docs: move rate_cycle description
[fio.git] / zbd.c
CommitLineData
bfbdd35b
BVA
1/*
2 * Copyright (C) 2018 Western Digital Corporation or its affiliates.
3 *
4 * This file is released under the GPL.
5 */
6
7#include <errno.h>
8#include <string.h>
9#include <stdlib.h>
bfbdd35b 10#include <fcntl.h>
bfbdd35b
BVA
11#include <sys/stat.h>
12#include <unistd.h>
f5bff36e 13
cf42d79e 14#include "os/os.h"
bfbdd35b
BVA
15#include "file.h"
16#include "fio.h"
17#include "lib/pow2.h"
18#include "log.h"
f5bff36e 19#include "oslib/asprintf.h"
bfbdd35b
BVA
20#include "smalloc.h"
21#include "verify.h"
44ec32cb 22#include "pshared.h"
bfbdd35b
BVA
23#include "zbd.h"
24
410a071c
DLM
25static bool is_valid_offset(const struct fio_file *f, uint64_t offset)
26{
27 return (uint64_t)(offset - f->file_offset) < f->io_size;
28}
29
dc8a3d62
DLM
30static inline unsigned int zbd_zone_idx(const struct fio_file *f,
31 struct fio_zone_info *zone)
410a071c
DLM
32{
33 return zone - f->zbd_info->zone_info;
34}
35
36/**
dc8a3d62 37 * zbd_offset_to_zone_idx - convert an offset into a zone number
410a071c
DLM
38 * @f: file pointer.
39 * @offset: offset in bytes. If this offset is in the first zone_size bytes
40 * past the disk size then the index of the sentinel is returned.
41 */
dc8a3d62
DLM
42static unsigned int zbd_offset_to_zone_idx(const struct fio_file *f,
43 uint64_t offset)
410a071c
DLM
44{
45 uint32_t zone_idx;
46
47 if (f->zbd_info->zone_size_log2 > 0)
48 zone_idx = offset >> f->zbd_info->zone_size_log2;
49 else
50 zone_idx = offset / f->zbd_info->zone_size;
51
52 return min(zone_idx, f->zbd_info->nr_zones);
53}
54
55/**
56 * zbd_zone_end - Return zone end location
57 * @z: zone info pointer.
58 */
59static inline uint64_t zbd_zone_end(const struct fio_zone_info *z)
60{
61 return (z+1)->start;
62}
63
64/**
65 * zbd_zone_capacity_end - Return zone capacity limit end location
66 * @z: zone info pointer.
67 */
68static inline uint64_t zbd_zone_capacity_end(const struct fio_zone_info *z)
69{
70 return z->start + z->capacity;
71}
72
df67bf1e
SK
73/**
74 * zbd_zone_remainder - Return the number of bytes that are still available for
75 * writing before the zone gets full
76 * @z: zone info pointer.
77 */
78static inline uint64_t zbd_zone_remainder(struct fio_zone_info *z)
79{
80 if (z->wp >= zbd_zone_capacity_end(z))
81 return 0;
82
83 return zbd_zone_capacity_end(z) - z->wp;
84}
85
410a071c
DLM
86/**
87 * zbd_zone_full - verify whether a minimum number of bytes remain in a zone
88 * @f: file pointer.
89 * @z: zone info pointer.
90 * @required: minimum number of bytes that must remain in a zone.
91 *
92 * The caller must hold z->mutex.
93 */
94static bool zbd_zone_full(const struct fio_file *f, struct fio_zone_info *z,
95 uint64_t required)
96{
97 assert((required & 511) == 0);
98
df67bf1e 99 return z->has_wp && required > zbd_zone_remainder(z);
410a071c
DLM
100}
101
102static void zone_lock(struct thread_data *td, const struct fio_file *f,
103 struct fio_zone_info *z)
104{
105 struct zoned_block_device_info *zbd = f->zbd_info;
106 uint32_t nz = z - zbd->zone_info;
107
108 /* A thread should never lock zones outside its working area. */
109 assert(f->min_zone <= nz && nz < f->max_zone);
110
111 assert(z->has_wp);
112
113 /*
114 * Lock the io_u target zone. The zone will be unlocked if io_u offset
115 * is changed or when io_u completes and zbd_put_io() executed.
116 * To avoid multiple jobs doing asynchronous I/Os from deadlocking each
117 * other waiting for zone locks when building an io_u batch, first
118 * only trylock the zone. If the zone is already locked by another job,
119 * process the currently queued I/Os so that I/O progress is made and
120 * zones unlocked.
121 */
122 if (pthread_mutex_trylock(&z->mutex) != 0) {
123 if (!td_ioengine_flagged(td, FIO_SYNCIO))
124 io_u_quiesce(td);
125 pthread_mutex_lock(&z->mutex);
126 }
127}
128
129static inline void zone_unlock(struct fio_zone_info *z)
130{
131 int ret;
132
133 assert(z->has_wp);
134 ret = pthread_mutex_unlock(&z->mutex);
135 assert(!ret);
136}
137
39e06ee7
DLM
138static inline struct fio_zone_info *zbd_get_zone(const struct fio_file *f,
139 unsigned int zone_idx)
410a071c 140{
39e06ee7 141 return &f->zbd_info->zone_info[zone_idx];
410a071c
DLM
142}
143
53aa6171
DLM
144static inline struct fio_zone_info *
145zbd_offset_to_zone(const struct fio_file *f, uint64_t offset)
146{
147 return zbd_get_zone(f, zbd_offset_to_zone_idx(f, offset));
148}
149
2fb29f27
SK
150static bool accounting_vdb(struct thread_data *td, const struct fio_file *f)
151{
152 return td->o.zrt.u.f && td_write(td);
153}
154
b7694961
DLM
155/**
156 * zbd_get_zoned_model - Get a device zoned model
157 * @td: FIO thread data
158 * @f: FIO file for which to get model information
159 */
38334c13
DLM
160static int zbd_get_zoned_model(struct thread_data *td, struct fio_file *f,
161 enum zbd_zoned_model *model)
b7694961
DLM
162{
163 int ret;
164
50cc48d5
NC
165 if (f->filetype == FIO_TYPE_PIPE) {
166 log_err("zonemode=zbd does not support pipes\n");
167 return -EINVAL;
168 }
169
9db0cde8
NC
170 /* If regular file, always emulate zones inside the file. */
171 if (f->filetype == FIO_TYPE_FILE) {
172 *model = ZBD_NONE;
173 return 0;
174 }
175
6c5b11d3
DLM
176 if (td->io_ops && td->io_ops->get_zoned_model)
177 ret = td->io_ops->get_zoned_model(td, f, model);
178 else
179 ret = blkzoned_get_zoned_model(td, f, model);
b7694961
DLM
180 if (ret < 0) {
181 td_verror(td, errno, "get zoned model failed");
182 log_err("%s: get zoned model failed (%d).\n",
183 f->file_name, errno);
184 }
185
186 return ret;
187}
188
189/**
190 * zbd_report_zones - Get zone information
191 * @td: FIO thread data.
192 * @f: FIO file for which to get zone information
193 * @offset: offset from which to report zones
194 * @zones: Array of struct zbd_zone
195 * @nr_zones: Size of @zones array
196 *
197 * Get zone information into @zones starting from the zone at offset @offset
198 * for the device specified by @f.
199 *
200 * Returns the number of zones reported upon success and a negative error code
201 * upon failure. If the zone report is empty, always assume an error (device
202 * problem) and return -EIO.
203 */
38334c13
DLM
204static int zbd_report_zones(struct thread_data *td, struct fio_file *f,
205 uint64_t offset, struct zbd_zone *zones,
206 unsigned int nr_zones)
b7694961
DLM
207{
208 int ret;
209
6c5b11d3
DLM
210 if (td->io_ops && td->io_ops->report_zones)
211 ret = td->io_ops->report_zones(td, f, offset, zones, nr_zones);
212 else
213 ret = blkzoned_report_zones(td, f, offset, zones, nr_zones);
b7694961
DLM
214 if (ret < 0) {
215 td_verror(td, errno, "report zones failed");
ee5e3436
SK
216 log_err("%s: report zones from sector %"PRIu64" failed (%d).\n",
217 f->file_name, offset >> 9, errno);
b7694961
DLM
218 } else if (ret == 0) {
219 td_verror(td, errno, "Empty zone report");
ee5e3436
SK
220 log_err("%s: report zones from sector %"PRIu64" is empty.\n",
221 f->file_name, offset >> 9);
b7694961
DLM
222 ret = -EIO;
223 }
224
225 return ret;
226}
227
228/**
229 * zbd_reset_wp - reset the write pointer of a range of zones
230 * @td: FIO thread data.
231 * @f: FIO file for which to reset zones
232 * @offset: Starting offset of the first zone to reset
233 * @length: Length of the range of zones to reset
234 *
235 * Reset the write pointer of all zones in the range @offset...@offset+@length.
236 * Returns 0 upon success and a negative error code upon failure.
237 */
38334c13
DLM
238static int zbd_reset_wp(struct thread_data *td, struct fio_file *f,
239 uint64_t offset, uint64_t length)
b7694961
DLM
240{
241 int ret;
242
6c5b11d3
DLM
243 if (td->io_ops && td->io_ops->reset_wp)
244 ret = td->io_ops->reset_wp(td, f, offset, length);
245 else
246 ret = blkzoned_reset_wp(td, f, offset, length);
b7694961
DLM
247 if (ret < 0) {
248 td_verror(td, errno, "resetting wp failed");
ee5e3436
SK
249 log_err("%s: resetting wp for %"PRIu64" sectors at sector %"PRIu64" failed (%d).\n",
250 f->file_name, length >> 9, offset >> 9, errno);
b7694961
DLM
251 }
252
253 return ret;
254}
255
410a071c
DLM
256/**
257 * zbd_reset_zone - reset the write pointer of a single zone
258 * @td: FIO thread data.
259 * @f: FIO file associated with the disk for which to reset a write pointer.
260 * @z: Zone to reset.
261 *
262 * Returns 0 upon success and a negative error code upon failure.
263 *
264 * The caller must hold z->mutex.
265 */
266static int zbd_reset_zone(struct thread_data *td, struct fio_file *f,
267 struct fio_zone_info *z)
268{
269 uint64_t offset = z->start;
270 uint64_t length = (z+1)->start - offset;
271 uint64_t data_in_zone = z->wp - z->start;
272 int ret = 0;
273
274 if (!data_in_zone)
275 return 0;
276
277 assert(is_valid_offset(f, offset + length - 1));
278
139d8dc6 279 dprint(FD_ZBD, "%s: resetting wp of zone %u.\n",
dc8a3d62 280 f->file_name, zbd_zone_idx(f, z));
139d8dc6 281
410a071c
DLM
282 switch (f->zbd_info->model) {
283 case ZBD_HOST_AWARE:
284 case ZBD_HOST_MANAGED:
285 ret = zbd_reset_wp(td, f, offset, length);
286 if (ret < 0)
287 return ret;
288 break;
289 default:
290 break;
291 }
292
2fb29f27
SK
293 if (accounting_vdb(td, f)) {
294 pthread_mutex_lock(&f->zbd_info->mutex);
295 f->zbd_info->wp_valid_data_bytes -= data_in_zone;
296 pthread_mutex_unlock(&f->zbd_info->mutex);
297 }
139d8dc6 298
410a071c 299 z->wp = z->start;
410a071c
DLM
300
301 td->ts.nr_zone_resets++;
302
303 return ret;
304}
305
306/**
307 * zbd_close_zone - Remove a zone from the open zones array.
308 * @td: FIO thread data.
309 * @f: FIO file associated with the disk for which to reset a write pointer.
310 * @zone_idx: Index of the zone to remove.
311 *
312 * The caller must hold f->zbd_info->mutex.
313 */
314static void zbd_close_zone(struct thread_data *td, const struct fio_file *f,
a23411bb 315 struct fio_zone_info *z)
410a071c 316{
a23411bb 317 uint32_t ozi;
410a071c 318
a23411bb
DLM
319 if (!z->open)
320 return;
321
322 for (ozi = 0; ozi < f->zbd_info->num_open_zones; ozi++) {
39e06ee7 323 if (zbd_get_zone(f, f->zbd_info->open_zones[ozi]) == z)
410a071c
DLM
324 break;
325 }
a23411bb 326 if (ozi == f->zbd_info->num_open_zones)
410a071c
DLM
327 return;
328
a23411bb 329 dprint(FD_ZBD, "%s: closing zone %u\n",
dc8a3d62 330 f->file_name, zbd_zone_idx(f, z));
139d8dc6 331
a23411bb
DLM
332 memmove(f->zbd_info->open_zones + ozi,
333 f->zbd_info->open_zones + ozi + 1,
334 (ZBD_MAX_OPEN_ZONES - (ozi + 1)) *
410a071c 335 sizeof(f->zbd_info->open_zones[0]));
139d8dc6 336
410a071c
DLM
337 f->zbd_info->num_open_zones--;
338 td->num_open_zones--;
a23411bb 339 z->open = 0;
410a071c
DLM
340}
341
e1a1b59b
SK
342/**
343 * zbd_finish_zone - finish the specified zone
344 * @td: FIO thread data.
345 * @f: FIO file for which to finish a zone
346 * @z: Zone to finish.
347 *
348 * Finish the zone at @offset with open or close status.
349 */
350static int zbd_finish_zone(struct thread_data *td, struct fio_file *f,
351 struct fio_zone_info *z)
352{
353 uint64_t offset = z->start;
354 uint64_t length = f->zbd_info->zone_size;
355 int ret = 0;
356
357 switch (f->zbd_info->model) {
358 case ZBD_HOST_AWARE:
359 case ZBD_HOST_MANAGED:
360 if (td->io_ops && td->io_ops->finish_zone)
361 ret = td->io_ops->finish_zone(td, f, offset, length);
362 else
363 ret = blkzoned_finish_zone(td, f, offset, length);
364 break;
365 default:
366 break;
367 }
368
369 if (ret < 0) {
370 td_verror(td, errno, "finish zone failed");
371 log_err("%s: finish zone at sector %"PRIu64" failed (%d).\n",
372 f->file_name, offset >> 9, errno);
373 } else {
374 z->wp = (z+1)->start;
375 }
376
377 return ret;
378}
379
410a071c
DLM
380/**
381 * zbd_reset_zones - Reset a range of zones.
382 * @td: fio thread data.
383 * @f: fio file for which to reset zones
384 * @zb: first zone to reset.
385 * @ze: first zone not to reset.
386 *
387 * Returns 0 upon success and 1 upon failure.
388 */
389static int zbd_reset_zones(struct thread_data *td, struct fio_file *f,
390 struct fio_zone_info *const zb,
391 struct fio_zone_info *const ze)
392{
393 struct fio_zone_info *z;
394 const uint64_t min_bs = td->o.min_bs[DDIR_WRITE];
395 int res = 0;
396
397 assert(min_bs);
398
139d8dc6 399 dprint(FD_ZBD, "%s: examining zones %u .. %u\n",
dc8a3d62 400 f->file_name, zbd_zone_idx(f, zb), zbd_zone_idx(f, ze));
139d8dc6 401
410a071c 402 for (z = zb; z < ze; z++) {
410a071c
DLM
403 if (!z->has_wp)
404 continue;
139d8dc6 405
410a071c
DLM
406 zone_lock(td, f, z);
407 pthread_mutex_lock(&f->zbd_info->mutex);
a23411bb 408 zbd_close_zone(td, f, z);
410a071c 409 pthread_mutex_unlock(&f->zbd_info->mutex);
139d8dc6 410
410a071c
DLM
411 if (z->wp != z->start) {
412 dprint(FD_ZBD, "%s: resetting zone %u\n",
dc8a3d62 413 f->file_name, zbd_zone_idx(f, z));
410a071c
DLM
414 if (zbd_reset_zone(td, f, z) < 0)
415 res = 1;
416 }
139d8dc6 417
410a071c
DLM
418 zone_unlock(z);
419 }
420
421 return res;
422}
423
d2f442bc
NC
424/**
425 * zbd_get_max_open_zones - Get the maximum number of open zones
426 * @td: FIO thread data
427 * @f: FIO file for which to get max open zones
428 * @max_open_zones: Upon success, result will be stored here.
429 *
430 * A @max_open_zones value set to zero means no limit.
431 *
432 * Returns 0 upon success and a negative error code upon failure.
433 */
38334c13
DLM
434static int zbd_get_max_open_zones(struct thread_data *td, struct fio_file *f,
435 unsigned int *max_open_zones)
d2f442bc
NC
436{
437 int ret;
438
439 if (td->io_ops && td->io_ops->get_max_open_zones)
440 ret = td->io_ops->get_max_open_zones(td, f, max_open_zones);
441 else
442 ret = blkzoned_get_max_open_zones(td, f, max_open_zones);
443 if (ret < 0) {
444 td_verror(td, errno, "get max open zones failed");
445 log_err("%s: get max open zones failed (%d).\n",
446 f->file_name, errno);
447 }
448
449 return ret;
450}
451
bfbdd35b 452/**
410a071c
DLM
453 * zbd_open_zone - Add a zone to the array of open zones.
454 * @td: fio thread data.
455 * @f: fio file that has the open zones to add.
456 * @zone_idx: Index of the zone to add.
bfbdd35b 457 *
410a071c
DLM
458 * Open a ZBD zone if it is not already open. Returns true if either the zone
459 * was already open or if the zone was successfully added to the array of open
460 * zones without exceeding the maximum number of open zones. Returns false if
461 * the zone was not already open and opening the zone would cause the zone limit
462 * to be exceeded.
bfbdd35b 463 */
410a071c 464static bool zbd_open_zone(struct thread_data *td, const struct fio_file *f,
aad7c276 465 struct fio_zone_info *z)
1f57803b 466{
410a071c
DLM
467 const uint64_t min_bs = td->o.min_bs[DDIR_WRITE];
468 struct zoned_block_device_info *zbdi = f->zbd_info;
dc8a3d62 469 uint32_t zone_idx = zbd_zone_idx(f, z);
410a071c 470 bool res = true;
fae3b9a0 471
410a071c
DLM
472 if (z->cond == ZBD_ZONE_COND_OFFLINE)
473 return false;
43bcbd5b 474
1f57803b 475 /*
410a071c
DLM
476 * Skip full zones with data verification enabled because resetting a
477 * zone causes data loss and hence causes verification to fail.
1f57803b 478 */
410a071c
DLM
479 if (td->o.verify != VERIFY_NONE && zbd_zone_full(f, z, min_bs))
480 return false;
4d4c71e6 481
410a071c
DLM
482 /*
483 * zbdi->max_open_zones == 0 means that there is no limit on the maximum
484 * number of open zones. In this case, do no track open zones in
485 * zbdi->open_zones array.
486 */
487 if (!zbdi->max_open_zones)
488 return true;
4d4c71e6 489
410a071c 490 pthread_mutex_lock(&zbdi->mutex);
b5a0f7ce
DLM
491
492 if (z->open) {
410a071c 493 /*
b5a0f7ce
DLM
494 * If the zone is going to be completely filled by writes
495 * already in-flight, handle it as a full zone instead of an
496 * open zone.
410a071c 497 */
df67bf1e 498 if (!zbd_zone_remainder(z))
410a071c
DLM
499 res = false;
500 goto out;
501 }
139d8dc6 502
410a071c
DLM
503 res = false;
504 /* Zero means no limit */
505 if (td->o.job_max_open_zones > 0 &&
506 td->num_open_zones >= td->o.job_max_open_zones)
507 goto out;
508 if (zbdi->num_open_zones >= zbdi->max_open_zones)
509 goto out;
139d8dc6 510
aad7c276 511 dprint(FD_ZBD, "%s: opening zone %u\n",
139d8dc6
DLM
512 f->file_name, zone_idx);
513
410a071c
DLM
514 zbdi->open_zones[zbdi->num_open_zones++] = zone_idx;
515 td->num_open_zones++;
516 z->open = 1;
517 res = true;
bfbdd35b 518
410a071c
DLM
519out:
520 pthread_mutex_unlock(&zbdi->mutex);
521 return res;
923f7c1e
DF
522}
523
59c3200d 524/* Verify whether direct I/O is used for all host-managed zoned block drives. */
bfbdd35b
BVA
525static bool zbd_using_direct_io(void)
526{
bfbdd35b 527 struct fio_file *f;
da8f124f 528 int j;
bfbdd35b 529
da8f124f 530 for_each_td(td) {
bfbdd35b
BVA
531 if (td->o.odirect || !(td->o.td_ddir & TD_DDIR_WRITE))
532 continue;
533 for_each_file(td, f, j) {
59c3200d 534 if (f->zbd_info && f->filetype == FIO_TYPE_BLOCK &&
b7694961 535 f->zbd_info->model == ZBD_HOST_MANAGED)
bfbdd35b
BVA
536 return false;
537 }
da8f124f 538 } end_for_each();
bfbdd35b
BVA
539
540 return true;
541}
542
543/* Whether or not the I/O range for f includes one or more sequential zones */
b3e9bd03 544static bool zbd_is_seq_job(const struct fio_file *f)
bfbdd35b
BVA
545{
546 uint32_t zone_idx, zone_idx_b, zone_idx_e;
547
548 assert(f->zbd_info);
139d8dc6 549
bfbdd35b
BVA
550 if (f->io_size == 0)
551 return false;
139d8dc6 552
dc8a3d62
DLM
553 zone_idx_b = zbd_offset_to_zone_idx(f, f->file_offset);
554 zone_idx_e =
555 zbd_offset_to_zone_idx(f, f->file_offset + f->io_size - 1);
bfbdd35b 556 for (zone_idx = zone_idx_b; zone_idx <= zone_idx_e; zone_idx++)
39e06ee7 557 if (zbd_get_zone(f, zone_idx)->has_wp)
bfbdd35b
BVA
558 return true;
559
560 return false;
561}
562
0bf93a1a
DLM
563/*
564 * Verify whether the file offset and size parameters are aligned with zone
565 * boundaries. If the file offset is not aligned, align it down to the start of
566 * the zone containing the start offset and align up the file io_size parameter.
567 */
568static bool zbd_zone_align_file_sizes(struct thread_data *td,
569 struct fio_file *f)
570{
571 const struct fio_zone_info *z;
572 uint64_t new_offset, new_end;
0bf93a1a
DLM
573
574 if (!f->zbd_info)
575 return true;
576 if (f->file_offset >= f->real_file_size)
577 return true;
578 if (!zbd_is_seq_job(f))
579 return true;
580
581 if (!td->o.zone_size) {
582 td->o.zone_size = f->zbd_info->zone_size;
583 if (!td->o.zone_size) {
584 log_err("%s: invalid 0 zone size\n",
585 f->file_name);
586 return false;
587 }
588 } else if (td->o.zone_size != f->zbd_info->zone_size) {
589 log_err("%s: zonesize %llu does not match the device zone size %"PRIu64".\n",
590 f->file_name, td->o.zone_size,
591 f->zbd_info->zone_size);
592 return false;
593 }
594
595 if (td->o.zone_skip % td->o.zone_size) {
596 log_err("%s: zoneskip %llu is not a multiple of the device zone size %llu.\n",
597 f->file_name, td->o.zone_skip,
598 td->o.zone_size);
599 return false;
600 }
601
53aa6171 602 z = zbd_offset_to_zone(f, f->file_offset);
0bf93a1a
DLM
603 if ((f->file_offset != z->start) &&
604 (td->o.td_ddir != TD_DDIR_READ)) {
605 new_offset = zbd_zone_end(z);
606 if (new_offset >= f->file_offset + f->io_size) {
607 log_info("%s: io_size must be at least one zone\n",
608 f->file_name);
609 return false;
610 }
611 log_info("%s: rounded up offset from %"PRIu64" to %"PRIu64"\n",
612 f->file_name, f->file_offset,
613 new_offset);
614 f->io_size -= (new_offset - f->file_offset);
615 f->file_offset = new_offset;
616 }
617
53aa6171 618 z = zbd_offset_to_zone(f, f->file_offset + f->io_size);
0bf93a1a
DLM
619 new_end = z->start;
620 if ((td->o.td_ddir != TD_DDIR_READ) &&
621 (f->file_offset + f->io_size != new_end)) {
622 if (new_end <= f->file_offset) {
623 log_info("%s: io_size must be at least one zone\n",
624 f->file_name);
625 return false;
626 }
627 log_info("%s: rounded down io_size from %"PRIu64" to %"PRIu64"\n",
628 f->file_name, f->io_size,
629 new_end - f->file_offset);
630 f->io_size = new_end - f->file_offset;
631 }
632
633 return true;
634}
635
bfbdd35b
BVA
636/*
637 * Verify whether offset and size parameters are aligned with zone boundaries.
638 */
639static bool zbd_verify_sizes(void)
640{
bfbdd35b 641 struct fio_file *f;
da8f124f 642 int j;
bfbdd35b 643
da8f124f 644 for_each_td(td) {
bfbdd35b 645 for_each_file(td, f, j) {
0bf93a1a 646 if (!zbd_zone_align_file_sizes(td, f))
4d37720a 647 return false;
bfbdd35b 648 }
da8f124f 649 } end_for_each();
bfbdd35b
BVA
650
651 return true;
652}
653
654static bool zbd_verify_bs(void)
655{
bfbdd35b 656 struct fio_file *f;
da8f124f 657 int j;
bfbdd35b 658
da8f124f 659 for_each_td(td) {
e3be810b
SK
660 if (td_trim(td) &&
661 (td->o.min_bs[DDIR_TRIM] != td->o.max_bs[DDIR_TRIM] ||
662 td->o.bssplit_nr[DDIR_TRIM])) {
663 log_info("bsrange and bssplit are not allowed for trim with zonemode=zbd\n");
664 return false;
665 }
bfbdd35b 666 for_each_file(td, f, j) {
1ddd225e
AD
667 uint64_t zone_size;
668
bfbdd35b
BVA
669 if (!f->zbd_info)
670 continue;
139d8dc6 671
bfbdd35b 672 zone_size = f->zbd_info->zone_size;
e3be810b 673 if (td_trim(td) && td->o.bs[DDIR_TRIM] != zone_size) {
ee5e3436 674 log_info("%s: trim block size %llu is not the zone size %"PRIu64"\n",
e3be810b 675 f->file_name, td->o.bs[DDIR_TRIM],
ee5e3436 676 zone_size);
e3be810b
SK
677 return false;
678 }
bfbdd35b 679 }
da8f124f 680 } end_for_each();
bfbdd35b
BVA
681 return true;
682}
683
bfbdd35b
BVA
684static int ilog2(uint64_t i)
685{
686 int log = -1;
687
688 while (i) {
689 i >>= 1;
690 log++;
691 }
692 return log;
693}
694
695/*
696 * Initialize f->zbd_info for devices that are not zoned block devices. This
697 * allows to execute a ZBD workload against a non-ZBD device.
698 */
699static int init_zone_info(struct thread_data *td, struct fio_file *f)
700{
701 uint32_t nr_zones;
702 struct fio_zone_info *p;
a4b7f12b 703 uint64_t zone_size = td->o.zone_size;
b8dd9750 704 uint64_t zone_capacity = td->o.zone_capacity;
bfbdd35b 705 struct zoned_block_device_info *zbd_info = NULL;
bfbdd35b
BVA
706 int i;
707
a4b7f12b 708 if (zone_size == 0) {
9db0cde8 709 log_err("%s: Specifying the zone size is mandatory for regular file/block device with --zonemode=zbd\n\n",
a4b7f12b
DLM
710 f->file_name);
711 return 1;
712 }
713
714 if (zone_size < 512) {
715 log_err("%s: zone size must be at least 512 bytes for --zonemode=zbd\n\n",
716 f->file_name);
717 return 1;
718 }
719
b8dd9750
HH
720 if (zone_capacity == 0)
721 zone_capacity = zone_size;
722
723 if (zone_capacity > zone_size) {
724 log_err("%s: job parameter zonecapacity %llu is larger than zone size %llu\n",
ee5e3436 725 f->file_name, td->o.zone_capacity, td->o.zone_size);
b8dd9750
HH
726 return 1;
727 }
728
9db0cde8
NC
729 if (f->real_file_size < zone_size) {
730 log_err("%s: file/device size %"PRIu64" is smaller than zone size %"PRIu64"\n",
731 f->file_name, f->real_file_size, zone_size);
732 return -EINVAL;
733 }
734
ee3696bd 735 nr_zones = (f->real_file_size + zone_size - 1) / zone_size;
bfbdd35b
BVA
736 zbd_info = scalloc(1, sizeof(*zbd_info) +
737 (nr_zones + 1) * sizeof(zbd_info->zone_info[0]));
738 if (!zbd_info)
739 return -ENOMEM;
740
44ec32cb 741 mutex_init_pshared(&zbd_info->mutex);
bfbdd35b
BVA
742 zbd_info->refcount = 1;
743 p = &zbd_info->zone_info[0];
744 for (i = 0; i < nr_zones; i++, p++) {
44ec32cb
SK
745 mutex_init_pshared_with_type(&p->mutex,
746 PTHREAD_MUTEX_RECURSIVE);
bfbdd35b 747 p->start = i * zone_size;
b14651a2 748 p->wp = p->start;
b7694961
DLM
749 p->type = ZBD_ZONE_TYPE_SWR;
750 p->cond = ZBD_ZONE_COND_EMPTY;
b8dd9750 751 p->capacity = zone_capacity;
be7a6bae 752 p->has_wp = 1;
bfbdd35b
BVA
753 }
754 /* a sentinel */
755 p->start = nr_zones * zone_size;
756
757 f->zbd_info = zbd_info;
758 f->zbd_info->zone_size = zone_size;
759 f->zbd_info->zone_size_log2 = is_power_of_2(zone_size) ?
ebc403fe 760 ilog2(zone_size) : 0;
bfbdd35b 761 f->zbd_info->nr_zones = nr_zones;
bfbdd35b
BVA
762 return 0;
763}
764
765/*
b7694961
DLM
766 * Maximum number of zones to report in one operation.
767 */
768#define ZBD_REPORT_MAX_ZONES 8192U
769
770/*
771 * Parse the device zone report and store it in f->zbd_info. Must be called
772 * only for devices that are zoned, namely those with a model != ZBD_NONE.
bfbdd35b
BVA
773 */
774static int parse_zone_info(struct thread_data *td, struct fio_file *f)
775{
b7694961
DLM
776 int nr_zones, nrz;
777 struct zbd_zone *zones, *z;
bfbdd35b 778 struct fio_zone_info *p;
b7694961 779 uint64_t zone_size, offset;
bfbdd35b 780 struct zoned_block_device_info *zbd_info = NULL;
d060babc 781 int i, j, ret = -ENOMEM;
bfbdd35b 782
b7694961
DLM
783 zones = calloc(ZBD_REPORT_MAX_ZONES, sizeof(struct zbd_zone));
784 if (!zones)
bfbdd35b
BVA
785 goto out;
786
b7694961
DLM
787 nrz = zbd_report_zones(td, f, 0, zones, ZBD_REPORT_MAX_ZONES);
788 if (nrz < 0) {
789 ret = nrz;
790 log_info("fio: report zones (offset 0) failed for %s (%d).\n",
791 f->file_name, -ret);
792 goto out;
bfbdd35b
BVA
793 }
794
b7694961 795 zone_size = zones[0].len;
ee3696bd 796 nr_zones = (f->real_file_size + zone_size - 1) / zone_size;
bfbdd35b
BVA
797
798 if (td->o.zone_size == 0) {
ee3696bd
DLM
799 td->o.zone_size = zone_size;
800 } else if (td->o.zone_size != zone_size) {
ee5e3436
SK
801 log_err("fio: %s job parameter zonesize %llu does not match disk zone size %"PRIu64".\n",
802 f->file_name, td->o.zone_size, zone_size);
bfbdd35b 803 ret = -EINVAL;
b7694961 804 goto out;
bfbdd35b
BVA
805 }
806
9724b4f5
NC
807 dprint(FD_ZBD, "Device %s has %d zones of size %"PRIu64" KB\n",
808 f->file_name, nr_zones, zone_size / 1024);
bfbdd35b
BVA
809
810 zbd_info = scalloc(1, sizeof(*zbd_info) +
811 (nr_zones + 1) * sizeof(zbd_info->zone_info[0]));
bfbdd35b 812 if (!zbd_info)
b7694961 813 goto out;
44ec32cb 814 mutex_init_pshared(&zbd_info->mutex);
bfbdd35b
BVA
815 zbd_info->refcount = 1;
816 p = &zbd_info->zone_info[0];
b7694961
DLM
817 for (offset = 0, j = 0; j < nr_zones;) {
818 z = &zones[0];
819 for (i = 0; i < nrz; i++, j++, z++, p++) {
44ec32cb
SK
820 mutex_init_pshared_with_type(&p->mutex,
821 PTHREAD_MUTEX_RECURSIVE);
b7694961 822 p->start = z->start;
236d23a8 823 p->capacity = z->capacity;
139d8dc6 824
bfbdd35b 825 switch (z->cond) {
b7694961
DLM
826 case ZBD_ZONE_COND_NOT_WP:
827 case ZBD_ZONE_COND_FULL:
236d23a8 828 p->wp = p->start + p->capacity;
bfbdd35b
BVA
829 break;
830 default:
831 assert(z->start <= z->wp);
b7694961
DLM
832 assert(z->wp <= z->start + zone_size);
833 p->wp = z->wp;
bfbdd35b
BVA
834 break;
835 }
be7a6bae
DF
836
837 switch (z->type) {
838 case ZBD_ZONE_TYPE_SWR:
839 p->has_wp = 1;
840 break;
841 default:
842 p->has_wp = 0;
843 }
bfbdd35b
BVA
844 p->type = z->type;
845 p->cond = z->cond;
be7a6bae 846
bfbdd35b 847 if (j > 0 && p->start != p[-1].start + zone_size) {
adfa7b7c
BVA
848 log_info("%s: invalid zone data [%d:%d]: %"PRIu64" + %"PRIu64" != %"PRIu64"\n",
849 f->file_name, j, i,
850 p[-1].start, zone_size, p->start);
bfbdd35b 851 ret = -EINVAL;
b7694961 852 goto out;
bfbdd35b
BVA
853 }
854 }
855 z--;
b7694961 856 offset = z->start + z->len;
bfbdd35b
BVA
857 if (j >= nr_zones)
858 break;
139d8dc6 859
6c3f1cc1
DF
860 nrz = zbd_report_zones(td, f, offset, zones,
861 min((uint32_t)(nr_zones - j),
862 ZBD_REPORT_MAX_ZONES));
b7694961
DLM
863 if (nrz < 0) {
864 ret = nrz;
ee5e3436
SK
865 log_info("fio: report zones (offset %"PRIu64") failed for %s (%d).\n",
866 offset, f->file_name, -ret);
b7694961 867 goto out;
bfbdd35b
BVA
868 }
869 }
b7694961 870
bfbdd35b 871 /* a sentinel */
b7694961 872 zbd_info->zone_info[nr_zones].start = offset;
bfbdd35b
BVA
873
874 f->zbd_info = zbd_info;
875 f->zbd_info->zone_size = zone_size;
876 f->zbd_info->zone_size_log2 = is_power_of_2(zone_size) ?
ebc403fe 877 ilog2(zone_size) : 0;
bfbdd35b
BVA
878 f->zbd_info->nr_zones = nr_zones;
879 zbd_info = NULL;
880 ret = 0;
881
bfbdd35b 882out:
b7694961
DLM
883 sfree(zbd_info);
884 free(zones);
bfbdd35b
BVA
885 return ret;
886}
887
d2f442bc
NC
888static int zbd_set_max_open_zones(struct thread_data *td, struct fio_file *f)
889{
890 struct zoned_block_device_info *zbd = f->zbd_info;
891 unsigned int max_open_zones;
892 int ret;
893
575686bb 894 if (zbd->model != ZBD_HOST_MANAGED || td->o.ignore_zone_limits) {
d2f442bc
NC
895 /* Only host-managed devices have a max open limit */
896 zbd->max_open_zones = td->o.max_open_zones;
897 goto out;
898 }
899
900 /* If host-managed, get the max open limit */
901 ret = zbd_get_max_open_zones(td, f, &max_open_zones);
902 if (ret)
903 return ret;
904
905 if (!max_open_zones) {
906 /* No device limit */
907 zbd->max_open_zones = td->o.max_open_zones;
908 } else if (!td->o.max_open_zones) {
909 /* No user limit. Set limit to device limit */
910 zbd->max_open_zones = max_open_zones;
911 } else if (td->o.max_open_zones <= max_open_zones) {
912 /* Both user limit and dev limit. User limit not too large */
913 zbd->max_open_zones = td->o.max_open_zones;
914 } else {
915 /* Both user limit and dev limit. User limit too large */
916 td_verror(td, EINVAL,
917 "Specified --max_open_zones is too large");
918 log_err("Specified --max_open_zones (%d) is larger than max (%u)\n",
919 td->o.max_open_zones, max_open_zones);
920 return -EINVAL;
921 }
922
923out:
924 /* Ensure that the limit is not larger than FIO's internal limit */
b346af90
NC
925 if (zbd->max_open_zones > ZBD_MAX_OPEN_ZONES) {
926 td_verror(td, EINVAL, "'max_open_zones' value is too large");
139d8dc6
DLM
927 log_err("'max_open_zones' value is larger than %u\n",
928 ZBD_MAX_OPEN_ZONES);
b346af90
NC
929 return -EINVAL;
930 }
931
d2f442bc
NC
932 dprint(FD_ZBD, "%s: using max open zones limit: %"PRIu32"\n",
933 f->file_name, zbd->max_open_zones);
934
935 return 0;
936}
937
bfbdd35b
BVA
938/*
939 * Allocate zone information and store it into f->zbd_info if zonemode=zbd.
940 *
941 * Returns 0 upon success and a negative error code upon failure.
942 */
379e5f09 943static int zbd_create_zone_info(struct thread_data *td, struct fio_file *f)
bfbdd35b 944{
b7694961
DLM
945 enum zbd_zoned_model zbd_model;
946 int ret;
bfbdd35b
BVA
947
948 assert(td->o.zone_mode == ZONE_MODE_ZBD);
949
b7694961
DLM
950 ret = zbd_get_zoned_model(td, f, &zbd_model);
951 if (ret)
952 return ret;
953
bfbdd35b 954 switch (zbd_model) {
b7694961
DLM
955 case ZBD_HOST_AWARE:
956 case ZBD_HOST_MANAGED:
bfbdd35b 957 ret = parse_zone_info(td, f);
d2f442bc
NC
958 if (ret)
959 return ret;
bfbdd35b 960 break;
b7694961 961 case ZBD_NONE:
bfbdd35b 962 ret = init_zone_info(td, f);
d2f442bc
NC
963 if (ret)
964 return ret;
bfbdd35b 965 break;
b7694961
DLM
966 default:
967 td_verror(td, EINVAL, "Unsupported zoned model");
968 log_err("Unsupported zoned model\n");
969 return -EINVAL;
bfbdd35b 970 }
b7694961 971
2c7dd23e 972 assert(f->zbd_info);
d2f442bc
NC
973 f->zbd_info->model = zbd_model;
974
975 ret = zbd_set_max_open_zones(td, f);
976 if (ret) {
977 zbd_free_zone_info(f);
978 return ret;
219c662d 979 }
d2f442bc
NC
980
981 return 0;
bfbdd35b
BVA
982}
983
984void zbd_free_zone_info(struct fio_file *f)
985{
986 uint32_t refcount;
987
3c1dc34c 988 assert(f->zbd_info);
bfbdd35b
BVA
989
990 pthread_mutex_lock(&f->zbd_info->mutex);
991 refcount = --f->zbd_info->refcount;
992 pthread_mutex_unlock(&f->zbd_info->mutex);
993
994 assert((int32_t)refcount >= 0);
995 if (refcount == 0)
996 sfree(f->zbd_info);
997 f->zbd_info = NULL;
998}
999
1000/*
1001 * Initialize f->zbd_info.
1002 *
1003 * Returns 0 upon success and a negative error code upon failure.
1004 *
1005 * Note: this function can only work correctly if it is called before the first
1006 * fio fork() call.
1007 */
1008static int zbd_init_zone_info(struct thread_data *td, struct fio_file *file)
1009{
bfbdd35b 1010 struct fio_file *f2;
da8f124f 1011 int j, ret;
bfbdd35b 1012
da8f124f 1013 for_each_td(td2) {
bfbdd35b
BVA
1014 for_each_file(td2, f2, j) {
1015 if (td2 == td && f2 == file)
1016 continue;
1017 if (!f2->zbd_info ||
1018 strcmp(f2->file_name, file->file_name) != 0)
1019 continue;
1020 file->zbd_info = f2->zbd_info;
1021 file->zbd_info->refcount++;
1022 return 0;
1023 }
da8f124f 1024 } end_for_each();
bfbdd35b
BVA
1025
1026 ret = zbd_create_zone_info(td, file);
1027 if (ret < 0)
c5837eec 1028 td_verror(td, -ret, "zbd_create_zone_info() failed");
139d8dc6 1029
bfbdd35b
BVA
1030 return ret;
1031}
1032
8f39afa7 1033int zbd_init_files(struct thread_data *td)
bfbdd35b
BVA
1034{
1035 struct fio_file *f;
1036 int i;
1037
1038 for_each_file(td, f, i) {
a4b7f12b 1039 if (zbd_init_zone_info(td, f))
bfbdd35b 1040 return 1;
bfbdd35b 1041 }
139d8dc6 1042
8f39afa7
AD
1043 return 0;
1044}
1045
1046void zbd_recalc_options_with_zone_granularity(struct thread_data *td)
1047{
1048 struct fio_file *f;
1049 int i;
1050
1051 for_each_file(td, f, i) {
1052 struct zoned_block_device_info *zbd = f->zbd_info;
139d8dc6 1053 uint64_t zone_size;
8f39afa7 1054
139d8dc6
DLM
1055 /* zonemode=strided doesn't get per-file zone size. */
1056 zone_size = zbd ? zbd->zone_size : td->o.zone_size;
8f39afa7
AD
1057 if (zone_size == 0)
1058 continue;
1059
139d8dc6 1060 if (td->o.size_nz > 0)
8f39afa7 1061 td->o.size = td->o.size_nz * zone_size;
139d8dc6 1062 if (td->o.io_size_nz > 0)
8f39afa7 1063 td->o.io_size = td->o.io_size_nz * zone_size;
139d8dc6 1064 if (td->o.start_offset_nz > 0)
8f39afa7 1065 td->o.start_offset = td->o.start_offset_nz * zone_size;
139d8dc6
DLM
1066 if (td->o.offset_increment_nz > 0)
1067 td->o.offset_increment =
1068 td->o.offset_increment_nz * zone_size;
1069 if (td->o.zone_skip_nz > 0)
8f39afa7 1070 td->o.zone_skip = td->o.zone_skip_nz * zone_size;
8f39afa7
AD
1071 }
1072}
1073
9fb714da
SK
1074static uint64_t zbd_verify_and_set_vdb(struct thread_data *td,
1075 const struct fio_file *f)
1076{
1077 struct fio_zone_info *zb, *ze, *z;
1078 uint64_t wp_vdb = 0;
1079 struct zoned_block_device_info *zbdi = f->zbd_info;
1080
1081 assert(td->runstate < TD_RUNNING);
1082 assert(zbdi);
1083
1084 if (!accounting_vdb(td, f))
1085 return 0;
1086
1087 /*
1088 * Ensure that the I/O range includes one or more sequential zones so
1089 * that f->min_zone and f->max_zone have different values.
1090 */
1091 if (!zbd_is_seq_job(f))
1092 return 0;
1093
1094 if (zbdi->write_min_zone != zbdi->write_max_zone) {
1095 if (zbdi->write_min_zone != f->min_zone ||
1096 zbdi->write_max_zone != f->max_zone) {
1097 td_verror(td, EINVAL,
1098 "multi-jobs with different write ranges are "
1099 "not supported with zone_reset_threshold");
1100 log_err("multi-jobs with different write ranges are "
1101 "not supported with zone_reset_threshold\n");
1102 }
1103 return 0;
1104 }
1105
1106 zbdi->write_min_zone = f->min_zone;
1107 zbdi->write_max_zone = f->max_zone;
1108
1109 zb = zbd_get_zone(f, f->min_zone);
1110 ze = zbd_get_zone(f, f->max_zone);
1111 for (z = zb; z < ze; z++)
1112 if (z->has_wp)
1113 wp_vdb += z->wp - z->start;
1114
1115 zbdi->wp_valid_data_bytes = wp_vdb;
1116
1117 return wp_vdb;
1118}
1119
8f39afa7
AD
1120int zbd_setup_files(struct thread_data *td)
1121{
1122 struct fio_file *f;
1123 int i;
bfbdd35b
BVA
1124
1125 if (!zbd_using_direct_io()) {
1126 log_err("Using direct I/O is mandatory for writing to ZBD drives\n\n");
1127 return 1;
1128 }
1129
1130 if (!zbd_verify_sizes())
1131 return 1;
1132
1133 if (!zbd_verify_bs())
1134 return 1;
1135
6e2da06a
SK
1136 if (td->o.experimental_verify) {
1137 log_err("zonemode=zbd does not support experimental verify\n");
1138 return 1;
1139 }
1140
219c662d
AD
1141 for_each_file(td, f, i) {
1142 struct zoned_block_device_info *zbd = f->zbd_info;
954217b9
SK
1143 struct fio_zone_info *z;
1144 int zi;
9fb714da 1145 uint64_t vdb;
219c662d 1146
5ddf46d0 1147 assert(zbd);
219c662d 1148
dc8a3d62
DLM
1149 f->min_zone = zbd_offset_to_zone_idx(f, f->file_offset);
1150 f->max_zone =
1151 zbd_offset_to_zone_idx(f, f->file_offset + f->io_size);
f952800a 1152
9fb714da
SK
1153 vdb = zbd_verify_and_set_vdb(td, f);
1154
1155 dprint(FD_ZBD, "%s(%s): valid data bytes = %" PRIu64 "\n",
1156 __func__, f->file_name, vdb);
1157
f952800a
SK
1158 /*
1159 * When all zones in the I/O range are conventional, io_size
1160 * can be smaller than zone size, making min_zone the same
1161 * as max_zone. This is why the assert below needs to be made
1162 * conditional.
1163 */
1164 if (zbd_is_seq_job(f))
1165 assert(f->min_zone < f->max_zone);
1166
219c662d
AD
1167 if (td->o.max_open_zones > 0 &&
1168 zbd->max_open_zones != td->o.max_open_zones) {
1169 log_err("Different 'max_open_zones' values\n");
1170 return 1;
1171 }
b346af90
NC
1172
1173 /*
1174 * The per job max open zones limit cannot be used without a
1175 * global max open zones limit. (As the tracking of open zones
1176 * is disabled when there is no global max open zones limit.)
1177 */
1178 if (td->o.job_max_open_zones && !zbd->max_open_zones) {
1179 log_err("'job_max_open_zones' cannot be used without a global open zones limit\n");
219c662d
AD
1180 return 1;
1181 }
954217b9 1182
ea51055c
NC
1183 /*
1184 * zbd->max_open_zones is the global limit shared for all jobs
1185 * that target the same zoned block device. Force sync the per
1186 * thread global limit with the actual global limit. (The real
1187 * per thread/job limit is stored in td->o.job_max_open_zones).
1188 */
1189 td->o.max_open_zones = zbd->max_open_zones;
1190
954217b9
SK
1191 for (zi = f->min_zone; zi < f->max_zone; zi++) {
1192 z = &zbd->zone_info[zi];
1193 if (z->cond != ZBD_ZONE_COND_IMP_OPEN &&
1194 z->cond != ZBD_ZONE_COND_EXP_OPEN)
1195 continue;
aad7c276 1196 if (zbd_open_zone(td, f, z))
954217b9
SK
1197 continue;
1198 /*
1199 * If the number of open zones exceeds specified limits,
1200 * reset all extra open zones.
1201 */
1202 if (zbd_reset_zone(td, f, z) < 0) {
1203 log_err("Failed to reest zone %d\n", zi);
1204 return 1;
1205 }
1206 }
219c662d
AD
1207 }
1208
bfbdd35b
BVA
1209 return 0;
1210}
1211
a7c2b6fc
BVA
1212/*
1213 * Reset zbd_info.write_cnt, the counter that counts down towards the next
1214 * zone reset.
1215 */
1bb1bcad
AD
1216static void _zbd_reset_write_cnt(const struct thread_data *td,
1217 const struct fio_file *f)
a7c2b6fc
BVA
1218{
1219 assert(0 <= td->o.zrf.u.f && td->o.zrf.u.f <= 1);
1220
a7c2b6fc
BVA
1221 f->zbd_info->write_cnt = td->o.zrf.u.f ?
1222 min(1.0 / td->o.zrf.u.f, 0.0 + UINT_MAX) : UINT_MAX;
1bb1bcad
AD
1223}
1224
1225static void zbd_reset_write_cnt(const struct thread_data *td,
1226 const struct fio_file *f)
1227{
1228 pthread_mutex_lock(&f->zbd_info->mutex);
1229 _zbd_reset_write_cnt(td, f);
a7c2b6fc
BVA
1230 pthread_mutex_unlock(&f->zbd_info->mutex);
1231}
1232
1233static bool zbd_dec_and_reset_write_cnt(const struct thread_data *td,
1234 const struct fio_file *f)
1235{
1236 uint32_t write_cnt = 0;
1237
1238 pthread_mutex_lock(&f->zbd_info->mutex);
1239 assert(f->zbd_info->write_cnt);
1240 if (f->zbd_info->write_cnt)
1241 write_cnt = --f->zbd_info->write_cnt;
1242 if (write_cnt == 0)
1bb1bcad 1243 _zbd_reset_write_cnt(td, f);
a7c2b6fc
BVA
1244 pthread_mutex_unlock(&f->zbd_info->mutex);
1245
1246 return write_cnt == 0;
1247}
1248
bfbdd35b
BVA
1249void zbd_file_reset(struct thread_data *td, struct fio_file *f)
1250{
91d25131 1251 struct fio_zone_info *zb, *ze;
c5c8b92b 1252 bool verify_data_left = false;
bfbdd35b 1253
767d1372 1254 if (!f->zbd_info || !td_write(td))
bfbdd35b
BVA
1255 return;
1256
39e06ee7
DLM
1257 zb = zbd_get_zone(f, f->min_zone);
1258 ze = zbd_get_zone(f, f->max_zone);
139d8dc6 1259
bfbdd35b
BVA
1260 /*
1261 * If data verification is enabled reset the affected zones before
1262 * writing any data to avoid that a zone reset has to be issued while
1263 * writing data, which causes data loss.
1264 */
c5c8b92b
SK
1265 if (td->o.verify != VERIFY_NONE) {
1266 verify_data_left = td->runstate == TD_VERIFYING ||
1267 td->io_hist_len || td->verify_batch;
1268 if (td->io_hist_len && td->o.verify_backlog)
1269 verify_data_left =
1270 td->io_hist_len % td->o.verify_backlog;
1271 if (!verify_data_left)
1272 zbd_reset_zones(td, f, zb, ze);
1273 }
1274
a7c2b6fc 1275 zbd_reset_write_cnt(td, f);
bfbdd35b
BVA
1276}
1277
cb765e41 1278/* Return random zone index for one of the open zones. */
6463db6c
AD
1279static uint32_t pick_random_zone_idx(const struct fio_file *f,
1280 const struct io_u *io_u)
1281{
139d8dc6
DLM
1282 return (io_u->offset - f->file_offset) *
1283 f->zbd_info->num_open_zones / f->io_size;
6463db6c
AD
1284}
1285
0f77c977
SK
1286static bool any_io_in_flight(void)
1287{
da8f124f 1288 for_each_td(td) {
0f77c977
SK
1289 if (td->io_u_in_flight)
1290 return true;
da8f124f 1291 } end_for_each();
0f77c977
SK
1292
1293 return false;
1294}
1295
59b07544
BVA
1296/*
1297 * Modify the offset of an I/O unit that does not refer to an open zone such
1298 * that it refers to an open zone. Close an open zone and open a new zone if
21c0c884
SK
1299 * necessary. The open zone is searched across sequential zones.
1300 * This algorithm can only work correctly if all write pointers are
59b07544
BVA
1301 * a multiple of the fio block size. The caller must neither hold z->mutex
1302 * nor f->zbd_info->mutex. Returns with z->mutex held upon success.
1303 */
379e5f09
BVA
1304static struct fio_zone_info *zbd_convert_to_open_zone(struct thread_data *td,
1305 struct io_u *io_u)
59b07544 1306{
07fc3f57 1307 const uint64_t min_bs = td->o.min_bs[io_u->ddir];
fae3b9a0 1308 struct fio_file *f = io_u->file;
af94a8c3 1309 struct zoned_block_device_info *zbdi = f->zbd_info;
59b07544
BVA
1310 struct fio_zone_info *z;
1311 unsigned int open_zone_idx = -1;
1312 uint32_t zone_idx, new_zone_idx;
1313 int i;
b2da58c4 1314 bool wait_zone_close;
0f77c977
SK
1315 bool in_flight;
1316 bool should_retry = true;
59b07544
BVA
1317
1318 assert(is_valid_offset(f, io_u->offset));
1319
ea51055c 1320 if (zbdi->max_open_zones || td->o.job_max_open_zones) {
59b07544 1321 /*
af94a8c3 1322 * This statement accesses zbdi->open_zones[] on purpose
59b07544
BVA
1323 * without locking.
1324 */
af94a8c3 1325 zone_idx = zbdi->open_zones[pick_random_zone_idx(f, io_u)];
59b07544 1326 } else {
dc8a3d62 1327 zone_idx = zbd_offset_to_zone_idx(f, io_u->offset);
59b07544 1328 }
fae3b9a0
AD
1329 if (zone_idx < f->min_zone)
1330 zone_idx = f->min_zone;
1331 else if (zone_idx >= f->max_zone)
1332 zone_idx = f->max_zone - 1;
139d8dc6
DLM
1333
1334 dprint(FD_ZBD,
1335 "%s(%s): starting from zone %d (offset %lld, buflen %lld)\n",
59b07544
BVA
1336 __func__, f->file_name, zone_idx, io_u->offset, io_u->buflen);
1337
1338 /*
af94a8c3 1339 * Since z->mutex is the outer lock and zbdi->mutex the inner
59b07544 1340 * lock it can happen that the state of the zone with index zone_idx
af94a8c3 1341 * has changed after 'z' has been assigned and before zbdi->mutex
59b07544
BVA
1342 * has been obtained. Hence the loop.
1343 */
1344 for (;;) {
6463db6c
AD
1345 uint32_t tmp_idx;
1346
39e06ee7 1347 z = zbd_get_zone(f, zone_idx);
14351148
DF
1348 if (z->has_wp)
1349 zone_lock(td, f, z);
139d8dc6 1350
af94a8c3 1351 pthread_mutex_lock(&zbdi->mutex);
139d8dc6 1352
14351148
DF
1353 if (z->has_wp) {
1354 if (z->cond != ZBD_ZONE_COND_OFFLINE &&
139d8dc6
DLM
1355 zbdi->max_open_zones == 0 &&
1356 td->o.job_max_open_zones == 0)
14351148 1357 goto examine_zone;
af94a8c3 1358 if (zbdi->num_open_zones == 0) {
14351148
DF
1359 dprint(FD_ZBD, "%s(%s): no zones are open\n",
1360 __func__, f->file_name);
1361 goto open_other_zone;
1362 }
59b07544 1363 }
6463db6c
AD
1364
1365 /*
139d8dc6
DLM
1366 * List of opened zones is per-device, shared across all
1367 * threads. Start with quasi-random candidate zone. Ignore
1368 * zones which don't belong to thread's offset/size area.
6463db6c
AD
1369 */
1370 open_zone_idx = pick_random_zone_idx(f, io_u);
1a8d510a 1371 assert(!open_zone_idx ||
af94a8c3 1372 open_zone_idx < zbdi->num_open_zones);
6463db6c 1373 tmp_idx = open_zone_idx;
139d8dc6 1374
af94a8c3 1375 for (i = 0; i < zbdi->num_open_zones; i++) {
6463db6c
AD
1376 uint32_t tmpz;
1377
af94a8c3 1378 if (tmp_idx >= zbdi->num_open_zones)
6463db6c 1379 tmp_idx = 0;
af94a8c3 1380 tmpz = zbdi->open_zones[tmp_idx];
fae3b9a0 1381 if (f->min_zone <= tmpz && tmpz < f->max_zone) {
6463db6c
AD
1382 open_zone_idx = tmp_idx;
1383 goto found_candidate_zone;
1384 }
1385
1386 tmp_idx++;
1387 }
1388
1389 dprint(FD_ZBD, "%s(%s): no candidate zone\n",
1390 __func__, f->file_name);
139d8dc6 1391
af94a8c3 1392 pthread_mutex_unlock(&zbdi->mutex);
139d8dc6 1393
14351148
DF
1394 if (z->has_wp)
1395 zone_unlock(z);
139d8dc6 1396
6463db6c
AD
1397 return NULL;
1398
1399found_candidate_zone:
af94a8c3 1400 new_zone_idx = zbdi->open_zones[open_zone_idx];
59b07544
BVA
1401 if (new_zone_idx == zone_idx)
1402 break;
1403 zone_idx = new_zone_idx;
139d8dc6 1404
af94a8c3 1405 pthread_mutex_unlock(&zbdi->mutex);
139d8dc6 1406
14351148
DF
1407 if (z->has_wp)
1408 zone_unlock(z);
59b07544
BVA
1409 }
1410
af94a8c3 1411 /* Both z->mutex and zbdi->mutex are held. */
59b07544
BVA
1412
1413examine_zone:
df67bf1e 1414 if (zbd_zone_remainder(z) >= min_bs) {
af94a8c3 1415 pthread_mutex_unlock(&zbdi->mutex);
59b07544
BVA
1416 goto out;
1417 }
b2da58c4
SK
1418
1419open_other_zone:
1420 /* Check if number of open zones reaches one of limits. */
1421 wait_zone_close =
af94a8c3 1422 zbdi->num_open_zones == f->max_zone - f->min_zone ||
ea51055c
NC
1423 (zbdi->max_open_zones &&
1424 zbdi->num_open_zones == zbdi->max_open_zones) ||
b2da58c4
SK
1425 (td->o.job_max_open_zones &&
1426 td->num_open_zones == td->o.job_max_open_zones);
1427
af94a8c3 1428 pthread_mutex_unlock(&zbdi->mutex);
59b07544
BVA
1429
1430 /* Only z->mutex is held. */
1431
b2da58c4
SK
1432 /*
1433 * When number of open zones reaches to one of limits, wait for
1434 * zone close before opening a new zone.
1435 */
1436 if (wait_zone_close) {
139d8dc6
DLM
1437 dprint(FD_ZBD,
1438 "%s(%s): quiesce to allow open zones to close\n",
b2da58c4
SK
1439 __func__, f->file_name);
1440 io_u_quiesce(td);
1441 }
1442
0f77c977 1443retry:
59b07544 1444 /* Zone 'z' is full, so try to open a new zone. */
af94a8c3 1445 for (i = f->io_size / zbdi->zone_size; i > 0; i--) {
59b07544 1446 zone_idx++;
21c0c884
SK
1447 if (z->has_wp)
1448 zone_unlock(z);
59b07544 1449 z++;
ee3696bd 1450 if (!is_valid_offset(f, z->start)) {
59b07544 1451 /* Wrap-around. */
fae3b9a0 1452 zone_idx = f->min_zone;
39e06ee7 1453 z = zbd_get_zone(f, zone_idx);
59b07544 1454 }
ee3696bd 1455 assert(is_valid_offset(f, z->start));
21c0c884
SK
1456 if (!z->has_wp)
1457 continue;
fae3b9a0 1458 zone_lock(td, f, z);
59b07544
BVA
1459 if (z->open)
1460 continue;
aad7c276 1461 if (zbd_open_zone(td, f, z))
59b07544
BVA
1462 goto out;
1463 }
1464
1465 /* Only z->mutex is held. */
1466
1467 /* Check whether the write fits in any of the already opened zones. */
af94a8c3
NC
1468 pthread_mutex_lock(&zbdi->mutex);
1469 for (i = 0; i < zbdi->num_open_zones; i++) {
1470 zone_idx = zbdi->open_zones[i];
fae3b9a0
AD
1471 if (zone_idx < f->min_zone || zone_idx >= f->max_zone)
1472 continue;
af94a8c3 1473 pthread_mutex_unlock(&zbdi->mutex);
4d4c71e6 1474 zone_unlock(z);
59b07544 1475
39e06ee7 1476 z = zbd_get_zone(f, zone_idx);
59b07544 1477
fae3b9a0 1478 zone_lock(td, f, z);
df67bf1e 1479 if (zbd_zone_remainder(z) >= min_bs)
59b07544 1480 goto out;
af94a8c3 1481 pthread_mutex_lock(&zbdi->mutex);
59b07544 1482 }
0f77c977
SK
1483
1484 /*
1485 * When any I/O is in-flight or when all I/Os in-flight get completed,
1486 * the I/Os might have closed zones then retry the steps to open a zone.
1487 * Before retry, call io_u_quiesce() to complete in-flight writes.
1488 */
1489 in_flight = any_io_in_flight();
1490 if (in_flight || should_retry) {
139d8dc6
DLM
1491 dprint(FD_ZBD,
1492 "%s(%s): wait zone close and retry open zones\n",
0f77c977
SK
1493 __func__, f->file_name);
1494 pthread_mutex_unlock(&zbdi->mutex);
1495 zone_unlock(z);
1496 io_u_quiesce(td);
1497 zone_lock(td, f, z);
1498 should_retry = in_flight;
1499 goto retry;
1500 }
1501
af94a8c3 1502 pthread_mutex_unlock(&zbdi->mutex);
139d8dc6 1503
4d4c71e6 1504 zone_unlock(z);
139d8dc6
DLM
1505
1506 dprint(FD_ZBD, "%s(%s): did not open another zone\n",
1507 __func__, f->file_name);
1508
59b07544
BVA
1509 return NULL;
1510
1511out:
139d8dc6
DLM
1512 dprint(FD_ZBD, "%s(%s): returning zone %d\n",
1513 __func__, f->file_name, zone_idx);
1514
ee3696bd 1515 io_u->offset = z->start;
21c0c884 1516 assert(z->has_wp);
8a866de7 1517 assert(z->cond != ZBD_ZONE_COND_OFFLINE);
139d8dc6 1518
59b07544
BVA
1519 return z;
1520}
1521
bfbdd35b 1522/*
5c86fdf6
SK
1523 * Find another zone which has @min_bytes of readable data. Search in zones
1524 * @zb + 1 .. @zl. For random workload, also search in zones @zb - 1 .. @zf.
bfbdd35b 1525 *
21c0c884
SK
1526 * Either returns NULL or returns a zone pointer. When the zone has write
1527 * pointer, hold the mutex for the zone.
bfbdd35b
BVA
1528 */
1529static struct fio_zone_info *
07fc3f57 1530zbd_find_zone(struct thread_data *td, struct io_u *io_u, uint64_t min_bytes,
bfbdd35b
BVA
1531 struct fio_zone_info *zb, struct fio_zone_info *zl)
1532{
fae3b9a0 1533 struct fio_file *f = io_u->file;
bfbdd35b 1534 struct fio_zone_info *z1, *z2;
39e06ee7 1535 const struct fio_zone_info *const zf = zbd_get_zone(f, f->min_zone);
bfbdd35b
BVA
1536
1537 /*
1538 * Skip to the next non-empty zone in case of sequential I/O and to
1539 * the nearest non-empty zone in case of random I/O.
1540 */
1541 for (z1 = zb + 1, z2 = zb - 1; z1 < zl || z2 >= zf; z1++, z2--) {
b7694961 1542 if (z1 < zl && z1->cond != ZBD_ZONE_COND_OFFLINE) {
21c0c884
SK
1543 if (z1->has_wp)
1544 zone_lock(td, f, z1);
5c86fdf6 1545 if (z1->start + min_bytes <= z1->wp)
bfbdd35b 1546 return z1;
21c0c884
SK
1547 if (z1->has_wp)
1548 zone_unlock(z1);
bfbdd35b
BVA
1549 } else if (!td_random(td)) {
1550 break;
1551 }
139d8dc6 1552
bfbdd35b 1553 if (td_random(td) && z2 >= zf &&
b7694961 1554 z2->cond != ZBD_ZONE_COND_OFFLINE) {
21c0c884
SK
1555 if (z2->has_wp)
1556 zone_lock(td, f, z2);
5c86fdf6 1557 if (z2->start + min_bytes <= z2->wp)
bfbdd35b 1558 return z2;
21c0c884
SK
1559 if (z2->has_wp)
1560 zone_unlock(z2);
bfbdd35b
BVA
1561 }
1562 }
139d8dc6
DLM
1563
1564 dprint(FD_ZBD,
1565 "%s: no zone has %"PRIu64" bytes of readable data\n",
5c86fdf6 1566 f->file_name, min_bytes);
139d8dc6 1567
bfbdd35b
BVA
1568 return NULL;
1569}
1570
b2da58c4
SK
1571/**
1572 * zbd_end_zone_io - update zone status at command completion
1573 * @io_u: I/O unit
1574 * @z: zone info pointer
1575 *
1576 * If the write command made the zone full, close it.
1577 *
1578 * The caller must hold z->mutex.
1579 */
1580static void zbd_end_zone_io(struct thread_data *td, const struct io_u *io_u,
1581 struct fio_zone_info *z)
1582{
1583 const struct fio_file *f = io_u->file;
1584
1585 if (io_u->ddir == DDIR_WRITE &&
1586 io_u->offset + io_u->buflen >= zbd_zone_capacity_end(z)) {
1587 pthread_mutex_lock(&f->zbd_info->mutex);
a23411bb 1588 zbd_close_zone(td, f, z);
b2da58c4
SK
1589 pthread_mutex_unlock(&f->zbd_info->mutex);
1590 }
1591}
1592
bfbdd35b 1593/**
d9ed3e63 1594 * zbd_queue_io - update the write pointer of a sequential zone
bfbdd35b 1595 * @io_u: I/O unit
d9ed3e63
DLM
1596 * @success: Whether or not the I/O unit has been queued successfully
1597 * @q: queueing status (busy, completed or queued).
bfbdd35b 1598 *
d9ed3e63
DLM
1599 * For write and trim operations, update the write pointer of the I/O unit
1600 * target zone.
bfbdd35b 1601 */
b2da58c4
SK
1602static void zbd_queue_io(struct thread_data *td, struct io_u *io_u, int q,
1603 bool success)
bfbdd35b 1604{
d9ed3e63
DLM
1605 const struct fio_file *f = io_u->file;
1606 struct zoned_block_device_info *zbd_info = f->zbd_info;
bfbdd35b 1607 struct fio_zone_info *z;
d9ed3e63 1608 uint64_t zone_end;
bfbdd35b 1609
5ddf46d0 1610 assert(zbd_info);
bfbdd35b 1611
53aa6171 1612 z = zbd_offset_to_zone(f, io_u->offset);
43bcbd5b 1613 assert(z->has_wp);
d9ed3e63 1614
bfbdd35b
BVA
1615 if (!success)
1616 goto unlock;
d9ed3e63
DLM
1617
1618 dprint(FD_ZBD,
1619 "%s: queued I/O (%lld, %llu) for zone %u\n",
53aa6171 1620 f->file_name, io_u->offset, io_u->buflen, zbd_zone_idx(f, z));
d9ed3e63 1621
bfbdd35b
BVA
1622 switch (io_u->ddir) {
1623 case DDIR_WRITE:
d9ed3e63 1624 zone_end = min((uint64_t)(io_u->offset + io_u->buflen),
236d23a8 1625 zbd_zone_capacity_end(z));
139d8dc6 1626
a7c2b6fc
BVA
1627 /*
1628 * z->wp > zone_end means that one or more I/O errors
1629 * have occurred.
1630 */
2fb29f27
SK
1631 if (accounting_vdb(td, f) && z->wp <= zone_end) {
1632 pthread_mutex_lock(&zbd_info->mutex);
d56a6df3 1633 zbd_info->wp_valid_data_bytes += zone_end - z->wp;
2fb29f27
SK
1634 pthread_mutex_unlock(&zbd_info->mutex);
1635 }
bfbdd35b
BVA
1636 z->wp = zone_end;
1637 break;
bfbdd35b
BVA
1638 default:
1639 break;
1640 }
d9ed3e63 1641
b2da58c4
SK
1642 if (q == FIO_Q_COMPLETED && !io_u->error)
1643 zbd_end_zone_io(td, io_u, z);
1644
bfbdd35b 1645unlock:
d9ed3e63
DLM
1646 if (!success || q != FIO_Q_QUEUED) {
1647 /* BUSY or COMPLETED: unlock the zone */
4d4c71e6 1648 zone_unlock(z);
d9ed3e63
DLM
1649 io_u->zbd_put_io = NULL;
1650 }
1651}
1652
1653/**
1654 * zbd_put_io - Unlock an I/O unit target zone lock
1655 * @io_u: I/O unit
1656 */
b2da58c4 1657static void zbd_put_io(struct thread_data *td, const struct io_u *io_u)
d9ed3e63
DLM
1658{
1659 const struct fio_file *f = io_u->file;
1660 struct zoned_block_device_info *zbd_info = f->zbd_info;
1661 struct fio_zone_info *z;
d9ed3e63 1662
5ddf46d0 1663 assert(zbd_info);
615555bb 1664
53aa6171 1665 z = zbd_offset_to_zone(f, io_u->offset);
43bcbd5b 1666 assert(z->has_wp);
d9ed3e63
DLM
1667
1668 dprint(FD_ZBD,
1669 "%s: terminate I/O (%lld, %llu) for zone %u\n",
53aa6171 1670 f->file_name, io_u->offset, io_u->buflen, zbd_zone_idx(f, z));
d9ed3e63 1671
b2da58c4
SK
1672 zbd_end_zone_io(td, io_u, z);
1673
4d4c71e6 1674 zone_unlock(z);
bfbdd35b
BVA
1675}
1676
9d87c646
DLM
1677/*
1678 * Windows and MacOS do not define this.
1679 */
1680#ifndef EREMOTEIO
1681#define EREMOTEIO 121 /* POSIX value */
1682#endif
1683
bfbdd35b
BVA
1684bool zbd_unaligned_write(int error_code)
1685{
1686 switch (error_code) {
1687 case EIO:
1688 case EREMOTEIO:
1689 return true;
1690 }
1691 return false;
1692}
1693
4d37720a
DLM
1694/**
1695 * setup_zbd_zone_mode - handle zoneskip as necessary for ZBD drives
1696 * @td: FIO thread data.
1697 * @io_u: FIO I/O unit.
1698 *
1699 * For sequential workloads, change the file offset to skip zoneskip bytes when
1700 * no more IO can be performed in the current zone.
1701 * - For read workloads, zoneskip is applied when the io has reached the end of
1702 * the zone or the zone write position (when td->o.read_beyond_wp is false).
1703 * - For write workloads, zoneskip is applied when the zone is full.
1704 * This applies only to read and write operations.
1705 */
1706void setup_zbd_zone_mode(struct thread_data *td, struct io_u *io_u)
1707{
1708 struct fio_file *f = io_u->file;
1709 enum fio_ddir ddir = io_u->ddir;
1710 struct fio_zone_info *z;
4d37720a
DLM
1711
1712 assert(td->o.zone_mode == ZONE_MODE_ZBD);
1713 assert(td->o.zone_size);
5ddf46d0 1714 assert(f->zbd_info);
4d37720a 1715
53aa6171 1716 z = zbd_offset_to_zone(f, f->last_pos[ddir]);
236d23a8
SK
1717
1718 /*
1719 * When the zone capacity is smaller than the zone size and the I/O is
1720 * sequential write, skip to zone end if the latest position is at the
1721 * zone capacity limit.
1722 */
139d8dc6
DLM
1723 if (z->capacity < f->zbd_info->zone_size &&
1724 !td_random(td) && ddir == DDIR_WRITE &&
236d23a8
SK
1725 f->last_pos[ddir] >= zbd_zone_capacity_end(z)) {
1726 dprint(FD_ZBD,
1727 "%s: Jump from zone capacity limit to zone end:"
ee5e3436
SK
1728 " (%"PRIu64" -> %"PRIu64") for zone %u (%"PRIu64")\n",
1729 f->file_name, f->last_pos[ddir],
53aa6171 1730 zbd_zone_end(z), zbd_zone_idx(f, z), z->capacity);
236d23a8
SK
1731 td->io_skip_bytes += zbd_zone_end(z) - f->last_pos[ddir];
1732 f->last_pos[ddir] = zbd_zone_end(z);
1733 }
1734
4d37720a
DLM
1735 /*
1736 * zone_skip is valid only for sequential workloads.
1737 */
1738 if (td_random(td) || !td->o.zone_skip)
1739 return;
1740
1741 /*
1742 * It is time to switch to a new zone if:
1743 * - zone_bytes == zone_size bytes have already been accessed
1744 * - The last position reached the end of the current zone.
1745 * - For reads with td->o.read_beyond_wp == false, the last position
1746 * reached the zone write pointer.
1747 */
4d37720a 1748 if (td->zone_bytes >= td->o.zone_size ||
236d23a8 1749 f->last_pos[ddir] >= zbd_zone_end(z) ||
4d37720a
DLM
1750 (ddir == DDIR_READ &&
1751 (!td->o.read_beyond_wp) && f->last_pos[ddir] >= z->wp)) {
1752 /*
1753 * Skip zones.
1754 */
1755 td->zone_bytes = 0;
1756 f->file_offset += td->o.zone_size + td->o.zone_skip;
1757
1758 /*
1759 * Wrap from the beginning, if we exceed the file size
1760 */
1761 if (f->file_offset >= f->real_file_size)
1762 f->file_offset = get_start_offset(td, f);
1763
1764 f->last_pos[ddir] = f->file_offset;
1765 td->io_skip_bytes += td->o.zone_skip;
1766 }
1767}
1768
c65057f9 1769/**
c7d5e152 1770 * zbd_adjust_ddir - Adjust an I/O direction for zonemode=zbd.
c65057f9
SK
1771 *
1772 * @td: FIO thread data.
1773 * @io_u: FIO I/O unit.
1774 * @ddir: I/O direction before adjustment.
1775 *
1776 * Return adjusted I/O direction.
1777 */
1778enum fio_ddir zbd_adjust_ddir(struct thread_data *td, struct io_u *io_u,
1779 enum fio_ddir ddir)
1780{
1781 /*
1782 * In case read direction is chosen for the first random I/O, fio with
1783 * zonemode=zbd stops because no data can be read from zoned block
1784 * devices with all empty zones. Overwrite the first I/O direction as
1785 * write to make sure data to read exists.
1786 */
5ddf46d0 1787 assert(io_u->file->zbd_info);
731461cc 1788 if (ddir != DDIR_READ || !td_rw(td))
c65057f9
SK
1789 return ddir;
1790
440f63b1 1791 if (io_u->file->last_start[DDIR_WRITE] != -1ULL || td->o.read_beyond_wp)
c65057f9
SK
1792 return DDIR_READ;
1793
1794 return DDIR_WRITE;
1795}
1796
bfbdd35b
BVA
1797/**
1798 * zbd_adjust_block - adjust the offset and length as necessary for ZBD drives
1799 * @td: FIO thread data.
1800 * @io_u: FIO I/O unit.
1801 *
1802 * Locking strategy: returns with z->mutex locked if and only if z refers
1803 * to a sequential zone and if io_u_accept is returned. z is the zone that
1804 * corresponds to io_u->offset at the end of this function.
1805 */
1806enum io_u_action zbd_adjust_block(struct thread_data *td, struct io_u *io_u)
1807{
b7694961 1808 struct fio_file *f = io_u->file;
af94a8c3 1809 struct zoned_block_device_info *zbdi = f->zbd_info;
de65f7b7 1810 struct fio_zone_info *zb, *zl, *orig_zb;
bfbdd35b 1811 uint32_t orig_len = io_u->buflen;
07fc3f57 1812 uint64_t min_bs = td->o.min_bs[io_u->ddir];
bfbdd35b
BVA
1813 uint64_t new_len;
1814 int64_t range;
1815
af94a8c3 1816 assert(zbdi);
adc6adcb 1817 assert(min_bs);
bfbdd35b
BVA
1818 assert(is_valid_offset(f, io_u->offset));
1819 assert(io_u->buflen);
139d8dc6 1820
53aa6171 1821 zb = zbd_offset_to_zone(f, io_u->offset);
de65f7b7 1822 orig_zb = zb;
bfbdd35b 1823
2efcf74b
SK
1824 if (!zb->has_wp) {
1825 /* Accept non-write I/Os for conventional zones. */
1826 if (io_u->ddir != DDIR_WRITE)
1827 return io_u_accept;
139d8dc6 1828
2efcf74b
SK
1829 /*
1830 * Make sure that writes to conventional zones
1831 * don't cross over to any sequential zones.
1832 */
1833 if (!(zb + 1)->has_wp ||
1834 io_u->offset + io_u->buflen <= (zb + 1)->start)
1835 return io_u_accept;
1836
1837 if (io_u->offset + min_bs > (zb + 1)->start) {
1838 dprint(FD_IO,
07fc3f57 1839 "%s: off=%llu + min_bs=%"PRIu64" > next zone %"PRIu64"\n",
1e3d6e03 1840 f->file_name, io_u->offset,
ee5e3436 1841 min_bs, (zb + 1)->start);
139d8dc6
DLM
1842 io_u->offset =
1843 zb->start + (zb + 1)->start - io_u->offset;
1844 new_len = min(io_u->buflen,
1845 (zb + 1)->start - io_u->offset);
2efcf74b
SK
1846 } else {
1847 new_len = (zb + 1)->start - io_u->offset;
1848 }
139d8dc6 1849
2efcf74b 1850 io_u->buflen = new_len / min_bs * min_bs;
139d8dc6 1851
bfbdd35b 1852 return io_u_accept;
2efcf74b 1853 }
bfbdd35b
BVA
1854
1855 /*
1856 * Accept the I/O offset for reads if reading beyond the write pointer
1857 * is enabled.
1858 */
b7694961 1859 if (zb->cond != ZBD_ZONE_COND_OFFLINE &&
bfbdd35b
BVA
1860 io_u->ddir == DDIR_READ && td->o.read_beyond_wp)
1861 return io_u_accept;
1862
fae3b9a0 1863 zone_lock(td, f, zb);
6f0c6085 1864
bfbdd35b
BVA
1865 switch (io_u->ddir) {
1866 case DDIR_READ:
6e2da06a 1867 if (td->runstate == TD_VERIFYING && td_write(td))
bfbdd35b 1868 goto accept;
139d8dc6 1869
bfbdd35b 1870 /*
de65f7b7
DLM
1871 * Check that there is enough written data in the zone to do an
1872 * I/O of at least min_bs B. If there isn't, find a new zone for
1873 * the I/O.
bfbdd35b 1874 */
b7694961 1875 range = zb->cond != ZBD_ZONE_COND_OFFLINE ?
ee3696bd 1876 zb->wp - zb->start : 0;
de65f7b7 1877 if (range < min_bs ||
ee3696bd 1878 ((!td_random(td)) && (io_u->offset + min_bs > zb->wp))) {
4d4c71e6 1879 zone_unlock(zb);
39e06ee7 1880 zl = zbd_get_zone(f, f->max_zone);
5c86fdf6 1881 zb = zbd_find_zone(td, io_u, min_bs, zb, zl);
bfbdd35b
BVA
1882 if (!zb) {
1883 dprint(FD_ZBD,
1884 "%s: zbd_find_zone(%lld, %llu) failed\n",
1885 f->file_name, io_u->offset,
1886 io_u->buflen);
1887 goto eof;
1888 }
de65f7b7
DLM
1889 /*
1890 * zbd_find_zone() returned a zone with a range of at
1891 * least min_bs.
1892 */
ee3696bd 1893 range = zb->wp - zb->start;
de65f7b7
DLM
1894 assert(range >= min_bs);
1895
1896 if (!td_random(td))
ee3696bd 1897 io_u->offset = zb->start;
bfbdd35b 1898 }
139d8dc6 1899
de65f7b7
DLM
1900 /*
1901 * Make sure the I/O is within the zone valid data range while
1902 * maximizing the I/O size and preserving randomness.
1903 */
1904 if (range <= io_u->buflen)
ee3696bd 1905 io_u->offset = zb->start;
de65f7b7 1906 else if (td_random(td))
ee3696bd
DLM
1907 io_u->offset = zb->start +
1908 ((io_u->offset - orig_zb->start) %
de65f7b7 1909 (range - io_u->buflen)) / min_bs * min_bs;
139d8dc6 1910
43bcbd5b
SK
1911 /*
1912 * When zbd_find_zone() returns a conventional zone,
1913 * we can simply accept the new i/o offset here.
1914 */
1915 if (!zb->has_wp)
1916 return io_u_accept;
139d8dc6 1917
de65f7b7
DLM
1918 /*
1919 * Make sure the I/O does not cross over the zone wp position.
1920 */
1921 new_len = min((unsigned long long)io_u->buflen,
ee3696bd 1922 (unsigned long long)(zb->wp - io_u->offset));
de65f7b7
DLM
1923 new_len = new_len / min_bs * min_bs;
1924 if (new_len < io_u->buflen) {
1925 io_u->buflen = new_len;
1926 dprint(FD_IO, "Changed length from %u into %llu\n",
1927 orig_len, io_u->buflen);
bfbdd35b 1928 }
139d8dc6 1929
ee3696bd
DLM
1930 assert(zb->start <= io_u->offset);
1931 assert(io_u->offset + io_u->buflen <= zb->wp);
139d8dc6 1932
bfbdd35b 1933 goto accept;
139d8dc6 1934
bfbdd35b 1935 case DDIR_WRITE:
af94a8c3 1936 if (io_u->buflen > zbdi->zone_size) {
1c74aadc
DF
1937 td_verror(td, EINVAL, "I/O buflen exceeds zone size");
1938 dprint(FD_IO,
ee5e3436
SK
1939 "%s: I/O buflen %llu exceeds zone size %"PRIu64"\n",
1940 f->file_name, io_u->buflen, zbdi->zone_size);
bfbdd35b 1941 goto eof;
1c74aadc 1942 }
139d8dc6 1943
e1a1b59b
SK
1944retry:
1945 if (zbd_zone_remainder(zb) > 0 &&
1946 zbd_zone_remainder(zb) < min_bs) {
1947 pthread_mutex_lock(&f->zbd_info->mutex);
1948 zbd_close_zone(td, f, zb);
1949 pthread_mutex_unlock(&f->zbd_info->mutex);
1950 dprint(FD_ZBD,
1951 "%s: finish zone %d\n",
1952 f->file_name, zbd_zone_idx(f, zb));
1953 io_u_quiesce(td);
1954 zbd_finish_zone(td, f, zb);
1955 if (zbd_zone_idx(f, zb) + 1 >= f->max_zone) {
1956 if (!td_random(td))
1957 goto eof;
1958 }
1959 zone_unlock(zb);
1960
1961 /* Find the next write pointer zone */
1962 do {
1963 zb++;
1964 if (zbd_zone_idx(f, zb) >= f->max_zone)
1965 zb = zbd_get_zone(f, f->min_zone);
1966 } while (!zb->has_wp);
1967
1968 zone_lock(td, f, zb);
1969 }
1970
aad7c276 1971 if (!zbd_open_zone(td, f, zb)) {
4d4c71e6 1972 zone_unlock(zb);
59b07544 1973 zb = zbd_convert_to_open_zone(td, io_u);
1c74aadc
DF
1974 if (!zb) {
1975 dprint(FD_IO, "%s: can't convert to open zone",
1976 f->file_name);
59b07544 1977 goto eof;
1c74aadc 1978 }
59b07544 1979 }
139d8dc6 1980
e1a1b59b
SK
1981 if (zbd_zone_remainder(zb) > 0 &&
1982 zbd_zone_remainder(zb) < min_bs)
1983 goto retry;
1984
a7c2b6fc
BVA
1985 /* Check whether the zone reset threshold has been exceeded */
1986 if (td->o.zrf.u.f) {
d56a6df3
SK
1987 if (zbdi->wp_valid_data_bytes >=
1988 f->io_size * td->o.zrt.u.f &&
139d8dc6 1989 zbd_dec_and_reset_write_cnt(td, f))
a7c2b6fc 1990 zb->reset_zone = 1;
a7c2b6fc 1991 }
139d8dc6 1992
bfbdd35b
BVA
1993 /* Reset the zone pointer if necessary */
1994 if (zb->reset_zone || zbd_zone_full(f, zb, min_bs)) {
cef8006c
SK
1995 if (td->o.verify != VERIFY_NONE) {
1996 /*
1997 * Unset io-u->file to tell get_next_verify()
1998 * that this IO is not requeue.
1999 */
2000 io_u->file = NULL;
2001 if (!get_next_verify(td, io_u)) {
2002 zone_unlock(zb);
2003 return io_u_accept;
2004 }
2005 io_u->file = f;
2006 }
2007
bfbdd35b
BVA
2008 /*
2009 * Since previous write requests may have been submitted
2010 * asynchronously and since we will submit the zone
2011 * reset synchronously, wait until previously submitted
2012 * write requests have completed before issuing a
2013 * zone reset.
2014 */
2015 io_u_quiesce(td);
2016 zb->reset_zone = 0;
2017 if (zbd_reset_zone(td, f, zb) < 0)
2018 goto eof;
236d23a8
SK
2019
2020 if (zb->capacity < min_bs) {
1c74aadc 2021 td_verror(td, EINVAL, "ZCAP is less min_bs");
07fc3f57 2022 log_err("zone capacity %"PRIu64" smaller than minimum block size %"PRIu64"\n",
ee5e3436 2023 zb->capacity, min_bs);
236d23a8
SK
2024 goto eof;
2025 }
bfbdd35b 2026 }
139d8dc6 2027
bfbdd35b
BVA
2028 /* Make writes occur at the write pointer */
2029 assert(!zbd_zone_full(f, zb, min_bs));
ee3696bd 2030 io_u->offset = zb->wp;
bfbdd35b 2031 if (!is_valid_offset(f, io_u->offset)) {
1c74aadc
DF
2032 td_verror(td, EINVAL, "invalid WP value");
2033 dprint(FD_ZBD, "%s: dropped request with offset %llu\n",
2034 f->file_name, io_u->offset);
bfbdd35b
BVA
2035 goto eof;
2036 }
139d8dc6 2037
bfbdd35b
BVA
2038 /*
2039 * Make sure that the buflen is a multiple of the minimal
2040 * block size. Give up if shrinking would make the request too
2041 * small.
2042 */
2043 new_len = min((unsigned long long)io_u->buflen,
236d23a8 2044 zbd_zone_capacity_end(zb) - io_u->offset);
bfbdd35b
BVA
2045 new_len = new_len / min_bs * min_bs;
2046 if (new_len == io_u->buflen)
2047 goto accept;
2048 if (new_len >= min_bs) {
2049 io_u->buflen = new_len;
2050 dprint(FD_IO, "Changed length from %u into %llu\n",
2051 orig_len, io_u->buflen);
2052 goto accept;
2053 }
139d8dc6 2054
1c74aadc 2055 td_verror(td, EIO, "zone remainder too small");
07fc3f57 2056 log_err("zone remainder %lld smaller than min block size %"PRIu64"\n",
1c74aadc 2057 (zbd_zone_capacity_end(zb) - io_u->offset), min_bs);
139d8dc6 2058
bfbdd35b 2059 goto eof;
139d8dc6 2060
bfbdd35b 2061 case DDIR_TRIM:
e3be810b
SK
2062 /* Check random trim targets a non-empty zone */
2063 if (!td_random(td) || zb->wp > zb->start)
2064 goto accept;
2065
2066 /* Find out a non-empty zone to trim */
2067 zone_unlock(zb);
39e06ee7 2068 zl = zbd_get_zone(f, f->max_zone);
e3be810b
SK
2069 zb = zbd_find_zone(td, io_u, 1, zb, zl);
2070 if (zb) {
2071 io_u->offset = zb->start;
2072 dprint(FD_ZBD, "%s: found new zone(%lld) for trim\n",
2073 f->file_name, io_u->offset);
2074 goto accept;
2075 }
139d8dc6 2076
e3be810b 2077 goto eof;
139d8dc6 2078
bfbdd35b 2079 case DDIR_SYNC:
e3be810b 2080 /* fall-through */
bfbdd35b
BVA
2081 case DDIR_DATASYNC:
2082 case DDIR_SYNC_FILE_RANGE:
2083 case DDIR_WAIT:
2084 case DDIR_LAST:
2085 case DDIR_INVAL:
2086 goto accept;
2087 }
2088
2089 assert(false);
2090
2091accept:
43bcbd5b 2092 assert(zb->has_wp);
b7694961 2093 assert(zb->cond != ZBD_ZONE_COND_OFFLINE);
d9ed3e63
DLM
2094 assert(!io_u->zbd_queue_io);
2095 assert(!io_u->zbd_put_io);
139d8dc6 2096
d9ed3e63
DLM
2097 io_u->zbd_queue_io = zbd_queue_io;
2098 io_u->zbd_put_io = zbd_put_io;
139d8dc6 2099
2ef3c1b0
DF
2100 /*
2101 * Since we return with the zone lock still held,
2102 * add an annotation to let Coverity know that it
2103 * is intentional.
2104 */
2105 /* coverity[missing_unlock] */
139d8dc6 2106
bfbdd35b
BVA
2107 return io_u_accept;
2108
2109eof:
43bcbd5b 2110 if (zb && zb->has_wp)
4d4c71e6 2111 zone_unlock(zb);
139d8dc6 2112
bfbdd35b
BVA
2113 return io_u_eof;
2114}
fd5d733f
BVA
2115
2116/* Return a string with ZBD statistics */
2117char *zbd_write_status(const struct thread_stat *ts)
2118{
2119 char *res;
2120
ee5e3436 2121 if (asprintf(&res, "; %"PRIu64" zone resets", ts->nr_zone_resets) < 0)
fd5d733f
BVA
2122 return NULL;
2123 return res;
2124}
e3be810b
SK
2125
2126/**
2127 * zbd_do_io_u_trim - If reset zone is applicable, do reset zone instead of trim
2128 *
2129 * @td: FIO thread data.
2130 * @io_u: FIO I/O unit.
2131 *
2132 * It is assumed that z->mutex is already locked.
2133 * Return io_u_completed when reset zone succeeds. Return 0 when the target zone
2134 * does not have write pointer. On error, return negative errno.
2135 */
2136int zbd_do_io_u_trim(const struct thread_data *td, struct io_u *io_u)
2137{
2138 struct fio_file *f = io_u->file;
2139 struct fio_zone_info *z;
e3be810b
SK
2140 int ret;
2141
53aa6171 2142 z = zbd_offset_to_zone(f, io_u->offset);
e3be810b
SK
2143 if (!z->has_wp)
2144 return 0;
2145
2146 if (io_u->offset != z->start) {
139d8dc6
DLM
2147 log_err("Trim offset not at zone start (%lld)\n",
2148 io_u->offset);
e3be810b
SK
2149 return -EINVAL;
2150 }
2151
2152 ret = zbd_reset_zone((struct thread_data *)td, f, z);
2153 if (ret < 0)
2154 return ret;
2155
2156 return io_u_completed;
2157}