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[fio.git] / fio.c
CommitLineData
ebac4655
JA
1/*
2 * fio - the flexible io tester
3 *
4 * Copyright (C) 2005 Jens Axboe <axboe@suse.de>
aae22ca7 5 * Copyright (C) 2006 Jens Axboe <axboe@kernel.dk>
ebac4655 6 *
8e9fe637
JA
7 * The license below covers all files distributed with fio unless otherwise
8 * noted in the file itself.
9 *
ebac4655 10 * This program is free software; you can redistribute it and/or modify
8e9fe637
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11 * it under the terms of the GNU General Public License version 2 as
12 * published by the Free Software Foundation.
ebac4655
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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
21 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
22 *
23 */
ebac4655
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24#include <unistd.h>
25#include <fcntl.h>
26#include <string.h>
ebac4655
JA
27#include <signal.h>
28#include <time.h>
dbe1125e 29#include <locale.h>
36167d82 30#include <assert.h>
ebac4655
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31#include <sys/stat.h>
32#include <sys/wait.h>
33#include <sys/ipc.h>
34#include <sys/shm.h>
ebac4655
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35#include <sys/mman.h>
36
37#include "fio.h"
38#include "os.h"
39
cfc99db7
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40unsigned long page_mask;
41unsigned long page_size;
29d610e1
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42#define ALIGN(buf) \
43 (char *) (((unsigned long) (buf) + page_mask) & ~page_mask)
ebac4655
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44
45int groupid = 0;
46int thread_number = 0;
9cedf167
JA
47int nr_process = 0;
48int nr_thread = 0;
ebac4655 49int shm_id = 0;
53cdc686 50int temp_stall_ts;
ebac4655 51
07739b57 52static struct fio_sem *startup_sem;
6ce15a32 53static volatile int fio_abort;
437c9b71 54static int exit_value;
ebac4655 55
bb3884d8
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56struct io_log *agg_io_log[2];
57
ebac4655 58#define TERMINATE_ALL (-1)
75154845 59#define JOB_START_TIMEOUT (5 * 1000)
ebac4655 60
6ce15a32
JA
61static inline void td_set_runstate(struct thread_data *td, int runstate)
62{
63 td->runstate = runstate;
64}
65
390c40e2 66static void terminate_threads(int group_id)
ebac4655 67{
34572e28 68 struct thread_data *td;
ebac4655
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69 int i;
70
34572e28 71 for_each_td(td, i) {
ebac4655 72 if (group_id == TERMINATE_ALL || groupid == td->groupid) {
c1302d44
JA
73 /*
74 * if the thread is running, just let it exit
75 */
76 if (td->runstate < TD_RUNNING)
77 kill(td->pid, SIGQUIT);
ebac4655 78 td->terminate = 1;
2dc1bbeb 79 td->o.start_delay = 0;
ebac4655
JA
80 }
81 }
82}
83
84static void sig_handler(int sig)
85{
86 switch (sig) {
87 case SIGALRM:
88 update_io_ticks();
89 disk_util_timer_arm();
90 print_thread_status();
91 break;
92 default:
6ce15a32 93 printf("\nfio: terminating on signal %d\n", sig);
ebac4655 94 fflush(stdout);
390c40e2 95 terminate_threads(TERMINATE_ALL);
ebac4655
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96 break;
97 }
98}
99
906c8d75
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100/*
101 * Check if we are above the minimum rate given.
102 */
ebac4655
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103static int check_min_rate(struct thread_data *td, struct timeval *now)
104{
0904200b 105 unsigned long long bytes = 0;
4e991c23 106 unsigned long iops = 0;
ebac4655
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107 unsigned long spent;
108 unsigned long rate;
ebac4655 109
780bf1a1
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110 /*
111 * No minimum rate set, always ok
112 */
2dc1bbeb 113 if (!td->o.ratemin && !td->o.rate_iops_min)
780bf1a1
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114 return 0;
115
ebac4655
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116 /*
117 * allow a 2 second settle period in the beginning
118 */
119 if (mtime_since(&td->start, now) < 2000)
120 return 0;
121
4e991c23
JA
122 if (td_read(td)) {
123 iops += td->io_blocks[DDIR_READ];
0904200b 124 bytes += td->this_io_bytes[DDIR_READ];
4e991c23
JA
125 }
126 if (td_write(td)) {
127 iops += td->io_blocks[DDIR_WRITE];
0904200b 128 bytes += td->this_io_bytes[DDIR_WRITE];
4e991c23 129 }
0904200b 130
ebac4655
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131 /*
132 * if rate blocks is set, sample is running
133 */
4e991c23 134 if (td->rate_bytes || td->rate_blocks) {
ebac4655 135 spent = mtime_since(&td->lastrate, now);
2dc1bbeb 136 if (spent < td->o.ratecycle)
ebac4655
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137 return 0;
138
2dc1bbeb 139 if (td->o.rate) {
4e991c23
JA
140 /*
141 * check bandwidth specified rate
142 */
143 if (bytes < td->rate_bytes) {
2dc1bbeb 144 log_err("%s: min rate %u not met\n", td->o.name, td->o.ratemin);
4e991c23
JA
145 return 1;
146 } else {
147 rate = (bytes - td->rate_bytes) / spent;
2dc1bbeb
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148 if (rate < td->o.ratemin || bytes < td->rate_bytes) {
149 log_err("%s: min rate %u not met, got %luKiB/sec\n", td->o.name, td->o.ratemin, rate);
4e991c23
JA
150 return 1;
151 }
152 }
413dd459 153 } else {
4e991c23
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154 /*
155 * checks iops specified rate
156 */
2dc1bbeb
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157 if (iops < td->o.rate_iops) {
158 log_err("%s: min iops rate %u not met\n", td->o.name, td->o.rate_iops);
413dd459 159 return 1;
4e991c23
JA
160 } else {
161 rate = (iops - td->rate_blocks) / spent;
2dc1bbeb
JA
162 if (rate < td->o.rate_iops_min || iops < td->rate_blocks) {
163 log_err("%s: min iops rate %u not met, got %lu\n", td->o.name, td->o.rate_iops_min, rate);
4e991c23 164 }
413dd459 165 }
ebac4655
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166 }
167 }
168
0904200b 169 td->rate_bytes = bytes;
4e991c23 170 td->rate_blocks = iops;
ebac4655
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171 memcpy(&td->lastrate, now, sizeof(*now));
172 return 0;
173}
174
175static inline int runtime_exceeded(struct thread_data *td, struct timeval *t)
176{
2dc1bbeb 177 if (!td->o.timeout)
ebac4655 178 return 0;
2dc1bbeb 179 if (mtime_since(&td->epoch, t) >= td->o.timeout * 1000)
ebac4655
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180 return 1;
181
182 return 0;
183}
184
906c8d75
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185/*
186 * When job exits, we can cancel the in-flight IO if we are using async
187 * io. Attempt to do so.
188 */
ebac4655
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189static void cleanup_pending_aio(struct thread_data *td)
190{
ebac4655 191 struct list_head *entry, *n;
ebac4655
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192 struct io_u *io_u;
193 int r;
194
195 /*
196 * get immediately available events, if any
197 */
d7762cf8 198 r = io_u_queued_complete(td, 0);
b2fdda43
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199 if (r < 0)
200 return;
ebac4655
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201
202 /*
203 * now cancel remaining active events
204 */
2866c82d 205 if (td->io_ops->cancel) {
ebac4655
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206 list_for_each_safe(entry, n, &td->io_u_busylist) {
207 io_u = list_entry(entry, struct io_u, list);
208
0c6e7517
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209 /*
210 * if the io_u isn't in flight, then that generally
211 * means someone leaked an io_u. complain but fix
212 * it up, so we don't stall here.
213 */
214 if ((io_u->flags & IO_U_F_FLIGHT) == 0) {
215 log_err("fio: non-busy IO on busy list\n");
ebac4655 216 put_io_u(td, io_u);
0c6e7517
JA
217 } else {
218 r = td->io_ops->cancel(td, io_u);
219 if (!r)
220 put_io_u(td, io_u);
221 }
ebac4655
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222 }
223 }
224
97601024 225 if (td->cur_depth)
d7762cf8 226 r = io_u_queued_complete(td, td->cur_depth);
ebac4655
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227}
228
858a3d47
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229/*
230 * Helper to handle the final sync of a file. Works just like the normal
231 * io path, just does everything sync.
232 */
233static int fio_io_sync(struct thread_data *td, struct fio_file *f)
234{
235 struct io_u *io_u = __get_io_u(td);
858a3d47
JA
236 int ret;
237
238 if (!io_u)
239 return 1;
240
241 io_u->ddir = DDIR_SYNC;
242 io_u->file = f;
243
244 if (td_io_prep(td, io_u)) {
245 put_io_u(td, io_u);
246 return 1;
247 }
248
755200a3 249requeue:
858a3d47 250 ret = td_io_queue(td, io_u);
36167d82 251 if (ret < 0) {
e1161c32 252 td_verror(td, io_u->error, "td_io_queue");
858a3d47 253 put_io_u(td, io_u);
858a3d47 254 return 1;
36167d82 255 } else if (ret == FIO_Q_QUEUED) {
d7762cf8 256 if (io_u_queued_complete(td, 1) < 0)
36167d82 257 return 1;
36167d82
JA
258 } else if (ret == FIO_Q_COMPLETED) {
259 if (io_u->error) {
e1161c32 260 td_verror(td, io_u->error, "td_io_queue");
36167d82
JA
261 return 1;
262 }
858a3d47 263
d7762cf8 264 if (io_u_sync_complete(td, io_u) < 0)
b2fdda43 265 return 1;
755200a3
JA
266 } else if (ret == FIO_Q_BUSY) {
267 if (td_io_commit(td))
268 return 1;
269 goto requeue;
858a3d47
JA
270 }
271
272 return 0;
273}
274
906c8d75 275/*
34403fb1 276 * The main verify engine. Runs over the writes we previously submitted,
906c8d75
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277 * reads the blocks back in, and checks the crc/md5 of the data.
278 */
1e97cce9 279static void do_verify(struct thread_data *td)
ebac4655 280{
53cdc686 281 struct fio_file *f;
36167d82 282 struct io_u *io_u;
af52b345
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283 int ret, min_events;
284 unsigned int i;
e5b401d4
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285
286 /*
287 * sync io first and invalidate cache, to make sure we really
288 * read from disk.
289 */
290 for_each_file(td, f, i) {
3d7b485f
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291 if (!(f->flags & FIO_FILE_OPEN))
292 continue;
b2fdda43
JA
293 if (fio_io_sync(td, f))
294 break;
295 if (file_invalidate_cache(td, f))
296 break;
e5b401d4 297 }
ebac4655 298
b2fdda43
JA
299 if (td->error)
300 return;
301
ebac4655
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302 td_set_runstate(td, TD_VERIFYING);
303
36167d82
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304 io_u = NULL;
305 while (!td->terminate) {
5451792e
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306 int ret2;
307
ebac4655
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308 io_u = __get_io_u(td);
309 if (!io_u)
310 break;
311
069c2918
JA
312 if (runtime_exceeded(td, &io_u->start_time)) {
313 put_io_u(td, io_u);
02bcaa8c 314 break;
069c2918 315 }
02bcaa8c 316
069c2918
JA
317 if (get_next_verify(td, io_u)) {
318 put_io_u(td, io_u);
ebac4655 319 break;
069c2918 320 }
ebac4655 321
069c2918
JA
322 if (td_io_prep(td, io_u)) {
323 put_io_u(td, io_u);
53cdc686 324 break;
069c2918 325 }
d7762cf8
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326
327 io_u->end_io = verify_io_u;
53cdc686 328
11786802 329 ret = td_io_queue(td, io_u);
36167d82
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330 switch (ret) {
331 case FIO_Q_COMPLETED:
332 if (io_u->error)
22819ec2 333 ret = -io_u->error;
9e9d164e 334 else if (io_u->resid) {
36167d82 335 int bytes = io_u->xfer_buflen - io_u->resid;
ebac4655 336
9e9d164e
JA
337 /*
338 * zero read, fail
339 */
340 if (!bytes) {
341 td_verror(td, ENODATA, "full resid");
342 put_io_u(td, io_u);
343 break;
344 }
36167d82
JA
345 io_u->xfer_buflen = io_u->resid;
346 io_u->xfer_buf += bytes;
11786802
JA
347 requeue_io_u(td, &io_u);
348 } else {
349 ret = io_u_sync_complete(td, io_u);
350 if (ret < 0)
351 break;
36167d82 352 }
36167d82
JA
353 continue;
354 case FIO_Q_QUEUED:
355 break;
755200a3
JA
356 case FIO_Q_BUSY:
357 requeue_io_u(td, &io_u);
5451792e
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358 ret2 = td_io_commit(td);
359 if (ret2 < 0)
360 ret = ret2;
755200a3 361 break;
36167d82
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362 default:
363 assert(ret < 0);
e1161c32 364 td_verror(td, -ret, "td_io_queue");
ebac4655
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365 break;
366 }
367
99784632 368 if (ret < 0 || td->error)
3af6ef39
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369 break;
370
ebac4655 371 /*
3af6ef39
JA
372 * if we can queue more, do so. but check if there are
373 * completed io_u's first.
ebac4655 374 */
97601024 375 min_events = 0;
e916b390 376 if (queue_full(td) || ret == FIO_Q_BUSY) {
3af6ef39 377 min_events = 1;
3af6ef39 378
2dc1bbeb
JA
379 if (td->cur_depth > td->o.iodepth_low)
380 min_events = td->cur_depth - td->o.iodepth_low;
e916b390
JA
381 }
382
3af6ef39
JA
383 /*
384 * Reap required number of io units, if any, and do the
385 * verification on them through the callback handler
386 */
d7762cf8 387 if (io_u_queued_complete(td, min_events) < 0)
ebac4655 388 break;
36167d82 389 }
ebac4655 390
c01c0395
JA
391 if (!td->error) {
392 min_events = td->cur_depth;
393
394 if (min_events)
395 ret = io_u_queued_complete(td, min_events);
396 } else
ebac4655
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397 cleanup_pending_aio(td);
398
399 td_set_runstate(td, TD_RUNNING);
400}
401
32cd46a0 402/*
906c8d75 403 * Main IO worker function. It retrieves io_u's to process and queues
32cd46a0
JA
404 * and reaps them, checking for rate and errors along the way.
405 */
ebac4655
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406static void do_io(struct thread_data *td)
407{
02bcaa8c 408 struct timeval s;
ebac4655 409 unsigned long usec;
af52b345
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410 unsigned int i;
411 int ret = 0;
ebac4655 412
5853e5a8
JA
413 td_set_runstate(td, TD_RUNNING);
414
3951414d 415 while ((td->this_io_bytes[0] + td->this_io_bytes[1]) < td->io_size) {
97601024
JA
416 struct timeval comp_time;
417 long bytes_done = 0;
84585003 418 int min_evts = 0;
ebac4655 419 struct io_u *io_u;
5451792e 420 int ret2;
ebac4655
JA
421
422 if (td->terminate)
423 break;
424
3d7c391d 425 io_u = get_io_u(td);
ebac4655
JA
426 if (!io_u)
427 break;
428
429 memcpy(&s, &io_u->start_time, sizeof(s));
97601024
JA
430
431 if (runtime_exceeded(td, &s)) {
432 put_io_u(td, io_u);
433 break;
434 }
36167d82 435
11786802 436 ret = td_io_queue(td, io_u);
36167d82
JA
437 switch (ret) {
438 case FIO_Q_COMPLETED:
5451792e
JA
439 if (io_u->error)
440 ret = -io_u->error;
9e9d164e 441 else if (io_u->resid) {
36167d82
JA
442 int bytes = io_u->xfer_buflen - io_u->resid;
443
9e9d164e
JA
444 /*
445 * zero read, fail
446 */
447 if (!bytes) {
448 td_verror(td, ENODATA, "full resid");
449 put_io_u(td, io_u);
450 break;
451 }
452
cec6b55d 453 io_u->xfer_buflen = io_u->resid;
36167d82 454 io_u->xfer_buf += bytes;
11786802
JA
455 requeue_io_u(td, &io_u);
456 } else {
457 fio_gettime(&comp_time, NULL);
458 bytes_done = io_u_sync_complete(td, io_u);
459 if (bytes_done < 0)
460 ret = bytes_done;
cec6b55d 461 }
36167d82
JA
462 break;
463 case FIO_Q_QUEUED:
7e77dd02
JA
464 /*
465 * if the engine doesn't have a commit hook,
466 * the io_u is really queued. if it does have such
467 * a hook, it has to call io_u_queued() itself.
468 */
469 if (td->io_ops->commit == NULL)
470 io_u_queued(td, io_u);
36167d82 471 break;
755200a3
JA
472 case FIO_Q_BUSY:
473 requeue_io_u(td, &io_u);
5451792e
JA
474 ret2 = td_io_commit(td);
475 if (ret2 < 0)
476 ret = ret2;
755200a3 477 break;
36167d82
JA
478 default:
479 assert(ret < 0);
480 put_io_u(td, io_u);
481 break;
ebac4655
JA
482 }
483
99784632 484 if (ret < 0 || td->error)
36167d82
JA
485 break;
486
97601024
JA
487 /*
488 * See if we need to complete some commands
489 */
755200a3 490 if (ret == FIO_Q_QUEUED || ret == FIO_Q_BUSY) {
97601024 491 min_evts = 0;
e916b390 492 if (queue_full(td) || ret == FIO_Q_BUSY) {
36167d82 493 min_evts = 1;
ebac4655 494
2dc1bbeb
JA
495 if (td->cur_depth > td->o.iodepth_low)
496 min_evts = td->cur_depth - td->o.iodepth_low;
e916b390
JA
497 }
498
97601024 499 fio_gettime(&comp_time, NULL);
d7762cf8 500 bytes_done = io_u_queued_complete(td, min_evts);
97601024 501 if (bytes_done < 0)
36167d82 502 break;
ebac4655
JA
503 }
504
97601024
JA
505 if (!bytes_done)
506 continue;
507
ebac4655
JA
508 /*
509 * the rate is batched for now, it should work for batches
510 * of completions except the very first one which may look
511 * a little bursty
512 */
97601024 513 usec = utime_since(&s, &comp_time);
ebac4655 514
413dd459 515 rate_throttle(td, usec, bytes_done);
ebac4655 516
97601024 517 if (check_min_rate(td, &comp_time)) {
98aa62d8 518 if (exitall_on_terminate)
390c40e2 519 terminate_threads(td->groupid);
e1161c32 520 td_verror(td, ENODATA, "check_min_rate");
ebac4655
JA
521 break;
522 }
523
2dc1bbeb 524 if (td->o.thinktime) {
9c1f7434
JA
525 unsigned long long b;
526
527 b = td->io_blocks[0] + td->io_blocks[1];
2dc1bbeb 528 if (!(b % td->o.thinktime_blocks)) {
48097d5c
JA
529 int left;
530
2dc1bbeb
JA
531 if (td->o.thinktime_spin)
532 __usec_sleep(td->o.thinktime_spin);
48097d5c 533
2dc1bbeb 534 left = td->o.thinktime - td->o.thinktime_spin;
48097d5c
JA
535 if (left)
536 usec_sleep(td, left);
537 }
9c1f7434 538 }
ebac4655
JA
539 }
540
4d2413c6 541 if (!td->error) {
3d7c391d
JA
542 struct fio_file *f;
543
c01c0395
JA
544 i = td->cur_depth;
545 if (i)
546 ret = io_u_queued_complete(td, i);
ebac4655 547
2dc1bbeb 548 if (should_fsync(td) && td->o.end_fsync) {
84585003 549 td_set_runstate(td, TD_FSYNCING);
3d7b485f
JA
550
551 for_each_file(td, f, i) {
552 if (!(f->flags & FIO_FILE_OPEN))
553 continue;
858a3d47 554 fio_io_sync(td, f);
3d7b485f 555 }
84585003 556 }
c01c0395
JA
557 } else
558 cleanup_pending_aio(td);
ebac4655
JA
559}
560
ebac4655
JA
561static void cleanup_io_u(struct thread_data *td)
562{
563 struct list_head *entry, *n;
564 struct io_u *io_u;
565
566 list_for_each_safe(entry, n, &td->io_u_freelist) {
567 io_u = list_entry(entry, struct io_u, list);
568
569 list_del(&io_u->list);
570 free(io_u);
571 }
572
2f9ade3c 573 free_io_mem(td);
ebac4655
JA
574}
575
6b9cea23
JA
576/*
577 * "randomly" fill the buffer contents
578 */
66eeb296 579static void fill_rand_buf(struct io_u *io_u, int max_bs)
6b9cea23 580{
66eeb296 581 int *ptr = io_u->buf;
6b9cea23
JA
582
583 while ((void *) ptr - io_u->buf < max_bs) {
584 *ptr = rand() * 0x9e370001;
585 ptr++;
586 }
587}
588
ebac4655
JA
589static int init_io_u(struct thread_data *td)
590{
2b4ce34f 591 unsigned long long buf_size;
ebac4655 592 struct io_u *io_u;
a00735e6 593 unsigned int max_bs;
ebac4655
JA
594 int i, max_units;
595 char *p;
596
2866c82d 597 if (td->io_ops->flags & FIO_SYNCIO)
ebac4655
JA
598 max_units = 1;
599 else
2dc1bbeb 600 max_units = td->o.iodepth;
ebac4655 601
2dc1bbeb 602 max_bs = max(td->o.max_bs[DDIR_READ], td->o.max_bs[DDIR_WRITE]);
2b4ce34f
JA
603 buf_size = (unsigned long long) max_bs * (unsigned long long) max_units;
604 buf_size += page_mask;
605 if (buf_size != (size_t) buf_size) {
606 log_err("fio: IO memory too large. Reduce max_bs or iodepth\n");
607 return 1;
608 }
609
610 td->orig_buffer_size = buf_size;
74b025b0 611
2dc1bbeb
JA
612 if (td->o.mem_type == MEM_SHMHUGE || td->o.mem_type == MEM_MMAPHUGE)
613 td->orig_buffer_size = (td->orig_buffer_size + td->o.hugepage_size - 1) & ~(td->o.hugepage_size - 1);
4afbf66f
JA
614 else if (td->orig_buffer_size & page_mask)
615 td->orig_buffer_size = (td->orig_buffer_size + page_mask) & ~page_mask;
ebac4655 616
2f9ade3c
JA
617 if (allocate_io_mem(td))
618 return 1;
ebac4655 619
ebac4655
JA
620 p = ALIGN(td->orig_buffer);
621 for (i = 0; i < max_units; i++) {
622 io_u = malloc(sizeof(*io_u));
623 memset(io_u, 0, sizeof(*io_u));
624 INIT_LIST_HEAD(&io_u->list);
625
a00735e6 626 io_u->buf = p + max_bs * i;
6b9cea23 627 if (td_write(td) || td_rw(td))
a00735e6 628 fill_rand_buf(io_u, max_bs);
6b9cea23 629
b1ff3403 630 io_u->index = i;
0c6e7517 631 io_u->flags = IO_U_F_FREE;
ebac4655
JA
632 list_add(&io_u->list, &td->io_u_freelist);
633 }
634
433afcb4
JA
635 io_u_init_timeout();
636
ebac4655
JA
637 return 0;
638}
639
da86774e
JA
640static int switch_ioscheduler(struct thread_data *td)
641{
642 char tmp[256], tmp2[128];
643 FILE *f;
644 int ret;
645
ba0fbe10 646 if (td->io_ops->flags & FIO_DISKLESSIO)
f48b467c
JA
647 return 0;
648
da86774e
JA
649 sprintf(tmp, "%s/queue/scheduler", td->sysfs_root);
650
651 f = fopen(tmp, "r+");
652 if (!f) {
e1161c32 653 td_verror(td, errno, "fopen");
da86774e
JA
654 return 1;
655 }
656
657 /*
658 * Set io scheduler.
659 */
2dc1bbeb 660 ret = fwrite(td->o.ioscheduler, strlen(td->o.ioscheduler), 1, f);
da86774e 661 if (ferror(f) || ret != 1) {
e1161c32 662 td_verror(td, errno, "fwrite");
da86774e
JA
663 fclose(f);
664 return 1;
665 }
666
667 rewind(f);
668
669 /*
670 * Read back and check that the selected scheduler is now the default.
671 */
672 ret = fread(tmp, 1, sizeof(tmp), f);
673 if (ferror(f) || ret < 0) {
e1161c32 674 td_verror(td, errno, "fread");
da86774e
JA
675 fclose(f);
676 return 1;
677 }
678
2dc1bbeb 679 sprintf(tmp2, "[%s]", td->o.ioscheduler);
da86774e 680 if (!strstr(tmp, tmp2)) {
2dc1bbeb 681 log_err("fio: io scheduler %s not found\n", td->o.ioscheduler);
e1161c32 682 td_verror(td, EINVAL, "iosched_switch");
da86774e
JA
683 fclose(f);
684 return 1;
685 }
686
687 fclose(f);
688 return 0;
689}
690
a978ba68 691static int clear_io_state(struct thread_data *td)
ebac4655 692{
53cdc686 693 struct fio_file *f;
af52b345
JA
694 unsigned int i;
695 int ret;
ebac4655 696
756867bd 697 td->ts.stat_io_bytes[0] = td->ts.stat_io_bytes[1] = 0;
ebac4655 698 td->this_io_bytes[0] = td->this_io_bytes[1] = 0;
20dc95c4 699 td->zone_bytes = 0;
d7d3b49b 700 td->rate_bytes = 0;
4e991c23 701 td->rate_blocks = 0;
ebac4655 702
c1324df1
JA
703 td->last_was_sync = 0;
704
a978ba68
JA
705 for_each_file(td, f, i)
706 td_io_close_file(td, f);
53cdc686 707
a978ba68
JA
708 ret = 0;
709 for_each_file(td, f, i) {
710 ret = td_io_open_file(td, f);
711 if (ret)
712 break;
53cdc686 713 }
a978ba68
JA
714
715 return ret;
ebac4655
JA
716}
717
906c8d75
JA
718/*
719 * Entry point for the thread based jobs. The process based jobs end up
720 * here as well, after a little setup.
721 */
ebac4655
JA
722static void *thread_main(void *data)
723{
69008999 724 unsigned long long runtime[2];
ebac4655 725 struct thread_data *td = data;
a978ba68 726 int clear_state;
ebac4655 727
2dc1bbeb 728 if (!td->o.use_thread)
ebac4655
JA
729 setsid();
730
731 td->pid = getpid();
732
aea47d44
JA
733 INIT_LIST_HEAD(&td->io_u_freelist);
734 INIT_LIST_HEAD(&td->io_u_busylist);
755200a3 735 INIT_LIST_HEAD(&td->io_u_requeues);
aea47d44
JA
736 INIT_LIST_HEAD(&td->io_hist_list);
737 INIT_LIST_HEAD(&td->io_log_list);
738
ebac4655 739 if (init_io_u(td))
bda4fd9e 740 goto err_sem;
ebac4655
JA
741
742 if (fio_setaffinity(td) == -1) {
e1161c32 743 td_verror(td, errno, "cpu_set_affinity");
bda4fd9e 744 goto err_sem;
ebac4655
JA
745 }
746
aea47d44 747 if (init_iolog(td))
bda4fd9e 748 goto err_sem;
aea47d44 749
ebac4655
JA
750 if (td->ioprio) {
751 if (ioprio_set(IOPRIO_WHO_PROCESS, 0, td->ioprio) == -1) {
e1161c32 752 td_verror(td, errno, "ioprio_set");
bda4fd9e 753 goto err_sem;
ebac4655
JA
754 }
755 }
756
2dc1bbeb 757 if (nice(td->o.nice) == -1) {
e1161c32 758 td_verror(td, errno, "nice");
bda4fd9e 759 goto err_sem;
b6f4d880
JA
760 }
761
2dc1bbeb 762 if (td->o.ioscheduler && switch_ioscheduler(td))
bda4fd9e 763 goto err_sem;
da86774e 764
75154845 765 td_set_runstate(td, TD_INITIALIZED);
07739b57
JA
766 fio_sem_up(startup_sem);
767 fio_sem_down(td->mutex);
ebac4655 768
37f56873
JA
769 /*
770 * the ->mutex semaphore is now no longer used, close it to avoid
771 * eating a file descriptor
772 */
773 fio_sem_remove(td->mutex);
774
2dc1bbeb 775 if (!td->o.create_serialize && setup_files(td))
ebac4655
JA
776 goto err;
777
7d6c5283
JA
778 if (td_io_init(td))
779 goto err;
780
b5af8293
JA
781 if (open_files(td))
782 goto err;
783
68727076
JA
784 if (init_random_map(td))
785 goto err;
786
2dc1bbeb
JA
787 if (td->o.exec_prerun) {
788 if (system(td->o.exec_prerun) < 0)
69cfd7e0
JA
789 goto err;
790 }
4e0ba8af 791
69008999 792 fio_gettime(&td->epoch, NULL);
433afcb4 793 memcpy(&td->timeout_end, &td->epoch, sizeof(td->epoch));
756867bd 794 getrusage(RUSAGE_SELF, &td->ts.ru_start);
69008999
JA
795
796 runtime[0] = runtime[1] = 0;
a978ba68 797 clear_state = 0;
2dc1bbeb 798 while (td->o.loops--) {
02bcaa8c 799 fio_gettime(&td->start, NULL);
756867bd 800 memcpy(&td->ts.stat_sample_time, &td->start, sizeof(td->start));
ebac4655 801
2dc1bbeb 802 if (td->o.ratemin)
756867bd 803 memcpy(&td->lastrate, &td->ts.stat_sample_time, sizeof(td->lastrate));
ebac4655 804
a978ba68
JA
805 if (clear_state && clear_io_state(td))
806 break;
807
ebac4655
JA
808 prune_io_piece_log(td);
809
ba0fbe10 810 do_io(td);
ebac4655 811
a978ba68
JA
812 clear_state = 1;
813
413dd459
JA
814 if (td_read(td) && td->io_bytes[DDIR_READ])
815 runtime[DDIR_READ] += utime_since_now(&td->start);
816 if (td_write(td) && td->io_bytes[DDIR_WRITE])
817 runtime[DDIR_WRITE] += utime_since_now(&td->start);
818
ebac4655
JA
819 if (td->error || td->terminate)
820 break;
821
2dc1bbeb 822 if (td->o.verify == VERIFY_NONE)
ebac4655
JA
823 continue;
824
a978ba68
JA
825 if (clear_io_state(td))
826 break;
827
02bcaa8c 828 fio_gettime(&td->start, NULL);
ebac4655
JA
829
830 do_verify(td);
831
69008999 832 runtime[DDIR_READ] += utime_since_now(&td->start);
ebac4655
JA
833
834 if (td->error || td->terminate)
835 break;
836 }
837
36dff966 838 update_rusage_stat(td);
756867bd
JA
839 td->ts.runtime[0] = runtime[0] / 1000;
840 td->ts.runtime[1] = runtime[1] / 1000;
841 td->ts.total_run_time = mtime_since_now(&td->epoch);
842 td->ts.io_bytes[0] = td->io_bytes[0];
843 td->ts.io_bytes[1] = td->io_bytes[1];
844
845 if (td->ts.bw_log)
846 finish_log(td, td->ts.bw_log, "bw");
847 if (td->ts.slat_log)
848 finish_log(td, td->ts.slat_log, "slat");
849 if (td->ts.clat_log)
850 finish_log(td, td->ts.clat_log, "clat");
2dc1bbeb 851 if (td->o.write_iolog_file)
843a7413 852 write_iolog_close(td);
2dc1bbeb
JA
853 if (td->o.exec_postrun) {
854 if (system(td->o.exec_postrun) < 0)
855 log_err("fio: postrun %s failed\n", td->o.exec_postrun);
69cfd7e0 856 }
ebac4655
JA
857
858 if (exitall_on_terminate)
390c40e2 859 terminate_threads(td->groupid);
ebac4655
JA
860
861err:
5bf13a5a
JA
862 if (td->error)
863 printf("fio: pid=%d, err=%d/%s\n", td->pid, td->error, td->verror);
53cdc686 864 close_files(td);
2866c82d 865 close_ioengine(td);
ebac4655 866 cleanup_io_u(td);
ebac4655 867 td_set_runstate(td, TD_EXITED);
43d76807 868 return (void *) (unsigned long) td->error;
bda4fd9e
JA
869err_sem:
870 fio_sem_up(startup_sem);
871 goto err;
ebac4655
JA
872}
873
906c8d75
JA
874/*
875 * We cannot pass the td data into a forked process, so attach the td and
876 * pass it to the thread worker.
877 */
a6418147 878static int fork_main(int shmid, int offset)
ebac4655
JA
879{
880 struct thread_data *td;
a6418147 881 void *data, *ret;
ebac4655
JA
882
883 data = shmat(shmid, NULL, 0);
884 if (data == (void *) -1) {
a6418147
JA
885 int __err = errno;
886
ebac4655 887 perror("shmat");
a6418147 888 return __err;
ebac4655
JA
889 }
890
891 td = data + offset * sizeof(struct thread_data);
a6418147 892 ret = thread_main(td);
ebac4655 893 shmdt(data);
43d76807 894 return (int) (unsigned long) ret;
ebac4655
JA
895}
896
906c8d75
JA
897/*
898 * Run over the job map and reap the threads that have exited, if any.
899 */
ebac4655
JA
900static void reap_threads(int *nr_running, int *t_rate, int *m_rate)
901{
34572e28 902 struct thread_data *td;
fab6aa71 903 int i, cputhreads, pending, status, ret;
ebac4655
JA
904
905 /*
906 * reap exited threads (TD_EXITED -> TD_REAPED)
907 */
4d2413c6 908 pending = cputhreads = 0;
34572e28 909 for_each_td(td, i) {
3707f45b 910 int flags = 0;
a2f77c9f 911
84585003
JA
912 /*
913 * ->io_ops is NULL for a thread that has closed its
914 * io engine
915 */
ba0fbe10 916 if (td->io_ops && !strcmp(td->io_ops->name, "cpuio"))
b990b5c0
JA
917 cputhreads++;
918
a2f77c9f
JA
919 if (!td->pid || td->runstate == TD_REAPED)
920 continue;
2dc1bbeb 921 if (td->o.use_thread) {
3707f45b
JA
922 if (td->runstate == TD_EXITED) {
923 td_set_runstate(td, TD_REAPED);
924 goto reaped;
925 }
926 continue;
927 }
a2f77c9f
JA
928
929 flags = WNOHANG;
930 if (td->runstate == TD_EXITED)
931 flags = 0;
932
933 /*
934 * check if someone quit or got killed in an unusual way
935 */
936 ret = waitpid(td->pid, &status, flags);
3707f45b 937 if (ret < 0) {
a2f77c9f
JA
938 if (errno == ECHILD) {
939 log_err("fio: pid=%d disappeared %d\n", td->pid, td->runstate);
940 td_set_runstate(td, TD_REAPED);
941 goto reaped;
942 }
943 perror("waitpid");
944 } else if (ret == td->pid) {
945 if (WIFSIGNALED(status)) {
fab6aa71
JA
946 int sig = WTERMSIG(status);
947
d9244941
JA
948 if (sig != SIGQUIT)
949 log_err("fio: pid=%d, got signal=%d\n", td->pid, sig);
fab6aa71
JA
950 td_set_runstate(td, TD_REAPED);
951 goto reaped;
952 }
a2f77c9f
JA
953 if (WIFEXITED(status)) {
954 if (WEXITSTATUS(status) && !td->error)
955 td->error = WEXITSTATUS(status);
a2f77c9f 956
a2f77c9f
JA
957 td_set_runstate(td, TD_REAPED);
958 goto reaped;
a6418147
JA
959 }
960 }
ebac4655 961
a2f77c9f
JA
962 /*
963 * thread is not dead, continue
964 */
965 continue;
fab6aa71 966reaped:
2dc1bbeb 967 if (td->o.use_thread) {
3707f45b
JA
968 long ret;
969
970 if (pthread_join(td->thread, (void *) &ret))
971 perror("pthread_join");
972 }
973
ebac4655 974 (*nr_running)--;
2dc1bbeb
JA
975 (*m_rate) -= td->o.ratemin;
976 (*t_rate) -= td->o.rate;
a2f77c9f
JA
977
978 if (td->error)
979 exit_value++;
ebac4655 980 }
b990b5c0 981
4d2413c6 982 if (*nr_running == cputhreads && !pending)
390c40e2 983 terminate_threads(TERMINATE_ALL);
ebac4655
JA
984}
985
906c8d75
JA
986/*
987 * Main function for kicking off and reaping jobs, as needed.
988 */
ebac4655
JA
989static void run_threads(void)
990{
ebac4655
JA
991 struct thread_data *td;
992 unsigned long spent;
993 int i, todo, nr_running, m_rate, t_rate, nr_started;
fcb6ade2 994
2f9ade3c
JA
995 if (fio_pin_memory())
996 return;
ebac4655 997
c6ae0a5b 998 if (!terse_output) {
9cedf167
JA
999 printf("Starting ");
1000 if (nr_thread)
1001 printf("%d thread%s", nr_thread, nr_thread > 1 ? "s" : "");
1002 if (nr_process) {
1003 if (nr_thread)
1004 printf(" and ");
1005 printf("%d process%s", nr_process, nr_process > 1 ? "es" : "");
1006 }
1007 printf("\n");
c6ae0a5b
JA
1008 fflush(stdout);
1009 }
c04f7ec3 1010
4efa970e
JA
1011 signal(SIGINT, sig_handler);
1012 signal(SIGALRM, sig_handler);
1013
ebac4655
JA
1014 todo = thread_number;
1015 nr_running = 0;
1016 nr_started = 0;
1017 m_rate = t_rate = 0;
1018
34572e28 1019 for_each_td(td, i) {
263e529f 1020 print_status_init(td->thread_number - 1);
ebac4655 1021
2dc1bbeb 1022 if (!td->o.create_serialize) {
380cf265 1023 init_disk_util(td);
ebac4655 1024 continue;
380cf265 1025 }
ebac4655
JA
1026
1027 /*
1028 * do file setup here so it happens sequentially,
1029 * we don't want X number of threads getting their
1030 * client data interspersed on disk
1031 */
53cdc686 1032 if (setup_files(td)) {
5bf13a5a
JA
1033 exit_value++;
1034 if (td->error)
1035 log_err("fio: pid=%d, err=%d/%s\n", td->pid, td->error, td->verror);
ebac4655
JA
1036 td_set_runstate(td, TD_REAPED);
1037 todo--;
1038 }
380cf265
JA
1039
1040 init_disk_util(td);
ebac4655
JA
1041 }
1042
a2f77c9f
JA
1043 set_genesis_time();
1044
ebac4655 1045 while (todo) {
75154845
JA
1046 struct thread_data *map[MAX_JOBS];
1047 struct timeval this_start;
1048 int this_jobs = 0, left;
1049
ebac4655
JA
1050 /*
1051 * create threads (TD_NOT_CREATED -> TD_CREATED)
1052 */
34572e28 1053 for_each_td(td, i) {
ebac4655
JA
1054 if (td->runstate != TD_NOT_CREATED)
1055 continue;
1056
1057 /*
1058 * never got a chance to start, killed by other
1059 * thread for some reason
1060 */
1061 if (td->terminate) {
1062 todo--;
1063 continue;
1064 }
1065
2dc1bbeb 1066 if (td->o.start_delay) {
263e529f 1067 spent = mtime_since_genesis();
ebac4655 1068
2dc1bbeb 1069 if (td->o.start_delay * 1000 > spent)
ebac4655
JA
1070 continue;
1071 }
1072
2dc1bbeb 1073 if (td->o.stonewall && (nr_started || nr_running))
ebac4655
JA
1074 break;
1075
75154845
JA
1076 /*
1077 * Set state to created. Thread will transition
1078 * to TD_INITIALIZED when it's done setting up.
1079 */
ebac4655 1080 td_set_runstate(td, TD_CREATED);
75154845 1081 map[this_jobs++] = td;
ebac4655
JA
1082 nr_started++;
1083
2dc1bbeb 1084 if (td->o.use_thread) {
ebac4655
JA
1085 if (pthread_create(&td->thread, NULL, thread_main, td)) {
1086 perror("thread_create");
1087 nr_started--;
c8bb6faf 1088 break;
ebac4655
JA
1089 }
1090 } else {
07739b57 1091 if (!fork()) {
a6418147
JA
1092 int ret = fork_main(shm_id, i);
1093
1094 exit(ret);
ebac4655
JA
1095 }
1096 }
07739b57 1097 fio_sem_down(startup_sem);
ebac4655
JA
1098 }
1099
1100 /*
75154845
JA
1101 * Wait for the started threads to transition to
1102 * TD_INITIALIZED.
ebac4655 1103 */
02bcaa8c 1104 fio_gettime(&this_start, NULL);
75154845 1105 left = this_jobs;
6ce15a32 1106 while (left && !fio_abort) {
75154845
JA
1107 if (mtime_since_now(&this_start) > JOB_START_TIMEOUT)
1108 break;
1109
1110 usleep(100000);
1111
1112 for (i = 0; i < this_jobs; i++) {
1113 td = map[i];
1114 if (!td)
1115 continue;
b6f4d880 1116 if (td->runstate == TD_INITIALIZED) {
75154845
JA
1117 map[i] = NULL;
1118 left--;
b6f4d880
JA
1119 } else if (td->runstate >= TD_EXITED) {
1120 map[i] = NULL;
1121 left--;
1122 todo--;
1123 nr_running++; /* work-around... */
75154845
JA
1124 }
1125 }
1126 }
1127
1128 if (left) {
3b70d7e5 1129 log_err("fio: %d jobs failed to start\n", left);
75154845
JA
1130 for (i = 0; i < this_jobs; i++) {
1131 td = map[i];
1132 if (!td)
1133 continue;
1134 kill(td->pid, SIGTERM);
1135 }
1136 break;
1137 }
1138
1139 /*
b6f4d880 1140 * start created threads (TD_INITIALIZED -> TD_RUNNING).
75154845 1141 */
34572e28 1142 for_each_td(td, i) {
75154845 1143 if (td->runstate != TD_INITIALIZED)
ebac4655
JA
1144 continue;
1145
1146 td_set_runstate(td, TD_RUNNING);
1147 nr_running++;
1148 nr_started--;
2dc1bbeb
JA
1149 m_rate += td->o.ratemin;
1150 t_rate += td->o.rate;
75154845 1151 todo--;
07739b57 1152 fio_sem_up(td->mutex);
ebac4655
JA
1153 }
1154
1155 reap_threads(&nr_running, &t_rate, &m_rate);
1156
1157 if (todo)
1158 usleep(100000);
1159 }
1160
1161 while (nr_running) {
1162 reap_threads(&nr_running, &t_rate, &m_rate);
1163 usleep(10000);
1164 }
1165
1166 update_io_ticks();
2f9ade3c 1167 fio_unpin_memory();
ebac4655
JA
1168}
1169
ebac4655
JA
1170int main(int argc, char *argv[])
1171{
29d610e1
JA
1172 long ps;
1173
dbe1125e
JA
1174 /*
1175 * We need locale for number printing, if it isn't set then just
1176 * go with the US format.
1177 */
1178 if (!getenv("LC_NUMERIC"))
1179 setlocale(LC_NUMERIC, "en_US");
1180
ebac4655
JA
1181 if (parse_options(argc, argv))
1182 return 1;
1183
1184 if (!thread_number) {
3b70d7e5 1185 log_err("Nothing to do\n");
ebac4655
JA
1186 return 1;
1187 }
1188
29d610e1
JA
1189 ps = sysconf(_SC_PAGESIZE);
1190 if (ps < 0) {
1191 log_err("Failed to get page size\n");
1192 return 1;
1193 }
1194
cfc99db7 1195 page_size = ps;
29d610e1
JA
1196 page_mask = ps - 1;
1197
bb3884d8
JA
1198 if (write_bw_log) {
1199 setup_log(&agg_io_log[DDIR_READ]);
1200 setup_log(&agg_io_log[DDIR_WRITE]);
1201 }
1202
07739b57
JA
1203 startup_sem = fio_sem_init(0);
1204
a2f77c9f
JA
1205 set_genesis_time();
1206
ebac4655
JA
1207 disk_util_timer_arm();
1208
1209 run_threads();
6ce15a32 1210
bb3884d8 1211 if (!fio_abort) {
6ce15a32 1212 show_run_stats();
bb3884d8
JA
1213 if (write_bw_log) {
1214 __finish_log(agg_io_log[DDIR_READ],"agg-read_bw.log");
1215 __finish_log(agg_io_log[DDIR_WRITE],"agg-write_bw.log");
1216 }
1217 }
ebac4655 1218
07739b57 1219 fio_sem_remove(startup_sem);
437c9b71 1220 return exit_value;
ebac4655 1221}