parse: for option with posval, dump allowed values on failure
[fio.git] / options.c
CommitLineData
214e1eca
JA
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>
921c766f 7#include <libgen.h>
5921e80c
JA
8#include <fcntl.h>
9#include <sys/types.h>
10#include <sys/stat.h>
214e1eca
JA
11
12#include "fio.h"
4f5af7b2 13#include "verify.h"
214e1eca 14#include "parse.h"
eef32359 15#include "lib/fls.h"
9f988e2e 16#include "options.h"
214e1eca 17
5d7c5d34
JA
18#include "crc/crc32c.h"
19
214e1eca
JA
20/*
21 * Check if mmap/mmaphuge has a :/foo/bar/file at the end. If so, return that.
22 */
23static char *get_opt_postfix(const char *str)
24{
25 char *p = strstr(str, ":");
26
27 if (!p)
28 return NULL;
29
30 p++;
31 strip_blank_front(&p);
32 strip_blank_end(p);
33 return strdup(p);
34}
35
0e92f873
RR
36static int converthexchartoint(char a)
37{
38 int base;
39
40 switch(a) {
41 case '0'...'9':
42 base = '0';
43 break;
44 case 'A'...'F':
45 base = 'A' - 10;
46 break;
47 case 'a'...'f':
48 base = 'a' - 10;
49 break;
50 default:
51 base = 0;
52 }
53 return (a - base);
54}
55
564ca972
JA
56static int bs_cmp(const void *p1, const void *p2)
57{
58 const struct bssplit *bsp1 = p1;
59 const struct bssplit *bsp2 = p2;
60
61 return bsp1->perc < bsp2->perc;
62}
63
720e84ad 64static int bssplit_ddir(struct thread_data *td, int ddir, char *str)
564ca972 65{
720e84ad 66 struct bssplit *bssplit;
564ca972
JA
67 unsigned int i, perc, perc_missing;
68 unsigned int max_bs, min_bs;
69 long long val;
720e84ad 70 char *fname;
564ca972 71
720e84ad
JA
72 td->o.bssplit_nr[ddir] = 4;
73 bssplit = malloc(4 * sizeof(struct bssplit));
564ca972
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74
75 i = 0;
76 max_bs = 0;
77 min_bs = -1;
78 while ((fname = strsep(&str, ":")) != NULL) {
79 char *perc_str;
80
81 if (!strlen(fname))
82 break;
83
84 /*
85 * grow struct buffer, if needed
86 */
720e84ad
JA
87 if (i == td->o.bssplit_nr[ddir]) {
88 td->o.bssplit_nr[ddir] <<= 1;
89 bssplit = realloc(bssplit, td->o.bssplit_nr[ddir]
5ec10eaa 90 * sizeof(struct bssplit));
564ca972
JA
91 }
92
93 perc_str = strstr(fname, "/");
94 if (perc_str) {
95 *perc_str = '\0';
96 perc_str++;
97 perc = atoi(perc_str);
98 if (perc > 100)
99 perc = 100;
100 else if (!perc)
101 perc = -1;
102 } else
103 perc = -1;
104
6925dd35 105 if (str_to_decimal(fname, &val, 1, td)) {
564ca972
JA
106 log_err("fio: bssplit conversion failed\n");
107 free(td->o.bssplit);
108 return 1;
109 }
110
111 if (val > max_bs)
112 max_bs = val;
113 if (val < min_bs)
114 min_bs = val;
115
720e84ad
JA
116 bssplit[i].bs = val;
117 bssplit[i].perc = perc;
564ca972
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118 i++;
119 }
120
720e84ad 121 td->o.bssplit_nr[ddir] = i;
564ca972
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122
123 /*
124 * Now check if the percentages add up, and how much is missing
125 */
126 perc = perc_missing = 0;
720e84ad
JA
127 for (i = 0; i < td->o.bssplit_nr[ddir]; i++) {
128 struct bssplit *bsp = &bssplit[i];
564ca972
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129
130 if (bsp->perc == (unsigned char) -1)
131 perc_missing++;
132 else
133 perc += bsp->perc;
134 }
135
136 if (perc > 100) {
137 log_err("fio: bssplit percentages add to more than 100%%\n");
720e84ad 138 free(bssplit);
564ca972
JA
139 return 1;
140 }
141 /*
142 * If values didn't have a percentage set, divide the remains between
143 * them.
144 */
145 if (perc_missing) {
720e84ad
JA
146 for (i = 0; i < td->o.bssplit_nr[ddir]; i++) {
147 struct bssplit *bsp = &bssplit[i];
564ca972
JA
148
149 if (bsp->perc == (unsigned char) -1)
150 bsp->perc = (100 - perc) / perc_missing;
151 }
152 }
153
720e84ad
JA
154 td->o.min_bs[ddir] = min_bs;
155 td->o.max_bs[ddir] = max_bs;
564ca972
JA
156
157 /*
158 * now sort based on percentages, for ease of lookup
159 */
720e84ad
JA
160 qsort(bssplit, td->o.bssplit_nr[ddir], sizeof(struct bssplit), bs_cmp);
161 td->o.bssplit[ddir] = bssplit;
162 return 0;
163
164}
165
166static int str_bssplit_cb(void *data, const char *input)
167{
168 struct thread_data *td = data;
6eaf09d6 169 char *str, *p, *odir, *ddir;
720e84ad
JA
170 int ret = 0;
171
172 p = str = strdup(input);
173
174 strip_blank_front(&str);
175 strip_blank_end(str);
176
177 odir = strchr(str, ',');
178 if (odir) {
6eaf09d6
SL
179 ddir = strchr(odir + 1, ',');
180 if (ddir) {
181 ret = bssplit_ddir(td, DDIR_TRIM, ddir + 1);
182 if (!ret)
183 *ddir = '\0';
184 } else {
185 char *op;
186
187 op = strdup(odir + 1);
188 ret = bssplit_ddir(td, DDIR_TRIM, op);
189
190 free(op);
191 }
192 if (!ret)
193 ret = bssplit_ddir(td, DDIR_WRITE, odir + 1);
720e84ad
JA
194 if (!ret) {
195 *odir = '\0';
196 ret = bssplit_ddir(td, DDIR_READ, str);
197 }
198 } else {
199 char *op;
200
201 op = strdup(str);
6eaf09d6
SL
202 ret = bssplit_ddir(td, DDIR_WRITE, op);
203 free(op);
720e84ad 204
6eaf09d6
SL
205 if (!ret) {
206 op = strdup(str);
207 ret = bssplit_ddir(td, DDIR_TRIM, op);
208 free(op);
209 }
720e84ad 210 ret = bssplit_ddir(td, DDIR_READ, str);
720e84ad 211 }
564ca972
JA
212
213 free(p);
720e84ad 214 return ret;
564ca972
JA
215}
216
8b28bd41
DM
217static int str2error(char *str)
218{
219 const char * err[] = {"EPERM", "ENOENT", "ESRCH", "EINTR", "EIO",
220 "ENXIO", "E2BIG", "ENOEXEC", "EBADF",
221 "ECHILD", "EAGAIN", "ENOMEM", "EACCES",
222 "EFAULT", "ENOTBLK", "EBUSY", "EEXIST",
223 "EXDEV", "ENODEV", "ENOTDIR", "EISDIR",
224 "EINVAL", "ENFILE", "EMFILE", "ENOTTY",
225 "ETXTBSY","EFBIG", "ENOSPC", "ESPIPE",
226 "EROFS","EMLINK", "EPIPE", "EDOM", "ERANGE"};
227 int i = 0, num = sizeof(err) / sizeof(void *);
228
229 while( i < num) {
230 if (!strcmp(err[i], str))
231 return i + 1;
232 i++;
233 }
234 return 0;
235}
236
237static int ignore_error_type(struct thread_data *td, int etype, char *str)
238{
239 unsigned int i;
240 int *error;
241 char *fname;
242
243 if (etype >= ERROR_TYPE_CNT) {
244 log_err("Illegal error type\n");
245 return 1;
246 }
247
248 td->o.ignore_error_nr[etype] = 4;
249 error = malloc(4 * sizeof(struct bssplit));
250
251 i = 0;
252 while ((fname = strsep(&str, ":")) != NULL) {
253
254 if (!strlen(fname))
255 break;
256
257 /*
258 * grow struct buffer, if needed
259 */
260 if (i == td->o.ignore_error_nr[etype]) {
261 td->o.ignore_error_nr[etype] <<= 1;
262 error = realloc(error, td->o.ignore_error_nr[etype]
263 * sizeof(int));
264 }
265 if (fname[0] == 'E') {
266 error[i] = str2error(fname);
267 } else {
268 error[i] = atoi(fname);
269 if (error[i] < 0)
270 error[i] = error[i];
271 }
272 if (!error[i]) {
273 log_err("Unknown error %s, please use number value \n",
274 fname);
275 return 1;
276 }
277 i++;
278 }
279 if (i) {
280 td->o.continue_on_error |= 1 << etype;
281 td->o.ignore_error_nr[etype] = i;
282 td->o.ignore_error[etype] = error;
283 }
284 return 0;
285
286}
287
288static int str_ignore_error_cb(void *data, const char *input)
289{
290 struct thread_data *td = data;
291 char *str, *p, *n;
292 int type = 0, ret = 1;
293 p = str = strdup(input);
294
295 strip_blank_front(&str);
296 strip_blank_end(str);
297
298 while (p) {
299 n = strchr(p, ',');
300 if (n)
301 *n++ = '\0';
302 ret = ignore_error_type(td, type, p);
303 if (ret)
304 break;
305 p = n;
306 type++;
307 }
308 free(str);
309 return ret;
310}
311
211097b2
JA
312static int str_rw_cb(void *data, const char *str)
313{
314 struct thread_data *td = data;
315 char *nr = get_opt_postfix(str);
316
5736c10d 317 td->o.ddir_seq_nr = 1;
059b0802
JA
318 td->o.ddir_seq_add = 0;
319
320 if (!nr)
321 return 0;
322
323 if (td_random(td))
5736c10d 324 td->o.ddir_seq_nr = atoi(nr);
059b0802
JA
325 else {
326 long long val;
327
6925dd35 328 if (str_to_decimal(nr, &val, 1, td)) {
059b0802
JA
329 log_err("fio: rw postfix parsing failed\n");
330 free(nr);
331 return 1;
332 }
333
334 td->o.ddir_seq_add = val;
182ec6ee 335 }
211097b2 336
059b0802 337 free(nr);
211097b2
JA
338 return 0;
339}
340
214e1eca
JA
341static int str_mem_cb(void *data, const char *mem)
342{
343 struct thread_data *td = data;
344
d9759b1e 345 if (td->o.mem_type == MEM_MMAPHUGE || td->o.mem_type == MEM_MMAP)
214e1eca 346 td->mmapfile = get_opt_postfix(mem);
214e1eca
JA
347
348 return 0;
349}
350
5d7c5d34
JA
351static int str_verify_cb(void *data, const char *mem)
352{
353 struct thread_data *td = data;
354
e3aaafc4
JA
355 if (td->o.verify == VERIFY_CRC32C_INTEL ||
356 td->o.verify == VERIFY_CRC32C) {
357 crc32c_intel_probe();
5d7c5d34
JA
358 }
359
360 return 0;
361}
362
c223da83
JA
363static int fio_clock_source_cb(void *data, const char *str)
364{
365 struct thread_data *td = data;
366
367 fio_clock_source = td->o.clocksource;
fa80feae 368 fio_clock_source_set = 1;
01423eae 369 fio_clock_init();
c223da83
JA
370 return 0;
371}
372
85bc833b 373static int str_lockmem_cb(void fio_unused *data, unsigned long long *val)
214e1eca
JA
374{
375 mlock_size = *val;
376 return 0;
377}
378
85bc833b 379static int str_rwmix_read_cb(void *data, unsigned long long *val)
cb499fc4
JA
380{
381 struct thread_data *td = data;
382
383 td->o.rwmix[DDIR_READ] = *val;
384 td->o.rwmix[DDIR_WRITE] = 100 - *val;
385 return 0;
386}
387
85bc833b 388static int str_rwmix_write_cb(void *data, unsigned long long *val)
cb499fc4
JA
389{
390 struct thread_data *td = data;
391
392 td->o.rwmix[DDIR_WRITE] = *val;
393 td->o.rwmix[DDIR_READ] = 100 - *val;
394 return 0;
395}
396
214e1eca 397#ifdef FIO_HAVE_IOPRIO
85bc833b 398static int str_prioclass_cb(void *data, unsigned long long *val)
214e1eca
JA
399{
400 struct thread_data *td = data;
6cefbe33
JA
401 unsigned short mask;
402
403 /*
404 * mask off old class bits, str_prio_cb() may have set a default class
405 */
406 mask = (1 << IOPRIO_CLASS_SHIFT) - 1;
407 td->ioprio &= mask;
214e1eca
JA
408
409 td->ioprio |= *val << IOPRIO_CLASS_SHIFT;
ac684785 410 td->ioprio_set = 1;
214e1eca
JA
411 return 0;
412}
413
85bc833b 414static int str_prio_cb(void *data, unsigned long long *val)
214e1eca
JA
415{
416 struct thread_data *td = data;
417
418 td->ioprio |= *val;
6cefbe33
JA
419
420 /*
421 * If no class is set, assume BE
422 */
423 if ((td->ioprio >> IOPRIO_CLASS_SHIFT) == 0)
424 td->ioprio |= IOPRIO_CLASS_BE << IOPRIO_CLASS_SHIFT;
425
ac684785 426 td->ioprio_set = 1;
214e1eca
JA
427 return 0;
428}
429#endif
430
431static int str_exitall_cb(void)
432{
433 exitall_on_terminate = 1;
434 return 0;
435}
436
214e1eca 437#ifdef FIO_HAVE_CPU_AFFINITY
85bc833b 438static int str_cpumask_cb(void *data, unsigned long long *val)
d2e268b0
JA
439{
440 struct thread_data *td = data;
214e1eca 441 unsigned int i;
b03daafb 442 long max_cpu;
d2ce18b5
JA
443 int ret;
444
445 ret = fio_cpuset_init(&td->o.cpumask);
446 if (ret < 0) {
447 log_err("fio: cpuset_init failed\n");
448 td_verror(td, ret, "fio_cpuset_init");
449 return 1;
450 }
214e1eca 451
c00a2289 452 max_cpu = cpus_online();
214e1eca 453
62a7273d
JA
454 for (i = 0; i < sizeof(int) * 8; i++) {
455 if ((1 << i) & *val) {
b03daafb
JA
456 if (i > max_cpu) {
457 log_err("fio: CPU %d too large (max=%ld)\n", i,
458 max_cpu);
459 return 1;
460 }
62a7273d 461 dprint(FD_PARSE, "set cpu allowed %d\n", i);
6d459ee7 462 fio_cpu_set(&td->o.cpumask, i);
62a7273d
JA
463 }
464 }
d2e268b0
JA
465
466 td->o.cpumask_set = 1;
467 return 0;
214e1eca
JA
468}
469
e8462bd8
JA
470static int set_cpus_allowed(struct thread_data *td, os_cpu_mask_t *mask,
471 const char *input)
214e1eca 472{
d2e268b0 473 char *cpu, *str, *p;
b03daafb 474 long max_cpu;
19608d6c 475 int ret = 0;
d2e268b0 476
e8462bd8 477 ret = fio_cpuset_init(mask);
d2ce18b5
JA
478 if (ret < 0) {
479 log_err("fio: cpuset_init failed\n");
480 td_verror(td, ret, "fio_cpuset_init");
481 return 1;
482 }
d2e268b0
JA
483
484 p = str = strdup(input);
214e1eca 485
d2e268b0
JA
486 strip_blank_front(&str);
487 strip_blank_end(str);
488
c00a2289 489 max_cpu = cpus_online();
b03daafb 490
d2e268b0 491 while ((cpu = strsep(&str, ",")) != NULL) {
62a7273d
JA
492 char *str2, *cpu2;
493 int icpu, icpu2;
494
d2e268b0
JA
495 if (!strlen(cpu))
496 break;
62a7273d
JA
497
498 str2 = cpu;
499 icpu2 = -1;
500 while ((cpu2 = strsep(&str2, "-")) != NULL) {
501 if (!strlen(cpu2))
502 break;
503
504 icpu2 = atoi(cpu2);
505 }
506
507 icpu = atoi(cpu);
508 if (icpu2 == -1)
509 icpu2 = icpu;
510 while (icpu <= icpu2) {
6d459ee7 511 if (icpu >= FIO_MAX_CPUS) {
19608d6c 512 log_err("fio: your OS only supports up to"
6d459ee7 513 " %d CPUs\n", (int) FIO_MAX_CPUS);
19608d6c
JA
514 ret = 1;
515 break;
516 }
b03daafb
JA
517 if (icpu > max_cpu) {
518 log_err("fio: CPU %d too large (max=%ld)\n",
519 icpu, max_cpu);
520 ret = 1;
521 break;
522 }
0b9d69ec 523
62a7273d 524 dprint(FD_PARSE, "set cpu allowed %d\n", icpu);
e8462bd8 525 fio_cpu_set(mask, icpu);
62a7273d
JA
526 icpu++;
527 }
19608d6c
JA
528 if (ret)
529 break;
d2e268b0
JA
530 }
531
532 free(p);
19608d6c
JA
533 if (!ret)
534 td->o.cpumask_set = 1;
535 return ret;
214e1eca 536}
e8462bd8
JA
537
538static int str_cpus_allowed_cb(void *data, const char *input)
539{
540 struct thread_data *td = data;
541 int ret;
542
543 ret = set_cpus_allowed(td, &td->o.cpumask, input);
544 if (!ret)
545 td->o.cpumask_set = 1;
546
547 return ret;
548}
549
550static int str_verify_cpus_allowed_cb(void *data, const char *input)
551{
552 struct thread_data *td = data;
553 int ret;
554
555 ret = set_cpus_allowed(td, &td->o.verify_cpumask, input);
556 if (!ret)
557 td->o.verify_cpumask_set = 1;
558
559 return ret;
560}
d2e268b0 561#endif
214e1eca 562
67bf9823 563#ifdef CONFIG_LIBNUMA
d0b937ed
YR
564static int str_numa_cpunodes_cb(void *data, char *input)
565{
566 struct thread_data *td = data;
567
568 /* numa_parse_nodestring() parses a character string list
569 * of nodes into a bit mask. The bit mask is allocated by
570 * numa_allocate_nodemask(), so it should be freed by
571 * numa_free_nodemask().
572 */
573 td->o.numa_cpunodesmask = numa_parse_nodestring(input);
574 if (td->o.numa_cpunodesmask == NULL) {
575 log_err("fio: numa_parse_nodestring failed\n");
576 td_verror(td, 1, "str_numa_cpunodes_cb");
577 return 1;
578 }
579
580 td->o.numa_cpumask_set = 1;
581 return 0;
582}
583
584static int str_numa_mpol_cb(void *data, char *input)
585{
586 struct thread_data *td = data;
587 const char * const policy_types[] =
588 { "default", "prefer", "bind", "interleave", "local" };
589 int i;
590
591 char *nodelist = strchr(input, ':');
592 if (nodelist) {
593 /* NUL-terminate mode */
594 *nodelist++ = '\0';
595 }
596
597 for (i = 0; i <= MPOL_LOCAL; i++) {
598 if (!strcmp(input, policy_types[i])) {
599 td->o.numa_mem_mode = i;
600 break;
601 }
602 }
603 if (i > MPOL_LOCAL) {
604 log_err("fio: memory policy should be: default, prefer, bind, interleave, local\n");
605 goto out;
606 }
607
608 switch (td->o.numa_mem_mode) {
609 case MPOL_PREFERRED:
610 /*
611 * Insist on a nodelist of one node only
612 */
613 if (nodelist) {
614 char *rest = nodelist;
615 while (isdigit(*rest))
616 rest++;
617 if (*rest) {
618 log_err("fio: one node only for \'prefer\'\n");
619 goto out;
620 }
621 } else {
622 log_err("fio: one node is needed for \'prefer\'\n");
623 goto out;
624 }
625 break;
626 case MPOL_INTERLEAVE:
627 /*
628 * Default to online nodes with memory if no nodelist
629 */
630 if (!nodelist)
631 nodelist = strdup("all");
632 break;
633 case MPOL_LOCAL:
634 case MPOL_DEFAULT:
635 /*
636 * Don't allow a nodelist
637 */
638 if (nodelist) {
639 log_err("fio: NO nodelist for \'local\'\n");
640 goto out;
641 }
642 break;
643 case MPOL_BIND:
644 /*
645 * Insist on a nodelist
646 */
647 if (!nodelist) {
648 log_err("fio: a nodelist is needed for \'bind\'\n");
649 goto out;
650 }
651 break;
652 }
653
654
655 /* numa_parse_nodestring() parses a character string list
656 * of nodes into a bit mask. The bit mask is allocated by
657 * numa_allocate_nodemask(), so it should be freed by
658 * numa_free_nodemask().
659 */
660 switch (td->o.numa_mem_mode) {
661 case MPOL_PREFERRED:
662 td->o.numa_mem_prefer_node = atoi(nodelist);
663 break;
664 case MPOL_INTERLEAVE:
665 case MPOL_BIND:
666 td->o.numa_memnodesmask = numa_parse_nodestring(nodelist);
667 if (td->o.numa_memnodesmask == NULL) {
668 log_err("fio: numa_parse_nodestring failed\n");
669 td_verror(td, 1, "str_numa_memnodes_cb");
670 return 1;
671 }
672 break;
673 case MPOL_LOCAL:
674 case MPOL_DEFAULT:
675 default:
676 break;
677 }
678
679 td->o.numa_memmask_set = 1;
680 return 0;
681
682out:
683 return 1;
684}
685#endif
686
0d29de83
JA
687#ifdef FIO_HAVE_TRIM
688static int str_verify_trim_cb(void *data, unsigned long long *val)
689{
690 struct thread_data *td = data;
691
692 td->o.trim_percentage = *val;
693 return 0;
694}
695#endif
696
214e1eca
JA
697static int str_fst_cb(void *data, const char *str)
698{
699 struct thread_data *td = data;
700 char *nr = get_opt_postfix(str);
701
702 td->file_service_nr = 1;
182ec6ee 703 if (nr) {
214e1eca 704 td->file_service_nr = atoi(nr);
182ec6ee
JA
705 free(nr);
706 }
214e1eca
JA
707
708 return 0;
709}
710
67bf9823 711#ifdef CONFIG_SYNC_FILE_RANGE
44f29692
JA
712static int str_sfr_cb(void *data, const char *str)
713{
714 struct thread_data *td = data;
715 char *nr = get_opt_postfix(str);
716
717 td->sync_file_range_nr = 1;
718 if (nr) {
719 td->sync_file_range_nr = atoi(nr);
720 free(nr);
721 }
722
723 return 0;
724}
3ae06371 725#endif
44f29692 726
e25839d4
JA
727static int str_random_distribution_cb(void *data, const char *str)
728{
729 struct thread_data *td = data;
730 double val;
731 char *nr;
732
925fee33
JA
733 if (td->o.random_distribution == FIO_RAND_DIST_ZIPF)
734 val = 1.1;
735 else if (td->o.random_distribution == FIO_RAND_DIST_PARETO)
736 val = 0.2;
737 else
e25839d4
JA
738 return 0;
739
740 nr = get_opt_postfix(str);
925fee33 741 if (nr && !str_to_float(nr, &val)) {
e25839d4
JA
742 log_err("fio: random postfix parsing failed\n");
743 free(nr);
744 return 1;
745 }
746
078189c1
JA
747 free(nr);
748
18ded917
JA
749 if (td->o.random_distribution == FIO_RAND_DIST_ZIPF) {
750 if (val == 1.00) {
751 log_err("fio: zipf theta must different than 1.0\n");
752 return 1;
753 }
925fee33 754 td->o.zipf_theta = val;
18ded917 755 } else {
078189c1
JA
756 if (val <= 0.00 || val >= 1.00) {
757 log_err("fio: pareto input out of range (0 < input < 1.0)\n");
758 return 1;
759 }
925fee33 760 td->o.pareto_h = val;
078189c1 761 }
925fee33 762
e25839d4
JA
763 return 0;
764}
765
921c766f
JA
766static int check_dir(struct thread_data *td, char *fname)
767{
3f0ca9b9 768#if 0
921c766f 769 char file[PATH_MAX], *dir;
bc838919 770 int elen = 0;
921c766f 771
bc838919
JA
772 if (td->o.directory) {
773 strcpy(file, td->o.directory);
fcef0b35 774 strcat(file, "/");
bc838919
JA
775 elen = strlen(file);
776 }
777
fcef0b35 778 sprintf(file + elen, "%s", fname);
921c766f
JA
779 dir = dirname(file);
780
fcef0b35
JA
781 {
782 struct stat sb;
783 /*
784 * We can't do this on FIO_DISKLESSIO engines. The engine isn't loaded
785 * yet, so we can't do this check right here...
786 */
921c766f
JA
787 if (lstat(dir, &sb) < 0) {
788 int ret = errno;
789
790 log_err("fio: %s is not a directory\n", dir);
791 td_verror(td, ret, "lstat");
792 return 1;
793 }
794
795 if (!S_ISDIR(sb.st_mode)) {
796 log_err("fio: %s is not a directory\n", dir);
797 return 1;
798 }
fcef0b35
JA
799 }
800#endif
921c766f
JA
801
802 return 0;
803}
804
8e827d35
JA
805/*
806 * Return next file in the string. Files are separated with ':'. If the ':'
807 * is escaped with a '\', then that ':' is part of the filename and does not
808 * indicate a new file.
809 */
810static char *get_next_file_name(char **ptr)
811{
812 char *str = *ptr;
813 char *p, *start;
814
815 if (!str || !strlen(str))
816 return NULL;
817
818 start = str;
819 do {
820 /*
821 * No colon, we are done
822 */
823 p = strchr(str, ':');
824 if (!p) {
825 *ptr = NULL;
826 break;
827 }
828
829 /*
830 * We got a colon, but it's the first character. Skip and
831 * continue
832 */
833 if (p == start) {
834 str = ++start;
835 continue;
836 }
837
838 if (*(p - 1) != '\\') {
839 *p = '\0';
840 *ptr = p + 1;
841 break;
842 }
843
844 memmove(p - 1, p, strlen(p) + 1);
845 str = p;
846 } while (1);
847
848 return start;
849}
850
214e1eca
JA
851static int str_filename_cb(void *data, const char *input)
852{
853 struct thread_data *td = data;
854 char *fname, *str, *p;
855
856 p = str = strdup(input);
857
858 strip_blank_front(&str);
859 strip_blank_end(str);
860
861 if (!td->files_index)
2dc1bbeb 862 td->o.nr_files = 0;
214e1eca 863
8e827d35 864 while ((fname = get_next_file_name(&str)) != NULL) {
214e1eca
JA
865 if (!strlen(fname))
866 break;
921c766f
JA
867 if (check_dir(td, fname)) {
868 free(p);
869 return 1;
870 }
214e1eca 871 add_file(td, fname);
2dc1bbeb 872 td->o.nr_files++;
214e1eca
JA
873 }
874
875 free(p);
876 return 0;
877}
878
879static int str_directory_cb(void *data, const char fio_unused *str)
880{
881 struct thread_data *td = data;
882 struct stat sb;
883
2dc1bbeb 884 if (lstat(td->o.directory, &sb) < 0) {
921c766f
JA
885 int ret = errno;
886
2dc1bbeb 887 log_err("fio: %s is not a directory\n", td->o.directory);
921c766f 888 td_verror(td, ret, "lstat");
214e1eca
JA
889 return 1;
890 }
891 if (!S_ISDIR(sb.st_mode)) {
2dc1bbeb 892 log_err("fio: %s is not a directory\n", td->o.directory);
214e1eca
JA
893 return 1;
894 }
895
896 return 0;
897}
898
899static int str_opendir_cb(void *data, const char fio_unused *str)
900{
901 struct thread_data *td = data;
902
903 if (!td->files_index)
2dc1bbeb 904 td->o.nr_files = 0;
214e1eca 905
2dc1bbeb 906 return add_dir_files(td, td->o.opendir);
214e1eca
JA
907}
908
85bc833b 909static int str_verify_offset_cb(void *data, unsigned long long *off)
546a9142
SL
910{
911 struct thread_data *td = data;
a59e170d 912
546a9142 913 if (*off && *off < sizeof(struct verify_header)) {
a59e170d 914 log_err("fio: verify_offset too small\n");
546a9142
SL
915 return 1;
916 }
a59e170d
JA
917
918 td->o.verify_offset = *off;
546a9142
SL
919 return 0;
920}
921
0e92f873 922static int str_verify_pattern_cb(void *data, const char *input)
90059d65
JA
923{
924 struct thread_data *td = data;
0e92f873
RR
925 long off;
926 int i = 0, j = 0, len, k, base = 10;
927 char* loc1, * loc2;
928
929 loc1 = strstr(input, "0x");
930 loc2 = strstr(input, "0X");
931 if (loc1 || loc2)
932 base = 16;
933 off = strtol(input, NULL, base);
934 if (off != LONG_MAX || errno != ERANGE) {
935 while (off) {
936 td->o.verify_pattern[i] = off & 0xff;
937 off >>= 8;
938 i++;
939 }
940 } else {
941 len = strlen(input);
942 k = len - 1;
943 if (base == 16) {
944 if (loc1)
945 j = loc1 - input + 2;
946 else
947 j = loc2 - input + 2;
948 } else
949 return 1;
950 if (len - j < MAX_PATTERN_SIZE * 2) {
951 while (k >= j) {
952 off = converthexchartoint(input[k--]);
953 if (k >= j)
954 off += (converthexchartoint(input[k--])
955 * 16);
956 td->o.verify_pattern[i++] = (char) off;
957 }
958 }
959 }
efcd9dcc
SL
960
961 /*
962 * Fill the pattern all the way to the end. This greatly reduces
963 * the number of memcpy's we have to do when verifying the IO.
964 */
965 while (i > 1 && i * 2 <= MAX_PATTERN_SIZE) {
966 memcpy(&td->o.verify_pattern[i], &td->o.verify_pattern[0], i);
967 i *= 2;
968 }
9a2a86d0
SL
969 if (i == 1) {
970 /*
971 * The code in verify_io_u_pattern assumes a single byte pattern
972 * fills the whole verify pattern buffer.
973 */
974 memset(td->o.verify_pattern, td->o.verify_pattern[0],
975 MAX_PATTERN_SIZE);
976 }
efcd9dcc 977
0e92f873 978 td->o.verify_pattern_bytes = i;
efcd9dcc 979
92bf48d5
JA
980 /*
981 * VERIFY_META could already be set
982 */
983 if (td->o.verify == VERIFY_NONE)
984 td->o.verify = VERIFY_PATTERN;
efcd9dcc 985
90059d65
JA
986 return 0;
987}
214e1eca 988
e3cedca7
JA
989static int str_write_bw_log_cb(void *data, const char *str)
990{
991 struct thread_data *td = data;
992
993 if (str)
994 td->o.bw_log_file = strdup(str);
995
996 td->o.write_bw_log = 1;
997 return 0;
998}
999
1000static int str_write_lat_log_cb(void *data, const char *str)
1001{
1002 struct thread_data *td = data;
1003
1004 if (str)
1005 td->o.lat_log_file = strdup(str);
1006
1007 td->o.write_lat_log = 1;
1008 return 0;
1009}
1010
c8eeb9df
JA
1011static int str_write_iops_log_cb(void *data, const char *str)
1012{
1013 struct thread_data *td = data;
1014
1015 if (str)
1016 td->o.iops_log_file = strdup(str);
1017
1018 td->o.write_iops_log = 1;
1019 return 0;
1020}
1021
993bf48b
JA
1022static int str_gtod_reduce_cb(void *data, int *il)
1023{
1024 struct thread_data *td = data;
1025 int val = *il;
1026
02af0988 1027 td->o.disable_lat = !!val;
993bf48b
JA
1028 td->o.disable_clat = !!val;
1029 td->o.disable_slat = !!val;
1030 td->o.disable_bw = !!val;
0dc1bc03 1031 td->o.clat_percentiles = !val;
993bf48b
JA
1032 if (val)
1033 td->tv_cache_mask = 63;
1034
1035 return 0;
1036}
1037
85bc833b 1038static int str_gtod_cpu_cb(void *data, long long *il)
be4ecfdf
JA
1039{
1040 struct thread_data *td = data;
1041 int val = *il;
1042
1043 td->o.gtod_cpu = val;
1044 td->o.gtod_offload = 1;
1045 return 0;
1046}
1047
7bb59102
JA
1048static int str_size_cb(void *data, unsigned long long *__val)
1049{
1050 struct thread_data *td = data;
1051 unsigned long long v = *__val;
1052
1053 if (parse_is_percent(v)) {
1054 td->o.size = 0;
1055 td->o.size_percent = -1ULL - v;
1056 } else
1057 td->o.size = v;
1058
1059 return 0;
1060}
1061
896cac2a
JA
1062static int rw_verify(struct fio_option *o, void *data)
1063{
1064 struct thread_data *td = data;
1065
1066 if (read_only && td_write(td)) {
1067 log_err("fio: job <%s> has write bit set, but fio is in"
1068 " read-only mode\n", td->o.name);
1069 return 1;
1070 }
1071
1072 return 0;
1073}
1074
276ca4f7 1075static int gtod_cpu_verify(struct fio_option *o, void *data)
29d43ff9 1076{
276ca4f7 1077#ifndef FIO_HAVE_CPU_AFFINITY
29d43ff9
JA
1078 struct thread_data *td = data;
1079
29d43ff9
JA
1080 if (td->o.gtod_cpu) {
1081 log_err("fio: platform must support CPU affinity for"
1082 "gettimeofday() offloading\n");
1083 return 1;
1084 }
1085#endif
1086
1087 return 0;
1088}
1089
90fef2d1
JA
1090static int kb_base_verify(struct fio_option *o, void *data)
1091{
1092 struct thread_data *td = data;
1093
1094 if (td->o.kb_base != 1024 && td->o.kb_base != 1000) {
1095 log_err("fio: kb_base set to nonsensical value: %u\n",
1096 td->o.kb_base);
1097 return 1;
1098 }
1099
1100 return 0;
1101}
1102
214e1eca
JA
1103/*
1104 * Map of job/command line options
1105 */
07b3232d 1106static struct fio_option options[FIO_MAX_OPTS] = {
214e1eca
JA
1107 {
1108 .name = "description",
1109 .type = FIO_OPT_STR_STORE,
1110 .off1 = td_var_offset(description),
1111 .help = "Text job description",
1112 },
1113 {
1114 .name = "name",
1115 .type = FIO_OPT_STR_STORE,
1116 .off1 = td_var_offset(name),
1117 .help = "Name of this job",
1118 },
1119 {
1120 .name = "directory",
1121 .type = FIO_OPT_STR_STORE,
1122 .off1 = td_var_offset(directory),
1123 .cb = str_directory_cb,
1124 .help = "Directory to store files in",
1125 },
1126 {
1127 .name = "filename",
1128 .type = FIO_OPT_STR_STORE,
1129 .off1 = td_var_offset(filename),
1130 .cb = str_filename_cb,
f0d524b0 1131 .prio = -1, /* must come after "directory" */
214e1eca
JA
1132 .help = "File(s) to use for the workload",
1133 },
de98bd30
JA
1134 {
1135 .name = "filename_format",
1136 .type = FIO_OPT_STR_STORE,
1137 .off1 = td_var_offset(filename_format),
1138 .prio = -1, /* must come after "directory" */
1139 .help = "Override default $jobname.$jobnum.$filenum naming",
1140 .def = "$jobname.$jobnum.$filenum",
1141 },
90fef2d1
JA
1142 {
1143 .name = "kb_base",
1144 .type = FIO_OPT_INT,
1145 .off1 = td_var_offset(kb_base),
90fef2d1 1146 .verify = kb_base_verify,
a639f0bb 1147 .prio = 1,
90fef2d1 1148 .def = "1024",
a639f0bb 1149 .help = "How many bytes per KB for reporting (1000 or 1024)",
90fef2d1 1150 },
ad705bcb
SN
1151 {
1152 .name = "unit_base",
1153 .type = FIO_OPT_INT,
1154 .off1 = td_var_offset(unit_base),
ad705bcb 1155 .prio = 1,
5afda955
JA
1156 .posval = {
1157 { .ival = "0",
1158 .oval = 0,
1159 .help = "Auto-detect",
1160 },
1161 { .ival = "8",
1162 .oval = 8,
1163 .help = "Normal (byte based)",
1164 },
1165 { .ival = "1",
1166 .oval = 1,
1167 .help = "Bit based",
1168 },
1169 },
ad705bcb
SN
1170 .help = "Bit multiple of result summary data (8 for byte, 1 for bit)",
1171 },
29c1349f
JA
1172 {
1173 .name = "lockfile",
4d4e80f2 1174 .type = FIO_OPT_STR,
4d4e80f2 1175 .off1 = td_var_offset(file_lock_mode),
29c1349f
JA
1176 .help = "Lock file when doing IO to it",
1177 .parent = "filename",
4d4e80f2
JA
1178 .def = "none",
1179 .posval = {
1180 { .ival = "none",
1181 .oval = FILE_LOCK_NONE,
1182 .help = "No file locking",
1183 },
1184 { .ival = "exclusive",
1185 .oval = FILE_LOCK_EXCLUSIVE,
1186 .help = "Exclusive file lock",
1187 },
1188 {
1189 .ival = "readwrite",
1190 .oval = FILE_LOCK_READWRITE,
1191 .help = "Read vs write lock",
1192 },
1193 },
29c1349f 1194 },
214e1eca
JA
1195 {
1196 .name = "opendir",
1197 .type = FIO_OPT_STR_STORE,
1198 .off1 = td_var_offset(opendir),
1199 .cb = str_opendir_cb,
1200 .help = "Recursively add files from this directory and down",
1201 },
1202 {
1203 .name = "rw",
d3aad8f2 1204 .alias = "readwrite",
214e1eca 1205 .type = FIO_OPT_STR,
211097b2 1206 .cb = str_rw_cb,
214e1eca
JA
1207 .off1 = td_var_offset(td_ddir),
1208 .help = "IO direction",
1209 .def = "read",
896cac2a 1210 .verify = rw_verify,
214e1eca
JA
1211 .posval = {
1212 { .ival = "read",
1213 .oval = TD_DDIR_READ,
1214 .help = "Sequential read",
1215 },
1216 { .ival = "write",
1217 .oval = TD_DDIR_WRITE,
1218 .help = "Sequential write",
1219 },
6eaf09d6
SL
1220 { .ival = "trim",
1221 .oval = TD_DDIR_TRIM,
1222 .help = "Sequential trim",
1223 },
214e1eca
JA
1224 { .ival = "randread",
1225 .oval = TD_DDIR_RANDREAD,
1226 .help = "Random read",
1227 },
1228 { .ival = "randwrite",
1229 .oval = TD_DDIR_RANDWRITE,
1230 .help = "Random write",
1231 },
6eaf09d6
SL
1232 { .ival = "randtrim",
1233 .oval = TD_DDIR_RANDTRIM,
1234 .help = "Random trim",
1235 },
214e1eca
JA
1236 { .ival = "rw",
1237 .oval = TD_DDIR_RW,
1238 .help = "Sequential read and write mix",
1239 },
10b023db
JA
1240 { .ival = "readwrite",
1241 .oval = TD_DDIR_RW,
1242 .help = "Sequential read and write mix",
1243 },
214e1eca
JA
1244 { .ival = "randrw",
1245 .oval = TD_DDIR_RANDRW,
1246 .help = "Random read and write mix"
1247 },
1248 },
1249 },
38dad62d
JA
1250 {
1251 .name = "rw_sequencer",
1252 .type = FIO_OPT_STR,
1253 .off1 = td_var_offset(rw_seq),
1254 .help = "IO offset generator modifier",
1255 .def = "sequential",
1256 .posval = {
1257 { .ival = "sequential",
1258 .oval = RW_SEQ_SEQ,
1259 .help = "Generate sequential offsets",
1260 },
1261 { .ival = "identical",
1262 .oval = RW_SEQ_IDENT,
1263 .help = "Generate identical offsets",
1264 },
1265 },
1266 },
1267
214e1eca
JA
1268 {
1269 .name = "ioengine",
1270 .type = FIO_OPT_STR_STORE,
1271 .off1 = td_var_offset(ioengine),
1272 .help = "IO engine to use",
58483fa4 1273 .def = FIO_PREFERRED_ENGINE,
214e1eca
JA
1274 .posval = {
1275 { .ival = "sync",
1276 .help = "Use read/write",
1277 },
a31041ea 1278 { .ival = "psync",
1279 .help = "Use pread/pwrite",
1280 },
1d2af02a 1281 { .ival = "vsync",
03e20d68 1282 .help = "Use readv/writev",
1d2af02a 1283 },
67bf9823 1284#ifdef CONFIG_LIBAIO
214e1eca
JA
1285 { .ival = "libaio",
1286 .help = "Linux native asynchronous IO",
1287 },
1288#endif
67bf9823 1289#ifdef CONFIG_POSIXAIO
214e1eca
JA
1290 { .ival = "posixaio",
1291 .help = "POSIX asynchronous IO",
1292 },
417f0068 1293#endif
997843cb 1294#ifdef CONFIG_SOLARISAIO
417f0068
JA
1295 { .ival = "solarisaio",
1296 .help = "Solaris native asynchronous IO",
1297 },
214e1eca 1298#endif
4700b234 1299#ifdef CONFIG_WINDOWSAIO
03e20d68 1300 { .ival = "windowsaio",
3be80071 1301 .help = "Windows native asynchronous IO"
de890a1e 1302 },
3be80071 1303#endif
214e1eca 1304 { .ival = "mmap",
03e20d68 1305 .help = "Memory mapped IO"
214e1eca 1306 },
67bf9823 1307#ifdef CONFIG_LINUX_SPLICE
214e1eca
JA
1308 { .ival = "splice",
1309 .help = "splice/vmsplice based IO",
1310 },
9cce02e8
JA
1311 { .ival = "netsplice",
1312 .help = "splice/vmsplice to/from the network",
1313 },
214e1eca
JA
1314#endif
1315#ifdef FIO_HAVE_SGIO
1316 { .ival = "sg",
1317 .help = "SCSI generic v3 IO",
1318 },
1319#endif
1320 { .ival = "null",
1321 .help = "Testing engine (no data transfer)",
1322 },
1323 { .ival = "net",
1324 .help = "Network IO",
1325 },
214e1eca 1326 { .ival = "cpuio",
03e20d68 1327 .help = "CPU cycle burner engine",
214e1eca 1328 },
67bf9823 1329#ifdef CONFIG_GUASI
b8c82a46
JA
1330 { .ival = "guasi",
1331 .help = "GUASI IO engine",
1332 },
79a43187
JA
1333#endif
1334#ifdef FIO_HAVE_BINJECT
1335 { .ival = "binject",
1336 .help = "binject direct inject block engine",
1337 },
21b8aee8 1338#endif
67bf9823 1339#ifdef CONFIG_RDMA
21b8aee8 1340 { .ival = "rdma",
1341 .help = "RDMA IO engine",
1342 },
8200b8c7 1343#endif
67bf9823 1344#ifdef CONFIG_FUSION_AW
8200b8c7
JA
1345 { .ival = "fusion-aw-sync",
1346 .help = "Fusion-io atomic write engine",
1347 },
1ecc95ca 1348#endif
997843cb 1349#ifdef CONFIG_LINUX_EXT4_MOVE_EXTENT
1ecc95ca
JA
1350 { .ival = "e4defrag",
1351 .help = "ext4 defrag engine",
1352 },
1353#endif
997843cb 1354#ifdef CONFIG_LINUX_FALLOCATE
1ecc95ca
JA
1355 { .ival = "falloc",
1356 .help = "fallocate() file based engine",
1357 },
b8c82a46 1358#endif
214e1eca
JA
1359 { .ival = "external",
1360 .help = "Load external engine (append name)",
1361 },
1362 },
1363 },
1364 {
1365 .name = "iodepth",
1366 .type = FIO_OPT_INT,
1367 .off1 = td_var_offset(iodepth),
03e20d68 1368 .help = "Number of IO buffers to keep in flight",
757aff4f 1369 .minval = 1,
214e1eca
JA
1370 .def = "1",
1371 },
1372 {
1373 .name = "iodepth_batch",
4950421a 1374 .alias = "iodepth_batch_submit",
214e1eca
JA
1375 .type = FIO_OPT_INT,
1376 .off1 = td_var_offset(iodepth_batch),
d65db441 1377 .help = "Number of IO buffers to submit in one go",
afdf9352 1378 .parent = "iodepth",
a2e6f8ac
JA
1379 .minval = 1,
1380 .def = "1",
4950421a
JA
1381 },
1382 {
1383 .name = "iodepth_batch_complete",
1384 .type = FIO_OPT_INT,
1385 .off1 = td_var_offset(iodepth_batch_complete),
d65db441 1386 .help = "Number of IO buffers to retrieve in one go",
4950421a
JA
1387 .parent = "iodepth",
1388 .minval = 0,
1389 .def = "1",
214e1eca
JA
1390 },
1391 {
1392 .name = "iodepth_low",
1393 .type = FIO_OPT_INT,
1394 .off1 = td_var_offset(iodepth_low),
1395 .help = "Low water mark for queuing depth",
afdf9352 1396 .parent = "iodepth",
214e1eca
JA
1397 },
1398 {
1399 .name = "size",
1400 .type = FIO_OPT_STR_VAL,
7bb59102 1401 .cb = str_size_cb,
214e1eca
JA
1402 .help = "Total size of device or files",
1403 },
aa31f1f1
SL
1404 {
1405 .name = "fill_device",
74586c1e 1406 .alias = "fill_fs",
aa31f1f1
SL
1407 .type = FIO_OPT_BOOL,
1408 .off1 = td_var_offset(fill_device),
1409 .help = "Write until an ENOSPC error occurs",
1410 .def = "0",
1411 },
214e1eca
JA
1412 {
1413 .name = "filesize",
1414 .type = FIO_OPT_STR_VAL,
1415 .off1 = td_var_offset(file_size_low),
1416 .off2 = td_var_offset(file_size_high),
c3edbdba 1417 .minval = 1,
214e1eca
JA
1418 .help = "Size of individual files",
1419 },
67a1000f
JA
1420 {
1421 .name = "offset",
1422 .alias = "fileoffset",
1423 .type = FIO_OPT_STR_VAL,
1424 .off1 = td_var_offset(start_offset),
1425 .help = "Start IO from this offset",
1426 .def = "0",
1427 },
2d7cd868
JA
1428 {
1429 .name = "offset_increment",
1430 .type = FIO_OPT_STR_VAL,
1431 .off1 = td_var_offset(offset_increment),
1432 .help = "What is the increment from one offset to the next",
1433 .parent = "offset",
1434 .def = "0",
1435 },
214e1eca
JA
1436 {
1437 .name = "bs",
d3aad8f2 1438 .alias = "blocksize",
e01b22b8 1439 .type = FIO_OPT_INT,
214e1eca
JA
1440 .off1 = td_var_offset(bs[DDIR_READ]),
1441 .off2 = td_var_offset(bs[DDIR_WRITE]),
6eaf09d6 1442 .off3 = td_var_offset(bs[DDIR_TRIM]),
c3edbdba 1443 .minval = 1,
214e1eca
JA
1444 .help = "Block size unit",
1445 .def = "4k",
67a1000f 1446 .parent = "rw",
214e1eca 1447 },
2b7a01d0
JA
1448 {
1449 .name = "ba",
1450 .alias = "blockalign",
e01b22b8 1451 .type = FIO_OPT_INT,
2b7a01d0
JA
1452 .off1 = td_var_offset(ba[DDIR_READ]),
1453 .off2 = td_var_offset(ba[DDIR_WRITE]),
6eaf09d6 1454 .off3 = td_var_offset(ba[DDIR_TRIM]),
2b7a01d0
JA
1455 .minval = 1,
1456 .help = "IO block offset alignment",
1457 .parent = "rw",
1458 },
214e1eca
JA
1459 {
1460 .name = "bsrange",
d3aad8f2 1461 .alias = "blocksize_range",
214e1eca
JA
1462 .type = FIO_OPT_RANGE,
1463 .off1 = td_var_offset(min_bs[DDIR_READ]),
1464 .off2 = td_var_offset(max_bs[DDIR_READ]),
1465 .off3 = td_var_offset(min_bs[DDIR_WRITE]),
1466 .off4 = td_var_offset(max_bs[DDIR_WRITE]),
6eaf09d6
SL
1467 .off5 = td_var_offset(min_bs[DDIR_TRIM]),
1468 .off6 = td_var_offset(max_bs[DDIR_TRIM]),
c3edbdba 1469 .minval = 1,
214e1eca 1470 .help = "Set block size range (in more detail than bs)",
67a1000f 1471 .parent = "rw",
214e1eca 1472 },
564ca972
JA
1473 {
1474 .name = "bssplit",
1475 .type = FIO_OPT_STR,
1476 .cb = str_bssplit_cb,
1477 .help = "Set a specific mix of block sizes",
1478 .parent = "rw",
1479 },
214e1eca
JA
1480 {
1481 .name = "bs_unaligned",
d3aad8f2 1482 .alias = "blocksize_unaligned",
214e1eca
JA
1483 .type = FIO_OPT_STR_SET,
1484 .off1 = td_var_offset(bs_unaligned),
1485 .help = "Don't sector align IO buffer sizes",
67a1000f 1486 .parent = "rw",
214e1eca
JA
1487 },
1488 {
1489 .name = "randrepeat",
1490 .type = FIO_OPT_BOOL,
1491 .off1 = td_var_offset(rand_repeatable),
1492 .help = "Use repeatable random IO pattern",
1493 .def = "1",
67a1000f 1494 .parent = "rw",
214e1eca 1495 },
2615cc4b
JA
1496 {
1497 .name = "use_os_rand",
1498 .type = FIO_OPT_BOOL,
1499 .off1 = td_var_offset(use_os_rand),
1500 .help = "Set to use OS random generator",
1501 .def = "0",
1502 .parent = "rw",
1503 },
214e1eca
JA
1504 {
1505 .name = "norandommap",
1506 .type = FIO_OPT_STR_SET,
1507 .off1 = td_var_offset(norandommap),
1508 .help = "Accept potential duplicate random blocks",
67a1000f 1509 .parent = "rw",
214e1eca 1510 },
2b386d25
JA
1511 {
1512 .name = "softrandommap",
1513 .type = FIO_OPT_BOOL,
1514 .off1 = td_var_offset(softrandommap),
f66ab3c8 1515 .help = "Set norandommap if randommap allocation fails",
2b386d25
JA
1516 .parent = "norandommap",
1517 .def = "0",
1518 },
8055e41d
JA
1519 {
1520 .name = "random_generator",
1521 .type = FIO_OPT_STR,
1522 .off1 = td_var_offset(random_generator),
1523 .help = "Type of random number generator to use",
1524 .def = "tausworthe",
1525 .posval = {
1526 { .ival = "tausworthe",
1527 .oval = FIO_RAND_GEN_TAUSWORTHE,
1528 .help = "Strong Tausworthe generator",
1529 },
1530 { .ival = "lfsr",
1531 .oval = FIO_RAND_GEN_LFSR,
1532 .help = "Variable length LFSR",
1533 },
1534 },
1535 },
e25839d4
JA
1536 {
1537 .name = "random_distribution",
1538 .type = FIO_OPT_STR,
1539 .off1 = td_var_offset(random_distribution),
1540 .cb = str_random_distribution_cb,
1541 .help = "Random offset distribution generator",
1542 .def = "random",
1543 .posval = {
1544 { .ival = "random",
1545 .oval = FIO_RAND_DIST_RANDOM,
1546 .help = "Completely random",
1547 },
1548 { .ival = "zipf",
1549 .oval = FIO_RAND_DIST_ZIPF,
1550 .help = "Zipf distribution",
1551 },
925fee33
JA
1552 { .ival = "pareto",
1553 .oval = FIO_RAND_DIST_PARETO,
1554 .help = "Pareto distribution",
1555 },
e25839d4
JA
1556 },
1557 },
214e1eca
JA
1558 {
1559 .name = "nrfiles",
d7c8be03 1560 .alias = "nr_files",
214e1eca
JA
1561 .type = FIO_OPT_INT,
1562 .off1 = td_var_offset(nr_files),
1563 .help = "Split job workload between this number of files",
1564 .def = "1",
1565 },
1566 {
1567 .name = "openfiles",
1568 .type = FIO_OPT_INT,
1569 .off1 = td_var_offset(open_files),
1570 .help = "Number of files to keep open at the same time",
1571 },
1572 {
1573 .name = "file_service_type",
1574 .type = FIO_OPT_STR,
1575 .cb = str_fst_cb,
1576 .off1 = td_var_offset(file_service_type),
1577 .help = "How to select which file to service next",
1578 .def = "roundrobin",
1579 .posval = {
1580 { .ival = "random",
1581 .oval = FIO_FSERVICE_RANDOM,
1582 .help = "Choose a file at random",
1583 },
1584 { .ival = "roundrobin",
1585 .oval = FIO_FSERVICE_RR,
1586 .help = "Round robin select files",
1587 },
a086c257
JA
1588 { .ival = "sequential",
1589 .oval = FIO_FSERVICE_SEQ,
1590 .help = "Finish one file before moving to the next",
1591 },
214e1eca 1592 },
67a1000f
JA
1593 .parent = "nrfiles",
1594 },
97ac992c 1595#ifdef CONFIG_POSIX_FALLOCATE
7bc8c2cf
JA
1596 {
1597 .name = "fallocate",
a596f047
EG
1598 .type = FIO_OPT_STR,
1599 .off1 = td_var_offset(fallocate_mode),
1600 .help = "Whether pre-allocation is performed when laying out files",
1601 .def = "posix",
1602 .posval = {
1603 { .ival = "none",
1604 .oval = FIO_FALLOCATE_NONE,
1605 .help = "Do not pre-allocate space",
1606 },
1607 { .ival = "posix",
1608 .oval = FIO_FALLOCATE_POSIX,
1609 .help = "Use posix_fallocate()",
1610 },
97ac992c 1611#ifdef CONFIG_LINUX_FALLOCATE
a596f047
EG
1612 { .ival = "keep",
1613 .oval = FIO_FALLOCATE_KEEP_SIZE,
1614 .help = "Use fallocate(..., FALLOC_FL_KEEP_SIZE, ...)",
1615 },
7bc8c2cf 1616#endif
a596f047
EG
1617 /* Compatibility with former boolean values */
1618 { .ival = "0",
1619 .oval = FIO_FALLOCATE_NONE,
1620 .help = "Alias for 'none'",
1621 },
1622 { .ival = "1",
1623 .oval = FIO_FALLOCATE_POSIX,
1624 .help = "Alias for 'posix'",
1625 },
1626 },
1627 },
97ac992c 1628#endif /* CONFIG_POSIX_FALLOCATE */
67a1000f
JA
1629 {
1630 .name = "fadvise_hint",
1631 .type = FIO_OPT_BOOL,
1632 .off1 = td_var_offset(fadvise_hint),
1633 .help = "Use fadvise() to advise the kernel on IO pattern",
1634 .def = "1",
214e1eca
JA
1635 },
1636 {
1637 .name = "fsync",
1638 .type = FIO_OPT_INT,
1639 .off1 = td_var_offset(fsync_blocks),
1640 .help = "Issue fsync for writes every given number of blocks",
1641 .def = "0",
1642 },
5f9099ea
JA
1643 {
1644 .name = "fdatasync",
1645 .type = FIO_OPT_INT,
1646 .off1 = td_var_offset(fdatasync_blocks),
1647 .help = "Issue fdatasync for writes every given number of blocks",
1648 .def = "0",
1649 },
1ef2b6be
JA
1650 {
1651 .name = "write_barrier",
1652 .type = FIO_OPT_INT,
1653 .off1 = td_var_offset(barrier_blocks),
1654 .help = "Make every Nth write a barrier write",
1655 .def = "0",
1656 },
67bf9823 1657#ifdef CONFIG_SYNC_FILE_RANGE
44f29692
JA
1658 {
1659 .name = "sync_file_range",
1660 .posval = {
1661 { .ival = "wait_before",
1662 .oval = SYNC_FILE_RANGE_WAIT_BEFORE,
1663 .help = "SYNC_FILE_RANGE_WAIT_BEFORE",
3843deb3 1664 .or = 1,
44f29692
JA
1665 },
1666 { .ival = "write",
1667 .oval = SYNC_FILE_RANGE_WRITE,
1668 .help = "SYNC_FILE_RANGE_WRITE",
3843deb3 1669 .or = 1,
44f29692
JA
1670 },
1671 {
1672 .ival = "wait_after",
1673 .oval = SYNC_FILE_RANGE_WAIT_AFTER,
1674 .help = "SYNC_FILE_RANGE_WAIT_AFTER",
3843deb3 1675 .or = 1,
44f29692
JA
1676 },
1677 },
3843deb3 1678 .type = FIO_OPT_STR_MULTI,
44f29692
JA
1679 .cb = str_sfr_cb,
1680 .off1 = td_var_offset(sync_file_range),
1681 .help = "Use sync_file_range()",
1682 },
1683#endif
214e1eca
JA
1684 {
1685 .name = "direct",
1686 .type = FIO_OPT_BOOL,
1687 .off1 = td_var_offset(odirect),
1688 .help = "Use O_DIRECT IO (negates buffered)",
1689 .def = "0",
1690 },
1691 {
1692 .name = "buffered",
1693 .type = FIO_OPT_BOOL,
1694 .off1 = td_var_offset(odirect),
1695 .neg = 1,
1696 .help = "Use buffered IO (negates direct)",
1697 .def = "1",
1698 },
1699 {
1700 .name = "overwrite",
1701 .type = FIO_OPT_BOOL,
1702 .off1 = td_var_offset(overwrite),
1703 .help = "When writing, set whether to overwrite current data",
1704 .def = "0",
1705 },
1706 {
1707 .name = "loops",
1708 .type = FIO_OPT_INT,
1709 .off1 = td_var_offset(loops),
1710 .help = "Number of times to run the job",
1711 .def = "1",
1712 },
1713 {
1714 .name = "numjobs",
1715 .type = FIO_OPT_INT,
1716 .off1 = td_var_offset(numjobs),
1717 .help = "Duplicate this job this many times",
1718 .def = "1",
1719 },
1720 {
1721 .name = "startdelay",
a5737c93 1722 .type = FIO_OPT_STR_VAL_TIME,
214e1eca
JA
1723 .off1 = td_var_offset(start_delay),
1724 .help = "Only start job when this period has passed",
1725 .def = "0",
1726 },
1727 {
1728 .name = "runtime",
1729 .alias = "timeout",
1730 .type = FIO_OPT_STR_VAL_TIME,
1731 .off1 = td_var_offset(timeout),
1732 .help = "Stop workload when this amount of time has passed",
1733 .def = "0",
1734 },
cf4464ca
JA
1735 {
1736 .name = "time_based",
1737 .type = FIO_OPT_STR_SET,
1738 .off1 = td_var_offset(time_based),
1739 .help = "Keep running until runtime/timeout is met",
1740 },
721938ae
JA
1741 {
1742 .name = "ramp_time",
1743 .type = FIO_OPT_STR_VAL_TIME,
1744 .off1 = td_var_offset(ramp_time),
1745 .help = "Ramp up time before measuring performance",
1746 },
c223da83
JA
1747 {
1748 .name = "clocksource",
1749 .type = FIO_OPT_STR,
1750 .cb = fio_clock_source_cb,
1751 .off1 = td_var_offset(clocksource),
1752 .help = "What type of timing source to use",
c223da83 1753 .posval = {
67bf9823 1754#ifdef CONFIG_GETTIMEOFDAY
c223da83
JA
1755 { .ival = "gettimeofday",
1756 .oval = CS_GTOD,
1757 .help = "Use gettimeofday(2) for timing",
1758 },
67bf9823
JA
1759#endif
1760#ifdef CONFIG_CLOCK_GETTIME
c223da83
JA
1761 { .ival = "clock_gettime",
1762 .oval = CS_CGETTIME,
1763 .help = "Use clock_gettime(2) for timing",
1764 },
67bf9823 1765#endif
c223da83
JA
1766#ifdef ARCH_HAVE_CPU_CLOCK
1767 { .ival = "cpu",
1768 .oval = CS_CPUCLOCK,
1769 .help = "Use CPU private clock",
1770 },
1771#endif
1772 },
1773 },
214e1eca
JA
1774 {
1775 .name = "mem",
d3aad8f2 1776 .alias = "iomem",
214e1eca
JA
1777 .type = FIO_OPT_STR,
1778 .cb = str_mem_cb,
1779 .off1 = td_var_offset(mem_type),
1780 .help = "Backing type for IO buffers",
1781 .def = "malloc",
1782 .posval = {
1783 { .ival = "malloc",
1784 .oval = MEM_MALLOC,
1785 .help = "Use malloc(3) for IO buffers",
1786 },
37c8cdfe
JA
1787 { .ival = "shm",
1788 .oval = MEM_SHM,
1789 .help = "Use shared memory segments for IO buffers",
1790 },
214e1eca
JA
1791#ifdef FIO_HAVE_HUGETLB
1792 { .ival = "shmhuge",
1793 .oval = MEM_SHMHUGE,
1794 .help = "Like shm, but use huge pages",
1795 },
b370e46a 1796#endif
37c8cdfe
JA
1797 { .ival = "mmap",
1798 .oval = MEM_MMAP,
1799 .help = "Use mmap(2) (file or anon) for IO buffers",
1800 },
214e1eca
JA
1801#ifdef FIO_HAVE_HUGETLB
1802 { .ival = "mmaphuge",
1803 .oval = MEM_MMAPHUGE,
1804 .help = "Like mmap, but use huge pages",
1805 },
1806#endif
1807 },
1808 },
d529ee19
JA
1809 {
1810 .name = "iomem_align",
1811 .alias = "mem_align",
1812 .type = FIO_OPT_INT,
1813 .off1 = td_var_offset(mem_align),
1814 .minval = 0,
1815 .help = "IO memory buffer offset alignment",
1816 .def = "0",
1817 .parent = "iomem",
1818 },
214e1eca
JA
1819 {
1820 .name = "verify",
1821 .type = FIO_OPT_STR,
1822 .off1 = td_var_offset(verify),
1823 .help = "Verify data written",
5d7c5d34 1824 .cb = str_verify_cb,
214e1eca
JA
1825 .def = "0",
1826 .posval = {
1827 { .ival = "0",
1828 .oval = VERIFY_NONE,
1829 .help = "Don't do IO verification",
1830 },
fcca4b58
JA
1831 { .ival = "md5",
1832 .oval = VERIFY_MD5,
1833 .help = "Use md5 checksums for verification",
1834 },
d77a7af3
JA
1835 { .ival = "crc64",
1836 .oval = VERIFY_CRC64,
1837 .help = "Use crc64 checksums for verification",
1838 },
214e1eca
JA
1839 { .ival = "crc32",
1840 .oval = VERIFY_CRC32,
1841 .help = "Use crc32 checksums for verification",
1842 },
af497e6a 1843 { .ival = "crc32c-intel",
e3aaafc4
JA
1844 .oval = VERIFY_CRC32C,
1845 .help = "Use crc32c checksums for verification (hw assisted, if available)",
af497e6a 1846 },
bac39e0e
JA
1847 { .ival = "crc32c",
1848 .oval = VERIFY_CRC32C,
e3aaafc4 1849 .help = "Use crc32c checksums for verification (hw assisted, if available)",
bac39e0e 1850 },
969f7ed3
JA
1851 { .ival = "crc16",
1852 .oval = VERIFY_CRC16,
1853 .help = "Use crc16 checksums for verification",
1854 },
1e154bdb
JA
1855 { .ival = "crc7",
1856 .oval = VERIFY_CRC7,
1857 .help = "Use crc7 checksums for verification",
1858 },
7c353ceb
JA
1859 { .ival = "sha1",
1860 .oval = VERIFY_SHA1,
1861 .help = "Use sha1 checksums for verification",
1862 },
cd14cc10
JA
1863 { .ival = "sha256",
1864 .oval = VERIFY_SHA256,
1865 .help = "Use sha256 checksums for verification",
1866 },
1867 { .ival = "sha512",
1868 .oval = VERIFY_SHA512,
1869 .help = "Use sha512 checksums for verification",
1870 },
7437ee87
SL
1871 { .ival = "meta",
1872 .oval = VERIFY_META,
1873 .help = "Use io information",
1874 },
36690c9b
JA
1875 {
1876 .ival = "null",
1877 .oval = VERIFY_NULL,
1878 .help = "Pretend to verify",
1879 },
214e1eca
JA
1880 },
1881 },
005c565a
JA
1882 {
1883 .name = "do_verify",
68e1f29a 1884 .type = FIO_OPT_BOOL,
005c565a
JA
1885 .off1 = td_var_offset(do_verify),
1886 .help = "Run verification stage after write",
1887 .def = "1",
1888 .parent = "verify",
1889 },
160b966d
JA
1890 {
1891 .name = "verifysort",
1892 .type = FIO_OPT_BOOL,
1893 .off1 = td_var_offset(verifysort),
1894 .help = "Sort written verify blocks for read back",
1895 .def = "1",
c83f2df1 1896 .parent = "verify",
160b966d 1897 },
1ae83d45
JA
1898 {
1899 .name = "verifysort_nr",
1900 .type = FIO_OPT_INT,
1901 .off1 = td_var_offset(verifysort_nr),
1902 .help = "Pre-load and sort verify blocks for a read workload",
1903 .minval = 0,
1904 .maxval = 131072,
1905 .def = "1024",
1906 .parent = "verify",
1907 },
3f9f4e26 1908 {
a59e170d 1909 .name = "verify_interval",
e01b22b8 1910 .type = FIO_OPT_INT,
a59e170d 1911 .off1 = td_var_offset(verify_interval),
819a9680 1912 .minval = 2 * sizeof(struct verify_header),
a59e170d 1913 .help = "Store verify buffer header every N bytes",
afdf9352 1914 .parent = "verify",
3f9f4e26 1915 },
546a9142 1916 {
a59e170d 1917 .name = "verify_offset",
e01b22b8 1918 .type = FIO_OPT_INT,
a59e170d 1919 .help = "Offset verify header location by N bytes",
546a9142 1920 .def = "0",
5ec10eaa 1921 .cb = str_verify_offset_cb,
afdf9352 1922 .parent = "verify",
546a9142 1923 },
e28218f3
SL
1924 {
1925 .name = "verify_pattern",
0e92f873 1926 .type = FIO_OPT_STR,
e28218f3
SL
1927 .cb = str_verify_pattern_cb,
1928 .help = "Fill pattern for IO buffers",
1929 .parent = "verify",
1930 },
a12a3b4d
JA
1931 {
1932 .name = "verify_fatal",
68e1f29a 1933 .type = FIO_OPT_BOOL,
a12a3b4d
JA
1934 .off1 = td_var_offset(verify_fatal),
1935 .def = "0",
1936 .help = "Exit on a single verify failure, don't continue",
1937 .parent = "verify",
1938 },
b463e936
JA
1939 {
1940 .name = "verify_dump",
1941 .type = FIO_OPT_BOOL,
1942 .off1 = td_var_offset(verify_dump),
ef71e317 1943 .def = "0",
b463e936
JA
1944 .help = "Dump contents of good and bad blocks on failure",
1945 .parent = "verify",
1946 },
e8462bd8
JA
1947 {
1948 .name = "verify_async",
1949 .type = FIO_OPT_INT,
1950 .off1 = td_var_offset(verify_async),
1951 .def = "0",
1952 .help = "Number of async verifier threads to use",
1953 .parent = "verify",
1954 },
9e144189
JA
1955 {
1956 .name = "verify_backlog",
1957 .type = FIO_OPT_STR_VAL,
1958 .off1 = td_var_offset(verify_backlog),
1959 .help = "Verify after this number of blocks are written",
1960 .parent = "verify",
1961 },
1962 {
1963 .name = "verify_backlog_batch",
1964 .type = FIO_OPT_INT,
1965 .off1 = td_var_offset(verify_batch),
1966 .help = "Verify this number of IO blocks",
0d29de83 1967 .parent = "verify",
9e144189 1968 },
e8462bd8
JA
1969#ifdef FIO_HAVE_CPU_AFFINITY
1970 {
1971 .name = "verify_async_cpus",
1972 .type = FIO_OPT_STR,
1973 .cb = str_verify_cpus_allowed_cb,
1974 .help = "Set CPUs allowed for async verify threads",
1975 .parent = "verify_async",
1976 },
0d29de83 1977#endif
51aa2da8
JA
1978 {
1979 .name = "experimental_verify",
1980 .off1 = td_var_offset(experimental_verify),
1981 .type = FIO_OPT_BOOL,
b31eaac9 1982 .help = "Enable experimental verification",
51aa2da8 1983 },
0d29de83
JA
1984#ifdef FIO_HAVE_TRIM
1985 {
1986 .name = "trim_percentage",
1987 .type = FIO_OPT_INT,
1988 .cb = str_verify_trim_cb,
1989 .maxval = 100,
1990 .help = "Number of verify blocks to discard/trim",
1991 .parent = "verify",
1992 .def = "0",
1993 },
1994 {
1995 .name = "trim_verify_zero",
1996 .type = FIO_OPT_INT,
1997 .help = "Verify that trim/discarded blocks are returned as zeroes",
1998 .off1 = td_var_offset(trim_zero),
1999 .parent = "trim_percentage",
2000 .def = "1",
2001 },
2002 {
2003 .name = "trim_backlog",
2004 .type = FIO_OPT_STR_VAL,
2005 .off1 = td_var_offset(trim_backlog),
2006 .help = "Trim after this number of blocks are written",
2007 .parent = "trim_percentage",
2008 },
2009 {
2010 .name = "trim_backlog_batch",
2011 .type = FIO_OPT_INT,
2012 .off1 = td_var_offset(trim_batch),
2013 .help = "Trim this number of IO blocks",
2014 .parent = "trim_percentage",
2015 },
e8462bd8 2016#endif
214e1eca
JA
2017 {
2018 .name = "write_iolog",
2019 .type = FIO_OPT_STR_STORE,
2020 .off1 = td_var_offset(write_iolog_file),
2021 .help = "Store IO pattern to file",
2022 },
2023 {
2024 .name = "read_iolog",
2025 .type = FIO_OPT_STR_STORE,
2026 .off1 = td_var_offset(read_iolog_file),
2027 .help = "Playback IO pattern from file",
2028 },
64bbb865
DN
2029 {
2030 .name = "replay_no_stall",
2031 .type = FIO_OPT_INT,
2032 .off1 = td_var_offset(no_stall),
2033 .def = "0",
87e7a972 2034 .parent = "read_iolog",
64bbb865
DN
2035 .help = "Playback IO pattern file as fast as possible without stalls",
2036 },
d1c46c04
DN
2037 {
2038 .name = "replay_redirect",
2039 .type = FIO_OPT_STR_STORE,
2040 .off1 = td_var_offset(replay_redirect),
2041 .parent = "read_iolog",
2042 .help = "Replay all I/O onto this device, regardless of trace device",
2043 },
214e1eca
JA
2044 {
2045 .name = "exec_prerun",
2046 .type = FIO_OPT_STR_STORE,
2047 .off1 = td_var_offset(exec_prerun),
2048 .help = "Execute this file prior to running job",
2049 },
2050 {
2051 .name = "exec_postrun",
2052 .type = FIO_OPT_STR_STORE,
2053 .off1 = td_var_offset(exec_postrun),
2054 .help = "Execute this file after running job",
2055 },
2056#ifdef FIO_HAVE_IOSCHED_SWITCH
2057 {
2058 .name = "ioscheduler",
2059 .type = FIO_OPT_STR_STORE,
2060 .off1 = td_var_offset(ioscheduler),
2061 .help = "Use this IO scheduler on the backing device",
2062 },
2063#endif
2064 {
2065 .name = "zonesize",
2066 .type = FIO_OPT_STR_VAL,
2067 .off1 = td_var_offset(zone_size),
ed335855
SN
2068 .help = "Amount of data to read per zone",
2069 .def = "0",
2070 },
2071 {
2072 .name = "zonerange",
2073 .type = FIO_OPT_STR_VAL,
2074 .off1 = td_var_offset(zone_range),
214e1eca
JA
2075 .help = "Give size of an IO zone",
2076 .def = "0",
2077 },
2078 {
2079 .name = "zoneskip",
2080 .type = FIO_OPT_STR_VAL,
2081 .off1 = td_var_offset(zone_skip),
2082 .help = "Space between IO zones",
2083 .def = "0",
2084 },
2085 {
2086 .name = "lockmem",
2087 .type = FIO_OPT_STR_VAL,
2088 .cb = str_lockmem_cb,
2089 .help = "Lock down this amount of memory",
2090 .def = "0",
2091 },
214e1eca
JA
2092 {
2093 .name = "rwmixread",
2094 .type = FIO_OPT_INT,
cb499fc4 2095 .cb = str_rwmix_read_cb,
214e1eca
JA
2096 .maxval = 100,
2097 .help = "Percentage of mixed workload that is reads",
2098 .def = "50",
2099 },
2100 {
2101 .name = "rwmixwrite",
2102 .type = FIO_OPT_INT,
cb499fc4 2103 .cb = str_rwmix_write_cb,
214e1eca
JA
2104 .maxval = 100,
2105 .help = "Percentage of mixed workload that is writes",
2106 .def = "50",
2107 },
afdf9352
JA
2108 {
2109 .name = "rwmixcycle",
15ca150e 2110 .type = FIO_OPT_DEPRECATED,
afdf9352 2111 },
214e1eca
JA
2112 {
2113 .name = "nice",
2114 .type = FIO_OPT_INT,
2115 .off1 = td_var_offset(nice),
2116 .help = "Set job CPU nice value",
2117 .minval = -19,
2118 .maxval = 20,
2119 .def = "0",
2120 },
2121#ifdef FIO_HAVE_IOPRIO
2122 {
2123 .name = "prio",
2124 .type = FIO_OPT_INT,
2125 .cb = str_prio_cb,
2126 .help = "Set job IO priority value",
2127 .minval = 0,
2128 .maxval = 7,
2129 },
2130 {
2131 .name = "prioclass",
2132 .type = FIO_OPT_INT,
2133 .cb = str_prioclass_cb,
2134 .help = "Set job IO priority class",
2135 .minval = 0,
2136 .maxval = 3,
2137 },
2138#endif
2139 {
2140 .name = "thinktime",
2141 .type = FIO_OPT_INT,
2142 .off1 = td_var_offset(thinktime),
2143 .help = "Idle time between IO buffers (usec)",
2144 .def = "0",
2145 },
2146 {
2147 .name = "thinktime_spin",
2148 .type = FIO_OPT_INT,
2149 .off1 = td_var_offset(thinktime_spin),
2150 .help = "Start think time by spinning this amount (usec)",
2151 .def = "0",
afdf9352 2152 .parent = "thinktime",
214e1eca
JA
2153 },
2154 {
2155 .name = "thinktime_blocks",
2156 .type = FIO_OPT_INT,
2157 .off1 = td_var_offset(thinktime_blocks),
2158 .help = "IO buffer period between 'thinktime'",
2159 .def = "1",
afdf9352 2160 .parent = "thinktime",
214e1eca
JA
2161 },
2162 {
2163 .name = "rate",
e01b22b8 2164 .type = FIO_OPT_INT,
6eaf09d6
SL
2165 .off1 = td_var_offset(rate[DDIR_READ]),
2166 .off2 = td_var_offset(rate[DDIR_WRITE]),
2167 .off3 = td_var_offset(rate[DDIR_TRIM]),
214e1eca
JA
2168 .help = "Set bandwidth rate",
2169 },
2170 {
2171 .name = "ratemin",
e01b22b8 2172 .type = FIO_OPT_INT,
6eaf09d6
SL
2173 .off1 = td_var_offset(ratemin[DDIR_READ]),
2174 .off2 = td_var_offset(ratemin[DDIR_WRITE]),
2175 .off3 = td_var_offset(ratemin[DDIR_TRIM]),
4e991c23 2176 .help = "Job must meet this rate or it will be shutdown",
afdf9352 2177 .parent = "rate",
4e991c23
JA
2178 },
2179 {
2180 .name = "rate_iops",
e01b22b8 2181 .type = FIO_OPT_INT,
6eaf09d6
SL
2182 .off1 = td_var_offset(rate_iops[DDIR_READ]),
2183 .off2 = td_var_offset(rate_iops[DDIR_WRITE]),
2184 .off3 = td_var_offset(rate_iops[DDIR_TRIM]),
4e991c23
JA
2185 .help = "Limit IO used to this number of IO operations/sec",
2186 },
2187 {
2188 .name = "rate_iops_min",
e01b22b8 2189 .type = FIO_OPT_INT,
6eaf09d6
SL
2190 .off1 = td_var_offset(rate_iops_min[DDIR_READ]),
2191 .off2 = td_var_offset(rate_iops_min[DDIR_WRITE]),
2192 .off3 = td_var_offset(rate_iops_min[DDIR_TRIM]),
03e20d68 2193 .help = "Job must meet this rate or it will be shut down",
afdf9352 2194 .parent = "rate_iops",
214e1eca
JA
2195 },
2196 {
2197 .name = "ratecycle",
2198 .type = FIO_OPT_INT,
2199 .off1 = td_var_offset(ratecycle),
2200 .help = "Window average for rate limits (msec)",
2201 .def = "1000",
afdf9352 2202 .parent = "rate",
214e1eca 2203 },
15501535
JA
2204 {
2205 .name = "max_latency",
2206 .type = FIO_OPT_INT,
2207 .off1 = td_var_offset(max_latency),
2208 .help = "Maximum tolerated IO latency (usec)",
2209 },
214e1eca
JA
2210 {
2211 .name = "invalidate",
2212 .type = FIO_OPT_BOOL,
2213 .off1 = td_var_offset(invalidate_cache),
2214 .help = "Invalidate buffer/page cache prior to running job",
2215 .def = "1",
2216 },
2217 {
2218 .name = "sync",
2219 .type = FIO_OPT_BOOL,
2220 .off1 = td_var_offset(sync_io),
2221 .help = "Use O_SYNC for buffered writes",
2222 .def = "0",
67a1000f 2223 .parent = "buffered",
214e1eca
JA
2224 },
2225 {
2226 .name = "bwavgtime",
2227 .type = FIO_OPT_INT,
2228 .off1 = td_var_offset(bw_avg_time),
5ec10eaa
JA
2229 .help = "Time window over which to calculate bandwidth"
2230 " (msec)",
214e1eca 2231 .def = "500",
c8eeb9df
JA
2232 .parent = "write_bw_log",
2233 },
2234 {
2235 .name = "iopsavgtime",
2236 .type = FIO_OPT_INT,
2237 .off1 = td_var_offset(iops_avg_time),
2238 .help = "Time window over which to calculate IOPS (msec)",
2239 .def = "500",
2240 .parent = "write_iops_log",
214e1eca
JA
2241 },
2242 {
2243 .name = "create_serialize",
2244 .type = FIO_OPT_BOOL,
2245 .off1 = td_var_offset(create_serialize),
2246 .help = "Serialize creating of job files",
2247 .def = "1",
2248 },
2249 {
2250 .name = "create_fsync",
2251 .type = FIO_OPT_BOOL,
2252 .off1 = td_var_offset(create_fsync),
03e20d68 2253 .help = "fsync file after creation",
214e1eca
JA
2254 .def = "1",
2255 },
814452bd
JA
2256 {
2257 .name = "create_on_open",
2258 .type = FIO_OPT_BOOL,
2259 .off1 = td_var_offset(create_on_open),
2260 .help = "Create files when they are opened for IO",
2261 .def = "0",
2262 },
25460cf6
JA
2263 {
2264 .name = "create_only",
2265 .type = FIO_OPT_BOOL,
2266 .off1 = td_var_offset(create_only),
2267 .help = "Only perform file creation phase",
2268 .def = "0",
2269 },
0b9d69ec 2270 {
afad68f7
ZY
2271 .name = "pre_read",
2272 .type = FIO_OPT_BOOL,
2273 .off1 = td_var_offset(pre_read),
03e20d68 2274 .help = "Pre-read files before starting official testing",
afad68f7
ZY
2275 .def = "0",
2276 },
214e1eca
JA
2277 {
2278 .name = "cpuload",
2279 .type = FIO_OPT_INT,
2280 .off1 = td_var_offset(cpuload),
2281 .help = "Use this percentage of CPU",
2282 },
2283 {
2284 .name = "cpuchunks",
2285 .type = FIO_OPT_INT,
2286 .off1 = td_var_offset(cpucycle),
2287 .help = "Length of the CPU burn cycles (usecs)",
2288 .def = "50000",
67a1000f 2289 .parent = "cpuload",
214e1eca
JA
2290 },
2291#ifdef FIO_HAVE_CPU_AFFINITY
2292 {
2293 .name = "cpumask",
2294 .type = FIO_OPT_INT,
2295 .cb = str_cpumask_cb,
2296 .help = "CPU affinity mask",
2297 },
d2e268b0
JA
2298 {
2299 .name = "cpus_allowed",
2300 .type = FIO_OPT_STR,
2301 .cb = str_cpus_allowed_cb,
2302 .help = "Set CPUs allowed",
2303 },
d0b937ed 2304#endif
67bf9823 2305#ifdef CONFIG_LIBNUMA
d0b937ed
YR
2306 {
2307 .name = "numa_cpu_nodes",
2308 .type = FIO_OPT_STR,
2309 .cb = str_numa_cpunodes_cb,
2310 .help = "NUMA CPU nodes bind",
2311 },
2312 {
2313 .name = "numa_mem_policy",
2314 .type = FIO_OPT_STR,
2315 .cb = str_numa_mpol_cb,
2316 .help = "NUMA memory policy setup",
2317 },
214e1eca
JA
2318#endif
2319 {
2320 .name = "end_fsync",
2321 .type = FIO_OPT_BOOL,
2322 .off1 = td_var_offset(end_fsync),
2323 .help = "Include fsync at the end of job",
2324 .def = "0",
2325 },
2326 {
2327 .name = "fsync_on_close",
2328 .type = FIO_OPT_BOOL,
2329 .off1 = td_var_offset(fsync_on_close),
2330 .help = "fsync files on close",
2331 .def = "0",
2332 },
2333 {
2334 .name = "unlink",
2335 .type = FIO_OPT_BOOL,
2336 .off1 = td_var_offset(unlink),
2337 .help = "Unlink created files after job has completed",
2338 .def = "0",
2339 },
2340 {
2341 .name = "exitall",
2342 .type = FIO_OPT_STR_SET,
2343 .cb = str_exitall_cb,
2344 .help = "Terminate all jobs when one exits",
2345 },
2346 {
2347 .name = "stonewall",
d392365e 2348 .alias = "wait_for_previous",
214e1eca
JA
2349 .type = FIO_OPT_STR_SET,
2350 .off1 = td_var_offset(stonewall),
2351 .help = "Insert a hard barrier between this job and previous",
2352 },
b3d62a75
JA
2353 {
2354 .name = "new_group",
2355 .type = FIO_OPT_STR_SET,
2356 .off1 = td_var_offset(new_group),
2357 .help = "Mark the start of a new group (for reporting)",
2358 },
214e1eca
JA
2359 {
2360 .name = "thread",
2361 .type = FIO_OPT_STR_SET,
2362 .off1 = td_var_offset(use_thread),
2363 .help = "Use threads instead of forks",
2364 },
2365 {
2366 .name = "write_bw_log",
e3cedca7 2367 .type = FIO_OPT_STR,
214e1eca 2368 .off1 = td_var_offset(write_bw_log),
e3cedca7 2369 .cb = str_write_bw_log_cb,
214e1eca
JA
2370 .help = "Write log of bandwidth during run",
2371 },
2372 {
2373 .name = "write_lat_log",
e3cedca7 2374 .type = FIO_OPT_STR,
214e1eca 2375 .off1 = td_var_offset(write_lat_log),
e3cedca7 2376 .cb = str_write_lat_log_cb,
214e1eca
JA
2377 .help = "Write log of latency during run",
2378 },
c8eeb9df
JA
2379 {
2380 .name = "write_iops_log",
2381 .type = FIO_OPT_STR,
2382 .off1 = td_var_offset(write_iops_log),
2383 .cb = str_write_iops_log_cb,
2384 .help = "Write log of IOPS during run",
2385 },
b8bc8cba
JA
2386 {
2387 .name = "log_avg_msec",
2388 .type = FIO_OPT_INT,
2389 .off1 = td_var_offset(log_avg_msec),
2390 .help = "Average bw/iops/lat logs over this period of time",
2391 .def = "0",
2392 },
214e1eca
JA
2393 {
2394 .name = "hugepage-size",
e01b22b8 2395 .type = FIO_OPT_INT,
214e1eca
JA
2396 .off1 = td_var_offset(hugepage_size),
2397 .help = "When using hugepages, specify size of each page",
81179eec 2398 .def = __fio_stringify(FIO_HUGE_PAGE),
214e1eca
JA
2399 },
2400 {
2401 .name = "group_reporting",
2402 .type = FIO_OPT_STR_SET,
2403 .off1 = td_var_offset(group_reporting),
2404 .help = "Do reporting on a per-group basis",
2405 },
e9459e5a
JA
2406 {
2407 .name = "zero_buffers",
2408 .type = FIO_OPT_STR_SET,
2409 .off1 = td_var_offset(zero_buffers),
2410 .help = "Init IO buffers to all zeroes",
2411 },
5973cafb
JA
2412 {
2413 .name = "refill_buffers",
2414 .type = FIO_OPT_STR_SET,
2415 .off1 = td_var_offset(refill_buffers),
2416 .help = "Refill IO buffers on every IO submit",
2417 },
fd68418e
JA
2418 {
2419 .name = "scramble_buffers",
2420 .type = FIO_OPT_BOOL,
2421 .off1 = td_var_offset(scramble_buffers),
2422 .help = "Slightly scramble buffers on every IO submit",
2423 .def = "1",
2424 },
9c42684e
JA
2425 {
2426 .name = "buffer_compress_percentage",
2427 .type = FIO_OPT_INT,
2428 .off1 = td_var_offset(compress_percentage),
2429 .maxval = 100,
2430 .minval = 1,
2431 .help = "How compressible the buffer is (approximately)",
2432 },
f97a43a1
JA
2433 {
2434 .name = "buffer_compress_chunk",
2435 .type = FIO_OPT_INT,
2436 .off1 = td_var_offset(compress_chunk),
207b18e4 2437 .parent = "buffer_compress_percentage",
f97a43a1
JA
2438 .help = "Size of compressible region in buffer",
2439 },
83349190
YH
2440 {
2441 .name = "clat_percentiles",
2442 .type = FIO_OPT_BOOL,
2443 .off1 = td_var_offset(clat_percentiles),
2444 .help = "Enable the reporting of completion latency percentiles",
467b35ed 2445 .def = "1",
83349190
YH
2446 },
2447 {
2448 .name = "percentile_list",
2449 .type = FIO_OPT_FLOAT_LIST,
2450 .off1 = td_var_offset(percentile_list),
435d195a 2451 .off2 = td_var_offset(percentile_precision),
83349190 2452 .help = "Specify a custom list of percentiles to report",
fd112d34 2453 .def = "1:5:10:20:30:40:50:60:70:80:90:95:99:99.5:99.9:99.95:99.99",
83349190
YH
2454 .maxlen = FIO_IO_U_LIST_MAX_LEN,
2455 .minfp = 0.0,
2456 .maxfp = 100.0,
2457 },
2458
0a839f30
JA
2459#ifdef FIO_HAVE_DISK_UTIL
2460 {
2461 .name = "disk_util",
2462 .type = FIO_OPT_BOOL,
2463 .off1 = td_var_offset(do_disk_util),
f66ab3c8 2464 .help = "Log disk utilization statistics",
0a839f30
JA
2465 .def = "1",
2466 },
2467#endif
993bf48b
JA
2468 {
2469 .name = "gtod_reduce",
2470 .type = FIO_OPT_BOOL,
2471 .help = "Greatly reduce number of gettimeofday() calls",
2472 .cb = str_gtod_reduce_cb,
2473 .def = "0",
2474 },
02af0988
JA
2475 {
2476 .name = "disable_lat",
2477 .type = FIO_OPT_BOOL,
2478 .off1 = td_var_offset(disable_lat),
2479 .help = "Disable latency numbers",
2480 .parent = "gtod_reduce",
2481 .def = "0",
2482 },
9520ebb9
JA
2483 {
2484 .name = "disable_clat",
2485 .type = FIO_OPT_BOOL,
2486 .off1 = td_var_offset(disable_clat),
2487 .help = "Disable completion latency numbers",
993bf48b 2488 .parent = "gtod_reduce",
9520ebb9
JA
2489 .def = "0",
2490 },
2491 {
2492 .name = "disable_slat",
2493 .type = FIO_OPT_BOOL,
2494 .off1 = td_var_offset(disable_slat),
03e20d68 2495 .help = "Disable submission latency numbers",
993bf48b 2496 .parent = "gtod_reduce",
9520ebb9
JA
2497 .def = "0",
2498 },
2499 {
2500 .name = "disable_bw_measurement",
2501 .type = FIO_OPT_BOOL,
2502 .off1 = td_var_offset(disable_bw),
2503 .help = "Disable bandwidth logging",
993bf48b 2504 .parent = "gtod_reduce",
9520ebb9
JA
2505 .def = "0",
2506 },
be4ecfdf
JA
2507 {
2508 .name = "gtod_cpu",
2509 .type = FIO_OPT_INT,
2510 .cb = str_gtod_cpu_cb,
03e20d68 2511 .help = "Set up dedicated gettimeofday() thread on this CPU",
29d43ff9 2512 .verify = gtod_cpu_verify,
be4ecfdf 2513 },
771e58be
JA
2514 {
2515 .name = "unified_rw_reporting",
2516 .type = FIO_OPT_BOOL,
2517 .off1 = td_var_offset(unified_rw_rep),
2518 .help = "Unify reporting across data direction",
2519 .def = "0",
2520 },
f2bba182
RR
2521 {
2522 .name = "continue_on_error",
06842027 2523 .type = FIO_OPT_STR,
f2bba182 2524 .off1 = td_var_offset(continue_on_error),
03e20d68 2525 .help = "Continue on non-fatal errors during IO",
06842027
SL
2526 .def = "none",
2527 .posval = {
2528 { .ival = "none",
2529 .oval = ERROR_TYPE_NONE,
2530 .help = "Exit when an error is encountered",
2531 },
2532 { .ival = "read",
2533 .oval = ERROR_TYPE_READ,
2534 .help = "Continue on read errors only",
2535 },
2536 { .ival = "write",
2537 .oval = ERROR_TYPE_WRITE,
2538 .help = "Continue on write errors only",
2539 },
2540 { .ival = "io",
2541 .oval = ERROR_TYPE_READ | ERROR_TYPE_WRITE,
2542 .help = "Continue on any IO errors",
2543 },
2544 { .ival = "verify",
2545 .oval = ERROR_TYPE_VERIFY,
2546 .help = "Continue on verify errors only",
2547 },
2548 { .ival = "all",
2549 .oval = ERROR_TYPE_ANY,
2550 .help = "Continue on all io and verify errors",
2551 },
2552 { .ival = "0",
2553 .oval = ERROR_TYPE_NONE,
2554 .help = "Alias for 'none'",
2555 },
2556 { .ival = "1",
2557 .oval = ERROR_TYPE_ANY,
2558 .help = "Alias for 'all'",
2559 },
2560 },
f2bba182 2561 },
8b28bd41
DM
2562 {
2563 .name = "ignore_error",
2564 .type = FIO_OPT_STR,
2565 .cb = str_ignore_error_cb,
2566 .help = "Set a specific list of errors to ignore",
2567 .parent = "rw",
2568 },
2569 {
2570 .name = "error_dump",
2571 .type = FIO_OPT_BOOL,
2572 .off1 = td_var_offset(error_dump),
2573 .def = "0",
2574 .help = "Dump info on each error",
2575 },
2576
9ac8a797
JA
2577 {
2578 .name = "profile",
79d16311 2579 .type = FIO_OPT_STR_STORE,
9ac8a797 2580 .off1 = td_var_offset(profile),
9ac8a797
JA
2581 .help = "Select a specific builtin performance test",
2582 },
a696fa2a
JA
2583 {
2584 .name = "cgroup",
2585 .type = FIO_OPT_STR_STORE,
2586 .off1 = td_var_offset(cgroup),
2587 .help = "Add job to cgroup of this name",
2588 },
2589 {
2590 .name = "cgroup_weight",
2591 .type = FIO_OPT_INT,
2592 .off1 = td_var_offset(cgroup_weight),
2593 .help = "Use given weight for cgroup",
2594 .minval = 100,
2595 .maxval = 1000,
a696fa2a 2596 },
7de87099
VG
2597 {
2598 .name = "cgroup_nodelete",
2599 .type = FIO_OPT_BOOL,
2600 .off1 = td_var_offset(cgroup_nodelete),
2601 .help = "Do not delete cgroups after job completion",
2602 .def = "0",
2603 },
e0b0d892
JA
2604 {
2605 .name = "uid",
2606 .type = FIO_OPT_INT,
2607 .off1 = td_var_offset(uid),
2608 .help = "Run job with this user ID",
2609 },
2610 {
2611 .name = "gid",
2612 .type = FIO_OPT_INT,
2613 .off1 = td_var_offset(gid),
2614 .help = "Run job with this group ID",
2615 },
9e684a49
DE
2616 {
2617 .name = "flow_id",
2618 .type = FIO_OPT_INT,
2619 .off1 = td_var_offset(flow_id),
2620 .help = "The flow index ID to use",
2621 .def = "0",
2622 },
2623 {
2624 .name = "flow",
2625 .type = FIO_OPT_INT,
2626 .off1 = td_var_offset(flow),
2627 .help = "Weight for flow control of this job",
2628 .parent = "flow_id",
2629 .def = "0",
2630 },
2631 {
2632 .name = "flow_watermark",
2633 .type = FIO_OPT_INT,
2634 .off1 = td_var_offset(flow_watermark),
2635 .help = "High watermark for flow control. This option"
2636 " should be set to the same value for all threads"
2637 " with non-zero flow.",
2638 .parent = "flow_id",
2639 .def = "1024",
2640 },
2641 {
2642 .name = "flow_sleep",
2643 .type = FIO_OPT_INT,
2644 .off1 = td_var_offset(flow_sleep),
2645 .help = "How many microseconds to sleep after being held"
2646 " back by the flow control mechanism",
2647 .parent = "flow_id",
2648 .def = "0",
2649 },
214e1eca
JA
2650 {
2651 .name = NULL,
2652 },
2653};
2654
17af15d4 2655static void add_to_lopt(struct option *lopt, struct fio_option *o,
de890a1e 2656 const char *name, int val)
9f81736c 2657{
17af15d4 2658 lopt->name = (char *) name;
de890a1e 2659 lopt->val = val;
9f81736c
JA
2660 if (o->type == FIO_OPT_STR_SET)
2661 lopt->has_arg = no_argument;
2662 else
2663 lopt->has_arg = required_argument;
2664}
2665
de890a1e
SL
2666static void options_to_lopts(struct fio_option *opts,
2667 struct option *long_options,
2668 int i, int option_type)
214e1eca 2669{
de890a1e 2670 struct fio_option *o = &opts[0];
214e1eca 2671 while (o->name) {
de890a1e 2672 add_to_lopt(&long_options[i], o, o->name, option_type);
17af15d4
JA
2673 if (o->alias) {
2674 i++;
de890a1e 2675 add_to_lopt(&long_options[i], o, o->alias, option_type);
17af15d4 2676 }
214e1eca
JA
2677
2678 i++;
2679 o++;
2680 assert(i < FIO_NR_OPTIONS);
2681 }
2682}
2683
de890a1e
SL
2684void fio_options_set_ioengine_opts(struct option *long_options,
2685 struct thread_data *td)
2686{
2687 unsigned int i;
2688
2689 i = 0;
2690 while (long_options[i].name) {
2691 if (long_options[i].val == FIO_GETOPT_IOENGINE) {
2692 memset(&long_options[i], 0, sizeof(*long_options));
2693 break;
2694 }
2695 i++;
2696 }
2697
2698 /*
2699 * Just clear out the prior ioengine options.
2700 */
2701 if (!td || !td->eo)
2702 return;
2703
2704 options_to_lopts(td->io_ops->options, long_options, i,
2705 FIO_GETOPT_IOENGINE);
2706}
2707
2708void fio_options_dup_and_init(struct option *long_options)
2709{
2710 unsigned int i;
2711
2712 options_init(options);
2713
2714 i = 0;
2715 while (long_options[i].name)
2716 i++;
2717
2718 options_to_lopts(options, long_options, i, FIO_GETOPT_JOB);
2719}
2720
74929ac2
JA
2721struct fio_keyword {
2722 const char *word;
2723 const char *desc;
2724 char *replace;
2725};
2726
2727static struct fio_keyword fio_keywords[] = {
2728 {
2729 .word = "$pagesize",
2730 .desc = "Page size in the system",
2731 },
2732 {
2733 .word = "$mb_memory",
2734 .desc = "Megabytes of memory online",
2735 },
2736 {
2737 .word = "$ncpus",
2738 .desc = "Number of CPUs online in the system",
2739 },
2740 {
2741 .word = NULL,
2742 },
2743};
2744
2745void fio_keywords_init(void)
2746{
3b2e1464 2747 unsigned long long mb_memory;
74929ac2
JA
2748 char buf[128];
2749 long l;
2750
a4cfc477 2751 sprintf(buf, "%lu", (unsigned long) page_size);
74929ac2
JA
2752 fio_keywords[0].replace = strdup(buf);
2753
8eb016d3 2754 mb_memory = os_phys_mem() / (1024 * 1024);
3b2e1464 2755 sprintf(buf, "%llu", mb_memory);
74929ac2
JA
2756 fio_keywords[1].replace = strdup(buf);
2757
c00a2289 2758 l = cpus_online();
74929ac2
JA
2759 sprintf(buf, "%lu", l);
2760 fio_keywords[2].replace = strdup(buf);
2761}
2762
892a6ffc
JA
2763#define BC_APP "bc"
2764
2765static char *bc_calc(char *str)
2766{
d0c814ec 2767 char buf[128], *tmp;
892a6ffc
JA
2768 FILE *f;
2769 int ret;
2770
2771 /*
2772 * No math, just return string
2773 */
d0c814ec
SL
2774 if ((!strchr(str, '+') && !strchr(str, '-') && !strchr(str, '*') &&
2775 !strchr(str, '/')) || strchr(str, '\''))
892a6ffc
JA
2776 return str;
2777
2778 /*
2779 * Split option from value, we only need to calculate the value
2780 */
2781 tmp = strchr(str, '=');
2782 if (!tmp)
2783 return str;
2784
2785 tmp++;
892a6ffc 2786
d0c814ec
SL
2787 /*
2788 * Prevent buffer overflows; such a case isn't reasonable anyway
2789 */
2790 if (strlen(str) >= 128 || strlen(tmp) > 100)
2791 return str;
892a6ffc
JA
2792
2793 sprintf(buf, "which %s > /dev/null", BC_APP);
2794 if (system(buf)) {
2795 log_err("fio: bc is needed for performing math\n");
892a6ffc
JA
2796 return NULL;
2797 }
2798
d0c814ec 2799 sprintf(buf, "echo '%s' | %s", tmp, BC_APP);
892a6ffc
JA
2800 f = popen(buf, "r");
2801 if (!f) {
892a6ffc
JA
2802 return NULL;
2803 }
2804
d0c814ec 2805 ret = fread(&buf[tmp - str], 1, 128 - (tmp - str), f);
892a6ffc 2806 if (ret <= 0) {
892a6ffc
JA
2807 return NULL;
2808 }
2809
892a6ffc 2810 pclose(f);
d0c814ec
SL
2811 buf[(tmp - str) + ret - 1] = '\0';
2812 memcpy(buf, str, tmp - str);
892a6ffc 2813 free(str);
d0c814ec
SL
2814 return strdup(buf);
2815}
2816
2817/*
2818 * Return a copy of the input string with substrings of the form ${VARNAME}
2819 * substituted with the value of the environment variable VARNAME. The
2820 * substitution always occurs, even if VARNAME is empty or the corresponding
2821 * environment variable undefined.
2822 */
2823static char *option_dup_subs(const char *opt)
2824{
2825 char out[OPT_LEN_MAX+1];
2826 char in[OPT_LEN_MAX+1];
2827 char *outptr = out;
2828 char *inptr = in;
2829 char *ch1, *ch2, *env;
2830 ssize_t nchr = OPT_LEN_MAX;
2831 size_t envlen;
2832
2833 if (strlen(opt) + 1 > OPT_LEN_MAX) {
2834 log_err("OPT_LEN_MAX (%d) is too small\n", OPT_LEN_MAX);
2835 return NULL;
2836 }
2837
2838 in[OPT_LEN_MAX] = '\0';
2839 strncpy(in, opt, OPT_LEN_MAX);
2840
2841 while (*inptr && nchr > 0) {
2842 if (inptr[0] == '$' && inptr[1] == '{') {
2843 ch2 = strchr(inptr, '}');
2844 if (ch2 && inptr+1 < ch2) {
2845 ch1 = inptr+2;
2846 inptr = ch2+1;
2847 *ch2 = '\0';
2848
2849 env = getenv(ch1);
2850 if (env) {
2851 envlen = strlen(env);
2852 if (envlen <= nchr) {
2853 memcpy(outptr, env, envlen);
2854 outptr += envlen;
2855 nchr -= envlen;
2856 }
2857 }
2858
2859 continue;
2860 }
2861 }
2862
2863 *outptr++ = *inptr++;
2864 --nchr;
2865 }
2866
2867 *outptr = '\0';
2868 return strdup(out);
892a6ffc
JA
2869}
2870
74929ac2
JA
2871/*
2872 * Look for reserved variable names and replace them with real values
2873 */
2874static char *fio_keyword_replace(char *opt)
2875{
2876 char *s;
2877 int i;
d0c814ec 2878 int docalc = 0;
74929ac2
JA
2879
2880 for (i = 0; fio_keywords[i].word != NULL; i++) {
2881 struct fio_keyword *kw = &fio_keywords[i];
2882
2883 while ((s = strstr(opt, kw->word)) != NULL) {
2884 char *new = malloc(strlen(opt) + 1);
2885 char *o_org = opt;
2886 int olen = s - opt;
2887 int len;
2888
2889 /*
2890 * Copy part of the string before the keyword and
2891 * sprintf() the replacement after it.
2892 */
2893 memcpy(new, opt, olen);
2894 len = sprintf(new + olen, "%s", kw->replace);
2895
2896 /*
2897 * If there's more in the original string, copy that
2898 * in too
2899 */
2900 opt += strlen(kw->word) + olen;
2901 if (strlen(opt))
2902 memcpy(new + olen + len, opt, opt - o_org - 1);
2903
2904 /*
2905 * replace opt and free the old opt
2906 */
2907 opt = new;
d0c814ec 2908 free(o_org);
7a958bd5 2909
d0c814ec 2910 docalc = 1;
74929ac2
JA
2911 }
2912 }
2913
d0c814ec
SL
2914 /*
2915 * Check for potential math and invoke bc, if possible
2916 */
2917 if (docalc)
2918 opt = bc_calc(opt);
2919
7a958bd5 2920 return opt;
74929ac2
JA
2921}
2922
d0c814ec
SL
2923static char **dup_and_sub_options(char **opts, int num_opts)
2924{
2925 int i;
2926 char **opts_copy = malloc(num_opts * sizeof(*opts));
2927 for (i = 0; i < num_opts; i++) {
2928 opts_copy[i] = option_dup_subs(opts[i]);
2929 if (!opts_copy[i])
2930 continue;
2931 opts_copy[i] = fio_keyword_replace(opts_copy[i]);
2932 }
2933 return opts_copy;
2934}
2935
3b8b7135 2936int fio_options_parse(struct thread_data *td, char **opts, int num_opts)
214e1eca 2937{
de890a1e 2938 int i, ret, unknown;
d0c814ec 2939 char **opts_copy;
3b8b7135
JA
2940
2941 sort_options(opts, options, num_opts);
d0c814ec 2942 opts_copy = dup_and_sub_options(opts, num_opts);
3b8b7135 2943
de890a1e
SL
2944 for (ret = 0, i = 0, unknown = 0; i < num_opts; i++) {
2945 struct fio_option *o;
2946 int newret = parse_option(opts_copy[i], opts[i], options, &o,
2947 td);
d0c814ec 2948
de890a1e
SL
2949 if (opts_copy[i]) {
2950 if (newret && !o) {
2951 unknown++;
2952 continue;
2953 }
d0c814ec 2954 free(opts_copy[i]);
de890a1e
SL
2955 opts_copy[i] = NULL;
2956 }
2957
2958 ret |= newret;
2959 }
2960
2961 if (unknown) {
2962 ret |= ioengine_load(td);
2963 if (td->eo) {
2964 sort_options(opts_copy, td->io_ops->options, num_opts);
2965 opts = opts_copy;
2966 }
2967 for (i = 0; i < num_opts; i++) {
2968 struct fio_option *o = NULL;
2969 int newret = 1;
2970 if (!opts_copy[i])
2971 continue;
2972
2973 if (td->eo)
2974 newret = parse_option(opts_copy[i], opts[i],
2975 td->io_ops->options, &o,
2976 td->eo);
2977
2978 ret |= newret;
2979 if (!o)
2980 log_err("Bad option <%s>\n", opts[i]);
2981
2982 free(opts_copy[i]);
2983 opts_copy[i] = NULL;
2984 }
74929ac2 2985 }
3b8b7135 2986
d0c814ec 2987 free(opts_copy);
3b8b7135 2988 return ret;
214e1eca
JA
2989}
2990
2991int fio_cmd_option_parse(struct thread_data *td, const char *opt, char *val)
2992{
07b3232d 2993 return parse_cmd_option(opt, val, options, td);
214e1eca
JA
2994}
2995
de890a1e
SL
2996int fio_cmd_ioengine_option_parse(struct thread_data *td, const char *opt,
2997 char *val)
2998{
2999 return parse_cmd_option(opt, val, td->io_ops->options, td);
3000}
3001
214e1eca
JA
3002void fio_fill_default_options(struct thread_data *td)
3003{
3004 fill_default_options(td, options);
3005}
3006
3007int fio_show_option_help(const char *opt)
3008{
07b3232d 3009 return show_cmd_help(options, opt);
214e1eca 3010}
d23bb327 3011
de890a1e 3012void options_mem_dupe(void *data, struct fio_option *options)
d23bb327 3013{
de890a1e 3014 struct fio_option *o;
d23bb327 3015 char **ptr;
d23bb327 3016
de890a1e
SL
3017 for (o = &options[0]; o->name; o++) {
3018 if (o->type != FIO_OPT_STR_STORE)
d23bb327
JA
3019 continue;
3020
de890a1e 3021 ptr = td_var(data, o->off1);
7e356b2d
JA
3022 if (*ptr)
3023 *ptr = strdup(*ptr);
d23bb327
JA
3024 }
3025}
3026
de890a1e
SL
3027/*
3028 * dupe FIO_OPT_STR_STORE options
3029 */
3030void fio_options_mem_dupe(struct thread_data *td)
3031{
3032 options_mem_dupe(&td->o, options);
1647f592
JA
3033
3034 if (td->eo && td->io_ops) {
de890a1e 3035 void *oldeo = td->eo;
1647f592 3036
de890a1e
SL
3037 td->eo = malloc(td->io_ops->option_struct_size);
3038 memcpy(td->eo, oldeo, td->io_ops->option_struct_size);
3039 options_mem_dupe(td->eo, td->io_ops->options);
3040 }
3041}
3042
d6978a32
JA
3043unsigned int fio_get_kb_base(void *data)
3044{
3045 struct thread_data *td = data;
3046 unsigned int kb_base = 0;
3047
3048 if (td)
3049 kb_base = td->o.kb_base;
3050 if (!kb_base)
3051 kb_base = 1024;
3052
3053 return kb_base;
3054}
9f988e2e 3055
07b3232d 3056int add_option(struct fio_option *o)
9f988e2e 3057{
07b3232d
JA
3058 struct fio_option *__o;
3059 int opt_index = 0;
3060
3061 __o = options;
3062 while (__o->name) {
3063 opt_index++;
3064 __o++;
3065 }
3066
3067 memcpy(&options[opt_index], o, sizeof(*o));
3068 return 0;
9f988e2e 3069}
e2de69da 3070
07b3232d 3071void invalidate_profile_options(const char *prof_name)
e2de69da 3072{
07b3232d 3073 struct fio_option *o;
e2de69da 3074
07b3232d
JA
3075 o = options;
3076 while (o->name) {
3077 if (o->prof_name && !strcmp(o->prof_name, prof_name)) {
3078 o->type = FIO_OPT_INVALID;
3079 o->prof_name = NULL;
3080 }
3081 o++;
e2de69da
JA
3082 }
3083}
f5b6bb85
JA
3084
3085void add_opt_posval(const char *optname, const char *ival, const char *help)
3086{
3087 struct fio_option *o;
3088 unsigned int i;
3089
3090 o = find_option(options, optname);
3091 if (!o)
3092 return;
3093
3094 for (i = 0; i < PARSE_MAX_VP; i++) {
3095 if (o->posval[i].ival)
3096 continue;
3097
3098 o->posval[i].ival = ival;
3099 o->posval[i].help = help;
3100 break;
3101 }
3102}
3103
3104void del_opt_posval(const char *optname, const char *ival)
3105{
3106 struct fio_option *o;
3107 unsigned int i;
3108
3109 o = find_option(options, optname);
3110 if (!o)
3111 return;
3112
3113 for (i = 0; i < PARSE_MAX_VP; i++) {
3114 if (!o->posval[i].ival)
3115 continue;
3116 if (strcmp(o->posval[i].ival, ival))
3117 continue;
3118
3119 o->posval[i].ival = NULL;
3120 o->posval[i].help = NULL;
3121 }
3122}
7e356b2d
JA
3123
3124void fio_options_free(struct thread_data *td)
3125{
3126 options_free(options, td);
de890a1e
SL
3127 if (td->eo && td->io_ops && td->io_ops->options) {
3128 options_free(td->io_ops->options, td->eo);
3129 free(td->eo);
3130 td->eo = NULL;
3131 }
7e356b2d 3132}