[XFS] Remove xfs_macros.c, xfs_macros.h, rework headers a whole lot.
[linux-2.6-block.git] / fs / xfs / xfs_trans.h
CommitLineData
1da177e4
LT
1/*
2 * Copyright (c) 2000-2002 Silicon Graphics, Inc. All Rights Reserved.
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms of version 2 of the GNU General Public License as
6 * published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope that it would be useful, but
9 * WITHOUT ANY WARRANTY; without even the implied warranty of
10 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
11 *
12 * Further, this software is distributed without any warranty that it is
13 * free of the rightful claim of any third person regarding infringement
14 * or the like. Any license provided herein, whether implied or
15 * otherwise, applies only to this software file. Patent licenses, if
16 * any, provided herein do not apply to combinations of this program with
17 * other software, or any other product whatsoever.
18 *
19 * You should have received a copy of the GNU General Public License along
20 * with this program; if not, write the Free Software Foundation, Inc., 59
21 * Temple Place - Suite 330, Boston MA 02111-1307, USA.
22 *
23 * Contact information: Silicon Graphics, Inc., 1600 Amphitheatre Pkwy,
24 * Mountain View, CA 94043, or:
25 *
26 * http://www.sgi.com
27 *
28 * For further information regarding this notice, see:
29 *
30 * http://oss.sgi.com/projects/GenInfo/SGIGPLNoticeExplan/
31 */
32#ifndef __XFS_TRANS_H__
33#define __XFS_TRANS_H__
34
35/*
36 * This is the structure written in the log at the head of
37 * every transaction. It identifies the type and id of the
38 * transaction, and contains the number of items logged by
39 * the transaction so we know how many to expect during recovery.
40 *
41 * Do not change the below structure without redoing the code in
42 * xlog_recover_add_to_trans() and xlog_recover_add_to_cont_trans().
43 */
44typedef struct xfs_trans_header {
45 uint th_magic; /* magic number */
46 uint th_type; /* transaction type */
47 __int32_t th_tid; /* transaction id (unused) */
48 uint th_num_items; /* num items logged by trans */
49} xfs_trans_header_t;
50
51#define XFS_TRANS_HEADER_MAGIC 0x5452414e /* TRAN */
52
53/*
54 * Log item types.
55 */
56#define XFS_LI_5_3_BUF 0x1234 /* v1 bufs, 1-block inode buffers */
57#define XFS_LI_5_3_INODE 0x1235 /* 1-block inode buffers */
58#define XFS_LI_EFI 0x1236
59#define XFS_LI_EFD 0x1237
60#define XFS_LI_IUNLINK 0x1238
61#define XFS_LI_6_1_INODE 0x1239 /* 4K non-aligned inode bufs */
62#define XFS_LI_6_1_BUF 0x123a /* v1, 4K inode buffers */
63#define XFS_LI_INODE 0x123b /* aligned ino chunks, var-size ibufs */
64#define XFS_LI_BUF 0x123c /* v2 bufs, variable sized inode bufs */
65#define XFS_LI_DQUOT 0x123d
66#define XFS_LI_QUOTAOFF 0x123e
67
68/*
69 * Transaction types. Used to distinguish types of buffers.
70 */
71#define XFS_TRANS_SETATTR_NOT_SIZE 1
72#define XFS_TRANS_SETATTR_SIZE 2
73#define XFS_TRANS_INACTIVE 3
74#define XFS_TRANS_CREATE 4
75#define XFS_TRANS_CREATE_TRUNC 5
76#define XFS_TRANS_TRUNCATE_FILE 6
77#define XFS_TRANS_REMOVE 7
78#define XFS_TRANS_LINK 8
79#define XFS_TRANS_RENAME 9
80#define XFS_TRANS_MKDIR 10
81#define XFS_TRANS_RMDIR 11
82#define XFS_TRANS_SYMLINK 12
83#define XFS_TRANS_SET_DMATTRS 13
84#define XFS_TRANS_GROWFS 14
85#define XFS_TRANS_STRAT_WRITE 15
86#define XFS_TRANS_DIOSTRAT 16
87#define XFS_TRANS_WRITE_SYNC 17
88#define XFS_TRANS_WRITEID 18
89#define XFS_TRANS_ADDAFORK 19
90#define XFS_TRANS_ATTRINVAL 20
91#define XFS_TRANS_ATRUNCATE 21
92#define XFS_TRANS_ATTR_SET 22
93#define XFS_TRANS_ATTR_RM 23
94#define XFS_TRANS_ATTR_FLAG 24
95#define XFS_TRANS_CLEAR_AGI_BUCKET 25
96#define XFS_TRANS_QM_SBCHANGE 26
97/*
98 * Dummy entries since we use the transaction type to index into the
99 * trans_type[] in xlog_recover_print_trans_head()
100 */
101#define XFS_TRANS_DUMMY1 27
102#define XFS_TRANS_DUMMY2 28
103#define XFS_TRANS_QM_QUOTAOFF 29
104#define XFS_TRANS_QM_DQALLOC 30
105#define XFS_TRANS_QM_SETQLIM 31
106#define XFS_TRANS_QM_DQCLUSTER 32
107#define XFS_TRANS_QM_QINOCREATE 33
108#define XFS_TRANS_QM_QUOTAOFF_END 34
109#define XFS_TRANS_SB_UNIT 35
110#define XFS_TRANS_FSYNC_TS 36
111#define XFS_TRANS_GROWFSRT_ALLOC 37
112#define XFS_TRANS_GROWFSRT_ZERO 38
113#define XFS_TRANS_GROWFSRT_FREE 39
114#define XFS_TRANS_SWAPEXT 40
7e9c6396 115#define XFS_TRANS_TYPE_MAX 40
1da177e4
LT
116/* new transaction types need to be reflected in xfs_logprint(8) */
117
118
119#ifdef __KERNEL__
120struct xfs_buf;
121struct xfs_buftarg;
122struct xfs_efd_log_item;
123struct xfs_efi_log_item;
124struct xfs_inode;
125struct xfs_item_ops;
126struct xfs_log_iovec;
127struct xfs_log_item;
128struct xfs_log_item_desc;
129struct xfs_mount;
130struct xfs_trans;
131struct xfs_dquot_acct;
132
133typedef struct xfs_ail_entry {
134 struct xfs_log_item *ail_forw; /* AIL forw pointer */
135 struct xfs_log_item *ail_back; /* AIL back pointer */
136} xfs_ail_entry_t;
137
1da177e4
LT
138typedef struct xfs_log_item {
139 xfs_ail_entry_t li_ail; /* AIL pointers */
140 xfs_lsn_t li_lsn; /* last on-disk lsn */
141 struct xfs_log_item_desc *li_desc; /* ptr to current desc*/
142 struct xfs_mount *li_mountp; /* ptr to fs mount */
143 uint li_type; /* item type */
144 uint li_flags; /* misc flags */
145 struct xfs_log_item *li_bio_list; /* buffer item list */
146 void (*li_cb)(struct xfs_buf *,
147 struct xfs_log_item *);
148 /* buffer item iodone */
149 /* callback func */
150 struct xfs_item_ops *li_ops; /* function list */
151} xfs_log_item_t;
152
153#define XFS_LI_IN_AIL 0x1
154#define XFS_LI_ABORTED 0x2
155
156typedef struct xfs_item_ops {
157 uint (*iop_size)(xfs_log_item_t *);
158 void (*iop_format)(xfs_log_item_t *, struct xfs_log_iovec *);
159 void (*iop_pin)(xfs_log_item_t *);
160 void (*iop_unpin)(xfs_log_item_t *, int);
161 void (*iop_unpin_remove)(xfs_log_item_t *, struct xfs_trans *);
162 uint (*iop_trylock)(xfs_log_item_t *);
163 void (*iop_unlock)(xfs_log_item_t *);
164 xfs_lsn_t (*iop_committed)(xfs_log_item_t *, xfs_lsn_t);
165 void (*iop_push)(xfs_log_item_t *);
166 void (*iop_abort)(xfs_log_item_t *);
167 void (*iop_pushbuf)(xfs_log_item_t *);
168 void (*iop_committing)(xfs_log_item_t *, xfs_lsn_t);
169} xfs_item_ops_t;
170
171#define IOP_SIZE(ip) (*(ip)->li_ops->iop_size)(ip)
172#define IOP_FORMAT(ip,vp) (*(ip)->li_ops->iop_format)(ip, vp)
173#define IOP_PIN(ip) (*(ip)->li_ops->iop_pin)(ip)
174#define IOP_UNPIN(ip, flags) (*(ip)->li_ops->iop_unpin)(ip, flags)
175#define IOP_UNPIN_REMOVE(ip,tp) (*(ip)->li_ops->iop_unpin_remove)(ip, tp)
176#define IOP_TRYLOCK(ip) (*(ip)->li_ops->iop_trylock)(ip)
177#define IOP_UNLOCK(ip) (*(ip)->li_ops->iop_unlock)(ip)
178#define IOP_COMMITTED(ip, lsn) (*(ip)->li_ops->iop_committed)(ip, lsn)
179#define IOP_PUSH(ip) (*(ip)->li_ops->iop_push)(ip)
180#define IOP_ABORT(ip) (*(ip)->li_ops->iop_abort)(ip)
181#define IOP_PUSHBUF(ip) (*(ip)->li_ops->iop_pushbuf)(ip)
182#define IOP_COMMITTING(ip, lsn) (*(ip)->li_ops->iop_committing)(ip, lsn)
183
184/*
185 * Return values for the IOP_TRYLOCK() routines.
186 */
187#define XFS_ITEM_SUCCESS 0
188#define XFS_ITEM_PINNED 1
189#define XFS_ITEM_LOCKED 2
190#define XFS_ITEM_FLUSHING 3
191#define XFS_ITEM_PUSHBUF 4
192
193#endif /* __KERNEL__ */
194
195/*
196 * This structure is used to track log items associated with
197 * a transaction. It points to the log item and keeps some
198 * flags to track the state of the log item. It also tracks
199 * the amount of space needed to log the item it describes
200 * once we get to commit processing (see xfs_trans_commit()).
201 */
202typedef struct xfs_log_item_desc {
203 xfs_log_item_t *lid_item;
204 ushort lid_size;
205 unsigned char lid_flags;
206 unsigned char lid_index;
207} xfs_log_item_desc_t;
208
209#define XFS_LID_DIRTY 0x1
210#define XFS_LID_PINNED 0x2
211#define XFS_LID_BUF_STALE 0x8
212
213/*
214 * This structure is used to maintain a chunk list of log_item_desc
215 * structures. The free field is a bitmask indicating which descriptors
216 * in this chunk's array are free. The unused field is the first value
217 * not used since this chunk was allocated.
218 */
219#define XFS_LIC_NUM_SLOTS 15
220typedef struct xfs_log_item_chunk {
221 struct xfs_log_item_chunk *lic_next;
222 ushort lic_free;
223 ushort lic_unused;
224 xfs_log_item_desc_t lic_descs[XFS_LIC_NUM_SLOTS];
225} xfs_log_item_chunk_t;
226
227#define XFS_LIC_MAX_SLOT (XFS_LIC_NUM_SLOTS - 1)
228#define XFS_LIC_FREEMASK ((1 << XFS_LIC_NUM_SLOTS) - 1)
229
230
231/*
232 * Initialize the given chunk. Set the chunk's free descriptor mask
233 * to indicate that all descriptors are free. The caller gets to set
234 * lic_unused to the right value (0 matches all free). The
235 * lic_descs.lid_index values are set up as each desc is allocated.
236 */
1da177e4 237#define XFS_LIC_INIT(cp) xfs_lic_init(cp)
a844f451
NS
238static inline void xfs_lic_init(xfs_log_item_chunk_t *cp)
239{
240 cp->lic_free = XFS_LIC_FREEMASK;
241}
242
1da177e4 243#define XFS_LIC_INIT_SLOT(cp,slot) xfs_lic_init_slot(cp, slot)
a844f451
NS
244static inline void xfs_lic_init_slot(xfs_log_item_chunk_t *cp, int slot)
245{
246 cp->lic_descs[slot].lid_index = (unsigned char)(slot);
247}
248
1da177e4 249#define XFS_LIC_VACANCY(cp) xfs_lic_vacancy(cp)
a844f451
NS
250static inline int xfs_lic_vacancy(xfs_log_item_chunk_t *cp)
251{
252 return cp->lic_free & XFS_LIC_FREEMASK;
253}
254
1da177e4 255#define XFS_LIC_ALL_FREE(cp) xfs_lic_all_free(cp)
a844f451
NS
256static inline void xfs_lic_all_free(xfs_log_item_chunk_t *cp)
257{
258 cp->lic_free = XFS_LIC_FREEMASK;
259}
260
1da177e4 261#define XFS_LIC_ARE_ALL_FREE(cp) xfs_lic_are_all_free(cp)
a844f451
NS
262static inline int xfs_lic_are_all_free(xfs_log_item_chunk_t *cp)
263{
264 return ((cp->lic_free & XFS_LIC_FREEMASK) == XFS_LIC_FREEMASK);
265}
266
1da177e4 267#define XFS_LIC_ISFREE(cp,slot) xfs_lic_isfree(cp,slot)
a844f451
NS
268static inline int xfs_lic_isfree(xfs_log_item_chunk_t *cp, int slot)
269{
270 return (cp->lic_free & (1 << slot));
271}
272
1da177e4 273#define XFS_LIC_CLAIM(cp,slot) xfs_lic_claim(cp,slot)
a844f451
NS
274static inline void xfs_lic_claim(xfs_log_item_chunk_t *cp, int slot)
275{
276 cp->lic_free &= ~(1 << slot);
277}
278
1da177e4 279#define XFS_LIC_RELSE(cp,slot) xfs_lic_relse(cp,slot)
a844f451
NS
280static inline void xfs_lic_relse(xfs_log_item_chunk_t *cp, int slot)
281{
282 cp->lic_free |= 1 << slot;
283}
284
1da177e4 285#define XFS_LIC_SLOT(cp,slot) xfs_lic_slot(cp,slot)
a844f451
NS
286static inline xfs_log_item_desc_t *
287xfs_lic_slot(xfs_log_item_chunk_t *cp, int slot)
288{
289 return &(cp->lic_descs[slot]);
290}
291
1da177e4 292#define XFS_LIC_DESC_TO_SLOT(dp) xfs_lic_desc_to_slot(dp)
a844f451
NS
293static inline int xfs_lic_desc_to_slot(xfs_log_item_desc_t *dp)
294{
295 return (uint)dp->lid_index;
296}
297
1da177e4
LT
298/*
299 * Calculate the address of a chunk given a descriptor pointer:
300 * dp - dp->lid_index give the address of the start of the lic_descs array.
301 * From this we subtract the offset of the lic_descs field in a chunk.
302 * All of this yields the address of the chunk, which is
303 * cast to a chunk pointer.
304 */
1da177e4 305#define XFS_LIC_DESC_TO_CHUNK(dp) xfs_lic_desc_to_chunk(dp)
a844f451
NS
306static inline xfs_log_item_chunk_t *
307xfs_lic_desc_to_chunk(xfs_log_item_desc_t *dp)
308{
309 return (xfs_log_item_chunk_t*) \
310 (((xfs_caddr_t)((dp) - (dp)->lid_index)) - \
311 (xfs_caddr_t)(((xfs_log_item_chunk_t*)0)->lic_descs));
312}
1da177e4
LT
313
314#ifdef __KERNEL__
315/*
316 * This structure is used to maintain a list of block ranges that have been
317 * freed in the transaction. The ranges are listed in the perag[] busy list
318 * between when they're freed and the transaction is committed to disk.
319 */
320
321typedef struct xfs_log_busy_slot {
322 xfs_agnumber_t lbc_ag;
323 ushort lbc_idx; /* index in perag.busy[] */
324} xfs_log_busy_slot_t;
325
326#define XFS_LBC_NUM_SLOTS 31
327typedef struct xfs_log_busy_chunk {
328 struct xfs_log_busy_chunk *lbc_next;
a844f451 329 uint lbc_free; /* free slots bitmask */
1da177e4
LT
330 ushort lbc_unused; /* first unused */
331 xfs_log_busy_slot_t lbc_busy[XFS_LBC_NUM_SLOTS];
332} xfs_log_busy_chunk_t;
333
334#define XFS_LBC_MAX_SLOT (XFS_LBC_NUM_SLOTS - 1)
335#define XFS_LBC_FREEMASK ((1U << XFS_LBC_NUM_SLOTS) - 1)
336
337#define XFS_LBC_INIT(cp) ((cp)->lbc_free = XFS_LBC_FREEMASK)
338#define XFS_LBC_CLAIM(cp, slot) ((cp)->lbc_free &= ~(1 << (slot)))
339#define XFS_LBC_SLOT(cp, slot) (&((cp)->lbc_busy[(slot)]))
340#define XFS_LBC_VACANCY(cp) (((cp)->lbc_free) & XFS_LBC_FREEMASK)
341#define XFS_LBC_ISFREE(cp, slot) ((cp)->lbc_free & (1 << (slot)))
342
343/*
344 * This is the type of function which can be given to xfs_trans_callback()
345 * to be called upon the transaction's commit to disk.
346 */
347typedef void (*xfs_trans_callback_t)(struct xfs_trans *, void *);
348
349/*
350 * This is the structure maintained for every active transaction.
351 */
352typedef struct xfs_trans {
353 unsigned int t_magic; /* magic number */
354 xfs_log_callback_t t_logcb; /* log callback struct */
355 struct xfs_trans *t_forw; /* async list pointers */
356 struct xfs_trans *t_back; /* async list pointers */
357 unsigned int t_type; /* transaction type */
358 unsigned int t_log_res; /* amt of log space resvd */
359 unsigned int t_log_count; /* count for perm log res */
360 unsigned int t_blk_res; /* # of blocks resvd */
361 unsigned int t_blk_res_used; /* # of resvd blocks used */
362 unsigned int t_rtx_res; /* # of rt extents resvd */
363 unsigned int t_rtx_res_used; /* # of resvd rt extents used */
364 xfs_log_ticket_t t_ticket; /* log mgr ticket */
365 sema_t t_sema; /* sema for commit completion */
366 xfs_lsn_t t_lsn; /* log seq num of start of
367 * transaction. */
368 xfs_lsn_t t_commit_lsn; /* log seq num of end of
369 * transaction. */
370 struct xfs_mount *t_mountp; /* ptr to fs mount struct */
371 struct xfs_dquot_acct *t_dqinfo; /* accting info for dquots */
372 xfs_trans_callback_t t_callback; /* transaction callback */
373 void *t_callarg; /* callback arg */
374 unsigned int t_flags; /* misc flags */
375 long t_icount_delta; /* superblock icount change */
376 long t_ifree_delta; /* superblock ifree change */
377 long t_fdblocks_delta; /* superblock fdblocks chg */
378 long t_res_fdblocks_delta; /* on-disk only chg */
379 long t_frextents_delta;/* superblock freextents chg*/
380 long t_res_frextents_delta; /* on-disk only chg */
381 long t_ag_freeblks_delta; /* debugging counter */
382 long t_ag_flist_delta; /* debugging counter */
383 long t_ag_btree_delta; /* debugging counter */
384 long t_dblocks_delta;/* superblock dblocks change */
385 long t_agcount_delta;/* superblock agcount change */
386 long t_imaxpct_delta;/* superblock imaxpct change */
387 long t_rextsize_delta;/* superblock rextsize chg */
388 long t_rbmblocks_delta;/* superblock rbmblocks chg */
389 long t_rblocks_delta;/* superblock rblocks change */
390 long t_rextents_delta;/* superblocks rextents chg */
391 long t_rextslog_delta;/* superblocks rextslog chg */
392 unsigned int t_items_free; /* log item descs free */
393 xfs_log_item_chunk_t t_items; /* first log item desc chunk */
394 xfs_trans_header_t t_header; /* header for in-log trans */
395 unsigned int t_busy_free; /* busy descs free */
396 xfs_log_busy_chunk_t t_busy; /* busy/async free blocks */
397 xfs_pflags_t t_pflags; /* saved pflags state */
398} xfs_trans_t;
399
400#endif /* __KERNEL__ */
401
402
403#define XFS_TRANS_MAGIC 0x5452414E /* 'TRAN' */
404/*
405 * Values for t_flags.
406 */
407#define XFS_TRANS_DIRTY 0x01 /* something needs to be logged */
408#define XFS_TRANS_SB_DIRTY 0x02 /* superblock is modified */
409#define XFS_TRANS_PERM_LOG_RES 0x04 /* xact took a permanent log res */
410#define XFS_TRANS_SYNC 0x08 /* make commit synchronous */
411#define XFS_TRANS_DQ_DIRTY 0x10 /* at least one dquot in trx dirty */
412#define XFS_TRANS_RESERVE 0x20 /* OK to use reserved data blocks */
413
414/*
415 * Values for call flags parameter.
416 */
417#define XFS_TRANS_NOSLEEP 0x1
418#define XFS_TRANS_WAIT 0x2
419#define XFS_TRANS_RELEASE_LOG_RES 0x4
420#define XFS_TRANS_ABORT 0x8
421
422/*
423 * Field values for xfs_trans_mod_sb.
424 */
425#define XFS_TRANS_SB_ICOUNT 0x00000001
426#define XFS_TRANS_SB_IFREE 0x00000002
427#define XFS_TRANS_SB_FDBLOCKS 0x00000004
428#define XFS_TRANS_SB_RES_FDBLOCKS 0x00000008
429#define XFS_TRANS_SB_FREXTENTS 0x00000010
430#define XFS_TRANS_SB_RES_FREXTENTS 0x00000020
431#define XFS_TRANS_SB_DBLOCKS 0x00000040
432#define XFS_TRANS_SB_AGCOUNT 0x00000080
433#define XFS_TRANS_SB_IMAXPCT 0x00000100
434#define XFS_TRANS_SB_REXTSIZE 0x00000200
435#define XFS_TRANS_SB_RBMBLOCKS 0x00000400
436#define XFS_TRANS_SB_RBLOCKS 0x00000800
437#define XFS_TRANS_SB_REXTENTS 0x00001000
438#define XFS_TRANS_SB_REXTSLOG 0x00002000
439
440
441/*
442 * Various log reservation values.
443 * These are based on the size of the file system block
444 * because that is what most transactions manipulate.
445 * Each adds in an additional 128 bytes per item logged to
446 * try to account for the overhead of the transaction mechanism.
447 *
448 * Note:
449 * Most of the reservations underestimate the number of allocation
450 * groups into which they could free extents in the xfs_bmap_finish()
451 * call. This is because the number in the worst case is quite high
452 * and quite unusual. In order to fix this we need to change
453 * xfs_bmap_finish() to free extents in only a single AG at a time.
454 * This will require changes to the EFI code as well, however, so that
455 * the EFI for the extents not freed is logged again in each transaction.
456 * See bug 261917.
457 */
458
459/*
460 * Per-extent log reservation for the allocation btree changes
461 * involved in freeing or allocating an extent.
462 * 2 trees * (2 blocks/level * max depth - 1) * block size
463 */
464#define XFS_ALLOCFREE_LOG_RES(mp,nx) \
465 ((nx) * (2 * XFS_FSB_TO_B((mp), 2 * XFS_AG_MAXLEVELS(mp) - 1)))
466#define XFS_ALLOCFREE_LOG_COUNT(mp,nx) \
467 ((nx) * (2 * (2 * XFS_AG_MAXLEVELS(mp) - 1)))
468
469/*
470 * Per-directory log reservation for any directory change.
471 * dir blocks: (1 btree block per level + data block + free block) * dblock size
472 * bmap btree: (levels + 2) * max depth * block size
473 * v2 directory blocks can be fragmented below the dirblksize down to the fsb
474 * size, so account for that in the DAENTER macros.
475 */
476#define XFS_DIROP_LOG_RES(mp) \
477 (XFS_FSB_TO_B(mp, XFS_DAENTER_BLOCKS(mp, XFS_DATA_FORK)) + \
478 (XFS_FSB_TO_B(mp, XFS_DAENTER_BMAPS(mp, XFS_DATA_FORK) + 1)))
479#define XFS_DIROP_LOG_COUNT(mp) \
480 (XFS_DAENTER_BLOCKS(mp, XFS_DATA_FORK) + \
481 XFS_DAENTER_BMAPS(mp, XFS_DATA_FORK) + 1)
482
483/*
484 * In a write transaction we can allocate a maximum of 2
485 * extents. This gives:
486 * the inode getting the new extents: inode size
487 * the inode\'s bmap btree: max depth * block size
488 * the agfs of the ags from which the extents are allocated: 2 * sector
489 * the superblock free block counter: sector size
490 * the allocation btrees: 2 exts * 2 trees * (2 * max depth - 1) * block size
491 * And the bmap_finish transaction can free bmap blocks in a join:
492 * the agfs of the ags containing the blocks: 2 * sector size
493 * the agfls of the ags containing the blocks: 2 * sector size
494 * the super block free block counter: sector size
495 * the allocation btrees: 2 exts * 2 trees * (2 * max depth - 1) * block size
496 */
497#define XFS_CALC_WRITE_LOG_RES(mp) \
498 (MAX( \
499 ((mp)->m_sb.sb_inodesize + \
500 XFS_FSB_TO_B((mp), XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK)) + \
501 (2 * (mp)->m_sb.sb_sectsize) + \
502 (mp)->m_sb.sb_sectsize + \
503 XFS_ALLOCFREE_LOG_RES(mp, 2) + \
504 (128 * (4 + XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK) + XFS_ALLOCFREE_LOG_COUNT(mp, 2)))),\
505 ((2 * (mp)->m_sb.sb_sectsize) + \
506 (2 * (mp)->m_sb.sb_sectsize) + \
507 (mp)->m_sb.sb_sectsize + \
508 XFS_ALLOCFREE_LOG_RES(mp, 2) + \
509 (128 * (5 + XFS_ALLOCFREE_LOG_COUNT(mp, 2))))))
510
511#define XFS_WRITE_LOG_RES(mp) ((mp)->m_reservations.tr_write)
512
513/*
514 * In truncating a file we free up to two extents at once. We can modify:
515 * the inode being truncated: inode size
516 * the inode\'s bmap btree: (max depth + 1) * block size
517 * And the bmap_finish transaction can free the blocks and bmap blocks:
518 * the agf for each of the ags: 4 * sector size
519 * the agfl for each of the ags: 4 * sector size
520 * the super block to reflect the freed blocks: sector size
521 * worst case split in allocation btrees per extent assuming 4 extents:
522 * 4 exts * 2 trees * (2 * max depth - 1) * block size
523 * the inode btree: max depth * blocksize
524 * the allocation btrees: 2 trees * (max depth - 1) * block size
525 */
526#define XFS_CALC_ITRUNCATE_LOG_RES(mp) \
527 (MAX( \
528 ((mp)->m_sb.sb_inodesize + \
529 XFS_FSB_TO_B((mp), XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK) + 1) + \
530 (128 * (2 + XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK)))), \
531 ((4 * (mp)->m_sb.sb_sectsize) + \
532 (4 * (mp)->m_sb.sb_sectsize) + \
533 (mp)->m_sb.sb_sectsize + \
534 XFS_ALLOCFREE_LOG_RES(mp, 4) + \
535 (128 * (9 + XFS_ALLOCFREE_LOG_COUNT(mp, 4))) + \
536 (128 * 5) + \
537 XFS_ALLOCFREE_LOG_RES(mp, 1) + \
538 (128 * (2 + XFS_IALLOC_BLOCKS(mp) + XFS_IN_MAXLEVELS(mp) + \
539 XFS_ALLOCFREE_LOG_COUNT(mp, 1))))))
540
541#define XFS_ITRUNCATE_LOG_RES(mp) ((mp)->m_reservations.tr_itruncate)
542
543/*
544 * In renaming a files we can modify:
545 * the four inodes involved: 4 * inode size
546 * the two directory btrees: 2 * (max depth + v2) * dir block size
547 * the two directory bmap btrees: 2 * max depth * block size
548 * And the bmap_finish transaction can free dir and bmap blocks (two sets
549 * of bmap blocks) giving:
550 * the agf for the ags in which the blocks live: 3 * sector size
551 * the agfl for the ags in which the blocks live: 3 * sector size
552 * the superblock for the free block count: sector size
553 * the allocation btrees: 3 exts * 2 trees * (2 * max depth - 1) * block size
554 */
555#define XFS_CALC_RENAME_LOG_RES(mp) \
556 (MAX( \
557 ((4 * (mp)->m_sb.sb_inodesize) + \
558 (2 * XFS_DIROP_LOG_RES(mp)) + \
559 (128 * (4 + 2 * XFS_DIROP_LOG_COUNT(mp)))), \
560 ((3 * (mp)->m_sb.sb_sectsize) + \
561 (3 * (mp)->m_sb.sb_sectsize) + \
562 (mp)->m_sb.sb_sectsize + \
563 XFS_ALLOCFREE_LOG_RES(mp, 3) + \
564 (128 * (7 + XFS_ALLOCFREE_LOG_COUNT(mp, 3))))))
565
566#define XFS_RENAME_LOG_RES(mp) ((mp)->m_reservations.tr_rename)
567
568/*
569 * For creating a link to an inode:
570 * the parent directory inode: inode size
571 * the linked inode: inode size
572 * the directory btree could split: (max depth + v2) * dir block size
573 * the directory bmap btree could join or split: (max depth + v2) * blocksize
574 * And the bmap_finish transaction can free some bmap blocks giving:
575 * the agf for the ag in which the blocks live: sector size
576 * the agfl for the ag in which the blocks live: sector size
577 * the superblock for the free block count: sector size
578 * the allocation btrees: 2 trees * (2 * max depth - 1) * block size
579 */
580#define XFS_CALC_LINK_LOG_RES(mp) \
581 (MAX( \
582 ((mp)->m_sb.sb_inodesize + \
583 (mp)->m_sb.sb_inodesize + \
584 XFS_DIROP_LOG_RES(mp) + \
585 (128 * (2 + XFS_DIROP_LOG_COUNT(mp)))), \
586 ((mp)->m_sb.sb_sectsize + \
587 (mp)->m_sb.sb_sectsize + \
588 (mp)->m_sb.sb_sectsize + \
589 XFS_ALLOCFREE_LOG_RES(mp, 1) + \
590 (128 * (3 + XFS_ALLOCFREE_LOG_COUNT(mp, 1))))))
591
592#define XFS_LINK_LOG_RES(mp) ((mp)->m_reservations.tr_link)
593
594/*
595 * For removing a directory entry we can modify:
596 * the parent directory inode: inode size
597 * the removed inode: inode size
598 * the directory btree could join: (max depth + v2) * dir block size
599 * the directory bmap btree could join or split: (max depth + v2) * blocksize
600 * And the bmap_finish transaction can free the dir and bmap blocks giving:
601 * the agf for the ag in which the blocks live: 2 * sector size
602 * the agfl for the ag in which the blocks live: 2 * sector size
603 * the superblock for the free block count: sector size
604 * the allocation btrees: 2 exts * 2 trees * (2 * max depth - 1) * block size
605 */
606#define XFS_CALC_REMOVE_LOG_RES(mp) \
607 (MAX( \
608 ((mp)->m_sb.sb_inodesize + \
609 (mp)->m_sb.sb_inodesize + \
610 XFS_DIROP_LOG_RES(mp) + \
611 (128 * (2 + XFS_DIROP_LOG_COUNT(mp)))), \
612 ((2 * (mp)->m_sb.sb_sectsize) + \
613 (2 * (mp)->m_sb.sb_sectsize) + \
614 (mp)->m_sb.sb_sectsize + \
615 XFS_ALLOCFREE_LOG_RES(mp, 2) + \
616 (128 * (5 + XFS_ALLOCFREE_LOG_COUNT(mp, 2))))))
617
618#define XFS_REMOVE_LOG_RES(mp) ((mp)->m_reservations.tr_remove)
619
620/*
621 * For symlink we can modify:
622 * the parent directory inode: inode size
623 * the new inode: inode size
624 * the inode btree entry: 1 block
625 * the directory btree: (max depth + v2) * dir block size
626 * the directory inode\'s bmap btree: (max depth + v2) * block size
627 * the blocks for the symlink: 1 KB
628 * Or in the first xact we allocate some inodes giving:
629 * the agi and agf of the ag getting the new inodes: 2 * sectorsize
630 * the inode blocks allocated: XFS_IALLOC_BLOCKS * blocksize
631 * the inode btree: max depth * blocksize
632 * the allocation btrees: 2 trees * (2 * max depth - 1) * block size
633 */
634#define XFS_CALC_SYMLINK_LOG_RES(mp) \
635 (MAX( \
636 ((mp)->m_sb.sb_inodesize + \
637 (mp)->m_sb.sb_inodesize + \
638 XFS_FSB_TO_B(mp, 1) + \
639 XFS_DIROP_LOG_RES(mp) + \
640 1024 + \
641 (128 * (4 + XFS_DIROP_LOG_COUNT(mp)))), \
642 (2 * (mp)->m_sb.sb_sectsize + \
643 XFS_FSB_TO_B((mp), XFS_IALLOC_BLOCKS((mp))) + \
644 XFS_FSB_TO_B((mp), XFS_IN_MAXLEVELS(mp)) + \
645 XFS_ALLOCFREE_LOG_RES(mp, 1) + \
646 (128 * (2 + XFS_IALLOC_BLOCKS(mp) + XFS_IN_MAXLEVELS(mp) + \
647 XFS_ALLOCFREE_LOG_COUNT(mp, 1))))))
648
649#define XFS_SYMLINK_LOG_RES(mp) ((mp)->m_reservations.tr_symlink)
650
651/*
652 * For create we can modify:
653 * the parent directory inode: inode size
654 * the new inode: inode size
655 * the inode btree entry: block size
656 * the superblock for the nlink flag: sector size
657 * the directory btree: (max depth + v2) * dir block size
658 * the directory inode\'s bmap btree: (max depth + v2) * block size
659 * Or in the first xact we allocate some inodes giving:
660 * the agi and agf of the ag getting the new inodes: 2 * sectorsize
661 * the superblock for the nlink flag: sector size
662 * the inode blocks allocated: XFS_IALLOC_BLOCKS * blocksize
663 * the inode btree: max depth * blocksize
664 * the allocation btrees: 2 trees * (max depth - 1) * block size
665 */
666#define XFS_CALC_CREATE_LOG_RES(mp) \
667 (MAX( \
668 ((mp)->m_sb.sb_inodesize + \
669 (mp)->m_sb.sb_inodesize + \
670 (mp)->m_sb.sb_sectsize + \
671 XFS_FSB_TO_B(mp, 1) + \
672 XFS_DIROP_LOG_RES(mp) + \
673 (128 * (3 + XFS_DIROP_LOG_COUNT(mp)))), \
674 (3 * (mp)->m_sb.sb_sectsize + \
675 XFS_FSB_TO_B((mp), XFS_IALLOC_BLOCKS((mp))) + \
676 XFS_FSB_TO_B((mp), XFS_IN_MAXLEVELS(mp)) + \
677 XFS_ALLOCFREE_LOG_RES(mp, 1) + \
678 (128 * (2 + XFS_IALLOC_BLOCKS(mp) + XFS_IN_MAXLEVELS(mp) + \
679 XFS_ALLOCFREE_LOG_COUNT(mp, 1))))))
680
681#define XFS_CREATE_LOG_RES(mp) ((mp)->m_reservations.tr_create)
682
683/*
684 * Making a new directory is the same as creating a new file.
685 */
686#define XFS_CALC_MKDIR_LOG_RES(mp) XFS_CALC_CREATE_LOG_RES(mp)
687
688#define XFS_MKDIR_LOG_RES(mp) ((mp)->m_reservations.tr_mkdir)
689
690/*
691 * In freeing an inode we can modify:
692 * the inode being freed: inode size
693 * the super block free inode counter: sector size
694 * the agi hash list and counters: sector size
695 * the inode btree entry: block size
696 * the on disk inode before ours in the agi hash list: inode cluster size
697 * the inode btree: max depth * blocksize
698 * the allocation btrees: 2 trees * (max depth - 1) * block size
699 */
700#define XFS_CALC_IFREE_LOG_RES(mp) \
701 ((mp)->m_sb.sb_inodesize + \
702 (mp)->m_sb.sb_sectsize + \
703 (mp)->m_sb.sb_sectsize + \
704 XFS_FSB_TO_B((mp), 1) + \
705 MAX((__uint16_t)XFS_FSB_TO_B((mp), 1), XFS_INODE_CLUSTER_SIZE(mp)) + \
706 (128 * 5) + \
707 XFS_ALLOCFREE_LOG_RES(mp, 1) + \
708 (128 * (2 + XFS_IALLOC_BLOCKS(mp) + XFS_IN_MAXLEVELS(mp) + \
709 XFS_ALLOCFREE_LOG_COUNT(mp, 1))))
710
711
712#define XFS_IFREE_LOG_RES(mp) ((mp)->m_reservations.tr_ifree)
713
714/*
715 * When only changing the inode we log the inode and possibly the superblock
716 * We also add a bit of slop for the transaction stuff.
717 */
718#define XFS_CALC_ICHANGE_LOG_RES(mp) ((mp)->m_sb.sb_inodesize + \
719 (mp)->m_sb.sb_sectsize + 512)
720
721#define XFS_ICHANGE_LOG_RES(mp) ((mp)->m_reservations.tr_ichange)
722
723/*
724 * Growing the data section of the filesystem.
725 * superblock
726 * agi and agf
727 * allocation btrees
728 */
729#define XFS_CALC_GROWDATA_LOG_RES(mp) \
730 ((mp)->m_sb.sb_sectsize * 3 + \
731 XFS_ALLOCFREE_LOG_RES(mp, 1) + \
732 (128 * (3 + XFS_ALLOCFREE_LOG_COUNT(mp, 1))))
733
734#define XFS_GROWDATA_LOG_RES(mp) ((mp)->m_reservations.tr_growdata)
735
736/*
737 * Growing the rt section of the filesystem.
738 * In the first set of transactions (ALLOC) we allocate space to the
739 * bitmap or summary files.
740 * superblock: sector size
741 * agf of the ag from which the extent is allocated: sector size
742 * bmap btree for bitmap/summary inode: max depth * blocksize
743 * bitmap/summary inode: inode size
744 * allocation btrees for 1 block alloc: 2 * (2 * maxdepth - 1) * blocksize
745 */
746#define XFS_CALC_GROWRTALLOC_LOG_RES(mp) \
747 (2 * (mp)->m_sb.sb_sectsize + \
748 XFS_FSB_TO_B((mp), XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK)) + \
749 (mp)->m_sb.sb_inodesize + \
750 XFS_ALLOCFREE_LOG_RES(mp, 1) + \
751 (128 * \
752 (3 + XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK) + \
753 XFS_ALLOCFREE_LOG_COUNT(mp, 1))))
754
755#define XFS_GROWRTALLOC_LOG_RES(mp) ((mp)->m_reservations.tr_growrtalloc)
756
757/*
758 * Growing the rt section of the filesystem.
759 * In the second set of transactions (ZERO) we zero the new metadata blocks.
760 * one bitmap/summary block: blocksize
761 */
762#define XFS_CALC_GROWRTZERO_LOG_RES(mp) \
763 ((mp)->m_sb.sb_blocksize + 128)
764
765#define XFS_GROWRTZERO_LOG_RES(mp) ((mp)->m_reservations.tr_growrtzero)
766
767/*
768 * Growing the rt section of the filesystem.
769 * In the third set of transactions (FREE) we update metadata without
770 * allocating any new blocks.
771 * superblock: sector size
772 * bitmap inode: inode size
773 * summary inode: inode size
774 * one bitmap block: blocksize
775 * summary blocks: new summary size
776 */
777#define XFS_CALC_GROWRTFREE_LOG_RES(mp) \
778 ((mp)->m_sb.sb_sectsize + \
779 2 * (mp)->m_sb.sb_inodesize + \
780 (mp)->m_sb.sb_blocksize + \
781 (mp)->m_rsumsize + \
782 (128 * 5))
783
784#define XFS_GROWRTFREE_LOG_RES(mp) ((mp)->m_reservations.tr_growrtfree)
785
786/*
787 * Logging the inode modification timestamp on a synchronous write.
788 * inode
789 */
790#define XFS_CALC_SWRITE_LOG_RES(mp) \
791 ((mp)->m_sb.sb_inodesize + 128)
792
793#define XFS_SWRITE_LOG_RES(mp) ((mp)->m_reservations.tr_swrite)
794
795/*
796 * Logging the inode timestamps on an fsync -- same as SWRITE
797 * as long as SWRITE logs the entire inode core
798 */
799#define XFS_FSYNC_TS_LOG_RES(mp) ((mp)->m_reservations.tr_swrite)
800
801/*
802 * Logging the inode mode bits when writing a setuid/setgid file
803 * inode
804 */
805#define XFS_CALC_WRITEID_LOG_RES(mp) \
806 ((mp)->m_sb.sb_inodesize + 128)
807
808#define XFS_WRITEID_LOG_RES(mp) ((mp)->m_reservations.tr_swrite)
809
810/*
811 * Converting the inode from non-attributed to attributed.
812 * the inode being converted: inode size
813 * agf block and superblock (for block allocation)
814 * the new block (directory sized)
815 * bmap blocks for the new directory block
816 * allocation btrees
817 */
818#define XFS_CALC_ADDAFORK_LOG_RES(mp) \
819 ((mp)->m_sb.sb_inodesize + \
820 (mp)->m_sb.sb_sectsize * 2 + \
821 (mp)->m_dirblksize + \
822 (XFS_DIR_IS_V1(mp) ? 0 : \
823 XFS_FSB_TO_B(mp, (XFS_DAENTER_BMAP1B(mp, XFS_DATA_FORK) + 1))) + \
824 XFS_ALLOCFREE_LOG_RES(mp, 1) + \
825 (128 * (4 + \
826 (XFS_DIR_IS_V1(mp) ? 0 : \
827 XFS_DAENTER_BMAP1B(mp, XFS_DATA_FORK) + 1) + \
828 XFS_ALLOCFREE_LOG_COUNT(mp, 1))))
829
830#define XFS_ADDAFORK_LOG_RES(mp) ((mp)->m_reservations.tr_addafork)
831
832/*
833 * Removing the attribute fork of a file
834 * the inode being truncated: inode size
835 * the inode\'s bmap btree: max depth * block size
836 * And the bmap_finish transaction can free the blocks and bmap blocks:
837 * the agf for each of the ags: 4 * sector size
838 * the agfl for each of the ags: 4 * sector size
839 * the super block to reflect the freed blocks: sector size
840 * worst case split in allocation btrees per extent assuming 4 extents:
841 * 4 exts * 2 trees * (2 * max depth - 1) * block size
842 */
843#define XFS_CALC_ATTRINVAL_LOG_RES(mp) \
844 (MAX( \
845 ((mp)->m_sb.sb_inodesize + \
846 XFS_FSB_TO_B((mp), XFS_BM_MAXLEVELS(mp, XFS_ATTR_FORK)) + \
847 (128 * (1 + XFS_BM_MAXLEVELS(mp, XFS_ATTR_FORK)))), \
848 ((4 * (mp)->m_sb.sb_sectsize) + \
849 (4 * (mp)->m_sb.sb_sectsize) + \
850 (mp)->m_sb.sb_sectsize + \
851 XFS_ALLOCFREE_LOG_RES(mp, 4) + \
852 (128 * (9 + XFS_ALLOCFREE_LOG_COUNT(mp, 4))))))
853
854#define XFS_ATTRINVAL_LOG_RES(mp) ((mp)->m_reservations.tr_attrinval)
855
856/*
857 * Setting an attribute.
858 * the inode getting the attribute
859 * the superblock for allocations
860 * the agfs extents are allocated from
861 * the attribute btree * max depth
862 * the inode allocation btree
863 * Since attribute transaction space is dependent on the size of the attribute,
864 * the calculation is done partially at mount time and partially at runtime.
865 */
866#define XFS_CALC_ATTRSET_LOG_RES(mp) \
867 ((mp)->m_sb.sb_inodesize + \
868 (mp)->m_sb.sb_sectsize + \
869 XFS_FSB_TO_B((mp), XFS_DA_NODE_MAXDEPTH) + \
870 (128 * (2 + XFS_DA_NODE_MAXDEPTH)))
871
872#define XFS_ATTRSET_LOG_RES(mp, ext) \
873 ((mp)->m_reservations.tr_attrset + \
874 (ext * (mp)->m_sb.sb_sectsize) + \
875 (ext * XFS_FSB_TO_B((mp), XFS_BM_MAXLEVELS(mp, XFS_ATTR_FORK))) + \
876 (128 * (ext + (ext * XFS_BM_MAXLEVELS(mp, XFS_ATTR_FORK)))))
877
878/*
879 * Removing an attribute.
880 * the inode: inode size
881 * the attribute btree could join: max depth * block size
882 * the inode bmap btree could join or split: max depth * block size
883 * And the bmap_finish transaction can free the attr blocks freed giving:
884 * the agf for the ag in which the blocks live: 2 * sector size
885 * the agfl for the ag in which the blocks live: 2 * sector size
886 * the superblock for the free block count: sector size
887 * the allocation btrees: 2 exts * 2 trees * (2 * max depth - 1) * block size
888 */
889#define XFS_CALC_ATTRRM_LOG_RES(mp) \
890 (MAX( \
891 ((mp)->m_sb.sb_inodesize + \
892 XFS_FSB_TO_B((mp), XFS_DA_NODE_MAXDEPTH) + \
893 XFS_FSB_TO_B((mp), XFS_BM_MAXLEVELS(mp, XFS_ATTR_FORK)) + \
894 (128 * (1 + XFS_DA_NODE_MAXDEPTH + XFS_BM_MAXLEVELS(mp, XFS_DATA_FORK)))), \
895 ((2 * (mp)->m_sb.sb_sectsize) + \
896 (2 * (mp)->m_sb.sb_sectsize) + \
897 (mp)->m_sb.sb_sectsize + \
898 XFS_ALLOCFREE_LOG_RES(mp, 2) + \
899 (128 * (5 + XFS_ALLOCFREE_LOG_COUNT(mp, 2))))))
900
901#define XFS_ATTRRM_LOG_RES(mp) ((mp)->m_reservations.tr_attrrm)
902
903/*
904 * Clearing a bad agino number in an agi hash bucket.
905 */
906#define XFS_CALC_CLEAR_AGI_BUCKET_LOG_RES(mp) \
907 ((mp)->m_sb.sb_sectsize + 128)
908
909#define XFS_CLEAR_AGI_BUCKET_LOG_RES(mp) ((mp)->m_reservations.tr_clearagi)
910
911
912/*
913 * Various log count values.
914 */
915#define XFS_DEFAULT_LOG_COUNT 1
916#define XFS_DEFAULT_PERM_LOG_COUNT 2
917#define XFS_ITRUNCATE_LOG_COUNT 2
918#define XFS_INACTIVE_LOG_COUNT 2
919#define XFS_CREATE_LOG_COUNT 2
920#define XFS_MKDIR_LOG_COUNT 3
921#define XFS_SYMLINK_LOG_COUNT 3
922#define XFS_REMOVE_LOG_COUNT 2
923#define XFS_LINK_LOG_COUNT 2
924#define XFS_RENAME_LOG_COUNT 2
925#define XFS_WRITE_LOG_COUNT 2
926#define XFS_ADDAFORK_LOG_COUNT 2
927#define XFS_ATTRINVAL_LOG_COUNT 1
928#define XFS_ATTRSET_LOG_COUNT 3
929#define XFS_ATTRRM_LOG_COUNT 3
930
931/*
932 * Here we centralize the specification of XFS meta-data buffer
933 * reference count values. This determine how hard the buffer
934 * cache tries to hold onto the buffer.
935 */
936#define XFS_AGF_REF 4
937#define XFS_AGI_REF 4
938#define XFS_AGFL_REF 3
939#define XFS_INO_BTREE_REF 3
940#define XFS_ALLOC_BTREE_REF 2
941#define XFS_BMAP_BTREE_REF 2
942#define XFS_DIR_BTREE_REF 2
943#define XFS_ATTR_BTREE_REF 1
944#define XFS_INO_REF 1
945#define XFS_DQUOT_REF 1
946
947#ifdef __KERNEL__
948/*
949 * XFS transaction mechanism exported interfaces that are
950 * actually macros.
951 */
952#define xfs_trans_get_log_res(tp) ((tp)->t_log_res)
953#define xfs_trans_get_log_count(tp) ((tp)->t_log_count)
954#define xfs_trans_get_block_res(tp) ((tp)->t_blk_res)
955#define xfs_trans_set_sync(tp) ((tp)->t_flags |= XFS_TRANS_SYNC)
956
957#ifdef DEBUG
958#define xfs_trans_agblocks_delta(tp, d) ((tp)->t_ag_freeblks_delta += (long)d)
959#define xfs_trans_agflist_delta(tp, d) ((tp)->t_ag_flist_delta += (long)d)
960#define xfs_trans_agbtree_delta(tp, d) ((tp)->t_ag_btree_delta += (long)d)
961#else
962#define xfs_trans_agblocks_delta(tp, d)
963#define xfs_trans_agflist_delta(tp, d)
964#define xfs_trans_agbtree_delta(tp, d)
965#endif
966
967/*
968 * XFS transaction mechanism exported interfaces.
969 */
970void xfs_trans_init(struct xfs_mount *);
971xfs_trans_t *xfs_trans_alloc(struct xfs_mount *, uint);
972xfs_trans_t *_xfs_trans_alloc(struct xfs_mount *, uint);
973xfs_trans_t *xfs_trans_dup(xfs_trans_t *);
974int xfs_trans_reserve(xfs_trans_t *, uint, uint, uint,
975 uint, uint);
1da177e4
LT
976void xfs_trans_mod_sb(xfs_trans_t *, uint, long);
977struct xfs_buf *xfs_trans_get_buf(xfs_trans_t *, struct xfs_buftarg *, xfs_daddr_t,
978 int, uint);
979int xfs_trans_read_buf(struct xfs_mount *, xfs_trans_t *,
980 struct xfs_buftarg *, xfs_daddr_t, int, uint,
981 struct xfs_buf **);
982struct xfs_buf *xfs_trans_getsb(xfs_trans_t *, struct xfs_mount *, int);
983
984void xfs_trans_brelse(xfs_trans_t *, struct xfs_buf *);
985void xfs_trans_bjoin(xfs_trans_t *, struct xfs_buf *);
986void xfs_trans_bhold(xfs_trans_t *, struct xfs_buf *);
efa092f3 987void xfs_trans_bhold_release(xfs_trans_t *, struct xfs_buf *);
1da177e4
LT
988void xfs_trans_binval(xfs_trans_t *, struct xfs_buf *);
989void xfs_trans_inode_buf(xfs_trans_t *, struct xfs_buf *);
990void xfs_trans_inode_buf(xfs_trans_t *, struct xfs_buf *);
991void xfs_trans_stale_inode_buf(xfs_trans_t *, struct xfs_buf *);
992void xfs_trans_dquot_buf(xfs_trans_t *, struct xfs_buf *, uint);
993void xfs_trans_inode_alloc_buf(xfs_trans_t *, struct xfs_buf *);
994int xfs_trans_iget(struct xfs_mount *, xfs_trans_t *,
995 xfs_ino_t , uint, uint, struct xfs_inode **);
996void xfs_trans_ijoin(xfs_trans_t *, struct xfs_inode *, uint);
997void xfs_trans_ihold(xfs_trans_t *, struct xfs_inode *);
1da177e4
LT
998void xfs_trans_log_buf(xfs_trans_t *, struct xfs_buf *, uint, uint);
999void xfs_trans_log_inode(xfs_trans_t *, struct xfs_inode *, uint);
1000struct xfs_efi_log_item *xfs_trans_get_efi(xfs_trans_t *, uint);
1001void xfs_efi_release(struct xfs_efi_log_item *, uint);
1002void xfs_trans_log_efi_extent(xfs_trans_t *,
1003 struct xfs_efi_log_item *,
1004 xfs_fsblock_t,
1005 xfs_extlen_t);
1006struct xfs_efd_log_item *xfs_trans_get_efd(xfs_trans_t *,
1007 struct xfs_efi_log_item *,
1008 uint);
1009void xfs_trans_log_efd_extent(xfs_trans_t *,
1010 struct xfs_efd_log_item *,
1011 xfs_fsblock_t,
1012 xfs_extlen_t);
f538d4da
CH
1013int _xfs_trans_commit(xfs_trans_t *,
1014 uint flags,
1015 xfs_lsn_t *,
1016 int *);
1017#define xfs_trans_commit(tp, flags, lsn) \
1018 _xfs_trans_commit(tp, flags, lsn, NULL)
1da177e4
LT
1019void xfs_trans_cancel(xfs_trans_t *, int);
1020void xfs_trans_ail_init(struct xfs_mount *);
1021xfs_lsn_t xfs_trans_push_ail(struct xfs_mount *, xfs_lsn_t);
1022xfs_lsn_t xfs_trans_tail_ail(struct xfs_mount *);
1023void xfs_trans_unlocked_item(struct xfs_mount *,
1024 xfs_log_item_t *);
1025xfs_log_busy_slot_t *xfs_trans_add_busy(xfs_trans_t *tp,
1026 xfs_agnumber_t ag,
1027 xfs_extlen_t idx);
1028
1029#endif /* __KERNEL__ */
1030
1031#endif /* __XFS_TRANS_H__ */