source: mainline/uspace/lib/ext4/libext4_extent.c@ 2764497

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 2764497 was 38542dc, checked in by Martin Decky <martin@…>, 13 years ago

ext4 code review and coding style cleanup

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File size: 29.4 KB
RevLine 
[829d238]1/*
[f22d5ef0]2 * Copyright (c) 2012 Frantisek Princ
[829d238]3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup libext4
30 * @{
[38542dc]31 */
[829d238]32/**
[38542dc]33 * @file libext4_extent.c
34 * @brief Ext4 extent structures operations.
[829d238]35 */
36
[acd869e]37#include <byteorder.h>
[e2629b08]38#include <errno.h>
39#include <malloc.h>
40#include "libext4.h"
[829d238]41
[728d771]42/** Get logical number of the block covered by extent.
[cb7056a]43 *
[38542dc]44 * @param extent Extent to load number from
45 *
46 * @return Logical number of the first block covered by extent
47 *
[cb7056a]48 */
[8958a26]49uint32_t ext4_extent_get_first_block(ext4_extent_t *extent)
50{
51 return uint32_t_le2host(extent->first_block);
52}
53
[cb7056a]54/** Set logical number of the first block covered by extent.
55 *
[38542dc]56 * @param extent Extent to set number to
57 * @param iblock Logical number of the first block covered by extent
58 *
[cb7056a]59 */
60void ext4_extent_set_first_block(ext4_extent_t *extent, uint32_t iblock)
[343ccfd]61{
[cb7056a]62 extent->first_block = host2uint32_t_le(iblock);
[343ccfd]63}
64
[cb7056a]65/** Get number of blocks covered by extent.
66 *
[38542dc]67 * @param extent Extent to load count from
68 *
69 * @return Number of blocks covered by extent
70 *
[cb7056a]71 */
[8958a26]72uint16_t ext4_extent_get_block_count(ext4_extent_t *extent)
73{
74 return uint16_t_le2host(extent->block_count);
75}
76
[cb7056a]77/** Set number of blocks covered by extent.
78 *
[38542dc]79 * @param extent Extent to load count from
80 * @param count Number of blocks covered by extent
81 *
[cb7056a]82 */
83void ext4_extent_set_block_count(ext4_extent_t *extent, uint16_t count)
[343ccfd]84{
[cb7056a]85 extent->block_count = host2uint16_t_le(count);
[343ccfd]86}
87
[cb7056a]88/** Get physical number of the first block covered by extent.
89 *
[38542dc]90 * @param extent Extent to load number
91 *
92 * @return Physical number of the first block covered by extent
93 *
[cb7056a]94 */
[8958a26]95uint64_t ext4_extent_get_start(ext4_extent_t *extent)
96{
97 return ((uint64_t)uint16_t_le2host(extent->start_hi)) << 32 |
[38542dc]98 ((uint64_t)uint32_t_le2host(extent->start_lo));
[343ccfd]99}
[8958a26]100
[cb7056a]101/** Set physical number of the first block covered by extent.
102 *
[38542dc]103 * @param extent Extent to load number
104 * @param fblock Physical number of the first block covered by extent
105 *
[cb7056a]106 */
107void ext4_extent_set_start(ext4_extent_t *extent, uint64_t fblock)
[343ccfd]108{
[cb7056a]109 extent->start_lo = host2uint32_t_le((fblock << 32) >> 32);
110 extent->start_hi = host2uint16_t_le((uint16_t)(fblock >> 32));
[8958a26]111}
112
[728d771]113/** Get logical number of the block covered by extent index.
114 *
[38542dc]115 * @param index Extent index to load number from
116 *
117 * @return Logical number of the first block covered by extent index
118 *
[728d771]119 */
[1a7756a]120uint32_t ext4_extent_index_get_first_block(ext4_extent_index_t *index)
121{
122 return uint32_t_le2host(index->first_block);
123}
124
[728d771]125/** Set logical number of the block covered by extent index.
126 *
[38542dc]127 * @param index Extent index to set number to
128 * @param iblock Logical number of the first block covered by extent index
129 *
[728d771]130 */
[343ccfd]131void ext4_extent_index_set_first_block(ext4_extent_index_t *index,
[38542dc]132 uint32_t iblock)
[343ccfd]133{
[728d771]134 index->first_block = host2uint32_t_le(iblock);
[343ccfd]135}
136
[728d771]137/** Get physical number of block where the child node is located.
138 *
[38542dc]139 * @param index Extent index to load number from
140 *
141 * @return Physical number of the block with child node
142 *
[728d771]143 */
[1a7756a]144uint64_t ext4_extent_index_get_leaf(ext4_extent_index_t *index)
145{
[38542dc]146 return ((uint64_t) uint16_t_le2host(index->leaf_hi)) << 32 |
147 ((uint64_t)uint32_t_le2host(index->leaf_lo));
[343ccfd]148}
149
[728d771]150/** Set physical number of block where the child node is located.
151 *
[38542dc]152 * @param index Extent index to set number to
153 * @param fblock Ohysical number of the block with child node
154 *
[728d771]155 */
156void ext4_extent_index_set_leaf(ext4_extent_index_t *index, uint64_t fblock)
[343ccfd]157{
[728d771]158 index->leaf_lo = host2uint32_t_le((fblock << 32) >> 32);
[38542dc]159 index->leaf_hi = host2uint16_t_le((uint16_t) (fblock >> 32));
[1a7756a]160}
161
[728d771]162/** Get magic value from extent header.
163 *
[38542dc]164 * @param header Extent header to load value from
165 *
166 * @return Magic value of extent header
167 *
[728d771]168 */
[acd869e]169uint16_t ext4_extent_header_get_magic(ext4_extent_header_t *header)
170{
171 return uint16_t_le2host(header->magic);
172}
173
[728d771]174/** Set magic value to extent header.
175 *
[38542dc]176 * @param header Extent header to set value to
177 * @param magic Magic value of extent header
178 *
[728d771]179 */
[343ccfd]180void ext4_extent_header_set_magic(ext4_extent_header_t *header, uint16_t magic)
181{
182 header->magic = host2uint16_t_le(magic);
183}
184
[728d771]185/** Get number of entries from extent header
186 *
[38542dc]187 * @param header Extent header to get value from
188 *
189 * @return Number of entries covered by extent header
190 *
[728d771]191 */
[acd869e]192uint16_t ext4_extent_header_get_entries_count(ext4_extent_header_t *header)
193{
194 return uint16_t_le2host(header->entries_count);
195}
196
[728d771]197/** Set number of entries to extent header
198 *
[38542dc]199 * @param header Extent header to set value to
200 * @param count Number of entries covered by extent header
201 *
[728d771]202 */
[343ccfd]203void ext4_extent_header_set_entries_count(ext4_extent_header_t *header,
[38542dc]204 uint16_t count)
[343ccfd]205{
206 header->entries_count = host2uint16_t_le(count);
207}
208
[728d771]209/** Get maximum number of entries from extent header
210 *
[38542dc]211 * @param header Extent header to get value from
212 *
213 * @return Maximum number of entries covered by extent header
214 *
[728d771]215 */
[acd869e]216uint16_t ext4_extent_header_get_max_entries_count(ext4_extent_header_t *header)
217{
218 return uint16_t_le2host(header->max_entries_count);
219}
220
[728d771]221/** Set maximum number of entries to extent header
222 *
[38542dc]223 * @param header Extent header to set value to
224 * @param max_count Maximum number of entries covered by extent header
225 *
[728d771]226 */
[343ccfd]227void ext4_extent_header_set_max_entries_count(ext4_extent_header_t *header,
[38542dc]228 uint16_t max_count)
[343ccfd]229{
230 header->max_entries_count = host2uint16_t_le(max_count);
231}
232
[728d771]233/** Get depth of extent subtree.
234 *
[38542dc]235 * @param header Extent header to get value from
236 *
237 * @return Depth of extent subtree
238 *
[728d771]239 */
[acd869e]240uint16_t ext4_extent_header_get_depth(ext4_extent_header_t *header)
241{
242 return uint16_t_le2host(header->depth);
243}
244
[728d771]245/** Set depth of extent subtree.
246 *
[38542dc]247 * @param header Extent header to set value to
248 * @param depth Depth of extent subtree
249 *
[728d771]250 */
[343ccfd]251void ext4_extent_header_set_depth(ext4_extent_header_t *header, uint16_t depth)
252{
253 header->depth = host2uint16_t_le(depth);
254}
255
[728d771]256/** Get generation from extent header
257 *
[38542dc]258 * @param header Extent header to get value from
259 *
260 * @return Generation
261 *
[728d771]262 */
[acd869e]263uint32_t ext4_extent_header_get_generation(ext4_extent_header_t *header)
264{
265 return uint32_t_le2host(header->generation);
266}
[829d238]267
[728d771]268/** Set generation to extent header
269 *
[38542dc]270 * @param header Extent header to set value to
271 * @param generation Generation
272 *
[728d771]273 */
[343ccfd]274void ext4_extent_header_set_generation(ext4_extent_header_t *header,
[38542dc]275 uint32_t generation)
[343ccfd]276{
277 header->generation = host2uint32_t_le(generation);
278}
279
[728d771]280/** Binary search in extent index node.
281 *
[38542dc]282 * @param header Extent header of index node
283 * @param index Output value - found index will be set here
284 * @param iblock Logical block number to find in index node
285 *
[fffb061]286 */
[47faec1]287static void ext4_extent_binsearch_idx(ext4_extent_header_t *header,
[38542dc]288 ext4_extent_index_t **index, uint32_t iblock)
[47faec1]289{
[38542dc]290 ext4_extent_index_t *r;
291 ext4_extent_index_t *l;
292 ext4_extent_index_t *m;
293
294 uint16_t entries_count =
295 ext4_extent_header_get_entries_count(header);
296
[06d85e5]297 /* Initialize bounds */
[47faec1]298 l = EXT4_EXTENT_FIRST_INDEX(header) + 1;
[79b5bc9]299 r = EXT4_EXTENT_FIRST_INDEX(header) + entries_count - 1;
[38542dc]300
[06d85e5]301 /* Do binary search */
[47faec1]302 while (l <= r) {
303 m = l + (r - l) / 2;
304 uint32_t first_block = ext4_extent_index_get_first_block(m);
[38542dc]305
306 if (iblock < first_block)
307 r = m - 1;
308 else
309 l = m + 1;
[47faec1]310 }
[38542dc]311
[06d85e5]312 /* Set output value */
[47faec1]313 *index = l - 1;
314}
315
[728d771]316/** Binary search in extent leaf node.
[38542dc]317 *
318 * @param header Extent header of leaf node
319 * @param extent Output value - found extent will be set here,
320 * or NULL if node is empty
321 * @param iblock Logical block number to find in leaf node
[728d771]322 *
[fffb061]323 */
[30ac3c3]324static void ext4_extent_binsearch(ext4_extent_header_t *header,
[38542dc]325 ext4_extent_t **extent, uint32_t iblock)
[a4419e7]326{
[38542dc]327 ext4_extent_t *r;
328 ext4_extent_t *l;
329 ext4_extent_t *m;
330
331 uint16_t entries_count =
332 ext4_extent_header_get_entries_count(header);
333
[a4419e7]334 if (entries_count == 0) {
[06d85e5]335 /* this leaf is empty */
[47faec1]336 *extent = NULL;
337 return;
338 }
[38542dc]339
[06d85e5]340 /* Initialize bounds */
[a4419e7]341 l = EXT4_EXTENT_FIRST(header) + 1;
[79b5bc9]342 r = EXT4_EXTENT_FIRST(header) + entries_count - 1;
[38542dc]343
[06d85e5]344 /* Do binary search */
[79b5bc9]345 while (l <= r) {
[a4419e7]346 m = l + (r - l) / 2;
[47faec1]347 uint32_t first_block = ext4_extent_get_first_block(m);
[38542dc]348
349 if (iblock < first_block)
350 r = m - 1;
351 else
352 l = m + 1;
[a4419e7]353 }
[38542dc]354
[06d85e5]355 /* Set output value */
[30ac3c3]356 *extent = l - 1;
[a4419e7]357}
358
[728d771]359/** Find physical block in the extent tree by logical block number.
360 *
361 * There is no need to save path in the tree during this algorithm.
362 *
[38542dc]363 * @param inode_ref I-node to load block from
364 * @param iblock Logical block number to find
365 * @param fblock Output value for physical block number
366 *
367 * @return Error code
368 *
[728d771]369 */
[38542dc]370int ext4_extent_find_block(ext4_inode_ref_t *inode_ref, uint32_t iblock,
371 uint32_t *fblock)
[e2629b08]372{
[06d85e5]373 /* Compute bound defined by i-node size */
[38542dc]374 uint64_t inode_size =
375 ext4_inode_get_size(inode_ref->fs->superblock, inode_ref->inode);
376
377 uint32_t block_size =
378 ext4_superblock_get_block_size(inode_ref->fs->superblock);
379
[b73530a]380 uint32_t last_idx = (inode_size - 1) / block_size;
[38542dc]381
[06d85e5]382 /* Check if requested iblock is not over size of i-node */
[b73530a]383 if (iblock > last_idx) {
384 *fblock = 0;
385 return EOK;
386 }
[38542dc]387
388 block_t *block = NULL;
389
[06d85e5]390 /* Walk through extent tree */
[38542dc]391 ext4_extent_header_t *header =
392 ext4_inode_get_extent_header(inode_ref->inode);
393
[1ac1ab4]394 while (ext4_extent_header_get_depth(header) != 0) {
[06d85e5]395 /* Search index in node */
[1ac1ab4]396 ext4_extent_index_t *index;
397 ext4_extent_binsearch_idx(header, &index, iblock);
[38542dc]398
[06d85e5]399 /* Load child node and set values for the next iteration */
[1ac1ab4]400 uint64_t child = ext4_extent_index_get_leaf(index);
[38542dc]401
402 if (block != NULL)
[1ac1ab4]403 block_put(block);
[38542dc]404
405 int rc = block_get(&block, inode_ref->fs->device, child,
406 BLOCK_FLAGS_NONE);
407 if (rc != EOK)
[47faec1]408 return rc;
[38542dc]409
[1ac1ab4]410 header = (ext4_extent_header_t *)block->data;
[47faec1]411 }
[38542dc]412
[06d85e5]413 /* Search extent in the leaf block */
[0d4db0f]414 ext4_extent_t* extent = NULL;
[1ac1ab4]415 ext4_extent_binsearch(header, &extent, iblock);
[38542dc]416
[06d85e5]417 /* Prevent empty leaf */
[1196df6]418 if (extent == NULL) {
419 *fblock = 0;
420 } else {
[06d85e5]421 /* Compute requested physical block address */
[1196df6]422 uint32_t phys_block;
[79b5bc9]423 uint32_t first = ext4_extent_get_first_block(extent);
424 phys_block = ext4_extent_get_start(extent) + iblock - first;
[38542dc]425
[1196df6]426 *fblock = phys_block;
427 }
[38542dc]428
[06d85e5]429 /* Cleanup */
[38542dc]430 if (block != NULL)
[1ac1ab4]431 block_put(block);
[38542dc]432
[fffb061]433 return EOK;
[e2629b08]434}
435
[728d771]436/** Find extent for specified iblock.
437 *
438 * This function is used for finding block in the extent tree with
439 * saving the path through the tree for possible future modifications.
440 *
[38542dc]441 * @param inode_ref I-node to read extent tree from
442 * @param iblock Iblock to find extent for
443 * @param ret_path Output value for loaded path from extent tree
444 *
445 * @return Error code
446 *
[728d771]447 */
[38542dc]448static int ext4_extent_find_extent(ext4_inode_ref_t *inode_ref, uint32_t iblock,
449 ext4_extent_path_t **ret_path)
[0d4db0f]450{
451 ext4_extent_header_t *eh =
[38542dc]452 ext4_inode_get_extent_header(inode_ref->inode);
453
[0d4db0f]454 uint16_t depth = ext4_extent_header_get_depth(eh);
[38542dc]455
[0d4db0f]456 ext4_extent_path_t *tmp_path;
[38542dc]457
[06d85e5]458 /* Added 2 for possible tree growing */
[0d4db0f]459 tmp_path = malloc(sizeof(ext4_extent_path_t) * (depth + 2));
[38542dc]460 if (tmp_path == NULL)
[0d4db0f]461 return ENOMEM;
[38542dc]462
[06d85e5]463 /* Initialize structure for algorithm start */
[0d4db0f]464 tmp_path[0].block = inode_ref->block;
465 tmp_path[0].header = eh;
[38542dc]466
[06d85e5]467 /* Walk through the extent tree */
[0d4db0f]468 uint16_t pos = 0;
[38542dc]469 int rc;
[0d4db0f]470 while (ext4_extent_header_get_depth(eh) != 0) {
[06d85e5]471 /* Search index in index node by iblock */
[38542dc]472 ext4_extent_binsearch_idx(tmp_path[pos].header,
473 &tmp_path[pos].index, iblock);
474
[0d4db0f]475 tmp_path[pos].depth = depth;
476 tmp_path[pos].extent = NULL;
[38542dc]477
[0d4db0f]478 assert(tmp_path[pos].index != NULL);
[38542dc]479
[06d85e5]480 /* Load information for the next iteration */
[0d4db0f]481 uint64_t fblock = ext4_extent_index_get_leaf(tmp_path[pos].index);
[38542dc]482
[0d4db0f]483 block_t *block;
[38542dc]484 rc = block_get(&block, inode_ref->fs->device, fblock,
485 BLOCK_FLAGS_NONE);
486 if (rc != EOK)
[6f413125]487 goto cleanup;
[38542dc]488
[0d4db0f]489 pos++;
[38542dc]490
[0d4db0f]491 eh = (ext4_extent_header_t *)block->data;
492 tmp_path[pos].block = block;
493 tmp_path[pos].header = eh;
494 }
[38542dc]495
[0d4db0f]496 tmp_path[pos].depth = 0;
497 tmp_path[pos].extent = NULL;
498 tmp_path[pos].index = NULL;
[38542dc]499
500 /* Find extent in the leaf node */
[0d4db0f]501 ext4_extent_binsearch(tmp_path[pos].header, &tmp_path[pos].extent, iblock);
502 *ret_path = tmp_path;
[38542dc]503
[0d4db0f]504 return EOK;
[38542dc]505
[6f413125]506cleanup:
[38542dc]507 /*
508 * Put loaded blocks
[06d85e5]509 * From 1: 0 is a block with inode data
510 */
[6f413125]511 for (uint16_t i = 1; i < tmp_path->depth; ++i) {
[38542dc]512 if (tmp_path[i].block)
[6f413125]513 block_put(tmp_path[i].block);
514 }
[38542dc]515
[06d85e5]516 /* Destroy temporary data structure */
[6f413125]517 free(tmp_path);
[38542dc]518
[6f413125]519 return rc;
[0d4db0f]520}
521
[728d771]522/** Release extent and all data blocks covered by the extent.
523 *
[38542dc]524 * @param inode_ref I-node to release extent and block from
525 * @param extent Extent to release
526 *
527 * @return Error code
528 *
[728d771]529 */
[38542dc]530static int ext4_extent_release(ext4_inode_ref_t *inode_ref,
531 ext4_extent_t *extent)
[0d4db0f]532{
[06d85e5]533 /* Compute number of the first physical block to release */
[5b0a3946]534 uint64_t start = ext4_extent_get_start(extent);
535 uint16_t block_count = ext4_extent_get_block_count(extent);
[38542dc]536
537 return ext4_balloc_free_blocks(inode_ref, start, block_count);
[5b0a3946]538}
539
[ee3b6150]540/** Recursively release the whole branch of the extent tree.
541 *
542 * For each entry of the node release the subbranch and finally release
543 * the node. In the leaf node all extents will be released.
544 *
[38542dc]545 * @param inode_ref I-node where the branch is released
546 * @param index Index in the non-leaf node to be released
547 * with the whole subtree
548 *
549 * @return Error code
550 *
[ee3b6150]551 */
[5b0a3946]552static int ext4_extent_release_branch(ext4_inode_ref_t *inode_ref,
553 ext4_extent_index_t *index)
554{
555 uint32_t fblock = ext4_extent_index_get_leaf(index);
[38542dc]556
557 block_t* block;
558 int rc = block_get(&block, inode_ref->fs->device, fblock, BLOCK_FLAGS_NONE);
559 if (rc != EOK)
[5b0a3946]560 return rc;
[38542dc]561
[5b0a3946]562 ext4_extent_header_t *header = block->data;
[38542dc]563
[5b0a3946]564 if (ext4_extent_header_get_depth(header)) {
[06d85e5]565 /* The node is non-leaf, do recursion */
[5b0a3946]566 ext4_extent_index_t *idx = EXT4_EXTENT_FIRST_INDEX(header);
[38542dc]567
[06d85e5]568 /* Release all subbranches */
[38542dc]569 for (uint32_t i = 0;
570 i < ext4_extent_header_get_entries_count(header);
571 ++i, ++idx) {
[5b0a3946]572 rc = ext4_extent_release_branch(inode_ref, idx);
[38542dc]573 if (rc != EOK)
[5b0a3946]574 return rc;
575 }
576 } else {
[06d85e5]577 /* Leaf node reached */
[5b0a3946]578 ext4_extent_t *ext = EXT4_EXTENT_FIRST(header);
[38542dc]579
[06d85e5]580 /* Release all extents and stop recursion */
[38542dc]581 for (uint32_t i = 0;
582 i < ext4_extent_header_get_entries_count(header);
583 ++i, ++ext) {
[5b0a3946]584 rc = ext4_extent_release(inode_ref, ext);
[38542dc]585 if (rc != EOK)
[5b0a3946]586 return rc;
587 }
588 }
[38542dc]589
[06d85e5]590 /* Release data block where the node was stored */
[38542dc]591
[5b0a3946]592 rc = block_put(block);
[38542dc]593 if (rc != EOK)
[5b0a3946]594 return rc;
[38542dc]595
[5b0a3946]596 ext4_balloc_free_block(inode_ref, fblock);
[38542dc]597
[5b0a3946]598 return EOK;
599}
600
[ee3b6150]601/** Release all data blocks starting from specified logical block.
602 *
[38542dc]603 * @param inode_ref I-node to release blocks from
604 * @param iblock_from First logical block to release
605 *
[ee3b6150]606 */
[1196df6]607int ext4_extent_release_blocks_from(ext4_inode_ref_t *inode_ref,
[38542dc]608 uint32_t iblock_from)
[5b0a3946]609{
[06d85e5]610 /* Find the first extent to modify */
[0d4db0f]611 ext4_extent_path_t *path;
[38542dc]612 int rc = ext4_extent_find_extent(inode_ref, iblock_from, &path);
613 if (rc != EOK)
[0d4db0f]614 return rc;
[38542dc]615
[06d85e5]616 /* Jump to last item of the path (extent) */
[0d4db0f]617 ext4_extent_path_t *path_ptr = path;
[38542dc]618 while (path_ptr->depth != 0)
[0d4db0f]619 path_ptr++;
[38542dc]620
[0d4db0f]621 assert(path_ptr->extent != NULL);
[38542dc]622
[06d85e5]623 /* First extent maybe released partially */
[38542dc]624 uint32_t first_iblock =
625 ext4_extent_get_first_block(path_ptr->extent);
626 uint32_t first_fblock =
627 ext4_extent_get_start(path_ptr->extent) + iblock_from - first_iblock;
628
[0d4db0f]629 uint16_t block_count = ext4_extent_get_block_count(path_ptr->extent);
[38542dc]630
631 uint16_t delete_count = block_count -
632 (ext4_extent_get_start(path_ptr->extent) - first_fblock);
633
[06d85e5]634 /* Release all blocks */
[5b0a3946]635 rc = ext4_balloc_free_blocks(inode_ref, first_fblock, delete_count);
[38542dc]636 if (rc != EOK)
[6f413125]637 goto cleanup;
[38542dc]638
[06d85e5]639 /* Correct counter */
[5b0a3946]640 block_count -= delete_count;
[0d4db0f]641 ext4_extent_set_block_count(path_ptr->extent, block_count);
[38542dc]642
[06d85e5]643 /* Initialize the following loop */
[38542dc]644 uint16_t entries =
645 ext4_extent_header_get_entries_count(path_ptr->header);
[3e2952b]646 ext4_extent_t *tmp_ext = path_ptr->extent + 1;
647 ext4_extent_t *stop_ext = EXT4_EXTENT_FIRST(path_ptr->header) + entries;
[38542dc]648
[06d85e5]649 /* If first extent empty, release it */
[38542dc]650 if (block_count == 0)
[0d4db0f]651 entries--;
[38542dc]652
[06d85e5]653 /* Release all successors of the first extent in the same node */
[3e2952b]654 while (tmp_ext < stop_ext) {
655 first_fblock = ext4_extent_get_start(tmp_ext);
656 delete_count = ext4_extent_get_block_count(tmp_ext);
[38542dc]657
[3e2952b]658 rc = ext4_balloc_free_blocks(inode_ref, first_fblock, delete_count);
[38542dc]659 if (rc != EOK)
[6f413125]660 goto cleanup;
[38542dc]661
[3e2952b]662 entries--;
663 tmp_ext++;
664 }
[38542dc]665
[49c94a3]666 ext4_extent_header_set_entries_count(path_ptr->header, entries);
667 path_ptr->block->dirty = true;
[38542dc]668
[06d85e5]669 /* If leaf node is empty, parent entry must be modified */
[d0c9b4b]670 bool remove_parent_record = false;
[38542dc]671
[06d85e5]672 /* Don't release root block (including inode data) !!! */
[3e2952b]673 if ((path_ptr != path) && (entries == 0)) {
674 rc = ext4_balloc_free_block(inode_ref, path_ptr->block->lba);
[38542dc]675 if (rc != EOK)
[6f413125]676 goto cleanup;
[38542dc]677
[d0c9b4b]678 remove_parent_record = true;
[5b0a3946]679 }
[38542dc]680
[06d85e5]681 /* Jump to the parent */
[3e2952b]682 --path_ptr;
[38542dc]683
[06d85e5]684 /* Release all successors in all tree levels */
[ee3b6150]685 while (path_ptr >= path) {
[3e2952b]686 entries = ext4_extent_header_get_entries_count(path_ptr->header);
687 ext4_extent_index_t *index = path_ptr->index + 1;
688 ext4_extent_index_t *stop =
[38542dc]689 EXT4_EXTENT_FIRST_INDEX(path_ptr->header) + entries;
690
[06d85e5]691 /* Correct entries count because of changes in the previous iteration */
[38542dc]692 if (remove_parent_record)
[3e2952b]693 entries--;
[38542dc]694
[06d85e5]695 /* Iterate over all entries and release the whole subtrees */
[5b0a3946]696 while (index < stop) {
697 rc = ext4_extent_release_branch(inode_ref, index);
[38542dc]698 if (rc != EOK)
[6f413125]699 goto cleanup;
[38542dc]700
[5b0a3946]701 ++index;
[3e2952b]702 --entries;
[5b0a3946]703 }
[38542dc]704
[d0c9b4b]705 ext4_extent_header_set_entries_count(path_ptr->header, entries);
[3e2952b]706 path_ptr->block->dirty = true;
[38542dc]707
[06d85e5]708 /* Free the node if it is empty */
[3e2952b]709 if ((entries == 0) && (path_ptr != path)) {
710 rc = ext4_balloc_free_block(inode_ref, path_ptr->block->lba);
[38542dc]711 if (rc != EOK)
[6f413125]712 goto cleanup;
[38542dc]713
[06d85e5]714 /* Mark parent to be checked */
[d0c9b4b]715 remove_parent_record = true;
[38542dc]716 } else
[d0c9b4b]717 remove_parent_record = false;
[38542dc]718
[3e2952b]719 --path_ptr;
[0d4db0f]720 }
[38542dc]721
[6f413125]722cleanup:
[38542dc]723 /*
724 * Put loaded blocks
[06d85e5]725 * starting from 1: 0 is a block with inode data
726 */
[82cb6768]727 for (uint16_t i = 1; i <= path->depth; ++i) {
[38542dc]728 if (path[i].block)
[0d4db0f]729 block_put(path[i].block);
730 }
[38542dc]731
[06d85e5]732 /* Destroy temporary data structure */
[0d4db0f]733 free(path);
[38542dc]734
[6f413125]735 return rc;
[0d4db0f]736}
[1ac1ab4]737
[9fc72fb3]738/** Append new extent to the i-node and do some splitting if necessary.
[ee3b6150]739 *
[38542dc]740 * @param inode_ref I-node to append extent to
741 * @param path Path in the extent tree for possible splitting
742 * @param last_path_item Input/output parameter for pointer to the last
743 * valid item in the extent tree path
744 * @param iblock Logical index of block to append extent for
745 *
746 * @return Error code
747 *
[ee3b6150]748 */
[82cb6768]749static int ext4_extent_append_extent(ext4_inode_ref_t *inode_ref,
[38542dc]750 ext4_extent_path_t *path, uint32_t iblock)
[82cb6768]751{
[5d3d75a5]752 ext4_extent_path_t *path_ptr = path + path->depth;
[38542dc]753
[82cb6768]754 uint32_t block_size =
[38542dc]755 ext4_superblock_get_block_size(inode_ref->fs->superblock);
756
[96606fe]757 /* Start splitting */
758 while (path_ptr > path) {
[38542dc]759 uint16_t entries =
760 ext4_extent_header_get_entries_count(path_ptr->header);
761 uint16_t limit =
762 ext4_extent_header_get_max_entries_count(path_ptr->header);
763
[96606fe]764 if (entries == limit) {
[5d3d75a5]765 /* Full node - allocate block for new one */
766 uint32_t fblock;
[38542dc]767 int rc = ext4_balloc_alloc_block(inode_ref, &fblock);
768 if (rc != EOK)
[96606fe]769 return rc;
[38542dc]770
[96606fe]771 block_t *block;
[38542dc]772 rc = block_get(&block, inode_ref->fs->device, fblock,
773 BLOCK_FLAGS_NOREAD);
[96606fe]774 if (rc != EOK) {
775 ext4_balloc_free_block(inode_ref, fblock);
776 return rc;
777 }
[38542dc]778
[5d3d75a5]779 /* Put back not modified old block */
[96606fe]780 block_put(path_ptr->block);
[38542dc]781
[5d3d75a5]782 /* Initialize newly allocated block and remember it */
783 memset(block->data, 0, block_size);
[96606fe]784 path_ptr->block = block;
[38542dc]785
[5d3d75a5]786 /* Update pointers in extent path structure */
787 path_ptr->header = block->data;
[96606fe]788 if (path_ptr->depth) {
789 path_ptr->index = EXT4_EXTENT_FIRST_INDEX(path_ptr->header);
790 ext4_extent_index_set_first_block(path_ptr->index, iblock);
791 ext4_extent_index_set_leaf(path_ptr->index, (path_ptr + 1)->block->lba);
792 limit = (block_size - sizeof(ext4_extent_header_t)) /
[38542dc]793 sizeof(ext4_extent_index_t);
[96606fe]794 } else {
795 path_ptr->extent = EXT4_EXTENT_FIRST(path_ptr->header);
796 ext4_extent_set_first_block(path_ptr->extent, iblock);
797 limit = (block_size - sizeof(ext4_extent_header_t)) /
[38542dc]798 sizeof(ext4_extent_t);
[96606fe]799 }
[38542dc]800
[6f10638]801 /* Initialize on-disk structure (header) */
[96606fe]802 ext4_extent_header_set_entries_count(path_ptr->header, 1);
803 ext4_extent_header_set_max_entries_count(path_ptr->header, limit);
[6f10638]804 ext4_extent_header_set_magic(path_ptr->header, EXT4_EXTENT_MAGIC);
805 ext4_extent_header_set_depth(path_ptr->header, path_ptr->depth);
806 ext4_extent_header_set_generation(path_ptr->header, 0);
[38542dc]807
[96606fe]808 path_ptr->block->dirty = true;
[38542dc]809
[5d3d75a5]810 /* Jump to the preceeding item */
[96606fe]811 path_ptr--;
812 } else {
813 /* Node with free space */
814 if (path_ptr->depth) {
815 path_ptr->index = EXT4_EXTENT_FIRST_INDEX(path_ptr->header) + entries;
816 ext4_extent_index_set_first_block(path_ptr->index, iblock);
817 ext4_extent_index_set_leaf(path_ptr->index, (path_ptr + 1)->block->lba);
818 } else {
819 path_ptr->extent = EXT4_EXTENT_FIRST(path_ptr->header) + entries;
820 ext4_extent_set_first_block(path_ptr->extent, iblock);
821 }
[38542dc]822
[96606fe]823 ext4_extent_header_set_entries_count(path_ptr->header, entries + 1);
824 path_ptr->block->dirty = true;
[38542dc]825
[5d3d75a5]826 /* No more splitting needed */
[96606fe]827 return EOK;
828 }
[82cb6768]829 }
[38542dc]830
[5d3d75a5]831 assert(path_ptr == path);
[38542dc]832
[96606fe]833 /* Should be the root split too? */
[38542dc]834
[8eff2b0]835 uint16_t entries = ext4_extent_header_get_entries_count(path->header);
836 uint16_t limit = ext4_extent_header_get_max_entries_count(path->header);
[38542dc]837
[8eff2b0]838 if (entries == limit) {
839 uint32_t new_fblock;
[38542dc]840 int rc = ext4_balloc_alloc_block(inode_ref, &new_fblock);
841 if (rc != EOK)
[8eff2b0]842 return rc;
[38542dc]843
[8eff2b0]844 block_t *block;
[38542dc]845 rc = block_get(&block, inode_ref->fs->device, new_fblock,
846 BLOCK_FLAGS_NOREAD);
847 if (rc != EOK)
[8eff2b0]848 return rc;
[38542dc]849
[8eff2b0]850 /* Initialize newly allocated block */
851 memset(block->data, 0, block_size);
[38542dc]852
[8eff2b0]853 /* Move data from root to the new block */
854 memcpy(block->data, inode_ref->inode->blocks,
[38542dc]855 EXT4_INODE_BLOCKS * sizeof(uint32_t));
856
857 /* Data block is initialized */
858
[8eff2b0]859 block_t *root_block = path->block;
860 uint16_t root_depth = path->depth;
861 ext4_extent_header_t *root_header = path->header;
[38542dc]862
[8eff2b0]863 /* Make space for tree growing */
864 ext4_extent_path_t *new_root = path;
865 ext4_extent_path_t *old_root = path + 1;
[38542dc]866
[8eff2b0]867 size_t nbytes = sizeof(ext4_extent_path_t) * (path->depth + 1);
868 memmove(old_root, new_root, nbytes);
869 memset(new_root, 0, sizeof(ext4_extent_path_t));
[38542dc]870
[8eff2b0]871 /* Update old root structure */
872 old_root->block = block;
873 old_root->header = (ext4_extent_header_t *)block->data;
[38542dc]874
[8eff2b0]875 /* Add new entry and update limit for entries */
876 if (old_root->depth) {
877 limit = (block_size - sizeof(ext4_extent_header_t)) /
[38542dc]878 sizeof(ext4_extent_index_t);
[8eff2b0]879 old_root->index = EXT4_EXTENT_FIRST_INDEX(old_root->header) + entries;
880 ext4_extent_index_set_first_block(old_root->index, iblock);
881 ext4_extent_index_set_leaf(old_root->index, (old_root + 1)->block->lba);
882 old_root->extent = NULL;
883 } else {
884 limit = (block_size - sizeof(ext4_extent_header_t)) /
[38542dc]885 sizeof(ext4_extent_t);
[8eff2b0]886 old_root->extent = EXT4_EXTENT_FIRST(old_root->header) + entries;
887 ext4_extent_set_first_block(old_root->extent, iblock);
888 old_root->index = NULL;
889 }
[38542dc]890
[8eff2b0]891 ext4_extent_header_set_entries_count(old_root->header, entries + 1);
892 ext4_extent_header_set_max_entries_count(old_root->header, limit);
[38542dc]893
[8eff2b0]894 old_root->block->dirty = true;
[38542dc]895
[8eff2b0]896 /* Re-initialize new root metadata */
897 new_root->depth = root_depth + 1;
898 new_root->block = root_block;
899 new_root->header = root_header;
900 new_root->extent = NULL;
901 new_root->index = EXT4_EXTENT_FIRST_INDEX(new_root->header);
[38542dc]902
[8eff2b0]903 ext4_extent_header_set_depth(new_root->header, new_root->depth);
[38542dc]904
[8eff2b0]905 /* Create new entry in root */
906 ext4_extent_header_set_entries_count(new_root->header, 1);
907 ext4_extent_index_set_first_block(new_root->index, 0);
908 ext4_extent_index_set_leaf(new_root->index, new_fblock);
[38542dc]909
[8eff2b0]910 new_root->block->dirty = true;
911 } else {
912 if (path->depth) {
913 path->index = EXT4_EXTENT_FIRST_INDEX(path->header) + entries;
914 ext4_extent_index_set_first_block(path->index, iblock);
915 ext4_extent_index_set_leaf(path->index, (path + 1)->block->lba);
[6f10638]916 } else {
[8eff2b0]917 path->extent = EXT4_EXTENT_FIRST(path->header) + entries;
918 ext4_extent_set_first_block(path->extent, iblock);
[96606fe]919 }
[38542dc]920
[8eff2b0]921 ext4_extent_header_set_entries_count(path->header, entries + 1);
922 path->block->dirty = true;
[82cb6768]923 }
[38542dc]924
[82cb6768]925 return EOK;
926}
927
[81a7858]928/** Append data block to the i-node.
[9fc72fb3]929 *
[81a7858]930 * This function allocates data block, tries to append it
931 * to some existing extent or creates new extents.
932 * It includes possible extent tree modifications (splitting).
[5d3d75a5]933 *<
[38542dc]934 * @param inode_ref I-node to append block to
935 * @param iblock Output logical number of newly allocated block
936 * @param fblock Output physical block address of newly allocated block
937 *
938 * @return Error code
939 *
[9fc72fb3]940 */
[38542dc]941int ext4_extent_append_block(ext4_inode_ref_t *inode_ref, uint32_t *iblock,
942 uint32_t *fblock, bool update_size)
[ce6de59]943{
944 ext4_superblock_t *sb = inode_ref->fs->superblock;
945 uint64_t inode_size = ext4_inode_get_size(sb, inode_ref->inode);
946 uint32_t block_size = ext4_superblock_get_block_size(sb);
[38542dc]947
[06d85e5]948 /* Calculate number of new logical block */
[b73530a]949 uint32_t new_block_idx = 0;
950 if (inode_size > 0) {
[38542dc]951 if ((inode_size % block_size) != 0)
[b73530a]952 inode_size += block_size - (inode_size % block_size);
[38542dc]953
[b73530a]954 new_block_idx = inode_size / block_size;
955 }
[38542dc]956
[06d85e5]957 /* Load the nearest leaf (with extent) */
[ce6de59]958 ext4_extent_path_t *path;
[38542dc]959 int rc = ext4_extent_find_extent(inode_ref, new_block_idx, &path);
960 if (rc != EOK)
[ce6de59]961 return rc;
[38542dc]962
[06d85e5]963 /* Jump to last item of the path (extent) */
[ce6de59]964 ext4_extent_path_t *path_ptr = path;
[38542dc]965 while (path_ptr->depth != 0)
[ce6de59]966 path_ptr++;
[38542dc]967
[06d85e5]968 /* Add new extent to the node if not present */
[38542dc]969 if (path_ptr->extent == NULL)
[82cb6768]970 goto append_extent;
[38542dc]971
[82cb6768]972 uint16_t block_count = ext4_extent_get_block_count(path_ptr->extent);
973 uint16_t block_limit = (1 << 15);
[38542dc]974
[b6d7b7c]975 uint32_t phys_block = 0;
[82cb6768]976 if (block_count < block_limit) {
[06d85e5]977 /* There is space for new block in the extent */
[82cb6768]978 if (block_count == 0) {
[06d85e5]979 /* Existing extent is empty */
[82cb6768]980 rc = ext4_balloc_alloc_block(inode_ref, &phys_block);
[38542dc]981 if (rc != EOK)
[7eb033ce]982 goto finish;
[38542dc]983
[06d85e5]984 /* Initialize extent */
[82cb6768]985 ext4_extent_set_first_block(path_ptr->extent, new_block_idx);
986 ext4_extent_set_start(path_ptr->extent, phys_block);
987 ext4_extent_set_block_count(path_ptr->extent, 1);
[38542dc]988
[06d85e5]989 /* Update i-node */
[d510ac01]990 if (update_size) {
991 ext4_inode_set_size(inode_ref->inode, inode_size + block_size);
992 inode_ref->dirty = true;
993 }
[38542dc]994
[82cb6768]995 path_ptr->block->dirty = true;
[38542dc]996
[6f413125]997 goto finish;
[82cb6768]998 } else {
[06d85e5]999 /* Existing extent contains some blocks */
[82cb6768]1000 phys_block = ext4_extent_get_start(path_ptr->extent);
1001 phys_block += ext4_extent_get_block_count(path_ptr->extent);
[38542dc]1002
[06d85e5]1003 /* Check if the following block is free for allocation */
[82cb6768]1004 bool free;
1005 rc = ext4_balloc_try_alloc_block(inode_ref, phys_block, &free);
[38542dc]1006 if (rc != EOK)
[7eb033ce]1007 goto finish;
[38542dc]1008
1009 if (!free) {
1010 /* Target is not free, new block must be appended to new extent */
[82cb6768]1011 goto append_extent;
1012 }
[38542dc]1013
[06d85e5]1014 /* Update extent */
[82cb6768]1015 ext4_extent_set_block_count(path_ptr->extent, block_count + 1);
[38542dc]1016
[06d85e5]1017 /* Update i-node */
[d510ac01]1018 if (update_size) {
1019 ext4_inode_set_size(inode_ref->inode, inode_size + block_size);
1020 inode_ref->dirty = true;
1021 }
[38542dc]1022
[82cb6768]1023 path_ptr->block->dirty = true;
[38542dc]1024
[82cb6768]1025 goto finish;
1026 }
1027 }
[38542dc]1028
1029
[82cb6768]1030append_extent:
[38542dc]1031 /* Append new extent to the tree */
[82cb6768]1032 phys_block = 0;
[38542dc]1033
[06d85e5]1034 /* Allocate new data block */
[82cb6768]1035 rc = ext4_balloc_alloc_block(inode_ref, &phys_block);
[38542dc]1036 if (rc != EOK)
[82cb6768]1037 goto finish;
[38542dc]1038
[d510ac01]1039 /* Append extent for new block (includes tree splitting if needed) */
[5d3d75a5]1040 rc = ext4_extent_append_extent(inode_ref, path, new_block_idx);
[d510ac01]1041 if (rc != EOK) {
1042 ext4_balloc_free_block(inode_ref, phys_block);
1043 goto finish;
1044 }
[38542dc]1045
[5d3d75a5]1046 uint32_t tree_depth = ext4_extent_header_get_depth(path->header);
1047 path_ptr = path + tree_depth;
[38542dc]1048
[06d85e5]1049 /* Initialize newly created extent */
[82cb6768]1050 ext4_extent_set_block_count(path_ptr->extent, 1);
1051 ext4_extent_set_first_block(path_ptr->extent, new_block_idx);
1052 ext4_extent_set_start(path_ptr->extent, phys_block);
[38542dc]1053
[06d85e5]1054 /* Update i-node */
[d510ac01]1055 if (update_size) {
1056 ext4_inode_set_size(inode_ref->inode, inode_size + block_size);
1057 inode_ref->dirty = true;
1058 }
[38542dc]1059
[82cb6768]1060 path_ptr->block->dirty = true;
[38542dc]1061
[81a7858]1062finish:
[06d85e5]1063 /* Set return values */
[1196df6]1064 *iblock = new_block_idx;
1065 *fblock = phys_block;
[38542dc]1066
1067 /*
1068 * Put loaded blocks
[06d85e5]1069 * starting from 1: 0 is a block with inode data
1070 */
[82cb6768]1071 for (uint16_t i = 1; i <= path->depth; ++i) {
[38542dc]1072 if (path[i].block)
[ce6de59]1073 block_put(path[i].block);
1074 }
[38542dc]1075
[06d85e5]1076 /* Destroy temporary data structure */
[ce6de59]1077 free(path);
[38542dc]1078
[6f413125]1079 return rc;
[ce6de59]1080}
1081
[829d238]1082/**
1083 * @}
[38542dc]1084 */
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