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/*
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 * QEMU KVM support
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 *
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 * Copyright (C) 2006-2008 Qumranet Technologies
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 * Copyright IBM, Corp. 2008
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 *
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 * Authors:
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 *  Anthony Liguori   <aliguori@us.ibm.com>
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 *
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 * This work is licensed under the terms of the GNU GPL, version 2 or later.
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 * See the COPYING file in the top-level directory.
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 *
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 */
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#include <sys/types.h>
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#include <sys/ioctl.h>
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#include <sys/mman.h>
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#include <sys/utsname.h>
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#include <linux/kvm.h>
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#include "qemu-common.h"
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#include "sysemu.h"
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#include "kvm.h"
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#include "cpu.h"
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#include "gdbstub.h"
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#include "host-utils.h"
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#include "hw/pc.h"
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#include "hw/apic.h"
30 35bed8ee Paul Brook
#include "ioport.h"
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#ifdef CONFIG_KVM_PARA
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#include <linux/kvm_para.h>
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#endif
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//
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//#define DEBUG_KVM
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#ifdef DEBUG_KVM
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#define DPRINTF(fmt, ...) \
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    do { fprintf(stderr, fmt, ## __VA_ARGS__); } while (0)
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#else
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#define DPRINTF(fmt, ...) \
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    do { } while (0)
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#endif
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#define MSR_KVM_WALL_CLOCK  0x11
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#define MSR_KVM_SYSTEM_TIME 0x12
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#ifndef BUS_MCEERR_AR
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#define BUS_MCEERR_AR 4
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#endif
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#ifndef BUS_MCEERR_AO
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#define BUS_MCEERR_AO 5
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#endif
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const KVMCapabilityInfo kvm_arch_required_capabilities[] = {
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    KVM_CAP_INFO(SET_TSS_ADDR),
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    KVM_CAP_INFO(EXT_CPUID),
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    KVM_CAP_INFO(MP_STATE),
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    KVM_CAP_LAST_INFO
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};
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static bool has_msr_star;
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static bool has_msr_hsave_pa;
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#if defined(CONFIG_KVM_PARA) && defined(KVM_CAP_ASYNC_PF)
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static bool has_msr_async_pf_en;
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#endif
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static int lm_capable_kernel;
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static struct kvm_cpuid2 *try_get_cpuid(KVMState *s, int max)
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{
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    struct kvm_cpuid2 *cpuid;
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    int r, size;
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    size = sizeof(*cpuid) + max * sizeof(*cpuid->entries);
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    cpuid = (struct kvm_cpuid2 *)qemu_mallocz(size);
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    cpuid->nent = max;
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    r = kvm_ioctl(s, KVM_GET_SUPPORTED_CPUID, cpuid);
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    if (r == 0 && cpuid->nent >= max) {
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        r = -E2BIG;
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    }
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    if (r < 0) {
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        if (r == -E2BIG) {
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            qemu_free(cpuid);
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            return NULL;
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        } else {
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            fprintf(stderr, "KVM_GET_SUPPORTED_CPUID failed: %s\n",
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                    strerror(-r));
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            exit(1);
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        }
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    }
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    return cpuid;
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}
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uint32_t kvm_arch_get_supported_cpuid(CPUState *env, uint32_t function,
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                                      uint32_t index, int reg)
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{
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    struct kvm_cpuid2 *cpuid;
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    int i, max;
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    uint32_t ret = 0;
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    uint32_t cpuid_1_edx;
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    max = 1;
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    while ((cpuid = try_get_cpuid(env->kvm_state, max)) == NULL) {
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        max *= 2;
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    }
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    for (i = 0; i < cpuid->nent; ++i) {
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        if (cpuid->entries[i].function == function &&
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            cpuid->entries[i].index == index) {
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            switch (reg) {
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            case R_EAX:
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                ret = cpuid->entries[i].eax;
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                break;
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            case R_EBX:
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                ret = cpuid->entries[i].ebx;
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                break;
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            case R_ECX:
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                ret = cpuid->entries[i].ecx;
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                break;
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            case R_EDX:
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                ret = cpuid->entries[i].edx;
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                switch (function) {
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                case 1:
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                    /* KVM before 2.6.30 misreports the following features */
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                    ret |= CPUID_MTRR | CPUID_PAT | CPUID_MCE | CPUID_MCA;
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                    break;
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                case 0x80000001:
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                    /* On Intel, kvm returns cpuid according to the Intel spec,
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                     * so add missing bits according to the AMD spec:
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                     */
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                    cpuid_1_edx = kvm_arch_get_supported_cpuid(env, 1, 0, R_EDX);
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                    ret |= cpuid_1_edx & 0x183f7ff;
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                    break;
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                }
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                break;
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            }
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        }
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    }
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    qemu_free(cpuid);
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    return ret;
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}
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#ifdef CONFIG_KVM_PARA
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struct kvm_para_features {
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    int cap;
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    int feature;
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} para_features[] = {
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    { KVM_CAP_CLOCKSOURCE, KVM_FEATURE_CLOCKSOURCE },
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    { KVM_CAP_NOP_IO_DELAY, KVM_FEATURE_NOP_IO_DELAY },
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    { KVM_CAP_PV_MMU, KVM_FEATURE_MMU_OP },
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#ifdef KVM_CAP_ASYNC_PF
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    { KVM_CAP_ASYNC_PF, KVM_FEATURE_ASYNC_PF },
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#endif
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    { -1, -1 }
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};
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static int get_para_features(CPUState *env)
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{
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    int i, features = 0;
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    for (i = 0; i < ARRAY_SIZE(para_features) - 1; i++) {
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        if (kvm_check_extension(env->kvm_state, para_features[i].cap)) {
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            features |= (1 << para_features[i].feature);
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        }
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    }
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#ifdef KVM_CAP_ASYNC_PF
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    has_msr_async_pf_en = features & (1 << KVM_FEATURE_ASYNC_PF);
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#endif
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    return features;
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}
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#endif /* CONFIG_KVM_PARA */
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#ifdef KVM_CAP_MCE
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static int kvm_get_mce_cap_supported(KVMState *s, uint64_t *mce_cap,
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                                     int *max_banks)
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{
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    int r;
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    r = kvm_check_extension(s, KVM_CAP_MCE);
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    if (r > 0) {
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        *max_banks = r;
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        return kvm_ioctl(s, KVM_X86_GET_MCE_CAP_SUPPORTED, mce_cap);
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    }
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    return -ENOSYS;
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}
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static void kvm_mce_inject(CPUState *env, target_phys_addr_t paddr, int code)
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{
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    uint64_t status = MCI_STATUS_VAL | MCI_STATUS_UC | MCI_STATUS_EN |
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                      MCI_STATUS_MISCV | MCI_STATUS_ADDRV | MCI_STATUS_S;
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    uint64_t mcg_status = MCG_STATUS_MCIP;
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    if (code == BUS_MCEERR_AR) {
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        status |= MCI_STATUS_AR | 0x134;
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        mcg_status |= MCG_STATUS_EIPV;
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    } else {
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        status |= 0xc0;
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        mcg_status |= MCG_STATUS_RIPV;
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    }
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    cpu_x86_inject_mce(NULL, env, 9, status, mcg_status, paddr,
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                       (MCM_ADDR_PHYS << 6) | 0xc,
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                       cpu_x86_support_mca_broadcast(env) ?
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                       MCE_INJECT_BROADCAST : 0);
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}
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#endif /* KVM_CAP_MCE */
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static void hardware_memory_error(void)
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{
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    fprintf(stderr, "Hardware memory error!\n");
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    exit(1);
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}
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int kvm_arch_on_sigbus_vcpu(CPUState *env, int code, void *addr)
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{
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#ifdef KVM_CAP_MCE
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    ram_addr_t ram_addr;
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    target_phys_addr_t paddr;
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    if ((env->mcg_cap & MCG_SER_P) && addr
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        && (code == BUS_MCEERR_AR || code == BUS_MCEERR_AO)) {
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        if (qemu_ram_addr_from_host(addr, &ram_addr) ||
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            !kvm_physical_memory_addr_from_ram(env->kvm_state, ram_addr,
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                                               &paddr)) {
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            fprintf(stderr, "Hardware memory error for memory used by "
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                    "QEMU itself instead of guest system!\n");
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            /* Hope we are lucky for AO MCE */
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            if (code == BUS_MCEERR_AO) {
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                return 0;
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            } else {
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                hardware_memory_error();
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            }
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        }
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        kvm_mce_inject(env, paddr, code);
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    } else
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#endif /* KVM_CAP_MCE */
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    {
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        if (code == BUS_MCEERR_AO) {
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            return 0;
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        } else if (code == BUS_MCEERR_AR) {
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            hardware_memory_error();
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        } else {
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            return 1;
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        }
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    }
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    return 0;
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}
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int kvm_arch_on_sigbus(int code, void *addr)
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{
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#ifdef KVM_CAP_MCE
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    if ((first_cpu->mcg_cap & MCG_SER_P) && addr && code == BUS_MCEERR_AO) {
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        ram_addr_t ram_addr;
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        target_phys_addr_t paddr;
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        /* Hope we are lucky for AO MCE */
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        if (qemu_ram_addr_from_host(addr, &ram_addr) ||
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            !kvm_physical_memory_addr_from_ram(first_cpu->kvm_state, ram_addr,
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                                               &paddr)) {
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            fprintf(stderr, "Hardware memory error for memory used by "
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                    "QEMU itself instead of guest system!: %p\n", addr);
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            return 0;
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        }
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        kvm_mce_inject(first_cpu, paddr, code);
267 419fb20a Jan Kiszka
    } else
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#endif /* KVM_CAP_MCE */
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    {
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        if (code == BUS_MCEERR_AO) {
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            return 0;
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        } else if (code == BUS_MCEERR_AR) {
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            hardware_memory_error();
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        } else {
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            return 1;
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        }
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    }
278 419fb20a Jan Kiszka
    return 0;
279 419fb20a Jan Kiszka
}
280 e7701825 Marcelo Tosatti
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static int kvm_inject_mce_oldstyle(CPUState *env)
282 ab443475 Jan Kiszka
{
283 ab443475 Jan Kiszka
#ifdef KVM_CAP_MCE
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    if (!kvm_has_vcpu_events() && env->exception_injected == EXCP12_MCHK) {
285 ab443475 Jan Kiszka
        unsigned int bank, bank_num = env->mcg_cap & 0xff;
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        struct kvm_x86_mce mce;
287 ab443475 Jan Kiszka
288 ab443475 Jan Kiszka
        env->exception_injected = -1;
289 ab443475 Jan Kiszka
290 ab443475 Jan Kiszka
        /*
291 ab443475 Jan Kiszka
         * There must be at least one bank in use if an MCE is pending.
292 ab443475 Jan Kiszka
         * Find it and use its values for the event injection.
293 ab443475 Jan Kiszka
         */
294 ab443475 Jan Kiszka
        for (bank = 0; bank < bank_num; bank++) {
295 ab443475 Jan Kiszka
            if (env->mce_banks[bank * 4 + 1] & MCI_STATUS_VAL) {
296 ab443475 Jan Kiszka
                break;
297 ab443475 Jan Kiszka
            }
298 ab443475 Jan Kiszka
        }
299 ab443475 Jan Kiszka
        assert(bank < bank_num);
300 ab443475 Jan Kiszka
301 ab443475 Jan Kiszka
        mce.bank = bank;
302 ab443475 Jan Kiszka
        mce.status = env->mce_banks[bank * 4 + 1];
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        mce.mcg_status = env->mcg_status;
304 ab443475 Jan Kiszka
        mce.addr = env->mce_banks[bank * 4 + 2];
305 ab443475 Jan Kiszka
        mce.misc = env->mce_banks[bank * 4 + 3];
306 ab443475 Jan Kiszka
307 ab443475 Jan Kiszka
        return kvm_vcpu_ioctl(env, KVM_X86_SET_MCE, &mce);
308 ab443475 Jan Kiszka
    }
309 ab443475 Jan Kiszka
#endif /* KVM_CAP_MCE */
310 ab443475 Jan Kiszka
    return 0;
311 ab443475 Jan Kiszka
}
312 ab443475 Jan Kiszka
313 b8cc45d6 Glauber Costa
static void cpu_update_state(void *opaque, int running, int reason)
314 b8cc45d6 Glauber Costa
{
315 b8cc45d6 Glauber Costa
    CPUState *env = opaque;
316 b8cc45d6 Glauber Costa
317 b8cc45d6 Glauber Costa
    if (running) {
318 b8cc45d6 Glauber Costa
        env->tsc_valid = false;
319 b8cc45d6 Glauber Costa
    }
320 b8cc45d6 Glauber Costa
}
321 b8cc45d6 Glauber Costa
322 05330448 aliguori
int kvm_arch_init_vcpu(CPUState *env)
323 05330448 aliguori
{
324 05330448 aliguori
    struct {
325 486bd5a2 aliguori
        struct kvm_cpuid2 cpuid;
326 486bd5a2 aliguori
        struct kvm_cpuid_entry2 entries[100];
327 05330448 aliguori
    } __attribute__((packed)) cpuid_data;
328 486bd5a2 aliguori
    uint32_t limit, i, j, cpuid_i;
329 a33609ca aliguori
    uint32_t unused;
330 bb0300dc Gleb Natapov
    struct kvm_cpuid_entry2 *c;
331 521f0798 Jan Kiszka
#ifdef CONFIG_KVM_PARA
332 bb0300dc Gleb Natapov
    uint32_t signature[3];
333 bb0300dc Gleb Natapov
#endif
334 05330448 aliguori
335 c958a8bd Sheng Yang
    env->cpuid_features &= kvm_arch_get_supported_cpuid(env, 1, 0, R_EDX);
336 6c0d7ee8 Andre Przywara
337 6c0d7ee8 Andre Przywara
    i = env->cpuid_ext_features & CPUID_EXT_HYPERVISOR;
338 c958a8bd Sheng Yang
    env->cpuid_ext_features &= kvm_arch_get_supported_cpuid(env, 1, 0, R_ECX);
339 6c0d7ee8 Andre Przywara
    env->cpuid_ext_features |= i;
340 6c0d7ee8 Andre Przywara
341 457dfed6 Andre Przywara
    env->cpuid_ext2_features &= kvm_arch_get_supported_cpuid(env, 0x80000001,
342 c958a8bd Sheng Yang
                                                             0, R_EDX);
343 457dfed6 Andre Przywara
    env->cpuid_ext3_features &= kvm_arch_get_supported_cpuid(env, 0x80000001,
344 c958a8bd Sheng Yang
                                                             0, R_ECX);
345 296acb64 Joerg Roedel
    env->cpuid_svm_features  &= kvm_arch_get_supported_cpuid(env, 0x8000000A,
346 296acb64 Joerg Roedel
                                                             0, R_EDX);
347 296acb64 Joerg Roedel
348 6c1f42fe Andre Przywara
349 05330448 aliguori
    cpuid_i = 0;
350 05330448 aliguori
351 bb0300dc Gleb Natapov
#ifdef CONFIG_KVM_PARA
352 bb0300dc Gleb Natapov
    /* Paravirtualization CPUIDs */
353 bb0300dc Gleb Natapov
    memcpy(signature, "KVMKVMKVM\0\0\0", 12);
354 bb0300dc Gleb Natapov
    c = &cpuid_data.entries[cpuid_i++];
355 bb0300dc Gleb Natapov
    memset(c, 0, sizeof(*c));
356 bb0300dc Gleb Natapov
    c->function = KVM_CPUID_SIGNATURE;
357 bb0300dc Gleb Natapov
    c->eax = 0;
358 bb0300dc Gleb Natapov
    c->ebx = signature[0];
359 bb0300dc Gleb Natapov
    c->ecx = signature[1];
360 bb0300dc Gleb Natapov
    c->edx = signature[2];
361 bb0300dc Gleb Natapov
362 bb0300dc Gleb Natapov
    c = &cpuid_data.entries[cpuid_i++];
363 bb0300dc Gleb Natapov
    memset(c, 0, sizeof(*c));
364 bb0300dc Gleb Natapov
    c->function = KVM_CPUID_FEATURES;
365 bb0300dc Gleb Natapov
    c->eax = env->cpuid_kvm_features & get_para_features(env);
366 bb0300dc Gleb Natapov
#endif
367 bb0300dc Gleb Natapov
368 a33609ca aliguori
    cpu_x86_cpuid(env, 0, 0, &limit, &unused, &unused, &unused);
369 05330448 aliguori
370 05330448 aliguori
    for (i = 0; i <= limit; i++) {
371 bb0300dc Gleb Natapov
        c = &cpuid_data.entries[cpuid_i++];
372 486bd5a2 aliguori
373 486bd5a2 aliguori
        switch (i) {
374 a36b1029 aliguori
        case 2: {
375 a36b1029 aliguori
            /* Keep reading function 2 till all the input is received */
376 a36b1029 aliguori
            int times;
377 a36b1029 aliguori
378 a36b1029 aliguori
            c->function = i;
379 a33609ca aliguori
            c->flags = KVM_CPUID_FLAG_STATEFUL_FUNC |
380 a33609ca aliguori
                       KVM_CPUID_FLAG_STATE_READ_NEXT;
381 a33609ca aliguori
            cpu_x86_cpuid(env, i, 0, &c->eax, &c->ebx, &c->ecx, &c->edx);
382 a33609ca aliguori
            times = c->eax & 0xff;
383 a36b1029 aliguori
384 a36b1029 aliguori
            for (j = 1; j < times; ++j) {
385 a33609ca aliguori
                c = &cpuid_data.entries[cpuid_i++];
386 a36b1029 aliguori
                c->function = i;
387 a33609ca aliguori
                c->flags = KVM_CPUID_FLAG_STATEFUL_FUNC;
388 a33609ca aliguori
                cpu_x86_cpuid(env, i, 0, &c->eax, &c->ebx, &c->ecx, &c->edx);
389 a36b1029 aliguori
            }
390 a36b1029 aliguori
            break;
391 a36b1029 aliguori
        }
392 486bd5a2 aliguori
        case 4:
393 486bd5a2 aliguori
        case 0xb:
394 486bd5a2 aliguori
        case 0xd:
395 486bd5a2 aliguori
            for (j = 0; ; j++) {
396 486bd5a2 aliguori
                c->function = i;
397 486bd5a2 aliguori
                c->flags = KVM_CPUID_FLAG_SIGNIFCANT_INDEX;
398 486bd5a2 aliguori
                c->index = j;
399 a33609ca aliguori
                cpu_x86_cpuid(env, i, j, &c->eax, &c->ebx, &c->ecx, &c->edx);
400 486bd5a2 aliguori
401 b9bec74b Jan Kiszka
                if (i == 4 && c->eax == 0) {
402 486bd5a2 aliguori
                    break;
403 b9bec74b Jan Kiszka
                }
404 b9bec74b Jan Kiszka
                if (i == 0xb && !(c->ecx & 0xff00)) {
405 486bd5a2 aliguori
                    break;
406 b9bec74b Jan Kiszka
                }
407 b9bec74b Jan Kiszka
                if (i == 0xd && c->eax == 0) {
408 486bd5a2 aliguori
                    break;
409 b9bec74b Jan Kiszka
                }
410 a33609ca aliguori
                c = &cpuid_data.entries[cpuid_i++];
411 486bd5a2 aliguori
            }
412 486bd5a2 aliguori
            break;
413 486bd5a2 aliguori
        default:
414 486bd5a2 aliguori
            c->function = i;
415 a33609ca aliguori
            c->flags = 0;
416 a33609ca aliguori
            cpu_x86_cpuid(env, i, 0, &c->eax, &c->ebx, &c->ecx, &c->edx);
417 486bd5a2 aliguori
            break;
418 486bd5a2 aliguori
        }
419 05330448 aliguori
    }
420 a33609ca aliguori
    cpu_x86_cpuid(env, 0x80000000, 0, &limit, &unused, &unused, &unused);
421 05330448 aliguori
422 05330448 aliguori
    for (i = 0x80000000; i <= limit; i++) {
423 bb0300dc Gleb Natapov
        c = &cpuid_data.entries[cpuid_i++];
424 05330448 aliguori
425 05330448 aliguori
        c->function = i;
426 a33609ca aliguori
        c->flags = 0;
427 a33609ca aliguori
        cpu_x86_cpuid(env, i, 0, &c->eax, &c->ebx, &c->ecx, &c->edx);
428 05330448 aliguori
    }
429 05330448 aliguori
430 05330448 aliguori
    cpuid_data.cpuid.nent = cpuid_i;
431 05330448 aliguori
432 e7701825 Marcelo Tosatti
#ifdef KVM_CAP_MCE
433 e7701825 Marcelo Tosatti
    if (((env->cpuid_version >> 8)&0xF) >= 6
434 e7701825 Marcelo Tosatti
        && (env->cpuid_features&(CPUID_MCE|CPUID_MCA)) == (CPUID_MCE|CPUID_MCA)
435 e7701825 Marcelo Tosatti
        && kvm_check_extension(env->kvm_state, KVM_CAP_MCE) > 0) {
436 e7701825 Marcelo Tosatti
        uint64_t mcg_cap;
437 e7701825 Marcelo Tosatti
        int banks;
438 32a42024 Jan Kiszka
        int ret;
439 e7701825 Marcelo Tosatti
440 75d49497 Jan Kiszka
        ret = kvm_get_mce_cap_supported(env->kvm_state, &mcg_cap, &banks);
441 75d49497 Jan Kiszka
        if (ret < 0) {
442 75d49497 Jan Kiszka
            fprintf(stderr, "kvm_get_mce_cap_supported: %s", strerror(-ret));
443 75d49497 Jan Kiszka
            return ret;
444 e7701825 Marcelo Tosatti
        }
445 75d49497 Jan Kiszka
446 75d49497 Jan Kiszka
        if (banks > MCE_BANKS_DEF) {
447 75d49497 Jan Kiszka
            banks = MCE_BANKS_DEF;
448 75d49497 Jan Kiszka
        }
449 75d49497 Jan Kiszka
        mcg_cap &= MCE_CAP_DEF;
450 75d49497 Jan Kiszka
        mcg_cap |= banks;
451 75d49497 Jan Kiszka
        ret = kvm_vcpu_ioctl(env, KVM_X86_SETUP_MCE, &mcg_cap);
452 75d49497 Jan Kiszka
        if (ret < 0) {
453 75d49497 Jan Kiszka
            fprintf(stderr, "KVM_X86_SETUP_MCE: %s", strerror(-ret));
454 75d49497 Jan Kiszka
            return ret;
455 75d49497 Jan Kiszka
        }
456 75d49497 Jan Kiszka
457 75d49497 Jan Kiszka
        env->mcg_cap = mcg_cap;
458 e7701825 Marcelo Tosatti
    }
459 e7701825 Marcelo Tosatti
#endif
460 e7701825 Marcelo Tosatti
461 b8cc45d6 Glauber Costa
    qemu_add_vm_change_state_handler(cpu_update_state, env);
462 b8cc45d6 Glauber Costa
463 486bd5a2 aliguori
    return kvm_vcpu_ioctl(env, KVM_SET_CPUID2, &cpuid_data);
464 05330448 aliguori
}
465 05330448 aliguori
466 caa5af0f Jan Kiszka
void kvm_arch_reset_vcpu(CPUState *env)
467 caa5af0f Jan Kiszka
{
468 e73223a5 Gleb Natapov
    env->exception_injected = -1;
469 0e607a80 Jan Kiszka
    env->interrupt_injected = -1;
470 1a5e9d2f Jan Kiszka
    env->xcr0 = 1;
471 ddced198 Marcelo Tosatti
    if (kvm_irqchip_in_kernel()) {
472 ddced198 Marcelo Tosatti
        env->mp_state = cpu_is_bsp(env) ? KVM_MP_STATE_RUNNABLE :
473 ddced198 Marcelo Tosatti
                                          KVM_MP_STATE_UNINITIALIZED;
474 ddced198 Marcelo Tosatti
    } else {
475 ddced198 Marcelo Tosatti
        env->mp_state = KVM_MP_STATE_RUNNABLE;
476 ddced198 Marcelo Tosatti
    }
477 caa5af0f Jan Kiszka
}
478 caa5af0f Jan Kiszka
479 c3a3a7d3 Jan Kiszka
static int kvm_get_supported_msrs(KVMState *s)
480 05330448 aliguori
{
481 75b10c43 Marcelo Tosatti
    static int kvm_supported_msrs;
482 c3a3a7d3 Jan Kiszka
    int ret = 0;
483 05330448 aliguori
484 05330448 aliguori
    /* first time */
485 75b10c43 Marcelo Tosatti
    if (kvm_supported_msrs == 0) {
486 05330448 aliguori
        struct kvm_msr_list msr_list, *kvm_msr_list;
487 05330448 aliguori
488 75b10c43 Marcelo Tosatti
        kvm_supported_msrs = -1;
489 05330448 aliguori
490 05330448 aliguori
        /* Obtain MSR list from KVM.  These are the MSRs that we must
491 05330448 aliguori
         * save/restore */
492 4c9f7372 aliguori
        msr_list.nmsrs = 0;
493 c3a3a7d3 Jan Kiszka
        ret = kvm_ioctl(s, KVM_GET_MSR_INDEX_LIST, &msr_list);
494 6fb6d245 Jan Kiszka
        if (ret < 0 && ret != -E2BIG) {
495 c3a3a7d3 Jan Kiszka
            return ret;
496 6fb6d245 Jan Kiszka
        }
497 d9db889f Jan Kiszka
        /* Old kernel modules had a bug and could write beyond the provided
498 d9db889f Jan Kiszka
           memory. Allocate at least a safe amount of 1K. */
499 d9db889f Jan Kiszka
        kvm_msr_list = qemu_mallocz(MAX(1024, sizeof(msr_list) +
500 d9db889f Jan Kiszka
                                              msr_list.nmsrs *
501 d9db889f Jan Kiszka
                                              sizeof(msr_list.indices[0])));
502 05330448 aliguori
503 55308450 aliguori
        kvm_msr_list->nmsrs = msr_list.nmsrs;
504 c3a3a7d3 Jan Kiszka
        ret = kvm_ioctl(s, KVM_GET_MSR_INDEX_LIST, kvm_msr_list);
505 05330448 aliguori
        if (ret >= 0) {
506 05330448 aliguori
            int i;
507 05330448 aliguori
508 05330448 aliguori
            for (i = 0; i < kvm_msr_list->nmsrs; i++) {
509 05330448 aliguori
                if (kvm_msr_list->indices[i] == MSR_STAR) {
510 c3a3a7d3 Jan Kiszka
                    has_msr_star = true;
511 75b10c43 Marcelo Tosatti
                    continue;
512 75b10c43 Marcelo Tosatti
                }
513 75b10c43 Marcelo Tosatti
                if (kvm_msr_list->indices[i] == MSR_VM_HSAVE_PA) {
514 c3a3a7d3 Jan Kiszka
                    has_msr_hsave_pa = true;
515 75b10c43 Marcelo Tosatti
                    continue;
516 05330448 aliguori
                }
517 05330448 aliguori
            }
518 05330448 aliguori
        }
519 05330448 aliguori
520 05330448 aliguori
        free(kvm_msr_list);
521 05330448 aliguori
    }
522 05330448 aliguori
523 c3a3a7d3 Jan Kiszka
    return ret;
524 05330448 aliguori
}
525 05330448 aliguori
526 cad1e282 Jan Kiszka
int kvm_arch_init(KVMState *s)
527 20420430 Sheng Yang
{
528 11076198 Jan Kiszka
    uint64_t identity_base = 0xfffbc000;
529 20420430 Sheng Yang
    int ret;
530 25d2e361 Marcelo Tosatti
    struct utsname utsname;
531 20420430 Sheng Yang
532 c3a3a7d3 Jan Kiszka
    ret = kvm_get_supported_msrs(s);
533 20420430 Sheng Yang
    if (ret < 0) {
534 20420430 Sheng Yang
        return ret;
535 20420430 Sheng Yang
    }
536 25d2e361 Marcelo Tosatti
537 25d2e361 Marcelo Tosatti
    uname(&utsname);
538 25d2e361 Marcelo Tosatti
    lm_capable_kernel = strcmp(utsname.machine, "x86_64") == 0;
539 25d2e361 Marcelo Tosatti
540 4c5b10b7 Jes Sorensen
    /*
541 11076198 Jan Kiszka
     * On older Intel CPUs, KVM uses vm86 mode to emulate 16-bit code directly.
542 11076198 Jan Kiszka
     * In order to use vm86 mode, an EPT identity map and a TSS  are needed.
543 11076198 Jan Kiszka
     * Since these must be part of guest physical memory, we need to allocate
544 11076198 Jan Kiszka
     * them, both by setting their start addresses in the kernel and by
545 11076198 Jan Kiszka
     * creating a corresponding e820 entry. We need 4 pages before the BIOS.
546 11076198 Jan Kiszka
     *
547 11076198 Jan Kiszka
     * Older KVM versions may not support setting the identity map base. In
548 11076198 Jan Kiszka
     * that case we need to stick with the default, i.e. a 256K maximum BIOS
549 11076198 Jan Kiszka
     * size.
550 4c5b10b7 Jes Sorensen
     */
551 11076198 Jan Kiszka
#ifdef KVM_CAP_SET_IDENTITY_MAP_ADDR
552 11076198 Jan Kiszka
    if (kvm_check_extension(s, KVM_CAP_SET_IDENTITY_MAP_ADDR)) {
553 11076198 Jan Kiszka
        /* Allows up to 16M BIOSes. */
554 11076198 Jan Kiszka
        identity_base = 0xfeffc000;
555 11076198 Jan Kiszka
556 11076198 Jan Kiszka
        ret = kvm_vm_ioctl(s, KVM_SET_IDENTITY_MAP_ADDR, &identity_base);
557 11076198 Jan Kiszka
        if (ret < 0) {
558 11076198 Jan Kiszka
            return ret;
559 11076198 Jan Kiszka
        }
560 4c5b10b7 Jes Sorensen
    }
561 11076198 Jan Kiszka
#endif
562 11076198 Jan Kiszka
    /* Set TSS base one page after EPT identity map. */
563 11076198 Jan Kiszka
    ret = kvm_vm_ioctl(s, KVM_SET_TSS_ADDR, identity_base + 0x1000);
564 20420430 Sheng Yang
    if (ret < 0) {
565 20420430 Sheng Yang
        return ret;
566 20420430 Sheng Yang
    }
567 20420430 Sheng Yang
568 11076198 Jan Kiszka
    /* Tell fw_cfg to notify the BIOS to reserve the range. */
569 11076198 Jan Kiszka
    ret = e820_add_entry(identity_base, 0x4000, E820_RESERVED);
570 20420430 Sheng Yang
    if (ret < 0) {
571 11076198 Jan Kiszka
        fprintf(stderr, "e820_add_entry() table is full\n");
572 20420430 Sheng Yang
        return ret;
573 20420430 Sheng Yang
    }
574 20420430 Sheng Yang
575 11076198 Jan Kiszka
    return 0;
576 05330448 aliguori
}
577 b9bec74b Jan Kiszka
578 05330448 aliguori
static void set_v8086_seg(struct kvm_segment *lhs, const SegmentCache *rhs)
579 05330448 aliguori
{
580 05330448 aliguori
    lhs->selector = rhs->selector;
581 05330448 aliguori
    lhs->base = rhs->base;
582 05330448 aliguori
    lhs->limit = rhs->limit;
583 05330448 aliguori
    lhs->type = 3;
584 05330448 aliguori
    lhs->present = 1;
585 05330448 aliguori
    lhs->dpl = 3;
586 05330448 aliguori
    lhs->db = 0;
587 05330448 aliguori
    lhs->s = 1;
588 05330448 aliguori
    lhs->l = 0;
589 05330448 aliguori
    lhs->g = 0;
590 05330448 aliguori
    lhs->avl = 0;
591 05330448 aliguori
    lhs->unusable = 0;
592 05330448 aliguori
}
593 05330448 aliguori
594 05330448 aliguori
static void set_seg(struct kvm_segment *lhs, const SegmentCache *rhs)
595 05330448 aliguori
{
596 05330448 aliguori
    unsigned flags = rhs->flags;
597 05330448 aliguori
    lhs->selector = rhs->selector;
598 05330448 aliguori
    lhs->base = rhs->base;
599 05330448 aliguori
    lhs->limit = rhs->limit;
600 05330448 aliguori
    lhs->type = (flags >> DESC_TYPE_SHIFT) & 15;
601 05330448 aliguori
    lhs->present = (flags & DESC_P_MASK) != 0;
602 acaa7550 Jan Kiszka
    lhs->dpl = (flags >> DESC_DPL_SHIFT) & 3;
603 05330448 aliguori
    lhs->db = (flags >> DESC_B_SHIFT) & 1;
604 05330448 aliguori
    lhs->s = (flags & DESC_S_MASK) != 0;
605 05330448 aliguori
    lhs->l = (flags >> DESC_L_SHIFT) & 1;
606 05330448 aliguori
    lhs->g = (flags & DESC_G_MASK) != 0;
607 05330448 aliguori
    lhs->avl = (flags & DESC_AVL_MASK) != 0;
608 05330448 aliguori
    lhs->unusable = 0;
609 05330448 aliguori
}
610 05330448 aliguori
611 05330448 aliguori
static void get_seg(SegmentCache *lhs, const struct kvm_segment *rhs)
612 05330448 aliguori
{
613 05330448 aliguori
    lhs->selector = rhs->selector;
614 05330448 aliguori
    lhs->base = rhs->base;
615 05330448 aliguori
    lhs->limit = rhs->limit;
616 b9bec74b Jan Kiszka
    lhs->flags = (rhs->type << DESC_TYPE_SHIFT) |
617 b9bec74b Jan Kiszka
                 (rhs->present * DESC_P_MASK) |
618 b9bec74b Jan Kiszka
                 (rhs->dpl << DESC_DPL_SHIFT) |
619 b9bec74b Jan Kiszka
                 (rhs->db << DESC_B_SHIFT) |
620 b9bec74b Jan Kiszka
                 (rhs->s * DESC_S_MASK) |
621 b9bec74b Jan Kiszka
                 (rhs->l << DESC_L_SHIFT) |
622 b9bec74b Jan Kiszka
                 (rhs->g * DESC_G_MASK) |
623 b9bec74b Jan Kiszka
                 (rhs->avl * DESC_AVL_MASK);
624 05330448 aliguori
}
625 05330448 aliguori
626 05330448 aliguori
static void kvm_getput_reg(__u64 *kvm_reg, target_ulong *qemu_reg, int set)
627 05330448 aliguori
{
628 b9bec74b Jan Kiszka
    if (set) {
629 05330448 aliguori
        *kvm_reg = *qemu_reg;
630 b9bec74b Jan Kiszka
    } else {
631 05330448 aliguori
        *qemu_reg = *kvm_reg;
632 b9bec74b Jan Kiszka
    }
633 05330448 aliguori
}
634 05330448 aliguori
635 05330448 aliguori
static int kvm_getput_regs(CPUState *env, int set)
636 05330448 aliguori
{
637 05330448 aliguori
    struct kvm_regs regs;
638 05330448 aliguori
    int ret = 0;
639 05330448 aliguori
640 05330448 aliguori
    if (!set) {
641 05330448 aliguori
        ret = kvm_vcpu_ioctl(env, KVM_GET_REGS, &regs);
642 b9bec74b Jan Kiszka
        if (ret < 0) {
643 05330448 aliguori
            return ret;
644 b9bec74b Jan Kiszka
        }
645 05330448 aliguori
    }
646 05330448 aliguori
647 05330448 aliguori
    kvm_getput_reg(&regs.rax, &env->regs[R_EAX], set);
648 05330448 aliguori
    kvm_getput_reg(&regs.rbx, &env->regs[R_EBX], set);
649 05330448 aliguori
    kvm_getput_reg(&regs.rcx, &env->regs[R_ECX], set);
650 05330448 aliguori
    kvm_getput_reg(&regs.rdx, &env->regs[R_EDX], set);
651 05330448 aliguori
    kvm_getput_reg(&regs.rsi, &env->regs[R_ESI], set);
652 05330448 aliguori
    kvm_getput_reg(&regs.rdi, &env->regs[R_EDI], set);
653 05330448 aliguori
    kvm_getput_reg(&regs.rsp, &env->regs[R_ESP], set);
654 05330448 aliguori
    kvm_getput_reg(&regs.rbp, &env->regs[R_EBP], set);
655 05330448 aliguori
#ifdef TARGET_X86_64
656 05330448 aliguori
    kvm_getput_reg(&regs.r8, &env->regs[8], set);
657 05330448 aliguori
    kvm_getput_reg(&regs.r9, &env->regs[9], set);
658 05330448 aliguori
    kvm_getput_reg(&regs.r10, &env->regs[10], set);
659 05330448 aliguori
    kvm_getput_reg(&regs.r11, &env->regs[11], set);
660 05330448 aliguori
    kvm_getput_reg(&regs.r12, &env->regs[12], set);
661 05330448 aliguori
    kvm_getput_reg(&regs.r13, &env->regs[13], set);
662 05330448 aliguori
    kvm_getput_reg(&regs.r14, &env->regs[14], set);
663 05330448 aliguori
    kvm_getput_reg(&regs.r15, &env->regs[15], set);
664 05330448 aliguori
#endif
665 05330448 aliguori
666 05330448 aliguori
    kvm_getput_reg(&regs.rflags, &env->eflags, set);
667 05330448 aliguori
    kvm_getput_reg(&regs.rip, &env->eip, set);
668 05330448 aliguori
669 b9bec74b Jan Kiszka
    if (set) {
670 05330448 aliguori
        ret = kvm_vcpu_ioctl(env, KVM_SET_REGS, &regs);
671 b9bec74b Jan Kiszka
    }
672 05330448 aliguori
673 05330448 aliguori
    return ret;
674 05330448 aliguori
}
675 05330448 aliguori
676 05330448 aliguori
static int kvm_put_fpu(CPUState *env)
677 05330448 aliguori
{
678 05330448 aliguori
    struct kvm_fpu fpu;
679 05330448 aliguori
    int i;
680 05330448 aliguori
681 05330448 aliguori
    memset(&fpu, 0, sizeof fpu);
682 05330448 aliguori
    fpu.fsw = env->fpus & ~(7 << 11);
683 05330448 aliguori
    fpu.fsw |= (env->fpstt & 7) << 11;
684 05330448 aliguori
    fpu.fcw = env->fpuc;
685 b9bec74b Jan Kiszka
    for (i = 0; i < 8; ++i) {
686 b9bec74b Jan Kiszka
        fpu.ftwx |= (!env->fptags[i]) << i;
687 b9bec74b Jan Kiszka
    }
688 05330448 aliguori
    memcpy(fpu.fpr, env->fpregs, sizeof env->fpregs);
689 05330448 aliguori
    memcpy(fpu.xmm, env->xmm_regs, sizeof env->xmm_regs);
690 05330448 aliguori
    fpu.mxcsr = env->mxcsr;
691 05330448 aliguori
692 05330448 aliguori
    return kvm_vcpu_ioctl(env, KVM_SET_FPU, &fpu);
693 05330448 aliguori
}
694 05330448 aliguori
695 f1665b21 Sheng Yang
#ifdef KVM_CAP_XSAVE
696 f1665b21 Sheng Yang
#define XSAVE_CWD_RIP     2
697 f1665b21 Sheng Yang
#define XSAVE_CWD_RDP     4
698 f1665b21 Sheng Yang
#define XSAVE_MXCSR       6
699 f1665b21 Sheng Yang
#define XSAVE_ST_SPACE    8
700 f1665b21 Sheng Yang
#define XSAVE_XMM_SPACE   40
701 f1665b21 Sheng Yang
#define XSAVE_XSTATE_BV   128
702 f1665b21 Sheng Yang
#define XSAVE_YMMH_SPACE  144
703 f1665b21 Sheng Yang
#endif
704 f1665b21 Sheng Yang
705 f1665b21 Sheng Yang
static int kvm_put_xsave(CPUState *env)
706 f1665b21 Sheng Yang
{
707 f1665b21 Sheng Yang
#ifdef KVM_CAP_XSAVE
708 0f53994f Marcelo Tosatti
    int i, r;
709 f1665b21 Sheng Yang
    struct kvm_xsave* xsave;
710 f1665b21 Sheng Yang
    uint16_t cwd, swd, twd, fop;
711 f1665b21 Sheng Yang
712 b9bec74b Jan Kiszka
    if (!kvm_has_xsave()) {
713 f1665b21 Sheng Yang
        return kvm_put_fpu(env);
714 b9bec74b Jan Kiszka
    }
715 f1665b21 Sheng Yang
716 f1665b21 Sheng Yang
    xsave = qemu_memalign(4096, sizeof(struct kvm_xsave));
717 f1665b21 Sheng Yang
    memset(xsave, 0, sizeof(struct kvm_xsave));
718 f1665b21 Sheng Yang
    cwd = swd = twd = fop = 0;
719 f1665b21 Sheng Yang
    swd = env->fpus & ~(7 << 11);
720 f1665b21 Sheng Yang
    swd |= (env->fpstt & 7) << 11;
721 f1665b21 Sheng Yang
    cwd = env->fpuc;
722 b9bec74b Jan Kiszka
    for (i = 0; i < 8; ++i) {
723 f1665b21 Sheng Yang
        twd |= (!env->fptags[i]) << i;
724 b9bec74b Jan Kiszka
    }
725 f1665b21 Sheng Yang
    xsave->region[0] = (uint32_t)(swd << 16) + cwd;
726 f1665b21 Sheng Yang
    xsave->region[1] = (uint32_t)(fop << 16) + twd;
727 f1665b21 Sheng Yang
    memcpy(&xsave->region[XSAVE_ST_SPACE], env->fpregs,
728 f1665b21 Sheng Yang
            sizeof env->fpregs);
729 f1665b21 Sheng Yang
    memcpy(&xsave->region[XSAVE_XMM_SPACE], env->xmm_regs,
730 f1665b21 Sheng Yang
            sizeof env->xmm_regs);
731 f1665b21 Sheng Yang
    xsave->region[XSAVE_MXCSR] = env->mxcsr;
732 f1665b21 Sheng Yang
    *(uint64_t *)&xsave->region[XSAVE_XSTATE_BV] = env->xstate_bv;
733 f1665b21 Sheng Yang
    memcpy(&xsave->region[XSAVE_YMMH_SPACE], env->ymmh_regs,
734 f1665b21 Sheng Yang
            sizeof env->ymmh_regs);
735 0f53994f Marcelo Tosatti
    r = kvm_vcpu_ioctl(env, KVM_SET_XSAVE, xsave);
736 0f53994f Marcelo Tosatti
    qemu_free(xsave);
737 0f53994f Marcelo Tosatti
    return r;
738 f1665b21 Sheng Yang
#else
739 f1665b21 Sheng Yang
    return kvm_put_fpu(env);
740 f1665b21 Sheng Yang
#endif
741 f1665b21 Sheng Yang
}
742 f1665b21 Sheng Yang
743 f1665b21 Sheng Yang
static int kvm_put_xcrs(CPUState *env)
744 f1665b21 Sheng Yang
{
745 f1665b21 Sheng Yang
#ifdef KVM_CAP_XCRS
746 f1665b21 Sheng Yang
    struct kvm_xcrs xcrs;
747 f1665b21 Sheng Yang
748 b9bec74b Jan Kiszka
    if (!kvm_has_xcrs()) {
749 f1665b21 Sheng Yang
        return 0;
750 b9bec74b Jan Kiszka
    }
751 f1665b21 Sheng Yang
752 f1665b21 Sheng Yang
    xcrs.nr_xcrs = 1;
753 f1665b21 Sheng Yang
    xcrs.flags = 0;
754 f1665b21 Sheng Yang
    xcrs.xcrs[0].xcr = 0;
755 f1665b21 Sheng Yang
    xcrs.xcrs[0].value = env->xcr0;
756 f1665b21 Sheng Yang
    return kvm_vcpu_ioctl(env, KVM_SET_XCRS, &xcrs);
757 f1665b21 Sheng Yang
#else
758 f1665b21 Sheng Yang
    return 0;
759 f1665b21 Sheng Yang
#endif
760 f1665b21 Sheng Yang
}
761 f1665b21 Sheng Yang
762 05330448 aliguori
static int kvm_put_sregs(CPUState *env)
763 05330448 aliguori
{
764 05330448 aliguori
    struct kvm_sregs sregs;
765 05330448 aliguori
766 0e607a80 Jan Kiszka
    memset(sregs.interrupt_bitmap, 0, sizeof(sregs.interrupt_bitmap));
767 0e607a80 Jan Kiszka
    if (env->interrupt_injected >= 0) {
768 0e607a80 Jan Kiszka
        sregs.interrupt_bitmap[env->interrupt_injected / 64] |=
769 0e607a80 Jan Kiszka
                (uint64_t)1 << (env->interrupt_injected % 64);
770 0e607a80 Jan Kiszka
    }
771 05330448 aliguori
772 05330448 aliguori
    if ((env->eflags & VM_MASK)) {
773 b9bec74b Jan Kiszka
        set_v8086_seg(&sregs.cs, &env->segs[R_CS]);
774 b9bec74b Jan Kiszka
        set_v8086_seg(&sregs.ds, &env->segs[R_DS]);
775 b9bec74b Jan Kiszka
        set_v8086_seg(&sregs.es, &env->segs[R_ES]);
776 b9bec74b Jan Kiszka
        set_v8086_seg(&sregs.fs, &env->segs[R_FS]);
777 b9bec74b Jan Kiszka
        set_v8086_seg(&sregs.gs, &env->segs[R_GS]);
778 b9bec74b Jan Kiszka
        set_v8086_seg(&sregs.ss, &env->segs[R_SS]);
779 05330448 aliguori
    } else {
780 b9bec74b Jan Kiszka
        set_seg(&sregs.cs, &env->segs[R_CS]);
781 b9bec74b Jan Kiszka
        set_seg(&sregs.ds, &env->segs[R_DS]);
782 b9bec74b Jan Kiszka
        set_seg(&sregs.es, &env->segs[R_ES]);
783 b9bec74b Jan Kiszka
        set_seg(&sregs.fs, &env->segs[R_FS]);
784 b9bec74b Jan Kiszka
        set_seg(&sregs.gs, &env->segs[R_GS]);
785 b9bec74b Jan Kiszka
        set_seg(&sregs.ss, &env->segs[R_SS]);
786 05330448 aliguori
    }
787 05330448 aliguori
788 05330448 aliguori
    set_seg(&sregs.tr, &env->tr);
789 05330448 aliguori
    set_seg(&sregs.ldt, &env->ldt);
790 05330448 aliguori
791 05330448 aliguori
    sregs.idt.limit = env->idt.limit;
792 05330448 aliguori
    sregs.idt.base = env->idt.base;
793 05330448 aliguori
    sregs.gdt.limit = env->gdt.limit;
794 05330448 aliguori
    sregs.gdt.base = env->gdt.base;
795 05330448 aliguori
796 05330448 aliguori
    sregs.cr0 = env->cr[0];
797 05330448 aliguori
    sregs.cr2 = env->cr[2];
798 05330448 aliguori
    sregs.cr3 = env->cr[3];
799 05330448 aliguori
    sregs.cr4 = env->cr[4];
800 05330448 aliguori
801 4a942cea Blue Swirl
    sregs.cr8 = cpu_get_apic_tpr(env->apic_state);
802 4a942cea Blue Swirl
    sregs.apic_base = cpu_get_apic_base(env->apic_state);
803 05330448 aliguori
804 05330448 aliguori
    sregs.efer = env->efer;
805 05330448 aliguori
806 05330448 aliguori
    return kvm_vcpu_ioctl(env, KVM_SET_SREGS, &sregs);
807 05330448 aliguori
}
808 05330448 aliguori
809 05330448 aliguori
static void kvm_msr_entry_set(struct kvm_msr_entry *entry,
810 05330448 aliguori
                              uint32_t index, uint64_t value)
811 05330448 aliguori
{
812 05330448 aliguori
    entry->index = index;
813 05330448 aliguori
    entry->data = value;
814 05330448 aliguori
}
815 05330448 aliguori
816 ea643051 Jan Kiszka
static int kvm_put_msrs(CPUState *env, int level)
817 05330448 aliguori
{
818 05330448 aliguori
    struct {
819 05330448 aliguori
        struct kvm_msrs info;
820 05330448 aliguori
        struct kvm_msr_entry entries[100];
821 05330448 aliguori
    } msr_data;
822 05330448 aliguori
    struct kvm_msr_entry *msrs = msr_data.entries;
823 d8da8574 Hidetoshi Seto
    int n = 0;
824 05330448 aliguori
825 05330448 aliguori
    kvm_msr_entry_set(&msrs[n++], MSR_IA32_SYSENTER_CS, env->sysenter_cs);
826 05330448 aliguori
    kvm_msr_entry_set(&msrs[n++], MSR_IA32_SYSENTER_ESP, env->sysenter_esp);
827 05330448 aliguori
    kvm_msr_entry_set(&msrs[n++], MSR_IA32_SYSENTER_EIP, env->sysenter_eip);
828 c3a3a7d3 Jan Kiszka
    if (has_msr_star) {
829 b9bec74b Jan Kiszka
        kvm_msr_entry_set(&msrs[n++], MSR_STAR, env->star);
830 b9bec74b Jan Kiszka
    }
831 c3a3a7d3 Jan Kiszka
    if (has_msr_hsave_pa) {
832 75b10c43 Marcelo Tosatti
        kvm_msr_entry_set(&msrs[n++], MSR_VM_HSAVE_PA, env->vm_hsave);
833 b9bec74b Jan Kiszka
    }
834 05330448 aliguori
#ifdef TARGET_X86_64
835 25d2e361 Marcelo Tosatti
    if (lm_capable_kernel) {
836 25d2e361 Marcelo Tosatti
        kvm_msr_entry_set(&msrs[n++], MSR_CSTAR, env->cstar);
837 25d2e361 Marcelo Tosatti
        kvm_msr_entry_set(&msrs[n++], MSR_KERNELGSBASE, env->kernelgsbase);
838 25d2e361 Marcelo Tosatti
        kvm_msr_entry_set(&msrs[n++], MSR_FMASK, env->fmask);
839 25d2e361 Marcelo Tosatti
        kvm_msr_entry_set(&msrs[n++], MSR_LSTAR, env->lstar);
840 25d2e361 Marcelo Tosatti
    }
841 05330448 aliguori
#endif
842 ea643051 Jan Kiszka
    if (level == KVM_PUT_FULL_STATE) {
843 384331a6 Marcelo Tosatti
        /*
844 384331a6 Marcelo Tosatti
         * KVM is yet unable to synchronize TSC values of multiple VCPUs on
845 384331a6 Marcelo Tosatti
         * writeback. Until this is fixed, we only write the offset to SMP
846 384331a6 Marcelo Tosatti
         * guests after migration, desynchronizing the VCPUs, but avoiding
847 384331a6 Marcelo Tosatti
         * huge jump-backs that would occur without any writeback at all.
848 384331a6 Marcelo Tosatti
         */
849 384331a6 Marcelo Tosatti
        if (smp_cpus == 1 || env->tsc != 0) {
850 384331a6 Marcelo Tosatti
            kvm_msr_entry_set(&msrs[n++], MSR_IA32_TSC, env->tsc);
851 384331a6 Marcelo Tosatti
        }
852 ff5c186b Jan Kiszka
    }
853 ff5c186b Jan Kiszka
    /*
854 ff5c186b Jan Kiszka
     * The following paravirtual MSRs have side effects on the guest or are
855 ff5c186b Jan Kiszka
     * too heavy for normal writeback. Limit them to reset or full state
856 ff5c186b Jan Kiszka
     * updates.
857 ff5c186b Jan Kiszka
     */
858 ff5c186b Jan Kiszka
    if (level >= KVM_PUT_RESET_STATE) {
859 ea643051 Jan Kiszka
        kvm_msr_entry_set(&msrs[n++], MSR_KVM_SYSTEM_TIME,
860 ea643051 Jan Kiszka
                          env->system_time_msr);
861 ea643051 Jan Kiszka
        kvm_msr_entry_set(&msrs[n++], MSR_KVM_WALL_CLOCK, env->wall_clock_msr);
862 521f0798 Jan Kiszka
#if defined(CONFIG_KVM_PARA) && defined(KVM_CAP_ASYNC_PF)
863 c5999bfc Jan Kiszka
        if (has_msr_async_pf_en) {
864 c5999bfc Jan Kiszka
            kvm_msr_entry_set(&msrs[n++], MSR_KVM_ASYNC_PF_EN,
865 c5999bfc Jan Kiszka
                              env->async_pf_en_msr);
866 c5999bfc Jan Kiszka
        }
867 f6584ee2 Gleb Natapov
#endif
868 ea643051 Jan Kiszka
    }
869 57780495 Marcelo Tosatti
#ifdef KVM_CAP_MCE
870 57780495 Marcelo Tosatti
    if (env->mcg_cap) {
871 d8da8574 Hidetoshi Seto
        int i;
872 b9bec74b Jan Kiszka
873 c34d440a Jan Kiszka
        kvm_msr_entry_set(&msrs[n++], MSR_MCG_STATUS, env->mcg_status);
874 c34d440a Jan Kiszka
        kvm_msr_entry_set(&msrs[n++], MSR_MCG_CTL, env->mcg_ctl);
875 c34d440a Jan Kiszka
        for (i = 0; i < (env->mcg_cap & 0xff) * 4; i++) {
876 c34d440a Jan Kiszka
            kvm_msr_entry_set(&msrs[n++], MSR_MC0_CTL + i, env->mce_banks[i]);
877 57780495 Marcelo Tosatti
        }
878 57780495 Marcelo Tosatti
    }
879 57780495 Marcelo Tosatti
#endif
880 1a03675d Glauber Costa
881 05330448 aliguori
    msr_data.info.nmsrs = n;
882 05330448 aliguori
883 05330448 aliguori
    return kvm_vcpu_ioctl(env, KVM_SET_MSRS, &msr_data);
884 05330448 aliguori
885 05330448 aliguori
}
886 05330448 aliguori
887 05330448 aliguori
888 05330448 aliguori
static int kvm_get_fpu(CPUState *env)
889 05330448 aliguori
{
890 05330448 aliguori
    struct kvm_fpu fpu;
891 05330448 aliguori
    int i, ret;
892 05330448 aliguori
893 05330448 aliguori
    ret = kvm_vcpu_ioctl(env, KVM_GET_FPU, &fpu);
894 b9bec74b Jan Kiszka
    if (ret < 0) {
895 05330448 aliguori
        return ret;
896 b9bec74b Jan Kiszka
    }
897 05330448 aliguori
898 05330448 aliguori
    env->fpstt = (fpu.fsw >> 11) & 7;
899 05330448 aliguori
    env->fpus = fpu.fsw;
900 05330448 aliguori
    env->fpuc = fpu.fcw;
901 b9bec74b Jan Kiszka
    for (i = 0; i < 8; ++i) {
902 b9bec74b Jan Kiszka
        env->fptags[i] = !((fpu.ftwx >> i) & 1);
903 b9bec74b Jan Kiszka
    }
904 05330448 aliguori
    memcpy(env->fpregs, fpu.fpr, sizeof env->fpregs);
905 05330448 aliguori
    memcpy(env->xmm_regs, fpu.xmm, sizeof env->xmm_regs);
906 05330448 aliguori
    env->mxcsr = fpu.mxcsr;
907 05330448 aliguori
908 05330448 aliguori
    return 0;
909 05330448 aliguori
}
910 05330448 aliguori
911 f1665b21 Sheng Yang
static int kvm_get_xsave(CPUState *env)
912 f1665b21 Sheng Yang
{
913 f1665b21 Sheng Yang
#ifdef KVM_CAP_XSAVE
914 f1665b21 Sheng Yang
    struct kvm_xsave* xsave;
915 f1665b21 Sheng Yang
    int ret, i;
916 f1665b21 Sheng Yang
    uint16_t cwd, swd, twd, fop;
917 f1665b21 Sheng Yang
918 b9bec74b Jan Kiszka
    if (!kvm_has_xsave()) {
919 f1665b21 Sheng Yang
        return kvm_get_fpu(env);
920 b9bec74b Jan Kiszka
    }
921 f1665b21 Sheng Yang
922 f1665b21 Sheng Yang
    xsave = qemu_memalign(4096, sizeof(struct kvm_xsave));
923 f1665b21 Sheng Yang
    ret = kvm_vcpu_ioctl(env, KVM_GET_XSAVE, xsave);
924 0f53994f Marcelo Tosatti
    if (ret < 0) {
925 0f53994f Marcelo Tosatti
        qemu_free(xsave);
926 f1665b21 Sheng Yang
        return ret;
927 0f53994f Marcelo Tosatti
    }
928 f1665b21 Sheng Yang
929 f1665b21 Sheng Yang
    cwd = (uint16_t)xsave->region[0];
930 f1665b21 Sheng Yang
    swd = (uint16_t)(xsave->region[0] >> 16);
931 f1665b21 Sheng Yang
    twd = (uint16_t)xsave->region[1];
932 f1665b21 Sheng Yang
    fop = (uint16_t)(xsave->region[1] >> 16);
933 f1665b21 Sheng Yang
    env->fpstt = (swd >> 11) & 7;
934 f1665b21 Sheng Yang
    env->fpus = swd;
935 f1665b21 Sheng Yang
    env->fpuc = cwd;
936 b9bec74b Jan Kiszka
    for (i = 0; i < 8; ++i) {
937 f1665b21 Sheng Yang
        env->fptags[i] = !((twd >> i) & 1);
938 b9bec74b Jan Kiszka
    }
939 f1665b21 Sheng Yang
    env->mxcsr = xsave->region[XSAVE_MXCSR];
940 f1665b21 Sheng Yang
    memcpy(env->fpregs, &xsave->region[XSAVE_ST_SPACE],
941 f1665b21 Sheng Yang
            sizeof env->fpregs);
942 f1665b21 Sheng Yang
    memcpy(env->xmm_regs, &xsave->region[XSAVE_XMM_SPACE],
943 f1665b21 Sheng Yang
            sizeof env->xmm_regs);
944 f1665b21 Sheng Yang
    env->xstate_bv = *(uint64_t *)&xsave->region[XSAVE_XSTATE_BV];
945 f1665b21 Sheng Yang
    memcpy(env->ymmh_regs, &xsave->region[XSAVE_YMMH_SPACE],
946 f1665b21 Sheng Yang
            sizeof env->ymmh_regs);
947 0f53994f Marcelo Tosatti
    qemu_free(xsave);
948 f1665b21 Sheng Yang
    return 0;
949 f1665b21 Sheng Yang
#else
950 f1665b21 Sheng Yang
    return kvm_get_fpu(env);
951 f1665b21 Sheng Yang
#endif
952 f1665b21 Sheng Yang
}
953 f1665b21 Sheng Yang
954 f1665b21 Sheng Yang
static int kvm_get_xcrs(CPUState *env)
955 f1665b21 Sheng Yang
{
956 f1665b21 Sheng Yang
#ifdef KVM_CAP_XCRS
957 f1665b21 Sheng Yang
    int i, ret;
958 f1665b21 Sheng Yang
    struct kvm_xcrs xcrs;
959 f1665b21 Sheng Yang
960 b9bec74b Jan Kiszka
    if (!kvm_has_xcrs()) {
961 f1665b21 Sheng Yang
        return 0;
962 b9bec74b Jan Kiszka
    }
963 f1665b21 Sheng Yang
964 f1665b21 Sheng Yang
    ret = kvm_vcpu_ioctl(env, KVM_GET_XCRS, &xcrs);
965 b9bec74b Jan Kiszka
    if (ret < 0) {
966 f1665b21 Sheng Yang
        return ret;
967 b9bec74b Jan Kiszka
    }
968 f1665b21 Sheng Yang
969 b9bec74b Jan Kiszka
    for (i = 0; i < xcrs.nr_xcrs; i++) {
970 f1665b21 Sheng Yang
        /* Only support xcr0 now */
971 f1665b21 Sheng Yang
        if (xcrs.xcrs[0].xcr == 0) {
972 f1665b21 Sheng Yang
            env->xcr0 = xcrs.xcrs[0].value;
973 f1665b21 Sheng Yang
            break;
974 f1665b21 Sheng Yang
        }
975 b9bec74b Jan Kiszka
    }
976 f1665b21 Sheng Yang
    return 0;
977 f1665b21 Sheng Yang
#else
978 f1665b21 Sheng Yang
    return 0;
979 f1665b21 Sheng Yang
#endif
980 f1665b21 Sheng Yang
}
981 f1665b21 Sheng Yang
982 05330448 aliguori
static int kvm_get_sregs(CPUState *env)
983 05330448 aliguori
{
984 05330448 aliguori
    struct kvm_sregs sregs;
985 05330448 aliguori
    uint32_t hflags;
986 0e607a80 Jan Kiszka
    int bit, i, ret;
987 05330448 aliguori
988 05330448 aliguori
    ret = kvm_vcpu_ioctl(env, KVM_GET_SREGS, &sregs);
989 b9bec74b Jan Kiszka
    if (ret < 0) {
990 05330448 aliguori
        return ret;
991 b9bec74b Jan Kiszka
    }
992 05330448 aliguori
993 0e607a80 Jan Kiszka
    /* There can only be one pending IRQ set in the bitmap at a time, so try
994 0e607a80 Jan Kiszka
       to find it and save its number instead (-1 for none). */
995 0e607a80 Jan Kiszka
    env->interrupt_injected = -1;
996 0e607a80 Jan Kiszka
    for (i = 0; i < ARRAY_SIZE(sregs.interrupt_bitmap); i++) {
997 0e607a80 Jan Kiszka
        if (sregs.interrupt_bitmap[i]) {
998 0e607a80 Jan Kiszka
            bit = ctz64(sregs.interrupt_bitmap[i]);
999 0e607a80 Jan Kiszka
            env->interrupt_injected = i * 64 + bit;
1000 0e607a80 Jan Kiszka
            break;
1001 0e607a80 Jan Kiszka
        }
1002 0e607a80 Jan Kiszka
    }
1003 05330448 aliguori
1004 05330448 aliguori
    get_seg(&env->segs[R_CS], &sregs.cs);
1005 05330448 aliguori
    get_seg(&env->segs[R_DS], &sregs.ds);
1006 05330448 aliguori
    get_seg(&env->segs[R_ES], &sregs.es);
1007 05330448 aliguori
    get_seg(&env->segs[R_FS], &sregs.fs);
1008 05330448 aliguori
    get_seg(&env->segs[R_GS], &sregs.gs);
1009 05330448 aliguori
    get_seg(&env->segs[R_SS], &sregs.ss);
1010 05330448 aliguori
1011 05330448 aliguori
    get_seg(&env->tr, &sregs.tr);
1012 05330448 aliguori
    get_seg(&env->ldt, &sregs.ldt);
1013 05330448 aliguori
1014 05330448 aliguori
    env->idt.limit = sregs.idt.limit;
1015 05330448 aliguori
    env->idt.base = sregs.idt.base;
1016 05330448 aliguori
    env->gdt.limit = sregs.gdt.limit;
1017 05330448 aliguori
    env->gdt.base = sregs.gdt.base;
1018 05330448 aliguori
1019 05330448 aliguori
    env->cr[0] = sregs.cr0;
1020 05330448 aliguori
    env->cr[2] = sregs.cr2;
1021 05330448 aliguori
    env->cr[3] = sregs.cr3;
1022 05330448 aliguori
    env->cr[4] = sregs.cr4;
1023 05330448 aliguori
1024 4a942cea Blue Swirl
    cpu_set_apic_base(env->apic_state, sregs.apic_base);
1025 05330448 aliguori
1026 05330448 aliguori
    env->efer = sregs.efer;
1027 4a942cea Blue Swirl
    //cpu_set_apic_tpr(env->apic_state, sregs.cr8);
1028 05330448 aliguori
1029 b9bec74b Jan Kiszka
#define HFLAG_COPY_MASK \
1030 b9bec74b Jan Kiszka
    ~( HF_CPL_MASK | HF_PE_MASK | HF_MP_MASK | HF_EM_MASK | \
1031 b9bec74b Jan Kiszka
       HF_TS_MASK | HF_TF_MASK | HF_VM_MASK | HF_IOPL_MASK | \
1032 b9bec74b Jan Kiszka
       HF_OSFXSR_MASK | HF_LMA_MASK | HF_CS32_MASK | \
1033 b9bec74b Jan Kiszka
       HF_SS32_MASK | HF_CS64_MASK | HF_ADDSEG_MASK)
1034 05330448 aliguori
1035 05330448 aliguori
    hflags = (env->segs[R_CS].flags >> DESC_DPL_SHIFT) & HF_CPL_MASK;
1036 05330448 aliguori
    hflags |= (env->cr[0] & CR0_PE_MASK) << (HF_PE_SHIFT - CR0_PE_SHIFT);
1037 05330448 aliguori
    hflags |= (env->cr[0] << (HF_MP_SHIFT - CR0_MP_SHIFT)) &
1038 b9bec74b Jan Kiszka
                (HF_MP_MASK | HF_EM_MASK | HF_TS_MASK);
1039 05330448 aliguori
    hflags |= (env->eflags & (HF_TF_MASK | HF_VM_MASK | HF_IOPL_MASK));
1040 05330448 aliguori
    hflags |= (env->cr[4] & CR4_OSFXSR_MASK) <<
1041 b9bec74b Jan Kiszka
                (HF_OSFXSR_SHIFT - CR4_OSFXSR_SHIFT);
1042 05330448 aliguori
1043 05330448 aliguori
    if (env->efer & MSR_EFER_LMA) {
1044 05330448 aliguori
        hflags |= HF_LMA_MASK;
1045 05330448 aliguori
    }
1046 05330448 aliguori
1047 05330448 aliguori
    if ((hflags & HF_LMA_MASK) && (env->segs[R_CS].flags & DESC_L_MASK)) {
1048 05330448 aliguori
        hflags |= HF_CS32_MASK | HF_SS32_MASK | HF_CS64_MASK;
1049 05330448 aliguori
    } else {
1050 05330448 aliguori
        hflags |= (env->segs[R_CS].flags & DESC_B_MASK) >>
1051 b9bec74b Jan Kiszka
                    (DESC_B_SHIFT - HF_CS32_SHIFT);
1052 05330448 aliguori
        hflags |= (env->segs[R_SS].flags & DESC_B_MASK) >>
1053 b9bec74b Jan Kiszka
                    (DESC_B_SHIFT - HF_SS32_SHIFT);
1054 b9bec74b Jan Kiszka
        if (!(env->cr[0] & CR0_PE_MASK) || (env->eflags & VM_MASK) ||
1055 b9bec74b Jan Kiszka
            !(hflags & HF_CS32_MASK)) {
1056 b9bec74b Jan Kiszka
            hflags |= HF_ADDSEG_MASK;
1057 b9bec74b Jan Kiszka
        } else {
1058 b9bec74b Jan Kiszka
            hflags |= ((env->segs[R_DS].base | env->segs[R_ES].base |
1059 b9bec74b Jan Kiszka
                        env->segs[R_SS].base) != 0) << HF_ADDSEG_SHIFT;
1060 b9bec74b Jan Kiszka
        }
1061 05330448 aliguori
    }
1062 05330448 aliguori
    env->hflags = (env->hflags & HFLAG_COPY_MASK) | hflags;
1063 05330448 aliguori
1064 05330448 aliguori
    return 0;
1065 05330448 aliguori
}
1066 05330448 aliguori
1067 05330448 aliguori
static int kvm_get_msrs(CPUState *env)
1068 05330448 aliguori
{
1069 05330448 aliguori
    struct {
1070 05330448 aliguori
        struct kvm_msrs info;
1071 05330448 aliguori
        struct kvm_msr_entry entries[100];
1072 05330448 aliguori
    } msr_data;
1073 05330448 aliguori
    struct kvm_msr_entry *msrs = msr_data.entries;
1074 05330448 aliguori
    int ret, i, n;
1075 05330448 aliguori
1076 05330448 aliguori
    n = 0;
1077 05330448 aliguori
    msrs[n++].index = MSR_IA32_SYSENTER_CS;
1078 05330448 aliguori
    msrs[n++].index = MSR_IA32_SYSENTER_ESP;
1079 05330448 aliguori
    msrs[n++].index = MSR_IA32_SYSENTER_EIP;
1080 c3a3a7d3 Jan Kiszka
    if (has_msr_star) {
1081 b9bec74b Jan Kiszka
        msrs[n++].index = MSR_STAR;
1082 b9bec74b Jan Kiszka
    }
1083 c3a3a7d3 Jan Kiszka
    if (has_msr_hsave_pa) {
1084 75b10c43 Marcelo Tosatti
        msrs[n++].index = MSR_VM_HSAVE_PA;
1085 b9bec74b Jan Kiszka
    }
1086 b8cc45d6 Glauber Costa
1087 b8cc45d6 Glauber Costa
    if (!env->tsc_valid) {
1088 b8cc45d6 Glauber Costa
        msrs[n++].index = MSR_IA32_TSC;
1089 b8cc45d6 Glauber Costa
        env->tsc_valid = !vm_running;
1090 b8cc45d6 Glauber Costa
    }
1091 b8cc45d6 Glauber Costa
1092 05330448 aliguori
#ifdef TARGET_X86_64
1093 25d2e361 Marcelo Tosatti
    if (lm_capable_kernel) {
1094 25d2e361 Marcelo Tosatti
        msrs[n++].index = MSR_CSTAR;
1095 25d2e361 Marcelo Tosatti
        msrs[n++].index = MSR_KERNELGSBASE;
1096 25d2e361 Marcelo Tosatti
        msrs[n++].index = MSR_FMASK;
1097 25d2e361 Marcelo Tosatti
        msrs[n++].index = MSR_LSTAR;
1098 25d2e361 Marcelo Tosatti
    }
1099 05330448 aliguori
#endif
1100 1a03675d Glauber Costa
    msrs[n++].index = MSR_KVM_SYSTEM_TIME;
1101 1a03675d Glauber Costa
    msrs[n++].index = MSR_KVM_WALL_CLOCK;
1102 521f0798 Jan Kiszka
#if defined(CONFIG_KVM_PARA) && defined(KVM_CAP_ASYNC_PF)
1103 c5999bfc Jan Kiszka
    if (has_msr_async_pf_en) {
1104 c5999bfc Jan Kiszka
        msrs[n++].index = MSR_KVM_ASYNC_PF_EN;
1105 c5999bfc Jan Kiszka
    }
1106 f6584ee2 Gleb Natapov
#endif
1107 1a03675d Glauber Costa
1108 57780495 Marcelo Tosatti
#ifdef KVM_CAP_MCE
1109 57780495 Marcelo Tosatti
    if (env->mcg_cap) {
1110 57780495 Marcelo Tosatti
        msrs[n++].index = MSR_MCG_STATUS;
1111 57780495 Marcelo Tosatti
        msrs[n++].index = MSR_MCG_CTL;
1112 b9bec74b Jan Kiszka
        for (i = 0; i < (env->mcg_cap & 0xff) * 4; i++) {
1113 57780495 Marcelo Tosatti
            msrs[n++].index = MSR_MC0_CTL + i;
1114 b9bec74b Jan Kiszka
        }
1115 57780495 Marcelo Tosatti
    }
1116 57780495 Marcelo Tosatti
#endif
1117 57780495 Marcelo Tosatti
1118 05330448 aliguori
    msr_data.info.nmsrs = n;
1119 05330448 aliguori
    ret = kvm_vcpu_ioctl(env, KVM_GET_MSRS, &msr_data);
1120 b9bec74b Jan Kiszka
    if (ret < 0) {
1121 05330448 aliguori
        return ret;
1122 b9bec74b Jan Kiszka
    }
1123 05330448 aliguori
1124 05330448 aliguori
    for (i = 0; i < ret; i++) {
1125 05330448 aliguori
        switch (msrs[i].index) {
1126 05330448 aliguori
        case MSR_IA32_SYSENTER_CS:
1127 05330448 aliguori
            env->sysenter_cs = msrs[i].data;
1128 05330448 aliguori
            break;
1129 05330448 aliguori
        case MSR_IA32_SYSENTER_ESP:
1130 05330448 aliguori
            env->sysenter_esp = msrs[i].data;
1131 05330448 aliguori
            break;
1132 05330448 aliguori
        case MSR_IA32_SYSENTER_EIP:
1133 05330448 aliguori
            env->sysenter_eip = msrs[i].data;
1134 05330448 aliguori
            break;
1135 05330448 aliguori
        case MSR_STAR:
1136 05330448 aliguori
            env->star = msrs[i].data;
1137 05330448 aliguori
            break;
1138 05330448 aliguori
#ifdef TARGET_X86_64
1139 05330448 aliguori
        case MSR_CSTAR:
1140 05330448 aliguori
            env->cstar = msrs[i].data;
1141 05330448 aliguori
            break;
1142 05330448 aliguori
        case MSR_KERNELGSBASE:
1143 05330448 aliguori
            env->kernelgsbase = msrs[i].data;
1144 05330448 aliguori
            break;
1145 05330448 aliguori
        case MSR_FMASK:
1146 05330448 aliguori
            env->fmask = msrs[i].data;
1147 05330448 aliguori
            break;
1148 05330448 aliguori
        case MSR_LSTAR:
1149 05330448 aliguori
            env->lstar = msrs[i].data;
1150 05330448 aliguori
            break;
1151 05330448 aliguori
#endif
1152 05330448 aliguori
        case MSR_IA32_TSC:
1153 05330448 aliguori
            env->tsc = msrs[i].data;
1154 05330448 aliguori
            break;
1155 aa851e36 Marcelo Tosatti
        case MSR_VM_HSAVE_PA:
1156 aa851e36 Marcelo Tosatti
            env->vm_hsave = msrs[i].data;
1157 aa851e36 Marcelo Tosatti
            break;
1158 1a03675d Glauber Costa
        case MSR_KVM_SYSTEM_TIME:
1159 1a03675d Glauber Costa
            env->system_time_msr = msrs[i].data;
1160 1a03675d Glauber Costa
            break;
1161 1a03675d Glauber Costa
        case MSR_KVM_WALL_CLOCK:
1162 1a03675d Glauber Costa
            env->wall_clock_msr = msrs[i].data;
1163 1a03675d Glauber Costa
            break;
1164 57780495 Marcelo Tosatti
#ifdef KVM_CAP_MCE
1165 57780495 Marcelo Tosatti
        case MSR_MCG_STATUS:
1166 57780495 Marcelo Tosatti
            env->mcg_status = msrs[i].data;
1167 57780495 Marcelo Tosatti
            break;
1168 57780495 Marcelo Tosatti
        case MSR_MCG_CTL:
1169 57780495 Marcelo Tosatti
            env->mcg_ctl = msrs[i].data;
1170 57780495 Marcelo Tosatti
            break;
1171 57780495 Marcelo Tosatti
#endif
1172 57780495 Marcelo Tosatti
        default:
1173 57780495 Marcelo Tosatti
#ifdef KVM_CAP_MCE
1174 57780495 Marcelo Tosatti
            if (msrs[i].index >= MSR_MC0_CTL &&
1175 57780495 Marcelo Tosatti
                msrs[i].index < MSR_MC0_CTL + (env->mcg_cap & 0xff) * 4) {
1176 57780495 Marcelo Tosatti
                env->mce_banks[msrs[i].index - MSR_MC0_CTL] = msrs[i].data;
1177 57780495 Marcelo Tosatti
            }
1178 57780495 Marcelo Tosatti
#endif
1179 d8da8574 Hidetoshi Seto
            break;
1180 521f0798 Jan Kiszka
#if defined(CONFIG_KVM_PARA) && defined(KVM_CAP_ASYNC_PF)
1181 f6584ee2 Gleb Natapov
        case MSR_KVM_ASYNC_PF_EN:
1182 f6584ee2 Gleb Natapov
            env->async_pf_en_msr = msrs[i].data;
1183 f6584ee2 Gleb Natapov
            break;
1184 f6584ee2 Gleb Natapov
#endif
1185 05330448 aliguori
        }
1186 05330448 aliguori
    }
1187 05330448 aliguori
1188 05330448 aliguori
    return 0;
1189 05330448 aliguori
}
1190 05330448 aliguori
1191 9bdbe550 Hollis Blanchard
static int kvm_put_mp_state(CPUState *env)
1192 9bdbe550 Hollis Blanchard
{
1193 9bdbe550 Hollis Blanchard
    struct kvm_mp_state mp_state = { .mp_state = env->mp_state };
1194 9bdbe550 Hollis Blanchard
1195 9bdbe550 Hollis Blanchard
    return kvm_vcpu_ioctl(env, KVM_SET_MP_STATE, &mp_state);
1196 9bdbe550 Hollis Blanchard
}
1197 9bdbe550 Hollis Blanchard
1198 9bdbe550 Hollis Blanchard
static int kvm_get_mp_state(CPUState *env)
1199 9bdbe550 Hollis Blanchard
{
1200 9bdbe550 Hollis Blanchard
    struct kvm_mp_state mp_state;
1201 9bdbe550 Hollis Blanchard
    int ret;
1202 9bdbe550 Hollis Blanchard
1203 9bdbe550 Hollis Blanchard
    ret = kvm_vcpu_ioctl(env, KVM_GET_MP_STATE, &mp_state);
1204 9bdbe550 Hollis Blanchard
    if (ret < 0) {
1205 9bdbe550 Hollis Blanchard
        return ret;
1206 9bdbe550 Hollis Blanchard
    }
1207 9bdbe550 Hollis Blanchard
    env->mp_state = mp_state.mp_state;
1208 c14750e8 Jan Kiszka
    if (kvm_irqchip_in_kernel()) {
1209 c14750e8 Jan Kiszka
        env->halted = (mp_state.mp_state == KVM_MP_STATE_HALTED);
1210 c14750e8 Jan Kiszka
    }
1211 9bdbe550 Hollis Blanchard
    return 0;
1212 9bdbe550 Hollis Blanchard
}
1213 9bdbe550 Hollis Blanchard
1214 ea643051 Jan Kiszka
static int kvm_put_vcpu_events(CPUState *env, int level)
1215 a0fb002c Jan Kiszka
{
1216 a0fb002c Jan Kiszka
#ifdef KVM_CAP_VCPU_EVENTS
1217 a0fb002c Jan Kiszka
    struct kvm_vcpu_events events;
1218 a0fb002c Jan Kiszka
1219 a0fb002c Jan Kiszka
    if (!kvm_has_vcpu_events()) {
1220 a0fb002c Jan Kiszka
        return 0;
1221 a0fb002c Jan Kiszka
    }
1222 a0fb002c Jan Kiszka
1223 31827373 Jan Kiszka
    events.exception.injected = (env->exception_injected >= 0);
1224 31827373 Jan Kiszka
    events.exception.nr = env->exception_injected;
1225 a0fb002c Jan Kiszka
    events.exception.has_error_code = env->has_error_code;
1226 a0fb002c Jan Kiszka
    events.exception.error_code = env->error_code;
1227 a0fb002c Jan Kiszka
1228 a0fb002c Jan Kiszka
    events.interrupt.injected = (env->interrupt_injected >= 0);
1229 a0fb002c Jan Kiszka
    events.interrupt.nr = env->interrupt_injected;
1230 a0fb002c Jan Kiszka
    events.interrupt.soft = env->soft_interrupt;
1231 a0fb002c Jan Kiszka
1232 a0fb002c Jan Kiszka
    events.nmi.injected = env->nmi_injected;
1233 a0fb002c Jan Kiszka
    events.nmi.pending = env->nmi_pending;
1234 a0fb002c Jan Kiszka
    events.nmi.masked = !!(env->hflags2 & HF2_NMI_MASK);
1235 a0fb002c Jan Kiszka
1236 a0fb002c Jan Kiszka
    events.sipi_vector = env->sipi_vector;
1237 a0fb002c Jan Kiszka
1238 ea643051 Jan Kiszka
    events.flags = 0;
1239 ea643051 Jan Kiszka
    if (level >= KVM_PUT_RESET_STATE) {
1240 ea643051 Jan Kiszka
        events.flags |=
1241 ea643051 Jan Kiszka
            KVM_VCPUEVENT_VALID_NMI_PENDING | KVM_VCPUEVENT_VALID_SIPI_VECTOR;
1242 ea643051 Jan Kiszka
    }
1243 aee028b9 Jan Kiszka
1244 a0fb002c Jan Kiszka
    return kvm_vcpu_ioctl(env, KVM_SET_VCPU_EVENTS, &events);
1245 a0fb002c Jan Kiszka
#else
1246 a0fb002c Jan Kiszka
    return 0;
1247 a0fb002c Jan Kiszka
#endif
1248 a0fb002c Jan Kiszka
}
1249 a0fb002c Jan Kiszka
1250 a0fb002c Jan Kiszka
static int kvm_get_vcpu_events(CPUState *env)
1251 a0fb002c Jan Kiszka
{
1252 a0fb002c Jan Kiszka
#ifdef KVM_CAP_VCPU_EVENTS
1253 a0fb002c Jan Kiszka
    struct kvm_vcpu_events events;
1254 a0fb002c Jan Kiszka
    int ret;
1255 a0fb002c Jan Kiszka
1256 a0fb002c Jan Kiszka
    if (!kvm_has_vcpu_events()) {
1257 a0fb002c Jan Kiszka
        return 0;
1258 a0fb002c Jan Kiszka
    }
1259 a0fb002c Jan Kiszka
1260 a0fb002c Jan Kiszka
    ret = kvm_vcpu_ioctl(env, KVM_GET_VCPU_EVENTS, &events);
1261 a0fb002c Jan Kiszka
    if (ret < 0) {
1262 a0fb002c Jan Kiszka
       return ret;
1263 a0fb002c Jan Kiszka
    }
1264 31827373 Jan Kiszka
    env->exception_injected =
1265 a0fb002c Jan Kiszka
       events.exception.injected ? events.exception.nr : -1;
1266 a0fb002c Jan Kiszka
    env->has_error_code = events.exception.has_error_code;
1267 a0fb002c Jan Kiszka
    env->error_code = events.exception.error_code;
1268 a0fb002c Jan Kiszka
1269 a0fb002c Jan Kiszka
    env->interrupt_injected =
1270 a0fb002c Jan Kiszka
        events.interrupt.injected ? events.interrupt.nr : -1;
1271 a0fb002c Jan Kiszka
    env->soft_interrupt = events.interrupt.soft;
1272 a0fb002c Jan Kiszka
1273 a0fb002c Jan Kiszka
    env->nmi_injected = events.nmi.injected;
1274 a0fb002c Jan Kiszka
    env->nmi_pending = events.nmi.pending;
1275 a0fb002c Jan Kiszka
    if (events.nmi.masked) {
1276 a0fb002c Jan Kiszka
        env->hflags2 |= HF2_NMI_MASK;
1277 a0fb002c Jan Kiszka
    } else {
1278 a0fb002c Jan Kiszka
        env->hflags2 &= ~HF2_NMI_MASK;
1279 a0fb002c Jan Kiszka
    }
1280 a0fb002c Jan Kiszka
1281 a0fb002c Jan Kiszka
    env->sipi_vector = events.sipi_vector;
1282 a0fb002c Jan Kiszka
#endif
1283 a0fb002c Jan Kiszka
1284 a0fb002c Jan Kiszka
    return 0;
1285 a0fb002c Jan Kiszka
}
1286 a0fb002c Jan Kiszka
1287 b0b1d690 Jan Kiszka
static int kvm_guest_debug_workarounds(CPUState *env)
1288 b0b1d690 Jan Kiszka
{
1289 b0b1d690 Jan Kiszka
    int ret = 0;
1290 b0b1d690 Jan Kiszka
#ifdef KVM_CAP_SET_GUEST_DEBUG
1291 b0b1d690 Jan Kiszka
    unsigned long reinject_trap = 0;
1292 b0b1d690 Jan Kiszka
1293 b0b1d690 Jan Kiszka
    if (!kvm_has_vcpu_events()) {
1294 b0b1d690 Jan Kiszka
        if (env->exception_injected == 1) {
1295 b0b1d690 Jan Kiszka
            reinject_trap = KVM_GUESTDBG_INJECT_DB;
1296 b0b1d690 Jan Kiszka
        } else if (env->exception_injected == 3) {
1297 b0b1d690 Jan Kiszka
            reinject_trap = KVM_GUESTDBG_INJECT_BP;
1298 b0b1d690 Jan Kiszka
        }
1299 b0b1d690 Jan Kiszka
        env->exception_injected = -1;
1300 b0b1d690 Jan Kiszka
    }
1301 b0b1d690 Jan Kiszka
1302 b0b1d690 Jan Kiszka
    /*
1303 b0b1d690 Jan Kiszka
     * Kernels before KVM_CAP_X86_ROBUST_SINGLESTEP overwrote flags.TF
1304 b0b1d690 Jan Kiszka
     * injected via SET_GUEST_DEBUG while updating GP regs. Work around this
1305 b0b1d690 Jan Kiszka
     * by updating the debug state once again if single-stepping is on.
1306 b0b1d690 Jan Kiszka
     * Another reason to call kvm_update_guest_debug here is a pending debug
1307 b0b1d690 Jan Kiszka
     * trap raise by the guest. On kernels without SET_VCPU_EVENTS we have to
1308 b0b1d690 Jan Kiszka
     * reinject them via SET_GUEST_DEBUG.
1309 b0b1d690 Jan Kiszka
     */
1310 b0b1d690 Jan Kiszka
    if (reinject_trap ||
1311 b0b1d690 Jan Kiszka
        (!kvm_has_robust_singlestep() && env->singlestep_enabled)) {
1312 b0b1d690 Jan Kiszka
        ret = kvm_update_guest_debug(env, reinject_trap);
1313 b0b1d690 Jan Kiszka
    }
1314 b0b1d690 Jan Kiszka
#endif /* KVM_CAP_SET_GUEST_DEBUG */
1315 b0b1d690 Jan Kiszka
    return ret;
1316 b0b1d690 Jan Kiszka
}
1317 b0b1d690 Jan Kiszka
1318 ff44f1a3 Jan Kiszka
static int kvm_put_debugregs(CPUState *env)
1319 ff44f1a3 Jan Kiszka
{
1320 ff44f1a3 Jan Kiszka
#ifdef KVM_CAP_DEBUGREGS
1321 ff44f1a3 Jan Kiszka
    struct kvm_debugregs dbgregs;
1322 ff44f1a3 Jan Kiszka
    int i;
1323 ff44f1a3 Jan Kiszka
1324 ff44f1a3 Jan Kiszka
    if (!kvm_has_debugregs()) {
1325 ff44f1a3 Jan Kiszka
        return 0;
1326 ff44f1a3 Jan Kiszka
    }
1327 ff44f1a3 Jan Kiszka
1328 ff44f1a3 Jan Kiszka
    for (i = 0; i < 4; i++) {
1329 ff44f1a3 Jan Kiszka
        dbgregs.db[i] = env->dr[i];
1330 ff44f1a3 Jan Kiszka
    }
1331 ff44f1a3 Jan Kiszka
    dbgregs.dr6 = env->dr[6];
1332 ff44f1a3 Jan Kiszka
    dbgregs.dr7 = env->dr[7];
1333 ff44f1a3 Jan Kiszka
    dbgregs.flags = 0;
1334 ff44f1a3 Jan Kiszka
1335 ff44f1a3 Jan Kiszka
    return kvm_vcpu_ioctl(env, KVM_SET_DEBUGREGS, &dbgregs);
1336 ff44f1a3 Jan Kiszka
#else
1337 ff44f1a3 Jan Kiszka
    return 0;
1338 ff44f1a3 Jan Kiszka
#endif
1339 ff44f1a3 Jan Kiszka
}
1340 ff44f1a3 Jan Kiszka
1341 ff44f1a3 Jan Kiszka
static int kvm_get_debugregs(CPUState *env)
1342 ff44f1a3 Jan Kiszka
{
1343 ff44f1a3 Jan Kiszka
#ifdef KVM_CAP_DEBUGREGS
1344 ff44f1a3 Jan Kiszka
    struct kvm_debugregs dbgregs;
1345 ff44f1a3 Jan Kiszka
    int i, ret;
1346 ff44f1a3 Jan Kiszka
1347 ff44f1a3 Jan Kiszka
    if (!kvm_has_debugregs()) {
1348 ff44f1a3 Jan Kiszka
        return 0;
1349 ff44f1a3 Jan Kiszka
    }
1350 ff44f1a3 Jan Kiszka
1351 ff44f1a3 Jan Kiszka
    ret = kvm_vcpu_ioctl(env, KVM_GET_DEBUGREGS, &dbgregs);
1352 ff44f1a3 Jan Kiszka
    if (ret < 0) {
1353 b9bec74b Jan Kiszka
        return ret;
1354 ff44f1a3 Jan Kiszka
    }
1355 ff44f1a3 Jan Kiszka
    for (i = 0; i < 4; i++) {
1356 ff44f1a3 Jan Kiszka
        env->dr[i] = dbgregs.db[i];
1357 ff44f1a3 Jan Kiszka
    }
1358 ff44f1a3 Jan Kiszka
    env->dr[4] = env->dr[6] = dbgregs.dr6;
1359 ff44f1a3 Jan Kiszka
    env->dr[5] = env->dr[7] = dbgregs.dr7;
1360 ff44f1a3 Jan Kiszka
#endif
1361 ff44f1a3 Jan Kiszka
1362 ff44f1a3 Jan Kiszka
    return 0;
1363 ff44f1a3 Jan Kiszka
}
1364 ff44f1a3 Jan Kiszka
1365 ea375f9a Jan Kiszka
int kvm_arch_put_registers(CPUState *env, int level)
1366 05330448 aliguori
{
1367 05330448 aliguori
    int ret;
1368 05330448 aliguori
1369 b7680cb6 Jan Kiszka
    assert(cpu_is_stopped(env) || qemu_cpu_is_self(env));
1370 dbaa07c4 Jan Kiszka
1371 05330448 aliguori
    ret = kvm_getput_regs(env, 1);
1372 b9bec74b Jan Kiszka
    if (ret < 0) {
1373 05330448 aliguori
        return ret;
1374 b9bec74b Jan Kiszka
    }
1375 f1665b21 Sheng Yang
    ret = kvm_put_xsave(env);
1376 b9bec74b Jan Kiszka
    if (ret < 0) {
1377 f1665b21 Sheng Yang
        return ret;
1378 b9bec74b Jan Kiszka
    }
1379 f1665b21 Sheng Yang
    ret = kvm_put_xcrs(env);
1380 b9bec74b Jan Kiszka
    if (ret < 0) {
1381 05330448 aliguori
        return ret;
1382 b9bec74b Jan Kiszka
    }
1383 05330448 aliguori
    ret = kvm_put_sregs(env);
1384 b9bec74b Jan Kiszka
    if (ret < 0) {
1385 05330448 aliguori
        return ret;
1386 b9bec74b Jan Kiszka
    }
1387 ab443475 Jan Kiszka
    /* must be before kvm_put_msrs */
1388 ab443475 Jan Kiszka
    ret = kvm_inject_mce_oldstyle(env);
1389 ab443475 Jan Kiszka
    if (ret < 0) {
1390 ab443475 Jan Kiszka
        return ret;
1391 ab443475 Jan Kiszka
    }
1392 ea643051 Jan Kiszka
    ret = kvm_put_msrs(env, level);
1393 b9bec74b Jan Kiszka
    if (ret < 0) {
1394 05330448 aliguori
        return ret;
1395 b9bec74b Jan Kiszka
    }
1396 ea643051 Jan Kiszka
    if (level >= KVM_PUT_RESET_STATE) {
1397 ea643051 Jan Kiszka
        ret = kvm_put_mp_state(env);
1398 b9bec74b Jan Kiszka
        if (ret < 0) {
1399 ea643051 Jan Kiszka
            return ret;
1400 b9bec74b Jan Kiszka
        }
1401 ea643051 Jan Kiszka
    }
1402 ea643051 Jan Kiszka
    ret = kvm_put_vcpu_events(env, level);
1403 b9bec74b Jan Kiszka
    if (ret < 0) {
1404 a0fb002c Jan Kiszka
        return ret;
1405 b9bec74b Jan Kiszka
    }
1406 0d75a9ec Jan Kiszka
    ret = kvm_put_debugregs(env);
1407 b9bec74b Jan Kiszka
    if (ret < 0) {
1408 b0b1d690 Jan Kiszka
        return ret;
1409 b9bec74b Jan Kiszka
    }
1410 b0b1d690 Jan Kiszka
    /* must be last */
1411 b0b1d690 Jan Kiszka
    ret = kvm_guest_debug_workarounds(env);
1412 b9bec74b Jan Kiszka
    if (ret < 0) {
1413 ff44f1a3 Jan Kiszka
        return ret;
1414 b9bec74b Jan Kiszka
    }
1415 05330448 aliguori
    return 0;
1416 05330448 aliguori
}
1417 05330448 aliguori
1418 05330448 aliguori
int kvm_arch_get_registers(CPUState *env)
1419 05330448 aliguori
{
1420 05330448 aliguori
    int ret;
1421 05330448 aliguori
1422 b7680cb6 Jan Kiszka
    assert(cpu_is_stopped(env) || qemu_cpu_is_self(env));
1423 dbaa07c4 Jan Kiszka
1424 05330448 aliguori
    ret = kvm_getput_regs(env, 0);
1425 b9bec74b Jan Kiszka
    if (ret < 0) {
1426 05330448 aliguori
        return ret;
1427 b9bec74b Jan Kiszka
    }
1428 f1665b21 Sheng Yang
    ret = kvm_get_xsave(env);
1429 b9bec74b Jan Kiszka
    if (ret < 0) {
1430 f1665b21 Sheng Yang
        return ret;
1431 b9bec74b Jan Kiszka
    }
1432 f1665b21 Sheng Yang
    ret = kvm_get_xcrs(env);
1433 b9bec74b Jan Kiszka
    if (ret < 0) {
1434 05330448 aliguori
        return ret;
1435 b9bec74b Jan Kiszka
    }
1436 05330448 aliguori
    ret = kvm_get_sregs(env);
1437 b9bec74b Jan Kiszka
    if (ret < 0) {
1438 05330448 aliguori
        return ret;
1439 b9bec74b Jan Kiszka
    }
1440 05330448 aliguori
    ret = kvm_get_msrs(env);
1441 b9bec74b Jan Kiszka
    if (ret < 0) {
1442 05330448 aliguori
        return ret;
1443 b9bec74b Jan Kiszka
    }
1444 5a2e3c2e Jan Kiszka
    ret = kvm_get_mp_state(env);
1445 b9bec74b Jan Kiszka
    if (ret < 0) {
1446 5a2e3c2e Jan Kiszka
        return ret;
1447 b9bec74b Jan Kiszka
    }
1448 a0fb002c Jan Kiszka
    ret = kvm_get_vcpu_events(env);
1449 b9bec74b Jan Kiszka
    if (ret < 0) {
1450 a0fb002c Jan Kiszka
        return ret;
1451 b9bec74b Jan Kiszka
    }
1452 ff44f1a3 Jan Kiszka
    ret = kvm_get_debugregs(env);
1453 b9bec74b Jan Kiszka
    if (ret < 0) {
1454 ff44f1a3 Jan Kiszka
        return ret;
1455 b9bec74b Jan Kiszka
    }
1456 05330448 aliguori
    return 0;
1457 05330448 aliguori
}
1458 05330448 aliguori
1459 7a39fe58 Jan Kiszka
void kvm_arch_pre_run(CPUState *env, struct kvm_run *run)
1460 05330448 aliguori
{
1461 ce377af3 Jan Kiszka
    int ret;
1462 ce377af3 Jan Kiszka
1463 276ce815 Lai Jiangshan
    /* Inject NMI */
1464 276ce815 Lai Jiangshan
    if (env->interrupt_request & CPU_INTERRUPT_NMI) {
1465 276ce815 Lai Jiangshan
        env->interrupt_request &= ~CPU_INTERRUPT_NMI;
1466 276ce815 Lai Jiangshan
        DPRINTF("injected NMI\n");
1467 ce377af3 Jan Kiszka
        ret = kvm_vcpu_ioctl(env, KVM_NMI);
1468 ce377af3 Jan Kiszka
        if (ret < 0) {
1469 ce377af3 Jan Kiszka
            fprintf(stderr, "KVM: injection failed, NMI lost (%s)\n",
1470 ce377af3 Jan Kiszka
                    strerror(-ret));
1471 ce377af3 Jan Kiszka
        }
1472 276ce815 Lai Jiangshan
    }
1473 276ce815 Lai Jiangshan
1474 db1669bc Jan Kiszka
    if (!kvm_irqchip_in_kernel()) {
1475 db1669bc Jan Kiszka
        /* Force the VCPU out of its inner loop to process the INIT request */
1476 db1669bc Jan Kiszka
        if (env->interrupt_request & CPU_INTERRUPT_INIT) {
1477 db1669bc Jan Kiszka
            env->exit_request = 1;
1478 05330448 aliguori
        }
1479 05330448 aliguori
1480 db1669bc Jan Kiszka
        /* Try to inject an interrupt if the guest can accept it */
1481 db1669bc Jan Kiszka
        if (run->ready_for_interrupt_injection &&
1482 db1669bc Jan Kiszka
            (env->interrupt_request & CPU_INTERRUPT_HARD) &&
1483 db1669bc Jan Kiszka
            (env->eflags & IF_MASK)) {
1484 db1669bc Jan Kiszka
            int irq;
1485 db1669bc Jan Kiszka
1486 db1669bc Jan Kiszka
            env->interrupt_request &= ~CPU_INTERRUPT_HARD;
1487 db1669bc Jan Kiszka
            irq = cpu_get_pic_interrupt(env);
1488 db1669bc Jan Kiszka
            if (irq >= 0) {
1489 db1669bc Jan Kiszka
                struct kvm_interrupt intr;
1490 db1669bc Jan Kiszka
1491 db1669bc Jan Kiszka
                intr.irq = irq;
1492 db1669bc Jan Kiszka
                DPRINTF("injected interrupt %d\n", irq);
1493 ce377af3 Jan Kiszka
                ret = kvm_vcpu_ioctl(env, KVM_INTERRUPT, &intr);
1494 ce377af3 Jan Kiszka
                if (ret < 0) {
1495 ce377af3 Jan Kiszka
                    fprintf(stderr,
1496 ce377af3 Jan Kiszka
                            "KVM: injection failed, interrupt lost (%s)\n",
1497 ce377af3 Jan Kiszka
                            strerror(-ret));
1498 ce377af3 Jan Kiszka
                }
1499 db1669bc Jan Kiszka
            }
1500 db1669bc Jan Kiszka
        }
1501 05330448 aliguori
1502 db1669bc Jan Kiszka
        /* If we have an interrupt but the guest is not ready to receive an
1503 db1669bc Jan Kiszka
         * interrupt, request an interrupt window exit.  This will
1504 db1669bc Jan Kiszka
         * cause a return to userspace as soon as the guest is ready to
1505 db1669bc Jan Kiszka
         * receive interrupts. */
1506 db1669bc Jan Kiszka
        if ((env->interrupt_request & CPU_INTERRUPT_HARD)) {
1507 db1669bc Jan Kiszka
            run->request_interrupt_window = 1;
1508 db1669bc Jan Kiszka
        } else {
1509 db1669bc Jan Kiszka
            run->request_interrupt_window = 0;
1510 db1669bc Jan Kiszka
        }
1511 db1669bc Jan Kiszka
1512 db1669bc Jan Kiszka
        DPRINTF("setting tpr\n");
1513 db1669bc Jan Kiszka
        run->cr8 = cpu_get_apic_tpr(env->apic_state);
1514 db1669bc Jan Kiszka
    }
1515 05330448 aliguori
}
1516 05330448 aliguori
1517 7a39fe58 Jan Kiszka
void kvm_arch_post_run(CPUState *env, struct kvm_run *run)
1518 05330448 aliguori
{
1519 b9bec74b Jan Kiszka
    if (run->if_flag) {
1520 05330448 aliguori
        env->eflags |= IF_MASK;
1521 b9bec74b Jan Kiszka
    } else {
1522 05330448 aliguori
        env->eflags &= ~IF_MASK;
1523 b9bec74b Jan Kiszka
    }
1524 4a942cea Blue Swirl
    cpu_set_apic_tpr(env->apic_state, run->cr8);
1525 4a942cea Blue Swirl
    cpu_set_apic_base(env->apic_state, run->apic_base);
1526 05330448 aliguori
}
1527 05330448 aliguori
1528 99036865 Jan Kiszka
int kvm_arch_process_async_events(CPUState *env)
1529 0af691d7 Marcelo Tosatti
{
1530 ab443475 Jan Kiszka
    if (env->interrupt_request & CPU_INTERRUPT_MCE) {
1531 ab443475 Jan Kiszka
        /* We must not raise CPU_INTERRUPT_MCE if it's not supported. */
1532 ab443475 Jan Kiszka
        assert(env->mcg_cap);
1533 ab443475 Jan Kiszka
1534 ab443475 Jan Kiszka
        env->interrupt_request &= ~CPU_INTERRUPT_MCE;
1535 ab443475 Jan Kiszka
1536 ab443475 Jan Kiszka
        kvm_cpu_synchronize_state(env);
1537 ab443475 Jan Kiszka
1538 ab443475 Jan Kiszka
        if (env->exception_injected == EXCP08_DBLE) {
1539 ab443475 Jan Kiszka
            /* this means triple fault */
1540 ab443475 Jan Kiszka
            qemu_system_reset_request();
1541 ab443475 Jan Kiszka
            env->exit_request = 1;
1542 ab443475 Jan Kiszka
            return 0;
1543 ab443475 Jan Kiszka
        }
1544 ab443475 Jan Kiszka
        env->exception_injected = EXCP12_MCHK;
1545 ab443475 Jan Kiszka
        env->has_error_code = 0;
1546 ab443475 Jan Kiszka
1547 ab443475 Jan Kiszka
        env->halted = 0;
1548 ab443475 Jan Kiszka
        if (kvm_irqchip_in_kernel() && env->mp_state == KVM_MP_STATE_HALTED) {
1549 ab443475 Jan Kiszka
            env->mp_state = KVM_MP_STATE_RUNNABLE;
1550 ab443475 Jan Kiszka
        }
1551 ab443475 Jan Kiszka
    }
1552 ab443475 Jan Kiszka
1553 db1669bc Jan Kiszka
    if (kvm_irqchip_in_kernel()) {
1554 db1669bc Jan Kiszka
        return 0;
1555 db1669bc Jan Kiszka
    }
1556 db1669bc Jan Kiszka
1557 6792a57b Jan Kiszka
    if (env->interrupt_request & (CPU_INTERRUPT_HARD | CPU_INTERRUPT_NMI)) {
1558 6792a57b Jan Kiszka
        env->halted = 0;
1559 6792a57b Jan Kiszka
    }
1560 0af691d7 Marcelo Tosatti
    if (env->interrupt_request & CPU_INTERRUPT_INIT) {
1561 0af691d7 Marcelo Tosatti
        kvm_cpu_synchronize_state(env);
1562 0af691d7 Marcelo Tosatti
        do_cpu_init(env);
1563 0af691d7 Marcelo Tosatti
    }
1564 0af691d7 Marcelo Tosatti
    if (env->interrupt_request & CPU_INTERRUPT_SIPI) {
1565 0af691d7 Marcelo Tosatti
        kvm_cpu_synchronize_state(env);
1566 0af691d7 Marcelo Tosatti
        do_cpu_sipi(env);
1567 0af691d7 Marcelo Tosatti
    }
1568 0af691d7 Marcelo Tosatti
1569 0af691d7 Marcelo Tosatti
    return env->halted;
1570 0af691d7 Marcelo Tosatti
}
1571 0af691d7 Marcelo Tosatti
1572 05330448 aliguori
static int kvm_handle_halt(CPUState *env)
1573 05330448 aliguori
{
1574 05330448 aliguori
    if (!((env->interrupt_request & CPU_INTERRUPT_HARD) &&
1575 05330448 aliguori
          (env->eflags & IF_MASK)) &&
1576 05330448 aliguori
        !(env->interrupt_request & CPU_INTERRUPT_NMI)) {
1577 05330448 aliguori
        env->halted = 1;
1578 05330448 aliguori
        return 0;
1579 05330448 aliguori
    }
1580 05330448 aliguori
1581 05330448 aliguori
    return 1;
1582 05330448 aliguori
}
1583 05330448 aliguori
1584 bb44e0d1 Jan Kiszka
static bool host_supports_vmx(void)
1585 bb44e0d1 Jan Kiszka
{
1586 bb44e0d1 Jan Kiszka
    uint32_t ecx, unused;
1587 bb44e0d1 Jan Kiszka
1588 bb44e0d1 Jan Kiszka
    host_cpuid(1, 0, &unused, &unused, &ecx, &unused);
1589 bb44e0d1 Jan Kiszka
    return ecx & CPUID_EXT_VMX;
1590 bb44e0d1 Jan Kiszka
}
1591 bb44e0d1 Jan Kiszka
1592 bb44e0d1 Jan Kiszka
#define VMX_INVALID_GUEST_STATE 0x80000021
1593 bb44e0d1 Jan Kiszka
1594 05330448 aliguori
int kvm_arch_handle_exit(CPUState *env, struct kvm_run *run)
1595 05330448 aliguori
{
1596 bb44e0d1 Jan Kiszka
    uint64_t code;
1597 05330448 aliguori
    int ret = 0;
1598 05330448 aliguori
1599 05330448 aliguori
    switch (run->exit_reason) {
1600 05330448 aliguori
    case KVM_EXIT_HLT:
1601 8c0d577e Blue Swirl
        DPRINTF("handle_hlt\n");
1602 05330448 aliguori
        ret = kvm_handle_halt(env);
1603 05330448 aliguori
        break;
1604 646042e1 Jan Kiszka
    case KVM_EXIT_SET_TPR:
1605 646042e1 Jan Kiszka
        ret = 1;
1606 646042e1 Jan Kiszka
        break;
1607 bb44e0d1 Jan Kiszka
    case KVM_EXIT_FAIL_ENTRY:
1608 bb44e0d1 Jan Kiszka
        code = run->fail_entry.hardware_entry_failure_reason;
1609 bb44e0d1 Jan Kiszka
        fprintf(stderr, "KVM: entry failed, hardware error 0x%" PRIx64 "\n",
1610 bb44e0d1 Jan Kiszka
                code);
1611 bb44e0d1 Jan Kiszka
        if (host_supports_vmx() && code == VMX_INVALID_GUEST_STATE) {
1612 bb44e0d1 Jan Kiszka
            fprintf(stderr,
1613 bb44e0d1 Jan Kiszka
                    "\nIf you're runnning a guest on an Intel machine without "
1614 bb44e0d1 Jan Kiszka
                        "unrestricted mode\n"
1615 bb44e0d1 Jan Kiszka
                    "support, the failure can be most likely due to the guest "
1616 bb44e0d1 Jan Kiszka
                        "entering an invalid\n"
1617 bb44e0d1 Jan Kiszka
                    "state for Intel VT. For example, the guest maybe running "
1618 bb44e0d1 Jan Kiszka
                        "in big real mode\n"
1619 bb44e0d1 Jan Kiszka
                    "which is not supported on less recent Intel processors."
1620 bb44e0d1 Jan Kiszka
                        "\n\n");
1621 bb44e0d1 Jan Kiszka
        }
1622 bb44e0d1 Jan Kiszka
        ret = -1;
1623 bb44e0d1 Jan Kiszka
        break;
1624 bb44e0d1 Jan Kiszka
    case KVM_EXIT_EXCEPTION:
1625 bb44e0d1 Jan Kiszka
        fprintf(stderr, "KVM: exception %d exit (error code 0x%x)\n",
1626 bb44e0d1 Jan Kiszka
                run->ex.exception, run->ex.error_code);
1627 bb44e0d1 Jan Kiszka
        ret = -1;
1628 bb44e0d1 Jan Kiszka
        break;
1629 73aaec4a Jan Kiszka
    default:
1630 73aaec4a Jan Kiszka
        fprintf(stderr, "KVM: unknown exit reason %d\n", run->exit_reason);
1631 73aaec4a Jan Kiszka
        ret = -1;
1632 73aaec4a Jan Kiszka
        break;
1633 05330448 aliguori
    }
1634 05330448 aliguori
1635 05330448 aliguori
    return ret;
1636 05330448 aliguori
}
1637 e22a25c9 aliguori
1638 e22a25c9 aliguori
#ifdef KVM_CAP_SET_GUEST_DEBUG
1639 e22a25c9 aliguori
int kvm_arch_insert_sw_breakpoint(CPUState *env, struct kvm_sw_breakpoint *bp)
1640 e22a25c9 aliguori
{
1641 38972938 Juan Quintela
    static const uint8_t int3 = 0xcc;
1642 64bf3f4e aliguori
1643 e22a25c9 aliguori
    if (cpu_memory_rw_debug(env, bp->pc, (uint8_t *)&bp->saved_insn, 1, 0) ||
1644 b9bec74b Jan Kiszka
        cpu_memory_rw_debug(env, bp->pc, (uint8_t *)&int3, 1, 1)) {
1645 e22a25c9 aliguori
        return -EINVAL;
1646 b9bec74b Jan Kiszka
    }
1647 e22a25c9 aliguori
    return 0;
1648 e22a25c9 aliguori
}
1649 e22a25c9 aliguori
1650 e22a25c9 aliguori
int kvm_arch_remove_sw_breakpoint(CPUState *env, struct kvm_sw_breakpoint *bp)
1651 e22a25c9 aliguori
{
1652 e22a25c9 aliguori
    uint8_t int3;
1653 e22a25c9 aliguori
1654 e22a25c9 aliguori
    if (cpu_memory_rw_debug(env, bp->pc, &int3, 1, 0) || int3 != 0xcc ||
1655 b9bec74b Jan Kiszka
        cpu_memory_rw_debug(env, bp->pc, (uint8_t *)&bp->saved_insn, 1, 1)) {
1656 e22a25c9 aliguori
        return -EINVAL;
1657 b9bec74b Jan Kiszka
    }
1658 e22a25c9 aliguori
    return 0;
1659 e22a25c9 aliguori
}
1660 e22a25c9 aliguori
1661 e22a25c9 aliguori
static struct {
1662 e22a25c9 aliguori
    target_ulong addr;
1663 e22a25c9 aliguori
    int len;
1664 e22a25c9 aliguori
    int type;
1665 e22a25c9 aliguori
} hw_breakpoint[4];
1666 e22a25c9 aliguori
1667 e22a25c9 aliguori
static int nb_hw_breakpoint;
1668 e22a25c9 aliguori
1669 e22a25c9 aliguori
static int find_hw_breakpoint(target_ulong addr, int len, int type)
1670 e22a25c9 aliguori
{
1671 e22a25c9 aliguori
    int n;
1672 e22a25c9 aliguori
1673 b9bec74b Jan Kiszka
    for (n = 0; n < nb_hw_breakpoint; n++) {
1674 e22a25c9 aliguori
        if (hw_breakpoint[n].addr == addr && hw_breakpoint[n].type == type &&
1675 b9bec74b Jan Kiszka
            (hw_breakpoint[n].len == len || len == -1)) {
1676 e22a25c9 aliguori
            return n;
1677 b9bec74b Jan Kiszka
        }
1678 b9bec74b Jan Kiszka
    }
1679 e22a25c9 aliguori
    return -1;
1680 e22a25c9 aliguori
}
1681 e22a25c9 aliguori
1682 e22a25c9 aliguori
int kvm_arch_insert_hw_breakpoint(target_ulong addr,
1683 e22a25c9 aliguori
                                  target_ulong len, int type)
1684 e22a25c9 aliguori
{
1685 e22a25c9 aliguori
    switch (type) {
1686 e22a25c9 aliguori
    case GDB_BREAKPOINT_HW:
1687 e22a25c9 aliguori
        len = 1;
1688 e22a25c9 aliguori
        break;
1689 e22a25c9 aliguori
    case GDB_WATCHPOINT_WRITE:
1690 e22a25c9 aliguori
    case GDB_WATCHPOINT_ACCESS:
1691 e22a25c9 aliguori
        switch (len) {
1692 e22a25c9 aliguori
        case 1:
1693 e22a25c9 aliguori
            break;
1694 e22a25c9 aliguori
        case 2:
1695 e22a25c9 aliguori
        case 4:
1696 e22a25c9 aliguori
        case 8:
1697 b9bec74b Jan Kiszka
            if (addr & (len - 1)) {
1698 e22a25c9 aliguori
                return -EINVAL;
1699 b9bec74b Jan Kiszka
            }
1700 e22a25c9 aliguori
            break;
1701 e22a25c9 aliguori
        default:
1702 e22a25c9 aliguori
            return -EINVAL;
1703 e22a25c9 aliguori
        }
1704 e22a25c9 aliguori
        break;
1705 e22a25c9 aliguori
    default:
1706 e22a25c9 aliguori
        return -ENOSYS;
1707 e22a25c9 aliguori
    }
1708 e22a25c9 aliguori
1709 b9bec74b Jan Kiszka
    if (nb_hw_breakpoint == 4) {
1710 e22a25c9 aliguori
        return -ENOBUFS;
1711 b9bec74b Jan Kiszka
    }
1712 b9bec74b Jan Kiszka
    if (find_hw_breakpoint(addr, len, type) >= 0) {
1713 e22a25c9 aliguori
        return -EEXIST;
1714 b9bec74b Jan Kiszka
    }
1715 e22a25c9 aliguori
    hw_breakpoint[nb_hw_breakpoint].addr = addr;
1716 e22a25c9 aliguori
    hw_breakpoint[nb_hw_breakpoint].len = len;
1717 e22a25c9 aliguori
    hw_breakpoint[nb_hw_breakpoint].type = type;
1718 e22a25c9 aliguori
    nb_hw_breakpoint++;
1719 e22a25c9 aliguori
1720 e22a25c9 aliguori
    return 0;
1721 e22a25c9 aliguori
}
1722 e22a25c9 aliguori
1723 e22a25c9 aliguori
int kvm_arch_remove_hw_breakpoint(target_ulong addr,
1724 e22a25c9 aliguori
                                  target_ulong len, int type)
1725 e22a25c9 aliguori
{
1726 e22a25c9 aliguori
    int n;
1727 e22a25c9 aliguori
1728 e22a25c9 aliguori
    n = find_hw_breakpoint(addr, (type == GDB_BREAKPOINT_HW) ? 1 : len, type);
1729 b9bec74b Jan Kiszka
    if (n < 0) {
1730 e22a25c9 aliguori
        return -ENOENT;
1731 b9bec74b Jan Kiszka
    }
1732 e22a25c9 aliguori
    nb_hw_breakpoint--;
1733 e22a25c9 aliguori
    hw_breakpoint[n] = hw_breakpoint[nb_hw_breakpoint];
1734 e22a25c9 aliguori
1735 e22a25c9 aliguori
    return 0;
1736 e22a25c9 aliguori
}
1737 e22a25c9 aliguori
1738 e22a25c9 aliguori
void kvm_arch_remove_all_hw_breakpoints(void)
1739 e22a25c9 aliguori
{
1740 e22a25c9 aliguori
    nb_hw_breakpoint = 0;
1741 e22a25c9 aliguori
}
1742 e22a25c9 aliguori
1743 e22a25c9 aliguori
static CPUWatchpoint hw_watchpoint;
1744 e22a25c9 aliguori
1745 e22a25c9 aliguori
int kvm_arch_debug(struct kvm_debug_exit_arch *arch_info)
1746 e22a25c9 aliguori
{
1747 e22a25c9 aliguori
    int handle = 0;
1748 e22a25c9 aliguori
    int n;
1749 e22a25c9 aliguori
1750 e22a25c9 aliguori
    if (arch_info->exception == 1) {
1751 e22a25c9 aliguori
        if (arch_info->dr6 & (1 << 14)) {
1752 b9bec74b Jan Kiszka
            if (cpu_single_env->singlestep_enabled) {
1753 e22a25c9 aliguori
                handle = 1;
1754 b9bec74b Jan Kiszka
            }
1755 e22a25c9 aliguori
        } else {
1756 b9bec74b Jan Kiszka
            for (n = 0; n < 4; n++) {
1757 b9bec74b Jan Kiszka
                if (arch_info->dr6 & (1 << n)) {
1758 e22a25c9 aliguori
                    switch ((arch_info->dr7 >> (16 + n*4)) & 0x3) {
1759 e22a25c9 aliguori
                    case 0x0:
1760 e22a25c9 aliguori
                        handle = 1;
1761 e22a25c9 aliguori
                        break;
1762 e22a25c9 aliguori
                    case 0x1:
1763 e22a25c9 aliguori
                        handle = 1;
1764 e22a25c9 aliguori
                        cpu_single_env->watchpoint_hit = &hw_watchpoint;
1765 e22a25c9 aliguori
                        hw_watchpoint.vaddr = hw_breakpoint[n].addr;
1766 e22a25c9 aliguori
                        hw_watchpoint.flags = BP_MEM_WRITE;
1767 e22a25c9 aliguori
                        break;
1768 e22a25c9 aliguori
                    case 0x3:
1769 e22a25c9 aliguori
                        handle = 1;
1770 e22a25c9 aliguori
                        cpu_single_env->watchpoint_hit = &hw_watchpoint;
1771 e22a25c9 aliguori
                        hw_watchpoint.vaddr = hw_breakpoint[n].addr;
1772 e22a25c9 aliguori
                        hw_watchpoint.flags = BP_MEM_ACCESS;
1773 e22a25c9 aliguori
                        break;
1774 e22a25c9 aliguori
                    }
1775 b9bec74b Jan Kiszka
                }
1776 b9bec74b Jan Kiszka
            }
1777 e22a25c9 aliguori
        }
1778 b9bec74b Jan Kiszka
    } else if (kvm_find_sw_breakpoint(cpu_single_env, arch_info->pc)) {
1779 e22a25c9 aliguori
        handle = 1;
1780 b9bec74b Jan Kiszka
    }
1781 b0b1d690 Jan Kiszka
    if (!handle) {
1782 b0b1d690 Jan Kiszka
        cpu_synchronize_state(cpu_single_env);
1783 b0b1d690 Jan Kiszka
        assert(cpu_single_env->exception_injected == -1);
1784 b0b1d690 Jan Kiszka
1785 b0b1d690 Jan Kiszka
        cpu_single_env->exception_injected = arch_info->exception;
1786 b0b1d690 Jan Kiszka
        cpu_single_env->has_error_code = 0;
1787 b0b1d690 Jan Kiszka
    }
1788 e22a25c9 aliguori
1789 e22a25c9 aliguori
    return handle;
1790 e22a25c9 aliguori
}
1791 e22a25c9 aliguori
1792 e22a25c9 aliguori
void kvm_arch_update_guest_debug(CPUState *env, struct kvm_guest_debug *dbg)
1793 e22a25c9 aliguori
{
1794 e22a25c9 aliguori
    const uint8_t type_code[] = {
1795 e22a25c9 aliguori
        [GDB_BREAKPOINT_HW] = 0x0,
1796 e22a25c9 aliguori
        [GDB_WATCHPOINT_WRITE] = 0x1,
1797 e22a25c9 aliguori
        [GDB_WATCHPOINT_ACCESS] = 0x3
1798 e22a25c9 aliguori
    };
1799 e22a25c9 aliguori
    const uint8_t len_code[] = {
1800 e22a25c9 aliguori
        [1] = 0x0, [2] = 0x1, [4] = 0x3, [8] = 0x2
1801 e22a25c9 aliguori
    };
1802 e22a25c9 aliguori
    int n;
1803 e22a25c9 aliguori
1804 b9bec74b Jan Kiszka
    if (kvm_sw_breakpoints_active(env)) {
1805 e22a25c9 aliguori
        dbg->control |= KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_SW_BP;
1806 b9bec74b Jan Kiszka
    }
1807 e22a25c9 aliguori
    if (nb_hw_breakpoint > 0) {
1808 e22a25c9 aliguori
        dbg->control |= KVM_GUESTDBG_ENABLE | KVM_GUESTDBG_USE_HW_BP;
1809 e22a25c9 aliguori
        dbg->arch.debugreg[7] = 0x0600;
1810 e22a25c9 aliguori
        for (n = 0; n < nb_hw_breakpoint; n++) {
1811 e22a25c9 aliguori
            dbg->arch.debugreg[n] = hw_breakpoint[n].addr;
1812 e22a25c9 aliguori
            dbg->arch.debugreg[7] |= (2 << (n * 2)) |
1813 e22a25c9 aliguori
                (type_code[hw_breakpoint[n].type] << (16 + n*4)) |
1814 95c077c9 Jan Kiszka
                ((uint32_t)len_code[hw_breakpoint[n].len] << (18 + n*4));
1815 e22a25c9 aliguori
        }
1816 e22a25c9 aliguori
    }
1817 e22a25c9 aliguori
}
1818 e22a25c9 aliguori
#endif /* KVM_CAP_SET_GUEST_DEBUG */
1819 4513d923 Gleb Natapov
1820 4513d923 Gleb Natapov
bool kvm_arch_stop_on_emulation_error(CPUState *env)
1821 4513d923 Gleb Natapov
{
1822 b9bec74b Jan Kiszka
    return !(env->cr[0] & CR0_PE_MASK) ||
1823 b9bec74b Jan Kiszka
           ((env->segs[R_CS].selector  & 3) != 3);
1824 4513d923 Gleb Natapov
}