backend: number of ios not as expected for trimwrite
[fio.git] / backend.c
CommitLineData
2e1df07d
JA
1/*
2 * fio - the flexible io tester
3 *
4 * Copyright (C) 2005 Jens Axboe <axboe@suse.de>
5 * Copyright (C) 2006-2012 Jens Axboe <axboe@kernel.dk>
6 *
7 * The license below covers all files distributed with fio unless otherwise
8 * noted in the file itself.
9 *
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License version 2 as
12 * published by the Free Software Foundation.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
fa07eaa6 21 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
2e1df07d
JA
22 *
23 */
24#include <unistd.h>
2e1df07d 25#include <string.h>
2e1df07d 26#include <signal.h>
2e1df07d 27#include <assert.h>
e43606c2 28#include <inttypes.h>
2e1df07d
JA
29#include <sys/stat.h>
30#include <sys/wait.h>
ff6bb260 31#include <math.h>
c06379a6 32#include <pthread.h>
2e1df07d
JA
33
34#include "fio.h"
2e1df07d
JA
35#include "smalloc.h"
36#include "verify.h"
2e1df07d
JA
37#include "diskutil.h"
38#include "cgroup.h"
39#include "profile.h"
40#include "lib/rand.h"
f7690c4a 41#include "lib/memalign.h"
2e1df07d 42#include "server.h"
44404c5a 43#include "lib/getrusage.h"
f2a2ce0e 44#include "idletime.h"
002fe734 45#include "err.h"
a9da8ab2 46#include "workqueue.h"
e81ecca3 47#include "lib/mountcheck.h"
40511301 48#include "rate-submit.h"
a39fb9ea 49#include "helper_thread.h"
ae626d4e 50#include "pshared.h"
07776127 51#include "zone-dist.h"
2e1df07d 52
971caeb1 53static struct fio_sem *startup_sem;
2e1df07d 54static struct flist_head *cgroup_list;
c3dc516a 55static struct cgroup_mnt *cgroup_mnt;
2e1df07d 56static int exit_value;
f1867a7f 57static volatile bool fio_abort;
3a5f6bde
JA
58static unsigned int nr_process = 0;
59static unsigned int nr_thread = 0;
2e1df07d 60
6eaf09d6 61struct io_log *agg_io_log[DDIR_RWDIR_CNT];
2e1df07d 62
a3efc919
JA
63int groupid = 0;
64unsigned int thread_number = 0;
2fbe1e19
JA
65unsigned int nr_segments = 0;
66unsigned int cur_segment = 0;
108fea77 67unsigned int stat_number = 0;
a3efc919
JA
68int temp_stall_ts;
69unsigned long done_secs = 0;
a38c70a8
BVA
70#ifdef PTHREAD_ERRORCHECK_MUTEX_INITIALIZER_NP
71pthread_mutex_t overlap_check = PTHREAD_ERRORCHECK_MUTEX_INITIALIZER_NP;
72#else
c06379a6 73pthread_mutex_t overlap_check = PTHREAD_MUTEX_INITIALIZER;
a38c70a8 74#endif
a47591e4 75
2e1df07d
JA
76#define JOB_START_TIMEOUT (5 * 1000)
77
78static void sig_int(int sig)
79{
2fbe1e19 80 if (nr_segments) {
2e1df07d
JA
81 if (is_backend)
82 fio_server_got_signal(sig);
83 else {
84 log_info("\nfio: terminating on signal %d\n", sig);
e411c301 85 log_info_flush();
2e1df07d
JA
86 exit_value = 128;
87 }
88
64402a8a 89 fio_terminate_threads(TERMINATE_ALL, TERMINATE_ALL);
2e1df07d
JA
90 }
91}
92
0dea1f55
BP
93#ifdef WIN32
94static void sig_break(int sig)
95{
96 struct thread_data *td;
97 int i;
98
99 sig_int(sig);
100
101 /**
102 * Windows terminates all job processes on SIGBREAK after the handler
103 * returns, so give them time to wrap-up and give stats
104 */
105 for_each_td(td, i) {
106 while (td->runstate < TD_EXITED)
107 sleep(1);
108 }
109}
110#endif
111
d2235e56 112void sig_show_status(int sig)
4c6d91e8
JA
113{
114 show_running_run_stats();
115}
116
2e1df07d
JA
117static void set_sig_handlers(void)
118{
119 struct sigaction act;
120
121 memset(&act, 0, sizeof(act));
122 act.sa_handler = sig_int;
123 act.sa_flags = SA_RESTART;
124 sigaction(SIGINT, &act, NULL);
125
126 memset(&act, 0, sizeof(act));
127 act.sa_handler = sig_int;
128 act.sa_flags = SA_RESTART;
129 sigaction(SIGTERM, &act, NULL);
130
2f694507
BC
131/* Windows uses SIGBREAK as a quit signal from other applications */
132#ifdef WIN32
133 memset(&act, 0, sizeof(act));
0dea1f55 134 act.sa_handler = sig_break;
2f694507
BC
135 act.sa_flags = SA_RESTART;
136 sigaction(SIGBREAK, &act, NULL);
137#endif
138
4c6d91e8
JA
139 memset(&act, 0, sizeof(act));
140 act.sa_handler = sig_show_status;
141 act.sa_flags = SA_RESTART;
142 sigaction(SIGUSR1, &act, NULL);
143
2e1df07d
JA
144 if (is_backend) {
145 memset(&act, 0, sizeof(act));
146 act.sa_handler = sig_int;
147 act.sa_flags = SA_RESTART;
148 sigaction(SIGPIPE, &act, NULL);
149 }
150}
151
152/*
153 * Check if we are above the minimum rate given.
154 */
8b6a404c 155static bool __check_min_rate(struct thread_data *td, struct timespec *now,
e39c0676 156 enum fio_ddir ddir)
2e1df07d 157{
f5204b8a 158 unsigned long long current_rate_check_bytes = td->this_io_bytes[ddir];
159 unsigned long current_rate_check_blocks = td->this_io_blocks[ddir];
160 unsigned long long option_rate_bytes_min = td->o.ratemin[ddir];
161 unsigned int option_rate_iops_min = td->o.rate_iops_min[ddir];
2e1df07d
JA
162
163 assert(ddir_rw(ddir));
164
165 if (!td->o.ratemin[ddir] && !td->o.rate_iops_min[ddir])
e39c0676 166 return false;
2e1df07d
JA
167
168 /*
169 * allow a 2 second settle period in the beginning
170 */
171 if (mtime_since(&td->start, now) < 2000)
e39c0676 172 return false;
2e1df07d 173
2e1df07d 174 /*
f5204b8a 175 * if last_rate_check_blocks or last_rate_check_bytes is set,
176 * we can compute a rate per ratecycle
2e1df07d 177 */
f5204b8a 178 if (td->last_rate_check_bytes[ddir] || td->last_rate_check_blocks[ddir]) {
179 unsigned long spent = mtime_since(&td->last_rate_check_time[ddir], now);
180 if (spent < td->o.ratecycle || spent==0)
e39c0676 181 return false;
2e1df07d 182
f5204b8a 183 if (td->o.ratemin[ddir]) {
2e1df07d
JA
184 /*
185 * check bandwidth specified rate
186 */
f5204b8a 187 unsigned long long current_rate_bytes =
188 ((current_rate_check_bytes - td->last_rate_check_bytes[ddir]) * 1000) / spent;
189 if (current_rate_bytes < option_rate_bytes_min) {
190 log_err("%s: rate_min=%lluB/s not met, got %lluB/s\n",
191 td->o.name, option_rate_bytes_min, current_rate_bytes);
e39c0676 192 return true;
2e1df07d
JA
193 }
194 } else {
195 /*
196 * checks iops specified rate
197 */
f5204b8a 198 unsigned long long current_rate_iops =
199 ((current_rate_check_blocks - td->last_rate_check_blocks[ddir]) * 1000) / spent;
200
201 if (current_rate_iops < option_rate_iops_min) {
202 log_err("%s: rate_iops_min=%u not met, got %llu IOPS\n",
203 td->o.name, option_rate_iops_min, current_rate_iops);
e39c0676 204 return true;
2e1df07d
JA
205 }
206 }
207 }
208
f5204b8a 209 td->last_rate_check_bytes[ddir] = current_rate_check_bytes;
210 td->last_rate_check_blocks[ddir] = current_rate_check_blocks;
211 memcpy(&td->last_rate_check_time[ddir], now, sizeof(*now));
e39c0676 212 return false;
2e1df07d
JA
213}
214
8b6a404c 215static bool check_min_rate(struct thread_data *td, struct timespec *now)
2e1df07d 216{
e39c0676 217 bool ret = false;
2e1df07d 218
dde39f8c
AD
219 for_each_rw_ddir(ddir) {
220 if (td->bytes_done[ddir])
221 ret |= __check_min_rate(td, now, ddir);
222 }
2e1df07d
JA
223
224 return ret;
225}
226
227/*
228 * When job exits, we can cancel the in-flight IO if we are using async
229 * io. Attempt to do so.
230 */
231static void cleanup_pending_aio(struct thread_data *td)
232{
2e1df07d
JA
233 int r;
234
235 /*
236 * get immediately available events, if any
237 */
55312f9f 238 r = io_u_queued_complete(td, 0);
2e1df07d
JA
239
240 /*
241 * now cancel remaining active events
242 */
243 if (td->io_ops->cancel) {
2ae0b204
JA
244 struct io_u *io_u;
245 int i;
2e1df07d 246
2ae0b204
JA
247 io_u_qiter(&td->io_u_all, io_u, i) {
248 if (io_u->flags & IO_U_F_FLIGHT) {
2e1df07d
JA
249 r = td->io_ops->cancel(td, io_u);
250 if (!r)
251 put_io_u(td, io_u);
252 }
253 }
254 }
255
256 if (td->cur_depth)
55312f9f 257 r = io_u_queued_complete(td, td->cur_depth);
2e1df07d
JA
258}
259
260/*
261 * Helper to handle the final sync of a file. Works just like the normal
262 * io path, just does everything sync.
263 */
e39c0676 264static bool fio_io_sync(struct thread_data *td, struct fio_file *f)
2e1df07d
JA
265{
266 struct io_u *io_u = __get_io_u(td);
d3b07186 267 enum fio_q_status ret;
2e1df07d
JA
268
269 if (!io_u)
e39c0676 270 return true;
2e1df07d
JA
271
272 io_u->ddir = DDIR_SYNC;
273 io_u->file = f;
00615bfb 274 io_u_set(td, io_u, IO_U_F_NO_FILE_PUT);
2e1df07d
JA
275
276 if (td_io_prep(td, io_u)) {
277 put_io_u(td, io_u);
e39c0676 278 return true;
2e1df07d
JA
279 }
280
281requeue:
282 ret = td_io_queue(td, io_u);
18f6165e
BVA
283 switch (ret) {
284 case FIO_Q_QUEUED:
a80cb54b 285 td_io_commit(td);
55312f9f 286 if (io_u_queued_complete(td, 1) < 0)
e39c0676 287 return true;
18f6165e
BVA
288 break;
289 case FIO_Q_COMPLETED:
2e1df07d
JA
290 if (io_u->error) {
291 td_verror(td, io_u->error, "td_io_queue");
e39c0676 292 return true;
2e1df07d
JA
293 }
294
55312f9f 295 if (io_u_sync_complete(td, io_u) < 0)
e39c0676 296 return true;
18f6165e
BVA
297 break;
298 case FIO_Q_BUSY:
a80cb54b 299 td_io_commit(td);
2e1df07d
JA
300 goto requeue;
301 }
302
e39c0676 303 return false;
2e1df07d 304}
a3efc919 305
61ee0f86
JA
306static int fio_file_fsync(struct thread_data *td, struct fio_file *f)
307{
00615bfb 308 int ret, ret2;
61ee0f86
JA
309
310 if (fio_file_open(f))
311 return fio_io_sync(td, f);
312
313 if (td_io_open_file(td, f))
314 return 1;
315
316 ret = fio_io_sync(td, f);
00615bfb
SW
317 ret2 = 0;
318 if (fio_file_open(f))
319 ret2 = td_io_close_file(td, f);
320 return (ret || ret2);
61ee0f86
JA
321}
322
8b6a404c 323static inline void __update_ts_cache(struct thread_data *td)
2e1df07d 324{
8b6a404c 325 fio_gettime(&td->ts_cache, NULL);
2e1df07d
JA
326}
327
8b6a404c 328static inline void update_ts_cache(struct thread_data *td)
2e1df07d 329{
8b6a404c
VF
330 if ((++td->ts_cache_nr & td->ts_cache_mask) == td->ts_cache_mask)
331 __update_ts_cache(td);
2e1df07d
JA
332}
333
8b6a404c 334static inline bool runtime_exceeded(struct thread_data *td, struct timespec *t)
2e1df07d
JA
335{
336 if (in_ramp_time(td))
e39c0676 337 return false;
2e1df07d 338 if (!td->o.timeout)
e39c0676 339 return false;
0de5b26f 340 if (utime_since(&td->epoch, t) >= td->o.timeout)
e39c0676 341 return true;
2e1df07d 342
e39c0676 343 return false;
2e1df07d
JA
344}
345
95603b74
BF
346/*
347 * We need to update the runtime consistently in ms, but keep a running
348 * tally of the current elapsed time in microseconds for sub millisecond
349 * updates.
350 */
351static inline void update_runtime(struct thread_data *td,
352 unsigned long long *elapsed_us,
353 const enum fio_ddir ddir)
354{
d5c8ea29
JA
355 if (ddir == DDIR_WRITE && td_write(td) && td->o.verify_only)
356 return;
357
95603b74
BF
358 td->ts.runtime[ddir] -= (elapsed_us[ddir] + 999) / 1000;
359 elapsed_us[ddir] += utime_since_now(&td->start);
360 td->ts.runtime[ddir] += (elapsed_us[ddir] + 999) / 1000;
361}
362
e39c0676
JA
363static bool break_on_this_error(struct thread_data *td, enum fio_ddir ddir,
364 int *retptr)
2e1df07d
JA
365{
366 int ret = *retptr;
367
368 if (ret < 0 || td->error) {
8b28bd41
DM
369 int err = td->error;
370 enum error_type_bit eb;
2e1df07d
JA
371
372 if (ret < 0)
373 err = -ret;
2e1df07d 374
8b28bd41
DM
375 eb = td_error_type(ddir, err);
376 if (!(td->o.continue_on_error & (1 << eb)))
e39c0676 377 return true;
2e1df07d 378
8b28bd41 379 if (td_non_fatal_error(td, eb, err)) {
2e1df07d
JA
380 /*
381 * Continue with the I/Os in case of
382 * a non fatal error.
383 */
384 update_error_count(td, err);
385 td_clear_error(td);
386 *retptr = 0;
e39c0676 387 return false;
418f5399 388 } else if (td->o.fill_device && (err == ENOSPC || err == EDQUOT)) {
2e1df07d
JA
389 /*
390 * We expect to hit this error if
391 * fill_device option is set.
392 */
393 td_clear_error(td);
ebea2133 394 fio_mark_td_terminate(td);
e39c0676 395 return true;
2e1df07d
JA
396 } else {
397 /*
398 * Stop the I/O in case of a fatal
399 * error.
400 */
401 update_error_count(td, err);
e39c0676 402 return true;
2e1df07d
JA
403 }
404 }
405
e39c0676 406 return false;
2e1df07d
JA
407}
408
c97f1ad6
JA
409static void check_update_rusage(struct thread_data *td)
410{
411 if (td->update_rusage) {
412 td->update_rusage = 0;
413 update_rusage_stat(td);
971caeb1 414 fio_sem_up(td->rusage_sem);
c97f1ad6
JA
415 }
416}
417
8b6a404c 418static int wait_for_completions(struct thread_data *td, struct timespec *time)
69fea81e
JA
419{
420 const int full = queue_full(td);
421 int min_evts = 0;
422 int ret;
423
6be06c46
JA
424 if (td->flags & TD_F_REGROW_LOGS)
425 return io_u_quiesce(td);
1fed2080 426
69fea81e
JA
427 /*
428 * if the queue is full, we MUST reap at least 1 event
429 */
82407585 430 min_evts = min(td->o.iodepth_batch_complete_min, td->cur_depth);
4b157ac6 431 if ((full && !min_evts) || !td->o.iodepth_batch_complete_min)
69fea81e
JA
432 min_evts = 1;
433
90711edc 434 if (time && should_check_rate(td))
69fea81e
JA
435 fio_gettime(time, NULL);
436
437 do {
55312f9f 438 ret = io_u_queued_complete(td, min_evts);
69fea81e
JA
439 if (ret < 0)
440 break;
441 } while (full && (td->cur_depth > td->o.iodepth_low));
442
443 return ret;
444}
445
e9d512d8
JA
446int io_queue_event(struct thread_data *td, struct io_u *io_u, int *ret,
447 enum fio_ddir ddir, uint64_t *bytes_issued, int from_verify,
8b6a404c 448 struct timespec *comp_time)
e9d512d8 449{
e9d512d8
JA
450 switch (*ret) {
451 case FIO_Q_COMPLETED:
452 if (io_u->error) {
453 *ret = -io_u->error;
454 clear_io_u(td, io_u);
455 } else if (io_u->resid) {
5fff9543 456 long long bytes = io_u->xfer_buflen - io_u->resid;
e9d512d8
JA
457 struct fio_file *f = io_u->file;
458
459 if (bytes_issued)
460 *bytes_issued += bytes;
461
462 if (!from_verify)
94a78d52 463 trim_io_piece(io_u);
e9d512d8
JA
464
465 /*
466 * zero read, fail
467 */
468 if (!bytes) {
469 if (!from_verify)
470 unlog_io_piece(td, io_u);
471 td_verror(td, EIO, "full resid");
472 put_io_u(td, io_u);
473 break;
474 }
475
476 io_u->xfer_buflen = io_u->resid;
477 io_u->xfer_buf += bytes;
478 io_u->offset += bytes;
479
480 if (ddir_rw(io_u->ddir))
481 td->ts.short_io_u[io_u->ddir]++;
482
e9d512d8
JA
483 if (io_u->offset == f->real_file_size)
484 goto sync_done;
485
486 requeue_io_u(td, &io_u);
487 } else {
488sync_done:
90711edc 489 if (comp_time && should_check_rate(td))
e9d512d8
JA
490 fio_gettime(comp_time, NULL);
491
492 *ret = io_u_sync_complete(td, io_u);
493 if (*ret < 0)
494 break;
495 }
a0e3e5a6 496
cf2c8d52
JA
497 if (td->flags & TD_F_REGROW_LOGS)
498 regrow_logs(td);
499
a0e3e5a6
EW
500 /*
501 * when doing I/O (not when verifying),
502 * check for any errors that are to be ignored
503 */
504 if (!from_verify)
505 break;
506
e9d512d8
JA
507 return 0;
508 case FIO_Q_QUEUED:
509 /*
510 * if the engine doesn't have a commit hook,
511 * the io_u is really queued. if it does have such
512 * a hook, it has to call io_u_queued() itself.
513 */
514 if (td->io_ops->commit == NULL)
515 io_u_queued(td, io_u);
516 if (bytes_issued)
517 *bytes_issued += io_u->xfer_buflen;
518 break;
519 case FIO_Q_BUSY:
520 if (!from_verify)
521 unlog_io_piece(td, io_u);
522 requeue_io_u(td, &io_u);
a80cb54b 523 td_io_commit(td);
e9d512d8
JA
524 break;
525 default:
b0775325 526 assert(*ret < 0);
e9d512d8
JA
527 td_verror(td, -(*ret), "td_io_queue");
528 break;
529 }
530
531 if (break_on_this_error(td, ddir, ret))
532 return 1;
533
534 return 0;
535}
536
e39c0676 537static inline bool io_in_polling(struct thread_data *td)
82407585
RP
538{
539 return !td->o.iodepth_batch_complete_min &&
540 !td->o.iodepth_batch_complete_max;
541}
39c1c323 542/*
543 * Unlinks files from thread data fio_file structure
544 */
545static int unlink_all_files(struct thread_data *td)
546{
547 struct fio_file *f;
548 unsigned int i;
549 int ret = 0;
550
551 for_each_file(td, f, i) {
552 if (f->filetype != FIO_TYPE_FILE)
553 continue;
554 ret = td_io_unlink_file(td, f);
555 if (ret)
556 break;
557 }
558
559 if (ret)
560 td_verror(td, ret, "unlink_all_files");
561
562 return ret;
563}
82407585 564
997b5680
SW
565/*
566 * Check if io_u will overlap an in-flight IO in the queue
567 */
c06379a6 568bool in_flight_overlap(struct io_u_queue *q, struct io_u *io_u)
997b5680
SW
569{
570 bool overlap;
571 struct io_u *check_io_u;
572 unsigned long long x1, x2, y1, y2;
573 int i;
574
575 x1 = io_u->offset;
576 x2 = io_u->offset + io_u->buflen;
577 overlap = false;
578 io_u_qiter(q, check_io_u, i) {
579 if (check_io_u->flags & IO_U_F_FLIGHT) {
580 y1 = check_io_u->offset;
581 y2 = check_io_u->offset + check_io_u->buflen;
582
583 if (x1 < y2 && y1 < x2) {
584 overlap = true;
5fff9543 585 dprint(FD_IO, "in-flight overlap: %llu/%llu, %llu/%llu\n",
997b5680
SW
586 x1, io_u->buflen,
587 y1, check_io_u->buflen);
588 break;
589 }
590 }
591 }
592
593 return overlap;
594}
595
d3b07186 596static enum fio_q_status io_u_submit(struct thread_data *td, struct io_u *io_u)
08b2b386
JA
597{
598 /*
599 * Check for overlap if the user asked us to, and we have
600 * at least one IO in flight besides this one.
601 */
602 if (td->o.serialize_overlap && td->cur_depth > 1 &&
603 in_flight_overlap(&td->io_u_all, io_u))
604 return FIO_Q_BUSY;
605
606 return td_io_queue(td, io_u);
607}
608
2e1df07d
JA
609/*
610 * The main verify engine. Runs over the writes we previously submitted,
611 * reads the blocks back in, and checks the crc/md5 of the data.
612 */
100f49f1 613static void do_verify(struct thread_data *td, uint64_t verify_bytes)
2e1df07d
JA
614{
615 struct fio_file *f;
616 struct io_u *io_u;
617 int ret, min_events;
618 unsigned int i;
619
620 dprint(FD_VERIFY, "starting loop\n");
621
622 /*
623 * sync io first and invalidate cache, to make sure we really
624 * read from disk.
625 */
626 for_each_file(td, f, i) {
627 if (!fio_file_open(f))
628 continue;
629 if (fio_io_sync(td, f))
630 break;
631 if (file_invalidate_cache(td, f))
632 break;
633 }
634
c97f1ad6
JA
635 check_update_rusage(td);
636
2e1df07d
JA
637 if (td->error)
638 return;
639
8f380de2
CJ
640 /*
641 * verify_state needs to be reset before verification
642 * proceeds so that expected random seeds match actual
643 * random seeds in headers. The main loop will reset
644 * all random number generators if randrepeat is set.
645 */
646 if (!td->o.rand_repeatable)
647 td_fill_verify_state_seed(td);
648
2e1df07d
JA
649 td_set_runstate(td, TD_VERIFYING);
650
651 io_u = NULL;
652 while (!td->terminate) {
fbccf46c 653 enum fio_ddir ddir;
e9d512d8 654 int full;
2e1df07d 655
8b6a404c 656 update_ts_cache(td);
c97f1ad6 657 check_update_rusage(td);
2e1df07d 658
8b6a404c
VF
659 if (runtime_exceeded(td, &td->ts_cache)) {
660 __update_ts_cache(td);
661 if (runtime_exceeded(td, &td->ts_cache)) {
ebea2133 662 fio_mark_td_terminate(td);
2e1df07d
JA
663 break;
664 }
665 }
666
9e684a49
DE
667 if (flow_threshold_exceeded(td))
668 continue;
669
44cbc6da
JA
670 if (!td->o.experimental_verify) {
671 io_u = __get_io_u(td);
672 if (!io_u)
673 break;
2e1df07d 674
44cbc6da
JA
675 if (get_next_verify(td, io_u)) {
676 put_io_u(td, io_u);
677 break;
678 }
2e1df07d 679
44cbc6da
JA
680 if (td_io_prep(td, io_u)) {
681 put_io_u(td, io_u);
682 break;
683 }
684 } else {
55312f9f 685 if (ddir_rw_sum(td->bytes_done) + td->o.rw_min_bs > verify_bytes)
100f49f1
JA
686 break;
687
bcd5abfa 688 while ((io_u = get_io_u(td)) != NULL) {
059b61f2 689 if (IS_ERR_OR_NULL(io_u)) {
002fe734
JA
690 io_u = NULL;
691 ret = FIO_Q_BUSY;
692 goto reap;
693 }
694
bcd5abfa
JA
695 /*
696 * We are only interested in the places where
697 * we wrote or trimmed IOs. Turn those into
698 * reads for verification purposes.
699 */
700 if (io_u->ddir == DDIR_READ) {
701 /*
702 * Pretend we issued it for rwmix
703 * accounting
704 */
705 td->io_issues[DDIR_READ]++;
706 put_io_u(td, io_u);
707 continue;
708 } else if (io_u->ddir == DDIR_TRIM) {
709 io_u->ddir = DDIR_READ;
1651e431 710 io_u_set(td, io_u, IO_U_F_TRIMMED);
bcd5abfa
JA
711 break;
712 } else if (io_u->ddir == DDIR_WRITE) {
713 io_u->ddir = DDIR_READ;
5c5c33c1 714 populate_verify_io_u(td, io_u);
bcd5abfa
JA
715 break;
716 } else {
717 put_io_u(td, io_u);
718 continue;
719 }
720 }
44cbc6da 721
bcd5abfa 722 if (!io_u)
44cbc6da 723 break;
2e1df07d
JA
724 }
725
ca09be4b
JA
726 if (verify_state_should_stop(td, io_u)) {
727 put_io_u(td, io_u);
728 break;
729 }
730
2e1df07d
JA
731 if (td->o.verify_async)
732 io_u->end_io = verify_io_u_async;
733 else
734 io_u->end_io = verify_io_u;
735
fbccf46c 736 ddir = io_u->ddir;
10adc4a7
GG
737 if (!td->o.disable_slat)
738 fio_gettime(&io_u->start_time, NULL);
fbccf46c 739
08b2b386 740 ret = io_u_submit(td, io_u);
2e1df07d 741
e9d512d8 742 if (io_queue_event(td, io_u, &ret, ddir, NULL, 1, NULL))
2e1df07d
JA
743 break;
744
745 /*
746 * if we can queue more, do so. but check if there are
747 * completed io_u's first. Note that we can get BUSY even
748 * without IO queued, if the system is resource starved.
749 */
002fe734 750reap:
2e1df07d 751 full = queue_full(td) || (ret == FIO_Q_BUSY && td->cur_depth);
82407585 752 if (full || io_in_polling(td))
55312f9f 753 ret = wait_for_completions(td, NULL);
2e1df07d 754
2e1df07d
JA
755 if (ret < 0)
756 break;
757 }
758
c97f1ad6
JA
759 check_update_rusage(td);
760
2e1df07d
JA
761 if (!td->error) {
762 min_events = td->cur_depth;
763
764 if (min_events)
55312f9f 765 ret = io_u_queued_complete(td, min_events);
2e1df07d
JA
766 } else
767 cleanup_pending_aio(td);
768
769 td_set_runstate(td, TD_RUNNING);
770
771 dprint(FD_VERIFY, "exiting loop\n");
772}
773
e39c0676 774static bool exceeds_number_ios(struct thread_data *td)
3939fe85
JA
775{
776 unsigned long long number_ios;
777
778 if (!td->o.number_ios)
e39c0676 779 return false;
3939fe85 780
cf8a46a7 781 number_ios = ddir_rw_sum(td->io_blocks);
3939fe85
JA
782 number_ios += td->io_u_queued + td->io_u_in_flight;
783
cf8a46a7 784 return number_ios >= (td->o.number_ios * td->loops);
3939fe85
JA
785}
786
926098e0 787static bool io_bytes_exceeded(struct thread_data *td, uint64_t *this_bytes)
f7078f7b 788{
77731b29 789 unsigned long long bytes, limit;
f7078f7b
JA
790
791 if (td_rw(td))
926098e0 792 bytes = this_bytes[DDIR_READ] + this_bytes[DDIR_WRITE];
f7078f7b 793 else if (td_write(td))
926098e0 794 bytes = this_bytes[DDIR_WRITE];
6eaf09d6 795 else if (td_read(td))
926098e0 796 bytes = this_bytes[DDIR_READ];
f7078f7b 797 else
926098e0 798 bytes = this_bytes[DDIR_TRIM];
f7078f7b 799
5be9bf09
TK
800 if (td->o.io_size)
801 limit = td->o.io_size;
77731b29
JA
802 else
803 limit = td->o.size;
804
cf8a46a7 805 limit *= td->loops;
77731b29 806 return bytes >= limit || exceeds_number_ios(td);
f7078f7b
JA
807}
808
926098e0 809static bool io_issue_bytes_exceeded(struct thread_data *td)
e28dd2cf 810{
926098e0
JA
811 return io_bytes_exceeded(td, td->io_issue_bytes);
812}
e28dd2cf 813
926098e0
JA
814static bool io_complete_bytes_exceeded(struct thread_data *td)
815{
816 return io_bytes_exceeded(td, td->this_io_bytes);
e28dd2cf
JE
817}
818
50a8ce86
D
819/*
820 * used to calculate the next io time for rate control
821 *
822 */
823static long long usec_for_io(struct thread_data *td, enum fio_ddir ddir)
824{
1a9bf814 825 uint64_t bps = td->rate_bps[ddir];
50a8ce86
D
826
827 assert(!(td->flags & TD_F_CHILD));
ff6bb260 828
6de65959 829 if (td->o.rate_process == RATE_PROCESS_POISSON) {
1a9bf814
JA
830 uint64_t val, iops;
831
d6299558 832 iops = bps / td->o.min_bs[ddir];
a77d139b 833 val = (int64_t) (1000000 / iops) *
6c8611c7 834 -logf(__rand_0_1(&td->poisson_state[ddir]));
a77d139b 835 if (val) {
98e51d7c
JA
836 dprint(FD_RATE, "poisson rate iops=%llu, ddir=%d\n",
837 (unsigned long long) 1000000 / val,
838 ddir);
a77d139b 839 }
6c8611c7
JA
840 td->last_usec[ddir] += val;
841 return td->last_usec[ddir];
ff6bb260 842 } else if (bps) {
1a9bf814
JA
843 uint64_t bytes = td->rate_io_issue_bytes[ddir];
844 uint64_t secs = bytes / bps;
845 uint64_t remainder = bytes % bps;
846
50a8ce86 847 return remainder * 1000000 / bps + secs * 1000000;
e7b24047
JA
848 }
849
850 return 0;
50a8ce86
D
851}
852
f7942acd
SK
853static void init_thinktime(struct thread_data *td)
854{
855 if (td->o.thinktime_blocks_type == THINKTIME_BLOCKS_TYPE_COMPLETE)
856 td->thinktime_blocks_counter = td->io_blocks;
857 else
858 td->thinktime_blocks_counter = td->io_issues;
859 td->last_thinktime = td->epoch;
860 td->last_thinktime_blocks = 0;
861}
862
7216b664
HQ
863static void handle_thinktime(struct thread_data *td, enum fio_ddir ddir,
864 struct timespec *time)
1a9bf814
JA
865{
866 unsigned long long b;
867 uint64_t total;
868 int left;
f7942acd
SK
869 struct timespec now;
870 bool stall = false;
871
872 if (td->o.thinktime_iotime) {
873 fio_gettime(&now, NULL);
874 if (utime_since(&td->last_thinktime, &now)
875 >= td->o.thinktime_iotime + td->o.thinktime) {
876 stall = true;
877 } else if (!fio_option_is_set(&td->o, thinktime_blocks)) {
878 /*
879 * When thinktime_iotime is set and thinktime_blocks is
880 * not set, skip the thinktime_blocks check, since
881 * thinktime_blocks default value 1 does not work
882 * together with thinktime_iotime.
883 */
884 return;
885 }
886
887 }
1a9bf814 888
33f42c20 889 b = ddir_rw_sum(td->thinktime_blocks_counter);
f7942acd
SK
890 if (b >= td->last_thinktime_blocks + td->o.thinktime_blocks)
891 stall = true;
892
893 if (!stall)
1a9bf814
JA
894 return;
895
896 io_u_quiesce(td);
897
898 total = 0;
899 if (td->o.thinktime_spin)
900 total = usec_spin(td->o.thinktime_spin);
901
902 left = td->o.thinktime - total;
903 if (left)
904 total += usec_sleep(td, left);
905
906 /*
907 * If we're ignoring thinktime for the rate, add the number of bytes
1aa39b0c
JA
908 * we would have done while sleeping, minus one block to ensure we
909 * start issuing immediately after the sleep.
1a9bf814 910 */
1aa39b0c 911 if (total && td->rate_bps[ddir] && td->o.rate_ign_think) {
f2aedb17 912 uint64_t missed = (td->rate_bps[ddir] * total) / 1000000ULL;
62b858f6
JA
913 uint64_t bs = td->o.min_bs[ddir];
914 uint64_t usperop = bs * 1000000ULL / td->rate_bps[ddir];
f2aedb17
JA
915 uint64_t over;
916
62b858f6
JA
917 if (usperop <= total)
918 over = bs;
f2aedb17 919 else
62b858f6 920 over = (usperop - total) / usperop * -bs;
f2aedb17
JA
921
922 td->rate_io_issue_bytes[ddir] += (missed - over);
182cab24
JA
923 /* adjust for rate_process=poisson */
924 td->last_usec[ddir] += total;
1aa39b0c 925 }
7216b664
HQ
926
927 if (time && should_check_rate(td))
928 fio_gettime(time, NULL);
f7942acd
SK
929
930 td->last_thinktime_blocks = b;
931 if (td->o.thinktime_iotime)
932 td->last_thinktime = now;
1a9bf814
JA
933}
934
2e1df07d
JA
935/*
936 * Main IO worker function. It retrieves io_u's to process and queues
937 * and reaps them, checking for rate and errors along the way.
100f49f1
JA
938 *
939 * Returns number of bytes written and trimmed.
2e1df07d 940 */
95b03be0 941static void do_io(struct thread_data *td, uint64_t *bytes_done)
2e1df07d
JA
942{
943 unsigned int i;
944 int ret = 0;
c2703bf3 945 uint64_t total_bytes, bytes_issued = 0;
70c68076 946
95b03be0
JA
947 for (i = 0; i < DDIR_RWDIR_CNT; i++)
948 bytes_done[i] = td->bytes_done[i];
2e1df07d
JA
949
950 if (in_ramp_time(td))
951 td_set_runstate(td, TD_RAMP);
952 else
953 td_set_runstate(td, TD_RUNNING);
954
3e260a46
JA
955 lat_target_init(td);
956
1e564979
JE
957 total_bytes = td->o.size;
958 /*
5be9bf09 959 * Allow random overwrite workloads to write up to io_size
1e564979
JE
960 * before starting verification phase as 'size' doesn't apply.
961 */
962 if (td_write(td) && td_random(td) && td->o.norandommap)
5be9bf09 963 total_bytes = max(total_bytes, (uint64_t) td->o.io_size);
78a6469c
JA
964 /*
965 * If verify_backlog is enabled, we'll run the verify in this
966 * handler as well. For that case, we may need up to twice the
967 * amount of bytes.
968 */
78a6469c
JA
969 if (td->o.verify != VERIFY_NONE &&
970 (td_write(td) && td->o.verify_backlog))
c2703bf3
JA
971 total_bytes += td->o.size;
972
82a90686 973 /* In trimwrite mode, each byte is trimmed and then written, so
08996af4
AK
974 * allow total_bytes or number of ios to be twice as big */
975 if (td_trimwrite(td)) {
0e4dd95c 976 total_bytes += td->total_io_size;
08996af4
AK
977 td->o.number_ios *= 2;
978 }
0e4dd95c 979
f7078f7b 980 while ((td->o.read_iolog_file && !flist_empty(&td->io_log_list)) ||
e28dd2cf 981 (!flist_empty(&td->trim_list)) || !io_issue_bytes_exceeded(td) ||
c04e4661 982 td->o.time_based) {
8b6a404c 983 struct timespec comp_time;
2e1df07d 984 struct io_u *io_u;
e9d512d8 985 int full;
2e1df07d
JA
986 enum fio_ddir ddir;
987
c97f1ad6
JA
988 check_update_rusage(td);
989
7d7803fa 990 if (td->terminate || td->done)
2e1df07d
JA
991 break;
992
8b6a404c 993 update_ts_cache(td);
2e1df07d 994
8b6a404c
VF
995 if (runtime_exceeded(td, &td->ts_cache)) {
996 __update_ts_cache(td);
997 if (runtime_exceeded(td, &td->ts_cache)) {
ebea2133 998 fio_mark_td_terminate(td);
2e1df07d
JA
999 break;
1000 }
1001 }
1002
9e684a49
DE
1003 if (flow_threshold_exceeded(td))
1004 continue;
1005
f1a32461
JA
1006 /*
1007 * Break if we exceeded the bytes. The exception is time
1008 * based runs, but we still need to break out of the loop
1009 * for those to run verification, if enabled.
98e7161c 1010 * Jobs read from iolog do not use this stop condition.
f1a32461
JA
1011 */
1012 if (bytes_issued >= total_bytes &&
98e7161c 1013 !td->o.read_iolog_file &&
f1a32461
JA
1014 (!td->o.time_based ||
1015 (td->o.time_based && td->o.verify != VERIFY_NONE)))
20876c53
JC
1016 break;
1017
2e1df07d 1018 io_u = get_io_u(td);
002fe734
JA
1019 if (IS_ERR_OR_NULL(io_u)) {
1020 int err = PTR_ERR(io_u);
1021
1022 io_u = NULL;
1a9bf814 1023 ddir = DDIR_INVAL;
002fe734
JA
1024 if (err == -EBUSY) {
1025 ret = FIO_Q_BUSY;
1026 goto reap;
1027 }
3e260a46
JA
1028 if (td->o.latency_target)
1029 goto reap;
2e1df07d 1030 break;
3e260a46 1031 }
2e1df07d 1032
5c5c33c1
BVA
1033 if (io_u->ddir == DDIR_WRITE && td->flags & TD_F_DO_VERIFY)
1034 populate_verify_io_u(td, io_u);
1035
2e1df07d
JA
1036 ddir = io_u->ddir;
1037
1038 /*
82af2a7c
JA
1039 * Add verification end_io handler if:
1040 * - Asked to verify (!td_rw(td))
1041 * - Or the io_u is from our verify list (mixed write/ver)
2e1df07d
JA
1042 */
1043 if (td->o.verify != VERIFY_NONE && io_u->ddir == DDIR_READ &&
82af2a7c 1044 ((io_u->flags & IO_U_F_VER_LIST) || !td_rw(td))) {
c4b6117b 1045
ca09be4b
JA
1046 if (verify_state_should_stop(td, io_u)) {
1047 put_io_u(td, io_u);
1048 break;
1049 }
1050
2e1df07d
JA
1051 if (td->o.verify_async)
1052 io_u->end_io = verify_io_u_async;
1053 else
1054 io_u->end_io = verify_io_u;
1055 td_set_runstate(td, TD_VERIFYING);
1056 } else if (in_ramp_time(td))
1057 td_set_runstate(td, TD_RAMP);
1058 else
1059 td_set_runstate(td, TD_RUNNING);
1060
9a50c5c5 1061 /*
f9401285
JA
1062 * Always log IO before it's issued, so we know the specific
1063 * order of it. The logged unit will track when the IO has
1064 * completed.
9a50c5c5 1065 */
c4b6117b
PV
1066 if (td_write(td) && io_u->ddir == DDIR_WRITE &&
1067 td->o.do_verify &&
1068 td->o.verify != VERIFY_NONE &&
f9401285 1069 !td->o.experimental_verify)
c4b6117b
PV
1070 log_io_piece(td, io_u);
1071
a9da8ab2 1072 if (td->o.io_submit_mode == IO_MODE_OFFLOAD) {
5fff9543 1073 const unsigned long long blen = io_u->xfer_buflen;
a43f4461 1074 const enum fio_ddir __ddir = acct_ddir(io_u);
0c5df5f9 1075
a9da8ab2
JA
1076 if (td->error)
1077 break;
0c5df5f9 1078
26de50cf
JA
1079 workqueue_enqueue(&td->io_wq, &io_u->work);
1080 ret = FIO_Q_QUEUED;
50a8ce86 1081
a43f4461
JA
1082 if (ddir_rw(__ddir)) {
1083 td->io_issues[__ddir]++;
1084 td->io_issue_bytes[__ddir] += blen;
1085 td->rate_io_issue_bytes[__ddir] += blen;
0c5df5f9
JA
1086 }
1087
5b28b75b 1088 if (should_check_rate(td)) {
a43f4461 1089 td->rate_next_io_time[__ddir] = usec_for_io(td, __ddir);
5b28b75b 1090 fio_gettime(&comp_time, NULL);
1091 }
50a8ce86 1092
a9da8ab2 1093 } else {
08b2b386 1094 ret = io_u_submit(td, io_u);
2e1df07d 1095
50a8ce86
D
1096 if (should_check_rate(td))
1097 td->rate_next_io_time[ddir] = usec_for_io(td, ddir);
1098
fd727d9d 1099 if (io_queue_event(td, io_u, &ret, ddir, &bytes_issued, 0, &comp_time))
a9da8ab2 1100 break;
2e1df07d 1101
a9da8ab2
JA
1102 /*
1103 * See if we need to complete some commands. Note that
1104 * we can get BUSY even without IO queued, if the
1105 * system is resource starved.
1106 */
3e260a46 1107reap:
a9da8ab2
JA
1108 full = queue_full(td) ||
1109 (ret == FIO_Q_BUSY && td->cur_depth);
82407585 1110 if (full || io_in_polling(td))
a9da8ab2
JA
1111 ret = wait_for_completions(td, &comp_time);
1112 }
2e1df07d
JA
1113 if (ret < 0)
1114 break;
33f42c20
HQ
1115
1116 if (ddir_rw(ddir) && td->o.thinktime)
7216b664 1117 handle_thinktime(td, ddir, &comp_time);
33f42c20 1118
55312f9f 1119 if (!ddir_rw_sum(td->bytes_done) &&
9b87f09b 1120 !td_ioengine_flagged(td, FIO_NOIO))
2e1df07d
JA
1121 continue;
1122
55312f9f
JA
1123 if (!in_ramp_time(td) && should_check_rate(td)) {
1124 if (check_min_rate(td, &comp_time)) {
f9cafb12 1125 if (exitall_on_terminate || td->o.exitall_error)
64402a8a 1126 fio_terminate_threads(td->groupid, td->o.exit_what);
2e1df07d
JA
1127 td_verror(td, EIO, "check_min_rate");
1128 break;
1129 }
1130 }
3e260a46
JA
1131 if (!in_ramp_time(td) && td->o.latency_target)
1132 lat_target_check(td);
2e1df07d
JA
1133 }
1134
c97f1ad6
JA
1135 check_update_rusage(td);
1136
2e1df07d 1137 if (td->trim_entries)
4e0a8fa2 1138 log_err("fio: %lu trim entries leaked?\n", td->trim_entries);
2e1df07d 1139
418f5399 1140 if (td->o.fill_device && (td->error == ENOSPC || td->error == EDQUOT)) {
2e1df07d 1141 td->error = 0;
ebea2133 1142 fio_mark_td_terminate(td);
2e1df07d
JA
1143 }
1144 if (!td->error) {
1145 struct fio_file *f;
1146
a9da8ab2
JA
1147 if (td->o.io_submit_mode == IO_MODE_OFFLOAD) {
1148 workqueue_flush(&td->io_wq);
1149 i = 0;
1150 } else
1151 i = td->cur_depth;
1152
2e1df07d 1153 if (i) {
55312f9f 1154 ret = io_u_queued_complete(td, i);
418f5399
MB
1155 if (td->o.fill_device &&
1156 (td->error == ENOSPC || td->error == EDQUOT))
2e1df07d
JA
1157 td->error = 0;
1158 }
1159
00615bfb 1160 if (should_fsync(td) && (td->o.end_fsync || td->o.fsync_on_close)) {
2e1df07d
JA
1161 td_set_runstate(td, TD_FSYNCING);
1162
1163 for_each_file(td, f, i) {
61ee0f86 1164 if (!fio_file_fsync(td, f))
2e1df07d 1165 continue;
61ee0f86
JA
1166
1167 log_err("fio: end_fsync failed for file %s\n",
1168 f->file_name);
2e1df07d
JA
1169 }
1170 }
5b28b75b 1171 } else {
1172 if (td->o.io_submit_mode == IO_MODE_OFFLOAD)
1173 workqueue_flush(&td->io_wq);
2e1df07d 1174 cleanup_pending_aio(td);
5b28b75b 1175 }
2e1df07d
JA
1176
1177 /*
1178 * stop job if we failed doing any IO
1179 */
342f4be4 1180 if (!ddir_rw_sum(td->this_io_bytes))
2e1df07d 1181 td->done = 1;
100f49f1 1182
95b03be0
JA
1183 for (i = 0; i < DDIR_RWDIR_CNT; i++)
1184 bytes_done[i] = td->bytes_done[i] - bytes_done[i];
2e1df07d
JA
1185}
1186
94a6e1bb
JA
1187static void free_file_completion_logging(struct thread_data *td)
1188{
1189 struct fio_file *f;
1190 unsigned int i;
1191
1192 for_each_file(td, f, i) {
1193 if (!f->last_write_comp)
1194 break;
1195 sfree(f->last_write_comp);
1196 }
1197}
1198
1199static int init_file_completion_logging(struct thread_data *td,
1200 unsigned int depth)
1201{
1202 struct fio_file *f;
1203 unsigned int i;
1204
1205 if (td->o.verify == VERIFY_NONE || !td->o.verify_state_save)
1206 return 0;
1207
1208 for_each_file(td, f, i) {
1209 f->last_write_comp = scalloc(depth, sizeof(uint64_t));
1210 if (!f->last_write_comp)
1211 goto cleanup;
1212 }
1213
1214 return 0;
1215
1216cleanup:
1217 free_file_completion_logging(td);
1218 log_err("fio: failed to alloc write comp data\n");
1219 return 1;
1220}
1221
2e1df07d
JA
1222static void cleanup_io_u(struct thread_data *td)
1223{
2e1df07d
JA
1224 struct io_u *io_u;
1225
2ae0b204 1226 while ((io_u = io_u_qpop(&td->io_u_freelist)) != NULL) {
c73ed246
JA
1227
1228 if (td->io_ops->io_u_free)
1229 td->io_ops->io_u_free(td, io_u);
1230
3114b675 1231 fio_memfree(io_u, sizeof(*io_u), td_offload_overlap(td));
2e1df07d
JA
1232 }
1233
1234 free_io_mem(td);
2ae0b204
JA
1235
1236 io_u_rexit(&td->io_u_requeues);
3114b675
VF
1237 io_u_qexit(&td->io_u_freelist, false);
1238 io_u_qexit(&td->io_u_all, td_offload_overlap(td));
ca09be4b 1239
94a6e1bb 1240 free_file_completion_logging(td);
2e1df07d
JA
1241}
1242
1243static int init_io_u(struct thread_data *td)
1244{
1245 struct io_u *io_u;
2e1df07d 1246 int cl_align, i, max_units;
71e6e5a2 1247 int err;
2e1df07d
JA
1248
1249 max_units = td->o.iodepth;
59d8d0f5 1250
2ae0b204 1251 err = 0;
34851ad5 1252 err += !io_u_rinit(&td->io_u_requeues, td->o.iodepth);
3114b675
VF
1253 err += !io_u_qinit(&td->io_u_freelist, td->o.iodepth, false);
1254 err += !io_u_qinit(&td->io_u_all, td->o.iodepth, td_offload_overlap(td));
2ae0b204
JA
1255
1256 if (err) {
1257 log_err("fio: failed setting up IO queues\n");
1258 return 1;
1259 }
1260
71e6e5a2
AK
1261 cl_align = os_cache_line_size();
1262
1263 for (i = 0; i < max_units; i++) {
1264 void *ptr;
1265
1266 if (td->terminate)
1267 return 1;
1268
3114b675 1269 ptr = fio_memalign(cl_align, sizeof(*io_u), td_offload_overlap(td));
71e6e5a2
AK
1270 if (!ptr) {
1271 log_err("fio: unable to allocate aligned memory\n");
ab43b8cb 1272 return 1;
71e6e5a2
AK
1273 }
1274
1275 io_u = ptr;
1276 memset(io_u, 0, sizeof(*io_u));
1277 INIT_FLIST_HEAD(&io_u->verify_list);
1278 dprint(FD_MEM, "io_u alloc %p, index %u\n", io_u, i);
1279
1280 io_u->index = i;
1281 io_u->flags = IO_U_F_FREE;
1282 io_u_qpush(&td->io_u_freelist, io_u);
1283
1284 /*
1285 * io_u never leaves this stack, used for iteration of all
1286 * io_u buffers.
1287 */
1288 io_u_qpush(&td->io_u_all, io_u);
1289
1290 if (td->io_ops->io_u_init) {
1291 int ret = td->io_ops->io_u_init(td, io_u);
1292
1293 if (ret) {
1294 log_err("fio: failed to init engine data: %d\n", ret);
1295 return 1;
1296 }
1297 }
1298 }
1299
1300 init_io_u_buffers(td);
1301
1302 if (init_file_completion_logging(td, max_units))
1303 return 1;
1304
1305 return 0;
1306}
1307
1308int init_io_u_buffers(struct thread_data *td)
1309{
1310 struct io_u *io_u;
1311 unsigned long long max_bs, min_write;
1312 int i, max_units;
1313 int data_xfer = 1;
1314 char *p;
1315
1316 max_units = td->o.iodepth;
1317 max_bs = td_max_bs(td);
1318 min_write = td->o.min_bs[DDIR_WRITE];
1319 td->orig_buffer_size = (unsigned long long) max_bs
1320 * (unsigned long long) max_units;
1321
1322 if (td_ioengine_flagged(td, FIO_NOIO) || !(td_read(td) || td_write(td)))
1323 data_xfer = 0;
1324
fd8a09b8 1325 /*
1326 * if we may later need to do address alignment, then add any
1327 * possible adjustment here so that we don't cause a buffer
1328 * overflow later. this adjustment may be too much if we get
1329 * lucky and the allocator gives us an aligned address.
1330 */
d01612f3 1331 if (td->o.odirect || td->o.mem_align || td->o.oatomic ||
9b87f09b 1332 td_ioengine_flagged(td, FIO_RAWIO))
fd8a09b8 1333 td->orig_buffer_size += page_mask + td->o.mem_align;
1334
2e1df07d 1335 if (td->o.mem_type == MEM_SHMHUGE || td->o.mem_type == MEM_MMAPHUGE) {
5fff9543 1336 unsigned long long bs;
2e1df07d
JA
1337
1338 bs = td->orig_buffer_size + td->o.hugepage_size - 1;
1339 td->orig_buffer_size = bs & ~(td->o.hugepage_size - 1);
1340 }
1341
1342 if (td->orig_buffer_size != (size_t) td->orig_buffer_size) {
1343 log_err("fio: IO memory too large. Reduce max_bs or iodepth\n");
1344 return 1;
1345 }
1346
59d8d0f5 1347 if (data_xfer && allocate_io_mem(td))
2e1df07d
JA
1348 return 1;
1349
d01612f3 1350 if (td->o.odirect || td->o.mem_align || td->o.oatomic ||
9b87f09b 1351 td_ioengine_flagged(td, FIO_RAWIO))
248c9436 1352 p = PTR_ALIGN(td->orig_buffer, page_mask) + td->o.mem_align;
2e1df07d
JA
1353 else
1354 p = td->orig_buffer;
1355
2e1df07d 1356 for (i = 0; i < max_units; i++) {
71e6e5a2 1357 io_u = td->io_u_all.io_us[i];
2e1df07d
JA
1358 dprint(FD_MEM, "io_u alloc %p, index %u\n", io_u, i);
1359
59d8d0f5 1360 if (data_xfer) {
2e1df07d
JA
1361 io_u->buf = p;
1362 dprint(FD_MEM, "io_u %p, mem %p\n", io_u, io_u->buf);
1363
1364 if (td_write(td))
9c42684e 1365 io_u_fill_buffer(td, io_u, min_write, max_bs);
2e1df07d
JA
1366 if (td_write(td) && td->o.verify_pattern_bytes) {
1367 /*
1368 * Fill the buffer with the pattern if we are
1369 * going to be doing writes.
1370 */
ce35b1ec 1371 fill_verify_pattern(td, io_u->buf, max_bs, io_u, 0, 0);
2e1df07d
JA
1372 }
1373 }
2e1df07d
JA
1374 p += max_bs;
1375 }
1376
1377 return 0;
1378}
1379
5592e992 1380#ifdef FIO_HAVE_IOSCHED_SWITCH
bd4d9bdc 1381/*
5592e992 1382 * These functions are Linux specific.
bd4d9bdc
TK
1383 * FIO_HAVE_IOSCHED_SWITCH enabled currently means it's Linux.
1384 */
5592e992 1385static int set_ioscheduler(struct thread_data *td, struct fio_file *file)
2e1df07d 1386{
178ef27a 1387 char tmp[256], tmp2[128], *p;
2e1df07d
JA
1388 FILE *f;
1389 int ret;
1390
5592e992
DLM
1391 assert(file->du && file->du->sysfs_root);
1392 sprintf(tmp, "%s/queue/scheduler", file->du->sysfs_root);
2e1df07d
JA
1393
1394 f = fopen(tmp, "r+");
1395 if (!f) {
1396 if (errno == ENOENT) {
1397 log_err("fio: os or kernel doesn't support IO scheduler"
1398 " switching\n");
1399 return 0;
1400 }
1401 td_verror(td, errno, "fopen iosched");
1402 return 1;
1403 }
1404
1405 /*
1406 * Set io scheduler.
1407 */
1408 ret = fwrite(td->o.ioscheduler, strlen(td->o.ioscheduler), 1, f);
1409 if (ferror(f) || ret != 1) {
1410 td_verror(td, errno, "fwrite");
1411 fclose(f);
1412 return 1;
1413 }
1414
1415 rewind(f);
1416
1417 /*
1418 * Read back and check that the selected scheduler is now the default.
1419 */
0e23d456 1420 ret = fread(tmp, 1, sizeof(tmp) - 1, f);
2e1df07d
JA
1421 if (ferror(f) || ret < 0) {
1422 td_verror(td, errno, "fread");
1423 fclose(f);
1424 return 1;
1425 }
0e23d456 1426 tmp[ret] = '\0';
b44b9e45 1427 /*
178ef27a
BVA
1428 * either a list of io schedulers or "none\n" is expected. Strip the
1429 * trailing newline.
b44b9e45 1430 */
178ef27a
BVA
1431 p = tmp;
1432 strsep(&p, "\n");
49c6f33d 1433
67f28a8c
TK
1434 /*
1435 * Write to "none" entry doesn't fail, so check the result here.
1436 */
1437 if (!strcmp(tmp, "none")) {
1438 log_err("fio: io scheduler is not tunable\n");
1439 fclose(f);
1440 return 0;
1441 }
2e1df07d
JA
1442
1443 sprintf(tmp2, "[%s]", td->o.ioscheduler);
1444 if (!strstr(tmp, tmp2)) {
da44720c 1445 log_err("fio: unable to set io scheduler to %s\n", td->o.ioscheduler);
2e1df07d
JA
1446 td_verror(td, EINVAL, "iosched_switch");
1447 fclose(f);
1448 return 1;
1449 }
1450
1451 fclose(f);
1452 return 0;
5592e992
DLM
1453}
1454
1455static int switch_ioscheduler(struct thread_data *td)
1456{
1457 struct fio_file *f;
1458 unsigned int i;
1459 int ret = 0;
1460
1461 if (td_ioengine_flagged(td, FIO_DISKLESSIO))
1462 return 0;
1463
1464 assert(td->files && td->files[0]);
1465
1466 for_each_file(td, f, i) {
1467
1468 /* Only consider regular files and block device files */
1469 switch (f->filetype) {
1470 case FIO_TYPE_FILE:
1471 case FIO_TYPE_BLOCK:
1472 /*
1473 * Make sure that the device hosting the file could
1474 * be determined.
1475 */
1476 if (!f->du)
1477 continue;
1478 break;
1479 case FIO_TYPE_CHAR:
1480 case FIO_TYPE_PIPE:
1481 default:
1482 continue;
1483 }
1484
1485 ret = set_ioscheduler(td, f);
1486 if (ret)
1487 return ret;
1488 }
1489
1490 return 0;
1491}
1492
db815fb3 1493#else
5592e992
DLM
1494
1495static int switch_ioscheduler(struct thread_data *td)
1496{
db815fb3 1497 return 0;
2e1df07d
JA
1498}
1499
5592e992
DLM
1500#endif /* FIO_HAVE_IOSCHED_SWITCH */
1501
e39c0676 1502static bool keep_running(struct thread_data *td)
2e1df07d 1503{
77731b29
JA
1504 unsigned long long limit;
1505
2e1df07d 1506 if (td->done)
e39c0676 1507 return false;
98413be7
SW
1508 if (td->terminate)
1509 return false;
2e1df07d 1510 if (td->o.time_based)
e39c0676 1511 return true;
2e1df07d
JA
1512 if (td->o.loops) {
1513 td->o.loops--;
e39c0676 1514 return true;
2e1df07d 1515 }
3939fe85 1516 if (exceeds_number_ios(td))
e39c0676 1517 return false;
26251d8d 1518
5be9bf09
TK
1519 if (td->o.io_size)
1520 limit = td->o.io_size;
77731b29
JA
1521 else
1522 limit = td->o.size;
1523
1524 if (limit != -1ULL && ddir_rw_sum(td->io_bytes) < limit) {
5bd5f71a
JA
1525 uint64_t diff;
1526
1527 /*
589d5d4f 1528 * If the difference is less than the maximum IO size, we
5bd5f71a
JA
1529 * are done.
1530 */
77731b29 1531 diff = limit - ddir_rw_sum(td->io_bytes);
74f4b020 1532 if (diff < td_max_bs(td))
e39c0676 1533 return false;
5bd5f71a 1534
5be9bf09 1535 if (fio_files_done(td) && !td->o.io_size)
e39c0676 1536 return false;
002fe734 1537
e39c0676 1538 return true;
5bd5f71a 1539 }
2e1df07d 1540
e39c0676 1541 return false;
2e1df07d
JA
1542}
1543
b7e4a53c
BVA
1544static int exec_string(struct thread_options *o, const char *string,
1545 const char *mode)
2e1df07d 1546{
f491a907 1547 int ret;
2e1df07d
JA
1548 char *str;
1549
b7e4a53c
BVA
1550 if (asprintf(&str, "%s > %s.%s.txt 2>&1", string, o->name, mode) < 0)
1551 return -1;
2e1df07d 1552
b7e4a53c
BVA
1553 log_info("%s : Saving output of %s in %s.%s.txt\n", o->name, mode,
1554 o->name, mode);
2e1df07d
JA
1555 ret = system(str);
1556 if (ret == -1)
1557 log_err("fio: exec of cmd <%s> failed\n", str);
1558
1559 free(str);
1560 return ret;
1561}
1562
62167762
JC
1563/*
1564 * Dry run to compute correct state of numberio for verification.
1565 */
1566static uint64_t do_dry_run(struct thread_data *td)
1567{
62167762
JC
1568 td_set_runstate(td, TD_RUNNING);
1569
1570 while ((td->o.read_iolog_file && !flist_empty(&td->io_log_list)) ||
e28dd2cf 1571 (!flist_empty(&td->trim_list)) || !io_complete_bytes_exceeded(td)) {
62167762
JC
1572 struct io_u *io_u;
1573 int ret;
1574
1575 if (td->terminate || td->done)
1576 break;
1577
1578 io_u = get_io_u(td);
99955d3d 1579 if (IS_ERR_OR_NULL(io_u))
62167762
JC
1580 break;
1581
1651e431 1582 io_u_set(td, io_u, IO_U_F_FLIGHT);
62167762
JC
1583 io_u->error = 0;
1584 io_u->resid = 0;
1585 if (ddir_rw(acct_ddir(io_u)))
1586 td->io_issues[acct_ddir(io_u)]++;
1587 if (ddir_rw(io_u->ddir)) {
1588 io_u_mark_depth(td, 1);
1589 td->ts.total_io_u[io_u->ddir]++;
1590 }
1591
2e63e96b
PV
1592 if (td_write(td) && io_u->ddir == DDIR_WRITE &&
1593 td->o.do_verify &&
1594 td->o.verify != VERIFY_NONE &&
1595 !td->o.experimental_verify)
1596 log_io_piece(td, io_u);
1597
55312f9f 1598 ret = io_u_sync_complete(td, io_u);
62167762
JC
1599 (void) ret;
1600 }
1601
55312f9f 1602 return td->bytes_done[DDIR_WRITE] + td->bytes_done[DDIR_TRIM];
62167762
JC
1603}
1604
24660963
JA
1605struct fork_data {
1606 struct thread_data *td;
1607 struct sk_out *sk_out;
1608};
1609
2e1df07d
JA
1610/*
1611 * Entry point for the thread based jobs. The process based jobs end up
1612 * here as well, after a little setup.
1613 */
1614static void *thread_main(void *data)
1615{
24660963 1616 struct fork_data *fd = data;
95603b74 1617 unsigned long long elapsed_us[DDIR_RWDIR_CNT] = { 0, };
24660963 1618 struct thread_data *td = fd->td;
4896473e 1619 struct thread_options *o = &td->o;
24660963 1620 struct sk_out *sk_out = fd->sk_out;
48366f3a 1621 uint64_t bytes_done[DDIR_RWDIR_CNT];
ca0122d8 1622 int deadlock_loop_cnt;
ff3aa922 1623 bool clear_state;
a38c70a8 1624 int res, ret;
2e1df07d 1625
24660963
JA
1626 sk_out_assign(sk_out);
1627 free(fd);
1628
4896473e 1629 if (!o->use_thread) {
2e1df07d
JA
1630 setsid();
1631 td->pid = getpid();
1632 } else
1633 td->pid = gettid();
1634
a0eba820 1635 fio_local_clock_init();
5d879392 1636
2e1df07d
JA
1637 dprint(FD_PROCESS, "jobs pid=%d started\n", (int) td->pid);
1638
122c7725
JA
1639 if (is_backend)
1640 fio_server_send_start(td);
1641
2e1df07d
JA
1642 INIT_FLIST_HEAD(&td->io_log_list);
1643 INIT_FLIST_HEAD(&td->io_hist_list);
1644 INIT_FLIST_HEAD(&td->verify_list);
1645 INIT_FLIST_HEAD(&td->trim_list);
2e1df07d
JA
1646 td->io_hist_tree = RB_ROOT;
1647
34febb23 1648 ret = mutex_cond_init_pshared(&td->io_u_lock, &td->free_cond);
f9e5b5ee 1649 if (ret) {
34febb23 1650 td_verror(td, ret, "mutex_cond_init_pshared");
f9e5b5ee
JK
1651 goto err;
1652 }
34febb23 1653 ret = cond_init_pshared(&td->verify_cond);
f9e5b5ee 1654 if (ret) {
34febb23 1655 td_verror(td, ret, "mutex_cond_pshared");
f9e5b5ee
JK
1656 goto err;
1657 }
2e1df07d
JA
1658
1659 td_set_runstate(td, TD_INITIALIZED);
971caeb1
BVA
1660 dprint(FD_MUTEX, "up startup_sem\n");
1661 fio_sem_up(startup_sem);
1662 dprint(FD_MUTEX, "wait on td->sem\n");
1663 fio_sem_down(td->sem);
1664 dprint(FD_MUTEX, "done waiting on td->sem\n");
2e1df07d 1665
2e1df07d
JA
1666 /*
1667 * A new gid requires privilege, so we need to do this before setting
1668 * the uid.
1669 */
4896473e 1670 if (o->gid != -1U && setgid(o->gid)) {
2e1df07d
JA
1671 td_verror(td, errno, "setgid");
1672 goto err;
1673 }
4896473e 1674 if (o->uid != -1U && setuid(o->uid)) {
2e1df07d
JA
1675 td_verror(td, errno, "setuid");
1676 goto err;
1677 }
1678
07776127
JA
1679 td_zone_gen_index(td);
1680
2354d810
JA
1681 /*
1682 * Do this early, we don't want the compress threads to be limited
1683 * to the same CPUs as the IO workers. So do this before we set
1684 * any potential CPU affinity
1685 */
1686 if (iolog_compress_init(td, sk_out))
1687 goto err;
1688
2e1df07d
JA
1689 /*
1690 * If we have a gettimeofday() thread, make sure we exclude that
1691 * thread from this job
1692 */
4896473e
JA
1693 if (o->gtod_cpu)
1694 fio_cpu_clear(&o->cpumask, o->gtod_cpu);
2e1df07d
JA
1695
1696 /*
1697 * Set affinity first, in case it has an impact on the memory
1698 * allocations.
1699 */
b2a9e649 1700 if (fio_option_is_set(o, cpumask)) {
c2acfbac 1701 if (o->cpus_allowed_policy == FIO_CPUS_SPLIT) {
30cb4c65 1702 ret = fio_cpus_split(&o->cpumask, td->thread_number - 1);
c2acfbac
JA
1703 if (!ret) {
1704 log_err("fio: no CPUs set\n");
1705 log_err("fio: Try increasing number of available CPUs\n");
1706 td_verror(td, EINVAL, "cpus_split");
1707 goto err;
1708 }
1709 }
28727df7
JA
1710 ret = fio_setaffinity(td->pid, o->cpumask);
1711 if (ret == -1) {
4896473e
JA
1712 td_verror(td, errno, "cpu_set_affinity");
1713 goto err;
1714 }
2e1df07d
JA
1715 }
1716
67bf9823 1717#ifdef CONFIG_LIBNUMA
d0b937ed 1718 /* numa node setup */
b2a9e649
JA
1719 if (fio_option_is_set(o, numa_cpunodes) ||
1720 fio_option_is_set(o, numa_memnodes)) {
43522848 1721 struct bitmask *mask;
d0b937ed
YR
1722
1723 if (numa_available() < 0) {
1724 td_verror(td, errno, "Does not support NUMA API\n");
1725 goto err;
1726 }
1727
b2a9e649 1728 if (fio_option_is_set(o, numa_cpunodes)) {
43522848
DG
1729 mask = numa_parse_nodestring(o->numa_cpunodes);
1730 ret = numa_run_on_node_mask(mask);
1731 numa_free_nodemask(mask);
d0b937ed
YR
1732 if (ret == -1) {
1733 td_verror(td, errno, \
1734 "numa_run_on_node_mask failed\n");
1735 goto err;
1736 }
1737 }
1738
b2a9e649 1739 if (fio_option_is_set(o, numa_memnodes)) {
43522848
DG
1740 mask = NULL;
1741 if (o->numa_memnodes)
1742 mask = numa_parse_nodestring(o->numa_memnodes);
1743
4896473e 1744 switch (o->numa_mem_mode) {
d0b937ed 1745 case MPOL_INTERLEAVE:
43522848 1746 numa_set_interleave_mask(mask);
d0b937ed
YR
1747 break;
1748 case MPOL_BIND:
43522848 1749 numa_set_membind(mask);
d0b937ed
YR
1750 break;
1751 case MPOL_LOCAL:
1752 numa_set_localalloc();
1753 break;
1754 case MPOL_PREFERRED:
4896473e 1755 numa_set_preferred(o->numa_mem_prefer_node);
d0b937ed
YR
1756 break;
1757 case MPOL_DEFAULT:
1758 default:
1759 break;
1760 }
1761
43522848
DG
1762 if (mask)
1763 numa_free_nodemask(mask);
1764
d0b937ed
YR
1765 }
1766 }
1767#endif
1768
9a3f1100
JA
1769 if (fio_pin_memory(td))
1770 goto err;
1771
2e1df07d
JA
1772 /*
1773 * May alter parameters that init_io_u() will use, so we need to
1774 * do this first.
1775 */
b153f94a 1776 if (!init_iolog(td))
2e1df07d
JA
1777 goto err;
1778
61b20c5c
NC
1779 /* ioprio_set() has to be done before td_io_init() */
1780 if (fio_option_is_set(o, ioprio) ||
1781 fio_option_is_set(o, ioprio_class)) {
1782 ret = ioprio_set(IOPRIO_WHO_PROCESS, 0, o->ioprio_class, o->ioprio);
1783 if (ret == -1) {
1784 td_verror(td, errno, "ioprio_set");
1785 goto err;
1786 }
1787 td->ioprio = ioprio_value(o->ioprio_class, o->ioprio);
2df7f081 1788 td->ts.ioprio = td->ioprio;
61b20c5c
NC
1789 }
1790
08dc3bd5
JA
1791 if (td_io_init(td))
1792 goto err;
1793
2e1df07d
JA
1794 if (init_io_u(td))
1795 goto err;
1796
2041bd34
JA
1797 if (td->io_ops->post_init && td->io_ops->post_init(td))
1798 goto err;
1799
4896473e 1800 if (o->verify_async && verify_async_init(td))
2e1df07d
JA
1801 goto err;
1802
4896473e 1803 if (o->cgroup && cgroup_setup(td, cgroup_list, &cgroup_mnt))
2e1df07d
JA
1804 goto err;
1805
649c10c5 1806 errno = 0;
4896473e 1807 if (nice(o->nice) == -1 && errno != 0) {
2e1df07d
JA
1808 td_verror(td, errno, "nice");
1809 goto err;
1810 }
1811
4896473e 1812 if (o->ioscheduler && switch_ioscheduler(td))
2e1df07d
JA
1813 goto err;
1814
4896473e 1815 if (!o->create_serialize && setup_files(td))
2e1df07d
JA
1816 goto err;
1817
4d832322 1818 if (!init_random_map(td))
2e1df07d
JA
1819 goto err;
1820
0518f09f 1821 if (o->exec_prerun && exec_string(o, o->exec_prerun, "prerun"))
4896473e 1822 goto err;
2e1df07d 1823
c139f3b4
JA
1824 if (o->pre_read && !pre_read_files(td))
1825 goto err;
2e1df07d 1826
dc5bfbb2
JA
1827 fio_verify_init(td);
1828
24660963 1829 if (rate_submit_init(td, sk_out))
a9da8ab2
JA
1830 goto err;
1831
d5b3cfd4 1832 set_epoch_time(td, o->log_unix_epoch | o->log_alternate_epoch, o->log_alternate_epoch_clock_id);
44404c5a 1833 fio_getrusage(&td->ru_start);
ac28d905
JA
1834 memcpy(&td->bw_sample_time, &td->epoch, sizeof(td->epoch));
1835 memcpy(&td->iops_sample_time, &td->epoch, sizeof(td->epoch));
16e56d25 1836 memcpy(&td->ss.prev_time, &td->epoch, sizeof(td->epoch));
ac28d905 1837
f7942acd
SK
1838 init_thinktime(td);
1839
ac28d905
JA
1840 if (o->ratemin[DDIR_READ] || o->ratemin[DDIR_WRITE] ||
1841 o->ratemin[DDIR_TRIM]) {
f5204b8a 1842 memcpy(&td->last_rate_check_time[DDIR_READ], &td->bw_sample_time,
ac28d905 1843 sizeof(td->bw_sample_time));
f5204b8a 1844 memcpy(&td->last_rate_check_time[DDIR_WRITE], &td->bw_sample_time,
ac28d905 1845 sizeof(td->bw_sample_time));
f5204b8a 1846 memcpy(&td->last_rate_check_time[DDIR_TRIM], &td->bw_sample_time,
ac28d905
JA
1847 sizeof(td->bw_sample_time));
1848 }
1849
48366f3a 1850 memset(bytes_done, 0, sizeof(bytes_done));
c16035aa 1851 clear_state = false;
48366f3a 1852
2e1df07d 1853 while (keep_running(td)) {
100f49f1
JA
1854 uint64_t verify_bytes;
1855
2e1df07d 1856 fio_gettime(&td->start, NULL);
8b6a404c 1857 memcpy(&td->ts_cache, &td->start, sizeof(td->start));
2e1df07d 1858
39c1c323 1859 if (clear_state) {
ac28d905 1860 clear_io_state(td, 0);
2e1df07d 1861
39c1c323 1862 if (o->unlink_each_loop && unlink_all_files(td))
1863 break;
1864 }
1865
2e1df07d
JA
1866 prune_io_piece_log(td);
1867
dcf9844e 1868 if (td->o.verify_only && td_write(td))
62167762 1869 verify_bytes = do_dry_run(td);
095196b1 1870 else {
95b03be0
JA
1871 do_io(td, bytes_done);
1872
1873 if (!ddir_rw_sum(bytes_done)) {
095196b1 1874 fio_mark_td_terminate(td);
95b03be0
JA
1875 verify_bytes = 0;
1876 } else {
1877 verify_bytes = bytes_done[DDIR_WRITE] +
1878 bytes_done[DDIR_TRIM];
1879 }
095196b1 1880 }
2e1df07d 1881
49f0b8e0
JA
1882 /*
1883 * If we took too long to shut down, the main thread could
1884 * already consider us reaped/exited. If that happens, break
1885 * out and clean up.
1886 */
1887 if (td->runstate >= TD_EXITED)
1888 break;
1889
c16035aa 1890 clear_state = true;
2e1df07d 1891
40c666c8
JA
1892 /*
1893 * Make sure we've successfully updated the rusage stats
1894 * before waiting on the stat mutex. Otherwise we could have
1895 * the stat thread holding stat mutex and waiting for
1896 * the rusage_sem, which would never get upped because
1897 * this thread is waiting for the stat mutex.
1898 */
ca0122d8 1899 deadlock_loop_cnt = 0;
39d13e67
JA
1900 do {
1901 check_update_rusage(td);
971caeb1 1902 if (!fio_sem_down_trylock(stat_sem))
39d13e67
JA
1903 break;
1904 usleep(1000);
ca0122d8 1905 if (deadlock_loop_cnt++ > 5000) {
971caeb1 1906 log_err("fio seems to be stuck grabbing stat_sem, forcibly exiting\n");
43f248c4 1907 td->error = EDEADLK;
ca0122d8
TT
1908 goto err;
1909 }
39d13e67 1910 } while (1);
40c666c8 1911
95603b74
BF
1912 if (td_read(td) && td->io_bytes[DDIR_READ])
1913 update_runtime(td, elapsed_us, DDIR_READ);
1914 if (td_write(td) && td->io_bytes[DDIR_WRITE])
1915 update_runtime(td, elapsed_us, DDIR_WRITE);
1916 if (td_trim(td) && td->io_bytes[DDIR_TRIM])
1917 update_runtime(td, elapsed_us, DDIR_TRIM);
e5437a07 1918 fio_gettime(&td->start, NULL);
971caeb1 1919 fio_sem_up(stat_sem);
2e1df07d
JA
1920
1921 if (td->error || td->terminate)
1922 break;
1923
4896473e
JA
1924 if (!o->do_verify ||
1925 o->verify == VERIFY_NONE ||
9b87f09b 1926 td_ioengine_flagged(td, FIO_UNIDIR))
2e1df07d
JA
1927 continue;
1928
2d44f2c6
SK
1929 clear_io_state(td, 0);
1930
2e1df07d
JA
1931 fio_gettime(&td->start, NULL);
1932
100f49f1 1933 do_verify(td, verify_bytes);
2e1df07d 1934
40c666c8
JA
1935 /*
1936 * See comment further up for why this is done here.
1937 */
1938 check_update_rusage(td);
1939
971caeb1 1940 fio_sem_down(stat_sem);
95603b74 1941 update_runtime(td, elapsed_us, DDIR_READ);
e5437a07 1942 fio_gettime(&td->start, NULL);
971caeb1 1943 fio_sem_up(stat_sem);
2e1df07d
JA
1944
1945 if (td->error || td->terminate)
1946 break;
1947 }
1948
817ae977
VF
1949 /*
1950 * Acquire this lock if we were doing overlap checking in
1951 * offload mode so that we don't clean up this job while
1952 * another thread is checking its io_u's for overlap
1953 */
a38c70a8
BVA
1954 if (td_offload_overlap(td)) {
1955 int res = pthread_mutex_lock(&overlap_check);
1956 assert(res == 0);
1957 }
2cea0b4c 1958 td_set_runstate(td, TD_FINISHING);
a38c70a8
BVA
1959 if (td_offload_overlap(td)) {
1960 res = pthread_mutex_unlock(&overlap_check);
1961 assert(res == 0);
1962 }
2cea0b4c 1963
2e1df07d 1964 update_rusage_stat(td);
2e1df07d 1965 td->ts.total_run_time = mtime_since_now(&td->epoch);
dde39f8c
AD
1966 for_each_rw_ddir(ddir) {
1967 td->ts.io_bytes[ddir] = td->io_bytes[ddir];
1968 }
2e1df07d 1969
ca09be4b 1970 if (td->o.verify_state_save && !(td->flags & TD_F_VSTATE_SAVED) &&
d264264a
JA
1971 (td->o.verify != VERIFY_NONE && td_write(td)))
1972 verify_save_state(td->thread_number);
ca09be4b 1973
9a3f1100
JA
1974 fio_unpin_memory(td);
1975
a47591e4 1976 td_writeout_logs(td, true);
2e1df07d 1977
155f2f02 1978 iolog_compress_exit(td);
103b174e 1979 rate_submit_exit(td);
aee2ab67 1980
4896473e 1981 if (o->exec_postrun)
0518f09f 1982 exec_string(o, o->exec_postrun, "postrun");
2e1df07d 1983
f9cafb12 1984 if (exitall_on_terminate || (o->exitall_error && td->error))
64402a8a 1985 fio_terminate_threads(td->groupid, td->o.exit_what);
2e1df07d
JA
1986
1987err:
1988 if (td->error)
1989 log_info("fio: pid=%d, err=%d/%s\n", (int) td->pid, td->error,
1990 td->verror);
1991
4896473e 1992 if (o->verify_async)
2e1df07d
JA
1993 verify_async_exit(td);
1994
1995 close_and_free_files(td);
2e1df07d 1996 cleanup_io_u(td);
32dbca2c 1997 close_ioengine(td);
c3dc516a 1998 cgroup_shutdown(td, cgroup_mnt);
ca09be4b 1999 verify_free_state(td);
07776127 2000 td_zone_free_index(td);
7c4d0fb7 2001
b2a9e649 2002 if (fio_option_is_set(o, cpumask)) {
8a1db9a1
JA
2003 ret = fio_cpuset_exit(&o->cpumask);
2004 if (ret)
2005 td_verror(td, ret, "fio_cpuset_exit");
2e1df07d
JA
2006 }
2007
2008 /*
2009 * do this very late, it will log file closing as well
2010 */
4896473e 2011 if (o->write_iolog_file)
2e1df07d 2012 write_iolog_close(td);
98e7161c
AK
2013 if (td->io_log_rfile)
2014 fclose(td->io_log_rfile);
2e1df07d
JA
2015
2016 td_set_runstate(td, TD_EXITED);
fda2cfac
JA
2017
2018 /*
2019 * Do this last after setting our runstate to exited, so we
2020 * know that the stat thread is signaled.
2021 */
2022 check_update_rusage(td);
2023
24660963 2024 sk_out_drop();
e43606c2 2025 return (void *) (uintptr_t) td->error;
2e1df07d
JA
2026}
2027
2e1df07d
JA
2028/*
2029 * Run over the job map and reap the threads that have exited, if any.
2030 */
90eff1c9
SW
2031static void reap_threads(unsigned int *nr_running, uint64_t *t_rate,
2032 uint64_t *m_rate)
2e1df07d
JA
2033{
2034 struct thread_data *td;
2035 unsigned int cputhreads, realthreads, pending;
2036 int i, status, ret;
2037
2038 /*
2039 * reap exited threads (TD_EXITED -> TD_REAPED)
2040 */
2041 realthreads = pending = cputhreads = 0;
2042 for_each_td(td, i) {
2043 int flags = 0;
2044
74ee1904 2045 if (!strcmp(td->o.ioengine, "cpuio"))
2e1df07d
JA
2046 cputhreads++;
2047 else
2048 realthreads++;
2049
2050 if (!td->pid) {
2051 pending++;
2052 continue;
2053 }
2054 if (td->runstate == TD_REAPED)
2055 continue;
2056 if (td->o.use_thread) {
2057 if (td->runstate == TD_EXITED) {
2058 td_set_runstate(td, TD_REAPED);
2059 goto reaped;
2060 }
2061 continue;
2062 }
2063
2064 flags = WNOHANG;
2065 if (td->runstate == TD_EXITED)
2066 flags = 0;
2067
2068 /*
2069 * check if someone quit or got killed in an unusual way
2070 */
2071 ret = waitpid(td->pid, &status, flags);
2072 if (ret < 0) {
2073 if (errno == ECHILD) {
2074 log_err("fio: pid=%d disappeared %d\n",
2075 (int) td->pid, td->runstate);
a5e371a6 2076 td->sig = ECHILD;
2e1df07d
JA
2077 td_set_runstate(td, TD_REAPED);
2078 goto reaped;
2079 }
2080 perror("waitpid");
2081 } else if (ret == td->pid) {
2082 if (WIFSIGNALED(status)) {
2083 int sig = WTERMSIG(status);
2084
36d80bc7 2085 if (sig != SIGTERM && sig != SIGUSR2)
2e1df07d
JA
2086 log_err("fio: pid=%d, got signal=%d\n",
2087 (int) td->pid, sig);
a5e371a6 2088 td->sig = sig;
2e1df07d
JA
2089 td_set_runstate(td, TD_REAPED);
2090 goto reaped;
2091 }
2092 if (WIFEXITED(status)) {
2093 if (WEXITSTATUS(status) && !td->error)
2094 td->error = WEXITSTATUS(status);
2095
2096 td_set_runstate(td, TD_REAPED);
2097 goto reaped;
2098 }
2099 }
2100
cba5460c
JA
2101 /*
2102 * If the job is stuck, do a forceful timeout of it and
2103 * move on.
2104 */
2105 if (td->terminate &&
2c45a4ac 2106 td->runstate < TD_FSYNCING &&
cba5460c 2107 time_since_now(&td->terminate_time) >= FIO_REAP_TIMEOUT) {
86310a1f
TK
2108 log_err("fio: job '%s' (state=%d) hasn't exited in "
2109 "%lu seconds, it appears to be stuck. Doing "
2110 "forceful exit of this job.\n",
2111 td->o.name, td->runstate,
2112 (unsigned long) time_since_now(&td->terminate_time));
cba5460c
JA
2113 td_set_runstate(td, TD_REAPED);
2114 goto reaped;
2115 }
2116
2e1df07d
JA
2117 /*
2118 * thread is not dead, continue
2119 */
2120 pending++;
2121 continue;
2122reaped:
2123 (*nr_running)--;
342f4be4
JA
2124 (*m_rate) -= ddir_rw_sum(td->o.ratemin);
2125 (*t_rate) -= ddir_rw_sum(td->o.rate);
2e1df07d
JA
2126 if (!td->pid)
2127 pending--;
2128
2129 if (td->error)
2130 exit_value++;
2131
2132 done_secs += mtime_since_now(&td->epoch) / 1000;
4a88752a 2133 profile_td_exit(td);
42e26e94 2134 flow_exit_job(td);
2e1df07d
JA
2135 }
2136
2137 if (*nr_running == cputhreads && !pending && realthreads)
64402a8a 2138 fio_terminate_threads(TERMINATE_ALL, TERMINATE_ALL);
2e1df07d
JA
2139}
2140
e39c0676 2141static bool __check_trigger_file(void)
ca09be4b
JA
2142{
2143 struct stat sb;
2144
2145 if (!trigger_file)
e39c0676 2146 return false;
ca09be4b
JA
2147
2148 if (stat(trigger_file, &sb))
e39c0676 2149 return false;
ca09be4b
JA
2150
2151 if (unlink(trigger_file) < 0)
2152 log_err("fio: failed to unlink %s: %s\n", trigger_file,
2153 strerror(errno));
2154
e39c0676 2155 return true;
ca09be4b
JA
2156}
2157
e39c0676 2158static bool trigger_timedout(void)
ca09be4b
JA
2159{
2160 if (trigger_timeout)
98413be7
SW
2161 if (time_since_genesis() >= trigger_timeout) {
2162 trigger_timeout = 0;
2163 return true;
2164 }
ca09be4b 2165
e39c0676 2166 return false;
ca09be4b
JA
2167}
2168
2169void exec_trigger(const char *cmd)
2170{
2171 int ret;
2172
98413be7 2173 if (!cmd || cmd[0] == '\0')
ca09be4b
JA
2174 return;
2175
2176 ret = system(cmd);
2177 if (ret == -1)
2178 log_err("fio: failed executing %s trigger\n", cmd);
2179}
2180
2181void check_trigger_file(void)
2182{
2183 if (__check_trigger_file() || trigger_timedout()) {
796fb3ce
JA
2184 if (nr_clients)
2185 fio_clients_send_trigger(trigger_remote_cmd);
2186 else {
d264264a 2187 verify_save_state(IO_LIST_ALL);
64402a8a 2188 fio_terminate_threads(TERMINATE_ALL, TERMINATE_ALL);
ca09be4b
JA
2189 exec_trigger(trigger_cmd);
2190 }
2191 }
2192}
2193
2194static int fio_verify_load_state(struct thread_data *td)
2195{
2196 int ret;
2197
2198 if (!td->o.verify_state)
2199 return 0;
2200
2201 if (is_backend) {
2202 void *data;
2203
2204 ret = fio_server_get_verify_state(td->o.name,
94a6e1bb 2205 td->thread_number - 1, &data);
ca09be4b 2206 if (!ret)
94a6e1bb 2207 verify_assign_state(td, data);
67710881
AK
2208 } else {
2209 char prefix[PATH_MAX];
2210
2211 if (aux_path)
2212 sprintf(prefix, "%s%clocal", aux_path,
2213 FIO_OS_PATH_SEPARATOR);
2214 else
2215 strcpy(prefix, "local");
2216 ret = verify_load_state(td, prefix);
2217 }
ca09be4b
JA
2218
2219 return ret;
2220}
2221
06464907
JA
2222static void do_usleep(unsigned int usecs)
2223{
2224 check_for_running_stats();
ca09be4b 2225 check_trigger_file();
06464907
JA
2226 usleep(usecs);
2227}
2228
e39c0676 2229static bool check_mount_writes(struct thread_data *td)
e81ecca3
JA
2230{
2231 struct fio_file *f;
2232 unsigned int i;
2233
2234 if (!td_write(td) || td->o.allow_mounted_write)
e39c0676 2235 return false;
e81ecca3 2236
5e81f9c1
TK
2237 /*
2238 * If FIO_HAVE_CHARDEV_SIZE is defined, it's likely that chrdevs
2239 * are mkfs'd and mounted.
2240 */
e81ecca3 2241 for_each_file(td, f, i) {
5e81f9c1
TK
2242#ifdef FIO_HAVE_CHARDEV_SIZE
2243 if (f->filetype != FIO_TYPE_BLOCK && f->filetype != FIO_TYPE_CHAR)
2244#else
686fbd31 2245 if (f->filetype != FIO_TYPE_BLOCK)
5e81f9c1 2246#endif
e81ecca3
JA
2247 continue;
2248 if (device_is_mounted(f->file_name))
2249 goto mounted;
2250 }
2251
e39c0676 2252 return false;
e81ecca3 2253mounted:
c5839011 2254 log_err("fio: %s appears mounted, and 'allow_mounted_write' isn't set. Aborting.\n", f->file_name);
e39c0676 2255 return true;
e81ecca3
JA
2256}
2257
9cc8cb91
AK
2258static bool waitee_running(struct thread_data *me)
2259{
2260 const char *waitee = me->o.wait_for;
2261 const char *self = me->o.name;
2262 struct thread_data *td;
2263 int i;
2264
2265 if (!waitee)
2266 return false;
2267
2268 for_each_td(td, i) {
2269 if (!strcmp(td->o.name, self) || strcmp(td->o.name, waitee))
2270 continue;
2271
2272 if (td->runstate < TD_EXITED) {
2273 dprint(FD_PROCESS, "%s fenced by %s(%s)\n",
2274 self, td->o.name,
2275 runstate_to_name(td->runstate));
2276 return true;
2277 }
2278 }
2279
2280 dprint(FD_PROCESS, "%s: %s completed, can run\n", self, waitee);
2281 return false;
2282}
2283
2e1df07d
JA
2284/*
2285 * Main function for kicking off and reaping jobs, as needed.
2286 */
24660963 2287static void run_threads(struct sk_out *sk_out)
2e1df07d
JA
2288{
2289 struct thread_data *td;
90eff1c9
SW
2290 unsigned int i, todo, nr_running, nr_started;
2291 uint64_t m_rate, t_rate;
0de5b26f 2292 uint64_t spent;
2e1df07d 2293
2e1df07d
JA
2294 if (fio_gtod_offload && fio_start_gtod_thread())
2295 return;
334185e9 2296
f2a2ce0e 2297 fio_idle_prof_init();
2e1df07d
JA
2298
2299 set_sig_handlers();
2300
3a5f6bde
JA
2301 nr_thread = nr_process = 0;
2302 for_each_td(td, i) {
e81ecca3
JA
2303 if (check_mount_writes(td))
2304 return;
3a5f6bde
JA
2305 if (td->o.use_thread)
2306 nr_thread++;
2307 else
2308 nr_process++;
2309 }
2310
01cfefcc 2311 if (output_format & FIO_OUTPUT_NORMAL) {
a41fc529
JA
2312 struct buf_output out;
2313
2314 buf_output_init(&out);
c2fcb6bc 2315 __log_buf(&out, "Starting ");
2e1df07d 2316 if (nr_thread)
c2fcb6bc 2317 __log_buf(&out, "%d thread%s", nr_thread,
2e1df07d
JA
2318 nr_thread > 1 ? "s" : "");
2319 if (nr_process) {
2320 if (nr_thread)
c2fcb6bc
JA
2321 __log_buf(&out, " and ");
2322 __log_buf(&out, "%d process%s", nr_process,
2e1df07d
JA
2323 nr_process > 1 ? "es" : "");
2324 }
c2fcb6bc 2325 __log_buf(&out, "\n");
a41fc529 2326 log_info_buf(out.buf, out.buflen);
d5bb0a89 2327 buf_output_free(&out);
2e1df07d
JA
2328 }
2329
2330 todo = thread_number;
2331 nr_running = 0;
2332 nr_started = 0;
2333 m_rate = t_rate = 0;
2334
2335 for_each_td(td, i) {
2336 print_status_init(td->thread_number - 1);
2337
d5e3f7cb 2338 if (!td->o.create_serialize)
2e1df07d
JA
2339 continue;
2340
ca09be4b
JA
2341 if (fio_verify_load_state(td))
2342 goto reap;
2343
2e1df07d
JA
2344 /*
2345 * do file setup here so it happens sequentially,
2346 * we don't want X number of threads getting their
2347 * client data interspersed on disk
2348 */
2349 if (setup_files(td)) {
ca09be4b 2350reap:
2e1df07d
JA
2351 exit_value++;
2352 if (td->error)
2353 log_err("fio: pid=%d, err=%d/%s\n",
2354 (int) td->pid, td->error, td->verror);
2355 td_set_runstate(td, TD_REAPED);
2356 todo--;
2357 } else {
2358 struct fio_file *f;
2359 unsigned int j;
2360
2361 /*
2362 * for sharing to work, each job must always open
2363 * its own files. so close them, if we opened them
2364 * for creation
2365 */
2366 for_each_file(td, f, j) {
2367 if (fio_file_open(f))
2368 td_io_close_file(td, f);
2369 }
2370 }
2371 }
2372
f2a2ce0e
HL
2373 /* start idle threads before io threads start to run */
2374 fio_idle_prof_start();
2375
2e1df07d
JA
2376 set_genesis_time();
2377
2378 while (todo) {
2379 struct thread_data *map[REAL_MAX_JOBS];
8b6a404c 2380 struct timespec this_start;
2e1df07d 2381 int this_jobs = 0, left;
ce8b6139 2382 struct fork_data *fd;
2e1df07d
JA
2383
2384 /*
2385 * create threads (TD_NOT_CREATED -> TD_CREATED)
2386 */
2387 for_each_td(td, i) {
2388 if (td->runstate != TD_NOT_CREATED)
2389 continue;
2390
2391 /*
2392 * never got a chance to start, killed by other
2393 * thread for some reason
2394 */
2395 if (td->terminate) {
2396 todo--;
2397 continue;
2398 }
2399
2400 if (td->o.start_delay) {
0de5b26f 2401 spent = utime_since_genesis();
2e1df07d 2402
74454ce4 2403 if (td->o.start_delay > spent)
2e1df07d
JA
2404 continue;
2405 }
2406
2407 if (td->o.stonewall && (nr_started || nr_running)) {
2408 dprint(FD_PROCESS, "%s: stonewall wait\n",
2409 td->o.name);
2410 break;
2411 }
2412
9cc8cb91
AK
2413 if (waitee_running(td)) {
2414 dprint(FD_PROCESS, "%s: waiting for %s\n",
2415 td->o.name, td->o.wait_for);
5c74fc76 2416 continue;
9cc8cb91
AK
2417 }
2418
2e1df07d
JA
2419 init_disk_util(td);
2420
971caeb1 2421 td->rusage_sem = fio_sem_init(FIO_SEM_LOCKED);
c97f1ad6
JA
2422 td->update_rusage = 0;
2423
2e1df07d
JA
2424 /*
2425 * Set state to created. Thread will transition
2426 * to TD_INITIALIZED when it's done setting up.
2427 */
2428 td_set_runstate(td, TD_CREATED);
2429 map[this_jobs++] = td;
2430 nr_started++;
2431
ce8b6139
JA
2432 fd = calloc(1, sizeof(*fd));
2433 fd->td = td;
2434 fd->sk_out = sk_out;
2435
2e1df07d
JA
2436 if (td->o.use_thread) {
2437 int ret;
2438
2439 dprint(FD_PROCESS, "will pthread_create\n");
2440 ret = pthread_create(&td->thread, NULL,
24660963 2441 thread_main, fd);
2e1df07d
JA
2442 if (ret) {
2443 log_err("pthread_create: %s\n",
2444 strerror(ret));
24660963 2445 free(fd);
2e1df07d
JA
2446 nr_started--;
2447 break;
2448 }
493dd6c1 2449 fd = NULL;
2e1df07d
JA
2450 ret = pthread_detach(td->thread);
2451 if (ret)
2452 log_err("pthread_detach: %s",
2453 strerror(ret));
2454 } else {
2455 pid_t pid;
6203763e 2456 void *eo;
2e1df07d 2457 dprint(FD_PROCESS, "will fork\n");
6203763e 2458 eo = td->eo;
807473c3 2459 read_barrier();
2e1df07d
JA
2460 pid = fork();
2461 if (!pid) {
ce8b6139 2462 int ret;
2e1df07d 2463
ce8b6139 2464 ret = (int)(uintptr_t)thread_main(fd);
2e1df07d
JA
2465 _exit(ret);
2466 } else if (i == fio_debug_jobno)
2467 *fio_debug_jobp = pid;
6203763e 2468 free(eo);
36aac34e
DP
2469 free(fd);
2470 fd = NULL;
2e1df07d 2471 }
971caeb1
BVA
2472 dprint(FD_MUTEX, "wait on startup_sem\n");
2473 if (fio_sem_down_timeout(startup_sem, 10000)) {
2e1df07d 2474 log_err("fio: job startup hung? exiting.\n");
64402a8a 2475 fio_terminate_threads(TERMINATE_ALL, TERMINATE_ALL);
f1867a7f 2476 fio_abort = true;
2e1df07d 2477 nr_started--;
6541f4e0 2478 free(fd);
2e1df07d
JA
2479 break;
2480 }
971caeb1 2481 dprint(FD_MUTEX, "done waiting on startup_sem\n");
2e1df07d
JA
2482 }
2483
2484 /*
2485 * Wait for the started threads to transition to
2486 * TD_INITIALIZED.
2487 */
2488 fio_gettime(&this_start, NULL);
2489 left = this_jobs;
2490 while (left && !fio_abort) {
2491 if (mtime_since_now(&this_start) > JOB_START_TIMEOUT)
2492 break;
2493
06464907 2494 do_usleep(100000);
2e1df07d
JA
2495
2496 for (i = 0; i < this_jobs; i++) {
2497 td = map[i];
2498 if (!td)
2499 continue;
2500 if (td->runstate == TD_INITIALIZED) {
2501 map[i] = NULL;
2502 left--;
2503 } else if (td->runstate >= TD_EXITED) {
2504 map[i] = NULL;
2505 left--;
2506 todo--;
2507 nr_running++; /* work-around... */
2508 }
2509 }
2510 }
2511
2512 if (left) {
4e87c37a
JA
2513 log_err("fio: %d job%s failed to start\n", left,
2514 left > 1 ? "s" : "");
2e1df07d
JA
2515 for (i = 0; i < this_jobs; i++) {
2516 td = map[i];
2517 if (!td)
2518 continue;
2519 kill(td->pid, SIGTERM);
2520 }
2521 break;
2522 }
2523
2524 /*
2525 * start created threads (TD_INITIALIZED -> TD_RUNNING).
2526 */
2527 for_each_td(td, i) {
2528 if (td->runstate != TD_INITIALIZED)
2529 continue;
2530
2531 if (in_ramp_time(td))
2532 td_set_runstate(td, TD_RAMP);
2533 else
2534 td_set_runstate(td, TD_RUNNING);
2535 nr_running++;
2536 nr_started--;
342f4be4
JA
2537 m_rate += ddir_rw_sum(td->o.ratemin);
2538 t_rate += ddir_rw_sum(td->o.rate);
2e1df07d 2539 todo--;
971caeb1 2540 fio_sem_up(td->sem);
2e1df07d
JA
2541 }
2542
2543 reap_threads(&nr_running, &t_rate, &m_rate);
2544
122c7725 2545 if (todo)
06464907 2546 do_usleep(100000);
2e1df07d
JA
2547 }
2548
2549 while (nr_running) {
2550 reap_threads(&nr_running, &t_rate, &m_rate);
06464907 2551 do_usleep(10000);
2e1df07d
JA
2552 }
2553
f2a2ce0e
HL
2554 fio_idle_prof_stop();
2555
2e1df07d 2556 update_io_ticks();
2e1df07d
JA
2557}
2558
27357187
JA
2559static void free_disk_util(void)
2560{
27357187 2561 disk_util_prune_entries();
a39fb9ea 2562 helper_thread_destroy();
2e1df07d
JA
2563}
2564
24660963 2565int fio_backend(struct sk_out *sk_out)
2e1df07d
JA
2566{
2567 struct thread_data *td;
2568 int i;
2569
2570 if (exec_profile) {
2571 if (load_profile(exec_profile))
2572 return 1;
2573 free(exec_profile);
2574 exec_profile = NULL;
2575 }
2576 if (!thread_number)
2577 return 0;
2578
2579 if (write_bw_log) {
aee2ab67
JA
2580 struct log_params p = {
2581 .log_type = IO_LOG_TYPE_BW,
2582 };
2583
2584 setup_log(&agg_io_log[DDIR_READ], &p, "agg-read_bw.log");
2585 setup_log(&agg_io_log[DDIR_WRITE], &p, "agg-write_bw.log");
2586 setup_log(&agg_io_log[DDIR_TRIM], &p, "agg-trim_bw.log");
2e1df07d
JA
2587 }
2588
c49cfc76
BD
2589 if (init_global_dedupe_working_set_seeds()) {
2590 log_err("fio: failed to initialize global dedupe working set\n");
2591 return 1;
2592 }
2593
971caeb1 2594 startup_sem = fio_sem_init(FIO_SEM_LOCKED);
24a97130
LC
2595 if (!sk_out)
2596 is_local_backend = true;
971caeb1 2597 if (startup_sem == NULL)
2e1df07d 2598 return 1;
2e1df07d
JA
2599
2600 set_genesis_time();
cef9175e 2601 stat_init();
998e9ebb
BVA
2602 if (helper_thread_create(startup_sem, sk_out))
2603 log_err("fio: failed to create helper thread\n");
2e1df07d
JA
2604
2605 cgroup_list = smalloc(sizeof(*cgroup_list));
b2e6494c
JA
2606 if (cgroup_list)
2607 INIT_FLIST_HEAD(cgroup_list);
2e1df07d 2608
24660963 2609 run_threads(sk_out);
2e1df07d 2610
a39fb9ea 2611 helper_thread_exit();
8aab824f 2612
2e1df07d 2613 if (!fio_abort) {
83f7b64e 2614 __show_run_stats();
2e1df07d 2615 if (write_bw_log) {
cb7e0ace
JA
2616 for (i = 0; i < DDIR_RWDIR_CNT; i++) {
2617 struct io_log *log = agg_io_log[i];
2618
60a25727 2619 flush_log(log, false);
518dac09 2620 free_log(log);
cb7e0ace 2621 }
2e1df07d
JA
2622 }
2623 }
2624
fda2cfac 2625 for_each_td(td, i) {
f0547200
NC
2626 struct thread_stat *ts = &td->ts;
2627
2628 free_clat_prio_stats(ts);
c27cc65f 2629 steadystate_free(td);
2e1df07d 2630 fio_options_free(td);
8009f543 2631 fio_dump_options_free(td);
8049adc1 2632 if (td->rusage_sem) {
971caeb1 2633 fio_sem_remove(td->rusage_sem);
8049adc1
JA
2634 td->rusage_sem = NULL;
2635 }
971caeb1
BVA
2636 fio_sem_remove(td->sem);
2637 td->sem = NULL;
fda2cfac 2638 }
2e1df07d 2639
a462baef 2640 free_disk_util();
b2e6494c
JA
2641 if (cgroup_list) {
2642 cgroup_kill(cgroup_list);
2643 sfree(cgroup_list);
2644 }
2e1df07d 2645
971caeb1 2646 fio_sem_remove(startup_sem);
cef9175e 2647 stat_exit();
2e1df07d
JA
2648 return exit_value;
2649}