source: mainline/uspace/lib/block/block.c@ 5c76cc61

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 5c76cc61 was 7c3fb9b, checked in by Jiri Svoboda <jiri@…>, 7 years ago

Fix block comment formatting (ccheck).

  • Property mode set to 100644
File size: 23.5 KB
Line 
1/*
2 * Copyright (c) 2008 Jakub Jermar
3 * Copyright (c) 2008 Martin Decky
4 * Copyright (c) 2011 Martin Sucha
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 *
11 * - Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * - Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * - The name of the author may not be used to endorse or promote products
17 * derived from this software without specific prior written permission.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 */
30
31/** @addtogroup libblock
32 * @{
33 */
34/**
35 * @file
36 * @brief
37 */
38
39#include <ipc/loc.h>
40#include <ipc/services.h>
41#include <errno.h>
42#include <async.h>
43#include <as.h>
44#include <assert.h>
45#include <bd.h>
46#include <fibril_synch.h>
47#include <adt/list.h>
48#include <adt/hash_table.h>
49#include <macros.h>
50#include <mem.h>
51#include <stdlib.h>
52#include <stdio.h>
53#include <stacktrace.h>
54#include <str_error.h>
55#include <offset.h>
56#include <inttypes.h>
57#include "block.h"
58
59#define MAX_WRITE_RETRIES 10
60
61/** Lock protecting the device connection list */
62static FIBRIL_MUTEX_INITIALIZE(dcl_lock);
63/** Device connection list head. */
64static LIST_INITIALIZE(dcl);
65
66
67typedef struct {
68 fibril_mutex_t lock;
69 size_t lblock_size; /**< Logical block size. */
70 unsigned blocks_cluster; /**< Physical blocks per block_t */
71 unsigned block_count; /**< Total number of blocks. */
72 unsigned blocks_cached; /**< Number of cached blocks. */
73 hash_table_t block_hash;
74 list_t free_list;
75 enum cache_mode mode;
76} cache_t;
77
78typedef struct {
79 link_t link;
80 service_id_t service_id;
81 async_sess_t *sess;
82 bd_t *bd;
83 void *bb_buf;
84 aoff64_t bb_addr;
85 aoff64_t pblocks; /**< Number of physical blocks */
86 size_t pblock_size; /**< Physical block size. */
87 cache_t *cache;
88} devcon_t;
89
90static errno_t read_blocks(devcon_t *, aoff64_t, size_t, void *, size_t);
91static errno_t write_blocks(devcon_t *, aoff64_t, size_t, void *, size_t);
92static aoff64_t ba_ltop(devcon_t *, aoff64_t);
93
94static devcon_t *devcon_search(service_id_t service_id)
95{
96 fibril_mutex_lock(&dcl_lock);
97
98 list_foreach(dcl, link, devcon_t, devcon) {
99 if (devcon->service_id == service_id) {
100 fibril_mutex_unlock(&dcl_lock);
101 return devcon;
102 }
103 }
104
105 fibril_mutex_unlock(&dcl_lock);
106 return NULL;
107}
108
109static errno_t devcon_add(service_id_t service_id, async_sess_t *sess,
110 size_t bsize, aoff64_t dev_size, bd_t *bd)
111{
112 devcon_t *devcon;
113
114 devcon = malloc(sizeof(devcon_t));
115 if (!devcon)
116 return ENOMEM;
117
118 link_initialize(&devcon->link);
119 devcon->service_id = service_id;
120 devcon->sess = sess;
121 devcon->bd = bd;
122 devcon->bb_buf = NULL;
123 devcon->bb_addr = 0;
124 devcon->pblock_size = bsize;
125 devcon->pblocks = dev_size;
126 devcon->cache = NULL;
127
128 fibril_mutex_lock(&dcl_lock);
129 list_foreach(dcl, link, devcon_t, d) {
130 if (d->service_id == service_id) {
131 fibril_mutex_unlock(&dcl_lock);
132 free(devcon);
133 return EEXIST;
134 }
135 }
136 list_append(&devcon->link, &dcl);
137 fibril_mutex_unlock(&dcl_lock);
138 return EOK;
139}
140
141static void devcon_remove(devcon_t *devcon)
142{
143 fibril_mutex_lock(&dcl_lock);
144 list_remove(&devcon->link);
145 fibril_mutex_unlock(&dcl_lock);
146}
147
148errno_t block_init(service_id_t service_id, size_t comm_size)
149{
150 bd_t *bd;
151
152 async_sess_t *sess = loc_service_connect(service_id, INTERFACE_BLOCK,
153 IPC_FLAG_BLOCKING);
154 if (!sess) {
155 return ENOENT;
156 }
157
158 errno_t rc = bd_open(sess, &bd);
159 if (rc != EOK) {
160 async_hangup(sess);
161 return rc;
162 }
163
164 size_t bsize;
165 rc = bd_get_block_size(bd, &bsize);
166 if (rc != EOK) {
167 bd_close(bd);
168 async_hangup(sess);
169 return rc;
170 }
171
172 aoff64_t dev_size;
173 rc = bd_get_num_blocks(bd, &dev_size);
174 if (rc != EOK) {
175 bd_close(bd);
176 async_hangup(sess);
177 return rc;
178 }
179
180 rc = devcon_add(service_id, sess, bsize, dev_size, bd);
181 if (rc != EOK) {
182 bd_close(bd);
183 async_hangup(sess);
184 return rc;
185 }
186
187 return EOK;
188}
189
190void block_fini(service_id_t service_id)
191{
192 devcon_t *devcon = devcon_search(service_id);
193 assert(devcon);
194
195 if (devcon->cache)
196 (void) block_cache_fini(service_id);
197
198 (void)bd_sync_cache(devcon->bd, 0, 0);
199
200 devcon_remove(devcon);
201
202 if (devcon->bb_buf)
203 free(devcon->bb_buf);
204
205 bd_close(devcon->bd);
206 async_hangup(devcon->sess);
207
208 free(devcon);
209}
210
211errno_t block_bb_read(service_id_t service_id, aoff64_t ba)
212{
213 void *bb_buf;
214 errno_t rc;
215
216 devcon_t *devcon = devcon_search(service_id);
217 if (!devcon)
218 return ENOENT;
219 if (devcon->bb_buf)
220 return EEXIST;
221 bb_buf = malloc(devcon->pblock_size);
222 if (!bb_buf)
223 return ENOMEM;
224
225 rc = read_blocks(devcon, 0, 1, bb_buf, devcon->pblock_size);
226 if (rc != EOK) {
227 free(bb_buf);
228 return rc;
229 }
230
231 devcon->bb_buf = bb_buf;
232 devcon->bb_addr = ba;
233
234 return EOK;
235}
236
237void *block_bb_get(service_id_t service_id)
238{
239 devcon_t *devcon = devcon_search(service_id);
240 assert(devcon);
241 return devcon->bb_buf;
242}
243
244static size_t cache_key_hash(void *key)
245{
246 aoff64_t *lba = (aoff64_t *)key;
247 return *lba;
248}
249
250static size_t cache_hash(const ht_link_t *item)
251{
252 block_t *b = hash_table_get_inst(item, block_t, hash_link);
253 return b->lba;
254}
255
256static bool cache_key_equal(void *key, const ht_link_t *item)
257{
258 aoff64_t *lba = (aoff64_t *)key;
259 block_t *b = hash_table_get_inst(item, block_t, hash_link);
260 return b->lba == *lba;
261}
262
263
264static hash_table_ops_t cache_ops = {
265 .hash = cache_hash,
266 .key_hash = cache_key_hash,
267 .key_equal = cache_key_equal,
268 .equal = NULL,
269 .remove_callback = NULL
270};
271
272errno_t block_cache_init(service_id_t service_id, size_t size, unsigned blocks,
273 enum cache_mode mode)
274{
275 devcon_t *devcon = devcon_search(service_id);
276 cache_t *cache;
277 if (!devcon)
278 return ENOENT;
279 if (devcon->cache)
280 return EEXIST;
281 cache = malloc(sizeof(cache_t));
282 if (!cache)
283 return ENOMEM;
284
285 fibril_mutex_initialize(&cache->lock);
286 list_initialize(&cache->free_list);
287 cache->lblock_size = size;
288 cache->block_count = blocks;
289 cache->blocks_cached = 0;
290 cache->mode = mode;
291
292 /* Allow 1:1 or small-to-large block size translation */
293 if (cache->lblock_size % devcon->pblock_size != 0) {
294 free(cache);
295 return ENOTSUP;
296 }
297
298 cache->blocks_cluster = cache->lblock_size / devcon->pblock_size;
299
300 if (!hash_table_create(&cache->block_hash, 0, 0, &cache_ops)) {
301 free(cache);
302 return ENOMEM;
303 }
304
305 devcon->cache = cache;
306 return EOK;
307}
308
309errno_t block_cache_fini(service_id_t service_id)
310{
311 devcon_t *devcon = devcon_search(service_id);
312 cache_t *cache;
313 errno_t rc;
314
315 if (!devcon)
316 return ENOENT;
317 if (!devcon->cache)
318 return EOK;
319 cache = devcon->cache;
320
321 /*
322 * We are expecting to find all blocks for this device handle on the
323 * free list, i.e. the block reference count should be zero. Do not
324 * bother with the cache and block locks because we are single-threaded.
325 */
326 while (!list_empty(&cache->free_list)) {
327 block_t *b = list_get_instance(list_first(&cache->free_list),
328 block_t, free_link);
329
330 list_remove(&b->free_link);
331 if (b->dirty) {
332 rc = write_blocks(devcon, b->pba, cache->blocks_cluster,
333 b->data, b->size);
334 if (rc != EOK)
335 return rc;
336 }
337
338 hash_table_remove_item(&cache->block_hash, &b->hash_link);
339
340 free(b->data);
341 free(b);
342 }
343
344 hash_table_destroy(&cache->block_hash);
345 devcon->cache = NULL;
346 free(cache);
347
348 return EOK;
349}
350
351#define CACHE_LO_WATERMARK 10
352#define CACHE_HI_WATERMARK 20
353static bool cache_can_grow(cache_t *cache)
354{
355 if (cache->blocks_cached < CACHE_LO_WATERMARK)
356 return true;
357 if (!list_empty(&cache->free_list))
358 return false;
359 return true;
360}
361
362static void block_initialize(block_t *b)
363{
364 fibril_mutex_initialize(&b->lock);
365 b->refcnt = 1;
366 b->write_failures = 0;
367 b->dirty = false;
368 b->toxic = false;
369 fibril_rwlock_initialize(&b->contents_lock);
370 link_initialize(&b->free_link);
371}
372
373/** Instantiate a block in memory and get a reference to it.
374 *
375 * @param block Pointer to where the function will store the
376 * block pointer on success.
377 * @param service_id Service ID of the block device.
378 * @param ba Block address (logical).
379 * @param flags If BLOCK_FLAGS_NOREAD is specified, block_get()
380 * will not read the contents of the block from the
381 * device.
382 *
383 * @return EOK on success or an error code.
384 */
385errno_t block_get(block_t **block, service_id_t service_id, aoff64_t ba, int flags)
386{
387 devcon_t *devcon;
388 cache_t *cache;
389 block_t *b;
390 link_t *link;
391 aoff64_t p_ba;
392 errno_t rc;
393
394 devcon = devcon_search(service_id);
395
396 assert(devcon);
397 assert(devcon->cache);
398
399 cache = devcon->cache;
400
401 /*
402 * Check whether the logical block (or part of it) is beyond
403 * the end of the device or not.
404 */
405 p_ba = ba_ltop(devcon, ba);
406 p_ba += cache->blocks_cluster;
407 if (p_ba >= devcon->pblocks) {
408 /* This request cannot be satisfied */
409 return EIO;
410 }
411
412
413retry:
414 rc = EOK;
415 b = NULL;
416
417 fibril_mutex_lock(&cache->lock);
418 ht_link_t *hlink = hash_table_find(&cache->block_hash, &ba);
419 if (hlink) {
420 found:
421 /*
422 * We found the block in the cache.
423 */
424 b = hash_table_get_inst(hlink, block_t, hash_link);
425 fibril_mutex_lock(&b->lock);
426 if (b->refcnt++ == 0)
427 list_remove(&b->free_link);
428 if (b->toxic)
429 rc = EIO;
430 fibril_mutex_unlock(&b->lock);
431 fibril_mutex_unlock(&cache->lock);
432 } else {
433 /*
434 * The block was not found in the cache.
435 */
436 if (cache_can_grow(cache)) {
437 /*
438 * We can grow the cache by allocating new blocks.
439 * Should the allocation fail, we fail over and try to
440 * recycle a block from the cache.
441 */
442 b = malloc(sizeof(block_t));
443 if (!b)
444 goto recycle;
445 b->data = malloc(cache->lblock_size);
446 if (!b->data) {
447 free(b);
448 b = NULL;
449 goto recycle;
450 }
451 cache->blocks_cached++;
452 } else {
453 /*
454 * Try to recycle a block from the free list.
455 */
456 recycle:
457 if (list_empty(&cache->free_list)) {
458 fibril_mutex_unlock(&cache->lock);
459 rc = ENOMEM;
460 goto out;
461 }
462 link = list_first(&cache->free_list);
463 b = list_get_instance(link, block_t, free_link);
464
465 fibril_mutex_lock(&b->lock);
466 if (b->dirty) {
467 /*
468 * The block needs to be written back to the
469 * device before it changes identity. Do this
470 * while not holding the cache lock so that
471 * concurrency is not impeded. Also move the
472 * block to the end of the free list so that we
473 * do not slow down other instances of
474 * block_get() draining the free list.
475 */
476 list_remove(&b->free_link);
477 list_append(&b->free_link, &cache->free_list);
478 fibril_mutex_unlock(&cache->lock);
479 rc = write_blocks(devcon, b->pba,
480 cache->blocks_cluster, b->data, b->size);
481 if (rc != EOK) {
482 /*
483 * We did not manage to write the block
484 * to the device. Keep it around for
485 * another try. Hopefully, we will grab
486 * another block next time.
487 */
488 if (b->write_failures < MAX_WRITE_RETRIES) {
489 b->write_failures++;
490 fibril_mutex_unlock(&b->lock);
491 goto retry;
492 } else {
493 printf("Too many errors writing block %"
494 PRIuOFF64 "from device handle %" PRIun "\n"
495 "SEVERE DATA LOSS POSSIBLE\n",
496 b->lba, devcon->service_id);
497 }
498 } else
499 b->write_failures = 0;
500
501 b->dirty = false;
502 if (!fibril_mutex_trylock(&cache->lock)) {
503 /*
504 * Somebody is probably racing with us.
505 * Unlock the block and retry.
506 */
507 fibril_mutex_unlock(&b->lock);
508 goto retry;
509 }
510 hlink = hash_table_find(&cache->block_hash, &ba);
511 if (hlink) {
512 /*
513 * Someone else must have already
514 * instantiated the block while we were
515 * not holding the cache lock.
516 * Leave the recycled block on the
517 * freelist and continue as if we
518 * found the block of interest during
519 * the first try.
520 */
521 fibril_mutex_unlock(&b->lock);
522 goto found;
523 }
524
525 }
526 fibril_mutex_unlock(&b->lock);
527
528 /*
529 * Unlink the block from the free list and the hash
530 * table.
531 */
532 list_remove(&b->free_link);
533 hash_table_remove_item(&cache->block_hash, &b->hash_link);
534 }
535
536 block_initialize(b);
537 b->service_id = service_id;
538 b->size = cache->lblock_size;
539 b->lba = ba;
540 b->pba = ba_ltop(devcon, b->lba);
541 hash_table_insert(&cache->block_hash, &b->hash_link);
542
543 /*
544 * Lock the block before releasing the cache lock. Thus we don't
545 * kill concurrent operations on the cache while doing I/O on
546 * the block.
547 */
548 fibril_mutex_lock(&b->lock);
549 fibril_mutex_unlock(&cache->lock);
550
551 if (!(flags & BLOCK_FLAGS_NOREAD)) {
552 /*
553 * The block contains old or no data. We need to read
554 * the new contents from the device.
555 */
556 rc = read_blocks(devcon, b->pba, cache->blocks_cluster,
557 b->data, cache->lblock_size);
558 if (rc != EOK)
559 b->toxic = true;
560 } else
561 rc = EOK;
562
563 fibril_mutex_unlock(&b->lock);
564 }
565out:
566 if ((rc != EOK) && b) {
567 assert(b->toxic);
568 (void) block_put(b);
569 b = NULL;
570 }
571 *block = b;
572 return rc;
573}
574
575/** Release a reference to a block.
576 *
577 * If the last reference is dropped, the block is put on the free list.
578 *
579 * @param block Block of which a reference is to be released.
580 *
581 * @return EOK on success or an error code.
582 */
583errno_t block_put(block_t *block)
584{
585 devcon_t *devcon = devcon_search(block->service_id);
586 cache_t *cache;
587 unsigned blocks_cached;
588 enum cache_mode mode;
589 errno_t rc = EOK;
590
591 assert(devcon);
592 assert(devcon->cache);
593 assert(block->refcnt >= 1);
594
595 cache = devcon->cache;
596
597retry:
598 fibril_mutex_lock(&cache->lock);
599 blocks_cached = cache->blocks_cached;
600 mode = cache->mode;
601 fibril_mutex_unlock(&cache->lock);
602
603 /*
604 * Determine whether to sync the block. Syncing the block is best done
605 * when not holding the cache lock as it does not impede concurrency.
606 * Since the situation may have changed when we unlocked the cache, the
607 * blocks_cached and mode variables are mere hints. We will recheck the
608 * conditions later when the cache lock is held again.
609 */
610 fibril_mutex_lock(&block->lock);
611 if (block->toxic)
612 block->dirty = false; /* will not write back toxic block */
613 if (block->dirty && (block->refcnt == 1) &&
614 (blocks_cached > CACHE_HI_WATERMARK || mode != CACHE_MODE_WB)) {
615 rc = write_blocks(devcon, block->pba, cache->blocks_cluster,
616 block->data, block->size);
617 if (rc == EOK)
618 block->write_failures = 0;
619 block->dirty = false;
620 }
621 fibril_mutex_unlock(&block->lock);
622
623 fibril_mutex_lock(&cache->lock);
624 fibril_mutex_lock(&block->lock);
625 if (!--block->refcnt) {
626 /*
627 * Last reference to the block was dropped. Either free the
628 * block or put it on the free list. In case of an I/O error,
629 * free the block.
630 */
631 if ((cache->blocks_cached > CACHE_HI_WATERMARK) ||
632 (rc != EOK)) {
633 /*
634 * Currently there are too many cached blocks or there
635 * was an I/O error when writing the block back to the
636 * device.
637 */
638 if (block->dirty) {
639 /*
640 * We cannot sync the block while holding the
641 * cache lock. Release everything and retry.
642 */
643 block->refcnt++;
644
645 if (block->write_failures < MAX_WRITE_RETRIES) {
646 block->write_failures++;
647 fibril_mutex_unlock(&block->lock);
648 fibril_mutex_unlock(&cache->lock);
649 goto retry;
650 } else {
651 printf("Too many errors writing block %"
652 PRIuOFF64 "from device handle %" PRIun "\n"
653 "SEVERE DATA LOSS POSSIBLE\n",
654 block->lba, devcon->service_id);
655 }
656 }
657 /*
658 * Take the block out of the cache and free it.
659 */
660 hash_table_remove_item(&cache->block_hash, &block->hash_link);
661 fibril_mutex_unlock(&block->lock);
662 free(block->data);
663 free(block);
664 cache->blocks_cached--;
665 fibril_mutex_unlock(&cache->lock);
666 return rc;
667 }
668 /*
669 * Put the block on the free list.
670 */
671 if (cache->mode != CACHE_MODE_WB && block->dirty) {
672 /*
673 * We cannot sync the block while holding the cache
674 * lock. Release everything and retry.
675 */
676 block->refcnt++;
677 fibril_mutex_unlock(&block->lock);
678 fibril_mutex_unlock(&cache->lock);
679 goto retry;
680 }
681 list_append(&block->free_link, &cache->free_list);
682 }
683 fibril_mutex_unlock(&block->lock);
684 fibril_mutex_unlock(&cache->lock);
685
686 return rc;
687}
688
689/** Read sequential data from a block device.
690 *
691 * @param service_id Service ID of the block device.
692 * @param buf Buffer for holding one block
693 * @param bufpos Pointer to the first unread valid offset within the
694 * communication buffer.
695 * @param buflen Pointer to the number of unread bytes that are ready in
696 * the communication buffer.
697 * @param pos Device position to be read.
698 * @param dst Destination buffer.
699 * @param size Size of the destination buffer.
700 * @param block_size Block size to be used for the transfer.
701 *
702 * @return EOK on success or an error code on failure.
703 */
704errno_t block_seqread(service_id_t service_id, void *buf, size_t *bufpos,
705 size_t *buflen, aoff64_t *pos, void *dst, size_t size)
706{
707 size_t offset = 0;
708 size_t left = size;
709 size_t block_size;
710 devcon_t *devcon;
711
712 devcon = devcon_search(service_id);
713 assert(devcon);
714 block_size = devcon->pblock_size;
715
716 while (left > 0) {
717 size_t rd;
718
719 if (*bufpos + left < *buflen)
720 rd = left;
721 else
722 rd = *buflen - *bufpos;
723
724 if (rd > 0) {
725 /*
726 * Copy the contents of the communication buffer to the
727 * destination buffer.
728 */
729 memcpy(dst + offset, buf + *bufpos, rd);
730 offset += rd;
731 *bufpos += rd;
732 *pos += rd;
733 left -= rd;
734 }
735
736 if (*bufpos == *buflen) {
737 /* Refill the communication buffer with a new block. */
738 errno_t rc;
739
740 rc = read_blocks(devcon, *pos / block_size, 1, buf,
741 devcon->pblock_size);
742 if (rc != EOK) {
743 return rc;
744 }
745
746 *bufpos = 0;
747 *buflen = block_size;
748 }
749 }
750
751 return EOK;
752}
753
754/** Read blocks directly from device (bypass cache).
755 *
756 * @param service_id Service ID of the block device.
757 * @param ba Address of first block (physical).
758 * @param cnt Number of blocks.
759 * @param src Buffer for storing the data.
760 *
761 * @return EOK on success or an error code on failure.
762 */
763errno_t block_read_direct(service_id_t service_id, aoff64_t ba, size_t cnt, void *buf)
764{
765 devcon_t *devcon;
766
767 devcon = devcon_search(service_id);
768 assert(devcon);
769
770 return read_blocks(devcon, ba, cnt, buf, devcon->pblock_size * cnt);
771}
772
773/** Write blocks directly to device (bypass cache).
774 *
775 * @param service_id Service ID of the block device.
776 * @param ba Address of first block (physical).
777 * @param cnt Number of blocks.
778 * @param src The data to be written.
779 *
780 * @return EOK on success or an error code on failure.
781 */
782errno_t block_write_direct(service_id_t service_id, aoff64_t ba, size_t cnt,
783 const void *data)
784{
785 devcon_t *devcon;
786
787 devcon = devcon_search(service_id);
788 assert(devcon);
789
790 return write_blocks(devcon, ba, cnt, (void *)data, devcon->pblock_size * cnt);
791}
792
793/** Synchronize blocks to persistent storage.
794 *
795 * @param service_id Service ID of the block device.
796 * @param ba Address of first block (physical).
797 * @param cnt Number of blocks.
798 *
799 * @return EOK on success or an error code on failure.
800 */
801errno_t block_sync_cache(service_id_t service_id, aoff64_t ba, size_t cnt)
802{
803 devcon_t *devcon;
804
805 devcon = devcon_search(service_id);
806 assert(devcon);
807
808 return bd_sync_cache(devcon->bd, ba, cnt);
809}
810
811/** Get device block size.
812 *
813 * @param service_id Service ID of the block device.
814 * @param bsize Output block size.
815 *
816 * @return EOK on success or an error code on failure.
817 */
818errno_t block_get_bsize(service_id_t service_id, size_t *bsize)
819{
820 devcon_t *devcon;
821
822 devcon = devcon_search(service_id);
823 assert(devcon);
824
825 return bd_get_block_size(devcon->bd, bsize);
826}
827
828/** Get number of blocks on device.
829 *
830 * @param service_id Service ID of the block device.
831 * @param nblocks Output number of blocks.
832 *
833 * @return EOK on success or an error code on failure.
834 */
835errno_t block_get_nblocks(service_id_t service_id, aoff64_t *nblocks)
836{
837 devcon_t *devcon = devcon_search(service_id);
838 assert(devcon);
839
840 return bd_get_num_blocks(devcon->bd, nblocks);
841}
842
843/** Read bytes directly from the device (bypass cache)
844 *
845 * @param service_id Service ID of the block device.
846 * @param abs_offset Absolute offset in bytes where to start reading
847 * @param bytes Number of bytes to read
848 * @param data Buffer that receives the data
849 *
850 * @return EOK on success or an error code on failure.
851 */
852errno_t block_read_bytes_direct(service_id_t service_id, aoff64_t abs_offset,
853 size_t bytes, void *data)
854{
855 errno_t rc;
856 size_t phys_block_size;
857 size_t buf_size;
858 void *buffer;
859 aoff64_t first_block;
860 aoff64_t last_block;
861 size_t blocks;
862 size_t offset;
863
864 rc = block_get_bsize(service_id, &phys_block_size);
865 if (rc != EOK) {
866 return rc;
867 }
868
869 /* calculate data position and required space */
870 first_block = abs_offset / phys_block_size;
871 offset = abs_offset % phys_block_size;
872 last_block = (abs_offset + bytes - 1) / phys_block_size;
873 blocks = last_block - first_block + 1;
874 buf_size = blocks * phys_block_size;
875
876 /* read the data into memory */
877 buffer = malloc(buf_size);
878 if (buffer == NULL) {
879 return ENOMEM;
880 }
881
882 rc = block_read_direct(service_id, first_block, blocks, buffer);
883 if (rc != EOK) {
884 free(buffer);
885 return rc;
886 }
887
888 /* copy the data from the buffer */
889 memcpy(data, buffer + offset, bytes);
890 free(buffer);
891
892 return EOK;
893}
894
895/** Get TOC from device.
896 *
897 * @param service_id Service ID of the block device.
898 * @param session Starting session.
899 *
900 * @return Allocated TOC structure.
901 * @return EOK on success or an error code.
902 *
903 */
904errno_t block_read_toc(service_id_t service_id, uint8_t session, void *buf,
905 size_t bufsize)
906{
907 devcon_t *devcon = devcon_search(service_id);
908
909 assert(devcon);
910 return bd_read_toc(devcon->bd, session, buf, bufsize);
911}
912
913/** Read blocks from block device.
914 *
915 * @param devcon Device connection.
916 * @param ba Address of first block.
917 * @param cnt Number of blocks.
918 * @param src Buffer for storing the data.
919 *
920 * @return EOK on success or an error code on failure.
921 */
922static errno_t read_blocks(devcon_t *devcon, aoff64_t ba, size_t cnt, void *buf,
923 size_t size)
924{
925 assert(devcon);
926
927 errno_t rc = bd_read_blocks(devcon->bd, ba, cnt, buf, size);
928 if (rc != EOK) {
929 printf("Error %s reading %zu blocks starting at block %" PRIuOFF64
930 " from device handle %" PRIun "\n", str_error_name(rc), cnt, ba,
931 devcon->service_id);
932#ifndef NDEBUG
933 stacktrace_print();
934#endif
935 }
936
937 return rc;
938}
939
940/** Write block to block device.
941 *
942 * @param devcon Device connection.
943 * @param ba Address of first block.
944 * @param cnt Number of blocks.
945 * @param src Buffer containing the data to write.
946 *
947 * @return EOK on success or an error code on failure.
948 */
949static errno_t write_blocks(devcon_t *devcon, aoff64_t ba, size_t cnt, void *data,
950 size_t size)
951{
952 assert(devcon);
953
954 errno_t rc = bd_write_blocks(devcon->bd, ba, cnt, data, size);
955 if (rc != EOK) {
956 printf("Error %s writing %zu blocks starting at block %" PRIuOFF64
957 " to device handle %" PRIun "\n", str_error_name(rc), cnt, ba, devcon->service_id);
958#ifndef NDEBUG
959 stacktrace_print();
960#endif
961 }
962
963 return rc;
964}
965
966/** Convert logical block address to physical block address. */
967static aoff64_t ba_ltop(devcon_t *devcon, aoff64_t lba)
968{
969 assert(devcon->cache != NULL);
970 return lba * devcon->cache->blocks_cluster;
971}
972
973/** @}
974 */
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