savevm.c 41.4 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.
 */
#include <unistd.h>
#include <fcntl.h>
#include <signal.h>
#include <time.h>
#include <errno.h>
#include <sys/time.h>
#include <zlib.h>

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

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#ifndef _WIN32
#include <sys/times.h>
#include <sys/wait.h>
#include <termios.h>
#include <sys/mman.h>
#include <sys/ioctl.h>
#include <sys/resource.h>
#include <sys/socket.h>
#include <netinet/in.h>
#include <net/if.h>
#if defined(__NetBSD__)
#include <net/if_tap.h>
#endif
#ifdef __linux__
#include <linux/if_tun.h>
#endif
#include <arpa/inet.h>
#include <dirent.h>
#include <netdb.h>
#include <sys/select.h>
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#ifdef CONFIG_BSD
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#include <sys/stat.h>
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#if defined(__FreeBSD__) || defined(__DragonFly__)
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#include <libutil.h>
#else
#include <util.h>
#endif
#elif defined (__GLIBC__) && defined (__FreeBSD_kernel__)
#include <freebsd/stdlib.h>
#else
#ifdef __linux__
#include <pty.h>
#include <malloc.h>
#include <linux/rtc.h>
#endif
#endif
#endif

#ifdef _WIN32
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#include <windows.h>
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#include <malloc.h>
#include <sys/timeb.h>
#include <mmsystem.h>
#define getopt_long_only getopt_long
#define memalign(align, size) malloc(size)
#endif

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#include "qemu-common.h"
#include "hw/hw.h"
#include "net.h"
#include "monitor.h"
#include "sysemu.h"
#include "qemu-timer.h"
#include "qemu-char.h"
#include "block.h"
#include "audio/audio.h"
#include "migration.h"
#include "qemu_socket.h"

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/* point to the block driver where the snapshots are managed */
static BlockDriverState *bs_snapshots;

#define SELF_ANNOUNCE_ROUNDS 5
#define ETH_P_EXPERIMENTAL 0x01F1 /* just a number */
//#define ETH_P_EXPERIMENTAL 0x0012 /* make it the size of the packet */
#define EXPERIMENTAL_MAGIC 0xf1f23f4f

static int announce_self_create(uint8_t *buf, 
				uint8_t *mac_addr)
{
    uint32_t magic = EXPERIMENTAL_MAGIC;
    uint16_t proto = htons(ETH_P_EXPERIMENTAL);

    /* FIXME: should we send a different packet (arp/rarp/ping)? */

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    memset(buf, 0, 64);
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    memset(buf, 0xff, 6);         /* h_dst */
    memcpy(buf + 6, mac_addr, 6); /* h_src */
    memcpy(buf + 12, &proto, 2);  /* h_proto */
    memcpy(buf + 14, &magic, 4);  /* magic */

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    return 64; /* len */
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}

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static void qemu_announce_self_once(void *opaque)
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{
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    int i, len;
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    VLANState *vlan;
    VLANClientState *vc;
    uint8_t buf[256];
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    static int count = SELF_ANNOUNCE_ROUNDS;
    QEMUTimer *timer = *(QEMUTimer **)opaque;
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    for (i = 0; i < MAX_NICS; i++) {
        if (!nd_table[i].used)
            continue;
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        len = announce_self_create(buf, nd_table[i].macaddr);
        vlan = nd_table[i].vlan;
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	for(vc = vlan->first_client; vc != NULL; vc = vc->next) {
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            vc->receive(vc, buf, len);
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        }
    }
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    if (count--) {
	    qemu_mod_timer(timer, qemu_get_clock(rt_clock) + 100);
    } else {
	    qemu_del_timer(timer);
	    qemu_free_timer(timer);
    }
}

void qemu_announce_self(void)
{
	static QEMUTimer *timer;
	timer = qemu_new_timer(rt_clock, qemu_announce_self_once, &timer);
	qemu_announce_self_once(&timer);
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}

/***********************************************************/
/* savevm/loadvm support */

#define IO_BUF_SIZE 32768

struct QEMUFile {
    QEMUFilePutBufferFunc *put_buffer;
    QEMUFileGetBufferFunc *get_buffer;
    QEMUFileCloseFunc *close;
    QEMUFileRateLimit *rate_limit;
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    QEMUFileSetRateLimit *set_rate_limit;
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    void *opaque;
    int is_write;

    int64_t buf_offset; /* start of buffer when writing, end of buffer
                           when reading */
    int buf_index;
    int buf_size; /* 0 when writing */
    uint8_t buf[IO_BUF_SIZE];

    int has_error;
};

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typedef struct QEMUFileStdio
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{
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    FILE *stdio_file;
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    QEMUFile *file;
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} QEMUFileStdio;
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typedef struct QEMUFileSocket
{
    int fd;
    QEMUFile *file;
} QEMUFileSocket;

static int socket_get_buffer(void *opaque, uint8_t *buf, int64_t pos, int size)
{
    QEMUFileSocket *s = opaque;
    ssize_t len;

    do {
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        len = recv(s->fd, (void *)buf, size, 0);
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    } while (len == -1 && socket_error() == EINTR);

    if (len == -1)
        len = -socket_error();

    return len;
}

static int socket_close(void *opaque)
{
    QEMUFileSocket *s = opaque;
    qemu_free(s);
    return 0;
}

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static int stdio_put_buffer(void *opaque, const uint8_t *buf, int64_t pos, int size)
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{
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    QEMUFileStdio *s = opaque;
    return fwrite(buf, 1, size, s->stdio_file);
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}

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static int stdio_get_buffer(void *opaque, uint8_t *buf, int64_t pos, int size)
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{
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    QEMUFileStdio *s = opaque;
    FILE *fp = s->stdio_file;
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    int bytes;

    do {
        clearerr(fp);
        bytes = fread(buf, 1, size, fp);
    } while ((bytes == 0) && ferror(fp) && (errno == EINTR));
    return bytes;
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}

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static int stdio_pclose(void *opaque)
{
    QEMUFileStdio *s = opaque;
    pclose(s->stdio_file);
    qemu_free(s);
    return 0;
}

static int stdio_fclose(void *opaque)
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{
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    QEMUFileStdio *s = opaque;
    fclose(s->stdio_file);
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    qemu_free(s);
    return 0;
}

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QEMUFile *qemu_popen(FILE *stdio_file, const char *mode)
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{
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    QEMUFileStdio *s;
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    if (stdio_file == NULL || mode == NULL || (mode[0] != 'r' && mode[0] != 'w') || mode[1] != 0) {
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        fprintf(stderr, "qemu_popen: Argument validity check failed\n");
        return NULL;
    }

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    s = qemu_mallocz(sizeof(QEMUFileStdio));
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    s->stdio_file = stdio_file;
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    if(mode[0] == 'r') {
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        s->file = qemu_fopen_ops(s, NULL, stdio_get_buffer, stdio_pclose, NULL, NULL);
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    } else {
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        s->file = qemu_fopen_ops(s, stdio_put_buffer, NULL, stdio_pclose, NULL, NULL);
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    }
    return s->file;
}

QEMUFile *qemu_popen_cmd(const char *command, const char *mode)
{
    FILE *popen_file;

    popen_file = popen(command, mode);
    if(popen_file == NULL) {
        return NULL;
    }

    return qemu_popen(popen_file, mode);
}

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int qemu_stdio_fd(QEMUFile *f)
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{
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    QEMUFileStdio *p;
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    int fd;

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    p = (QEMUFileStdio *)f->opaque;
    fd = fileno(p->stdio_file);
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    return fd;
}

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QEMUFile *qemu_fdopen(int fd, const char *mode)
{
    QEMUFileStdio *s;

    if (mode == NULL ||
	(mode[0] != 'r' && mode[0] != 'w') ||
	mode[1] != 'b' || mode[2] != 0) {
        fprintf(stderr, "qemu_fdopen: Argument validity check failed\n");
        return NULL;
    }

    s = qemu_mallocz(sizeof(QEMUFileStdio));
    s->stdio_file = fdopen(fd, mode);
    if (!s->stdio_file)
        goto fail;

    if(mode[0] == 'r') {
        s->file = qemu_fopen_ops(s, NULL, stdio_get_buffer, stdio_fclose, NULL, NULL);
    } else {
        s->file = qemu_fopen_ops(s, stdio_put_buffer, NULL, stdio_fclose, NULL, NULL);
    }
    return s->file;

fail:
    qemu_free(s);
    return NULL;
}

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QEMUFile *qemu_fopen_socket(int fd)
{
    QEMUFileSocket *s = qemu_mallocz(sizeof(QEMUFileSocket));

    s->fd = fd;
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    s->file = qemu_fopen_ops(s, NULL, socket_get_buffer, socket_close, NULL, NULL);
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    return s->file;
}

static int file_put_buffer(void *opaque, const uint8_t *buf,
                            int64_t pos, int size)
{
    QEMUFileStdio *s = opaque;
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    fseek(s->stdio_file, pos, SEEK_SET);
    fwrite(buf, 1, size, s->stdio_file);
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    return size;
}

static int file_get_buffer(void *opaque, uint8_t *buf, int64_t pos, int size)
{
    QEMUFileStdio *s = opaque;
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    fseek(s->stdio_file, pos, SEEK_SET);
    return fread(buf, 1, size, s->stdio_file);
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}

QEMUFile *qemu_fopen(const char *filename, const char *mode)
{
    QEMUFileStdio *s;

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    if (mode == NULL ||
	(mode[0] != 'r' && mode[0] != 'w') ||
	mode[1] != 'b' || mode[2] != 0) {
        fprintf(stderr, "qemu_fdopen: Argument validity check failed\n");
        return NULL;
    }

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    s = qemu_mallocz(sizeof(QEMUFileStdio));

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    s->stdio_file = fopen(filename, mode);
    if (!s->stdio_file)
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        goto fail;

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    if(mode[0] == 'w') {
        s->file = qemu_fopen_ops(s, file_put_buffer, NULL, stdio_fclose, NULL, NULL);
    } else {
        s->file = qemu_fopen_ops(s, NULL, file_get_buffer, stdio_fclose, NULL, NULL);
    }
    return s->file;
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fail:
    qemu_free(s);
    return NULL;
}

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static int block_put_buffer(void *opaque, const uint8_t *buf,
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                           int64_t pos, int size)
{
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    bdrv_save_vmstate(opaque, buf, pos, size);
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    return size;
}

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static int block_get_buffer(void *opaque, uint8_t *buf, int64_t pos, int size)
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{
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    return bdrv_load_vmstate(opaque, buf, pos, size);
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}

static int bdrv_fclose(void *opaque)
{
    return 0;
}

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static QEMUFile *qemu_fopen_bdrv(BlockDriverState *bs, int is_writable)
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{
    if (is_writable)
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        return qemu_fopen_ops(bs, block_put_buffer, NULL, bdrv_fclose, NULL, NULL);
    return qemu_fopen_ops(bs, NULL, block_get_buffer, bdrv_fclose, NULL, NULL);
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}

QEMUFile *qemu_fopen_ops(void *opaque, QEMUFilePutBufferFunc *put_buffer,
                         QEMUFileGetBufferFunc *get_buffer,
                         QEMUFileCloseFunc *close,
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                         QEMUFileRateLimit *rate_limit,
                         QEMUFileSetRateLimit *set_rate_limit)
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{
    QEMUFile *f;

    f = qemu_mallocz(sizeof(QEMUFile));

    f->opaque = opaque;
    f->put_buffer = put_buffer;
    f->get_buffer = get_buffer;
    f->close = close;
    f->rate_limit = rate_limit;
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    f->set_rate_limit = set_rate_limit;
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    f->is_write = 0;

    return f;
}

int qemu_file_has_error(QEMUFile *f)
{
    return f->has_error;
}

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void qemu_file_set_error(QEMUFile *f)
{
    f->has_error = 1;
}

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void qemu_fflush(QEMUFile *f)
{
    if (!f->put_buffer)
        return;

    if (f->is_write && f->buf_index > 0) {
        int len;

        len = f->put_buffer(f->opaque, f->buf, f->buf_offset, f->buf_index);
        if (len > 0)
            f->buf_offset += f->buf_index;
        else
            f->has_error = 1;
        f->buf_index = 0;
    }
}

static void qemu_fill_buffer(QEMUFile *f)
{
    int len;

    if (!f->get_buffer)
        return;

    if (f->is_write)
        abort();

    len = f->get_buffer(f->opaque, f->buf, f->buf_offset, IO_BUF_SIZE);
    if (len > 0) {
        f->buf_index = 0;
        f->buf_size = len;
        f->buf_offset += len;
    } else if (len != -EAGAIN)
        f->has_error = 1;
}

int qemu_fclose(QEMUFile *f)
{
    int ret = 0;
    qemu_fflush(f);
    if (f->close)
        ret = f->close(f->opaque);
    qemu_free(f);
    return ret;
}

void qemu_file_put_notify(QEMUFile *f)
{
    f->put_buffer(f->opaque, NULL, 0, 0);
}

void qemu_put_buffer(QEMUFile *f, const uint8_t *buf, int size)
{
    int l;

    if (!f->has_error && f->is_write == 0 && f->buf_index > 0) {
        fprintf(stderr,
                "Attempted to write to buffer while read buffer is not empty\n");
        abort();
    }

    while (!f->has_error && size > 0) {
        l = IO_BUF_SIZE - f->buf_index;
        if (l > size)
            l = size;
        memcpy(f->buf + f->buf_index, buf, l);
        f->is_write = 1;
        f->buf_index += l;
        buf += l;
        size -= l;
        if (f->buf_index >= IO_BUF_SIZE)
            qemu_fflush(f);
    }
}

void qemu_put_byte(QEMUFile *f, int v)
{
    if (!f->has_error && f->is_write == 0 && f->buf_index > 0) {
        fprintf(stderr,
                "Attempted to write to buffer while read buffer is not empty\n");
        abort();
    }

    f->buf[f->buf_index++] = v;
    f->is_write = 1;
    if (f->buf_index >= IO_BUF_SIZE)
        qemu_fflush(f);
}

int qemu_get_buffer(QEMUFile *f, uint8_t *buf, int size1)
{
    int size, l;

    if (f->is_write)
        abort();

    size = size1;
    while (size > 0) {
        l = f->buf_size - f->buf_index;
        if (l == 0) {
            qemu_fill_buffer(f);
            l = f->buf_size - f->buf_index;
            if (l == 0)
                break;
        }
        if (l > size)
            l = size;
        memcpy(buf, f->buf + f->buf_index, l);
        f->buf_index += l;
        buf += l;
        size -= l;
    }
    return size1 - size;
}

int qemu_get_byte(QEMUFile *f)
{
    if (f->is_write)
        abort();

    if (f->buf_index >= f->buf_size) {
        qemu_fill_buffer(f);
        if (f->buf_index >= f->buf_size)
            return 0;
    }
    return f->buf[f->buf_index++];
}

int64_t qemu_ftell(QEMUFile *f)
{
    return f->buf_offset - f->buf_size + f->buf_index;
}

int64_t qemu_fseek(QEMUFile *f, int64_t pos, int whence)
{
    if (whence == SEEK_SET) {
        /* nothing to do */
    } else if (whence == SEEK_CUR) {
        pos += qemu_ftell(f);
    } else {
        /* SEEK_END not supported */
        return -1;
    }
    if (f->put_buffer) {
        qemu_fflush(f);
        f->buf_offset = pos;
    } else {
        f->buf_offset = pos;
        f->buf_index = 0;
        f->buf_size = 0;
    }
    return pos;
}

int qemu_file_rate_limit(QEMUFile *f)
{
    if (f->rate_limit)
        return f->rate_limit(f->opaque);

    return 0;
}

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size_t qemu_file_set_rate_limit(QEMUFile *f, size_t new_rate)
{
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    /* any failed or completed migration keeps its state to allow probing of
     * migration data, but has no associated file anymore */
    if (f && f->set_rate_limit)
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        return f->set_rate_limit(f->opaque, new_rate);

    return 0;
}

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void qemu_put_be16(QEMUFile *f, unsigned int v)
{
    qemu_put_byte(f, v >> 8);
    qemu_put_byte(f, v);
}

void qemu_put_be32(QEMUFile *f, unsigned int v)
{
    qemu_put_byte(f, v >> 24);
    qemu_put_byte(f, v >> 16);
    qemu_put_byte(f, v >> 8);
    qemu_put_byte(f, v);
}

void qemu_put_be64(QEMUFile *f, uint64_t v)
{
    qemu_put_be32(f, v >> 32);
    qemu_put_be32(f, v);
}

unsigned int qemu_get_be16(QEMUFile *f)
{
    unsigned int v;
    v = qemu_get_byte(f) << 8;
    v |= qemu_get_byte(f);
    return v;
}

unsigned int qemu_get_be32(QEMUFile *f)
{
    unsigned int v;
    v = qemu_get_byte(f) << 24;
    v |= qemu_get_byte(f) << 16;
    v |= qemu_get_byte(f) << 8;
    v |= qemu_get_byte(f);
    return v;
}

uint64_t qemu_get_be64(QEMUFile *f)
{
    uint64_t v;
    v = (uint64_t)qemu_get_be32(f) << 32;
    v |= qemu_get_be32(f);
    return v;
}

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/* 8 bit int */

static int get_int8(QEMUFile *f, void *pv, size_t size)
{
    int8_t *v = pv;
    qemu_get_s8s(f, v);
    return 0;
}

static void put_int8(QEMUFile *f, const void *pv, size_t size)
{
    const int8_t *v = pv;
    qemu_put_s8s(f, v);
}

const VMStateInfo vmstate_info_int8 = {
    .name = "int8",
    .get  = get_int8,
    .put  = put_int8,
};

/* 16 bit int */

static int get_int16(QEMUFile *f, void *pv, size_t size)
{
    int16_t *v = pv;
    qemu_get_sbe16s(f, v);
    return 0;
}

static void put_int16(QEMUFile *f, const void *pv, size_t size)
{
    const int16_t *v = pv;
    qemu_put_sbe16s(f, v);
}

const VMStateInfo vmstate_info_int16 = {
    .name = "int16",
    .get  = get_int16,
    .put  = put_int16,
};

/* 32 bit int */

static int get_int32(QEMUFile *f, void *pv, size_t size)
{
    int32_t *v = pv;
    qemu_get_sbe32s(f, v);
    return 0;
}

static void put_int32(QEMUFile *f, const void *pv, size_t size)
{
    const int32_t *v = pv;
    qemu_put_sbe32s(f, v);
}

const VMStateInfo vmstate_info_int32 = {
    .name = "int32",
    .get  = get_int32,
    .put  = put_int32,
};

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/* 32 bit int. See that the received value is the same than the one
   in the field */

static int get_int32_equal(QEMUFile *f, void *pv, size_t size)
{
    int32_t *v = pv;
    int32_t v2;
    qemu_get_sbe32s(f, &v2);

    if (*v == v2)
        return 0;
    return -EINVAL;
}

const VMStateInfo vmstate_info_int32_equal = {
    .name = "int32 equal",
    .get  = get_int32_equal,
    .put  = put_int32,
};

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/* 32 bit int. See that the received value is the less or the same
   than the one in the field */

static int get_int32_le(QEMUFile *f, void *pv, size_t size)
{
    int32_t *old = pv;
    int32_t new;
    qemu_get_sbe32s(f, &new);

    if (*old <= new)
        return 0;
    return -EINVAL;
}

const VMStateInfo vmstate_info_int32_le = {
    .name = "int32 equal",
    .get  = get_int32_le,
    .put  = put_int32,
};

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/* 64 bit int */

static int get_int64(QEMUFile *f, void *pv, size_t size)
{
    int64_t *v = pv;
    qemu_get_sbe64s(f, v);
    return 0;
}

static void put_int64(QEMUFile *f, const void *pv, size_t size)
{
    const int64_t *v = pv;
    qemu_put_sbe64s(f, v);
}

const VMStateInfo vmstate_info_int64 = {
    .name = "int64",
    .get  = get_int64,
    .put  = put_int64,
};

/* 8 bit unsigned int */

static int get_uint8(QEMUFile *f, void *pv, size_t size)
{
    uint8_t *v = pv;
    qemu_get_8s(f, v);
    return 0;
}

static void put_uint8(QEMUFile *f, const void *pv, size_t size)
{
    const uint8_t *v = pv;
    qemu_put_8s(f, v);
}

const VMStateInfo vmstate_info_uint8 = {
    .name = "uint8",
    .get  = get_uint8,
    .put  = put_uint8,
};

/* 16 bit unsigned int */

static int get_uint16(QEMUFile *f, void *pv, size_t size)
{
    uint16_t *v = pv;
    qemu_get_be16s(f, v);
    return 0;
}

static void put_uint16(QEMUFile *f, const void *pv, size_t size)
{
    const uint16_t *v = pv;
    qemu_put_be16s(f, v);
}

const VMStateInfo vmstate_info_uint16 = {
    .name = "uint16",
    .get  = get_uint16,
    .put  = put_uint16,
};

/* 32 bit unsigned int */

static int get_uint32(QEMUFile *f, void *pv, size_t size)
{
    uint32_t *v = pv;
    qemu_get_be32s(f, v);
    return 0;
}

static void put_uint32(QEMUFile *f, const void *pv, size_t size)
{
    const uint32_t *v = pv;
    qemu_put_be32s(f, v);
}

const VMStateInfo vmstate_info_uint32 = {
    .name = "uint32",
    .get  = get_uint32,
    .put  = put_uint32,
};

/* 64 bit unsigned int */

static int get_uint64(QEMUFile *f, void *pv, size_t size)
{
    uint64_t *v = pv;
    qemu_get_be64s(f, v);
    return 0;
}

static void put_uint64(QEMUFile *f, const void *pv, size_t size)
{
    const uint64_t *v = pv;
    qemu_put_be64s(f, v);
}

const VMStateInfo vmstate_info_uint64 = {
    .name = "uint64",
    .get  = get_uint64,
    .put  = put_uint64,
};

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/* timers  */

static int get_timer(QEMUFile *f, void *pv, size_t size)
{
    QEMUTimer *v = pv;
    qemu_get_timer(f, v);
    return 0;
}

static void put_timer(QEMUFile *f, const void *pv, size_t size)
{
    QEMUTimer *v = (void *)pv;
    qemu_put_timer(f, v);
}

const VMStateInfo vmstate_info_timer = {
    .name = "timer",
    .get  = get_timer,
    .put  = put_timer,
};

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/* uint8_t buffers */

static int get_buffer(QEMUFile *f, void *pv, size_t size)
{
    uint8_t *v = pv;
    qemu_get_buffer(f, v, size);
    return 0;
}

static void put_buffer(QEMUFile *f, const void *pv, size_t size)
{
    uint8_t *v = (void *)pv;
    qemu_put_buffer(f, v, size);
}

const VMStateInfo vmstate_info_buffer = {
    .name = "buffer",
    .get  = get_buffer,
    .put  = put_buffer,
};

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typedef struct SaveStateEntry {
    char idstr[256];
    int instance_id;
    int version_id;
    int section_id;
    SaveLiveStateHandler *save_live_state;
    SaveStateHandler *save_state;
    LoadStateHandler *load_state;
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    const VMStateDescription *vmsd;
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    void *opaque;
    struct SaveStateEntry *next;
} SaveStateEntry;

static SaveStateEntry *first_se;
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static int global_section_id;
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/* TODO: Individual devices generally have very little idea about the rest
   of the system, so instance_id should be removed/replaced.
   Meanwhile pass -1 as instance_id if you do not already have a clearly
   distinguishing id for all instances of your device class. */
int register_savevm_live(const char *idstr,
                         int instance_id,
                         int version_id,
                         SaveLiveStateHandler *save_live_state,
                         SaveStateHandler *save_state,
                         LoadStateHandler *load_state,
                         void *opaque)
{
    SaveStateEntry *se, **pse;

    se = qemu_malloc(sizeof(SaveStateEntry));
    pstrcpy(se->idstr, sizeof(se->idstr), idstr);
    se->instance_id = (instance_id == -1) ? 0 : instance_id;
    se->version_id = version_id;
    se->section_id = global_section_id++;
    se->save_live_state = save_live_state;
    se->save_state = save_state;
    se->load_state = load_state;
    se->opaque = opaque;
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    se->vmsd = NULL;
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    se->next = NULL;

    /* add at the end of list */
    pse = &first_se;
    while (*pse != NULL) {
        if (instance_id == -1
                && strcmp(se->idstr, (*pse)->idstr) == 0
                && se->instance_id <= (*pse)->instance_id)
            se->instance_id = (*pse)->instance_id + 1;
        pse = &(*pse)->next;
    }
    *pse = se;
    return 0;
}

int register_savevm(const char *idstr,
                    int instance_id,
                    int version_id,
                    SaveStateHandler *save_state,
                    LoadStateHandler *load_state,
                    void *opaque)
{
    return register_savevm_live(idstr, instance_id, version_id,
                                NULL, save_state, load_state, opaque);
}

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void unregister_savevm(const char *idstr, void *opaque)
{
    SaveStateEntry **pse;

    pse = &first_se;
    while (*pse != NULL) {
        if (strcmp((*pse)->idstr, idstr) == 0 && (*pse)->opaque == opaque) {
            SaveStateEntry *next = (*pse)->next;
            qemu_free(*pse);
            *pse = next;
            continue;
        }
        pse = &(*pse)->next;
    }
}

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int vmstate_register(int instance_id, const VMStateDescription *vmsd,
                     void *opaque)
{
    SaveStateEntry *se, **pse;

    se = qemu_malloc(sizeof(SaveStateEntry));
    pstrcpy(se->idstr, sizeof(se->idstr), vmsd->name);
    se->instance_id = (instance_id == -1) ? 0 : instance_id;
    se->version_id = vmsd->version_id;
    se->section_id = global_section_id++;
    se->save_live_state = NULL;
    se->save_state = NULL;
    se->load_state = NULL;
    se->opaque = opaque;
    se->vmsd = vmsd;
    se->next = NULL;

    /* add at the end of list */
    pse = &first_se;
    while (*pse != NULL) {
        if (instance_id == -1
                && strcmp(se->idstr, (*pse)->idstr) == 0
                && se->instance_id <= (*pse)->instance_id)
            se->instance_id = (*pse)->instance_id + 1;
        pse = &(*pse)->next;
    }
    *pse = se;
    return 0;
}

void vmstate_unregister(const char *idstr,  void *opaque)
{
    SaveStateEntry **pse;

    pse = &first_se;
    while (*pse != NULL) {
        if (strcmp((*pse)->idstr, idstr) == 0 && (*pse)->opaque == opaque) {
            SaveStateEntry *next = (*pse)->next;
            qemu_free(*pse);
            *pse = next;
            continue;
        }
        pse = &(*pse)->next;
    }
}

int vmstate_load_state(QEMUFile *f, const VMStateDescription *vmsd,
                       void *opaque, int version_id)
{
    VMStateField *field = vmsd->fields;

    if (version_id > vmsd->version_id) {
        return -EINVAL;
    }
    if (version_id < vmsd->minimum_version_id_old) {
        return -EINVAL;
    }
    if  (version_id < vmsd->minimum_version_id) {
        return vmsd->load_state_old(f, opaque, version_id);
    }
    while(field->name) {
        if (field->version_id <= version_id) {
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            void *base_addr = opaque + field->offset;
            int ret, i, n_elems = 1;
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            if (field->flags & VMS_ARRAY) {
                n_elems = field->num;
1041 1042
            } else if (field->flags & VMS_VARRAY) {
                n_elems = *(size_t *)(opaque+field->num_offset);
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            }
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            if (field->flags & VMS_POINTER) {
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                base_addr = *(void **)base_addr;
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            }
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            for (i = 0; i < n_elems; i++) {
                void *addr = base_addr + field->size * i;
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                if (field->flags & VMS_STRUCT) {
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                    ret = vmstate_load_state(f, field->vmsd, addr, field->vmsd->version_id);
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                } else {
                    ret = field->info->get(f, addr, field->size);

                }
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                if (ret < 0) {
                    return ret;
                }
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            }
        }
        field++;
    }
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    if (vmsd->run_after_load)
        return vmsd->run_after_load(opaque);
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    return 0;
}

void vmstate_save_state(QEMUFile *f, const VMStateDescription *vmsd,
                        const void *opaque)
{
    VMStateField *field = vmsd->fields;

    while(field->name) {
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        const void *base_addr = opaque + field->offset;
        int i, n_elems = 1;
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        if (field->flags & VMS_ARRAY) {
            n_elems = field->num;
1079 1080
        } else if (field->flags & VMS_VARRAY) {
            n_elems = *(size_t *)(opaque+field->num_offset);
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        }
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        if (field->flags & VMS_POINTER) {
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            base_addr = *(void **)base_addr;
        }
        for (i = 0; i < n_elems; i++) {
            const void *addr = base_addr + field->size * i;
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            if (field->flags & VMS_STRUCT) {
                vmstate_save_state(f, field->vmsd, addr);
            } else {
                field->info->put(f, addr, field->size);
            }
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        }
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        field++;
    }
}

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static int vmstate_load(QEMUFile *f, SaveStateEntry *se, int version_id)
{
1100 1101 1102 1103
    if (!se->vmsd) {         /* Old style */
        return se->load_state(f, se->opaque, version_id);
    }
    return vmstate_load_state(f, se->vmsd, se->opaque, version_id);
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}

static void vmstate_save(QEMUFile *f, SaveStateEntry *se)
{
1108 1109 1110 1111 1112
    if (!se->vmsd) {         /* Old style */
        se->save_state(f, se->opaque);
        return;
    }
    vmstate_save_state(f,se->vmsd, se->opaque);
1113 1114
}

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#define QEMU_VM_FILE_MAGIC           0x5145564d
#define QEMU_VM_FILE_VERSION_COMPAT  0x00000002
#define QEMU_VM_FILE_VERSION         0x00000003

#define QEMU_VM_EOF                  0x00
#define QEMU_VM_SECTION_START        0x01
#define QEMU_VM_SECTION_PART         0x02
#define QEMU_VM_SECTION_END          0x03
#define QEMU_VM_SECTION_FULL         0x04

int qemu_savevm_state_begin(QEMUFile *f)
{
    SaveStateEntry *se;

    qemu_put_be32(f, QEMU_VM_FILE_MAGIC);
    qemu_put_be32(f, QEMU_VM_FILE_VERSION);

    for (se = first_se; se != NULL; se = se->next) {
        int len;

        if (se->save_live_state == NULL)
            continue;

        /* Section type */
        qemu_put_byte(f, QEMU_VM_SECTION_START);
        qemu_put_be32(f, se->section_id);

        /* ID string */
        len = strlen(se->idstr);
        qemu_put_byte(f, len);
        qemu_put_buffer(f, (uint8_t *)se->idstr, len);

        qemu_put_be32(f, se->instance_id);
        qemu_put_be32(f, se->version_id);

        se->save_live_state(f, QEMU_VM_SECTION_START, se->opaque);
    }

    if (qemu_file_has_error(f))
        return -EIO;

    return 0;
}

int qemu_savevm_state_iterate(QEMUFile *f)
{
    SaveStateEntry *se;
    int ret = 1;

    for (se = first_se; se != NULL; se = se->next) {
        if (se->save_live_state == NULL)
            continue;

        /* Section type */
        qemu_put_byte(f, QEMU_VM_SECTION_PART);
        qemu_put_be32(f, se->section_id);

        ret &= !!se->save_live_state(f, QEMU_VM_SECTION_PART, se->opaque);
    }

    if (ret)
        return 1;

    if (qemu_file_has_error(f))
        return -EIO;

    return 0;
}

int qemu_savevm_state_complete(QEMUFile *f)
{
    SaveStateEntry *se;

    for (se = first_se; se != NULL; se = se->next) {
        if (se->save_live_state == NULL)
            continue;

        /* Section type */
        qemu_put_byte(f, QEMU_VM_SECTION_END);
        qemu_put_be32(f, se->section_id);

        se->save_live_state(f, QEMU_VM_SECTION_END, se->opaque);
    }

    for(se = first_se; se != NULL; se = se->next) {
        int len;

1202
	if (se->save_state == NULL && se->vmsd == NULL)
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	    continue;

        /* Section type */
        qemu_put_byte(f, QEMU_VM_SECTION_FULL);
        qemu_put_be32(f, se->section_id);

        /* ID string */
        len = strlen(se->idstr);
        qemu_put_byte(f, len);
        qemu_put_buffer(f, (uint8_t *)se->idstr, len);

        qemu_put_be32(f, se->instance_id);
        qemu_put_be32(f, se->version_id);

1217
        vmstate_save(f, se);
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    }

    qemu_put_byte(f, QEMU_VM_EOF);

    if (qemu_file_has_error(f))
        return -EIO;

    return 0;
}

int qemu_savevm_state(QEMUFile *f)
{
    int saved_vm_running;
    int ret;

    saved_vm_running = vm_running;
    vm_stop(0);

    bdrv_flush_all();

    ret = qemu_savevm_state_begin(f);
    if (ret < 0)
        goto out;

    do {
        ret = qemu_savevm_state_iterate(f);
        if (ret < 0)
            goto out;
    } while (ret == 0);

    ret = qemu_savevm_state_complete(f);

out:
    if (qemu_file_has_error(f))
        ret = -EIO;

    if (!ret && saved_vm_running)
        vm_start();

    return ret;
}

static SaveStateEntry *find_se(const char *idstr, int instance_id)
{
    SaveStateEntry *se;

    for(se = first_se; se != NULL; se = se->next) {
        if (!strcmp(se->idstr, idstr) &&
            instance_id == se->instance_id)
            return se;
    }
    return NULL;
}

typedef struct LoadStateEntry {
    SaveStateEntry *se;
    int section_id;
    int version_id;
    struct LoadStateEntry *next;
} LoadStateEntry;

static int qemu_loadvm_state_v2(QEMUFile *f)
{
    SaveStateEntry *se;
    int len, ret, instance_id, record_len, version_id;
    int64_t total_len, end_pos, cur_pos;
    char idstr[256];

    total_len = qemu_get_be64(f);
    end_pos = total_len + qemu_ftell(f);
    for(;;) {
        if (qemu_ftell(f) >= end_pos)
            break;
        len = qemu_get_byte(f);
        qemu_get_buffer(f, (uint8_t *)idstr, len);
        idstr[len] = '\0';
        instance_id = qemu_get_be32(f);
        version_id = qemu_get_be32(f);
        record_len = qemu_get_be32(f);
        cur_pos = qemu_ftell(f);
        se = find_se(idstr, instance_id);
        if (!se) {
            fprintf(stderr, "qemu: warning: instance 0x%x of device '%s' not present in current VM\n",
                    instance_id, idstr);
        } else {
1303
            ret = vmstate_load(f, se, version_id);
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            if (ret < 0) {
                fprintf(stderr, "qemu: warning: error while loading state for instance 0x%x of device '%s'\n",
                        instance_id, idstr);
1307
                return ret;
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1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379
            }
        }
        /* always seek to exact end of record */
        qemu_fseek(f, cur_pos + record_len, SEEK_SET);
    }

    if (qemu_file_has_error(f))
        return -EIO;

    return 0;
}

int qemu_loadvm_state(QEMUFile *f)
{
    LoadStateEntry *first_le = NULL;
    uint8_t section_type;
    unsigned int v;
    int ret;

    v = qemu_get_be32(f);
    if (v != QEMU_VM_FILE_MAGIC)
        return -EINVAL;

    v = qemu_get_be32(f);
    if (v == QEMU_VM_FILE_VERSION_COMPAT)
        return qemu_loadvm_state_v2(f);
    if (v != QEMU_VM_FILE_VERSION)
        return -ENOTSUP;

    while ((section_type = qemu_get_byte(f)) != QEMU_VM_EOF) {
        uint32_t instance_id, version_id, section_id;
        LoadStateEntry *le;
        SaveStateEntry *se;
        char idstr[257];
        int len;

        switch (section_type) {
        case QEMU_VM_SECTION_START:
        case QEMU_VM_SECTION_FULL:
            /* Read section start */
            section_id = qemu_get_be32(f);
            len = qemu_get_byte(f);
            qemu_get_buffer(f, (uint8_t *)idstr, len);
            idstr[len] = 0;
            instance_id = qemu_get_be32(f);
            version_id = qemu_get_be32(f);

            /* Find savevm section */
            se = find_se(idstr, instance_id);
            if (se == NULL) {
                fprintf(stderr, "Unknown savevm section or instance '%s' %d\n", idstr, instance_id);
                ret = -EINVAL;
                goto out;
            }

            /* Validate version */
            if (version_id > se->version_id) {
                fprintf(stderr, "savevm: unsupported version %d for '%s' v%d\n",
                        version_id, idstr, se->version_id);
                ret = -EINVAL;
                goto out;
            }

            /* Add entry */
            le = qemu_mallocz(sizeof(*le));

            le->se = se;
            le->section_id = section_id;
            le->version_id = version_id;
            le->next = first_le;
            first_le = le;

1380
            ret = vmstate_load(f, le->se, le->version_id);
1381 1382 1383 1384 1385
            if (ret < 0) {
                fprintf(stderr, "qemu: warning: error while loading state for instance 0x%x of device '%s'\n",
                        instance_id, idstr);
                goto out;
            }
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            break;
        case QEMU_VM_SECTION_PART:
        case QEMU_VM_SECTION_END:
            section_id = qemu_get_be32(f);

            for (le = first_le; le && le->section_id != section_id; le = le->next);
            if (le == NULL) {
                fprintf(stderr, "Unknown savevm section %d\n", section_id);
                ret = -EINVAL;
                goto out;
            }

1398
            ret = vmstate_load(f, le->se, le->version_id);
1399 1400 1401 1402 1403
            if (ret < 0) {
                fprintf(stderr, "qemu: warning: error while loading state section id %d\n",
                        section_id);
                goto out;
            }
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1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445
            break;
        default:
            fprintf(stderr, "Unknown savevm section type %d\n", section_type);
            ret = -EINVAL;
            goto out;
        }
    }

    ret = 0;

out:
    while (first_le) {
        LoadStateEntry *le = first_le;
        first_le = first_le->next;
        qemu_free(le);
    }

    if (qemu_file_has_error(f))
        ret = -EIO;

    return ret;
}

/* device can contain snapshots */
static int bdrv_can_snapshot(BlockDriverState *bs)
{
    return (bs &&
            !bdrv_is_removable(bs) &&
            !bdrv_is_read_only(bs));
}

/* device must be snapshots in order to have a reliable snapshot */
static int bdrv_has_snapshot(BlockDriverState *bs)
{
    return (bs &&
            !bdrv_is_removable(bs) &&
            !bdrv_is_read_only(bs));
}

static BlockDriverState *get_bs_snapshots(void)
{
    BlockDriverState *bs;
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    DriveInfo *dinfo;
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    if (bs_snapshots)
        return bs_snapshots;
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    TAILQ_FOREACH(dinfo, &drives, next) {
        bs = dinfo->bdrv;
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        if (bdrv_can_snapshot(bs))
            goto ok;
    }
    return NULL;
 ok:
    bs_snapshots = bs;
    return bs;
}

static int bdrv_snapshot_find(BlockDriverState *bs, QEMUSnapshotInfo *sn_info,
                              const char *name)
{
    QEMUSnapshotInfo *sn_tab, *sn;
    int nb_sns, i, ret;

    ret = -ENOENT;
    nb_sns = bdrv_snapshot_list(bs, &sn_tab);
    if (nb_sns < 0)
        return ret;
    for(i = 0; i < nb_sns; i++) {
        sn = &sn_tab[i];
        if (!strcmp(sn->id_str, name) || !strcmp(sn->name, name)) {
            *sn_info = *sn;
            ret = 0;
            break;
        }
    }
    qemu_free(sn_tab);
    return ret;
}

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void do_savevm(Monitor *mon, const char *name)
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{
G
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    DriveInfo *dinfo;
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    BlockDriverState *bs, *bs1;
    QEMUSnapshotInfo sn1, *sn = &sn1, old_sn1, *old_sn = &old_sn1;
G
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    int must_delete, ret;
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    QEMUFile *f;
    int saved_vm_running;
1491
    uint32_t vm_state_size;
A
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#ifdef _WIN32
    struct _timeb tb;
#else
    struct timeval tv;
#endif

    bs = get_bs_snapshots();
    if (!bs) {
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        monitor_printf(mon, "No block device can accept snapshots\n");
A
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1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538
        return;
    }

    /* ??? Should this occur after vm_stop?  */
    qemu_aio_flush();

    saved_vm_running = vm_running;
    vm_stop(0);

    must_delete = 0;
    if (name) {
        ret = bdrv_snapshot_find(bs, old_sn, name);
        if (ret >= 0) {
            must_delete = 1;
        }
    }
    memset(sn, 0, sizeof(*sn));
    if (must_delete) {
        pstrcpy(sn->name, sizeof(sn->name), old_sn->name);
        pstrcpy(sn->id_str, sizeof(sn->id_str), old_sn->id_str);
    } else {
        if (name)
            pstrcpy(sn->name, sizeof(sn->name), name);
    }

    /* fill auxiliary fields */
#ifdef _WIN32
    _ftime(&tb);
    sn->date_sec = tb.time;
    sn->date_nsec = tb.millitm * 1000000;
#else
    gettimeofday(&tv, NULL);
    sn->date_sec = tv.tv_sec;
    sn->date_nsec = tv.tv_usec * 1000;
#endif
    sn->vm_clock_nsec = qemu_get_clock(vm_clock);

    /* save the VM state */
1539
    f = qemu_fopen_bdrv(bs, 1);
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    if (!f) {
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        monitor_printf(mon, "Could not open VM state file\n");
A
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1542 1543 1544
        goto the_end;
    }
    ret = qemu_savevm_state(f);
1545
    vm_state_size = qemu_ftell(f);
A
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1546 1547
    qemu_fclose(f);
    if (ret < 0) {
A
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1548
        monitor_printf(mon, "Error %d while writing VM\n", ret);
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        goto the_end;
    }

    /* create the snapshots */

G
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    TAILQ_FOREACH(dinfo, &drives, next) {
        bs1 = dinfo->bdrv;
A
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1556 1557 1558 1559
        if (bdrv_has_snapshot(bs1)) {
            if (must_delete) {
                ret = bdrv_snapshot_delete(bs1, old_sn->id_str);
                if (ret < 0) {
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                    monitor_printf(mon,
                                   "Error while deleting snapshot on '%s'\n",
                                   bdrv_get_device_name(bs1));
A
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                }
            }
1565 1566
            /* Write VM state size only to the image that contains the state */
            sn->vm_state_size = (bs == bs1 ? vm_state_size : 0);
A
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            ret = bdrv_snapshot_create(bs1, sn);
            if (ret < 0) {
A
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1569 1570
                monitor_printf(mon, "Error while creating snapshot on '%s'\n",
                               bdrv_get_device_name(bs1));
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            }
        }
    }

 the_end:
    if (saved_vm_running)
        vm_start();
}

1580
int load_vmstate(Monitor *mon, const char *name)
A
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1581
{
G
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    DriveInfo *dinfo;
A
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1583
    BlockDriverState *bs, *bs1;
1584
    QEMUSnapshotInfo sn;
A
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    QEMUFile *f;
G
Gerd Hoffmann 已提交
1586
    int ret;
A
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1587 1588 1589

    bs = get_bs_snapshots();
    if (!bs) {
A
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1590
        monitor_printf(mon, "No block device supports snapshots\n");
1591
        return -EINVAL;
A
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    }

    /* Flush all IO requests so they don't interfere with the new state.  */
    qemu_aio_flush();

G
Gerd Hoffmann 已提交
1597 1598
    TAILQ_FOREACH(dinfo, &drives, next) {
        bs1 = dinfo->bdrv;
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1599 1600 1601 1602
        if (bdrv_has_snapshot(bs1)) {
            ret = bdrv_snapshot_goto(bs1, name);
            if (ret < 0) {
                if (bs != bs1)
A
aliguori 已提交
1603
                    monitor_printf(mon, "Warning: ");
A
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1604 1605
                switch(ret) {
                case -ENOTSUP:
A
aliguori 已提交
1606 1607 1608
                    monitor_printf(mon,
                                   "Snapshots not supported on device '%s'\n",
                                   bdrv_get_device_name(bs1));
A
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1609 1610
                    break;
                case -ENOENT:
A
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1611 1612 1613
                    monitor_printf(mon, "Could not find snapshot '%s' on "
                                   "device '%s'\n",
                                   name, bdrv_get_device_name(bs1));
A
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1614 1615
                    break;
                default:
A
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1616 1617
                    monitor_printf(mon, "Error %d while activating snapshot on"
                                   " '%s'\n", ret, bdrv_get_device_name(bs1));
A
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1618 1619 1620 1621
                    break;
                }
                /* fatal on snapshot block device */
                if (bs == bs1)
1622
                    return 0;
A
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1623 1624 1625 1626
            }
        }
    }

1627 1628 1629
    /* Don't even try to load empty VM states */
    ret = bdrv_snapshot_find(bs, &sn, name);
    if ((ret >= 0) && (sn.vm_state_size == 0))
1630
        return -EINVAL;
1631

A
aliguori 已提交
1632
    /* restore the VM state */
1633
    f = qemu_fopen_bdrv(bs, 0);
A
aliguori 已提交
1634
    if (!f) {
A
aliguori 已提交
1635
        monitor_printf(mon, "Could not open VM state file\n");
1636
        return -EINVAL;
A
aliguori 已提交
1637 1638 1639 1640
    }
    ret = qemu_loadvm_state(f);
    qemu_fclose(f);
    if (ret < 0) {
A
aliguori 已提交
1641
        monitor_printf(mon, "Error %d while loading VM state\n", ret);
1642
        return ret;
A
aliguori 已提交
1643
    }
1644
    return 0;
1645 1646
}

A
aliguori 已提交
1647
void do_delvm(Monitor *mon, const char *name)
A
aliguori 已提交
1648
{
G
Gerd Hoffmann 已提交
1649
    DriveInfo *dinfo;
A
aliguori 已提交
1650
    BlockDriverState *bs, *bs1;
G
Gerd Hoffmann 已提交
1651
    int ret;
A
aliguori 已提交
1652 1653 1654

    bs = get_bs_snapshots();
    if (!bs) {
A
aliguori 已提交
1655
        monitor_printf(mon, "No block device supports snapshots\n");
A
aliguori 已提交
1656 1657 1658
        return;
    }

G
Gerd Hoffmann 已提交
1659 1660
    TAILQ_FOREACH(dinfo, &drives, next) {
        bs1 = dinfo->bdrv;
A
aliguori 已提交
1661 1662 1663 1664
        if (bdrv_has_snapshot(bs1)) {
            ret = bdrv_snapshot_delete(bs1, name);
            if (ret < 0) {
                if (ret == -ENOTSUP)
A
aliguori 已提交
1665 1666 1667
                    monitor_printf(mon,
                                   "Snapshots not supported on device '%s'\n",
                                   bdrv_get_device_name(bs1));
A
aliguori 已提交
1668
                else
A
aliguori 已提交
1669 1670
                    monitor_printf(mon, "Error %d while deleting snapshot on "
                                   "'%s'\n", ret, bdrv_get_device_name(bs1));
A
aliguori 已提交
1671 1672 1673 1674 1675
            }
        }
    }
}

A
aliguori 已提交
1676
void do_info_snapshots(Monitor *mon)
A
aliguori 已提交
1677
{
G
Gerd Hoffmann 已提交
1678
    DriveInfo *dinfo;
A
aliguori 已提交
1679 1680 1681 1682 1683 1684 1685
    BlockDriverState *bs, *bs1;
    QEMUSnapshotInfo *sn_tab, *sn;
    int nb_sns, i;
    char buf[256];

    bs = get_bs_snapshots();
    if (!bs) {
A
aliguori 已提交
1686
        monitor_printf(mon, "No available block device supports snapshots\n");
A
aliguori 已提交
1687 1688
        return;
    }
A
aliguori 已提交
1689
    monitor_printf(mon, "Snapshot devices:");
G
Gerd Hoffmann 已提交
1690 1691
    TAILQ_FOREACH(dinfo, &drives, next) {
        bs1 = dinfo->bdrv;
A
aliguori 已提交
1692 1693
        if (bdrv_has_snapshot(bs1)) {
            if (bs == bs1)
A
aliguori 已提交
1694
                monitor_printf(mon, " %s", bdrv_get_device_name(bs1));
A
aliguori 已提交
1695 1696
        }
    }
A
aliguori 已提交
1697
    monitor_printf(mon, "\n");
A
aliguori 已提交
1698 1699 1700

    nb_sns = bdrv_snapshot_list(bs, &sn_tab);
    if (nb_sns < 0) {
A
aliguori 已提交
1701
        monitor_printf(mon, "bdrv_snapshot_list: error %d\n", nb_sns);
A
aliguori 已提交
1702 1703
        return;
    }
A
aliguori 已提交
1704 1705 1706
    monitor_printf(mon, "Snapshot list (from %s):\n",
                   bdrv_get_device_name(bs));
    monitor_printf(mon, "%s\n", bdrv_snapshot_dump(buf, sizeof(buf), NULL));
A
aliguori 已提交
1707 1708
    for(i = 0; i < nb_sns; i++) {
        sn = &sn_tab[i];
A
aliguori 已提交
1709
        monitor_printf(mon, "%s\n", bdrv_snapshot_dump(buf, sizeof(buf), sn));
A
aliguori 已提交
1710 1711 1712
    }
    qemu_free(sn_tab);
}