Use aux_path, if set, when loading verify state
[fio.git] / verify.c
CommitLineData
e29d1b70
JA
1/*
2 * IO verification helpers
3 */
4#include <unistd.h>
5#include <fcntl.h>
6#include <string.h>
97af62ce 7#include <assert.h>
e8462bd8 8#include <pthread.h>
79402a12 9#include <libgen.h>
e29d1b70
JA
10
11#include "fio.h"
4f5af7b2 12#include "verify.h"
0d29de83 13#include "trim.h"
637ef8d9 14#include "lib/rand.h"
51aa2da8 15#include "lib/hweight.h"
2cac8fcb 16#include "lib/pattern.h"
f5bff36e 17#include "oslib/asprintf.h"
e29d1b70 18
eef6eea1
JA
19#include "crc/md5.h"
20#include "crc/crc64.h"
21#include "crc/crc32.h"
bac39e0e 22#include "crc/crc32c.h"
eef6eea1
JA
23#include "crc/crc16.h"
24#include "crc/crc7.h"
25#include "crc/sha256.h"
26#include "crc/sha512.h"
7c353ceb 27#include "crc/sha1.h"
844ea602 28#include "crc/xxhash.h"
ae3a5acc 29#include "crc/sha3.h"
cd14cc10 30
7d9fb455
JA
31static void populate_hdr(struct thread_data *td, struct io_u *io_u,
32 struct verify_header *hdr, unsigned int header_num,
33 unsigned int header_len);
b638d82f
RP
34static void __fill_hdr(struct thread_data *td, struct io_u *io_u,
35 struct verify_header *hdr, unsigned int header_num,
36 unsigned int header_len, uint64_t rand_seed);
7d9fb455 37
ce35b1ec
JA
38void fill_buffer_pattern(struct thread_data *td, void *p, unsigned int len)
39{
2cac8fcb 40 (void)cpy_pattern(td->o.buffer_pattern, td->o.buffer_pattern_bytes, p, len);
ce35b1ec
JA
41}
42
9781c080 43static void __fill_buffer(struct thread_options *o, uint64_t seed, void *p,
a89ba4b1 44 unsigned int len)
7fa085ea
JA
45{
46 __fill_random_buf_percentage(seed, p, o->compress_percentage, len, len, o->buffer_pattern, o->buffer_pattern_bytes);
47}
48
9781c080
MHT
49static uint64_t fill_buffer(struct thread_data *td, void *p,
50 unsigned int len)
7fa085ea
JA
51{
52 struct frand_state *fs = &td->verify_state;
53 struct thread_options *o = &td->o;
54
55 return fill_random_buf_percentage(fs, p, o->compress_percentage, len, len, o->buffer_pattern, o->buffer_pattern_bytes);
56}
57
ce35b1ec 58void fill_verify_pattern(struct thread_data *td, void *p, unsigned int len,
9781c080 59 struct io_u *io_u, uint64_t seed, int use_seed)
ce35b1ec 60{
bc769898
JA
61 struct thread_options *o = &td->o;
62
63 if (!o->verify_pattern_bytes) {
ce35b1ec
JA
64 dprint(FD_VERIFY, "fill random bytes len=%u\n", len);
65
66 if (use_seed)
7fa085ea
JA
67 __fill_buffer(o, seed, p, len);
68 else
69 io_u->rand_seed = fill_buffer(td, p, len);
ce35b1ec
JA
70 return;
71 }
c4b6117b 72
61b9861d
RP
73 /* Skip if we were here and we do not need to patch pattern
74 * with format */
75 if (!td->o.verify_fmt_sz && io_u->buf_filled_len >= len) {
ce35b1ec 76 dprint(FD_VERIFY, "using already filled verify pattern b=%d len=%u\n",
bc769898 77 o->verify_pattern_bytes, len);
ce35b1ec
JA
78 return;
79 }
80
61b9861d
RP
81 (void)paste_format(td->o.verify_pattern, td->o.verify_pattern_bytes,
82 td->o.verify_fmt, td->o.verify_fmt_sz,
83 p, len, io_u);
ce35b1ec
JA
84 io_u->buf_filled_len = len;
85}
86
cfbcd0dc
JA
87static unsigned int get_hdr_inc(struct thread_data *td, struct io_u *io_u)
88{
89 unsigned int hdr_inc;
90
57a61cd0
JA
91 /*
92 * If we use bs_unaligned, buflen can be larger than the verify
93 * interval (which just defaults to the smallest blocksize possible).
94 */
cfbcd0dc 95 hdr_inc = io_u->buflen;
57a61cd0
JA
96 if (td->o.verify_interval && td->o.verify_interval <= io_u->buflen &&
97 !td->o.bs_unaligned)
cfbcd0dc
JA
98 hdr_inc = td->o.verify_interval;
99
100 return hdr_inc;
101}
102
c50ca7bd 103static void fill_pattern_headers(struct thread_data *td, struct io_u *io_u,
9781c080 104 uint64_t seed, int use_seed)
c50ca7bd
JA
105{
106 unsigned int hdr_inc, header_num;
107 struct verify_header *hdr;
108 void *p = io_u->buf;
109
ce35b1ec 110 fill_verify_pattern(td, p, io_u->buflen, io_u, seed, use_seed);
c50ca7bd 111
cfbcd0dc 112 hdr_inc = get_hdr_inc(td, io_u);
c50ca7bd
JA
113 header_num = 0;
114 for (; p < io_u->buf + io_u->buflen; p += hdr_inc) {
115 hdr = p;
116 populate_hdr(td, io_u, hdr, header_num, hdr_inc);
117 header_num++;
118 }
119}
120
4764aec9 121static void memswp(void *buf1, void *buf2, unsigned int len)
546a9142 122{
dee6de74
SL
123 char swap[200];
124
125 assert(len <= sizeof(swap));
90059d65 126
546a9142
SL
127 memcpy(&swap, buf1, len);
128 memcpy(buf1, buf2, len);
129 memcpy(buf2, &swap, len);
130}
131
e29d1b70
JA
132static void hexdump(void *buffer, int len)
133{
134 unsigned char *p = buffer;
135 int i;
136
137 for (i = 0; i < len; i++)
bfacf389
JA
138 log_err("%02x", p[i]);
139 log_err("\n");
e29d1b70
JA
140}
141
87677832 142/*
de8f6de9 143 * Prepare for separation of verify_header and checksum header
87677832 144 */
546dfd9f 145static inline unsigned int __hdr_size(int verify_type)
87677832 146{
03e20d68 147 unsigned int len = 0;
87677832 148
546dfd9f
JA
149 switch (verify_type) {
150 case VERIFY_NONE:
b638d82f 151 case VERIFY_HDR_ONLY:
546dfd9f 152 case VERIFY_NULL:
ed3a433d 153 case VERIFY_PATTERN:
546dfd9f
JA
154 len = 0;
155 break;
156 case VERIFY_MD5:
157 len = sizeof(struct vhdr_md5);
158 break;
159 case VERIFY_CRC64:
160 len = sizeof(struct vhdr_crc64);
161 break;
bac39e0e 162 case VERIFY_CRC32C:
546dfd9f 163 case VERIFY_CRC32:
3845591f 164 case VERIFY_CRC32C_INTEL:
546dfd9f
JA
165 len = sizeof(struct vhdr_crc32);
166 break;
167 case VERIFY_CRC16:
168 len = sizeof(struct vhdr_crc16);
169 break;
170 case VERIFY_CRC7:
171 len = sizeof(struct vhdr_crc7);
172 break;
173 case VERIFY_SHA256:
174 len = sizeof(struct vhdr_sha256);
175 break;
176 case VERIFY_SHA512:
177 len = sizeof(struct vhdr_sha512);
178 break;
ae3a5acc
JA
179 case VERIFY_SHA3_224:
180 len = sizeof(struct vhdr_sha3_224);
181 break;
182 case VERIFY_SHA3_256:
183 len = sizeof(struct vhdr_sha3_256);
184 break;
185 case VERIFY_SHA3_384:
186 len = sizeof(struct vhdr_sha3_384);
187 break;
188 case VERIFY_SHA3_512:
189 len = sizeof(struct vhdr_sha3_512);
190 break;
844ea602
JA
191 case VERIFY_XXHASH:
192 len = sizeof(struct vhdr_xxhash);
193 break;
7c353ceb
JA
194 case VERIFY_SHA1:
195 len = sizeof(struct vhdr_sha1);
196 break;
59245381 197 case VERIFY_PATTERN_NO_HDR:
ed3a433d 198 return 0;
546dfd9f
JA
199 default:
200 log_err("fio: unknown verify header!\n");
201 assert(0);
202 }
203
204 return len + sizeof(struct verify_header);
87677832
JA
205}
206
ed3a433d
JA
207static inline unsigned int hdr_size(struct thread_data *td,
208 struct verify_header *hdr)
87677832 209{
ed3a433d
JA
210 if (td->o.verify == VERIFY_PATTERN_NO_HDR)
211 return 0;
212
546dfd9f
JA
213 return __hdr_size(hdr->verify_type);
214}
215
216static void *hdr_priv(struct verify_header *hdr)
217{
218 void *priv = hdr;
219
220 return priv + sizeof(struct verify_header);
87677832
JA
221}
222
936216f8
JA
223/*
224 * Verify container, pass info to verify handlers and allow them to
225 * pass info back in case of error
226 */
227struct vcont {
228 /*
229 * Input
230 */
231 struct io_u *io_u;
232 unsigned int hdr_num;
7d9fb455 233 struct thread_data *td;
936216f8
JA
234
235 /*
236 * Output, only valid in case of error
237 */
bfacf389
JA
238 const char *name;
239 void *good_crc;
240 void *bad_crc;
936216f8
JA
241 unsigned int crc_len;
242};
243
dacbbb88 244#define DUMP_BUF_SZ 255
dacbbb88 245
c50ca7bd
JA
246static void dump_buf(char *buf, unsigned int len, unsigned long long offset,
247 const char *type, struct fio_file *f)
7d9fb455 248{
9db753ec
BVA
249 char *ptr, *fname;
250 char sep[2] = { FIO_OS_PATH_SEPARATOR, 0 };
7d9fb455
JA
251 int ret, fd;
252
6f260b31 253 ptr = strdup(f->file_name);
c50ca7bd 254
9db753ec
BVA
255 if (asprintf(&fname, "%s%s%s.%llu.%s", aux_path ? : "",
256 aux_path ? sep : "", basename(ptr), offset, type) < 0) {
7fc08e99 257 if (!fio_did_warn(FIO_WARN_VERIFY_BUF))
9db753ec
BVA
258 log_err("fio: not enough memory for dump buffer filename\n");
259 goto free_ptr;
dacbbb88
JA
260 }
261
7d9fb455
JA
262 fd = open(fname, O_CREAT | O_TRUNC | O_WRONLY, 0644);
263 if (fd < 0) {
264 perror("open verify buf file");
9db753ec 265 goto free_fname;
7d9fb455
JA
266 }
267
268 while (len) {
269 ret = write(fd, buf, len);
270 if (!ret)
271 break;
272 else if (ret < 0) {
273 perror("write verify buf file");
274 break;
275 }
276 len -= ret;
277 buf += ret;
278 }
279
280 close(fd);
c50ca7bd 281 log_err(" %s data dumped as %s\n", type, fname);
9db753ec
BVA
282
283free_fname:
284 free(fname);
285
286free_ptr:
6f260b31 287 free(ptr);
7d9fb455
JA
288}
289
c50ca7bd
JA
290/*
291 * Dump the contents of the read block and re-generate the correct data
292 * and dump that too.
293 */
9ba987cc 294static void __dump_verify_buffers(struct verify_header *hdr, struct vcont *vc)
7d9fb455
JA
295{
296 struct thread_data *td = vc->td;
297 struct io_u *io_u = vc->io_u;
298 unsigned long hdr_offset;
7d9fb455 299 struct io_u dummy;
c50ca7bd 300 void *buf;
7d9fb455 301
0dce9bc9
SL
302 if (!td->o.verify_dump)
303 return;
304
c50ca7bd
JA
305 /*
306 * Dump the contents we just read off disk
307 */
7d9fb455
JA
308 hdr_offset = vc->hdr_num * hdr->len;
309
c50ca7bd
JA
310 dump_buf(io_u->buf + hdr_offset, hdr->len, io_u->offset + hdr_offset,
311 "received", vc->io_u->file);
7d9fb455 312
c50ca7bd
JA
313 /*
314 * Allocate a new buf and re-generate the original data
315 */
316 buf = malloc(io_u->buflen);
7d9fb455 317 dummy = *io_u;
c50ca7bd 318 dummy.buf = buf;
4aae38a6 319 dummy.rand_seed = hdr->rand_seed;
cfbcd0dc 320 dummy.buf_filled_len = 0;
0d81daf9 321 dummy.buflen = io_u->buflen;
7d9fb455 322
c50ca7bd 323 fill_pattern_headers(td, &dummy, hdr->rand_seed, 1);
7d9fb455 324
c50ca7bd
JA
325 dump_buf(buf + hdr_offset, hdr->len, io_u->offset + hdr_offset,
326 "expected", vc->io_u->file);
7d9fb455
JA
327 free(buf);
328}
329
9ba987cc
JA
330static void dump_verify_buffers(struct verify_header *hdr, struct vcont *vc)
331{
332 struct thread_data *td = vc->td;
333 struct verify_header shdr;
334
335 if (td->o.verify == VERIFY_PATTERN_NO_HDR) {
b638d82f 336 __fill_hdr(td, vc->io_u, &shdr, 0, vc->io_u->buflen, 0);
9ba987cc
JA
337 hdr = &shdr;
338 }
339
340 __dump_verify_buffers(hdr, vc);
341}
342
bfacf389
JA
343static void log_verify_failure(struct verify_header *hdr, struct vcont *vc)
344{
345 unsigned long long offset;
346
347 offset = vc->io_u->offset;
348 offset += vc->hdr_num * hdr->len;
46ff70e8
FC
349 log_err("%.8s: verify failed at file %s offset %llu, length %u"
350 " (requested block: offset=%llu, length=%llu)\n",
351 vc->name, vc->io_u->file->file_name, offset, hdr->len,
352 vc->io_u->offset, vc->io_u->buflen);
bfacf389
JA
353
354 if (vc->good_crc && vc->bad_crc) {
355 log_err(" Expected CRC: ");
356 hexdump(vc->good_crc, vc->crc_len);
357 log_err(" Received CRC: ");
358 hexdump(vc->bad_crc, vc->crc_len);
359 }
7d9fb455
JA
360
361 dump_verify_buffers(hdr, vc);
bfacf389
JA
362}
363
d9f2caf3
JA
364/*
365 * Return data area 'header_num'
366 */
936216f8 367static inline void *io_u_verify_off(struct verify_header *hdr, struct vcont *vc)
d9f2caf3 368{
ed3a433d 369 return vc->io_u->buf + vc->hdr_num * hdr->len + hdr_size(vc->td, hdr);
d9f2caf3
JA
370}
371
92bf48d5
JA
372static int verify_io_u_pattern(struct verify_header *hdr, struct vcont *vc)
373{
374 struct thread_data *td = vc->td;
375 struct io_u *io_u = vc->io_u;
376 char *buf, *pattern;
2b13e716 377 unsigned int header_size = __hdr_size(td->o.verify);
25276497
RP
378 unsigned int len, mod, i, pattern_size;
379 int rc;
92bf48d5
JA
380
381 pattern = td->o.verify_pattern;
9a2a86d0 382 pattern_size = td->o.verify_pattern_bytes;
61b9861d
RP
383 assert(pattern_size != 0);
384
385 (void)paste_format_inplace(pattern, pattern_size,
386 td->o.verify_fmt, td->o.verify_fmt_sz, io_u);
387
d637b8b8 388 buf = (char *) hdr + header_size;
2b13e716 389 len = get_hdr_inc(td, io_u) - header_size;
61b9861d 390 mod = (get_hdr_inc(td, io_u) * vc->hdr_num + header_size) % pattern_size;
9a2a86d0 391
25276497
RP
392 rc = cmp_pattern(pattern, pattern_size, mod, buf, len);
393 if (!rc)
394 return 0;
92bf48d5 395
25276497
RP
396 /* Slow path, compare each byte */
397 for (i = 0; i < len; i++) {
92bf48d5
JA
398 if (buf[i] != pattern[mod]) {
399 unsigned int bits;
400
401 bits = hweight8(buf[i] ^ pattern[mod]);
25276497
RP
402 log_err("fio: got pattern '%02x', wanted '%02x'. Bad bits %d\n",
403 (unsigned char)buf[i],
404 (unsigned char)pattern[mod],
405 bits);
92bf48d5 406 log_err("fio: bad pattern block offset %u\n", i);
7ea0a9ad 407 vc->name = "pattern";
d0c8ccb0 408 log_verify_failure(hdr, vc);
92bf48d5
JA
409 return EILSEQ;
410 }
411 mod++;
412 if (mod == td->o.verify_pattern_bytes)
413 mod = 0;
414 }
415
25276497
RP
416 /* Unreachable line */
417 assert(0);
418 return EILSEQ;
92bf48d5
JA
419}
420
844ea602
JA
421static int verify_io_u_xxhash(struct verify_header *hdr, struct vcont *vc)
422{
423 void *p = io_u_verify_off(hdr, vc);
424 struct vhdr_xxhash *vh = hdr_priv(hdr);
425 uint32_t hash;
426 void *state;
427
428 dprint(FD_VERIFY, "xxhash verify io_u %p, len %u\n", vc->io_u, hdr->len);
429
430 state = XXH32_init(1);
ed3a433d 431 XXH32_update(state, p, hdr->len - hdr_size(vc->td, hdr));
844ea602
JA
432 hash = XXH32_digest(state);
433
434 if (vh->hash == hash)
435 return 0;
436
437 vc->name = "xxhash";
438 vc->good_crc = &vh->hash;
439 vc->bad_crc = &hash;
440 vc->crc_len = sizeof(hash);
441 log_verify_failure(hdr, vc);
442 return EILSEQ;
443}
444
ae3a5acc
JA
445static int verify_io_u_sha3(struct verify_header *hdr, struct vcont *vc,
446 struct fio_sha3_ctx *sha3_ctx, uint8_t *sha,
447 unsigned int sha_size, const char *name)
448{
449 void *p = io_u_verify_off(hdr, vc);
450
451 dprint(FD_VERIFY, "%s verify io_u %p, len %u\n", name, vc->io_u, hdr->len);
452
453 fio_sha3_update(sha3_ctx, p, hdr->len - hdr_size(vc->td, hdr));
454 fio_sha3_final(sha3_ctx);
455
456 if (!memcmp(sha, sha3_ctx->sha, sha_size))
457 return 0;
458
459 vc->name = name;
460 vc->good_crc = sha;
461 vc->bad_crc = sha3_ctx->sha;
462 vc->crc_len = sha_size;
463 log_verify_failure(hdr, vc);
464 return EILSEQ;
465}
466
467static int verify_io_u_sha3_224(struct verify_header *hdr, struct vcont *vc)
468{
469 struct vhdr_sha3_224 *vh = hdr_priv(hdr);
470 uint8_t sha[SHA3_224_DIGEST_SIZE];
471 struct fio_sha3_ctx sha3_ctx = {
472 .sha = sha,
473 };
474
475 fio_sha3_224_init(&sha3_ctx);
476
477 return verify_io_u_sha3(hdr, vc, &sha3_ctx, vh->sha,
478 SHA3_224_DIGEST_SIZE, "sha3-224");
479}
480
481static int verify_io_u_sha3_256(struct verify_header *hdr, struct vcont *vc)
482{
483 struct vhdr_sha3_256 *vh = hdr_priv(hdr);
484 uint8_t sha[SHA3_256_DIGEST_SIZE];
485 struct fio_sha3_ctx sha3_ctx = {
486 .sha = sha,
487 };
488
489 fio_sha3_256_init(&sha3_ctx);
490
491 return verify_io_u_sha3(hdr, vc, &sha3_ctx, vh->sha,
492 SHA3_256_DIGEST_SIZE, "sha3-256");
493}
494
495static int verify_io_u_sha3_384(struct verify_header *hdr, struct vcont *vc)
496{
497 struct vhdr_sha3_384 *vh = hdr_priv(hdr);
498 uint8_t sha[SHA3_384_DIGEST_SIZE];
499 struct fio_sha3_ctx sha3_ctx = {
500 .sha = sha,
501 };
502
503 fio_sha3_384_init(&sha3_ctx);
504
505 return verify_io_u_sha3(hdr, vc, &sha3_ctx, vh->sha,
506 SHA3_384_DIGEST_SIZE, "sha3-384");
507}
508
509static int verify_io_u_sha3_512(struct verify_header *hdr, struct vcont *vc)
510{
511 struct vhdr_sha3_512 *vh = hdr_priv(hdr);
512 uint8_t sha[SHA3_512_DIGEST_SIZE];
513 struct fio_sha3_ctx sha3_ctx = {
514 .sha = sha,
515 };
516
517 fio_sha3_512_init(&sha3_ctx);
518
519 return verify_io_u_sha3(hdr, vc, &sha3_ctx, vh->sha,
520 SHA3_512_DIGEST_SIZE, "sha3-512");
521}
522
936216f8 523static int verify_io_u_sha512(struct verify_header *hdr, struct vcont *vc)
cd14cc10 524{
936216f8 525 void *p = io_u_verify_off(hdr, vc);
546dfd9f 526 struct vhdr_sha512 *vh = hdr_priv(hdr);
cd14cc10 527 uint8_t sha512[128];
25dfa848 528 struct fio_sha512_ctx sha512_ctx = {
cd14cc10
JA
529 .buf = sha512,
530 };
531
936216f8 532 dprint(FD_VERIFY, "sha512 verify io_u %p, len %u\n", vc->io_u, hdr->len);
bd6f78b2 533
25dfa848 534 fio_sha512_init(&sha512_ctx);
ed3a433d 535 fio_sha512_update(&sha512_ctx, p, hdr->len - hdr_size(vc->td, hdr));
cd14cc10 536
bfacf389
JA
537 if (!memcmp(vh->sha512, sha512_ctx.buf, sizeof(sha512)))
538 return 0;
cd14cc10 539
bfacf389
JA
540 vc->name = "sha512";
541 vc->good_crc = vh->sha512;
542 vc->bad_crc = sha512_ctx.buf;
543 vc->crc_len = sizeof(vh->sha512);
544 log_verify_failure(hdr, vc);
545 return EILSEQ;
cd14cc10
JA
546}
547
936216f8 548static int verify_io_u_sha256(struct verify_header *hdr, struct vcont *vc)
cd14cc10 549{
936216f8 550 void *p = io_u_verify_off(hdr, vc);
546dfd9f 551 struct vhdr_sha256 *vh = hdr_priv(hdr);
bc77f56f 552 uint8_t sha256[64];
25dfa848 553 struct fio_sha256_ctx sha256_ctx = {
cd14cc10
JA
554 .buf = sha256,
555 };
556
936216f8 557 dprint(FD_VERIFY, "sha256 verify io_u %p, len %u\n", vc->io_u, hdr->len);
bd6f78b2 558
25dfa848 559 fio_sha256_init(&sha256_ctx);
ed3a433d 560 fio_sha256_update(&sha256_ctx, p, hdr->len - hdr_size(vc->td, hdr));
017052b6 561 fio_sha256_final(&sha256_ctx);
cd14cc10 562
bfacf389
JA
563 if (!memcmp(vh->sha256, sha256_ctx.buf, sizeof(sha256)))
564 return 0;
cd14cc10 565
bfacf389
JA
566 vc->name = "sha256";
567 vc->good_crc = vh->sha256;
568 vc->bad_crc = sha256_ctx.buf;
569 vc->crc_len = sizeof(vh->sha256);
570 log_verify_failure(hdr, vc);
571 return EILSEQ;
cd14cc10
JA
572}
573
936216f8 574static int verify_io_u_sha1(struct verify_header *hdr, struct vcont *vc)
7c353ceb 575{
936216f8 576 void *p = io_u_verify_off(hdr, vc);
7c353ceb
JA
577 struct vhdr_sha1 *vh = hdr_priv(hdr);
578 uint32_t sha1[5];
25dfa848 579 struct fio_sha1_ctx sha1_ctx = {
7c353ceb
JA
580 .H = sha1,
581 };
582
936216f8 583 dprint(FD_VERIFY, "sha1 verify io_u %p, len %u\n", vc->io_u, hdr->len);
7c353ceb 584
25dfa848 585 fio_sha1_init(&sha1_ctx);
ed3a433d 586 fio_sha1_update(&sha1_ctx, p, hdr->len - hdr_size(vc->td, hdr));
017052b6 587 fio_sha1_final(&sha1_ctx);
7c353ceb 588
bfacf389
JA
589 if (!memcmp(vh->sha1, sha1_ctx.H, sizeof(sha1)))
590 return 0;
7c353ceb 591
bfacf389
JA
592 vc->name = "sha1";
593 vc->good_crc = vh->sha1;
594 vc->bad_crc = sha1_ctx.H;
595 vc->crc_len = sizeof(vh->sha1);
596 log_verify_failure(hdr, vc);
597 return EILSEQ;
7c353ceb
JA
598}
599
936216f8 600static int verify_io_u_crc7(struct verify_header *hdr, struct vcont *vc)
1e154bdb 601{
936216f8 602 void *p = io_u_verify_off(hdr, vc);
546dfd9f 603 struct vhdr_crc7 *vh = hdr_priv(hdr);
1e154bdb
JA
604 unsigned char c;
605
936216f8 606 dprint(FD_VERIFY, "crc7 verify io_u %p, len %u\n", vc->io_u, hdr->len);
bd6f78b2 607
ed3a433d 608 c = fio_crc7(p, hdr->len - hdr_size(vc->td, hdr));
1e154bdb 609
bfacf389
JA
610 if (c == vh->crc7)
611 return 0;
1e154bdb 612
bfacf389
JA
613 vc->name = "crc7";
614 vc->good_crc = &vh->crc7;
615 vc->bad_crc = &c;
616 vc->crc_len = 1;
617 log_verify_failure(hdr, vc);
618 return EILSEQ;
1e154bdb
JA
619}
620
936216f8 621static int verify_io_u_crc16(struct verify_header *hdr, struct vcont *vc)
969f7ed3 622{
936216f8 623 void *p = io_u_verify_off(hdr, vc);
546dfd9f 624 struct vhdr_crc16 *vh = hdr_priv(hdr);
969f7ed3
JA
625 unsigned short c;
626
936216f8 627 dprint(FD_VERIFY, "crc16 verify io_u %p, len %u\n", vc->io_u, hdr->len);
bd6f78b2 628
ed3a433d 629 c = fio_crc16(p, hdr->len - hdr_size(vc->td, hdr));
969f7ed3 630
bfacf389
JA
631 if (c == vh->crc16)
632 return 0;
969f7ed3 633
bfacf389
JA
634 vc->name = "crc16";
635 vc->good_crc = &vh->crc16;
636 vc->bad_crc = &c;
637 vc->crc_len = 2;
638 log_verify_failure(hdr, vc);
639 return EILSEQ;
969f7ed3
JA
640}
641
936216f8 642static int verify_io_u_crc64(struct verify_header *hdr, struct vcont *vc)
d77a7af3 643{
936216f8 644 void *p = io_u_verify_off(hdr, vc);
546dfd9f 645 struct vhdr_crc64 *vh = hdr_priv(hdr);
d77a7af3
JA
646 unsigned long long c;
647
936216f8 648 dprint(FD_VERIFY, "crc64 verify io_u %p, len %u\n", vc->io_u, hdr->len);
bd6f78b2 649
ed3a433d 650 c = fio_crc64(p, hdr->len - hdr_size(vc->td, hdr));
d77a7af3 651
bfacf389
JA
652 if (c == vh->crc64)
653 return 0;
d77a7af3 654
bfacf389
JA
655 vc->name = "crc64";
656 vc->good_crc = &vh->crc64;
657 vc->bad_crc = &c;
658 vc->crc_len = 8;
659 log_verify_failure(hdr, vc);
660 return EILSEQ;
d77a7af3
JA
661}
662
936216f8 663static int verify_io_u_crc32(struct verify_header *hdr, struct vcont *vc)
e29d1b70 664{
936216f8 665 void *p = io_u_verify_off(hdr, vc);
546dfd9f
JA
666 struct vhdr_crc32 *vh = hdr_priv(hdr);
667 uint32_t c;
e29d1b70 668
936216f8 669 dprint(FD_VERIFY, "crc32 verify io_u %p, len %u\n", vc->io_u, hdr->len);
bd6f78b2 670
ed3a433d 671 c = fio_crc32(p, hdr->len - hdr_size(vc->td, hdr));
e29d1b70 672
bfacf389
JA
673 if (c == vh->crc32)
674 return 0;
e29d1b70 675
bfacf389
JA
676 vc->name = "crc32";
677 vc->good_crc = &vh->crc32;
678 vc->bad_crc = &c;
679 vc->crc_len = 4;
680 log_verify_failure(hdr, vc);
681 return EILSEQ;
e29d1b70
JA
682}
683
936216f8 684static int verify_io_u_crc32c(struct verify_header *hdr, struct vcont *vc)
bac39e0e 685{
936216f8 686 void *p = io_u_verify_off(hdr, vc);
bac39e0e
JA
687 struct vhdr_crc32 *vh = hdr_priv(hdr);
688 uint32_t c;
689
936216f8 690 dprint(FD_VERIFY, "crc32c verify io_u %p, len %u\n", vc->io_u, hdr->len);
bac39e0e 691
ed3a433d 692 c = fio_crc32c(p, hdr->len - hdr_size(vc->td, hdr));
bac39e0e 693
bfacf389
JA
694 if (c == vh->crc32)
695 return 0;
bac39e0e 696
bfacf389
JA
697 vc->name = "crc32c";
698 vc->good_crc = &vh->crc32;
699 vc->bad_crc = &c;
700 vc->crc_len = 4;
701 log_verify_failure(hdr, vc);
702 return EILSEQ;
bac39e0e
JA
703}
704
936216f8 705static int verify_io_u_md5(struct verify_header *hdr, struct vcont *vc)
e29d1b70 706{
936216f8 707 void *p = io_u_verify_off(hdr, vc);
546dfd9f 708 struct vhdr_md5 *vh = hdr_priv(hdr);
8c432325 709 uint32_t hash[MD5_HASH_WORDS];
25dfa848 710 struct fio_md5_ctx md5_ctx = {
8c432325
JA
711 .hash = hash,
712 };
e29d1b70 713
936216f8 714 dprint(FD_VERIFY, "md5 verify io_u %p, len %u\n", vc->io_u, hdr->len);
bd6f78b2 715
25dfa848 716 fio_md5_init(&md5_ctx);
ed3a433d 717 fio_md5_update(&md5_ctx, p, hdr->len - hdr_size(vc->td, hdr));
017052b6 718 fio_md5_final(&md5_ctx);
e29d1b70 719
bfacf389
JA
720 if (!memcmp(vh->md5_digest, md5_ctx.hash, sizeof(hash)))
721 return 0;
e29d1b70 722
bfacf389
JA
723 vc->name = "md5";
724 vc->good_crc = vh->md5_digest;
725 vc->bad_crc = md5_ctx.hash;
726 vc->crc_len = sizeof(hash);
727 log_verify_failure(hdr, vc);
728 return EILSEQ;
e29d1b70
JA
729}
730
e8462bd8
JA
731/*
732 * Push IO verification to a separate thread
733 */
f8b0bd10 734int verify_io_u_async(struct thread_data *td, struct io_u **io_u_ptr)
e8462bd8 735{
f8b0bd10 736 struct io_u *io_u = *io_u_ptr;
e8462bd8 737
e8462bd8 738 pthread_mutex_lock(&td->io_u_lock);
d7ee2a7d 739
f8b0bd10
JA
740 if (io_u->file)
741 put_file_log(td, io_u->file);
742
0c41214f
RR
743 if (io_u->flags & IO_U_F_IN_CUR_DEPTH) {
744 td->cur_depth--;
1651e431 745 io_u_clear(td, io_u, IO_U_F_IN_CUR_DEPTH);
0c41214f 746 }
2ae0b204 747 flist_add_tail(&io_u->verify_list, &td->verify_list);
f8b0bd10 748 *io_u_ptr = NULL;
e8462bd8
JA
749
750 pthread_cond_signal(&td->verify_cond);
b93a8eb0 751 pthread_mutex_unlock(&td->io_u_lock);
e8462bd8
JA
752 return 0;
753}
754
323f58c5
JA
755/*
756 * Thanks Rusty, for spending the time so I don't have to.
757 *
758 * http://rusty.ozlabs.org/?p=560
759 */
760static int mem_is_zero(const void *data, size_t length)
761{
762 const unsigned char *p = data;
763 size_t len;
764
765 /* Check first 16 bytes manually */
766 for (len = 0; len < 16; len++) {
767 if (!length)
768 return 1;
769 if (*p)
770 return 0;
771 p++;
772 length--;
773 }
774
775 /* Now we know that's zero, memcmp with self. */
776 return memcmp(data, p, length) == 0;
777}
778
779static int mem_is_zero_slow(const void *data, size_t length, size_t *offset)
780{
781 const unsigned char *p = data;
782
783 *offset = 0;
784 while (length) {
785 if (*p)
786 break;
787 (*offset)++;
788 length--;
789 p++;
790 }
791
792 return !length;
793}
794
0d29de83
JA
795static int verify_trimmed_io_u(struct thread_data *td, struct io_u *io_u)
796{
323f58c5 797 size_t offset;
0d29de83
JA
798
799 if (!td->o.trim_zero)
800 return 0;
801
323f58c5 802 if (mem_is_zero(io_u->buf, io_u->buflen))
0d29de83
JA
803 return 0;
804
323f58c5
JA
805 mem_is_zero_slow(io_u->buf, io_u->buflen, &offset);
806
5fff9543 807 log_err("trim: verify failed at file %s offset %llu, length %llu"
a917a8b3
JA
808 ", block offset %lu\n",
809 io_u->file->file_name, io_u->offset, io_u->buflen,
323f58c5
JA
810 (unsigned long) offset);
811 return EILSEQ;
0d29de83
JA
812}
813
b638d82f
RP
814static int verify_header(struct io_u *io_u, struct thread_data *td,
815 struct verify_header *hdr, unsigned int hdr_num,
816 unsigned int hdr_len)
f65d1c26
JA
817{
818 void *p = hdr;
819 uint32_t crc;
820
5964842c
AG
821 if (hdr->magic != FIO_HDR_MAGIC) {
822 log_err("verify: bad magic header %x, wanted %x",
823 hdr->magic, FIO_HDR_MAGIC);
824 goto err;
825 }
4445856a 826 if (hdr->len != hdr_len) {
5964842c
AG
827 log_err("verify: bad header length %u, wanted %u",
828 hdr->len, hdr_len);
829 goto err;
830 }
831 if (hdr->rand_seed != io_u->rand_seed) {
832 log_err("verify: bad header rand_seed %"PRIu64
833 ", wanted %"PRIu64,
834 hdr->rand_seed, io_u->rand_seed);
835 goto err;
836 }
b638d82f
RP
837 if (hdr->offset != io_u->offset + hdr_num * td->o.verify_interval) {
838 log_err("verify: bad header offset %"PRIu64
839 ", wanted %llu",
840 hdr->offset, io_u->offset);
841 goto err;
842 }
843
844 /*
845 * For read-only workloads, the program cannot be certain of the
846 * last numberio written to a block. Checking of numberio will be
847 * done only for workloads that write data. For verify_only,
848 * numberio will be checked in the last iteration when the correct
849 * state of numberio, that would have been written to each block
850 * in a previous run of fio, has been reached.
851 */
dcf9844e 852 if (td_write(td) && (td_min_bs(td) == td_max_bs(td)) &&
b638d82f
RP
853 !td->o.time_based)
854 if (!td->o.verify_only || td->o.loops == 0)
855 if (hdr->numberio != io_u->numberio) {
856 log_err("verify: bad header numberio %"PRIu16
857 ", wanted %"PRIu16,
858 hdr->numberio, io_u->numberio);
859 goto err;
860 }
ae38c0dc 861
25dfa848 862 crc = fio_crc32c(p, offsetof(struct verify_header, crc32));
5964842c
AG
863 if (crc != hdr->crc32) {
864 log_err("verify: bad header crc %x, calculated %x",
865 hdr->crc32, crc);
866 goto err;
867 }
868 return 0;
869
870err:
46ff70e8
FC
871 log_err(" at file %s offset %llu, length %u"
872 " (requested block: offset=%llu, length=%llu)\n",
5964842c 873 io_u->file->file_name,
46ff70e8
FC
874 io_u->offset + hdr_num * hdr_len, hdr_len,
875 io_u->offset, io_u->buflen);
16758b59
JA
876
877 if (td->o.verify_dump)
878 dump_buf(p, hdr_len, io_u->offset + hdr_num * hdr_len,
879 "hdr_fail", io_u->file);
880
5964842c 881 return EILSEQ;
f65d1c26
JA
882}
883
f8b0bd10 884int verify_io_u(struct thread_data *td, struct io_u **io_u_ptr)
e29d1b70 885{
3f9f4e26 886 struct verify_header *hdr;
f8b0bd10 887 struct io_u *io_u = *io_u_ptr;
2b13e716 888 unsigned int header_size, hdr_inc, hdr_num = 0;
95646108 889 void *p;
e29d1b70
JA
890 int ret;
891
1dcc0498 892 if (td->o.verify == VERIFY_NULL || io_u->ddir != DDIR_READ)
36690c9b 893 return 0;
5c57c084
JA
894 /*
895 * If the IO engine is faking IO (like null), then just pretend
896 * we verified everything.
897 */
9b87f09b 898 if (td_ioengine_flagged(td, FIO_FAKEIO))
5c57c084
JA
899 return 0;
900
0d29de83
JA
901 if (io_u->flags & IO_U_F_TRIMMED) {
902 ret = verify_trimmed_io_u(td, io_u);
903 goto done;
904 }
36690c9b 905
cfbcd0dc 906 hdr_inc = get_hdr_inc(td, io_u);
e29d1b70 907
a12a3b4d 908 ret = 0;
5ec10eaa
JA
909 for (p = io_u->buf; p < io_u->buf + io_u->buflen;
910 p += hdr_inc, hdr_num++) {
bfacf389
JA
911 struct vcont vc = {
912 .io_u = io_u,
913 .hdr_num = hdr_num,
7d9fb455 914 .td = td,
bfacf389 915 };
f00b210f 916 unsigned int verify_type;
936216f8 917
f3e6cb95 918 if (ret && td->o.verify_fatal)
a12a3b4d 919 break;
f3e6cb95 920
2b13e716 921 header_size = __hdr_size(td->o.verify);
a59e170d 922 if (td->o.verify_offset)
2b13e716 923 memswp(p, p + td->o.verify_offset, header_size);
95646108 924 hdr = p;
e29d1b70 925
c4b6117b 926 /*
f31feaa2 927 * Make rand_seed check pass when have verify_backlog.
c4b6117b 928 */
f31feaa2 929 if (!td_rw(td) || (td->flags & TD_F_VER_BACKLOG))
c4b6117b
PV
930 io_u->rand_seed = hdr->rand_seed;
931
59245381 932 if (td->o.verify != VERIFY_PATTERN_NO_HDR) {
b638d82f 933 ret = verify_header(io_u, td, hdr, hdr_num, hdr_inc);
59245381
JA
934 if (ret)
935 return ret;
936 }
3f199b01 937
f00b210f
JA
938 if (td->o.verify != VERIFY_NONE)
939 verify_type = td->o.verify;
940 else
941 verify_type = hdr->verify_type;
942
943 switch (verify_type) {
b638d82f
RP
944 case VERIFY_HDR_ONLY:
945 /* Header is always verified, check if pattern is left
946 * for verification. */
947 if (td->o.verify_pattern_bytes)
948 ret = verify_io_u_pattern(hdr, &vc);
949 break;
3f9f4e26 950 case VERIFY_MD5:
936216f8 951 ret = verify_io_u_md5(hdr, &vc);
3f9f4e26
SL
952 break;
953 case VERIFY_CRC64:
936216f8 954 ret = verify_io_u_crc64(hdr, &vc);
3f9f4e26 955 break;
bac39e0e 956 case VERIFY_CRC32C:
3845591f 957 case VERIFY_CRC32C_INTEL:
936216f8 958 ret = verify_io_u_crc32c(hdr, &vc);
bac39e0e 959 break;
3f9f4e26 960 case VERIFY_CRC32:
936216f8 961 ret = verify_io_u_crc32(hdr, &vc);
3f9f4e26
SL
962 break;
963 case VERIFY_CRC16:
936216f8 964 ret = verify_io_u_crc16(hdr, &vc);
3f9f4e26
SL
965 break;
966 case VERIFY_CRC7:
936216f8 967 ret = verify_io_u_crc7(hdr, &vc);
3f9f4e26 968 break;
cd14cc10 969 case VERIFY_SHA256:
936216f8 970 ret = verify_io_u_sha256(hdr, &vc);
cd14cc10
JA
971 break;
972 case VERIFY_SHA512:
936216f8 973 ret = verify_io_u_sha512(hdr, &vc);
cd14cc10 974 break;
ae3a5acc
JA
975 case VERIFY_SHA3_224:
976 ret = verify_io_u_sha3_224(hdr, &vc);
977 break;
978 case VERIFY_SHA3_256:
979 ret = verify_io_u_sha3_256(hdr, &vc);
980 break;
981 case VERIFY_SHA3_384:
982 ret = verify_io_u_sha3_384(hdr, &vc);
983 break;
984 case VERIFY_SHA3_512:
985 ret = verify_io_u_sha3_512(hdr, &vc);
986 break;
844ea602
JA
987 case VERIFY_XXHASH:
988 ret = verify_io_u_xxhash(hdr, &vc);
989 break;
7c353ceb 990 case VERIFY_SHA1:
936216f8 991 ret = verify_io_u_sha1(hdr, &vc);
7c353ceb 992 break;
92bf48d5 993 case VERIFY_PATTERN:
59245381 994 case VERIFY_PATTERN_NO_HDR:
92bf48d5
JA
995 ret = verify_io_u_pattern(hdr, &vc);
996 break;
3f9f4e26
SL
997 default:
998 log_err("Bad verify type %u\n", hdr->verify_type);
d16d4e09 999 ret = EINVAL;
3f9f4e26 1000 }
f00b210f
JA
1001
1002 if (ret && verify_type != hdr->verify_type)
1003 log_err("fio: verify type mismatch (%u media, %u given)\n",
1004 hdr->verify_type, verify_type);
3f9f4e26 1005 }
a7dfe862 1006
0d29de83 1007done:
f3e6cb95 1008 if (ret && td->o.verify_fatal)
ebea2133 1009 fio_mark_td_terminate(td);
f3e6cb95 1010
a12a3b4d 1011 return ret;
e29d1b70
JA
1012}
1013
844ea602
JA
1014static void fill_xxhash(struct verify_header *hdr, void *p, unsigned int len)
1015{
1016 struct vhdr_xxhash *vh = hdr_priv(hdr);
1017 void *state;
1018
1019 state = XXH32_init(1);
1020 XXH32_update(state, p, len);
1021 vh->hash = XXH32_digest(state);
1022}
1023
ae3a5acc
JA
1024static void fill_sha3(struct fio_sha3_ctx *sha3_ctx, void *p, unsigned int len)
1025{
1026 fio_sha3_update(sha3_ctx, p, len);
1027 fio_sha3_final(sha3_ctx);
1028}
1029
1030static void fill_sha3_224(struct verify_header *hdr, void *p, unsigned int len)
1031{
1032 struct vhdr_sha3_224 *vh = hdr_priv(hdr);
1033 struct fio_sha3_ctx sha3_ctx = {
1034 .sha = vh->sha,
1035 };
1036
1037 fio_sha3_224_init(&sha3_ctx);
1038 fill_sha3(&sha3_ctx, p, len);
1039}
1040
1041static void fill_sha3_256(struct verify_header *hdr, void *p, unsigned int len)
1042{
1043 struct vhdr_sha3_256 *vh = hdr_priv(hdr);
1044 struct fio_sha3_ctx sha3_ctx = {
1045 .sha = vh->sha,
1046 };
1047
1048 fio_sha3_256_init(&sha3_ctx);
1049 fill_sha3(&sha3_ctx, p, len);
1050}
1051
1052static void fill_sha3_384(struct verify_header *hdr, void *p, unsigned int len)
1053{
1054 struct vhdr_sha3_384 *vh = hdr_priv(hdr);
1055 struct fio_sha3_ctx sha3_ctx = {
1056 .sha = vh->sha,
1057 };
1058
1059 fio_sha3_384_init(&sha3_ctx);
1060 fill_sha3(&sha3_ctx, p, len);
1061}
1062
1063static void fill_sha3_512(struct verify_header *hdr, void *p, unsigned int len)
1064{
1065 struct vhdr_sha3_512 *vh = hdr_priv(hdr);
1066 struct fio_sha3_ctx sha3_ctx = {
1067 .sha = vh->sha,
1068 };
1069
1070 fio_sha3_512_init(&sha3_ctx);
1071 fill_sha3(&sha3_ctx, p, len);
1072}
1073
cd14cc10
JA
1074static void fill_sha512(struct verify_header *hdr, void *p, unsigned int len)
1075{
546dfd9f 1076 struct vhdr_sha512 *vh = hdr_priv(hdr);
25dfa848 1077 struct fio_sha512_ctx sha512_ctx = {
546dfd9f 1078 .buf = vh->sha512,
cd14cc10
JA
1079 };
1080
25dfa848
JA
1081 fio_sha512_init(&sha512_ctx);
1082 fio_sha512_update(&sha512_ctx, p, len);
cd14cc10
JA
1083}
1084
1085static void fill_sha256(struct verify_header *hdr, void *p, unsigned int len)
1086{
546dfd9f 1087 struct vhdr_sha256 *vh = hdr_priv(hdr);
25dfa848 1088 struct fio_sha256_ctx sha256_ctx = {
546dfd9f 1089 .buf = vh->sha256,
cd14cc10
JA
1090 };
1091
25dfa848
JA
1092 fio_sha256_init(&sha256_ctx);
1093 fio_sha256_update(&sha256_ctx, p, len);
017052b6 1094 fio_sha256_final(&sha256_ctx);
cd14cc10
JA
1095}
1096
7c353ceb
JA
1097static void fill_sha1(struct verify_header *hdr, void *p, unsigned int len)
1098{
1099 struct vhdr_sha1 *vh = hdr_priv(hdr);
25dfa848 1100 struct fio_sha1_ctx sha1_ctx = {
7c353ceb
JA
1101 .H = vh->sha1,
1102 };
1103
25dfa848
JA
1104 fio_sha1_init(&sha1_ctx);
1105 fio_sha1_update(&sha1_ctx, p, len);
017052b6 1106 fio_sha1_final(&sha1_ctx);
7c353ceb
JA
1107}
1108
1e154bdb
JA
1109static void fill_crc7(struct verify_header *hdr, void *p, unsigned int len)
1110{
546dfd9f
JA
1111 struct vhdr_crc7 *vh = hdr_priv(hdr);
1112
25dfa848 1113 vh->crc7 = fio_crc7(p, len);
1e154bdb
JA
1114}
1115
969f7ed3
JA
1116static void fill_crc16(struct verify_header *hdr, void *p, unsigned int len)
1117{
546dfd9f
JA
1118 struct vhdr_crc16 *vh = hdr_priv(hdr);
1119
25dfa848 1120 vh->crc16 = fio_crc16(p, len);
969f7ed3
JA
1121}
1122
e29d1b70
JA
1123static void fill_crc32(struct verify_header *hdr, void *p, unsigned int len)
1124{
546dfd9f
JA
1125 struct vhdr_crc32 *vh = hdr_priv(hdr);
1126
25dfa848 1127 vh->crc32 = fio_crc32(p, len);
e29d1b70
JA
1128}
1129
bac39e0e
JA
1130static void fill_crc32c(struct verify_header *hdr, void *p, unsigned int len)
1131{
1132 struct vhdr_crc32 *vh = hdr_priv(hdr);
1133
25dfa848 1134 vh->crc32 = fio_crc32c(p, len);
bac39e0e
JA
1135}
1136
d77a7af3
JA
1137static void fill_crc64(struct verify_header *hdr, void *p, unsigned int len)
1138{
546dfd9f
JA
1139 struct vhdr_crc64 *vh = hdr_priv(hdr);
1140
25dfa848 1141 vh->crc64 = fio_crc64(p, len);
d77a7af3
JA
1142}
1143
e29d1b70
JA
1144static void fill_md5(struct verify_header *hdr, void *p, unsigned int len)
1145{
546dfd9f 1146 struct vhdr_md5 *vh = hdr_priv(hdr);
25dfa848 1147 struct fio_md5_ctx md5_ctx = {
546dfd9f 1148 .hash = (uint32_t *) vh->md5_digest,
8c432325 1149 };
e29d1b70 1150
25dfa848
JA
1151 fio_md5_init(&md5_ctx);
1152 fio_md5_update(&md5_ctx, p, len);
017052b6 1153 fio_md5_final(&md5_ctx);
e29d1b70
JA
1154}
1155
b638d82f
RP
1156static void __fill_hdr(struct thread_data *td, struct io_u *io_u,
1157 struct verify_header *hdr, unsigned int header_num,
1158 unsigned int header_len, uint64_t rand_seed)
9ba987cc
JA
1159{
1160 void *p = hdr;
1161
1162 hdr->magic = FIO_HDR_MAGIC;
b638d82f
RP
1163 hdr->verify_type = td->o.verify;
1164 hdr->len = header_len;
9ba987cc 1165 hdr->rand_seed = rand_seed;
b638d82f
RP
1166 hdr->offset = io_u->offset + header_num * td->o.verify_interval;
1167 hdr->time_sec = io_u->start_time.tv_sec;
faa9b2b2 1168 hdr->time_nsec = io_u->start_time.tv_nsec;
b638d82f
RP
1169 hdr->thread = td->thread_number;
1170 hdr->numberio = io_u->numberio;
9ba987cc
JA
1171 hdr->crc32 = fio_crc32c(p, offsetof(struct verify_header, crc32));
1172}
1173
ed3a433d 1174
b638d82f
RP
1175static void fill_hdr(struct thread_data *td, struct io_u *io_u,
1176 struct verify_header *hdr, unsigned int header_num,
1177 unsigned int header_len, uint64_t rand_seed)
ed3a433d 1178{
b638d82f
RP
1179 if (td->o.verify != VERIFY_PATTERN_NO_HDR)
1180 __fill_hdr(td, io_u, hdr, header_num, header_len, rand_seed);
ed3a433d
JA
1181}
1182
7d9fb455
JA
1183static void populate_hdr(struct thread_data *td, struct io_u *io_u,
1184 struct verify_header *hdr, unsigned int header_num,
1185 unsigned int header_len)
1186{
1187 unsigned int data_len;
d637b8b8
TK
1188 void *data;
1189 char *p;
7d9fb455 1190
d637b8b8 1191 p = (char *) hdr;
7d9fb455 1192
b638d82f 1193 fill_hdr(td, io_u, hdr, header_num, header_len, io_u->rand_seed);
f65d1c26 1194
3982ec03
JA
1195 if (header_len <= hdr_size(td, hdr)) {
1196 td_verror(td, EINVAL, "Blocksize too small");
1197 return;
1198 }
ed3a433d 1199 data_len = header_len - hdr_size(td, hdr);
7d9fb455 1200
ed3a433d 1201 data = p + hdr_size(td, hdr);
7d9fb455
JA
1202 switch (td->o.verify) {
1203 case VERIFY_MD5:
1204 dprint(FD_VERIFY, "fill md5 io_u %p, len %u\n",
1205 io_u, hdr->len);
1206 fill_md5(hdr, data, data_len);
1207 break;
1208 case VERIFY_CRC64:
1209 dprint(FD_VERIFY, "fill crc64 io_u %p, len %u\n",
1210 io_u, hdr->len);
1211 fill_crc64(hdr, data, data_len);
1212 break;
1213 case VERIFY_CRC32C:
1214 case VERIFY_CRC32C_INTEL:
1215 dprint(FD_VERIFY, "fill crc32c io_u %p, len %u\n",
1216 io_u, hdr->len);
1217 fill_crc32c(hdr, data, data_len);
1218 break;
1219 case VERIFY_CRC32:
1220 dprint(FD_VERIFY, "fill crc32 io_u %p, len %u\n",
1221 io_u, hdr->len);
1222 fill_crc32(hdr, data, data_len);
1223 break;
1224 case VERIFY_CRC16:
1225 dprint(FD_VERIFY, "fill crc16 io_u %p, len %u\n",
1226 io_u, hdr->len);
1227 fill_crc16(hdr, data, data_len);
1228 break;
1229 case VERIFY_CRC7:
1230 dprint(FD_VERIFY, "fill crc7 io_u %p, len %u\n",
1231 io_u, hdr->len);
1232 fill_crc7(hdr, data, data_len);
1233 break;
1234 case VERIFY_SHA256:
1235 dprint(FD_VERIFY, "fill sha256 io_u %p, len %u\n",
1236 io_u, hdr->len);
1237 fill_sha256(hdr, data, data_len);
1238 break;
1239 case VERIFY_SHA512:
1240 dprint(FD_VERIFY, "fill sha512 io_u %p, len %u\n",
1241 io_u, hdr->len);
1242 fill_sha512(hdr, data, data_len);
1243 break;
ae3a5acc
JA
1244 case VERIFY_SHA3_224:
1245 dprint(FD_VERIFY, "fill sha3-224 io_u %p, len %u\n",
1246 io_u, hdr->len);
1247 fill_sha3_224(hdr, data, data_len);
1248 break;
1249 case VERIFY_SHA3_256:
1250 dprint(FD_VERIFY, "fill sha3-256 io_u %p, len %u\n",
1251 io_u, hdr->len);
1252 fill_sha3_256(hdr, data, data_len);
1253 break;
1254 case VERIFY_SHA3_384:
1255 dprint(FD_VERIFY, "fill sha3-384 io_u %p, len %u\n",
1256 io_u, hdr->len);
1257 fill_sha3_384(hdr, data, data_len);
1258 break;
1259 case VERIFY_SHA3_512:
1260 dprint(FD_VERIFY, "fill sha3-512 io_u %p, len %u\n",
1261 io_u, hdr->len);
1262 fill_sha3_512(hdr, data, data_len);
1263 break;
844ea602
JA
1264 case VERIFY_XXHASH:
1265 dprint(FD_VERIFY, "fill xxhash io_u %p, len %u\n",
1266 io_u, hdr->len);
1267 fill_xxhash(hdr, data, data_len);
1268 break;
7d9fb455
JA
1269 case VERIFY_SHA1:
1270 dprint(FD_VERIFY, "fill sha1 io_u %p, len %u\n",
1271 io_u, hdr->len);
1272 fill_sha1(hdr, data, data_len);
1273 break;
b638d82f 1274 case VERIFY_HDR_ONLY:
92bf48d5 1275 case VERIFY_PATTERN:
ed3a433d 1276 case VERIFY_PATTERN_NO_HDR:
92bf48d5
JA
1277 /* nothing to do here */
1278 break;
7d9fb455
JA
1279 default:
1280 log_err("fio: bad verify type: %d\n", td->o.verify);
1281 assert(0);
1282 }
ed3a433d
JA
1283
1284 if (td->o.verify_offset && hdr_size(td, hdr))
1285 memswp(p, p + td->o.verify_offset, hdr_size(td, hdr));
7d9fb455
JA
1286}
1287
e29d1b70
JA
1288/*
1289 * fill body of io_u->buf with random data and add a header with the
c50ca7bd 1290 * checksum of choice
e29d1b70
JA
1291 */
1292void populate_verify_io_u(struct thread_data *td, struct io_u *io_u)
1293{
9cc3d150
JA
1294 if (td->o.verify == VERIFY_NULL)
1295 return;
1296
da0a7bd2
JC
1297 io_u->numberio = td->io_issues[io_u->ddir];
1298
c50ca7bd 1299 fill_pattern_headers(td, io_u, 0, 0);
e29d1b70
JA
1300}
1301
1302int get_next_verify(struct thread_data *td, struct io_u *io_u)
1303{
8de8f047 1304 struct io_piece *ipo = NULL;
e29d1b70 1305
d2d7fa53
JA
1306 /*
1307 * this io_u is from a requeue, we already filled the offsets
1308 */
1309 if (io_u->file)
1310 return 0;
1311
8de8f047 1312 if (!RB_EMPTY_ROOT(&td->io_hist_tree)) {
e96c0125 1313 struct fio_rb_node *n = rb_first(&td->io_hist_tree);
e29d1b70 1314
8de8f047 1315 ipo = rb_entry(n, struct io_piece, rb_node);
f9401285
JA
1316
1317 /*
1318 * Ensure that the associated IO has completed
1319 */
1320 read_barrier();
1321 if (ipo->flags & IP_F_IN_FLIGHT)
1322 goto nothing;
1323
4b87898e 1324 rb_erase(n, &td->io_hist_tree);
a917a8b3
JA
1325 assert(ipo->flags & IP_F_ONRB);
1326 ipo->flags &= ~IP_F_ONRB;
01743ee1 1327 } else if (!flist_empty(&td->io_hist_list)) {
9342d5f8 1328 ipo = flist_first_entry(&td->io_hist_list, struct io_piece, list);
f9401285
JA
1329
1330 /*
1331 * Ensure that the associated IO has completed
1332 */
1333 read_barrier();
1334 if (ipo->flags & IP_F_IN_FLIGHT)
1335 goto nothing;
1336
01743ee1 1337 flist_del(&ipo->list);
a917a8b3
JA
1338 assert(ipo->flags & IP_F_ONLIST);
1339 ipo->flags &= ~IP_F_ONLIST;
8de8f047 1340 }
e29d1b70 1341
8de8f047 1342 if (ipo) {
0d29de83
JA
1343 td->io_hist_len--;
1344
e29d1b70
JA
1345 io_u->offset = ipo->offset;
1346 io_u->buflen = ipo->len;
da0a7bd2 1347 io_u->numberio = ipo->numberio;
36167d82 1348 io_u->file = ipo->file;
1651e431 1349 io_u_set(td, io_u, IO_U_F_VER_LIST);
97af62ce 1350
0d29de83 1351 if (ipo->flags & IP_F_TRIMMED)
1651e431 1352 io_u_set(td, io_u, IO_U_F_TRIMMED);
0d29de83 1353
d6aed795 1354 if (!fio_file_open(io_u->file)) {
97af62ce
JA
1355 int r = td_io_open_file(td, io_u->file);
1356
bd6f78b2
JA
1357 if (r) {
1358 dprint(FD_VERIFY, "failed file %s open\n",
1359 io_u->file->file_name);
97af62ce 1360 return 1;
bd6f78b2 1361 }
97af62ce
JA
1362 }
1363
1364 get_file(ipo->file);
d6aed795 1365 assert(fio_file_open(io_u->file));
e29d1b70 1366 io_u->ddir = DDIR_READ;
36167d82
JA
1367 io_u->xfer_buf = io_u->buf;
1368 io_u->xfer_buflen = io_u->buflen;
0d29de83
JA
1369
1370 remove_trim_entry(td, ipo);
e29d1b70 1371 free(ipo);
bd6f78b2 1372 dprint(FD_VERIFY, "get_next_verify: ret io_u %p\n", io_u);
c4b6117b
PV
1373
1374 if (!td->o.verify_pattern_bytes) {
d6b72507 1375 io_u->rand_seed = __rand(&td->verify_state);
c4b6117b 1376 if (sizeof(int) != sizeof(long *))
d6b72507 1377 io_u->rand_seed *= __rand(&td->verify_state);
c4b6117b 1378 }
e29d1b70
JA
1379 return 0;
1380 }
1381
f9401285 1382nothing:
bd6f78b2 1383 dprint(FD_VERIFY, "get_next_verify: empty\n");
e29d1b70
JA
1384 return 1;
1385}
e8462bd8 1386
dc5bfbb2
JA
1387void fio_verify_init(struct thread_data *td)
1388{
1389 if (td->o.verify == VERIFY_CRC32C_INTEL ||
1390 td->o.verify == VERIFY_CRC32C) {
214e2d56 1391 crc32c_arm64_probe();
dc5bfbb2
JA
1392 crc32c_intel_probe();
1393 }
1394}
1395
e8462bd8
JA
1396static void *verify_async_thread(void *data)
1397{
1398 struct thread_data *td = data;
1399 struct io_u *io_u;
1400 int ret = 0;
1401
b2a9e649 1402 if (fio_option_is_set(&td->o, verify_cpumask) &&
e8462bd8
JA
1403 fio_setaffinity(td->pid, td->o.verify_cpumask)) {
1404 log_err("fio: failed setting verify thread affinity\n");
1405 goto done;
1406 }
1407
1408 do {
e53ab27c
JA
1409 FLIST_HEAD(list);
1410
e8462bd8
JA
1411 read_barrier();
1412 if (td->verify_thread_exit)
1413 break;
1414
1415 pthread_mutex_lock(&td->io_u_lock);
1416
1417 while (flist_empty(&td->verify_list) &&
1418 !td->verify_thread_exit) {
b36e298b
JA
1419 ret = pthread_cond_wait(&td->verify_cond,
1420 &td->io_u_lock);
e8462bd8
JA
1421 if (ret) {
1422 pthread_mutex_unlock(&td->io_u_lock);
1423 break;
1424 }
1425 }
1426
e53ab27c
JA
1427 flist_splice_init(&td->verify_list, &list);
1428 pthread_mutex_unlock(&td->io_u_lock);
1429
1430 if (flist_empty(&list))
e8462bd8 1431 continue;
e8462bd8 1432
e53ab27c 1433 while (!flist_empty(&list)) {
9342d5f8 1434 io_u = flist_first_entry(&list, struct io_u, verify_list);
f8b0bd10
JA
1435 flist_del_init(&io_u->verify_list);
1436
1651e431 1437 io_u_set(td, io_u, IO_U_F_NO_FILE_PUT);
f8b0bd10 1438 ret = verify_io_u(td, &io_u);
e8462bd8 1439
e53ab27c 1440 put_io_u(td, io_u);
d561f2ab
JA
1441 if (!ret)
1442 continue;
8b28bd41 1443 if (td_non_fatal_error(td, ERROR_TYPE_VERIFY_BIT, ret)) {
d561f2ab
JA
1444 update_error_count(td, ret);
1445 td_clear_error(td);
1446 ret = 0;
1447 }
e53ab27c 1448 }
e8462bd8
JA
1449 } while (!ret);
1450
d561f2ab
JA
1451 if (ret) {
1452 td_verror(td, ret, "async_verify");
f3e6cb95 1453 if (td->o.verify_fatal)
ebea2133 1454 fio_mark_td_terminate(td);
d561f2ab
JA
1455 }
1456
e8462bd8
JA
1457done:
1458 pthread_mutex_lock(&td->io_u_lock);
1459 td->nr_verify_threads--;
564de8d1 1460 pthread_cond_signal(&td->free_cond);
e8462bd8
JA
1461 pthread_mutex_unlock(&td->io_u_lock);
1462
e8462bd8
JA
1463 return NULL;
1464}
1465
1466int verify_async_init(struct thread_data *td)
1467{
1468 int i, ret;
304a47c7
VA
1469 pthread_attr_t attr;
1470
1471 pthread_attr_init(&attr);
45213f1b 1472 pthread_attr_setstacksize(&attr, 2 * PTHREAD_STACK_MIN);
e8462bd8
JA
1473
1474 td->verify_thread_exit = 0;
1475
1476 td->verify_threads = malloc(sizeof(pthread_t) * td->o.verify_async);
1477 for (i = 0; i < td->o.verify_async; i++) {
304a47c7 1478 ret = pthread_create(&td->verify_threads[i], &attr,
e8462bd8
JA
1479 verify_async_thread, td);
1480 if (ret) {
1481 log_err("fio: async verify creation failed: %s\n",
1482 strerror(ret));
1483 break;
1484 }
1485 ret = pthread_detach(td->verify_threads[i]);
1486 if (ret) {
1487 log_err("fio: async verify thread detach failed: %s\n",
1488 strerror(ret));
1489 break;
1490 }
1491 td->nr_verify_threads++;
1492 }
1493
304a47c7
VA
1494 pthread_attr_destroy(&attr);
1495
e8462bd8 1496 if (i != td->o.verify_async) {
e40823b1 1497 log_err("fio: only %d verify threads started, exiting\n", i);
564de8d1
BVA
1498
1499 pthread_mutex_lock(&td->io_u_lock);
e8462bd8 1500 td->verify_thread_exit = 1;
e8462bd8 1501 pthread_cond_broadcast(&td->verify_cond);
564de8d1
BVA
1502 pthread_mutex_unlock(&td->io_u_lock);
1503
e8462bd8
JA
1504 return 1;
1505 }
1506
1507 return 0;
1508}
1509
1510void verify_async_exit(struct thread_data *td)
1511{
564de8d1 1512 pthread_mutex_lock(&td->io_u_lock);
e8462bd8 1513 td->verify_thread_exit = 1;
e8462bd8
JA
1514 pthread_cond_broadcast(&td->verify_cond);
1515
e8462bd8
JA
1516 while (td->nr_verify_threads)
1517 pthread_cond_wait(&td->free_cond, &td->io_u_lock);
1518
1519 pthread_mutex_unlock(&td->io_u_lock);
1520 free(td->verify_threads);
1521 td->verify_threads = NULL;
1522}
ca09be4b 1523
61b9861d
RP
1524int paste_blockoff(char *buf, unsigned int len, void *priv)
1525{
1526 struct io_u *io = priv;
1527 unsigned long long off;
1528
3376ecf4 1529 typecheck(__typeof__(off), io->offset);
61b9861d
RP
1530 off = cpu_to_le64((uint64_t)io->offset);
1531 len = min(len, (unsigned int)sizeof(off));
1532 memcpy(buf, &off, len);
1533 return 0;
1534}
1535
94a6e1bb
JA
1536static int __fill_file_completions(struct thread_data *td,
1537 struct thread_io_list *s,
1538 struct fio_file *f, unsigned int *index)
1539{
1540 unsigned int comps;
1541 int i, j;
1542
1543 if (!f->last_write_comp)
1544 return 0;
1545
1546 if (td->io_blocks[DDIR_WRITE] < td->o.iodepth)
1547 comps = td->io_blocks[DDIR_WRITE];
1548 else
1549 comps = td->o.iodepth;
1550
1551 j = f->last_write_idx - 1;
1552 for (i = 0; i < comps; i++) {
1553 if (j == -1)
1554 j = td->o.iodepth - 1;
1555 s->comps[*index].fileno = __cpu_to_le64(f->fileno);
1556 s->comps[*index].offset = cpu_to_le64(f->last_write_comp[j]);
1557 (*index)++;
1558 j--;
1559 }
1560
1561 return comps;
1562}
1563
1564static int fill_file_completions(struct thread_data *td,
1565 struct thread_io_list *s, unsigned int *index)
1566{
1567 struct fio_file *f;
1568 unsigned int i;
1569 int comps = 0;
1570
1571 for_each_file(td, f, i)
1572 comps += __fill_file_completions(td, s, f, index);
1573
1574 return comps;
1575}
1576
ca09be4b
JA
1577struct all_io_list *get_all_io_list(int save_mask, size_t *sz)
1578{
1579 struct all_io_list *rep;
1580 struct thread_data *td;
1581 size_t depth;
1582 void *next;
1583 int i, nr;
1584
1585 compiletime_assert(sizeof(struct all_io_list) == 8, "all_io_list");
1586
1587 /*
1588 * Calculate reply space needed. We need one 'io_state' per thread,
1589 * and the size will vary depending on depth.
1590 */
1591 depth = 0;
1592 nr = 0;
1593 for_each_td(td, i) {
1594 if (save_mask != IO_LIST_ALL && (i + 1) != save_mask)
1595 continue;
1596 td->stop_io = 1;
1597 td->flags |= TD_F_VSTATE_SAVED;
94a6e1bb 1598 depth += (td->o.iodepth * td->o.nr_files);
ca09be4b
JA
1599 nr++;
1600 }
1601
1602 if (!nr)
1603 return NULL;
1604
1605 *sz = sizeof(*rep);
1606 *sz += nr * sizeof(struct thread_io_list);
94a6e1bb 1607 *sz += depth * sizeof(struct file_comp);
ca09be4b 1608 rep = malloc(*sz);
c68ce5ea 1609 memset(rep, 0, *sz);
ca09be4b
JA
1610
1611 rep->threads = cpu_to_le64((uint64_t) nr);
1612
1613 next = &rep->state[0];
1614 for_each_td(td, i) {
1615 struct thread_io_list *s = next;
94a6e1bb 1616 unsigned int comps, index = 0;
ca09be4b
JA
1617
1618 if (save_mask != IO_LIST_ALL && (i + 1) != save_mask)
1619 continue;
1620
94a6e1bb 1621 comps = fill_file_completions(td, s, &index);
ca09be4b
JA
1622
1623 s->no_comps = cpu_to_le64((uint64_t) comps);
1624 s->depth = cpu_to_le64((uint64_t) td->o.iodepth);
94a6e1bb 1625 s->nofiles = cpu_to_le64((uint64_t) td->o.nr_files);
ca09be4b
JA
1626 s->numberio = cpu_to_le64((uint64_t) td->io_issues[DDIR_WRITE]);
1627 s->index = cpu_to_le64((uint64_t) i);
c3546b53
JA
1628 if (td->random_state.use64) {
1629 s->rand.state64.s[0] = cpu_to_le64(td->random_state.state64.s1);
1630 s->rand.state64.s[1] = cpu_to_le64(td->random_state.state64.s2);
1631 s->rand.state64.s[2] = cpu_to_le64(td->random_state.state64.s3);
1632 s->rand.state64.s[3] = cpu_to_le64(td->random_state.state64.s4);
1633 s->rand.state64.s[4] = cpu_to_le64(td->random_state.state64.s5);
1634 s->rand.state64.s[5] = 0;
1635 s->rand.use64 = cpu_to_le64((uint64_t)1);
1636 } else {
1637 s->rand.state32.s[0] = cpu_to_le32(td->random_state.state32.s1);
1638 s->rand.state32.s[1] = cpu_to_le32(td->random_state.state32.s2);
1639 s->rand.state32.s[2] = cpu_to_le32(td->random_state.state32.s3);
1640 s->rand.state32.s[3] = 0;
1641 s->rand.use64 = 0;
1642 }
36833fb0 1643 snprintf((char *) s->name, sizeof(s->name), "%s", td->o.name);
ca09be4b
JA
1644 next = io_list_next(s);
1645 }
1646
1647 return rep;
1648}
1649
1650static int open_state_file(const char *name, const char *prefix, int num,
1651 int for_write)
1652{
d117b2bd 1653 char out[PATH_MAX];
ca09be4b
JA
1654 int flags;
1655 int fd;
1656
1657 if (for_write)
1658 flags = O_CREAT | O_TRUNC | O_WRONLY | O_SYNC;
1659 else
1660 flags = O_RDONLY;
1661
e499aedc 1662 verify_state_gen_name(out, sizeof(out), name, prefix, num);
ca09be4b
JA
1663
1664 fd = open(out, flags, 0644);
1665 if (fd == -1) {
1666 perror("fio: open state file");
d117b2bd 1667 log_err("fio: state file: %s (for_write=%d)\n", out, for_write);
ca09be4b
JA
1668 return -1;
1669 }
1670
1671 return fd;
1672}
1673
1674static int write_thread_list_state(struct thread_io_list *s,
1675 const char *prefix)
1676{
1677 struct verify_state_hdr hdr;
1678 uint64_t crc;
1679 ssize_t ret;
1680 int fd;
1681
1682 fd = open_state_file((const char *) s->name, prefix, s->index, 1);
1683 if (fd == -1)
1684 return 1;
1685
1686 crc = fio_crc32c((void *)s, thread_io_list_sz(s));
1687
1688 hdr.version = cpu_to_le64((uint64_t) VSTATE_HDR_VERSION);
1689 hdr.size = cpu_to_le64((uint64_t) thread_io_list_sz(s));
1690 hdr.crc = cpu_to_le64(crc);
1691 ret = write(fd, &hdr, sizeof(hdr));
1692 if (ret != sizeof(hdr))
1693 goto write_fail;
1694
1695 ret = write(fd, s, thread_io_list_sz(s));
1696 if (ret != thread_io_list_sz(s)) {
1697write_fail:
1698 if (ret < 0)
1699 perror("fio: write state file");
1700 log_err("fio: failed to write state file\n");
1701 ret = 1;
1702 } else
1703 ret = 0;
1704
1705 close(fd);
1706 return ret;
1707}
1708
1709void __verify_save_state(struct all_io_list *state, const char *prefix)
1710{
1711 struct thread_io_list *s = &state->state[0];
1712 unsigned int i;
1713
1714 for (i = 0; i < le64_to_cpu(state->threads); i++) {
1715 write_thread_list_state(s, prefix);
1716 s = io_list_next(s);
1717 }
1718}
1719
d264264a 1720void verify_save_state(int mask)
ca09be4b
JA
1721{
1722 struct all_io_list *state;
1723 size_t sz;
1724
d264264a 1725 state = get_all_io_list(mask, &sz);
ca09be4b 1726 if (state) {
d264264a
JA
1727 char prefix[PATH_MAX];
1728
1729 if (aux_path)
53a7af85 1730 sprintf(prefix, "%s%clocal", aux_path, FIO_OS_PATH_SEPARATOR);
d264264a 1731 else
c6d140fb 1732 strcpy(prefix, "local");
d264264a
JA
1733
1734 __verify_save_state(state, prefix);
ca09be4b
JA
1735 free(state);
1736 }
1737}
1738
1739void verify_free_state(struct thread_data *td)
1740{
1741 if (td->vstate)
1742 free(td->vstate);
1743}
1744
94a6e1bb 1745void verify_assign_state(struct thread_data *td, void *p)
ca09be4b 1746{
94a6e1bb 1747 struct thread_io_list *s = p;
ca09be4b
JA
1748 int i;
1749
94a6e1bb
JA
1750 s->no_comps = le64_to_cpu(s->no_comps);
1751 s->depth = le32_to_cpu(s->depth);
1752 s->nofiles = le32_to_cpu(s->nofiles);
1753 s->numberio = le64_to_cpu(s->numberio);
1754 s->rand.use64 = le64_to_cpu(s->rand.use64);
c3546b53 1755
94a6e1bb
JA
1756 if (s->rand.use64) {
1757 for (i = 0; i < 6; i++)
1758 s->rand.state64.s[i] = le64_to_cpu(s->rand.state64.s[i]);
c3546b53 1759 } else {
94a6e1bb
JA
1760 for (i = 0; i < 4; i++)
1761 s->rand.state32.s[i] = le32_to_cpu(s->rand.state32.s[i]);
1762 }
c3546b53 1763
94a6e1bb
JA
1764 for (i = 0; i < s->no_comps; i++) {
1765 s->comps[i].fileno = le64_to_cpu(s->comps[i].fileno);
1766 s->comps[i].offset = le64_to_cpu(s->comps[i].offset);
c3546b53 1767 }
ca09be4b 1768
94a6e1bb 1769 td->vstate = p;
ca09be4b
JA
1770}
1771
94a6e1bb 1772int verify_state_hdr(struct verify_state_hdr *hdr, struct thread_io_list *s)
ca09be4b
JA
1773{
1774 uint64_t crc;
1775
1776 hdr->version = le64_to_cpu(hdr->version);
1777 hdr->size = le64_to_cpu(hdr->size);
1778 hdr->crc = le64_to_cpu(hdr->crc);
1779
94a6e1bb 1780 if (hdr->version != VSTATE_HDR_VERSION)
ca09be4b
JA
1781 return 1;
1782
1783 crc = fio_crc32c((void *)s, hdr->size);
1784 if (crc != hdr->crc)
1785 return 1;
1786
1787 return 0;
1788}
1789
1790int verify_load_state(struct thread_data *td, const char *prefix)
1791{
ca09be4b 1792 struct verify_state_hdr hdr;
c3546b53 1793 void *s = NULL;
ca09be4b
JA
1794 uint64_t crc;
1795 ssize_t ret;
1796 int fd;
1797
1798 if (!td->o.verify_state)
1799 return 0;
1800
1801 fd = open_state_file(td->o.name, prefix, td->thread_number - 1, 0);
1802 if (fd == -1)
1803 return 1;
1804
1805 ret = read(fd, &hdr, sizeof(hdr));
1806 if (ret != sizeof(hdr)) {
1807 if (ret < 0)
1808 td_verror(td, errno, "read verify state hdr");
1809 log_err("fio: failed reading verify state header\n");
1810 goto err;
1811 }
1812
1813 hdr.version = le64_to_cpu(hdr.version);
1814 hdr.size = le64_to_cpu(hdr.size);
1815 hdr.crc = le64_to_cpu(hdr.crc);
1816
94a6e1bb
JA
1817 if (hdr.version != VSTATE_HDR_VERSION) {
1818 log_err("fio: unsupported (%d) version in verify state header\n",
1819 (unsigned int) hdr.version);
ca09be4b
JA
1820 goto err;
1821 }
1822
1823 s = malloc(hdr.size);
1824 ret = read(fd, s, hdr.size);
1825 if (ret != hdr.size) {
1826 if (ret < 0)
1827 td_verror(td, errno, "read verify state");
1828 log_err("fio: failed reading verity state\n");
1829 goto err;
1830 }
1831
c3546b53 1832 crc = fio_crc32c(s, hdr.size);
ca09be4b
JA
1833 if (crc != hdr.crc) {
1834 log_err("fio: verify state is corrupt\n");
1835 goto err;
1836 }
1837
1838 close(fd);
1839
94a6e1bb 1840 verify_assign_state(td, s);
ca09be4b
JA
1841 return 0;
1842err:
1843 if (s)
1844 free(s);
1845 close(fd);
1846 return 1;
1847}
1848
1849/*
1850 * Use the loaded verify state to know when to stop doing verification
1851 */
1852int verify_state_should_stop(struct thread_data *td, struct io_u *io_u)
1853{
1854 struct thread_io_list *s = td->vstate;
94a6e1bb 1855 struct fio_file *f = io_u->file;
ca09be4b
JA
1856 int i;
1857
94a6e1bb 1858 if (!s || !f)
ca09be4b
JA
1859 return 0;
1860
1861 /*
def00095
JA
1862 * If we're not into the window of issues - depth yet, continue. If
1863 * issue is shorter than depth, do check.
ca09be4b 1864 */
def00095
JA
1865 if ((td->io_blocks[DDIR_READ] < s->depth ||
1866 s->numberio - td->io_blocks[DDIR_READ] > s->depth) &&
1867 s->numberio > s->depth)
ca09be4b
JA
1868 return 0;
1869
1870 /*
1871 * We're in the window of having to check if this io was
1872 * completed or not. If the IO was seen as completed, then
1873 * lets verify it.
1874 */
94a6e1bb
JA
1875 for (i = 0; i < s->no_comps; i++) {
1876 if (s->comps[i].fileno != f->fileno)
1877 continue;
1878 if (io_u->offset == s->comps[i].offset)
ca09be4b 1879 return 0;
94a6e1bb 1880 }
ca09be4b
JA
1881
1882 /*
1883 * Not found, we have to stop
1884 */
1885 return 1;
1886}