fio: use the proper enum type for the shifted IO engine flags
[fio.git] / iolog.c
CommitLineData
ac9b9101
JA
1/*
2 * Code related to writing an iolog of what a thread is doing, and to
3 * later read that back and replay
4 */
5#include <stdio.h>
6#include <stdlib.h>
7#include <libgen.h>
8#include <assert.h>
b26317c9
JA
9#include <sys/types.h>
10#include <sys/stat.h>
11#include <unistd.h>
aee2ab67
JA
12#ifdef CONFIG_ZLIB
13#include <zlib.h>
14#endif
15
ac9b9101
JA
16#include "flist.h"
17#include "fio.h"
18#include "verify.h"
19#include "trim.h"
243bfe19 20#include "filelock.h"
a47591e4 21#include "smalloc.h"
ac9b9101 22
7e419452
JA
23static int iolog_flush(struct io_log *log);
24
ac9b9101
JA
25static const char iolog_ver2[] = "fio version 2 iolog";
26
27void queue_io_piece(struct thread_data *td, struct io_piece *ipo)
28{
29 flist_add_tail(&ipo->list, &td->io_log_list);
30 td->total_io_size += ipo->len;
31}
32
1f440ece 33void log_io_u(const struct thread_data *td, const struct io_u *io_u)
ac9b9101 34{
ac9b9101
JA
35 if (!td->o.write_iolog_file)
36 return;
37
38 fprintf(td->iolog_f, "%s %s %llu %lu\n", io_u->file->file_name,
173375c2
JA
39 io_ddir_name(io_u->ddir),
40 io_u->offset, io_u->buflen);
ac9b9101
JA
41}
42
43void log_file(struct thread_data *td, struct fio_file *f,
44 enum file_log_act what)
45{
46 const char *act[] = { "add", "open", "close" };
47
48 assert(what < 3);
49
50 if (!td->o.write_iolog_file)
51 return;
52
53
54 /*
55 * this happens on the pre-open/close done before the job starts
56 */
57 if (!td->iolog_f)
58 return;
59
60 fprintf(td->iolog_f, "%s %s\n", f->file_name, act[what]);
61}
62
63static void iolog_delay(struct thread_data *td, unsigned long delay)
64{
df8fb609
JA
65 uint64_t usec = utime_since_now(&td->last_issue);
66 uint64_t this_delay;
67 struct timeval tv;
ac9b9101 68
df8fb609
JA
69 if (delay < td->time_offset) {
70 td->time_offset = 0;
71 return;
72 }
73
74 delay -= td->time_offset;
ac9b9101
JA
75 if (delay < usec)
76 return;
77
78 delay -= usec;
79
df8fb609 80 fio_gettime(&tv, NULL);
30b18672
JA
81 while (delay && !td->terminate) {
82 this_delay = delay;
83 if (this_delay > 500000)
84 this_delay = 500000;
85
86 usec_sleep(td, this_delay);
87 delay -= this_delay;
88 }
df8fb609
JA
89
90 usec = utime_since_now(&tv);
91 if (usec > delay)
92 td->time_offset = usec - delay;
93 else
94 td->time_offset = 0;
ac9b9101
JA
95}
96
97static int ipo_special(struct thread_data *td, struct io_piece *ipo)
98{
99 struct fio_file *f;
100 int ret;
101
102 /*
103 * Not a special ipo
104 */
105 if (ipo->ddir != DDIR_INVAL)
106 return 0;
107
108 f = td->files[ipo->fileno];
109
110 switch (ipo->file_action) {
111 case FIO_LOG_OPEN_FILE:
112 ret = td_io_open_file(td, f);
113 if (!ret)
114 break;
115 td_verror(td, ret, "iolog open file");
116 return -1;
117 case FIO_LOG_CLOSE_FILE:
118 td_io_close_file(td, f);
119 break;
120 case FIO_LOG_UNLINK_FILE:
38ef9c90 121 td_io_unlink_file(td, f);
ac9b9101
JA
122 break;
123 default:
124 log_err("fio: bad file action %d\n", ipo->file_action);
125 break;
126 }
127
128 return 1;
129}
130
131int read_iolog_get(struct thread_data *td, struct io_u *io_u)
132{
133 struct io_piece *ipo;
134 unsigned long elapsed;
3c3ed070 135
ac9b9101
JA
136 while (!flist_empty(&td->io_log_list)) {
137 int ret;
138
9342d5f8 139 ipo = flist_first_entry(&td->io_log_list, struct io_piece, list);
ac9b9101
JA
140 flist_del(&ipo->list);
141 remove_trim_entry(td, ipo);
142
143 ret = ipo_special(td, ipo);
144 if (ret < 0) {
145 free(ipo);
146 break;
147 } else if (ret > 0) {
148 free(ipo);
149 continue;
150 }
151
152 io_u->ddir = ipo->ddir;
153 if (ipo->ddir != DDIR_WAIT) {
154 io_u->offset = ipo->offset;
155 io_u->buflen = ipo->len;
156 io_u->file = td->files[ipo->fileno];
157 get_file(io_u->file);
158 dprint(FD_IO, "iolog: get %llu/%lu/%s\n", io_u->offset,
159 io_u->buflen, io_u->file->file_name);
160 if (ipo->delay)
161 iolog_delay(td, ipo->delay);
162 } else {
163 elapsed = mtime_since_genesis();
164 if (ipo->delay > elapsed)
165 usec_sleep(td, (ipo->delay - elapsed) * 1000);
ac9b9101
JA
166 }
167
168 free(ipo);
3c3ed070 169
ac9b9101
JA
170 if (io_u->ddir != DDIR_WAIT)
171 return 0;
172 }
173
174 td->done = 1;
175 return 1;
176}
177
178void prune_io_piece_log(struct thread_data *td)
179{
180 struct io_piece *ipo;
181 struct rb_node *n;
182
183 while ((n = rb_first(&td->io_hist_tree)) != NULL) {
184 ipo = rb_entry(n, struct io_piece, rb_node);
185 rb_erase(n, &td->io_hist_tree);
186 remove_trim_entry(td, ipo);
187 td->io_hist_len--;
188 free(ipo);
189 }
190
191 while (!flist_empty(&td->io_hist_list)) {
4e1020f8 192 ipo = flist_first_entry(&td->io_hist_list, struct io_piece, list);
ac9b9101
JA
193 flist_del(&ipo->list);
194 remove_trim_entry(td, ipo);
195 td->io_hist_len--;
196 free(ipo);
197 }
198}
199
200/*
201 * log a successful write, so we can unwind the log for verify
202 */
203void log_io_piece(struct thread_data *td, struct io_u *io_u)
204{
205 struct rb_node **p, *parent;
206 struct io_piece *ipo, *__ipo;
207
208 ipo = malloc(sizeof(struct io_piece));
209 init_ipo(ipo);
210 ipo->file = io_u->file;
211 ipo->offset = io_u->offset;
212 ipo->len = io_u->buflen;
da0a7bd2 213 ipo->numberio = io_u->numberio;
f9401285
JA
214 ipo->flags = IP_F_IN_FLIGHT;
215
216 io_u->ipo = ipo;
ac9b9101
JA
217
218 if (io_u_should_trim(td, io_u)) {
219 flist_add_tail(&ipo->trim_list, &td->trim_list);
220 td->trim_entries++;
221 }
222
223 /*
224 * We don't need to sort the entries, if:
225 *
226 * Sequential writes, or
227 * Random writes that lay out the file as it goes along
228 *
229 * For both these cases, just reading back data in the order we
230 * wrote it out is the fastest.
231 *
232 * One exception is if we don't have a random map AND we are doing
233 * verifies, in that case we need to check for duplicate blocks and
234 * drop the old one, which we rely on the rb insert/lookup for
235 * handling.
236 */
c4b6117b 237 if (((!td->o.verifysort) || !td_random(td) || !td->o.overwrite) &&
ac9b9101
JA
238 (file_randommap(td, ipo->file) || td->o.verify == VERIFY_NONE)) {
239 INIT_FLIST_HEAD(&ipo->list);
240 flist_add_tail(&ipo->list, &td->io_hist_list);
241 ipo->flags |= IP_F_ONLIST;
242 td->io_hist_len++;
243 return;
244 }
245
246 RB_CLEAR_NODE(&ipo->rb_node);
247
248 /*
249 * Sort the entry into the verification list
250 */
251restart:
252 p = &td->io_hist_tree.rb_node;
253 parent = NULL;
254 while (*p) {
3b1ff869 255 int overlap = 0;
ac9b9101
JA
256 parent = *p;
257
258 __ipo = rb_entry(parent, struct io_piece, rb_node);
259 if (ipo->file < __ipo->file)
260 p = &(*p)->rb_left;
261 else if (ipo->file > __ipo->file)
262 p = &(*p)->rb_right;
3b1ff869 263 else if (ipo->offset < __ipo->offset) {
ac9b9101 264 p = &(*p)->rb_left;
3b1ff869
JE
265 overlap = ipo->offset + ipo->len > __ipo->offset;
266 }
267 else if (ipo->offset > __ipo->offset) {
ac9b9101 268 p = &(*p)->rb_right;
3b1ff869
JE
269 overlap = __ipo->offset + __ipo->len > ipo->offset;
270 }
271 else
272 overlap = 1;
273
274 if (overlap) {
885ac623
JA
275 dprint(FD_IO, "iolog: overlap %llu/%lu, %llu/%lu",
276 __ipo->offset, __ipo->len,
277 ipo->offset, ipo->len);
ac9b9101
JA
278 td->io_hist_len--;
279 rb_erase(parent, &td->io_hist_tree);
280 remove_trim_entry(td, __ipo);
281 free(__ipo);
282 goto restart;
283 }
284 }
285
286 rb_link_node(&ipo->rb_node, parent, p);
287 rb_insert_color(&ipo->rb_node, &td->io_hist_tree);
288 ipo->flags |= IP_F_ONRB;
289 td->io_hist_len++;
290}
291
890b6656
JA
292void unlog_io_piece(struct thread_data *td, struct io_u *io_u)
293{
294 struct io_piece *ipo = io_u->ipo;
295
66347cfa
DE
296 if (td->ts.nr_block_infos) {
297 uint32_t *info = io_u_block_info(td, io_u);
298 if (BLOCK_INFO_STATE(*info) < BLOCK_STATE_TRIM_FAILURE) {
299 if (io_u->ddir == DDIR_TRIM)
300 *info = BLOCK_INFO_SET_STATE(*info,
301 BLOCK_STATE_TRIM_FAILURE);
302 else if (io_u->ddir == DDIR_WRITE)
303 *info = BLOCK_INFO_SET_STATE(*info,
304 BLOCK_STATE_WRITE_FAILURE);
305 }
306 }
307
890b6656
JA
308 if (!ipo)
309 return;
310
311 if (ipo->flags & IP_F_ONRB)
312 rb_erase(&ipo->rb_node, &td->io_hist_tree);
313 else if (ipo->flags & IP_F_ONLIST)
314 flist_del(&ipo->list);
315
316 free(ipo);
317 io_u->ipo = NULL;
318 td->io_hist_len--;
319}
320
1f440ece 321void trim_io_piece(struct thread_data *td, const struct io_u *io_u)
890b6656
JA
322{
323 struct io_piece *ipo = io_u->ipo;
324
325 if (!ipo)
326 return;
327
328 ipo->len = io_u->xfer_buflen - io_u->resid;
329}
330
ac9b9101
JA
331void write_iolog_close(struct thread_data *td)
332{
333 fflush(td->iolog_f);
334 fclose(td->iolog_f);
335 free(td->iolog_buf);
336 td->iolog_f = NULL;
337 td->iolog_buf = NULL;
338}
339
340/*
341 * Read version 2 iolog data. It is enhanced to include per-file logging,
342 * syncs, etc.
343 */
344static int read_iolog2(struct thread_data *td, FILE *f)
345{
346 unsigned long long offset;
347 unsigned int bytes;
348 int reads, writes, waits, fileno = 0, file_action = 0; /* stupid gcc */
349 char *fname, *act;
350 char *str, *p;
351 enum fio_ddir rw;
352
353 free_release_files(td);
354
355 /*
356 * Read in the read iolog and store it, reuse the infrastructure
357 * for doing verifications.
358 */
359 str = malloc(4096);
360 fname = malloc(256+16);
361 act = malloc(256+16);
362
363 reads = writes = waits = 0;
364 while ((p = fgets(str, 4096, f)) != NULL) {
365 struct io_piece *ipo;
366 int r;
367
368 r = sscanf(p, "%256s %256s %llu %u", fname, act, &offset,
369 &bytes);
370 if (r == 4) {
371 /*
372 * Check action first
373 */
374 if (!strcmp(act, "wait"))
375 rw = DDIR_WAIT;
376 else if (!strcmp(act, "read"))
377 rw = DDIR_READ;
378 else if (!strcmp(act, "write"))
379 rw = DDIR_WRITE;
380 else if (!strcmp(act, "sync"))
381 rw = DDIR_SYNC;
382 else if (!strcmp(act, "datasync"))
383 rw = DDIR_DATASYNC;
384 else if (!strcmp(act, "trim"))
385 rw = DDIR_TRIM;
386 else {
387 log_err("fio: bad iolog file action: %s\n",
388 act);
389 continue;
390 }
033ace1e 391 fileno = get_fileno(td, fname);
ac9b9101
JA
392 } else if (r == 2) {
393 rw = DDIR_INVAL;
394 if (!strcmp(act, "add")) {
5903e7b7 395 fileno = add_file(td, fname, 0, 1);
ac9b9101
JA
396 file_action = FIO_LOG_ADD_FILE;
397 continue;
398 } else if (!strcmp(act, "open")) {
399 fileno = get_fileno(td, fname);
400 file_action = FIO_LOG_OPEN_FILE;
401 } else if (!strcmp(act, "close")) {
402 fileno = get_fileno(td, fname);
403 file_action = FIO_LOG_CLOSE_FILE;
404 } else {
405 log_err("fio: bad iolog file action: %s\n",
406 act);
407 continue;
408 }
409 } else {
410 log_err("bad iolog2: %s", p);
411 continue;
412 }
413
414 if (rw == DDIR_READ)
415 reads++;
416 else if (rw == DDIR_WRITE) {
417 /*
418 * Don't add a write for ro mode
419 */
420 if (read_only)
421 continue;
422 writes++;
423 } else if (rw == DDIR_WAIT) {
424 waits++;
425 } else if (rw == DDIR_INVAL) {
426 } else if (!ddir_sync(rw)) {
427 log_err("bad ddir: %d\n", rw);
428 continue;
429 }
430
431 /*
432 * Make note of file
433 */
434 ipo = malloc(sizeof(*ipo));
435 init_ipo(ipo);
436 ipo->ddir = rw;
437 if (rw == DDIR_WAIT) {
438 ipo->delay = offset;
439 } else {
440 ipo->offset = offset;
441 ipo->len = bytes;
42793d94 442 if (rw != DDIR_INVAL && bytes > td->o.max_bs[rw])
ac9b9101
JA
443 td->o.max_bs[rw] = bytes;
444 ipo->fileno = fileno;
445 ipo->file_action = file_action;
70afff59 446 td->o.size += bytes;
ac9b9101 447 }
3c3ed070 448
ac9b9101
JA
449 queue_io_piece(td, ipo);
450 }
451
452 free(str);
453 free(act);
454 free(fname);
455
456 if (writes && read_only) {
457 log_err("fio: <%s> skips replay of %d writes due to"
458 " read-only\n", td->o.name, writes);
459 writes = 0;
460 }
461
462 if (!reads && !writes && !waits)
463 return 1;
464 else if (reads && !writes)
465 td->o.td_ddir = TD_DDIR_READ;
466 else if (!reads && writes)
467 td->o.td_ddir = TD_DDIR_WRITE;
468 else
469 td->o.td_ddir = TD_DDIR_RW;
470
471 return 0;
472}
473
474/*
475 * open iolog, check version, and call appropriate parser
476 */
477static int init_iolog_read(struct thread_data *td)
478{
479 char buffer[256], *p;
480 FILE *f;
481 int ret;
482
483 f = fopen(td->o.read_iolog_file, "r");
484 if (!f) {
485 perror("fopen read iolog");
486 return 1;
487 }
488
489 p = fgets(buffer, sizeof(buffer), f);
490 if (!p) {
491 td_verror(td, errno, "iolog read");
492 log_err("fio: unable to read iolog\n");
493 fclose(f);
494 return 1;
495 }
496
497 /*
498 * version 2 of the iolog stores a specific string as the
499 * first line, check for that
500 */
501 if (!strncmp(iolog_ver2, buffer, strlen(iolog_ver2)))
502 ret = read_iolog2(td, f);
503 else {
504 log_err("fio: iolog version 1 is no longer supported\n");
505 ret = 1;
506 }
507
508 fclose(f);
509 return ret;
510}
511
512/*
513 * Set up a log for storing io patterns.
514 */
515static int init_iolog_write(struct thread_data *td)
516{
517 struct fio_file *ff;
518 FILE *f;
519 unsigned int i;
520
521 f = fopen(td->o.write_iolog_file, "a");
522 if (!f) {
523 perror("fopen write iolog");
524 return 1;
525 }
526
527 /*
528 * That's it for writing, setup a log buffer and we're done.
529 */
530 td->iolog_f = f;
531 td->iolog_buf = malloc(8192);
532 setvbuf(f, td->iolog_buf, _IOFBF, 8192);
533
534 /*
535 * write our version line
536 */
537 if (fprintf(f, "%s\n", iolog_ver2) < 0) {
538 perror("iolog init\n");
539 return 1;
540 }
541
542 /*
543 * add all known files
544 */
545 for_each_file(td, ff, i)
546 log_file(td, ff, FIO_LOG_ADD_FILE);
547
548 return 0;
549}
550
551int init_iolog(struct thread_data *td)
552{
553 int ret = 0;
554
555 if (td->o.read_iolog_file) {
d95b34a6
JA
556 int need_swap;
557
ac9b9101
JA
558 /*
559 * Check if it's a blktrace file and load that if possible.
560 * Otherwise assume it's a normal log file and load that.
561 */
d95b34a6
JA
562 if (is_blktrace(td->o.read_iolog_file, &need_swap))
563 ret = load_blktrace(td, td->o.read_iolog_file, need_swap);
ac9b9101
JA
564 else
565 ret = init_iolog_read(td);
566 } else if (td->o.write_iolog_file)
567 ret = init_iolog_write(td);
568
f01b34ae
JA
569 if (ret)
570 td_verror(td, EINVAL, "failed initializing iolog");
571
ac9b9101
JA
572 return ret;
573}
574
aee2ab67
JA
575void setup_log(struct io_log **log, struct log_params *p,
576 const char *filename)
ac9b9101 577{
e75cc8f3 578 struct io_log *l;
65a4d15c
KC
579 int i;
580 struct io_u_plat_entry *entry;
581 struct flist_head *list;
ac9b9101 582
7e419452
JA
583 l = scalloc(1, sizeof(*l));
584 INIT_FLIST_HEAD(&l->io_logs);
aee2ab67
JA
585 l->log_type = p->log_type;
586 l->log_offset = p->log_offset;
587 l->log_gz = p->log_gz;
b26317c9 588 l->log_gz_store = p->log_gz_store;
aee2ab67 589 l->avg_msec = p->avg_msec;
1e613c9c
KC
590 l->hist_msec = p->hist_msec;
591 l->hist_coarseness = p->hist_coarseness;
cb7e0ace 592 l->filename = strdup(filename);
aee2ab67
JA
593 l->td = p->td;
594
65a4d15c
KC
595 /* Initialize histogram lists for each r/w direction,
596 * with initial io_u_plat of all zeros:
597 */
598 for (i = 0; i < DDIR_RWDIR_CNT; i++) {
d730bc58 599 list = &l->hist_window[i].list;
65a4d15c
KC
600 INIT_FLIST_HEAD(list);
601 entry = calloc(1, sizeof(struct io_u_plat_entry));
602 flist_add(&entry->list, list);
603 }
604
1fed2080
JA
605 if (l->td && l->td->o.io_submit_mode != IO_MODE_OFFLOAD) {
606 struct io_logs *p;
607
608 p = calloc(1, sizeof(*l->pending));
a9afa45a 609 p->max_samples = DEF_LOG_ENTRIES;
1fed2080
JA
610 p->log = calloc(p->max_samples, log_entry_sz(l));
611 l->pending = p;
612 }
613
b26317c9 614 if (l->log_offset)
49e98daa 615 l->log_ddir_mask = LOG_OFFSET_SAMPLE_BIT;
b26317c9 616
aee2ab67
JA
617 INIT_FLIST_HEAD(&l->chunk_list);
618
619 if (l->log_gz && !p->td)
620 l->log_gz = 0;
19417eda 621 else if (l->log_gz || l->log_gz_store) {
34febb23 622 mutex_init_pshared(&l->chunk_lock);
aee2ab67
JA
623 p->td->flags |= TD_F_COMPRESS_LOG;
624 }
625
ac9b9101
JA
626 *log = l;
627}
628
2e802282
JA
629#ifdef CONFIG_SETVBUF
630static void *set_file_buffer(FILE *f)
631{
632 size_t size = 1048576;
633 void *buf;
634
635 buf = malloc(size);
636 setvbuf(f, buf, _IOFBF, size);
637 return buf;
638}
639
640static void clear_file_buffer(void *buf)
641{
642 free(buf);
643}
644#else
645static void *set_file_buffer(FILE *f)
646{
647 return NULL;
648}
649
650static void clear_file_buffer(void *buf)
651{
652}
653#endif
654
518dac09 655void free_log(struct io_log *log)
cb7e0ace 656{
7e419452
JA
657 while (!flist_empty(&log->io_logs)) {
658 struct io_logs *cur_log;
659
660 cur_log = flist_first_entry(&log->io_logs, struct io_logs, list);
661 flist_del_init(&cur_log->list);
662 free(cur_log->log);
2b7625e2 663 sfree(cur_log);
7e419452
JA
664 }
665
1fed2080
JA
666 if (log->pending) {
667 free(log->pending->log);
668 free(log->pending);
669 log->pending = NULL;
670 }
671
672 free(log->pending);
cb7e0ace 673 free(log->filename);
a47591e4 674 sfree(log);
cb7e0ace
JA
675}
676
65a4d15c
KC
677static inline unsigned long hist_sum(int j, int stride, unsigned int *io_u_plat,
678 unsigned int *io_u_plat_last)
548df930 679{
f2c972cc
JA
680 unsigned long sum;
681 int k;
548df930
JA
682
683 for (k = sum = 0; k < stride; k++)
65a4d15c 684 sum += io_u_plat[j + k] - io_u_plat_last[j + k];
548df930 685
1e613c9c
KC
686 return sum;
687}
688
a89ba4b1
JA
689static void flush_hist_samples(FILE *f, int hist_coarseness, void *samples,
690 uint64_t sample_size)
1e613c9c
KC
691{
692 struct io_sample *s;
693 int log_offset;
694 uint64_t i, j, nr_samples;
65a4d15c 695 struct io_u_plat_entry *entry, *entry_before;
1e613c9c 696 unsigned int *io_u_plat;
65a4d15c 697 unsigned int *io_u_plat_before;
1e613c9c
KC
698
699 int stride = 1 << hist_coarseness;
700
701 if (!sample_size)
702 return;
703
704 s = __get_sample(samples, 0, 0);
705 log_offset = (s->__ddir & LOG_OFFSET_SAMPLE_BIT) != 0;
706
707 nr_samples = sample_size / __log_entry_sz(log_offset);
708
709 for (i = 0; i < nr_samples; i++) {
710 s = __get_sample(samples, log_offset, i);
d730bc58 711
65a4d15c
KC
712 entry = (struct io_u_plat_entry *) s->val;
713 io_u_plat = entry->io_u_plat;
d730bc58 714
65a4d15c
KC
715 entry_before = flist_first_entry(&entry->list, struct io_u_plat_entry, list);
716 io_u_plat_before = entry_before->io_u_plat;
d730bc58
JA
717
718 fprintf(f, "%lu, %u, %u, ", (unsigned long) s->time,
719 io_sample_ddir(s), s->bs);
1e613c9c 720 for (j = 0; j < FIO_IO_U_PLAT_NR - stride; j += stride) {
d730bc58
JA
721 fprintf(f, "%lu, ", hist_sum(j, stride, io_u_plat,
722 io_u_plat_before));
1e613c9c 723 }
d730bc58 724 fprintf(f, "%lu\n", (unsigned long)
65a4d15c 725 hist_sum(FIO_IO_U_PLAT_NR - stride, stride, io_u_plat,
d730bc58
JA
726 io_u_plat_before));
727
65a4d15c
KC
728 flist_del(&entry_before->list);
729 free(entry_before);
1e613c9c
KC
730 }
731}
732
bead01d7 733void flush_samples(FILE *f, void *samples, uint64_t sample_size)
ac9b9101 734{
b26317c9
JA
735 struct io_sample *s;
736 int log_offset;
737 uint64_t i, nr_samples;
738
739 if (!sample_size)
740 return;
741
742 s = __get_sample(samples, 0, 0);
49e98daa 743 log_offset = (s->__ddir & LOG_OFFSET_SAMPLE_BIT) != 0;
b26317c9
JA
744
745 nr_samples = sample_size / __log_entry_sz(log_offset);
ac9b9101 746
aee2ab67 747 for (i = 0; i < nr_samples; i++) {
b26317c9 748 s = __get_sample(samples, log_offset, i);
ac9b9101 749
aee2ab67 750 if (!log_offset) {
ae588852
JA
751 fprintf(f, "%lu, %lu, %u, %u\n",
752 (unsigned long) s->time,
753 (unsigned long) s->val,
b26317c9 754 io_sample_ddir(s), s->bs);
ae588852
JA
755 } else {
756 struct io_sample_offset *so = (void *) s;
757
758 fprintf(f, "%lu, %lu, %u, %u, %llu\n",
759 (unsigned long) s->time,
760 (unsigned long) s->val,
b26317c9 761 io_sample_ddir(s), s->bs,
ae588852
JA
762 (unsigned long long) so->offset);
763 }
ac9b9101 764 }
aee2ab67
JA
765}
766
767#ifdef CONFIG_ZLIB
97eabb2a
JA
768
769struct iolog_flush_data {
155f2f02 770 struct workqueue_work work;
97eabb2a
JA
771 struct io_log *log;
772 void *samples;
7e419452
JA
773 uint32_t nr_samples;
774 bool free;
97eabb2a
JA
775};
776
97eabb2a
JA
777#define GZ_CHUNK 131072
778
779static struct iolog_compress *get_new_chunk(unsigned int seq)
780{
781 struct iolog_compress *c;
782
783 c = malloc(sizeof(*c));
784 INIT_FLIST_HEAD(&c->list);
785 c->buf = malloc(GZ_CHUNK);
786 c->len = 0;
787 c->seq = seq;
97eabb2a
JA
788 return c;
789}
790
791static void free_chunk(struct iolog_compress *ic)
792{
c07826cd
JA
793 free(ic->buf);
794 free(ic);
97eabb2a
JA
795}
796
b26317c9 797static int z_stream_init(z_stream *stream, int gz_hdr)
aee2ab67 798{
b26317c9
JA
799 int wbits = 15;
800
acb2a69b 801 memset(stream, 0, sizeof(*stream));
aee2ab67
JA
802 stream->zalloc = Z_NULL;
803 stream->zfree = Z_NULL;
804 stream->opaque = Z_NULL;
805 stream->next_in = Z_NULL;
806
1a8e7458
JA
807 /*
808 * zlib magic - add 32 for auto-detection of gz header or not,
809 * if we decide to store files in a gzip friendly format.
810 */
b26317c9
JA
811 if (gz_hdr)
812 wbits += 32;
813
814 if (inflateInit2(stream, wbits) != Z_OK)
aee2ab67
JA
815 return 1;
816
817 return 0;
818}
819
1a8e7458 820struct inflate_chunk_iter {
aee2ab67 821 unsigned int seq;
dad95da1 822 int err;
aee2ab67
JA
823 void *buf;
824 size_t buf_size;
825 size_t buf_used;
826 size_t chunk_sz;
827};
828
b26317c9 829static void finish_chunk(z_stream *stream, FILE *f,
1a8e7458 830 struct inflate_chunk_iter *iter)
aee2ab67 831{
aee2ab67
JA
832 int ret;
833
834 ret = inflateEnd(stream);
835 if (ret != Z_OK)
50f940f1
JA
836 log_err("fio: failed to end log inflation seq %d (%d)\n",
837 iter->seq, ret);
aee2ab67 838
b26317c9 839 flush_samples(f, iter->buf, iter->buf_used);
aee2ab67
JA
840 free(iter->buf);
841 iter->buf = NULL;
842 iter->buf_size = iter->buf_used = 0;
843}
844
1a8e7458
JA
845/*
846 * Iterative chunk inflation. Handles cases where we cross into a new
847 * sequence, doing flush finish of previous chunk if needed.
848 */
849static size_t inflate_chunk(struct iolog_compress *ic, int gz_hdr, FILE *f,
850 z_stream *stream, struct inflate_chunk_iter *iter)
aee2ab67 851{
0c56718d
JA
852 size_t ret;
853
0f989d2e 854 dprint(FD_COMPRESS, "inflate chunk size=%lu, seq=%u\n",
0c56718d
JA
855 (unsigned long) ic->len, ic->seq);
856
aee2ab67
JA
857 if (ic->seq != iter->seq) {
858 if (iter->seq)
b26317c9 859 finish_chunk(stream, f, iter);
aee2ab67 860
b26317c9 861 z_stream_init(stream, gz_hdr);
aee2ab67
JA
862 iter->seq = ic->seq;
863 }
864
865 stream->avail_in = ic->len;
866 stream->next_in = ic->buf;
867
868 if (!iter->buf_size) {
869 iter->buf_size = iter->chunk_sz;
870 iter->buf = malloc(iter->buf_size);
871 }
872
873 while (stream->avail_in) {
b26317c9 874 size_t this_out = iter->buf_size - iter->buf_used;
aee2ab67
JA
875 int err;
876
b26317c9 877 stream->avail_out = this_out;
aee2ab67
JA
878 stream->next_out = iter->buf + iter->buf_used;
879
880 err = inflate(stream, Z_NO_FLUSH);
881 if (err < 0) {
882 log_err("fio: failed inflating log: %d\n", err);
dad95da1 883 iter->err = err;
aee2ab67
JA
884 break;
885 }
886
b26317c9
JA
887 iter->buf_used += this_out - stream->avail_out;
888
889 if (!stream->avail_out) {
890 iter->buf_size += iter->chunk_sz;
891 iter->buf = realloc(iter->buf, iter->buf_size);
892 continue;
893 }
894
895 if (err == Z_STREAM_END)
896 break;
aee2ab67
JA
897 }
898
0c56718d
JA
899 ret = (void *) stream->next_in - ic->buf;
900
d0d0cf0a 901 dprint(FD_COMPRESS, "inflated to size=%lu\n", (unsigned long) iter->buf_size);
0c56718d
JA
902
903 return ret;
aee2ab67
JA
904}
905
1a8e7458
JA
906/*
907 * Inflate stored compressed chunks, or write them directly to the log
908 * file if so instructed.
909 */
dad95da1 910static int inflate_gz_chunks(struct io_log *log, FILE *f)
aee2ab67 911{
1a8e7458 912 struct inflate_chunk_iter iter = { .chunk_sz = log->log_gz, };
aee2ab67
JA
913 z_stream stream;
914
915 while (!flist_empty(&log->chunk_list)) {
916 struct iolog_compress *ic;
917
9342d5f8 918 ic = flist_first_entry(&log->chunk_list, struct iolog_compress, list);
aee2ab67 919 flist_del(&ic->list);
b26317c9 920
1a8e7458
JA
921 if (log->log_gz_store) {
922 size_t ret;
923
0c56718d
JA
924 dprint(FD_COMPRESS, "log write chunk size=%lu, "
925 "seq=%u\n", (unsigned long) ic->len, ic->seq);
926
1a8e7458 927 ret = fwrite(ic->buf, ic->len, 1, f);
dad95da1
JA
928 if (ret != 1 || ferror(f)) {
929 iter.err = errno;
1a8e7458 930 log_err("fio: error writing compressed log\n");
dad95da1 931 }
1a8e7458
JA
932 } else
933 inflate_chunk(ic, log->log_gz_store, f, &stream, &iter);
c07826cd
JA
934
935 free_chunk(ic);
aee2ab67
JA
936 }
937
938 if (iter.seq) {
b26317c9 939 finish_chunk(&stream, f, &iter);
aee2ab67
JA
940 free(iter.buf);
941 }
dad95da1
JA
942
943 return iter.err;
aee2ab67
JA
944}
945
1a8e7458
JA
946/*
947 * Open compressed log file and decompress the stored chunks and
948 * write them to stdout. The chunks are stored sequentially in the
949 * file, so we iterate over them and do them one-by-one.
950 */
b26317c9
JA
951int iolog_file_inflate(const char *file)
952{
1a8e7458 953 struct inflate_chunk_iter iter = { .chunk_sz = 64 * 1024 * 1024, };
b26317c9
JA
954 struct iolog_compress ic;
955 z_stream stream;
956 struct stat sb;
fd771971 957 ssize_t ret;
f302710c
JA
958 size_t total;
959 void *buf;
b26317c9
JA
960 FILE *f;
961
b26317c9
JA
962 f = fopen(file, "r");
963 if (!f) {
964 perror("fopen");
965 return 1;
966 }
967
fd771971
JA
968 if (stat(file, &sb) < 0) {
969 fclose(f);
970 perror("stat");
971 return 1;
972 }
973
f302710c 974 ic.buf = buf = malloc(sb.st_size);
b26317c9 975 ic.len = sb.st_size;
b26317c9
JA
976 ic.seq = 1;
977
978 ret = fread(ic.buf, ic.len, 1, f);
979 if (ret < 0) {
980 perror("fread");
981 fclose(f);
bb1116fe 982 free(buf);
b26317c9
JA
983 return 1;
984 } else if (ret != 1) {
985 log_err("fio: short read on reading log\n");
986 fclose(f);
bb1116fe 987 free(buf);
b26317c9
JA
988 return 1;
989 }
990
991 fclose(f);
992
1a8e7458
JA
993 /*
994 * Each chunk will return Z_STREAM_END. We don't know how many
995 * chunks are in the file, so we just keep looping and incrementing
996 * the sequence number until we have consumed the whole compressed
997 * file.
998 */
f302710c
JA
999 total = ic.len;
1000 do {
8a1db9a1 1001 size_t iret;
f302710c 1002
8a1db9a1
JA
1003 iret = inflate_chunk(&ic, 1, stdout, &stream, &iter);
1004 total -= iret;
f302710c
JA
1005 if (!total)
1006 break;
dad95da1
JA
1007 if (iter.err)
1008 break;
f302710c
JA
1009
1010 ic.seq++;
8a1db9a1
JA
1011 ic.len -= iret;
1012 ic.buf += iret;
f302710c 1013 } while (1);
b26317c9
JA
1014
1015 if (iter.seq) {
1016 finish_chunk(&stream, stdout, &iter);
1017 free(iter.buf);
1018 }
1019
f302710c 1020 free(buf);
dad95da1 1021 return iter.err;
b26317c9
JA
1022}
1023
aee2ab67
JA
1024#else
1025
dad95da1 1026static int inflate_gz_chunks(struct io_log *log, FILE *f)
aee2ab67 1027{
b7364e21 1028 return 0;
aee2ab67
JA
1029}
1030
a68c66b2
JA
1031int iolog_file_inflate(const char *file)
1032{
1033 log_err("fio: log inflation not possible without zlib\n");
1034 return 1;
1035}
1036
aee2ab67
JA
1037#endif
1038
60a25727 1039void flush_log(struct io_log *log, bool do_append)
aee2ab67
JA
1040{
1041 void *buf;
1042 FILE *f;
1043
3a5db920
JA
1044 if (!do_append)
1045 f = fopen(log->filename, "w");
1046 else
1047 f = fopen(log->filename, "a");
aee2ab67
JA
1048 if (!f) {
1049 perror("fopen log");
1050 return;
1051 }
1052
1053 buf = set_file_buffer(f);
1054
1a8e7458 1055 inflate_gz_chunks(log, f);
aee2ab67 1056
7e419452
JA
1057 while (!flist_empty(&log->io_logs)) {
1058 struct io_logs *cur_log;
1059
1060 cur_log = flist_first_entry(&log->io_logs, struct io_logs, list);
1061 flist_del_init(&cur_log->list);
1e613c9c
KC
1062
1063 if (log == log->td->clat_hist_log)
1064 flush_hist_samples(f, log->hist_coarseness, cur_log->log,
1065 cur_log->nr_samples * log_entry_sz(log));
1066 else
1067 flush_samples(f, cur_log->log, cur_log->nr_samples * log_entry_sz(log));
1068
90d2d53f 1069 sfree(cur_log);
7e419452 1070 }
ac9b9101
JA
1071
1072 fclose(f);
2e802282 1073 clear_file_buffer(buf);
ac9b9101
JA
1074}
1075
cb7e0ace 1076static int finish_log(struct thread_data *td, struct io_log *log, int trylock)
ac9b9101 1077{
155f2f02 1078 if (td->flags & TD_F_COMPRESS_LOG)
7e419452 1079 iolog_flush(log);
aee2ab67 1080
243bfe19 1081 if (trylock) {
cb7e0ace 1082 if (fio_trylock_file(log->filename))
243bfe19
JA
1083 return 1;
1084 } else
cb7e0ace 1085 fio_lock_file(log->filename);
243bfe19 1086
0cba0f91 1087 if (td->client_type == FIO_CLIENT_TYPE_GUI || is_backend)
cb7e0ace 1088 fio_send_iolog(td, log, log->filename);
aee2ab67 1089 else
3a5db920 1090 flush_log(log, !td->o.per_job_logs);
243bfe19 1091
cb7e0ace 1092 fio_unlock_file(log->filename);
518dac09 1093 free_log(log);
243bfe19 1094 return 0;
ac9b9101
JA
1095}
1096
0cba0f91
JA
1097size_t log_chunk_sizes(struct io_log *log)
1098{
1099 struct flist_head *entry;
1100 size_t ret;
1101
1102 if (flist_empty(&log->chunk_list))
1103 return 0;
1104
1105 ret = 0;
1106 pthread_mutex_lock(&log->chunk_lock);
1107 flist_for_each(entry, &log->chunk_list) {
1108 struct iolog_compress *c;
1109
1110 c = flist_entry(entry, struct iolog_compress, list);
1111 ret += c->len;
1112 }
1113 pthread_mutex_unlock(&log->chunk_lock);
1114 return ret;
1115}
1116
aee2ab67
JA
1117#ifdef CONFIG_ZLIB
1118
78e93aa6 1119static int gz_work(struct iolog_flush_data *data)
c143980a 1120{
040238ec 1121 struct iolog_compress *c = NULL;
aee2ab67
JA
1122 struct flist_head list;
1123 unsigned int seq;
1124 z_stream stream;
1125 size_t total = 0;
d73ac887 1126 int ret;
aee2ab67
JA
1127
1128 INIT_FLIST_HEAD(&list);
1129
7e419452 1130 memset(&stream, 0, sizeof(stream));
aee2ab67
JA
1131 stream.zalloc = Z_NULL;
1132 stream.zfree = Z_NULL;
1133 stream.opaque = Z_NULL;
1134
b26317c9 1135 ret = deflateInit(&stream, Z_DEFAULT_COMPRESSION);
b26317c9 1136 if (ret != Z_OK) {
aee2ab67 1137 log_err("fio: failed to init gz stream\n");
152ea035 1138 goto err;
aee2ab67
JA
1139 }
1140
1141 seq = ++data->log->chunk_seq;
b26317c9 1142
aee2ab67
JA
1143 stream.next_in = (void *) data->samples;
1144 stream.avail_in = data->nr_samples * log_entry_sz(data->log);
1145
d0d0cf0a
JA
1146 dprint(FD_COMPRESS, "deflate input size=%lu, seq=%u, log=%s\n",
1147 (unsigned long) stream.avail_in, seq,
1148 data->log->filename);
aee2ab67 1149 do {
040238ec
JA
1150 if (c)
1151 dprint(FD_COMPRESS, "seq=%d, chunk=%lu\n", seq, c->len);
aee2ab67
JA
1152 c = get_new_chunk(seq);
1153 stream.avail_out = GZ_CHUNK;
1154 stream.next_out = c->buf;
1155 ret = deflate(&stream, Z_NO_FLUSH);
1156 if (ret < 0) {
1157 log_err("fio: deflate log (%d)\n", ret);
dad95da1
JA
1158 free_chunk(c);
1159 goto err;
aee2ab67
JA
1160 }
1161
1162 c->len = GZ_CHUNK - stream.avail_out;
1163 flist_add_tail(&c->list, &list);
1164 total += c->len;
1165 } while (stream.avail_in);
1166
1167 stream.next_out = c->buf + c->len;
1168 stream.avail_out = GZ_CHUNK - c->len;
1169
1170 ret = deflate(&stream, Z_FINISH);
6fa3ad51
JA
1171 if (ret < 0) {
1172 /*
1173 * Z_BUF_ERROR is special, it just means we need more
1174 * output space. We'll handle that below. Treat any other
1175 * error as fatal.
1176 */
1177 if (ret != Z_BUF_ERROR) {
1178 log_err("fio: deflate log (%d)\n", ret);
1179 flist_del(&c->list);
1180 free_chunk(c);
1181 goto err;
1182 }
1183 }
1184
1185 total -= c->len;
1186 c->len = GZ_CHUNK - stream.avail_out;
1187 total += c->len;
1188 dprint(FD_COMPRESS, "seq=%d, chunk=%lu\n", seq, c->len);
040238ec 1189
6fa3ad51 1190 if (ret != Z_STREAM_END) {
aee2ab67
JA
1191 do {
1192 c = get_new_chunk(seq);
1193 stream.avail_out = GZ_CHUNK;
1194 stream.next_out = c->buf;
1195 ret = deflate(&stream, Z_FINISH);
1196 c->len = GZ_CHUNK - stream.avail_out;
0c56718d 1197 total += c->len;
aee2ab67 1198 flist_add_tail(&c->list, &list);
d0d0cf0a 1199 dprint(FD_COMPRESS, "seq=%d, chunk=%lu\n", seq, c->len);
aee2ab67
JA
1200 } while (ret != Z_STREAM_END);
1201 }
1202
0c56718d
JA
1203 dprint(FD_COMPRESS, "deflated to size=%lu\n", (unsigned long) total);
1204
aee2ab67
JA
1205 ret = deflateEnd(&stream);
1206 if (ret != Z_OK)
1207 log_err("fio: deflateEnd %d\n", ret);
1208
1209 free(data->samples);
1210
1211 if (!flist_empty(&list)) {
1212 pthread_mutex_lock(&data->log->chunk_lock);
1213 flist_splice_tail(&list, &data->log->chunk_list);
1214 pthread_mutex_unlock(&data->log->chunk_lock);
1215 }
1216
dad95da1
JA
1217 ret = 0;
1218done:
7e419452
JA
1219 if (data->free)
1220 free(data);
dad95da1
JA
1221 return ret;
1222err:
1223 while (!flist_empty(&list)) {
1224 c = flist_first_entry(list.next, struct iolog_compress, list);
1225 flist_del(&c->list);
1226 free_chunk(c);
1227 }
1228 ret = 1;
1229 goto done;
aee2ab67
JA
1230}
1231
78e93aa6
JA
1232/*
1233 * Invoked from our compress helper thread, when logging would have exceeded
1234 * the specified memory limitation. Compresses the previously stored
1235 * entries.
1236 */
1237static int gz_work_async(struct submit_worker *sw, struct workqueue_work *work)
1238{
1239 return gz_work(container_of(work, struct iolog_flush_data, work));
1240}
1241
c08f9fe2
JA
1242static int gz_init_worker(struct submit_worker *sw)
1243{
1244 struct thread_data *td = sw->wq->td;
1245
1246 if (!fio_option_is_set(&td->o, log_gz_cpumask))
1247 return 0;
1248
1249 if (fio_setaffinity(gettid(), td->o.log_gz_cpumask) == -1) {
1250 log_err("gz: failed to set CPU affinity\n");
1251 return 1;
1252 }
1253
1254 return 0;
1255}
1256
155f2f02 1257static struct workqueue_ops log_compress_wq_ops = {
78e93aa6 1258 .fn = gz_work_async,
c08f9fe2 1259 .init_worker_fn = gz_init_worker,
24660963 1260 .nice = 1,
155f2f02
JA
1261};
1262
24660963 1263int iolog_compress_init(struct thread_data *td, struct sk_out *sk_out)
155f2f02
JA
1264{
1265 if (!(td->flags & TD_F_COMPRESS_LOG))
1266 return 0;
1267
24660963 1268 workqueue_init(td, &td->log_compress_wq, &log_compress_wq_ops, 1, sk_out);
155f2f02
JA
1269 return 0;
1270}
1271
1272void iolog_compress_exit(struct thread_data *td)
1273{
1274 if (!(td->flags & TD_F_COMPRESS_LOG))
1275 return;
1276
1277 workqueue_exit(&td->log_compress_wq);
1278}
1279
1a8e7458 1280/*
949ae6dc
JA
1281 * Queue work item to compress the existing log entries. We reset the
1282 * current log to a small size, and reference the existing log in the
1283 * data that we queue for compression. Once compression has been done,
7e419452
JA
1284 * this old log is freed. If called with finish == true, will not return
1285 * until the log compression has completed, and will flush all previous
1286 * logs too
1a8e7458 1287 */
7e419452 1288static int iolog_flush(struct io_log *log)
aee2ab67 1289{
aee2ab67 1290 struct iolog_flush_data *data;
aee2ab67
JA
1291
1292 data = malloc(sizeof(*data));
1293 if (!data)
1294 return 1;
1295
1296 data->log = log;
7e419452 1297 data->free = false;
aee2ab67 1298
7e419452
JA
1299 while (!flist_empty(&log->io_logs)) {
1300 struct io_logs *cur_log;
949ae6dc 1301
7e419452
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1302 cur_log = flist_first_entry(&log->io_logs, struct io_logs, list);
1303 flist_del_init(&cur_log->list);
1304
1305 data->samples = cur_log->log;
1306 data->nr_samples = cur_log->nr_samples;
1307
2b7625e2 1308 sfree(cur_log);
aee2ab67 1309
78e93aa6 1310 gz_work(data);
7e419452 1311 }
aee2ab67 1312
7e419452 1313 free(data);
aee2ab67
JA
1314 return 0;
1315}
1316
7e419452
JA
1317int iolog_cur_flush(struct io_log *log, struct io_logs *cur_log)
1318{
1319 struct iolog_flush_data *data;
1320
7e419452
JA
1321 data = malloc(sizeof(*data));
1322 if (!data)
1323 return 1;
1324
1325 data->log = log;
1326
1327 data->samples = cur_log->log;
1328 data->nr_samples = cur_log->nr_samples;
1329 data->free = true;
1330
1331 cur_log->nr_samples = cur_log->max_samples = 0;
1332 cur_log->log = NULL;
1333
1334 workqueue_enqueue(&log->td->log_compress_wq, &data->work);
1335 return 0;
1336}
aee2ab67
JA
1337#else
1338
7e419452
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1339static int iolog_flush(struct io_log *log)
1340{
1341 return 1;
1342}
1343
1344int iolog_cur_flush(struct io_log *log, struct io_logs *cur_log)
aee2ab67
JA
1345{
1346 return 1;
1347}
1348
24660963 1349int iolog_compress_init(struct thread_data *td, struct sk_out *sk_out)
52618a2a
JA
1350{
1351 return 0;
1352}
1353
1354void iolog_compress_exit(struct thread_data *td)
1355{
1356}
1357
aee2ab67
JA
1358#endif
1359
7e419452
JA
1360struct io_logs *iolog_cur_log(struct io_log *log)
1361{
1362 if (flist_empty(&log->io_logs))
1363 return NULL;
1364
1365 return flist_last_entry(&log->io_logs, struct io_logs, list);
1366}
1367
1368uint64_t iolog_nr_samples(struct io_log *iolog)
1369{
1370 struct flist_head *entry;
1371 uint64_t ret = 0;
1372
1373 flist_for_each(entry, &iolog->io_logs) {
1374 struct io_logs *cur_log;
1375
1376 cur_log = flist_entry(entry, struct io_logs, list);
1377 ret += cur_log->nr_samples;
1378 }
1379
1380 return ret;
1381}
1382
1c725e70 1383static int __write_log(struct thread_data *td, struct io_log *log, int try)
905e3d4f 1384{
1c725e70
JA
1385 if (log)
1386 return finish_log(td, log, try);
905e3d4f 1387
1c725e70
JA
1388 return 0;
1389}
905e3d4f 1390
a47591e4 1391static int write_iops_log(struct thread_data *td, int try, bool unit_log)
1c725e70 1392{
a47591e4
JA
1393 int ret;
1394
1395 if (per_unit_log(td->iops_log) != unit_log)
1396 return 0;
1397
1398 ret = __write_log(td, td->iops_log, try);
1399 if (!ret)
1400 td->iops_log = NULL;
1401
1402 return ret;
905e3d4f
JA
1403}
1404
a47591e4 1405static int write_slat_log(struct thread_data *td, int try, bool unit_log)
905e3d4f 1406{
a47591e4
JA
1407 int ret;
1408
1409 if (!unit_log)
1410 return 0;
1411
1412 ret = __write_log(td, td->slat_log, try);
1413 if (!ret)
1414 td->slat_log = NULL;
1415
1416 return ret;
905e3d4f
JA
1417}
1418
a47591e4 1419static int write_clat_log(struct thread_data *td, int try, bool unit_log)
905e3d4f 1420{
a47591e4
JA
1421 int ret;
1422
1423 if (!unit_log)
1424 return 0;
1425
1426 ret = __write_log(td, td->clat_log, try);
1427 if (!ret)
1428 td->clat_log = NULL;
1429
1430 return ret;
905e3d4f
JA
1431}
1432
1e613c9c
KC
1433static int write_clat_hist_log(struct thread_data *td, int try, bool unit_log)
1434{
1435 int ret;
1436
1437 if (!unit_log)
1438 return 0;
1439
1440 ret = __write_log(td, td->clat_hist_log, try);
1441 if (!ret)
1442 td->clat_hist_log = NULL;
1443
1444 return ret;
1445}
1446
a47591e4 1447static int write_lat_log(struct thread_data *td, int try, bool unit_log)
905e3d4f 1448{
a47591e4
JA
1449 int ret;
1450
1451 if (!unit_log)
1452 return 0;
1453
1454 ret = __write_log(td, td->lat_log, try);
1455 if (!ret)
1456 td->lat_log = NULL;
1457
1458 return ret;
905e3d4f
JA
1459}
1460
a47591e4 1461static int write_bandw_log(struct thread_data *td, int try, bool unit_log)
905e3d4f 1462{
a47591e4
JA
1463 int ret;
1464
1465 if (per_unit_log(td->bw_log) != unit_log)
1466 return 0;
1467
1468 ret = __write_log(td, td->bw_log, try);
1469 if (!ret)
1470 td->bw_log = NULL;
1471
1472 return ret;
905e3d4f
JA
1473}
1474
1475enum {
1476 BW_LOG_MASK = 1,
1477 LAT_LOG_MASK = 2,
1478 SLAT_LOG_MASK = 4,
1479 CLAT_LOG_MASK = 8,
1480 IOPS_LOG_MASK = 16,
1e613c9c 1481 CLAT_HIST_LOG_MASK = 32,
905e3d4f 1482
1e613c9c 1483 ALL_LOG_NR = 6,
905e3d4f
JA
1484};
1485
1486struct log_type {
1487 unsigned int mask;
a47591e4 1488 int (*fn)(struct thread_data *, int, bool);
905e3d4f
JA
1489};
1490
1491static struct log_type log_types[] = {
1492 {
1493 .mask = BW_LOG_MASK,
1494 .fn = write_bandw_log,
1495 },
1496 {
1497 .mask = LAT_LOG_MASK,
1498 .fn = write_lat_log,
1499 },
1500 {
1501 .mask = SLAT_LOG_MASK,
1502 .fn = write_slat_log,
1503 },
1504 {
1505 .mask = CLAT_LOG_MASK,
1506 .fn = write_clat_log,
1507 },
1508 {
1509 .mask = IOPS_LOG_MASK,
1510 .fn = write_iops_log,
1511 },
1e613c9c
KC
1512 {
1513 .mask = CLAT_HIST_LOG_MASK,
1514 .fn = write_clat_hist_log,
1515 }
905e3d4f
JA
1516};
1517
a47591e4 1518void td_writeout_logs(struct thread_data *td, bool unit_logs)
905e3d4f 1519{
ea5409f9 1520 unsigned int log_mask = 0;
905e3d4f
JA
1521 unsigned int log_left = ALL_LOG_NR;
1522 int old_state, i;
1523
1524 old_state = td_bump_runstate(td, TD_FINISHING);
1525
a47591e4 1526 finalize_logs(td, unit_logs);
905e3d4f
JA
1527
1528 while (log_left) {
1529 int prev_log_left = log_left;
1530
1531 for (i = 0; i < ALL_LOG_NR && log_left; i++) {
1532 struct log_type *lt = &log_types[i];
1533 int ret;
1534
ea5409f9 1535 if (!(log_mask & lt->mask)) {
a47591e4 1536 ret = lt->fn(td, log_left != 1, unit_logs);
905e3d4f
JA
1537 if (!ret) {
1538 log_left--;
ea5409f9 1539 log_mask |= lt->mask;
905e3d4f
JA
1540 }
1541 }
1542 }
1543
1544 if (prev_log_left == log_left)
1545 usleep(5000);
1546 }
1547
1548 td_restore_runstate(td, old_state);
1549}
a47591e4
JA
1550
1551void fio_writeout_logs(bool unit_logs)
1552{
1553 struct thread_data *td;
1554 int i;
1555
1556 for_each_td(td, i)
1557 td_writeout_logs(td, unit_logs);
1558}