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[tomato.git] / release / src-rt-6.x.4708 / linux / linux-2.6.36 / fs / xfs / quota / xfs_dquot_item.c
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1 /*
2 * Copyright (c) 2000-2003 Silicon Graphics, Inc.
3 * All Rights Reserved.
5 * This program is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU General Public License as
7 * published by the Free Software Foundation.
9 * This program is distributed in the hope that it would be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write the Free Software Foundation,
16 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
18 #include "xfs.h"
19 #include "xfs_fs.h"
20 #include "xfs_bit.h"
21 #include "xfs_log.h"
22 #include "xfs_inum.h"
23 #include "xfs_trans.h"
24 #include "xfs_sb.h"
25 #include "xfs_ag.h"
26 #include "xfs_alloc.h"
27 #include "xfs_quota.h"
28 #include "xfs_mount.h"
29 #include "xfs_bmap_btree.h"
30 #include "xfs_inode.h"
31 #include "xfs_bmap.h"
32 #include "xfs_rtalloc.h"
33 #include "xfs_error.h"
34 #include "xfs_itable.h"
35 #include "xfs_attr.h"
36 #include "xfs_buf_item.h"
37 #include "xfs_trans_priv.h"
38 #include "xfs_qm.h"
40 static inline struct xfs_dq_logitem *DQUOT_ITEM(struct xfs_log_item *lip)
42 return container_of(lip, struct xfs_dq_logitem, qli_item);
46 * returns the number of iovecs needed to log the given dquot item.
48 STATIC uint
49 xfs_qm_dquot_logitem_size(
50 struct xfs_log_item *lip)
53 * we need only two iovecs, one for the format, one for the real thing
55 return 2;
59 * fills in the vector of log iovecs for the given dquot log item.
61 STATIC void
62 xfs_qm_dquot_logitem_format(
63 struct xfs_log_item *lip,
64 struct xfs_log_iovec *logvec)
66 struct xfs_dq_logitem *qlip = DQUOT_ITEM(lip);
68 logvec->i_addr = &qlip->qli_format;
69 logvec->i_len = sizeof(xfs_dq_logformat_t);
70 logvec->i_type = XLOG_REG_TYPE_QFORMAT;
71 logvec++;
72 logvec->i_addr = &qlip->qli_dquot->q_core;
73 logvec->i_len = sizeof(xfs_disk_dquot_t);
74 logvec->i_type = XLOG_REG_TYPE_DQUOT;
76 ASSERT(2 == lip->li_desc->lid_size);
77 qlip->qli_format.qlf_size = 2;
82 * Increment the pin count of the given dquot.
84 STATIC void
85 xfs_qm_dquot_logitem_pin(
86 struct xfs_log_item *lip)
88 struct xfs_dquot *dqp = DQUOT_ITEM(lip)->qli_dquot;
90 ASSERT(XFS_DQ_IS_LOCKED(dqp));
91 atomic_inc(&dqp->q_pincount);
95 * Decrement the pin count of the given dquot, and wake up
96 * anyone in xfs_dqwait_unpin() if the count goes to 0. The
97 * dquot must have been previously pinned with a call to
98 * xfs_qm_dquot_logitem_pin().
100 STATIC void
101 xfs_qm_dquot_logitem_unpin(
102 struct xfs_log_item *lip,
103 int remove)
105 struct xfs_dquot *dqp = DQUOT_ITEM(lip)->qli_dquot;
107 ASSERT(atomic_read(&dqp->q_pincount) > 0);
108 if (atomic_dec_and_test(&dqp->q_pincount))
109 wake_up(&dqp->q_pinwait);
113 * Given the logitem, this writes the corresponding dquot entry to disk
114 * asynchronously. This is called with the dquot entry securely locked;
115 * we simply get xfs_qm_dqflush() to do the work, and unlock the dquot
116 * at the end.
118 STATIC void
119 xfs_qm_dquot_logitem_push(
120 struct xfs_log_item *lip)
122 struct xfs_dquot *dqp = DQUOT_ITEM(lip)->qli_dquot;
123 int error;
125 ASSERT(XFS_DQ_IS_LOCKED(dqp));
126 ASSERT(!completion_done(&dqp->q_flush));
129 * Since we were able to lock the dquot's flush lock and
130 * we found it on the AIL, the dquot must be dirty. This
131 * is because the dquot is removed from the AIL while still
132 * holding the flush lock in xfs_dqflush_done(). Thus, if
133 * we found it in the AIL and were able to obtain the flush
134 * lock without sleeping, then there must not have been
135 * anyone in the process of flushing the dquot.
137 error = xfs_qm_dqflush(dqp, 0);
138 if (error)
139 xfs_fs_cmn_err(CE_WARN, dqp->q_mount,
140 "xfs_qm_dquot_logitem_push: push error %d on dqp %p",
141 error, dqp);
142 xfs_dqunlock(dqp);
145 STATIC xfs_lsn_t
146 xfs_qm_dquot_logitem_committed(
147 struct xfs_log_item *lip,
148 xfs_lsn_t lsn)
151 * We always re-log the entire dquot when it becomes dirty,
152 * so, the latest copy _is_ the only one that matters.
154 return lsn;
158 * This is called to wait for the given dquot to be unpinned.
159 * Most of these pin/unpin routines are plagiarized from inode code.
161 void
162 xfs_qm_dqunpin_wait(
163 struct xfs_dquot *dqp)
165 ASSERT(XFS_DQ_IS_LOCKED(dqp));
166 if (atomic_read(&dqp->q_pincount) == 0)
167 return;
170 * Give the log a push so we don't wait here too long.
172 xfs_log_force(dqp->q_mount, 0);
173 wait_event(dqp->q_pinwait, (atomic_read(&dqp->q_pincount) == 0));
177 * This is called when IOP_TRYLOCK returns XFS_ITEM_PUSHBUF to indicate that
178 * the dquot is locked by us, but the flush lock isn't. So, here we are
179 * going to see if the relevant dquot buffer is incore, waiting on DELWRI.
180 * If so, we want to push it out to help us take this item off the AIL as soon
181 * as possible.
183 * We must not be holding the AIL lock at this point. Calling incore() to
184 * search the buffer cache can be a time consuming thing, and AIL lock is a
185 * spinlock.
187 STATIC void
188 xfs_qm_dquot_logitem_pushbuf(
189 struct xfs_log_item *lip)
191 struct xfs_dq_logitem *qlip = DQUOT_ITEM(lip);
192 struct xfs_dquot *dqp = qlip->qli_dquot;
193 struct xfs_buf *bp;
195 ASSERT(XFS_DQ_IS_LOCKED(dqp));
198 * If flushlock isn't locked anymore, chances are that the
199 * inode flush completed and the inode was taken off the AIL.
200 * So, just get out.
202 if (completion_done(&dqp->q_flush) ||
203 !(lip->li_flags & XFS_LI_IN_AIL)) {
204 xfs_dqunlock(dqp);
205 return;
208 bp = xfs_incore(dqp->q_mount->m_ddev_targp, qlip->qli_format.qlf_blkno,
209 dqp->q_mount->m_quotainfo->qi_dqchunklen, XBF_TRYLOCK);
210 xfs_dqunlock(dqp);
211 if (!bp)
212 return;
213 if (XFS_BUF_ISDELAYWRITE(bp))
214 xfs_buf_delwri_promote(bp);
215 xfs_buf_relse(bp);
219 * This is called to attempt to lock the dquot associated with this
220 * dquot log item. Don't sleep on the dquot lock or the flush lock.
221 * If the flush lock is already held, indicating that the dquot has
222 * been or is in the process of being flushed, then see if we can
223 * find the dquot's buffer in the buffer cache without sleeping. If
224 * we can and it is marked delayed write, then we want to send it out.
225 * We delay doing so until the push routine, though, to avoid sleeping
226 * in any device strategy routines.
228 STATIC uint
229 xfs_qm_dquot_logitem_trylock(
230 struct xfs_log_item *lip)
232 struct xfs_dquot *dqp = DQUOT_ITEM(lip)->qli_dquot;
234 if (atomic_read(&dqp->q_pincount) > 0)
235 return XFS_ITEM_PINNED;
237 if (!xfs_qm_dqlock_nowait(dqp))
238 return XFS_ITEM_LOCKED;
240 if (!xfs_dqflock_nowait(dqp)) {
242 * dquot has already been flushed to the backing buffer,
243 * leave it locked, pushbuf routine will unlock it.
245 return XFS_ITEM_PUSHBUF;
248 ASSERT(lip->li_flags & XFS_LI_IN_AIL);
249 return XFS_ITEM_SUCCESS;
253 * Unlock the dquot associated with the log item.
254 * Clear the fields of the dquot and dquot log item that
255 * are specific to the current transaction. If the
256 * hold flags is set, do not unlock the dquot.
258 STATIC void
259 xfs_qm_dquot_logitem_unlock(
260 struct xfs_log_item *lip)
262 struct xfs_dquot *dqp = DQUOT_ITEM(lip)->qli_dquot;
264 ASSERT(XFS_DQ_IS_LOCKED(dqp));
267 * Clear the transaction pointer in the dquot
269 dqp->q_transp = NULL;
272 * dquots are never 'held' from getting unlocked at the end of
273 * a transaction. Their locking and unlocking is hidden inside the
274 * transaction layer, within trans_commit. Hence, no LI_HOLD flag
275 * for the logitem.
277 xfs_dqunlock(dqp);
281 * this needs to stamp an lsn into the dquot, I think.
282 * rpc's that look at user dquot's would then have to
283 * push on the dependency recorded in the dquot
285 STATIC void
286 xfs_qm_dquot_logitem_committing(
287 struct xfs_log_item *lip,
288 xfs_lsn_t lsn)
293 * This is the ops vector for dquots
295 static struct xfs_item_ops xfs_dquot_item_ops = {
296 .iop_size = xfs_qm_dquot_logitem_size,
297 .iop_format = xfs_qm_dquot_logitem_format,
298 .iop_pin = xfs_qm_dquot_logitem_pin,
299 .iop_unpin = xfs_qm_dquot_logitem_unpin,
300 .iop_trylock = xfs_qm_dquot_logitem_trylock,
301 .iop_unlock = xfs_qm_dquot_logitem_unlock,
302 .iop_committed = xfs_qm_dquot_logitem_committed,
303 .iop_push = xfs_qm_dquot_logitem_push,
304 .iop_pushbuf = xfs_qm_dquot_logitem_pushbuf,
305 .iop_committing = xfs_qm_dquot_logitem_committing
309 * Initialize the dquot log item for a newly allocated dquot.
310 * The dquot isn't locked at this point, but it isn't on any of the lists
311 * either, so we don't care.
313 void
314 xfs_qm_dquot_logitem_init(
315 struct xfs_dquot *dqp)
317 struct xfs_dq_logitem *lp = &dqp->q_logitem;
319 xfs_log_item_init(dqp->q_mount, &lp->qli_item, XFS_LI_DQUOT,
320 &xfs_dquot_item_ops);
321 lp->qli_dquot = dqp;
322 lp->qli_format.qlf_type = XFS_LI_DQUOT;
323 lp->qli_format.qlf_id = be32_to_cpu(dqp->q_core.d_id);
324 lp->qli_format.qlf_blkno = dqp->q_blkno;
325 lp->qli_format.qlf_len = 1;
327 * This is just the offset of this dquot within its buffer
328 * (which is currently 1 FSB and probably won't change).
329 * Hence 32 bits for this offset should be just fine.
330 * Alternatively, we can store (bufoffset / sizeof(xfs_dqblk_t))
331 * here, and recompute it at recovery time.
333 lp->qli_format.qlf_boffset = (__uint32_t)dqp->q_bufoffset;
336 /*------------------ QUOTAOFF LOG ITEMS -------------------*/
338 static inline struct xfs_qoff_logitem *QOFF_ITEM(struct xfs_log_item *lip)
340 return container_of(lip, struct xfs_qoff_logitem, qql_item);
345 * This returns the number of iovecs needed to log the given quotaoff item.
346 * We only need 1 iovec for an quotaoff item. It just logs the
347 * quotaoff_log_format structure.
349 STATIC uint
350 xfs_qm_qoff_logitem_size(
351 struct xfs_log_item *lip)
353 return 1;
357 * This is called to fill in the vector of log iovecs for the
358 * given quotaoff log item. We use only 1 iovec, and we point that
359 * at the quotaoff_log_format structure embedded in the quotaoff item.
360 * It is at this point that we assert that all of the extent
361 * slots in the quotaoff item have been filled.
363 STATIC void
364 xfs_qm_qoff_logitem_format(
365 struct xfs_log_item *lip,
366 struct xfs_log_iovec *log_vector)
368 struct xfs_qoff_logitem *qflip = QOFF_ITEM(lip);
370 ASSERT(qflip->qql_format.qf_type == XFS_LI_QUOTAOFF);
372 log_vector->i_addr = &qflip->qql_format;
373 log_vector->i_len = sizeof(xfs_qoff_logitem_t);
374 log_vector->i_type = XLOG_REG_TYPE_QUOTAOFF;
375 qflip->qql_format.qf_size = 1;
379 * Pinning has no meaning for an quotaoff item, so just return.
381 STATIC void
382 xfs_qm_qoff_logitem_pin(
383 struct xfs_log_item *lip)
388 * Since pinning has no meaning for an quotaoff item, unpinning does
389 * not either.
391 STATIC void
392 xfs_qm_qoff_logitem_unpin(
393 struct xfs_log_item *lip,
394 int remove)
399 * Quotaoff items have no locking, so just return success.
401 STATIC uint
402 xfs_qm_qoff_logitem_trylock(
403 struct xfs_log_item *lip)
405 return XFS_ITEM_LOCKED;
409 * Quotaoff items have no locking or pushing, so return failure
410 * so that the caller doesn't bother with us.
412 STATIC void
413 xfs_qm_qoff_logitem_unlock(
414 struct xfs_log_item *lip)
419 * The quotaoff-start-item is logged only once and cannot be moved in the log,
420 * so simply return the lsn at which it's been logged.
422 STATIC xfs_lsn_t
423 xfs_qm_qoff_logitem_committed(
424 struct xfs_log_item *lip,
425 xfs_lsn_t lsn)
427 return lsn;
431 * There isn't much you can do to push on an quotaoff item. It is simply
432 * stuck waiting for the log to be flushed to disk.
434 STATIC void
435 xfs_qm_qoff_logitem_push(
436 struct xfs_log_item *lip)
441 STATIC xfs_lsn_t
442 xfs_qm_qoffend_logitem_committed(
443 struct xfs_log_item *lip,
444 xfs_lsn_t lsn)
446 struct xfs_qoff_logitem *qfe = QOFF_ITEM(lip);
447 struct xfs_qoff_logitem *qfs = qfe->qql_start_lip;
448 struct xfs_ail *ailp = qfs->qql_item.li_ailp;
451 * Delete the qoff-start logitem from the AIL.
452 * xfs_trans_ail_delete() drops the AIL lock.
454 spin_lock(&ailp->xa_lock);
455 xfs_trans_ail_delete(ailp, (xfs_log_item_t *)qfs);
457 kmem_free(qfs);
458 kmem_free(qfe);
459 return (xfs_lsn_t)-1;
462 STATIC void
463 xfs_qm_qoff_logitem_committing(
464 struct xfs_log_item *lip,
465 xfs_lsn_t commit_lsn)
469 static struct xfs_item_ops xfs_qm_qoffend_logitem_ops = {
470 .iop_size = xfs_qm_qoff_logitem_size,
471 .iop_format = xfs_qm_qoff_logitem_format,
472 .iop_pin = xfs_qm_qoff_logitem_pin,
473 .iop_unpin = xfs_qm_qoff_logitem_unpin,
474 .iop_trylock = xfs_qm_qoff_logitem_trylock,
475 .iop_unlock = xfs_qm_qoff_logitem_unlock,
476 .iop_committed = xfs_qm_qoffend_logitem_committed,
477 .iop_push = xfs_qm_qoff_logitem_push,
478 .iop_committing = xfs_qm_qoff_logitem_committing
482 * This is the ops vector shared by all quotaoff-start log items.
484 static struct xfs_item_ops xfs_qm_qoff_logitem_ops = {
485 .iop_size = xfs_qm_qoff_logitem_size,
486 .iop_format = xfs_qm_qoff_logitem_format,
487 .iop_pin = xfs_qm_qoff_logitem_pin,
488 .iop_unpin = xfs_qm_qoff_logitem_unpin,
489 .iop_trylock = xfs_qm_qoff_logitem_trylock,
490 .iop_unlock = xfs_qm_qoff_logitem_unlock,
491 .iop_committed = xfs_qm_qoff_logitem_committed,
492 .iop_push = xfs_qm_qoff_logitem_push,
493 .iop_committing = xfs_qm_qoff_logitem_committing
497 * Allocate and initialize an quotaoff item of the correct quota type(s).
499 struct xfs_qoff_logitem *
500 xfs_qm_qoff_logitem_init(
501 struct xfs_mount *mp,
502 struct xfs_qoff_logitem *start,
503 uint flags)
505 struct xfs_qoff_logitem *qf;
507 qf = kmem_zalloc(sizeof(struct xfs_qoff_logitem), KM_SLEEP);
509 xfs_log_item_init(mp, &qf->qql_item, XFS_LI_QUOTAOFF, start ?
510 &xfs_qm_qoffend_logitem_ops : &xfs_qm_qoff_logitem_ops);
511 qf->qql_item.li_mountp = mp;
512 qf->qql_format.qf_type = XFS_LI_QUOTAOFF;
513 qf->qql_format.qf_flags = flags;
514 qf->qql_start_lip = start;
515 return qf;