_os_id;
		break;
	case HV_X64_MSR_HYPERCALL:
		data = kvm->arch.hv_hypercall;
		break;
2356 2357 2358 2359 2360 2361 2362 2363
	case HV_X64_MSR_TIME_REF_COUNT: {
		data =
		     div_u64(get_kernel_ns() + kvm->arch.kvmclock_offset, 100);
		break;
	}
	case HV_X64_MSR_REFERENCE_TSC:
		data = kvm->arch.hv_tsc_page;
		break;
2364
	default:
2365
		vcpu_unimpl(vcpu, "Hyper-V unhandled rdmsr: 0x%x\n", msr);
2366 2367 2368 2369 2370 2371 2372 2373 2374 2375 2376 2377 2378 2379 2380
		return 1;
	}

	*pdata = data;
	return 0;
}

static int get_msr_hyperv(struct kvm_vcpu *vcpu, u32 msr, u64 *pdata)
{
	u64 data = 0;

	switch (msr) {
	case HV_X64_MSR_VP_INDEX: {
		int r;
		struct kvm_vcpu *v;
2381 2382
		kvm_for_each_vcpu(r, v, vcpu->kvm) {
			if (v == vcpu) {
2383
				data = r;
2384 2385 2386
				break;
			}
		}
2387 2388
		break;
	}
G
Gleb Natapov 已提交
2389 2390 2391 2392 2393 2394
	case HV_X64_MSR_EOI:
		return kvm_hv_vapic_msr_read(vcpu, APIC_EOI, pdata);
	case HV_X64_MSR_ICR:
		return kvm_hv_vapic_msr_read(vcpu, APIC_ICR, pdata);
	case HV_X64_MSR_TPR:
		return kvm_hv_vapic_msr_read(vcpu, APIC_TASKPRI, pdata);
2395
	case HV_X64_MSR_APIC_ASSIST_PAGE:
2396 2397
		data = vcpu->arch.hv_vapic;
		break;
2398
	default:
2399
		vcpu_unimpl(vcpu, "Hyper-V unhandled rdmsr: 0x%x\n", msr);
2400 2401 2402 2403 2404 2405
		return 1;
	}
	*pdata = data;
	return 0;
}

H
Huang Ying 已提交
2406 2407 2408 2409 2410 2411
int kvm_get_msr_common(struct kvm_vcpu *vcpu, u32 msr, u64 *pdata)
{
	u64 data;

	switch (msr) {
	case MSR_IA32_PLATFORM_ID:
2412
	case MSR_IA32_EBL_CR_POWERON:
2413 2414 2415 2416 2417
	case MSR_IA32_DEBUGCTLMSR:
	case MSR_IA32_LASTBRANCHFROMIP:
	case MSR_IA32_LASTBRANCHTOIP:
	case MSR_IA32_LASTINTFROMIP:
	case MSR_IA32_LASTINTTOIP:
2418 2419
	case MSR_K8_SYSCFG:
	case MSR_K7_HWCR:
2420
	case MSR_VM_HSAVE_PA:
A
Amit Shah 已提交
2421
	case MSR_K7_EVNTSEL0:
2422 2423 2424
	case MSR_K7_EVNTSEL1:
	case MSR_K7_EVNTSEL2:
	case MSR_K7_EVNTSEL3:
A
Amit Shah 已提交
2425
	case MSR_K7_PERFCTR0:
2426 2427 2428
	case MSR_K7_PERFCTR1:
	case MSR_K7_PERFCTR2:
	case MSR_K7_PERFCTR3:
2429
	case MSR_K8_INT_PENDING_MSG:
2430
	case MSR_AMD64_NB_CFG:
2431
	case MSR_FAM10H_MMIO_CONF_BASE:
2432
	case MSR_AMD64_BU_CFG2:
2433 2434
		data = 0;
		break;
2435 2436 2437 2438 2439 2440 2441 2442
	case MSR_P6_PERFCTR0:
	case MSR_P6_PERFCTR1:
	case MSR_P6_EVNTSEL0:
	case MSR_P6_EVNTSEL1:
		if (kvm_pmu_msr(vcpu, msr))
			return kvm_pmu_get_msr(vcpu, msr, pdata);
		data = 0;
		break;
2443 2444 2445
	case MSR_IA32_UCODE_REV:
		data = 0x100000000ULL;
		break;
A
Avi Kivity 已提交
2446 2447 2448 2449 2450
	case MSR_MTRRcap:
		data = 0x500 | KVM_NR_VAR_MTRR;
		break;
	case 0x200 ... 0x2ff:
		return get_msr_mtrr(vcpu, msr, pdata);
2451 2452 2453
	case 0xcd: /* fsb frequency */
		data = 3;
		break;
2454 2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466 2467
		/*
		 * MSR_EBC_FREQUENCY_ID
		 * Conservative value valid for even the basic CPU models.
		 * Models 0,1: 000 in bits 23:21 indicating a bus speed of
		 * 100MHz, model 2 000 in bits 18:16 indicating 100MHz,
		 * and 266MHz for model 3, or 4. Set Core Clock
		 * Frequency to System Bus Frequency Ratio to 1 (bits
		 * 31:24) even though these are only valid for CPU
		 * models > 2, however guests may end up dividing or
		 * multiplying by zero otherwise.
		 */
	case MSR_EBC_FREQUENCY_ID:
		data = 1 << 24;
		break;
2468 2469 2470
	case MSR_IA32_APICBASE:
		data = kvm_get_apic_base(vcpu);
		break;
G
Gleb Natapov 已提交
2471 2472 2473
	case APIC_BASE_MSR ... APIC_BASE_MSR + 0x3ff:
		return kvm_x2apic_msr_read(vcpu, msr, pdata);
		break;
2474 2475 2476
	case MSR_IA32_TSCDEADLINE:
		data = kvm_get_lapic_tscdeadline_msr(vcpu);
		break;
W
Will Auld 已提交
2477 2478 2479
	case MSR_IA32_TSC_ADJUST:
		data = (u64)vcpu->arch.ia32_tsc_adjust_msr;
		break;
2480
	case MSR_IA32_MISC_ENABLE:
2481
		data = vcpu->arch.ia32_misc_enable_msr;
2482
		break;
2483 2484 2485 2486 2487 2488
	case MSR_IA32_PERF_STATUS:
		/* TSC increment by tick */
		data = 1000ULL;
		/* CPU multiplier */
		data |= (((uint64_t)4ULL) << 40);
		break;
2489
	case MSR_EFER:
2490
		data = vcpu->arch.efer;
2491
		break;
2492
	case MSR_KVM_WALL_CLOCK:
2493
	case MSR_KVM_WALL_CLOCK_NEW:
2494 2495 2496
		data = vcpu->kvm->arch.wall_clock;
		break;
	case MSR_KVM_SYSTEM_TIME:
2497
	case MSR_KVM_SYSTEM_TIME_NEW:
2498 2499
		data = vcpu->arch.time;
		break;
2500 2501 2502
	case MSR_KVM_ASYNC_PF_EN:
		data = vcpu->arch.apf.msr_val;
		break;
G
Glauber Costa 已提交
2503 2504 2505
	case MSR_KVM_STEAL_TIME:
		data = vcpu->arch.st.msr_val;
		break;
2506 2507 2508
	case MSR_KVM_PV_EOI_EN:
		data = vcpu->arch.pv_eoi.msr_val;
		break;
H
Huang Ying 已提交
2509 2510 2511 2512 2513 2514 2515
	case MSR_IA32_P5_MC_ADDR:
	case MSR_IA32_P5_MC_TYPE:
	case MSR_IA32_MCG_CAP:
	case MSR_IA32_MCG_CTL:
	case MSR_IA32_MCG_STATUS:
	case MSR_IA32_MC0_CTL ... MSR_IA32_MC0_CTL + 4 * KVM_MAX_MCE_BANKS - 1:
		return get_msr_mce(vcpu, msr, pdata);
2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527
	case MSR_K7_CLK_CTL:
		/*
		 * Provide expected ramp-up count for K7. All other
		 * are set to zero, indicating minimum divisors for
		 * every field.
		 *
		 * This prevents guest kernels on AMD host with CPU
		 * type 6, model 8 and higher from exploding due to
		 * the rdmsr failing.
		 */
		data = 0x20000000;
		break;
2528 2529 2530 2531 2532 2533 2534 2535 2536 2537
	case HV_X64_MSR_GUEST_OS_ID ... HV_X64_MSR_SINT15:
		if (kvm_hv_msr_partition_wide(msr)) {
			int r;
			mutex_lock(&vcpu->kvm->lock);
			r = get_msr_hyperv_pw(vcpu, msr, pdata);
			mutex_unlock(&vcpu->kvm->lock);
			return r;
		} else
			return get_msr_hyperv(vcpu, msr, pdata);
		break;
2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550
	case MSR_IA32_BBL_CR_CTL3:
		/* This legacy MSR exists but isn't fully documented in current
		 * silicon.  It is however accessed by winxp in very narrow
		 * scenarios where it sets bit #19, itself documented as
		 * a "reserved" bit.  Best effort attempt to source coherent
		 * read data here should the balance of the register be
		 * interpreted by the guest:
		 *
		 * L2 cache control register 3: 64GB range, 256KB size,
		 * enabled, latency 0x1, configured
		 */
		data = 0xbe702111;
		break;
2551 2552 2553 2554 2555 2556 2557 2558 2559 2560
	case MSR_AMD64_OSVW_ID_LENGTH:
		if (!guest_cpuid_has_osvw(vcpu))
			return 1;
		data = vcpu->arch.osvw.length;
		break;
	case MSR_AMD64_OSVW_STATUS:
		if (!guest_cpuid_has_osvw(vcpu))
			return 1;
		data = vcpu->arch.osvw.status;
		break;
2561
	default:
2562 2563
		if (kvm_pmu_msr(vcpu, msr))
			return kvm_pmu_get_msr(vcpu, msr, pdata);
2564
		if (!ignore_msrs) {
2565
			vcpu_unimpl(vcpu, "unhandled rdmsr: 0x%x\n", msr);
2566 2567
			return 1;
		} else {
2568
			vcpu_unimpl(vcpu, "ignored rdmsr: 0x%x\n", msr);
2569 2570 2571
			data = 0;
		}
		break;
2572 2573 2574 2575 2576 2577
	}
	*pdata = data;
	return 0;
}
EXPORT_SYMBOL_GPL(kvm_get_msr_common);

2578 2579 2580 2581 2582 2583 2584 2585 2586 2587
/*
 * Read or write a bunch of msrs. All parameters are kernel addresses.
 *
 * @return number of msrs set successfully.
 */
static int __msr_io(struct kvm_vcpu *vcpu, struct kvm_msrs *msrs,
		    struct kvm_msr_entry *entries,
		    int (*do_msr)(struct kvm_vcpu *vcpu,
				  unsigned index, u64 *data))
{
2588
	int i, idx;
2589

2590
	idx = srcu_read_lock(&vcpu->kvm->srcu);
2591 2592 2593
	for (i = 0; i < msrs->nmsrs; ++i)
		if (do_msr(vcpu, entries[i].index, &entries[i].data))
			break;
2594
	srcu_read_unlock(&vcpu->kvm->srcu, idx);
2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622

	return i;
}

/*
 * Read or write a bunch of msrs. Parameters are user addresses.
 *
 * @return number of msrs set successfully.
 */
static int msr_io(struct kvm_vcpu *vcpu, struct kvm_msrs __user *user_msrs,
		  int (*do_msr)(struct kvm_vcpu *vcpu,
				unsigned index, u64 *data),
		  int writeback)
{
	struct kvm_msrs msrs;
	struct kvm_msr_entry *entries;
	int r, n;
	unsigned size;

	r = -EFAULT;
	if (copy_from_user(&msrs, user_msrs, sizeof msrs))
		goto out;

	r = -E2BIG;
	if (msrs.nmsrs >= MAX_IO_MSRS)
		goto out;

	size = sizeof(struct kvm_msr_entry) * msrs.nmsrs;
2623 2624 2625
	entries = memdup_user(user_msrs->entries, size);
	if (IS_ERR(entries)) {
		r = PTR_ERR(entries);
2626
		goto out;
2627
	}
2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639

	r = n = __msr_io(vcpu, &msrs, entries, do_msr);
	if (r < 0)
		goto out_free;

	r = -EFAULT;
	if (writeback && copy_to_user(user_msrs->entries, entries, size))
		goto out_free;

	r = n;

out_free:
2640
	kfree(entries);
2641 2642 2643 2644
out:
	return r;
}

2645
int kvm_vm_ioctl_check_extension(struct kvm *kvm, long ext)
2646 2647 2648 2649 2650 2651 2652 2653
{
	int r;

	switch (ext) {
	case KVM_CAP_IRQCHIP:
	case KVM_CAP_HLT:
	case KVM_CAP_MMU_SHADOW_CACHE_CONTROL:
	case KVM_CAP_SET_TSS_ADDR:
2654
	case KVM_CAP_EXT_CPUID:
B
Borislav Petkov 已提交
2655
	case KVM_CAP_EXT_EMUL_CPUID:
2656
	case KVM_CAP_CLOCKSOURCE:
S
Sheng Yang 已提交
2657
	case KVM_CAP_PIT:
2658
	case KVM_CAP_NOP_IO_DELAY:
2659
	case KVM_CAP_MP_STATE:
2660
	case KVM_CAP_SYNC_MMU:
2661
	case KVM_CAP_USER_NMI:
2662
	case KVM_CAP_REINJECT_CONTROL:
2663
	case KVM_CAP_IRQ_INJECT_STATUS:
G
Gregory Haskins 已提交
2664
	case KVM_CAP_IRQFD:
G
Gregory Haskins 已提交
2665
	case KVM_CAP_IOEVENTFD:
2666
	case KVM_CAP_IOEVENTFD_NO_LENGTH:
2667
	case KVM_CAP_PIT2:
B
Beth Kon 已提交
2668
	case KVM_CAP_PIT_STATE2:
2669
	case KVM_CAP_SET_IDENTITY_MAP_ADDR:
E
Ed Swierk 已提交
2670
	case KVM_CAP_XEN_HVM:
2671
	case KVM_CAP_ADJUST_CLOCK:
J
Jan Kiszka 已提交
2672
	case KVM_CAP_VCPU_EVENTS:
2673
	case KVM_CAP_HYPERV:
G
Gleb Natapov 已提交
2674
	case KVM_CAP_HYPERV_VAPIC:
2675
	case KVM_CAP_HYPERV_SPIN:
2676
	case KVM_CAP_PCI_SEGMENT:
2677
	case KVM_CAP_DEBUGREGS:
2678
	case KVM_CAP_X86_ROBUST_SINGLESTEP:
2679
	case KVM_CAP_XSAVE:
2680
	case KVM_CAP_ASYNC_PF:
2681
	case KVM_CAP_GET_TSC_KHZ:
2682
	case KVM_CAP_KVMCLOCK_CTRL:
X
Xiao Guangrong 已提交
2683
	case KVM_CAP_READONLY_MEM:
2684
	case KVM_CAP_HYPERV_TIME:
2685
	case KVM_CAP_IOAPIC_POLARITY_IGNORED:
2686 2687 2688 2689
#ifdef CONFIG_KVM_DEVICE_ASSIGNMENT
	case KVM_CAP_ASSIGN_DEV_IRQ:
	case KVM_CAP_PCI_2_3:
#endif
2690 2691
		r = 1;
		break;
2692 2693 2694
	case KVM_CAP_COALESCED_MMIO:
		r = KVM_COALESCED_MMIO_PAGE_OFFSET;
		break;
2695 2696 2697
	case KVM_CAP_VAPIC:
		r = !kvm_x86_ops->cpu_has_accelerated_tpr();
		break;
2698
	case KVM_CAP_NR_VCPUS:
2699 2700 2701
		r = KVM_SOFT_MAX_VCPUS;
		break;
	case KVM_CAP_MAX_VCPUS:
2702 2703
		r = KVM_MAX_VCPUS;
		break;
2704
	case KVM_CAP_NR_MEMSLOTS:
2705
		r = KVM_USER_MEM_SLOTS;
2706
		break;
2707 2708
	case KVM_CAP_PV_MMU:	/* obsolete */
		r = 0;
2709
		break;
2710
#ifdef CONFIG_KVM_DEVICE_ASSIGNMENT
B
Ben-Ami Yassour 已提交
2711
	case KVM_CAP_IOMMU:
2712
		r = iommu_present(&pci_bus_type);
B
Ben-Ami Yassour 已提交
2713
		break;
2714
#endif
H
Huang Ying 已提交
2715 2716 2717
	case KVM_CAP_MCE:
		r = KVM_MAX_MCE_BANKS;
		break;
2718 2719 2720
	case KVM_CAP_XCRS:
		r = cpu_has_xsave;
		break;
2721 2722 2723
	case KVM_CAP_TSC_CONTROL:
		r = kvm_has_tsc_control;
		break;
2724 2725 2726
	case KVM_CAP_TSC_DEADLINE_TIMER:
		r = boot_cpu_has(X86_FEATURE_TSC_DEADLINE_TIMER);
		break;
2727 2728 2729 2730 2731 2732 2733 2734
	default:
		r = 0;
		break;
	}
	return r;

}

2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754
long kvm_arch_dev_ioctl(struct file *filp,
			unsigned int ioctl, unsigned long arg)
{
	void __user *argp = (void __user *)arg;
	long r;

	switch (ioctl) {
	case KVM_GET_MSR_INDEX_LIST: {
		struct kvm_msr_list __user *user_msr_list = argp;
		struct kvm_msr_list msr_list;
		unsigned n;

		r = -EFAULT;
		if (copy_from_user(&msr_list, user_msr_list, sizeof msr_list))
			goto out;
		n = msr_list.nmsrs;
		msr_list.nmsrs = num_msrs_to_save + ARRAY_SIZE(emulated_msrs);
		if (copy_to_user(user_msr_list, &msr_list, sizeof msr_list))
			goto out;
		r = -E2BIG;
J
Jan Kiszka 已提交
2755
		if (n < msr_list.nmsrs)
2756 2757 2758 2759 2760
			goto out;
		r = -EFAULT;
		if (copy_to_user(user_msr_list->indices, &msrs_to_save,
				 num_msrs_to_save * sizeof(u32)))
			goto out;
J
Jan Kiszka 已提交
2761
		if (copy_to_user(user_msr_list->indices + num_msrs_to_save,
2762 2763 2764 2765 2766 2767
				 &emulated_msrs,
				 ARRAY_SIZE(emulated_msrs) * sizeof(u32)))
			goto out;
		r = 0;
		break;
	}
B
Borislav Petkov 已提交
2768 2769
	case KVM_GET_SUPPORTED_CPUID:
	case KVM_GET_EMULATED_CPUID: {
2770 2771 2772 2773 2774 2775
		struct kvm_cpuid2 __user *cpuid_arg = argp;
		struct kvm_cpuid2 cpuid;

		r = -EFAULT;
		if (copy_from_user(&cpuid, cpuid_arg, sizeof cpuid))
			goto out;
B
Borislav Petkov 已提交
2776 2777 2778

		r = kvm_dev_ioctl_get_cpuid(&cpuid, cpuid_arg->entries,
					    ioctl);
2779 2780 2781 2782 2783 2784 2785 2786 2787
		if (r)
			goto out;

		r = -EFAULT;
		if (copy_to_user(cpuid_arg, &cpuid, sizeof cpuid))
			goto out;
		r = 0;
		break;
	}
H
Huang Ying 已提交
2788 2789 2790 2791 2792 2793 2794 2795 2796 2797
	case KVM_X86_GET_MCE_CAP_SUPPORTED: {
		u64 mce_cap;

		mce_cap = KVM_MCE_CAP_SUPPORTED;
		r = -EFAULT;
		if (copy_to_user(argp, &mce_cap, sizeof mce_cap))
			goto out;
		r = 0;
		break;
	}
2798 2799 2800 2801 2802 2803 2804
	default:
		r = -EINVAL;
	}
out:
	return r;
}

2805 2806 2807 2808 2809 2810 2811
static void wbinvd_ipi(void *garbage)
{
	wbinvd();
}

static bool need_emulate_wbinvd(struct kvm_vcpu *vcpu)
{
2812
	return kvm_arch_has_noncoherent_dma(vcpu->kvm);
2813 2814
}

2815 2816
void kvm_arch_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
{
2817 2818 2819 2820 2821 2822 2823 2824 2825
	/* Address WBINVD may be executed by guest */
	if (need_emulate_wbinvd(vcpu)) {
		if (kvm_x86_ops->has_wbinvd_exit())
			cpumask_set_cpu(cpu, vcpu->arch.wbinvd_dirty_mask);
		else if (vcpu->cpu != -1 && vcpu->cpu != cpu)
			smp_call_function_single(vcpu->cpu,
					wbinvd_ipi, NULL, 1);
	}

2826
	kvm_x86_ops->vcpu_load(vcpu, cpu);
2827

2828 2829 2830 2831 2832 2833
	/* Apply any externally detected TSC adjustments (due to suspend) */
	if (unlikely(vcpu->arch.tsc_offset_adjustment)) {
		adjust_tsc_offset_host(vcpu, vcpu->arch.tsc_offset_adjustment);
		vcpu->arch.tsc_offset_adjustment = 0;
		set_bit(KVM_REQ_CLOCK_UPDATE, &vcpu->requests);
	}
2834

2835
	if (unlikely(vcpu->cpu != cpu) || check_tsc_unstable()) {
2836 2837
		s64 tsc_delta = !vcpu->arch.last_host_tsc ? 0 :
				native_read_tsc() - vcpu->arch.last_host_tsc;
Z
Zachary Amsden 已提交
2838 2839
		if (tsc_delta < 0)
			mark_tsc_unstable("KVM discovered backwards TSC");
Z
Zachary Amsden 已提交
2840
		if (check_tsc_unstable()) {
2841 2842 2843
			u64 offset = kvm_x86_ops->compute_tsc_offset(vcpu,
						vcpu->arch.last_guest_tsc);
			kvm_x86_ops->write_tsc_offset(vcpu, offset);
Z
Zachary Amsden 已提交
2844 2845
			vcpu->arch.tsc_catchup = 1;
		}
2846 2847 2848 2849 2850
		/*
		 * On a host with synchronized TSC, there is no need to update
		 * kvmclock on vcpu->cpu migration
		 */
		if (!vcpu->kvm->arch.use_master_clock || vcpu->cpu == -1)
2851
			kvm_make_request(KVM_REQ_GLOBAL_CLOCK_UPDATE, vcpu);
Z
Zachary Amsden 已提交
2852 2853
		if (vcpu->cpu != cpu)
			kvm_migrate_timers(vcpu);
Z
Zachary Amsden 已提交
2854
		vcpu->cpu = cpu;
Z
Zachary Amsden 已提交
2855
	}
G
Glauber Costa 已提交
2856 2857 2858

	accumulate_steal_time(vcpu);
	kvm_make_request(KVM_REQ_STEAL_UPDATE, vcpu);
2859 2860 2861 2862
}

void kvm_arch_vcpu_put(struct kvm_vcpu *vcpu)
{
2863
	kvm_x86_ops->vcpu_put(vcpu);
2864
	kvm_put_guest_fpu(vcpu);
2865
	vcpu->arch.last_host_tsc = native_read_tsc();
2866 2867 2868 2869 2870
}

static int kvm_vcpu_ioctl_get_lapic(struct kvm_vcpu *vcpu,
				    struct kvm_lapic_state *s)
{
2871
	kvm_x86_ops->sync_pir_to_irr(vcpu);
2872
	memcpy(s->regs, vcpu->arch.apic->regs, sizeof *s);
2873 2874 2875 2876 2877 2878 2879

	return 0;
}

static int kvm_vcpu_ioctl_set_lapic(struct kvm_vcpu *vcpu,
				    struct kvm_lapic_state *s)
{
2880
	kvm_apic_post_state_restore(vcpu, s);
2881
	update_cr8_intercept(vcpu);
2882 2883 2884 2885

	return 0;
}

2886 2887 2888
static int kvm_vcpu_ioctl_interrupt(struct kvm_vcpu *vcpu,
				    struct kvm_interrupt *irq)
{
2889
	if (irq->irq >= KVM_NR_INTERRUPTS)
2890 2891 2892 2893
		return -EINVAL;
	if (irqchip_in_kernel(vcpu->kvm))
		return -ENXIO;

2894
	kvm_queue_interrupt(vcpu, irq->irq, false);
2895
	kvm_make_request(KVM_REQ_EVENT, vcpu);
2896 2897 2898 2899

	return 0;
}

2900 2901 2902 2903 2904 2905 2906
static int kvm_vcpu_ioctl_nmi(struct kvm_vcpu *vcpu)
{
	kvm_inject_nmi(vcpu);

	return 0;
}

2907 2908 2909 2910 2911 2912 2913 2914 2915
static int vcpu_ioctl_tpr_access_reporting(struct kvm_vcpu *vcpu,
					   struct kvm_tpr_access_ctl *tac)
{
	if (tac->flags)
		return -EINVAL;
	vcpu->arch.tpr_access_reporting = !!tac->enabled;
	return 0;
}

H
Huang Ying 已提交
2916 2917 2918 2919 2920 2921 2922
static int kvm_vcpu_ioctl_x86_setup_mce(struct kvm_vcpu *vcpu,
					u64 mcg_cap)
{
	int r;
	unsigned bank_num = mcg_cap & 0xff, bank;

	r = -EINVAL;
2923
	if (!bank_num || bank_num >= KVM_MAX_MCE_BANKS)
H
Huang Ying 已提交
2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963
		goto out;
	if (mcg_cap & ~(KVM_MCE_CAP_SUPPORTED | 0xff | 0xff0000))
		goto out;
	r = 0;
	vcpu->arch.mcg_cap = mcg_cap;
	/* Init IA32_MCG_CTL to all 1s */
	if (mcg_cap & MCG_CTL_P)
		vcpu->arch.mcg_ctl = ~(u64)0;
	/* Init IA32_MCi_CTL to all 1s */
	for (bank = 0; bank < bank_num; bank++)
		vcpu->arch.mce_banks[bank*4] = ~(u64)0;
out:
	return r;
}

static int kvm_vcpu_ioctl_x86_set_mce(struct kvm_vcpu *vcpu,
				      struct kvm_x86_mce *mce)
{
	u64 mcg_cap = vcpu->arch.mcg_cap;
	unsigned bank_num = mcg_cap & 0xff;
	u64 *banks = vcpu->arch.mce_banks;

	if (mce->bank >= bank_num || !(mce->status & MCI_STATUS_VAL))
		return -EINVAL;
	/*
	 * if IA32_MCG_CTL is not all 1s, the uncorrected error
	 * reporting is disabled
	 */
	if ((mce->status & MCI_STATUS_UC) && (mcg_cap & MCG_CTL_P) &&
	    vcpu->arch.mcg_ctl != ~(u64)0)
		return 0;
	banks += 4 * mce->bank;
	/*
	 * if IA32_MCi_CTL is not all 1s, the uncorrected error
	 * reporting is disabled for the bank
	 */
	if ((mce->status & MCI_STATUS_UC) && banks[0] != ~(u64)0)
		return 0;
	if (mce->status & MCI_STATUS_UC) {
		if ((vcpu->arch.mcg_status & MCG_STATUS_MCIP) ||
2964
		    !kvm_read_cr4_bits(vcpu, X86_CR4_MCE)) {
2965
			kvm_make_request(KVM_REQ_TRIPLE_FAULT, vcpu);
H
Huang Ying 已提交
2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981 2982 2983 2984 2985 2986
			return 0;
		}
		if (banks[1] & MCI_STATUS_VAL)
			mce->status |= MCI_STATUS_OVER;
		banks[2] = mce->addr;
		banks[3] = mce->misc;
		vcpu->arch.mcg_status = mce->mcg_status;
		banks[1] = mce->status;
		kvm_queue_exception(vcpu, MC_VECTOR);
	} else if (!(banks[1] & MCI_STATUS_VAL)
		   || !(banks[1] & MCI_STATUS_UC)) {
		if (banks[1] & MCI_STATUS_VAL)
			mce->status |= MCI_STATUS_OVER;
		banks[2] = mce->addr;
		banks[3] = mce->misc;
		banks[1] = mce->status;
	} else
		banks[1] |= MCI_STATUS_OVER;
	return 0;
}

J
Jan Kiszka 已提交
2987 2988 2989
static void kvm_vcpu_ioctl_x86_get_vcpu_events(struct kvm_vcpu *vcpu,
					       struct kvm_vcpu_events *events)
{
A
Avi Kivity 已提交
2990
	process_nmi(vcpu);
2991 2992 2993
	events->exception.injected =
		vcpu->arch.exception.pending &&
		!kvm_exception_is_soft(vcpu->arch.exception.nr);
J
Jan Kiszka 已提交
2994 2995
	events->exception.nr = vcpu->arch.exception.nr;
	events->exception.has_error_code = vcpu->arch.exception.has_error_code;
2996
	events->exception.pad = 0;
J
Jan Kiszka 已提交
2997 2998
	events->exception.error_code = vcpu->arch.exception.error_code;

2999 3000
	events->interrupt.injected =
		vcpu->arch.interrupt.pending && !vcpu->arch.interrupt.soft;
J
Jan Kiszka 已提交
3001
	events->interrupt.nr = vcpu->arch.interrupt.nr;
3002
	events->interrupt.soft = 0;
3003
	events->interrupt.shadow = kvm_x86_ops->get_interrupt_shadow(vcpu);
J
Jan Kiszka 已提交
3004 3005

	events->nmi.injected = vcpu->arch.nmi_injected;
A
Avi Kivity 已提交
3006
	events->nmi.pending = vcpu->arch.nmi_pending != 0;
J
Jan Kiszka 已提交
3007
	events->nmi.masked = kvm_x86_ops->get_nmi_mask(vcpu);
3008
	events->nmi.pad = 0;
J
Jan Kiszka 已提交
3009

3010
	events->sipi_vector = 0; /* never valid when reporting to user space */
J
Jan Kiszka 已提交
3011

3012
	events->flags = (KVM_VCPUEVENT_VALID_NMI_PENDING
3013
			 | KVM_VCPUEVENT_VALID_SHADOW);
3014
	memset(&events->reserved, 0, sizeof(events->reserved));
J
Jan Kiszka 已提交
3015 3016 3017 3018 3019
}

static int kvm_vcpu_ioctl_x86_set_vcpu_events(struct kvm_vcpu *vcpu,
					      struct kvm_vcpu_events *events)
{
3020
	if (events->flags & ~(KVM_VCPUEVENT_VALID_NMI_PENDING
3021 3022
			      | KVM_VCPUEVENT_VALID_SIPI_VECTOR
			      | KVM_VCPUEVENT_VALID_SHADOW))
J
Jan Kiszka 已提交
3023 3024
		return -EINVAL;

A
Avi Kivity 已提交
3025
	process_nmi(vcpu);
J
Jan Kiszka 已提交
3026 3027 3028 3029 3030 3031 3032 3033
	vcpu->arch.exception.pending = events->exception.injected;
	vcpu->arch.exception.nr = events->exception.nr;
	vcpu->arch.exception.has_error_code = events->exception.has_error_code;
	vcpu->arch.exception.error_code = events->exception.error_code;

	vcpu->arch.interrupt.pending = events->interrupt.injected;
	vcpu->arch.interrupt.nr = events->interrupt.nr;
	vcpu->arch.interrupt.soft = events->interrupt.soft;
3034 3035 3036
	if (events->flags & KVM_VCPUEVENT_VALID_SHADOW)
		kvm_x86_ops->set_interrupt_shadow(vcpu,
						  events->interrupt.shadow);
J
Jan Kiszka 已提交
3037 3038

	vcpu->arch.nmi_injected = events->nmi.injected;
3039 3040
	if (events->flags & KVM_VCPUEVENT_VALID_NMI_PENDING)
		vcpu->arch.nmi_pending = events->nmi.pending;
J
Jan Kiszka 已提交
3041 3042
	kvm_x86_ops->set_nmi_mask(vcpu, events->nmi.masked);

3043 3044 3045
	if (events->flags & KVM_VCPUEVENT_VALID_SIPI_VECTOR &&
	    kvm_vcpu_has_lapic(vcpu))
		vcpu->arch.apic->sipi_vector = events->sipi_vector;
J
Jan Kiszka 已提交
3046

3047 3048
	kvm_make_request(KVM_REQ_EVENT, vcpu);

J
Jan Kiszka 已提交
3049 3050 3051
	return 0;
}

3052 3053 3054
static void kvm_vcpu_ioctl_x86_get_debugregs(struct kvm_vcpu *vcpu,
					     struct kvm_debugregs *dbgregs)
{
J
Jan Kiszka 已提交
3055 3056
	unsigned long val;

3057
	memcpy(dbgregs->db, vcpu->arch.db, sizeof(vcpu->arch.db));
J
Jan Kiszka 已提交
3058 3059
	_kvm_get_dr(vcpu, 6, &val);
	dbgregs->dr6 = val;
3060 3061
	dbgregs->dr7 = vcpu->arch.dr7;
	dbgregs->flags = 0;
3062
	memset(&dbgregs->reserved, 0, sizeof(dbgregs->reserved));
3063 3064 3065 3066 3067 3068 3069 3070 3071 3072
}

static int kvm_vcpu_ioctl_x86_set_debugregs(struct kvm_vcpu *vcpu,
					    struct kvm_debugregs *dbgregs)
{
	if (dbgregs->flags)
		return -EINVAL;

	memcpy(vcpu->arch.db, dbgregs->db, sizeof(vcpu->arch.db));
	vcpu->arch.dr6 = dbgregs->dr6;
J
Jan Kiszka 已提交
3073
	kvm_update_dr6(vcpu);
3074
	vcpu->arch.dr7 = dbgregs->dr7;
3075
	kvm_update_dr7(vcpu);
3076 3077 3078 3079

	return 0;
}

3080 3081 3082
static void kvm_vcpu_ioctl_x86_get_xsave(struct kvm_vcpu *vcpu,
					 struct kvm_xsave *guest_xsave)
{
3083
	if (cpu_has_xsave) {
3084 3085
		memcpy(guest_xsave->region,
			&vcpu->arch.guest_fpu.state->xsave,
3086 3087 3088 3089
			vcpu->arch.guest_xstate_size);
		*(u64 *)&guest_xsave->region[XSAVE_HDR_OFFSET / sizeof(u32)] &=
			vcpu->arch.guest_supported_xcr0 | XSTATE_FPSSE;
	} else {
3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103
		memcpy(guest_xsave->region,
			&vcpu->arch.guest_fpu.state->fxsave,
			sizeof(struct i387_fxsave_struct));
		*(u64 *)&guest_xsave->region[XSAVE_HDR_OFFSET / sizeof(u32)] =
			XSTATE_FPSSE;
	}
}

static int kvm_vcpu_ioctl_x86_set_xsave(struct kvm_vcpu *vcpu,
					struct kvm_xsave *guest_xsave)
{
	u64 xstate_bv =
		*(u64 *)&guest_xsave->region[XSAVE_HDR_OFFSET / sizeof(u32)];

3104 3105 3106 3107 3108 3109
	if (cpu_has_xsave) {
		/*
		 * Here we allow setting states that are not present in
		 * CPUID leaf 0xD, index 0, EDX:EAX.  This is for compatibility
		 * with old userspace.
		 */
3110
		if (xstate_bv & ~kvm_supported_xcr0())
3111
			return -EINVAL;
3112
		memcpy(&vcpu->arch.guest_fpu.state->xsave,
3113
			guest_xsave->region, vcpu->arch.guest_xstate_size);
3114
	} else {
3115 3116 3117 3118 3119 3120 3121 3122 3123 3124 3125 3126 3127 3128 3129 3130 3131 3132 3133 3134 3135 3136 3137 3138 3139 3140 3141 3142 3143 3144 3145 3146 3147 3148 3149
		if (xstate_bv & ~XSTATE_FPSSE)
			return -EINVAL;
		memcpy(&vcpu->arch.guest_fpu.state->fxsave,
			guest_xsave->region, sizeof(struct i387_fxsave_struct));
	}
	return 0;
}

static void kvm_vcpu_ioctl_x86_get_xcrs(struct kvm_vcpu *vcpu,
					struct kvm_xcrs *guest_xcrs)
{
	if (!cpu_has_xsave) {
		guest_xcrs->nr_xcrs = 0;
		return;
	}

	guest_xcrs->nr_xcrs = 1;
	guest_xcrs->flags = 0;
	guest_xcrs->xcrs[0].xcr = XCR_XFEATURE_ENABLED_MASK;
	guest_xcrs->xcrs[0].value = vcpu->arch.xcr0;
}

static int kvm_vcpu_ioctl_x86_set_xcrs(struct kvm_vcpu *vcpu,
				       struct kvm_xcrs *guest_xcrs)
{
	int i, r = 0;

	if (!cpu_has_xsave)
		return -EINVAL;

	if (guest_xcrs->nr_xcrs > KVM_MAX_XCRS || guest_xcrs->flags)
		return -EINVAL;

	for (i = 0; i < guest_xcrs->nr_xcrs; i++)
		/* Only support XCR0 currently */
P
Paolo Bonzini 已提交
3150
		if (guest_xcrs->xcrs[i].xcr == XCR_XFEATURE_ENABLED_MASK) {
3151
			r = __kvm_set_xcr(vcpu, XCR_XFEATURE_ENABLED_MASK,
P
Paolo Bonzini 已提交
3152
				guest_xcrs->xcrs[i].value);
3153 3154 3155 3156 3157 3158 3159
			break;
		}
	if (r)
		r = -EINVAL;
	return r;
}

3160 3161 3162 3163 3164 3165 3166 3167
/*
 * kvm_set_guest_paused() indicates to the guest kernel that it has been
 * stopped by the hypervisor.  This function will be called from the host only.
 * EINVAL is returned when the host attempts to set the flag for a guest that
 * does not support pv clocks.
 */
static int kvm_set_guest_paused(struct kvm_vcpu *vcpu)
{
3168
	if (!vcpu->arch.pv_time_enabled)
3169
		return -EINVAL;
3170
	vcpu->arch.pvclock_set_guest_stopped_request = true;
3171 3172 3173 3174
	kvm_make_request(KVM_REQ_CLOCK_UPDATE, vcpu);
	return 0;
}

3175 3176 3177 3178 3179 3180
long kvm_arch_vcpu_ioctl(struct file *filp,
			 unsigned int ioctl, unsigned long arg)
{
	struct kvm_vcpu *vcpu = filp->private_data;
	void __user *argp = (void __user *)arg;
	int r;
3181 3182 3183 3184 3185 3186 3187 3188
	union {
		struct kvm_lapic_state *lapic;
		struct kvm_xsave *xsave;
		struct kvm_xcrs *xcrs;
		void *buffer;
	} u;

	u.buffer = NULL;
3189 3190
	switch (ioctl) {
	case KVM_GET_LAPIC: {
3191 3192 3193
		r = -EINVAL;
		if (!vcpu->arch.apic)
			goto out;
3194
		u.lapic = kzalloc(sizeof(struct kvm_lapic_state), GFP_KERNEL);
3195

3196
		r = -ENOMEM;
3197
		if (!u.lapic)
3198
			goto out;
3199
		r = kvm_vcpu_ioctl_get_lapic(vcpu, u.lapic);
3200 3201 3202
		if (r)
			goto out;
		r = -EFAULT;
3203
		if (copy_to_user(argp, u.lapic, sizeof(struct kvm_lapic_state)))
3204 3205 3206 3207 3208
			goto out;
		r = 0;
		break;
	}
	case KVM_SET_LAPIC: {
3209 3210 3211
		r = -EINVAL;
		if (!vcpu->arch.apic)
			goto out;
3212
		u.lapic = memdup_user(argp, sizeof(*u.lapic));
G
Guo Chao 已提交
3213 3214
		if (IS_ERR(u.lapic))
			return PTR_ERR(u.lapic);
3215

3216
		r = kvm_vcpu_ioctl_set_lapic(vcpu, u.lapic);
3217 3218
		break;
	}
3219 3220 3221 3222 3223 3224 3225 3226 3227
	case KVM_INTERRUPT: {
		struct kvm_interrupt irq;

		r = -EFAULT;
		if (copy_from_user(&irq, argp, sizeof irq))
			goto out;
		r = kvm_vcpu_ioctl_interrupt(vcpu, &irq);
		break;
	}
3228 3229 3230 3231
	case KVM_NMI: {
		r = kvm_vcpu_ioctl_nmi(vcpu);
		break;
	}
3232 3233 3234 3235 3236 3237 3238 3239 3240 3241
	case KVM_SET_CPUID: {
		struct kvm_cpuid __user *cpuid_arg = argp;
		struct kvm_cpuid cpuid;

		r = -EFAULT;
		if (copy_from_user(&cpuid, cpuid_arg, sizeof cpuid))
			goto out;
		r = kvm_vcpu_ioctl_set_cpuid(vcpu, &cpuid, cpuid_arg->entries);
		break;
	}
3242 3243 3244 3245 3246 3247 3248 3249
	case KVM_SET_CPUID2: {
		struct kvm_cpuid2 __user *cpuid_arg = argp;
		struct kvm_cpuid2 cpuid;

		r = -EFAULT;
		if (copy_from_user(&cpuid, cpuid_arg, sizeof cpuid))
			goto out;
		r = kvm_vcpu_ioctl_set_cpuid2(vcpu, &cpuid,
3250
					      cpuid_arg->entries);
3251 3252 3253 3254 3255 3256 3257 3258 3259 3260
		break;
	}
	case KVM_GET_CPUID2: {
		struct kvm_cpuid2 __user *cpuid_arg = argp;
		struct kvm_cpuid2 cpuid;

		r = -EFAULT;
		if (copy_from_user(&cpuid, cpuid_arg, sizeof cpuid))
			goto out;
		r = kvm_vcpu_ioctl_get_cpuid2(vcpu, &cpuid,
3261
					      cpuid_arg->entries);
3262 3263 3264 3265 3266 3267 3268 3269
		if (r)
			goto out;
		r = -EFAULT;
		if (copy_to_user(cpuid_arg, &cpuid, sizeof cpuid))
			goto out;
		r = 0;
		break;
	}
3270 3271 3272 3273 3274 3275
	case KVM_GET_MSRS:
		r = msr_io(vcpu, argp, kvm_get_msr, 1);
		break;
	case KVM_SET_MSRS:
		r = msr_io(vcpu, argp, do_set_msr, 0);
		break;
3276 3277 3278 3279 3280 3281 3282 3283 3284 3285 3286 3287 3288 3289 3290
	case KVM_TPR_ACCESS_REPORTING: {
		struct kvm_tpr_access_ctl tac;

		r = -EFAULT;
		if (copy_from_user(&tac, argp, sizeof tac))
			goto out;
		r = vcpu_ioctl_tpr_access_reporting(vcpu, &tac);
		if (r)
			goto out;
		r = -EFAULT;
		if (copy_to_user(argp, &tac, sizeof tac))
			goto out;
		r = 0;
		break;
	};
A
Avi Kivity 已提交
3291 3292 3293 3294 3295 3296 3297 3298 3299
	case KVM_SET_VAPIC_ADDR: {
		struct kvm_vapic_addr va;

		r = -EINVAL;
		if (!irqchip_in_kernel(vcpu->kvm))
			goto out;
		r = -EFAULT;
		if (copy_from_user(&va, argp, sizeof va))
			goto out;
3300
		r = kvm_lapic_set_vapic_addr(vcpu, va.vapic_addr);
A
Avi Kivity 已提交
3301 3302
		break;
	}
H
Huang Ying 已提交
3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320
	case KVM_X86_SETUP_MCE: {
		u64 mcg_cap;

		r = -EFAULT;
		if (copy_from_user(&mcg_cap, argp, sizeof mcg_cap))
			goto out;
		r = kvm_vcpu_ioctl_x86_setup_mce(vcpu, mcg_cap);
		break;
	}
	case KVM_X86_SET_MCE: {
		struct kvm_x86_mce mce;

		r = -EFAULT;
		if (copy_from_user(&mce, argp, sizeof mce))
			goto out;
		r = kvm_vcpu_ioctl_x86_set_mce(vcpu, &mce);
		break;
	}
J
Jan Kiszka 已提交
3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333 3334 3335 3336 3337 3338 3339 3340 3341
	case KVM_GET_VCPU_EVENTS: {
		struct kvm_vcpu_events events;

		kvm_vcpu_ioctl_x86_get_vcpu_events(vcpu, &events);

		r = -EFAULT;
		if (copy_to_user(argp, &events, sizeof(struct kvm_vcpu_events)))
			break;
		r = 0;
		break;
	}
	case KVM_SET_VCPU_EVENTS: {
		struct kvm_vcpu_events events;

		r = -EFAULT;
		if (copy_from_user(&events, argp, sizeof(struct kvm_vcpu_events)))
			break;

		r = kvm_vcpu_ioctl_x86_set_vcpu_events(vcpu, &events);
		break;
	}
3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364
	case KVM_GET_DEBUGREGS: {
		struct kvm_debugregs dbgregs;

		kvm_vcpu_ioctl_x86_get_debugregs(vcpu, &dbgregs);

		r = -EFAULT;
		if (copy_to_user(argp, &dbgregs,
				 sizeof(struct kvm_debugregs)))
			break;
		r = 0;
		break;
	}
	case KVM_SET_DEBUGREGS: {
		struct kvm_debugregs dbgregs;

		r = -EFAULT;
		if (copy_from_user(&dbgregs, argp,
				   sizeof(struct kvm_debugregs)))
			break;

		r = kvm_vcpu_ioctl_x86_set_debugregs(vcpu, &dbgregs);
		break;
	}
3365
	case KVM_GET_XSAVE: {
3366
		u.xsave = kzalloc(sizeof(struct kvm_xsave), GFP_KERNEL);
3367
		r = -ENOMEM;
3368
		if (!u.xsave)
3369 3370
			break;

3371
		kvm_vcpu_ioctl_x86_get_xsave(vcpu, u.xsave);
3372 3373

		r = -EFAULT;
3374
		if (copy_to_user(argp, u.xsave, sizeof(struct kvm_xsave)))
3375 3376 3377 3378 3379
			break;
		r = 0;
		break;
	}
	case KVM_SET_XSAVE: {
3380
		u.xsave = memdup_user(argp, sizeof(*u.xsave));
G
Guo Chao 已提交
3381 3382
		if (IS_ERR(u.xsave))
			return PTR_ERR(u.xsave);
3383

3384
		r = kvm_vcpu_ioctl_x86_set_xsave(vcpu, u.xsave);
3385 3386 3387
		break;
	}
	case KVM_GET_XCRS: {
3388
		u.xcrs = kzalloc(sizeof(struct kvm_xcrs), GFP_KERNEL);
3389
		r = -ENOMEM;
3390
		if (!u.xcrs)
3391 3392
			break;

3393
		kvm_vcpu_ioctl_x86_get_xcrs(vcpu, u.xcrs);
3394 3395

		r = -EFAULT;
3396
		if (copy_to_user(argp, u.xcrs,
3397 3398 3399 3400 3401 3402
				 sizeof(struct kvm_xcrs)))
			break;
		r = 0;
		break;
	}
	case KVM_SET_XCRS: {
3403
		u.xcrs = memdup_user(argp, sizeof(*u.xcrs));
G
Guo Chao 已提交
3404 3405
		if (IS_ERR(u.xcrs))
			return PTR_ERR(u.xcrs);
3406

3407
		r = kvm_vcpu_ioctl_x86_set_xcrs(vcpu, u.xcrs);
3408 3409
		break;
	}
3410 3411 3412 3413 3414 3415 3416 3417 3418
	case KVM_SET_TSC_KHZ: {
		u32 user_tsc_khz;

		r = -EINVAL;
		user_tsc_khz = (u32)arg;

		if (user_tsc_khz >= kvm_max_guest_tsc_khz)
			goto out;

3419 3420 3421 3422
		if (user_tsc_khz == 0)
			user_tsc_khz = tsc_khz;

		kvm_set_tsc_khz(vcpu, user_tsc_khz);
3423 3424 3425 3426 3427

		r = 0;
		goto out;
	}
	case KVM_GET_TSC_KHZ: {
3428
		r = vcpu->arch.virtual_tsc_khz;
3429 3430
		goto out;
	}
3431 3432 3433 3434
	case KVM_KVMCLOCK_CTRL: {
		r = kvm_set_guest_paused(vcpu);
		goto out;
	}
3435 3436 3437 3438
	default:
		r = -EINVAL;
	}
out:
3439
	kfree(u.buffer);
3440 3441 3442
	return r;
}

3443 3444 3445 3446 3447
int kvm_arch_vcpu_fault(struct kvm_vcpu *vcpu, struct vm_fault *vmf)
{
	return VM_FAULT_SIGBUS;
}

3448 3449 3450 3451 3452
static int kvm_vm_ioctl_set_tss_addr(struct kvm *kvm, unsigned long addr)
{
	int ret;

	if (addr > (unsigned int)(-3 * PAGE_SIZE))
3453
		return -EINVAL;
3454 3455 3456 3457
	ret = kvm_x86_ops->set_tss_addr(kvm, addr);
	return ret;
}

3458 3459 3460 3461 3462 3463 3464
static int kvm_vm_ioctl_set_identity_map_addr(struct kvm *kvm,
					      u64 ident_addr)
{
	kvm->arch.ept_identity_map_addr = ident_addr;
	return 0;
}

3465 3466 3467 3468 3469 3470
static int kvm_vm_ioctl_set_nr_mmu_pages(struct kvm *kvm,
					  u32 kvm_nr_mmu_pages)
{
	if (kvm_nr_mmu_pages < KVM_MIN_ALLOC_MMU_PAGES)
		return -EINVAL;

3471
	mutex_lock(&kvm->slots_lock);
3472 3473

	kvm_mmu_change_mmu_pages(kvm, kvm_nr_mmu_pages);
3474
	kvm->arch.n_requested_mmu_pages = kvm_nr_mmu_pages;
3475

3476
	mutex_unlock(&kvm->slots_lock);
3477 3478 3479 3480 3481
	return 0;
}

static int kvm_vm_ioctl_get_nr_mmu_pages(struct kvm *kvm)
{
3482
	return kvm->arch.n_max_mmu_pages;
3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501
}

static int kvm_vm_ioctl_get_irqchip(struct kvm *kvm, struct kvm_irqchip *chip)
{
	int r;

	r = 0;
	switch (chip->chip_id) {
	case KVM_IRQCHIP_PIC_MASTER:
		memcpy(&chip->chip.pic,
			&pic_irqchip(kvm)->pics[0],
			sizeof(struct kvm_pic_state));
		break;
	case KVM_IRQCHIP_PIC_SLAVE:
		memcpy(&chip->chip.pic,
			&pic_irqchip(kvm)->pics[1],
			sizeof(struct kvm_pic_state));
		break;
	case KVM_IRQCHIP_IOAPIC:
G
Gleb Natapov 已提交
3502
		r = kvm_get_ioapic(kvm, &chip->chip.ioapic);
3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517
		break;
	default:
		r = -EINVAL;
		break;
	}
	return r;
}

static int kvm_vm_ioctl_set_irqchip(struct kvm *kvm, struct kvm_irqchip *chip)
{
	int r;

	r = 0;
	switch (chip->chip_id) {
	case KVM_IRQCHIP_PIC_MASTER:
3518
		spin_lock(&pic_irqchip(kvm)->lock);
3519 3520 3521
		memcpy(&pic_irqchip(kvm)->pics[0],
			&chip->chip.pic,
			sizeof(struct kvm_pic_state));
3522
		spin_unlock(&pic_irqchip(kvm)->lock);
3523 3524
		break;
	case KVM_IRQCHIP_PIC_SLAVE:
3525
		spin_lock(&pic_irqchip(kvm)->lock);
3526 3527 3528
		memcpy(&pic_irqchip(kvm)->pics[1],
			&chip->chip.pic,
			sizeof(struct kvm_pic_state));
3529
		spin_unlock(&pic_irqchip(kvm)->lock);
3530 3531
		break;
	case KVM_IRQCHIP_IOAPIC:
G
Gleb Natapov 已提交
3532
		r = kvm_set_ioapic(kvm, &chip->chip.ioapic);
3533 3534 3535 3536 3537 3538 3539 3540 3541
		break;
	default:
		r = -EINVAL;
		break;
	}
	kvm_pic_update_irq(pic_irqchip(kvm));
	return r;
}

3542 3543 3544 3545
static int kvm_vm_ioctl_get_pit(struct kvm *kvm, struct kvm_pit_state *ps)
{
	int r = 0;

3546
	mutex_lock(&kvm->arch.vpit->pit_state.lock);
3547
	memcpy(ps, &kvm->arch.vpit->pit_state, sizeof(struct kvm_pit_state));
3548
	mutex_unlock(&kvm->arch.vpit->pit_state.lock);
3549 3550 3551 3552 3553 3554 3555
	return r;
}

static int kvm_vm_ioctl_set_pit(struct kvm *kvm, struct kvm_pit_state *ps)
{
	int r = 0;

3556
	mutex_lock(&kvm->arch.vpit->pit_state.lock);
3557
	memcpy(&kvm->arch.vpit->pit_state, ps, sizeof(struct kvm_pit_state));
B
Beth Kon 已提交
3558 3559 3560 3561 3562 3563 3564 3565 3566 3567 3568 3569 3570 3571
	kvm_pit_load_count(kvm, 0, ps->channels[0].count, 0);
	mutex_unlock(&kvm->arch.vpit->pit_state.lock);
	return r;
}

static int kvm_vm_ioctl_get_pit2(struct kvm *kvm, struct kvm_pit_state2 *ps)
{
	int r = 0;

	mutex_lock(&kvm->arch.vpit->pit_state.lock);
	memcpy(ps->channels, &kvm->arch.vpit->pit_state.channels,
		sizeof(ps->channels));
	ps->flags = kvm->arch.vpit->pit_state.flags;
	mutex_unlock(&kvm->arch.vpit->pit_state.lock);
3572
	memset(&ps->reserved, 0, sizeof(ps->reserved));
B
Beth Kon 已提交
3573 3574 3575 3576 3577 3578 3579 3580 3581 3582 3583 3584 3585 3586 3587 3588
	return r;
}

static int kvm_vm_ioctl_set_pit2(struct kvm *kvm, struct kvm_pit_state2 *ps)
{
	int r = 0, start = 0;
	u32 prev_legacy, cur_legacy;
	mutex_lock(&kvm->arch.vpit->pit_state.lock);
	prev_legacy = kvm->arch.vpit->pit_state.flags & KVM_PIT_FLAGS_HPET_LEGACY;
	cur_legacy = ps->flags & KVM_PIT_FLAGS_HPET_LEGACY;
	if (!prev_legacy && cur_legacy)
		start = 1;
	memcpy(&kvm->arch.vpit->pit_state.channels, &ps->channels,
	       sizeof(kvm->arch.vpit->pit_state.channels));
	kvm->arch.vpit->pit_state.flags = ps->flags;
	kvm_pit_load_count(kvm, 0, kvm->arch.vpit->pit_state.channels[0].count, start);
3589
	mutex_unlock(&kvm->arch.vpit->pit_state.lock);
3590 3591 3592
	return r;
}

3593 3594 3595 3596 3597
static int kvm_vm_ioctl_reinject(struct kvm *kvm,
				 struct kvm_reinject_control *control)
{
	if (!kvm->arch.vpit)
		return -ENXIO;
3598
	mutex_lock(&kvm->arch.vpit->pit_state.lock);
3599
	kvm->arch.vpit->pit_state.reinject = control->pit_reinject;
3600
	mutex_unlock(&kvm->arch.vpit->pit_state.lock);
3601 3602 3603
	return 0;
}

3604
/**
3605 3606 3607
 * kvm_vm_ioctl_get_dirty_log - get and clear the log of dirty pages in a slot
 * @kvm: kvm instance
 * @log: slot id and address to which we copy the log
3608
 *
3609 3610 3611
 * We need to keep it in mind that VCPU threads can write to the bitmap
 * concurrently.  So, to avoid losing data, we keep the following order for
 * each bit:
3612
 *
3613 3614 3615 3616
 *   1. Take a snapshot of the bit and clear it if needed.
 *   2. Write protect the corresponding page.
 *   3. Flush TLB's if needed.
 *   4. Copy the snapshot to the userspace.
3617
 *
3618 3619 3620 3621
 * Between 2 and 3, the guest may write to the page using the remaining TLB
 * entry.  This is not a problem because the page will be reported dirty at
 * step 4 using the snapshot taken before and step 3 ensures that successive
 * writes will be logged for the next call.
3622
 */
3623
int kvm_vm_ioctl_get_dirty_log(struct kvm *kvm, struct kvm_dirty_log *log)
3624
{
3625
	int r;
3626
	struct kvm_memory_slot *memslot;
3627 3628 3629 3630
	unsigned long n, i;
	unsigned long *dirty_bitmap;
	unsigned long *dirty_bitmap_buffer;
	bool is_dirty = false;
3631

3632
	mutex_lock(&kvm->slots_lock);
3633

M
Marcelo Tosatti 已提交
3634
	r = -EINVAL;
3635
	if (log->slot >= KVM_USER_MEM_SLOTS)
M
Marcelo Tosatti 已提交
3636 3637
		goto out;

3638
	memslot = id_to_memslot(kvm->memslots, log->slot);
3639 3640

	dirty_bitmap = memslot->dirty_bitmap;
M
Marcelo Tosatti 已提交
3641
	r = -ENOENT;
3642
	if (!dirty_bitmap)
M
Marcelo Tosatti 已提交
3643 3644
		goto out;

3645
	n = kvm_dirty_bitmap_bytes(memslot);
M
Marcelo Tosatti 已提交
3646

3647 3648
	dirty_bitmap_buffer = dirty_bitmap + n / sizeof(long);
	memset(dirty_bitmap_buffer, 0, n);
M
Marcelo Tosatti 已提交
3649

3650
	spin_lock(&kvm->mmu_lock);
M
Marcelo Tosatti 已提交
3651

3652 3653 3654
	for (i = 0; i < n / sizeof(long); i++) {
		unsigned long mask;
		gfn_t offset;
3655

3656 3657
		if (!dirty_bitmap[i])
			continue;
M
Marcelo Tosatti 已提交
3658

3659
		is_dirty = true;
3660

3661 3662
		mask = xchg(&dirty_bitmap[i], 0);
		dirty_bitmap_buffer[i] = mask;
3663

3664 3665
		offset = i * BITS_PER_LONG;
		kvm_mmu_write_protect_pt_masked(kvm, memslot, offset, mask);
3666
	}
3667 3668 3669

	spin_unlock(&kvm->mmu_lock);

3670 3671 3672 3673 3674 3675 3676 3677 3678 3679
	/* See the comments in kvm_mmu_slot_remove_write_access(). */
	lockdep_assert_held(&kvm->slots_lock);

	/*
	 * All the TLBs can be flushed out of mmu lock, see the comments in
	 * kvm_mmu_slot_remove_write_access().
	 */
	if (is_dirty)
		kvm_flush_remote_tlbs(kvm);

3680 3681 3682
	r = -EFAULT;
	if (copy_to_user(log->dirty_bitmap, dirty_bitmap_buffer, n))
		goto out;
M
Marcelo Tosatti 已提交
3683

3684 3685
	r = 0;
out:
3686
	mutex_unlock(&kvm->slots_lock);
3687 3688 3689
	return r;
}

3690 3691
int kvm_vm_ioctl_irq_line(struct kvm *kvm, struct kvm_irq_level *irq_event,
			bool line_status)
3692 3693 3694 3695 3696
{
	if (!irqchip_in_kernel(kvm))
		return -ENXIO;

	irq_event->status = kvm_set_irq(kvm, KVM_USERSPACE_IRQ_SOURCE_ID,
3697 3698
					irq_event->irq, irq_event->level,
					line_status);
3699 3700 3701
	return 0;
}

3702 3703 3704 3705 3706
long kvm_arch_vm_ioctl(struct file *filp,
		       unsigned int ioctl, unsigned long arg)
{
	struct kvm *kvm = filp->private_data;
	void __user *argp = (void __user *)arg;
3707
	int r = -ENOTTY;
3708 3709 3710 3711 3712 3713 3714
	/*
	 * This union makes it completely explicit to gcc-3.x
	 * that these two variables' stack usage should be
	 * combined, not added together.
	 */
	union {
		struct kvm_pit_state ps;
B
Beth Kon 已提交
3715
		struct kvm_pit_state2 ps2;
3716
		struct kvm_pit_config pit_config;
3717
	} u;
3718 3719 3720 3721 3722

	switch (ioctl) {
	case KVM_SET_TSS_ADDR:
		r = kvm_vm_ioctl_set_tss_addr(kvm, arg);
		break;
3723 3724 3725 3726 3727 3728 3729 3730 3731
	case KVM_SET_IDENTITY_MAP_ADDR: {
		u64 ident_addr;

		r = -EFAULT;
		if (copy_from_user(&ident_addr, argp, sizeof ident_addr))
			goto out;
		r = kvm_vm_ioctl_set_identity_map_addr(kvm, ident_addr);
		break;
	}
3732 3733 3734 3735 3736 3737
	case KVM_SET_NR_MMU_PAGES:
		r = kvm_vm_ioctl_set_nr_mmu_pages(kvm, arg);
		break;
	case KVM_GET_NR_MMU_PAGES:
		r = kvm_vm_ioctl_get_nr_mmu_pages(kvm);
		break;
3738 3739 3740 3741 3742 3743 3744
	case KVM_CREATE_IRQCHIP: {
		struct kvm_pic *vpic;

		mutex_lock(&kvm->lock);
		r = -EEXIST;
		if (kvm->arch.vpic)
			goto create_irqchip_unlock;
3745 3746 3747
		r = -EINVAL;
		if (atomic_read(&kvm->online_vcpus))
			goto create_irqchip_unlock;
3748
		r = -ENOMEM;
3749 3750
		vpic = kvm_create_pic(kvm);
		if (vpic) {
3751 3752
			r = kvm_ioapic_init(kvm);
			if (r) {
3753
				mutex_lock(&kvm->slots_lock);
3754
				kvm_io_bus_unregister_dev(kvm, KVM_PIO_BUS,
3755 3756 3757 3758 3759
							  &vpic->dev_master);
				kvm_io_bus_unregister_dev(kvm, KVM_PIO_BUS,
							  &vpic->dev_slave);
				kvm_io_bus_unregister_dev(kvm, KVM_PIO_BUS,
							  &vpic->dev_eclr);
3760
				mutex_unlock(&kvm->slots_lock);
3761 3762
				kfree(vpic);
				goto create_irqchip_unlock;
3763 3764
			}
		} else
3765 3766 3767 3768
			goto create_irqchip_unlock;
		smp_wmb();
		kvm->arch.vpic = vpic;
		smp_wmb();
3769 3770
		r = kvm_setup_default_irq_routing(kvm);
		if (r) {
3771
			mutex_lock(&kvm->slots_lock);
3772
			mutex_lock(&kvm->irq_lock);
3773 3774
			kvm_ioapic_destroy(kvm);
			kvm_destroy_pic(kvm);
3775
			mutex_unlock(&kvm->irq_lock);
3776
			mutex_unlock(&kvm->slots_lock);
3777
		}
3778 3779
	create_irqchip_unlock:
		mutex_unlock(&kvm->lock);
3780
		break;
3781
	}
S
Sheng Yang 已提交
3782
	case KVM_CREATE_PIT:
3783 3784 3785 3786 3787 3788 3789 3790
		u.pit_config.flags = KVM_PIT_SPEAKER_DUMMY;
		goto create_pit;
	case KVM_CREATE_PIT2:
		r = -EFAULT;
		if (copy_from_user(&u.pit_config, argp,
				   sizeof(struct kvm_pit_config)))
			goto out;
	create_pit:
3791
		mutex_lock(&kvm->slots_lock);
A
Avi Kivity 已提交
3792 3793 3794
		r = -EEXIST;
		if (kvm->arch.vpit)
			goto create_pit_unlock;
S
Sheng Yang 已提交
3795
		r = -ENOMEM;
3796
		kvm->arch.vpit = kvm_create_pit(kvm, u.pit_config.flags);
S
Sheng Yang 已提交
3797 3798
		if (kvm->arch.vpit)
			r = 0;
A
Avi Kivity 已提交
3799
	create_pit_unlock:
3800
		mutex_unlock(&kvm->slots_lock);
S
Sheng Yang 已提交
3801
		break;
3802 3803
	case KVM_GET_IRQCHIP: {
		/* 0: PIC master, 1: PIC slave, 2: IOAPIC */
3804
		struct kvm_irqchip *chip;
3805

3806 3807 3808
		chip = memdup_user(argp, sizeof(*chip));
		if (IS_ERR(chip)) {
			r = PTR_ERR(chip);
3809
			goto out;
3810 3811
		}

3812 3813
		r = -ENXIO;
		if (!irqchip_in_kernel(kvm))
3814 3815
			goto get_irqchip_out;
		r = kvm_vm_ioctl_get_irqchip(kvm, chip);
3816
		if (r)
3817
			goto get_irqchip_out;
3818
		r = -EFAULT;
3819 3820
		if (copy_to_user(argp, chip, sizeof *chip))
			goto get_irqchip_out;
3821
		r = 0;
3822 3823
	get_irqchip_out:
		kfree(chip);
3824 3825 3826 3827
		break;
	}
	case KVM_SET_IRQCHIP: {
		/* 0: PIC master, 1: PIC slave, 2: IOAPIC */
3828
		struct kvm_irqchip *chip;
3829

3830 3831 3832
		chip = memdup_user(argp, sizeof(*chip));
		if (IS_ERR(chip)) {
			r = PTR_ERR(chip);
3833
			goto out;
3834 3835
		}

3836 3837
		r = -ENXIO;
		if (!irqchip_in_kernel(kvm))
3838 3839
			goto set_irqchip_out;
		r = kvm_vm_ioctl_set_irqchip(kvm, chip);
3840
		if (r)
3841
			goto set_irqchip_out;
3842
		r = 0;
3843 3844
	set_irqchip_out:
		kfree(chip);
3845 3846
		break;
	}
3847 3848
	case KVM_GET_PIT: {
		r = -EFAULT;
3849
		if (copy_from_user(&u.ps, argp, sizeof(struct kvm_pit_state)))
3850 3851 3852 3853
			goto out;
		r = -ENXIO;
		if (!kvm->arch.vpit)
			goto out;
3854
		r = kvm_vm_ioctl_get_pit(kvm, &u.ps);
3855 3856 3857
		if (r)
			goto out;
		r = -EFAULT;
3858
		if (copy_to_user(argp, &u.ps, sizeof(struct kvm_pit_state)))
3859 3860 3861 3862 3863 3864
			goto out;
		r = 0;
		break;
	}
	case KVM_SET_PIT: {
		r = -EFAULT;
3865
		if (copy_from_user(&u.ps, argp, sizeof u.ps))
3866 3867 3868 3869
			goto out;
		r = -ENXIO;
		if (!kvm->arch.vpit)
			goto out;
3870
		r = kvm_vm_ioctl_set_pit(kvm, &u.ps);
3871 3872
		break;
	}
B
Beth Kon 已提交
3873 3874 3875 3876 3877 3878 3879 3880 3881 3882 3883 3884 3885 3886 3887 3888 3889 3890 3891 3892 3893 3894 3895
	case KVM_GET_PIT2: {
		r = -ENXIO;
		if (!kvm->arch.vpit)
			goto out;
		r = kvm_vm_ioctl_get_pit2(kvm, &u.ps2);
		if (r)
			goto out;
		r = -EFAULT;
		if (copy_to_user(argp, &u.ps2, sizeof(u.ps2)))
			goto out;
		r = 0;
		break;
	}
	case KVM_SET_PIT2: {
		r = -EFAULT;
		if (copy_from_user(&u.ps2, argp, sizeof(u.ps2)))
			goto out;
		r = -ENXIO;
		if (!kvm->arch.vpit)
			goto out;
		r = kvm_vm_ioctl_set_pit2(kvm, &u.ps2);
		break;
	}
3896 3897 3898 3899 3900 3901 3902 3903
	case KVM_REINJECT_CONTROL: {
		struct kvm_reinject_control control;
		r =  -EFAULT;
		if (copy_from_user(&control, argp, sizeof(control)))
			goto out;
		r = kvm_vm_ioctl_reinject(kvm, &control);
		break;
	}
E
Ed Swierk 已提交
3904 3905 3906 3907 3908 3909 3910 3911 3912 3913 3914
	case KVM_XEN_HVM_CONFIG: {
		r = -EFAULT;
		if (copy_from_user(&kvm->arch.xen_hvm_config, argp,
				   sizeof(struct kvm_xen_hvm_config)))
			goto out;
		r = -EINVAL;
		if (kvm->arch.xen_hvm_config.flags)
			goto out;
		r = 0;
		break;
	}
3915 3916 3917 3918 3919 3920 3921 3922 3923 3924 3925 3926 3927 3928
	case KVM_SET_CLOCK: {
		struct kvm_clock_data user_ns;
		u64 now_ns;
		s64 delta;

		r = -EFAULT;
		if (copy_from_user(&user_ns, argp, sizeof(user_ns)))
			goto out;

		r = -EINVAL;
		if (user_ns.flags)
			goto out;

		r = 0;
3929
		local_irq_disable();
3930
		now_ns = get_kernel_ns();
3931
		delta = user_ns.clock - now_ns;
3932
		local_irq_enable();
3933
		kvm->arch.kvmclock_offset = delta;
3934
		kvm_gen_update_masterclock(kvm);
3935 3936 3937 3938 3939 3940
		break;
	}
	case KVM_GET_CLOCK: {
		struct kvm_clock_data user_ns;
		u64 now_ns;

3941
		local_irq_disable();
3942
		now_ns = get_kernel_ns();
3943
		user_ns.clock = kvm->arch.kvmclock_offset + now_ns;
3944
		local_irq_enable();
3945
		user_ns.flags = 0;
3946
		memset(&user_ns.pad, 0, sizeof(user_ns.pad));
3947 3948 3949 3950 3951 3952 3953 3954

		r = -EFAULT;
		if (copy_to_user(argp, &user_ns, sizeof(user_ns)))
			goto out;
		r = 0;
		break;
	}

3955 3956 3957 3958 3959 3960 3961
	default:
		;
	}
out:
	return r;
}

3962
static void kvm_init_msr_list(void)
3963 3964 3965 3966
{
	u32 dummy[2];
	unsigned i, j;

3967 3968
	/* skip the first msrs in the list. KVM-specific */
	for (i = j = KVM_SAVE_MSRS_BEGIN; i < ARRAY_SIZE(msrs_to_save); i++) {
3969 3970
		if (rdmsr_safe(msrs_to_save[i], &dummy[0], &dummy[1]) < 0)
			continue;
3971 3972 3973 3974 3975 3976 3977 3978 3979 3980 3981 3982 3983 3984 3985 3986 3987

		/*
		 * Even MSRs that are valid in the host may not be exposed
		 * to the guests in some cases.  We could work around this
		 * in VMX with the generic MSR save/load machinery, but it
		 * is not really worthwhile since it will really only
		 * happen with nested virtualization.
		 */
		switch (msrs_to_save[i]) {
		case MSR_IA32_BNDCFGS:
			if (!kvm_x86_ops->mpx_supported())
				continue;
			break;
		default:
			break;
		}

3988 3989 3990 3991 3992 3993 3994
		if (j < i)
			msrs_to_save[j] = msrs_to_save[i];
		j++;
	}
	num_msrs_to_save = j;
}

3995 3996
static int vcpu_mmio_write(struct kvm_vcpu *vcpu, gpa_t addr, int len,
			   const void *v)
3997
{
3998 3999 4000 4001 4002 4003 4004 4005 4006 4007 4008 4009 4010 4011
	int handled = 0;
	int n;

	do {
		n = min(len, 8);
		if (!(vcpu->arch.apic &&
		      !kvm_iodevice_write(&vcpu->arch.apic->dev, addr, n, v))
		    && kvm_io_bus_write(vcpu->kvm, KVM_MMIO_BUS, addr, n, v))
			break;
		handled += n;
		addr += n;
		len -= n;
		v += n;
	} while (len);
4012

4013
	return handled;
4014 4015
}

4016
static int vcpu_mmio_read(struct kvm_vcpu *vcpu, gpa_t addr, int len, void *v)
4017
{
4018 4019 4020 4021 4022 4023 4024 4025 4026 4027 4028 4029 4030 4031 4032
	int handled = 0;
	int n;

	do {
		n = min(len, 8);
		if (!(vcpu->arch.apic &&
		      !kvm_iodevice_read(&vcpu->arch.apic->dev, addr, n, v))
		    && kvm_io_bus_read(vcpu->kvm, KVM_MMIO_BUS, addr, n, v))
			break;
		trace_kvm_mmio(KVM_TRACE_MMIO_READ, n, addr, *(u64 *)v);
		handled += n;
		addr += n;
		len -= n;
		v += n;
	} while (len);
4033

4034
	return handled;
4035 4036
}

4037 4038 4039 4040 4041 4042 4043 4044 4045 4046 4047 4048
static void kvm_set_segment(struct kvm_vcpu *vcpu,
			struct kvm_segment *var, int seg)
{
	kvm_x86_ops->set_segment(vcpu, var, seg);
}

void kvm_get_segment(struct kvm_vcpu *vcpu,
		     struct kvm_segment *var, int seg)
{
	kvm_x86_ops->get_segment(vcpu, var, seg);
}

4049
gpa_t translate_nested_gpa(struct kvm_vcpu *vcpu, gpa_t gpa, u32 access)
4050 4051
{
	gpa_t t_gpa;
4052
	struct x86_exception exception;
4053 4054 4055 4056 4057

	BUG_ON(!mmu_is_nested(vcpu));

	/* NPT walks are always user-walks */
	access |= PFERR_USER_MASK;
4058
	t_gpa  = vcpu->arch.mmu.gva_to_gpa(vcpu, gpa, access, &exception);
4059 4060 4061 4062

	return t_gpa;
}

4063 4064
gpa_t kvm_mmu_gva_to_gpa_read(struct kvm_vcpu *vcpu, gva_t gva,
			      struct x86_exception *exception)
4065 4066
{
	u32 access = (kvm_x86_ops->get_cpl(vcpu) == 3) ? PFERR_USER_MASK : 0;
4067
	return vcpu->arch.walk_mmu->gva_to_gpa(vcpu, gva, access, exception);
4068 4069
}

4070 4071
 gpa_t kvm_mmu_gva_to_gpa_fetch(struct kvm_vcpu *vcpu, gva_t gva,
				struct x86_exception *exception)
4072 4073 4074
{
	u32 access = (kvm_x86_ops->get_cpl(vcpu) == 3) ? PFERR_USER_MASK : 0;
	access |= PFERR_FETCH_MASK;
4075
	return vcpu->arch.walk_mmu->gva_to_gpa(vcpu, gva, access, exception);
4076 4077
}

4078 4079
gpa_t kvm_mmu_gva_to_gpa_write(struct kvm_vcpu *vcpu, gva_t gva,
			       struct x86_exception *exception)
4080 4081 4082
{
	u32 access = (kvm_x86_ops->get_cpl(vcpu) == 3) ? PFERR_USER_MASK : 0;
	access |= PFERR_WRITE_MASK;
4083
	return vcpu->arch.walk_mmu->gva_to_gpa(vcpu, gva, access, exception);
4084 4085 4086
}

/* uses this to access any guest's mapped memory without checking CPL */
4087 4088
gpa_t kvm_mmu_gva_to_gpa_system(struct kvm_vcpu *vcpu, gva_t gva,
				struct x86_exception *exception)
4089
{
4090
	return vcpu->arch.walk_mmu->gva_to_gpa(vcpu, gva, 0, exception);
4091 4092 4093 4094
}

static int kvm_read_guest_virt_helper(gva_t addr, void *val, unsigned int bytes,
				      struct kvm_vcpu *vcpu, u32 access,
4095
				      struct x86_exception *exception)
4096 4097
{
	void *data = val;
4098
	int r = X86EMUL_CONTINUE;
4099 4100

	while (bytes) {
4101
		gpa_t gpa = vcpu->arch.walk_mmu->gva_to_gpa(vcpu, addr, access,
4102
							    exception);
4103
		unsigned offset = addr & (PAGE_SIZE-1);
4104
		unsigned toread = min(bytes, (unsigned)PAGE_SIZE - offset);
4105 4106
		int ret;

4107
		if (gpa == UNMAPPED_GVA)
4108
			return X86EMUL_PROPAGATE_FAULT;
4109 4110
		ret = kvm_read_guest_page(vcpu->kvm, gpa >> PAGE_SHIFT, data,
					  offset, toread);
4111
		if (ret < 0) {
4112
			r = X86EMUL_IO_NEEDED;
4113 4114
			goto out;
		}
4115

4116 4117 4118
		bytes -= toread;
		data += toread;
		addr += toread;
4119
	}
4120 4121
out:
	return r;
4122
}
4123

4124
/* used for instruction fetching */
4125 4126
static int kvm_fetch_guest_virt(struct x86_emulate_ctxt *ctxt,
				gva_t addr, void *val, unsigned int bytes,
4127
				struct x86_exception *exception)
4128
{
4129
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
4130
	u32 access = (kvm_x86_ops->get_cpl(vcpu) == 3) ? PFERR_USER_MASK : 0;
4131 4132
	unsigned offset;
	int ret;
4133

4134 4135 4136 4137 4138 4139 4140 4141 4142 4143 4144 4145 4146 4147 4148
	/* Inline kvm_read_guest_virt_helper for speed.  */
	gpa_t gpa = vcpu->arch.walk_mmu->gva_to_gpa(vcpu, addr, access|PFERR_FETCH_MASK,
						    exception);
	if (unlikely(gpa == UNMAPPED_GVA))
		return X86EMUL_PROPAGATE_FAULT;

	offset = addr & (PAGE_SIZE-1);
	if (WARN_ON(offset + bytes > PAGE_SIZE))
		bytes = (unsigned)PAGE_SIZE - offset;
	ret = kvm_read_guest_page(vcpu->kvm, gpa >> PAGE_SHIFT, val,
				  offset, bytes);
	if (unlikely(ret < 0))
		return X86EMUL_IO_NEEDED;

	return X86EMUL_CONTINUE;
4149 4150
}

4151
int kvm_read_guest_virt(struct x86_emulate_ctxt *ctxt,
4152
			       gva_t addr, void *val, unsigned int bytes,
4153
			       struct x86_exception *exception)
4154
{
4155
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
4156
	u32 access = (kvm_x86_ops->get_cpl(vcpu) == 3) ? PFERR_USER_MASK : 0;
4157

4158
	return kvm_read_guest_virt_helper(addr, val, bytes, vcpu, access,
4159
					  exception);
4160
}
4161
EXPORT_SYMBOL_GPL(kvm_read_guest_virt);
4162

4163 4164
static int kvm_read_guest_virt_system(struct x86_emulate_ctxt *ctxt,
				      gva_t addr, void *val, unsigned int bytes,
4165
				      struct x86_exception *exception)
4166
{
4167
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
4168
	return kvm_read_guest_virt_helper(addr, val, bytes, vcpu, 0, exception);
4169 4170
}

N
Nadav Har'El 已提交
4171
int kvm_write_guest_virt_system(struct x86_emulate_ctxt *ctxt,
4172
				       gva_t addr, void *val,
4173
				       unsigned int bytes,
4174
				       struct x86_exception *exception)
4175
{
4176
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
4177 4178 4179 4180
	void *data = val;
	int r = X86EMUL_CONTINUE;

	while (bytes) {
4181 4182
		gpa_t gpa =  vcpu->arch.walk_mmu->gva_to_gpa(vcpu, addr,
							     PFERR_WRITE_MASK,
4183
							     exception);
4184 4185 4186 4187
		unsigned offset = addr & (PAGE_SIZE-1);
		unsigned towrite = min(bytes, (unsigned)PAGE_SIZE - offset);
		int ret;

4188
		if (gpa == UNMAPPED_GVA)
4189
			return X86EMUL_PROPAGATE_FAULT;
4190 4191
		ret = kvm_write_guest(vcpu->kvm, gpa, data, towrite);
		if (ret < 0) {
4192
			r = X86EMUL_IO_NEEDED;
4193 4194 4195 4196 4197 4198 4199 4200 4201 4202
			goto out;
		}

		bytes -= towrite;
		data += towrite;
		addr += towrite;
	}
out:
	return r;
}
N
Nadav Har'El 已提交
4203
EXPORT_SYMBOL_GPL(kvm_write_guest_virt_system);
4204

4205 4206 4207 4208
static int vcpu_mmio_gva_to_gpa(struct kvm_vcpu *vcpu, unsigned long gva,
				gpa_t *gpa, struct x86_exception *exception,
				bool write)
{
4209 4210
	u32 access = ((kvm_x86_ops->get_cpl(vcpu) == 3) ? PFERR_USER_MASK : 0)
		| (write ? PFERR_WRITE_MASK : 0);
4211

4212
	if (vcpu_match_mmio_gva(vcpu, gva)
F
Feng Wu 已提交
4213 4214
	    && !permission_fault(vcpu, vcpu->arch.walk_mmu,
				 vcpu->arch.access, access)) {
4215 4216
		*gpa = vcpu->arch.mmio_gfn << PAGE_SHIFT |
					(gva & (PAGE_SIZE - 1));
X
Xiao Guangrong 已提交
4217
		trace_vcpu_match_mmio(gva, *gpa, write, false);
4218 4219 4220
		return 1;
	}

4221 4222 4223 4224 4225 4226 4227 4228 4229
	*gpa = vcpu->arch.walk_mmu->gva_to_gpa(vcpu, gva, access, exception);

	if (*gpa == UNMAPPED_GVA)
		return -1;

	/* For APIC access vmexit */
	if ((*gpa & PAGE_MASK) == APIC_DEFAULT_PHYS_BASE)
		return 1;

X
Xiao Guangrong 已提交
4230 4231
	if (vcpu_match_mmio_gpa(vcpu, *gpa)) {
		trace_vcpu_match_mmio(gva, *gpa, write, true);
4232
		return 1;
X
Xiao Guangrong 已提交
4233
	}
4234

4235 4236 4237
	return 0;
}

4238
int emulator_write_phys(struct kvm_vcpu *vcpu, gpa_t gpa,
4239
			const void *val, int bytes)
4240 4241 4242 4243
{
	int ret;

	ret = kvm_write_guest(vcpu->kvm, gpa, val, bytes);
4244
	if (ret < 0)
4245
		return 0;
4246
	kvm_mmu_pte_write(vcpu, gpa, val, bytes);
4247 4248 4249
	return 1;
}

4250 4251 4252 4253 4254 4255 4256 4257 4258 4259 4260 4261 4262 4263 4264 4265
struct read_write_emulator_ops {
	int (*read_write_prepare)(struct kvm_vcpu *vcpu, void *val,
				  int bytes);
	int (*read_write_emulate)(struct kvm_vcpu *vcpu, gpa_t gpa,
				  void *val, int bytes);
	int (*read_write_mmio)(struct kvm_vcpu *vcpu, gpa_t gpa,
			       int bytes, void *val);
	int (*read_write_exit_mmio)(struct kvm_vcpu *vcpu, gpa_t gpa,
				    void *val, int bytes);
	bool write;
};

static int read_prepare(struct kvm_vcpu *vcpu, void *val, int bytes)
{
	if (vcpu->mmio_read_completed) {
		trace_kvm_mmio(KVM_TRACE_MMIO_READ, bytes,
A
Avi Kivity 已提交
4266
			       vcpu->mmio_fragments[0].gpa, *(u64 *)val);
4267 4268 4269 4270 4271 4272 4273 4274 4275 4276 4277 4278 4279 4280 4281 4282 4283 4284 4285 4286 4287 4288 4289 4290 4291 4292 4293 4294 4295 4296 4297 4298 4299 4300 4301
		vcpu->mmio_read_completed = 0;
		return 1;
	}

	return 0;
}

static int read_emulate(struct kvm_vcpu *vcpu, gpa_t gpa,
			void *val, int bytes)
{
	return !kvm_read_guest(vcpu->kvm, gpa, val, bytes);
}

static int write_emulate(struct kvm_vcpu *vcpu, gpa_t gpa,
			 void *val, int bytes)
{
	return emulator_write_phys(vcpu, gpa, val, bytes);
}

static int write_mmio(struct kvm_vcpu *vcpu, gpa_t gpa, int bytes, void *val)
{
	trace_kvm_mmio(KVM_TRACE_MMIO_WRITE, bytes, gpa, *(u64 *)val);
	return vcpu_mmio_write(vcpu, gpa, bytes, val);
}

static int read_exit_mmio(struct kvm_vcpu *vcpu, gpa_t gpa,
			  void *val, int bytes)
{
	trace_kvm_mmio(KVM_TRACE_MMIO_READ_UNSATISFIED, bytes, gpa, 0);
	return X86EMUL_IO_NEEDED;
}

static int write_exit_mmio(struct kvm_vcpu *vcpu, gpa_t gpa,
			   void *val, int bytes)
{
A
Avi Kivity 已提交
4302 4303
	struct kvm_mmio_fragment *frag = &vcpu->mmio_fragments[0];

4304
	memcpy(vcpu->run->mmio.data, frag->data, min(8u, frag->len));
4305 4306 4307
	return X86EMUL_CONTINUE;
}

4308
static const struct read_write_emulator_ops read_emultor = {
4309 4310 4311 4312 4313 4314
	.read_write_prepare = read_prepare,
	.read_write_emulate = read_emulate,
	.read_write_mmio = vcpu_mmio_read,
	.read_write_exit_mmio = read_exit_mmio,
};

4315
static const struct read_write_emulator_ops write_emultor = {
4316 4317 4318 4319 4320 4321
	.read_write_emulate = write_emulate,
	.read_write_mmio = write_mmio,
	.read_write_exit_mmio = write_exit_mmio,
	.write = true,
};

4322 4323 4324 4325
static int emulator_read_write_onepage(unsigned long addr, void *val,
				       unsigned int bytes,
				       struct x86_exception *exception,
				       struct kvm_vcpu *vcpu,
4326
				       const struct read_write_emulator_ops *ops)
4327
{
4328 4329
	gpa_t gpa;
	int handled, ret;
4330
	bool write = ops->write;
A
Avi Kivity 已提交
4331
	struct kvm_mmio_fragment *frag;
4332

4333
	ret = vcpu_mmio_gva_to_gpa(vcpu, addr, &gpa, exception, write);
4334

4335
	if (ret < 0)
4336 4337 4338
		return X86EMUL_PROPAGATE_FAULT;

	/* For APIC access vmexit */
4339
	if (ret)
4340 4341
		goto mmio;

4342
	if (ops->read_write_emulate(vcpu, gpa, val, bytes))
4343 4344 4345 4346 4347 4348
		return X86EMUL_CONTINUE;

mmio:
	/*
	 * Is this MMIO handled locally?
	 */
4349
	handled = ops->read_write_mmio(vcpu, gpa, bytes, val);
4350
	if (handled == bytes)
4351 4352
		return X86EMUL_CONTINUE;

4353 4354 4355 4356
	gpa += handled;
	bytes -= handled;
	val += handled;

4357 4358 4359 4360 4361
	WARN_ON(vcpu->mmio_nr_fragments >= KVM_MAX_MMIO_FRAGMENTS);
	frag = &vcpu->mmio_fragments[vcpu->mmio_nr_fragments++];
	frag->gpa = gpa;
	frag->data = val;
	frag->len = bytes;
A
Avi Kivity 已提交
4362
	return X86EMUL_CONTINUE;
4363 4364
}

4365 4366 4367
int emulator_read_write(struct x86_emulate_ctxt *ctxt, unsigned long addr,
			void *val, unsigned int bytes,
			struct x86_exception *exception,
4368
			const struct read_write_emulator_ops *ops)
4369
{
4370
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
A
Avi Kivity 已提交
4371 4372 4373 4374 4375 4376 4377 4378
	gpa_t gpa;
	int rc;

	if (ops->read_write_prepare &&
		  ops->read_write_prepare(vcpu, val, bytes))
		return X86EMUL_CONTINUE;

	vcpu->mmio_nr_fragments = 0;
4379

4380 4381
	/* Crossing a page boundary? */
	if (((addr + bytes - 1) ^ addr) & PAGE_MASK) {
A
Avi Kivity 已提交
4382
		int now;
4383 4384

		now = -addr & ~PAGE_MASK;
4385 4386 4387
		rc = emulator_read_write_onepage(addr, val, now, exception,
						 vcpu, ops);

4388 4389 4390 4391 4392 4393
		if (rc != X86EMUL_CONTINUE)
			return rc;
		addr += now;
		val += now;
		bytes -= now;
	}
4394

A
Avi Kivity 已提交
4395 4396 4397 4398 4399 4400 4401 4402 4403 4404 4405 4406 4407
	rc = emulator_read_write_onepage(addr, val, bytes, exception,
					 vcpu, ops);
	if (rc != X86EMUL_CONTINUE)
		return rc;

	if (!vcpu->mmio_nr_fragments)
		return rc;

	gpa = vcpu->mmio_fragments[0].gpa;

	vcpu->mmio_needed = 1;
	vcpu->mmio_cur_fragment = 0;

4408
	vcpu->run->mmio.len = min(8u, vcpu->mmio_fragments[0].len);
A
Avi Kivity 已提交
4409 4410 4411 4412 4413
	vcpu->run->mmio.is_write = vcpu->mmio_is_write = ops->write;
	vcpu->run->exit_reason = KVM_EXIT_MMIO;
	vcpu->run->mmio.phys_addr = gpa;

	return ops->read_write_exit_mmio(vcpu, gpa, val, bytes);
4414 4415 4416 4417 4418 4419 4420 4421 4422 4423 4424 4425 4426 4427 4428 4429 4430 4431 4432 4433
}

static int emulator_read_emulated(struct x86_emulate_ctxt *ctxt,
				  unsigned long addr,
				  void *val,
				  unsigned int bytes,
				  struct x86_exception *exception)
{
	return emulator_read_write(ctxt, addr, val, bytes,
				   exception, &read_emultor);
}

int emulator_write_emulated(struct x86_emulate_ctxt *ctxt,
			    unsigned long addr,
			    const void *val,
			    unsigned int bytes,
			    struct x86_exception *exception)
{
	return emulator_read_write(ctxt, addr, (void *)val, bytes,
				   exception, &write_emultor);
4434 4435
}

4436 4437 4438 4439 4440 4441 4442
#define CMPXCHG_TYPE(t, ptr, old, new) \
	(cmpxchg((t *)(ptr), *(t *)(old), *(t *)(new)) == *(t *)(old))

#ifdef CONFIG_X86_64
#  define CMPXCHG64(ptr, old, new) CMPXCHG_TYPE(u64, ptr, old, new)
#else
#  define CMPXCHG64(ptr, old, new) \
4443
	(cmpxchg64((u64 *)(ptr), *(u64 *)(old), *(u64 *)(new)) == *(u64 *)(old))
4444 4445
#endif

4446 4447
static int emulator_cmpxchg_emulated(struct x86_emulate_ctxt *ctxt,
				     unsigned long addr,
4448 4449 4450
				     const void *old,
				     const void *new,
				     unsigned int bytes,
4451
				     struct x86_exception *exception)
4452
{
4453
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
4454 4455 4456 4457
	gpa_t gpa;
	struct page *page;
	char *kaddr;
	bool exchanged;
4458

4459 4460 4461
	/* guests cmpxchg8b have to be emulated atomically */
	if (bytes > 8 || (bytes & (bytes - 1)))
		goto emul_write;
4462

4463
	gpa = kvm_mmu_gva_to_gpa_write(vcpu, addr, NULL);
4464

4465 4466 4467
	if (gpa == UNMAPPED_GVA ||
	    (gpa & PAGE_MASK) == APIC_DEFAULT_PHYS_BASE)
		goto emul_write;
4468

4469 4470
	if (((gpa + bytes - 1) & PAGE_MASK) != (gpa & PAGE_MASK))
		goto emul_write;
4471

4472
	page = gfn_to_page(vcpu->kvm, gpa >> PAGE_SHIFT);
4473
	if (is_error_page(page))
4474
		goto emul_write;
4475

4476
	kaddr = kmap_atomic(page);
4477 4478 4479 4480 4481 4482 4483 4484 4485 4486 4487 4488 4489 4490 4491 4492
	kaddr += offset_in_page(gpa);
	switch (bytes) {
	case 1:
		exchanged = CMPXCHG_TYPE(u8, kaddr, old, new);
		break;
	case 2:
		exchanged = CMPXCHG_TYPE(u16, kaddr, old, new);
		break;
	case 4:
		exchanged = CMPXCHG_TYPE(u32, kaddr, old, new);
		break;
	case 8:
		exchanged = CMPXCHG64(kaddr, old, new);
		break;
	default:
		BUG();
4493
	}
4494
	kunmap_atomic(kaddr);
4495 4496 4497 4498 4499
	kvm_release_page_dirty(page);

	if (!exchanged)
		return X86EMUL_CMPXCHG_FAILED;

4500
	mark_page_dirty(vcpu->kvm, gpa >> PAGE_SHIFT);
4501
	kvm_mmu_pte_write(vcpu, gpa, new, bytes);
4502 4503

	return X86EMUL_CONTINUE;
4504

4505
emul_write:
4506
	printk_once(KERN_WARNING "kvm: emulating exchange as write\n");
4507

4508
	return emulator_write_emulated(ctxt, addr, new, bytes, exception);
4509 4510
}

4511 4512 4513 4514 4515 4516 4517 4518 4519 4520 4521 4522 4523 4524 4525
static int kernel_pio(struct kvm_vcpu *vcpu, void *pd)
{
	/* TODO: String I/O for in kernel device */
	int r;

	if (vcpu->arch.pio.in)
		r = kvm_io_bus_read(vcpu->kvm, KVM_PIO_BUS, vcpu->arch.pio.port,
				    vcpu->arch.pio.size, pd);
	else
		r = kvm_io_bus_write(vcpu->kvm, KVM_PIO_BUS,
				     vcpu->arch.pio.port, vcpu->arch.pio.size,
				     pd);
	return r;
}

4526 4527 4528
static int emulator_pio_in_out(struct kvm_vcpu *vcpu, int size,
			       unsigned short port, void *val,
			       unsigned int count, bool in)
4529 4530
{
	vcpu->arch.pio.port = port;
4531
	vcpu->arch.pio.in = in;
4532
	vcpu->arch.pio.count  = count;
4533 4534 4535
	vcpu->arch.pio.size = size;

	if (!kernel_pio(vcpu, vcpu->arch.pio_data)) {
4536
		vcpu->arch.pio.count = 0;
4537 4538 4539 4540
		return 1;
	}

	vcpu->run->exit_reason = KVM_EXIT_IO;
4541
	vcpu->run->io.direction = in ? KVM_EXIT_IO_IN : KVM_EXIT_IO_OUT;
4542 4543 4544 4545 4546 4547 4548 4549
	vcpu->run->io.size = size;
	vcpu->run->io.data_offset = KVM_PIO_PAGE_OFFSET * PAGE_SIZE;
	vcpu->run->io.count = count;
	vcpu->run->io.port = port;

	return 0;
}

4550 4551 4552
static int emulator_pio_in_emulated(struct x86_emulate_ctxt *ctxt,
				    int size, unsigned short port, void *val,
				    unsigned int count)
4553
{
4554
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
4555
	int ret;
4556

4557 4558
	if (vcpu->arch.pio.count)
		goto data_avail;
4559

4560 4561 4562 4563
	ret = emulator_pio_in_out(vcpu, size, port, val, count, true);
	if (ret) {
data_avail:
		memcpy(val, vcpu->arch.pio_data, size * count);
4564
		trace_kvm_pio(KVM_PIO_IN, port, size, count, vcpu->arch.pio_data);
4565
		vcpu->arch.pio.count = 0;
4566 4567 4568 4569 4570 4571
		return 1;
	}

	return 0;
}

4572 4573 4574 4575 4576 4577 4578
static int emulator_pio_out_emulated(struct x86_emulate_ctxt *ctxt,
				     int size, unsigned short port,
				     const void *val, unsigned int count)
{
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);

	memcpy(vcpu->arch.pio_data, val, size * count);
4579
	trace_kvm_pio(KVM_PIO_OUT, port, size, count, vcpu->arch.pio_data);
4580 4581 4582
	return emulator_pio_in_out(vcpu, size, port, (void *)val, count, false);
}

4583 4584 4585 4586 4587
static unsigned long get_segment_base(struct kvm_vcpu *vcpu, int seg)
{
	return kvm_x86_ops->get_segment_base(vcpu, seg);
}

4588
static void emulator_invlpg(struct x86_emulate_ctxt *ctxt, ulong address)
4589
{
4590
	kvm_mmu_invlpg(emul_to_vcpu(ctxt), address);
4591 4592
}

4593 4594 4595 4596 4597 4598
int kvm_emulate_wbinvd(struct kvm_vcpu *vcpu)
{
	if (!need_emulate_wbinvd(vcpu))
		return X86EMUL_CONTINUE;

	if (kvm_x86_ops->has_wbinvd_exit()) {
4599 4600 4601
		int cpu = get_cpu();

		cpumask_set_cpu(cpu, vcpu->arch.wbinvd_dirty_mask);
4602 4603
		smp_call_function_many(vcpu->arch.wbinvd_dirty_mask,
				wbinvd_ipi, NULL, 1);
4604
		put_cpu();
4605
		cpumask_clear(vcpu->arch.wbinvd_dirty_mask);
4606 4607
	} else
		wbinvd();
4608 4609 4610 4611
	return X86EMUL_CONTINUE;
}
EXPORT_SYMBOL_GPL(kvm_emulate_wbinvd);

4612 4613 4614 4615 4616
static void emulator_wbinvd(struct x86_emulate_ctxt *ctxt)
{
	kvm_emulate_wbinvd(emul_to_vcpu(ctxt));
}

4617
int emulator_get_dr(struct x86_emulate_ctxt *ctxt, int dr, unsigned long *dest)
4618
{
4619
	return _kvm_get_dr(emul_to_vcpu(ctxt), dr, dest);
4620 4621
}

4622
int emulator_set_dr(struct x86_emulate_ctxt *ctxt, int dr, unsigned long value)
4623
{
4624

4625
	return __kvm_set_dr(emul_to_vcpu(ctxt), dr, value);
4626 4627
}

4628
static u64 mk_cr_64(u64 curr_cr, u32 new_val)
4629
{
4630
	return (curr_cr & ~((1ULL << 32) - 1)) | new_val;
4631 4632
}

4633
static unsigned long emulator_get_cr(struct x86_emulate_ctxt *ctxt, int cr)
4634
{
4635
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
4636 4637 4638 4639 4640 4641 4642 4643 4644 4645
	unsigned long value;

	switch (cr) {
	case 0:
		value = kvm_read_cr0(vcpu);
		break;
	case 2:
		value = vcpu->arch.cr2;
		break;
	case 3:
4646
		value = kvm_read_cr3(vcpu);
4647 4648 4649 4650 4651 4652 4653 4654
		break;
	case 4:
		value = kvm_read_cr4(vcpu);
		break;
	case 8:
		value = kvm_get_cr8(vcpu);
		break;
	default:
4655
		kvm_err("%s: unexpected cr %u\n", __func__, cr);
4656 4657 4658 4659 4660 4661
		return 0;
	}

	return value;
}

4662
static int emulator_set_cr(struct x86_emulate_ctxt *ctxt, int cr, ulong val)
4663
{
4664
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
4665 4666
	int res = 0;

4667 4668
	switch (cr) {
	case 0:
4669
		res = kvm_set_cr0(vcpu, mk_cr_64(kvm_read_cr0(vcpu), val));
4670 4671 4672 4673 4674
		break;
	case 2:
		vcpu->arch.cr2 = val;
		break;
	case 3:
4675
		res = kvm_set_cr3(vcpu, val);
4676 4677
		break;
	case 4:
4678
		res = kvm_set_cr4(vcpu, mk_cr_64(kvm_read_cr4(vcpu), val));
4679 4680
		break;
	case 8:
A
Andre Przywara 已提交
4681
		res = kvm_set_cr8(vcpu, val);
4682 4683
		break;
	default:
4684
		kvm_err("%s: unexpected cr %u\n", __func__, cr);
4685
		res = -1;
4686
	}
4687 4688

	return res;
4689 4690
}

4691
static int emulator_get_cpl(struct x86_emulate_ctxt *ctxt)
4692
{
4693
	return kvm_x86_ops->get_cpl(emul_to_vcpu(ctxt));
4694 4695
}

4696
static void emulator_get_gdt(struct x86_emulate_ctxt *ctxt, struct desc_ptr *dt)
4697
{
4698
	kvm_x86_ops->get_gdt(emul_to_vcpu(ctxt), dt);
4699 4700
}

4701
static void emulator_get_idt(struct x86_emulate_ctxt *ctxt, struct desc_ptr *dt)
4702
{
4703
	kvm_x86_ops->get_idt(emul_to_vcpu(ctxt), dt);
4704 4705
}

4706 4707 4708 4709 4710 4711 4712 4713 4714 4715
static void emulator_set_gdt(struct x86_emulate_ctxt *ctxt, struct desc_ptr *dt)
{
	kvm_x86_ops->set_gdt(emul_to_vcpu(ctxt), dt);
}

static void emulator_set_idt(struct x86_emulate_ctxt *ctxt, struct desc_ptr *dt)
{
	kvm_x86_ops->set_idt(emul_to_vcpu(ctxt), dt);
}

4716 4717
static unsigned long emulator_get_cached_segment_base(
	struct x86_emulate_ctxt *ctxt, int seg)
4718
{
4719
	return get_segment_base(emul_to_vcpu(ctxt), seg);
4720 4721
}

4722 4723 4724
static bool emulator_get_segment(struct x86_emulate_ctxt *ctxt, u16 *selector,
				 struct desc_struct *desc, u32 *base3,
				 int seg)
4725 4726 4727
{
	struct kvm_segment var;

4728
	kvm_get_segment(emul_to_vcpu(ctxt), &var, seg);
4729
	*selector = var.selector;
4730

4731 4732
	if (var.unusable) {
		memset(desc, 0, sizeof(*desc));
4733
		return false;
4734
	}
4735 4736 4737 4738 4739

	if (var.g)
		var.limit >>= 12;
	set_desc_limit(desc, var.limit);
	set_desc_base(desc, (unsigned long)var.base);
4740 4741 4742 4743
#ifdef CONFIG_X86_64
	if (base3)
		*base3 = var.base >> 32;
#endif
4744 4745 4746 4747 4748 4749 4750 4751 4752 4753 4754 4755
	desc->type = var.type;
	desc->s = var.s;
	desc->dpl = var.dpl;
	desc->p = var.present;
	desc->avl = var.avl;
	desc->l = var.l;
	desc->d = var.db;
	desc->g = var.g;

	return true;
}

4756 4757 4758
static void emulator_set_segment(struct x86_emulate_ctxt *ctxt, u16 selector,
				 struct desc_struct *desc, u32 base3,
				 int seg)
4759
{
4760
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
4761 4762
	struct kvm_segment var;

4763
	var.selector = selector;
4764
	var.base = get_desc_base(desc);
4765 4766 4767
#ifdef CONFIG_X86_64
	var.base |= ((u64)base3) << 32;
#endif
4768 4769 4770 4771 4772 4773 4774 4775 4776 4777 4778 4779 4780 4781 4782 4783 4784 4785
	var.limit = get_desc_limit(desc);
	if (desc->g)
		var.limit = (var.limit << 12) | 0xfff;
	var.type = desc->type;
	var.dpl = desc->dpl;
	var.db = desc->d;
	var.s = desc->s;
	var.l = desc->l;
	var.g = desc->g;
	var.avl = desc->avl;
	var.present = desc->p;
	var.unusable = !var.present;
	var.padding = 0;

	kvm_set_segment(vcpu, &var, seg);
	return;
}

4786 4787 4788 4789 4790 4791 4792 4793 4794
static int emulator_get_msr(struct x86_emulate_ctxt *ctxt,
			    u32 msr_index, u64 *pdata)
{
	return kvm_get_msr(emul_to_vcpu(ctxt), msr_index, pdata);
}

static int emulator_set_msr(struct x86_emulate_ctxt *ctxt,
			    u32 msr_index, u64 data)
{
4795 4796 4797 4798 4799 4800
	struct msr_data msr;

	msr.data = data;
	msr.index = msr_index;
	msr.host_initiated = false;
	return kvm_set_msr(emul_to_vcpu(ctxt), &msr);
4801 4802
}

4803 4804 4805 4806 4807 4808
static int emulator_check_pmc(struct x86_emulate_ctxt *ctxt,
			      u32 pmc)
{
	return kvm_pmu_check_pmc(emul_to_vcpu(ctxt), pmc);
}

4809 4810 4811 4812 4813 4814
static int emulator_read_pmc(struct x86_emulate_ctxt *ctxt,
			     u32 pmc, u64 *pdata)
{
	return kvm_pmu_read_pmc(emul_to_vcpu(ctxt), pmc, pdata);
}

4815 4816 4817 4818 4819
static void emulator_halt(struct x86_emulate_ctxt *ctxt)
{
	emul_to_vcpu(ctxt)->arch.halt_request = 1;
}

4820 4821 4822
static void emulator_get_fpu(struct x86_emulate_ctxt *ctxt)
{
	preempt_disable();
4823
	kvm_load_guest_fpu(emul_to_vcpu(ctxt));
4824 4825 4826 4827 4828 4829 4830 4831 4832 4833 4834 4835
	/*
	 * CR0.TS may reference the host fpu state, not the guest fpu state,
	 * so it may be clear at this point.
	 */
	clts();
}

static void emulator_put_fpu(struct x86_emulate_ctxt *ctxt)
{
	preempt_enable();
}

4836
static int emulator_intercept(struct x86_emulate_ctxt *ctxt,
4837
			      struct x86_instruction_info *info,
4838 4839
			      enum x86_intercept_stage stage)
{
4840
	return kvm_x86_ops->check_intercept(emul_to_vcpu(ctxt), info, stage);
4841 4842
}

4843
static void emulator_get_cpuid(struct x86_emulate_ctxt *ctxt,
4844 4845
			       u32 *eax, u32 *ebx, u32 *ecx, u32 *edx)
{
4846
	kvm_cpuid(emul_to_vcpu(ctxt), eax, ebx, ecx, edx);
4847 4848
}

4849 4850 4851 4852 4853 4854 4855 4856 4857 4858
static ulong emulator_read_gpr(struct x86_emulate_ctxt *ctxt, unsigned reg)
{
	return kvm_register_read(emul_to_vcpu(ctxt), reg);
}

static void emulator_write_gpr(struct x86_emulate_ctxt *ctxt, unsigned reg, ulong val)
{
	kvm_register_write(emul_to_vcpu(ctxt), reg, val);
}

4859
static const struct x86_emulate_ops emulate_ops = {
4860 4861
	.read_gpr            = emulator_read_gpr,
	.write_gpr           = emulator_write_gpr,
4862
	.read_std            = kvm_read_guest_virt_system,
4863
	.write_std           = kvm_write_guest_virt_system,
4864
	.fetch               = kvm_fetch_guest_virt,
4865 4866 4867
	.read_emulated       = emulator_read_emulated,
	.write_emulated      = emulator_write_emulated,
	.cmpxchg_emulated    = emulator_cmpxchg_emulated,
4868
	.invlpg              = emulator_invlpg,
4869 4870
	.pio_in_emulated     = emulator_pio_in_emulated,
	.pio_out_emulated    = emulator_pio_out_emulated,
4871 4872
	.get_segment         = emulator_get_segment,
	.set_segment         = emulator_set_segment,
4873
	.get_cached_segment_base = emulator_get_cached_segment_base,
4874
	.get_gdt             = emulator_get_gdt,
4875
	.get_idt	     = emulator_get_idt,
4876 4877
	.set_gdt             = emulator_set_gdt,
	.set_idt	     = emulator_set_idt,
4878 4879
	.get_cr              = emulator_get_cr,
	.set_cr              = emulator_set_cr,
4880
	.cpl                 = emulator_get_cpl,
4881 4882
	.get_dr              = emulator_get_dr,
	.set_dr              = emulator_set_dr,
4883 4884
	.set_msr             = emulator_set_msr,
	.get_msr             = emulator_get_msr,
4885
	.check_pmc	     = emulator_check_pmc,
4886
	.read_pmc            = emulator_read_pmc,
4887
	.halt                = emulator_halt,
4888
	.wbinvd              = emulator_wbinvd,
4889
	.fix_hypercall       = emulator_fix_hypercall,
4890 4891
	.get_fpu             = emulator_get_fpu,
	.put_fpu             = emulator_put_fpu,
4892
	.intercept           = emulator_intercept,
4893
	.get_cpuid           = emulator_get_cpuid,
4894 4895
};

4896 4897
static void toggle_interruptibility(struct kvm_vcpu *vcpu, u32 mask)
{
4898
	u32 int_shadow = kvm_x86_ops->get_interrupt_shadow(vcpu);
4899 4900 4901 4902 4903 4904 4905
	/*
	 * an sti; sti; sequence only disable interrupts for the first
	 * instruction. So, if the last instruction, be it emulated or
	 * not, left the system with the INT_STI flag enabled, it
	 * means that the last instruction is an sti. We should not
	 * leave the flag on in this case. The same goes for mov ss
	 */
4906 4907
	if (int_shadow & mask)
		mask = 0;
4908
	if (unlikely(int_shadow || mask)) {
4909
		kvm_x86_ops->set_interrupt_shadow(vcpu, mask);
4910 4911 4912
		if (!mask)
			kvm_make_request(KVM_REQ_EVENT, vcpu);
	}
4913 4914
}

4915 4916 4917
static void inject_emulated_exception(struct kvm_vcpu *vcpu)
{
	struct x86_emulate_ctxt *ctxt = &vcpu->arch.emulate_ctxt;
4918
	if (ctxt->exception.vector == PF_VECTOR)
4919
		kvm_propagate_fault(vcpu, &ctxt->exception);
4920 4921 4922
	else if (ctxt->exception.error_code_valid)
		kvm_queue_exception_e(vcpu, ctxt->exception.vector,
				      ctxt->exception.error_code);
4923
	else
4924
		kvm_queue_exception(vcpu, ctxt->exception.vector);
4925 4926
}

4927 4928
static void init_emulate_ctxt(struct kvm_vcpu *vcpu)
{
4929
	struct x86_emulate_ctxt *ctxt = &vcpu->arch.emulate_ctxt;
4930 4931 4932 4933
	int cs_db, cs_l;

	kvm_x86_ops->get_cs_db_l_bits(vcpu, &cs_db, &cs_l);

4934 4935 4936 4937
	ctxt->eflags = kvm_get_rflags(vcpu);
	ctxt->eip = kvm_rip_read(vcpu);
	ctxt->mode = (!is_protmode(vcpu))		? X86EMUL_MODE_REAL :
		     (ctxt->eflags & X86_EFLAGS_VM)	? X86EMUL_MODE_VM86 :
4938
		     (cs_l && is_long_mode(vcpu))	? X86EMUL_MODE_PROT64 :
4939 4940 4941 4942
		     cs_db				? X86EMUL_MODE_PROT32 :
							  X86EMUL_MODE_PROT16;
	ctxt->guest_mode = is_guest_mode(vcpu);

4943
	init_decode_cache(ctxt);
4944
	vcpu->arch.emulate_regs_need_sync_from_vcpu = false;
4945 4946
}

4947
int kvm_inject_realmode_interrupt(struct kvm_vcpu *vcpu, int irq, int inc_eip)
4948
{
4949
	struct x86_emulate_ctxt *ctxt = &vcpu->arch.emulate_ctxt;
4950 4951 4952 4953
	int ret;

	init_emulate_ctxt(vcpu);

4954 4955 4956
	ctxt->op_bytes = 2;
	ctxt->ad_bytes = 2;
	ctxt->_eip = ctxt->eip + inc_eip;
4957
	ret = emulate_int_real(ctxt, irq);
4958 4959 4960 4961

	if (ret != X86EMUL_CONTINUE)
		return EMULATE_FAIL;

4962
	ctxt->eip = ctxt->_eip;
4963 4964
	kvm_rip_write(vcpu, ctxt->eip);
	kvm_set_rflags(vcpu, ctxt->eflags);
4965 4966

	if (irq == NMI_VECTOR)
A
Avi Kivity 已提交
4967
		vcpu->arch.nmi_pending = 0;
4968 4969 4970 4971 4972 4973 4974
	else
		vcpu->arch.interrupt.pending = false;

	return EMULATE_DONE;
}
EXPORT_SYMBOL_GPL(kvm_inject_realmode_interrupt);

4975 4976
static int handle_emulation_failure(struct kvm_vcpu *vcpu)
{
4977 4978
	int r = EMULATE_DONE;

4979 4980
	++vcpu->stat.insn_emulation_fail;
	trace_kvm_emulate_insn_failed(vcpu);
4981 4982 4983 4984 4985 4986
	if (!is_guest_mode(vcpu)) {
		vcpu->run->exit_reason = KVM_EXIT_INTERNAL_ERROR;
		vcpu->run->internal.suberror = KVM_INTERNAL_ERROR_EMULATION;
		vcpu->run->internal.ndata = 0;
		r = EMULATE_FAIL;
	}
4987
	kvm_queue_exception(vcpu, UD_VECTOR);
4988 4989

	return r;
4990 4991
}

4992
static bool reexecute_instruction(struct kvm_vcpu *vcpu, gva_t cr2,
4993 4994
				  bool write_fault_to_shadow_pgtable,
				  int emulation_type)
4995
{
4996
	gpa_t gpa = cr2;
4997
	pfn_t pfn;
4998

4999 5000 5001
	if (emulation_type & EMULTYPE_NO_REEXECUTE)
		return false;

5002 5003 5004 5005 5006 5007
	if (!vcpu->arch.mmu.direct_map) {
		/*
		 * Write permission should be allowed since only
		 * write access need to be emulated.
		 */
		gpa = kvm_mmu_gva_to_gpa_write(vcpu, cr2, NULL);
5008

5009 5010 5011 5012 5013 5014 5015
		/*
		 * If the mapping is invalid in guest, let cpu retry
		 * it to generate fault.
		 */
		if (gpa == UNMAPPED_GVA)
			return true;
	}
5016

5017 5018 5019 5020 5021 5022 5023
	/*
	 * Do not retry the unhandleable instruction if it faults on the
	 * readonly host memory, otherwise it will goto a infinite loop:
	 * retry instruction -> write #PF -> emulation fail -> retry
	 * instruction -> ...
	 */
	pfn = gfn_to_pfn(vcpu->kvm, gpa_to_gfn(gpa));
5024 5025 5026 5027 5028 5029 5030 5031 5032 5033 5034 5035 5036 5037 5038 5039 5040 5041 5042 5043 5044

	/*
	 * If the instruction failed on the error pfn, it can not be fixed,
	 * report the error to userspace.
	 */
	if (is_error_noslot_pfn(pfn))
		return false;

	kvm_release_pfn_clean(pfn);

	/* The instructions are well-emulated on direct mmu. */
	if (vcpu->arch.mmu.direct_map) {
		unsigned int indirect_shadow_pages;

		spin_lock(&vcpu->kvm->mmu_lock);
		indirect_shadow_pages = vcpu->kvm->arch.indirect_shadow_pages;
		spin_unlock(&vcpu->kvm->mmu_lock);

		if (indirect_shadow_pages)
			kvm_mmu_unprotect_page(vcpu->kvm, gpa_to_gfn(gpa));

5045
		return true;
5046
	}
5047

5048 5049 5050 5051 5052 5053
	/*
	 * if emulation was due to access to shadowed page table
	 * and it failed try to unshadow page and re-enter the
	 * guest to let CPU execute the instruction.
	 */
	kvm_mmu_unprotect_page(vcpu->kvm, gpa_to_gfn(gpa));
5054 5055 5056 5057 5058 5059 5060

	/*
	 * If the access faults on its page table, it can not
	 * be fixed by unprotecting shadow page and it should
	 * be reported to userspace.
	 */
	return !write_fault_to_shadow_pgtable;
5061 5062
}

5063 5064 5065 5066 5067 5068 5069 5070 5071 5072 5073 5074 5075 5076 5077 5078 5079 5080 5081 5082 5083 5084 5085 5086 5087 5088 5089 5090 5091 5092 5093 5094 5095 5096 5097 5098 5099 5100 5101
static bool retry_instruction(struct x86_emulate_ctxt *ctxt,
			      unsigned long cr2,  int emulation_type)
{
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
	unsigned long last_retry_eip, last_retry_addr, gpa = cr2;

	last_retry_eip = vcpu->arch.last_retry_eip;
	last_retry_addr = vcpu->arch.last_retry_addr;

	/*
	 * If the emulation is caused by #PF and it is non-page_table
	 * writing instruction, it means the VM-EXIT is caused by shadow
	 * page protected, we can zap the shadow page and retry this
	 * instruction directly.
	 *
	 * Note: if the guest uses a non-page-table modifying instruction
	 * on the PDE that points to the instruction, then we will unmap
	 * the instruction and go to an infinite loop. So, we cache the
	 * last retried eip and the last fault address, if we meet the eip
	 * and the address again, we can break out of the potential infinite
	 * loop.
	 */
	vcpu->arch.last_retry_eip = vcpu->arch.last_retry_addr = 0;

	if (!(emulation_type & EMULTYPE_RETRY))
		return false;

	if (x86_page_table_writing_insn(ctxt))
		return false;

	if (ctxt->eip == last_retry_eip && last_retry_addr == cr2)
		return false;

	vcpu->arch.last_retry_eip = ctxt->eip;
	vcpu->arch.last_retry_addr = cr2;

	if (!vcpu->arch.mmu.direct_map)
		gpa = kvm_mmu_gva_to_gpa_write(vcpu, cr2, NULL);

5102
	kvm_mmu_unprotect_page(vcpu->kvm, gpa_to_gfn(gpa));
5103 5104 5105 5106

	return true;
}

5107 5108 5109
static int complete_emulated_mmio(struct kvm_vcpu *vcpu);
static int complete_emulated_pio(struct kvm_vcpu *vcpu);

5110 5111 5112 5113 5114 5115 5116 5117 5118 5119 5120 5121 5122 5123 5124
static int kvm_vcpu_check_hw_bp(unsigned long addr, u32 type, u32 dr7,
				unsigned long *db)
{
	u32 dr6 = 0;
	int i;
	u32 enable, rwlen;

	enable = dr7;
	rwlen = dr7 >> 16;
	for (i = 0; i < 4; i++, enable >>= 2, rwlen >>= 4)
		if ((enable & 3) && (rwlen & 15) == type && db[i] == addr)
			dr6 |= (1 << i);
	return dr6;
}

5125
static void kvm_vcpu_check_singlestep(struct kvm_vcpu *vcpu, unsigned long rflags, int *r)
5126 5127 5128 5129
{
	struct kvm_run *kvm_run = vcpu->run;

	/*
5130 5131
	 * rflags is the old, "raw" value of the flags.  The new value has
	 * not been saved yet.
5132 5133 5134 5135 5136 5137 5138
	 *
	 * This is correct even for TF set by the guest, because "the
	 * processor will not generate this exception after the instruction
	 * that sets the TF flag".
	 */
	if (unlikely(rflags & X86_EFLAGS_TF)) {
		if (vcpu->guest_debug & KVM_GUESTDBG_SINGLESTEP) {
5139 5140
			kvm_run->debug.arch.dr6 = DR6_BS | DR6_FIXED_1 |
						  DR6_RTM;
5141 5142 5143 5144 5145 5146 5147 5148 5149 5150 5151 5152
			kvm_run->debug.arch.pc = vcpu->arch.singlestep_rip;
			kvm_run->debug.arch.exception = DB_VECTOR;
			kvm_run->exit_reason = KVM_EXIT_DEBUG;
			*r = EMULATE_USER_EXIT;
		} else {
			vcpu->arch.emulate_ctxt.eflags &= ~X86_EFLAGS_TF;
			/*
			 * "Certain debug exceptions may clear bit 0-3.  The
			 * remaining contents of the DR6 register are never
			 * cleared by the processor".
			 */
			vcpu->arch.dr6 &= ~15;
5153
			vcpu->arch.dr6 |= DR6_BS | DR6_RTM;
5154 5155 5156 5157 5158
			kvm_queue_exception(vcpu, DB_VECTOR);
		}
	}
}

5159 5160 5161 5162 5163 5164 5165 5166 5167 5168 5169 5170 5171
static bool kvm_vcpu_check_breakpoint(struct kvm_vcpu *vcpu, int *r)
{
	struct kvm_run *kvm_run = vcpu->run;
	unsigned long eip = vcpu->arch.emulate_ctxt.eip;
	u32 dr6 = 0;

	if (unlikely(vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP) &&
	    (vcpu->arch.guest_debug_dr7 & DR7_BP_EN_MASK)) {
		dr6 = kvm_vcpu_check_hw_bp(eip, 0,
					   vcpu->arch.guest_debug_dr7,
					   vcpu->arch.eff_db);

		if (dr6 != 0) {
5172
			kvm_run->debug.arch.dr6 = dr6 | DR6_FIXED_1 | DR6_RTM;
5173 5174 5175 5176 5177 5178 5179 5180 5181 5182
			kvm_run->debug.arch.pc = kvm_rip_read(vcpu) +
				get_segment_base(vcpu, VCPU_SREG_CS);

			kvm_run->debug.arch.exception = DB_VECTOR;
			kvm_run->exit_reason = KVM_EXIT_DEBUG;
			*r = EMULATE_USER_EXIT;
			return true;
		}
	}

5183 5184
	if (unlikely(vcpu->arch.dr7 & DR7_BP_EN_MASK) &&
	    !(kvm_get_rflags(vcpu) & X86_EFLAGS_RF)) {
5185 5186 5187 5188 5189 5190
		dr6 = kvm_vcpu_check_hw_bp(eip, 0,
					   vcpu->arch.dr7,
					   vcpu->arch.db);

		if (dr6 != 0) {
			vcpu->arch.dr6 &= ~15;
5191
			vcpu->arch.dr6 |= dr6 | DR6_RTM;
5192 5193 5194 5195 5196 5197 5198 5199 5200
			kvm_queue_exception(vcpu, DB_VECTOR);
			*r = EMULATE_DONE;
			return true;
		}
	}

	return false;
}

5201 5202
int x86_emulate_instruction(struct kvm_vcpu *vcpu,
			    unsigned long cr2,
5203 5204 5205
			    int emulation_type,
			    void *insn,
			    int insn_len)
5206
{
5207
	int r;
5208
	struct x86_emulate_ctxt *ctxt = &vcpu->arch.emulate_ctxt;
5209
	bool writeback = true;
5210
	bool write_fault_to_spt = vcpu->arch.write_fault_to_shadow_pgtable;
5211

5212 5213 5214 5215 5216
	/*
	 * Clear write_fault_to_shadow_pgtable here to ensure it is
	 * never reused.
	 */
	vcpu->arch.write_fault_to_shadow_pgtable = false;
5217
	kvm_clear_exception_queue(vcpu);
G
Gleb Natapov 已提交
5218

5219
	if (!(emulation_type & EMULTYPE_NO_DECODE)) {
5220
		init_emulate_ctxt(vcpu);
5221 5222 5223 5224 5225 5226 5227 5228 5229 5230

		/*
		 * We will reenter on the same instruction since
		 * we do not set complete_userspace_io.  This does not
		 * handle watchpoints yet, those would be handled in
		 * the emulate_ops.
		 */
		if (kvm_vcpu_check_breakpoint(vcpu, &r))
			return r;

5231 5232 5233
		ctxt->interruptibility = 0;
		ctxt->have_exception = false;
		ctxt->perm_ok = false;
5234

5235
		ctxt->ud = emulation_type & EMULTYPE_TRAP_UD;
5236

5237
		r = x86_decode_insn(ctxt, insn, insn_len);
5238

A
Avi Kivity 已提交
5239
		trace_kvm_emulate_insn_start(vcpu);
5240
		++vcpu->stat.insn_emulation;
5241
		if (r != EMULATION_OK)  {
5242 5243
			if (emulation_type & EMULTYPE_TRAP_UD)
				return EMULATE_FAIL;
5244 5245
			if (reexecute_instruction(vcpu, cr2, write_fault_to_spt,
						emulation_type))
5246
				return EMULATE_DONE;
5247 5248 5249
			if (emulation_type & EMULTYPE_SKIP)
				return EMULATE_FAIL;
			return handle_emulation_failure(vcpu);
5250 5251 5252
		}
	}

5253
	if (emulation_type & EMULTYPE_SKIP) {
5254
		kvm_rip_write(vcpu, ctxt->_eip);
5255 5256
		if (ctxt->eflags & X86_EFLAGS_RF)
			kvm_set_rflags(vcpu, ctxt->eflags & ~X86_EFLAGS_RF);
5257 5258 5259
		return EMULATE_DONE;
	}

5260 5261 5262
	if (retry_instruction(ctxt, cr2, emulation_type))
		return EMULATE_DONE;

5263
	/* this is needed for vmware backdoor interface to work since it
5264
	   changes registers values  during IO operation */
5265 5266
	if (vcpu->arch.emulate_regs_need_sync_from_vcpu) {
		vcpu->arch.emulate_regs_need_sync_from_vcpu = false;
5267
		emulator_invalidate_register_cache(ctxt);
5268
	}
5269

5270
restart:
5271
	r = x86_emulate_insn(ctxt);
5272

5273 5274 5275
	if (r == EMULATION_INTERCEPTED)
		return EMULATE_DONE;

5276
	if (r == EMULATION_FAILED) {
5277 5278
		if (reexecute_instruction(vcpu, cr2, write_fault_to_spt,
					emulation_type))
5279 5280
			return EMULATE_DONE;

5281
		return handle_emulation_failure(vcpu);
5282 5283
	}

5284
	if (ctxt->have_exception) {
5285
		inject_emulated_exception(vcpu);
5286 5287
		r = EMULATE_DONE;
	} else if (vcpu->arch.pio.count) {
5288 5289
		if (!vcpu->arch.pio.in) {
			/* FIXME: return into emulator if single-stepping.  */
5290
			vcpu->arch.pio.count = 0;
5291
		} else {
5292
			writeback = false;
5293 5294
			vcpu->arch.complete_userspace_io = complete_emulated_pio;
		}
P
Paolo Bonzini 已提交
5295
		r = EMULATE_USER_EXIT;
5296 5297 5298
	} else if (vcpu->mmio_needed) {
		if (!vcpu->mmio_is_write)
			writeback = false;
P
Paolo Bonzini 已提交
5299
		r = EMULATE_USER_EXIT;
5300
		vcpu->arch.complete_userspace_io = complete_emulated_mmio;
5301
	} else if (r == EMULATION_RESTART)
5302
		goto restart;
5303 5304
	else
		r = EMULATE_DONE;
5305

5306
	if (writeback) {
5307
		unsigned long rflags = kvm_x86_ops->get_rflags(vcpu);
5308
		toggle_interruptibility(vcpu, ctxt->interruptibility);
5309
		vcpu->arch.emulate_regs_need_sync_to_vcpu = false;
5310
		kvm_rip_write(vcpu, ctxt->eip);
5311
		if (r == EMULATE_DONE)
5312 5313 5314 5315 5316 5317 5318 5319 5320 5321 5322
			kvm_vcpu_check_singlestep(vcpu, rflags, &r);
		__kvm_set_rflags(vcpu, ctxt->eflags);

		/*
		 * For STI, interrupts are shadowed; so KVM_REQ_EVENT will
		 * do nothing, and it will be requested again as soon as
		 * the shadow expires.  But we still need to check here,
		 * because POPF has no interrupt shadow.
		 */
		if (unlikely((ctxt->eflags & ~rflags) & X86_EFLAGS_IF))
			kvm_make_request(KVM_REQ_EVENT, vcpu);
5323 5324
	} else
		vcpu->arch.emulate_regs_need_sync_to_vcpu = true;
5325 5326

	return r;
5327
}
5328
EXPORT_SYMBOL_GPL(x86_emulate_instruction);
5329

5330
int kvm_fast_pio_out(struct kvm_vcpu *vcpu, int size, unsigned short port)
5331
{
5332
	unsigned long val = kvm_register_read(vcpu, VCPU_REGS_RAX);
5333 5334
	int ret = emulator_pio_out_emulated(&vcpu->arch.emulate_ctxt,
					    size, port, &val, 1);
5335
	/* do not return to emulator after return from userspace */
5336
	vcpu->arch.pio.count = 0;
5337 5338
	return ret;
}
5339
EXPORT_SYMBOL_GPL(kvm_fast_pio_out);
5340

5341 5342
static void tsc_bad(void *info)
{
T
Tejun Heo 已提交
5343
	__this_cpu_write(cpu_tsc_khz, 0);
5344 5345 5346
}

static void tsc_khz_changed(void *data)
5347
{
5348 5349 5350 5351 5352 5353 5354 5355 5356
	struct cpufreq_freqs *freq = data;
	unsigned long khz = 0;

	if (data)
		khz = freq->new;
	else if (!boot_cpu_has(X86_FEATURE_CONSTANT_TSC))
		khz = cpufreq_quick_get(raw_smp_processor_id());
	if (!khz)
		khz = tsc_khz;
T
Tejun Heo 已提交
5357
	__this_cpu_write(cpu_tsc_khz, khz);
5358 5359 5360 5361 5362 5363 5364 5365 5366 5367
}

static int kvmclock_cpufreq_notifier(struct notifier_block *nb, unsigned long val,
				     void *data)
{
	struct cpufreq_freqs *freq = data;
	struct kvm *kvm;
	struct kvm_vcpu *vcpu;
	int i, send_ipi = 0;

5368 5369 5370 5371 5372 5373 5374 5375 5376 5377 5378 5379 5380 5381 5382 5383 5384 5385 5386 5387 5388 5389 5390 5391 5392 5393 5394 5395 5396 5397 5398 5399 5400 5401 5402 5403 5404 5405 5406
	/*
	 * We allow guests to temporarily run on slowing clocks,
	 * provided we notify them after, or to run on accelerating
	 * clocks, provided we notify them before.  Thus time never
	 * goes backwards.
	 *
	 * However, we have a problem.  We can't atomically update
	 * the frequency of a given CPU from this function; it is
	 * merely a notifier, which can be called from any CPU.
	 * Changing the TSC frequency at arbitrary points in time
	 * requires a recomputation of local variables related to
	 * the TSC for each VCPU.  We must flag these local variables
	 * to be updated and be sure the update takes place with the
	 * new frequency before any guests proceed.
	 *
	 * Unfortunately, the combination of hotplug CPU and frequency
	 * change creates an intractable locking scenario; the order
	 * of when these callouts happen is undefined with respect to
	 * CPU hotplug, and they can race with each other.  As such,
	 * merely setting per_cpu(cpu_tsc_khz) = X during a hotadd is
	 * undefined; you can actually have a CPU frequency change take
	 * place in between the computation of X and the setting of the
	 * variable.  To protect against this problem, all updates of
	 * the per_cpu tsc_khz variable are done in an interrupt
	 * protected IPI, and all callers wishing to update the value
	 * must wait for a synchronous IPI to complete (which is trivial
	 * if the caller is on the CPU already).  This establishes the
	 * necessary total order on variable updates.
	 *
	 * Note that because a guest time update may take place
	 * anytime after the setting of the VCPU's request bit, the
	 * correct TSC value must be set before the request.  However,
	 * to ensure the update actually makes it to any guest which
	 * starts running in hardware virtualization between the set
	 * and the acquisition of the spinlock, we must also ping the
	 * CPU after setting the request bit.
	 *
	 */

5407 5408 5409 5410
	if (val == CPUFREQ_PRECHANGE && freq->old > freq->new)
		return 0;
	if (val == CPUFREQ_POSTCHANGE && freq->old < freq->new)
		return 0;
5411 5412

	smp_call_function_single(freq->cpu, tsc_khz_changed, freq, 1);
5413

5414
	spin_lock(&kvm_lock);
5415
	list_for_each_entry(kvm, &vm_list, vm_list) {
5416
		kvm_for_each_vcpu(i, vcpu, kvm) {
5417 5418
			if (vcpu->cpu != freq->cpu)
				continue;
Z
Zachary Amsden 已提交
5419
			kvm_make_request(KVM_REQ_CLOCK_UPDATE, vcpu);
5420
			if (vcpu->cpu != smp_processor_id())
5421
				send_ipi = 1;
5422 5423
		}
	}
5424
	spin_unlock(&kvm_lock);
5425 5426 5427 5428 5429 5430 5431 5432 5433 5434 5435 5436 5437 5438

	if (freq->old < freq->new && send_ipi) {
		/*
		 * We upscale the frequency.  Must make the guest
		 * doesn't see old kvmclock values while running with
		 * the new frequency, otherwise we risk the guest sees
		 * time go backwards.
		 *
		 * In case we update the frequency for another cpu
		 * (which might be in guest context) send an interrupt
		 * to kick the cpu out of guest context.  Next time
		 * guest context is entered kvmclock will be updated,
		 * so the guest will not see stale values.
		 */
5439
		smp_call_function_single(freq->cpu, tsc_khz_changed, freq, 1);
5440 5441 5442 5443 5444
	}
	return 0;
}

static struct notifier_block kvmclock_cpufreq_notifier_block = {
5445 5446 5447 5448 5449 5450 5451 5452 5453 5454 5455 5456 5457 5458 5459 5460 5461 5462 5463 5464 5465 5466 5467
	.notifier_call  = kvmclock_cpufreq_notifier
};

static int kvmclock_cpu_notifier(struct notifier_block *nfb,
					unsigned long action, void *hcpu)
{
	unsigned int cpu = (unsigned long)hcpu;

	switch (action) {
		case CPU_ONLINE:
		case CPU_DOWN_FAILED:
			smp_call_function_single(cpu, tsc_khz_changed, NULL, 1);
			break;
		case CPU_DOWN_PREPARE:
			smp_call_function_single(cpu, tsc_bad, NULL, 1);
			break;
	}
	return NOTIFY_OK;
}

static struct notifier_block kvmclock_cpu_notifier_block = {
	.notifier_call  = kvmclock_cpu_notifier,
	.priority = -INT_MAX
5468 5469
};

5470 5471 5472 5473
static void kvm_timer_init(void)
{
	int cpu;

Z
Zachary Amsden 已提交
5474
	max_tsc_khz = tsc_khz;
5475 5476

	cpu_notifier_register_begin();
5477
	if (!boot_cpu_has(X86_FEATURE_CONSTANT_TSC)) {
Z
Zachary Amsden 已提交
5478 5479 5480
#ifdef CONFIG_CPU_FREQ
		struct cpufreq_policy policy;
		memset(&policy, 0, sizeof(policy));
5481 5482
		cpu = get_cpu();
		cpufreq_get_policy(&policy, cpu);
Z
Zachary Amsden 已提交
5483 5484
		if (policy.cpuinfo.max_freq)
			max_tsc_khz = policy.cpuinfo.max_freq;
5485
		put_cpu();
Z
Zachary Amsden 已提交
5486
#endif
5487 5488 5489
		cpufreq_register_notifier(&kvmclock_cpufreq_notifier_block,
					  CPUFREQ_TRANSITION_NOTIFIER);
	}
Z
Zachary Amsden 已提交
5490
	pr_debug("kvm: max_tsc_khz = %ld\n", max_tsc_khz);
5491 5492
	for_each_online_cpu(cpu)
		smp_call_function_single(cpu, tsc_khz_changed, NULL, 1);
5493 5494 5495 5496

	__register_hotcpu_notifier(&kvmclock_cpu_notifier_block);
	cpu_notifier_register_done();

5497 5498
}

5499 5500
static DEFINE_PER_CPU(struct kvm_vcpu *, current_vcpu);

5501
int kvm_is_in_guest(void)
5502
{
5503
	return __this_cpu_read(current_vcpu) != NULL;
5504 5505 5506 5507 5508
}

static int kvm_is_user_mode(void)
{
	int user_mode = 3;
5509

5510 5511
	if (__this_cpu_read(current_vcpu))
		user_mode = kvm_x86_ops->get_cpl(__this_cpu_read(current_vcpu));
5512

5513 5514 5515 5516 5517 5518
	return user_mode != 0;
}

static unsigned long kvm_get_guest_ip(void)
{
	unsigned long ip = 0;
5519

5520 5521
	if (__this_cpu_read(current_vcpu))
		ip = kvm_rip_read(__this_cpu_read(current_vcpu));
5522

5523 5524 5525 5526 5527 5528 5529 5530 5531 5532 5533
	return ip;
}

static struct perf_guest_info_callbacks kvm_guest_cbs = {
	.is_in_guest		= kvm_is_in_guest,
	.is_user_mode		= kvm_is_user_mode,
	.get_guest_ip		= kvm_get_guest_ip,
};

void kvm_before_handle_nmi(struct kvm_vcpu *vcpu)
{
5534
	__this_cpu_write(current_vcpu, vcpu);
5535 5536 5537 5538 5539
}
EXPORT_SYMBOL_GPL(kvm_before_handle_nmi);

void kvm_after_handle_nmi(struct kvm_vcpu *vcpu)
{
5540
	__this_cpu_write(current_vcpu, NULL);
5541 5542 5543
}
EXPORT_SYMBOL_GPL(kvm_after_handle_nmi);

5544 5545 5546 5547 5548 5549 5550 5551 5552
static void kvm_set_mmio_spte_mask(void)
{
	u64 mask;
	int maxphyaddr = boot_cpu_data.x86_phys_bits;

	/*
	 * Set the reserved bits and the present bit of an paging-structure
	 * entry to generate page fault with PFER.RSV = 1.
	 */
5553 5554 5555 5556 5557 5558 5559
	 /* Mask the reserved physical address bits. */
	mask = ((1ull << (51 - maxphyaddr + 1)) - 1) << maxphyaddr;

	/* Bit 62 is always reserved for 32bit host. */
	mask |= 0x3ull << 62;

	/* Set the present bit. */
5560 5561 5562 5563 5564 5565 5566 5567 5568 5569 5570 5571 5572 5573
	mask |= 1ull;

#ifdef CONFIG_X86_64
	/*
	 * If reserved bit is not supported, clear the present bit to disable
	 * mmio page fault.
	 */
	if (maxphyaddr == 52)
		mask &= ~1ull;
#endif

	kvm_mmu_set_mmio_spte_mask(mask);
}

5574 5575 5576
#ifdef CONFIG_X86_64
static void pvclock_gtod_update_fn(struct work_struct *work)
{
5577 5578 5579 5580 5581
	struct kvm *kvm;

	struct kvm_vcpu *vcpu;
	int i;

5582
	spin_lock(&kvm_lock);
5583 5584 5585 5586
	list_for_each_entry(kvm, &vm_list, vm_list)
		kvm_for_each_vcpu(i, vcpu, kvm)
			set_bit(KVM_REQ_MASTERCLOCK_UPDATE, &vcpu->requests);
	atomic_set(&kvm_guest_has_master_clock, 0);
5587
	spin_unlock(&kvm_lock);
5588 5589 5590 5591 5592 5593 5594 5595 5596 5597 5598 5599 5600 5601 5602 5603 5604 5605 5606 5607 5608 5609 5610 5611 5612 5613 5614 5615 5616 5617
}

static DECLARE_WORK(pvclock_gtod_work, pvclock_gtod_update_fn);

/*
 * Notification about pvclock gtod data update.
 */
static int pvclock_gtod_notify(struct notifier_block *nb, unsigned long unused,
			       void *priv)
{
	struct pvclock_gtod_data *gtod = &pvclock_gtod_data;
	struct timekeeper *tk = priv;

	update_pvclock_gtod(tk);

	/* disable master clock if host does not trust, or does not
	 * use, TSC clocksource
	 */
	if (gtod->clock.vclock_mode != VCLOCK_TSC &&
	    atomic_read(&kvm_guest_has_master_clock) != 0)
		queue_work(system_long_wq, &pvclock_gtod_work);

	return 0;
}

static struct notifier_block pvclock_gtod_notifier = {
	.notifier_call = pvclock_gtod_notify,
};
#endif

5618
int kvm_arch_init(void *opaque)
5619
{
5620
	int r;
M
Mathias Krause 已提交
5621
	struct kvm_x86_ops *ops = opaque;
5622 5623 5624

	if (kvm_x86_ops) {
		printk(KERN_ERR "kvm: already loaded the other module\n");
5625 5626
		r = -EEXIST;
		goto out;
5627 5628 5629 5630
	}

	if (!ops->cpu_has_kvm_support()) {
		printk(KERN_ERR "kvm: no hardware support\n");
5631 5632
		r = -EOPNOTSUPP;
		goto out;
5633 5634 5635
	}
	if (ops->disabled_by_bios()) {
		printk(KERN_ERR "kvm: disabled by bios\n");
5636 5637
		r = -EOPNOTSUPP;
		goto out;
5638 5639
	}

5640 5641 5642 5643 5644 5645 5646
	r = -ENOMEM;
	shared_msrs = alloc_percpu(struct kvm_shared_msrs);
	if (!shared_msrs) {
		printk(KERN_ERR "kvm: failed to allocate percpu kvm_shared_msrs\n");
		goto out;
	}

5647 5648
	r = kvm_mmu_module_init();
	if (r)
5649
		goto out_free_percpu;
5650

5651
	kvm_set_mmio_spte_mask();
5652

5653
	kvm_x86_ops = ops;
P
Paolo Bonzini 已提交
5654 5655
	kvm_init_msr_list();

S
Sheng Yang 已提交
5656
	kvm_mmu_set_mask_ptes(PT_USER_MASK, PT_ACCESSED_MASK,
5657
			PT_DIRTY_MASK, PT64_NX_MASK, 0);
5658

5659
	kvm_timer_init();
5660

5661 5662
	perf_register_guest_info_callbacks(&kvm_guest_cbs);

5663 5664 5665
	if (cpu_has_xsave)
		host_xcr0 = xgetbv(XCR_XFEATURE_ENABLED_MASK);

5666
	kvm_lapic_init();
5667 5668 5669 5670
#ifdef CONFIG_X86_64
	pvclock_gtod_register_notifier(&pvclock_gtod_notifier);
#endif

5671
	return 0;
5672

5673 5674
out_free_percpu:
	free_percpu(shared_msrs);
5675 5676
out:
	return r;
5677
}
5678

5679 5680
void kvm_arch_exit(void)
{
5681 5682
	perf_unregister_guest_info_callbacks(&kvm_guest_cbs);

5683 5684 5685
	if (!boot_cpu_has(X86_FEATURE_CONSTANT_TSC))
		cpufreq_unregister_notifier(&kvmclock_cpufreq_notifier_block,
					    CPUFREQ_TRANSITION_NOTIFIER);
5686
	unregister_hotcpu_notifier(&kvmclock_cpu_notifier_block);
5687 5688 5689
#ifdef CONFIG_X86_64
	pvclock_gtod_unregister_notifier(&pvclock_gtod_notifier);
#endif
5690
	kvm_x86_ops = NULL;
5691
	kvm_mmu_module_exit();
5692
	free_percpu(shared_msrs);
5693
}
5694

5695 5696 5697 5698
int kvm_emulate_halt(struct kvm_vcpu *vcpu)
{
	++vcpu->stat.halt_exits;
	if (irqchip_in_kernel(vcpu->kvm)) {
5699
		vcpu->arch.mp_state = KVM_MP_STATE_HALTED;
5700 5701 5702 5703 5704 5705 5706 5707
		return 1;
	} else {
		vcpu->run->exit_reason = KVM_EXIT_HLT;
		return 0;
	}
}
EXPORT_SYMBOL_GPL(kvm_emulate_halt);

5708 5709 5710 5711 5712 5713 5714 5715 5716 5717
int kvm_hv_hypercall(struct kvm_vcpu *vcpu)
{
	u64 param, ingpa, outgpa, ret;
	uint16_t code, rep_idx, rep_cnt, res = HV_STATUS_SUCCESS, rep_done = 0;
	bool fast, longmode;

	/*
	 * hypercall generates UD from non zero cpl and real mode
	 * per HYPER-V spec
	 */
5718
	if (kvm_x86_ops->get_cpl(vcpu) != 0 || !is_protmode(vcpu)) {
5719 5720 5721 5722
		kvm_queue_exception(vcpu, UD_VECTOR);
		return 0;
	}

5723
	longmode = is_64_bit_mode(vcpu);
5724 5725

	if (!longmode) {
5726 5727 5728 5729 5730 5731
		param = ((u64)kvm_register_read(vcpu, VCPU_REGS_RDX) << 32) |
			(kvm_register_read(vcpu, VCPU_REGS_RAX) & 0xffffffff);
		ingpa = ((u64)kvm_register_read(vcpu, VCPU_REGS_RBX) << 32) |
			(kvm_register_read(vcpu, VCPU_REGS_RCX) & 0xffffffff);
		outgpa = ((u64)kvm_register_read(vcpu, VCPU_REGS_RDI) << 32) |
			(kvm_register_read(vcpu, VCPU_REGS_RSI) & 0xffffffff);
5732 5733 5734 5735 5736 5737 5738 5739 5740 5741 5742 5743 5744 5745 5746 5747
	}
#ifdef CONFIG_X86_64
	else {
		param = kvm_register_read(vcpu, VCPU_REGS_RCX);
		ingpa = kvm_register_read(vcpu, VCPU_REGS_RDX);
		outgpa = kvm_register_read(vcpu, VCPU_REGS_R8);
	}
#endif

	code = param & 0xffff;
	fast = (param >> 16) & 0x1;
	rep_cnt = (param >> 32) & 0xfff;
	rep_idx = (param >> 48) & 0xfff;

	trace_kvm_hv_hypercall(code, fast, rep_cnt, rep_idx, ingpa, outgpa);

5748 5749 5750 5751 5752 5753 5754 5755
	switch (code) {
	case HV_X64_HV_NOTIFY_LONG_SPIN_WAIT:
		kvm_vcpu_on_spin(vcpu);
		break;
	default:
		res = HV_STATUS_INVALID_HYPERCALL_CODE;
		break;
	}
5756 5757 5758 5759 5760 5761 5762 5763 5764 5765 5766 5767

	ret = res | (((u64)rep_done & 0xfff) << 32);
	if (longmode) {
		kvm_register_write(vcpu, VCPU_REGS_RAX, ret);
	} else {
		kvm_register_write(vcpu, VCPU_REGS_RDX, ret >> 32);
		kvm_register_write(vcpu, VCPU_REGS_RAX, ret & 0xffffffff);
	}

	return 1;
}

5768 5769 5770 5771 5772 5773 5774
/*
 * kvm_pv_kick_cpu_op:  Kick a vcpu.
 *
 * @apicid - apicid of vcpu to be kicked.
 */
static void kvm_pv_kick_cpu_op(struct kvm *kvm, unsigned long flags, int apicid)
{
5775
	struct kvm_lapic_irq lapic_irq;
5776

5777 5778 5779
	lapic_irq.shorthand = 0;
	lapic_irq.dest_mode = 0;
	lapic_irq.dest_id = apicid;
5780

5781 5782
	lapic_irq.delivery_mode = APIC_DM_REMRD;
	kvm_irq_delivery_to_apic(kvm, 0, &lapic_irq, NULL);
5783 5784
}

5785 5786 5787
int kvm_emulate_hypercall(struct kvm_vcpu *vcpu)
{
	unsigned long nr, a0, a1, a2, a3, ret;
5788
	int op_64_bit, r = 1;
5789

5790 5791 5792
	if (kvm_hv_hypercall_enabled(vcpu->kvm))
		return kvm_hv_hypercall(vcpu);

5793 5794 5795 5796 5797
	nr = kvm_register_read(vcpu, VCPU_REGS_RAX);
	a0 = kvm_register_read(vcpu, VCPU_REGS_RBX);
	a1 = kvm_register_read(vcpu, VCPU_REGS_RCX);
	a2 = kvm_register_read(vcpu, VCPU_REGS_RDX);
	a3 = kvm_register_read(vcpu, VCPU_REGS_RSI);
5798

5799
	trace_kvm_hypercall(nr, a0, a1, a2, a3);
F
Feng (Eric) Liu 已提交
5800

5801 5802
	op_64_bit = is_64_bit_mode(vcpu);
	if (!op_64_bit) {
5803 5804 5805 5806 5807 5808 5809
		nr &= 0xFFFFFFFF;
		a0 &= 0xFFFFFFFF;
		a1 &= 0xFFFFFFFF;
		a2 &= 0xFFFFFFFF;
		a3 &= 0xFFFFFFFF;
	}

5810 5811 5812 5813 5814
	if (kvm_x86_ops->get_cpl(vcpu) != 0) {
		ret = -KVM_EPERM;
		goto out;
	}

5815
	switch (nr) {
A
Avi Kivity 已提交
5816 5817 5818
	case KVM_HC_VAPIC_POLL_IRQ:
		ret = 0;
		break;
5819 5820 5821 5822
	case KVM_HC_KICK_CPU:
		kvm_pv_kick_cpu_op(vcpu->kvm, a0, a1);
		ret = 0;
		break;
5823 5824 5825 5826
	default:
		ret = -KVM_ENOSYS;
		break;
	}
5827
out:
5828 5829
	if (!op_64_bit)
		ret = (u32)ret;
5830
	kvm_register_write(vcpu, VCPU_REGS_RAX, ret);
A
Amit Shah 已提交
5831
	++vcpu->stat.hypercalls;
5832
	return r;
5833 5834 5835
}
EXPORT_SYMBOL_GPL(kvm_emulate_hypercall);

5836
static int emulator_fix_hypercall(struct x86_emulate_ctxt *ctxt)
5837
{
5838
	struct kvm_vcpu *vcpu = emul_to_vcpu(ctxt);
5839
	char instruction[3];
5840
	unsigned long rip = kvm_rip_read(vcpu);
5841 5842 5843

	kvm_x86_ops->patch_hypercall(vcpu, instruction);

5844
	return emulator_write_emulated(ctxt, rip, instruction, 3, NULL);
5845 5846
}

5847 5848 5849 5850 5851 5852
/*
 * Check if userspace requested an interrupt window, and that the
 * interrupt window is open.
 *
 * No need to exit to userspace if we already have an interrupt queued.
 */
A
Avi Kivity 已提交
5853
static int dm_request_for_irq_injection(struct kvm_vcpu *vcpu)
5854
{
5855
	return (!irqchip_in_kernel(vcpu->kvm) && !kvm_cpu_has_interrupt(vcpu) &&
A
Avi Kivity 已提交
5856
		vcpu->run->request_interrupt_window &&
5857
		kvm_arch_interrupt_allowed(vcpu));
5858 5859
}

A
Avi Kivity 已提交
5860
static void post_kvm_run_save(struct kvm_vcpu *vcpu)
5861
{
A
Avi Kivity 已提交
5862 5863
	struct kvm_run *kvm_run = vcpu->run;

5864
	kvm_run->if_flag = (kvm_get_rflags(vcpu) & X86_EFLAGS_IF) != 0;
5865
	kvm_run->cr8 = kvm_get_cr8(vcpu);
5866
	kvm_run->apic_base = kvm_get_apic_base(vcpu);
5867
	if (irqchip_in_kernel(vcpu->kvm))
5868
		kvm_run->ready_for_interrupt_injection = 1;
5869
	else
5870
		kvm_run->ready_for_interrupt_injection =
5871 5872 5873
			kvm_arch_interrupt_allowed(vcpu) &&
			!kvm_cpu_has_interrupt(vcpu) &&
			!kvm_event_needs_reinjection(vcpu);
5874 5875
}

5876 5877 5878 5879 5880 5881 5882
static void update_cr8_intercept(struct kvm_vcpu *vcpu)
{
	int max_irr, tpr;

	if (!kvm_x86_ops->update_cr8_intercept)
		return;

5883 5884 5885
	if (!vcpu->arch.apic)
		return;

5886 5887 5888 5889
	if (!vcpu->arch.apic->vapic_addr)
		max_irr = kvm_lapic_find_highest_irr(vcpu);
	else
		max_irr = -1;
5890 5891 5892 5893 5894 5895 5896 5897 5898

	if (max_irr != -1)
		max_irr >>= 4;

	tpr = kvm_lapic_get_cr8(vcpu);

	kvm_x86_ops->update_cr8_intercept(vcpu, tpr, max_irr);
}

5899
static int inject_pending_event(struct kvm_vcpu *vcpu, bool req_int_win)
5900
{
5901 5902
	int r;

5903
	/* try to reinject previous events if any */
5904
	if (vcpu->arch.exception.pending) {
A
Avi Kivity 已提交
5905 5906 5907
		trace_kvm_inj_exception(vcpu->arch.exception.nr,
					vcpu->arch.exception.has_error_code,
					vcpu->arch.exception.error_code);
5908 5909 5910 5911 5912

		if (exception_type(vcpu->arch.exception.nr) == EXCPT_FAULT)
			__kvm_set_rflags(vcpu, kvm_get_rflags(vcpu) |
					     X86_EFLAGS_RF);

5913 5914
		kvm_x86_ops->queue_exception(vcpu, vcpu->arch.exception.nr,
					  vcpu->arch.exception.has_error_code,
5915 5916
					  vcpu->arch.exception.error_code,
					  vcpu->arch.exception.reinject);
5917
		return 0;
5918 5919
	}

5920 5921
	if (vcpu->arch.nmi_injected) {
		kvm_x86_ops->set_nmi(vcpu);
5922
		return 0;
5923 5924 5925
	}

	if (vcpu->arch.interrupt.pending) {
5926
		kvm_x86_ops->set_irq(vcpu);
5927 5928 5929 5930 5931 5932 5933
		return 0;
	}

	if (is_guest_mode(vcpu) && kvm_x86_ops->check_nested_events) {
		r = kvm_x86_ops->check_nested_events(vcpu, req_int_win);
		if (r != 0)
			return r;
5934 5935 5936 5937 5938
	}

	/* try to inject new event if pending */
	if (vcpu->arch.nmi_pending) {
		if (kvm_x86_ops->nmi_allowed(vcpu)) {
A
Avi Kivity 已提交
5939
			--vcpu->arch.nmi_pending;
5940 5941 5942
			vcpu->arch.nmi_injected = true;
			kvm_x86_ops->set_nmi(vcpu);
		}
5943
	} else if (kvm_cpu_has_injectable_intr(vcpu)) {
5944 5945 5946 5947 5948 5949 5950 5951 5952 5953 5954 5955
		/*
		 * Because interrupts can be injected asynchronously, we are
		 * calling check_nested_events again here to avoid a race condition.
		 * See https://lkml.org/lkml/2014/7/2/60 for discussion about this
		 * proposal and current concerns.  Perhaps we should be setting
		 * KVM_REQ_EVENT only on certain events and not unconditionally?
		 */
		if (is_guest_mode(vcpu) && kvm_x86_ops->check_nested_events) {
			r = kvm_x86_ops->check_nested_events(vcpu, req_int_win);
			if (r != 0)
				return r;
		}
5956
		if (kvm_x86_ops->interrupt_allowed(vcpu)) {
5957 5958 5959
			kvm_queue_interrupt(vcpu, kvm_cpu_get_interrupt(vcpu),
					    false);
			kvm_x86_ops->set_irq(vcpu);
5960 5961
		}
	}
5962
	return 0;
5963 5964
}

A
Avi Kivity 已提交
5965 5966 5967 5968 5969 5970 5971 5972 5973 5974 5975 5976 5977 5978 5979 5980 5981
static void process_nmi(struct kvm_vcpu *vcpu)
{
	unsigned limit = 2;

	/*
	 * x86 is limited to one NMI running, and one NMI pending after it.
	 * If an NMI is already in progress, limit further NMIs to just one.
	 * Otherwise, allow two (and we'll inject the first one immediately).
	 */
	if (kvm_x86_ops->get_nmi_mask(vcpu) || vcpu->arch.nmi_injected)
		limit = 1;

	vcpu->arch.nmi_pending += atomic_xchg(&vcpu->arch.nmi_queued, 0);
	vcpu->arch.nmi_pending = min(vcpu->arch.nmi_pending, limit);
	kvm_make_request(KVM_REQ_EVENT, vcpu);
}

5982
static void vcpu_scan_ioapic(struct kvm_vcpu *vcpu)
5983 5984
{
	u64 eoi_exit_bitmap[4];
5985
	u32 tmr[8];
5986

5987 5988
	if (!kvm_apic_hw_enabled(vcpu->arch.apic))
		return;
5989 5990

	memset(eoi_exit_bitmap, 0, 32);
5991
	memset(tmr, 0, 32);
5992

5993
	kvm_ioapic_scan_entry(vcpu, eoi_exit_bitmap, tmr);
5994
	kvm_x86_ops->load_eoi_exitmap(vcpu, eoi_exit_bitmap);
5995
	kvm_apic_update_tmr(vcpu, tmr);
5996 5997
}

5998 5999 6000 6001 6002
/*
 * Returns 1 to let __vcpu_run() continue the guest execution loop without
 * exiting to the userspace.  Otherwise, the value will be returned to the
 * userspace.
 */
A
Avi Kivity 已提交
6003
static int vcpu_enter_guest(struct kvm_vcpu *vcpu)
6004 6005
{
	int r;
6006
	bool req_int_win = !irqchip_in_kernel(vcpu->kvm) &&
A
Avi Kivity 已提交
6007
		vcpu->run->request_interrupt_window;
6008
	bool req_immediate_exit = false;
6009

6010
	if (vcpu->requests) {
6011
		if (kvm_check_request(KVM_REQ_MMU_RELOAD, vcpu))
6012
			kvm_mmu_unload(vcpu);
6013
		if (kvm_check_request(KVM_REQ_MIGRATE_TIMER, vcpu))
M
Marcelo Tosatti 已提交
6014
			__kvm_migrate_timers(vcpu);
6015 6016
		if (kvm_check_request(KVM_REQ_MASTERCLOCK_UPDATE, vcpu))
			kvm_gen_update_masterclock(vcpu->kvm);
6017 6018
		if (kvm_check_request(KVM_REQ_GLOBAL_CLOCK_UPDATE, vcpu))
			kvm_gen_kvmclock_update(vcpu);
Z
Zachary Amsden 已提交
6019 6020
		if (kvm_check_request(KVM_REQ_CLOCK_UPDATE, vcpu)) {
			r = kvm_guest_time_update(vcpu);
6021 6022 6023
			if (unlikely(r))
				goto out;
		}
6024
		if (kvm_check_request(KVM_REQ_MMU_SYNC, vcpu))
6025
			kvm_mmu_sync_roots(vcpu);
6026
		if (kvm_check_request(KVM_REQ_TLB_FLUSH, vcpu))
6027
			kvm_x86_ops->tlb_flush(vcpu);
6028
		if (kvm_check_request(KVM_REQ_REPORT_TPR_ACCESS, vcpu)) {
A
Avi Kivity 已提交
6029
			vcpu->run->exit_reason = KVM_EXIT_TPR_ACCESS;
A
Avi Kivity 已提交
6030 6031 6032
			r = 0;
			goto out;
		}
6033
		if (kvm_check_request(KVM_REQ_TRIPLE_FAULT, vcpu)) {
A
Avi Kivity 已提交
6034
			vcpu->run->exit_reason = KVM_EXIT_SHUTDOWN;
J
Joerg Roedel 已提交
6035 6036 6037
			r = 0;
			goto out;
		}
6038
		if (kvm_check_request(KVM_REQ_DEACTIVATE_FPU, vcpu)) {
6039 6040 6041
			vcpu->fpu_active = 0;
			kvm_x86_ops->fpu_deactivate(vcpu);
		}
6042 6043 6044 6045 6046 6047
		if (kvm_check_request(KVM_REQ_APF_HALT, vcpu)) {
			/* Page is swapped out. Do synthetic halt */
			vcpu->arch.apf.halted = true;
			r = 1;
			goto out;
		}
G
Glauber Costa 已提交
6048 6049
		if (kvm_check_request(KVM_REQ_STEAL_UPDATE, vcpu))
			record_steal_time(vcpu);
A
Avi Kivity 已提交
6050 6051
		if (kvm_check_request(KVM_REQ_NMI, vcpu))
			process_nmi(vcpu);
6052 6053 6054 6055
		if (kvm_check_request(KVM_REQ_PMU, vcpu))
			kvm_handle_pmu_event(vcpu);
		if (kvm_check_request(KVM_REQ_PMI, vcpu))
			kvm_deliver_pmi(vcpu);
6056 6057
		if (kvm_check_request(KVM_REQ_SCAN_IOAPIC, vcpu))
			vcpu_scan_ioapic(vcpu);
6058
	}
A
Avi Kivity 已提交
6059

A
Avi Kivity 已提交
6060
	if (kvm_check_request(KVM_REQ_EVENT, vcpu) || req_int_win) {
6061 6062 6063 6064 6065 6066
		kvm_apic_accept_events(vcpu);
		if (vcpu->arch.mp_state == KVM_MP_STATE_INIT_RECEIVED) {
			r = 1;
			goto out;
		}

6067 6068
		if (inject_pending_event(vcpu, req_int_win) != 0)
			req_immediate_exit = true;
A
Avi Kivity 已提交
6069
		/* enable NMI/IRQ window open exits if needed */
6070
		else if (vcpu->arch.nmi_pending)
6071
			kvm_x86_ops->enable_nmi_window(vcpu);
6072
		else if (kvm_cpu_has_injectable_intr(vcpu) || req_int_win)
6073
			kvm_x86_ops->enable_irq_window(vcpu);
A
Avi Kivity 已提交
6074 6075

		if (kvm_lapic_enabled(vcpu)) {
6076 6077 6078 6079 6080 6081 6082
			/*
			 * Update architecture specific hints for APIC
			 * virtual interrupt delivery.
			 */
			if (kvm_x86_ops->hwapic_irr_update)
				kvm_x86_ops->hwapic_irr_update(vcpu,
					kvm_lapic_find_highest_irr(vcpu));
A
Avi Kivity 已提交
6083 6084 6085 6086 6087
			update_cr8_intercept(vcpu);
			kvm_lapic_sync_to_vapic(vcpu);
		}
	}

6088 6089
	r = kvm_mmu_reload(vcpu);
	if (unlikely(r)) {
6090
		goto cancel_injection;
6091 6092
	}

6093 6094 6095
	preempt_disable();

	kvm_x86_ops->prepare_guest_switch(vcpu);
6096 6097
	if (vcpu->fpu_active)
		kvm_load_guest_fpu(vcpu);
6098
	kvm_load_guest_xcr0(vcpu);
6099

6100 6101
	vcpu->mode = IN_GUEST_MODE;

6102 6103
	srcu_read_unlock(&vcpu->kvm->srcu, vcpu->srcu_idx);

6104 6105 6106
	/* We should set ->mode before check ->requests,
	 * see the comment in make_all_cpus_request.
	 */
6107
	smp_mb__after_srcu_read_unlock();
6108

A
Avi Kivity 已提交
6109
	local_irq_disable();
6110

6111
	if (vcpu->mode == EXITING_GUEST_MODE || vcpu->requests
A
Avi Kivity 已提交
6112
	    || need_resched() || signal_pending(current)) {
6113
		vcpu->mode = OUTSIDE_GUEST_MODE;
A
Avi Kivity 已提交
6114
		smp_wmb();
6115 6116
		local_irq_enable();
		preempt_enable();
6117
		vcpu->srcu_idx = srcu_read_lock(&vcpu->kvm->srcu);
6118
		r = 1;
6119
		goto cancel_injection;
6120 6121
	}

6122 6123 6124
	if (req_immediate_exit)
		smp_send_reschedule(vcpu->cpu);

6125 6126
	kvm_guest_enter();

6127 6128 6129 6130 6131 6132
	if (unlikely(vcpu->arch.switch_db_regs)) {
		set_debugreg(0, 7);
		set_debugreg(vcpu->arch.eff_db[0], 0);
		set_debugreg(vcpu->arch.eff_db[1], 1);
		set_debugreg(vcpu->arch.eff_db[2], 2);
		set_debugreg(vcpu->arch.eff_db[3], 3);
6133
		set_debugreg(vcpu->arch.dr6, 6);
6134
	}
6135

6136
	trace_kvm_entry(vcpu->vcpu_id);
A
Avi Kivity 已提交
6137
	kvm_x86_ops->run(vcpu);
6138

6139 6140 6141 6142 6143 6144 6145 6146 6147 6148 6149 6150 6151 6152 6153
	/*
	 * Do this here before restoring debug registers on the host.  And
	 * since we do this before handling the vmexit, a DR access vmexit
	 * can (a) read the correct value of the debug registers, (b) set
	 * KVM_DEBUGREG_WONT_EXIT again.
	 */
	if (unlikely(vcpu->arch.switch_db_regs & KVM_DEBUGREG_WONT_EXIT)) {
		int i;

		WARN_ON(vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP);
		kvm_x86_ops->sync_dirty_debug_regs(vcpu);
		for (i = 0; i < KVM_NR_DB_REGS; i++)
			vcpu->arch.eff_db[i] = vcpu->arch.db[i];
	}

6154 6155 6156 6157 6158 6159 6160
	/*
	 * If the guest has used debug registers, at least dr7
	 * will be disabled while returning to the host.
	 * If we don't have active breakpoints in the host, we don't
	 * care about the messed up debug address registers. But if
	 * we have some of them active, restore the old state.
	 */
6161
	if (hw_breakpoint_active())
6162
		hw_breakpoint_restore();
6163

6164 6165
	vcpu->arch.last_guest_tsc = kvm_x86_ops->read_l1_tsc(vcpu,
							   native_read_tsc());
6166

6167
	vcpu->mode = OUTSIDE_GUEST_MODE;
A
Avi Kivity 已提交
6168
	smp_wmb();
6169 6170 6171

	/* Interrupt is enabled by handle_external_intr() */
	kvm_x86_ops->handle_external_intr(vcpu);
6172 6173 6174 6175 6176 6177 6178 6179 6180 6181 6182 6183 6184 6185 6186

	++vcpu->stat.exits;

	/*
	 * We must have an instruction between local_irq_enable() and
	 * kvm_guest_exit(), so the timer interrupt isn't delayed by
	 * the interrupt shadow.  The stat.exits increment will do nicely.
	 * But we need to prevent reordering, hence this barrier():
	 */
	barrier();

	kvm_guest_exit();

	preempt_enable();

6187
	vcpu->srcu_idx = srcu_read_lock(&vcpu->kvm->srcu);
6188

6189 6190 6191 6192
	/*
	 * Profile KVM exit RIPs:
	 */
	if (unlikely(prof_on == KVM_PROFILING)) {
6193 6194
		unsigned long rip = kvm_rip_read(vcpu);
		profile_hit(KVM_PROFILING, (void *)rip);
6195 6196
	}

6197 6198
	if (unlikely(vcpu->arch.tsc_always_catchup))
		kvm_make_request(KVM_REQ_CLOCK_UPDATE, vcpu);
6199

6200 6201
	if (vcpu->arch.apic_attention)
		kvm_lapic_sync_from_vapic(vcpu);
A
Avi Kivity 已提交
6202

A
Avi Kivity 已提交
6203
	r = kvm_x86_ops->handle_exit(vcpu);
6204 6205 6206 6207
	return r;

cancel_injection:
	kvm_x86_ops->cancel_injection(vcpu);
6208 6209
	if (unlikely(vcpu->arch.apic_attention))
		kvm_lapic_sync_from_vapic(vcpu);
6210 6211 6212
out:
	return r;
}
6213

6214

A
Avi Kivity 已提交
6215
static int __vcpu_run(struct kvm_vcpu *vcpu)
6216 6217
{
	int r;
6218
	struct kvm *kvm = vcpu->kvm;
6219

6220
	vcpu->srcu_idx = srcu_read_lock(&kvm->srcu);
6221 6222 6223

	r = 1;
	while (r > 0) {
6224 6225
		if (vcpu->arch.mp_state == KVM_MP_STATE_RUNNABLE &&
		    !vcpu->arch.apf.halted)
A
Avi Kivity 已提交
6226
			r = vcpu_enter_guest(vcpu);
6227
		else {
6228
			srcu_read_unlock(&kvm->srcu, vcpu->srcu_idx);
6229
			kvm_vcpu_block(vcpu);
6230
			vcpu->srcu_idx = srcu_read_lock(&kvm->srcu);
6231 6232
			if (kvm_check_request(KVM_REQ_UNHALT, vcpu)) {
				kvm_apic_accept_events(vcpu);
6233 6234
				switch(vcpu->arch.mp_state) {
				case KVM_MP_STATE_HALTED:
6235
					vcpu->arch.pv.pv_unhalted = false;
6236
					vcpu->arch.mp_state =
6237 6238
						KVM_MP_STATE_RUNNABLE;
				case KVM_MP_STATE_RUNNABLE:
6239
					vcpu->arch.apf.halted = false;
6240
					break;
6241 6242
				case KVM_MP_STATE_INIT_RECEIVED:
					break;
6243 6244 6245 6246 6247
				default:
					r = -EINTR;
					break;
				}
			}
6248 6249
		}

6250 6251 6252 6253 6254 6255 6256
		if (r <= 0)
			break;

		clear_bit(KVM_REQ_PENDING_TIMER, &vcpu->requests);
		if (kvm_cpu_has_pending_timer(vcpu))
			kvm_inject_pending_timer_irqs(vcpu);

A
Avi Kivity 已提交
6257
		if (dm_request_for_irq_injection(vcpu)) {
6258
			r = -EINTR;
A
Avi Kivity 已提交
6259
			vcpu->run->exit_reason = KVM_EXIT_INTR;
6260 6261
			++vcpu->stat.request_irq_exits;
		}
6262 6263 6264

		kvm_check_async_pf_completion(vcpu);

6265 6266
		if (signal_pending(current)) {
			r = -EINTR;
A
Avi Kivity 已提交
6267
			vcpu->run->exit_reason = KVM_EXIT_INTR;
6268 6269 6270
			++vcpu->stat.signal_exits;
		}
		if (need_resched()) {
6271
			srcu_read_unlock(&kvm->srcu, vcpu->srcu_idx);
6272
			cond_resched();
6273
			vcpu->srcu_idx = srcu_read_lock(&kvm->srcu);
6274
		}
6275 6276
	}

6277
	srcu_read_unlock(&kvm->srcu, vcpu->srcu_idx);
6278 6279 6280 6281

	return r;
}

6282 6283 6284 6285 6286 6287 6288 6289 6290 6291 6292 6293 6294 6295 6296 6297 6298 6299
static inline int complete_emulated_io(struct kvm_vcpu *vcpu)
{
	int r;
	vcpu->srcu_idx = srcu_read_lock(&vcpu->kvm->srcu);
	r = emulate_instruction(vcpu, EMULTYPE_NO_DECODE);
	srcu_read_unlock(&vcpu->kvm->srcu, vcpu->srcu_idx);
	if (r != EMULATE_DONE)
		return 0;
	return 1;
}

static int complete_emulated_pio(struct kvm_vcpu *vcpu)
{
	BUG_ON(!vcpu->arch.pio.count);

	return complete_emulated_io(vcpu);
}

A
Avi Kivity 已提交
6300 6301 6302 6303 6304
/*
 * Implements the following, as a state machine:
 *
 * read:
 *   for each fragment
6305 6306 6307 6308
 *     for each mmio piece in the fragment
 *       write gpa, len
 *       exit
 *       copy data
A
Avi Kivity 已提交
6309 6310 6311 6312
 *   execute insn
 *
 * write:
 *   for each fragment
6313 6314 6315 6316
 *     for each mmio piece in the fragment
 *       write gpa, len
 *       copy data
 *       exit
A
Avi Kivity 已提交
6317
 */
6318
static int complete_emulated_mmio(struct kvm_vcpu *vcpu)
6319 6320
{
	struct kvm_run *run = vcpu->run;
A
Avi Kivity 已提交
6321
	struct kvm_mmio_fragment *frag;
6322
	unsigned len;
6323

6324
	BUG_ON(!vcpu->mmio_needed);
6325

6326
	/* Complete previous fragment */
6327 6328
	frag = &vcpu->mmio_fragments[vcpu->mmio_cur_fragment];
	len = min(8u, frag->len);
6329
	if (!vcpu->mmio_is_write)
6330 6331 6332 6333 6334 6335 6336 6337 6338 6339 6340 6341 6342
		memcpy(frag->data, run->mmio.data, len);

	if (frag->len <= 8) {
		/* Switch to the next fragment. */
		frag++;
		vcpu->mmio_cur_fragment++;
	} else {
		/* Go forward to the next mmio piece. */
		frag->data += len;
		frag->gpa += len;
		frag->len -= len;
	}

6343
	if (vcpu->mmio_cur_fragment >= vcpu->mmio_nr_fragments) {
6344
		vcpu->mmio_needed = 0;
6345 6346

		/* FIXME: return into emulator if single-stepping.  */
A
Avi Kivity 已提交
6347
		if (vcpu->mmio_is_write)
6348 6349 6350 6351
			return 1;
		vcpu->mmio_read_completed = 1;
		return complete_emulated_io(vcpu);
	}
6352

6353 6354 6355
	run->exit_reason = KVM_EXIT_MMIO;
	run->mmio.phys_addr = frag->gpa;
	if (vcpu->mmio_is_write)
6356 6357
		memcpy(run->mmio.data, frag->data, min(8u, frag->len));
	run->mmio.len = min(8u, frag->len);
6358 6359 6360
	run->mmio.is_write = vcpu->mmio_is_write;
	vcpu->arch.complete_userspace_io = complete_emulated_mmio;
	return 0;
6361 6362
}

6363

6364 6365 6366 6367 6368
int kvm_arch_vcpu_ioctl_run(struct kvm_vcpu *vcpu, struct kvm_run *kvm_run)
{
	int r;
	sigset_t sigsaved;

6369 6370 6371
	if (!tsk_used_math(current) && init_fpu(current))
		return -ENOMEM;

6372 6373 6374
	if (vcpu->sigset_active)
		sigprocmask(SIG_SETMASK, &vcpu->sigset, &sigsaved);

6375
	if (unlikely(vcpu->arch.mp_state == KVM_MP_STATE_UNINITIALIZED)) {
6376
		kvm_vcpu_block(vcpu);
6377
		kvm_apic_accept_events(vcpu);
6378
		clear_bit(KVM_REQ_UNHALT, &vcpu->requests);
6379 6380
		r = -EAGAIN;
		goto out;
6381 6382 6383
	}

	/* re-sync apic's tpr */
A
Andre Przywara 已提交
6384 6385 6386 6387 6388 6389
	if (!irqchip_in_kernel(vcpu->kvm)) {
		if (kvm_set_cr8(vcpu, kvm_run->cr8) != 0) {
			r = -EINVAL;
			goto out;
		}
	}
6390

6391 6392 6393 6394 6395 6396 6397 6398
	if (unlikely(vcpu->arch.complete_userspace_io)) {
		int (*cui)(struct kvm_vcpu *) = vcpu->arch.complete_userspace_io;
		vcpu->arch.complete_userspace_io = NULL;
		r = cui(vcpu);
		if (r <= 0)
			goto out;
	} else
		WARN_ON(vcpu->arch.pio.count || vcpu->mmio_needed);
6399

A
Avi Kivity 已提交
6400
	r = __vcpu_run(vcpu);
6401 6402

out:
6403
	post_kvm_run_save(vcpu);
6404 6405 6406 6407 6408 6409 6410 6411
	if (vcpu->sigset_active)
		sigprocmask(SIG_SETMASK, &sigsaved, NULL);

	return r;
}

int kvm_arch_vcpu_ioctl_get_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs)
{
6412 6413 6414 6415
	if (vcpu->arch.emulate_regs_need_sync_to_vcpu) {
		/*
		 * We are here if userspace calls get_regs() in the middle of
		 * instruction emulation. Registers state needs to be copied
G
Guo Chao 已提交
6416
		 * back from emulation context to vcpu. Userspace shouldn't do
6417 6418 6419
		 * that usually, but some bad designed PV devices (vmware
		 * backdoor interface) need this to work
		 */
6420
		emulator_writeback_register_cache(&vcpu->arch.emulate_ctxt);
6421 6422
		vcpu->arch.emulate_regs_need_sync_to_vcpu = false;
	}
6423 6424 6425 6426 6427 6428 6429 6430
	regs->rax = kvm_register_read(vcpu, VCPU_REGS_RAX);
	regs->rbx = kvm_register_read(vcpu, VCPU_REGS_RBX);
	regs->rcx = kvm_register_read(vcpu, VCPU_REGS_RCX);
	regs->rdx = kvm_register_read(vcpu, VCPU_REGS_RDX);
	regs->rsi = kvm_register_read(vcpu, VCPU_REGS_RSI);
	regs->rdi = kvm_register_read(vcpu, VCPU_REGS_RDI);
	regs->rsp = kvm_register_read(vcpu, VCPU_REGS_RSP);
	regs->rbp = kvm_register_read(vcpu, VCPU_REGS_RBP);
6431
#ifdef CONFIG_X86_64
6432 6433 6434 6435 6436 6437 6438 6439
	regs->r8 = kvm_register_read(vcpu, VCPU_REGS_R8);
	regs->r9 = kvm_register_read(vcpu, VCPU_REGS_R9);
	regs->r10 = kvm_register_read(vcpu, VCPU_REGS_R10);
	regs->r11 = kvm_register_read(vcpu, VCPU_REGS_R11);
	regs->r12 = kvm_register_read(vcpu, VCPU_REGS_R12);
	regs->r13 = kvm_register_read(vcpu, VCPU_REGS_R13);
	regs->r14 = kvm_register_read(vcpu, VCPU_REGS_R14);
	regs->r15 = kvm_register_read(vcpu, VCPU_REGS_R15);
6440 6441
#endif

6442
	regs->rip = kvm_rip_read(vcpu);
6443
	regs->rflags = kvm_get_rflags(vcpu);
6444 6445 6446 6447 6448 6449

	return 0;
}

int kvm_arch_vcpu_ioctl_set_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs)
{
6450 6451 6452
	vcpu->arch.emulate_regs_need_sync_from_vcpu = true;
	vcpu->arch.emulate_regs_need_sync_to_vcpu = false;

6453 6454 6455 6456 6457 6458 6459 6460
	kvm_register_write(vcpu, VCPU_REGS_RAX, regs->rax);
	kvm_register_write(vcpu, VCPU_REGS_RBX, regs->rbx);
	kvm_register_write(vcpu, VCPU_REGS_RCX, regs->rcx);
	kvm_register_write(vcpu, VCPU_REGS_RDX, regs->rdx);
	kvm_register_write(vcpu, VCPU_REGS_RSI, regs->rsi);
	kvm_register_write(vcpu, VCPU_REGS_RDI, regs->rdi);
	kvm_register_write(vcpu, VCPU_REGS_RSP, regs->rsp);
	kvm_register_write(vcpu, VCPU_REGS_RBP, regs->rbp);
6461
#ifdef CONFIG_X86_64
6462 6463 6464 6465 6466 6467 6468 6469
	kvm_register_write(vcpu, VCPU_REGS_R8, regs->r8);
	kvm_register_write(vcpu, VCPU_REGS_R9, regs->r9);
	kvm_register_write(vcpu, VCPU_REGS_R10, regs->r10);
	kvm_register_write(vcpu, VCPU_REGS_R11, regs->r11);
	kvm_register_write(vcpu, VCPU_REGS_R12, regs->r12);
	kvm_register_write(vcpu, VCPU_REGS_R13, regs->r13);
	kvm_register_write(vcpu, VCPU_REGS_R14, regs->r14);
	kvm_register_write(vcpu, VCPU_REGS_R15, regs->r15);
6470 6471
#endif

6472
	kvm_rip_write(vcpu, regs->rip);
6473
	kvm_set_rflags(vcpu, regs->rflags);
6474

6475 6476
	vcpu->arch.exception.pending = false;

6477 6478
	kvm_make_request(KVM_REQ_EVENT, vcpu);

6479 6480 6481 6482 6483 6484 6485
	return 0;
}

void kvm_get_cs_db_l_bits(struct kvm_vcpu *vcpu, int *db, int *l)
{
	struct kvm_segment cs;

6486
	kvm_get_segment(vcpu, &cs, VCPU_SREG_CS);
6487 6488 6489 6490 6491 6492 6493 6494
	*db = cs.db;
	*l = cs.l;
}
EXPORT_SYMBOL_GPL(kvm_get_cs_db_l_bits);

int kvm_arch_vcpu_ioctl_get_sregs(struct kvm_vcpu *vcpu,
				  struct kvm_sregs *sregs)
{
6495
	struct desc_ptr dt;
6496

6497 6498 6499 6500 6501 6502
	kvm_get_segment(vcpu, &sregs->cs, VCPU_SREG_CS);
	kvm_get_segment(vcpu, &sregs->ds, VCPU_SREG_DS);
	kvm_get_segment(vcpu, &sregs->es, VCPU_SREG_ES);
	kvm_get_segment(vcpu, &sregs->fs, VCPU_SREG_FS);
	kvm_get_segment(vcpu, &sregs->gs, VCPU_SREG_GS);
	kvm_get_segment(vcpu, &sregs->ss, VCPU_SREG_SS);
6503

6504 6505
	kvm_get_segment(vcpu, &sregs->tr, VCPU_SREG_TR);
	kvm_get_segment(vcpu, &sregs->ldt, VCPU_SREG_LDTR);
6506 6507

	kvm_x86_ops->get_idt(vcpu, &dt);
6508 6509
	sregs->idt.limit = dt.size;
	sregs->idt.base = dt.address;
6510
	kvm_x86_ops->get_gdt(vcpu, &dt);
6511 6512
	sregs->gdt.limit = dt.size;
	sregs->gdt.base = dt.address;
6513

6514
	sregs->cr0 = kvm_read_cr0(vcpu);
6515
	sregs->cr2 = vcpu->arch.cr2;
6516
	sregs->cr3 = kvm_read_cr3(vcpu);
6517
	sregs->cr4 = kvm_read_cr4(vcpu);
6518
	sregs->cr8 = kvm_get_cr8(vcpu);
6519
	sregs->efer = vcpu->arch.efer;
6520 6521
	sregs->apic_base = kvm_get_apic_base(vcpu);

G
Gleb Natapov 已提交
6522
	memset(sregs->interrupt_bitmap, 0, sizeof sregs->interrupt_bitmap);
6523

6524
	if (vcpu->arch.interrupt.pending && !vcpu->arch.interrupt.soft)
6525 6526
		set_bit(vcpu->arch.interrupt.nr,
			(unsigned long *)sregs->interrupt_bitmap);
6527

6528 6529 6530
	return 0;
}

6531 6532 6533
int kvm_arch_vcpu_ioctl_get_mpstate(struct kvm_vcpu *vcpu,
				    struct kvm_mp_state *mp_state)
{
6534
	kvm_apic_accept_events(vcpu);
6535 6536 6537 6538 6539 6540
	if (vcpu->arch.mp_state == KVM_MP_STATE_HALTED &&
					vcpu->arch.pv.pv_unhalted)
		mp_state->mp_state = KVM_MP_STATE_RUNNABLE;
	else
		mp_state->mp_state = vcpu->arch.mp_state;

6541 6542 6543 6544 6545 6546
	return 0;
}

int kvm_arch_vcpu_ioctl_set_mpstate(struct kvm_vcpu *vcpu,
				    struct kvm_mp_state *mp_state)
{
6547 6548 6549 6550 6551 6552 6553 6554 6555
	if (!kvm_vcpu_has_lapic(vcpu) &&
	    mp_state->mp_state != KVM_MP_STATE_RUNNABLE)
		return -EINVAL;

	if (mp_state->mp_state == KVM_MP_STATE_SIPI_RECEIVED) {
		vcpu->arch.mp_state = KVM_MP_STATE_INIT_RECEIVED;
		set_bit(KVM_APIC_SIPI, &vcpu->arch.apic->pending_events);
	} else
		vcpu->arch.mp_state = mp_state->mp_state;
6556
	kvm_make_request(KVM_REQ_EVENT, vcpu);
6557 6558 6559
	return 0;
}

6560 6561
int kvm_task_switch(struct kvm_vcpu *vcpu, u16 tss_selector, int idt_index,
		    int reason, bool has_error_code, u32 error_code)
6562
{
6563
	struct x86_emulate_ctxt *ctxt = &vcpu->arch.emulate_ctxt;
6564
	int ret;
6565

6566
	init_emulate_ctxt(vcpu);
6567

6568
	ret = emulator_task_switch(ctxt, tss_selector, idt_index, reason,
6569
				   has_error_code, error_code);
6570 6571

	if (ret)
6572
		return EMULATE_FAIL;
6573

6574 6575
	kvm_rip_write(vcpu, ctxt->eip);
	kvm_set_rflags(vcpu, ctxt->eflags);
6576
	kvm_make_request(KVM_REQ_EVENT, vcpu);
6577
	return EMULATE_DONE;
6578 6579 6580
}
EXPORT_SYMBOL_GPL(kvm_task_switch);

6581 6582 6583
int kvm_arch_vcpu_ioctl_set_sregs(struct kvm_vcpu *vcpu,
				  struct kvm_sregs *sregs)
{
6584
	struct msr_data apic_base_msr;
6585
	int mmu_reset_needed = 0;
6586
	int pending_vec, max_bits, idx;
6587
	struct desc_ptr dt;
6588

6589 6590 6591
	if (!guest_cpuid_has_xsave(vcpu) && (sregs->cr4 & X86_CR4_OSXSAVE))
		return -EINVAL;

6592 6593
	dt.size = sregs->idt.limit;
	dt.address = sregs->idt.base;
6594
	kvm_x86_ops->set_idt(vcpu, &dt);
6595 6596
	dt.size = sregs->gdt.limit;
	dt.address = sregs->gdt.base;
6597 6598
	kvm_x86_ops->set_gdt(vcpu, &dt);

6599
	vcpu->arch.cr2 = sregs->cr2;
6600
	mmu_reset_needed |= kvm_read_cr3(vcpu) != sregs->cr3;
6601
	vcpu->arch.cr3 = sregs->cr3;
6602
	__set_bit(VCPU_EXREG_CR3, (ulong *)&vcpu->arch.regs_avail);
6603

6604
	kvm_set_cr8(vcpu, sregs->cr8);
6605

6606
	mmu_reset_needed |= vcpu->arch.efer != sregs->efer;
6607
	kvm_x86_ops->set_efer(vcpu, sregs->efer);
6608 6609 6610
	apic_base_msr.data = sregs->apic_base;
	apic_base_msr.host_initiated = true;
	kvm_set_apic_base(vcpu, &apic_base_msr);
6611

6612
	mmu_reset_needed |= kvm_read_cr0(vcpu) != sregs->cr0;
6613
	kvm_x86_ops->set_cr0(vcpu, sregs->cr0);
6614
	vcpu->arch.cr0 = sregs->cr0;
6615

6616
	mmu_reset_needed |= kvm_read_cr4(vcpu) != sregs->cr4;
6617
	kvm_x86_ops->set_cr4(vcpu, sregs->cr4);
S
Sheng Yang 已提交
6618
	if (sregs->cr4 & X86_CR4_OSXSAVE)
A
Avi Kivity 已提交
6619
		kvm_update_cpuid(vcpu);
6620 6621

	idx = srcu_read_lock(&vcpu->kvm->srcu);
6622
	if (!is_long_mode(vcpu) && is_pae(vcpu)) {
6623
		load_pdptrs(vcpu, vcpu->arch.walk_mmu, kvm_read_cr3(vcpu));
6624 6625
		mmu_reset_needed = 1;
	}
6626
	srcu_read_unlock(&vcpu->kvm->srcu, idx);
6627 6628 6629 6630

	if (mmu_reset_needed)
		kvm_mmu_reset_context(vcpu);

6631
	max_bits = KVM_NR_INTERRUPTS;
G
Gleb Natapov 已提交
6632 6633 6634
	pending_vec = find_first_bit(
		(const unsigned long *)sregs->interrupt_bitmap, max_bits);
	if (pending_vec < max_bits) {
6635
		kvm_queue_interrupt(vcpu, pending_vec, false);
G
Gleb Natapov 已提交
6636
		pr_debug("Set back pending irq %d\n", pending_vec);
6637 6638
	}

6639 6640 6641 6642 6643 6644
	kvm_set_segment(vcpu, &sregs->cs, VCPU_SREG_CS);
	kvm_set_segment(vcpu, &sregs->ds, VCPU_SREG_DS);
	kvm_set_segment(vcpu, &sregs->es, VCPU_SREG_ES);
	kvm_set_segment(vcpu, &sregs->fs, VCPU_SREG_FS);
	kvm_set_segment(vcpu, &sregs->gs, VCPU_SREG_GS);
	kvm_set_segment(vcpu, &sregs->ss, VCPU_SREG_SS);
6645

6646 6647
	kvm_set_segment(vcpu, &sregs->tr, VCPU_SREG_TR);
	kvm_set_segment(vcpu, &sregs->ldt, VCPU_SREG_LDTR);
6648

6649 6650
	update_cr8_intercept(vcpu);

M
Marcelo Tosatti 已提交
6651
	/* Older userspace won't unhalt the vcpu on reset. */
6652
	if (kvm_vcpu_is_bsp(vcpu) && kvm_rip_read(vcpu) == 0xfff0 &&
M
Marcelo Tosatti 已提交
6653
	    sregs->cs.selector == 0xf000 && sregs->cs.base == 0xffff0000 &&
6654
	    !is_protmode(vcpu))
M
Marcelo Tosatti 已提交
6655 6656
		vcpu->arch.mp_state = KVM_MP_STATE_RUNNABLE;

6657 6658
	kvm_make_request(KVM_REQ_EVENT, vcpu);

6659 6660 6661
	return 0;
}

J
Jan Kiszka 已提交
6662 6663
int kvm_arch_vcpu_ioctl_set_guest_debug(struct kvm_vcpu *vcpu,
					struct kvm_guest_debug *dbg)
6664
{
6665
	unsigned long rflags;
6666
	int i, r;
6667

6668 6669 6670
	if (dbg->control & (KVM_GUESTDBG_INJECT_DB | KVM_GUESTDBG_INJECT_BP)) {
		r = -EBUSY;
		if (vcpu->arch.exception.pending)
6671
			goto out;
6672 6673 6674 6675 6676 6677
		if (dbg->control & KVM_GUESTDBG_INJECT_DB)
			kvm_queue_exception(vcpu, DB_VECTOR);
		else
			kvm_queue_exception(vcpu, BP_VECTOR);
	}

6678 6679 6680 6681 6682
	/*
	 * Read rflags as long as potentially injected trace flags are still
	 * filtered out.
	 */
	rflags = kvm_get_rflags(vcpu);
6683 6684 6685 6686 6687 6688

	vcpu->guest_debug = dbg->control;
	if (!(vcpu->guest_debug & KVM_GUESTDBG_ENABLE))
		vcpu->guest_debug = 0;

	if (vcpu->guest_debug & KVM_GUESTDBG_USE_HW_BP) {
6689 6690
		for (i = 0; i < KVM_NR_DB_REGS; ++i)
			vcpu->arch.eff_db[i] = dbg->arch.debugreg[i];
6691
		vcpu->arch.guest_debug_dr7 = dbg->arch.debugreg[7];
6692 6693 6694 6695
	} else {
		for (i = 0; i < KVM_NR_DB_REGS; i++)
			vcpu->arch.eff_db[i] = vcpu->arch.db[i];
	}
6696
	kvm_update_dr7(vcpu);
6697

J
Jan Kiszka 已提交
6698 6699 6700
	if (vcpu->guest_debug & KVM_GUESTDBG_SINGLESTEP)
		vcpu->arch.singlestep_rip = kvm_rip_read(vcpu) +
			get_segment_base(vcpu, VCPU_SREG_CS);
6701

6702 6703 6704 6705 6706
	/*
	 * Trigger an rflags update that will inject or remove the trace
	 * flags.
	 */
	kvm_set_rflags(vcpu, rflags);
6707

6708
	kvm_x86_ops->update_db_bp_intercept(vcpu);
6709

6710
	r = 0;
J
Jan Kiszka 已提交
6711

6712
out:
6713 6714 6715 6716

	return r;
}

6717 6718 6719 6720 6721 6722 6723 6724
/*
 * Translate a guest virtual address to a guest physical address.
 */
int kvm_arch_vcpu_ioctl_translate(struct kvm_vcpu *vcpu,
				    struct kvm_translation *tr)
{
	unsigned long vaddr = tr->linear_address;
	gpa_t gpa;
6725
	int idx;
6726

6727
	idx = srcu_read_lock(&vcpu->kvm->srcu);
6728
	gpa = kvm_mmu_gva_to_gpa_system(vcpu, vaddr, NULL);
6729
	srcu_read_unlock(&vcpu->kvm->srcu, idx);
6730 6731 6732 6733 6734 6735 6736 6737
	tr->physical_address = gpa;
	tr->valid = gpa != UNMAPPED_GVA;
	tr->writeable = 1;
	tr->usermode = 0;

	return 0;
}

6738 6739
int kvm_arch_vcpu_ioctl_get_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu)
{
S
Sheng Yang 已提交
6740 6741
	struct i387_fxsave_struct *fxsave =
			&vcpu->arch.guest_fpu.state->fxsave;
6742 6743 6744 6745 6746 6747 6748 6749 6750 6751 6752 6753 6754 6755 6756

	memcpy(fpu->fpr, fxsave->st_space, 128);
	fpu->fcw = fxsave->cwd;
	fpu->fsw = fxsave->swd;
	fpu->ftwx = fxsave->twd;
	fpu->last_opcode = fxsave->fop;
	fpu->last_ip = fxsave->rip;
	fpu->last_dp = fxsave->rdp;
	memcpy(fpu->xmm, fxsave->xmm_space, sizeof fxsave->xmm_space);

	return 0;
}

int kvm_arch_vcpu_ioctl_set_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu)
{
S
Sheng Yang 已提交
6757 6758
	struct i387_fxsave_struct *fxsave =
			&vcpu->arch.guest_fpu.state->fxsave;
6759 6760 6761 6762 6763 6764 6765 6766 6767 6768 6769 6770 6771

	memcpy(fxsave->st_space, fpu->fpr, 128);
	fxsave->cwd = fpu->fcw;
	fxsave->swd = fpu->fsw;
	fxsave->twd = fpu->ftwx;
	fxsave->fop = fpu->last_opcode;
	fxsave->rip = fpu->last_ip;
	fxsave->rdp = fpu->last_dp;
	memcpy(fxsave->xmm_space, fpu->xmm, sizeof fxsave->xmm_space);

	return 0;
}

6772
int fx_init(struct kvm_vcpu *vcpu)
6773
{
6774 6775 6776 6777 6778 6779
	int err;

	err = fpu_alloc(&vcpu->arch.guest_fpu);
	if (err)
		return err;

S
Sheng Yang 已提交
6780
	fpu_finit(&vcpu->arch.guest_fpu);
6781

6782 6783 6784 6785 6786
	/*
	 * Ensure guest xcr0 is valid for loading
	 */
	vcpu->arch.xcr0 = XSTATE_FP;

6787
	vcpu->arch.cr0 |= X86_CR0_ET;
6788 6789

	return 0;
6790 6791 6792
}
EXPORT_SYMBOL_GPL(fx_init);

S
Sheng Yang 已提交
6793 6794 6795 6796 6797
static void fx_free(struct kvm_vcpu *vcpu)
{
	fpu_free(&vcpu->arch.guest_fpu);
}

6798 6799
void kvm_load_guest_fpu(struct kvm_vcpu *vcpu)
{
6800
	if (vcpu->guest_fpu_loaded)
6801 6802
		return;

6803 6804 6805 6806 6807 6808
	/*
	 * Restore all possible states in the guest,
	 * and assume host would use all available bits.
	 * Guest xcr0 would be loaded later.
	 */
	kvm_put_guest_xcr0(vcpu);
6809
	vcpu->guest_fpu_loaded = 1;
6810
	__kernel_fpu_begin();
S
Sheng Yang 已提交
6811
	fpu_restore_checking(&vcpu->arch.guest_fpu);
6812
	trace_kvm_fpu(1);
6813 6814 6815 6816
}

void kvm_put_guest_fpu(struct kvm_vcpu *vcpu)
{
6817 6818
	kvm_put_guest_xcr0(vcpu);

6819 6820 6821 6822
	if (!vcpu->guest_fpu_loaded)
		return;

	vcpu->guest_fpu_loaded = 0;
S
Sheng Yang 已提交
6823
	fpu_save_init(&vcpu->arch.guest_fpu);
6824
	__kernel_fpu_end();
A
Avi Kivity 已提交
6825
	++vcpu->stat.fpu_reload;
6826
	kvm_make_request(KVM_REQ_DEACTIVATE_FPU, vcpu);
6827
	trace_kvm_fpu(0);
6828
}
6829 6830 6831

void kvm_arch_vcpu_free(struct kvm_vcpu *vcpu)
{
6832
	kvmclock_reset(vcpu);
6833

6834
	free_cpumask_var(vcpu->arch.wbinvd_dirty_mask);
S
Sheng Yang 已提交
6835
	fx_free(vcpu);
6836 6837 6838 6839 6840 6841
	kvm_x86_ops->vcpu_free(vcpu);
}

struct kvm_vcpu *kvm_arch_vcpu_create(struct kvm *kvm,
						unsigned int id)
{
Z
Zachary Amsden 已提交
6842 6843 6844 6845
	if (check_tsc_unstable() && atomic_read(&kvm->online_vcpus) != 0)
		printk_once(KERN_WARNING
		"kvm: SMP vm created on host with unstable TSC; "
		"guest TSC will not be reliable\n");
6846 6847
	return kvm_x86_ops->vcpu_create(kvm, id);
}
6848

6849 6850 6851
int kvm_arch_vcpu_setup(struct kvm_vcpu *vcpu)
{
	int r;
6852

S
Sheng Yang 已提交
6853
	vcpu->arch.mtrr_state.have_fixed = 1;
6854 6855 6856
	r = vcpu_load(vcpu);
	if (r)
		return r;
6857
	kvm_vcpu_reset(vcpu);
6858
	kvm_mmu_setup(vcpu);
6859 6860
	vcpu_put(vcpu);

6861
	return r;
6862 6863
}

6864 6865 6866
int kvm_arch_vcpu_postcreate(struct kvm_vcpu *vcpu)
{
	int r;
6867
	struct msr_data msr;
6868
	struct kvm *kvm = vcpu->kvm;
6869 6870 6871 6872

	r = vcpu_load(vcpu);
	if (r)
		return r;
6873 6874 6875 6876
	msr.data = 0x0;
	msr.index = MSR_IA32_TSC;
	msr.host_initiated = true;
	kvm_write_tsc(vcpu, &msr);
6877 6878
	vcpu_put(vcpu);

6879 6880 6881
	schedule_delayed_work(&kvm->arch.kvmclock_sync_work,
					KVMCLOCK_SYNC_PERIOD);

6882 6883 6884
	return r;
}

6885
void kvm_arch_vcpu_destroy(struct kvm_vcpu *vcpu)
6886
{
6887
	int r;
6888 6889
	vcpu->arch.apf.msr_val = 0;

6890 6891
	r = vcpu_load(vcpu);
	BUG_ON(r);
6892 6893 6894
	kvm_mmu_unload(vcpu);
	vcpu_put(vcpu);

S
Sheng Yang 已提交
6895
	fx_free(vcpu);
6896 6897 6898
	kvm_x86_ops->vcpu_free(vcpu);
}

6899
void kvm_vcpu_reset(struct kvm_vcpu *vcpu)
6900
{
A
Avi Kivity 已提交
6901 6902
	atomic_set(&vcpu->arch.nmi_queued, 0);
	vcpu->arch.nmi_pending = 0;
6903
	vcpu->arch.nmi_injected = false;
6904 6905
	kvm_clear_interrupt_queue(vcpu);
	kvm_clear_exception_queue(vcpu);
6906

6907
	memset(vcpu->arch.db, 0, sizeof(vcpu->arch.db));
6908
	vcpu->arch.dr6 = DR6_INIT;
J
Jan Kiszka 已提交
6909
	kvm_update_dr6(vcpu);
6910
	vcpu->arch.dr7 = DR7_FIXED_1;
6911
	kvm_update_dr7(vcpu);
6912

6913
	kvm_make_request(KVM_REQ_EVENT, vcpu);
6914
	vcpu->arch.apf.msr_val = 0;
G
Glauber Costa 已提交
6915
	vcpu->arch.st.msr_val = 0;
6916

6917 6918
	kvmclock_reset(vcpu);

6919 6920 6921
	kvm_clear_async_pf_completion_queue(vcpu);
	kvm_async_pf_hash_reset(vcpu);
	vcpu->arch.apf.halted = false;
6922

6923 6924
	kvm_pmu_reset(vcpu);

6925 6926 6927 6928
	memset(vcpu->arch.regs, 0, sizeof(vcpu->arch.regs));
	vcpu->arch.regs_avail = ~0;
	vcpu->arch.regs_dirty = ~0;

6929
	kvm_x86_ops->vcpu_reset(vcpu);
6930 6931
}

6932 6933 6934 6935 6936 6937 6938 6939 6940
void kvm_vcpu_deliver_sipi_vector(struct kvm_vcpu *vcpu, unsigned int vector)
{
	struct kvm_segment cs;

	kvm_get_segment(vcpu, &cs, VCPU_SREG_CS);
	cs.selector = vector << 8;
	cs.base = vector << 12;
	kvm_set_segment(vcpu, &cs, VCPU_SREG_CS);
	kvm_rip_write(vcpu, 0);
6941 6942
}

6943
int kvm_arch_hardware_enable(void *garbage)
6944
{
6945 6946 6947
	struct kvm *kvm;
	struct kvm_vcpu *vcpu;
	int i;
6948 6949 6950 6951
	int ret;
	u64 local_tsc;
	u64 max_tsc = 0;
	bool stable, backwards_tsc = false;
A
Avi Kivity 已提交
6952 6953

	kvm_shared_msr_cpu_online();
6954 6955 6956 6957 6958 6959 6960 6961 6962 6963 6964 6965 6966 6967 6968 6969 6970 6971 6972 6973 6974 6975 6976 6977 6978 6979 6980 6981 6982 6983 6984 6985 6986 6987 6988 6989 6990 6991 6992 6993 6994 6995 6996 6997 6998 6999 7000 7001 7002 7003 7004
	ret = kvm_x86_ops->hardware_enable(garbage);
	if (ret != 0)
		return ret;

	local_tsc = native_read_tsc();
	stable = !check_tsc_unstable();
	list_for_each_entry(kvm, &vm_list, vm_list) {
		kvm_for_each_vcpu(i, vcpu, kvm) {
			if (!stable && vcpu->cpu == smp_processor_id())
				set_bit(KVM_REQ_CLOCK_UPDATE, &vcpu->requests);
			if (stable && vcpu->arch.last_host_tsc > local_tsc) {
				backwards_tsc = true;
				if (vcpu->arch.last_host_tsc > max_tsc)
					max_tsc = vcpu->arch.last_host_tsc;
			}
		}
	}

	/*
	 * Sometimes, even reliable TSCs go backwards.  This happens on
	 * platforms that reset TSC during suspend or hibernate actions, but
	 * maintain synchronization.  We must compensate.  Fortunately, we can
	 * detect that condition here, which happens early in CPU bringup,
	 * before any KVM threads can be running.  Unfortunately, we can't
	 * bring the TSCs fully up to date with real time, as we aren't yet far
	 * enough into CPU bringup that we know how much real time has actually
	 * elapsed; our helper function, get_kernel_ns() will be using boot
	 * variables that haven't been updated yet.
	 *
	 * So we simply find the maximum observed TSC above, then record the
	 * adjustment to TSC in each VCPU.  When the VCPU later gets loaded,
	 * the adjustment will be applied.  Note that we accumulate
	 * adjustments, in case multiple suspend cycles happen before some VCPU
	 * gets a chance to run again.  In the event that no KVM threads get a
	 * chance to run, we will miss the entire elapsed period, as we'll have
	 * reset last_host_tsc, so VCPUs will not have the TSC adjusted and may
	 * loose cycle time.  This isn't too big a deal, since the loss will be
	 * uniform across all VCPUs (not to mention the scenario is extremely
	 * unlikely). It is possible that a second hibernate recovery happens
	 * much faster than a first, causing the observed TSC here to be
	 * smaller; this would require additional padding adjustment, which is
	 * why we set last_host_tsc to the local tsc observed here.
	 *
	 * N.B. - this code below runs only on platforms with reliable TSC,
	 * as that is the only way backwards_tsc is set above.  Also note
	 * that this runs for ALL vcpus, which is not a bug; all VCPUs should
	 * have the same delta_cyc adjustment applied if backwards_tsc
	 * is detected.  Note further, this adjustment is only done once,
	 * as we reset last_host_tsc on all VCPUs to stop this from being
	 * called multiple times (one for each physical CPU bringup).
	 *
G
Guo Chao 已提交
7005
	 * Platforms with unreliable TSCs don't have to deal with this, they
7006 7007 7008 7009 7010 7011
	 * will be compensated by the logic in vcpu_load, which sets the TSC to
	 * catchup mode.  This will catchup all VCPUs to real time, but cannot
	 * guarantee that they stay in perfect synchronization.
	 */
	if (backwards_tsc) {
		u64 delta_cyc = max_tsc - local_tsc;
7012
		backwards_tsc_observed = true;
7013 7014 7015 7016
		list_for_each_entry(kvm, &vm_list, vm_list) {
			kvm_for_each_vcpu(i, vcpu, kvm) {
				vcpu->arch.tsc_offset_adjustment += delta_cyc;
				vcpu->arch.last_host_tsc = local_tsc;
7017 7018
				set_bit(KVM_REQ_MASTERCLOCK_UPDATE,
					&vcpu->requests);
7019 7020 7021 7022 7023 7024 7025 7026 7027 7028 7029 7030 7031 7032
			}

			/*
			 * We have to disable TSC offset matching.. if you were
			 * booting a VM while issuing an S4 host suspend....
			 * you may have some problem.  Solving this issue is
			 * left as an exercise to the reader.
			 */
			kvm->arch.last_tsc_nsec = 0;
			kvm->arch.last_tsc_write = 0;
		}

	}
	return 0;
7033 7034 7035 7036 7037
}

void kvm_arch_hardware_disable(void *garbage)
{
	kvm_x86_ops->hardware_disable(garbage);
7038
	drop_user_return_notifiers(garbage);
7039 7040 7041 7042 7043 7044 7045 7046 7047 7048 7049 7050 7051 7052 7053 7054 7055
}

int kvm_arch_hardware_setup(void)
{
	return kvm_x86_ops->hardware_setup();
}

void kvm_arch_hardware_unsetup(void)
{
	kvm_x86_ops->hardware_unsetup();
}

void kvm_arch_check_processor_compat(void *rtn)
{
	kvm_x86_ops->check_processor_compatibility(rtn);
}

7056 7057 7058 7059 7060
bool kvm_vcpu_compatible(struct kvm_vcpu *vcpu)
{
	return irqchip_in_kernel(vcpu->kvm) == (vcpu->arch.apic != NULL);
}

7061 7062
struct static_key kvm_no_apic_vcpu __read_mostly;

7063 7064 7065 7066 7067 7068 7069 7070 7071
int kvm_arch_vcpu_init(struct kvm_vcpu *vcpu)
{
	struct page *page;
	struct kvm *kvm;
	int r;

	BUG_ON(vcpu->kvm == NULL);
	kvm = vcpu->kvm;

7072
	vcpu->arch.pv.pv_unhalted = false;
7073
	vcpu->arch.emulate_ctxt.ops = &emulate_ops;
7074
	if (!irqchip_in_kernel(kvm) || kvm_vcpu_is_bsp(vcpu))
7075
		vcpu->arch.mp_state = KVM_MP_STATE_RUNNABLE;
7076
	else
7077
		vcpu->arch.mp_state = KVM_MP_STATE_UNINITIALIZED;
7078 7079 7080 7081 7082 7083

	page = alloc_page(GFP_KERNEL | __GFP_ZERO);
	if (!page) {
		r = -ENOMEM;
		goto fail;
	}
7084
	vcpu->arch.pio_data = page_address(page);
7085

7086
	kvm_set_tsc_khz(vcpu, max_tsc_khz);
Z
Zachary Amsden 已提交
7087

7088 7089 7090 7091 7092 7093 7094 7095
	r = kvm_mmu_create(vcpu);
	if (r < 0)
		goto fail_free_pio_data;

	if (irqchip_in_kernel(kvm)) {
		r = kvm_create_lapic(vcpu);
		if (r < 0)
			goto fail_mmu_destroy;
7096 7097
	} else
		static_key_slow_inc(&kvm_no_apic_vcpu);
7098

H
Huang Ying 已提交
7099 7100 7101 7102
	vcpu->arch.mce_banks = kzalloc(KVM_MAX_MCE_BANKS * sizeof(u64) * 4,
				       GFP_KERNEL);
	if (!vcpu->arch.mce_banks) {
		r = -ENOMEM;
7103
		goto fail_free_lapic;
H
Huang Ying 已提交
7104 7105 7106
	}
	vcpu->arch.mcg_cap = KVM_MAX_MCE_BANKS;

7107 7108
	if (!zalloc_cpumask_var(&vcpu->arch.wbinvd_dirty_mask, GFP_KERNEL)) {
		r = -ENOMEM;
7109
		goto fail_free_mce_banks;
7110
	}
7111

7112 7113 7114 7115
	r = fx_init(vcpu);
	if (r)
		goto fail_free_wbinvd_dirty_mask;

W
Will Auld 已提交
7116
	vcpu->arch.ia32_tsc_adjust_msr = 0x0;
7117
	vcpu->arch.pv_time_enabled = false;
7118 7119

	vcpu->arch.guest_supported_xcr0 = 0;
7120
	vcpu->arch.guest_xstate_size = XSAVE_HDR_SIZE + XSAVE_HDR_OFFSET;
7121

7122
	kvm_async_pf_hash_reset(vcpu);
7123
	kvm_pmu_init(vcpu);
7124

7125
	return 0;
7126 7127
fail_free_wbinvd_dirty_mask:
	free_cpumask_var(vcpu->arch.wbinvd_dirty_mask);
7128 7129
fail_free_mce_banks:
	kfree(vcpu->arch.mce_banks);
7130 7131
fail_free_lapic:
	kvm_free_lapic(vcpu);
7132 7133 7134
fail_mmu_destroy:
	kvm_mmu_destroy(vcpu);
fail_free_pio_data:
7135
	free_page((unsigned long)vcpu->arch.pio_data);
7136 7137 7138 7139 7140 7141
fail:
	return r;
}

void kvm_arch_vcpu_uninit(struct kvm_vcpu *vcpu)
{
7142 7143
	int idx;

7144
	kvm_pmu_destroy(vcpu);
7145
	kfree(vcpu->arch.mce_banks);
7146
	kvm_free_lapic(vcpu);
7147
	idx = srcu_read_lock(&vcpu->kvm->srcu);
7148
	kvm_mmu_destroy(vcpu);
7149
	srcu_read_unlock(&vcpu->kvm->srcu, idx);
7150
	free_page((unsigned long)vcpu->arch.pio_data);
7151 7152
	if (!irqchip_in_kernel(vcpu->kvm))
		static_key_slow_dec(&kvm_no_apic_vcpu);
7153
}
7154

7155
int kvm_arch_init_vm(struct kvm *kvm, unsigned long type)
7156
{
7157 7158 7159
	if (type)
		return -EINVAL;

7160
	INIT_LIST_HEAD(&kvm->arch.active_mmu_pages);
7161
	INIT_LIST_HEAD(&kvm->arch.zapped_obsolete_pages);
B
Ben-Ami Yassour 已提交
7162
	INIT_LIST_HEAD(&kvm->arch.assigned_dev_head);
7163
	atomic_set(&kvm->arch.noncoherent_dma_count, 0);
7164

7165 7166
	/* Reserve bit 0 of irq_sources_bitmap for userspace irq source */
	set_bit(KVM_USERSPACE_IRQ_SOURCE_ID, &kvm->arch.irq_sources_bitmap);
7167 7168 7169
	/* Reserve bit 1 of irq_sources_bitmap for irqfd-resampler */
	set_bit(KVM_IRQFD_RESAMPLE_IRQ_SOURCE_ID,
		&kvm->arch.irq_sources_bitmap);
7170

7171
	raw_spin_lock_init(&kvm->arch.tsc_write_lock);
7172
	mutex_init(&kvm->arch.apic_map_lock);
7173 7174 7175
	spin_lock_init(&kvm->arch.pvclock_gtod_sync_lock);

	pvclock_update_vm_gtod_copy(kvm);
7176

7177
	INIT_DELAYED_WORK(&kvm->arch.kvmclock_update_work, kvmclock_update_fn);
7178
	INIT_DELAYED_WORK(&kvm->arch.kvmclock_sync_work, kvmclock_sync_fn);
7179

7180
	return 0;
7181 7182 7183 7184
}

static void kvm_unload_vcpu_mmu(struct kvm_vcpu *vcpu)
{
7185 7186 7187
	int r;
	r = vcpu_load(vcpu);
	BUG_ON(r);
7188 7189 7190 7191 7192 7193 7194
	kvm_mmu_unload(vcpu);
	vcpu_put(vcpu);
}

static void kvm_free_vcpus(struct kvm *kvm)
{
	unsigned int i;
7195
	struct kvm_vcpu *vcpu;
7196 7197 7198 7199

	/*
	 * Unpin any mmu pages first.
	 */
7200 7201
	kvm_for_each_vcpu(i, vcpu, kvm) {
		kvm_clear_async_pf_completion_queue(vcpu);
7202
		kvm_unload_vcpu_mmu(vcpu);
7203
	}
7204 7205 7206 7207 7208 7209
	kvm_for_each_vcpu(i, vcpu, kvm)
		kvm_arch_vcpu_free(vcpu);

	mutex_lock(&kvm->lock);
	for (i = 0; i < atomic_read(&kvm->online_vcpus); i++)
		kvm->vcpus[i] = NULL;
7210

7211 7212
	atomic_set(&kvm->online_vcpus, 0);
	mutex_unlock(&kvm->lock);
7213 7214
}

7215 7216
void kvm_arch_sync_events(struct kvm *kvm)
{
7217
	cancel_delayed_work_sync(&kvm->arch.kvmclock_sync_work);
7218
	cancel_delayed_work_sync(&kvm->arch.kvmclock_update_work);
7219
	kvm_free_all_assigned_devices(kvm);
7220
	kvm_free_pit(kvm);
7221 7222
}

7223 7224
void kvm_arch_destroy_vm(struct kvm *kvm)
{
7225 7226 7227 7228 7229 7230 7231 7232 7233 7234 7235 7236 7237 7238 7239 7240 7241
	if (current->mm == kvm->mm) {
		/*
		 * Free memory regions allocated on behalf of userspace,
		 * unless the the memory map has changed due to process exit
		 * or fd copying.
		 */
		struct kvm_userspace_memory_region mem;
		memset(&mem, 0, sizeof(mem));
		mem.slot = APIC_ACCESS_PAGE_PRIVATE_MEMSLOT;
		kvm_set_memory_region(kvm, &mem);

		mem.slot = IDENTITY_PAGETABLE_PRIVATE_MEMSLOT;
		kvm_set_memory_region(kvm, &mem);

		mem.slot = TSS_PRIVATE_MEMSLOT;
		kvm_set_memory_region(kvm, &mem);
	}
7242
	kvm_iommu_unmap_guest(kvm);
7243 7244
	kfree(kvm->arch.vpic);
	kfree(kvm->arch.vioapic);
7245
	kvm_free_vcpus(kvm);
7246 7247
	if (kvm->arch.apic_access_page)
		put_page(kvm->arch.apic_access_page);
7248 7249
	if (kvm->arch.ept_identity_pagetable)
		put_page(kvm->arch.ept_identity_pagetable);
7250
	kfree(rcu_dereference_check(kvm->arch.apic_map, 1));
7251
}
7252

7253
void kvm_arch_free_memslot(struct kvm *kvm, struct kvm_memory_slot *free,
7254 7255 7256 7257
			   struct kvm_memory_slot *dont)
{
	int i;

7258 7259 7260 7261
	for (i = 0; i < KVM_NR_PAGE_SIZES; ++i) {
		if (!dont || free->arch.rmap[i] != dont->arch.rmap[i]) {
			kvm_kvfree(free->arch.rmap[i]);
			free->arch.rmap[i] = NULL;
7262
		}
7263 7264 7265 7266 7267 7268 7269
		if (i == 0)
			continue;

		if (!dont || free->arch.lpage_info[i - 1] !=
			     dont->arch.lpage_info[i - 1]) {
			kvm_kvfree(free->arch.lpage_info[i - 1]);
			free->arch.lpage_info[i - 1] = NULL;
7270 7271 7272 7273
		}
	}
}

7274 7275
int kvm_arch_create_memslot(struct kvm *kvm, struct kvm_memory_slot *slot,
			    unsigned long npages)
7276 7277 7278
{
	int i;

7279
	for (i = 0; i < KVM_NR_PAGE_SIZES; ++i) {
7280 7281
		unsigned long ugfn;
		int lpages;
7282
		int level = i + 1;
7283 7284 7285 7286

		lpages = gfn_to_index(slot->base_gfn + npages - 1,
				      slot->base_gfn, level) + 1;

7287 7288 7289
		slot->arch.rmap[i] =
			kvm_kvzalloc(lpages * sizeof(*slot->arch.rmap[i]));
		if (!slot->arch.rmap[i])
7290
			goto out_free;
7291 7292
		if (i == 0)
			continue;
7293

7294 7295 7296
		slot->arch.lpage_info[i - 1] = kvm_kvzalloc(lpages *
					sizeof(*slot->arch.lpage_info[i - 1]));
		if (!slot->arch.lpage_info[i - 1])
7297 7298 7299
			goto out_free;

		if (slot->base_gfn & (KVM_PAGES_PER_HPAGE(level) - 1))
7300
			slot->arch.lpage_info[i - 1][0].write_count = 1;
7301
		if ((slot->base_gfn + npages) & (KVM_PAGES_PER_HPAGE(level) - 1))
7302
			slot->arch.lpage_info[i - 1][lpages - 1].write_count = 1;
7303 7304 7305 7306 7307 7308 7309 7310 7311 7312 7313
		ugfn = slot->userspace_addr >> PAGE_SHIFT;
		/*
		 * If the gfn and userspace address are not aligned wrt each
		 * other, or if explicitly asked to, disable large page
		 * support for this slot
		 */
		if ((slot->base_gfn ^ ugfn) & (KVM_PAGES_PER_HPAGE(level) - 1) ||
		    !kvm_largepages_enabled()) {
			unsigned long j;

			for (j = 0; j < lpages; ++j)
7314
				slot->arch.lpage_info[i - 1][j].write_count = 1;
7315 7316 7317 7318 7319 7320
		}
	}

	return 0;

out_free:
7321 7322 7323 7324 7325 7326 7327 7328
	for (i = 0; i < KVM_NR_PAGE_SIZES; ++i) {
		kvm_kvfree(slot->arch.rmap[i]);
		slot->arch.rmap[i] = NULL;
		if (i == 0)
			continue;

		kvm_kvfree(slot->arch.lpage_info[i - 1]);
		slot->arch.lpage_info[i - 1] = NULL;
7329 7330 7331 7332
	}
	return -ENOMEM;
}

7333 7334
void kvm_arch_memslots_updated(struct kvm *kvm)
{
7335 7336 7337 7338 7339
	/*
	 * memslots->generation has been incremented.
	 * mmio generation may have reached its maximum value.
	 */
	kvm_mmu_invalidate_mmio_sptes(kvm);
7340 7341
}

7342 7343 7344
int kvm_arch_prepare_memory_region(struct kvm *kvm,
				struct kvm_memory_slot *memslot,
				struct kvm_userspace_memory_region *mem,
7345
				enum kvm_mr_change change)
7346
{
7347 7348 7349
	/*
	 * Only private memory slots need to be mapped here since
	 * KVM_SET_MEMORY_REGION ioctl is no longer supported.
7350
	 */
7351
	if ((memslot->id >= KVM_USER_MEM_SLOTS) && (change == KVM_MR_CREATE)) {
7352
		unsigned long userspace_addr;
7353

7354 7355 7356 7357
		/*
		 * MAP_SHARED to prevent internal slot pages from being moved
		 * by fork()/COW.
		 */
7358
		userspace_addr = vm_mmap(NULL, 0, memslot->npages * PAGE_SIZE,
7359 7360
					 PROT_READ | PROT_WRITE,
					 MAP_SHARED | MAP_ANONYMOUS, 0);
7361

7362 7363
		if (IS_ERR((void *)userspace_addr))
			return PTR_ERR((void *)userspace_addr);
7364

7365
		memslot->userspace_addr = userspace_addr;
7366 7367
	}

7368 7369 7370 7371 7372
	return 0;
}

void kvm_arch_commit_memory_region(struct kvm *kvm,
				struct kvm_userspace_memory_region *mem,
7373 7374
				const struct kvm_memory_slot *old,
				enum kvm_mr_change change)
7375 7376
{

7377
	int nr_mmu_pages = 0;
7378

7379
	if ((mem->slot >= KVM_USER_MEM_SLOTS) && (change == KVM_MR_DELETE)) {
7380 7381
		int ret;

7382 7383
		ret = vm_munmap(old->userspace_addr,
				old->npages * PAGE_SIZE);
7384 7385 7386 7387 7388 7389
		if (ret < 0)
			printk(KERN_WARNING
			       "kvm_vm_ioctl_set_memory_region: "
			       "failed to munmap memory\n");
	}

7390 7391 7392 7393
	if (!kvm->arch.n_requested_mmu_pages)
		nr_mmu_pages = kvm_mmu_calculate_mmu_pages(kvm);

	if (nr_mmu_pages)
7394
		kvm_mmu_change_mmu_pages(kvm, nr_mmu_pages);
7395 7396
	/*
	 * Write protect all pages for dirty logging.
7397 7398 7399 7400 7401 7402
	 *
	 * All the sptes including the large sptes which point to this
	 * slot are set to readonly. We can not create any new large
	 * spte on this slot until the end of the logging.
	 *
	 * See the comments in fast_page_fault().
7403
	 */
7404
	if ((change != KVM_MR_DELETE) && (mem->flags & KVM_MEM_LOG_DIRTY_PAGES))
7405
		kvm_mmu_slot_remove_write_access(kvm, mem->slot);
7406
}
7407

7408
void kvm_arch_flush_shadow_all(struct kvm *kvm)
7409
{
7410
	kvm_mmu_invalidate_zap_all_pages(kvm);
7411 7412
}

7413 7414 7415
void kvm_arch_flush_shadow_memslot(struct kvm *kvm,
				   struct kvm_memory_slot *slot)
{
7416
	kvm_mmu_invalidate_zap_all_pages(kvm);
7417 7418
}

7419 7420
int kvm_arch_vcpu_runnable(struct kvm_vcpu *vcpu)
{
7421 7422 7423
	if (is_guest_mode(vcpu) && kvm_x86_ops->check_nested_events)
		kvm_x86_ops->check_nested_events(vcpu, false);

7424 7425 7426
	return (vcpu->arch.mp_state == KVM_MP_STATE_RUNNABLE &&
		!vcpu->arch.apf.halted)
		|| !list_empty_careful(&vcpu->async_pf.done)
7427
		|| kvm_apic_has_events(vcpu)
7428
		|| vcpu->arch.pv.pv_unhalted
A
Avi Kivity 已提交
7429
		|| atomic_read(&vcpu->arch.nmi_queued) ||
7430 7431
		(kvm_arch_interrupt_allowed(vcpu) &&
		 kvm_cpu_has_interrupt(vcpu));
7432
}
7433

7434
int kvm_arch_vcpu_should_kick(struct kvm_vcpu *vcpu)
7435
{
7436
	return kvm_vcpu_exiting_guest_mode(vcpu) == IN_GUEST_MODE;
7437
}
7438 7439 7440 7441 7442

int kvm_arch_interrupt_allowed(struct kvm_vcpu *vcpu)
{
	return kvm_x86_ops->interrupt_allowed(vcpu);
}
7443

J
Jan Kiszka 已提交
7444 7445 7446 7447 7448 7449 7450 7451 7452
bool kvm_is_linear_rip(struct kvm_vcpu *vcpu, unsigned long linear_rip)
{
	unsigned long current_rip = kvm_rip_read(vcpu) +
		get_segment_base(vcpu, VCPU_SREG_CS);

	return current_rip == linear_rip;
}
EXPORT_SYMBOL_GPL(kvm_is_linear_rip);

7453 7454 7455 7456 7457 7458
unsigned long kvm_get_rflags(struct kvm_vcpu *vcpu)
{
	unsigned long rflags;

	rflags = kvm_x86_ops->get_rflags(vcpu);
	if (vcpu->guest_debug & KVM_GUESTDBG_SINGLESTEP)
7459
		rflags &= ~X86_EFLAGS_TF;
7460 7461 7462 7463
	return rflags;
}
EXPORT_SYMBOL_GPL(kvm_get_rflags);

7464
static void __kvm_set_rflags(struct kvm_vcpu *vcpu, unsigned long rflags)
7465 7466
{
	if (vcpu->guest_debug & KVM_GUESTDBG_SINGLESTEP &&
J
Jan Kiszka 已提交
7467
	    kvm_is_linear_rip(vcpu, vcpu->arch.singlestep_rip))
7468
		rflags |= X86_EFLAGS_TF;
7469
	kvm_x86_ops->set_rflags(vcpu, rflags);
7470 7471 7472 7473 7474
}

void kvm_set_rflags(struct kvm_vcpu *vcpu, unsigned long rflags)
{
	__kvm_set_rflags(vcpu, rflags);
7475
	kvm_make_request(KVM_REQ_EVENT, vcpu);
7476 7477 7478
}
EXPORT_SYMBOL_GPL(kvm_set_rflags);

G
Gleb Natapov 已提交
7479 7480 7481 7482
void kvm_arch_async_page_ready(struct kvm_vcpu *vcpu, struct kvm_async_pf *work)
{
	int r;

X
Xiao Guangrong 已提交
7483
	if ((vcpu->arch.mmu.direct_map != work->arch.direct_map) ||
7484
	      work->wakeup_all)
G
Gleb Natapov 已提交
7485 7486 7487 7488 7489 7490
		return;

	r = kvm_mmu_reload(vcpu);
	if (unlikely(r))
		return;

X
Xiao Guangrong 已提交
7491 7492 7493 7494
	if (!vcpu->arch.mmu.direct_map &&
	      work->arch.cr3 != vcpu->arch.mmu.get_cr3(vcpu))
		return;

G
Gleb Natapov 已提交
7495 7496 7497
	vcpu->arch.mmu.page_fault(vcpu, work->gva, 0, true);
}

7498 7499 7500 7501 7502 7503 7504 7505 7506 7507 7508 7509 7510 7511 7512 7513 7514 7515 7516 7517 7518 7519 7520 7521 7522 7523
static inline u32 kvm_async_pf_hash_fn(gfn_t gfn)
{
	return hash_32(gfn & 0xffffffff, order_base_2(ASYNC_PF_PER_VCPU));
}

static inline u32 kvm_async_pf_next_probe(u32 key)
{
	return (key + 1) & (roundup_pow_of_two(ASYNC_PF_PER_VCPU) - 1);
}

static void kvm_add_async_pf_gfn(struct kvm_vcpu *vcpu, gfn_t gfn)
{
	u32 key = kvm_async_pf_hash_fn(gfn);

	while (vcpu->arch.apf.gfns[key] != ~0)
		key = kvm_async_pf_next_probe(key);

	vcpu->arch.apf.gfns[key] = gfn;
}

static u32 kvm_async_pf_gfn_slot(struct kvm_vcpu *vcpu, gfn_t gfn)
{
	int i;
	u32 key = kvm_async_pf_hash_fn(gfn);

	for (i = 0; i < roundup_pow_of_two(ASYNC_PF_PER_VCPU) &&
7524 7525
		     (vcpu->arch.apf.gfns[key] != gfn &&
		      vcpu->arch.apf.gfns[key] != ~0); i++)
7526 7527 7528 7529 7530 7531 7532 7533 7534 7535 7536 7537 7538 7539 7540 7541 7542 7543 7544 7545 7546 7547 7548 7549 7550 7551 7552 7553 7554 7555 7556 7557 7558
		key = kvm_async_pf_next_probe(key);

	return key;
}

bool kvm_find_async_pf_gfn(struct kvm_vcpu *vcpu, gfn_t gfn)
{
	return vcpu->arch.apf.gfns[kvm_async_pf_gfn_slot(vcpu, gfn)] == gfn;
}

static void kvm_del_async_pf_gfn(struct kvm_vcpu *vcpu, gfn_t gfn)
{
	u32 i, j, k;

	i = j = kvm_async_pf_gfn_slot(vcpu, gfn);
	while (true) {
		vcpu->arch.apf.gfns[i] = ~0;
		do {
			j = kvm_async_pf_next_probe(j);
			if (vcpu->arch.apf.gfns[j] == ~0)
				return;
			k = kvm_async_pf_hash_fn(vcpu->arch.apf.gfns[j]);
			/*
			 * k lies cyclically in ]i,j]
			 * |    i.k.j |
			 * |....j i.k.| or  |.k..j i...|
			 */
		} while ((i <= j) ? (i < k && k <= j) : (i < k || k <= j));
		vcpu->arch.apf.gfns[i] = vcpu->arch.apf.gfns[j];
		i = j;
	}
}

7559 7560 7561 7562 7563 7564 7565
static int apf_put_user(struct kvm_vcpu *vcpu, u32 val)
{

	return kvm_write_guest_cached(vcpu->kvm, &vcpu->arch.apf.data, &val,
				      sizeof(val));
}

7566 7567 7568
void kvm_arch_async_page_not_present(struct kvm_vcpu *vcpu,
				     struct kvm_async_pf *work)
{
7569 7570
	struct x86_exception fault;

7571
	trace_kvm_async_pf_not_present(work->arch.token, work->gva);
7572
	kvm_add_async_pf_gfn(vcpu, work->arch.gfn);
7573 7574

	if (!(vcpu->arch.apf.msr_val & KVM_ASYNC_PF_ENABLED) ||
7575 7576
	    (vcpu->arch.apf.send_user_only &&
	     kvm_x86_ops->get_cpl(vcpu) == 0))
7577 7578
		kvm_make_request(KVM_REQ_APF_HALT, vcpu);
	else if (!apf_put_user(vcpu, KVM_PV_REASON_PAGE_NOT_PRESENT)) {
7579 7580 7581 7582 7583 7584
		fault.vector = PF_VECTOR;
		fault.error_code_valid = true;
		fault.error_code = 0;
		fault.nested_page_fault = false;
		fault.address = work->arch.token;
		kvm_inject_page_fault(vcpu, &fault);
7585
	}
7586 7587 7588 7589 7590
}

void kvm_arch_async_page_present(struct kvm_vcpu *vcpu,
				 struct kvm_async_pf *work)
{
7591 7592
	struct x86_exception fault;

7593
	trace_kvm_async_pf_ready(work->arch.token, work->gva);
7594
	if (work->wakeup_all)
7595 7596 7597 7598 7599 7600
		work->arch.token = ~0; /* broadcast wakeup */
	else
		kvm_del_async_pf_gfn(vcpu, work->arch.gfn);

	if ((vcpu->arch.apf.msr_val & KVM_ASYNC_PF_ENABLED) &&
	    !apf_put_user(vcpu, KVM_PV_REASON_PAGE_READY)) {
7601 7602 7603 7604 7605 7606
		fault.vector = PF_VECTOR;
		fault.error_code_valid = true;
		fault.error_code = 0;
		fault.nested_page_fault = false;
		fault.address = work->arch.token;
		kvm_inject_page_fault(vcpu, &fault);
7607
	}
7608
	vcpu->arch.apf.halted = false;
7609
	vcpu->arch.mp_state = KVM_MP_STATE_RUNNABLE;
7610 7611 7612 7613 7614 7615 7616 7617 7618
}

bool kvm_arch_can_inject_async_page_present(struct kvm_vcpu *vcpu)
{
	if (!(vcpu->arch.apf.msr_val & KVM_ASYNC_PF_ENABLED))
		return true;
	else
		return !kvm_event_needs_reinjection(vcpu) &&
			kvm_x86_ops->interrupt_allowed(vcpu);
7619 7620
}

7621 7622 7623 7624 7625 7626 7627 7628 7629 7630 7631 7632 7633 7634 7635 7636 7637 7638
void kvm_arch_register_noncoherent_dma(struct kvm *kvm)
{
	atomic_inc(&kvm->arch.noncoherent_dma_count);
}
EXPORT_SYMBOL_GPL(kvm_arch_register_noncoherent_dma);

void kvm_arch_unregister_noncoherent_dma(struct kvm *kvm)
{
	atomic_dec(&kvm->arch.noncoherent_dma_count);
}
EXPORT_SYMBOL_GPL(kvm_arch_unregister_noncoherent_dma);

bool kvm_arch_has_noncoherent_dma(struct kvm *kvm)
{
	return atomic_read(&kvm->arch.noncoherent_dma_count);
}
EXPORT_SYMBOL_GPL(kvm_arch_has_noncoherent_dma);

7639 7640 7641 7642 7643
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_exit);
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_inj_virq);
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_page_fault);
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_msr);
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_cr);
7644
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_nested_vmrun);
7645
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_nested_vmexit);
7646
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_nested_vmexit_inject);
7647
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_nested_intr_vmexit);
7648
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_invlpga);
7649
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_skinit);
7650
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_nested_intercepts);
7651
EXPORT_TRACEPOINT_SYMBOL_GPL(kvm_write_tsc_offset);