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8a9d2191
RK
1/*
2 * the_nilfs.c - the_nilfs shared structure.
3 *
4 * Copyright (C) 2005-2008 Nippon Telegraph and Telephone Corporation.
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
19 *
20 * Written by Ryusuke Konishi <ryusuke@osrg.net>
21 *
22 */
23
24#include <linux/buffer_head.h>
25#include <linux/slab.h>
26#include <linux/blkdev.h>
27#include <linux/backing-dev.h>
e339ad31 28#include <linux/crc32.h>
8a9d2191
RK
29#include "nilfs.h"
30#include "segment.h"
31#include "alloc.h"
32#include "cpfile.h"
33#include "sufile.h"
34#include "dat.h"
8a9d2191
RK
35#include "segbuf.h"
36
33c8e57c 37
6c125160
RK
38static int nilfs_valid_sb(struct nilfs_super_block *sbp);
39
8a9d2191
RK
40void nilfs_set_last_segment(struct the_nilfs *nilfs,
41 sector_t start_blocknr, u64 seq, __u64 cno)
42{
43 spin_lock(&nilfs->ns_last_segment_lock);
44 nilfs->ns_last_pseg = start_blocknr;
45 nilfs->ns_last_seq = seq;
46 nilfs->ns_last_cno = cno;
32502047
RK
47
48 if (!nilfs_sb_dirty(nilfs)) {
49 if (nilfs->ns_prev_seq == nilfs->ns_last_seq)
50 goto stay_cursor;
51
52 set_nilfs_sb_dirty(nilfs);
53 }
54 nilfs->ns_prev_seq = nilfs->ns_last_seq;
55
56 stay_cursor:
8a9d2191
RK
57 spin_unlock(&nilfs->ns_last_segment_lock);
58}
59
60/**
348fe8da 61 * alloc_nilfs - allocate a nilfs object
8a9d2191
RK
62 * @bdev: block device to which the_nilfs is related
63 *
8a9d2191
RK
64 * Return Value: On success, pointer to the_nilfs is returned.
65 * On error, NULL is returned.
66 */
348fe8da 67struct the_nilfs *alloc_nilfs(struct block_device *bdev)
8a9d2191
RK
68{
69 struct the_nilfs *nilfs;
70
71 nilfs = kzalloc(sizeof(*nilfs), GFP_KERNEL);
72 if (!nilfs)
73 return NULL;
74
75 nilfs->ns_bdev = bdev;
8a9d2191
RK
76 atomic_set(&nilfs->ns_ndirtyblks, 0);
77 init_rwsem(&nilfs->ns_sem);
263d90ce 78 INIT_LIST_HEAD(&nilfs->ns_gc_inodes);
8a9d2191 79 spin_lock_init(&nilfs->ns_last_segment_lock);
ba65ae47
RK
80 nilfs->ns_cptree = RB_ROOT;
81 spin_lock_init(&nilfs->ns_cptree_lock);
8a9d2191 82 init_rwsem(&nilfs->ns_segctor_sem);
8a9d2191
RK
83
84 return nilfs;
85}
86
33c8e57c 87/**
348fe8da
RK
88 * destroy_nilfs - destroy nilfs object
89 * @nilfs: nilfs object to be released
8a9d2191 90 */
348fe8da 91void destroy_nilfs(struct the_nilfs *nilfs)
8a9d2191 92{
8a9d2191 93 might_sleep();
8a9d2191 94 if (nilfs_init(nilfs)) {
e339ad31
RK
95 brelse(nilfs->ns_sbh[0]);
96 brelse(nilfs->ns_sbh[1]);
8a9d2191
RK
97 }
98 kfree(nilfs);
99}
100
f1e89c86
RK
101static int nilfs_load_super_root(struct the_nilfs *nilfs,
102 struct super_block *sb, sector_t sr_block)
8a9d2191
RK
103{
104 struct buffer_head *bh_sr;
105 struct nilfs_super_root *raw_sr;
e339ad31 106 struct nilfs_super_block **sbp = nilfs->ns_sbp;
f1e89c86 107 struct nilfs_inode *rawi;
8a9d2191
RK
108 unsigned dat_entry_size, segment_usage_size, checkpoint_size;
109 unsigned inode_size;
110 int err;
111
8b94025c 112 err = nilfs_read_super_root_block(nilfs, sr_block, &bh_sr, 1);
8a9d2191
RK
113 if (unlikely(err))
114 return err;
115
116 down_read(&nilfs->ns_sem);
e339ad31
RK
117 dat_entry_size = le16_to_cpu(sbp[0]->s_dat_entry_size);
118 checkpoint_size = le16_to_cpu(sbp[0]->s_checkpoint_size);
119 segment_usage_size = le16_to_cpu(sbp[0]->s_segment_usage_size);
8a9d2191
RK
120 up_read(&nilfs->ns_sem);
121
122 inode_size = nilfs->ns_inode_size;
123
f1e89c86
RK
124 rawi = (void *)bh_sr->b_data + NILFS_SR_DAT_OFFSET(inode_size);
125 err = nilfs_dat_read(sb, dat_entry_size, rawi, &nilfs->ns_dat);
126 if (err)
8a9d2191
RK
127 goto failed;
128
f1e89c86
RK
129 rawi = (void *)bh_sr->b_data + NILFS_SR_CPFILE_OFFSET(inode_size);
130 err = nilfs_cpfile_read(sb, checkpoint_size, rawi, &nilfs->ns_cpfile);
131 if (err)
8a9d2191
RK
132 goto failed_dat;
133
f1e89c86
RK
134 rawi = (void *)bh_sr->b_data + NILFS_SR_SUFILE_OFFSET(inode_size);
135 err = nilfs_sufile_read(sb, segment_usage_size, rawi,
136 &nilfs->ns_sufile);
137 if (err)
8a9d2191
RK
138 goto failed_cpfile;
139
8a9d2191
RK
140 raw_sr = (struct nilfs_super_root *)bh_sr->b_data;
141 nilfs->ns_nongc_ctime = le64_to_cpu(raw_sr->sr_nongc_ctime);
142
143 failed:
144 brelse(bh_sr);
145 return err;
146
8a9d2191 147 failed_cpfile:
f1e89c86 148 iput(nilfs->ns_cpfile);
8a9d2191
RK
149
150 failed_dat:
f1e89c86 151 iput(nilfs->ns_dat);
8a9d2191
RK
152 goto failed;
153}
154
155static void nilfs_init_recovery_info(struct nilfs_recovery_info *ri)
156{
157 memset(ri, 0, sizeof(*ri));
158 INIT_LIST_HEAD(&ri->ri_used_segments);
159}
160
161static void nilfs_clear_recovery_info(struct nilfs_recovery_info *ri)
162{
163 nilfs_dispose_segment_list(&ri->ri_used_segments);
164}
165
843d63ba
RK
166/**
167 * nilfs_store_log_cursor - load log cursor from a super block
168 * @nilfs: nilfs object
169 * @sbp: buffer storing super block to be read
170 *
171 * nilfs_store_log_cursor() reads the last position of the log
172 * containing a super root from a given super block, and initializes
173 * relevant information on the nilfs object preparatory for log
174 * scanning and recovery.
175 */
176static int nilfs_store_log_cursor(struct the_nilfs *nilfs,
177 struct nilfs_super_block *sbp)
178{
179 int ret = 0;
180
181 nilfs->ns_last_pseg = le64_to_cpu(sbp->s_last_pseg);
182 nilfs->ns_last_cno = le64_to_cpu(sbp->s_last_cno);
183 nilfs->ns_last_seq = le64_to_cpu(sbp->s_last_seq);
184
32502047 185 nilfs->ns_prev_seq = nilfs->ns_last_seq;
843d63ba
RK
186 nilfs->ns_seg_seq = nilfs->ns_last_seq;
187 nilfs->ns_segnum =
188 nilfs_get_segnum_of_block(nilfs, nilfs->ns_last_pseg);
189 nilfs->ns_cno = nilfs->ns_last_cno + 1;
190 if (nilfs->ns_segnum >= nilfs->ns_nsegments) {
191 printk(KERN_ERR "NILFS invalid last segment number.\n");
192 ret = -EINVAL;
193 }
194 return ret;
195}
196
8a9d2191
RK
197/**
198 * load_nilfs - load and recover the nilfs
199 * @nilfs: the_nilfs structure to be released
200 * @sbi: nilfs_sb_info used to recover past segment
201 *
202 * load_nilfs() searches and load the latest super root,
203 * attaches the last segment, and does recovery if needed.
204 * The caller must call this exclusively for simultaneous mounts.
205 */
206int load_nilfs(struct the_nilfs *nilfs, struct nilfs_sb_info *sbi)
207{
208 struct nilfs_recovery_info ri;
209 unsigned int s_flags = sbi->s_super->s_flags;
210 int really_read_only = bdev_read_only(nilfs->ns_bdev);
a057d2c0 211 int valid_fs = nilfs_valid_fs(nilfs);
f50a4c81 212 int err;
8a9d2191 213
f50a4c81
RK
214 if (!valid_fs) {
215 printk(KERN_WARNING "NILFS warning: mounting unchecked fs\n");
216 if (s_flags & MS_RDONLY) {
217 printk(KERN_INFO "NILFS: INFO: recovery "
218 "required for readonly filesystem.\n");
219 printk(KERN_INFO "NILFS: write access will "
220 "be enabled during recovery.\n");
8a9d2191 221 }
8a9d2191
RK
222 }
223
f50a4c81
RK
224 nilfs_init_recovery_info(&ri);
225
8b94025c 226 err = nilfs_search_super_root(nilfs, &ri);
8a9d2191 227 if (unlikely(err)) {
6c125160
RK
228 struct nilfs_super_block **sbp = nilfs->ns_sbp;
229 int blocksize;
230
231 if (err != -EINVAL)
232 goto scan_error;
233
234 if (!nilfs_valid_sb(sbp[1])) {
235 printk(KERN_WARNING
236 "NILFS warning: unable to fall back to spare"
237 "super block\n");
238 goto scan_error;
239 }
240 printk(KERN_INFO
241 "NILFS: try rollback from an earlier position\n");
242
243 /*
244 * restore super block with its spare and reconfigure
245 * relevant states of the nilfs object.
246 */
247 memcpy(sbp[0], sbp[1], nilfs->ns_sbsize);
248 nilfs->ns_crc_seed = le32_to_cpu(sbp[0]->s_crc_seed);
249 nilfs->ns_sbwtime = le64_to_cpu(sbp[0]->s_wtime);
250
251 /* verify consistency between two super blocks */
252 blocksize = BLOCK_SIZE << le32_to_cpu(sbp[0]->s_log_block_size);
253 if (blocksize != nilfs->ns_blocksize) {
254 printk(KERN_WARNING
255 "NILFS warning: blocksize differs between "
256 "two super blocks (%d != %d)\n",
257 blocksize, nilfs->ns_blocksize);
258 goto scan_error;
259 }
260
261 err = nilfs_store_log_cursor(nilfs, sbp[0]);
262 if (err)
263 goto scan_error;
264
265 /* drop clean flag to allow roll-forward and recovery */
266 nilfs->ns_mount_state &= ~NILFS_VALID_FS;
267 valid_fs = 0;
268
269 err = nilfs_search_super_root(nilfs, &ri);
270 if (err)
271 goto scan_error;
8a9d2191
RK
272 }
273
f1e89c86 274 err = nilfs_load_super_root(nilfs, sbi->s_super, ri.ri_super_root);
8a9d2191
RK
275 if (unlikely(err)) {
276 printk(KERN_ERR "NILFS: error loading super root.\n");
277 goto failed;
278 }
279
f50a4c81
RK
280 if (valid_fs)
281 goto skip_recovery;
282
283 if (s_flags & MS_RDONLY) {
c5ca48aa
RK
284 __u64 features;
285
0234576d
RK
286 if (nilfs_test_opt(sbi, NORECOVERY)) {
287 printk(KERN_INFO "NILFS: norecovery option specified. "
288 "skipping roll-forward recovery\n");
289 goto skip_recovery;
290 }
c5ca48aa
RK
291 features = le64_to_cpu(nilfs->ns_sbp[0]->s_feature_compat_ro) &
292 ~NILFS_FEATURE_COMPAT_RO_SUPP;
293 if (features) {
294 printk(KERN_ERR "NILFS: couldn't proceed with "
295 "recovery because of unsupported optional "
296 "features (%llx)\n",
297 (unsigned long long)features);
298 err = -EROFS;
299 goto failed_unload;
300 }
f50a4c81
RK
301 if (really_read_only) {
302 printk(KERN_ERR "NILFS: write access "
303 "unavailable, cannot proceed.\n");
304 err = -EROFS;
305 goto failed_unload;
8a9d2191 306 }
f50a4c81 307 sbi->s_super->s_flags &= ~MS_RDONLY;
0234576d
RK
308 } else if (nilfs_test_opt(sbi, NORECOVERY)) {
309 printk(KERN_ERR "NILFS: recovery cancelled because norecovery "
310 "option was specified for a read/write mount\n");
311 err = -EINVAL;
312 goto failed_unload;
f50a4c81
RK
313 }
314
aee5ce2f 315 err = nilfs_salvage_orphan_logs(nilfs, sbi, &ri);
f50a4c81
RK
316 if (err)
317 goto failed_unload;
318
319 down_write(&nilfs->ns_sem);
7ecaa46c
RK
320 nilfs->ns_mount_state |= NILFS_VALID_FS; /* set "clean" flag */
321 err = nilfs_cleanup_super(sbi);
f50a4c81
RK
322 up_write(&nilfs->ns_sem);
323
324 if (err) {
325 printk(KERN_ERR "NILFS: failed to update super block. "
326 "recovery unfinished.\n");
327 goto failed_unload;
8a9d2191 328 }
f50a4c81 329 printk(KERN_INFO "NILFS: recovery complete.\n");
8a9d2191 330
f50a4c81 331 skip_recovery:
8a9d2191 332 set_nilfs_loaded(nilfs);
f50a4c81
RK
333 nilfs_clear_recovery_info(&ri);
334 sbi->s_super->s_flags = s_flags;
335 return 0;
336
6c125160
RK
337 scan_error:
338 printk(KERN_ERR "NILFS: error searching super root.\n");
339 goto failed;
340
f50a4c81 341 failed_unload:
f1e89c86
RK
342 iput(nilfs->ns_cpfile);
343 iput(nilfs->ns_sufile);
344 iput(nilfs->ns_dat);
8a9d2191
RK
345
346 failed:
347 nilfs_clear_recovery_info(&ri);
348 sbi->s_super->s_flags = s_flags;
349 return err;
350}
351
352static unsigned long long nilfs_max_size(unsigned int blkbits)
353{
354 unsigned int max_bits;
355 unsigned long long res = MAX_LFS_FILESIZE; /* page cache limit */
356
357 max_bits = blkbits + NILFS_BMAP_KEY_BIT; /* bmap size limit */
358 if (max_bits < 64)
359 res = min_t(unsigned long long, res, (1ULL << max_bits) - 1);
360 return res;
361}
362
e339ad31
RK
363static int nilfs_store_disk_layout(struct the_nilfs *nilfs,
364 struct nilfs_super_block *sbp)
8a9d2191 365{
9566a7a8
RK
366 if (le32_to_cpu(sbp->s_rev_level) < NILFS_MIN_SUPP_REV) {
367 printk(KERN_ERR "NILFS: unsupported revision "
8a9d2191
RK
368 "(superblock rev.=%d.%d, current rev.=%d.%d). "
369 "Please check the version of mkfs.nilfs.\n",
370 le32_to_cpu(sbp->s_rev_level),
371 le16_to_cpu(sbp->s_minor_rev_level),
372 NILFS_CURRENT_REV, NILFS_MINOR_REV);
373 return -EINVAL;
374 }
e339ad31
RK
375 nilfs->ns_sbsize = le16_to_cpu(sbp->s_bytes);
376 if (nilfs->ns_sbsize > BLOCK_SIZE)
377 return -EINVAL;
378
8a9d2191
RK
379 nilfs->ns_inode_size = le16_to_cpu(sbp->s_inode_size);
380 nilfs->ns_first_ino = le32_to_cpu(sbp->s_first_ino);
381
382 nilfs->ns_blocks_per_segment = le32_to_cpu(sbp->s_blocks_per_segment);
383 if (nilfs->ns_blocks_per_segment < NILFS_SEG_MIN_BLOCKS) {
c91cea11 384 printk(KERN_ERR "NILFS: too short segment.\n");
8a9d2191
RK
385 return -EINVAL;
386 }
387
388 nilfs->ns_first_data_block = le64_to_cpu(sbp->s_first_data_block);
389 nilfs->ns_nsegments = le64_to_cpu(sbp->s_nsegments);
390 nilfs->ns_r_segments_percentage =
391 le32_to_cpu(sbp->s_r_segments_percentage);
392 nilfs->ns_nrsvsegs =
393 max_t(unsigned long, NILFS_MIN_NRSVSEGS,
394 DIV_ROUND_UP(nilfs->ns_nsegments *
395 nilfs->ns_r_segments_percentage, 100));
396 nilfs->ns_crc_seed = le32_to_cpu(sbp->s_crc_seed);
397 return 0;
398}
399
e339ad31
RK
400static int nilfs_valid_sb(struct nilfs_super_block *sbp)
401{
402 static unsigned char sum[4];
403 const int sumoff = offsetof(struct nilfs_super_block, s_sum);
404 size_t bytes;
405 u32 crc;
406
407 if (!sbp || le16_to_cpu(sbp->s_magic) != NILFS_SUPER_MAGIC)
408 return 0;
409 bytes = le16_to_cpu(sbp->s_bytes);
410 if (bytes > BLOCK_SIZE)
411 return 0;
412 crc = crc32_le(le32_to_cpu(sbp->s_crc_seed), (unsigned char *)sbp,
413 sumoff);
414 crc = crc32_le(crc, sum, 4);
415 crc = crc32_le(crc, (unsigned char *)sbp + sumoff + 4,
416 bytes - sumoff - 4);
417 return crc == le32_to_cpu(sbp->s_sum);
418}
419
420static int nilfs_sb2_bad_offset(struct nilfs_super_block *sbp, u64 offset)
421{
422 return offset < ((le64_to_cpu(sbp->s_nsegments) *
423 le32_to_cpu(sbp->s_blocks_per_segment)) <<
424 (le32_to_cpu(sbp->s_log_block_size) + 10));
425}
426
427static void nilfs_release_super_block(struct the_nilfs *nilfs)
428{
429 int i;
430
431 for (i = 0; i < 2; i++) {
432 if (nilfs->ns_sbp[i]) {
433 brelse(nilfs->ns_sbh[i]);
434 nilfs->ns_sbh[i] = NULL;
435 nilfs->ns_sbp[i] = NULL;
436 }
437 }
438}
439
440void nilfs_fall_back_super_block(struct the_nilfs *nilfs)
441{
442 brelse(nilfs->ns_sbh[0]);
443 nilfs->ns_sbh[0] = nilfs->ns_sbh[1];
444 nilfs->ns_sbp[0] = nilfs->ns_sbp[1];
445 nilfs->ns_sbh[1] = NULL;
446 nilfs->ns_sbp[1] = NULL;
447}
448
449void nilfs_swap_super_block(struct the_nilfs *nilfs)
450{
451 struct buffer_head *tsbh = nilfs->ns_sbh[0];
452 struct nilfs_super_block *tsbp = nilfs->ns_sbp[0];
453
454 nilfs->ns_sbh[0] = nilfs->ns_sbh[1];
455 nilfs->ns_sbp[0] = nilfs->ns_sbp[1];
456 nilfs->ns_sbh[1] = tsbh;
457 nilfs->ns_sbp[1] = tsbp;
458}
459
460static int nilfs_load_super_block(struct the_nilfs *nilfs,
461 struct super_block *sb, int blocksize,
462 struct nilfs_super_block **sbpp)
463{
464 struct nilfs_super_block **sbp = nilfs->ns_sbp;
465 struct buffer_head **sbh = nilfs->ns_sbh;
466 u64 sb2off = NILFS_SB2_OFFSET_BYTES(nilfs->ns_bdev->bd_inode->i_size);
467 int valid[2], swp = 0;
468
469 sbp[0] = nilfs_read_super_block(sb, NILFS_SB_OFFSET_BYTES, blocksize,
470 &sbh[0]);
471 sbp[1] = nilfs_read_super_block(sb, sb2off, blocksize, &sbh[1]);
472
473 if (!sbp[0]) {
474 if (!sbp[1]) {
475 printk(KERN_ERR "NILFS: unable to read superblock\n");
476 return -EIO;
477 }
478 printk(KERN_WARNING
479 "NILFS warning: unable to read primary superblock\n");
480 } else if (!sbp[1])
481 printk(KERN_WARNING
482 "NILFS warning: unable to read secondary superblock\n");
483
25294d8c
RK
484 /*
485 * Compare two super blocks and set 1 in swp if the secondary
486 * super block is valid and newer. Otherwise, set 0 in swp.
487 */
e339ad31
RK
488 valid[0] = nilfs_valid_sb(sbp[0]);
489 valid[1] = nilfs_valid_sb(sbp[1]);
25294d8c
RK
490 swp = valid[1] && (!valid[0] ||
491 le64_to_cpu(sbp[1]->s_last_cno) >
492 le64_to_cpu(sbp[0]->s_last_cno));
e339ad31
RK
493
494 if (valid[swp] && nilfs_sb2_bad_offset(sbp[swp], sb2off)) {
495 brelse(sbh[1]);
496 sbh[1] = NULL;
497 sbp[1] = NULL;
498 swp = 0;
499 }
500 if (!valid[swp]) {
501 nilfs_release_super_block(nilfs);
502 printk(KERN_ERR "NILFS: Can't find nilfs on dev %s.\n",
503 sb->s_id);
504 return -EINVAL;
505 }
506
ea1a16f7 507 if (!valid[!swp])
e339ad31
RK
508 printk(KERN_WARNING "NILFS warning: broken superblock. "
509 "using spare superblock.\n");
ea1a16f7 510 if (swp)
e339ad31 511 nilfs_swap_super_block(nilfs);
e339ad31 512
b2ac86e1
JS
513 nilfs->ns_sbwcount = 0;
514 nilfs->ns_sbwtime = le64_to_cpu(sbp[0]->s_wtime);
e339ad31
RK
515 nilfs->ns_prot_seq = le64_to_cpu(sbp[valid[1] & !swp]->s_last_seq);
516 *sbpp = sbp[0];
517 return 0;
518}
519
8a9d2191
RK
520/**
521 * init_nilfs - initialize a NILFS instance.
522 * @nilfs: the_nilfs structure
523 * @sbi: nilfs_sb_info
524 * @sb: super block
525 * @data: mount options
526 *
527 * init_nilfs() performs common initialization per block device (e.g.
528 * reading the super block, getting disk layout information, initializing
f11459ad 529 * shared fields in the_nilfs).
8a9d2191
RK
530 *
531 * Return Value: On success, 0 is returned. On error, a negative error
532 * code is returned.
533 */
534int init_nilfs(struct the_nilfs *nilfs, struct nilfs_sb_info *sbi, char *data)
535{
536 struct super_block *sb = sbi->s_super;
8a9d2191 537 struct nilfs_super_block *sbp;
8a9d2191 538 int blocksize;
e339ad31 539 int err;
8a9d2191
RK
540
541 down_write(&nilfs->ns_sem);
8a9d2191 542
89c0fd01 543 blocksize = sb_min_blocksize(sb, NILFS_MIN_BLOCK_SIZE);
e339ad31
RK
544 if (!blocksize) {
545 printk(KERN_ERR "NILFS: unable to set blocksize\n");
8a9d2191
RK
546 err = -EINVAL;
547 goto out;
548 }
e339ad31
RK
549 err = nilfs_load_super_block(nilfs, sb, blocksize, &sbp);
550 if (err)
551 goto out;
552
8a9d2191
RK
553 err = nilfs_store_magic_and_option(sb, sbp, data);
554 if (err)
555 goto failed_sbh;
556
c5ca48aa
RK
557 err = nilfs_check_feature_compatibility(sb, sbp);
558 if (err)
559 goto failed_sbh;
560
8a9d2191 561 blocksize = BLOCK_SIZE << le32_to_cpu(sbp->s_log_block_size);
89c0fd01
RK
562 if (blocksize < NILFS_MIN_BLOCK_SIZE ||
563 blocksize > NILFS_MAX_BLOCK_SIZE) {
564 printk(KERN_ERR "NILFS: couldn't mount because of unsupported "
565 "filesystem blocksize %d\n", blocksize);
566 err = -EINVAL;
567 goto failed_sbh;
568 }
8a9d2191 569 if (sb->s_blocksize != blocksize) {
e1defc4f 570 int hw_blocksize = bdev_logical_block_size(sb->s_bdev);
e339ad31
RK
571
572 if (blocksize < hw_blocksize) {
573 printk(KERN_ERR
574 "NILFS: blocksize %d too small for device "
575 "(sector-size = %d).\n",
576 blocksize, hw_blocksize);
8a9d2191 577 err = -EINVAL;
e339ad31
RK
578 goto failed_sbh;
579 }
580 nilfs_release_super_block(nilfs);
581 sb_set_blocksize(sb, blocksize);
582
583 err = nilfs_load_super_block(nilfs, sb, blocksize, &sbp);
584 if (err)
8a9d2191
RK
585 goto out;
586 /* not failed_sbh; sbh is released automatically
587 when reloading fails. */
8a9d2191
RK
588 }
589 nilfs->ns_blocksize_bits = sb->s_blocksize_bits;
92c60cca 590 nilfs->ns_blocksize = blocksize;
8a9d2191 591
e339ad31 592 err = nilfs_store_disk_layout(nilfs, sbp);
8a9d2191
RK
593 if (err)
594 goto failed_sbh;
595
596 sb->s_maxbytes = nilfs_max_size(sb->s_blocksize_bits);
597
598 nilfs->ns_mount_state = le16_to_cpu(sbp->s_state);
8a9d2191 599
843d63ba
RK
600 err = nilfs_store_log_cursor(nilfs, sbp);
601 if (err)
8a9d2191 602 goto failed_sbh;
8a9d2191 603
8a9d2191
RK
604 set_nilfs_init(nilfs);
605 err = 0;
606 out:
607 up_write(&nilfs->ns_sem);
608 return err;
609
610 failed_sbh:
e339ad31 611 nilfs_release_super_block(nilfs);
8a9d2191
RK
612 goto out;
613}
614
e902ec99
JS
615int nilfs_discard_segments(struct the_nilfs *nilfs, __u64 *segnump,
616 size_t nsegs)
617{
618 sector_t seg_start, seg_end;
619 sector_t start = 0, nblocks = 0;
620 unsigned int sects_per_block;
621 __u64 *sn;
622 int ret = 0;
623
624 sects_per_block = (1 << nilfs->ns_blocksize_bits) /
625 bdev_logical_block_size(nilfs->ns_bdev);
626 for (sn = segnump; sn < segnump + nsegs; sn++) {
627 nilfs_get_segment_range(nilfs, *sn, &seg_start, &seg_end);
628
629 if (!nblocks) {
630 start = seg_start;
631 nblocks = seg_end - seg_start + 1;
632 } else if (start + nblocks == seg_start) {
633 nblocks += seg_end - seg_start + 1;
634 } else {
635 ret = blkdev_issue_discard(nilfs->ns_bdev,
636 start * sects_per_block,
637 nblocks * sects_per_block,
dd3932ed 638 GFP_NOFS, 0);
e902ec99
JS
639 if (ret < 0)
640 return ret;
641 nblocks = 0;
642 }
643 }
644 if (nblocks)
645 ret = blkdev_issue_discard(nilfs->ns_bdev,
646 start * sects_per_block,
647 nblocks * sects_per_block,
dd3932ed 648 GFP_NOFS, 0);
e902ec99
JS
649 return ret;
650}
651
8a9d2191
RK
652int nilfs_count_free_blocks(struct the_nilfs *nilfs, sector_t *nblocks)
653{
654 struct inode *dat = nilfs_dat_inode(nilfs);
655 unsigned long ncleansegs;
8a9d2191
RK
656
657 down_read(&NILFS_MDT(dat)->mi_sem); /* XXX */
ef7d4757 658 ncleansegs = nilfs_sufile_get_ncleansegs(nilfs->ns_sufile);
8a9d2191 659 up_read(&NILFS_MDT(dat)->mi_sem); /* XXX */
ef7d4757
RK
660 *nblocks = (sector_t)ncleansegs * nilfs->ns_blocks_per_segment;
661 return 0;
8a9d2191
RK
662}
663
8a9d2191
RK
664int nilfs_near_disk_full(struct the_nilfs *nilfs)
665{
8a9d2191 666 unsigned long ncleansegs, nincsegs;
ef7d4757
RK
667
668 ncleansegs = nilfs_sufile_get_ncleansegs(nilfs->ns_sufile);
669 nincsegs = atomic_read(&nilfs->ns_ndirtyblks) /
670 nilfs->ns_blocks_per_segment + 1;
671
672 return ncleansegs <= nilfs->ns_nrsvsegs + nincsegs;
8a9d2191
RK
673}
674
ba65ae47 675struct nilfs_root *nilfs_lookup_root(struct the_nilfs *nilfs, __u64 cno)
6dd47406 676{
ba65ae47
RK
677 struct rb_node *n;
678 struct nilfs_root *root;
679
680 spin_lock(&nilfs->ns_cptree_lock);
681 n = nilfs->ns_cptree.rb_node;
682 while (n) {
683 root = rb_entry(n, struct nilfs_root, rb_node);
684
685 if (cno < root->cno) {
686 n = n->rb_left;
687 } else if (cno > root->cno) {
688 n = n->rb_right;
689 } else {
690 atomic_inc(&root->count);
691 spin_unlock(&nilfs->ns_cptree_lock);
692 return root;
693 }
6dd47406 694 }
ba65ae47 695 spin_unlock(&nilfs->ns_cptree_lock);
6dd47406 696
6dd47406 697 return NULL;
6dd47406
RK
698}
699
ba65ae47
RK
700struct nilfs_root *
701nilfs_find_or_create_root(struct the_nilfs *nilfs, __u64 cno)
8a9d2191 702{
ba65ae47
RK
703 struct rb_node **p, *parent;
704 struct nilfs_root *root, *new;
8a9d2191 705
ba65ae47
RK
706 root = nilfs_lookup_root(nilfs, cno);
707 if (root)
708 return root;
8a9d2191 709
ba65ae47
RK
710 new = kmalloc(sizeof(*root), GFP_KERNEL);
711 if (!new)
712 return NULL;
713
714 spin_lock(&nilfs->ns_cptree_lock);
715
716 p = &nilfs->ns_cptree.rb_node;
717 parent = NULL;
718
719 while (*p) {
720 parent = *p;
721 root = rb_entry(parent, struct nilfs_root, rb_node);
722
723 if (cno < root->cno) {
724 p = &(*p)->rb_left;
725 } else if (cno > root->cno) {
726 p = &(*p)->rb_right;
727 } else {
728 atomic_inc(&root->count);
729 spin_unlock(&nilfs->ns_cptree_lock);
730 kfree(new);
731 return root;
8a9d2191
RK
732 }
733 }
8a9d2191 734
ba65ae47
RK
735 new->cno = cno;
736 new->ifile = NULL;
737 new->nilfs = nilfs;
738 atomic_set(&new->count, 1);
739 atomic_set(&new->inodes_count, 0);
740 atomic_set(&new->blocks_count, 0);
741
742 rb_link_node(&new->rb_node, parent, p);
743 rb_insert_color(&new->rb_node, &nilfs->ns_cptree);
744
745 spin_unlock(&nilfs->ns_cptree_lock);
746
747 return new;
748}
749
750void nilfs_put_root(struct nilfs_root *root)
751{
752 if (atomic_dec_and_test(&root->count)) {
753 struct the_nilfs *nilfs = root->nilfs;
754
755 spin_lock(&nilfs->ns_cptree_lock);
756 rb_erase(&root->rb_node, &nilfs->ns_cptree);
757 spin_unlock(&nilfs->ns_cptree_lock);
758 if (root->ifile)
f1e89c86 759 iput(root->ifile);
ba65ae47
RK
760
761 kfree(root);
762 }
8a9d2191 763}