Make ARMv7 build and work
[fio.git] / options.c
... / ...
CommitLineData
1#include <stdio.h>
2#include <stdlib.h>
3#include <unistd.h>
4#include <ctype.h>
5#include <string.h>
6#include <getopt.h>
7#include <assert.h>
8#include <libgen.h>
9#include <fcntl.h>
10#include <sys/types.h>
11#include <sys/stat.h>
12
13#include "fio.h"
14#include "verify.h"
15#include "parse.h"
16#include "lib/fls.h"
17#include "options.h"
18
19/*
20 * Check if mmap/mmaphuge has a :/foo/bar/file at the end. If so, return that.
21 */
22static char *get_opt_postfix(const char *str)
23{
24 char *p = strstr(str, ":");
25
26 if (!p)
27 return NULL;
28
29 p++;
30 strip_blank_front(&p);
31 strip_blank_end(p);
32 return strdup(p);
33}
34
35static int converthexchartoint(char a)
36{
37 int base;
38
39 switch(a) {
40 case '0'...'9':
41 base = '0';
42 break;
43 case 'A'...'F':
44 base = 'A' - 10;
45 break;
46 case 'a'...'f':
47 base = 'a' - 10;
48 break;
49 default:
50 base = 0;
51 }
52 return (a - base);
53}
54
55static int bs_cmp(const void *p1, const void *p2)
56{
57 const struct bssplit *bsp1 = p1;
58 const struct bssplit *bsp2 = p2;
59
60 return bsp1->perc < bsp2->perc;
61}
62
63static int bssplit_ddir(struct thread_data *td, int ddir, char *str)
64{
65 struct bssplit *bssplit;
66 unsigned int i, perc, perc_missing;
67 unsigned int max_bs, min_bs;
68 long long val;
69 char *fname;
70
71 td->o.bssplit_nr[ddir] = 4;
72 bssplit = malloc(4 * sizeof(struct bssplit));
73
74 i = 0;
75 max_bs = 0;
76 min_bs = -1;
77 while ((fname = strsep(&str, ":")) != NULL) {
78 char *perc_str;
79
80 if (!strlen(fname))
81 break;
82
83 /*
84 * grow struct buffer, if needed
85 */
86 if (i == td->o.bssplit_nr[ddir]) {
87 td->o.bssplit_nr[ddir] <<= 1;
88 bssplit = realloc(bssplit, td->o.bssplit_nr[ddir]
89 * sizeof(struct bssplit));
90 }
91
92 perc_str = strstr(fname, "/");
93 if (perc_str) {
94 *perc_str = '\0';
95 perc_str++;
96 perc = atoi(perc_str);
97 if (perc > 100)
98 perc = 100;
99 else if (!perc)
100 perc = -1;
101 } else
102 perc = -1;
103
104 if (str_to_decimal(fname, &val, 1, td)) {
105 log_err("fio: bssplit conversion failed\n");
106 free(td->o.bssplit);
107 return 1;
108 }
109
110 if (val > max_bs)
111 max_bs = val;
112 if (val < min_bs)
113 min_bs = val;
114
115 bssplit[i].bs = val;
116 bssplit[i].perc = perc;
117 i++;
118 }
119
120 td->o.bssplit_nr[ddir] = i;
121
122 /*
123 * Now check if the percentages add up, and how much is missing
124 */
125 perc = perc_missing = 0;
126 for (i = 0; i < td->o.bssplit_nr[ddir]; i++) {
127 struct bssplit *bsp = &bssplit[i];
128
129 if (bsp->perc == (unsigned char) -1)
130 perc_missing++;
131 else
132 perc += bsp->perc;
133 }
134
135 if (perc > 100) {
136 log_err("fio: bssplit percentages add to more than 100%%\n");
137 free(bssplit);
138 return 1;
139 }
140 /*
141 * If values didn't have a percentage set, divide the remains between
142 * them.
143 */
144 if (perc_missing) {
145 for (i = 0; i < td->o.bssplit_nr[ddir]; i++) {
146 struct bssplit *bsp = &bssplit[i];
147
148 if (bsp->perc == (unsigned char) -1)
149 bsp->perc = (100 - perc) / perc_missing;
150 }
151 }
152
153 td->o.min_bs[ddir] = min_bs;
154 td->o.max_bs[ddir] = max_bs;
155
156 /*
157 * now sort based on percentages, for ease of lookup
158 */
159 qsort(bssplit, td->o.bssplit_nr[ddir], sizeof(struct bssplit), bs_cmp);
160 td->o.bssplit[ddir] = bssplit;
161 return 0;
162
163}
164
165static int str_bssplit_cb(void *data, const char *input)
166{
167 struct thread_data *td = data;
168 char *str, *p, *odir;
169 int ret = 0;
170
171 p = str = strdup(input);
172
173 strip_blank_front(&str);
174 strip_blank_end(str);
175
176 odir = strchr(str, ',');
177 if (odir) {
178 ret = bssplit_ddir(td, DDIR_WRITE, odir + 1);
179 if (!ret) {
180 *odir = '\0';
181 ret = bssplit_ddir(td, DDIR_READ, str);
182 }
183 } else {
184 char *op;
185
186 op = strdup(str);
187
188 ret = bssplit_ddir(td, DDIR_READ, str);
189 if (!ret)
190 ret = bssplit_ddir(td, DDIR_WRITE, op);
191
192 free(op);
193 }
194
195 free(p);
196 return ret;
197}
198
199static int str_rw_cb(void *data, const char *str)
200{
201 struct thread_data *td = data;
202 char *nr = get_opt_postfix(str);
203
204 td->o.ddir_nr = 1;
205 if (nr) {
206 td->o.ddir_nr = atoi(nr);
207 free(nr);
208 }
209
210 return 0;
211}
212
213static int str_mem_cb(void *data, const char *mem)
214{
215 struct thread_data *td = data;
216
217 if (td->o.mem_type == MEM_MMAPHUGE || td->o.mem_type == MEM_MMAP) {
218 td->mmapfile = get_opt_postfix(mem);
219 if (td->o.mem_type == MEM_MMAPHUGE && !td->mmapfile) {
220 log_err("fio: mmaphuge:/path/to/file\n");
221 return 1;
222 }
223 }
224
225 return 0;
226}
227
228static int str_lockmem_cb(void fio_unused *data, unsigned long *val)
229{
230 mlock_size = *val;
231 return 0;
232}
233
234static int str_rwmix_read_cb(void *data, unsigned int *val)
235{
236 struct thread_data *td = data;
237
238 td->o.rwmix[DDIR_READ] = *val;
239 td->o.rwmix[DDIR_WRITE] = 100 - *val;
240 return 0;
241}
242
243static int str_rwmix_write_cb(void *data, unsigned int *val)
244{
245 struct thread_data *td = data;
246
247 td->o.rwmix[DDIR_WRITE] = *val;
248 td->o.rwmix[DDIR_READ] = 100 - *val;
249 return 0;
250}
251
252#ifdef FIO_HAVE_IOPRIO
253static int str_prioclass_cb(void *data, unsigned int *val)
254{
255 struct thread_data *td = data;
256 unsigned short mask;
257
258 /*
259 * mask off old class bits, str_prio_cb() may have set a default class
260 */
261 mask = (1 << IOPRIO_CLASS_SHIFT) - 1;
262 td->ioprio &= mask;
263
264 td->ioprio |= *val << IOPRIO_CLASS_SHIFT;
265 td->ioprio_set = 1;
266 return 0;
267}
268
269static int str_prio_cb(void *data, unsigned int *val)
270{
271 struct thread_data *td = data;
272
273 td->ioprio |= *val;
274
275 /*
276 * If no class is set, assume BE
277 */
278 if ((td->ioprio >> IOPRIO_CLASS_SHIFT) == 0)
279 td->ioprio |= IOPRIO_CLASS_BE << IOPRIO_CLASS_SHIFT;
280
281 td->ioprio_set = 1;
282 return 0;
283}
284#endif
285
286static int str_exitall_cb(void)
287{
288 exitall_on_terminate = 1;
289 return 0;
290}
291
292#ifdef FIO_HAVE_CPU_AFFINITY
293static int str_cpumask_cb(void *data, unsigned int *val)
294{
295 struct thread_data *td = data;
296 unsigned int i;
297 long max_cpu;
298 int ret;
299
300 ret = fio_cpuset_init(&td->o.cpumask);
301 if (ret < 0) {
302 log_err("fio: cpuset_init failed\n");
303 td_verror(td, ret, "fio_cpuset_init");
304 return 1;
305 }
306
307 max_cpu = sysconf(_SC_NPROCESSORS_ONLN);
308
309 for (i = 0; i < sizeof(int) * 8; i++) {
310 if ((1 << i) & *val) {
311 if (i > max_cpu) {
312 log_err("fio: CPU %d too large (max=%ld)\n", i,
313 max_cpu);
314 return 1;
315 }
316 dprint(FD_PARSE, "set cpu allowed %d\n", i);
317 fio_cpu_set(&td->o.cpumask, i);
318 }
319 }
320
321 td->o.cpumask_set = 1;
322 return 0;
323}
324
325static int set_cpus_allowed(struct thread_data *td, os_cpu_mask_t *mask,
326 const char *input)
327{
328 char *cpu, *str, *p;
329 long max_cpu;
330 int ret = 0;
331
332 ret = fio_cpuset_init(mask);
333 if (ret < 0) {
334 log_err("fio: cpuset_init failed\n");
335 td_verror(td, ret, "fio_cpuset_init");
336 return 1;
337 }
338
339 p = str = strdup(input);
340
341 strip_blank_front(&str);
342 strip_blank_end(str);
343
344 max_cpu = sysconf(_SC_NPROCESSORS_ONLN);
345
346 while ((cpu = strsep(&str, ",")) != NULL) {
347 char *str2, *cpu2;
348 int icpu, icpu2;
349
350 if (!strlen(cpu))
351 break;
352
353 str2 = cpu;
354 icpu2 = -1;
355 while ((cpu2 = strsep(&str2, "-")) != NULL) {
356 if (!strlen(cpu2))
357 break;
358
359 icpu2 = atoi(cpu2);
360 }
361
362 icpu = atoi(cpu);
363 if (icpu2 == -1)
364 icpu2 = icpu;
365 while (icpu <= icpu2) {
366 if (icpu >= FIO_MAX_CPUS) {
367 log_err("fio: your OS only supports up to"
368 " %d CPUs\n", (int) FIO_MAX_CPUS);
369 ret = 1;
370 break;
371 }
372 if (icpu > max_cpu) {
373 log_err("fio: CPU %d too large (max=%ld)\n",
374 icpu, max_cpu);
375 ret = 1;
376 break;
377 }
378
379 dprint(FD_PARSE, "set cpu allowed %d\n", icpu);
380 fio_cpu_set(mask, icpu);
381 icpu++;
382 }
383 if (ret)
384 break;
385 }
386
387 free(p);
388 if (!ret)
389 td->o.cpumask_set = 1;
390 return ret;
391}
392
393static int str_cpus_allowed_cb(void *data, const char *input)
394{
395 struct thread_data *td = data;
396 int ret;
397
398 ret = set_cpus_allowed(td, &td->o.cpumask, input);
399 if (!ret)
400 td->o.cpumask_set = 1;
401
402 return ret;
403}
404
405static int str_verify_cpus_allowed_cb(void *data, const char *input)
406{
407 struct thread_data *td = data;
408 int ret;
409
410 ret = set_cpus_allowed(td, &td->o.verify_cpumask, input);
411 if (!ret)
412 td->o.verify_cpumask_set = 1;
413
414 return ret;
415}
416#endif
417
418static int str_fst_cb(void *data, const char *str)
419{
420 struct thread_data *td = data;
421 char *nr = get_opt_postfix(str);
422
423 td->file_service_nr = 1;
424 if (nr) {
425 td->file_service_nr = atoi(nr);
426 free(nr);
427 }
428
429 return 0;
430}
431
432#ifdef FIO_HAVE_SYNC_FILE_RANGE
433static int str_sfr_cb(void *data, const char *str)
434{
435 struct thread_data *td = data;
436 char *nr = get_opt_postfix(str);
437
438 td->sync_file_range_nr = 1;
439 if (nr) {
440 td->sync_file_range_nr = atoi(nr);
441 free(nr);
442 }
443
444 return 0;
445}
446#endif
447
448static int check_dir(struct thread_data *td, char *fname)
449{
450 char file[PATH_MAX], *dir;
451 int elen = 0;
452
453 if (td->o.directory) {
454 strcpy(file, td->o.directory);
455 strcat(file, "/");
456 elen = strlen(file);
457 }
458
459 sprintf(file + elen, "%s", fname);
460 dir = dirname(file);
461
462#if 0
463 {
464 struct stat sb;
465 /*
466 * We can't do this on FIO_DISKLESSIO engines. The engine isn't loaded
467 * yet, so we can't do this check right here...
468 */
469 if (lstat(dir, &sb) < 0) {
470 int ret = errno;
471
472 log_err("fio: %s is not a directory\n", dir);
473 td_verror(td, ret, "lstat");
474 return 1;
475 }
476
477 if (!S_ISDIR(sb.st_mode)) {
478 log_err("fio: %s is not a directory\n", dir);
479 return 1;
480 }
481 }
482#endif
483
484 return 0;
485}
486
487/*
488 * Return next file in the string. Files are separated with ':'. If the ':'
489 * is escaped with a '\', then that ':' is part of the filename and does not
490 * indicate a new file.
491 */
492static char *get_next_file_name(char **ptr)
493{
494 char *str = *ptr;
495 char *p, *start;
496
497 if (!str || !strlen(str))
498 return NULL;
499
500 start = str;
501 do {
502 /*
503 * No colon, we are done
504 */
505 p = strchr(str, ':');
506 if (!p) {
507 *ptr = NULL;
508 break;
509 }
510
511 /*
512 * We got a colon, but it's the first character. Skip and
513 * continue
514 */
515 if (p == start) {
516 str = ++start;
517 continue;
518 }
519
520 if (*(p - 1) != '\\') {
521 *p = '\0';
522 *ptr = p + 1;
523 break;
524 }
525
526 memmove(p - 1, p, strlen(p) + 1);
527 str = p;
528 } while (1);
529
530 return start;
531}
532
533static int str_filename_cb(void *data, const char *input)
534{
535 struct thread_data *td = data;
536 char *fname, *str, *p;
537
538 p = str = strdup(input);
539
540 strip_blank_front(&str);
541 strip_blank_end(str);
542
543 if (!td->files_index)
544 td->o.nr_files = 0;
545
546 while ((fname = get_next_file_name(&str)) != NULL) {
547 if (!strlen(fname))
548 break;
549 if (check_dir(td, fname)) {
550 free(p);
551 return 1;
552 }
553 add_file(td, fname);
554 td->o.nr_files++;
555 }
556
557 free(p);
558 return 0;
559}
560
561static int str_directory_cb(void *data, const char fio_unused *str)
562{
563 struct thread_data *td = data;
564 struct stat sb;
565
566 if (lstat(td->o.directory, &sb) < 0) {
567 int ret = errno;
568
569 log_err("fio: %s is not a directory\n", td->o.directory);
570 td_verror(td, ret, "lstat");
571 return 1;
572 }
573 if (!S_ISDIR(sb.st_mode)) {
574 log_err("fio: %s is not a directory\n", td->o.directory);
575 return 1;
576 }
577
578 return 0;
579}
580
581static int str_opendir_cb(void *data, const char fio_unused *str)
582{
583 struct thread_data *td = data;
584
585 if (!td->files_index)
586 td->o.nr_files = 0;
587
588 return add_dir_files(td, td->o.opendir);
589}
590
591static int str_verify_offset_cb(void *data, unsigned int *off)
592{
593 struct thread_data *td = data;
594
595 if (*off && *off < sizeof(struct verify_header)) {
596 log_err("fio: verify_offset too small\n");
597 return 1;
598 }
599
600 td->o.verify_offset = *off;
601 return 0;
602}
603
604static int str_verify_pattern_cb(void *data, const char *input)
605{
606 struct thread_data *td = data;
607 long off;
608 int i = 0, j = 0, len, k, base = 10;
609 char* loc1, * loc2;
610
611 loc1 = strstr(input, "0x");
612 loc2 = strstr(input, "0X");
613 if (loc1 || loc2)
614 base = 16;
615 off = strtol(input, NULL, base);
616 if (off != LONG_MAX || errno != ERANGE) {
617 while (off) {
618 td->o.verify_pattern[i] = off & 0xff;
619 off >>= 8;
620 i++;
621 }
622 } else {
623 len = strlen(input);
624 k = len - 1;
625 if (base == 16) {
626 if (loc1)
627 j = loc1 - input + 2;
628 else
629 j = loc2 - input + 2;
630 } else
631 return 1;
632 if (len - j < MAX_PATTERN_SIZE * 2) {
633 while (k >= j) {
634 off = converthexchartoint(input[k--]);
635 if (k >= j)
636 off += (converthexchartoint(input[k--])
637 * 16);
638 td->o.verify_pattern[i++] = (char) off;
639 }
640 }
641 }
642 td->o.verify_pattern_bytes = i;
643 return 0;
644}
645
646static int str_lockfile_cb(void *data, const char *str)
647{
648 struct thread_data *td = data;
649 char *nr = get_opt_postfix(str);
650
651 td->o.lockfile_batch = 1;
652 if (nr) {
653 td->o.lockfile_batch = atoi(nr);
654 free(nr);
655 }
656
657 return 0;
658}
659
660static int str_write_bw_log_cb(void *data, const char *str)
661{
662 struct thread_data *td = data;
663
664 if (str)
665 td->o.bw_log_file = strdup(str);
666
667 td->o.write_bw_log = 1;
668 return 0;
669}
670
671static int str_write_lat_log_cb(void *data, const char *str)
672{
673 struct thread_data *td = data;
674
675 if (str)
676 td->o.lat_log_file = strdup(str);
677
678 td->o.write_lat_log = 1;
679 return 0;
680}
681
682static int str_gtod_reduce_cb(void *data, int *il)
683{
684 struct thread_data *td = data;
685 int val = *il;
686
687 td->o.disable_clat = !!val;
688 td->o.disable_slat = !!val;
689 td->o.disable_bw = !!val;
690 if (val)
691 td->tv_cache_mask = 63;
692
693 return 0;
694}
695
696static int str_gtod_cpu_cb(void *data, int *il)
697{
698 struct thread_data *td = data;
699 int val = *il;
700
701 td->o.gtod_cpu = val;
702 td->o.gtod_offload = 1;
703 return 0;
704}
705
706static int rw_verify(struct fio_option *o, void *data)
707{
708 struct thread_data *td = data;
709
710 if (read_only && td_write(td)) {
711 log_err("fio: job <%s> has write bit set, but fio is in"
712 " read-only mode\n", td->o.name);
713 return 1;
714 }
715
716 return 0;
717}
718
719static int gtod_cpu_verify(struct fio_option *o, void *data)
720{
721#ifndef FIO_HAVE_CPU_AFFINITY
722 struct thread_data *td = data;
723
724 if (td->o.gtod_cpu) {
725 log_err("fio: platform must support CPU affinity for"
726 "gettimeofday() offloading\n");
727 return 1;
728 }
729#endif
730
731 return 0;
732}
733
734static int kb_base_verify(struct fio_option *o, void *data)
735{
736 struct thread_data *td = data;
737
738 if (td->o.kb_base != 1024 && td->o.kb_base != 1000) {
739 log_err("fio: kb_base set to nonsensical value: %u\n",
740 td->o.kb_base);
741 return 1;
742 }
743
744 return 0;
745}
746
747#define __stringify_1(x) #x
748#define __stringify(x) __stringify_1(x)
749
750/*
751 * Map of job/command line options
752 */
753static struct fio_option options[FIO_MAX_OPTS] = {
754 {
755 .name = "description",
756 .type = FIO_OPT_STR_STORE,
757 .off1 = td_var_offset(description),
758 .help = "Text job description",
759 },
760 {
761 .name = "name",
762 .type = FIO_OPT_STR_STORE,
763 .off1 = td_var_offset(name),
764 .help = "Name of this job",
765 },
766 {
767 .name = "directory",
768 .type = FIO_OPT_STR_STORE,
769 .off1 = td_var_offset(directory),
770 .cb = str_directory_cb,
771 .help = "Directory to store files in",
772 },
773 {
774 .name = "filename",
775 .type = FIO_OPT_STR_STORE,
776 .off1 = td_var_offset(filename),
777 .cb = str_filename_cb,
778 .prio = -1, /* must come after "directory" */
779 .help = "File(s) to use for the workload",
780 },
781 {
782 .name = "kb_base",
783 .type = FIO_OPT_INT,
784 .off1 = td_var_offset(kb_base),
785 .verify = kb_base_verify,
786 .prio = 1,
787 .def = "1024",
788 .help = "How many bytes per KB for reporting (1000 or 1024)",
789 },
790 {
791 .name = "lockfile",
792 .type = FIO_OPT_STR,
793 .cb = str_lockfile_cb,
794 .off1 = td_var_offset(file_lock_mode),
795 .help = "Lock file when doing IO to it",
796 .parent = "filename",
797 .def = "none",
798 .posval = {
799 { .ival = "none",
800 .oval = FILE_LOCK_NONE,
801 .help = "No file locking",
802 },
803 { .ival = "exclusive",
804 .oval = FILE_LOCK_EXCLUSIVE,
805 .help = "Exclusive file lock",
806 },
807 {
808 .ival = "readwrite",
809 .oval = FILE_LOCK_READWRITE,
810 .help = "Read vs write lock",
811 },
812 },
813 },
814 {
815 .name = "opendir",
816 .type = FIO_OPT_STR_STORE,
817 .off1 = td_var_offset(opendir),
818 .cb = str_opendir_cb,
819 .help = "Recursively add files from this directory and down",
820 },
821 {
822 .name = "rw",
823 .alias = "readwrite",
824 .type = FIO_OPT_STR,
825 .cb = str_rw_cb,
826 .off1 = td_var_offset(td_ddir),
827 .help = "IO direction",
828 .def = "read",
829 .verify = rw_verify,
830 .posval = {
831 { .ival = "read",
832 .oval = TD_DDIR_READ,
833 .help = "Sequential read",
834 },
835 { .ival = "write",
836 .oval = TD_DDIR_WRITE,
837 .help = "Sequential write",
838 },
839 { .ival = "randread",
840 .oval = TD_DDIR_RANDREAD,
841 .help = "Random read",
842 },
843 { .ival = "randwrite",
844 .oval = TD_DDIR_RANDWRITE,
845 .help = "Random write",
846 },
847 { .ival = "rw",
848 .oval = TD_DDIR_RW,
849 .help = "Sequential read and write mix",
850 },
851 { .ival = "randrw",
852 .oval = TD_DDIR_RANDRW,
853 .help = "Random read and write mix"
854 },
855 },
856 },
857 {
858 .name = "ioengine",
859 .type = FIO_OPT_STR_STORE,
860 .off1 = td_var_offset(ioengine),
861 .help = "IO engine to use",
862 .def = "sync",
863 .posval = {
864 { .ival = "sync",
865 .help = "Use read/write",
866 },
867 { .ival = "psync",
868 .help = "Use pread/pwrite",
869 },
870 { .ival = "vsync",
871 .help = "Use readv/writev",
872 },
873#ifdef FIO_HAVE_LIBAIO
874 { .ival = "libaio",
875 .help = "Linux native asynchronous IO",
876 },
877#endif
878#ifdef FIO_HAVE_POSIXAIO
879 { .ival = "posixaio",
880 .help = "POSIX asynchronous IO",
881 },
882#endif
883#ifdef FIO_HAVE_SOLARISAIO
884 { .ival = "solarisaio",
885 .help = "Solaris native asynchronous IO",
886 },
887#endif
888 { .ival = "mmap",
889 .help = "Memory mapped IO",
890 },
891#ifdef FIO_HAVE_SPLICE
892 { .ival = "splice",
893 .help = "splice/vmsplice based IO",
894 },
895 { .ival = "netsplice",
896 .help = "splice/vmsplice to/from the network",
897 },
898#endif
899#ifdef FIO_HAVE_SGIO
900 { .ival = "sg",
901 .help = "SCSI generic v3 IO",
902 },
903#endif
904 { .ival = "null",
905 .help = "Testing engine (no data transfer)",
906 },
907 { .ival = "net",
908 .help = "Network IO",
909 },
910#ifdef FIO_HAVE_SYSLET
911 { .ival = "syslet-rw",
912 .help = "syslet enabled async pread/pwrite IO",
913 },
914#endif
915 { .ival = "cpuio",
916 .help = "CPU cycler burner engine",
917 },
918#ifdef FIO_HAVE_GUASI
919 { .ival = "guasi",
920 .help = "GUASI IO engine",
921 },
922#endif
923 { .ival = "external",
924 .help = "Load external engine (append name)",
925 },
926 },
927 },
928 {
929 .name = "iodepth",
930 .type = FIO_OPT_INT,
931 .off1 = td_var_offset(iodepth),
932 .help = "Amount of IO buffers to keep in flight",
933 .minval = 1,
934 .def = "1",
935 },
936 {
937 .name = "iodepth_batch",
938 .alias = "iodepth_batch_submit",
939 .type = FIO_OPT_INT,
940 .off1 = td_var_offset(iodepth_batch),
941 .help = "Number of IO buffers to submit in one go",
942 .parent = "iodepth",
943 .minval = 1,
944 .def = "1",
945 },
946 {
947 .name = "iodepth_batch_complete",
948 .type = FIO_OPT_INT,
949 .off1 = td_var_offset(iodepth_batch_complete),
950 .help = "Number of IO buffers to retrieve in one go",
951 .parent = "iodepth",
952 .minval = 0,
953 .def = "1",
954 },
955 {
956 .name = "iodepth_low",
957 .type = FIO_OPT_INT,
958 .off1 = td_var_offset(iodepth_low),
959 .help = "Low water mark for queuing depth",
960 .parent = "iodepth",
961 },
962 {
963 .name = "size",
964 .type = FIO_OPT_STR_VAL,
965 .off1 = td_var_offset(size),
966 .minval = 1,
967 .help = "Total size of device or files",
968 },
969 {
970 .name = "fill_device",
971 .type = FIO_OPT_BOOL,
972 .off1 = td_var_offset(fill_device),
973 .help = "Write until an ENOSPC error occurs",
974 .def = "0",
975 },
976 {
977 .name = "filesize",
978 .type = FIO_OPT_STR_VAL,
979 .off1 = td_var_offset(file_size_low),
980 .off2 = td_var_offset(file_size_high),
981 .minval = 1,
982 .help = "Size of individual files",
983 },
984 {
985 .name = "offset",
986 .alias = "fileoffset",
987 .type = FIO_OPT_STR_VAL,
988 .off1 = td_var_offset(start_offset),
989 .help = "Start IO from this offset",
990 .def = "0",
991 },
992 {
993 .name = "bs",
994 .alias = "blocksize",
995 .type = FIO_OPT_INT,
996 .off1 = td_var_offset(bs[DDIR_READ]),
997 .off2 = td_var_offset(bs[DDIR_WRITE]),
998 .minval = 1,
999 .help = "Block size unit",
1000 .def = "4k",
1001 .parent = "rw",
1002 },
1003 {
1004 .name = "ba",
1005 .alias = "blockalign",
1006 .type = FIO_OPT_INT,
1007 .off1 = td_var_offset(ba[DDIR_READ]),
1008 .off2 = td_var_offset(ba[DDIR_WRITE]),
1009 .minval = 1,
1010 .help = "IO block offset alignment",
1011 .parent = "rw",
1012 },
1013 {
1014 .name = "bsrange",
1015 .alias = "blocksize_range",
1016 .type = FIO_OPT_RANGE,
1017 .off1 = td_var_offset(min_bs[DDIR_READ]),
1018 .off2 = td_var_offset(max_bs[DDIR_READ]),
1019 .off3 = td_var_offset(min_bs[DDIR_WRITE]),
1020 .off4 = td_var_offset(max_bs[DDIR_WRITE]),
1021 .minval = 1,
1022 .help = "Set block size range (in more detail than bs)",
1023 .parent = "rw",
1024 },
1025 {
1026 .name = "bssplit",
1027 .type = FIO_OPT_STR,
1028 .cb = str_bssplit_cb,
1029 .help = "Set a specific mix of block sizes",
1030 .parent = "rw",
1031 },
1032 {
1033 .name = "bs_unaligned",
1034 .alias = "blocksize_unaligned",
1035 .type = FIO_OPT_STR_SET,
1036 .off1 = td_var_offset(bs_unaligned),
1037 .help = "Don't sector align IO buffer sizes",
1038 .parent = "rw",
1039 },
1040 {
1041 .name = "randrepeat",
1042 .type = FIO_OPT_BOOL,
1043 .off1 = td_var_offset(rand_repeatable),
1044 .help = "Use repeatable random IO pattern",
1045 .def = "1",
1046 .parent = "rw",
1047 },
1048 {
1049 .name = "norandommap",
1050 .type = FIO_OPT_STR_SET,
1051 .off1 = td_var_offset(norandommap),
1052 .help = "Accept potential duplicate random blocks",
1053 .parent = "rw",
1054 },
1055 {
1056 .name = "softrandommap",
1057 .type = FIO_OPT_BOOL,
1058 .off1 = td_var_offset(softrandommap),
1059 .help = "Set norandommap if randommap allocation fails",
1060 .parent = "norandommap",
1061 .def = "0",
1062 },
1063 {
1064 .name = "nrfiles",
1065 .type = FIO_OPT_INT,
1066 .off1 = td_var_offset(nr_files),
1067 .help = "Split job workload between this number of files",
1068 .def = "1",
1069 },
1070 {
1071 .name = "openfiles",
1072 .type = FIO_OPT_INT,
1073 .off1 = td_var_offset(open_files),
1074 .help = "Number of files to keep open at the same time",
1075 },
1076 {
1077 .name = "file_service_type",
1078 .type = FIO_OPT_STR,
1079 .cb = str_fst_cb,
1080 .off1 = td_var_offset(file_service_type),
1081 .help = "How to select which file to service next",
1082 .def = "roundrobin",
1083 .posval = {
1084 { .ival = "random",
1085 .oval = FIO_FSERVICE_RANDOM,
1086 .help = "Choose a file at random",
1087 },
1088 { .ival = "roundrobin",
1089 .oval = FIO_FSERVICE_RR,
1090 .help = "Round robin select files",
1091 },
1092 { .ival = "sequential",
1093 .oval = FIO_FSERVICE_SEQ,
1094 .help = "Finish one file before moving to the next",
1095 },
1096 },
1097 .parent = "nrfiles",
1098 },
1099#ifdef FIO_HAVE_FALLOCATE
1100 {
1101 .name = "fallocate",
1102 .type = FIO_OPT_BOOL,
1103 .off1 = td_var_offset(fallocate),
1104 .help = "Use fallocate() when laying out files",
1105 .def = "1",
1106 },
1107#endif
1108 {
1109 .name = "fadvise_hint",
1110 .type = FIO_OPT_BOOL,
1111 .off1 = td_var_offset(fadvise_hint),
1112 .help = "Use fadvise() to advise the kernel on IO pattern",
1113 .def = "1",
1114 },
1115 {
1116 .name = "fsync",
1117 .type = FIO_OPT_INT,
1118 .off1 = td_var_offset(fsync_blocks),
1119 .help = "Issue fsync for writes every given number of blocks",
1120 .def = "0",
1121 },
1122 {
1123 .name = "fdatasync",
1124 .type = FIO_OPT_INT,
1125 .off1 = td_var_offset(fdatasync_blocks),
1126 .help = "Issue fdatasync for writes every given number of blocks",
1127 .def = "0",
1128 },
1129#ifdef FIO_HAVE_SYNC_FILE_RANGE
1130 {
1131 .name = "sync_file_range",
1132 .posval = {
1133 { .ival = "wait_before",
1134 .oval = SYNC_FILE_RANGE_WAIT_BEFORE,
1135 .help = "SYNC_FILE_RANGE_WAIT_BEFORE",
1136 .or = 1,
1137 },
1138 { .ival = "write",
1139 .oval = SYNC_FILE_RANGE_WRITE,
1140 .help = "SYNC_FILE_RANGE_WRITE",
1141 .or = 1,
1142 },
1143 {
1144 .ival = "wait_after",
1145 .oval = SYNC_FILE_RANGE_WAIT_AFTER,
1146 .help = "SYNC_FILE_RANGE_WAIT_AFTER",
1147 .or = 1,
1148 },
1149 },
1150 .type = FIO_OPT_STR_MULTI,
1151 .cb = str_sfr_cb,
1152 .off1 = td_var_offset(sync_file_range),
1153 .help = "Use sync_file_range()",
1154 },
1155#endif
1156 {
1157 .name = "direct",
1158 .type = FIO_OPT_BOOL,
1159 .off1 = td_var_offset(odirect),
1160 .help = "Use O_DIRECT IO (negates buffered)",
1161 .def = "0",
1162 },
1163 {
1164 .name = "buffered",
1165 .type = FIO_OPT_BOOL,
1166 .off1 = td_var_offset(odirect),
1167 .neg = 1,
1168 .help = "Use buffered IO (negates direct)",
1169 .def = "1",
1170 },
1171 {
1172 .name = "overwrite",
1173 .type = FIO_OPT_BOOL,
1174 .off1 = td_var_offset(overwrite),
1175 .help = "When writing, set whether to overwrite current data",
1176 .def = "0",
1177 },
1178 {
1179 .name = "loops",
1180 .type = FIO_OPT_INT,
1181 .off1 = td_var_offset(loops),
1182 .help = "Number of times to run the job",
1183 .def = "1",
1184 },
1185 {
1186 .name = "numjobs",
1187 .type = FIO_OPT_INT,
1188 .off1 = td_var_offset(numjobs),
1189 .help = "Duplicate this job this many times",
1190 .def = "1",
1191 },
1192 {
1193 .name = "startdelay",
1194 .type = FIO_OPT_INT,
1195 .off1 = td_var_offset(start_delay),
1196 .help = "Only start job when this period has passed",
1197 .def = "0",
1198 },
1199 {
1200 .name = "runtime",
1201 .alias = "timeout",
1202 .type = FIO_OPT_STR_VAL_TIME,
1203 .off1 = td_var_offset(timeout),
1204 .help = "Stop workload when this amount of time has passed",
1205 .def = "0",
1206 },
1207 {
1208 .name = "time_based",
1209 .type = FIO_OPT_STR_SET,
1210 .off1 = td_var_offset(time_based),
1211 .help = "Keep running until runtime/timeout is met",
1212 },
1213 {
1214 .name = "ramp_time",
1215 .type = FIO_OPT_STR_VAL_TIME,
1216 .off1 = td_var_offset(ramp_time),
1217 .help = "Ramp up time before measuring performance",
1218 },
1219 {
1220 .name = "mem",
1221 .alias = "iomem",
1222 .type = FIO_OPT_STR,
1223 .cb = str_mem_cb,
1224 .off1 = td_var_offset(mem_type),
1225 .help = "Backing type for IO buffers",
1226 .def = "malloc",
1227 .posval = {
1228 { .ival = "malloc",
1229 .oval = MEM_MALLOC,
1230 .help = "Use malloc(3) for IO buffers",
1231 },
1232 { .ival = "shm",
1233 .oval = MEM_SHM,
1234 .help = "Use shared memory segments for IO buffers",
1235 },
1236#ifdef FIO_HAVE_HUGETLB
1237 { .ival = "shmhuge",
1238 .oval = MEM_SHMHUGE,
1239 .help = "Like shm, but use huge pages",
1240 },
1241#endif
1242 { .ival = "mmap",
1243 .oval = MEM_MMAP,
1244 .help = "Use mmap(2) (file or anon) for IO buffers",
1245 },
1246#ifdef FIO_HAVE_HUGETLB
1247 { .ival = "mmaphuge",
1248 .oval = MEM_MMAPHUGE,
1249 .help = "Like mmap, but use huge pages",
1250 },
1251#endif
1252 },
1253 },
1254 {
1255 .name = "iomem_align",
1256 .alias = "mem_align",
1257 .type = FIO_OPT_INT,
1258 .off1 = td_var_offset(mem_align),
1259 .minval = 0,
1260 .help = "IO memory buffer offset alignment",
1261 .def = "0",
1262 .parent = "iomem",
1263 },
1264 {
1265 .name = "verify",
1266 .type = FIO_OPT_STR,
1267 .off1 = td_var_offset(verify),
1268 .help = "Verify data written",
1269 .def = "0",
1270 .posval = {
1271 { .ival = "0",
1272 .oval = VERIFY_NONE,
1273 .help = "Don't do IO verification",
1274 },
1275 { .ival = "md5",
1276 .oval = VERIFY_MD5,
1277 .help = "Use md5 checksums for verification",
1278 },
1279 { .ival = "crc64",
1280 .oval = VERIFY_CRC64,
1281 .help = "Use crc64 checksums for verification",
1282 },
1283 { .ival = "crc32",
1284 .oval = VERIFY_CRC32,
1285 .help = "Use crc32 checksums for verification",
1286 },
1287 { .ival = "crc32c-intel",
1288 .oval = VERIFY_CRC32C_INTEL,
1289 .help = "Use hw crc32c checksums for verification",
1290 },
1291 { .ival = "crc32c",
1292 .oval = VERIFY_CRC32C,
1293 .help = "Use crc32c checksums for verification",
1294 },
1295 { .ival = "crc16",
1296 .oval = VERIFY_CRC16,
1297 .help = "Use crc16 checksums for verification",
1298 },
1299 { .ival = "crc7",
1300 .oval = VERIFY_CRC7,
1301 .help = "Use crc7 checksums for verification",
1302 },
1303 { .ival = "sha1",
1304 .oval = VERIFY_SHA1,
1305 .help = "Use sha1 checksums for verification",
1306 },
1307 { .ival = "sha256",
1308 .oval = VERIFY_SHA256,
1309 .help = "Use sha256 checksums for verification",
1310 },
1311 { .ival = "sha512",
1312 .oval = VERIFY_SHA512,
1313 .help = "Use sha512 checksums for verification",
1314 },
1315 { .ival = "meta",
1316 .oval = VERIFY_META,
1317 .help = "Use io information",
1318 },
1319 {
1320 .ival = "null",
1321 .oval = VERIFY_NULL,
1322 .help = "Pretend to verify",
1323 },
1324 },
1325 },
1326 {
1327 .name = "do_verify",
1328 .type = FIO_OPT_BOOL,
1329 .off1 = td_var_offset(do_verify),
1330 .help = "Run verification stage after write",
1331 .def = "1",
1332 .parent = "verify",
1333 },
1334 {
1335 .name = "verifysort",
1336 .type = FIO_OPT_BOOL,
1337 .off1 = td_var_offset(verifysort),
1338 .help = "Sort written verify blocks for read back",
1339 .def = "1",
1340 .parent = "verify",
1341 },
1342 {
1343 .name = "verify_interval",
1344 .type = FIO_OPT_INT,
1345 .off1 = td_var_offset(verify_interval),
1346 .minval = 2 * sizeof(struct verify_header),
1347 .help = "Store verify buffer header every N bytes",
1348 .parent = "verify",
1349 },
1350 {
1351 .name = "verify_offset",
1352 .type = FIO_OPT_INT,
1353 .help = "Offset verify header location by N bytes",
1354 .def = "0",
1355 .cb = str_verify_offset_cb,
1356 .parent = "verify",
1357 },
1358 {
1359 .name = "verify_pattern",
1360 .type = FIO_OPT_STR,
1361 .cb = str_verify_pattern_cb,
1362 .help = "Fill pattern for IO buffers",
1363 .parent = "verify",
1364 },
1365 {
1366 .name = "verify_fatal",
1367 .type = FIO_OPT_BOOL,
1368 .off1 = td_var_offset(verify_fatal),
1369 .def = "0",
1370 .help = "Exit on a single verify failure, don't continue",
1371 .parent = "verify",
1372 },
1373 {
1374 .name = "verify_async",
1375 .type = FIO_OPT_INT,
1376 .off1 = td_var_offset(verify_async),
1377 .def = "0",
1378 .help = "Number of async verifier threads to use",
1379 .parent = "verify",
1380 },
1381#ifdef FIO_HAVE_CPU_AFFINITY
1382 {
1383 .name = "verify_async_cpus",
1384 .type = FIO_OPT_STR,
1385 .cb = str_verify_cpus_allowed_cb,
1386 .help = "Set CPUs allowed for async verify threads",
1387 .parent = "verify_async",
1388 },
1389#endif
1390 {
1391 .name = "write_iolog",
1392 .type = FIO_OPT_STR_STORE,
1393 .off1 = td_var_offset(write_iolog_file),
1394 .help = "Store IO pattern to file",
1395 },
1396 {
1397 .name = "read_iolog",
1398 .type = FIO_OPT_STR_STORE,
1399 .off1 = td_var_offset(read_iolog_file),
1400 .help = "Playback IO pattern from file",
1401 },
1402 {
1403 .name = "exec_prerun",
1404 .type = FIO_OPT_STR_STORE,
1405 .off1 = td_var_offset(exec_prerun),
1406 .help = "Execute this file prior to running job",
1407 },
1408 {
1409 .name = "exec_postrun",
1410 .type = FIO_OPT_STR_STORE,
1411 .off1 = td_var_offset(exec_postrun),
1412 .help = "Execute this file after running job",
1413 },
1414#ifdef FIO_HAVE_IOSCHED_SWITCH
1415 {
1416 .name = "ioscheduler",
1417 .type = FIO_OPT_STR_STORE,
1418 .off1 = td_var_offset(ioscheduler),
1419 .help = "Use this IO scheduler on the backing device",
1420 },
1421#endif
1422 {
1423 .name = "zonesize",
1424 .type = FIO_OPT_STR_VAL,
1425 .off1 = td_var_offset(zone_size),
1426 .help = "Give size of an IO zone",
1427 .def = "0",
1428 },
1429 {
1430 .name = "zoneskip",
1431 .type = FIO_OPT_STR_VAL,
1432 .off1 = td_var_offset(zone_skip),
1433 .help = "Space between IO zones",
1434 .def = "0",
1435 },
1436 {
1437 .name = "lockmem",
1438 .type = FIO_OPT_STR_VAL,
1439 .cb = str_lockmem_cb,
1440 .help = "Lock down this amount of memory",
1441 .def = "0",
1442 },
1443 {
1444 .name = "rwmixread",
1445 .type = FIO_OPT_INT,
1446 .cb = str_rwmix_read_cb,
1447 .maxval = 100,
1448 .help = "Percentage of mixed workload that is reads",
1449 .def = "50",
1450 },
1451 {
1452 .name = "rwmixwrite",
1453 .type = FIO_OPT_INT,
1454 .cb = str_rwmix_write_cb,
1455 .maxval = 100,
1456 .help = "Percentage of mixed workload that is writes",
1457 .def = "50",
1458 },
1459 {
1460 .name = "rwmixcycle",
1461 .type = FIO_OPT_DEPRECATED,
1462 },
1463 {
1464 .name = "nice",
1465 .type = FIO_OPT_INT,
1466 .off1 = td_var_offset(nice),
1467 .help = "Set job CPU nice value",
1468 .minval = -19,
1469 .maxval = 20,
1470 .def = "0",
1471 },
1472#ifdef FIO_HAVE_IOPRIO
1473 {
1474 .name = "prio",
1475 .type = FIO_OPT_INT,
1476 .cb = str_prio_cb,
1477 .help = "Set job IO priority value",
1478 .minval = 0,
1479 .maxval = 7,
1480 },
1481 {
1482 .name = "prioclass",
1483 .type = FIO_OPT_INT,
1484 .cb = str_prioclass_cb,
1485 .help = "Set job IO priority class",
1486 .minval = 0,
1487 .maxval = 3,
1488 },
1489#endif
1490 {
1491 .name = "thinktime",
1492 .type = FIO_OPT_INT,
1493 .off1 = td_var_offset(thinktime),
1494 .help = "Idle time between IO buffers (usec)",
1495 .def = "0",
1496 },
1497 {
1498 .name = "thinktime_spin",
1499 .type = FIO_OPT_INT,
1500 .off1 = td_var_offset(thinktime_spin),
1501 .help = "Start think time by spinning this amount (usec)",
1502 .def = "0",
1503 .parent = "thinktime",
1504 },
1505 {
1506 .name = "thinktime_blocks",
1507 .type = FIO_OPT_INT,
1508 .off1 = td_var_offset(thinktime_blocks),
1509 .help = "IO buffer period between 'thinktime'",
1510 .def = "1",
1511 .parent = "thinktime",
1512 },
1513 {
1514 .name = "rate",
1515 .type = FIO_OPT_INT,
1516 .off1 = td_var_offset(rate[0]),
1517 .off2 = td_var_offset(rate[1]),
1518 .help = "Set bandwidth rate",
1519 },
1520 {
1521 .name = "ratemin",
1522 .type = FIO_OPT_INT,
1523 .off1 = td_var_offset(ratemin[0]),
1524 .off2 = td_var_offset(ratemin[1]),
1525 .help = "Job must meet this rate or it will be shutdown",
1526 .parent = "rate",
1527 },
1528 {
1529 .name = "rate_iops",
1530 .type = FIO_OPT_INT,
1531 .off1 = td_var_offset(rate_iops[0]),
1532 .off2 = td_var_offset(rate_iops[1]),
1533 .help = "Limit IO used to this number of IO operations/sec",
1534 },
1535 {
1536 .name = "rate_iops_min",
1537 .type = FIO_OPT_INT,
1538 .off1 = td_var_offset(rate_iops_min[0]),
1539 .off2 = td_var_offset(rate_iops_min[1]),
1540 .help = "Job must meet this rate or it will be shutdown",
1541 .parent = "rate_iops",
1542 },
1543 {
1544 .name = "ratecycle",
1545 .type = FIO_OPT_INT,
1546 .off1 = td_var_offset(ratecycle),
1547 .help = "Window average for rate limits (msec)",
1548 .def = "1000",
1549 .parent = "rate",
1550 },
1551 {
1552 .name = "invalidate",
1553 .type = FIO_OPT_BOOL,
1554 .off1 = td_var_offset(invalidate_cache),
1555 .help = "Invalidate buffer/page cache prior to running job",
1556 .def = "1",
1557 },
1558 {
1559 .name = "sync",
1560 .type = FIO_OPT_BOOL,
1561 .off1 = td_var_offset(sync_io),
1562 .help = "Use O_SYNC for buffered writes",
1563 .def = "0",
1564 .parent = "buffered",
1565 },
1566 {
1567 .name = "bwavgtime",
1568 .type = FIO_OPT_INT,
1569 .off1 = td_var_offset(bw_avg_time),
1570 .help = "Time window over which to calculate bandwidth"
1571 " (msec)",
1572 .def = "500",
1573 },
1574 {
1575 .name = "create_serialize",
1576 .type = FIO_OPT_BOOL,
1577 .off1 = td_var_offset(create_serialize),
1578 .help = "Serialize creating of job files",
1579 .def = "1",
1580 },
1581 {
1582 .name = "create_fsync",
1583 .type = FIO_OPT_BOOL,
1584 .off1 = td_var_offset(create_fsync),
1585 .help = "Fsync file after creation",
1586 .def = "1",
1587 },
1588 {
1589 .name = "create_on_open",
1590 .type = FIO_OPT_BOOL,
1591 .off1 = td_var_offset(create_on_open),
1592 .help = "Create files when they are opened for IO",
1593 .def = "0",
1594 },
1595 {
1596 .name = "pre_read",
1597 .type = FIO_OPT_BOOL,
1598 .off1 = td_var_offset(pre_read),
1599 .help = "Preread files before starting official testing",
1600 .def = "0",
1601 },
1602 {
1603 .name = "cpuload",
1604 .type = FIO_OPT_INT,
1605 .off1 = td_var_offset(cpuload),
1606 .help = "Use this percentage of CPU",
1607 },
1608 {
1609 .name = "cpuchunks",
1610 .type = FIO_OPT_INT,
1611 .off1 = td_var_offset(cpucycle),
1612 .help = "Length of the CPU burn cycles (usecs)",
1613 .def = "50000",
1614 .parent = "cpuload",
1615 },
1616#ifdef FIO_HAVE_CPU_AFFINITY
1617 {
1618 .name = "cpumask",
1619 .type = FIO_OPT_INT,
1620 .cb = str_cpumask_cb,
1621 .help = "CPU affinity mask",
1622 },
1623 {
1624 .name = "cpus_allowed",
1625 .type = FIO_OPT_STR,
1626 .cb = str_cpus_allowed_cb,
1627 .help = "Set CPUs allowed",
1628 },
1629#endif
1630 {
1631 .name = "end_fsync",
1632 .type = FIO_OPT_BOOL,
1633 .off1 = td_var_offset(end_fsync),
1634 .help = "Include fsync at the end of job",
1635 .def = "0",
1636 },
1637 {
1638 .name = "fsync_on_close",
1639 .type = FIO_OPT_BOOL,
1640 .off1 = td_var_offset(fsync_on_close),
1641 .help = "fsync files on close",
1642 .def = "0",
1643 },
1644 {
1645 .name = "unlink",
1646 .type = FIO_OPT_BOOL,
1647 .off1 = td_var_offset(unlink),
1648 .help = "Unlink created files after job has completed",
1649 .def = "0",
1650 },
1651 {
1652 .name = "exitall",
1653 .type = FIO_OPT_STR_SET,
1654 .cb = str_exitall_cb,
1655 .help = "Terminate all jobs when one exits",
1656 },
1657 {
1658 .name = "stonewall",
1659 .type = FIO_OPT_STR_SET,
1660 .off1 = td_var_offset(stonewall),
1661 .help = "Insert a hard barrier between this job and previous",
1662 },
1663 {
1664 .name = "new_group",
1665 .type = FIO_OPT_STR_SET,
1666 .off1 = td_var_offset(new_group),
1667 .help = "Mark the start of a new group (for reporting)",
1668 },
1669 {
1670 .name = "thread",
1671 .type = FIO_OPT_STR_SET,
1672 .off1 = td_var_offset(use_thread),
1673 .help = "Use threads instead of forks",
1674 },
1675 {
1676 .name = "write_bw_log",
1677 .type = FIO_OPT_STR,
1678 .off1 = td_var_offset(write_bw_log),
1679 .cb = str_write_bw_log_cb,
1680 .help = "Write log of bandwidth during run",
1681 },
1682 {
1683 .name = "write_lat_log",
1684 .type = FIO_OPT_STR,
1685 .off1 = td_var_offset(write_lat_log),
1686 .cb = str_write_lat_log_cb,
1687 .help = "Write log of latency during run",
1688 },
1689 {
1690 .name = "hugepage-size",
1691 .type = FIO_OPT_INT,
1692 .off1 = td_var_offset(hugepage_size),
1693 .help = "When using hugepages, specify size of each page",
1694 .def = __stringify(FIO_HUGE_PAGE),
1695 },
1696 {
1697 .name = "group_reporting",
1698 .type = FIO_OPT_STR_SET,
1699 .off1 = td_var_offset(group_reporting),
1700 .help = "Do reporting on a per-group basis",
1701 },
1702 {
1703 .name = "zero_buffers",
1704 .type = FIO_OPT_STR_SET,
1705 .off1 = td_var_offset(zero_buffers),
1706 .help = "Init IO buffers to all zeroes",
1707 },
1708 {
1709 .name = "refill_buffers",
1710 .type = FIO_OPT_STR_SET,
1711 .off1 = td_var_offset(refill_buffers),
1712 .help = "Refill IO buffers on every IO submit",
1713 },
1714#ifdef FIO_HAVE_DISK_UTIL
1715 {
1716 .name = "disk_util",
1717 .type = FIO_OPT_BOOL,
1718 .off1 = td_var_offset(do_disk_util),
1719 .help = "Log disk utilization statistics",
1720 .def = "1",
1721 },
1722#endif
1723 {
1724 .name = "gtod_reduce",
1725 .type = FIO_OPT_BOOL,
1726 .help = "Greatly reduce number of gettimeofday() calls",
1727 .cb = str_gtod_reduce_cb,
1728 .def = "0",
1729 },
1730 {
1731 .name = "disable_clat",
1732 .type = FIO_OPT_BOOL,
1733 .off1 = td_var_offset(disable_clat),
1734 .help = "Disable completion latency numbers",
1735 .parent = "gtod_reduce",
1736 .def = "0",
1737 },
1738 {
1739 .name = "disable_slat",
1740 .type = FIO_OPT_BOOL,
1741 .off1 = td_var_offset(disable_slat),
1742 .help = "Disable submissionn latency numbers",
1743 .parent = "gtod_reduce",
1744 .def = "0",
1745 },
1746 {
1747 .name = "disable_bw_measurement",
1748 .type = FIO_OPT_BOOL,
1749 .off1 = td_var_offset(disable_bw),
1750 .help = "Disable bandwidth logging",
1751 .parent = "gtod_reduce",
1752 .def = "0",
1753 },
1754 {
1755 .name = "gtod_cpu",
1756 .type = FIO_OPT_INT,
1757 .cb = str_gtod_cpu_cb,
1758 .help = "Setup dedicated gettimeofday() thread on this CPU",
1759 .verify = gtod_cpu_verify,
1760 },
1761 {
1762 .name = "continue_on_error",
1763 .type = FIO_OPT_BOOL,
1764 .off1 = td_var_offset(continue_on_error),
1765 .help = "Continue on non-fatal errors during I/O",
1766 .def = "0",
1767 },
1768 {
1769 .name = "profile",
1770 .type = FIO_OPT_STR_STORE,
1771 .off1 = td_var_offset(profile),
1772 .help = "Select a specific builtin performance test",
1773 },
1774 {
1775 .name = "cgroup",
1776 .type = FIO_OPT_STR_STORE,
1777 .off1 = td_var_offset(cgroup),
1778 .help = "Add job to cgroup of this name",
1779 },
1780 {
1781 .name = "cgroup_weight",
1782 .type = FIO_OPT_INT,
1783 .off1 = td_var_offset(cgroup_weight),
1784 .help = "Use given weight for cgroup",
1785 .minval = 100,
1786 .maxval = 1000,
1787 },
1788 {
1789 .name = "uid",
1790 .type = FIO_OPT_INT,
1791 .off1 = td_var_offset(uid),
1792 .help = "Run job with this user ID",
1793 },
1794 {
1795 .name = "gid",
1796 .type = FIO_OPT_INT,
1797 .off1 = td_var_offset(gid),
1798 .help = "Run job with this group ID",
1799 },
1800 {
1801 .name = NULL,
1802 },
1803};
1804
1805static void add_to_lopt(struct option *lopt, struct fio_option *o)
1806{
1807 lopt->name = (char *) o->name;
1808 lopt->val = FIO_GETOPT_JOB;
1809 if (o->type == FIO_OPT_STR_SET)
1810 lopt->has_arg = no_argument;
1811 else
1812 lopt->has_arg = required_argument;
1813}
1814
1815void fio_options_dup_and_init(struct option *long_options)
1816{
1817 struct fio_option *o;
1818 unsigned int i;
1819
1820 options_init(options);
1821
1822 i = 0;
1823 while (long_options[i].name)
1824 i++;
1825
1826 o = &options[0];
1827 while (o->name) {
1828 add_to_lopt(&long_options[i], o);
1829
1830 i++;
1831 o++;
1832 assert(i < FIO_NR_OPTIONS);
1833 }
1834}
1835
1836struct fio_keyword {
1837 const char *word;
1838 const char *desc;
1839 char *replace;
1840};
1841
1842static struct fio_keyword fio_keywords[] = {
1843 {
1844 .word = "$pagesize",
1845 .desc = "Page size in the system",
1846 },
1847 {
1848 .word = "$mb_memory",
1849 .desc = "Megabytes of memory online",
1850 },
1851 {
1852 .word = "$ncpus",
1853 .desc = "Number of CPUs online in the system",
1854 },
1855 {
1856 .word = NULL,
1857 },
1858};
1859
1860void fio_keywords_init(void)
1861{
1862 unsigned long long mb_memory;
1863 char buf[128];
1864 long l;
1865
1866 sprintf(buf, "%lu", page_size);
1867 fio_keywords[0].replace = strdup(buf);
1868
1869 mb_memory = os_phys_mem() / page_size;
1870 sprintf(buf, "%llu", mb_memory);
1871 fio_keywords[1].replace = strdup(buf);
1872
1873 l = sysconf(_SC_NPROCESSORS_ONLN);
1874 sprintf(buf, "%lu", l);
1875 fio_keywords[2].replace = strdup(buf);
1876}
1877
1878#define BC_APP "bc"
1879
1880static char *bc_calc(char *str)
1881{
1882 char *buf, *tmp, opt[80];
1883 FILE *f;
1884 int ret;
1885
1886 /*
1887 * No math, just return string
1888 */
1889 if (!strchr(str, '+') && !strchr(str, '-') && !strchr(str, '*') &&
1890 !strchr(str, '/'))
1891 return str;
1892
1893 /*
1894 * Split option from value, we only need to calculate the value
1895 */
1896 tmp = strchr(str, '=');
1897 if (!tmp)
1898 return str;
1899
1900 tmp++;
1901 memset(opt, 0, sizeof(opt));
1902 strncpy(opt, str, tmp - str);
1903
1904 buf = malloc(128);
1905
1906 sprintf(buf, "which %s > /dev/null", BC_APP);
1907 if (system(buf)) {
1908 log_err("fio: bc is needed for performing math\n");
1909 free(buf);
1910 return NULL;
1911 }
1912
1913 sprintf(buf, "echo %s | %s", tmp, BC_APP);
1914 f = popen(buf, "r");
1915 if (!f) {
1916 free(buf);
1917 return NULL;
1918 }
1919
1920 ret = fread(buf, 1, 128, f);
1921 if (ret <= 0) {
1922 free(buf);
1923 return NULL;
1924 }
1925
1926 buf[ret - 1] = '\0';
1927 strcat(opt, buf);
1928 strcpy(buf, opt);
1929 pclose(f);
1930 free(str);
1931 return buf;
1932}
1933
1934/*
1935 * Look for reserved variable names and replace them with real values
1936 */
1937static char *fio_keyword_replace(char *opt)
1938{
1939 char *s;
1940 int i;
1941
1942 for (i = 0; fio_keywords[i].word != NULL; i++) {
1943 struct fio_keyword *kw = &fio_keywords[i];
1944
1945 while ((s = strstr(opt, kw->word)) != NULL) {
1946 char *new = malloc(strlen(opt) + 1);
1947 char *o_org = opt;
1948 int olen = s - opt;
1949 int len;
1950
1951 /*
1952 * Copy part of the string before the keyword and
1953 * sprintf() the replacement after it.
1954 */
1955 memcpy(new, opt, olen);
1956 len = sprintf(new + olen, "%s", kw->replace);
1957
1958 /*
1959 * If there's more in the original string, copy that
1960 * in too
1961 */
1962 opt += strlen(kw->word) + olen;
1963 if (strlen(opt))
1964 memcpy(new + olen + len, opt, opt - o_org - 1);
1965
1966 /*
1967 * replace opt and free the old opt
1968 */
1969 opt = new;
1970 //free(o_org);
1971
1972 /*
1973 * Check for potential math and invoke bc, if possible
1974 */
1975 opt = bc_calc(opt);
1976 }
1977 }
1978
1979 return opt;
1980}
1981
1982int fio_options_parse(struct thread_data *td, char **opts, int num_opts)
1983{
1984 int i, ret;
1985
1986 sort_options(opts, options, num_opts);
1987
1988 for (ret = 0, i = 0; i < num_opts; i++) {
1989 opts[i] = fio_keyword_replace(opts[i]);
1990 ret |= parse_option(opts[i], options, td);
1991 }
1992
1993 return ret;
1994}
1995
1996int fio_cmd_option_parse(struct thread_data *td, const char *opt, char *val)
1997{
1998 return parse_cmd_option(opt, val, options, td);
1999}
2000
2001void fio_fill_default_options(struct thread_data *td)
2002{
2003 fill_default_options(td, options);
2004}
2005
2006int fio_show_option_help(const char *opt)
2007{
2008 return show_cmd_help(options, opt);
2009}
2010
2011static void __options_mem(struct thread_data *td, int alloc)
2012{
2013 struct thread_options *o = &td->o;
2014 struct fio_option *opt;
2015 char **ptr;
2016 int i;
2017
2018 for (i = 0, opt = &options[0]; opt->name; i++, opt = &options[i]) {
2019 if (opt->type != FIO_OPT_STR_STORE)
2020 continue;
2021
2022 ptr = (void *) o + opt->off1;
2023 if (*ptr) {
2024 if (alloc)
2025 *ptr = strdup(*ptr);
2026 else {
2027 free(*ptr);
2028 *ptr = NULL;
2029 }
2030 }
2031 }
2032}
2033
2034/*
2035 * dupe FIO_OPT_STR_STORE options
2036 */
2037void options_mem_dupe(struct thread_data *td)
2038{
2039 __options_mem(td, 1);
2040}
2041
2042void options_mem_free(struct thread_data fio_unused *td)
2043{
2044#if 0
2045 __options_mem(td, 0);
2046#endif
2047}
2048
2049unsigned int fio_get_kb_base(void *data)
2050{
2051 struct thread_data *td = data;
2052 unsigned int kb_base = 0;
2053
2054 if (td)
2055 kb_base = td->o.kb_base;
2056 if (!kb_base)
2057 kb_base = 1024;
2058
2059 return kb_base;
2060}
2061
2062int add_option(struct fio_option *o)
2063{
2064 struct fio_option *__o;
2065 int opt_index = 0;
2066
2067 __o = options;
2068 while (__o->name) {
2069 opt_index++;
2070 __o++;
2071 }
2072
2073 memcpy(&options[opt_index], o, sizeof(*o));
2074 return 0;
2075}
2076
2077void invalidate_profile_options(const char *prof_name)
2078{
2079 struct fio_option *o;
2080
2081 o = options;
2082 while (o->name) {
2083 if (o->prof_name && !strcmp(o->prof_name, prof_name)) {
2084 o->type = FIO_OPT_INVALID;
2085 o->prof_name = NULL;
2086 }
2087 o++;
2088 }
2089}
2090
2091void add_opt_posval(const char *optname, const char *ival, const char *help)
2092{
2093 struct fio_option *o;
2094 unsigned int i;
2095
2096 o = find_option(options, optname);
2097 if (!o)
2098 return;
2099
2100 for (i = 0; i < PARSE_MAX_VP; i++) {
2101 if (o->posval[i].ival)
2102 continue;
2103
2104 o->posval[i].ival = ival;
2105 o->posval[i].help = help;
2106 break;
2107 }
2108}
2109
2110void del_opt_posval(const char *optname, const char *ival)
2111{
2112 struct fio_option *o;
2113 unsigned int i;
2114
2115 o = find_option(options, optname);
2116 if (!o)
2117 return;
2118
2119 for (i = 0; i < PARSE_MAX_VP; i++) {
2120 if (!o->posval[i].ival)
2121 continue;
2122 if (strcmp(o->posval[i].ival, ival))
2123 continue;
2124
2125 o->posval[i].ival = NULL;
2126 o->posval[i].help = NULL;
2127 }
2128}