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Add VMState support for variable sized arrays
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1 /*
2 * QEMU System Emulator
3 *
4 * Copyright (c) 2003-2008 Fabrice Bellard
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22 * THE SOFTWARE.
23 */
24 #include <unistd.h>
25 #include <fcntl.h>
26 #include <signal.h>
27 #include <time.h>
28 #include <errno.h>
29 #include <sys/time.h>
30 #include <zlib.h>
31
32 /* Needed early for CONFIG_BSD etc. */
33 #include "config-host.h"
34
35 #ifndef _WIN32
36 #include <sys/times.h>
37 #include <sys/wait.h>
38 #include <termios.h>
39 #include <sys/mman.h>
40 #include <sys/ioctl.h>
41 #include <sys/resource.h>
42 #include <sys/socket.h>
43 #include <netinet/in.h>
44 #include <net/if.h>
45 #if defined(__NetBSD__)
46 #include <net/if_tap.h>
47 #endif
48 #ifdef __linux__
49 #include <linux/if_tun.h>
50 #endif
51 #include <arpa/inet.h>
52 #include <dirent.h>
53 #include <netdb.h>
54 #include <sys/select.h>
55 #ifdef CONFIG_BSD
56 #include <sys/stat.h>
57 #if defined(__FreeBSD__) || defined(__DragonFly__)
58 #include <libutil.h>
59 #else
60 #include <util.h>
61 #endif
62 #elif defined (__GLIBC__) && defined (__FreeBSD_kernel__)
63 #include <freebsd/stdlib.h>
64 #else
65 #ifdef __linux__
66 #include <pty.h>
67 #include <malloc.h>
68 #include <linux/rtc.h>
69 #endif
70 #endif
71 #endif
72
73 #ifdef _WIN32
74 #include <windows.h>
75 #include <malloc.h>
76 #include <sys/timeb.h>
77 #include <mmsystem.h>
78 #define getopt_long_only getopt_long
79 #define memalign(align, size) malloc(size)
80 #endif
81
82 #include "qemu-common.h"
83 #include "hw/hw.h"
84 #include "net.h"
85 #include "monitor.h"
86 #include "sysemu.h"
87 #include "qemu-timer.h"
88 #include "qemu-char.h"
89 #include "block.h"
90 #include "audio/audio.h"
91 #include "migration.h"
92 #include "qemu_socket.h"
93
94 /* point to the block driver where the snapshots are managed */
95 static BlockDriverState *bs_snapshots;
96
97 #define SELF_ANNOUNCE_ROUNDS 5
98 #define ETH_P_EXPERIMENTAL 0x01F1 /* just a number */
99 //#define ETH_P_EXPERIMENTAL 0x0012 /* make it the size of the packet */
100 #define EXPERIMENTAL_MAGIC 0xf1f23f4f
101
102 static int announce_self_create(uint8_t *buf,
103 uint8_t *mac_addr)
104 {
105 uint32_t magic = EXPERIMENTAL_MAGIC;
106 uint16_t proto = htons(ETH_P_EXPERIMENTAL);
107
108 /* FIXME: should we send a different packet (arp/rarp/ping)? */
109
110 memset(buf, 0, 64);
111 memset(buf, 0xff, 6); /* h_dst */
112 memcpy(buf + 6, mac_addr, 6); /* h_src */
113 memcpy(buf + 12, &proto, 2); /* h_proto */
114 memcpy(buf + 14, &magic, 4); /* magic */
115
116 return 64; /* len */
117 }
118
119 static void qemu_announce_self_once(void *opaque)
120 {
121 int i, len;
122 VLANState *vlan;
123 VLANClientState *vc;
124 uint8_t buf[256];
125 static int count = SELF_ANNOUNCE_ROUNDS;
126 QEMUTimer *timer = *(QEMUTimer **)opaque;
127
128 for (i = 0; i < MAX_NICS; i++) {
129 if (!nd_table[i].used)
130 continue;
131 len = announce_self_create(buf, nd_table[i].macaddr);
132 vlan = nd_table[i].vlan;
133 for(vc = vlan->first_client; vc != NULL; vc = vc->next) {
134 vc->receive(vc, buf, len);
135 }
136 }
137 if (count--) {
138 qemu_mod_timer(timer, qemu_get_clock(rt_clock) + 100);
139 } else {
140 qemu_del_timer(timer);
141 qemu_free_timer(timer);
142 }
143 }
144
145 void qemu_announce_self(void)
146 {
147 static QEMUTimer *timer;
148 timer = qemu_new_timer(rt_clock, qemu_announce_self_once, &timer);
149 qemu_announce_self_once(&timer);
150 }
151
152 /***********************************************************/
153 /* savevm/loadvm support */
154
155 #define IO_BUF_SIZE 32768
156
157 struct QEMUFile {
158 QEMUFilePutBufferFunc *put_buffer;
159 QEMUFileGetBufferFunc *get_buffer;
160 QEMUFileCloseFunc *close;
161 QEMUFileRateLimit *rate_limit;
162 QEMUFileSetRateLimit *set_rate_limit;
163 void *opaque;
164 int is_write;
165
166 int64_t buf_offset; /* start of buffer when writing, end of buffer
167 when reading */
168 int buf_index;
169 int buf_size; /* 0 when writing */
170 uint8_t buf[IO_BUF_SIZE];
171
172 int has_error;
173 };
174
175 typedef struct QEMUFileStdio
176 {
177 FILE *stdio_file;
178 QEMUFile *file;
179 } QEMUFileStdio;
180
181 typedef struct QEMUFileSocket
182 {
183 int fd;
184 QEMUFile *file;
185 } QEMUFileSocket;
186
187 static int socket_get_buffer(void *opaque, uint8_t *buf, int64_t pos, int size)
188 {
189 QEMUFileSocket *s = opaque;
190 ssize_t len;
191
192 do {
193 len = recv(s->fd, (void *)buf, size, 0);
194 } while (len == -1 && socket_error() == EINTR);
195
196 if (len == -1)
197 len = -socket_error();
198
199 return len;
200 }
201
202 static int socket_close(void *opaque)
203 {
204 QEMUFileSocket *s = opaque;
205 qemu_free(s);
206 return 0;
207 }
208
209 static int stdio_put_buffer(void *opaque, const uint8_t *buf, int64_t pos, int size)
210 {
211 QEMUFileStdio *s = opaque;
212 return fwrite(buf, 1, size, s->stdio_file);
213 }
214
215 static int stdio_get_buffer(void *opaque, uint8_t *buf, int64_t pos, int size)
216 {
217 QEMUFileStdio *s = opaque;
218 FILE *fp = s->stdio_file;
219 int bytes;
220
221 do {
222 clearerr(fp);
223 bytes = fread(buf, 1, size, fp);
224 } while ((bytes == 0) && ferror(fp) && (errno == EINTR));
225 return bytes;
226 }
227
228 static int stdio_pclose(void *opaque)
229 {
230 QEMUFileStdio *s = opaque;
231 pclose(s->stdio_file);
232 qemu_free(s);
233 return 0;
234 }
235
236 static int stdio_fclose(void *opaque)
237 {
238 QEMUFileStdio *s = opaque;
239 fclose(s->stdio_file);
240 qemu_free(s);
241 return 0;
242 }
243
244 QEMUFile *qemu_popen(FILE *stdio_file, const char *mode)
245 {
246 QEMUFileStdio *s;
247
248 if (stdio_file == NULL || mode == NULL || (mode[0] != 'r' && mode[0] != 'w') || mode[1] != 0) {
249 fprintf(stderr, "qemu_popen: Argument validity check failed\n");
250 return NULL;
251 }
252
253 s = qemu_mallocz(sizeof(QEMUFileStdio));
254
255 s->stdio_file = stdio_file;
256
257 if(mode[0] == 'r') {
258 s->file = qemu_fopen_ops(s, NULL, stdio_get_buffer, stdio_pclose, NULL, NULL);
259 } else {
260 s->file = qemu_fopen_ops(s, stdio_put_buffer, NULL, stdio_pclose, NULL, NULL);
261 }
262 return s->file;
263 }
264
265 QEMUFile *qemu_popen_cmd(const char *command, const char *mode)
266 {
267 FILE *popen_file;
268
269 popen_file = popen(command, mode);
270 if(popen_file == NULL) {
271 return NULL;
272 }
273
274 return qemu_popen(popen_file, mode);
275 }
276
277 int qemu_stdio_fd(QEMUFile *f)
278 {
279 QEMUFileStdio *p;
280 int fd;
281
282 p = (QEMUFileStdio *)f->opaque;
283 fd = fileno(p->stdio_file);
284
285 return fd;
286 }
287
288 QEMUFile *qemu_fdopen(int fd, const char *mode)
289 {
290 QEMUFileStdio *s;
291
292 if (mode == NULL ||
293 (mode[0] != 'r' && mode[0] != 'w') ||
294 mode[1] != 'b' || mode[2] != 0) {
295 fprintf(stderr, "qemu_fdopen: Argument validity check failed\n");
296 return NULL;
297 }
298
299 s = qemu_mallocz(sizeof(QEMUFileStdio));
300 s->stdio_file = fdopen(fd, mode);
301 if (!s->stdio_file)
302 goto fail;
303
304 if(mode[0] == 'r') {
305 s->file = qemu_fopen_ops(s, NULL, stdio_get_buffer, stdio_fclose, NULL, NULL);
306 } else {
307 s->file = qemu_fopen_ops(s, stdio_put_buffer, NULL, stdio_fclose, NULL, NULL);
308 }
309 return s->file;
310
311 fail:
312 qemu_free(s);
313 return NULL;
314 }
315
316 QEMUFile *qemu_fopen_socket(int fd)
317 {
318 QEMUFileSocket *s = qemu_mallocz(sizeof(QEMUFileSocket));
319
320 s->fd = fd;
321 s->file = qemu_fopen_ops(s, NULL, socket_get_buffer, socket_close, NULL, NULL);
322 return s->file;
323 }
324
325 static int file_put_buffer(void *opaque, const uint8_t *buf,
326 int64_t pos, int size)
327 {
328 QEMUFileStdio *s = opaque;
329 fseek(s->stdio_file, pos, SEEK_SET);
330 fwrite(buf, 1, size, s->stdio_file);
331 return size;
332 }
333
334 static int file_get_buffer(void *opaque, uint8_t *buf, int64_t pos, int size)
335 {
336 QEMUFileStdio *s = opaque;
337 fseek(s->stdio_file, pos, SEEK_SET);
338 return fread(buf, 1, size, s->stdio_file);
339 }
340
341 QEMUFile *qemu_fopen(const char *filename, const char *mode)
342 {
343 QEMUFileStdio *s;
344
345 if (mode == NULL ||
346 (mode[0] != 'r' && mode[0] != 'w') ||
347 mode[1] != 'b' || mode[2] != 0) {
348 fprintf(stderr, "qemu_fdopen: Argument validity check failed\n");
349 return NULL;
350 }
351
352 s = qemu_mallocz(sizeof(QEMUFileStdio));
353
354 s->stdio_file = fopen(filename, mode);
355 if (!s->stdio_file)
356 goto fail;
357
358 if(mode[0] == 'w') {
359 s->file = qemu_fopen_ops(s, file_put_buffer, NULL, stdio_fclose, NULL, NULL);
360 } else {
361 s->file = qemu_fopen_ops(s, NULL, file_get_buffer, stdio_fclose, NULL, NULL);
362 }
363 return s->file;
364 fail:
365 qemu_free(s);
366 return NULL;
367 }
368
369 static int block_put_buffer(void *opaque, const uint8_t *buf,
370 int64_t pos, int size)
371 {
372 bdrv_save_vmstate(opaque, buf, pos, size);
373 return size;
374 }
375
376 static int block_get_buffer(void *opaque, uint8_t *buf, int64_t pos, int size)
377 {
378 return bdrv_load_vmstate(opaque, buf, pos, size);
379 }
380
381 static int bdrv_fclose(void *opaque)
382 {
383 return 0;
384 }
385
386 static QEMUFile *qemu_fopen_bdrv(BlockDriverState *bs, int is_writable)
387 {
388 if (is_writable)
389 return qemu_fopen_ops(bs, block_put_buffer, NULL, bdrv_fclose, NULL, NULL);
390 return qemu_fopen_ops(bs, NULL, block_get_buffer, bdrv_fclose, NULL, NULL);
391 }
392
393 QEMUFile *qemu_fopen_ops(void *opaque, QEMUFilePutBufferFunc *put_buffer,
394 QEMUFileGetBufferFunc *get_buffer,
395 QEMUFileCloseFunc *close,
396 QEMUFileRateLimit *rate_limit,
397 QEMUFileSetRateLimit *set_rate_limit)
398 {
399 QEMUFile *f;
400
401 f = qemu_mallocz(sizeof(QEMUFile));
402
403 f->opaque = opaque;
404 f->put_buffer = put_buffer;
405 f->get_buffer = get_buffer;
406 f->close = close;
407 f->rate_limit = rate_limit;
408 f->set_rate_limit = set_rate_limit;
409 f->is_write = 0;
410
411 return f;
412 }
413
414 int qemu_file_has_error(QEMUFile *f)
415 {
416 return f->has_error;
417 }
418
419 void qemu_file_set_error(QEMUFile *f)
420 {
421 f->has_error = 1;
422 }
423
424 void qemu_fflush(QEMUFile *f)
425 {
426 if (!f->put_buffer)
427 return;
428
429 if (f->is_write && f->buf_index > 0) {
430 int len;
431
432 len = f->put_buffer(f->opaque, f->buf, f->buf_offset, f->buf_index);
433 if (len > 0)
434 f->buf_offset += f->buf_index;
435 else
436 f->has_error = 1;
437 f->buf_index = 0;
438 }
439 }
440
441 static void qemu_fill_buffer(QEMUFile *f)
442 {
443 int len;
444
445 if (!f->get_buffer)
446 return;
447
448 if (f->is_write)
449 abort();
450
451 len = f->get_buffer(f->opaque, f->buf, f->buf_offset, IO_BUF_SIZE);
452 if (len > 0) {
453 f->buf_index = 0;
454 f->buf_size = len;
455 f->buf_offset += len;
456 } else if (len != -EAGAIN)
457 f->has_error = 1;
458 }
459
460 int qemu_fclose(QEMUFile *f)
461 {
462 int ret = 0;
463 qemu_fflush(f);
464 if (f->close)
465 ret = f->close(f->opaque);
466 qemu_free(f);
467 return ret;
468 }
469
470 void qemu_file_put_notify(QEMUFile *f)
471 {
472 f->put_buffer(f->opaque, NULL, 0, 0);
473 }
474
475 void qemu_put_buffer(QEMUFile *f, const uint8_t *buf, int size)
476 {
477 int l;
478
479 if (!f->has_error && f->is_write == 0 && f->buf_index > 0) {
480 fprintf(stderr,
481 "Attempted to write to buffer while read buffer is not empty\n");
482 abort();
483 }
484
485 while (!f->has_error && size > 0) {
486 l = IO_BUF_SIZE - f->buf_index;
487 if (l > size)
488 l = size;
489 memcpy(f->buf + f->buf_index, buf, l);
490 f->is_write = 1;
491 f->buf_index += l;
492 buf += l;
493 size -= l;
494 if (f->buf_index >= IO_BUF_SIZE)
495 qemu_fflush(f);
496 }
497 }
498
499 void qemu_put_byte(QEMUFile *f, int v)
500 {
501 if (!f->has_error && f->is_write == 0 && f->buf_index > 0) {
502 fprintf(stderr,
503 "Attempted to write to buffer while read buffer is not empty\n");
504 abort();
505 }
506
507 f->buf[f->buf_index++] = v;
508 f->is_write = 1;
509 if (f->buf_index >= IO_BUF_SIZE)
510 qemu_fflush(f);
511 }
512
513 int qemu_get_buffer(QEMUFile *f, uint8_t *buf, int size1)
514 {
515 int size, l;
516
517 if (f->is_write)
518 abort();
519
520 size = size1;
521 while (size > 0) {
522 l = f->buf_size - f->buf_index;
523 if (l == 0) {
524 qemu_fill_buffer(f);
525 l = f->buf_size - f->buf_index;
526 if (l == 0)
527 break;
528 }
529 if (l > size)
530 l = size;
531 memcpy(buf, f->buf + f->buf_index, l);
532 f->buf_index += l;
533 buf += l;
534 size -= l;
535 }
536 return size1 - size;
537 }
538
539 int qemu_get_byte(QEMUFile *f)
540 {
541 if (f->is_write)
542 abort();
543
544 if (f->buf_index >= f->buf_size) {
545 qemu_fill_buffer(f);
546 if (f->buf_index >= f->buf_size)
547 return 0;
548 }
549 return f->buf[f->buf_index++];
550 }
551
552 int64_t qemu_ftell(QEMUFile *f)
553 {
554 return f->buf_offset - f->buf_size + f->buf_index;
555 }
556
557 int64_t qemu_fseek(QEMUFile *f, int64_t pos, int whence)
558 {
559 if (whence == SEEK_SET) {
560 /* nothing to do */
561 } else if (whence == SEEK_CUR) {
562 pos += qemu_ftell(f);
563 } else {
564 /* SEEK_END not supported */
565 return -1;
566 }
567 if (f->put_buffer) {
568 qemu_fflush(f);
569 f->buf_offset = pos;
570 } else {
571 f->buf_offset = pos;
572 f->buf_index = 0;
573 f->buf_size = 0;
574 }
575 return pos;
576 }
577
578 int qemu_file_rate_limit(QEMUFile *f)
579 {
580 if (f->rate_limit)
581 return f->rate_limit(f->opaque);
582
583 return 0;
584 }
585
586 size_t qemu_file_set_rate_limit(QEMUFile *f, size_t new_rate)
587 {
588 /* any failed or completed migration keeps its state to allow probing of
589 * migration data, but has no associated file anymore */
590 if (f && f->set_rate_limit)
591 return f->set_rate_limit(f->opaque, new_rate);
592
593 return 0;
594 }
595
596 void qemu_put_be16(QEMUFile *f, unsigned int v)
597 {
598 qemu_put_byte(f, v >> 8);
599 qemu_put_byte(f, v);
600 }
601
602 void qemu_put_be32(QEMUFile *f, unsigned int v)
603 {
604 qemu_put_byte(f, v >> 24);
605 qemu_put_byte(f, v >> 16);
606 qemu_put_byte(f, v >> 8);
607 qemu_put_byte(f, v);
608 }
609
610 void qemu_put_be64(QEMUFile *f, uint64_t v)
611 {
612 qemu_put_be32(f, v >> 32);
613 qemu_put_be32(f, v);
614 }
615
616 unsigned int qemu_get_be16(QEMUFile *f)
617 {
618 unsigned int v;
619 v = qemu_get_byte(f) << 8;
620 v |= qemu_get_byte(f);
621 return v;
622 }
623
624 unsigned int qemu_get_be32(QEMUFile *f)
625 {
626 unsigned int v;
627 v = qemu_get_byte(f) << 24;
628 v |= qemu_get_byte(f) << 16;
629 v |= qemu_get_byte(f) << 8;
630 v |= qemu_get_byte(f);
631 return v;
632 }
633
634 uint64_t qemu_get_be64(QEMUFile *f)
635 {
636 uint64_t v;
637 v = (uint64_t)qemu_get_be32(f) << 32;
638 v |= qemu_get_be32(f);
639 return v;
640 }
641
642 /* 8 bit int */
643
644 static int get_int8(QEMUFile *f, void *pv, size_t size)
645 {
646 int8_t *v = pv;
647 qemu_get_s8s(f, v);
648 return 0;
649 }
650
651 static void put_int8(QEMUFile *f, const void *pv, size_t size)
652 {
653 const int8_t *v = pv;
654 qemu_put_s8s(f, v);
655 }
656
657 const VMStateInfo vmstate_info_int8 = {
658 .name = "int8",
659 .get = get_int8,
660 .put = put_int8,
661 };
662
663 /* 16 bit int */
664
665 static int get_int16(QEMUFile *f, void *pv, size_t size)
666 {
667 int16_t *v = pv;
668 qemu_get_sbe16s(f, v);
669 return 0;
670 }
671
672 static void put_int16(QEMUFile *f, const void *pv, size_t size)
673 {
674 const int16_t *v = pv;
675 qemu_put_sbe16s(f, v);
676 }
677
678 const VMStateInfo vmstate_info_int16 = {
679 .name = "int16",
680 .get = get_int16,
681 .put = put_int16,
682 };
683
684 /* 32 bit int */
685
686 static int get_int32(QEMUFile *f, void *pv, size_t size)
687 {
688 int32_t *v = pv;
689 qemu_get_sbe32s(f, v);
690 return 0;
691 }
692
693 static void put_int32(QEMUFile *f, const void *pv, size_t size)
694 {
695 const int32_t *v = pv;
696 qemu_put_sbe32s(f, v);
697 }
698
699 const VMStateInfo vmstate_info_int32 = {
700 .name = "int32",
701 .get = get_int32,
702 .put = put_int32,
703 };
704
705 /* 32 bit int. See that the received value is the same than the one
706 in the field */
707
708 static int get_int32_equal(QEMUFile *f, void *pv, size_t size)
709 {
710 int32_t *v = pv;
711 int32_t v2;
712 qemu_get_sbe32s(f, &v2);
713
714 if (*v == v2)
715 return 0;
716 return -EINVAL;
717 }
718
719 const VMStateInfo vmstate_info_int32_equal = {
720 .name = "int32 equal",
721 .get = get_int32_equal,
722 .put = put_int32,
723 };
724
725 /* 64 bit int */
726
727 static int get_int64(QEMUFile *f, void *pv, size_t size)
728 {
729 int64_t *v = pv;
730 qemu_get_sbe64s(f, v);
731 return 0;
732 }
733
734 static void put_int64(QEMUFile *f, const void *pv, size_t size)
735 {
736 const int64_t *v = pv;
737 qemu_put_sbe64s(f, v);
738 }
739
740 const VMStateInfo vmstate_info_int64 = {
741 .name = "int64",
742 .get = get_int64,
743 .put = put_int64,
744 };
745
746 /* 8 bit unsigned int */
747
748 static int get_uint8(QEMUFile *f, void *pv, size_t size)
749 {
750 uint8_t *v = pv;
751 qemu_get_8s(f, v);
752 return 0;
753 }
754
755 static void put_uint8(QEMUFile *f, const void *pv, size_t size)
756 {
757 const uint8_t *v = pv;
758 qemu_put_8s(f, v);
759 }
760
761 const VMStateInfo vmstate_info_uint8 = {
762 .name = "uint8",
763 .get = get_uint8,
764 .put = put_uint8,
765 };
766
767 /* 16 bit unsigned int */
768
769 static int get_uint16(QEMUFile *f, void *pv, size_t size)
770 {
771 uint16_t *v = pv;
772 qemu_get_be16s(f, v);
773 return 0;
774 }
775
776 static void put_uint16(QEMUFile *f, const void *pv, size_t size)
777 {
778 const uint16_t *v = pv;
779 qemu_put_be16s(f, v);
780 }
781
782 const VMStateInfo vmstate_info_uint16 = {
783 .name = "uint16",
784 .get = get_uint16,
785 .put = put_uint16,
786 };
787
788 /* 32 bit unsigned int */
789
790 static int get_uint32(QEMUFile *f, void *pv, size_t size)
791 {
792 uint32_t *v = pv;
793 qemu_get_be32s(f, v);
794 return 0;
795 }
796
797 static void put_uint32(QEMUFile *f, const void *pv, size_t size)
798 {
799 const uint32_t *v = pv;
800 qemu_put_be32s(f, v);
801 }
802
803 const VMStateInfo vmstate_info_uint32 = {
804 .name = "uint32",
805 .get = get_uint32,
806 .put = put_uint32,
807 };
808
809 /* 64 bit unsigned int */
810
811 static int get_uint64(QEMUFile *f, void *pv, size_t size)
812 {
813 uint64_t *v = pv;
814 qemu_get_be64s(f, v);
815 return 0;
816 }
817
818 static void put_uint64(QEMUFile *f, const void *pv, size_t size)
819 {
820 const uint64_t *v = pv;
821 qemu_put_be64s(f, v);
822 }
823
824 const VMStateInfo vmstate_info_uint64 = {
825 .name = "uint64",
826 .get = get_uint64,
827 .put = put_uint64,
828 };
829
830 /* timers */
831
832 static int get_timer(QEMUFile *f, void *pv, size_t size)
833 {
834 QEMUTimer *v = pv;
835 qemu_get_timer(f, v);
836 return 0;
837 }
838
839 static void put_timer(QEMUFile *f, const void *pv, size_t size)
840 {
841 QEMUTimer *v = (void *)pv;
842 qemu_put_timer(f, v);
843 }
844
845 const VMStateInfo vmstate_info_timer = {
846 .name = "timer",
847 .get = get_timer,
848 .put = put_timer,
849 };
850
851 typedef struct SaveStateEntry {
852 char idstr[256];
853 int instance_id;
854 int version_id;
855 int section_id;
856 SaveLiveStateHandler *save_live_state;
857 SaveStateHandler *save_state;
858 LoadStateHandler *load_state;
859 const VMStateDescription *vmsd;
860 void *opaque;
861 struct SaveStateEntry *next;
862 } SaveStateEntry;
863
864 static SaveStateEntry *first_se;
865 static int global_section_id;
866
867 /* TODO: Individual devices generally have very little idea about the rest
868 of the system, so instance_id should be removed/replaced.
869 Meanwhile pass -1 as instance_id if you do not already have a clearly
870 distinguishing id for all instances of your device class. */
871 int register_savevm_live(const char *idstr,
872 int instance_id,
873 int version_id,
874 SaveLiveStateHandler *save_live_state,
875 SaveStateHandler *save_state,
876 LoadStateHandler *load_state,
877 void *opaque)
878 {
879 SaveStateEntry *se, **pse;
880
881 se = qemu_malloc(sizeof(SaveStateEntry));
882 pstrcpy(se->idstr, sizeof(se->idstr), idstr);
883 se->instance_id = (instance_id == -1) ? 0 : instance_id;
884 se->version_id = version_id;
885 se->section_id = global_section_id++;
886 se->save_live_state = save_live_state;
887 se->save_state = save_state;
888 se->load_state = load_state;
889 se->opaque = opaque;
890 se->vmsd = NULL;
891 se->next = NULL;
892
893 /* add at the end of list */
894 pse = &first_se;
895 while (*pse != NULL) {
896 if (instance_id == -1
897 && strcmp(se->idstr, (*pse)->idstr) == 0
898 && se->instance_id <= (*pse)->instance_id)
899 se->instance_id = (*pse)->instance_id + 1;
900 pse = &(*pse)->next;
901 }
902 *pse = se;
903 return 0;
904 }
905
906 int register_savevm(const char *idstr,
907 int instance_id,
908 int version_id,
909 SaveStateHandler *save_state,
910 LoadStateHandler *load_state,
911 void *opaque)
912 {
913 return register_savevm_live(idstr, instance_id, version_id,
914 NULL, save_state, load_state, opaque);
915 }
916
917 void unregister_savevm(const char *idstr, void *opaque)
918 {
919 SaveStateEntry **pse;
920
921 pse = &first_se;
922 while (*pse != NULL) {
923 if (strcmp((*pse)->idstr, idstr) == 0 && (*pse)->opaque == opaque) {
924 SaveStateEntry *next = (*pse)->next;
925 qemu_free(*pse);
926 *pse = next;
927 continue;
928 }
929 pse = &(*pse)->next;
930 }
931 }
932
933 int vmstate_register(int instance_id, const VMStateDescription *vmsd,
934 void *opaque)
935 {
936 SaveStateEntry *se, **pse;
937
938 se = qemu_malloc(sizeof(SaveStateEntry));
939 pstrcpy(se->idstr, sizeof(se->idstr), vmsd->name);
940 se->instance_id = (instance_id == -1) ? 0 : instance_id;
941 se->version_id = vmsd->version_id;
942 se->section_id = global_section_id++;
943 se->save_live_state = NULL;
944 se->save_state = NULL;
945 se->load_state = NULL;
946 se->opaque = opaque;
947 se->vmsd = vmsd;
948 se->next = NULL;
949
950 /* add at the end of list */
951 pse = &first_se;
952 while (*pse != NULL) {
953 if (instance_id == -1
954 && strcmp(se->idstr, (*pse)->idstr) == 0
955 && se->instance_id <= (*pse)->instance_id)
956 se->instance_id = (*pse)->instance_id + 1;
957 pse = &(*pse)->next;
958 }
959 *pse = se;
960 return 0;
961 }
962
963 void vmstate_unregister(const char *idstr, void *opaque)
964 {
965 SaveStateEntry **pse;
966
967 pse = &first_se;
968 while (*pse != NULL) {
969 if (strcmp((*pse)->idstr, idstr) == 0 && (*pse)->opaque == opaque) {
970 SaveStateEntry *next = (*pse)->next;
971 qemu_free(*pse);
972 *pse = next;
973 continue;
974 }
975 pse = &(*pse)->next;
976 }
977 }
978
979 int vmstate_load_state(QEMUFile *f, const VMStateDescription *vmsd,
980 void *opaque, int version_id)
981 {
982 VMStateField *field = vmsd->fields;
983
984 if (version_id > vmsd->version_id) {
985 return -EINVAL;
986 }
987 if (version_id < vmsd->minimum_version_id_old) {
988 return -EINVAL;
989 }
990 if (version_id < vmsd->minimum_version_id) {
991 return vmsd->load_state_old(f, opaque, version_id);
992 }
993 while(field->name) {
994 if (field->version_id <= version_id) {
995 void *base_addr = opaque + field->offset;
996 int ret, i, n_elems = 1;
997
998 if (field->flags & VMS_ARRAY) {
999 n_elems = field->num;
1000 } else if (field->flags & VMS_VARRAY) {
1001 n_elems = *(size_t *)(opaque+field->num_offset);
1002 }
1003 if (field->flags & VMS_POINTER) {
1004 base_addr = *(void **)base_addr;
1005 }
1006 for (i = 0; i < n_elems; i++) {
1007 void *addr = base_addr + field->size * i;
1008
1009 if (field->flags & VMS_STRUCT) {
1010 ret = vmstate_load_state(f, field->vmsd, addr, version_id);
1011 } else {
1012 ret = field->info->get(f, addr, field->size);
1013
1014 }
1015 if (ret < 0) {
1016 return ret;
1017 }
1018 }
1019 }
1020 field++;
1021 }
1022 return 0;
1023 }
1024
1025 void vmstate_save_state(QEMUFile *f, const VMStateDescription *vmsd,
1026 const void *opaque)
1027 {
1028 VMStateField *field = vmsd->fields;
1029
1030 while(field->name) {
1031 const void *base_addr = opaque + field->offset;
1032 int i, n_elems = 1;
1033
1034 if (field->flags & VMS_ARRAY) {
1035 n_elems = field->num;
1036 } else if (field->flags & VMS_VARRAY) {
1037 n_elems = *(size_t *)(opaque+field->num_offset);
1038 }
1039 if (field->flags & VMS_POINTER) {
1040 base_addr = *(void **)base_addr;
1041 }
1042 for (i = 0; i < n_elems; i++) {
1043 const void *addr = base_addr + field->size * i;
1044
1045 if (field->flags & VMS_STRUCT) {
1046 vmstate_save_state(f, field->vmsd, addr);
1047 } else {
1048 field->info->put(f, addr, field->size);
1049 }
1050 }
1051 field++;
1052 }
1053 }
1054
1055 static int vmstate_load(QEMUFile *f, SaveStateEntry *se, int version_id)
1056 {
1057 if (!se->vmsd) { /* Old style */
1058 return se->load_state(f, se->opaque, version_id);
1059 }
1060 return vmstate_load_state(f, se->vmsd, se->opaque, version_id);
1061 }
1062
1063 static void vmstate_save(QEMUFile *f, SaveStateEntry *se)
1064 {
1065 if (!se->vmsd) { /* Old style */
1066 se->save_state(f, se->opaque);
1067 return;
1068 }
1069 vmstate_save_state(f,se->vmsd, se->opaque);
1070 }
1071
1072 #define QEMU_VM_FILE_MAGIC 0x5145564d
1073 #define QEMU_VM_FILE_VERSION_COMPAT 0x00000002
1074 #define QEMU_VM_FILE_VERSION 0x00000003
1075
1076 #define QEMU_VM_EOF 0x00
1077 #define QEMU_VM_SECTION_START 0x01
1078 #define QEMU_VM_SECTION_PART 0x02
1079 #define QEMU_VM_SECTION_END 0x03
1080 #define QEMU_VM_SECTION_FULL 0x04
1081
1082 int qemu_savevm_state_begin(QEMUFile *f)
1083 {
1084 SaveStateEntry *se;
1085
1086 qemu_put_be32(f, QEMU_VM_FILE_MAGIC);
1087 qemu_put_be32(f, QEMU_VM_FILE_VERSION);
1088
1089 for (se = first_se; se != NULL; se = se->next) {
1090 int len;
1091
1092 if (se->save_live_state == NULL)
1093 continue;
1094
1095 /* Section type */
1096 qemu_put_byte(f, QEMU_VM_SECTION_START);
1097 qemu_put_be32(f, se->section_id);
1098
1099 /* ID string */
1100 len = strlen(se->idstr);
1101 qemu_put_byte(f, len);
1102 qemu_put_buffer(f, (uint8_t *)se->idstr, len);
1103
1104 qemu_put_be32(f, se->instance_id);
1105 qemu_put_be32(f, se->version_id);
1106
1107 se->save_live_state(f, QEMU_VM_SECTION_START, se->opaque);
1108 }
1109
1110 if (qemu_file_has_error(f))
1111 return -EIO;
1112
1113 return 0;
1114 }
1115
1116 int qemu_savevm_state_iterate(QEMUFile *f)
1117 {
1118 SaveStateEntry *se;
1119 int ret = 1;
1120
1121 for (se = first_se; se != NULL; se = se->next) {
1122 if (se->save_live_state == NULL)
1123 continue;
1124
1125 /* Section type */
1126 qemu_put_byte(f, QEMU_VM_SECTION_PART);
1127 qemu_put_be32(f, se->section_id);
1128
1129 ret &= !!se->save_live_state(f, QEMU_VM_SECTION_PART, se->opaque);
1130 }
1131
1132 if (ret)
1133 return 1;
1134
1135 if (qemu_file_has_error(f))
1136 return -EIO;
1137
1138 return 0;
1139 }
1140
1141 int qemu_savevm_state_complete(QEMUFile *f)
1142 {
1143 SaveStateEntry *se;
1144
1145 for (se = first_se; se != NULL; se = se->next) {
1146 if (se->save_live_state == NULL)
1147 continue;
1148
1149 /* Section type */
1150 qemu_put_byte(f, QEMU_VM_SECTION_END);
1151 qemu_put_be32(f, se->section_id);
1152
1153 se->save_live_state(f, QEMU_VM_SECTION_END, se->opaque);
1154 }
1155
1156 for(se = first_se; se != NULL; se = se->next) {
1157 int len;
1158
1159 if (se->save_state == NULL && se->vmsd == NULL)
1160 continue;
1161
1162 /* Section type */
1163 qemu_put_byte(f, QEMU_VM_SECTION_FULL);
1164 qemu_put_be32(f, se->section_id);
1165
1166 /* ID string */
1167 len = strlen(se->idstr);
1168 qemu_put_byte(f, len);
1169 qemu_put_buffer(f, (uint8_t *)se->idstr, len);
1170
1171 qemu_put_be32(f, se->instance_id);
1172 qemu_put_be32(f, se->version_id);
1173
1174 vmstate_save(f, se);
1175 }
1176
1177 qemu_put_byte(f, QEMU_VM_EOF);
1178
1179 if (qemu_file_has_error(f))
1180 return -EIO;
1181
1182 return 0;
1183 }
1184
1185 int qemu_savevm_state(QEMUFile *f)
1186 {
1187 int saved_vm_running;
1188 int ret;
1189
1190 saved_vm_running = vm_running;
1191 vm_stop(0);
1192
1193 bdrv_flush_all();
1194
1195 ret = qemu_savevm_state_begin(f);
1196 if (ret < 0)
1197 goto out;
1198
1199 do {
1200 ret = qemu_savevm_state_iterate(f);
1201 if (ret < 0)
1202 goto out;
1203 } while (ret == 0);
1204
1205 ret = qemu_savevm_state_complete(f);
1206
1207 out:
1208 if (qemu_file_has_error(f))
1209 ret = -EIO;
1210
1211 if (!ret && saved_vm_running)
1212 vm_start();
1213
1214 return ret;
1215 }
1216
1217 static SaveStateEntry *find_se(const char *idstr, int instance_id)
1218 {
1219 SaveStateEntry *se;
1220
1221 for(se = first_se; se != NULL; se = se->next) {
1222 if (!strcmp(se->idstr, idstr) &&
1223 instance_id == se->instance_id)
1224 return se;
1225 }
1226 return NULL;
1227 }
1228
1229 typedef struct LoadStateEntry {
1230 SaveStateEntry *se;
1231 int section_id;
1232 int version_id;
1233 struct LoadStateEntry *next;
1234 } LoadStateEntry;
1235
1236 static int qemu_loadvm_state_v2(QEMUFile *f)
1237 {
1238 SaveStateEntry *se;
1239 int len, ret, instance_id, record_len, version_id;
1240 int64_t total_len, end_pos, cur_pos;
1241 char idstr[256];
1242
1243 total_len = qemu_get_be64(f);
1244 end_pos = total_len + qemu_ftell(f);
1245 for(;;) {
1246 if (qemu_ftell(f) >= end_pos)
1247 break;
1248 len = qemu_get_byte(f);
1249 qemu_get_buffer(f, (uint8_t *)idstr, len);
1250 idstr[len] = '\0';
1251 instance_id = qemu_get_be32(f);
1252 version_id = qemu_get_be32(f);
1253 record_len = qemu_get_be32(f);
1254 cur_pos = qemu_ftell(f);
1255 se = find_se(idstr, instance_id);
1256 if (!se) {
1257 fprintf(stderr, "qemu: warning: instance 0x%x of device '%s' not present in current VM\n",
1258 instance_id, idstr);
1259 } else {
1260 ret = vmstate_load(f, se, version_id);
1261 if (ret < 0) {
1262 fprintf(stderr, "qemu: warning: error while loading state for instance 0x%x of device '%s'\n",
1263 instance_id, idstr);
1264 return ret;
1265 }
1266 }
1267 /* always seek to exact end of record */
1268 qemu_fseek(f, cur_pos + record_len, SEEK_SET);
1269 }
1270
1271 if (qemu_file_has_error(f))
1272 return -EIO;
1273
1274 return 0;
1275 }
1276
1277 int qemu_loadvm_state(QEMUFile *f)
1278 {
1279 LoadStateEntry *first_le = NULL;
1280 uint8_t section_type;
1281 unsigned int v;
1282 int ret;
1283
1284 v = qemu_get_be32(f);
1285 if (v != QEMU_VM_FILE_MAGIC)
1286 return -EINVAL;
1287
1288 v = qemu_get_be32(f);
1289 if (v == QEMU_VM_FILE_VERSION_COMPAT)
1290 return qemu_loadvm_state_v2(f);
1291 if (v != QEMU_VM_FILE_VERSION)
1292 return -ENOTSUP;
1293
1294 while ((section_type = qemu_get_byte(f)) != QEMU_VM_EOF) {
1295 uint32_t instance_id, version_id, section_id;
1296 LoadStateEntry *le;
1297 SaveStateEntry *se;
1298 char idstr[257];
1299 int len;
1300
1301 switch (section_type) {
1302 case QEMU_VM_SECTION_START:
1303 case QEMU_VM_SECTION_FULL:
1304 /* Read section start */
1305 section_id = qemu_get_be32(f);
1306 len = qemu_get_byte(f);
1307 qemu_get_buffer(f, (uint8_t *)idstr, len);
1308 idstr[len] = 0;
1309 instance_id = qemu_get_be32(f);
1310 version_id = qemu_get_be32(f);
1311
1312 /* Find savevm section */
1313 se = find_se(idstr, instance_id);
1314 if (se == NULL) {
1315 fprintf(stderr, "Unknown savevm section or instance '%s' %d\n", idstr, instance_id);
1316 ret = -EINVAL;
1317 goto out;
1318 }
1319
1320 /* Validate version */
1321 if (version_id > se->version_id) {
1322 fprintf(stderr, "savevm: unsupported version %d for '%s' v%d\n",
1323 version_id, idstr, se->version_id);
1324 ret = -EINVAL;
1325 goto out;
1326 }
1327
1328 /* Add entry */
1329 le = qemu_mallocz(sizeof(*le));
1330
1331 le->se = se;
1332 le->section_id = section_id;
1333 le->version_id = version_id;
1334 le->next = first_le;
1335 first_le = le;
1336
1337 ret = vmstate_load(f, le->se, le->version_id);
1338 if (ret < 0) {
1339 fprintf(stderr, "qemu: warning: error while loading state for instance 0x%x of device '%s'\n",
1340 instance_id, idstr);
1341 goto out;
1342 }
1343 break;
1344 case QEMU_VM_SECTION_PART:
1345 case QEMU_VM_SECTION_END:
1346 section_id = qemu_get_be32(f);
1347
1348 for (le = first_le; le && le->section_id != section_id; le = le->next);
1349 if (le == NULL) {
1350 fprintf(stderr, "Unknown savevm section %d\n", section_id);
1351 ret = -EINVAL;
1352 goto out;
1353 }
1354
1355 ret = vmstate_load(f, le->se, le->version_id);
1356 if (ret < 0) {
1357 fprintf(stderr, "qemu: warning: error while loading state section id %d\n",
1358 section_id);
1359 goto out;
1360 }
1361 break;
1362 default:
1363 fprintf(stderr, "Unknown savevm section type %d\n", section_type);
1364 ret = -EINVAL;
1365 goto out;
1366 }
1367 }
1368
1369 ret = 0;
1370
1371 out:
1372 while (first_le) {
1373 LoadStateEntry *le = first_le;
1374 first_le = first_le->next;
1375 qemu_free(le);
1376 }
1377
1378 if (qemu_file_has_error(f))
1379 ret = -EIO;
1380
1381 return ret;
1382 }
1383
1384 /* device can contain snapshots */
1385 static int bdrv_can_snapshot(BlockDriverState *bs)
1386 {
1387 return (bs &&
1388 !bdrv_is_removable(bs) &&
1389 !bdrv_is_read_only(bs));
1390 }
1391
1392 /* device must be snapshots in order to have a reliable snapshot */
1393 static int bdrv_has_snapshot(BlockDriverState *bs)
1394 {
1395 return (bs &&
1396 !bdrv_is_removable(bs) &&
1397 !bdrv_is_read_only(bs));
1398 }
1399
1400 static BlockDriverState *get_bs_snapshots(void)
1401 {
1402 BlockDriverState *bs;
1403 DriveInfo *dinfo;
1404
1405 if (bs_snapshots)
1406 return bs_snapshots;
1407 TAILQ_FOREACH(dinfo, &drives, next) {
1408 bs = dinfo->bdrv;
1409 if (bdrv_can_snapshot(bs))
1410 goto ok;
1411 }
1412 return NULL;
1413 ok:
1414 bs_snapshots = bs;
1415 return bs;
1416 }
1417
1418 static int bdrv_snapshot_find(BlockDriverState *bs, QEMUSnapshotInfo *sn_info,
1419 const char *name)
1420 {
1421 QEMUSnapshotInfo *sn_tab, *sn;
1422 int nb_sns, i, ret;
1423
1424 ret = -ENOENT;
1425 nb_sns = bdrv_snapshot_list(bs, &sn_tab);
1426 if (nb_sns < 0)
1427 return ret;
1428 for(i = 0; i < nb_sns; i++) {
1429 sn = &sn_tab[i];
1430 if (!strcmp(sn->id_str, name) || !strcmp(sn->name, name)) {
1431 *sn_info = *sn;
1432 ret = 0;
1433 break;
1434 }
1435 }
1436 qemu_free(sn_tab);
1437 return ret;
1438 }
1439
1440 void do_savevm(Monitor *mon, const char *name)
1441 {
1442 DriveInfo *dinfo;
1443 BlockDriverState *bs, *bs1;
1444 QEMUSnapshotInfo sn1, *sn = &sn1, old_sn1, *old_sn = &old_sn1;
1445 int must_delete, ret;
1446 QEMUFile *f;
1447 int saved_vm_running;
1448 uint32_t vm_state_size;
1449 #ifdef _WIN32
1450 struct _timeb tb;
1451 #else
1452 struct timeval tv;
1453 #endif
1454
1455 bs = get_bs_snapshots();
1456 if (!bs) {
1457 monitor_printf(mon, "No block device can accept snapshots\n");
1458 return;
1459 }
1460
1461 /* ??? Should this occur after vm_stop? */
1462 qemu_aio_flush();
1463
1464 saved_vm_running = vm_running;
1465 vm_stop(0);
1466
1467 must_delete = 0;
1468 if (name) {
1469 ret = bdrv_snapshot_find(bs, old_sn, name);
1470 if (ret >= 0) {
1471 must_delete = 1;
1472 }
1473 }
1474 memset(sn, 0, sizeof(*sn));
1475 if (must_delete) {
1476 pstrcpy(sn->name, sizeof(sn->name), old_sn->name);
1477 pstrcpy(sn->id_str, sizeof(sn->id_str), old_sn->id_str);
1478 } else {
1479 if (name)
1480 pstrcpy(sn->name, sizeof(sn->name), name);
1481 }
1482
1483 /* fill auxiliary fields */
1484 #ifdef _WIN32
1485 _ftime(&tb);
1486 sn->date_sec = tb.time;
1487 sn->date_nsec = tb.millitm * 1000000;
1488 #else
1489 gettimeofday(&tv, NULL);
1490 sn->date_sec = tv.tv_sec;
1491 sn->date_nsec = tv.tv_usec * 1000;
1492 #endif
1493 sn->vm_clock_nsec = qemu_get_clock(vm_clock);
1494
1495 /* save the VM state */
1496 f = qemu_fopen_bdrv(bs, 1);
1497 if (!f) {
1498 monitor_printf(mon, "Could not open VM state file\n");
1499 goto the_end;
1500 }
1501 ret = qemu_savevm_state(f);
1502 vm_state_size = qemu_ftell(f);
1503 qemu_fclose(f);
1504 if (ret < 0) {
1505 monitor_printf(mon, "Error %d while writing VM\n", ret);
1506 goto the_end;
1507 }
1508
1509 /* create the snapshots */
1510
1511 TAILQ_FOREACH(dinfo, &drives, next) {
1512 bs1 = dinfo->bdrv;
1513 if (bdrv_has_snapshot(bs1)) {
1514 if (must_delete) {
1515 ret = bdrv_snapshot_delete(bs1, old_sn->id_str);
1516 if (ret < 0) {
1517 monitor_printf(mon,
1518 "Error while deleting snapshot on '%s'\n",
1519 bdrv_get_device_name(bs1));
1520 }
1521 }
1522 /* Write VM state size only to the image that contains the state */
1523 sn->vm_state_size = (bs == bs1 ? vm_state_size : 0);
1524 ret = bdrv_snapshot_create(bs1, sn);
1525 if (ret < 0) {
1526 monitor_printf(mon, "Error while creating snapshot on '%s'\n",
1527 bdrv_get_device_name(bs1));
1528 }
1529 }
1530 }
1531
1532 the_end:
1533 if (saved_vm_running)
1534 vm_start();
1535 }
1536
1537 int load_vmstate(Monitor *mon, const char *name)
1538 {
1539 DriveInfo *dinfo;
1540 BlockDriverState *bs, *bs1;
1541 QEMUSnapshotInfo sn;
1542 QEMUFile *f;
1543 int ret;
1544
1545 bs = get_bs_snapshots();
1546 if (!bs) {
1547 monitor_printf(mon, "No block device supports snapshots\n");
1548 return -EINVAL;
1549 }
1550
1551 /* Flush all IO requests so they don't interfere with the new state. */
1552 qemu_aio_flush();
1553
1554 TAILQ_FOREACH(dinfo, &drives, next) {
1555 bs1 = dinfo->bdrv;
1556 if (bdrv_has_snapshot(bs1)) {
1557 ret = bdrv_snapshot_goto(bs1, name);
1558 if (ret < 0) {
1559 if (bs != bs1)
1560 monitor_printf(mon, "Warning: ");
1561 switch(ret) {
1562 case -ENOTSUP:
1563 monitor_printf(mon,
1564 "Snapshots not supported on device '%s'\n",
1565 bdrv_get_device_name(bs1));
1566 break;
1567 case -ENOENT:
1568 monitor_printf(mon, "Could not find snapshot '%s' on "
1569 "device '%s'\n",
1570 name, bdrv_get_device_name(bs1));
1571 break;
1572 default:
1573 monitor_printf(mon, "Error %d while activating snapshot on"
1574 " '%s'\n", ret, bdrv_get_device_name(bs1));
1575 break;
1576 }
1577 /* fatal on snapshot block device */
1578 if (bs == bs1)
1579 return 0;
1580 }
1581 }
1582 }
1583
1584 /* Don't even try to load empty VM states */
1585 ret = bdrv_snapshot_find(bs, &sn, name);
1586 if ((ret >= 0) && (sn.vm_state_size == 0))
1587 return -EINVAL;
1588
1589 /* restore the VM state */
1590 f = qemu_fopen_bdrv(bs, 0);
1591 if (!f) {
1592 monitor_printf(mon, "Could not open VM state file\n");
1593 return -EINVAL;
1594 }
1595 ret = qemu_loadvm_state(f);
1596 qemu_fclose(f);
1597 if (ret < 0) {
1598 monitor_printf(mon, "Error %d while loading VM state\n", ret);
1599 return ret;
1600 }
1601 return 0;
1602 }
1603
1604 void do_delvm(Monitor *mon, const char *name)
1605 {
1606 DriveInfo *dinfo;
1607 BlockDriverState *bs, *bs1;
1608 int ret;
1609
1610 bs = get_bs_snapshots();
1611 if (!bs) {
1612 monitor_printf(mon, "No block device supports snapshots\n");
1613 return;
1614 }
1615
1616 TAILQ_FOREACH(dinfo, &drives, next) {
1617 bs1 = dinfo->bdrv;
1618 if (bdrv_has_snapshot(bs1)) {
1619 ret = bdrv_snapshot_delete(bs1, name);
1620 if (ret < 0) {
1621 if (ret == -ENOTSUP)
1622 monitor_printf(mon,
1623 "Snapshots not supported on device '%s'\n",
1624 bdrv_get_device_name(bs1));
1625 else
1626 monitor_printf(mon, "Error %d while deleting snapshot on "
1627 "'%s'\n", ret, bdrv_get_device_name(bs1));
1628 }
1629 }
1630 }
1631 }
1632
1633 void do_info_snapshots(Monitor *mon)
1634 {
1635 DriveInfo *dinfo;
1636 BlockDriverState *bs, *bs1;
1637 QEMUSnapshotInfo *sn_tab, *sn;
1638 int nb_sns, i;
1639 char buf[256];
1640
1641 bs = get_bs_snapshots();
1642 if (!bs) {
1643 monitor_printf(mon, "No available block device supports snapshots\n");
1644 return;
1645 }
1646 monitor_printf(mon, "Snapshot devices:");
1647 TAILQ_FOREACH(dinfo, &drives, next) {
1648 bs1 = dinfo->bdrv;
1649 if (bdrv_has_snapshot(bs1)) {
1650 if (bs == bs1)
1651 monitor_printf(mon, " %s", bdrv_get_device_name(bs1));
1652 }
1653 }
1654 monitor_printf(mon, "\n");
1655
1656 nb_sns = bdrv_snapshot_list(bs, &sn_tab);
1657 if (nb_sns < 0) {
1658 monitor_printf(mon, "bdrv_snapshot_list: error %d\n", nb_sns);
1659 return;
1660 }
1661 monitor_printf(mon, "Snapshot list (from %s):\n",
1662 bdrv_get_device_name(bs));
1663 monitor_printf(mon, "%s\n", bdrv_snapshot_dump(buf, sizeof(buf), NULL));
1664 for(i = 0; i < nb_sns; i++) {
1665 sn = &sn_tab[i];
1666 monitor_printf(mon, "%s\n", bdrv_snapshot_dump(buf, sizeof(buf), sn));
1667 }
1668 qemu_free(sn_tab);
1669 }