blktrace: fix missing line return in dprint()
[fio.git] / diskutil.c
1 #include <stdio.h>
2 #include <string.h>
3 #include <sys/time.h>
4 #include <sys/types.h>
5 #include <sys/stat.h>
6 #include <dirent.h>
7 #include <libgen.h>
8 #include <math.h>
9
10 #include "fio.h"
11 #include "smalloc.h"
12 #include "diskutil.h"
13
14 static int last_majdev, last_mindev;
15 static struct disk_util *last_du;
16
17 static struct fio_mutex *disk_util_mutex;
18
19 FLIST_HEAD(disk_list);
20
21 static struct disk_util *__init_per_file_disk_util(struct thread_data *td,
22                 int majdev, int mindev, char *path);
23
24 static void disk_util_free(struct disk_util *du)
25 {
26         if (du == last_du)
27                 last_du = NULL;
28
29         while (!flist_empty(&du->slaves)) {
30                 struct disk_util *slave;
31
32                 slave = flist_entry(du->slaves.next, struct disk_util, slavelist);
33                 flist_del(&slave->slavelist);
34                 slave->users--;
35         }
36
37         fio_mutex_remove(du->lock);
38         sfree(du);
39 }
40
41 static int get_io_ticks(struct disk_util *du, struct disk_util_stat *dus)
42 {
43         unsigned in_flight;
44         unsigned long long sectors[2];
45         char line[256];
46         FILE *f;
47         char *p;
48         int ret;
49
50         dprint(FD_DISKUTIL, "open stat file: %s\n", du->path);
51
52         f = fopen(du->path, "r");
53         if (!f)
54                 return 1;
55
56         p = fgets(line, sizeof(line), f);
57         if (!p) {
58                 fclose(f);
59                 return 1;
60         }
61
62         dprint(FD_DISKUTIL, "%s: %s", du->path, p);
63
64         ret = sscanf(p, "%u %u %llu %u %u %u %llu %u %u %u %u\n", &dus->ios[0],
65                                         &dus->merges[0], &sectors[0],
66                                         &dus->ticks[0], &dus->ios[1],
67                                         &dus->merges[1], &sectors[1],
68                                         &dus->ticks[1], &in_flight,
69                                         &dus->io_ticks, &dus->time_in_queue);
70         fclose(f);
71         dprint(FD_DISKUTIL, "%s: stat read ok? %d\n", du->path, ret == 1);
72         dus->sectors[0] = sectors[0];
73         dus->sectors[1] = sectors[1];
74         return ret != 11;
75 }
76
77 static void update_io_tick_disk(struct disk_util *du)
78 {
79         struct disk_util_stat __dus, *dus, *ldus;
80         struct timeval t;
81
82         if (!du->users)
83                 return;
84         if (get_io_ticks(du, &__dus))
85                 return;
86
87         dus = &du->dus;
88         ldus = &du->last_dus;
89
90         dus->sectors[0] += (__dus.sectors[0] - ldus->sectors[0]);
91         dus->sectors[1] += (__dus.sectors[1] - ldus->sectors[1]);
92         dus->ios[0] += (__dus.ios[0] - ldus->ios[0]);
93         dus->ios[1] += (__dus.ios[1] - ldus->ios[1]);
94         dus->merges[0] += (__dus.merges[0] - ldus->merges[0]);
95         dus->merges[1] += (__dus.merges[1] - ldus->merges[1]);
96         dus->ticks[0] += (__dus.ticks[0] - ldus->ticks[0]);
97         dus->ticks[1] += (__dus.ticks[1] - ldus->ticks[1]);
98         dus->io_ticks += (__dus.io_ticks - ldus->io_ticks);
99         dus->time_in_queue += (__dus.time_in_queue - ldus->time_in_queue);
100
101         fio_gettime(&t, NULL);
102         dus->msec += mtime_since(&du->time, &t);
103         memcpy(&du->time, &t, sizeof(t));
104         memcpy(ldus, &__dus, sizeof(__dus));
105 }
106
107 int update_io_ticks(void)
108 {
109         struct flist_head *entry;
110         struct disk_util *du;
111         int ret = 0;
112
113         dprint(FD_DISKUTIL, "update io ticks\n");
114
115         fio_mutex_down(disk_util_mutex);
116
117         if (!disk_util_exit) {
118                 flist_for_each(entry, &disk_list) {
119                         du = flist_entry(entry, struct disk_util, list);
120                         update_io_tick_disk(du);
121                 }
122         } else
123                 ret = 1;
124
125         fio_mutex_up(disk_util_mutex);
126         return ret;
127 }
128
129 static struct disk_util *disk_util_exists(int major, int minor)
130 {
131         struct flist_head *entry;
132         struct disk_util *du;
133
134         fio_mutex_down(disk_util_mutex);
135
136         flist_for_each(entry, &disk_list) {
137                 du = flist_entry(entry, struct disk_util, list);
138
139                 if (major == du->major && minor == du->minor) {
140                         fio_mutex_up(disk_util_mutex);
141                         return du;
142                 }
143         }
144
145         fio_mutex_up(disk_util_mutex);
146         return NULL;
147 }
148
149 static int get_device_numbers(char *file_name, int *maj, int *min)
150 {
151         struct stat st;
152         int majdev, mindev;
153         char tempname[PATH_MAX], *p;
154
155         if (!lstat(file_name, &st)) {
156                 if (S_ISBLK(st.st_mode)) {
157                         majdev = major(st.st_rdev);
158                         mindev = minor(st.st_rdev);
159                 } else if (S_ISCHR(st.st_mode)) {
160                         majdev = major(st.st_rdev);
161                         mindev = minor(st.st_rdev);
162                         if (fio_lookup_raw(st.st_rdev, &majdev, &mindev))
163                                 return -1;
164                 } else if (S_ISFIFO(st.st_mode))
165                         return -1;
166                 else {
167                         majdev = major(st.st_dev);
168                         mindev = minor(st.st_dev);
169                 }
170         } else {
171                 /*
172                  * must be a file, open "." in that path
173                  */
174                 strncpy(tempname, file_name, PATH_MAX - 1);
175                 p = dirname(tempname);
176                 if (stat(p, &st)) {
177                         perror("disk util stat");
178                         return -1;
179                 }
180
181                 majdev = major(st.st_dev);
182                 mindev = minor(st.st_dev);
183         }
184
185         *min = mindev;
186         *maj = majdev;
187
188         return 0;
189 }
190
191 static int read_block_dev_entry(char *path, int *maj, int *min)
192 {
193         char line[256], *p;
194         FILE *f;
195
196         f = fopen(path, "r");
197         if (!f) {
198                 perror("open path");
199                 return 1;
200         }
201
202         p = fgets(line, sizeof(line), f);
203         fclose(f);
204
205         if (!p)
206                 return 1;
207
208         if (sscanf(p, "%u:%u", maj, min) != 2)
209                 return 1;
210
211         return 0;
212 }
213
214 static void find_add_disk_slaves(struct thread_data *td, char *path,
215                                  struct disk_util *masterdu)
216 {
217         DIR *dirhandle = NULL;
218         struct dirent *dirent = NULL;
219         char slavesdir[PATH_MAX], temppath[PATH_MAX], slavepath[PATH_MAX];
220         struct disk_util *slavedu = NULL;
221         int majdev, mindev;
222         ssize_t linklen;
223
224         sprintf(slavesdir, "%s/%s", path, "slaves");
225         dirhandle = opendir(slavesdir);
226         if (!dirhandle)
227                 return;
228
229         while ((dirent = readdir(dirhandle)) != NULL) {
230                 if (!strcmp(dirent->d_name, ".") ||
231                     !strcmp(dirent->d_name, ".."))
232                         continue;
233
234                 sprintf(temppath, "%s%s%s", slavesdir, FIO_OS_PATH_SEPARATOR, dirent->d_name);
235                 /* Can we always assume that the slaves device entries
236                  * are links to the real directories for the slave
237                  * devices?
238                  */
239                 linklen = readlink(temppath, slavepath, PATH_MAX - 1);
240                 if (linklen  < 0) {
241                         perror("readlink() for slave device.");
242                         return;
243                 }
244                 slavepath[linklen] = '\0';
245
246                 sprintf(temppath, "%s/%s/dev", slavesdir, slavepath);
247                 if (read_block_dev_entry(temppath, &majdev, &mindev)) {
248                         perror("Error getting slave device numbers.");
249                         return;
250                 }
251
252                 /*
253                  * See if this maj,min already exists
254                  */
255                 slavedu = disk_util_exists(majdev, mindev);
256                 if (slavedu)
257                         continue;
258
259                 sprintf(temppath, "%s%s%s", slavesdir, FIO_OS_PATH_SEPARATOR, slavepath);
260                 __init_per_file_disk_util(td, majdev, mindev, temppath);
261                 slavedu = disk_util_exists(majdev, mindev);
262
263                 /* Should probably use an assert here. slavedu should
264                  * always be present at this point. */
265                 if (slavedu) {
266                         slavedu->users++;
267                         flist_add_tail(&slavedu->slavelist, &masterdu->slaves);
268                 }
269         }
270
271         closedir(dirhandle);
272 }
273
274 static struct disk_util *disk_util_add(struct thread_data *td, int majdev,
275                                        int mindev, char *path)
276 {
277         struct disk_util *du, *__du;
278         struct flist_head *entry;
279         int l;
280
281         dprint(FD_DISKUTIL, "add maj/min %d/%d: %s\n", majdev, mindev, path);
282
283         du = smalloc(sizeof(*du));
284         if (!du) {
285                 log_err("fio: smalloc() pool exhausted\n");
286                 return NULL;
287         }
288
289         memset(du, 0, sizeof(*du));
290         INIT_FLIST_HEAD(&du->list);
291         l = snprintf(du->path, sizeof(du->path), "%s/stat", path);
292         if (l < 0 || l >= sizeof(du->path)) {
293                 log_err("constructed path \"%.100s[...]/stat\" larger than buffer (%zu bytes)\n",
294                         path, sizeof(du->path) - 1);
295                 sfree(du);
296                 return NULL;
297         }
298         strncpy((char *) du->dus.name, basename(path), FIO_DU_NAME_SZ);
299         du->sysfs_root = path;
300         du->major = majdev;
301         du->minor = mindev;
302         INIT_FLIST_HEAD(&du->slavelist);
303         INIT_FLIST_HEAD(&du->slaves);
304         du->lock = fio_mutex_init(FIO_MUTEX_UNLOCKED);
305         du->users = 0;
306
307         fio_mutex_down(disk_util_mutex);
308
309         flist_for_each(entry, &disk_list) {
310                 __du = flist_entry(entry, struct disk_util, list);
311
312                 dprint(FD_DISKUTIL, "found %s in list\n", __du->dus.name);
313
314                 if (!strcmp((char *) du->dus.name, (char *) __du->dus.name)) {
315                         disk_util_free(du);
316                         fio_mutex_up(disk_util_mutex);
317                         return __du;
318                 }
319         }
320
321         dprint(FD_DISKUTIL, "add %s to list\n", du->dus.name);
322
323         fio_gettime(&du->time, NULL);
324         get_io_ticks(du, &du->last_dus);
325
326         flist_add_tail(&du->list, &disk_list);
327         fio_mutex_up(disk_util_mutex);
328
329         find_add_disk_slaves(td, path, du);
330         return du;
331 }
332
333 static int check_dev_match(int majdev, int mindev, char *path)
334 {
335         int major, minor;
336
337         if (read_block_dev_entry(path, &major, &minor))
338                 return 1;
339
340         if (majdev == major && mindev == minor)
341                 return 0;
342
343         return 1;
344 }
345
346 static int find_block_dir(int majdev, int mindev, char *path, int link_ok)
347 {
348         struct dirent *dir;
349         struct stat st;
350         int found = 0;
351         DIR *D;
352
353         D = opendir(path);
354         if (!D)
355                 return 0;
356
357         while ((dir = readdir(D)) != NULL) {
358                 char full_path[256];
359
360                 if (!strcmp(dir->d_name, ".") || !strcmp(dir->d_name, ".."))
361                         continue;
362
363                 sprintf(full_path, "%s%s%s", path, FIO_OS_PATH_SEPARATOR, dir->d_name);
364
365                 if (!strcmp(dir->d_name, "dev")) {
366                         if (!check_dev_match(majdev, mindev, full_path)) {
367                                 found = 1;
368                                 break;
369                         }
370                 }
371
372                 if (link_ok) {
373                         if (stat(full_path, &st) == -1) {
374                                 perror("stat");
375                                 break;
376                         }
377                 } else {
378                         if (lstat(full_path, &st) == -1) {
379                                 perror("stat");
380                                 break;
381                         }
382                 }
383
384                 if (!S_ISDIR(st.st_mode) || S_ISLNK(st.st_mode))
385                         continue;
386
387                 found = find_block_dir(majdev, mindev, full_path, 0);
388                 if (found) {
389                         strcpy(path, full_path);
390                         break;
391                 }
392         }
393
394         closedir(D);
395         return found;
396 }
397
398 static struct disk_util *__init_per_file_disk_util(struct thread_data *td,
399                                                    int majdev, int mindev,
400                                                    char *path)
401 {
402         struct stat st;
403         char tmp[PATH_MAX];
404         char *p;
405
406         /*
407          * If there's a ../queue/ directory there, we are inside a partition.
408          * Check if that is the case and jump back. For loop/md/dm etc we
409          * are already in the right spot.
410          */
411         sprintf(tmp, "%s/../queue", path);
412         if (!stat(tmp, &st)) {
413                 p = dirname(path);
414                 sprintf(tmp, "%s/queue", p);
415                 if (stat(tmp, &st)) {
416                         log_err("unknown sysfs layout\n");
417                         return NULL;
418                 }
419                 strncpy(tmp, p, PATH_MAX - 1);
420                 sprintf(path, "%s", tmp);
421         }
422
423         if (td->o.ioscheduler && !td->sysfs_root)
424                 td->sysfs_root = strdup(path);
425
426         return disk_util_add(td, majdev, mindev, path);
427 }
428
429 static struct disk_util *init_per_file_disk_util(struct thread_data *td,
430                                                  char *filename)
431 {
432
433         char foo[PATH_MAX];
434         struct disk_util *du;
435         int mindev, majdev;
436
437         if (get_device_numbers(filename, &majdev, &mindev))
438                 return NULL;
439
440         dprint(FD_DISKUTIL, "%s belongs to maj/min %d/%d\n", filename, majdev,
441                         mindev);
442
443         du = disk_util_exists(majdev, mindev);
444         if (du) {
445                 if (td->o.ioscheduler && !td->sysfs_root)
446                         td->sysfs_root = strdup(du->sysfs_root);
447
448                 return du;
449         }
450
451         /*
452          * for an fs without a device, we will repeatedly stat through
453          * sysfs which can take oodles of time for thousands of files. so
454          * cache the last lookup and compare with that before going through
455          * everything again.
456          */
457         if (mindev == last_mindev && majdev == last_majdev)
458                 return last_du;
459
460         last_mindev = mindev;
461         last_majdev = majdev;
462
463         sprintf(foo, "/sys/block");
464         if (!find_block_dir(majdev, mindev, foo, 1))
465                 return NULL;
466
467         return __init_per_file_disk_util(td, majdev, mindev, foo);
468 }
469
470 static struct disk_util *__init_disk_util(struct thread_data *td,
471                                           struct fio_file *f)
472 {
473         return init_per_file_disk_util(td, f->file_name);
474 }
475
476 void init_disk_util(struct thread_data *td)
477 {
478         struct fio_file *f;
479         unsigned int i;
480
481         if (!td->o.do_disk_util ||
482             (td->io_ops->flags & (FIO_DISKLESSIO | FIO_NODISKUTIL)))
483                 return;
484
485         for_each_file(td, f, i)
486                 f->du = __init_disk_util(td, f);
487 }
488
489 static void show_agg_stats(struct disk_util_agg *agg, int terse)
490 {
491         if (!agg->slavecount)
492                 return;
493
494         if (!terse) {
495                 log_info(", aggrios=%u/%u, aggrmerge=%u/%u, aggrticks=%u/%u,"
496                                 " aggrin_queue=%u, aggrutil=%3.2f%%",
497                                 agg->ios[0] / agg->slavecount,
498                                 agg->ios[1] / agg->slavecount,
499                                 agg->merges[0] / agg->slavecount,
500                                 agg->merges[1] / agg->slavecount,
501                                 agg->ticks[0] / agg->slavecount,
502                                 agg->ticks[1] / agg->slavecount,
503                                 agg->time_in_queue / agg->slavecount,
504                                 agg->max_util.u.f);
505         } else {
506                 log_info(";slaves;%u;%u;%u;%u;%u;%u;%u;%3.2f%%",
507                                 agg->ios[0] / agg->slavecount,
508                                 agg->ios[1] / agg->slavecount,
509                                 agg->merges[0] / agg->slavecount,
510                                 agg->merges[1] / agg->slavecount,
511                                 agg->ticks[0] / agg->slavecount,
512                                 agg->ticks[1] / agg->slavecount,
513                                 agg->time_in_queue / agg->slavecount,
514                                 agg->max_util.u.f);
515         }
516 }
517
518 static void aggregate_slaves_stats(struct disk_util *masterdu)
519 {
520         struct disk_util_agg *agg = &masterdu->agg;
521         struct disk_util_stat *dus;
522         struct flist_head *entry;
523         struct disk_util *slavedu;
524         double util;
525
526         flist_for_each(entry, &masterdu->slaves) {
527                 slavedu = flist_entry(entry, struct disk_util, slavelist);
528                 dus = &slavedu->dus;
529                 agg->ios[0] += dus->ios[0];
530                 agg->ios[1] += dus->ios[1];
531                 agg->merges[0] += dus->merges[0];
532                 agg->merges[1] += dus->merges[1];
533                 agg->sectors[0] += dus->sectors[0];
534                 agg->sectors[1] += dus->sectors[1];
535                 agg->ticks[0] += dus->ticks[0];
536                 agg->ticks[1] += dus->ticks[1];
537                 agg->time_in_queue += dus->time_in_queue;
538                 agg->slavecount++;
539
540                 util = (double) (100 * dus->io_ticks / (double) slavedu->dus.msec);
541                 /* System utilization is the utilization of the
542                  * component with the highest utilization.
543                  */
544                 if (util > agg->max_util.u.f)
545                         agg->max_util.u.f = util;
546
547         }
548
549         if (agg->max_util.u.f > 100.0)
550                 agg->max_util.u.f = 100.0;
551 }
552
553 void disk_util_prune_entries(void)
554 {
555         fio_mutex_down(disk_util_mutex);
556
557         while (!flist_empty(&disk_list)) {
558                 struct disk_util *du;
559
560                 du = flist_entry(disk_list.next, struct disk_util, list);
561                 flist_del(&du->list);
562                 disk_util_free(du);
563         }
564
565         last_majdev = last_mindev = -1;
566         fio_mutex_up(disk_util_mutex);
567         fio_mutex_remove(disk_util_mutex);
568 }
569
570 void print_disk_util(struct disk_util_stat *dus, struct disk_util_agg *agg,
571                      int terse)
572 {
573         double util = 0;
574
575         if (dus->msec)
576                 util = (double) 100 * dus->io_ticks / (double) dus->msec;
577         if (util > 100.0)
578                 util = 100.0;
579
580         if (!terse) {
581                 if (agg->slavecount)
582                         log_info("  ");
583
584                 log_info("  %s: ios=%u/%u, merge=%u/%u, ticks=%u/%u, "
585                          "in_queue=%u, util=%3.2f%%", dus->name,
586                                         dus->ios[0], dus->ios[1],
587                                         dus->merges[0], dus->merges[1],
588                                         dus->ticks[0], dus->ticks[1],
589                                         dus->time_in_queue, util);
590         } else {
591                 log_info(";%s;%u;%u;%u;%u;%u;%u;%u;%3.2f%%",
592                                         dus->name, dus->ios[0], dus->ios[1],
593                                         dus->merges[0], dus->merges[1],
594                                         dus->ticks[0], dus->ticks[1],
595                                         dus->time_in_queue, util);
596         }
597
598         /*
599          * If the device has slaves, aggregate the stats for
600          * those slave devices also.
601          */
602         show_agg_stats(agg, terse);
603
604         if (!terse)
605                 log_info("\n");
606 }
607
608 void json_array_add_disk_util(struct disk_util_stat *dus,
609                 struct disk_util_agg *agg, struct json_array *array)
610 {
611         struct json_object *obj;
612         double util = 0;
613
614         if (dus->msec)
615                 util = (double) 100 * dus->io_ticks / (double) dus->msec;
616         if (util > 100.0)
617                 util = 100.0;
618
619         obj = json_create_object();
620         json_array_add_value_object(array, obj);
621
622         json_object_add_value_string(obj, "name", dus->name);
623         json_object_add_value_int(obj, "read_ios", dus->ios[0]);
624         json_object_add_value_int(obj, "write_ios", dus->ios[1]);
625         json_object_add_value_int(obj, "read_merges", dus->merges[0]);
626         json_object_add_value_int(obj, "write_merges", dus->merges[1]);
627         json_object_add_value_int(obj, "read_ticks", dus->ticks[0]);
628         json_object_add_value_int(obj, "write_ticks", dus->ticks[1]);
629         json_object_add_value_int(obj, "in_queue", dus->time_in_queue);
630         json_object_add_value_float(obj, "util", util);
631
632         /*
633          * If the device has slaves, aggregate the stats for
634          * those slave devices also.
635          */
636         if (!agg->slavecount)
637                 return;
638         json_object_add_value_int(obj, "aggr_read_ios",
639                                 agg->ios[0] / agg->slavecount);
640         json_object_add_value_int(obj, "aggr_write_ios",
641                                 agg->ios[1] / agg->slavecount);
642         json_object_add_value_int(obj, "aggr_read_merges",
643                                 agg->merges[0] / agg->slavecount);
644         json_object_add_value_int(obj, "aggr_write_merge",
645                                 agg->merges[1] / agg->slavecount);
646         json_object_add_value_int(obj, "aggr_read_ticks",
647                                 agg->ticks[0] / agg->slavecount);
648         json_object_add_value_int(obj, "aggr_write_ticks",
649                                 agg->ticks[1] / agg->slavecount);
650         json_object_add_value_int(obj, "aggr_in_queue",
651                                 agg->time_in_queue / agg->slavecount);
652         json_object_add_value_float(obj, "aggr_util", agg->max_util.u.f);
653 }
654
655 static void json_object_add_disk_utils(struct json_object *obj,
656                                        struct flist_head *head)
657 {
658         struct json_array *array = json_create_array();
659         struct flist_head *entry;
660         struct disk_util *du;
661
662         json_object_add_value_array(obj, "disk_util", array);
663
664         flist_for_each(entry, head) {
665                 du = flist_entry(entry, struct disk_util, list);
666
667                 aggregate_slaves_stats(du);
668                 json_array_add_disk_util(&du->dus, &du->agg, array);
669         }
670 }
671
672 void show_disk_util(int terse, struct json_object *parent)
673 {
674         struct flist_head *entry;
675         struct disk_util *du;
676
677         fio_mutex_down(disk_util_mutex);
678
679         if (flist_empty(&disk_list)) {
680                 fio_mutex_up(disk_util_mutex);
681                 return;
682         }
683
684         if (!terse && !parent)
685                 log_info("\nDisk stats (read/write):\n");
686
687         if (output_format == FIO_OUTPUT_JSON) {
688                 json_object_add_disk_utils(parent, &disk_list);
689         } else
690                 flist_for_each(entry, &disk_list) {
691                         du = flist_entry(entry, struct disk_util, list);
692
693                         aggregate_slaves_stats(du);
694                         print_disk_util(&du->dus, &du->agg, terse);
695                 }
696
697         fio_mutex_up(disk_util_mutex);
698 }
699
700 void setup_disk_util(void)
701 {
702         disk_util_mutex = fio_mutex_init(FIO_MUTEX_UNLOCKED);
703 }