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[XFS] Make d_maxiosz report the real maximum (INT_MAX) so we dont
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1da177e4 1/*
7b718769
NS
2 * Copyright (c) 2000-2005 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 17 */
1da177e4 18#include "xfs.h"
a844f451 19#include "xfs_fs.h"
1da177e4 20#include "xfs_types.h"
a844f451 21#include "xfs_bit.h"
1da177e4 22#include "xfs_log.h"
a844f451 23#include "xfs_inum.h"
1da177e4
LT
24#include "xfs_trans.h"
25#include "xfs_sb.h"
26#include "xfs_ag.h"
27#include "xfs_dir.h"
28#include "xfs_dir2.h"
29#include "xfs_dmapi.h"
30#include "xfs_mount.h"
a844f451 31#include "xfs_da_btree.h"
1da177e4 32#include "xfs_bmap_btree.h"
a844f451 33#include "xfs_alloc_btree.h"
1da177e4 34#include "xfs_ialloc_btree.h"
1da177e4
LT
35#include "xfs_dir_sf.h"
36#include "xfs_dir2_sf.h"
a844f451 37#include "xfs_attr_sf.h"
1da177e4 38#include "xfs_dinode.h"
1da177e4 39#include "xfs_inode.h"
a844f451
NS
40#include "xfs_inode_item.h"
41#include "xfs_dir_leaf.h"
42#include "xfs_itable.h"
43#include "xfs_btree.h"
44#include "xfs_ialloc.h"
45#include "xfs_alloc.h"
1da177e4 46#include "xfs_bmap.h"
1da177e4
LT
47#include "xfs_attr.h"
48#include "xfs_rw.h"
1da177e4 49#include "xfs_error.h"
1da177e4
LT
50#include "xfs_quota.h"
51#include "xfs_utils.h"
a844f451
NS
52#include "xfs_rtalloc.h"
53#include "xfs_refcache.h"
1da177e4 54#include "xfs_trans_space.h"
1da177e4 55#include "xfs_log_priv.h"
a844f451 56#include "xfs_mac.h"
1da177e4
LT
57
58
59/*
60 * The maximum pathlen is 1024 bytes. Since the minimum file system
61 * blocksize is 512 bytes, we can get a max of 2 extents back from
62 * bmapi.
63 */
64#define SYMLINK_MAPS 2
65
66/*
67 * For xfs, we check that the file isn't too big to be opened by this kernel.
68 * No other open action is required for regular files. Devices are handled
69 * through the specfs file system, pipes through fifofs. Device and
70 * fifo vnodes are "wrapped" by specfs and fifofs vnodes, respectively,
71 * when a new vnode is first looked up or created.
72 */
73STATIC int
74xfs_open(
75 bhv_desc_t *bdp,
76 cred_t *credp)
77{
78 int mode;
79 vnode_t *vp;
80 xfs_inode_t *ip;
81
82 vp = BHV_TO_VNODE(bdp);
83 ip = XFS_BHVTOI(bdp);
84
85 if (XFS_FORCED_SHUTDOWN(ip->i_mount))
86 return XFS_ERROR(EIO);
87
88 /*
89 * If it's a directory with any blocks, read-ahead block 0
90 * as we're almost certain to have the next operation be a read there.
91 */
0432dab2 92 if (VN_ISDIR(vp) && ip->i_d.di_nextents > 0) {
1da177e4
LT
93 mode = xfs_ilock_map_shared(ip);
94 if (ip->i_d.di_nextents > 0)
95 (void)xfs_da_reada_buf(NULL, ip, 0, XFS_DATA_FORK);
96 xfs_iunlock(ip, mode);
97 }
98 return 0;
99}
100
101
102/*
103 * xfs_getattr
104 */
105STATIC int
106xfs_getattr(
107 bhv_desc_t *bdp,
108 vattr_t *vap,
109 int flags,
110 cred_t *credp)
111{
112 xfs_inode_t *ip;
113 xfs_mount_t *mp;
114 vnode_t *vp;
115
116 vp = BHV_TO_VNODE(bdp);
117 vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
118
119 ip = XFS_BHVTOI(bdp);
120 mp = ip->i_mount;
121
122 if (XFS_FORCED_SHUTDOWN(mp))
123 return XFS_ERROR(EIO);
124
125 if (!(flags & ATTR_LAZY))
126 xfs_ilock(ip, XFS_ILOCK_SHARED);
127
128 vap->va_size = ip->i_d.di_size;
129 if (vap->va_mask == XFS_AT_SIZE)
130 goto all_done;
131
132 vap->va_nblocks =
133 XFS_FSB_TO_BB(mp, ip->i_d.di_nblocks + ip->i_delayed_blks);
134 vap->va_nodeid = ip->i_ino;
135#if XFS_BIG_INUMS
136 vap->va_nodeid += mp->m_inoadd;
137#endif
138 vap->va_nlink = ip->i_d.di_nlink;
139
140 /*
141 * Quick exit for non-stat callers
142 */
143 if ((vap->va_mask &
144 ~(XFS_AT_SIZE|XFS_AT_FSID|XFS_AT_NODEID|
145 XFS_AT_NLINK|XFS_AT_BLKSIZE)) == 0)
146 goto all_done;
147
148 /*
149 * Copy from in-core inode.
150 */
0432dab2 151 vap->va_mode = ip->i_d.di_mode;
1da177e4
LT
152 vap->va_uid = ip->i_d.di_uid;
153 vap->va_gid = ip->i_d.di_gid;
154 vap->va_projid = ip->i_d.di_projid;
155
156 /*
157 * Check vnode type block/char vs. everything else.
1da177e4 158 */
0432dab2
CH
159 switch (ip->i_d.di_mode & S_IFMT) {
160 case S_IFBLK:
161 case S_IFCHR:
162 vap->va_rdev = ip->i_df.if_u2.if_rdev;
163 vap->va_blocksize = BLKDEV_IOSIZE;
164 break;
165 default:
1da177e4
LT
166 vap->va_rdev = 0;
167
168 if (!(ip->i_d.di_flags & XFS_DIFLAG_REALTIME)) {
e8c8b3a7 169 vap->va_blocksize = xfs_preferred_iosize(mp);
1da177e4
LT
170 } else {
171
172 /*
173 * If the file blocks are being allocated from a
174 * realtime partition, then return the inode's
175 * realtime extent size or the realtime volume's
176 * extent size.
177 */
178 vap->va_blocksize = ip->i_d.di_extsize ?
179 (ip->i_d.di_extsize << mp->m_sb.sb_blocklog) :
180 (mp->m_sb.sb_rextsize << mp->m_sb.sb_blocklog);
181 }
0432dab2 182 break;
1da177e4
LT
183 }
184
185 vap->va_atime.tv_sec = ip->i_d.di_atime.t_sec;
186 vap->va_atime.tv_nsec = ip->i_d.di_atime.t_nsec;
187 vap->va_mtime.tv_sec = ip->i_d.di_mtime.t_sec;
188 vap->va_mtime.tv_nsec = ip->i_d.di_mtime.t_nsec;
189 vap->va_ctime.tv_sec = ip->i_d.di_ctime.t_sec;
190 vap->va_ctime.tv_nsec = ip->i_d.di_ctime.t_nsec;
191
192 /*
193 * Exit for stat callers. See if any of the rest of the fields
194 * to be filled in are needed.
195 */
196 if ((vap->va_mask &
197 (XFS_AT_XFLAGS|XFS_AT_EXTSIZE|XFS_AT_NEXTENTS|XFS_AT_ANEXTENTS|
198 XFS_AT_GENCOUNT|XFS_AT_VCODE)) == 0)
199 goto all_done;
200
201 /*
202 * Convert di_flags to xflags.
203 */
204 vap->va_xflags = xfs_ip2xflags(ip);
205
206 /*
207 * Exit for inode revalidate. See if any of the rest of
208 * the fields to be filled in are needed.
209 */
210 if ((vap->va_mask &
211 (XFS_AT_EXTSIZE|XFS_AT_NEXTENTS|XFS_AT_ANEXTENTS|
212 XFS_AT_GENCOUNT|XFS_AT_VCODE)) == 0)
213 goto all_done;
214
215 vap->va_extsize = ip->i_d.di_extsize << mp->m_sb.sb_blocklog;
216 vap->va_nextents =
217 (ip->i_df.if_flags & XFS_IFEXTENTS) ?
218 ip->i_df.if_bytes / sizeof(xfs_bmbt_rec_t) :
219 ip->i_d.di_nextents;
220 if (ip->i_afp)
221 vap->va_anextents =
222 (ip->i_afp->if_flags & XFS_IFEXTENTS) ?
223 ip->i_afp->if_bytes / sizeof(xfs_bmbt_rec_t) :
224 ip->i_d.di_anextents;
225 else
226 vap->va_anextents = 0;
227 vap->va_gen = ip->i_d.di_gen;
228
229 all_done:
230 if (!(flags & ATTR_LAZY))
231 xfs_iunlock(ip, XFS_ILOCK_SHARED);
232 return 0;
233}
234
235
236/*
237 * xfs_setattr
238 */
239int
240xfs_setattr(
241 bhv_desc_t *bdp,
242 vattr_t *vap,
243 int flags,
244 cred_t *credp)
245{
246 xfs_inode_t *ip;
247 xfs_trans_t *tp;
248 xfs_mount_t *mp;
249 int mask;
250 int code;
251 uint lock_flags;
252 uint commit_flags=0;
253 uid_t uid=0, iuid=0;
254 gid_t gid=0, igid=0;
255 int timeflags = 0;
256 vnode_t *vp;
257 xfs_prid_t projid=0, iprojid=0;
258 int mandlock_before, mandlock_after;
259 struct xfs_dquot *udqp, *gdqp, *olddquot1, *olddquot2;
260 int file_owner;
5fcbab35 261 int need_iolock = 1;
1da177e4
LT
262
263 vp = BHV_TO_VNODE(bdp);
264 vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
265
266 if (vp->v_vfsp->vfs_flag & VFS_RDONLY)
267 return XFS_ERROR(EROFS);
268
269 /*
270 * Cannot set certain attributes.
271 */
272 mask = vap->va_mask;
273 if (mask & XFS_AT_NOSET) {
274 return XFS_ERROR(EINVAL);
275 }
276
277 ip = XFS_BHVTOI(bdp);
278 mp = ip->i_mount;
279
280 if (XFS_FORCED_SHUTDOWN(mp))
281 return XFS_ERROR(EIO);
282
283 /*
284 * Timestamps do not need to be logged and hence do not
285 * need to be done within a transaction.
286 */
287 if (mask & XFS_AT_UPDTIMES) {
288 ASSERT((mask & ~XFS_AT_UPDTIMES) == 0);
289 timeflags = ((mask & XFS_AT_UPDATIME) ? XFS_ICHGTIME_ACC : 0) |
290 ((mask & XFS_AT_UPDCTIME) ? XFS_ICHGTIME_CHG : 0) |
291 ((mask & XFS_AT_UPDMTIME) ? XFS_ICHGTIME_MOD : 0);
292 xfs_ichgtime(ip, timeflags);
293 return 0;
294 }
295
296 olddquot1 = olddquot2 = NULL;
297 udqp = gdqp = NULL;
298
299 /*
300 * If disk quotas is on, we make sure that the dquots do exist on disk,
301 * before we start any other transactions. Trying to do this later
302 * is messy. We don't care to take a readlock to look at the ids
303 * in inode here, because we can't hold it across the trans_reserve.
304 * If the IDs do change before we take the ilock, we're covered
305 * because the i_*dquot fields will get updated anyway.
306 */
c8ad20ff
NS
307 if (XFS_IS_QUOTA_ON(mp) &&
308 (mask & (XFS_AT_UID|XFS_AT_GID|XFS_AT_PROJID))) {
1da177e4
LT
309 uint qflags = 0;
310
c8ad20ff 311 if ((mask & XFS_AT_UID) && XFS_IS_UQUOTA_ON(mp)) {
1da177e4
LT
312 uid = vap->va_uid;
313 qflags |= XFS_QMOPT_UQUOTA;
314 } else {
315 uid = ip->i_d.di_uid;
316 }
c8ad20ff 317 if ((mask & XFS_AT_GID) && XFS_IS_GQUOTA_ON(mp)) {
1da177e4
LT
318 gid = vap->va_gid;
319 qflags |= XFS_QMOPT_GQUOTA;
320 } else {
321 gid = ip->i_d.di_gid;
322 }
c8ad20ff
NS
323 if ((mask & XFS_AT_PROJID) && XFS_IS_PQUOTA_ON(mp)) {
324 projid = vap->va_projid;
325 qflags |= XFS_QMOPT_PQUOTA;
326 } else {
327 projid = ip->i_d.di_projid;
328 }
1da177e4
LT
329 /*
330 * We take a reference when we initialize udqp and gdqp,
331 * so it is important that we never blindly double trip on
332 * the same variable. See xfs_create() for an example.
333 */
334 ASSERT(udqp == NULL);
335 ASSERT(gdqp == NULL);
c8ad20ff
NS
336 code = XFS_QM_DQVOPALLOC(mp, ip, uid, gid, projid, qflags,
337 &udqp, &gdqp);
1da177e4
LT
338 if (code)
339 return (code);
340 }
341
342 /*
343 * For the other attributes, we acquire the inode lock and
344 * first do an error checking pass.
345 */
346 tp = NULL;
347 lock_flags = XFS_ILOCK_EXCL;
5fcbab35
DR
348 ASSERT(flags & ATTR_NOLOCK ? flags & ATTR_DMI : 1);
349 if (flags & ATTR_NOLOCK)
350 need_iolock = 0;
1da177e4
LT
351 if (!(mask & XFS_AT_SIZE)) {
352 if ((mask != (XFS_AT_CTIME|XFS_AT_ATIME|XFS_AT_MTIME)) ||
353 (mp->m_flags & XFS_MOUNT_WSYNC)) {
354 tp = xfs_trans_alloc(mp, XFS_TRANS_SETATTR_NOT_SIZE);
355 commit_flags = 0;
356 if ((code = xfs_trans_reserve(tp, 0,
357 XFS_ICHANGE_LOG_RES(mp), 0,
358 0, 0))) {
359 lock_flags = 0;
360 goto error_return;
361 }
362 }
363 } else {
364 if (DM_EVENT_ENABLED (vp->v_vfsp, ip, DM_EVENT_TRUNCATE) &&
365 !(flags & ATTR_DMI)) {
366 int dmflags = AT_DELAY_FLAG(flags) | DM_SEM_FLAG_WR;
367 code = XFS_SEND_DATA(mp, DM_EVENT_TRUNCATE, vp,
368 vap->va_size, 0, dmflags, NULL);
369 if (code) {
370 lock_flags = 0;
371 goto error_return;
372 }
373 }
374 if (need_iolock)
375 lock_flags |= XFS_IOLOCK_EXCL;
376 }
377
378 xfs_ilock(ip, lock_flags);
379
380 /* boolean: are we the file owner? */
381 file_owner = (current_fsuid(credp) == ip->i_d.di_uid);
382
383 /*
384 * Change various properties of a file.
385 * Only the owner or users with CAP_FOWNER
386 * capability may do these things.
387 */
388 if (mask &
389 (XFS_AT_MODE|XFS_AT_XFLAGS|XFS_AT_EXTSIZE|XFS_AT_UID|
390 XFS_AT_GID|XFS_AT_PROJID)) {
391 /*
392 * CAP_FOWNER overrides the following restrictions:
393 *
394 * The user ID of the calling process must be equal
395 * to the file owner ID, except in cases where the
396 * CAP_FSETID capability is applicable.
397 */
398 if (!file_owner && !capable(CAP_FOWNER)) {
399 code = XFS_ERROR(EPERM);
400 goto error_return;
401 }
402
403 /*
404 * CAP_FSETID overrides the following restrictions:
405 *
406 * The effective user ID of the calling process shall match
407 * the file owner when setting the set-user-ID and
408 * set-group-ID bits on that file.
409 *
410 * The effective group ID or one of the supplementary group
411 * IDs of the calling process shall match the group owner of
412 * the file when setting the set-group-ID bit on that file
413 */
414 if (mask & XFS_AT_MODE) {
415 mode_t m = 0;
416
417 if ((vap->va_mode & S_ISUID) && !file_owner)
418 m |= S_ISUID;
419 if ((vap->va_mode & S_ISGID) &&
420 !in_group_p((gid_t)ip->i_d.di_gid))
421 m |= S_ISGID;
422#if 0
423 /* Linux allows this, Irix doesn't. */
0432dab2 424 if ((vap->va_mode & S_ISVTX) && !VN_ISDIR(vp))
1da177e4
LT
425 m |= S_ISVTX;
426#endif
427 if (m && !capable(CAP_FSETID))
428 vap->va_mode &= ~m;
429 }
430 }
431
432 /*
433 * Change file ownership. Must be the owner or privileged.
434 * If the system was configured with the "restricted_chown"
435 * option, the owner is not permitted to give away the file,
436 * and can change the group id only to a group of which he
437 * or she is a member.
438 */
439 if (mask & (XFS_AT_UID|XFS_AT_GID|XFS_AT_PROJID)) {
440 /*
441 * These IDs could have changed since we last looked at them.
442 * But, we're assured that if the ownership did change
443 * while we didn't have the inode locked, inode's dquot(s)
444 * would have changed also.
445 */
446 iuid = ip->i_d.di_uid;
447 iprojid = ip->i_d.di_projid;
448 igid = ip->i_d.di_gid;
449 gid = (mask & XFS_AT_GID) ? vap->va_gid : igid;
450 uid = (mask & XFS_AT_UID) ? vap->va_uid : iuid;
451 projid = (mask & XFS_AT_PROJID) ? (xfs_prid_t)vap->va_projid :
452 iprojid;
453
454 /*
455 * CAP_CHOWN overrides the following restrictions:
456 *
457 * If _POSIX_CHOWN_RESTRICTED is defined, this capability
458 * shall override the restriction that a process cannot
459 * change the user ID of a file it owns and the restriction
460 * that the group ID supplied to the chown() function
461 * shall be equal to either the group ID or one of the
462 * supplementary group IDs of the calling process.
1da177e4
LT
463 */
464 if (restricted_chown &&
465 (iuid != uid || (igid != gid &&
466 !in_group_p((gid_t)gid))) &&
467 !capable(CAP_CHOWN)) {
468 code = XFS_ERROR(EPERM);
469 goto error_return;
470 }
471 /*
c8ad20ff 472 * Do a quota reservation only if uid/projid/gid is actually
1da177e4
LT
473 * going to change.
474 */
475 if ((XFS_IS_UQUOTA_ON(mp) && iuid != uid) ||
c8ad20ff 476 (XFS_IS_PQUOTA_ON(mp) && iprojid != projid) ||
1da177e4
LT
477 (XFS_IS_GQUOTA_ON(mp) && igid != gid)) {
478 ASSERT(tp);
479 code = XFS_QM_DQVOPCHOWNRESV(mp, tp, ip, udqp, gdqp,
480 capable(CAP_FOWNER) ?
481 XFS_QMOPT_FORCE_RES : 0);
482 if (code) /* out of quota */
483 goto error_return;
484 }
485 }
486
487 /*
488 * Truncate file. Must have write permission and not be a directory.
489 */
490 if (mask & XFS_AT_SIZE) {
491 /* Short circuit the truncate case for zero length files */
492 if ((vap->va_size == 0) &&
493 (ip->i_d.di_size == 0) && (ip->i_d.di_nextents == 0)) {
494 xfs_iunlock(ip, XFS_ILOCK_EXCL);
495 lock_flags &= ~XFS_ILOCK_EXCL;
496 if (mask & XFS_AT_CTIME)
497 xfs_ichgtime(ip, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
498 code = 0;
499 goto error_return;
500 }
501
0432dab2 502 if (VN_ISDIR(vp)) {
1da177e4
LT
503 code = XFS_ERROR(EISDIR);
504 goto error_return;
0432dab2 505 } else if (!VN_ISREG(vp)) {
1da177e4
LT
506 code = XFS_ERROR(EINVAL);
507 goto error_return;
508 }
509 /*
510 * Make sure that the dquots are attached to the inode.
511 */
512 if ((code = XFS_QM_DQATTACH(mp, ip, XFS_QMOPT_ILOCKED)))
513 goto error_return;
514 }
515
516 /*
517 * Change file access or modified times.
518 */
519 if (mask & (XFS_AT_ATIME|XFS_AT_MTIME)) {
520 if (!file_owner) {
521 if ((flags & ATTR_UTIME) &&
522 !capable(CAP_FOWNER)) {
523 code = XFS_ERROR(EPERM);
524 goto error_return;
525 }
526 }
527 }
528
529 /*
530 * Change extent size or realtime flag.
531 */
532 if (mask & (XFS_AT_EXTSIZE|XFS_AT_XFLAGS)) {
533 /*
534 * Can't change extent size if any extents are allocated.
535 */
e94af02a 536 if (ip->i_d.di_nextents && (mask & XFS_AT_EXTSIZE) &&
1da177e4
LT
537 ((ip->i_d.di_extsize << mp->m_sb.sb_blocklog) !=
538 vap->va_extsize) ) {
539 code = XFS_ERROR(EINVAL); /* EFBIG? */
540 goto error_return;
541 }
542
1da177e4
LT
543 /*
544 * Can't change realtime flag if any extents are allocated.
545 */
e94af02a
ES
546 if ((ip->i_d.di_nextents || ip->i_delayed_blks) &&
547 (mask & XFS_AT_XFLAGS) &&
1da177e4
LT
548 (ip->i_d.di_flags & XFS_DIFLAG_REALTIME) !=
549 (vap->va_xflags & XFS_XFLAG_REALTIME)) {
550 code = XFS_ERROR(EINVAL); /* EFBIG? */
551 goto error_return;
552 }
553 /*
554 * Extent size must be a multiple of the appropriate block
555 * size, if set at all.
556 */
557 if ((mask & XFS_AT_EXTSIZE) && vap->va_extsize != 0) {
558 xfs_extlen_t size;
559
560 if ((ip->i_d.di_flags & XFS_DIFLAG_REALTIME) ||
561 ((mask & XFS_AT_XFLAGS) &&
562 (vap->va_xflags & XFS_XFLAG_REALTIME))) {
563 size = mp->m_sb.sb_rextsize <<
564 mp->m_sb.sb_blocklog;
565 } else {
566 size = mp->m_sb.sb_blocksize;
567 }
568 if (vap->va_extsize % size) {
569 code = XFS_ERROR(EINVAL);
570 goto error_return;
571 }
572 }
573 /*
574 * If realtime flag is set then must have realtime data.
575 */
576 if ((mask & XFS_AT_XFLAGS) &&
577 (vap->va_xflags & XFS_XFLAG_REALTIME)) {
578 if ((mp->m_sb.sb_rblocks == 0) ||
579 (mp->m_sb.sb_rextsize == 0) ||
580 (ip->i_d.di_extsize % mp->m_sb.sb_rextsize)) {
581 code = XFS_ERROR(EINVAL);
582 goto error_return;
583 }
584 }
585
586 /*
587 * Can't modify an immutable/append-only file unless
588 * we have appropriate permission.
589 */
590 if ((mask & XFS_AT_XFLAGS) &&
591 (ip->i_d.di_flags &
592 (XFS_DIFLAG_IMMUTABLE|XFS_DIFLAG_APPEND) ||
593 (vap->va_xflags &
594 (XFS_XFLAG_IMMUTABLE | XFS_XFLAG_APPEND))) &&
595 !capable(CAP_LINUX_IMMUTABLE)) {
596 code = XFS_ERROR(EPERM);
597 goto error_return;
598 }
599 }
600
601 /*
602 * Now we can make the changes. Before we join the inode
603 * to the transaction, if XFS_AT_SIZE is set then take care of
604 * the part of the truncation that must be done without the
605 * inode lock. This needs to be done before joining the inode
606 * to the transaction, because the inode cannot be unlocked
607 * once it is a part of the transaction.
608 */
609 if (mask & XFS_AT_SIZE) {
610 code = 0;
374e2ac3
ES
611 if ((vap->va_size > ip->i_d.di_size) &&
612 (flags & ATTR_NOSIZETOK) == 0) {
1da177e4 613 code = xfs_igrow_start(ip, vap->va_size, credp);
374e2ac3 614 }
1da177e4
LT
615 xfs_iunlock(ip, XFS_ILOCK_EXCL);
616 if (!code)
617 code = xfs_itruncate_data(ip, vap->va_size);
618 if (code) {
619 ASSERT(tp == NULL);
620 lock_flags &= ~XFS_ILOCK_EXCL;
621 ASSERT(lock_flags == XFS_IOLOCK_EXCL);
622 goto error_return;
623 }
624 tp = xfs_trans_alloc(mp, XFS_TRANS_SETATTR_SIZE);
625 if ((code = xfs_trans_reserve(tp, 0,
626 XFS_ITRUNCATE_LOG_RES(mp), 0,
627 XFS_TRANS_PERM_LOG_RES,
628 XFS_ITRUNCATE_LOG_COUNT))) {
629 xfs_trans_cancel(tp, 0);
630 if (need_iolock)
631 xfs_iunlock(ip, XFS_IOLOCK_EXCL);
632 return code;
633 }
634 commit_flags = XFS_TRANS_RELEASE_LOG_RES;
635 xfs_ilock(ip, XFS_ILOCK_EXCL);
636 }
637
638 if (tp) {
639 xfs_trans_ijoin(tp, ip, lock_flags);
640 xfs_trans_ihold(tp, ip);
641 }
642
643 /* determine whether mandatory locking mode changes */
644 mandlock_before = MANDLOCK(vp, ip->i_d.di_mode);
645
646 /*
647 * Truncate file. Must have write permission and not be a directory.
648 */
649 if (mask & XFS_AT_SIZE) {
650 if (vap->va_size > ip->i_d.di_size) {
651 xfs_igrow_finish(tp, ip, vap->va_size,
652 !(flags & ATTR_DMI));
653 } else if ((vap->va_size <= ip->i_d.di_size) ||
654 ((vap->va_size == 0) && ip->i_d.di_nextents)) {
655 /*
656 * signal a sync transaction unless
657 * we're truncating an already unlinked
658 * file on a wsync filesystem
659 */
660 code = xfs_itruncate_finish(&tp, ip,
661 (xfs_fsize_t)vap->va_size,
662 XFS_DATA_FORK,
663 ((ip->i_d.di_nlink != 0 ||
664 !(mp->m_flags & XFS_MOUNT_WSYNC))
665 ? 1 : 0));
666 if (code) {
667 goto abort_return;
668 }
669 }
670 /*
671 * Have to do this even if the file's size doesn't change.
672 */
673 timeflags |= XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG;
674 }
675
676 /*
677 * Change file access modes.
678 */
679 if (mask & XFS_AT_MODE) {
680 ip->i_d.di_mode &= S_IFMT;
681 ip->i_d.di_mode |= vap->va_mode & ~S_IFMT;
682
683 xfs_trans_log_inode (tp, ip, XFS_ILOG_CORE);
684 timeflags |= XFS_ICHGTIME_CHG;
685 }
686
687 /*
688 * Change file ownership. Must be the owner or privileged.
689 * If the system was configured with the "restricted_chown"
690 * option, the owner is not permitted to give away the file,
691 * and can change the group id only to a group of which he
692 * or she is a member.
693 */
694 if (mask & (XFS_AT_UID|XFS_AT_GID|XFS_AT_PROJID)) {
695 /*
696 * CAP_FSETID overrides the following restrictions:
697 *
698 * The set-user-ID and set-group-ID bits of a file will be
699 * cleared upon successful return from chown()
700 */
701 if ((ip->i_d.di_mode & (S_ISUID|S_ISGID)) &&
702 !capable(CAP_FSETID)) {
703 ip->i_d.di_mode &= ~(S_ISUID|S_ISGID);
704 }
705
706 /*
707 * Change the ownerships and register quota modifications
708 * in the transaction.
709 */
710 if (iuid != uid) {
711 if (XFS_IS_UQUOTA_ON(mp)) {
712 ASSERT(mask & XFS_AT_UID);
713 ASSERT(udqp);
714 olddquot1 = XFS_QM_DQVOPCHOWN(mp, tp, ip,
715 &ip->i_udquot, udqp);
716 }
717 ip->i_d.di_uid = uid;
718 }
719 if (igid != gid) {
720 if (XFS_IS_GQUOTA_ON(mp)) {
c8ad20ff 721 ASSERT(!XFS_IS_PQUOTA_ON(mp));
1da177e4
LT
722 ASSERT(mask & XFS_AT_GID);
723 ASSERT(gdqp);
724 olddquot2 = XFS_QM_DQVOPCHOWN(mp, tp, ip,
725 &ip->i_gdquot, gdqp);
726 }
727 ip->i_d.di_gid = gid;
728 }
729 if (iprojid != projid) {
c8ad20ff
NS
730 if (XFS_IS_PQUOTA_ON(mp)) {
731 ASSERT(!XFS_IS_GQUOTA_ON(mp));
732 ASSERT(mask & XFS_AT_PROJID);
733 ASSERT(gdqp);
734 olddquot2 = XFS_QM_DQVOPCHOWN(mp, tp, ip,
735 &ip->i_gdquot, gdqp);
736 }
1da177e4
LT
737 ip->i_d.di_projid = projid;
738 /*
739 * We may have to rev the inode as well as
740 * the superblock version number since projids didn't
741 * exist before DINODE_VERSION_2 and SB_VERSION_NLINK.
742 */
743 if (ip->i_d.di_version == XFS_DINODE_VERSION_1)
744 xfs_bump_ino_vers2(tp, ip);
745 }
746
747 xfs_trans_log_inode (tp, ip, XFS_ILOG_CORE);
748 timeflags |= XFS_ICHGTIME_CHG;
749 }
750
751
752 /*
753 * Change file access or modified times.
754 */
755 if (mask & (XFS_AT_ATIME|XFS_AT_MTIME)) {
756 if (mask & XFS_AT_ATIME) {
757 ip->i_d.di_atime.t_sec = vap->va_atime.tv_sec;
758 ip->i_d.di_atime.t_nsec = vap->va_atime.tv_nsec;
759 ip->i_update_core = 1;
760 timeflags &= ~XFS_ICHGTIME_ACC;
761 }
762 if (mask & XFS_AT_MTIME) {
763 ip->i_d.di_mtime.t_sec = vap->va_mtime.tv_sec;
764 ip->i_d.di_mtime.t_nsec = vap->va_mtime.tv_nsec;
765 timeflags &= ~XFS_ICHGTIME_MOD;
766 timeflags |= XFS_ICHGTIME_CHG;
767 }
768 if (tp && (flags & ATTR_UTIME))
769 xfs_trans_log_inode (tp, ip, XFS_ILOG_CORE);
770 }
771
772 /*
773 * Change XFS-added attributes.
774 */
775 if (mask & (XFS_AT_EXTSIZE|XFS_AT_XFLAGS)) {
776 if (mask & XFS_AT_EXTSIZE) {
777 /*
778 * Converting bytes to fs blocks.
779 */
780 ip->i_d.di_extsize = vap->va_extsize >>
781 mp->m_sb.sb_blocklog;
782 }
783 if (mask & XFS_AT_XFLAGS) {
784 uint di_flags;
785
786 /* can't set PREALLOC this way, just preserve it */
787 di_flags = (ip->i_d.di_flags & XFS_DIFLAG_PREALLOC);
788 if (vap->va_xflags & XFS_XFLAG_IMMUTABLE)
789 di_flags |= XFS_DIFLAG_IMMUTABLE;
790 if (vap->va_xflags & XFS_XFLAG_APPEND)
791 di_flags |= XFS_DIFLAG_APPEND;
792 if (vap->va_xflags & XFS_XFLAG_SYNC)
793 di_flags |= XFS_DIFLAG_SYNC;
794 if (vap->va_xflags & XFS_XFLAG_NOATIME)
795 di_flags |= XFS_DIFLAG_NOATIME;
796 if (vap->va_xflags & XFS_XFLAG_NODUMP)
797 di_flags |= XFS_DIFLAG_NODUMP;
365ca83d
NS
798 if (vap->va_xflags & XFS_XFLAG_PROJINHERIT)
799 di_flags |= XFS_DIFLAG_PROJINHERIT;
1da177e4
LT
800 if ((ip->i_d.di_mode & S_IFMT) == S_IFDIR) {
801 if (vap->va_xflags & XFS_XFLAG_RTINHERIT)
802 di_flags |= XFS_DIFLAG_RTINHERIT;
803 if (vap->va_xflags & XFS_XFLAG_NOSYMLINKS)
804 di_flags |= XFS_DIFLAG_NOSYMLINKS;
dd9f438e
NS
805 if (vap->va_xflags & XFS_XFLAG_EXTSZINHERIT)
806 di_flags |= XFS_DIFLAG_EXTSZINHERIT;
807 } else if ((ip->i_d.di_mode & S_IFMT) == S_IFREG) {
1da177e4
LT
808 if (vap->va_xflags & XFS_XFLAG_REALTIME) {
809 di_flags |= XFS_DIFLAG_REALTIME;
810 ip->i_iocore.io_flags |= XFS_IOCORE_RT;
811 } else {
812 ip->i_iocore.io_flags &= ~XFS_IOCORE_RT;
813 }
dd9f438e
NS
814 if (vap->va_xflags & XFS_XFLAG_EXTSIZE)
815 di_flags |= XFS_DIFLAG_EXTSIZE;
1da177e4
LT
816 }
817 ip->i_d.di_flags = di_flags;
818 }
819 xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
820 timeflags |= XFS_ICHGTIME_CHG;
821 }
822
823 /*
824 * Change file inode change time only if XFS_AT_CTIME set
825 * AND we have been called by a DMI function.
826 */
827
828 if ( (flags & ATTR_DMI) && (mask & XFS_AT_CTIME) ) {
829 ip->i_d.di_ctime.t_sec = vap->va_ctime.tv_sec;
830 ip->i_d.di_ctime.t_nsec = vap->va_ctime.tv_nsec;
831 ip->i_update_core = 1;
832 timeflags &= ~XFS_ICHGTIME_CHG;
833 }
834
835 /*
836 * Send out timestamp changes that need to be set to the
837 * current time. Not done when called by a DMI function.
838 */
839 if (timeflags && !(flags & ATTR_DMI))
840 xfs_ichgtime(ip, timeflags);
841
842 XFS_STATS_INC(xs_ig_attrchg);
843
844 /*
845 * If this is a synchronous mount, make sure that the
846 * transaction goes to disk before returning to the user.
847 * This is slightly sub-optimal in that truncates require
848 * two sync transactions instead of one for wsync filesytems.
849 * One for the truncate and one for the timestamps since we
850 * don't want to change the timestamps unless we're sure the
851 * truncate worked. Truncates are less than 1% of the laddis
852 * mix so this probably isn't worth the trouble to optimize.
853 */
854 code = 0;
855 if (tp) {
856 if (mp->m_flags & XFS_MOUNT_WSYNC)
857 xfs_trans_set_sync(tp);
858
859 code = xfs_trans_commit(tp, commit_flags, NULL);
860 }
861
862 /*
863 * If the (regular) file's mandatory locking mode changed, then
864 * notify the vnode. We do this under the inode lock to prevent
865 * racing calls to vop_vnode_change.
866 */
867 mandlock_after = MANDLOCK(vp, ip->i_d.di_mode);
868 if (mandlock_before != mandlock_after) {
869 VOP_VNODE_CHANGE(vp, VCHANGE_FLAGS_ENF_LOCKING,
870 mandlock_after);
871 }
872
873 xfs_iunlock(ip, lock_flags);
874
875 /*
876 * Release any dquot(s) the inode had kept before chown.
877 */
878 XFS_QM_DQRELE(mp, olddquot1);
879 XFS_QM_DQRELE(mp, olddquot2);
880 XFS_QM_DQRELE(mp, udqp);
881 XFS_QM_DQRELE(mp, gdqp);
882
883 if (code) {
884 return code;
885 }
886
887 if (DM_EVENT_ENABLED(vp->v_vfsp, ip, DM_EVENT_ATTRIBUTE) &&
888 !(flags & ATTR_DMI)) {
889 (void) XFS_SEND_NAMESP(mp, DM_EVENT_ATTRIBUTE, vp, DM_RIGHT_NULL,
890 NULL, DM_RIGHT_NULL, NULL, NULL,
891 0, 0, AT_DELAY_FLAG(flags));
892 }
893 return 0;
894
895 abort_return:
896 commit_flags |= XFS_TRANS_ABORT;
897 /* FALLTHROUGH */
898 error_return:
899 XFS_QM_DQRELE(mp, udqp);
900 XFS_QM_DQRELE(mp, gdqp);
901 if (tp) {
902 xfs_trans_cancel(tp, commit_flags);
903 }
904 if (lock_flags != 0) {
905 xfs_iunlock(ip, lock_flags);
906 }
907 return code;
908}
909
910
911/*
912 * xfs_access
913 * Null conversion from vnode mode bits to inode mode bits, as in efs.
914 */
915STATIC int
916xfs_access(
917 bhv_desc_t *bdp,
918 int mode,
919 cred_t *credp)
920{
921 xfs_inode_t *ip;
922 int error;
923
924 vn_trace_entry(BHV_TO_VNODE(bdp), __FUNCTION__,
925 (inst_t *)__return_address);
926
927 ip = XFS_BHVTOI(bdp);
928 xfs_ilock(ip, XFS_ILOCK_SHARED);
929 error = xfs_iaccess(ip, mode, credp);
930 xfs_iunlock(ip, XFS_ILOCK_SHARED);
931 return error;
932}
933
934
935/*
936 * xfs_readlink
937 *
938 */
939STATIC int
940xfs_readlink(
941 bhv_desc_t *bdp,
942 uio_t *uiop,
943 int ioflags,
944 cred_t *credp)
945{
946 xfs_inode_t *ip;
947 int count;
948 xfs_off_t offset;
949 int pathlen;
950 vnode_t *vp;
951 int error = 0;
952 xfs_mount_t *mp;
953 int nmaps;
954 xfs_bmbt_irec_t mval[SYMLINK_MAPS];
955 xfs_daddr_t d;
956 int byte_cnt;
957 int n;
958 xfs_buf_t *bp;
959
960 vp = BHV_TO_VNODE(bdp);
961 vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
962
963 ip = XFS_BHVTOI(bdp);
964 mp = ip->i_mount;
965
966 if (XFS_FORCED_SHUTDOWN(mp))
967 return XFS_ERROR(EIO);
968
969 xfs_ilock(ip, XFS_ILOCK_SHARED);
970
971 ASSERT((ip->i_d.di_mode & S_IFMT) == S_IFLNK);
972
973 offset = uiop->uio_offset;
974 count = uiop->uio_resid;
975
976 if (offset < 0) {
977 error = XFS_ERROR(EINVAL);
978 goto error_return;
979 }
980 if (count <= 0) {
981 error = 0;
982 goto error_return;
983 }
984
985 if (!(ioflags & IO_INVIS)) {
986 xfs_ichgtime(ip, XFS_ICHGTIME_ACC);
987 }
988
989 /*
990 * See if the symlink is stored inline.
991 */
992 pathlen = (int)ip->i_d.di_size;
993
994 if (ip->i_df.if_flags & XFS_IFINLINE) {
995 error = uio_read(ip->i_df.if_u1.if_data, pathlen, uiop);
996 }
997 else {
998 /*
999 * Symlink not inline. Call bmap to get it in.
1000 */
1001 nmaps = SYMLINK_MAPS;
1002
1003 error = xfs_bmapi(NULL, ip, 0, XFS_B_TO_FSB(mp, pathlen),
1004 0, NULL, 0, mval, &nmaps, NULL);
1005
1006 if (error) {
1007 goto error_return;
1008 }
1009
1010 for (n = 0; n < nmaps; n++) {
1011 d = XFS_FSB_TO_DADDR(mp, mval[n].br_startblock);
1012 byte_cnt = XFS_FSB_TO_B(mp, mval[n].br_blockcount);
1013 bp = xfs_buf_read(mp->m_ddev_targp, d,
1014 BTOBB(byte_cnt), 0);
1015 error = XFS_BUF_GETERROR(bp);
1016 if (error) {
1017 xfs_ioerror_alert("xfs_readlink",
1018 ip->i_mount, bp, XFS_BUF_ADDR(bp));
1019 xfs_buf_relse(bp);
1020 goto error_return;
1021 }
1022 if (pathlen < byte_cnt)
1023 byte_cnt = pathlen;
1024 pathlen -= byte_cnt;
1025
1026 error = uio_read(XFS_BUF_PTR(bp), byte_cnt, uiop);
1027 xfs_buf_relse (bp);
1028 }
1029
1030 }
1031
1032
1033error_return:
1034
1035 xfs_iunlock(ip, XFS_ILOCK_SHARED);
1036
1037 return error;
1038}
1039
1040
1041/*
1042 * xfs_fsync
1043 *
1044 * This is called to sync the inode and its data out to disk.
1045 * We need to hold the I/O lock while flushing the data, and
1046 * the inode lock while flushing the inode. The inode lock CANNOT
1047 * be held while flushing the data, so acquire after we're done
1048 * with that.
1049 */
1050STATIC int
1051xfs_fsync(
1052 bhv_desc_t *bdp,
1053 int flag,
1054 cred_t *credp,
1055 xfs_off_t start,
1056 xfs_off_t stop)
1057{
1058 xfs_inode_t *ip;
1059 xfs_trans_t *tp;
1060 int error;
f538d4da 1061 int log_flushed = 0, changed = 1;
1da177e4
LT
1062
1063 vn_trace_entry(BHV_TO_VNODE(bdp),
1064 __FUNCTION__, (inst_t *)__return_address);
1065
1066 ip = XFS_BHVTOI(bdp);
1067
1068 ASSERT(start >= 0 && stop >= -1);
1069
1070 if (XFS_FORCED_SHUTDOWN(ip->i_mount))
1071 return XFS_ERROR(EIO);
1072
1073 /*
1074 * We always need to make sure that the required inode state
1075 * is safe on disk. The vnode might be clean but because
1076 * of committed transactions that haven't hit the disk yet.
1077 * Likewise, there could be unflushed non-transactional
1078 * changes to the inode core that have to go to disk.
1079 *
1080 * The following code depends on one assumption: that
1081 * any transaction that changes an inode logs the core
1082 * because it has to change some field in the inode core
1083 * (typically nextents or nblocks). That assumption
1084 * implies that any transactions against an inode will
1085 * catch any non-transactional updates. If inode-altering
1086 * transactions exist that violate this assumption, the
1087 * code breaks. Right now, it figures that if the involved
1088 * update_* field is clear and the inode is unpinned, the
1089 * inode is clean. Either it's been flushed or it's been
1090 * committed and the commit has hit the disk unpinning the inode.
1091 * (Note that xfs_inode_item_format() called at commit clears
1092 * the update_* fields.)
1093 */
1094 xfs_ilock(ip, XFS_ILOCK_SHARED);
1095
1096 /* If we are flushing data then we care about update_size
1097 * being set, otherwise we care about update_core
1098 */
1099 if ((flag & FSYNC_DATA) ?
1100 (ip->i_update_size == 0) :
1101 (ip->i_update_core == 0)) {
1102 /*
1103 * Timestamps/size haven't changed since last inode
1104 * flush or inode transaction commit. That means
1105 * either nothing got written or a transaction
1106 * committed which caught the updates. If the
1107 * latter happened and the transaction hasn't
1108 * hit the disk yet, the inode will be still
1109 * be pinned. If it is, force the log.
1110 */
1111
1112 xfs_iunlock(ip, XFS_ILOCK_SHARED);
1113
1114 if (xfs_ipincount(ip)) {
f538d4da 1115 _xfs_log_force(ip->i_mount, (xfs_lsn_t)0,
1da177e4
LT
1116 XFS_LOG_FORCE |
1117 ((flag & FSYNC_WAIT)
f538d4da
CH
1118 ? XFS_LOG_SYNC : 0),
1119 &log_flushed);
1120 } else {
1121 /*
1122 * If the inode is not pinned and nothing
1123 * has changed we don't need to flush the
1124 * cache.
1125 */
1126 changed = 0;
1da177e4
LT
1127 }
1128 error = 0;
1129 } else {
1130 /*
1131 * Kick off a transaction to log the inode
1132 * core to get the updates. Make it
1133 * sync if FSYNC_WAIT is passed in (which
1134 * is done by everybody but specfs). The
1135 * sync transaction will also force the log.
1136 */
1137 xfs_iunlock(ip, XFS_ILOCK_SHARED);
1138 tp = xfs_trans_alloc(ip->i_mount, XFS_TRANS_FSYNC_TS);
1139 if ((error = xfs_trans_reserve(tp, 0,
1140 XFS_FSYNC_TS_LOG_RES(ip->i_mount),
1141 0, 0, 0))) {
1142 xfs_trans_cancel(tp, 0);
1143 return error;
1144 }
1145 xfs_ilock(ip, XFS_ILOCK_EXCL);
1146
1147 /*
1148 * Note - it's possible that we might have pushed
1149 * ourselves out of the way during trans_reserve
1150 * which would flush the inode. But there's no
1151 * guarantee that the inode buffer has actually
1152 * gone out yet (it's delwri). Plus the buffer
1153 * could be pinned anyway if it's part of an
1154 * inode in another recent transaction. So we
1155 * play it safe and fire off the transaction anyway.
1156 */
1157 xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
1158 xfs_trans_ihold(tp, ip);
1159 xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
1160 if (flag & FSYNC_WAIT)
1161 xfs_trans_set_sync(tp);
f538d4da 1162 error = _xfs_trans_commit(tp, 0, NULL, &log_flushed);
1da177e4
LT
1163
1164 xfs_iunlock(ip, XFS_ILOCK_EXCL);
1165 }
f538d4da
CH
1166
1167 if ((ip->i_mount->m_flags & XFS_MOUNT_BARRIER) && changed) {
1168 /*
1169 * If the log write didn't issue an ordered tag we need
1170 * to flush the disk cache for the data device now.
1171 */
1172 if (!log_flushed)
1173 xfs_blkdev_issue_flush(ip->i_mount->m_ddev_targp);
1174
1175 /*
1176 * If this inode is on the RT dev we need to flush that
1177 * cache aswell.
1178 */
1179 if (ip->i_d.di_flags & XFS_DIFLAG_REALTIME)
1180 xfs_blkdev_issue_flush(ip->i_mount->m_rtdev_targp);
1181 }
1182
1da177e4
LT
1183 return error;
1184}
1185
1186/*
1187 * This is called by xfs_inactive to free any blocks beyond eof,
1188 * when the link count isn't zero.
1189 */
1190STATIC int
1191xfs_inactive_free_eofblocks(
1192 xfs_mount_t *mp,
1193 xfs_inode_t *ip)
1194{
1195 xfs_trans_t *tp;
1196 int error;
1197 xfs_fileoff_t end_fsb;
1198 xfs_fileoff_t last_fsb;
1199 xfs_filblks_t map_len;
1200 int nimaps;
1201 xfs_bmbt_irec_t imap;
1202
1203 /*
1204 * Figure out if there are any blocks beyond the end
1205 * of the file. If not, then there is nothing to do.
1206 */
1207 end_fsb = XFS_B_TO_FSB(mp, ((xfs_ufsize_t)ip->i_d.di_size));
1208 last_fsb = XFS_B_TO_FSB(mp, (xfs_ufsize_t)XFS_MAXIOFFSET(mp));
1209 map_len = last_fsb - end_fsb;
1210 if (map_len <= 0)
1211 return (0);
1212
1213 nimaps = 1;
1214 xfs_ilock(ip, XFS_ILOCK_SHARED);
1215 error = xfs_bmapi(NULL, ip, end_fsb, map_len, 0,
1216 NULL, 0, &imap, &nimaps, NULL);
1217 xfs_iunlock(ip, XFS_ILOCK_SHARED);
1218
1219 if (!error && (nimaps != 0) &&
1220 (imap.br_startblock != HOLESTARTBLOCK)) {
1221 /*
1222 * Attach the dquots to the inode up front.
1223 */
1224 if ((error = XFS_QM_DQATTACH(mp, ip, 0)))
1225 return (error);
1226
1227 /*
1228 * There are blocks after the end of file.
1229 * Free them up now by truncating the file to
1230 * its current size.
1231 */
1232 tp = xfs_trans_alloc(mp, XFS_TRANS_INACTIVE);
1233
1234 /*
1235 * Do the xfs_itruncate_start() call before
1236 * reserving any log space because
1237 * itruncate_start will call into the buffer
1238 * cache and we can't
1239 * do that within a transaction.
1240 */
1241 xfs_ilock(ip, XFS_IOLOCK_EXCL);
1242 xfs_itruncate_start(ip, XFS_ITRUNC_DEFINITE,
1243 ip->i_d.di_size);
1244
1245 error = xfs_trans_reserve(tp, 0,
1246 XFS_ITRUNCATE_LOG_RES(mp),
1247 0, XFS_TRANS_PERM_LOG_RES,
1248 XFS_ITRUNCATE_LOG_COUNT);
1249 if (error) {
1250 ASSERT(XFS_FORCED_SHUTDOWN(mp));
1251 xfs_trans_cancel(tp, 0);
1252 xfs_iunlock(ip, XFS_IOLOCK_EXCL);
1253 return (error);
1254 }
1255
1256 xfs_ilock(ip, XFS_ILOCK_EXCL);
1257 xfs_trans_ijoin(tp, ip,
1258 XFS_IOLOCK_EXCL |
1259 XFS_ILOCK_EXCL);
1260 xfs_trans_ihold(tp, ip);
1261
1262 error = xfs_itruncate_finish(&tp, ip,
1263 ip->i_d.di_size,
1264 XFS_DATA_FORK,
1265 0);
1266 /*
1267 * If we get an error at this point we
1268 * simply don't bother truncating the file.
1269 */
1270 if (error) {
1271 xfs_trans_cancel(tp,
1272 (XFS_TRANS_RELEASE_LOG_RES |
1273 XFS_TRANS_ABORT));
1274 } else {
1275 error = xfs_trans_commit(tp,
1276 XFS_TRANS_RELEASE_LOG_RES,
1277 NULL);
1278 }
1279 xfs_iunlock(ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1280 }
1281 return (error);
1282}
1283
1284/*
1285 * Free a symlink that has blocks associated with it.
1286 */
1287STATIC int
1288xfs_inactive_symlink_rmt(
1289 xfs_inode_t *ip,
1290 xfs_trans_t **tpp)
1291{
1292 xfs_buf_t *bp;
1293 int committed;
1294 int done;
1295 int error;
1296 xfs_fsblock_t first_block;
1297 xfs_bmap_free_t free_list;
1298 int i;
1299 xfs_mount_t *mp;
1300 xfs_bmbt_irec_t mval[SYMLINK_MAPS];
1301 int nmaps;
1302 xfs_trans_t *ntp;
1303 int size;
1304 xfs_trans_t *tp;
1305
1306 tp = *tpp;
1307 mp = ip->i_mount;
1308 ASSERT(ip->i_d.di_size > XFS_IFORK_DSIZE(ip));
1309 /*
1310 * We're freeing a symlink that has some
1311 * blocks allocated to it. Free the
1312 * blocks here. We know that we've got
1313 * either 1 or 2 extents and that we can
1314 * free them all in one bunmapi call.
1315 */
1316 ASSERT(ip->i_d.di_nextents > 0 && ip->i_d.di_nextents <= 2);
1317 if ((error = xfs_trans_reserve(tp, 0, XFS_ITRUNCATE_LOG_RES(mp), 0,
1318 XFS_TRANS_PERM_LOG_RES, XFS_ITRUNCATE_LOG_COUNT))) {
1319 ASSERT(XFS_FORCED_SHUTDOWN(mp));
1320 xfs_trans_cancel(tp, 0);
1321 *tpp = NULL;
1322 return error;
1323 }
1324 /*
1325 * Lock the inode, fix the size, and join it to the transaction.
1326 * Hold it so in the normal path, we still have it locked for
1327 * the second transaction. In the error paths we need it
1328 * held so the cancel won't rele it, see below.
1329 */
1330 xfs_ilock(ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1331 size = (int)ip->i_d.di_size;
1332 ip->i_d.di_size = 0;
1333 xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL);
1334 xfs_trans_ihold(tp, ip);
1335 xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
1336 /*
1337 * Find the block(s) so we can inval and unmap them.
1338 */
1339 done = 0;
1340 XFS_BMAP_INIT(&free_list, &first_block);
1341 nmaps = sizeof(mval) / sizeof(mval[0]);
1342 if ((error = xfs_bmapi(tp, ip, 0, XFS_B_TO_FSB(mp, size),
1343 XFS_BMAPI_METADATA, &first_block, 0, mval, &nmaps,
1344 &free_list)))
1345 goto error0;
1346 /*
1347 * Invalidate the block(s).
1348 */
1349 for (i = 0; i < nmaps; i++) {
1350 bp = xfs_trans_get_buf(tp, mp->m_ddev_targp,
1351 XFS_FSB_TO_DADDR(mp, mval[i].br_startblock),
1352 XFS_FSB_TO_BB(mp, mval[i].br_blockcount), 0);
1353 xfs_trans_binval(tp, bp);
1354 }
1355 /*
1356 * Unmap the dead block(s) to the free_list.
1357 */
1358 if ((error = xfs_bunmapi(tp, ip, 0, size, XFS_BMAPI_METADATA, nmaps,
1359 &first_block, &free_list, &done)))
1360 goto error1;
1361 ASSERT(done);
1362 /*
1363 * Commit the first transaction. This logs the EFI and the inode.
1364 */
1365 if ((error = xfs_bmap_finish(&tp, &free_list, first_block, &committed)))
1366 goto error1;
1367 /*
1368 * The transaction must have been committed, since there were
1369 * actually extents freed by xfs_bunmapi. See xfs_bmap_finish.
1370 * The new tp has the extent freeing and EFDs.
1371 */
1372 ASSERT(committed);
1373 /*
1374 * The first xact was committed, so add the inode to the new one.
1375 * Mark it dirty so it will be logged and moved forward in the log as
1376 * part of every commit.
1377 */
1378 xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL);
1379 xfs_trans_ihold(tp, ip);
1380 xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
1381 /*
1382 * Get a new, empty transaction to return to our caller.
1383 */
1384 ntp = xfs_trans_dup(tp);
1385 /*
1386 * Commit the transaction containing extent freeing and EFD's.
1387 * If we get an error on the commit here or on the reserve below,
1388 * we need to unlock the inode since the new transaction doesn't
1389 * have the inode attached.
1390 */
1391 error = xfs_trans_commit(tp, 0, NULL);
1392 tp = ntp;
1393 if (error) {
1394 ASSERT(XFS_FORCED_SHUTDOWN(mp));
1395 goto error0;
1396 }
1397 /*
1398 * Remove the memory for extent descriptions (just bookkeeping).
1399 */
1400 if (ip->i_df.if_bytes)
1401 xfs_idata_realloc(ip, -ip->i_df.if_bytes, XFS_DATA_FORK);
1402 ASSERT(ip->i_df.if_bytes == 0);
1403 /*
1404 * Put an itruncate log reservation in the new transaction
1405 * for our caller.
1406 */
1407 if ((error = xfs_trans_reserve(tp, 0, XFS_ITRUNCATE_LOG_RES(mp), 0,
1408 XFS_TRANS_PERM_LOG_RES, XFS_ITRUNCATE_LOG_COUNT))) {
1409 ASSERT(XFS_FORCED_SHUTDOWN(mp));
1410 goto error0;
1411 }
1412 /*
1413 * Return with the inode locked but not joined to the transaction.
1414 */
1415 *tpp = tp;
1416 return 0;
1417
1418 error1:
1419 xfs_bmap_cancel(&free_list);
1420 error0:
1421 /*
1422 * Have to come here with the inode locked and either
1423 * (held and in the transaction) or (not in the transaction).
1424 * If the inode isn't held then cancel would iput it, but
1425 * that's wrong since this is inactive and the vnode ref
1426 * count is 0 already.
1427 * Cancel won't do anything to the inode if held, but it still
1428 * needs to be locked until the cancel is done, if it was
1429 * joined to the transaction.
1430 */
1431 xfs_trans_cancel(tp, XFS_TRANS_RELEASE_LOG_RES | XFS_TRANS_ABORT);
1432 xfs_iunlock(ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1433 *tpp = NULL;
1434 return error;
1435
1436}
1437
1438STATIC int
1439xfs_inactive_symlink_local(
1440 xfs_inode_t *ip,
1441 xfs_trans_t **tpp)
1442{
1443 int error;
1444
1445 ASSERT(ip->i_d.di_size <= XFS_IFORK_DSIZE(ip));
1446 /*
1447 * We're freeing a symlink which fit into
1448 * the inode. Just free the memory used
1449 * to hold the old symlink.
1450 */
1451 error = xfs_trans_reserve(*tpp, 0,
1452 XFS_ITRUNCATE_LOG_RES(ip->i_mount),
1453 0, XFS_TRANS_PERM_LOG_RES,
1454 XFS_ITRUNCATE_LOG_COUNT);
1455
1456 if (error) {
1457 xfs_trans_cancel(*tpp, 0);
1458 *tpp = NULL;
1459 return (error);
1460 }
1461 xfs_ilock(ip, XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL);
1462
1463 /*
1464 * Zero length symlinks _can_ exist.
1465 */
1466 if (ip->i_df.if_bytes > 0) {
1467 xfs_idata_realloc(ip,
1468 -(ip->i_df.if_bytes),
1469 XFS_DATA_FORK);
1470 ASSERT(ip->i_df.if_bytes == 0);
1471 }
1472 return (0);
1473}
1474
1475/*
1476 *
1477 */
1478STATIC int
1479xfs_inactive_attrs(
1480 xfs_inode_t *ip,
1481 xfs_trans_t **tpp)
1482{
1483 xfs_trans_t *tp;
1484 int error;
1485 xfs_mount_t *mp;
1486
1487 ASSERT(ismrlocked(&ip->i_iolock, MR_UPDATE));
1488 tp = *tpp;
1489 mp = ip->i_mount;
1490 ASSERT(ip->i_d.di_forkoff != 0);
1491 xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
1492 xfs_iunlock(ip, XFS_ILOCK_EXCL);
1493
1494 error = xfs_attr_inactive(ip);
1495 if (error) {
1496 *tpp = NULL;
1497 xfs_iunlock(ip, XFS_IOLOCK_EXCL);
1498 return (error); /* goto out*/
1499 }
1500
1501 tp = xfs_trans_alloc(mp, XFS_TRANS_INACTIVE);
1502 error = xfs_trans_reserve(tp, 0,
1503 XFS_IFREE_LOG_RES(mp),
1504 0, XFS_TRANS_PERM_LOG_RES,
1505 XFS_INACTIVE_LOG_COUNT);
1506 if (error) {
1507 ASSERT(XFS_FORCED_SHUTDOWN(mp));
1508 xfs_trans_cancel(tp, 0);
1509 *tpp = NULL;
1510 xfs_iunlock(ip, XFS_IOLOCK_EXCL);
1511 return (error);
1512 }
1513
1514 xfs_ilock(ip, XFS_ILOCK_EXCL);
1515 xfs_trans_ijoin(tp, ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1516 xfs_trans_ihold(tp, ip);
1517 xfs_idestroy_fork(ip, XFS_ATTR_FORK);
1518
1519 ASSERT(ip->i_d.di_anextents == 0);
1520
1521 *tpp = tp;
1522 return (0);
1523}
1524
1525STATIC int
1526xfs_release(
1527 bhv_desc_t *bdp)
1528{
1529 xfs_inode_t *ip;
1530 vnode_t *vp;
1531 xfs_mount_t *mp;
1532 int error;
1533
1534 vp = BHV_TO_VNODE(bdp);
1535 ip = XFS_BHVTOI(bdp);
1536
0432dab2 1537 if (!VN_ISREG(vp) || (ip->i_d.di_mode == 0)) {
1da177e4
LT
1538 return 0;
1539 }
1540
1541 /* If this is a read-only mount, don't do this (would generate I/O) */
1542 if (vp->v_vfsp->vfs_flag & VFS_RDONLY)
1543 return 0;
1544
1545#ifdef HAVE_REFCACHE
1546 /* If we are in the NFS reference cache then don't do this now */
1547 if (ip->i_refcache)
1548 return 0;
1549#endif
1550
1551 mp = ip->i_mount;
1552
1553 if (ip->i_d.di_nlink != 0) {
1554 if ((((ip->i_d.di_mode & S_IFMT) == S_IFREG) &&
1555 ((ip->i_d.di_size > 0) || (VN_CACHED(vp) > 0)) &&
1556 (ip->i_df.if_flags & XFS_IFEXTENTS)) &&
dd9f438e
NS
1557 (!(ip->i_d.di_flags &
1558 (XFS_DIFLAG_PREALLOC | XFS_DIFLAG_APPEND)))) {
1da177e4
LT
1559 if ((error = xfs_inactive_free_eofblocks(mp, ip)))
1560 return (error);
1561 /* Update linux inode block count after free above */
1562 LINVFS_GET_IP(vp)->i_blocks = XFS_FSB_TO_BB(mp,
1563 ip->i_d.di_nblocks + ip->i_delayed_blks);
1564 }
1565 }
1566
1567 return 0;
1568}
1569
1570/*
1571 * xfs_inactive
1572 *
1573 * This is called when the vnode reference count for the vnode
1574 * goes to zero. If the file has been unlinked, then it must
1575 * now be truncated. Also, we clear all of the read-ahead state
1576 * kept for the inode here since the file is now closed.
1577 */
1578STATIC int
1579xfs_inactive(
1580 bhv_desc_t *bdp,
1581 cred_t *credp)
1582{
1583 xfs_inode_t *ip;
1584 vnode_t *vp;
1585 xfs_bmap_free_t free_list;
1586 xfs_fsblock_t first_block;
1587 int committed;
1588 xfs_trans_t *tp;
1589 xfs_mount_t *mp;
1590 int error;
1591 int truncate;
1592
1593 vp = BHV_TO_VNODE(bdp);
1594 vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
1595
1596 ip = XFS_BHVTOI(bdp);
1597
1598 /*
1599 * If the inode is already free, then there can be nothing
1600 * to clean up here.
1601 */
1602 if (ip->i_d.di_mode == 0 || VN_BAD(vp)) {
1603 ASSERT(ip->i_df.if_real_bytes == 0);
1604 ASSERT(ip->i_df.if_broot_bytes == 0);
1605 return VN_INACTIVE_CACHE;
1606 }
1607
1608 /*
1609 * Only do a truncate if it's a regular file with
1610 * some actual space in it. It's OK to look at the
1611 * inode's fields without the lock because we're the
1612 * only one with a reference to the inode.
1613 */
1614 truncate = ((ip->i_d.di_nlink == 0) &&
1661dc8e
YL
1615 ((ip->i_d.di_size != 0) || (ip->i_d.di_nextents > 0) ||
1616 (ip->i_delayed_blks > 0)) &&
1da177e4
LT
1617 ((ip->i_d.di_mode & S_IFMT) == S_IFREG));
1618
1619 mp = ip->i_mount;
1620
1621 if (ip->i_d.di_nlink == 0 &&
1622 DM_EVENT_ENABLED(vp->v_vfsp, ip, DM_EVENT_DESTROY)) {
1623 (void) XFS_SEND_DESTROY(mp, vp, DM_RIGHT_NULL);
1624 }
1625
1626 error = 0;
1627
1628 /* If this is a read-only mount, don't do this (would generate I/O) */
1629 if (vp->v_vfsp->vfs_flag & VFS_RDONLY)
1630 goto out;
1631
1632 if (ip->i_d.di_nlink != 0) {
1633 if ((((ip->i_d.di_mode & S_IFMT) == S_IFREG) &&
1634 ((ip->i_d.di_size > 0) || (VN_CACHED(vp) > 0)) &&
dd9f438e
NS
1635 (ip->i_df.if_flags & XFS_IFEXTENTS) &&
1636 (!(ip->i_d.di_flags &
1637 (XFS_DIFLAG_PREALLOC | XFS_DIFLAG_APPEND)) ||
1638 (ip->i_delayed_blks != 0)))) {
1da177e4
LT
1639 if ((error = xfs_inactive_free_eofblocks(mp, ip)))
1640 return (VN_INACTIVE_CACHE);
1641 /* Update linux inode block count after free above */
1642 LINVFS_GET_IP(vp)->i_blocks = XFS_FSB_TO_BB(mp,
1643 ip->i_d.di_nblocks + ip->i_delayed_blks);
1644 }
1645 goto out;
1646 }
1647
1648 ASSERT(ip->i_d.di_nlink == 0);
1649
1650 if ((error = XFS_QM_DQATTACH(mp, ip, 0)))
1651 return (VN_INACTIVE_CACHE);
1652
1653 tp = xfs_trans_alloc(mp, XFS_TRANS_INACTIVE);
1654 if (truncate) {
1655 /*
1656 * Do the xfs_itruncate_start() call before
1657 * reserving any log space because itruncate_start
1658 * will call into the buffer cache and we can't
1659 * do that within a transaction.
1660 */
1661 xfs_ilock(ip, XFS_IOLOCK_EXCL);
1662
1663 xfs_itruncate_start(ip, XFS_ITRUNC_DEFINITE, 0);
1664
1665 error = xfs_trans_reserve(tp, 0,
1666 XFS_ITRUNCATE_LOG_RES(mp),
1667 0, XFS_TRANS_PERM_LOG_RES,
1668 XFS_ITRUNCATE_LOG_COUNT);
1669 if (error) {
1670 /* Don't call itruncate_cleanup */
1671 ASSERT(XFS_FORCED_SHUTDOWN(mp));
1672 xfs_trans_cancel(tp, 0);
1673 xfs_iunlock(ip, XFS_IOLOCK_EXCL);
1674 return (VN_INACTIVE_CACHE);
1675 }
1676
1677 xfs_ilock(ip, XFS_ILOCK_EXCL);
1678 xfs_trans_ijoin(tp, ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1679 xfs_trans_ihold(tp, ip);
1680
1681 /*
1682 * normally, we have to run xfs_itruncate_finish sync.
1683 * But if filesystem is wsync and we're in the inactive
1684 * path, then we know that nlink == 0, and that the
1685 * xaction that made nlink == 0 is permanently committed
1686 * since xfs_remove runs as a synchronous transaction.
1687 */
1688 error = xfs_itruncate_finish(&tp, ip, 0, XFS_DATA_FORK,
1689 (!(mp->m_flags & XFS_MOUNT_WSYNC) ? 1 : 0));
1690
1691 if (error) {
1692 xfs_trans_cancel(tp,
1693 XFS_TRANS_RELEASE_LOG_RES | XFS_TRANS_ABORT);
1694 xfs_iunlock(ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1695 return (VN_INACTIVE_CACHE);
1696 }
1697 } else if ((ip->i_d.di_mode & S_IFMT) == S_IFLNK) {
1698
1699 /*
1700 * If we get an error while cleaning up a
1701 * symlink we bail out.
1702 */
1703 error = (ip->i_d.di_size > XFS_IFORK_DSIZE(ip)) ?
1704 xfs_inactive_symlink_rmt(ip, &tp) :
1705 xfs_inactive_symlink_local(ip, &tp);
1706
1707 if (error) {
1708 ASSERT(tp == NULL);
1709 return (VN_INACTIVE_CACHE);
1710 }
1711
1712 xfs_trans_ijoin(tp, ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1713 xfs_trans_ihold(tp, ip);
1714 } else {
1715 error = xfs_trans_reserve(tp, 0,
1716 XFS_IFREE_LOG_RES(mp),
1717 0, XFS_TRANS_PERM_LOG_RES,
1718 XFS_INACTIVE_LOG_COUNT);
1719 if (error) {
1720 ASSERT(XFS_FORCED_SHUTDOWN(mp));
1721 xfs_trans_cancel(tp, 0);
1722 return (VN_INACTIVE_CACHE);
1723 }
1724
1725 xfs_ilock(ip, XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL);
1726 xfs_trans_ijoin(tp, ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1727 xfs_trans_ihold(tp, ip);
1728 }
1729
1730 /*
1731 * If there are attributes associated with the file
1732 * then blow them away now. The code calls a routine
1733 * that recursively deconstructs the attribute fork.
1734 * We need to just commit the current transaction
1735 * because we can't use it for xfs_attr_inactive().
1736 */
1737 if (ip->i_d.di_anextents > 0) {
1738 error = xfs_inactive_attrs(ip, &tp);
1739 /*
1740 * If we got an error, the transaction is already
1741 * cancelled, and the inode is unlocked. Just get out.
1742 */
1743 if (error)
1744 return (VN_INACTIVE_CACHE);
1745 } else if (ip->i_afp) {
1746 xfs_idestroy_fork(ip, XFS_ATTR_FORK);
1747 }
1748
1749 /*
1750 * Free the inode.
1751 */
1752 XFS_BMAP_INIT(&free_list, &first_block);
1753 error = xfs_ifree(tp, ip, &free_list);
1754 if (error) {
1755 /*
1756 * If we fail to free the inode, shut down. The cancel
1757 * might do that, we need to make sure. Otherwise the
1758 * inode might be lost for a long time or forever.
1759 */
1760 if (!XFS_FORCED_SHUTDOWN(mp)) {
1761 cmn_err(CE_NOTE,
1762 "xfs_inactive: xfs_ifree() returned an error = %d on %s",
1763 error, mp->m_fsname);
1764 xfs_force_shutdown(mp, XFS_METADATA_IO_ERROR);
1765 }
1766 xfs_trans_cancel(tp, XFS_TRANS_RELEASE_LOG_RES|XFS_TRANS_ABORT);
1767 } else {
1768 /*
1769 * Credit the quota account(s). The inode is gone.
1770 */
1771 XFS_TRANS_MOD_DQUOT_BYINO(mp, tp, ip, XFS_TRANS_DQ_ICOUNT, -1);
1772
1773 /*
1774 * Just ignore errors at this point. There is
1775 * nothing we can do except to try to keep going.
1776 */
1777 (void) xfs_bmap_finish(&tp, &free_list, first_block,
1778 &committed);
1779 (void) xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
1780 }
1781 /*
1782 * Release the dquots held by inode, if any.
1783 */
1784 XFS_QM_DQDETACH(mp, ip);
1785
1786 xfs_iunlock(ip, XFS_IOLOCK_EXCL | XFS_ILOCK_EXCL);
1787
1788 out:
1789 return VN_INACTIVE_CACHE;
1790}
1791
1792
1793/*
1794 * xfs_lookup
1795 */
1796STATIC int
1797xfs_lookup(
1798 bhv_desc_t *dir_bdp,
1799 vname_t *dentry,
1800 vnode_t **vpp,
1801 int flags,
1802 vnode_t *rdir,
1803 cred_t *credp)
1804{
1805 xfs_inode_t *dp, *ip;
1806 xfs_ino_t e_inum;
1807 int error;
1808 uint lock_mode;
1809 vnode_t *dir_vp;
1810
1811 dir_vp = BHV_TO_VNODE(dir_bdp);
1812 vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
1813
1814 dp = XFS_BHVTOI(dir_bdp);
1815
1816 if (XFS_FORCED_SHUTDOWN(dp->i_mount))
1817 return XFS_ERROR(EIO);
1818
1819 lock_mode = xfs_ilock_map_shared(dp);
1820 error = xfs_dir_lookup_int(dir_bdp, lock_mode, dentry, &e_inum, &ip);
1821 if (!error) {
1822 *vpp = XFS_ITOV(ip);
1823 ITRACE(ip);
1824 }
1825 xfs_iunlock_map_shared(dp, lock_mode);
1826 return error;
1827}
1828
1829
1830/*
1831 * xfs_create (create a new file).
1832 */
1833STATIC int
1834xfs_create(
1835 bhv_desc_t *dir_bdp,
1836 vname_t *dentry,
1837 vattr_t *vap,
1838 vnode_t **vpp,
1839 cred_t *credp)
1840{
1841 char *name = VNAME(dentry);
1842 vnode_t *dir_vp;
1843 xfs_inode_t *dp, *ip;
1844 vnode_t *vp=NULL;
1845 xfs_trans_t *tp;
1846 xfs_mount_t *mp;
1847 xfs_dev_t rdev;
1848 int error;
1849 xfs_bmap_free_t free_list;
1850 xfs_fsblock_t first_block;
1851 boolean_t dp_joined_to_trans;
1852 int dm_event_sent = 0;
1853 uint cancel_flags;
1854 int committed;
1855 xfs_prid_t prid;
1856 struct xfs_dquot *udqp, *gdqp;
1857 uint resblks;
1858 int dm_di_mode;
1859 int namelen;
1860
1861 ASSERT(!*vpp);
1862 dir_vp = BHV_TO_VNODE(dir_bdp);
1863 vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
1864
1865 dp = XFS_BHVTOI(dir_bdp);
1866 mp = dp->i_mount;
1867
0432dab2 1868 dm_di_mode = vap->va_mode;
1da177e4
LT
1869 namelen = VNAMELEN(dentry);
1870
1871 if (DM_EVENT_ENABLED(dir_vp->v_vfsp, dp, DM_EVENT_CREATE)) {
1872 error = XFS_SEND_NAMESP(mp, DM_EVENT_CREATE,
1873 dir_vp, DM_RIGHT_NULL, NULL,
1874 DM_RIGHT_NULL, name, NULL,
1875 dm_di_mode, 0, 0);
1876
1877 if (error)
1878 return error;
1879 dm_event_sent = 1;
1880 }
1881
1882 if (XFS_FORCED_SHUTDOWN(mp))
1883 return XFS_ERROR(EIO);
1884
1885 /* Return through std_return after this point. */
1886
1887 udqp = gdqp = NULL;
365ca83d
NS
1888 if (dp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT)
1889 prid = dp->i_d.di_projid;
1890 else if (vap->va_mask & XFS_AT_PROJID)
1da177e4
LT
1891 prid = (xfs_prid_t)vap->va_projid;
1892 else
1893 prid = (xfs_prid_t)dfltprid;
1894
1895 /*
1896 * Make sure that we have allocated dquot(s) on disk.
1897 */
1898 error = XFS_QM_DQVOPALLOC(mp, dp,
c8ad20ff 1899 current_fsuid(credp), current_fsgid(credp), prid,
1da177e4
LT
1900 XFS_QMOPT_QUOTALL|XFS_QMOPT_INHERIT, &udqp, &gdqp);
1901 if (error)
1902 goto std_return;
1903
1904 ip = NULL;
1905 dp_joined_to_trans = B_FALSE;
1906
1907 tp = xfs_trans_alloc(mp, XFS_TRANS_CREATE);
1908 cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
1909 resblks = XFS_CREATE_SPACE_RES(mp, namelen);
1910 /*
1911 * Initially assume that the file does not exist and
1912 * reserve the resources for that case. If that is not
1913 * the case we'll drop the one we have and get a more
1914 * appropriate transaction later.
1915 */
1916 error = xfs_trans_reserve(tp, resblks, XFS_CREATE_LOG_RES(mp), 0,
1917 XFS_TRANS_PERM_LOG_RES, XFS_CREATE_LOG_COUNT);
1918 if (error == ENOSPC) {
1919 resblks = 0;
1920 error = xfs_trans_reserve(tp, 0, XFS_CREATE_LOG_RES(mp), 0,
1921 XFS_TRANS_PERM_LOG_RES, XFS_CREATE_LOG_COUNT);
1922 }
1923 if (error) {
1924 cancel_flags = 0;
1925 dp = NULL;
1926 goto error_return;
1927 }
1928
1929 xfs_ilock(dp, XFS_ILOCK_EXCL);
1930
1931 XFS_BMAP_INIT(&free_list, &first_block);
1932
1933 ASSERT(ip == NULL);
1934
1935 /*
1936 * Reserve disk quota and the inode.
1937 */
1938 error = XFS_TRANS_RESERVE_QUOTA(mp, tp, udqp, gdqp, resblks, 1, 0);
1939 if (error)
1940 goto error_return;
1941
1942 if (resblks == 0 &&
1943 (error = XFS_DIR_CANENTER(mp, tp, dp, name, namelen)))
1944 goto error_return;
1945 rdev = (vap->va_mask & XFS_AT_RDEV) ? vap->va_rdev : 0;
0432dab2 1946 error = xfs_dir_ialloc(&tp, dp, vap->va_mode, 1,
1da177e4
LT
1947 rdev, credp, prid, resblks > 0,
1948 &ip, &committed);
1949 if (error) {
1950 if (error == ENOSPC)
1951 goto error_return;
1952 goto abort_return;
1953 }
1954 ITRACE(ip);
1955
1956 /*
1957 * At this point, we've gotten a newly allocated inode.
1958 * It is locked (and joined to the transaction).
1959 */
1960
1961 ASSERT(ismrlocked (&ip->i_lock, MR_UPDATE));
1962
1963 /*
1964 * Now we join the directory inode to the transaction.
1965 * We do not do it earlier because xfs_dir_ialloc
1966 * might commit the previous transaction (and release
1967 * all the locks).
1968 */
1969
1970 VN_HOLD(dir_vp);
1971 xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
1972 dp_joined_to_trans = B_TRUE;
1973
1974 error = XFS_DIR_CREATENAME(mp, tp, dp, name, namelen, ip->i_ino,
1975 &first_block, &free_list,
1976 resblks ? resblks - XFS_IALLOC_SPACE_RES(mp) : 0);
1977 if (error) {
1978 ASSERT(error != ENOSPC);
1979 goto abort_return;
1980 }
1981 xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
1982 xfs_trans_log_inode(tp, dp, XFS_ILOG_CORE);
1983
1984 /*
1985 * If this is a synchronous mount, make sure that the
1986 * create transaction goes to disk before returning to
1987 * the user.
1988 */
1989 if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
1990 xfs_trans_set_sync(tp);
1991 }
1992
1993 dp->i_gen++;
1994
1995 /*
1996 * Attach the dquot(s) to the inodes and modify them incore.
1997 * These ids of the inode couldn't have changed since the new
1998 * inode has been locked ever since it was created.
1999 */
2000 XFS_QM_DQVOPCREATE(mp, tp, ip, udqp, gdqp);
2001
2002 /*
2003 * xfs_trans_commit normally decrements the vnode ref count
2004 * when it unlocks the inode. Since we want to return the
2005 * vnode to the caller, we bump the vnode ref count now.
2006 */
2007 IHOLD(ip);
2008 vp = XFS_ITOV(ip);
2009
2010 error = xfs_bmap_finish(&tp, &free_list, first_block, &committed);
2011 if (error) {
2012 xfs_bmap_cancel(&free_list);
2013 goto abort_rele;
2014 }
2015
2016 error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
2017 if (error) {
2018 IRELE(ip);
2019 tp = NULL;
2020 goto error_return;
2021 }
2022
2023 XFS_QM_DQRELE(mp, udqp);
2024 XFS_QM_DQRELE(mp, gdqp);
2025
2026 /*
2027 * Propogate the fact that the vnode changed after the
2028 * xfs_inode locks have been released.
2029 */
2030 VOP_VNODE_CHANGE(vp, VCHANGE_FLAGS_TRUNCATED, 3);
2031
2032 *vpp = vp;
2033
2034 /* Fallthrough to std_return with error = 0 */
2035
2036std_return:
2037 if ( (*vpp || (error != 0 && dm_event_sent != 0)) &&
2038 DM_EVENT_ENABLED(dir_vp->v_vfsp, XFS_BHVTOI(dir_bdp),
2039 DM_EVENT_POSTCREATE)) {
2040 (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTCREATE,
2041 dir_vp, DM_RIGHT_NULL,
2042 *vpp ? vp:NULL,
2043 DM_RIGHT_NULL, name, NULL,
2044 dm_di_mode, error, 0);
2045 }
2046 return error;
2047
2048 abort_return:
2049 cancel_flags |= XFS_TRANS_ABORT;
2050 /* FALLTHROUGH */
2051 error_return:
2052
2053 if (tp != NULL)
2054 xfs_trans_cancel(tp, cancel_flags);
2055
2056 if (!dp_joined_to_trans && (dp != NULL))
2057 xfs_iunlock(dp, XFS_ILOCK_EXCL);
2058 XFS_QM_DQRELE(mp, udqp);
2059 XFS_QM_DQRELE(mp, gdqp);
2060
2061 goto std_return;
2062
2063 abort_rele:
2064 /*
2065 * Wait until after the current transaction is aborted to
2066 * release the inode. This prevents recursive transactions
2067 * and deadlocks from xfs_inactive.
2068 */
2069 cancel_flags |= XFS_TRANS_ABORT;
2070 xfs_trans_cancel(tp, cancel_flags);
2071 IRELE(ip);
2072
2073 XFS_QM_DQRELE(mp, udqp);
2074 XFS_QM_DQRELE(mp, gdqp);
2075
2076 goto std_return;
2077}
2078
2079#ifdef DEBUG
2080/*
2081 * Some counters to see if (and how often) we are hitting some deadlock
2082 * prevention code paths.
2083 */
2084
2085int xfs_rm_locks;
2086int xfs_rm_lock_delays;
2087int xfs_rm_attempts;
2088#endif
2089
2090/*
2091 * The following routine will lock the inodes associated with the
2092 * directory and the named entry in the directory. The locks are
2093 * acquired in increasing inode number.
2094 *
2095 * If the entry is "..", then only the directory is locked. The
2096 * vnode ref count will still include that from the .. entry in
2097 * this case.
2098 *
2099 * There is a deadlock we need to worry about. If the locked directory is
2100 * in the AIL, it might be blocking up the log. The next inode we lock
2101 * could be already locked by another thread waiting for log space (e.g
2102 * a permanent log reservation with a long running transaction (see
2103 * xfs_itruncate_finish)). To solve this, we must check if the directory
2104 * is in the ail and use lock_nowait. If we can't lock, we need to
2105 * drop the inode lock on the directory and try again. xfs_iunlock will
2106 * potentially push the tail if we were holding up the log.
2107 */
2108STATIC int
2109xfs_lock_dir_and_entry(
2110 xfs_inode_t *dp,
2111 vname_t *dentry,
2112 xfs_inode_t *ip) /* inode of entry 'name' */
2113{
2114 int attempts;
2115 xfs_ino_t e_inum;
2116 xfs_inode_t *ips[2];
2117 xfs_log_item_t *lp;
2118
2119#ifdef DEBUG
2120 xfs_rm_locks++;
2121#endif
2122 attempts = 0;
2123
2124again:
2125 xfs_ilock(dp, XFS_ILOCK_EXCL);
2126
2127 e_inum = ip->i_ino;
2128
2129 ITRACE(ip);
2130
2131 /*
2132 * We want to lock in increasing inum. Since we've already
2133 * acquired the lock on the directory, we may need to release
2134 * if if the inum of the entry turns out to be less.
2135 */
2136 if (e_inum > dp->i_ino) {
2137 /*
2138 * We are already in the right order, so just
2139 * lock on the inode of the entry.
2140 * We need to use nowait if dp is in the AIL.
2141 */
2142
2143 lp = (xfs_log_item_t *)dp->i_itemp;
2144 if (lp && (lp->li_flags & XFS_LI_IN_AIL)) {
2145 if (!xfs_ilock_nowait(ip, XFS_ILOCK_EXCL)) {
2146 attempts++;
2147#ifdef DEBUG
2148 xfs_rm_attempts++;
2149#endif
2150
2151 /*
2152 * Unlock dp and try again.
2153 * xfs_iunlock will try to push the tail
2154 * if the inode is in the AIL.
2155 */
2156
2157 xfs_iunlock(dp, XFS_ILOCK_EXCL);
2158
2159 if ((attempts % 5) == 0) {
2160 delay(1); /* Don't just spin the CPU */
2161#ifdef DEBUG
2162 xfs_rm_lock_delays++;
2163#endif
2164 }
2165 goto again;
2166 }
2167 } else {
2168 xfs_ilock(ip, XFS_ILOCK_EXCL);
2169 }
2170 } else if (e_inum < dp->i_ino) {
2171 xfs_iunlock(dp, XFS_ILOCK_EXCL);
2172
2173 ips[0] = ip;
2174 ips[1] = dp;
2175 xfs_lock_inodes(ips, 2, 0, XFS_ILOCK_EXCL);
2176 }
2177 /* else e_inum == dp->i_ino */
2178 /* This can happen if we're asked to lock /x/..
2179 * the entry is "..", which is also the parent directory.
2180 */
2181
2182 return 0;
2183}
2184
2185#ifdef DEBUG
2186int xfs_locked_n;
2187int xfs_small_retries;
2188int xfs_middle_retries;
2189int xfs_lots_retries;
2190int xfs_lock_delays;
2191#endif
2192
2193/*
2194 * The following routine will lock n inodes in exclusive mode.
2195 * We assume the caller calls us with the inodes in i_ino order.
2196 *
2197 * We need to detect deadlock where an inode that we lock
2198 * is in the AIL and we start waiting for another inode that is locked
2199 * by a thread in a long running transaction (such as truncate). This can
2200 * result in deadlock since the long running trans might need to wait
2201 * for the inode we just locked in order to push the tail and free space
2202 * in the log.
2203 */
2204void
2205xfs_lock_inodes(
2206 xfs_inode_t **ips,
2207 int inodes,
2208 int first_locked,
2209 uint lock_mode)
2210{
2211 int attempts = 0, i, j, try_lock;
2212 xfs_log_item_t *lp;
2213
2214 ASSERT(ips && (inodes >= 2)); /* we need at least two */
2215
2216 if (first_locked) {
2217 try_lock = 1;
2218 i = 1;
2219 } else {
2220 try_lock = 0;
2221 i = 0;
2222 }
2223
2224again:
2225 for (; i < inodes; i++) {
2226 ASSERT(ips[i]);
2227
2228 if (i && (ips[i] == ips[i-1])) /* Already locked */
2229 continue;
2230
2231 /*
2232 * If try_lock is not set yet, make sure all locked inodes
2233 * are not in the AIL.
2234 * If any are, set try_lock to be used later.
2235 */
2236
2237 if (!try_lock) {
2238 for (j = (i - 1); j >= 0 && !try_lock; j--) {
2239 lp = (xfs_log_item_t *)ips[j]->i_itemp;
2240 if (lp && (lp->li_flags & XFS_LI_IN_AIL)) {
2241 try_lock++;
2242 }
2243 }
2244 }
2245
2246 /*
2247 * If any of the previous locks we have locked is in the AIL,
2248 * we must TRY to get the second and subsequent locks. If
2249 * we can't get any, we must release all we have
2250 * and try again.
2251 */
2252
2253 if (try_lock) {
2254 /* try_lock must be 0 if i is 0. */
2255 /*
2256 * try_lock means we have an inode locked
2257 * that is in the AIL.
2258 */
2259 ASSERT(i != 0);
2260 if (!xfs_ilock_nowait(ips[i], lock_mode)) {
2261 attempts++;
2262
2263 /*
2264 * Unlock all previous guys and try again.
2265 * xfs_iunlock will try to push the tail
2266 * if the inode is in the AIL.
2267 */
2268
2269 for(j = i - 1; j >= 0; j--) {
2270
2271 /*
2272 * Check to see if we've already
2273 * unlocked this one.
2274 * Not the first one going back,
2275 * and the inode ptr is the same.
2276 */
2277 if ((j != (i - 1)) && ips[j] ==
2278 ips[j+1])
2279 continue;
2280
2281 xfs_iunlock(ips[j], lock_mode);
2282 }
2283
2284 if ((attempts % 5) == 0) {
2285 delay(1); /* Don't just spin the CPU */
2286#ifdef DEBUG
2287 xfs_lock_delays++;
2288#endif
2289 }
2290 i = 0;
2291 try_lock = 0;
2292 goto again;
2293 }
2294 } else {
2295 xfs_ilock(ips[i], lock_mode);
2296 }
2297 }
2298
2299#ifdef DEBUG
2300 if (attempts) {
2301 if (attempts < 5) xfs_small_retries++;
2302 else if (attempts < 100) xfs_middle_retries++;
2303 else xfs_lots_retries++;
2304 } else {
2305 xfs_locked_n++;
2306 }
2307#endif
2308}
2309
2310#ifdef DEBUG
2311#define REMOVE_DEBUG_TRACE(x) {remove_which_error_return = (x);}
2312int remove_which_error_return = 0;
2313#else /* ! DEBUG */
2314#define REMOVE_DEBUG_TRACE(x)
2315#endif /* ! DEBUG */
2316
2317
2318/*
2319 * xfs_remove
2320 *
2321 */
2322STATIC int
2323xfs_remove(
2324 bhv_desc_t *dir_bdp,
2325 vname_t *dentry,
2326 cred_t *credp)
2327{
2328 vnode_t *dir_vp;
2329 char *name = VNAME(dentry);
2330 xfs_inode_t *dp, *ip;
2331 xfs_trans_t *tp = NULL;
2332 xfs_mount_t *mp;
2333 int error = 0;
2334 xfs_bmap_free_t free_list;
2335 xfs_fsblock_t first_block;
2336 int cancel_flags;
2337 int committed;
2338 int dm_di_mode = 0;
2339 int link_zero;
2340 uint resblks;
2341 int namelen;
2342
2343 dir_vp = BHV_TO_VNODE(dir_bdp);
2344 vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
2345
2346 dp = XFS_BHVTOI(dir_bdp);
2347 mp = dp->i_mount;
2348
2349 if (XFS_FORCED_SHUTDOWN(mp))
2350 return XFS_ERROR(EIO);
2351
2352 namelen = VNAMELEN(dentry);
2353
2354 if (DM_EVENT_ENABLED(dir_vp->v_vfsp, dp, DM_EVENT_REMOVE)) {
2355 error = XFS_SEND_NAMESP(mp, DM_EVENT_REMOVE, dir_vp,
2356 DM_RIGHT_NULL, NULL, DM_RIGHT_NULL,
2357 name, NULL, 0, 0, 0);
2358 if (error)
2359 return error;
2360 }
2361
2362 /* From this point on, return through std_return */
2363 ip = NULL;
2364
2365 /*
2366 * We need to get a reference to ip before we get our log
2367 * reservation. The reason for this is that we cannot call
2368 * xfs_iget for an inode for which we do not have a reference
2369 * once we've acquired a log reservation. This is because the
2370 * inode we are trying to get might be in xfs_inactive going
2371 * for a log reservation. Since we'll have to wait for the
2372 * inactive code to complete before returning from xfs_iget,
2373 * we need to make sure that we don't have log space reserved
2374 * when we call xfs_iget. Instead we get an unlocked referece
2375 * to the inode before getting our log reservation.
2376 */
2377 error = xfs_get_dir_entry(dentry, &ip);
2378 if (error) {
2379 REMOVE_DEBUG_TRACE(__LINE__);
2380 goto std_return;
2381 }
2382
2383 dm_di_mode = ip->i_d.di_mode;
2384
2385 vn_trace_entry(XFS_ITOV(ip), __FUNCTION__, (inst_t *)__return_address);
2386
2387 ITRACE(ip);
2388
2389 error = XFS_QM_DQATTACH(mp, dp, 0);
2390 if (!error && dp != ip)
2391 error = XFS_QM_DQATTACH(mp, ip, 0);
2392 if (error) {
2393 REMOVE_DEBUG_TRACE(__LINE__);
2394 IRELE(ip);
2395 goto std_return;
2396 }
2397
2398 tp = xfs_trans_alloc(mp, XFS_TRANS_REMOVE);
2399 cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
2400 /*
2401 * We try to get the real space reservation first,
2402 * allowing for directory btree deletion(s) implying
2403 * possible bmap insert(s). If we can't get the space
2404 * reservation then we use 0 instead, and avoid the bmap
2405 * btree insert(s) in the directory code by, if the bmap
2406 * insert tries to happen, instead trimming the LAST
2407 * block from the directory.
2408 */
2409 resblks = XFS_REMOVE_SPACE_RES(mp);
2410 error = xfs_trans_reserve(tp, resblks, XFS_REMOVE_LOG_RES(mp), 0,
2411 XFS_TRANS_PERM_LOG_RES, XFS_REMOVE_LOG_COUNT);
2412 if (error == ENOSPC) {
2413 resblks = 0;
2414 error = xfs_trans_reserve(tp, 0, XFS_REMOVE_LOG_RES(mp), 0,
2415 XFS_TRANS_PERM_LOG_RES, XFS_REMOVE_LOG_COUNT);
2416 }
2417 if (error) {
2418 ASSERT(error != ENOSPC);
2419 REMOVE_DEBUG_TRACE(__LINE__);
2420 xfs_trans_cancel(tp, 0);
2421 IRELE(ip);
2422 return error;
2423 }
2424
2425 error = xfs_lock_dir_and_entry(dp, dentry, ip);
2426 if (error) {
2427 REMOVE_DEBUG_TRACE(__LINE__);
2428 xfs_trans_cancel(tp, cancel_flags);
2429 IRELE(ip);
2430 goto std_return;
2431 }
2432
2433 /*
2434 * At this point, we've gotten both the directory and the entry
2435 * inodes locked.
2436 */
2437 xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
2438 if (dp != ip) {
2439 /*
2440 * Increment vnode ref count only in this case since
2441 * there's an extra vnode reference in the case where
2442 * dp == ip.
2443 */
2444 IHOLD(dp);
2445 xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
2446 }
2447
2448 /*
2449 * Entry must exist since we did a lookup in xfs_lock_dir_and_entry.
2450 */
2451 XFS_BMAP_INIT(&free_list, &first_block);
2452 error = XFS_DIR_REMOVENAME(mp, tp, dp, name, namelen, ip->i_ino,
2453 &first_block, &free_list, 0);
2454 if (error) {
2455 ASSERT(error != ENOENT);
2456 REMOVE_DEBUG_TRACE(__LINE__);
2457 goto error1;
2458 }
2459 xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
2460
2461 dp->i_gen++;
2462 xfs_trans_log_inode(tp, dp, XFS_ILOG_CORE);
2463
2464 error = xfs_droplink(tp, ip);
2465 if (error) {
2466 REMOVE_DEBUG_TRACE(__LINE__);
2467 goto error1;
2468 }
2469
2470 /* Determine if this is the last link while
2471 * we are in the transaction.
2472 */
2473 link_zero = (ip)->i_d.di_nlink==0;
2474
2475 /*
2476 * Take an extra ref on the inode so that it doesn't
2477 * go to xfs_inactive() from within the commit.
2478 */
2479 IHOLD(ip);
2480
2481 /*
2482 * If this is a synchronous mount, make sure that the
2483 * remove transaction goes to disk before returning to
2484 * the user.
2485 */
2486 if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
2487 xfs_trans_set_sync(tp);
2488 }
2489
2490 error = xfs_bmap_finish(&tp, &free_list, first_block, &committed);
2491 if (error) {
2492 REMOVE_DEBUG_TRACE(__LINE__);
2493 goto error_rele;
2494 }
2495
2496 error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
2497 if (error) {
2498 IRELE(ip);
2499 goto std_return;
2500 }
2501
2502 /*
2503 * Before we drop our extra reference to the inode, purge it
2504 * from the refcache if it is there. By waiting until afterwards
2505 * to do the IRELE, we ensure that we won't go inactive in the
2506 * xfs_refcache_purge_ip routine (although that would be OK).
2507 */
2508 xfs_refcache_purge_ip(ip);
2509
2510 vn_trace_exit(XFS_ITOV(ip), __FUNCTION__, (inst_t *)__return_address);
2511
2512 /*
2513 * Let interposed file systems know about removed links.
2514 */
2515 VOP_LINK_REMOVED(XFS_ITOV(ip), dir_vp, link_zero);
2516
2517 IRELE(ip);
2518
2519/* Fall through to std_return with error = 0 */
2520 std_return:
2521 if (DM_EVENT_ENABLED(dir_vp->v_vfsp, dp,
2522 DM_EVENT_POSTREMOVE)) {
2523 (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTREMOVE,
2524 dir_vp, DM_RIGHT_NULL,
2525 NULL, DM_RIGHT_NULL,
2526 name, NULL, dm_di_mode, error, 0);
2527 }
2528 return error;
2529
2530 error1:
2531 xfs_bmap_cancel(&free_list);
2532 cancel_flags |= XFS_TRANS_ABORT;
2533 xfs_trans_cancel(tp, cancel_flags);
2534 goto std_return;
2535
2536 error_rele:
2537 /*
2538 * In this case make sure to not release the inode until after
2539 * the current transaction is aborted. Releasing it beforehand
2540 * can cause us to go to xfs_inactive and start a recursive
2541 * transaction which can easily deadlock with the current one.
2542 */
2543 xfs_bmap_cancel(&free_list);
2544 cancel_flags |= XFS_TRANS_ABORT;
2545 xfs_trans_cancel(tp, cancel_flags);
2546
2547 /*
2548 * Before we drop our extra reference to the inode, purge it
2549 * from the refcache if it is there. By waiting until afterwards
2550 * to do the IRELE, we ensure that we won't go inactive in the
2551 * xfs_refcache_purge_ip routine (although that would be OK).
2552 */
2553 xfs_refcache_purge_ip(ip);
2554
2555 IRELE(ip);
2556
2557 goto std_return;
2558}
2559
2560
2561/*
2562 * xfs_link
2563 *
2564 */
2565STATIC int
2566xfs_link(
2567 bhv_desc_t *target_dir_bdp,
2568 vnode_t *src_vp,
2569 vname_t *dentry,
2570 cred_t *credp)
2571{
2572 xfs_inode_t *tdp, *sip;
2573 xfs_trans_t *tp;
2574 xfs_mount_t *mp;
2575 xfs_inode_t *ips[2];
2576 int error;
2577 xfs_bmap_free_t free_list;
2578 xfs_fsblock_t first_block;
2579 int cancel_flags;
2580 int committed;
2581 vnode_t *target_dir_vp;
2582 bhv_desc_t *src_bdp;
2583 int resblks;
2584 char *target_name = VNAME(dentry);
2585 int target_namelen;
2586
2587 target_dir_vp = BHV_TO_VNODE(target_dir_bdp);
2588 vn_trace_entry(target_dir_vp, __FUNCTION__, (inst_t *)__return_address);
2589 vn_trace_entry(src_vp, __FUNCTION__, (inst_t *)__return_address);
2590
2591 target_namelen = VNAMELEN(dentry);
0432dab2 2592 if (VN_ISDIR(src_vp))
1da177e4
LT
2593 return XFS_ERROR(EPERM);
2594
1da177e4 2595 src_bdp = vn_bhv_lookup_unlocked(VN_BHV_HEAD(src_vp), &xfs_vnodeops);
1da177e4
LT
2596 sip = XFS_BHVTOI(src_bdp);
2597 tdp = XFS_BHVTOI(target_dir_bdp);
2598 mp = tdp->i_mount;
2599 if (XFS_FORCED_SHUTDOWN(mp))
2600 return XFS_ERROR(EIO);
2601
2602 if (DM_EVENT_ENABLED(src_vp->v_vfsp, tdp, DM_EVENT_LINK)) {
2603 error = XFS_SEND_NAMESP(mp, DM_EVENT_LINK,
2604 target_dir_vp, DM_RIGHT_NULL,
2605 src_vp, DM_RIGHT_NULL,
2606 target_name, NULL, 0, 0, 0);
2607 if (error)
2608 return error;
2609 }
2610
2611 /* Return through std_return after this point. */
2612
2613 error = XFS_QM_DQATTACH(mp, sip, 0);
2614 if (!error && sip != tdp)
2615 error = XFS_QM_DQATTACH(mp, tdp, 0);
2616 if (error)
2617 goto std_return;
2618
2619 tp = xfs_trans_alloc(mp, XFS_TRANS_LINK);
2620 cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
2621 resblks = XFS_LINK_SPACE_RES(mp, target_namelen);
2622 error = xfs_trans_reserve(tp, resblks, XFS_LINK_LOG_RES(mp), 0,
2623 XFS_TRANS_PERM_LOG_RES, XFS_LINK_LOG_COUNT);
2624 if (error == ENOSPC) {
2625 resblks = 0;
2626 error = xfs_trans_reserve(tp, 0, XFS_LINK_LOG_RES(mp), 0,
2627 XFS_TRANS_PERM_LOG_RES, XFS_LINK_LOG_COUNT);
2628 }
2629 if (error) {
2630 cancel_flags = 0;
2631 goto error_return;
2632 }
2633
2634 if (sip->i_ino < tdp->i_ino) {
2635 ips[0] = sip;
2636 ips[1] = tdp;
2637 } else {
2638 ips[0] = tdp;
2639 ips[1] = sip;
2640 }
2641
2642 xfs_lock_inodes(ips, 2, 0, XFS_ILOCK_EXCL);
2643
2644 /*
2645 * Increment vnode ref counts since xfs_trans_commit &
2646 * xfs_trans_cancel will both unlock the inodes and
2647 * decrement the associated ref counts.
2648 */
2649 VN_HOLD(src_vp);
2650 VN_HOLD(target_dir_vp);
2651 xfs_trans_ijoin(tp, sip, XFS_ILOCK_EXCL);
2652 xfs_trans_ijoin(tp, tdp, XFS_ILOCK_EXCL);
2653
2654 /*
2655 * If the source has too many links, we can't make any more to it.
2656 */
2657 if (sip->i_d.di_nlink >= XFS_MAXLINK) {
2658 error = XFS_ERROR(EMLINK);
2659 goto error_return;
2660 }
2661
365ca83d
NS
2662 /*
2663 * If we are using project inheritance, we only allow hard link
2664 * creation in our tree when the project IDs are the same; else
2665 * the tree quota mechanism could be circumvented.
2666 */
2667 if (unlikely((tdp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT) &&
2668 (tdp->i_d.di_projid != sip->i_d.di_projid))) {
2669 error = XFS_ERROR(EPERM);
2670 goto error_return;
2671 }
2672
1da177e4
LT
2673 if (resblks == 0 &&
2674 (error = XFS_DIR_CANENTER(mp, tp, tdp, target_name,
2675 target_namelen)))
2676 goto error_return;
2677
2678 XFS_BMAP_INIT(&free_list, &first_block);
2679
2680 error = XFS_DIR_CREATENAME(mp, tp, tdp, target_name, target_namelen,
2681 sip->i_ino, &first_block, &free_list,
2682 resblks);
2683 if (error)
2684 goto abort_return;
2685 xfs_ichgtime(tdp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
2686 tdp->i_gen++;
2687 xfs_trans_log_inode(tp, tdp, XFS_ILOG_CORE);
2688
2689 error = xfs_bumplink(tp, sip);
2690 if (error) {
2691 goto abort_return;
2692 }
2693
2694 /*
2695 * If this is a synchronous mount, make sure that the
2696 * link transaction goes to disk before returning to
2697 * the user.
2698 */
2699 if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
2700 xfs_trans_set_sync(tp);
2701 }
2702
2703 error = xfs_bmap_finish (&tp, &free_list, first_block, &committed);
2704 if (error) {
2705 xfs_bmap_cancel(&free_list);
2706 goto abort_return;
2707 }
2708
2709 error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
2710 if (error) {
2711 goto std_return;
2712 }
2713
2714 /* Fall through to std_return with error = 0. */
2715std_return:
2716 if (DM_EVENT_ENABLED(src_vp->v_vfsp, sip,
2717 DM_EVENT_POSTLINK)) {
2718 (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTLINK,
2719 target_dir_vp, DM_RIGHT_NULL,
2720 src_vp, DM_RIGHT_NULL,
2721 target_name, NULL, 0, error, 0);
2722 }
2723 return error;
2724
2725 abort_return:
2726 cancel_flags |= XFS_TRANS_ABORT;
2727 /* FALLTHROUGH */
2728 error_return:
2729 xfs_trans_cancel(tp, cancel_flags);
2730
2731 goto std_return;
2732}
2733/*
2734 * xfs_mkdir
2735 *
2736 */
2737STATIC int
2738xfs_mkdir(
2739 bhv_desc_t *dir_bdp,
2740 vname_t *dentry,
2741 vattr_t *vap,
2742 vnode_t **vpp,
2743 cred_t *credp)
2744{
2745 char *dir_name = VNAME(dentry);
2746 xfs_inode_t *dp;
2747 xfs_inode_t *cdp; /* inode of created dir */
2748 vnode_t *cvp; /* vnode of created dir */
2749 xfs_trans_t *tp;
2750 xfs_mount_t *mp;
2751 int cancel_flags;
2752 int error;
2753 int committed;
2754 xfs_bmap_free_t free_list;
2755 xfs_fsblock_t first_block;
2756 vnode_t *dir_vp;
2757 boolean_t dp_joined_to_trans;
2758 boolean_t created = B_FALSE;
2759 int dm_event_sent = 0;
2760 xfs_prid_t prid;
2761 struct xfs_dquot *udqp, *gdqp;
2762 uint resblks;
2763 int dm_di_mode;
2764 int dir_namelen;
2765
2766 dir_vp = BHV_TO_VNODE(dir_bdp);
2767 dp = XFS_BHVTOI(dir_bdp);
2768 mp = dp->i_mount;
2769
2770 if (XFS_FORCED_SHUTDOWN(mp))
2771 return XFS_ERROR(EIO);
2772
2773 dir_namelen = VNAMELEN(dentry);
2774
2775 tp = NULL;
2776 dp_joined_to_trans = B_FALSE;
0432dab2 2777 dm_di_mode = vap->va_mode;
1da177e4
LT
2778
2779 if (DM_EVENT_ENABLED(dir_vp->v_vfsp, dp, DM_EVENT_CREATE)) {
2780 error = XFS_SEND_NAMESP(mp, DM_EVENT_CREATE,
2781 dir_vp, DM_RIGHT_NULL, NULL,
2782 DM_RIGHT_NULL, dir_name, NULL,
2783 dm_di_mode, 0, 0);
2784 if (error)
2785 return error;
2786 dm_event_sent = 1;
2787 }
2788
2789 /* Return through std_return after this point. */
2790
2791 vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
2792
2793 mp = dp->i_mount;
2794 udqp = gdqp = NULL;
365ca83d
NS
2795 if (dp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT)
2796 prid = dp->i_d.di_projid;
2797 else if (vap->va_mask & XFS_AT_PROJID)
1da177e4
LT
2798 prid = (xfs_prid_t)vap->va_projid;
2799 else
2800 prid = (xfs_prid_t)dfltprid;
2801
2802 /*
2803 * Make sure that we have allocated dquot(s) on disk.
2804 */
2805 error = XFS_QM_DQVOPALLOC(mp, dp,
c8ad20ff 2806 current_fsuid(credp), current_fsgid(credp), prid,
1da177e4
LT
2807 XFS_QMOPT_QUOTALL | XFS_QMOPT_INHERIT, &udqp, &gdqp);
2808 if (error)
2809 goto std_return;
2810
2811 tp = xfs_trans_alloc(mp, XFS_TRANS_MKDIR);
2812 cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
2813 resblks = XFS_MKDIR_SPACE_RES(mp, dir_namelen);
2814 error = xfs_trans_reserve(tp, resblks, XFS_MKDIR_LOG_RES(mp), 0,
2815 XFS_TRANS_PERM_LOG_RES, XFS_MKDIR_LOG_COUNT);
2816 if (error == ENOSPC) {
2817 resblks = 0;
2818 error = xfs_trans_reserve(tp, 0, XFS_MKDIR_LOG_RES(mp), 0,
2819 XFS_TRANS_PERM_LOG_RES,
2820 XFS_MKDIR_LOG_COUNT);
2821 }
2822 if (error) {
2823 cancel_flags = 0;
2824 dp = NULL;
2825 goto error_return;
2826 }
2827
2828 xfs_ilock(dp, XFS_ILOCK_EXCL);
2829
2830 /*
2831 * Check for directory link count overflow.
2832 */
2833 if (dp->i_d.di_nlink >= XFS_MAXLINK) {
2834 error = XFS_ERROR(EMLINK);
2835 goto error_return;
2836 }
2837
2838 /*
2839 * Reserve disk quota and the inode.
2840 */
2841 error = XFS_TRANS_RESERVE_QUOTA(mp, tp, udqp, gdqp, resblks, 1, 0);
2842 if (error)
2843 goto error_return;
2844
2845 if (resblks == 0 &&
2846 (error = XFS_DIR_CANENTER(mp, tp, dp, dir_name, dir_namelen)))
2847 goto error_return;
2848 /*
2849 * create the directory inode.
2850 */
0432dab2 2851 error = xfs_dir_ialloc(&tp, dp, vap->va_mode, 2,
1da177e4
LT
2852 0, credp, prid, resblks > 0,
2853 &cdp, NULL);
2854 if (error) {
2855 if (error == ENOSPC)
2856 goto error_return;
2857 goto abort_return;
2858 }
2859 ITRACE(cdp);
2860
2861 /*
2862 * Now we add the directory inode to the transaction.
2863 * We waited until now since xfs_dir_ialloc might start
2864 * a new transaction. Had we joined the transaction
2865 * earlier, the locks might have gotten released.
2866 */
2867 VN_HOLD(dir_vp);
2868 xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
2869 dp_joined_to_trans = B_TRUE;
2870
2871 XFS_BMAP_INIT(&free_list, &first_block);
2872
2873 error = XFS_DIR_CREATENAME(mp, tp, dp, dir_name, dir_namelen,
2874 cdp->i_ino, &first_block, &free_list,
2875 resblks ? resblks - XFS_IALLOC_SPACE_RES(mp) : 0);
2876 if (error) {
2877 ASSERT(error != ENOSPC);
2878 goto error1;
2879 }
2880 xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
2881
2882 /*
2883 * Bump the in memory version number of the parent directory
2884 * so that other processes accessing it will recognize that
2885 * the directory has changed.
2886 */
2887 dp->i_gen++;
2888
2889 error = XFS_DIR_INIT(mp, tp, cdp, dp);
2890 if (error) {
2891 goto error2;
2892 }
2893
2894 cdp->i_gen = 1;
2895 error = xfs_bumplink(tp, dp);
2896 if (error) {
2897 goto error2;
2898 }
2899
2900 cvp = XFS_ITOV(cdp);
2901
2902 created = B_TRUE;
2903
2904 *vpp = cvp;
2905 IHOLD(cdp);
2906
2907 /*
2908 * Attach the dquots to the new inode and modify the icount incore.
2909 */
2910 XFS_QM_DQVOPCREATE(mp, tp, cdp, udqp, gdqp);
2911
2912 /*
2913 * If this is a synchronous mount, make sure that the
2914 * mkdir transaction goes to disk before returning to
2915 * the user.
2916 */
2917 if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
2918 xfs_trans_set_sync(tp);
2919 }
2920
2921 error = xfs_bmap_finish(&tp, &free_list, first_block, &committed);
2922 if (error) {
2923 IRELE(cdp);
2924 goto error2;
2925 }
2926
2927 error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
2928 XFS_QM_DQRELE(mp, udqp);
2929 XFS_QM_DQRELE(mp, gdqp);
2930 if (error) {
2931 IRELE(cdp);
2932 }
2933
2934 /* Fall through to std_return with error = 0 or errno from
2935 * xfs_trans_commit. */
2936
2937std_return:
2938 if ( (created || (error != 0 && dm_event_sent != 0)) &&
2939 DM_EVENT_ENABLED(dir_vp->v_vfsp, XFS_BHVTOI(dir_bdp),
2940 DM_EVENT_POSTCREATE)) {
2941 (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTCREATE,
2942 dir_vp, DM_RIGHT_NULL,
2943 created ? XFS_ITOV(cdp):NULL,
2944 DM_RIGHT_NULL,
2945 dir_name, NULL,
2946 dm_di_mode, error, 0);
2947 }
2948 return error;
2949
2950 error2:
2951 error1:
2952 xfs_bmap_cancel(&free_list);
2953 abort_return:
2954 cancel_flags |= XFS_TRANS_ABORT;
2955 error_return:
2956 xfs_trans_cancel(tp, cancel_flags);
2957 XFS_QM_DQRELE(mp, udqp);
2958 XFS_QM_DQRELE(mp, gdqp);
2959
2960 if (!dp_joined_to_trans && (dp != NULL)) {
2961 xfs_iunlock(dp, XFS_ILOCK_EXCL);
2962 }
2963
2964 goto std_return;
2965}
2966
2967
2968/*
2969 * xfs_rmdir
2970 *
2971 */
2972STATIC int
2973xfs_rmdir(
2974 bhv_desc_t *dir_bdp,
2975 vname_t *dentry,
2976 cred_t *credp)
2977{
2978 char *name = VNAME(dentry);
2979 xfs_inode_t *dp;
2980 xfs_inode_t *cdp; /* child directory */
2981 xfs_trans_t *tp;
2982 xfs_mount_t *mp;
2983 int error;
2984 xfs_bmap_free_t free_list;
2985 xfs_fsblock_t first_block;
2986 int cancel_flags;
2987 int committed;
2988 vnode_t *dir_vp;
2989 int dm_di_mode = 0;
2990 int last_cdp_link;
2991 int namelen;
2992 uint resblks;
2993
2994 dir_vp = BHV_TO_VNODE(dir_bdp);
2995 dp = XFS_BHVTOI(dir_bdp);
2996 mp = dp->i_mount;
2997
2998 vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
2999
3000 if (XFS_FORCED_SHUTDOWN(XFS_BHVTOI(dir_bdp)->i_mount))
3001 return XFS_ERROR(EIO);
3002 namelen = VNAMELEN(dentry);
3003
3004 if (DM_EVENT_ENABLED(dir_vp->v_vfsp, dp, DM_EVENT_REMOVE)) {
3005 error = XFS_SEND_NAMESP(mp, DM_EVENT_REMOVE,
3006 dir_vp, DM_RIGHT_NULL,
3007 NULL, DM_RIGHT_NULL,
3008 name, NULL, 0, 0, 0);
3009 if (error)
3010 return XFS_ERROR(error);
3011 }
3012
3013 /* Return through std_return after this point. */
3014
3015 cdp = NULL;
3016
3017 /*
3018 * We need to get a reference to cdp before we get our log
3019 * reservation. The reason for this is that we cannot call
3020 * xfs_iget for an inode for which we do not have a reference
3021 * once we've acquired a log reservation. This is because the
3022 * inode we are trying to get might be in xfs_inactive going
3023 * for a log reservation. Since we'll have to wait for the
3024 * inactive code to complete before returning from xfs_iget,
3025 * we need to make sure that we don't have log space reserved
3026 * when we call xfs_iget. Instead we get an unlocked referece
3027 * to the inode before getting our log reservation.
3028 */
3029 error = xfs_get_dir_entry(dentry, &cdp);
3030 if (error) {
3031 REMOVE_DEBUG_TRACE(__LINE__);
3032 goto std_return;
3033 }
3034 mp = dp->i_mount;
3035 dm_di_mode = cdp->i_d.di_mode;
3036
3037 /*
3038 * Get the dquots for the inodes.
3039 */
3040 error = XFS_QM_DQATTACH(mp, dp, 0);
3041 if (!error && dp != cdp)
3042 error = XFS_QM_DQATTACH(mp, cdp, 0);
3043 if (error) {
3044 IRELE(cdp);
3045 REMOVE_DEBUG_TRACE(__LINE__);
3046 goto std_return;
3047 }
3048
3049 tp = xfs_trans_alloc(mp, XFS_TRANS_RMDIR);
3050 cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
3051 /*
3052 * We try to get the real space reservation first,
3053 * allowing for directory btree deletion(s) implying
3054 * possible bmap insert(s). If we can't get the space
3055 * reservation then we use 0 instead, and avoid the bmap
3056 * btree insert(s) in the directory code by, if the bmap
3057 * insert tries to happen, instead trimming the LAST
3058 * block from the directory.
3059 */
3060 resblks = XFS_REMOVE_SPACE_RES(mp);
3061 error = xfs_trans_reserve(tp, resblks, XFS_REMOVE_LOG_RES(mp), 0,
3062 XFS_TRANS_PERM_LOG_RES, XFS_DEFAULT_LOG_COUNT);
3063 if (error == ENOSPC) {
3064 resblks = 0;
3065 error = xfs_trans_reserve(tp, 0, XFS_REMOVE_LOG_RES(mp), 0,
3066 XFS_TRANS_PERM_LOG_RES, XFS_DEFAULT_LOG_COUNT);
3067 }
3068 if (error) {
3069 ASSERT(error != ENOSPC);
3070 cancel_flags = 0;
3071 IRELE(cdp);
3072 goto error_return;
3073 }
3074 XFS_BMAP_INIT(&free_list, &first_block);
3075
3076 /*
3077 * Now lock the child directory inode and the parent directory
3078 * inode in the proper order. This will take care of validating
3079 * that the directory entry for the child directory inode has
3080 * not changed while we were obtaining a log reservation.
3081 */
3082 error = xfs_lock_dir_and_entry(dp, dentry, cdp);
3083 if (error) {
3084 xfs_trans_cancel(tp, cancel_flags);
3085 IRELE(cdp);
3086 goto std_return;
3087 }
3088
3089 xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
3090 if (dp != cdp) {
3091 /*
3092 * Only increment the parent directory vnode count if
3093 * we didn't bump it in looking up cdp. The only time
3094 * we don't bump it is when we're looking up ".".
3095 */
3096 VN_HOLD(dir_vp);
3097 }
3098
3099 ITRACE(cdp);
3100 xfs_trans_ijoin(tp, cdp, XFS_ILOCK_EXCL);
3101
3102 ASSERT(cdp->i_d.di_nlink >= 2);
3103 if (cdp->i_d.di_nlink != 2) {
3104 error = XFS_ERROR(ENOTEMPTY);
3105 goto error_return;
3106 }
3107 if (!XFS_DIR_ISEMPTY(mp, cdp)) {
3108 error = XFS_ERROR(ENOTEMPTY);
3109 goto error_return;
3110 }
3111
3112 error = XFS_DIR_REMOVENAME(mp, tp, dp, name, namelen, cdp->i_ino,
3113 &first_block, &free_list, resblks);
3114 if (error) {
3115 goto error1;
3116 }
3117
3118 xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
3119
3120 /*
3121 * Bump the in memory generation count on the parent
3122 * directory so that other can know that it has changed.
3123 */
3124 dp->i_gen++;
3125
3126 /*
3127 * Drop the link from cdp's "..".
3128 */
3129 error = xfs_droplink(tp, dp);
3130 if (error) {
3131 goto error1;
3132 }
3133
3134 /*
3135 * Drop the link from dp to cdp.
3136 */
3137 error = xfs_droplink(tp, cdp);
3138 if (error) {
3139 goto error1;
3140 }
3141
3142 /*
3143 * Drop the "." link from cdp to self.
3144 */
3145 error = xfs_droplink(tp, cdp);
3146 if (error) {
3147 goto error1;
3148 }
3149
3150 /* Determine these before committing transaction */
3151 last_cdp_link = (cdp)->i_d.di_nlink==0;
3152
3153 /*
3154 * Take an extra ref on the child vnode so that it
3155 * does not go to xfs_inactive() from within the commit.
3156 */
3157 IHOLD(cdp);
3158
3159 /*
3160 * If this is a synchronous mount, make sure that the
3161 * rmdir transaction goes to disk before returning to
3162 * the user.
3163 */
3164 if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
3165 xfs_trans_set_sync(tp);
3166 }
3167
3168 error = xfs_bmap_finish (&tp, &free_list, first_block, &committed);
3169 if (error) {
3170 xfs_bmap_cancel(&free_list);
3171 xfs_trans_cancel(tp, (XFS_TRANS_RELEASE_LOG_RES |
3172 XFS_TRANS_ABORT));
3173 IRELE(cdp);
3174 goto std_return;
3175 }
3176
3177 error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
3178 if (error) {
3179 IRELE(cdp);
3180 goto std_return;
3181 }
3182
3183
3184 /*
3185 * Let interposed file systems know about removed links.
3186 */
3187 VOP_LINK_REMOVED(XFS_ITOV(cdp), dir_vp, last_cdp_link);
3188
3189 IRELE(cdp);
3190
3191 /* Fall through to std_return with error = 0 or the errno
3192 * from xfs_trans_commit. */
3193std_return:
3194 if (DM_EVENT_ENABLED(dir_vp->v_vfsp, dp, DM_EVENT_POSTREMOVE)) {
3195 (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTREMOVE,
3196 dir_vp, DM_RIGHT_NULL,
3197 NULL, DM_RIGHT_NULL,
3198 name, NULL, dm_di_mode,
3199 error, 0);
3200 }
3201 return error;
3202
3203 error1:
3204 xfs_bmap_cancel(&free_list);
3205 cancel_flags |= XFS_TRANS_ABORT;
3206 error_return:
3207 xfs_trans_cancel(tp, cancel_flags);
3208 goto std_return;
3209}
3210
3211
3212/*
3213 * xfs_readdir
3214 *
3215 * Read dp's entries starting at uiop->uio_offset and translate them into
3216 * bufsize bytes worth of struct dirents starting at bufbase.
3217 */
3218STATIC int
3219xfs_readdir(
3220 bhv_desc_t *dir_bdp,
3221 uio_t *uiop,
3222 cred_t *credp,
3223 int *eofp)
3224{
3225 xfs_inode_t *dp;
3226 xfs_trans_t *tp = NULL;
3227 int error = 0;
3228 uint lock_mode;
3229 xfs_off_t start_offset;
3230
3231 vn_trace_entry(BHV_TO_VNODE(dir_bdp), __FUNCTION__,
3232 (inst_t *)__return_address);
3233 dp = XFS_BHVTOI(dir_bdp);
3234
3235 if (XFS_FORCED_SHUTDOWN(dp->i_mount)) {
3236 return XFS_ERROR(EIO);
3237 }
3238
3239 lock_mode = xfs_ilock_map_shared(dp);
3240 start_offset = uiop->uio_offset;
3241 error = XFS_DIR_GETDENTS(dp->i_mount, tp, dp, uiop, eofp);
3242 if (start_offset != uiop->uio_offset) {
3243 xfs_ichgtime(dp, XFS_ICHGTIME_ACC);
3244 }
3245 xfs_iunlock_map_shared(dp, lock_mode);
3246 return error;
3247}
3248
3249
3250/*
3251 * xfs_symlink
3252 *
3253 */
3254STATIC int
3255xfs_symlink(
3256 bhv_desc_t *dir_bdp,
3257 vname_t *dentry,
3258 vattr_t *vap,
3259 char *target_path,
3260 vnode_t **vpp,
3261 cred_t *credp)
3262{
3263 xfs_trans_t *tp;
3264 xfs_mount_t *mp;
3265 xfs_inode_t *dp;
3266 xfs_inode_t *ip;
3267 int error;
3268 int pathlen;
3269 xfs_bmap_free_t free_list;
3270 xfs_fsblock_t first_block;
3271 boolean_t dp_joined_to_trans;
3272 vnode_t *dir_vp;
3273 uint cancel_flags;
3274 int committed;
3275 xfs_fileoff_t first_fsb;
3276 xfs_filblks_t fs_blocks;
3277 int nmaps;
3278 xfs_bmbt_irec_t mval[SYMLINK_MAPS];
3279 xfs_daddr_t d;
3280 char *cur_chunk;
3281 int byte_cnt;
3282 int n;
3283 xfs_buf_t *bp;
3284 xfs_prid_t prid;
3285 struct xfs_dquot *udqp, *gdqp;
3286 uint resblks;
3287 char *link_name = VNAME(dentry);
3288 int link_namelen;
3289
3290 *vpp = NULL;
3291 dir_vp = BHV_TO_VNODE(dir_bdp);
3292 dp = XFS_BHVTOI(dir_bdp);
3293 dp_joined_to_trans = B_FALSE;
3294 error = 0;
3295 ip = NULL;
3296 tp = NULL;
3297
3298 vn_trace_entry(dir_vp, __FUNCTION__, (inst_t *)__return_address);
3299
3300 mp = dp->i_mount;
3301
3302 if (XFS_FORCED_SHUTDOWN(mp))
3303 return XFS_ERROR(EIO);
3304
3305 link_namelen = VNAMELEN(dentry);
3306
3307 /*
3308 * Check component lengths of the target path name.
3309 */
3310 pathlen = strlen(target_path);
3311 if (pathlen >= MAXPATHLEN) /* total string too long */
3312 return XFS_ERROR(ENAMETOOLONG);
3313 if (pathlen >= MAXNAMELEN) { /* is any component too long? */
3314 int len, total;
3315 char *path;
3316
3317 for(total = 0, path = target_path; total < pathlen;) {
3318 /*
3319 * Skip any slashes.
3320 */
3321 while(*path == '/') {
3322 total++;
3323 path++;
3324 }
3325
3326 /*
3327 * Count up to the next slash or end of path.
3328 * Error out if the component is bigger than MAXNAMELEN.
3329 */
3330 for(len = 0; *path != '/' && total < pathlen;total++, path++) {
3331 if (++len >= MAXNAMELEN) {
3332 error = ENAMETOOLONG;
3333 return error;
3334 }
3335 }
3336 }
3337 }
3338
3339 if (DM_EVENT_ENABLED(dir_vp->v_vfsp, dp, DM_EVENT_SYMLINK)) {
3340 error = XFS_SEND_NAMESP(mp, DM_EVENT_SYMLINK, dir_vp,
3341 DM_RIGHT_NULL, NULL, DM_RIGHT_NULL,
3342 link_name, target_path, 0, 0, 0);
3343 if (error)
3344 return error;
3345 }
3346
3347 /* Return through std_return after this point. */
3348
3349 udqp = gdqp = NULL;
365ca83d
NS
3350 if (dp->i_d.di_flags & XFS_DIFLAG_PROJINHERIT)
3351 prid = dp->i_d.di_projid;
3352 else if (vap->va_mask & XFS_AT_PROJID)
1da177e4
LT
3353 prid = (xfs_prid_t)vap->va_projid;
3354 else
3355 prid = (xfs_prid_t)dfltprid;
3356
3357 /*
3358 * Make sure that we have allocated dquot(s) on disk.
3359 */
3360 error = XFS_QM_DQVOPALLOC(mp, dp,
c8ad20ff 3361 current_fsuid(credp), current_fsgid(credp), prid,
1da177e4
LT
3362 XFS_QMOPT_QUOTALL | XFS_QMOPT_INHERIT, &udqp, &gdqp);
3363 if (error)
3364 goto std_return;
3365
3366 tp = xfs_trans_alloc(mp, XFS_TRANS_SYMLINK);
3367 cancel_flags = XFS_TRANS_RELEASE_LOG_RES;
3368 /*
3369 * The symlink will fit into the inode data fork?
3370 * There can't be any attributes so we get the whole variable part.
3371 */
3372 if (pathlen <= XFS_LITINO(mp))
3373 fs_blocks = 0;
3374 else
3375 fs_blocks = XFS_B_TO_FSB(mp, pathlen);
3376 resblks = XFS_SYMLINK_SPACE_RES(mp, link_namelen, fs_blocks);
3377 error = xfs_trans_reserve(tp, resblks, XFS_SYMLINK_LOG_RES(mp), 0,
3378 XFS_TRANS_PERM_LOG_RES, XFS_SYMLINK_LOG_COUNT);
3379 if (error == ENOSPC && fs_blocks == 0) {
3380 resblks = 0;
3381 error = xfs_trans_reserve(tp, 0, XFS_SYMLINK_LOG_RES(mp), 0,
3382 XFS_TRANS_PERM_LOG_RES, XFS_SYMLINK_LOG_COUNT);
3383 }
3384 if (error) {
3385 cancel_flags = 0;
3386 dp = NULL;
3387 goto error_return;
3388 }
3389
3390 xfs_ilock(dp, XFS_ILOCK_EXCL);
3391
3392 /*
3393 * Check whether the directory allows new symlinks or not.
3394 */
3395 if (dp->i_d.di_flags & XFS_DIFLAG_NOSYMLINKS) {
3396 error = XFS_ERROR(EPERM);
3397 goto error_return;
3398 }
3399
3400 /*
3401 * Reserve disk quota : blocks and inode.
3402 */
3403 error = XFS_TRANS_RESERVE_QUOTA(mp, tp, udqp, gdqp, resblks, 1, 0);
3404 if (error)
3405 goto error_return;
3406
3407 /*
3408 * Check for ability to enter directory entry, if no space reserved.
3409 */
3410 if (resblks == 0 &&
3411 (error = XFS_DIR_CANENTER(mp, tp, dp, link_name, link_namelen)))
3412 goto error_return;
3413 /*
3414 * Initialize the bmap freelist prior to calling either
3415 * bmapi or the directory create code.
3416 */
3417 XFS_BMAP_INIT(&free_list, &first_block);
3418
3419 /*
3420 * Allocate an inode for the symlink.
3421 */
3422 error = xfs_dir_ialloc(&tp, dp, S_IFLNK | (vap->va_mode&~S_IFMT),
3423 1, 0, credp, prid, resblks > 0, &ip, NULL);
3424 if (error) {
3425 if (error == ENOSPC)
3426 goto error_return;
3427 goto error1;
3428 }
3429 ITRACE(ip);
3430
3431 VN_HOLD(dir_vp);
3432 xfs_trans_ijoin(tp, dp, XFS_ILOCK_EXCL);
3433 dp_joined_to_trans = B_TRUE;
3434
3435 /*
3436 * Also attach the dquot(s) to it, if applicable.
3437 */
3438 XFS_QM_DQVOPCREATE(mp, tp, ip, udqp, gdqp);
3439
3440 if (resblks)
3441 resblks -= XFS_IALLOC_SPACE_RES(mp);
3442 /*
3443 * If the symlink will fit into the inode, write it inline.
3444 */
3445 if (pathlen <= XFS_IFORK_DSIZE(ip)) {
3446 xfs_idata_realloc(ip, pathlen, XFS_DATA_FORK);
3447 memcpy(ip->i_df.if_u1.if_data, target_path, pathlen);
3448 ip->i_d.di_size = pathlen;
3449
3450 /*
3451 * The inode was initially created in extent format.
3452 */
3453 ip->i_df.if_flags &= ~(XFS_IFEXTENTS | XFS_IFBROOT);
3454 ip->i_df.if_flags |= XFS_IFINLINE;
3455
3456 ip->i_d.di_format = XFS_DINODE_FMT_LOCAL;
3457 xfs_trans_log_inode(tp, ip, XFS_ILOG_DDATA | XFS_ILOG_CORE);
3458
3459 } else {
3460 first_fsb = 0;
3461 nmaps = SYMLINK_MAPS;
3462
3463 error = xfs_bmapi(tp, ip, first_fsb, fs_blocks,
3464 XFS_BMAPI_WRITE | XFS_BMAPI_METADATA,
3465 &first_block, resblks, mval, &nmaps,
3466 &free_list);
3467 if (error) {
3468 goto error1;
3469 }
3470
3471 if (resblks)
3472 resblks -= fs_blocks;
3473 ip->i_d.di_size = pathlen;
3474 xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
3475
3476 cur_chunk = target_path;
3477 for (n = 0; n < nmaps; n++) {
3478 d = XFS_FSB_TO_DADDR(mp, mval[n].br_startblock);
3479 byte_cnt = XFS_FSB_TO_B(mp, mval[n].br_blockcount);
3480 bp = xfs_trans_get_buf(tp, mp->m_ddev_targp, d,
3481 BTOBB(byte_cnt), 0);
3482 ASSERT(bp && !XFS_BUF_GETERROR(bp));
3483 if (pathlen < byte_cnt) {
3484 byte_cnt = pathlen;
3485 }
3486 pathlen -= byte_cnt;
3487
3488 memcpy(XFS_BUF_PTR(bp), cur_chunk, byte_cnt);
3489 cur_chunk += byte_cnt;
3490
3491 xfs_trans_log_buf(tp, bp, 0, byte_cnt - 1);
3492 }
3493 }
3494
3495 /*
3496 * Create the directory entry for the symlink.
3497 */
3498 error = XFS_DIR_CREATENAME(mp, tp, dp, link_name, link_namelen,
3499 ip->i_ino, &first_block, &free_list, resblks);
3500 if (error) {
3501 goto error1;
3502 }
3503 xfs_ichgtime(dp, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
3504 xfs_trans_log_inode(tp, dp, XFS_ILOG_CORE);
3505
3506 /*
3507 * Bump the in memory version number of the parent directory
3508 * so that other processes accessing it will recognize that
3509 * the directory has changed.
3510 */
3511 dp->i_gen++;
3512
3513 /*
3514 * If this is a synchronous mount, make sure that the
3515 * symlink transaction goes to disk before returning to
3516 * the user.
3517 */
3518 if (mp->m_flags & (XFS_MOUNT_WSYNC|XFS_MOUNT_DIRSYNC)) {
3519 xfs_trans_set_sync(tp);
3520 }
3521
3522 /*
3523 * xfs_trans_commit normally decrements the vnode ref count
3524 * when it unlocks the inode. Since we want to return the
3525 * vnode to the caller, we bump the vnode ref count now.
3526 */
3527 IHOLD(ip);
3528
3529 error = xfs_bmap_finish(&tp, &free_list, first_block, &committed);
3530 if (error) {
3531 goto error2;
3532 }
3533 error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
3534 XFS_QM_DQRELE(mp, udqp);
3535 XFS_QM_DQRELE(mp, gdqp);
3536
3537 /* Fall through to std_return with error = 0 or errno from
3538 * xfs_trans_commit */
3539std_return:
3540 if (DM_EVENT_ENABLED(dir_vp->v_vfsp, XFS_BHVTOI(dir_bdp),
3541 DM_EVENT_POSTSYMLINK)) {
3542 (void) XFS_SEND_NAMESP(mp, DM_EVENT_POSTSYMLINK,
3543 dir_vp, DM_RIGHT_NULL,
3544 error ? NULL : XFS_ITOV(ip),
3545 DM_RIGHT_NULL, link_name, target_path,
3546 0, error, 0);
3547 }
3548
3549 if (!error) {
3550 vnode_t *vp;
3551
3552 ASSERT(ip);
3553 vp = XFS_ITOV(ip);
3554 *vpp = vp;
3555 }
3556 return error;
3557
3558 error2:
3559 IRELE(ip);
3560 error1:
3561 xfs_bmap_cancel(&free_list);
3562 cancel_flags |= XFS_TRANS_ABORT;
3563 error_return:
3564 xfs_trans_cancel(tp, cancel_flags);
3565 XFS_QM_DQRELE(mp, udqp);
3566 XFS_QM_DQRELE(mp, gdqp);
3567
3568 if (!dp_joined_to_trans && (dp != NULL)) {
3569 xfs_iunlock(dp, XFS_ILOCK_EXCL);
3570 }
3571
3572 goto std_return;
3573}
3574
3575
3576/*
3577 * xfs_fid2
3578 *
3579 * A fid routine that takes a pointer to a previously allocated
3580 * fid structure (like xfs_fast_fid) but uses a 64 bit inode number.
3581 */
3582STATIC int
3583xfs_fid2(
3584 bhv_desc_t *bdp,
3585 fid_t *fidp)
3586{
3587 xfs_inode_t *ip;
3588 xfs_fid2_t *xfid;
3589
3590 vn_trace_entry(BHV_TO_VNODE(bdp), __FUNCTION__,
3591 (inst_t *)__return_address);
3592 ASSERT(sizeof(fid_t) >= sizeof(xfs_fid2_t));
3593
3594 xfid = (xfs_fid2_t *)fidp;
3595 ip = XFS_BHVTOI(bdp);
3596 xfid->fid_len = sizeof(xfs_fid2_t) - sizeof(xfid->fid_len);
3597 xfid->fid_pad = 0;
3598 /*
3599 * use memcpy because the inode is a long long and there's no
3600 * assurance that xfid->fid_ino is properly aligned.
3601 */
3602 memcpy(&xfid->fid_ino, &ip->i_ino, sizeof(xfid->fid_ino));
3603 xfid->fid_gen = ip->i_d.di_gen;
3604
3605 return 0;
3606}
3607
3608
3609/*
3610 * xfs_rwlock
3611 */
3612int
3613xfs_rwlock(
3614 bhv_desc_t *bdp,
3615 vrwlock_t locktype)
3616{
3617 xfs_inode_t *ip;
3618 vnode_t *vp;
3619
3620 vp = BHV_TO_VNODE(bdp);
0432dab2 3621 if (VN_ISDIR(vp))
1da177e4
LT
3622 return 1;
3623 ip = XFS_BHVTOI(bdp);
3624 if (locktype == VRWLOCK_WRITE) {
3625 xfs_ilock(ip, XFS_IOLOCK_EXCL);
3626 } else if (locktype == VRWLOCK_TRY_READ) {
3627 return (xfs_ilock_nowait(ip, XFS_IOLOCK_SHARED));
3628 } else if (locktype == VRWLOCK_TRY_WRITE) {
3629 return (xfs_ilock_nowait(ip, XFS_IOLOCK_EXCL));
3630 } else {
3631 ASSERT((locktype == VRWLOCK_READ) ||
3632 (locktype == VRWLOCK_WRITE_DIRECT));
3633 xfs_ilock(ip, XFS_IOLOCK_SHARED);
3634 }
3635
3636 return 1;
3637}
3638
3639
3640/*
3641 * xfs_rwunlock
3642 */
3643void
3644xfs_rwunlock(
3645 bhv_desc_t *bdp,
3646 vrwlock_t locktype)
3647{
3648 xfs_inode_t *ip;
3649 vnode_t *vp;
3650
3651 vp = BHV_TO_VNODE(bdp);
0432dab2 3652 if (VN_ISDIR(vp))
1da177e4
LT
3653 return;
3654 ip = XFS_BHVTOI(bdp);
3655 if (locktype == VRWLOCK_WRITE) {
3656 /*
3657 * In the write case, we may have added a new entry to
3658 * the reference cache. This might store a pointer to
3659 * an inode to be released in this inode. If it is there,
3660 * clear the pointer and release the inode after unlocking
3661 * this one.
3662 */
3663 xfs_refcache_iunlock(ip, XFS_IOLOCK_EXCL);
3664 } else {
3665 ASSERT((locktype == VRWLOCK_READ) ||
3666 (locktype == VRWLOCK_WRITE_DIRECT));
3667 xfs_iunlock(ip, XFS_IOLOCK_SHARED);
3668 }
3669 return;
3670}
3671
3672STATIC int
3673xfs_inode_flush(
3674 bhv_desc_t *bdp,
3675 int flags)
3676{
3677 xfs_inode_t *ip;
3678 xfs_mount_t *mp;
3679 xfs_inode_log_item_t *iip;
3680 int error = 0;
3681
3682 ip = XFS_BHVTOI(bdp);
3683 mp = ip->i_mount;
3684 iip = ip->i_itemp;
3685
3686 if (XFS_FORCED_SHUTDOWN(mp))
3687 return XFS_ERROR(EIO);
3688
3689 /*
3690 * Bypass inodes which have already been cleaned by
3691 * the inode flush clustering code inside xfs_iflush
3692 */
3693 if ((ip->i_update_core == 0) &&
3694 ((iip == NULL) || !(iip->ili_format.ilf_fields & XFS_ILOG_ALL)))
3695 return 0;
3696
3697 if (flags & FLUSH_LOG) {
3698 if (iip && iip->ili_last_lsn) {
3699 xlog_t *log = mp->m_log;
3700 xfs_lsn_t sync_lsn;
3701 int s, log_flags = XFS_LOG_FORCE;
3702
3703 s = GRANT_LOCK(log);
3704 sync_lsn = log->l_last_sync_lsn;
3705 GRANT_UNLOCK(log, s);
3706
3707 if ((XFS_LSN_CMP(iip->ili_last_lsn, sync_lsn) <= 0))
3708 return 0;
3709
3710 if (flags & FLUSH_SYNC)
3711 log_flags |= XFS_LOG_SYNC;
3712 return xfs_log_force(mp, iip->ili_last_lsn, log_flags);
3713 }
3714 }
3715
3716 /*
3717 * We make this non-blocking if the inode is contended,
3718 * return EAGAIN to indicate to the caller that they
3719 * did not succeed. This prevents the flush path from
3720 * blocking on inodes inside another operation right
3721 * now, they get caught later by xfs_sync.
3722 */
3723 if (flags & FLUSH_INODE) {
3724 int flush_flags;
3725
3726 if (xfs_ipincount(ip))
3727 return EAGAIN;
3728
3729 if (flags & FLUSH_SYNC) {
3730 xfs_ilock(ip, XFS_ILOCK_SHARED);
3731 xfs_iflock(ip);
3732 } else if (xfs_ilock_nowait(ip, XFS_ILOCK_SHARED)) {
3733 if (xfs_ipincount(ip) || !xfs_iflock_nowait(ip)) {
3734 xfs_iunlock(ip, XFS_ILOCK_SHARED);
3735 return EAGAIN;
3736 }
3737 } else {
3738 return EAGAIN;
3739 }
3740
3741 if (flags & FLUSH_SYNC)
3742 flush_flags = XFS_IFLUSH_SYNC;
3743 else
3744 flush_flags = XFS_IFLUSH_ASYNC;
3745
3746 error = xfs_iflush(ip, flush_flags);
3747 xfs_iunlock(ip, XFS_ILOCK_SHARED);
3748 }
3749
3750 return error;
3751}
3752
3753
3754int
3755xfs_set_dmattrs (
3756 bhv_desc_t *bdp,
3757 u_int evmask,
3758 u_int16_t state,
3759 cred_t *credp)
3760{
3761 xfs_inode_t *ip;
3762 xfs_trans_t *tp;
3763 xfs_mount_t *mp;
3764 int error;
3765
3766 if (!capable(CAP_SYS_ADMIN))
3767 return XFS_ERROR(EPERM);
3768
3769 ip = XFS_BHVTOI(bdp);
3770 mp = ip->i_mount;
3771
3772 if (XFS_FORCED_SHUTDOWN(mp))
3773 return XFS_ERROR(EIO);
3774
3775 tp = xfs_trans_alloc(mp, XFS_TRANS_SET_DMATTRS);
3776 error = xfs_trans_reserve(tp, 0, XFS_ICHANGE_LOG_RES (mp), 0, 0, 0);
3777 if (error) {
3778 xfs_trans_cancel(tp, 0);
3779 return error;
3780 }
3781 xfs_ilock(ip, XFS_ILOCK_EXCL);
3782 xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
3783
3784 ip->i_iocore.io_dmevmask = ip->i_d.di_dmevmask = evmask;
3785 ip->i_iocore.io_dmstate = ip->i_d.di_dmstate = state;
3786
3787 xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
3788 IHOLD(ip);
3789 error = xfs_trans_commit(tp, 0, NULL);
3790
3791 return error;
3792}
3793
3794
3795/*
3796 * xfs_reclaim
3797 */
3798STATIC int
3799xfs_reclaim(
3800 bhv_desc_t *bdp)
3801{
3802 xfs_inode_t *ip;
3803 vnode_t *vp;
3804
3805 vp = BHV_TO_VNODE(bdp);
3806 ip = XFS_BHVTOI(bdp);
3807
3808 vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
3809
3810 ASSERT(!VN_MAPPED(vp));
3811
3812 /* bad inode, get out here ASAP */
3813 if (VN_BAD(vp)) {
3814 xfs_ireclaim(ip);
3815 return 0;
3816 }
3817
51c91ed5 3818 vn_iowait(vp);
1da177e4 3819
51c91ed5 3820 ASSERT(XFS_FORCED_SHUTDOWN(ip->i_mount) || ip->i_delayed_blks == 0);
1da177e4
LT
3821
3822 /* If we have nothing to flush with this inode then complete the
3823 * teardown now, otherwise break the link between the xfs inode
3824 * and the linux inode and clean up the xfs inode later. This
3825 * avoids flushing the inode to disk during the delete operation
3826 * itself.
3827 */
3828 if (!ip->i_update_core && (ip->i_itemp == NULL)) {
3829 xfs_ilock(ip, XFS_ILOCK_EXCL);
3830 xfs_iflock(ip);
3831 return xfs_finish_reclaim(ip, 1, XFS_IFLUSH_DELWRI_ELSE_SYNC);
3832 } else {
3833 xfs_mount_t *mp = ip->i_mount;
3834
3835 /* Protect sync from us */
3836 XFS_MOUNT_ILOCK(mp);
3837 vn_bhv_remove(VN_BHV_HEAD(vp), XFS_ITOBHV(ip));
3838 list_add_tail(&ip->i_reclaim, &mp->m_del_inodes);
3839 ip->i_flags |= XFS_IRECLAIMABLE;
3840 XFS_MOUNT_IUNLOCK(mp);
3841 }
3842 return 0;
3843}
3844
3845int
3846xfs_finish_reclaim(
3847 xfs_inode_t *ip,
3848 int locked,
3849 int sync_mode)
3850{
3851 xfs_ihash_t *ih = ip->i_hash;
3852 vnode_t *vp = XFS_ITOV_NULL(ip);
3853 int error;
3854
3855 if (vp && VN_BAD(vp))
3856 goto reclaim;
3857
3858 /* The hash lock here protects a thread in xfs_iget_core from
3859 * racing with us on linking the inode back with a vnode.
3860 * Once we have the XFS_IRECLAIM flag set it will not touch
3861 * us.
3862 */
3863 write_lock(&ih->ih_lock);
3864 if ((ip->i_flags & XFS_IRECLAIM) ||
3865 (!(ip->i_flags & XFS_IRECLAIMABLE) && vp == NULL)) {
3866 write_unlock(&ih->ih_lock);
3867 if (locked) {
3868 xfs_ifunlock(ip);
3869 xfs_iunlock(ip, XFS_ILOCK_EXCL);
3870 }
3871 return(1);
3872 }
3873 ip->i_flags |= XFS_IRECLAIM;
3874 write_unlock(&ih->ih_lock);
3875
3876 /*
3877 * If the inode is still dirty, then flush it out. If the inode
3878 * is not in the AIL, then it will be OK to flush it delwri as
3879 * long as xfs_iflush() does not keep any references to the inode.
3880 * We leave that decision up to xfs_iflush() since it has the
3881 * knowledge of whether it's OK to simply do a delwri flush of
3882 * the inode or whether we need to wait until the inode is
3883 * pulled from the AIL.
3884 * We get the flush lock regardless, though, just to make sure
3885 * we don't free it while it is being flushed.
3886 */
3887 if (!XFS_FORCED_SHUTDOWN(ip->i_mount)) {
3888 if (!locked) {
3889 xfs_ilock(ip, XFS_ILOCK_EXCL);
3890 xfs_iflock(ip);
3891 }
3892
3893 if (ip->i_update_core ||
3894 ((ip->i_itemp != NULL) &&
3895 (ip->i_itemp->ili_format.ilf_fields != 0))) {
3896 error = xfs_iflush(ip, sync_mode);
3897 /*
3898 * If we hit an error, typically because of filesystem
3899 * shutdown, we don't need to let vn_reclaim to know
3900 * because we're gonna reclaim the inode anyway.
3901 */
3902 if (error) {
3903 xfs_iunlock(ip, XFS_ILOCK_EXCL);
3904 goto reclaim;
3905 }
3906 xfs_iflock(ip); /* synchronize with xfs_iflush_done */
3907 }
3908
3909 ASSERT(ip->i_update_core == 0);
3910 ASSERT(ip->i_itemp == NULL ||
3911 ip->i_itemp->ili_format.ilf_fields == 0);
3912 xfs_iunlock(ip, XFS_ILOCK_EXCL);
3913 } else if (locked) {
3914 /*
3915 * We are not interested in doing an iflush if we're
3916 * in the process of shutting down the filesystem forcibly.
3917 * So, just reclaim the inode.
3918 */
3919 xfs_ifunlock(ip);
3920 xfs_iunlock(ip, XFS_ILOCK_EXCL);
3921 }
3922
3923 reclaim:
3924 xfs_ireclaim(ip);
3925 return 0;
3926}
3927
3928int
3929xfs_finish_reclaim_all(xfs_mount_t *mp, int noblock)
3930{
3931 int purged;
3932 xfs_inode_t *ip, *n;
3933 int done = 0;
3934
3935 while (!done) {
3936 purged = 0;
3937 XFS_MOUNT_ILOCK(mp);
3938 list_for_each_entry_safe(ip, n, &mp->m_del_inodes, i_reclaim) {
3939 if (noblock) {
3940 if (xfs_ilock_nowait(ip, XFS_ILOCK_EXCL) == 0)
3941 continue;
3942 if (xfs_ipincount(ip) ||
3943 !xfs_iflock_nowait(ip)) {
3944 xfs_iunlock(ip, XFS_ILOCK_EXCL);
3945 continue;
3946 }
3947 }
3948 XFS_MOUNT_IUNLOCK(mp);
6b2cf618
FB
3949 if (xfs_finish_reclaim(ip, noblock,
3950 XFS_IFLUSH_DELWRI_ELSE_ASYNC))
3951 delay(1);
1da177e4
LT
3952 purged = 1;
3953 break;
3954 }
3955
3956 done = !purged;
3957 }
3958
3959 XFS_MOUNT_IUNLOCK(mp);
3960 return 0;
3961}
3962
3963/*
3964 * xfs_alloc_file_space()
3965 * This routine allocates disk space for the given file.
3966 *
3967 * If alloc_type == 0, this request is for an ALLOCSP type
3968 * request which will change the file size. In this case, no
3969 * DMAPI event will be generated by the call. A TRUNCATE event
3970 * will be generated later by xfs_setattr.
3971 *
3972 * If alloc_type != 0, this request is for a RESVSP type
3973 * request, and a DMAPI DM_EVENT_WRITE will be generated if the
3974 * lower block boundary byte address is less than the file's
3975 * length.
3976 *
3977 * RETURNS:
3978 * 0 on success
3979 * errno on error
3980 *
3981 */
ba0f32d4 3982STATIC int
1da177e4
LT
3983xfs_alloc_file_space(
3984 xfs_inode_t *ip,
3985 xfs_off_t offset,
3986 xfs_off_t len,
3987 int alloc_type,
3988 int attr_flags)
3989{
dd9f438e
NS
3990 xfs_mount_t *mp = ip->i_mount;
3991 xfs_off_t count;
1da177e4
LT
3992 xfs_filblks_t allocated_fsb;
3993 xfs_filblks_t allocatesize_fsb;
dd9f438e
NS
3994 xfs_extlen_t extsz, temp;
3995 xfs_fileoff_t startoffset_fsb;
1da177e4 3996 xfs_fsblock_t firstfsb;
dd9f438e
NS
3997 int nimaps;
3998 int bmapi_flag;
3999 int quota_flag;
1da177e4 4000 int rt;
1da177e4 4001 xfs_trans_t *tp;
dd9f438e
NS
4002 xfs_bmbt_irec_t imaps[1], *imapp;
4003 xfs_bmap_free_t free_list;
4004 uint qblocks, resblks, resrtextents;
4005 int committed;
4006 int error;
1da177e4
LT
4007
4008 vn_trace_entry(XFS_ITOV(ip), __FUNCTION__, (inst_t *)__return_address);
1da177e4
LT
4009
4010 if (XFS_FORCED_SHUTDOWN(mp))
4011 return XFS_ERROR(EIO);
4012
dd9f438e
NS
4013 rt = XFS_IS_REALTIME_INODE(ip);
4014 if (unlikely(rt)) {
4015 if (!(extsz = ip->i_d.di_extsize))
4016 extsz = mp->m_sb.sb_rextsize;
4017 } else {
4018 extsz = ip->i_d.di_extsize;
4019 }
1da177e4
LT
4020
4021 if ((error = XFS_QM_DQATTACH(mp, ip, 0)))
4022 return error;
4023
4024 if (len <= 0)
4025 return XFS_ERROR(EINVAL);
4026
4027 count = len;
4028 error = 0;
4029 imapp = &imaps[0];
dd9f438e
NS
4030 nimaps = 1;
4031 bmapi_flag = XFS_BMAPI_WRITE | (alloc_type ? XFS_BMAPI_PREALLOC : 0);
1da177e4
LT
4032 startoffset_fsb = XFS_B_TO_FSBT(mp, offset);
4033 allocatesize_fsb = XFS_B_TO_FSB(mp, count);
4034
4035 /* Generate a DMAPI event if needed. */
4036 if (alloc_type != 0 && offset < ip->i_d.di_size &&
4037 (attr_flags&ATTR_DMI) == 0 &&
4038 DM_EVENT_ENABLED(XFS_MTOVFS(mp), ip, DM_EVENT_WRITE)) {
4039 xfs_off_t end_dmi_offset;
4040
4041 end_dmi_offset = offset+len;
4042 if (end_dmi_offset > ip->i_d.di_size)
4043 end_dmi_offset = ip->i_d.di_size;
4044 error = XFS_SEND_DATA(mp, DM_EVENT_WRITE, XFS_ITOV(ip),
4045 offset, end_dmi_offset - offset,
4046 0, NULL);
4047 if (error)
4048 return(error);
4049 }
4050
4051 /*
dd9f438e 4052 * Allocate file space until done or until there is an error
1da177e4
LT
4053 */
4054retry:
4055 while (allocatesize_fsb && !error) {
dd9f438e
NS
4056 xfs_fileoff_t s, e;
4057
1da177e4 4058 /*
dd9f438e 4059 * Determine space reservations for data/realtime,
1da177e4 4060 */
dd9f438e 4061 if (unlikely(extsz)) {
1da177e4 4062 s = startoffset_fsb;
dd9f438e
NS
4063 do_div(s, extsz);
4064 s *= extsz;
4065 e = startoffset_fsb + allocatesize_fsb;
4066 if ((temp = do_mod(startoffset_fsb, extsz)))
4067 e += temp;
4068 if ((temp = do_mod(e, extsz)))
4069 e += extsz - temp;
4070 } else {
4071 s = 0;
4072 e = allocatesize_fsb;
4073 }
4074
4075 if (unlikely(rt)) {
4076 resrtextents = qblocks = (uint)(e - s);
4077 resrtextents /= mp->m_sb.sb_rextsize;
4078 resblks = XFS_DIOSTRAT_SPACE_RES(mp, 0);
4079 quota_flag = XFS_QMOPT_RES_RTBLKS;
1da177e4 4080 } else {
dd9f438e
NS
4081 resrtextents = 0;
4082 resblks = qblocks = \
4083 XFS_DIOSTRAT_SPACE_RES(mp, (uint)(e - s));
4084 quota_flag = XFS_QMOPT_RES_REGBLKS;
1da177e4
LT
4085 }
4086
4087 /*
dd9f438e 4088 * Allocate and setup the transaction.
1da177e4
LT
4089 */
4090 tp = xfs_trans_alloc(mp, XFS_TRANS_DIOSTRAT);
dd9f438e
NS
4091 error = xfs_trans_reserve(tp, resblks,
4092 XFS_WRITE_LOG_RES(mp), resrtextents,
1da177e4
LT
4093 XFS_TRANS_PERM_LOG_RES,
4094 XFS_WRITE_LOG_COUNT);
1da177e4 4095 /*
dd9f438e 4096 * Check for running out of space
1da177e4
LT
4097 */
4098 if (error) {
4099 /*
4100 * Free the transaction structure.
4101 */
4102 ASSERT(error == ENOSPC || XFS_FORCED_SHUTDOWN(mp));
4103 xfs_trans_cancel(tp, 0);
4104 break;
4105 }
4106 xfs_ilock(ip, XFS_ILOCK_EXCL);
dd9f438e
NS
4107 error = XFS_TRANS_RESERVE_QUOTA_NBLKS(mp, tp, ip,
4108 qblocks, 0, quota_flag);
1da177e4
LT
4109 if (error)
4110 goto error1;
4111
4112 xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
4113 xfs_trans_ihold(tp, ip);
4114
4115 /*
dd9f438e 4116 * Issue the xfs_bmapi() call to allocate the blocks
1da177e4
LT
4117 */
4118 XFS_BMAP_INIT(&free_list, &firstfsb);
4119 error = xfs_bmapi(tp, ip, startoffset_fsb,
dd9f438e
NS
4120 allocatesize_fsb, bmapi_flag,
4121 &firstfsb, 0, imapp, &nimaps,
1da177e4
LT
4122 &free_list);
4123 if (error) {
4124 goto error0;
4125 }
4126
4127 /*
dd9f438e 4128 * Complete the transaction
1da177e4
LT
4129 */
4130 error = xfs_bmap_finish(&tp, &free_list, firstfsb, &committed);
4131 if (error) {
4132 goto error0;
4133 }
4134
4135 error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
4136 xfs_iunlock(ip, XFS_ILOCK_EXCL);
4137 if (error) {
4138 break;
4139 }
4140
4141 allocated_fsb = imapp->br_blockcount;
4142
dd9f438e 4143 if (nimaps == 0) {
1da177e4
LT
4144 error = XFS_ERROR(ENOSPC);
4145 break;
4146 }
4147
4148 startoffset_fsb += allocated_fsb;
4149 allocatesize_fsb -= allocated_fsb;
4150 }
4151dmapi_enospc_check:
4152 if (error == ENOSPC && (attr_flags&ATTR_DMI) == 0 &&
4153 DM_EVENT_ENABLED(XFS_MTOVFS(mp), ip, DM_EVENT_NOSPACE)) {
4154
4155 error = XFS_SEND_NAMESP(mp, DM_EVENT_NOSPACE,
4156 XFS_ITOV(ip), DM_RIGHT_NULL,
4157 XFS_ITOV(ip), DM_RIGHT_NULL,
4158 NULL, NULL, 0, 0, 0); /* Delay flag intentionally unused */
4159 if (error == 0)
4160 goto retry; /* Maybe DMAPI app. has made space */
4161 /* else fall through with error from XFS_SEND_DATA */
4162 }
4163
4164 return error;
4165
dd9f438e 4166error0: /* Cancel bmap, unlock inode, unreserve quota blocks, cancel trans */
1da177e4 4167 xfs_bmap_cancel(&free_list);
dd9f438e
NS
4168 XFS_TRANS_UNRESERVE_QUOTA_NBLKS(mp, tp, ip, qblocks, 0, quota_flag);
4169
4170error1: /* Just cancel transaction */
1da177e4
LT
4171 xfs_trans_cancel(tp, XFS_TRANS_RELEASE_LOG_RES | XFS_TRANS_ABORT);
4172 xfs_iunlock(ip, XFS_ILOCK_EXCL);
4173 goto dmapi_enospc_check;
4174}
4175
4176/*
4177 * Zero file bytes between startoff and endoff inclusive.
4178 * The iolock is held exclusive and no blocks are buffered.
4179 */
4180STATIC int
4181xfs_zero_remaining_bytes(
4182 xfs_inode_t *ip,
4183 xfs_off_t startoff,
4184 xfs_off_t endoff)
4185{
4186 xfs_bmbt_irec_t imap;
4187 xfs_fileoff_t offset_fsb;
4188 xfs_off_t lastoffset;
4189 xfs_off_t offset;
4190 xfs_buf_t *bp;
4191 xfs_mount_t *mp = ip->i_mount;
4192 int nimap;
4193 int error = 0;
4194
4195 bp = xfs_buf_get_noaddr(mp->m_sb.sb_blocksize,
4196 ip->i_d.di_flags & XFS_DIFLAG_REALTIME ?
4197 mp->m_rtdev_targp : mp->m_ddev_targp);
4198
4199 for (offset = startoff; offset <= endoff; offset = lastoffset + 1) {
4200 offset_fsb = XFS_B_TO_FSBT(mp, offset);
4201 nimap = 1;
4202 error = xfs_bmapi(NULL, ip, offset_fsb, 1, 0, NULL, 0, &imap,
4203 &nimap, NULL);
4204 if (error || nimap < 1)
4205 break;
4206 ASSERT(imap.br_blockcount >= 1);
4207 ASSERT(imap.br_startoff == offset_fsb);
4208 lastoffset = XFS_FSB_TO_B(mp, imap.br_startoff + 1) - 1;
4209 if (lastoffset > endoff)
4210 lastoffset = endoff;
4211 if (imap.br_startblock == HOLESTARTBLOCK)
4212 continue;
4213 ASSERT(imap.br_startblock != DELAYSTARTBLOCK);
4214 if (imap.br_state == XFS_EXT_UNWRITTEN)
4215 continue;
4216 XFS_BUF_UNDONE(bp);
4217 XFS_BUF_UNWRITE(bp);
4218 XFS_BUF_READ(bp);
4219 XFS_BUF_SET_ADDR(bp, XFS_FSB_TO_DB(ip, imap.br_startblock));
4220 xfsbdstrat(mp, bp);
4221 if ((error = xfs_iowait(bp))) {
4222 xfs_ioerror_alert("xfs_zero_remaining_bytes(read)",
4223 mp, bp, XFS_BUF_ADDR(bp));
4224 break;
4225 }
4226 memset(XFS_BUF_PTR(bp) +
4227 (offset - XFS_FSB_TO_B(mp, imap.br_startoff)),
4228 0, lastoffset - offset + 1);
4229 XFS_BUF_UNDONE(bp);
4230 XFS_BUF_UNREAD(bp);
4231 XFS_BUF_WRITE(bp);
4232 xfsbdstrat(mp, bp);
4233 if ((error = xfs_iowait(bp))) {
4234 xfs_ioerror_alert("xfs_zero_remaining_bytes(write)",
4235 mp, bp, XFS_BUF_ADDR(bp));
4236 break;
4237 }
4238 }
4239 xfs_buf_free(bp);
4240 return error;
4241}
4242
4243/*
4244 * xfs_free_file_space()
4245 * This routine frees disk space for the given file.
4246 *
4247 * This routine is only called by xfs_change_file_space
4248 * for an UNRESVSP type call.
4249 *
4250 * RETURNS:
4251 * 0 on success
4252 * errno on error
4253 *
4254 */
4255STATIC int
4256xfs_free_file_space(
4257 xfs_inode_t *ip,
4258 xfs_off_t offset,
4259 xfs_off_t len,
4260 int attr_flags)
4261{
bd5a876a 4262 vnode_t *vp;
1da177e4
LT
4263 int committed;
4264 int done;
4265 xfs_off_t end_dmi_offset;
4266 xfs_fileoff_t endoffset_fsb;
4267 int error;
4268 xfs_fsblock_t firstfsb;
4269 xfs_bmap_free_t free_list;
4270 xfs_off_t ilen;
4271 xfs_bmbt_irec_t imap;
4272 xfs_off_t ioffset;
4273 xfs_extlen_t mod=0;
4274 xfs_mount_t *mp;
4275 int nimap;
4276 uint resblks;
4277 int rounding;
4278 int rt;
4279 xfs_fileoff_t startoffset_fsb;
4280 xfs_trans_t *tp;
5fcbab35 4281 int need_iolock = 1;
1da177e4 4282
bd5a876a 4283 vp = XFS_ITOV(ip);
1da177e4
LT
4284 mp = ip->i_mount;
4285
bd5a876a
CH
4286 vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
4287
1da177e4
LT
4288 if ((error = XFS_QM_DQATTACH(mp, ip, 0)))
4289 return error;
4290
4291 error = 0;
4292 if (len <= 0) /* if nothing being freed */
4293 return error;
4294 rt = (ip->i_d.di_flags & XFS_DIFLAG_REALTIME);
4295 startoffset_fsb = XFS_B_TO_FSB(mp, offset);
4296 end_dmi_offset = offset + len;
4297 endoffset_fsb = XFS_B_TO_FSBT(mp, end_dmi_offset);
4298
4299 if (offset < ip->i_d.di_size &&
4300 (attr_flags & ATTR_DMI) == 0 &&
4301 DM_EVENT_ENABLED(XFS_MTOVFS(mp), ip, DM_EVENT_WRITE)) {
4302 if (end_dmi_offset > ip->i_d.di_size)
4303 end_dmi_offset = ip->i_d.di_size;
bd5a876a 4304 error = XFS_SEND_DATA(mp, DM_EVENT_WRITE, vp,
1da177e4
LT
4305 offset, end_dmi_offset - offset,
4306 AT_DELAY_FLAG(attr_flags), NULL);
4307 if (error)
4308 return(error);
4309 }
4310
5fcbab35
DR
4311 ASSERT(attr_flags & ATTR_NOLOCK ? attr_flags & ATTR_DMI : 1);
4312 if (attr_flags & ATTR_NOLOCK)
4313 need_iolock = 0;
1da177e4
LT
4314 if (need_iolock)
4315 xfs_ilock(ip, XFS_IOLOCK_EXCL);
5fcbab35 4316
1da177e4
LT
4317 rounding = MAX((__uint8_t)(1 << mp->m_sb.sb_blocklog),
4318 (__uint8_t)NBPP);
4319 ilen = len + (offset & (rounding - 1));
4320 ioffset = offset & ~(rounding - 1);
4321 if (ilen & (rounding - 1))
4322 ilen = (ilen + rounding) & ~(rounding - 1);
bd5a876a
CH
4323
4324 if (VN_CACHED(vp) != 0) {
4325 xfs_inval_cached_trace(&ip->i_iocore, ioffset, -1,
4326 ctooff(offtoct(ioffset)), -1);
4327 VOP_FLUSHINVAL_PAGES(vp, ctooff(offtoct(ioffset)),
4328 -1, FI_REMAPF_LOCKED);
4329 }
4330
1da177e4
LT
4331 /*
4332 * Need to zero the stuff we're not freeing, on disk.
4333 * If its a realtime file & can't use unwritten extents then we
4334 * actually need to zero the extent edges. Otherwise xfs_bunmapi
4335 * will take care of it for us.
4336 */
4337 if (rt && !XFS_SB_VERSION_HASEXTFLGBIT(&mp->m_sb)) {
4338 nimap = 1;
4339 error = xfs_bmapi(NULL, ip, startoffset_fsb, 1, 0, NULL, 0,
4340 &imap, &nimap, NULL);
4341 if (error)
4342 goto out_unlock_iolock;
4343 ASSERT(nimap == 0 || nimap == 1);
4344 if (nimap && imap.br_startblock != HOLESTARTBLOCK) {
4345 xfs_daddr_t block;
4346
4347 ASSERT(imap.br_startblock != DELAYSTARTBLOCK);
4348 block = imap.br_startblock;
4349 mod = do_div(block, mp->m_sb.sb_rextsize);
4350 if (mod)
4351 startoffset_fsb += mp->m_sb.sb_rextsize - mod;
4352 }
4353 nimap = 1;
4354 error = xfs_bmapi(NULL, ip, endoffset_fsb - 1, 1, 0, NULL, 0,
4355 &imap, &nimap, NULL);
4356 if (error)
4357 goto out_unlock_iolock;
4358 ASSERT(nimap == 0 || nimap == 1);
4359 if (nimap && imap.br_startblock != HOLESTARTBLOCK) {
4360 ASSERT(imap.br_startblock != DELAYSTARTBLOCK);
4361 mod++;
4362 if (mod && (mod != mp->m_sb.sb_rextsize))
4363 endoffset_fsb -= mod;
4364 }
4365 }
4366 if ((done = (endoffset_fsb <= startoffset_fsb)))
4367 /*
4368 * One contiguous piece to clear
4369 */
4370 error = xfs_zero_remaining_bytes(ip, offset, offset + len - 1);
4371 else {
4372 /*
4373 * Some full blocks, possibly two pieces to clear
4374 */
4375 if (offset < XFS_FSB_TO_B(mp, startoffset_fsb))
4376 error = xfs_zero_remaining_bytes(ip, offset,
4377 XFS_FSB_TO_B(mp, startoffset_fsb) - 1);
4378 if (!error &&
4379 XFS_FSB_TO_B(mp, endoffset_fsb) < offset + len)
4380 error = xfs_zero_remaining_bytes(ip,
4381 XFS_FSB_TO_B(mp, endoffset_fsb),
4382 offset + len - 1);
4383 }
4384
4385 /*
4386 * free file space until done or until there is an error
4387 */
4388 resblks = XFS_DIOSTRAT_SPACE_RES(mp, 0);
4389 while (!error && !done) {
4390
4391 /*
4392 * allocate and setup the transaction
4393 */
4394 tp = xfs_trans_alloc(mp, XFS_TRANS_DIOSTRAT);
4395 error = xfs_trans_reserve(tp,
4396 resblks,
4397 XFS_WRITE_LOG_RES(mp),
4398 0,
4399 XFS_TRANS_PERM_LOG_RES,
4400 XFS_WRITE_LOG_COUNT);
4401
4402 /*
4403 * check for running out of space
4404 */
4405 if (error) {
4406 /*
4407 * Free the transaction structure.
4408 */
4409 ASSERT(error == ENOSPC || XFS_FORCED_SHUTDOWN(mp));
4410 xfs_trans_cancel(tp, 0);
4411 break;
4412 }
4413 xfs_ilock(ip, XFS_ILOCK_EXCL);
4414 error = XFS_TRANS_RESERVE_QUOTA(mp, tp,
dd9f438e
NS
4415 ip->i_udquot, ip->i_gdquot, resblks, 0,
4416 XFS_QMOPT_RES_REGBLKS);
1da177e4
LT
4417 if (error)
4418 goto error1;
4419
4420 xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
4421 xfs_trans_ihold(tp, ip);
4422
4423 /*
4424 * issue the bunmapi() call to free the blocks
4425 */
4426 XFS_BMAP_INIT(&free_list, &firstfsb);
4427 error = xfs_bunmapi(tp, ip, startoffset_fsb,
4428 endoffset_fsb - startoffset_fsb,
4429 0, 2, &firstfsb, &free_list, &done);
4430 if (error) {
4431 goto error0;
4432 }
4433
4434 /*
4435 * complete the transaction
4436 */
4437 error = xfs_bmap_finish(&tp, &free_list, firstfsb, &committed);
4438 if (error) {
4439 goto error0;
4440 }
4441
4442 error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES, NULL);
4443 xfs_iunlock(ip, XFS_ILOCK_EXCL);
4444 }
4445
4446 out_unlock_iolock:
4447 if (need_iolock)
4448 xfs_iunlock(ip, XFS_IOLOCK_EXCL);
4449 return error;
4450
4451 error0:
4452 xfs_bmap_cancel(&free_list);
4453 error1:
4454 xfs_trans_cancel(tp, XFS_TRANS_RELEASE_LOG_RES | XFS_TRANS_ABORT);
4455 xfs_iunlock(ip, need_iolock ? (XFS_ILOCK_EXCL | XFS_IOLOCK_EXCL) :
4456 XFS_ILOCK_EXCL);
4457 return error;
4458}
4459
4460/*
4461 * xfs_change_file_space()
4462 * This routine allocates or frees disk space for the given file.
4463 * The user specified parameters are checked for alignment and size
4464 * limitations.
4465 *
4466 * RETURNS:
4467 * 0 on success
4468 * errno on error
4469 *
4470 */
4471int
4472xfs_change_file_space(
4473 bhv_desc_t *bdp,
4474 int cmd,
4475 xfs_flock64_t *bf,
4476 xfs_off_t offset,
4477 cred_t *credp,
4478 int attr_flags)
4479{
4480 int clrprealloc;
4481 int error;
4482 xfs_fsize_t fsize;
4483 xfs_inode_t *ip;
4484 xfs_mount_t *mp;
4485 int setprealloc;
4486 xfs_off_t startoffset;
4487 xfs_off_t llen;
4488 xfs_trans_t *tp;
4489 vattr_t va;
4490 vnode_t *vp;
4491
4492 vp = BHV_TO_VNODE(bdp);
4493 vn_trace_entry(vp, __FUNCTION__, (inst_t *)__return_address);
4494
4495 ip = XFS_BHVTOI(bdp);
4496 mp = ip->i_mount;
4497
4498 /*
4499 * must be a regular file and have write permission
4500 */
0432dab2 4501 if (!VN_ISREG(vp))
1da177e4
LT
4502 return XFS_ERROR(EINVAL);
4503
4504 xfs_ilock(ip, XFS_ILOCK_SHARED);
4505
4506 if ((error = xfs_iaccess(ip, S_IWUSR, credp))) {
4507 xfs_iunlock(ip, XFS_ILOCK_SHARED);
4508 return error;
4509 }
4510
4511 xfs_iunlock(ip, XFS_ILOCK_SHARED);
4512
4513 switch (bf->l_whence) {
4514 case 0: /*SEEK_SET*/
4515 break;
4516 case 1: /*SEEK_CUR*/
4517 bf->l_start += offset;
4518 break;
4519 case 2: /*SEEK_END*/
4520 bf->l_start += ip->i_d.di_size;
4521 break;
4522 default:
4523 return XFS_ERROR(EINVAL);
4524 }
4525
4526 llen = bf->l_len > 0 ? bf->l_len - 1 : bf->l_len;
4527
4528 if ( (bf->l_start < 0)
4529 || (bf->l_start > XFS_MAXIOFFSET(mp))
4530 || (bf->l_start + llen < 0)
4531 || (bf->l_start + llen > XFS_MAXIOFFSET(mp)))
4532 return XFS_ERROR(EINVAL);
4533
4534 bf->l_whence = 0;
4535
4536 startoffset = bf->l_start;
4537 fsize = ip->i_d.di_size;
4538
4539 /*
4540 * XFS_IOC_RESVSP and XFS_IOC_UNRESVSP will reserve or unreserve
4541 * file space.
4542 * These calls do NOT zero the data space allocated to the file,
4543 * nor do they change the file size.
4544 *
4545 * XFS_IOC_ALLOCSP and XFS_IOC_FREESP will allocate and free file
4546 * space.
4547 * These calls cause the new file data to be zeroed and the file
4548 * size to be changed.
4549 */
4550 setprealloc = clrprealloc = 0;
4551
4552 switch (cmd) {
4553 case XFS_IOC_RESVSP:
4554 case XFS_IOC_RESVSP64:
4555 error = xfs_alloc_file_space(ip, startoffset, bf->l_len,
4556 1, attr_flags);
4557 if (error)
4558 return error;
4559 setprealloc = 1;
4560 break;
4561
4562 case XFS_IOC_UNRESVSP:
4563 case XFS_IOC_UNRESVSP64:
4564 if ((error = xfs_free_file_space(ip, startoffset, bf->l_len,
4565 attr_flags)))
4566 return error;
4567 break;
4568
4569 case XFS_IOC_ALLOCSP:
4570 case XFS_IOC_ALLOCSP64:
4571 case XFS_IOC_FREESP:
4572 case XFS_IOC_FREESP64:
4573 if (startoffset > fsize) {
4574 error = xfs_alloc_file_space(ip, fsize,
4575 startoffset - fsize, 0, attr_flags);
4576 if (error)
4577 break;
4578 }
4579
4580 va.va_mask = XFS_AT_SIZE;
4581 va.va_size = startoffset;
4582
4583 error = xfs_setattr(bdp, &va, attr_flags, credp);
4584
4585 if (error)
4586 return error;
4587
4588 clrprealloc = 1;
4589 break;
4590
4591 default:
4592 ASSERT(0);
4593 return XFS_ERROR(EINVAL);
4594 }
4595
4596 /*
4597 * update the inode timestamp, mode, and prealloc flag bits
4598 */
4599 tp = xfs_trans_alloc(mp, XFS_TRANS_WRITEID);
4600
4601 if ((error = xfs_trans_reserve(tp, 0, XFS_WRITEID_LOG_RES(mp),
4602 0, 0, 0))) {
4603 /* ASSERT(0); */
4604 xfs_trans_cancel(tp, 0);
4605 return error;
4606 }
4607
4608 xfs_ilock(ip, XFS_ILOCK_EXCL);
4609
4610 xfs_trans_ijoin(tp, ip, XFS_ILOCK_EXCL);
4611 xfs_trans_ihold(tp, ip);
4612
4613 if ((attr_flags & ATTR_DMI) == 0) {
4614 ip->i_d.di_mode &= ~S_ISUID;
4615
4616 /*
4617 * Note that we don't have to worry about mandatory
4618 * file locking being disabled here because we only
4619 * clear the S_ISGID bit if the Group execute bit is
4620 * on, but if it was on then mandatory locking wouldn't
4621 * have been enabled.
4622 */
4623 if (ip->i_d.di_mode & S_IXGRP)
4624 ip->i_d.di_mode &= ~S_ISGID;
4625
4626 xfs_ichgtime(ip, XFS_ICHGTIME_MOD | XFS_ICHGTIME_CHG);
4627 }
4628 if (setprealloc)
4629 ip->i_d.di_flags |= XFS_DIFLAG_PREALLOC;
4630 else if (clrprealloc)
4631 ip->i_d.di_flags &= ~XFS_DIFLAG_PREALLOC;
4632
4633 xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
4634 xfs_trans_set_sync(tp);
4635
4636 error = xfs_trans_commit(tp, 0, NULL);
4637
4638 xfs_iunlock(ip, XFS_ILOCK_EXCL);
4639
4640 return error;
4641}
4642
4643vnodeops_t xfs_vnodeops = {
4644 BHV_IDENTITY_INIT(VN_BHV_XFS,VNODE_POSITION_XFS),
4645 .vop_open = xfs_open,
4646 .vop_read = xfs_read,
4647#ifdef HAVE_SENDFILE
4648 .vop_sendfile = xfs_sendfile,
4649#endif
4650 .vop_write = xfs_write,
4651 .vop_ioctl = xfs_ioctl,
4652 .vop_getattr = xfs_getattr,
4653 .vop_setattr = xfs_setattr,
4654 .vop_access = xfs_access,
4655 .vop_lookup = xfs_lookup,
4656 .vop_create = xfs_create,
4657 .vop_remove = xfs_remove,
4658 .vop_link = xfs_link,
4659 .vop_rename = xfs_rename,
4660 .vop_mkdir = xfs_mkdir,
4661 .vop_rmdir = xfs_rmdir,
4662 .vop_readdir = xfs_readdir,
4663 .vop_symlink = xfs_symlink,
4664 .vop_readlink = xfs_readlink,
4665 .vop_fsync = xfs_fsync,
4666 .vop_inactive = xfs_inactive,
4667 .vop_fid2 = xfs_fid2,
4668 .vop_rwlock = xfs_rwlock,
4669 .vop_rwunlock = xfs_rwunlock,
4670 .vop_bmap = xfs_bmap,
4671 .vop_reclaim = xfs_reclaim,
4672 .vop_attr_get = xfs_attr_get,
4673 .vop_attr_set = xfs_attr_set,
4674 .vop_attr_remove = xfs_attr_remove,
4675 .vop_attr_list = xfs_attr_list,
4676 .vop_link_removed = (vop_link_removed_t)fs_noval,
4677 .vop_vnode_change = (vop_vnode_change_t)fs_noval,
4678 .vop_tosspages = fs_tosspages,
4679 .vop_flushinval_pages = fs_flushinval_pages,
4680 .vop_flush_pages = fs_flush_pages,
4681 .vop_release = xfs_release,
4682 .vop_iflush = xfs_inode_flush,
4683};