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CommitLineData
ad96090a
BS
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 <stdint.h>
25#include <stdarg.h>
b2e0a138 26#include <stdlib.h>
ad96090a 27#ifndef _WIN32
1c47cb16 28#include <sys/types.h>
ad96090a
BS
29#include <sys/mman.h>
30#endif
31#include "config.h"
83c9089e 32#include "monitor/monitor.h"
9c17d615 33#include "sysemu/sysemu.h"
1de7afc9
PB
34#include "qemu/bitops.h"
35#include "qemu/bitmap.h"
9c17d615 36#include "sysemu/arch_init.h"
ad96090a 37#include "audio/audio.h"
0d09e41a 38#include "hw/i386/pc.h"
a2cb15b0 39#include "hw/pci/pci.h"
0d09e41a 40#include "hw/audio/audio.h"
9c17d615 41#include "sysemu/kvm.h"
caf71f86 42#include "migration/migration.h"
0d09e41a 43#include "hw/i386/smbios.h"
022c62cb 44#include "exec/address-spaces.h"
0d09e41a 45#include "hw/audio/pcspk.h"
caf71f86 46#include "migration/page_cache.h"
1de7afc9 47#include "qemu/config-file.h"
d97326ee 48#include "qemu/error-report.h"
99afc91d 49#include "qmp-commands.h"
3c12193d 50#include "trace.h"
0d6d3c87 51#include "exec/cpu-all.h"
12291ec1 52#include "exec/ram_addr.h"
0445259b 53#include "hw/acpi/acpi.h"
aa8dc044 54#include "qemu/host-utils.h"
ad96090a 55
3a697f69
OW
56#ifdef DEBUG_ARCH_INIT
57#define DPRINTF(fmt, ...) \
58 do { fprintf(stdout, "arch_init: " fmt, ## __VA_ARGS__); } while (0)
59#else
60#define DPRINTF(fmt, ...) \
61 do { } while (0)
62#endif
63
ad96090a
BS
64#ifdef TARGET_SPARC
65int graphic_width = 1024;
66int graphic_height = 768;
67int graphic_depth = 8;
68#else
69int graphic_width = 800;
70int graphic_height = 600;
f1ff0e89 71int graphic_depth = 32;
ad96090a
BS
72#endif
73
ad96090a
BS
74
75#if defined(TARGET_ALPHA)
76#define QEMU_ARCH QEMU_ARCH_ALPHA
77#elif defined(TARGET_ARM)
78#define QEMU_ARCH QEMU_ARCH_ARM
79#elif defined(TARGET_CRIS)
80#define QEMU_ARCH QEMU_ARCH_CRIS
81#elif defined(TARGET_I386)
82#define QEMU_ARCH QEMU_ARCH_I386
83#elif defined(TARGET_M68K)
84#define QEMU_ARCH QEMU_ARCH_M68K
81ea0e13
MW
85#elif defined(TARGET_LM32)
86#define QEMU_ARCH QEMU_ARCH_LM32
ad96090a
BS
87#elif defined(TARGET_MICROBLAZE)
88#define QEMU_ARCH QEMU_ARCH_MICROBLAZE
89#elif defined(TARGET_MIPS)
90#define QEMU_ARCH QEMU_ARCH_MIPS
d15a9c23
AG
91#elif defined(TARGET_MOXIE)
92#define QEMU_ARCH QEMU_ARCH_MOXIE
e67db06e
JL
93#elif defined(TARGET_OPENRISC)
94#define QEMU_ARCH QEMU_ARCH_OPENRISC
ad96090a
BS
95#elif defined(TARGET_PPC)
96#define QEMU_ARCH QEMU_ARCH_PPC
97#elif defined(TARGET_S390X)
98#define QEMU_ARCH QEMU_ARCH_S390X
99#elif defined(TARGET_SH4)
100#define QEMU_ARCH QEMU_ARCH_SH4
101#elif defined(TARGET_SPARC)
102#define QEMU_ARCH QEMU_ARCH_SPARC
2328826b
MF
103#elif defined(TARGET_XTENSA)
104#define QEMU_ARCH QEMU_ARCH_XTENSA
4f23a1e6
GX
105#elif defined(TARGET_UNICORE32)
106#define QEMU_ARCH QEMU_ARCH_UNICORE32
48e06fe0
BK
107#elif defined(TARGET_TRICORE)
108#define QEMU_ARCH QEMU_ARCH_TRICORE
ad96090a
BS
109#endif
110
111const uint32_t arch_type = QEMU_ARCH;
7ca1dfad
CV
112static bool mig_throttle_on;
113static int dirty_rate_high_cnt;
114static void check_guest_throttling(void);
ad96090a 115
71411d35
C
116static uint64_t bitmap_sync_count;
117
ad96090a
BS
118/***********************************************************/
119/* ram save/restore */
120
d20878d2
YT
121#define RAM_SAVE_FLAG_FULL 0x01 /* Obsolete, not used anymore */
122#define RAM_SAVE_FLAG_COMPRESS 0x02
123#define RAM_SAVE_FLAG_MEM_SIZE 0x04
124#define RAM_SAVE_FLAG_PAGE 0x08
125#define RAM_SAVE_FLAG_EOS 0x10
126#define RAM_SAVE_FLAG_CONTINUE 0x20
17ad9b35 127#define RAM_SAVE_FLAG_XBZRLE 0x40
0033b8b4 128/* 0x80 is reserved in migration.h start with 0x100 next */
ad96090a 129
756557de
EH
130static struct defconfig_file {
131 const char *filename;
f29a5614
EH
132 /* Indicates it is an user config file (disabled by -no-user-config) */
133 bool userconfig;
756557de 134} default_config_files[] = {
f29a5614 135 { CONFIG_QEMU_CONFDIR "/qemu.conf", true },
2e59915d 136 { CONFIG_QEMU_CONFDIR "/target-" TARGET_NAME ".conf", true },
756557de
EH
137 { NULL }, /* end of list */
138};
139
6d3cb1f9 140static const uint8_t ZERO_TARGET_PAGE[TARGET_PAGE_SIZE];
756557de 141
f29a5614 142int qemu_read_default_config_files(bool userconfig)
b5a8fe5e
EH
143{
144 int ret;
756557de 145 struct defconfig_file *f;
b5a8fe5e 146
756557de 147 for (f = default_config_files; f->filename; f++) {
f29a5614
EH
148 if (!userconfig && f->userconfig) {
149 continue;
150 }
756557de
EH
151 ret = qemu_read_config_file(f->filename);
152 if (ret < 0 && ret != -ENOENT) {
153 return ret;
154 }
b5a8fe5e 155 }
4d8b3c63 156
b5a8fe5e
EH
157 return 0;
158}
159
dc3c26a4 160static inline bool is_zero_range(uint8_t *p, uint64_t size)
ad96090a 161{
dc3c26a4 162 return buffer_find_nonzero_offset(p, size) == size;
ad96090a
BS
163}
164
17ad9b35
OW
165/* struct contains XBZRLE cache and a static page
166 used by the compression */
167static struct {
168 /* buffer used for XBZRLE encoding */
169 uint8_t *encoded_buf;
170 /* buffer for storing page content */
171 uint8_t *current_buf;
fd8cec93 172 /* Cache for XBZRLE, Protected by lock. */
17ad9b35 173 PageCache *cache;
fd8cec93 174 QemuMutex lock;
d97326ee
DDAG
175} XBZRLE;
176
905f26f2
GA
177/* buffer used for XBZRLE decoding */
178static uint8_t *xbzrle_decoded_buf;
9e1ba4cc 179
fd8cec93
GA
180static void XBZRLE_cache_lock(void)
181{
182 if (migrate_use_xbzrle())
183 qemu_mutex_lock(&XBZRLE.lock);
184}
185
186static void XBZRLE_cache_unlock(void)
187{
188 if (migrate_use_xbzrle())
189 qemu_mutex_unlock(&XBZRLE.lock);
190}
191
d97326ee
DDAG
192/*
193 * called from qmp_migrate_set_cache_size in main thread, possibly while
194 * a migration is in progress.
195 * A running migration maybe using the cache and might finish during this
196 * call, hence changes to the cache are protected by XBZRLE.lock().
197 */
9e1ba4cc
OW
198int64_t xbzrle_cache_resize(int64_t new_size)
199{
d97326ee
DDAG
200 PageCache *new_cache;
201 int64_t ret;
fd8cec93 202
c91e681a
OW
203 if (new_size < TARGET_PAGE_SIZE) {
204 return -1;
205 }
206
d97326ee
DDAG
207 XBZRLE_cache_lock();
208
9e1ba4cc 209 if (XBZRLE.cache != NULL) {
fd8cec93 210 if (pow2floor(new_size) == migrate_xbzrle_cache_size()) {
d97326ee 211 goto out_new_size;
fd8cec93
GA
212 }
213 new_cache = cache_init(new_size / TARGET_PAGE_SIZE,
214 TARGET_PAGE_SIZE);
215 if (!new_cache) {
d97326ee
DDAG
216 error_report("Error creating cache");
217 ret = -1;
218 goto out;
fd8cec93 219 }
fd8cec93 220
d97326ee
DDAG
221 cache_fini(XBZRLE.cache);
222 XBZRLE.cache = new_cache;
9e1ba4cc 223 }
fd8cec93 224
d97326ee
DDAG
225out_new_size:
226 ret = pow2floor(new_size);
227out:
228 XBZRLE_cache_unlock();
229 return ret;
9e1ba4cc
OW
230}
231
004d4c10
OW
232/* accounting for migration statistics */
233typedef struct AccountingInfo {
234 uint64_t dup_pages;
f1c72795 235 uint64_t skipped_pages;
004d4c10
OW
236 uint64_t norm_pages;
237 uint64_t iterations;
f36d55af
OW
238 uint64_t xbzrle_bytes;
239 uint64_t xbzrle_pages;
240 uint64_t xbzrle_cache_miss;
8bc39233 241 double xbzrle_cache_miss_rate;
f36d55af 242 uint64_t xbzrle_overflows;
004d4c10
OW
243} AccountingInfo;
244
245static AccountingInfo acct_info;
246
247static void acct_clear(void)
248{
249 memset(&acct_info, 0, sizeof(acct_info));
250}
251
252uint64_t dup_mig_bytes_transferred(void)
253{
254 return acct_info.dup_pages * TARGET_PAGE_SIZE;
255}
256
257uint64_t dup_mig_pages_transferred(void)
258{
259 return acct_info.dup_pages;
260}
261
f1c72795
PL
262uint64_t skipped_mig_bytes_transferred(void)
263{
264 return acct_info.skipped_pages * TARGET_PAGE_SIZE;
265}
266
267uint64_t skipped_mig_pages_transferred(void)
268{
269 return acct_info.skipped_pages;
270}
271
004d4c10
OW
272uint64_t norm_mig_bytes_transferred(void)
273{
274 return acct_info.norm_pages * TARGET_PAGE_SIZE;
275}
276
277uint64_t norm_mig_pages_transferred(void)
278{
279 return acct_info.norm_pages;
280}
281
f36d55af
OW
282uint64_t xbzrle_mig_bytes_transferred(void)
283{
284 return acct_info.xbzrle_bytes;
285}
286
287uint64_t xbzrle_mig_pages_transferred(void)
288{
289 return acct_info.xbzrle_pages;
290}
291
292uint64_t xbzrle_mig_pages_cache_miss(void)
293{
294 return acct_info.xbzrle_cache_miss;
295}
296
8bc39233
C
297double xbzrle_mig_cache_miss_rate(void)
298{
299 return acct_info.xbzrle_cache_miss_rate;
300}
301
f36d55af
OW
302uint64_t xbzrle_mig_pages_overflow(void)
303{
304 return acct_info.xbzrle_overflows;
305}
306
3f7d7b09
JQ
307static size_t save_block_hdr(QEMUFile *f, RAMBlock *block, ram_addr_t offset,
308 int cont, int flag)
0c51f43d 309{
3f7d7b09
JQ
310 size_t size;
311
312 qemu_put_be64(f, offset | cont | flag);
313 size = 8;
0c51f43d 314
3f7d7b09
JQ
315 if (!cont) {
316 qemu_put_byte(f, strlen(block->idstr));
317 qemu_put_buffer(f, (uint8_t *)block->idstr,
318 strlen(block->idstr));
319 size += 1 + strlen(block->idstr);
320 }
321 return size;
0c51f43d
OW
322}
323
6d3cb1f9
DDAG
324/* This is the last block that we have visited serching for dirty pages
325 */
326static RAMBlock *last_seen_block;
327/* This is the last block from where we have sent data */
328static RAMBlock *last_sent_block;
329static ram_addr_t last_offset;
330static unsigned long *migration_bitmap;
331static uint64_t migration_dirty_pages;
332static uint32_t last_version;
333static bool ram_bulk_stage;
334
335/* Update the xbzrle cache to reflect a page that's been sent as all 0.
336 * The important thing is that a stale (not-yet-0'd) page be replaced
337 * by the new data.
338 * As a bonus, if the page wasn't in the cache it gets added so that
339 * when a small write is made into the 0'd page it gets XBZRLE sent
340 */
341static void xbzrle_cache_zero_page(ram_addr_t current_addr)
342{
343 if (ram_bulk_stage || !migrate_use_xbzrle()) {
344 return;
345 }
346
347 /* We don't care if this fails to allocate a new cache page
348 * as long as it updated an old one */
27af7d6e
C
349 cache_insert(XBZRLE.cache, current_addr, ZERO_TARGET_PAGE,
350 bitmap_sync_count);
6d3cb1f9
DDAG
351}
352
17ad9b35
OW
353#define ENCODING_FLAG_XBZRLE 0x1
354
1534ee93 355static int save_xbzrle_page(QEMUFile *f, uint8_t **current_data,
17ad9b35 356 ram_addr_t current_addr, RAMBlock *block,
dd051c72 357 ram_addr_t offset, int cont, bool last_stage)
17ad9b35
OW
358{
359 int encoded_len = 0, bytes_sent = -1;
360 uint8_t *prev_cached_page;
361
27af7d6e 362 if (!cache_is_cached(XBZRLE.cache, current_addr, bitmap_sync_count)) {
1534ee93 363 acct_info.xbzrle_cache_miss++;
dd051c72 364 if (!last_stage) {
27af7d6e
C
365 if (cache_insert(XBZRLE.cache, current_addr, *current_data,
366 bitmap_sync_count) == -1) {
89db9987 367 return -1;
1534ee93
C
368 } else {
369 /* update *current_data when the page has been
370 inserted into cache */
371 *current_data = get_cached_data(XBZRLE.cache, current_addr);
89db9987 372 }
dd051c72 373 }
17ad9b35
OW
374 return -1;
375 }
376
377 prev_cached_page = get_cached_data(XBZRLE.cache, current_addr);
378
379 /* save current buffer into memory */
1534ee93 380 memcpy(XBZRLE.current_buf, *current_data, TARGET_PAGE_SIZE);
17ad9b35
OW
381
382 /* XBZRLE encoding (if there is no overflow) */
383 encoded_len = xbzrle_encode_buffer(prev_cached_page, XBZRLE.current_buf,
384 TARGET_PAGE_SIZE, XBZRLE.encoded_buf,
385 TARGET_PAGE_SIZE);
386 if (encoded_len == 0) {
387 DPRINTF("Skipping unmodified page\n");
388 return 0;
389 } else if (encoded_len == -1) {
390 DPRINTF("Overflow\n");
f36d55af 391 acct_info.xbzrle_overflows++;
17ad9b35 392 /* update data in the cache */
1534ee93
C
393 if (!last_stage) {
394 memcpy(prev_cached_page, *current_data, TARGET_PAGE_SIZE);
395 *current_data = prev_cached_page;
396 }
17ad9b35
OW
397 return -1;
398 }
399
400 /* we need to update the data in the cache, in order to get the same data */
dd051c72
JQ
401 if (!last_stage) {
402 memcpy(prev_cached_page, XBZRLE.current_buf, TARGET_PAGE_SIZE);
403 }
17ad9b35
OW
404
405 /* Send XBZRLE based compressed page */
3f7d7b09 406 bytes_sent = save_block_hdr(f, block, offset, cont, RAM_SAVE_FLAG_XBZRLE);
17ad9b35
OW
407 qemu_put_byte(f, ENCODING_FLAG_XBZRLE);
408 qemu_put_be16(f, encoded_len);
409 qemu_put_buffer(f, XBZRLE.encoded_buf, encoded_len);
3f7d7b09 410 bytes_sent += encoded_len + 1 + 2;
f36d55af
OW
411 acct_info.xbzrle_pages++;
412 acct_info.xbzrle_bytes += bytes_sent;
17ad9b35
OW
413
414 return bytes_sent;
415}
416
4c8ae0f6
JQ
417static inline
418ram_addr_t migration_bitmap_find_and_reset_dirty(MemoryRegion *mr,
419 ram_addr_t start)
69268cde 420{
4c8ae0f6
JQ
421 unsigned long base = mr->ram_addr >> TARGET_PAGE_BITS;
422 unsigned long nr = base + (start >> TARGET_PAGE_BITS);
0851c9f7
MT
423 uint64_t mr_size = TARGET_PAGE_ALIGN(memory_region_size(mr));
424 unsigned long size = base + (mr_size >> TARGET_PAGE_BITS);
c6bf8e0e 425
70c8652b
PL
426 unsigned long next;
427
428 if (ram_bulk_stage && nr > base) {
429 next = nr + 1;
430 } else {
431 next = find_next_bit(migration_bitmap, size, nr);
432 }
69268cde 433
4c8ae0f6
JQ
434 if (next < size) {
435 clear_bit(next, migration_bitmap);
c6bf8e0e 436 migration_dirty_pages--;
69268cde 437 }
4c8ae0f6 438 return (next - base) << TARGET_PAGE_BITS;
69268cde
JQ
439}
440
791fa2a2 441static inline bool migration_bitmap_set_dirty(ram_addr_t addr)
e44d26c8 442{
c6bf8e0e 443 bool ret;
791fa2a2 444 int nr = addr >> TARGET_PAGE_BITS;
e44d26c8 445
c6bf8e0e
JQ
446 ret = test_and_set_bit(nr, migration_bitmap);
447
448 if (!ret) {
449 migration_dirty_pages++;
e44d26c8 450 }
c6bf8e0e 451 return ret;
e44d26c8
JQ
452}
453
791fa2a2
JQ
454static void migration_bitmap_sync_range(ram_addr_t start, ram_addr_t length)
455{
456 ram_addr_t addr;
aa8dc044
JQ
457 unsigned long page = BIT_WORD(start >> TARGET_PAGE_BITS);
458
459 /* start address is aligned at the start of a word? */
460 if (((page * BITS_PER_LONG) << TARGET_PAGE_BITS) == start) {
461 int k;
462 int nr = BITS_TO_LONGS(length >> TARGET_PAGE_BITS);
463 unsigned long *src = ram_list.dirty_memory[DIRTY_MEMORY_MIGRATION];
464
465 for (k = page; k < page + nr; k++) {
466 if (src[k]) {
467 unsigned long new_dirty;
468 new_dirty = ~migration_bitmap[k];
469 migration_bitmap[k] |= src[k];
470 new_dirty &= src[k];
471 migration_dirty_pages += ctpopl(new_dirty);
472 src[k] = 0;
473 }
474 }
475 } else {
476 for (addr = 0; addr < length; addr += TARGET_PAGE_SIZE) {
477 if (cpu_physical_memory_get_dirty(start + addr,
478 TARGET_PAGE_SIZE,
479 DIRTY_MEMORY_MIGRATION)) {
480 cpu_physical_memory_reset_dirty(start + addr,
481 TARGET_PAGE_SIZE,
482 DIRTY_MEMORY_MIGRATION);
483 migration_bitmap_set_dirty(start + addr);
484 }
791fa2a2
JQ
485 }
486 }
487}
488
489
32c835ba 490/* Needs iothread lock! */
6c1b663c
C
491/* Fix me: there are too many global variables used in migration process. */
492static int64_t start_time;
493static int64_t bytes_xfer_prev;
494static int64_t num_dirty_pages_period;
495
496static void migration_bitmap_sync_init(void)
497{
498 start_time = 0;
499 bytes_xfer_prev = 0;
500 num_dirty_pages_period = 0;
501}
32c835ba 502
dd2df737
JQ
503static void migration_bitmap_sync(void)
504{
c6bf8e0e 505 RAMBlock *block;
c6bf8e0e 506 uint64_t num_dirty_pages_init = migration_dirty_pages;
8d017193 507 MigrationState *s = migrate_get_current();
8d017193 508 int64_t end_time;
7ca1dfad 509 int64_t bytes_xfer_now;
8bc39233
C
510 static uint64_t xbzrle_cache_miss_prev;
511 static uint64_t iterations_prev;
7ca1dfad 512
71411d35
C
513 bitmap_sync_count++;
514
7ca1dfad
CV
515 if (!bytes_xfer_prev) {
516 bytes_xfer_prev = ram_bytes_transferred();
517 }
8d017193
JQ
518
519 if (!start_time) {
bc72ad67 520 start_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
8d017193 521 }
3c12193d
JQ
522
523 trace_migration_bitmap_sync_start();
1d671369 524 address_space_sync_dirty_bitmap(&address_space_memory);
c6bf8e0e 525
a3161038 526 QTAILQ_FOREACH(block, &ram_list.blocks, next) {
9b8424d5 527 migration_bitmap_sync_range(block->mr->ram_addr, block->used_length);
c6bf8e0e
JQ
528 }
529 trace_migration_bitmap_sync_end(migration_dirty_pages
3c12193d 530 - num_dirty_pages_init);
8d017193 531 num_dirty_pages_period += migration_dirty_pages - num_dirty_pages_init;
bc72ad67 532 end_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME);
8d017193
JQ
533
534 /* more than 1 second = 1000 millisecons */
535 if (end_time > start_time + 1000) {
7ca1dfad
CV
536 if (migrate_auto_converge()) {
537 /* The following detection logic can be refined later. For now:
538 Check to see if the dirtied bytes is 50% more than the approx.
539 amount of bytes that just got transferred since the last time we
540 were in this routine. If that happens >N times (for now N==4)
541 we turn on the throttle down logic */
542 bytes_xfer_now = ram_bytes_transferred();
543 if (s->dirty_pages_rate &&
544 (num_dirty_pages_period * TARGET_PAGE_SIZE >
545 (bytes_xfer_now - bytes_xfer_prev)/2) &&
546 (dirty_rate_high_cnt++ > 4)) {
547 trace_migration_throttle();
548 mig_throttle_on = true;
549 dirty_rate_high_cnt = 0;
550 }
551 bytes_xfer_prev = bytes_xfer_now;
552 } else {
553 mig_throttle_on = false;
554 }
8bc39233
C
555 if (migrate_use_xbzrle()) {
556 if (iterations_prev != 0) {
557 acct_info.xbzrle_cache_miss_rate =
558 (double)(acct_info.xbzrle_cache_miss -
559 xbzrle_cache_miss_prev) /
560 (acct_info.iterations - iterations_prev);
561 }
562 iterations_prev = acct_info.iterations;
563 xbzrle_cache_miss_prev = acct_info.xbzrle_cache_miss;
564 }
8d017193
JQ
565 s->dirty_pages_rate = num_dirty_pages_period * 1000
566 / (end_time - start_time);
90f8ae72 567 s->dirty_bytes_rate = s->dirty_pages_rate * TARGET_PAGE_SIZE;
8d017193
JQ
568 start_time = end_time;
569 num_dirty_pages_period = 0;
58570ed8 570 s->dirty_sync_count = bitmap_sync_count;
8d017193 571 }
dd2df737
JQ
572}
573
6c779f22 574/*
14bcfdc7
DDAG
575 * ram_save_page: Send the given page to the stream
576 *
577 * Returns: Number of bytes written.
578 */
579static int ram_save_page(QEMUFile *f, RAMBlock* block, ram_addr_t offset,
580 bool last_stage)
581{
582 int bytes_sent;
583 int cont;
584 ram_addr_t current_addr;
585 MemoryRegion *mr = block->mr;
586 uint8_t *p;
587 int ret;
588 bool send_async = true;
589
590 cont = (block == last_sent_block) ? RAM_SAVE_FLAG_CONTINUE : 0;
591
592 p = memory_region_get_ram_ptr(mr) + offset;
593
594 /* In doubt sent page as normal */
595 bytes_sent = -1;
596 ret = ram_control_save_page(f, block->offset,
597 offset, TARGET_PAGE_SIZE, &bytes_sent);
598
599 XBZRLE_cache_lock();
600
601 current_addr = block->offset + offset;
602 if (ret != RAM_SAVE_CONTROL_NOT_SUPP) {
603 if (ret != RAM_SAVE_CONTROL_DELAYED) {
604 if (bytes_sent > 0) {
605 acct_info.norm_pages++;
606 } else if (bytes_sent == 0) {
607 acct_info.dup_pages++;
608 }
609 }
610 } else if (is_zero_range(p, TARGET_PAGE_SIZE)) {
611 acct_info.dup_pages++;
612 bytes_sent = save_block_hdr(f, block, offset, cont,
613 RAM_SAVE_FLAG_COMPRESS);
614 qemu_put_byte(f, 0);
615 bytes_sent++;
616 /* Must let xbzrle know, otherwise a previous (now 0'd) cached
617 * page would be stale
618 */
619 xbzrle_cache_zero_page(current_addr);
620 } else if (!ram_bulk_stage && migrate_use_xbzrle()) {
621 bytes_sent = save_xbzrle_page(f, &p, current_addr, block,
622 offset, cont, last_stage);
623 if (!last_stage) {
624 /* Can't send this cached data async, since the cache page
625 * might get updated before it gets to the wire
626 */
627 send_async = false;
628 }
629 }
630
631 /* XBZRLE overflow or normal page */
632 if (bytes_sent == -1) {
633 bytes_sent = save_block_hdr(f, block, offset, cont, RAM_SAVE_FLAG_PAGE);
634 if (send_async) {
635 qemu_put_buffer_async(f, p, TARGET_PAGE_SIZE);
636 } else {
637 qemu_put_buffer(f, p, TARGET_PAGE_SIZE);
638 }
639 bytes_sent += TARGET_PAGE_SIZE;
640 acct_info.norm_pages++;
641 }
642
643 XBZRLE_cache_unlock();
644
645 return bytes_sent;
646}
647
648/*
649 * ram_find_and_save_block: Finds a page to send and sends it to f
6c779f22 650 *
b823ceaa
JQ
651 * Returns: The number of bytes written.
652 * 0 means no dirty pages
6c779f22
OW
653 */
654
14bcfdc7 655static int ram_find_and_save_block(QEMUFile *f, bool last_stage)
ad96090a 656{
b23a9a5c 657 RAMBlock *block = last_seen_block;
e44359c3 658 ram_addr_t offset = last_offset;
4c8ae0f6 659 bool complete_round = false;
b823ceaa 660 int bytes_sent = 0;
71c510e2 661 MemoryRegion *mr;
ad96090a 662
e44359c3 663 if (!block)
a3161038 664 block = QTAILQ_FIRST(&ram_list.blocks);
e44359c3 665
4c8ae0f6 666 while (true) {
71c510e2 667 mr = block->mr;
4c8ae0f6
JQ
668 offset = migration_bitmap_find_and_reset_dirty(mr, offset);
669 if (complete_round && block == last_seen_block &&
670 offset >= last_offset) {
671 break;
672 }
9b8424d5 673 if (offset >= block->used_length) {
4c8ae0f6
JQ
674 offset = 0;
675 block = QTAILQ_NEXT(block, next);
676 if (!block) {
677 block = QTAILQ_FIRST(&ram_list.blocks);
678 complete_round = true;
78d07ae7 679 ram_bulk_stage = false;
4c8ae0f6
JQ
680 }
681 } else {
14bcfdc7 682 bytes_sent = ram_save_page(f, block, offset, last_stage);
17ad9b35 683
17ad9b35 684 /* if page is unmodified, continue to the next */
b823ceaa 685 if (bytes_sent > 0) {
5f718a15 686 last_sent_block = block;
17ad9b35
OW
687 break;
688 }
ad96090a 689 }
4c8ae0f6 690 }
b23a9a5c 691 last_seen_block = block;
e44359c3 692 last_offset = offset;
ad96090a 693
3fc250b4 694 return bytes_sent;
ad96090a
BS
695}
696
697static uint64_t bytes_transferred;
698
2b0ce079
MH
699void acct_update_position(QEMUFile *f, size_t size, bool zero)
700{
701 uint64_t pages = size / TARGET_PAGE_SIZE;
702 if (zero) {
703 acct_info.dup_pages += pages;
704 } else {
705 acct_info.norm_pages += pages;
706 bytes_transferred += size;
707 qemu_update_position(f, size);
708 }
709}
710
ad96090a
BS
711static ram_addr_t ram_save_remaining(void)
712{
c6bf8e0e 713 return migration_dirty_pages;
ad96090a
BS
714}
715
716uint64_t ram_bytes_remaining(void)
717{
718 return ram_save_remaining() * TARGET_PAGE_SIZE;
719}
720
721uint64_t ram_bytes_transferred(void)
722{
723 return bytes_transferred;
724}
725
726uint64_t ram_bytes_total(void)
727{
d17b5288
AW
728 RAMBlock *block;
729 uint64_t total = 0;
730
a3161038 731 QTAILQ_FOREACH(block, &ram_list.blocks, next)
9b8424d5 732 total += block->used_length;
d17b5288
AW
733
734 return total;
ad96090a
BS
735}
736
905f26f2
GA
737void free_xbzrle_decoded_buf(void)
738{
739 g_free(xbzrle_decoded_buf);
740 xbzrle_decoded_buf = NULL;
741}
742
8e21cd32
OW
743static void migration_end(void)
744{
244eaa75
PB
745 if (migration_bitmap) {
746 memory_global_dirty_log_stop();
747 g_free(migration_bitmap);
748 migration_bitmap = NULL;
749 }
17ad9b35 750
fd8cec93 751 XBZRLE_cache_lock();
244eaa75 752 if (XBZRLE.cache) {
17ad9b35 753 cache_fini(XBZRLE.cache);
17ad9b35
OW
754 g_free(XBZRLE.encoded_buf);
755 g_free(XBZRLE.current_buf);
17ad9b35 756 XBZRLE.cache = NULL;
f6c6483b
OW
757 XBZRLE.encoded_buf = NULL;
758 XBZRLE.current_buf = NULL;
17ad9b35 759 }
fd8cec93 760 XBZRLE_cache_unlock();
8e21cd32
OW
761}
762
9b5bfab0
JQ
763static void ram_migration_cancel(void *opaque)
764{
765 migration_end();
766}
767
5a170775
JQ
768static void reset_ram_globals(void)
769{
b23a9a5c 770 last_seen_block = NULL;
5f718a15 771 last_sent_block = NULL;
5a170775 772 last_offset = 0;
f798b07f 773 last_version = ram_list.version;
78d07ae7 774 ram_bulk_stage = true;
5a170775
JQ
775}
776
4508bd9e
JQ
777#define MAX_WAIT 50 /* ms, half buffered_file limit */
778
d1315aac 779static int ram_save_setup(QEMUFile *f, void *opaque)
ad96090a 780{
d1315aac 781 RAMBlock *block;
e30d1d8c 782 int64_t ram_bitmap_pages; /* Size of bitmap in pages, including gaps */
c6bf8e0e 783
7ca1dfad
CV
784 mig_throttle_on = false;
785 dirty_rate_high_cnt = 0;
71411d35 786 bitmap_sync_count = 0;
6c1b663c 787 migration_bitmap_sync_init();
ad96090a 788
17ad9b35 789 if (migrate_use_xbzrle()) {
d97326ee 790 XBZRLE_cache_lock();
17ad9b35
OW
791 XBZRLE.cache = cache_init(migrate_xbzrle_cache_size() /
792 TARGET_PAGE_SIZE,
793 TARGET_PAGE_SIZE);
794 if (!XBZRLE.cache) {
d97326ee
DDAG
795 XBZRLE_cache_unlock();
796 error_report("Error creating cache");
17ad9b35
OW
797 return -1;
798 }
d97326ee 799 XBZRLE_cache_unlock();
a17b2fd3
OW
800
801 /* We prefer not to abort if there is no memory */
802 XBZRLE.encoded_buf = g_try_malloc0(TARGET_PAGE_SIZE);
803 if (!XBZRLE.encoded_buf) {
d97326ee 804 error_report("Error allocating encoded_buf");
a17b2fd3
OW
805 return -1;
806 }
807
808 XBZRLE.current_buf = g_try_malloc(TARGET_PAGE_SIZE);
809 if (!XBZRLE.current_buf) {
d97326ee 810 error_report("Error allocating current_buf");
a17b2fd3
OW
811 g_free(XBZRLE.encoded_buf);
812 XBZRLE.encoded_buf = NULL;
813 return -1;
814 }
815
004d4c10 816 acct_clear();
17ad9b35
OW
817 }
818
9b095037
PB
819 qemu_mutex_lock_iothread();
820 qemu_mutex_lock_ramlist();
821 bytes_transferred = 0;
822 reset_ram_globals();
823
e30d1d8c
DDAG
824 ram_bitmap_pages = last_ram_offset() >> TARGET_PAGE_BITS;
825 migration_bitmap = bitmap_new(ram_bitmap_pages);
826 bitmap_set(migration_bitmap, 0, ram_bitmap_pages);
827
828 /*
829 * Count the total number of pages used by ram blocks not including any
830 * gaps due to alignment or unplugs.
831 */
832 migration_dirty_pages = 0;
833 QTAILQ_FOREACH(block, &ram_list.blocks, next) {
834 uint64_t block_pages;
835
9b8424d5 836 block_pages = block->used_length >> TARGET_PAGE_BITS;
e30d1d8c
DDAG
837 migration_dirty_pages += block_pages;
838 }
839
d1315aac 840 memory_global_dirty_log_start();
c6bf8e0e 841 migration_bitmap_sync();
9b095037 842 qemu_mutex_unlock_iothread();
ad96090a 843
d1315aac 844 qemu_put_be64(f, ram_bytes_total() | RAM_SAVE_FLAG_MEM_SIZE);
97ab12d4 845
a3161038 846 QTAILQ_FOREACH(block, &ram_list.blocks, next) {
d1315aac
JQ
847 qemu_put_byte(f, strlen(block->idstr));
848 qemu_put_buffer(f, (uint8_t *)block->idstr, strlen(block->idstr));
9b8424d5 849 qemu_put_be64(f, block->used_length);
ad96090a
BS
850 }
851
b2a8658e 852 qemu_mutex_unlock_ramlist();
0033b8b4
MH
853
854 ram_control_before_iterate(f, RAM_CONTROL_SETUP);
855 ram_control_after_iterate(f, RAM_CONTROL_SETUP);
856
d1315aac
JQ
857 qemu_put_be64(f, RAM_SAVE_FLAG_EOS);
858
859 return 0;
860}
861
16310a3c 862static int ram_save_iterate(QEMUFile *f, void *opaque)
d1315aac 863{
d1315aac
JQ
864 int ret;
865 int i;
e4ed1541 866 int64_t t0;
b823ceaa 867 int total_sent = 0;
d1315aac 868
b2a8658e
UD
869 qemu_mutex_lock_ramlist();
870
f798b07f
UD
871 if (ram_list.version != last_version) {
872 reset_ram_globals();
873 }
874
0033b8b4
MH
875 ram_control_before_iterate(f, RAM_CONTROL_ROUND);
876
bc72ad67 877 t0 = qemu_clock_get_ns(QEMU_CLOCK_REALTIME);
4508bd9e 878 i = 0;
2975725f 879 while ((ret = qemu_file_rate_limit(f)) == 0) {
3fc250b4 880 int bytes_sent;
ad96090a 881
14bcfdc7 882 bytes_sent = ram_find_and_save_block(f, false);
6c779f22 883 /* no more blocks to sent */
b823ceaa 884 if (bytes_sent == 0) {
ad96090a
BS
885 break;
886 }
b823ceaa 887 total_sent += bytes_sent;
004d4c10 888 acct_info.iterations++;
7ca1dfad 889 check_guest_throttling();
4508bd9e
JQ
890 /* we want to check in the 1st loop, just in case it was the 1st time
891 and we had to sync the dirty bitmap.
892 qemu_get_clock_ns() is a bit expensive, so we only check each some
893 iterations
894 */
895 if ((i & 63) == 0) {
bc72ad67 896 uint64_t t1 = (qemu_clock_get_ns(QEMU_CLOCK_REALTIME) - t0) / 1000000;
4508bd9e 897 if (t1 > MAX_WAIT) {
ef37a699 898 DPRINTF("big wait: %" PRIu64 " milliseconds, %d iterations\n",
4508bd9e
JQ
899 t1, i);
900 break;
901 }
902 }
903 i++;
ad96090a
BS
904 }
905
fb3409de
PB
906 qemu_mutex_unlock_ramlist();
907
0033b8b4
MH
908 /*
909 * Must occur before EOS (or any QEMUFile operation)
910 * because of RDMA protocol.
911 */
912 ram_control_after_iterate(f, RAM_CONTROL_ROUND);
913
6cd0beda
LL
914 bytes_transferred += total_sent;
915
916 /*
917 * Do not count these 8 bytes into total_sent, so that we can
918 * return 0 if no page had been dirtied.
919 */
920 qemu_put_be64(f, RAM_SAVE_FLAG_EOS);
921 bytes_transferred += 8;
922
923 ret = qemu_file_get_error(f);
2975725f
JQ
924 if (ret < 0) {
925 return ret;
926 }
927
b823ceaa 928 return total_sent;
16310a3c
JQ
929}
930
931static int ram_save_complete(QEMUFile *f, void *opaque)
932{
b2a8658e 933 qemu_mutex_lock_ramlist();
9c339485 934 migration_bitmap_sync();
b2a8658e 935
0033b8b4
MH
936 ram_control_before_iterate(f, RAM_CONTROL_FINISH);
937
ad96090a 938 /* try transferring iterative blocks of memory */
3a697f69 939
16310a3c 940 /* flush all remaining blocks regardless of rate limiting */
6c779f22 941 while (true) {
3fc250b4
PR
942 int bytes_sent;
943
14bcfdc7 944 bytes_sent = ram_find_and_save_block(f, true);
6c779f22 945 /* no more blocks to sent */
b823ceaa 946 if (bytes_sent == 0) {
6c779f22 947 break;
ad96090a 948 }
16310a3c 949 bytes_transferred += bytes_sent;
ad96090a 950 }
0033b8b4
MH
951
952 ram_control_after_iterate(f, RAM_CONTROL_FINISH);
244eaa75 953 migration_end();
ad96090a 954
b2a8658e 955 qemu_mutex_unlock_ramlist();
ad96090a
BS
956 qemu_put_be64(f, RAM_SAVE_FLAG_EOS);
957
5b3c9638 958 return 0;
ad96090a
BS
959}
960
e4ed1541
JQ
961static uint64_t ram_save_pending(QEMUFile *f, void *opaque, uint64_t max_size)
962{
963 uint64_t remaining_size;
964
965 remaining_size = ram_save_remaining() * TARGET_PAGE_SIZE;
966
967 if (remaining_size < max_size) {
32c835ba 968 qemu_mutex_lock_iothread();
e4ed1541 969 migration_bitmap_sync();
32c835ba 970 qemu_mutex_unlock_iothread();
e4ed1541
JQ
971 remaining_size = ram_save_remaining() * TARGET_PAGE_SIZE;
972 }
973 return remaining_size;
974}
975
17ad9b35
OW
976static int load_xbzrle(QEMUFile *f, ram_addr_t addr, void *host)
977{
17ad9b35
OW
978 unsigned int xh_len;
979 int xh_flags;
980
905f26f2
GA
981 if (!xbzrle_decoded_buf) {
982 xbzrle_decoded_buf = g_malloc(TARGET_PAGE_SIZE);
17ad9b35
OW
983 }
984
985 /* extract RLE header */
986 xh_flags = qemu_get_byte(f);
987 xh_len = qemu_get_be16(f);
988
989 if (xh_flags != ENCODING_FLAG_XBZRLE) {
0971f1be 990 error_report("Failed to load XBZRLE page - wrong compression!");
17ad9b35
OW
991 return -1;
992 }
993
994 if (xh_len > TARGET_PAGE_SIZE) {
0971f1be 995 error_report("Failed to load XBZRLE page - len overflow!");
17ad9b35
OW
996 return -1;
997 }
998 /* load data and decode */
905f26f2 999 qemu_get_buffer(f, xbzrle_decoded_buf, xh_len);
17ad9b35
OW
1000
1001 /* decode RLE */
fb626663
CG
1002 if (xbzrle_decode_buffer(xbzrle_decoded_buf, xh_len, host,
1003 TARGET_PAGE_SIZE) == -1) {
0971f1be 1004 error_report("Failed to load XBZRLE page - decode error!");
fb626663 1005 return -1;
17ad9b35
OW
1006 }
1007
fb626663 1008 return 0;
17ad9b35
OW
1009}
1010
a55bbe31
AW
1011static inline void *host_from_stream_offset(QEMUFile *f,
1012 ram_addr_t offset,
1013 int flags)
1014{
1015 static RAMBlock *block = NULL;
1016 char id[256];
1017 uint8_t len;
1018
1019 if (flags & RAM_SAVE_FLAG_CONTINUE) {
9b8424d5 1020 if (!block || block->max_length <= offset) {
0971f1be 1021 error_report("Ack, bad migration stream!");
a55bbe31
AW
1022 return NULL;
1023 }
1024
dc94a7ed 1025 return memory_region_get_ram_ptr(block->mr) + offset;
a55bbe31
AW
1026 }
1027
1028 len = qemu_get_byte(f);
1029 qemu_get_buffer(f, (uint8_t *)id, len);
1030 id[len] = 0;
1031
a3161038 1032 QTAILQ_FOREACH(block, &ram_list.blocks, next) {
9b8424d5
MT
1033 if (!strncmp(id, block->idstr, sizeof(id)) &&
1034 block->max_length > offset) {
dc94a7ed 1035 return memory_region_get_ram_ptr(block->mr) + offset;
0be839a2 1036 }
a55bbe31
AW
1037 }
1038
0971f1be 1039 error_report("Can't find block %s!", id);
a55bbe31
AW
1040 return NULL;
1041}
1042
44c3b58c
MH
1043/*
1044 * If a page (or a whole RDMA chunk) has been
1045 * determined to be zero, then zap it.
1046 */
1047void ram_handle_compressed(void *host, uint8_t ch, uint64_t size)
1048{
d613a56f 1049 if (ch != 0 || !is_zero_range(host, size)) {
44c3b58c 1050 memset(host, ch, size);
44c3b58c
MH
1051 }
1052}
1053
7908c78d 1054static int ram_load(QEMUFile *f, void *opaque, int version_id)
ad96090a 1055{
5b0e9dd4 1056 int flags = 0, ret = 0;
3a697f69
OW
1057 static uint64_t seq_iter;
1058
1059 seq_iter++;
ad96090a 1060
21a246a4 1061 if (version_id != 4) {
4798fe55 1062 ret = -EINVAL;
ad96090a
BS
1063 }
1064
5b0e9dd4
PL
1065 while (!ret && !(flags & RAM_SAVE_FLAG_EOS)) {
1066 ram_addr_t addr, total_ram_bytes;
1067 void *host;
1068 uint8_t ch;
ad96090a 1069
5b0e9dd4 1070 addr = qemu_get_be64(f);
ad96090a
BS
1071 flags = addr & ~TARGET_PAGE_MASK;
1072 addr &= TARGET_PAGE_MASK;
1073
5b0e9dd4
PL
1074 switch (flags & ~RAM_SAVE_FLAG_CONTINUE) {
1075 case RAM_SAVE_FLAG_MEM_SIZE:
21a246a4 1076 /* Synchronize RAM block list */
5b0e9dd4
PL
1077 total_ram_bytes = addr;
1078 while (!ret && total_ram_bytes) {
21a246a4
C
1079 RAMBlock *block;
1080 uint8_t len;
5b0e9dd4
PL
1081 char id[256];
1082 ram_addr_t length;
21a246a4
C
1083
1084 len = qemu_get_byte(f);
1085 qemu_get_buffer(f, (uint8_t *)id, len);
1086 id[len] = 0;
1087 length = qemu_get_be64(f);
1088
1089 QTAILQ_FOREACH(block, &ram_list.blocks, next) {
1090 if (!strncmp(id, block->idstr, sizeof(id))) {
b0cc3f83
MT
1091 if (length != block->used_length) {
1092 Error *local_err = NULL;
1093
1094 ret = qemu_ram_resize(block->offset, length, &local_err);
1095 if (local_err) {
565f65d2 1096 error_report_err(local_err);
b0cc3f83 1097 }
97ab12d4 1098 }
21a246a4 1099 break;
97ab12d4 1100 }
21a246a4 1101 }
97ab12d4 1102
21a246a4 1103 if (!block) {
0971f1be
LT
1104 error_report("Unknown ramblock \"%s\", cannot "
1105 "accept migration", id);
21a246a4 1106 ret = -EINVAL;
db80face 1107 }
21a246a4
C
1108
1109 total_ram_bytes -= length;
ad96090a 1110 }
5b0e9dd4
PL
1111 break;
1112 case RAM_SAVE_FLAG_COMPRESS:
f09f2189 1113 host = host_from_stream_offset(f, addr, flags);
492fb99c 1114 if (!host) {
db80face 1115 error_report("Illegal RAM offset " RAM_ADDR_FMT, addr);
4798fe55 1116 ret = -EINVAL;
db80face 1117 break;
492fb99c 1118 }
97ab12d4 1119
97ab12d4 1120 ch = qemu_get_byte(f);
44c3b58c 1121 ram_handle_compressed(host, ch, TARGET_PAGE_SIZE);
5b0e9dd4
PL
1122 break;
1123 case RAM_SAVE_FLAG_PAGE:
f09f2189 1124 host = host_from_stream_offset(f, addr, flags);
0ff1f9f5 1125 if (!host) {
db80face 1126 error_report("Illegal RAM offset " RAM_ADDR_FMT, addr);
4798fe55 1127 ret = -EINVAL;
db80face 1128 break;
0ff1f9f5 1129 }
97ab12d4 1130
97ab12d4 1131 qemu_get_buffer(f, host, TARGET_PAGE_SIZE);
5b0e9dd4
PL
1132 break;
1133 case RAM_SAVE_FLAG_XBZRLE:
1134 host = host_from_stream_offset(f, addr, flags);
17ad9b35 1135 if (!host) {
db80face 1136 error_report("Illegal RAM offset " RAM_ADDR_FMT, addr);
4798fe55 1137 ret = -EINVAL;
db80face 1138 break;
17ad9b35
OW
1139 }
1140
1141 if (load_xbzrle(f, addr, host) < 0) {
db80face
PL
1142 error_report("Failed to decompress XBZRLE page at "
1143 RAM_ADDR_FMT, addr);
17ad9b35 1144 ret = -EINVAL;
db80face 1145 break;
17ad9b35 1146 }
db80face 1147 break;
5b0e9dd4
PL
1148 case RAM_SAVE_FLAG_EOS:
1149 /* normal exit */
db80face 1150 break;
5b0e9dd4
PL
1151 default:
1152 if (flags & RAM_SAVE_FLAG_HOOK) {
1153 ram_control_load_hook(f, flags);
1154 } else {
1155 error_report("Unknown combination of migration flags: %#x",
1156 flags);
1157 ret = -EINVAL;
1158 }
1159 }
1160 if (!ret) {
1161 ret = qemu_file_get_error(f);
ad96090a 1162 }
db80face 1163 }
ad96090a 1164
ef37a699
IM
1165 DPRINTF("Completed load of VM with exit code %d seq iteration "
1166 "%" PRIu64 "\n", ret, seq_iter);
3a697f69 1167 return ret;
ad96090a
BS
1168}
1169
0d6ab3ab 1170static SaveVMHandlers savevm_ram_handlers = {
d1315aac 1171 .save_live_setup = ram_save_setup,
16310a3c
JQ
1172 .save_live_iterate = ram_save_iterate,
1173 .save_live_complete = ram_save_complete,
e4ed1541 1174 .save_live_pending = ram_save_pending,
7908c78d 1175 .load_state = ram_load,
9b5bfab0 1176 .cancel = ram_migration_cancel,
7908c78d
JQ
1177};
1178
0d6ab3ab
DDAG
1179void ram_mig_init(void)
1180{
d97326ee 1181 qemu_mutex_init(&XBZRLE.lock);
0d6ab3ab
DDAG
1182 register_savevm_live(NULL, "ram", 0, 4, &savevm_ram_handlers, NULL);
1183}
1184
0dfa5ef9
IY
1185struct soundhw {
1186 const char *name;
1187 const char *descr;
1188 int enabled;
1189 int isa;
1190 union {
4a0f031d 1191 int (*init_isa) (ISABus *bus);
0dfa5ef9
IY
1192 int (*init_pci) (PCIBus *bus);
1193 } init;
1194};
1195
36cd6f6f
PB
1196static struct soundhw soundhw[9];
1197static int soundhw_count;
ad96090a 1198
36cd6f6f
PB
1199void isa_register_soundhw(const char *name, const char *descr,
1200 int (*init_isa)(ISABus *bus))
1201{
1202 assert(soundhw_count < ARRAY_SIZE(soundhw) - 1);
1203 soundhw[soundhw_count].name = name;
1204 soundhw[soundhw_count].descr = descr;
1205 soundhw[soundhw_count].isa = 1;
1206 soundhw[soundhw_count].init.init_isa = init_isa;
1207 soundhw_count++;
1208}
ad96090a 1209
36cd6f6f
PB
1210void pci_register_soundhw(const char *name, const char *descr,
1211 int (*init_pci)(PCIBus *bus))
1212{
1213 assert(soundhw_count < ARRAY_SIZE(soundhw) - 1);
1214 soundhw[soundhw_count].name = name;
1215 soundhw[soundhw_count].descr = descr;
1216 soundhw[soundhw_count].isa = 0;
1217 soundhw[soundhw_count].init.init_pci = init_pci;
1218 soundhw_count++;
1219}
ad96090a
BS
1220
1221void select_soundhw(const char *optarg)
1222{
1223 struct soundhw *c;
1224
c8057f95 1225 if (is_help_option(optarg)) {
ad96090a
BS
1226 show_valid_cards:
1227
36cd6f6f
PB
1228 if (soundhw_count) {
1229 printf("Valid sound card names (comma separated):\n");
1230 for (c = soundhw; c->name; ++c) {
1231 printf ("%-11s %s\n", c->name, c->descr);
1232 }
1233 printf("\n-soundhw all will enable all of the above\n");
1234 } else {
1235 printf("Machine has no user-selectable audio hardware "
1236 "(it may or may not have always-present audio hardware).\n");
ad96090a 1237 }
c8057f95 1238 exit(!is_help_option(optarg));
ad96090a
BS
1239 }
1240 else {
1241 size_t l;
1242 const char *p;
1243 char *e;
1244 int bad_card = 0;
1245
1246 if (!strcmp(optarg, "all")) {
1247 for (c = soundhw; c->name; ++c) {
1248 c->enabled = 1;
1249 }
1250 return;
1251 }
1252
1253 p = optarg;
1254 while (*p) {
1255 e = strchr(p, ',');
1256 l = !e ? strlen(p) : (size_t) (e - p);
1257
1258 for (c = soundhw; c->name; ++c) {
1259 if (!strncmp(c->name, p, l) && !c->name[l]) {
1260 c->enabled = 1;
1261 break;
1262 }
1263 }
1264
1265 if (!c->name) {
1266 if (l > 80) {
0971f1be 1267 error_report("Unknown sound card name (too big to show)");
ad96090a
BS
1268 }
1269 else {
0971f1be
LT
1270 error_report("Unknown sound card name `%.*s'",
1271 (int) l, p);
ad96090a
BS
1272 }
1273 bad_card = 1;
1274 }
1275 p += l + (e != NULL);
1276 }
1277
1278 if (bad_card) {
1279 goto show_valid_cards;
1280 }
1281 }
1282}
0dfa5ef9 1283
f81222bc 1284void audio_init(void)
0dfa5ef9
IY
1285{
1286 struct soundhw *c;
f81222bc
PB
1287 ISABus *isa_bus = (ISABus *) object_resolve_path_type("", TYPE_ISA_BUS, NULL);
1288 PCIBus *pci_bus = (PCIBus *) object_resolve_path_type("", TYPE_PCI_BUS, NULL);
0dfa5ef9
IY
1289
1290 for (c = soundhw; c->name; ++c) {
1291 if (c->enabled) {
1292 if (c->isa) {
f81222bc 1293 if (!isa_bus) {
0971f1be 1294 error_report("ISA bus not available for %s", c->name);
f81222bc 1295 exit(1);
0dfa5ef9 1296 }
f81222bc 1297 c->init.init_isa(isa_bus);
0dfa5ef9 1298 } else {
f81222bc 1299 if (!pci_bus) {
0971f1be 1300 error_report("PCI bus not available for %s", c->name);
f81222bc 1301 exit(1);
0dfa5ef9 1302 }
f81222bc 1303 c->init.init_pci(pci_bus);
0dfa5ef9
IY
1304 }
1305 }
1306 }
1307}
ad96090a
BS
1308
1309int qemu_uuid_parse(const char *str, uint8_t *uuid)
1310{
1311 int ret;
1312
1313 if (strlen(str) != 36) {
1314 return -1;
1315 }
1316
1317 ret = sscanf(str, UUID_FMT, &uuid[0], &uuid[1], &uuid[2], &uuid[3],
1318 &uuid[4], &uuid[5], &uuid[6], &uuid[7], &uuid[8], &uuid[9],
1319 &uuid[10], &uuid[11], &uuid[12], &uuid[13], &uuid[14],
1320 &uuid[15]);
1321
1322 if (ret != 16) {
1323 return -1;
1324 }
ad96090a
BS
1325 return 0;
1326}
1327
0c764a9d 1328void do_acpitable_option(const QemuOpts *opts)
ad96090a
BS
1329{
1330#ifdef TARGET_I386
23084327
LE
1331 Error *err = NULL;
1332
1333 acpi_table_add(opts, &err);
1334 if (err) {
4a44d85e
SA
1335 error_report("Wrong acpi table provided: %s",
1336 error_get_pretty(err));
23084327 1337 error_free(err);
ad96090a
BS
1338 exit(1);
1339 }
1340#endif
1341}
1342
4f953d2f 1343void do_smbios_option(QemuOpts *opts)
ad96090a
BS
1344{
1345#ifdef TARGET_I386
4f953d2f 1346 smbios_entry_add(opts);
ad96090a
BS
1347#endif
1348}
1349
1350void cpudef_init(void)
1351{
1352#if defined(cpudef_setup)
1353 cpudef_setup(); /* parse cpu definitions in target config file */
1354#endif
1355}
1356
ad96090a
BS
1357int kvm_available(void)
1358{
1359#ifdef CONFIG_KVM
1360 return 1;
1361#else
1362 return 0;
1363#endif
1364}
1365
1366int xen_available(void)
1367{
1368#ifdef CONFIG_XEN
1369 return 1;
1370#else
1371 return 0;
1372#endif
1373}
99afc91d
DB
1374
1375
1376TargetInfo *qmp_query_target(Error **errp)
1377{
1378 TargetInfo *info = g_malloc0(sizeof(*info));
1379
c02a9552 1380 info->arch = g_strdup(TARGET_NAME);
99afc91d
DB
1381
1382 return info;
1383}
7ca1dfad
CV
1384
1385/* Stub function that's gets run on the vcpu when its brought out of the
1386 VM to run inside qemu via async_run_on_cpu()*/
1387static void mig_sleep_cpu(void *opq)
1388{
1389 qemu_mutex_unlock_iothread();
1390 g_usleep(30*1000);
1391 qemu_mutex_lock_iothread();
1392}
1393
1394/* To reduce the dirty rate explicitly disallow the VCPUs from spending
1395 much time in the VM. The migration thread will try to catchup.
1396 Workload will experience a performance drop.
1397*/
7ca1dfad
CV
1398static void mig_throttle_guest_down(void)
1399{
38fcbd3f
AF
1400 CPUState *cpu;
1401
7ca1dfad 1402 qemu_mutex_lock_iothread();
38fcbd3f
AF
1403 CPU_FOREACH(cpu) {
1404 async_run_on_cpu(cpu, mig_sleep_cpu, NULL);
1405 }
7ca1dfad
CV
1406 qemu_mutex_unlock_iothread();
1407}
1408
1409static void check_guest_throttling(void)
1410{
1411 static int64_t t0;
1412 int64_t t1;
1413
1414 if (!mig_throttle_on) {
1415 return;
1416 }
1417
1418 if (!t0) {
bc72ad67 1419 t0 = qemu_clock_get_ns(QEMU_CLOCK_REALTIME);
7ca1dfad
CV
1420 return;
1421 }
1422
bc72ad67 1423 t1 = qemu_clock_get_ns(QEMU_CLOCK_REALTIME);
7ca1dfad
CV
1424
1425 /* If it has been more than 40 ms since the last time the guest
1426 * was throttled then do it again.
1427 */
1428 if (40 < (t1-t0)/1000000) {
1429 mig_throttle_guest_down();
1430 t0 = t1;
1431 }
1432}