[PATCH] Juggle some includes, add cscope make target
[fio.git] / fio-ini.c
1 #include <stdio.h>
2 #include <stdlib.h>
3 #include <unistd.h>
4 #include <fcntl.h>
5 #include <ctype.h>
6 #include <string.h>
7 #include <errno.h>
8 #include <sys/ipc.h>
9 #include <sys/shm.h>
10 #include <sys/types.h>
11 #include <sys/stat.h>
12
13 #include "fio.h"
14
15 #define DEF_BS                  (4096)
16 #define DEF_TIMEOUT             (0)
17 #define DEF_RATE_CYCLE          (1000)
18 #define DEF_ODIRECT             (1)
19 #define DEF_IO_ENGINE           (FIO_SYNCIO)
20 #define DEF_IO_ENGINE_NAME      "sync"
21 #define DEF_SEQUENTIAL          (1)
22 #define DEF_RAND_REPEAT         (1)
23 #define DEF_OVERWRITE           (1)
24 #define DEF_CREATE              (1)
25 #define DEF_INVALIDATE          (1)
26 #define DEF_SYNCIO              (0)
27 #define DEF_RANDSEED            (0xb1899bedUL)
28 #define DEF_BWAVGTIME           (500)
29 #define DEF_CREATE_SER          (1)
30 #define DEF_CREATE_FSYNC        (1)
31 #define DEF_LOOPS               (1)
32 #define DEF_VERIFY              (0)
33 #define DEF_STONEWALL           (0)
34 #define DEF_NUMJOBS             (1)
35 #define DEF_USE_THREAD          (0)
36 #define DEF_FILE_SIZE           (1024 * 1024 * 1024UL)
37 #define DEF_ZONE_SIZE           (0)
38 #define DEF_ZONE_SKIP           (0)
39 #define DEF_RWMIX_CYCLE         (500)
40 #define DEF_RWMIX_READ          (50)
41 #define DEF_NICE                (0)
42
43 static char fio_version_string[] = "fio 1.4";
44
45 static int repeatable = DEF_RAND_REPEAT;
46 static char *ini_file;
47 static int max_jobs = MAX_JOBS;
48
49 struct thread_data def_thread;
50 struct thread_data *threads = NULL;
51
52 int rate_quit = 0;
53 int write_lat_log = 0;
54 int write_bw_log = 0;
55 int exitall_on_terminate = 0;
56 unsigned long long mlock_size = 0;
57
58 static int setup_rate(struct thread_data *td)
59 {
60         int nr_reads_per_sec;
61
62         if (!td->rate)
63                 return 0;
64
65         if (td->rate < td->ratemin) {
66                 fprintf(stderr, "min rate larger than nominal rate\n");
67                 return -1;
68         }
69
70         nr_reads_per_sec = (td->rate * 1024) / td->min_bs;
71         td->rate_usec_cycle = 1000000 / nr_reads_per_sec;
72         td->rate_pending_usleep = 0;
73         return 0;
74 }
75
76 static void setup_log(struct io_log **log)
77 {
78         struct io_log *l = malloc(sizeof(*l));
79
80         l->nr_samples = 0;
81         l->max_samples = 1024;
82         l->log = malloc(l->max_samples * sizeof(struct io_sample));
83         *log = l;
84 }
85
86 void finish_log(struct thread_data *td, struct io_log *log, const char *name)
87 {
88         char file_name[256];
89         FILE *f;
90         unsigned int i;
91
92         snprintf(file_name, 200, "client%d_%s.log", td->thread_number, name);
93         f = fopen(file_name, "w");
94         if (!f) {
95                 perror("fopen log");
96                 return;
97         }
98
99         for (i = 0; i < log->nr_samples; i++)
100                 fprintf(f, "%lu, %lu, %u\n", log->log[i].time, log->log[i].val, log->log[i].ddir);
101
102         fclose(f);
103         free(log->log);
104         free(log);
105 }
106
107 static struct thread_data *get_new_job(int global, struct thread_data *parent)
108 {
109         struct thread_data *td;
110
111         if (global)
112                 return &def_thread;
113         if (thread_number >= max_jobs)
114                 return NULL;
115
116         td = &threads[thread_number++];
117         if (parent)
118                 *td = *parent;
119         else
120                 memset(td, 0, sizeof(*td));
121
122         td->fd = -1;
123         td->thread_number = thread_number;
124
125         td->ddir = parent->ddir;
126         td->ioprio = parent->ioprio;
127         td->sequential = parent->sequential;
128         td->bs = parent->bs;
129         td->min_bs = parent->min_bs;
130         td->max_bs = parent->max_bs;
131         td->odirect = parent->odirect;
132         td->thinktime = parent->thinktime;
133         td->fsync_blocks = parent->fsync_blocks;
134         td->start_delay = parent->start_delay;
135         td->timeout = parent->timeout;
136         td->io_engine = parent->io_engine;
137         td->create_file = parent->create_file;
138         td->overwrite = parent->overwrite;
139         td->invalidate_cache = parent->invalidate_cache;
140         td->file_size = parent->file_size;
141         td->file_offset = parent->file_offset;
142         td->zone_size = parent->zone_size;
143         td->zone_skip = parent->zone_skip;
144         td->rate = parent->rate;
145         td->ratemin = parent->ratemin;
146         td->ratecycle = parent->ratecycle;
147         td->iodepth = parent->iodepth;
148         td->sync_io = parent->sync_io;
149         td->mem_type = parent->mem_type;
150         td->bw_avg_time = parent->bw_avg_time;
151         td->create_serialize = parent->create_serialize;
152         td->create_fsync = parent->create_fsync;
153         td->loops = parent->loops;
154         td->verify = parent->verify;
155         td->stonewall = parent->stonewall;
156         td->numjobs = parent->numjobs;
157         td->use_thread = parent->use_thread;
158         td->do_disk_util = parent->do_disk_util;
159         memcpy(&td->cpumask, &parent->cpumask, sizeof(td->cpumask));
160         strcpy(td->io_engine_name, parent->io_engine_name);
161
162         return td;
163 }
164
165 static void put_job(struct thread_data *td)
166 {
167         memset(&threads[td->thread_number - 1], 0, sizeof(*td));
168         thread_number--;
169 }
170
171 static int add_job(struct thread_data *td, const char *jobname, int job_add_num)
172 {
173         char *ddir_str[] = { "read", "write", "randread", "randwrite",
174                              "rw", NULL, "randrw" };
175         struct stat sb;
176         int numjobs, ddir;
177
178 #ifndef FIO_HAVE_LIBAIO
179         if (td->io_engine == FIO_LIBAIO) {
180                 fprintf(stderr, "Linux libaio not available\n");
181                 return 1;
182         }
183 #endif
184 #ifndef FIO_HAVE_POSIXAIO
185         if (td->io_engine == FIO_POSIXAIO) {
186                 fprintf(stderr, "posix aio not available\n");
187                 return 1;
188         }
189 #endif
190
191         /*
192          * the def_thread is just for options, it's not a real job
193          */
194         if (td == &def_thread)
195                 return 0;
196
197         if (td->io_engine & FIO_SYNCIO)
198                 td->iodepth = 1;
199         else {
200                 if (!td->iodepth)
201                         td->iodepth = 1;
202         }
203
204         /*
205          * only really works for sequential io for now
206          */
207         if (td->zone_size && !td->sequential)
208                 td->zone_size = 0;
209
210         td->filetype = FIO_TYPE_FILE;
211         if (!stat(jobname, &sb)) {
212                 if (S_ISBLK(sb.st_mode))
213                         td->filetype = FIO_TYPE_BD;
214                 else if (S_ISCHR(sb.st_mode))
215                         td->filetype = FIO_TYPE_CHAR;
216         }
217
218         if (td->filetype == FIO_TYPE_FILE) {
219                 if (td->directory && td->directory[0] != '\0')
220                         sprintf(td->file_name, "%s/%s.%d", td->directory, jobname, td->jobnum);
221                 else
222                         sprintf(td->file_name, "%s.%d", jobname, td->jobnum);
223         } else
224                 strncpy(td->file_name, jobname, sizeof(td->file_name) - 1);
225
226         sem_init(&td->mutex, 0, 0);
227
228         td->clat_stat[0].min_val = td->clat_stat[1].min_val = ULONG_MAX;
229         td->slat_stat[0].min_val = td->slat_stat[1].min_val = ULONG_MAX;
230         td->bw_stat[0].min_val = td->bw_stat[1].min_val = ULONG_MAX;
231
232         if (td->min_bs == -1U)
233                 td->min_bs = td->bs;
234         if (td->max_bs == -1U)
235                 td->max_bs = td->bs;
236         if (td_read(td) && !td_rw(td))
237                 td->verify = 0;
238
239         if (td->stonewall && td->thread_number > 1)
240                 groupid++;
241
242         td->groupid = groupid;
243
244         if (setup_rate(td))
245                 goto err;
246
247         if (write_lat_log) {
248                 setup_log(&td->slat_log);
249                 setup_log(&td->clat_log);
250         }
251         if (write_bw_log)
252                 setup_log(&td->bw_log);
253
254         ddir = td->ddir + (!td->sequential << 1) + (td->iomix << 2);
255
256         if (!job_add_num)
257                 printf("Client%d (g=%d): rw=%s, odir=%d, bs=%d-%d, rate=%d, ioengine=%s, iodepth=%d\n", td->thread_number, td->groupid, ddir_str[ddir], td->odirect, td->min_bs, td->max_bs, td->rate, td->io_engine_name, td->iodepth);
258         else if (job_add_num == 1)
259                 printf("...\n");
260
261         /*
262          * recurse add identical jobs, clear numjobs and stonewall options
263          * as they don't apply to sub-jobs
264          */
265         numjobs = td->numjobs;
266         while (--numjobs) {
267                 struct thread_data *td_new = get_new_job(0, td);
268
269                 if (!td_new)
270                         goto err;
271
272                 td_new->numjobs = 1;
273                 td_new->stonewall = 0;
274                 td_new->jobnum = numjobs;
275                 job_add_num = numjobs - 1;
276
277                 if (add_job(td_new, jobname, job_add_num))
278                         goto err;
279         }
280         return 0;
281 err:
282         put_job(td);
283         return -1;
284 }
285
286 int init_random_state(struct thread_data *td)
287 {
288         unsigned long seeds[4];
289         int fd, num_maps, blocks;
290
291         fd = open("/dev/urandom", O_RDONLY);
292         if (fd == -1) {
293                 td_verror(td, errno);
294                 return 1;
295         }
296
297         if (read(fd, seeds, sizeof(seeds)) < (int) sizeof(seeds)) {
298                 td_verror(td, EIO);
299                 close(fd);
300                 return 1;
301         }
302
303         close(fd);
304
305         srand48_r(seeds[0], &td->bsrange_state);
306         srand48_r(seeds[1], &td->verify_state);
307         srand48_r(seeds[2], &td->rwmix_state);
308
309         if (td->sequential)
310                 return 0;
311
312         if (repeatable)
313                 seeds[3] = DEF_RANDSEED;
314
315         blocks = (td->io_size + td->min_bs - 1) / td->min_bs;
316         num_maps = blocks / BLOCKS_PER_MAP;
317         td->file_map = malloc(num_maps * sizeof(long));
318         td->num_maps = num_maps;
319         memset(td->file_map, 0, num_maps * sizeof(long));
320
321         srand48_r(seeds[3], &td->random_state);
322         return 0;
323 }
324
325 static 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
339 static unsigned long get_mult(char c)
340 {
341         switch (c) {
342                 case 'k':
343                 case 'K':
344                         return 1024;
345                 case 'm':
346                 case 'M':
347                         return 1024 * 1024;
348                 case 'g':
349                 case 'G':
350                         return 1024 * 1024 * 1024;
351                 default:
352                         return 1;
353         }
354 }
355
356 /*
357  * convert string after '=' into decimal value, noting any size suffix
358  */
359 static int str_cnv(char *p, unsigned long long *val)
360 {
361         char *str;
362         int len;
363
364         str = strchr(p, '=');
365         if (!str)
366                 return 1;
367
368         str++;
369         len = strlen(str);
370
371         *val = strtoul(str, NULL, 10);
372         if (*val == ULONG_MAX && errno == ERANGE)
373                 return 1;
374
375         *val *= get_mult(str[len - 1]);
376         return 0;
377 }
378
379 static int check_strcnv(char *p, char *name, unsigned long long *val)
380 {
381         if (strncmp(p, name, strlen(name) - 1))
382                 return 1;
383
384         return str_cnv(p, val);
385 }
386
387 static void strip_blank_front(char **p)
388 {
389         char *s = *p;
390
391         while (isspace(*s))
392                 s++;
393 }
394
395 static void strip_blank_end(char *p)
396 {
397         char *s = p + strlen(p) - 1;
398
399         while (isspace(*s) || iscntrl(*s))
400                 s--;
401
402         *(s + 1) = '\0';
403 }
404
405 typedef int (str_cb_fn)(struct thread_data *, char *);
406
407 static int check_str(char *p, char *name, str_cb_fn *cb, struct thread_data *td)
408 {
409         char *s;
410
411         if (strncmp(p, name, strlen(name)))
412                 return 1;
413
414         s = strstr(p, name);
415         if (!s)
416                 return 1;
417
418         s = strchr(s, '=');
419         if (!s)
420                 return 1;
421
422         s++;
423         strip_blank_front(&s);
424         return cb(td, s);
425 }
426
427 static int check_strstore(char *p, char *name, char *dest)
428 {
429         char *s;
430
431         if (strncmp(p, name, strlen(name)))
432                 return 1;
433
434         s = strstr(p, name);
435         if (!s)
436                 return 1;
437
438         s = strchr(p, '=');
439         if (!s)
440                 return 1;
441
442         s++;
443         strip_blank_front(&s);
444
445         strcpy(dest, s);
446         return 0;
447 }
448
449 static int __check_range(char *str, unsigned long *val)
450 {
451         char suffix;
452
453         if (sscanf(str, "%lu%c", val, &suffix) == 2) {
454                 *val *= get_mult(suffix);
455                 return 0;
456         }
457
458         if (sscanf(str, "%lu", val) == 1)
459                 return 0;
460
461         return 1;
462 }
463
464 static int check_range(char *p, char *name, unsigned long *s, unsigned long *e)
465 {
466         char option[128];
467         char *str, *p1, *p2;
468
469         if (strncmp(p, name, strlen(name)))
470                 return 1;
471
472         strcpy(option, p);
473         p = option;
474
475         str = strstr(p, name);
476         if (!str)
477                 return 1;
478
479         p += strlen(name);
480
481         str = strchr(p, '=');
482         if (!str)
483                 return 1;
484
485         /*
486          * 'p' now holds whatever is after the '=' sign
487          */
488         p1 = str + 1;
489
490         /*
491          * terminate p1 at the '-' sign
492          */
493         p = strchr(p1, '-');
494         if (!p)
495                 return 1;
496
497         p2 = p + 1;
498         *p = '\0';
499
500         if (!__check_range(p1, s) && !__check_range(p2, e))
501                 return 0;
502
503         return 1;
504 }
505
506 static int check_int(char *p, char *name, unsigned int *val)
507 {
508         char *str;
509
510         if (strncmp(p, name, strlen(name)))
511                 return 1;
512
513         str = strstr(p, name);
514         if (!str)
515                 return 1;
516
517         str = strchr(p, '=');
518         if (!str)
519                 return 1;
520
521         str++;
522
523         if (sscanf(str, "%u", val) == 1)
524                 return 0;
525
526         return 1;
527 }
528
529 static int check_strset(char *p, char *name)
530 {
531         return strncmp(p, name, strlen(name));
532 }
533
534 static int is_empty_or_comment(char *line)
535 {
536         unsigned int i;
537
538         for (i = 0; i < strlen(line); i++) {
539                 if (line[i] == ';')
540                         return 1;
541                 if (!isspace(line[i]) && !iscntrl(line[i]))
542                         return 0;
543         }
544
545         return 1;
546 }
547
548 static int str_rw_cb(struct thread_data *td, char *mem)
549 {
550         if (!strncmp(mem, "read", 4) || !strncmp(mem, "0", 1)) {
551                 td->ddir = DDIR_READ;
552                 td->sequential = 1;
553                 return 0;
554         } else if (!strncmp(mem, "randread", 8)) {
555                 td->ddir = DDIR_READ;
556                 td->sequential = 0;
557                 return 0;
558         } else if (!strncmp(mem, "write", 5) || !strncmp(mem, "1", 1)) {
559                 td->ddir = DDIR_WRITE;
560                 td->sequential = 1;
561                 return 0;
562         } else if (!strncmp(mem, "randwrite", 9)) {
563                 td->ddir = DDIR_WRITE;
564                 td->sequential = 0;
565                 return 0;
566         } else if (!strncmp(mem, "rw", 2)) {
567                 td->ddir = 0;
568                 td->iomix = 1;
569                 td->sequential = 1;
570                 return 0;
571         } else if (!strncmp(mem, "randrw", 6)) {
572                 td->ddir = 0;
573                 td->iomix = 1;
574                 td->sequential = 0;
575                 return 0;
576         }
577
578         fprintf(stderr, "bad data direction: %s\n", mem);
579         return 1;
580 }
581
582 static int str_verify_cb(struct thread_data *td, char *mem)
583 {
584         if (!strncmp(mem, "0", 1)) {
585                 td->verify = VERIFY_NONE;
586                 return 0;
587         } else if (!strncmp(mem, "md5", 3) || !strncmp(mem, "1", 1)) {
588                 td->verify = VERIFY_MD5;
589                 return 0;
590         } else if (!strncmp(mem, "crc32", 5)) {
591                 td->verify = VERIFY_CRC32;
592                 return 0;
593         }
594
595         fprintf(stderr, "bad verify type: %s\n", mem);
596         return 1;
597 }
598
599 static int str_mem_cb(struct thread_data *td, char *mem)
600 {
601         if (!strncmp(mem, "malloc", 6)) {
602                 td->mem_type = MEM_MALLOC;
603                 return 0;
604         } else if (!strncmp(mem, "shm", 3)) {
605                 td->mem_type = MEM_SHM;
606                 return 0;
607         } else if (!strncmp(mem, "mmap", 4)) {
608                 td->mem_type = MEM_MMAP;
609                 return 0;
610         }
611
612         fprintf(stderr, "bad mem type: %s\n", mem);
613         return 1;
614 }
615
616 static int str_ioengine_cb(struct thread_data *td, char *str)
617 {
618         if (!strncmp(str, "linuxaio", 8) || !strncmp(str, "aio", 3) ||
619             !strncmp(str, "libaio", 6)) {
620                 strcpy(td->io_engine_name, "libaio");
621                 td->io_engine = FIO_LIBAIO;
622                 return 0;
623         } else if (!strncmp(str, "posixaio", 8)) {
624                 strcpy(td->io_engine_name, "posixaio");
625                 td->io_engine = FIO_POSIXAIO;
626                 return 0;
627         } else if (!strncmp(str, "sync", 4)) {
628                 strcpy(td->io_engine_name, "sync");
629                 td->io_engine = FIO_SYNCIO;
630                 return 0;
631         } else if (!strncmp(str, "mmap", 4)) {
632                 strcpy(td->io_engine_name, "mmap");
633                 td->io_engine = FIO_MMAPIO;
634                 return 0;
635         } else if (!strncmp(str, "sgio", 4)) {
636                 strcpy(td->io_engine_name, "sgio");
637                 td->io_engine = FIO_SGIO;
638                 return 0;
639         } else if (!strncmp(str, "splice", 6)) {
640                 strcpy(td->io_engine_name, "splice");
641                 td->io_engine = FIO_SPLICEIO;
642                 return 0;
643         }
644
645         fprintf(stderr, "bad ioengine type: %s\n", str);
646         return 1;
647 }
648
649 static int str_iolog_cb(struct thread_data *td, char *file)
650 {
651         td->iolog_file = strdup(file);
652         return 0;
653 }
654
655 static int str_prerun_cb(struct thread_data *td, char *file)
656 {
657         td->exec_prerun = strdup(file);
658         return 0;
659 }
660
661 static int str_postrun_cb(struct thread_data *td, char *file)
662 {
663         td->exec_postrun = strdup(file);
664         return 0;
665 }
666
667 static int str_iosched_cb(struct thread_data *td, char *file)
668 {
669         td->ioscheduler = strdup(file);
670         return 0;
671 }
672
673 int parse_jobs_ini(char *file)
674 {
675         unsigned int prioclass, prio, cpu, global, il;
676         unsigned long long ull;
677         unsigned long ul1, ul2;
678         struct thread_data *td;
679         char *string, *name, *tmpbuf;
680         fpos_t off;
681         FILE *f;
682         char *p;
683
684         f = fopen(file, "r");
685         if (!f) {
686                 perror("fopen job file");
687                 return 1;
688         }
689
690         string = malloc(4096);
691         name = malloc(256);
692         tmpbuf = malloc(4096);
693
694         while ((p = fgets(string, 4096, f)) != NULL) {
695                 if (is_empty_or_comment(p))
696                         continue;
697                 if (sscanf(p, "[%s]", name) != 1)
698                         continue;
699
700                 global = !strncmp(name, "global", 6);
701
702                 name[strlen(name) - 1] = '\0';
703
704                 td = get_new_job(global, &def_thread);
705                 if (!td)
706                         return 1;
707
708                 fgetpos(f, &off);
709                 while ((p = fgets(string, 4096, f)) != NULL) {
710                         if (is_empty_or_comment(p))
711                                 continue;
712                         if (strstr(p, "["))
713                                 break;
714                         strip_blank_front(&p);
715                         strip_blank_end(p);
716
717                         if (!check_int(p, "prio", &prio)) {
718 #ifndef FIO_HAVE_IOPRIO
719                                 fprintf(stderr, "io priorities not available\n");
720                                 return 1;
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                                 fprintf(stderr, "io priorities not available\n");
729                                 return 1;
730 #endif
731                                 td->ioprio |= prioclass << IOPRIO_CLASS_SHIFT;
732                                 fgetpos(f, &off);
733                                 continue;
734                         }
735                         if (!check_int(p, "direct", &td->odirect)) {
736                                 fgetpos(f, &off);
737                                 continue;
738                         }
739                         if (!check_int(p, "rate", &td->rate)) {
740                                 fgetpos(f, &off);
741                                 continue;
742                         }
743                         if (!check_int(p, "ratemin", &td->ratemin)) {
744                                 fgetpos(f, &off);
745                                 continue;
746                         }
747                         if (!check_int(p, "ratecycle", &td->ratecycle)) {
748                                 fgetpos(f, &off);
749                                 continue;
750                         }
751                         if (!check_int(p, "thinktime", &td->thinktime)) {
752                                 fgetpos(f, &off);
753                                 continue;
754                         }
755                         if (!check_int(p, "cpumask", &cpu)) {
756 #ifndef FIO_HAVE_CPU_AFFINITY
757                                 fprintf(stderr, "cpu affinity not available\n");
758                                 return 1;
759 #endif
760                                 fill_cpu_mask(td->cpumask, cpu);
761                                 fgetpos(f, &off);
762                                 continue;
763                         }
764                         if (!check_int(p, "fsync", &td->fsync_blocks)) {
765                                 fgetpos(f, &off);
766                                 td->end_fsync = 1;
767                                 continue;
768                         }
769                         if (!check_int(p, "startdelay", &td->start_delay)) {
770                                 fgetpos(f, &off);
771                                 continue;
772                         }
773                         if (!check_int(p, "timeout", &td->timeout)) {
774                                 fgetpos(f, &off);
775                                 continue;
776                         }
777                         if (!check_int(p, "invalidate",&td->invalidate_cache)) {
778                                 fgetpos(f, &off);
779                                 continue;
780                         }
781                         if (!check_int(p, "iodepth", &td->iodepth)) {
782                                 fgetpos(f, &off);
783                                 continue;
784                         }
785                         if (!check_int(p, "sync", &td->sync_io)) {
786                                 fgetpos(f, &off);
787                                 continue;
788                         }
789                         if (!check_int(p, "bwavgtime", &td->bw_avg_time)) {
790                                 fgetpos(f, &off);
791                                 continue;
792                         }
793                         if (!check_int(p, "create_serialize", &td->create_serialize)) {
794                                 fgetpos(f, &off);
795                                 continue;
796                         }
797                         if (!check_int(p, "create_fsync", &td->create_fsync)) {
798                                 fgetpos(f, &off);
799                                 continue;
800                         }
801                         if (!check_int(p, "end_fsync", &td->end_fsync)) {
802                                 fgetpos(f, &off);
803                                 continue;
804                         }
805                         if (!check_int(p, "loops", &td->loops)) {
806                                 fgetpos(f, &off);
807                                 continue;
808                         }
809                         if (!check_int(p, "numjobs", &td->numjobs)) {
810                                 fgetpos(f, &off);
811                                 continue;
812                         }
813                         if (!check_int(p, "overwrite", &td->overwrite)) {
814                                 fgetpos(f, &off);
815                                 continue;
816                         }
817                         if (!check_int(p, "rwmixcycle", &td->rwmixcycle)) {
818                                 fgetpos(f, &off);
819                                 continue;
820                         }
821                         if (!check_int(p, "rwmixread", &il)) {
822                                 if (il > 100)
823                                         il = 100;
824                                 td->rwmixread = il;
825                                 fgetpos(f, &off);
826                                 continue;
827                         }
828                         if (!check_int(p, "rwmixwrite", &il)) {
829                                 if (il > 100)
830                                         il = 100;
831                                 td->rwmixread = 100 - il;
832                                 fgetpos(f, &off);
833                                 continue;
834                         }
835                         if (!check_int(p, "nice", &td->nice)) {
836                                 fgetpos(f, &off);
837                                 continue;
838                         }
839                         if (!check_range(p, "bsrange", &ul1, &ul2)) {
840                                 if (ul1 > ul2) {
841                                         td->max_bs = ul1;
842                                         td->min_bs = ul2;
843                                 } else {
844                                         td->max_bs = ul2;
845                                         td->min_bs = ul1;
846                                 }
847                                 fgetpos(f, &off);
848                                 continue;
849                         }
850                         if (!check_strcnv(p, "bs", &ull)) {
851                                 td->bs = ull;
852                                 fgetpos(f, &off);
853                                 continue;
854                         }
855                         if (!check_strcnv(p, "size", &td->file_size)) {
856                                 fgetpos(f, &off);
857                                 continue;
858                         }
859                         if (!check_strcnv(p, "offset", &td->file_offset)) {
860                                 fgetpos(f, &off);
861                                 continue;
862                         }
863                         if (!check_strcnv(p, "zonesize", &td->zone_size)) {
864                                 fgetpos(f, &off);
865                                 continue;
866                         }
867                         if (!check_strcnv(p, "zoneskip", &td->zone_skip)) {
868                                 fgetpos(f, &off);
869                                 continue;
870                         }
871                         if (!check_strcnv(p, "lockmem", &mlock_size)) {
872                                 fgetpos(f, &off);
873                                 continue;
874                         }
875                         if (!check_strstore(p, "directory", tmpbuf)) {
876                                 td->directory = strdup(tmpbuf);
877                                 fgetpos(f, &off);
878                                 continue;
879                         }
880                         if (!check_str(p, "mem", str_mem_cb, td)) {
881                                 fgetpos(f, &off);
882                                 continue;
883                         }
884                         if (!check_str(p, "verify", str_verify_cb, td)) {
885                                 fgetpos(f, &off);
886                                 continue;
887                         }
888                         if (!check_str(p, "rw", str_rw_cb, td)) {
889                                 fgetpos(f, &off);
890                                 continue;
891                         }
892                         if (!check_str(p, "ioengine", str_ioengine_cb, td)) {
893                                 fgetpos(f, &off);
894                                 continue;
895                         }
896                         if (!check_strset(p, "create")) {
897                                 td->create_file = 1;
898                                 fgetpos(f, &off);
899                                 continue;
900                         }
901                         if (!check_strset(p, "exitall")) {
902                                 exitall_on_terminate = 1;
903                                 fgetpos(f, &off);
904                                 continue;
905                         }
906                         if (!check_strset(p, "stonewall")) {
907                                 td->stonewall = 1;
908                                 fgetpos(f, &off);
909                                 continue;
910                         }
911                         if (!check_strset(p, "thread")) {
912                                 td->use_thread = 1;
913                                 fgetpos(f, &off);
914                                 continue;
915                         }
916                         if (!check_str(p, "iolog", str_iolog_cb, td)) {
917                                 td->read_iolog = 1;
918                                 td->write_iolog = 0;
919                                 fgetpos(f, &off);
920                                 continue;
921                         }
922                         if (!td->read_iolog &&
923                             !check_str(p, "write_iolog", str_iolog_cb, td)) {
924                                 td->write_iolog = 1;
925                                 fgetpos(f, &off);
926                                 continue;
927                         }
928                         if (!check_str(p, "exec_prerun", str_prerun_cb, td)) {
929                                 fgetpos(f, &off);
930                                 continue;
931                         }
932                         if (!check_str(p, "exec_postrun", str_postrun_cb, td)) {
933                                 fgetpos(f, &off);
934                                 continue;
935                         }
936                         if (!check_str(p, "ioscheduler", str_iosched_cb, td)) {
937                                 fgetpos(f, &off);
938                                 continue;
939                         }
940
941                         printf("Client%d: bad option %s\n",td->thread_number,p);
942                         return 1;
943                 }
944                 fsetpos(f, &off);
945
946                 if (add_job(td, name, 0))
947                         return 1;
948         }
949
950         free(string);
951         free(name);
952         free(tmpbuf);
953         fclose(f);
954         return 0;
955 }
956
957 static int fill_def_thread(void)
958 {
959         memset(&def_thread, 0, sizeof(def_thread));
960
961         if (fio_getaffinity(getpid(), &def_thread.cpumask) == -1) {
962                 perror("sched_getaffinity");
963                 return 1;
964         }
965
966         /*
967          * fill globals
968          */
969         def_thread.ddir = DDIR_READ;
970         def_thread.iomix = 0;
971         def_thread.bs = DEF_BS;
972         def_thread.min_bs = -1;
973         def_thread.max_bs = -1;
974         def_thread.io_engine = DEF_IO_ENGINE;
975         strcpy(def_thread.io_engine_name, DEF_IO_ENGINE_NAME);
976         def_thread.odirect = DEF_ODIRECT;
977         def_thread.ratecycle = DEF_RATE_CYCLE;
978         def_thread.sequential = DEF_SEQUENTIAL;
979         def_thread.timeout = DEF_TIMEOUT;
980         def_thread.create_file = DEF_CREATE;
981         def_thread.overwrite = DEF_OVERWRITE;
982         def_thread.invalidate_cache = DEF_INVALIDATE;
983         def_thread.sync_io = DEF_SYNCIO;
984         def_thread.mem_type = MEM_MALLOC;
985         def_thread.bw_avg_time = DEF_BWAVGTIME;
986         def_thread.create_serialize = DEF_CREATE_SER;
987         def_thread.create_fsync = DEF_CREATE_FSYNC;
988         def_thread.loops = DEF_LOOPS;
989         def_thread.verify = DEF_VERIFY;
990         def_thread.stonewall = DEF_STONEWALL;
991         def_thread.numjobs = DEF_NUMJOBS;
992         def_thread.use_thread = DEF_USE_THREAD;
993         def_thread.rwmixcycle = DEF_RWMIX_CYCLE;
994         def_thread.rwmixread = DEF_RWMIX_READ;
995         def_thread.nice = DEF_NICE;
996 #ifdef FIO_HAVE_DISK_UTIL
997         def_thread.do_disk_util = 1;
998 #endif
999
1000         return 0;
1001 }
1002
1003 static void usage(char *name)
1004 {
1005         printf("%s\n", fio_version_string);
1006         printf("\t-s IO is sequential\n");
1007         printf("\t-b Block size in KiB for each IO\n");
1008         printf("\t-t Runtime in seconds\n");
1009         printf("\t-R Exit all threads on failure to meet rate goal\n");
1010         printf("\t-o Use O_DIRECT\n");
1011         printf("\t-l Generate per-job latency logs\n");
1012         printf("\t-w Generate per-job bandwidth logs\n");
1013         printf("\t-f Job file (Required)\n");
1014         printf("\t-v Print version info and exit\n");
1015 }
1016
1017 static void parse_cmd_line(int argc, char *argv[])
1018 {
1019         int c;
1020
1021         while ((c = getopt(argc, argv, "s:b:t:r:R:o:f:lwvh")) != EOF) {
1022                 switch (c) {
1023                         case 's':
1024                                 def_thread.sequential = !!atoi(optarg);
1025                                 break;
1026                         case 'b':
1027                                 def_thread.bs = atoi(optarg);
1028                                 def_thread.bs <<= 10;
1029                                 if (!def_thread.bs) {
1030                                         printf("bad block size\n");
1031                                         def_thread.bs = DEF_BS;
1032                                 }
1033                                 break;
1034                         case 't':
1035                                 def_thread.timeout = atoi(optarg);
1036                                 break;
1037                         case 'r':
1038                                 repeatable = !!atoi(optarg);
1039                                 break;
1040                         case 'R':
1041                                 rate_quit = !!atoi(optarg);
1042                                 break;
1043                         case 'o':
1044                                 def_thread.odirect = !!atoi(optarg);
1045                                 break;
1046                         case 'f':
1047                                 ini_file = strdup(optarg);
1048                                 break;
1049                         case 'l':
1050                                 write_lat_log = 1;
1051                                 break;
1052                         case 'w':
1053                                 write_bw_log = 1;
1054                                 break;
1055                         case 'h':
1056                                 usage(argv[0]);
1057                                 exit(0);
1058                         case 'v':
1059                                 printf("%s\n", fio_version_string);
1060                                 exit(0);
1061                 }
1062         }
1063
1064         if (!ini_file && argc > 1 && argv[argc - 1][0] != '-')
1065                 ini_file = strdup(argv[argc - 1]);
1066 }
1067
1068 static void free_shm(void)
1069 {
1070         struct shmid_ds sbuf;
1071
1072         if (threads) {
1073                 shmdt(threads);
1074                 threads = NULL;
1075                 shmctl(shm_id, IPC_RMID, &sbuf);
1076         }
1077 }
1078
1079 static int setup_thread_area(void)
1080 {
1081         /*
1082          * 1024 is too much on some machines, scale max_jobs if
1083          * we get a failure that looks like too large a shm segment
1084          */
1085         do {
1086                 int s = max_jobs * sizeof(struct thread_data);
1087
1088                 shm_id = shmget(0, s, IPC_CREAT | 0600);
1089                 if (shm_id != -1)
1090                         break;
1091                 if (errno != EINVAL) {
1092                         perror("shmget");
1093                         break;
1094                 }
1095
1096                 max_jobs >>= 1;
1097         } while (max_jobs);
1098
1099         if (shm_id == -1)
1100                 return 1;
1101
1102         threads = shmat(shm_id, NULL, 0);
1103         if (threads == (void *) -1) {
1104                 perror("shmat");
1105                 return 1;
1106         }
1107
1108         atexit(free_shm);
1109         return 0;
1110 }
1111
1112 int parse_options(int argc, char *argv[])
1113 {
1114         if (setup_thread_area())
1115                 return 1;
1116         if (fill_def_thread())
1117                 return 1;
1118
1119         parse_cmd_line(argc, argv);
1120
1121         if (!ini_file) {
1122                 printf("Need job file\n");
1123                 usage(argv[0]);
1124                 return 1;
1125         }
1126
1127         if (parse_jobs_ini(ini_file)) {
1128                 usage(argv[0]);
1129                 return 1;
1130         }
1131
1132         return 0;
1133 }