nilfs2: add helper to get if volume is in a valid state
[linux-2.6-block.git] / fs / nilfs2 / super.c
CommitLineData
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1/*
2 * super.c - NILFS module and super block management.
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 * linux/fs/ext2/super.c
24 *
25 * Copyright (C) 1992, 1993, 1994, 1995
26 * Remy Card (card@masi.ibp.fr)
27 * Laboratoire MASI - Institut Blaise Pascal
28 * Universite Pierre et Marie Curie (Paris VI)
29 *
30 * from
31 *
32 * linux/fs/minix/inode.c
33 *
34 * Copyright (C) 1991, 1992 Linus Torvalds
35 *
36 * Big-endian to little-endian byte-swapping/bitmaps by
37 * David S. Miller (davem@caip.rutgers.edu), 1995
38 */
39
40#include <linux/module.h>
41#include <linux/string.h>
42#include <linux/slab.h>
43#include <linux/init.h>
44#include <linux/blkdev.h>
45#include <linux/parser.h>
46#include <linux/random.h>
47#include <linux/crc32.h>
48#include <linux/smp_lock.h>
49#include <linux/vfs.h>
50#include <linux/writeback.h>
51#include <linux/kobject.h>
52#include <linux/exportfs.h>
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53#include <linux/seq_file.h>
54#include <linux/mount.h>
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55#include "nilfs.h"
56#include "mdt.h"
57#include "alloc.h"
58#include "page.h"
59#include "cpfile.h"
60#include "ifile.h"
61#include "dat.h"
62#include "segment.h"
63#include "segbuf.h"
64
65MODULE_AUTHOR("NTT Corp.");
66MODULE_DESCRIPTION("A New Implementation of the Log-structured Filesystem "
67 "(NILFS)");
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68MODULE_LICENSE("GPL");
69
70static int nilfs_remount(struct super_block *sb, int *flags, char *data);
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71
72/**
73 * nilfs_error() - report failure condition on a filesystem
74 *
75 * nilfs_error() sets an ERROR_FS flag on the superblock as well as
76 * reporting an error message. It should be called when NILFS detects
77 * incoherences or defects of meta data on disk. As for sustainable
78 * errors such as a single-shot I/O error, nilfs_warning() or the printk()
79 * function should be used instead.
80 *
81 * The segment constructor must not call this function because it can
82 * kill itself.
83 */
84void nilfs_error(struct super_block *sb, const char *function,
85 const char *fmt, ...)
86{
87 struct nilfs_sb_info *sbi = NILFS_SB(sb);
88 va_list args;
89
90 va_start(args, fmt);
91 printk(KERN_CRIT "NILFS error (device %s): %s: ", sb->s_id, function);
92 vprintk(fmt, args);
93 printk("\n");
94 va_end(args);
95
96 if (!(sb->s_flags & MS_RDONLY)) {
97 struct the_nilfs *nilfs = sbi->s_nilfs;
98
99 if (!nilfs_test_opt(sbi, ERRORS_CONT))
100 nilfs_detach_segment_constructor(sbi);
101
102 down_write(&nilfs->ns_sem);
103 if (!(nilfs->ns_mount_state & NILFS_ERROR_FS)) {
104 nilfs->ns_mount_state |= NILFS_ERROR_FS;
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105 nilfs->ns_sbp[0]->s_state |=
106 cpu_to_le16(NILFS_ERROR_FS);
107 nilfs_commit_super(sbi, 1);
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108 }
109 up_write(&nilfs->ns_sem);
110
111 if (nilfs_test_opt(sbi, ERRORS_RO)) {
112 printk(KERN_CRIT "Remounting filesystem read-only\n");
113 sb->s_flags |= MS_RDONLY;
114 }
115 }
116
117 if (nilfs_test_opt(sbi, ERRORS_PANIC))
118 panic("NILFS (device %s): panic forced after error\n",
119 sb->s_id);
120}
121
122void nilfs_warning(struct super_block *sb, const char *function,
123 const char *fmt, ...)
124{
125 va_list args;
126
127 va_start(args, fmt);
128 printk(KERN_WARNING "NILFS warning (device %s): %s: ",
129 sb->s_id, function);
130 vprintk(fmt, args);
131 printk("\n");
132 va_end(args);
133}
134
135static struct kmem_cache *nilfs_inode_cachep;
136
a53b4751 137struct inode *nilfs_alloc_inode_common(struct the_nilfs *nilfs)
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138{
139 struct nilfs_inode_info *ii;
140
141 ii = kmem_cache_alloc(nilfs_inode_cachep, GFP_NOFS);
142 if (!ii)
143 return NULL;
144 ii->i_bh = NULL;
145 ii->i_state = 0;
146 ii->vfs_inode.i_version = 1;
a53b4751 147 nilfs_btnode_cache_init(&ii->i_btnode_cache, nilfs->ns_bdi);
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148 return &ii->vfs_inode;
149}
150
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151struct inode *nilfs_alloc_inode(struct super_block *sb)
152{
153 return nilfs_alloc_inode_common(NILFS_SB(sb)->s_nilfs);
154}
155
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156void nilfs_destroy_inode(struct inode *inode)
157{
158 kmem_cache_free(nilfs_inode_cachep, NILFS_I(inode));
159}
160
161static void init_once(void *obj)
162{
163 struct nilfs_inode_info *ii = obj;
164
165 INIT_LIST_HEAD(&ii->i_dirty);
166#ifdef CONFIG_NILFS_XATTR
167 init_rwsem(&ii->xattr_sem);
168#endif
169 nilfs_btnode_cache_init_once(&ii->i_btnode_cache);
170 ii->i_bmap = (struct nilfs_bmap *)&ii->i_bmap_union;
171 inode_init_once(&ii->vfs_inode);
172}
173
174static int nilfs_init_inode_cache(void)
175{
176 nilfs_inode_cachep = kmem_cache_create("nilfs2_inode_cache",
177 sizeof(struct nilfs_inode_info),
178 0, SLAB_RECLAIM_ACCOUNT,
179 init_once);
180
181 return (nilfs_inode_cachep == NULL) ? -ENOMEM : 0;
182}
183
184static inline void nilfs_destroy_inode_cache(void)
185{
186 kmem_cache_destroy(nilfs_inode_cachep);
187}
188
189static void nilfs_clear_inode(struct inode *inode)
190{
191 struct nilfs_inode_info *ii = NILFS_I(inode);
783f6184 192
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193 /*
194 * Free resources allocated in nilfs_read_inode(), here.
195 */
a2e7d2df 196 BUG_ON(!list_empty(&ii->i_dirty));
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197 brelse(ii->i_bh);
198 ii->i_bh = NULL;
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199
200 if (test_bit(NILFS_I_BMAP, &ii->i_state))
201 nilfs_bmap_clear(ii->i_bmap);
202
203 nilfs_btnode_cache_clear(&ii->i_btnode_cache);
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204}
205
e339ad31 206static int nilfs_sync_super(struct nilfs_sb_info *sbi, int dupsb)
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207{
208 struct the_nilfs *nilfs = sbi->s_nilfs;
209 int err;
210 int barrier_done = 0;
211
212 if (nilfs_test_opt(sbi, BARRIER)) {
e339ad31 213 set_buffer_ordered(nilfs->ns_sbh[0]);
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214 barrier_done = 1;
215 }
216 retry:
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217 set_buffer_dirty(nilfs->ns_sbh[0]);
218 err = sync_dirty_buffer(nilfs->ns_sbh[0]);
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219 if (err == -EOPNOTSUPP && barrier_done) {
220 nilfs_warning(sbi->s_super, __func__,
221 "barrier-based sync failed. "
222 "disabling barriers\n");
223 nilfs_clear_opt(sbi, BARRIER);
224 barrier_done = 0;
e339ad31 225 clear_buffer_ordered(nilfs->ns_sbh[0]);
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226 goto retry;
227 }
e339ad31 228 if (unlikely(err)) {
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229 printk(KERN_ERR
230 "NILFS: unable to write superblock (err=%d)\n", err);
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231 if (err == -EIO && nilfs->ns_sbh[1]) {
232 nilfs_fall_back_super_block(nilfs);
233 goto retry;
234 }
235 } else {
236 struct nilfs_super_block *sbp = nilfs->ns_sbp[0];
237
238 /*
239 * The latest segment becomes trailable from the position
240 * written in superblock.
241 */
783f6184 242 clear_nilfs_discontinued(nilfs);
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243
244 /* update GC protection for recent segments */
245 if (nilfs->ns_sbh[1]) {
246 sbp = NULL;
247 if (dupsb) {
248 set_buffer_dirty(nilfs->ns_sbh[1]);
249 if (!sync_dirty_buffer(nilfs->ns_sbh[1]))
250 sbp = nilfs->ns_sbp[1];
251 }
252 }
253 if (sbp) {
254 spin_lock(&nilfs->ns_last_segment_lock);
255 nilfs->ns_prot_seq = le64_to_cpu(sbp->s_last_seq);
256 spin_unlock(&nilfs->ns_last_segment_lock);
257 }
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258 }
259
260 return err;
261}
262
e339ad31 263int nilfs_commit_super(struct nilfs_sb_info *sbi, int dupsb)
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264{
265 struct the_nilfs *nilfs = sbi->s_nilfs;
e339ad31 266 struct nilfs_super_block **sbp = nilfs->ns_sbp;
783f6184 267 sector_t nfreeblocks;
e339ad31 268 time_t t;
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269 int err;
270
271 /* nilfs->sem must be locked by the caller. */
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272 if (sbp[0]->s_magic != NILFS_SUPER_MAGIC) {
273 if (sbp[1] && sbp[1]->s_magic == NILFS_SUPER_MAGIC)
274 nilfs_swap_super_block(nilfs);
275 else {
276 printk(KERN_CRIT "NILFS: superblock broke on dev %s\n",
277 sbi->s_super->s_id);
278 return -EIO;
279 }
280 }
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281 err = nilfs_count_free_blocks(nilfs, &nfreeblocks);
282 if (unlikely(err)) {
283 printk(KERN_ERR "NILFS: failed to count free blocks\n");
284 return err;
285 }
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286 spin_lock(&nilfs->ns_last_segment_lock);
287 sbp[0]->s_last_seq = cpu_to_le64(nilfs->ns_last_seq);
288 sbp[0]->s_last_pseg = cpu_to_le64(nilfs->ns_last_pseg);
289 sbp[0]->s_last_cno = cpu_to_le64(nilfs->ns_last_cno);
290 spin_unlock(&nilfs->ns_last_segment_lock);
291
292 t = get_seconds();
293 nilfs->ns_sbwtime[0] = t;
294 sbp[0]->s_free_blocks_count = cpu_to_le64(nfreeblocks);
295 sbp[0]->s_wtime = cpu_to_le64(t);
296 sbp[0]->s_sum = 0;
297 sbp[0]->s_sum = cpu_to_le32(crc32_le(nilfs->ns_crc_seed,
298 (unsigned char *)sbp[0],
299 nilfs->ns_sbsize));
300 if (dupsb && sbp[1]) {
301 memcpy(sbp[1], sbp[0], nilfs->ns_sbsize);
302 nilfs->ns_sbwtime[1] = t;
303 }
783f6184 304 sbi->s_super->s_dirt = 0;
e339ad31 305 return nilfs_sync_super(sbi, dupsb);
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306}
307
308static void nilfs_put_super(struct super_block *sb)
309{
310 struct nilfs_sb_info *sbi = NILFS_SB(sb);
311 struct the_nilfs *nilfs = sbi->s_nilfs;
312
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313 lock_kernel();
314
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315 nilfs_detach_segment_constructor(sbi);
316
317 if (!(sb->s_flags & MS_RDONLY)) {
318 down_write(&nilfs->ns_sem);
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319 nilfs->ns_sbp[0]->s_state = cpu_to_le16(nilfs->ns_mount_state);
320 nilfs_commit_super(sbi, 1);
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321 up_write(&nilfs->ns_sem);
322 }
e59399d0 323 down_write(&nilfs->ns_super_sem);
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324 if (nilfs->ns_current == sbi)
325 nilfs->ns_current = NULL;
e59399d0 326 up_write(&nilfs->ns_super_sem);
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327
328 nilfs_detach_checkpoint(sbi);
329 put_nilfs(sbi->s_nilfs);
330 sbi->s_super = NULL;
331 sb->s_fs_info = NULL;
6dd47406 332 nilfs_put_sbinfo(sbi);
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333
334 unlock_kernel();
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335}
336
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337static int nilfs_sync_fs(struct super_block *sb, int wait)
338{
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339 struct nilfs_sb_info *sbi = NILFS_SB(sb);
340 struct the_nilfs *nilfs = sbi->s_nilfs;
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341 int err = 0;
342
343 /* This function is called when super block should be written back */
344 if (wait)
345 err = nilfs_construct_segment(sb);
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346
347 down_write(&nilfs->ns_sem);
348 if (sb->s_dirt)
349 nilfs_commit_super(sbi, 1);
350 up_write(&nilfs->ns_sem);
351
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352 return err;
353}
354
355int nilfs_attach_checkpoint(struct nilfs_sb_info *sbi, __u64 cno)
356{
357 struct the_nilfs *nilfs = sbi->s_nilfs;
358 struct nilfs_checkpoint *raw_cp;
359 struct buffer_head *bh_cp;
360 int err;
361
e59399d0 362 down_write(&nilfs->ns_super_sem);
783f6184 363 list_add(&sbi->s_list, &nilfs->ns_supers);
e59399d0 364 up_write(&nilfs->ns_super_sem);
783f6184 365
79739565 366 sbi->s_ifile = nilfs_ifile_new(sbi, nilfs->ns_inode_size);
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367 if (!sbi->s_ifile)
368 return -ENOMEM;
369
1154ecbd 370 down_read(&nilfs->ns_segctor_sem);
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371 err = nilfs_cpfile_get_checkpoint(nilfs->ns_cpfile, cno, 0, &raw_cp,
372 &bh_cp);
1154ecbd 373 up_read(&nilfs->ns_segctor_sem);
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374 if (unlikely(err)) {
375 if (err == -ENOENT || err == -EINVAL) {
376 printk(KERN_ERR
377 "NILFS: Invalid checkpoint "
378 "(checkpoint number=%llu)\n",
379 (unsigned long long)cno);
380 err = -EINVAL;
381 }
382 goto failed;
383 }
384 err = nilfs_read_inode_common(sbi->s_ifile, &raw_cp->cp_ifile_inode);
385 if (unlikely(err))
386 goto failed_bh;
387 atomic_set(&sbi->s_inodes_count, le64_to_cpu(raw_cp->cp_inodes_count));
388 atomic_set(&sbi->s_blocks_count, le64_to_cpu(raw_cp->cp_blocks_count));
389
390 nilfs_cpfile_put_checkpoint(nilfs->ns_cpfile, cno, bh_cp);
391 return 0;
392
393 failed_bh:
394 nilfs_cpfile_put_checkpoint(nilfs->ns_cpfile, cno, bh_cp);
395 failed:
396 nilfs_mdt_destroy(sbi->s_ifile);
397 sbi->s_ifile = NULL;
398
e59399d0 399 down_write(&nilfs->ns_super_sem);
783f6184 400 list_del_init(&sbi->s_list);
e59399d0 401 up_write(&nilfs->ns_super_sem);
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402
403 return err;
404}
405
406void nilfs_detach_checkpoint(struct nilfs_sb_info *sbi)
407{
408 struct the_nilfs *nilfs = sbi->s_nilfs;
409
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410 nilfs_mdt_destroy(sbi->s_ifile);
411 sbi->s_ifile = NULL;
e59399d0 412 down_write(&nilfs->ns_super_sem);
783f6184 413 list_del_init(&sbi->s_list);
e59399d0 414 up_write(&nilfs->ns_super_sem);
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415}
416
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417static int nilfs_statfs(struct dentry *dentry, struct kstatfs *buf)
418{
419 struct super_block *sb = dentry->d_sb;
420 struct nilfs_sb_info *sbi = NILFS_SB(sb);
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421 struct the_nilfs *nilfs = sbi->s_nilfs;
422 u64 id = huge_encode_dev(sb->s_bdev->bd_dev);
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423 unsigned long long blocks;
424 unsigned long overhead;
425 unsigned long nrsvblocks;
426 sector_t nfreeblocks;
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427 int err;
428
429 /*
430 * Compute all of the segment blocks
431 *
432 * The blocks before first segment and after last segment
433 * are excluded.
434 */
435 blocks = nilfs->ns_blocks_per_segment * nilfs->ns_nsegments
436 - nilfs->ns_first_data_block;
437 nrsvblocks = nilfs->ns_nrsvsegs * nilfs->ns_blocks_per_segment;
438
439 /*
440 * Compute the overhead
441 *
442 * When distributing meta data blocks outside semgent structure,
443 * We must count them as the overhead.
444 */
445 overhead = 0;
446
447 err = nilfs_count_free_blocks(nilfs, &nfreeblocks);
448 if (unlikely(err))
449 return err;
450
451 buf->f_type = NILFS_SUPER_MAGIC;
452 buf->f_bsize = sb->s_blocksize;
453 buf->f_blocks = blocks - overhead;
454 buf->f_bfree = nfreeblocks;
455 buf->f_bavail = (buf->f_bfree >= nrsvblocks) ?
456 (buf->f_bfree - nrsvblocks) : 0;
457 buf->f_files = atomic_read(&sbi->s_inodes_count);
458 buf->f_ffree = 0; /* nilfs_count_free_inodes(sb); */
459 buf->f_namelen = NILFS_NAME_LEN;
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460 buf->f_fsid.val[0] = (u32)id;
461 buf->f_fsid.val[1] = (u32)(id >> 32);
462
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463 return 0;
464}
465
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466static int nilfs_show_options(struct seq_file *seq, struct vfsmount *vfs)
467{
468 struct super_block *sb = vfs->mnt_sb;
469 struct nilfs_sb_info *sbi = NILFS_SB(sb);
470
471 if (!nilfs_test_opt(sbi, BARRIER))
91f1953b 472 seq_printf(seq, ",nobarrier");
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473 if (nilfs_test_opt(sbi, SNAPSHOT))
474 seq_printf(seq, ",cp=%llu",
475 (unsigned long long int)sbi->s_snapshot_cno);
476 if (nilfs_test_opt(sbi, ERRORS_RO))
477 seq_printf(seq, ",errors=remount-ro");
478 if (nilfs_test_opt(sbi, ERRORS_PANIC))
479 seq_printf(seq, ",errors=panic");
480 if (nilfs_test_opt(sbi, STRICT_ORDER))
481 seq_printf(seq, ",order=strict");
482
483 return 0;
484}
485
b87221de 486static const struct super_operations nilfs_sops = {
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487 .alloc_inode = nilfs_alloc_inode,
488 .destroy_inode = nilfs_destroy_inode,
489 .dirty_inode = nilfs_dirty_inode,
490 /* .write_inode = nilfs_write_inode, */
491 /* .put_inode = nilfs_put_inode, */
492 /* .drop_inode = nilfs_drop_inode, */
493 .delete_inode = nilfs_delete_inode,
494 .put_super = nilfs_put_super,
1dfa2710 495 /* .write_super = nilfs_write_super, */
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496 .sync_fs = nilfs_sync_fs,
497 /* .write_super_lockfs */
498 /* .unlockfs */
499 .statfs = nilfs_statfs,
500 .remount_fs = nilfs_remount,
501 .clear_inode = nilfs_clear_inode,
502 /* .umount_begin */
b58a285b 503 .show_options = nilfs_show_options
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504};
505
506static struct inode *
507nilfs_nfs_get_inode(struct super_block *sb, u64 ino, u32 generation)
508{
509 struct inode *inode;
510
511 if (ino < NILFS_FIRST_INO(sb) && ino != NILFS_ROOT_INO &&
512 ino != NILFS_SKETCH_INO)
513 return ERR_PTR(-ESTALE);
514
515 inode = nilfs_iget(sb, ino);
516 if (IS_ERR(inode))
517 return ERR_CAST(inode);
518 if (generation && inode->i_generation != generation) {
519 iput(inode);
520 return ERR_PTR(-ESTALE);
521 }
522
523 return inode;
524}
525
526static struct dentry *
527nilfs_fh_to_dentry(struct super_block *sb, struct fid *fid, int fh_len,
528 int fh_type)
529{
530 return generic_fh_to_dentry(sb, fid, fh_len, fh_type,
531 nilfs_nfs_get_inode);
532}
533
534static struct dentry *
535nilfs_fh_to_parent(struct super_block *sb, struct fid *fid, int fh_len,
536 int fh_type)
537{
538 return generic_fh_to_parent(sb, fid, fh_len, fh_type,
539 nilfs_nfs_get_inode);
540}
541
ac4cfdd6 542static const struct export_operations nilfs_export_ops = {
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543 .fh_to_dentry = nilfs_fh_to_dentry,
544 .fh_to_parent = nilfs_fh_to_parent,
545 .get_parent = nilfs_get_parent,
546};
547
548enum {
549 Opt_err_cont, Opt_err_panic, Opt_err_ro,
91f1953b 550 Opt_nobarrier, Opt_snapshot, Opt_order,
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551 Opt_err,
552};
553
554static match_table_t tokens = {
555 {Opt_err_cont, "errors=continue"},
556 {Opt_err_panic, "errors=panic"},
557 {Opt_err_ro, "errors=remount-ro"},
91f1953b 558 {Opt_nobarrier, "nobarrier"},
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559 {Opt_snapshot, "cp=%u"},
560 {Opt_order, "order=%s"},
561 {Opt_err, NULL}
562};
563
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564static int parse_options(char *options, struct super_block *sb)
565{
566 struct nilfs_sb_info *sbi = NILFS_SB(sb);
567 char *p;
568 substring_t args[MAX_OPT_ARGS];
569 int option;
570
571 if (!options)
572 return 1;
573
574 while ((p = strsep(&options, ",")) != NULL) {
575 int token;
576 if (!*p)
577 continue;
578
579 token = match_token(p, tokens, args);
580 switch (token) {
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581 case Opt_nobarrier:
582 nilfs_clear_opt(sbi, BARRIER);
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583 break;
584 case Opt_order:
585 if (strcmp(args[0].from, "relaxed") == 0)
586 /* Ordered data semantics */
587 nilfs_clear_opt(sbi, STRICT_ORDER);
588 else if (strcmp(args[0].from, "strict") == 0)
589 /* Strict in-order semantics */
590 nilfs_set_opt(sbi, STRICT_ORDER);
591 else
592 return 0;
593 break;
594 case Opt_err_panic:
595 nilfs_write_opt(sbi, ERROR_MODE, ERRORS_PANIC);
596 break;
597 case Opt_err_ro:
598 nilfs_write_opt(sbi, ERROR_MODE, ERRORS_RO);
599 break;
600 case Opt_err_cont:
601 nilfs_write_opt(sbi, ERROR_MODE, ERRORS_CONT);
602 break;
603 case Opt_snapshot:
604 if (match_int(&args[0], &option) || option <= 0)
605 return 0;
606 if (!(sb->s_flags & MS_RDONLY))
607 return 0;
608 sbi->s_snapshot_cno = option;
609 nilfs_set_opt(sbi, SNAPSHOT);
610 break;
611 default:
612 printk(KERN_ERR
613 "NILFS: Unrecognized mount option \"%s\"\n", p);
614 return 0;
615 }
616 }
617 return 1;
618}
619
620static inline void
621nilfs_set_default_options(struct nilfs_sb_info *sbi,
622 struct nilfs_super_block *sbp)
623{
624 sbi->s_mount_opt =
625 NILFS_MOUNT_ERRORS_CONT | NILFS_MOUNT_BARRIER;
626}
627
628static int nilfs_setup_super(struct nilfs_sb_info *sbi)
629{
630 struct the_nilfs *nilfs = sbi->s_nilfs;
e339ad31 631 struct nilfs_super_block *sbp = nilfs->ns_sbp[0];
783f6184
RK
632 int max_mnt_count = le16_to_cpu(sbp->s_max_mnt_count);
633 int mnt_count = le16_to_cpu(sbp->s_mnt_count);
634
635 /* nilfs->sem must be locked by the caller. */
f50a4c81 636 if (nilfs->ns_mount_state & NILFS_ERROR_FS) {
783f6184
RK
637 printk(KERN_WARNING
638 "NILFS warning: mounting fs with errors\n");
639#if 0
640 } else if (max_mnt_count >= 0 && mnt_count >= max_mnt_count) {
641 printk(KERN_WARNING
642 "NILFS warning: maximal mount count reached\n");
643#endif
644 }
645 if (!max_mnt_count)
646 sbp->s_max_mnt_count = cpu_to_le16(NILFS_DFL_MAX_MNT_COUNT);
647
648 sbp->s_mnt_count = cpu_to_le16(mnt_count + 1);
649 sbp->s_state = cpu_to_le16(le16_to_cpu(sbp->s_state) & ~NILFS_VALID_FS);
650 sbp->s_mtime = cpu_to_le64(get_seconds());
e339ad31 651 return nilfs_commit_super(sbi, 1);
783f6184
RK
652}
653
e339ad31
RK
654struct nilfs_super_block *nilfs_read_super_block(struct super_block *sb,
655 u64 pos, int blocksize,
656 struct buffer_head **pbh)
783f6184 657{
e339ad31
RK
658 unsigned long long sb_index = pos;
659 unsigned long offset;
783f6184 660
e339ad31 661 offset = do_div(sb_index, blocksize);
783f6184 662 *pbh = sb_bread(sb, sb_index);
e339ad31 663 if (!*pbh)
783f6184 664 return NULL;
783f6184
RK
665 return (struct nilfs_super_block *)((char *)(*pbh)->b_data + offset);
666}
667
783f6184
RK
668int nilfs_store_magic_and_option(struct super_block *sb,
669 struct nilfs_super_block *sbp,
670 char *data)
671{
672 struct nilfs_sb_info *sbi = NILFS_SB(sb);
673
783f6184
RK
674 sb->s_magic = le16_to_cpu(sbp->s_magic);
675
676 /* FS independent flags */
677#ifdef NILFS_ATIME_DISABLE
678 sb->s_flags |= MS_NOATIME;
679#endif
680
783f6184
RK
681 nilfs_set_default_options(sbi, sbp);
682
683 sbi->s_resuid = le16_to_cpu(sbp->s_def_resuid);
684 sbi->s_resgid = le16_to_cpu(sbp->s_def_resgid);
685 sbi->s_interval = le32_to_cpu(sbp->s_c_interval);
686 sbi->s_watermark = le32_to_cpu(sbp->s_c_block_max);
687
e339ad31 688 return !parse_options(data, sb) ? -EINVAL : 0 ;
783f6184
RK
689}
690
691/**
692 * nilfs_fill_super() - initialize a super block instance
693 * @sb: super_block
694 * @data: mount options
695 * @silent: silent mode flag
696 * @nilfs: the_nilfs struct
697 *
aa7dfb89 698 * This function is called exclusively by nilfs->ns_mount_mutex.
783f6184
RK
699 * So, the recovery process is protected from other simultaneous mounts.
700 */
701static int
702nilfs_fill_super(struct super_block *sb, void *data, int silent,
703 struct the_nilfs *nilfs)
704{
705 struct nilfs_sb_info *sbi;
706 struct inode *root;
707 __u64 cno;
708 int err;
709
710 sbi = kzalloc(sizeof(*sbi), GFP_KERNEL);
711 if (!sbi)
712 return -ENOMEM;
713
714 sb->s_fs_info = sbi;
715
716 get_nilfs(nilfs);
717 sbi->s_nilfs = nilfs;
718 sbi->s_super = sb;
6dd47406 719 atomic_set(&sbi->s_count, 1);
783f6184
RK
720
721 err = init_nilfs(nilfs, sbi, (char *)data);
722 if (err)
723 goto failed_sbi;
724
725 spin_lock_init(&sbi->s_inode_lock);
726 INIT_LIST_HEAD(&sbi->s_dirty_files);
727 INIT_LIST_HEAD(&sbi->s_list);
728
729 /*
730 * Following initialization is overlapped because
731 * nilfs_sb_info structure has been cleared at the beginning.
732 * But we reserve them to keep our interest and make ready
733 * for the future change.
734 */
735 get_random_bytes(&sbi->s_next_generation,
736 sizeof(sbi->s_next_generation));
737 spin_lock_init(&sbi->s_next_gen_lock);
738
739 sb->s_op = &nilfs_sops;
740 sb->s_export_op = &nilfs_export_ops;
741 sb->s_root = NULL;
61239230 742 sb->s_time_gran = 1;
783f6184 743
f50a4c81
RK
744 err = load_nilfs(nilfs, sbi);
745 if (err)
746 goto failed_sbi;
747
783f6184
RK
748 cno = nilfs_last_cno(nilfs);
749
750 if (sb->s_flags & MS_RDONLY) {
751 if (nilfs_test_opt(sbi, SNAPSHOT)) {
43be0ec0 752 down_read(&nilfs->ns_segctor_sem);
1f5abe7e
RK
753 err = nilfs_cpfile_is_snapshot(nilfs->ns_cpfile,
754 sbi->s_snapshot_cno);
43be0ec0
ZY
755 up_read(&nilfs->ns_segctor_sem);
756 if (err < 0) {
757 if (err == -ENOENT)
758 err = -EINVAL;
1f5abe7e 759 goto failed_sbi;
43be0ec0 760 }
1f5abe7e 761 if (!err) {
783f6184
RK
762 printk(KERN_ERR
763 "NILFS: The specified checkpoint is "
764 "not a snapshot "
765 "(checkpoint number=%llu).\n",
766 (unsigned long long)sbi->s_snapshot_cno);
767 err = -EINVAL;
768 goto failed_sbi;
769 }
770 cno = sbi->s_snapshot_cno;
771 } else
772 /* Read-only mount */
773 sbi->s_snapshot_cno = cno;
774 }
775
776 err = nilfs_attach_checkpoint(sbi, cno);
777 if (err) {
778 printk(KERN_ERR "NILFS: error loading a checkpoint"
779 " (checkpoint number=%llu).\n", (unsigned long long)cno);
780 goto failed_sbi;
781 }
782
783 if (!(sb->s_flags & MS_RDONLY)) {
cece5520 784 err = nilfs_attach_segment_constructor(sbi);
783f6184
RK
785 if (err)
786 goto failed_checkpoint;
787 }
788
789 root = nilfs_iget(sb, NILFS_ROOT_INO);
790 if (IS_ERR(root)) {
791 printk(KERN_ERR "NILFS: get root inode failed\n");
792 err = PTR_ERR(root);
793 goto failed_segctor;
794 }
795 if (!S_ISDIR(root->i_mode) || !root->i_blocks || !root->i_size) {
796 iput(root);
797 printk(KERN_ERR "NILFS: corrupt root inode.\n");
798 err = -EINVAL;
799 goto failed_segctor;
800 }
801 sb->s_root = d_alloc_root(root);
802 if (!sb->s_root) {
803 iput(root);
804 printk(KERN_ERR "NILFS: get root dentry failed\n");
805 err = -ENOMEM;
806 goto failed_segctor;
807 }
808
809 if (!(sb->s_flags & MS_RDONLY)) {
810 down_write(&nilfs->ns_sem);
811 nilfs_setup_super(sbi);
812 up_write(&nilfs->ns_sem);
813 }
814
e59399d0 815 down_write(&nilfs->ns_super_sem);
3f82ff55
RK
816 if (!nilfs_test_opt(sbi, SNAPSHOT))
817 nilfs->ns_current = sbi;
e59399d0 818 up_write(&nilfs->ns_super_sem);
3f82ff55 819
783f6184
RK
820 return 0;
821
783f6184
RK
822 failed_segctor:
823 nilfs_detach_segment_constructor(sbi);
824
825 failed_checkpoint:
826 nilfs_detach_checkpoint(sbi);
827
828 failed_sbi:
829 put_nilfs(nilfs);
830 sb->s_fs_info = NULL;
6dd47406 831 nilfs_put_sbinfo(sbi);
783f6184
RK
832 return err;
833}
834
835static int nilfs_remount(struct super_block *sb, int *flags, char *data)
836{
837 struct nilfs_sb_info *sbi = NILFS_SB(sb);
838 struct nilfs_super_block *sbp;
839 struct the_nilfs *nilfs = sbi->s_nilfs;
840 unsigned long old_sb_flags;
841 struct nilfs_mount_options old_opts;
842 int err;
843
337eb00a
AIB
844 lock_kernel();
845
e59399d0 846 down_write(&nilfs->ns_super_sem);
783f6184
RK
847 old_sb_flags = sb->s_flags;
848 old_opts.mount_opt = sbi->s_mount_opt;
849 old_opts.snapshot_cno = sbi->s_snapshot_cno;
850
851 if (!parse_options(data, sb)) {
852 err = -EINVAL;
853 goto restore_opts;
854 }
855 sb->s_flags = (sb->s_flags & ~MS_POSIXACL);
856
857 if ((*flags & MS_RDONLY) &&
858 sbi->s_snapshot_cno != old_opts.snapshot_cno) {
859 printk(KERN_WARNING "NILFS (device %s): couldn't "
860 "remount to a different snapshot. \n",
861 sb->s_id);
862 err = -EINVAL;
863 goto restore_opts;
864 }
865
866 if ((*flags & MS_RDONLY) == (sb->s_flags & MS_RDONLY))
867 goto out;
868 if (*flags & MS_RDONLY) {
869 /* Shutting down the segment constructor */
870 nilfs_detach_segment_constructor(sbi);
871 sb->s_flags |= MS_RDONLY;
872
873 sbi->s_snapshot_cno = nilfs_last_cno(nilfs);
874 /* nilfs_set_opt(sbi, SNAPSHOT); */
875
876 /*
877 * Remounting a valid RW partition RDONLY, so set
878 * the RDONLY flag and then mark the partition as valid again.
879 */
880 down_write(&nilfs->ns_sem);
e339ad31 881 sbp = nilfs->ns_sbp[0];
783f6184
RK
882 if (!(sbp->s_state & le16_to_cpu(NILFS_VALID_FS)) &&
883 (nilfs->ns_mount_state & NILFS_VALID_FS))
884 sbp->s_state = cpu_to_le16(nilfs->ns_mount_state);
885 sbp->s_mtime = cpu_to_le64(get_seconds());
e339ad31 886 nilfs_commit_super(sbi, 1);
783f6184
RK
887 up_write(&nilfs->ns_sem);
888 } else {
889 /*
890 * Mounting a RDONLY partition read-write, so reread and
891 * store the current valid flag. (It may have been changed
892 * by fsck since we originally mounted the partition.)
893 */
3f82ff55 894 if (nilfs->ns_current && nilfs->ns_current != sbi) {
783f6184 895 printk(KERN_WARNING "NILFS (device %s): couldn't "
3f82ff55 896 "remount because an RW-mount exists.\n",
783f6184
RK
897 sb->s_id);
898 err = -EBUSY;
e59399d0 899 goto restore_opts;
783f6184
RK
900 }
901 if (sbi->s_snapshot_cno != nilfs_last_cno(nilfs)) {
902 printk(KERN_WARNING "NILFS (device %s): couldn't "
903 "remount because the current RO-mount is not "
904 "the latest one.\n",
905 sb->s_id);
906 err = -EINVAL;
e59399d0 907 goto restore_opts;
783f6184
RK
908 }
909 sb->s_flags &= ~MS_RDONLY;
910 nilfs_clear_opt(sbi, SNAPSHOT);
911 sbi->s_snapshot_cno = 0;
912
cece5520 913 err = nilfs_attach_segment_constructor(sbi);
783f6184 914 if (err)
e59399d0 915 goto restore_opts;
783f6184
RK
916
917 down_write(&nilfs->ns_sem);
918 nilfs_setup_super(sbi);
919 up_write(&nilfs->ns_sem);
920
e59399d0 921 nilfs->ns_current = sbi;
783f6184
RK
922 }
923 out:
e59399d0 924 up_write(&nilfs->ns_super_sem);
337eb00a 925 unlock_kernel();
783f6184
RK
926 return 0;
927
783f6184
RK
928 restore_opts:
929 sb->s_flags = old_sb_flags;
930 sbi->s_mount_opt = old_opts.mount_opt;
931 sbi->s_snapshot_cno = old_opts.snapshot_cno;
e59399d0 932 up_write(&nilfs->ns_super_sem);
337eb00a 933 unlock_kernel();
783f6184
RK
934 return err;
935}
936
937struct nilfs_super_data {
938 struct block_device *bdev;
6dd47406 939 struct nilfs_sb_info *sbi;
783f6184
RK
940 __u64 cno;
941 int flags;
942};
943
944/**
945 * nilfs_identify - pre-read mount options needed to identify mount instance
946 * @data: mount options
947 * @sd: nilfs_super_data
948 */
949static int nilfs_identify(char *data, struct nilfs_super_data *sd)
950{
951 char *p, *options = data;
952 substring_t args[MAX_OPT_ARGS];
953 int option, token;
954 int ret = 0;
955
956 do {
957 p = strsep(&options, ",");
958 if (p != NULL && *p) {
959 token = match_token(p, tokens, args);
960 if (token == Opt_snapshot) {
961 if (!(sd->flags & MS_RDONLY))
962 ret++;
963 else {
964 ret = match_int(&args[0], &option);
965 if (!ret) {
966 if (option > 0)
967 sd->cno = option;
968 else
969 ret++;
970 }
971 }
972 }
973 if (ret)
974 printk(KERN_ERR
975 "NILFS: invalid mount option: %s\n", p);
976 }
977 if (!options)
978 break;
979 BUG_ON(options == data);
980 *(options - 1) = ',';
981 } while (!ret);
982 return ret;
983}
984
985static int nilfs_set_bdev_super(struct super_block *s, void *data)
986{
987 struct nilfs_super_data *sd = data;
988
989 s->s_bdev = sd->bdev;
990 s->s_dev = s->s_bdev->bd_dev;
991 return 0;
992}
993
994static int nilfs_test_bdev_super(struct super_block *s, void *data)
783f6184
RK
995{
996 struct nilfs_super_data *sd = data;
6dd47406
RK
997
998 return sd->sbi && s->s_fs_info == (void *)sd->sbi;
783f6184
RK
999}
1000
1001static int
1002nilfs_get_sb(struct file_system_type *fs_type, int flags,
1003 const char *dev_name, void *data, struct vfsmount *mnt)
1004{
1005 struct nilfs_super_data sd;
33c8e57c
RK
1006 struct super_block *s;
1007 struct the_nilfs *nilfs;
783f6184
RK
1008 int err, need_to_close = 1;
1009
1010 sd.bdev = open_bdev_exclusive(dev_name, flags, fs_type);
1011 if (IS_ERR(sd.bdev))
1012 return PTR_ERR(sd.bdev);
1013
1014 /*
1015 * To get mount instance using sget() vfs-routine, NILFS needs
1016 * much more information than normal filesystems to identify mount
1017 * instance. For snapshot mounts, not only a mount type (ro-mount
1018 * or rw-mount) but also a checkpoint number is required.
783f6184
RK
1019 */
1020 sd.cno = 0;
1021 sd.flags = flags;
1022 if (nilfs_identify((char *)data, &sd)) {
1023 err = -EINVAL;
1024 goto failed;
1025 }
1026
33c8e57c
RK
1027 nilfs = find_or_create_nilfs(sd.bdev);
1028 if (!nilfs) {
1029 err = -ENOMEM;
1030 goto failed;
1031 }
1032
aa7dfb89 1033 mutex_lock(&nilfs->ns_mount_mutex);
3f82ff55
RK
1034
1035 if (!sd.cno) {
1036 /*
1037 * Check if an exclusive mount exists or not.
1038 * Snapshot mounts coexist with a current mount
1039 * (i.e. rw-mount or ro-mount), whereas rw-mount and
1040 * ro-mount are mutually exclusive.
1041 */
e59399d0 1042 down_read(&nilfs->ns_super_sem);
3f82ff55
RK
1043 if (nilfs->ns_current &&
1044 ((nilfs->ns_current->s_super->s_flags ^ flags)
1045 & MS_RDONLY)) {
e59399d0 1046 up_read(&nilfs->ns_super_sem);
3f82ff55
RK
1047 err = -EBUSY;
1048 goto failed_unlock;
1049 }
e59399d0 1050 up_read(&nilfs->ns_super_sem);
783f6184
RK
1051 }
1052
1053 /*
6dd47406 1054 * Find existing nilfs_sb_info struct
783f6184 1055 */
6dd47406
RK
1056 sd.sbi = nilfs_find_sbinfo(nilfs, !(flags & MS_RDONLY), sd.cno);
1057
6dd47406
RK
1058 /*
1059 * Get super block instance holding the nilfs_sb_info struct.
1060 * A new instance is allocated if no existing mount is present or
1061 * existing instance has been unmounted.
1062 */
33c8e57c 1063 s = sget(fs_type, nilfs_test_bdev_super, nilfs_set_bdev_super, &sd);
6dd47406
RK
1064 if (sd.sbi)
1065 nilfs_put_sbinfo(sd.sbi);
1066
33c8e57c
RK
1067 if (IS_ERR(s)) {
1068 err = PTR_ERR(s);
1069 goto failed_unlock;
783f6184
RK
1070 }
1071
1072 if (!s->s_root) {
1073 char b[BDEVNAME_SIZE];
1074
33c8e57c 1075 /* New superblock instance created */
783f6184
RK
1076 s->s_flags = flags;
1077 strlcpy(s->s_id, bdevname(sd.bdev, b), sizeof(s->s_id));
1078 sb_set_blocksize(s, block_size(sd.bdev));
1079
1080 err = nilfs_fill_super(s, data, flags & MS_VERBOSE, nilfs);
1081 if (err)
1082 goto cancel_new;
1083
1084 s->s_flags |= MS_ACTIVE;
1085 need_to_close = 0;
783f6184
RK
1086 }
1087
aa7dfb89 1088 mutex_unlock(&nilfs->ns_mount_mutex);
783f6184
RK
1089 put_nilfs(nilfs);
1090 if (need_to_close)
1091 close_bdev_exclusive(sd.bdev, flags);
1092 simple_set_mnt(mnt, s);
1093 return 0;
1094
783f6184 1095 failed_unlock:
aa7dfb89 1096 mutex_unlock(&nilfs->ns_mount_mutex);
33c8e57c 1097 put_nilfs(nilfs);
783f6184
RK
1098 failed:
1099 close_bdev_exclusive(sd.bdev, flags);
1100
1101 return err;
1102
1103 cancel_new:
1104 /* Abandoning the newly allocated superblock */
aa7dfb89 1105 mutex_unlock(&nilfs->ns_mount_mutex);
33c8e57c 1106 put_nilfs(nilfs);
783f6184
RK
1107 up_write(&s->s_umount);
1108 deactivate_super(s);
1109 /*
1110 * deactivate_super() invokes close_bdev_exclusive().
1111 * We must finish all post-cleaning before this call;
aa7dfb89 1112 * put_nilfs() needs the block device.
783f6184
RK
1113 */
1114 return err;
1115}
1116
783f6184
RK
1117struct file_system_type nilfs_fs_type = {
1118 .owner = THIS_MODULE,
1119 .name = "nilfs2",
1120 .get_sb = nilfs_get_sb,
1121 .kill_sb = kill_block_super,
1122 .fs_flags = FS_REQUIRES_DEV,
1123};
1124
1125static int __init init_nilfs_fs(void)
1126{
1127 int err;
1128
1129 err = nilfs_init_inode_cache();
1130 if (err)
1131 goto failed;
1132
1133 err = nilfs_init_transaction_cache();
1134 if (err)
1135 goto failed_inode_cache;
1136
1137 err = nilfs_init_segbuf_cache();
1138 if (err)
1139 goto failed_transaction_cache;
1140
1141 err = nilfs_btree_path_cache_init();
1142 if (err)
1143 goto failed_segbuf_cache;
1144
1145 err = register_filesystem(&nilfs_fs_type);
1146 if (err)
1147 goto failed_btree_path_cache;
1148
1149 return 0;
1150
1151 failed_btree_path_cache:
1152 nilfs_btree_path_cache_destroy();
1153
1154 failed_segbuf_cache:
1155 nilfs_destroy_segbuf_cache();
1156
1157 failed_transaction_cache:
1158 nilfs_destroy_transaction_cache();
1159
1160 failed_inode_cache:
1161 nilfs_destroy_inode_cache();
1162
1163 failed:
1164 return err;
1165}
1166
1167static void __exit exit_nilfs_fs(void)
1168{
1169 nilfs_destroy_segbuf_cache();
1170 nilfs_destroy_transaction_cache();
1171 nilfs_destroy_inode_cache();
1172 nilfs_btree_path_cache_destroy();
1173 unregister_filesystem(&nilfs_fs_type);
1174}
1175
1176module_init(init_nilfs_fs)
1177module_exit(exit_nilfs_fs)