Merge branch 'latency-rebase-again' of https://github.com/vincentkfu/fio
[fio.git] / options.c
CommitLineData
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1#include <stdio.h>
2#include <stdlib.h>
3#include <unistd.h>
4#include <ctype.h>
5#include <string.h>
214e1eca 6#include <assert.h>
5921e80c 7#include <sys/stat.h>
e13c3b50 8#include <netinet/in.h>
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9
10#include "fio.h"
4f5af7b2 11#include "verify.h"
214e1eca 12#include "parse.h"
61b9861d 13#include "lib/pattern.h"
9f988e2e 14#include "options.h"
d220c761 15#include "optgroup.h"
214e1eca 16
e13c3b50 17char client_sockaddr_str[INET6_ADDRSTRLEN] = { 0 };
72a703da 18
a609f12a
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19#define cb_data_to_td(data) container_of(data, struct thread_data, o)
20
fc8d6d05 21static struct pattern_fmt_desc fmt_desc[] = {
4205998f
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22 {
23 .fmt = "%o",
24 .len = FIELD_SIZE(struct io_u *, offset),
25 .paste = paste_blockoff
26 }
27};
28
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29/*
30 * Check if mmap/mmaphuge has a :/foo/bar/file at the end. If so, return that.
31 */
32static char *get_opt_postfix(const char *str)
33{
34 char *p = strstr(str, ":");
35
36 if (!p)
37 return NULL;
38
39 p++;
40 strip_blank_front(&p);
41 strip_blank_end(p);
42 return strdup(p);
43}
44
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45static int bs_cmp(const void *p1, const void *p2)
46{
47 const struct bssplit *bsp1 = p1;
48 const struct bssplit *bsp2 = p2;
49
a7cd478d 50 return (int) bsp1->perc - (int) bsp2->perc;
564ca972
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51}
52
d2835319
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53struct split {
54 unsigned int nr;
5fff9543 55 unsigned long long val1[ZONESPLIT_MAX];
9d8fc5e4 56 unsigned long long val2[ZONESPLIT_MAX];
d2835319
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57};
58
59static int split_parse_ddir(struct thread_options *o, struct split *split,
517c9c72 60 char *str, bool absolute, unsigned int max_splits)
564ca972 61{
59466396
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62 unsigned long long perc;
63 unsigned int i;
564ca972 64 long long val;
720e84ad 65 char *fname;
564ca972 66
d2835319 67 split->nr = 0;
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68
69 i = 0;
564ca972
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70 while ((fname = strsep(&str, ":")) != NULL) {
71 char *perc_str;
72
73 if (!strlen(fname))
74 break;
75
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76 perc_str = strstr(fname, "/");
77 if (perc_str) {
78 *perc_str = '\0';
79 perc_str++;
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80 if (absolute) {
81 if (str_to_decimal(perc_str, &val, 1, o, 0, 0)) {
82 log_err("fio: split conversion failed\n");
83 return 1;
84 }
85 perc = val;
86 } else {
87 perc = atoi(perc_str);
88 if (perc > 100)
89 perc = 100;
90 else if (!perc)
91 perc = -1U;
92 }
93 } else {
94 if (absolute)
95 perc = 0;
96 else
d711cce5 97 perc = -1U;
59466396 98 }
564ca972 99
88038bc7 100 if (str_to_decimal(fname, &val, 1, o, 0, 0)) {
59466396 101 log_err("fio: split conversion failed\n");
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102 return 1;
103 }
104
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105 split->val1[i] = val;
106 split->val2[i] = perc;
564ca972 107 i++;
c32e1a09
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108 if (i == max_splits) {
109 log_err("fio: hit max of %d split entries\n", i);
d2835319 110 break;
c32e1a09 111 }
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112 }
113
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114 split->nr = i;
115 return 0;
116}
117
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118static int bssplit_ddir(struct thread_options *o, enum fio_ddir ddir, char *str,
119 bool data)
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120{
121 unsigned int i, perc, perc_missing;
5fff9543 122 unsigned long long max_bs, min_bs;
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123 struct split split;
124
125 memset(&split, 0, sizeof(split));
126
517c9c72 127 if (split_parse_ddir(o, &split, str, data, BSSPLIT_MAX))
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128 return 1;
129 if (!split.nr)
130 return 0;
131
132 max_bs = 0;
133 min_bs = -1;
134 o->bssplit[ddir] = malloc(split.nr * sizeof(struct bssplit));
135 o->bssplit_nr[ddir] = split.nr;
136 for (i = 0; i < split.nr; i++) {
137 if (split.val1[i] > max_bs)
138 max_bs = split.val1[i];
139 if (split.val1[i] < min_bs)
140 min_bs = split.val1[i];
141
142 o->bssplit[ddir][i].bs = split.val1[i];
143 o->bssplit[ddir][i].perc =split.val2[i];
144 }
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145
146 /*
147 * Now check if the percentages add up, and how much is missing
148 */
149 perc = perc_missing = 0;
83ea422a 150 for (i = 0; i < o->bssplit_nr[ddir]; i++) {
d2835319 151 struct bssplit *bsp = &o->bssplit[ddir][i];
564ca972 152
d711cce5 153 if (bsp->perc == -1U)
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154 perc_missing++;
155 else
156 perc += bsp->perc;
157 }
158
40bafa33 159 if (perc > 100 && perc_missing > 1) {
564ca972 160 log_err("fio: bssplit percentages add to more than 100%%\n");
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161 free(o->bssplit[ddir]);
162 o->bssplit[ddir] = NULL;
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163 return 1;
164 }
d711cce5 165
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166 /*
167 * If values didn't have a percentage set, divide the remains between
168 * them.
169 */
170 if (perc_missing) {
d711cce5 171 if (perc_missing == 1 && o->bssplit_nr[ddir] == 1)
40bafa33 172 perc = 100;
83ea422a 173 for (i = 0; i < o->bssplit_nr[ddir]; i++) {
d2835319 174 struct bssplit *bsp = &o->bssplit[ddir][i];
564ca972 175
d711cce5 176 if (bsp->perc == -1U)
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177 bsp->perc = (100 - perc) / perc_missing;
178 }
179 }
180
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181 o->min_bs[ddir] = min_bs;
182 o->max_bs[ddir] = max_bs;
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183
184 /*
185 * now sort based on percentages, for ease of lookup
186 */
d2835319 187 qsort(o->bssplit[ddir], o->bssplit_nr[ddir], sizeof(struct bssplit), bs_cmp);
720e84ad 188 return 0;
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189}
190
59466396 191typedef int (split_parse_fn)(struct thread_options *, enum fio_ddir, char *, bool);
764593c0 192
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193static int str_split_parse(struct thread_data *td, char *str,
194 split_parse_fn *fn, bool data)
720e84ad 195{
764593c0 196 char *odir, *ddir;
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197 int ret = 0;
198
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199 odir = strchr(str, ',');
200 if (odir) {
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201 ddir = strchr(odir + 1, ',');
202 if (ddir) {
59466396 203 ret = fn(&td->o, DDIR_TRIM, ddir + 1, data);
6eaf09d6
SL
204 if (!ret)
205 *ddir = '\0';
206 } else {
207 char *op;
208
209 op = strdup(odir + 1);
59466396 210 ret = fn(&td->o, DDIR_TRIM, op, data);
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SL
211
212 free(op);
213 }
d79db122 214 if (!ret)
59466396 215 ret = fn(&td->o, DDIR_WRITE, odir + 1, data);
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216 if (!ret) {
217 *odir = '\0';
59466396 218 ret = fn(&td->o, DDIR_READ, str, data);
720e84ad
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219 }
220 } else {
221 char *op;
222
223 op = strdup(str);
59466396 224 ret = fn(&td->o, DDIR_WRITE, op, data);
6eaf09d6 225 free(op);
720e84ad 226
6eaf09d6
SL
227 if (!ret) {
228 op = strdup(str);
59466396 229 ret = fn(&td->o, DDIR_TRIM, op, data);
6eaf09d6
SL
230 free(op);
231 }
f0c9c217 232 if (!ret)
59466396 233 ret = fn(&td->o, DDIR_READ, str, data);
720e84ad 234 }
564ca972 235
764593c0
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236 return ret;
237}
238
239static int str_bssplit_cb(void *data, const char *input)
240{
a609f12a 241 struct thread_data *td = cb_data_to_td(data);
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242 char *str, *p;
243 int ret = 0;
244
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245 p = str = strdup(input);
246
247 strip_blank_front(&str);
248 strip_blank_end(str);
249
59466396 250 ret = str_split_parse(td, str, bssplit_ddir, false);
764593c0 251
55baca06
JA
252 if (parse_dryrun()) {
253 int i;
254
255 for (i = 0; i < DDIR_RWDIR_CNT; i++) {
256 free(td->o.bssplit[i]);
257 td->o.bssplit[i] = NULL;
258 td->o.bssplit_nr[i] = 0;
259 }
260 }
261
564ca972 262 free(p);
720e84ad 263 return ret;
564ca972
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264}
265
8b28bd41
DM
266static int str2error(char *str)
267{
a94eb99a 268 const char *err[] = { "EPERM", "ENOENT", "ESRCH", "EINTR", "EIO",
8b28bd41
DM
269 "ENXIO", "E2BIG", "ENOEXEC", "EBADF",
270 "ECHILD", "EAGAIN", "ENOMEM", "EACCES",
271 "EFAULT", "ENOTBLK", "EBUSY", "EEXIST",
272 "EXDEV", "ENODEV", "ENOTDIR", "EISDIR",
273 "EINVAL", "ENFILE", "EMFILE", "ENOTTY",
274 "ETXTBSY","EFBIG", "ENOSPC", "ESPIPE",
a94eb99a 275 "EROFS","EMLINK", "EPIPE", "EDOM", "ERANGE" };
7fe481b4 276 int i = 0, num = sizeof(err) / sizeof(char *);
8b28bd41 277
a94eb99a 278 while (i < num) {
8b28bd41
DM
279 if (!strcmp(err[i], str))
280 return i + 1;
281 i++;
282 }
283 return 0;
284}
285
3ed673c6
TK
286static int ignore_error_type(struct thread_data *td, enum error_type_bit etype,
287 char *str)
8b28bd41
DM
288{
289 unsigned int i;
290 int *error;
291 char *fname;
292
293 if (etype >= ERROR_TYPE_CNT) {
294 log_err("Illegal error type\n");
295 return 1;
296 }
297
298 td->o.ignore_error_nr[etype] = 4;
685ffd57 299 error = calloc(4, sizeof(int));
8b28bd41
DM
300
301 i = 0;
302 while ((fname = strsep(&str, ":")) != NULL) {
303
304 if (!strlen(fname))
305 break;
306
307 /*
308 * grow struct buffer, if needed
309 */
310 if (i == td->o.ignore_error_nr[etype]) {
311 td->o.ignore_error_nr[etype] <<= 1;
312 error = realloc(error, td->o.ignore_error_nr[etype]
313 * sizeof(int));
314 }
315 if (fname[0] == 'E') {
316 error[i] = str2error(fname);
317 } else {
318 error[i] = atoi(fname);
319 if (error[i] < 0)
1616e025 320 error[i] = -error[i];
8b28bd41
DM
321 }
322 if (!error[i]) {
d503e281 323 log_err("Unknown error %s, please use number value\n",
8b28bd41 324 fname);
d503e281 325 td->o.ignore_error_nr[etype] = 0;
0fddbf7a 326 free(error);
8b28bd41
DM
327 return 1;
328 }
329 i++;
330 }
331 if (i) {
332 td->o.continue_on_error |= 1 << etype;
333 td->o.ignore_error_nr[etype] = i;
334 td->o.ignore_error[etype] = error;
d503e281
TK
335 } else {
336 td->o.ignore_error_nr[etype] = 0;
c7b086be 337 free(error);
d503e281 338 }
c7b086be 339
8b28bd41
DM
340 return 0;
341
342}
343
d7235efb
JA
344static int str_replay_skip_cb(void *data, const char *input)
345{
346 struct thread_data *td = cb_data_to_td(data);
347 char *str, *p, *n;
348 int ret = 0;
349
350 if (parse_dryrun())
351 return 0;
352
353 p = str = strdup(input);
354
355 strip_blank_front(&str);
356 strip_blank_end(str);
357
358 while (p) {
359 n = strchr(p, ',');
360 if (n)
361 *n++ = '\0';
362 if (!strcmp(p, "read"))
363 td->o.replay_skip |= 1u << DDIR_READ;
364 else if (!strcmp(p, "write"))
365 td->o.replay_skip |= 1u << DDIR_WRITE;
366 else if (!strcmp(p, "trim"))
367 td->o.replay_skip |= 1u << DDIR_TRIM;
368 else if (!strcmp(p, "sync"))
369 td->o.replay_skip |= 1u << DDIR_SYNC;
370 else {
371 log_err("Unknown skip type: %s\n", p);
372 ret = 1;
373 break;
374 }
375 p = n;
376 }
377 free(str);
378 return ret;
379}
380
8b28bd41
DM
381static int str_ignore_error_cb(void *data, const char *input)
382{
a609f12a 383 struct thread_data *td = cb_data_to_td(data);
8b28bd41 384 char *str, *p, *n;
3ed673c6
TK
385 int ret = 1;
386 enum error_type_bit type = 0;
52c0cea3
JA
387
388 if (parse_dryrun())
389 return 0;
390
8b28bd41
DM
391 p = str = strdup(input);
392
393 strip_blank_front(&str);
394 strip_blank_end(str);
395
396 while (p) {
397 n = strchr(p, ',');
398 if (n)
399 *n++ = '\0';
400 ret = ignore_error_type(td, type, p);
401 if (ret)
402 break;
403 p = n;
404 type++;
405 }
406 free(str);
407 return ret;
408}
409
211097b2
JA
410static int str_rw_cb(void *data, const char *str)
411{
a609f12a 412 struct thread_data *td = cb_data_to_td(data);
83ea422a 413 struct thread_options *o = &td->o;
27ca949f 414 char *nr;
211097b2 415
52c0cea3
JA
416 if (parse_dryrun())
417 return 0;
418
83ea422a
JA
419 o->ddir_seq_nr = 1;
420 o->ddir_seq_add = 0;
059b0802 421
27ca949f 422 nr = get_opt_postfix(str);
059b0802
JA
423 if (!nr)
424 return 0;
425
426 if (td_random(td))
83ea422a 427 o->ddir_seq_nr = atoi(nr);
059b0802
JA
428 else {
429 long long val;
430
88038bc7 431 if (str_to_decimal(nr, &val, 1, o, 0, 0)) {
059b0802
JA
432 log_err("fio: rw postfix parsing failed\n");
433 free(nr);
434 return 1;
435 }
436
83ea422a 437 o->ddir_seq_add = val;
182ec6ee 438 }
211097b2 439
059b0802 440 free(nr);
211097b2
JA
441 return 0;
442}
443
214e1eca
JA
444static int str_mem_cb(void *data, const char *mem)
445{
a609f12a 446 struct thread_data *td = cb_data_to_td(data);
214e1eca 447
217b0f1d
LG
448 if (td->o.mem_type == MEM_MMAPHUGE || td->o.mem_type == MEM_MMAP ||
449 td->o.mem_type == MEM_MMAPSHARED)
836fcc0f 450 td->o.mmapfile = get_opt_postfix(mem);
214e1eca
JA
451
452 return 0;
453}
454
c223da83
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455static int fio_clock_source_cb(void *data, const char *str)
456{
a609f12a 457 struct thread_data *td = cb_data_to_td(data);
c223da83
JA
458
459 fio_clock_source = td->o.clocksource;
fa80feae 460 fio_clock_source_set = 1;
01423eae 461 fio_clock_init();
c223da83
JA
462 return 0;
463}
464
85bc833b 465static int str_rwmix_read_cb(void *data, unsigned long long *val)
cb499fc4 466{
a609f12a 467 struct thread_data *td = cb_data_to_td(data);
cb499fc4
JA
468
469 td->o.rwmix[DDIR_READ] = *val;
470 td->o.rwmix[DDIR_WRITE] = 100 - *val;
471 return 0;
472}
473
85bc833b 474static int str_rwmix_write_cb(void *data, unsigned long long *val)
cb499fc4 475{
a609f12a 476 struct thread_data *td = cb_data_to_td(data);
cb499fc4
JA
477
478 td->o.rwmix[DDIR_WRITE] = *val;
479 td->o.rwmix[DDIR_READ] = 100 - *val;
480 return 0;
481}
482
214e1eca
JA
483static int str_exitall_cb(void)
484{
f1867a7f 485 exitall_on_terminate = true;
214e1eca
JA
486 return 0;
487}
488
214e1eca 489#ifdef FIO_HAVE_CPU_AFFINITY
50b5860b 490int fio_cpus_split(os_cpu_mask_t *mask, unsigned int cpu_index)
c2acfbac 491{
50b5860b 492 unsigned int i, index, cpus_in_mask;
c2acfbac 493 const long max_cpu = cpus_online();
c2acfbac 494
50b5860b 495 cpus_in_mask = fio_cpu_count(mask);
3a294b87
VF
496 if (!cpus_in_mask)
497 return 0;
498
50b5860b
JA
499 cpu_index = cpu_index % cpus_in_mask;
500
501 index = 0;
c2acfbac 502 for (i = 0; i < max_cpu; i++) {
50b5860b 503 if (!fio_cpu_isset(mask, i))
c2acfbac 504 continue;
50b5860b
JA
505
506 if (cpu_index != index)
507 fio_cpu_clear(mask, i);
508
509 index++;
c2acfbac
JA
510 }
511
512 return fio_cpu_count(mask);
513}
514
85bc833b 515static int str_cpumask_cb(void *data, unsigned long long *val)
d2e268b0 516{
a609f12a 517 struct thread_data *td = cb_data_to_td(data);
214e1eca 518 unsigned int i;
b03daafb 519 long max_cpu;
d2ce18b5
JA
520 int ret;
521
52c0cea3
JA
522 if (parse_dryrun())
523 return 0;
524
d2ce18b5
JA
525 ret = fio_cpuset_init(&td->o.cpumask);
526 if (ret < 0) {
527 log_err("fio: cpuset_init failed\n");
528 td_verror(td, ret, "fio_cpuset_init");
529 return 1;
530 }
214e1eca 531
c00a2289 532 max_cpu = cpus_online();
214e1eca 533
62a7273d
JA
534 for (i = 0; i < sizeof(int) * 8; i++) {
535 if ((1 << i) & *val) {
b8411399 536 if (i >= max_cpu) {
b03daafb 537 log_err("fio: CPU %d too large (max=%ld)\n", i,
b8411399 538 max_cpu - 1);
b03daafb
JA
539 return 1;
540 }
62a7273d 541 dprint(FD_PARSE, "set cpu allowed %d\n", i);
6d459ee7 542 fio_cpu_set(&td->o.cpumask, i);
62a7273d
JA
543 }
544 }
d2e268b0 545
d2e268b0 546 return 0;
214e1eca
JA
547}
548
e8462bd8
JA
549static int set_cpus_allowed(struct thread_data *td, os_cpu_mask_t *mask,
550 const char *input)
214e1eca 551{
d2e268b0 552 char *cpu, *str, *p;
b03daafb 553 long max_cpu;
19608d6c 554 int ret = 0;
d2e268b0 555
e8462bd8 556 ret = fio_cpuset_init(mask);
d2ce18b5
JA
557 if (ret < 0) {
558 log_err("fio: cpuset_init failed\n");
559 td_verror(td, ret, "fio_cpuset_init");
560 return 1;
561 }
d2e268b0
JA
562
563 p = str = strdup(input);
214e1eca 564
d2e268b0
JA
565 strip_blank_front(&str);
566 strip_blank_end(str);
567
c00a2289 568 max_cpu = cpus_online();
b03daafb 569
d2e268b0 570 while ((cpu = strsep(&str, ",")) != NULL) {
62a7273d
JA
571 char *str2, *cpu2;
572 int icpu, icpu2;
573
d2e268b0
JA
574 if (!strlen(cpu))
575 break;
62a7273d
JA
576
577 str2 = cpu;
578 icpu2 = -1;
579 while ((cpu2 = strsep(&str2, "-")) != NULL) {
580 if (!strlen(cpu2))
581 break;
582
583 icpu2 = atoi(cpu2);
584 }
585
586 icpu = atoi(cpu);
587 if (icpu2 == -1)
588 icpu2 = icpu;
589 while (icpu <= icpu2) {
6d459ee7 590 if (icpu >= FIO_MAX_CPUS) {
19608d6c 591 log_err("fio: your OS only supports up to"
6d459ee7 592 " %d CPUs\n", (int) FIO_MAX_CPUS);
19608d6c
JA
593 ret = 1;
594 break;
595 }
9e986889 596 if (icpu >= max_cpu) {
b03daafb 597 log_err("fio: CPU %d too large (max=%ld)\n",
9e986889 598 icpu, max_cpu - 1);
b03daafb
JA
599 ret = 1;
600 break;
601 }
0b9d69ec 602
62a7273d 603 dprint(FD_PARSE, "set cpu allowed %d\n", icpu);
e8462bd8 604 fio_cpu_set(mask, icpu);
62a7273d
JA
605 icpu++;
606 }
19608d6c
JA
607 if (ret)
608 break;
d2e268b0
JA
609 }
610
611 free(p);
19608d6c 612 return ret;
214e1eca 613}
e8462bd8
JA
614
615static int str_cpus_allowed_cb(void *data, const char *input)
616{
a609f12a 617 struct thread_data *td = cb_data_to_td(data);
e8462bd8 618
52c0cea3
JA
619 if (parse_dryrun())
620 return 0;
621
b2a9e649 622 return set_cpus_allowed(td, &td->o.cpumask, input);
e8462bd8
JA
623}
624
625static int str_verify_cpus_allowed_cb(void *data, const char *input)
626{
a609f12a 627 struct thread_data *td = cb_data_to_td(data);
e8462bd8 628
466155e2
JA
629 if (parse_dryrun())
630 return 0;
631
b2a9e649 632 return set_cpus_allowed(td, &td->o.verify_cpumask, input);
e8462bd8 633}
c08f9fe2 634
105157ad 635#ifdef CONFIG_ZLIB
c08f9fe2
JA
636static int str_log_cpus_allowed_cb(void *data, const char *input)
637{
a609f12a 638 struct thread_data *td = cb_data_to_td(data);
c08f9fe2
JA
639
640 if (parse_dryrun())
641 return 0;
642
643 return set_cpus_allowed(td, &td->o.log_gz_cpumask, input);
644}
105157ad 645#endif /* CONFIG_ZLIB */
c08f9fe2 646
105157ad 647#endif /* FIO_HAVE_CPU_AFFINITY */
214e1eca 648
67bf9823 649#ifdef CONFIG_LIBNUMA
d0b937ed
YR
650static int str_numa_cpunodes_cb(void *data, char *input)
651{
a609f12a 652 struct thread_data *td = cb_data_to_td(data);
43522848 653 struct bitmask *verify_bitmask;
d0b937ed 654
52c0cea3
JA
655 if (parse_dryrun())
656 return 0;
657
d0b937ed
YR
658 /* numa_parse_nodestring() parses a character string list
659 * of nodes into a bit mask. The bit mask is allocated by
660 * numa_allocate_nodemask(), so it should be freed by
661 * numa_free_nodemask().
662 */
43522848
DG
663 verify_bitmask = numa_parse_nodestring(input);
664 if (verify_bitmask == NULL) {
d0b937ed
YR
665 log_err("fio: numa_parse_nodestring failed\n");
666 td_verror(td, 1, "str_numa_cpunodes_cb");
667 return 1;
668 }
43522848 669 numa_free_nodemask(verify_bitmask);
d0b937ed 670
43522848 671 td->o.numa_cpunodes = strdup(input);
d0b937ed
YR
672 return 0;
673}
674
675static int str_numa_mpol_cb(void *data, char *input)
676{
a609f12a 677 struct thread_data *td = cb_data_to_td(data);
d0b937ed 678 const char * const policy_types[] =
05d6f44b 679 { "default", "prefer", "bind", "interleave", "local", NULL };
d0b937ed 680 int i;
52c0cea3 681 char *nodelist;
43522848 682 struct bitmask *verify_bitmask;
52c0cea3
JA
683
684 if (parse_dryrun())
685 return 0;
d0b937ed 686
52c0cea3 687 nodelist = strchr(input, ':');
d0b937ed
YR
688 if (nodelist) {
689 /* NUL-terminate mode */
690 *nodelist++ = '\0';
691 }
692
693 for (i = 0; i <= MPOL_LOCAL; i++) {
694 if (!strcmp(input, policy_types[i])) {
695 td->o.numa_mem_mode = i;
696 break;
697 }
698 }
699 if (i > MPOL_LOCAL) {
700 log_err("fio: memory policy should be: default, prefer, bind, interleave, local\n");
701 goto out;
702 }
703
704 switch (td->o.numa_mem_mode) {
705 case MPOL_PREFERRED:
706 /*
707 * Insist on a nodelist of one node only
708 */
709 if (nodelist) {
710 char *rest = nodelist;
711 while (isdigit(*rest))
712 rest++;
713 if (*rest) {
714 log_err("fio: one node only for \'prefer\'\n");
715 goto out;
716 }
717 } else {
718 log_err("fio: one node is needed for \'prefer\'\n");
719 goto out;
720 }
721 break;
722 case MPOL_INTERLEAVE:
723 /*
724 * Default to online nodes with memory if no nodelist
725 */
726 if (!nodelist)
727 nodelist = strdup("all");
728 break;
729 case MPOL_LOCAL:
730 case MPOL_DEFAULT:
731 /*
732 * Don't allow a nodelist
733 */
734 if (nodelist) {
735 log_err("fio: NO nodelist for \'local\'\n");
736 goto out;
737 }
738 break;
739 case MPOL_BIND:
740 /*
741 * Insist on a nodelist
742 */
743 if (!nodelist) {
744 log_err("fio: a nodelist is needed for \'bind\'\n");
745 goto out;
746 }
747 break;
748 }
749
750
751 /* numa_parse_nodestring() parses a character string list
752 * of nodes into a bit mask. The bit mask is allocated by
753 * numa_allocate_nodemask(), so it should be freed by
754 * numa_free_nodemask().
755 */
756 switch (td->o.numa_mem_mode) {
757 case MPOL_PREFERRED:
758 td->o.numa_mem_prefer_node = atoi(nodelist);
759 break;
760 case MPOL_INTERLEAVE:
761 case MPOL_BIND:
43522848
DG
762 verify_bitmask = numa_parse_nodestring(nodelist);
763 if (verify_bitmask == NULL) {
d0b937ed
YR
764 log_err("fio: numa_parse_nodestring failed\n");
765 td_verror(td, 1, "str_numa_memnodes_cb");
766 return 1;
767 }
43522848
DG
768 td->o.numa_memnodes = strdup(nodelist);
769 numa_free_nodemask(verify_bitmask);
b74e419e 770
d0b937ed
YR
771 break;
772 case MPOL_LOCAL:
773 case MPOL_DEFAULT:
774 default:
775 break;
776 }
777
d0b937ed 778 return 0;
d0b937ed
YR
779out:
780 return 1;
781}
782#endif
783
214e1eca
JA
784static int str_fst_cb(void *data, const char *str)
785{
a609f12a 786 struct thread_data *td = cb_data_to_td(data);
8c07860d
JA
787 double val;
788 bool done = false;
789 char *nr;
214e1eca
JA
790
791 td->file_service_nr = 1;
8c07860d
JA
792
793 switch (td->o.file_service_type) {
794 case FIO_FSERVICE_RANDOM:
795 case FIO_FSERVICE_RR:
796 case FIO_FSERVICE_SEQ:
797 nr = get_opt_postfix(str);
798 if (nr) {
799 td->file_service_nr = atoi(nr);
800 free(nr);
801 }
802 done = true;
803 break;
804 case FIO_FSERVICE_ZIPF:
805 val = FIO_DEF_ZIPF;
806 break;
807 case FIO_FSERVICE_PARETO:
808 val = FIO_DEF_PARETO;
809 break;
810 case FIO_FSERVICE_GAUSS:
811 val = 0.0;
812 break;
813 default:
814 log_err("fio: bad file service type: %d\n", td->o.file_service_type);
815 return 1;
816 }
817
818 if (done)
819 return 0;
820
821 nr = get_opt_postfix(str);
822 if (nr && !str_to_float(nr, &val, 0)) {
823 log_err("fio: file service type random postfix parsing failed\n");
182ec6ee 824 free(nr);
8c07860d
JA
825 return 1;
826 }
827
828 free(nr);
829
830 switch (td->o.file_service_type) {
831 case FIO_FSERVICE_ZIPF:
832 if (val == 1.00) {
833 log_err("fio: zipf theta must be different than 1.0\n");
834 return 1;
835 }
836 if (parse_dryrun())
837 return 0;
838 td->zipf_theta = val;
839 break;
840 case FIO_FSERVICE_PARETO:
841 if (val <= 0.00 || val >= 1.00) {
842 log_err("fio: pareto input out of range (0 < input < 1.0)\n");
843 return 1;
844 }
845 if (parse_dryrun())
846 return 0;
847 td->pareto_h = val;
848 break;
849 case FIO_FSERVICE_GAUSS:
850 if (val < 0.00 || val >= 100.00) {
99c94a6b 851 log_err("fio: normal deviation out of range (0 <= input < 100.0)\n");
8c07860d
JA
852 return 1;
853 }
854 if (parse_dryrun())
855 return 0;
856 td->gauss_dev = val;
857 break;
182ec6ee 858 }
214e1eca
JA
859
860 return 0;
861}
862
67bf9823 863#ifdef CONFIG_SYNC_FILE_RANGE
44f29692
JA
864static int str_sfr_cb(void *data, const char *str)
865{
a609f12a 866 struct thread_data *td = cb_data_to_td(data);
44f29692
JA
867 char *nr = get_opt_postfix(str);
868
869 td->sync_file_range_nr = 1;
870 if (nr) {
871 td->sync_file_range_nr = atoi(nr);
872 free(nr);
873 }
874
875 return 0;
876}
3ae06371 877#endif
44f29692 878
764593c0 879static int zone_split_ddir(struct thread_options *o, enum fio_ddir ddir,
59466396 880 char *str, bool absolute)
e0a04ac1 881{
e0a04ac1 882 unsigned int i, perc, perc_missing, sperc, sperc_missing;
d2835319 883 struct split split;
e0a04ac1 884
d2835319 885 memset(&split, 0, sizeof(split));
e0a04ac1 886
517c9c72 887 if (split_parse_ddir(o, &split, str, absolute, ZONESPLIT_MAX))
d2835319
JA
888 return 1;
889 if (!split.nr)
890 return 0;
e0a04ac1 891
d2835319
JA
892 o->zone_split[ddir] = malloc(split.nr * sizeof(struct zone_split));
893 o->zone_split_nr[ddir] = split.nr;
894 for (i = 0; i < split.nr; i++) {
895 o->zone_split[ddir][i].access_perc = split.val1[i];
59466396
JA
896 if (absolute)
897 o->zone_split[ddir][i].size = split.val2[i];
898 else
899 o->zone_split[ddir][i].size_perc = split.val2[i];
e0a04ac1
JA
900 }
901
e0a04ac1
JA
902 /*
903 * Now check if the percentages add up, and how much is missing
904 */
905 perc = perc_missing = 0;
906 sperc = sperc_missing = 0;
907 for (i = 0; i < o->zone_split_nr[ddir]; i++) {
d2835319 908 struct zone_split *zsp = &o->zone_split[ddir][i];
e0a04ac1
JA
909
910 if (zsp->access_perc == (uint8_t) -1U)
911 perc_missing++;
912 else
913 perc += zsp->access_perc;
914
59466396
JA
915 if (!absolute) {
916 if (zsp->size_perc == (uint8_t) -1U)
917 sperc_missing++;
918 else
919 sperc += zsp->size_perc;
920 }
e0a04ac1
JA
921 }
922
923 if (perc > 100 || sperc > 100) {
924 log_err("fio: zone_split percentages add to more than 100%%\n");
d2835319
JA
925 free(o->zone_split[ddir]);
926 o->zone_split[ddir] = NULL;
e0a04ac1
JA
927 return 1;
928 }
929 if (perc < 100) {
930 log_err("fio: access percentage don't add up to 100 for zoned "
931 "random distribution (got=%u)\n", perc);
d2835319
JA
932 free(o->zone_split[ddir]);
933 o->zone_split[ddir] = NULL;
e0a04ac1
JA
934 return 1;
935 }
936
937 /*
938 * If values didn't have a percentage set, divide the remains between
939 * them.
940 */
941 if (perc_missing) {
942 if (perc_missing == 1 && o->zone_split_nr[ddir] == 1)
943 perc = 100;
944 for (i = 0; i < o->zone_split_nr[ddir]; i++) {
d2835319 945 struct zone_split *zsp = &o->zone_split[ddir][i];
e0a04ac1
JA
946
947 if (zsp->access_perc == (uint8_t) -1U)
948 zsp->access_perc = (100 - perc) / perc_missing;
949 }
950 }
951 if (sperc_missing) {
952 if (sperc_missing == 1 && o->zone_split_nr[ddir] == 1)
953 sperc = 100;
954 for (i = 0; i < o->zone_split_nr[ddir]; i++) {
d2835319 955 struct zone_split *zsp = &o->zone_split[ddir][i];
e0a04ac1
JA
956
957 if (zsp->size_perc == (uint8_t) -1U)
958 zsp->size_perc = (100 - sperc) / sperc_missing;
959 }
960 }
961
e0a04ac1
JA
962 return 0;
963}
964
59466396
JA
965static int parse_zoned_distribution(struct thread_data *td, const char *input,
966 bool absolute)
e0a04ac1 967{
59466396 968 const char *pre = absolute ? "zoned_abs:" : "zoned:";
764593c0 969 char *str, *p;
e0a04ac1
JA
970 int i, ret = 0;
971
972 p = str = strdup(input);
973
974 strip_blank_front(&str);
975 strip_blank_end(str);
976
977 /* We expect it to start like that, bail if not */
59466396 978 if (strncmp(str, pre, strlen(pre))) {
e0a04ac1
JA
979 log_err("fio: mismatch in zoned input <%s>\n", str);
980 free(p);
981 return 1;
982 }
59466396 983 str += strlen(pre);
e0a04ac1 984
59466396 985 ret = str_split_parse(td, str, zone_split_ddir, absolute);
e0a04ac1
JA
986
987 free(p);
988
989 for (i = 0; i < DDIR_RWDIR_CNT; i++) {
990 int j;
991
992 dprint(FD_PARSE, "zone ddir %d (nr=%u): \n", i, td->o.zone_split_nr[i]);
993
994 for (j = 0; j < td->o.zone_split_nr[i]; j++) {
995 struct zone_split *zsp = &td->o.zone_split[i][j];
996
59466396
JA
997 if (absolute) {
998 dprint(FD_PARSE, "\t%d: %u/%llu\n", j,
999 zsp->access_perc,
1000 (unsigned long long) zsp->size);
1001 } else {
1002 dprint(FD_PARSE, "\t%d: %u/%u\n", j,
1003 zsp->access_perc,
1004 zsp->size_perc);
1005 }
e0a04ac1
JA
1006 }
1007 }
1008
55baca06 1009 if (parse_dryrun()) {
55baca06
JA
1010 for (i = 0; i < DDIR_RWDIR_CNT; i++) {
1011 free(td->o.zone_split[i]);
1012 td->o.zone_split[i] = NULL;
1013 td->o.zone_split_nr[i] = 0;
1014 }
1015
1016 return ret;
1017 }
1018
81bdb791 1019 if (ret) {
dc4bffb8
JA
1020 for (i = 0; i < DDIR_RWDIR_CNT; i++)
1021 td->o.zone_split_nr[i] = 0;
1022 }
e0a04ac1
JA
1023
1024 return ret;
1025}
1026
e25839d4
JA
1027static int str_random_distribution_cb(void *data, const char *str)
1028{
a609f12a 1029 struct thread_data *td = cb_data_to_td(data);
e25839d4
JA
1030 double val;
1031 char *nr;
1032
925fee33 1033 if (td->o.random_distribution == FIO_RAND_DIST_ZIPF)
c95f9404 1034 val = FIO_DEF_ZIPF;
925fee33 1035 else if (td->o.random_distribution == FIO_RAND_DIST_PARETO)
c95f9404 1036 val = FIO_DEF_PARETO;
56d9fa4b
JA
1037 else if (td->o.random_distribution == FIO_RAND_DIST_GAUSS)
1038 val = 0.0;
e0a04ac1 1039 else if (td->o.random_distribution == FIO_RAND_DIST_ZONED)
59466396
JA
1040 return parse_zoned_distribution(td, str, false);
1041 else if (td->o.random_distribution == FIO_RAND_DIST_ZONED_ABS)
1042 return parse_zoned_distribution(td, str, true);
925fee33 1043 else
e25839d4
JA
1044 return 0;
1045
1046 nr = get_opt_postfix(str);
88038bc7 1047 if (nr && !str_to_float(nr, &val, 0)) {
e25839d4
JA
1048 log_err("fio: random postfix parsing failed\n");
1049 free(nr);
1050 return 1;
1051 }
1052
078189c1
JA
1053 free(nr);
1054
18ded917
JA
1055 if (td->o.random_distribution == FIO_RAND_DIST_ZIPF) {
1056 if (val == 1.00) {
1057 log_err("fio: zipf theta must different than 1.0\n");
1058 return 1;
1059 }
55baca06
JA
1060 if (parse_dryrun())
1061 return 0;
1e5324e7 1062 td->o.zipf_theta.u.f = val;
56d9fa4b 1063 } else if (td->o.random_distribution == FIO_RAND_DIST_PARETO) {
078189c1
JA
1064 if (val <= 0.00 || val >= 1.00) {
1065 log_err("fio: pareto input out of range (0 < input < 1.0)\n");
1066 return 1;
1067 }
55baca06
JA
1068 if (parse_dryrun())
1069 return 0;
1e5324e7 1070 td->o.pareto_h.u.f = val;
3cdb8cf3 1071 } else {
76527b19 1072 if (val < 0.00 || val >= 100.0) {
99c94a6b 1073 log_err("fio: normal deviation out of range (0 <= input < 100.0)\n");
3cdb8cf3
JA
1074 return 1;
1075 }
55baca06
JA
1076 if (parse_dryrun())
1077 return 0;
f88cd222 1078 td->o.gauss_dev.u.f = val;
3cdb8cf3 1079 }
921c766f
JA
1080
1081 return 0;
1082}
1083
16e56d25
VF
1084static int str_steadystate_cb(void *data, const char *str)
1085{
94f218f6 1086 struct thread_data *td = cb_data_to_td(data);
16e56d25
VF
1087 double val;
1088 char *nr;
1089 char *pct;
1090 long long ll;
1091
2c5d94bc
VF
1092 if (td->o.ss_state != FIO_SS_IOPS && td->o.ss_state != FIO_SS_IOPS_SLOPE &&
1093 td->o.ss_state != FIO_SS_BW && td->o.ss_state != FIO_SS_BW_SLOPE) {
16e56d25
VF
1094 /* should be impossible to get here */
1095 log_err("fio: unknown steady state criterion\n");
1096 return 1;
1097 }
1098
1099 nr = get_opt_postfix(str);
1100 if (!nr) {
1101 log_err("fio: steadystate threshold must be specified in addition to criterion\n");
1102 free(nr);
1103 return 1;
1104 }
1105
1106 /* ENHANCEMENT Allow fio to understand size=10.2% and use here */
1107 pct = strstr(nr, "%");
1108 if (pct) {
1109 *pct = '\0';
1110 strip_blank_end(nr);
1111 if (!str_to_float(nr, &val, 0)) {
1112 log_err("fio: could not parse steadystate threshold percentage\n");
1113 free(nr);
1114 return 1;
1115 }
1116
1117 dprint(FD_PARSE, "set steady state threshold to %f%%\n", val);
1118 free(nr);
1119 if (parse_dryrun())
1120 return 0;
1121
c8caba48 1122 td->o.ss_state |= FIO_SS_PCT;
16e56d25 1123 td->o.ss_limit.u.f = val;
c8caba48 1124 } else if (td->o.ss_state & FIO_SS_IOPS) {
16e56d25
VF
1125 if (!str_to_float(nr, &val, 0)) {
1126 log_err("fio: steadystate IOPS threshold postfix parsing failed\n");
1127 free(nr);
1128 return 1;
1129 }
1130
1131 dprint(FD_PARSE, "set steady state IOPS threshold to %f\n", val);
1132 free(nr);
1133 if (parse_dryrun())
1134 return 0;
1135
16e56d25 1136 td->o.ss_limit.u.f = val;
16e56d25
VF
1137 } else { /* bandwidth criterion */
1138 if (str_to_decimal(nr, &ll, 1, td, 0, 0)) {
1139 log_err("fio: steadystate BW threshold postfix parsing failed\n");
1140 free(nr);
1141 return 1;
1142 }
1143
1144 dprint(FD_PARSE, "set steady state BW threshold to %lld\n", ll);
1145 free(nr);
1146 if (parse_dryrun())
1147 return 0;
1148
16e56d25 1149 td->o.ss_limit.u.f = (double) ll;
16e56d25
VF
1150 }
1151
2c5d94bc 1152 td->ss.state = td->o.ss_state;
16e56d25
VF
1153 return 0;
1154}
1155
8e827d35 1156/*
bcbfeefa 1157 * Return next name in the string. Files are separated with ':'. If the ':'
8e827d35
JA
1158 * is escaped with a '\', then that ':' is part of the filename and does not
1159 * indicate a new file.
1160 */
532eda7e 1161char *get_next_str(char **ptr)
8e827d35
JA
1162{
1163 char *str = *ptr;
1164 char *p, *start;
1165
1166 if (!str || !strlen(str))
1167 return NULL;
1168
1169 start = str;
1170 do {
1171 /*
1172 * No colon, we are done
1173 */
1174 p = strchr(str, ':');
1175 if (!p) {
1176 *ptr = NULL;
1177 break;
1178 }
1179
1180 /*
1181 * We got a colon, but it's the first character. Skip and
1182 * continue
1183 */
1184 if (p == start) {
1185 str = ++start;
1186 continue;
1187 }
1188
1189 if (*(p - 1) != '\\') {
1190 *p = '\0';
1191 *ptr = p + 1;
1192 break;
1193 }
1194
1195 memmove(p - 1, p, strlen(p) + 1);
1196 str = p;
1197 } while (1);
1198
1199 return start;
1200}
1201
bcbfeefa 1202
532eda7e 1203int get_max_str_idx(char *input)
bcbfeefa
CE
1204{
1205 unsigned int cur_idx;
1206 char *str, *p;
1207
1208 p = str = strdup(input);
1209 for (cur_idx = 0; ; cur_idx++)
532eda7e 1210 if (get_next_str(&str) == NULL)
bcbfeefa
CE
1211 break;
1212
1213 free(p);
1214 return cur_idx;
1215}
1216
1217/*
1218 * Returns the directory at the index, indexes > entires will be
1219 * assigned via modulo division of the index
1220 */
922a5be8
JA
1221int set_name_idx(char *target, size_t tlen, char *input, int index,
1222 bool unique_filename)
bcbfeefa
CE
1223{
1224 unsigned int cur_idx;
1225 int len;
1226 char *fname, *str, *p;
1227
1228 p = str = strdup(input);
1229
532eda7e 1230 index %= get_max_str_idx(input);
bcbfeefa 1231 for (cur_idx = 0; cur_idx <= index; cur_idx++)
532eda7e 1232 fname = get_next_str(&str);
bcbfeefa 1233
922a5be8 1234 if (client_sockaddr_str[0] && unique_filename) {
e13c3b50
JA
1235 len = snprintf(target, tlen, "%s/%s.", fname,
1236 client_sockaddr_str);
1237 } else
df18600f
SW
1238 len = snprintf(target, tlen, "%s%c", fname,
1239 FIO_OS_PATH_SEPARATOR);
72a703da 1240
e13c3b50 1241 target[tlen - 1] = '\0';
bcbfeefa
CE
1242 free(p);
1243
1244 return len;
1245}
1246
c70c7f58
AK
1247char* get_name_by_idx(char *input, int index)
1248{
1249 unsigned int cur_idx;
1250 char *fname, *str, *p;
1251
1252 p = str = strdup(input);
1253
532eda7e 1254 index %= get_max_str_idx(input);
c70c7f58 1255 for (cur_idx = 0; cur_idx <= index; cur_idx++)
532eda7e 1256 fname = get_next_str(&str);
c70c7f58
AK
1257
1258 fname = strdup(fname);
1259 free(p);
1260
1261 return fname;
1262}
1263
214e1eca
JA
1264static int str_filename_cb(void *data, const char *input)
1265{
a609f12a 1266 struct thread_data *td = cb_data_to_td(data);
214e1eca
JA
1267 char *fname, *str, *p;
1268
1269 p = str = strdup(input);
1270
1271 strip_blank_front(&str);
1272 strip_blank_end(str);
1273
79591fa9
TK
1274 /*
1275 * Ignore what we may already have from nrfiles option.
1276 */
214e1eca 1277 if (!td->files_index)
2dc1bbeb 1278 td->o.nr_files = 0;
214e1eca 1279
532eda7e 1280 while ((fname = get_next_str(&str)) != NULL) {
214e1eca
JA
1281 if (!strlen(fname))
1282 break;
5903e7b7 1283 add_file(td, fname, 0, 1);
214e1eca
JA
1284 }
1285
1286 free(p);
1287 return 0;
1288}
1289
bcbfeefa 1290static int str_directory_cb(void *data, const char fio_unused *unused)
214e1eca 1291{
a609f12a 1292 struct thread_data *td = cb_data_to_td(data);
214e1eca 1293 struct stat sb;
bcbfeefa
CE
1294 char *dirname, *str, *p;
1295 int ret = 0;
214e1eca 1296
f9633d72
JA
1297 if (parse_dryrun())
1298 return 0;
1299
bcbfeefa 1300 p = str = strdup(td->o.directory);
532eda7e 1301 while ((dirname = get_next_str(&str)) != NULL) {
bcbfeefa
CE
1302 if (lstat(dirname, &sb) < 0) {
1303 ret = errno;
921c766f 1304
bcbfeefa
CE
1305 log_err("fio: %s is not a directory\n", dirname);
1306 td_verror(td, ret, "lstat");
1307 goto out;
1308 }
1309 if (!S_ISDIR(sb.st_mode)) {
1310 log_err("fio: %s is not a directory\n", dirname);
1311 ret = 1;
1312 goto out;
1313 }
214e1eca
JA
1314 }
1315
bcbfeefa
CE
1316out:
1317 free(p);
1318 return ret;
214e1eca
JA
1319}
1320
1321static int str_opendir_cb(void *data, const char fio_unused *str)
1322{
a609f12a 1323 struct thread_data *td = cb_data_to_td(data);
214e1eca 1324
52c0cea3
JA
1325 if (parse_dryrun())
1326 return 0;
1327
214e1eca 1328 if (!td->files_index)
2dc1bbeb 1329 td->o.nr_files = 0;
214e1eca 1330
2dc1bbeb 1331 return add_dir_files(td, td->o.opendir);
214e1eca
JA
1332}
1333
ce35b1ec
JA
1334static int str_buffer_pattern_cb(void *data, const char *input)
1335{
a609f12a 1336 struct thread_data *td = cb_data_to_td(data);
ce35b1ec
JA
1337 int ret;
1338
61b9861d
RP
1339 /* FIXME: for now buffer pattern does not support formats */
1340 ret = parse_and_fill_pattern(input, strlen(input), td->o.buffer_pattern,
1341 MAX_PATTERN_SIZE, NULL, 0, NULL, NULL);
1342 if (ret < 0)
1343 return 1;
ce35b1ec 1344
61b9861d
RP
1345 assert(ret != 0);
1346 td->o.buffer_pattern_bytes = ret;
c55fae03
JA
1347
1348 /*
1349 * If this job is doing any reading or has compression set,
1350 * ensure that we refill buffers for writes or we could be
1351 * invalidating the pattern through reads.
1352 */
1353 if (!td->o.compress_percentage && !td_read(td))
61b9861d 1354 td->o.refill_buffers = 0;
c55fae03
JA
1355 else
1356 td->o.refill_buffers = 1;
1357
61b9861d
RP
1358 td->o.scramble_buffers = 0;
1359 td->o.zero_buffers = 0;
efcd9dcc 1360
61b9861d 1361 return 0;
ce35b1ec
JA
1362}
1363
bedc9dc2
JA
1364static int str_buffer_compress_cb(void *data, unsigned long long *il)
1365{
a609f12a 1366 struct thread_data *td = cb_data_to_td(data);
bedc9dc2
JA
1367
1368 td->flags |= TD_F_COMPRESS;
1369 td->o.compress_percentage = *il;
1370 return 0;
1371}
1372
5c94b008
JA
1373static int str_dedupe_cb(void *data, unsigned long long *il)
1374{
a609f12a 1375 struct thread_data *td = cb_data_to_td(data);
5c94b008
JA
1376
1377 td->flags |= TD_F_COMPRESS;
1378 td->o.dedupe_percentage = *il;
1379 td->o.refill_buffers = 1;
1380 return 0;
1381}
1382
ce35b1ec
JA
1383static int str_verify_pattern_cb(void *data, const char *input)
1384{
a609f12a 1385 struct thread_data *td = cb_data_to_td(data);
ce35b1ec
JA
1386 int ret;
1387
61b9861d
RP
1388 td->o.verify_fmt_sz = ARRAY_SIZE(td->o.verify_fmt);
1389 ret = parse_and_fill_pattern(input, strlen(input), td->o.verify_pattern,
4205998f
JA
1390 MAX_PATTERN_SIZE, fmt_desc, sizeof(fmt_desc),
1391 td->o.verify_fmt, &td->o.verify_fmt_sz);
61b9861d
RP
1392 if (ret < 0)
1393 return 1;
efcd9dcc 1394
61b9861d
RP
1395 assert(ret != 0);
1396 td->o.verify_pattern_bytes = ret;
92bf48d5 1397 /*
b638d82f 1398 * VERIFY_* could already be set
92bf48d5 1399 */
61b9861d 1400 if (!fio_option_is_set(&td->o, verify))
92bf48d5 1401 td->o.verify = VERIFY_PATTERN;
efcd9dcc 1402
61b9861d 1403 return 0;
90059d65 1404}
214e1eca 1405
993bf48b
JA
1406static int str_gtod_reduce_cb(void *data, int *il)
1407{
a609f12a 1408 struct thread_data *td = cb_data_to_td(data);
993bf48b
JA
1409 int val = *il;
1410
56440e63
VF
1411 /*
1412 * Only modfiy options if gtod_reduce==1
1413 * Otherwise leave settings alone.
1414 */
1415 if (val) {
1416 td->o.disable_lat = 1;
1417 td->o.disable_clat = 1;
1418 td->o.disable_slat = 1;
1419 td->o.disable_bw = 1;
1420 td->o.clat_percentiles = 0;
1421 td->o.lat_percentiles = 0;
1422 td->o.slat_percentiles = 0;
8b6a404c 1423 td->ts_cache_mask = 63;
56440e63 1424 }
993bf48b
JA
1425
1426 return 0;
1427}
1428
89978a6b
BW
1429static int str_offset_cb(void *data, unsigned long long *__val)
1430{
1431 struct thread_data *td = cb_data_to_td(data);
1432 unsigned long long v = *__val;
1433
1434 if (parse_is_percent(v)) {
1435 td->o.start_offset = 0;
1436 td->o.start_offset_percent = -1ULL - v;
872e0415
JA
1437 dprint(FD_PARSE, "SET start_offset_percent %d\n",
1438 td->o.start_offset_percent);
89978a6b
BW
1439 } else
1440 td->o.start_offset = v;
1441
1442 return 0;
1443}
1444
0b288ba1
VF
1445static int str_offset_increment_cb(void *data, unsigned long long *__val)
1446{
1447 struct thread_data *td = cb_data_to_td(data);
1448 unsigned long long v = *__val;
1449
1450 if (parse_is_percent(v)) {
1451 td->o.offset_increment = 0;
1452 td->o.offset_increment_percent = -1ULL - v;
1453 dprint(FD_PARSE, "SET offset_increment_percent %d\n",
1454 td->o.offset_increment_percent);
1455 } else
1456 td->o.offset_increment = v;
1457
1458 return 0;
1459}
1460
7bb59102
JA
1461static int str_size_cb(void *data, unsigned long long *__val)
1462{
a609f12a 1463 struct thread_data *td = cb_data_to_td(data);
7bb59102
JA
1464 unsigned long long v = *__val;
1465
1466 if (parse_is_percent(v)) {
1467 td->o.size = 0;
1468 td->o.size_percent = -1ULL - v;
24e4321c
TK
1469 dprint(FD_PARSE, "SET size_percent %d\n",
1470 td->o.size_percent);
7bb59102
JA
1471 } else
1472 td->o.size = v;
1473
1474 return 0;
1475}
1476
dded427c
OS
1477static int str_write_bw_log_cb(void *data, const char *str)
1478{
1479 struct thread_data *td = cb_data_to_td(data);
1480
1481 if (str)
1482 td->o.bw_log_file = strdup(str);
1483
1484 td->o.write_bw_log = 1;
1485 return 0;
1486}
1487
1488static int str_write_lat_log_cb(void *data, const char *str)
1489{
1490 struct thread_data *td = cb_data_to_td(data);
1491
1492 if (str)
1493 td->o.lat_log_file = strdup(str);
1494
1495 td->o.write_lat_log = 1;
1496 return 0;
1497}
1498
1499static int str_write_iops_log_cb(void *data, const char *str)
1500{
1501 struct thread_data *td = cb_data_to_td(data);
1502
1503 if (str)
1504 td->o.iops_log_file = strdup(str);
1505
1506 td->o.write_iops_log = 1;
1507 return 0;
1508}
1509
1510static int str_write_hist_log_cb(void *data, const char *str)
1511{
1512 struct thread_data *td = cb_data_to_td(data);
1513
1514 if (str)
1515 td->o.hist_log_file = strdup(str);
1516
1517 td->o.write_hist_log = 1;
1518 return 0;
1519}
1520
6730b40f
TK
1521/*
1522 * str is supposed to be a substring of the strdup'd original string,
1523 * and is valid only if it's a regular file path.
1524 * This function keeps the pointer to the path as needed later.
1525 *
1526 * "external:/path/to/so\0" <- original pointer updated with strdup'd
1527 * "external\0" <- above pointer after parsed, i.e. ->ioengine
1528 * "/path/to/so\0" <- str argument, i.e. ->ioengine_so_path
1529 */
1530static int str_ioengine_external_cb(void *data, const char *str)
1531{
1532 struct thread_data *td = cb_data_to_td(data);
1533 struct stat sb;
1534 char *p;
1535
1536 if (!str) {
1537 log_err("fio: null external ioengine path\n");
1538 return 1;
1539 }
1540
1541 p = (char *)str; /* str is mutable */
1542 strip_blank_front(&p);
1543 strip_blank_end(p);
1544
1545 if (stat(p, &sb) || !S_ISREG(sb.st_mode)) {
1546 log_err("fio: invalid external ioengine path \"%s\"\n", p);
1547 return 1;
1548 }
1549
1550 td->o.ioengine_so_path = p;
1551 return 0;
1552}
1553
9109883a 1554static int rw_verify(const struct fio_option *o, void *data)
896cac2a 1555{
a609f12a 1556 struct thread_data *td = cb_data_to_td(data);
896cac2a 1557
d81d0f99
VF
1558 if (read_only && (td_write(td) || td_trim(td))) {
1559 log_err("fio: job <%s> has write or trim bit set, but"
1560 " fio is in read-only mode\n", td->o.name);
896cac2a
JA
1561 return 1;
1562 }
1563
1564 return 0;
1565}
1566
9109883a 1567static int gtod_cpu_verify(const struct fio_option *o, void *data)
29d43ff9 1568{
276ca4f7 1569#ifndef FIO_HAVE_CPU_AFFINITY
a609f12a 1570 struct thread_data *td = cb_data_to_td(data);
29d43ff9 1571
29d43ff9
JA
1572 if (td->o.gtod_cpu) {
1573 log_err("fio: platform must support CPU affinity for"
1574 "gettimeofday() offloading\n");
1575 return 1;
1576 }
1577#endif
1578
1579 return 0;
1580}
1581
214e1eca
JA
1582/*
1583 * Map of job/command line options
1584 */
9af4a244 1585struct fio_option fio_options[FIO_MAX_OPTS] = {
214e1eca
JA
1586 {
1587 .name = "description",
e8b0e958 1588 .lname = "Description of job",
214e1eca 1589 .type = FIO_OPT_STR_STORE,
a609f12a 1590 .off1 = offsetof(struct thread_options, description),
214e1eca 1591 .help = "Text job description",
e8b0e958 1592 .category = FIO_OPT_C_GENERAL,
0626037e 1593 .group = FIO_OPT_G_DESC,
214e1eca
JA
1594 },
1595 {
1596 .name = "name",
e8b0e958 1597 .lname = "Job name",
214e1eca 1598 .type = FIO_OPT_STR_STORE,
a609f12a 1599 .off1 = offsetof(struct thread_options, name),
214e1eca 1600 .help = "Name of this job",
e8b0e958 1601 .category = FIO_OPT_C_GENERAL,
0626037e 1602 .group = FIO_OPT_G_DESC,
214e1eca 1603 },
9cc8cb91
AK
1604 {
1605 .name = "wait_for",
1606 .lname = "Waitee name",
1607 .type = FIO_OPT_STR_STORE,
a609f12a 1608 .off1 = offsetof(struct thread_options, wait_for),
9cc8cb91
AK
1609 .help = "Name of the job this one wants to wait for before starting",
1610 .category = FIO_OPT_C_GENERAL,
1611 .group = FIO_OPT_G_DESC,
1612 },
214e1eca
JA
1613 {
1614 .name = "filename",
e8b0e958 1615 .lname = "Filename(s)",
214e1eca 1616 .type = FIO_OPT_STR_STORE,
a609f12a 1617 .off1 = offsetof(struct thread_options, filename),
214e1eca 1618 .cb = str_filename_cb,
f0d524b0 1619 .prio = -1, /* must come after "directory" */
214e1eca 1620 .help = "File(s) to use for the workload",
e8b0e958 1621 .category = FIO_OPT_C_FILE,
0626037e 1622 .group = FIO_OPT_G_FILENAME,
214e1eca 1623 },
90fef2d1 1624 {
e8b0e958
JA
1625 .name = "directory",
1626 .lname = "Directory",
1627 .type = FIO_OPT_STR_STORE,
a609f12a 1628 .off1 = offsetof(struct thread_options, directory),
e8b0e958
JA
1629 .cb = str_directory_cb,
1630 .help = "Directory to store files in",
1631 .category = FIO_OPT_C_FILE,
0626037e 1632 .group = FIO_OPT_G_FILENAME,
90fef2d1 1633 },
de98bd30
JA
1634 {
1635 .name = "filename_format",
922a5be8 1636 .lname = "Filename Format",
de98bd30 1637 .type = FIO_OPT_STR_STORE,
a609f12a 1638 .off1 = offsetof(struct thread_options, filename_format),
de98bd30
JA
1639 .prio = -1, /* must come after "directory" */
1640 .help = "Override default $jobname.$jobnum.$filenum naming",
1641 .def = "$jobname.$jobnum.$filenum",
93bb626a
JA
1642 .category = FIO_OPT_C_FILE,
1643 .group = FIO_OPT_G_FILENAME,
ad705bcb 1644 },
922a5be8
JA
1645 {
1646 .name = "unique_filename",
1647 .lname = "Unique Filename",
1648 .type = FIO_OPT_BOOL,
a609f12a 1649 .off1 = offsetof(struct thread_options, unique_filename),
922a5be8
JA
1650 .help = "For network clients, prefix file with source IP",
1651 .def = "1",
1652 .category = FIO_OPT_C_FILE,
1653 .group = FIO_OPT_G_FILENAME,
1654 },
29c1349f
JA
1655 {
1656 .name = "lockfile",
e8b0e958 1657 .lname = "Lockfile",
4d4e80f2 1658 .type = FIO_OPT_STR,
a609f12a 1659 .off1 = offsetof(struct thread_options, file_lock_mode),
29c1349f 1660 .help = "Lock file when doing IO to it",
bc6a0a5d 1661 .prio = 1,
29c1349f 1662 .parent = "filename",
d71c154c 1663 .hide = 0,
4d4e80f2 1664 .def = "none",
e8b0e958 1665 .category = FIO_OPT_C_FILE,
0626037e 1666 .group = FIO_OPT_G_FILENAME,
4d4e80f2
JA
1667 .posval = {
1668 { .ival = "none",
1669 .oval = FILE_LOCK_NONE,
1670 .help = "No file locking",
1671 },
1672 { .ival = "exclusive",
1673 .oval = FILE_LOCK_EXCLUSIVE,
1674 .help = "Exclusive file lock",
1675 },
1676 {
1677 .ival = "readwrite",
1678 .oval = FILE_LOCK_READWRITE,
1679 .help = "Read vs write lock",
1680 },
1681 },
29c1349f 1682 },
214e1eca
JA
1683 {
1684 .name = "opendir",
e8b0e958 1685 .lname = "Open directory",
214e1eca 1686 .type = FIO_OPT_STR_STORE,
a609f12a 1687 .off1 = offsetof(struct thread_options, opendir),
214e1eca
JA
1688 .cb = str_opendir_cb,
1689 .help = "Recursively add files from this directory and down",
e8b0e958 1690 .category = FIO_OPT_C_FILE,
0626037e 1691 .group = FIO_OPT_G_FILENAME,
214e1eca
JA
1692 },
1693 {
1694 .name = "rw",
e8b0e958 1695 .lname = "Read/write",
d3aad8f2 1696 .alias = "readwrite",
214e1eca 1697 .type = FIO_OPT_STR,
211097b2 1698 .cb = str_rw_cb,
a609f12a 1699 .off1 = offsetof(struct thread_options, td_ddir),
214e1eca
JA
1700 .help = "IO direction",
1701 .def = "read",
896cac2a 1702 .verify = rw_verify,
e8b0e958 1703 .category = FIO_OPT_C_IO,
0626037e 1704 .group = FIO_OPT_G_IO_BASIC,
214e1eca
JA
1705 .posval = {
1706 { .ival = "read",
1707 .oval = TD_DDIR_READ,
1708 .help = "Sequential read",
1709 },
1710 { .ival = "write",
1711 .oval = TD_DDIR_WRITE,
1712 .help = "Sequential write",
1713 },
6eaf09d6
SL
1714 { .ival = "trim",
1715 .oval = TD_DDIR_TRIM,
1716 .help = "Sequential trim",
1717 },
214e1eca
JA
1718 { .ival = "randread",
1719 .oval = TD_DDIR_RANDREAD,
1720 .help = "Random read",
1721 },
1722 { .ival = "randwrite",
1723 .oval = TD_DDIR_RANDWRITE,
1724 .help = "Random write",
1725 },
6eaf09d6
SL
1726 { .ival = "randtrim",
1727 .oval = TD_DDIR_RANDTRIM,
1728 .help = "Random trim",
1729 },
214e1eca
JA
1730 { .ival = "rw",
1731 .oval = TD_DDIR_RW,
1732 .help = "Sequential read and write mix",
1733 },
10b023db
JA
1734 { .ival = "readwrite",
1735 .oval = TD_DDIR_RW,
1736 .help = "Sequential read and write mix",
1737 },
214e1eca
JA
1738 { .ival = "randrw",
1739 .oval = TD_DDIR_RANDRW,
1740 .help = "Random read and write mix"
1741 },
82a90686
JA
1742 { .ival = "trimwrite",
1743 .oval = TD_DDIR_TRIMWRITE,
1744 .help = "Trim and write mix, trims preceding writes"
0e4dd95c 1745 },
214e1eca
JA
1746 },
1747 },
38dad62d
JA
1748 {
1749 .name = "rw_sequencer",
e8b0e958 1750 .lname = "RW Sequencer",
38dad62d 1751 .type = FIO_OPT_STR,
a609f12a 1752 .off1 = offsetof(struct thread_options, rw_seq),
38dad62d
JA
1753 .help = "IO offset generator modifier",
1754 .def = "sequential",
e8b0e958 1755 .category = FIO_OPT_C_IO,
0626037e 1756 .group = FIO_OPT_G_IO_BASIC,
38dad62d
JA
1757 .posval = {
1758 { .ival = "sequential",
1759 .oval = RW_SEQ_SEQ,
1760 .help = "Generate sequential offsets",
1761 },
1762 { .ival = "identical",
1763 .oval = RW_SEQ_IDENT,
1764 .help = "Generate identical offsets",
1765 },
1766 },
1767 },
1768
214e1eca
JA
1769 {
1770 .name = "ioengine",
e8b0e958 1771 .lname = "IO Engine",
214e1eca 1772 .type = FIO_OPT_STR_STORE,
a609f12a 1773 .off1 = offsetof(struct thread_options, ioengine),
214e1eca 1774 .help = "IO engine to use",
58483fa4 1775 .def = FIO_PREFERRED_ENGINE,
e8b0e958 1776 .category = FIO_OPT_C_IO,
0626037e 1777 .group = FIO_OPT_G_IO_BASIC,
214e1eca
JA
1778 .posval = {
1779 { .ival = "sync",
1780 .help = "Use read/write",
1781 },
a31041ea 1782 { .ival = "psync",
1783 .help = "Use pread/pwrite",
1784 },
1d2af02a 1785 { .ival = "vsync",
03e20d68 1786 .help = "Use readv/writev",
1d2af02a 1787 },
07fc0acd
JA
1788#ifdef CONFIG_PWRITEV
1789 { .ival = "pvsync",
1790 .help = "Use preadv/pwritev",
1791 },
1792#endif
6562685f 1793#ifdef FIO_HAVE_PWRITEV2
2cafffbe
JA
1794 { .ival = "pvsync2",
1795 .help = "Use preadv2/pwritev2",
1796 },
1797#endif
67bf9823 1798#ifdef CONFIG_LIBAIO
214e1eca
JA
1799 { .ival = "libaio",
1800 .help = "Linux native asynchronous IO",
1801 },
1802#endif
bffad86f
JA
1803#ifdef ARCH_HAVE_IOURING
1804 { .ival = "io_uring",
1805 .help = "Fast Linux native aio",
52885fa2
JA
1806 },
1807#endif
67bf9823 1808#ifdef CONFIG_POSIXAIO
214e1eca
JA
1809 { .ival = "posixaio",
1810 .help = "POSIX asynchronous IO",
1811 },
417f0068 1812#endif
997843cb 1813#ifdef CONFIG_SOLARISAIO
417f0068
JA
1814 { .ival = "solarisaio",
1815 .help = "Solaris native asynchronous IO",
1816 },
214e1eca 1817#endif
4700b234 1818#ifdef CONFIG_WINDOWSAIO
03e20d68 1819 { .ival = "windowsaio",
3be80071 1820 .help = "Windows native asynchronous IO"
de890a1e 1821 },
fc5c0345
DG
1822#endif
1823#ifdef CONFIG_RBD
1824 { .ival = "rbd",
1825 .help = "Rados Block Device asynchronous IO"
1826 },
3be80071 1827#endif
214e1eca 1828 { .ival = "mmap",
03e20d68 1829 .help = "Memory mapped IO"
214e1eca 1830 },
67bf9823 1831#ifdef CONFIG_LINUX_SPLICE
214e1eca
JA
1832 { .ival = "splice",
1833 .help = "splice/vmsplice based IO",
1834 },
9cce02e8
JA
1835 { .ival = "netsplice",
1836 .help = "splice/vmsplice to/from the network",
1837 },
214e1eca
JA
1838#endif
1839#ifdef FIO_HAVE_SGIO
1840 { .ival = "sg",
1841 .help = "SCSI generic v3 IO",
1842 },
1843#endif
1844 { .ival = "null",
1845 .help = "Testing engine (no data transfer)",
1846 },
1847 { .ival = "net",
1848 .help = "Network IO",
1849 },
214e1eca 1850 { .ival = "cpuio",
03e20d68 1851 .help = "CPU cycle burner engine",
214e1eca 1852 },
67bf9823 1853#ifdef CONFIG_GUASI
b8c82a46
JA
1854 { .ival = "guasi",
1855 .help = "GUASI IO engine",
1856 },
79a43187 1857#endif
67bf9823 1858#ifdef CONFIG_RDMA
21b8aee8 1859 { .ival = "rdma",
1860 .help = "RDMA IO engine",
1861 },
8200b8c7 1862#endif
997843cb 1863#ifdef CONFIG_LINUX_EXT4_MOVE_EXTENT
1ecc95ca
JA
1864 { .ival = "e4defrag",
1865 .help = "ext4 defrag engine",
1866 },
1867#endif
997843cb 1868#ifdef CONFIG_LINUX_FALLOCATE
1ecc95ca
JA
1869 { .ival = "falloc",
1870 .help = "fallocate() file based engine",
1871 },
b8c82a46 1872#endif
a7c386f4 1873#ifdef CONFIG_GFAPI
1874 { .ival = "gfapi",
cc47f094 1875 .help = "Glusterfs libgfapi(sync) based engine"
1876 },
1877 { .ival = "gfapi_async",
1878 .help = "Glusterfs libgfapi(async) based engine"
a7c386f4 1879 },
1880#endif
1b10477b 1881#ifdef CONFIG_LIBHDFS
b74e419e 1882 { .ival = "libhdfs",
1b10477b
MM
1883 .help = "Hadoop Distributed Filesystem (HDFS) engine"
1884 },
5c4ef02e
JA
1885#endif
1886#ifdef CONFIG_PMEMBLK
1887 { .ival = "pmemblk",
363a5f65 1888 .help = "PMDK libpmemblk based IO engine",
5c4ef02e
JA
1889 },
1890
104ee4de 1891#endif
a40e7a59
GB
1892#ifdef CONFIG_IME
1893 { .ival = "ime_psync",
1894 .help = "DDN's IME synchronous IO engine",
1895 },
1896 { .ival = "ime_psyncv",
1897 .help = "DDN's IME synchronous IO engine using iovecs",
1898 },
1899 { .ival = "ime_aio",
1900 .help = "DDN's IME asynchronous IO engine",
1901 },
1902#endif
104ee4de
DJ
1903#ifdef CONFIG_LINUX_DEVDAX
1904 { .ival = "dev-dax",
1905 .help = "DAX Device based IO engine",
1906 },
1b10477b 1907#endif
edc5fa12
JA
1908 {
1909 .ival = "filecreate",
1910 .help = "File creation engine",
1911 },
214e1eca
JA
1912 { .ival = "external",
1913 .help = "Load external engine (append name)",
6730b40f 1914 .cb = str_ioengine_external_cb,
214e1eca 1915 },
ae0db592
TI
1916#ifdef CONFIG_LIBPMEM
1917 { .ival = "libpmem",
363a5f65 1918 .help = "PMDK libpmem based IO engine",
ae0db592 1919 },
c2f6a13d
LMB
1920#endif
1921#ifdef CONFIG_HTTP
1922 { .ival = "http",
1923 .help = "HTTP (WebDAV/S3) IO engine",
1924 },
ae0db592 1925#endif
d643a1e2
RJ
1926 { .ival = "nbd",
1927 .help = "Network Block Device (NBD) IO engine"
1928 },
214e1eca
JA
1929 },
1930 },
1931 {
1932 .name = "iodepth",
e8b0e958 1933 .lname = "IO Depth",
214e1eca 1934 .type = FIO_OPT_INT,
a609f12a 1935 .off1 = offsetof(struct thread_options, iodepth),
03e20d68 1936 .help = "Number of IO buffers to keep in flight",
757aff4f 1937 .minval = 1,
20eb06bd 1938 .interval = 1,
214e1eca 1939 .def = "1",
e8b0e958 1940 .category = FIO_OPT_C_IO,
0626037e 1941 .group = FIO_OPT_G_IO_BASIC,
214e1eca
JA
1942 },
1943 {
1944 .name = "iodepth_batch",
e8b0e958 1945 .lname = "IO Depth batch",
4950421a 1946 .alias = "iodepth_batch_submit",
214e1eca 1947 .type = FIO_OPT_INT,
a609f12a 1948 .off1 = offsetof(struct thread_options, iodepth_batch),
d65db441 1949 .help = "Number of IO buffers to submit in one go",
afdf9352 1950 .parent = "iodepth",
d71c154c 1951 .hide = 1,
20eb06bd 1952 .interval = 1,
a2e6f8ac 1953 .def = "1",
e8b0e958 1954 .category = FIO_OPT_C_IO,
0626037e 1955 .group = FIO_OPT_G_IO_BASIC,
4950421a
JA
1956 },
1957 {
82407585
RP
1958 .name = "iodepth_batch_complete_min",
1959 .lname = "Min IO depth batch complete",
1960 .alias = "iodepth_batch_complete",
4950421a 1961 .type = FIO_OPT_INT,
a609f12a 1962 .off1 = offsetof(struct thread_options, iodepth_batch_complete_min),
82407585 1963 .help = "Min number of IO buffers to retrieve in one go",
4950421a 1964 .parent = "iodepth",
d71c154c 1965 .hide = 1,
4950421a 1966 .minval = 0,
20eb06bd 1967 .interval = 1,
4950421a 1968 .def = "1",
e8b0e958 1969 .category = FIO_OPT_C_IO,
0626037e 1970 .group = FIO_OPT_G_IO_BASIC,
214e1eca 1971 },
82407585
RP
1972 {
1973 .name = "iodepth_batch_complete_max",
1974 .lname = "Max IO depth batch complete",
1975 .type = FIO_OPT_INT,
a609f12a 1976 .off1 = offsetof(struct thread_options, iodepth_batch_complete_max),
82407585
RP
1977 .help = "Max number of IO buffers to retrieve in one go",
1978 .parent = "iodepth",
1979 .hide = 1,
1980 .minval = 0,
1981 .interval = 1,
1982 .category = FIO_OPT_C_IO,
1983 .group = FIO_OPT_G_IO_BASIC,
1984 },
214e1eca
JA
1985 {
1986 .name = "iodepth_low",
e8b0e958 1987 .lname = "IO Depth batch low",
214e1eca 1988 .type = FIO_OPT_INT,
a609f12a 1989 .off1 = offsetof(struct thread_options, iodepth_low),
214e1eca 1990 .help = "Low water mark for queuing depth",
afdf9352 1991 .parent = "iodepth",
d71c154c 1992 .hide = 1,
20eb06bd 1993 .interval = 1,
e8b0e958 1994 .category = FIO_OPT_C_IO,
0626037e 1995 .group = FIO_OPT_G_IO_BASIC,
214e1eca 1996 },
997b5680
SW
1997 {
1998 .name = "serialize_overlap",
1999 .lname = "Serialize overlap",
2000 .off1 = offsetof(struct thread_options, serialize_overlap),
2001 .type = FIO_OPT_BOOL,
2002 .help = "Wait for in-flight IOs that collide to complete",
2003 .parent = "iodepth",
2004 .def = "0",
2005 .category = FIO_OPT_C_IO,
2006 .group = FIO_OPT_G_IO_BASIC,
2007 },
a9da8ab2
JA
2008 {
2009 .name = "io_submit_mode",
2010 .lname = "IO submit mode",
2011 .type = FIO_OPT_STR,
a609f12a 2012 .off1 = offsetof(struct thread_options, io_submit_mode),
a9da8ab2
JA
2013 .help = "How IO submissions and completions are done",
2014 .def = "inline",
2015 .category = FIO_OPT_C_IO,
2016 .group = FIO_OPT_G_IO_BASIC,
2017 .posval = {
2018 { .ival = "inline",
2019 .oval = IO_MODE_INLINE,
2020 .help = "Submit and complete IO inline",
2021 },
2022 { .ival = "offload",
2023 .oval = IO_MODE_OFFLOAD,
2024 .help = "Offload submit and complete to threads",
2025 },
2026 },
2027 },
214e1eca
JA
2028 {
2029 .name = "size",
e8b0e958 2030 .lname = "Size",
214e1eca 2031 .type = FIO_OPT_STR_VAL,
7bb59102 2032 .cb = str_size_cb,
a609f12a 2033 .off1 = offsetof(struct thread_options, size),
214e1eca 2034 .help = "Total size of device or files",
20eb06bd 2035 .interval = 1024 * 1024,
e8b0e958
JA
2036 .category = FIO_OPT_C_IO,
2037 .group = FIO_OPT_G_INVALID,
214e1eca 2038 },
77731b29 2039 {
a4d3b4db
JA
2040 .name = "io_size",
2041 .alias = "io_limit",
2042 .lname = "IO Size",
77731b29 2043 .type = FIO_OPT_STR_VAL,
5be9bf09 2044 .off1 = offsetof(struct thread_options, io_size),
1684f7fd 2045 .help = "Total size of I/O to be performed",
77731b29
JA
2046 .interval = 1024 * 1024,
2047 .category = FIO_OPT_C_IO,
2048 .group = FIO_OPT_G_INVALID,
2049 },
aa31f1f1
SL
2050 {
2051 .name = "fill_device",
e8b0e958 2052 .lname = "Fill device",
74586c1e 2053 .alias = "fill_fs",
aa31f1f1 2054 .type = FIO_OPT_BOOL,
a609f12a 2055 .off1 = offsetof(struct thread_options, fill_device),
aa31f1f1
SL
2056 .help = "Write until an ENOSPC error occurs",
2057 .def = "0",
e8b0e958
JA
2058 .category = FIO_OPT_C_FILE,
2059 .group = FIO_OPT_G_INVALID,
aa31f1f1 2060 },
214e1eca
JA
2061 {
2062 .name = "filesize",
e8b0e958 2063 .lname = "File size",
214e1eca 2064 .type = FIO_OPT_STR_VAL,
a609f12a
JA
2065 .off1 = offsetof(struct thread_options, file_size_low),
2066 .off2 = offsetof(struct thread_options, file_size_high),
c3edbdba 2067 .minval = 1,
214e1eca 2068 .help = "Size of individual files",
20eb06bd 2069 .interval = 1024 * 1024,
e8b0e958
JA
2070 .category = FIO_OPT_C_FILE,
2071 .group = FIO_OPT_G_INVALID,
214e1eca 2072 },
bedc9dc2
JA
2073 {
2074 .name = "file_append",
2075 .lname = "File append",
2076 .type = FIO_OPT_BOOL,
a609f12a 2077 .off1 = offsetof(struct thread_options, file_append),
bedc9dc2
JA
2078 .help = "IO will start at the end of the file(s)",
2079 .def = "0",
2080 .category = FIO_OPT_C_FILE,
2081 .group = FIO_OPT_G_INVALID,
2082 },
67a1000f
JA
2083 {
2084 .name = "offset",
e8b0e958 2085 .lname = "IO offset",
67a1000f
JA
2086 .alias = "fileoffset",
2087 .type = FIO_OPT_STR_VAL,
89978a6b 2088 .cb = str_offset_cb,
a609f12a 2089 .off1 = offsetof(struct thread_options, start_offset),
67a1000f
JA
2090 .help = "Start IO from this offset",
2091 .def = "0",
20eb06bd 2092 .interval = 1024 * 1024,
e8b0e958
JA
2093 .category = FIO_OPT_C_IO,
2094 .group = FIO_OPT_G_INVALID,
67a1000f 2095 },
83c8b093
JF
2096 {
2097 .name = "offset_align",
2098 .lname = "IO offset alignment",
2099 .type = FIO_OPT_INT,
2100 .off1 = offsetof(struct thread_options, start_offset_align),
2101 .help = "Start IO from this offset alignment",
2102 .def = "0",
2103 .interval = 512,
2104 .category = FIO_OPT_C_IO,
2105 .group = FIO_OPT_G_INVALID,
2106 },
2d7cd868
JA
2107 {
2108 .name = "offset_increment",
e8b0e958 2109 .lname = "IO offset increment",
2d7cd868 2110 .type = FIO_OPT_STR_VAL,
0b288ba1 2111 .cb = str_offset_increment_cb,
a609f12a 2112 .off1 = offsetof(struct thread_options, offset_increment),
2d7cd868
JA
2113 .help = "What is the increment from one offset to the next",
2114 .parent = "offset",
d71c154c 2115 .hide = 1,
2d7cd868 2116 .def = "0",
20eb06bd 2117 .interval = 1024 * 1024,
e8b0e958
JA
2118 .category = FIO_OPT_C_IO,
2119 .group = FIO_OPT_G_INVALID,
2d7cd868 2120 },
ddf24e42
JA
2121 {
2122 .name = "number_ios",
2123 .lname = "Number of IOs to perform",
2124 .type = FIO_OPT_STR_VAL,
a609f12a 2125 .off1 = offsetof(struct thread_options, number_ios),
be3fec7d 2126 .help = "Force job completion after this number of IOs",
ddf24e42
JA
2127 .def = "0",
2128 .category = FIO_OPT_C_IO,
2129 .group = FIO_OPT_G_INVALID,
2130 },
214e1eca
JA
2131 {
2132 .name = "bs",
e8b0e958 2133 .lname = "Block size",
d3aad8f2 2134 .alias = "blocksize",
5fff9543 2135 .type = FIO_OPT_ULL,
a609f12a
JA
2136 .off1 = offsetof(struct thread_options, bs[DDIR_READ]),
2137 .off2 = offsetof(struct thread_options, bs[DDIR_WRITE]),
2138 .off3 = offsetof(struct thread_options, bs[DDIR_TRIM]),
c3edbdba 2139 .minval = 1,
214e1eca 2140 .help = "Block size unit",
2b9136a3 2141 .def = "4096",
67a1000f 2142 .parent = "rw",
d71c154c 2143 .hide = 1,
20eb06bd 2144 .interval = 512,
e8b0e958
JA
2145 .category = FIO_OPT_C_IO,
2146 .group = FIO_OPT_G_INVALID,
214e1eca 2147 },
2b7a01d0
JA
2148 {
2149 .name = "ba",
e8b0e958 2150 .lname = "Block size align",
2b7a01d0 2151 .alias = "blockalign",
5fff9543 2152 .type = FIO_OPT_ULL,
a609f12a
JA
2153 .off1 = offsetof(struct thread_options, ba[DDIR_READ]),
2154 .off2 = offsetof(struct thread_options, ba[DDIR_WRITE]),
2155 .off3 = offsetof(struct thread_options, ba[DDIR_TRIM]),
2b7a01d0
JA
2156 .minval = 1,
2157 .help = "IO block offset alignment",
2158 .parent = "rw",
d71c154c 2159 .hide = 1,
20eb06bd 2160 .interval = 512,
e8b0e958
JA
2161 .category = FIO_OPT_C_IO,
2162 .group = FIO_OPT_G_INVALID,
2b7a01d0 2163 },
214e1eca
JA
2164 {
2165 .name = "bsrange",
e8b0e958 2166 .lname = "Block size range",
d3aad8f2 2167 .alias = "blocksize_range",
214e1eca 2168 .type = FIO_OPT_RANGE,
a609f12a
JA
2169 .off1 = offsetof(struct thread_options, min_bs[DDIR_READ]),
2170 .off2 = offsetof(struct thread_options, max_bs[DDIR_READ]),
2171 .off3 = offsetof(struct thread_options, min_bs[DDIR_WRITE]),
2172 .off4 = offsetof(struct thread_options, max_bs[DDIR_WRITE]),
2173 .off5 = offsetof(struct thread_options, min_bs[DDIR_TRIM]),
2174 .off6 = offsetof(struct thread_options, max_bs[DDIR_TRIM]),
c3edbdba 2175 .minval = 1,
214e1eca 2176 .help = "Set block size range (in more detail than bs)",
67a1000f 2177 .parent = "rw",
d71c154c 2178 .hide = 1,
20eb06bd 2179 .interval = 4096,
e8b0e958
JA
2180 .category = FIO_OPT_C_IO,
2181 .group = FIO_OPT_G_INVALID,
214e1eca 2182 },
564ca972
JA
2183 {
2184 .name = "bssplit",
e8b0e958 2185 .lname = "Block size split",
5fff9543 2186 .type = FIO_OPT_STR_ULL,
564ca972 2187 .cb = str_bssplit_cb,
a609f12a 2188 .off1 = offsetof(struct thread_options, bssplit),
564ca972
JA
2189 .help = "Set a specific mix of block sizes",
2190 .parent = "rw",
d71c154c 2191 .hide = 1,
e8b0e958
JA
2192 .category = FIO_OPT_C_IO,
2193 .group = FIO_OPT_G_INVALID,
564ca972 2194 },
214e1eca
JA
2195 {
2196 .name = "bs_unaligned",
e8b0e958 2197 .lname = "Block size unaligned",
d3aad8f2 2198 .alias = "blocksize_unaligned",
214e1eca 2199 .type = FIO_OPT_STR_SET,
a609f12a 2200 .off1 = offsetof(struct thread_options, bs_unaligned),
214e1eca 2201 .help = "Don't sector align IO buffer sizes",
67a1000f 2202 .parent = "rw",
d71c154c 2203 .hide = 1,
e8b0e958
JA
2204 .category = FIO_OPT_C_IO,
2205 .group = FIO_OPT_G_INVALID,
214e1eca 2206 },
6aca9b3d
JA
2207 {
2208 .name = "bs_is_seq_rand",
2209 .lname = "Block size division is seq/random (not read/write)",
2210 .type = FIO_OPT_BOOL,
a609f12a 2211 .off1 = offsetof(struct thread_options, bs_is_seq_rand),
86d59660 2212 .help = "Consider any blocksize setting to be sequential,random",
6aca9b3d
JA
2213 .def = "0",
2214 .parent = "blocksize",
2215 .category = FIO_OPT_C_IO,
2216 .group = FIO_OPT_G_INVALID,
2217 },
214e1eca
JA
2218 {
2219 .name = "randrepeat",
e8b0e958 2220 .lname = "Random repeatable",
214e1eca 2221 .type = FIO_OPT_BOOL,
a609f12a 2222 .off1 = offsetof(struct thread_options, rand_repeatable),
214e1eca
JA
2223 .help = "Use repeatable random IO pattern",
2224 .def = "1",
67a1000f 2225 .parent = "rw",
d71c154c 2226 .hide = 1,
e8b0e958 2227 .category = FIO_OPT_C_IO,
3ceb458f 2228 .group = FIO_OPT_G_RANDOM,
214e1eca 2229 },
04778baf
JA
2230 {
2231 .name = "randseed",
2232 .lname = "The random generator seed",
363cffa7 2233 .type = FIO_OPT_STR_VAL,
a609f12a 2234 .off1 = offsetof(struct thread_options, rand_seed),
04778baf 2235 .help = "Set the random generator seed value",
40fe5e7b 2236 .def = "0x89",
04778baf
JA
2237 .parent = "rw",
2238 .category = FIO_OPT_C_IO,
2239 .group = FIO_OPT_G_RANDOM,
2240 },
214e1eca
JA
2241 {
2242 .name = "norandommap",
e8b0e958 2243 .lname = "No randommap",
214e1eca 2244 .type = FIO_OPT_STR_SET,
a609f12a 2245 .off1 = offsetof(struct thread_options, norandommap),
214e1eca 2246 .help = "Accept potential duplicate random blocks",
67a1000f 2247 .parent = "rw",
d71c154c 2248 .hide = 1,
b2452a43 2249 .hide_on_set = 1,
e8b0e958 2250 .category = FIO_OPT_C_IO,
3ceb458f 2251 .group = FIO_OPT_G_RANDOM,
214e1eca 2252 },
2b386d25
JA
2253 {
2254 .name = "softrandommap",
e8b0e958 2255 .lname = "Soft randommap",
2b386d25 2256 .type = FIO_OPT_BOOL,
a609f12a 2257 .off1 = offsetof(struct thread_options, softrandommap),
f66ab3c8 2258 .help = "Set norandommap if randommap allocation fails",
2b386d25 2259 .parent = "norandommap",
d71c154c 2260 .hide = 1,
2b386d25 2261 .def = "0",
e8b0e958 2262 .category = FIO_OPT_C_IO,
3ceb458f 2263 .group = FIO_OPT_G_RANDOM,
2b386d25 2264 },
8055e41d
JA
2265 {
2266 .name = "random_generator",
cce2fdfe 2267 .lname = "Random Generator",
8055e41d 2268 .type = FIO_OPT_STR,
a609f12a 2269 .off1 = offsetof(struct thread_options, random_generator),
8055e41d
JA
2270 .help = "Type of random number generator to use",
2271 .def = "tausworthe",
2272 .posval = {
2273 { .ival = "tausworthe",
2274 .oval = FIO_RAND_GEN_TAUSWORTHE,
2275 .help = "Strong Tausworthe generator",
2276 },
2277 { .ival = "lfsr",
2278 .oval = FIO_RAND_GEN_LFSR,
2279 .help = "Variable length LFSR",
2280 },
c3546b53
JA
2281 {
2282 .ival = "tausworthe64",
2283 .oval = FIO_RAND_GEN_TAUSWORTHE64,
2284 .help = "64-bit Tausworthe variant",
2285 },
8055e41d 2286 },
48107598
JA
2287 .category = FIO_OPT_C_IO,
2288 .group = FIO_OPT_G_RANDOM,
8055e41d 2289 },
e25839d4
JA
2290 {
2291 .name = "random_distribution",
cce2fdfe 2292 .lname = "Random Distribution",
e25839d4 2293 .type = FIO_OPT_STR,
a609f12a 2294 .off1 = offsetof(struct thread_options, random_distribution),
e25839d4
JA
2295 .cb = str_random_distribution_cb,
2296 .help = "Random offset distribution generator",
2297 .def = "random",
2298 .posval = {
2299 { .ival = "random",
2300 .oval = FIO_RAND_DIST_RANDOM,
2301 .help = "Completely random",
2302 },
2303 { .ival = "zipf",
2304 .oval = FIO_RAND_DIST_ZIPF,
2305 .help = "Zipf distribution",
2306 },
925fee33
JA
2307 { .ival = "pareto",
2308 .oval = FIO_RAND_DIST_PARETO,
2309 .help = "Pareto distribution",
2310 },
56d9fa4b
JA
2311 { .ival = "normal",
2312 .oval = FIO_RAND_DIST_GAUSS,
ba2b3b07 2313 .help = "Normal (Gaussian) distribution",
56d9fa4b 2314 },
e0a04ac1
JA
2315 { .ival = "zoned",
2316 .oval = FIO_RAND_DIST_ZONED,
2317 .help = "Zoned random distribution",
2318 },
59466396
JA
2319 { .ival = "zoned_abs",
2320 .oval = FIO_RAND_DIST_ZONED_ABS,
2321 .help = "Zoned absolute random distribution",
2322 },
e25839d4 2323 },
48107598
JA
2324 .category = FIO_OPT_C_IO,
2325 .group = FIO_OPT_G_RANDOM,
e25839d4 2326 },
211c9b89
JA
2327 {
2328 .name = "percentage_random",
2329 .lname = "Percentage Random",
2330 .type = FIO_OPT_INT,
a609f12a
JA
2331 .off1 = offsetof(struct thread_options, perc_rand[DDIR_READ]),
2332 .off2 = offsetof(struct thread_options, perc_rand[DDIR_WRITE]),
2333 .off3 = offsetof(struct thread_options, perc_rand[DDIR_TRIM]),
211c9b89
JA
2334 .maxval = 100,
2335 .help = "Percentage of seq/random mix that should be random",
d9472271 2336 .def = "100,100,100",
211c9b89
JA
2337 .interval = 5,
2338 .inverse = "percentage_sequential",
2339 .category = FIO_OPT_C_IO,
2340 .group = FIO_OPT_G_RANDOM,
2341 },
2342 {
2343 .name = "percentage_sequential",
2344 .lname = "Percentage Sequential",
d9472271 2345 .type = FIO_OPT_DEPRECATED,
211c9b89
JA
2346 .category = FIO_OPT_C_IO,
2347 .group = FIO_OPT_G_RANDOM,
2348 },
56e2a5fc
CE
2349 {
2350 .name = "allrandrepeat",
cce2fdfe 2351 .lname = "All Random Repeat",
56e2a5fc 2352 .type = FIO_OPT_BOOL,
a609f12a 2353 .off1 = offsetof(struct thread_options, allrand_repeatable),
56e2a5fc
CE
2354 .help = "Use repeatable random numbers for everything",
2355 .def = "0",
a869d9c6
JA
2356 .category = FIO_OPT_C_IO,
2357 .group = FIO_OPT_G_RANDOM,
56e2a5fc 2358 },
214e1eca
JA
2359 {
2360 .name = "nrfiles",
e8b0e958 2361 .lname = "Number of files",
d7c8be03 2362 .alias = "nr_files",
214e1eca 2363 .type = FIO_OPT_INT,
a609f12a 2364 .off1 = offsetof(struct thread_options, nr_files),
214e1eca
JA
2365 .help = "Split job workload between this number of files",
2366 .def = "1",
20eb06bd 2367 .interval = 1,
e8b0e958
JA
2368 .category = FIO_OPT_C_FILE,
2369 .group = FIO_OPT_G_INVALID,
214e1eca
JA
2370 },
2371 {
2372 .name = "openfiles",
e8b0e958 2373 .lname = "Number of open files",
214e1eca 2374 .type = FIO_OPT_INT,
a609f12a 2375 .off1 = offsetof(struct thread_options, open_files),
214e1eca 2376 .help = "Number of files to keep open at the same time",
e8b0e958
JA
2377 .category = FIO_OPT_C_FILE,
2378 .group = FIO_OPT_G_INVALID,
214e1eca
JA
2379 },
2380 {
2381 .name = "file_service_type",
e8b0e958 2382 .lname = "File service type",
214e1eca
JA
2383 .type = FIO_OPT_STR,
2384 .cb = str_fst_cb,
a609f12a 2385 .off1 = offsetof(struct thread_options, file_service_type),
214e1eca
JA
2386 .help = "How to select which file to service next",
2387 .def = "roundrobin",
e8b0e958
JA
2388 .category = FIO_OPT_C_FILE,
2389 .group = FIO_OPT_G_INVALID,
214e1eca
JA
2390 .posval = {
2391 { .ival = "random",
2392 .oval = FIO_FSERVICE_RANDOM,
8c07860d
JA
2393 .help = "Choose a file at random (uniform)",
2394 },
2395 { .ival = "zipf",
2396 .oval = FIO_FSERVICE_ZIPF,
2397 .help = "Zipf randomized",
2398 },
2399 { .ival = "pareto",
2400 .oval = FIO_FSERVICE_PARETO,
2401 .help = "Pareto randomized",
2402 },
dd3503d3
SW
2403 { .ival = "normal",
2404 .oval = FIO_FSERVICE_GAUSS,
2405 .help = "Normal (Gaussian) randomized",
2406 },
8c07860d
JA
2407 { .ival = "gauss",
2408 .oval = FIO_FSERVICE_GAUSS,
dd3503d3 2409 .help = "Alias for normal",
214e1eca
JA
2410 },
2411 { .ival = "roundrobin",
2412 .oval = FIO_FSERVICE_RR,
2413 .help = "Round robin select files",
2414 },
a086c257
JA
2415 { .ival = "sequential",
2416 .oval = FIO_FSERVICE_SEQ,
2417 .help = "Finish one file before moving to the next",
2418 },
214e1eca 2419 },
67a1000f 2420 .parent = "nrfiles",
d71c154c 2421 .hide = 1,
67a1000f 2422 },
7bc8c2cf
JA
2423 {
2424 .name = "fallocate",
e8b0e958 2425 .lname = "Fallocate",
a596f047 2426 .type = FIO_OPT_STR,
a609f12a 2427 .off1 = offsetof(struct thread_options, fallocate_mode),
a596f047 2428 .help = "Whether pre-allocation is performed when laying out files",
38ca5f03 2429#ifdef FIO_HAVE_DEFAULT_FALLOCATE
2c3e17be 2430 .def = "native",
38ca5f03
TV
2431#else
2432 .def = "none",
2433#endif
e8b0e958
JA
2434 .category = FIO_OPT_C_FILE,
2435 .group = FIO_OPT_G_INVALID,
a596f047
EG
2436 .posval = {
2437 { .ival = "none",
2438 .oval = FIO_FALLOCATE_NONE,
2439 .help = "Do not pre-allocate space",
2440 },
2c3e17be
SW
2441 { .ival = "native",
2442 .oval = FIO_FALLOCATE_NATIVE,
2443 .help = "Use native pre-allocation if possible",
2444 },
2445#ifdef CONFIG_POSIX_FALLOCATE
a596f047
EG
2446 { .ival = "posix",
2447 .oval = FIO_FALLOCATE_POSIX,
2448 .help = "Use posix_fallocate()",
2449 },
2c3e17be 2450#endif
97ac992c 2451#ifdef CONFIG_LINUX_FALLOCATE
a596f047
EG
2452 { .ival = "keep",
2453 .oval = FIO_FALLOCATE_KEEP_SIZE,
2454 .help = "Use fallocate(..., FALLOC_FL_KEEP_SIZE, ...)",
2455 },
7bc8c2cf 2456#endif
38ca5f03
TV
2457 { .ival = "truncate",
2458 .oval = FIO_FALLOCATE_TRUNCATE,
2459 .help = "Truncate file to final size instead of allocating"
2460 },
a596f047
EG
2461 /* Compatibility with former boolean values */
2462 { .ival = "0",
2463 .oval = FIO_FALLOCATE_NONE,
2464 .help = "Alias for 'none'",
2465 },
2c3e17be 2466#ifdef CONFIG_POSIX_FALLOCATE
a596f047
EG
2467 { .ival = "1",
2468 .oval = FIO_FALLOCATE_POSIX,
2469 .help = "Alias for 'posix'",
2470 },
2c3e17be 2471#endif
a596f047
EG
2472 },
2473 },
67a1000f
JA
2474 {
2475 .name = "fadvise_hint",
e8b0e958 2476 .lname = "Fadvise hint",
ecb2083d 2477 .type = FIO_OPT_STR,
a609f12a 2478 .off1 = offsetof(struct thread_options, fadvise_hint),
ecb2083d
JA
2479 .posval = {
2480 { .ival = "0",
2481 .oval = F_ADV_NONE,
c712c97a 2482 .help = "Don't issue fadvise/madvise",
ecb2083d
JA
2483 },
2484 { .ival = "1",
2485 .oval = F_ADV_TYPE,
2486 .help = "Advise using fio IO pattern",
2487 },
2488 { .ival = "random",
2489 .oval = F_ADV_RANDOM,
2490 .help = "Advise using FADV_RANDOM",
2491 },
2492 { .ival = "sequential",
2493 .oval = F_ADV_SEQUENTIAL,
2494 .help = "Advise using FADV_SEQUENTIAL",
2495 },
2496 },
67a1000f
JA
2497 .help = "Use fadvise() to advise the kernel on IO pattern",
2498 .def = "1",
e8b0e958
JA
2499 .category = FIO_OPT_C_FILE,
2500 .group = FIO_OPT_G_INVALID,
214e1eca
JA
2501 },
2502 {
2503 .name = "fsync",
e8b0e958 2504 .lname = "Fsync",
214e1eca 2505 .type = FIO_OPT_INT,
a609f12a 2506 .off1 = offsetof(struct thread_options, fsync_blocks),
214e1eca
JA
2507 .help = "Issue fsync for writes every given number of blocks",
2508 .def = "0",
20eb06bd 2509 .interval = 1,
e8b0e958
JA
2510 .category = FIO_OPT_C_FILE,
2511 .group = FIO_OPT_G_INVALID,
214e1eca 2512 },
5f9099ea
JA
2513 {
2514 .name = "fdatasync",
e8b0e958 2515 .lname = "Fdatasync",
5f9099ea 2516 .type = FIO_OPT_INT,
a609f12a 2517 .off1 = offsetof(struct thread_options, fdatasync_blocks),
5f9099ea
JA
2518 .help = "Issue fdatasync for writes every given number of blocks",
2519 .def = "0",
20eb06bd 2520 .interval = 1,
e8b0e958
JA
2521 .category = FIO_OPT_C_FILE,
2522 .group = FIO_OPT_G_INVALID,
5f9099ea 2523 },
1ef2b6be
JA
2524 {
2525 .name = "write_barrier",
e8b0e958 2526 .lname = "Write barrier",
1ef2b6be 2527 .type = FIO_OPT_INT,
a609f12a 2528 .off1 = offsetof(struct thread_options, barrier_blocks),
1ef2b6be
JA
2529 .help = "Make every Nth write a barrier write",
2530 .def = "0",
20eb06bd 2531 .interval = 1,
e8b0e958
JA
2532 .category = FIO_OPT_C_IO,
2533 .group = FIO_OPT_G_INVALID,
1ef2b6be 2534 },
67bf9823 2535#ifdef CONFIG_SYNC_FILE_RANGE
44f29692
JA
2536 {
2537 .name = "sync_file_range",
e8b0e958 2538 .lname = "Sync file range",
44f29692
JA
2539 .posval = {
2540 { .ival = "wait_before",
2541 .oval = SYNC_FILE_RANGE_WAIT_BEFORE,
2542 .help = "SYNC_FILE_RANGE_WAIT_BEFORE",
ebadc0ce 2543 .orval = 1,
44f29692
JA
2544 },
2545 { .ival = "write",
2546 .oval = SYNC_FILE_RANGE_WRITE,
2547 .help = "SYNC_FILE_RANGE_WRITE",
ebadc0ce 2548 .orval = 1,
44f29692
JA
2549 },
2550 {
2551 .ival = "wait_after",
2552 .oval = SYNC_FILE_RANGE_WAIT_AFTER,
2553 .help = "SYNC_FILE_RANGE_WAIT_AFTER",
ebadc0ce 2554 .orval = 1,
44f29692
JA
2555 },
2556 },
3843deb3 2557 .type = FIO_OPT_STR_MULTI,
44f29692 2558 .cb = str_sfr_cb,
a609f12a 2559 .off1 = offsetof(struct thread_options, sync_file_range),
44f29692 2560 .help = "Use sync_file_range()",
e8b0e958
JA
2561 .category = FIO_OPT_C_FILE,
2562 .group = FIO_OPT_G_INVALID,
44f29692 2563 },
a275c37a 2564#else
54d0a315 2565 {
a275c37a
JA
2566 .name = "sync_file_range",
2567 .lname = "Sync file range",
2568 .type = FIO_OPT_UNSUPPORTED,
2569 .help = "Your platform does not support sync_file_range",
2570 },
44f29692 2571#endif
214e1eca
JA
2572 {
2573 .name = "direct",
e8b0e958 2574 .lname = "Direct I/O",
214e1eca 2575 .type = FIO_OPT_BOOL,
a609f12a 2576 .off1 = offsetof(struct thread_options, odirect),
214e1eca
JA
2577 .help = "Use O_DIRECT IO (negates buffered)",
2578 .def = "0",
a01a1bc5 2579 .inverse = "buffered",
e8b0e958 2580 .category = FIO_OPT_C_IO,
3ceb458f 2581 .group = FIO_OPT_G_IO_TYPE,
214e1eca 2582 },
d01612f3
CM
2583 {
2584 .name = "atomic",
2585 .lname = "Atomic I/O",
2586 .type = FIO_OPT_BOOL,
a609f12a 2587 .off1 = offsetof(struct thread_options, oatomic),
d01612f3
CM
2588 .help = "Use Atomic IO with O_DIRECT (implies O_DIRECT)",
2589 .def = "0",
2590 .category = FIO_OPT_C_IO,
2591 .group = FIO_OPT_G_IO_TYPE,
2592 },
214e1eca
JA
2593 {
2594 .name = "buffered",
e8b0e958 2595 .lname = "Buffered I/O",
214e1eca 2596 .type = FIO_OPT_BOOL,
a609f12a 2597 .off1 = offsetof(struct thread_options, odirect),
214e1eca
JA
2598 .neg = 1,
2599 .help = "Use buffered IO (negates direct)",
2600 .def = "1",
a01a1bc5 2601 .inverse = "direct",
e8b0e958 2602 .category = FIO_OPT_C_IO,
3ceb458f 2603 .group = FIO_OPT_G_IO_TYPE,
214e1eca
JA
2604 },
2605 {
2606 .name = "overwrite",
e8b0e958 2607 .lname = "Overwrite",
214e1eca 2608 .type = FIO_OPT_BOOL,
a609f12a 2609 .off1 = offsetof(struct thread_options, overwrite),
214e1eca
JA
2610 .help = "When writing, set whether to overwrite current data",
2611 .def = "0",
e8b0e958
JA
2612 .category = FIO_OPT_C_FILE,
2613 .group = FIO_OPT_G_INVALID,
214e1eca
JA
2614 },
2615 {
2616 .name = "loops",
e8b0e958 2617 .lname = "Loops",
214e1eca 2618 .type = FIO_OPT_INT,
a609f12a 2619 .off1 = offsetof(struct thread_options, loops),
214e1eca
JA
2620 .help = "Number of times to run the job",
2621 .def = "1",
20eb06bd 2622 .interval = 1,
e8b0e958 2623 .category = FIO_OPT_C_GENERAL,
a1f6afec 2624 .group = FIO_OPT_G_RUNTIME,
214e1eca
JA
2625 },
2626 {
2627 .name = "numjobs",
e8b0e958 2628 .lname = "Number of jobs",
214e1eca 2629 .type = FIO_OPT_INT,
a609f12a 2630 .off1 = offsetof(struct thread_options, numjobs),
214e1eca
JA
2631 .help = "Duplicate this job this many times",
2632 .def = "1",
20eb06bd 2633 .interval = 1,
e8b0e958 2634 .category = FIO_OPT_C_GENERAL,
a1f6afec 2635 .group = FIO_OPT_G_RUNTIME,
214e1eca
JA
2636 },
2637 {
2638 .name = "startdelay",
e8b0e958 2639 .lname = "Start delay",
a5737c93 2640 .type = FIO_OPT_STR_VAL_TIME,
a609f12a
JA
2641 .off1 = offsetof(struct thread_options, start_delay),
2642 .off2 = offsetof(struct thread_options, start_delay_high),
214e1eca
JA
2643 .help = "Only start job when this period has passed",
2644 .def = "0",
0de5b26f 2645 .is_seconds = 1,
88038bc7 2646 .is_time = 1,
e8b0e958 2647 .category = FIO_OPT_C_GENERAL,
a1f6afec 2648 .group = FIO_OPT_G_RUNTIME,
214e1eca
JA
2649 },
2650 {
2651 .name = "runtime",
e8b0e958 2652 .lname = "Runtime",
214e1eca
JA
2653 .alias = "timeout",
2654 .type = FIO_OPT_STR_VAL_TIME,
a609f12a 2655 .off1 = offsetof(struct thread_options, timeout),
214e1eca
JA
2656 .help = "Stop workload when this amount of time has passed",
2657 .def = "0",
0de5b26f 2658 .is_seconds = 1,
88038bc7 2659 .is_time = 1,
e8b0e958 2660 .category = FIO_OPT_C_GENERAL,
a1f6afec 2661 .group = FIO_OPT_G_RUNTIME,
214e1eca 2662 },
cf4464ca
JA
2663 {
2664 .name = "time_based",
e8b0e958 2665 .lname = "Time based",
cf4464ca 2666 .type = FIO_OPT_STR_SET,
a609f12a 2667 .off1 = offsetof(struct thread_options, time_based),
cf4464ca 2668 .help = "Keep running until runtime/timeout is met",
e8b0e958 2669 .category = FIO_OPT_C_GENERAL,
a1f6afec 2670 .group = FIO_OPT_G_RUNTIME,
cf4464ca 2671 },
62167762
JC
2672 {
2673 .name = "verify_only",
2674 .lname = "Verify only",
2675 .type = FIO_OPT_STR_SET,
a609f12a 2676 .off1 = offsetof(struct thread_options, verify_only),
62167762
JC
2677 .help = "Verifies previously written data is still valid",
2678 .category = FIO_OPT_C_GENERAL,
2679 .group = FIO_OPT_G_RUNTIME,
2680 },
721938ae
JA
2681 {
2682 .name = "ramp_time",
e8b0e958 2683 .lname = "Ramp time",
721938ae 2684 .type = FIO_OPT_STR_VAL_TIME,
a609f12a 2685 .off1 = offsetof(struct thread_options, ramp_time),
721938ae 2686 .help = "Ramp up time before measuring performance",
0de5b26f 2687 .is_seconds = 1,
88038bc7 2688 .is_time = 1,
e8b0e958 2689 .category = FIO_OPT_C_GENERAL,
a1f6afec 2690 .group = FIO_OPT_G_RUNTIME,
721938ae 2691 },
c223da83
JA
2692 {
2693 .name = "clocksource",
e8b0e958 2694 .lname = "Clock source",
c223da83
JA
2695 .type = FIO_OPT_STR,
2696 .cb = fio_clock_source_cb,
a609f12a 2697 .off1 = offsetof(struct thread_options, clocksource),
c223da83 2698 .help = "What type of timing source to use",
e8b0e958 2699 .category = FIO_OPT_C_GENERAL,
10860056 2700 .group = FIO_OPT_G_CLOCK,
c223da83 2701 .posval = {
67bf9823 2702#ifdef CONFIG_GETTIMEOFDAY
c223da83
JA
2703 { .ival = "gettimeofday",
2704 .oval = CS_GTOD,
2705 .help = "Use gettimeofday(2) for timing",
2706 },
67bf9823
JA
2707#endif
2708#ifdef CONFIG_CLOCK_GETTIME
c223da83
JA
2709 { .ival = "clock_gettime",
2710 .oval = CS_CGETTIME,
2711 .help = "Use clock_gettime(2) for timing",
2712 },
67bf9823 2713#endif
c223da83
JA
2714#ifdef ARCH_HAVE_CPU_CLOCK
2715 { .ival = "cpu",
2716 .oval = CS_CPUCLOCK,
2717 .help = "Use CPU private clock",
2718 },
2719#endif
2720 },
2721 },
214e1eca
JA
2722 {
2723 .name = "mem",
d3aad8f2 2724 .alias = "iomem",
e8b0e958 2725 .lname = "I/O Memory",
214e1eca
JA
2726 .type = FIO_OPT_STR,
2727 .cb = str_mem_cb,
a609f12a 2728 .off1 = offsetof(struct thread_options, mem_type),
214e1eca
JA
2729 .help = "Backing type for IO buffers",
2730 .def = "malloc",
e8b0e958
JA
2731 .category = FIO_OPT_C_IO,
2732 .group = FIO_OPT_G_INVALID,
214e1eca
JA
2733 .posval = {
2734 { .ival = "malloc",
2735 .oval = MEM_MALLOC,
2736 .help = "Use malloc(3) for IO buffers",
2737 },
c8931876 2738#ifndef CONFIG_NO_SHM
37c8cdfe
JA
2739 { .ival = "shm",
2740 .oval = MEM_SHM,
2741 .help = "Use shared memory segments for IO buffers",
2742 },
214e1eca
JA
2743#ifdef FIO_HAVE_HUGETLB
2744 { .ival = "shmhuge",
2745 .oval = MEM_SHMHUGE,
2746 .help = "Like shm, but use huge pages",
2747 },
c8931876 2748#endif
b370e46a 2749#endif
37c8cdfe
JA
2750 { .ival = "mmap",
2751 .oval = MEM_MMAP,
2752 .help = "Use mmap(2) (file or anon) for IO buffers",
2753 },
217b0f1d
LG
2754 { .ival = "mmapshared",
2755 .oval = MEM_MMAPSHARED,
2756 .help = "Like mmap, but use the shared flag",
2757 },
214e1eca
JA
2758#ifdef FIO_HAVE_HUGETLB
2759 { .ival = "mmaphuge",
2760 .oval = MEM_MMAPHUGE,
2761 .help = "Like mmap, but use huge pages",
2762 },
03553853
YR
2763#endif
2764#ifdef CONFIG_CUDA
2765 { .ival = "cudamalloc",
2766 .oval = MEM_CUDA_MALLOC,
2767 .help = "Allocate GPU device memory for GPUDirect RDMA",
2768 },
214e1eca
JA
2769#endif
2770 },
2771 },
d529ee19
JA
2772 {
2773 .name = "iomem_align",
2774 .alias = "mem_align",
e8b0e958 2775 .lname = "I/O memory alignment",
d529ee19 2776 .type = FIO_OPT_INT,
a609f12a 2777 .off1 = offsetof(struct thread_options, mem_align),
d529ee19
JA
2778 .minval = 0,
2779 .help = "IO memory buffer offset alignment",
2780 .def = "0",
2781 .parent = "iomem",
d71c154c 2782 .hide = 1,
e8b0e958
JA
2783 .category = FIO_OPT_C_IO,
2784 .group = FIO_OPT_G_INVALID,
d529ee19 2785 },
214e1eca
JA
2786 {
2787 .name = "verify",
e8b0e958 2788 .lname = "Verify",
214e1eca 2789 .type = FIO_OPT_STR,
a609f12a 2790 .off1 = offsetof(struct thread_options, verify),
214e1eca
JA
2791 .help = "Verify data written",
2792 .def = "0",
e8b0e958 2793 .category = FIO_OPT_C_IO,
3ceb458f 2794 .group = FIO_OPT_G_VERIFY,
214e1eca
JA
2795 .posval = {
2796 { .ival = "0",
2797 .oval = VERIFY_NONE,
2798 .help = "Don't do IO verification",
2799 },
fcca4b58
JA
2800 { .ival = "md5",
2801 .oval = VERIFY_MD5,
2802 .help = "Use md5 checksums for verification",
2803 },
d77a7af3
JA
2804 { .ival = "crc64",
2805 .oval = VERIFY_CRC64,
2806 .help = "Use crc64 checksums for verification",
2807 },
214e1eca
JA
2808 { .ival = "crc32",
2809 .oval = VERIFY_CRC32,
2810 .help = "Use crc32 checksums for verification",
2811 },
af497e6a 2812 { .ival = "crc32c-intel",
e3aaafc4
JA
2813 .oval = VERIFY_CRC32C,
2814 .help = "Use crc32c checksums for verification (hw assisted, if available)",
af497e6a 2815 },
bac39e0e
JA
2816 { .ival = "crc32c",
2817 .oval = VERIFY_CRC32C,
e3aaafc4 2818 .help = "Use crc32c checksums for verification (hw assisted, if available)",
bac39e0e 2819 },
969f7ed3
JA
2820 { .ival = "crc16",
2821 .oval = VERIFY_CRC16,
2822 .help = "Use crc16 checksums for verification",
2823 },
1e154bdb
JA
2824 { .ival = "crc7",
2825 .oval = VERIFY_CRC7,
2826 .help = "Use crc7 checksums for verification",
2827 },
7c353ceb
JA
2828 { .ival = "sha1",
2829 .oval = VERIFY_SHA1,
2830 .help = "Use sha1 checksums for verification",
2831 },
cd14cc10
JA
2832 { .ival = "sha256",
2833 .oval = VERIFY_SHA256,
2834 .help = "Use sha256 checksums for verification",
2835 },
2836 { .ival = "sha512",
2837 .oval = VERIFY_SHA512,
2838 .help = "Use sha512 checksums for verification",
ae3a5acc
JA
2839 },
2840 { .ival = "sha3-224",
2841 .oval = VERIFY_SHA3_224,
2842 .help = "Use sha3-224 checksums for verification",
2843 },
2844 { .ival = "sha3-256",
2845 .oval = VERIFY_SHA3_256,
2846 .help = "Use sha3-256 checksums for verification",
2847 },
2848 { .ival = "sha3-384",
2849 .oval = VERIFY_SHA3_384,
2850 .help = "Use sha3-384 checksums for verification",
2851 },
2852 { .ival = "sha3-512",
2853 .oval = VERIFY_SHA3_512,
2854 .help = "Use sha3-512 checksums for verification",
cd14cc10 2855 },
844ea602
JA
2856 { .ival = "xxhash",
2857 .oval = VERIFY_XXHASH,
2858 .help = "Use xxhash checksums for verification",
2859 },
b638d82f
RP
2860 /* Meta information was included into verify_header,
2861 * 'meta' verification is implied by default. */
7437ee87 2862 { .ival = "meta",
b638d82f
RP
2863 .oval = VERIFY_HDR_ONLY,
2864 .help = "Use io information for verification. "
2865 "Now is implied by default, thus option is obsolete, "
2866 "don't use it",
7437ee87 2867 },
59245381
JA
2868 { .ival = "pattern",
2869 .oval = VERIFY_PATTERN_NO_HDR,
2870 .help = "Verify strict pattern",
2871 },
36690c9b
JA
2872 {
2873 .ival = "null",
2874 .oval = VERIFY_NULL,
2875 .help = "Pretend to verify",
2876 },
214e1eca
JA
2877 },
2878 },
005c565a
JA
2879 {
2880 .name = "do_verify",
e8b0e958 2881 .lname = "Perform verify step",
68e1f29a 2882 .type = FIO_OPT_BOOL,
a609f12a 2883 .off1 = offsetof(struct thread_options, do_verify),
005c565a
JA
2884 .help = "Run verification stage after write",
2885 .def = "1",
2886 .parent = "verify",
d71c154c 2887 .hide = 1,
e8b0e958
JA
2888 .category = FIO_OPT_C_IO,
2889 .group = FIO_OPT_G_VERIFY,
005c565a 2890 },
160b966d
JA
2891 {
2892 .name = "verifysort",
e8b0e958 2893 .lname = "Verify sort",
f31feaa2 2894 .type = FIO_OPT_SOFT_DEPRECATED,
e8b0e958
JA
2895 .category = FIO_OPT_C_IO,
2896 .group = FIO_OPT_G_VERIFY,
160b966d 2897 },
1ae83d45
JA
2898 {
2899 .name = "verifysort_nr",
cce2fdfe 2900 .lname = "Verify Sort Nr",
f31feaa2 2901 .type = FIO_OPT_SOFT_DEPRECATED,
836fcc0f
JA
2902 .category = FIO_OPT_C_IO,
2903 .group = FIO_OPT_G_VERIFY,
1ae83d45 2904 },
3f9f4e26 2905 {
a59e170d 2906 .name = "verify_interval",
e8b0e958 2907 .lname = "Verify interval",
e01b22b8 2908 .type = FIO_OPT_INT,
a609f12a 2909 .off1 = offsetof(struct thread_options, verify_interval),
819a9680 2910 .minval = 2 * sizeof(struct verify_header),
a59e170d 2911 .help = "Store verify buffer header every N bytes",
afdf9352 2912 .parent = "verify",
d71c154c 2913 .hide = 1,
20eb06bd 2914 .interval = 2 * sizeof(struct verify_header),
e8b0e958
JA
2915 .category = FIO_OPT_C_IO,
2916 .group = FIO_OPT_G_VERIFY,
3f9f4e26 2917 },
546a9142 2918 {
a59e170d 2919 .name = "verify_offset",
e8b0e958 2920 .lname = "Verify offset",
e01b22b8 2921 .type = FIO_OPT_INT,
a59e170d 2922 .help = "Offset verify header location by N bytes",
a609f12a 2923 .off1 = offsetof(struct thread_options, verify_offset),
203160d5 2924 .minval = sizeof(struct verify_header),
afdf9352 2925 .parent = "verify",
d71c154c 2926 .hide = 1,
e8b0e958
JA
2927 .category = FIO_OPT_C_IO,
2928 .group = FIO_OPT_G_VERIFY,
546a9142 2929 },
e28218f3
SL
2930 {
2931 .name = "verify_pattern",
e8b0e958 2932 .lname = "Verify pattern",
0e92f873 2933 .type = FIO_OPT_STR,
e28218f3 2934 .cb = str_verify_pattern_cb,
a609f12a 2935 .off1 = offsetof(struct thread_options, verify_pattern),
e28218f3
SL
2936 .help = "Fill pattern for IO buffers",
2937 .parent = "verify",
d71c154c 2938 .hide = 1,
e8b0e958
JA
2939 .category = FIO_OPT_C_IO,
2940 .group = FIO_OPT_G_VERIFY,
e28218f3 2941 },
a12a3b4d
JA
2942 {
2943 .name = "verify_fatal",
e8b0e958 2944 .lname = "Verify fatal",
68e1f29a 2945 .type = FIO_OPT_BOOL,
a609f12a 2946 .off1 = offsetof(struct thread_options, verify_fatal),
a12a3b4d
JA
2947 .def = "0",
2948 .help = "Exit on a single verify failure, don't continue",
2949 .parent = "verify",
d71c154c 2950 .hide = 1,
e8b0e958
JA
2951 .category = FIO_OPT_C_IO,
2952 .group = FIO_OPT_G_VERIFY,
a12a3b4d 2953 },
b463e936
JA
2954 {
2955 .name = "verify_dump",
e8b0e958 2956 .lname = "Verify dump",
b463e936 2957 .type = FIO_OPT_BOOL,
a609f12a 2958 .off1 = offsetof(struct thread_options, verify_dump),
ef71e317 2959 .def = "0",
b463e936
JA
2960 .help = "Dump contents of good and bad blocks on failure",
2961 .parent = "verify",
d71c154c 2962 .hide = 1,
e8b0e958
JA
2963 .category = FIO_OPT_C_IO,
2964 .group = FIO_OPT_G_VERIFY,
b463e936 2965 },
e8462bd8
JA
2966 {
2967 .name = "verify_async",
e8b0e958 2968 .lname = "Verify asynchronously",
e8462bd8 2969 .type = FIO_OPT_INT,
a609f12a 2970 .off1 = offsetof(struct thread_options, verify_async),
e8462bd8
JA
2971 .def = "0",
2972 .help = "Number of async verifier threads to use",
2973 .parent = "verify",
d71c154c 2974 .hide = 1,
e8b0e958
JA
2975 .category = FIO_OPT_C_IO,
2976 .group = FIO_OPT_G_VERIFY,
e8462bd8 2977 },
9e144189
JA
2978 {
2979 .name = "verify_backlog",
e8b0e958 2980 .lname = "Verify backlog",
9e144189 2981 .type = FIO_OPT_STR_VAL,
a609f12a 2982 .off1 = offsetof(struct thread_options, verify_backlog),
9e144189
JA
2983 .help = "Verify after this number of blocks are written",
2984 .parent = "verify",
d71c154c 2985 .hide = 1,
e8b0e958
JA
2986 .category = FIO_OPT_C_IO,
2987 .group = FIO_OPT_G_VERIFY,
9e144189
JA
2988 },
2989 {
2990 .name = "verify_backlog_batch",
e8b0e958 2991 .lname = "Verify backlog batch",
9e144189 2992 .type = FIO_OPT_INT,
a609f12a 2993 .off1 = offsetof(struct thread_options, verify_batch),
9e144189 2994 .help = "Verify this number of IO blocks",
0d29de83 2995 .parent = "verify",
d71c154c 2996 .hide = 1,
e8b0e958
JA
2997 .category = FIO_OPT_C_IO,
2998 .group = FIO_OPT_G_VERIFY,
9e144189 2999 },
e8462bd8
JA
3000#ifdef FIO_HAVE_CPU_AFFINITY
3001 {
3002 .name = "verify_async_cpus",
e8b0e958 3003 .lname = "Async verify CPUs",
e8462bd8
JA
3004 .type = FIO_OPT_STR,
3005 .cb = str_verify_cpus_allowed_cb,
a609f12a 3006 .off1 = offsetof(struct thread_options, verify_cpumask),
e8462bd8
JA
3007 .help = "Set CPUs allowed for async verify threads",
3008 .parent = "verify_async",
d71c154c 3009 .hide = 1,
e8b0e958
JA
3010 .category = FIO_OPT_C_IO,
3011 .group = FIO_OPT_G_VERIFY,
e8462bd8 3012 },
a275c37a
JA
3013#else
3014 {
3015 .name = "verify_async_cpus",
3016 .lname = "Async verify CPUs",
3017 .type = FIO_OPT_UNSUPPORTED,
54d0a315 3018 .help = "Your platform does not support CPU affinities",
a275c37a 3019 },
0d29de83 3020#endif
51aa2da8
JA
3021 {
3022 .name = "experimental_verify",
cce2fdfe 3023 .lname = "Experimental Verify",
a609f12a 3024 .off1 = offsetof(struct thread_options, experimental_verify),
51aa2da8 3025 .type = FIO_OPT_BOOL,
b31eaac9 3026 .help = "Enable experimental verification",
ca09be4b
JA
3027 .parent = "verify",
3028 .category = FIO_OPT_C_IO,
3029 .group = FIO_OPT_G_VERIFY,
3030 },
3031 {
3032 .name = "verify_state_load",
3033 .lname = "Load verify state",
a609f12a 3034 .off1 = offsetof(struct thread_options, verify_state),
ca09be4b
JA
3035 .type = FIO_OPT_BOOL,
3036 .help = "Load verify termination state",
3037 .parent = "verify",
3038 .category = FIO_OPT_C_IO,
3039 .group = FIO_OPT_G_VERIFY,
3040 },
3041 {
3042 .name = "verify_state_save",
3043 .lname = "Save verify state",
a609f12a 3044 .off1 = offsetof(struct thread_options, verify_state_save),
ca09be4b
JA
3045 .type = FIO_OPT_BOOL,
3046 .def = "1",
3047 .help = "Save verify state on termination",
3048 .parent = "verify",
836fcc0f
JA
3049 .category = FIO_OPT_C_IO,
3050 .group = FIO_OPT_G_VERIFY,
51aa2da8 3051 },
0d29de83
JA
3052#ifdef FIO_HAVE_TRIM
3053 {
3054 .name = "trim_percentage",
e8b0e958 3055 .lname = "Trim percentage",
0d29de83 3056 .type = FIO_OPT_INT,
a609f12a 3057 .off1 = offsetof(struct thread_options, trim_percentage),
20eb06bd 3058 .minval = 0,
0d29de83 3059 .maxval = 100,
169c098d 3060 .help = "Number of verify blocks to trim (i.e., discard)",
0d29de83
JA
3061 .parent = "verify",
3062 .def = "0",
20eb06bd 3063 .interval = 1,
d71c154c 3064 .hide = 1,
e8b0e958
JA
3065 .category = FIO_OPT_C_IO,
3066 .group = FIO_OPT_G_TRIM,
0d29de83
JA
3067 },
3068 {
3069 .name = "trim_verify_zero",
e8b0e958 3070 .lname = "Verify trim zero",
20eb06bd 3071 .type = FIO_OPT_BOOL,
169c098d 3072 .help = "Verify that trimmed (i.e., discarded) blocks are returned as zeroes",
a609f12a 3073 .off1 = offsetof(struct thread_options, trim_zero),
0d29de83 3074 .parent = "trim_percentage",
d71c154c 3075 .hide = 1,
0d29de83 3076 .def = "1",
e8b0e958
JA
3077 .category = FIO_OPT_C_IO,
3078 .group = FIO_OPT_G_TRIM,
0d29de83
JA
3079 },
3080 {
3081 .name = "trim_backlog",
e8b0e958 3082 .lname = "Trim backlog",
0d29de83 3083 .type = FIO_OPT_STR_VAL,
a609f12a 3084 .off1 = offsetof(struct thread_options, trim_backlog),
0d29de83
JA
3085 .help = "Trim after this number of blocks are written",
3086 .parent = "trim_percentage",
d71c154c 3087 .hide = 1,
20eb06bd 3088 .interval = 1,
e8b0e958
JA
3089 .category = FIO_OPT_C_IO,
3090 .group = FIO_OPT_G_TRIM,
0d29de83
JA
3091 },
3092 {
3093 .name = "trim_backlog_batch",
e8b0e958 3094 .lname = "Trim backlog batch",
0d29de83 3095 .type = FIO_OPT_INT,
a609f12a 3096 .off1 = offsetof(struct thread_options, trim_batch),
0d29de83
JA
3097 .help = "Trim this number of IO blocks",
3098 .parent = "trim_percentage",
d71c154c 3099 .hide = 1,
20eb06bd 3100 .interval = 1,
e8b0e958
JA
3101 .category = FIO_OPT_C_IO,
3102 .group = FIO_OPT_G_TRIM,
0d29de83 3103 },
a275c37a
JA
3104#else
3105 {
3106 .name = "trim_percentage",
3107 .lname = "Trim percentage",
3108 .type = FIO_OPT_UNSUPPORTED,
3109 .help = "Fio does not support TRIM on your platform",
3110 },
3111 {
3112 .name = "trim_verify_zero",
3113 .lname = "Verify trim zero",
3114 .type = FIO_OPT_UNSUPPORTED,
3115 .help = "Fio does not support TRIM on your platform",
3116 },
3117 {
3118 .name = "trim_backlog",
3119 .lname = "Trim backlog",
3120 .type = FIO_OPT_UNSUPPORTED,
3121 .help = "Fio does not support TRIM on your platform",
3122 },
3123 {
3124 .name = "trim_backlog_batch",
3125 .lname = "Trim backlog batch",
3126 .type = FIO_OPT_UNSUPPORTED,
3127 .help = "Fio does not support TRIM on your platform",
3128 },
e8462bd8 3129#endif
214e1eca
JA
3130 {
3131 .name = "write_iolog",
e8b0e958 3132 .lname = "Write I/O log",
214e1eca 3133 .type = FIO_OPT_STR_STORE,
a609f12a 3134 .off1 = offsetof(struct thread_options, write_iolog_file),
214e1eca 3135 .help = "Store IO pattern to file",
e8b0e958
JA
3136 .category = FIO_OPT_C_IO,
3137 .group = FIO_OPT_G_IOLOG,
214e1eca
JA
3138 },
3139 {
3140 .name = "read_iolog",
e8b0e958 3141 .lname = "Read I/O log",
214e1eca 3142 .type = FIO_OPT_STR_STORE,
a609f12a 3143 .off1 = offsetof(struct thread_options, read_iolog_file),
214e1eca 3144 .help = "Playback IO pattern from file",
e8b0e958
JA
3145 .category = FIO_OPT_C_IO,
3146 .group = FIO_OPT_G_IOLOG,
214e1eca 3147 },
98e7161c
AK
3148 {
3149 .name = "read_iolog_chunked",
3150 .lname = "Read I/O log in parts",
3151 .type = FIO_OPT_BOOL,
3152 .off1 = offsetof(struct thread_options, read_iolog_chunked),
3153 .def = "0",
3154 .parent = "read_iolog",
3155 .help = "Parse IO pattern in chunks",
3156 .category = FIO_OPT_C_IO,
3157 .group = FIO_OPT_G_IOLOG,
3158 },
64bbb865
DN
3159 {
3160 .name = "replay_no_stall",
e8b0e958 3161 .lname = "Don't stall on replay",
20eb06bd 3162 .type = FIO_OPT_BOOL,
a609f12a 3163 .off1 = offsetof(struct thread_options, no_stall),
64bbb865 3164 .def = "0",
87e7a972 3165 .parent = "read_iolog",
d71c154c 3166 .hide = 1,
64bbb865 3167 .help = "Playback IO pattern file as fast as possible without stalls",
e8b0e958
JA
3168 .category = FIO_OPT_C_IO,
3169 .group = FIO_OPT_G_IOLOG,
64bbb865 3170 },
d1c46c04
DN
3171 {
3172 .name = "replay_redirect",
e8b0e958 3173 .lname = "Redirect device for replay",
d1c46c04 3174 .type = FIO_OPT_STR_STORE,
a609f12a 3175 .off1 = offsetof(struct thread_options, replay_redirect),
d1c46c04 3176 .parent = "read_iolog",
d71c154c 3177 .hide = 1,
d1c46c04 3178 .help = "Replay all I/O onto this device, regardless of trace device",
e8b0e958
JA
3179 .category = FIO_OPT_C_IO,
3180 .group = FIO_OPT_G_IOLOG,
d1c46c04 3181 },
0c63576e
JA
3182 {
3183 .name = "replay_scale",
3184 .lname = "Replace offset scale factor",
3185 .type = FIO_OPT_INT,
a609f12a 3186 .off1 = offsetof(struct thread_options, replay_scale),
0c63576e
JA
3187 .parent = "read_iolog",
3188 .def = "1",
3189 .help = "Align offsets to this blocksize",
3190 .category = FIO_OPT_C_IO,
3191 .group = FIO_OPT_G_IOLOG,
3192 },
3193 {
3194 .name = "replay_align",
3195 .lname = "Replace alignment",
3196 .type = FIO_OPT_INT,
a609f12a 3197 .off1 = offsetof(struct thread_options, replay_align),
0c63576e
JA
3198 .parent = "read_iolog",
3199 .help = "Scale offset down by this factor",
3200 .category = FIO_OPT_C_IO,
3201 .group = FIO_OPT_G_IOLOG,
3202 .pow2 = 1,
3203 },
6dd7fa77
JA
3204 {
3205 .name = "replay_time_scale",
3206 .lname = "Replay Time Scale",
3207 .type = FIO_OPT_INT,
3208 .off1 = offsetof(struct thread_options, replay_time_scale),
3209 .def = "100",
3210 .minval = 1,
3211 .parent = "read_iolog",
3212 .hide = 1,
3213 .help = "Scale time for replay events",
3214 .category = FIO_OPT_C_IO,
3215 .group = FIO_OPT_G_IOLOG,
3216 },
d7235efb
JA
3217 {
3218 .name = "replay_skip",
3219 .lname = "Replay Skip",
3220 .type = FIO_OPT_STR,
3221 .cb = str_replay_skip_cb,
3222 .off1 = offsetof(struct thread_options, replay_skip),
3223 .parent = "read_iolog",
3224 .help = "Skip certain IO types (read,write,trim,flush)",
3225 .category = FIO_OPT_C_IO,
3226 .group = FIO_OPT_G_IOLOG,
3227 },
b9921d1a
DZ
3228 {
3229 .name = "merge_blktrace_file",
3230 .lname = "Merged blktrace output filename",
3231 .type = FIO_OPT_STR_STORE,
3232 .off1 = offsetof(struct thread_options, merge_blktrace_file),
3233 .help = "Merged blktrace output filename",
3234 .category = FIO_OPT_C_IO,
3235 .group = FIO_OPT_G_IOLOG,
3236 },
87a48ada
DZ
3237 {
3238 .name = "merge_blktrace_scalars",
3239 .lname = "Percentage to scale each trace",
3240 .type = FIO_OPT_FLOAT_LIST,
3241 .off1 = offsetof(struct thread_options, merge_blktrace_scalars),
3242 .maxlen = FIO_IO_U_LIST_MAX_LEN,
3243 .help = "Percentage to scale each trace",
3244 .category = FIO_OPT_C_IO,
3245 .group = FIO_OPT_G_IOLOG,
3246 },
55bfd8c8
DZ
3247 {
3248 .name = "merge_blktrace_iters",
3249 .lname = "Number of iterations to run per trace",
3250 .type = FIO_OPT_FLOAT_LIST,
3251 .off1 = offsetof(struct thread_options, merge_blktrace_iters),
3252 .maxlen = FIO_IO_U_LIST_MAX_LEN,
3253 .help = "Number of iterations to run per trace",
3254 .category = FIO_OPT_C_IO,
3255 .group = FIO_OPT_G_IOLOG,
3256 },
214e1eca
JA
3257 {
3258 .name = "exec_prerun",
e8b0e958 3259 .lname = "Pre-execute runnable",
214e1eca 3260 .type = FIO_OPT_STR_STORE,
a609f12a 3261 .off1 = offsetof(struct thread_options, exec_prerun),
214e1eca 3262 .help = "Execute this file prior to running job",
e8b0e958
JA
3263 .category = FIO_OPT_C_GENERAL,
3264 .group = FIO_OPT_G_INVALID,
214e1eca
JA
3265 },
3266 {
3267 .name = "exec_postrun",
e8b0e958 3268 .lname = "Post-execute runnable",
214e1eca 3269 .type = FIO_OPT_STR_STORE,
a609f12a 3270 .off1 = offsetof(struct thread_options, exec_postrun),
214e1eca 3271 .help = "Execute this file after running job",
e8b0e958
JA
3272 .category = FIO_OPT_C_GENERAL,
3273 .group = FIO_OPT_G_INVALID,
214e1eca
JA
3274 },
3275#ifdef FIO_HAVE_IOSCHED_SWITCH
3276 {
3277 .name = "ioscheduler",
e8b0e958 3278 .lname = "I/O scheduler",
214e1eca 3279 .type = FIO_OPT_STR_STORE,
a609f12a 3280 .off1 = offsetof(struct thread_options, ioscheduler),
214e1eca 3281 .help = "Use this IO scheduler on the backing device",
e8b0e958
JA
3282 .category = FIO_OPT_C_FILE,
3283 .group = FIO_OPT_G_INVALID,
214e1eca 3284 },
a275c37a
JA
3285#else
3286 {
3287 .name = "ioscheduler",
3288 .lname = "I/O scheduler",
3289 .type = FIO_OPT_UNSUPPORTED,
3290 .help = "Your platform does not support IO scheduler switching",
3291 },
214e1eca 3292#endif
7b865a2f
BVA
3293 {
3294 .name = "zonemode",
3295 .lname = "Zone mode",
3296 .help = "Mode for the zonesize, zonerange and zoneskip parameters",
3297 .type = FIO_OPT_STR,
3298 .off1 = offsetof(struct thread_options, zone_mode),
3299 .def = "none",
3300 .category = FIO_OPT_C_IO,
3301 .group = FIO_OPT_G_ZONE,
3302 .posval = {
3303 { .ival = "none",
3304 .oval = ZONE_MODE_NONE,
3305 .help = "no zoning",
3306 },
3307 { .ival = "strided",
3308 .oval = ZONE_MODE_STRIDED,
3309 .help = "strided mode - random I/O is restricted to a single zone",
3310 },
3311 { .ival = "zbd",
3312 .oval = ZONE_MODE_ZBD,
3313 .help = "zoned block device mode - random I/O selects one of multiple zones randomly",
3314 },
3315 },
3316 },
214e1eca
JA
3317 {
3318 .name = "zonesize",
e8b0e958 3319 .lname = "Zone size",
214e1eca 3320 .type = FIO_OPT_STR_VAL,
a609f12a 3321 .off1 = offsetof(struct thread_options, zone_size),
ed335855
SN
3322 .help = "Amount of data to read per zone",
3323 .def = "0",
20eb06bd 3324 .interval = 1024 * 1024,
e8b0e958
JA
3325 .category = FIO_OPT_C_IO,
3326 .group = FIO_OPT_G_ZONE,
ed335855
SN
3327 },
3328 {
3329 .name = "zonerange",
e8b0e958 3330 .lname = "Zone range",
ed335855 3331 .type = FIO_OPT_STR_VAL,
a609f12a 3332 .off1 = offsetof(struct thread_options, zone_range),
214e1eca
JA
3333 .help = "Give size of an IO zone",
3334 .def = "0",
20eb06bd 3335 .interval = 1024 * 1024,
e8b0e958
JA
3336 .category = FIO_OPT_C_IO,
3337 .group = FIO_OPT_G_ZONE,
214e1eca
JA
3338 },
3339 {
3340 .name = "zoneskip",
e8b0e958 3341 .lname = "Zone skip",
214e1eca 3342 .type = FIO_OPT_STR_VAL,
a609f12a 3343 .off1 = offsetof(struct thread_options, zone_skip),
214e1eca
JA
3344 .help = "Space between IO zones",
3345 .def = "0",
20eb06bd 3346 .interval = 1024 * 1024,
e8b0e958
JA
3347 .category = FIO_OPT_C_IO,
3348 .group = FIO_OPT_G_ZONE,
214e1eca 3349 },
bfbdd35b
BVA
3350 {
3351 .name = "read_beyond_wp",
3352 .lname = "Allow reads beyond the zone write pointer",
3353 .type = FIO_OPT_BOOL,
3354 .off1 = offsetof(struct thread_options, read_beyond_wp),
3355 .help = "Allow reads beyond the zone write pointer",
3356 .def = "0",
3357 .category = FIO_OPT_C_IO,
3358 .group = FIO_OPT_G_INVALID,
3359 },
59b07544
BVA
3360 {
3361 .name = "max_open_zones",
3362 .lname = "Maximum number of open zones",
3363 .type = FIO_OPT_INT,
3364 .off1 = offsetof(struct thread_options, max_open_zones),
3365 .maxval = FIO_MAX_OPEN_ZBD_ZONES,
3366 .help = "Limit random writes to SMR drives to the specified"
3367 " number of sequential zones",
3368 .def = "0",
3369 .category = FIO_OPT_C_IO,
3370 .group = FIO_OPT_G_INVALID,
3371 },
a7c2b6fc
BVA
3372 {
3373 .name = "zone_reset_threshold",
3374 .lname = "Zone reset threshold",
3375 .help = "Zoned block device reset threshold",
3376 .type = FIO_OPT_FLOAT_LIST,
3377 .maxlen = 1,
3378 .off1 = offsetof(struct thread_options, zrt),
3379 .minfp = 0,
3380 .maxfp = 1,
3381 .category = FIO_OPT_C_IO,
3382 .group = FIO_OPT_G_ZONE,
3383 },
3384 {
3385 .name = "zone_reset_frequency",
3386 .lname = "Zone reset frequency",
3387 .help = "Zoned block device zone reset frequency in HZ",
3388 .type = FIO_OPT_FLOAT_LIST,
3389 .maxlen = 1,
3390 .off1 = offsetof(struct thread_options, zrf),
3391 .minfp = 0,
3392 .maxfp = 1,
3393 .category = FIO_OPT_C_IO,
3394 .group = FIO_OPT_G_ZONE,
3395 },
214e1eca
JA
3396 {
3397 .name = "lockmem",
e8b0e958 3398 .lname = "Lock memory",
214e1eca 3399 .type = FIO_OPT_STR_VAL,
a609f12a 3400 .off1 = offsetof(struct thread_options, lockmem),
81c6b6cd 3401 .help = "Lock down this amount of memory (per worker)",
214e1eca 3402 .def = "0",
20eb06bd 3403 .interval = 1024 * 1024,
e8b0e958
JA
3404 .category = FIO_OPT_C_GENERAL,
3405 .group = FIO_OPT_G_INVALID,
214e1eca 3406 },
214e1eca
JA
3407 {
3408 .name = "rwmixread",
e8b0e958 3409 .lname = "Read/write mix read",
214e1eca 3410 .type = FIO_OPT_INT,
cb499fc4 3411 .cb = str_rwmix_read_cb,
a609f12a 3412 .off1 = offsetof(struct thread_options, rwmix[DDIR_READ]),
214e1eca
JA
3413 .maxval = 100,
3414 .help = "Percentage of mixed workload that is reads",
3415 .def = "50",
20eb06bd 3416 .interval = 5,
90265353 3417 .inverse = "rwmixwrite",
e8b0e958
JA
3418 .category = FIO_OPT_C_IO,
3419 .group = FIO_OPT_G_RWMIX,
214e1eca
JA
3420 },
3421 {
3422 .name = "rwmixwrite",
e8b0e958 3423 .lname = "Read/write mix write",
214e1eca 3424 .type = FIO_OPT_INT,
cb499fc4 3425 .cb = str_rwmix_write_cb,
a609f12a 3426 .off1 = offsetof(struct thread_options, rwmix[DDIR_WRITE]),
214e1eca
JA
3427 .maxval = 100,
3428 .help = "Percentage of mixed workload that is writes",
3429 .def = "50",
20eb06bd 3430 .interval = 5,
90265353 3431 .inverse = "rwmixread",
e8b0e958
JA
3432 .category = FIO_OPT_C_IO,
3433 .group = FIO_OPT_G_RWMIX,
214e1eca 3434 },
afdf9352
JA
3435 {
3436 .name = "rwmixcycle",
e8b0e958 3437 .lname = "Read/write mix cycle",
15ca150e 3438 .type = FIO_OPT_DEPRECATED,
e8b0e958
JA
3439 .category = FIO_OPT_C_IO,
3440 .group = FIO_OPT_G_RWMIX,
afdf9352 3441 },
214e1eca
JA
3442 {
3443 .name = "nice",
e8b0e958 3444 .lname = "Nice",
214e1eca 3445 .type = FIO_OPT_INT,
a609f12a 3446 .off1 = offsetof(struct thread_options, nice),
214e1eca 3447 .help = "Set job CPU nice value",
11fd6aa8
RC
3448 .minval = -20,
3449 .maxval = 19,
214e1eca 3450 .def = "0",
20eb06bd 3451 .interval = 1,
e8b0e958 3452 .category = FIO_OPT_C_GENERAL,
10860056 3453 .group = FIO_OPT_G_CRED,
214e1eca
JA
3454 },
3455#ifdef FIO_HAVE_IOPRIO
3456 {
3457 .name = "prio",
e8b0e958 3458 .lname = "I/O nice priority",
214e1eca 3459 .type = FIO_OPT_INT,
a609f12a 3460 .off1 = offsetof(struct thread_options, ioprio),
214e1eca 3461 .help = "Set job IO priority value",
1767bd34
TK
3462 .minval = IOPRIO_MIN_PRIO,
3463 .maxval = IOPRIO_MAX_PRIO,
20eb06bd 3464 .interval = 1,
e8b0e958 3465 .category = FIO_OPT_C_GENERAL,
10860056 3466 .group = FIO_OPT_G_CRED,
214e1eca 3467 },
32ef447a
TK
3468#else
3469 {
3470 .name = "prio",
3471 .lname = "I/O nice priority",
3472 .type = FIO_OPT_UNSUPPORTED,
3473 .help = "Your platform does not support IO priorities",
3474 },
3475#endif
3476#ifdef FIO_HAVE_IOPRIO_CLASS
3477#ifndef FIO_HAVE_IOPRIO
3478#error "FIO_HAVE_IOPRIO_CLASS requires FIO_HAVE_IOPRIO"
3479#endif
214e1eca
JA
3480 {
3481 .name = "prioclass",
e8b0e958 3482 .lname = "I/O nice priority class",
214e1eca 3483 .type = FIO_OPT_INT,
a609f12a 3484 .off1 = offsetof(struct thread_options, ioprio_class),
214e1eca 3485 .help = "Set job IO priority class",
1767bd34
TK
3486 .minval = IOPRIO_MIN_PRIO_CLASS,
3487 .maxval = IOPRIO_MAX_PRIO_CLASS,
20eb06bd 3488 .interval = 1,
e8b0e958 3489 .category = FIO_OPT_C_GENERAL,
10860056 3490 .group = FIO_OPT_G_CRED,
214e1eca 3491 },
a275c37a 3492#else
a275c37a
JA
3493 {
3494 .name = "prioclass",
3495 .lname = "I/O nice priority class",
3496 .type = FIO_OPT_UNSUPPORTED,
32ef447a 3497 .help = "Your platform does not support IO priority classes",
a275c37a 3498 },
214e1eca
JA
3499#endif
3500 {
3501 .name = "thinktime",
e8b0e958 3502 .lname = "Thinktime",
214e1eca 3503 .type = FIO_OPT_INT,
a609f12a 3504 .off1 = offsetof(struct thread_options, thinktime),
214e1eca
JA
3505 .help = "Idle time between IO buffers (usec)",
3506 .def = "0",
88038bc7 3507 .is_time = 1,
e8b0e958 3508 .category = FIO_OPT_C_IO,
3ceb458f 3509 .group = FIO_OPT_G_THINKTIME,
214e1eca
JA
3510 },
3511 {
3512 .name = "thinktime_spin",
e8b0e958 3513 .lname = "Thinktime spin",
214e1eca 3514 .type = FIO_OPT_INT,
a609f12a 3515 .off1 = offsetof(struct thread_options, thinktime_spin),
214e1eca
JA
3516 .help = "Start think time by spinning this amount (usec)",
3517 .def = "0",
88038bc7 3518 .is_time = 1,
afdf9352 3519 .parent = "thinktime",
d71c154c 3520 .hide = 1,
e8b0e958 3521 .category = FIO_OPT_C_IO,
3ceb458f 3522 .group = FIO_OPT_G_THINKTIME,
214e1eca
JA
3523 },
3524 {
3525 .name = "thinktime_blocks",
e8b0e958 3526 .lname = "Thinktime blocks",
214e1eca 3527 .type = FIO_OPT_INT,
a609f12a 3528 .off1 = offsetof(struct thread_options, thinktime_blocks),
214e1eca
JA
3529 .help = "IO buffer period between 'thinktime'",
3530 .def = "1",
afdf9352 3531 .parent = "thinktime",
d71c154c 3532 .hide = 1,
e8b0e958 3533 .category = FIO_OPT_C_IO,
3ceb458f 3534 .group = FIO_OPT_G_THINKTIME,
214e1eca
JA
3535 },
3536 {
3537 .name = "rate",
e8b0e958 3538 .lname = "I/O rate",
e01b22b8 3539 .type = FIO_OPT_INT,
a609f12a
JA
3540 .off1 = offsetof(struct thread_options, rate[DDIR_READ]),
3541 .off2 = offsetof(struct thread_options, rate[DDIR_WRITE]),
3542 .off3 = offsetof(struct thread_options, rate[DDIR_TRIM]),
214e1eca 3543 .help = "Set bandwidth rate",
e8b0e958
JA
3544 .category = FIO_OPT_C_IO,
3545 .group = FIO_OPT_G_RATE,
214e1eca
JA
3546 },
3547 {
6d428bcd
JA
3548 .name = "rate_min",
3549 .alias = "ratemin",
e8b0e958 3550 .lname = "I/O min rate",
e01b22b8 3551 .type = FIO_OPT_INT,
a609f12a
JA
3552 .off1 = offsetof(struct thread_options, ratemin[DDIR_READ]),
3553 .off2 = offsetof(struct thread_options, ratemin[DDIR_WRITE]),
3554 .off3 = offsetof(struct thread_options, ratemin[DDIR_TRIM]),
4e991c23 3555 .help = "Job must meet this rate or it will be shutdown",
afdf9352 3556 .parent = "rate",
d71c154c 3557 .hide = 1,
e8b0e958
JA
3558 .category = FIO_OPT_C_IO,
3559 .group = FIO_OPT_G_RATE,
4e991c23
JA
3560 },
3561 {
3562 .name = "rate_iops",
e8b0e958 3563 .lname = "I/O rate IOPS",
e01b22b8 3564 .type = FIO_OPT_INT,
a609f12a
JA
3565 .off1 = offsetof(struct thread_options, rate_iops[DDIR_READ]),
3566 .off2 = offsetof(struct thread_options, rate_iops[DDIR_WRITE]),
3567 .off3 = offsetof(struct thread_options, rate_iops[DDIR_TRIM]),
4e991c23 3568 .help = "Limit IO used to this number of IO operations/sec",
d71c154c 3569 .hide = 1,
e8b0e958
JA
3570 .category = FIO_OPT_C_IO,
3571 .group = FIO_OPT_G_RATE,
4e991c23
JA
3572 },
3573 {
3574 .name = "rate_iops_min",
e8b0e958 3575 .lname = "I/O min rate IOPS",
e01b22b8 3576 .type = FIO_OPT_INT,
a609f12a
JA
3577 .off1 = offsetof(struct thread_options, rate_iops_min[DDIR_READ]),
3578 .off2 = offsetof(struct thread_options, rate_iops_min[DDIR_WRITE]),
3579 .off3 = offsetof(struct thread_options, rate_iops_min[DDIR_TRIM]),
03e20d68 3580 .help = "Job must meet this rate or it will be shut down",
afdf9352 3581 .parent = "rate_iops",
d71c154c 3582 .hide = 1,
e8b0e958
JA
3583 .category = FIO_OPT_C_IO,
3584 .group = FIO_OPT_G_RATE,
214e1eca 3585 },
ff6bb260 3586 {
6de65959
JA
3587 .name = "rate_process",
3588 .lname = "Rate Process",
3589 .type = FIO_OPT_STR,
a609f12a 3590 .off1 = offsetof(struct thread_options, rate_process),
6de65959
JA
3591 .help = "What process controls how rated IO is managed",
3592 .def = "linear",
ff6bb260
SL
3593 .category = FIO_OPT_C_IO,
3594 .group = FIO_OPT_G_RATE,
6de65959
JA
3595 .posval = {
3596 { .ival = "linear",
3597 .oval = RATE_PROCESS_LINEAR,
3598 .help = "Linear rate of IO",
3599 },
3600 {
3601 .ival = "poisson",
3602 .oval = RATE_PROCESS_POISSON,
3603 .help = "Rate follows Poisson process",
3604 },
3605 },
3606 .parent = "rate",
ff6bb260 3607 },
214e1eca 3608 {
6d428bcd
JA
3609 .name = "rate_cycle",
3610 .alias = "ratecycle",
e8b0e958 3611 .lname = "I/O rate cycle",
214e1eca 3612 .type = FIO_OPT_INT,
a609f12a 3613 .off1 = offsetof(struct thread_options, ratecycle),
214e1eca
JA
3614 .help = "Window average for rate limits (msec)",
3615 .def = "1000",
afdf9352 3616 .parent = "rate",
d71c154c 3617 .hide = 1,
e8b0e958
JA
3618 .category = FIO_OPT_C_IO,
3619 .group = FIO_OPT_G_RATE,
214e1eca 3620 },
1a9bf814
JA
3621 {
3622 .name = "rate_ignore_thinktime",
3623 .lname = "Rate ignore thinktime",
3624 .type = FIO_OPT_BOOL,
3625 .off1 = offsetof(struct thread_options, rate_ign_think),
3626 .help = "Rated IO ignores thinktime settings",
3627 .parent = "rate",
3628 .category = FIO_OPT_C_IO,
3629 .group = FIO_OPT_G_RATE,
3630 },
15501535
JA
3631 {
3632 .name = "max_latency",
dd97d866 3633 .lname = "Max Latency (usec)",
6c3fb04c 3634 .type = FIO_OPT_STR_VAL_TIME,
a609f12a 3635 .off1 = offsetof(struct thread_options, max_latency),
15501535 3636 .help = "Maximum tolerated IO latency (usec)",
88038bc7 3637 .is_time = 1,
1e5324e7 3638 .category = FIO_OPT_C_IO,
3e260a46
JA
3639 .group = FIO_OPT_G_LATPROF,
3640 },
3641 {
3642 .name = "latency_target",
3643 .lname = "Latency Target (usec)",
3644 .type = FIO_OPT_STR_VAL_TIME,
a609f12a 3645 .off1 = offsetof(struct thread_options, latency_target),
3e260a46 3646 .help = "Ramp to max queue depth supporting this latency",
88038bc7 3647 .is_time = 1,
3e260a46
JA
3648 .category = FIO_OPT_C_IO,
3649 .group = FIO_OPT_G_LATPROF,
3650 },
3651 {
3652 .name = "latency_window",
3653 .lname = "Latency Window (usec)",
3654 .type = FIO_OPT_STR_VAL_TIME,
a609f12a 3655 .off1 = offsetof(struct thread_options, latency_window),
3e260a46 3656 .help = "Time to sustain latency_target",
88038bc7 3657 .is_time = 1,
3e260a46
JA
3658 .category = FIO_OPT_C_IO,
3659 .group = FIO_OPT_G_LATPROF,
3660 },
3661 {
3662 .name = "latency_percentile",
3663 .lname = "Latency Percentile",
3664 .type = FIO_OPT_FLOAT_LIST,
a609f12a 3665 .off1 = offsetof(struct thread_options, latency_percentile),
3e260a46
JA
3666 .help = "Percentile of IOs must be below latency_target",
3667 .def = "100",
3668 .maxlen = 1,
3669 .minfp = 0.0,
3670 .maxfp = 100.0,
3671 .category = FIO_OPT_C_IO,
3672 .group = FIO_OPT_G_LATPROF,
15501535 3673 },
214e1eca
JA
3674 {
3675 .name = "invalidate",
e8b0e958 3676 .lname = "Cache invalidate",
214e1eca 3677 .type = FIO_OPT_BOOL,
a609f12a 3678 .off1 = offsetof(struct thread_options, invalidate_cache),
214e1eca
JA
3679 .help = "Invalidate buffer/page cache prior to running job",
3680 .def = "1",
e8b0e958 3681 .category = FIO_OPT_C_IO,
3ceb458f 3682 .group = FIO_OPT_G_IO_TYPE,
214e1eca
JA
3683 },
3684 {
3685 .name = "sync",
e8b0e958 3686 .lname = "Synchronous I/O",
214e1eca 3687 .type = FIO_OPT_BOOL,
a609f12a 3688 .off1 = offsetof(struct thread_options, sync_io),
214e1eca
JA
3689 .help = "Use O_SYNC for buffered writes",
3690 .def = "0",
67a1000f 3691 .parent = "buffered",
d71c154c 3692 .hide = 1,
e8b0e958 3693 .category = FIO_OPT_C_IO,
3ceb458f 3694 .group = FIO_OPT_G_IO_TYPE,
214e1eca 3695 },
ae8e559e
JA
3696#ifdef FIO_HAVE_WRITE_HINT
3697 {
3698 .name = "write_hint",
3699 .lname = "Write hint",
3700 .type = FIO_OPT_STR,
3701 .off1 = offsetof(struct thread_options, write_hint),
3702 .help = "Set expected write life time",
3703 .category = FIO_OPT_C_ENGINE,
3704 .group = FIO_OPT_G_INVALID,
3705 .posval = {
3706 { .ival = "none",
3707 .oval = RWH_WRITE_LIFE_NONE,
3708 },
3709 { .ival = "short",
3710 .oval = RWH_WRITE_LIFE_SHORT,
3711 },
3712 { .ival = "medium",
3713 .oval = RWH_WRITE_LIFE_MEDIUM,
3714 },
3715 { .ival = "long",
3716 .oval = RWH_WRITE_LIFE_LONG,
3717 },
3718 { .ival = "extreme",
3719 .oval = RWH_WRITE_LIFE_EXTREME,
3720 },
3721 },
3722 },
3723#endif
214e1eca
JA
3724 {
3725 .name = "create_serialize",
e8b0e958 3726 .lname = "Create serialize",
214e1eca 3727 .type = FIO_OPT_BOOL,
a609f12a 3728 .off1 = offsetof(struct thread_options, create_serialize),
c2b8035f 3729 .help = "Serialize creation of job files",
214e1eca 3730 .def = "1",
e8b0e958
JA
3731 .category = FIO_OPT_C_FILE,
3732 .group = FIO_OPT_G_INVALID,
214e1eca
JA
3733 },
3734 {
3735 .name = "create_fsync",
e8b0e958 3736 .lname = "Create fsync",
214e1eca 3737 .type = FIO_OPT_BOOL,
a609f12a 3738 .off1 = offsetof(struct thread_options, create_fsync),
03e20d68 3739 .help = "fsync file after creation",
214e1eca 3740 .def = "1",
e8b0e958
JA
3741 .category = FIO_OPT_C_FILE,
3742 .group = FIO_OPT_G_INVALID,
214e1eca 3743 },
814452bd
JA
3744 {
3745 .name = "create_on_open",
e8b0e958 3746 .lname = "Create on open",
814452bd 3747 .type = FIO_OPT_BOOL,
a609f12a 3748 .off1 = offsetof(struct thread_options, create_on_open),
814452bd
JA
3749 .help = "Create files when they are opened for IO",
3750 .def = "0",
e8b0e958
JA
3751 .category = FIO_OPT_C_FILE,
3752 .group = FIO_OPT_G_INVALID,
814452bd 3753 },
25460cf6
JA
3754 {
3755 .name = "create_only",
cce2fdfe 3756 .lname = "Create Only",
25460cf6 3757 .type = FIO_OPT_BOOL,
a609f12a 3758 .off1 = offsetof(struct thread_options, create_only),
25460cf6 3759 .help = "Only perform file creation phase",
d17fda71 3760 .category = FIO_OPT_C_FILE,
25460cf6
JA
3761 .def = "0",
3762 },
2378826d
JA
3763 {
3764 .name = "allow_file_create",
e81ecca3 3765 .lname = "Allow file create",
2378826d 3766 .type = FIO_OPT_BOOL,
a609f12a 3767 .off1 = offsetof(struct thread_options, allow_create),
2378826d
JA
3768 .help = "Permit fio to create files, if they don't exist",
3769 .def = "1",
3770 .category = FIO_OPT_C_FILE,
3771 .group = FIO_OPT_G_FILENAME,
3772 },
e81ecca3
JA
3773 {
3774 .name = "allow_mounted_write",
3775 .lname = "Allow mounted write",
3776 .type = FIO_OPT_BOOL,
a609f12a 3777 .off1 = offsetof(struct thread_options, allow_mounted_write),
e81ecca3
JA
3778 .help = "Allow writes to a mounted partition",
3779 .def = "0",
3780 .category = FIO_OPT_C_FILE,
3781 .group = FIO_OPT_G_FILENAME,
3782 },
0b9d69ec 3783 {
afad68f7 3784 .name = "pre_read",
e8b0e958 3785 .lname = "Pre-read files",
afad68f7 3786 .type = FIO_OPT_BOOL,
a609f12a 3787 .off1 = offsetof(struct thread_options, pre_read),
03e20d68 3788 .help = "Pre-read files before starting official testing",
afad68f7 3789 .def = "0",
e8b0e958
JA
3790 .category = FIO_OPT_C_FILE,
3791 .group = FIO_OPT_G_INVALID,
afad68f7 3792 },
214e1eca
JA
3793#ifdef FIO_HAVE_CPU_AFFINITY
3794 {
3795 .name = "cpumask",
e8b0e958 3796 .lname = "CPU mask",
214e1eca
JA
3797 .type = FIO_OPT_INT,
3798 .cb = str_cpumask_cb,
a609f12a 3799 .off1 = offsetof(struct thread_options, cpumask),
214e1eca 3800 .help = "CPU affinity mask",
e8b0e958 3801 .category = FIO_OPT_C_GENERAL,
10860056 3802 .group = FIO_OPT_G_CRED,
214e1eca 3803 },
d2e268b0
JA
3804 {
3805 .name = "cpus_allowed",
e8b0e958 3806 .lname = "CPUs allowed",
d2e268b0
JA
3807 .type = FIO_OPT_STR,
3808 .cb = str_cpus_allowed_cb,
a609f12a 3809 .off1 = offsetof(struct thread_options, cpumask),
d2e268b0 3810 .help = "Set CPUs allowed",
e8b0e958 3811 .category = FIO_OPT_C_GENERAL,
10860056 3812 .group = FIO_OPT_G_CRED,
d2e268b0 3813 },
c2acfbac
JA
3814 {
3815 .name = "cpus_allowed_policy",
3816 .lname = "CPUs allowed distribution policy",
3817 .type = FIO_OPT_STR,
a609f12a 3818 .off1 = offsetof(struct thread_options, cpus_allowed_policy),
c2acfbac
JA
3819 .help = "Distribution policy for cpus_allowed",
3820 .parent = "cpus_allowed",
3821 .prio = 1,
3822 .posval = {
3823 { .ival = "shared",
3824 .oval = FIO_CPUS_SHARED,
3825 .help = "Mask shared between threads",
3826 },
3827 { .ival = "split",
3828 .oval = FIO_CPUS_SPLIT,
3829 .help = "Mask split between threads",
3830 },
3831 },
3832 .category = FIO_OPT_C_GENERAL,
3833 .group = FIO_OPT_G_CRED,
3834 },
a275c37a
JA
3835#else
3836 {
3837 .name = "cpumask",
3838 .lname = "CPU mask",
3839 .type = FIO_OPT_UNSUPPORTED,
3840 .help = "Your platform does not support CPU affinities",
3841 },
3842 {
3843 .name = "cpus_allowed",
3844 .lname = "CPUs allowed",
3845 .type = FIO_OPT_UNSUPPORTED,
3846 .help = "Your platform does not support CPU affinities",
3847 },
3848 {
3849 .name = "cpus_allowed_policy",
3850 .lname = "CPUs allowed distribution policy",
3851 .type = FIO_OPT_UNSUPPORTED,
3852 .help = "Your platform does not support CPU affinities",
3853 },
d0b937ed 3854#endif
67bf9823 3855#ifdef CONFIG_LIBNUMA
d0b937ed
YR
3856 {
3857 .name = "numa_cpu_nodes",
cce2fdfe 3858 .lname = "NUMA CPU Nodes",
d0b937ed
YR
3859 .type = FIO_OPT_STR,
3860 .cb = str_numa_cpunodes_cb,
a609f12a 3861 .off1 = offsetof(struct thread_options, numa_cpunodes),
d0b937ed 3862 .help = "NUMA CPU nodes bind",
6be54b2d
JA
3863 .category = FIO_OPT_C_GENERAL,
3864 .group = FIO_OPT_G_INVALID,
d0b937ed
YR
3865 },
3866 {
3867 .name = "numa_mem_policy",
cce2fdfe 3868 .lname = "NUMA Memory Policy",
d0b937ed
YR
3869 .type = FIO_OPT_STR,
3870 .cb = str_numa_mpol_cb,
a609f12a 3871 .off1 = offsetof(struct thread_options, numa_memnodes),
d0b937ed 3872 .help = "NUMA memory policy setup",
6be54b2d
JA
3873 .category = FIO_OPT_C_GENERAL,
3874 .group = FIO_OPT_G_INVALID,
d0b937ed 3875 },
a275c37a
JA
3876#else
3877 {
3878 .name = "numa_cpu_nodes",
3879 .lname = "NUMA CPU Nodes",
3880 .type = FIO_OPT_UNSUPPORTED,
3881 .help = "Build fio with libnuma-dev(el) to enable this option",
3882 },
3883 {
3884 .name = "numa_mem_policy",
3885 .lname = "NUMA Memory Policy",
3886 .type = FIO_OPT_UNSUPPORTED,
3887 .help = "Build fio with libnuma-dev(el) to enable this option",
3888 },
03553853
YR
3889#endif
3890#ifdef CONFIG_CUDA
3891 {
3892 .name = "gpu_dev_id",
3893 .lname = "GPU device ID",
3894 .type = FIO_OPT_INT,
3895 .off1 = offsetof(struct thread_options, gpu_dev_id),
3896 .help = "Set GPU device ID for GPUDirect RDMA",
3897 .def = "0",
3898 .category = FIO_OPT_C_GENERAL,
3899 .group = FIO_OPT_G_INVALID,
3900 },
214e1eca
JA
3901#endif
3902 {
3903 .name = "end_fsync",
e8b0e958 3904 .lname = "End fsync",
214e1eca 3905 .type = FIO_OPT_BOOL,
a609f12a 3906 .off1 = offsetof(struct thread_options, end_fsync),
214e1eca
JA
3907 .help = "Include fsync at the end of job",
3908 .def = "0",
e8b0e958
JA
3909 .category = FIO_OPT_C_FILE,
3910 .group = FIO_OPT_G_INVALID,
214e1eca
JA
3911 },
3912 {
3913 .name = "fsync_on_close",
e8b0e958 3914 .lname = "Fsync on close",
214e1eca 3915 .type = FIO_OPT_BOOL,
a609f12a 3916 .off1 = offsetof(struct thread_options, fsync_on_close),
214e1eca
JA
3917 .help = "fsync files on close",
3918 .def = "0",
e8b0e958
JA
3919 .category = FIO_OPT_C_FILE,
3920 .group = FIO_OPT_G_INVALID,
214e1eca
JA
3921 },
3922 {
3923 .name = "unlink",
e8b0e958 3924 .lname = "Unlink file",
214e1eca 3925 .type = FIO_OPT_BOOL,
a609f12a 3926 .off1 = offsetof(struct thread_options, unlink),
214e1eca
JA
3927 .help = "Unlink created files after job has completed",
3928 .def = "0",
e8b0e958
JA
3929 .category = FIO_OPT_C_FILE,
3930 .group = FIO_OPT_G_INVALID,
214e1eca 3931 },
39c1c323 3932 {
3933 .name = "unlink_each_loop",
3934 .lname = "Unlink file after each loop of a job",
3935 .type = FIO_OPT_BOOL,
a609f12a 3936 .off1 = offsetof(struct thread_options, unlink_each_loop),
39c1c323 3937 .help = "Unlink created files after each loop in a job has completed",
3938 .def = "0",
3939 .category = FIO_OPT_C_FILE,
3940 .group = FIO_OPT_G_INVALID,
3941 },
214e1eca
JA
3942 {
3943 .name = "exitall",
e8b0e958 3944 .lname = "Exit-all on terminate",
214e1eca
JA
3945 .type = FIO_OPT_STR_SET,
3946 .cb = str_exitall_cb,
3947 .help = "Terminate all jobs when one exits",
e8b0e958 3948 .category = FIO_OPT_C_GENERAL,
a1f6afec 3949 .group = FIO_OPT_G_PROCESS,
214e1eca 3950 },
64402a8a
HW
3951 {
3952 .name = "exit_what",
3953 .lname = "What jobs to quit on terminate",
3954 .type = FIO_OPT_STR,
3955 .off1 = offsetof(struct thread_options, exit_what),
3956 .help = "Fine-grained control for exitall",
3957 .def = "group",
3958 .category = FIO_OPT_C_GENERAL,
3959 .group = FIO_OPT_G_PROCESS,
3960 .posval = {
3961 { .ival = "group",
3962 .oval = TERMINATE_GROUP,
3963 .help = "exit_all=1 default behaviour",
3964 },
3965 { .ival = "stonewall",
3966 .oval = TERMINATE_STONEWALL,
3967 .help = "quit all currently running jobs; continue with next stonewall",
3968 },
3969 { .ival = "all",
3970 .oval = TERMINATE_ALL,
3971 .help = "Quit everything",
3972 },
3973 },
3974 },
f9cafb12
JA
3975 {
3976 .name = "exitall_on_error",
3977 .lname = "Exit-all on terminate in error",
78abcf9b 3978 .type = FIO_OPT_STR_SET,
a609f12a 3979 .off1 = offsetof(struct thread_options, exitall_error),
f9cafb12
JA
3980 .help = "Terminate all jobs when one exits in error",
3981 .category = FIO_OPT_C_GENERAL,
3982 .group = FIO_OPT_G_PROCESS,
3983 },
214e1eca
JA
3984 {
3985 .name = "stonewall",
e8b0e958 3986 .lname = "Wait for previous",
d392365e 3987 .alias = "wait_for_previous",
214e1eca 3988 .type = FIO_OPT_STR_SET,
a609f12a 3989 .off1 = offsetof(struct thread_options, stonewall),
214e1eca 3990 .help = "Insert a hard barrier between this job and previous",
e8b0e958 3991 .category = FIO_OPT_C_GENERAL,
a1f6afec 3992 .group = FIO_OPT_G_PROCESS,
214e1eca 3993 },
b3d62a75
JA
3994 {
3995 .name = "new_group",
e8b0e958 3996 .lname = "New group",
b3d62a75 3997 .type = FIO_OPT_STR_SET,
a609f12a 3998 .off1 = offsetof(struct thread_options, new_group),
b3d62a75 3999 .help = "Mark the start of a new group (for reporting)",
e8b0e958 4000 .category = FIO_OPT_C_GENERAL,
a1f6afec 4001 .group = FIO_OPT_G_PROCESS,
b3d62a75 4002 },
214e1eca
JA
4003 {
4004 .name = "thread",
e8b0e958 4005 .lname = "Thread",
214e1eca 4006 .type = FIO_OPT_STR_SET,
a609f12a 4007 .off1 = offsetof(struct thread_options, use_thread),
20eb06bd 4008 .help = "Use threads instead of processes",
c8931876
JA
4009#ifdef CONFIG_NO_SHM
4010 .def = "1",
4011 .no_warn_def = 1,
4012#endif
e8b0e958 4013 .category = FIO_OPT_C_GENERAL,
a1f6afec 4014 .group = FIO_OPT_G_PROCESS,
214e1eca 4015 },
3a5db920
JA
4016 {
4017 .name = "per_job_logs",
cce2fdfe 4018 .lname = "Per Job Logs",
3a5db920 4019 .type = FIO_OPT_BOOL,
a609f12a 4020 .off1 = offsetof(struct thread_options, per_job_logs),
3a5db920
JA
4021 .help = "Include job number in generated log files or not",
4022 .def = "1",
4023 .category = FIO_OPT_C_LOG,
4024 .group = FIO_OPT_G_INVALID,
4025 },
214e1eca
JA
4026 {
4027 .name = "write_bw_log",
e8b0e958 4028 .lname = "Write bandwidth log",
dded427c 4029 .type = FIO_OPT_STR,
a609f12a 4030 .off1 = offsetof(struct thread_options, bw_log_file),
dded427c 4031 .cb = str_write_bw_log_cb,
214e1eca 4032 .help = "Write log of bandwidth during run",
e8b0e958
JA
4033 .category = FIO_OPT_C_LOG,
4034 .group = FIO_OPT_G_INVALID,
214e1eca
JA
4035 },
4036 {
4037 .name = "write_lat_log",
e8b0e958 4038 .lname = "Write latency log",
dded427c 4039 .type = FIO_OPT_STR,
a609f12a 4040 .off1 = offsetof(struct thread_options, lat_log_file),
dded427c 4041 .cb = str_write_lat_log_cb,
214e1eca 4042 .help = "Write log of latency during run",
e8b0e958
JA
4043 .category = FIO_OPT_C_LOG,
4044 .group = FIO_OPT_G_INVALID,
214e1eca 4045 },
c8eeb9df
JA
4046 {
4047 .name = "write_iops_log",
e8b0e958 4048 .lname = "Write IOPS log",
dded427c 4049 .type = FIO_OPT_STR,
a609f12a 4050 .off1 = offsetof(struct thread_options, iops_log_file),
dded427c 4051 .cb = str_write_iops_log_cb,
c8eeb9df 4052 .help = "Write log of IOPS during run",
e8b0e958
JA
4053 .category = FIO_OPT_C_LOG,
4054 .group = FIO_OPT_G_INVALID,
c8eeb9df 4055 },
b8bc8cba
JA
4056 {
4057 .name = "log_avg_msec",
e8b0e958 4058 .lname = "Log averaging (msec)",
b8bc8cba 4059 .type = FIO_OPT_INT,
a609f12a 4060 .off1 = offsetof(struct thread_options, log_avg_msec),
b8bc8cba
JA
4061 .help = "Average bw/iops/lat logs over this period of time",
4062 .def = "0",
e8b0e958 4063 .category = FIO_OPT_C_LOG,
1e613c9c
KC
4064 .group = FIO_OPT_G_INVALID,
4065 },
4066 {
4067 .name = "log_hist_msec",
4068 .lname = "Log histograms (msec)",
4069 .type = FIO_OPT_INT,
a609f12a 4070 .off1 = offsetof(struct thread_options, log_hist_msec),
1e613c9c
KC
4071 .help = "Dump completion latency histograms at frequency of this time value",
4072 .def = "0",
4073 .category = FIO_OPT_C_LOG,
4074 .group = FIO_OPT_G_INVALID,
4075 },
4076 {
4077 .name = "log_hist_coarseness",
4078 .lname = "Histogram logs coarseness",
4079 .type = FIO_OPT_INT,
a609f12a 4080 .off1 = offsetof(struct thread_options, log_hist_coarseness),
1e613c9c
KC
4081 .help = "Integer in range [0,6]. Higher coarseness outputs"
4082 " fewer histogram bins per sample. The number of bins for"
4083 " these are [1216, 608, 304, 152, 76, 38, 19] respectively.",
4084 .def = "0",
4085 .category = FIO_OPT_C_LOG,
4086 .group = FIO_OPT_G_INVALID,
4087 },
4088 {
4089 .name = "write_hist_log",
4090 .lname = "Write latency histogram logs",
dded427c 4091 .type = FIO_OPT_STR,
a609f12a 4092 .off1 = offsetof(struct thread_options, hist_log_file),
dded427c 4093 .cb = str_write_hist_log_cb,
1e613c9c
KC
4094 .help = "Write log of latency histograms during run",
4095 .category = FIO_OPT_C_LOG,
e8b0e958 4096 .group = FIO_OPT_G_INVALID,
b8bc8cba 4097 },
e6989e10
JA
4098 {
4099 .name = "log_max_value",
4100 .lname = "Log maximum instead of average",
4101 .type = FIO_OPT_BOOL,
a609f12a 4102 .off1 = offsetof(struct thread_options, log_max),
e6989e10
JA
4103 .help = "Log max sample in a window instead of average",
4104 .def = "0",
4105 .category = FIO_OPT_C_LOG,
4106 .group = FIO_OPT_G_INVALID,
4107 },
ae588852
JA
4108 {
4109 .name = "log_offset",
4110 .lname = "Log offset of IO",
4111 .type = FIO_OPT_BOOL,
a609f12a 4112 .off1 = offsetof(struct thread_options, log_offset),
ae588852
JA
4113 .help = "Include offset of IO for each log entry",
4114 .def = "0",
4115 .category = FIO_OPT_C_LOG,
4116 .group = FIO_OPT_G_INVALID,
4117 },
aee2ab67
JA
4118#ifdef CONFIG_ZLIB
4119 {
4120 .name = "log_compression",
4121 .lname = "Log compression",
4122 .type = FIO_OPT_INT,
a609f12a 4123 .off1 = offsetof(struct thread_options, log_gz),
aee2ab67 4124 .help = "Log in compressed chunks of this size",
9919b27b 4125 .minval = 1024ULL,
aee2ab67
JA
4126 .maxval = 512 * 1024 * 1024ULL,
4127 .category = FIO_OPT_C_LOG,
4128 .group = FIO_OPT_G_INVALID,
4129 },
c08f9fe2
JA
4130#ifdef FIO_HAVE_CPU_AFFINITY
4131 {
4132 .name = "log_compression_cpus",
4133 .lname = "Log Compression CPUs",
4134 .type = FIO_OPT_STR,
4135 .cb = str_log_cpus_allowed_cb,
a609f12a 4136 .off1 = offsetof(struct thread_options, log_gz_cpumask),
c08f9fe2
JA
4137 .parent = "log_compression",
4138 .help = "Limit log compression to these CPUs",
4139 .category = FIO_OPT_C_LOG,
4140 .group = FIO_OPT_G_INVALID,
4141 },
a275c37a
JA
4142#else
4143 {
4144 .name = "log_compression_cpus",
4145 .lname = "Log Compression CPUs",
4146 .type = FIO_OPT_UNSUPPORTED,
4147 .help = "Your platform does not support CPU affinities",
4148 },
c08f9fe2 4149#endif
b26317c9
JA
4150 {
4151 .name = "log_store_compressed",
4152 .lname = "Log store compressed",
4153 .type = FIO_OPT_BOOL,
a609f12a 4154 .off1 = offsetof(struct thread_options, log_gz_store),
b26317c9
JA
4155 .help = "Store logs in a compressed format",
4156 .category = FIO_OPT_C_LOG,
4157 .group = FIO_OPT_G_INVALID,
4158 },
a275c37a
JA
4159#else
4160 {
4161 .name = "log_compression",
4162 .lname = "Log compression",
4163 .type = FIO_OPT_UNSUPPORTED,
4164 .help = "Install libz-dev(el) to get compression support",
4165 },
4166 {
4167 .name = "log_store_compressed",
4168 .lname = "Log store compressed",
4169 .type = FIO_OPT_UNSUPPORTED,
4170 .help = "Install libz-dev(el) to get compression support",
4171 },
aee2ab67 4172#endif
3aea75b1
KC
4173 {
4174 .name = "log_unix_epoch",
4175 .lname = "Log epoch unix",
4176 .type = FIO_OPT_BOOL,
4177 .off1 = offsetof(struct thread_options, log_unix_epoch),
4178 .help = "Use Unix time in log files",
4179 .category = FIO_OPT_C_LOG,
4180 .group = FIO_OPT_G_INVALID,
4181 },
66347cfa
DE
4182 {
4183 .name = "block_error_percentiles",
4184 .lname = "Block error percentiles",
4185 .type = FIO_OPT_BOOL,
a609f12a 4186 .off1 = offsetof(struct thread_options, block_error_hist),
66347cfa
DE
4187 .help = "Record trim block errors and make a histogram",
4188 .def = "0",
4189 .category = FIO_OPT_C_LOG,
4190 .group = FIO_OPT_G_INVALID,
4191 },
c504ee55
JA
4192 {
4193 .name = "bwavgtime",
4194 .lname = "Bandwidth average time",
4195 .type = FIO_OPT_INT,
a609f12a 4196 .off1 = offsetof(struct thread_options, bw_avg_time),
c504ee55
JA
4197 .help = "Time window over which to calculate bandwidth"
4198 " (msec)",
4199 .def = "500",
4200 .parent = "write_bw_log",
4201 .hide = 1,
4202 .interval = 100,
4203 .category = FIO_OPT_C_LOG,
4204 .group = FIO_OPT_G_INVALID,
4205 },
4206 {
4207 .name = "iopsavgtime",
4208 .lname = "IOPS average time",
4209 .type = FIO_OPT_INT,
a609f12a 4210 .off1 = offsetof(struct thread_options, iops_avg_time),
c504ee55
JA
4211 .help = "Time window over which to calculate IOPS (msec)",
4212 .def = "500",
4213 .parent = "write_iops_log",
4214 .hide = 1,
4215 .interval = 100,
4216 .category = FIO_OPT_C_LOG,
4217 .group = FIO_OPT_G_INVALID,
4218 },
214e1eca
JA
4219 {
4220 .name = "group_reporting",
e8b0e958 4221 .lname = "Group reporting",
d2507043 4222 .type = FIO_OPT_STR_SET,
a609f12a 4223 .off1 = offsetof(struct thread_options, group_reporting),
214e1eca 4224 .help = "Do reporting on a per-group basis",
10860056 4225 .category = FIO_OPT_C_STAT,
e8b0e958 4226 .group = FIO_OPT_G_INVALID,
214e1eca 4227 },
8243be59
JA
4228 {
4229 .name = "stats",
4230 .lname = "Stats",
4231 .type = FIO_OPT_BOOL,
4232 .off1 = offsetof(struct thread_options, stats),
4233 .help = "Enable collection of stats",
4234 .def = "1",
4235 .category = FIO_OPT_C_STAT,
4236 .group = FIO_OPT_G_INVALID,
4237 },
e9459e5a
JA
4238 {
4239 .name = "zero_buffers",
e8b0e958 4240 .lname = "Zero I/O buffers",
e9459e5a 4241 .type = FIO_OPT_STR_SET,
a609f12a 4242 .off1 = offsetof(struct thread_options, zero_buffers),
e9459e5a 4243 .help = "Init IO buffers to all zeroes",
e8b0e958 4244 .category = FIO_OPT_C_IO,
3ceb458f 4245 .group = FIO_OPT_G_IO_BUF,
e9459e5a 4246 },
5973cafb
JA
4247 {
4248 .name = "refill_buffers",
e8b0e958 4249 .lname = "Refill I/O buffers",
5973cafb 4250 .type = FIO_OPT_STR_SET,
a609f12a 4251 .off1 = offsetof(struct thread_options, refill_buffers),
5973cafb 4252 .help = "Refill IO buffers on every IO submit",
e8b0e958 4253 .category = FIO_OPT_C_IO,
3ceb458f 4254 .group = FIO_OPT_G_IO_BUF,
5973cafb 4255 },
fd68418e
JA
4256 {
4257 .name = "scramble_buffers",
e8b0e958 4258 .lname = "Scramble I/O buffers",
fd68418e 4259 .type = FIO_OPT_BOOL,
a609f12a 4260 .off1 = offsetof(struct thread_options, scramble_buffers),
fd68418e
JA
4261 .help = "Slightly scramble buffers on every IO submit",
4262 .def = "1",
e8b0e958 4263 .category = FIO_OPT_C_IO,
3ceb458f 4264 .group = FIO_OPT_G_IO_BUF,
fd68418e 4265 },
ce35b1ec
JA
4266 {
4267 .name = "buffer_pattern",
4268 .lname = "Buffer pattern",
4269 .type = FIO_OPT_STR,
4270 .cb = str_buffer_pattern_cb,
a609f12a 4271 .off1 = offsetof(struct thread_options, buffer_pattern),
ce35b1ec
JA
4272 .help = "Fill pattern for IO buffers",
4273 .category = FIO_OPT_C_IO,
4274 .group = FIO_OPT_G_IO_BUF,
4275 },
9c42684e
JA
4276 {
4277 .name = "buffer_compress_percentage",
e8b0e958 4278 .lname = "Buffer compression percentage",
9c42684e 4279 .type = FIO_OPT_INT,
bedc9dc2 4280 .cb = str_buffer_compress_cb,
a609f12a 4281 .off1 = offsetof(struct thread_options, compress_percentage),
9c42684e 4282 .maxval = 100,
e7f5de90 4283 .minval = 0,
9c42684e 4284 .help = "How compressible the buffer is (approximately)",
20eb06bd 4285 .interval = 5,
e8b0e958 4286 .category = FIO_OPT_C_IO,
3ceb458f 4287 .group = FIO_OPT_G_IO_BUF,
9c42684e 4288 },
f97a43a1
JA
4289 {
4290 .name = "buffer_compress_chunk",
e8b0e958 4291 .lname = "Buffer compression chunk size",
f97a43a1 4292 .type = FIO_OPT_INT,
a609f12a 4293 .off1 = offsetof(struct thread_options, compress_chunk),
207b18e4 4294 .parent = "buffer_compress_percentage",
d71c154c 4295 .hide = 1,
f97a43a1 4296 .help = "Size of compressible region in buffer",
1de80624 4297 .def = "512",
20eb06bd 4298 .interval = 256,
e8b0e958 4299 .category = FIO_OPT_C_IO,
3ceb458f 4300 .group = FIO_OPT_G_IO_BUF,
f97a43a1 4301 },
5c94b008
JA
4302 {
4303 .name = "dedupe_percentage",
4304 .lname = "Dedupe percentage",
4305 .type = FIO_OPT_INT,
4306 .cb = str_dedupe_cb,
a609f12a 4307 .off1 = offsetof(struct thread_options, dedupe_percentage),
5c94b008
JA
4308 .maxval = 100,
4309 .minval = 0,
4310 .help = "Percentage of buffers that are dedupable",
4311 .interval = 1,
4312 .category = FIO_OPT_C_IO,
4313 .group = FIO_OPT_G_IO_BUF,
4314 },
83349190
YH
4315 {
4316 .name = "clat_percentiles",
e8b0e958 4317 .lname = "Completion latency percentiles",
83349190 4318 .type = FIO_OPT_BOOL,
a609f12a 4319 .off1 = offsetof(struct thread_options, clat_percentiles),
83349190 4320 .help = "Enable the reporting of completion latency percentiles",
467b35ed 4321 .def = "1",
b599759b
JA
4322 .category = FIO_OPT_C_STAT,
4323 .group = FIO_OPT_G_INVALID,
4324 },
4325 {
4326 .name = "lat_percentiles",
4327 .lname = "IO latency percentiles",
4328 .type = FIO_OPT_BOOL,
4329 .off1 = offsetof(struct thread_options, lat_percentiles),
4330 .help = "Enable the reporting of IO latency percentiles",
4331 .def = "0",
56440e63
VF
4332 .category = FIO_OPT_C_STAT,
4333 .group = FIO_OPT_G_INVALID,
4334 },
4335 {
4336 .name = "slat_percentiles",
4337 .lname = "Submission latency percentiles",
4338 .type = FIO_OPT_BOOL,
4339 .off1 = offsetof(struct thread_options, slat_percentiles),
4340 .help = "Enable the reporting of submission latency percentiles",
4341 .def = "0",
e8b0e958
JA
4342 .category = FIO_OPT_C_STAT,
4343 .group = FIO_OPT_G_INVALID,
83349190
YH
4344 },
4345 {
4346 .name = "percentile_list",
66347cfa 4347 .lname = "Percentile list",
83349190 4348 .type = FIO_OPT_FLOAT_LIST,
a609f12a
JA
4349 .off1 = offsetof(struct thread_options, percentile_list),
4350 .off2 = offsetof(struct thread_options, percentile_precision),
66347cfa
DE
4351 .help = "Specify a custom list of percentiles to report for "
4352 "completion latency and block errors",
fd112d34 4353 .def = "1:5:10:20:30:40:50:60:70:80:90:95:99:99.5:99.9:99.95:99.99",
83349190
YH
4354 .maxlen = FIO_IO_U_LIST_MAX_LEN,
4355 .minfp = 0.0,
4356 .maxfp = 100.0,
e8b0e958
JA
4357 .category = FIO_OPT_C_STAT,
4358 .group = FIO_OPT_G_INVALID,
e883cb35
JF
4359 },
4360 {
4361 .name = "significant_figures",
4362 .lname = "Significant figures",
4363 .type = FIO_OPT_INT,
4364 .off1 = offsetof(struct thread_options, sig_figs),
4365 .maxval = 10,
4366 .minval = 1,
4367 .help = "Significant figures for output-format set to normal",
4368 .def = "4",
4369 .interval = 1,
4370 .category = FIO_OPT_C_STAT,
4371 .group = FIO_OPT_G_INVALID,
83349190
YH
4372 },
4373
0a839f30
JA
4374#ifdef FIO_HAVE_DISK_UTIL
4375 {
4376 .name = "disk_util",
e8b0e958 4377 .lname = "Disk utilization",
0a839f30 4378 .type = FIO_OPT_BOOL,
a609f12a 4379 .off1 = offsetof(struct thread_options, do_disk_util),
f66ab3c8 4380 .help = "Log disk utilization statistics",
0a839f30 4381 .def = "1",
e8b0e958
JA
4382 .category = FIO_OPT_C_STAT,
4383 .group = FIO_OPT_G_INVALID,
0a839f30 4384 },
a275c37a
JA
4385#else
4386 {
4387 .name = "disk_util",
4388 .lname = "Disk utilization",
4389 .type = FIO_OPT_UNSUPPORTED,
4390 .help = "Your platform does not support disk utilization",
4391 },
0a839f30 4392#endif
993bf48b
JA
4393 {
4394 .name = "gtod_reduce",
e8b0e958 4395 .lname = "Reduce gettimeofday() calls",
993bf48b
JA
4396 .type = FIO_OPT_BOOL,
4397 .help = "Greatly reduce number of gettimeofday() calls",
4398 .cb = str_gtod_reduce_cb,
4399 .def = "0",
a4ed77fe 4400 .hide_on_set = 1,
e8b0e958
JA
4401 .category = FIO_OPT_C_STAT,
4402 .group = FIO_OPT_G_INVALID,
993bf48b 4403 },
02af0988
JA
4404 {
4405 .name = "disable_lat",
e8b0e958 4406 .lname = "Disable all latency stats",
02af0988 4407 .type = FIO_OPT_BOOL,
a609f12a 4408 .off1 = offsetof(struct thread_options, disable_lat),
02af0988
JA
4409 .help = "Disable latency numbers",
4410 .parent = "gtod_reduce",
d71c154c 4411 .hide = 1,
02af0988 4412 .def = "0",
e8b0e958
JA
4413 .category = FIO_OPT_C_STAT,
4414 .group = FIO_OPT_G_INVALID,
02af0988 4415 },
9520ebb9
JA
4416 {
4417 .name = "disable_clat",
e8b0e958 4418 .lname = "Disable completion latency stats",
9520ebb9 4419 .type = FIO_OPT_BOOL,
a609f12a 4420 .off1 = offsetof(struct thread_options, disable_clat),
9520ebb9 4421 .help = "Disable completion latency numbers",
993bf48b 4422 .parent = "gtod_reduce",
d71c154c 4423 .hide = 1,
9520ebb9 4424 .def = "0",
e8b0e958
JA
4425 .category = FIO_OPT_C_STAT,
4426 .group = FIO_OPT_G_INVALID,
9520ebb9
JA
4427 },
4428 {
4429 .name = "disable_slat",
e8b0e958 4430 .lname = "Disable submission latency stats",
9520ebb9 4431 .type = FIO_OPT_BOOL,
a609f12a 4432 .off1 = offsetof(struct thread_options, disable_slat),
03e20d68 4433 .help = "Disable submission latency numbers",
993bf48b 4434 .parent = "gtod_reduce",
d71c154c 4435 .hide = 1,
9520ebb9 4436 .def = "0",
e8b0e958
JA
4437 .category = FIO_OPT_C_STAT,
4438 .group = FIO_OPT_G_INVALID,
9520ebb9
JA
4439 },
4440 {
4441 .name = "disable_bw_measurement",
afd2ceff 4442 .alias = "disable_bw",
e8b0e958 4443 .lname = "Disable bandwidth stats",
9520ebb9 4444 .type = FIO_OPT_BOOL,
a609f12a 4445 .off1 = offsetof(struct thread_options, disable_bw),
9520ebb9 4446 .help = "Disable bandwidth logging",
993bf48b 4447 .parent = "gtod_reduce",
d71c154c 4448 .hide = 1,
9520ebb9 4449 .def = "0",
e8b0e958
JA
4450 .category = FIO_OPT_C_STAT,
4451 .group = FIO_OPT_G_INVALID,
9520ebb9 4452 },
be4ecfdf
JA
4453 {
4454 .name = "gtod_cpu",
e8b0e958 4455 .lname = "Dedicated gettimeofday() CPU",
be4ecfdf 4456 .type = FIO_OPT_INT,
a609f12a 4457 .off1 = offsetof(struct thread_options, gtod_cpu),
03e20d68 4458 .help = "Set up dedicated gettimeofday() thread on this CPU",
29d43ff9 4459 .verify = gtod_cpu_verify,
e8b0e958 4460 .category = FIO_OPT_C_GENERAL,
10860056 4461 .group = FIO_OPT_G_CLOCK,
be4ecfdf 4462 },
771e58be
JA
4463 {
4464 .name = "unified_rw_reporting",
cce2fdfe 4465 .lname = "Unified RW Reporting",
771e58be 4466 .type = FIO_OPT_BOOL,
a609f12a 4467 .off1 = offsetof(struct thread_options, unified_rw_rep),
771e58be
JA
4468 .help = "Unify reporting across data direction",
4469 .def = "0",
90b7a96d
JA
4470 .category = FIO_OPT_C_GENERAL,
4471 .group = FIO_OPT_G_INVALID,
771e58be 4472 },
f2bba182
RR
4473 {
4474 .name = "continue_on_error",
e8b0e958 4475 .lname = "Continue on error",
06842027 4476 .type = FIO_OPT_STR,
a609f12a 4477 .off1 = offsetof(struct thread_options, continue_on_error),
03e20d68 4478 .help = "Continue on non-fatal errors during IO",
06842027 4479 .def = "none",
e8b0e958 4480 .category = FIO_OPT_C_GENERAL,
bc3f552f 4481 .group = FIO_OPT_G_ERR,
06842027
SL
4482 .posval = {
4483 { .ival = "none",
4484 .oval = ERROR_TYPE_NONE,
4485 .help = "Exit when an error is encountered",
4486 },
4487 { .ival = "read",
4488 .oval = ERROR_TYPE_READ,
4489 .help = "Continue on read errors only",
4490 },
4491 { .ival = "write",
4492 .oval = ERROR_TYPE_WRITE,
4493 .help = "Continue on write errors only",
4494 },
4495 { .ival = "io",
4496 .oval = ERROR_TYPE_READ | ERROR_TYPE_WRITE,
4497 .help = "Continue on any IO errors",
4498 },
4499 { .ival = "verify",
4500 .oval = ERROR_TYPE_VERIFY,
4501 .help = "Continue on verify errors only",
4502 },
4503 { .ival = "all",
4504 .oval = ERROR_TYPE_ANY,
4505 .help = "Continue on all io and verify errors",
4506 },
4507 { .ival = "0",
4508 .oval = ERROR_TYPE_NONE,
4509 .help = "Alias for 'none'",
4510 },
4511 { .ival = "1",
4512 .oval = ERROR_TYPE_ANY,
4513 .help = "Alias for 'all'",
4514 },
4515 },
f2bba182 4516 },
8b28bd41
DM
4517 {
4518 .name = "ignore_error",
cce2fdfe 4519 .lname = "Ignore Error",
8b28bd41
DM
4520 .type = FIO_OPT_STR,
4521 .cb = str_ignore_error_cb,
a609f12a 4522 .off1 = offsetof(struct thread_options, ignore_error_nr),
8b28bd41
DM
4523 .help = "Set a specific list of errors to ignore",
4524 .parent = "rw",
a94eb99a 4525 .category = FIO_OPT_C_GENERAL,
bc3f552f 4526 .group = FIO_OPT_G_ERR,
8b28bd41
DM
4527 },
4528 {
4529 .name = "error_dump",
cce2fdfe 4530 .lname = "Error Dump",
8b28bd41 4531 .type = FIO_OPT_BOOL,
a609f12a 4532 .off1 = offsetof(struct thread_options, error_dump),
8b28bd41
DM
4533 .def = "0",
4534 .help = "Dump info on each error",
a94eb99a 4535 .category = FIO_OPT_C_GENERAL,
bc3f552f 4536 .group = FIO_OPT_G_ERR,
8b28bd41 4537 },
9ac8a797
JA
4538 {
4539 .name = "profile",
e8b0e958 4540 .lname = "Profile",
79d16311 4541 .type = FIO_OPT_STR_STORE,
a609f12a 4542 .off1 = offsetof(struct thread_options, profile),
9ac8a797 4543 .help = "Select a specific builtin performance test",
13fca827 4544 .category = FIO_OPT_C_PROFILE,
e8b0e958 4545 .group = FIO_OPT_G_INVALID,
9ac8a797 4546 },
a696fa2a
JA
4547 {
4548 .name = "cgroup",
e8b0e958 4549 .lname = "Cgroup",
a696fa2a 4550 .type = FIO_OPT_STR_STORE,
a609f12a 4551 .off1 = offsetof(struct thread_options, cgroup),
a696fa2a 4552 .help = "Add job to cgroup of this name",
e8b0e958 4553 .category = FIO_OPT_C_GENERAL,
a1f6afec
JA
4554 .group = FIO_OPT_G_CGROUP,
4555 },
4556 {
4557 .name = "cgroup_nodelete",
4558 .lname = "Cgroup no-delete",
4559 .type = FIO_OPT_BOOL,
a609f12a 4560 .off1 = offsetof(struct thread_options, cgroup_nodelete),
a1f6afec
JA
4561 .help = "Do not delete cgroups after job completion",
4562 .def = "0",
4563 .parent = "cgroup",
4564 .category = FIO_OPT_C_GENERAL,
4565 .group = FIO_OPT_G_CGROUP,
a696fa2a
JA
4566 },
4567 {
4568 .name = "cgroup_weight",
e8b0e958 4569 .lname = "Cgroup weight",
a696fa2a 4570 .type = FIO_OPT_INT,
a609f12a 4571 .off1 = offsetof(struct thread_options, cgroup_weight),
a696fa2a
JA
4572 .help = "Use given weight for cgroup",
4573 .minval = 100,
4574 .maxval = 1000,
a1f6afec 4575 .parent = "cgroup",
e8b0e958 4576 .category = FIO_OPT_C_GENERAL,
a1f6afec 4577 .group = FIO_OPT_G_CGROUP,
7de87099 4578 },
e0b0d892
JA
4579 {
4580 .name = "uid",
e8b0e958 4581 .lname = "User ID",
e0b0d892 4582 .type = FIO_OPT_INT,
a609f12a 4583 .off1 = offsetof(struct thread_options, uid),
e0b0d892 4584 .help = "Run job with this user ID",
e8b0e958 4585 .category = FIO_OPT_C_GENERAL,
10860056 4586 .group = FIO_OPT_G_CRED,
e0b0d892
JA
4587 },
4588 {
4589 .name = "gid",
e8b0e958 4590 .lname = "Group ID",
e0b0d892 4591 .type = FIO_OPT_INT,
a609f12a 4592 .off1 = offsetof(struct thread_options, gid),
e0b0d892 4593 .help = "Run job with this group ID",
e8b0e958 4594 .category = FIO_OPT_C_GENERAL,
10860056 4595 .group = FIO_OPT_G_CRED,
e0b0d892 4596 },
a1f6afec
JA
4597 {
4598 .name = "kb_base",
4599 .lname = "KB Base",
41dd12d6 4600 .type = FIO_OPT_STR,
a609f12a 4601 .off1 = offsetof(struct thread_options, kb_base),
a1f6afec
JA
4602 .prio = 1,
4603 .def = "1024",
ba9c7219
JA
4604 .posval = {
4605 { .ival = "1024",
4606 .oval = 1024,
d694a6a7 4607 .help = "Inputs invert IEC and SI prefixes (for compatibility); outputs prefer binary",
ba9c7219
JA
4608 },
4609 { .ival = "1000",
4610 .oval = 1000,
d694a6a7 4611 .help = "Inputs use IEC and SI prefixes; outputs prefer SI",
ba9c7219
JA
4612 },
4613 },
d694a6a7 4614 .help = "Unit prefix interpretation for quantities of data (IEC and SI)",
a1f6afec
JA
4615 .category = FIO_OPT_C_GENERAL,
4616 .group = FIO_OPT_G_INVALID,
4617 },
cf3a0518
JA
4618 {
4619 .name = "unit_base",
d694a6a7 4620 .lname = "Unit for quantities of data (Bits or Bytes)",
92a1a1d7 4621 .type = FIO_OPT_STR,
a609f12a 4622 .off1 = offsetof(struct thread_options, unit_base),
cf3a0518 4623 .prio = 1,
71a08258
JA
4624 .posval = {
4625 { .ival = "0",
41a87019 4626 .oval = N2S_NONE,
71a08258
JA
4627 .help = "Auto-detect",
4628 },
4629 { .ival = "8",
41a87019 4630 .oval = N2S_BYTEPERSEC,
71a08258
JA
4631 .help = "Normal (byte based)",
4632 },
4633 { .ival = "1",
41a87019 4634 .oval = N2S_BITPERSEC,
71a08258
JA
4635 .help = "Bit based",
4636 },
4637 },
cf3a0518
JA
4638 .help = "Bit multiple of result summary data (8 for byte, 1 for bit)",
4639 .category = FIO_OPT_C_GENERAL,
4640 .group = FIO_OPT_G_INVALID,
4641 },
3ceb458f
JA
4642 {
4643 .name = "hugepage-size",
4644 .lname = "Hugepage size",
4645 .type = FIO_OPT_INT,
a609f12a 4646 .off1 = offsetof(struct thread_options, hugepage_size),
3ceb458f
JA
4647 .help = "When using hugepages, specify size of each page",
4648 .def = __fio_stringify(FIO_HUGE_PAGE),
4649 .interval = 1024 * 1024,
4650 .category = FIO_OPT_C_GENERAL,
4651 .group = FIO_OPT_G_INVALID,
4652 },
9e684a49
DE
4653 {
4654 .name = "flow_id",
e8b0e958 4655 .lname = "I/O flow ID",
9e684a49 4656 .type = FIO_OPT_INT,
a609f12a 4657 .off1 = offsetof(struct thread_options, flow_id),
9e684a49
DE
4658 .help = "The flow index ID to use",
4659 .def = "0",
e8b0e958
JA
4660 .category = FIO_OPT_C_IO,
4661 .group = FIO_OPT_G_IO_FLOW,
9e684a49
DE
4662 },
4663 {
4664 .name = "flow",
e8b0e958 4665 .lname = "I/O flow weight",
9e684a49 4666 .type = FIO_OPT_INT,
a609f12a 4667 .off1 = offsetof(struct thread_options, flow),
9e684a49
DE
4668 .help = "Weight for flow control of this job",
4669 .parent = "flow_id",
d71c154c 4670 .hide = 1,
9e684a49 4671 .def = "0",
e8b0e958
JA
4672 .category = FIO_OPT_C_IO,
4673 .group = FIO_OPT_G_IO_FLOW,
9e684a49
DE
4674 },
4675 {
4676 .name = "flow_watermark",
e8b0e958 4677 .lname = "I/O flow watermark",
9e684a49 4678 .type = FIO_OPT_INT,
a609f12a 4679 .off1 = offsetof(struct thread_options, flow_watermark),
9e684a49
DE
4680 .help = "High watermark for flow control. This option"
4681 " should be set to the same value for all threads"
4682 " with non-zero flow.",
4683 .parent = "flow_id",
d71c154c 4684 .hide = 1,
9e684a49 4685 .def = "1024",
e8b0e958
JA
4686 .category = FIO_OPT_C_IO,
4687 .group = FIO_OPT_G_IO_FLOW,
9e684a49
DE
4688 },
4689 {
4690 .name = "flow_sleep",
e8b0e958 4691 .lname = "I/O flow sleep",
9e684a49 4692 .type = FIO_OPT_INT,
a609f12a 4693 .off1 = offsetof(struct thread_options, flow_sleep),
9e684a49
DE
4694 .help = "How many microseconds to sleep after being held"
4695 " back by the flow control mechanism",
4696 .parent = "flow_id",
d71c154c 4697 .hide = 1,
9e684a49 4698 .def = "0",
e8b0e958
JA
4699 .category = FIO_OPT_C_IO,
4700 .group = FIO_OPT_G_IO_FLOW,
9e684a49 4701 },
16e56d25
VF
4702 {
4703 .name = "steadystate",
4704 .lname = "Steady state threshold",
4705 .alias = "ss",
4706 .type = FIO_OPT_STR,
2c5d94bc 4707 .off1 = offsetof(struct thread_options, ss_state),
16e56d25
VF
4708 .cb = str_steadystate_cb,
4709 .help = "Define the criterion and limit to judge when a job has reached steady state",
4710 .def = "iops_slope:0.01%",
4711 .posval = {
4712 { .ival = "iops",
f0c50c66 4713 .oval = FIO_SS_IOPS,
16e56d25
VF
4714 .help = "maximum mean deviation of IOPS measurements",
4715 },
4716 { .ival = "iops_slope",
f0c50c66 4717 .oval = FIO_SS_IOPS_SLOPE,
16e56d25
VF
4718 .help = "slope calculated from IOPS measurements",
4719 },
4720 { .ival = "bw",
f0c50c66 4721 .oval = FIO_SS_BW,
16e56d25
VF
4722 .help = "maximum mean deviation of bandwidth measurements",
4723 },
4724 {
4725 .ival = "bw_slope",
f0c50c66 4726 .oval = FIO_SS_BW_SLOPE,
16e56d25
VF
4727 .help = "slope calculated from bandwidth measurements",
4728 },
4729 },
4730 .category = FIO_OPT_C_GENERAL,
4731 .group = FIO_OPT_G_RUNTIME,
4732 },
4733 {
4734 .name = "steadystate_duration",
4735 .lname = "Steady state duration",
4736 .alias = "ss_dur",
915ca980 4737 .parent = "steadystate",
16e56d25
VF
4738 .type = FIO_OPT_STR_VAL_TIME,
4739 .off1 = offsetof(struct thread_options, ss_dur),
4740 .help = "Stop workload upon attaining steady state for specified duration",
4741 .def = "0",
4742 .is_seconds = 1,
4743 .is_time = 1,
4744 .category = FIO_OPT_C_GENERAL,
4745 .group = FIO_OPT_G_RUNTIME,
4746 },
4747 {
4748 .name = "steadystate_ramp_time",
4749 .lname = "Steady state ramp time",
4750 .alias = "ss_ramp",
915ca980 4751 .parent = "steadystate",
16e56d25
VF
4752 .type = FIO_OPT_STR_VAL_TIME,
4753 .off1 = offsetof(struct thread_options, ss_ramp_time),
4754 .help = "Delay before initiation of data collection for steady state job termination testing",
4755 .def = "0",
4756 .is_seconds = 1,
4757 .is_time = 1,
4758 .category = FIO_OPT_C_GENERAL,
4759 .group = FIO_OPT_G_RUNTIME,
4760 },
214e1eca
JA
4761 {
4762 .name = NULL,
4763 },
4764};
4765
17af15d4 4766static void add_to_lopt(struct option *lopt, struct fio_option *o,
de890a1e 4767 const char *name, int val)
9f81736c 4768{
17af15d4 4769 lopt->name = (char *) name;
de890a1e 4770 lopt->val = val;
9f81736c 4771 if (o->type == FIO_OPT_STR_SET)
ff52be3d 4772 lopt->has_arg = optional_argument;
9f81736c
JA
4773 else
4774 lopt->has_arg = required_argument;
4775}
4776
de890a1e
SL
4777static void options_to_lopts(struct fio_option *opts,
4778 struct option *long_options,
4779 int i, int option_type)
214e1eca 4780{
de890a1e 4781 struct fio_option *o = &opts[0];
214e1eca 4782 while (o->name) {
de890a1e 4783 add_to_lopt(&long_options[i], o, o->name, option_type);
17af15d4
JA
4784 if (o->alias) {
4785 i++;
de890a1e 4786 add_to_lopt(&long_options[i], o, o->alias, option_type);
17af15d4 4787 }
214e1eca
JA
4788
4789 i++;
4790 o++;
4791 assert(i < FIO_NR_OPTIONS);
4792 }
4793}
4794
de890a1e
SL
4795void fio_options_set_ioengine_opts(struct option *long_options,
4796 struct thread_data *td)
4797{
4798 unsigned int i;
4799
4800 i = 0;
4801 while (long_options[i].name) {
4802 if (long_options[i].val == FIO_GETOPT_IOENGINE) {
4803 memset(&long_options[i], 0, sizeof(*long_options));
4804 break;
4805 }
4806 i++;
4807 }
4808
4809 /*
4810 * Just clear out the prior ioengine options.
4811 */
4812 if (!td || !td->eo)
4813 return;
4814
4815 options_to_lopts(td->io_ops->options, long_options, i,
4816 FIO_GETOPT_IOENGINE);
4817}
4818
4819void fio_options_dup_and_init(struct option *long_options)
4820{
4821 unsigned int i;
4822
9af4a244 4823 options_init(fio_options);
de890a1e
SL
4824
4825 i = 0;
4826 while (long_options[i].name)
4827 i++;
4828
9af4a244 4829 options_to_lopts(fio_options, long_options, i, FIO_GETOPT_JOB);
de890a1e
SL
4830}
4831
74929ac2
JA
4832struct fio_keyword {
4833 const char *word;
4834 const char *desc;
4835 char *replace;
4836};
4837
4838static struct fio_keyword fio_keywords[] = {
4839 {
4840 .word = "$pagesize",
4841 .desc = "Page size in the system",
4842 },
4843 {
4844 .word = "$mb_memory",
4845 .desc = "Megabytes of memory online",
4846 },
4847 {
4848 .word = "$ncpus",
4849 .desc = "Number of CPUs online in the system",
4850 },
4851 {
4852 .word = NULL,
4853 },
4854};
4855
af1dc266
JA
4856void fio_keywords_exit(void)
4857{
4858 struct fio_keyword *kw;
4859
4860 kw = &fio_keywords[0];
4861 while (kw->word) {
4862 free(kw->replace);
4863 kw->replace = NULL;
4864 kw++;
4865 }
4866}
4867
74929ac2
JA
4868void fio_keywords_init(void)
4869{
3b2e1464 4870 unsigned long long mb_memory;
74929ac2
JA
4871 char buf[128];
4872 long l;
4873
a4cfc477 4874 sprintf(buf, "%lu", (unsigned long) page_size);
74929ac2
JA
4875 fio_keywords[0].replace = strdup(buf);
4876
8eb016d3 4877 mb_memory = os_phys_mem() / (1024 * 1024);
3b2e1464 4878 sprintf(buf, "%llu", mb_memory);
74929ac2
JA
4879 fio_keywords[1].replace = strdup(buf);
4880
c00a2289 4881 l = cpus_online();
74929ac2
JA
4882 sprintf(buf, "%lu", l);
4883 fio_keywords[2].replace = strdup(buf);
4884}
4885
892a6ffc
JA
4886#define BC_APP "bc"
4887
4888static char *bc_calc(char *str)
4889{
d0c814ec 4890 char buf[128], *tmp;
892a6ffc
JA
4891 FILE *f;
4892 int ret;
4893
4894 /*
4895 * No math, just return string
4896 */
d0c814ec
SL
4897 if ((!strchr(str, '+') && !strchr(str, '-') && !strchr(str, '*') &&
4898 !strchr(str, '/')) || strchr(str, '\''))
892a6ffc
JA
4899 return str;
4900
4901 /*
4902 * Split option from value, we only need to calculate the value
4903 */
4904 tmp = strchr(str, '=');
4905 if (!tmp)
4906 return str;
4907
4908 tmp++;
892a6ffc 4909
d0c814ec
SL
4910 /*
4911 * Prevent buffer overflows; such a case isn't reasonable anyway
4912 */
4913 if (strlen(str) >= 128 || strlen(tmp) > 100)
4914 return str;
892a6ffc
JA
4915
4916 sprintf(buf, "which %s > /dev/null", BC_APP);
4917 if (system(buf)) {
4918 log_err("fio: bc is needed for performing math\n");
892a6ffc
JA
4919 return NULL;
4920 }
4921
d0c814ec 4922 sprintf(buf, "echo '%s' | %s", tmp, BC_APP);
892a6ffc 4923 f = popen(buf, "r");
3c3ed070 4924 if (!f)
892a6ffc 4925 return NULL;
892a6ffc 4926
d0c814ec 4927 ret = fread(&buf[tmp - str], 1, 128 - (tmp - str), f);
1d824f37
JA
4928 if (ret <= 0) {
4929 pclose(f);
892a6ffc 4930 return NULL;
1d824f37 4931 }
892a6ffc 4932
892a6ffc 4933 pclose(f);
d0c814ec
SL
4934 buf[(tmp - str) + ret - 1] = '\0';
4935 memcpy(buf, str, tmp - str);
892a6ffc 4936 free(str);
d0c814ec
SL
4937 return strdup(buf);
4938}
4939
4940/*
4941 * Return a copy of the input string with substrings of the form ${VARNAME}
4942 * substituted with the value of the environment variable VARNAME. The
4943 * substitution always occurs, even if VARNAME is empty or the corresponding
4944 * environment variable undefined.
4945 */
b4f5e72f 4946char *fio_option_dup_subs(const char *opt)
d0c814ec
SL
4947{
4948 char out[OPT_LEN_MAX+1];
4949 char in[OPT_LEN_MAX+1];
4950 char *outptr = out;
4951 char *inptr = in;
4952 char *ch1, *ch2, *env;
4953 ssize_t nchr = OPT_LEN_MAX;
4954 size_t envlen;
4955
4956 if (strlen(opt) + 1 > OPT_LEN_MAX) {
4957 log_err("OPT_LEN_MAX (%d) is too small\n", OPT_LEN_MAX);
4958 return NULL;
4959 }
4960
36833fb0 4961 snprintf(in, sizeof(in), "%s", opt);
d0c814ec
SL
4962
4963 while (*inptr && nchr > 0) {
4964 if (inptr[0] == '$' && inptr[1] == '{') {
4965 ch2 = strchr(inptr, '}');
4966 if (ch2 && inptr+1 < ch2) {
4967 ch1 = inptr+2;
4968 inptr = ch2+1;
4969 *ch2 = '\0';
4970
4971 env = getenv(ch1);
4972 if (env) {
4973 envlen = strlen(env);
4974 if (envlen <= nchr) {
4975 memcpy(outptr, env, envlen);
4976 outptr += envlen;
4977 nchr -= envlen;
4978 }
4979 }
4980
4981 continue;
4982 }
4983 }
4984
4985 *outptr++ = *inptr++;
4986 --nchr;
4987 }
4988
4989 *outptr = '\0';
4990 return strdup(out);
892a6ffc
JA
4991}
4992
74929ac2
JA
4993/*
4994 * Look for reserved variable names and replace them with real values
4995 */
4996static char *fio_keyword_replace(char *opt)
4997{
4998 char *s;
4999 int i;
d0c814ec 5000 int docalc = 0;
74929ac2
JA
5001
5002 for (i = 0; fio_keywords[i].word != NULL; i++) {
5003 struct fio_keyword *kw = &fio_keywords[i];
5004
5005 while ((s = strstr(opt, kw->word)) != NULL) {
5006 char *new = malloc(strlen(opt) + 1);
5007 char *o_org = opt;
5008 int olen = s - opt;
5009 int len;
5010
5011 /*
5012 * Copy part of the string before the keyword and
5013 * sprintf() the replacement after it.
5014 */
5015 memcpy(new, opt, olen);
5016 len = sprintf(new + olen, "%s", kw->replace);
5017
5018 /*
5019 * If there's more in the original string, copy that
5020 * in too
5021 */
5022 opt += strlen(kw->word) + olen;
5023 if (strlen(opt))
5024 memcpy(new + olen + len, opt, opt - o_org - 1);
5025
5026 /*
5027 * replace opt and free the old opt
5028 */
5029 opt = new;
d0c814ec 5030 free(o_org);
7a958bd5 5031
d0c814ec 5032 docalc = 1;
74929ac2
JA
5033 }
5034 }
5035
d0c814ec
SL
5036 /*
5037 * Check for potential math and invoke bc, if possible
5038 */
5039 if (docalc)
5040 opt = bc_calc(opt);
5041
7a958bd5 5042 return opt;
74929ac2
JA
5043}
5044
d0c814ec
SL
5045static char **dup_and_sub_options(char **opts, int num_opts)
5046{
5047 int i;
5048 char **opts_copy = malloc(num_opts * sizeof(*opts));
5049 for (i = 0; i < num_opts; i++) {
b4f5e72f 5050 opts_copy[i] = fio_option_dup_subs(opts[i]);
d0c814ec
SL
5051 if (!opts_copy[i])
5052 continue;
5053 opts_copy[i] = fio_keyword_replace(opts_copy[i]);
5054 }
5055 return opts_copy;
5056}
5057
e15b023b 5058static void show_closest_option(const char *opt)
a2d027b9
JA
5059{
5060 int best_option, best_distance;
5061 int i, distance;
e15b023b
JA
5062 char *name;
5063
5064 if (!strlen(opt))
5065 return;
5066
5067 name = strdup(opt);
5068 i = 0;
5069 while (name[i] != '\0' && name[i] != '=')
5070 i++;
5071 name[i] = '\0';
a2d027b9
JA
5072
5073 best_option = -1;
5074 best_distance = INT_MAX;
5075 i = 0;
5076 while (fio_options[i].name) {
5077 distance = string_distance(name, fio_options[i].name);
5078 if (distance < best_distance) {
5079 best_distance = distance;
5080 best_option = i;
5081 }
5082 i++;
5083 }
5084
75e6bcba
JA
5085 if (best_option != -1 && string_distance_ok(name, best_distance) &&
5086 fio_options[best_option].type != FIO_OPT_UNSUPPORTED)
a2d027b9 5087 log_err("Did you mean %s?\n", fio_options[best_option].name);
e15b023b
JA
5088
5089 free(name);
a2d027b9
JA
5090}
5091
c2292325 5092int fio_options_parse(struct thread_data *td, char **opts, int num_opts)
214e1eca 5093{
de890a1e 5094 int i, ret, unknown;
d0c814ec 5095 char **opts_copy;
3b8b7135 5096
9af4a244 5097 sort_options(opts, fio_options, num_opts);
d0c814ec 5098 opts_copy = dup_and_sub_options(opts, num_opts);
3b8b7135 5099
de890a1e 5100 for (ret = 0, i = 0, unknown = 0; i < num_opts; i++) {
9109883a 5101 const struct fio_option *o;
9af4a244 5102 int newret = parse_option(opts_copy[i], opts[i], fio_options,
a609f12a 5103 &o, &td->o, &td->opt_list);
d0c814ec 5104
a8523a6a
JA
5105 if (!newret && o)
5106 fio_option_mark_set(&td->o, o);
5107
de890a1e
SL
5108 if (opts_copy[i]) {
5109 if (newret && !o) {
5110 unknown++;
5111 continue;
5112 }
d0c814ec 5113 free(opts_copy[i]);
de890a1e
SL
5114 opts_copy[i] = NULL;
5115 }
5116
5117 ret |= newret;
5118 }
5119
5120 if (unknown) {
5121 ret |= ioengine_load(td);
5122 if (td->eo) {
5123 sort_options(opts_copy, td->io_ops->options, num_opts);
5124 opts = opts_copy;
5125 }
5126 for (i = 0; i < num_opts; i++) {
9109883a 5127 const struct fio_option *o = NULL;
de890a1e 5128 int newret = 1;
a2d027b9 5129
de890a1e
SL
5130 if (!opts_copy[i])
5131 continue;
5132
5133 if (td->eo)
5134 newret = parse_option(opts_copy[i], opts[i],
5135 td->io_ops->options, &o,
66e19a38 5136 td->eo, &td->opt_list);
de890a1e
SL
5137
5138 ret |= newret;
a2d027b9 5139 if (!o) {
de890a1e 5140 log_err("Bad option <%s>\n", opts[i]);
a2d027b9
JA
5141 show_closest_option(opts[i]);
5142 }
de890a1e
SL
5143 free(opts_copy[i]);
5144 opts_copy[i] = NULL;
5145 }
74929ac2 5146 }
3b8b7135 5147
d0c814ec 5148 free(opts_copy);
3b8b7135 5149 return ret;
214e1eca
JA
5150}
5151
5152int fio_cmd_option_parse(struct thread_data *td, const char *opt, char *val)
5153{
a8523a6a
JA
5154 int ret;
5155
a609f12a 5156 ret = parse_cmd_option(opt, val, fio_options, &td->o, &td->opt_list);
a8523a6a 5157 if (!ret) {
9109883a 5158 const struct fio_option *o;
a8523a6a 5159
9109883a 5160 o = find_option_c(fio_options, opt);
a8523a6a
JA
5161 if (o)
5162 fio_option_mark_set(&td->o, o);
5163 }
5164
5165 return ret;
214e1eca
JA
5166}
5167
de890a1e
SL
5168int fio_cmd_ioengine_option_parse(struct thread_data *td, const char *opt,
5169 char *val)
5170{
d8b4f395
JA
5171 return parse_cmd_option(opt, val, td->io_ops->options, td->eo,
5172 &td->opt_list);
de890a1e
SL
5173}
5174
214e1eca
JA
5175void fio_fill_default_options(struct thread_data *td)
5176{
cb1402d6 5177 td->o.magic = OPT_MAGIC;
a609f12a 5178 fill_default_options(&td->o, fio_options);
214e1eca
JA
5179}
5180
5181int fio_show_option_help(const char *opt)
5182{
9af4a244 5183 return show_cmd_help(fio_options, opt);
214e1eca 5184}
d23bb327 5185
de890a1e
SL
5186/*
5187 * dupe FIO_OPT_STR_STORE options
5188 */
5189void fio_options_mem_dupe(struct thread_data *td)
5190{
53b5693d 5191 options_mem_dupe(fio_options, &td->o);
1647f592
JA
5192
5193 if (td->eo && td->io_ops) {
de890a1e 5194 void *oldeo = td->eo;
1647f592 5195
de890a1e
SL
5196 td->eo = malloc(td->io_ops->option_struct_size);
5197 memcpy(td->eo, oldeo, td->io_ops->option_struct_size);
53b5693d 5198 options_mem_dupe(td->io_ops->options, td->eo);
de890a1e
SL
5199 }
5200}
5201
d6978a32
JA
5202unsigned int fio_get_kb_base(void *data)
5203{
a609f12a
JA
5204 struct thread_data *td = cb_data_to_td(data);
5205 struct thread_options *o = &td->o;
d6978a32
JA
5206 unsigned int kb_base = 0;
5207
cb1402d6
JA
5208 /*
5209 * This is a hack... For private options, *data is not holding
5210 * a pointer to the thread_options, but to private data. This means
5211 * we can't safely dereference it, but magic is first so mem wise
5212 * it is valid. But this also means that if the job first sets
5213 * kb_base and expects that to be honored by private options,
5214 * it will be disappointed. We will return the global default
5215 * for this.
5216 */
5217 if (o && o->magic == OPT_MAGIC)
83ea422a 5218 kb_base = o->kb_base;
d6978a32
JA
5219 if (!kb_base)
5220 kb_base = 1024;
5221
5222 return kb_base;
5223}
9f988e2e 5224
9109883a 5225int add_option(const struct fio_option *o)
9f988e2e 5226{
07b3232d
JA
5227 struct fio_option *__o;
5228 int opt_index = 0;
5229
9af4a244 5230 __o = fio_options;
07b3232d
JA
5231 while (__o->name) {
5232 opt_index++;
5233 __o++;
5234 }
5235
7b504edd
JA
5236 if (opt_index + 1 == FIO_MAX_OPTS) {
5237 log_err("fio: FIO_MAX_OPTS is too small\n");
5238 return 1;
5239 }
5240
9af4a244 5241 memcpy(&fio_options[opt_index], o, sizeof(*o));
7b504edd 5242 fio_options[opt_index + 1].name = NULL;
07b3232d 5243 return 0;
9f988e2e 5244}
e2de69da 5245
07b3232d 5246void invalidate_profile_options(const char *prof_name)
e2de69da 5247{
07b3232d 5248 struct fio_option *o;
e2de69da 5249
9af4a244 5250 o = fio_options;
07b3232d
JA
5251 while (o->name) {
5252 if (o->prof_name && !strcmp(o->prof_name, prof_name)) {
5253 o->type = FIO_OPT_INVALID;
5254 o->prof_name = NULL;
5255 }
5256 o++;
e2de69da
JA
5257 }
5258}
f5b6bb85
JA
5259
5260void add_opt_posval(const char *optname, const char *ival, const char *help)
5261{
5262 struct fio_option *o;
5263 unsigned int i;
5264
9af4a244 5265 o = find_option(fio_options, optname);
f5b6bb85
JA
5266 if (!o)
5267 return;
5268
5269 for (i = 0; i < PARSE_MAX_VP; i++) {
5270 if (o->posval[i].ival)
5271 continue;
5272
5273 o->posval[i].ival = ival;
5274 o->posval[i].help = help;
5275 break;
5276 }
5277}
5278
5279void del_opt_posval(const char *optname, const char *ival)
5280{
5281 struct fio_option *o;
5282 unsigned int i;
5283
9af4a244 5284 o = find_option(fio_options, optname);
f5b6bb85
JA
5285 if (!o)
5286 return;
5287
5288 for (i = 0; i < PARSE_MAX_VP; i++) {
5289 if (!o->posval[i].ival)
5290 continue;
5291 if (strcmp(o->posval[i].ival, ival))
5292 continue;
5293
5294 o->posval[i].ival = NULL;
5295 o->posval[i].help = NULL;
5296 }
5297}
7e356b2d
JA
5298
5299void fio_options_free(struct thread_data *td)
5300{
ca6336a8 5301 options_free(fio_options, &td->o);
de890a1e
SL
5302 if (td->eo && td->io_ops && td->io_ops->options) {
5303 options_free(td->io_ops->options, td->eo);
5304 free(td->eo);
5305 td->eo = NULL;
5306 }
7e356b2d 5307}
c504ee55
JA
5308
5309struct fio_option *fio_option_find(const char *name)
5310{
5311 return find_option(fio_options, name);
5312}
5313
517c9c72 5314static struct fio_option *find_next_opt(struct fio_option *from,
f0e7f45a 5315 unsigned int off1)
a8523a6a 5316{
f0e7f45a 5317 struct fio_option *opt;
a8523a6a 5318
f0e7f45a
JA
5319 if (!from)
5320 from = &fio_options[0];
5321 else
5322 from++;
5323
5324 opt = NULL;
5325 do {
5326 if (off1 == from->off1) {
5327 opt = from;
a8523a6a
JA
5328 break;
5329 }
f0e7f45a
JA
5330 from++;
5331 } while (from->name);
a8523a6a 5332
f0e7f45a
JA
5333 return opt;
5334}
5335
5336static int opt_is_set(struct thread_options *o, struct fio_option *opt)
5337{
5338 unsigned int opt_off, index, offset;
a8523a6a
JA
5339
5340 opt_off = opt - &fio_options[0];
5341 index = opt_off / (8 * sizeof(uint64_t));
5342 offset = opt_off & ((8 * sizeof(uint64_t)) - 1);
e9d686d6 5343 return (o->set_options[index] & ((uint64_t)1 << offset)) != 0;
a8523a6a
JA
5344}
5345
72f39748 5346bool __fio_option_is_set(struct thread_options *o, unsigned int off1)
f0e7f45a
JA
5347{
5348 struct fio_option *opt, *next;
5349
5350 next = NULL;
517c9c72 5351 while ((opt = find_next_opt(next, off1)) != NULL) {
f0e7f45a 5352 if (opt_is_set(o, opt))
72f39748 5353 return true;
f0e7f45a
JA
5354
5355 next = opt;
5356 }
5357
72f39748 5358 return false;
f0e7f45a
JA
5359}
5360
9109883a 5361void fio_option_mark_set(struct thread_options *o, const struct fio_option *opt)
a8523a6a
JA
5362{
5363 unsigned int opt_off, index, offset;
5364
5365 opt_off = opt - &fio_options[0];
5366 index = opt_off / (8 * sizeof(uint64_t));
5367 offset = opt_off & ((8 * sizeof(uint64_t)) - 1);
e9d686d6 5368 o->set_options[index] |= (uint64_t)1 << offset;
a8523a6a 5369}