disable some mediatekl custom warnings
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / fs / xfs / xfs_trans_ail.c
CommitLineData
1da177e4 1/*
7b718769 2 * Copyright (c) 2000-2002,2005 Silicon Graphics, Inc.
c7e8f268 3 * Copyright (c) 2008 Dave Chinner
7b718769 4 * All Rights Reserved.
1da177e4 5 *
7b718769
NS
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License as
1da177e4
LT
8 * published by the Free Software Foundation.
9 *
7b718769
NS
10 * This program is distributed in the hope that it would be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
1da177e4 14 *
7b718769
NS
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write the Free Software Foundation,
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
1da177e4 18 */
1da177e4 19#include "xfs.h"
a844f451 20#include "xfs_fs.h"
1da177e4 21#include "xfs_types.h"
1da177e4
LT
22#include "xfs_log.h"
23#include "xfs_trans.h"
24#include "xfs_sb.h"
da353b0d 25#include "xfs_ag.h"
1da177e4
LT
26#include "xfs_mount.h"
27#include "xfs_trans_priv.h"
9e4c109a 28#include "xfs_trace.h"
1da177e4
LT
29#include "xfs_error.h"
30
1da177e4 31#ifdef DEBUG
cd4a3c50
DC
32/*
33 * Check that the list is sorted as it should be.
34 */
35STATIC void
36xfs_ail_check(
37 struct xfs_ail *ailp,
38 xfs_log_item_t *lip)
39{
40 xfs_log_item_t *prev_lip;
41
42 if (list_empty(&ailp->xa_ail))
43 return;
44
45 /*
46 * Check the next and previous entries are valid.
47 */
48 ASSERT((lip->li_flags & XFS_LI_IN_AIL) != 0);
49 prev_lip = list_entry(lip->li_ail.prev, xfs_log_item_t, li_ail);
50 if (&prev_lip->li_ail != &ailp->xa_ail)
51 ASSERT(XFS_LSN_CMP(prev_lip->li_lsn, lip->li_lsn) <= 0);
52
53 prev_lip = list_entry(lip->li_ail.next, xfs_log_item_t, li_ail);
54 if (&prev_lip->li_ail != &ailp->xa_ail)
55 ASSERT(XFS_LSN_CMP(prev_lip->li_lsn, lip->li_lsn) >= 0);
56
57
cd4a3c50
DC
58}
59#else /* !DEBUG */
de08dbc1 60#define xfs_ail_check(a,l)
1da177e4
LT
61#endif /* DEBUG */
62
cd4a3c50
DC
63/*
64 * Return a pointer to the first item in the AIL. If the AIL is empty, then
65 * return NULL.
66 */
1c304625 67xfs_log_item_t *
cd4a3c50
DC
68xfs_ail_min(
69 struct xfs_ail *ailp)
70{
71 if (list_empty(&ailp->xa_ail))
72 return NULL;
73
74 return list_first_entry(&ailp->xa_ail, xfs_log_item_t, li_ail);
75}
76
fd074841
DC
77 /*
78 * Return a pointer to the last item in the AIL. If the AIL is empty, then
79 * return NULL.
80 */
81static xfs_log_item_t *
82xfs_ail_max(
83 struct xfs_ail *ailp)
84{
85 if (list_empty(&ailp->xa_ail))
86 return NULL;
87
88 return list_entry(ailp->xa_ail.prev, xfs_log_item_t, li_ail);
89}
90
cd4a3c50
DC
91/*
92 * Return a pointer to the item which follows the given item in the AIL. If
93 * the given item is the last item in the list, then return NULL.
94 */
95static xfs_log_item_t *
96xfs_ail_next(
97 struct xfs_ail *ailp,
98 xfs_log_item_t *lip)
99{
100 if (lip->li_ail.next == &ailp->xa_ail)
101 return NULL;
102
103 return list_first_entry(&lip->li_ail, xfs_log_item_t, li_ail);
104}
1da177e4
LT
105
106/*
cd4a3c50
DC
107 * This is called by the log manager code to determine the LSN of the tail of
108 * the log. This is exactly the LSN of the first item in the AIL. If the AIL
109 * is empty, then this function returns 0.
1da177e4 110 *
cd4a3c50
DC
111 * We need the AIL lock in order to get a coherent read of the lsn of the last
112 * item in the AIL.
1da177e4
LT
113 */
114xfs_lsn_t
fd074841 115xfs_ail_min_lsn(
5b00f14f 116 struct xfs_ail *ailp)
1da177e4 117{
cd4a3c50 118 xfs_lsn_t lsn = 0;
1da177e4 119 xfs_log_item_t *lip;
1da177e4 120
c7e8f268 121 spin_lock(&ailp->xa_lock);
5b00f14f 122 lip = xfs_ail_min(ailp);
cd4a3c50 123 if (lip)
1da177e4 124 lsn = lip->li_lsn;
c7e8f268 125 spin_unlock(&ailp->xa_lock);
1da177e4
LT
126
127 return lsn;
128}
129
fd074841
DC
130/*
131 * Return the maximum lsn held in the AIL, or zero if the AIL is empty.
132 */
133static xfs_lsn_t
134xfs_ail_max_lsn(
135 struct xfs_ail *ailp)
136{
137 xfs_lsn_t lsn = 0;
138 xfs_log_item_t *lip;
139
140 spin_lock(&ailp->xa_lock);
141 lip = xfs_ail_max(ailp);
142 if (lip)
143 lsn = lip->li_lsn;
144 spin_unlock(&ailp->xa_lock);
145
146 return lsn;
147}
148
27d8d5fe 149/*
af3e4022
DC
150 * The cursor keeps track of where our current traversal is up to by tracking
151 * the next item in the list for us. However, for this to be safe, removing an
152 * object from the AIL needs to invalidate any cursor that points to it. hence
153 * the traversal cursor needs to be linked to the struct xfs_ail so that
154 * deletion can search all the active cursors for invalidation.
27d8d5fe 155 */
5b00f14f 156STATIC void
27d8d5fe
DC
157xfs_trans_ail_cursor_init(
158 struct xfs_ail *ailp,
159 struct xfs_ail_cursor *cur)
160{
161 cur->item = NULL;
af3e4022 162 list_add_tail(&cur->list, &ailp->xa_cursors);
27d8d5fe
DC
163}
164
27d8d5fe 165/*
af3e4022
DC
166 * Get the next item in the traversal and advance the cursor. If the cursor
167 * was invalidated (indicated by a lip of 1), restart the traversal.
27d8d5fe 168 */
5b00f14f 169struct xfs_log_item *
27d8d5fe
DC
170xfs_trans_ail_cursor_next(
171 struct xfs_ail *ailp,
172 struct xfs_ail_cursor *cur)
173{
174 struct xfs_log_item *lip = cur->item;
175
176 if ((__psint_t)lip & 1)
177 lip = xfs_ail_min(ailp);
16b59029
DC
178 if (lip)
179 cur->item = xfs_ail_next(ailp, lip);
27d8d5fe
DC
180 return lip;
181}
182
27d8d5fe 183/*
af3e4022
DC
184 * When the traversal is complete, we need to remove the cursor from the list
185 * of traversing cursors.
27d8d5fe
DC
186 */
187void
188xfs_trans_ail_cursor_done(
189 struct xfs_ail *ailp,
af3e4022 190 struct xfs_ail_cursor *cur)
27d8d5fe 191{
af3e4022
DC
192 cur->item = NULL;
193 list_del_init(&cur->list);
27d8d5fe
DC
194}
195
5b00f14f 196/*
af3e4022
DC
197 * Invalidate any cursor that is pointing to this item. This is called when an
198 * item is removed from the AIL. Any cursor pointing to this object is now
199 * invalid and the traversal needs to be terminated so it doesn't reference a
200 * freed object. We set the low bit of the cursor item pointer so we can
201 * distinguish between an invalidation and the end of the list when getting the
202 * next item from the cursor.
5b00f14f
DC
203 */
204STATIC void
205xfs_trans_ail_cursor_clear(
206 struct xfs_ail *ailp,
207 struct xfs_log_item *lip)
208{
209 struct xfs_ail_cursor *cur;
210
af3e4022 211 list_for_each_entry(cur, &ailp->xa_cursors, list) {
5b00f14f
DC
212 if (cur->item == lip)
213 cur->item = (struct xfs_log_item *)
214 ((__psint_t)cur->item | 1);
215 }
216}
217
249a8c11 218/*
16b59029
DC
219 * Find the first item in the AIL with the given @lsn by searching in ascending
220 * LSN order and initialise the cursor to point to the next item for a
221 * ascending traversal. Pass a @lsn of zero to initialise the cursor to the
222 * first item in the AIL. Returns NULL if the list is empty.
249a8c11 223 */
5b00f14f
DC
224xfs_log_item_t *
225xfs_trans_ail_cursor_first(
27d8d5fe
DC
226 struct xfs_ail *ailp,
227 struct xfs_ail_cursor *cur,
228 xfs_lsn_t lsn)
249a8c11 229{
27d8d5fe 230 xfs_log_item_t *lip;
249a8c11 231
5b00f14f 232 xfs_trans_ail_cursor_init(ailp, cur);
16b59029
DC
233
234 if (lsn == 0) {
235 lip = xfs_ail_min(ailp);
5b00f14f 236 goto out;
16b59029 237 }
249a8c11 238
27d8d5fe 239 list_for_each_entry(lip, &ailp->xa_ail, li_ail) {
5b00f14f 240 if (XFS_LSN_CMP(lip->li_lsn, lsn) >= 0)
7ee49acf 241 goto out;
535f6b37 242 }
16b59029
DC
243 return NULL;
244
5b00f14f 245out:
16b59029
DC
246 if (lip)
247 cur->item = xfs_ail_next(ailp, lip);
5b00f14f 248 return lip;
249a8c11
DC
249}
250
1d8c95a3
DC
251static struct xfs_log_item *
252__xfs_trans_ail_cursor_last(
253 struct xfs_ail *ailp,
254 xfs_lsn_t lsn)
255{
256 xfs_log_item_t *lip;
257
258 list_for_each_entry_reverse(lip, &ailp->xa_ail, li_ail) {
259 if (XFS_LSN_CMP(lip->li_lsn, lsn) <= 0)
260 return lip;
261 }
262 return NULL;
263}
264
265/*
16b59029
DC
266 * Find the last item in the AIL with the given @lsn by searching in descending
267 * LSN order and initialise the cursor to point to that item. If there is no
268 * item with the value of @lsn, then it sets the cursor to the last item with an
269 * LSN lower than @lsn. Returns NULL if the list is empty.
1d8c95a3
DC
270 */
271struct xfs_log_item *
272xfs_trans_ail_cursor_last(
273 struct xfs_ail *ailp,
274 struct xfs_ail_cursor *cur,
275 xfs_lsn_t lsn)
276{
277 xfs_trans_ail_cursor_init(ailp, cur);
278 cur->item = __xfs_trans_ail_cursor_last(ailp, lsn);
279 return cur->item;
280}
281
282/*
16b59029 283 * Splice the log item list into the AIL at the given LSN. We splice to the
1d8c95a3
DC
284 * tail of the given LSN to maintain insert order for push traversals. The
285 * cursor is optional, allowing repeated updates to the same LSN to avoid
e44f4112 286 * repeated traversals. This should not be called with an empty list.
cd4a3c50
DC
287 */
288static void
289xfs_ail_splice(
1d8c95a3
DC
290 struct xfs_ail *ailp,
291 struct xfs_ail_cursor *cur,
292 struct list_head *list,
293 xfs_lsn_t lsn)
cd4a3c50 294{
e44f4112
AE
295 struct xfs_log_item *lip;
296
297 ASSERT(!list_empty(list));
cd4a3c50 298
1d8c95a3 299 /*
e44f4112
AE
300 * Use the cursor to determine the insertion point if one is
301 * provided. If not, or if the one we got is not valid,
302 * find the place in the AIL where the items belong.
1d8c95a3 303 */
e44f4112
AE
304 lip = cur ? cur->item : NULL;
305 if (!lip || (__psint_t) lip & 1)
1d8c95a3
DC
306 lip = __xfs_trans_ail_cursor_last(ailp, lsn);
307
e44f4112
AE
308 /*
309 * If a cursor is provided, we know we're processing the AIL
310 * in lsn order, and future items to be spliced in will
311 * follow the last one being inserted now. Update the
312 * cursor to point to that last item, now while we have a
313 * reliable pointer to it.
314 */
315 if (cur)
316 cur->item = list_entry(list->prev, struct xfs_log_item, li_ail);
cd4a3c50 317
1d8c95a3 318 /*
e44f4112
AE
319 * Finally perform the splice. Unless the AIL was empty,
320 * lip points to the item in the AIL _after_ which the new
321 * items should go. If lip is null the AIL was empty, so
322 * the new items go at the head of the AIL.
1d8c95a3 323 */
e44f4112
AE
324 if (lip)
325 list_splice(list, &lip->li_ail);
326 else
327 list_splice(list, &ailp->xa_ail);
cd4a3c50
DC
328}
329
330/*
331 * Delete the given item from the AIL. Return a pointer to the item.
332 */
333static void
334xfs_ail_delete(
335 struct xfs_ail *ailp,
336 xfs_log_item_t *lip)
337{
338 xfs_ail_check(ailp, lip);
339 list_del(&lip->li_ail);
340 xfs_trans_ail_cursor_clear(ailp, lip);
341}
342
0030807c
CH
343static long
344xfsaild_push(
345 struct xfs_ail *ailp)
249a8c11 346{
9e7004e7 347 xfs_mount_t *mp = ailp->xa_mount;
af3e4022 348 struct xfs_ail_cursor cur;
9e7004e7
DC
349 xfs_log_item_t *lip;
350 xfs_lsn_t lsn;
fe0da767 351 xfs_lsn_t target;
43ff2122 352 long tout;
9e7004e7 353 int stuck = 0;
43ff2122 354 int flushing = 0;
9e7004e7 355 int count = 0;
1da177e4 356
670ce93f 357 /*
43ff2122
CH
358 * If we encountered pinned items or did not finish writing out all
359 * buffers the last time we ran, force the log first and wait for it
360 * before pushing again.
670ce93f 361 */
43ff2122
CH
362 if (ailp->xa_log_flush && ailp->xa_last_pushed_lsn == 0 &&
363 (!list_empty_careful(&ailp->xa_buf_list) ||
364 xfs_ail_min_lsn(ailp))) {
670ce93f 365 ailp->xa_log_flush = 0;
43ff2122 366
670ce93f
DC
367 XFS_STATS_INC(xs_push_ail_flush);
368 xfs_log_force(mp, XFS_LOG_SYNC);
670ce93f
DC
369 }
370
43ff2122 371 spin_lock(&ailp->xa_lock);
8375f922
BF
372
373 /* barrier matches the xa_target update in xfs_ail_push() */
374 smp_rmb();
375 target = ailp->xa_target;
376 ailp->xa_target_prev = target;
377
af3e4022 378 lip = xfs_trans_ail_cursor_first(ailp, &cur, ailp->xa_last_pushed_lsn);
211e4d43 379 if (!lip) {
1da177e4 380 /*
43ff2122
CH
381 * If the AIL is empty or our push has reached the end we are
382 * done now.
1da177e4 383 */
af3e4022 384 xfs_trans_ail_cursor_done(ailp, &cur);
c7e8f268 385 spin_unlock(&ailp->xa_lock);
9e7004e7 386 goto out_done;
1da177e4
LT
387 }
388
389 XFS_STATS_INC(xs_push_ail);
390
249a8c11 391 lsn = lip->li_lsn;
50e86686 392 while ((XFS_LSN_CMP(lip->li_lsn, target) <= 0)) {
249a8c11 393 int lock_result;
43ff2122 394
1da177e4 395 /*
43ff2122
CH
396 * Note that IOP_PUSH may unlock and reacquire the AIL lock. We
397 * rely on the AIL cursor implementation to be able to deal with
398 * the dropped lock.
1da177e4 399 */
43ff2122 400 lock_result = IOP_PUSH(lip, &ailp->xa_buf_list);
1da177e4 401 switch (lock_result) {
249a8c11 402 case XFS_ITEM_SUCCESS:
1da177e4 403 XFS_STATS_INC(xs_push_ail_success);
9e4c109a
CH
404 trace_xfs_ail_push(lip);
405
0bf6a5bd 406 ailp->xa_last_pushed_lsn = lsn;
1da177e4
LT
407 break;
408
43ff2122
CH
409 case XFS_ITEM_FLUSHING:
410 /*
411 * The item or its backing buffer is already beeing
412 * flushed. The typical reason for that is that an
413 * inode buffer is locked because we already pushed the
414 * updates to it as part of inode clustering.
415 *
416 * We do not want to to stop flushing just because lots
417 * of items are already beeing flushed, but we need to
418 * re-try the flushing relatively soon if most of the
419 * AIL is beeing flushed.
420 */
421 XFS_STATS_INC(xs_push_ail_flushing);
422 trace_xfs_ail_flushing(lip);
423
424 flushing++;
425 ailp->xa_last_pushed_lsn = lsn;
1da177e4
LT
426 break;
427
249a8c11 428 case XFS_ITEM_PINNED:
1da177e4 429 XFS_STATS_INC(xs_push_ail_pinned);
9e4c109a
CH
430 trace_xfs_ail_pinned(lip);
431
249a8c11 432 stuck++;
670ce93f 433 ailp->xa_log_flush++;
1da177e4 434 break;
249a8c11 435 case XFS_ITEM_LOCKED:
1da177e4 436 XFS_STATS_INC(xs_push_ail_locked);
9e4c109a 437 trace_xfs_ail_locked(lip);
43ff2122 438
249a8c11 439 stuck++;
1da177e4 440 break;
249a8c11 441 default:
1da177e4
LT
442 ASSERT(0);
443 break;
444 }
445
249a8c11 446 count++;
1da177e4 447
249a8c11
DC
448 /*
449 * Are there too many items we can't do anything with?
43ff2122 450 *
249a8c11
DC
451 * If we we are skipping too many items because we can't flush
452 * them or they are already being flushed, we back off and
453 * given them time to complete whatever operation is being
454 * done. i.e. remove pressure from the AIL while we can't make
455 * progress so traversals don't slow down further inserts and
456 * removals to/from the AIL.
457 *
458 * The value of 100 is an arbitrary magic number based on
459 * observation.
460 */
461 if (stuck > 100)
462 break;
463
af3e4022 464 lip = xfs_trans_ail_cursor_next(ailp, &cur);
249a8c11
DC
465 if (lip == NULL)
466 break;
249a8c11 467 lsn = lip->li_lsn;
1da177e4 468 }
af3e4022 469 xfs_trans_ail_cursor_done(ailp, &cur);
c7e8f268 470 spin_unlock(&ailp->xa_lock);
1da177e4 471
43ff2122
CH
472 if (xfs_buf_delwri_submit_nowait(&ailp->xa_buf_list))
473 ailp->xa_log_flush++;
d808f617 474
43ff2122 475 if (!count || XFS_LSN_CMP(lsn, target) >= 0) {
9e7004e7 476out_done:
92d9cd10 477 /*
43ff2122
CH
478 * We reached the target or the AIL is empty, so wait a bit
479 * longer for I/O to complete and remove pushed items from the
480 * AIL before we start the next scan from the start of the AIL.
92d9cd10 481 */
453eac8a 482 tout = 50;
0bf6a5bd 483 ailp->xa_last_pushed_lsn = 0;
43ff2122 484 } else if (((stuck + flushing) * 100) / count > 90) {
249a8c11 485 /*
43ff2122
CH
486 * Either there is a lot of contention on the AIL or we are
487 * stuck due to operations in progress. "Stuck" in this case
488 * is defined as >90% of the items we tried to push were stuck.
249a8c11
DC
489 *
490 * Backoff a bit more to allow some I/O to complete before
43ff2122
CH
491 * restarting from the start of the AIL. This prevents us from
492 * spinning on the same items, and if they are pinned will all
493 * the restart to issue a log force to unpin the stuck items.
249a8c11 494 */
453eac8a 495 tout = 20;
670ce93f 496 ailp->xa_last_pushed_lsn = 0;
43ff2122
CH
497 } else {
498 /*
499 * Assume we have more work to do in a short while.
500 */
501 tout = 10;
1da177e4 502 }
0bf6a5bd 503
0030807c
CH
504 return tout;
505}
506
507static int
508xfsaild(
509 void *data)
510{
511 struct xfs_ail *ailp = data;
512 long tout = 0; /* milliseconds */
513
6fa3eb70 514 set_freezable();
43ff2122
CH
515 current->flags |= PF_MEMALLOC;
516
6fa3eb70 517 while (!kthread_freezable_should_stop(NULL)) {
0030807c
CH
518 if (tout && tout <= 20)
519 __set_current_state(TASK_KILLABLE);
520 else
521 __set_current_state(TASK_INTERRUPTIBLE);
8375f922
BF
522
523 spin_lock(&ailp->xa_lock);
524
525 /*
526 * Idle if the AIL is empty and we are not racing with a target
527 * update. We check the AIL after we set the task to a sleep
528 * state to guarantee that we either catch an xa_target update
529 * or that a wake_up resets the state to TASK_RUNNING.
530 * Otherwise, we run the risk of sleeping indefinitely.
531 *
532 * The barrier matches the xa_target update in xfs_ail_push().
533 */
534 smp_rmb();
535 if (!xfs_ail_min(ailp) &&
536 ailp->xa_target == ailp->xa_target_prev) {
537 spin_unlock(&ailp->xa_lock);
538 schedule();
6fa3eb70 539 try_to_freeze();
8375f922
BF
540 tout = 0;
541 continue;
542 }
543 spin_unlock(&ailp->xa_lock);
544
545 if (tout)
546 schedule_timeout(msecs_to_jiffies(tout));
547
548 __set_current_state(TASK_RUNNING);
0030807c
CH
549
550 try_to_freeze();
551
552 tout = xfsaild_push(ailp);
553 }
554
555 return 0;
453eac8a 556}
1da177e4 557
0bf6a5bd
DC
558/*
559 * This routine is called to move the tail of the AIL forward. It does this by
560 * trying to flush items in the AIL whose lsns are below the given
561 * threshold_lsn.
562 *
563 * The push is run asynchronously in a workqueue, which means the caller needs
564 * to handle waiting on the async flush for space to become available.
565 * We don't want to interrupt any push that is in progress, hence we only queue
566 * work if we set the pushing bit approriately.
567 *
568 * We do this unlocked - we only need to know whether there is anything in the
569 * AIL at the time we are called. We don't need to access the contents of
570 * any of the objects, so the lock is not needed.
571 */
572void
fd074841 573xfs_ail_push(
0bf6a5bd
DC
574 struct xfs_ail *ailp,
575 xfs_lsn_t threshold_lsn)
576{
577 xfs_log_item_t *lip;
578
579 lip = xfs_ail_min(ailp);
580 if (!lip || XFS_FORCED_SHUTDOWN(ailp->xa_mount) ||
581 XFS_LSN_CMP(threshold_lsn, ailp->xa_target) <= 0)
582 return;
583
584 /*
585 * Ensure that the new target is noticed in push code before it clears
586 * the XFS_AIL_PUSHING_BIT.
587 */
588 smp_wmb();
fe0da767 589 xfs_trans_ail_copy_lsn(ailp, &ailp->xa_target, &threshold_lsn);
0030807c
CH
590 smp_wmb();
591
592 wake_up_process(ailp->xa_task);
0bf6a5bd 593}
1da177e4 594
fd074841
DC
595/*
596 * Push out all items in the AIL immediately
597 */
598void
599xfs_ail_push_all(
600 struct xfs_ail *ailp)
601{
602 xfs_lsn_t threshold_lsn = xfs_ail_max_lsn(ailp);
603
604 if (threshold_lsn)
605 xfs_ail_push(ailp, threshold_lsn);
606}
607
211e4d43
CH
608/*
609 * Push out all items in the AIL immediately and wait until the AIL is empty.
610 */
611void
612xfs_ail_push_all_sync(
613 struct xfs_ail *ailp)
614{
615 struct xfs_log_item *lip;
616 DEFINE_WAIT(wait);
617
618 spin_lock(&ailp->xa_lock);
619 while ((lip = xfs_ail_max(ailp)) != NULL) {
620 prepare_to_wait(&ailp->xa_empty, &wait, TASK_UNINTERRUPTIBLE);
621 ailp->xa_target = lip->li_lsn;
622 wake_up_process(ailp->xa_task);
623 spin_unlock(&ailp->xa_lock);
624 schedule();
625 spin_lock(&ailp->xa_lock);
626 }
627 spin_unlock(&ailp->xa_lock);
628
629 finish_wait(&ailp->xa_empty, &wait);
630}
631
0e57f6a3
DC
632/*
633 * xfs_trans_ail_update - bulk AIL insertion operation.
634 *
635 * @xfs_trans_ail_update takes an array of log items that all need to be
636 * positioned at the same LSN in the AIL. If an item is not in the AIL, it will
637 * be added. Otherwise, it will be repositioned by removing it and re-adding
638 * it to the AIL. If we move the first item in the AIL, update the log tail to
639 * match the new minimum LSN in the AIL.
640 *
641 * This function takes the AIL lock once to execute the update operations on
642 * all the items in the array, and as such should not be called with the AIL
643 * lock held. As a result, once we have the AIL lock, we need to check each log
644 * item LSN to confirm it needs to be moved forward in the AIL.
645 *
646 * To optimise the insert operation, we delete all the items from the AIL in
647 * the first pass, moving them into a temporary list, then splice the temporary
648 * list into the correct position in the AIL. This avoids needing to do an
649 * insert operation on every item.
650 *
651 * This function must be called with the AIL lock held. The lock is dropped
652 * before returning.
653 */
654void
655xfs_trans_ail_update_bulk(
656 struct xfs_ail *ailp,
1d8c95a3 657 struct xfs_ail_cursor *cur,
0e57f6a3
DC
658 struct xfs_log_item **log_items,
659 int nr_items,
660 xfs_lsn_t lsn) __releases(ailp->xa_lock)
661{
662 xfs_log_item_t *mlip;
0e57f6a3
DC
663 int mlip_changed = 0;
664 int i;
665 LIST_HEAD(tmp);
666
e44f4112 667 ASSERT(nr_items > 0); /* Not required, but true. */
0e57f6a3
DC
668 mlip = xfs_ail_min(ailp);
669
670 for (i = 0; i < nr_items; i++) {
671 struct xfs_log_item *lip = log_items[i];
672 if (lip->li_flags & XFS_LI_IN_AIL) {
673 /* check if we really need to move the item */
674 if (XFS_LSN_CMP(lsn, lip->li_lsn) <= 0)
675 continue;
676
677 xfs_ail_delete(ailp, lip);
678 if (mlip == lip)
679 mlip_changed = 1;
680 } else {
681 lip->li_flags |= XFS_LI_IN_AIL;
682 }
683 lip->li_lsn = lsn;
684 list_add(&lip->li_ail, &tmp);
685 }
686
e44f4112
AE
687 if (!list_empty(&tmp))
688 xfs_ail_splice(ailp, cur, &tmp, lsn);
0e57f6a3 689
1c304625
CH
690 if (mlip_changed) {
691 if (!XFS_FORCED_SHUTDOWN(ailp->xa_mount))
692 xlog_assign_tail_lsn_locked(ailp->xa_mount);
693 spin_unlock(&ailp->xa_lock);
694
cfb7cdca 695 xfs_log_space_wake(ailp->xa_mount);
1c304625
CH
696 } else {
697 spin_unlock(&ailp->xa_lock);
0e57f6a3 698 }
0e57f6a3
DC
699}
700
30136832
DC
701/*
702 * xfs_trans_ail_delete_bulk - remove multiple log items from the AIL
703 *
704 * @xfs_trans_ail_delete_bulk takes an array of log items that all need to
705 * removed from the AIL. The caller is already holding the AIL lock, and done
706 * all the checks necessary to ensure the items passed in via @log_items are
707 * ready for deletion. This includes checking that the items are in the AIL.
708 *
709 * For each log item to be removed, unlink it from the AIL, clear the IN_AIL
710 * flag from the item and reset the item's lsn to 0. If we remove the first
711 * item in the AIL, update the log tail to match the new minimum LSN in the
712 * AIL.
713 *
714 * This function will not drop the AIL lock until all items are removed from
715 * the AIL to minimise the amount of lock traffic on the AIL. This does not
716 * greatly increase the AIL hold time, but does significantly reduce the amount
717 * of traffic on the lock, especially during IO completion.
718 *
719 * This function must be called with the AIL lock held. The lock is dropped
720 * before returning.
721 */
722void
723xfs_trans_ail_delete_bulk(
724 struct xfs_ail *ailp,
725 struct xfs_log_item **log_items,
04913fdd
DC
726 int nr_items,
727 int shutdown_type) __releases(ailp->xa_lock)
30136832
DC
728{
729 xfs_log_item_t *mlip;
30136832
DC
730 int mlip_changed = 0;
731 int i;
732
733 mlip = xfs_ail_min(ailp);
734
735 for (i = 0; i < nr_items; i++) {
736 struct xfs_log_item *lip = log_items[i];
737 if (!(lip->li_flags & XFS_LI_IN_AIL)) {
738 struct xfs_mount *mp = ailp->xa_mount;
739
740 spin_unlock(&ailp->xa_lock);
741 if (!XFS_FORCED_SHUTDOWN(mp)) {
6a19d939 742 xfs_alert_tag(mp, XFS_PTAG_AILDELETE,
30136832
DC
743 "%s: attempting to delete a log item that is not in the AIL",
744 __func__);
04913fdd 745 xfs_force_shutdown(mp, shutdown_type);
30136832
DC
746 }
747 return;
748 }
749
750 xfs_ail_delete(ailp, lip);
751 lip->li_flags &= ~XFS_LI_IN_AIL;
752 lip->li_lsn = 0;
753 if (mlip == lip)
754 mlip_changed = 1;
755 }
756
1c304625
CH
757 if (mlip_changed) {
758 if (!XFS_FORCED_SHUTDOWN(ailp->xa_mount))
759 xlog_assign_tail_lsn_locked(ailp->xa_mount);
211e4d43
CH
760 if (list_empty(&ailp->xa_ail))
761 wake_up_all(&ailp->xa_empty);
1c304625
CH
762 spin_unlock(&ailp->xa_lock);
763
cfb7cdca 764 xfs_log_space_wake(ailp->xa_mount);
1c304625
CH
765 } else {
766 spin_unlock(&ailp->xa_lock);
30136832 767 }
30136832 768}
1da177e4 769
249a8c11 770int
1da177e4
LT
771xfs_trans_ail_init(
772 xfs_mount_t *mp)
773{
82fa9012
DC
774 struct xfs_ail *ailp;
775
776 ailp = kmem_zalloc(sizeof(struct xfs_ail), KM_MAYFAIL);
777 if (!ailp)
778 return ENOMEM;
779
780 ailp->xa_mount = mp;
781 INIT_LIST_HEAD(&ailp->xa_ail);
af3e4022 782 INIT_LIST_HEAD(&ailp->xa_cursors);
c7e8f268 783 spin_lock_init(&ailp->xa_lock);
43ff2122 784 INIT_LIST_HEAD(&ailp->xa_buf_list);
211e4d43 785 init_waitqueue_head(&ailp->xa_empty);
0030807c
CH
786
787 ailp->xa_task = kthread_run(xfsaild, ailp, "xfsaild/%s",
788 ailp->xa_mount->m_fsname);
789 if (IS_ERR(ailp->xa_task))
790 goto out_free_ailp;
791
27d8d5fe
DC
792 mp->m_ail = ailp;
793 return 0;
0030807c
CH
794
795out_free_ailp:
796 kmem_free(ailp);
797 return ENOMEM;
249a8c11
DC
798}
799
800void
801xfs_trans_ail_destroy(
802 xfs_mount_t *mp)
803{
82fa9012
DC
804 struct xfs_ail *ailp = mp->m_ail;
805
0030807c 806 kthread_stop(ailp->xa_task);
82fa9012 807 kmem_free(ailp);
1da177e4 808}