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1/*
2 * This file contains the ini and command liner parser. It will create
3 * and initialize the specified jobs.
4 */
5#include <stdio.h>
6#include <stdlib.h>
7#include <unistd.h>
8#include <fcntl.h>
9#include <ctype.h>
10#include <string.h>
11#include <errno.h>
12#include <sys/ipc.h>
13#include <sys/shm.h>
14#include <sys/types.h>
15#include <sys/stat.h>
16
17#include "fio.h"
18
19/*
20 * The default options
21 */
22#define DEF_BS (4096)
23#define DEF_TIMEOUT (0)
24#define DEF_RATE_CYCLE (1000)
25#define DEF_ODIRECT (1)
26#define DEF_IO_ENGINE (FIO_SYNCIO)
27#define DEF_IO_ENGINE_NAME "sync"
28#define DEF_SEQUENTIAL (1)
29#define DEF_RAND_REPEAT (1)
30#define DEF_OVERWRITE (1)
31#define DEF_INVALIDATE (1)
32#define DEF_SYNCIO (0)
33#define DEF_RANDSEED (0xb1899bedUL)
34#define DEF_BWAVGTIME (500)
35#define DEF_CREATE_SER (1)
36#define DEF_CREATE_FSYNC (1)
37#define DEF_LOOPS (1)
38#define DEF_VERIFY (0)
39#define DEF_STONEWALL (0)
40#define DEF_NUMJOBS (1)
41#define DEF_USE_THREAD (0)
42#define DEF_FILE_SIZE (1024 * 1024 * 1024UL)
43#define DEF_ZONE_SIZE (0)
44#define DEF_ZONE_SKIP (0)
45#define DEF_RWMIX_CYCLE (500)
46#define DEF_RWMIX_READ (50)
47#define DEF_NICE (0)
48#define DEF_NR_FILES (1)
49#define DEF_UNLINK (0)
50#define DEF_WRITE_BW_LOG (0)
51#define DEF_WRITE_LAT_LOG (0)
52
53static int def_timeout = DEF_TIMEOUT;
54
55static char fio_version_string[] = "fio 1.5";
56
57static char **ini_file;
58static int max_jobs = MAX_JOBS;
59
60struct thread_data def_thread;
61struct thread_data *threads = NULL;
62
63int rate_quit = 0;
64int exitall_on_terminate = 0;
65int terse_output = 0;
66unsigned long long mlock_size = 0;
67FILE *f_out = NULL;
68FILE *f_err = NULL;
69
70static int write_lat_log = DEF_WRITE_LAT_LOG;
71static int write_bw_log = DEF_WRITE_BW_LOG;
72
73/*
74 * Return a free job structure.
75 */
76static struct thread_data *get_new_job(int global, struct thread_data *parent)
77{
78 struct thread_data *td;
79
80 if (global)
81 return &def_thread;
82 if (thread_number >= max_jobs)
83 return NULL;
84
85 td = &threads[thread_number++];
86 *td = *parent;
87 td->name[0] = '\0';
88
89 td->thread_number = thread_number;
90 return td;
91}
92
93static void put_job(struct thread_data *td)
94{
95 memset(&threads[td->thread_number - 1], 0, sizeof(*td));
96 thread_number--;
97}
98
99/*
100 * Adds a job to the list of things todo. Sanitizes the various options
101 * to make sure we don't have conflicts, and initializes various
102 * members of td.
103 */
104static int add_job(struct thread_data *td, const char *jobname, int job_add_num)
105{
106 char *ddir_str[] = { "read", "write", "randread", "randwrite",
107 "rw", NULL, "randrw" };
108 struct stat sb;
109 int numjobs, ddir, i;
110 struct fio_file *f;
111
112#ifndef FIO_HAVE_LIBAIO
113 if (td->io_engine == FIO_LIBAIO) {
114 log_err("Linux libaio not available\n");
115 return 1;
116 }
117#endif
118#ifndef FIO_HAVE_POSIXAIO
119 if (td->io_engine == FIO_POSIXAIO) {
120 log_err("posix aio not available\n");
121 return 1;
122 }
123#endif
124
125 /*
126 * the def_thread is just for options, it's not a real job
127 */
128 if (td == &def_thread)
129 return 0;
130
131 /*
132 * Set default io engine, if none set
133 */
134 if (!td->io_ops) {
135 td->io_ops = load_ioengine(td, DEF_IO_ENGINE_NAME);
136 if (!td->io_ops) {
137 log_err("default engine %s not there?\n", DEF_IO_ENGINE_NAME);
138 return 1;
139 }
140 }
141
142 if (td->io_ops->flags & FIO_SYNCIO)
143 td->iodepth = 1;
144 else {
145 if (!td->iodepth)
146 td->iodepth = td->nr_files;
147 }
148
149 /*
150 * only really works for sequential io for now, and with 1 file
151 */
152 if (td->zone_size && !td->sequential && td->nr_files == 1)
153 td->zone_size = 0;
154
155 /*
156 * Reads can do overwrites, we always need to pre-create the file
157 */
158 if (td_read(td) || td_rw(td))
159 td->overwrite = 1;
160
161 td->filetype = FIO_TYPE_FILE;
162 if (!stat(jobname, &sb)) {
163 if (S_ISBLK(sb.st_mode))
164 td->filetype = FIO_TYPE_BD;
165 else if (S_ISCHR(sb.st_mode))
166 td->filetype = FIO_TYPE_CHAR;
167 }
168
169 if (td->odirect)
170 td->io_ops->flags |= FIO_RAWIO;
171
172 if (td->filename)
173 td->nr_uniq_files = 1;
174 else
175 td->nr_uniq_files = td->nr_files;
176
177 if (td->filetype == FIO_TYPE_FILE || td->filename) {
178 char tmp[PATH_MAX];
179 int len = 0;
180 int i;
181
182 if (td->directory && td->directory[0] != '\0')
183 sprintf(tmp, "%s/", td->directory);
184
185 td->files = malloc(sizeof(struct fio_file) * td->nr_files);
186
187 for_each_file(td, f, i) {
188 memset(f, 0, sizeof(*f));
189 f->fd = -1;
190
191 if (td->filename)
192 sprintf(tmp + len, "%s", td->filename);
193 else
194 sprintf(tmp + len, "%s.%d.%d", jobname, td->thread_number, i);
195 f->file_name = strdup(tmp);
196 }
197 } else {
198 td->nr_files = 1;
199 td->files = malloc(sizeof(struct fio_file));
200 f = &td->files[0];
201
202 memset(f, 0, sizeof(*f));
203 f->fd = -1;
204 f->file_name = strdup(jobname);
205 }
206
207 for_each_file(td, f, i) {
208 f->file_size = td->total_file_size / td->nr_files;
209 f->file_offset = td->start_offset;
210 }
211
212 fio_sem_init(&td->mutex, 0);
213
214 td->clat_stat[0].min_val = td->clat_stat[1].min_val = ULONG_MAX;
215 td->slat_stat[0].min_val = td->slat_stat[1].min_val = ULONG_MAX;
216 td->bw_stat[0].min_val = td->bw_stat[1].min_val = ULONG_MAX;
217
218 if (td->min_bs == -1U)
219 td->min_bs = td->bs;
220 if (td->max_bs == -1U)
221 td->max_bs = td->bs;
222 if (td_read(td) && !td_rw(td))
223 td->verify = 0;
224
225 if (td->stonewall && td->thread_number > 1)
226 groupid++;
227
228 td->groupid = groupid;
229
230 if (setup_rate(td))
231 goto err;
232
233 if (td->write_lat_log) {
234 setup_log(&td->slat_log);
235 setup_log(&td->clat_log);
236 }
237 if (td->write_bw_log)
238 setup_log(&td->bw_log);
239
240 if (td->name[0] == '\0')
241 snprintf(td->name, sizeof(td->name)-1, "client%d", td->thread_number);
242
243 ddir = td->ddir + (!td->sequential << 1) + (td->iomix << 2);
244
245 if (!terse_output) {
246 if (!job_add_num) {
247 if (td->io_ops->flags & FIO_CPUIO)
248 fprintf(f_out, "%s: ioengine=cpu, cpuload=%u, cpucycle=%u\n", td->name, td->cpuload, td->cpucycle);
249 else
250 fprintf(f_out, "%s: (g=%d): rw=%s, odir=%d, bs=%d-%d, rate=%d, ioengine=%s, iodepth=%d\n", td->name, td->groupid, ddir_str[ddir], td->odirect, td->min_bs, td->max_bs, td->rate, td->io_ops->name, td->iodepth);
251 } else if (job_add_num == 1)
252 fprintf(f_out, "...\n");
253 }
254
255 /*
256 * recurse add identical jobs, clear numjobs and stonewall options
257 * as they don't apply to sub-jobs
258 */
259 numjobs = td->numjobs;
260 while (--numjobs) {
261 struct thread_data *td_new = get_new_job(0, td);
262
263 if (!td_new)
264 goto err;
265
266 td_new->numjobs = 1;
267 td_new->stonewall = 0;
268 job_add_num = numjobs - 1;
269
270 if (add_job(td_new, jobname, job_add_num))
271 goto err;
272 }
273 return 0;
274err:
275 put_job(td);
276 return -1;
277}
278
279/*
280 * Initialize the various random states we need (random io, block size ranges,
281 * read/write mix, etc).
282 */
283int init_random_state(struct thread_data *td)
284{
285 unsigned long seeds[4];
286 int fd, num_maps, blocks, i;
287 struct fio_file *f;
288
289 fd = open("/dev/urandom", O_RDONLY);
290 if (fd == -1) {
291 td_verror(td, errno);
292 return 1;
293 }
294
295 if (read(fd, seeds, sizeof(seeds)) < (int) sizeof(seeds)) {
296 td_verror(td, EIO);
297 close(fd);
298 return 1;
299 }
300
301 close(fd);
302
303 os_random_seed(seeds[0], &td->bsrange_state);
304 os_random_seed(seeds[1], &td->verify_state);
305 os_random_seed(seeds[2], &td->rwmix_state);
306
307 if (td->sequential)
308 return 0;
309
310 if (td->rand_repeatable)
311 seeds[3] = DEF_RANDSEED;
312
313 for_each_file(td, f, i) {
314 blocks = (f->file_size + td->min_bs - 1) / td->min_bs;
315 num_maps = blocks / BLOCKS_PER_MAP;
316 f->file_map = malloc(num_maps * sizeof(long));
317 f->num_maps = num_maps;
318 memset(f->file_map, 0, num_maps * sizeof(long));
319 }
320
321 os_random_seed(seeds[3], &td->random_state);
322 return 0;
323}
324
325static void fill_cpu_mask(os_cpu_mask_t cpumask, int cpu)
326{
327#ifdef FIO_HAVE_CPU_AFFINITY
328 unsigned int i;
329
330 CPU_ZERO(&cpumask);
331
332 for (i = 0; i < sizeof(int) * 8; i++) {
333 if ((1 << i) & cpu)
334 CPU_SET(i, &cpumask);
335 }
336#endif
337}
338
339static unsigned long get_mult_time(char c)
340{
341 switch (c) {
342 case 'm':
343 case 'M':
344 return 60;
345 case 'h':
346 case 'H':
347 return 60 * 60;
348 case 'd':
349 case 'D':
350 return 24 * 60 * 60;
351 default:
352 return 1;
353 }
354}
355
356static unsigned long get_mult_bytes(char c)
357{
358 switch (c) {
359 case 'k':
360 case 'K':
361 return 1024;
362 case 'm':
363 case 'M':
364 return 1024 * 1024;
365 case 'g':
366 case 'G':
367 return 1024 * 1024 * 1024;
368 default:
369 return 1;
370 }
371}
372
373/*
374 * convert string after '=' into decimal value, noting any size suffix
375 */
376static int str_to_decimal(char *p, unsigned long long *val, int kilo)
377{
378 char *str;
379 int len;
380
381 str = strchr(p, '=');
382 if (!str)
383 return 1;
384
385 str++;
386 len = strlen(str);
387
388 *val = strtoul(str, NULL, 10);
389 if (*val == ULONG_MAX && errno == ERANGE)
390 return 1;
391
392 if (kilo)
393 *val *= get_mult_bytes(str[len - 1]);
394 else
395 *val *= get_mult_time(str[len - 1]);
396 return 0;
397}
398
399static int check_str_bytes(char *p, char *name, unsigned long long *val)
400{
401 if (strncmp(p, name, strlen(name) - 1))
402 return 1;
403
404 return str_to_decimal(p, val, 1);
405}
406
407static int check_str_time(char *p, char *name, unsigned long long *val)
408{
409 if (strncmp(p, name, strlen(name) - 1))
410 return 1;
411
412 return str_to_decimal(p, val, 0);
413}
414
415static void strip_blank_front(char **p)
416{
417 char *s = *p;
418
419 while (isspace(*s))
420 s++;
421}
422
423static void strip_blank_end(char *p)
424{
425 char *s = p + strlen(p) - 1;
426
427 while (isspace(*s) || iscntrl(*s))
428 s--;
429
430 *(s + 1) = '\0';
431}
432
433typedef int (str_cb_fn)(struct thread_data *, char *);
434
435static int check_str(char *p, char *name, str_cb_fn *cb, struct thread_data *td)
436{
437 char *s;
438
439 if (strncmp(p, name, strlen(name)))
440 return 1;
441
442 s = strstr(p, name);
443 if (!s)
444 return 1;
445
446 s = strchr(s, '=');
447 if (!s)
448 return 1;
449
450 s++;
451 strip_blank_front(&s);
452 return cb(td, s);
453}
454
455static int check_strstore(char *p, char *name, char *dest)
456{
457 char *s;
458
459 if (strncmp(p, name, strlen(name)))
460 return 1;
461
462 s = strstr(p, name);
463 if (!s)
464 return 1;
465
466 s = strchr(p, '=');
467 if (!s)
468 return 1;
469
470 s++;
471 strip_blank_front(&s);
472
473 strcpy(dest, s);
474 return 0;
475}
476
477static int __check_range_bytes(char *str, unsigned long *val)
478{
479 char suffix;
480
481 if (sscanf(str, "%lu%c", val, &suffix) == 2) {
482 *val *= get_mult_bytes(suffix);
483 return 0;
484 }
485
486 if (sscanf(str, "%lu", val) == 1)
487 return 0;
488
489 return 1;
490}
491
492static int check_range_bytes(char *p, char *name, unsigned long *s,
493 unsigned long *e)
494{
495 char option[128];
496 char *str, *p1, *p2;
497
498 if (strncmp(p, name, strlen(name)))
499 return 1;
500
501 strcpy(option, p);
502 p = option;
503
504 str = strstr(p, name);
505 if (!str)
506 return 1;
507
508 p += strlen(name);
509
510 str = strchr(p, '=');
511 if (!str)
512 return 1;
513
514 /*
515 * 'p' now holds whatever is after the '=' sign
516 */
517 p1 = str + 1;
518
519 /*
520 * terminate p1 at the '-' sign
521 */
522 p = strchr(p1, '-');
523 if (!p)
524 return 1;
525
526 p2 = p + 1;
527 *p = '\0';
528
529 if (!__check_range_bytes(p1, s) && !__check_range_bytes(p2, e))
530 return 0;
531
532 return 1;
533}
534
535static int check_int(char *p, char *name, unsigned int *val)
536{
537 char *str;
538
539 if (strncmp(p, name, strlen(name)))
540 return 1;
541
542 str = strstr(p, name);
543 if (!str)
544 return 1;
545
546 str = strchr(p, '=');
547 if (!str)
548 return 1;
549
550 str++;
551
552 if (sscanf(str, "%u", val) == 1)
553 return 0;
554
555 return 1;
556}
557
558static int check_strset(char *p, char *name)
559{
560 return strncmp(p, name, strlen(name));
561}
562
563static int is_empty_or_comment(char *line)
564{
565 unsigned int i;
566
567 for (i = 0; i < strlen(line); i++) {
568 if (line[i] == ';')
569 return 1;
570 if (!isspace(line[i]) && !iscntrl(line[i]))
571 return 0;
572 }
573
574 return 1;
575}
576
577static int str_rw_cb(struct thread_data *td, char *mem)
578{
579 if (!strncmp(mem, "read", 4) || !strncmp(mem, "0", 1)) {
580 td->ddir = DDIR_READ;
581 td->sequential = 1;
582 return 0;
583 } else if (!strncmp(mem, "randread", 8)) {
584 td->ddir = DDIR_READ;
585 td->sequential = 0;
586 return 0;
587 } else if (!strncmp(mem, "write", 5) || !strncmp(mem, "1", 1)) {
588 td->ddir = DDIR_WRITE;
589 td->sequential = 1;
590 return 0;
591 } else if (!strncmp(mem, "randwrite", 9)) {
592 td->ddir = DDIR_WRITE;
593 td->sequential = 0;
594 return 0;
595 } else if (!strncmp(mem, "rw", 2)) {
596 td->ddir = 0;
597 td->iomix = 1;
598 td->sequential = 1;
599 return 0;
600 } else if (!strncmp(mem, "randrw", 6)) {
601 td->ddir = 0;
602 td->iomix = 1;
603 td->sequential = 0;
604 return 0;
605 }
606
607 log_err("fio: data direction: read, write, randread, randwrite, rw, randrw\n");
608 return 1;
609}
610
611static int str_verify_cb(struct thread_data *td, char *mem)
612{
613 if (!strncmp(mem, "0", 1)) {
614 td->verify = VERIFY_NONE;
615 return 0;
616 } else if (!strncmp(mem, "md5", 3) || !strncmp(mem, "1", 1)) {
617 td->verify = VERIFY_MD5;
618 return 0;
619 } else if (!strncmp(mem, "crc32", 5)) {
620 td->verify = VERIFY_CRC32;
621 return 0;
622 }
623
624 log_err("fio: verify types: md5, crc32\n");
625 return 1;
626}
627
628static int str_mem_cb(struct thread_data *td, char *mem)
629{
630 if (!strncmp(mem, "malloc", 6)) {
631 td->mem_type = MEM_MALLOC;
632 return 0;
633 } else if (!strncmp(mem, "shm", 3)) {
634 td->mem_type = MEM_SHM;
635 return 0;
636 } else if (!strncmp(mem, "mmap", 4)) {
637 td->mem_type = MEM_MMAP;
638 return 0;
639 }
640
641 log_err("fio: mem type: malloc, shm, mmap\n");
642 return 1;
643}
644
645static int str_ioengine_cb(struct thread_data *td, char *str)
646{
647 td->io_ops = load_ioengine(td, str);
648 if (td->io_ops)
649 return 0;
650
651 log_err("fio: ioengine: { linuxaio, aio, libaio }, posixaio, sync, mmap, sgio, splice, cpu\n");
652 return 1;
653}
654
655/*
656 * This is our [ini] type file parser.
657 */
658int parse_jobs_ini(char *file, int stonewall_flag)
659{
660 unsigned int prioclass, prio, cpu, global, il;
661 unsigned long long ull;
662 unsigned long ul1, ul2;
663 struct thread_data *td;
664 char *string, *name, *tmpbuf;
665 fpos_t off;
666 FILE *f;
667 char *p;
668 int ret = 0, stonewall;
669
670 f = fopen(file, "r");
671 if (!f) {
672 perror("fopen job file");
673 return 1;
674 }
675
676 string = malloc(4096);
677 name = malloc(256);
678 tmpbuf = malloc(4096);
679
680 stonewall = stonewall_flag;
681 while ((p = fgets(string, 4096, f)) != NULL) {
682 if (ret)
683 break;
684 if (is_empty_or_comment(p))
685 continue;
686 if (sscanf(p, "[%s]", name) != 1)
687 continue;
688
689 global = !strncmp(name, "global", 6);
690
691 name[strlen(name) - 1] = '\0';
692
693 td = get_new_job(global, &def_thread);
694 if (!td) {
695 ret = 1;
696 break;
697 }
698
699 /*
700 * Seperate multiple job files by a stonewall
701 */
702 if (!global && stonewall) {
703 td->stonewall = stonewall;
704 stonewall = 0;
705 }
706
707 fgetpos(f, &off);
708 while ((p = fgets(string, 4096, f)) != NULL) {
709 if (is_empty_or_comment(p))
710 continue;
711 if (strstr(p, "["))
712 break;
713 strip_blank_front(&p);
714 strip_blank_end(p);
715
716 if (!check_int(p, "prio", &prio)) {
717#ifndef FIO_HAVE_IOPRIO
718 log_err("io priorities not available\n");
719 ret = 1;
720 break;
721#endif
722 td->ioprio |= prio;
723 fgetpos(f, &off);
724 continue;
725 }
726 if (!check_int(p, "prioclass", &prioclass)) {
727#ifndef FIO_HAVE_IOPRIO
728 log_err("io priorities not available\n");
729 ret = 1;
730 break;
731#else
732 td->ioprio |= prioclass << IOPRIO_CLASS_SHIFT;
733 fgetpos(f, &off);
734 continue;
735#endif
736 }
737 if (!check_int(p, "direct", &il)) {
738 td->odirect = il;
739 fgetpos(f, &off);
740 continue;
741 }
742 if (!check_int(p, "rand_repeatable", &il)) {
743 td->rand_repeatable = il;
744 fgetpos(f, &off);
745 continue;
746 }
747 if (!check_int(p, "rate", &td->rate)) {
748 fgetpos(f, &off);
749 continue;
750 }
751 if (!check_int(p, "ratemin", &td->ratemin)) {
752 fgetpos(f, &off);
753 continue;
754 }
755 if (!check_int(p, "ratecycle", &td->ratecycle)) {
756 fgetpos(f, &off);
757 continue;
758 }
759 if (!check_int(p, "cpuload", &td->cpuload)) {
760 fgetpos(f, &off);
761 continue;
762 }
763 if (!check_int(p, "cpuchunks", &td->cpucycle)) {
764 fgetpos(f, &off);
765 continue;
766 }
767 if (!check_int(p, "thinktime", &td->thinktime)) {
768 fgetpos(f, &off);
769 continue;
770 }
771 if (!check_int(p, "cpumask", &cpu)) {
772#ifndef FIO_HAVE_CPU_AFFINITY
773 log_err("cpu affinity not available\n");
774 ret = 1;
775 break;
776#endif
777 fill_cpu_mask(td->cpumask, cpu);
778 fgetpos(f, &off);
779 continue;
780 }
781 if (!check_int(p, "fsync", &td->fsync_blocks)) {
782 fgetpos(f, &off);
783 td->end_fsync = 1;
784 continue;
785 }
786 if (!check_int(p, "startdelay", &td->start_delay)) {
787 fgetpos(f, &off);
788 continue;
789 }
790 if (!check_str_time(p, "timeout", &ull)) {
791 td->timeout = ull;
792 fgetpos(f, &off);
793 continue;
794 }
795 if (!check_int(p, "invalidate", &il)) {
796 td->invalidate_cache = il;
797 fgetpos(f, &off);
798 continue;
799 }
800 if (!check_int(p, "iodepth", &td->iodepth)) {
801 fgetpos(f, &off);
802 continue;
803 }
804 if (!check_int(p, "sync", &il)) {
805 td->sync_io = il;
806 fgetpos(f, &off);
807 continue;
808 }
809 if (!check_int(p, "bwavgtime", &td->bw_avg_time)) {
810 fgetpos(f, &off);
811 continue;
812 }
813 if (!check_int(p, "create_serialize", &il)) {
814 td->create_serialize = il;
815 fgetpos(f, &off);
816 continue;
817 }
818 if (!check_int(p, "create_fsync", &il)) {
819 td->create_fsync = il;
820 fgetpos(f, &off);
821 continue;
822 }
823 if (!check_int(p, "end_fsync", &il)) {
824 td->end_fsync = il;
825 fgetpos(f, &off);
826 continue;
827 }
828 if (!check_int(p, "loops", &td->loops)) {
829 fgetpos(f, &off);
830 continue;
831 }
832 if (!check_int(p, "numjobs", &td->numjobs)) {
833 fgetpos(f, &off);
834 continue;
835 }
836 if (!check_int(p, "overwrite", &il)) {
837 td->overwrite = il;
838 fgetpos(f, &off);
839 continue;
840 }
841 if (!check_int(p, "rwmixcycle", &td->rwmixcycle)) {
842 fgetpos(f, &off);
843 continue;
844 }
845 if (!check_int(p, "rwmixread", &il)) {
846 if (il > 100)
847 il = 100;
848 td->rwmixread = il;
849 fgetpos(f, &off);
850 continue;
851 }
852 if (!check_int(p, "rwmixwrite", &il)) {
853 if (il > 100)
854 il = 100;
855 td->rwmixread = 100 - il;
856 fgetpos(f, &off);
857 continue;
858 }
859 if (!check_int(p, "nice", &td->nice)) {
860 fgetpos(f, &off);
861 continue;
862 }
863 if (!check_int(p, "nrfiles", &td->nr_files)) {
864 fgetpos(f, &off);
865 continue;
866 }
867 if (!check_range_bytes(p, "bsrange", &ul1, &ul2)) {
868 if (ul1 > ul2) {
869 td->max_bs = ul1;
870 td->min_bs = ul2;
871 } else {
872 td->max_bs = ul2;
873 td->min_bs = ul1;
874 }
875 fgetpos(f, &off);
876 continue;
877 }
878 if (!check_str_bytes(p, "bs", &ull)) {
879 td->bs = ull;
880 fgetpos(f, &off);
881 continue;
882 }
883 if (!check_str_bytes(p, "size", &td->total_file_size)) {
884 fgetpos(f, &off);
885 continue;
886 }
887 if (!check_str_bytes(p, "offset", &td->start_offset)) {
888 fgetpos(f, &off);
889 continue;
890 }
891 if (!check_str_bytes(p, "zonesize", &td->zone_size)) {
892 fgetpos(f, &off);
893 continue;
894 }
895 if (!check_str_bytes(p, "zoneskip", &td->zone_skip)) {
896 fgetpos(f, &off);
897 continue;
898 }
899 if (!check_str_bytes(p, "lockmem", &mlock_size)) {
900 fgetpos(f, &off);
901 continue;
902 }
903 if (!check_strstore(p, "directory", tmpbuf)) {
904 td->directory = strdup(tmpbuf);
905 fgetpos(f, &off);
906 continue;
907 }
908 if (!check_strstore(p, "filename", tmpbuf)) {
909 td->filename = strdup(tmpbuf);
910 fgetpos(f, &off);
911 continue;
912 }
913 if (!check_strstore(p, "name", tmpbuf)) {
914 snprintf(td->name, sizeof(td->name)-1, "%s%d", tmpbuf, td->thread_number);
915 fgetpos(f, &off);
916 continue;
917 }
918 if (!check_str(p, "mem", str_mem_cb, td)) {
919 fgetpos(f, &off);
920 continue;
921 }
922 if (!check_str(p, "verify", str_verify_cb, td)) {
923 fgetpos(f, &off);
924 continue;
925 }
926 if (!check_str(p, "rw", str_rw_cb, td)) {
927 fgetpos(f, &off);
928 continue;
929 }
930 if (!check_str(p, "ioengine", str_ioengine_cb, td)) {
931 fgetpos(f, &off);
932 continue;
933 }
934 if (!check_strset(p, "exitall")) {
935 exitall_on_terminate = 1;
936 fgetpos(f, &off);
937 continue;
938 }
939 if (!check_strset(p, "stonewall")) {
940 td->stonewall = 1;
941 fgetpos(f, &off);
942 continue;
943 }
944 if (!check_strset(p, "thread")) {
945 td->use_thread = 1;
946 fgetpos(f, &off);
947 continue;
948 }
949 if (!check_strset(p, "unlink")) {
950 td->unlink = 1;
951 fgetpos(f, &off);
952 continue;
953 }
954 if (!check_strset(p, "write_bw_log")) {
955 td->write_bw_log = 1;
956 fgetpos(f, &off);
957 continue;
958 }
959 if (!check_strset(p, "write_lat_log")) {
960 td->write_lat_log = 1;
961 fgetpos(f, &off);
962 continue;
963 }
964 if (!check_strstore(p, "iolog", tmpbuf)) {
965 if (td->write_iolog) {
966 log_err("fio: read iolog overrides given write_iolog\n");
967 free(td->iolog_file);
968 td->write_iolog = 0;
969 }
970 td->iolog_file = strdup(tmpbuf);
971 td->read_iolog = 1;
972 fgetpos(f, &off);
973 continue;
974 }
975 if (!check_strstore(p, "write_iolog", tmpbuf)) {
976 if (!td->read_iolog) {
977 td->iolog_file = strdup(tmpbuf);
978 td->write_iolog = 1;
979 } else
980 log_err("fio: read iolog overrides given write_iolog\n");
981 fgetpos(f, &off);
982 continue;
983 }
984 if (!check_strstore(p, "exec_prerun", tmpbuf)) {
985 td->exec_prerun = strdup(tmpbuf);
986 fgetpos(f, &off);
987 continue;
988 }
989 if (!check_strstore(p, "exec_postrun", tmpbuf)) {
990 td->exec_postrun = strdup(tmpbuf);
991 fgetpos(f, &off);
992 continue;
993 }
994 if (!check_strstore(p, "ioscheduler", tmpbuf)) {
995#ifndef FIO_HAVE_IOSCHED_SWITCH
996 log_err("io scheduler switching not available\n");
997 ret = 1;
998 break;
999#else
1000 td->ioscheduler = strdup(tmpbuf);
1001 fgetpos(f, &off);
1002 continue;
1003#endif
1004 }
1005
1006 /*
1007 * Don't break here, continue parsing options so we
1008 * dump all the bad ones. Makes trial/error fixups
1009 * easier on the user.
1010 */
1011 printf("Client%d: bad option %s\n",td->thread_number,p);
1012 ret = 1;
1013 }
1014
1015 if (!ret) {
1016 fsetpos(f, &off);
1017 ret = add_job(td, name, 0);
1018 }
1019 if (ret)
1020 break;
1021 }
1022
1023 free(string);
1024 free(name);
1025 free(tmpbuf);
1026 fclose(f);
1027 return ret;
1028}
1029
1030static int fill_def_thread(void)
1031{
1032 memset(&def_thread, 0, sizeof(def_thread));
1033
1034 if (fio_getaffinity(getpid(), &def_thread.cpumask) == -1) {
1035 perror("sched_getaffinity");
1036 return 1;
1037 }
1038
1039 /*
1040 * fill globals
1041 */
1042 def_thread.ddir = DDIR_READ;
1043 def_thread.iomix = 0;
1044 def_thread.bs = DEF_BS;
1045 def_thread.min_bs = -1;
1046 def_thread.max_bs = -1;
1047 def_thread.odirect = DEF_ODIRECT;
1048 def_thread.ratecycle = DEF_RATE_CYCLE;
1049 def_thread.sequential = DEF_SEQUENTIAL;
1050 def_thread.timeout = def_timeout;
1051 def_thread.overwrite = DEF_OVERWRITE;
1052 def_thread.invalidate_cache = DEF_INVALIDATE;
1053 def_thread.sync_io = DEF_SYNCIO;
1054 def_thread.mem_type = MEM_MALLOC;
1055 def_thread.bw_avg_time = DEF_BWAVGTIME;
1056 def_thread.create_serialize = DEF_CREATE_SER;
1057 def_thread.create_fsync = DEF_CREATE_FSYNC;
1058 def_thread.loops = DEF_LOOPS;
1059 def_thread.verify = DEF_VERIFY;
1060 def_thread.stonewall = DEF_STONEWALL;
1061 def_thread.numjobs = DEF_NUMJOBS;
1062 def_thread.use_thread = DEF_USE_THREAD;
1063 def_thread.rwmixcycle = DEF_RWMIX_CYCLE;
1064 def_thread.rwmixread = DEF_RWMIX_READ;
1065 def_thread.nice = DEF_NICE;
1066 def_thread.rand_repeatable = DEF_RAND_REPEAT;
1067 def_thread.nr_files = DEF_NR_FILES;
1068 def_thread.unlink = DEF_UNLINK;
1069 def_thread.write_bw_log = write_bw_log;
1070 def_thread.write_lat_log = write_lat_log;
1071#ifdef FIO_HAVE_DISK_UTIL
1072 def_thread.do_disk_util = 1;
1073#endif
1074
1075 return 0;
1076}
1077
1078static void usage(void)
1079{
1080 printf("%s\n", fio_version_string);
1081 printf("\t-o Write output to file\n");
1082 printf("\t-t Runtime in seconds\n");
1083 printf("\t-l Generate per-job latency logs\n");
1084 printf("\t-w Generate per-job bandwidth logs\n");
1085 printf("\t-m Minimal (terse) output\n");
1086 printf("\t-v Print version info and exit\n");
1087}
1088
1089static int parse_cmd_line(int argc, char *argv[])
1090{
1091 int c, idx = 1, ini_idx = 0;
1092
1093 while ((c = getopt(argc, argv, "t:o:lwvhm")) != EOF) {
1094 switch (c) {
1095 case 't':
1096 def_timeout = atoi(optarg);
1097 idx = optind;
1098 break;
1099 case 'l':
1100 write_lat_log = 1;
1101 idx = optind;
1102 break;
1103 case 'w':
1104 write_bw_log = 1;
1105 idx = optind;
1106 break;
1107 case 'o':
1108 f_out = fopen(optarg, "w+");
1109 if (!f_out) {
1110 perror("fopen output");
1111 exit(1);
1112 }
1113 f_err = f_out;
1114 idx = optind;
1115 break;
1116 case 'm':
1117 terse_output = 1;
1118 idx = optind;
1119 break;
1120 case 'h':
1121 usage();
1122 exit(0);
1123 case 'v':
1124 printf("%s\n", fio_version_string);
1125 exit(0);
1126 }
1127 }
1128
1129 while (idx < argc) {
1130 ini_idx++;
1131 ini_file = realloc(ini_file, ini_idx * sizeof(char *));
1132 ini_file[ini_idx - 1] = strdup(argv[idx]);
1133 idx++;
1134 }
1135
1136 if (!f_out) {
1137 f_out = stdout;
1138 f_err = stderr;
1139 }
1140
1141 return ini_idx;
1142}
1143
1144static void free_shm(void)
1145{
1146 struct shmid_ds sbuf;
1147
1148 if (threads) {
1149 shmdt((void *) threads);
1150 threads = NULL;
1151 shmctl(shm_id, IPC_RMID, &sbuf);
1152 }
1153}
1154
1155/*
1156 * The thread area is shared between the main process and the job
1157 * threads/processes. So setup a shared memory segment that will hold
1158 * all the job info.
1159 */
1160static int setup_thread_area(void)
1161{
1162 /*
1163 * 1024 is too much on some machines, scale max_jobs if
1164 * we get a failure that looks like too large a shm segment
1165 */
1166 do {
1167 size_t size = max_jobs * sizeof(struct thread_data);
1168
1169 shm_id = shmget(0, size, IPC_CREAT | 0600);
1170 if (shm_id != -1)
1171 break;
1172 if (errno != EINVAL) {
1173 perror("shmget");
1174 break;
1175 }
1176
1177 max_jobs >>= 1;
1178 } while (max_jobs);
1179
1180 if (shm_id == -1)
1181 return 1;
1182
1183 threads = shmat(shm_id, NULL, 0);
1184 if (threads == (void *) -1) {
1185 perror("shmat");
1186 return 1;
1187 }
1188
1189 atexit(free_shm);
1190 return 0;
1191}
1192
1193int parse_options(int argc, char *argv[])
1194{
1195 int job_files, i;
1196
1197 if (setup_thread_area())
1198 return 1;
1199 if (fill_def_thread())
1200 return 1;
1201
1202 job_files = parse_cmd_line(argc, argv);
1203 if (!job_files) {
1204 log_err("Need job file(s)\n");
1205 usage();
1206 return 1;
1207 }
1208
1209 for (i = 0; i < job_files; i++) {
1210 if (fill_def_thread())
1211 return 1;
1212 if (parse_jobs_ini(ini_file[i], i))
1213 return 1;
1214 free(ini_file[i]);
1215 }
1216
1217 free(ini_file);
1218 return 0;
1219}