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11#ifndef _LINUX_REISER_FS_H
12#define _LINUX_REISER_FS_H
13
14#include <linux/types.h>
15#include <linux/magic.h>
16
17#ifdef __KERNEL__
18#include <linux/slab.h>
19#include <linux/interrupt.h>
20#include <linux/sched.h>
21#include <linux/workqueue.h>
22#include <asm/unaligned.h>
23#include <linux/bitops.h>
24#include <linux/proc_fs.h>
25#include <linux/smp_lock.h>
26#include <linux/buffer_head.h>
27#include <linux/reiserfs_fs_i.h>
28#include <linux/reiserfs_fs_sb.h>
29#endif
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38
39#define REISERFS_IOC_UNPACK _IOW(0xCD,1,long)
40
41
42#define REISERFS_IOC_GETFLAGS FS_IOC_GETFLAGS
43#define REISERFS_IOC_SETFLAGS FS_IOC_SETFLAGS
44#define REISERFS_IOC_GETVERSION FS_IOC_GETVERSION
45#define REISERFS_IOC_SETVERSION FS_IOC_SETVERSION
46
47#ifdef __KERNEL__
48
49#define REISERFS_IOC32_UNPACK _IOW(0xCD, 1, int)
50#define REISERFS_IOC32_GETFLAGS FS_IOC32_GETFLAGS
51#define REISERFS_IOC32_SETFLAGS FS_IOC32_SETFLAGS
52#define REISERFS_IOC32_GETVERSION FS_IOC32_GETVERSION
53#define REISERFS_IOC32_SETVERSION FS_IOC32_SETVERSION
54
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58
59
60void reiserfs_write_lock(struct super_block *s);
61void reiserfs_write_unlock(struct super_block *s);
62int reiserfs_write_lock_once(struct super_block *s);
63void reiserfs_write_unlock_once(struct super_block *s, int lock_depth);
64
65#ifdef CONFIG_REISERFS_CHECK
66void reiserfs_lock_check_recursive(struct super_block *s);
67#else
68static inline void reiserfs_lock_check_recursive(struct super_block *s) { }
69#endif
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98static inline void reiserfs_mutex_lock_safe(struct mutex *m,
99 struct super_block *s)
100{
101 reiserfs_lock_check_recursive(s);
102 reiserfs_write_unlock(s);
103 mutex_lock(m);
104 reiserfs_write_lock(s);
105}
106
107static inline void
108reiserfs_mutex_lock_nested_safe(struct mutex *m, unsigned int subclass,
109 struct super_block *s)
110{
111 reiserfs_lock_check_recursive(s);
112 reiserfs_write_unlock(s);
113 mutex_lock_nested(m, subclass);
114 reiserfs_write_lock(s);
115}
116
117static inline void
118reiserfs_down_read_safe(struct rw_semaphore *sem, struct super_block *s)
119{
120 reiserfs_lock_check_recursive(s);
121 reiserfs_write_unlock(s);
122 down_read(sem);
123 reiserfs_write_lock(s);
124}
125
126
127
128
129
130static inline void reiserfs_cond_resched(struct super_block *s)
131{
132 if (need_resched()) {
133 reiserfs_write_unlock(s);
134 schedule();
135 reiserfs_write_lock(s);
136 }
137}
138
139struct fid;
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163
164#define USE_INODE_GENERATION_COUNTER
165
166#define REISERFS_PREALLOCATE
167#define DISPLACE_NEW_PACKING_LOCALITIES
168#define PREALLOCATION_SIZE 9
169
170
171#define _ROUND_UP(x,n) (((x)+(n)-1u) & ~((n)-1u))
172
173
174
175
176#define ROUND_UP(x) _ROUND_UP(x,8LL)
177
178
179
180
181#define REISERFS_DEBUG_CODE 5
182
183void __reiserfs_warning(struct super_block *s, const char *id,
184 const char *func, const char *fmt, ...);
185#define reiserfs_warning(s, id, fmt, args...) \
186 __reiserfs_warning(s, id, __func__, fmt, ##args)
187
188
189
190#define __RASSERT(cond, scond, format, args...) \
191do { \
192 if (!(cond)) \
193 reiserfs_panic(NULL, "assertion failure", "(" #cond ") at " \
194 __FILE__ ":%i:%s: " format "\n", \
195 in_interrupt() ? -1 : task_pid_nr(current), \
196 __LINE__, __func__ , ##args); \
197} while (0)
198
199#define RASSERT(cond, format, args...) __RASSERT(cond, #cond, format, ##args)
200
201#if defined( CONFIG_REISERFS_CHECK )
202#define RFALSE(cond, format, args...) __RASSERT(!(cond), "!(" #cond ")", format, ##args)
203#else
204#define RFALSE( cond, format, args... ) do {;} while( 0 )
205#endif
206
207#define CONSTF __attribute_const__
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219
220#define UNSET_HASH 0
221
222#define TEA_HASH 1
223#define YURA_HASH 2
224#define R5_HASH 3
225#define DEFAULT_HASH R5_HASH
226
227struct journal_params {
228 __le32 jp_journal_1st_block;
229
230 __le32 jp_journal_dev;
231 __le32 jp_journal_size;
232 __le32 jp_journal_trans_max;
233 __le32 jp_journal_magic;
234
235 __le32 jp_journal_max_batch;
236
237 __le32 jp_journal_max_commit_age;
238
239 __le32 jp_journal_max_trans_age;
240
241};
242
243
244struct reiserfs_super_block_v1 {
245 __le32 s_block_count;
246 __le32 s_free_blocks;
247 __le32 s_root_block;
248 struct journal_params s_journal;
249 __le16 s_blocksize;
250 __le16 s_oid_maxsize;
251
252 __le16 s_oid_cursize;
253 __le16 s_umount_state;
254
255 char s_magic[10];
256
257
258 __le16 s_fs_state;
259
260 __le32 s_hash_function_code;
261
262 __le16 s_tree_height;
263 __le16 s_bmap_nr;
264
265 __le16 s_version;
266
267 __le16 s_reserved_for_journal;
268
269
270} __attribute__ ((__packed__));
271
272#define SB_SIZE_V1 (sizeof(struct reiserfs_super_block_v1))
273
274
275struct reiserfs_super_block {
276 struct reiserfs_super_block_v1 s_v1;
277 __le32 s_inode_generation;
278 __le32 s_flags;
279 unsigned char s_uuid[16];
280 unsigned char s_label[16];
281 __le16 s_mnt_count;
282 __le16 s_max_mnt_count;
283 __le32 s_lastcheck;
284 __le32 s_check_interval;
285 char s_unused[76];
286
287
288
289} __attribute__ ((__packed__));
290
291#define SB_SIZE (sizeof(struct reiserfs_super_block))
292
293#define REISERFS_VERSION_1 0
294#define REISERFS_VERSION_2 2
295
296
297#define SB_DISK_SUPER_BLOCK(s) (REISERFS_SB(s)->s_rs)
298#define SB_V1_DISK_SUPER_BLOCK(s) (&(SB_DISK_SUPER_BLOCK(s)->s_v1))
299#define SB_BLOCKSIZE(s) \
300 le32_to_cpu ((SB_V1_DISK_SUPER_BLOCK(s)->s_blocksize))
301#define SB_BLOCK_COUNT(s) \
302 le32_to_cpu ((SB_V1_DISK_SUPER_BLOCK(s)->s_block_count))
303#define SB_FREE_BLOCKS(s) \
304 le32_to_cpu ((SB_V1_DISK_SUPER_BLOCK(s)->s_free_blocks))
305#define SB_REISERFS_MAGIC(s) \
306 (SB_V1_DISK_SUPER_BLOCK(s)->s_magic)
307#define SB_ROOT_BLOCK(s) \
308 le32_to_cpu ((SB_V1_DISK_SUPER_BLOCK(s)->s_root_block))
309#define SB_TREE_HEIGHT(s) \
310 le16_to_cpu ((SB_V1_DISK_SUPER_BLOCK(s)->s_tree_height))
311#define SB_REISERFS_STATE(s) \
312 le16_to_cpu ((SB_V1_DISK_SUPER_BLOCK(s)->s_umount_state))
313#define SB_VERSION(s) le16_to_cpu ((SB_V1_DISK_SUPER_BLOCK(s)->s_version))
314#define SB_BMAP_NR(s) le16_to_cpu ((SB_V1_DISK_SUPER_BLOCK(s)->s_bmap_nr))
315
316#define PUT_SB_BLOCK_COUNT(s, val) \
317 do { SB_V1_DISK_SUPER_BLOCK(s)->s_block_count = cpu_to_le32(val); } while (0)
318#define PUT_SB_FREE_BLOCKS(s, val) \
319 do { SB_V1_DISK_SUPER_BLOCK(s)->s_free_blocks = cpu_to_le32(val); } while (0)
320#define PUT_SB_ROOT_BLOCK(s, val) \
321 do { SB_V1_DISK_SUPER_BLOCK(s)->s_root_block = cpu_to_le32(val); } while (0)
322#define PUT_SB_TREE_HEIGHT(s, val) \
323 do { SB_V1_DISK_SUPER_BLOCK(s)->s_tree_height = cpu_to_le16(val); } while (0)
324#define PUT_SB_REISERFS_STATE(s, val) \
325 do { SB_V1_DISK_SUPER_BLOCK(s)->s_umount_state = cpu_to_le16(val); } while (0)
326#define PUT_SB_VERSION(s, val) \
327 do { SB_V1_DISK_SUPER_BLOCK(s)->s_version = cpu_to_le16(val); } while (0)
328#define PUT_SB_BMAP_NR(s, val) \
329 do { SB_V1_DISK_SUPER_BLOCK(s)->s_bmap_nr = cpu_to_le16 (val); } while (0)
330
331#define SB_ONDISK_JP(s) (&SB_V1_DISK_SUPER_BLOCK(s)->s_journal)
332#define SB_ONDISK_JOURNAL_SIZE(s) \
333 le32_to_cpu ((SB_ONDISK_JP(s)->jp_journal_size))
334#define SB_ONDISK_JOURNAL_1st_BLOCK(s) \
335 le32_to_cpu ((SB_ONDISK_JP(s)->jp_journal_1st_block))
336#define SB_ONDISK_JOURNAL_DEVICE(s) \
337 le32_to_cpu ((SB_ONDISK_JP(s)->jp_journal_dev))
338#define SB_ONDISK_RESERVED_FOR_JOURNAL(s) \
339 le16_to_cpu ((SB_V1_DISK_SUPER_BLOCK(s)->s_reserved_for_journal))
340
341#define is_block_in_log_or_reserved_area(s, block) \
342 block >= SB_JOURNAL_1st_RESERVED_BLOCK(s) \
343 && block < SB_JOURNAL_1st_RESERVED_BLOCK(s) + \
344 ((!is_reiserfs_jr(SB_DISK_SUPER_BLOCK(s)) ? \
345 SB_ONDISK_JOURNAL_SIZE(s) + 1 : SB_ONDISK_RESERVED_FOR_JOURNAL(s)))
346
347int is_reiserfs_3_5(struct reiserfs_super_block *rs);
348int is_reiserfs_3_6(struct reiserfs_super_block *rs);
349int is_reiserfs_jr(struct reiserfs_super_block *rs);
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355
356#define REISERFS_DISK_OFFSET_IN_BYTES (64 * 1024)
357#define REISERFS_FIRST_BLOCK unused_define
358#define REISERFS_JOURNAL_OFFSET_IN_BYTES REISERFS_DISK_OFFSET_IN_BYTES
359
360
361#define REISERFS_OLD_DISK_OFFSET_IN_BYTES (8 * 1024)
362
363
364#define CARRY_ON 0
365#define REPEAT_SEARCH -1
366#define IO_ERROR -2
367#define NO_DISK_SPACE -3
368#define NO_BALANCING_NEEDED (-4)
369#define NO_MORE_UNUSED_CONTIGUOUS_BLOCKS (-5)
370#define QUOTA_EXCEEDED -6
371
372typedef __u32 b_blocknr_t;
373typedef __le32 unp_t;
374
375struct unfm_nodeinfo {
376 unp_t unfm_nodenum;
377 unsigned short unfm_freespace;
378};
379
380
381
382#define KEY_FORMAT_3_5 0
383#define KEY_FORMAT_3_6 1
384
385
386#define STAT_DATA_V1 0
387#define STAT_DATA_V2 1
388
389static inline struct reiserfs_inode_info *REISERFS_I(const struct inode *inode)
390{
391 return container_of(inode, struct reiserfs_inode_info, vfs_inode);
392}
393
394static inline struct reiserfs_sb_info *REISERFS_SB(const struct super_block *sb)
395{
396 return sb->s_fs_info;
397}
398
399
400
401static inline __u32 reiserfs_bmap_count(struct super_block *sb)
402{
403 return (SB_BLOCK_COUNT(sb) - 1) / (sb->s_blocksize * 8) + 1;
404}
405
406static inline int bmap_would_wrap(unsigned bmap_nr)
407{
408 return bmap_nr > ((1LL << 16) - 1);
409}
410
411
412
413#define get_inode_item_key_version( inode ) \
414 ((REISERFS_I(inode)->i_flags & i_item_key_version_mask) ? KEY_FORMAT_3_6 : KEY_FORMAT_3_5)
415
416#define set_inode_item_key_version( inode, version ) \
417 ({ if((version)==KEY_FORMAT_3_6) \
418 REISERFS_I(inode)->i_flags |= i_item_key_version_mask; \
419 else \
420 REISERFS_I(inode)->i_flags &= ~i_item_key_version_mask; })
421
422#define get_inode_sd_version(inode) \
423 ((REISERFS_I(inode)->i_flags & i_stat_data_version_mask) ? STAT_DATA_V2 : STAT_DATA_V1)
424
425#define set_inode_sd_version(inode, version) \
426 ({ if((version)==STAT_DATA_V2) \
427 REISERFS_I(inode)->i_flags |= i_stat_data_version_mask; \
428 else \
429 REISERFS_I(inode)->i_flags &= ~i_stat_data_version_mask; })
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441#define STORE_TAIL_IN_UNFM_S1(n_file_size,n_tail_size,n_block_size) \
442(\
443 (!(n_tail_size)) || \
444 (((n_tail_size) > MAX_DIRECT_ITEM_LEN(n_block_size)) || \
445 ( (n_file_size) >= (n_block_size) * 4 ) || \
446 ( ( (n_file_size) >= (n_block_size) * 3 ) && \
447 ( (n_tail_size) >= (MAX_DIRECT_ITEM_LEN(n_block_size))/4) ) || \
448 ( ( (n_file_size) >= (n_block_size) * 2 ) && \
449 ( (n_tail_size) >= (MAX_DIRECT_ITEM_LEN(n_block_size))/2) ) || \
450 ( ( (n_file_size) >= (n_block_size) ) && \
451 ( (n_tail_size) >= (MAX_DIRECT_ITEM_LEN(n_block_size) * 3)/4) ) ) \
452)
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457
458
459#define STORE_TAIL_IN_UNFM_S2(n_file_size,n_tail_size,n_block_size) \
460(\
461 (!(n_tail_size)) || \
462 (((n_file_size) > MAX_DIRECT_ITEM_LEN(n_block_size)) ) \
463)
464
465
466
467
468#define REISERFS_VALID_FS 1
469#define REISERFS_ERROR_FS 2
470
471
472
473
474#define TYPE_STAT_DATA 0
475#define TYPE_INDIRECT 1
476#define TYPE_DIRECT 2
477#define TYPE_DIRENTRY 3
478#define TYPE_MAXTYPE 3
479#define TYPE_ANY 15
480
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487
488struct offset_v1 {
489 __le32 k_offset;
490 __le32 k_uniqueness;
491} __attribute__ ((__packed__));
492
493struct offset_v2 {
494 __le64 v;
495} __attribute__ ((__packed__));
496
497static inline __u16 offset_v2_k_type(const struct offset_v2 *v2)
498{
499 __u8 type = le64_to_cpu(v2->v) >> 60;
500 return (type <= TYPE_MAXTYPE) ? type : TYPE_ANY;
501}
502
503static inline void set_offset_v2_k_type(struct offset_v2 *v2, int type)
504{
505 v2->v =
506 (v2->v & cpu_to_le64(~0ULL >> 4)) | cpu_to_le64((__u64) type << 60);
507}
508
509static inline loff_t offset_v2_k_offset(const struct offset_v2 *v2)
510{
511 return le64_to_cpu(v2->v) & (~0ULL >> 4);
512}
513
514static inline void set_offset_v2_k_offset(struct offset_v2 *v2, loff_t offset)
515{
516 offset &= (~0ULL >> 4);
517 v2->v = (v2->v & cpu_to_le64(15ULL << 60)) | cpu_to_le64(offset);
518}
519
520
521
522struct reiserfs_key {
523 __le32 k_dir_id;
524
525 __le32 k_objectid;
526 union {
527 struct offset_v1 k_offset_v1;
528 struct offset_v2 k_offset_v2;
529 } __attribute__ ((__packed__)) u;
530} __attribute__ ((__packed__));
531
532struct in_core_key {
533 __u32 k_dir_id;
534
535 __u32 k_objectid;
536 __u64 k_offset;
537 __u8 k_type;
538};
539
540struct cpu_key {
541 struct in_core_key on_disk_key;
542 int version;
543 int key_length;
544
545};
546
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549
550
551#define REISERFS_FULL_KEY_LEN 4
552#define REISERFS_SHORT_KEY_LEN 2
553
554
555#define FIRST_GREATER 1
556#define SECOND_GREATER -1
557#define KEYS_IDENTICAL 0
558#define KEY_FOUND 1
559#define KEY_NOT_FOUND 0
560
561#define KEY_SIZE (sizeof(struct reiserfs_key))
562#define SHORT_KEY_SIZE (sizeof (__u32) + sizeof (__u32))
563
564
565#define ITEM_FOUND 1
566#define ITEM_NOT_FOUND 0
567#define ENTRY_FOUND 1
568#define ENTRY_NOT_FOUND 0
569#define DIRECTORY_NOT_FOUND -1
570#define REGULAR_FILE_FOUND -2
571#define DIRECTORY_FOUND -3
572#define BYTE_FOUND 1
573#define BYTE_NOT_FOUND 0
574#define FILE_NOT_FOUND -1
575
576#define POSITION_FOUND 1
577#define POSITION_NOT_FOUND 0
578
579
580#define NAME_FOUND 1
581#define NAME_NOT_FOUND 0
582#define GOTO_PREVIOUS_ITEM 2
583#define NAME_FOUND_INVISIBLE 3
584
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589
590struct item_head {
591
592
593 struct reiserfs_key ih_key;
594 union {
595
596
597
598
599
600
601 __le16 ih_free_space_reserved;
602
603
604 __le16 ih_entry_count;
605 } __attribute__ ((__packed__)) u;
606 __le16 ih_item_len;
607 __le16 ih_item_location;
608
609 __le16 ih_version;
610
611
612
613} __attribute__ ((__packed__));
614
615#define IH_SIZE (sizeof(struct item_head))
616
617#define ih_free_space(ih) le16_to_cpu((ih)->u.ih_free_space_reserved)
618#define ih_version(ih) le16_to_cpu((ih)->ih_version)
619#define ih_entry_count(ih) le16_to_cpu((ih)->u.ih_entry_count)
620#define ih_location(ih) le16_to_cpu((ih)->ih_item_location)
621#define ih_item_len(ih) le16_to_cpu((ih)->ih_item_len)
622
623#define put_ih_free_space(ih, val) do { (ih)->u.ih_free_space_reserved = cpu_to_le16(val); } while(0)
624#define put_ih_version(ih, val) do { (ih)->ih_version = cpu_to_le16(val); } while (0)
625#define put_ih_entry_count(ih, val) do { (ih)->u.ih_entry_count = cpu_to_le16(val); } while (0)
626#define put_ih_location(ih, val) do { (ih)->ih_item_location = cpu_to_le16(val); } while (0)
627#define put_ih_item_len(ih, val) do { (ih)->ih_item_len = cpu_to_le16(val); } while (0)
628
629#define unreachable_item(ih) (ih_version(ih) & (1 << 15))
630
631#define get_ih_free_space(ih) (ih_version (ih) == KEY_FORMAT_3_6 ? 0 : ih_free_space (ih))
632#define set_ih_free_space(ih,val) put_ih_free_space((ih), ((ih_version(ih) == KEY_FORMAT_3_6) ? 0 : (val)))
633
634
635
636
637
638
639
640#define get_block_num(p, i) get_unaligned_le32((p) + (i))
641#define put_block_num(p, i, v) put_unaligned_le32((v), (p) + (i))
642
643
644
645
646#define V1_SD_UNIQUENESS 0
647#define V1_INDIRECT_UNIQUENESS 0xfffffffe
648#define V1_DIRECT_UNIQUENESS 0xffffffff
649#define V1_DIRENTRY_UNIQUENESS 500
650#define V1_ANY_UNIQUENESS 555
651
652
653
654
655static inline int uniqueness2type(__u32 uniqueness) CONSTF;
656static inline int uniqueness2type(__u32 uniqueness)
657{
658 switch ((int)uniqueness) {
659 case V1_SD_UNIQUENESS:
660 return TYPE_STAT_DATA;
661 case V1_INDIRECT_UNIQUENESS:
662 return TYPE_INDIRECT;
663 case V1_DIRECT_UNIQUENESS:
664 return TYPE_DIRECT;
665 case V1_DIRENTRY_UNIQUENESS:
666 return TYPE_DIRENTRY;
667 case V1_ANY_UNIQUENESS:
668 default:
669 return TYPE_ANY;
670 }
671}
672
673static inline __u32 type2uniqueness(int type) CONSTF;
674static inline __u32 type2uniqueness(int type)
675{
676 switch (type) {
677 case TYPE_STAT_DATA:
678 return V1_SD_UNIQUENESS;
679 case TYPE_INDIRECT:
680 return V1_INDIRECT_UNIQUENESS;
681 case TYPE_DIRECT:
682 return V1_DIRECT_UNIQUENESS;
683 case TYPE_DIRENTRY:
684 return V1_DIRENTRY_UNIQUENESS;
685 case TYPE_ANY:
686 default:
687 return V1_ANY_UNIQUENESS;
688 }
689}
690
691
692
693
694
695
696static inline loff_t le_key_k_offset(int version,
697 const struct reiserfs_key *key)
698{
699 return (version == KEY_FORMAT_3_5) ?
700 le32_to_cpu(key->u.k_offset_v1.k_offset) :
701 offset_v2_k_offset(&(key->u.k_offset_v2));
702}
703
704static inline loff_t le_ih_k_offset(const struct item_head *ih)
705{
706 return le_key_k_offset(ih_version(ih), &(ih->ih_key));
707}
708
709static inline loff_t le_key_k_type(int version, const struct reiserfs_key *key)
710{
711 return (version == KEY_FORMAT_3_5) ?
712 uniqueness2type(le32_to_cpu(key->u.k_offset_v1.k_uniqueness)) :
713 offset_v2_k_type(&(key->u.k_offset_v2));
714}
715
716static inline loff_t le_ih_k_type(const struct item_head *ih)
717{
718 return le_key_k_type(ih_version(ih), &(ih->ih_key));
719}
720
721static inline void set_le_key_k_offset(int version, struct reiserfs_key *key,
722 loff_t offset)
723{
724 (version == KEY_FORMAT_3_5) ? (void)(key->u.k_offset_v1.k_offset = cpu_to_le32(offset)) :
725 (void)(set_offset_v2_k_offset(&(key->u.k_offset_v2), offset));
726}
727
728static inline void set_le_ih_k_offset(struct item_head *ih, loff_t offset)
729{
730 set_le_key_k_offset(ih_version(ih), &(ih->ih_key), offset);
731}
732
733static inline void set_le_key_k_type(int version, struct reiserfs_key *key,
734 int type)
735{
736 (version == KEY_FORMAT_3_5) ?
737 (void)(key->u.k_offset_v1.k_uniqueness =
738 cpu_to_le32(type2uniqueness(type)))
739 : (void)(set_offset_v2_k_type(&(key->u.k_offset_v2), type));
740}
741
742static inline void set_le_ih_k_type(struct item_head *ih, int type)
743{
744 set_le_key_k_type(ih_version(ih), &(ih->ih_key), type);
745}
746
747static inline int is_direntry_le_key(int version, struct reiserfs_key *key)
748{
749 return le_key_k_type(version, key) == TYPE_DIRENTRY;
750}
751
752static inline int is_direct_le_key(int version, struct reiserfs_key *key)
753{
754 return le_key_k_type(version, key) == TYPE_DIRECT;
755}
756
757static inline int is_indirect_le_key(int version, struct reiserfs_key *key)
758{
759 return le_key_k_type(version, key) == TYPE_INDIRECT;
760}
761
762static inline int is_statdata_le_key(int version, struct reiserfs_key *key)
763{
764 return le_key_k_type(version, key) == TYPE_STAT_DATA;
765}
766
767
768
769
770static inline int is_direntry_le_ih(struct item_head *ih)
771{
772 return is_direntry_le_key(ih_version(ih), &ih->ih_key);
773}
774
775static inline int is_direct_le_ih(struct item_head *ih)
776{
777 return is_direct_le_key(ih_version(ih), &ih->ih_key);
778}
779
780static inline int is_indirect_le_ih(struct item_head *ih)
781{
782 return is_indirect_le_key(ih_version(ih), &ih->ih_key);
783}
784
785static inline int is_statdata_le_ih(struct item_head *ih)
786{
787 return is_statdata_le_key(ih_version(ih), &ih->ih_key);
788}
789
790
791
792
793static inline loff_t cpu_key_k_offset(const struct cpu_key *key)
794{
795 return key->on_disk_key.k_offset;
796}
797
798static inline loff_t cpu_key_k_type(const struct cpu_key *key)
799{
800 return key->on_disk_key.k_type;
801}
802
803static inline void set_cpu_key_k_offset(struct cpu_key *key, loff_t offset)
804{
805 key->on_disk_key.k_offset = offset;
806}
807
808static inline void set_cpu_key_k_type(struct cpu_key *key, int type)
809{
810 key->on_disk_key.k_type = type;
811}
812
813static inline void cpu_key_k_offset_dec(struct cpu_key *key)
814{
815 key->on_disk_key.k_offset--;
816}
817
818#define is_direntry_cpu_key(key) (cpu_key_k_type (key) == TYPE_DIRENTRY)
819#define is_direct_cpu_key(key) (cpu_key_k_type (key) == TYPE_DIRECT)
820#define is_indirect_cpu_key(key) (cpu_key_k_type (key) == TYPE_INDIRECT)
821#define is_statdata_cpu_key(key) (cpu_key_k_type (key) == TYPE_STAT_DATA)
822
823
824#define is_direntry_cpu_ih(ih) (is_direntry_cpu_key (&((ih)->ih_key)))
825#define is_direct_cpu_ih(ih) (is_direct_cpu_key (&((ih)->ih_key)))
826#define is_indirect_cpu_ih(ih) (is_indirect_cpu_key (&((ih)->ih_key)))
827#define is_statdata_cpu_ih(ih) (is_statdata_cpu_key (&((ih)->ih_key)))
828
829#define I_K_KEY_IN_ITEM(ih, key, n_blocksize) \
830 (!COMP_SHORT_KEYS(ih, key) && \
831 I_OFF_BYTE_IN_ITEM(ih, k_offset(key), n_blocksize))
832
833
834#define MAX_ITEM_LEN(block_size) (block_size - BLKH_SIZE - IH_SIZE)
835#define MIN_ITEM_LEN 1
836
837
838#define REISERFS_ROOT_OBJECTID 2
839#define REISERFS_ROOT_PARENT_OBJECTID 1
840
841extern struct reiserfs_key root_key;
842
843
844
845
846
847
848
849
850
851
852
853
854struct block_head {
855 __le16 blk_level;
856 __le16 blk_nr_item;
857 __le16 blk_free_space;
858 __le16 blk_reserved;
859
860 struct reiserfs_key blk_right_delim_key;
861};
862
863#define BLKH_SIZE (sizeof(struct block_head))
864#define blkh_level(p_blkh) (le16_to_cpu((p_blkh)->blk_level))
865#define blkh_nr_item(p_blkh) (le16_to_cpu((p_blkh)->blk_nr_item))
866#define blkh_free_space(p_blkh) (le16_to_cpu((p_blkh)->blk_free_space))
867#define blkh_reserved(p_blkh) (le16_to_cpu((p_blkh)->blk_reserved))
868#define set_blkh_level(p_blkh,val) ((p_blkh)->blk_level = cpu_to_le16(val))
869#define set_blkh_nr_item(p_blkh,val) ((p_blkh)->blk_nr_item = cpu_to_le16(val))
870#define set_blkh_free_space(p_blkh,val) ((p_blkh)->blk_free_space = cpu_to_le16(val))
871#define set_blkh_reserved(p_blkh,val) ((p_blkh)->blk_reserved = cpu_to_le16(val))
872#define blkh_right_delim_key(p_blkh) ((p_blkh)->blk_right_delim_key)
873#define set_blkh_right_delim_key(p_blkh,val) ((p_blkh)->blk_right_delim_key = val)
874
875
876
877
878
879#define FREE_LEVEL 0
880
881
882
883
884#define DISK_LEAF_NODE_LEVEL 1
885
886
887#define B_BLK_HEAD(bh) ((struct block_head *)((bh)->b_data))
888
889#define B_NR_ITEMS(bh) (blkh_nr_item(B_BLK_HEAD(bh)))
890#define B_LEVEL(bh) (blkh_level(B_BLK_HEAD(bh)))
891#define B_FREE_SPACE(bh) (blkh_free_space(B_BLK_HEAD(bh)))
892
893#define PUT_B_NR_ITEMS(bh, val) do { set_blkh_nr_item(B_BLK_HEAD(bh), val); } while (0)
894#define PUT_B_LEVEL(bh, val) do { set_blkh_level(B_BLK_HEAD(bh), val); } while (0)
895#define PUT_B_FREE_SPACE(bh, val) do { set_blkh_free_space(B_BLK_HEAD(bh), val); } while (0)
896
897
898#define B_PRIGHT_DELIM_KEY(bh) (&(blk_right_delim_key(B_BLK_HEAD(bh))))
899
900
901#define B_IS_ITEMS_LEVEL(bh) (B_LEVEL(bh) == DISK_LEAF_NODE_LEVEL)
902
903
904#define B_IS_KEYS_LEVEL(bh) (B_LEVEL(bh) > DISK_LEAF_NODE_LEVEL \
905 && B_LEVEL(bh) <= MAX_HEIGHT)
906
907
908
909
910
911
912
913
914
915struct stat_data_v1 {
916 __le16 sd_mode;
917 __le16 sd_nlink;
918 __le16 sd_uid;
919 __le16 sd_gid;
920 __le32 sd_size;
921 __le32 sd_atime;
922 __le32 sd_mtime;
923 __le32 sd_ctime;
924 union {
925 __le32 sd_rdev;
926 __le32 sd_blocks;
927 } __attribute__ ((__packed__)) u;
928 __le32 sd_first_direct_byte;
929
930
931
932
933
934
935
936
937} __attribute__ ((__packed__));
938
939#define SD_V1_SIZE (sizeof(struct stat_data_v1))
940#define stat_data_v1(ih) (ih_version (ih) == KEY_FORMAT_3_5)
941#define sd_v1_mode(sdp) (le16_to_cpu((sdp)->sd_mode))
942#define set_sd_v1_mode(sdp,v) ((sdp)->sd_mode = cpu_to_le16(v))
943#define sd_v1_nlink(sdp) (le16_to_cpu((sdp)->sd_nlink))
944#define set_sd_v1_nlink(sdp,v) ((sdp)->sd_nlink = cpu_to_le16(v))
945#define sd_v1_uid(sdp) (le16_to_cpu((sdp)->sd_uid))
946#define set_sd_v1_uid(sdp,v) ((sdp)->sd_uid = cpu_to_le16(v))
947#define sd_v1_gid(sdp) (le16_to_cpu((sdp)->sd_gid))
948#define set_sd_v1_gid(sdp,v) ((sdp)->sd_gid = cpu_to_le16(v))
949#define sd_v1_size(sdp) (le32_to_cpu((sdp)->sd_size))
950#define set_sd_v1_size(sdp,v) ((sdp)->sd_size = cpu_to_le32(v))
951#define sd_v1_atime(sdp) (le32_to_cpu((sdp)->sd_atime))
952#define set_sd_v1_atime(sdp,v) ((sdp)->sd_atime = cpu_to_le32(v))
953#define sd_v1_mtime(sdp) (le32_to_cpu((sdp)->sd_mtime))
954#define set_sd_v1_mtime(sdp,v) ((sdp)->sd_mtime = cpu_to_le32(v))
955#define sd_v1_ctime(sdp) (le32_to_cpu((sdp)->sd_ctime))
956#define set_sd_v1_ctime(sdp,v) ((sdp)->sd_ctime = cpu_to_le32(v))
957#define sd_v1_rdev(sdp) (le32_to_cpu((sdp)->u.sd_rdev))
958#define set_sd_v1_rdev(sdp,v) ((sdp)->u.sd_rdev = cpu_to_le32(v))
959#define sd_v1_blocks(sdp) (le32_to_cpu((sdp)->u.sd_blocks))
960#define set_sd_v1_blocks(sdp,v) ((sdp)->u.sd_blocks = cpu_to_le32(v))
961#define sd_v1_first_direct_byte(sdp) \
962 (le32_to_cpu((sdp)->sd_first_direct_byte))
963#define set_sd_v1_first_direct_byte(sdp,v) \
964 ((sdp)->sd_first_direct_byte = cpu_to_le32(v))
965
966
967
968
969
970#define REISERFS_IMMUTABLE_FL FS_IMMUTABLE_FL
971#define REISERFS_APPEND_FL FS_APPEND_FL
972#define REISERFS_SYNC_FL FS_SYNC_FL
973#define REISERFS_NOATIME_FL FS_NOATIME_FL
974#define REISERFS_NODUMP_FL FS_NODUMP_FL
975#define REISERFS_SECRM_FL FS_SECRM_FL
976#define REISERFS_UNRM_FL FS_UNRM_FL
977#define REISERFS_COMPR_FL FS_COMPR_FL
978#define REISERFS_NOTAIL_FL FS_NOTAIL_FL
979
980
981#define REISERFS_INHERIT_MASK ( REISERFS_IMMUTABLE_FL | \
982 REISERFS_SYNC_FL | \
983 REISERFS_NOATIME_FL | \
984 REISERFS_NODUMP_FL | \
985 REISERFS_SECRM_FL | \
986 REISERFS_COMPR_FL | \
987 REISERFS_NOTAIL_FL )
988
989
990
991struct stat_data {
992 __le16 sd_mode;
993 __le16 sd_attrs;
994 __le32 sd_nlink;
995 __le64 sd_size;
996 __le32 sd_uid;
997 __le32 sd_gid;
998 __le32 sd_atime;
999 __le32 sd_mtime;
1000 __le32 sd_ctime;
1001 __le32 sd_blocks;
1002 union {
1003 __le32 sd_rdev;
1004 __le32 sd_generation;
1005
1006
1007
1008
1009
1010
1011
1012
1013
1014 } __attribute__ ((__packed__)) u;
1015} __attribute__ ((__packed__));
1016
1017
1018
1019#define SD_SIZE (sizeof(struct stat_data))
1020#define SD_V2_SIZE SD_SIZE
1021#define stat_data_v2(ih) (ih_version (ih) == KEY_FORMAT_3_6)
1022#define sd_v2_mode(sdp) (le16_to_cpu((sdp)->sd_mode))
1023#define set_sd_v2_mode(sdp,v) ((sdp)->sd_mode = cpu_to_le16(v))
1024
1025
1026#define sd_v2_nlink(sdp) (le32_to_cpu((sdp)->sd_nlink))
1027#define set_sd_v2_nlink(sdp,v) ((sdp)->sd_nlink = cpu_to_le32(v))
1028#define sd_v2_size(sdp) (le64_to_cpu((sdp)->sd_size))
1029#define set_sd_v2_size(sdp,v) ((sdp)->sd_size = cpu_to_le64(v))
1030#define sd_v2_uid(sdp) (le32_to_cpu((sdp)->sd_uid))
1031#define set_sd_v2_uid(sdp,v) ((sdp)->sd_uid = cpu_to_le32(v))
1032#define sd_v2_gid(sdp) (le32_to_cpu((sdp)->sd_gid))
1033#define set_sd_v2_gid(sdp,v) ((sdp)->sd_gid = cpu_to_le32(v))
1034#define sd_v2_atime(sdp) (le32_to_cpu((sdp)->sd_atime))
1035#define set_sd_v2_atime(sdp,v) ((sdp)->sd_atime = cpu_to_le32(v))
1036#define sd_v2_mtime(sdp) (le32_to_cpu((sdp)->sd_mtime))
1037#define set_sd_v2_mtime(sdp,v) ((sdp)->sd_mtime = cpu_to_le32(v))
1038#define sd_v2_ctime(sdp) (le32_to_cpu((sdp)->sd_ctime))
1039#define set_sd_v2_ctime(sdp,v) ((sdp)->sd_ctime = cpu_to_le32(v))
1040#define sd_v2_blocks(sdp) (le32_to_cpu((sdp)->sd_blocks))
1041#define set_sd_v2_blocks(sdp,v) ((sdp)->sd_blocks = cpu_to_le32(v))
1042#define sd_v2_rdev(sdp) (le32_to_cpu((sdp)->u.sd_rdev))
1043#define set_sd_v2_rdev(sdp,v) ((sdp)->u.sd_rdev = cpu_to_le32(v))
1044#define sd_v2_generation(sdp) (le32_to_cpu((sdp)->u.sd_generation))
1045#define set_sd_v2_generation(sdp,v) ((sdp)->u.sd_generation = cpu_to_le32(v))
1046#define sd_v2_attrs(sdp) (le16_to_cpu((sdp)->sd_attrs))
1047#define set_sd_v2_attrs(sdp,v) ((sdp)->sd_attrs = cpu_to_le16(v))
1048
1049
1050
1051
1052
1053
1054
1055
1056
1057
1058
1059
1060
1061
1062
1063
1064
1065#define SD_OFFSET 0
1066#define SD_UNIQUENESS 0
1067#define DOT_OFFSET 1
1068#define DOT_DOT_OFFSET 2
1069#define DIRENTRY_UNIQUENESS 500
1070
1071
1072#define FIRST_ITEM_OFFSET 1
1073
1074
1075
1076
1077
1078
1079
1080
1081
1082
1083struct reiserfs_de_head {
1084 __le32 deh_offset;
1085 __le32 deh_dir_id;
1086
1087 __le32 deh_objectid;
1088 __le16 deh_location;
1089 __le16 deh_state;
1090
1091} __attribute__ ((__packed__));
1092#define DEH_SIZE sizeof(struct reiserfs_de_head)
1093#define deh_offset(p_deh) (le32_to_cpu((p_deh)->deh_offset))
1094#define deh_dir_id(p_deh) (le32_to_cpu((p_deh)->deh_dir_id))
1095#define deh_objectid(p_deh) (le32_to_cpu((p_deh)->deh_objectid))
1096#define deh_location(p_deh) (le16_to_cpu((p_deh)->deh_location))
1097#define deh_state(p_deh) (le16_to_cpu((p_deh)->deh_state))
1098
1099#define put_deh_offset(p_deh,v) ((p_deh)->deh_offset = cpu_to_le32((v)))
1100#define put_deh_dir_id(p_deh,v) ((p_deh)->deh_dir_id = cpu_to_le32((v)))
1101#define put_deh_objectid(p_deh,v) ((p_deh)->deh_objectid = cpu_to_le32((v)))
1102#define put_deh_location(p_deh,v) ((p_deh)->deh_location = cpu_to_le16((v)))
1103#define put_deh_state(p_deh,v) ((p_deh)->deh_state = cpu_to_le16((v)))
1104
1105
1106#define EMPTY_DIR_SIZE \
1107(DEH_SIZE * 2 + ROUND_UP (strlen (".")) + ROUND_UP (strlen ("..")))
1108
1109
1110#define EMPTY_DIR_SIZE_V1 (DEH_SIZE * 2 + 3)
1111
1112#define DEH_Statdata 0
1113#define DEH_Visible 2
1114
1115
1116#if BITS_PER_LONG == 64 || defined(__s390__) || defined(__hppa__)
1117# define ADDR_UNALIGNED_BITS (3)
1118#endif
1119
1120
1121
1122
1123#ifdef ADDR_UNALIGNED_BITS
1124
1125# define aligned_address(addr) ((void *)((long)(addr) & ~((1UL << ADDR_UNALIGNED_BITS) - 1)))
1126# define unaligned_offset(addr) (((int)((long)(addr) & ((1 << ADDR_UNALIGNED_BITS) - 1))) << 3)
1127
1128# define set_bit_unaligned(nr, addr) ext2_set_bit((nr) + unaligned_offset(addr), aligned_address(addr))
1129# define clear_bit_unaligned(nr, addr) ext2_clear_bit((nr) + unaligned_offset(addr), aligned_address(addr))
1130# define test_bit_unaligned(nr, addr) ext2_test_bit((nr) + unaligned_offset(addr), aligned_address(addr))
1131
1132#else
1133
1134# define set_bit_unaligned(nr, addr) ext2_set_bit(nr, addr)
1135# define clear_bit_unaligned(nr, addr) ext2_clear_bit(nr, addr)
1136# define test_bit_unaligned(nr, addr) ext2_test_bit(nr, addr)
1137
1138#endif
1139
1140#define mark_de_with_sd(deh) set_bit_unaligned (DEH_Statdata, &((deh)->deh_state))
1141#define mark_de_without_sd(deh) clear_bit_unaligned (DEH_Statdata, &((deh)->deh_state))
1142#define mark_de_visible(deh) set_bit_unaligned (DEH_Visible, &((deh)->deh_state))
1143#define mark_de_hidden(deh) clear_bit_unaligned (DEH_Visible, &((deh)->deh_state))
1144
1145#define de_with_sd(deh) test_bit_unaligned (DEH_Statdata, &((deh)->deh_state))
1146#define de_visible(deh) test_bit_unaligned (DEH_Visible, &((deh)->deh_state))
1147#define de_hidden(deh) !test_bit_unaligned (DEH_Visible, &((deh)->deh_state))
1148
1149extern void make_empty_dir_item_v1(char *body, __le32 dirid, __le32 objid,
1150 __le32 par_dirid, __le32 par_objid);
1151extern void make_empty_dir_item(char *body, __le32 dirid, __le32 objid,
1152 __le32 par_dirid, __le32 par_objid);
1153
1154
1155
1156#define B_I_PITEM(bh,ih) ( (bh)->b_data + ih_location(ih) )
1157#define B_I_DEH(bh,ih) ((struct reiserfs_de_head *)(B_I_PITEM(bh,ih)))
1158
1159
1160
1161
1162
1163
1164
1165
1166
1167
1168
1169static inline int entry_length(const struct buffer_head *bh,
1170 const struct item_head *ih, int pos_in_item)
1171{
1172 struct reiserfs_de_head *deh;
1173
1174 deh = B_I_DEH(bh, ih) + pos_in_item;
1175 if (pos_in_item)
1176 return deh_location(deh - 1) - deh_location(deh);
1177
1178 return ih_item_len(ih) - deh_location(deh);
1179}
1180
1181
1182#define I_ENTRY_COUNT(ih) (ih_entry_count((ih)))
1183
1184
1185#define B_I_E_NAME(bh,ih,entry_num) ((char *)(bh->b_data + ih_location(ih) + deh_location(B_I_DEH(bh,ih)+(entry_num))))
1186
1187
1188#define REISERFS_MAX_NAME(block_size) 255
1189
1190
1191
1192
1193
1194struct reiserfs_dir_entry {
1195 struct buffer_head *de_bh;
1196 int de_item_num;
1197 struct item_head *de_ih;
1198 int de_entry_num;
1199 struct reiserfs_de_head *de_deh;
1200 int de_entrylen;
1201 int de_namelen;
1202 char *de_name;
1203 unsigned long *de_gen_number_bit_string;
1204
1205 __u32 de_dir_id;
1206 __u32 de_objectid;
1207
1208 struct cpu_key de_entry_key;
1209};
1210
1211
1212
1213
1214#define B_I_DEH_ENTRY_FILE_NAME(bh,ih,deh) (B_I_PITEM (bh, ih) + deh_location(deh))
1215
1216
1217#define I_DEH_N_ENTRY_FILE_NAME_LENGTH(ih,deh,entry_num) \
1218(I_DEH_N_ENTRY_LENGTH (ih, deh, entry_num) - (de_with_sd (deh) ? SD_SIZE : 0))
1219
1220
1221#define GET_HASH_VALUE(offset) ((offset) & 0x7fffff80LL)
1222
1223#define GET_GENERATION_NUMBER(offset) ((offset) & 0x7fLL)
1224#define MAX_GENERATION_NUMBER 127
1225
1226#define SET_GENERATION_NUMBER(offset,gen_number) (GET_HASH_VALUE(offset)|(gen_number))
1227
1228
1229
1230
1231
1232
1233
1234
1235
1236
1237
1238
1239
1240
1241
1242struct disk_child {
1243 __le32 dc_block_number;
1244 __le16 dc_size;
1245 __le16 dc_reserved;
1246};
1247
1248#define DC_SIZE (sizeof(struct disk_child))
1249#define dc_block_number(dc_p) (le32_to_cpu((dc_p)->dc_block_number))
1250#define dc_size(dc_p) (le16_to_cpu((dc_p)->dc_size))
1251#define put_dc_block_number(dc_p, val) do { (dc_p)->dc_block_number = cpu_to_le32(val); } while(0)
1252#define put_dc_size(dc_p, val) do { (dc_p)->dc_size = cpu_to_le16(val); } while(0)
1253
1254
1255#define B_N_CHILD(bh, n_pos) ((struct disk_child *)\
1256((bh)->b_data + BLKH_SIZE + B_NR_ITEMS(bh) * KEY_SIZE + DC_SIZE * (n_pos)))
1257
1258
1259#define B_N_CHILD_NUM(bh, n_pos) (dc_block_number(B_N_CHILD(bh, n_pos)))
1260#define PUT_B_N_CHILD_NUM(bh, n_pos, val) \
1261 (put_dc_block_number(B_N_CHILD(bh, n_pos), val))
1262
1263
1264
1265#define MAX_CHILD_SIZE(bh) ((int)( (bh)->b_size - BLKH_SIZE ))
1266
1267
1268#define B_CHILD_SIZE(cur) (MAX_CHILD_SIZE(cur)-(B_FREE_SPACE(cur)))
1269
1270
1271#define MAX_NR_KEY(bh) ( (MAX_CHILD_SIZE(bh)-DC_SIZE)/(KEY_SIZE+DC_SIZE) )
1272#define MIN_NR_KEY(bh) (MAX_NR_KEY(bh)/2)
1273
1274
1275
1276
1277
1278
1279
1280
1281
1282
1283
1284
1285
1286struct path_element {
1287 struct buffer_head *pe_buffer;
1288 int pe_position;
1289
1290};
1291
1292#define MAX_HEIGHT 5
1293#define EXTENDED_MAX_HEIGHT 7
1294#define FIRST_PATH_ELEMENT_OFFSET 2
1295
1296#define ILLEGAL_PATH_ELEMENT_OFFSET 1
1297#define MAX_FEB_SIZE 6
1298
1299
1300
1301
1302
1303
1304
1305
1306
1307
1308
1309
1310
1311
1312
1313
1314
1315
1316#define PATH_READA 0x1
1317#define PATH_READA_BACK 0x2
1318
1319struct treepath {
1320 int path_length;
1321 int reada;
1322 struct path_element path_elements[EXTENDED_MAX_HEIGHT];
1323 int pos_in_item;
1324};
1325
1326#define pos_in_item(path) ((path)->pos_in_item)
1327
1328#define INITIALIZE_PATH(var) \
1329struct treepath var = {.path_length = ILLEGAL_PATH_ELEMENT_OFFSET, .reada = 0,}
1330
1331
1332#define PATH_OFFSET_PELEMENT(path, n_offset) ((path)->path_elements + (n_offset))
1333
1334
1335#define PATH_OFFSET_PBUFFER(path, n_offset) (PATH_OFFSET_PELEMENT(path, n_offset)->pe_buffer)
1336
1337
1338#define PATH_OFFSET_POSITION(path, n_offset) (PATH_OFFSET_PELEMENT(path, n_offset)->pe_position)
1339
1340#define PATH_PLAST_BUFFER(path) (PATH_OFFSET_PBUFFER((path), (path)->path_length))
1341
1342
1343
1344
1345
1346
1347#define PATH_LAST_POSITION(path) (PATH_OFFSET_POSITION((path), (path)->path_length))
1348
1349#define PATH_PITEM_HEAD(path) B_N_PITEM_HEAD(PATH_PLAST_BUFFER(path), PATH_LAST_POSITION(path))
1350
1351
1352
1353#define PATH_H_PBUFFER(path, h) PATH_OFFSET_PBUFFER (path, path->path_length - (h))
1354#define PATH_H_PPARENT(path, h) PATH_H_PBUFFER (path, (h) + 1)
1355#define PATH_H_POSITION(path, h) PATH_OFFSET_POSITION (path, path->path_length - (h))
1356#define PATH_H_B_ITEM_ORDER(path, h) PATH_H_POSITION(path, h + 1)
1357
1358#define PATH_H_PATH_OFFSET(path, n_h) ((path)->path_length - (n_h))
1359
1360#define get_last_bh(path) PATH_PLAST_BUFFER(path)
1361#define get_ih(path) PATH_PITEM_HEAD(path)
1362#define get_item_pos(path) PATH_LAST_POSITION(path)
1363#define get_item(path) ((void *)B_N_PITEM(PATH_PLAST_BUFFER(path), PATH_LAST_POSITION (path)))
1364#define item_moved(ih,path) comp_items(ih, path)
1365#define path_changed(ih,path) comp_items (ih, path)
1366
1367
1368
1369
1370
1371
1372#define UNFM_P_SIZE (sizeof(unp_t))
1373#define UNFM_P_SHIFT 2
1374
1375
1376#define INODE_PKEY(inode) ((struct reiserfs_key *)(REISERFS_I(inode)->i_key))
1377
1378#define MAX_UL_INT 0xffffffff
1379#define MAX_INT 0x7ffffff
1380#define MAX_US_INT 0xffff
1381
1382
1383#define U32_MAX (~(__u32)0)
1384
1385static inline loff_t max_reiserfs_offset(struct inode *inode)
1386{
1387 if (get_inode_item_key_version(inode) == KEY_FORMAT_3_5)
1388 return (loff_t) U32_MAX;
1389
1390 return (loff_t) ((~(__u64) 0) >> 4);
1391}
1392
1393
1394#define MAX_KEY_OBJECTID MAX_UL_INT
1395
1396#define MAX_B_NUM MAX_UL_INT
1397#define MAX_FC_NUM MAX_US_INT
1398
1399
1400#define REISERFS_LINK_MAX (MAX_US_INT - 1000)
1401
1402
1403#define REISERFS_KERNEL_MEM 0
1404#define REISERFS_USER_MEM 1
1405
1406#define fs_generation(s) (REISERFS_SB(s)->s_generation_counter)
1407#define get_generation(s) atomic_read (&fs_generation(s))
1408#define FILESYSTEM_CHANGED_TB(tb) (get_generation((tb)->tb_sb) != (tb)->fs_gen)
1409#define __fs_changed(gen,s) (gen != get_generation (s))
1410#define fs_changed(gen,s) \
1411({ \
1412 reiserfs_cond_resched(s); \
1413 __fs_changed(gen, s); \
1414})
1415
1416
1417
1418
1419
1420#define VI_TYPE_LEFT_MERGEABLE 1
1421#define VI_TYPE_RIGHT_MERGEABLE 2
1422
1423
1424
1425
1426
1427
1428
1429
1430
1431
1432
1433
1434
1435
1436struct virtual_item {
1437 int vi_index;
1438 unsigned short vi_type;
1439 unsigned short vi_item_len;
1440 struct item_head *vi_ih;
1441 const char *vi_item;
1442 const void *vi_new_data;
1443 void *vi_uarea;
1444};
1445
1446struct virtual_node {
1447 char *vn_free_ptr;
1448 unsigned short vn_nr_item;
1449 short vn_size;
1450 short vn_mode;
1451 short vn_affected_item_num;
1452 short vn_pos_in_item;
1453 struct item_head *vn_ins_ih;
1454 const void *vn_data;
1455 struct virtual_item *vn_vi;
1456};
1457
1458
1459struct direntry_uarea {
1460 int flags;
1461 __u16 entry_count;
1462 __u16 entry_sizes[1];
1463} __attribute__ ((__packed__));
1464
1465
1466
1467
1468
1469
1470
1471
1472
1473
1474
1475
1476
1477
1478
1479
1480#define MAX_FREE_BLOCK 7
1481
1482
1483#define MAX_AMOUNT_NEEDED 2
1484
1485
1486struct tree_balance {
1487 int tb_mode;
1488 int need_balance_dirty;
1489 struct super_block *tb_sb;
1490 struct reiserfs_transaction_handle *transaction_handle;
1491 struct treepath *tb_path;
1492 struct buffer_head *L[MAX_HEIGHT];
1493 struct buffer_head *R[MAX_HEIGHT];
1494 struct buffer_head *FL[MAX_HEIGHT];
1495 struct buffer_head *FR[MAX_HEIGHT];
1496 struct buffer_head *CFL[MAX_HEIGHT];
1497 struct buffer_head *CFR[MAX_HEIGHT];
1498
1499 struct buffer_head *FEB[MAX_FEB_SIZE];
1500
1501 struct buffer_head *used[MAX_FEB_SIZE];
1502 struct buffer_head *thrown[MAX_FEB_SIZE];
1503 int lnum[MAX_HEIGHT];
1504
1505
1506
1507
1508
1509
1510
1511
1512 int rnum[MAX_HEIGHT];
1513 int lkey[MAX_HEIGHT];
1514
1515 int rkey[MAX_HEIGHT];
1516 int insert_size[MAX_HEIGHT];
1517
1518 int blknum[MAX_HEIGHT];
1519
1520
1521
1522
1523
1524
1525 int cur_blknum;
1526 int s0num;
1527 int s1num;
1528 int s2num;
1529 int lbytes;
1530
1531
1532 int rbytes;
1533
1534
1535 int s1bytes;
1536
1537 int s2bytes;
1538 struct buffer_head *buf_to_free[MAX_FREE_BLOCK];
1539 char *vn_buf;
1540
1541
1542 int vn_buf_size;
1543 struct virtual_node *tb_vn;
1544
1545 int fs_gen;
1546
1547#ifdef DISPLACE_NEW_PACKING_LOCALITIES
1548 struct in_core_key key;
1549
1550#endif
1551};
1552
1553
1554
1555
1556#define M_INSERT 'i'
1557
1558
1559#define M_PASTE 'p'
1560
1561#define M_DELETE 'd'
1562
1563#define M_CUT 'c'
1564
1565
1566#define M_INTERNAL 'n'
1567
1568
1569
1570#define M_SKIP_BALANCING 's'
1571#define M_CONVERT 'v'
1572
1573
1574#define LEAF_FROM_S_TO_L 0
1575#define LEAF_FROM_S_TO_R 1
1576#define LEAF_FROM_R_TO_L 2
1577#define LEAF_FROM_L_TO_R 3
1578#define LEAF_FROM_S_TO_SNEW 4
1579
1580#define FIRST_TO_LAST 0
1581#define LAST_TO_FIRST 1
1582
1583
1584
1585struct buffer_info {
1586 struct tree_balance *tb;
1587 struct buffer_head *bi_bh;
1588 struct buffer_head *bi_parent;
1589 int bi_position;
1590};
1591
1592static inline struct super_block *sb_from_tb(struct tree_balance *tb)
1593{
1594 return tb ? tb->tb_sb : NULL;
1595}
1596
1597static inline struct super_block *sb_from_bi(struct buffer_info *bi)
1598{
1599 return bi ? sb_from_tb(bi->tb) : NULL;
1600}
1601
1602
1603
1604
1605
1606
1607
1608
1609
1610
1611
1612
1613
1614
1615
1616
1617
1618struct item_operations {
1619 int (*bytes_number) (struct item_head * ih, int block_size);
1620 void (*decrement_key) (struct cpu_key *);
1621 int (*is_left_mergeable) (struct reiserfs_key * ih,
1622 unsigned long bsize);
1623 void (*print_item) (struct item_head *, char *item);
1624 void (*check_item) (struct item_head *, char *item);
1625
1626 int (*create_vi) (struct virtual_node * vn, struct virtual_item * vi,
1627 int is_affected, int insert_size);
1628 int (*check_left) (struct virtual_item * vi, int free,
1629 int start_skip, int end_skip);
1630 int (*check_right) (struct virtual_item * vi, int free);
1631 int (*part_size) (struct virtual_item * vi, int from, int to);
1632 int (*unit_num) (struct virtual_item * vi);
1633 void (*print_vi) (struct virtual_item * vi);
1634};
1635
1636extern struct item_operations *item_ops[TYPE_ANY + 1];
1637
1638#define op_bytes_number(ih,bsize) item_ops[le_ih_k_type (ih)]->bytes_number (ih, bsize)
1639#define op_is_left_mergeable(key,bsize) item_ops[le_key_k_type (le_key_version (key), key)]->is_left_mergeable (key, bsize)
1640#define op_print_item(ih,item) item_ops[le_ih_k_type (ih)]->print_item (ih, item)
1641#define op_check_item(ih,item) item_ops[le_ih_k_type (ih)]->check_item (ih, item)
1642#define op_create_vi(vn,vi,is_affected,insert_size) item_ops[le_ih_k_type ((vi)->vi_ih)]->create_vi (vn,vi,is_affected,insert_size)
1643#define op_check_left(vi,free,start_skip,end_skip) item_ops[(vi)->vi_index]->check_left (vi, free, start_skip, end_skip)
1644#define op_check_right(vi,free) item_ops[(vi)->vi_index]->check_right (vi, free)
1645#define op_part_size(vi,from,to) item_ops[(vi)->vi_index]->part_size (vi, from, to)
1646#define op_unit_num(vi) item_ops[(vi)->vi_index]->unit_num (vi)
1647#define op_print_vi(vi) item_ops[(vi)->vi_index]->print_vi (vi)
1648
1649#define COMP_SHORT_KEYS comp_short_keys
1650
1651
1652#define I_UNFM_NUM(ih) (ih_item_len(ih) / UNFM_P_SIZE)
1653
1654
1655#define I_POS_UNFM_SIZE(ih,pos,size) (((pos) == I_UNFM_NUM(ih) - 1 ) ? (size) - ih_free_space(ih) : (size))
1656
1657
1658
1659
1660#define B_N_PITEM_HEAD(bh,item_num) ( (struct item_head * )((bh)->b_data + BLKH_SIZE) + (item_num) )
1661
1662
1663#define B_N_PDELIM_KEY(bh,item_num) ( (struct reiserfs_key * )((bh)->b_data + BLKH_SIZE) + (item_num) )
1664
1665
1666#define B_N_PKEY(bh,item_num) ( &(B_N_PITEM_HEAD(bh,item_num)->ih_key) )
1667
1668
1669#define B_N_PITEM(bh,item_num) ( (bh)->b_data + ih_location(B_N_PITEM_HEAD((bh),(item_num))))
1670
1671
1672#define B_N_STAT_DATA(bh,nr) \
1673( (struct stat_data *)((bh)->b_data + ih_location(B_N_PITEM_HEAD((bh),(nr))) ) )
1674
1675
1676
1677
1678#define B_I_STAT_DATA(bh, ih) ( (struct stat_data * )((bh)->b_data + ih_location(ih)) )
1679
1680
1681#define MAX_DIRECT_ITEM_LEN(size) ((size) - BLKH_SIZE - 2*IH_SIZE - SD_SIZE - UNFM_P_SIZE)
1682
1683
1684
1685
1686#define B_I_POS_UNFM_POINTER(bh,ih,pos) le32_to_cpu(*(((unp_t *)B_I_PITEM(bh,ih)) + (pos)))
1687#define PUT_B_I_POS_UNFM_POINTER(bh,ih,pos, val) do {*(((unp_t *)B_I_PITEM(bh,ih)) + (pos)) = cpu_to_le32(val); } while (0)
1688
1689struct reiserfs_iget_args {
1690 __u32 objectid;
1691 __u32 dirid;
1692};
1693
1694
1695
1696
1697
1698#define get_journal_desc_magic(bh) (bh->b_data + bh->b_size - 12)
1699
1700#define journal_trans_half(blocksize) \
1701 ((blocksize - sizeof (struct reiserfs_journal_desc) + sizeof (__u32) - 12) / sizeof (__u32))
1702
1703
1704
1705
1706struct reiserfs_journal_desc {
1707 __le32 j_trans_id;
1708 __le32 j_len;
1709 __le32 j_mount_id;
1710 __le32 j_realblock[1];
1711};
1712
1713#define get_desc_trans_id(d) le32_to_cpu((d)->j_trans_id)
1714#define get_desc_trans_len(d) le32_to_cpu((d)->j_len)
1715#define get_desc_mount_id(d) le32_to_cpu((d)->j_mount_id)
1716
1717#define set_desc_trans_id(d,val) do { (d)->j_trans_id = cpu_to_le32 (val); } while (0)
1718#define set_desc_trans_len(d,val) do { (d)->j_len = cpu_to_le32 (val); } while (0)
1719#define set_desc_mount_id(d,val) do { (d)->j_mount_id = cpu_to_le32 (val); } while (0)
1720
1721
1722struct reiserfs_journal_commit {
1723 __le32 j_trans_id;
1724 __le32 j_len;
1725 __le32 j_realblock[1];
1726};
1727
1728#define get_commit_trans_id(c) le32_to_cpu((c)->j_trans_id)
1729#define get_commit_trans_len(c) le32_to_cpu((c)->j_len)
1730#define get_commit_mount_id(c) le32_to_cpu((c)->j_mount_id)
1731
1732#define set_commit_trans_id(c,val) do { (c)->j_trans_id = cpu_to_le32 (val); } while (0)
1733#define set_commit_trans_len(c,val) do { (c)->j_len = cpu_to_le32 (val); } while (0)
1734
1735
1736
1737
1738
1739struct reiserfs_journal_header {
1740 __le32 j_last_flush_trans_id;
1741 __le32 j_first_unflushed_offset;
1742 __le32 j_mount_id;
1743 struct journal_params jh_journal;
1744};
1745
1746
1747#define JOURNAL_BLOCK_COUNT 8192
1748#define JOURNAL_TRANS_MAX_DEFAULT 1024
1749#define JOURNAL_TRANS_MIN_DEFAULT 256
1750#define JOURNAL_MAX_BATCH_DEFAULT 900
1751#define JOURNAL_MIN_RATIO 2
1752#define JOURNAL_MAX_COMMIT_AGE 30
1753#define JOURNAL_MAX_TRANS_AGE 30
1754#define JOURNAL_PER_BALANCE_CNT (3 * (MAX_HEIGHT-2) + 9)
1755#define JOURNAL_BLOCKS_PER_OBJECT(sb) (JOURNAL_PER_BALANCE_CNT * 3 + \
1756 2 * (REISERFS_QUOTA_INIT_BLOCKS(sb) + \
1757 REISERFS_QUOTA_TRANS_BLOCKS(sb)))
1758
1759#ifdef CONFIG_QUOTA
1760
1761#define REISERFS_QUOTA_TRANS_BLOCKS(s) (REISERFS_SB(s)->s_mount_opt & (1<<REISERFS_QUOTA) ? 2 : 0)
1762
1763#define REISERFS_QUOTA_INIT_BLOCKS(s) (REISERFS_SB(s)->s_mount_opt & (1<<REISERFS_QUOTA) ? \
1764(DQUOT_INIT_ALLOC*(JOURNAL_PER_BALANCE_CNT+2)+DQUOT_INIT_REWRITE+1) : 0)
1765
1766#define REISERFS_QUOTA_DEL_BLOCKS(s) (REISERFS_SB(s)->s_mount_opt & (1<<REISERFS_QUOTA) ? \
1767(DQUOT_DEL_ALLOC*(JOURNAL_PER_BALANCE_CNT+2)+DQUOT_DEL_REWRITE+1) : 0)
1768#else
1769#define REISERFS_QUOTA_TRANS_BLOCKS(s) 0
1770#define REISERFS_QUOTA_INIT_BLOCKS(s) 0
1771#define REISERFS_QUOTA_DEL_BLOCKS(s) 0
1772#endif
1773
1774
1775
1776
1777
1778
1779
1780#define REISERFS_MIN_BITMAP_NODES 10
1781#define REISERFS_MAX_BITMAP_NODES 100
1782
1783#define JBH_HASH_SHIFT 13
1784#define JBH_HASH_MASK 8191
1785
1786#define _jhashfn(sb,block) \
1787 (((unsigned long)sb>>L1_CACHE_SHIFT) ^ \
1788 (((block)<<(JBH_HASH_SHIFT - 6)) ^ ((block) >> 13) ^ ((block) << (JBH_HASH_SHIFT - 12))))
1789#define journal_hash(t,sb,block) ((t)[_jhashfn((sb),(block)) & JBH_HASH_MASK])
1790
1791
1792#define journal_find_get_block(s, block) __find_get_block(SB_JOURNAL(s)->j_dev_bd, block, s->s_blocksize)
1793#define journal_getblk(s, block) __getblk(SB_JOURNAL(s)->j_dev_bd, block, s->s_blocksize)
1794#define journal_bread(s, block) __bread(SB_JOURNAL(s)->j_dev_bd, block, s->s_blocksize)
1795
1796enum reiserfs_bh_state_bits {
1797 BH_JDirty = BH_PrivateStart,
1798 BH_JDirty_wait,
1799 BH_JNew,
1800
1801
1802 BH_JPrepared,
1803 BH_JRestore_dirty,
1804 BH_JTest,
1805};
1806
1807BUFFER_FNS(JDirty, journaled);
1808TAS_BUFFER_FNS(JDirty, journaled);
1809BUFFER_FNS(JDirty_wait, journal_dirty);
1810TAS_BUFFER_FNS(JDirty_wait, journal_dirty);
1811BUFFER_FNS(JNew, journal_new);
1812TAS_BUFFER_FNS(JNew, journal_new);
1813BUFFER_FNS(JPrepared, journal_prepared);
1814TAS_BUFFER_FNS(JPrepared, journal_prepared);
1815BUFFER_FNS(JRestore_dirty, journal_restore_dirty);
1816TAS_BUFFER_FNS(JRestore_dirty, journal_restore_dirty);
1817BUFFER_FNS(JTest, journal_test);
1818TAS_BUFFER_FNS(JTest, journal_test);
1819
1820
1821
1822
1823struct reiserfs_transaction_handle {
1824 struct super_block *t_super;
1825
1826
1827
1828
1829
1830 int t_refcount;
1831 int t_blocks_logged;
1832 int t_blocks_allocated;
1833 unsigned int t_trans_id;
1834 void *t_handle_save;
1835 unsigned displace_new_blocks:1;
1836
1837 struct list_head t_list;
1838};
1839
1840
1841
1842
1843struct reiserfs_jh {
1844 struct reiserfs_journal_list *jl;
1845 struct buffer_head *bh;
1846 struct list_head list;
1847};
1848
1849void reiserfs_free_jh(struct buffer_head *bh);
1850int reiserfs_add_tail_list(struct inode *inode, struct buffer_head *bh);
1851int reiserfs_add_ordered_list(struct inode *inode, struct buffer_head *bh);
1852int journal_mark_dirty(struct reiserfs_transaction_handle *,
1853 struct super_block *, struct buffer_head *bh);
1854
1855static inline int reiserfs_file_data_log(struct inode *inode)
1856{
1857 if (reiserfs_data_log(inode->i_sb) ||
1858 (REISERFS_I(inode)->i_flags & i_data_log))
1859 return 1;
1860 return 0;
1861}
1862
1863static inline int reiserfs_transaction_running(struct super_block *s)
1864{
1865 struct reiserfs_transaction_handle *th = current->journal_info;
1866 if (th && th->t_super == s)
1867 return 1;
1868 if (th && th->t_super == NULL)
1869 BUG();
1870 return 0;
1871}
1872
1873static inline int reiserfs_transaction_free_space(struct reiserfs_transaction_handle *th)
1874{
1875 return th->t_blocks_allocated - th->t_blocks_logged;
1876}
1877
1878struct reiserfs_transaction_handle *reiserfs_persistent_transaction(struct
1879 super_block
1880 *,
1881 int count);
1882int reiserfs_end_persistent_transaction(struct reiserfs_transaction_handle *);
1883int reiserfs_commit_page(struct inode *inode, struct page *page,
1884 unsigned from, unsigned to);
1885int reiserfs_flush_old_commits(struct super_block *);
1886int reiserfs_commit_for_inode(struct inode *);
1887int reiserfs_inode_needs_commit(struct inode *);
1888void reiserfs_update_inode_transaction(struct inode *);
1889void reiserfs_wait_on_write_block(struct super_block *s);
1890void reiserfs_block_writes(struct reiserfs_transaction_handle *th);
1891void reiserfs_allow_writes(struct super_block *s);
1892void reiserfs_check_lock_depth(struct super_block *s, char *caller);
1893int reiserfs_prepare_for_journal(struct super_block *, struct buffer_head *bh,
1894 int wait);
1895void reiserfs_restore_prepared_buffer(struct super_block *,
1896 struct buffer_head *bh);
1897int journal_init(struct super_block *, const char *j_dev_name, int old_format,
1898 unsigned int);
1899int journal_release(struct reiserfs_transaction_handle *, struct super_block *);
1900int journal_release_error(struct reiserfs_transaction_handle *,
1901 struct super_block *);
1902int journal_end(struct reiserfs_transaction_handle *, struct super_block *,
1903 unsigned long);
1904int journal_end_sync(struct reiserfs_transaction_handle *, struct super_block *,
1905 unsigned long);
1906int journal_mark_freed(struct reiserfs_transaction_handle *,
1907 struct super_block *, b_blocknr_t blocknr);
1908int journal_transaction_should_end(struct reiserfs_transaction_handle *, int);
1909int reiserfs_in_journal(struct super_block *sb, unsigned int bmap_nr,
1910 int bit_nr, int searchall, b_blocknr_t *next);
1911int journal_begin(struct reiserfs_transaction_handle *,
1912 struct super_block *sb, unsigned long);
1913int journal_join_abort(struct reiserfs_transaction_handle *,
1914 struct super_block *sb, unsigned long);
1915void reiserfs_abort_journal(struct super_block *sb, int errno);
1916void reiserfs_abort(struct super_block *sb, int errno, const char *fmt, ...);
1917int reiserfs_allocate_list_bitmaps(struct super_block *s,
1918 struct reiserfs_list_bitmap *, unsigned int);
1919
1920void add_save_link(struct reiserfs_transaction_handle *th,
1921 struct inode *inode, int truncate);
1922int remove_save_link(struct inode *inode, int truncate);
1923
1924
1925__u32 reiserfs_get_unused_objectid(struct reiserfs_transaction_handle *th);
1926void reiserfs_release_objectid(struct reiserfs_transaction_handle *th,
1927 __u32 objectid_to_release);
1928int reiserfs_convert_objectid_map_v1(struct super_block *);
1929
1930
1931int B_IS_IN_TREE(const struct buffer_head *);
1932extern void copy_item_head(struct item_head *to,
1933 const struct item_head *from);
1934
1935
1936extern int comp_short_keys(const struct reiserfs_key *le_key,
1937 const struct cpu_key *cpu_key);
1938extern void le_key2cpu_key(struct cpu_key *to, const struct reiserfs_key *from);
1939
1940
1941extern int comp_le_keys(const struct reiserfs_key *,
1942 const struct reiserfs_key *);
1943extern int comp_short_le_keys(const struct reiserfs_key *,
1944 const struct reiserfs_key *);
1945
1946
1947
1948
1949static inline int le_key_version(const struct reiserfs_key *key)
1950{
1951 int type;
1952
1953 type = offset_v2_k_type(&(key->u.k_offset_v2));
1954 if (type != TYPE_DIRECT && type != TYPE_INDIRECT
1955 && type != TYPE_DIRENTRY)
1956 return KEY_FORMAT_3_5;
1957
1958 return KEY_FORMAT_3_6;
1959
1960}
1961
1962static inline void copy_key(struct reiserfs_key *to,
1963 const struct reiserfs_key *from)
1964{
1965 memcpy(to, from, KEY_SIZE);
1966}
1967
1968int comp_items(const struct item_head *stored_ih, const struct treepath *path);
1969const struct reiserfs_key *get_rkey(const struct treepath *chk_path,
1970 const struct super_block *sb);
1971int search_by_key(struct super_block *, const struct cpu_key *,
1972 struct treepath *, int);
1973#define search_item(s,key,path) search_by_key (s, key, path, DISK_LEAF_NODE_LEVEL)
1974int search_for_position_by_key(struct super_block *sb,
1975 const struct cpu_key *cpu_key,
1976 struct treepath *search_path);
1977extern void decrement_bcount(struct buffer_head *bh);
1978void decrement_counters_in_path(struct treepath *search_path);
1979void pathrelse(struct treepath *search_path);
1980int reiserfs_check_path(struct treepath *p);
1981void pathrelse_and_restore(struct super_block *s, struct treepath *search_path);
1982
1983int reiserfs_insert_item(struct reiserfs_transaction_handle *th,
1984 struct treepath *path,
1985 const struct cpu_key *key,
1986 struct item_head *ih,
1987 struct inode *inode, const char *body);
1988
1989int reiserfs_paste_into_item(struct reiserfs_transaction_handle *th,
1990 struct treepath *path,
1991 const struct cpu_key *key,
1992 struct inode *inode,
1993 const char *body, int paste_size);
1994
1995int reiserfs_cut_from_item(struct reiserfs_transaction_handle *th,
1996 struct treepath *path,
1997 struct cpu_key *key,
1998 struct inode *inode,
1999 struct page *page, loff_t new_file_size);
2000
2001int reiserfs_delete_item(struct reiserfs_transaction_handle *th,
2002 struct treepath *path,
2003 const struct cpu_key *key,
2004 struct inode *inode, struct buffer_head *un_bh);
2005
2006void reiserfs_delete_solid_item(struct reiserfs_transaction_handle *th,
2007 struct inode *inode, struct reiserfs_key *key);
2008int reiserfs_delete_object(struct reiserfs_transaction_handle *th,
2009 struct inode *inode);
2010int reiserfs_do_truncate(struct reiserfs_transaction_handle *th,
2011 struct inode *inode, struct page *,
2012 int update_timestamps);
2013
2014#define i_block_size(inode) ((inode)->i_sb->s_blocksize)
2015#define file_size(inode) ((inode)->i_size)
2016#define tail_size(inode) (file_size (inode) & (i_block_size (inode) - 1))
2017
2018#define tail_has_to_be_packed(inode) (have_large_tails ((inode)->i_sb)?\
2019!STORE_TAIL_IN_UNFM_S1(file_size (inode), tail_size(inode), inode->i_sb->s_blocksize):have_small_tails ((inode)->i_sb)?!STORE_TAIL_IN_UNFM_S2(file_size (inode), tail_size(inode), inode->i_sb->s_blocksize):0 )
2020
2021void padd_item(char *item, int total_length, int length);
2022
2023
2024
2025#define GET_BLOCK_NO_CREATE 0
2026#define GET_BLOCK_CREATE 1
2027#define GET_BLOCK_NO_HOLE 2
2028#define GET_BLOCK_READ_DIRECT 4
2029#define GET_BLOCK_NO_IMUX 8
2030#define GET_BLOCK_NO_DANGLE 16
2031
2032void reiserfs_read_locked_inode(struct inode *inode,
2033 struct reiserfs_iget_args *args);
2034int reiserfs_find_actor(struct inode *inode, void *p);
2035int reiserfs_init_locked_inode(struct inode *inode, void *p);
2036void reiserfs_delete_inode(struct inode *inode);
2037int reiserfs_write_inode(struct inode *inode, struct writeback_control *wbc);
2038int reiserfs_get_block(struct inode *inode, sector_t block,
2039 struct buffer_head *bh_result, int create);
2040struct dentry *reiserfs_fh_to_dentry(struct super_block *sb, struct fid *fid,
2041 int fh_len, int fh_type);
2042struct dentry *reiserfs_fh_to_parent(struct super_block *sb, struct fid *fid,
2043 int fh_len, int fh_type);
2044int reiserfs_encode_fh(struct dentry *dentry, __u32 * data, int *lenp,
2045 int connectable);
2046
2047int reiserfs_truncate_file(struct inode *, int update_timestamps);
2048void make_cpu_key(struct cpu_key *cpu_key, struct inode *inode, loff_t offset,
2049 int type, int key_length);
2050void make_le_item_head(struct item_head *ih, const struct cpu_key *key,
2051 int version,
2052 loff_t offset, int type, int length, int entry_count);
2053struct inode *reiserfs_iget(struct super_block *s, const struct cpu_key *key);
2054
2055struct reiserfs_security_handle;
2056int reiserfs_new_inode(struct reiserfs_transaction_handle *th,
2057 struct inode *dir, int mode,
2058 const char *symname, loff_t i_size,
2059 struct dentry *dentry, struct inode *inode,
2060 struct reiserfs_security_handle *security);
2061
2062void reiserfs_update_sd_size(struct reiserfs_transaction_handle *th,
2063 struct inode *inode, loff_t size);
2064
2065static inline void reiserfs_update_sd(struct reiserfs_transaction_handle *th,
2066 struct inode *inode)
2067{
2068 reiserfs_update_sd_size(th, inode, inode->i_size);
2069}
2070
2071void sd_attrs_to_i_attrs(__u16 sd_attrs, struct inode *inode);
2072void i_attrs_to_sd_attrs(struct inode *inode, __u16 * sd_attrs);
2073int reiserfs_setattr(struct dentry *dentry, struct iattr *attr);
2074
2075
2076void set_de_name_and_namelen(struct reiserfs_dir_entry *de);
2077int search_by_entry_key(struct super_block *sb, const struct cpu_key *key,
2078 struct treepath *path, struct reiserfs_dir_entry *de);
2079struct dentry *reiserfs_get_parent(struct dentry *);
2080
2081#ifdef CONFIG_REISERFS_PROC_INFO
2082int reiserfs_proc_info_init(struct super_block *sb);
2083int reiserfs_proc_info_done(struct super_block *sb);
2084int reiserfs_proc_info_global_init(void);
2085int reiserfs_proc_info_global_done(void);
2086
2087#define PROC_EXP( e ) e
2088
2089#define __PINFO( sb ) REISERFS_SB(sb) -> s_proc_info_data
2090#define PROC_INFO_MAX( sb, field, value ) \
2091 __PINFO( sb ).field = \
2092 max( REISERFS_SB( sb ) -> s_proc_info_data.field, value )
2093#define PROC_INFO_INC( sb, field ) ( ++ ( __PINFO( sb ).field ) )
2094#define PROC_INFO_ADD( sb, field, val ) ( __PINFO( sb ).field += ( val ) )
2095#define PROC_INFO_BH_STAT( sb, bh, level ) \
2096 PROC_INFO_INC( sb, sbk_read_at[ ( level ) ] ); \
2097 PROC_INFO_ADD( sb, free_at[ ( level ) ], B_FREE_SPACE( bh ) ); \
2098 PROC_INFO_ADD( sb, items_at[ ( level ) ], B_NR_ITEMS( bh ) )
2099#else
2100static inline int reiserfs_proc_info_init(struct super_block *sb)
2101{
2102 return 0;
2103}
2104
2105static inline int reiserfs_proc_info_done(struct super_block *sb)
2106{
2107 return 0;
2108}
2109
2110static inline int reiserfs_proc_info_global_init(void)
2111{
2112 return 0;
2113}
2114
2115static inline int reiserfs_proc_info_global_done(void)
2116{
2117 return 0;
2118}
2119
2120#define PROC_EXP( e )
2121#define VOID_V ( ( void ) 0 )
2122#define PROC_INFO_MAX( sb, field, value ) VOID_V
2123#define PROC_INFO_INC( sb, field ) VOID_V
2124#define PROC_INFO_ADD( sb, field, val ) VOID_V
2125#define PROC_INFO_BH_STAT(sb, bh, n_node_level) VOID_V
2126#endif
2127
2128
2129extern const struct inode_operations reiserfs_dir_inode_operations;
2130extern const struct inode_operations reiserfs_symlink_inode_operations;
2131extern const struct inode_operations reiserfs_special_inode_operations;
2132extern const struct file_operations reiserfs_dir_operations;
2133int reiserfs_readdir_dentry(struct dentry *, void *, filldir_t, loff_t *);
2134
2135
2136int direct2indirect(struct reiserfs_transaction_handle *, struct inode *,
2137 struct treepath *, struct buffer_head *, loff_t);
2138int indirect2direct(struct reiserfs_transaction_handle *, struct inode *,
2139 struct page *, struct treepath *, const struct cpu_key *,
2140 loff_t, char *);
2141void reiserfs_unmap_buffer(struct buffer_head *);
2142
2143
2144extern const struct inode_operations reiserfs_file_inode_operations;
2145extern const struct file_operations reiserfs_file_operations;
2146extern const struct address_space_operations reiserfs_address_space_operations;
2147
2148
2149
2150int fix_nodes(int n_op_mode, struct tree_balance *tb,
2151 struct item_head *ins_ih, const void *);
2152void unfix_nodes(struct tree_balance *);
2153
2154
2155void __reiserfs_panic(struct super_block *s, const char *id,
2156 const char *function, const char *fmt, ...)
2157 __attribute__ ((noreturn));
2158#define reiserfs_panic(s, id, fmt, args...) \
2159 __reiserfs_panic(s, id, __func__, fmt, ##args)
2160void __reiserfs_error(struct super_block *s, const char *id,
2161 const char *function, const char *fmt, ...);
2162#define reiserfs_error(s, id, fmt, args...) \
2163 __reiserfs_error(s, id, __func__, fmt, ##args)
2164void reiserfs_info(struct super_block *s, const char *fmt, ...);
2165void reiserfs_debug(struct super_block *s, int level, const char *fmt, ...);
2166void print_indirect_item(struct buffer_head *bh, int item_num);
2167void store_print_tb(struct tree_balance *tb);
2168void print_cur_tb(char *mes);
2169void print_de(struct reiserfs_dir_entry *de);
2170void print_bi(struct buffer_info *bi, char *mes);
2171#define PRINT_LEAF_ITEMS 1
2172#define PRINT_DIRECTORY_ITEMS 2
2173#define PRINT_DIRECT_ITEMS 4
2174void print_block(struct buffer_head *bh, ...);
2175void print_bmap(struct super_block *s, int silent);
2176void print_bmap_block(int i, char *data, int size, int silent);
2177
2178void print_objectid_map(struct super_block *s);
2179void print_block_head(struct buffer_head *bh, char *mes);
2180void check_leaf(struct buffer_head *bh);
2181void check_internal(struct buffer_head *bh);
2182void print_statistics(struct super_block *s);
2183char *reiserfs_hashname(int code);
2184
2185
2186int leaf_move_items(int shift_mode, struct tree_balance *tb, int mov_num,
2187 int mov_bytes, struct buffer_head *Snew);
2188int leaf_shift_left(struct tree_balance *tb, int shift_num, int shift_bytes);
2189int leaf_shift_right(struct tree_balance *tb, int shift_num, int shift_bytes);
2190void leaf_delete_items(struct buffer_info *cur_bi, int last_first, int first,
2191 int del_num, int del_bytes);
2192void leaf_insert_into_buf(struct buffer_info *bi, int before,
2193 struct item_head *inserted_item_ih,
2194 const char *inserted_item_body, int zeros_number);
2195void leaf_paste_in_buffer(struct buffer_info *bi, int pasted_item_num,
2196 int pos_in_item, int paste_size, const char *body,
2197 int zeros_number);
2198void leaf_cut_from_buffer(struct buffer_info *bi, int cut_item_num,
2199 int pos_in_item, int cut_size);
2200void leaf_paste_entries(struct buffer_info *bi, int item_num, int before,
2201 int new_entry_count, struct reiserfs_de_head *new_dehs,
2202 const char *records, int paste_size);
2203
2204int balance_internal(struct tree_balance *, int, int, struct item_head *,
2205 struct buffer_head **);
2206
2207
2208void do_balance_mark_leaf_dirty(struct tree_balance *tb,
2209 struct buffer_head *bh, int flag);
2210#define do_balance_mark_internal_dirty do_balance_mark_leaf_dirty
2211#define do_balance_mark_sb_dirty do_balance_mark_leaf_dirty
2212
2213void do_balance(struct tree_balance *tb, struct item_head *ih,
2214 const char *body, int flag);
2215void reiserfs_invalidate_buffer(struct tree_balance *tb,
2216 struct buffer_head *bh);
2217
2218int get_left_neighbor_position(struct tree_balance *tb, int h);
2219int get_right_neighbor_position(struct tree_balance *tb, int h);
2220void replace_key(struct tree_balance *tb, struct buffer_head *, int,
2221 struct buffer_head *, int);
2222void make_empty_node(struct buffer_info *);
2223struct buffer_head *get_FEB(struct tree_balance *);
2224
2225
2226
2227
2228
2229struct __reiserfs_blocknr_hint {
2230 struct inode *inode;
2231 sector_t block;
2232 struct in_core_key key;
2233 struct treepath *path;
2234
2235 struct reiserfs_transaction_handle *th;
2236
2237 b_blocknr_t beg, end;
2238 b_blocknr_t search_start;
2239
2240
2241 int prealloc_size;
2242
2243
2244 unsigned formatted_node:1;
2245
2246 unsigned preallocate:1;
2247};
2248
2249typedef struct __reiserfs_blocknr_hint reiserfs_blocknr_hint_t;
2250
2251int reiserfs_parse_alloc_options(struct super_block *, char *);
2252void reiserfs_init_alloc_options(struct super_block *s);
2253
2254
2255
2256
2257
2258
2259__le32 reiserfs_choose_packing(struct inode *dir);
2260
2261int reiserfs_init_bitmap_cache(struct super_block *sb);
2262void reiserfs_free_bitmap_cache(struct super_block *sb);
2263void reiserfs_cache_bitmap_metadata(struct super_block *sb, struct buffer_head *bh, struct reiserfs_bitmap_info *info);
2264struct buffer_head *reiserfs_read_bitmap_block(struct super_block *sb, unsigned int bitmap);
2265int is_reusable(struct super_block *s, b_blocknr_t block, int bit_value);
2266void reiserfs_free_block(struct reiserfs_transaction_handle *th, struct inode *,
2267 b_blocknr_t, int for_unformatted);
2268int reiserfs_allocate_blocknrs(reiserfs_blocknr_hint_t *, b_blocknr_t *, int,
2269 int);
2270static inline int reiserfs_new_form_blocknrs(struct tree_balance *tb,
2271 b_blocknr_t * new_blocknrs,
2272 int amount_needed)
2273{
2274 reiserfs_blocknr_hint_t hint = {
2275 .th = tb->transaction_handle,
2276 .path = tb->tb_path,
2277 .inode = NULL,
2278 .key = tb->key,
2279 .block = 0,
2280 .formatted_node = 1
2281 };
2282 return reiserfs_allocate_blocknrs(&hint, new_blocknrs, amount_needed,
2283 0);
2284}
2285
2286static inline int reiserfs_new_unf_blocknrs(struct reiserfs_transaction_handle
2287 *th, struct inode *inode,
2288 b_blocknr_t * new_blocknrs,
2289 struct treepath *path,
2290 sector_t block)
2291{
2292 reiserfs_blocknr_hint_t hint = {
2293 .th = th,
2294 .path = path,
2295 .inode = inode,
2296 .block = block,
2297 .formatted_node = 0,
2298 .preallocate = 0
2299 };
2300 return reiserfs_allocate_blocknrs(&hint, new_blocknrs, 1, 0);
2301}
2302
2303#ifdef REISERFS_PREALLOCATE
2304static inline int reiserfs_new_unf_blocknrs2(struct reiserfs_transaction_handle
2305 *th, struct inode *inode,
2306 b_blocknr_t * new_blocknrs,
2307 struct treepath *path,
2308 sector_t block)
2309{
2310 reiserfs_blocknr_hint_t hint = {
2311 .th = th,
2312 .path = path,
2313 .inode = inode,
2314 .block = block,
2315 .formatted_node = 0,
2316 .preallocate = 1
2317 };
2318 return reiserfs_allocate_blocknrs(&hint, new_blocknrs, 1, 0);
2319}
2320
2321void reiserfs_discard_prealloc(struct reiserfs_transaction_handle *th,
2322 struct inode *inode);
2323void reiserfs_discard_all_prealloc(struct reiserfs_transaction_handle *th);
2324#endif
2325
2326
2327__u32 keyed_hash(const signed char *msg, int len);
2328__u32 yura_hash(const signed char *msg, int len);
2329__u32 r5_hash(const signed char *msg, int len);
2330
2331
2332
2333
2334
2335#define reiserfs_test_and_set_le_bit ext2_set_bit
2336#define reiserfs_test_and_clear_le_bit ext2_clear_bit
2337#define reiserfs_test_le_bit ext2_test_bit
2338#define reiserfs_find_next_zero_le_bit ext2_find_next_zero_bit
2339
2340
2341
2342
2343
2344
2345
2346
2347#define SPARE_SPACE 500
2348
2349
2350long reiserfs_ioctl(struct file *filp, unsigned int cmd, unsigned long arg);
2351long reiserfs_compat_ioctl(struct file *filp,
2352 unsigned int cmd, unsigned long arg);
2353int reiserfs_unpack(struct inode *inode, struct file *filp);
2354
2355#endif
2356
2357#endif
2358