cpus.c 40.4 KB
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/*
 * QEMU System Emulator
 *
 * Copyright (c) 2003-2008 Fabrice Bellard
 *
 * Permission is hereby granted, free of charge, to any person obtaining a copy
 * of this software and associated documentation files (the "Software"), to deal
 * in the Software without restriction, including without limitation the rights
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
 * copies of the Software, and to permit persons to whom the Software is
 * furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice shall be included in
 * all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
 * THE SOFTWARE.
 */

/* Needed early for CONFIG_BSD etc. */
#include "config-host.h"

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#include "monitor/monitor.h"
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#include "qapi/qmp/qerror.h"
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#include "qemu/error-report.h"
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#include "sysemu/sysemu.h"
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#include "exec/gdbstub.h"
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#include "sysemu/dma.h"
#include "sysemu/kvm.h"
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#include "qmp-commands.h"
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#include "qemu/thread.h"
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#include "sysemu/cpus.h"
#include "sysemu/qtest.h"
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#include "qemu/main-loop.h"
#include "qemu/bitmap.h"
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#include "qemu/seqlock.h"
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#include "qapi-event.h"
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#include "hw/nmi.h"
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#ifndef _WIN32
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#include "qemu/compatfd.h"
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#endif
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#ifdef CONFIG_LINUX

#include <sys/prctl.h>

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#ifndef PR_MCE_KILL
#define PR_MCE_KILL 33
#endif

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#ifndef PR_MCE_KILL_SET
#define PR_MCE_KILL_SET 1
#endif

#ifndef PR_MCE_KILL_EARLY
#define PR_MCE_KILL_EARLY 1
#endif

#endif /* CONFIG_LINUX */

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static CPUState *next_cpu;
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int64_t max_delay;
int64_t max_advance;
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bool cpu_is_stopped(CPUState *cpu)
{
    return cpu->stopped || !runstate_is_running();
}

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static bool cpu_thread_is_idle(CPUState *cpu)
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{
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    if (cpu->stop || cpu->queued_work_first) {
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        return false;
    }
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    if (cpu_is_stopped(cpu)) {
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        return true;
    }
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    if (!cpu->halted || cpu_has_work(cpu) ||
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        kvm_halt_in_kernel()) {
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        return false;
    }
    return true;
}

static bool all_cpu_threads_idle(void)
{
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    CPUState *cpu;
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    CPU_FOREACH(cpu) {
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        if (!cpu_thread_is_idle(cpu)) {
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            return false;
        }
    }
    return true;
}

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/***********************************************************/
/* guest cycle counter */

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/* Protected by TimersState seqlock */

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static bool icount_sleep = true;
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static int64_t vm_clock_warp_start = -1;
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/* Conversion factor from emulated instructions to virtual clock ticks.  */
static int icount_time_shift;
/* Arbitrarily pick 1MIPS as the minimum allowable speed.  */
#define MAX_ICOUNT_SHIFT 10
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static QEMUTimer *icount_rt_timer;
static QEMUTimer *icount_vm_timer;
static QEMUTimer *icount_warp_timer;

typedef struct TimersState {
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    /* Protected by BQL.  */
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    int64_t cpu_ticks_prev;
    int64_t cpu_ticks_offset;
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    /* cpu_clock_offset can be read out of BQL, so protect it with
     * this lock.
     */
    QemuSeqLock vm_clock_seqlock;
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    int64_t cpu_clock_offset;
    int32_t cpu_ticks_enabled;
    int64_t dummy;
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    /* Compensate for varying guest execution speed.  */
    int64_t qemu_icount_bias;
    /* Only written by TCG thread */
    int64_t qemu_icount;
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} TimersState;

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static TimersState timers_state;
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int64_t cpu_get_icount_raw(void)
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{
    int64_t icount;
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    CPUState *cpu = current_cpu;
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    icount = timers_state.qemu_icount;
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    if (cpu) {
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        if (!cpu->can_do_io) {
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            fprintf(stderr, "Bad icount read\n");
            exit(1);
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        }
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        icount -= (cpu->icount_decr.u16.low + cpu->icount_extra);
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    }
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    return icount;
}

/* Return the virtual CPU time, based on the instruction counter.  */
static int64_t cpu_get_icount_locked(void)
{
    int64_t icount = cpu_get_icount_raw();
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    return timers_state.qemu_icount_bias + cpu_icount_to_ns(icount);
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}

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int64_t cpu_get_icount(void)
{
    int64_t icount;
    unsigned start;

    do {
        start = seqlock_read_begin(&timers_state.vm_clock_seqlock);
        icount = cpu_get_icount_locked();
    } while (seqlock_read_retry(&timers_state.vm_clock_seqlock, start));

    return icount;
}

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int64_t cpu_icount_to_ns(int64_t icount)
{
    return icount << icount_time_shift;
}

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/* return the host CPU cycle counter and handle stop/restart */
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/* Caller must hold the BQL */
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int64_t cpu_get_ticks(void)
{
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    int64_t ticks;

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    if (use_icount) {
        return cpu_get_icount();
    }
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    ticks = timers_state.cpu_ticks_offset;
    if (timers_state.cpu_ticks_enabled) {
        ticks += cpu_get_real_ticks();
    }

    if (timers_state.cpu_ticks_prev > ticks) {
        /* Note: non increasing ticks may happen if the host uses
           software suspend */
        timers_state.cpu_ticks_offset += timers_state.cpu_ticks_prev - ticks;
        ticks = timers_state.cpu_ticks_prev;
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    }
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    timers_state.cpu_ticks_prev = ticks;
    return ticks;
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}

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static int64_t cpu_get_clock_locked(void)
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{
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    int64_t ticks;
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    ticks = timers_state.cpu_clock_offset;
    if (timers_state.cpu_ticks_enabled) {
        ticks += get_clock();
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    }
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    return ticks;
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}

/* return the host CPU monotonic timer and handle stop/restart */
int64_t cpu_get_clock(void)
{
    int64_t ti;
    unsigned start;

    do {
        start = seqlock_read_begin(&timers_state.vm_clock_seqlock);
        ti = cpu_get_clock_locked();
    } while (seqlock_read_retry(&timers_state.vm_clock_seqlock, start));

    return ti;
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}

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/* enable cpu_get_ticks()
 * Caller must hold BQL which server as mutex for vm_clock_seqlock.
 */
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void cpu_enable_ticks(void)
{
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    /* Here, the really thing protected by seqlock is cpu_clock_offset. */
    seqlock_write_lock(&timers_state.vm_clock_seqlock);
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    if (!timers_state.cpu_ticks_enabled) {
        timers_state.cpu_ticks_offset -= cpu_get_real_ticks();
        timers_state.cpu_clock_offset -= get_clock();
        timers_state.cpu_ticks_enabled = 1;
    }
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    seqlock_write_unlock(&timers_state.vm_clock_seqlock);
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}

/* disable cpu_get_ticks() : the clock is stopped. You must not call
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 * cpu_get_ticks() after that.
 * Caller must hold BQL which server as mutex for vm_clock_seqlock.
 */
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void cpu_disable_ticks(void)
{
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    /* Here, the really thing protected by seqlock is cpu_clock_offset. */
    seqlock_write_lock(&timers_state.vm_clock_seqlock);
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    if (timers_state.cpu_ticks_enabled) {
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        timers_state.cpu_ticks_offset += cpu_get_real_ticks();
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        timers_state.cpu_clock_offset = cpu_get_clock_locked();
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        timers_state.cpu_ticks_enabled = 0;
    }
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    seqlock_write_unlock(&timers_state.vm_clock_seqlock);
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}

/* Correlation between real and virtual time is always going to be
   fairly approximate, so ignore small variation.
   When the guest is idle real and virtual time will be aligned in
   the IO wait loop.  */
#define ICOUNT_WOBBLE (get_ticks_per_sec() / 10)

static void icount_adjust(void)
{
    int64_t cur_time;
    int64_t cur_icount;
    int64_t delta;
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    /* Protected by TimersState mutex.  */
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    static int64_t last_delta;
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    /* If the VM is not running, then do nothing.  */
    if (!runstate_is_running()) {
        return;
    }
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    seqlock_write_lock(&timers_state.vm_clock_seqlock);
    cur_time = cpu_get_clock_locked();
    cur_icount = cpu_get_icount_locked();
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    delta = cur_icount - cur_time;
    /* FIXME: This is a very crude algorithm, somewhat prone to oscillation.  */
    if (delta > 0
        && last_delta + ICOUNT_WOBBLE < delta * 2
        && icount_time_shift > 0) {
        /* The guest is getting too far ahead.  Slow time down.  */
        icount_time_shift--;
    }
    if (delta < 0
        && last_delta - ICOUNT_WOBBLE > delta * 2
        && icount_time_shift < MAX_ICOUNT_SHIFT) {
        /* The guest is getting too far behind.  Speed time up.  */
        icount_time_shift++;
    }
    last_delta = delta;
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    timers_state.qemu_icount_bias = cur_icount
                              - (timers_state.qemu_icount << icount_time_shift);
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    seqlock_write_unlock(&timers_state.vm_clock_seqlock);
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}

static void icount_adjust_rt(void *opaque)
{
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    timer_mod(icount_rt_timer,
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              qemu_clock_get_ms(QEMU_CLOCK_VIRTUAL_RT) + 1000);
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    icount_adjust();
}

static void icount_adjust_vm(void *opaque)
{
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    timer_mod(icount_vm_timer,
                   qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) +
                   get_ticks_per_sec() / 10);
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    icount_adjust();
}

static int64_t qemu_icount_round(int64_t count)
{
    return (count + (1 << icount_time_shift) - 1) >> icount_time_shift;
}

static void icount_warp_rt(void *opaque)
{
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    /* The icount_warp_timer is rescheduled soon after vm_clock_warp_start
     * changes from -1 to another value, so the race here is okay.
     */
    if (atomic_read(&vm_clock_warp_start) == -1) {
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        return;
    }

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    seqlock_write_lock(&timers_state.vm_clock_seqlock);
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    if (runstate_is_running()) {
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        int64_t clock = cpu_get_clock_locked();
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        int64_t warp_delta;

        warp_delta = clock - vm_clock_warp_start;
        if (use_icount == 2) {
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            /*
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             * In adaptive mode, do not let QEMU_CLOCK_VIRTUAL run too
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             * far ahead of real time.
             */
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            int64_t cur_icount = cpu_get_icount_locked();
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            int64_t delta = clock - cur_icount;
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            warp_delta = MIN(warp_delta, delta);
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        }
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        timers_state.qemu_icount_bias += warp_delta;
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    }
    vm_clock_warp_start = -1;
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    seqlock_write_unlock(&timers_state.vm_clock_seqlock);
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    if (qemu_clock_expired(QEMU_CLOCK_VIRTUAL)) {
        qemu_clock_notify(QEMU_CLOCK_VIRTUAL);
    }
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}

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void qtest_clock_warp(int64_t dest)
{
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    int64_t clock = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL);
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    AioContext *aio_context;
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    assert(qtest_enabled());
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    aio_context = qemu_get_aio_context();
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    while (clock < dest) {
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        int64_t deadline = qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL);
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        int64_t warp = qemu_soonest_timeout(dest - clock, deadline);
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        seqlock_write_lock(&timers_state.vm_clock_seqlock);
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        timers_state.qemu_icount_bias += warp;
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        seqlock_write_unlock(&timers_state.vm_clock_seqlock);

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        qemu_clock_run_timers(QEMU_CLOCK_VIRTUAL);
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        timerlist_run_timers(aio_context->tlg.tl[QEMU_CLOCK_VIRTUAL]);
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        clock = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL);
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    }
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    qemu_clock_notify(QEMU_CLOCK_VIRTUAL);
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}

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void qemu_clock_warp(QEMUClockType type)
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{
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    int64_t clock;
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    int64_t deadline;

    /*
     * There are too many global variables to make the "warp" behavior
     * applicable to other clocks.  But a clock argument removes the
     * need for if statements all over the place.
     */
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    if (type != QEMU_CLOCK_VIRTUAL || !use_icount) {
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        return;
    }

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    if (icount_sleep) {
        /*
         * If the CPUs have been sleeping, advance QEMU_CLOCK_VIRTUAL timer now.
         * This ensures that the deadline for the timer is computed correctly
         * below.
         * This also makes sure that the insn counter is synchronized before
         * the CPU starts running, in case the CPU is woken by an event other
         * than the earliest QEMU_CLOCK_VIRTUAL timer.
         */
        icount_warp_rt(NULL);
        timer_del(icount_warp_timer);
    }
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    if (!all_cpu_threads_idle()) {
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        return;
    }

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    if (qtest_enabled()) {
        /* When testing, qtest commands advance icount.  */
	return;
    }

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    /* We want to use the earliest deadline from ALL vm_clocks */
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    clock = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL_RT);
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    deadline = qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL);
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    if (deadline < 0) {
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        static bool notified;
        if (!icount_sleep && !notified) {
            error_report("WARNING: icount sleep disabled and no active timers");
            notified = true;
        }
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        return;
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    }

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    if (deadline > 0) {
        /*
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         * Ensure QEMU_CLOCK_VIRTUAL proceeds even when the virtual CPU goes to
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         * sleep.  Otherwise, the CPU might be waiting for a future timer
         * interrupt to wake it up, but the interrupt never comes because
         * the vCPU isn't running any insns and thus doesn't advance the
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         * QEMU_CLOCK_VIRTUAL.
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         */
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        if (!icount_sleep) {
            /*
             * We never let VCPUs sleep in no sleep icount mode.
             * If there is a pending QEMU_CLOCK_VIRTUAL timer we just advance
             * to the next QEMU_CLOCK_VIRTUAL event and notify it.
             * It is useful when we want a deterministic execution time,
             * isolated from host latencies.
             */
            seqlock_write_lock(&timers_state.vm_clock_seqlock);
            timers_state.qemu_icount_bias += deadline;
            seqlock_write_unlock(&timers_state.vm_clock_seqlock);
            qemu_clock_notify(QEMU_CLOCK_VIRTUAL);
        } else {
            /*
             * We do stop VCPUs and only advance QEMU_CLOCK_VIRTUAL after some
             * "real" time, (related to the time left until the next event) has
             * passed. The QEMU_CLOCK_VIRTUAL_RT clock will do this.
             * This avoids that the warps are visible externally; for example,
             * you will not be sending network packets continuously instead of
             * every 100ms.
             */
            seqlock_write_lock(&timers_state.vm_clock_seqlock);
            if (vm_clock_warp_start == -1 || vm_clock_warp_start > clock) {
                vm_clock_warp_start = clock;
            }
            seqlock_write_unlock(&timers_state.vm_clock_seqlock);
            timer_mod_anticipate(icount_warp_timer, clock + deadline);
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        }
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    } else if (deadline == 0) {
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        qemu_clock_notify(QEMU_CLOCK_VIRTUAL);
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    }
}

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static bool icount_state_needed(void *opaque)
{
    return use_icount;
}

/*
 * This is a subsection for icount migration.
 */
static const VMStateDescription icount_vmstate_timers = {
    .name = "timer/icount",
    .version_id = 1,
    .minimum_version_id = 1,
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    .needed = icount_state_needed,
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    .fields = (VMStateField[]) {
        VMSTATE_INT64(qemu_icount_bias, TimersState),
        VMSTATE_INT64(qemu_icount, TimersState),
        VMSTATE_END_OF_LIST()
    }
};

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static const VMStateDescription vmstate_timers = {
    .name = "timer",
    .version_id = 2,
    .minimum_version_id = 1,
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    .fields = (VMStateField[]) {
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        VMSTATE_INT64(cpu_ticks_offset, TimersState),
        VMSTATE_INT64(dummy, TimersState),
        VMSTATE_INT64_V(cpu_clock_offset, TimersState, 2),
        VMSTATE_END_OF_LIST()
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    },
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    .subsections = (const VMStateDescription*[]) {
        &icount_vmstate_timers,
        NULL
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    }
};

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void cpu_ticks_init(void)
{
    seqlock_init(&timers_state.vm_clock_seqlock, NULL);
    vmstate_register(NULL, 0, &vmstate_timers, &timers_state);
}

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void configure_icount(QemuOpts *opts, Error **errp)
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{
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    const char *option;
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    char *rem_str = NULL;
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    option = qemu_opt_get(opts, "shift");
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    if (!option) {
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        if (qemu_opt_get(opts, "align") != NULL) {
            error_setg(errp, "Please specify shift option when using align");
        }
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        return;
    }
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    icount_sleep = qemu_opt_get_bool(opts, "sleep", true);
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    if (icount_sleep) {
        icount_warp_timer = timer_new_ns(QEMU_CLOCK_VIRTUAL_RT,
                                         icount_warp_rt, NULL);
    }
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    icount_align_option = qemu_opt_get_bool(opts, "align", false);
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    if (icount_align_option && !icount_sleep) {
        error_setg(errp, "align=on and sleep=no are incompatible");
    }
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    if (strcmp(option, "auto") != 0) {
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        errno = 0;
        icount_time_shift = strtol(option, &rem_str, 0);
        if (errno != 0 || *rem_str != '\0' || !strlen(option)) {
            error_setg(errp, "icount: Invalid shift value");
        }
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        use_icount = 1;
        return;
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    } else if (icount_align_option) {
        error_setg(errp, "shift=auto and align=on are incompatible");
548 549
    } else if (!icount_sleep) {
        error_setg(errp, "shift=auto and sleep=no are incompatible");
P
Paolo Bonzini 已提交
550 551 552 553 554 555 556 557 558 559 560 561 562
    }

    use_icount = 2;

    /* 125MIPS seems a reasonable initial guess at the guest speed.
       It will be corrected fairly quickly anyway.  */
    icount_time_shift = 3;

    /* Have both realtime and virtual time triggers for speed adjustment.
       The realtime trigger catches emulated time passing too slowly,
       the virtual time trigger catches emulated time passing too fast.
       Realtime triggers occur even when idle, so use them less frequently
       than VM triggers.  */
563 564
    icount_rt_timer = timer_new_ms(QEMU_CLOCK_VIRTUAL_RT,
                                   icount_adjust_rt, NULL);
565
    timer_mod(icount_rt_timer,
566
                   qemu_clock_get_ms(QEMU_CLOCK_VIRTUAL_RT) + 1000);
567 568 569 570 571
    icount_vm_timer = timer_new_ns(QEMU_CLOCK_VIRTUAL,
                                        icount_adjust_vm, NULL);
    timer_mod(icount_vm_timer,
                   qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) +
                   get_ticks_per_sec() / 10);
P
Paolo Bonzini 已提交
572 573
}

574 575 576 577
/***********************************************************/
void hw_error(const char *fmt, ...)
{
    va_list ap;
578
    CPUState *cpu;
579 580 581 582 583

    va_start(ap, fmt);
    fprintf(stderr, "qemu: hardware error: ");
    vfprintf(stderr, fmt, ap);
    fprintf(stderr, "\n");
A
Andreas Färber 已提交
584
    CPU_FOREACH(cpu) {
585
        fprintf(stderr, "CPU #%d:\n", cpu->cpu_index);
586
        cpu_dump_state(cpu, stderr, fprintf, CPU_DUMP_FPU);
587 588 589 590 591 592 593
    }
    va_end(ap);
    abort();
}

void cpu_synchronize_all_states(void)
{
594
    CPUState *cpu;
595

A
Andreas Färber 已提交
596
    CPU_FOREACH(cpu) {
597
        cpu_synchronize_state(cpu);
598 599 600 601 602
    }
}

void cpu_synchronize_all_post_reset(void)
{
603
    CPUState *cpu;
604

A
Andreas Färber 已提交
605
    CPU_FOREACH(cpu) {
606
        cpu_synchronize_post_reset(cpu);
607 608 609 610 611
    }
}

void cpu_synchronize_all_post_init(void)
{
612
    CPUState *cpu;
613

A
Andreas Färber 已提交
614
    CPU_FOREACH(cpu) {
615
        cpu_synchronize_post_init(cpu);
616 617 618
    }
}

M
Marcelo Tosatti 已提交
619 620 621 622 623 624 625 626 627
void cpu_clean_all_dirty(void)
{
    CPUState *cpu;

    CPU_FOREACH(cpu) {
        cpu_clean_state(cpu);
    }
}

628
static int do_vm_stop(RunState state)
629
{
630 631
    int ret = 0;

632
    if (runstate_is_running()) {
633 634
        cpu_disable_ticks();
        pause_all_vcpus();
635
        runstate_set(state);
636
        vm_state_notify(0, state);
W
Wenchao Xia 已提交
637
        qapi_event_send_stop(&error_abort);
638
    }
639

640 641 642
    bdrv_drain_all();
    ret = bdrv_flush_all();

643
    return ret;
644 645
}

646
static bool cpu_can_run(CPUState *cpu)
647
{
A
Andreas Färber 已提交
648
    if (cpu->stop) {
649
        return false;
650
    }
651
    if (cpu_is_stopped(cpu)) {
652
        return false;
653
    }
654
    return true;
655 656
}

657
static void cpu_handle_guest_debug(CPUState *cpu)
658
{
659
    gdb_set_stop_cpu(cpu);
660
    qemu_system_debug_request();
661
    cpu->stopped = true;
662 663
}

664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702
#ifdef CONFIG_LINUX
static void sigbus_reraise(void)
{
    sigset_t set;
    struct sigaction action;

    memset(&action, 0, sizeof(action));
    action.sa_handler = SIG_DFL;
    if (!sigaction(SIGBUS, &action, NULL)) {
        raise(SIGBUS);
        sigemptyset(&set);
        sigaddset(&set, SIGBUS);
        sigprocmask(SIG_UNBLOCK, &set, NULL);
    }
    perror("Failed to re-raise SIGBUS!\n");
    abort();
}

static void sigbus_handler(int n, struct qemu_signalfd_siginfo *siginfo,
                           void *ctx)
{
    if (kvm_on_sigbus(siginfo->ssi_code,
                      (void *)(intptr_t)siginfo->ssi_addr)) {
        sigbus_reraise();
    }
}

static void qemu_init_sigbus(void)
{
    struct sigaction action;

    memset(&action, 0, sizeof(action));
    action.sa_flags = SA_SIGINFO;
    action.sa_sigaction = (void (*)(int, siginfo_t*, void*))sigbus_handler;
    sigaction(SIGBUS, &action, NULL);

    prctl(PR_MCE_KILL, PR_MCE_KILL_SET, PR_MCE_KILL_EARLY, 0, 0);
}

703
static void qemu_kvm_eat_signals(CPUState *cpu)
704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723
{
    struct timespec ts = { 0, 0 };
    siginfo_t siginfo;
    sigset_t waitset;
    sigset_t chkset;
    int r;

    sigemptyset(&waitset);
    sigaddset(&waitset, SIG_IPI);
    sigaddset(&waitset, SIGBUS);

    do {
        r = sigtimedwait(&waitset, &siginfo, &ts);
        if (r == -1 && !(errno == EAGAIN || errno == EINTR)) {
            perror("sigtimedwait");
            exit(1);
        }

        switch (r) {
        case SIGBUS:
724
            if (kvm_on_sigbus_vcpu(cpu, siginfo.si_code, siginfo.si_addr)) {
725 726 727 728 729 730 731 732 733 734 735 736 737 738 739
                sigbus_reraise();
            }
            break;
        default:
            break;
        }

        r = sigpending(&chkset);
        if (r == -1) {
            perror("sigpending");
            exit(1);
        }
    } while (sigismember(&chkset, SIG_IPI) || sigismember(&chkset, SIGBUS));
}

740 741 742 743 744
#else /* !CONFIG_LINUX */

static void qemu_init_sigbus(void)
{
}
745

746
static void qemu_kvm_eat_signals(CPUState *cpu)
747 748
{
}
749 750
#endif /* !CONFIG_LINUX */

751
#ifndef _WIN32
752 753 754 755
static void dummy_signal(int sig)
{
}

756
static void qemu_kvm_init_cpu_signals(CPUState *cpu)
757 758 759 760 761 762 763 764 765 766 767 768
{
    int r;
    sigset_t set;
    struct sigaction sigact;

    memset(&sigact, 0, sizeof(sigact));
    sigact.sa_handler = dummy_signal;
    sigaction(SIG_IPI, &sigact, NULL);

    pthread_sigmask(SIG_BLOCK, NULL, &set);
    sigdelset(&set, SIG_IPI);
    sigdelset(&set, SIGBUS);
769
    r = kvm_set_signal_mask(cpu, &set);
770 771 772 773 774 775
    if (r) {
        fprintf(stderr, "kvm_set_signal_mask: %s\n", strerror(-r));
        exit(1);
    }
}

776
#else /* _WIN32 */
777
static void qemu_kvm_init_cpu_signals(CPUState *cpu)
778
{
779 780 781
    abort();
}
#endif /* _WIN32 */
782

783
static QemuMutex qemu_global_mutex;
784
static QemuCond qemu_io_proceeded_cond;
785
static unsigned iothread_requesting_mutex;
786 787 788 789 790 791 792 793 794 795

static QemuThread io_thread;

static QemuThread *tcg_cpu_thread;
static QemuCond *tcg_halt_cond;

/* cpu creation */
static QemuCond qemu_cpu_cond;
/* system init */
static QemuCond qemu_pause_cond;
M
Marcelo Tosatti 已提交
796
static QemuCond qemu_work_cond;
797

P
Paolo Bonzini 已提交
798
void qemu_init_cpu_loop(void)
799
{
800
    qemu_init_sigbus();
801 802 803
    qemu_cond_init(&qemu_cpu_cond);
    qemu_cond_init(&qemu_pause_cond);
    qemu_cond_init(&qemu_work_cond);
804
    qemu_cond_init(&qemu_io_proceeded_cond);
805 806
    qemu_mutex_init(&qemu_global_mutex);

J
Jan Kiszka 已提交
807
    qemu_thread_get_self(&io_thread);
808 809
}

810
void run_on_cpu(CPUState *cpu, void (*func)(void *data), void *data)
M
Marcelo Tosatti 已提交
811 812 813
{
    struct qemu_work_item wi;

814
    if (qemu_cpu_is_self(cpu)) {
M
Marcelo Tosatti 已提交
815 816 817 818 819 820
        func(data);
        return;
    }

    wi.func = func;
    wi.data = data;
C
Chegu Vinod 已提交
821
    wi.free = false;
822 823
    if (cpu->queued_work_first == NULL) {
        cpu->queued_work_first = &wi;
824
    } else {
825
        cpu->queued_work_last->next = &wi;
826
    }
827
    cpu->queued_work_last = &wi;
M
Marcelo Tosatti 已提交
828 829 830
    wi.next = NULL;
    wi.done = false;

831
    qemu_cpu_kick(cpu);
M
Marcelo Tosatti 已提交
832
    while (!wi.done) {
833
        CPUState *self_cpu = current_cpu;
M
Marcelo Tosatti 已提交
834 835

        qemu_cond_wait(&qemu_work_cond, &qemu_global_mutex);
836
        current_cpu = self_cpu;
M
Marcelo Tosatti 已提交
837 838 839
    }
}

C
Chegu Vinod 已提交
840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864
void async_run_on_cpu(CPUState *cpu, void (*func)(void *data), void *data)
{
    struct qemu_work_item *wi;

    if (qemu_cpu_is_self(cpu)) {
        func(data);
        return;
    }

    wi = g_malloc0(sizeof(struct qemu_work_item));
    wi->func = func;
    wi->data = data;
    wi->free = true;
    if (cpu->queued_work_first == NULL) {
        cpu->queued_work_first = wi;
    } else {
        cpu->queued_work_last->next = wi;
    }
    cpu->queued_work_last = wi;
    wi->next = NULL;
    wi->done = false;

    qemu_cpu_kick(cpu);
}

865
static void flush_queued_work(CPUState *cpu)
M
Marcelo Tosatti 已提交
866 867 868
{
    struct qemu_work_item *wi;

869
    if (cpu->queued_work_first == NULL) {
M
Marcelo Tosatti 已提交
870
        return;
871
    }
M
Marcelo Tosatti 已提交
872

873 874
    while ((wi = cpu->queued_work_first)) {
        cpu->queued_work_first = wi->next;
M
Marcelo Tosatti 已提交
875 876
        wi->func(wi->data);
        wi->done = true;
C
Chegu Vinod 已提交
877 878 879
        if (wi->free) {
            g_free(wi);
        }
M
Marcelo Tosatti 已提交
880
    }
881
    cpu->queued_work_last = NULL;
M
Marcelo Tosatti 已提交
882 883 884
    qemu_cond_broadcast(&qemu_work_cond);
}

885
static void qemu_wait_io_event_common(CPUState *cpu)
886
{
A
Andreas Färber 已提交
887 888
    if (cpu->stop) {
        cpu->stop = false;
889
        cpu->stopped = true;
890 891
        qemu_cond_signal(&qemu_pause_cond);
    }
892
    flush_queued_work(cpu);
893
    cpu->thread_kicked = false;
894 895
}

896
static void qemu_tcg_wait_io_event(void)
897
{
898
    CPUState *cpu;
899

900
    while (all_cpu_threads_idle()) {
901 902
       /* Start accounting real time to the virtual clock if the CPUs
          are idle.  */
903
        qemu_clock_warp(QEMU_CLOCK_VIRTUAL);
904
        qemu_cond_wait(tcg_halt_cond, &qemu_global_mutex);
905
    }
906

907 908 909
    while (iothread_requesting_mutex) {
        qemu_cond_wait(&qemu_io_proceeded_cond, &qemu_global_mutex);
    }
910

A
Andreas Färber 已提交
911
    CPU_FOREACH(cpu) {
912
        qemu_wait_io_event_common(cpu);
913
    }
914 915
}

916
static void qemu_kvm_wait_io_event(CPUState *cpu)
917
{
918
    while (cpu_thread_is_idle(cpu)) {
A
Andreas Färber 已提交
919
        qemu_cond_wait(cpu->halt_cond, &qemu_global_mutex);
920
    }
921

922
    qemu_kvm_eat_signals(cpu);
923
    qemu_wait_io_event_common(cpu);
924 925
}

926
static void *qemu_kvm_cpu_thread_fn(void *arg)
927
{
928
    CPUState *cpu = arg;
J
Jan Kiszka 已提交
929
    int r;
930

931 932
    rcu_register_thread();

933
    qemu_mutex_lock_iothread();
934
    qemu_thread_get_self(cpu->thread);
A
Andreas Färber 已提交
935
    cpu->thread_id = qemu_get_thread_id();
936
    cpu->can_do_io = 1;
937
    current_cpu = cpu;
938

939
    r = kvm_init_vcpu(cpu);
J
Jan Kiszka 已提交
940 941 942 943
    if (r < 0) {
        fprintf(stderr, "kvm_init_vcpu failed: %s\n", strerror(-r));
        exit(1);
    }
944

945
    qemu_kvm_init_cpu_signals(cpu);
946 947

    /* signal CPU creation */
948
    cpu->created = true;
949 950 951
    qemu_cond_signal(&qemu_cpu_cond);

    while (1) {
952
        if (cpu_can_run(cpu)) {
953
            r = kvm_cpu_exec(cpu);
954
            if (r == EXCP_DEBUG) {
955
                cpu_handle_guest_debug(cpu);
956
            }
957
        }
958
        qemu_kvm_wait_io_event(cpu);
959 960 961 962 963
    }

    return NULL;
}

A
Anthony Liguori 已提交
964 965 966 967 968 969
static void *qemu_dummy_cpu_thread_fn(void *arg)
{
#ifdef _WIN32
    fprintf(stderr, "qtest is not supported under Windows\n");
    exit(1);
#else
970
    CPUState *cpu = arg;
A
Anthony Liguori 已提交
971 972 973
    sigset_t waitset;
    int r;

974 975
    rcu_register_thread();

A
Anthony Liguori 已提交
976
    qemu_mutex_lock_iothread();
977
    qemu_thread_get_self(cpu->thread);
A
Andreas Färber 已提交
978
    cpu->thread_id = qemu_get_thread_id();
979
    cpu->can_do_io = 1;
A
Anthony Liguori 已提交
980 981 982 983 984

    sigemptyset(&waitset);
    sigaddset(&waitset, SIG_IPI);

    /* signal CPU creation */
985
    cpu->created = true;
A
Anthony Liguori 已提交
986 987
    qemu_cond_signal(&qemu_cpu_cond);

988
    current_cpu = cpu;
A
Anthony Liguori 已提交
989
    while (1) {
990
        current_cpu = NULL;
A
Anthony Liguori 已提交
991 992 993 994 995 996 997 998 999 1000
        qemu_mutex_unlock_iothread();
        do {
            int sig;
            r = sigwait(&waitset, &sig);
        } while (r == -1 && (errno == EAGAIN || errno == EINTR));
        if (r == -1) {
            perror("sigwait");
            exit(1);
        }
        qemu_mutex_lock_iothread();
1001
        current_cpu = cpu;
1002
        qemu_wait_io_event_common(cpu);
A
Anthony Liguori 已提交
1003 1004 1005 1006 1007 1008
    }

    return NULL;
#endif
}

J
Jan Kiszka 已提交
1009 1010
static void tcg_exec_all(void);

1011
static void *qemu_tcg_cpu_thread_fn(void *arg)
1012
{
1013
    CPUState *cpu = arg;
1014

1015 1016
    rcu_register_thread();

1017
    qemu_mutex_lock_iothread();
1018
    qemu_thread_get_self(cpu->thread);
1019

1020 1021 1022
    CPU_FOREACH(cpu) {
        cpu->thread_id = qemu_get_thread_id();
        cpu->created = true;
1023
        cpu->can_do_io = 1;
1024
    }
1025 1026
    qemu_cond_signal(&qemu_cpu_cond);

1027
    /* wait for initial kick-off after machine start */
1028
    while (first_cpu->stopped) {
1029
        qemu_cond_wait(tcg_halt_cond, &qemu_global_mutex);
1030 1031

        /* process any pending work */
A
Andreas Färber 已提交
1032
        CPU_FOREACH(cpu) {
1033
            qemu_wait_io_event_common(cpu);
1034
        }
1035
    }
1036

1037
    /* process any pending work */
1038
    atomic_mb_set(&exit_request, 1);
1039

1040
    while (1) {
J
Jan Kiszka 已提交
1041
        tcg_exec_all();
1042 1043

        if (use_icount) {
1044
            int64_t deadline = qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL);
1045 1046

            if (deadline == 0) {
1047
                qemu_clock_notify(QEMU_CLOCK_VIRTUAL);
1048
            }
1049
        }
1050
        qemu_tcg_wait_io_event();
1051 1052 1053 1054 1055
    }

    return NULL;
}

1056
static void qemu_cpu_kick_thread(CPUState *cpu)
P
Paolo Bonzini 已提交
1057 1058 1059 1060
{
#ifndef _WIN32
    int err;

P
Paolo Bonzini 已提交
1061 1062
    if (cpu->thread_kicked) {
        return;
1063
    }
P
Paolo Bonzini 已提交
1064
    cpu->thread_kicked = true;
1065
    err = pthread_kill(cpu->thread->thread, SIG_IPI);
P
Paolo Bonzini 已提交
1066 1067 1068 1069 1070
    if (err) {
        fprintf(stderr, "qemu:%s: %s", __func__, strerror(err));
        exit(1);
    }
#else /* _WIN32 */
P
Paolo Bonzini 已提交
1071 1072 1073
    abort();
#endif
}
1074

P
Paolo Bonzini 已提交
1075 1076 1077 1078 1079 1080 1081 1082 1083 1084
static void qemu_cpu_kick_no_halt(void)
{
    CPUState *cpu;
    /* Ensure whatever caused the exit has reached the CPU threads before
     * writing exit_request.
     */
    atomic_mb_set(&exit_request, 1);
    cpu = atomic_mb_read(&tcg_current_cpu);
    if (cpu) {
        cpu_exit(cpu);
P
Paolo Bonzini 已提交
1085 1086 1087
    }
}

1088
void qemu_cpu_kick(CPUState *cpu)
1089
{
A
Andreas Färber 已提交
1090
    qemu_cond_broadcast(cpu->halt_cond);
P
Paolo Bonzini 已提交
1091 1092 1093 1094 1095
    if (tcg_enabled()) {
        qemu_cpu_kick_no_halt();
    } else {
        qemu_cpu_kick_thread(cpu);
    }
1096 1097
}

1098
void qemu_cpu_kick_self(void)
1099
{
1100
    assert(current_cpu);
1101
    qemu_cpu_kick_thread(current_cpu);
1102 1103
}

1104
bool qemu_cpu_is_self(CPUState *cpu)
1105
{
1106
    return qemu_thread_is_self(cpu->thread);
1107 1108
}

1109
bool qemu_in_vcpu_thread(void)
J
Juan Quintela 已提交
1110
{
1111
    return current_cpu && qemu_cpu_is_self(current_cpu);
J
Juan Quintela 已提交
1112 1113
}

1114 1115 1116 1117 1118 1119 1120
static __thread bool iothread_locked = false;

bool qemu_mutex_iothread_locked(void)
{
    return iothread_locked;
}

1121 1122
void qemu_mutex_lock_iothread(void)
{
1123
    atomic_inc(&iothread_requesting_mutex);
1124 1125 1126 1127
    /* In the simple case there is no need to bump the VCPU thread out of
     * TCG code execution.
     */
    if (!tcg_enabled() || qemu_in_vcpu_thread() ||
1128
        !first_cpu || !first_cpu->created) {
1129
        qemu_mutex_lock(&qemu_global_mutex);
1130
        atomic_dec(&iothread_requesting_mutex);
1131 1132
    } else {
        if (qemu_mutex_trylock(&qemu_global_mutex)) {
P
Paolo Bonzini 已提交
1133
            qemu_cpu_kick_no_halt();
1134 1135
            qemu_mutex_lock(&qemu_global_mutex);
        }
1136
        atomic_dec(&iothread_requesting_mutex);
1137
        qemu_cond_broadcast(&qemu_io_proceeded_cond);
1138
    }
1139
    iothread_locked = true;
1140 1141 1142 1143
}

void qemu_mutex_unlock_iothread(void)
{
1144
    iothread_locked = false;
1145 1146 1147 1148 1149
    qemu_mutex_unlock(&qemu_global_mutex);
}

static int all_vcpus_paused(void)
{
A
Andreas Färber 已提交
1150
    CPUState *cpu;
1151

A
Andreas Färber 已提交
1152
    CPU_FOREACH(cpu) {
1153
        if (!cpu->stopped) {
1154
            return 0;
1155
        }
1156 1157 1158 1159 1160 1161 1162
    }

    return 1;
}

void pause_all_vcpus(void)
{
A
Andreas Färber 已提交
1163
    CPUState *cpu;
1164

1165
    qemu_clock_enable(QEMU_CLOCK_VIRTUAL, false);
A
Andreas Färber 已提交
1166
    CPU_FOREACH(cpu) {
1167 1168
        cpu->stop = true;
        qemu_cpu_kick(cpu);
1169 1170
    }

J
Juan Quintela 已提交
1171
    if (qemu_in_vcpu_thread()) {
1172 1173
        cpu_stop_current();
        if (!kvm_enabled()) {
A
Andreas Färber 已提交
1174
            CPU_FOREACH(cpu) {
1175 1176
                cpu->stop = false;
                cpu->stopped = true;
1177 1178 1179 1180 1181
            }
            return;
        }
    }

1182
    while (!all_vcpus_paused()) {
1183
        qemu_cond_wait(&qemu_pause_cond, &qemu_global_mutex);
A
Andreas Färber 已提交
1184
        CPU_FOREACH(cpu) {
1185
            qemu_cpu_kick(cpu);
1186 1187 1188 1189
        }
    }
}

1190 1191 1192 1193 1194 1195 1196
void cpu_resume(CPUState *cpu)
{
    cpu->stop = false;
    cpu->stopped = false;
    qemu_cpu_kick(cpu);
}

1197 1198
void resume_all_vcpus(void)
{
A
Andreas Färber 已提交
1199
    CPUState *cpu;
1200

1201
    qemu_clock_enable(QEMU_CLOCK_VIRTUAL, true);
A
Andreas Färber 已提交
1202
    CPU_FOREACH(cpu) {
1203
        cpu_resume(cpu);
1204 1205 1206
    }
}

1207 1208 1209
/* For temporary buffers for forming a name */
#define VCPU_THREAD_NAME_SIZE 16

1210
static void qemu_tcg_init_vcpu(CPUState *cpu)
1211
{
1212 1213
    char thread_name[VCPU_THREAD_NAME_SIZE];

1214 1215
    tcg_cpu_address_space_init(cpu, cpu->as);

1216 1217
    /* share a single thread for all cpus with TCG */
    if (!tcg_cpu_thread) {
1218
        cpu->thread = g_malloc0(sizeof(QemuThread));
A
Andreas Färber 已提交
1219 1220 1221
        cpu->halt_cond = g_malloc0(sizeof(QemuCond));
        qemu_cond_init(cpu->halt_cond);
        tcg_halt_cond = cpu->halt_cond;
1222 1223 1224 1225
        snprintf(thread_name, VCPU_THREAD_NAME_SIZE, "CPU %d/TCG",
                 cpu->cpu_index);
        qemu_thread_create(cpu->thread, thread_name, qemu_tcg_cpu_thread_fn,
                           cpu, QEMU_THREAD_JOINABLE);
P
Paolo Bonzini 已提交
1226
#ifdef _WIN32
1227
        cpu->hThread = qemu_thread_get_handle(cpu->thread);
P
Paolo Bonzini 已提交
1228
#endif
1229
        while (!cpu->created) {
1230
            qemu_cond_wait(&qemu_cpu_cond, &qemu_global_mutex);
1231
        }
1232
        tcg_cpu_thread = cpu->thread;
1233
    } else {
1234
        cpu->thread = tcg_cpu_thread;
A
Andreas Färber 已提交
1235
        cpu->halt_cond = tcg_halt_cond;
1236 1237 1238
    }
}

1239
static void qemu_kvm_start_vcpu(CPUState *cpu)
1240
{
1241 1242
    char thread_name[VCPU_THREAD_NAME_SIZE];

1243
    cpu->thread = g_malloc0(sizeof(QemuThread));
A
Andreas Färber 已提交
1244 1245
    cpu->halt_cond = g_malloc0(sizeof(QemuCond));
    qemu_cond_init(cpu->halt_cond);
1246 1247 1248 1249
    snprintf(thread_name, VCPU_THREAD_NAME_SIZE, "CPU %d/KVM",
             cpu->cpu_index);
    qemu_thread_create(cpu->thread, thread_name, qemu_kvm_cpu_thread_fn,
                       cpu, QEMU_THREAD_JOINABLE);
1250
    while (!cpu->created) {
1251
        qemu_cond_wait(&qemu_cpu_cond, &qemu_global_mutex);
1252
    }
1253 1254
}

1255
static void qemu_dummy_start_vcpu(CPUState *cpu)
A
Anthony Liguori 已提交
1256
{
1257 1258
    char thread_name[VCPU_THREAD_NAME_SIZE];

1259
    cpu->thread = g_malloc0(sizeof(QemuThread));
A
Andreas Färber 已提交
1260 1261
    cpu->halt_cond = g_malloc0(sizeof(QemuCond));
    qemu_cond_init(cpu->halt_cond);
1262 1263 1264
    snprintf(thread_name, VCPU_THREAD_NAME_SIZE, "CPU %d/DUMMY",
             cpu->cpu_index);
    qemu_thread_create(cpu->thread, thread_name, qemu_dummy_cpu_thread_fn, cpu,
A
Anthony Liguori 已提交
1265
                       QEMU_THREAD_JOINABLE);
1266
    while (!cpu->created) {
A
Anthony Liguori 已提交
1267 1268 1269 1270
        qemu_cond_wait(&qemu_cpu_cond, &qemu_global_mutex);
    }
}

1271
void qemu_init_vcpu(CPUState *cpu)
1272
{
1273 1274
    cpu->nr_cores = smp_cores;
    cpu->nr_threads = smp_threads;
1275
    cpu->stopped = true;
1276
    if (kvm_enabled()) {
1277
        qemu_kvm_start_vcpu(cpu);
A
Anthony Liguori 已提交
1278
    } else if (tcg_enabled()) {
1279
        qemu_tcg_init_vcpu(cpu);
A
Anthony Liguori 已提交
1280
    } else {
1281
        qemu_dummy_start_vcpu(cpu);
1282
    }
1283 1284
}

1285
void cpu_stop_current(void)
1286
{
1287 1288 1289 1290
    if (current_cpu) {
        current_cpu->stop = false;
        current_cpu->stopped = true;
        cpu_exit(current_cpu);
1291
        qemu_cond_signal(&qemu_pause_cond);
1292
    }
1293 1294
}

1295
int vm_stop(RunState state)
1296
{
J
Juan Quintela 已提交
1297
    if (qemu_in_vcpu_thread()) {
1298
        qemu_system_vmstop_request_prepare();
1299
        qemu_system_vmstop_request(state);
1300 1301 1302 1303
        /*
         * FIXME: should not return to device code in case
         * vm_stop() has been requested.
         */
1304
        cpu_stop_current();
1305
        return 0;
1306
    }
1307 1308

    return do_vm_stop(state);
1309 1310
}

1311 1312
/* does a state transition even if the VM is already stopped,
   current state is forgotten forever */
1313
int vm_stop_force_state(RunState state)
1314 1315
{
    if (runstate_is_running()) {
1316
        return vm_stop(state);
1317 1318
    } else {
        runstate_set(state);
1319 1320 1321
        /* Make sure to return an error if the flush in a previous vm_stop()
         * failed. */
        return bdrv_flush_all();
1322 1323 1324
    }
}

1325
static int tcg_cpu_exec(CPUState *cpu)
1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336
{
    int ret;
#ifdef CONFIG_PROFILER
    int64_t ti;
#endif

#ifdef CONFIG_PROFILER
    ti = profile_getclock();
#endif
    if (use_icount) {
        int64_t count;
1337
        int64_t deadline;
1338
        int decr;
1339 1340
        timers_state.qemu_icount -= (cpu->icount_decr.u16.low
                                    + cpu->icount_extra);
1341
        cpu->icount_decr.u16.low = 0;
1342
        cpu->icount_extra = 0;
1343
        deadline = qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL);
1344 1345

        /* Maintain prior (possibly buggy) behaviour where if no deadline
1346
         * was set (as there is no QEMU_CLOCK_VIRTUAL timer) or it is more than
1347 1348 1349 1350 1351 1352 1353 1354
         * INT32_MAX nanoseconds ahead, we still use INT32_MAX
         * nanoseconds.
         */
        if ((deadline < 0) || (deadline > INT32_MAX)) {
            deadline = INT32_MAX;
        }

        count = qemu_icount_round(deadline);
1355
        timers_state.qemu_icount += count;
1356 1357
        decr = (count > 0xffff) ? 0xffff : count;
        count -= decr;
1358
        cpu->icount_decr.u16.low = decr;
1359
        cpu->icount_extra = count;
1360
    }
1361
    ret = cpu_exec(cpu);
1362
#ifdef CONFIG_PROFILER
1363
    tcg_time += profile_getclock() - ti;
1364 1365 1366 1367
#endif
    if (use_icount) {
        /* Fold pending instructions back into the
           instruction counter, and clear the interrupt flag.  */
1368 1369
        timers_state.qemu_icount -= (cpu->icount_decr.u16.low
                        + cpu->icount_extra);
1370
        cpu->icount_decr.u32 = 0;
1371
        cpu->icount_extra = 0;
1372 1373 1374 1375
    }
    return ret;
}

J
Jan Kiszka 已提交
1376
static void tcg_exec_all(void)
1377
{
1378 1379
    int r;

1380 1381
    /* Account partial waits to QEMU_CLOCK_VIRTUAL.  */
    qemu_clock_warp(QEMU_CLOCK_VIRTUAL);
1382

1383
    if (next_cpu == NULL) {
1384
        next_cpu = first_cpu;
1385
    }
A
Andreas Färber 已提交
1386
    for (; next_cpu != NULL && !exit_request; next_cpu = CPU_NEXT(next_cpu)) {
1387
        CPUState *cpu = next_cpu;
1388

1389
        qemu_clock_enable(QEMU_CLOCK_VIRTUAL,
1390
                          (cpu->singlestep_enabled & SSTEP_NOTIMER) == 0);
1391

1392
        if (cpu_can_run(cpu)) {
1393
            r = tcg_cpu_exec(cpu);
1394
            if (r == EXCP_DEBUG) {
1395
                cpu_handle_guest_debug(cpu);
1396 1397
                break;
            }
1398
        } else if (cpu->stop || cpu->stopped) {
1399 1400 1401
            break;
        }
    }
1402 1403 1404

    /* Pairs with smp_wmb in qemu_cpu_kick.  */
    atomic_mb_set(&exit_request, 0);
1405 1406
}

1407
void list_cpus(FILE *f, fprintf_function cpu_fprintf, const char *optarg)
1408 1409
{
    /* XXX: implement xxx_cpu_list for targets that still miss it */
P
Peter Maydell 已提交
1410 1411
#if defined(cpu_list)
    cpu_list(f, cpu_fprintf);
1412 1413
#endif
}
L
Luiz Capitulino 已提交
1414 1415 1416 1417

CpuInfoList *qmp_query_cpus(Error **errp)
{
    CpuInfoList *head = NULL, *cur_item = NULL;
1418
    CPUState *cpu;
L
Luiz Capitulino 已提交
1419

A
Andreas Färber 已提交
1420
    CPU_FOREACH(cpu) {
L
Luiz Capitulino 已提交
1421
        CpuInfoList *info;
1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433
#if defined(TARGET_I386)
        X86CPU *x86_cpu = X86_CPU(cpu);
        CPUX86State *env = &x86_cpu->env;
#elif defined(TARGET_PPC)
        PowerPCCPU *ppc_cpu = POWERPC_CPU(cpu);
        CPUPPCState *env = &ppc_cpu->env;
#elif defined(TARGET_SPARC)
        SPARCCPU *sparc_cpu = SPARC_CPU(cpu);
        CPUSPARCState *env = &sparc_cpu->env;
#elif defined(TARGET_MIPS)
        MIPSCPU *mips_cpu = MIPS_CPU(cpu);
        CPUMIPSState *env = &mips_cpu->env;
1434 1435 1436
#elif defined(TARGET_TRICORE)
        TriCoreCPU *tricore_cpu = TRICORE_CPU(cpu);
        CPUTriCoreState *env = &tricore_cpu->env;
1437
#endif
L
Luiz Capitulino 已提交
1438

1439
        cpu_synchronize_state(cpu);
L
Luiz Capitulino 已提交
1440 1441 1442

        info = g_malloc0(sizeof(*info));
        info->value = g_malloc0(sizeof(*info->value));
1443
        info->value->CPU = cpu->cpu_index;
1444
        info->value->current = (cpu == first_cpu);
1445
        info->value->halted = cpu->halted;
1446
        info->value->qom_path = object_get_canonical_path(OBJECT(cpu));
A
Andreas Färber 已提交
1447
        info->value->thread_id = cpu->thread_id;
L
Luiz Capitulino 已提交
1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461
#if defined(TARGET_I386)
        info->value->has_pc = true;
        info->value->pc = env->eip + env->segs[R_CS].base;
#elif defined(TARGET_PPC)
        info->value->has_nip = true;
        info->value->nip = env->nip;
#elif defined(TARGET_SPARC)
        info->value->has_pc = true;
        info->value->pc = env->pc;
        info->value->has_npc = true;
        info->value->npc = env->npc;
#elif defined(TARGET_MIPS)
        info->value->has_PC = true;
        info->value->PC = env->active_tc.PC;
1462 1463 1464
#elif defined(TARGET_TRICORE)
        info->value->has_PC = true;
        info->value->PC = env->PC;
L
Luiz Capitulino 已提交
1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477
#endif

        /* XXX: waiting for the qapi to support GSList */
        if (!cur_item) {
            head = cur_item = info;
        } else {
            cur_item->next = info;
            cur_item = info;
        }
    }

    return head;
}
L
Luiz Capitulino 已提交
1478 1479 1480 1481 1482 1483

void qmp_memsave(int64_t addr, int64_t size, const char *filename,
                 bool has_cpu, int64_t cpu_index, Error **errp)
{
    FILE *f;
    uint32_t l;
1484
    CPUState *cpu;
L
Luiz Capitulino 已提交
1485
    uint8_t buf[1024];
1486
    int64_t orig_addr = addr, orig_size = size;
L
Luiz Capitulino 已提交
1487 1488 1489 1490 1491

    if (!has_cpu) {
        cpu_index = 0;
    }

1492 1493
    cpu = qemu_get_cpu(cpu_index);
    if (cpu == NULL) {
1494 1495
        error_setg(errp, QERR_INVALID_PARAMETER_VALUE, "cpu-index",
                   "a CPU number");
L
Luiz Capitulino 已提交
1496 1497 1498 1499 1500
        return;
    }

    f = fopen(filename, "wb");
    if (!f) {
1501
        error_setg_file_open(errp, errno, filename);
L
Luiz Capitulino 已提交
1502 1503 1504 1505 1506 1507 1508
        return;
    }

    while (size != 0) {
        l = sizeof(buf);
        if (l > size)
            l = size;
1509
        if (cpu_memory_rw_debug(cpu, addr, buf, l, 0) != 0) {
1510 1511
            error_setg(errp, "Invalid addr 0x%016" PRIx64 "/size %" PRId64
                             " specified", orig_addr, orig_size);
1512 1513
            goto exit;
        }
L
Luiz Capitulino 已提交
1514
        if (fwrite(buf, 1, l, f) != l) {
1515
            error_setg(errp, QERR_IO_ERROR);
L
Luiz Capitulino 已提交
1516 1517 1518 1519 1520 1521 1522 1523 1524
            goto exit;
        }
        addr += l;
        size -= l;
    }

exit:
    fclose(f);
}
L
Luiz Capitulino 已提交
1525 1526 1527 1528 1529 1530 1531 1532 1533 1534

void qmp_pmemsave(int64_t addr, int64_t size, const char *filename,
                  Error **errp)
{
    FILE *f;
    uint32_t l;
    uint8_t buf[1024];

    f = fopen(filename, "wb");
    if (!f) {
1535
        error_setg_file_open(errp, errno, filename);
L
Luiz Capitulino 已提交
1536 1537 1538 1539 1540 1541 1542
        return;
    }

    while (size != 0) {
        l = sizeof(buf);
        if (l > size)
            l = size;
1543
        cpu_physical_memory_read(addr, buf, l);
L
Luiz Capitulino 已提交
1544
        if (fwrite(buf, 1, l, f) != l) {
1545
            error_setg(errp, QERR_IO_ERROR);
L
Luiz Capitulino 已提交
1546 1547 1548 1549 1550 1551 1552 1553 1554
            goto exit;
        }
        addr += l;
        size -= l;
    }

exit:
    fclose(f);
}
L
Luiz Capitulino 已提交
1555 1556 1557 1558

void qmp_inject_nmi(Error **errp)
{
#if defined(TARGET_I386)
1559 1560
    CPUState *cs;

A
Andreas Färber 已提交
1561
    CPU_FOREACH(cs) {
1562
        X86CPU *cpu = X86_CPU(cs);
L
Luiz Capitulino 已提交
1563

1564
        if (!cpu->apic_state) {
1565
            cpu_interrupt(cs, CPU_INTERRUPT_NMI);
1566
        } else {
1567
            apic_deliver_nmi(cpu->apic_state);
1568
        }
L
Luiz Capitulino 已提交
1569 1570
    }
#else
1571
    nmi_monitor_handle(monitor_get_cpu_index(), errp);
L
Luiz Capitulino 已提交
1572 1573
#endif
}
1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590

void dump_drift_info(FILE *f, fprintf_function cpu_fprintf)
{
    if (!use_icount) {
        return;
    }

    cpu_fprintf(f, "Host - Guest clock  %"PRIi64" ms\n",
                (cpu_get_clock() - cpu_get_icount())/SCALE_MS);
    if (icount_align_option) {
        cpu_fprintf(f, "Max guest delay     %"PRIi64" ms\n", -max_delay/SCALE_MS);
        cpu_fprintf(f, "Max guest advance   %"PRIi64" ms\n", max_advance/SCALE_MS);
    } else {
        cpu_fprintf(f, "Max guest delay     NA\n");
        cpu_fprintf(f, "Max guest advance   NA\n");
    }
}