Merge tag 'gfs2-merge-window' of git://git.kernel.org/pub/scm/linux/kernel/git/steve...
[platform/kernel/linux-exynos.git] / fs / ocfs2 / super.c
1 /* -*- mode: c; c-basic-offset: 8; -*-
2  * vim: noexpandtab sw=8 ts=8 sts=0:
3  *
4  * super.c
5  *
6  * load/unload driver, mount/dismount volumes
7  *
8  * Copyright (C) 2002, 2004 Oracle.  All rights reserved.
9  *
10  * This program is free software; you can redistribute it and/or
11  * modify it under the terms of the GNU General Public
12  * License as published by the Free Software Foundation; either
13  * version 2 of the License, or (at your option) any later version.
14  *
15  * This program is distributed in the hope that it will be useful,
16  * but WITHOUT ANY WARRANTY; without even the implied warranty of
17  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
18  * General Public License for more details.
19  *
20  * You should have received a copy of the GNU General Public
21  * License along with this program; if not, write to the
22  * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
23  * Boston, MA 021110-1307, USA.
24  */
25
26 #include <linux/module.h>
27 #include <linux/fs.h>
28 #include <linux/types.h>
29 #include <linux/slab.h>
30 #include <linux/highmem.h>
31 #include <linux/init.h>
32 #include <linux/random.h>
33 #include <linux/statfs.h>
34 #include <linux/moduleparam.h>
35 #include <linux/blkdev.h>
36 #include <linux/socket.h>
37 #include <linux/inet.h>
38 #include <linux/parser.h>
39 #include <linux/crc32.h>
40 #include <linux/debugfs.h>
41 #include <linux/mount.h>
42 #include <linux/seq_file.h>
43 #include <linux/quotaops.h>
44 #include <linux/cleancache.h>
45
46 #define CREATE_TRACE_POINTS
47 #include "ocfs2_trace.h"
48
49 #include <cluster/masklog.h>
50
51 #include "ocfs2.h"
52
53 /* this should be the only file to include a version 1 header */
54 #include "ocfs1_fs_compat.h"
55
56 #include "alloc.h"
57 #include "aops.h"
58 #include "blockcheck.h"
59 #include "dlmglue.h"
60 #include "export.h"
61 #include "extent_map.h"
62 #include "heartbeat.h"
63 #include "inode.h"
64 #include "journal.h"
65 #include "localalloc.h"
66 #include "namei.h"
67 #include "slot_map.h"
68 #include "super.h"
69 #include "sysfile.h"
70 #include "uptodate.h"
71 #include "xattr.h"
72 #include "quota.h"
73 #include "refcounttree.h"
74 #include "suballoc.h"
75
76 #include "buffer_head_io.h"
77
78 static struct kmem_cache *ocfs2_inode_cachep;
79 struct kmem_cache *ocfs2_dquot_cachep;
80 struct kmem_cache *ocfs2_qf_chunk_cachep;
81
82 /* OCFS2 needs to schedule several different types of work which
83  * require cluster locking, disk I/O, recovery waits, etc. Since these
84  * types of work tend to be heavy we avoid using the kernel events
85  * workqueue and schedule on our own. */
86 struct workqueue_struct *ocfs2_wq = NULL;
87
88 static struct dentry *ocfs2_debugfs_root;
89
90 MODULE_AUTHOR("Oracle");
91 MODULE_LICENSE("GPL");
92 MODULE_DESCRIPTION("OCFS2 cluster file system");
93
94 struct mount_options
95 {
96         unsigned long   commit_interval;
97         unsigned long   mount_opt;
98         unsigned int    atime_quantum;
99         signed short    slot;
100         int             localalloc_opt;
101         unsigned int    resv_level;
102         int             dir_resv_level;
103         char            cluster_stack[OCFS2_STACK_LABEL_LEN + 1];
104 };
105
106 static int ocfs2_parse_options(struct super_block *sb, char *options,
107                                struct mount_options *mopt,
108                                int is_remount);
109 static int ocfs2_check_set_options(struct super_block *sb,
110                                    struct mount_options *options);
111 static int ocfs2_show_options(struct seq_file *s, struct dentry *root);
112 static void ocfs2_put_super(struct super_block *sb);
113 static int ocfs2_mount_volume(struct super_block *sb);
114 static int ocfs2_remount(struct super_block *sb, int *flags, char *data);
115 static void ocfs2_dismount_volume(struct super_block *sb, int mnt_err);
116 static int ocfs2_initialize_mem_caches(void);
117 static void ocfs2_free_mem_caches(void);
118 static void ocfs2_delete_osb(struct ocfs2_super *osb);
119
120 static int ocfs2_statfs(struct dentry *dentry, struct kstatfs *buf);
121
122 static int ocfs2_sync_fs(struct super_block *sb, int wait);
123
124 static int ocfs2_init_global_system_inodes(struct ocfs2_super *osb);
125 static int ocfs2_init_local_system_inodes(struct ocfs2_super *osb);
126 static void ocfs2_release_system_inodes(struct ocfs2_super *osb);
127 static int ocfs2_check_volume(struct ocfs2_super *osb);
128 static int ocfs2_verify_volume(struct ocfs2_dinode *di,
129                                struct buffer_head *bh,
130                                u32 sectsize,
131                                struct ocfs2_blockcheck_stats *stats);
132 static int ocfs2_initialize_super(struct super_block *sb,
133                                   struct buffer_head *bh,
134                                   int sector_size,
135                                   struct ocfs2_blockcheck_stats *stats);
136 static int ocfs2_get_sector(struct super_block *sb,
137                             struct buffer_head **bh,
138                             int block,
139                             int sect_size);
140 static struct inode *ocfs2_alloc_inode(struct super_block *sb);
141 static void ocfs2_destroy_inode(struct inode *inode);
142 static int ocfs2_susp_quotas(struct ocfs2_super *osb, int unsuspend);
143 static int ocfs2_enable_quotas(struct ocfs2_super *osb);
144 static void ocfs2_disable_quotas(struct ocfs2_super *osb);
145
146 static struct dquot **ocfs2_get_dquots(struct inode *inode)
147 {
148         return OCFS2_I(inode)->i_dquot;
149 }
150
151 static const struct super_operations ocfs2_sops = {
152         .statfs         = ocfs2_statfs,
153         .alloc_inode    = ocfs2_alloc_inode,
154         .destroy_inode  = ocfs2_destroy_inode,
155         .drop_inode     = ocfs2_drop_inode,
156         .evict_inode    = ocfs2_evict_inode,
157         .sync_fs        = ocfs2_sync_fs,
158         .put_super      = ocfs2_put_super,
159         .remount_fs     = ocfs2_remount,
160         .show_options   = ocfs2_show_options,
161         .quota_read     = ocfs2_quota_read,
162         .quota_write    = ocfs2_quota_write,
163         .get_dquots     = ocfs2_get_dquots,
164 };
165
166 enum {
167         Opt_barrier,
168         Opt_err_panic,
169         Opt_err_ro,
170         Opt_intr,
171         Opt_nointr,
172         Opt_hb_none,
173         Opt_hb_local,
174         Opt_hb_global,
175         Opt_data_ordered,
176         Opt_data_writeback,
177         Opt_atime_quantum,
178         Opt_slot,
179         Opt_commit,
180         Opt_localalloc,
181         Opt_localflocks,
182         Opt_stack,
183         Opt_user_xattr,
184         Opt_nouser_xattr,
185         Opt_inode64,
186         Opt_acl,
187         Opt_noacl,
188         Opt_usrquota,
189         Opt_grpquota,
190         Opt_coherency_buffered,
191         Opt_coherency_full,
192         Opt_resv_level,
193         Opt_dir_resv_level,
194         Opt_err,
195 };
196
197 static const match_table_t tokens = {
198         {Opt_barrier, "barrier=%u"},
199         {Opt_err_panic, "errors=panic"},
200         {Opt_err_ro, "errors=remount-ro"},
201         {Opt_intr, "intr"},
202         {Opt_nointr, "nointr"},
203         {Opt_hb_none, OCFS2_HB_NONE},
204         {Opt_hb_local, OCFS2_HB_LOCAL},
205         {Opt_hb_global, OCFS2_HB_GLOBAL},
206         {Opt_data_ordered, "data=ordered"},
207         {Opt_data_writeback, "data=writeback"},
208         {Opt_atime_quantum, "atime_quantum=%u"},
209         {Opt_slot, "preferred_slot=%u"},
210         {Opt_commit, "commit=%u"},
211         {Opt_localalloc, "localalloc=%d"},
212         {Opt_localflocks, "localflocks"},
213         {Opt_stack, "cluster_stack=%s"},
214         {Opt_user_xattr, "user_xattr"},
215         {Opt_nouser_xattr, "nouser_xattr"},
216         {Opt_inode64, "inode64"},
217         {Opt_acl, "acl"},
218         {Opt_noacl, "noacl"},
219         {Opt_usrquota, "usrquota"},
220         {Opt_grpquota, "grpquota"},
221         {Opt_coherency_buffered, "coherency=buffered"},
222         {Opt_coherency_full, "coherency=full"},
223         {Opt_resv_level, "resv_level=%u"},
224         {Opt_dir_resv_level, "dir_resv_level=%u"},
225         {Opt_err, NULL}
226 };
227
228 #ifdef CONFIG_DEBUG_FS
229 static int ocfs2_osb_dump(struct ocfs2_super *osb, char *buf, int len)
230 {
231         struct ocfs2_cluster_connection *cconn = osb->cconn;
232         struct ocfs2_recovery_map *rm = osb->recovery_map;
233         struct ocfs2_orphan_scan *os = &osb->osb_orphan_scan;
234         int i, out = 0;
235
236         out += snprintf(buf + out, len - out,
237                         "%10s => Id: %-s  Uuid: %-s  Gen: 0x%X  Label: %-s\n",
238                         "Device", osb->dev_str, osb->uuid_str,
239                         osb->fs_generation, osb->vol_label);
240
241         out += snprintf(buf + out, len - out,
242                         "%10s => State: %d  Flags: 0x%lX\n", "Volume",
243                         atomic_read(&osb->vol_state), osb->osb_flags);
244
245         out += snprintf(buf + out, len - out,
246                         "%10s => Block: %lu  Cluster: %d\n", "Sizes",
247                         osb->sb->s_blocksize, osb->s_clustersize);
248
249         out += snprintf(buf + out, len - out,
250                         "%10s => Compat: 0x%X  Incompat: 0x%X  "
251                         "ROcompat: 0x%X\n",
252                         "Features", osb->s_feature_compat,
253                         osb->s_feature_incompat, osb->s_feature_ro_compat);
254
255         out += snprintf(buf + out, len - out,
256                         "%10s => Opts: 0x%lX  AtimeQuanta: %u\n", "Mount",
257                         osb->s_mount_opt, osb->s_atime_quantum);
258
259         if (cconn) {
260                 out += snprintf(buf + out, len - out,
261                                 "%10s => Stack: %s  Name: %*s  "
262                                 "Version: %d.%d\n", "Cluster",
263                                 (*osb->osb_cluster_stack == '\0' ?
264                                  "o2cb" : osb->osb_cluster_stack),
265                                 cconn->cc_namelen, cconn->cc_name,
266                                 cconn->cc_version.pv_major,
267                                 cconn->cc_version.pv_minor);
268         }
269
270         spin_lock(&osb->dc_task_lock);
271         out += snprintf(buf + out, len - out,
272                         "%10s => Pid: %d  Count: %lu  WakeSeq: %lu  "
273                         "WorkSeq: %lu\n", "DownCnvt",
274                         (osb->dc_task ?  task_pid_nr(osb->dc_task) : -1),
275                         osb->blocked_lock_count, osb->dc_wake_sequence,
276                         osb->dc_work_sequence);
277         spin_unlock(&osb->dc_task_lock);
278
279         spin_lock(&osb->osb_lock);
280         out += snprintf(buf + out, len - out, "%10s => Pid: %d  Nodes:",
281                         "Recovery",
282                         (osb->recovery_thread_task ?
283                          task_pid_nr(osb->recovery_thread_task) : -1));
284         if (rm->rm_used == 0)
285                 out += snprintf(buf + out, len - out, " None\n");
286         else {
287                 for (i = 0; i < rm->rm_used; i++)
288                         out += snprintf(buf + out, len - out, " %d",
289                                         rm->rm_entries[i]);
290                 out += snprintf(buf + out, len - out, "\n");
291         }
292         spin_unlock(&osb->osb_lock);
293
294         out += snprintf(buf + out, len - out,
295                         "%10s => Pid: %d  Interval: %lu\n", "Commit",
296                         (osb->commit_task ? task_pid_nr(osb->commit_task) : -1),
297                         osb->osb_commit_interval);
298
299         out += snprintf(buf + out, len - out,
300                         "%10s => State: %d  TxnId: %lu  NumTxns: %d\n",
301                         "Journal", osb->journal->j_state,
302                         osb->journal->j_trans_id,
303                         atomic_read(&osb->journal->j_num_trans));
304
305         out += snprintf(buf + out, len - out,
306                         "%10s => GlobalAllocs: %d  LocalAllocs: %d  "
307                         "SubAllocs: %d  LAWinMoves: %d  SAExtends: %d\n",
308                         "Stats",
309                         atomic_read(&osb->alloc_stats.bitmap_data),
310                         atomic_read(&osb->alloc_stats.local_data),
311                         atomic_read(&osb->alloc_stats.bg_allocs),
312                         atomic_read(&osb->alloc_stats.moves),
313                         atomic_read(&osb->alloc_stats.bg_extends));
314
315         out += snprintf(buf + out, len - out,
316                         "%10s => State: %u  Descriptor: %llu  Size: %u bits  "
317                         "Default: %u bits\n",
318                         "LocalAlloc", osb->local_alloc_state,
319                         (unsigned long long)osb->la_last_gd,
320                         osb->local_alloc_bits, osb->local_alloc_default_bits);
321
322         spin_lock(&osb->osb_lock);
323         out += snprintf(buf + out, len - out,
324                         "%10s => InodeSlot: %d  StolenInodes: %d, "
325                         "MetaSlot: %d  StolenMeta: %d\n", "Steal",
326                         osb->s_inode_steal_slot,
327                         atomic_read(&osb->s_num_inodes_stolen),
328                         osb->s_meta_steal_slot,
329                         atomic_read(&osb->s_num_meta_stolen));
330         spin_unlock(&osb->osb_lock);
331
332         out += snprintf(buf + out, len - out, "OrphanScan => ");
333         out += snprintf(buf + out, len - out, "Local: %u  Global: %u ",
334                         os->os_count, os->os_seqno);
335         out += snprintf(buf + out, len - out, " Last Scan: ");
336         if (atomic_read(&os->os_state) == ORPHAN_SCAN_INACTIVE)
337                 out += snprintf(buf + out, len - out, "Disabled\n");
338         else
339                 out += snprintf(buf + out, len - out, "%lu seconds ago\n",
340                                 (get_seconds() - os->os_scantime.tv_sec));
341
342         out += snprintf(buf + out, len - out, "%10s => %3s  %10s\n",
343                         "Slots", "Num", "RecoGen");
344         for (i = 0; i < osb->max_slots; ++i) {
345                 out += snprintf(buf + out, len - out,
346                                 "%10s  %c %3d  %10d\n",
347                                 " ",
348                                 (i == osb->slot_num ? '*' : ' '),
349                                 i, osb->slot_recovery_generations[i]);
350         }
351
352         return out;
353 }
354
355 static int ocfs2_osb_debug_open(struct inode *inode, struct file *file)
356 {
357         struct ocfs2_super *osb = inode->i_private;
358         char *buf = NULL;
359
360         buf = kmalloc(PAGE_SIZE, GFP_KERNEL);
361         if (!buf)
362                 goto bail;
363
364         i_size_write(inode, ocfs2_osb_dump(osb, buf, PAGE_SIZE));
365
366         file->private_data = buf;
367
368         return 0;
369 bail:
370         return -ENOMEM;
371 }
372
373 static int ocfs2_debug_release(struct inode *inode, struct file *file)
374 {
375         kfree(file->private_data);
376         return 0;
377 }
378
379 static ssize_t ocfs2_debug_read(struct file *file, char __user *buf,
380                                 size_t nbytes, loff_t *ppos)
381 {
382         return simple_read_from_buffer(buf, nbytes, ppos, file->private_data,
383                                        i_size_read(file->f_mapping->host));
384 }
385 #else
386 static int ocfs2_osb_debug_open(struct inode *inode, struct file *file)
387 {
388         return 0;
389 }
390 static int ocfs2_debug_release(struct inode *inode, struct file *file)
391 {
392         return 0;
393 }
394 static ssize_t ocfs2_debug_read(struct file *file, char __user *buf,
395                                 size_t nbytes, loff_t *ppos)
396 {
397         return 0;
398 }
399 #endif  /* CONFIG_DEBUG_FS */
400
401 static const struct file_operations ocfs2_osb_debug_fops = {
402         .open =         ocfs2_osb_debug_open,
403         .release =      ocfs2_debug_release,
404         .read =         ocfs2_debug_read,
405         .llseek =       generic_file_llseek,
406 };
407
408 static int ocfs2_sync_fs(struct super_block *sb, int wait)
409 {
410         int status;
411         tid_t target;
412         struct ocfs2_super *osb = OCFS2_SB(sb);
413
414         if (ocfs2_is_hard_readonly(osb))
415                 return -EROFS;
416
417         if (wait) {
418                 status = ocfs2_flush_truncate_log(osb);
419                 if (status < 0)
420                         mlog_errno(status);
421         } else {
422                 ocfs2_schedule_truncate_log_flush(osb, 0);
423         }
424
425         if (jbd2_journal_start_commit(OCFS2_SB(sb)->journal->j_journal,
426                                       &target)) {
427                 if (wait)
428                         jbd2_log_wait_commit(OCFS2_SB(sb)->journal->j_journal,
429                                              target);
430         }
431         return 0;
432 }
433
434 static int ocfs2_need_system_inode(struct ocfs2_super *osb, int ino)
435 {
436         if (!OCFS2_HAS_RO_COMPAT_FEATURE(osb->sb, OCFS2_FEATURE_RO_COMPAT_USRQUOTA)
437             && (ino == USER_QUOTA_SYSTEM_INODE
438                 || ino == LOCAL_USER_QUOTA_SYSTEM_INODE))
439                 return 0;
440         if (!OCFS2_HAS_RO_COMPAT_FEATURE(osb->sb, OCFS2_FEATURE_RO_COMPAT_GRPQUOTA)
441             && (ino == GROUP_QUOTA_SYSTEM_INODE
442                 || ino == LOCAL_GROUP_QUOTA_SYSTEM_INODE))
443                 return 0;
444         return 1;
445 }
446
447 static int ocfs2_init_global_system_inodes(struct ocfs2_super *osb)
448 {
449         struct inode *new = NULL;
450         int status = 0;
451         int i;
452
453         new = ocfs2_iget(osb, osb->root_blkno, OCFS2_FI_FLAG_SYSFILE, 0);
454         if (IS_ERR(new)) {
455                 status = PTR_ERR(new);
456                 mlog_errno(status);
457                 goto bail;
458         }
459         osb->root_inode = new;
460
461         new = ocfs2_iget(osb, osb->system_dir_blkno, OCFS2_FI_FLAG_SYSFILE, 0);
462         if (IS_ERR(new)) {
463                 status = PTR_ERR(new);
464                 mlog_errno(status);
465                 goto bail;
466         }
467         osb->sys_root_inode = new;
468
469         for (i = OCFS2_FIRST_ONLINE_SYSTEM_INODE;
470              i <= OCFS2_LAST_GLOBAL_SYSTEM_INODE; i++) {
471                 if (!ocfs2_need_system_inode(osb, i))
472                         continue;
473                 new = ocfs2_get_system_file_inode(osb, i, osb->slot_num);
474                 if (!new) {
475                         ocfs2_release_system_inodes(osb);
476                         status = -EINVAL;
477                         mlog_errno(status);
478                         /* FIXME: Should ERROR_RO_FS */
479                         mlog(ML_ERROR, "Unable to load system inode %d, "
480                              "possibly corrupt fs?", i);
481                         goto bail;
482                 }
483                 // the array now has one ref, so drop this one
484                 iput(new);
485         }
486
487 bail:
488         if (status)
489                 mlog_errno(status);
490         return status;
491 }
492
493 static int ocfs2_init_local_system_inodes(struct ocfs2_super *osb)
494 {
495         struct inode *new = NULL;
496         int status = 0;
497         int i;
498
499         for (i = OCFS2_LAST_GLOBAL_SYSTEM_INODE + 1;
500              i < NUM_SYSTEM_INODES;
501              i++) {
502                 if (!ocfs2_need_system_inode(osb, i))
503                         continue;
504                 new = ocfs2_get_system_file_inode(osb, i, osb->slot_num);
505                 if (!new) {
506                         ocfs2_release_system_inodes(osb);
507                         status = -EINVAL;
508                         mlog(ML_ERROR, "status=%d, sysfile=%d, slot=%d\n",
509                              status, i, osb->slot_num);
510                         goto bail;
511                 }
512                 /* the array now has one ref, so drop this one */
513                 iput(new);
514         }
515
516 bail:
517         if (status)
518                 mlog_errno(status);
519         return status;
520 }
521
522 static void ocfs2_release_system_inodes(struct ocfs2_super *osb)
523 {
524         int i;
525         struct inode *inode;
526
527         for (i = 0; i < NUM_GLOBAL_SYSTEM_INODES; i++) {
528                 inode = osb->global_system_inodes[i];
529                 if (inode) {
530                         iput(inode);
531                         osb->global_system_inodes[i] = NULL;
532                 }
533         }
534
535         inode = osb->sys_root_inode;
536         if (inode) {
537                 iput(inode);
538                 osb->sys_root_inode = NULL;
539         }
540
541         inode = osb->root_inode;
542         if (inode) {
543                 iput(inode);
544                 osb->root_inode = NULL;
545         }
546
547         if (!osb->local_system_inodes)
548                 return;
549
550         for (i = 0; i < NUM_LOCAL_SYSTEM_INODES * osb->max_slots; i++) {
551                 if (osb->local_system_inodes[i]) {
552                         iput(osb->local_system_inodes[i]);
553                         osb->local_system_inodes[i] = NULL;
554                 }
555         }
556
557         kfree(osb->local_system_inodes);
558         osb->local_system_inodes = NULL;
559 }
560
561 /* We're allocating fs objects, use GFP_NOFS */
562 static struct inode *ocfs2_alloc_inode(struct super_block *sb)
563 {
564         struct ocfs2_inode_info *oi;
565
566         oi = kmem_cache_alloc(ocfs2_inode_cachep, GFP_NOFS);
567         if (!oi)
568                 return NULL;
569
570         oi->i_sync_tid = 0;
571         oi->i_datasync_tid = 0;
572         memset(&oi->i_dquot, 0, sizeof(oi->i_dquot));
573
574         jbd2_journal_init_jbd_inode(&oi->ip_jinode, &oi->vfs_inode);
575         return &oi->vfs_inode;
576 }
577
578 static void ocfs2_i_callback(struct rcu_head *head)
579 {
580         struct inode *inode = container_of(head, struct inode, i_rcu);
581         kmem_cache_free(ocfs2_inode_cachep, OCFS2_I(inode));
582 }
583
584 static void ocfs2_destroy_inode(struct inode *inode)
585 {
586         call_rcu(&inode->i_rcu, ocfs2_i_callback);
587 }
588
589 static unsigned long long ocfs2_max_file_offset(unsigned int bbits,
590                                                 unsigned int cbits)
591 {
592         unsigned int bytes = 1 << cbits;
593         unsigned int trim = bytes;
594         unsigned int bitshift = 32;
595
596         /*
597          * i_size and all block offsets in ocfs2 are always 64 bits
598          * wide. i_clusters is 32 bits, in cluster-sized units. So on
599          * 64 bit platforms, cluster size will be the limiting factor.
600          */
601
602 #if BITS_PER_LONG == 32
603 # if defined(CONFIG_LBDAF)
604         BUILD_BUG_ON(sizeof(sector_t) != 8);
605         /*
606          * We might be limited by page cache size.
607          */
608         if (bytes > PAGE_CACHE_SIZE) {
609                 bytes = PAGE_CACHE_SIZE;
610                 trim = 1;
611                 /*
612                  * Shift by 31 here so that we don't get larger than
613                  * MAX_LFS_FILESIZE
614                  */
615                 bitshift = 31;
616         }
617 # else
618         /*
619          * We are limited by the size of sector_t. Use block size, as
620          * that's what we expose to the VFS.
621          */
622         bytes = 1 << bbits;
623         trim = 1;
624         bitshift = 31;
625 # endif
626 #endif
627
628         /*
629          * Trim by a whole cluster when we can actually approach the
630          * on-disk limits. Otherwise we can overflow i_clusters when
631          * an extent start is at the max offset.
632          */
633         return (((unsigned long long)bytes) << bitshift) - trim;
634 }
635
636 static int ocfs2_remount(struct super_block *sb, int *flags, char *data)
637 {
638         int incompat_features;
639         int ret = 0;
640         struct mount_options parsed_options;
641         struct ocfs2_super *osb = OCFS2_SB(sb);
642         u32 tmp;
643
644         sync_filesystem(sb);
645
646         if (!ocfs2_parse_options(sb, data, &parsed_options, 1) ||
647             !ocfs2_check_set_options(sb, &parsed_options)) {
648                 ret = -EINVAL;
649                 goto out;
650         }
651
652         tmp = OCFS2_MOUNT_HB_LOCAL | OCFS2_MOUNT_HB_GLOBAL |
653                 OCFS2_MOUNT_HB_NONE;
654         if ((osb->s_mount_opt & tmp) != (parsed_options.mount_opt & tmp)) {
655                 ret = -EINVAL;
656                 mlog(ML_ERROR, "Cannot change heartbeat mode on remount\n");
657                 goto out;
658         }
659
660         if ((osb->s_mount_opt & OCFS2_MOUNT_DATA_WRITEBACK) !=
661             (parsed_options.mount_opt & OCFS2_MOUNT_DATA_WRITEBACK)) {
662                 ret = -EINVAL;
663                 mlog(ML_ERROR, "Cannot change data mode on remount\n");
664                 goto out;
665         }
666
667         /* Probably don't want this on remount; it might
668          * mess with other nodes */
669         if (!(osb->s_mount_opt & OCFS2_MOUNT_INODE64) &&
670             (parsed_options.mount_opt & OCFS2_MOUNT_INODE64)) {
671                 ret = -EINVAL;
672                 mlog(ML_ERROR, "Cannot enable inode64 on remount\n");
673                 goto out;
674         }
675
676         /* We're going to/from readonly mode. */
677         if ((*flags & MS_RDONLY) != (sb->s_flags & MS_RDONLY)) {
678                 /* Disable quota accounting before remounting RO */
679                 if (*flags & MS_RDONLY) {
680                         ret = ocfs2_susp_quotas(osb, 0);
681                         if (ret < 0)
682                                 goto out;
683                 }
684                 /* Lock here so the check of HARD_RO and the potential
685                  * setting of SOFT_RO is atomic. */
686                 spin_lock(&osb->osb_lock);
687                 if (osb->osb_flags & OCFS2_OSB_HARD_RO) {
688                         mlog(ML_ERROR, "Remount on readonly device is forbidden.\n");
689                         ret = -EROFS;
690                         goto unlock_osb;
691                 }
692
693                 if (*flags & MS_RDONLY) {
694                         sb->s_flags |= MS_RDONLY;
695                         osb->osb_flags |= OCFS2_OSB_SOFT_RO;
696                 } else {
697                         if (osb->osb_flags & OCFS2_OSB_ERROR_FS) {
698                                 mlog(ML_ERROR, "Cannot remount RDWR "
699                                      "filesystem due to previous errors.\n");
700                                 ret = -EROFS;
701                                 goto unlock_osb;
702                         }
703                         incompat_features = OCFS2_HAS_RO_COMPAT_FEATURE(sb, ~OCFS2_FEATURE_RO_COMPAT_SUPP);
704                         if (incompat_features) {
705                                 mlog(ML_ERROR, "Cannot remount RDWR because "
706                                      "of unsupported optional features "
707                                      "(%x).\n", incompat_features);
708                                 ret = -EINVAL;
709                                 goto unlock_osb;
710                         }
711                         sb->s_flags &= ~MS_RDONLY;
712                         osb->osb_flags &= ~OCFS2_OSB_SOFT_RO;
713                 }
714                 trace_ocfs2_remount(sb->s_flags, osb->osb_flags, *flags);
715 unlock_osb:
716                 spin_unlock(&osb->osb_lock);
717                 /* Enable quota accounting after remounting RW */
718                 if (!ret && !(*flags & MS_RDONLY)) {
719                         if (sb_any_quota_suspended(sb))
720                                 ret = ocfs2_susp_quotas(osb, 1);
721                         else
722                                 ret = ocfs2_enable_quotas(osb);
723                         if (ret < 0) {
724                                 /* Return back changes... */
725                                 spin_lock(&osb->osb_lock);
726                                 sb->s_flags |= MS_RDONLY;
727                                 osb->osb_flags |= OCFS2_OSB_SOFT_RO;
728                                 spin_unlock(&osb->osb_lock);
729                                 goto out;
730                         }
731                 }
732         }
733
734         if (!ret) {
735                 /* Only save off the new mount options in case of a successful
736                  * remount. */
737                 osb->s_mount_opt = parsed_options.mount_opt;
738                 osb->s_atime_quantum = parsed_options.atime_quantum;
739                 osb->preferred_slot = parsed_options.slot;
740                 if (parsed_options.commit_interval)
741                         osb->osb_commit_interval = parsed_options.commit_interval;
742
743                 if (!ocfs2_is_hard_readonly(osb))
744                         ocfs2_set_journal_params(osb);
745
746                 sb->s_flags = (sb->s_flags & ~MS_POSIXACL) |
747                         ((osb->s_mount_opt & OCFS2_MOUNT_POSIX_ACL) ?
748                                                         MS_POSIXACL : 0);
749         }
750 out:
751         return ret;
752 }
753
754 static int ocfs2_sb_probe(struct super_block *sb,
755                           struct buffer_head **bh,
756                           int *sector_size,
757                           struct ocfs2_blockcheck_stats *stats)
758 {
759         int status, tmpstat;
760         struct ocfs1_vol_disk_hdr *hdr;
761         struct ocfs2_dinode *di;
762         int blksize;
763
764         *bh = NULL;
765
766         /* may be > 512 */
767         *sector_size = bdev_logical_block_size(sb->s_bdev);
768         if (*sector_size > OCFS2_MAX_BLOCKSIZE) {
769                 mlog(ML_ERROR, "Hardware sector size too large: %d (max=%d)\n",
770                      *sector_size, OCFS2_MAX_BLOCKSIZE);
771                 status = -EINVAL;
772                 goto bail;
773         }
774
775         /* Can this really happen? */
776         if (*sector_size < OCFS2_MIN_BLOCKSIZE)
777                 *sector_size = OCFS2_MIN_BLOCKSIZE;
778
779         /* check block zero for old format */
780         status = ocfs2_get_sector(sb, bh, 0, *sector_size);
781         if (status < 0) {
782                 mlog_errno(status);
783                 goto bail;
784         }
785         hdr = (struct ocfs1_vol_disk_hdr *) (*bh)->b_data;
786         if (hdr->major_version == OCFS1_MAJOR_VERSION) {
787                 mlog(ML_ERROR, "incompatible version: %u.%u\n",
788                      hdr->major_version, hdr->minor_version);
789                 status = -EINVAL;
790         }
791         if (memcmp(hdr->signature, OCFS1_VOLUME_SIGNATURE,
792                    strlen(OCFS1_VOLUME_SIGNATURE)) == 0) {
793                 mlog(ML_ERROR, "incompatible volume signature: %8s\n",
794                      hdr->signature);
795                 status = -EINVAL;
796         }
797         brelse(*bh);
798         *bh = NULL;
799         if (status < 0) {
800                 mlog(ML_ERROR, "This is an ocfs v1 filesystem which must be "
801                      "upgraded before mounting with ocfs v2\n");
802                 goto bail;
803         }
804
805         /*
806          * Now check at magic offset for 512, 1024, 2048, 4096
807          * blocksizes.  4096 is the maximum blocksize because it is
808          * the minimum clustersize.
809          */
810         status = -EINVAL;
811         for (blksize = *sector_size;
812              blksize <= OCFS2_MAX_BLOCKSIZE;
813              blksize <<= 1) {
814                 tmpstat = ocfs2_get_sector(sb, bh,
815                                            OCFS2_SUPER_BLOCK_BLKNO,
816                                            blksize);
817                 if (tmpstat < 0) {
818                         status = tmpstat;
819                         mlog_errno(status);
820                         break;
821                 }
822                 di = (struct ocfs2_dinode *) (*bh)->b_data;
823                 memset(stats, 0, sizeof(struct ocfs2_blockcheck_stats));
824                 spin_lock_init(&stats->b_lock);
825                 tmpstat = ocfs2_verify_volume(di, *bh, blksize, stats);
826                 if (tmpstat < 0) {
827                         brelse(*bh);
828                         *bh = NULL;
829                 }
830                 if (tmpstat != -EAGAIN) {
831                         status = tmpstat;
832                         break;
833                 }
834         }
835
836 bail:
837         return status;
838 }
839
840 static int ocfs2_verify_heartbeat(struct ocfs2_super *osb)
841 {
842         u32 hb_enabled = OCFS2_MOUNT_HB_LOCAL | OCFS2_MOUNT_HB_GLOBAL;
843
844         if (osb->s_mount_opt & hb_enabled) {
845                 if (ocfs2_mount_local(osb)) {
846                         mlog(ML_ERROR, "Cannot heartbeat on a locally "
847                              "mounted device.\n");
848                         return -EINVAL;
849                 }
850                 if (ocfs2_userspace_stack(osb)) {
851                         mlog(ML_ERROR, "Userspace stack expected, but "
852                              "o2cb heartbeat arguments passed to mount\n");
853                         return -EINVAL;
854                 }
855                 if (((osb->s_mount_opt & OCFS2_MOUNT_HB_GLOBAL) &&
856                      !ocfs2_cluster_o2cb_global_heartbeat(osb)) ||
857                     ((osb->s_mount_opt & OCFS2_MOUNT_HB_LOCAL) &&
858                      ocfs2_cluster_o2cb_global_heartbeat(osb))) {
859                         mlog(ML_ERROR, "Mismatching o2cb heartbeat modes\n");
860                         return -EINVAL;
861                 }
862         }
863
864         if (!(osb->s_mount_opt & hb_enabled)) {
865                 if (!ocfs2_mount_local(osb) && !ocfs2_is_hard_readonly(osb) &&
866                     !ocfs2_userspace_stack(osb)) {
867                         mlog(ML_ERROR, "Heartbeat has to be started to mount "
868                              "a read-write clustered device.\n");
869                         return -EINVAL;
870                 }
871         }
872
873         return 0;
874 }
875
876 /*
877  * If we're using a userspace stack, mount should have passed
878  * a name that matches the disk.  If not, mount should not
879  * have passed a stack.
880  */
881 static int ocfs2_verify_userspace_stack(struct ocfs2_super *osb,
882                                         struct mount_options *mopt)
883 {
884         if (!ocfs2_userspace_stack(osb) && mopt->cluster_stack[0]) {
885                 mlog(ML_ERROR,
886                      "cluster stack passed to mount, but this filesystem "
887                      "does not support it\n");
888                 return -EINVAL;
889         }
890
891         if (ocfs2_userspace_stack(osb) &&
892             strncmp(osb->osb_cluster_stack, mopt->cluster_stack,
893                     OCFS2_STACK_LABEL_LEN)) {
894                 mlog(ML_ERROR,
895                      "cluster stack passed to mount (\"%s\") does not "
896                      "match the filesystem (\"%s\")\n",
897                      mopt->cluster_stack,
898                      osb->osb_cluster_stack);
899                 return -EINVAL;
900         }
901
902         return 0;
903 }
904
905 static int ocfs2_susp_quotas(struct ocfs2_super *osb, int unsuspend)
906 {
907         int type;
908         struct super_block *sb = osb->sb;
909         unsigned int feature[OCFS2_MAXQUOTAS] = {
910                                         OCFS2_FEATURE_RO_COMPAT_USRQUOTA,
911                                         OCFS2_FEATURE_RO_COMPAT_GRPQUOTA};
912         int status = 0;
913
914         for (type = 0; type < OCFS2_MAXQUOTAS; type++) {
915                 if (!OCFS2_HAS_RO_COMPAT_FEATURE(sb, feature[type]))
916                         continue;
917                 if (unsuspend)
918                         status = dquot_resume(sb, type);
919                 else {
920                         struct ocfs2_mem_dqinfo *oinfo;
921
922                         /* Cancel periodic syncing before suspending */
923                         oinfo = sb_dqinfo(sb, type)->dqi_priv;
924                         cancel_delayed_work_sync(&oinfo->dqi_sync_work);
925                         status = dquot_suspend(sb, type);
926                 }
927                 if (status < 0)
928                         break;
929         }
930         if (status < 0)
931                 mlog(ML_ERROR, "Failed to suspend/unsuspend quotas on "
932                      "remount (error = %d).\n", status);
933         return status;
934 }
935
936 static int ocfs2_enable_quotas(struct ocfs2_super *osb)
937 {
938         struct inode *inode[OCFS2_MAXQUOTAS] = { NULL, NULL };
939         struct super_block *sb = osb->sb;
940         unsigned int feature[OCFS2_MAXQUOTAS] = {
941                                         OCFS2_FEATURE_RO_COMPAT_USRQUOTA,
942                                         OCFS2_FEATURE_RO_COMPAT_GRPQUOTA};
943         unsigned int ino[OCFS2_MAXQUOTAS] = {
944                                         LOCAL_USER_QUOTA_SYSTEM_INODE,
945                                         LOCAL_GROUP_QUOTA_SYSTEM_INODE };
946         int status;
947         int type;
948
949         sb_dqopt(sb)->flags |= DQUOT_QUOTA_SYS_FILE | DQUOT_NEGATIVE_USAGE;
950         for (type = 0; type < OCFS2_MAXQUOTAS; type++) {
951                 if (!OCFS2_HAS_RO_COMPAT_FEATURE(sb, feature[type]))
952                         continue;
953                 inode[type] = ocfs2_get_system_file_inode(osb, ino[type],
954                                                         osb->slot_num);
955                 if (!inode[type]) {
956                         status = -ENOENT;
957                         goto out_quota_off;
958                 }
959                 status = dquot_enable(inode[type], type, QFMT_OCFS2,
960                                       DQUOT_USAGE_ENABLED);
961                 if (status < 0)
962                         goto out_quota_off;
963         }
964
965         for (type = 0; type < OCFS2_MAXQUOTAS; type++)
966                 iput(inode[type]);
967         return 0;
968 out_quota_off:
969         ocfs2_disable_quotas(osb);
970         for (type = 0; type < OCFS2_MAXQUOTAS; type++)
971                 iput(inode[type]);
972         mlog_errno(status);
973         return status;
974 }
975
976 static void ocfs2_disable_quotas(struct ocfs2_super *osb)
977 {
978         int type;
979         struct inode *inode;
980         struct super_block *sb = osb->sb;
981         struct ocfs2_mem_dqinfo *oinfo;
982
983         /* We mostly ignore errors in this function because there's not much
984          * we can do when we see them */
985         for (type = 0; type < OCFS2_MAXQUOTAS; type++) {
986                 if (!sb_has_quota_loaded(sb, type))
987                         continue;
988                 /* Cancel periodic syncing before we grab dqonoff_mutex */
989                 oinfo = sb_dqinfo(sb, type)->dqi_priv;
990                 cancel_delayed_work_sync(&oinfo->dqi_sync_work);
991                 inode = igrab(sb->s_dquot.files[type]);
992                 /* Turn off quotas. This will remove all dquot structures from
993                  * memory and so they will be automatically synced to global
994                  * quota files */
995                 dquot_disable(sb, type, DQUOT_USAGE_ENABLED |
996                                         DQUOT_LIMITS_ENABLED);
997                 if (!inode)
998                         continue;
999                 iput(inode);
1000         }
1001 }
1002
1003 static int ocfs2_fill_super(struct super_block *sb, void *data, int silent)
1004 {
1005         struct dentry *root;
1006         int status, sector_size;
1007         struct mount_options parsed_options;
1008         struct inode *inode = NULL;
1009         struct ocfs2_super *osb = NULL;
1010         struct buffer_head *bh = NULL;
1011         char nodestr[12];
1012         struct ocfs2_blockcheck_stats stats;
1013
1014         trace_ocfs2_fill_super(sb, data, silent);
1015
1016         if (!ocfs2_parse_options(sb, data, &parsed_options, 0)) {
1017                 status = -EINVAL;
1018                 goto read_super_error;
1019         }
1020
1021         /* probe for superblock */
1022         status = ocfs2_sb_probe(sb, &bh, &sector_size, &stats);
1023         if (status < 0) {
1024                 mlog(ML_ERROR, "superblock probe failed!\n");
1025                 goto read_super_error;
1026         }
1027
1028         status = ocfs2_initialize_super(sb, bh, sector_size, &stats);
1029         osb = OCFS2_SB(sb);
1030         if (status < 0) {
1031                 mlog_errno(status);
1032                 goto read_super_error;
1033         }
1034         brelse(bh);
1035         bh = NULL;
1036
1037         if (!ocfs2_check_set_options(sb, &parsed_options)) {
1038                 status = -EINVAL;
1039                 goto read_super_error;
1040         }
1041         osb->s_mount_opt = parsed_options.mount_opt;
1042         osb->s_atime_quantum = parsed_options.atime_quantum;
1043         osb->preferred_slot = parsed_options.slot;
1044         osb->osb_commit_interval = parsed_options.commit_interval;
1045
1046         ocfs2_la_set_sizes(osb, parsed_options.localalloc_opt);
1047         osb->osb_resv_level = parsed_options.resv_level;
1048         osb->osb_dir_resv_level = parsed_options.resv_level;
1049         if (parsed_options.dir_resv_level == -1)
1050                 osb->osb_dir_resv_level = parsed_options.resv_level;
1051         else
1052                 osb->osb_dir_resv_level = parsed_options.dir_resv_level;
1053
1054         status = ocfs2_verify_userspace_stack(osb, &parsed_options);
1055         if (status)
1056                 goto read_super_error;
1057
1058         sb->s_magic = OCFS2_SUPER_MAGIC;
1059
1060         sb->s_flags = (sb->s_flags & ~(MS_POSIXACL | MS_NOSEC)) |
1061                 ((osb->s_mount_opt & OCFS2_MOUNT_POSIX_ACL) ? MS_POSIXACL : 0);
1062
1063         /* Hard readonly mode only if: bdev_read_only, MS_RDONLY,
1064          * heartbeat=none */
1065         if (bdev_read_only(sb->s_bdev)) {
1066                 if (!(sb->s_flags & MS_RDONLY)) {
1067                         status = -EACCES;
1068                         mlog(ML_ERROR, "Readonly device detected but readonly "
1069                              "mount was not specified.\n");
1070                         goto read_super_error;
1071                 }
1072
1073                 /* You should not be able to start a local heartbeat
1074                  * on a readonly device. */
1075                 if (osb->s_mount_opt & OCFS2_MOUNT_HB_LOCAL) {
1076                         status = -EROFS;
1077                         mlog(ML_ERROR, "Local heartbeat specified on readonly "
1078                              "device.\n");
1079                         goto read_super_error;
1080                 }
1081
1082                 status = ocfs2_check_journals_nolocks(osb);
1083                 if (status < 0) {
1084                         if (status == -EROFS)
1085                                 mlog(ML_ERROR, "Recovery required on readonly "
1086                                      "file system, but write access is "
1087                                      "unavailable.\n");
1088                         else
1089                                 mlog_errno(status);
1090                         goto read_super_error;
1091                 }
1092
1093                 ocfs2_set_ro_flag(osb, 1);
1094
1095                 printk(KERN_NOTICE "ocfs2: Readonly device (%s) detected. "
1096                        "Cluster services will not be used for this mount. "
1097                        "Recovery will be skipped.\n", osb->dev_str);
1098         }
1099
1100         if (!ocfs2_is_hard_readonly(osb)) {
1101                 if (sb->s_flags & MS_RDONLY)
1102                         ocfs2_set_ro_flag(osb, 0);
1103         }
1104
1105         status = ocfs2_verify_heartbeat(osb);
1106         if (status < 0) {
1107                 mlog_errno(status);
1108                 goto read_super_error;
1109         }
1110
1111         osb->osb_debug_root = debugfs_create_dir(osb->uuid_str,
1112                                                  ocfs2_debugfs_root);
1113         if (!osb->osb_debug_root) {
1114                 status = -EINVAL;
1115                 mlog(ML_ERROR, "Unable to create per-mount debugfs root.\n");
1116                 goto read_super_error;
1117         }
1118
1119         osb->osb_ctxt = debugfs_create_file("fs_state", S_IFREG|S_IRUSR,
1120                                             osb->osb_debug_root,
1121                                             osb,
1122                                             &ocfs2_osb_debug_fops);
1123         if (!osb->osb_ctxt) {
1124                 status = -EINVAL;
1125                 mlog_errno(status);
1126                 goto read_super_error;
1127         }
1128
1129         if (ocfs2_meta_ecc(osb)) {
1130                 status = ocfs2_blockcheck_stats_debugfs_install(
1131                                                 &osb->osb_ecc_stats,
1132                                                 osb->osb_debug_root);
1133                 if (status) {
1134                         mlog(ML_ERROR,
1135                              "Unable to create blockcheck statistics "
1136                              "files\n");
1137                         goto read_super_error;
1138                 }
1139         }
1140
1141         status = ocfs2_mount_volume(sb);
1142         if (status < 0)
1143                 goto read_super_error;
1144
1145         if (osb->root_inode)
1146                 inode = igrab(osb->root_inode);
1147
1148         if (!inode) {
1149                 status = -EIO;
1150                 mlog_errno(status);
1151                 goto read_super_error;
1152         }
1153
1154         root = d_make_root(inode);
1155         if (!root) {
1156                 status = -ENOMEM;
1157                 mlog_errno(status);
1158                 goto read_super_error;
1159         }
1160
1161         sb->s_root = root;
1162
1163         ocfs2_complete_mount_recovery(osb);
1164
1165         if (ocfs2_mount_local(osb))
1166                 snprintf(nodestr, sizeof(nodestr), "local");
1167         else
1168                 snprintf(nodestr, sizeof(nodestr), "%u", osb->node_num);
1169
1170         printk(KERN_INFO "ocfs2: Mounting device (%s) on (node %s, slot %d) "
1171                "with %s data mode.\n",
1172                osb->dev_str, nodestr, osb->slot_num,
1173                osb->s_mount_opt & OCFS2_MOUNT_DATA_WRITEBACK ? "writeback" :
1174                "ordered");
1175
1176         atomic_set(&osb->vol_state, VOLUME_MOUNTED);
1177         wake_up(&osb->osb_mount_event);
1178
1179         /* Now we can initialize quotas because we can afford to wait
1180          * for cluster locks recovery now. That also means that truncation
1181          * log recovery can happen but that waits for proper quota setup */
1182         if (!(sb->s_flags & MS_RDONLY)) {
1183                 status = ocfs2_enable_quotas(osb);
1184                 if (status < 0) {
1185                         /* We have to err-out specially here because
1186                          * s_root is already set */
1187                         mlog_errno(status);
1188                         atomic_set(&osb->vol_state, VOLUME_DISABLED);
1189                         wake_up(&osb->osb_mount_event);
1190                         return status;
1191                 }
1192         }
1193
1194         ocfs2_complete_quota_recovery(osb);
1195
1196         /* Now we wake up again for processes waiting for quotas */
1197         atomic_set(&osb->vol_state, VOLUME_MOUNTED_QUOTAS);
1198         wake_up(&osb->osb_mount_event);
1199
1200         /* Start this when the mount is almost sure of being successful */
1201         ocfs2_orphan_scan_start(osb);
1202
1203         return status;
1204
1205 read_super_error:
1206         brelse(bh);
1207
1208         if (osb) {
1209                 atomic_set(&osb->vol_state, VOLUME_DISABLED);
1210                 wake_up(&osb->osb_mount_event);
1211                 ocfs2_dismount_volume(sb, 1);
1212         }
1213
1214         if (status)
1215                 mlog_errno(status);
1216         return status;
1217 }
1218
1219 static struct dentry *ocfs2_mount(struct file_system_type *fs_type,
1220                         int flags,
1221                         const char *dev_name,
1222                         void *data)
1223 {
1224         return mount_bdev(fs_type, flags, dev_name, data, ocfs2_fill_super);
1225 }
1226
1227 static struct file_system_type ocfs2_fs_type = {
1228         .owner          = THIS_MODULE,
1229         .name           = "ocfs2",
1230         .mount          = ocfs2_mount,
1231         .kill_sb        = kill_block_super,
1232         .fs_flags       = FS_REQUIRES_DEV|FS_RENAME_DOES_D_MOVE,
1233         .next           = NULL
1234 };
1235 MODULE_ALIAS_FS("ocfs2");
1236
1237 static int ocfs2_check_set_options(struct super_block *sb,
1238                                    struct mount_options *options)
1239 {
1240         if (options->mount_opt & OCFS2_MOUNT_USRQUOTA &&
1241             !OCFS2_HAS_RO_COMPAT_FEATURE(sb,
1242                                          OCFS2_FEATURE_RO_COMPAT_USRQUOTA)) {
1243                 mlog(ML_ERROR, "User quotas were requested, but this "
1244                      "filesystem does not have the feature enabled.\n");
1245                 return 0;
1246         }
1247         if (options->mount_opt & OCFS2_MOUNT_GRPQUOTA &&
1248             !OCFS2_HAS_RO_COMPAT_FEATURE(sb,
1249                                          OCFS2_FEATURE_RO_COMPAT_GRPQUOTA)) {
1250                 mlog(ML_ERROR, "Group quotas were requested, but this "
1251                      "filesystem does not have the feature enabled.\n");
1252                 return 0;
1253         }
1254         if (options->mount_opt & OCFS2_MOUNT_POSIX_ACL &&
1255             !OCFS2_HAS_INCOMPAT_FEATURE(sb, OCFS2_FEATURE_INCOMPAT_XATTR)) {
1256                 mlog(ML_ERROR, "ACL support requested but extended attributes "
1257                      "feature is not enabled\n");
1258                 return 0;
1259         }
1260         /* No ACL setting specified? Use XATTR feature... */
1261         if (!(options->mount_opt & (OCFS2_MOUNT_POSIX_ACL |
1262                                     OCFS2_MOUNT_NO_POSIX_ACL))) {
1263                 if (OCFS2_HAS_INCOMPAT_FEATURE(sb, OCFS2_FEATURE_INCOMPAT_XATTR))
1264                         options->mount_opt |= OCFS2_MOUNT_POSIX_ACL;
1265                 else
1266                         options->mount_opt |= OCFS2_MOUNT_NO_POSIX_ACL;
1267         }
1268         return 1;
1269 }
1270
1271 static int ocfs2_parse_options(struct super_block *sb,
1272                                char *options,
1273                                struct mount_options *mopt,
1274                                int is_remount)
1275 {
1276         int status, user_stack = 0;
1277         char *p;
1278         u32 tmp;
1279
1280         trace_ocfs2_parse_options(is_remount, options ? options : "(none)");
1281
1282         mopt->commit_interval = 0;
1283         mopt->mount_opt = OCFS2_MOUNT_NOINTR;
1284         mopt->atime_quantum = OCFS2_DEFAULT_ATIME_QUANTUM;
1285         mopt->slot = OCFS2_INVALID_SLOT;
1286         mopt->localalloc_opt = -1;
1287         mopt->cluster_stack[0] = '\0';
1288         mopt->resv_level = OCFS2_DEFAULT_RESV_LEVEL;
1289         mopt->dir_resv_level = -1;
1290
1291         if (!options) {
1292                 status = 1;
1293                 goto bail;
1294         }
1295
1296         while ((p = strsep(&options, ",")) != NULL) {
1297                 int token, option;
1298                 substring_t args[MAX_OPT_ARGS];
1299
1300                 if (!*p)
1301                         continue;
1302
1303                 token = match_token(p, tokens, args);
1304                 switch (token) {
1305                 case Opt_hb_local:
1306                         mopt->mount_opt |= OCFS2_MOUNT_HB_LOCAL;
1307                         break;
1308                 case Opt_hb_none:
1309                         mopt->mount_opt |= OCFS2_MOUNT_HB_NONE;
1310                         break;
1311                 case Opt_hb_global:
1312                         mopt->mount_opt |= OCFS2_MOUNT_HB_GLOBAL;
1313                         break;
1314                 case Opt_barrier:
1315                         if (match_int(&args[0], &option)) {
1316                                 status = 0;
1317                                 goto bail;
1318                         }
1319                         if (option)
1320                                 mopt->mount_opt |= OCFS2_MOUNT_BARRIER;
1321                         else
1322                                 mopt->mount_opt &= ~OCFS2_MOUNT_BARRIER;
1323                         break;
1324                 case Opt_intr:
1325                         mopt->mount_opt &= ~OCFS2_MOUNT_NOINTR;
1326                         break;
1327                 case Opt_nointr:
1328                         mopt->mount_opt |= OCFS2_MOUNT_NOINTR;
1329                         break;
1330                 case Opt_err_panic:
1331                         mopt->mount_opt |= OCFS2_MOUNT_ERRORS_PANIC;
1332                         break;
1333                 case Opt_err_ro:
1334                         mopt->mount_opt &= ~OCFS2_MOUNT_ERRORS_PANIC;
1335                         break;
1336                 case Opt_data_ordered:
1337                         mopt->mount_opt &= ~OCFS2_MOUNT_DATA_WRITEBACK;
1338                         break;
1339                 case Opt_data_writeback:
1340                         mopt->mount_opt |= OCFS2_MOUNT_DATA_WRITEBACK;
1341                         break;
1342                 case Opt_user_xattr:
1343                         mopt->mount_opt &= ~OCFS2_MOUNT_NOUSERXATTR;
1344                         break;
1345                 case Opt_nouser_xattr:
1346                         mopt->mount_opt |= OCFS2_MOUNT_NOUSERXATTR;
1347                         break;
1348                 case Opt_atime_quantum:
1349                         if (match_int(&args[0], &option)) {
1350                                 status = 0;
1351                                 goto bail;
1352                         }
1353                         if (option >= 0)
1354                                 mopt->atime_quantum = option;
1355                         break;
1356                 case Opt_slot:
1357                         option = 0;
1358                         if (match_int(&args[0], &option)) {
1359                                 status = 0;
1360                                 goto bail;
1361                         }
1362                         if (option)
1363                                 mopt->slot = (s16)option;
1364                         break;
1365                 case Opt_commit:
1366                         option = 0;
1367                         if (match_int(&args[0], &option)) {
1368                                 status = 0;
1369                                 goto bail;
1370                         }
1371                         if (option < 0)
1372                                 return 0;
1373                         if (option == 0)
1374                                 option = JBD2_DEFAULT_MAX_COMMIT_AGE;
1375                         mopt->commit_interval = HZ * option;
1376                         break;
1377                 case Opt_localalloc:
1378                         option = 0;
1379                         if (match_int(&args[0], &option)) {
1380                                 status = 0;
1381                                 goto bail;
1382                         }
1383                         if (option >= 0)
1384                                 mopt->localalloc_opt = option;
1385                         break;
1386                 case Opt_localflocks:
1387                         /*
1388                          * Changing this during remount could race
1389                          * flock() requests, or "unbalance" existing
1390                          * ones (e.g., a lock is taken in one mode but
1391                          * dropped in the other). If users care enough
1392                          * to flip locking modes during remount, we
1393                          * could add a "local" flag to individual
1394                          * flock structures for proper tracking of
1395                          * state.
1396                          */
1397                         if (!is_remount)
1398                                 mopt->mount_opt |= OCFS2_MOUNT_LOCALFLOCKS;
1399                         break;
1400                 case Opt_stack:
1401                         /* Check both that the option we were passed
1402                          * is of the right length and that it is a proper
1403                          * string of the right length.
1404                          */
1405                         if (((args[0].to - args[0].from) !=
1406                              OCFS2_STACK_LABEL_LEN) ||
1407                             (strnlen(args[0].from,
1408                                      OCFS2_STACK_LABEL_LEN) !=
1409                              OCFS2_STACK_LABEL_LEN)) {
1410                                 mlog(ML_ERROR,
1411                                      "Invalid cluster_stack option\n");
1412                                 status = 0;
1413                                 goto bail;
1414                         }
1415                         memcpy(mopt->cluster_stack, args[0].from,
1416                                OCFS2_STACK_LABEL_LEN);
1417                         mopt->cluster_stack[OCFS2_STACK_LABEL_LEN] = '\0';
1418                         /*
1419                          * Open code the memcmp here as we don't have
1420                          * an osb to pass to
1421                          * ocfs2_userspace_stack().
1422                          */
1423                         if (memcmp(mopt->cluster_stack,
1424                                    OCFS2_CLASSIC_CLUSTER_STACK,
1425                                    OCFS2_STACK_LABEL_LEN))
1426                                 user_stack = 1;
1427                         break;
1428                 case Opt_inode64:
1429                         mopt->mount_opt |= OCFS2_MOUNT_INODE64;
1430                         break;
1431                 case Opt_usrquota:
1432                         mopt->mount_opt |= OCFS2_MOUNT_USRQUOTA;
1433                         break;
1434                 case Opt_grpquota:
1435                         mopt->mount_opt |= OCFS2_MOUNT_GRPQUOTA;
1436                         break;
1437                 case Opt_coherency_buffered:
1438                         mopt->mount_opt |= OCFS2_MOUNT_COHERENCY_BUFFERED;
1439                         break;
1440                 case Opt_coherency_full:
1441                         mopt->mount_opt &= ~OCFS2_MOUNT_COHERENCY_BUFFERED;
1442                         break;
1443                 case Opt_acl:
1444                         mopt->mount_opt |= OCFS2_MOUNT_POSIX_ACL;
1445                         mopt->mount_opt &= ~OCFS2_MOUNT_NO_POSIX_ACL;
1446                         break;
1447                 case Opt_noacl:
1448                         mopt->mount_opt |= OCFS2_MOUNT_NO_POSIX_ACL;
1449                         mopt->mount_opt &= ~OCFS2_MOUNT_POSIX_ACL;
1450                         break;
1451                 case Opt_resv_level:
1452                         if (is_remount)
1453                                 break;
1454                         if (match_int(&args[0], &option)) {
1455                                 status = 0;
1456                                 goto bail;
1457                         }
1458                         if (option >= OCFS2_MIN_RESV_LEVEL &&
1459                             option < OCFS2_MAX_RESV_LEVEL)
1460                                 mopt->resv_level = option;
1461                         break;
1462                 case Opt_dir_resv_level:
1463                         if (is_remount)
1464                                 break;
1465                         if (match_int(&args[0], &option)) {
1466                                 status = 0;
1467                                 goto bail;
1468                         }
1469                         if (option >= OCFS2_MIN_RESV_LEVEL &&
1470                             option < OCFS2_MAX_RESV_LEVEL)
1471                                 mopt->dir_resv_level = option;
1472                         break;
1473                 default:
1474                         mlog(ML_ERROR,
1475                              "Unrecognized mount option \"%s\" "
1476                              "or missing value\n", p);
1477                         status = 0;
1478                         goto bail;
1479                 }
1480         }
1481
1482         if (user_stack == 0) {
1483                 /* Ensure only one heartbeat mode */
1484                 tmp = mopt->mount_opt & (OCFS2_MOUNT_HB_LOCAL |
1485                                          OCFS2_MOUNT_HB_GLOBAL |
1486                                          OCFS2_MOUNT_HB_NONE);
1487                 if (hweight32(tmp) != 1) {
1488                         mlog(ML_ERROR, "Invalid heartbeat mount options\n");
1489                         status = 0;
1490                         goto bail;
1491                 }
1492         }
1493
1494         status = 1;
1495
1496 bail:
1497         return status;
1498 }
1499
1500 static int ocfs2_show_options(struct seq_file *s, struct dentry *root)
1501 {
1502         struct ocfs2_super *osb = OCFS2_SB(root->d_sb);
1503         unsigned long opts = osb->s_mount_opt;
1504         unsigned int local_alloc_megs;
1505
1506         if (opts & (OCFS2_MOUNT_HB_LOCAL | OCFS2_MOUNT_HB_GLOBAL)) {
1507                 seq_printf(s, ",_netdev");
1508                 if (opts & OCFS2_MOUNT_HB_LOCAL)
1509                         seq_printf(s, ",%s", OCFS2_HB_LOCAL);
1510                 else
1511                         seq_printf(s, ",%s", OCFS2_HB_GLOBAL);
1512         } else
1513                 seq_printf(s, ",%s", OCFS2_HB_NONE);
1514
1515         if (opts & OCFS2_MOUNT_NOINTR)
1516                 seq_printf(s, ",nointr");
1517
1518         if (opts & OCFS2_MOUNT_DATA_WRITEBACK)
1519                 seq_printf(s, ",data=writeback");
1520         else
1521                 seq_printf(s, ",data=ordered");
1522
1523         if (opts & OCFS2_MOUNT_BARRIER)
1524                 seq_printf(s, ",barrier=1");
1525
1526         if (opts & OCFS2_MOUNT_ERRORS_PANIC)
1527                 seq_printf(s, ",errors=panic");
1528         else
1529                 seq_printf(s, ",errors=remount-ro");
1530
1531         if (osb->preferred_slot != OCFS2_INVALID_SLOT)
1532                 seq_printf(s, ",preferred_slot=%d", osb->preferred_slot);
1533
1534         seq_printf(s, ",atime_quantum=%u", osb->s_atime_quantum);
1535
1536         if (osb->osb_commit_interval)
1537                 seq_printf(s, ",commit=%u",
1538                            (unsigned) (osb->osb_commit_interval / HZ));
1539
1540         local_alloc_megs = osb->local_alloc_bits >> (20 - osb->s_clustersize_bits);
1541         if (local_alloc_megs != ocfs2_la_default_mb(osb))
1542                 seq_printf(s, ",localalloc=%d", local_alloc_megs);
1543
1544         if (opts & OCFS2_MOUNT_LOCALFLOCKS)
1545                 seq_printf(s, ",localflocks,");
1546
1547         if (osb->osb_cluster_stack[0])
1548                 seq_printf(s, ",cluster_stack=%.*s", OCFS2_STACK_LABEL_LEN,
1549                            osb->osb_cluster_stack);
1550         if (opts & OCFS2_MOUNT_USRQUOTA)
1551                 seq_printf(s, ",usrquota");
1552         if (opts & OCFS2_MOUNT_GRPQUOTA)
1553                 seq_printf(s, ",grpquota");
1554
1555         if (opts & OCFS2_MOUNT_COHERENCY_BUFFERED)
1556                 seq_printf(s, ",coherency=buffered");
1557         else
1558                 seq_printf(s, ",coherency=full");
1559
1560         if (opts & OCFS2_MOUNT_NOUSERXATTR)
1561                 seq_printf(s, ",nouser_xattr");
1562         else
1563                 seq_printf(s, ",user_xattr");
1564
1565         if (opts & OCFS2_MOUNT_INODE64)
1566                 seq_printf(s, ",inode64");
1567
1568         if (opts & OCFS2_MOUNT_POSIX_ACL)
1569                 seq_printf(s, ",acl");
1570         else
1571                 seq_printf(s, ",noacl");
1572
1573         if (osb->osb_resv_level != OCFS2_DEFAULT_RESV_LEVEL)
1574                 seq_printf(s, ",resv_level=%d", osb->osb_resv_level);
1575
1576         if (osb->osb_dir_resv_level != osb->osb_resv_level)
1577                 seq_printf(s, ",dir_resv_level=%d", osb->osb_resv_level);
1578
1579         return 0;
1580 }
1581
1582 static int __init ocfs2_init(void)
1583 {
1584         int status;
1585
1586         status = init_ocfs2_uptodate_cache();
1587         if (status < 0)
1588                 goto out1;
1589
1590         status = ocfs2_initialize_mem_caches();
1591         if (status < 0)
1592                 goto out2;
1593
1594         ocfs2_wq = create_singlethread_workqueue("ocfs2_wq");
1595         if (!ocfs2_wq) {
1596                 status = -ENOMEM;
1597                 goto out3;
1598         }
1599
1600         ocfs2_debugfs_root = debugfs_create_dir("ocfs2", NULL);
1601         if (!ocfs2_debugfs_root) {
1602                 status = -ENOMEM;
1603                 mlog(ML_ERROR, "Unable to create ocfs2 debugfs root.\n");
1604                 goto out4;
1605         }
1606
1607         ocfs2_set_locking_protocol();
1608
1609         status = register_quota_format(&ocfs2_quota_format);
1610         if (status < 0)
1611                 goto out4;
1612         status = register_filesystem(&ocfs2_fs_type);
1613         if (!status)
1614                 return 0;
1615
1616         unregister_quota_format(&ocfs2_quota_format);
1617 out4:
1618         destroy_workqueue(ocfs2_wq);
1619         debugfs_remove(ocfs2_debugfs_root);
1620 out3:
1621         ocfs2_free_mem_caches();
1622 out2:
1623         exit_ocfs2_uptodate_cache();
1624 out1:
1625         mlog_errno(status);
1626         return status;
1627 }
1628
1629 static void __exit ocfs2_exit(void)
1630 {
1631         if (ocfs2_wq) {
1632                 flush_workqueue(ocfs2_wq);
1633                 destroy_workqueue(ocfs2_wq);
1634         }
1635
1636         unregister_quota_format(&ocfs2_quota_format);
1637
1638         debugfs_remove(ocfs2_debugfs_root);
1639
1640         ocfs2_free_mem_caches();
1641
1642         unregister_filesystem(&ocfs2_fs_type);
1643
1644         exit_ocfs2_uptodate_cache();
1645 }
1646
1647 static void ocfs2_put_super(struct super_block *sb)
1648 {
1649         trace_ocfs2_put_super(sb);
1650
1651         ocfs2_sync_blockdev(sb);
1652         ocfs2_dismount_volume(sb, 0);
1653 }
1654
1655 static int ocfs2_statfs(struct dentry *dentry, struct kstatfs *buf)
1656 {
1657         struct ocfs2_super *osb;
1658         u32 numbits, freebits;
1659         int status;
1660         struct ocfs2_dinode *bm_lock;
1661         struct buffer_head *bh = NULL;
1662         struct inode *inode = NULL;
1663
1664         trace_ocfs2_statfs(dentry->d_sb, buf);
1665
1666         osb = OCFS2_SB(dentry->d_sb);
1667
1668         inode = ocfs2_get_system_file_inode(osb,
1669                                             GLOBAL_BITMAP_SYSTEM_INODE,
1670                                             OCFS2_INVALID_SLOT);
1671         if (!inode) {
1672                 mlog(ML_ERROR, "failed to get bitmap inode\n");
1673                 status = -EIO;
1674                 goto bail;
1675         }
1676
1677         status = ocfs2_inode_lock(inode, &bh, 0);
1678         if (status < 0) {
1679                 mlog_errno(status);
1680                 goto bail;
1681         }
1682
1683         bm_lock = (struct ocfs2_dinode *) bh->b_data;
1684
1685         numbits = le32_to_cpu(bm_lock->id1.bitmap1.i_total);
1686         freebits = numbits - le32_to_cpu(bm_lock->id1.bitmap1.i_used);
1687
1688         buf->f_type = OCFS2_SUPER_MAGIC;
1689         buf->f_bsize = dentry->d_sb->s_blocksize;
1690         buf->f_namelen = OCFS2_MAX_FILENAME_LEN;
1691         buf->f_blocks = ((sector_t) numbits) *
1692                         (osb->s_clustersize >> osb->sb->s_blocksize_bits);
1693         buf->f_bfree = ((sector_t) freebits) *
1694                        (osb->s_clustersize >> osb->sb->s_blocksize_bits);
1695         buf->f_bavail = buf->f_bfree;
1696         buf->f_files = numbits;
1697         buf->f_ffree = freebits;
1698         buf->f_fsid.val[0] = crc32_le(0, osb->uuid_str, OCFS2_VOL_UUID_LEN)
1699                                 & 0xFFFFFFFFUL;
1700         buf->f_fsid.val[1] = crc32_le(0, osb->uuid_str + OCFS2_VOL_UUID_LEN,
1701                                 OCFS2_VOL_UUID_LEN) & 0xFFFFFFFFUL;
1702
1703         brelse(bh);
1704
1705         ocfs2_inode_unlock(inode, 0);
1706         status = 0;
1707 bail:
1708         if (inode)
1709                 iput(inode);
1710
1711         if (status)
1712                 mlog_errno(status);
1713
1714         return status;
1715 }
1716
1717 static void ocfs2_inode_init_once(void *data)
1718 {
1719         struct ocfs2_inode_info *oi = data;
1720
1721         oi->ip_flags = 0;
1722         oi->ip_open_count = 0;
1723         spin_lock_init(&oi->ip_lock);
1724         ocfs2_extent_map_init(&oi->vfs_inode);
1725         INIT_LIST_HEAD(&oi->ip_io_markers);
1726         oi->ip_dir_start_lookup = 0;
1727         mutex_init(&oi->ip_unaligned_aio);
1728         init_rwsem(&oi->ip_alloc_sem);
1729         init_rwsem(&oi->ip_xattr_sem);
1730         mutex_init(&oi->ip_io_mutex);
1731
1732         oi->ip_blkno = 0ULL;
1733         oi->ip_clusters = 0;
1734
1735         ocfs2_resv_init_once(&oi->ip_la_data_resv);
1736
1737         ocfs2_lock_res_init_once(&oi->ip_rw_lockres);
1738         ocfs2_lock_res_init_once(&oi->ip_inode_lockres);
1739         ocfs2_lock_res_init_once(&oi->ip_open_lockres);
1740
1741         ocfs2_metadata_cache_init(INODE_CACHE(&oi->vfs_inode),
1742                                   &ocfs2_inode_caching_ops);
1743
1744         inode_init_once(&oi->vfs_inode);
1745 }
1746
1747 static int ocfs2_initialize_mem_caches(void)
1748 {
1749         ocfs2_inode_cachep = kmem_cache_create("ocfs2_inode_cache",
1750                                        sizeof(struct ocfs2_inode_info),
1751                                        0,
1752                                        (SLAB_HWCACHE_ALIGN|SLAB_RECLAIM_ACCOUNT|
1753                                                 SLAB_MEM_SPREAD),
1754                                        ocfs2_inode_init_once);
1755         ocfs2_dquot_cachep = kmem_cache_create("ocfs2_dquot_cache",
1756                                         sizeof(struct ocfs2_dquot),
1757                                         0,
1758                                         (SLAB_HWCACHE_ALIGN|SLAB_RECLAIM_ACCOUNT|
1759                                                 SLAB_MEM_SPREAD),
1760                                         NULL);
1761         ocfs2_qf_chunk_cachep = kmem_cache_create("ocfs2_qf_chunk_cache",
1762                                         sizeof(struct ocfs2_quota_chunk),
1763                                         0,
1764                                         (SLAB_RECLAIM_ACCOUNT|SLAB_MEM_SPREAD),
1765                                         NULL);
1766         if (!ocfs2_inode_cachep || !ocfs2_dquot_cachep ||
1767             !ocfs2_qf_chunk_cachep) {
1768                 if (ocfs2_inode_cachep)
1769                         kmem_cache_destroy(ocfs2_inode_cachep);
1770                 if (ocfs2_dquot_cachep)
1771                         kmem_cache_destroy(ocfs2_dquot_cachep);
1772                 if (ocfs2_qf_chunk_cachep)
1773                         kmem_cache_destroy(ocfs2_qf_chunk_cachep);
1774                 return -ENOMEM;
1775         }
1776
1777         return 0;
1778 }
1779
1780 static void ocfs2_free_mem_caches(void)
1781 {
1782         /*
1783          * Make sure all delayed rcu free inodes are flushed before we
1784          * destroy cache.
1785          */
1786         rcu_barrier();
1787         if (ocfs2_inode_cachep)
1788                 kmem_cache_destroy(ocfs2_inode_cachep);
1789         ocfs2_inode_cachep = NULL;
1790
1791         if (ocfs2_dquot_cachep)
1792                 kmem_cache_destroy(ocfs2_dquot_cachep);
1793         ocfs2_dquot_cachep = NULL;
1794
1795         if (ocfs2_qf_chunk_cachep)
1796                 kmem_cache_destroy(ocfs2_qf_chunk_cachep);
1797         ocfs2_qf_chunk_cachep = NULL;
1798 }
1799
1800 static int ocfs2_get_sector(struct super_block *sb,
1801                             struct buffer_head **bh,
1802                             int block,
1803                             int sect_size)
1804 {
1805         if (!sb_set_blocksize(sb, sect_size)) {
1806                 mlog(ML_ERROR, "unable to set blocksize\n");
1807                 return -EIO;
1808         }
1809
1810         *bh = sb_getblk(sb, block);
1811         if (!*bh) {
1812                 mlog_errno(-ENOMEM);
1813                 return -ENOMEM;
1814         }
1815         lock_buffer(*bh);
1816         if (!buffer_dirty(*bh))
1817                 clear_buffer_uptodate(*bh);
1818         unlock_buffer(*bh);
1819         ll_rw_block(READ, 1, bh);
1820         wait_on_buffer(*bh);
1821         if (!buffer_uptodate(*bh)) {
1822                 mlog_errno(-EIO);
1823                 brelse(*bh);
1824                 *bh = NULL;
1825                 return -EIO;
1826         }
1827
1828         return 0;
1829 }
1830
1831 static int ocfs2_mount_volume(struct super_block *sb)
1832 {
1833         int status = 0;
1834         int unlock_super = 0;
1835         struct ocfs2_super *osb = OCFS2_SB(sb);
1836
1837         if (ocfs2_is_hard_readonly(osb))
1838                 goto leave;
1839
1840         status = ocfs2_dlm_init(osb);
1841         if (status < 0) {
1842                 mlog_errno(status);
1843                 goto leave;
1844         }
1845
1846         status = ocfs2_super_lock(osb, 1);
1847         if (status < 0) {
1848                 mlog_errno(status);
1849                 goto leave;
1850         }
1851         unlock_super = 1;
1852
1853         /* This will load up the node map and add ourselves to it. */
1854         status = ocfs2_find_slot(osb);
1855         if (status < 0) {
1856                 mlog_errno(status);
1857                 goto leave;
1858         }
1859
1860         /* load all node-local system inodes */
1861         status = ocfs2_init_local_system_inodes(osb);
1862         if (status < 0) {
1863                 mlog_errno(status);
1864                 goto leave;
1865         }
1866
1867         status = ocfs2_check_volume(osb);
1868         if (status < 0) {
1869                 mlog_errno(status);
1870                 goto leave;
1871         }
1872
1873         status = ocfs2_truncate_log_init(osb);
1874         if (status < 0)
1875                 mlog_errno(status);
1876
1877 leave:
1878         if (unlock_super)
1879                 ocfs2_super_unlock(osb, 1);
1880
1881         return status;
1882 }
1883
1884 static void ocfs2_dismount_volume(struct super_block *sb, int mnt_err)
1885 {
1886         int tmp, hangup_needed = 0;
1887         struct ocfs2_super *osb = NULL;
1888         char nodestr[12];
1889
1890         trace_ocfs2_dismount_volume(sb);
1891
1892         BUG_ON(!sb);
1893         osb = OCFS2_SB(sb);
1894         BUG_ON(!osb);
1895
1896         debugfs_remove(osb->osb_ctxt);
1897
1898         /* Orphan scan should be stopped as early as possible */
1899         ocfs2_orphan_scan_stop(osb);
1900
1901         ocfs2_disable_quotas(osb);
1902
1903         /* All dquots should be freed by now */
1904         WARN_ON(!llist_empty(&osb->dquot_drop_list));
1905         /* Wait for worker to be done with the work structure in osb */
1906         cancel_work_sync(&osb->dquot_drop_work);
1907
1908         ocfs2_shutdown_local_alloc(osb);
1909
1910         ocfs2_truncate_log_shutdown(osb);
1911
1912         /* This will disable recovery and flush any recovery work. */
1913         ocfs2_recovery_exit(osb);
1914
1915         ocfs2_journal_shutdown(osb);
1916
1917         ocfs2_sync_blockdev(sb);
1918
1919         ocfs2_purge_refcount_trees(osb);
1920
1921         /* No cluster connection means we've failed during mount, so skip
1922          * all the steps which depended on that to complete. */
1923         if (osb->cconn) {
1924                 tmp = ocfs2_super_lock(osb, 1);
1925                 if (tmp < 0) {
1926                         mlog_errno(tmp);
1927                         return;
1928                 }
1929         }
1930
1931         if (osb->slot_num != OCFS2_INVALID_SLOT)
1932                 ocfs2_put_slot(osb);
1933
1934         if (osb->cconn)
1935                 ocfs2_super_unlock(osb, 1);
1936
1937         ocfs2_release_system_inodes(osb);
1938
1939         /*
1940          * If we're dismounting due to mount error, mount.ocfs2 will clean
1941          * up heartbeat.  If we're a local mount, there is no heartbeat.
1942          * If we failed before we got a uuid_str yet, we can't stop
1943          * heartbeat.  Otherwise, do it.
1944          */
1945         if (!mnt_err && !ocfs2_mount_local(osb) && osb->uuid_str &&
1946             !ocfs2_is_hard_readonly(osb))
1947                 hangup_needed = 1;
1948
1949         if (osb->cconn)
1950                 ocfs2_dlm_shutdown(osb, hangup_needed);
1951
1952         ocfs2_blockcheck_stats_debugfs_remove(&osb->osb_ecc_stats);
1953         debugfs_remove(osb->osb_debug_root);
1954
1955         if (hangup_needed)
1956                 ocfs2_cluster_hangup(osb->uuid_str, strlen(osb->uuid_str));
1957
1958         atomic_set(&osb->vol_state, VOLUME_DISMOUNTED);
1959
1960         if (ocfs2_mount_local(osb))
1961                 snprintf(nodestr, sizeof(nodestr), "local");
1962         else
1963                 snprintf(nodestr, sizeof(nodestr), "%u", osb->node_num);
1964
1965         printk(KERN_INFO "ocfs2: Unmounting device (%s) on (node %s)\n",
1966                osb->dev_str, nodestr);
1967
1968         ocfs2_delete_osb(osb);
1969         kfree(osb);
1970         sb->s_dev = 0;
1971         sb->s_fs_info = NULL;
1972 }
1973
1974 static int ocfs2_setup_osb_uuid(struct ocfs2_super *osb, const unsigned char *uuid,
1975                                 unsigned uuid_bytes)
1976 {
1977         int i, ret;
1978         char *ptr;
1979
1980         BUG_ON(uuid_bytes != OCFS2_VOL_UUID_LEN);
1981
1982         osb->uuid_str = kzalloc(OCFS2_VOL_UUID_LEN * 2 + 1, GFP_KERNEL);
1983         if (osb->uuid_str == NULL)
1984                 return -ENOMEM;
1985
1986         for (i = 0, ptr = osb->uuid_str; i < OCFS2_VOL_UUID_LEN; i++) {
1987                 /* print with null */
1988                 ret = snprintf(ptr, 3, "%02X", uuid[i]);
1989                 if (ret != 2) /* drop super cleans up */
1990                         return -EINVAL;
1991                 /* then only advance past the last char */
1992                 ptr += 2;
1993         }
1994
1995         return 0;
1996 }
1997
1998 /* Make sure entire volume is addressable by our journal.  Requires
1999    osb_clusters_at_boot to be valid and for the journal to have been
2000    initialized by ocfs2_journal_init(). */
2001 static int ocfs2_journal_addressable(struct ocfs2_super *osb)
2002 {
2003         int status = 0;
2004         u64 max_block =
2005                 ocfs2_clusters_to_blocks(osb->sb,
2006                                          osb->osb_clusters_at_boot) - 1;
2007
2008         /* 32-bit block number is always OK. */
2009         if (max_block <= (u32)~0ULL)
2010                 goto out;
2011
2012         /* Volume is "huge", so see if our journal is new enough to
2013            support it. */
2014         if (!(OCFS2_HAS_COMPAT_FEATURE(osb->sb,
2015                                        OCFS2_FEATURE_COMPAT_JBD2_SB) &&
2016               jbd2_journal_check_used_features(osb->journal->j_journal, 0, 0,
2017                                                JBD2_FEATURE_INCOMPAT_64BIT))) {
2018                 mlog(ML_ERROR, "The journal cannot address the entire volume. "
2019                      "Enable the 'block64' journal option with tunefs.ocfs2");
2020                 status = -EFBIG;
2021                 goto out;
2022         }
2023
2024  out:
2025         return status;
2026 }
2027
2028 static int ocfs2_initialize_super(struct super_block *sb,
2029                                   struct buffer_head *bh,
2030                                   int sector_size,
2031                                   struct ocfs2_blockcheck_stats *stats)
2032 {
2033         int status;
2034         int i, cbits, bbits;
2035         struct ocfs2_dinode *di = (struct ocfs2_dinode *)bh->b_data;
2036         struct inode *inode = NULL;
2037         struct ocfs2_journal *journal;
2038         struct ocfs2_super *osb;
2039         u64 total_blocks;
2040
2041         osb = kzalloc(sizeof(struct ocfs2_super), GFP_KERNEL);
2042         if (!osb) {
2043                 status = -ENOMEM;
2044                 mlog_errno(status);
2045                 goto bail;
2046         }
2047
2048         sb->s_fs_info = osb;
2049         sb->s_op = &ocfs2_sops;
2050         sb->s_d_op = &ocfs2_dentry_ops;
2051         sb->s_export_op = &ocfs2_export_ops;
2052         sb->s_qcop = &dquot_quotactl_sysfile_ops;
2053         sb->dq_op = &ocfs2_quota_operations;
2054         sb->s_quota_types = QTYPE_MASK_USR | QTYPE_MASK_GRP;
2055         sb->s_xattr = ocfs2_xattr_handlers;
2056         sb->s_time_gran = 1;
2057         sb->s_flags |= MS_NOATIME;
2058         /* this is needed to support O_LARGEFILE */
2059         cbits = le32_to_cpu(di->id2.i_super.s_clustersize_bits);
2060         bbits = le32_to_cpu(di->id2.i_super.s_blocksize_bits);
2061         sb->s_maxbytes = ocfs2_max_file_offset(bbits, cbits);
2062
2063         osb->osb_dx_mask = (1 << (cbits - bbits)) - 1;
2064
2065         for (i = 0; i < 3; i++)
2066                 osb->osb_dx_seed[i] = le32_to_cpu(di->id2.i_super.s_dx_seed[i]);
2067         osb->osb_dx_seed[3] = le32_to_cpu(di->id2.i_super.s_uuid_hash);
2068
2069         osb->sb = sb;
2070         /* Save off for ocfs2_rw_direct */
2071         osb->s_sectsize_bits = blksize_bits(sector_size);
2072         BUG_ON(!osb->s_sectsize_bits);
2073
2074         spin_lock_init(&osb->dc_task_lock);
2075         init_waitqueue_head(&osb->dc_event);
2076         osb->dc_work_sequence = 0;
2077         osb->dc_wake_sequence = 0;
2078         INIT_LIST_HEAD(&osb->blocked_lock_list);
2079         osb->blocked_lock_count = 0;
2080         spin_lock_init(&osb->osb_lock);
2081         spin_lock_init(&osb->osb_xattr_lock);
2082         ocfs2_init_steal_slots(osb);
2083
2084         mutex_init(&osb->system_file_mutex);
2085
2086         atomic_set(&osb->alloc_stats.moves, 0);
2087         atomic_set(&osb->alloc_stats.local_data, 0);
2088         atomic_set(&osb->alloc_stats.bitmap_data, 0);
2089         atomic_set(&osb->alloc_stats.bg_allocs, 0);
2090         atomic_set(&osb->alloc_stats.bg_extends, 0);
2091
2092         /* Copy the blockcheck stats from the superblock probe */
2093         osb->osb_ecc_stats = *stats;
2094
2095         ocfs2_init_node_maps(osb);
2096
2097         snprintf(osb->dev_str, sizeof(osb->dev_str), "%u,%u",
2098                  MAJOR(osb->sb->s_dev), MINOR(osb->sb->s_dev));
2099
2100         osb->max_slots = le16_to_cpu(di->id2.i_super.s_max_slots);
2101         if (osb->max_slots > OCFS2_MAX_SLOTS || osb->max_slots == 0) {
2102                 mlog(ML_ERROR, "Invalid number of node slots (%u)\n",
2103                      osb->max_slots);
2104                 status = -EINVAL;
2105                 goto bail;
2106         }
2107
2108         ocfs2_orphan_scan_init(osb);
2109
2110         status = ocfs2_recovery_init(osb);
2111         if (status) {
2112                 mlog(ML_ERROR, "Unable to initialize recovery state\n");
2113                 mlog_errno(status);
2114                 goto bail;
2115         }
2116
2117         init_waitqueue_head(&osb->checkpoint_event);
2118
2119         osb->s_atime_quantum = OCFS2_DEFAULT_ATIME_QUANTUM;
2120
2121         osb->slot_num = OCFS2_INVALID_SLOT;
2122
2123         osb->s_xattr_inline_size = le16_to_cpu(
2124                                         di->id2.i_super.s_xattr_inline_size);
2125
2126         osb->local_alloc_state = OCFS2_LA_UNUSED;
2127         osb->local_alloc_bh = NULL;
2128         INIT_DELAYED_WORK(&osb->la_enable_wq, ocfs2_la_enable_worker);
2129
2130         init_waitqueue_head(&osb->osb_mount_event);
2131
2132         status = ocfs2_resmap_init(osb, &osb->osb_la_resmap);
2133         if (status) {
2134                 mlog_errno(status);
2135                 goto bail;
2136         }
2137
2138         osb->vol_label = kmalloc(OCFS2_MAX_VOL_LABEL_LEN, GFP_KERNEL);
2139         if (!osb->vol_label) {
2140                 mlog(ML_ERROR, "unable to alloc vol label\n");
2141                 status = -ENOMEM;
2142                 goto bail;
2143         }
2144
2145         osb->slot_recovery_generations =
2146                 kcalloc(osb->max_slots, sizeof(*osb->slot_recovery_generations),
2147                         GFP_KERNEL);
2148         if (!osb->slot_recovery_generations) {
2149                 status = -ENOMEM;
2150                 mlog_errno(status);
2151                 goto bail;
2152         }
2153
2154         init_waitqueue_head(&osb->osb_wipe_event);
2155         osb->osb_orphan_wipes = kcalloc(osb->max_slots,
2156                                         sizeof(*osb->osb_orphan_wipes),
2157                                         GFP_KERNEL);
2158         if (!osb->osb_orphan_wipes) {
2159                 status = -ENOMEM;
2160                 mlog_errno(status);
2161                 goto bail;
2162         }
2163
2164         osb->osb_rf_lock_tree = RB_ROOT;
2165
2166         osb->s_feature_compat =
2167                 le32_to_cpu(OCFS2_RAW_SB(di)->s_feature_compat);
2168         osb->s_feature_ro_compat =
2169                 le32_to_cpu(OCFS2_RAW_SB(di)->s_feature_ro_compat);
2170         osb->s_feature_incompat =
2171                 le32_to_cpu(OCFS2_RAW_SB(di)->s_feature_incompat);
2172
2173         if ((i = OCFS2_HAS_INCOMPAT_FEATURE(osb->sb, ~OCFS2_FEATURE_INCOMPAT_SUPP))) {
2174                 mlog(ML_ERROR, "couldn't mount because of unsupported "
2175                      "optional features (%x).\n", i);
2176                 status = -EINVAL;
2177                 goto bail;
2178         }
2179         if (!(osb->sb->s_flags & MS_RDONLY) &&
2180             (i = OCFS2_HAS_RO_COMPAT_FEATURE(osb->sb, ~OCFS2_FEATURE_RO_COMPAT_SUPP))) {
2181                 mlog(ML_ERROR, "couldn't mount RDWR because of "
2182                      "unsupported optional features (%x).\n", i);
2183                 status = -EINVAL;
2184                 goto bail;
2185         }
2186
2187         if (ocfs2_clusterinfo_valid(osb)) {
2188                 osb->osb_stackflags =
2189                         OCFS2_RAW_SB(di)->s_cluster_info.ci_stackflags;
2190                 strlcpy(osb->osb_cluster_stack,
2191                        OCFS2_RAW_SB(di)->s_cluster_info.ci_stack,
2192                        OCFS2_STACK_LABEL_LEN + 1);
2193                 if (strlen(osb->osb_cluster_stack) != OCFS2_STACK_LABEL_LEN) {
2194                         mlog(ML_ERROR,
2195                              "couldn't mount because of an invalid "
2196                              "cluster stack label (%s) \n",
2197                              osb->osb_cluster_stack);
2198                         status = -EINVAL;
2199                         goto bail;
2200                 }
2201                 strlcpy(osb->osb_cluster_name,
2202                         OCFS2_RAW_SB(di)->s_cluster_info.ci_cluster,
2203                         OCFS2_CLUSTER_NAME_LEN + 1);
2204         } else {
2205                 /* The empty string is identical with classic tools that
2206                  * don't know about s_cluster_info. */
2207                 osb->osb_cluster_stack[0] = '\0';
2208         }
2209
2210         get_random_bytes(&osb->s_next_generation, sizeof(u32));
2211
2212         /* FIXME
2213          * This should be done in ocfs2_journal_init(), but unknown
2214          * ordering issues will cause the filesystem to crash.
2215          * If anyone wants to figure out what part of the code
2216          * refers to osb->journal before ocfs2_journal_init() is run,
2217          * be my guest.
2218          */
2219         /* initialize our journal structure */
2220
2221         journal = kzalloc(sizeof(struct ocfs2_journal), GFP_KERNEL);
2222         if (!journal) {
2223                 mlog(ML_ERROR, "unable to alloc journal\n");
2224                 status = -ENOMEM;
2225                 goto bail;
2226         }
2227         osb->journal = journal;
2228         journal->j_osb = osb;
2229
2230         atomic_set(&journal->j_num_trans, 0);
2231         init_rwsem(&journal->j_trans_barrier);
2232         init_waitqueue_head(&journal->j_checkpointed);
2233         spin_lock_init(&journal->j_lock);
2234         journal->j_trans_id = (unsigned long) 1;
2235         INIT_LIST_HEAD(&journal->j_la_cleanups);
2236         INIT_WORK(&journal->j_recovery_work, ocfs2_complete_recovery);
2237         journal->j_state = OCFS2_JOURNAL_FREE;
2238
2239         INIT_WORK(&osb->dquot_drop_work, ocfs2_drop_dquot_refs);
2240         init_llist_head(&osb->dquot_drop_list);
2241
2242         /* get some pseudo constants for clustersize bits */
2243         osb->s_clustersize_bits =
2244                 le32_to_cpu(di->id2.i_super.s_clustersize_bits);
2245         osb->s_clustersize = 1 << osb->s_clustersize_bits;
2246
2247         if (osb->s_clustersize < OCFS2_MIN_CLUSTERSIZE ||
2248             osb->s_clustersize > OCFS2_MAX_CLUSTERSIZE) {
2249                 mlog(ML_ERROR, "Volume has invalid cluster size (%d)\n",
2250                      osb->s_clustersize);
2251                 status = -EINVAL;
2252                 goto bail;
2253         }
2254
2255         total_blocks = ocfs2_clusters_to_blocks(osb->sb,
2256                                                 le32_to_cpu(di->i_clusters));
2257
2258         status = generic_check_addressable(osb->sb->s_blocksize_bits,
2259                                            total_blocks);
2260         if (status) {
2261                 mlog(ML_ERROR, "Volume too large "
2262                      "to mount safely on this system");
2263                 status = -EFBIG;
2264                 goto bail;
2265         }
2266
2267         if (ocfs2_setup_osb_uuid(osb, di->id2.i_super.s_uuid,
2268                                  sizeof(di->id2.i_super.s_uuid))) {
2269                 mlog(ML_ERROR, "Out of memory trying to setup our uuid.\n");
2270                 status = -ENOMEM;
2271                 goto bail;
2272         }
2273
2274         strlcpy(osb->vol_label, di->id2.i_super.s_label,
2275                 OCFS2_MAX_VOL_LABEL_LEN);
2276         osb->root_blkno = le64_to_cpu(di->id2.i_super.s_root_blkno);
2277         osb->system_dir_blkno = le64_to_cpu(di->id2.i_super.s_system_dir_blkno);
2278         osb->first_cluster_group_blkno =
2279                 le64_to_cpu(di->id2.i_super.s_first_cluster_group);
2280         osb->fs_generation = le32_to_cpu(di->i_fs_generation);
2281         osb->uuid_hash = le32_to_cpu(di->id2.i_super.s_uuid_hash);
2282         trace_ocfs2_initialize_super(osb->vol_label, osb->uuid_str,
2283                                      (unsigned long long)osb->root_blkno,
2284                                      (unsigned long long)osb->system_dir_blkno,
2285                                      osb->s_clustersize_bits);
2286
2287         osb->osb_dlm_debug = ocfs2_new_dlm_debug();
2288         if (!osb->osb_dlm_debug) {
2289                 status = -ENOMEM;
2290                 mlog_errno(status);
2291                 goto bail;
2292         }
2293
2294         atomic_set(&osb->vol_state, VOLUME_INIT);
2295
2296         /* load root, system_dir, and all global system inodes */
2297         status = ocfs2_init_global_system_inodes(osb);
2298         if (status < 0) {
2299                 mlog_errno(status);
2300                 goto bail;
2301         }
2302
2303         /*
2304          * global bitmap
2305          */
2306         inode = ocfs2_get_system_file_inode(osb, GLOBAL_BITMAP_SYSTEM_INODE,
2307                                             OCFS2_INVALID_SLOT);
2308         if (!inode) {
2309                 status = -EINVAL;
2310                 mlog_errno(status);
2311                 goto bail;
2312         }
2313
2314         osb->bitmap_blkno = OCFS2_I(inode)->ip_blkno;
2315         osb->osb_clusters_at_boot = OCFS2_I(inode)->ip_clusters;
2316         iput(inode);
2317
2318         osb->bitmap_cpg = ocfs2_group_bitmap_size(sb, 0,
2319                                  osb->s_feature_incompat) * 8;
2320
2321         status = ocfs2_init_slot_info(osb);
2322         if (status < 0) {
2323                 mlog_errno(status);
2324                 goto bail;
2325         }
2326         cleancache_init_shared_fs((char *)&di->id2.i_super.s_uuid, sb);
2327
2328 bail:
2329         return status;
2330 }
2331
2332 /*
2333  * will return: -EAGAIN if it is ok to keep searching for superblocks
2334  *              -EINVAL if there is a bad superblock
2335  *              0 on success
2336  */
2337 static int ocfs2_verify_volume(struct ocfs2_dinode *di,
2338                                struct buffer_head *bh,
2339                                u32 blksz,
2340                                struct ocfs2_blockcheck_stats *stats)
2341 {
2342         int status = -EAGAIN;
2343
2344         if (memcmp(di->i_signature, OCFS2_SUPER_BLOCK_SIGNATURE,
2345                    strlen(OCFS2_SUPER_BLOCK_SIGNATURE)) == 0) {
2346                 /* We have to do a raw check of the feature here */
2347                 if (le32_to_cpu(di->id2.i_super.s_feature_incompat) &
2348                     OCFS2_FEATURE_INCOMPAT_META_ECC) {
2349                         status = ocfs2_block_check_validate(bh->b_data,
2350                                                             bh->b_size,
2351                                                             &di->i_check,
2352                                                             stats);
2353                         if (status)
2354                                 goto out;
2355                 }
2356                 status = -EINVAL;
2357                 if ((1 << le32_to_cpu(di->id2.i_super.s_blocksize_bits)) != blksz) {
2358                         mlog(ML_ERROR, "found superblock with incorrect block "
2359                              "size: found %u, should be %u\n",
2360                              1 << le32_to_cpu(di->id2.i_super.s_blocksize_bits),
2361                                blksz);
2362                 } else if (le16_to_cpu(di->id2.i_super.s_major_rev_level) !=
2363                            OCFS2_MAJOR_REV_LEVEL ||
2364                            le16_to_cpu(di->id2.i_super.s_minor_rev_level) !=
2365                            OCFS2_MINOR_REV_LEVEL) {
2366                         mlog(ML_ERROR, "found superblock with bad version: "
2367                              "found %u.%u, should be %u.%u\n",
2368                              le16_to_cpu(di->id2.i_super.s_major_rev_level),
2369                              le16_to_cpu(di->id2.i_super.s_minor_rev_level),
2370                              OCFS2_MAJOR_REV_LEVEL,
2371                              OCFS2_MINOR_REV_LEVEL);
2372                 } else if (bh->b_blocknr != le64_to_cpu(di->i_blkno)) {
2373                         mlog(ML_ERROR, "bad block number on superblock: "
2374                              "found %llu, should be %llu\n",
2375                              (unsigned long long)le64_to_cpu(di->i_blkno),
2376                              (unsigned long long)bh->b_blocknr);
2377                 } else if (le32_to_cpu(di->id2.i_super.s_clustersize_bits) < 12 ||
2378                             le32_to_cpu(di->id2.i_super.s_clustersize_bits) > 20) {
2379                         mlog(ML_ERROR, "bad cluster size found: %u\n",
2380                              1 << le32_to_cpu(di->id2.i_super.s_clustersize_bits));
2381                 } else if (!le64_to_cpu(di->id2.i_super.s_root_blkno)) {
2382                         mlog(ML_ERROR, "bad root_blkno: 0\n");
2383                 } else if (!le64_to_cpu(di->id2.i_super.s_system_dir_blkno)) {
2384                         mlog(ML_ERROR, "bad system_dir_blkno: 0\n");
2385                 } else if (le16_to_cpu(di->id2.i_super.s_max_slots) > OCFS2_MAX_SLOTS) {
2386                         mlog(ML_ERROR,
2387                              "Superblock slots found greater than file system "
2388                              "maximum: found %u, max %u\n",
2389                              le16_to_cpu(di->id2.i_super.s_max_slots),
2390                              OCFS2_MAX_SLOTS);
2391                 } else {
2392                         /* found it! */
2393                         status = 0;
2394                 }
2395         }
2396
2397 out:
2398         if (status && status != -EAGAIN)
2399                 mlog_errno(status);
2400         return status;
2401 }
2402
2403 static int ocfs2_check_volume(struct ocfs2_super *osb)
2404 {
2405         int status;
2406         int dirty;
2407         int local;
2408         struct ocfs2_dinode *local_alloc = NULL; /* only used if we
2409                                                   * recover
2410                                                   * ourselves. */
2411
2412         /* Init our journal object. */
2413         status = ocfs2_journal_init(osb->journal, &dirty);
2414         if (status < 0) {
2415                 mlog(ML_ERROR, "Could not initialize journal!\n");
2416                 goto finally;
2417         }
2418
2419         /* Now that journal has been initialized, check to make sure
2420            entire volume is addressable. */
2421         status = ocfs2_journal_addressable(osb);
2422         if (status)
2423                 goto finally;
2424
2425         /* If the journal was unmounted cleanly then we don't want to
2426          * recover anything. Otherwise, journal_load will do that
2427          * dirty work for us :) */
2428         if (!dirty) {
2429                 status = ocfs2_journal_wipe(osb->journal, 0);
2430                 if (status < 0) {
2431                         mlog_errno(status);
2432                         goto finally;
2433                 }
2434         } else {
2435                 printk(KERN_NOTICE "ocfs2: File system on device (%s) was not "
2436                        "unmounted cleanly, recovering it.\n", osb->dev_str);
2437         }
2438
2439         local = ocfs2_mount_local(osb);
2440
2441         /* will play back anything left in the journal. */
2442         status = ocfs2_journal_load(osb->journal, local, dirty);
2443         if (status < 0) {
2444                 mlog(ML_ERROR, "ocfs2 journal load failed! %d\n", status);
2445                 goto finally;
2446         }
2447
2448         if (dirty) {
2449                 /* recover my local alloc if we didn't unmount cleanly. */
2450                 status = ocfs2_begin_local_alloc_recovery(osb,
2451                                                           osb->slot_num,
2452                                                           &local_alloc);
2453                 if (status < 0) {
2454                         mlog_errno(status);
2455                         goto finally;
2456                 }
2457                 /* we complete the recovery process after we've marked
2458                  * ourselves as mounted. */
2459         }
2460
2461         status = ocfs2_load_local_alloc(osb);
2462         if (status < 0) {
2463                 mlog_errno(status);
2464                 goto finally;
2465         }
2466
2467         if (dirty) {
2468                 /* Recovery will be completed after we've mounted the
2469                  * rest of the volume. */
2470                 osb->dirty = 1;
2471                 osb->local_alloc_copy = local_alloc;
2472                 local_alloc = NULL;
2473         }
2474
2475         /* go through each journal, trylock it and if you get the
2476          * lock, and it's marked as dirty, set the bit in the recover
2477          * map and launch a recovery thread for it. */
2478         status = ocfs2_mark_dead_nodes(osb);
2479         if (status < 0) {
2480                 mlog_errno(status);
2481                 goto finally;
2482         }
2483
2484         status = ocfs2_compute_replay_slots(osb);
2485         if (status < 0)
2486                 mlog_errno(status);
2487
2488 finally:
2489         kfree(local_alloc);
2490
2491         if (status)
2492                 mlog_errno(status);
2493         return status;
2494 }
2495
2496 /*
2497  * The routine gets called from dismount or close whenever a dismount on
2498  * volume is requested and the osb open count becomes 1.
2499  * It will remove the osb from the global list and also free up all the
2500  * initialized resources and fileobject.
2501  */
2502 static void ocfs2_delete_osb(struct ocfs2_super *osb)
2503 {
2504         /* This function assumes that the caller has the main osb resource */
2505
2506         ocfs2_free_slot_info(osb);
2507
2508         kfree(osb->osb_orphan_wipes);
2509         kfree(osb->slot_recovery_generations);
2510         /* FIXME
2511          * This belongs in journal shutdown, but because we have to
2512          * allocate osb->journal at the start of ocfs2_initialize_osb(),
2513          * we free it here.
2514          */
2515         kfree(osb->journal);
2516         kfree(osb->local_alloc_copy);
2517         kfree(osb->uuid_str);
2518         kfree(osb->vol_label);
2519         ocfs2_put_dlm_debug(osb->osb_dlm_debug);
2520         memset(osb, 0, sizeof(struct ocfs2_super));
2521 }
2522
2523 /* Put OCFS2 into a readonly state, or (if the user specifies it),
2524  * panic(). We do not support continue-on-error operation. */
2525 static void ocfs2_handle_error(struct super_block *sb)
2526 {
2527         struct ocfs2_super *osb = OCFS2_SB(sb);
2528
2529         if (osb->s_mount_opt & OCFS2_MOUNT_ERRORS_PANIC)
2530                 panic("OCFS2: (device %s): panic forced after error\n",
2531                       sb->s_id);
2532
2533         ocfs2_set_osb_flag(osb, OCFS2_OSB_ERROR_FS);
2534
2535         if (sb->s_flags & MS_RDONLY &&
2536             (ocfs2_is_soft_readonly(osb) ||
2537              ocfs2_is_hard_readonly(osb)))
2538                 return;
2539
2540         printk(KERN_CRIT "File system is now read-only due to the potential "
2541                "of on-disk corruption. Please run fsck.ocfs2 once the file "
2542                "system is unmounted.\n");
2543         sb->s_flags |= MS_RDONLY;
2544         ocfs2_set_ro_flag(osb, 0);
2545 }
2546
2547 static char error_buf[1024];
2548
2549 void __ocfs2_error(struct super_block *sb,
2550                    const char *function,
2551                    const char *fmt, ...)
2552 {
2553         va_list args;
2554
2555         va_start(args, fmt);
2556         vsnprintf(error_buf, sizeof(error_buf), fmt, args);
2557         va_end(args);
2558
2559         /* Not using mlog here because we want to show the actual
2560          * function the error came from. */
2561         printk(KERN_CRIT "OCFS2: ERROR (device %s): %s: %s\n",
2562                sb->s_id, function, error_buf);
2563
2564         ocfs2_handle_error(sb);
2565 }
2566
2567 /* Handle critical errors. This is intentionally more drastic than
2568  * ocfs2_handle_error, so we only use for things like journal errors,
2569  * etc. */
2570 void __ocfs2_abort(struct super_block* sb,
2571                    const char *function,
2572                    const char *fmt, ...)
2573 {
2574         va_list args;
2575
2576         va_start(args, fmt);
2577         vsnprintf(error_buf, sizeof(error_buf), fmt, args);
2578         va_end(args);
2579
2580         printk(KERN_CRIT "OCFS2: abort (device %s): %s: %s\n",
2581                sb->s_id, function, error_buf);
2582
2583         /* We don't have the cluster support yet to go straight to
2584          * hard readonly in here. Until then, we want to keep
2585          * ocfs2_abort() so that we can at least mark critical
2586          * errors.
2587          *
2588          * TODO: This should abort the journal and alert other nodes
2589          * that our slot needs recovery. */
2590
2591         /* Force a panic(). This stinks, but it's better than letting
2592          * things continue without having a proper hard readonly
2593          * here. */
2594         if (!ocfs2_mount_local(OCFS2_SB(sb)))
2595                 OCFS2_SB(sb)->s_mount_opt |= OCFS2_MOUNT_ERRORS_PANIC;
2596         ocfs2_handle_error(sb);
2597 }
2598
2599 /*
2600  * Void signal blockers, because in-kernel sigprocmask() only fails
2601  * when SIG_* is wrong.
2602  */
2603 void ocfs2_block_signals(sigset_t *oldset)
2604 {
2605         int rc;
2606         sigset_t blocked;
2607
2608         sigfillset(&blocked);
2609         rc = sigprocmask(SIG_BLOCK, &blocked, oldset);
2610         BUG_ON(rc);
2611 }
2612
2613 void ocfs2_unblock_signals(sigset_t *oldset)
2614 {
2615         int rc = sigprocmask(SIG_SETMASK, oldset, NULL);
2616         BUG_ON(rc);
2617 }
2618
2619 module_init(ocfs2_init);
2620 module_exit(ocfs2_exit);