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udf: Replace bkl with the UDF_I(inode)->i_data_sem for protect udf_inode_info struct
[mirror_ubuntu-jammy-kernel.git] / fs / udf / super.c
CommitLineData
1da177e4
LT
1/*
2 * super.c
3 *
4 * PURPOSE
5 * Super block routines for the OSTA-UDF(tm) filesystem.
6 *
7 * DESCRIPTION
8 * OSTA-UDF(tm) = Optical Storage Technology Association
9 * Universal Disk Format.
10 *
11 * This code is based on version 2.00 of the UDF specification,
12 * and revision 3 of the ECMA 167 standard [equivalent to ISO 13346].
13 * http://www.osta.org/
14 * http://www.ecma.ch/
15 * http://www.iso.org/
16 *
1da177e4
LT
17 * COPYRIGHT
18 * This file is distributed under the terms of the GNU General Public
19 * License (GPL). Copies of the GPL can be obtained from:
20 * ftp://prep.ai.mit.edu/pub/gnu/GPL
21 * Each contributing author retains all rights to their own work.
22 *
23 * (C) 1998 Dave Boynton
24 * (C) 1998-2004 Ben Fennema
25 * (C) 2000 Stelias Computing Inc
26 *
27 * HISTORY
28 *
29 * 09/24/98 dgb changed to allow compiling outside of kernel, and
30 * added some debugging.
31 * 10/01/98 dgb updated to allow (some) possibility of compiling w/2.0.34
32 * 10/16/98 attempting some multi-session support
33 * 10/17/98 added freespace count for "df"
34 * 11/11/98 gr added novrs option
35 * 11/26/98 dgb added fileset,anchor mount options
3a71fc5d
MS
36 * 12/06/98 blf really hosed things royally. vat/sparing support. sequenced
37 * vol descs. rewrote option handling based on isofs
1da177e4
LT
38 * 12/20/98 find the free space bitmap (if it exists)
39 */
40
cb00ea35 41#include "udfdecl.h"
1da177e4 42
1da177e4
LT
43#include <linux/blkdev.h>
44#include <linux/slab.h>
45#include <linux/kernel.h>
46#include <linux/module.h>
47#include <linux/parser.h>
48#include <linux/stat.h>
49#include <linux/cdrom.h>
50#include <linux/nls.h>
51#include <linux/smp_lock.h>
52#include <linux/buffer_head.h>
53#include <linux/vfs.h>
54#include <linux/vmalloc.h>
dc5d39be 55#include <linux/errno.h>
6da80894
MS
56#include <linux/mount.h>
57#include <linux/seq_file.h>
01b954a3 58#include <linux/bitmap.h>
f845fced 59#include <linux/crc-itu-t.h>
1da177e4
LT
60#include <asm/byteorder.h>
61
1da177e4
LT
62#include "udf_sb.h"
63#include "udf_i.h"
64
65#include <linux/init.h>
66#include <asm/uaccess.h>
67
68#define VDS_POS_PRIMARY_VOL_DESC 0
69#define VDS_POS_UNALLOC_SPACE_DESC 1
70#define VDS_POS_LOGICAL_VOL_DESC 2
71#define VDS_POS_PARTITION_DESC 3
72#define VDS_POS_IMP_USE_VOL_DESC 4
73#define VDS_POS_VOL_DESC_PTR 5
74#define VDS_POS_TERMINATING_DESC 6
75#define VDS_POS_LENGTH 7
76
6da80894
MS
77#define UDF_DEFAULT_BLOCKSIZE 2048
78
1da177e4
LT
79static char error_buf[1024];
80
81/* These are the "meat" - everything else is stuffing */
82static int udf_fill_super(struct super_block *, void *, int);
83static void udf_put_super(struct super_block *);
146bca72 84static int udf_sync_fs(struct super_block *, int);
1da177e4 85static int udf_remount_fs(struct super_block *, int *, char *);
5ca4e4be 86static void udf_load_logicalvolint(struct super_block *, struct kernel_extent_ad);
5ca4e4be
PE
87static int udf_find_fileset(struct super_block *, struct kernel_lb_addr *,
88 struct kernel_lb_addr *);
cb00ea35 89static void udf_load_fileset(struct super_block *, struct buffer_head *,
5ca4e4be 90 struct kernel_lb_addr *);
1da177e4
LT
91static void udf_open_lvid(struct super_block *);
92static void udf_close_lvid(struct super_block *);
93static unsigned int udf_count_free(struct super_block *);
726c3342 94static int udf_statfs(struct dentry *, struct kstatfs *);
6da80894 95static int udf_show_options(struct seq_file *, struct vfsmount *);
b8145a76
AB
96static void udf_error(struct super_block *sb, const char *function,
97 const char *fmt, ...);
1da177e4 98
6c79e987
MS
99struct logicalVolIntegrityDescImpUse *udf_sb_lvidiu(struct udf_sb_info *sbi)
100{
4b11111a
MS
101 struct logicalVolIntegrityDesc *lvid =
102 (struct logicalVolIntegrityDesc *)sbi->s_lvid_bh->b_data;
6c79e987 103 __u32 number_of_partitions = le32_to_cpu(lvid->numOfPartitions);
4b11111a
MS
104 __u32 offset = number_of_partitions * 2 *
105 sizeof(uint32_t)/sizeof(uint8_t);
6c79e987
MS
106 return (struct logicalVolIntegrityDescImpUse *)&(lvid->impUse[offset]);
107}
108
1da177e4 109/* UDF filesystem type */
152a0836
AV
110static struct dentry *udf_mount(struct file_system_type *fs_type,
111 int flags, const char *dev_name, void *data)
1da177e4 112{
152a0836 113 return mount_bdev(fs_type, flags, dev_name, data, udf_fill_super);
1da177e4
LT
114}
115
116static struct file_system_type udf_fstype = {
28de7948
CG
117 .owner = THIS_MODULE,
118 .name = "udf",
152a0836 119 .mount = udf_mount,
28de7948
CG
120 .kill_sb = kill_block_super,
121 .fs_flags = FS_REQUIRES_DEV,
1da177e4
LT
122};
123
cb00ea35 124static struct kmem_cache *udf_inode_cachep;
1da177e4
LT
125
126static struct inode *udf_alloc_inode(struct super_block *sb)
127{
128 struct udf_inode_info *ei;
3a71fc5d 129 ei = kmem_cache_alloc(udf_inode_cachep, GFP_KERNEL);
1da177e4
LT
130 if (!ei)
131 return NULL;
95f8797f
DB
132
133 ei->i_unique = 0;
134 ei->i_lenExtents = 0;
135 ei->i_next_alloc_block = 0;
136 ei->i_next_alloc_goal = 0;
137 ei->i_strat4096 = 0;
4d0fb621 138 init_rwsem(&ei->i_data_sem);
95f8797f 139
1da177e4
LT
140 return &ei->vfs_inode;
141}
142
143static void udf_destroy_inode(struct inode *inode)
144{
145 kmem_cache_free(udf_inode_cachep, UDF_I(inode));
146}
147
51cc5068 148static void init_once(void *foo)
1da177e4 149{
cb00ea35 150 struct udf_inode_info *ei = (struct udf_inode_info *)foo;
1da177e4 151
a35afb83
CL
152 ei->i_ext.i_data = NULL;
153 inode_init_once(&ei->vfs_inode);
1da177e4
LT
154}
155
156static int init_inodecache(void)
157{
158 udf_inode_cachep = kmem_cache_create("udf_inode_cache",
159 sizeof(struct udf_inode_info),
cb00ea35
CG
160 0, (SLAB_RECLAIM_ACCOUNT |
161 SLAB_MEM_SPREAD),
20c2df83 162 init_once);
28de7948 163 if (!udf_inode_cachep)
1da177e4
LT
164 return -ENOMEM;
165 return 0;
166}
167
168static void destroy_inodecache(void)
169{
1a1d92c1 170 kmem_cache_destroy(udf_inode_cachep);
1da177e4
LT
171}
172
173/* Superblock operations */
ee9b6d61 174static const struct super_operations udf_sb_ops = {
28de7948
CG
175 .alloc_inode = udf_alloc_inode,
176 .destroy_inode = udf_destroy_inode,
177 .write_inode = udf_write_inode,
3aac2b62 178 .evict_inode = udf_evict_inode,
28de7948 179 .put_super = udf_put_super,
146bca72 180 .sync_fs = udf_sync_fs,
28de7948
CG
181 .statfs = udf_statfs,
182 .remount_fs = udf_remount_fs,
6da80894 183 .show_options = udf_show_options,
1da177e4
LT
184};
185
cb00ea35 186struct udf_options {
1da177e4
LT
187 unsigned char novrs;
188 unsigned int blocksize;
189 unsigned int session;
190 unsigned int lastblock;
191 unsigned int anchor;
192 unsigned int volume;
193 unsigned short partition;
194 unsigned int fileset;
195 unsigned int rootdir;
196 unsigned int flags;
197 mode_t umask;
198 gid_t gid;
199 uid_t uid;
7ac9bcd5
MS
200 mode_t fmode;
201 mode_t dmode;
1da177e4
LT
202 struct nls_table *nls_map;
203};
204
205static int __init init_udf_fs(void)
206{
207 int err;
28de7948 208
1da177e4
LT
209 err = init_inodecache();
210 if (err)
211 goto out1;
212 err = register_filesystem(&udf_fstype);
213 if (err)
214 goto out;
28de7948 215
1da177e4 216 return 0;
28de7948
CG
217
218out:
1da177e4 219 destroy_inodecache();
28de7948
CG
220
221out1:
1da177e4
LT
222 return err;
223}
224
225static void __exit exit_udf_fs(void)
226{
227 unregister_filesystem(&udf_fstype);
228 destroy_inodecache();
229}
230
231module_init(init_udf_fs)
28de7948 232module_exit(exit_udf_fs)
1da177e4 233
dc5d39be
MS
234static int udf_sb_alloc_partition_maps(struct super_block *sb, u32 count)
235{
236 struct udf_sb_info *sbi = UDF_SB(sb);
237
238 sbi->s_partmaps = kcalloc(count, sizeof(struct udf_part_map),
239 GFP_KERNEL);
240 if (!sbi->s_partmaps) {
8e24eea7 241 udf_error(sb, __func__,
dc5d39be
MS
242 "Unable to allocate space for %d partition maps",
243 count);
244 sbi->s_partitions = 0;
245 return -ENOMEM;
246 }
247
248 sbi->s_partitions = count;
249 return 0;
250}
251
6da80894
MS
252static int udf_show_options(struct seq_file *seq, struct vfsmount *mnt)
253{
254 struct super_block *sb = mnt->mnt_sb;
255 struct udf_sb_info *sbi = UDF_SB(sb);
256
257 if (!UDF_QUERY_FLAG(sb, UDF_FLAG_STRICT))
258 seq_puts(seq, ",nostrict");
1197e4df 259 if (UDF_QUERY_FLAG(sb, UDF_FLAG_BLOCKSIZE_SET))
6da80894
MS
260 seq_printf(seq, ",bs=%lu", sb->s_blocksize);
261 if (UDF_QUERY_FLAG(sb, UDF_FLAG_UNHIDE))
262 seq_puts(seq, ",unhide");
263 if (UDF_QUERY_FLAG(sb, UDF_FLAG_UNDELETE))
264 seq_puts(seq, ",undelete");
265 if (!UDF_QUERY_FLAG(sb, UDF_FLAG_USE_AD_IN_ICB))
266 seq_puts(seq, ",noadinicb");
267 if (UDF_QUERY_FLAG(sb, UDF_FLAG_USE_SHORT_AD))
268 seq_puts(seq, ",shortad");
269 if (UDF_QUERY_FLAG(sb, UDF_FLAG_UID_FORGET))
270 seq_puts(seq, ",uid=forget");
271 if (UDF_QUERY_FLAG(sb, UDF_FLAG_UID_IGNORE))
272 seq_puts(seq, ",uid=ignore");
273 if (UDF_QUERY_FLAG(sb, UDF_FLAG_GID_FORGET))
274 seq_puts(seq, ",gid=forget");
275 if (UDF_QUERY_FLAG(sb, UDF_FLAG_GID_IGNORE))
276 seq_puts(seq, ",gid=ignore");
277 if (UDF_QUERY_FLAG(sb, UDF_FLAG_UID_SET))
278 seq_printf(seq, ",uid=%u", sbi->s_uid);
279 if (UDF_QUERY_FLAG(sb, UDF_FLAG_GID_SET))
280 seq_printf(seq, ",gid=%u", sbi->s_gid);
281 if (sbi->s_umask != 0)
282 seq_printf(seq, ",umask=%o", sbi->s_umask);
87bc730c 283 if (sbi->s_fmode != UDF_INVALID_MODE)
7ac9bcd5 284 seq_printf(seq, ",mode=%o", sbi->s_fmode);
87bc730c 285 if (sbi->s_dmode != UDF_INVALID_MODE)
7ac9bcd5 286 seq_printf(seq, ",dmode=%o", sbi->s_dmode);
6da80894
MS
287 if (UDF_QUERY_FLAG(sb, UDF_FLAG_SESSION_SET))
288 seq_printf(seq, ",session=%u", sbi->s_session);
289 if (UDF_QUERY_FLAG(sb, UDF_FLAG_LASTBLOCK_SET))
290 seq_printf(seq, ",lastblock=%u", sbi->s_last_block);
40346005
JK
291 if (sbi->s_anchor != 0)
292 seq_printf(seq, ",anchor=%u", sbi->s_anchor);
6da80894
MS
293 /*
294 * volume, partition, fileset and rootdir seem to be ignored
295 * currently
296 */
297 if (UDF_QUERY_FLAG(sb, UDF_FLAG_UTF8))
298 seq_puts(seq, ",utf8");
299 if (UDF_QUERY_FLAG(sb, UDF_FLAG_NLS_MAP) && sbi->s_nls_map)
300 seq_printf(seq, ",iocharset=%s", sbi->s_nls_map->charset);
301
302 return 0;
303}
304
1da177e4
LT
305/*
306 * udf_parse_options
307 *
308 * PURPOSE
309 * Parse mount options.
310 *
311 * DESCRIPTION
312 * The following mount options are supported:
313 *
314 * gid= Set the default group.
315 * umask= Set the default umask.
7ac9bcd5
MS
316 * mode= Set the default file permissions.
317 * dmode= Set the default directory permissions.
1da177e4
LT
318 * uid= Set the default user.
319 * bs= Set the block size.
320 * unhide Show otherwise hidden files.
321 * undelete Show deleted files in lists.
322 * adinicb Embed data in the inode (default)
323 * noadinicb Don't embed data in the inode
324 * shortad Use short ad's
325 * longad Use long ad's (default)
326 * nostrict Unset strict conformance
327 * iocharset= Set the NLS character set
328 *
329 * The remaining are for debugging and disaster recovery:
330 *
28de7948 331 * novrs Skip volume sequence recognition
1da177e4
LT
332 *
333 * The following expect a offset from 0.
334 *
335 * session= Set the CDROM session (default= last session)
336 * anchor= Override standard anchor location. (default= 256)
337 * volume= Override the VolumeDesc location. (unused)
338 * partition= Override the PartitionDesc location. (unused)
339 * lastblock= Set the last block of the filesystem/
340 *
341 * The following expect a offset from the partition root.
342 *
343 * fileset= Override the fileset block location. (unused)
344 * rootdir= Override the root directory location. (unused)
345 * WARNING: overriding the rootdir to a non-directory may
346 * yield highly unpredictable results.
347 *
348 * PRE-CONDITIONS
349 * options Pointer to mount options string.
350 * uopts Pointer to mount options variable.
351 *
352 * POST-CONDITIONS
353 * <return> 1 Mount options parsed okay.
354 * <return> 0 Error parsing mount options.
355 *
356 * HISTORY
357 * July 1, 1997 - Andrew E. Mileski
358 * Written, tested, and released.
359 */
28de7948 360
1da177e4
LT
361enum {
362 Opt_novrs, Opt_nostrict, Opt_bs, Opt_unhide, Opt_undelete,
363 Opt_noadinicb, Opt_adinicb, Opt_shortad, Opt_longad,
364 Opt_gid, Opt_uid, Opt_umask, Opt_session, Opt_lastblock,
365 Opt_anchor, Opt_volume, Opt_partition, Opt_fileset,
366 Opt_rootdir, Opt_utf8, Opt_iocharset,
7ac9bcd5
MS
367 Opt_err, Opt_uforget, Opt_uignore, Opt_gforget, Opt_gignore,
368 Opt_fmode, Opt_dmode
1da177e4
LT
369};
370
a447c093 371static const match_table_t tokens = {
28de7948
CG
372 {Opt_novrs, "novrs"},
373 {Opt_nostrict, "nostrict"},
374 {Opt_bs, "bs=%u"},
375 {Opt_unhide, "unhide"},
376 {Opt_undelete, "undelete"},
377 {Opt_noadinicb, "noadinicb"},
378 {Opt_adinicb, "adinicb"},
379 {Opt_shortad, "shortad"},
380 {Opt_longad, "longad"},
381 {Opt_uforget, "uid=forget"},
382 {Opt_uignore, "uid=ignore"},
383 {Opt_gforget, "gid=forget"},
384 {Opt_gignore, "gid=ignore"},
385 {Opt_gid, "gid=%u"},
386 {Opt_uid, "uid=%u"},
387 {Opt_umask, "umask=%o"},
388 {Opt_session, "session=%u"},
389 {Opt_lastblock, "lastblock=%u"},
390 {Opt_anchor, "anchor=%u"},
391 {Opt_volume, "volume=%u"},
392 {Opt_partition, "partition=%u"},
393 {Opt_fileset, "fileset=%u"},
394 {Opt_rootdir, "rootdir=%u"},
395 {Opt_utf8, "utf8"},
396 {Opt_iocharset, "iocharset=%s"},
7ac9bcd5
MS
397 {Opt_fmode, "mode=%o"},
398 {Opt_dmode, "dmode=%o"},
28de7948 399 {Opt_err, NULL}
1da177e4
LT
400};
401
6da80894
MS
402static int udf_parse_options(char *options, struct udf_options *uopt,
403 bool remount)
1da177e4
LT
404{
405 char *p;
406 int option;
407
408 uopt->novrs = 0;
1da177e4
LT
409 uopt->partition = 0xFFFF;
410 uopt->session = 0xFFFFFFFF;
411 uopt->lastblock = 0;
412 uopt->anchor = 0;
413 uopt->volume = 0xFFFFFFFF;
414 uopt->rootdir = 0xFFFFFFFF;
415 uopt->fileset = 0xFFFFFFFF;
416 uopt->nls_map = NULL;
417
418 if (!options)
419 return 1;
420
cb00ea35 421 while ((p = strsep(&options, ",")) != NULL) {
1da177e4
LT
422 substring_t args[MAX_OPT_ARGS];
423 int token;
424 if (!*p)
425 continue;
426
427 token = match_token(p, tokens, args);
cb00ea35
CG
428 switch (token) {
429 case Opt_novrs:
430 uopt->novrs = 1;
4136801a 431 break;
cb00ea35
CG
432 case Opt_bs:
433 if (match_int(&args[0], &option))
434 return 0;
435 uopt->blocksize = option;
1197e4df 436 uopt->flags |= (1 << UDF_FLAG_BLOCKSIZE_SET);
cb00ea35
CG
437 break;
438 case Opt_unhide:
439 uopt->flags |= (1 << UDF_FLAG_UNHIDE);
440 break;
441 case Opt_undelete:
442 uopt->flags |= (1 << UDF_FLAG_UNDELETE);
443 break;
444 case Opt_noadinicb:
445 uopt->flags &= ~(1 << UDF_FLAG_USE_AD_IN_ICB);
446 break;
447 case Opt_adinicb:
448 uopt->flags |= (1 << UDF_FLAG_USE_AD_IN_ICB);
449 break;
450 case Opt_shortad:
451 uopt->flags |= (1 << UDF_FLAG_USE_SHORT_AD);
452 break;
453 case Opt_longad:
454 uopt->flags &= ~(1 << UDF_FLAG_USE_SHORT_AD);
455 break;
456 case Opt_gid:
457 if (match_int(args, &option))
458 return 0;
459 uopt->gid = option;
ca76d2d8 460 uopt->flags |= (1 << UDF_FLAG_GID_SET);
cb00ea35
CG
461 break;
462 case Opt_uid:
463 if (match_int(args, &option))
464 return 0;
465 uopt->uid = option;
ca76d2d8 466 uopt->flags |= (1 << UDF_FLAG_UID_SET);
cb00ea35
CG
467 break;
468 case Opt_umask:
469 if (match_octal(args, &option))
470 return 0;
471 uopt->umask = option;
472 break;
473 case Opt_nostrict:
474 uopt->flags &= ~(1 << UDF_FLAG_STRICT);
475 break;
476 case Opt_session:
477 if (match_int(args, &option))
478 return 0;
479 uopt->session = option;
6da80894
MS
480 if (!remount)
481 uopt->flags |= (1 << UDF_FLAG_SESSION_SET);
cb00ea35
CG
482 break;
483 case Opt_lastblock:
484 if (match_int(args, &option))
485 return 0;
486 uopt->lastblock = option;
6da80894
MS
487 if (!remount)
488 uopt->flags |= (1 << UDF_FLAG_LASTBLOCK_SET);
cb00ea35
CG
489 break;
490 case Opt_anchor:
491 if (match_int(args, &option))
492 return 0;
493 uopt->anchor = option;
494 break;
495 case Opt_volume:
496 if (match_int(args, &option))
497 return 0;
498 uopt->volume = option;
499 break;
500 case Opt_partition:
501 if (match_int(args, &option))
502 return 0;
503 uopt->partition = option;
504 break;
505 case Opt_fileset:
506 if (match_int(args, &option))
507 return 0;
508 uopt->fileset = option;
509 break;
510 case Opt_rootdir:
511 if (match_int(args, &option))
512 return 0;
513 uopt->rootdir = option;
514 break;
515 case Opt_utf8:
516 uopt->flags |= (1 << UDF_FLAG_UTF8);
517 break;
1da177e4 518#ifdef CONFIG_UDF_NLS
cb00ea35
CG
519 case Opt_iocharset:
520 uopt->nls_map = load_nls(args[0].from);
521 uopt->flags |= (1 << UDF_FLAG_NLS_MAP);
522 break;
1da177e4 523#endif
cb00ea35
CG
524 case Opt_uignore:
525 uopt->flags |= (1 << UDF_FLAG_UID_IGNORE);
526 break;
527 case Opt_uforget:
528 uopt->flags |= (1 << UDF_FLAG_UID_FORGET);
529 break;
530 case Opt_gignore:
531 uopt->flags |= (1 << UDF_FLAG_GID_IGNORE);
532 break;
533 case Opt_gforget:
534 uopt->flags |= (1 << UDF_FLAG_GID_FORGET);
535 break;
7ac9bcd5
MS
536 case Opt_fmode:
537 if (match_octal(args, &option))
538 return 0;
539 uopt->fmode = option & 0777;
540 break;
541 case Opt_dmode:
542 if (match_octal(args, &option))
543 return 0;
544 uopt->dmode = option & 0777;
545 break;
cb00ea35
CG
546 default:
547 printk(KERN_ERR "udf: bad mount option \"%s\" "
548 "or missing value\n", p);
1da177e4
LT
549 return 0;
550 }
551 }
552 return 1;
553}
554
cb00ea35 555static int udf_remount_fs(struct super_block *sb, int *flags, char *options)
1da177e4
LT
556{
557 struct udf_options uopt;
6c79e987 558 struct udf_sb_info *sbi = UDF_SB(sb);
c79d967d 559 int error = 0;
1da177e4 560
6c79e987
MS
561 uopt.flags = sbi->s_flags;
562 uopt.uid = sbi->s_uid;
563 uopt.gid = sbi->s_gid;
564 uopt.umask = sbi->s_umask;
7ac9bcd5
MS
565 uopt.fmode = sbi->s_fmode;
566 uopt.dmode = sbi->s_dmode;
1da177e4 567
6da80894 568 if (!udf_parse_options(options, &uopt, true))
1da177e4
LT
569 return -EINVAL;
570
c03cad24 571 write_lock(&sbi->s_cred_lock);
6c79e987
MS
572 sbi->s_flags = uopt.flags;
573 sbi->s_uid = uopt.uid;
574 sbi->s_gid = uopt.gid;
575 sbi->s_umask = uopt.umask;
7ac9bcd5
MS
576 sbi->s_fmode = uopt.fmode;
577 sbi->s_dmode = uopt.dmode;
c03cad24 578 write_unlock(&sbi->s_cred_lock);
1da177e4 579
6c79e987
MS
580 if (sbi->s_lvid_bh) {
581 int write_rev = le16_to_cpu(udf_sb_lvidiu(sbi)->minUDFWriteRev);
1da177e4
LT
582 if (write_rev > UDF_MAX_WRITE_VERSION)
583 *flags |= MS_RDONLY;
584 }
585
c79d967d
CH
586 if ((*flags & MS_RDONLY) == (sb->s_flags & MS_RDONLY))
587 goto out_unlock;
588
36350462 589 if (*flags & MS_RDONLY)
1da177e4 590 udf_close_lvid(sb);
36350462 591 else
1da177e4
LT
592 udf_open_lvid(sb);
593
c79d967d 594out_unlock:
c79d967d 595 return error;
1da177e4
LT
596}
597
40346005
JK
598/* Check Volume Structure Descriptors (ECMA 167 2/9.1) */
599/* We also check any "CD-ROM Volume Descriptor Set" (ECMA 167 2/8.3.1) */
600static loff_t udf_check_vsd(struct super_block *sb)
1da177e4
LT
601{
602 struct volStructDesc *vsd = NULL;
f4bcbbd9 603 loff_t sector = 32768;
1da177e4
LT
604 int sectorsize;
605 struct buffer_head *bh = NULL;
cb00ea35
CG
606 int nsr02 = 0;
607 int nsr03 = 0;
6c79e987 608 struct udf_sb_info *sbi;
1da177e4 609
6c79e987 610 sbi = UDF_SB(sb);
1da177e4
LT
611 if (sb->s_blocksize < sizeof(struct volStructDesc))
612 sectorsize = sizeof(struct volStructDesc);
613 else
614 sectorsize = sb->s_blocksize;
615
6c79e987 616 sector += (sbi->s_session << sb->s_blocksize_bits);
1da177e4
LT
617
618 udf_debug("Starting at sector %u (%ld byte sectors)\n",
706047a7
SM
619 (unsigned int)(sector >> sb->s_blocksize_bits),
620 sb->s_blocksize);
1da177e4 621 /* Process the sequence (if applicable) */
cb00ea35 622 for (; !nsr02 && !nsr03; sector += sectorsize) {
1da177e4
LT
623 /* Read a block */
624 bh = udf_tread(sb, sector >> sb->s_blocksize_bits);
625 if (!bh)
626 break;
627
628 /* Look for ISO descriptors */
629 vsd = (struct volStructDesc *)(bh->b_data +
3a71fc5d 630 (sector & (sb->s_blocksize - 1)));
1da177e4 631
cb00ea35 632 if (vsd->stdIdent[0] == 0) {
3bf25cb4 633 brelse(bh);
1da177e4 634 break;
3a71fc5d
MS
635 } else if (!strncmp(vsd->stdIdent, VSD_STD_ID_CD001,
636 VSD_STD_ID_LEN)) {
cb00ea35
CG
637 switch (vsd->structType) {
638 case 0:
639 udf_debug("ISO9660 Boot Record found\n");
640 break;
641 case 1:
3a71fc5d
MS
642 udf_debug("ISO9660 Primary Volume Descriptor "
643 "found\n");
cb00ea35
CG
644 break;
645 case 2:
3a71fc5d
MS
646 udf_debug("ISO9660 Supplementary Volume "
647 "Descriptor found\n");
cb00ea35
CG
648 break;
649 case 3:
3a71fc5d
MS
650 udf_debug("ISO9660 Volume Partition Descriptor "
651 "found\n");
cb00ea35
CG
652 break;
653 case 255:
3a71fc5d
MS
654 udf_debug("ISO9660 Volume Descriptor Set "
655 "Terminator found\n");
cb00ea35
CG
656 break;
657 default:
658 udf_debug("ISO9660 VRS (%u) found\n",
659 vsd->structType);
660 break;
1da177e4 661 }
3a71fc5d
MS
662 } else if (!strncmp(vsd->stdIdent, VSD_STD_ID_BEA01,
663 VSD_STD_ID_LEN))
664 ; /* nothing */
665 else if (!strncmp(vsd->stdIdent, VSD_STD_ID_TEA01,
666 VSD_STD_ID_LEN)) {
3bf25cb4 667 brelse(bh);
1da177e4 668 break;
3a71fc5d
MS
669 } else if (!strncmp(vsd->stdIdent, VSD_STD_ID_NSR02,
670 VSD_STD_ID_LEN))
1da177e4 671 nsr02 = sector;
3a71fc5d
MS
672 else if (!strncmp(vsd->stdIdent, VSD_STD_ID_NSR03,
673 VSD_STD_ID_LEN))
1da177e4 674 nsr03 = sector;
3bf25cb4 675 brelse(bh);
1da177e4
LT
676 }
677
678 if (nsr03)
679 return nsr03;
680 else if (nsr02)
681 return nsr02;
6c79e987 682 else if (sector - (sbi->s_session << sb->s_blocksize_bits) == 32768)
1da177e4
LT
683 return -1;
684 else
685 return 0;
686}
687
3a71fc5d 688static int udf_find_fileset(struct super_block *sb,
5ca4e4be
PE
689 struct kernel_lb_addr *fileset,
690 struct kernel_lb_addr *root)
1da177e4
LT
691{
692 struct buffer_head *bh = NULL;
693 long lastblock;
694 uint16_t ident;
6c79e987 695 struct udf_sb_info *sbi;
1da177e4
LT
696
697 if (fileset->logicalBlockNum != 0xFFFFFFFF ||
cb00ea35 698 fileset->partitionReferenceNum != 0xFFFF) {
97e961fd 699 bh = udf_read_ptagged(sb, fileset, 0, &ident);
1da177e4 700
28de7948 701 if (!bh) {
1da177e4 702 return 1;
28de7948 703 } else if (ident != TAG_IDENT_FSD) {
3bf25cb4 704 brelse(bh);
1da177e4
LT
705 return 1;
706 }
cb00ea35 707
1da177e4
LT
708 }
709
6c79e987 710 sbi = UDF_SB(sb);
3a71fc5d
MS
711 if (!bh) {
712 /* Search backwards through the partitions */
5ca4e4be 713 struct kernel_lb_addr newfileset;
1da177e4 714
28de7948 715/* --> cvg: FIXME - is it reasonable? */
1da177e4 716 return 1;
cb00ea35 717
6c79e987 718 for (newfileset.partitionReferenceNum = sbi->s_partitions - 1;
cb00ea35
CG
719 (newfileset.partitionReferenceNum != 0xFFFF &&
720 fileset->logicalBlockNum == 0xFFFFFFFF &&
721 fileset->partitionReferenceNum == 0xFFFF);
722 newfileset.partitionReferenceNum--) {
6c79e987
MS
723 lastblock = sbi->s_partmaps
724 [newfileset.partitionReferenceNum]
725 .s_partition_len;
1da177e4
LT
726 newfileset.logicalBlockNum = 0;
727
cb00ea35 728 do {
97e961fd 729 bh = udf_read_ptagged(sb, &newfileset, 0,
3a71fc5d 730 &ident);
cb00ea35
CG
731 if (!bh) {
732 newfileset.logicalBlockNum++;
1da177e4
LT
733 continue;
734 }
735
cb00ea35
CG
736 switch (ident) {
737 case TAG_IDENT_SBD:
28de7948
CG
738 {
739 struct spaceBitmapDesc *sp;
4b11111a
MS
740 sp = (struct spaceBitmapDesc *)
741 bh->b_data;
28de7948
CG
742 newfileset.logicalBlockNum += 1 +
743 ((le32_to_cpu(sp->numOfBytes) +
4b11111a
MS
744 sizeof(struct spaceBitmapDesc)
745 - 1) >> sb->s_blocksize_bits);
28de7948
CG
746 brelse(bh);
747 break;
748 }
cb00ea35 749 case TAG_IDENT_FSD:
28de7948
CG
750 *fileset = newfileset;
751 break;
cb00ea35 752 default:
28de7948
CG
753 newfileset.logicalBlockNum++;
754 brelse(bh);
755 bh = NULL;
756 break;
1da177e4 757 }
28de7948
CG
758 } while (newfileset.logicalBlockNum < lastblock &&
759 fileset->logicalBlockNum == 0xFFFFFFFF &&
760 fileset->partitionReferenceNum == 0xFFFF);
1da177e4
LT
761 }
762 }
763
764 if ((fileset->logicalBlockNum != 0xFFFFFFFF ||
cb00ea35 765 fileset->partitionReferenceNum != 0xFFFF) && bh) {
1da177e4 766 udf_debug("Fileset at block=%d, partition=%d\n",
cb00ea35
CG
767 fileset->logicalBlockNum,
768 fileset->partitionReferenceNum);
1da177e4 769
6c79e987 770 sbi->s_partition = fileset->partitionReferenceNum;
1da177e4 771 udf_load_fileset(sb, bh, root);
3bf25cb4 772 brelse(bh);
1da177e4
LT
773 return 0;
774 }
775 return 1;
776}
777
c0eb31ed 778static int udf_load_pvoldesc(struct super_block *sb, sector_t block)
1da177e4
LT
779{
780 struct primaryVolDesc *pvoldesc;
ba9aadd8 781 struct ustr *instr, *outstr;
c0eb31ed
JK
782 struct buffer_head *bh;
783 uint16_t ident;
ba9aadd8
MS
784 int ret = 1;
785
786 instr = kmalloc(sizeof(struct ustr), GFP_NOFS);
787 if (!instr)
788 return 1;
789
790 outstr = kmalloc(sizeof(struct ustr), GFP_NOFS);
791 if (!outstr)
792 goto out1;
c0eb31ed
JK
793
794 bh = udf_read_tagged(sb, block, block, &ident);
795 if (!bh)
ba9aadd8
MS
796 goto out2;
797
c0eb31ed 798 BUG_ON(ident != TAG_IDENT_PVD);
1da177e4
LT
799
800 pvoldesc = (struct primaryVolDesc *)bh->b_data;
801
56774805
MS
802 if (udf_disk_stamp_to_time(&UDF_SB(sb)->s_record_time,
803 pvoldesc->recordingDateAndTime)) {
af15a298 804#ifdef UDFFS_DEBUG
5ca4e4be 805 struct timestamp *ts = &pvoldesc->recordingDateAndTime;
cbf5676a 806 udf_debug("recording time %04u/%02u/%02u"
3a71fc5d 807 " %02u:%02u (%x)\n",
af15a298
MS
808 le16_to_cpu(ts->year), ts->month, ts->day, ts->hour,
809 ts->minute, le16_to_cpu(ts->typeAndTimezone));
810#endif
1da177e4
LT
811 }
812
ba9aadd8
MS
813 if (!udf_build_ustr(instr, pvoldesc->volIdent, 32))
814 if (udf_CS0toUTF8(outstr, instr)) {
815 strncpy(UDF_SB(sb)->s_volume_ident, outstr->u_name,
816 outstr->u_len > 31 ? 31 : outstr->u_len);
4b11111a
MS
817 udf_debug("volIdent[] = '%s'\n",
818 UDF_SB(sb)->s_volume_ident);
1da177e4 819 }
1da177e4 820
ba9aadd8
MS
821 if (!udf_build_ustr(instr, pvoldesc->volSetIdent, 128))
822 if (udf_CS0toUTF8(outstr, instr))
823 udf_debug("volSetIdent[] = '%s'\n", outstr->u_name);
c0eb31ed
JK
824
825 brelse(bh);
ba9aadd8
MS
826 ret = 0;
827out2:
828 kfree(outstr);
829out1:
830 kfree(instr);
831 return ret;
1da177e4
LT
832}
833
bfb257a5
JK
834static int udf_load_metadata_files(struct super_block *sb, int partition)
835{
836 struct udf_sb_info *sbi = UDF_SB(sb);
837 struct udf_part_map *map;
838 struct udf_meta_data *mdata;
5ca4e4be 839 struct kernel_lb_addr addr;
bfb257a5
JK
840 int fe_error = 0;
841
842 map = &sbi->s_partmaps[partition];
843 mdata = &map->s_type_specific.s_metadata;
844
845 /* metadata address */
846 addr.logicalBlockNum = mdata->s_meta_file_loc;
847 addr.partitionReferenceNum = map->s_partition_num;
848
849 udf_debug("Metadata file location: block = %d part = %d\n",
850 addr.logicalBlockNum, addr.partitionReferenceNum);
851
97e961fd 852 mdata->s_metadata_fe = udf_iget(sb, &addr);
bfb257a5
JK
853
854 if (mdata->s_metadata_fe == NULL) {
855 udf_warning(sb, __func__, "metadata inode efe not found, "
856 "will try mirror inode.");
857 fe_error = 1;
858 } else if (UDF_I(mdata->s_metadata_fe)->i_alloc_type !=
859 ICBTAG_FLAG_AD_SHORT) {
860 udf_warning(sb, __func__, "metadata inode efe does not have "
861 "short allocation descriptors!");
862 fe_error = 1;
863 iput(mdata->s_metadata_fe);
864 mdata->s_metadata_fe = NULL;
865 }
866
867 /* mirror file entry */
868 addr.logicalBlockNum = mdata->s_mirror_file_loc;
869 addr.partitionReferenceNum = map->s_partition_num;
870
871 udf_debug("Mirror metadata file location: block = %d part = %d\n",
872 addr.logicalBlockNum, addr.partitionReferenceNum);
873
97e961fd 874 mdata->s_mirror_fe = udf_iget(sb, &addr);
bfb257a5
JK
875
876 if (mdata->s_mirror_fe == NULL) {
877 if (fe_error) {
878 udf_error(sb, __func__, "mirror inode efe not found "
879 "and metadata inode is missing too, exiting...");
880 goto error_exit;
881 } else
882 udf_warning(sb, __func__, "mirror inode efe not found,"
883 " but metadata inode is OK");
884 } else if (UDF_I(mdata->s_mirror_fe)->i_alloc_type !=
885 ICBTAG_FLAG_AD_SHORT) {
886 udf_warning(sb, __func__, "mirror inode efe does not have "
887 "short allocation descriptors!");
888 iput(mdata->s_mirror_fe);
889 mdata->s_mirror_fe = NULL;
890 if (fe_error)
891 goto error_exit;
892 }
893
894 /*
895 * bitmap file entry
896 * Note:
897 * Load only if bitmap file location differs from 0xFFFFFFFF (DCN-5102)
898 */
899 if (mdata->s_bitmap_file_loc != 0xFFFFFFFF) {
900 addr.logicalBlockNum = mdata->s_bitmap_file_loc;
901 addr.partitionReferenceNum = map->s_partition_num;
902
903 udf_debug("Bitmap file location: block = %d part = %d\n",
904 addr.logicalBlockNum, addr.partitionReferenceNum);
905
97e961fd 906 mdata->s_bitmap_fe = udf_iget(sb, &addr);
bfb257a5
JK
907
908 if (mdata->s_bitmap_fe == NULL) {
909 if (sb->s_flags & MS_RDONLY)
910 udf_warning(sb, __func__, "bitmap inode efe "
911 "not found but it's ok since the disc"
912 " is mounted read-only");
913 else {
914 udf_error(sb, __func__, "bitmap inode efe not "
915 "found and attempted read-write mount");
916 goto error_exit;
917 }
918 }
919 }
920
921 udf_debug("udf_load_metadata_files Ok\n");
922
923 return 0;
924
925error_exit:
926 return 1;
927}
928
28de7948 929static void udf_load_fileset(struct super_block *sb, struct buffer_head *bh,
5ca4e4be 930 struct kernel_lb_addr *root)
1da177e4
LT
931{
932 struct fileSetDesc *fset;
933
934 fset = (struct fileSetDesc *)bh->b_data;
935
936 *root = lelb_to_cpu(fset->rootDirectoryICB.extLocation);
937
6c79e987 938 UDF_SB(sb)->s_serial_number = le16_to_cpu(fset->descTag.tagSerialNum);
1da177e4 939
cb00ea35
CG
940 udf_debug("Rootdir at block=%d, partition=%d\n",
941 root->logicalBlockNum, root->partitionReferenceNum);
1da177e4
LT
942}
943
883cb9d1
MS
944int udf_compute_nr_groups(struct super_block *sb, u32 partition)
945{
946 struct udf_part_map *map = &UDF_SB(sb)->s_partmaps[partition];
8dee00bb
JL
947 return DIV_ROUND_UP(map->s_partition_len +
948 (sizeof(struct spaceBitmapDesc) << 3),
949 sb->s_blocksize * 8);
883cb9d1
MS
950}
951
66e1da3f
MS
952static struct udf_bitmap *udf_sb_alloc_bitmap(struct super_block *sb, u32 index)
953{
66e1da3f
MS
954 struct udf_bitmap *bitmap;
955 int nr_groups;
956 int size;
957
883cb9d1 958 nr_groups = udf_compute_nr_groups(sb, index);
66e1da3f
MS
959 size = sizeof(struct udf_bitmap) +
960 (sizeof(struct buffer_head *) * nr_groups);
961
962 if (size <= PAGE_SIZE)
ed2ae6f6 963 bitmap = kzalloc(size, GFP_KERNEL);
66e1da3f 964 else
ed2ae6f6 965 bitmap = vzalloc(size); /* TODO: get rid of vzalloc */
66e1da3f
MS
966
967 if (bitmap == NULL) {
8e24eea7 968 udf_error(sb, __func__,
66e1da3f
MS
969 "Unable to allocate space for bitmap "
970 "and %d buffer_head pointers", nr_groups);
971 return NULL;
972 }
973
66e1da3f
MS
974 bitmap->s_block_bitmap = (struct buffer_head **)(bitmap + 1);
975 bitmap->s_nr_groups = nr_groups;
976 return bitmap;
977}
978
3fb38dfa
JK
979static int udf_fill_partdesc_info(struct super_block *sb,
980 struct partitionDesc *p, int p_index)
1da177e4 981{
6c79e987 982 struct udf_part_map *map;
165923fa 983 struct udf_sb_info *sbi = UDF_SB(sb);
3fb38dfa 984 struct partitionHeaderDesc *phd;
165923fa 985
3fb38dfa 986 map = &sbi->s_partmaps[p_index];
165923fa
MS
987
988 map->s_partition_len = le32_to_cpu(p->partitionLength); /* blocks */
989 map->s_partition_root = le32_to_cpu(p->partitionStartingLocation);
990
991 if (p->accessType == cpu_to_le32(PD_ACCESS_TYPE_READ_ONLY))
992 map->s_partition_flags |= UDF_PART_FLAG_READ_ONLY;
993 if (p->accessType == cpu_to_le32(PD_ACCESS_TYPE_WRITE_ONCE))
994 map->s_partition_flags |= UDF_PART_FLAG_WRITE_ONCE;
995 if (p->accessType == cpu_to_le32(PD_ACCESS_TYPE_REWRITABLE))
996 map->s_partition_flags |= UDF_PART_FLAG_REWRITABLE;
997 if (p->accessType == cpu_to_le32(PD_ACCESS_TYPE_OVERWRITABLE))
998 map->s_partition_flags |= UDF_PART_FLAG_OVERWRITABLE;
999
706047a7
SM
1000 udf_debug("Partition (%d type %x) starts at physical %d, "
1001 "block length %d\n", p_index,
165923fa
MS
1002 map->s_partition_type, map->s_partition_root,
1003 map->s_partition_len);
1004
1005 if (strcmp(p->partitionContents.ident, PD_PARTITION_CONTENTS_NSR02) &&
1006 strcmp(p->partitionContents.ident, PD_PARTITION_CONTENTS_NSR03))
3fb38dfa 1007 return 0;
165923fa
MS
1008
1009 phd = (struct partitionHeaderDesc *)p->partitionContentsUse;
1010 if (phd->unallocSpaceTable.extLength) {
5ca4e4be 1011 struct kernel_lb_addr loc = {
165923fa
MS
1012 .logicalBlockNum = le32_to_cpu(
1013 phd->unallocSpaceTable.extPosition),
3fb38dfa 1014 .partitionReferenceNum = p_index,
165923fa
MS
1015 };
1016
97e961fd 1017 map->s_uspace.s_table = udf_iget(sb, &loc);
165923fa
MS
1018 if (!map->s_uspace.s_table) {
1019 udf_debug("cannot load unallocSpaceTable (part %d)\n",
3fb38dfa
JK
1020 p_index);
1021 return 1;
165923fa
MS
1022 }
1023 map->s_partition_flags |= UDF_PART_FLAG_UNALLOC_TABLE;
1024 udf_debug("unallocSpaceTable (part %d) @ %ld\n",
3fb38dfa 1025 p_index, map->s_uspace.s_table->i_ino);
165923fa
MS
1026 }
1027
1028 if (phd->unallocSpaceBitmap.extLength) {
3fb38dfa
JK
1029 struct udf_bitmap *bitmap = udf_sb_alloc_bitmap(sb, p_index);
1030 if (!bitmap)
1031 return 1;
165923fa 1032 map->s_uspace.s_bitmap = bitmap;
2e0838fd 1033 bitmap->s_extLength = le32_to_cpu(
165923fa 1034 phd->unallocSpaceBitmap.extLength);
2e0838fd 1035 bitmap->s_extPosition = le32_to_cpu(
165923fa 1036 phd->unallocSpaceBitmap.extPosition);
2e0838fd 1037 map->s_partition_flags |= UDF_PART_FLAG_UNALLOC_BITMAP;
3fb38dfa 1038 udf_debug("unallocSpaceBitmap (part %d) @ %d\n", p_index,
2e0838fd 1039 bitmap->s_extPosition);
165923fa
MS
1040 }
1041
1042 if (phd->partitionIntegrityTable.extLength)
3fb38dfa 1043 udf_debug("partitionIntegrityTable (part %d)\n", p_index);
165923fa
MS
1044
1045 if (phd->freedSpaceTable.extLength) {
5ca4e4be 1046 struct kernel_lb_addr loc = {
165923fa
MS
1047 .logicalBlockNum = le32_to_cpu(
1048 phd->freedSpaceTable.extPosition),
3fb38dfa 1049 .partitionReferenceNum = p_index,
165923fa
MS
1050 };
1051
97e961fd 1052 map->s_fspace.s_table = udf_iget(sb, &loc);
165923fa 1053 if (!map->s_fspace.s_table) {
3fb38dfa
JK
1054 udf_debug("cannot load freedSpaceTable (part %d)\n",
1055 p_index);
1056 return 1;
165923fa
MS
1057 }
1058
1059 map->s_partition_flags |= UDF_PART_FLAG_FREED_TABLE;
1060 udf_debug("freedSpaceTable (part %d) @ %ld\n",
3fb38dfa 1061 p_index, map->s_fspace.s_table->i_ino);
165923fa
MS
1062 }
1063
1064 if (phd->freedSpaceBitmap.extLength) {
3fb38dfa
JK
1065 struct udf_bitmap *bitmap = udf_sb_alloc_bitmap(sb, p_index);
1066 if (!bitmap)
1067 return 1;
165923fa 1068 map->s_fspace.s_bitmap = bitmap;
2e0838fd 1069 bitmap->s_extLength = le32_to_cpu(
165923fa 1070 phd->freedSpaceBitmap.extLength);
2e0838fd 1071 bitmap->s_extPosition = le32_to_cpu(
165923fa 1072 phd->freedSpaceBitmap.extPosition);
2e0838fd 1073 map->s_partition_flags |= UDF_PART_FLAG_FREED_BITMAP;
3fb38dfa 1074 udf_debug("freedSpaceBitmap (part %d) @ %d\n", p_index,
2e0838fd 1075 bitmap->s_extPosition);
165923fa 1076 }
3fb38dfa
JK
1077 return 0;
1078}
1079
e971b0b9
JK
1080static void udf_find_vat_block(struct super_block *sb, int p_index,
1081 int type1_index, sector_t start_block)
38b74a53
JK
1082{
1083 struct udf_sb_info *sbi = UDF_SB(sb);
1084 struct udf_part_map *map = &sbi->s_partmaps[p_index];
e971b0b9 1085 sector_t vat_block;
5ca4e4be 1086 struct kernel_lb_addr ino;
e971b0b9
JK
1087
1088 /*
1089 * VAT file entry is in the last recorded block. Some broken disks have
1090 * it a few blocks before so try a bit harder...
1091 */
1092 ino.partitionReferenceNum = type1_index;
1093 for (vat_block = start_block;
1094 vat_block >= map->s_partition_root &&
1095 vat_block >= start_block - 3 &&
1096 !sbi->s_vat_inode; vat_block--) {
1097 ino.logicalBlockNum = vat_block - map->s_partition_root;
1098 sbi->s_vat_inode = udf_iget(sb, &ino);
1099 }
1100}
1101
1102static int udf_load_vat(struct super_block *sb, int p_index, int type1_index)
1103{
1104 struct udf_sb_info *sbi = UDF_SB(sb);
1105 struct udf_part_map *map = &sbi->s_partmaps[p_index];
fa5e0815
JK
1106 struct buffer_head *bh = NULL;
1107 struct udf_inode_info *vati;
1108 uint32_t pos;
1109 struct virtualAllocationTable20 *vat20;
4bf17af0 1110 sector_t blocks = sb->s_bdev->bd_inode->i_size >> sb->s_blocksize_bits;
38b74a53 1111
e971b0b9 1112 udf_find_vat_block(sb, p_index, type1_index, sbi->s_last_block);
4bf17af0
JK
1113 if (!sbi->s_vat_inode &&
1114 sbi->s_last_block != blocks - 1) {
1115 printk(KERN_NOTICE "UDF-fs: Failed to read VAT inode from the"
1116 " last recorded block (%lu), retrying with the last "
1117 "block of the device (%lu).\n",
1118 (unsigned long)sbi->s_last_block,
1119 (unsigned long)blocks - 1);
e971b0b9 1120 udf_find_vat_block(sb, p_index, type1_index, blocks - 1);
4bf17af0 1121 }
38b74a53
JK
1122 if (!sbi->s_vat_inode)
1123 return 1;
1124
1125 if (map->s_partition_type == UDF_VIRTUAL_MAP15) {
47c9358a 1126 map->s_type_specific.s_virtual.s_start_offset = 0;
38b74a53
JK
1127 map->s_type_specific.s_virtual.s_num_entries =
1128 (sbi->s_vat_inode->i_size - 36) >> 2;
1129 } else if (map->s_partition_type == UDF_VIRTUAL_MAP20) {
fa5e0815
JK
1130 vati = UDF_I(sbi->s_vat_inode);
1131 if (vati->i_alloc_type != ICBTAG_FLAG_AD_IN_ICB) {
1132 pos = udf_block_map(sbi->s_vat_inode, 0);
1133 bh = sb_bread(sb, pos);
1134 if (!bh)
1135 return 1;
1136 vat20 = (struct virtualAllocationTable20 *)bh->b_data;
1137 } else {
1138 vat20 = (struct virtualAllocationTable20 *)
1139 vati->i_ext.i_data;
1140 }
38b74a53 1141
38b74a53 1142 map->s_type_specific.s_virtual.s_start_offset =
47c9358a 1143 le16_to_cpu(vat20->lengthHeader);
38b74a53
JK
1144 map->s_type_specific.s_virtual.s_num_entries =
1145 (sbi->s_vat_inode->i_size -
1146 map->s_type_specific.s_virtual.
1147 s_start_offset) >> 2;
1148 brelse(bh);
1149 }
1150 return 0;
1151}
1152
3fb38dfa
JK
1153static int udf_load_partdesc(struct super_block *sb, sector_t block)
1154{
1155 struct buffer_head *bh;
1156 struct partitionDesc *p;
1157 struct udf_part_map *map;
1158 struct udf_sb_info *sbi = UDF_SB(sb);
38b74a53 1159 int i, type1_idx;
3fb38dfa
JK
1160 uint16_t partitionNumber;
1161 uint16_t ident;
1162 int ret = 0;
1163
1164 bh = udf_read_tagged(sb, block, block, &ident);
1165 if (!bh)
1166 return 1;
1167 if (ident != TAG_IDENT_PD)
1168 goto out_bh;
1169
1170 p = (struct partitionDesc *)bh->b_data;
1171 partitionNumber = le16_to_cpu(p->partitionNumber);
38b74a53 1172
bfb257a5 1173 /* First scan for TYPE1, SPARABLE and METADATA partitions */
3fb38dfa
JK
1174 for (i = 0; i < sbi->s_partitions; i++) {
1175 map = &sbi->s_partmaps[i];
1176 udf_debug("Searching map: (%d == %d)\n",
1177 map->s_partition_num, partitionNumber);
38b74a53
JK
1178 if (map->s_partition_num == partitionNumber &&
1179 (map->s_partition_type == UDF_TYPE1_MAP15 ||
1180 map->s_partition_type == UDF_SPARABLE_MAP15))
3fb38dfa
JK
1181 break;
1182 }
1183
38b74a53 1184 if (i >= sbi->s_partitions) {
3fb38dfa
JK
1185 udf_debug("Partition (%d) not found in partition map\n",
1186 partitionNumber);
1187 goto out_bh;
1188 }
165923fa 1189
3fb38dfa 1190 ret = udf_fill_partdesc_info(sb, p, i);
38b74a53
JK
1191
1192 /*
bfb257a5
JK
1193 * Now rescan for VIRTUAL or METADATA partitions when SPARABLE and
1194 * PHYSICAL partitions are already set up
38b74a53
JK
1195 */
1196 type1_idx = i;
1197 for (i = 0; i < sbi->s_partitions; i++) {
1198 map = &sbi->s_partmaps[i];
1199
1200 if (map->s_partition_num == partitionNumber &&
1201 (map->s_partition_type == UDF_VIRTUAL_MAP15 ||
bfb257a5
JK
1202 map->s_partition_type == UDF_VIRTUAL_MAP20 ||
1203 map->s_partition_type == UDF_METADATA_MAP25))
38b74a53
JK
1204 break;
1205 }
1206
1207 if (i >= sbi->s_partitions)
1208 goto out_bh;
1209
1210 ret = udf_fill_partdesc_info(sb, p, i);
1211 if (ret)
1212 goto out_bh;
1213
bfb257a5
JK
1214 if (map->s_partition_type == UDF_METADATA_MAP25) {
1215 ret = udf_load_metadata_files(sb, i);
1216 if (ret) {
1217 printk(KERN_ERR "UDF-fs: error loading MetaData "
1218 "partition map %d\n", i);
1219 goto out_bh;
1220 }
1221 } else {
1222 ret = udf_load_vat(sb, i, type1_idx);
1223 if (ret)
1224 goto out_bh;
1225 /*
1226 * Mark filesystem read-only if we have a partition with
1227 * virtual map since we don't handle writing to it (we
1228 * overwrite blocks instead of relocating them).
1229 */
1230 sb->s_flags |= MS_RDONLY;
1231 printk(KERN_NOTICE "UDF-fs: Filesystem marked read-only "
1232 "because writing to pseudooverwrite partition is "
1233 "not implemented.\n");
1234 }
c0eb31ed 1235out_bh:
2e0838fd 1236 /* In case loading failed, we handle cleanup in udf_fill_super */
c0eb31ed
JK
1237 brelse(bh);
1238 return ret;
1da177e4
LT
1239}
1240
c0eb31ed 1241static int udf_load_logicalvol(struct super_block *sb, sector_t block,
5ca4e4be 1242 struct kernel_lb_addr *fileset)
1da177e4
LT
1243{
1244 struct logicalVolDesc *lvd;
1245 int i, j, offset;
1246 uint8_t type;
6c79e987 1247 struct udf_sb_info *sbi = UDF_SB(sb);
4b11111a 1248 struct genericPartitionMap *gpm;
c0eb31ed
JK
1249 uint16_t ident;
1250 struct buffer_head *bh;
1251 int ret = 0;
1da177e4 1252
c0eb31ed
JK
1253 bh = udf_read_tagged(sb, block, block, &ident);
1254 if (!bh)
1255 return 1;
1256 BUG_ON(ident != TAG_IDENT_LVD);
1da177e4
LT
1257 lvd = (struct logicalVolDesc *)bh->b_data;
1258
dc5d39be 1259 i = udf_sb_alloc_partition_maps(sb, le32_to_cpu(lvd->numPartitionMaps));
c0eb31ed
JK
1260 if (i != 0) {
1261 ret = i;
1262 goto out_bh;
1263 }
1da177e4 1264
cb00ea35 1265 for (i = 0, offset = 0;
6c79e987 1266 i < sbi->s_partitions && offset < le32_to_cpu(lvd->mapTableLength);
4b11111a
MS
1267 i++, offset += gpm->partitionMapLength) {
1268 struct udf_part_map *map = &sbi->s_partmaps[i];
1269 gpm = (struct genericPartitionMap *)
1270 &(lvd->partitionMaps[offset]);
1271 type = gpm->partitionMapType;
cb00ea35 1272 if (type == 1) {
4b11111a
MS
1273 struct genericPartitionMap1 *gpm1 =
1274 (struct genericPartitionMap1 *)gpm;
6c79e987
MS
1275 map->s_partition_type = UDF_TYPE1_MAP15;
1276 map->s_volumeseqnum = le16_to_cpu(gpm1->volSeqNum);
1277 map->s_partition_num = le16_to_cpu(gpm1->partitionNum);
1278 map->s_partition_func = NULL;
cb00ea35 1279 } else if (type == 2) {
4b11111a
MS
1280 struct udfPartitionMap2 *upm2 =
1281 (struct udfPartitionMap2 *)gpm;
1282 if (!strncmp(upm2->partIdent.ident, UDF_ID_VIRTUAL,
1283 strlen(UDF_ID_VIRTUAL))) {
1284 u16 suf =
1285 le16_to_cpu(((__le16 *)upm2->partIdent.
1286 identSuffix)[0]);
c82a1275 1287 if (suf < 0x0200) {
4b11111a
MS
1288 map->s_partition_type =
1289 UDF_VIRTUAL_MAP15;
1290 map->s_partition_func =
1291 udf_get_pblock_virt15;
c82a1275 1292 } else {
4b11111a
MS
1293 map->s_partition_type =
1294 UDF_VIRTUAL_MAP20;
1295 map->s_partition_func =
1296 udf_get_pblock_virt20;
1da177e4 1297 }
4b11111a
MS
1298 } else if (!strncmp(upm2->partIdent.ident,
1299 UDF_ID_SPARABLE,
1300 strlen(UDF_ID_SPARABLE))) {
1da177e4 1301 uint32_t loc;
1da177e4 1302 struct sparingTable *st;
4b11111a
MS
1303 struct sparablePartitionMap *spm =
1304 (struct sparablePartitionMap *)gpm;
28de7948 1305
6c79e987 1306 map->s_partition_type = UDF_SPARABLE_MAP15;
4b11111a
MS
1307 map->s_type_specific.s_sparing.s_packet_len =
1308 le16_to_cpu(spm->packetLength);
cb00ea35 1309 for (j = 0; j < spm->numSparingTables; j++) {
4b11111a
MS
1310 struct buffer_head *bh2;
1311
1312 loc = le32_to_cpu(
1313 spm->locSparingTable[j]);
1314 bh2 = udf_read_tagged(sb, loc, loc,
1315 &ident);
1316 map->s_type_specific.s_sparing.
1317 s_spar_map[j] = bh2;
1318
165923fa
MS
1319 if (bh2 == NULL)
1320 continue;
1321
1322 st = (struct sparingTable *)bh2->b_data;
1323 if (ident != 0 || strncmp(
1324 st->sparingIdent.ident,
1325 UDF_ID_SPARING,
1326 strlen(UDF_ID_SPARING))) {
1327 brelse(bh2);
1328 map->s_type_specific.s_sparing.
1329 s_spar_map[j] = NULL;
1da177e4
LT
1330 }
1331 }
6c79e987 1332 map->s_partition_func = udf_get_pblock_spar15;
bfb257a5
JK
1333 } else if (!strncmp(upm2->partIdent.ident,
1334 UDF_ID_METADATA,
1335 strlen(UDF_ID_METADATA))) {
1336 struct udf_meta_data *mdata =
1337 &map->s_type_specific.s_metadata;
1338 struct metadataPartitionMap *mdm =
1339 (struct metadataPartitionMap *)
1340 &(lvd->partitionMaps[offset]);
1341 udf_debug("Parsing Logical vol part %d "
1342 "type %d id=%s\n", i, type,
1343 UDF_ID_METADATA);
1344
1345 map->s_partition_type = UDF_METADATA_MAP25;
1346 map->s_partition_func = udf_get_pblock_meta25;
1347
1348 mdata->s_meta_file_loc =
1349 le32_to_cpu(mdm->metadataFileLoc);
1350 mdata->s_mirror_file_loc =
1351 le32_to_cpu(mdm->metadataMirrorFileLoc);
1352 mdata->s_bitmap_file_loc =
1353 le32_to_cpu(mdm->metadataBitmapFileLoc);
1354 mdata->s_alloc_unit_size =
1355 le32_to_cpu(mdm->allocUnitSize);
1356 mdata->s_align_unit_size =
1357 le16_to_cpu(mdm->alignUnitSize);
1358 mdata->s_dup_md_flag =
1359 mdm->flags & 0x01;
1360
1361 udf_debug("Metadata Ident suffix=0x%x\n",
1362 (le16_to_cpu(
1363 ((__le16 *)
1364 mdm->partIdent.identSuffix)[0])));
1365 udf_debug("Metadata part num=%d\n",
1366 le16_to_cpu(mdm->partitionNum));
1367 udf_debug("Metadata part alloc unit size=%d\n",
1368 le32_to_cpu(mdm->allocUnitSize));
1369 udf_debug("Metadata file loc=%d\n",
1370 le32_to_cpu(mdm->metadataFileLoc));
1371 udf_debug("Mirror file loc=%d\n",
1372 le32_to_cpu(mdm->metadataMirrorFileLoc));
1373 udf_debug("Bitmap file loc=%d\n",
1374 le32_to_cpu(mdm->metadataBitmapFileLoc));
1375 udf_debug("Duplicate Flag: %d %d\n",
1376 mdata->s_dup_md_flag, mdm->flags);
cb00ea35 1377 } else {
3a71fc5d
MS
1378 udf_debug("Unknown ident: %s\n",
1379 upm2->partIdent.ident);
1da177e4
LT
1380 continue;
1381 }
6c79e987
MS
1382 map->s_volumeseqnum = le16_to_cpu(upm2->volSeqNum);
1383 map->s_partition_num = le16_to_cpu(upm2->partitionNum);
1da177e4
LT
1384 }
1385 udf_debug("Partition (%d:%d) type %d on volume %d\n",
6c79e987
MS
1386 i, map->s_partition_num, type,
1387 map->s_volumeseqnum);
1da177e4
LT
1388 }
1389
cb00ea35 1390 if (fileset) {
5ca4e4be 1391 struct long_ad *la = (struct long_ad *)&(lvd->logicalVolContentsUse[0]);
1da177e4
LT
1392
1393 *fileset = lelb_to_cpu(la->extLocation);
3a71fc5d
MS
1394 udf_debug("FileSet found in LogicalVolDesc at block=%d, "
1395 "partition=%d\n", fileset->logicalBlockNum,
28de7948 1396 fileset->partitionReferenceNum);
1da177e4
LT
1397 }
1398 if (lvd->integritySeqExt.extLength)
1399 udf_load_logicalvolint(sb, leea_to_cpu(lvd->integritySeqExt));
28de7948 1400
c0eb31ed
JK
1401out_bh:
1402 brelse(bh);
1403 return ret;
1da177e4
LT
1404}
1405
1406/*
1407 * udf_load_logicalvolint
1408 *
1409 */
5ca4e4be 1410static void udf_load_logicalvolint(struct super_block *sb, struct kernel_extent_ad loc)
1da177e4
LT
1411{
1412 struct buffer_head *bh = NULL;
1413 uint16_t ident;
6c79e987
MS
1414 struct udf_sb_info *sbi = UDF_SB(sb);
1415 struct logicalVolIntegrityDesc *lvid;
1da177e4
LT
1416
1417 while (loc.extLength > 0 &&
cb00ea35
CG
1418 (bh = udf_read_tagged(sb, loc.extLocation,
1419 loc.extLocation, &ident)) &&
1420 ident == TAG_IDENT_LVID) {
6c79e987
MS
1421 sbi->s_lvid_bh = bh;
1422 lvid = (struct logicalVolIntegrityDesc *)bh->b_data;
cb00ea35 1423
6c79e987 1424 if (lvid->nextIntegrityExt.extLength)
3a71fc5d 1425 udf_load_logicalvolint(sb,
6c79e987 1426 leea_to_cpu(lvid->nextIntegrityExt));
cb00ea35 1427
6c79e987 1428 if (sbi->s_lvid_bh != bh)
3bf25cb4 1429 brelse(bh);
1da177e4 1430 loc.extLength -= sb->s_blocksize;
cb00ea35 1431 loc.extLocation++;
1da177e4 1432 }
6c79e987 1433 if (sbi->s_lvid_bh != bh)
3bf25cb4 1434 brelse(bh);
1da177e4
LT
1435}
1436
1437/*
1438 * udf_process_sequence
1439 *
1440 * PURPOSE
1441 * Process a main/reserve volume descriptor sequence.
1442 *
1443 * PRE-CONDITIONS
1444 * sb Pointer to _locked_ superblock.
1445 * block First block of first extent of the sequence.
1446 * lastblock Lastblock of first extent of the sequence.
1447 *
1448 * HISTORY
1449 * July 1, 1997 - Andrew E. Mileski
1450 * Written, tested, and released.
1451 */
200a3592 1452static noinline int udf_process_sequence(struct super_block *sb, long block,
5ca4e4be 1453 long lastblock, struct kernel_lb_addr *fileset)
1da177e4
LT
1454{
1455 struct buffer_head *bh = NULL;
1456 struct udf_vds_record vds[VDS_POS_LENGTH];
4b11111a 1457 struct udf_vds_record *curr;
1da177e4
LT
1458 struct generic_desc *gd;
1459 struct volDescPtr *vdp;
cb00ea35 1460 int done = 0;
1da177e4
LT
1461 uint32_t vdsn;
1462 uint16_t ident;
1463 long next_s = 0, next_e = 0;
1464
1465 memset(vds, 0, sizeof(struct udf_vds_record) * VDS_POS_LENGTH);
1466
c0eb31ed
JK
1467 /*
1468 * Read the main descriptor sequence and find which descriptors
1469 * are in it.
1470 */
cb00ea35 1471 for (; (!done && block <= lastblock); block++) {
1da177e4
LT
1472
1473 bh = udf_read_tagged(sb, block, block, &ident);
c0eb31ed
JK
1474 if (!bh) {
1475 printk(KERN_ERR "udf: Block %Lu of volume descriptor "
1476 "sequence is corrupted or we could not read "
1477 "it.\n", (unsigned long long)block);
1478 return 1;
1479 }
1da177e4
LT
1480
1481 /* Process each descriptor (ISO 13346 3/8.3-8.4) */
1482 gd = (struct generic_desc *)bh->b_data;
1483 vdsn = le32_to_cpu(gd->volDescSeqNum);
cb00ea35 1484 switch (ident) {
28de7948 1485 case TAG_IDENT_PVD: /* ISO 13346 3/10.1 */
4b11111a
MS
1486 curr = &vds[VDS_POS_PRIMARY_VOL_DESC];
1487 if (vdsn >= curr->volDescSeqNum) {
1488 curr->volDescSeqNum = vdsn;
1489 curr->block = block;
cb00ea35
CG
1490 }
1491 break;
28de7948 1492 case TAG_IDENT_VDP: /* ISO 13346 3/10.3 */
4b11111a
MS
1493 curr = &vds[VDS_POS_VOL_DESC_PTR];
1494 if (vdsn >= curr->volDescSeqNum) {
1495 curr->volDescSeqNum = vdsn;
1496 curr->block = block;
cb00ea35
CG
1497
1498 vdp = (struct volDescPtr *)bh->b_data;
4b11111a
MS
1499 next_s = le32_to_cpu(
1500 vdp->nextVolDescSeqExt.extLocation);
1501 next_e = le32_to_cpu(
1502 vdp->nextVolDescSeqExt.extLength);
cb00ea35
CG
1503 next_e = next_e >> sb->s_blocksize_bits;
1504 next_e += next_s;
1505 }
1506 break;
28de7948 1507 case TAG_IDENT_IUVD: /* ISO 13346 3/10.4 */
4b11111a
MS
1508 curr = &vds[VDS_POS_IMP_USE_VOL_DESC];
1509 if (vdsn >= curr->volDescSeqNum) {
1510 curr->volDescSeqNum = vdsn;
1511 curr->block = block;
cb00ea35
CG
1512 }
1513 break;
28de7948 1514 case TAG_IDENT_PD: /* ISO 13346 3/10.5 */
4b11111a
MS
1515 curr = &vds[VDS_POS_PARTITION_DESC];
1516 if (!curr->block)
1517 curr->block = block;
cb00ea35 1518 break;
28de7948 1519 case TAG_IDENT_LVD: /* ISO 13346 3/10.6 */
4b11111a
MS
1520 curr = &vds[VDS_POS_LOGICAL_VOL_DESC];
1521 if (vdsn >= curr->volDescSeqNum) {
1522 curr->volDescSeqNum = vdsn;
1523 curr->block = block;
cb00ea35
CG
1524 }
1525 break;
28de7948 1526 case TAG_IDENT_USD: /* ISO 13346 3/10.8 */
4b11111a
MS
1527 curr = &vds[VDS_POS_UNALLOC_SPACE_DESC];
1528 if (vdsn >= curr->volDescSeqNum) {
1529 curr->volDescSeqNum = vdsn;
1530 curr->block = block;
cb00ea35
CG
1531 }
1532 break;
28de7948 1533 case TAG_IDENT_TD: /* ISO 13346 3/10.9 */
cb00ea35
CG
1534 vds[VDS_POS_TERMINATING_DESC].block = block;
1535 if (next_e) {
1536 block = next_s;
1537 lastblock = next_e;
1538 next_s = next_e = 0;
4b11111a 1539 } else
cb00ea35
CG
1540 done = 1;
1541 break;
1da177e4 1542 }
3bf25cb4 1543 brelse(bh);
1da177e4 1544 }
c0eb31ed
JK
1545 /*
1546 * Now read interesting descriptors again and process them
1547 * in a suitable order
1548 */
1549 if (!vds[VDS_POS_PRIMARY_VOL_DESC].block) {
1550 printk(KERN_ERR "udf: Primary Volume Descriptor not found!\n");
1551 return 1;
1552 }
1553 if (udf_load_pvoldesc(sb, vds[VDS_POS_PRIMARY_VOL_DESC].block))
1554 return 1;
165923fa 1555
c0eb31ed
JK
1556 if (vds[VDS_POS_LOGICAL_VOL_DESC].block && udf_load_logicalvol(sb,
1557 vds[VDS_POS_LOGICAL_VOL_DESC].block, fileset))
1558 return 1;
165923fa 1559
c0eb31ed
JK
1560 if (vds[VDS_POS_PARTITION_DESC].block) {
1561 /*
1562 * We rescan the whole descriptor sequence to find
1563 * partition descriptor blocks and process them.
1564 */
1565 for (block = vds[VDS_POS_PARTITION_DESC].block;
1566 block < vds[VDS_POS_TERMINATING_DESC].block;
1567 block++)
1568 if (udf_load_partdesc(sb, block))
165923fa 1569 return 1;
1da177e4
LT
1570 }
1571
1572 return 0;
1573}
1574
40346005
JK
1575static int udf_load_sequence(struct super_block *sb, struct buffer_head *bh,
1576 struct kernel_lb_addr *fileset)
1da177e4 1577{
40346005
JK
1578 struct anchorVolDescPtr *anchor;
1579 long main_s, main_e, reserve_s, reserve_e;
1da177e4 1580
40346005
JK
1581 anchor = (struct anchorVolDescPtr *)bh->b_data;
1582
1583 /* Locate the main sequence */
1584 main_s = le32_to_cpu(anchor->mainVolDescSeqExt.extLocation);
1585 main_e = le32_to_cpu(anchor->mainVolDescSeqExt.extLength);
1586 main_e = main_e >> sb->s_blocksize_bits;
1587 main_e += main_s;
1588
1589 /* Locate the reserve sequence */
1590 reserve_s = le32_to_cpu(anchor->reserveVolDescSeqExt.extLocation);
1591 reserve_e = le32_to_cpu(anchor->reserveVolDescSeqExt.extLength);
1592 reserve_e = reserve_e >> sb->s_blocksize_bits;
1593 reserve_e += reserve_s;
1594
1595 /* Process the main & reserve sequences */
1596 /* responsible for finding the PartitionDesc(s) */
1597 if (!udf_process_sequence(sb, main_s, main_e, fileset))
1598 return 1;
1599 return !udf_process_sequence(sb, reserve_s, reserve_e, fileset);
1da177e4
LT
1600}
1601
40346005
JK
1602/*
1603 * Check whether there is an anchor block in the given block and
1604 * load Volume Descriptor Sequence if so.
1605 */
1606static int udf_check_anchor_block(struct super_block *sb, sector_t block,
1607 struct kernel_lb_addr *fileset)
1197e4df 1608{
40346005
JK
1609 struct buffer_head *bh;
1610 uint16_t ident;
1611 int ret;
1197e4df 1612
40346005
JK
1613 if (UDF_QUERY_FLAG(sb, UDF_FLAG_VARCONV) &&
1614 udf_fixed_to_variable(block) >=
1615 sb->s_bdev->bd_inode->i_size >> sb->s_blocksize_bits)
1197e4df 1616 return 0;
40346005
JK
1617
1618 bh = udf_read_tagged(sb, block, block, &ident);
1619 if (!bh)
1197e4df 1620 return 0;
40346005
JK
1621 if (ident != TAG_IDENT_AVDP) {
1622 brelse(bh);
1197e4df
CL
1623 return 0;
1624 }
40346005
JK
1625 ret = udf_load_sequence(sb, bh, fileset);
1626 brelse(bh);
1627 return ret;
1197e4df
CL
1628}
1629
40346005
JK
1630/* Search for an anchor volume descriptor pointer */
1631static sector_t udf_scan_anchors(struct super_block *sb, sector_t lastblock,
1632 struct kernel_lb_addr *fileset)
1da177e4 1633{
40346005 1634 sector_t last[6];
38b74a53 1635 int i;
40346005
JK
1636 struct udf_sb_info *sbi = UDF_SB(sb);
1637 int last_count = 0;
1da177e4 1638
40346005
JK
1639 /* First try user provided anchor */
1640 if (sbi->s_anchor) {
1641 if (udf_check_anchor_block(sb, sbi->s_anchor, fileset))
1642 return lastblock;
1643 }
1644 /*
1645 * according to spec, anchor is in either:
1646 * block 256
1647 * lastblock-256
1648 * lastblock
1649 * however, if the disc isn't closed, it could be 512.
1650 */
1651 if (udf_check_anchor_block(sb, sbi->s_session + 256, fileset))
1652 return lastblock;
1653 /*
1654 * The trouble is which block is the last one. Drives often misreport
1655 * this so we try various possibilities.
1656 */
1657 last[last_count++] = lastblock;
1658 if (lastblock >= 1)
1659 last[last_count++] = lastblock - 1;
1660 last[last_count++] = lastblock + 1;
1661 if (lastblock >= 2)
1662 last[last_count++] = lastblock - 2;
1663 if (lastblock >= 150)
1664 last[last_count++] = lastblock - 150;
1665 if (lastblock >= 152)
1666 last[last_count++] = lastblock - 152;
1da177e4 1667
40346005
JK
1668 for (i = 0; i < last_count; i++) {
1669 if (last[i] >= sb->s_bdev->bd_inode->i_size >>
1670 sb->s_blocksize_bits)
28f7c4d4 1671 continue;
40346005
JK
1672 if (udf_check_anchor_block(sb, last[i], fileset))
1673 return last[i];
1674 if (last[i] < 256)
28f7c4d4 1675 continue;
40346005
JK
1676 if (udf_check_anchor_block(sb, last[i] - 256, fileset))
1677 return last[i];
1678 }
28f7c4d4 1679
40346005
JK
1680 /* Finally try block 512 in case media is open */
1681 if (udf_check_anchor_block(sb, sbi->s_session + 512, fileset))
1682 return last[0];
1683 return 0;
1684}
28f7c4d4 1685
40346005
JK
1686/*
1687 * Find an anchor volume descriptor and load Volume Descriptor Sequence from
1688 * area specified by it. The function expects sbi->s_lastblock to be the last
1689 * block on the media.
1690 *
1691 * Return 1 if ok, 0 if not found.
1692 *
1693 */
1694static int udf_find_anchor(struct super_block *sb,
1695 struct kernel_lb_addr *fileset)
1696{
1697 sector_t lastblock;
1698 struct udf_sb_info *sbi = UDF_SB(sb);
28f7c4d4 1699
40346005
JK
1700 lastblock = udf_scan_anchors(sb, sbi->s_last_block, fileset);
1701 if (lastblock)
1702 goto out;
1da177e4 1703
40346005
JK
1704 /* No anchor found? Try VARCONV conversion of block numbers */
1705 UDF_SET_FLAG(sb, UDF_FLAG_VARCONV);
1706 /* Firstly, we try to not convert number of the last block */
1707 lastblock = udf_scan_anchors(sb,
1708 udf_variable_to_fixed(sbi->s_last_block),
1709 fileset);
1710 if (lastblock)
1711 goto out;
1da177e4 1712
40346005
JK
1713 /* Secondly, we try with converted number of the last block */
1714 lastblock = udf_scan_anchors(sb, sbi->s_last_block, fileset);
1715 if (!lastblock) {
1716 /* VARCONV didn't help. Clear it. */
1717 UDF_CLEAR_FLAG(sb, UDF_FLAG_VARCONV);
1718 return 0;
1da177e4 1719 }
40346005
JK
1720out:
1721 sbi->s_last_block = lastblock;
1722 return 1;
1723}
1da177e4 1724
40346005
JK
1725/*
1726 * Check Volume Structure Descriptor, find Anchor block and load Volume
1727 * Descriptor Sequence
1728 */
1729static int udf_load_vrs(struct super_block *sb, struct udf_options *uopt,
1730 int silent, struct kernel_lb_addr *fileset)
1731{
1732 struct udf_sb_info *sbi = UDF_SB(sb);
1733 loff_t nsr_off;
1734
1735 if (!sb_set_blocksize(sb, uopt->blocksize)) {
1736 if (!silent)
1737 printk(KERN_WARNING "UDF-fs: Bad block size\n");
1738 return 0;
1739 }
1740 sbi->s_last_block = uopt->lastblock;
1741 if (!uopt->novrs) {
1742 /* Check that it is NSR02 compliant */
1743 nsr_off = udf_check_vsd(sb);
1744 if (!nsr_off) {
1745 if (!silent)
1746 printk(KERN_WARNING "UDF-fs: No VRS found\n");
1747 return 0;
1748 }
1749 if (nsr_off == -1)
1750 udf_debug("Failed to read byte 32768. Assuming open "
1751 "disc. Skipping validity check\n");
1752 if (!sbi->s_last_block)
1753 sbi->s_last_block = udf_get_last_block(sb);
1754 } else {
1755 udf_debug("Validity check skipped because of novrs option\n");
28f7c4d4 1756 }
1da177e4 1757
40346005
JK
1758 /* Look for anchor block and load Volume Descriptor Sequence */
1759 sbi->s_anchor = uopt->anchor;
1760 if (!udf_find_anchor(sb, fileset)) {
1761 if (!silent)
1762 printk(KERN_WARNING "UDF-fs: No anchor found\n");
1763 return 0;
1764 }
1765 return 1;
1da177e4
LT
1766}
1767
1768static void udf_open_lvid(struct super_block *sb)
1769{
6c79e987
MS
1770 struct udf_sb_info *sbi = UDF_SB(sb);
1771 struct buffer_head *bh = sbi->s_lvid_bh;
165923fa
MS
1772 struct logicalVolIntegrityDesc *lvid;
1773 struct logicalVolIntegrityDescImpUse *lvidiu;
146bca72 1774
165923fa
MS
1775 if (!bh)
1776 return;
949f4a7c
JK
1777
1778 mutex_lock(&sbi->s_alloc_mutex);
165923fa
MS
1779 lvid = (struct logicalVolIntegrityDesc *)bh->b_data;
1780 lvidiu = udf_sb_lvidiu(sbi);
1781
1782 lvidiu->impIdent.identSuffix[0] = UDF_OS_CLASS_UNIX;
1783 lvidiu->impIdent.identSuffix[1] = UDF_OS_ID_LINUX;
1784 udf_time_to_disk_stamp(&lvid->recordingDateAndTime,
1785 CURRENT_TIME);
146bca72 1786 lvid->integrityType = cpu_to_le32(LVID_INTEGRITY_TYPE_OPEN);
165923fa
MS
1787
1788 lvid->descTag.descCRC = cpu_to_le16(
5ca4e4be 1789 crc_itu_t(0, (char *)lvid + sizeof(struct tag),
f845fced 1790 le16_to_cpu(lvid->descTag.descCRCLength)));
165923fa
MS
1791
1792 lvid->descTag.tagChecksum = udf_tag_checksum(&lvid->descTag);
1793 mark_buffer_dirty(bh);
146bca72 1794 sbi->s_lvid_dirty = 0;
949f4a7c 1795 mutex_unlock(&sbi->s_alloc_mutex);
1da177e4
LT
1796}
1797
1798static void udf_close_lvid(struct super_block *sb)
1799{
6c79e987
MS
1800 struct udf_sb_info *sbi = UDF_SB(sb);
1801 struct buffer_head *bh = sbi->s_lvid_bh;
1802 struct logicalVolIntegrityDesc *lvid;
165923fa 1803 struct logicalVolIntegrityDescImpUse *lvidiu;
28de7948 1804
6c79e987
MS
1805 if (!bh)
1806 return;
1807
949f4a7c 1808 mutex_lock(&sbi->s_alloc_mutex);
6c79e987 1809 lvid = (struct logicalVolIntegrityDesc *)bh->b_data;
165923fa
MS
1810 lvidiu = udf_sb_lvidiu(sbi);
1811 lvidiu->impIdent.identSuffix[0] = UDF_OS_CLASS_UNIX;
1812 lvidiu->impIdent.identSuffix[1] = UDF_OS_ID_LINUX;
1813 udf_time_to_disk_stamp(&lvid->recordingDateAndTime, CURRENT_TIME);
1814 if (UDF_MAX_WRITE_VERSION > le16_to_cpu(lvidiu->maxUDFWriteRev))
1815 lvidiu->maxUDFWriteRev = cpu_to_le16(UDF_MAX_WRITE_VERSION);
1816 if (sbi->s_udfrev > le16_to_cpu(lvidiu->minUDFReadRev))
1817 lvidiu->minUDFReadRev = cpu_to_le16(sbi->s_udfrev);
1818 if (sbi->s_udfrev > le16_to_cpu(lvidiu->minUDFWriteRev))
1819 lvidiu->minUDFWriteRev = cpu_to_le16(sbi->s_udfrev);
1820 lvid->integrityType = cpu_to_le32(LVID_INTEGRITY_TYPE_CLOSE);
1821
1822 lvid->descTag.descCRC = cpu_to_le16(
5ca4e4be 1823 crc_itu_t(0, (char *)lvid + sizeof(struct tag),
f845fced 1824 le16_to_cpu(lvid->descTag.descCRCLength)));
165923fa
MS
1825
1826 lvid->descTag.tagChecksum = udf_tag_checksum(&lvid->descTag);
1827 mark_buffer_dirty(bh);
146bca72 1828 sbi->s_lvid_dirty = 0;
949f4a7c 1829 mutex_unlock(&sbi->s_alloc_mutex);
1da177e4
LT
1830}
1831
d664b6af
JK
1832u64 lvid_get_unique_id(struct super_block *sb)
1833{
1834 struct buffer_head *bh;
1835 struct udf_sb_info *sbi = UDF_SB(sb);
1836 struct logicalVolIntegrityDesc *lvid;
1837 struct logicalVolHeaderDesc *lvhd;
1838 u64 uniqueID;
1839 u64 ret;
1840
1841 bh = sbi->s_lvid_bh;
1842 if (!bh)
1843 return 0;
1844
1845 lvid = (struct logicalVolIntegrityDesc *)bh->b_data;
1846 lvhd = (struct logicalVolHeaderDesc *)lvid->logicalVolContentsUse;
1847
1848 mutex_lock(&sbi->s_alloc_mutex);
1849 ret = uniqueID = le64_to_cpu(lvhd->uniqueID);
1850 if (!(++uniqueID & 0xFFFFFFFF))
1851 uniqueID += 16;
1852 lvhd->uniqueID = cpu_to_le64(uniqueID);
1853 mutex_unlock(&sbi->s_alloc_mutex);
1854 mark_buffer_dirty(bh);
1855
1856 return ret;
1857}
1858
66e1da3f
MS
1859static void udf_sb_free_bitmap(struct udf_bitmap *bitmap)
1860{
1861 int i;
1862 int nr_groups = bitmap->s_nr_groups;
4b11111a
MS
1863 int size = sizeof(struct udf_bitmap) + (sizeof(struct buffer_head *) *
1864 nr_groups);
66e1da3f
MS
1865
1866 for (i = 0; i < nr_groups; i++)
1867 if (bitmap->s_block_bitmap[i])
1868 brelse(bitmap->s_block_bitmap[i]);
1869
1870 if (size <= PAGE_SIZE)
1871 kfree(bitmap);
1872 else
1873 vfree(bitmap);
1874}
1875
2e0838fd
JK
1876static void udf_free_partition(struct udf_part_map *map)
1877{
1878 int i;
bfb257a5 1879 struct udf_meta_data *mdata;
2e0838fd
JK
1880
1881 if (map->s_partition_flags & UDF_PART_FLAG_UNALLOC_TABLE)
1882 iput(map->s_uspace.s_table);
1883 if (map->s_partition_flags & UDF_PART_FLAG_FREED_TABLE)
1884 iput(map->s_fspace.s_table);
1885 if (map->s_partition_flags & UDF_PART_FLAG_UNALLOC_BITMAP)
1886 udf_sb_free_bitmap(map->s_uspace.s_bitmap);
1887 if (map->s_partition_flags & UDF_PART_FLAG_FREED_BITMAP)
1888 udf_sb_free_bitmap(map->s_fspace.s_bitmap);
1889 if (map->s_partition_type == UDF_SPARABLE_MAP15)
1890 for (i = 0; i < 4; i++)
1891 brelse(map->s_type_specific.s_sparing.s_spar_map[i]);
bfb257a5
JK
1892 else if (map->s_partition_type == UDF_METADATA_MAP25) {
1893 mdata = &map->s_type_specific.s_metadata;
1894 iput(mdata->s_metadata_fe);
1895 mdata->s_metadata_fe = NULL;
1896
1897 iput(mdata->s_mirror_fe);
1898 mdata->s_mirror_fe = NULL;
1899
1900 iput(mdata->s_bitmap_fe);
1901 mdata->s_bitmap_fe = NULL;
1902 }
2e0838fd
JK
1903}
1904
1da177e4
LT
1905static int udf_fill_super(struct super_block *sb, void *options, int silent)
1906{
1907 int i;
40346005 1908 int ret;
cb00ea35 1909 struct inode *inode = NULL;
1da177e4 1910 struct udf_options uopt;
5ca4e4be 1911 struct kernel_lb_addr rootdir, fileset;
1da177e4
LT
1912 struct udf_sb_info *sbi;
1913
db719222
JB
1914 lock_kernel();
1915
1da177e4
LT
1916 uopt.flags = (1 << UDF_FLAG_USE_AD_IN_ICB) | (1 << UDF_FLAG_STRICT);
1917 uopt.uid = -1;
1918 uopt.gid = -1;
1919 uopt.umask = 0;
87bc730c
MS
1920 uopt.fmode = UDF_INVALID_MODE;
1921 uopt.dmode = UDF_INVALID_MODE;
1da177e4 1922
6c79e987 1923 sbi = kzalloc(sizeof(struct udf_sb_info), GFP_KERNEL);
db719222
JB
1924 if (!sbi) {
1925 unlock_kernel();
1da177e4 1926 return -ENOMEM;
db719222 1927 }
28de7948 1928
1da177e4 1929 sb->s_fs_info = sbi;
1da177e4 1930
1e7933de 1931 mutex_init(&sbi->s_alloc_mutex);
1da177e4 1932
6da80894 1933 if (!udf_parse_options((char *)options, &uopt, false))
1da177e4
LT
1934 goto error_out;
1935
1936 if (uopt.flags & (1 << UDF_FLAG_UTF8) &&
cb00ea35 1937 uopt.flags & (1 << UDF_FLAG_NLS_MAP)) {
1da177e4 1938 udf_error(sb, "udf_read_super",
cb00ea35 1939 "utf8 cannot be combined with iocharset\n");
1da177e4
LT
1940 goto error_out;
1941 }
1942#ifdef CONFIG_UDF_NLS
cb00ea35 1943 if ((uopt.flags & (1 << UDF_FLAG_NLS_MAP)) && !uopt.nls_map) {
1da177e4
LT
1944 uopt.nls_map = load_nls_default();
1945 if (!uopt.nls_map)
1946 uopt.flags &= ~(1 << UDF_FLAG_NLS_MAP);
1947 else
1948 udf_debug("Using default NLS map\n");
1949 }
1950#endif
1951 if (!(uopt.flags & (1 << UDF_FLAG_NLS_MAP)))
1952 uopt.flags |= (1 << UDF_FLAG_UTF8);
1953
1954 fileset.logicalBlockNum = 0xFFFFFFFF;
1955 fileset.partitionReferenceNum = 0xFFFF;
1956
6c79e987
MS
1957 sbi->s_flags = uopt.flags;
1958 sbi->s_uid = uopt.uid;
1959 sbi->s_gid = uopt.gid;
1960 sbi->s_umask = uopt.umask;
7ac9bcd5
MS
1961 sbi->s_fmode = uopt.fmode;
1962 sbi->s_dmode = uopt.dmode;
6c79e987 1963 sbi->s_nls_map = uopt.nls_map;
c03cad24 1964 rwlock_init(&sbi->s_cred_lock);
1da177e4 1965
cb00ea35 1966 if (uopt.session == 0xFFFFFFFF)
6c79e987 1967 sbi->s_session = udf_get_last_session(sb);
1da177e4 1968 else
6c79e987 1969 sbi->s_session = uopt.session;
1da177e4 1970
6c79e987 1971 udf_debug("Multi-session=%d\n", sbi->s_session);
1da177e4 1972
40346005
JK
1973 /* Fill in the rest of the superblock */
1974 sb->s_op = &udf_sb_ops;
1975 sb->s_export_op = &udf_export_ops;
123e9caf 1976
40346005
JK
1977 sb->s_dirt = 0;
1978 sb->s_magic = UDF_SUPER_MAGIC;
1979 sb->s_time_gran = 1000;
1980
1197e4df 1981 if (uopt.flags & (1 << UDF_FLAG_BLOCKSIZE_SET)) {
40346005 1982 ret = udf_load_vrs(sb, &uopt, silent, &fileset);
1197e4df 1983 } else {
e1defc4f 1984 uopt.blocksize = bdev_logical_block_size(sb->s_bdev);
40346005
JK
1985 ret = udf_load_vrs(sb, &uopt, silent, &fileset);
1986 if (!ret && uopt.blocksize != UDF_DEFAULT_BLOCKSIZE) {
1197e4df
CL
1987 if (!silent)
1988 printk(KERN_NOTICE
1989 "UDF-fs: Rescanning with blocksize "
1990 "%d\n", UDF_DEFAULT_BLOCKSIZE);
1991 uopt.blocksize = UDF_DEFAULT_BLOCKSIZE;
40346005 1992 ret = udf_load_vrs(sb, &uopt, silent, &fileset);
1197e4df 1993 }
1da177e4 1994 }
40346005 1995 if (!ret) {
3a71fc5d 1996 printk(KERN_WARNING "UDF-fs: No partition found (1)\n");
1da177e4
LT
1997 goto error_out;
1998 }
1999
6c79e987 2000 udf_debug("Lastblock=%d\n", sbi->s_last_block);
1da177e4 2001
6c79e987 2002 if (sbi->s_lvid_bh) {
4b11111a
MS
2003 struct logicalVolIntegrityDescImpUse *lvidiu =
2004 udf_sb_lvidiu(sbi);
6c79e987
MS
2005 uint16_t minUDFReadRev = le16_to_cpu(lvidiu->minUDFReadRev);
2006 uint16_t minUDFWriteRev = le16_to_cpu(lvidiu->minUDFWriteRev);
4b11111a
MS
2007 /* uint16_t maxUDFWriteRev =
2008 le16_to_cpu(lvidiu->maxUDFWriteRev); */
1da177e4 2009
cb00ea35 2010 if (minUDFReadRev > UDF_MAX_READ_VERSION) {
4b11111a
MS
2011 printk(KERN_ERR "UDF-fs: minUDFReadRev=%x "
2012 "(max is %x)\n",
6c79e987 2013 le16_to_cpu(lvidiu->minUDFReadRev),
cb00ea35 2014 UDF_MAX_READ_VERSION);
1da177e4 2015 goto error_out;
4b11111a 2016 } else if (minUDFWriteRev > UDF_MAX_WRITE_VERSION)
1da177e4 2017 sb->s_flags |= MS_RDONLY;
1da177e4 2018
6c79e987 2019 sbi->s_udfrev = minUDFWriteRev;
1da177e4
LT
2020
2021 if (minUDFReadRev >= UDF_VERS_USE_EXTENDED_FE)
2022 UDF_SET_FLAG(sb, UDF_FLAG_USE_EXTENDED_FE);
2023 if (minUDFReadRev >= UDF_VERS_USE_STREAMS)
2024 UDF_SET_FLAG(sb, UDF_FLAG_USE_STREAMS);
2025 }
2026
6c79e987 2027 if (!sbi->s_partitions) {
3a71fc5d 2028 printk(KERN_WARNING "UDF-fs: No partition found (2)\n");
1da177e4
LT
2029 goto error_out;
2030 }
2031
4b11111a
MS
2032 if (sbi->s_partmaps[sbi->s_partition].s_partition_flags &
2033 UDF_PART_FLAG_READ_ONLY) {
2034 printk(KERN_NOTICE "UDF-fs: Partition marked readonly; "
2035 "forcing readonly mount\n");
39b3f6d6 2036 sb->s_flags |= MS_RDONLY;
c1a26e7d 2037 }
39b3f6d6 2038
cb00ea35 2039 if (udf_find_fileset(sb, &fileset, &rootdir)) {
3a71fc5d 2040 printk(KERN_WARNING "UDF-fs: No fileset found\n");
1da177e4
LT
2041 goto error_out;
2042 }
2043
cb00ea35 2044 if (!silent) {
5ca4e4be 2045 struct timestamp ts;
56774805 2046 udf_time_to_disk_stamp(&ts, sbi->s_record_time);
a9ca6635 2047 udf_info("UDF: Mounting volume '%s', "
28de7948 2048 "timestamp %04u/%02u/%02u %02u:%02u (%x)\n",
56774805
MS
2049 sbi->s_volume_ident, le16_to_cpu(ts.year), ts.month, ts.day,
2050 ts.hour, ts.minute, le16_to_cpu(ts.typeAndTimezone));
1da177e4
LT
2051 }
2052 if (!(sb->s_flags & MS_RDONLY))
2053 udf_open_lvid(sb);
2054
2055 /* Assign the root inode */
2056 /* assign inodes by physical block number */
2057 /* perhaps it's not extensible enough, but for now ... */
97e961fd 2058 inode = udf_iget(sb, &rootdir);
cb00ea35 2059 if (!inode) {
4b11111a
MS
2060 printk(KERN_ERR "UDF-fs: Error in udf_iget, block=%d, "
2061 "partition=%d\n",
cb00ea35 2062 rootdir.logicalBlockNum, rootdir.partitionReferenceNum);
1da177e4
LT
2063 goto error_out;
2064 }
2065
2066 /* Allocate a dentry for the root inode */
2067 sb->s_root = d_alloc_root(inode);
cb00ea35 2068 if (!sb->s_root) {
3a71fc5d 2069 printk(KERN_ERR "UDF-fs: Couldn't allocate root dentry\n");
1da177e4
LT
2070 iput(inode);
2071 goto error_out;
2072 }
31170b6a 2073 sb->s_maxbytes = MAX_LFS_FILESIZE;
db719222 2074 unlock_kernel();
1da177e4
LT
2075 return 0;
2076
28de7948 2077error_out:
6c79e987
MS
2078 if (sbi->s_vat_inode)
2079 iput(sbi->s_vat_inode);
2e0838fd
JK
2080 if (sbi->s_partitions)
2081 for (i = 0; i < sbi->s_partitions; i++)
2082 udf_free_partition(&sbi->s_partmaps[i]);
1da177e4
LT
2083#ifdef CONFIG_UDF_NLS
2084 if (UDF_QUERY_FLAG(sb, UDF_FLAG_NLS_MAP))
6c79e987 2085 unload_nls(sbi->s_nls_map);
1da177e4
LT
2086#endif
2087 if (!(sb->s_flags & MS_RDONLY))
2088 udf_close_lvid(sb);
6c79e987
MS
2089 brelse(sbi->s_lvid_bh);
2090
2091 kfree(sbi->s_partmaps);
1da177e4
LT
2092 kfree(sbi);
2093 sb->s_fs_info = NULL;
28de7948 2094
db719222 2095 unlock_kernel();
1da177e4
LT
2096 return -EINVAL;
2097}
2098
b8145a76
AB
2099static void udf_error(struct super_block *sb, const char *function,
2100 const char *fmt, ...)
1da177e4
LT
2101{
2102 va_list args;
2103
cb00ea35 2104 if (!(sb->s_flags & MS_RDONLY)) {
1da177e4
LT
2105 /* mark sb error */
2106 sb->s_dirt = 1;
2107 }
2108 va_start(args, fmt);
4a6e617a 2109 vsnprintf(error_buf, sizeof(error_buf), fmt, args);
1da177e4 2110 va_end(args);
3a71fc5d 2111 printk(KERN_CRIT "UDF-fs error (device %s): %s: %s\n",
28de7948 2112 sb->s_id, function, error_buf);
1da177e4
LT
2113}
2114
2115void udf_warning(struct super_block *sb, const char *function,
cb00ea35 2116 const char *fmt, ...)
1da177e4
LT
2117{
2118 va_list args;
2119
cb00ea35 2120 va_start(args, fmt);
4a6e617a 2121 vsnprintf(error_buf, sizeof(error_buf), fmt, args);
1da177e4
LT
2122 va_end(args);
2123 printk(KERN_WARNING "UDF-fs warning (device %s): %s: %s\n",
cb00ea35 2124 sb->s_id, function, error_buf);
1da177e4
LT
2125}
2126
cb00ea35 2127static void udf_put_super(struct super_block *sb)
1da177e4
LT
2128{
2129 int i;
6c79e987 2130 struct udf_sb_info *sbi;
1da177e4 2131
6c79e987 2132 sbi = UDF_SB(sb);
6cfd0148 2133
6c79e987
MS
2134 if (sbi->s_vat_inode)
2135 iput(sbi->s_vat_inode);
2e0838fd
JK
2136 if (sbi->s_partitions)
2137 for (i = 0; i < sbi->s_partitions; i++)
2138 udf_free_partition(&sbi->s_partmaps[i]);
1da177e4
LT
2139#ifdef CONFIG_UDF_NLS
2140 if (UDF_QUERY_FLAG(sb, UDF_FLAG_NLS_MAP))
6c79e987 2141 unload_nls(sbi->s_nls_map);
1da177e4
LT
2142#endif
2143 if (!(sb->s_flags & MS_RDONLY))
2144 udf_close_lvid(sb);
6c79e987
MS
2145 brelse(sbi->s_lvid_bh);
2146 kfree(sbi->s_partmaps);
1da177e4
LT
2147 kfree(sb->s_fs_info);
2148 sb->s_fs_info = NULL;
2149}
2150
146bca72
JK
2151static int udf_sync_fs(struct super_block *sb, int wait)
2152{
2153 struct udf_sb_info *sbi = UDF_SB(sb);
2154
2155 mutex_lock(&sbi->s_alloc_mutex);
2156 if (sbi->s_lvid_dirty) {
2157 /*
2158 * Blockdevice will be synced later so we don't have to submit
2159 * the buffer for IO
2160 */
2161 mark_buffer_dirty(sbi->s_lvid_bh);
2162 sb->s_dirt = 0;
2163 sbi->s_lvid_dirty = 0;
2164 }
2165 mutex_unlock(&sbi->s_alloc_mutex);
2166
2167 return 0;
2168}
2169
cb00ea35 2170static int udf_statfs(struct dentry *dentry, struct kstatfs *buf)
1da177e4 2171{
726c3342 2172 struct super_block *sb = dentry->d_sb;
6c79e987
MS
2173 struct udf_sb_info *sbi = UDF_SB(sb);
2174 struct logicalVolIntegrityDescImpUse *lvidiu;
557f5a14 2175 u64 id = huge_encode_dev(sb->s_bdev->bd_dev);
6c79e987
MS
2176
2177 if (sbi->s_lvid_bh != NULL)
2178 lvidiu = udf_sb_lvidiu(sbi);
2179 else
2180 lvidiu = NULL;
726c3342 2181
1da177e4
LT
2182 buf->f_type = UDF_SUPER_MAGIC;
2183 buf->f_bsize = sb->s_blocksize;
6c79e987 2184 buf->f_blocks = sbi->s_partmaps[sbi->s_partition].s_partition_len;
1da177e4
LT
2185 buf->f_bfree = udf_count_free(sb);
2186 buf->f_bavail = buf->f_bfree;
6c79e987
MS
2187 buf->f_files = (lvidiu != NULL ? (le32_to_cpu(lvidiu->numFiles) +
2188 le32_to_cpu(lvidiu->numDirs)) : 0)
2189 + buf->f_bfree;
1da177e4 2190 buf->f_ffree = buf->f_bfree;
cb00ea35 2191 buf->f_namelen = UDF_NAME_LEN - 2;
557f5a14
CL
2192 buf->f_fsid.val[0] = (u32)id;
2193 buf->f_fsid.val[1] = (u32)(id >> 32);
1da177e4
LT
2194
2195 return 0;
2196}
2197
4b11111a
MS
2198static unsigned int udf_count_free_bitmap(struct super_block *sb,
2199 struct udf_bitmap *bitmap)
1da177e4
LT
2200{
2201 struct buffer_head *bh = NULL;
2202 unsigned int accum = 0;
2203 int index;
2204 int block = 0, newblock;
5ca4e4be 2205 struct kernel_lb_addr loc;
1da177e4 2206 uint32_t bytes;
1da177e4
LT
2207 uint8_t *ptr;
2208 uint16_t ident;
2209 struct spaceBitmapDesc *bm;
2210
1da177e4 2211 loc.logicalBlockNum = bitmap->s_extPosition;
6c79e987 2212 loc.partitionReferenceNum = UDF_SB(sb)->s_partition;
97e961fd 2213 bh = udf_read_ptagged(sb, &loc, 0, &ident);
1da177e4 2214
cb00ea35 2215 if (!bh) {
1da177e4
LT
2216 printk(KERN_ERR "udf: udf_count_free failed\n");
2217 goto out;
cb00ea35 2218 } else if (ident != TAG_IDENT_SBD) {
3bf25cb4 2219 brelse(bh);
1da177e4
LT
2220 printk(KERN_ERR "udf: udf_count_free failed\n");
2221 goto out;
2222 }
2223
2224 bm = (struct spaceBitmapDesc *)bh->b_data;
2225 bytes = le32_to_cpu(bm->numOfBytes);
28de7948
CG
2226 index = sizeof(struct spaceBitmapDesc); /* offset in first block only */
2227 ptr = (uint8_t *)bh->b_data;
1da177e4 2228
cb00ea35 2229 while (bytes > 0) {
01b954a3
MS
2230 u32 cur_bytes = min_t(u32, bytes, sb->s_blocksize - index);
2231 accum += bitmap_weight((const unsigned long *)(ptr + index),
2232 cur_bytes * 8);
2233 bytes -= cur_bytes;
cb00ea35 2234 if (bytes) {
3bf25cb4 2235 brelse(bh);
97e961fd 2236 newblock = udf_get_lb_pblock(sb, &loc, ++block);
1da177e4 2237 bh = udf_tread(sb, newblock);
cb00ea35 2238 if (!bh) {
1da177e4
LT
2239 udf_debug("read failed\n");
2240 goto out;
2241 }
2242 index = 0;
28de7948 2243 ptr = (uint8_t *)bh->b_data;
1da177e4
LT
2244 }
2245 }
3bf25cb4 2246 brelse(bh);
28de7948 2247out:
1da177e4
LT
2248 return accum;
2249}
2250
4b11111a
MS
2251static unsigned int udf_count_free_table(struct super_block *sb,
2252 struct inode *table)
1da177e4
LT
2253{
2254 unsigned int accum = 0;
ff116fc8 2255 uint32_t elen;
5ca4e4be 2256 struct kernel_lb_addr eloc;
1da177e4 2257 int8_t etype;
ff116fc8 2258 struct extent_position epos;
1da177e4 2259
d1668fe3 2260 mutex_lock(&UDF_SB(sb)->s_alloc_mutex);
c0b34438 2261 epos.block = UDF_I(table)->i_location;
ff116fc8
JK
2262 epos.offset = sizeof(struct unallocSpaceEntry);
2263 epos.bh = NULL;
1da177e4 2264
3a71fc5d 2265 while ((etype = udf_next_aext(table, &epos, &eloc, &elen, 1)) != -1)
1da177e4 2266 accum += (elen >> table->i_sb->s_blocksize_bits);
3a71fc5d 2267
3bf25cb4 2268 brelse(epos.bh);
d1668fe3 2269 mutex_unlock(&UDF_SB(sb)->s_alloc_mutex);
1da177e4
LT
2270
2271 return accum;
2272}
cb00ea35
CG
2273
2274static unsigned int udf_count_free(struct super_block *sb)
1da177e4
LT
2275{
2276 unsigned int accum = 0;
6c79e987
MS
2277 struct udf_sb_info *sbi;
2278 struct udf_part_map *map;
1da177e4 2279
6c79e987
MS
2280 sbi = UDF_SB(sb);
2281 if (sbi->s_lvid_bh) {
4b11111a
MS
2282 struct logicalVolIntegrityDesc *lvid =
2283 (struct logicalVolIntegrityDesc *)
2284 sbi->s_lvid_bh->b_data;
6c79e987 2285 if (le32_to_cpu(lvid->numOfPartitions) > sbi->s_partition) {
4b11111a
MS
2286 accum = le32_to_cpu(
2287 lvid->freeSpaceTable[sbi->s_partition]);
1da177e4
LT
2288 if (accum == 0xFFFFFFFF)
2289 accum = 0;
2290 }
2291 }
2292
2293 if (accum)
2294 return accum;
2295
6c79e987
MS
2296 map = &sbi->s_partmaps[sbi->s_partition];
2297 if (map->s_partition_flags & UDF_PART_FLAG_UNALLOC_BITMAP) {
28de7948 2298 accum += udf_count_free_bitmap(sb,
6c79e987 2299 map->s_uspace.s_bitmap);
1da177e4 2300 }
6c79e987 2301 if (map->s_partition_flags & UDF_PART_FLAG_FREED_BITMAP) {
28de7948 2302 accum += udf_count_free_bitmap(sb,
6c79e987 2303 map->s_fspace.s_bitmap);
1da177e4
LT
2304 }
2305 if (accum)
2306 return accum;
2307
6c79e987 2308 if (map->s_partition_flags & UDF_PART_FLAG_UNALLOC_TABLE) {
28de7948 2309 accum += udf_count_free_table(sb,
6c79e987 2310 map->s_uspace.s_table);
1da177e4 2311 }
6c79e987 2312 if (map->s_partition_flags & UDF_PART_FLAG_FREED_TABLE) {
28de7948 2313 accum += udf_count_free_table(sb,
6c79e987 2314 map->s_fspace.s_table);
1da177e4
LT
2315 }
2316
2317 return accum;
2318}