Merge branch 'fix_verify_block_offset' of https://github.com/ipylypiv/fio
[fio.git] / options.c
... / ...
CommitLineData
1#include <stdio.h>
2#include <stdlib.h>
3#include <unistd.h>
4#include <ctype.h>
5#include <string.h>
6#include <assert.h>
7#include <fcntl.h>
8#include <sys/stat.h>
9#include <netinet/in.h>
10
11#include "fio.h"
12#include "verify.h"
13#include "parse.h"
14#include "lib/pattern.h"
15#include "options.h"
16#include "optgroup.h"
17#include "zbd.h"
18
19char client_sockaddr_str[INET6_ADDRSTRLEN] = { 0 };
20
21#define cb_data_to_td(data) container_of(data, struct thread_data, o)
22
23static const struct pattern_fmt_desc fmt_desc[] = {
24 {
25 .fmt = "%o",
26 .len = FIO_FIELD_SIZE(struct io_u *, offset),
27 .paste = paste_blockoff
28 },
29 { }
30};
31
32/*
33 * Check if mmap/mmaphuge has a :/foo/bar/file at the end. If so, return that.
34 */
35static char *get_opt_postfix(const char *str)
36{
37 char *p = strstr(str, ":");
38
39 if (!p)
40 return NULL;
41
42 p++;
43 strip_blank_front(&p);
44 strip_blank_end(p);
45 return strdup(p);
46}
47
48static bool split_parse_distr(const char *str, double *val, double *center)
49{
50 char *cp, *p;
51 bool r;
52
53 p = strdup(str);
54 if (!p)
55 return false;
56
57 cp = strstr(p, ":");
58 r = true;
59 if (cp) {
60 *cp = '\0';
61 cp++;
62 r = str_to_float(cp, center, 0);
63 }
64 r = r && str_to_float(p, val, 0);
65 free(p);
66 return r;
67}
68
69static int bs_cmp(const void *p1, const void *p2)
70{
71 const struct bssplit *bsp1 = p1;
72 const struct bssplit *bsp2 = p2;
73
74 return (int) bsp1->perc - (int) bsp2->perc;
75}
76
77int split_parse_ddir(struct thread_options *o, struct split *split,
78 char *str, bool absolute, unsigned int max_splits)
79{
80 unsigned long long perc;
81 unsigned int i;
82 long long val;
83 char *fname;
84
85 split->nr = 0;
86
87 i = 0;
88 while ((fname = strsep(&str, ":")) != NULL) {
89 char *perc_str;
90
91 if (!strlen(fname))
92 break;
93
94 perc_str = strstr(fname, "/");
95 if (perc_str) {
96 *perc_str = '\0';
97 perc_str++;
98 if (absolute) {
99 if (str_to_decimal(perc_str, &val, 1, o, 0, 0)) {
100 log_err("fio: split conversion failed\n");
101 return 1;
102 }
103 perc = val;
104 } else {
105 perc = atoi(perc_str);
106 if (perc > 100)
107 perc = 100;
108 else if (!perc)
109 perc = -1U;
110 }
111 } else {
112 if (absolute)
113 perc = 0;
114 else
115 perc = -1U;
116 }
117
118 if (str_to_decimal(fname, &val, 1, o, 0, 0)) {
119 log_err("fio: split conversion failed\n");
120 return 1;
121 }
122
123 split->val1[i] = val;
124 split->val2[i] = perc;
125 i++;
126 if (i == max_splits) {
127 log_err("fio: hit max of %d split entries\n", i);
128 break;
129 }
130 }
131
132 split->nr = i;
133 return 0;
134}
135
136static int bssplit_ddir(struct thread_options *o, void *eo,
137 enum fio_ddir ddir, char *str, bool data)
138{
139 unsigned int i, perc, perc_missing;
140 unsigned long long max_bs, min_bs;
141 struct split split;
142
143 memset(&split, 0, sizeof(split));
144
145 if (split_parse_ddir(o, &split, str, data, BSSPLIT_MAX))
146 return 1;
147 if (!split.nr)
148 return 0;
149
150 max_bs = 0;
151 min_bs = -1;
152 o->bssplit[ddir] = malloc(split.nr * sizeof(struct bssplit));
153 o->bssplit_nr[ddir] = split.nr;
154 for (i = 0; i < split.nr; i++) {
155 if (split.val1[i] > max_bs)
156 max_bs = split.val1[i];
157 if (split.val1[i] < min_bs)
158 min_bs = split.val1[i];
159
160 o->bssplit[ddir][i].bs = split.val1[i];
161 o->bssplit[ddir][i].perc =split.val2[i];
162 }
163
164 /*
165 * Now check if the percentages add up, and how much is missing
166 */
167 perc = perc_missing = 0;
168 for (i = 0; i < o->bssplit_nr[ddir]; i++) {
169 struct bssplit *bsp = &o->bssplit[ddir][i];
170
171 if (bsp->perc == -1U)
172 perc_missing++;
173 else
174 perc += bsp->perc;
175 }
176
177 if (perc > 100 && perc_missing > 1) {
178 log_err("fio: bssplit percentages add to more than 100%%\n");
179 free(o->bssplit[ddir]);
180 o->bssplit[ddir] = NULL;
181 return 1;
182 }
183
184 /*
185 * If values didn't have a percentage set, divide the remains between
186 * them.
187 */
188 if (perc_missing) {
189 if (perc_missing == 1 && o->bssplit_nr[ddir] == 1)
190 perc = 100;
191 for (i = 0; i < o->bssplit_nr[ddir]; i++) {
192 struct bssplit *bsp = &o->bssplit[ddir][i];
193
194 if (bsp->perc == -1U)
195 bsp->perc = (100 - perc) / perc_missing;
196 }
197 }
198
199 o->min_bs[ddir] = min_bs;
200 o->max_bs[ddir] = max_bs;
201
202 /*
203 * now sort based on percentages, for ease of lookup
204 */
205 qsort(o->bssplit[ddir], o->bssplit_nr[ddir], sizeof(struct bssplit), bs_cmp);
206 return 0;
207}
208
209int str_split_parse(struct thread_data *td, char *str,
210 split_parse_fn *fn, void *eo, bool data)
211{
212 char *odir, *ddir;
213 int ret = 0;
214
215 odir = strchr(str, ',');
216 if (odir) {
217 ddir = strchr(odir + 1, ',');
218 if (ddir) {
219 ret = fn(&td->o, eo, DDIR_TRIM, ddir + 1, data);
220 if (!ret)
221 *ddir = '\0';
222 } else {
223 char *op;
224
225 op = strdup(odir + 1);
226 ret = fn(&td->o, eo, DDIR_TRIM, op, data);
227
228 free(op);
229 }
230 if (!ret)
231 ret = fn(&td->o, eo, DDIR_WRITE, odir + 1, data);
232 if (!ret) {
233 *odir = '\0';
234 ret = fn(&td->o, eo, DDIR_READ, str, data);
235 }
236 } else {
237 char *op;
238
239 op = strdup(str);
240 ret = fn(&td->o, eo, DDIR_WRITE, op, data);
241 free(op);
242
243 if (!ret) {
244 op = strdup(str);
245 ret = fn(&td->o, eo, DDIR_TRIM, op, data);
246 free(op);
247 }
248 if (!ret)
249 ret = fn(&td->o, eo, DDIR_READ, str, data);
250 }
251
252 return ret;
253}
254
255static int fio_fdp_cmp(const void *p1, const void *p2)
256{
257 const uint16_t *t1 = p1;
258 const uint16_t *t2 = p2;
259
260 return *t1 - *t2;
261}
262
263static int str_fdp_pli_cb(void *data, const char *input)
264{
265 struct thread_data *td = cb_data_to_td(data);
266 char *str, *p, *v;
267 int i = 0;
268
269 p = str = strdup(input);
270 strip_blank_front(&str);
271 strip_blank_end(str);
272
273 while ((v = strsep(&str, ",")) != NULL && i < FIO_MAX_PLIS)
274 td->o.fdp_plis[i++] = strtoll(v, NULL, 0);
275 free(p);
276
277 qsort(td->o.fdp_plis, i, sizeof(*td->o.fdp_plis), fio_fdp_cmp);
278 td->o.fdp_nrpli = i;
279
280 return 0;
281}
282
283static int str_bssplit_cb(void *data, const char *input)
284{
285 struct thread_data *td = cb_data_to_td(data);
286 char *str, *p;
287 int ret = 0;
288
289 p = str = strdup(input);
290
291 strip_blank_front(&str);
292 strip_blank_end(str);
293
294 ret = str_split_parse(td, str, bssplit_ddir, NULL, false);
295
296 if (parse_dryrun()) {
297 int i;
298
299 for (i = 0; i < DDIR_RWDIR_CNT; i++) {
300 free(td->o.bssplit[i]);
301 td->o.bssplit[i] = NULL;
302 td->o.bssplit_nr[i] = 0;
303 }
304 }
305
306 free(p);
307 return ret;
308}
309
310static int parse_cmdprio_bssplit_entry(struct thread_options *o,
311 struct split_prio *entry, char *str)
312{
313 int matches = 0;
314 char *bs_str = NULL;
315 long long bs_val;
316 unsigned int perc = 0, class, level, hint;
317
318 /*
319 * valid entry formats:
320 * bs/ - %s/ - set perc to 0, prio to -1.
321 * bs/perc - %s/%u - set prio to -1.
322 * bs/perc/class/level - %s/%u/%u/%u
323 * bs/perc/class/level/hint - %s/%u/%u/%u/%u
324 */
325 matches = sscanf(str, "%m[^/]/%u/%u/%u/%u",
326 &bs_str, &perc, &class, &level, &hint);
327 if (matches < 1) {
328 log_err("fio: invalid cmdprio_bssplit format\n");
329 return 1;
330 }
331
332 if (str_to_decimal(bs_str, &bs_val, 1, o, 0, 0)) {
333 log_err("fio: split conversion failed\n");
334 free(bs_str);
335 return 1;
336 }
337 free(bs_str);
338
339 entry->bs = bs_val;
340 entry->perc = min(perc, 100u);
341 entry->prio = -1;
342 switch (matches) {
343 case 1: /* bs/ case */
344 case 2: /* bs/perc case */
345 break;
346 case 4: /* bs/perc/class/level case */
347 case 5: /* bs/perc/class/level/hint case */
348 class = min(class, (unsigned int) IOPRIO_MAX_PRIO_CLASS);
349 level = min(level, (unsigned int) IOPRIO_MAX_PRIO);
350 if (matches == 5)
351 hint = min(hint, (unsigned int) IOPRIO_MAX_PRIO_HINT);
352 else
353 hint = 0;
354 entry->prio = ioprio_value(class, level, hint);
355 break;
356 default:
357 log_err("fio: invalid cmdprio_bssplit format\n");
358 return 1;
359 }
360
361 return 0;
362}
363
364/*
365 * Returns a negative integer if the first argument should be before the second
366 * argument in the sorted list. A positive integer if the first argument should
367 * be after the second argument in the sorted list. A zero if they are equal.
368 */
369static int fio_split_prio_cmp(const void *p1, const void *p2)
370{
371 const struct split_prio *tmp1 = p1;
372 const struct split_prio *tmp2 = p2;
373
374 if (tmp1->bs > tmp2->bs)
375 return 1;
376 if (tmp1->bs < tmp2->bs)
377 return -1;
378 return 0;
379}
380
381int split_parse_prio_ddir(struct thread_options *o, struct split_prio **entries,
382 int *nr_entries, char *str)
383{
384 struct split_prio *tmp_entries;
385 unsigned int nr_bssplits;
386 char *str_cpy, *p, *fname;
387
388 /* strsep modifies the string, dup it so that we can use strsep twice */
389 p = str_cpy = strdup(str);
390 if (!p)
391 return 1;
392
393 nr_bssplits = 0;
394 while ((fname = strsep(&str_cpy, ":")) != NULL) {
395 if (!strlen(fname))
396 break;
397 nr_bssplits++;
398 }
399 free(p);
400
401 if (nr_bssplits > BSSPLIT_MAX) {
402 log_err("fio: too many cmdprio_bssplit entries\n");
403 return 1;
404 }
405
406 tmp_entries = calloc(nr_bssplits, sizeof(*tmp_entries));
407 if (!tmp_entries)
408 return 1;
409
410 nr_bssplits = 0;
411 while ((fname = strsep(&str, ":")) != NULL) {
412 struct split_prio *entry;
413
414 if (!strlen(fname))
415 break;
416
417 entry = &tmp_entries[nr_bssplits];
418
419 if (parse_cmdprio_bssplit_entry(o, entry, fname)) {
420 log_err("fio: failed to parse cmdprio_bssplit entry\n");
421 free(tmp_entries);
422 return 1;
423 }
424
425 /* skip zero perc entries, they provide no useful information */
426 if (entry->perc)
427 nr_bssplits++;
428 }
429
430 qsort(tmp_entries, nr_bssplits, sizeof(*tmp_entries),
431 fio_split_prio_cmp);
432
433 *entries = tmp_entries;
434 *nr_entries = nr_bssplits;
435
436 return 0;
437}
438
439static int str2error(char *str)
440{
441 const char *err[] = { "EPERM", "ENOENT", "ESRCH", "EINTR", "EIO",
442 "ENXIO", "E2BIG", "ENOEXEC", "EBADF",
443 "ECHILD", "EAGAIN", "ENOMEM", "EACCES",
444 "EFAULT", "ENOTBLK", "EBUSY", "EEXIST",
445 "EXDEV", "ENODEV", "ENOTDIR", "EISDIR",
446 "EINVAL", "ENFILE", "EMFILE", "ENOTTY",
447 "ETXTBSY","EFBIG", "ENOSPC", "ESPIPE",
448 "EROFS","EMLINK", "EPIPE", "EDOM", "ERANGE" };
449 int i = 0, num = sizeof(err) / sizeof(char *);
450
451 while (i < num) {
452 if (!strcmp(err[i], str))
453 return i + 1;
454 i++;
455 }
456 return 0;
457}
458
459static int ignore_error_type(struct thread_data *td, enum error_type_bit etype,
460 char *str)
461{
462 unsigned int i;
463 int *error;
464 char *fname;
465
466 if (etype >= ERROR_TYPE_CNT) {
467 log_err("Illegal error type\n");
468 return 1;
469 }
470
471 td->o.ignore_error_nr[etype] = 4;
472 error = calloc(4, sizeof(int));
473
474 i = 0;
475 while ((fname = strsep(&str, ":")) != NULL) {
476
477 if (!strlen(fname))
478 break;
479
480 /*
481 * grow struct buffer, if needed
482 */
483 if (i == td->o.ignore_error_nr[etype]) {
484 td->o.ignore_error_nr[etype] <<= 1;
485 error = realloc(error, td->o.ignore_error_nr[etype]
486 * sizeof(int));
487 }
488 if (fname[0] == 'E') {
489 error[i] = str2error(fname);
490 } else {
491 error[i] = atoi(fname);
492 if (error[i] < 0)
493 error[i] = -error[i];
494 }
495 if (!error[i]) {
496 log_err("Unknown error %s, please use number value\n",
497 fname);
498 td->o.ignore_error_nr[etype] = 0;
499 free(error);
500 return 1;
501 }
502 i++;
503 }
504 if (i) {
505 td->o.continue_on_error |= 1 << etype;
506 td->o.ignore_error_nr[etype] = i;
507 td->o.ignore_error[etype] = error;
508 } else {
509 td->o.ignore_error_nr[etype] = 0;
510 free(error);
511 }
512
513 return 0;
514
515}
516
517static int str_replay_skip_cb(void *data, const char *input)
518{
519 struct thread_data *td = cb_data_to_td(data);
520 char *str, *p, *n;
521 int ret = 0;
522
523 if (parse_dryrun())
524 return 0;
525
526 p = str = strdup(input);
527
528 strip_blank_front(&str);
529 strip_blank_end(str);
530
531 while (p) {
532 n = strchr(p, ',');
533 if (n)
534 *n++ = '\0';
535 if (!strcmp(p, "read"))
536 td->o.replay_skip |= 1u << DDIR_READ;
537 else if (!strcmp(p, "write"))
538 td->o.replay_skip |= 1u << DDIR_WRITE;
539 else if (!strcmp(p, "trim"))
540 td->o.replay_skip |= 1u << DDIR_TRIM;
541 else if (!strcmp(p, "sync"))
542 td->o.replay_skip |= 1u << DDIR_SYNC;
543 else {
544 log_err("Unknown skip type: %s\n", p);
545 ret = 1;
546 break;
547 }
548 p = n;
549 }
550 free(str);
551 return ret;
552}
553
554static int str_ignore_error_cb(void *data, const char *input)
555{
556 struct thread_data *td = cb_data_to_td(data);
557 char *str, *p, *n;
558 int ret = 1;
559 enum error_type_bit type = 0;
560
561 if (parse_dryrun())
562 return 0;
563
564 p = str = strdup(input);
565
566 strip_blank_front(&str);
567 strip_blank_end(str);
568
569 while (p) {
570 n = strchr(p, ',');
571 if (n)
572 *n++ = '\0';
573 ret = ignore_error_type(td, type, p);
574 if (ret)
575 break;
576 p = n;
577 type++;
578 }
579 free(str);
580 return ret;
581}
582
583static int str_rw_cb(void *data, const char *str)
584{
585 struct thread_data *td = cb_data_to_td(data);
586 struct thread_options *o = &td->o;
587 char *nr;
588
589 if (parse_dryrun())
590 return 0;
591
592 o->ddir_seq_nr = 1;
593 o->ddir_seq_add = 0;
594
595 nr = get_opt_postfix(str);
596 if (!nr)
597 return 0;
598
599 if (td_random(td)) {
600 long long val;
601
602 if (str_to_decimal(nr, &val, 1, o, 0, 0)) {
603 log_err("fio: randrw postfix parsing failed\n");
604 free(nr);
605 return 1;
606 }
607 if ((val <= 0) || (val > UINT_MAX)) {
608 log_err("fio: randrw postfix parsing out of range\n");
609 free(nr);
610 return 1;
611 }
612 o->ddir_seq_nr = (unsigned int) val;
613 } else {
614 long long val;
615
616 if (str_to_decimal(nr, &val, 1, o, 0, 0)) {
617 log_err("fio: rw postfix parsing failed\n");
618 free(nr);
619 return 1;
620 }
621
622 o->ddir_seq_add = val;
623 }
624
625 free(nr);
626 return 0;
627}
628
629static int str_mem_cb(void *data, const char *mem)
630{
631 struct thread_data *td = cb_data_to_td(data);
632
633 if (td->o.mem_type == MEM_MMAPHUGE || td->o.mem_type == MEM_MMAP ||
634 td->o.mem_type == MEM_MMAPSHARED)
635 td->o.mmapfile = get_opt_postfix(mem);
636
637 return 0;
638}
639
640static int fio_clock_source_cb(void *data, const char *str)
641{
642 struct thread_data *td = cb_data_to_td(data);
643
644 fio_clock_source = td->o.clocksource;
645 fio_clock_source_set = 1;
646 fio_clock_init();
647 return 0;
648}
649
650static int str_rwmix_read_cb(void *data, unsigned long long *val)
651{
652 struct thread_data *td = cb_data_to_td(data);
653
654 td->o.rwmix[DDIR_READ] = *val;
655 td->o.rwmix[DDIR_WRITE] = 100 - *val;
656 return 0;
657}
658
659static int str_rwmix_write_cb(void *data, unsigned long long *val)
660{
661 struct thread_data *td = cb_data_to_td(data);
662
663 td->o.rwmix[DDIR_WRITE] = *val;
664 td->o.rwmix[DDIR_READ] = 100 - *val;
665 return 0;
666}
667
668static int str_exitall_cb(void)
669{
670 exitall_on_terminate = true;
671 return 0;
672}
673
674#ifdef FIO_HAVE_CPU_AFFINITY
675int fio_cpus_split(os_cpu_mask_t *mask, unsigned int cpu_index)
676{
677 unsigned int i, index, cpus_in_mask;
678 const long max_cpu = cpus_configured();
679
680 cpus_in_mask = fio_cpu_count(mask);
681 if (!cpus_in_mask)
682 return 0;
683
684 cpu_index = cpu_index % cpus_in_mask;
685
686 index = 0;
687 for (i = 0; i < max_cpu; i++) {
688 if (!fio_cpu_isset(mask, i))
689 continue;
690
691 if (cpu_index != index)
692 fio_cpu_clear(mask, i);
693
694 index++;
695 }
696
697 return fio_cpu_count(mask);
698}
699
700static int str_cpumask_cb(void *data, unsigned long long *val)
701{
702 struct thread_data *td = cb_data_to_td(data);
703 unsigned int i;
704 long max_cpu;
705 int ret;
706
707 if (parse_dryrun())
708 return 0;
709
710 ret = fio_cpuset_init(&td->o.cpumask);
711 if (ret < 0) {
712 log_err("fio: cpuset_init failed\n");
713 td_verror(td, ret, "fio_cpuset_init");
714 return 1;
715 }
716
717 max_cpu = cpus_configured();
718
719 for (i = 0; i < sizeof(int) * 8; i++) {
720 if ((1 << i) & *val) {
721 if (i >= max_cpu) {
722 log_err("fio: CPU %d too large (max=%ld)\n", i,
723 max_cpu - 1);
724 return 1;
725 }
726 dprint(FD_PARSE, "set cpu allowed %d\n", i);
727 fio_cpu_set(&td->o.cpumask, i);
728 }
729 }
730
731 return 0;
732}
733
734static int set_cpus_allowed(struct thread_data *td, os_cpu_mask_t *mask,
735 const char *input)
736{
737 char *cpu, *str, *p;
738 long max_cpu;
739 int ret = 0;
740
741 ret = fio_cpuset_init(mask);
742 if (ret < 0) {
743 log_err("fio: cpuset_init failed\n");
744 td_verror(td, ret, "fio_cpuset_init");
745 return 1;
746 }
747
748 p = str = strdup(input);
749
750 strip_blank_front(&str);
751 strip_blank_end(str);
752
753 max_cpu = cpus_configured();
754
755 while ((cpu = strsep(&str, ",")) != NULL) {
756 char *str2, *cpu2;
757 int icpu, icpu2;
758
759 if (!strlen(cpu))
760 break;
761
762 str2 = cpu;
763 icpu2 = -1;
764 while ((cpu2 = strsep(&str2, "-")) != NULL) {
765 if (!strlen(cpu2))
766 break;
767
768 icpu2 = atoi(cpu2);
769 }
770
771 icpu = atoi(cpu);
772 if (icpu2 == -1)
773 icpu2 = icpu;
774 while (icpu <= icpu2) {
775 if (icpu >= FIO_MAX_CPUS) {
776 log_err("fio: your OS only supports up to"
777 " %d CPUs\n", (int) FIO_MAX_CPUS);
778 ret = 1;
779 break;
780 }
781 if (icpu >= max_cpu) {
782 log_err("fio: CPU %d too large (max=%ld)\n",
783 icpu, max_cpu - 1);
784 ret = 1;
785 break;
786 }
787
788 dprint(FD_PARSE, "set cpu allowed %d\n", icpu);
789 fio_cpu_set(mask, icpu);
790 icpu++;
791 }
792 if (ret)
793 break;
794 }
795
796 free(p);
797 return ret;
798}
799
800static int str_cpus_allowed_cb(void *data, const char *input)
801{
802 struct thread_data *td = cb_data_to_td(data);
803
804 if (parse_dryrun())
805 return 0;
806
807 return set_cpus_allowed(td, &td->o.cpumask, input);
808}
809
810static int str_verify_cpus_allowed_cb(void *data, const char *input)
811{
812 struct thread_data *td = cb_data_to_td(data);
813
814 if (parse_dryrun())
815 return 0;
816
817 return set_cpus_allowed(td, &td->o.verify_cpumask, input);
818}
819
820#ifdef CONFIG_ZLIB
821static int str_log_cpus_allowed_cb(void *data, const char *input)
822{
823 struct thread_data *td = cb_data_to_td(data);
824
825 if (parse_dryrun())
826 return 0;
827
828 return set_cpus_allowed(td, &td->o.log_gz_cpumask, input);
829}
830#endif /* CONFIG_ZLIB */
831
832#endif /* FIO_HAVE_CPU_AFFINITY */
833
834#ifdef CONFIG_LIBNUMA
835static int str_numa_cpunodes_cb(void *data, char *input)
836{
837 struct thread_data *td = cb_data_to_td(data);
838 struct bitmask *verify_bitmask;
839
840 if (parse_dryrun())
841 return 0;
842
843 /* numa_parse_nodestring() parses a character string list
844 * of nodes into a bit mask. The bit mask is allocated by
845 * numa_allocate_nodemask(), so it should be freed by
846 * numa_free_nodemask().
847 */
848 verify_bitmask = numa_parse_nodestring(input);
849 if (verify_bitmask == NULL) {
850 log_err("fio: numa_parse_nodestring failed\n");
851 td_verror(td, 1, "str_numa_cpunodes_cb");
852 return 1;
853 }
854 numa_free_nodemask(verify_bitmask);
855
856 td->o.numa_cpunodes = strdup(input);
857 return 0;
858}
859
860static int str_numa_mpol_cb(void *data, char *input)
861{
862 struct thread_data *td = cb_data_to_td(data);
863 const char * const policy_types[] =
864 { "default", "prefer", "bind", "interleave", "local", NULL };
865 int i;
866 char *nodelist;
867 struct bitmask *verify_bitmask;
868
869 if (parse_dryrun())
870 return 0;
871
872 nodelist = strchr(input, ':');
873 if (nodelist) {
874 /* NUL-terminate mode */
875 *nodelist++ = '\0';
876 }
877
878 for (i = 0; i <= MPOL_LOCAL; i++) {
879 if (!strcmp(input, policy_types[i])) {
880 td->o.numa_mem_mode = i;
881 break;
882 }
883 }
884 if (i > MPOL_LOCAL) {
885 log_err("fio: memory policy should be: default, prefer, bind, interleave, local\n");
886 goto out;
887 }
888
889 switch (td->o.numa_mem_mode) {
890 case MPOL_PREFERRED:
891 /*
892 * Insist on a nodelist of one node only
893 */
894 if (nodelist) {
895 char *rest = nodelist;
896 while (isdigit(*rest))
897 rest++;
898 if (*rest) {
899 log_err("fio: one node only for \'prefer\'\n");
900 goto out;
901 }
902 } else {
903 log_err("fio: one node is needed for \'prefer\'\n");
904 goto out;
905 }
906 break;
907 case MPOL_INTERLEAVE:
908 /*
909 * Default to online nodes with memory if no nodelist
910 */
911 if (!nodelist)
912 nodelist = strdup("all");
913 break;
914 case MPOL_LOCAL:
915 case MPOL_DEFAULT:
916 /*
917 * Don't allow a nodelist
918 */
919 if (nodelist) {
920 log_err("fio: NO nodelist for \'local\'\n");
921 goto out;
922 }
923 break;
924 case MPOL_BIND:
925 /*
926 * Insist on a nodelist
927 */
928 if (!nodelist) {
929 log_err("fio: a nodelist is needed for \'bind\'\n");
930 goto out;
931 }
932 break;
933 }
934
935
936 /* numa_parse_nodestring() parses a character string list
937 * of nodes into a bit mask. The bit mask is allocated by
938 * numa_allocate_nodemask(), so it should be freed by
939 * numa_free_nodemask().
940 */
941 switch (td->o.numa_mem_mode) {
942 case MPOL_PREFERRED:
943 td->o.numa_mem_prefer_node = atoi(nodelist);
944 break;
945 case MPOL_INTERLEAVE:
946 case MPOL_BIND:
947 verify_bitmask = numa_parse_nodestring(nodelist);
948 if (verify_bitmask == NULL) {
949 log_err("fio: numa_parse_nodestring failed\n");
950 td_verror(td, 1, "str_numa_memnodes_cb");
951 return 1;
952 }
953 td->o.numa_memnodes = strdup(nodelist);
954 numa_free_nodemask(verify_bitmask);
955
956 break;
957 case MPOL_LOCAL:
958 case MPOL_DEFAULT:
959 default:
960 break;
961 }
962
963 return 0;
964out:
965 return 1;
966}
967#endif
968
969static int str_fst_cb(void *data, const char *str)
970{
971 struct thread_data *td = cb_data_to_td(data);
972 double val;
973 double center = -1;
974 bool done = false;
975 char *nr;
976
977 td->file_service_nr = 1;
978
979 switch (td->o.file_service_type) {
980 case FIO_FSERVICE_RANDOM:
981 case FIO_FSERVICE_RR:
982 case FIO_FSERVICE_SEQ:
983 nr = get_opt_postfix(str);
984 if (nr) {
985 td->file_service_nr = atoi(nr);
986 free(nr);
987 }
988 done = true;
989 break;
990 case FIO_FSERVICE_ZIPF:
991 val = FIO_DEF_ZIPF;
992 break;
993 case FIO_FSERVICE_PARETO:
994 val = FIO_DEF_PARETO;
995 break;
996 case FIO_FSERVICE_GAUSS:
997 val = 0.0;
998 break;
999 default:
1000 log_err("fio: bad file service type: %d\n", td->o.file_service_type);
1001 return 1;
1002 }
1003
1004 if (done)
1005 return 0;
1006
1007 nr = get_opt_postfix(str);
1008 if (nr && !split_parse_distr(nr, &val, &center)) {
1009 log_err("fio: file service type random postfix parsing failed\n");
1010 free(nr);
1011 return 1;
1012 }
1013
1014 free(nr);
1015
1016 if (center != -1 && (center < 0.00 || center > 1.00)) {
1017 log_err("fio: distribution center out of range (0 <= center <= 1.0)\n");
1018 return 1;
1019 }
1020 td->random_center = center;
1021
1022 switch (td->o.file_service_type) {
1023 case FIO_FSERVICE_ZIPF:
1024 if (val == 1.00) {
1025 log_err("fio: zipf theta must be different than 1.0\n");
1026 return 1;
1027 }
1028 if (parse_dryrun())
1029 return 0;
1030 td->zipf_theta = val;
1031 break;
1032 case FIO_FSERVICE_PARETO:
1033 if (val <= 0.00 || val >= 1.00) {
1034 log_err("fio: pareto input out of range (0 < input < 1.0)\n");
1035 return 1;
1036 }
1037 if (parse_dryrun())
1038 return 0;
1039 td->pareto_h = val;
1040 break;
1041 case FIO_FSERVICE_GAUSS:
1042 if (val < 0.00 || val >= 100.00) {
1043 log_err("fio: normal deviation out of range (0 <= input < 100.0)\n");
1044 return 1;
1045 }
1046 if (parse_dryrun())
1047 return 0;
1048 td->gauss_dev = val;
1049 break;
1050 }
1051
1052 return 0;
1053}
1054
1055#ifdef CONFIG_SYNC_FILE_RANGE
1056static int str_sfr_cb(void *data, const char *str)
1057{
1058 struct thread_data *td = cb_data_to_td(data);
1059 char *nr = get_opt_postfix(str);
1060
1061 td->sync_file_range_nr = 1;
1062 if (nr) {
1063 td->sync_file_range_nr = atoi(nr);
1064 free(nr);
1065 }
1066
1067 return 0;
1068}
1069#endif
1070
1071static int zone_split_ddir(struct thread_options *o, void *eo,
1072 enum fio_ddir ddir, char *str, bool absolute)
1073{
1074 unsigned int i, perc, perc_missing, sperc, sperc_missing;
1075 struct split split;
1076
1077 memset(&split, 0, sizeof(split));
1078
1079 if (split_parse_ddir(o, &split, str, absolute, ZONESPLIT_MAX))
1080 return 1;
1081 if (!split.nr)
1082 return 0;
1083
1084 o->zone_split[ddir] = malloc(split.nr * sizeof(struct zone_split));
1085 o->zone_split_nr[ddir] = split.nr;
1086 for (i = 0; i < split.nr; i++) {
1087 o->zone_split[ddir][i].access_perc = split.val1[i];
1088 if (absolute)
1089 o->zone_split[ddir][i].size = split.val2[i];
1090 else
1091 o->zone_split[ddir][i].size_perc = split.val2[i];
1092 }
1093
1094 /*
1095 * Now check if the percentages add up, and how much is missing
1096 */
1097 perc = perc_missing = 0;
1098 sperc = sperc_missing = 0;
1099 for (i = 0; i < o->zone_split_nr[ddir]; i++) {
1100 struct zone_split *zsp = &o->zone_split[ddir][i];
1101
1102 if (zsp->access_perc == (uint8_t) -1U)
1103 perc_missing++;
1104 else
1105 perc += zsp->access_perc;
1106
1107 if (!absolute) {
1108 if (zsp->size_perc == (uint8_t) -1U)
1109 sperc_missing++;
1110 else
1111 sperc += zsp->size_perc;
1112 }
1113 }
1114
1115 if (perc > 100 || sperc > 100) {
1116 log_err("fio: zone_split percentages add to more than 100%%\n");
1117 free(o->zone_split[ddir]);
1118 o->zone_split[ddir] = NULL;
1119 return 1;
1120 }
1121 if (perc < 100) {
1122 log_err("fio: access percentage don't add up to 100 for zoned "
1123 "random distribution (got=%u)\n", perc);
1124 free(o->zone_split[ddir]);
1125 o->zone_split[ddir] = NULL;
1126 return 1;
1127 }
1128
1129 /*
1130 * If values didn't have a percentage set, divide the remains between
1131 * them.
1132 */
1133 if (perc_missing) {
1134 if (perc_missing == 1 && o->zone_split_nr[ddir] == 1)
1135 perc = 100;
1136 for (i = 0; i < o->zone_split_nr[ddir]; i++) {
1137 struct zone_split *zsp = &o->zone_split[ddir][i];
1138
1139 if (zsp->access_perc == (uint8_t) -1U)
1140 zsp->access_perc = (100 - perc) / perc_missing;
1141 }
1142 }
1143 if (sperc_missing) {
1144 if (sperc_missing == 1 && o->zone_split_nr[ddir] == 1)
1145 sperc = 100;
1146 for (i = 0; i < o->zone_split_nr[ddir]; i++) {
1147 struct zone_split *zsp = &o->zone_split[ddir][i];
1148
1149 if (zsp->size_perc == (uint8_t) -1U)
1150 zsp->size_perc = (100 - sperc) / sperc_missing;
1151 }
1152 }
1153
1154 return 0;
1155}
1156
1157static int parse_zoned_distribution(struct thread_data *td, const char *input,
1158 bool absolute)
1159{
1160 const char *pre = absolute ? "zoned_abs:" : "zoned:";
1161 char *str, *p;
1162 int i, ret = 0;
1163
1164 p = str = strdup(input);
1165
1166 strip_blank_front(&str);
1167 strip_blank_end(str);
1168
1169 /* We expect it to start like that, bail if not */
1170 if (strncmp(str, pre, strlen(pre))) {
1171 log_err("fio: mismatch in zoned input <%s>\n", str);
1172 free(p);
1173 return 1;
1174 }
1175 str += strlen(pre);
1176
1177 ret = str_split_parse(td, str, zone_split_ddir, NULL, absolute);
1178
1179 free(p);
1180
1181 for (i = 0; i < DDIR_RWDIR_CNT; i++) {
1182 int j;
1183
1184 dprint(FD_PARSE, "zone ddir %d (nr=%u): \n", i, td->o.zone_split_nr[i]);
1185
1186 for (j = 0; j < td->o.zone_split_nr[i]; j++) {
1187 struct zone_split *zsp = &td->o.zone_split[i][j];
1188
1189 if (absolute) {
1190 dprint(FD_PARSE, "\t%d: %u/%llu\n", j,
1191 zsp->access_perc,
1192 (unsigned long long) zsp->size);
1193 } else {
1194 dprint(FD_PARSE, "\t%d: %u/%u\n", j,
1195 zsp->access_perc,
1196 zsp->size_perc);
1197 }
1198 }
1199 }
1200
1201 if (parse_dryrun()) {
1202 for (i = 0; i < DDIR_RWDIR_CNT; i++) {
1203 free(td->o.zone_split[i]);
1204 td->o.zone_split[i] = NULL;
1205 td->o.zone_split_nr[i] = 0;
1206 }
1207
1208 return ret;
1209 }
1210
1211 if (ret) {
1212 for (i = 0; i < DDIR_RWDIR_CNT; i++)
1213 td->o.zone_split_nr[i] = 0;
1214 }
1215
1216 return ret;
1217}
1218
1219static int str_random_distribution_cb(void *data, const char *str)
1220{
1221 struct thread_data *td = cb_data_to_td(data);
1222 double val;
1223 double center = -1;
1224 char *nr;
1225
1226 if (td->o.random_distribution == FIO_RAND_DIST_ZIPF)
1227 val = FIO_DEF_ZIPF;
1228 else if (td->o.random_distribution == FIO_RAND_DIST_PARETO)
1229 val = FIO_DEF_PARETO;
1230 else if (td->o.random_distribution == FIO_RAND_DIST_GAUSS)
1231 val = 0.0;
1232 else if (td->o.random_distribution == FIO_RAND_DIST_ZONED)
1233 return parse_zoned_distribution(td, str, false);
1234 else if (td->o.random_distribution == FIO_RAND_DIST_ZONED_ABS)
1235 return parse_zoned_distribution(td, str, true);
1236 else
1237 return 0;
1238
1239 nr = get_opt_postfix(str);
1240 if (nr && !split_parse_distr(nr, &val, &center)) {
1241 log_err("fio: random postfix parsing failed\n");
1242 free(nr);
1243 return 1;
1244 }
1245
1246 free(nr);
1247
1248 if (center != -1 && (center < 0.00 || center > 1.00)) {
1249 log_err("fio: distribution center out of range (0 <= center <= 1.0)\n");
1250 return 1;
1251 }
1252 td->o.random_center.u.f = center;
1253
1254 if (td->o.random_distribution == FIO_RAND_DIST_ZIPF) {
1255 if (val == 1.00) {
1256 log_err("fio: zipf theta must different than 1.0\n");
1257 return 1;
1258 }
1259 if (parse_dryrun())
1260 return 0;
1261 td->o.zipf_theta.u.f = val;
1262 } else if (td->o.random_distribution == FIO_RAND_DIST_PARETO) {
1263 if (val <= 0.00 || val >= 1.00) {
1264 log_err("fio: pareto input out of range (0 < input < 1.0)\n");
1265 return 1;
1266 }
1267 if (parse_dryrun())
1268 return 0;
1269 td->o.pareto_h.u.f = val;
1270 } else {
1271 if (val < 0.00 || val >= 100.0) {
1272 log_err("fio: normal deviation out of range (0 <= input < 100.0)\n");
1273 return 1;
1274 }
1275 if (parse_dryrun())
1276 return 0;
1277 td->o.gauss_dev.u.f = val;
1278 }
1279
1280 return 0;
1281}
1282
1283static int str_steadystate_cb(void *data, const char *str)
1284{
1285 struct thread_data *td = cb_data_to_td(data);
1286 double val;
1287 char *nr;
1288 char *pct;
1289 long long ll;
1290
1291 if (td->o.ss_state != FIO_SS_IOPS && td->o.ss_state != FIO_SS_IOPS_SLOPE &&
1292 td->o.ss_state != FIO_SS_BW && td->o.ss_state != FIO_SS_BW_SLOPE) {
1293 /* should be impossible to get here */
1294 log_err("fio: unknown steady state criterion\n");
1295 return 1;
1296 }
1297
1298 nr = get_opt_postfix(str);
1299 if (!nr) {
1300 log_err("fio: steadystate threshold must be specified in addition to criterion\n");
1301 free(nr);
1302 return 1;
1303 }
1304
1305 /* ENHANCEMENT Allow fio to understand size=10.2% and use here */
1306 pct = strstr(nr, "%");
1307 if (pct) {
1308 *pct = '\0';
1309 strip_blank_end(nr);
1310 if (!str_to_float(nr, &val, 0)) {
1311 log_err("fio: could not parse steadystate threshold percentage\n");
1312 free(nr);
1313 return 1;
1314 }
1315
1316 dprint(FD_PARSE, "set steady state threshold to %f%%\n", val);
1317 free(nr);
1318 if (parse_dryrun())
1319 return 0;
1320
1321 td->o.ss_state |= FIO_SS_PCT;
1322 td->o.ss_limit.u.f = val;
1323 } else if (td->o.ss_state & FIO_SS_IOPS) {
1324 if (!str_to_float(nr, &val, 0)) {
1325 log_err("fio: steadystate IOPS threshold postfix parsing failed\n");
1326 free(nr);
1327 return 1;
1328 }
1329
1330 dprint(FD_PARSE, "set steady state IOPS threshold to %f\n", val);
1331 free(nr);
1332 if (parse_dryrun())
1333 return 0;
1334
1335 td->o.ss_limit.u.f = val;
1336 } else { /* bandwidth criterion */
1337 if (str_to_decimal(nr, &ll, 1, td, 0, 0)) {
1338 log_err("fio: steadystate BW threshold postfix parsing failed\n");
1339 free(nr);
1340 return 1;
1341 }
1342
1343 dprint(FD_PARSE, "set steady state BW threshold to %lld\n", ll);
1344 free(nr);
1345 if (parse_dryrun())
1346 return 0;
1347
1348 td->o.ss_limit.u.f = (double) ll;
1349 }
1350
1351 td->ss.state = td->o.ss_state;
1352 return 0;
1353}
1354
1355/*
1356 * Return next name in the string. Files are separated with ':'. If the ':'
1357 * is escaped with a '\', then that ':' is part of the filename and does not
1358 * indicate a new file.
1359 */
1360char *get_next_str(char **ptr)
1361{
1362 char *str = *ptr;
1363 char *p, *start;
1364
1365 if (!str || !strlen(str))
1366 return NULL;
1367
1368 start = str;
1369 do {
1370 /*
1371 * No colon, we are done
1372 */
1373 p = strchr(str, ':');
1374 if (!p) {
1375 *ptr = NULL;
1376 break;
1377 }
1378
1379 /*
1380 * We got a colon, but it's the first character. Skip and
1381 * continue
1382 */
1383 if (p == start) {
1384 str = ++start;
1385 continue;
1386 }
1387
1388 if (*(p - 1) != '\\') {
1389 *p = '\0';
1390 *ptr = p + 1;
1391 break;
1392 }
1393
1394 memmove(p - 1, p, strlen(p) + 1);
1395 str = p;
1396 } while (1);
1397
1398 return start;
1399}
1400
1401
1402int get_max_str_idx(char *input)
1403{
1404 unsigned int cur_idx;
1405 char *str, *p;
1406
1407 p = str = strdup(input);
1408 for (cur_idx = 0; ; cur_idx++)
1409 if (get_next_str(&str) == NULL)
1410 break;
1411
1412 free(p);
1413 return cur_idx;
1414}
1415
1416/*
1417 * Returns the directory at the index, indexes > entries will be
1418 * assigned via modulo division of the index
1419 */
1420int set_name_idx(char *target, size_t tlen, char *input, int index,
1421 bool unique_filename)
1422{
1423 unsigned int cur_idx;
1424 int len;
1425 char *fname, *str, *p;
1426
1427 p = str = strdup(input);
1428
1429 index %= get_max_str_idx(input);
1430 for (cur_idx = 0; cur_idx <= index; cur_idx++)
1431 fname = get_next_str(&str);
1432
1433 if (client_sockaddr_str[0] && unique_filename) {
1434 len = snprintf(target, tlen, "%s/%s.", fname,
1435 client_sockaddr_str);
1436 } else
1437 len = snprintf(target, tlen, "%s%c", fname,
1438 FIO_OS_PATH_SEPARATOR);
1439
1440 target[tlen - 1] = '\0';
1441 free(p);
1442
1443 return len;
1444}
1445
1446char* get_name_by_idx(char *input, int index)
1447{
1448 unsigned int cur_idx;
1449 char *fname, *str, *p;
1450
1451 p = str = strdup(input);
1452
1453 index %= get_max_str_idx(input);
1454 for (cur_idx = 0; cur_idx <= index; cur_idx++)
1455 fname = get_next_str(&str);
1456
1457 fname = strdup(fname);
1458 free(p);
1459
1460 return fname;
1461}
1462
1463static int str_filename_cb(void *data, const char *input)
1464{
1465 struct thread_data *td = cb_data_to_td(data);
1466 char *fname, *str, *p;
1467
1468 p = str = strdup(input);
1469
1470 strip_blank_front(&str);
1471 strip_blank_end(str);
1472
1473 /*
1474 * Ignore what we may already have from nrfiles option.
1475 */
1476 if (!td->files_index)
1477 td->o.nr_files = 0;
1478
1479 while ((fname = get_next_str(&str)) != NULL) {
1480 if (!strlen(fname))
1481 break;
1482 add_file(td, fname, 0, 1);
1483 }
1484
1485 free(p);
1486 return 0;
1487}
1488
1489static int str_directory_cb(void *data, const char fio_unused *unused)
1490{
1491 struct thread_data *td = cb_data_to_td(data);
1492 struct stat sb;
1493 char *dirname, *str, *p;
1494 int ret = 0;
1495
1496 if (parse_dryrun())
1497 return 0;
1498
1499 p = str = strdup(td->o.directory);
1500 while ((dirname = get_next_str(&str)) != NULL) {
1501 if (lstat(dirname, &sb) < 0) {
1502 ret = errno;
1503
1504 log_err("fio: %s is not a directory\n", dirname);
1505 td_verror(td, ret, "lstat");
1506 goto out;
1507 }
1508 if (!S_ISDIR(sb.st_mode)) {
1509 log_err("fio: %s is not a directory\n", dirname);
1510 ret = 1;
1511 goto out;
1512 }
1513 }
1514
1515out:
1516 free(p);
1517 return ret;
1518}
1519
1520static int str_opendir_cb(void *data, const char fio_unused *str)
1521{
1522 struct thread_data *td = cb_data_to_td(data);
1523
1524 if (parse_dryrun())
1525 return 0;
1526
1527 if (!td->files_index)
1528 td->o.nr_files = 0;
1529
1530 return add_dir_files(td, td->o.opendir);
1531}
1532
1533static int str_buffer_pattern_cb(void *data, const char *input)
1534{
1535 struct thread_data *td = cb_data_to_td(data);
1536 int ret;
1537
1538 /* FIXME: for now buffer pattern does not support formats */
1539 ret = parse_and_fill_pattern_alloc(input, strlen(input),
1540 &td->o.buffer_pattern, NULL, NULL, NULL);
1541 if (ret < 0)
1542 return 1;
1543
1544 assert(ret != 0);
1545 td->o.buffer_pattern_bytes = ret;
1546
1547 /*
1548 * If this job is doing any reading or has compression set,
1549 * ensure that we refill buffers for writes or we could be
1550 * invalidating the pattern through reads.
1551 */
1552 if (!td->o.compress_percentage && !td_read(td))
1553 td->o.refill_buffers = 0;
1554 else
1555 td->o.refill_buffers = 1;
1556
1557 td->o.scramble_buffers = 0;
1558 td->o.zero_buffers = 0;
1559
1560 return 0;
1561}
1562
1563static int str_buffer_compress_cb(void *data, unsigned long long *il)
1564{
1565 struct thread_data *td = cb_data_to_td(data);
1566
1567 td->flags |= TD_F_COMPRESS;
1568 td->o.compress_percentage = *il;
1569 return 0;
1570}
1571
1572static int str_dedupe_cb(void *data, unsigned long long *il)
1573{
1574 struct thread_data *td = cb_data_to_td(data);
1575
1576 td->flags |= TD_F_COMPRESS;
1577 td->o.dedupe_percentage = *il;
1578 td->o.refill_buffers = 1;
1579 return 0;
1580}
1581
1582static int str_verify_pattern_cb(void *data, const char *input)
1583{
1584 struct thread_data *td = cb_data_to_td(data);
1585 int ret;
1586
1587 td->o.verify_fmt_sz = FIO_ARRAY_SIZE(td->o.verify_fmt);
1588 ret = parse_and_fill_pattern_alloc(input, strlen(input),
1589 &td->o.verify_pattern, fmt_desc, td->o.verify_fmt,
1590 &td->o.verify_fmt_sz);
1591 if (ret < 0)
1592 return 1;
1593
1594 assert(ret != 0);
1595 td->o.verify_pattern_bytes = ret;
1596 /*
1597 * VERIFY_* could already be set
1598 */
1599 if (!fio_option_is_set(&td->o, verify))
1600 td->o.verify = VERIFY_PATTERN;
1601
1602 return 0;
1603}
1604
1605static int str_gtod_reduce_cb(void *data, int *il)
1606{
1607 struct thread_data *td = cb_data_to_td(data);
1608 int val = *il;
1609
1610 /*
1611 * Only modify options if gtod_reduce==1
1612 * Otherwise leave settings alone.
1613 */
1614 if (val) {
1615 td->o.disable_lat = 1;
1616 td->o.disable_clat = 1;
1617 td->o.disable_slat = 1;
1618 td->o.disable_bw = 1;
1619 td->o.clat_percentiles = 0;
1620 td->o.lat_percentiles = 0;
1621 td->o.slat_percentiles = 0;
1622 td->ts_cache_mask = 63;
1623 }
1624
1625 return 0;
1626}
1627
1628static int str_offset_cb(void *data, unsigned long long *__val)
1629{
1630 struct thread_data *td = cb_data_to_td(data);
1631 unsigned long long v = *__val;
1632
1633 if (parse_is_percent(v)) {
1634 td->o.start_offset = 0;
1635 td->o.start_offset_percent = -1ULL - v;
1636 td->o.start_offset_nz = 0;
1637 dprint(FD_PARSE, "SET start_offset_percent %d\n",
1638 td->o.start_offset_percent);
1639 } else if (parse_is_zone(v)) {
1640 td->o.start_offset = 0;
1641 td->o.start_offset_percent = 0;
1642 td->o.start_offset_nz = v - ZONE_BASE_VAL;
1643 } else
1644 td->o.start_offset = v;
1645
1646 return 0;
1647}
1648
1649static int str_offset_increment_cb(void *data, unsigned long long *__val)
1650{
1651 struct thread_data *td = cb_data_to_td(data);
1652 unsigned long long v = *__val;
1653
1654 if (parse_is_percent(v)) {
1655 td->o.offset_increment = 0;
1656 td->o.offset_increment_percent = -1ULL - v;
1657 td->o.offset_increment_nz = 0;
1658 dprint(FD_PARSE, "SET offset_increment_percent %d\n",
1659 td->o.offset_increment_percent);
1660 } else if (parse_is_zone(v)) {
1661 td->o.offset_increment = 0;
1662 td->o.offset_increment_percent = 0;
1663 td->o.offset_increment_nz = v - ZONE_BASE_VAL;
1664 } else
1665 td->o.offset_increment = v;
1666
1667 return 0;
1668}
1669
1670static int str_size_cb(void *data, unsigned long long *__val)
1671{
1672 struct thread_data *td = cb_data_to_td(data);
1673 unsigned long long v = *__val;
1674
1675 if (parse_is_percent(v)) {
1676 td->o.size = 0;
1677 td->o.size_percent = -1ULL - v;
1678 dprint(FD_PARSE, "SET size_percent %d\n",
1679 td->o.size_percent);
1680 } else if (parse_is_zone(v)) {
1681 td->o.size = 0;
1682 td->o.size_percent = 0;
1683 td->o.size_nz = v - ZONE_BASE_VAL;
1684 } else
1685 td->o.size = v;
1686
1687 return 0;
1688}
1689
1690static int str_io_size_cb(void *data, unsigned long long *__val)
1691{
1692 struct thread_data *td = cb_data_to_td(data);
1693 unsigned long long v = *__val;
1694
1695 if (parse_is_percent_uncapped(v)) {
1696 td->o.io_size = 0;
1697 td->o.io_size_percent = -1ULL - v;
1698 if (td->o.io_size_percent > 100) {
1699 log_err("fio: io_size values greater than 100%% aren't supported\n");
1700 return 1;
1701 }
1702 dprint(FD_PARSE, "SET io_size_percent %d\n",
1703 td->o.io_size_percent);
1704 } else if (parse_is_zone(v)) {
1705 td->o.io_size = 0;
1706 td->o.io_size_percent = 0;
1707 td->o.io_size_nz = v - ZONE_BASE_VAL;
1708 } else
1709 td->o.io_size = v;
1710
1711 return 0;
1712}
1713
1714static int str_zoneskip_cb(void *data, unsigned long long *__val)
1715{
1716 struct thread_data *td = cb_data_to_td(data);
1717 unsigned long long v = *__val;
1718
1719 if (parse_is_zone(v)) {
1720 td->o.zone_skip = 0;
1721 td->o.zone_skip_nz = v - ZONE_BASE_VAL;
1722 } else
1723 td->o.zone_skip = v;
1724
1725 return 0;
1726}
1727
1728static int str_write_bw_log_cb(void *data, const char *str)
1729{
1730 struct thread_data *td = cb_data_to_td(data);
1731
1732 if (str)
1733 td->o.bw_log_file = strdup(str);
1734
1735 td->o.write_bw_log = 1;
1736 return 0;
1737}
1738
1739static int str_write_lat_log_cb(void *data, const char *str)
1740{
1741 struct thread_data *td = cb_data_to_td(data);
1742
1743 if (str)
1744 td->o.lat_log_file = strdup(str);
1745
1746 td->o.write_lat_log = 1;
1747 return 0;
1748}
1749
1750static int str_write_iops_log_cb(void *data, const char *str)
1751{
1752 struct thread_data *td = cb_data_to_td(data);
1753
1754 if (str)
1755 td->o.iops_log_file = strdup(str);
1756
1757 td->o.write_iops_log = 1;
1758 return 0;
1759}
1760
1761static int str_write_hist_log_cb(void *data, const char *str)
1762{
1763 struct thread_data *td = cb_data_to_td(data);
1764
1765 if (str)
1766 td->o.hist_log_file = strdup(str);
1767
1768 td->o.write_hist_log = 1;
1769 return 0;
1770}
1771
1772/*
1773 * str is supposed to be a substring of the strdup'd original string,
1774 * and is valid only if it's a regular file path.
1775 * This function keeps the pointer to the path as needed later.
1776 *
1777 * "external:/path/to/so\0" <- original pointer updated with strdup'd
1778 * "external\0" <- above pointer after parsed, i.e. ->ioengine
1779 * "/path/to/so\0" <- str argument, i.e. ->ioengine_so_path
1780 */
1781static int str_ioengine_external_cb(void *data, const char *str)
1782{
1783 struct thread_data *td = cb_data_to_td(data);
1784 struct stat sb;
1785 char *p;
1786
1787 if (!str) {
1788 log_err("fio: null external ioengine path\n");
1789 return 1;
1790 }
1791
1792 p = (char *)str; /* str is mutable */
1793 strip_blank_front(&p);
1794 strip_blank_end(p);
1795
1796 if (stat(p, &sb) || !S_ISREG(sb.st_mode)) {
1797 log_err("fio: invalid external ioengine path \"%s\"\n", p);
1798 return 1;
1799 }
1800
1801 td->o.ioengine_so_path = p;
1802 return 0;
1803}
1804
1805static int rw_verify(const struct fio_option *o, void *data)
1806{
1807 struct thread_data *td = cb_data_to_td(data);
1808
1809 if (read_only && (td_write(td) || td_trim(td))) {
1810 log_err("fio: job <%s> has write or trim bit set, but"
1811 " fio is in read-only mode\n", td->o.name);
1812 return 1;
1813 }
1814
1815 return 0;
1816}
1817
1818static int gtod_cpu_verify(const struct fio_option *o, void *data)
1819{
1820#ifndef FIO_HAVE_CPU_AFFINITY
1821 struct thread_data *td = cb_data_to_td(data);
1822
1823 if (td->o.gtod_cpu) {
1824 log_err("fio: platform must support CPU affinity for"
1825 "gettimeofday() offloading\n");
1826 return 1;
1827 }
1828#endif
1829
1830 return 0;
1831}
1832
1833/*
1834 * Map of job/command line options
1835 */
1836struct fio_option fio_options[FIO_MAX_OPTS] = {
1837 {
1838 .name = "description",
1839 .lname = "Description of job",
1840 .type = FIO_OPT_STR_STORE,
1841 .off1 = offsetof(struct thread_options, description),
1842 .help = "Text job description",
1843 .category = FIO_OPT_C_GENERAL,
1844 .group = FIO_OPT_G_DESC,
1845 },
1846 {
1847 .name = "name",
1848 .lname = "Job name",
1849 .type = FIO_OPT_STR_STORE,
1850 .off1 = offsetof(struct thread_options, name),
1851 .help = "Name of this job",
1852 .category = FIO_OPT_C_GENERAL,
1853 .group = FIO_OPT_G_DESC,
1854 },
1855 {
1856 .name = "wait_for",
1857 .lname = "Waitee name",
1858 .type = FIO_OPT_STR_STORE,
1859 .off1 = offsetof(struct thread_options, wait_for),
1860 .help = "Name of the job this one wants to wait for before starting",
1861 .category = FIO_OPT_C_GENERAL,
1862 .group = FIO_OPT_G_DESC,
1863 },
1864 {
1865 .name = "filename",
1866 .lname = "Filename(s)",
1867 .type = FIO_OPT_STR_STORE,
1868 .off1 = offsetof(struct thread_options, filename),
1869 .maxlen = PATH_MAX,
1870 .cb = str_filename_cb,
1871 .prio = -1, /* must come after "directory" */
1872 .help = "File(s) to use for the workload",
1873 .category = FIO_OPT_C_FILE,
1874 .group = FIO_OPT_G_FILENAME,
1875 },
1876 {
1877 .name = "directory",
1878 .lname = "Directory",
1879 .type = FIO_OPT_STR_STORE,
1880 .off1 = offsetof(struct thread_options, directory),
1881 .cb = str_directory_cb,
1882 .help = "Directory to store files in",
1883 .category = FIO_OPT_C_FILE,
1884 .group = FIO_OPT_G_FILENAME,
1885 },
1886 {
1887 .name = "filename_format",
1888 .lname = "Filename Format",
1889 .type = FIO_OPT_STR_STORE,
1890 .off1 = offsetof(struct thread_options, filename_format),
1891 .prio = -1, /* must come after "directory" */
1892 .help = "Override default $jobname.$jobnum.$filenum naming",
1893 .def = "$jobname.$jobnum.$filenum",
1894 .category = FIO_OPT_C_FILE,
1895 .group = FIO_OPT_G_FILENAME,
1896 },
1897 {
1898 .name = "unique_filename",
1899 .lname = "Unique Filename",
1900 .type = FIO_OPT_BOOL,
1901 .off1 = offsetof(struct thread_options, unique_filename),
1902 .help = "For network clients, prefix file with source IP",
1903 .def = "1",
1904 .category = FIO_OPT_C_FILE,
1905 .group = FIO_OPT_G_FILENAME,
1906 },
1907 {
1908 .name = "lockfile",
1909 .lname = "Lockfile",
1910 .type = FIO_OPT_STR,
1911 .off1 = offsetof(struct thread_options, file_lock_mode),
1912 .help = "Lock file when doing IO to it",
1913 .prio = 1,
1914 .parent = "filename",
1915 .hide = 0,
1916 .def = "none",
1917 .category = FIO_OPT_C_FILE,
1918 .group = FIO_OPT_G_FILENAME,
1919 .posval = {
1920 { .ival = "none",
1921 .oval = FILE_LOCK_NONE,
1922 .help = "No file locking",
1923 },
1924 { .ival = "exclusive",
1925 .oval = FILE_LOCK_EXCLUSIVE,
1926 .help = "Exclusive file lock",
1927 },
1928 {
1929 .ival = "readwrite",
1930 .oval = FILE_LOCK_READWRITE,
1931 .help = "Read vs write lock",
1932 },
1933 },
1934 },
1935 {
1936 .name = "opendir",
1937 .lname = "Open directory",
1938 .type = FIO_OPT_STR_STORE,
1939 .off1 = offsetof(struct thread_options, opendir),
1940 .cb = str_opendir_cb,
1941 .help = "Recursively add files from this directory and down",
1942 .category = FIO_OPT_C_FILE,
1943 .group = FIO_OPT_G_FILENAME,
1944 },
1945 {
1946 .name = "rw",
1947 .lname = "Read/write",
1948 .alias = "readwrite",
1949 .type = FIO_OPT_STR,
1950 .cb = str_rw_cb,
1951 .off1 = offsetof(struct thread_options, td_ddir),
1952 .help = "IO direction",
1953 .def = "read",
1954 .verify = rw_verify,
1955 .category = FIO_OPT_C_IO,
1956 .group = FIO_OPT_G_IO_BASIC,
1957 .posval = {
1958 { .ival = "read",
1959 .oval = TD_DDIR_READ,
1960 .help = "Sequential read",
1961 },
1962 { .ival = "write",
1963 .oval = TD_DDIR_WRITE,
1964 .help = "Sequential write",
1965 },
1966 { .ival = "trim",
1967 .oval = TD_DDIR_TRIM,
1968 .help = "Sequential trim",
1969 },
1970 { .ival = "randread",
1971 .oval = TD_DDIR_RANDREAD,
1972 .help = "Random read",
1973 },
1974 { .ival = "randwrite",
1975 .oval = TD_DDIR_RANDWRITE,
1976 .help = "Random write",
1977 },
1978 { .ival = "randtrim",
1979 .oval = TD_DDIR_RANDTRIM,
1980 .help = "Random trim",
1981 },
1982 { .ival = "rw",
1983 .oval = TD_DDIR_RW,
1984 .help = "Sequential read and write mix",
1985 },
1986 { .ival = "readwrite",
1987 .oval = TD_DDIR_RW,
1988 .help = "Sequential read and write mix",
1989 },
1990 { .ival = "randrw",
1991 .oval = TD_DDIR_RANDRW,
1992 .help = "Random read and write mix"
1993 },
1994 { .ival = "trimwrite",
1995 .oval = TD_DDIR_TRIMWRITE,
1996 .help = "Trim and write mix, trims preceding writes"
1997 },
1998 { .ival = "randtrimwrite",
1999 .oval = TD_DDIR_RANDTRIMWRITE,
2000 .help = "Randomly trim and write mix, trims preceding writes"
2001 },
2002 },
2003 },
2004 {
2005 .name = "rw_sequencer",
2006 .lname = "RW Sequencer",
2007 .type = FIO_OPT_STR,
2008 .off1 = offsetof(struct thread_options, rw_seq),
2009 .help = "IO offset generator modifier",
2010 .def = "sequential",
2011 .category = FIO_OPT_C_IO,
2012 .group = FIO_OPT_G_IO_BASIC,
2013 .posval = {
2014 { .ival = "sequential",
2015 .oval = RW_SEQ_SEQ,
2016 .help = "Generate sequential offsets",
2017 },
2018 { .ival = "identical",
2019 .oval = RW_SEQ_IDENT,
2020 .help = "Generate identical offsets",
2021 },
2022 },
2023 },
2024
2025 {
2026 .name = "ioengine",
2027 .lname = "IO Engine",
2028 .type = FIO_OPT_STR_STORE,
2029 .off1 = offsetof(struct thread_options, ioengine),
2030 .help = "IO engine to use",
2031 .def = FIO_PREFERRED_ENGINE,
2032 .category = FIO_OPT_C_IO,
2033 .group = FIO_OPT_G_IO_BASIC,
2034 .posval = {
2035 { .ival = "sync",
2036 .help = "Use read/write",
2037 },
2038 { .ival = "psync",
2039 .help = "Use pread/pwrite",
2040 },
2041 { .ival = "vsync",
2042 .help = "Use readv/writev",
2043 },
2044#ifdef CONFIG_PWRITEV
2045 { .ival = "pvsync",
2046 .help = "Use preadv/pwritev",
2047 },
2048#endif
2049#ifdef FIO_HAVE_PWRITEV2
2050 { .ival = "pvsync2",
2051 .help = "Use preadv2/pwritev2",
2052 },
2053#endif
2054#ifdef CONFIG_LIBAIO
2055 { .ival = "libaio",
2056 .help = "Linux native asynchronous IO",
2057 },
2058#endif
2059#ifdef ARCH_HAVE_IOURING
2060 { .ival = "io_uring",
2061 .help = "Fast Linux native aio",
2062 },
2063#endif
2064#ifdef CONFIG_POSIXAIO
2065 { .ival = "posixaio",
2066 .help = "POSIX asynchronous IO",
2067 },
2068#endif
2069#ifdef CONFIG_SOLARISAIO
2070 { .ival = "solarisaio",
2071 .help = "Solaris native asynchronous IO",
2072 },
2073#endif
2074#ifdef CONFIG_WINDOWSAIO
2075 { .ival = "windowsaio",
2076 .help = "Windows native asynchronous IO"
2077 },
2078#endif
2079#ifdef CONFIG_RBD
2080 { .ival = "rbd",
2081 .help = "Rados Block Device asynchronous IO"
2082 },
2083#endif
2084 { .ival = "mmap",
2085 .help = "Memory mapped IO"
2086 },
2087#ifdef CONFIG_LINUX_SPLICE
2088 { .ival = "splice",
2089 .help = "splice/vmsplice based IO",
2090 },
2091 { .ival = "netsplice",
2092 .help = "splice/vmsplice to/from the network",
2093 },
2094#endif
2095#ifdef FIO_HAVE_SGIO
2096 { .ival = "sg",
2097 .help = "SCSI generic v3 IO",
2098 },
2099#endif
2100 { .ival = "null",
2101 .help = "Testing engine (no data transfer)",
2102 },
2103 { .ival = "net",
2104 .help = "Network IO",
2105 },
2106 { .ival = "cpuio",
2107 .help = "CPU cycle burner engine",
2108 },
2109#ifdef CONFIG_RDMA
2110 { .ival = "rdma",
2111 .help = "RDMA IO engine",
2112 },
2113#endif
2114#ifdef CONFIG_LIBRPMA_APM
2115 { .ival = "librpma_apm",
2116 .help = "librpma IO engine in APM mode",
2117 },
2118#endif
2119#ifdef CONFIG_LIBRPMA_GPSPM
2120 { .ival = "librpma_gpspm",
2121 .help = "librpma IO engine in GPSPM mode",
2122 },
2123#endif
2124#ifdef CONFIG_LINUX_EXT4_MOVE_EXTENT
2125 { .ival = "e4defrag",
2126 .help = "ext4 defrag engine",
2127 },
2128#endif
2129#ifdef CONFIG_LINUX_FALLOCATE
2130 { .ival = "falloc",
2131 .help = "fallocate() file based engine",
2132 },
2133#endif
2134#ifdef CONFIG_GFAPI
2135 { .ival = "gfapi",
2136 .help = "Glusterfs libgfapi(sync) based engine"
2137 },
2138 { .ival = "gfapi_async",
2139 .help = "Glusterfs libgfapi(async) based engine"
2140 },
2141#endif
2142#ifdef CONFIG_LIBHDFS
2143 { .ival = "libhdfs",
2144 .help = "Hadoop Distributed Filesystem (HDFS) engine"
2145 },
2146#endif
2147#ifdef CONFIG_IME
2148 { .ival = "ime_psync",
2149 .help = "DDN's IME synchronous IO engine",
2150 },
2151 { .ival = "ime_psyncv",
2152 .help = "DDN's IME synchronous IO engine using iovecs",
2153 },
2154 { .ival = "ime_aio",
2155 .help = "DDN's IME asynchronous IO engine",
2156 },
2157#endif
2158#ifdef CONFIG_LINUX_DEVDAX
2159 { .ival = "dev-dax",
2160 .help = "DAX Device based IO engine",
2161 },
2162#endif
2163 {
2164 .ival = "filecreate",
2165 .help = "File creation engine",
2166 },
2167 { .ival = "external",
2168 .help = "Load external engine (append name)",
2169 .cb = str_ioengine_external_cb,
2170 },
2171#ifdef CONFIG_LIBPMEM
2172 { .ival = "libpmem",
2173 .help = "PMDK libpmem based IO engine",
2174 },
2175#endif
2176#ifdef CONFIG_HTTP
2177 { .ival = "http",
2178 .help = "HTTP (WebDAV/S3) IO engine",
2179 },
2180#endif
2181 { .ival = "nbd",
2182 .help = "Network Block Device (NBD) IO engine"
2183 },
2184#ifdef CONFIG_DFS
2185 { .ival = "dfs",
2186 .help = "DAOS File System (dfs) IO engine",
2187 },
2188#endif
2189#ifdef CONFIG_LIBNFS
2190 { .ival = "nfs",
2191 .help = "NFS IO engine",
2192 },
2193#endif
2194#ifdef CONFIG_LIBXNVME
2195 { .ival = "xnvme",
2196 .help = "XNVME IO engine",
2197 },
2198#endif
2199 },
2200 },
2201 {
2202 .name = "iodepth",
2203 .lname = "IO Depth",
2204 .type = FIO_OPT_INT,
2205 .off1 = offsetof(struct thread_options, iodepth),
2206 .help = "Number of IO buffers to keep in flight",
2207 .minval = 1,
2208 .interval = 1,
2209 .def = "1",
2210 .category = FIO_OPT_C_IO,
2211 .group = FIO_OPT_G_IO_BASIC,
2212 },
2213 {
2214 .name = "iodepth_batch",
2215 .lname = "IO Depth batch",
2216 .alias = "iodepth_batch_submit",
2217 .type = FIO_OPT_INT,
2218 .off1 = offsetof(struct thread_options, iodepth_batch),
2219 .help = "Number of IO buffers to submit in one go",
2220 .parent = "iodepth",
2221 .hide = 1,
2222 .interval = 1,
2223 .def = "1",
2224 .category = FIO_OPT_C_IO,
2225 .group = FIO_OPT_G_IO_BASIC,
2226 },
2227 {
2228 .name = "iodepth_batch_complete_min",
2229 .lname = "Min IO depth batch complete",
2230 .alias = "iodepth_batch_complete",
2231 .type = FIO_OPT_INT,
2232 .off1 = offsetof(struct thread_options, iodepth_batch_complete_min),
2233 .help = "Min number of IO buffers to retrieve in one go",
2234 .parent = "iodepth",
2235 .hide = 1,
2236 .minval = 0,
2237 .interval = 1,
2238 .def = "1",
2239 .category = FIO_OPT_C_IO,
2240 .group = FIO_OPT_G_IO_BASIC,
2241 },
2242 {
2243 .name = "iodepth_batch_complete_max",
2244 .lname = "Max IO depth batch complete",
2245 .type = FIO_OPT_INT,
2246 .off1 = offsetof(struct thread_options, iodepth_batch_complete_max),
2247 .help = "Max number of IO buffers to retrieve in one go",
2248 .parent = "iodepth",
2249 .hide = 1,
2250 .minval = 0,
2251 .interval = 1,
2252 .category = FIO_OPT_C_IO,
2253 .group = FIO_OPT_G_IO_BASIC,
2254 },
2255 {
2256 .name = "iodepth_low",
2257 .lname = "IO Depth batch low",
2258 .type = FIO_OPT_INT,
2259 .off1 = offsetof(struct thread_options, iodepth_low),
2260 .help = "Low water mark for queuing depth",
2261 .parent = "iodepth",
2262 .hide = 1,
2263 .interval = 1,
2264 .category = FIO_OPT_C_IO,
2265 .group = FIO_OPT_G_IO_BASIC,
2266 },
2267 {
2268 .name = "serialize_overlap",
2269 .lname = "Serialize overlap",
2270 .off1 = offsetof(struct thread_options, serialize_overlap),
2271 .type = FIO_OPT_BOOL,
2272 .help = "Wait for in-flight IOs that collide to complete",
2273 .parent = "iodepth",
2274 .def = "0",
2275 .category = FIO_OPT_C_IO,
2276 .group = FIO_OPT_G_IO_BASIC,
2277 },
2278 {
2279 .name = "io_submit_mode",
2280 .lname = "IO submit mode",
2281 .type = FIO_OPT_STR,
2282 .off1 = offsetof(struct thread_options, io_submit_mode),
2283 .help = "How IO submissions and completions are done",
2284 .def = "inline",
2285 .category = FIO_OPT_C_IO,
2286 .group = FIO_OPT_G_IO_BASIC,
2287 .posval = {
2288 { .ival = "inline",
2289 .oval = IO_MODE_INLINE,
2290 .help = "Submit and complete IO inline",
2291 },
2292 { .ival = "offload",
2293 .oval = IO_MODE_OFFLOAD,
2294 .help = "Offload submit and complete to threads",
2295 },
2296 },
2297 },
2298 {
2299 .name = "size",
2300 .lname = "Size",
2301 .type = FIO_OPT_STR_VAL_ZONE,
2302 .cb = str_size_cb,
2303 .off1 = offsetof(struct thread_options, size),
2304 .help = "Total size of device or files",
2305 .category = FIO_OPT_C_IO,
2306 .group = FIO_OPT_G_INVALID,
2307 },
2308 {
2309 .name = "io_size",
2310 .alias = "io_limit",
2311 .lname = "IO Size",
2312 .type = FIO_OPT_STR_VAL_ZONE,
2313 .cb = str_io_size_cb,
2314 .off1 = offsetof(struct thread_options, io_size),
2315 .help = "Total size of I/O to be performed",
2316 .category = FIO_OPT_C_IO,
2317 .group = FIO_OPT_G_INVALID,
2318 },
2319 {
2320 .name = "fill_device",
2321 .lname = "Fill device",
2322 .alias = "fill_fs",
2323 .type = FIO_OPT_BOOL,
2324 .off1 = offsetof(struct thread_options, fill_device),
2325 .help = "Write until an ENOSPC error occurs",
2326 .def = "0",
2327 .category = FIO_OPT_C_FILE,
2328 .group = FIO_OPT_G_INVALID,
2329 },
2330 {
2331 .name = "filesize",
2332 .lname = "File size",
2333 .type = FIO_OPT_STR_VAL,
2334 .off1 = offsetof(struct thread_options, file_size_low),
2335 .off2 = offsetof(struct thread_options, file_size_high),
2336 .minval = 1,
2337 .help = "Size of individual files",
2338 .interval = 1024 * 1024,
2339 .category = FIO_OPT_C_FILE,
2340 .group = FIO_OPT_G_INVALID,
2341 },
2342 {
2343 .name = "file_append",
2344 .lname = "File append",
2345 .type = FIO_OPT_BOOL,
2346 .off1 = offsetof(struct thread_options, file_append),
2347 .help = "IO will start at the end of the file(s)",
2348 .def = "0",
2349 .category = FIO_OPT_C_FILE,
2350 .group = FIO_OPT_G_INVALID,
2351 },
2352 {
2353 .name = "offset",
2354 .lname = "IO offset",
2355 .alias = "fileoffset",
2356 .type = FIO_OPT_STR_VAL_ZONE,
2357 .cb = str_offset_cb,
2358 .off1 = offsetof(struct thread_options, start_offset),
2359 .help = "Start IO from this offset",
2360 .def = "0",
2361 .category = FIO_OPT_C_IO,
2362 .group = FIO_OPT_G_INVALID,
2363 },
2364 {
2365 .name = "offset_align",
2366 .lname = "IO offset alignment",
2367 .type = FIO_OPT_INT,
2368 .off1 = offsetof(struct thread_options, start_offset_align),
2369 .help = "Start IO from this offset alignment",
2370 .def = "0",
2371 .interval = 512,
2372 .category = FIO_OPT_C_IO,
2373 .group = FIO_OPT_G_INVALID,
2374 },
2375 {
2376 .name = "offset_increment",
2377 .lname = "IO offset increment",
2378 .type = FIO_OPT_STR_VAL_ZONE,
2379 .cb = str_offset_increment_cb,
2380 .off1 = offsetof(struct thread_options, offset_increment),
2381 .help = "What is the increment from one offset to the next",
2382 .parent = "offset",
2383 .hide = 1,
2384 .def = "0",
2385 .category = FIO_OPT_C_IO,
2386 .group = FIO_OPT_G_INVALID,
2387 },
2388 {
2389 .name = "number_ios",
2390 .lname = "Number of IOs to perform",
2391 .type = FIO_OPT_STR_VAL,
2392 .off1 = offsetof(struct thread_options, number_ios),
2393 .help = "Force job completion after this number of IOs",
2394 .def = "0",
2395 .category = FIO_OPT_C_IO,
2396 .group = FIO_OPT_G_INVALID,
2397 },
2398 {
2399 .name = "bs",
2400 .lname = "Block size",
2401 .alias = "blocksize",
2402 .type = FIO_OPT_ULL,
2403 .off1 = offsetof(struct thread_options, bs[DDIR_READ]),
2404 .off2 = offsetof(struct thread_options, bs[DDIR_WRITE]),
2405 .off3 = offsetof(struct thread_options, bs[DDIR_TRIM]),
2406 .minval = 1,
2407 .help = "Block size unit",
2408 .def = "4096",
2409 .parent = "rw",
2410 .hide = 1,
2411 .interval = 512,
2412 .category = FIO_OPT_C_IO,
2413 .group = FIO_OPT_G_INVALID,
2414 },
2415 {
2416 .name = "ba",
2417 .lname = "Block size align",
2418 .alias = "blockalign",
2419 .type = FIO_OPT_ULL,
2420 .off1 = offsetof(struct thread_options, ba[DDIR_READ]),
2421 .off2 = offsetof(struct thread_options, ba[DDIR_WRITE]),
2422 .off3 = offsetof(struct thread_options, ba[DDIR_TRIM]),
2423 .minval = 1,
2424 .help = "IO block offset alignment",
2425 .parent = "rw",
2426 .hide = 1,
2427 .interval = 512,
2428 .category = FIO_OPT_C_IO,
2429 .group = FIO_OPT_G_INVALID,
2430 },
2431 {
2432 .name = "bsrange",
2433 .lname = "Block size range",
2434 .alias = "blocksize_range",
2435 .type = FIO_OPT_RANGE,
2436 .off1 = offsetof(struct thread_options, min_bs[DDIR_READ]),
2437 .off2 = offsetof(struct thread_options, max_bs[DDIR_READ]),
2438 .off3 = offsetof(struct thread_options, min_bs[DDIR_WRITE]),
2439 .off4 = offsetof(struct thread_options, max_bs[DDIR_WRITE]),
2440 .off5 = offsetof(struct thread_options, min_bs[DDIR_TRIM]),
2441 .off6 = offsetof(struct thread_options, max_bs[DDIR_TRIM]),
2442 .minval = 1,
2443 .help = "Set block size range (in more detail than bs)",
2444 .parent = "rw",
2445 .hide = 1,
2446 .interval = 4096,
2447 .category = FIO_OPT_C_IO,
2448 .group = FIO_OPT_G_INVALID,
2449 },
2450 {
2451 .name = "bssplit",
2452 .lname = "Block size split",
2453 .type = FIO_OPT_STR_ULL,
2454 .cb = str_bssplit_cb,
2455 .off1 = offsetof(struct thread_options, bssplit),
2456 .help = "Set a specific mix of block sizes",
2457 .parent = "rw",
2458 .hide = 1,
2459 .category = FIO_OPT_C_IO,
2460 .group = FIO_OPT_G_INVALID,
2461 },
2462 {
2463 .name = "bs_unaligned",
2464 .lname = "Block size unaligned",
2465 .alias = "blocksize_unaligned",
2466 .type = FIO_OPT_STR_SET,
2467 .off1 = offsetof(struct thread_options, bs_unaligned),
2468 .help = "Don't sector align IO buffer sizes",
2469 .parent = "rw",
2470 .hide = 1,
2471 .category = FIO_OPT_C_IO,
2472 .group = FIO_OPT_G_INVALID,
2473 },
2474 {
2475 .name = "bs_is_seq_rand",
2476 .lname = "Block size division is seq/random (not read/write)",
2477 .type = FIO_OPT_BOOL,
2478 .off1 = offsetof(struct thread_options, bs_is_seq_rand),
2479 .help = "Consider any blocksize setting to be sequential,random",
2480 .def = "0",
2481 .parent = "blocksize",
2482 .category = FIO_OPT_C_IO,
2483 .group = FIO_OPT_G_INVALID,
2484 },
2485 {
2486 .name = "randrepeat",
2487 .alias = "allrandrepeat",
2488 .lname = "Random repeatable",
2489 .type = FIO_OPT_BOOL,
2490 .off1 = offsetof(struct thread_options, rand_repeatable),
2491 .help = "Use repeatable random IO pattern",
2492 .def = "1",
2493 .parent = "rw",
2494 .hide = 1,
2495 .category = FIO_OPT_C_IO,
2496 .group = FIO_OPT_G_RANDOM,
2497 },
2498 {
2499 .name = "randseed",
2500 .lname = "The random generator seed",
2501 .type = FIO_OPT_STR_VAL,
2502 .off1 = offsetof(struct thread_options, rand_seed),
2503 .help = "Set the random generator seed value",
2504 .def = "0x89",
2505 .parent = "rw",
2506 .category = FIO_OPT_C_IO,
2507 .group = FIO_OPT_G_RANDOM,
2508 },
2509 {
2510 .name = "norandommap",
2511 .lname = "No randommap",
2512 .type = FIO_OPT_STR_SET,
2513 .off1 = offsetof(struct thread_options, norandommap),
2514 .help = "Accept potential duplicate random blocks",
2515 .parent = "rw",
2516 .hide = 1,
2517 .hide_on_set = 1,
2518 .category = FIO_OPT_C_IO,
2519 .group = FIO_OPT_G_RANDOM,
2520 },
2521 {
2522 .name = "softrandommap",
2523 .lname = "Soft randommap",
2524 .type = FIO_OPT_BOOL,
2525 .off1 = offsetof(struct thread_options, softrandommap),
2526 .help = "Set norandommap if randommap allocation fails",
2527 .parent = "norandommap",
2528 .hide = 1,
2529 .def = "0",
2530 .category = FIO_OPT_C_IO,
2531 .group = FIO_OPT_G_RANDOM,
2532 },
2533 {
2534 .name = "random_generator",
2535 .lname = "Random Generator",
2536 .type = FIO_OPT_STR,
2537 .off1 = offsetof(struct thread_options, random_generator),
2538 .help = "Type of random number generator to use",
2539 .def = "tausworthe",
2540 .posval = {
2541 { .ival = "tausworthe",
2542 .oval = FIO_RAND_GEN_TAUSWORTHE,
2543 .help = "Strong Tausworthe generator",
2544 },
2545 { .ival = "lfsr",
2546 .oval = FIO_RAND_GEN_LFSR,
2547 .help = "Variable length LFSR",
2548 },
2549 {
2550 .ival = "tausworthe64",
2551 .oval = FIO_RAND_GEN_TAUSWORTHE64,
2552 .help = "64-bit Tausworthe variant",
2553 },
2554 },
2555 .category = FIO_OPT_C_IO,
2556 .group = FIO_OPT_G_RANDOM,
2557 },
2558 {
2559 .name = "random_distribution",
2560 .lname = "Random Distribution",
2561 .type = FIO_OPT_STR,
2562 .off1 = offsetof(struct thread_options, random_distribution),
2563 .cb = str_random_distribution_cb,
2564 .help = "Random offset distribution generator",
2565 .def = "random",
2566 .posval = {
2567 { .ival = "random",
2568 .oval = FIO_RAND_DIST_RANDOM,
2569 .help = "Completely random",
2570 },
2571 { .ival = "zipf",
2572 .oval = FIO_RAND_DIST_ZIPF,
2573 .help = "Zipf distribution",
2574 },
2575 { .ival = "pareto",
2576 .oval = FIO_RAND_DIST_PARETO,
2577 .help = "Pareto distribution",
2578 },
2579 { .ival = "normal",
2580 .oval = FIO_RAND_DIST_GAUSS,
2581 .help = "Normal (Gaussian) distribution",
2582 },
2583 { .ival = "zoned",
2584 .oval = FIO_RAND_DIST_ZONED,
2585 .help = "Zoned random distribution",
2586 },
2587 { .ival = "zoned_abs",
2588 .oval = FIO_RAND_DIST_ZONED_ABS,
2589 .help = "Zoned absolute random distribution",
2590 },
2591 },
2592 .category = FIO_OPT_C_IO,
2593 .group = FIO_OPT_G_RANDOM,
2594 },
2595 {
2596 .name = "percentage_random",
2597 .lname = "Percentage Random",
2598 .type = FIO_OPT_INT,
2599 .off1 = offsetof(struct thread_options, perc_rand[DDIR_READ]),
2600 .off2 = offsetof(struct thread_options, perc_rand[DDIR_WRITE]),
2601 .off3 = offsetof(struct thread_options, perc_rand[DDIR_TRIM]),
2602 .maxval = 100,
2603 .help = "Percentage of seq/random mix that should be random",
2604 .def = "100,100,100",
2605 .interval = 5,
2606 .inverse = "percentage_sequential",
2607 .category = FIO_OPT_C_IO,
2608 .group = FIO_OPT_G_RANDOM,
2609 },
2610 {
2611 .name = "percentage_sequential",
2612 .lname = "Percentage Sequential",
2613 .type = FIO_OPT_DEPRECATED,
2614 .category = FIO_OPT_C_IO,
2615 .group = FIO_OPT_G_RANDOM,
2616 },
2617 {
2618 .name = "nrfiles",
2619 .lname = "Number of files",
2620 .alias = "nr_files",
2621 .type = FIO_OPT_INT,
2622 .off1 = offsetof(struct thread_options, nr_files),
2623 .help = "Split job workload between this number of files",
2624 .def = "1",
2625 .interval = 1,
2626 .category = FIO_OPT_C_FILE,
2627 .group = FIO_OPT_G_INVALID,
2628 },
2629 {
2630 .name = "openfiles",
2631 .lname = "Number of open files",
2632 .type = FIO_OPT_INT,
2633 .off1 = offsetof(struct thread_options, open_files),
2634 .help = "Number of files to keep open at the same time",
2635 .category = FIO_OPT_C_FILE,
2636 .group = FIO_OPT_G_INVALID,
2637 },
2638 {
2639 .name = "file_service_type",
2640 .lname = "File service type",
2641 .type = FIO_OPT_STR,
2642 .cb = str_fst_cb,
2643 .off1 = offsetof(struct thread_options, file_service_type),
2644 .help = "How to select which file to service next",
2645 .def = "roundrobin",
2646 .category = FIO_OPT_C_FILE,
2647 .group = FIO_OPT_G_INVALID,
2648 .posval = {
2649 { .ival = "random",
2650 .oval = FIO_FSERVICE_RANDOM,
2651 .help = "Choose a file at random (uniform)",
2652 },
2653 { .ival = "zipf",
2654 .oval = FIO_FSERVICE_ZIPF,
2655 .help = "Zipf randomized",
2656 },
2657 { .ival = "pareto",
2658 .oval = FIO_FSERVICE_PARETO,
2659 .help = "Pareto randomized",
2660 },
2661 { .ival = "normal",
2662 .oval = FIO_FSERVICE_GAUSS,
2663 .help = "Normal (Gaussian) randomized",
2664 },
2665 { .ival = "gauss",
2666 .oval = FIO_FSERVICE_GAUSS,
2667 .help = "Alias for normal",
2668 },
2669 { .ival = "roundrobin",
2670 .oval = FIO_FSERVICE_RR,
2671 .help = "Round robin select files",
2672 },
2673 { .ival = "sequential",
2674 .oval = FIO_FSERVICE_SEQ,
2675 .help = "Finish one file before moving to the next",
2676 },
2677 },
2678 .parent = "nrfiles",
2679 .hide = 1,
2680 },
2681 {
2682 .name = "fallocate",
2683 .lname = "Fallocate",
2684 .type = FIO_OPT_STR,
2685 .off1 = offsetof(struct thread_options, fallocate_mode),
2686 .help = "Whether pre-allocation is performed when laying out files",
2687#ifdef FIO_HAVE_DEFAULT_FALLOCATE
2688 .def = "native",
2689#else
2690 .def = "none",
2691#endif
2692 .category = FIO_OPT_C_FILE,
2693 .group = FIO_OPT_G_INVALID,
2694 .posval = {
2695 { .ival = "none",
2696 .oval = FIO_FALLOCATE_NONE,
2697 .help = "Do not pre-allocate space",
2698 },
2699 { .ival = "native",
2700 .oval = FIO_FALLOCATE_NATIVE,
2701 .help = "Use native pre-allocation if possible",
2702 },
2703#ifdef CONFIG_POSIX_FALLOCATE
2704 { .ival = "posix",
2705 .oval = FIO_FALLOCATE_POSIX,
2706 .help = "Use posix_fallocate()",
2707 },
2708#endif
2709#ifdef CONFIG_LINUX_FALLOCATE
2710 { .ival = "keep",
2711 .oval = FIO_FALLOCATE_KEEP_SIZE,
2712 .help = "Use fallocate(..., FALLOC_FL_KEEP_SIZE, ...)",
2713 },
2714#endif
2715 { .ival = "truncate",
2716 .oval = FIO_FALLOCATE_TRUNCATE,
2717 .help = "Truncate file to final size instead of allocating"
2718 },
2719 /* Compatibility with former boolean values */
2720 { .ival = "0",
2721 .oval = FIO_FALLOCATE_NONE,
2722 .help = "Alias for 'none'",
2723 },
2724#ifdef CONFIG_POSIX_FALLOCATE
2725 { .ival = "1",
2726 .oval = FIO_FALLOCATE_POSIX,
2727 .help = "Alias for 'posix'",
2728 },
2729#endif
2730 },
2731 },
2732 {
2733 .name = "fadvise_hint",
2734 .lname = "Fadvise hint",
2735 .type = FIO_OPT_STR,
2736 .off1 = offsetof(struct thread_options, fadvise_hint),
2737 .posval = {
2738 { .ival = "0",
2739 .oval = F_ADV_NONE,
2740 .help = "Don't issue fadvise/madvise",
2741 },
2742 { .ival = "1",
2743 .oval = F_ADV_TYPE,
2744 .help = "Advise using fio IO pattern",
2745 },
2746 { .ival = "random",
2747 .oval = F_ADV_RANDOM,
2748 .help = "Advise using FADV_RANDOM",
2749 },
2750 { .ival = "sequential",
2751 .oval = F_ADV_SEQUENTIAL,
2752 .help = "Advise using FADV_SEQUENTIAL",
2753 },
2754#ifdef POSIX_FADV_NOREUSE
2755 { .ival = "noreuse",
2756 .oval = F_ADV_NOREUSE,
2757 .help = "Advise using FADV_NOREUSE",
2758 },
2759#endif
2760 },
2761 .help = "Use fadvise() to advise the kernel on IO pattern",
2762 .def = "1",
2763 .category = FIO_OPT_C_FILE,
2764 .group = FIO_OPT_G_INVALID,
2765 },
2766 {
2767 .name = "fsync",
2768 .lname = "Fsync",
2769 .type = FIO_OPT_INT,
2770 .off1 = offsetof(struct thread_options, fsync_blocks),
2771 .help = "Issue fsync for writes every given number of blocks",
2772 .def = "0",
2773 .interval = 1,
2774 .category = FIO_OPT_C_FILE,
2775 .group = FIO_OPT_G_INVALID,
2776 },
2777 {
2778 .name = "fdatasync",
2779 .lname = "Fdatasync",
2780 .type = FIO_OPT_INT,
2781 .off1 = offsetof(struct thread_options, fdatasync_blocks),
2782 .help = "Issue fdatasync for writes every given number of blocks",
2783 .def = "0",
2784 .interval = 1,
2785 .category = FIO_OPT_C_FILE,
2786 .group = FIO_OPT_G_INVALID,
2787 },
2788 {
2789 .name = "write_barrier",
2790 .lname = "Write barrier",
2791 .type = FIO_OPT_INT,
2792 .off1 = offsetof(struct thread_options, barrier_blocks),
2793 .help = "Make every Nth write a barrier write",
2794 .def = "0",
2795 .interval = 1,
2796 .category = FIO_OPT_C_IO,
2797 .group = FIO_OPT_G_INVALID,
2798 },
2799#ifdef CONFIG_SYNC_FILE_RANGE
2800 {
2801 .name = "sync_file_range",
2802 .lname = "Sync file range",
2803 .posval = {
2804 { .ival = "wait_before",
2805 .oval = SYNC_FILE_RANGE_WAIT_BEFORE,
2806 .help = "SYNC_FILE_RANGE_WAIT_BEFORE",
2807 .orval = 1,
2808 },
2809 { .ival = "write",
2810 .oval = SYNC_FILE_RANGE_WRITE,
2811 .help = "SYNC_FILE_RANGE_WRITE",
2812 .orval = 1,
2813 },
2814 {
2815 .ival = "wait_after",
2816 .oval = SYNC_FILE_RANGE_WAIT_AFTER,
2817 .help = "SYNC_FILE_RANGE_WAIT_AFTER",
2818 .orval = 1,
2819 },
2820 },
2821 .type = FIO_OPT_STR_MULTI,
2822 .cb = str_sfr_cb,
2823 .off1 = offsetof(struct thread_options, sync_file_range),
2824 .help = "Use sync_file_range()",
2825 .category = FIO_OPT_C_FILE,
2826 .group = FIO_OPT_G_INVALID,
2827 },
2828#else
2829 {
2830 .name = "sync_file_range",
2831 .lname = "Sync file range",
2832 .type = FIO_OPT_UNSUPPORTED,
2833 .help = "Your platform does not support sync_file_range",
2834 },
2835#endif
2836 {
2837 .name = "direct",
2838 .lname = "Direct I/O",
2839 .type = FIO_OPT_BOOL,
2840 .off1 = offsetof(struct thread_options, odirect),
2841 .help = "Use O_DIRECT IO (negates buffered)",
2842 .def = "0",
2843 .inverse = "buffered",
2844 .category = FIO_OPT_C_IO,
2845 .group = FIO_OPT_G_IO_TYPE,
2846 },
2847 {
2848 .name = "atomic",
2849 .lname = "Atomic I/O",
2850 .type = FIO_OPT_BOOL,
2851 .off1 = offsetof(struct thread_options, oatomic),
2852 .help = "Use Atomic IO with O_DIRECT (implies O_DIRECT)",
2853 .def = "0",
2854 .category = FIO_OPT_C_IO,
2855 .group = FIO_OPT_G_IO_TYPE,
2856 },
2857 {
2858 .name = "buffered",
2859 .lname = "Buffered I/O",
2860 .type = FIO_OPT_BOOL,
2861 .off1 = offsetof(struct thread_options, odirect),
2862 .neg = 1,
2863 .help = "Use buffered IO (negates direct)",
2864 .def = "1",
2865 .inverse = "direct",
2866 .category = FIO_OPT_C_IO,
2867 .group = FIO_OPT_G_IO_TYPE,
2868 },
2869 {
2870 .name = "overwrite",
2871 .lname = "Overwrite",
2872 .type = FIO_OPT_BOOL,
2873 .off1 = offsetof(struct thread_options, overwrite),
2874 .help = "When writing, set whether to overwrite current data",
2875 .def = "0",
2876 .category = FIO_OPT_C_FILE,
2877 .group = FIO_OPT_G_INVALID,
2878 },
2879 {
2880 .name = "loops",
2881 .lname = "Loops",
2882 .type = FIO_OPT_INT,
2883 .off1 = offsetof(struct thread_options, loops),
2884 .help = "Number of times to run the job",
2885 .def = "1",
2886 .interval = 1,
2887 .category = FIO_OPT_C_GENERAL,
2888 .group = FIO_OPT_G_RUNTIME,
2889 },
2890 {
2891 .name = "numjobs",
2892 .lname = "Number of jobs",
2893 .type = FIO_OPT_INT,
2894 .off1 = offsetof(struct thread_options, numjobs),
2895 .help = "Duplicate this job this many times",
2896 .def = "1",
2897 .interval = 1,
2898 .category = FIO_OPT_C_GENERAL,
2899 .group = FIO_OPT_G_RUNTIME,
2900 },
2901 {
2902 .name = "startdelay",
2903 .lname = "Start delay",
2904 .type = FIO_OPT_STR_VAL_TIME,
2905 .off1 = offsetof(struct thread_options, start_delay),
2906 .off2 = offsetof(struct thread_options, start_delay_high),
2907 .help = "Only start job when this period has passed",
2908 .def = "0",
2909 .is_seconds = 1,
2910 .is_time = 1,
2911 .category = FIO_OPT_C_GENERAL,
2912 .group = FIO_OPT_G_RUNTIME,
2913 },
2914 {
2915 .name = "runtime",
2916 .lname = "Runtime",
2917 .alias = "timeout",
2918 .type = FIO_OPT_STR_VAL_TIME,
2919 .off1 = offsetof(struct thread_options, timeout),
2920 .help = "Stop workload when this amount of time has passed",
2921 .def = "0",
2922 .is_seconds = 1,
2923 .is_time = 1,
2924 .category = FIO_OPT_C_GENERAL,
2925 .group = FIO_OPT_G_RUNTIME,
2926 },
2927 {
2928 .name = "time_based",
2929 .lname = "Time based",
2930 .type = FIO_OPT_STR_SET,
2931 .off1 = offsetof(struct thread_options, time_based),
2932 .help = "Keep running until runtime/timeout is met",
2933 .category = FIO_OPT_C_GENERAL,
2934 .group = FIO_OPT_G_RUNTIME,
2935 },
2936 {
2937 .name = "verify_only",
2938 .lname = "Verify only",
2939 .type = FIO_OPT_STR_SET,
2940 .off1 = offsetof(struct thread_options, verify_only),
2941 .help = "Verifies previously written data is still valid",
2942 .category = FIO_OPT_C_GENERAL,
2943 .group = FIO_OPT_G_RUNTIME,
2944 },
2945 {
2946 .name = "ramp_time",
2947 .lname = "Ramp time",
2948 .type = FIO_OPT_STR_VAL_TIME,
2949 .off1 = offsetof(struct thread_options, ramp_time),
2950 .help = "Ramp up time before measuring performance",
2951 .is_seconds = 1,
2952 .is_time = 1,
2953 .category = FIO_OPT_C_GENERAL,
2954 .group = FIO_OPT_G_RUNTIME,
2955 },
2956 {
2957 .name = "clocksource",
2958 .lname = "Clock source",
2959 .type = FIO_OPT_STR,
2960 .cb = fio_clock_source_cb,
2961 .off1 = offsetof(struct thread_options, clocksource),
2962 .help = "What type of timing source to use",
2963 .category = FIO_OPT_C_GENERAL,
2964 .group = FIO_OPT_G_CLOCK,
2965 .posval = {
2966#ifdef CONFIG_GETTIMEOFDAY
2967 { .ival = "gettimeofday",
2968 .oval = CS_GTOD,
2969 .help = "Use gettimeofday(2) for timing",
2970 },
2971#endif
2972#ifdef CONFIG_CLOCK_GETTIME
2973 { .ival = "clock_gettime",
2974 .oval = CS_CGETTIME,
2975 .help = "Use clock_gettime(2) for timing",
2976 },
2977#endif
2978#ifdef ARCH_HAVE_CPU_CLOCK
2979 { .ival = "cpu",
2980 .oval = CS_CPUCLOCK,
2981 .help = "Use CPU private clock",
2982 },
2983#endif
2984 },
2985 },
2986 {
2987 .name = "mem",
2988 .alias = "iomem",
2989 .lname = "I/O Memory",
2990 .type = FIO_OPT_STR,
2991 .cb = str_mem_cb,
2992 .off1 = offsetof(struct thread_options, mem_type),
2993 .help = "Backing type for IO buffers",
2994 .def = "malloc",
2995 .category = FIO_OPT_C_IO,
2996 .group = FIO_OPT_G_INVALID,
2997 .posval = {
2998 { .ival = "malloc",
2999 .oval = MEM_MALLOC,
3000 .help = "Use malloc(3) for IO buffers",
3001 },
3002#ifndef CONFIG_NO_SHM
3003 { .ival = "shm",
3004 .oval = MEM_SHM,
3005 .help = "Use shared memory segments for IO buffers",
3006 },
3007#ifdef FIO_HAVE_HUGETLB
3008 { .ival = "shmhuge",
3009 .oval = MEM_SHMHUGE,
3010 .help = "Like shm, but use huge pages",
3011 },
3012#endif
3013#endif
3014 { .ival = "mmap",
3015 .oval = MEM_MMAP,
3016 .help = "Use mmap(2) (file or anon) for IO buffers",
3017 },
3018 { .ival = "mmapshared",
3019 .oval = MEM_MMAPSHARED,
3020 .help = "Like mmap, but use the shared flag",
3021 },
3022#ifdef FIO_HAVE_HUGETLB
3023 { .ival = "mmaphuge",
3024 .oval = MEM_MMAPHUGE,
3025 .help = "Like mmap, but use huge pages",
3026 },
3027#endif
3028#ifdef CONFIG_CUDA
3029 { .ival = "cudamalloc",
3030 .oval = MEM_CUDA_MALLOC,
3031 .help = "Allocate GPU device memory for GPUDirect RDMA",
3032 },
3033#endif
3034 },
3035 },
3036 {
3037 .name = "iomem_align",
3038 .alias = "mem_align",
3039 .lname = "I/O memory alignment",
3040 .type = FIO_OPT_INT,
3041 .off1 = offsetof(struct thread_options, mem_align),
3042 .minval = 0,
3043 .help = "IO memory buffer offset alignment",
3044 .def = "0",
3045 .parent = "iomem",
3046 .hide = 1,
3047 .category = FIO_OPT_C_IO,
3048 .group = FIO_OPT_G_INVALID,
3049 },
3050 {
3051 .name = "verify",
3052 .lname = "Verify",
3053 .type = FIO_OPT_STR,
3054 .off1 = offsetof(struct thread_options, verify),
3055 .help = "Verify data written",
3056 .def = "0",
3057 .category = FIO_OPT_C_IO,
3058 .group = FIO_OPT_G_VERIFY,
3059 .posval = {
3060 { .ival = "0",
3061 .oval = VERIFY_NONE,
3062 .help = "Don't do IO verification",
3063 },
3064 { .ival = "md5",
3065 .oval = VERIFY_MD5,
3066 .help = "Use md5 checksums for verification",
3067 },
3068 { .ival = "crc64",
3069 .oval = VERIFY_CRC64,
3070 .help = "Use crc64 checksums for verification",
3071 },
3072 { .ival = "crc32",
3073 .oval = VERIFY_CRC32,
3074 .help = "Use crc32 checksums for verification",
3075 },
3076 { .ival = "crc32c-intel",
3077 .oval = VERIFY_CRC32C,
3078 .help = "Use crc32c checksums for verification (hw assisted, if available)",
3079 },
3080 { .ival = "crc32c",
3081 .oval = VERIFY_CRC32C,
3082 .help = "Use crc32c checksums for verification (hw assisted, if available)",
3083 },
3084 { .ival = "crc16",
3085 .oval = VERIFY_CRC16,
3086 .help = "Use crc16 checksums for verification",
3087 },
3088 { .ival = "crc7",
3089 .oval = VERIFY_CRC7,
3090 .help = "Use crc7 checksums for verification",
3091 },
3092 { .ival = "sha1",
3093 .oval = VERIFY_SHA1,
3094 .help = "Use sha1 checksums for verification",
3095 },
3096 { .ival = "sha256",
3097 .oval = VERIFY_SHA256,
3098 .help = "Use sha256 checksums for verification",
3099 },
3100 { .ival = "sha512",
3101 .oval = VERIFY_SHA512,
3102 .help = "Use sha512 checksums for verification",
3103 },
3104 { .ival = "sha3-224",
3105 .oval = VERIFY_SHA3_224,
3106 .help = "Use sha3-224 checksums for verification",
3107 },
3108 { .ival = "sha3-256",
3109 .oval = VERIFY_SHA3_256,
3110 .help = "Use sha3-256 checksums for verification",
3111 },
3112 { .ival = "sha3-384",
3113 .oval = VERIFY_SHA3_384,
3114 .help = "Use sha3-384 checksums for verification",
3115 },
3116 { .ival = "sha3-512",
3117 .oval = VERIFY_SHA3_512,
3118 .help = "Use sha3-512 checksums for verification",
3119 },
3120 { .ival = "xxhash",
3121 .oval = VERIFY_XXHASH,
3122 .help = "Use xxhash checksums for verification",
3123 },
3124 /* Meta information was included into verify_header,
3125 * 'meta' verification is implied by default. */
3126 { .ival = "meta",
3127 .oval = VERIFY_HDR_ONLY,
3128 .help = "Use io information for verification. "
3129 "Now is implied by default, thus option is obsolete, "
3130 "don't use it",
3131 },
3132 { .ival = "pattern",
3133 .oval = VERIFY_PATTERN_NO_HDR,
3134 .help = "Verify strict pattern",
3135 },
3136 {
3137 .ival = "null",
3138 .oval = VERIFY_NULL,
3139 .help = "Pretend to verify",
3140 },
3141 },
3142 },
3143 {
3144 .name = "do_verify",
3145 .lname = "Perform verify step",
3146 .type = FIO_OPT_BOOL,
3147 .off1 = offsetof(struct thread_options, do_verify),
3148 .help = "Run verification stage after write",
3149 .def = "1",
3150 .parent = "verify",
3151 .hide = 1,
3152 .category = FIO_OPT_C_IO,
3153 .group = FIO_OPT_G_VERIFY,
3154 },
3155 {
3156 .name = "verifysort",
3157 .lname = "Verify sort",
3158 .type = FIO_OPT_SOFT_DEPRECATED,
3159 .category = FIO_OPT_C_IO,
3160 .group = FIO_OPT_G_VERIFY,
3161 },
3162 {
3163 .name = "verifysort_nr",
3164 .lname = "Verify Sort Nr",
3165 .type = FIO_OPT_SOFT_DEPRECATED,
3166 .category = FIO_OPT_C_IO,
3167 .group = FIO_OPT_G_VERIFY,
3168 },
3169 {
3170 .name = "verify_interval",
3171 .lname = "Verify interval",
3172 .type = FIO_OPT_INT,
3173 .off1 = offsetof(struct thread_options, verify_interval),
3174 .minval = 2 * sizeof(struct verify_header),
3175 .help = "Store verify buffer header every N bytes",
3176 .parent = "verify",
3177 .hide = 1,
3178 .interval = 2 * sizeof(struct verify_header),
3179 .category = FIO_OPT_C_IO,
3180 .group = FIO_OPT_G_VERIFY,
3181 },
3182 {
3183 .name = "verify_offset",
3184 .lname = "Verify offset",
3185 .type = FIO_OPT_INT,
3186 .help = "Offset verify header location by N bytes",
3187 .off1 = offsetof(struct thread_options, verify_offset),
3188 .minval = sizeof(struct verify_header),
3189 .parent = "verify",
3190 .hide = 1,
3191 .category = FIO_OPT_C_IO,
3192 .group = FIO_OPT_G_VERIFY,
3193 },
3194 {
3195 .name = "verify_pattern",
3196 .lname = "Verify pattern",
3197 .type = FIO_OPT_STR,
3198 .cb = str_verify_pattern_cb,
3199 .off1 = offsetof(struct thread_options, verify_pattern),
3200 .help = "Fill pattern for IO buffers",
3201 .parent = "verify",
3202 .hide = 1,
3203 .category = FIO_OPT_C_IO,
3204 .group = FIO_OPT_G_VERIFY,
3205 },
3206 {
3207 .name = "verify_fatal",
3208 .lname = "Verify fatal",
3209 .type = FIO_OPT_BOOL,
3210 .off1 = offsetof(struct thread_options, verify_fatal),
3211 .def = "0",
3212 .help = "Exit on a single verify failure, don't continue",
3213 .parent = "verify",
3214 .hide = 1,
3215 .category = FIO_OPT_C_IO,
3216 .group = FIO_OPT_G_VERIFY,
3217 },
3218 {
3219 .name = "verify_dump",
3220 .lname = "Verify dump",
3221 .type = FIO_OPT_BOOL,
3222 .off1 = offsetof(struct thread_options, verify_dump),
3223 .def = "0",
3224 .help = "Dump contents of good and bad blocks on failure",
3225 .parent = "verify",
3226 .hide = 1,
3227 .category = FIO_OPT_C_IO,
3228 .group = FIO_OPT_G_VERIFY,
3229 },
3230 {
3231 .name = "verify_async",
3232 .lname = "Verify asynchronously",
3233 .type = FIO_OPT_INT,
3234 .off1 = offsetof(struct thread_options, verify_async),
3235 .def = "0",
3236 .help = "Number of async verifier threads to use",
3237 .parent = "verify",
3238 .hide = 1,
3239 .category = FIO_OPT_C_IO,
3240 .group = FIO_OPT_G_VERIFY,
3241 },
3242 {
3243 .name = "verify_backlog",
3244 .lname = "Verify backlog",
3245 .type = FIO_OPT_STR_VAL,
3246 .off1 = offsetof(struct thread_options, verify_backlog),
3247 .help = "Verify after this number of blocks are written",
3248 .parent = "verify",
3249 .hide = 1,
3250 .category = FIO_OPT_C_IO,
3251 .group = FIO_OPT_G_VERIFY,
3252 },
3253 {
3254 .name = "verify_backlog_batch",
3255 .lname = "Verify backlog batch",
3256 .type = FIO_OPT_INT,
3257 .off1 = offsetof(struct thread_options, verify_batch),
3258 .help = "Verify this number of IO blocks",
3259 .parent = "verify",
3260 .hide = 1,
3261 .category = FIO_OPT_C_IO,
3262 .group = FIO_OPT_G_VERIFY,
3263 },
3264#ifdef FIO_HAVE_CPU_AFFINITY
3265 {
3266 .name = "verify_async_cpus",
3267 .lname = "Async verify CPUs",
3268 .type = FIO_OPT_STR,
3269 .cb = str_verify_cpus_allowed_cb,
3270 .off1 = offsetof(struct thread_options, verify_cpumask),
3271 .help = "Set CPUs allowed for async verify threads",
3272 .parent = "verify_async",
3273 .hide = 1,
3274 .category = FIO_OPT_C_IO,
3275 .group = FIO_OPT_G_VERIFY,
3276 },
3277#else
3278 {
3279 .name = "verify_async_cpus",
3280 .lname = "Async verify CPUs",
3281 .type = FIO_OPT_UNSUPPORTED,
3282 .help = "Your platform does not support CPU affinities",
3283 },
3284#endif
3285 {
3286 .name = "experimental_verify",
3287 .lname = "Experimental Verify",
3288 .off1 = offsetof(struct thread_options, experimental_verify),
3289 .type = FIO_OPT_BOOL,
3290 .help = "Enable experimental verification",
3291 .parent = "verify",
3292 .category = FIO_OPT_C_IO,
3293 .group = FIO_OPT_G_VERIFY,
3294 },
3295 {
3296 .name = "verify_state_load",
3297 .lname = "Load verify state",
3298 .off1 = offsetof(struct thread_options, verify_state),
3299 .type = FIO_OPT_BOOL,
3300 .help = "Load verify termination state",
3301 .parent = "verify",
3302 .category = FIO_OPT_C_IO,
3303 .group = FIO_OPT_G_VERIFY,
3304 },
3305 {
3306 .name = "verify_state_save",
3307 .lname = "Save verify state",
3308 .off1 = offsetof(struct thread_options, verify_state_save),
3309 .type = FIO_OPT_BOOL,
3310 .def = "1",
3311 .help = "Save verify state on termination",
3312 .parent = "verify",
3313 .category = FIO_OPT_C_IO,
3314 .group = FIO_OPT_G_VERIFY,
3315 },
3316#ifdef FIO_HAVE_TRIM
3317 {
3318 .name = "trim_percentage",
3319 .lname = "Trim percentage",
3320 .type = FIO_OPT_INT,
3321 .off1 = offsetof(struct thread_options, trim_percentage),
3322 .minval = 0,
3323 .maxval = 100,
3324 .help = "Number of verify blocks to trim (i.e., discard)",
3325 .parent = "verify",
3326 .def = "0",
3327 .interval = 1,
3328 .hide = 1,
3329 .category = FIO_OPT_C_IO,
3330 .group = FIO_OPT_G_TRIM,
3331 },
3332 {
3333 .name = "trim_verify_zero",
3334 .lname = "Verify trim zero",
3335 .type = FIO_OPT_BOOL,
3336 .help = "Verify that trimmed (i.e., discarded) blocks are returned as zeroes",
3337 .off1 = offsetof(struct thread_options, trim_zero),
3338 .parent = "trim_percentage",
3339 .hide = 1,
3340 .def = "1",
3341 .category = FIO_OPT_C_IO,
3342 .group = FIO_OPT_G_TRIM,
3343 },
3344 {
3345 .name = "trim_backlog",
3346 .lname = "Trim backlog",
3347 .type = FIO_OPT_STR_VAL,
3348 .off1 = offsetof(struct thread_options, trim_backlog),
3349 .help = "Trim after this number of blocks are written",
3350 .parent = "trim_percentage",
3351 .hide = 1,
3352 .interval = 1,
3353 .category = FIO_OPT_C_IO,
3354 .group = FIO_OPT_G_TRIM,
3355 },
3356 {
3357 .name = "trim_backlog_batch",
3358 .lname = "Trim backlog batch",
3359 .type = FIO_OPT_INT,
3360 .off1 = offsetof(struct thread_options, trim_batch),
3361 .help = "Trim this number of IO blocks",
3362 .parent = "trim_percentage",
3363 .hide = 1,
3364 .interval = 1,
3365 .category = FIO_OPT_C_IO,
3366 .group = FIO_OPT_G_TRIM,
3367 },
3368#else
3369 {
3370 .name = "trim_percentage",
3371 .lname = "Trim percentage",
3372 .type = FIO_OPT_UNSUPPORTED,
3373 .help = "Fio does not support TRIM on your platform",
3374 },
3375 {
3376 .name = "trim_verify_zero",
3377 .lname = "Verify trim zero",
3378 .type = FIO_OPT_UNSUPPORTED,
3379 .help = "Fio does not support TRIM on your platform",
3380 },
3381 {
3382 .name = "trim_backlog",
3383 .lname = "Trim backlog",
3384 .type = FIO_OPT_UNSUPPORTED,
3385 .help = "Fio does not support TRIM on your platform",
3386 },
3387 {
3388 .name = "trim_backlog_batch",
3389 .lname = "Trim backlog batch",
3390 .type = FIO_OPT_UNSUPPORTED,
3391 .help = "Fio does not support TRIM on your platform",
3392 },
3393#endif
3394 {
3395 .name = "write_iolog",
3396 .lname = "Write I/O log",
3397 .type = FIO_OPT_STR_STORE,
3398 .off1 = offsetof(struct thread_options, write_iolog_file),
3399 .help = "Store IO pattern to file",
3400 .category = FIO_OPT_C_IO,
3401 .group = FIO_OPT_G_IOLOG,
3402 },
3403 {
3404 .name = "read_iolog",
3405 .lname = "Read I/O log",
3406 .type = FIO_OPT_STR_STORE,
3407 .off1 = offsetof(struct thread_options, read_iolog_file),
3408 .help = "Playback IO pattern from file",
3409 .category = FIO_OPT_C_IO,
3410 .group = FIO_OPT_G_IOLOG,
3411 },
3412 {
3413 .name = "read_iolog_chunked",
3414 .lname = "Read I/O log in parts",
3415 .type = FIO_OPT_BOOL,
3416 .off1 = offsetof(struct thread_options, read_iolog_chunked),
3417 .def = "0",
3418 .parent = "read_iolog",
3419 .help = "Parse IO pattern in chunks",
3420 .category = FIO_OPT_C_IO,
3421 .group = FIO_OPT_G_IOLOG,
3422 },
3423 {
3424 .name = "replay_no_stall",
3425 .lname = "Don't stall on replay",
3426 .type = FIO_OPT_BOOL,
3427 .off1 = offsetof(struct thread_options, no_stall),
3428 .def = "0",
3429 .parent = "read_iolog",
3430 .hide = 1,
3431 .help = "Playback IO pattern file as fast as possible without stalls",
3432 .category = FIO_OPT_C_IO,
3433 .group = FIO_OPT_G_IOLOG,
3434 },
3435 {
3436 .name = "replay_redirect",
3437 .lname = "Redirect device for replay",
3438 .type = FIO_OPT_STR_STORE,
3439 .off1 = offsetof(struct thread_options, replay_redirect),
3440 .parent = "read_iolog",
3441 .hide = 1,
3442 .help = "Replay all I/O onto this device, regardless of trace device",
3443 .category = FIO_OPT_C_IO,
3444 .group = FIO_OPT_G_IOLOG,
3445 },
3446 {
3447 .name = "replay_scale",
3448 .lname = "Replace offset scale factor",
3449 .type = FIO_OPT_INT,
3450 .off1 = offsetof(struct thread_options, replay_scale),
3451 .parent = "read_iolog",
3452 .def = "1",
3453 .help = "Align offsets to this blocksize",
3454 .category = FIO_OPT_C_IO,
3455 .group = FIO_OPT_G_IOLOG,
3456 },
3457 {
3458 .name = "replay_align",
3459 .lname = "Replace alignment",
3460 .type = FIO_OPT_INT,
3461 .off1 = offsetof(struct thread_options, replay_align),
3462 .parent = "read_iolog",
3463 .help = "Scale offset down by this factor",
3464 .category = FIO_OPT_C_IO,
3465 .group = FIO_OPT_G_IOLOG,
3466 .pow2 = 1,
3467 },
3468 {
3469 .name = "replay_time_scale",
3470 .lname = "Replay Time Scale",
3471 .type = FIO_OPT_INT,
3472 .off1 = offsetof(struct thread_options, replay_time_scale),
3473 .def = "100",
3474 .minval = 1,
3475 .parent = "read_iolog",
3476 .hide = 1,
3477 .help = "Scale time for replay events",
3478 .category = FIO_OPT_C_IO,
3479 .group = FIO_OPT_G_IOLOG,
3480 },
3481 {
3482 .name = "replay_skip",
3483 .lname = "Replay Skip",
3484 .type = FIO_OPT_STR,
3485 .cb = str_replay_skip_cb,
3486 .off1 = offsetof(struct thread_options, replay_skip),
3487 .parent = "read_iolog",
3488 .help = "Skip certain IO types (read,write,trim,flush)",
3489 .category = FIO_OPT_C_IO,
3490 .group = FIO_OPT_G_IOLOG,
3491 },
3492 {
3493 .name = "merge_blktrace_file",
3494 .lname = "Merged blktrace output filename",
3495 .type = FIO_OPT_STR_STORE,
3496 .off1 = offsetof(struct thread_options, merge_blktrace_file),
3497 .help = "Merged blktrace output filename",
3498 .category = FIO_OPT_C_IO,
3499 .group = FIO_OPT_G_IOLOG,
3500 },
3501 {
3502 .name = "merge_blktrace_scalars",
3503 .lname = "Percentage to scale each trace",
3504 .type = FIO_OPT_FLOAT_LIST,
3505 .off1 = offsetof(struct thread_options, merge_blktrace_scalars),
3506 .maxlen = FIO_IO_U_LIST_MAX_LEN,
3507 .help = "Percentage to scale each trace",
3508 .category = FIO_OPT_C_IO,
3509 .group = FIO_OPT_G_IOLOG,
3510 },
3511 {
3512 .name = "merge_blktrace_iters",
3513 .lname = "Number of iterations to run per trace",
3514 .type = FIO_OPT_FLOAT_LIST,
3515 .off1 = offsetof(struct thread_options, merge_blktrace_iters),
3516 .maxlen = FIO_IO_U_LIST_MAX_LEN,
3517 .help = "Number of iterations to run per trace",
3518 .category = FIO_OPT_C_IO,
3519 .group = FIO_OPT_G_IOLOG,
3520 },
3521 {
3522 .name = "exec_prerun",
3523 .lname = "Pre-execute runnable",
3524 .type = FIO_OPT_STR_STORE,
3525 .off1 = offsetof(struct thread_options, exec_prerun),
3526 .help = "Execute this file prior to running job",
3527 .category = FIO_OPT_C_GENERAL,
3528 .group = FIO_OPT_G_INVALID,
3529 },
3530 {
3531 .name = "exec_postrun",
3532 .lname = "Post-execute runnable",
3533 .type = FIO_OPT_STR_STORE,
3534 .off1 = offsetof(struct thread_options, exec_postrun),
3535 .help = "Execute this file after running job",
3536 .category = FIO_OPT_C_GENERAL,
3537 .group = FIO_OPT_G_INVALID,
3538 },
3539#ifdef FIO_HAVE_IOSCHED_SWITCH
3540 {
3541 .name = "ioscheduler",
3542 .lname = "I/O scheduler",
3543 .type = FIO_OPT_STR_STORE,
3544 .off1 = offsetof(struct thread_options, ioscheduler),
3545 .help = "Use this IO scheduler on the backing device",
3546 .category = FIO_OPT_C_FILE,
3547 .group = FIO_OPT_G_INVALID,
3548 },
3549#else
3550 {
3551 .name = "ioscheduler",
3552 .lname = "I/O scheduler",
3553 .type = FIO_OPT_UNSUPPORTED,
3554 .help = "Your platform does not support IO scheduler switching",
3555 },
3556#endif
3557 {
3558 .name = "zonemode",
3559 .lname = "Zone mode",
3560 .help = "Mode for the zonesize, zonerange and zoneskip parameters",
3561 .type = FIO_OPT_STR,
3562 .off1 = offsetof(struct thread_options, zone_mode),
3563 .def = "none",
3564 .category = FIO_OPT_C_IO,
3565 .group = FIO_OPT_G_ZONE,
3566 .posval = {
3567 { .ival = "none",
3568 .oval = ZONE_MODE_NONE,
3569 .help = "no zoning",
3570 },
3571 { .ival = "strided",
3572 .oval = ZONE_MODE_STRIDED,
3573 .help = "strided mode - random I/O is restricted to a single zone",
3574 },
3575 { .ival = "zbd",
3576 .oval = ZONE_MODE_ZBD,
3577 .help = "zoned block device mode - random I/O selects one of multiple zones randomly",
3578 },
3579 },
3580 },
3581 {
3582 .name = "zonesize",
3583 .lname = "Zone size",
3584 .type = FIO_OPT_STR_VAL,
3585 .off1 = offsetof(struct thread_options, zone_size),
3586 .help = "Amount of data to read per zone",
3587 .def = "0",
3588 .interval = 1024 * 1024,
3589 .category = FIO_OPT_C_IO,
3590 .group = FIO_OPT_G_ZONE,
3591 },
3592 {
3593 .name = "zonecapacity",
3594 .lname = "Zone capacity",
3595 .type = FIO_OPT_STR_VAL,
3596 .off1 = offsetof(struct thread_options, zone_capacity),
3597 .help = "Capacity per zone",
3598 .def = "0",
3599 .interval = 1024 * 1024,
3600 .category = FIO_OPT_C_IO,
3601 .group = FIO_OPT_G_ZONE,
3602 },
3603 {
3604 .name = "zonerange",
3605 .lname = "Zone range",
3606 .type = FIO_OPT_STR_VAL,
3607 .off1 = offsetof(struct thread_options, zone_range),
3608 .help = "Give size of an IO zone",
3609 .def = "0",
3610 .interval = 1024 * 1024,
3611 .category = FIO_OPT_C_IO,
3612 .group = FIO_OPT_G_ZONE,
3613 },
3614 {
3615 .name = "zoneskip",
3616 .lname = "Zone skip",
3617 .type = FIO_OPT_STR_VAL_ZONE,
3618 .cb = str_zoneskip_cb,
3619 .off1 = offsetof(struct thread_options, zone_skip),
3620 .help = "Space between IO zones",
3621 .def = "0",
3622 .category = FIO_OPT_C_IO,
3623 .group = FIO_OPT_G_ZONE,
3624 },
3625 {
3626 .name = "read_beyond_wp",
3627 .lname = "Allow reads beyond the zone write pointer",
3628 .type = FIO_OPT_BOOL,
3629 .off1 = offsetof(struct thread_options, read_beyond_wp),
3630 .help = "Allow reads beyond the zone write pointer",
3631 .def = "0",
3632 .category = FIO_OPT_C_IO,
3633 .group = FIO_OPT_G_INVALID,
3634 },
3635 {
3636 .name = "max_open_zones",
3637 .lname = "Per device/file maximum number of open zones",
3638 .type = FIO_OPT_INT,
3639 .off1 = offsetof(struct thread_options, max_open_zones),
3640 .maxval = ZBD_MAX_WRITE_ZONES,
3641 .help = "Limit on the number of simultaneously opened sequential write zones with zonemode=zbd",
3642 .def = "0",
3643 .category = FIO_OPT_C_IO,
3644 .group = FIO_OPT_G_INVALID,
3645 },
3646 {
3647 .name = "job_max_open_zones",
3648 .lname = "Job maximum number of open zones",
3649 .type = FIO_OPT_INT,
3650 .off1 = offsetof(struct thread_options, job_max_open_zones),
3651 .maxval = ZBD_MAX_WRITE_ZONES,
3652 .help = "Limit on the number of simultaneously opened sequential write zones with zonemode=zbd by one thread/process",
3653 .def = "0",
3654 .category = FIO_OPT_C_IO,
3655 .group = FIO_OPT_G_INVALID,
3656 },
3657 {
3658 .name = "ignore_zone_limits",
3659 .lname = "Ignore zone resource limits",
3660 .type = FIO_OPT_BOOL,
3661 .off1 = offsetof(struct thread_options, ignore_zone_limits),
3662 .def = "0",
3663 .help = "Ignore the zone resource limits (max open/active zones) reported by the device",
3664 .category = FIO_OPT_C_IO,
3665 .group = FIO_OPT_G_INVALID,
3666 },
3667 {
3668 .name = "zone_reset_threshold",
3669 .lname = "Zone reset threshold",
3670 .help = "Zoned block device reset threshold",
3671 .type = FIO_OPT_FLOAT_LIST,
3672 .maxlen = 1,
3673 .off1 = offsetof(struct thread_options, zrt),
3674 .minfp = 0,
3675 .maxfp = 1,
3676 .category = FIO_OPT_C_IO,
3677 .group = FIO_OPT_G_ZONE,
3678 },
3679 {
3680 .name = "zone_reset_frequency",
3681 .lname = "Zone reset frequency",
3682 .help = "Zoned block device zone reset frequency in HZ",
3683 .type = FIO_OPT_FLOAT_LIST,
3684 .maxlen = 1,
3685 .off1 = offsetof(struct thread_options, zrf),
3686 .minfp = 0,
3687 .maxfp = 1,
3688 .category = FIO_OPT_C_IO,
3689 .group = FIO_OPT_G_ZONE,
3690 },
3691 {
3692 .name = "fdp",
3693 .lname = "Flexible data placement",
3694 .type = FIO_OPT_BOOL,
3695 .off1 = offsetof(struct thread_options, fdp),
3696 .help = "Use Data placement directive (FDP)",
3697 .def = "0",
3698 .category = FIO_OPT_C_IO,
3699 .group = FIO_OPT_G_INVALID,
3700 },
3701 {
3702 .name = "fdp_pli_select",
3703 .lname = "FDP Placement ID select",
3704 .type = FIO_OPT_STR,
3705 .off1 = offsetof(struct thread_options, fdp_pli_select),
3706 .help = "Select which FDP placement ID to use next",
3707 .def = "roundrobin",
3708 .category = FIO_OPT_C_IO,
3709 .group = FIO_OPT_G_INVALID,
3710 .posval = {
3711 { .ival = "random",
3712 .oval = FIO_FDP_RANDOM,
3713 .help = "Choose a Placement ID at random (uniform)",
3714 },
3715 { .ival = "roundrobin",
3716 .oval = FIO_FDP_RR,
3717 .help = "Round robin select Placement IDs",
3718 },
3719 },
3720 },
3721 {
3722 .name = "fdp_pli",
3723 .lname = "FDP Placement ID indicies",
3724 .type = FIO_OPT_STR,
3725 .cb = str_fdp_pli_cb,
3726 .off1 = offsetof(struct thread_options, fdp_plis),
3727 .help = "Sets which placement ids to use (defaults to all)",
3728 .hide = 1,
3729 .category = FIO_OPT_C_IO,
3730 .group = FIO_OPT_G_INVALID,
3731 },
3732 {
3733 .name = "lockmem",
3734 .lname = "Lock memory",
3735 .type = FIO_OPT_STR_VAL,
3736 .off1 = offsetof(struct thread_options, lockmem),
3737 .help = "Lock down this amount of memory (per worker)",
3738 .def = "0",
3739 .interval = 1024 * 1024,
3740 .category = FIO_OPT_C_GENERAL,
3741 .group = FIO_OPT_G_INVALID,
3742 },
3743 {
3744 .name = "rwmixread",
3745 .lname = "Read/write mix read",
3746 .type = FIO_OPT_INT,
3747 .cb = str_rwmix_read_cb,
3748 .off1 = offsetof(struct thread_options, rwmix[DDIR_READ]),
3749 .maxval = 100,
3750 .help = "Percentage of mixed workload that is reads",
3751 .def = "50",
3752 .interval = 5,
3753 .inverse = "rwmixwrite",
3754 .category = FIO_OPT_C_IO,
3755 .group = FIO_OPT_G_RWMIX,
3756 },
3757 {
3758 .name = "rwmixwrite",
3759 .lname = "Read/write mix write",
3760 .type = FIO_OPT_INT,
3761 .cb = str_rwmix_write_cb,
3762 .off1 = offsetof(struct thread_options, rwmix[DDIR_WRITE]),
3763 .maxval = 100,
3764 .help = "Percentage of mixed workload that is writes",
3765 .def = "50",
3766 .interval = 5,
3767 .inverse = "rwmixread",
3768 .category = FIO_OPT_C_IO,
3769 .group = FIO_OPT_G_RWMIX,
3770 },
3771 {
3772 .name = "rwmixcycle",
3773 .lname = "Read/write mix cycle",
3774 .type = FIO_OPT_DEPRECATED,
3775 .category = FIO_OPT_C_IO,
3776 .group = FIO_OPT_G_RWMIX,
3777 },
3778 {
3779 .name = "nice",
3780 .lname = "Nice",
3781 .type = FIO_OPT_INT,
3782 .off1 = offsetof(struct thread_options, nice),
3783 .help = "Set job CPU nice value",
3784 .minval = -20,
3785 .maxval = 19,
3786 .def = "0",
3787 .interval = 1,
3788 .category = FIO_OPT_C_GENERAL,
3789 .group = FIO_OPT_G_CRED,
3790 },
3791#ifdef FIO_HAVE_IOPRIO
3792 {
3793 .name = "prio",
3794 .lname = "I/O nice priority",
3795 .type = FIO_OPT_INT,
3796 .off1 = offsetof(struct thread_options, ioprio),
3797 .help = "Set job IO priority value",
3798 .minval = IOPRIO_MIN_PRIO,
3799 .maxval = IOPRIO_MAX_PRIO,
3800 .interval = 1,
3801 .category = FIO_OPT_C_GENERAL,
3802 .group = FIO_OPT_G_CRED,
3803 },
3804#else
3805 {
3806 .name = "prio",
3807 .lname = "I/O nice priority",
3808 .type = FIO_OPT_UNSUPPORTED,
3809 .help = "Your platform does not support IO priorities",
3810 },
3811#endif
3812#ifdef FIO_HAVE_IOPRIO_CLASS
3813#ifndef FIO_HAVE_IOPRIO
3814#error "FIO_HAVE_IOPRIO_CLASS requires FIO_HAVE_IOPRIO"
3815#endif
3816 {
3817 .name = "prioclass",
3818 .lname = "I/O nice priority class",
3819 .type = FIO_OPT_INT,
3820 .off1 = offsetof(struct thread_options, ioprio_class),
3821 .help = "Set job IO priority class",
3822 .minval = IOPRIO_MIN_PRIO_CLASS,
3823 .maxval = IOPRIO_MAX_PRIO_CLASS,
3824 .interval = 1,
3825 .category = FIO_OPT_C_GENERAL,
3826 .group = FIO_OPT_G_CRED,
3827 },
3828 {
3829 .name = "priohint",
3830 .lname = "I/O nice priority hint",
3831 .type = FIO_OPT_INT,
3832 .off1 = offsetof(struct thread_options, ioprio_hint),
3833 .help = "Set job IO priority hint",
3834 .minval = IOPRIO_MIN_PRIO_HINT,
3835 .maxval = IOPRIO_MAX_PRIO_HINT,
3836 .interval = 1,
3837 .category = FIO_OPT_C_GENERAL,
3838 .group = FIO_OPT_G_CRED,
3839 },
3840#else
3841 {
3842 .name = "prioclass",
3843 .lname = "I/O nice priority class",
3844 .type = FIO_OPT_UNSUPPORTED,
3845 .help = "Your platform does not support IO priority classes",
3846 },
3847 {
3848 .name = "priohint",
3849 .lname = "I/O nice priority hint",
3850 .type = FIO_OPT_UNSUPPORTED,
3851 .help = "Your platform does not support IO priority hints",
3852 },
3853#endif
3854 {
3855 .name = "thinktime",
3856 .lname = "Thinktime",
3857 .type = FIO_OPT_INT,
3858 .off1 = offsetof(struct thread_options, thinktime),
3859 .help = "Idle time between IO buffers (usec)",
3860 .def = "0",
3861 .is_time = 1,
3862 .category = FIO_OPT_C_IO,
3863 .group = FIO_OPT_G_THINKTIME,
3864 },
3865 {
3866 .name = "thinktime_spin",
3867 .lname = "Thinktime spin",
3868 .type = FIO_OPT_INT,
3869 .off1 = offsetof(struct thread_options, thinktime_spin),
3870 .help = "Start think time by spinning this amount (usec)",
3871 .def = "0",
3872 .is_time = 1,
3873 .parent = "thinktime",
3874 .hide = 1,
3875 .category = FIO_OPT_C_IO,
3876 .group = FIO_OPT_G_THINKTIME,
3877 },
3878 {
3879 .name = "thinktime_blocks",
3880 .lname = "Thinktime blocks",
3881 .type = FIO_OPT_INT,
3882 .off1 = offsetof(struct thread_options, thinktime_blocks),
3883 .help = "IO buffer period between 'thinktime'",
3884 .def = "1",
3885 .parent = "thinktime",
3886 .hide = 1,
3887 .category = FIO_OPT_C_IO,
3888 .group = FIO_OPT_G_THINKTIME,
3889 },
3890 {
3891 .name = "thinktime_blocks_type",
3892 .lname = "Thinktime blocks type",
3893 .type = FIO_OPT_STR,
3894 .off1 = offsetof(struct thread_options, thinktime_blocks_type),
3895 .help = "How thinktime_blocks takes effect",
3896 .def = "complete",
3897 .category = FIO_OPT_C_IO,
3898 .group = FIO_OPT_G_THINKTIME,
3899 .posval = {
3900 { .ival = "complete",
3901 .oval = THINKTIME_BLOCKS_TYPE_COMPLETE,
3902 .help = "thinktime_blocks takes effect at the completion side",
3903 },
3904 {
3905 .ival = "issue",
3906 .oval = THINKTIME_BLOCKS_TYPE_ISSUE,
3907 .help = "thinktime_blocks takes effect at the issue side",
3908 },
3909 },
3910 .parent = "thinktime",
3911 },
3912 {
3913 .name = "thinktime_iotime",
3914 .lname = "Thinktime interval",
3915 .type = FIO_OPT_INT,
3916 .off1 = offsetof(struct thread_options, thinktime_iotime),
3917 .help = "IO time interval between 'thinktime'",
3918 .def = "0",
3919 .parent = "thinktime",
3920 .hide = 1,
3921 .is_seconds = 1,
3922 .is_time = 1,
3923 .category = FIO_OPT_C_IO,
3924 .group = FIO_OPT_G_THINKTIME,
3925 },
3926 {
3927 .name = "rate",
3928 .lname = "I/O rate",
3929 .type = FIO_OPT_ULL,
3930 .off1 = offsetof(struct thread_options, rate[DDIR_READ]),
3931 .off2 = offsetof(struct thread_options, rate[DDIR_WRITE]),
3932 .off3 = offsetof(struct thread_options, rate[DDIR_TRIM]),
3933 .help = "Set bandwidth rate",
3934 .category = FIO_OPT_C_IO,
3935 .group = FIO_OPT_G_RATE,
3936 },
3937 {
3938 .name = "rate_min",
3939 .alias = "ratemin",
3940 .lname = "I/O min rate",
3941 .type = FIO_OPT_ULL,
3942 .off1 = offsetof(struct thread_options, ratemin[DDIR_READ]),
3943 .off2 = offsetof(struct thread_options, ratemin[DDIR_WRITE]),
3944 .off3 = offsetof(struct thread_options, ratemin[DDIR_TRIM]),
3945 .help = "Job must meet this rate or it will be shutdown",
3946 .parent = "rate",
3947 .hide = 1,
3948 .category = FIO_OPT_C_IO,
3949 .group = FIO_OPT_G_RATE,
3950 },
3951 {
3952 .name = "rate_iops",
3953 .lname = "I/O rate IOPS",
3954 .type = FIO_OPT_INT,
3955 .off1 = offsetof(struct thread_options, rate_iops[DDIR_READ]),
3956 .off2 = offsetof(struct thread_options, rate_iops[DDIR_WRITE]),
3957 .off3 = offsetof(struct thread_options, rate_iops[DDIR_TRIM]),
3958 .help = "Limit IO used to this number of IO operations/sec",
3959 .hide = 1,
3960 .category = FIO_OPT_C_IO,
3961 .group = FIO_OPT_G_RATE,
3962 },
3963 {
3964 .name = "rate_iops_min",
3965 .lname = "I/O min rate IOPS",
3966 .type = FIO_OPT_INT,
3967 .off1 = offsetof(struct thread_options, rate_iops_min[DDIR_READ]),
3968 .off2 = offsetof(struct thread_options, rate_iops_min[DDIR_WRITE]),
3969 .off3 = offsetof(struct thread_options, rate_iops_min[DDIR_TRIM]),
3970 .help = "Job must meet this rate or it will be shut down",
3971 .parent = "rate_iops",
3972 .hide = 1,
3973 .category = FIO_OPT_C_IO,
3974 .group = FIO_OPT_G_RATE,
3975 },
3976 {
3977 .name = "rate_process",
3978 .lname = "Rate Process",
3979 .type = FIO_OPT_STR,
3980 .off1 = offsetof(struct thread_options, rate_process),
3981 .help = "What process controls how rated IO is managed",
3982 .def = "linear",
3983 .category = FIO_OPT_C_IO,
3984 .group = FIO_OPT_G_RATE,
3985 .posval = {
3986 { .ival = "linear",
3987 .oval = RATE_PROCESS_LINEAR,
3988 .help = "Linear rate of IO",
3989 },
3990 {
3991 .ival = "poisson",
3992 .oval = RATE_PROCESS_POISSON,
3993 .help = "Rate follows Poisson process",
3994 },
3995 },
3996 .parent = "rate",
3997 },
3998 {
3999 .name = "rate_cycle",
4000 .alias = "ratecycle",
4001 .lname = "I/O rate cycle",
4002 .type = FIO_OPT_INT,
4003 .off1 = offsetof(struct thread_options, ratecycle),
4004 .help = "Window average for rate limits (msec)",
4005 .def = "1000",
4006 .parent = "rate",
4007 .hide = 1,
4008 .category = FIO_OPT_C_IO,
4009 .group = FIO_OPT_G_RATE,
4010 },
4011 {
4012 .name = "rate_ignore_thinktime",
4013 .lname = "Rate ignore thinktime",
4014 .type = FIO_OPT_BOOL,
4015 .off1 = offsetof(struct thread_options, rate_ign_think),
4016 .help = "Rated IO ignores thinktime settings",
4017 .parent = "rate",
4018 .category = FIO_OPT_C_IO,
4019 .group = FIO_OPT_G_RATE,
4020 },
4021 {
4022 .name = "max_latency",
4023 .lname = "Max Latency (usec)",
4024 .type = FIO_OPT_ULL,
4025 .off1 = offsetof(struct thread_options, max_latency[DDIR_READ]),
4026 .off2 = offsetof(struct thread_options, max_latency[DDIR_WRITE]),
4027 .off3 = offsetof(struct thread_options, max_latency[DDIR_TRIM]),
4028 .help = "Maximum tolerated IO latency (usec)",
4029 .is_time = 1,
4030 .category = FIO_OPT_C_IO,
4031 .group = FIO_OPT_G_LATPROF,
4032 },
4033 {
4034 .name = "latency_target",
4035 .lname = "Latency Target (usec)",
4036 .type = FIO_OPT_STR_VAL_TIME,
4037 .off1 = offsetof(struct thread_options, latency_target),
4038 .help = "Ramp to max queue depth supporting this latency",
4039 .is_time = 1,
4040 .category = FIO_OPT_C_IO,
4041 .group = FIO_OPT_G_LATPROF,
4042 },
4043 {
4044 .name = "latency_window",
4045 .lname = "Latency Window (usec)",
4046 .type = FIO_OPT_STR_VAL_TIME,
4047 .off1 = offsetof(struct thread_options, latency_window),
4048 .help = "Time to sustain latency_target",
4049 .is_time = 1,
4050 .category = FIO_OPT_C_IO,
4051 .group = FIO_OPT_G_LATPROF,
4052 },
4053 {
4054 .name = "latency_percentile",
4055 .lname = "Latency Percentile",
4056 .type = FIO_OPT_FLOAT_LIST,
4057 .off1 = offsetof(struct thread_options, latency_percentile),
4058 .help = "Percentile of IOs must be below latency_target",
4059 .def = "100",
4060 .maxlen = 1,
4061 .minfp = 0.0,
4062 .maxfp = 100.0,
4063 .category = FIO_OPT_C_IO,
4064 .group = FIO_OPT_G_LATPROF,
4065 },
4066 {
4067 .name = "latency_run",
4068 .lname = "Latency Run",
4069 .type = FIO_OPT_BOOL,
4070 .off1 = offsetof(struct thread_options, latency_run),
4071 .help = "Keep adjusting queue depth to match latency_target",
4072 .def = "0",
4073 .category = FIO_OPT_C_IO,
4074 .group = FIO_OPT_G_LATPROF,
4075 },
4076 {
4077 .name = "invalidate",
4078 .lname = "Cache invalidate",
4079 .type = FIO_OPT_BOOL,
4080 .off1 = offsetof(struct thread_options, invalidate_cache),
4081 .help = "Invalidate buffer/page cache prior to running job",
4082 .def = "1",
4083 .category = FIO_OPT_C_IO,
4084 .group = FIO_OPT_G_IO_TYPE,
4085 },
4086 {
4087 .name = "sync",
4088 .lname = "Synchronous I/O",
4089 .type = FIO_OPT_STR,
4090 .off1 = offsetof(struct thread_options, sync_io),
4091 .help = "Use synchronous write IO",
4092 .def = "none",
4093 .hide = 1,
4094 .category = FIO_OPT_C_IO,
4095 .group = FIO_OPT_G_IO_TYPE,
4096 .posval = {
4097 { .ival = "none",
4098 .oval = 0,
4099 },
4100 { .ival = "0",
4101 .oval = 0,
4102 },
4103 { .ival = "sync",
4104 .oval = O_SYNC,
4105 },
4106 { .ival = "1",
4107 .oval = O_SYNC,
4108 },
4109#ifdef O_DSYNC
4110 { .ival = "dsync",
4111 .oval = O_DSYNC,
4112 },
4113#endif
4114 },
4115 },
4116#ifdef FIO_HAVE_WRITE_HINT
4117 {
4118 .name = "write_hint",
4119 .lname = "Write hint",
4120 .type = FIO_OPT_STR,
4121 .off1 = offsetof(struct thread_options, write_hint),
4122 .help = "Set expected write life time",
4123 .category = FIO_OPT_C_ENGINE,
4124 .group = FIO_OPT_G_INVALID,
4125 .posval = {
4126 { .ival = "none",
4127 .oval = RWH_WRITE_LIFE_NONE,
4128 },
4129 { .ival = "short",
4130 .oval = RWH_WRITE_LIFE_SHORT,
4131 },
4132 { .ival = "medium",
4133 .oval = RWH_WRITE_LIFE_MEDIUM,
4134 },
4135 { .ival = "long",
4136 .oval = RWH_WRITE_LIFE_LONG,
4137 },
4138 { .ival = "extreme",
4139 .oval = RWH_WRITE_LIFE_EXTREME,
4140 },
4141 },
4142 },
4143#endif
4144 {
4145 .name = "create_serialize",
4146 .lname = "Create serialize",
4147 .type = FIO_OPT_BOOL,
4148 .off1 = offsetof(struct thread_options, create_serialize),
4149 .help = "Serialize creation of job files",
4150 .def = "1",
4151 .category = FIO_OPT_C_FILE,
4152 .group = FIO_OPT_G_INVALID,
4153 },
4154 {
4155 .name = "create_fsync",
4156 .lname = "Create fsync",
4157 .type = FIO_OPT_BOOL,
4158 .off1 = offsetof(struct thread_options, create_fsync),
4159 .help = "fsync file after creation",
4160 .def = "1",
4161 .category = FIO_OPT_C_FILE,
4162 .group = FIO_OPT_G_INVALID,
4163 },
4164 {
4165 .name = "create_on_open",
4166 .lname = "Create on open",
4167 .type = FIO_OPT_BOOL,
4168 .off1 = offsetof(struct thread_options, create_on_open),
4169 .help = "Create files when they are opened for IO",
4170 .def = "0",
4171 .category = FIO_OPT_C_FILE,
4172 .group = FIO_OPT_G_INVALID,
4173 },
4174 {
4175 .name = "create_only",
4176 .lname = "Create Only",
4177 .type = FIO_OPT_BOOL,
4178 .off1 = offsetof(struct thread_options, create_only),
4179 .help = "Only perform file creation phase",
4180 .category = FIO_OPT_C_FILE,
4181 .def = "0",
4182 },
4183 {
4184 .name = "allow_file_create",
4185 .lname = "Allow file create",
4186 .type = FIO_OPT_BOOL,
4187 .off1 = offsetof(struct thread_options, allow_create),
4188 .help = "Permit fio to create files, if they don't exist",
4189 .def = "1",
4190 .category = FIO_OPT_C_FILE,
4191 .group = FIO_OPT_G_FILENAME,
4192 },
4193 {
4194 .name = "allow_mounted_write",
4195 .lname = "Allow mounted write",
4196 .type = FIO_OPT_BOOL,
4197 .off1 = offsetof(struct thread_options, allow_mounted_write),
4198 .help = "Allow writes to a mounted partition",
4199 .def = "0",
4200 .category = FIO_OPT_C_FILE,
4201 .group = FIO_OPT_G_FILENAME,
4202 },
4203 {
4204 .name = "pre_read",
4205 .lname = "Pre-read files",
4206 .type = FIO_OPT_BOOL,
4207 .off1 = offsetof(struct thread_options, pre_read),
4208 .help = "Pre-read files before starting official testing",
4209 .def = "0",
4210 .category = FIO_OPT_C_FILE,
4211 .group = FIO_OPT_G_INVALID,
4212 },
4213#ifdef FIO_HAVE_CPU_AFFINITY
4214 {
4215 .name = "cpumask",
4216 .lname = "CPU mask",
4217 .type = FIO_OPT_INT,
4218 .cb = str_cpumask_cb,
4219 .off1 = offsetof(struct thread_options, cpumask),
4220 .help = "CPU affinity mask",
4221 .category = FIO_OPT_C_GENERAL,
4222 .group = FIO_OPT_G_CRED,
4223 },
4224 {
4225 .name = "cpus_allowed",
4226 .lname = "CPUs allowed",
4227 .type = FIO_OPT_STR,
4228 .cb = str_cpus_allowed_cb,
4229 .off1 = offsetof(struct thread_options, cpumask),
4230 .help = "Set CPUs allowed",
4231 .category = FIO_OPT_C_GENERAL,
4232 .group = FIO_OPT_G_CRED,
4233 },
4234 {
4235 .name = "cpus_allowed_policy",
4236 .lname = "CPUs allowed distribution policy",
4237 .type = FIO_OPT_STR,
4238 .off1 = offsetof(struct thread_options, cpus_allowed_policy),
4239 .help = "Distribution policy for cpus_allowed",
4240 .parent = "cpus_allowed",
4241 .prio = 1,
4242 .posval = {
4243 { .ival = "shared",
4244 .oval = FIO_CPUS_SHARED,
4245 .help = "Mask shared between threads",
4246 },
4247 { .ival = "split",
4248 .oval = FIO_CPUS_SPLIT,
4249 .help = "Mask split between threads",
4250 },
4251 },
4252 .category = FIO_OPT_C_GENERAL,
4253 .group = FIO_OPT_G_CRED,
4254 },
4255#else
4256 {
4257 .name = "cpumask",
4258 .lname = "CPU mask",
4259 .type = FIO_OPT_UNSUPPORTED,
4260 .help = "Your platform does not support CPU affinities",
4261 },
4262 {
4263 .name = "cpus_allowed",
4264 .lname = "CPUs allowed",
4265 .type = FIO_OPT_UNSUPPORTED,
4266 .help = "Your platform does not support CPU affinities",
4267 },
4268 {
4269 .name = "cpus_allowed_policy",
4270 .lname = "CPUs allowed distribution policy",
4271 .type = FIO_OPT_UNSUPPORTED,
4272 .help = "Your platform does not support CPU affinities",
4273 },
4274#endif
4275#ifdef CONFIG_LIBNUMA
4276 {
4277 .name = "numa_cpu_nodes",
4278 .lname = "NUMA CPU Nodes",
4279 .type = FIO_OPT_STR,
4280 .cb = str_numa_cpunodes_cb,
4281 .off1 = offsetof(struct thread_options, numa_cpunodes),
4282 .help = "NUMA CPU nodes bind",
4283 .category = FIO_OPT_C_GENERAL,
4284 .group = FIO_OPT_G_INVALID,
4285 },
4286 {
4287 .name = "numa_mem_policy",
4288 .lname = "NUMA Memory Policy",
4289 .type = FIO_OPT_STR,
4290 .cb = str_numa_mpol_cb,
4291 .off1 = offsetof(struct thread_options, numa_memnodes),
4292 .help = "NUMA memory policy setup",
4293 .category = FIO_OPT_C_GENERAL,
4294 .group = FIO_OPT_G_INVALID,
4295 },
4296#else
4297 {
4298 .name = "numa_cpu_nodes",
4299 .lname = "NUMA CPU Nodes",
4300 .type = FIO_OPT_UNSUPPORTED,
4301 .help = "Build fio with libnuma-dev(el) to enable this option",
4302 },
4303 {
4304 .name = "numa_mem_policy",
4305 .lname = "NUMA Memory Policy",
4306 .type = FIO_OPT_UNSUPPORTED,
4307 .help = "Build fio with libnuma-dev(el) to enable this option",
4308 },
4309#endif
4310#ifdef CONFIG_CUDA
4311 {
4312 .name = "gpu_dev_id",
4313 .lname = "GPU device ID",
4314 .type = FIO_OPT_INT,
4315 .off1 = offsetof(struct thread_options, gpu_dev_id),
4316 .help = "Set GPU device ID for GPUDirect RDMA",
4317 .def = "0",
4318 .category = FIO_OPT_C_GENERAL,
4319 .group = FIO_OPT_G_INVALID,
4320 },
4321#endif
4322 {
4323 .name = "end_fsync",
4324 .lname = "End fsync",
4325 .type = FIO_OPT_BOOL,
4326 .off1 = offsetof(struct thread_options, end_fsync),
4327 .help = "Include fsync at the end of job",
4328 .def = "0",
4329 .category = FIO_OPT_C_FILE,
4330 .group = FIO_OPT_G_INVALID,
4331 },
4332 {
4333 .name = "fsync_on_close",
4334 .lname = "Fsync on close",
4335 .type = FIO_OPT_BOOL,
4336 .off1 = offsetof(struct thread_options, fsync_on_close),
4337 .help = "fsync files on close",
4338 .def = "0",
4339 .category = FIO_OPT_C_FILE,
4340 .group = FIO_OPT_G_INVALID,
4341 },
4342 {
4343 .name = "unlink",
4344 .lname = "Unlink file",
4345 .type = FIO_OPT_BOOL,
4346 .off1 = offsetof(struct thread_options, unlink),
4347 .help = "Unlink created files after job has completed",
4348 .def = "0",
4349 .category = FIO_OPT_C_FILE,
4350 .group = FIO_OPT_G_INVALID,
4351 },
4352 {
4353 .name = "unlink_each_loop",
4354 .lname = "Unlink file after each loop of a job",
4355 .type = FIO_OPT_BOOL,
4356 .off1 = offsetof(struct thread_options, unlink_each_loop),
4357 .help = "Unlink created files after each loop in a job has completed",
4358 .def = "0",
4359 .category = FIO_OPT_C_FILE,
4360 .group = FIO_OPT_G_INVALID,
4361 },
4362 {
4363 .name = "exitall",
4364 .lname = "Exit-all on terminate",
4365 .type = FIO_OPT_STR_SET,
4366 .cb = str_exitall_cb,
4367 .help = "Terminate all jobs when one exits",
4368 .category = FIO_OPT_C_GENERAL,
4369 .group = FIO_OPT_G_PROCESS,
4370 },
4371 {
4372 .name = "exit_what",
4373 .lname = "What jobs to quit on terminate",
4374 .type = FIO_OPT_STR,
4375 .off1 = offsetof(struct thread_options, exit_what),
4376 .help = "Fine-grained control for exitall",
4377 .def = "group",
4378 .category = FIO_OPT_C_GENERAL,
4379 .group = FIO_OPT_G_PROCESS,
4380 .posval = {
4381 { .ival = "group",
4382 .oval = TERMINATE_GROUP,
4383 .help = "exit_all=1 default behaviour",
4384 },
4385 { .ival = "stonewall",
4386 .oval = TERMINATE_STONEWALL,
4387 .help = "quit all currently running jobs; continue with next stonewall",
4388 },
4389 { .ival = "all",
4390 .oval = TERMINATE_ALL,
4391 .help = "Quit everything",
4392 },
4393 },
4394 },
4395 {
4396 .name = "exitall_on_error",
4397 .lname = "Exit-all on terminate in error",
4398 .type = FIO_OPT_STR_SET,
4399 .off1 = offsetof(struct thread_options, exitall_error),
4400 .help = "Terminate all jobs when one exits in error",
4401 .category = FIO_OPT_C_GENERAL,
4402 .group = FIO_OPT_G_PROCESS,
4403 },
4404 {
4405 .name = "stonewall",
4406 .lname = "Wait for previous",
4407 .alias = "wait_for_previous",
4408 .type = FIO_OPT_STR_SET,
4409 .off1 = offsetof(struct thread_options, stonewall),
4410 .help = "Insert a hard barrier between this job and previous",
4411 .category = FIO_OPT_C_GENERAL,
4412 .group = FIO_OPT_G_PROCESS,
4413 },
4414 {
4415 .name = "new_group",
4416 .lname = "New group",
4417 .type = FIO_OPT_STR_SET,
4418 .off1 = offsetof(struct thread_options, new_group),
4419 .help = "Mark the start of a new group (for reporting)",
4420 .category = FIO_OPT_C_GENERAL,
4421 .group = FIO_OPT_G_PROCESS,
4422 },
4423 {
4424 .name = "thread",
4425 .lname = "Thread",
4426 .type = FIO_OPT_STR_SET,
4427 .off1 = offsetof(struct thread_options, use_thread),
4428 .help = "Use threads instead of processes",
4429#ifdef CONFIG_NO_SHM
4430 .def = "1",
4431 .no_warn_def = 1,
4432#endif
4433 .category = FIO_OPT_C_GENERAL,
4434 .group = FIO_OPT_G_PROCESS,
4435 },
4436 {
4437 .name = "per_job_logs",
4438 .lname = "Per Job Logs",
4439 .type = FIO_OPT_BOOL,
4440 .off1 = offsetof(struct thread_options, per_job_logs),
4441 .help = "Include job number in generated log files or not",
4442 .def = "1",
4443 .category = FIO_OPT_C_LOG,
4444 .group = FIO_OPT_G_INVALID,
4445 },
4446 {
4447 .name = "write_bw_log",
4448 .lname = "Write bandwidth log",
4449 .type = FIO_OPT_STR,
4450 .off1 = offsetof(struct thread_options, bw_log_file),
4451 .cb = str_write_bw_log_cb,
4452 .help = "Write log of bandwidth during run",
4453 .category = FIO_OPT_C_LOG,
4454 .group = FIO_OPT_G_INVALID,
4455 },
4456 {
4457 .name = "write_lat_log",
4458 .lname = "Write latency log",
4459 .type = FIO_OPT_STR,
4460 .off1 = offsetof(struct thread_options, lat_log_file),
4461 .cb = str_write_lat_log_cb,
4462 .help = "Write log of latency during run",
4463 .category = FIO_OPT_C_LOG,
4464 .group = FIO_OPT_G_INVALID,
4465 },
4466 {
4467 .name = "write_iops_log",
4468 .lname = "Write IOPS log",
4469 .type = FIO_OPT_STR,
4470 .off1 = offsetof(struct thread_options, iops_log_file),
4471 .cb = str_write_iops_log_cb,
4472 .help = "Write log of IOPS during run",
4473 .category = FIO_OPT_C_LOG,
4474 .group = FIO_OPT_G_INVALID,
4475 },
4476 {
4477 .name = "log_entries",
4478 .lname = "Log entries",
4479 .type = FIO_OPT_INT,
4480 .off1 = offsetof(struct thread_options, log_entries),
4481 .help = "Initial number of entries in a job IO log",
4482 .def = __fio_stringify(DEF_LOG_ENTRIES),
4483 .minval = DEF_LOG_ENTRIES,
4484 .maxval = MAX_LOG_ENTRIES,
4485 .category = FIO_OPT_C_LOG,
4486 .group = FIO_OPT_G_INVALID,
4487 },
4488 {
4489 .name = "log_avg_msec",
4490 .lname = "Log averaging (msec)",
4491 .type = FIO_OPT_INT,
4492 .off1 = offsetof(struct thread_options, log_avg_msec),
4493 .help = "Average bw/iops/lat logs over this period of time",
4494 .def = "0",
4495 .category = FIO_OPT_C_LOG,
4496 .group = FIO_OPT_G_INVALID,
4497 },
4498 {
4499 .name = "log_hist_msec",
4500 .lname = "Log histograms (msec)",
4501 .type = FIO_OPT_INT,
4502 .off1 = offsetof(struct thread_options, log_hist_msec),
4503 .help = "Dump completion latency histograms at frequency of this time value",
4504 .def = "0",
4505 .category = FIO_OPT_C_LOG,
4506 .group = FIO_OPT_G_INVALID,
4507 },
4508 {
4509 .name = "log_hist_coarseness",
4510 .lname = "Histogram logs coarseness",
4511 .type = FIO_OPT_INT,
4512 .off1 = offsetof(struct thread_options, log_hist_coarseness),
4513 .help = "Integer in range [0,6]. Higher coarseness outputs"
4514 " fewer histogram bins per sample. The number of bins for"
4515 " these are [1216, 608, 304, 152, 76, 38, 19] respectively.",
4516 .def = "0",
4517 .category = FIO_OPT_C_LOG,
4518 .group = FIO_OPT_G_INVALID,
4519 },
4520 {
4521 .name = "write_hist_log",
4522 .lname = "Write latency histogram logs",
4523 .type = FIO_OPT_STR,
4524 .off1 = offsetof(struct thread_options, hist_log_file),
4525 .cb = str_write_hist_log_cb,
4526 .help = "Write log of latency histograms during run",
4527 .category = FIO_OPT_C_LOG,
4528 .group = FIO_OPT_G_INVALID,
4529 },
4530 {
4531 .name = "log_max_value",
4532 .lname = "Log maximum instead of average",
4533 .type = FIO_OPT_BOOL,
4534 .off1 = offsetof(struct thread_options, log_max),
4535 .help = "Log max sample in a window instead of average",
4536 .def = "0",
4537 .category = FIO_OPT_C_LOG,
4538 .group = FIO_OPT_G_INVALID,
4539 },
4540 {
4541 .name = "log_offset",
4542 .lname = "Log offset of IO",
4543 .type = FIO_OPT_BOOL,
4544 .off1 = offsetof(struct thread_options, log_offset),
4545 .help = "Include offset of IO for each log entry",
4546 .def = "0",
4547 .category = FIO_OPT_C_LOG,
4548 .group = FIO_OPT_G_INVALID,
4549 },
4550 {
4551 .name = "log_prio",
4552 .lname = "Log priority of IO",
4553 .type = FIO_OPT_BOOL,
4554 .off1 = offsetof(struct thread_options, log_prio),
4555 .help = "Include priority value of IO for each log entry",
4556 .def = "0",
4557 .category = FIO_OPT_C_LOG,
4558 .group = FIO_OPT_G_INVALID,
4559 },
4560#ifdef CONFIG_ZLIB
4561 {
4562 .name = "log_compression",
4563 .lname = "Log compression",
4564 .type = FIO_OPT_INT,
4565 .off1 = offsetof(struct thread_options, log_gz),
4566 .help = "Log in compressed chunks of this size",
4567 .minval = 1024ULL,
4568 .maxval = 512 * 1024 * 1024ULL,
4569 .category = FIO_OPT_C_LOG,
4570 .group = FIO_OPT_G_INVALID,
4571 },
4572#ifdef FIO_HAVE_CPU_AFFINITY
4573 {
4574 .name = "log_compression_cpus",
4575 .lname = "Log Compression CPUs",
4576 .type = FIO_OPT_STR,
4577 .cb = str_log_cpus_allowed_cb,
4578 .off1 = offsetof(struct thread_options, log_gz_cpumask),
4579 .parent = "log_compression",
4580 .help = "Limit log compression to these CPUs",
4581 .category = FIO_OPT_C_LOG,
4582 .group = FIO_OPT_G_INVALID,
4583 },
4584#else
4585 {
4586 .name = "log_compression_cpus",
4587 .lname = "Log Compression CPUs",
4588 .type = FIO_OPT_UNSUPPORTED,
4589 .help = "Your platform does not support CPU affinities",
4590 },
4591#endif
4592 {
4593 .name = "log_store_compressed",
4594 .lname = "Log store compressed",
4595 .type = FIO_OPT_BOOL,
4596 .off1 = offsetof(struct thread_options, log_gz_store),
4597 .help = "Store logs in a compressed format",
4598 .category = FIO_OPT_C_LOG,
4599 .group = FIO_OPT_G_INVALID,
4600 },
4601#else
4602 {
4603 .name = "log_compression",
4604 .lname = "Log compression",
4605 .type = FIO_OPT_UNSUPPORTED,
4606 .help = "Install libz-dev(el) to get compression support",
4607 },
4608 {
4609 .name = "log_store_compressed",
4610 .lname = "Log store compressed",
4611 .type = FIO_OPT_UNSUPPORTED,
4612 .help = "Install libz-dev(el) to get compression support",
4613 },
4614#endif
4615 {
4616 .name = "log_alternate_epoch",
4617 .alias = "log_unix_epoch",
4618 .lname = "Log epoch alternate",
4619 .type = FIO_OPT_BOOL,
4620 .off1 = offsetof(struct thread_options, log_alternate_epoch),
4621 .help = "Use alternate epoch time in log files. Uses the same epoch as that is used by clock_gettime with specified log_alternate_epoch_clock_id.",
4622 .category = FIO_OPT_C_LOG,
4623 .group = FIO_OPT_G_INVALID,
4624 },
4625 {
4626 .name = "log_alternate_epoch_clock_id",
4627 .lname = "Log alternate epoch clock_id",
4628 .type = FIO_OPT_INT,
4629 .off1 = offsetof(struct thread_options, log_alternate_epoch_clock_id),
4630 .help = "If log_alternate_epoch is true, this option specifies the clock_id from clock_gettime whose epoch should be used. If log_alternate_epoch is false, this option has no effect. Default value is 0, or CLOCK_REALTIME",
4631 .category = FIO_OPT_C_LOG,
4632 .group = FIO_OPT_G_INVALID,
4633 },
4634 {
4635 .name = "block_error_percentiles",
4636 .lname = "Block error percentiles",
4637 .type = FIO_OPT_BOOL,
4638 .off1 = offsetof(struct thread_options, block_error_hist),
4639 .help = "Record trim block errors and make a histogram",
4640 .def = "0",
4641 .category = FIO_OPT_C_LOG,
4642 .group = FIO_OPT_G_INVALID,
4643 },
4644 {
4645 .name = "bwavgtime",
4646 .lname = "Bandwidth average time",
4647 .type = FIO_OPT_INT,
4648 .off1 = offsetof(struct thread_options, bw_avg_time),
4649 .help = "Time window over which to calculate bandwidth"
4650 " (msec)",
4651 .def = "500",
4652 .parent = "write_bw_log",
4653 .hide = 1,
4654 .interval = 100,
4655 .category = FIO_OPT_C_LOG,
4656 .group = FIO_OPT_G_INVALID,
4657 },
4658 {
4659 .name = "iopsavgtime",
4660 .lname = "IOPS average time",
4661 .type = FIO_OPT_INT,
4662 .off1 = offsetof(struct thread_options, iops_avg_time),
4663 .help = "Time window over which to calculate IOPS (msec)",
4664 .def = "500",
4665 .parent = "write_iops_log",
4666 .hide = 1,
4667 .interval = 100,
4668 .category = FIO_OPT_C_LOG,
4669 .group = FIO_OPT_G_INVALID,
4670 },
4671 {
4672 .name = "group_reporting",
4673 .lname = "Group reporting",
4674 .type = FIO_OPT_STR_SET,
4675 .off1 = offsetof(struct thread_options, group_reporting),
4676 .help = "Do reporting on a per-group basis",
4677 .category = FIO_OPT_C_STAT,
4678 .group = FIO_OPT_G_INVALID,
4679 },
4680 {
4681 .name = "stats",
4682 .lname = "Stats",
4683 .type = FIO_OPT_BOOL,
4684 .off1 = offsetof(struct thread_options, stats),
4685 .help = "Enable collection of stats",
4686 .def = "1",
4687 .category = FIO_OPT_C_STAT,
4688 .group = FIO_OPT_G_INVALID,
4689 },
4690 {
4691 .name = "zero_buffers",
4692 .lname = "Zero I/O buffers",
4693 .type = FIO_OPT_STR_SET,
4694 .off1 = offsetof(struct thread_options, zero_buffers),
4695 .help = "Init IO buffers to all zeroes",
4696 .category = FIO_OPT_C_IO,
4697 .group = FIO_OPT_G_IO_BUF,
4698 },
4699 {
4700 .name = "refill_buffers",
4701 .lname = "Refill I/O buffers",
4702 .type = FIO_OPT_STR_SET,
4703 .off1 = offsetof(struct thread_options, refill_buffers),
4704 .help = "Refill IO buffers on every IO submit",
4705 .category = FIO_OPT_C_IO,
4706 .group = FIO_OPT_G_IO_BUF,
4707 },
4708 {
4709 .name = "scramble_buffers",
4710 .lname = "Scramble I/O buffers",
4711 .type = FIO_OPT_BOOL,
4712 .off1 = offsetof(struct thread_options, scramble_buffers),
4713 .help = "Slightly scramble buffers on every IO submit",
4714 .def = "1",
4715 .category = FIO_OPT_C_IO,
4716 .group = FIO_OPT_G_IO_BUF,
4717 },
4718 {
4719 .name = "buffer_pattern",
4720 .lname = "Buffer pattern",
4721 .type = FIO_OPT_STR,
4722 .cb = str_buffer_pattern_cb,
4723 .off1 = offsetof(struct thread_options, buffer_pattern),
4724 .help = "Fill pattern for IO buffers",
4725 .category = FIO_OPT_C_IO,
4726 .group = FIO_OPT_G_IO_BUF,
4727 },
4728 {
4729 .name = "buffer_compress_percentage",
4730 .lname = "Buffer compression percentage",
4731 .type = FIO_OPT_INT,
4732 .cb = str_buffer_compress_cb,
4733 .off1 = offsetof(struct thread_options, compress_percentage),
4734 .maxval = 100,
4735 .minval = 0,
4736 .help = "How compressible the buffer is (approximately)",
4737 .interval = 5,
4738 .category = FIO_OPT_C_IO,
4739 .group = FIO_OPT_G_IO_BUF,
4740 },
4741 {
4742 .name = "buffer_compress_chunk",
4743 .lname = "Buffer compression chunk size",
4744 .type = FIO_OPT_INT,
4745 .off1 = offsetof(struct thread_options, compress_chunk),
4746 .parent = "buffer_compress_percentage",
4747 .hide = 1,
4748 .help = "Size of compressible region in buffer",
4749 .def = "512",
4750 .interval = 256,
4751 .category = FIO_OPT_C_IO,
4752 .group = FIO_OPT_G_IO_BUF,
4753 },
4754 {
4755 .name = "dedupe_percentage",
4756 .lname = "Dedupe percentage",
4757 .type = FIO_OPT_INT,
4758 .cb = str_dedupe_cb,
4759 .off1 = offsetof(struct thread_options, dedupe_percentage),
4760 .maxval = 100,
4761 .minval = 0,
4762 .help = "Percentage of buffers that are dedupable",
4763 .interval = 1,
4764 .category = FIO_OPT_C_IO,
4765 .group = FIO_OPT_G_IO_BUF,
4766 },
4767 {
4768 .name = "dedupe_global",
4769 .lname = "Global deduplication",
4770 .type = FIO_OPT_BOOL,
4771 .off1 = offsetof(struct thread_options, dedupe_global),
4772 .help = "Share deduplication buffers across jobs",
4773 .def = "0",
4774 .category = FIO_OPT_C_IO,
4775 .group = FIO_OPT_G_IO_BUF,
4776 },
4777 {
4778 .name = "dedupe_mode",
4779 .lname = "Dedupe mode",
4780 .help = "Mode for the deduplication buffer generation",
4781 .type = FIO_OPT_STR,
4782 .off1 = offsetof(struct thread_options, dedupe_mode),
4783 .parent = "dedupe_percentage",
4784 .def = "repeat",
4785 .category = FIO_OPT_C_IO,
4786 .group = FIO_OPT_G_IO_BUF,
4787 .posval = {
4788 { .ival = "repeat",
4789 .oval = DEDUPE_MODE_REPEAT,
4790 .help = "repeat previous page",
4791 },
4792 { .ival = "working_set",
4793 .oval = DEDUPE_MODE_WORKING_SET,
4794 .help = "choose a page randomly from limited working set defined in dedupe_working_set_percentage",
4795 },
4796 },
4797 },
4798 {
4799 .name = "dedupe_working_set_percentage",
4800 .lname = "Dedupe working set percentage",
4801 .help = "Dedupe working set size in percentages from file or device size used to generate dedupe patterns from",
4802 .type = FIO_OPT_INT,
4803 .off1 = offsetof(struct thread_options, dedupe_working_set_percentage),
4804 .parent = "dedupe_percentage",
4805 .def = "5",
4806 .maxval = 100,
4807 .minval = 0,
4808 .category = FIO_OPT_C_IO,
4809 .group = FIO_OPT_G_IO_BUF,
4810 },
4811 {
4812 .name = "clat_percentiles",
4813 .lname = "Completion latency percentiles",
4814 .type = FIO_OPT_BOOL,
4815 .off1 = offsetof(struct thread_options, clat_percentiles),
4816 .help = "Enable the reporting of completion latency percentiles",
4817 .def = "1",
4818 .category = FIO_OPT_C_STAT,
4819 .group = FIO_OPT_G_INVALID,
4820 },
4821 {
4822 .name = "lat_percentiles",
4823 .lname = "IO latency percentiles",
4824 .type = FIO_OPT_BOOL,
4825 .off1 = offsetof(struct thread_options, lat_percentiles),
4826 .help = "Enable the reporting of IO latency percentiles",
4827 .def = "0",
4828 .category = FIO_OPT_C_STAT,
4829 .group = FIO_OPT_G_INVALID,
4830 },
4831 {
4832 .name = "slat_percentiles",
4833 .lname = "Submission latency percentiles",
4834 .type = FIO_OPT_BOOL,
4835 .off1 = offsetof(struct thread_options, slat_percentiles),
4836 .help = "Enable the reporting of submission latency percentiles",
4837 .def = "0",
4838 .category = FIO_OPT_C_STAT,
4839 .group = FIO_OPT_G_INVALID,
4840 },
4841 {
4842 .name = "percentile_list",
4843 .lname = "Percentile list",
4844 .type = FIO_OPT_FLOAT_LIST,
4845 .off1 = offsetof(struct thread_options, percentile_list),
4846 .off2 = offsetof(struct thread_options, percentile_precision),
4847 .help = "Specify a custom list of percentiles to report for "
4848 "completion latency and block errors",
4849 .def = "1:5:10:20:30:40:50:60:70:80:90:95:99:99.5:99.9:99.95:99.99",
4850 .maxlen = FIO_IO_U_LIST_MAX_LEN,
4851 .minfp = 0.0,
4852 .maxfp = 100.0,
4853 .category = FIO_OPT_C_STAT,
4854 .group = FIO_OPT_G_INVALID,
4855 },
4856 {
4857 .name = "significant_figures",
4858 .lname = "Significant figures",
4859 .type = FIO_OPT_INT,
4860 .off1 = offsetof(struct thread_options, sig_figs),
4861 .maxval = 10,
4862 .minval = 1,
4863 .help = "Significant figures for output-format set to normal",
4864 .def = "4",
4865 .interval = 1,
4866 .category = FIO_OPT_C_STAT,
4867 .group = FIO_OPT_G_INVALID,
4868 },
4869
4870#ifdef FIO_HAVE_DISK_UTIL
4871 {
4872 .name = "disk_util",
4873 .lname = "Disk utilization",
4874 .type = FIO_OPT_BOOL,
4875 .off1 = offsetof(struct thread_options, do_disk_util),
4876 .help = "Log disk utilization statistics",
4877 .def = "1",
4878 .category = FIO_OPT_C_STAT,
4879 .group = FIO_OPT_G_INVALID,
4880 },
4881#else
4882 {
4883 .name = "disk_util",
4884 .lname = "Disk utilization",
4885 .type = FIO_OPT_UNSUPPORTED,
4886 .help = "Your platform does not support disk utilization",
4887 },
4888#endif
4889 {
4890 .name = "gtod_reduce",
4891 .lname = "Reduce gettimeofday() calls",
4892 .type = FIO_OPT_BOOL,
4893 .help = "Greatly reduce number of gettimeofday() calls",
4894 .cb = str_gtod_reduce_cb,
4895 .def = "0",
4896 .hide_on_set = 1,
4897 .category = FIO_OPT_C_STAT,
4898 .group = FIO_OPT_G_INVALID,
4899 },
4900 {
4901 .name = "disable_lat",
4902 .lname = "Disable all latency stats",
4903 .type = FIO_OPT_BOOL,
4904 .off1 = offsetof(struct thread_options, disable_lat),
4905 .help = "Disable latency numbers",
4906 .parent = "gtod_reduce",
4907 .hide = 1,
4908 .def = "0",
4909 .category = FIO_OPT_C_STAT,
4910 .group = FIO_OPT_G_INVALID,
4911 },
4912 {
4913 .name = "disable_clat",
4914 .lname = "Disable completion latency stats",
4915 .type = FIO_OPT_BOOL,
4916 .off1 = offsetof(struct thread_options, disable_clat),
4917 .help = "Disable completion latency numbers",
4918 .parent = "gtod_reduce",
4919 .hide = 1,
4920 .def = "0",
4921 .category = FIO_OPT_C_STAT,
4922 .group = FIO_OPT_G_INVALID,
4923 },
4924 {
4925 .name = "disable_slat",
4926 .lname = "Disable submission latency stats",
4927 .type = FIO_OPT_BOOL,
4928 .off1 = offsetof(struct thread_options, disable_slat),
4929 .help = "Disable submission latency numbers",
4930 .parent = "gtod_reduce",
4931 .hide = 1,
4932 .def = "0",
4933 .category = FIO_OPT_C_STAT,
4934 .group = FIO_OPT_G_INVALID,
4935 },
4936 {
4937 .name = "disable_bw_measurement",
4938 .alias = "disable_bw",
4939 .lname = "Disable bandwidth stats",
4940 .type = FIO_OPT_BOOL,
4941 .off1 = offsetof(struct thread_options, disable_bw),
4942 .help = "Disable bandwidth logging",
4943 .parent = "gtod_reduce",
4944 .hide = 1,
4945 .def = "0",
4946 .category = FIO_OPT_C_STAT,
4947 .group = FIO_OPT_G_INVALID,
4948 },
4949 {
4950 .name = "gtod_cpu",
4951 .lname = "Dedicated gettimeofday() CPU",
4952 .type = FIO_OPT_INT,
4953 .off1 = offsetof(struct thread_options, gtod_cpu),
4954 .help = "Set up dedicated gettimeofday() thread on this CPU",
4955 .verify = gtod_cpu_verify,
4956 .category = FIO_OPT_C_GENERAL,
4957 .group = FIO_OPT_G_CLOCK,
4958 },
4959 {
4960 .name = "job_start_clock_id",
4961 .lname = "Job start clock_id",
4962 .type = FIO_OPT_INT,
4963 .off1 = offsetof(struct thread_options, job_start_clock_id),
4964 .help = "The clock_id passed to the call to clock_gettime used to record job_start in the json output format. Default is 0, or CLOCK_REALTIME",
4965 .verify = gtod_cpu_verify,
4966 .category = FIO_OPT_C_GENERAL,
4967 .group = FIO_OPT_G_CLOCK,
4968 },
4969 {
4970 .name = "unified_rw_reporting",
4971 .lname = "Unified RW Reporting",
4972 .type = FIO_OPT_STR,
4973 .off1 = offsetof(struct thread_options, unified_rw_rep),
4974 .help = "Unify reporting across data direction",
4975 .def = "none",
4976 .category = FIO_OPT_C_GENERAL,
4977 .group = FIO_OPT_G_INVALID,
4978 .posval = {
4979 { .ival = "none",
4980 .oval = UNIFIED_SPLIT,
4981 .help = "Normal statistics reporting",
4982 },
4983 { .ival = "mixed",
4984 .oval = UNIFIED_MIXED,
4985 .help = "Statistics are summed per data direction and reported together",
4986 },
4987 { .ival = "both",
4988 .oval = UNIFIED_BOTH,
4989 .help = "Statistics are reported normally, followed by the mixed statistics"
4990 },
4991 /* Compatibility with former boolean values */
4992 { .ival = "0",
4993 .oval = UNIFIED_SPLIT,
4994 .help = "Alias for 'none'",
4995 },
4996 { .ival = "1",
4997 .oval = UNIFIED_MIXED,
4998 .help = "Alias for 'mixed'",
4999 },
5000 { .ival = "2",
5001 .oval = UNIFIED_BOTH,
5002 .help = "Alias for 'both'",
5003 },
5004 },
5005 },
5006 {
5007 .name = "continue_on_error",
5008 .lname = "Continue on error",
5009 .type = FIO_OPT_STR,
5010 .off1 = offsetof(struct thread_options, continue_on_error),
5011 .help = "Continue on non-fatal errors during IO",
5012 .def = "none",
5013 .category = FIO_OPT_C_GENERAL,
5014 .group = FIO_OPT_G_ERR,
5015 .posval = {
5016 { .ival = "none",
5017 .oval = ERROR_TYPE_NONE,
5018 .help = "Exit when an error is encountered",
5019 },
5020 { .ival = "read",
5021 .oval = ERROR_TYPE_READ,
5022 .help = "Continue on read errors only",
5023 },
5024 { .ival = "write",
5025 .oval = ERROR_TYPE_WRITE,
5026 .help = "Continue on write errors only",
5027 },
5028 { .ival = "io",
5029 .oval = ERROR_TYPE_READ | ERROR_TYPE_WRITE,
5030 .help = "Continue on any IO errors",
5031 },
5032 { .ival = "verify",
5033 .oval = ERROR_TYPE_VERIFY,
5034 .help = "Continue on verify errors only",
5035 },
5036 { .ival = "all",
5037 .oval = ERROR_TYPE_ANY,
5038 .help = "Continue on all io and verify errors",
5039 },
5040 { .ival = "0",
5041 .oval = ERROR_TYPE_NONE,
5042 .help = "Alias for 'none'",
5043 },
5044 { .ival = "1",
5045 .oval = ERROR_TYPE_ANY,
5046 .help = "Alias for 'all'",
5047 },
5048 },
5049 },
5050 {
5051 .name = "ignore_error",
5052 .lname = "Ignore Error",
5053 .type = FIO_OPT_STR,
5054 .cb = str_ignore_error_cb,
5055 .off1 = offsetof(struct thread_options, ignore_error_nr),
5056 .help = "Set a specific list of errors to ignore",
5057 .parent = "rw",
5058 .category = FIO_OPT_C_GENERAL,
5059 .group = FIO_OPT_G_ERR,
5060 },
5061 {
5062 .name = "error_dump",
5063 .lname = "Error Dump",
5064 .type = FIO_OPT_BOOL,
5065 .off1 = offsetof(struct thread_options, error_dump),
5066 .def = "0",
5067 .help = "Dump info on each error",
5068 .category = FIO_OPT_C_GENERAL,
5069 .group = FIO_OPT_G_ERR,
5070 },
5071 {
5072 .name = "profile",
5073 .lname = "Profile",
5074 .type = FIO_OPT_STR_STORE,
5075 .off1 = offsetof(struct thread_options, profile),
5076 .help = "Select a specific builtin performance test",
5077 .category = FIO_OPT_C_PROFILE,
5078 .group = FIO_OPT_G_INVALID,
5079 },
5080 {
5081 .name = "cgroup",
5082 .lname = "Cgroup",
5083 .type = FIO_OPT_STR_STORE,
5084 .off1 = offsetof(struct thread_options, cgroup),
5085 .help = "Add job to cgroup of this name",
5086 .category = FIO_OPT_C_GENERAL,
5087 .group = FIO_OPT_G_CGROUP,
5088 },
5089 {
5090 .name = "cgroup_nodelete",
5091 .lname = "Cgroup no-delete",
5092 .type = FIO_OPT_BOOL,
5093 .off1 = offsetof(struct thread_options, cgroup_nodelete),
5094 .help = "Do not delete cgroups after job completion",
5095 .def = "0",
5096 .parent = "cgroup",
5097 .category = FIO_OPT_C_GENERAL,
5098 .group = FIO_OPT_G_CGROUP,
5099 },
5100 {
5101 .name = "cgroup_weight",
5102 .lname = "Cgroup weight",
5103 .type = FIO_OPT_INT,
5104 .off1 = offsetof(struct thread_options, cgroup_weight),
5105 .help = "Use given weight for cgroup",
5106 .minval = 100,
5107 .maxval = 1000,
5108 .parent = "cgroup",
5109 .category = FIO_OPT_C_GENERAL,
5110 .group = FIO_OPT_G_CGROUP,
5111 },
5112 {
5113 .name = "uid",
5114 .lname = "User ID",
5115 .type = FIO_OPT_INT,
5116 .off1 = offsetof(struct thread_options, uid),
5117 .help = "Run job with this user ID",
5118 .category = FIO_OPT_C_GENERAL,
5119 .group = FIO_OPT_G_CRED,
5120 },
5121 {
5122 .name = "gid",
5123 .lname = "Group ID",
5124 .type = FIO_OPT_INT,
5125 .off1 = offsetof(struct thread_options, gid),
5126 .help = "Run job with this group ID",
5127 .category = FIO_OPT_C_GENERAL,
5128 .group = FIO_OPT_G_CRED,
5129 },
5130 {
5131 .name = "kb_base",
5132 .lname = "KB Base",
5133 .type = FIO_OPT_STR,
5134 .off1 = offsetof(struct thread_options, kb_base),
5135 .prio = 1,
5136 .def = "1024",
5137 .posval = {
5138 { .ival = "1024",
5139 .oval = 1024,
5140 .help = "Inputs invert IEC and SI prefixes (for compatibility); outputs prefer binary",
5141 },
5142 { .ival = "1000",
5143 .oval = 1000,
5144 .help = "Inputs use IEC and SI prefixes; outputs prefer SI",
5145 },
5146 },
5147 .help = "Unit prefix interpretation for quantities of data (IEC and SI)",
5148 .category = FIO_OPT_C_GENERAL,
5149 .group = FIO_OPT_G_INVALID,
5150 },
5151 {
5152 .name = "unit_base",
5153 .lname = "Unit for quantities of data (Bits or Bytes)",
5154 .type = FIO_OPT_STR,
5155 .off1 = offsetof(struct thread_options, unit_base),
5156 .prio = 1,
5157 .posval = {
5158 { .ival = "0",
5159 .oval = N2S_NONE,
5160 .help = "Auto-detect",
5161 },
5162 { .ival = "8",
5163 .oval = N2S_BYTEPERSEC,
5164 .help = "Normal (byte based)",
5165 },
5166 { .ival = "1",
5167 .oval = N2S_BITPERSEC,
5168 .help = "Bit based",
5169 },
5170 },
5171 .help = "Bit multiple of result summary data (8 for byte, 1 for bit)",
5172 .category = FIO_OPT_C_GENERAL,
5173 .group = FIO_OPT_G_INVALID,
5174 },
5175 {
5176 .name = "hugepage-size",
5177 .lname = "Hugepage size",
5178 .type = FIO_OPT_INT,
5179 .off1 = offsetof(struct thread_options, hugepage_size),
5180 .help = "When using hugepages, specify size of each page",
5181 .def = __fio_stringify(FIO_HUGE_PAGE),
5182 .interval = 1024 * 1024,
5183 .category = FIO_OPT_C_GENERAL,
5184 .group = FIO_OPT_G_INVALID,
5185 },
5186 {
5187 .name = "flow_id",
5188 .lname = "I/O flow ID",
5189 .type = FIO_OPT_INT,
5190 .off1 = offsetof(struct thread_options, flow_id),
5191 .help = "The flow index ID to use",
5192 .def = "0",
5193 .category = FIO_OPT_C_IO,
5194 .group = FIO_OPT_G_IO_FLOW,
5195 },
5196 {
5197 .name = "flow",
5198 .lname = "I/O flow weight",
5199 .type = FIO_OPT_INT,
5200 .off1 = offsetof(struct thread_options, flow),
5201 .help = "Weight for flow control of this job",
5202 .parent = "flow_id",
5203 .hide = 1,
5204 .def = "0",
5205 .maxval = FLOW_MAX_WEIGHT,
5206 .category = FIO_OPT_C_IO,
5207 .group = FIO_OPT_G_IO_FLOW,
5208 },
5209 {
5210 .name = "flow_watermark",
5211 .lname = "I/O flow watermark",
5212 .type = FIO_OPT_SOFT_DEPRECATED,
5213 .category = FIO_OPT_C_IO,
5214 .group = FIO_OPT_G_IO_FLOW,
5215 },
5216 {
5217 .name = "flow_sleep",
5218 .lname = "I/O flow sleep",
5219 .type = FIO_OPT_INT,
5220 .off1 = offsetof(struct thread_options, flow_sleep),
5221 .help = "How many microseconds to sleep after being held"
5222 " back by the flow control mechanism",
5223 .parent = "flow_id",
5224 .hide = 1,
5225 .def = "0",
5226 .category = FIO_OPT_C_IO,
5227 .group = FIO_OPT_G_IO_FLOW,
5228 },
5229 {
5230 .name = "steadystate",
5231 .lname = "Steady state threshold",
5232 .alias = "ss",
5233 .type = FIO_OPT_STR,
5234 .off1 = offsetof(struct thread_options, ss_state),
5235 .cb = str_steadystate_cb,
5236 .help = "Define the criterion and limit to judge when a job has reached steady state",
5237 .def = "iops_slope:0.01%",
5238 .posval = {
5239 { .ival = "iops",
5240 .oval = FIO_SS_IOPS,
5241 .help = "maximum mean deviation of IOPS measurements",
5242 },
5243 { .ival = "iops_slope",
5244 .oval = FIO_SS_IOPS_SLOPE,
5245 .help = "slope calculated from IOPS measurements",
5246 },
5247 { .ival = "bw",
5248 .oval = FIO_SS_BW,
5249 .help = "maximum mean deviation of bandwidth measurements",
5250 },
5251 {
5252 .ival = "bw_slope",
5253 .oval = FIO_SS_BW_SLOPE,
5254 .help = "slope calculated from bandwidth measurements",
5255 },
5256 },
5257 .category = FIO_OPT_C_GENERAL,
5258 .group = FIO_OPT_G_RUNTIME,
5259 },
5260 {
5261 .name = "steadystate_duration",
5262 .lname = "Steady state duration",
5263 .alias = "ss_dur",
5264 .parent = "steadystate",
5265 .type = FIO_OPT_STR_VAL_TIME,
5266 .off1 = offsetof(struct thread_options, ss_dur),
5267 .help = "Stop workload upon attaining steady state for specified duration",
5268 .def = "0",
5269 .is_seconds = 1,
5270 .is_time = 1,
5271 .category = FIO_OPT_C_GENERAL,
5272 .group = FIO_OPT_G_RUNTIME,
5273 },
5274 {
5275 .name = "steadystate_ramp_time",
5276 .lname = "Steady state ramp time",
5277 .alias = "ss_ramp",
5278 .parent = "steadystate",
5279 .type = FIO_OPT_STR_VAL_TIME,
5280 .off1 = offsetof(struct thread_options, ss_ramp_time),
5281 .help = "Delay before initiation of data collection for steady state job termination testing",
5282 .def = "0",
5283 .is_seconds = 1,
5284 .is_time = 1,
5285 .category = FIO_OPT_C_GENERAL,
5286 .group = FIO_OPT_G_RUNTIME,
5287 },
5288 {
5289 .name = "steadystate_check_interval",
5290 .lname = "Steady state check interval",
5291 .alias = "ss_interval",
5292 .parent = "steadystate",
5293 .type = FIO_OPT_STR_VAL_TIME,
5294 .off1 = offsetof(struct thread_options, ss_check_interval),
5295 .help = "Polling interval for the steady state check (too low means steadystate will not converge)",
5296 .def = "1",
5297 .is_seconds = 1,
5298 .is_time = 1,
5299 .category = FIO_OPT_C_GENERAL,
5300 .group = FIO_OPT_G_RUNTIME,
5301 },
5302 {
5303 .name = NULL,
5304 },
5305};
5306
5307static void add_to_lopt(struct option *lopt, struct fio_option *o,
5308 const char *name, int val)
5309{
5310 lopt->name = (char *) name;
5311 lopt->val = val;
5312 if (o->type == FIO_OPT_STR_SET)
5313 lopt->has_arg = optional_argument;
5314 else
5315 lopt->has_arg = required_argument;
5316}
5317
5318static void options_to_lopts(struct fio_option *opts,
5319 struct option *long_options,
5320 int i, int option_type)
5321{
5322 struct fio_option *o = &opts[0];
5323 while (o->name) {
5324 add_to_lopt(&long_options[i], o, o->name, option_type);
5325 if (o->alias) {
5326 i++;
5327 add_to_lopt(&long_options[i], o, o->alias, option_type);
5328 }
5329
5330 i++;
5331 o++;
5332 assert(i < FIO_NR_OPTIONS);
5333 }
5334}
5335
5336void fio_options_set_ioengine_opts(struct option *long_options,
5337 struct thread_data *td)
5338{
5339 unsigned int i;
5340
5341 i = 0;
5342 while (long_options[i].name) {
5343 if (long_options[i].val == FIO_GETOPT_IOENGINE) {
5344 memset(&long_options[i], 0, sizeof(*long_options));
5345 break;
5346 }
5347 i++;
5348 }
5349
5350 /*
5351 * Just clear out the prior ioengine options.
5352 */
5353 if (!td || !td->eo)
5354 return;
5355
5356 options_to_lopts(td->io_ops->options, long_options, i,
5357 FIO_GETOPT_IOENGINE);
5358}
5359
5360void fio_options_dup_and_init(struct option *long_options)
5361{
5362 unsigned int i;
5363
5364 options_init(fio_options);
5365
5366 i = 0;
5367 while (long_options[i].name)
5368 i++;
5369
5370 options_to_lopts(fio_options, long_options, i, FIO_GETOPT_JOB);
5371}
5372
5373struct fio_keyword {
5374 const char *word;
5375 const char *desc;
5376 char *replace;
5377};
5378
5379static struct fio_keyword fio_keywords[] = {
5380 {
5381 .word = "$pagesize",
5382 .desc = "Page size in the system",
5383 },
5384 {
5385 .word = "$mb_memory",
5386 .desc = "Megabytes of memory online",
5387 },
5388 {
5389 .word = "$ncpus",
5390 .desc = "Number of CPUs online in the system",
5391 },
5392 {
5393 .word = NULL,
5394 },
5395};
5396
5397void fio_keywords_exit(void)
5398{
5399 struct fio_keyword *kw;
5400
5401 kw = &fio_keywords[0];
5402 while (kw->word) {
5403 free(kw->replace);
5404 kw->replace = NULL;
5405 kw++;
5406 }
5407}
5408
5409void fio_keywords_init(void)
5410{
5411 unsigned long long mb_memory;
5412 char buf[128];
5413 long l;
5414
5415 sprintf(buf, "%lu", (unsigned long) page_size);
5416 fio_keywords[0].replace = strdup(buf);
5417
5418 mb_memory = os_phys_mem() / (1024 * 1024);
5419 sprintf(buf, "%llu", mb_memory);
5420 fio_keywords[1].replace = strdup(buf);
5421
5422 l = cpus_configured();
5423 sprintf(buf, "%lu", l);
5424 fio_keywords[2].replace = strdup(buf);
5425}
5426
5427#define BC_APP "bc"
5428
5429static char *bc_calc(char *str)
5430{
5431 char buf[128], *tmp;
5432 FILE *f;
5433 int ret;
5434
5435 /*
5436 * No math, just return string
5437 */
5438 if ((!strchr(str, '+') && !strchr(str, '-') && !strchr(str, '*') &&
5439 !strchr(str, '/')) || strchr(str, '\''))
5440 return str;
5441
5442 /*
5443 * Split option from value, we only need to calculate the value
5444 */
5445 tmp = strchr(str, '=');
5446 if (!tmp)
5447 return str;
5448
5449 tmp++;
5450
5451 /*
5452 * Prevent buffer overflows; such a case isn't reasonable anyway
5453 */
5454 if (strlen(str) >= 128 || strlen(tmp) > 100)
5455 return str;
5456
5457 sprintf(buf, "which %s > /dev/null", BC_APP);
5458 if (system(buf)) {
5459 log_err("fio: bc is needed for performing math\n");
5460 return NULL;
5461 }
5462
5463 sprintf(buf, "echo '%s' | %s", tmp, BC_APP);
5464 f = popen(buf, "r");
5465 if (!f)
5466 return NULL;
5467
5468 ret = fread(&buf[tmp - str], 1, 128 - (tmp - str), f);
5469 if (ret <= 0) {
5470 pclose(f);
5471 return NULL;
5472 }
5473
5474 pclose(f);
5475 buf[(tmp - str) + ret - 1] = '\0';
5476 memcpy(buf, str, tmp - str);
5477 free(str);
5478 return strdup(buf);
5479}
5480
5481/*
5482 * Return a copy of the input string with substrings of the form ${VARNAME}
5483 * substituted with the value of the environment variable VARNAME. The
5484 * substitution always occurs, even if VARNAME is empty or the corresponding
5485 * environment variable undefined.
5486 */
5487char *fio_option_dup_subs(const char *opt)
5488{
5489 char out[OPT_LEN_MAX+1];
5490 char in[OPT_LEN_MAX+1];
5491 char *outptr = out;
5492 char *inptr = in;
5493 char *ch1, *ch2, *env;
5494 ssize_t nchr = OPT_LEN_MAX;
5495 size_t envlen;
5496
5497 if (strlen(opt) + 1 > OPT_LEN_MAX) {
5498 log_err("OPT_LEN_MAX (%d) is too small\n", OPT_LEN_MAX);
5499 return NULL;
5500 }
5501
5502 snprintf(in, sizeof(in), "%s", opt);
5503
5504 while (*inptr && nchr > 0) {
5505 if (inptr[0] == '$' && inptr[1] == '{') {
5506 ch2 = strchr(inptr, '}');
5507 if (ch2 && inptr+1 < ch2) {
5508 ch1 = inptr+2;
5509 inptr = ch2+1;
5510 *ch2 = '\0';
5511
5512 env = getenv(ch1);
5513 if (env) {
5514 envlen = strlen(env);
5515 if (envlen <= nchr) {
5516 memcpy(outptr, env, envlen);
5517 outptr += envlen;
5518 nchr -= envlen;
5519 }
5520 }
5521
5522 continue;
5523 }
5524 }
5525
5526 *outptr++ = *inptr++;
5527 --nchr;
5528 }
5529
5530 *outptr = '\0';
5531 return strdup(out);
5532}
5533
5534/*
5535 * Look for reserved variable names and replace them with real values
5536 */
5537static char *fio_keyword_replace(char *opt)
5538{
5539 char *s;
5540 int i;
5541 int docalc = 0;
5542
5543 for (i = 0; fio_keywords[i].word != NULL; i++) {
5544 struct fio_keyword *kw = &fio_keywords[i];
5545
5546 while ((s = strstr(opt, kw->word)) != NULL) {
5547 char *new = calloc(strlen(opt) + 1, 1);
5548 char *o_org = opt;
5549 int olen = s - opt;
5550 int len;
5551
5552 /*
5553 * Copy part of the string before the keyword and
5554 * sprintf() the replacement after it.
5555 */
5556 memcpy(new, opt, olen);
5557 len = sprintf(new + olen, "%s", kw->replace);
5558
5559 /*
5560 * If there's more in the original string, copy that
5561 * in too
5562 */
5563 opt += olen + strlen(kw->word);
5564 /* keeps final zero thanks to calloc */
5565 if (strlen(opt))
5566 memcpy(new + olen + len, opt, strlen(opt));
5567
5568 /*
5569 * replace opt and free the old opt
5570 */
5571 opt = new;
5572 free(o_org);
5573
5574 docalc = 1;
5575 }
5576 }
5577
5578 /*
5579 * Check for potential math and invoke bc, if possible
5580 */
5581 if (docalc)
5582 opt = bc_calc(opt);
5583
5584 return opt;
5585}
5586
5587static char **dup_and_sub_options(char **opts, int num_opts)
5588{
5589 int i;
5590 char **opts_copy = malloc(num_opts * sizeof(*opts));
5591 for (i = 0; i < num_opts; i++) {
5592 opts_copy[i] = fio_option_dup_subs(opts[i]);
5593 if (!opts_copy[i])
5594 continue;
5595 opts_copy[i] = fio_keyword_replace(opts_copy[i]);
5596 }
5597 return opts_copy;
5598}
5599
5600static void show_closest_option(const char *opt)
5601{
5602 int best_option, best_distance;
5603 int i, distance;
5604 char *name;
5605
5606 if (!strlen(opt))
5607 return;
5608
5609 name = strdup(opt);
5610 i = 0;
5611 while (name[i] != '\0' && name[i] != '=')
5612 i++;
5613 name[i] = '\0';
5614
5615 best_option = -1;
5616 best_distance = INT_MAX;
5617 i = 0;
5618 while (fio_options[i].name) {
5619 distance = string_distance(name, fio_options[i].name);
5620 if (distance < best_distance) {
5621 best_distance = distance;
5622 best_option = i;
5623 }
5624 i++;
5625 }
5626
5627 if (best_option != -1 && string_distance_ok(name, best_distance) &&
5628 fio_options[best_option].type != FIO_OPT_UNSUPPORTED)
5629 log_err("Did you mean %s?\n", fio_options[best_option].name);
5630
5631 free(name);
5632}
5633
5634int fio_options_parse(struct thread_data *td, char **opts, int num_opts)
5635{
5636 int i, ret, unknown;
5637 char **opts_copy;
5638
5639 sort_options(opts, fio_options, num_opts);
5640 opts_copy = dup_and_sub_options(opts, num_opts);
5641
5642 for (ret = 0, i = 0, unknown = 0; i < num_opts; i++) {
5643 const struct fio_option *o;
5644 int newret = parse_option(opts_copy[i], opts[i], fio_options,
5645 &o, &td->o, &td->opt_list);
5646
5647 if (!newret && o)
5648 fio_option_mark_set(&td->o, o);
5649
5650 if (opts_copy[i]) {
5651 if (newret && !o) {
5652 unknown++;
5653 continue;
5654 }
5655 free(opts_copy[i]);
5656 opts_copy[i] = NULL;
5657 }
5658
5659 ret |= newret;
5660 }
5661
5662 if (unknown) {
5663 ret |= ioengine_load(td);
5664 if (td->eo) {
5665 sort_options(opts_copy, td->io_ops->options, num_opts);
5666 opts = opts_copy;
5667 }
5668 for (i = 0; i < num_opts; i++) {
5669 const struct fio_option *o = NULL;
5670 int newret = 1;
5671
5672 if (!opts_copy[i])
5673 continue;
5674
5675 if (td->eo)
5676 newret = parse_option(opts_copy[i], opts[i],
5677 td->io_ops->options, &o,
5678 td->eo, &td->opt_list);
5679
5680 ret |= newret;
5681 if (!o) {
5682 log_err("Bad option <%s>\n", opts[i]);
5683 show_closest_option(opts[i]);
5684 }
5685 free(opts_copy[i]);
5686 opts_copy[i] = NULL;
5687 }
5688 }
5689
5690 free(opts_copy);
5691 return ret;
5692}
5693
5694int fio_cmd_option_parse(struct thread_data *td, const char *opt, char *val)
5695{
5696 int ret;
5697
5698 ret = parse_cmd_option(opt, val, fio_options, &td->o, &td->opt_list);
5699 if (!ret) {
5700 const struct fio_option *o;
5701
5702 o = find_option_c(fio_options, opt);
5703 if (o)
5704 fio_option_mark_set(&td->o, o);
5705 }
5706
5707 return ret;
5708}
5709
5710int fio_cmd_ioengine_option_parse(struct thread_data *td, const char *opt,
5711 char *val)
5712{
5713 return parse_cmd_option(opt, val, td->io_ops->options, td->eo,
5714 &td->opt_list);
5715}
5716
5717void fio_fill_default_options(struct thread_data *td)
5718{
5719 td->o.magic = OPT_MAGIC;
5720 fill_default_options(&td->o, fio_options);
5721}
5722
5723int fio_show_option_help(const char *opt)
5724{
5725 return show_cmd_help(fio_options, opt);
5726}
5727
5728/*
5729 * dupe FIO_OPT_STR_STORE options
5730 */
5731void fio_options_mem_dupe(struct thread_data *td)
5732{
5733 options_mem_dupe(fio_options, &td->o);
5734
5735 if (td->eo && td->io_ops) {
5736 void *oldeo = td->eo;
5737
5738 td->eo = malloc(td->io_ops->option_struct_size);
5739 memcpy(td->eo, oldeo, td->io_ops->option_struct_size);
5740 options_mem_dupe(td->io_ops->options, td->eo);
5741 }
5742}
5743
5744unsigned int fio_get_kb_base(void *data)
5745{
5746 struct thread_data *td = cb_data_to_td(data);
5747 struct thread_options *o = &td->o;
5748 unsigned int kb_base = 0;
5749
5750 /*
5751 * This is a hack... For private options, *data is not holding
5752 * a pointer to the thread_options, but to private data. This means
5753 * we can't safely dereference it, but magic is first so mem wise
5754 * it is valid. But this also means that if the job first sets
5755 * kb_base and expects that to be honored by private options,
5756 * it will be disappointed. We will return the global default
5757 * for this.
5758 */
5759 if (o && o->magic == OPT_MAGIC)
5760 kb_base = o->kb_base;
5761 if (!kb_base)
5762 kb_base = 1024;
5763
5764 return kb_base;
5765}
5766
5767int add_option(const struct fio_option *o)
5768{
5769 struct fio_option *__o;
5770 int opt_index = 0;
5771
5772 __o = fio_options;
5773 while (__o->name) {
5774 opt_index++;
5775 __o++;
5776 }
5777
5778 if (opt_index + 1 == FIO_MAX_OPTS) {
5779 log_err("fio: FIO_MAX_OPTS is too small\n");
5780 return 1;
5781 }
5782
5783 memcpy(&fio_options[opt_index], o, sizeof(*o));
5784 fio_options[opt_index + 1].name = NULL;
5785 return 0;
5786}
5787
5788void invalidate_profile_options(const char *prof_name)
5789{
5790 struct fio_option *o;
5791
5792 o = fio_options;
5793 while (o->name) {
5794 if (o->prof_name && !strcmp(o->prof_name, prof_name)) {
5795 o->type = FIO_OPT_INVALID;
5796 o->prof_name = NULL;
5797 }
5798 o++;
5799 }
5800}
5801
5802void add_opt_posval(const char *optname, const char *ival, const char *help)
5803{
5804 struct fio_option *o;
5805 unsigned int i;
5806
5807 o = find_option(fio_options, optname);
5808 if (!o)
5809 return;
5810
5811 for (i = 0; i < PARSE_MAX_VP; i++) {
5812 if (o->posval[i].ival)
5813 continue;
5814
5815 o->posval[i].ival = ival;
5816 o->posval[i].help = help;
5817 break;
5818 }
5819}
5820
5821void del_opt_posval(const char *optname, const char *ival)
5822{
5823 struct fio_option *o;
5824 unsigned int i;
5825
5826 o = find_option(fio_options, optname);
5827 if (!o)
5828 return;
5829
5830 for (i = 0; i < PARSE_MAX_VP; i++) {
5831 if (!o->posval[i].ival)
5832 continue;
5833 if (strcmp(o->posval[i].ival, ival))
5834 continue;
5835
5836 o->posval[i].ival = NULL;
5837 o->posval[i].help = NULL;
5838 }
5839}
5840
5841void fio_options_free(struct thread_data *td)
5842{
5843 options_free(fio_options, &td->o);
5844 if (td->eo && td->io_ops && td->io_ops->options) {
5845 options_free(td->io_ops->options, td->eo);
5846 free(td->eo);
5847 td->eo = NULL;
5848 }
5849}
5850
5851void fio_dump_options_free(struct thread_data *td)
5852{
5853 while (!flist_empty(&td->opt_list)) {
5854 struct print_option *p;
5855
5856 p = flist_first_entry(&td->opt_list, struct print_option, list);
5857 flist_del_init(&p->list);
5858 free(p->name);
5859 free(p->value);
5860 free(p);
5861 }
5862}
5863
5864struct fio_option *fio_option_find(const char *name)
5865{
5866 return find_option(fio_options, name);
5867}
5868
5869static struct fio_option *find_next_opt(struct fio_option *from,
5870 unsigned int off1)
5871{
5872 struct fio_option *opt;
5873
5874 if (!from)
5875 from = &fio_options[0];
5876 else
5877 from++;
5878
5879 opt = NULL;
5880 do {
5881 if (off1 == from->off1) {
5882 opt = from;
5883 break;
5884 }
5885 from++;
5886 } while (from->name);
5887
5888 return opt;
5889}
5890
5891static int opt_is_set(struct thread_options *o, struct fio_option *opt)
5892{
5893 unsigned int opt_off, index, offset;
5894
5895 opt_off = opt - &fio_options[0];
5896 index = opt_off / (8 * sizeof(uint64_t));
5897 offset = opt_off & ((8 * sizeof(uint64_t)) - 1);
5898 return (o->set_options[index] & ((uint64_t)1 << offset)) != 0;
5899}
5900
5901bool __fio_option_is_set(struct thread_options *o, unsigned int off1)
5902{
5903 struct fio_option *opt, *next;
5904
5905 next = NULL;
5906 while ((opt = find_next_opt(next, off1)) != NULL) {
5907 if (opt_is_set(o, opt))
5908 return true;
5909
5910 next = opt;
5911 }
5912
5913 return false;
5914}
5915
5916void fio_option_mark_set(struct thread_options *o, const struct fio_option *opt)
5917{
5918 unsigned int opt_off, index, offset;
5919
5920 opt_off = opt - &fio_options[0];
5921 index = opt_off / (8 * sizeof(uint64_t));
5922 offset = opt_off & ((8 * sizeof(uint64_t)) - 1);
5923 o->set_options[index] |= (uint64_t)1 << offset;
5924}