fileset: fix double addition of file offset
[fio.git] / filesetup.c
... / ...
CommitLineData
1#include <unistd.h>
2#include <fcntl.h>
3#include <string.h>
4#include <assert.h>
5#include <dirent.h>
6#include <libgen.h>
7#include <sys/stat.h>
8#include <sys/mman.h>
9#include <sys/types.h>
10
11#include "fio.h"
12#include "smalloc.h"
13#include "filehash.h"
14#include "options.h"
15#include "os/os.h"
16#include "hash.h"
17#include "lib/axmap.h"
18
19#ifdef CONFIG_LINUX_FALLOCATE
20#include <linux/falloc.h>
21#endif
22
23static int root_warn;
24
25static FLIST_HEAD(filename_list);
26
27/*
28 * List entry for filename_list
29 */
30struct file_name {
31 struct flist_head list;
32 char *filename;
33};
34
35static inline void clear_error(struct thread_data *td)
36{
37 td->error = 0;
38 td->verror[0] = '\0';
39}
40
41/*
42 * Leaves f->fd open on success, caller must close
43 */
44static int extend_file(struct thread_data *td, struct fio_file *f)
45{
46 int r, new_layout = 0, unlink_file = 0, flags;
47 unsigned long long left;
48 unsigned int bs;
49 char *b = NULL;
50
51 if (read_only) {
52 log_err("fio: refusing extend of file due to read-only\n");
53 return 0;
54 }
55
56 /*
57 * check if we need to lay the file out complete again. fio
58 * does that for operations involving reads, or for writes
59 * where overwrite is set
60 */
61 if (td_read(td) ||
62 (td_write(td) && td->o.overwrite && !td->o.file_append) ||
63 (td_write(td) && td_ioengine_flagged(td, FIO_NOEXTEND)))
64 new_layout = 1;
65 if (td_write(td) && !td->o.overwrite && !td->o.file_append)
66 unlink_file = 1;
67
68 if (unlink_file || new_layout) {
69 int ret;
70
71 dprint(FD_FILE, "layout unlink %s\n", f->file_name);
72
73 ret = td_io_unlink_file(td, f);
74 if (ret != 0 && ret != ENOENT) {
75 td_verror(td, errno, "unlink");
76 return 1;
77 }
78 }
79
80 flags = O_WRONLY;
81 if (td->o.allow_create)
82 flags |= O_CREAT;
83 if (new_layout)
84 flags |= O_TRUNC;
85
86#ifdef WIN32
87 flags |= _O_BINARY;
88#endif
89
90 dprint(FD_FILE, "open file %s, flags %x\n", f->file_name, flags);
91 f->fd = open(f->file_name, flags, 0644);
92 if (f->fd < 0) {
93 int err = errno;
94
95 if (err == ENOENT && !td->o.allow_create)
96 log_err("fio: file creation disallowed by "
97 "allow_file_create=0\n");
98 else
99 td_verror(td, err, "open");
100 return 1;
101 }
102
103#ifdef CONFIG_POSIX_FALLOCATE
104 if (!td->o.fill_device) {
105 switch (td->o.fallocate_mode) {
106 case FIO_FALLOCATE_NONE:
107 break;
108 case FIO_FALLOCATE_POSIX:
109 dprint(FD_FILE, "posix_fallocate file %s size %llu\n",
110 f->file_name,
111 (unsigned long long) f->real_file_size);
112
113 r = posix_fallocate(f->fd, 0, f->real_file_size);
114 if (r > 0) {
115 log_err("fio: posix_fallocate fails: %s\n",
116 strerror(r));
117 }
118 break;
119#ifdef CONFIG_LINUX_FALLOCATE
120 case FIO_FALLOCATE_KEEP_SIZE:
121 dprint(FD_FILE,
122 "fallocate(FALLOC_FL_KEEP_SIZE) "
123 "file %s size %llu\n", f->file_name,
124 (unsigned long long) f->real_file_size);
125
126 r = fallocate(f->fd, FALLOC_FL_KEEP_SIZE, 0,
127 f->real_file_size);
128 if (r != 0)
129 td_verror(td, errno, "fallocate");
130
131 break;
132#endif /* CONFIG_LINUX_FALLOCATE */
133 default:
134 log_err("fio: unknown fallocate mode: %d\n",
135 td->o.fallocate_mode);
136 assert(0);
137 }
138 }
139#endif /* CONFIG_POSIX_FALLOCATE */
140
141 /*
142 * If our jobs don't require regular files initially, we're done.
143 */
144 if (!new_layout)
145 goto done;
146
147 /*
148 * The size will be -1ULL when fill_device is used, so don't truncate
149 * or fallocate this file, just write it
150 */
151 if (!td->o.fill_device) {
152 dprint(FD_FILE, "truncate file %s, size %llu\n", f->file_name,
153 (unsigned long long) f->real_file_size);
154 if (ftruncate(f->fd, f->real_file_size) == -1) {
155 if (errno != EFBIG) {
156 td_verror(td, errno, "ftruncate");
157 goto err;
158 }
159 }
160 }
161
162 left = f->real_file_size;
163 bs = td->o.max_bs[DDIR_WRITE];
164 if (bs > left)
165 bs = left;
166
167 b = malloc(bs);
168 if (!b) {
169 td_verror(td, errno, "malloc");
170 goto err;
171 }
172
173 while (left && !td->terminate) {
174 if (bs > left)
175 bs = left;
176
177 fill_io_buffer(td, b, bs, bs);
178
179 r = write(f->fd, b, bs);
180
181 if (r > 0) {
182 left -= r;
183 continue;
184 } else {
185 if (r < 0) {
186 int __e = errno;
187
188 if (__e == ENOSPC) {
189 if (td->o.fill_device)
190 break;
191 log_info("fio: ENOSPC on laying out "
192 "file, stopping\n");
193 break;
194 }
195 td_verror(td, errno, "write");
196 } else
197 td_verror(td, EIO, "write");
198
199 break;
200 }
201 }
202
203 if (td->terminate) {
204 dprint(FD_FILE, "terminate unlink %s\n", f->file_name);
205 td_io_unlink_file(td, f);
206 } else if (td->o.create_fsync) {
207 if (fsync(f->fd) < 0) {
208 td_verror(td, errno, "fsync");
209 goto err;
210 }
211 }
212 if (td->o.fill_device && !td_write(td)) {
213 fio_file_clear_size_known(f);
214 if (td_io_get_file_size(td, f))
215 goto err;
216 if (f->io_size > f->real_file_size)
217 f->io_size = f->real_file_size;
218 }
219
220 free(b);
221done:
222 return 0;
223err:
224 close(f->fd);
225 f->fd = -1;
226 if (b)
227 free(b);
228 return 1;
229}
230
231static int pre_read_file(struct thread_data *td, struct fio_file *f)
232{
233 int ret = 0, r, did_open = 0, old_runstate;
234 unsigned long long left;
235 unsigned int bs;
236 char *b;
237
238 if (td_ioengine_flagged(td, FIO_PIPEIO) ||
239 td_ioengine_flagged(td, FIO_NOIO))
240 return 0;
241
242 if (f->filetype == FIO_TYPE_CHAR)
243 return 0;
244
245 if (!fio_file_open(f)) {
246 if (td->io_ops->open_file(td, f)) {
247 log_err("fio: cannot pre-read, failed to open file\n");
248 return 1;
249 }
250 did_open = 1;
251 }
252
253 old_runstate = td_bump_runstate(td, TD_PRE_READING);
254
255 left = f->io_size;
256 bs = td->o.max_bs[DDIR_READ];
257 if (bs > left)
258 bs = left;
259
260 b = malloc(bs);
261 if (!b) {
262 td_verror(td, errno, "malloc");
263 ret = 1;
264 goto error;
265 }
266 memset(b, 0, bs);
267
268 if (lseek(f->fd, f->file_offset, SEEK_SET) < 0) {
269 td_verror(td, errno, "lseek");
270 log_err("fio: failed to lseek pre-read file\n");
271 ret = 1;
272 goto error;
273 }
274
275 while (left && !td->terminate) {
276 if (bs > left)
277 bs = left;
278
279 r = read(f->fd, b, bs);
280
281 if (r == (int) bs) {
282 left -= bs;
283 continue;
284 } else {
285 td_verror(td, EIO, "pre_read");
286 break;
287 }
288 }
289
290error:
291 td_restore_runstate(td, old_runstate);
292
293 if (did_open)
294 td->io_ops->close_file(td, f);
295
296 free(b);
297 return ret;
298}
299
300unsigned long long get_rand_file_size(struct thread_data *td)
301{
302 unsigned long long ret, sized;
303 uint64_t frand_max;
304 unsigned long r;
305
306 frand_max = rand_max(&td->file_size_state);
307 r = __rand(&td->file_size_state);
308 sized = td->o.file_size_high - td->o.file_size_low;
309 ret = (unsigned long long) ((double) sized * (r / (frand_max + 1.0)));
310 ret += td->o.file_size_low;
311 ret -= (ret % td->o.rw_min_bs);
312 return ret;
313}
314
315static int file_size(struct thread_data *td, struct fio_file *f)
316{
317 struct stat st;
318
319 if (stat(f->file_name, &st) == -1) {
320 td_verror(td, errno, "fstat");
321 return 1;
322 }
323
324 f->real_file_size = st.st_size;
325 return 0;
326}
327
328static int bdev_size(struct thread_data *td, struct fio_file *f)
329{
330 unsigned long long bytes = 0;
331 int r;
332
333 if (td->io_ops->open_file(td, f)) {
334 log_err("fio: failed opening blockdev %s for size check\n",
335 f->file_name);
336 return 1;
337 }
338
339 r = blockdev_size(f, &bytes);
340 if (r) {
341 td_verror(td, r, "blockdev_size");
342 goto err;
343 }
344
345 if (!bytes) {
346 log_err("%s: zero sized block device?\n", f->file_name);
347 goto err;
348 }
349
350 f->real_file_size = bytes;
351 td->io_ops->close_file(td, f);
352 return 0;
353err:
354 td->io_ops->close_file(td, f);
355 return 1;
356}
357
358static int char_size(struct thread_data *td, struct fio_file *f)
359{
360#ifdef FIO_HAVE_CHARDEV_SIZE
361 unsigned long long bytes = 0;
362 int r;
363
364 if (td->io_ops->open_file(td, f)) {
365 log_err("fio: failed opening chardev %s for size check\n",
366 f->file_name);
367 return 1;
368 }
369
370 r = chardev_size(f, &bytes);
371 if (r) {
372 td_verror(td, r, "chardev_size");
373 goto err;
374 }
375
376 if (!bytes) {
377 log_err("%s: zero sized char device?\n", f->file_name);
378 goto err;
379 }
380
381 f->real_file_size = bytes;
382 td->io_ops->close_file(td, f);
383 return 0;
384err:
385 td->io_ops->close_file(td, f);
386 return 1;
387#else
388 f->real_file_size = -1ULL;
389 return 0;
390#endif
391}
392
393static int get_file_size(struct thread_data *td, struct fio_file *f)
394{
395 int ret = 0;
396
397 if (fio_file_size_known(f))
398 return 0;
399
400 if (f->filetype == FIO_TYPE_FILE)
401 ret = file_size(td, f);
402 else if (f->filetype == FIO_TYPE_BLOCK)
403 ret = bdev_size(td, f);
404 else if (f->filetype == FIO_TYPE_CHAR)
405 ret = char_size(td, f);
406 else
407 f->real_file_size = -1ULL;
408
409 /*
410 * Leave ->real_file_size with 0 since it could be expectation
411 * of initial setup for regular files.
412 */
413 if (ret)
414 return ret;
415
416 /*
417 * If ->real_file_size is -1, a conditional for the message
418 * "offset extends end" is always true, but it makes no sense,
419 * so just return the same value here.
420 */
421 if (f->real_file_size == -1ULL) {
422 log_info("%s: failed to get file size of %s\n", td->o.name,
423 f->file_name);
424 return 1;
425 }
426
427 if (td->o.start_offset && f->file_offset == 0)
428 dprint(FD_FILE, "offset of file %s not initialized yet\n",
429 f->file_name);
430 /*
431 * ->file_offset normally hasn't been initialized yet, so this
432 * is basically always false.
433 */
434 if (f->file_offset > f->real_file_size) {
435 log_err("%s: offset extends end (%llu > %llu)\n", td->o.name,
436 (unsigned long long) f->file_offset,
437 (unsigned long long) f->real_file_size);
438 return 1;
439 }
440
441 fio_file_set_size_known(f);
442 return 0;
443}
444
445static int __file_invalidate_cache(struct thread_data *td, struct fio_file *f,
446 unsigned long long off,
447 unsigned long long len)
448{
449 int errval = 0, ret = 0;
450
451#ifdef CONFIG_ESX
452 return 0;
453#endif
454
455 if (len == -1ULL)
456 len = f->io_size;
457 if (off == -1ULL)
458 off = f->file_offset;
459
460 if (len == -1ULL || off == -1ULL)
461 return 0;
462
463 if (td->io_ops->invalidate) {
464 dprint(FD_IO, "invalidate %s cache %s\n", td->io_ops->name,
465 f->file_name);
466 ret = td->io_ops->invalidate(td, f);
467 if (ret < 0)
468 errval = -ret;
469 } else if (f->filetype == FIO_TYPE_FILE) {
470 dprint(FD_IO, "declare unneeded cache %s: %llu/%llu\n",
471 f->file_name, off, len);
472 ret = posix_fadvise(f->fd, off, len, POSIX_FADV_DONTNEED);
473 if (ret)
474 errval = ret;
475 } else if (f->filetype == FIO_TYPE_BLOCK) {
476 int retry_count = 0;
477
478 dprint(FD_IO, "drop page cache %s\n", f->file_name);
479 ret = blockdev_invalidate_cache(f);
480 while (ret < 0 && errno == EAGAIN && retry_count++ < 25) {
481 /*
482 * Linux multipath devices reject ioctl while
483 * the maps are being updated. That window can
484 * last tens of milliseconds; we'll try up to
485 * a quarter of a second.
486 */
487 usleep(10000);
488 ret = blockdev_invalidate_cache(f);
489 }
490 if (ret < 0 && errno == EACCES && geteuid()) {
491 if (!root_warn) {
492 log_err("fio: only root may flush block "
493 "devices. Cache flush bypassed!\n");
494 root_warn = 1;
495 }
496 ret = 0;
497 }
498 if (ret < 0)
499 errval = errno;
500 else if (ret) /* probably not supported */
501 errval = ret;
502 } else if (f->filetype == FIO_TYPE_CHAR ||
503 f->filetype == FIO_TYPE_PIPE) {
504 dprint(FD_IO, "invalidate not supported %s\n", f->file_name);
505 ret = 0;
506 }
507
508 /*
509 * Cache flushing isn't a fatal condition, and we know it will
510 * happen on some platforms where we don't have the proper
511 * function to flush eg block device caches. So just warn and
512 * continue on our way.
513 */
514 if (errval)
515 log_info("fio: cache invalidation of %s failed: %s\n",
516 f->file_name, strerror(errval));
517
518 return 0;
519
520}
521
522int file_invalidate_cache(struct thread_data *td, struct fio_file *f)
523{
524 if (!fio_file_open(f))
525 return 0;
526
527 return __file_invalidate_cache(td, f, -1ULL, -1ULL);
528}
529
530int generic_close_file(struct thread_data fio_unused *td, struct fio_file *f)
531{
532 int ret = 0;
533
534 dprint(FD_FILE, "fd close %s\n", f->file_name);
535
536 remove_file_hash(f);
537
538 if (close(f->fd) < 0)
539 ret = errno;
540
541 f->fd = -1;
542
543 if (f->shadow_fd != -1) {
544 close(f->shadow_fd);
545 f->shadow_fd = -1;
546 }
547
548 f->engine_pos = 0;
549 return ret;
550}
551
552int file_lookup_open(struct fio_file *f, int flags)
553{
554 struct fio_file *__f;
555 int from_hash;
556
557 __f = lookup_file_hash(f->file_name);
558 if (__f) {
559 dprint(FD_FILE, "found file in hash %s\n", f->file_name);
560 f->lock = __f->lock;
561 from_hash = 1;
562 } else {
563 dprint(FD_FILE, "file not found in hash %s\n", f->file_name);
564 from_hash = 0;
565 }
566
567#ifdef WIN32
568 flags |= _O_BINARY;
569#endif
570
571 f->fd = open(f->file_name, flags, 0600);
572 return from_hash;
573}
574
575static int file_close_shadow_fds(struct thread_data *td)
576{
577 struct fio_file *f;
578 int num_closed = 0;
579 unsigned int i;
580
581 for_each_file(td, f, i) {
582 if (f->shadow_fd == -1)
583 continue;
584
585 close(f->shadow_fd);
586 f->shadow_fd = -1;
587 num_closed++;
588 }
589
590 return num_closed;
591}
592
593int generic_open_file(struct thread_data *td, struct fio_file *f)
594{
595 int is_std = 0;
596 int flags = 0;
597 int from_hash = 0;
598
599 dprint(FD_FILE, "fd open %s\n", f->file_name);
600
601 if (!strcmp(f->file_name, "-")) {
602 if (td_rw(td)) {
603 log_err("fio: can't read/write to stdin/out\n");
604 return 1;
605 }
606 is_std = 1;
607
608 /*
609 * move output logging to stderr, if we are writing to stdout
610 */
611 if (td_write(td))
612 f_out = stderr;
613 }
614
615 if (td_trim(td))
616 goto skip_flags;
617 if (td->o.odirect)
618 flags |= OS_O_DIRECT;
619 if (td->o.oatomic) {
620 if (!FIO_O_ATOMIC) {
621 td_verror(td, EINVAL, "OS does not support atomic IO");
622 return 1;
623 }
624 flags |= OS_O_DIRECT | FIO_O_ATOMIC;
625 }
626 if (td->o.sync_io)
627 flags |= O_SYNC;
628 if (td->o.create_on_open && td->o.allow_create)
629 flags |= O_CREAT;
630skip_flags:
631 if (f->filetype != FIO_TYPE_FILE)
632 flags |= FIO_O_NOATIME;
633
634open_again:
635 if (td_write(td)) {
636 if (!read_only)
637 flags |= O_RDWR;
638
639 if (f->filetype == FIO_TYPE_FILE && td->o.allow_create)
640 flags |= O_CREAT;
641
642 if (is_std)
643 f->fd = dup(STDOUT_FILENO);
644 else
645 from_hash = file_lookup_open(f, flags);
646 } else if (td_read(td)) {
647 if (f->filetype == FIO_TYPE_CHAR && !read_only)
648 flags |= O_RDWR;
649 else
650 flags |= O_RDONLY;
651
652 if (is_std)
653 f->fd = dup(STDIN_FILENO);
654 else
655 from_hash = file_lookup_open(f, flags);
656 } else if (td_trim(td)) {
657 assert(!td_rw(td)); /* should have matched above */
658 flags |= O_RDWR;
659 from_hash = file_lookup_open(f, flags);
660 }
661
662 if (f->fd == -1) {
663 char buf[FIO_VERROR_SIZE];
664 int __e = errno;
665
666 if (__e == EPERM && (flags & FIO_O_NOATIME)) {
667 flags &= ~FIO_O_NOATIME;
668 goto open_again;
669 }
670 if (__e == EMFILE && file_close_shadow_fds(td))
671 goto open_again;
672
673 snprintf(buf, sizeof(buf), "open(%s)", f->file_name);
674
675 if (__e == EINVAL && (flags & OS_O_DIRECT)) {
676 log_err("fio: looks like your file system does not " \
677 "support direct=1/buffered=0\n");
678 }
679
680 td_verror(td, __e, buf);
681 return 1;
682 }
683
684 if (!from_hash && f->fd != -1) {
685 if (add_file_hash(f)) {
686 int fio_unused ret;
687
688 /*
689 * Stash away descriptor for later close. This is to
690 * work-around a "feature" on Linux, where a close of
691 * an fd that has been opened for write will trigger
692 * udev to call blkid to check partitions, fs id, etc.
693 * That pollutes the device cache, which can slow down
694 * unbuffered accesses.
695 */
696 if (f->shadow_fd == -1)
697 f->shadow_fd = f->fd;
698 else {
699 /*
700 * OK to ignore, we haven't done anything
701 * with it
702 */
703 ret = generic_close_file(td, f);
704 }
705 goto open_again;
706 }
707 }
708
709 return 0;
710}
711
712/*
713 * This function i.e. get_file_size() is the default .get_file_size
714 * implementation of majority of I/O engines.
715 */
716int generic_get_file_size(struct thread_data *td, struct fio_file *f)
717{
718 return get_file_size(td, f);
719}
720
721/*
722 * open/close all files, so that ->real_file_size gets set
723 */
724static int get_file_sizes(struct thread_data *td)
725{
726 struct fio_file *f;
727 unsigned int i;
728 int err = 0;
729
730 for_each_file(td, f, i) {
731 dprint(FD_FILE, "get file size for %p/%d/%s\n", f, i,
732 f->file_name);
733
734 if (td_io_get_file_size(td, f)) {
735 if (td->error != ENOENT) {
736 log_err("%s\n", td->verror);
737 err = 1;
738 break;
739 }
740 clear_error(td);
741 }
742
743 /*
744 * There are corner cases where we end up with -1 for
745 * ->real_file_size due to unsupported file type, etc.
746 * We then just set to size option value divided by number
747 * of files, similar to the way file ->io_size is set.
748 * stat(2) failure doesn't set ->real_file_size to -1.
749 */
750 if (f->real_file_size == -1ULL && td->o.size)
751 f->real_file_size = td->o.size / td->o.nr_files;
752 }
753
754 return err;
755}
756
757struct fio_mount {
758 struct flist_head list;
759 const char *base;
760 char __base[256];
761 unsigned int key;
762};
763
764/*
765 * Get free number of bytes for each file on each unique mount.
766 */
767static unsigned long long get_fs_free_counts(struct thread_data *td)
768{
769 struct flist_head *n, *tmp;
770 unsigned long long ret = 0;
771 struct fio_mount *fm;
772 FLIST_HEAD(list);
773 struct fio_file *f;
774 unsigned int i;
775
776 for_each_file(td, f, i) {
777 struct stat sb;
778 char buf[256];
779
780 if (f->filetype == FIO_TYPE_BLOCK || f->filetype == FIO_TYPE_CHAR) {
781 if (f->real_file_size != -1ULL)
782 ret += f->real_file_size;
783 continue;
784 } else if (f->filetype != FIO_TYPE_FILE)
785 continue;
786
787 buf[255] = '\0';
788 strncpy(buf, f->file_name, 255);
789
790 if (stat(buf, &sb) < 0) {
791 if (errno != ENOENT)
792 break;
793 strcpy(buf, ".");
794 if (stat(buf, &sb) < 0)
795 break;
796 }
797
798 fm = NULL;
799 flist_for_each(n, &list) {
800 fm = flist_entry(n, struct fio_mount, list);
801 if (fm->key == sb.st_dev)
802 break;
803
804 fm = NULL;
805 }
806
807 if (fm)
808 continue;
809
810 fm = calloc(1, sizeof(*fm));
811 strncpy(fm->__base, buf, sizeof(fm->__base) - 1);
812 fm->base = basename(fm->__base);
813 fm->key = sb.st_dev;
814 flist_add(&fm->list, &list);
815 }
816
817 flist_for_each_safe(n, tmp, &list) {
818 unsigned long long sz;
819
820 fm = flist_entry(n, struct fio_mount, list);
821 flist_del(&fm->list);
822
823 sz = get_fs_free_size(fm->base);
824 if (sz && sz != -1ULL)
825 ret += sz;
826
827 free(fm);
828 }
829
830 return ret;
831}
832
833uint64_t get_start_offset(struct thread_data *td, struct fio_file *f)
834{
835 struct thread_options *o = &td->o;
836 unsigned long long align_bs; /* align the offset to this block size */
837 unsigned long long offset; /* align_bs-aligned offset */
838
839 if (o->file_append && f->filetype == FIO_TYPE_FILE)
840 return f->real_file_size;
841
842 if (o->start_offset_percent > 0) {
843 /* if blockalign is provided, find the min across read, write, and trim */
844 if (fio_option_is_set(o, ba)) {
845 align_bs = (unsigned long long) min(o->ba[DDIR_READ], o->ba[DDIR_WRITE]);
846 align_bs = min((unsigned long long) o->ba[DDIR_TRIM], align_bs);
847 } else { /* else take the minimum block size */
848 align_bs = td_min_bs(td);
849 }
850
851 /* calculate the raw offset */
852 offset = (f->real_file_size * o->start_offset_percent / 100) +
853 (td->subjob_number * o->offset_increment);
854
855 /* block align the offset at the next available boundary at
856 ceiling(offset / align_bs) * align_bs */
857 offset = (offset / align_bs + (offset % align_bs != 0)) * align_bs;
858
859 } else { /* start_offset_percent not set */
860 offset = o->start_offset +
861 td->subjob_number * o->offset_increment;
862 }
863 return offset;
864}
865
866/*
867 * Open the files and setup files sizes, creating files if necessary.
868 */
869int setup_files(struct thread_data *td)
870{
871 unsigned long long total_size, extend_size;
872 struct thread_options *o = &td->o;
873 struct fio_file *f;
874 unsigned int i, nr_fs_extra = 0;
875 int err = 0, need_extend;
876 int old_state;
877 const unsigned int bs = td_min_bs(td);
878 uint64_t fs = 0;
879
880 dprint(FD_FILE, "setup files\n");
881
882 old_state = td_bump_runstate(td, TD_SETTING_UP);
883
884 if (o->read_iolog_file)
885 goto done;
886
887 /*
888 * Find out physical size of files or devices for this thread,
889 * before we determine I/O size and range of our targets.
890 * If ioengine defines a setup() method, it's responsible for
891 * opening the files and setting f->real_file_size to indicate
892 * the valid range for that file.
893 */
894 if (td->io_ops->setup)
895 err = td->io_ops->setup(td);
896 else
897 err = get_file_sizes(td);
898
899 if (err)
900 goto err_out;
901
902 /*
903 * check sizes. if the files/devices do not exist and the size
904 * isn't passed to fio, abort.
905 */
906 total_size = 0;
907 for_each_file(td, f, i) {
908 f->fileno = i;
909 if (f->real_file_size == -1ULL)
910 total_size = -1ULL;
911 else
912 total_size += f->real_file_size;
913 }
914
915 if (o->fill_device)
916 td->fill_device_size = get_fs_free_counts(td);
917
918 /*
919 * device/file sizes are zero and no size given, punt
920 */
921 if ((!total_size || total_size == -1ULL) && !o->size &&
922 !td_ioengine_flagged(td, FIO_NOIO) && !o->fill_device &&
923 !(o->nr_files && (o->file_size_low || o->file_size_high))) {
924 log_err("%s: you need to specify size=\n", o->name);
925 td_verror(td, EINVAL, "total_file_size");
926 goto err_out;
927 }
928
929 /*
930 * Calculate per-file size and potential extra size for the
931 * first files, if needed (i.e. if we don't have a fixed size).
932 */
933 if (!o->file_size_low && o->nr_files) {
934 uint64_t all_fs;
935
936 fs = o->size / o->nr_files;
937 all_fs = fs * o->nr_files;
938
939 if (all_fs < o->size)
940 nr_fs_extra = (o->size - all_fs) / bs;
941 }
942
943 /*
944 * now file sizes are known, so we can set ->io_size. if size= is
945 * not given, ->io_size is just equal to ->real_file_size. if size
946 * is given, ->io_size is size / nr_files.
947 */
948 extend_size = total_size = 0;
949 need_extend = 0;
950 for_each_file(td, f, i) {
951 f->file_offset = get_start_offset(td, f);
952
953 /*
954 * Update ->io_size depending on options specified.
955 * ->file_size_low being 0 means filesize option isn't set.
956 * Non zero ->file_size_low equals ->file_size_high means
957 * filesize option is set in a fixed size format.
958 * Non zero ->file_size_low not equals ->file_size_high means
959 * filesize option is set in a range format.
960 */
961 if (!o->file_size_low) {
962 /*
963 * no file size or range given, file size is equal to
964 * total size divided by number of files. If the size
965 * doesn't divide nicely with the min blocksize,
966 * make the first files bigger.
967 */
968 f->io_size = fs;
969 if (nr_fs_extra) {
970 nr_fs_extra--;
971 f->io_size += bs;
972 }
973
974 /*
975 * We normally don't come here for regular files, but
976 * if the result is 0 for a regular file, set it to the
977 * real file size. This could be size of the existing
978 * one if it already exists, but otherwise will be set
979 * to 0. A new file won't be created because
980 * ->io_size + ->file_offset equals ->real_file_size.
981 */
982 if (!f->io_size) {
983 if (f->file_offset > f->real_file_size)
984 goto err_offset;
985 f->io_size = f->real_file_size - f->file_offset;
986 if (!f->io_size)
987 log_info("fio: file %s may be ignored\n",
988 f->file_name);
989 }
990 } else if (f->real_file_size < o->file_size_low ||
991 f->real_file_size > o->file_size_high) {
992 if (f->file_offset > o->file_size_low)
993 goto err_offset;
994 /*
995 * file size given. if it's fixed, use that. if it's a
996 * range, generate a random size in-between.
997 */
998 if (o->file_size_low == o->file_size_high)
999 f->io_size = o->file_size_low - f->file_offset;
1000 else {
1001 f->io_size = get_rand_file_size(td)
1002 - f->file_offset;
1003 }
1004 } else
1005 f->io_size = f->real_file_size - f->file_offset;
1006
1007 if (f->io_size == -1ULL)
1008 total_size = -1ULL;
1009 else {
1010 if (o->size_percent) {
1011 uint64_t file_size;
1012
1013 file_size = f->io_size + f->file_offset;
1014 f->io_size = (file_size *
1015 o->size_percent) / 100;
1016 if (f->io_size > (file_size - f->file_offset))
1017 f->io_size = file_size - f->file_offset;
1018
1019 f->io_size -= (f->io_size % td_min_bs(td));
1020 }
1021 total_size += f->io_size;
1022 }
1023
1024 if (f->filetype == FIO_TYPE_FILE &&
1025 (f->io_size + f->file_offset) > f->real_file_size &&
1026 !td_ioengine_flagged(td, FIO_DISKLESSIO)) {
1027 if (!o->create_on_open) {
1028 need_extend++;
1029 extend_size += (f->io_size + f->file_offset);
1030 fio_file_set_extend(f);
1031 } else
1032 f->real_file_size = f->io_size + f->file_offset;
1033 }
1034 }
1035
1036 if (td->o.block_error_hist) {
1037 int len;
1038
1039 assert(td->o.nr_files == 1); /* checked in fixup_options */
1040 f = td->files[0];
1041 len = f->io_size / td->o.bs[DDIR_TRIM];
1042 if (len > MAX_NR_BLOCK_INFOS || len <= 0) {
1043 log_err("fio: cannot calculate block histogram with "
1044 "%d trim blocks, maximum %d\n",
1045 len, MAX_NR_BLOCK_INFOS);
1046 td_verror(td, EINVAL, "block_error_hist");
1047 goto err_out;
1048 }
1049
1050 td->ts.nr_block_infos = len;
1051 for (i = 0; i < len; i++)
1052 td->ts.block_infos[i] =
1053 BLOCK_INFO(0, BLOCK_STATE_UNINIT);
1054 } else
1055 td->ts.nr_block_infos = 0;
1056
1057 if (!o->size || (total_size && o->size > total_size))
1058 o->size = total_size;
1059
1060 if (o->size < td_min_bs(td)) {
1061 log_err("fio: blocksize too large for data set\n");
1062 goto err_out;
1063 }
1064
1065 /*
1066 * See if we need to extend some files, typically needed when our
1067 * target regular files don't exist yet, but our jobs require them
1068 * initially due to read I/Os.
1069 */
1070 if (need_extend) {
1071 temp_stall_ts = 1;
1072 if (output_format & FIO_OUTPUT_NORMAL) {
1073 log_info("%s: Laying out IO file%s (%u file%s / %s%lluMiB)\n",
1074 o->name,
1075 need_extend > 1 ? "s" : "",
1076 need_extend,
1077 need_extend > 1 ? "s" : "",
1078 need_extend > 1 ? "total " : "",
1079 extend_size >> 20);
1080 }
1081
1082 for_each_file(td, f, i) {
1083 unsigned long long old_len = -1ULL, extend_len = -1ULL;
1084
1085 if (!fio_file_extend(f))
1086 continue;
1087
1088 assert(f->filetype == FIO_TYPE_FILE);
1089 fio_file_clear_extend(f);
1090 if (!o->fill_device) {
1091 old_len = f->real_file_size;
1092 extend_len = f->io_size + f->file_offset -
1093 old_len;
1094 }
1095 f->real_file_size = (f->io_size + f->file_offset);
1096 err = extend_file(td, f);
1097 if (err)
1098 break;
1099
1100 err = __file_invalidate_cache(td, f, old_len,
1101 extend_len);
1102
1103 /*
1104 * Shut up static checker
1105 */
1106 if (f->fd != -1)
1107 close(f->fd);
1108
1109 f->fd = -1;
1110 if (err)
1111 break;
1112 }
1113 temp_stall_ts = 0;
1114 }
1115
1116 if (err)
1117 goto err_out;
1118
1119 if (!o->zone_size)
1120 o->zone_size = o->size;
1121
1122 /*
1123 * iolog already set the total io size, if we read back
1124 * stored entries.
1125 */
1126 if (!o->read_iolog_file) {
1127 if (o->io_size)
1128 td->total_io_size = o->io_size * o->loops;
1129 else
1130 td->total_io_size = o->size * o->loops;
1131 }
1132
1133done:
1134 if (o->create_only)
1135 td->done = 1;
1136
1137 td_restore_runstate(td, old_state);
1138 return 0;
1139err_offset:
1140 log_err("%s: you need to specify valid offset=\n", o->name);
1141err_out:
1142 td_restore_runstate(td, old_state);
1143 return 1;
1144}
1145
1146int pre_read_files(struct thread_data *td)
1147{
1148 struct fio_file *f;
1149 unsigned int i;
1150
1151 dprint(FD_FILE, "pre_read files\n");
1152
1153 for_each_file(td, f, i) {
1154 if (pre_read_file(td, f))
1155 return -1;
1156 }
1157
1158 return 0;
1159}
1160
1161static int __init_rand_distribution(struct thread_data *td, struct fio_file *f)
1162{
1163 unsigned int range_size, seed;
1164 unsigned long nranges;
1165 uint64_t fsize;
1166
1167 range_size = min(td->o.min_bs[DDIR_READ], td->o.min_bs[DDIR_WRITE]);
1168 fsize = min(f->real_file_size, f->io_size);
1169
1170 nranges = (fsize + range_size - 1) / range_size;
1171
1172 seed = jhash(f->file_name, strlen(f->file_name), 0) * td->thread_number;
1173 if (!td->o.rand_repeatable)
1174 seed = td->rand_seeds[4];
1175
1176 if (td->o.random_distribution == FIO_RAND_DIST_ZIPF)
1177 zipf_init(&f->zipf, nranges, td->o.zipf_theta.u.f, seed);
1178 else if (td->o.random_distribution == FIO_RAND_DIST_PARETO)
1179 pareto_init(&f->zipf, nranges, td->o.pareto_h.u.f, seed);
1180 else if (td->o.random_distribution == FIO_RAND_DIST_GAUSS)
1181 gauss_init(&f->gauss, nranges, td->o.gauss_dev.u.f, seed);
1182
1183 return 1;
1184}
1185
1186static int init_rand_distribution(struct thread_data *td)
1187{
1188 struct fio_file *f;
1189 unsigned int i;
1190 int state;
1191
1192 if (td->o.random_distribution == FIO_RAND_DIST_RANDOM)
1193 return 0;
1194
1195 state = td_bump_runstate(td, TD_SETTING_UP);
1196
1197 for_each_file(td, f, i)
1198 __init_rand_distribution(td, f);
1199
1200 td_restore_runstate(td, state);
1201
1202 return 1;
1203}
1204
1205/*
1206 * Check if the number of blocks exceeds the randomness capability of
1207 * the selected generator. Tausworthe is 32-bit, the others are fullly
1208 * 64-bit capable.
1209 */
1210static int check_rand_gen_limits(struct thread_data *td, struct fio_file *f,
1211 uint64_t blocks)
1212{
1213 if (blocks <= FRAND32_MAX)
1214 return 0;
1215 if (td->o.random_generator != FIO_RAND_GEN_TAUSWORTHE)
1216 return 0;
1217
1218 /*
1219 * If the user hasn't specified a random generator, switch
1220 * to tausworthe64 with informational warning. If the user did
1221 * specify one, just warn.
1222 */
1223 log_info("fio: file %s exceeds 32-bit tausworthe random generator.\n",
1224 f->file_name);
1225
1226 if (!fio_option_is_set(&td->o, random_generator)) {
1227 log_info("fio: Switching to tausworthe64. Use the "
1228 "random_generator= option to get rid of this "
1229 "warning.\n");
1230 td->o.random_generator = FIO_RAND_GEN_TAUSWORTHE64;
1231 return 0;
1232 }
1233
1234 /*
1235 * Just make this information to avoid breaking scripts.
1236 */
1237 log_info("fio: Use the random_generator= option to switch to lfsr or "
1238 "tausworthe64.\n");
1239 return 0;
1240}
1241
1242int init_random_map(struct thread_data *td)
1243{
1244 unsigned long long blocks;
1245 struct fio_file *f;
1246 unsigned int i;
1247
1248 if (init_rand_distribution(td))
1249 return 0;
1250 if (!td_random(td))
1251 return 0;
1252
1253 for_each_file(td, f, i) {
1254 uint64_t fsize = min(f->real_file_size, f->io_size);
1255
1256 blocks = fsize / (unsigned long long) td->o.rw_min_bs;
1257
1258 if (check_rand_gen_limits(td, f, blocks))
1259 return 1;
1260
1261 if (td->o.random_generator == FIO_RAND_GEN_LFSR) {
1262 unsigned long seed;
1263
1264 seed = td->rand_seeds[FIO_RAND_BLOCK_OFF];
1265
1266 if (!lfsr_init(&f->lfsr, blocks, seed, 0)) {
1267 fio_file_set_lfsr(f);
1268 continue;
1269 }
1270 } else if (!td->o.norandommap) {
1271 f->io_axmap = axmap_new(blocks);
1272 if (f->io_axmap) {
1273 fio_file_set_axmap(f);
1274 continue;
1275 }
1276 } else if (td->o.norandommap)
1277 continue;
1278
1279 if (!td->o.softrandommap) {
1280 log_err("fio: failed allocating random map. If running"
1281 " a large number of jobs, try the 'norandommap'"
1282 " option or set 'softrandommap'. Or give"
1283 " a larger --alloc-size to fio.\n");
1284 return 1;
1285 }
1286
1287 log_info("fio: file %s failed allocating random map. Running "
1288 "job without.\n", f->file_name);
1289 }
1290
1291 return 0;
1292}
1293
1294void close_files(struct thread_data *td)
1295{
1296 struct fio_file *f;
1297 unsigned int i;
1298
1299 for_each_file(td, f, i) {
1300 if (fio_file_open(f))
1301 td_io_close_file(td, f);
1302 }
1303}
1304
1305void close_and_free_files(struct thread_data *td)
1306{
1307 struct fio_file *f;
1308 unsigned int i;
1309
1310 dprint(FD_FILE, "close files\n");
1311
1312 for_each_file(td, f, i) {
1313 if (td->o.unlink && f->filetype == FIO_TYPE_FILE) {
1314 dprint(FD_FILE, "free unlink %s\n", f->file_name);
1315 td_io_unlink_file(td, f);
1316 }
1317
1318 if (fio_file_open(f))
1319 td_io_close_file(td, f);
1320
1321 remove_file_hash(f);
1322
1323 if (td->o.unlink && f->filetype == FIO_TYPE_FILE) {
1324 dprint(FD_FILE, "free unlink %s\n", f->file_name);
1325 td_io_unlink_file(td, f);
1326 }
1327
1328 sfree(f->file_name);
1329 f->file_name = NULL;
1330 if (fio_file_axmap(f)) {
1331 axmap_free(f->io_axmap);
1332 f->io_axmap = NULL;
1333 }
1334 sfree(f);
1335 }
1336
1337 td->o.filename = NULL;
1338 free(td->files);
1339 free(td->file_locks);
1340 td->files_index = 0;
1341 td->files = NULL;
1342 td->file_locks = NULL;
1343 td->o.file_lock_mode = FILE_LOCK_NONE;
1344 td->o.nr_files = 0;
1345}
1346
1347static void get_file_type(struct fio_file *f)
1348{
1349 struct stat sb;
1350
1351 if (!strcmp(f->file_name, "-"))
1352 f->filetype = FIO_TYPE_PIPE;
1353 else
1354 f->filetype = FIO_TYPE_FILE;
1355
1356#ifdef WIN32
1357 /* \\.\ is the device namespace in Windows, where every file is
1358 * a block device */
1359 if (strncmp(f->file_name, "\\\\.\\", 4) == 0)
1360 f->filetype = FIO_TYPE_BLOCK;
1361#endif
1362
1363 if (!stat(f->file_name, &sb)) {
1364 if (S_ISBLK(sb.st_mode))
1365 f->filetype = FIO_TYPE_BLOCK;
1366 else if (S_ISCHR(sb.st_mode))
1367 f->filetype = FIO_TYPE_CHAR;
1368 else if (S_ISFIFO(sb.st_mode))
1369 f->filetype = FIO_TYPE_PIPE;
1370 }
1371}
1372
1373static bool __is_already_allocated(const char *fname, bool set)
1374{
1375 struct flist_head *entry;
1376 bool ret;
1377
1378 ret = file_bloom_exists(fname, set);
1379 if (!ret)
1380 return ret;
1381
1382 flist_for_each(entry, &filename_list) {
1383 struct file_name *fn;
1384
1385 fn = flist_entry(entry, struct file_name, list);
1386
1387 if (!strcmp(fn->filename, fname))
1388 return true;
1389 }
1390
1391 return false;
1392}
1393
1394static bool is_already_allocated(const char *fname)
1395{
1396 bool ret;
1397
1398 fio_file_hash_lock();
1399 ret = __is_already_allocated(fname, false);
1400 fio_file_hash_unlock();
1401
1402 return ret;
1403}
1404
1405static void set_already_allocated(const char *fname)
1406{
1407 struct file_name *fn;
1408
1409 fn = malloc(sizeof(struct file_name));
1410 fn->filename = strdup(fname);
1411
1412 fio_file_hash_lock();
1413 if (!__is_already_allocated(fname, true)) {
1414 flist_add_tail(&fn->list, &filename_list);
1415 fn = NULL;
1416 }
1417 fio_file_hash_unlock();
1418
1419 if (fn) {
1420 free(fn->filename);
1421 free(fn);
1422 }
1423}
1424
1425static void free_already_allocated(void)
1426{
1427 struct flist_head *entry, *tmp;
1428 struct file_name *fn;
1429
1430 if (flist_empty(&filename_list))
1431 return;
1432
1433 fio_file_hash_lock();
1434 flist_for_each_safe(entry, tmp, &filename_list) {
1435 fn = flist_entry(entry, struct file_name, list);
1436 free(fn->filename);
1437 flist_del(&fn->list);
1438 free(fn);
1439 }
1440
1441 fio_file_hash_unlock();
1442}
1443
1444static struct fio_file *alloc_new_file(struct thread_data *td)
1445{
1446 struct fio_file *f;
1447
1448 f = smalloc(sizeof(*f));
1449 if (!f) {
1450 assert(0);
1451 return NULL;
1452 }
1453
1454 f->fd = -1;
1455 f->shadow_fd = -1;
1456 fio_file_reset(td, f);
1457 return f;
1458}
1459
1460bool exists_and_not_regfile(const char *filename)
1461{
1462 struct stat sb;
1463
1464 if (lstat(filename, &sb) == -1)
1465 return false;
1466
1467#ifndef WIN32 /* NOT Windows */
1468 if (S_ISREG(sb.st_mode))
1469 return false;
1470#else
1471 /* \\.\ is the device namespace in Windows, where every file
1472 * is a device node */
1473 if (S_ISREG(sb.st_mode) && strncmp(filename, "\\\\.\\", 4) != 0)
1474 return false;
1475#endif
1476
1477 return true;
1478}
1479
1480int add_file(struct thread_data *td, const char *fname, int numjob, int inc)
1481{
1482 int cur_files = td->files_index;
1483 char file_name[PATH_MAX];
1484 struct fio_file *f;
1485 int len = 0;
1486
1487 dprint(FD_FILE, "add file %s\n", fname);
1488
1489 if (td->o.directory)
1490 len = set_name_idx(file_name, PATH_MAX, td->o.directory, numjob,
1491 td->o.unique_filename);
1492
1493 sprintf(file_name + len, "%s", fname);
1494
1495 /* clean cloned siblings using existing files */
1496 if (numjob && is_already_allocated(file_name) &&
1497 !exists_and_not_regfile(fname))
1498 return 0;
1499
1500 f = alloc_new_file(td);
1501
1502 if (td->files_size <= td->files_index) {
1503 unsigned int new_size = td->o.nr_files + 1;
1504
1505 dprint(FD_FILE, "resize file array to %d files\n", new_size);
1506
1507 td->files = realloc(td->files, new_size * sizeof(f));
1508 if (td->files == NULL) {
1509 log_err("fio: realloc OOM\n");
1510 assert(0);
1511 }
1512 if (td->o.file_lock_mode != FILE_LOCK_NONE) {
1513 td->file_locks = realloc(td->file_locks, new_size);
1514 if (!td->file_locks) {
1515 log_err("fio: realloc OOM\n");
1516 assert(0);
1517 }
1518 td->file_locks[cur_files] = FILE_LOCK_NONE;
1519 }
1520 td->files_size = new_size;
1521 }
1522 td->files[cur_files] = f;
1523 f->fileno = cur_files;
1524
1525 /*
1526 * init function, io engine may not be loaded yet
1527 */
1528 if (td->io_ops && td_ioengine_flagged(td, FIO_DISKLESSIO))
1529 f->real_file_size = -1ULL;
1530
1531 f->file_name = smalloc_strdup(file_name);
1532 if (!f->file_name)
1533 assert(0);
1534
1535 get_file_type(f);
1536
1537 switch (td->o.file_lock_mode) {
1538 case FILE_LOCK_NONE:
1539 break;
1540 case FILE_LOCK_READWRITE:
1541 f->rwlock = fio_rwlock_init();
1542 break;
1543 case FILE_LOCK_EXCLUSIVE:
1544 f->lock = fio_mutex_init(FIO_MUTEX_UNLOCKED);
1545 break;
1546 default:
1547 log_err("fio: unknown lock mode: %d\n", td->o.file_lock_mode);
1548 assert(0);
1549 }
1550
1551 td->files_index++;
1552 if (f->filetype == FIO_TYPE_FILE)
1553 td->nr_normal_files++;
1554
1555 set_already_allocated(file_name);
1556
1557 if (inc)
1558 td->o.nr_files++;
1559
1560 dprint(FD_FILE, "file %p \"%s\" added at %d\n", f, f->file_name,
1561 cur_files);
1562
1563 return cur_files;
1564}
1565
1566int add_file_exclusive(struct thread_data *td, const char *fname)
1567{
1568 struct fio_file *f;
1569 unsigned int i;
1570
1571 for_each_file(td, f, i) {
1572 if (!strcmp(f->file_name, fname))
1573 return i;
1574 }
1575
1576 return add_file(td, fname, 0, 1);
1577}
1578
1579void get_file(struct fio_file *f)
1580{
1581 dprint(FD_FILE, "get file %s, ref=%d\n", f->file_name, f->references);
1582 assert(fio_file_open(f));
1583 f->references++;
1584}
1585
1586int put_file(struct thread_data *td, struct fio_file *f)
1587{
1588 int f_ret = 0, ret = 0;
1589
1590 dprint(FD_FILE, "put file %s, ref=%d\n", f->file_name, f->references);
1591
1592 if (!fio_file_open(f)) {
1593 assert(f->fd == -1);
1594 return 0;
1595 }
1596
1597 assert(f->references);
1598 if (--f->references)
1599 return 0;
1600
1601 if (should_fsync(td) && td->o.fsync_on_close) {
1602 f_ret = fsync(f->fd);
1603 if (f_ret < 0)
1604 f_ret = errno;
1605 }
1606
1607 if (td->io_ops->close_file)
1608 ret = td->io_ops->close_file(td, f);
1609
1610 if (!ret)
1611 ret = f_ret;
1612
1613 td->nr_open_files--;
1614 fio_file_clear_open(f);
1615 assert(f->fd == -1);
1616 return ret;
1617}
1618
1619void lock_file(struct thread_data *td, struct fio_file *f, enum fio_ddir ddir)
1620{
1621 if (!f->lock || td->o.file_lock_mode == FILE_LOCK_NONE)
1622 return;
1623
1624 if (td->o.file_lock_mode == FILE_LOCK_READWRITE) {
1625 if (ddir == DDIR_READ)
1626 fio_rwlock_read(f->rwlock);
1627 else
1628 fio_rwlock_write(f->rwlock);
1629 } else if (td->o.file_lock_mode == FILE_LOCK_EXCLUSIVE)
1630 fio_mutex_down(f->lock);
1631
1632 td->file_locks[f->fileno] = td->o.file_lock_mode;
1633}
1634
1635void unlock_file(struct thread_data *td, struct fio_file *f)
1636{
1637 if (!f->lock || td->o.file_lock_mode == FILE_LOCK_NONE)
1638 return;
1639
1640 if (td->o.file_lock_mode == FILE_LOCK_READWRITE)
1641 fio_rwlock_unlock(f->rwlock);
1642 else if (td->o.file_lock_mode == FILE_LOCK_EXCLUSIVE)
1643 fio_mutex_up(f->lock);
1644
1645 td->file_locks[f->fileno] = FILE_LOCK_NONE;
1646}
1647
1648void unlock_file_all(struct thread_data *td, struct fio_file *f)
1649{
1650 if (td->o.file_lock_mode == FILE_LOCK_NONE || !td->file_locks)
1651 return;
1652 if (td->file_locks[f->fileno] != FILE_LOCK_NONE)
1653 unlock_file(td, f);
1654}
1655
1656static int recurse_dir(struct thread_data *td, const char *dirname)
1657{
1658 struct dirent *dir;
1659 int ret = 0;
1660 DIR *D;
1661
1662 D = opendir(dirname);
1663 if (!D) {
1664 char buf[FIO_VERROR_SIZE];
1665
1666 snprintf(buf, FIO_VERROR_SIZE, "opendir(%s)", dirname);
1667 td_verror(td, errno, buf);
1668 return 1;
1669 }
1670
1671 while ((dir = readdir(D)) != NULL) {
1672 char full_path[PATH_MAX];
1673 struct stat sb;
1674
1675 if (!strcmp(dir->d_name, ".") || !strcmp(dir->d_name, ".."))
1676 continue;
1677
1678 sprintf(full_path, "%s%s%s", dirname, FIO_OS_PATH_SEPARATOR, dir->d_name);
1679
1680 if (lstat(full_path, &sb) == -1) {
1681 if (errno != ENOENT) {
1682 td_verror(td, errno, "stat");
1683 ret = 1;
1684 break;
1685 }
1686 }
1687
1688 if (S_ISREG(sb.st_mode)) {
1689 add_file(td, full_path, 0, 1);
1690 continue;
1691 }
1692 if (!S_ISDIR(sb.st_mode))
1693 continue;
1694
1695 ret = recurse_dir(td, full_path);
1696 if (ret)
1697 break;
1698 }
1699
1700 closedir(D);
1701 return ret;
1702}
1703
1704int add_dir_files(struct thread_data *td, const char *path)
1705{
1706 int ret = recurse_dir(td, path);
1707
1708 if (!ret)
1709 log_info("fio: opendir added %d files\n", td->o.nr_files);
1710
1711 return ret;
1712}
1713
1714void dup_files(struct thread_data *td, struct thread_data *org)
1715{
1716 struct fio_file *f;
1717 unsigned int i;
1718
1719 dprint(FD_FILE, "dup files: %d\n", org->files_index);
1720
1721 if (!org->files)
1722 return;
1723
1724 td->files = malloc(org->files_index * sizeof(f));
1725
1726 if (td->o.file_lock_mode != FILE_LOCK_NONE)
1727 td->file_locks = malloc(org->files_index);
1728
1729 for_each_file(org, f, i) {
1730 struct fio_file *__f;
1731
1732 __f = alloc_new_file(td);
1733
1734 if (f->file_name) {
1735 __f->file_name = smalloc_strdup(f->file_name);
1736 if (!__f->file_name)
1737 assert(0);
1738
1739 __f->filetype = f->filetype;
1740 }
1741
1742 if (td->o.file_lock_mode == FILE_LOCK_EXCLUSIVE)
1743 __f->lock = f->lock;
1744 else if (td->o.file_lock_mode == FILE_LOCK_READWRITE)
1745 __f->rwlock = f->rwlock;
1746
1747 td->files[i] = __f;
1748 }
1749}
1750
1751/*
1752 * Returns the index that matches the filename, or -1 if not there
1753 */
1754int get_fileno(struct thread_data *td, const char *fname)
1755{
1756 struct fio_file *f;
1757 unsigned int i;
1758
1759 for_each_file(td, f, i)
1760 if (!strcmp(f->file_name, fname))
1761 return i;
1762
1763 return -1;
1764}
1765
1766/*
1767 * For log usage, where we add/open/close files automatically
1768 */
1769void free_release_files(struct thread_data *td)
1770{
1771 close_files(td);
1772 td->o.nr_files = 0;
1773 td->o.open_files = 0;
1774 td->files_index = 0;
1775 td->nr_normal_files = 0;
1776}
1777
1778void fio_file_reset(struct thread_data *td, struct fio_file *f)
1779{
1780 int i;
1781
1782 for (i = 0; i < DDIR_RWDIR_CNT; i++) {
1783 f->last_pos[i] = f->file_offset;
1784 f->last_start[i] = -1ULL;
1785 }
1786
1787 if (fio_file_axmap(f))
1788 axmap_reset(f->io_axmap);
1789 else if (fio_file_lfsr(f))
1790 lfsr_reset(&f->lfsr, td->rand_seeds[FIO_RAND_BLOCK_OFF]);
1791}
1792
1793bool fio_files_done(struct thread_data *td)
1794{
1795 struct fio_file *f;
1796 unsigned int i;
1797
1798 for_each_file(td, f, i)
1799 if (!fio_file_done(f))
1800 return false;
1801
1802 return true;
1803}
1804
1805/* free memory used in initialization phase only */
1806void filesetup_mem_free(void)
1807{
1808 free_already_allocated();
1809}