1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * linux/fs/ext4/resize.c
4 *
5 * Support for resizing an ext4 filesystem while it is mounted.
6 *
7 * Copyright (C) 2001, 2002 Andreas Dilger <adilger@clusterfs.com>
8 *
9 * This could probably be made into a module, because it is not often in use.
10 */
11
12
13 #define EXT4FS_DEBUG
14
15 #include <linux/errno.h>
16 #include <linux/slab.h>
17
18 #include "ext4_jbd2.h"
19
20 struct ext4_rcu_ptr {
21 struct rcu_head rcu;
22 void *ptr;
23 };
24
ext4_rcu_ptr_callback(struct rcu_head * head)25 static void ext4_rcu_ptr_callback(struct rcu_head *head)
26 {
27 struct ext4_rcu_ptr *ptr;
28
29 ptr = container_of(head, struct ext4_rcu_ptr, rcu);
30 kvfree(ptr->ptr);
31 kfree(ptr);
32 }
33
ext4_kvfree_array_rcu(void * to_free)34 void ext4_kvfree_array_rcu(void *to_free)
35 {
36 struct ext4_rcu_ptr *ptr = kzalloc(sizeof(*ptr), GFP_KERNEL);
37
38 if (ptr) {
39 ptr->ptr = to_free;
40 call_rcu(&ptr->rcu, ext4_rcu_ptr_callback);
41 return;
42 }
43 synchronize_rcu();
44 kvfree(to_free);
45 }
46
ext4_resize_begin(struct super_block * sb)47 int ext4_resize_begin(struct super_block *sb)
48 {
49 struct ext4_sb_info *sbi = EXT4_SB(sb);
50 int ret = 0;
51
52 if (!capable(CAP_SYS_RESOURCE))
53 return -EPERM;
54
55 /*
56 * If the reserved GDT blocks is non-zero, the resize_inode feature
57 * should always be set.
58 */
59 if (EXT4_SB(sb)->s_es->s_reserved_gdt_blocks &&
60 !ext4_has_feature_resize_inode(sb)) {
61 ext4_error(sb, "resize_inode disabled but reserved GDT blocks non-zero");
62 return -EFSCORRUPTED;
63 }
64
65 /*
66 * If we are not using the primary superblock/GDT copy don't resize,
67 * because the user tools have no way of handling this. Probably a
68 * bad time to do it anyways.
69 */
70 if (EXT4_B2C(sbi, sbi->s_sbh->b_blocknr) !=
71 le32_to_cpu(EXT4_SB(sb)->s_es->s_first_data_block)) {
72 ext4_warning(sb, "won't resize using backup superblock at %llu",
73 (unsigned long long)EXT4_SB(sb)->s_sbh->b_blocknr);
74 return -EPERM;
75 }
76
77 /*
78 * We are not allowed to do online-resizing on a filesystem mounted
79 * with error, because it can destroy the filesystem easily.
80 */
81 if (EXT4_SB(sb)->s_mount_state & EXT4_ERROR_FS) {
82 ext4_warning(sb, "There are errors in the filesystem, "
83 "so online resizing is not allowed");
84 return -EPERM;
85 }
86
87 if (ext4_has_feature_sparse_super2(sb)) {
88 ext4_msg(sb, KERN_ERR, "Online resizing not supported with sparse_super2");
89 return -EOPNOTSUPP;
90 }
91
92 if (test_and_set_bit_lock(EXT4_FLAGS_RESIZING,
93 &EXT4_SB(sb)->s_ext4_flags))
94 ret = -EBUSY;
95
96 return ret;
97 }
98
ext4_resize_end(struct super_block * sb)99 void ext4_resize_end(struct super_block *sb)
100 {
101 clear_bit_unlock(EXT4_FLAGS_RESIZING, &EXT4_SB(sb)->s_ext4_flags);
102 smp_mb__after_atomic();
103 }
104
ext4_meta_bg_first_group(struct super_block * sb,ext4_group_t group)105 static ext4_group_t ext4_meta_bg_first_group(struct super_block *sb,
106 ext4_group_t group) {
107 return (group >> EXT4_DESC_PER_BLOCK_BITS(sb)) <<
108 EXT4_DESC_PER_BLOCK_BITS(sb);
109 }
110
ext4_meta_bg_first_block_no(struct super_block * sb,ext4_group_t group)111 static ext4_fsblk_t ext4_meta_bg_first_block_no(struct super_block *sb,
112 ext4_group_t group) {
113 group = ext4_meta_bg_first_group(sb, group);
114 return ext4_group_first_block_no(sb, group);
115 }
116
ext4_group_overhead_blocks(struct super_block * sb,ext4_group_t group)117 static ext4_grpblk_t ext4_group_overhead_blocks(struct super_block *sb,
118 ext4_group_t group) {
119 ext4_grpblk_t overhead;
120 overhead = ext4_bg_num_gdb(sb, group);
121 if (ext4_bg_has_super(sb, group))
122 overhead += 1 +
123 le16_to_cpu(EXT4_SB(sb)->s_es->s_reserved_gdt_blocks);
124 return overhead;
125 }
126
127 #define outside(b, first, last) ((b) < (first) || (b) >= (last))
128 #define inside(b, first, last) ((b) >= (first) && (b) < (last))
129
verify_group_input(struct super_block * sb,struct ext4_new_group_data * input)130 static int verify_group_input(struct super_block *sb,
131 struct ext4_new_group_data *input)
132 {
133 struct ext4_sb_info *sbi = EXT4_SB(sb);
134 struct ext4_super_block *es = sbi->s_es;
135 ext4_fsblk_t start = ext4_blocks_count(es);
136 ext4_fsblk_t end = start + input->blocks_count;
137 ext4_group_t group = input->group;
138 ext4_fsblk_t itend = input->inode_table + sbi->s_itb_per_group;
139 unsigned overhead;
140 ext4_fsblk_t metaend;
141 struct buffer_head *bh = NULL;
142 ext4_grpblk_t free_blocks_count, offset;
143 int err = -EINVAL;
144
145 if (group != sbi->s_groups_count) {
146 ext4_warning(sb, "Cannot add at group %u (only %u groups)",
147 input->group, sbi->s_groups_count);
148 return -EINVAL;
149 }
150
151 overhead = ext4_group_overhead_blocks(sb, group);
152 metaend = start + overhead;
153 input->free_clusters_count = free_blocks_count =
154 input->blocks_count - 2 - overhead - sbi->s_itb_per_group;
155
156 if (test_opt(sb, DEBUG))
157 printk(KERN_DEBUG "EXT4-fs: adding %s group %u: %u blocks "
158 "(%d free, %u reserved)\n",
159 ext4_bg_has_super(sb, input->group) ? "normal" :
160 "no-super", input->group, input->blocks_count,
161 free_blocks_count, input->reserved_blocks);
162
163 ext4_get_group_no_and_offset(sb, start, NULL, &offset);
164 if (offset != 0)
165 ext4_warning(sb, "Last group not full");
166 else if (input->reserved_blocks > input->blocks_count / 5)
167 ext4_warning(sb, "Reserved blocks too high (%u)",
168 input->reserved_blocks);
169 else if (free_blocks_count < 0)
170 ext4_warning(sb, "Bad blocks count %u",
171 input->blocks_count);
172 else if (IS_ERR(bh = ext4_sb_bread(sb, end - 1, 0))) {
173 err = PTR_ERR(bh);
174 bh = NULL;
175 ext4_warning(sb, "Cannot read last block (%llu)",
176 end - 1);
177 } else if (outside(input->block_bitmap, start, end))
178 ext4_warning(sb, "Block bitmap not in group (block %llu)",
179 (unsigned long long)input->block_bitmap);
180 else if (outside(input->inode_bitmap, start, end))
181 ext4_warning(sb, "Inode bitmap not in group (block %llu)",
182 (unsigned long long)input->inode_bitmap);
183 else if (outside(input->inode_table, start, end) ||
184 outside(itend - 1, start, end))
185 ext4_warning(sb, "Inode table not in group (blocks %llu-%llu)",
186 (unsigned long long)input->inode_table, itend - 1);
187 else if (input->inode_bitmap == input->block_bitmap)
188 ext4_warning(sb, "Block bitmap same as inode bitmap (%llu)",
189 (unsigned long long)input->block_bitmap);
190 else if (inside(input->block_bitmap, input->inode_table, itend))
191 ext4_warning(sb, "Block bitmap (%llu) in inode table "
192 "(%llu-%llu)",
193 (unsigned long long)input->block_bitmap,
194 (unsigned long long)input->inode_table, itend - 1);
195 else if (inside(input->inode_bitmap, input->inode_table, itend))
196 ext4_warning(sb, "Inode bitmap (%llu) in inode table "
197 "(%llu-%llu)",
198 (unsigned long long)input->inode_bitmap,
199 (unsigned long long)input->inode_table, itend - 1);
200 else if (inside(input->block_bitmap, start, metaend))
201 ext4_warning(sb, "Block bitmap (%llu) in GDT table (%llu-%llu)",
202 (unsigned long long)input->block_bitmap,
203 start, metaend - 1);
204 else if (inside(input->inode_bitmap, start, metaend))
205 ext4_warning(sb, "Inode bitmap (%llu) in GDT table (%llu-%llu)",
206 (unsigned long long)input->inode_bitmap,
207 start, metaend - 1);
208 else if (inside(input->inode_table, start, metaend) ||
209 inside(itend - 1, start, metaend))
210 ext4_warning(sb, "Inode table (%llu-%llu) overlaps GDT table "
211 "(%llu-%llu)",
212 (unsigned long long)input->inode_table,
213 itend - 1, start, metaend - 1);
214 else
215 err = 0;
216 brelse(bh);
217
218 return err;
219 }
220
221 /*
222 * ext4_new_flex_group_data is used by 64bit-resize interface to add a flex
223 * group each time.
224 */
225 struct ext4_new_flex_group_data {
226 struct ext4_new_group_data *groups; /* new_group_data for groups
227 in the flex group */
228 __u16 *bg_flags; /* block group flags of groups
229 in @groups */
230 ext4_group_t count; /* number of groups in @groups
231 */
232 };
233
234 /*
235 * alloc_flex_gd() allocates a ext4_new_flex_group_data with size of
236 * @flexbg_size.
237 *
238 * Returns NULL on failure otherwise address of the allocated structure.
239 */
alloc_flex_gd(unsigned long flexbg_size)240 static struct ext4_new_flex_group_data *alloc_flex_gd(unsigned long flexbg_size)
241 {
242 struct ext4_new_flex_group_data *flex_gd;
243
244 flex_gd = kmalloc(sizeof(*flex_gd), GFP_NOFS);
245 if (flex_gd == NULL)
246 goto out3;
247
248 if (flexbg_size >= UINT_MAX / sizeof(struct ext4_new_group_data))
249 goto out2;
250 flex_gd->count = flexbg_size;
251
252 flex_gd->groups = kmalloc_array(flexbg_size,
253 sizeof(struct ext4_new_group_data),
254 GFP_NOFS);
255 if (flex_gd->groups == NULL)
256 goto out2;
257
258 flex_gd->bg_flags = kmalloc_array(flexbg_size, sizeof(__u16),
259 GFP_NOFS);
260 if (flex_gd->bg_flags == NULL)
261 goto out1;
262
263 return flex_gd;
264
265 out1:
266 kfree(flex_gd->groups);
267 out2:
268 kfree(flex_gd);
269 out3:
270 return NULL;
271 }
272
free_flex_gd(struct ext4_new_flex_group_data * flex_gd)273 static void free_flex_gd(struct ext4_new_flex_group_data *flex_gd)
274 {
275 kfree(flex_gd->bg_flags);
276 kfree(flex_gd->groups);
277 kfree(flex_gd);
278 }
279
280 /*
281 * ext4_alloc_group_tables() allocates block bitmaps, inode bitmaps
282 * and inode tables for a flex group.
283 *
284 * This function is used by 64bit-resize. Note that this function allocates
285 * group tables from the 1st group of groups contained by @flexgd, which may
286 * be a partial of a flex group.
287 *
288 * @sb: super block of fs to which the groups belongs
289 *
290 * Returns 0 on a successful allocation of the metadata blocks in the
291 * block group.
292 */
ext4_alloc_group_tables(struct super_block * sb,struct ext4_new_flex_group_data * flex_gd,int flexbg_size)293 static int ext4_alloc_group_tables(struct super_block *sb,
294 struct ext4_new_flex_group_data *flex_gd,
295 int flexbg_size)
296 {
297 struct ext4_new_group_data *group_data = flex_gd->groups;
298 ext4_fsblk_t start_blk;
299 ext4_fsblk_t last_blk;
300 ext4_group_t src_group;
301 ext4_group_t bb_index = 0;
302 ext4_group_t ib_index = 0;
303 ext4_group_t it_index = 0;
304 ext4_group_t group;
305 ext4_group_t last_group;
306 unsigned overhead;
307 __u16 uninit_mask = (flexbg_size > 1) ? ~EXT4_BG_BLOCK_UNINIT : ~0;
308 int i;
309
310 BUG_ON(flex_gd->count == 0 || group_data == NULL);
311
312 src_group = group_data[0].group;
313 last_group = src_group + flex_gd->count - 1;
314
315 BUG_ON((flexbg_size > 1) && ((src_group & ~(flexbg_size - 1)) !=
316 (last_group & ~(flexbg_size - 1))));
317 next_group:
318 group = group_data[0].group;
319 if (src_group >= group_data[0].group + flex_gd->count)
320 return -ENOSPC;
321 start_blk = ext4_group_first_block_no(sb, src_group);
322 last_blk = start_blk + group_data[src_group - group].blocks_count;
323
324 overhead = ext4_group_overhead_blocks(sb, src_group);
325
326 start_blk += overhead;
327
328 /* We collect contiguous blocks as much as possible. */
329 src_group++;
330 for (; src_group <= last_group; src_group++) {
331 overhead = ext4_group_overhead_blocks(sb, src_group);
332 if (overhead == 0)
333 last_blk += group_data[src_group - group].blocks_count;
334 else
335 break;
336 }
337
338 /* Allocate block bitmaps */
339 for (; bb_index < flex_gd->count; bb_index++) {
340 if (start_blk >= last_blk)
341 goto next_group;
342 group_data[bb_index].block_bitmap = start_blk++;
343 group = ext4_get_group_number(sb, start_blk - 1);
344 group -= group_data[0].group;
345 group_data[group].mdata_blocks++;
346 flex_gd->bg_flags[group] &= uninit_mask;
347 }
348
349 /* Allocate inode bitmaps */
350 for (; ib_index < flex_gd->count; ib_index++) {
351 if (start_blk >= last_blk)
352 goto next_group;
353 group_data[ib_index].inode_bitmap = start_blk++;
354 group = ext4_get_group_number(sb, start_blk - 1);
355 group -= group_data[0].group;
356 group_data[group].mdata_blocks++;
357 flex_gd->bg_flags[group] &= uninit_mask;
358 }
359
360 /* Allocate inode tables */
361 for (; it_index < flex_gd->count; it_index++) {
362 unsigned int itb = EXT4_SB(sb)->s_itb_per_group;
363 ext4_fsblk_t next_group_start;
364
365 if (start_blk + itb > last_blk)
366 goto next_group;
367 group_data[it_index].inode_table = start_blk;
368 group = ext4_get_group_number(sb, start_blk);
369 next_group_start = ext4_group_first_block_no(sb, group + 1);
370 group -= group_data[0].group;
371
372 if (start_blk + itb > next_group_start) {
373 flex_gd->bg_flags[group + 1] &= uninit_mask;
374 overhead = start_blk + itb - next_group_start;
375 group_data[group + 1].mdata_blocks += overhead;
376 itb -= overhead;
377 }
378
379 group_data[group].mdata_blocks += itb;
380 flex_gd->bg_flags[group] &= uninit_mask;
381 start_blk += EXT4_SB(sb)->s_itb_per_group;
382 }
383
384 /* Update free clusters count to exclude metadata blocks */
385 for (i = 0; i < flex_gd->count; i++) {
386 group_data[i].free_clusters_count -=
387 EXT4_NUM_B2C(EXT4_SB(sb),
388 group_data[i].mdata_blocks);
389 }
390
391 if (test_opt(sb, DEBUG)) {
392 int i;
393 group = group_data[0].group;
394
395 printk(KERN_DEBUG "EXT4-fs: adding a flex group with "
396 "%d groups, flexbg size is %d:\n", flex_gd->count,
397 flexbg_size);
398
399 for (i = 0; i < flex_gd->count; i++) {
400 ext4_debug(
401 "adding %s group %u: %u blocks (%d free, %d mdata blocks)\n",
402 ext4_bg_has_super(sb, group + i) ? "normal" :
403 "no-super", group + i,
404 group_data[i].blocks_count,
405 group_data[i].free_clusters_count,
406 group_data[i].mdata_blocks);
407 }
408 }
409 return 0;
410 }
411
bclean(handle_t * handle,struct super_block * sb,ext4_fsblk_t blk)412 static struct buffer_head *bclean(handle_t *handle, struct super_block *sb,
413 ext4_fsblk_t blk)
414 {
415 struct buffer_head *bh;
416 int err;
417
418 bh = sb_getblk(sb, blk);
419 if (unlikely(!bh))
420 return ERR_PTR(-ENOMEM);
421 BUFFER_TRACE(bh, "get_write_access");
422 if ((err = ext4_journal_get_write_access(handle, bh))) {
423 brelse(bh);
424 bh = ERR_PTR(err);
425 } else {
426 memset(bh->b_data, 0, sb->s_blocksize);
427 set_buffer_uptodate(bh);
428 }
429
430 return bh;
431 }
432
433 /*
434 * If we have fewer than thresh credits, extend by EXT4_MAX_TRANS_DATA.
435 * If that fails, restart the transaction & regain write access for the
436 * buffer head which is used for block_bitmap modifications.
437 */
extend_or_restart_transaction(handle_t * handle,int thresh)438 static int extend_or_restart_transaction(handle_t *handle, int thresh)
439 {
440 int err;
441
442 if (ext4_handle_has_enough_credits(handle, thresh))
443 return 0;
444
445 err = ext4_journal_extend(handle, EXT4_MAX_TRANS_DATA);
446 if (err < 0)
447 return err;
448 if (err) {
449 err = ext4_journal_restart(handle, EXT4_MAX_TRANS_DATA);
450 if (err)
451 return err;
452 }
453
454 return 0;
455 }
456
457 /*
458 * set_flexbg_block_bitmap() mark clusters [@first_cluster, @last_cluster] used.
459 *
460 * Helper function for ext4_setup_new_group_blocks() which set .
461 *
462 * @sb: super block
463 * @handle: journal handle
464 * @flex_gd: flex group data
465 */
set_flexbg_block_bitmap(struct super_block * sb,handle_t * handle,struct ext4_new_flex_group_data * flex_gd,ext4_fsblk_t first_cluster,ext4_fsblk_t last_cluster)466 static int set_flexbg_block_bitmap(struct super_block *sb, handle_t *handle,
467 struct ext4_new_flex_group_data *flex_gd,
468 ext4_fsblk_t first_cluster, ext4_fsblk_t last_cluster)
469 {
470 struct ext4_sb_info *sbi = EXT4_SB(sb);
471 ext4_group_t count = last_cluster - first_cluster + 1;
472 ext4_group_t count2;
473
474 ext4_debug("mark clusters [%llu-%llu] used\n", first_cluster,
475 last_cluster);
476 for (count2 = count; count > 0;
477 count -= count2, first_cluster += count2) {
478 ext4_fsblk_t start;
479 struct buffer_head *bh;
480 ext4_group_t group;
481 int err;
482
483 group = ext4_get_group_number(sb, EXT4_C2B(sbi, first_cluster));
484 start = EXT4_B2C(sbi, ext4_group_first_block_no(sb, group));
485 group -= flex_gd->groups[0].group;
486
487 count2 = EXT4_CLUSTERS_PER_GROUP(sb) - (first_cluster - start);
488 if (count2 > count)
489 count2 = count;
490
491 if (flex_gd->bg_flags[group] & EXT4_BG_BLOCK_UNINIT) {
492 BUG_ON(flex_gd->count > 1);
493 continue;
494 }
495
496 err = extend_or_restart_transaction(handle, 1);
497 if (err)
498 return err;
499
500 bh = sb_getblk(sb, flex_gd->groups[group].block_bitmap);
501 if (unlikely(!bh))
502 return -ENOMEM;
503
504 BUFFER_TRACE(bh, "get_write_access");
505 err = ext4_journal_get_write_access(handle, bh);
506 if (err) {
507 brelse(bh);
508 return err;
509 }
510 ext4_debug("mark block bitmap %#04llx (+%llu/%u)\n",
511 first_cluster, first_cluster - start, count2);
512 ext4_set_bits(bh->b_data, first_cluster - start, count2);
513
514 err = ext4_handle_dirty_metadata(handle, NULL, bh);
515 brelse(bh);
516 if (unlikely(err))
517 return err;
518 }
519
520 return 0;
521 }
522
523 /*
524 * Set up the block and inode bitmaps, and the inode table for the new groups.
525 * This doesn't need to be part of the main transaction, since we are only
526 * changing blocks outside the actual filesystem. We still do journaling to
527 * ensure the recovery is correct in case of a failure just after resize.
528 * If any part of this fails, we simply abort the resize.
529 *
530 * setup_new_flex_group_blocks handles a flex group as follow:
531 * 1. copy super block and GDT, and initialize group tables if necessary.
532 * In this step, we only set bits in blocks bitmaps for blocks taken by
533 * super block and GDT.
534 * 2. allocate group tables in block bitmaps, that is, set bits in block
535 * bitmap for blocks taken by group tables.
536 */
setup_new_flex_group_blocks(struct super_block * sb,struct ext4_new_flex_group_data * flex_gd)537 static int setup_new_flex_group_blocks(struct super_block *sb,
538 struct ext4_new_flex_group_data *flex_gd)
539 {
540 int group_table_count[] = {1, 1, EXT4_SB(sb)->s_itb_per_group};
541 ext4_fsblk_t start;
542 ext4_fsblk_t block;
543 struct ext4_sb_info *sbi = EXT4_SB(sb);
544 struct ext4_super_block *es = sbi->s_es;
545 struct ext4_new_group_data *group_data = flex_gd->groups;
546 __u16 *bg_flags = flex_gd->bg_flags;
547 handle_t *handle;
548 ext4_group_t group, count;
549 struct buffer_head *bh = NULL;
550 int reserved_gdb, i, j, err = 0, err2;
551 int meta_bg;
552
553 BUG_ON(!flex_gd->count || !group_data ||
554 group_data[0].group != sbi->s_groups_count);
555
556 reserved_gdb = le16_to_cpu(es->s_reserved_gdt_blocks);
557 meta_bg = ext4_has_feature_meta_bg(sb);
558
559 /* This transaction may be extended/restarted along the way */
560 handle = ext4_journal_start_sb(sb, EXT4_HT_RESIZE, EXT4_MAX_TRANS_DATA);
561 if (IS_ERR(handle))
562 return PTR_ERR(handle);
563
564 group = group_data[0].group;
565 for (i = 0; i < flex_gd->count; i++, group++) {
566 unsigned long gdblocks;
567 ext4_grpblk_t overhead;
568
569 gdblocks = ext4_bg_num_gdb(sb, group);
570 start = ext4_group_first_block_no(sb, group);
571
572 if (meta_bg == 0 && !ext4_bg_has_super(sb, group))
573 goto handle_itb;
574
575 if (meta_bg == 1) {
576 ext4_group_t first_group;
577 first_group = ext4_meta_bg_first_group(sb, group);
578 if (first_group != group + 1 &&
579 first_group != group + EXT4_DESC_PER_BLOCK(sb) - 1)
580 goto handle_itb;
581 }
582
583 block = start + ext4_bg_has_super(sb, group);
584 /* Copy all of the GDT blocks into the backup in this group */
585 for (j = 0; j < gdblocks; j++, block++) {
586 struct buffer_head *gdb;
587
588 ext4_debug("update backup group %#04llx\n", block);
589 err = extend_or_restart_transaction(handle, 1);
590 if (err)
591 goto out;
592
593 gdb = sb_getblk(sb, block);
594 if (unlikely(!gdb)) {
595 err = -ENOMEM;
596 goto out;
597 }
598
599 BUFFER_TRACE(gdb, "get_write_access");
600 err = ext4_journal_get_write_access(handle, gdb);
601 if (err) {
602 brelse(gdb);
603 goto out;
604 }
605 memcpy(gdb->b_data, sbi_array_rcu_deref(sbi,
606 s_group_desc, j)->b_data, gdb->b_size);
607 set_buffer_uptodate(gdb);
608
609 err = ext4_handle_dirty_metadata(handle, NULL, gdb);
610 if (unlikely(err)) {
611 brelse(gdb);
612 goto out;
613 }
614 brelse(gdb);
615 }
616
617 /* Zero out all of the reserved backup group descriptor
618 * table blocks
619 */
620 if (ext4_bg_has_super(sb, group)) {
621 err = sb_issue_zeroout(sb, gdblocks + start + 1,
622 reserved_gdb, GFP_NOFS);
623 if (err)
624 goto out;
625 }
626
627 handle_itb:
628 /* Initialize group tables of the grop @group */
629 if (!(bg_flags[i] & EXT4_BG_INODE_ZEROED))
630 goto handle_bb;
631
632 /* Zero out all of the inode table blocks */
633 block = group_data[i].inode_table;
634 ext4_debug("clear inode table blocks %#04llx -> %#04lx\n",
635 block, sbi->s_itb_per_group);
636 err = sb_issue_zeroout(sb, block, sbi->s_itb_per_group,
637 GFP_NOFS);
638 if (err)
639 goto out;
640
641 handle_bb:
642 if (bg_flags[i] & EXT4_BG_BLOCK_UNINIT)
643 goto handle_ib;
644
645 /* Initialize block bitmap of the @group */
646 block = group_data[i].block_bitmap;
647 err = extend_or_restart_transaction(handle, 1);
648 if (err)
649 goto out;
650
651 bh = bclean(handle, sb, block);
652 if (IS_ERR(bh)) {
653 err = PTR_ERR(bh);
654 goto out;
655 }
656 overhead = ext4_group_overhead_blocks(sb, group);
657 if (overhead != 0) {
658 ext4_debug("mark backup superblock %#04llx (+0)\n",
659 start);
660 ext4_set_bits(bh->b_data, 0,
661 EXT4_NUM_B2C(sbi, overhead));
662 }
663 ext4_mark_bitmap_end(EXT4_B2C(sbi, group_data[i].blocks_count),
664 sb->s_blocksize * 8, bh->b_data);
665 err = ext4_handle_dirty_metadata(handle, NULL, bh);
666 brelse(bh);
667 if (err)
668 goto out;
669
670 handle_ib:
671 if (bg_flags[i] & EXT4_BG_INODE_UNINIT)
672 continue;
673
674 /* Initialize inode bitmap of the @group */
675 block = group_data[i].inode_bitmap;
676 err = extend_or_restart_transaction(handle, 1);
677 if (err)
678 goto out;
679 /* Mark unused entries in inode bitmap used */
680 bh = bclean(handle, sb, block);
681 if (IS_ERR(bh)) {
682 err = PTR_ERR(bh);
683 goto out;
684 }
685
686 ext4_mark_bitmap_end(EXT4_INODES_PER_GROUP(sb),
687 sb->s_blocksize * 8, bh->b_data);
688 err = ext4_handle_dirty_metadata(handle, NULL, bh);
689 brelse(bh);
690 if (err)
691 goto out;
692 }
693
694 /* Mark group tables in block bitmap */
695 for (j = 0; j < GROUP_TABLE_COUNT; j++) {
696 count = group_table_count[j];
697 start = (&group_data[0].block_bitmap)[j];
698 block = start;
699 for (i = 1; i < flex_gd->count; i++) {
700 block += group_table_count[j];
701 if (block == (&group_data[i].block_bitmap)[j]) {
702 count += group_table_count[j];
703 continue;
704 }
705 err = set_flexbg_block_bitmap(sb, handle,
706 flex_gd,
707 EXT4_B2C(sbi, start),
708 EXT4_B2C(sbi,
709 start + count
710 - 1));
711 if (err)
712 goto out;
713 count = group_table_count[j];
714 start = (&group_data[i].block_bitmap)[j];
715 block = start;
716 }
717
718 if (count) {
719 err = set_flexbg_block_bitmap(sb, handle,
720 flex_gd,
721 EXT4_B2C(sbi, start),
722 EXT4_B2C(sbi,
723 start + count
724 - 1));
725 if (err)
726 goto out;
727 }
728 }
729
730 out:
731 err2 = ext4_journal_stop(handle);
732 if (err2 && !err)
733 err = err2;
734
735 return err;
736 }
737
738 /*
739 * Iterate through the groups which hold BACKUP superblock/GDT copies in an
740 * ext4 filesystem. The counters should be initialized to 1, 5, and 7 before
741 * calling this for the first time. In a sparse filesystem it will be the
742 * sequence of powers of 3, 5, and 7: 1, 3, 5, 7, 9, 25, 27, 49, 81, ...
743 * For a non-sparse filesystem it will be every group: 1, 2, 3, 4, ...
744 */
ext4_list_backups(struct super_block * sb,unsigned * three,unsigned * five,unsigned * seven)745 static unsigned ext4_list_backups(struct super_block *sb, unsigned *three,
746 unsigned *five, unsigned *seven)
747 {
748 unsigned *min = three;
749 int mult = 3;
750 unsigned ret;
751
752 if (!ext4_has_feature_sparse_super(sb)) {
753 ret = *min;
754 *min += 1;
755 return ret;
756 }
757
758 if (*five < *min) {
759 min = five;
760 mult = 5;
761 }
762 if (*seven < *min) {
763 min = seven;
764 mult = 7;
765 }
766
767 ret = *min;
768 *min *= mult;
769
770 return ret;
771 }
772
773 /*
774 * Check that all of the backup GDT blocks are held in the primary GDT block.
775 * It is assumed that they are stored in group order. Returns the number of
776 * groups in current filesystem that have BACKUPS, or -ve error code.
777 */
verify_reserved_gdb(struct super_block * sb,ext4_group_t end,struct buffer_head * primary)778 static int verify_reserved_gdb(struct super_block *sb,
779 ext4_group_t end,
780 struct buffer_head *primary)
781 {
782 const ext4_fsblk_t blk = primary->b_blocknr;
783 unsigned three = 1;
784 unsigned five = 5;
785 unsigned seven = 7;
786 unsigned grp;
787 __le32 *p = (__le32 *)primary->b_data;
788 int gdbackups = 0;
789
790 while ((grp = ext4_list_backups(sb, &three, &five, &seven)) < end) {
791 if (le32_to_cpu(*p++) !=
792 grp * EXT4_BLOCKS_PER_GROUP(sb) + blk){
793 ext4_warning(sb, "reserved GDT %llu"
794 " missing grp %d (%llu)",
795 blk, grp,
796 grp *
797 (ext4_fsblk_t)EXT4_BLOCKS_PER_GROUP(sb) +
798 blk);
799 return -EINVAL;
800 }
801 if (++gdbackups > EXT4_ADDR_PER_BLOCK(sb))
802 return -EFBIG;
803 }
804
805 return gdbackups;
806 }
807
808 /*
809 * Called when we need to bring a reserved group descriptor table block into
810 * use from the resize inode. The primary copy of the new GDT block currently
811 * is an indirect block (under the double indirect block in the resize inode).
812 * The new backup GDT blocks will be stored as leaf blocks in this indirect
813 * block, in group order. Even though we know all the block numbers we need,
814 * we check to ensure that the resize inode has actually reserved these blocks.
815 *
816 * Don't need to update the block bitmaps because the blocks are still in use.
817 *
818 * We get all of the error cases out of the way, so that we are sure to not
819 * fail once we start modifying the data on disk, because JBD has no rollback.
820 */
add_new_gdb(handle_t * handle,struct inode * inode,ext4_group_t group)821 static int add_new_gdb(handle_t *handle, struct inode *inode,
822 ext4_group_t group)
823 {
824 struct super_block *sb = inode->i_sb;
825 struct ext4_super_block *es = EXT4_SB(sb)->s_es;
826 unsigned long gdb_num = group / EXT4_DESC_PER_BLOCK(sb);
827 ext4_fsblk_t gdblock = EXT4_SB(sb)->s_sbh->b_blocknr + 1 + gdb_num;
828 struct buffer_head **o_group_desc, **n_group_desc = NULL;
829 struct buffer_head *dind = NULL;
830 struct buffer_head *gdb_bh = NULL;
831 int gdbackups;
832 struct ext4_iloc iloc = { .bh = NULL };
833 __le32 *data;
834 int err;
835
836 if (test_opt(sb, DEBUG))
837 printk(KERN_DEBUG
838 "EXT4-fs: ext4_add_new_gdb: adding group block %lu\n",
839 gdb_num);
840
841 gdb_bh = ext4_sb_bread(sb, gdblock, 0);
842 if (IS_ERR(gdb_bh))
843 return PTR_ERR(gdb_bh);
844
845 gdbackups = verify_reserved_gdb(sb, group, gdb_bh);
846 if (gdbackups < 0) {
847 err = gdbackups;
848 goto errout;
849 }
850
851 data = EXT4_I(inode)->i_data + EXT4_DIND_BLOCK;
852 dind = ext4_sb_bread(sb, le32_to_cpu(*data), 0);
853 if (IS_ERR(dind)) {
854 err = PTR_ERR(dind);
855 dind = NULL;
856 goto errout;
857 }
858
859 data = (__le32 *)dind->b_data;
860 if (le32_to_cpu(data[gdb_num % EXT4_ADDR_PER_BLOCK(sb)]) != gdblock) {
861 ext4_warning(sb, "new group %u GDT block %llu not reserved",
862 group, gdblock);
863 err = -EINVAL;
864 goto errout;
865 }
866
867 BUFFER_TRACE(EXT4_SB(sb)->s_sbh, "get_write_access");
868 err = ext4_journal_get_write_access(handle, EXT4_SB(sb)->s_sbh);
869 if (unlikely(err))
870 goto errout;
871
872 BUFFER_TRACE(gdb_bh, "get_write_access");
873 err = ext4_journal_get_write_access(handle, gdb_bh);
874 if (unlikely(err))
875 goto errout;
876
877 BUFFER_TRACE(dind, "get_write_access");
878 err = ext4_journal_get_write_access(handle, dind);
879 if (unlikely(err)) {
880 ext4_std_error(sb, err);
881 goto errout;
882 }
883
884 /* ext4_reserve_inode_write() gets a reference on the iloc */
885 err = ext4_reserve_inode_write(handle, inode, &iloc);
886 if (unlikely(err))
887 goto errout;
888
889 n_group_desc = ext4_kvmalloc((gdb_num + 1) *
890 sizeof(struct buffer_head *),
891 GFP_NOFS);
892 if (!n_group_desc) {
893 err = -ENOMEM;
894 ext4_warning(sb, "not enough memory for %lu groups",
895 gdb_num + 1);
896 goto errout;
897 }
898
899 /*
900 * Finally, we have all of the possible failures behind us...
901 *
902 * Remove new GDT block from inode double-indirect block and clear out
903 * the new GDT block for use (which also "frees" the backup GDT blocks
904 * from the reserved inode). We don't need to change the bitmaps for
905 * these blocks, because they are marked as in-use from being in the
906 * reserved inode, and will become GDT blocks (primary and backup).
907 */
908 data[gdb_num % EXT4_ADDR_PER_BLOCK(sb)] = 0;
909 err = ext4_handle_dirty_metadata(handle, NULL, dind);
910 if (unlikely(err)) {
911 ext4_std_error(sb, err);
912 goto errout;
913 }
914 inode->i_blocks -= (gdbackups + 1) * sb->s_blocksize >>
915 (9 - EXT4_SB(sb)->s_cluster_bits);
916 ext4_mark_iloc_dirty(handle, inode, &iloc);
917 memset(gdb_bh->b_data, 0, sb->s_blocksize);
918 err = ext4_handle_dirty_metadata(handle, NULL, gdb_bh);
919 if (unlikely(err)) {
920 ext4_std_error(sb, err);
921 iloc.bh = NULL;
922 goto errout;
923 }
924 brelse(dind);
925
926 rcu_read_lock();
927 o_group_desc = rcu_dereference(EXT4_SB(sb)->s_group_desc);
928 memcpy(n_group_desc, o_group_desc,
929 EXT4_SB(sb)->s_gdb_count * sizeof(struct buffer_head *));
930 rcu_read_unlock();
931 n_group_desc[gdb_num] = gdb_bh;
932 rcu_assign_pointer(EXT4_SB(sb)->s_group_desc, n_group_desc);
933 EXT4_SB(sb)->s_gdb_count++;
934 ext4_kvfree_array_rcu(o_group_desc);
935
936 le16_add_cpu(&es->s_reserved_gdt_blocks, -1);
937 err = ext4_handle_dirty_super(handle, sb);
938 if (err)
939 ext4_std_error(sb, err);
940 return err;
941 errout:
942 kvfree(n_group_desc);
943 brelse(iloc.bh);
944 brelse(dind);
945 brelse(gdb_bh);
946
947 ext4_debug("leaving with error %d\n", err);
948 return err;
949 }
950
951 /*
952 * add_new_gdb_meta_bg is the sister of add_new_gdb.
953 */
add_new_gdb_meta_bg(struct super_block * sb,handle_t * handle,ext4_group_t group)954 static int add_new_gdb_meta_bg(struct super_block *sb,
955 handle_t *handle, ext4_group_t group) {
956 ext4_fsblk_t gdblock;
957 struct buffer_head *gdb_bh;
958 struct buffer_head **o_group_desc, **n_group_desc;
959 unsigned long gdb_num = group / EXT4_DESC_PER_BLOCK(sb);
960 int err;
961
962 gdblock = ext4_meta_bg_first_block_no(sb, group) +
963 ext4_bg_has_super(sb, group);
964 gdb_bh = ext4_sb_bread(sb, gdblock, 0);
965 if (IS_ERR(gdb_bh))
966 return PTR_ERR(gdb_bh);
967 n_group_desc = ext4_kvmalloc((gdb_num + 1) *
968 sizeof(struct buffer_head *),
969 GFP_NOFS);
970 if (!n_group_desc) {
971 brelse(gdb_bh);
972 err = -ENOMEM;
973 ext4_warning(sb, "not enough memory for %lu groups",
974 gdb_num + 1);
975 return err;
976 }
977
978 rcu_read_lock();
979 o_group_desc = rcu_dereference(EXT4_SB(sb)->s_group_desc);
980 memcpy(n_group_desc, o_group_desc,
981 EXT4_SB(sb)->s_gdb_count * sizeof(struct buffer_head *));
982 rcu_read_unlock();
983 n_group_desc[gdb_num] = gdb_bh;
984
985 BUFFER_TRACE(gdb_bh, "get_write_access");
986 err = ext4_journal_get_write_access(handle, gdb_bh);
987 if (err) {
988 kvfree(n_group_desc);
989 brelse(gdb_bh);
990 return err;
991 }
992
993 rcu_assign_pointer(EXT4_SB(sb)->s_group_desc, n_group_desc);
994 EXT4_SB(sb)->s_gdb_count++;
995 ext4_kvfree_array_rcu(o_group_desc);
996 return err;
997 }
998
999 /*
1000 * Called when we are adding a new group which has a backup copy of each of
1001 * the GDT blocks (i.e. sparse group) and there are reserved GDT blocks.
1002 * We need to add these reserved backup GDT blocks to the resize inode, so
1003 * that they are kept for future resizing and not allocated to files.
1004 *
1005 * Each reserved backup GDT block will go into a different indirect block.
1006 * The indirect blocks are actually the primary reserved GDT blocks,
1007 * so we know in advance what their block numbers are. We only get the
1008 * double-indirect block to verify it is pointing to the primary reserved
1009 * GDT blocks so we don't overwrite a data block by accident. The reserved
1010 * backup GDT blocks are stored in their reserved primary GDT block.
1011 */
reserve_backup_gdb(handle_t * handle,struct inode * inode,ext4_group_t group)1012 static int reserve_backup_gdb(handle_t *handle, struct inode *inode,
1013 ext4_group_t group)
1014 {
1015 struct super_block *sb = inode->i_sb;
1016 int reserved_gdb =le16_to_cpu(EXT4_SB(sb)->s_es->s_reserved_gdt_blocks);
1017 int cluster_bits = EXT4_SB(sb)->s_cluster_bits;
1018 struct buffer_head **primary;
1019 struct buffer_head *dind;
1020 struct ext4_iloc iloc;
1021 ext4_fsblk_t blk;
1022 __le32 *data, *end;
1023 int gdbackups = 0;
1024 int res, i;
1025 int err;
1026
1027 primary = kmalloc_array(reserved_gdb, sizeof(*primary), GFP_NOFS);
1028 if (!primary)
1029 return -ENOMEM;
1030
1031 data = EXT4_I(inode)->i_data + EXT4_DIND_BLOCK;
1032 dind = ext4_sb_bread(sb, le32_to_cpu(*data), 0);
1033 if (IS_ERR(dind)) {
1034 err = PTR_ERR(dind);
1035 dind = NULL;
1036 goto exit_free;
1037 }
1038
1039 blk = EXT4_SB(sb)->s_sbh->b_blocknr + 1 + EXT4_SB(sb)->s_gdb_count;
1040 data = (__le32 *)dind->b_data + (EXT4_SB(sb)->s_gdb_count %
1041 EXT4_ADDR_PER_BLOCK(sb));
1042 end = (__le32 *)dind->b_data + EXT4_ADDR_PER_BLOCK(sb);
1043
1044 /* Get each reserved primary GDT block and verify it holds backups */
1045 for (res = 0; res < reserved_gdb; res++, blk++) {
1046 if (le32_to_cpu(*data) != blk) {
1047 ext4_warning(sb, "reserved block %llu"
1048 " not at offset %ld",
1049 blk,
1050 (long)(data - (__le32 *)dind->b_data));
1051 err = -EINVAL;
1052 goto exit_bh;
1053 }
1054 primary[res] = ext4_sb_bread(sb, blk, 0);
1055 if (IS_ERR(primary[res])) {
1056 err = PTR_ERR(primary[res]);
1057 primary[res] = NULL;
1058 goto exit_bh;
1059 }
1060 gdbackups = verify_reserved_gdb(sb, group, primary[res]);
1061 if (gdbackups < 0) {
1062 brelse(primary[res]);
1063 err = gdbackups;
1064 goto exit_bh;
1065 }
1066 if (++data >= end)
1067 data = (__le32 *)dind->b_data;
1068 }
1069
1070 for (i = 0; i < reserved_gdb; i++) {
1071 BUFFER_TRACE(primary[i], "get_write_access");
1072 if ((err = ext4_journal_get_write_access(handle, primary[i])))
1073 goto exit_bh;
1074 }
1075
1076 if ((err = ext4_reserve_inode_write(handle, inode, &iloc)))
1077 goto exit_bh;
1078
1079 /*
1080 * Finally we can add each of the reserved backup GDT blocks from
1081 * the new group to its reserved primary GDT block.
1082 */
1083 blk = group * EXT4_BLOCKS_PER_GROUP(sb);
1084 for (i = 0; i < reserved_gdb; i++) {
1085 int err2;
1086 data = (__le32 *)primary[i]->b_data;
1087 /* printk("reserving backup %lu[%u] = %lu\n",
1088 primary[i]->b_blocknr, gdbackups,
1089 blk + primary[i]->b_blocknr); */
1090 data[gdbackups] = cpu_to_le32(blk + primary[i]->b_blocknr);
1091 err2 = ext4_handle_dirty_metadata(handle, NULL, primary[i]);
1092 if (!err)
1093 err = err2;
1094 }
1095
1096 inode->i_blocks += reserved_gdb * sb->s_blocksize >> (9 - cluster_bits);
1097 ext4_mark_iloc_dirty(handle, inode, &iloc);
1098
1099 exit_bh:
1100 while (--res >= 0)
1101 brelse(primary[res]);
1102 brelse(dind);
1103
1104 exit_free:
1105 kfree(primary);
1106
1107 return err;
1108 }
1109
1110 /*
1111 * Update the backup copies of the ext4 metadata. These don't need to be part
1112 * of the main resize transaction, because e2fsck will re-write them if there
1113 * is a problem (basically only OOM will cause a problem). However, we
1114 * _should_ update the backups if possible, in case the primary gets trashed
1115 * for some reason and we need to run e2fsck from a backup superblock. The
1116 * important part is that the new block and inode counts are in the backup
1117 * superblocks, and the location of the new group metadata in the GDT backups.
1118 *
1119 * We do not need take the s_resize_lock for this, because these
1120 * blocks are not otherwise touched by the filesystem code when it is
1121 * mounted. We don't need to worry about last changing from
1122 * sbi->s_groups_count, because the worst that can happen is that we
1123 * do not copy the full number of backups at this time. The resize
1124 * which changed s_groups_count will backup again.
1125 */
update_backups(struct super_block * sb,sector_t blk_off,char * data,int size,int meta_bg)1126 static void update_backups(struct super_block *sb, sector_t blk_off, char *data,
1127 int size, int meta_bg)
1128 {
1129 struct ext4_sb_info *sbi = EXT4_SB(sb);
1130 ext4_group_t last;
1131 const int bpg = EXT4_BLOCKS_PER_GROUP(sb);
1132 unsigned three = 1;
1133 unsigned five = 5;
1134 unsigned seven = 7;
1135 ext4_group_t group = 0;
1136 int rest = sb->s_blocksize - size;
1137 handle_t *handle;
1138 int err = 0, err2;
1139
1140 handle = ext4_journal_start_sb(sb, EXT4_HT_RESIZE, EXT4_MAX_TRANS_DATA);
1141 if (IS_ERR(handle)) {
1142 group = 1;
1143 err = PTR_ERR(handle);
1144 goto exit_err;
1145 }
1146
1147 if (meta_bg == 0) {
1148 group = ext4_list_backups(sb, &three, &five, &seven);
1149 last = sbi->s_groups_count;
1150 } else {
1151 group = ext4_get_group_number(sb, blk_off) + 1;
1152 last = (ext4_group_t)(group + EXT4_DESC_PER_BLOCK(sb) - 2);
1153 }
1154
1155 while (group < sbi->s_groups_count) {
1156 struct buffer_head *bh;
1157 ext4_fsblk_t backup_block;
1158
1159 /* Out of journal space, and can't get more - abort - so sad */
1160 if (ext4_handle_valid(handle) &&
1161 handle->h_buffer_credits == 0 &&
1162 ext4_journal_extend(handle, EXT4_MAX_TRANS_DATA) &&
1163 (err = ext4_journal_restart(handle, EXT4_MAX_TRANS_DATA)))
1164 break;
1165
1166 if (meta_bg == 0)
1167 backup_block = ((ext4_fsblk_t)group) * bpg + blk_off;
1168 else
1169 backup_block = (ext4_group_first_block_no(sb, group) +
1170 ext4_bg_has_super(sb, group));
1171
1172 bh = sb_getblk(sb, backup_block);
1173 if (unlikely(!bh)) {
1174 err = -ENOMEM;
1175 break;
1176 }
1177 ext4_debug("update metadata backup %llu(+%llu)\n",
1178 backup_block, backup_block -
1179 ext4_group_first_block_no(sb, group));
1180 BUFFER_TRACE(bh, "get_write_access");
1181 if ((err = ext4_journal_get_write_access(handle, bh))) {
1182 brelse(bh);
1183 break;
1184 }
1185 lock_buffer(bh);
1186 memcpy(bh->b_data, data, size);
1187 if (rest)
1188 memset(bh->b_data + size, 0, rest);
1189 set_buffer_uptodate(bh);
1190 unlock_buffer(bh);
1191 err = ext4_handle_dirty_metadata(handle, NULL, bh);
1192 if (unlikely(err))
1193 ext4_std_error(sb, err);
1194 brelse(bh);
1195
1196 if (meta_bg == 0)
1197 group = ext4_list_backups(sb, &three, &five, &seven);
1198 else if (group == last)
1199 break;
1200 else
1201 group = last;
1202 }
1203 if ((err2 = ext4_journal_stop(handle)) && !err)
1204 err = err2;
1205
1206 /*
1207 * Ugh! Need to have e2fsck write the backup copies. It is too
1208 * late to revert the resize, we shouldn't fail just because of
1209 * the backup copies (they are only needed in case of corruption).
1210 *
1211 * However, if we got here we have a journal problem too, so we
1212 * can't really start a transaction to mark the superblock.
1213 * Chicken out and just set the flag on the hope it will be written
1214 * to disk, and if not - we will simply wait until next fsck.
1215 */
1216 exit_err:
1217 if (err) {
1218 ext4_warning(sb, "can't update backup for group %u (err %d), "
1219 "forcing fsck on next reboot", group, err);
1220 sbi->s_mount_state &= ~EXT4_VALID_FS;
1221 sbi->s_es->s_state &= cpu_to_le16(~EXT4_VALID_FS);
1222 mark_buffer_dirty(sbi->s_sbh);
1223 }
1224 }
1225
1226 /*
1227 * ext4_add_new_descs() adds @count group descriptor of groups
1228 * starting at @group
1229 *
1230 * @handle: journal handle
1231 * @sb: super block
1232 * @group: the group no. of the first group desc to be added
1233 * @resize_inode: the resize inode
1234 * @count: number of group descriptors to be added
1235 */
ext4_add_new_descs(handle_t * handle,struct super_block * sb,ext4_group_t group,struct inode * resize_inode,ext4_group_t count)1236 static int ext4_add_new_descs(handle_t *handle, struct super_block *sb,
1237 ext4_group_t group, struct inode *resize_inode,
1238 ext4_group_t count)
1239 {
1240 struct ext4_sb_info *sbi = EXT4_SB(sb);
1241 struct ext4_super_block *es = sbi->s_es;
1242 struct buffer_head *gdb_bh;
1243 int i, gdb_off, gdb_num, err = 0;
1244 int meta_bg;
1245
1246 meta_bg = ext4_has_feature_meta_bg(sb);
1247 for (i = 0; i < count; i++, group++) {
1248 int reserved_gdb = ext4_bg_has_super(sb, group) ?
1249 le16_to_cpu(es->s_reserved_gdt_blocks) : 0;
1250
1251 gdb_off = group % EXT4_DESC_PER_BLOCK(sb);
1252 gdb_num = group / EXT4_DESC_PER_BLOCK(sb);
1253
1254 /*
1255 * We will only either add reserved group blocks to a backup group
1256 * or remove reserved blocks for the first group in a new group block.
1257 * Doing both would be mean more complex code, and sane people don't
1258 * use non-sparse filesystems anymore. This is already checked above.
1259 */
1260 if (gdb_off) {
1261 gdb_bh = sbi_array_rcu_deref(sbi, s_group_desc,
1262 gdb_num);
1263 BUFFER_TRACE(gdb_bh, "get_write_access");
1264 err = ext4_journal_get_write_access(handle, gdb_bh);
1265
1266 if (!err && reserved_gdb && ext4_bg_num_gdb(sb, group))
1267 err = reserve_backup_gdb(handle, resize_inode, group);
1268 } else if (meta_bg != 0) {
1269 err = add_new_gdb_meta_bg(sb, handle, group);
1270 } else {
1271 err = add_new_gdb(handle, resize_inode, group);
1272 }
1273 if (err)
1274 break;
1275 }
1276 return err;
1277 }
1278
ext4_get_bitmap(struct super_block * sb,__u64 block)1279 static struct buffer_head *ext4_get_bitmap(struct super_block *sb, __u64 block)
1280 {
1281 struct buffer_head *bh = sb_getblk(sb, block);
1282 if (unlikely(!bh))
1283 return NULL;
1284 if (!bh_uptodate_or_lock(bh)) {
1285 if (bh_submit_read(bh) < 0) {
1286 brelse(bh);
1287 return NULL;
1288 }
1289 }
1290
1291 return bh;
1292 }
1293
ext4_set_bitmap_checksums(struct super_block * sb,ext4_group_t group,struct ext4_group_desc * gdp,struct ext4_new_group_data * group_data)1294 static int ext4_set_bitmap_checksums(struct super_block *sb,
1295 ext4_group_t group,
1296 struct ext4_group_desc *gdp,
1297 struct ext4_new_group_data *group_data)
1298 {
1299 struct buffer_head *bh;
1300
1301 if (!ext4_has_metadata_csum(sb))
1302 return 0;
1303
1304 bh = ext4_get_bitmap(sb, group_data->inode_bitmap);
1305 if (!bh)
1306 return -EIO;
1307 ext4_inode_bitmap_csum_set(sb, group, gdp, bh,
1308 EXT4_INODES_PER_GROUP(sb) / 8);
1309 brelse(bh);
1310
1311 bh = ext4_get_bitmap(sb, group_data->block_bitmap);
1312 if (!bh)
1313 return -EIO;
1314 ext4_block_bitmap_csum_set(sb, group, gdp, bh);
1315 brelse(bh);
1316
1317 return 0;
1318 }
1319
1320 /*
1321 * ext4_setup_new_descs() will set up the group descriptor descriptors of a flex bg
1322 */
ext4_setup_new_descs(handle_t * handle,struct super_block * sb,struct ext4_new_flex_group_data * flex_gd)1323 static int ext4_setup_new_descs(handle_t *handle, struct super_block *sb,
1324 struct ext4_new_flex_group_data *flex_gd)
1325 {
1326 struct ext4_new_group_data *group_data = flex_gd->groups;
1327 struct ext4_group_desc *gdp;
1328 struct ext4_sb_info *sbi = EXT4_SB(sb);
1329 struct buffer_head *gdb_bh;
1330 ext4_group_t group;
1331 __u16 *bg_flags = flex_gd->bg_flags;
1332 int i, gdb_off, gdb_num, err = 0;
1333
1334
1335 for (i = 0; i < flex_gd->count; i++, group_data++, bg_flags++) {
1336 group = group_data->group;
1337
1338 gdb_off = group % EXT4_DESC_PER_BLOCK(sb);
1339 gdb_num = group / EXT4_DESC_PER_BLOCK(sb);
1340
1341 /*
1342 * get_write_access() has been called on gdb_bh by ext4_add_new_desc().
1343 */
1344 gdb_bh = sbi_array_rcu_deref(sbi, s_group_desc, gdb_num);
1345 /* Update group descriptor block for new group */
1346 gdp = (struct ext4_group_desc *)(gdb_bh->b_data +
1347 gdb_off * EXT4_DESC_SIZE(sb));
1348
1349 memset(gdp, 0, EXT4_DESC_SIZE(sb));
1350 ext4_block_bitmap_set(sb, gdp, group_data->block_bitmap);
1351 ext4_inode_bitmap_set(sb, gdp, group_data->inode_bitmap);
1352 err = ext4_set_bitmap_checksums(sb, group, gdp, group_data);
1353 if (err) {
1354 ext4_std_error(sb, err);
1355 break;
1356 }
1357
1358 ext4_inode_table_set(sb, gdp, group_data->inode_table);
1359 ext4_free_group_clusters_set(sb, gdp,
1360 group_data->free_clusters_count);
1361 ext4_free_inodes_set(sb, gdp, EXT4_INODES_PER_GROUP(sb));
1362 if (ext4_has_group_desc_csum(sb))
1363 ext4_itable_unused_set(sb, gdp,
1364 EXT4_INODES_PER_GROUP(sb));
1365 gdp->bg_flags = cpu_to_le16(*bg_flags);
1366 ext4_group_desc_csum_set(sb, group, gdp);
1367
1368 err = ext4_handle_dirty_metadata(handle, NULL, gdb_bh);
1369 if (unlikely(err)) {
1370 ext4_std_error(sb, err);
1371 break;
1372 }
1373
1374 /*
1375 * We can allocate memory for mb_alloc based on the new group
1376 * descriptor
1377 */
1378 err = ext4_mb_add_groupinfo(sb, group, gdp);
1379 if (err)
1380 break;
1381 }
1382 return err;
1383 }
1384
1385 /*
1386 * ext4_update_super() updates the super block so that the newly added
1387 * groups can be seen by the filesystem.
1388 *
1389 * @sb: super block
1390 * @flex_gd: new added groups
1391 */
ext4_update_super(struct super_block * sb,struct ext4_new_flex_group_data * flex_gd)1392 static void ext4_update_super(struct super_block *sb,
1393 struct ext4_new_flex_group_data *flex_gd)
1394 {
1395 ext4_fsblk_t blocks_count = 0;
1396 ext4_fsblk_t free_blocks = 0;
1397 ext4_fsblk_t reserved_blocks = 0;
1398 struct ext4_new_group_data *group_data = flex_gd->groups;
1399 struct ext4_sb_info *sbi = EXT4_SB(sb);
1400 struct ext4_super_block *es = sbi->s_es;
1401 int i;
1402
1403 BUG_ON(flex_gd->count == 0 || group_data == NULL);
1404 /*
1405 * Make the new blocks and inodes valid next. We do this before
1406 * increasing the group count so that once the group is enabled,
1407 * all of its blocks and inodes are already valid.
1408 *
1409 * We always allocate group-by-group, then block-by-block or
1410 * inode-by-inode within a group, so enabling these
1411 * blocks/inodes before the group is live won't actually let us
1412 * allocate the new space yet.
1413 */
1414 for (i = 0; i < flex_gd->count; i++) {
1415 blocks_count += group_data[i].blocks_count;
1416 free_blocks += EXT4_C2B(sbi, group_data[i].free_clusters_count);
1417 }
1418
1419 reserved_blocks = ext4_r_blocks_count(es) * 100;
1420 reserved_blocks = div64_u64(reserved_blocks, ext4_blocks_count(es));
1421 reserved_blocks *= blocks_count;
1422 do_div(reserved_blocks, 100);
1423
1424 ext4_blocks_count_set(es, ext4_blocks_count(es) + blocks_count);
1425 ext4_free_blocks_count_set(es, ext4_free_blocks_count(es) + free_blocks);
1426 le32_add_cpu(&es->s_inodes_count, EXT4_INODES_PER_GROUP(sb) *
1427 flex_gd->count);
1428 le32_add_cpu(&es->s_free_inodes_count, EXT4_INODES_PER_GROUP(sb) *
1429 flex_gd->count);
1430
1431 ext4_debug("free blocks count %llu", ext4_free_blocks_count(es));
1432 /*
1433 * We need to protect s_groups_count against other CPUs seeing
1434 * inconsistent state in the superblock.
1435 *
1436 * The precise rules we use are:
1437 *
1438 * * Writers must perform a smp_wmb() after updating all
1439 * dependent data and before modifying the groups count
1440 *
1441 * * Readers must perform an smp_rmb() after reading the groups
1442 * count and before reading any dependent data.
1443 *
1444 * NB. These rules can be relaxed when checking the group count
1445 * while freeing data, as we can only allocate from a block
1446 * group after serialising against the group count, and we can
1447 * only then free after serialising in turn against that
1448 * allocation.
1449 */
1450 smp_wmb();
1451
1452 /* Update the global fs size fields */
1453 sbi->s_groups_count += flex_gd->count;
1454 sbi->s_blockfile_groups = min_t(ext4_group_t, sbi->s_groups_count,
1455 (EXT4_MAX_BLOCK_FILE_PHYS / EXT4_BLOCKS_PER_GROUP(sb)));
1456
1457 /* Update the reserved block counts only once the new group is
1458 * active. */
1459 ext4_r_blocks_count_set(es, ext4_r_blocks_count(es) +
1460 reserved_blocks);
1461
1462 /* Update the free space counts */
1463 percpu_counter_add(&sbi->s_freeclusters_counter,
1464 EXT4_NUM_B2C(sbi, free_blocks));
1465 percpu_counter_add(&sbi->s_freeinodes_counter,
1466 EXT4_INODES_PER_GROUP(sb) * flex_gd->count);
1467
1468 ext4_debug("free blocks count %llu",
1469 percpu_counter_read(&sbi->s_freeclusters_counter));
1470 if (ext4_has_feature_flex_bg(sb) && sbi->s_log_groups_per_flex) {
1471 ext4_group_t flex_group;
1472 struct flex_groups *fg;
1473
1474 flex_group = ext4_flex_group(sbi, group_data[0].group);
1475 fg = sbi_array_rcu_deref(sbi, s_flex_groups, flex_group);
1476 atomic64_add(EXT4_NUM_B2C(sbi, free_blocks),
1477 &fg->free_clusters);
1478 atomic_add(EXT4_INODES_PER_GROUP(sb) * flex_gd->count,
1479 &fg->free_inodes);
1480 }
1481
1482 /*
1483 * Update the fs overhead information
1484 */
1485 ext4_calculate_overhead(sb);
1486 es->s_overhead_clusters = cpu_to_le32(sbi->s_overhead);
1487
1488 if (test_opt(sb, DEBUG))
1489 printk(KERN_DEBUG "EXT4-fs: added group %u:"
1490 "%llu blocks(%llu free %llu reserved)\n", flex_gd->count,
1491 blocks_count, free_blocks, reserved_blocks);
1492 }
1493
1494 /* Add a flex group to an fs. Ensure we handle all possible error conditions
1495 * _before_ we start modifying the filesystem, because we cannot abort the
1496 * transaction and not have it write the data to disk.
1497 */
ext4_flex_group_add(struct super_block * sb,struct inode * resize_inode,struct ext4_new_flex_group_data * flex_gd)1498 static int ext4_flex_group_add(struct super_block *sb,
1499 struct inode *resize_inode,
1500 struct ext4_new_flex_group_data *flex_gd)
1501 {
1502 struct ext4_sb_info *sbi = EXT4_SB(sb);
1503 struct ext4_super_block *es = sbi->s_es;
1504 ext4_fsblk_t o_blocks_count;
1505 ext4_grpblk_t last;
1506 ext4_group_t group;
1507 handle_t *handle;
1508 unsigned reserved_gdb;
1509 int err = 0, err2 = 0, credit;
1510
1511 BUG_ON(!flex_gd->count || !flex_gd->groups || !flex_gd->bg_flags);
1512
1513 reserved_gdb = le16_to_cpu(es->s_reserved_gdt_blocks);
1514 o_blocks_count = ext4_blocks_count(es);
1515 ext4_get_group_no_and_offset(sb, o_blocks_count, &group, &last);
1516 BUG_ON(last);
1517
1518 err = setup_new_flex_group_blocks(sb, flex_gd);
1519 if (err)
1520 goto exit;
1521 /*
1522 * We will always be modifying at least the superblock and GDT
1523 * blocks. If we are adding a group past the last current GDT block,
1524 * we will also modify the inode and the dindirect block. If we
1525 * are adding a group with superblock/GDT backups we will also
1526 * modify each of the reserved GDT dindirect blocks.
1527 */
1528 credit = 3; /* sb, resize inode, resize inode dindirect */
1529 /* GDT blocks */
1530 credit += 1 + DIV_ROUND_UP(flex_gd->count, EXT4_DESC_PER_BLOCK(sb));
1531 credit += reserved_gdb; /* Reserved GDT dindirect blocks */
1532 handle = ext4_journal_start_sb(sb, EXT4_HT_RESIZE, credit);
1533 if (IS_ERR(handle)) {
1534 err = PTR_ERR(handle);
1535 goto exit;
1536 }
1537
1538 BUFFER_TRACE(sbi->s_sbh, "get_write_access");
1539 err = ext4_journal_get_write_access(handle, sbi->s_sbh);
1540 if (err)
1541 goto exit_journal;
1542
1543 group = flex_gd->groups[0].group;
1544 BUG_ON(group != sbi->s_groups_count);
1545 err = ext4_add_new_descs(handle, sb, group,
1546 resize_inode, flex_gd->count);
1547 if (err)
1548 goto exit_journal;
1549
1550 err = ext4_setup_new_descs(handle, sb, flex_gd);
1551 if (err)
1552 goto exit_journal;
1553
1554 ext4_update_super(sb, flex_gd);
1555
1556 err = ext4_handle_dirty_super(handle, sb);
1557
1558 exit_journal:
1559 err2 = ext4_journal_stop(handle);
1560 if (!err)
1561 err = err2;
1562
1563 if (!err) {
1564 int gdb_num = group / EXT4_DESC_PER_BLOCK(sb);
1565 int gdb_num_end = ((group + flex_gd->count - 1) /
1566 EXT4_DESC_PER_BLOCK(sb));
1567 int meta_bg = ext4_has_feature_meta_bg(sb);
1568 sector_t old_gdb = 0;
1569
1570 update_backups(sb, ext4_group_first_block_no(sb, 0),
1571 (char *)es, sizeof(struct ext4_super_block), 0);
1572 for (; gdb_num <= gdb_num_end; gdb_num++) {
1573 struct buffer_head *gdb_bh;
1574
1575 gdb_bh = sbi_array_rcu_deref(sbi, s_group_desc,
1576 gdb_num);
1577 if (old_gdb == gdb_bh->b_blocknr)
1578 continue;
1579 update_backups(sb, gdb_bh->b_blocknr, gdb_bh->b_data,
1580 gdb_bh->b_size, meta_bg);
1581 old_gdb = gdb_bh->b_blocknr;
1582 }
1583 }
1584 exit:
1585 return err;
1586 }
1587
ext4_setup_next_flex_gd(struct super_block * sb,struct ext4_new_flex_group_data * flex_gd,ext4_fsblk_t n_blocks_count,unsigned long flexbg_size)1588 static int ext4_setup_next_flex_gd(struct super_block *sb,
1589 struct ext4_new_flex_group_data *flex_gd,
1590 ext4_fsblk_t n_blocks_count,
1591 unsigned long flexbg_size)
1592 {
1593 struct ext4_sb_info *sbi = EXT4_SB(sb);
1594 struct ext4_super_block *es = sbi->s_es;
1595 struct ext4_new_group_data *group_data = flex_gd->groups;
1596 ext4_fsblk_t o_blocks_count;
1597 ext4_group_t n_group;
1598 ext4_group_t group;
1599 ext4_group_t last_group;
1600 ext4_grpblk_t last;
1601 ext4_grpblk_t clusters_per_group;
1602 unsigned long i;
1603
1604 clusters_per_group = EXT4_CLUSTERS_PER_GROUP(sb);
1605
1606 o_blocks_count = ext4_blocks_count(es);
1607
1608 if (o_blocks_count == n_blocks_count)
1609 return 0;
1610
1611 ext4_get_group_no_and_offset(sb, o_blocks_count, &group, &last);
1612 BUG_ON(last);
1613 ext4_get_group_no_and_offset(sb, n_blocks_count - 1, &n_group, &last);
1614
1615 last_group = group | (flexbg_size - 1);
1616 if (last_group > n_group)
1617 last_group = n_group;
1618
1619 flex_gd->count = last_group - group + 1;
1620
1621 for (i = 0; i < flex_gd->count; i++) {
1622 int overhead;
1623
1624 group_data[i].group = group + i;
1625 group_data[i].blocks_count = EXT4_BLOCKS_PER_GROUP(sb);
1626 overhead = ext4_group_overhead_blocks(sb, group + i);
1627 group_data[i].mdata_blocks = overhead;
1628 group_data[i].free_clusters_count = EXT4_CLUSTERS_PER_GROUP(sb);
1629 if (ext4_has_group_desc_csum(sb)) {
1630 flex_gd->bg_flags[i] = EXT4_BG_BLOCK_UNINIT |
1631 EXT4_BG_INODE_UNINIT;
1632 if (!test_opt(sb, INIT_INODE_TABLE))
1633 flex_gd->bg_flags[i] |= EXT4_BG_INODE_ZEROED;
1634 } else
1635 flex_gd->bg_flags[i] = EXT4_BG_INODE_ZEROED;
1636 }
1637
1638 if (last_group == n_group && ext4_has_group_desc_csum(sb))
1639 /* We need to initialize block bitmap of last group. */
1640 flex_gd->bg_flags[i - 1] &= ~EXT4_BG_BLOCK_UNINIT;
1641
1642 if ((last_group == n_group) && (last != clusters_per_group - 1)) {
1643 group_data[i - 1].blocks_count = EXT4_C2B(sbi, last + 1);
1644 group_data[i - 1].free_clusters_count -= clusters_per_group -
1645 last - 1;
1646 }
1647
1648 return 1;
1649 }
1650
1651 /* Add group descriptor data to an existing or new group descriptor block.
1652 * Ensure we handle all possible error conditions _before_ we start modifying
1653 * the filesystem, because we cannot abort the transaction and not have it
1654 * write the data to disk.
1655 *
1656 * If we are on a GDT block boundary, we need to get the reserved GDT block.
1657 * Otherwise, we may need to add backup GDT blocks for a sparse group.
1658 *
1659 * We only need to hold the superblock lock while we are actually adding
1660 * in the new group's counts to the superblock. Prior to that we have
1661 * not really "added" the group at all. We re-check that we are still
1662 * adding in the last group in case things have changed since verifying.
1663 */
ext4_group_add(struct super_block * sb,struct ext4_new_group_data * input)1664 int ext4_group_add(struct super_block *sb, struct ext4_new_group_data *input)
1665 {
1666 struct ext4_new_flex_group_data flex_gd;
1667 struct ext4_sb_info *sbi = EXT4_SB(sb);
1668 struct ext4_super_block *es = sbi->s_es;
1669 int reserved_gdb = ext4_bg_has_super(sb, input->group) ?
1670 le16_to_cpu(es->s_reserved_gdt_blocks) : 0;
1671 struct inode *inode = NULL;
1672 int gdb_off;
1673 int err;
1674 __u16 bg_flags = 0;
1675
1676 gdb_off = input->group % EXT4_DESC_PER_BLOCK(sb);
1677
1678 if (gdb_off == 0 && !ext4_has_feature_sparse_super(sb)) {
1679 ext4_warning(sb, "Can't resize non-sparse filesystem further");
1680 return -EPERM;
1681 }
1682
1683 if (ext4_blocks_count(es) + input->blocks_count <
1684 ext4_blocks_count(es)) {
1685 ext4_warning(sb, "blocks_count overflow");
1686 return -EINVAL;
1687 }
1688
1689 if (le32_to_cpu(es->s_inodes_count) + EXT4_INODES_PER_GROUP(sb) <
1690 le32_to_cpu(es->s_inodes_count)) {
1691 ext4_warning(sb, "inodes_count overflow");
1692 return -EINVAL;
1693 }
1694
1695 if (reserved_gdb || gdb_off == 0) {
1696 if (!ext4_has_feature_resize_inode(sb) ||
1697 !le16_to_cpu(es->s_reserved_gdt_blocks)) {
1698 ext4_warning(sb,
1699 "No reserved GDT blocks, can't resize");
1700 return -EPERM;
1701 }
1702 inode = ext4_iget(sb, EXT4_RESIZE_INO, EXT4_IGET_SPECIAL);
1703 if (IS_ERR(inode)) {
1704 ext4_warning(sb, "Error opening resize inode");
1705 return PTR_ERR(inode);
1706 }
1707 }
1708
1709
1710 err = verify_group_input(sb, input);
1711 if (err)
1712 goto out;
1713
1714 err = ext4_alloc_flex_bg_array(sb, input->group + 1);
1715 if (err)
1716 goto out;
1717
1718 err = ext4_mb_alloc_groupinfo(sb, input->group + 1);
1719 if (err)
1720 goto out;
1721
1722 flex_gd.count = 1;
1723 flex_gd.groups = input;
1724 flex_gd.bg_flags = &bg_flags;
1725 err = ext4_flex_group_add(sb, inode, &flex_gd);
1726 out:
1727 iput(inode);
1728 return err;
1729 } /* ext4_group_add */
1730
1731 /*
1732 * extend a group without checking assuming that checking has been done.
1733 */
ext4_group_extend_no_check(struct super_block * sb,ext4_fsblk_t o_blocks_count,ext4_grpblk_t add)1734 static int ext4_group_extend_no_check(struct super_block *sb,
1735 ext4_fsblk_t o_blocks_count, ext4_grpblk_t add)
1736 {
1737 struct ext4_super_block *es = EXT4_SB(sb)->s_es;
1738 handle_t *handle;
1739 int err = 0, err2;
1740
1741 /* We will update the superblock, one block bitmap, and
1742 * one group descriptor via ext4_group_add_blocks().
1743 */
1744 handle = ext4_journal_start_sb(sb, EXT4_HT_RESIZE, 3);
1745 if (IS_ERR(handle)) {
1746 err = PTR_ERR(handle);
1747 ext4_warning(sb, "error %d on journal start", err);
1748 return err;
1749 }
1750
1751 BUFFER_TRACE(EXT4_SB(sb)->s_sbh, "get_write_access");
1752 err = ext4_journal_get_write_access(handle, EXT4_SB(sb)->s_sbh);
1753 if (err) {
1754 ext4_warning(sb, "error %d on journal write access", err);
1755 goto errout;
1756 }
1757
1758 ext4_blocks_count_set(es, o_blocks_count + add);
1759 ext4_free_blocks_count_set(es, ext4_free_blocks_count(es) + add);
1760 ext4_debug("freeing blocks %llu through %llu\n", o_blocks_count,
1761 o_blocks_count + add);
1762 /* We add the blocks to the bitmap and set the group need init bit */
1763 err = ext4_group_add_blocks(handle, sb, o_blocks_count, add);
1764 if (err)
1765 goto errout;
1766 ext4_handle_dirty_super(handle, sb);
1767 ext4_debug("freed blocks %llu through %llu\n", o_blocks_count,
1768 o_blocks_count + add);
1769 errout:
1770 err2 = ext4_journal_stop(handle);
1771 if (err2 && !err)
1772 err = err2;
1773
1774 if (!err) {
1775 if (test_opt(sb, DEBUG))
1776 printk(KERN_DEBUG "EXT4-fs: extended group to %llu "
1777 "blocks\n", ext4_blocks_count(es));
1778 update_backups(sb, ext4_group_first_block_no(sb, 0),
1779 (char *)es, sizeof(struct ext4_super_block), 0);
1780 }
1781 return err;
1782 }
1783
1784 /*
1785 * Extend the filesystem to the new number of blocks specified. This entry
1786 * point is only used to extend the current filesystem to the end of the last
1787 * existing group. It can be accessed via ioctl, or by "remount,resize=<size>"
1788 * for emergencies (because it has no dependencies on reserved blocks).
1789 *
1790 * If we _really_ wanted, we could use default values to call ext4_group_add()
1791 * allow the "remount" trick to work for arbitrary resizing, assuming enough
1792 * GDT blocks are reserved to grow to the desired size.
1793 */
ext4_group_extend(struct super_block * sb,struct ext4_super_block * es,ext4_fsblk_t n_blocks_count)1794 int ext4_group_extend(struct super_block *sb, struct ext4_super_block *es,
1795 ext4_fsblk_t n_blocks_count)
1796 {
1797 ext4_fsblk_t o_blocks_count;
1798 ext4_grpblk_t last;
1799 ext4_grpblk_t add;
1800 struct buffer_head *bh;
1801 int err;
1802 ext4_group_t group;
1803
1804 o_blocks_count = ext4_blocks_count(es);
1805
1806 if (test_opt(sb, DEBUG))
1807 ext4_msg(sb, KERN_DEBUG,
1808 "extending last group from %llu to %llu blocks",
1809 o_blocks_count, n_blocks_count);
1810
1811 if (n_blocks_count == 0 || n_blocks_count == o_blocks_count)
1812 return 0;
1813
1814 if (n_blocks_count > (sector_t)(~0ULL) >> (sb->s_blocksize_bits - 9)) {
1815 ext4_msg(sb, KERN_ERR,
1816 "filesystem too large to resize to %llu blocks safely",
1817 n_blocks_count);
1818 if (sizeof(sector_t) < 8)
1819 ext4_warning(sb, "CONFIG_LBDAF not enabled");
1820 return -EINVAL;
1821 }
1822
1823 if (n_blocks_count < o_blocks_count) {
1824 ext4_warning(sb, "can't shrink FS - resize aborted");
1825 return -EINVAL;
1826 }
1827
1828 /* Handle the remaining blocks in the last group only. */
1829 ext4_get_group_no_and_offset(sb, o_blocks_count, &group, &last);
1830
1831 if (last == 0) {
1832 ext4_warning(sb, "need to use ext2online to resize further");
1833 return -EPERM;
1834 }
1835
1836 add = EXT4_BLOCKS_PER_GROUP(sb) - last;
1837
1838 if (o_blocks_count + add < o_blocks_count) {
1839 ext4_warning(sb, "blocks_count overflow");
1840 return -EINVAL;
1841 }
1842
1843 if (o_blocks_count + add > n_blocks_count)
1844 add = n_blocks_count - o_blocks_count;
1845
1846 if (o_blocks_count + add < n_blocks_count)
1847 ext4_warning(sb, "will only finish group (%llu blocks, %u new)",
1848 o_blocks_count + add, add);
1849
1850 /* See if the device is actually as big as what was requested */
1851 bh = sb_bread(sb, o_blocks_count + add - 1);
1852 if (!bh) {
1853 ext4_warning(sb, "can't read last block, resize aborted");
1854 return -ENOSPC;
1855 }
1856 brelse(bh);
1857
1858 err = ext4_group_extend_no_check(sb, o_blocks_count, add);
1859 return err;
1860 } /* ext4_group_extend */
1861
1862
num_desc_blocks(struct super_block * sb,ext4_group_t groups)1863 static int num_desc_blocks(struct super_block *sb, ext4_group_t groups)
1864 {
1865 return (groups + EXT4_DESC_PER_BLOCK(sb) - 1) / EXT4_DESC_PER_BLOCK(sb);
1866 }
1867
1868 /*
1869 * Release the resize inode and drop the resize_inode feature if there
1870 * are no more reserved gdt blocks, and then convert the file system
1871 * to enable meta_bg
1872 */
ext4_convert_meta_bg(struct super_block * sb,struct inode * inode)1873 static int ext4_convert_meta_bg(struct super_block *sb, struct inode *inode)
1874 {
1875 handle_t *handle;
1876 struct ext4_sb_info *sbi = EXT4_SB(sb);
1877 struct ext4_super_block *es = sbi->s_es;
1878 struct ext4_inode_info *ei = EXT4_I(inode);
1879 ext4_fsblk_t nr;
1880 int i, ret, err = 0;
1881 int credits = 1;
1882
1883 ext4_msg(sb, KERN_INFO, "Converting file system to meta_bg");
1884 if (inode) {
1885 if (es->s_reserved_gdt_blocks) {
1886 ext4_error(sb, "Unexpected non-zero "
1887 "s_reserved_gdt_blocks");
1888 return -EPERM;
1889 }
1890
1891 /* Do a quick sanity check of the resize inode */
1892 if (inode->i_blocks != 1 << (inode->i_blkbits -
1893 (9 - sbi->s_cluster_bits)))
1894 goto invalid_resize_inode;
1895 for (i = 0; i < EXT4_N_BLOCKS; i++) {
1896 if (i == EXT4_DIND_BLOCK) {
1897 if (ei->i_data[i])
1898 continue;
1899 else
1900 goto invalid_resize_inode;
1901 }
1902 if (ei->i_data[i])
1903 goto invalid_resize_inode;
1904 }
1905 credits += 3; /* block bitmap, bg descriptor, resize inode */
1906 }
1907
1908 handle = ext4_journal_start_sb(sb, EXT4_HT_RESIZE, credits);
1909 if (IS_ERR(handle))
1910 return PTR_ERR(handle);
1911
1912 BUFFER_TRACE(sbi->s_sbh, "get_write_access");
1913 err = ext4_journal_get_write_access(handle, sbi->s_sbh);
1914 if (err)
1915 goto errout;
1916
1917 ext4_clear_feature_resize_inode(sb);
1918 ext4_set_feature_meta_bg(sb);
1919 sbi->s_es->s_first_meta_bg =
1920 cpu_to_le32(num_desc_blocks(sb, sbi->s_groups_count));
1921
1922 err = ext4_handle_dirty_super(handle, sb);
1923 if (err) {
1924 ext4_std_error(sb, err);
1925 goto errout;
1926 }
1927
1928 if (inode) {
1929 nr = le32_to_cpu(ei->i_data[EXT4_DIND_BLOCK]);
1930 ext4_free_blocks(handle, inode, NULL, nr, 1,
1931 EXT4_FREE_BLOCKS_METADATA |
1932 EXT4_FREE_BLOCKS_FORGET);
1933 ei->i_data[EXT4_DIND_BLOCK] = 0;
1934 inode->i_blocks = 0;
1935
1936 err = ext4_mark_inode_dirty(handle, inode);
1937 if (err)
1938 ext4_std_error(sb, err);
1939 }
1940
1941 errout:
1942 ret = ext4_journal_stop(handle);
1943 if (!err)
1944 err = ret;
1945 return ret;
1946
1947 invalid_resize_inode:
1948 ext4_error(sb, "corrupted/inconsistent resize inode");
1949 return -EINVAL;
1950 }
1951
1952 /*
1953 * ext4_resize_fs() resizes a fs to new size specified by @n_blocks_count
1954 *
1955 * @sb: super block of the fs to be resized
1956 * @n_blocks_count: the number of blocks resides in the resized fs
1957 */
ext4_resize_fs(struct super_block * sb,ext4_fsblk_t n_blocks_count)1958 int ext4_resize_fs(struct super_block *sb, ext4_fsblk_t n_blocks_count)
1959 {
1960 struct ext4_new_flex_group_data *flex_gd = NULL;
1961 struct ext4_sb_info *sbi = EXT4_SB(sb);
1962 struct ext4_super_block *es = sbi->s_es;
1963 struct buffer_head *bh;
1964 struct inode *resize_inode = NULL;
1965 ext4_grpblk_t add, offset;
1966 unsigned long n_desc_blocks;
1967 unsigned long o_desc_blocks;
1968 ext4_group_t o_group;
1969 ext4_group_t n_group;
1970 ext4_fsblk_t o_blocks_count;
1971 ext4_fsblk_t n_blocks_count_retry = 0;
1972 unsigned long last_update_time = 0;
1973 int err = 0, flexbg_size = 1 << sbi->s_log_groups_per_flex;
1974 int meta_bg;
1975
1976 /* See if the device is actually as big as what was requested */
1977 bh = sb_bread(sb, n_blocks_count - 1);
1978 if (!bh) {
1979 ext4_warning(sb, "can't read last block, resize aborted");
1980 return -ENOSPC;
1981 }
1982 brelse(bh);
1983
1984 /*
1985 * For bigalloc, trim the requested size to the nearest cluster
1986 * boundary to avoid creating an unusable filesystem. We do this
1987 * silently, instead of returning an error, to avoid breaking
1988 * callers that blindly resize the filesystem to the full size of
1989 * the underlying block device.
1990 */
1991 if (ext4_has_feature_bigalloc(sb))
1992 n_blocks_count &= ~((1 << EXT4_CLUSTER_BITS(sb)) - 1);
1993
1994 retry:
1995 o_blocks_count = ext4_blocks_count(es);
1996
1997 ext4_msg(sb, KERN_INFO, "resizing filesystem from %llu "
1998 "to %llu blocks", o_blocks_count, n_blocks_count);
1999
2000 if (n_blocks_count < o_blocks_count) {
2001 /* On-line shrinking not supported */
2002 ext4_warning(sb, "can't shrink FS - resize aborted");
2003 return -EINVAL;
2004 }
2005
2006 if (n_blocks_count == o_blocks_count)
2007 /* Nothing need to do */
2008 return 0;
2009
2010 n_group = ext4_get_group_number(sb, n_blocks_count - 1);
2011 if (n_group >= (0xFFFFFFFFUL / EXT4_INODES_PER_GROUP(sb))) {
2012 ext4_warning(sb, "resize would cause inodes_count overflow");
2013 return -EINVAL;
2014 }
2015 ext4_get_group_no_and_offset(sb, o_blocks_count - 1, &o_group, &offset);
2016
2017 n_desc_blocks = num_desc_blocks(sb, n_group + 1);
2018 o_desc_blocks = num_desc_blocks(sb, sbi->s_groups_count);
2019
2020 meta_bg = ext4_has_feature_meta_bg(sb);
2021
2022 if (ext4_has_feature_resize_inode(sb)) {
2023 if (meta_bg) {
2024 ext4_error(sb, "resize_inode and meta_bg enabled "
2025 "simultaneously");
2026 return -EINVAL;
2027 }
2028 if (n_desc_blocks > o_desc_blocks +
2029 le16_to_cpu(es->s_reserved_gdt_blocks)) {
2030 n_blocks_count_retry = n_blocks_count;
2031 n_desc_blocks = o_desc_blocks +
2032 le16_to_cpu(es->s_reserved_gdt_blocks);
2033 n_group = n_desc_blocks * EXT4_DESC_PER_BLOCK(sb);
2034 n_blocks_count = (ext4_fsblk_t)n_group *
2035 EXT4_BLOCKS_PER_GROUP(sb) +
2036 le32_to_cpu(es->s_first_data_block);
2037 n_group--; /* set to last group number */
2038 }
2039
2040 if (!resize_inode)
2041 resize_inode = ext4_iget(sb, EXT4_RESIZE_INO,
2042 EXT4_IGET_SPECIAL);
2043 if (IS_ERR(resize_inode)) {
2044 ext4_warning(sb, "Error opening resize inode");
2045 return PTR_ERR(resize_inode);
2046 }
2047 }
2048
2049 if ((!resize_inode && !meta_bg) || n_blocks_count == o_blocks_count) {
2050 err = ext4_convert_meta_bg(sb, resize_inode);
2051 if (err)
2052 goto out;
2053 if (resize_inode) {
2054 iput(resize_inode);
2055 resize_inode = NULL;
2056 }
2057 if (n_blocks_count_retry) {
2058 n_blocks_count = n_blocks_count_retry;
2059 n_blocks_count_retry = 0;
2060 goto retry;
2061 }
2062 }
2063
2064 /*
2065 * Make sure the last group has enough space so that it's
2066 * guaranteed to have enough space for all metadata blocks
2067 * that it might need to hold. (We might not need to store
2068 * the inode table blocks in the last block group, but there
2069 * will be cases where this might be needed.)
2070 */
2071 if ((ext4_group_first_block_no(sb, n_group) +
2072 ext4_group_overhead_blocks(sb, n_group) + 2 +
2073 sbi->s_itb_per_group + sbi->s_cluster_ratio) >= n_blocks_count) {
2074 n_blocks_count = ext4_group_first_block_no(sb, n_group);
2075 n_group--;
2076 n_blocks_count_retry = 0;
2077 if (resize_inode) {
2078 iput(resize_inode);
2079 resize_inode = NULL;
2080 }
2081 goto retry;
2082 }
2083
2084 /* extend the last group */
2085 if (n_group == o_group)
2086 add = n_blocks_count - o_blocks_count;
2087 else
2088 add = EXT4_C2B(sbi, EXT4_CLUSTERS_PER_GROUP(sb) - (offset + 1));
2089 if (add > 0) {
2090 err = ext4_group_extend_no_check(sb, o_blocks_count, add);
2091 if (err)
2092 goto out;
2093 }
2094
2095 if (ext4_blocks_count(es) == n_blocks_count && n_blocks_count_retry == 0)
2096 goto out;
2097
2098 err = ext4_alloc_flex_bg_array(sb, n_group + 1);
2099 if (err)
2100 goto out;
2101
2102 err = ext4_mb_alloc_groupinfo(sb, n_group + 1);
2103 if (err)
2104 goto out;
2105
2106 flex_gd = alloc_flex_gd(flexbg_size);
2107 if (flex_gd == NULL) {
2108 err = -ENOMEM;
2109 goto out;
2110 }
2111
2112 /* Add flex groups. Note that a regular group is a
2113 * flex group with 1 group.
2114 */
2115 while (ext4_setup_next_flex_gd(sb, flex_gd, n_blocks_count,
2116 flexbg_size)) {
2117 if (jiffies - last_update_time > HZ * 10) {
2118 if (last_update_time)
2119 ext4_msg(sb, KERN_INFO,
2120 "resized to %llu blocks",
2121 ext4_blocks_count(es));
2122 last_update_time = jiffies;
2123 }
2124 if (ext4_alloc_group_tables(sb, flex_gd, flexbg_size) != 0)
2125 break;
2126 err = ext4_flex_group_add(sb, resize_inode, flex_gd);
2127 if (unlikely(err))
2128 break;
2129 }
2130
2131 if (!err && n_blocks_count_retry) {
2132 n_blocks_count = n_blocks_count_retry;
2133 n_blocks_count_retry = 0;
2134 free_flex_gd(flex_gd);
2135 flex_gd = NULL;
2136 if (resize_inode) {
2137 iput(resize_inode);
2138 resize_inode = NULL;
2139 }
2140 goto retry;
2141 }
2142
2143 out:
2144 if (flex_gd)
2145 free_flex_gd(flex_gd);
2146 if (resize_inode != NULL)
2147 iput(resize_inode);
2148 if (err)
2149 ext4_warning(sb, "error (%d) occurred during "
2150 "file system resize", err);
2151 ext4_msg(sb, KERN_INFO, "resized filesystem to %llu",
2152 ext4_blocks_count(es));
2153 return err;
2154 }
2155