2 * Copyright (c) 2000-2003,2005 Silicon Graphics, Inc.
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
7 * published by the Free Software Foundation.
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.
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
20 #include "xfs_format.h"
21 #include "xfs_log_format.h"
22 #include "xfs_trans_resv.h"
23 #include "xfs_mount.h"
24 #include "xfs_da_format.h"
25 #include "xfs_da_btree.h"
26 #include "xfs_inode.h"
27 #include "xfs_trans.h"
28 #include "xfs_inode_item.h"
29 #include "xfs_error.h"
31 #include "xfs_dir2_priv.h"
32 #include "xfs_trace.h"
35 * Prototypes for internal functions.
37 static void xfs_dir2_sf_addname_easy(xfs_da_args_t
*args
,
38 xfs_dir2_sf_entry_t
*sfep
,
39 xfs_dir2_data_aoff_t offset
,
41 static void xfs_dir2_sf_addname_hard(xfs_da_args_t
*args
, int objchange
,
43 static int xfs_dir2_sf_addname_pick(xfs_da_args_t
*args
, int objchange
,
44 xfs_dir2_sf_entry_t
**sfepp
,
45 xfs_dir2_data_aoff_t
*offsetp
);
47 static void xfs_dir2_sf_check(xfs_da_args_t
*args
);
49 #define xfs_dir2_sf_check(args)
52 static void xfs_dir2_sf_toino4(xfs_da_args_t
*args
);
53 static void xfs_dir2_sf_toino8(xfs_da_args_t
*args
);
56 * Given a block directory (dp/block), calculate its size as a shortform (sf)
57 * directory and a header for the sf directory, if it will fit it the
58 * space currently present in the inode. If it won't fit, the output
59 * size is too big (but not accurate).
61 int /* size for sf form */
62 xfs_dir2_block_sfsize(
63 xfs_inode_t
*dp
, /* incore inode pointer */
64 xfs_dir2_data_hdr_t
*hdr
, /* block directory data */
65 xfs_dir2_sf_hdr_t
*sfhp
) /* output: header for sf form */
67 xfs_dir2_dataptr_t addr
; /* data entry address */
68 xfs_dir2_leaf_entry_t
*blp
; /* leaf area of the block */
69 xfs_dir2_block_tail_t
*btp
; /* tail area of the block */
70 int count
; /* shortform entry count */
71 xfs_dir2_data_entry_t
*dep
; /* data entry in the block */
72 int i
; /* block entry index */
73 int i8count
; /* count of big-inode entries */
74 int isdot
; /* entry is "." */
75 int isdotdot
; /* entry is ".." */
76 xfs_mount_t
*mp
; /* mount structure pointer */
77 int namelen
; /* total name bytes */
78 xfs_ino_t parent
= 0; /* parent inode number */
79 int size
=0; /* total computed size */
81 struct xfs_da_geometry
*geo
;
87 * if there is a filetype field, add the extra byte to the namelen
88 * for each entry that we see.
90 has_ftype
= xfs_sb_version_hasftype(&mp
->m_sb
) ? 1 : 0;
92 count
= i8count
= namelen
= 0;
93 btp
= xfs_dir2_block_tail_p(geo
, hdr
);
94 blp
= xfs_dir2_block_leaf_p(btp
);
97 * Iterate over the block's data entries by using the leaf pointers.
99 for (i
= 0; i
< be32_to_cpu(btp
->count
); i
++) {
100 if ((addr
= be32_to_cpu(blp
[i
].address
)) == XFS_DIR2_NULL_DATAPTR
)
103 * Calculate the pointer to the entry at hand.
105 dep
= (xfs_dir2_data_entry_t
*)((char *)hdr
+
106 xfs_dir2_dataptr_to_off(geo
, addr
));
108 * Detect . and .., so we can special-case them.
109 * . is not included in sf directories.
110 * .. is included by just the parent inode number.
112 isdot
= dep
->namelen
== 1 && dep
->name
[0] == '.';
115 dep
->name
[0] == '.' && dep
->name
[1] == '.';
118 i8count
+= be64_to_cpu(dep
->inumber
) > XFS_DIR2_MAX_SHORT_INUM
;
120 /* take into account the file type field */
121 if (!isdot
&& !isdotdot
) {
123 namelen
+= dep
->namelen
+ has_ftype
;
125 parent
= be64_to_cpu(dep
->inumber
);
127 * Calculate the new size, see if we should give up yet.
129 size
= xfs_dir2_sf_hdr_size(i8count
) + /* header */
130 count
+ /* namelen */
131 count
* (uint
)sizeof(xfs_dir2_sf_off_t
) + /* offset */
133 (i8count
? /* inumber */
134 (uint
)sizeof(xfs_dir2_ino8_t
) * count
:
135 (uint
)sizeof(xfs_dir2_ino4_t
) * count
);
136 if (size
> XFS_IFORK_DSIZE(dp
))
137 return size
; /* size value is a failure */
140 * Create the output header, if it worked.
143 sfhp
->i8count
= i8count
;
144 dp
->d_ops
->sf_put_parent_ino(sfhp
, parent
);
149 * Convert a block format directory to shortform.
150 * Caller has already checked that it will fit, and built us a header.
153 xfs_dir2_block_to_sf(
154 xfs_da_args_t
*args
, /* operation arguments */
156 int size
, /* shortform directory size */
157 xfs_dir2_sf_hdr_t
*sfhp
) /* shortform directory hdr */
159 xfs_dir2_data_hdr_t
*hdr
; /* block header */
160 xfs_dir2_block_tail_t
*btp
; /* block tail pointer */
161 xfs_dir2_data_entry_t
*dep
; /* data entry pointer */
162 xfs_inode_t
*dp
; /* incore directory inode */
163 xfs_dir2_data_unused_t
*dup
; /* unused data pointer */
164 char *endptr
; /* end of data entries */
165 int error
; /* error return value */
166 int logflags
; /* inode logging flags */
167 xfs_mount_t
*mp
; /* filesystem mount point */
168 char *ptr
; /* current data pointer */
169 xfs_dir2_sf_entry_t
*sfep
; /* shortform entry */
170 xfs_dir2_sf_hdr_t
*sfp
; /* shortform directory header */
171 xfs_dir2_sf_hdr_t
*dst
; /* temporary data buffer */
173 trace_xfs_dir2_block_to_sf(args
);
179 * allocate a temporary destination buffer the size of the inode
180 * to format the data into. Once we have formatted the data, we
181 * can free the block and copy the formatted data into the inode literal
184 dst
= kmem_alloc(mp
->m_sb
.sb_inodesize
, KM_SLEEP
);
188 * Copy the header into the newly allocate local space.
190 sfp
= (xfs_dir2_sf_hdr_t
*)dst
;
191 memcpy(sfp
, sfhp
, xfs_dir2_sf_hdr_size(sfhp
->i8count
));
194 * Set up to loop over the block's entries.
196 btp
= xfs_dir2_block_tail_p(args
->geo
, hdr
);
197 ptr
= (char *)dp
->d_ops
->data_entry_p(hdr
);
198 endptr
= (char *)xfs_dir2_block_leaf_p(btp
);
199 sfep
= xfs_dir2_sf_firstentry(sfp
);
201 * Loop over the active and unused entries.
202 * Stop when we reach the leaf/tail portion of the block.
204 while (ptr
< endptr
) {
206 * If it's unused, just skip over it.
208 dup
= (xfs_dir2_data_unused_t
*)ptr
;
209 if (be16_to_cpu(dup
->freetag
) == XFS_DIR2_DATA_FREE_TAG
) {
210 ptr
+= be16_to_cpu(dup
->length
);
213 dep
= (xfs_dir2_data_entry_t
*)ptr
;
217 if (dep
->namelen
== 1 && dep
->name
[0] == '.')
218 ASSERT(be64_to_cpu(dep
->inumber
) == dp
->i_ino
);
220 * Skip .., but make sure the inode number is right.
222 else if (dep
->namelen
== 2 &&
223 dep
->name
[0] == '.' && dep
->name
[1] == '.')
224 ASSERT(be64_to_cpu(dep
->inumber
) ==
225 dp
->d_ops
->sf_get_parent_ino(sfp
));
227 * Normal entry, copy it into shortform.
230 sfep
->namelen
= dep
->namelen
;
231 xfs_dir2_sf_put_offset(sfep
,
232 (xfs_dir2_data_aoff_t
)
233 ((char *)dep
- (char *)hdr
));
234 memcpy(sfep
->name
, dep
->name
, dep
->namelen
);
235 dp
->d_ops
->sf_put_ino(sfp
, sfep
,
236 be64_to_cpu(dep
->inumber
));
237 dp
->d_ops
->sf_put_ftype(sfep
,
238 dp
->d_ops
->data_get_ftype(dep
));
240 sfep
= dp
->d_ops
->sf_nextentry(sfp
, sfep
);
242 ptr
+= dp
->d_ops
->data_entsize(dep
->namelen
);
244 ASSERT((char *)sfep
- (char *)sfp
== size
);
246 /* now we are done with the block, we can shrink the inode */
247 logflags
= XFS_ILOG_CORE
;
248 error
= xfs_dir2_shrink_inode(args
, args
->geo
->datablk
, bp
);
250 ASSERT(error
!= -ENOSPC
);
255 * The buffer is now unconditionally gone, whether
256 * xfs_dir2_shrink_inode worked or not.
258 * Convert the inode to local format and copy the data in.
260 dp
->i_df
.if_flags
&= ~XFS_IFEXTENTS
;
261 dp
->i_df
.if_flags
|= XFS_IFINLINE
;
262 dp
->i_d
.di_format
= XFS_DINODE_FMT_LOCAL
;
263 ASSERT(dp
->i_df
.if_bytes
== 0);
264 xfs_idata_realloc(dp
, size
, XFS_DATA_FORK
);
266 logflags
|= XFS_ILOG_DDATA
;
267 memcpy(dp
->i_df
.if_u1
.if_data
, dst
, size
);
268 dp
->i_d
.di_size
= size
;
269 xfs_dir2_sf_check(args
);
271 xfs_trans_log_inode(args
->trans
, dp
, logflags
);
277 * Add a name to a shortform directory.
278 * There are two algorithms, "easy" and "hard" which we decide on
279 * before changing anything.
280 * Convert to block form if necessary, if the new entry won't fit.
284 xfs_da_args_t
*args
) /* operation arguments */
286 xfs_inode_t
*dp
; /* incore directory inode */
287 int error
; /* error return value */
288 int incr_isize
; /* total change in size */
289 int new_isize
; /* di_size after adding name */
290 int objchange
; /* changing to 8-byte inodes */
291 xfs_dir2_data_aoff_t offset
= 0; /* offset for new entry */
292 int pick
; /* which algorithm to use */
293 xfs_dir2_sf_hdr_t
*sfp
; /* shortform structure */
294 xfs_dir2_sf_entry_t
*sfep
= NULL
; /* shortform entry */
296 trace_xfs_dir2_sf_addname(args
);
298 ASSERT(xfs_dir2_sf_lookup(args
) == -ENOENT
);
300 ASSERT(dp
->i_df
.if_flags
& XFS_IFINLINE
);
302 * Make sure the shortform value has some of its header.
304 if (dp
->i_d
.di_size
< offsetof(xfs_dir2_sf_hdr_t
, parent
)) {
305 ASSERT(XFS_FORCED_SHUTDOWN(dp
->i_mount
));
308 ASSERT(dp
->i_df
.if_bytes
== dp
->i_d
.di_size
);
309 ASSERT(dp
->i_df
.if_u1
.if_data
!= NULL
);
310 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
311 ASSERT(dp
->i_d
.di_size
>= xfs_dir2_sf_hdr_size(sfp
->i8count
));
313 * Compute entry (and change in) size.
315 incr_isize
= dp
->d_ops
->sf_entsize(sfp
, args
->namelen
);
319 * Do we have to change to 8 byte inodes?
321 if (args
->inumber
> XFS_DIR2_MAX_SHORT_INUM
&& sfp
->i8count
== 0) {
323 * Yes, adjust the inode size. old count + (parent + new)
327 ((uint
)sizeof(xfs_dir2_ino8_t
) -
328 (uint
)sizeof(xfs_dir2_ino4_t
));
332 new_isize
= (int)dp
->i_d
.di_size
+ incr_isize
;
334 * Won't fit as shortform any more (due to size),
335 * or the pick routine says it won't (due to offset values).
337 if (new_isize
> XFS_IFORK_DSIZE(dp
) ||
339 xfs_dir2_sf_addname_pick(args
, objchange
, &sfep
, &offset
)) == 0) {
341 * Just checking or no space reservation, it doesn't fit.
343 if ((args
->op_flags
& XFS_DA_OP_JUSTCHECK
) || args
->total
== 0)
346 * Convert to block form then add the name.
348 error
= xfs_dir2_sf_to_block(args
);
351 return xfs_dir2_block_addname(args
);
354 * Just checking, it fits.
356 if (args
->op_flags
& XFS_DA_OP_JUSTCHECK
)
359 * Do it the easy way - just add it at the end.
362 xfs_dir2_sf_addname_easy(args
, sfep
, offset
, new_isize
);
364 * Do it the hard way - look for a place to insert the new entry.
365 * Convert to 8 byte inode numbers first if necessary.
370 xfs_dir2_sf_toino8(args
);
371 xfs_dir2_sf_addname_hard(args
, objchange
, new_isize
);
373 xfs_trans_log_inode(args
->trans
, dp
, XFS_ILOG_CORE
| XFS_ILOG_DDATA
);
378 * Add the new entry the "easy" way.
379 * This is copying the old directory and adding the new entry at the end.
380 * Since it's sorted by "offset" we need room after the last offset
381 * that's already there, and then room to convert to a block directory.
382 * This is already checked by the pick routine.
385 xfs_dir2_sf_addname_easy(
386 xfs_da_args_t
*args
, /* operation arguments */
387 xfs_dir2_sf_entry_t
*sfep
, /* pointer to new entry */
388 xfs_dir2_data_aoff_t offset
, /* offset to use for new ent */
389 int new_isize
) /* new directory size */
391 int byteoff
; /* byte offset in sf dir */
392 xfs_inode_t
*dp
; /* incore directory inode */
393 xfs_dir2_sf_hdr_t
*sfp
; /* shortform structure */
397 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
398 byteoff
= (int)((char *)sfep
- (char *)sfp
);
400 * Grow the in-inode space.
402 xfs_idata_realloc(dp
, dp
->d_ops
->sf_entsize(sfp
, args
->namelen
),
405 * Need to set up again due to realloc of the inode data.
407 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
408 sfep
= (xfs_dir2_sf_entry_t
*)((char *)sfp
+ byteoff
);
410 * Fill in the new entry.
412 sfep
->namelen
= args
->namelen
;
413 xfs_dir2_sf_put_offset(sfep
, offset
);
414 memcpy(sfep
->name
, args
->name
, sfep
->namelen
);
415 dp
->d_ops
->sf_put_ino(sfp
, sfep
, args
->inumber
);
416 dp
->d_ops
->sf_put_ftype(sfep
, args
->filetype
);
419 * Update the header and inode.
422 if (args
->inumber
> XFS_DIR2_MAX_SHORT_INUM
)
424 dp
->i_d
.di_size
= new_isize
;
425 xfs_dir2_sf_check(args
);
429 * Add the new entry the "hard" way.
430 * The caller has already converted to 8 byte inode numbers if necessary,
431 * in which case we need to leave the i8count at 1.
432 * Find a hole that the new entry will fit into, and copy
433 * the first part of the entries, the new entry, and the last part of
438 xfs_dir2_sf_addname_hard(
439 xfs_da_args_t
*args
, /* operation arguments */
440 int objchange
, /* changing inode number size */
441 int new_isize
) /* new directory size */
443 int add_datasize
; /* data size need for new ent */
444 char *buf
; /* buffer for old */
445 xfs_inode_t
*dp
; /* incore directory inode */
446 int eof
; /* reached end of old dir */
447 int nbytes
; /* temp for byte copies */
448 xfs_dir2_data_aoff_t new_offset
; /* next offset value */
449 xfs_dir2_data_aoff_t offset
; /* current offset value */
450 int old_isize
; /* previous di_size */
451 xfs_dir2_sf_entry_t
*oldsfep
; /* entry in original dir */
452 xfs_dir2_sf_hdr_t
*oldsfp
; /* original shortform dir */
453 xfs_dir2_sf_entry_t
*sfep
; /* entry in new dir */
454 xfs_dir2_sf_hdr_t
*sfp
; /* new shortform dir */
457 * Copy the old directory to the stack buffer.
461 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
462 old_isize
= (int)dp
->i_d
.di_size
;
463 buf
= kmem_alloc(old_isize
, KM_SLEEP
);
464 oldsfp
= (xfs_dir2_sf_hdr_t
*)buf
;
465 memcpy(oldsfp
, sfp
, old_isize
);
467 * Loop over the old directory finding the place we're going
468 * to insert the new entry.
469 * If it's going to end up at the end then oldsfep will point there.
471 for (offset
= dp
->d_ops
->data_first_offset
,
472 oldsfep
= xfs_dir2_sf_firstentry(oldsfp
),
473 add_datasize
= dp
->d_ops
->data_entsize(args
->namelen
),
474 eof
= (char *)oldsfep
== &buf
[old_isize
];
476 offset
= new_offset
+ dp
->d_ops
->data_entsize(oldsfep
->namelen
),
477 oldsfep
= dp
->d_ops
->sf_nextentry(oldsfp
, oldsfep
),
478 eof
= (char *)oldsfep
== &buf
[old_isize
]) {
479 new_offset
= xfs_dir2_sf_get_offset(oldsfep
);
480 if (offset
+ add_datasize
<= new_offset
)
484 * Get rid of the old directory, then allocate space for
485 * the new one. We do this so xfs_idata_realloc won't copy
488 xfs_idata_realloc(dp
, -old_isize
, XFS_DATA_FORK
);
489 xfs_idata_realloc(dp
, new_isize
, XFS_DATA_FORK
);
491 * Reset the pointer since the buffer was reallocated.
493 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
495 * Copy the first part of the directory, including the header.
497 nbytes
= (int)((char *)oldsfep
- (char *)oldsfp
);
498 memcpy(sfp
, oldsfp
, nbytes
);
499 sfep
= (xfs_dir2_sf_entry_t
*)((char *)sfp
+ nbytes
);
501 * Fill in the new entry, and update the header counts.
503 sfep
->namelen
= args
->namelen
;
504 xfs_dir2_sf_put_offset(sfep
, offset
);
505 memcpy(sfep
->name
, args
->name
, sfep
->namelen
);
506 dp
->d_ops
->sf_put_ino(sfp
, sfep
, args
->inumber
);
507 dp
->d_ops
->sf_put_ftype(sfep
, args
->filetype
);
509 if (args
->inumber
> XFS_DIR2_MAX_SHORT_INUM
&& !objchange
)
512 * If there's more left to copy, do that.
515 sfep
= dp
->d_ops
->sf_nextentry(sfp
, sfep
);
516 memcpy(sfep
, oldsfep
, old_isize
- nbytes
);
519 dp
->i_d
.di_size
= new_isize
;
520 xfs_dir2_sf_check(args
);
524 * Decide if the new entry will fit at all.
525 * If it will fit, pick between adding the new entry to the end (easy)
526 * or somewhere else (hard).
527 * Return 0 (won't fit), 1 (easy), 2 (hard).
530 static int /* pick result */
531 xfs_dir2_sf_addname_pick(
532 xfs_da_args_t
*args
, /* operation arguments */
533 int objchange
, /* inode # size changes */
534 xfs_dir2_sf_entry_t
**sfepp
, /* out(1): new entry ptr */
535 xfs_dir2_data_aoff_t
*offsetp
) /* out(1): new offset */
537 xfs_inode_t
*dp
; /* incore directory inode */
538 int holefit
; /* found hole it will fit in */
539 int i
; /* entry number */
540 xfs_dir2_data_aoff_t offset
; /* data block offset */
541 xfs_dir2_sf_entry_t
*sfep
; /* shortform entry */
542 xfs_dir2_sf_hdr_t
*sfp
; /* shortform structure */
543 int size
; /* entry's data size */
544 int used
; /* data bytes used */
548 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
549 size
= dp
->d_ops
->data_entsize(args
->namelen
);
550 offset
= dp
->d_ops
->data_first_offset
;
551 sfep
= xfs_dir2_sf_firstentry(sfp
);
554 * Loop over sf entries.
555 * Keep track of data offset and whether we've seen a place
556 * to insert the new entry.
558 for (i
= 0; i
< sfp
->count
; i
++) {
560 holefit
= offset
+ size
<= xfs_dir2_sf_get_offset(sfep
);
561 offset
= xfs_dir2_sf_get_offset(sfep
) +
562 dp
->d_ops
->data_entsize(sfep
->namelen
);
563 sfep
= dp
->d_ops
->sf_nextentry(sfp
, sfep
);
566 * Calculate data bytes used excluding the new entry, if this
567 * was a data block (block form directory).
570 (sfp
->count
+ 3) * (uint
)sizeof(xfs_dir2_leaf_entry_t
) +
571 (uint
)sizeof(xfs_dir2_block_tail_t
);
573 * If it won't fit in a block form then we can't insert it,
574 * we'll go back, convert to block, then try the insert and convert
577 if (used
+ (holefit
? 0 : size
) > args
->geo
->blksize
)
580 * If changing the inode number size, do it the hard way.
585 * If it won't fit at the end then do it the hard way (use the hole).
587 if (used
+ size
> args
->geo
->blksize
)
590 * Do it the easy way.
599 * Check consistency of shortform directory, assert if bad.
603 xfs_da_args_t
*args
) /* operation arguments */
605 xfs_inode_t
*dp
; /* incore directory inode */
606 int i
; /* entry number */
607 int i8count
; /* number of big inode#s */
608 xfs_ino_t ino
; /* entry inode number */
609 int offset
; /* data offset */
610 xfs_dir2_sf_entry_t
*sfep
; /* shortform dir entry */
611 xfs_dir2_sf_hdr_t
*sfp
; /* shortform structure */
615 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
616 offset
= dp
->d_ops
->data_first_offset
;
617 ino
= dp
->d_ops
->sf_get_parent_ino(sfp
);
618 i8count
= ino
> XFS_DIR2_MAX_SHORT_INUM
;
620 for (i
= 0, sfep
= xfs_dir2_sf_firstentry(sfp
);
622 i
++, sfep
= dp
->d_ops
->sf_nextentry(sfp
, sfep
)) {
623 ASSERT(xfs_dir2_sf_get_offset(sfep
) >= offset
);
624 ino
= dp
->d_ops
->sf_get_ino(sfp
, sfep
);
625 i8count
+= ino
> XFS_DIR2_MAX_SHORT_INUM
;
627 xfs_dir2_sf_get_offset(sfep
) +
628 dp
->d_ops
->data_entsize(sfep
->namelen
);
629 ASSERT(dp
->d_ops
->sf_get_ftype(sfep
) < XFS_DIR3_FT_MAX
);
631 ASSERT(i8count
== sfp
->i8count
);
632 ASSERT((char *)sfep
- (char *)sfp
== dp
->i_d
.di_size
);
634 (sfp
->count
+ 2) * (uint
)sizeof(xfs_dir2_leaf_entry_t
) +
635 (uint
)sizeof(xfs_dir2_block_tail_t
) <= args
->geo
->blksize
);
640 * Create a new (shortform) directory.
642 int /* error, always 0 */
644 xfs_da_args_t
*args
, /* operation arguments */
645 xfs_ino_t pino
) /* parent inode number */
647 xfs_inode_t
*dp
; /* incore directory inode */
648 int i8count
; /* parent inode is an 8-byte number */
649 xfs_dir2_sf_hdr_t
*sfp
; /* shortform structure */
650 int size
; /* directory size */
652 trace_xfs_dir2_sf_create(args
);
657 ASSERT(dp
->i_d
.di_size
== 0);
659 * If it's currently a zero-length extent file,
660 * convert it to local format.
662 if (dp
->i_d
.di_format
== XFS_DINODE_FMT_EXTENTS
) {
663 dp
->i_df
.if_flags
&= ~XFS_IFEXTENTS
; /* just in case */
664 dp
->i_d
.di_format
= XFS_DINODE_FMT_LOCAL
;
665 xfs_trans_log_inode(args
->trans
, dp
, XFS_ILOG_CORE
);
666 dp
->i_df
.if_flags
|= XFS_IFINLINE
;
668 ASSERT(dp
->i_df
.if_flags
& XFS_IFINLINE
);
669 ASSERT(dp
->i_df
.if_bytes
== 0);
670 i8count
= pino
> XFS_DIR2_MAX_SHORT_INUM
;
671 size
= xfs_dir2_sf_hdr_size(i8count
);
673 * Make a buffer for the data.
675 xfs_idata_realloc(dp
, size
, XFS_DATA_FORK
);
677 * Fill in the header,
679 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
680 sfp
->i8count
= i8count
;
682 * Now can put in the inode number, since i8count is set.
684 dp
->d_ops
->sf_put_parent_ino(sfp
, pino
);
686 dp
->i_d
.di_size
= size
;
687 xfs_dir2_sf_check(args
);
688 xfs_trans_log_inode(args
->trans
, dp
, XFS_ILOG_CORE
| XFS_ILOG_DDATA
);
693 * Lookup an entry in a shortform directory.
694 * Returns EEXIST if found, ENOENT if not found.
698 xfs_da_args_t
*args
) /* operation arguments */
700 xfs_inode_t
*dp
; /* incore directory inode */
701 int i
; /* entry index */
703 xfs_dir2_sf_entry_t
*sfep
; /* shortform directory entry */
704 xfs_dir2_sf_hdr_t
*sfp
; /* shortform structure */
705 enum xfs_dacmp cmp
; /* comparison result */
706 xfs_dir2_sf_entry_t
*ci_sfep
; /* case-insens. entry */
708 trace_xfs_dir2_sf_lookup(args
);
710 xfs_dir2_sf_check(args
);
713 ASSERT(dp
->i_df
.if_flags
& XFS_IFINLINE
);
715 * Bail out if the directory is way too short.
717 if (dp
->i_d
.di_size
< offsetof(xfs_dir2_sf_hdr_t
, parent
)) {
718 ASSERT(XFS_FORCED_SHUTDOWN(dp
->i_mount
));
721 ASSERT(dp
->i_df
.if_bytes
== dp
->i_d
.di_size
);
722 ASSERT(dp
->i_df
.if_u1
.if_data
!= NULL
);
723 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
724 ASSERT(dp
->i_d
.di_size
>= xfs_dir2_sf_hdr_size(sfp
->i8count
));
728 if (args
->namelen
== 1 && args
->name
[0] == '.') {
729 args
->inumber
= dp
->i_ino
;
730 args
->cmpresult
= XFS_CMP_EXACT
;
731 args
->filetype
= XFS_DIR3_FT_DIR
;
735 * Special case for ..
737 if (args
->namelen
== 2 &&
738 args
->name
[0] == '.' && args
->name
[1] == '.') {
739 args
->inumber
= dp
->d_ops
->sf_get_parent_ino(sfp
);
740 args
->cmpresult
= XFS_CMP_EXACT
;
741 args
->filetype
= XFS_DIR3_FT_DIR
;
745 * Loop over all the entries trying to match ours.
748 for (i
= 0, sfep
= xfs_dir2_sf_firstentry(sfp
); i
< sfp
->count
;
749 i
++, sfep
= dp
->d_ops
->sf_nextentry(sfp
, sfep
)) {
751 * Compare name and if it's an exact match, return the inode
752 * number. If it's the first case-insensitive match, store the
753 * inode number and continue looking for an exact match.
755 cmp
= dp
->i_mount
->m_dirnameops
->compname(args
, sfep
->name
,
757 if (cmp
!= XFS_CMP_DIFFERENT
&& cmp
!= args
->cmpresult
) {
758 args
->cmpresult
= cmp
;
759 args
->inumber
= dp
->d_ops
->sf_get_ino(sfp
, sfep
);
760 args
->filetype
= dp
->d_ops
->sf_get_ftype(sfep
);
761 if (cmp
== XFS_CMP_EXACT
)
766 ASSERT(args
->op_flags
& XFS_DA_OP_OKNOENT
);
768 * Here, we can only be doing a lookup (not a rename or replace).
769 * If a case-insensitive match was not found, return -ENOENT.
773 /* otherwise process the CI match as required by the caller */
774 error
= xfs_dir_cilookup_result(args
, ci_sfep
->name
, ci_sfep
->namelen
);
779 * Remove an entry from a shortform directory.
782 xfs_dir2_sf_removename(
785 int byteoff
; /* offset of removed entry */
786 xfs_inode_t
*dp
; /* incore directory inode */
787 int entsize
; /* this entry's size */
788 int i
; /* shortform entry index */
789 int newsize
; /* new inode size */
790 int oldsize
; /* old inode size */
791 xfs_dir2_sf_entry_t
*sfep
; /* shortform directory entry */
792 xfs_dir2_sf_hdr_t
*sfp
; /* shortform structure */
794 trace_xfs_dir2_sf_removename(args
);
798 ASSERT(dp
->i_df
.if_flags
& XFS_IFINLINE
);
799 oldsize
= (int)dp
->i_d
.di_size
;
801 * Bail out if the directory is way too short.
803 if (oldsize
< offsetof(xfs_dir2_sf_hdr_t
, parent
)) {
804 ASSERT(XFS_FORCED_SHUTDOWN(dp
->i_mount
));
807 ASSERT(dp
->i_df
.if_bytes
== oldsize
);
808 ASSERT(dp
->i_df
.if_u1
.if_data
!= NULL
);
809 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
810 ASSERT(oldsize
>= xfs_dir2_sf_hdr_size(sfp
->i8count
));
812 * Loop over the old directory entries.
813 * Find the one we're deleting.
815 for (i
= 0, sfep
= xfs_dir2_sf_firstentry(sfp
); i
< sfp
->count
;
816 i
++, sfep
= dp
->d_ops
->sf_nextentry(sfp
, sfep
)) {
817 if (xfs_da_compname(args
, sfep
->name
, sfep
->namelen
) ==
819 ASSERT(dp
->d_ops
->sf_get_ino(sfp
, sfep
) ==
832 byteoff
= (int)((char *)sfep
- (char *)sfp
);
833 entsize
= dp
->d_ops
->sf_entsize(sfp
, args
->namelen
);
834 newsize
= oldsize
- entsize
;
836 * Copy the part if any after the removed entry, sliding it down.
838 if (byteoff
+ entsize
< oldsize
)
839 memmove((char *)sfp
+ byteoff
, (char *)sfp
+ byteoff
+ entsize
,
840 oldsize
- (byteoff
+ entsize
));
842 * Fix up the header and file size.
845 dp
->i_d
.di_size
= newsize
;
847 * Reallocate, making it smaller.
849 xfs_idata_realloc(dp
, newsize
- oldsize
, XFS_DATA_FORK
);
850 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
852 * Are we changing inode number size?
854 if (args
->inumber
> XFS_DIR2_MAX_SHORT_INUM
) {
855 if (sfp
->i8count
== 1)
856 xfs_dir2_sf_toino4(args
);
860 xfs_dir2_sf_check(args
);
861 xfs_trans_log_inode(args
->trans
, dp
, XFS_ILOG_CORE
| XFS_ILOG_DDATA
);
866 * Replace the inode number of an entry in a shortform directory.
870 xfs_da_args_t
*args
) /* operation arguments */
872 xfs_inode_t
*dp
; /* incore directory inode */
873 int i
; /* entry index */
874 xfs_ino_t ino
=0; /* entry old inode number */
875 int i8elevated
; /* sf_toino8 set i8count=1 */
876 xfs_dir2_sf_entry_t
*sfep
; /* shortform directory entry */
877 xfs_dir2_sf_hdr_t
*sfp
; /* shortform structure */
879 trace_xfs_dir2_sf_replace(args
);
883 ASSERT(dp
->i_df
.if_flags
& XFS_IFINLINE
);
885 * Bail out if the shortform directory is way too small.
887 if (dp
->i_d
.di_size
< offsetof(xfs_dir2_sf_hdr_t
, parent
)) {
888 ASSERT(XFS_FORCED_SHUTDOWN(dp
->i_mount
));
891 ASSERT(dp
->i_df
.if_bytes
== dp
->i_d
.di_size
);
892 ASSERT(dp
->i_df
.if_u1
.if_data
!= NULL
);
893 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
894 ASSERT(dp
->i_d
.di_size
>= xfs_dir2_sf_hdr_size(sfp
->i8count
));
897 * New inode number is large, and need to convert to 8-byte inodes.
899 if (args
->inumber
> XFS_DIR2_MAX_SHORT_INUM
&& sfp
->i8count
== 0) {
900 int error
; /* error return value */
901 int newsize
; /* new inode size */
906 ((uint
)sizeof(xfs_dir2_ino8_t
) -
907 (uint
)sizeof(xfs_dir2_ino4_t
));
909 * Won't fit as shortform, convert to block then do replace.
911 if (newsize
> XFS_IFORK_DSIZE(dp
)) {
912 error
= xfs_dir2_sf_to_block(args
);
916 return xfs_dir2_block_replace(args
);
919 * Still fits, convert to 8-byte now.
921 xfs_dir2_sf_toino8(args
);
923 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
927 ASSERT(args
->namelen
!= 1 || args
->name
[0] != '.');
929 * Replace ..'s entry.
931 if (args
->namelen
== 2 &&
932 args
->name
[0] == '.' && args
->name
[1] == '.') {
933 ino
= dp
->d_ops
->sf_get_parent_ino(sfp
);
934 ASSERT(args
->inumber
!= ino
);
935 dp
->d_ops
->sf_put_parent_ino(sfp
, args
->inumber
);
938 * Normal entry, look for the name.
941 for (i
= 0, sfep
= xfs_dir2_sf_firstentry(sfp
); i
< sfp
->count
;
942 i
++, sfep
= dp
->d_ops
->sf_nextentry(sfp
, sfep
)) {
943 if (xfs_da_compname(args
, sfep
->name
, sfep
->namelen
) ==
945 ino
= dp
->d_ops
->sf_get_ino(sfp
, sfep
);
946 ASSERT(args
->inumber
!= ino
);
947 dp
->d_ops
->sf_put_ino(sfp
, sfep
, args
->inumber
);
948 dp
->d_ops
->sf_put_ftype(sfep
, args
->filetype
);
955 if (i
== sfp
->count
) {
956 ASSERT(args
->op_flags
& XFS_DA_OP_OKNOENT
);
958 xfs_dir2_sf_toino4(args
);
963 * See if the old number was large, the new number is small.
965 if (ino
> XFS_DIR2_MAX_SHORT_INUM
&&
966 args
->inumber
<= XFS_DIR2_MAX_SHORT_INUM
) {
968 * And the old count was one, so need to convert to small.
970 if (sfp
->i8count
== 1)
971 xfs_dir2_sf_toino4(args
);
976 * See if the old number was small, the new number is large.
978 if (ino
<= XFS_DIR2_MAX_SHORT_INUM
&&
979 args
->inumber
> XFS_DIR2_MAX_SHORT_INUM
) {
981 * add to the i8count unless we just converted to 8-byte
982 * inodes (which does an implied i8count = 1)
984 ASSERT(sfp
->i8count
!= 0);
988 xfs_dir2_sf_check(args
);
989 xfs_trans_log_inode(args
->trans
, dp
, XFS_ILOG_DDATA
);
994 * Convert from 8-byte inode numbers to 4-byte inode numbers.
995 * The last 8-byte inode number is gone, but the count is still 1.
999 xfs_da_args_t
*args
) /* operation arguments */
1001 char *buf
; /* old dir's buffer */
1002 xfs_inode_t
*dp
; /* incore directory inode */
1003 int i
; /* entry index */
1004 int newsize
; /* new inode size */
1005 xfs_dir2_sf_entry_t
*oldsfep
; /* old sf entry */
1006 xfs_dir2_sf_hdr_t
*oldsfp
; /* old sf directory */
1007 int oldsize
; /* old inode size */
1008 xfs_dir2_sf_entry_t
*sfep
; /* new sf entry */
1009 xfs_dir2_sf_hdr_t
*sfp
; /* new sf directory */
1011 trace_xfs_dir2_sf_toino4(args
);
1016 * Copy the old directory to the buffer.
1017 * Then nuke it from the inode, and add the new buffer to the inode.
1018 * Don't want xfs_idata_realloc copying the data here.
1020 oldsize
= dp
->i_df
.if_bytes
;
1021 buf
= kmem_alloc(oldsize
, KM_SLEEP
);
1022 oldsfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
1023 ASSERT(oldsfp
->i8count
== 1);
1024 memcpy(buf
, oldsfp
, oldsize
);
1026 * Compute the new inode size.
1030 (oldsfp
->count
+ 1) *
1031 ((uint
)sizeof(xfs_dir2_ino8_t
) - (uint
)sizeof(xfs_dir2_ino4_t
));
1032 xfs_idata_realloc(dp
, -oldsize
, XFS_DATA_FORK
);
1033 xfs_idata_realloc(dp
, newsize
, XFS_DATA_FORK
);
1035 * Reset our pointers, the data has moved.
1037 oldsfp
= (xfs_dir2_sf_hdr_t
*)buf
;
1038 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
1040 * Fill in the new header.
1042 sfp
->count
= oldsfp
->count
;
1044 dp
->d_ops
->sf_put_parent_ino(sfp
, dp
->d_ops
->sf_get_parent_ino(oldsfp
));
1046 * Copy the entries field by field.
1048 for (i
= 0, sfep
= xfs_dir2_sf_firstentry(sfp
),
1049 oldsfep
= xfs_dir2_sf_firstentry(oldsfp
);
1051 i
++, sfep
= dp
->d_ops
->sf_nextentry(sfp
, sfep
),
1052 oldsfep
= dp
->d_ops
->sf_nextentry(oldsfp
, oldsfep
)) {
1053 sfep
->namelen
= oldsfep
->namelen
;
1054 sfep
->offset
= oldsfep
->offset
;
1055 memcpy(sfep
->name
, oldsfep
->name
, sfep
->namelen
);
1056 dp
->d_ops
->sf_put_ino(sfp
, sfep
,
1057 dp
->d_ops
->sf_get_ino(oldsfp
, oldsfep
));
1058 dp
->d_ops
->sf_put_ftype(sfep
, dp
->d_ops
->sf_get_ftype(oldsfep
));
1061 * Clean up the inode.
1064 dp
->i_d
.di_size
= newsize
;
1065 xfs_trans_log_inode(args
->trans
, dp
, XFS_ILOG_CORE
| XFS_ILOG_DDATA
);
1069 * Convert existing entries from 4-byte inode numbers to 8-byte inode numbers.
1070 * The new entry w/ an 8-byte inode number is not there yet; we leave with
1071 * i8count set to 1, but no corresponding 8-byte entry.
1075 xfs_da_args_t
*args
) /* operation arguments */
1077 char *buf
; /* old dir's buffer */
1078 xfs_inode_t
*dp
; /* incore directory inode */
1079 int i
; /* entry index */
1080 int newsize
; /* new inode size */
1081 xfs_dir2_sf_entry_t
*oldsfep
; /* old sf entry */
1082 xfs_dir2_sf_hdr_t
*oldsfp
; /* old sf directory */
1083 int oldsize
; /* old inode size */
1084 xfs_dir2_sf_entry_t
*sfep
; /* new sf entry */
1085 xfs_dir2_sf_hdr_t
*sfp
; /* new sf directory */
1087 trace_xfs_dir2_sf_toino8(args
);
1092 * Copy the old directory to the buffer.
1093 * Then nuke it from the inode, and add the new buffer to the inode.
1094 * Don't want xfs_idata_realloc copying the data here.
1096 oldsize
= dp
->i_df
.if_bytes
;
1097 buf
= kmem_alloc(oldsize
, KM_SLEEP
);
1098 oldsfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
1099 ASSERT(oldsfp
->i8count
== 0);
1100 memcpy(buf
, oldsfp
, oldsize
);
1102 * Compute the new inode size (nb: entry count + 1 for parent)
1106 (oldsfp
->count
+ 1) *
1107 ((uint
)sizeof(xfs_dir2_ino8_t
) - (uint
)sizeof(xfs_dir2_ino4_t
));
1108 xfs_idata_realloc(dp
, -oldsize
, XFS_DATA_FORK
);
1109 xfs_idata_realloc(dp
, newsize
, XFS_DATA_FORK
);
1111 * Reset our pointers, the data has moved.
1113 oldsfp
= (xfs_dir2_sf_hdr_t
*)buf
;
1114 sfp
= (xfs_dir2_sf_hdr_t
*)dp
->i_df
.if_u1
.if_data
;
1116 * Fill in the new header.
1118 sfp
->count
= oldsfp
->count
;
1120 dp
->d_ops
->sf_put_parent_ino(sfp
, dp
->d_ops
->sf_get_parent_ino(oldsfp
));
1122 * Copy the entries field by field.
1124 for (i
= 0, sfep
= xfs_dir2_sf_firstentry(sfp
),
1125 oldsfep
= xfs_dir2_sf_firstentry(oldsfp
);
1127 i
++, sfep
= dp
->d_ops
->sf_nextentry(sfp
, sfep
),
1128 oldsfep
= dp
->d_ops
->sf_nextentry(oldsfp
, oldsfep
)) {
1129 sfep
->namelen
= oldsfep
->namelen
;
1130 sfep
->offset
= oldsfep
->offset
;
1131 memcpy(sfep
->name
, oldsfep
->name
, sfep
->namelen
);
1132 dp
->d_ops
->sf_put_ino(sfp
, sfep
,
1133 dp
->d_ops
->sf_get_ino(oldsfp
, oldsfep
));
1134 dp
->d_ops
->sf_put_ftype(sfep
, dp
->d_ops
->sf_get_ftype(oldsfep
));
1137 * Clean up the inode.
1140 dp
->i_d
.di_size
= newsize
;
1141 xfs_trans_log_inode(args
->trans
, dp
, XFS_ILOG_CORE
| XFS_ILOG_DDATA
);