iolog: get rid of ic->nofree
[fio.git] / iolog.c
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CommitLineData
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>
9#include <sys/types.h>
10#include <sys/stat.h>
11#include <unistd.h>
12#ifdef CONFIG_ZLIB
13#include <zlib.h>
14#endif
15
16#include "flist.h"
17#include "fio.h"
18#include "verify.h"
19#include "trim.h"
20#include "filelock.h"
21#include "lib/tp.h"
22
23static const char iolog_ver2[] = "fio version 2 iolog";
24
25void queue_io_piece(struct thread_data *td, struct io_piece *ipo)
26{
27 flist_add_tail(&ipo->list, &td->io_log_list);
28 td->total_io_size += ipo->len;
29}
30
31void log_io_u(struct thread_data *td, struct io_u *io_u)
32{
33 const char *act[] = { "read", "write", "sync", "datasync",
34 "sync_file_range", "wait", "trim" };
35
36 assert(io_u->ddir <= 6);
37
38 if (!td->o.write_iolog_file)
39 return;
40
41 fprintf(td->iolog_f, "%s %s %llu %lu\n", io_u->file->file_name,
42 act[io_u->ddir], io_u->offset,
43 io_u->buflen);
44}
45
46void log_file(struct thread_data *td, struct fio_file *f,
47 enum file_log_act what)
48{
49 const char *act[] = { "add", "open", "close" };
50
51 assert(what < 3);
52
53 if (!td->o.write_iolog_file)
54 return;
55
56
57 /*
58 * this happens on the pre-open/close done before the job starts
59 */
60 if (!td->iolog_f)
61 return;
62
63 fprintf(td->iolog_f, "%s %s\n", f->file_name, act[what]);
64}
65
66static void iolog_delay(struct thread_data *td, unsigned long delay)
67{
68 unsigned long usec = utime_since_now(&td->last_issue);
69 unsigned long this_delay;
70
71 if (delay < usec)
72 return;
73
74 delay -= usec;
75
76 /*
77 * less than 100 usec delay, just regard it as noise
78 */
79 if (delay < 100)
80 return;
81
82 while (delay && !td->terminate) {
83 this_delay = delay;
84 if (this_delay > 500000)
85 this_delay = 500000;
86
87 usec_sleep(td, this_delay);
88 delay -= this_delay;
89 }
90}
91
92static int ipo_special(struct thread_data *td, struct io_piece *ipo)
93{
94 struct fio_file *f;
95 int ret;
96
97 /*
98 * Not a special ipo
99 */
100 if (ipo->ddir != DDIR_INVAL)
101 return 0;
102
103 f = td->files[ipo->fileno];
104
105 switch (ipo->file_action) {
106 case FIO_LOG_OPEN_FILE:
107 ret = td_io_open_file(td, f);
108 if (!ret)
109 break;
110 td_verror(td, ret, "iolog open file");
111 return -1;
112 case FIO_LOG_CLOSE_FILE:
113 td_io_close_file(td, f);
114 break;
115 case FIO_LOG_UNLINK_FILE:
116 unlink(f->file_name);
117 break;
118 default:
119 log_err("fio: bad file action %d\n", ipo->file_action);
120 break;
121 }
122
123 return 1;
124}
125
126int read_iolog_get(struct thread_data *td, struct io_u *io_u)
127{
128 struct io_piece *ipo;
129 unsigned long elapsed;
130
131 while (!flist_empty(&td->io_log_list)) {
132 int ret;
133
134 ipo = flist_entry(td->io_log_list.next, struct io_piece, list);
135 flist_del(&ipo->list);
136 remove_trim_entry(td, ipo);
137
138 ret = ipo_special(td, ipo);
139 if (ret < 0) {
140 free(ipo);
141 break;
142 } else if (ret > 0) {
143 free(ipo);
144 continue;
145 }
146
147 io_u->ddir = ipo->ddir;
148 if (ipo->ddir != DDIR_WAIT) {
149 io_u->offset = ipo->offset;
150 io_u->buflen = ipo->len;
151 io_u->file = td->files[ipo->fileno];
152 get_file(io_u->file);
153 dprint(FD_IO, "iolog: get %llu/%lu/%s\n", io_u->offset,
154 io_u->buflen, io_u->file->file_name);
155 if (ipo->delay)
156 iolog_delay(td, ipo->delay);
157 } else {
158 elapsed = mtime_since_genesis();
159 if (ipo->delay > elapsed)
160 usec_sleep(td, (ipo->delay - elapsed) * 1000);
161 }
162
163 free(ipo);
164
165 if (io_u->ddir != DDIR_WAIT)
166 return 0;
167 }
168
169 td->done = 1;
170 return 1;
171}
172
173void prune_io_piece_log(struct thread_data *td)
174{
175 struct io_piece *ipo;
176 struct rb_node *n;
177
178 while ((n = rb_first(&td->io_hist_tree)) != NULL) {
179 ipo = rb_entry(n, struct io_piece, rb_node);
180 rb_erase(n, &td->io_hist_tree);
181 remove_trim_entry(td, ipo);
182 td->io_hist_len--;
183 free(ipo);
184 }
185
186 while (!flist_empty(&td->io_hist_list)) {
187 ipo = flist_entry(td->io_hist_list.next, struct io_piece, list);
188 flist_del(&ipo->list);
189 remove_trim_entry(td, ipo);
190 td->io_hist_len--;
191 free(ipo);
192 }
193}
194
195/*
196 * log a successful write, so we can unwind the log for verify
197 */
198void log_io_piece(struct thread_data *td, struct io_u *io_u)
199{
200 struct rb_node **p, *parent;
201 struct io_piece *ipo, *__ipo;
202
203 ipo = malloc(sizeof(struct io_piece));
204 init_ipo(ipo);
205 ipo->file = io_u->file;
206 ipo->offset = io_u->offset;
207 ipo->len = io_u->buflen;
208 ipo->numberio = io_u->numberio;
209 ipo->flags = IP_F_IN_FLIGHT;
210
211 io_u->ipo = ipo;
212
213 if (io_u_should_trim(td, io_u)) {
214 flist_add_tail(&ipo->trim_list, &td->trim_list);
215 td->trim_entries++;
216 }
217
218 /*
219 * We don't need to sort the entries, if:
220 *
221 * Sequential writes, or
222 * Random writes that lay out the file as it goes along
223 *
224 * For both these cases, just reading back data in the order we
225 * wrote it out is the fastest.
226 *
227 * One exception is if we don't have a random map AND we are doing
228 * verifies, in that case we need to check for duplicate blocks and
229 * drop the old one, which we rely on the rb insert/lookup for
230 * handling.
231 */
232 if (((!td->o.verifysort) || !td_random(td) || !td->o.overwrite) &&
233 (file_randommap(td, ipo->file) || td->o.verify == VERIFY_NONE)) {
234 INIT_FLIST_HEAD(&ipo->list);
235 flist_add_tail(&ipo->list, &td->io_hist_list);
236 ipo->flags |= IP_F_ONLIST;
237 td->io_hist_len++;
238 return;
239 }
240
241 RB_CLEAR_NODE(&ipo->rb_node);
242
243 /*
244 * Sort the entry into the verification list
245 */
246restart:
247 p = &td->io_hist_tree.rb_node;
248 parent = NULL;
249 while (*p) {
250 parent = *p;
251
252 __ipo = rb_entry(parent, struct io_piece, rb_node);
253 if (ipo->file < __ipo->file)
254 p = &(*p)->rb_left;
255 else if (ipo->file > __ipo->file)
256 p = &(*p)->rb_right;
257 else if (ipo->offset < __ipo->offset)
258 p = &(*p)->rb_left;
259 else if (ipo->offset > __ipo->offset)
260 p = &(*p)->rb_right;
261 else {
262 dprint(FD_IO, "iolog: overlap %llu/%lu, %llu/%lu",
263 __ipo->offset, __ipo->len,
264 ipo->offset, ipo->len);
265 td->io_hist_len--;
266 rb_erase(parent, &td->io_hist_tree);
267 remove_trim_entry(td, __ipo);
268 free(__ipo);
269 goto restart;
270 }
271 }
272
273 rb_link_node(&ipo->rb_node, parent, p);
274 rb_insert_color(&ipo->rb_node, &td->io_hist_tree);
275 ipo->flags |= IP_F_ONRB;
276 td->io_hist_len++;
277}
278
279void unlog_io_piece(struct thread_data *td, struct io_u *io_u)
280{
281 struct io_piece *ipo = io_u->ipo;
282
283 if (!ipo)
284 return;
285
286 if (ipo->flags & IP_F_ONRB)
287 rb_erase(&ipo->rb_node, &td->io_hist_tree);
288 else if (ipo->flags & IP_F_ONLIST)
289 flist_del(&ipo->list);
290
291 free(ipo);
292 io_u->ipo = NULL;
293 td->io_hist_len--;
294}
295
296void trim_io_piece(struct thread_data *td, struct io_u *io_u)
297{
298 struct io_piece *ipo = io_u->ipo;
299
300 if (!ipo)
301 return;
302
303 ipo->len = io_u->xfer_buflen - io_u->resid;
304}
305
306void write_iolog_close(struct thread_data *td)
307{
308 fflush(td->iolog_f);
309 fclose(td->iolog_f);
310 free(td->iolog_buf);
311 td->iolog_f = NULL;
312 td->iolog_buf = NULL;
313}
314
315/*
316 * Read version 2 iolog data. It is enhanced to include per-file logging,
317 * syncs, etc.
318 */
319static int read_iolog2(struct thread_data *td, FILE *f)
320{
321 unsigned long long offset;
322 unsigned int bytes;
323 int reads, writes, waits, fileno = 0, file_action = 0; /* stupid gcc */
324 char *fname, *act;
325 char *str, *p;
326 enum fio_ddir rw;
327
328 free_release_files(td);
329
330 /*
331 * Read in the read iolog and store it, reuse the infrastructure
332 * for doing verifications.
333 */
334 str = malloc(4096);
335 fname = malloc(256+16);
336 act = malloc(256+16);
337
338 reads = writes = waits = 0;
339 while ((p = fgets(str, 4096, f)) != NULL) {
340 struct io_piece *ipo;
341 int r;
342
343 r = sscanf(p, "%256s %256s %llu %u", fname, act, &offset,
344 &bytes);
345 if (r == 4) {
346 /*
347 * Check action first
348 */
349 if (!strcmp(act, "wait"))
350 rw = DDIR_WAIT;
351 else if (!strcmp(act, "read"))
352 rw = DDIR_READ;
353 else if (!strcmp(act, "write"))
354 rw = DDIR_WRITE;
355 else if (!strcmp(act, "sync"))
356 rw = DDIR_SYNC;
357 else if (!strcmp(act, "datasync"))
358 rw = DDIR_DATASYNC;
359 else if (!strcmp(act, "trim"))
360 rw = DDIR_TRIM;
361 else {
362 log_err("fio: bad iolog file action: %s\n",
363 act);
364 continue;
365 }
366 fileno = get_fileno(td, fname);
367 } else if (r == 2) {
368 rw = DDIR_INVAL;
369 if (!strcmp(act, "add")) {
370 fileno = add_file(td, fname, 0, 1);
371 file_action = FIO_LOG_ADD_FILE;
372 continue;
373 } else if (!strcmp(act, "open")) {
374 fileno = get_fileno(td, fname);
375 file_action = FIO_LOG_OPEN_FILE;
376 } else if (!strcmp(act, "close")) {
377 fileno = get_fileno(td, fname);
378 file_action = FIO_LOG_CLOSE_FILE;
379 } else {
380 log_err("fio: bad iolog file action: %s\n",
381 act);
382 continue;
383 }
384 } else {
385 log_err("bad iolog2: %s", p);
386 continue;
387 }
388
389 if (rw == DDIR_READ)
390 reads++;
391 else if (rw == DDIR_WRITE) {
392 /*
393 * Don't add a write for ro mode
394 */
395 if (read_only)
396 continue;
397 writes++;
398 } else if (rw == DDIR_WAIT) {
399 waits++;
400 } else if (rw == DDIR_INVAL) {
401 } else if (!ddir_sync(rw)) {
402 log_err("bad ddir: %d\n", rw);
403 continue;
404 }
405
406 /*
407 * Make note of file
408 */
409 ipo = malloc(sizeof(*ipo));
410 init_ipo(ipo);
411 ipo->ddir = rw;
412 if (rw == DDIR_WAIT) {
413 ipo->delay = offset;
414 } else {
415 ipo->offset = offset;
416 ipo->len = bytes;
417 if (rw != DDIR_INVAL && bytes > td->o.max_bs[rw])
418 td->o.max_bs[rw] = bytes;
419 ipo->fileno = fileno;
420 ipo->file_action = file_action;
421 td->o.size += bytes;
422 }
423
424 queue_io_piece(td, ipo);
425 }
426
427 free(str);
428 free(act);
429 free(fname);
430
431 if (writes && read_only) {
432 log_err("fio: <%s> skips replay of %d writes due to"
433 " read-only\n", td->o.name, writes);
434 writes = 0;
435 }
436
437 if (!reads && !writes && !waits)
438 return 1;
439 else if (reads && !writes)
440 td->o.td_ddir = TD_DDIR_READ;
441 else if (!reads && writes)
442 td->o.td_ddir = TD_DDIR_WRITE;
443 else
444 td->o.td_ddir = TD_DDIR_RW;
445
446 return 0;
447}
448
449/*
450 * open iolog, check version, and call appropriate parser
451 */
452static int init_iolog_read(struct thread_data *td)
453{
454 char buffer[256], *p;
455 FILE *f;
456 int ret;
457
458 f = fopen(td->o.read_iolog_file, "r");
459 if (!f) {
460 perror("fopen read iolog");
461 return 1;
462 }
463
464 p = fgets(buffer, sizeof(buffer), f);
465 if (!p) {
466 td_verror(td, errno, "iolog read");
467 log_err("fio: unable to read iolog\n");
468 fclose(f);
469 return 1;
470 }
471
472 /*
473 * version 2 of the iolog stores a specific string as the
474 * first line, check for that
475 */
476 if (!strncmp(iolog_ver2, buffer, strlen(iolog_ver2)))
477 ret = read_iolog2(td, f);
478 else {
479 log_err("fio: iolog version 1 is no longer supported\n");
480 ret = 1;
481 }
482
483 fclose(f);
484 return ret;
485}
486
487/*
488 * Set up a log for storing io patterns.
489 */
490static int init_iolog_write(struct thread_data *td)
491{
492 struct fio_file *ff;
493 FILE *f;
494 unsigned int i;
495
496 f = fopen(td->o.write_iolog_file, "a");
497 if (!f) {
498 perror("fopen write iolog");
499 return 1;
500 }
501
502 /*
503 * That's it for writing, setup a log buffer and we're done.
504 */
505 td->iolog_f = f;
506 td->iolog_buf = malloc(8192);
507 setvbuf(f, td->iolog_buf, _IOFBF, 8192);
508
509 /*
510 * write our version line
511 */
512 if (fprintf(f, "%s\n", iolog_ver2) < 0) {
513 perror("iolog init\n");
514 return 1;
515 }
516
517 /*
518 * add all known files
519 */
520 for_each_file(td, ff, i)
521 log_file(td, ff, FIO_LOG_ADD_FILE);
522
523 return 0;
524}
525
526int init_iolog(struct thread_data *td)
527{
528 int ret = 0;
529
530 if (td->o.read_iolog_file) {
531 int need_swap;
532
533 /*
534 * Check if it's a blktrace file and load that if possible.
535 * Otherwise assume it's a normal log file and load that.
536 */
537 if (is_blktrace(td->o.read_iolog_file, &need_swap))
538 ret = load_blktrace(td, td->o.read_iolog_file, need_swap);
539 else
540 ret = init_iolog_read(td);
541 } else if (td->o.write_iolog_file)
542 ret = init_iolog_write(td);
543
544 if (ret)
545 td_verror(td, EINVAL, "failed initializing iolog");
546
547 return ret;
548}
549
550void setup_log(struct io_log **log, struct log_params *p,
551 const char *filename)
552{
553 struct io_log *l = malloc(sizeof(*l));
554
555 memset(l, 0, sizeof(*l));
556 l->nr_samples = 0;
557 l->max_samples = 1024;
558 l->log_type = p->log_type;
559 l->log_offset = p->log_offset;
560 l->log_gz = p->log_gz;
561 l->log_gz_store = p->log_gz_store;
562 l->log = malloc(l->max_samples * log_entry_sz(l));
563 l->avg_msec = p->avg_msec;
564 l->filename = strdup(filename);
565 l->td = p->td;
566
567 if (l->log_offset)
568 l->log_ddir_mask = 0x80000000;
569
570 INIT_FLIST_HEAD(&l->chunk_list);
571
572 if (l->log_gz && !p->td)
573 l->log_gz = 0;
574 else if (l->log_gz) {
575 pthread_mutex_init(&l->chunk_lock, NULL);
576 p->td->flags |= TD_F_COMPRESS_LOG;
577 }
578
579 *log = l;
580}
581
582#ifdef CONFIG_SETVBUF
583static void *set_file_buffer(FILE *f)
584{
585 size_t size = 1048576;
586 void *buf;
587
588 buf = malloc(size);
589 setvbuf(f, buf, _IOFBF, size);
590 return buf;
591}
592
593static void clear_file_buffer(void *buf)
594{
595 free(buf);
596}
597#else
598static void *set_file_buffer(FILE *f)
599{
600 return NULL;
601}
602
603static void clear_file_buffer(void *buf)
604{
605}
606#endif
607
608void free_log(struct io_log *log)
609{
610 free(log->log);
611 free(log->filename);
612 free(log);
613}
614
615static void flush_samples(FILE *f, void *samples, uint64_t sample_size)
616{
617 struct io_sample *s;
618 int log_offset;
619 uint64_t i, nr_samples;
620
621 if (!sample_size)
622 return;
623
624 s = __get_sample(samples, 0, 0);
625 if (s->__ddir & 0x80000000)
626 log_offset = 1;
627 else
628 log_offset = 0;
629
630 nr_samples = sample_size / __log_entry_sz(log_offset);
631
632 for (i = 0; i < nr_samples; i++) {
633 s = __get_sample(samples, log_offset, i);
634
635 if (!log_offset) {
636 fprintf(f, "%lu, %lu, %u, %u\n",
637 (unsigned long) s->time,
638 (unsigned long) s->val,
639 io_sample_ddir(s), s->bs);
640 } else {
641 struct io_sample_offset *so = (void *) s;
642
643 fprintf(f, "%lu, %lu, %u, %u, %llu\n",
644 (unsigned long) s->time,
645 (unsigned long) s->val,
646 io_sample_ddir(s), s->bs,
647 (unsigned long long) so->offset);
648 }
649 }
650}
651
652#ifdef CONFIG_ZLIB
653
654struct iolog_flush_data {
655 struct tp_work work;
656 struct io_log *log;
657 void *samples;
658 uint64_t nr_samples;
659};
660
661struct iolog_compress {
662 struct flist_head list;
663 void *buf;
664 size_t len;
665 unsigned int seq;
666};
667
668#define GZ_CHUNK 131072
669
670static struct iolog_compress *get_new_chunk(unsigned int seq)
671{
672 struct iolog_compress *c;
673
674 c = malloc(sizeof(*c));
675 INIT_FLIST_HEAD(&c->list);
676 c->buf = malloc(GZ_CHUNK);
677 c->len = 0;
678 c->seq = seq;
679 return c;
680}
681
682static void free_chunk(struct iolog_compress *ic)
683{
684 free(ic->buf);
685 free(ic);
686}
687
688static int z_stream_init(z_stream *stream, int gz_hdr)
689{
690 int wbits = 15;
691
692 stream->zalloc = Z_NULL;
693 stream->zfree = Z_NULL;
694 stream->opaque = Z_NULL;
695 stream->next_in = Z_NULL;
696
697 if (gz_hdr)
698 wbits += 32;
699
700 if (inflateInit2(stream, wbits) != Z_OK)
701 return 1;
702
703 return 0;
704}
705
706struct flush_chunk_iter {
707 unsigned int seq;
708 void *buf;
709 size_t buf_size;
710 size_t buf_used;
711 size_t chunk_sz;
712};
713
714static void finish_chunk(z_stream *stream, FILE *f,
715 struct flush_chunk_iter *iter)
716{
717 int ret;
718
719 ret = inflateEnd(stream);
720 if (ret != Z_OK)
721 log_err("fio: failed to end log inflation (%d)\n", ret);
722
723 flush_samples(f, iter->buf, iter->buf_used);
724 free(iter->buf);
725 iter->buf = NULL;
726 iter->buf_size = iter->buf_used = 0;
727}
728
729static int flush_chunk(struct iolog_compress *ic, int gz_hdr, FILE *f,
730 z_stream *stream, struct flush_chunk_iter *iter)
731{
732 if (ic->seq != iter->seq) {
733 if (iter->seq)
734 finish_chunk(stream, f, iter);
735
736 z_stream_init(stream, gz_hdr);
737 iter->seq = ic->seq;
738 }
739
740 stream->avail_in = ic->len;
741 stream->next_in = ic->buf;
742
743 if (!iter->buf_size) {
744 iter->buf_size = iter->chunk_sz;
745 iter->buf = malloc(iter->buf_size);
746 }
747
748 while (stream->avail_in) {
749 size_t this_out = iter->buf_size - iter->buf_used;
750 int err;
751
752 stream->avail_out = this_out;
753 stream->next_out = iter->buf + iter->buf_used;
754
755 err = inflate(stream, Z_NO_FLUSH);
756 if (err < 0) {
757 log_err("fio: failed inflating log: %d\n", err);
758 break;
759 }
760
761 iter->buf_used += this_out - stream->avail_out;
762
763 if (!stream->avail_out) {
764 iter->buf_size += iter->chunk_sz;
765 iter->buf = realloc(iter->buf, iter->buf_size);
766 continue;
767 }
768
769 if (err == Z_STREAM_END)
770 break;
771 }
772
773 return 0;
774}
775
776static void flush_gz_chunks(struct io_log *log, FILE *f)
777{
778 struct flush_chunk_iter iter = { .chunk_sz = log->log_gz, };
779 struct flist_head *node;
780 z_stream stream;
781
782 while (!flist_empty(&log->chunk_list)) {
783 struct iolog_compress *ic;
784
785 node = log->chunk_list.next;
786 ic = flist_entry(node, struct iolog_compress, list);
787 flist_del(&ic->list);
788
789 if (log->log_gz_store)
790 fwrite(ic->buf, ic->len, 1, f);
791 else
792 flush_chunk(ic, log->log_gz_store, f, &stream, &iter);
793
794 free_chunk(ic);
795 }
796
797 if (iter.seq) {
798 finish_chunk(&stream, f, &iter);
799 free(iter.buf);
800 }
801}
802
803int iolog_file_inflate(const char *file)
804{
805 struct flush_chunk_iter iter = { .chunk_sz = 64 * 1024 * 1024, };
806 struct iolog_compress ic;
807 z_stream stream;
808 struct stat sb;
809 ssize_t ret;
810 FILE *f;
811
812 f = fopen(file, "r");
813 if (!f) {
814 perror("fopen");
815 return 1;
816 }
817
818 if (stat(file, &sb) < 0) {
819 fclose(f);
820 perror("stat");
821 return 1;
822 }
823
824 ic.buf = malloc(sb.st_size);
825 ic.len = sb.st_size;
826 ic.seq = 1;
827
828 ret = fread(ic.buf, ic.len, 1, f);
829 if (ret < 0) {
830 perror("fread");
831 fclose(f);
832 return 1;
833 } else if (ret != 1) {
834 log_err("fio: short read on reading log\n");
835 fclose(f);
836 return 1;
837 }
838
839 fclose(f);
840
841 flush_chunk(&ic, 1, stdout, &stream, &iter);
842
843 if (iter.seq) {
844 finish_chunk(&stream, stdout, &iter);
845 free(iter.buf);
846 }
847
848 free(ic.buf);
849 return 0;
850}
851
852#else
853
854static void flush_gz_chunks(struct io_log *log, FILE *f)
855{
856}
857
858#endif
859
860void flush_log(struct io_log *log)
861{
862 void *buf;
863 FILE *f;
864
865 f = fopen(log->filename, "w");
866 if (!f) {
867 perror("fopen log");
868 return;
869 }
870
871 buf = set_file_buffer(f);
872
873 flush_gz_chunks(log, f);
874
875 flush_samples(f, log->log, log->nr_samples * log_entry_sz(log));
876
877 fclose(f);
878 clear_file_buffer(buf);
879}
880
881static int finish_log(struct thread_data *td, struct io_log *log, int trylock)
882{
883 if (td->tp_data)
884 iolog_flush(log, 1);
885
886 if (trylock) {
887 if (fio_trylock_file(log->filename))
888 return 1;
889 } else
890 fio_lock_file(log->filename);
891
892 if (td->client_type == FIO_CLIENT_TYPE_GUI)
893 fio_send_iolog(td, log, log->filename);
894 else
895 flush_log(log);
896
897 fio_unlock_file(log->filename);
898 free_log(log);
899 return 0;
900}
901
902#ifdef CONFIG_ZLIB
903
904static int gz_work(struct tp_work *work)
905{
906 struct iolog_flush_data *data;
907 struct iolog_compress *c;
908 struct flist_head list;
909 unsigned int seq;
910 z_stream stream;
911 size_t total = 0;
912 int ret;
913
914 INIT_FLIST_HEAD(&list);
915
916 data = container_of(work, struct iolog_flush_data, work);
917
918 stream.zalloc = Z_NULL;
919 stream.zfree = Z_NULL;
920 stream.opaque = Z_NULL;
921
922 ret = deflateInit(&stream, Z_DEFAULT_COMPRESSION);
923 if (ret != Z_OK) {
924 log_err("fio: failed to init gz stream\n");
925 return 0;
926 }
927
928 seq = ++data->log->chunk_seq;
929
930 stream.next_in = (void *) data->samples;
931 stream.avail_in = data->nr_samples * log_entry_sz(data->log);
932
933 do {
934 c = get_new_chunk(seq);
935 stream.avail_out = GZ_CHUNK;
936 stream.next_out = c->buf;
937 ret = deflate(&stream, Z_NO_FLUSH);
938 if (ret < 0) {
939 log_err("fio: deflate log (%d)\n", ret);
940 break;
941 }
942
943 c->len = GZ_CHUNK - stream.avail_out;
944 flist_add_tail(&c->list, &list);
945 total += c->len;
946 } while (stream.avail_in);
947
948 stream.next_out = c->buf + c->len;
949 stream.avail_out = GZ_CHUNK - c->len;
950
951 ret = deflate(&stream, Z_FINISH);
952 if (ret == Z_STREAM_END)
953 c->len = GZ_CHUNK - stream.avail_out;
954 else {
955 do {
956 c = get_new_chunk(seq);
957 stream.avail_out = GZ_CHUNK;
958 stream.next_out = c->buf;
959 ret = deflate(&stream, Z_FINISH);
960 c->len = GZ_CHUNK - stream.avail_out;
961 flist_add_tail(&c->list, &list);
962 } while (ret != Z_STREAM_END);
963 }
964
965 ret = deflateEnd(&stream);
966 if (ret != Z_OK)
967 log_err("fio: deflateEnd %d\n", ret);
968
969 free(data->samples);
970
971 if (!flist_empty(&list)) {
972 pthread_mutex_lock(&data->log->chunk_lock);
973 flist_splice_tail(&list, &data->log->chunk_list);
974 pthread_mutex_unlock(&data->log->chunk_lock);
975 }
976
977 if (work->wait) {
978 work->done = 1;
979 pthread_cond_signal(&work->cv);
980 } else
981 free(data);
982
983 return 0;
984}
985
986int iolog_flush(struct io_log *log, int wait)
987{
988 struct tp_data *tdat = log->td->tp_data;
989 struct iolog_flush_data *data;
990 size_t sample_size;
991
992 data = malloc(sizeof(*data));
993 if (!data)
994 return 1;
995
996 data->log = log;
997
998 sample_size = log->nr_samples * log_entry_sz(log);
999 data->samples = malloc(sample_size);
1000 if (!data->samples) {
1001 free(data);
1002 return 1;
1003 }
1004
1005 memcpy(data->samples, log->log, sample_size);
1006 data->nr_samples = log->nr_samples;
1007 data->work.fn = gz_work;
1008 log->nr_samples = 0;
1009
1010 if (wait) {
1011 pthread_mutex_init(&data->work.lock, NULL);
1012 pthread_cond_init(&data->work.cv, NULL);
1013 data->work.wait = 1;
1014 } else
1015 data->work.wait = 0;
1016
1017 tp_queue_work(tdat, &data->work);
1018
1019 if (wait) {
1020 pthread_mutex_lock(&data->work.lock);
1021 while (!data->work.done)
1022 pthread_cond_wait(&data->work.cv, &data->work.lock);
1023 pthread_mutex_unlock(&data->work.lock);
1024 free(data);
1025 }
1026
1027 return 0;
1028}
1029
1030#else
1031
1032int iolog_flush(struct io_log *log, int wait)
1033{
1034 return 1;
1035}
1036
1037#endif
1038
1039static int write_iops_log(struct thread_data *td, int try)
1040{
1041 struct io_log *log = td->iops_log;
1042
1043 if (!log)
1044 return 0;
1045
1046 return finish_log(td, log, try);
1047}
1048
1049static int write_slat_log(struct thread_data *td, int try)
1050{
1051 struct io_log *log = td->slat_log;
1052
1053 if (!log)
1054 return 0;
1055
1056 return finish_log(td, log, try);
1057}
1058
1059static int write_clat_log(struct thread_data *td, int try)
1060{
1061 struct io_log *log = td->clat_log;
1062
1063 if (!log)
1064 return 0;
1065
1066 return finish_log(td, log, try);
1067}
1068
1069static int write_lat_log(struct thread_data *td, int try)
1070{
1071 struct io_log *log = td->lat_log;
1072
1073 if (!log)
1074 return 0;
1075
1076 return finish_log(td, log, try);
1077}
1078
1079static int write_bandw_log(struct thread_data *td, int try)
1080{
1081 struct io_log *log = td->bw_log;
1082
1083 if (!log)
1084 return 0;
1085
1086 return finish_log(td, log, try);
1087}
1088
1089enum {
1090 BW_LOG_MASK = 1,
1091 LAT_LOG_MASK = 2,
1092 SLAT_LOG_MASK = 4,
1093 CLAT_LOG_MASK = 8,
1094 IOPS_LOG_MASK = 16,
1095
1096 ALL_LOG_NR = 5,
1097};
1098
1099struct log_type {
1100 unsigned int mask;
1101 int (*fn)(struct thread_data *, int);
1102};
1103
1104static struct log_type log_types[] = {
1105 {
1106 .mask = BW_LOG_MASK,
1107 .fn = write_bandw_log,
1108 },
1109 {
1110 .mask = LAT_LOG_MASK,
1111 .fn = write_lat_log,
1112 },
1113 {
1114 .mask = SLAT_LOG_MASK,
1115 .fn = write_slat_log,
1116 },
1117 {
1118 .mask = CLAT_LOG_MASK,
1119 .fn = write_clat_log,
1120 },
1121 {
1122 .mask = IOPS_LOG_MASK,
1123 .fn = write_iops_log,
1124 },
1125};
1126
1127void fio_writeout_logs(struct thread_data *td)
1128{
1129 unsigned int log_mask = 0;
1130 unsigned int log_left = ALL_LOG_NR;
1131 int old_state, i;
1132
1133 old_state = td_bump_runstate(td, TD_FINISHING);
1134
1135 finalize_logs(td);
1136
1137 while (log_left) {
1138 int prev_log_left = log_left;
1139
1140 for (i = 0; i < ALL_LOG_NR && log_left; i++) {
1141 struct log_type *lt = &log_types[i];
1142 int ret;
1143
1144 if (!(log_mask & lt->mask)) {
1145 ret = lt->fn(td, log_left != 1);
1146 if (!ret) {
1147 log_left--;
1148 log_mask |= lt->mask;
1149 }
1150 }
1151 }
1152
1153 if (prev_log_left == log_left)
1154 usleep(5000);
1155 }
1156
1157 td_restore_runstate(td, old_state);
1158}