examples: add PI example with xnvme ioengine
[fio.git] / io_u.c
CommitLineData
10ba535a 1#include <unistd.h>
10ba535a 2#include <string.h>
0c6e7517 3#include <assert.h>
10ba535a
JA
4
5#include "fio.h"
4f5af7b2 6#include "verify.h"
0d29de83 7#include "trim.h"
1fbbf72e 8#include "lib/rand.h"
7ebd796f 9#include "lib/axmap.h"
002fe734 10#include "err.h"
0f38bbef 11#include "lib/pow2.h"
4b157ac6 12#include "minmax.h"
bfbdd35b 13#include "zbd.h"
10ba535a 14
97601024
JA
15struct io_completion_data {
16 int nr; /* input */
97601024
JA
17
18 int error; /* output */
100f49f1 19 uint64_t bytes_done[DDIR_RWDIR_CNT]; /* output */
8b6a404c 20 struct timespec time; /* output */
97601024
JA
21};
22
10ba535a 23/*
7ebd796f 24 * The ->io_axmap contains a map of blocks we have or have not done io
10ba535a
JA
25 * to yet. Used to make sure we cover the entire range in a fair fashion.
26 */
e39c0676 27static bool random_map_free(struct fio_file *f, const uint64_t block)
10ba535a 28{
7ebd796f 29 return !axmap_isset(f->io_axmap, block);
10ba535a
JA
30}
31
df415585
JA
32/*
33 * Mark a given offset as used in the map.
34 */
6cc1a3d1
BVA
35static uint64_t mark_random_map(struct thread_data *td, struct io_u *io_u,
36 uint64_t offset, uint64_t buflen)
df415585 37{
5fff9543 38 unsigned long long min_bs = td->o.min_bs[io_u->ddir];
9bf2061e 39 struct fio_file *f = io_u->file;
5fff9543 40 unsigned long long nr_blocks;
1ae83d45 41 uint64_t block;
df415585 42
6cc1a3d1
BVA
43 block = (offset - f->file_offset) / (uint64_t) min_bs;
44 nr_blocks = (buflen + min_bs - 1) / min_bs;
bd6b959a 45 assert(nr_blocks > 0);
df415585 46
bd6b959a 47 if (!(io_u->flags & IO_U_F_BUSY_OK)) {
7ebd796f 48 nr_blocks = axmap_set_nr(f->io_axmap, block, nr_blocks);
bd6b959a
BVA
49 assert(nr_blocks > 0);
50 }
df415585 51
6cc1a3d1
BVA
52 if ((nr_blocks * min_bs) < buflen)
53 buflen = nr_blocks * min_bs;
54
55 return buflen;
df415585
JA
56}
57
74776733
JA
58static uint64_t last_block(struct thread_data *td, struct fio_file *f,
59 enum fio_ddir ddir)
2ba1c290 60{
74776733
JA
61 uint64_t max_blocks;
62 uint64_t max_size;
2ba1c290 63
ff58fced
JA
64 assert(ddir_rw(ddir));
65
d9dd70f7
JA
66 /*
67 * Hmm, should we make sure that ->io_size <= ->real_file_size?
79591fa9 68 * -> not for now since there is code assuming it could go either.
d9dd70f7
JA
69 */
70 max_size = f->io_size;
71 if (max_size > f->real_file_size)
72 max_size = f->real_file_size;
73
7b865a2f 74 if (td->o.zone_mode == ZONE_MODE_STRIDED && td->o.zone_range)
ed335855
SN
75 max_size = td->o.zone_range;
76
0412d12e
JE
77 if (td->o.min_bs[ddir] > td->o.ba[ddir])
78 max_size -= td->o.min_bs[ddir] - td->o.ba[ddir];
79
1ae83d45 80 max_blocks = max_size / (uint64_t) td->o.ba[ddir];
2ba1c290
JA
81 if (!max_blocks)
82 return 0;
83
67778e88 84 return max_blocks;
2ba1c290
JA
85}
86
e25839d4 87static int __get_next_rand_offset(struct thread_data *td, struct fio_file *f,
e0a04ac1
JA
88 enum fio_ddir ddir, uint64_t *b,
89 uint64_t lastb)
ec4015da 90{
6f49f8bc 91 uint64_t r;
5e0baa7f 92
c3546b53
JA
93 if (td->o.random_generator == FIO_RAND_GEN_TAUSWORTHE ||
94 td->o.random_generator == FIO_RAND_GEN_TAUSWORTHE64) {
6f49f8bc 95
d6b72507 96 r = __rand(&td->random_state);
8055e41d 97
4b91ee8f 98 dprint(FD_RANDOM, "off rand %llu\n", (unsigned long long) r);
8055e41d 99
e0a04ac1 100 *b = lastb * (r / (rand_max(&td->random_state) + 1.0));
51ede0b1 101 } else {
8055e41d 102 uint64_t off = 0;
43c63a78 103
967d1b63
JA
104 assert(fio_file_lfsr(f));
105
6f49f8bc 106 if (lfsr_next(&f->lfsr, &off))
8055e41d 107 return 1;
ec4015da 108
8055e41d
JA
109 *b = off;
110 }
0ce8b119 111
ec4015da 112 /*
51ede0b1 113 * if we are not maintaining a random map, we are done.
ec4015da 114 */
51ede0b1
JA
115 if (!file_randommap(td, f))
116 goto ret;
43c63a78
JA
117
118 /*
51ede0b1 119 * calculate map offset and check if it's free
43c63a78 120 */
51ede0b1
JA
121 if (random_map_free(f, *b))
122 goto ret;
123
4b91ee8f
JA
124 dprint(FD_RANDOM, "get_next_rand_offset: offset %llu busy\n",
125 (unsigned long long) *b);
51ede0b1 126
7ebd796f 127 *b = axmap_next_free(f->io_axmap, *b);
51ede0b1
JA
128 if (*b == (uint64_t) -1ULL)
129 return 1;
0ce8b119
JA
130ret:
131 return 0;
ec4015da
JA
132}
133
925fee33
JA
134static int __get_next_rand_offset_zipf(struct thread_data *td,
135 struct fio_file *f, enum fio_ddir ddir,
1ae83d45 136 uint64_t *b)
e25839d4 137{
9c6f6316 138 *b = zipf_next(&f->zipf);
e25839d4
JA
139 return 0;
140}
141
925fee33
JA
142static int __get_next_rand_offset_pareto(struct thread_data *td,
143 struct fio_file *f, enum fio_ddir ddir,
1ae83d45 144 uint64_t *b)
925fee33 145{
9c6f6316 146 *b = pareto_next(&f->zipf);
925fee33
JA
147 return 0;
148}
149
56d9fa4b
JA
150static int __get_next_rand_offset_gauss(struct thread_data *td,
151 struct fio_file *f, enum fio_ddir ddir,
152 uint64_t *b)
153{
154 *b = gauss_next(&f->gauss);
155 return 0;
156}
157
59466396
JA
158static int __get_next_rand_offset_zoned_abs(struct thread_data *td,
159 struct fio_file *f,
160 enum fio_ddir ddir, uint64_t *b)
161{
162 struct zone_split_index *zsi;
e3c8c108 163 uint64_t lastb, send, stotal;
59466396
JA
164 unsigned int v;
165
166 lastb = last_block(td, f, ddir);
167 if (!lastb)
168 return 1;
169
170 if (!td->o.zone_split_nr[ddir]) {
171bail:
172 return __get_next_rand_offset(td, f, ddir, b, lastb);
173 }
174
175 /*
176 * Generate a value, v, between 1 and 100, both inclusive
177 */
1bd5d213 178 v = rand_between(&td->zone_state, 1, 100);
59466396 179
e3c8c108
JA
180 /*
181 * Find our generated table. 'send' is the end block of this zone,
182 * 'stotal' is our start offset.
183 */
59466396
JA
184 zsi = &td->zone_state_index[ddir][v - 1];
185 stotal = zsi->size_prev / td->o.ba[ddir];
186 send = zsi->size / td->o.ba[ddir];
187
188 /*
189 * Should never happen
190 */
191 if (send == -1U) {
264e3d30 192 if (!fio_did_warn(FIO_WARN_ZONED_BUG))
59466396 193 log_err("fio: bug in zoned generation\n");
59466396
JA
194 goto bail;
195 } else if (send > lastb) {
196 /*
197 * This happens if the user specifies ranges that exceed
198 * the file/device size. We can't handle that gracefully,
199 * so error and exit.
200 */
201 log_err("fio: zoned_abs sizes exceed file size\n");
202 return 1;
203 }
204
205 /*
e3c8c108 206 * Generate index from 0..send-stotal
59466396 207 */
e3c8c108 208 if (__get_next_rand_offset(td, f, ddir, b, send - stotal) == 1)
59466396
JA
209 return 1;
210
e3c8c108 211 *b += stotal;
59466396
JA
212 return 0;
213}
214
e0a04ac1
JA
215static int __get_next_rand_offset_zoned(struct thread_data *td,
216 struct fio_file *f, enum fio_ddir ddir,
217 uint64_t *b)
218{
219 unsigned int v, send, stotal;
220 uint64_t offset, lastb;
e0a04ac1
JA
221 struct zone_split_index *zsi;
222
223 lastb = last_block(td, f, ddir);
224 if (!lastb)
225 return 1;
226
227 if (!td->o.zone_split_nr[ddir]) {
228bail:
229 return __get_next_rand_offset(td, f, ddir, b, lastb);
230 }
231
232 /*
233 * Generate a value, v, between 1 and 100, both inclusive
234 */
1bd5d213 235 v = rand_between(&td->zone_state, 1, 100);
e0a04ac1
JA
236
237 zsi = &td->zone_state_index[ddir][v - 1];
238 stotal = zsi->size_perc_prev;
239 send = zsi->size_perc;
240
241 /*
242 * Should never happen
243 */
244 if (send == -1U) {
264e3d30 245 if (!fio_did_warn(FIO_WARN_ZONED_BUG))
e0a04ac1 246 log_err("fio: bug in zoned generation\n");
e0a04ac1
JA
247 goto bail;
248 }
249
250 /*
251 * 'send' is some percentage below or equal to 100 that
252 * marks the end of the current IO range. 'stotal' marks
253 * the start, in percent.
254 */
255 if (stotal)
256 offset = stotal * lastb / 100ULL;
257 else
258 offset = 0;
259
260 lastb = lastb * (send - stotal) / 100ULL;
261
262 /*
263 * Generate index from 0..send-of-lastb
264 */
265 if (__get_next_rand_offset(td, f, ddir, b, lastb) == 1)
266 return 1;
267
268 /*
269 * Add our start offset, if any
270 */
271 if (offset)
272 *b += offset;
273
274 return 0;
275}
56d9fa4b 276
f31feaa2
JA
277static int get_next_rand_offset(struct thread_data *td, struct fio_file *f,
278 enum fio_ddir ddir, uint64_t *b)
e25839d4 279{
e0a04ac1
JA
280 if (td->o.random_distribution == FIO_RAND_DIST_RANDOM) {
281 uint64_t lastb;
282
283 lastb = last_block(td, f, ddir);
284 if (!lastb)
285 return 1;
286
287 return __get_next_rand_offset(td, f, ddir, b, lastb);
288 } else if (td->o.random_distribution == FIO_RAND_DIST_ZIPF)
e25839d4 289 return __get_next_rand_offset_zipf(td, f, ddir, b);
925fee33
JA
290 else if (td->o.random_distribution == FIO_RAND_DIST_PARETO)
291 return __get_next_rand_offset_pareto(td, f, ddir, b);
56d9fa4b
JA
292 else if (td->o.random_distribution == FIO_RAND_DIST_GAUSS)
293 return __get_next_rand_offset_gauss(td, f, ddir, b);
e0a04ac1
JA
294 else if (td->o.random_distribution == FIO_RAND_DIST_ZONED)
295 return __get_next_rand_offset_zoned(td, f, ddir, b);
59466396
JA
296 else if (td->o.random_distribution == FIO_RAND_DIST_ZONED_ABS)
297 return __get_next_rand_offset_zoned_abs(td, f, ddir, b);
e25839d4
JA
298
299 log_err("fio: unknown random distribution: %d\n", td->o.random_distribution);
300 return 1;
301}
302
e39c0676 303static bool should_do_random(struct thread_data *td, enum fio_ddir ddir)
211c9b89
JA
304{
305 unsigned int v;
211c9b89 306
d9472271 307 if (td->o.perc_rand[ddir] == 100)
e39c0676 308 return true;
211c9b89 309
1bd5d213 310 v = rand_between(&td->seq_rand_state[ddir], 1, 100);
211c9b89 311
d9472271 312 return v <= td->o.perc_rand[ddir];
211c9b89
JA
313}
314
0bcf41cd
JA
315static void loop_cache_invalidate(struct thread_data *td, struct fio_file *f)
316{
317 struct thread_options *o = &td->o;
318
319 if (o->invalidate_cache && !o->odirect) {
320 int fio_unused ret;
321
322 ret = file_invalidate_cache(td, f);
323 }
324}
325
38dad62d 326static int get_next_rand_block(struct thread_data *td, struct fio_file *f,
1ae83d45 327 enum fio_ddir ddir, uint64_t *b)
38dad62d 328{
c04e4661
DE
329 if (!get_next_rand_offset(td, f, ddir, b))
330 return 0;
331
8c07860d
JA
332 if (td->o.time_based ||
333 (td->o.file_service_type & __FIO_FSERVICE_NONUNIFORM)) {
33c48814 334 fio_file_reset(td, f);
80f02150 335 loop_cache_invalidate(td, f);
c04e4661
DE
336 if (!get_next_rand_offset(td, f, ddir, b))
337 return 0;
38dad62d
JA
338 }
339
c04e4661 340 dprint(FD_IO, "%s: rand offset failed, last=%llu, size=%llu\n",
f1dfb668 341 f->file_name, (unsigned long long) f->last_pos[ddir],
4b91ee8f 342 (unsigned long long) f->real_file_size);
c04e4661 343 return 1;
38dad62d
JA
344}
345
37cf9e3c 346static int get_next_seq_offset(struct thread_data *td, struct fio_file *f,
1ae83d45 347 enum fio_ddir ddir, uint64_t *offset)
38dad62d 348{
ac002339
JA
349 struct thread_options *o = &td->o;
350
ff58fced
JA
351 assert(ddir_rw(ddir));
352
17373ce2
JA
353 /*
354 * If we reach the end for a time based run, reset us back to 0
355 * and invalidate the cache, if we need to.
356 */
f1dfb668 357 if (f->last_pos[ddir] >= f->io_size + get_start_offset(td, f) &&
46ec8270 358 o->time_based && o->nr_files == 1) {
c89daa4a 359 f->last_pos[ddir] = f->file_offset;
0bcf41cd 360 loop_cache_invalidate(td, f);
19ddc35b 361 }
c04e4661 362
f1dfb668 363 if (f->last_pos[ddir] < f->real_file_size) {
1ae83d45 364 uint64_t pos;
059b0802 365
69b98f11
JA
366 /*
367 * Only rewind if we already hit the end
368 */
369 if (f->last_pos[ddir] == f->file_offset &&
370 f->file_offset && o->ddir_seq_add < 0) {
c22825bb
JA
371 if (f->real_file_size > f->io_size)
372 f->last_pos[ddir] = f->io_size;
373 else
374 f->last_pos[ddir] = f->real_file_size;
375 }
a66da7a2 376
f1dfb668 377 pos = f->last_pos[ddir] - f->file_offset;
ac002339
JA
378 if (pos && o->ddir_seq_add) {
379 pos += o->ddir_seq_add;
380
381 /*
382 * If we reach beyond the end of the file
383 * with holed IO, wrap around to the
b0a84f48
JA
384 * beginning again. If we're doing backwards IO,
385 * wrap to the end.
ac002339 386 */
b0a84f48
JA
387 if (pos >= f->real_file_size) {
388 if (o->ddir_seq_add > 0)
389 pos = f->file_offset;
c22825bb
JA
390 else {
391 if (f->real_file_size > f->io_size)
392 pos = f->io_size;
393 else
394 pos = f->real_file_size;
395
396 pos += o->ddir_seq_add;
397 }
b0a84f48 398 }
ac002339 399 }
059b0802 400
37cf9e3c 401 *offset = pos;
38dad62d
JA
402 return 0;
403 }
404
405 return 1;
406}
407
408static int get_next_block(struct thread_data *td, struct io_u *io_u,
6aca9b3d 409 enum fio_ddir ddir, int rw_seq,
ec370c22 410 bool *is_random)
38dad62d
JA
411{
412 struct fio_file *f = io_u->file;
1ae83d45 413 uint64_t b, offset;
38dad62d
JA
414 int ret;
415
ff58fced
JA
416 assert(ddir_rw(ddir));
417
37cf9e3c
JA
418 b = offset = -1ULL;
419
f9f1e137
VF
420 if (td_randtrimwrite(td) && ddir == DDIR_WRITE) {
421 /* don't mark randommap for these writes */
422 io_u_set(td, io_u, IO_U_F_BUSY_OK);
423 offset = f->last_start[DDIR_TRIM];
424 *is_random = true;
425 ret = 0;
426 } else if (rw_seq) {
211c9b89 427 if (td_random(td)) {
6aca9b3d 428 if (should_do_random(td, ddir)) {
211c9b89 429 ret = get_next_rand_block(td, f, ddir, &b);
ec370c22 430 *is_random = true;
6aca9b3d 431 } else {
ec370c22 432 *is_random = false;
1651e431 433 io_u_set(td, io_u, IO_U_F_BUSY_OK);
211c9b89
JA
434 ret = get_next_seq_offset(td, f, ddir, &offset);
435 if (ret)
436 ret = get_next_rand_block(td, f, ddir, &b);
437 }
6aca9b3d 438 } else {
ec370c22 439 *is_random = false;
37cf9e3c 440 ret = get_next_seq_offset(td, f, ddir, &offset);
6aca9b3d 441 }
38dad62d 442 } else {
1651e431 443 io_u_set(td, io_u, IO_U_F_BUSY_OK);
ec370c22 444 *is_random = false;
38dad62d
JA
445
446 if (td->o.rw_seq == RW_SEQ_SEQ) {
37cf9e3c 447 ret = get_next_seq_offset(td, f, ddir, &offset);
6aca9b3d 448 if (ret) {
37cf9e3c 449 ret = get_next_rand_block(td, f, ddir, &b);
ec370c22 450 *is_random = false;
6aca9b3d 451 }
38dad62d 452 } else if (td->o.rw_seq == RW_SEQ_IDENT) {
f1dfb668
JA
453 if (f->last_start[ddir] != -1ULL)
454 offset = f->last_start[ddir] - f->file_offset;
38dad62d 455 else
37cf9e3c 456 offset = 0;
38dad62d
JA
457 ret = 0;
458 } else {
459 log_err("fio: unknown rw_seq=%d\n", td->o.rw_seq);
460 ret = 1;
461 }
462 }
6d68b997 463
37cf9e3c
JA
464 if (!ret) {
465 if (offset != -1ULL)
466 io_u->offset = offset;
467 else if (b != -1ULL)
468 io_u->offset = b * td->o.ba[ddir];
469 else {
4e0a8fa2 470 log_err("fio: bug in offset generation: offset=%llu, b=%llu\n", (unsigned long long) offset, (unsigned long long) b);
37cf9e3c
JA
471 ret = 1;
472 }
4fff54cc 473 io_u->verify_offset = io_u->offset;
37cf9e3c
JA
474 }
475
38dad62d
JA
476 return ret;
477}
478
10ba535a
JA
479/*
480 * For random io, generate a random new block and see if it's used. Repeat
481 * until we find a free one. For sequential io, just return the end of
482 * the last io issued.
483 */
e8fb335e 484static int get_next_offset(struct thread_data *td, struct io_u *io_u,
ec370c22 485 bool *is_random)
10ba535a 486{
9bf2061e 487 struct fio_file *f = io_u->file;
4ba66134 488 enum fio_ddir ddir = io_u->ddir;
38dad62d 489 int rw_seq_hit = 0;
10ba535a 490
ff58fced
JA
491 assert(ddir_rw(ddir));
492
38dad62d
JA
493 if (td->o.ddir_seq_nr && !--td->ddir_seq_nr) {
494 rw_seq_hit = 1;
5736c10d 495 td->ddir_seq_nr = td->o.ddir_seq_nr;
38dad62d 496 }
211097b2 497
6aca9b3d 498 if (get_next_block(td, io_u, ddir, rw_seq_hit, is_random))
38dad62d 499 return 1;
10ba535a 500
009bd847
JA
501 if (io_u->offset >= f->io_size) {
502 dprint(FD_IO, "get_next_offset: offset %llu >= io_size %llu\n",
4b91ee8f
JA
503 (unsigned long long) io_u->offset,
504 (unsigned long long) f->io_size);
009bd847
JA
505 return 1;
506 }
507
508 io_u->offset += f->file_offset;
2ba1c290
JA
509 if (io_u->offset >= f->real_file_size) {
510 dprint(FD_IO, "get_next_offset: offset %llu >= size %llu\n",
4b91ee8f
JA
511 (unsigned long long) io_u->offset,
512 (unsigned long long) f->real_file_size);
10ba535a 513 return 1;
2ba1c290 514 }
10ba535a 515
5e0863da
VF
516 /*
517 * For randtrimwrite, we decide whether to issue a trim or a write
518 * based on whether the offsets for the most recent trim and write
519 * operations match. If they don't match that means we just issued a
520 * new trim and the next operation should be a write. If they *do*
521 * match that means we just completed a trim+write pair and the next
522 * command should be a trim.
523 *
524 * This works fine for sequential workloads but for random workloads
525 * it's possible to complete a trim+write pair and then have the next
526 * randomly generated offset match the previous offset. If that happens
527 * we need to alter the offset for the last write operation in order
528 * to ensure that we issue a write operation the next time through.
529 */
530 if (td_randtrimwrite(td) && ddir == DDIR_TRIM &&
531 f->last_start[DDIR_TRIM] == io_u->offset)
793b8686 532 f->last_start[DDIR_WRITE]--;
5e0863da 533
9bf46532 534 io_u->verify_offset = io_u->offset;
10ba535a
JA
535 return 0;
536}
537
e39c0676 538static inline bool io_u_fits(struct thread_data *td, struct io_u *io_u,
5fff9543 539 unsigned long long buflen)
79944128
JA
540{
541 struct fio_file *f = io_u->file;
542
bedc9dc2 543 return io_u->offset + buflen <= f->io_size + get_start_offset(td, f);
79944128
JA
544}
545
5fff9543 546static unsigned long long get_next_buflen(struct thread_data *td, struct io_u *io_u,
ec370c22 547 bool is_random)
10ba535a 548{
6aca9b3d 549 int ddir = io_u->ddir;
5fff9543
JF
550 unsigned long long buflen = 0;
551 unsigned long long minbs, maxbs;
3dd29f7c 552 uint64_t frand_max, r;
7c961359 553 bool power_2;
10ba535a 554
9ee1c647 555 assert(ddir_rw(ddir));
6aca9b3d 556
f9f1e137
VF
557 if (td_randtrimwrite(td) && ddir == DDIR_WRITE) {
558 struct fio_file *f = io_u->file;
559
560 return f->last_pos[DDIR_TRIM] - f->last_start[DDIR_TRIM];
561 }
562
6aca9b3d 563 if (td->o.bs_is_seq_rand)
ec370c22 564 ddir = is_random ? DDIR_WRITE : DDIR_READ;
ff58fced 565
f3059de1
JA
566 minbs = td->o.min_bs[ddir];
567 maxbs = td->o.max_bs[ddir];
568
79944128
JA
569 if (minbs == maxbs)
570 return minbs;
571
52c58027
JA
572 /*
573 * If we can't satisfy the min block size from here, then fail
574 */
575 if (!io_u_fits(td, io_u, minbs))
576 return 0;
577
2f282cec 578 frand_max = rand_max(&td->bsrange_state[ddir]);
79944128 579 do {
2f282cec 580 r = __rand(&td->bsrange_state[ddir]);
4c07ad86 581
720e84ad 582 if (!td->o.bssplit_nr[ddir]) {
5fff9543 583 buflen = minbs + (unsigned long long) ((double) maxbs *
c3546b53 584 (r / (frand_max + 1.0)));
5ec10eaa 585 } else {
3dd29f7c 586 long long perc = 0;
564ca972
JA
587 unsigned int i;
588
720e84ad
JA
589 for (i = 0; i < td->o.bssplit_nr[ddir]; i++) {
590 struct bssplit *bsp = &td->o.bssplit[ddir][i];
564ca972 591
cc5e4cb0
DLM
592 if (!bsp->perc)
593 continue;
564ca972
JA
594 buflen = bsp->bs;
595 perc += bsp->perc;
3dd29f7c 596 if ((r / perc <= frand_max / 100ULL) &&
79944128 597 io_u_fits(td, io_u, buflen))
564ca972
JA
598 break;
599 }
600 }
79944128 601
17a6b702
PL
602 power_2 = is_power_of_2(minbs);
603 if (!td->o.bs_unaligned && power_2)
7c306bb1 604 buflen &= ~(minbs - 1);
8135fe4d
JA
605 else if (!td->o.bs_unaligned && !power_2)
606 buflen -= buflen % minbs;
607 if (buflen > maxbs)
608 buflen = maxbs;
79944128 609 } while (!io_u_fits(td, io_u, buflen));
6a5e6884 610
10ba535a
JA
611 return buflen;
612}
613
afe24a5a
JA
614static void set_rwmix_bytes(struct thread_data *td)
615{
afe24a5a
JA
616 unsigned int diff;
617
618 /*
619 * we do time or byte based switch. this is needed because
620 * buffered writes may issue a lot quicker than they complete,
621 * whereas reads do not.
622 */
e47f799f 623 diff = td->o.rwmix[td->rwmix_ddir ^ 1];
04c540d9 624 td->rwmix_issues = (td->io_issues[td->rwmix_ddir] * diff) / 100;
e47f799f
JA
625}
626
627static inline enum fio_ddir get_rand_ddir(struct thread_data *td)
628{
629 unsigned int v;
e47f799f 630
1bd5d213 631 v = rand_between(&td->rwmix_state, 1, 100);
4c07ad86 632
04c540d9 633 if (v <= td->o.rwmix[DDIR_READ])
e47f799f
JA
634 return DDIR_READ;
635
636 return DDIR_WRITE;
afe24a5a
JA
637}
638
0d593542 639int io_u_quiesce(struct thread_data *td)
002e7183 640{
2dcfdeb9 641 int ret = 0, completed = 0, err = 0;
0d593542 642
002e7183
JA
643 /*
644 * We are going to sleep, ensure that we flush anything pending as
645 * not to skew our latency numbers.
646 *
647 * Changed to only monitor 'in flight' requests here instead of the
648 * td->cur_depth, b/c td->cur_depth does not accurately represent
649 * io's that have been actually submitted to an async engine,
650 * and cur_depth is meaningless for sync engines.
651 */
a80cb54b
BVA
652 if (td->io_u_queued || td->cur_depth)
653 td_io_commit(td);
9cc80b6d 654
002e7183 655 while (td->io_u_in_flight) {
55312f9f 656 ret = io_u_queued_complete(td, 1);
0d593542
JA
657 if (ret > 0)
658 completed += ret;
d28174f0 659 else if (ret < 0)
2dcfdeb9 660 err = ret;
002e7183 661 }
0d593542 662
6be06c46
JA
663 if (td->flags & TD_F_REGROW_LOGS)
664 regrow_logs(td);
665
d28174f0
JA
666 if (completed)
667 return completed;
668
2dcfdeb9 669 return err;
002e7183
JA
670}
671
581e7141
JA
672static enum fio_ddir rate_ddir(struct thread_data *td, enum fio_ddir ddir)
673{
674 enum fio_ddir odir = ddir ^ 1;
b5407f8b 675 uint64_t usec;
90eff1c9 676 uint64_t now;
581e7141 677
ff58fced 678 assert(ddir_rw(ddir));
970d9000 679 now = utime_since_now(&td->epoch);
ff58fced 680
50a8ce86
D
681 /*
682 * if rate_next_io_time is in the past, need to catch up to rate
683 */
684 if (td->rate_next_io_time[ddir] <= now)
581e7141
JA
685 return ddir;
686
687 /*
50a8ce86 688 * We are ahead of rate in this direction. See if we
581e7141
JA
689 * should switch.
690 */
315fcfec 691 if (td_rw(td) && td->o.rwmix[odir]) {
581e7141 692 /*
50a8ce86 693 * Other direction is behind rate, switch
581e7141 694 */
50a8ce86 695 if (td->rate_next_io_time[odir] <= now)
581e7141
JA
696 return odir;
697
698 /*
395feabb
JA
699 * Both directions are ahead of rate. sleep the min,
700 * switch if necessary
581e7141 701 */
50a8ce86 702 if (td->rate_next_io_time[ddir] <=
395feabb 703 td->rate_next_io_time[odir]) {
50a8ce86 704 usec = td->rate_next_io_time[ddir] - now;
581e7141 705 } else {
50a8ce86 706 usec = td->rate_next_io_time[odir] - now;
581e7141
JA
707 ddir = odir;
708 }
709 } else
50a8ce86 710 usec = td->rate_next_io_time[ddir] - now;
581e7141 711
a9da8ab2
JA
712 if (td->o.io_submit_mode == IO_MODE_INLINE)
713 io_u_quiesce(td);
78c1eda5 714
df06a036 715 if (td->o.timeout && ((usec + now) > td->o.timeout)) {
716 /*
717 * check if the usec is capable of taking negative values
718 */
719 if (now > td->o.timeout) {
e8a0b539 720 ddir = DDIR_TIMEOUT;
df06a036 721 return ddir;
722 }
723 usec = td->o.timeout - now;
724 }
1a9bf814 725 usec_sleep(td, usec);
df06a036 726
727 now = utime_since_now(&td->epoch);
728 if ((td->o.timeout && (now > td->o.timeout)) || td->terminate)
e8a0b539 729 ddir = DDIR_TIMEOUT;
df06a036 730
581e7141
JA
731 return ddir;
732}
733
10ba535a
JA
734/*
735 * Return the data direction for the next io_u. If the job is a
736 * mixed read/write workload, check the rwmix cycle and switch if
737 * necessary.
738 */
1e97cce9 739static enum fio_ddir get_rw_ddir(struct thread_data *td)
10ba535a 740{
581e7141
JA
741 enum fio_ddir ddir;
742
5f9099ea 743 /*
f6860972
TK
744 * See if it's time to fsync/fdatasync/sync_file_range first,
745 * and if not then move on to check regular I/Os.
5f9099ea 746 */
f6860972
TK
747 if (should_fsync(td)) {
748 if (td->o.fsync_blocks && td->io_issues[DDIR_WRITE] &&
749 !(td->io_issues[DDIR_WRITE] % td->o.fsync_blocks))
750 return DDIR_SYNC;
751
752 if (td->o.fdatasync_blocks && td->io_issues[DDIR_WRITE] &&
753 !(td->io_issues[DDIR_WRITE] % td->o.fdatasync_blocks))
754 return DDIR_DATASYNC;
755
756 if (td->sync_file_range_nr && td->io_issues[DDIR_WRITE] &&
757 !(td->io_issues[DDIR_WRITE] % td->sync_file_range_nr))
758 return DDIR_SYNC_FILE_RANGE;
759 }
44f29692 760
10ba535a 761 if (td_rw(td)) {
10ba535a
JA
762 /*
763 * Check if it's time to seed a new data direction.
764 */
e4928662 765 if (td->io_issues[td->rwmix_ddir] >= td->rwmix_issues) {
e47f799f
JA
766 /*
767 * Put a top limit on how many bytes we do for
768 * one data direction, to avoid overflowing the
769 * ranges too much
770 */
771 ddir = get_rand_ddir(td);
e47f799f
JA
772
773 if (ddir != td->rwmix_ddir)
774 set_rwmix_bytes(td);
775
776 td->rwmix_ddir = ddir;
10ba535a 777 }
581e7141 778 ddir = td->rwmix_ddir;
10ba535a 779 } else if (td_read(td))
581e7141 780 ddir = DDIR_READ;
6eaf09d6 781 else if (td_write(td))
581e7141 782 ddir = DDIR_WRITE;
5c8e84ca 783 else if (td_trim(td))
6eaf09d6 784 ddir = DDIR_TRIM;
5c8e84ca
TK
785 else
786 ddir = DDIR_INVAL;
581e7141 787
2f5102a5
H
788 if (!should_check_rate(td)) {
789 /*
790 * avoid time-consuming call to utime_since_now() if rate checking
791 * isn't being used. this imrpoves IOPs 50%. See:
792 * https://github.com/axboe/fio/issues/1501#issuecomment-1418327049
793 */
794 td->rwmix_ddir = ddir;
795 } else
796 td->rwmix_ddir = rate_ddir(td, ddir);
581e7141 797 return td->rwmix_ddir;
10ba535a
JA
798}
799
1ef2b6be
JA
800static void set_rw_ddir(struct thread_data *td, struct io_u *io_u)
801{
0e4dd95c
DE
802 enum fio_ddir ddir = get_rw_ddir(td);
803
731461cc
DLM
804 if (td->o.zone_mode == ZONE_MODE_ZBD)
805 ddir = zbd_adjust_ddir(td, io_u, ddir);
c65057f9 806
82a90686 807 if (td_trimwrite(td)) {
0e4dd95c 808 struct fio_file *f = io_u->file;
793b8686 809 if (f->last_start[DDIR_WRITE] == f->last_start[DDIR_TRIM])
0e4dd95c
DE
810 ddir = DDIR_TRIM;
811 else
812 ddir = DDIR_WRITE;
813 }
814
815 io_u->ddir = io_u->acct_ddir = ddir;
1ef2b6be 816
9b87f09b 817 if (io_u->ddir == DDIR_WRITE && td_ioengine_flagged(td, FIO_BARRIER) &&
1ef2b6be
JA
818 td->o.barrier_blocks &&
819 !(td->io_issues[DDIR_WRITE] % td->o.barrier_blocks) &&
820 td->io_issues[DDIR_WRITE])
1651e431 821 io_u_set(td, io_u, IO_U_F_BARRIER);
1ef2b6be
JA
822}
823
e8462bd8 824void put_file_log(struct thread_data *td, struct fio_file *f)
60f2c658 825{
71b84caa 826 unsigned int ret = put_file(td, f);
60f2c658
JA
827
828 if (ret)
829 td_verror(td, ret, "file close");
830}
831
10ba535a
JA
832void put_io_u(struct thread_data *td, struct io_u *io_u)
833{
26b3a188
JA
834 const bool needs_lock = td_async_processing(td);
835
b2da58c4 836 zbd_put_io_u(td, io_u);
99952ca7 837
a9da8ab2
JA
838 if (td->parent)
839 td = td->parent;
840
26b3a188
JA
841 if (needs_lock)
842 __td_io_u_lock(td);
e8462bd8 843
f8b0bd10 844 if (io_u->file && !(io_u->flags & IO_U_F_NO_FILE_PUT))
60f2c658 845 put_file_log(td, io_u->file);
f8b0bd10 846
10ba535a 847 io_u->file = NULL;
1651e431 848 io_u_set(td, io_u, IO_U_F_FREE);
d7ee2a7d 849
a9da8ab2 850 if (io_u->flags & IO_U_F_IN_CUR_DEPTH) {
0c41214f 851 td->cur_depth--;
a9da8ab2
JA
852 assert(!(td->flags & TD_F_CHILD));
853 }
2ae0b204 854 io_u_qpush(&td->io_u_freelist, io_u);
e8462bd8 855 td_io_u_free_notify(td);
26b3a188
JA
856
857 if (needs_lock)
858 __td_io_u_unlock(td);
10ba535a
JA
859}
860
f2bba182
RR
861void clear_io_u(struct thread_data *td, struct io_u *io_u)
862{
1651e431 863 io_u_clear(td, io_u, IO_U_F_FLIGHT);
f2bba182
RR
864 put_io_u(td, io_u);
865}
866
755200a3
JA
867void requeue_io_u(struct thread_data *td, struct io_u **io_u)
868{
26b3a188 869 const bool needs_lock = td_async_processing(td);
755200a3 870 struct io_u *__io_u = *io_u;
bcd5abfa 871 enum fio_ddir ddir = acct_ddir(__io_u);
755200a3 872
465221b0
JA
873 dprint(FD_IO, "requeue %p\n", __io_u);
874
a9da8ab2
JA
875 if (td->parent)
876 td = td->parent;
877
26b3a188
JA
878 if (needs_lock)
879 __td_io_u_lock(td);
e8462bd8 880
1651e431 881 io_u_set(td, __io_u, IO_U_F_FREE);
bcd5abfa
JA
882 if ((__io_u->flags & IO_U_F_FLIGHT) && ddir_rw(ddir))
883 td->io_issues[ddir]--;
5ec10eaa 884
1651e431 885 io_u_clear(td, __io_u, IO_U_F_FLIGHT);
a9da8ab2 886 if (__io_u->flags & IO_U_F_IN_CUR_DEPTH) {
0c41214f 887 td->cur_depth--;
a9da8ab2
JA
888 assert(!(td->flags & TD_F_CHILD));
889 }
2ae0b204
JA
890
891 io_u_rpush(&td->io_u_requeues, __io_u);
a9da8ab2 892 td_io_u_free_notify(td);
26b3a188
JA
893
894 if (needs_lock)
895 __td_io_u_unlock(td);
896
755200a3
JA
897 *io_u = NULL;
898}
899
7b865a2f 900static void setup_strided_zone_mode(struct thread_data *td, struct io_u *io_u)
224b3093 901{
902 struct fio_file *f = io_u->file;
903
7b865a2f
BVA
904 assert(td->o.zone_mode == ZONE_MODE_STRIDED);
905 assert(td->o.zone_size);
906 assert(td->o.zone_range);
907
224b3093 908 /*
909 * See if it's time to switch to a new zone
910 */
fa9fd914 911 if (td->zone_bytes >= td->o.zone_size) {
224b3093 912 td->zone_bytes = 0;
913 f->file_offset += td->o.zone_range + td->o.zone_skip;
914
915 /*
916 * Wrap from the beginning, if we exceed the file size
917 */
918 if (f->file_offset >= f->real_file_size)
04bc85a1
JA
919 f->file_offset = get_start_offset(td, f);
920
224b3093 921 f->last_pos[io_u->ddir] = f->file_offset;
922 td->io_skip_bytes += td->o.zone_skip;
923 }
924
925 /*
04bc85a1
JA
926 * If zone_size > zone_range, then maintain the same zone until
927 * zone_bytes >= zone_size.
928 */
224b3093 929 if (f->last_pos[io_u->ddir] >= (f->file_offset + td->o.zone_range)) {
930 dprint(FD_IO, "io_u maintain zone offset=%" PRIu64 "/last_pos=%" PRIu64 "\n",
931 f->file_offset, f->last_pos[io_u->ddir]);
932 f->last_pos[io_u->ddir] = f->file_offset;
933 }
934
935 /*
936 * For random: if 'norandommap' is not set and zone_size > zone_range,
937 * map needs to be reset as it's done with zone_range everytime.
938 */
04bc85a1 939 if ((td->zone_bytes % td->o.zone_range) == 0)
224b3093 940 fio_file_reset(td, f);
224b3093 941}
942
9bf2061e 943static int fill_io_u(struct thread_data *td, struct io_u *io_u)
10ba535a 944{
ec370c22 945 bool is_random;
bfbdd35b
BVA
946 uint64_t offset;
947 enum io_u_action ret;
6aca9b3d 948
9b87f09b 949 if (td_ioengine_flagged(td, FIO_NOIO))
b4c5e1ac
JA
950 goto out;
951
1ef2b6be 952 set_rw_ddir(td, io_u);
5f9099ea 953
e8a0b539 954 if (io_u->ddir == DDIR_INVAL || io_u->ddir == DDIR_TIMEOUT) {
df06a036 955 dprint(FD_IO, "invalid direction received ddir = %d", io_u->ddir);
956 return 1;
957 }
87dc1ab1 958 /*
ff58fced 959 * fsync() or fdatasync() or trim etc, we are done
87dc1ab1 960 */
ff58fced 961 if (!ddir_rw(io_u->ddir))
c38e9468 962 goto out;
a00735e6 963
7b865a2f
BVA
964 if (td->o.zone_mode == ZONE_MODE_STRIDED)
965 setup_strided_zone_mode(td, io_u);
4d37720a
DLM
966 else if (td->o.zone_mode == ZONE_MODE_ZBD)
967 setup_zbd_zone_mode(td, io_u);
48f5abd3 968
10ba535a 969 /*
c685b5b2
JA
970 * No log, let the seq/rand engine retrieve the next buflen and
971 * position.
10ba535a 972 */
6aca9b3d 973 if (get_next_offset(td, io_u, &is_random)) {
2ba1c290 974 dprint(FD_IO, "io_u %p, failed getting offset\n", io_u);
bca4ed4d 975 return 1;
2ba1c290 976 }
10ba535a 977
6aca9b3d 978 io_u->buflen = get_next_buflen(td, io_u, is_random);
2ba1c290
JA
979 if (!io_u->buflen) {
980 dprint(FD_IO, "io_u %p, failed getting buflen\n", io_u);
bca4ed4d 981 return 1;
2ba1c290 982 }
bca4ed4d 983
bfbdd35b
BVA
984 offset = io_u->offset;
985 if (td->o.zone_mode == ZONE_MODE_ZBD) {
986 ret = zbd_adjust_block(td, io_u);
629eda50
BVA
987 if (ret == io_u_eof) {
988 dprint(FD_IO, "zbd_adjust_block() returned io_u_eof\n");
bfbdd35b 989 return 1;
629eda50 990 }
bfbdd35b
BVA
991 }
992
a7e8aae0
KB
993 if (td->o.fdp)
994 fdp_fill_dspec_data(td, io_u);
995
2ba1c290 996 if (io_u->offset + io_u->buflen > io_u->file->real_file_size) {
5fff9543 997 dprint(FD_IO, "io_u %p, off=0x%llx + len=0x%llx exceeds file size=0x%llx\n",
e5f9a813 998 io_u,
4b91ee8f
JA
999 (unsigned long long) io_u->offset, io_u->buflen,
1000 (unsigned long long) io_u->file->real_file_size);
6a5e6884 1001 return 1;
2ba1c290 1002 }
6a5e6884 1003
bca4ed4d
JA
1004 /*
1005 * mark entry before potentially trimming io_u
1006 */
303032ae 1007 if (td_random(td) && file_randommap(td, io_u->file))
bfbdd35b 1008 io_u->buflen = mark_random_map(td, io_u, offset, io_u->buflen);
bca4ed4d 1009
c38e9468 1010out:
e5f9a813 1011 dprint_io_u(io_u, "fill");
cb7d7abb 1012 io_u->verify_offset = io_u->offset;
d9d91e39 1013 td->zone_bytes += io_u->buflen;
bca4ed4d 1014 return 0;
10ba535a
JA
1015}
1016
6cc0e5aa 1017static void __io_u_mark_map(uint64_t *map, unsigned int nr)
838bc709 1018{
2b13e716 1019 int idx = 0;
838bc709
JA
1020
1021 switch (nr) {
1022 default:
2b13e716 1023 idx = 6;
838bc709
JA
1024 break;
1025 case 33 ... 64:
2b13e716 1026 idx = 5;
838bc709
JA
1027 break;
1028 case 17 ... 32:
2b13e716 1029 idx = 4;
838bc709
JA
1030 break;
1031 case 9 ... 16:
2b13e716 1032 idx = 3;
838bc709
JA
1033 break;
1034 case 5 ... 8:
2b13e716 1035 idx = 2;
838bc709
JA
1036 break;
1037 case 1 ... 4:
2b13e716 1038 idx = 1;
87933e32 1039 fio_fallthrough;
838bc709
JA
1040 case 0:
1041 break;
1042 }
1043
2b13e716 1044 map[idx]++;
838bc709
JA
1045}
1046
1047void io_u_mark_submit(struct thread_data *td, unsigned int nr)
1048{
1049 __io_u_mark_map(td->ts.io_u_submit, nr);
1050 td->ts.total_submit++;
1051}
1052
1053void io_u_mark_complete(struct thread_data *td, unsigned int nr)
1054{
1055 __io_u_mark_map(td->ts.io_u_complete, nr);
1056 td->ts.total_complete++;
1057}
1058
d8005759 1059void io_u_mark_depth(struct thread_data *td, unsigned int nr)
71619dc2 1060{
2b13e716 1061 int idx = 0;
71619dc2
JA
1062
1063 switch (td->cur_depth) {
1064 default:
2b13e716 1065 idx = 6;
a783e61a 1066 break;
71619dc2 1067 case 32 ... 63:
2b13e716 1068 idx = 5;
a783e61a 1069 break;
71619dc2 1070 case 16 ... 31:
2b13e716 1071 idx = 4;
a783e61a 1072 break;
71619dc2 1073 case 8 ... 15:
2b13e716 1074 idx = 3;
a783e61a 1075 break;
71619dc2 1076 case 4 ... 7:
2b13e716 1077 idx = 2;
a783e61a 1078 break;
71619dc2 1079 case 2 ... 3:
2b13e716 1080 idx = 1;
87933e32 1081 fio_fallthrough;
71619dc2
JA
1082 case 1:
1083 break;
1084 }
1085
2b13e716 1086 td->ts.io_u_map[idx] += nr;
71619dc2
JA
1087}
1088
d6bb626e 1089static void io_u_mark_lat_nsec(struct thread_data *td, unsigned long long nsec)
04a0feae 1090{
2b13e716 1091 int idx = 0;
04a0feae 1092
d6bb626e
VF
1093 assert(nsec < 1000);
1094
1095 switch (nsec) {
1096 case 750 ... 999:
1097 idx = 9;
1098 break;
1099 case 500 ... 749:
1100 idx = 8;
1101 break;
1102 case 250 ... 499:
1103 idx = 7;
1104 break;
1105 case 100 ... 249:
1106 idx = 6;
1107 break;
1108 case 50 ... 99:
1109 idx = 5;
1110 break;
1111 case 20 ... 49:
1112 idx = 4;
1113 break;
1114 case 10 ... 19:
1115 idx = 3;
1116 break;
1117 case 4 ... 9:
1118 idx = 2;
1119 break;
1120 case 2 ... 3:
1121 idx = 1;
87933e32 1122 fio_fallthrough;
d6bb626e
VF
1123 case 0 ... 1:
1124 break;
1125 }
1126
1127 assert(idx < FIO_IO_U_LAT_N_NR);
1128 td->ts.io_u_lat_n[idx]++;
1129}
1130
1131static void io_u_mark_lat_usec(struct thread_data *td, unsigned long long usec)
1132{
1133 int idx = 0;
1134
1135 assert(usec < 1000 && usec >= 1);
04a0feae
JA
1136
1137 switch (usec) {
1138 case 750 ... 999:
2b13e716 1139 idx = 9;
04a0feae
JA
1140 break;
1141 case 500 ... 749:
2b13e716 1142 idx = 8;
04a0feae
JA
1143 break;
1144 case 250 ... 499:
2b13e716 1145 idx = 7;
04a0feae
JA
1146 break;
1147 case 100 ... 249:
2b13e716 1148 idx = 6;
04a0feae
JA
1149 break;
1150 case 50 ... 99:
2b13e716 1151 idx = 5;
04a0feae
JA
1152 break;
1153 case 20 ... 49:
2b13e716 1154 idx = 4;
04a0feae
JA
1155 break;
1156 case 10 ... 19:
2b13e716 1157 idx = 3;
04a0feae
JA
1158 break;
1159 case 4 ... 9:
2b13e716 1160 idx = 2;
04a0feae
JA
1161 break;
1162 case 2 ... 3:
2b13e716 1163 idx = 1;
87933e32 1164 fio_fallthrough;
04a0feae
JA
1165 case 0 ... 1:
1166 break;
1167 }
1168
2b13e716
JA
1169 assert(idx < FIO_IO_U_LAT_U_NR);
1170 td->ts.io_u_lat_u[idx]++;
04a0feae
JA
1171}
1172
d6bb626e 1173static void io_u_mark_lat_msec(struct thread_data *td, unsigned long long msec)
ec118304 1174{
2b13e716 1175 int idx = 0;
ec118304 1176
d6bb626e
VF
1177 assert(msec >= 1);
1178
ec118304
JA
1179 switch (msec) {
1180 default:
2b13e716 1181 idx = 11;
04a0feae 1182 break;
8abdce66 1183 case 1000 ... 1999:
2b13e716 1184 idx = 10;
04a0feae 1185 break;
8abdce66 1186 case 750 ... 999:
2b13e716 1187 idx = 9;
04a0feae 1188 break;
8abdce66 1189 case 500 ... 749:
2b13e716 1190 idx = 8;
04a0feae 1191 break;
8abdce66 1192 case 250 ... 499:
2b13e716 1193 idx = 7;
04a0feae 1194 break;
8abdce66 1195 case 100 ... 249:
2b13e716 1196 idx = 6;
04a0feae 1197 break;
8abdce66 1198 case 50 ... 99:
2b13e716 1199 idx = 5;
04a0feae 1200 break;
8abdce66 1201 case 20 ... 49:
2b13e716 1202 idx = 4;
04a0feae 1203 break;
8abdce66 1204 case 10 ... 19:
2b13e716 1205 idx = 3;
04a0feae 1206 break;
8abdce66 1207 case 4 ... 9:
2b13e716 1208 idx = 2;
04a0feae 1209 break;
ec118304 1210 case 2 ... 3:
2b13e716 1211 idx = 1;
87933e32 1212 fio_fallthrough;
ec118304
JA
1213 case 0 ... 1:
1214 break;
1215 }
1216
2b13e716
JA
1217 assert(idx < FIO_IO_U_LAT_M_NR);
1218 td->ts.io_u_lat_m[idx]++;
04a0feae
JA
1219}
1220
d6bb626e 1221static void io_u_mark_latency(struct thread_data *td, unsigned long long nsec)
04a0feae 1222{
d6bb626e
VF
1223 if (nsec < 1000)
1224 io_u_mark_lat_nsec(td, nsec);
1225 else if (nsec < 1000000)
1226 io_u_mark_lat_usec(td, nsec / 1000);
04a0feae 1227 else
d6bb626e 1228 io_u_mark_lat_msec(td, nsec / 1000000);
ec118304
JA
1229}
1230
8c07860d
JA
1231static unsigned int __get_next_fileno_rand(struct thread_data *td)
1232{
1233 unsigned long fileno;
1234
1235 if (td->o.file_service_type == FIO_FSERVICE_RANDOM) {
1236 uint64_t frand_max = rand_max(&td->next_file_state);
1237 unsigned long r;
1238
1239 r = __rand(&td->next_file_state);
1240 return (unsigned int) ((double) td->o.nr_files
1241 * (r / (frand_max + 1.0)));
1242 }
1243
1244 if (td->o.file_service_type == FIO_FSERVICE_ZIPF)
1245 fileno = zipf_next(&td->next_file_zipf);
1246 else if (td->o.file_service_type == FIO_FSERVICE_PARETO)
1247 fileno = pareto_next(&td->next_file_zipf);
1248 else if (td->o.file_service_type == FIO_FSERVICE_GAUSS)
1249 fileno = gauss_next(&td->next_file_gauss);
1250 else {
1251 log_err("fio: bad file service type: %d\n", td->o.file_service_type);
1252 assert(0);
1253 return 0;
1254 }
1255
1256 return fileno >> FIO_FSERVICE_SHIFT;
1257}
1258
0aabe160
JA
1259/*
1260 * Get next file to service by choosing one at random
1261 */
2cc52930
JA
1262static struct fio_file *get_next_file_rand(struct thread_data *td,
1263 enum fio_file_flags goodf,
d6aed795 1264 enum fio_file_flags badf)
0aabe160 1265{
0aabe160 1266 struct fio_file *f;
1c178180 1267 int fno;
0aabe160
JA
1268
1269 do {
87b10676 1270 int opened = 0;
4c07ad86 1271
8c07860d 1272 fno = __get_next_fileno_rand(td);
7c83c089 1273
126d65c6 1274 f = td->files[fno];
d6aed795 1275 if (fio_file_done(f))
059e63c0 1276 continue;
1c178180 1277
d6aed795 1278 if (!fio_file_open(f)) {
87b10676
JA
1279 int err;
1280
002fe734
JA
1281 if (td->nr_open_files >= td->o.open_files)
1282 return ERR_PTR(-EBUSY);
1283
87b10676
JA
1284 err = td_io_open_file(td, f);
1285 if (err)
1286 continue;
1287 opened = 1;
1288 }
1289
2ba1c290
JA
1290 if ((!goodf || (f->flags & goodf)) && !(f->flags & badf)) {
1291 dprint(FD_FILE, "get_next_file_rand: %p\n", f);
0aabe160 1292 return f;
2ba1c290 1293 }
87b10676
JA
1294 if (opened)
1295 td_io_close_file(td, f);
0aabe160
JA
1296 } while (1);
1297}
1298
1299/*
1300 * Get next file to service by doing round robin between all available ones
1301 */
1c178180
JA
1302static struct fio_file *get_next_file_rr(struct thread_data *td, int goodf,
1303 int badf)
3d7c391d
JA
1304{
1305 unsigned int old_next_file = td->next_file;
1306 struct fio_file *f;
1307
1308 do {
87b10676
JA
1309 int opened = 0;
1310
126d65c6 1311 f = td->files[td->next_file];
3d7c391d
JA
1312
1313 td->next_file++;
2dc1bbeb 1314 if (td->next_file >= td->o.nr_files)
3d7c391d
JA
1315 td->next_file = 0;
1316
87b10676 1317 dprint(FD_FILE, "trying file %s %x\n", f->file_name, f->flags);
d6aed795 1318 if (fio_file_done(f)) {
d5ed68ea 1319 f = NULL;
059e63c0 1320 continue;
d5ed68ea 1321 }
059e63c0 1322
d6aed795 1323 if (!fio_file_open(f)) {
87b10676
JA
1324 int err;
1325
002fe734
JA
1326 if (td->nr_open_files >= td->o.open_files)
1327 return ERR_PTR(-EBUSY);
1328
87b10676 1329 err = td_io_open_file(td, f);
b5696bfc
JA
1330 if (err) {
1331 dprint(FD_FILE, "error %d on open of %s\n",
1332 err, f->file_name);
87c27b45 1333 f = NULL;
87b10676 1334 continue;
b5696bfc 1335 }
87b10676
JA
1336 opened = 1;
1337 }
1338
0b9d69ec
JA
1339 dprint(FD_FILE, "goodf=%x, badf=%x, ff=%x\n", goodf, badf,
1340 f->flags);
1c178180 1341 if ((!goodf || (f->flags & goodf)) && !(f->flags & badf))
3d7c391d
JA
1342 break;
1343
87b10676
JA
1344 if (opened)
1345 td_io_close_file(td, f);
1346
3d7c391d
JA
1347 f = NULL;
1348 } while (td->next_file != old_next_file);
1349
2ba1c290 1350 dprint(FD_FILE, "get_next_file_rr: %p\n", f);
3d7c391d
JA
1351 return f;
1352}
1353
7eb36574 1354static struct fio_file *__get_next_file(struct thread_data *td)
bdb4e2e9 1355{
1907dbc6
JA
1356 struct fio_file *f;
1357
2dc1bbeb 1358 assert(td->o.nr_files <= td->files_index);
1c178180 1359
b5696bfc 1360 if (td->nr_done_files >= td->o.nr_files) {
5ec10eaa
JA
1361 dprint(FD_FILE, "get_next_file: nr_open=%d, nr_done=%d,"
1362 " nr_files=%d\n", td->nr_open_files,
1363 td->nr_done_files,
1364 td->o.nr_files);
bdb4e2e9 1365 return NULL;
2ba1c290 1366 }
bdb4e2e9 1367
1907dbc6 1368 f = td->file_service_file;
d6aed795 1369 if (f && fio_file_open(f) && !fio_file_closing(f)) {
a086c257
JA
1370 if (td->o.file_service_type == FIO_FSERVICE_SEQ)
1371 goto out;
4ef1562a 1372 if (td->file_service_left) {
2d8c2709
JA
1373 td->file_service_left--;
1374 goto out;
4ef1562a 1375 }
a086c257 1376 }
1907dbc6 1377
a086c257
JA
1378 if (td->o.file_service_type == FIO_FSERVICE_RR ||
1379 td->o.file_service_type == FIO_FSERVICE_SEQ)
d6aed795 1380 f = get_next_file_rr(td, FIO_FILE_open, FIO_FILE_closing);
bdb4e2e9 1381 else
d6aed795 1382 f = get_next_file_rand(td, FIO_FILE_open, FIO_FILE_closing);
1907dbc6 1383
002fe734
JA
1384 if (IS_ERR(f))
1385 return f;
1386
1907dbc6
JA
1387 td->file_service_file = f;
1388 td->file_service_left = td->file_service_nr - 1;
2ba1c290 1389out:
0dac421f
JA
1390 if (f)
1391 dprint(FD_FILE, "get_next_file: %p [%s]\n", f, f->file_name);
1392 else
1393 dprint(FD_FILE, "get_next_file: NULL\n");
1907dbc6 1394 return f;
bdb4e2e9
JA
1395}
1396
7eb36574
JA
1397static struct fio_file *get_next_file(struct thread_data *td)
1398{
7eb36574
JA
1399 return __get_next_file(td);
1400}
1401
002fe734 1402static long set_io_u_file(struct thread_data *td, struct io_u *io_u)
429f6675
JA
1403{
1404 struct fio_file *f;
1405
1406 do {
1407 f = get_next_file(td);
002fe734
JA
1408 if (IS_ERR_OR_NULL(f))
1409 return PTR_ERR(f);
429f6675 1410
429f6675
JA
1411 io_u->file = f;
1412 get_file(f);
1413
1414 if (!fill_io_u(td, io_u))
1415 break;
1416
b2da58c4 1417 zbd_put_io_u(td, io_u);
99952ca7 1418
b5696bfc 1419 put_file_log(td, f);
429f6675 1420 td_io_close_file(td, f);
b5696bfc 1421 io_u->file = NULL;
e8a0b539 1422
1423 if (io_u->ddir == DDIR_TIMEOUT)
1424 return 1;
1425
8c07860d
JA
1426 if (td->o.file_service_type & __FIO_FSERVICE_NONUNIFORM)
1427 fio_file_reset(td, f);
1428 else {
1429 fio_file_set_done(f);
1430 td->nr_done_files++;
1431 dprint(FD_FILE, "%s: is done (%d of %d)\n", f->file_name,
0b9d69ec 1432 td->nr_done_files, td->o.nr_files);
8c07860d 1433 }
429f6675
JA
1434 } while (1);
1435
1436 return 0;
1437}
1438
f7cf63bf 1439static void lat_fatal(struct thread_data *td, struct io_u *io_u, struct io_completion_data *icd,
c3a32714 1440 unsigned long long tnsec, unsigned long long max_nsec)
3e260a46 1441{
f7cf63bf
VR
1442 if (!td->error) {
1443 log_err("fio: latency of %llu nsec exceeds specified max (%llu nsec): %s %s %llu %llu\n",
1444 tnsec, max_nsec,
1445 io_u->file->file_name,
1446 io_ddir_name(io_u->ddir),
1447 io_u->offset, io_u->buflen);
1448 }
3e260a46
JA
1449 td_verror(td, ETIMEDOUT, "max latency exceeded");
1450 icd->error = ETIMEDOUT;
1451}
1452
1453static void lat_new_cycle(struct thread_data *td)
1454{
1455 fio_gettime(&td->latency_ts, NULL);
1456 td->latency_ios = ddir_rw_sum(td->io_blocks);
1457 td->latency_failed = 0;
1458}
1459
1460/*
1461 * We had an IO outside the latency target. Reduce the queue depth. If we
1462 * are at QD=1, then it's time to give up.
1463 */
e39c0676 1464static bool __lat_target_failed(struct thread_data *td)
3e260a46
JA
1465{
1466 if (td->latency_qd == 1)
e39c0676 1467 return true;
3e260a46
JA
1468
1469 td->latency_qd_high = td->latency_qd;
6bb58215
JA
1470
1471 if (td->latency_qd == td->latency_qd_low)
1472 td->latency_qd_low--;
1473
3e260a46 1474 td->latency_qd = (td->latency_qd + td->latency_qd_low) / 2;
e1bcd541 1475 td->latency_stable_count = 0;
3e260a46
JA
1476
1477 dprint(FD_RATE, "Ramped down: %d %d %d\n", td->latency_qd_low, td->latency_qd, td->latency_qd_high);
1478
1479 /*
1480 * When we ramp QD down, quiesce existing IO to prevent
1481 * a storm of ramp downs due to pending higher depth.
1482 */
1483 io_u_quiesce(td);
1484 lat_new_cycle(td);
e39c0676 1485 return false;
3e260a46
JA
1486}
1487
e39c0676 1488static bool lat_target_failed(struct thread_data *td)
3e260a46
JA
1489{
1490 if (td->o.latency_percentile.u.f == 100.0)
1491 return __lat_target_failed(td);
1492
1493 td->latency_failed++;
e39c0676 1494 return false;
3e260a46
JA
1495}
1496
1497void lat_target_init(struct thread_data *td)
1498{
6bb58215
JA
1499 td->latency_end_run = 0;
1500
3e260a46
JA
1501 if (td->o.latency_target) {
1502 dprint(FD_RATE, "Latency target=%llu\n", td->o.latency_target);
1503 fio_gettime(&td->latency_ts, NULL);
1504 td->latency_qd = 1;
1505 td->latency_qd_high = td->o.iodepth;
1506 td->latency_qd_low = 1;
1507 td->latency_ios = ddir_rw_sum(td->io_blocks);
1508 } else
1509 td->latency_qd = td->o.iodepth;
1510}
1511
6bb58215
JA
1512void lat_target_reset(struct thread_data *td)
1513{
1514 if (!td->latency_end_run)
1515 lat_target_init(td);
1516}
1517
3e260a46
JA
1518static void lat_target_success(struct thread_data *td)
1519{
1520 const unsigned int qd = td->latency_qd;
6bb58215 1521 struct thread_options *o = &td->o;
3e260a46
JA
1522
1523 td->latency_qd_low = td->latency_qd;
1524
e1bcd541
SL
1525 if (td->latency_qd + 1 == td->latency_qd_high) {
1526 /*
1527 * latency_qd will not incease on lat_target_success(), so
1528 * called stable. If we stick with this queue depth, the
1529 * final latency is likely lower than latency_target. Fix
1530 * this by increasing latency_qd_high slowly. Use a naive
1531 * heuristic here. If we get lat_target_success() 3 times
1532 * in a row, increase latency_qd_high by 1.
1533 */
1534 if (++td->latency_stable_count >= 3) {
1535 td->latency_qd_high++;
1536 td->latency_stable_count = 0;
1537 }
1538 }
1539
3e260a46
JA
1540 /*
1541 * If we haven't failed yet, we double up to a failing value instead
1542 * of bisecting from highest possible queue depth. If we have set
1543 * a limit other than td->o.iodepth, bisect between that.
1544 */
6bb58215 1545 if (td->latency_qd_high != o->iodepth)
3e260a46
JA
1546 td->latency_qd = (td->latency_qd + td->latency_qd_high) / 2;
1547 else
1548 td->latency_qd *= 2;
1549
6bb58215
JA
1550 if (td->latency_qd > o->iodepth)
1551 td->latency_qd = o->iodepth;
3e260a46
JA
1552
1553 dprint(FD_RATE, "Ramped up: %d %d %d\n", td->latency_qd_low, td->latency_qd, td->latency_qd_high);
6bb58215 1554
3e260a46 1555 /*
6bb58215
JA
1556 * Same as last one, we are done. Let it run a latency cycle, so
1557 * we get only the results from the targeted depth.
3e260a46 1558 */
e1bcd541 1559 if (!o->latency_run && td->latency_qd == qd) {
6bb58215
JA
1560 if (td->latency_end_run) {
1561 dprint(FD_RATE, "We are done\n");
1562 td->done = 1;
1563 } else {
1564 dprint(FD_RATE, "Quiesce and final run\n");
1565 io_u_quiesce(td);
1566 td->latency_end_run = 1;
1567 reset_all_stats(td);
1568 reset_io_stats(td);
1569 }
1570 }
3e260a46
JA
1571
1572 lat_new_cycle(td);
1573}
1574
1575/*
1576 * Check if we can bump the queue depth
1577 */
1578void lat_target_check(struct thread_data *td)
1579{
1580 uint64_t usec_window;
1581 uint64_t ios;
1582 double success_ios;
1583
1584 usec_window = utime_since_now(&td->latency_ts);
1585 if (usec_window < td->o.latency_window)
1586 return;
1587
1588 ios = ddir_rw_sum(td->io_blocks) - td->latency_ios;
1589 success_ios = (double) (ios - td->latency_failed) / (double) ios;
1590 success_ios *= 100.0;
1591
1592 dprint(FD_RATE, "Success rate: %.2f%% (target %.2f%%)\n", success_ios, td->o.latency_percentile.u.f);
1593
1594 if (success_ios >= td->o.latency_percentile.u.f)
1595 lat_target_success(td);
1596 else
1597 __lat_target_failed(td);
1598}
1599
1600/*
1601 * If latency target is enabled, we might be ramping up or down and not
1602 * using the full queue depth available.
1603 */
e39c0676 1604bool queue_full(const struct thread_data *td)
3e260a46
JA
1605{
1606 const int qempty = io_u_qempty(&td->io_u_freelist);
1607
1608 if (qempty)
e39c0676 1609 return true;
3e260a46 1610 if (!td->o.latency_target)
e39c0676 1611 return false;
3e260a46
JA
1612
1613 return td->cur_depth >= td->latency_qd;
1614}
429f6675 1615
10ba535a
JA
1616struct io_u *__get_io_u(struct thread_data *td)
1617{
26b3a188 1618 const bool needs_lock = td_async_processing(td);
0cae66f6 1619 struct io_u *io_u = NULL;
10ba535a 1620
ca09be4b
JA
1621 if (td->stop_io)
1622 return NULL;
1623
26b3a188
JA
1624 if (needs_lock)
1625 __td_io_u_lock(td);
e8462bd8
JA
1626
1627again:
bba6b14f 1628 if (!io_u_rempty(&td->io_u_requeues)) {
2ae0b204 1629 io_u = io_u_rpop(&td->io_u_requeues);
bba6b14f
JA
1630 io_u->resid = 0;
1631 } else if (!queue_full(td)) {
2ae0b204 1632 io_u = io_u_qpop(&td->io_u_freelist);
10ba535a 1633
225ba9e3 1634 io_u->file = NULL;
6040dabc 1635 io_u->buflen = 0;
10ba535a 1636 io_u->resid = 0;
d7762cf8 1637 io_u->end_io = NULL;
755200a3
JA
1638 }
1639
1640 if (io_u) {
0c6e7517 1641 assert(io_u->flags & IO_U_F_FREE);
1651e431 1642 io_u_clear(td, io_u, IO_U_F_FREE | IO_U_F_NO_FILE_PUT |
f8b0bd10 1643 IO_U_F_TRIMMED | IO_U_F_BARRIER |
692dec0c 1644 IO_U_F_VER_LIST);
0c6e7517 1645
755200a3 1646 io_u->error = 0;
bcd5abfa 1647 io_u->acct_ddir = -1;
10ba535a 1648 td->cur_depth++;
a9da8ab2 1649 assert(!(td->flags & TD_F_CHILD));
1651e431 1650 io_u_set(td, io_u, IO_U_F_IN_CUR_DEPTH);
f9401285 1651 io_u->ipo = NULL;
a9da8ab2 1652 } else if (td_async_processing(td)) {
83276370 1653 int ret;
1dec3e07
JA
1654 /*
1655 * We ran out, wait for async verify threads to finish and
1656 * return one
1657 */
a9da8ab2 1658 assert(!(td->flags & TD_F_CHILD));
93b45bb2 1659 ret = pthread_cond_wait(&td->free_cond, &td->io_u_lock);
83276370
DP
1660 if (fio_unlikely(ret != 0)) {
1661 td->error = errno;
1662 } else if (!td->error)
ee5e08ad 1663 goto again;
10ba535a
JA
1664 }
1665
26b3a188
JA
1666 if (needs_lock)
1667 __td_io_u_unlock(td);
1668
10ba535a
JA
1669 return io_u;
1670}
1671
e39c0676 1672static bool check_get_trim(struct thread_data *td, struct io_u *io_u)
10ba535a 1673{
d72be545 1674 if (!(td->flags & TD_F_TRIM_BACKLOG))
e39c0676 1675 return false;
c9a73054
JA
1676 if (!td->trim_entries)
1677 return false;
d72be545 1678
c9a73054
JA
1679 if (td->trim_batch) {
1680 td->trim_batch--;
1681 if (get_next_trim(td, io_u))
1682 return true;
1683 } else if (!(td->io_hist_len % td->o.trim_backlog) &&
1684 td->last_ddir != DDIR_READ) {
1685 td->trim_batch = td->o.trim_batch;
1686 if (!td->trim_batch)
1687 td->trim_batch = td->o.trim_backlog;
1688 if (get_next_trim(td, io_u))
e39c0676 1689 return true;
2ba1c290 1690 }
10ba535a 1691
e39c0676 1692 return false;
0d29de83
JA
1693}
1694
e39c0676 1695static bool check_get_verify(struct thread_data *td, struct io_u *io_u)
0d29de83 1696{
d72be545 1697 if (!(td->flags & TD_F_VER_BACKLOG))
e39c0676 1698 return false;
d72be545
JA
1699
1700 if (td->io_hist_len) {
9e144189
JA
1701 int get_verify = 0;
1702
d1ece0c7 1703 if (td->verify_batch)
9e144189 1704 get_verify = 1;
d1ece0c7 1705 else if (!(td->io_hist_len % td->o.verify_backlog) &&
9e144189
JA
1706 td->last_ddir != DDIR_READ) {
1707 td->verify_batch = td->o.verify_batch;
f8a75c99
JA
1708 if (!td->verify_batch)
1709 td->verify_batch = td->o.verify_backlog;
9e144189
JA
1710 get_verify = 1;
1711 }
1712
d1ece0c7
JA
1713 if (get_verify && !get_next_verify(td, io_u)) {
1714 td->verify_batch--;
e39c0676 1715 return true;
d1ece0c7 1716 }
9e144189
JA
1717 }
1718
e39c0676 1719 return false;
0d29de83
JA
1720}
1721
de789769
JA
1722/*
1723 * Fill offset and start time into the buffer content, to prevent too
23f394d5
JA
1724 * easy compressible data for simple de-dupe attempts. Do this for every
1725 * 512b block in the range, since that should be the smallest block size
1726 * we can expect from a device.
de789769
JA
1727 */
1728static void small_content_scramble(struct io_u *io_u)
1729{
5fff9543 1730 unsigned long long i, nr_blocks = io_u->buflen >> 9;
23f394d5 1731 unsigned int offset;
319b073f
JA
1732 uint64_t boffset, *iptr;
1733 char *p;
de789769 1734
23f394d5
JA
1735 if (!nr_blocks)
1736 return;
1737
1738 p = io_u->xfer_buf;
fba76ee8 1739 boffset = io_u->offset;
319b073f
JA
1740
1741 if (io_u->buf_filled_len)
1742 io_u->buf_filled_len = 0;
1743
1744 /*
1745 * Generate random index between 0..7. We do chunks of 512b, if
1746 * we assume a cacheline is 64 bytes, then we have 8 of those.
1747 * Scramble content within the blocks in the same cacheline to
1748 * speed things up.
1749 */
1750 offset = (io_u->start_time.tv_nsec ^ boffset) & 7;
fad82f76 1751
23f394d5
JA
1752 for (i = 0; i < nr_blocks; i++) {
1753 /*
319b073f
JA
1754 * Fill offset into start of cacheline, time into end
1755 * of cacheline
23f394d5 1756 */
319b073f
JA
1757 iptr = (void *) p + (offset << 6);
1758 *iptr = boffset;
1759
1760 iptr = (void *) p + 64 - 2 * sizeof(uint64_t);
1761 iptr[0] = io_u->start_time.tv_sec;
1762 iptr[1] = io_u->start_time.tv_nsec;
23f394d5 1763
23f394d5 1764 p += 512;
fad82f76 1765 boffset += 512;
23f394d5 1766 }
de789769
JA
1767}
1768
0d29de83
JA
1769/*
1770 * Return an io_u to be processed. Gets a buflen and offset, sets direction,
5c5c33c1 1771 * etc. The returned io_u is fully ready to be prepped, populated and submitted.
0d29de83
JA
1772 */
1773struct io_u *get_io_u(struct thread_data *td)
1774{
1775 struct fio_file *f;
1776 struct io_u *io_u;
de789769 1777 int do_scramble = 0;
002fe734 1778 long ret = 0;
0d29de83
JA
1779
1780 io_u = __get_io_u(td);
1781 if (!io_u) {
1782 dprint(FD_IO, "__get_io_u failed\n");
1783 return NULL;
1784 }
1785
1786 if (check_get_verify(td, io_u))
1787 goto out;
1788 if (check_get_trim(td, io_u))
1789 goto out;
1790
755200a3
JA
1791 /*
1792 * from a requeue, io_u already setup
1793 */
1794 if (io_u->file)
77f392bf 1795 goto out;
755200a3 1796
429f6675
JA
1797 /*
1798 * If using an iolog, grab next piece if any available.
1799 */
d72be545 1800 if (td->flags & TD_F_READ_IOLOG) {
429f6675
JA
1801 if (read_iolog_get(td, io_u))
1802 goto err_put;
2ba1c290 1803 } else if (set_io_u_file(td, io_u)) {
002fe734 1804 ret = -EBUSY;
2ba1c290 1805 dprint(FD_IO, "io_u %p, setting file failed\n", io_u);
429f6675 1806 goto err_put;
2ba1c290 1807 }
5ec10eaa 1808
429f6675 1809 f = io_u->file;
002fe734
JA
1810 if (!f) {
1811 dprint(FD_IO, "io_u %p, setting file failed\n", io_u);
1812 goto err_put;
1813 }
1814
d6aed795 1815 assert(fio_file_open(f));
97af62ce 1816
ff58fced 1817 if (ddir_rw(io_u->ddir)) {
9b87f09b 1818 if (!io_u->buflen && !td_ioengine_flagged(td, FIO_NOIO)) {
2ba1c290 1819 dprint(FD_IO, "get_io_u: zero buflen on %p\n", io_u);
429f6675 1820 goto err_put;
2ba1c290 1821 }
10ba535a 1822
f1dfb668
JA
1823 f->last_start[io_u->ddir] = io_u->offset;
1824 f->last_pos[io_u->ddir] = io_u->offset + io_u->buflen;
10ba535a 1825
fd68418e 1826 if (io_u->ddir == DDIR_WRITE) {
d72be545 1827 if (td->flags & TD_F_REFILL_BUFFERS) {
9c42684e 1828 io_u_fill_buffer(td, io_u,
1066358a 1829 td->o.min_bs[DDIR_WRITE],
9e129577 1830 io_u->buflen);
ff441ae8 1831 } else if ((td->flags & TD_F_SCRAMBLE_BUFFERS) &&
5c5c33c1
BVA
1832 !(td->flags & TD_F_COMPRESS) &&
1833 !(td->flags & TD_F_DO_VERIFY))
fd68418e
JA
1834 do_scramble = 1;
1835 } else if (io_u->ddir == DDIR_READ) {
cbe8d756
RR
1836 /*
1837 * Reset the buf_filled parameters so next time if the
1838 * buffer is used for writes it is refilled.
1839 */
cbe8d756
RR
1840 io_u->buf_filled_len = 0;
1841 }
87dc1ab1 1842 }
10ba535a 1843
165faf16
JA
1844 /*
1845 * Set io data pointers.
1846 */
cec6b55d
JA
1847 io_u->xfer_buf = io_u->buf;
1848 io_u->xfer_buflen = io_u->buflen;
5973cafb 1849
03ec570f
DLM
1850 /*
1851 * Remember the issuing context priority. The IO engine may change this.
1852 */
1853 io_u->ioprio = td->ioprio;
f0547200 1854 io_u->clat_prio_index = 0;
6ac7a331 1855out:
0d29de83 1856 assert(io_u->file);
429f6675 1857 if (!td_io_prep(td, io_u)) {
3ecc8c67 1858 if (!td->o.disable_lat)
993bf48b 1859 fio_gettime(&io_u->start_time, NULL);
03553853 1860
de789769
JA
1861 if (do_scramble)
1862 small_content_scramble(io_u);
03553853 1863
429f6675 1864 return io_u;
36167d82 1865 }
429f6675 1866err_put:
2ba1c290 1867 dprint(FD_IO, "get_io_u failed\n");
429f6675 1868 put_io_u(td, io_u);
002fe734 1869 return ERR_PTR(ret);
10ba535a
JA
1870}
1871
a9da8ab2 1872static void __io_u_log_error(struct thread_data *td, struct io_u *io_u)
5451792e 1873{
8b28bd41 1874 enum error_type_bit eb = td_error_type(io_u->ddir, io_u->error);
825f818e 1875
8b28bd41
DM
1876 if (td_non_fatal_error(td, eb, io_u->error) && !td->o.error_dump)
1877 return;
5451792e 1878
5fff9543 1879 log_err("fio: io_u error%s%s: %s: %s offset=%llu, buflen=%llu\n",
709c8313
RE
1880 io_u->file ? " on file " : "",
1881 io_u->file ? io_u->file->file_name : "",
1882 strerror(io_u->error),
1883 io_ddir_name(io_u->ddir),
1884 io_u->offset, io_u->xfer_buflen);
5451792e 1885
8b403508
SK
1886 zbd_log_err(td, io_u);
1887
5ad7be56
KD
1888 if (td->io_ops->errdetails) {
1889 char *err = td->io_ops->errdetails(io_u);
1890
1891 log_err("fio: %s\n", err);
1892 free(err);
1893 }
1894
5451792e
JA
1895 if (!td->error)
1896 td_verror(td, io_u->error, "io_u error");
1897}
1898
a9da8ab2
JA
1899void io_u_log_error(struct thread_data *td, struct io_u *io_u)
1900{
1901 __io_u_log_error(td, io_u);
1902 if (td->parent)
094e66cb 1903 __io_u_log_error(td->parent, io_u);
a9da8ab2
JA
1904}
1905
e39c0676 1906static inline bool gtod_reduce(struct thread_data *td)
aba6c951 1907{
3ecc8c67
JA
1908 return (td->o.disable_clat && td->o.disable_slat && td->o.disable_bw)
1909 || td->o.gtod_reduce;
aba6c951
JA
1910}
1911
d7e92306
JA
1912static void trim_block_info(struct thread_data *td, struct io_u *io_u)
1913{
1914 uint32_t *info = io_u_block_info(td, io_u);
1915
1916 if (BLOCK_INFO_STATE(*info) >= BLOCK_STATE_TRIM_FAILURE)
1917 return;
1918
1919 *info = BLOCK_INFO(BLOCK_STATE_TRIMMED, BLOCK_INFO_TRIMS(*info) + 1);
1920}
1921
c8eeb9df
JA
1922static void account_io_completion(struct thread_data *td, struct io_u *io_u,
1923 struct io_completion_data *icd,
1924 const enum fio_ddir idx, unsigned int bytes)
1925{
a9da8ab2 1926 const int no_reduce = !gtod_reduce(td);
d6bb626e 1927 unsigned long long llnsec = 0;
c8eeb9df 1928
75dc383e
JA
1929 if (td->parent)
1930 td = td->parent;
1931
132b1ee4 1932 if (!td->o.stats || td_ioengine_flagged(td, FIO_NOSTATS))
8243be59
JA
1933 return;
1934
a9da8ab2 1935 if (no_reduce)
d6bb626e 1936 llnsec = ntime_since(&io_u->issue_time, &icd->time);
c8eeb9df
JA
1937
1938 if (!td->o.disable_lat) {
c3a32714 1939 unsigned long long tnsec;
c8eeb9df 1940
d6bb626e 1941 tnsec = ntime_since(&io_u->start_time, &icd->time);
03ec570f 1942 add_lat_sample(td, idx, tnsec, bytes, io_u->offset,
692dec0c 1943 io_u->ioprio, io_u->clat_prio_index);
15501535 1944
d4afedfd
JA
1945 if (td->flags & TD_F_PROFILE_OPS) {
1946 struct prof_io_ops *ops = &td->prof_io_ops;
1947
1948 if (ops->io_u_lat)
c3a32714 1949 icd->error = ops->io_u_lat(td, tnsec);
d4afedfd
JA
1950 }
1951
f7cf63bf
VR
1952 if (ddir_rw(idx)) {
1953 if (td->o.max_latency[idx] && tnsec > td->o.max_latency[idx])
1954 lat_fatal(td, io_u, icd, tnsec, td->o.max_latency[idx]);
1955 if (td->o.latency_target && tnsec > td->o.latency_target) {
1956 if (lat_target_failed(td))
1957 lat_fatal(td, io_u, icd, tnsec, td->o.latency_target);
1958 }
15501535 1959 }
c8eeb9df
JA
1960 }
1961
a47591e4
JA
1962 if (ddir_rw(idx)) {
1963 if (!td->o.disable_clat) {
03ec570f 1964 add_clat_sample(td, idx, llnsec, bytes, io_u->offset,
692dec0c 1965 io_u->ioprio, io_u->clat_prio_index);
d6bb626e 1966 io_u_mark_latency(td, llnsec);
a47591e4 1967 }
c8eeb9df 1968
a47591e4 1969 if (!td->o.disable_bw && per_unit_log(td->bw_log))
d6bb626e 1970 add_bw_sample(td, io_u, bytes, llnsec);
c8eeb9df 1971
a47591e4
JA
1972 if (no_reduce && per_unit_log(td->iops_log))
1973 add_iops_sample(td, io_u, bytes);
b2b3eefe
JA
1974 } else if (ddir_sync(idx) && !td->o.disable_clat)
1975 add_sync_clat_sample(&td->ts, llnsec);
66347cfa 1976
d7e92306
JA
1977 if (td->ts.nr_block_infos && io_u->ddir == DDIR_TRIM)
1978 trim_block_info(td, io_u);
c8eeb9df
JA
1979}
1980
94a6e1bb
JA
1981static void file_log_write_comp(const struct thread_data *td, struct fio_file *f,
1982 uint64_t offset, unsigned int bytes)
1983{
1984 int idx;
1985
639ad1ea
JA
1986 if (!f)
1987 return;
1988
94a6e1bb
JA
1989 if (f->first_write == -1ULL || offset < f->first_write)
1990 f->first_write = offset;
1991 if (f->last_write == -1ULL || ((offset + bytes) > f->last_write))
1992 f->last_write = offset + bytes;
1993
1994 if (!f->last_write_comp)
1995 return;
1996
1997 idx = f->last_write_idx++;
1998 f->last_write_comp[idx] = offset;
1999 if (f->last_write_idx == td->o.iodepth)
2000 f->last_write_idx = 0;
2001}
2002
b2b3eefe
JA
2003static bool should_account(struct thread_data *td)
2004{
2005 return ramp_time_over(td) && (td->runstate == TD_RUNNING ||
2006 td->runstate == TD_VERIFYING);
2007}
2008
f8b0bd10 2009static void io_completed(struct thread_data *td, struct io_u **io_u_ptr,
97601024 2010 struct io_completion_data *icd)
10ba535a 2011{
f8b0bd10
JA
2012 struct io_u *io_u = *io_u_ptr;
2013 enum fio_ddir ddir = io_u->ddir;
2014 struct fio_file *f = io_u->file;
10ba535a 2015
e5f9a813 2016 dprint_io_u(io_u, "complete");
2ba1c290 2017
0c6e7517 2018 assert(io_u->flags & IO_U_F_FLIGHT);
ad21b61d 2019 io_u_clear(td, io_u, IO_U_F_FLIGHT | IO_U_F_BUSY_OK | IO_U_F_PATTERN_DONE);
f9401285
JA
2020
2021 /*
2022 * Mark IO ok to verify
2023 */
2024 if (io_u->ipo) {
890b6656
JA
2025 /*
2026 * Remove errored entry from the verification list
2027 */
2028 if (io_u->error)
2029 unlog_io_piece(td, io_u);
2030 else {
0337173e
BVA
2031 atomic_store_release(&io_u->ipo->flags,
2032 io_u->ipo->flags & ~IP_F_IN_FLIGHT);
890b6656 2033 }
f9401285
JA
2034 }
2035
f8b0bd10 2036 if (ddir_sync(ddir)) {
870ea002
JA
2037 if (io_u->error)
2038 goto error;
2ea93f98 2039 td->last_was_sync = true;
44f29692
JA
2040 if (f) {
2041 f->first_write = -1ULL;
2042 f->last_write = -1ULL;
2043 }
b2b3eefe
JA
2044 if (should_account(td))
2045 account_io_completion(td, io_u, icd, ddir, io_u->buflen);
87dc1ab1
JA
2046 return;
2047 }
2048
2ea93f98 2049 td->last_was_sync = false;
f8b0bd10 2050 td->last_ddir = ddir;
87dc1ab1 2051
f8b0bd10 2052 if (!io_u->error && ddir_rw(ddir)) {
84abeef7 2053 unsigned long long bytes = io_u->xfer_buflen - io_u->resid;
b29ee5b3 2054 int ret;
10ba535a 2055
7d33649c
JA
2056 /*
2057 * Make sure we notice short IO from here, and requeue them
2058 * appropriately!
2059 */
c4cb947e 2060 if (bytes && io_u->resid) {
7d33649c
JA
2061 io_u->xfer_buflen = io_u->resid;
2062 io_u->xfer_buf += bytes;
2063 io_u->offset += bytes;
2064 td->ts.short_io_u[io_u->ddir]++;
2065 if (io_u->offset < io_u->file->real_file_size) {
2066 requeue_io_u(td, io_u_ptr);
2067 return;
2068 }
2069 }
2070
f8b0bd10 2071 td->io_blocks[ddir]++;
f8b0bd10 2072 td->io_bytes[ddir] += bytes;
ae2fafc8 2073
e1c325d2
JA
2074 if (!(io_u->flags & IO_U_F_VER_LIST)) {
2075 td->this_io_blocks[ddir]++;
f8b0bd10 2076 td->this_io_bytes[ddir] += bytes;
e1c325d2 2077 }
f8b0bd10 2078
639ad1ea 2079 if (ddir == DDIR_WRITE)
94a6e1bb 2080 file_log_write_comp(td, f, io_u->offset, bytes);
44f29692 2081
b2b3eefe 2082 if (should_account(td))
f8b0bd10 2083 account_io_completion(td, io_u, icd, ddir, bytes);
40e1a6f0 2084
f8b0bd10 2085 icd->bytes_done[ddir] += bytes;
3af6ef39 2086
d7762cf8 2087 if (io_u->end_io) {
f8b0bd10
JA
2088 ret = io_u->end_io(td, io_u_ptr);
2089 io_u = *io_u_ptr;
3af6ef39
JA
2090 if (ret && !icd->error)
2091 icd->error = ret;
2092 }
ff58fced 2093 } else if (io_u->error) {
870ea002 2094error:
10ba535a 2095 icd->error = io_u->error;
5451792e
JA
2096 io_u_log_error(td, io_u);
2097 }
8b28bd41 2098 if (icd->error) {
f8b0bd10
JA
2099 enum error_type_bit eb = td_error_type(ddir, icd->error);
2100
8b28bd41
DM
2101 if (!td_non_fatal_error(td, eb, icd->error))
2102 return;
f8b0bd10 2103
f2bba182
RR
2104 /*
2105 * If there is a non_fatal error, then add to the error count
2106 * and clear all the errors.
2107 */
2108 update_error_count(td, icd->error);
2109 td_clear_error(td);
2110 icd->error = 0;
f8b0bd10
JA
2111 if (io_u)
2112 io_u->error = 0;
f2bba182 2113 }
10ba535a
JA
2114}
2115
9520ebb9
JA
2116static void init_icd(struct thread_data *td, struct io_completion_data *icd,
2117 int nr)
10ba535a 2118{
6eaf09d6 2119 int ddir;
aba6c951
JA
2120
2121 if (!gtod_reduce(td))
9520ebb9 2122 fio_gettime(&icd->time, NULL);
02bcaa8c 2123
3af6ef39
JA
2124 icd->nr = nr;
2125
10ba535a 2126 icd->error = 0;
c1f50f76 2127 for (ddir = 0; ddir < DDIR_RWDIR_CNT; ddir++)
6eaf09d6 2128 icd->bytes_done[ddir] = 0;
36167d82
JA
2129}
2130
97601024
JA
2131static void ios_completed(struct thread_data *td,
2132 struct io_completion_data *icd)
36167d82
JA
2133{
2134 struct io_u *io_u;
2135 int i;
2136
10ba535a
JA
2137 for (i = 0; i < icd->nr; i++) {
2138 io_u = td->io_ops->event(td, i);
2139
f8b0bd10 2140 io_completed(td, &io_u, icd);
e8462bd8 2141
f8b0bd10 2142 if (io_u)
e8462bd8 2143 put_io_u(td, io_u);
10ba535a
JA
2144 }
2145}
97601024 2146
191d6634
SK
2147static void io_u_update_bytes_done(struct thread_data *td,
2148 struct io_completion_data *icd)
2149{
2150 int ddir;
2151
2152 if (td->runstate == TD_VERIFYING) {
2153 td->bytes_verified += icd->bytes_done[DDIR_READ];
2154 return;
2155 }
2156
2157 for (ddir = 0; ddir < DDIR_RWDIR_CNT; ddir++)
2158 td->bytes_done[ddir] += icd->bytes_done[ddir];
2159}
2160
e7e6cfb4
JA
2161/*
2162 * Complete a single io_u for the sync engines.
2163 */
55312f9f 2164int io_u_sync_complete(struct thread_data *td, struct io_u *io_u)
97601024
JA
2165{
2166 struct io_completion_data icd;
2167
9520ebb9 2168 init_icd(td, &icd, 1);
f8b0bd10 2169 io_completed(td, &io_u, &icd);
e8462bd8 2170
f8b0bd10 2171 if (io_u)
e8462bd8 2172 put_io_u(td, io_u);
97601024 2173
581e7141
JA
2174 if (icd.error) {
2175 td_verror(td, icd.error, "io_u_sync_complete");
2176 return -1;
2177 }
97601024 2178
191d6634 2179 io_u_update_bytes_done(td, &icd);
581e7141
JA
2180
2181 return 0;
97601024
JA
2182}
2183
e7e6cfb4
JA
2184/*
2185 * Called to complete min_events number of io for the async engines.
2186 */
55312f9f 2187int io_u_queued_complete(struct thread_data *td, int min_evts)
97601024 2188{
97601024 2189 struct io_completion_data icd;
00de55ef 2190 struct timespec *tvp = NULL;
191d6634 2191 int ret;
4d06a338 2192 struct timespec ts = { .tv_sec = 0, .tv_nsec = 0, };
97601024 2193
12bb8569 2194 dprint(FD_IO, "io_u_queued_complete: min=%d\n", min_evts);
b271fe62 2195
4950421a 2196 if (!min_evts)
00de55ef 2197 tvp = &ts;
5fb4b366
RE
2198 else if (min_evts > td->cur_depth)
2199 min_evts = td->cur_depth;
97601024 2200
82407585
RP
2201 /* No worries, td_io_getevents fixes min and max if they are
2202 * set incorrectly */
2203 ret = td_io_getevents(td, min_evts, td->o.iodepth_batch_complete_max, tvp);
97601024 2204 if (ret < 0) {
e1161c32 2205 td_verror(td, -ret, "td_io_getevents");
97601024
JA
2206 return ret;
2207 } else if (!ret)
2208 return ret;
2209
9520ebb9 2210 init_icd(td, &icd, ret);
97601024 2211 ios_completed(td, &icd);
581e7141
JA
2212 if (icd.error) {
2213 td_verror(td, icd.error, "io_u_queued_complete");
2214 return -1;
2215 }
97601024 2216
191d6634 2217 io_u_update_bytes_done(td, &icd);
581e7141 2218
0d593542 2219 return ret;
97601024 2220}
7e77dd02
JA
2221
2222/*
2223 * Call when io_u is really queued, to update the submission latency.
2224 */
2225void io_u_queued(struct thread_data *td, struct io_u *io_u)
2226{
8243be59 2227 if (!td->o.disable_slat && ramp_time_over(td) && td->o.stats) {
9520ebb9 2228 unsigned long slat_time;
7e77dd02 2229
d6bb626e 2230 slat_time = ntime_since(&io_u->start_time, &io_u->issue_time);
75dc383e
JA
2231
2232 if (td->parent)
2233 td = td->parent;
2234
ae588852 2235 add_slat_sample(td, io_u->ddir, slat_time, io_u->xfer_buflen,
03ec570f 2236 io_u->offset, io_u->ioprio);
9520ebb9 2237 }
7e77dd02 2238}
433afcb4 2239
5c94b008
JA
2240/*
2241 * See if we should reuse the last seed, if dedupe is enabled
2242 */
9451b93e 2243static struct frand_state *get_buf_state(struct thread_data *td)
5c94b008
JA
2244{
2245 unsigned int v;
0d71aa98 2246 unsigned long long i;
5c94b008
JA
2247
2248 if (!td->o.dedupe_percentage)
2249 return &td->buf_state;
732eedd0 2250 else if (td->o.dedupe_percentage == 100) {
9451b93e
JA
2251 frand_copy(&td->buf_state_prev, &td->buf_state);
2252 return &td->buf_state;
732eedd0 2253 }
5c94b008 2254
1bd5d213 2255 v = rand_between(&td->dedupe_state, 1, 100);
5c94b008 2256
0d71aa98
BD
2257 if (v <= td->o.dedupe_percentage)
2258 switch (td->o.dedupe_mode) {
2259 case DEDUPE_MODE_REPEAT:
2260 /*
2261 * The caller advances the returned frand_state.
2262 * A copy of prev should be returned instead since
2263 * a subsequent intention to generate a deduped buffer
2264 * might result in generating a unique one
2265 */
2266 frand_copy(&td->buf_state_ret, &td->buf_state_prev);
2267 return &td->buf_state_ret;
2268 case DEDUPE_MODE_WORKING_SET:
2269 i = rand_between(&td->dedupe_working_set_index_state, 0, td->num_unique_pages - 1);
2270 frand_copy(&td->buf_state_ret, &td->dedupe_working_set_states[i]);
2271 return &td->buf_state_ret;
2272 default:
2273 log_err("unexpected dedupe mode %u\n", td->o.dedupe_mode);
2274 assert(0);
2275 }
5c94b008
JA
2276
2277 return &td->buf_state;
2278}
2279
9451b93e 2280static void save_buf_state(struct thread_data *td, struct frand_state *rs)
5c94b008 2281{
9451b93e
JA
2282 if (td->o.dedupe_percentage == 100)
2283 frand_copy(rs, &td->buf_state_prev);
2284 else if (rs == &td->buf_state)
5c94b008
JA
2285 frand_copy(&td->buf_state_prev, rs);
2286}
2287
5fff9543
JF
2288void fill_io_buffer(struct thread_data *td, void *buf, unsigned long long min_write,
2289 unsigned long long max_bs)
5973cafb 2290{
d1af2894
JA
2291 struct thread_options *o = &td->o;
2292
15600335
JA
2293 if (o->mem_type == MEM_CUDA_MALLOC)
2294 return;
03553853 2295
4eff3e57 2296 if (o->compress_percentage || o->dedupe_percentage) {
9c42684e 2297 unsigned int perc = td->o.compress_percentage;
eb57e710 2298 struct frand_state *rs = NULL;
5fff9543
JF
2299 unsigned long long left = max_bs;
2300 unsigned long long this_write;
5c94b008 2301
1066358a 2302 do {
eb57e710
BD
2303 /*
2304 * Buffers are either entirely dedupe-able or not.
2305 * If we choose to dedup, the buffer should undergo
2306 * the same manipulation as the original write. Which
2307 * means we should retrack the steps we took for compression
2308 * as well.
2309 */
2310 if (!rs)
2311 rs = get_buf_state(td);
9c42684e 2312
1066358a 2313 min_write = min(min_write, left);
f97a43a1 2314
eb57e710
BD
2315 this_write = min_not_zero(min_write,
2316 (unsigned long long) td->o.compress_chunk);
1e7f82e2 2317
eb57e710
BD
2318 fill_random_buf_percentage(rs, buf, perc,
2319 this_write, this_write,
2320 o->buffer_pattern,
2321 o->buffer_pattern_bytes);
1066358a 2322
1e7f82e2
JA
2323 buf += this_write;
2324 left -= this_write;
9451b93e 2325 save_buf_state(td, rs);
1066358a 2326 } while (left);
d1af2894
JA
2327 } else if (o->buffer_pattern_bytes)
2328 fill_buffer_pattern(td, buf, max_bs);
999d245e 2329 else if (o->zero_buffers)
cc86c395 2330 memset(buf, 0, max_bs);
999d245e 2331 else
9451b93e 2332 fill_random_buf(get_buf_state(td), buf, max_bs);
cc86c395
JA
2333}
2334
2335/*
2336 * "randomly" fill the buffer contents
2337 */
2338void io_u_fill_buffer(struct thread_data *td, struct io_u *io_u,
5fff9543 2339 unsigned long long min_write, unsigned long long max_bs)
cc86c395
JA
2340{
2341 io_u->buf_filled_len = 0;
2342 fill_io_buffer(td, io_u->buf, min_write, max_bs);
5973cafb 2343}
e2c75fc4
TK
2344
2345static int do_sync_file_range(const struct thread_data *td,
2346 struct fio_file *f)
2347{
7e2a317e 2348 uint64_t offset, nbytes;
e2c75fc4
TK
2349
2350 offset = f->first_write;
2351 nbytes = f->last_write - f->first_write;
2352
2353 if (!nbytes)
2354 return 0;
2355
2356 return sync_file_range(f->fd, offset, nbytes, td->o.sync_file_range);
2357}
2358
2359int do_io_u_sync(const struct thread_data *td, struct io_u *io_u)
2360{
2361 int ret;
2362
2363 if (io_u->ddir == DDIR_SYNC) {
a04e0665 2364#ifdef CONFIG_FCNTL_SYNC
c99c81ad 2365 ret = fcntl(io_u->file->fd, F_FULLFSYNC);
a04e0665 2366#else
e2c75fc4 2367 ret = fsync(io_u->file->fd);
a04e0665 2368#endif
e2c75fc4
TK
2369 } else if (io_u->ddir == DDIR_DATASYNC) {
2370#ifdef CONFIG_FDATASYNC
2371 ret = fdatasync(io_u->file->fd);
2372#else
2373 ret = io_u->xfer_buflen;
2374 io_u->error = EINVAL;
2375#endif
2376 } else if (io_u->ddir == DDIR_SYNC_FILE_RANGE)
2377 ret = do_sync_file_range(td, io_u->file);
2378 else {
2379 ret = io_u->xfer_buflen;
2380 io_u->error = EINVAL;
2381 }
2382
2383 if (ret < 0)
2384 io_u->error = errno;
2385
2386 return ret;
2387}
2388
67282020 2389int do_io_u_trim(struct thread_data *td, struct io_u *io_u)
e2c75fc4
TK
2390{
2391#ifndef FIO_HAVE_TRIM
2392 io_u->error = EINVAL;
2393 return 0;
2394#else
2395 struct fio_file *f = io_u->file;
2396 int ret;
2397
e3be810b
SK
2398 if (td->o.zone_mode == ZONE_MODE_ZBD) {
2399 ret = zbd_do_io_u_trim(td, io_u);
2400 if (ret == io_u_completed)
2401 return io_u->xfer_buflen;
2402 if (ret)
2403 goto err;
2404 }
2405
496b1f9e 2406 ret = os_trim(f, io_u->offset, io_u->xfer_buflen);
e2c75fc4
TK
2407 if (!ret)
2408 return io_u->xfer_buflen;
2409
e3be810b 2410err:
e2c75fc4
TK
2411 io_u->error = ret;
2412 return 0;
2413#endif
2414}