compiler.h needs to define __must_check if not set
[fio.git] / io_u.c
CommitLineData
10ba535a
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1#include <unistd.h>
2#include <fcntl.h>
3#include <string.h>
4#include <signal.h>
5#include <time.h>
0c6e7517 6#include <assert.h>
10ba535a
JA
7
8#include "fio.h"
9#include "os.h"
10
5945b9b4
JA
11/*
12 * Change this define to play with the timeout handling
13 */
14#undef FIO_USE_TIMEOUT
15
97601024
JA
16struct io_completion_data {
17 int nr; /* input */
97601024
JA
18
19 int error; /* output */
20 unsigned long bytes_done[2]; /* output */
21 struct timeval time; /* output */
22};
23
10ba535a
JA
24/*
25 * The ->file_map[] contains a map of blocks we have or have not done io
26 * to yet. Used to make sure we cover the entire range in a fair fashion.
27 */
28static int random_map_free(struct thread_data *td, struct fio_file *f,
29 unsigned long long block)
30{
31 unsigned int idx = RAND_MAP_IDX(td, f, block);
32 unsigned int bit = RAND_MAP_BIT(td, f, block);
33
34 return (f->file_map[idx] & (1UL << bit)) == 0;
35}
36
df415585
JA
37/*
38 * Mark a given offset as used in the map.
39 */
9bf2061e 40static void mark_random_map(struct thread_data *td, struct io_u *io_u)
df415585 41{
2dc1bbeb 42 unsigned int min_bs = td->o.rw_min_bs;
9bf2061e 43 struct fio_file *f = io_u->file;
a00735e6
JA
44 unsigned long long block;
45 unsigned int blocks;
c685b5b2 46 unsigned int nr_blocks;
df415585 47
a00735e6
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48 block = io_u->offset / (unsigned long long) min_bs;
49 blocks = 0;
c685b5b2
JA
50 nr_blocks = (io_u->buflen + min_bs - 1) / min_bs;
51
52 while (blocks < nr_blocks) {
df415585
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53 unsigned int idx, bit;
54
1e3d53ac
JA
55 /*
56 * If we have a mixed random workload, we may
57 * encounter blocks we already did IO to.
58 */
211097b2 59 if (!td->o.ddir_nr && !random_map_free(td, f, block))
df415585
JA
60 break;
61
62 idx = RAND_MAP_IDX(td, f, block);
63 bit = RAND_MAP_BIT(td, f, block);
64
0032bf9f 65 fio_assert(td, idx < f->num_maps);
df415585
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66
67 f->file_map[idx] |= (1UL << bit);
68 block++;
69 blocks++;
70 }
71
a00735e6
JA
72 if ((blocks * min_bs) < io_u->buflen)
73 io_u->buflen = blocks * min_bs;
df415585
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74}
75
10ba535a
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76/*
77 * Return the next free block in the map.
78 */
79static int get_next_free_block(struct thread_data *td, struct fio_file *f,
80 unsigned long long *b)
81{
82 int i;
83
c685b5b2
JA
84 i = f->last_free_lookup;
85 *b = (i * BLOCKS_PER_MAP);
2dc1bbeb 86 while ((*b) * td->o.rw_min_bs < f->real_file_size) {
10ba535a
JA
87 if (f->file_map[i] != -1UL) {
88 *b += ffz(f->file_map[i]);
c685b5b2 89 f->last_free_lookup = i;
10ba535a
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90 return 0;
91 }
92
93 *b += BLOCKS_PER_MAP;
94 i++;
95 }
96
97 return 1;
98}
99
ec4015da
JA
100static int get_next_rand_offset(struct thread_data *td, struct fio_file *f,
101 int ddir, unsigned long long *b)
102{
7bb48f84 103 unsigned long long max_blocks = f->io_size / td->o.min_bs[ddir];
ec4015da
JA
104 unsigned long long r, rb;
105 int loops = 5;
106
107 do {
108 r = os_random_long(&td->random_state);
109 if (!max_blocks)
110 *b = 0;
111 else
112 *b = ((max_blocks - 1) * r / (unsigned long long) (RAND_MAX+1.0));
113 if (td->o.norandommap)
114 break;
115 rb = *b + (f->file_offset / td->o.min_bs[ddir]);
116 loops--;
117 } while (!random_map_free(td, f, rb) && loops);
118
119 /*
120 * if we failed to retrieve a truly random offset within
121 * the loops assigned, see if there are free ones left at all
122 */
123 if (!loops && get_next_free_block(td, f, b))
124 return 1;
125
126 return 0;
127}
128
10ba535a
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129/*
130 * For random io, generate a random new block and see if it's used. Repeat
131 * until we find a free one. For sequential io, just return the end of
132 * the last io issued.
133 */
9bf2061e 134static int get_next_offset(struct thread_data *td, struct io_u *io_u)
10ba535a 135{
9bf2061e 136 struct fio_file *f = io_u->file;
c685b5b2 137 const int ddir = io_u->ddir;
ec4015da 138 unsigned long long b;
10ba535a 139
ec4015da
JA
140 if (td_random(td) && (td->o.ddir_nr && !--td->ddir_nr)) {
141 td->ddir_nr = td->o.ddir_nr;
211097b2 142
ec4015da 143 if (get_next_rand_offset(td, f, ddir, &b))
bca4ed4d 144 return 1;
43063a1c
JA
145 } else {
146 if (f->last_pos >= f->real_file_size)
147 return 1;
148
2dc1bbeb 149 b = f->last_pos / td->o.min_bs[ddir];
43063a1c 150 }
10ba535a 151
2dc1bbeb 152 io_u->offset = (b * td->o.min_bs[ddir]) + f->file_offset;
bca4ed4d 153 if (io_u->offset >= f->real_file_size)
10ba535a
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154 return 1;
155
156 return 0;
157}
158
9bf2061e 159static unsigned int get_next_buflen(struct thread_data *td, struct io_u *io_u)
10ba535a 160{
bca4ed4d 161 const int ddir = io_u->ddir;
10ba535a
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162 unsigned int buflen;
163 long r;
164
2dc1bbeb
JA
165 if (td->o.min_bs[ddir] == td->o.max_bs[ddir])
166 buflen = td->o.min_bs[ddir];
10ba535a
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167 else {
168 r = os_random_long(&td->bsrange_state);
2dc1bbeb
JA
169 buflen = (unsigned int) (1 + (double) (td->o.max_bs[ddir] - 1) * r / (RAND_MAX + 1.0));
170 if (!td->o.bs_unaligned)
171 buflen = (buflen + td->o.min_bs[ddir] - 1) & ~(td->o.min_bs[ddir] - 1);
10ba535a
JA
172 }
173
10ba535a
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174 return buflen;
175}
176
afe24a5a
JA
177static void set_rwmix_bytes(struct thread_data *td)
178{
179 unsigned long long rbytes;
180 unsigned int diff;
181
182 /*
183 * we do time or byte based switch. this is needed because
184 * buffered writes may issue a lot quicker than they complete,
185 * whereas reads do not.
186 */
187 rbytes = td->io_bytes[td->rwmix_ddir] - td->rwmix_bytes;
e47f799f 188 diff = td->o.rwmix[td->rwmix_ddir ^ 1];
afe24a5a 189
e47f799f
JA
190 td->rwmix_bytes = td->io_bytes[td->rwmix_ddir] + (rbytes * ((100 - diff)) / diff);
191}
192
193static inline enum fio_ddir get_rand_ddir(struct thread_data *td)
194{
195 unsigned int v;
196 long r;
197
198 r = os_random_long(&td->rwmix_state);
199 v = 1 + (int) (100.0 * (r / (RAND_MAX + 1.0)));
200 if (v < td->o.rwmix[DDIR_READ])
201 return DDIR_READ;
202
203 return DDIR_WRITE;
afe24a5a
JA
204}
205
10ba535a
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206/*
207 * Return the data direction for the next io_u. If the job is a
208 * mixed read/write workload, check the rwmix cycle and switch if
209 * necessary.
210 */
1e97cce9 211static enum fio_ddir get_rw_ddir(struct thread_data *td)
10ba535a
JA
212{
213 if (td_rw(td)) {
214 struct timeval now;
215 unsigned long elapsed;
afe24a5a 216 unsigned int cycle;
10ba535a 217
02bcaa8c 218 fio_gettime(&now, NULL);
10ba535a
JA
219 elapsed = mtime_since_now(&td->rwmix_switch);
220
e47f799f
JA
221 /*
222 * if this is the first cycle, make it shorter
223 */
afe24a5a
JA
224 cycle = td->o.rwmixcycle;
225 if (!td->rwmix_bytes)
226 cycle /= 10;
227
10ba535a
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228 /*
229 * Check if it's time to seed a new data direction.
230 */
e47f799f 231 if (elapsed >= cycle ||
afe24a5a 232 td->io_bytes[td->rwmix_ddir] >= td->rwmix_bytes) {
e47f799f
JA
233 unsigned long long max_bytes;
234 enum fio_ddir ddir;
235
236 /*
237 * Put a top limit on how many bytes we do for
238 * one data direction, to avoid overflowing the
239 * ranges too much
240 */
241 ddir = get_rand_ddir(td);
242 max_bytes = td->this_io_bytes[ddir];
7bb48f84 243 if (max_bytes >= (td->o.size * td->o.rwmix[ddir] / 100)) {
38d77cae
JA
244 if (!td->rw_end_set[ddir]) {
245 td->rw_end_set[ddir] = 1;
246 memcpy(&td->rw_end[ddir], &now, sizeof(now));
247 }
e47f799f 248 ddir ^= 1;
38d77cae 249 }
e47f799f
JA
250
251 if (ddir != td->rwmix_ddir)
252 set_rwmix_bytes(td);
253
254 td->rwmix_ddir = ddir;
10ba535a
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255 memcpy(&td->rwmix_switch, &now, sizeof(now));
256 }
257 return td->rwmix_ddir;
258 } else if (td_read(td))
259 return DDIR_READ;
260 else
261 return DDIR_WRITE;
262}
263
10ba535a
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264void put_io_u(struct thread_data *td, struct io_u *io_u)
265{
0c6e7517
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266 assert((io_u->flags & IO_U_F_FREE) == 0);
267 io_u->flags |= IO_U_F_FREE;
268
10ba535a
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269 io_u->file = NULL;
270 list_del(&io_u->list);
271 list_add(&io_u->list, &td->io_u_freelist);
272 td->cur_depth--;
273}
274
755200a3
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275void requeue_io_u(struct thread_data *td, struct io_u **io_u)
276{
277 struct io_u *__io_u = *io_u;
278
4d2e0f49
JA
279 __io_u->flags |= IO_U_F_FREE;
280 __io_u->flags &= ~IO_U_F_FLIGHT;
281
755200a3
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282 list_del(&__io_u->list);
283 list_add_tail(&__io_u->list, &td->io_u_requeues);
284 td->cur_depth--;
285 *io_u = NULL;
286}
287
9bf2061e 288static int fill_io_u(struct thread_data *td, struct io_u *io_u)
10ba535a
JA
289{
290 /*
291 * If using an iolog, grab next piece if any available.
292 */
2dc1bbeb 293 if (td->o.read_iolog)
10ba535a
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294 return read_iolog_get(td, io_u);
295
87dc1ab1
JA
296 /*
297 * see if it's time to sync
298 */
2dc1bbeb
JA
299 if (td->o.fsync_blocks &&
300 !(td->io_issues[DDIR_WRITE] % td->o.fsync_blocks) &&
301 td->io_issues[DDIR_WRITE] && should_fsync(td)) {
87dc1ab1 302 io_u->ddir = DDIR_SYNC;
c38e9468 303 goto out;
87dc1ab1
JA
304 }
305
a00735e6
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306 io_u->ddir = get_rw_ddir(td);
307
10ba535a 308 /*
c685b5b2
JA
309 * No log, let the seq/rand engine retrieve the next buflen and
310 * position.
10ba535a 311 */
9bf2061e 312 if (get_next_offset(td, io_u))
bca4ed4d 313 return 1;
10ba535a 314
9bf2061e 315 io_u->buflen = get_next_buflen(td, io_u);
bca4ed4d
JA
316 if (!io_u->buflen)
317 return 1;
318
319 /*
320 * mark entry before potentially trimming io_u
321 */
8fd15a9a 322 if (td_random(td) && !td->o.norandommap)
9bf2061e 323 mark_random_map(td, io_u);
bca4ed4d
JA
324
325 /*
326 * If using a write iolog, store this entry.
327 */
c38e9468 328out:
2dc1bbeb 329 if (td->o.write_iolog_file)
bca4ed4d
JA
330 write_iolog_put(td, io_u);
331
bca4ed4d 332 return 0;
10ba535a
JA
333}
334
b3605062 335void io_u_mark_depth(struct thread_data *td, struct io_u *io_u)
71619dc2
JA
336{
337 int index = 0;
338
b3605062
JA
339 if (io_u->ddir == DDIR_SYNC)
340 return;
341
71619dc2
JA
342 switch (td->cur_depth) {
343 default:
344 index++;
345 case 32 ... 63:
346 index++;
347 case 16 ... 31:
348 index++;
349 case 8 ... 15:
350 index++;
351 case 4 ... 7:
352 index++;
353 case 2 ... 3:
354 index++;
355 case 1:
356 break;
357 }
358
756867bd 359 td->ts.io_u_map[index]++;
b3605062 360 td->ts.total_io_u[io_u->ddir]++;
71619dc2
JA
361}
362
ec118304
JA
363static void io_u_mark_latency(struct thread_data *td, unsigned long msec)
364{
365 int index = 0;
366
367 switch (msec) {
368 default:
369 index++;
8abdce66 370 case 1000 ... 1999:
ec118304 371 index++;
8abdce66 372 case 750 ... 999:
ec118304 373 index++;
8abdce66 374 case 500 ... 749:
ec118304 375 index++;
8abdce66 376 case 250 ... 499:
ec118304 377 index++;
8abdce66 378 case 100 ... 249:
ec118304 379 index++;
8abdce66 380 case 50 ... 99:
ec118304 381 index++;
8abdce66 382 case 20 ... 49:
ec118304 383 index++;
8abdce66 384 case 10 ... 19:
ec118304 385 index++;
8abdce66 386 case 4 ... 9:
ec118304
JA
387 index++;
388 case 2 ... 3:
389 index++;
390 case 0 ... 1:
391 break;
392 }
393
756867bd 394 td->ts.io_u_lat[index]++;
ec118304
JA
395}
396
0aabe160
JA
397/*
398 * Get next file to service by choosing one at random
399 */
1c178180
JA
400static struct fio_file *get_next_file_rand(struct thread_data *td, int goodf,
401 int badf)
0aabe160 402{
0aabe160 403 struct fio_file *f;
1c178180 404 int fno;
0aabe160
JA
405
406 do {
7c83c089
JA
407 long r = os_random_long(&td->next_file_state);
408
2dc1bbeb 409 fno = (unsigned int) ((double) td->o.nr_files * (r / (RAND_MAX + 1.0)));
1c178180 410 f = &td->files[fno];
059e63c0
JA
411 if (f->flags & FIO_FILE_DONE)
412 continue;
1c178180
JA
413
414 if ((!goodf || (f->flags & goodf)) && !(f->flags & badf))
0aabe160
JA
415 return f;
416 } while (1);
417}
418
419/*
420 * Get next file to service by doing round robin between all available ones
421 */
1c178180
JA
422static struct fio_file *get_next_file_rr(struct thread_data *td, int goodf,
423 int badf)
3d7c391d
JA
424{
425 unsigned int old_next_file = td->next_file;
426 struct fio_file *f;
427
428 do {
429 f = &td->files[td->next_file];
430
431 td->next_file++;
2dc1bbeb 432 if (td->next_file >= td->o.nr_files)
3d7c391d
JA
433 td->next_file = 0;
434
d5ed68ea
JA
435 if (f->flags & FIO_FILE_DONE) {
436 f = NULL;
059e63c0 437 continue;
d5ed68ea 438 }
059e63c0 439
1c178180 440 if ((!goodf || (f->flags & goodf)) && !(f->flags & badf))
3d7c391d
JA
441 break;
442
443 f = NULL;
444 } while (td->next_file != old_next_file);
445
446 return f;
447}
448
bdb4e2e9
JA
449static struct fio_file *get_next_file(struct thread_data *td)
450{
1907dbc6
JA
451 struct fio_file *f;
452
2dc1bbeb 453 assert(td->o.nr_files <= td->files_index);
1c178180 454
bdb4e2e9
JA
455 if (!td->nr_open_files)
456 return NULL;
457
1907dbc6 458 f = td->file_service_file;
f11bd94d 459 if (f && (f->flags & FIO_FILE_OPEN) && td->file_service_left--)
1907dbc6
JA
460 return f;
461
2dc1bbeb 462 if (td->o.file_service_type == FIO_FSERVICE_RR)
1c178180 463 f = get_next_file_rr(td, FIO_FILE_OPEN, FIO_FILE_CLOSING);
bdb4e2e9 464 else
1c178180 465 f = get_next_file_rand(td, FIO_FILE_OPEN, FIO_FILE_CLOSING);
1907dbc6
JA
466
467 td->file_service_file = f;
468 td->file_service_left = td->file_service_nr - 1;
469 return f;
bdb4e2e9
JA
470}
471
1c178180
JA
472static struct fio_file *find_next_new_file(struct thread_data *td)
473{
474 struct fio_file *f;
475
2dc1bbeb 476 if (td->o.file_service_type == FIO_FSERVICE_RR)
1c178180
JA
477 f = get_next_file_rr(td, 0, FIO_FILE_OPEN);
478 else
479 f = get_next_file_rand(td, 0, FIO_FILE_OPEN);
480
481 return f;
482}
483
10ba535a
JA
484struct io_u *__get_io_u(struct thread_data *td)
485{
486 struct io_u *io_u = NULL;
487
755200a3
JA
488 if (!list_empty(&td->io_u_requeues))
489 io_u = list_entry(td->io_u_requeues.next, struct io_u, list);
490 else if (!queue_full(td)) {
10ba535a
JA
491 io_u = list_entry(td->io_u_freelist.next, struct io_u, list);
492
6040dabc 493 io_u->buflen = 0;
10ba535a 494 io_u->resid = 0;
755200a3 495 io_u->file = NULL;
d7762cf8 496 io_u->end_io = NULL;
755200a3
JA
497 }
498
499 if (io_u) {
0c6e7517
JA
500 assert(io_u->flags & IO_U_F_FREE);
501 io_u->flags &= ~IO_U_F_FREE;
502
755200a3 503 io_u->error = 0;
10ba535a
JA
504 list_del(&io_u->list);
505 list_add(&io_u->list, &td->io_u_busylist);
506 td->cur_depth++;
507 }
508
509 return io_u;
510}
511
512/*
513 * Return an io_u to be processed. Gets a buflen and offset, sets direction,
514 * etc. The returned io_u is fully ready to be prepped and submitted.
515 */
3d7c391d 516struct io_u *get_io_u(struct thread_data *td)
10ba535a 517{
3d7c391d 518 struct fio_file *f;
10ba535a 519 struct io_u *io_u;
1c178180 520 int ret;
10ba535a
JA
521
522 io_u = __get_io_u(td);
523 if (!io_u)
524 return NULL;
525
755200a3
JA
526 /*
527 * from a requeue, io_u already setup
528 */
529 if (io_u->file)
77f392bf 530 goto out;
755200a3 531
bdb4e2e9
JA
532 do {
533 f = get_next_file(td);
534 if (!f) {
535 put_io_u(td, io_u);
536 return NULL;
537 }
3d7c391d 538
1c178180 539set_file:
bdb4e2e9 540 io_u->file = f;
3d7c391d 541
bdb4e2e9
JA
542 if (!fill_io_u(td, io_u))
543 break;
10ba535a 544
bdb4e2e9
JA
545 /*
546 * No more to do for this file, close it
547 */
548 io_u->file = NULL;
b5af8293 549 td_io_close_file(td, f);
059e63c0 550 f->flags |= FIO_FILE_DONE;
b5af8293
JA
551
552 /*
553 * probably not the right place to do this, but see
554 * if we need to open a new file
555 */
2dc1bbeb
JA
556 if (td->nr_open_files < td->o.open_files &&
557 td->o.open_files != td->o.nr_files) {
1c178180 558 f = find_next_new_file(td);
a978ba68 559
1c178180 560 if (!f || (ret = td_io_open_file(td, f))) {
a978ba68 561 put_io_u(td, io_u);
e291dc12 562 return NULL;
a978ba68 563 }
1c178180 564 goto set_file;
a978ba68 565 }
bdb4e2e9 566 } while (1);
10ba535a 567
2dc1bbeb 568 if (td->zone_bytes >= td->o.zone_size) {
9bf2061e 569 td->zone_bytes = 0;
2dc1bbeb 570 f->last_pos += td->o.zone_skip;
9bf2061e
JA
571 }
572
87dc1ab1
JA
573 if (io_u->ddir != DDIR_SYNC) {
574 if (!io_u->buflen) {
575 put_io_u(td, io_u);
576 return NULL;
577 }
10ba535a 578
36167d82 579 f->last_pos = io_u->offset + io_u->buflen;
10ba535a 580
2dc1bbeb 581 if (td->o.verify != VERIFY_NONE)
87dc1ab1
JA
582 populate_verify_io_u(td, io_u);
583 }
10ba535a 584
165faf16
JA
585 /*
586 * Set io data pointers.
587 */
77f392bf 588out:
cec6b55d
JA
589 io_u->xfer_buf = io_u->buf;
590 io_u->xfer_buflen = io_u->buflen;
165faf16 591
36167d82
JA
592 if (td_io_prep(td, io_u)) {
593 put_io_u(td, io_u);
594 return NULL;
595 }
596
02bcaa8c 597 fio_gettime(&io_u->start_time, NULL);
10ba535a
JA
598 return io_u;
599}
600
5451792e
JA
601void io_u_log_error(struct thread_data *td, struct io_u *io_u)
602{
603 const char *msg[] = { "read", "write", "sync" };
604
605 log_err("fio: io_u error");
606
607 if (io_u->file)
608 log_err(" on file %s", io_u->file->file_name);
609
610 log_err(": %s\n", strerror(io_u->error));
611
612 log_err(" %s offset=%llu, buflen=%lu\n", msg[io_u->ddir], io_u->offset, io_u->xfer_buflen);
613
614 if (!td->error)
615 td_verror(td, io_u->error, "io_u error");
616}
617
97601024
JA
618static void io_completed(struct thread_data *td, struct io_u *io_u,
619 struct io_completion_data *icd)
10ba535a 620{
10ba535a
JA
621 unsigned long msec;
622
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623 assert(io_u->flags & IO_U_F_FLIGHT);
624 io_u->flags &= ~IO_U_F_FLIGHT;
625
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626 put_file(td, io_u->file);
627
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628 if (io_u->ddir == DDIR_SYNC) {
629 td->last_was_sync = 1;
630 return;
631 }
632
633 td->last_was_sync = 0;
634
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635 if (!io_u->error) {
636 unsigned int bytes = io_u->buflen - io_u->resid;
1e97cce9 637 const enum fio_ddir idx = io_u->ddir;
3af6ef39 638 int ret;
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639
640 td->io_blocks[idx]++;
641 td->io_bytes[idx] += bytes;
642 td->zone_bytes += bytes;
643 td->this_io_bytes[idx] += bytes;
644
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645 io_u->file->last_completed_pos = io_u->offset + io_u->buflen;
646
647 msec = mtime_since(&io_u->issue_time, &icd->time);
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648
649 add_clat_sample(td, idx, msec);
02bcaa8c 650 add_bw_sample(td, idx, &icd->time);
ec118304 651 io_u_mark_latency(td, msec);
10ba535a 652
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653 if ((td_rw(td) || td_write(td)) && idx == DDIR_WRITE &&
654 td->o.verify != VERIFY_NONE)
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655 log_io_piece(td, io_u);
656
657 icd->bytes_done[idx] += bytes;
3af6ef39 658
d7762cf8 659 if (io_u->end_io) {
36690c9b 660 ret = io_u->end_io(td, io_u);
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661 if (ret && !icd->error)
662 icd->error = ret;
663 }
5451792e 664 } else {
10ba535a 665 icd->error = io_u->error;
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666 io_u_log_error(td, io_u);
667 }
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668}
669
d7762cf8 670static void init_icd(struct io_completion_data *icd, int nr)
10ba535a 671{
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672 fio_gettime(&icd->time, NULL);
673
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674 icd->nr = nr;
675
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676 icd->error = 0;
677 icd->bytes_done[0] = icd->bytes_done[1] = 0;
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678}
679
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680static void ios_completed(struct thread_data *td,
681 struct io_completion_data *icd)
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682{
683 struct io_u *io_u;
684 int i;
685
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686 for (i = 0; i < icd->nr; i++) {
687 io_u = td->io_ops->event(td, i);
688
689 io_completed(td, io_u, icd);
690 put_io_u(td, io_u);
691 }
692}
97601024 693
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694/*
695 * Complete a single io_u for the sync engines.
696 */
d7762cf8 697long io_u_sync_complete(struct thread_data *td, struct io_u *io_u)
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698{
699 struct io_completion_data icd;
700
d7762cf8 701 init_icd(&icd, 1);
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702 io_completed(td, io_u, &icd);
703 put_io_u(td, io_u);
704
705 if (!icd.error)
706 return icd.bytes_done[0] + icd.bytes_done[1];
707
37e974a5 708 td_verror(td, icd.error, "io_u_sync_complete");
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709 return -1;
710}
711
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712/*
713 * Called to complete min_events number of io for the async engines.
714 */
d7762cf8 715long io_u_queued_complete(struct thread_data *td, int min_events)
97601024 716{
97601024 717 struct io_completion_data icd;
00de55ef 718 struct timespec *tvp = NULL;
97601024 719 int ret;
4d06a338 720 struct timespec ts = { .tv_sec = 0, .tv_nsec = 0, };
97601024 721
4d06a338 722 if (!min_events)
00de55ef 723 tvp = &ts;
97601024 724
00de55ef 725 ret = td_io_getevents(td, min_events, td->cur_depth, tvp);
97601024 726 if (ret < 0) {
e1161c32 727 td_verror(td, -ret, "td_io_getevents");
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728 return ret;
729 } else if (!ret)
730 return ret;
731
d7762cf8 732 init_icd(&icd, ret);
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733 ios_completed(td, &icd);
734 if (!icd.error)
735 return icd.bytes_done[0] + icd.bytes_done[1];
736
37e974a5 737 td_verror(td, icd.error, "io_u_queued_complete");
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738 return -1;
739}
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740
741/*
742 * Call when io_u is really queued, to update the submission latency.
743 */
744void io_u_queued(struct thread_data *td, struct io_u *io_u)
745{
746 unsigned long slat_time;
747
748 slat_time = mtime_since(&io_u->start_time, &io_u->issue_time);
749 add_slat_sample(td, io_u->ddir, slat_time);
750}
433afcb4 751
55bc9728 752#ifdef FIO_USE_TIMEOUT
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753void io_u_set_timeout(struct thread_data *td)
754{
755 assert(td->cur_depth);
756
757 td->timer.it_interval.tv_sec = 0;
758 td->timer.it_interval.tv_usec = 0;
759 td->timer.it_value.tv_sec = IO_U_TIMEOUT + IO_U_TIMEOUT_INC;
760 td->timer.it_value.tv_usec = 0;
761 setitimer(ITIMER_REAL, &td->timer, NULL);
762 fio_gettime(&td->timeout_end, NULL);
763}
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764
765static void io_u_dump(struct io_u *io_u)
766{
767 unsigned long t_start = mtime_since_now(&io_u->start_time);
768 unsigned long t_issue = mtime_since_now(&io_u->issue_time);
769
770 log_err("io_u=%p, t_start=%lu, t_issue=%lu\n", io_u, t_start, t_issue);
771 log_err(" buf=%p/%p, len=%lu/%lu, offset=%llu\n", io_u->buf, io_u->xfer_buf, io_u->buflen, io_u->xfer_buflen, io_u->offset);
772 log_err(" ddir=%d, fname=%s\n", io_u->ddir, io_u->file->file_name);
773}
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774#else
775void io_u_set_timeout(struct thread_data fio_unused *td)
776{
777}
778#endif
433afcb4 779
55bc9728 780#ifdef FIO_USE_TIMEOUT
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781static void io_u_timeout_handler(int fio_unused sig)
782{
783 struct thread_data *td, *__td;
784 pid_t pid = getpid();
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785 struct list_head *entry;
786 struct io_u *io_u;
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787 int i;
788
789 log_err("fio: io_u timeout\n");
790
791 /*
792 * TLS would be nice...
793 */
794 td = NULL;
795 for_each_td(__td, i) {
796 if (__td->pid == pid) {
797 td = __td;
798 break;
799 }
800 }
801
802 if (!td) {
803 log_err("fio: io_u timeout, can't find job\n");
804 exit(1);
805 }
806
807 if (!td->cur_depth) {
808 log_err("fio: timeout without pending work?\n");
809 return;
810 }
811
15506d09 812 log_err("fio: io_u timeout: job=%s, pid=%d\n", td->o.name, td->pid);
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813
814 list_for_each(entry, &td->io_u_busylist) {
815 io_u = list_entry(entry, struct io_u, list);
816
817 io_u_dump(io_u);
818 }
819
820 td_verror(td, ETIMEDOUT, "io_u timeout");
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821 exit(1);
822}
55bc9728 823#endif
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824
825void io_u_init_timeout(void)
826{
55bc9728 827#ifdef FIO_USE_TIMEOUT
433afcb4 828 signal(SIGALRM, io_u_timeout_handler);
55bc9728 829#endif
433afcb4 830}