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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" |
0dc3f44a | 55 | #include "qemu/rcu_queue.h" |
ad96090a | 56 | |
3a697f69 OW |
57 | #ifdef DEBUG_ARCH_INIT |
58 | #define DPRINTF(fmt, ...) \ | |
59 | do { fprintf(stdout, "arch_init: " fmt, ## __VA_ARGS__); } while (0) | |
60 | #else | |
61 | #define DPRINTF(fmt, ...) \ | |
62 | do { } while (0) | |
63 | #endif | |
64 | ||
ad96090a BS |
65 | #ifdef TARGET_SPARC |
66 | int graphic_width = 1024; | |
67 | int graphic_height = 768; | |
68 | int graphic_depth = 8; | |
69 | #else | |
70 | int graphic_width = 800; | |
71 | int graphic_height = 600; | |
f1ff0e89 | 72 | int graphic_depth = 32; |
ad96090a BS |
73 | #endif |
74 | ||
ad96090a BS |
75 | |
76 | #if defined(TARGET_ALPHA) | |
77 | #define QEMU_ARCH QEMU_ARCH_ALPHA | |
78 | #elif defined(TARGET_ARM) | |
79 | #define QEMU_ARCH QEMU_ARCH_ARM | |
80 | #elif defined(TARGET_CRIS) | |
81 | #define QEMU_ARCH QEMU_ARCH_CRIS | |
82 | #elif defined(TARGET_I386) | |
83 | #define QEMU_ARCH QEMU_ARCH_I386 | |
84 | #elif defined(TARGET_M68K) | |
85 | #define QEMU_ARCH QEMU_ARCH_M68K | |
81ea0e13 MW |
86 | #elif defined(TARGET_LM32) |
87 | #define QEMU_ARCH QEMU_ARCH_LM32 | |
ad96090a BS |
88 | #elif defined(TARGET_MICROBLAZE) |
89 | #define QEMU_ARCH QEMU_ARCH_MICROBLAZE | |
90 | #elif defined(TARGET_MIPS) | |
91 | #define QEMU_ARCH QEMU_ARCH_MIPS | |
d15a9c23 AG |
92 | #elif defined(TARGET_MOXIE) |
93 | #define QEMU_ARCH QEMU_ARCH_MOXIE | |
e67db06e JL |
94 | #elif defined(TARGET_OPENRISC) |
95 | #define QEMU_ARCH QEMU_ARCH_OPENRISC | |
ad96090a BS |
96 | #elif defined(TARGET_PPC) |
97 | #define QEMU_ARCH QEMU_ARCH_PPC | |
98 | #elif defined(TARGET_S390X) | |
99 | #define QEMU_ARCH QEMU_ARCH_S390X | |
100 | #elif defined(TARGET_SH4) | |
101 | #define QEMU_ARCH QEMU_ARCH_SH4 | |
102 | #elif defined(TARGET_SPARC) | |
103 | #define QEMU_ARCH QEMU_ARCH_SPARC | |
2328826b MF |
104 | #elif defined(TARGET_XTENSA) |
105 | #define QEMU_ARCH QEMU_ARCH_XTENSA | |
4f23a1e6 GX |
106 | #elif defined(TARGET_UNICORE32) |
107 | #define QEMU_ARCH QEMU_ARCH_UNICORE32 | |
48e06fe0 BK |
108 | #elif defined(TARGET_TRICORE) |
109 | #define QEMU_ARCH QEMU_ARCH_TRICORE | |
ad96090a BS |
110 | #endif |
111 | ||
112 | const uint32_t arch_type = QEMU_ARCH; | |
7ca1dfad CV |
113 | static bool mig_throttle_on; |
114 | static int dirty_rate_high_cnt; | |
115 | static void check_guest_throttling(void); | |
ad96090a | 116 | |
71411d35 C |
117 | static uint64_t bitmap_sync_count; |
118 | ||
ad96090a BS |
119 | /***********************************************************/ |
120 | /* ram save/restore */ | |
121 | ||
d20878d2 YT |
122 | #define RAM_SAVE_FLAG_FULL 0x01 /* Obsolete, not used anymore */ |
123 | #define RAM_SAVE_FLAG_COMPRESS 0x02 | |
124 | #define RAM_SAVE_FLAG_MEM_SIZE 0x04 | |
125 | #define RAM_SAVE_FLAG_PAGE 0x08 | |
126 | #define RAM_SAVE_FLAG_EOS 0x10 | |
127 | #define RAM_SAVE_FLAG_CONTINUE 0x20 | |
17ad9b35 | 128 | #define RAM_SAVE_FLAG_XBZRLE 0x40 |
0033b8b4 | 129 | /* 0x80 is reserved in migration.h start with 0x100 next */ |
ad96090a | 130 | |
756557de EH |
131 | static struct defconfig_file { |
132 | const char *filename; | |
f29a5614 EH |
133 | /* Indicates it is an user config file (disabled by -no-user-config) */ |
134 | bool userconfig; | |
756557de | 135 | } default_config_files[] = { |
f29a5614 | 136 | { CONFIG_QEMU_CONFDIR "/qemu.conf", true }, |
2e59915d | 137 | { CONFIG_QEMU_CONFDIR "/target-" TARGET_NAME ".conf", true }, |
756557de EH |
138 | { NULL }, /* end of list */ |
139 | }; | |
140 | ||
6d3cb1f9 | 141 | static const uint8_t ZERO_TARGET_PAGE[TARGET_PAGE_SIZE]; |
756557de | 142 | |
f29a5614 | 143 | int qemu_read_default_config_files(bool userconfig) |
b5a8fe5e EH |
144 | { |
145 | int ret; | |
756557de | 146 | struct defconfig_file *f; |
b5a8fe5e | 147 | |
756557de | 148 | for (f = default_config_files; f->filename; f++) { |
f29a5614 EH |
149 | if (!userconfig && f->userconfig) { |
150 | continue; | |
151 | } | |
756557de EH |
152 | ret = qemu_read_config_file(f->filename); |
153 | if (ret < 0 && ret != -ENOENT) { | |
154 | return ret; | |
155 | } | |
b5a8fe5e | 156 | } |
4d8b3c63 | 157 | |
b5a8fe5e EH |
158 | return 0; |
159 | } | |
160 | ||
dc3c26a4 | 161 | static inline bool is_zero_range(uint8_t *p, uint64_t size) |
ad96090a | 162 | { |
dc3c26a4 | 163 | return buffer_find_nonzero_offset(p, size) == size; |
ad96090a BS |
164 | } |
165 | ||
17ad9b35 OW |
166 | /* struct contains XBZRLE cache and a static page |
167 | used by the compression */ | |
168 | static struct { | |
169 | /* buffer used for XBZRLE encoding */ | |
170 | uint8_t *encoded_buf; | |
171 | /* buffer for storing page content */ | |
172 | uint8_t *current_buf; | |
fd8cec93 | 173 | /* Cache for XBZRLE, Protected by lock. */ |
17ad9b35 | 174 | PageCache *cache; |
fd8cec93 | 175 | QemuMutex lock; |
d97326ee DDAG |
176 | } XBZRLE; |
177 | ||
905f26f2 GA |
178 | /* buffer used for XBZRLE decoding */ |
179 | static uint8_t *xbzrle_decoded_buf; | |
9e1ba4cc | 180 | |
fd8cec93 GA |
181 | static void XBZRLE_cache_lock(void) |
182 | { | |
183 | if (migrate_use_xbzrle()) | |
184 | qemu_mutex_lock(&XBZRLE.lock); | |
185 | } | |
186 | ||
187 | static void XBZRLE_cache_unlock(void) | |
188 | { | |
189 | if (migrate_use_xbzrle()) | |
190 | qemu_mutex_unlock(&XBZRLE.lock); | |
191 | } | |
192 | ||
d97326ee DDAG |
193 | /* |
194 | * called from qmp_migrate_set_cache_size in main thread, possibly while | |
195 | * a migration is in progress. | |
196 | * A running migration maybe using the cache and might finish during this | |
197 | * call, hence changes to the cache are protected by XBZRLE.lock(). | |
198 | */ | |
9e1ba4cc OW |
199 | int64_t xbzrle_cache_resize(int64_t new_size) |
200 | { | |
d97326ee DDAG |
201 | PageCache *new_cache; |
202 | int64_t ret; | |
fd8cec93 | 203 | |
c91e681a OW |
204 | if (new_size < TARGET_PAGE_SIZE) { |
205 | return -1; | |
206 | } | |
207 | ||
d97326ee DDAG |
208 | XBZRLE_cache_lock(); |
209 | ||
9e1ba4cc | 210 | if (XBZRLE.cache != NULL) { |
fd8cec93 | 211 | if (pow2floor(new_size) == migrate_xbzrle_cache_size()) { |
d97326ee | 212 | goto out_new_size; |
fd8cec93 GA |
213 | } |
214 | new_cache = cache_init(new_size / TARGET_PAGE_SIZE, | |
215 | TARGET_PAGE_SIZE); | |
216 | if (!new_cache) { | |
d97326ee DDAG |
217 | error_report("Error creating cache"); |
218 | ret = -1; | |
219 | goto out; | |
fd8cec93 | 220 | } |
fd8cec93 | 221 | |
d97326ee DDAG |
222 | cache_fini(XBZRLE.cache); |
223 | XBZRLE.cache = new_cache; | |
9e1ba4cc | 224 | } |
fd8cec93 | 225 | |
d97326ee DDAG |
226 | out_new_size: |
227 | ret = pow2floor(new_size); | |
228 | out: | |
229 | XBZRLE_cache_unlock(); | |
230 | return ret; | |
9e1ba4cc OW |
231 | } |
232 | ||
004d4c10 OW |
233 | /* accounting for migration statistics */ |
234 | typedef struct AccountingInfo { | |
235 | uint64_t dup_pages; | |
f1c72795 | 236 | uint64_t skipped_pages; |
004d4c10 OW |
237 | uint64_t norm_pages; |
238 | uint64_t iterations; | |
f36d55af OW |
239 | uint64_t xbzrle_bytes; |
240 | uint64_t xbzrle_pages; | |
241 | uint64_t xbzrle_cache_miss; | |
8bc39233 | 242 | double xbzrle_cache_miss_rate; |
f36d55af | 243 | uint64_t xbzrle_overflows; |
004d4c10 OW |
244 | } AccountingInfo; |
245 | ||
246 | static AccountingInfo acct_info; | |
247 | ||
248 | static void acct_clear(void) | |
249 | { | |
250 | memset(&acct_info, 0, sizeof(acct_info)); | |
251 | } | |
252 | ||
253 | uint64_t dup_mig_bytes_transferred(void) | |
254 | { | |
255 | return acct_info.dup_pages * TARGET_PAGE_SIZE; | |
256 | } | |
257 | ||
258 | uint64_t dup_mig_pages_transferred(void) | |
259 | { | |
260 | return acct_info.dup_pages; | |
261 | } | |
262 | ||
f1c72795 PL |
263 | uint64_t skipped_mig_bytes_transferred(void) |
264 | { | |
265 | return acct_info.skipped_pages * TARGET_PAGE_SIZE; | |
266 | } | |
267 | ||
268 | uint64_t skipped_mig_pages_transferred(void) | |
269 | { | |
270 | return acct_info.skipped_pages; | |
271 | } | |
272 | ||
004d4c10 OW |
273 | uint64_t norm_mig_bytes_transferred(void) |
274 | { | |
275 | return acct_info.norm_pages * TARGET_PAGE_SIZE; | |
276 | } | |
277 | ||
278 | uint64_t norm_mig_pages_transferred(void) | |
279 | { | |
280 | return acct_info.norm_pages; | |
281 | } | |
282 | ||
f36d55af OW |
283 | uint64_t xbzrle_mig_bytes_transferred(void) |
284 | { | |
285 | return acct_info.xbzrle_bytes; | |
286 | } | |
287 | ||
288 | uint64_t xbzrle_mig_pages_transferred(void) | |
289 | { | |
290 | return acct_info.xbzrle_pages; | |
291 | } | |
292 | ||
293 | uint64_t xbzrle_mig_pages_cache_miss(void) | |
294 | { | |
295 | return acct_info.xbzrle_cache_miss; | |
296 | } | |
297 | ||
8bc39233 C |
298 | double xbzrle_mig_cache_miss_rate(void) |
299 | { | |
300 | return acct_info.xbzrle_cache_miss_rate; | |
301 | } | |
302 | ||
f36d55af OW |
303 | uint64_t xbzrle_mig_pages_overflow(void) |
304 | { | |
305 | return acct_info.xbzrle_overflows; | |
306 | } | |
307 | ||
3f7d7b09 JQ |
308 | static size_t save_block_hdr(QEMUFile *f, RAMBlock *block, ram_addr_t offset, |
309 | int cont, int flag) | |
0c51f43d | 310 | { |
3f7d7b09 JQ |
311 | size_t size; |
312 | ||
313 | qemu_put_be64(f, offset | cont | flag); | |
314 | size = 8; | |
0c51f43d | 315 | |
3f7d7b09 JQ |
316 | if (!cont) { |
317 | qemu_put_byte(f, strlen(block->idstr)); | |
318 | qemu_put_buffer(f, (uint8_t *)block->idstr, | |
319 | strlen(block->idstr)); | |
320 | size += 1 + strlen(block->idstr); | |
321 | } | |
322 | return size; | |
0c51f43d OW |
323 | } |
324 | ||
6d3cb1f9 DDAG |
325 | /* This is the last block that we have visited serching for dirty pages |
326 | */ | |
327 | static RAMBlock *last_seen_block; | |
328 | /* This is the last block from where we have sent data */ | |
329 | static RAMBlock *last_sent_block; | |
330 | static ram_addr_t last_offset; | |
331 | static unsigned long *migration_bitmap; | |
332 | static uint64_t migration_dirty_pages; | |
333 | static uint32_t last_version; | |
334 | static bool ram_bulk_stage; | |
335 | ||
336 | /* Update the xbzrle cache to reflect a page that's been sent as all 0. | |
337 | * The important thing is that a stale (not-yet-0'd) page be replaced | |
338 | * by the new data. | |
339 | * As a bonus, if the page wasn't in the cache it gets added so that | |
340 | * when a small write is made into the 0'd page it gets XBZRLE sent | |
341 | */ | |
342 | static void xbzrle_cache_zero_page(ram_addr_t current_addr) | |
343 | { | |
344 | if (ram_bulk_stage || !migrate_use_xbzrle()) { | |
345 | return; | |
346 | } | |
347 | ||
348 | /* We don't care if this fails to allocate a new cache page | |
349 | * as long as it updated an old one */ | |
27af7d6e C |
350 | cache_insert(XBZRLE.cache, current_addr, ZERO_TARGET_PAGE, |
351 | bitmap_sync_count); | |
6d3cb1f9 DDAG |
352 | } |
353 | ||
17ad9b35 OW |
354 | #define ENCODING_FLAG_XBZRLE 0x1 |
355 | ||
1534ee93 | 356 | static int save_xbzrle_page(QEMUFile *f, uint8_t **current_data, |
17ad9b35 | 357 | ram_addr_t current_addr, RAMBlock *block, |
dd051c72 | 358 | ram_addr_t offset, int cont, bool last_stage) |
17ad9b35 OW |
359 | { |
360 | int encoded_len = 0, bytes_sent = -1; | |
361 | uint8_t *prev_cached_page; | |
362 | ||
27af7d6e | 363 | if (!cache_is_cached(XBZRLE.cache, current_addr, bitmap_sync_count)) { |
1534ee93 | 364 | acct_info.xbzrle_cache_miss++; |
dd051c72 | 365 | if (!last_stage) { |
27af7d6e C |
366 | if (cache_insert(XBZRLE.cache, current_addr, *current_data, |
367 | bitmap_sync_count) == -1) { | |
89db9987 | 368 | return -1; |
1534ee93 C |
369 | } else { |
370 | /* update *current_data when the page has been | |
371 | inserted into cache */ | |
372 | *current_data = get_cached_data(XBZRLE.cache, current_addr); | |
89db9987 | 373 | } |
dd051c72 | 374 | } |
17ad9b35 OW |
375 | return -1; |
376 | } | |
377 | ||
378 | prev_cached_page = get_cached_data(XBZRLE.cache, current_addr); | |
379 | ||
380 | /* save current buffer into memory */ | |
1534ee93 | 381 | memcpy(XBZRLE.current_buf, *current_data, TARGET_PAGE_SIZE); |
17ad9b35 OW |
382 | |
383 | /* XBZRLE encoding (if there is no overflow) */ | |
384 | encoded_len = xbzrle_encode_buffer(prev_cached_page, XBZRLE.current_buf, | |
385 | TARGET_PAGE_SIZE, XBZRLE.encoded_buf, | |
386 | TARGET_PAGE_SIZE); | |
387 | if (encoded_len == 0) { | |
388 | DPRINTF("Skipping unmodified page\n"); | |
389 | return 0; | |
390 | } else if (encoded_len == -1) { | |
391 | DPRINTF("Overflow\n"); | |
f36d55af | 392 | acct_info.xbzrle_overflows++; |
17ad9b35 | 393 | /* update data in the cache */ |
1534ee93 C |
394 | if (!last_stage) { |
395 | memcpy(prev_cached_page, *current_data, TARGET_PAGE_SIZE); | |
396 | *current_data = prev_cached_page; | |
397 | } | |
17ad9b35 OW |
398 | return -1; |
399 | } | |
400 | ||
401 | /* we need to update the data in the cache, in order to get the same data */ | |
dd051c72 JQ |
402 | if (!last_stage) { |
403 | memcpy(prev_cached_page, XBZRLE.current_buf, TARGET_PAGE_SIZE); | |
404 | } | |
17ad9b35 OW |
405 | |
406 | /* Send XBZRLE based compressed page */ | |
3f7d7b09 | 407 | bytes_sent = save_block_hdr(f, block, offset, cont, RAM_SAVE_FLAG_XBZRLE); |
17ad9b35 OW |
408 | qemu_put_byte(f, ENCODING_FLAG_XBZRLE); |
409 | qemu_put_be16(f, encoded_len); | |
410 | qemu_put_buffer(f, XBZRLE.encoded_buf, encoded_len); | |
3f7d7b09 | 411 | bytes_sent += encoded_len + 1 + 2; |
f36d55af OW |
412 | acct_info.xbzrle_pages++; |
413 | acct_info.xbzrle_bytes += bytes_sent; | |
17ad9b35 OW |
414 | |
415 | return bytes_sent; | |
416 | } | |
417 | ||
4c8ae0f6 JQ |
418 | static inline |
419 | ram_addr_t migration_bitmap_find_and_reset_dirty(MemoryRegion *mr, | |
420 | ram_addr_t start) | |
69268cde | 421 | { |
4c8ae0f6 JQ |
422 | unsigned long base = mr->ram_addr >> TARGET_PAGE_BITS; |
423 | unsigned long nr = base + (start >> TARGET_PAGE_BITS); | |
0851c9f7 MT |
424 | uint64_t mr_size = TARGET_PAGE_ALIGN(memory_region_size(mr)); |
425 | unsigned long size = base + (mr_size >> TARGET_PAGE_BITS); | |
c6bf8e0e | 426 | |
70c8652b PL |
427 | unsigned long next; |
428 | ||
429 | if (ram_bulk_stage && nr > base) { | |
430 | next = nr + 1; | |
431 | } else { | |
432 | next = find_next_bit(migration_bitmap, size, nr); | |
433 | } | |
69268cde | 434 | |
4c8ae0f6 JQ |
435 | if (next < size) { |
436 | clear_bit(next, migration_bitmap); | |
c6bf8e0e | 437 | migration_dirty_pages--; |
69268cde | 438 | } |
4c8ae0f6 | 439 | return (next - base) << TARGET_PAGE_BITS; |
69268cde JQ |
440 | } |
441 | ||
791fa2a2 | 442 | static inline bool migration_bitmap_set_dirty(ram_addr_t addr) |
e44d26c8 | 443 | { |
c6bf8e0e | 444 | bool ret; |
791fa2a2 | 445 | int nr = addr >> TARGET_PAGE_BITS; |
e44d26c8 | 446 | |
c6bf8e0e JQ |
447 | ret = test_and_set_bit(nr, migration_bitmap); |
448 | ||
449 | if (!ret) { | |
450 | migration_dirty_pages++; | |
e44d26c8 | 451 | } |
c6bf8e0e | 452 | return ret; |
e44d26c8 JQ |
453 | } |
454 | ||
791fa2a2 JQ |
455 | static void migration_bitmap_sync_range(ram_addr_t start, ram_addr_t length) |
456 | { | |
457 | ram_addr_t addr; | |
aa8dc044 JQ |
458 | unsigned long page = BIT_WORD(start >> TARGET_PAGE_BITS); |
459 | ||
460 | /* start address is aligned at the start of a word? */ | |
461 | if (((page * BITS_PER_LONG) << TARGET_PAGE_BITS) == start) { | |
462 | int k; | |
463 | int nr = BITS_TO_LONGS(length >> TARGET_PAGE_BITS); | |
464 | unsigned long *src = ram_list.dirty_memory[DIRTY_MEMORY_MIGRATION]; | |
465 | ||
466 | for (k = page; k < page + nr; k++) { | |
467 | if (src[k]) { | |
468 | unsigned long new_dirty; | |
469 | new_dirty = ~migration_bitmap[k]; | |
470 | migration_bitmap[k] |= src[k]; | |
471 | new_dirty &= src[k]; | |
472 | migration_dirty_pages += ctpopl(new_dirty); | |
473 | src[k] = 0; | |
474 | } | |
475 | } | |
476 | } else { | |
477 | for (addr = 0; addr < length; addr += TARGET_PAGE_SIZE) { | |
478 | if (cpu_physical_memory_get_dirty(start + addr, | |
479 | TARGET_PAGE_SIZE, | |
480 | DIRTY_MEMORY_MIGRATION)) { | |
481 | cpu_physical_memory_reset_dirty(start + addr, | |
482 | TARGET_PAGE_SIZE, | |
483 | DIRTY_MEMORY_MIGRATION); | |
484 | migration_bitmap_set_dirty(start + addr); | |
485 | } | |
791fa2a2 JQ |
486 | } |
487 | } | |
488 | } | |
489 | ||
490 | ||
6c1b663c C |
491 | /* Fix me: there are too many global variables used in migration process. */ |
492 | static int64_t start_time; | |
493 | static int64_t bytes_xfer_prev; | |
494 | static int64_t num_dirty_pages_period; | |
495 | ||
496 | static 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 | |
ae3a7047 | 503 | /* Called with iothread lock held, to protect ram_list.dirty_memory[] */ |
dd2df737 JQ |
504 | static void migration_bitmap_sync(void) |
505 | { | |
c6bf8e0e | 506 | RAMBlock *block; |
c6bf8e0e | 507 | uint64_t num_dirty_pages_init = migration_dirty_pages; |
8d017193 | 508 | MigrationState *s = migrate_get_current(); |
8d017193 | 509 | int64_t end_time; |
7ca1dfad | 510 | int64_t bytes_xfer_now; |
8bc39233 C |
511 | static uint64_t xbzrle_cache_miss_prev; |
512 | static uint64_t iterations_prev; | |
7ca1dfad | 513 | |
71411d35 C |
514 | bitmap_sync_count++; |
515 | ||
7ca1dfad CV |
516 | if (!bytes_xfer_prev) { |
517 | bytes_xfer_prev = ram_bytes_transferred(); | |
518 | } | |
8d017193 JQ |
519 | |
520 | if (!start_time) { | |
bc72ad67 | 521 | start_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME); |
8d017193 | 522 | } |
3c12193d JQ |
523 | |
524 | trace_migration_bitmap_sync_start(); | |
1d671369 | 525 | address_space_sync_dirty_bitmap(&address_space_memory); |
c6bf8e0e | 526 | |
0dc3f44a MD |
527 | rcu_read_lock(); |
528 | QLIST_FOREACH_RCU(block, &ram_list.blocks, next) { | |
9b8424d5 | 529 | migration_bitmap_sync_range(block->mr->ram_addr, block->used_length); |
c6bf8e0e | 530 | } |
0dc3f44a MD |
531 | rcu_read_unlock(); |
532 | ||
c6bf8e0e | 533 | trace_migration_bitmap_sync_end(migration_dirty_pages |
3c12193d | 534 | - num_dirty_pages_init); |
8d017193 | 535 | num_dirty_pages_period += migration_dirty_pages - num_dirty_pages_init; |
bc72ad67 | 536 | end_time = qemu_clock_get_ms(QEMU_CLOCK_REALTIME); |
8d017193 JQ |
537 | |
538 | /* more than 1 second = 1000 millisecons */ | |
539 | if (end_time > start_time + 1000) { | |
7ca1dfad CV |
540 | if (migrate_auto_converge()) { |
541 | /* The following detection logic can be refined later. For now: | |
542 | Check to see if the dirtied bytes is 50% more than the approx. | |
543 | amount of bytes that just got transferred since the last time we | |
544 | were in this routine. If that happens >N times (for now N==4) | |
545 | we turn on the throttle down logic */ | |
546 | bytes_xfer_now = ram_bytes_transferred(); | |
547 | if (s->dirty_pages_rate && | |
548 | (num_dirty_pages_period * TARGET_PAGE_SIZE > | |
549 | (bytes_xfer_now - bytes_xfer_prev)/2) && | |
550 | (dirty_rate_high_cnt++ > 4)) { | |
551 | trace_migration_throttle(); | |
552 | mig_throttle_on = true; | |
553 | dirty_rate_high_cnt = 0; | |
554 | } | |
555 | bytes_xfer_prev = bytes_xfer_now; | |
556 | } else { | |
557 | mig_throttle_on = false; | |
558 | } | |
8bc39233 C |
559 | if (migrate_use_xbzrle()) { |
560 | if (iterations_prev != 0) { | |
561 | acct_info.xbzrle_cache_miss_rate = | |
562 | (double)(acct_info.xbzrle_cache_miss - | |
563 | xbzrle_cache_miss_prev) / | |
564 | (acct_info.iterations - iterations_prev); | |
565 | } | |
566 | iterations_prev = acct_info.iterations; | |
567 | xbzrle_cache_miss_prev = acct_info.xbzrle_cache_miss; | |
568 | } | |
8d017193 JQ |
569 | s->dirty_pages_rate = num_dirty_pages_period * 1000 |
570 | / (end_time - start_time); | |
90f8ae72 | 571 | s->dirty_bytes_rate = s->dirty_pages_rate * TARGET_PAGE_SIZE; |
8d017193 JQ |
572 | start_time = end_time; |
573 | num_dirty_pages_period = 0; | |
58570ed8 | 574 | s->dirty_sync_count = bitmap_sync_count; |
8d017193 | 575 | } |
dd2df737 JQ |
576 | } |
577 | ||
6c779f22 | 578 | /* |
14bcfdc7 DDAG |
579 | * ram_save_page: Send the given page to the stream |
580 | * | |
581 | * Returns: Number of bytes written. | |
582 | */ | |
583 | static int ram_save_page(QEMUFile *f, RAMBlock* block, ram_addr_t offset, | |
584 | bool last_stage) | |
585 | { | |
586 | int bytes_sent; | |
587 | int cont; | |
588 | ram_addr_t current_addr; | |
589 | MemoryRegion *mr = block->mr; | |
590 | uint8_t *p; | |
591 | int ret; | |
592 | bool send_async = true; | |
593 | ||
594 | cont = (block == last_sent_block) ? RAM_SAVE_FLAG_CONTINUE : 0; | |
595 | ||
596 | p = memory_region_get_ram_ptr(mr) + offset; | |
597 | ||
598 | /* In doubt sent page as normal */ | |
599 | bytes_sent = -1; | |
600 | ret = ram_control_save_page(f, block->offset, | |
601 | offset, TARGET_PAGE_SIZE, &bytes_sent); | |
602 | ||
603 | XBZRLE_cache_lock(); | |
604 | ||
605 | current_addr = block->offset + offset; | |
606 | if (ret != RAM_SAVE_CONTROL_NOT_SUPP) { | |
607 | if (ret != RAM_SAVE_CONTROL_DELAYED) { | |
608 | if (bytes_sent > 0) { | |
609 | acct_info.norm_pages++; | |
610 | } else if (bytes_sent == 0) { | |
611 | acct_info.dup_pages++; | |
612 | } | |
613 | } | |
614 | } else if (is_zero_range(p, TARGET_PAGE_SIZE)) { | |
615 | acct_info.dup_pages++; | |
616 | bytes_sent = save_block_hdr(f, block, offset, cont, | |
617 | RAM_SAVE_FLAG_COMPRESS); | |
618 | qemu_put_byte(f, 0); | |
619 | bytes_sent++; | |
620 | /* Must let xbzrle know, otherwise a previous (now 0'd) cached | |
621 | * page would be stale | |
622 | */ | |
623 | xbzrle_cache_zero_page(current_addr); | |
624 | } else if (!ram_bulk_stage && migrate_use_xbzrle()) { | |
625 | bytes_sent = save_xbzrle_page(f, &p, current_addr, block, | |
626 | offset, cont, last_stage); | |
627 | if (!last_stage) { | |
628 | /* Can't send this cached data async, since the cache page | |
629 | * might get updated before it gets to the wire | |
630 | */ | |
631 | send_async = false; | |
632 | } | |
633 | } | |
634 | ||
635 | /* XBZRLE overflow or normal page */ | |
636 | if (bytes_sent == -1) { | |
637 | bytes_sent = save_block_hdr(f, block, offset, cont, RAM_SAVE_FLAG_PAGE); | |
638 | if (send_async) { | |
639 | qemu_put_buffer_async(f, p, TARGET_PAGE_SIZE); | |
640 | } else { | |
641 | qemu_put_buffer(f, p, TARGET_PAGE_SIZE); | |
642 | } | |
643 | bytes_sent += TARGET_PAGE_SIZE; | |
644 | acct_info.norm_pages++; | |
645 | } | |
646 | ||
647 | XBZRLE_cache_unlock(); | |
648 | ||
649 | return bytes_sent; | |
650 | } | |
651 | ||
652 | /* | |
653 | * ram_find_and_save_block: Finds a page to send and sends it to f | |
6c779f22 | 654 | * |
0dc3f44a MD |
655 | * Called within an RCU critical section. |
656 | * | |
b823ceaa JQ |
657 | * Returns: The number of bytes written. |
658 | * 0 means no dirty pages | |
6c779f22 OW |
659 | */ |
660 | ||
14bcfdc7 | 661 | static int ram_find_and_save_block(QEMUFile *f, bool last_stage) |
ad96090a | 662 | { |
b23a9a5c | 663 | RAMBlock *block = last_seen_block; |
e44359c3 | 664 | ram_addr_t offset = last_offset; |
4c8ae0f6 | 665 | bool complete_round = false; |
b823ceaa | 666 | int bytes_sent = 0; |
71c510e2 | 667 | MemoryRegion *mr; |
ad96090a | 668 | |
e44359c3 | 669 | if (!block) |
0dc3f44a | 670 | block = QLIST_FIRST_RCU(&ram_list.blocks); |
e44359c3 | 671 | |
4c8ae0f6 | 672 | while (true) { |
71c510e2 | 673 | mr = block->mr; |
4c8ae0f6 JQ |
674 | offset = migration_bitmap_find_and_reset_dirty(mr, offset); |
675 | if (complete_round && block == last_seen_block && | |
676 | offset >= last_offset) { | |
677 | break; | |
678 | } | |
9b8424d5 | 679 | if (offset >= block->used_length) { |
4c8ae0f6 | 680 | offset = 0; |
0dc3f44a | 681 | block = QLIST_NEXT_RCU(block, next); |
4c8ae0f6 | 682 | if (!block) { |
0dc3f44a | 683 | block = QLIST_FIRST_RCU(&ram_list.blocks); |
4c8ae0f6 | 684 | complete_round = true; |
78d07ae7 | 685 | ram_bulk_stage = false; |
4c8ae0f6 JQ |
686 | } |
687 | } else { | |
14bcfdc7 | 688 | bytes_sent = ram_save_page(f, block, offset, last_stage); |
17ad9b35 | 689 | |
17ad9b35 | 690 | /* if page is unmodified, continue to the next */ |
b823ceaa | 691 | if (bytes_sent > 0) { |
5f718a15 | 692 | last_sent_block = block; |
17ad9b35 OW |
693 | break; |
694 | } | |
ad96090a | 695 | } |
4c8ae0f6 | 696 | } |
ae3a7047 | 697 | |
b23a9a5c | 698 | last_seen_block = block; |
e44359c3 | 699 | last_offset = offset; |
3fc250b4 | 700 | return bytes_sent; |
ad96090a BS |
701 | } |
702 | ||
703 | static uint64_t bytes_transferred; | |
704 | ||
2b0ce079 MH |
705 | void acct_update_position(QEMUFile *f, size_t size, bool zero) |
706 | { | |
707 | uint64_t pages = size / TARGET_PAGE_SIZE; | |
708 | if (zero) { | |
709 | acct_info.dup_pages += pages; | |
710 | } else { | |
711 | acct_info.norm_pages += pages; | |
712 | bytes_transferred += size; | |
713 | qemu_update_position(f, size); | |
714 | } | |
715 | } | |
716 | ||
ad96090a BS |
717 | static ram_addr_t ram_save_remaining(void) |
718 | { | |
c6bf8e0e | 719 | return migration_dirty_pages; |
ad96090a BS |
720 | } |
721 | ||
722 | uint64_t ram_bytes_remaining(void) | |
723 | { | |
724 | return ram_save_remaining() * TARGET_PAGE_SIZE; | |
725 | } | |
726 | ||
727 | uint64_t ram_bytes_transferred(void) | |
728 | { | |
729 | return bytes_transferred; | |
730 | } | |
731 | ||
732 | uint64_t ram_bytes_total(void) | |
733 | { | |
d17b5288 AW |
734 | RAMBlock *block; |
735 | uint64_t total = 0; | |
736 | ||
0dc3f44a MD |
737 | rcu_read_lock(); |
738 | QLIST_FOREACH_RCU(block, &ram_list.blocks, next) | |
9b8424d5 | 739 | total += block->used_length; |
0dc3f44a | 740 | rcu_read_unlock(); |
d17b5288 | 741 | return total; |
ad96090a BS |
742 | } |
743 | ||
905f26f2 GA |
744 | void free_xbzrle_decoded_buf(void) |
745 | { | |
746 | g_free(xbzrle_decoded_buf); | |
747 | xbzrle_decoded_buf = NULL; | |
748 | } | |
749 | ||
8e21cd32 OW |
750 | static void migration_end(void) |
751 | { | |
244eaa75 PB |
752 | if (migration_bitmap) { |
753 | memory_global_dirty_log_stop(); | |
754 | g_free(migration_bitmap); | |
755 | migration_bitmap = NULL; | |
756 | } | |
17ad9b35 | 757 | |
fd8cec93 | 758 | XBZRLE_cache_lock(); |
244eaa75 | 759 | if (XBZRLE.cache) { |
17ad9b35 | 760 | cache_fini(XBZRLE.cache); |
17ad9b35 OW |
761 | g_free(XBZRLE.encoded_buf); |
762 | g_free(XBZRLE.current_buf); | |
17ad9b35 | 763 | XBZRLE.cache = NULL; |
f6c6483b OW |
764 | XBZRLE.encoded_buf = NULL; |
765 | XBZRLE.current_buf = NULL; | |
17ad9b35 | 766 | } |
fd8cec93 | 767 | XBZRLE_cache_unlock(); |
8e21cd32 OW |
768 | } |
769 | ||
9b5bfab0 JQ |
770 | static void ram_migration_cancel(void *opaque) |
771 | { | |
772 | migration_end(); | |
773 | } | |
774 | ||
5a170775 JQ |
775 | static void reset_ram_globals(void) |
776 | { | |
b23a9a5c | 777 | last_seen_block = NULL; |
5f718a15 | 778 | last_sent_block = NULL; |
5a170775 | 779 | last_offset = 0; |
f798b07f | 780 | last_version = ram_list.version; |
78d07ae7 | 781 | ram_bulk_stage = true; |
5a170775 JQ |
782 | } |
783 | ||
4508bd9e JQ |
784 | #define MAX_WAIT 50 /* ms, half buffered_file limit */ |
785 | ||
0dc3f44a MD |
786 | |
787 | /* Each of ram_save_setup, ram_save_iterate and ram_save_complete has | |
788 | * long-running RCU critical section. When rcu-reclaims in the code | |
789 | * start to become numerous it will be necessary to reduce the | |
790 | * granularity of these critical sections. | |
791 | */ | |
792 | ||
d1315aac | 793 | static int ram_save_setup(QEMUFile *f, void *opaque) |
ad96090a | 794 | { |
d1315aac | 795 | RAMBlock *block; |
e30d1d8c | 796 | int64_t ram_bitmap_pages; /* Size of bitmap in pages, including gaps */ |
c6bf8e0e | 797 | |
7ca1dfad CV |
798 | mig_throttle_on = false; |
799 | dirty_rate_high_cnt = 0; | |
71411d35 | 800 | bitmap_sync_count = 0; |
6c1b663c | 801 | migration_bitmap_sync_init(); |
ad96090a | 802 | |
17ad9b35 | 803 | if (migrate_use_xbzrle()) { |
d97326ee | 804 | XBZRLE_cache_lock(); |
17ad9b35 OW |
805 | XBZRLE.cache = cache_init(migrate_xbzrle_cache_size() / |
806 | TARGET_PAGE_SIZE, | |
807 | TARGET_PAGE_SIZE); | |
808 | if (!XBZRLE.cache) { | |
d97326ee DDAG |
809 | XBZRLE_cache_unlock(); |
810 | error_report("Error creating cache"); | |
17ad9b35 OW |
811 | return -1; |
812 | } | |
d97326ee | 813 | XBZRLE_cache_unlock(); |
a17b2fd3 OW |
814 | |
815 | /* We prefer not to abort if there is no memory */ | |
816 | XBZRLE.encoded_buf = g_try_malloc0(TARGET_PAGE_SIZE); | |
817 | if (!XBZRLE.encoded_buf) { | |
d97326ee | 818 | error_report("Error allocating encoded_buf"); |
a17b2fd3 OW |
819 | return -1; |
820 | } | |
821 | ||
822 | XBZRLE.current_buf = g_try_malloc(TARGET_PAGE_SIZE); | |
823 | if (!XBZRLE.current_buf) { | |
d97326ee | 824 | error_report("Error allocating current_buf"); |
a17b2fd3 OW |
825 | g_free(XBZRLE.encoded_buf); |
826 | XBZRLE.encoded_buf = NULL; | |
827 | return -1; | |
828 | } | |
829 | ||
004d4c10 | 830 | acct_clear(); |
17ad9b35 OW |
831 | } |
832 | ||
ae3a7047 | 833 | /* iothread lock needed for ram_list.dirty_memory[] */ |
9b095037 PB |
834 | qemu_mutex_lock_iothread(); |
835 | qemu_mutex_lock_ramlist(); | |
0dc3f44a | 836 | rcu_read_lock(); |
9b095037 PB |
837 | bytes_transferred = 0; |
838 | reset_ram_globals(); | |
839 | ||
e30d1d8c DDAG |
840 | ram_bitmap_pages = last_ram_offset() >> TARGET_PAGE_BITS; |
841 | migration_bitmap = bitmap_new(ram_bitmap_pages); | |
842 | bitmap_set(migration_bitmap, 0, ram_bitmap_pages); | |
843 | ||
844 | /* | |
845 | * Count the total number of pages used by ram blocks not including any | |
846 | * gaps due to alignment or unplugs. | |
847 | */ | |
848 | migration_dirty_pages = 0; | |
0dc3f44a | 849 | QLIST_FOREACH_RCU(block, &ram_list.blocks, next) { |
e30d1d8c DDAG |
850 | uint64_t block_pages; |
851 | ||
9b8424d5 | 852 | block_pages = block->used_length >> TARGET_PAGE_BITS; |
e30d1d8c DDAG |
853 | migration_dirty_pages += block_pages; |
854 | } | |
855 | ||
d1315aac | 856 | memory_global_dirty_log_start(); |
c6bf8e0e | 857 | migration_bitmap_sync(); |
0dc3f44a | 858 | qemu_mutex_unlock_ramlist(); |
9b095037 | 859 | qemu_mutex_unlock_iothread(); |
ad96090a | 860 | |
d1315aac | 861 | qemu_put_be64(f, ram_bytes_total() | RAM_SAVE_FLAG_MEM_SIZE); |
97ab12d4 | 862 | |
0dc3f44a | 863 | QLIST_FOREACH_RCU(block, &ram_list.blocks, next) { |
d1315aac JQ |
864 | qemu_put_byte(f, strlen(block->idstr)); |
865 | qemu_put_buffer(f, (uint8_t *)block->idstr, strlen(block->idstr)); | |
9b8424d5 | 866 | qemu_put_be64(f, block->used_length); |
ad96090a BS |
867 | } |
868 | ||
0dc3f44a | 869 | rcu_read_unlock(); |
0033b8b4 MH |
870 | |
871 | ram_control_before_iterate(f, RAM_CONTROL_SETUP); | |
872 | ram_control_after_iterate(f, RAM_CONTROL_SETUP); | |
873 | ||
d1315aac JQ |
874 | qemu_put_be64(f, RAM_SAVE_FLAG_EOS); |
875 | ||
876 | return 0; | |
877 | } | |
878 | ||
16310a3c | 879 | static int ram_save_iterate(QEMUFile *f, void *opaque) |
d1315aac | 880 | { |
d1315aac JQ |
881 | int ret; |
882 | int i; | |
e4ed1541 | 883 | int64_t t0; |
b823ceaa | 884 | int total_sent = 0; |
d1315aac | 885 | |
0dc3f44a | 886 | rcu_read_lock(); |
f798b07f UD |
887 | if (ram_list.version != last_version) { |
888 | reset_ram_globals(); | |
889 | } | |
890 | ||
0dc3f44a MD |
891 | /* Read version before ram_list.blocks */ |
892 | smp_rmb(); | |
893 | ||
0033b8b4 MH |
894 | ram_control_before_iterate(f, RAM_CONTROL_ROUND); |
895 | ||
bc72ad67 | 896 | t0 = qemu_clock_get_ns(QEMU_CLOCK_REALTIME); |
4508bd9e | 897 | i = 0; |
2975725f | 898 | while ((ret = qemu_file_rate_limit(f)) == 0) { |
3fc250b4 | 899 | int bytes_sent; |
ad96090a | 900 | |
14bcfdc7 | 901 | bytes_sent = ram_find_and_save_block(f, false); |
6c779f22 | 902 | /* no more blocks to sent */ |
b823ceaa | 903 | if (bytes_sent == 0) { |
ad96090a BS |
904 | break; |
905 | } | |
b823ceaa | 906 | total_sent += bytes_sent; |
004d4c10 | 907 | acct_info.iterations++; |
7ca1dfad | 908 | check_guest_throttling(); |
4508bd9e JQ |
909 | /* we want to check in the 1st loop, just in case it was the 1st time |
910 | and we had to sync the dirty bitmap. | |
911 | qemu_get_clock_ns() is a bit expensive, so we only check each some | |
912 | iterations | |
913 | */ | |
914 | if ((i & 63) == 0) { | |
bc72ad67 | 915 | uint64_t t1 = (qemu_clock_get_ns(QEMU_CLOCK_REALTIME) - t0) / 1000000; |
4508bd9e | 916 | if (t1 > MAX_WAIT) { |
ef37a699 | 917 | DPRINTF("big wait: %" PRIu64 " milliseconds, %d iterations\n", |
4508bd9e JQ |
918 | t1, i); |
919 | break; | |
920 | } | |
921 | } | |
922 | i++; | |
ad96090a | 923 | } |
0dc3f44a | 924 | rcu_read_unlock(); |
fb3409de | 925 | |
0033b8b4 MH |
926 | /* |
927 | * Must occur before EOS (or any QEMUFile operation) | |
928 | * because of RDMA protocol. | |
929 | */ | |
930 | ram_control_after_iterate(f, RAM_CONTROL_ROUND); | |
931 | ||
6cd0beda LL |
932 | bytes_transferred += total_sent; |
933 | ||
934 | /* | |
935 | * Do not count these 8 bytes into total_sent, so that we can | |
936 | * return 0 if no page had been dirtied. | |
937 | */ | |
938 | qemu_put_be64(f, RAM_SAVE_FLAG_EOS); | |
939 | bytes_transferred += 8; | |
940 | ||
941 | ret = qemu_file_get_error(f); | |
2975725f JQ |
942 | if (ret < 0) { |
943 | return ret; | |
944 | } | |
945 | ||
b823ceaa | 946 | return total_sent; |
16310a3c JQ |
947 | } |
948 | ||
ae3a7047 | 949 | /* Called with iothread lock */ |
16310a3c JQ |
950 | static int ram_save_complete(QEMUFile *f, void *opaque) |
951 | { | |
0dc3f44a MD |
952 | rcu_read_lock(); |
953 | ||
9c339485 | 954 | migration_bitmap_sync(); |
b2a8658e | 955 | |
0033b8b4 MH |
956 | ram_control_before_iterate(f, RAM_CONTROL_FINISH); |
957 | ||
ad96090a | 958 | /* try transferring iterative blocks of memory */ |
3a697f69 | 959 | |
16310a3c | 960 | /* flush all remaining blocks regardless of rate limiting */ |
6c779f22 | 961 | while (true) { |
3fc250b4 PR |
962 | int bytes_sent; |
963 | ||
14bcfdc7 | 964 | bytes_sent = ram_find_and_save_block(f, true); |
6c779f22 | 965 | /* no more blocks to sent */ |
b823ceaa | 966 | if (bytes_sent == 0) { |
6c779f22 | 967 | break; |
ad96090a | 968 | } |
16310a3c | 969 | bytes_transferred += bytes_sent; |
ad96090a | 970 | } |
0033b8b4 MH |
971 | |
972 | ram_control_after_iterate(f, RAM_CONTROL_FINISH); | |
244eaa75 | 973 | migration_end(); |
ad96090a | 974 | |
0dc3f44a | 975 | rcu_read_unlock(); |
ad96090a BS |
976 | qemu_put_be64(f, RAM_SAVE_FLAG_EOS); |
977 | ||
5b3c9638 | 978 | return 0; |
ad96090a BS |
979 | } |
980 | ||
e4ed1541 JQ |
981 | static uint64_t ram_save_pending(QEMUFile *f, void *opaque, uint64_t max_size) |
982 | { | |
983 | uint64_t remaining_size; | |
984 | ||
985 | remaining_size = ram_save_remaining() * TARGET_PAGE_SIZE; | |
986 | ||
987 | if (remaining_size < max_size) { | |
32c835ba | 988 | qemu_mutex_lock_iothread(); |
0dc3f44a | 989 | rcu_read_lock(); |
e4ed1541 | 990 | migration_bitmap_sync(); |
0dc3f44a | 991 | rcu_read_unlock(); |
32c835ba | 992 | qemu_mutex_unlock_iothread(); |
e4ed1541 JQ |
993 | remaining_size = ram_save_remaining() * TARGET_PAGE_SIZE; |
994 | } | |
995 | return remaining_size; | |
996 | } | |
997 | ||
17ad9b35 OW |
998 | static int load_xbzrle(QEMUFile *f, ram_addr_t addr, void *host) |
999 | { | |
17ad9b35 OW |
1000 | unsigned int xh_len; |
1001 | int xh_flags; | |
1002 | ||
905f26f2 GA |
1003 | if (!xbzrle_decoded_buf) { |
1004 | xbzrle_decoded_buf = g_malloc(TARGET_PAGE_SIZE); | |
17ad9b35 OW |
1005 | } |
1006 | ||
1007 | /* extract RLE header */ | |
1008 | xh_flags = qemu_get_byte(f); | |
1009 | xh_len = qemu_get_be16(f); | |
1010 | ||
1011 | if (xh_flags != ENCODING_FLAG_XBZRLE) { | |
0971f1be | 1012 | error_report("Failed to load XBZRLE page - wrong compression!"); |
17ad9b35 OW |
1013 | return -1; |
1014 | } | |
1015 | ||
1016 | if (xh_len > TARGET_PAGE_SIZE) { | |
0971f1be | 1017 | error_report("Failed to load XBZRLE page - len overflow!"); |
17ad9b35 OW |
1018 | return -1; |
1019 | } | |
1020 | /* load data and decode */ | |
905f26f2 | 1021 | qemu_get_buffer(f, xbzrle_decoded_buf, xh_len); |
17ad9b35 OW |
1022 | |
1023 | /* decode RLE */ | |
fb626663 CG |
1024 | if (xbzrle_decode_buffer(xbzrle_decoded_buf, xh_len, host, |
1025 | TARGET_PAGE_SIZE) == -1) { | |
0971f1be | 1026 | error_report("Failed to load XBZRLE page - decode error!"); |
fb626663 | 1027 | return -1; |
17ad9b35 OW |
1028 | } |
1029 | ||
fb626663 | 1030 | return 0; |
17ad9b35 OW |
1031 | } |
1032 | ||
0dc3f44a MD |
1033 | /* Must be called from within a rcu critical section. |
1034 | * Returns a pointer from within the RCU-protected ram_list. | |
1035 | */ | |
a55bbe31 AW |
1036 | static inline void *host_from_stream_offset(QEMUFile *f, |
1037 | ram_addr_t offset, | |
1038 | int flags) | |
1039 | { | |
1040 | static RAMBlock *block = NULL; | |
1041 | char id[256]; | |
1042 | uint8_t len; | |
1043 | ||
1044 | if (flags & RAM_SAVE_FLAG_CONTINUE) { | |
9b8424d5 | 1045 | if (!block || block->max_length <= offset) { |
0971f1be | 1046 | error_report("Ack, bad migration stream!"); |
a55bbe31 AW |
1047 | return NULL; |
1048 | } | |
1049 | ||
dc94a7ed | 1050 | return memory_region_get_ram_ptr(block->mr) + offset; |
a55bbe31 AW |
1051 | } |
1052 | ||
1053 | len = qemu_get_byte(f); | |
1054 | qemu_get_buffer(f, (uint8_t *)id, len); | |
1055 | id[len] = 0; | |
1056 | ||
0dc3f44a | 1057 | QLIST_FOREACH_RCU(block, &ram_list.blocks, next) { |
9b8424d5 MT |
1058 | if (!strncmp(id, block->idstr, sizeof(id)) && |
1059 | block->max_length > offset) { | |
dc94a7ed | 1060 | return memory_region_get_ram_ptr(block->mr) + offset; |
0be839a2 | 1061 | } |
a55bbe31 AW |
1062 | } |
1063 | ||
0971f1be | 1064 | error_report("Can't find block %s!", id); |
a55bbe31 AW |
1065 | return NULL; |
1066 | } | |
1067 | ||
44c3b58c MH |
1068 | /* |
1069 | * If a page (or a whole RDMA chunk) has been | |
1070 | * determined to be zero, then zap it. | |
1071 | */ | |
1072 | void ram_handle_compressed(void *host, uint8_t ch, uint64_t size) | |
1073 | { | |
d613a56f | 1074 | if (ch != 0 || !is_zero_range(host, size)) { |
44c3b58c | 1075 | memset(host, ch, size); |
44c3b58c MH |
1076 | } |
1077 | } | |
1078 | ||
7908c78d | 1079 | static int ram_load(QEMUFile *f, void *opaque, int version_id) |
ad96090a | 1080 | { |
5b0e9dd4 | 1081 | int flags = 0, ret = 0; |
3a697f69 OW |
1082 | static uint64_t seq_iter; |
1083 | ||
1084 | seq_iter++; | |
ad96090a | 1085 | |
21a246a4 | 1086 | if (version_id != 4) { |
4798fe55 | 1087 | ret = -EINVAL; |
ad96090a BS |
1088 | } |
1089 | ||
0dc3f44a MD |
1090 | /* This RCU critical section can be very long running. |
1091 | * When RCU reclaims in the code start to become numerous, | |
1092 | * it will be necessary to reduce the granularity of this | |
1093 | * critical section. | |
1094 | */ | |
1095 | rcu_read_lock(); | |
5b0e9dd4 PL |
1096 | while (!ret && !(flags & RAM_SAVE_FLAG_EOS)) { |
1097 | ram_addr_t addr, total_ram_bytes; | |
1098 | void *host; | |
1099 | uint8_t ch; | |
ad96090a | 1100 | |
5b0e9dd4 | 1101 | addr = qemu_get_be64(f); |
ad96090a BS |
1102 | flags = addr & ~TARGET_PAGE_MASK; |
1103 | addr &= TARGET_PAGE_MASK; | |
1104 | ||
5b0e9dd4 PL |
1105 | switch (flags & ~RAM_SAVE_FLAG_CONTINUE) { |
1106 | case RAM_SAVE_FLAG_MEM_SIZE: | |
21a246a4 | 1107 | /* Synchronize RAM block list */ |
5b0e9dd4 PL |
1108 | total_ram_bytes = addr; |
1109 | while (!ret && total_ram_bytes) { | |
21a246a4 C |
1110 | RAMBlock *block; |
1111 | uint8_t len; | |
5b0e9dd4 PL |
1112 | char id[256]; |
1113 | ram_addr_t length; | |
21a246a4 C |
1114 | |
1115 | len = qemu_get_byte(f); | |
1116 | qemu_get_buffer(f, (uint8_t *)id, len); | |
1117 | id[len] = 0; | |
1118 | length = qemu_get_be64(f); | |
1119 | ||
0dc3f44a | 1120 | QLIST_FOREACH_RCU(block, &ram_list.blocks, next) { |
21a246a4 | 1121 | if (!strncmp(id, block->idstr, sizeof(id))) { |
b0cc3f83 MT |
1122 | if (length != block->used_length) { |
1123 | Error *local_err = NULL; | |
1124 | ||
1125 | ret = qemu_ram_resize(block->offset, length, &local_err); | |
1126 | if (local_err) { | |
565f65d2 | 1127 | error_report_err(local_err); |
b0cc3f83 | 1128 | } |
97ab12d4 | 1129 | } |
21a246a4 | 1130 | break; |
97ab12d4 | 1131 | } |
21a246a4 | 1132 | } |
97ab12d4 | 1133 | |
21a246a4 | 1134 | if (!block) { |
0971f1be LT |
1135 | error_report("Unknown ramblock \"%s\", cannot " |
1136 | "accept migration", id); | |
21a246a4 | 1137 | ret = -EINVAL; |
db80face | 1138 | } |
21a246a4 C |
1139 | |
1140 | total_ram_bytes -= length; | |
ad96090a | 1141 | } |
5b0e9dd4 PL |
1142 | break; |
1143 | case RAM_SAVE_FLAG_COMPRESS: | |
f09f2189 | 1144 | host = host_from_stream_offset(f, addr, flags); |
492fb99c | 1145 | if (!host) { |
db80face | 1146 | error_report("Illegal RAM offset " RAM_ADDR_FMT, addr); |
4798fe55 | 1147 | ret = -EINVAL; |
db80face | 1148 | break; |
492fb99c | 1149 | } |
97ab12d4 | 1150 | ch = qemu_get_byte(f); |
44c3b58c | 1151 | ram_handle_compressed(host, ch, TARGET_PAGE_SIZE); |
5b0e9dd4 PL |
1152 | break; |
1153 | case RAM_SAVE_FLAG_PAGE: | |
f09f2189 | 1154 | host = host_from_stream_offset(f, addr, flags); |
0ff1f9f5 | 1155 | if (!host) { |
db80face | 1156 | error_report("Illegal RAM offset " RAM_ADDR_FMT, addr); |
4798fe55 | 1157 | ret = -EINVAL; |
db80face | 1158 | break; |
0ff1f9f5 | 1159 | } |
97ab12d4 | 1160 | qemu_get_buffer(f, host, TARGET_PAGE_SIZE); |
5b0e9dd4 PL |
1161 | break; |
1162 | case RAM_SAVE_FLAG_XBZRLE: | |
1163 | host = host_from_stream_offset(f, addr, flags); | |
17ad9b35 | 1164 | if (!host) { |
db80face | 1165 | error_report("Illegal RAM offset " RAM_ADDR_FMT, addr); |
4798fe55 | 1166 | ret = -EINVAL; |
db80face | 1167 | break; |
17ad9b35 | 1168 | } |
17ad9b35 | 1169 | if (load_xbzrle(f, addr, host) < 0) { |
db80face PL |
1170 | error_report("Failed to decompress XBZRLE page at " |
1171 | RAM_ADDR_FMT, addr); | |
17ad9b35 | 1172 | ret = -EINVAL; |
db80face | 1173 | break; |
17ad9b35 | 1174 | } |
db80face | 1175 | break; |
5b0e9dd4 PL |
1176 | case RAM_SAVE_FLAG_EOS: |
1177 | /* normal exit */ | |
db80face | 1178 | break; |
5b0e9dd4 PL |
1179 | default: |
1180 | if (flags & RAM_SAVE_FLAG_HOOK) { | |
1181 | ram_control_load_hook(f, flags); | |
1182 | } else { | |
1183 | error_report("Unknown combination of migration flags: %#x", | |
1184 | flags); | |
1185 | ret = -EINVAL; | |
1186 | } | |
1187 | } | |
1188 | if (!ret) { | |
1189 | ret = qemu_file_get_error(f); | |
ad96090a | 1190 | } |
db80face | 1191 | } |
ad96090a | 1192 | |
0dc3f44a | 1193 | rcu_read_unlock(); |
ef37a699 IM |
1194 | DPRINTF("Completed load of VM with exit code %d seq iteration " |
1195 | "%" PRIu64 "\n", ret, seq_iter); | |
3a697f69 | 1196 | return ret; |
ad96090a BS |
1197 | } |
1198 | ||
0d6ab3ab | 1199 | static SaveVMHandlers savevm_ram_handlers = { |
d1315aac | 1200 | .save_live_setup = ram_save_setup, |
16310a3c JQ |
1201 | .save_live_iterate = ram_save_iterate, |
1202 | .save_live_complete = ram_save_complete, | |
e4ed1541 | 1203 | .save_live_pending = ram_save_pending, |
7908c78d | 1204 | .load_state = ram_load, |
9b5bfab0 | 1205 | .cancel = ram_migration_cancel, |
7908c78d JQ |
1206 | }; |
1207 | ||
0d6ab3ab DDAG |
1208 | void ram_mig_init(void) |
1209 | { | |
d97326ee | 1210 | qemu_mutex_init(&XBZRLE.lock); |
0d6ab3ab DDAG |
1211 | register_savevm_live(NULL, "ram", 0, 4, &savevm_ram_handlers, NULL); |
1212 | } | |
1213 | ||
0dfa5ef9 IY |
1214 | struct soundhw { |
1215 | const char *name; | |
1216 | const char *descr; | |
1217 | int enabled; | |
1218 | int isa; | |
1219 | union { | |
4a0f031d | 1220 | int (*init_isa) (ISABus *bus); |
0dfa5ef9 IY |
1221 | int (*init_pci) (PCIBus *bus); |
1222 | } init; | |
1223 | }; | |
1224 | ||
36cd6f6f PB |
1225 | static struct soundhw soundhw[9]; |
1226 | static int soundhw_count; | |
ad96090a | 1227 | |
36cd6f6f PB |
1228 | void isa_register_soundhw(const char *name, const char *descr, |
1229 | int (*init_isa)(ISABus *bus)) | |
1230 | { | |
1231 | assert(soundhw_count < ARRAY_SIZE(soundhw) - 1); | |
1232 | soundhw[soundhw_count].name = name; | |
1233 | soundhw[soundhw_count].descr = descr; | |
1234 | soundhw[soundhw_count].isa = 1; | |
1235 | soundhw[soundhw_count].init.init_isa = init_isa; | |
1236 | soundhw_count++; | |
1237 | } | |
ad96090a | 1238 | |
36cd6f6f PB |
1239 | void pci_register_soundhw(const char *name, const char *descr, |
1240 | int (*init_pci)(PCIBus *bus)) | |
1241 | { | |
1242 | assert(soundhw_count < ARRAY_SIZE(soundhw) - 1); | |
1243 | soundhw[soundhw_count].name = name; | |
1244 | soundhw[soundhw_count].descr = descr; | |
1245 | soundhw[soundhw_count].isa = 0; | |
1246 | soundhw[soundhw_count].init.init_pci = init_pci; | |
1247 | soundhw_count++; | |
1248 | } | |
ad96090a BS |
1249 | |
1250 | void select_soundhw(const char *optarg) | |
1251 | { | |
1252 | struct soundhw *c; | |
1253 | ||
c8057f95 | 1254 | if (is_help_option(optarg)) { |
ad96090a BS |
1255 | show_valid_cards: |
1256 | ||
36cd6f6f PB |
1257 | if (soundhw_count) { |
1258 | printf("Valid sound card names (comma separated):\n"); | |
1259 | for (c = soundhw; c->name; ++c) { | |
1260 | printf ("%-11s %s\n", c->name, c->descr); | |
1261 | } | |
1262 | printf("\n-soundhw all will enable all of the above\n"); | |
1263 | } else { | |
1264 | printf("Machine has no user-selectable audio hardware " | |
1265 | "(it may or may not have always-present audio hardware).\n"); | |
ad96090a | 1266 | } |
c8057f95 | 1267 | exit(!is_help_option(optarg)); |
ad96090a BS |
1268 | } |
1269 | else { | |
1270 | size_t l; | |
1271 | const char *p; | |
1272 | char *e; | |
1273 | int bad_card = 0; | |
1274 | ||
1275 | if (!strcmp(optarg, "all")) { | |
1276 | for (c = soundhw; c->name; ++c) { | |
1277 | c->enabled = 1; | |
1278 | } | |
1279 | return; | |
1280 | } | |
1281 | ||
1282 | p = optarg; | |
1283 | while (*p) { | |
1284 | e = strchr(p, ','); | |
1285 | l = !e ? strlen(p) : (size_t) (e - p); | |
1286 | ||
1287 | for (c = soundhw; c->name; ++c) { | |
1288 | if (!strncmp(c->name, p, l) && !c->name[l]) { | |
1289 | c->enabled = 1; | |
1290 | break; | |
1291 | } | |
1292 | } | |
1293 | ||
1294 | if (!c->name) { | |
1295 | if (l > 80) { | |
0971f1be | 1296 | error_report("Unknown sound card name (too big to show)"); |
ad96090a BS |
1297 | } |
1298 | else { | |
0971f1be LT |
1299 | error_report("Unknown sound card name `%.*s'", |
1300 | (int) l, p); | |
ad96090a BS |
1301 | } |
1302 | bad_card = 1; | |
1303 | } | |
1304 | p += l + (e != NULL); | |
1305 | } | |
1306 | ||
1307 | if (bad_card) { | |
1308 | goto show_valid_cards; | |
1309 | } | |
1310 | } | |
1311 | } | |
0dfa5ef9 | 1312 | |
f81222bc | 1313 | void audio_init(void) |
0dfa5ef9 IY |
1314 | { |
1315 | struct soundhw *c; | |
f81222bc PB |
1316 | ISABus *isa_bus = (ISABus *) object_resolve_path_type("", TYPE_ISA_BUS, NULL); |
1317 | PCIBus *pci_bus = (PCIBus *) object_resolve_path_type("", TYPE_PCI_BUS, NULL); | |
0dfa5ef9 IY |
1318 | |
1319 | for (c = soundhw; c->name; ++c) { | |
1320 | if (c->enabled) { | |
1321 | if (c->isa) { | |
f81222bc | 1322 | if (!isa_bus) { |
0971f1be | 1323 | error_report("ISA bus not available for %s", c->name); |
f81222bc | 1324 | exit(1); |
0dfa5ef9 | 1325 | } |
f81222bc | 1326 | c->init.init_isa(isa_bus); |
0dfa5ef9 | 1327 | } else { |
f81222bc | 1328 | if (!pci_bus) { |
0971f1be | 1329 | error_report("PCI bus not available for %s", c->name); |
f81222bc | 1330 | exit(1); |
0dfa5ef9 | 1331 | } |
f81222bc | 1332 | c->init.init_pci(pci_bus); |
0dfa5ef9 IY |
1333 | } |
1334 | } | |
1335 | } | |
1336 | } | |
ad96090a BS |
1337 | |
1338 | int qemu_uuid_parse(const char *str, uint8_t *uuid) | |
1339 | { | |
1340 | int ret; | |
1341 | ||
1342 | if (strlen(str) != 36) { | |
1343 | return -1; | |
1344 | } | |
1345 | ||
1346 | ret = sscanf(str, UUID_FMT, &uuid[0], &uuid[1], &uuid[2], &uuid[3], | |
1347 | &uuid[4], &uuid[5], &uuid[6], &uuid[7], &uuid[8], &uuid[9], | |
1348 | &uuid[10], &uuid[11], &uuid[12], &uuid[13], &uuid[14], | |
1349 | &uuid[15]); | |
1350 | ||
1351 | if (ret != 16) { | |
1352 | return -1; | |
1353 | } | |
ad96090a BS |
1354 | return 0; |
1355 | } | |
1356 | ||
0c764a9d | 1357 | void do_acpitable_option(const QemuOpts *opts) |
ad96090a BS |
1358 | { |
1359 | #ifdef TARGET_I386 | |
23084327 LE |
1360 | Error *err = NULL; |
1361 | ||
1362 | acpi_table_add(opts, &err); | |
1363 | if (err) { | |
4a44d85e SA |
1364 | error_report("Wrong acpi table provided: %s", |
1365 | error_get_pretty(err)); | |
23084327 | 1366 | error_free(err); |
ad96090a BS |
1367 | exit(1); |
1368 | } | |
1369 | #endif | |
1370 | } | |
1371 | ||
4f953d2f | 1372 | void do_smbios_option(QemuOpts *opts) |
ad96090a BS |
1373 | { |
1374 | #ifdef TARGET_I386 | |
4f953d2f | 1375 | smbios_entry_add(opts); |
ad96090a BS |
1376 | #endif |
1377 | } | |
1378 | ||
1379 | void cpudef_init(void) | |
1380 | { | |
1381 | #if defined(cpudef_setup) | |
1382 | cpudef_setup(); /* parse cpu definitions in target config file */ | |
1383 | #endif | |
1384 | } | |
1385 | ||
ad96090a BS |
1386 | int kvm_available(void) |
1387 | { | |
1388 | #ifdef CONFIG_KVM | |
1389 | return 1; | |
1390 | #else | |
1391 | return 0; | |
1392 | #endif | |
1393 | } | |
1394 | ||
1395 | int xen_available(void) | |
1396 | { | |
1397 | #ifdef CONFIG_XEN | |
1398 | return 1; | |
1399 | #else | |
1400 | return 0; | |
1401 | #endif | |
1402 | } | |
99afc91d DB |
1403 | |
1404 | ||
1405 | TargetInfo *qmp_query_target(Error **errp) | |
1406 | { | |
1407 | TargetInfo *info = g_malloc0(sizeof(*info)); | |
1408 | ||
c02a9552 | 1409 | info->arch = g_strdup(TARGET_NAME); |
99afc91d DB |
1410 | |
1411 | return info; | |
1412 | } | |
7ca1dfad CV |
1413 | |
1414 | /* Stub function that's gets run on the vcpu when its brought out of the | |
1415 | VM to run inside qemu via async_run_on_cpu()*/ | |
1416 | static void mig_sleep_cpu(void *opq) | |
1417 | { | |
1418 | qemu_mutex_unlock_iothread(); | |
1419 | g_usleep(30*1000); | |
1420 | qemu_mutex_lock_iothread(); | |
1421 | } | |
1422 | ||
1423 | /* To reduce the dirty rate explicitly disallow the VCPUs from spending | |
1424 | much time in the VM. The migration thread will try to catchup. | |
1425 | Workload will experience a performance drop. | |
1426 | */ | |
7ca1dfad CV |
1427 | static void mig_throttle_guest_down(void) |
1428 | { | |
38fcbd3f AF |
1429 | CPUState *cpu; |
1430 | ||
7ca1dfad | 1431 | qemu_mutex_lock_iothread(); |
38fcbd3f AF |
1432 | CPU_FOREACH(cpu) { |
1433 | async_run_on_cpu(cpu, mig_sleep_cpu, NULL); | |
1434 | } | |
7ca1dfad CV |
1435 | qemu_mutex_unlock_iothread(); |
1436 | } | |
1437 | ||
1438 | static void check_guest_throttling(void) | |
1439 | { | |
1440 | static int64_t t0; | |
1441 | int64_t t1; | |
1442 | ||
1443 | if (!mig_throttle_on) { | |
1444 | return; | |
1445 | } | |
1446 | ||
1447 | if (!t0) { | |
bc72ad67 | 1448 | t0 = qemu_clock_get_ns(QEMU_CLOCK_REALTIME); |
7ca1dfad CV |
1449 | return; |
1450 | } | |
1451 | ||
bc72ad67 | 1452 | t1 = qemu_clock_get_ns(QEMU_CLOCK_REALTIME); |
7ca1dfad CV |
1453 | |
1454 | /* If it has been more than 40 ms since the last time the guest | |
1455 | * was throttled then do it again. | |
1456 | */ | |
1457 | if (40 < (t1-t0)/1000000) { | |
1458 | mig_throttle_guest_down(); | |
1459 | t0 = t1; | |
1460 | } | |
1461 | } |