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1da177e4 1/*
7b718769
NS
2 * Copyright (c) 2000-2003,2005 Silicon Graphics, Inc.
3 * All Rights Reserved.
1da177e4 4 *
7b718769
NS
5 * This program is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU General Public License as
1da177e4
LT
7 * published by the Free Software Foundation.
8 *
7b718769
NS
9 * This program is distributed in the hope that it would be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
1da177e4 13 *
7b718769
NS
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write the Free Software Foundation,
16 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
1da177e4
LT
17 */
18#ifndef __XFS_INODE_H__
19#define __XFS_INODE_H__
20
ef14f0c1 21struct posix_acl;
347d1c01 22struct xfs_dinode;
847fff5c 23struct xfs_inode;
347d1c01 24
a844f451
NS
25/*
26 * Fork identifiers.
27 */
28#define XFS_DATA_FORK 0
29#define XFS_ATTR_FORK 1
30
0293ce3a
MK
31/*
32 * The following xfs_ext_irec_t struct introduces a second (top) level
33 * to the in-core extent allocation scheme. These structs are allocated
34 * in a contiguous block, creating an indirection array where each entry
35 * (irec) contains a pointer to a buffer of in-core extent records which
36 * it manages. Each extent buffer is 4k in size, since 4k is the system
37 * page size on Linux i386 and systems with larger page sizes don't seem
38 * to gain much, if anything, by using their native page size as the
39 * extent buffer size. Also, using 4k extent buffers everywhere provides
40 * a consistent interface for CXFS across different platforms.
41 *
42 * There is currently no limit on the number of irec's (extent lists)
43 * allowed, so heavily fragmented files may require an indirection array
44 * which spans multiple system pages of memory. The number of extents
45 * which would require this amount of contiguous memory is very large
46 * and should not cause problems in the foreseeable future. However,
47 * if the memory needed for the contiguous array ever becomes a problem,
48 * it is possible that a third level of indirection may be required.
49 */
50typedef struct xfs_ext_irec {
a6f64d4a 51 xfs_bmbt_rec_host_t *er_extbuf; /* block of extent records */
0293ce3a
MK
52 xfs_extnum_t er_extoff; /* extent offset in file */
53 xfs_extnum_t er_extcount; /* number of extents in page/block */
54} xfs_ext_irec_t;
55
1da177e4
LT
56/*
57 * File incore extent information, present for each of data & attr forks.
58 */
0293ce3a
MK
59#define XFS_IEXT_BUFSZ 4096
60#define XFS_LINEAR_EXTS (XFS_IEXT_BUFSZ / (uint)sizeof(xfs_bmbt_rec_t))
61#define XFS_INLINE_EXTS 2
62#define XFS_INLINE_DATA 32
1da177e4
LT
63typedef struct xfs_ifork {
64 int if_bytes; /* bytes in if_u1 */
65 int if_real_bytes; /* bytes allocated in if_u1 */
7cc95a82 66 struct xfs_btree_block *if_broot; /* file's incore btree root */
1da177e4
LT
67 short if_broot_bytes; /* bytes allocated for root */
68 unsigned char if_flags; /* per-fork flags */
69 unsigned char if_ext_max; /* max # of extent records */
1da177e4 70 union {
a6f64d4a 71 xfs_bmbt_rec_host_t *if_extents;/* linear map file exts */
0293ce3a 72 xfs_ext_irec_t *if_ext_irec; /* irec map file exts */
1da177e4
LT
73 char *if_data; /* inline file data */
74 } if_u1;
75 union {
a6f64d4a 76 xfs_bmbt_rec_host_t if_inline_ext[XFS_INLINE_EXTS];
1da177e4
LT
77 /* very small file extents */
78 char if_inline_data[XFS_INLINE_DATA];
79 /* very small file data */
80 xfs_dev_t if_rdev; /* dev number if special */
81 uuid_t if_uuid; /* mount point value */
82 } if_u2;
83} xfs_ifork_t;
84
92bfc6e7
CH
85/*
86 * Inode location information. Stored in the inode and passed to
87 * xfs_imap_to_bp() to get a buffer and dinode for a given inode.
88 */
89struct xfs_imap {
90 xfs_daddr_t im_blkno; /* starting BB of inode chunk */
91 ushort im_len; /* length in BBs of inode chunk */
92 ushort im_boffset; /* inode offset in block in bytes */
93};
94
1da177e4
LT
95/*
96 * This is the xfs in-core inode structure.
97 * Most of the on-disk inode is embedded in the i_d field.
98 *
99 * The extent pointers/inline file space, however, are managed
100 * separately. The memory for this information is pointed to by
101 * the if_u1 unions depending on the type of the data.
102 * This is used to linearize the array of extents for fast in-core
103 * access. This is used until the file's number of extents
104 * surpasses XFS_MAX_INCORE_EXTENTS, at which point all extent pointers
105 * are accessed through the buffer cache.
106 *
107 * Other state kept in the in-core inode is used for identification,
108 * locking, transactional updating, etc of the inode.
109 *
110 * Generally, we do not want to hold the i_rlock while holding the
111 * i_ilock. Hierarchy is i_iolock followed by i_rlock.
112 *
25985edc 113 * xfs_iptr_t contains all the inode fields up to and including the
1da177e4
LT
114 * i_mnext and i_mprev fields, it is used as a marker in the inode
115 * chain off the mount structure by xfs_sync calls.
116 */
117
347d1c01
CH
118typedef struct xfs_ictimestamp {
119 __int32_t t_sec; /* timestamp seconds */
120 __int32_t t_nsec; /* timestamp nanoseconds */
121} xfs_ictimestamp_t;
122
123/*
81591fe2 124 * NOTE: This structure must be kept identical to struct xfs_dinode
9da096fd 125 * in xfs_dinode.h except for the endianness annotations.
347d1c01
CH
126 */
127typedef struct xfs_icdinode {
128 __uint16_t di_magic; /* inode magic # = XFS_DINODE_MAGIC */
129 __uint16_t di_mode; /* mode and type of file */
130 __int8_t di_version; /* inode version */
131 __int8_t di_format; /* format of di_c data */
132 __uint16_t di_onlink; /* old number of links to file */
133 __uint32_t di_uid; /* owner's user id */
134 __uint32_t di_gid; /* owner's group id */
135 __uint32_t di_nlink; /* number of links to file */
6743099c
AM
136 __uint16_t di_projid_lo; /* lower part of owner's project id */
137 __uint16_t di_projid_hi; /* higher part of owner's project id */
138 __uint8_t di_pad[6]; /* unused, zeroed space */
347d1c01
CH
139 __uint16_t di_flushiter; /* incremented on flush */
140 xfs_ictimestamp_t di_atime; /* time last accessed */
141 xfs_ictimestamp_t di_mtime; /* time last modified */
142 xfs_ictimestamp_t di_ctime; /* time created/inode modified */
143 xfs_fsize_t di_size; /* number of bytes in file */
144 xfs_drfsbno_t di_nblocks; /* # of direct & btree blocks used */
145 xfs_extlen_t di_extsize; /* basic/minimum extent size for file */
146 xfs_extnum_t di_nextents; /* number of extents in data fork */
147 xfs_aextnum_t di_anextents; /* number of extents in attribute fork*/
148 __uint8_t di_forkoff; /* attr fork offs, <<3 for 64b align */
149 __int8_t di_aformat; /* format of attr fork's data */
150 __uint32_t di_dmevmask; /* DMIG event mask */
151 __uint16_t di_dmstate; /* DMIG state info */
152 __uint16_t di_flags; /* random flags, XFS_DIFLAG_... */
153 __uint32_t di_gen; /* generation number */
154} xfs_icdinode_t;
155
847fff5c
BN
156/*
157 * Flags for xfs_ichgtime().
158 */
159#define XFS_ICHGTIME_MOD 0x1 /* data fork modification timestamp */
160#define XFS_ICHGTIME_CHG 0x2 /* inode field change timestamp */
161
162/*
163 * Per-fork incore inode flags.
164 */
165#define XFS_IFINLINE 0x01 /* Inline data is read in */
166#define XFS_IFEXTENTS 0x02 /* All extent pointers are read in */
167#define XFS_IFBROOT 0x04 /* i_broot points to the bmap b-tree root */
168#define XFS_IFEXTIREC 0x08 /* Indirection array of extent blocks */
169
847fff5c
BN
170/*
171 * Fork handling.
172 */
173
174#define XFS_IFORK_Q(ip) ((ip)->i_d.di_forkoff != 0)
175#define XFS_IFORK_BOFF(ip) ((int)((ip)->i_d.di_forkoff << 3))
176
177#define XFS_IFORK_PTR(ip,w) \
178 ((w) == XFS_DATA_FORK ? \
179 &(ip)->i_df : \
180 (ip)->i_afp)
181#define XFS_IFORK_DSIZE(ip) \
182 (XFS_IFORK_Q(ip) ? \
183 XFS_IFORK_BOFF(ip) : \
184 XFS_LITINO((ip)->i_mount))
185#define XFS_IFORK_ASIZE(ip) \
186 (XFS_IFORK_Q(ip) ? \
187 XFS_LITINO((ip)->i_mount) - XFS_IFORK_BOFF(ip) : \
188 0)
189#define XFS_IFORK_SIZE(ip,w) \
190 ((w) == XFS_DATA_FORK ? \
191 XFS_IFORK_DSIZE(ip) : \
192 XFS_IFORK_ASIZE(ip))
193#define XFS_IFORK_FORMAT(ip,w) \
194 ((w) == XFS_DATA_FORK ? \
195 (ip)->i_d.di_format : \
196 (ip)->i_d.di_aformat)
197#define XFS_IFORK_FMT_SET(ip,w,n) \
198 ((w) == XFS_DATA_FORK ? \
199 ((ip)->i_d.di_format = (n)) : \
200 ((ip)->i_d.di_aformat = (n)))
201#define XFS_IFORK_NEXTENTS(ip,w) \
202 ((w) == XFS_DATA_FORK ? \
203 (ip)->i_d.di_nextents : \
204 (ip)->i_d.di_anextents)
205#define XFS_IFORK_NEXT_SET(ip,w,n) \
206 ((w) == XFS_DATA_FORK ? \
207 ((ip)->i_d.di_nextents = (n)) : \
208 ((ip)->i_d.di_anextents = (n)))
209
210
211
212#ifdef __KERNEL__
213
214struct bhv_desc;
847fff5c
BN
215struct xfs_buf;
216struct xfs_bmap_free;
217struct xfs_bmbt_irec;
847fff5c
BN
218struct xfs_inode_log_item;
219struct xfs_mount;
220struct xfs_trans;
221struct xfs_dquot;
222
847fff5c
BN
223typedef struct dm_attrs_s {
224 __uint32_t da_dmevmask; /* DMIG event mask */
225 __uint16_t da_dmstate; /* DMIG state info */
226 __uint16_t da_pad; /* DMIG extra padding */
227} dm_attrs_t;
228
1da177e4
LT
229typedef struct xfs_inode {
230 /* Inode linking and identification information. */
1da177e4 231 struct xfs_mount *i_mount; /* fs mount struct ptr */
1da177e4
LT
232 struct xfs_dquot *i_udquot; /* user dquot */
233 struct xfs_dquot *i_gdquot; /* group dquot */
234
235 /* Inode location stuff */
236 xfs_ino_t i_ino; /* inode number (agno/agino)*/
92bfc6e7 237 struct xfs_imap i_imap; /* location for xfs_imap() */
1da177e4
LT
238
239 /* Extent information. */
240 xfs_ifork_t *i_afp; /* attribute fork pointer */
241 xfs_ifork_t i_df; /* data fork */
242
243 /* Transaction and locking information. */
244 struct xfs_trans *i_transp; /* ptr to owning transaction*/
245 struct xfs_inode_log_item *i_itemp; /* logging information */
246 mrlock_t i_lock; /* inode lock */
247 mrlock_t i_iolock; /* inode IO lock */
c63942d3 248 struct completion i_flush; /* inode flush completion q */
1da177e4
LT
249 atomic_t i_pincount; /* inode pin count */
250 wait_queue_head_t i_ipin_wait; /* inode pinning wait queue */
f273ab84 251 spinlock_t i_flags_lock; /* inode i_flags lock */
1da177e4
LT
252 /* Miscellaneous state. */
253 unsigned short i_flags; /* see defined flags below */
254 unsigned char i_update_core; /* timestamps/size is dirty */
1da177e4
LT
255 unsigned int i_delayed_blks; /* count of delay alloc blks */
256
347d1c01 257 xfs_icdinode_t i_d; /* most of ondisk inode */
1da177e4 258
ba87ea69 259 xfs_fsize_t i_size; /* in-memory size */
613d7043 260 xfs_fsize_t i_new_size; /* size when write completes */
b677c210 261 atomic_t i_iocount; /* outstanding I/O count */
bf904248
DC
262
263 /* VFS inode */
264 struct inode i_vnode; /* embedded VFS inode */
1da177e4
LT
265} xfs_inode_t;
266
ba87ea69
LM
267#define XFS_ISIZE(ip) (((ip)->i_d.di_mode & S_IFMT) == S_IFREG) ? \
268 (ip)->i_size : (ip)->i_d.di_size;
7a18c386 269
01651646
DC
270/* Convert from vfs inode to xfs inode */
271static inline struct xfs_inode *XFS_I(struct inode *inode)
272{
bf904248 273 return container_of(inode, struct xfs_inode, i_vnode);
01651646
DC
274}
275
01651646
DC
276/* convert from xfs inode to vfs inode */
277static inline struct inode *VFS_I(struct xfs_inode *ip)
278{
bf904248 279 return &ip->i_vnode;
01651646 280}
01651646 281
7a18c386
DC
282/*
283 * i_flags helper functions
284 */
285static inline void
286__xfs_iflags_set(xfs_inode_t *ip, unsigned short flags)
287{
288 ip->i_flags |= flags;
289}
290
291static inline void
292xfs_iflags_set(xfs_inode_t *ip, unsigned short flags)
293{
294 spin_lock(&ip->i_flags_lock);
295 __xfs_iflags_set(ip, flags);
296 spin_unlock(&ip->i_flags_lock);
297}
298
299static inline void
300xfs_iflags_clear(xfs_inode_t *ip, unsigned short flags)
301{
302 spin_lock(&ip->i_flags_lock);
303 ip->i_flags &= ~flags;
304 spin_unlock(&ip->i_flags_lock);
305}
306
307static inline int
308__xfs_iflags_test(xfs_inode_t *ip, unsigned short flags)
309{
310 return (ip->i_flags & flags);
311}
312
313static inline int
314xfs_iflags_test(xfs_inode_t *ip, unsigned short flags)
315{
316 int ret;
317 spin_lock(&ip->i_flags_lock);
318 ret = __xfs_iflags_test(ip, flags);
319 spin_unlock(&ip->i_flags_lock);
320 return ret;
321}
09262b43
CH
322
323static inline int
324xfs_iflags_test_and_clear(xfs_inode_t *ip, unsigned short flags)
325{
326 int ret;
327
328 spin_lock(&ip->i_flags_lock);
329 ret = ip->i_flags & flags;
330 if (ret)
331 ip->i_flags &= ~flags;
332 spin_unlock(&ip->i_flags_lock);
333 return ret;
334}
1da177e4 335
6743099c
AM
336/*
337 * Project quota id helpers (previously projid was 16bit only
25985edc 338 * and using two 16bit values to hold new 32bit projid was chosen
6743099c
AM
339 * to retain compatibility with "old" filesystems).
340 */
341static inline prid_t
342xfs_get_projid(struct xfs_inode *ip)
343{
344 return (prid_t)ip->i_d.di_projid_hi << 16 | ip->i_d.di_projid_lo;
345}
346
347static inline void
348xfs_set_projid(struct xfs_inode *ip,
349 prid_t projid)
350{
351 ip->i_d.di_projid_hi = (__uint16_t) (projid >> 16);
352 ip->i_d.di_projid_lo = (__uint16_t) (projid & 0xffff);
353}
354
1da177e4 355/*
847fff5c
BN
356 * Manage the i_flush queue embedded in the inode. This completion
357 * queue synchronizes processes attempting to flush the in-core
358 * inode back to disk.
1da177e4 359 */
847fff5c
BN
360static inline void xfs_iflock(xfs_inode_t *ip)
361{
362 wait_for_completion(&ip->i_flush);
363}
1da177e4 364
847fff5c
BN
365static inline int xfs_iflock_nowait(xfs_inode_t *ip)
366{
367 return try_wait_for_completion(&ip->i_flush);
368}
1da177e4 369
847fff5c
BN
370static inline void xfs_ifunlock(xfs_inode_t *ip)
371{
372 complete(&ip->i_flush);
373}
1da177e4
LT
374
375/*
376 * In-core inode flags.
377 */
6e857567
DC
378#define XFS_IRECLAIM 0x0001 /* started reclaiming this inode */
379#define XFS_ISTALE 0x0002 /* inode has been staled */
380#define XFS_IRECLAIMABLE 0x0004 /* inode can be reclaimed */
381#define XFS_INEW 0x0008 /* inode has just been allocated */
382#define XFS_IFILESTREAM 0x0010 /* inode is in a filestream directory */
383#define XFS_ITRUNCATED 0x0020 /* truncated down so flush-on-close */
384#define XFS_IDIRTY_RELEASE 0x0040 /* dirty release already seen */
1da177e4 385
778e24bb
DC
386/*
387 * Per-lifetime flags need to be reset when re-using a reclaimable inode during
388 * inode lookup. Thi prevents unintended behaviour on the new inode from
389 * ocurring.
390 */
391#define XFS_IRECLAIM_RESET_FLAGS \
392 (XFS_IRECLAIMABLE | XFS_IRECLAIM | \
393 XFS_IDIRTY_RELEASE | XFS_ITRUNCATED | \
394 XFS_IFILESTREAM);
395
1da177e4
LT
396/*
397 * Flags for inode locking.
f7c66ce3
LM
398 * Bit ranges: 1<<1 - 1<<16-1 -- iolock/ilock modes (bitfield)
399 * 1<<16 - 1<<32-1 -- lockdep annotation (integers)
1da177e4 400 */
f7c66ce3
LM
401#define XFS_IOLOCK_EXCL (1<<0)
402#define XFS_IOLOCK_SHARED (1<<1)
403#define XFS_ILOCK_EXCL (1<<2)
404#define XFS_ILOCK_SHARED (1<<3)
405#define XFS_IUNLOCK_NONOTIFY (1<<4)
1da177e4 406
f7c66ce3 407#define XFS_LOCK_MASK (XFS_IOLOCK_EXCL | XFS_IOLOCK_SHARED \
579aa9ca 408 | XFS_ILOCK_EXCL | XFS_ILOCK_SHARED)
f7c66ce3 409
0b1b213f
CH
410#define XFS_LOCK_FLAGS \
411 { XFS_IOLOCK_EXCL, "IOLOCK_EXCL" }, \
412 { XFS_IOLOCK_SHARED, "IOLOCK_SHARED" }, \
413 { XFS_ILOCK_EXCL, "ILOCK_EXCL" }, \
414 { XFS_ILOCK_SHARED, "ILOCK_SHARED" }, \
415 { XFS_IUNLOCK_NONOTIFY, "IUNLOCK_NONOTIFY" }
416
417
f7c66ce3
LM
418/*
419 * Flags for lockdep annotations.
420 *
9681153b
CH
421 * XFS_LOCK_PARENT - for directory operations that require locking a
422 * parent directory inode and a child entry inode. The parent gets locked
423 * with this flag so it gets a lockdep subclass of 1 and the child entry
424 * lock will have a lockdep subclass of 0.
425 *
426 * XFS_LOCK_RTBITMAP/XFS_LOCK_RTSUM - the realtime device bitmap and summary
427 * inodes do not participate in the normal lock order, and thus have their
428 * own subclasses.
f7c66ce3 429 *
0f1145cc 430 * XFS_LOCK_INUMORDER - for locking several inodes at the some time
f7c66ce3
LM
431 * with xfs_lock_inodes(). This flag is used as the starting subclass
432 * and each subsequent lock acquired will increment the subclass by one.
9681153b
CH
433 * So the first lock acquired will have a lockdep subclass of 4, the
434 * second lock will have a lockdep subclass of 5, and so on. It is
0f1145cc
DC
435 * the responsibility of the class builder to shift this to the correct
436 * portion of the lock_mode lockdep mask.
f7c66ce3 437 */
0f1145cc 438#define XFS_LOCK_PARENT 1
9681153b
CH
439#define XFS_LOCK_RTBITMAP 2
440#define XFS_LOCK_RTSUM 3
441#define XFS_LOCK_INUMORDER 4
0f1145cc 442
f7c66ce3 443#define XFS_IOLOCK_SHIFT 16
0f1145cc 444#define XFS_IOLOCK_PARENT (XFS_LOCK_PARENT << XFS_IOLOCK_SHIFT)
f7c66ce3
LM
445
446#define XFS_ILOCK_SHIFT 24
0f1145cc 447#define XFS_ILOCK_PARENT (XFS_LOCK_PARENT << XFS_ILOCK_SHIFT)
9681153b
CH
448#define XFS_ILOCK_RTBITMAP (XFS_LOCK_RTBITMAP << XFS_ILOCK_SHIFT)
449#define XFS_ILOCK_RTSUM (XFS_LOCK_RTSUM << XFS_ILOCK_SHIFT)
f7c66ce3
LM
450
451#define XFS_IOLOCK_DEP_MASK 0x00ff0000
452#define XFS_ILOCK_DEP_MASK 0xff000000
453#define XFS_LOCK_DEP_MASK (XFS_IOLOCK_DEP_MASK | XFS_ILOCK_DEP_MASK)
454
455#define XFS_IOLOCK_DEP(flags) (((flags) & XFS_IOLOCK_DEP_MASK) >> XFS_IOLOCK_SHIFT)
456#define XFS_ILOCK_DEP(flags) (((flags) & XFS_ILOCK_DEP_MASK) >> XFS_ILOCK_SHIFT)
1da177e4 457
dcfcf205
DC
458extern struct lock_class_key xfs_iolock_reclaimable;
459
1da177e4
LT
460/*
461 * Flags for xfs_itruncate_start().
462 */
463#define XFS_ITRUNC_DEFINITE 0x1
464#define XFS_ITRUNC_MAYBE 0x2
465
0b1b213f
CH
466#define XFS_ITRUNC_FLAGS \
467 { XFS_ITRUNC_DEFINITE, "DEFINITE" }, \
468 { XFS_ITRUNC_MAYBE, "MAYBE" }
469
1da177e4
LT
470/*
471 * For multiple groups support: if S_ISGID bit is set in the parent
472 * directory, group of new file is set to that of the parent, and
473 * new subdirectory gets S_ISGID bit from parent.
474 */
bd186aa9
CH
475#define XFS_INHERIT_GID(pip) \
476 (((pip)->i_mount->m_flags & XFS_MOUNT_GRPID) || \
477 ((pip)->i_d.di_mode & S_ISGID))
1da177e4 478
745b1f47
NS
479/*
480 * xfs_iget.c prototypes.
481 */
1da177e4 482int xfs_iget(struct xfs_mount *, struct xfs_trans *, xfs_ino_t,
7b6259e7 483 uint, uint, xfs_inode_t **);
1da177e4
LT
484void xfs_ilock(xfs_inode_t *, uint);
485int xfs_ilock_nowait(xfs_inode_t *, uint);
486void xfs_iunlock(xfs_inode_t *, uint);
487void xfs_ilock_demote(xfs_inode_t *, uint);
579aa9ca 488int xfs_isilocked(xfs_inode_t *, uint);
1da177e4
LT
489uint xfs_ilock_map_shared(xfs_inode_t *);
490void xfs_iunlock_map_shared(xfs_inode_t *, uint);
2f11feab 491void xfs_inode_free(struct xfs_inode *ip);
1da177e4
LT
492
493/*
494 * xfs_inode.c prototypes.
495 */
31b084ae 496int xfs_ialloc(struct xfs_trans *, xfs_inode_t *, mode_t,
6743099c 497 xfs_nlink_t, xfs_dev_t, prid_t, int,
6c77b0ea 498 struct xfs_buf **, boolean_t *, xfs_inode_t **);
347d1c01 499
1da177e4 500uint xfs_ip2xflags(struct xfs_inode *);
45ba598e 501uint xfs_dic2xflags(struct xfs_dinode *);
1da177e4
LT
502int xfs_ifree(struct xfs_trans *, xfs_inode_t *,
503 struct xfs_bmap_free *);
d3cf2094 504int xfs_itruncate_start(xfs_inode_t *, uint, xfs_fsize_t);
1da177e4
LT
505int xfs_itruncate_finish(struct xfs_trans **, xfs_inode_t *,
506 xfs_fsize_t, int, int);
507int xfs_iunlink(struct xfs_trans *, xfs_inode_t *);
1da177e4 508
1da177e4 509void xfs_iext_realloc(xfs_inode_t *, int, int);
777df5af 510void xfs_iunpin_wait(xfs_inode_t *);
1da177e4 511int xfs_iflush(xfs_inode_t *, uint);
cfa853e4 512void xfs_lock_inodes(xfs_inode_t **, int, uint);
e1cccd91 513void xfs_lock_two_inodes(xfs_inode_t *, xfs_inode_t *, uint);
1da177e4 514
f9581b14 515void xfs_synchronize_times(xfs_inode_t *);
66d834ea 516void xfs_mark_inode_dirty(xfs_inode_t *);
5d51eff4 517void xfs_mark_inode_dirty_sync(xfs_inode_t *);
42fe2b1f 518
5a8d0f3c
CH
519#define IHOLD(ip) \
520do { \
521 ASSERT(atomic_read(&VFS_I(ip)->i_count) > 0) ; \
7de9c6ee 522 ihold(VFS_I(ip)); \
0b1b213f 523 trace_xfs_ihold(ip, _THIS_IP_); \
5a8d0f3c
CH
524} while (0)
525
526#define IRELE(ip) \
527do { \
0b1b213f 528 trace_xfs_irele(ip, _THIS_IP_); \
5a8d0f3c
CH
529 iput(VFS_I(ip)); \
530} while (0)
531
847fff5c
BN
532#endif /* __KERNEL__ */
533
6d73cf13
CH
534/*
535 * Flags for xfs_iget()
536 */
537#define XFS_IGET_CREATE 0x1
1920779e 538#define XFS_IGET_UNTRUSTED 0x2
6d73cf13 539
c679eef0
CH
540int xfs_inotobp(struct xfs_mount *, struct xfs_trans *,
541 xfs_ino_t, struct xfs_dinode **,
542 struct xfs_buf **, int *, uint);
847fff5c
BN
543int xfs_itobp(struct xfs_mount *, struct xfs_trans *,
544 struct xfs_inode *, struct xfs_dinode **,
76d8b277 545 struct xfs_buf **, uint);
6d73cf13 546int xfs_iread(struct xfs_mount *, struct xfs_trans *,
7b6259e7 547 struct xfs_inode *, uint);
81591fe2 548void xfs_dinode_to_disk(struct xfs_dinode *,
847fff5c
BN
549 struct xfs_icdinode *);
550void xfs_idestroy_fork(struct xfs_inode *, int);
551void xfs_idata_realloc(struct xfs_inode *, int, int);
552void xfs_iroot_realloc(struct xfs_inode *, int, int);
553int xfs_iread_extents(struct xfs_trans *, struct xfs_inode *, int);
554int xfs_iextents_copy(struct xfs_inode *, xfs_bmbt_rec_t *, int);
555
a6f64d4a 556xfs_bmbt_rec_host_t *xfs_iext_get_ext(xfs_ifork_t *, xfs_extnum_t);
6ef35544
CH
557void xfs_iext_insert(xfs_inode_t *, xfs_extnum_t, xfs_extnum_t,
558 xfs_bmbt_irec_t *, int);
4eea22f0 559void xfs_iext_add(xfs_ifork_t *, xfs_extnum_t, int);
0293ce3a 560void xfs_iext_add_indirect_multi(xfs_ifork_t *, int, xfs_extnum_t, int);
6ef35544 561void xfs_iext_remove(xfs_inode_t *, xfs_extnum_t, int, int);
4eea22f0
MK
562void xfs_iext_remove_inline(xfs_ifork_t *, xfs_extnum_t, int);
563void xfs_iext_remove_direct(xfs_ifork_t *, xfs_extnum_t, int);
0293ce3a 564void xfs_iext_remove_indirect(xfs_ifork_t *, xfs_extnum_t, int);
4eea22f0
MK
565void xfs_iext_realloc_direct(xfs_ifork_t *, int);
566void xfs_iext_direct_to_inline(xfs_ifork_t *, xfs_extnum_t);
567void xfs_iext_inline_to_direct(xfs_ifork_t *, int);
568void xfs_iext_destroy(xfs_ifork_t *);
a6f64d4a 569xfs_bmbt_rec_host_t *xfs_iext_bno_to_ext(xfs_ifork_t *, xfs_fileoff_t, int *);
0293ce3a
MK
570xfs_ext_irec_t *xfs_iext_bno_to_irec(xfs_ifork_t *, xfs_fileoff_t, int *);
571xfs_ext_irec_t *xfs_iext_idx_to_irec(xfs_ifork_t *, xfs_extnum_t *, int *, int);
572void xfs_iext_irec_init(xfs_ifork_t *);
573xfs_ext_irec_t *xfs_iext_irec_new(xfs_ifork_t *, int);
574void xfs_iext_irec_remove(xfs_ifork_t *, int);
575void xfs_iext_irec_compact(xfs_ifork_t *);
576void xfs_iext_irec_compact_pages(xfs_ifork_t *);
577void xfs_iext_irec_compact_full(xfs_ifork_t *);
578void xfs_iext_irec_update_extoffs(xfs_ifork_t *, int, int);
4eea22f0 579
1da177e4
LT
580#define xfs_ipincount(ip) ((unsigned int) atomic_read(&ip->i_pincount))
581
582#ifdef DEBUG
847fff5c
BN
583void xfs_isize_check(struct xfs_mount *, struct xfs_inode *,
584 xfs_fsize_t);
1da177e4
LT
585#else /* DEBUG */
586#define xfs_isize_check(mp, ip, isize)
587#endif /* DEBUG */
588
589#if defined(DEBUG)
590void xfs_inobp_check(struct xfs_mount *, struct xfs_buf *);
591#else
592#define xfs_inobp_check(mp, bp)
593#endif /* DEBUG */
594
1da177e4
LT
595extern struct kmem_zone *xfs_ifork_zone;
596extern struct kmem_zone *xfs_inode_zone;
597extern struct kmem_zone *xfs_ili_zone;
1da177e4 598
1da177e4 599#endif /* __XFS_INODE_H__ */