blob: 00deed4ef3edd4b54da3a3de1d14e59425458ca0 [file] [log] [blame]
Miao Xie16cdcec2011-04-22 18:12:22 +08001/*
2 * Copyright (C) 2011 Fujitsu. All rights reserved.
3 * Written by Miao Xie <miaox@cn.fujitsu.com>
4 *
5 * This program is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU General Public
7 * License v2 as published by the Free Software Foundation.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
12 * General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public
15 * License along with this program; if not, write to the
16 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
17 * Boston, MA 021110-1307, USA.
18 */
19
20#include <linux/slab.h>
21#include "delayed-inode.h"
22#include "disk-io.h"
23#include "transaction.h"
24
25#define BTRFS_DELAYED_WRITEBACK 400
26#define BTRFS_DELAYED_BACKGROUND 100
27
28static struct kmem_cache *delayed_node_cache;
29
30int __init btrfs_delayed_inode_init(void)
31{
32 delayed_node_cache = kmem_cache_create("delayed_node",
33 sizeof(struct btrfs_delayed_node),
34 0,
35 SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD,
36 NULL);
37 if (!delayed_node_cache)
38 return -ENOMEM;
39 return 0;
40}
41
42void btrfs_delayed_inode_exit(void)
43{
44 if (delayed_node_cache)
45 kmem_cache_destroy(delayed_node_cache);
46}
47
48static inline void btrfs_init_delayed_node(
49 struct btrfs_delayed_node *delayed_node,
50 struct btrfs_root *root, u64 inode_id)
51{
52 delayed_node->root = root;
53 delayed_node->inode_id = inode_id;
54 atomic_set(&delayed_node->refs, 0);
55 delayed_node->count = 0;
56 delayed_node->in_list = 0;
57 delayed_node->inode_dirty = 0;
58 delayed_node->ins_root = RB_ROOT;
59 delayed_node->del_root = RB_ROOT;
60 mutex_init(&delayed_node->mutex);
61 delayed_node->index_cnt = 0;
62 INIT_LIST_HEAD(&delayed_node->n_list);
63 INIT_LIST_HEAD(&delayed_node->p_list);
64 delayed_node->bytes_reserved = 0;
Li Zefan293f7e02012-07-10 00:58:58 -060065 memset(&delayed_node->inode_item, 0, sizeof(delayed_node->inode_item));
Miao Xie16cdcec2011-04-22 18:12:22 +080066}
67
68static inline int btrfs_is_continuous_delayed_item(
69 struct btrfs_delayed_item *item1,
70 struct btrfs_delayed_item *item2)
71{
72 if (item1->key.type == BTRFS_DIR_INDEX_KEY &&
73 item1->key.objectid == item2->key.objectid &&
74 item1->key.type == item2->key.type &&
75 item1->key.offset + 1 == item2->key.offset)
76 return 1;
77 return 0;
78}
79
80static inline struct btrfs_delayed_root *btrfs_get_delayed_root(
81 struct btrfs_root *root)
82{
83 return root->fs_info->delayed_root;
84}
85
Miao Xie2f7e33d2011-06-23 07:27:13 +000086static struct btrfs_delayed_node *btrfs_get_delayed_node(struct inode *inode)
87{
88 struct btrfs_inode *btrfs_inode = BTRFS_I(inode);
89 struct btrfs_root *root = btrfs_inode->root;
90 u64 ino = btrfs_ino(inode);
91 struct btrfs_delayed_node *node;
92
93 node = ACCESS_ONCE(btrfs_inode->delayed_node);
94 if (node) {
95 atomic_inc(&node->refs);
96 return node;
97 }
98
99 spin_lock(&root->inode_lock);
100 node = radix_tree_lookup(&root->delayed_nodes_tree, ino);
101 if (node) {
102 if (btrfs_inode->delayed_node) {
103 atomic_inc(&node->refs); /* can be accessed */
104 BUG_ON(btrfs_inode->delayed_node != node);
105 spin_unlock(&root->inode_lock);
106 return node;
107 }
108 btrfs_inode->delayed_node = node;
109 atomic_inc(&node->refs); /* can be accessed */
110 atomic_inc(&node->refs); /* cached in the inode */
111 spin_unlock(&root->inode_lock);
112 return node;
113 }
114 spin_unlock(&root->inode_lock);
115
116 return NULL;
117}
118
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100119/* Will return either the node or PTR_ERR(-ENOMEM) */
Miao Xie16cdcec2011-04-22 18:12:22 +0800120static struct btrfs_delayed_node *btrfs_get_or_create_delayed_node(
121 struct inode *inode)
122{
123 struct btrfs_delayed_node *node;
124 struct btrfs_inode *btrfs_inode = BTRFS_I(inode);
125 struct btrfs_root *root = btrfs_inode->root;
Chris Mason0d0ca302011-05-22 07:11:22 -0400126 u64 ino = btrfs_ino(inode);
Miao Xie16cdcec2011-04-22 18:12:22 +0800127 int ret;
128
129again:
Miao Xie2f7e33d2011-06-23 07:27:13 +0000130 node = btrfs_get_delayed_node(inode);
131 if (node)
Miao Xie16cdcec2011-04-22 18:12:22 +0800132 return node;
Miao Xie16cdcec2011-04-22 18:12:22 +0800133
134 node = kmem_cache_alloc(delayed_node_cache, GFP_NOFS);
135 if (!node)
136 return ERR_PTR(-ENOMEM);
Chris Mason0d0ca302011-05-22 07:11:22 -0400137 btrfs_init_delayed_node(node, root, ino);
Miao Xie16cdcec2011-04-22 18:12:22 +0800138
139 atomic_inc(&node->refs); /* cached in the btrfs inode */
140 atomic_inc(&node->refs); /* can be accessed */
141
142 ret = radix_tree_preload(GFP_NOFS & ~__GFP_HIGHMEM);
143 if (ret) {
144 kmem_cache_free(delayed_node_cache, node);
145 return ERR_PTR(ret);
146 }
147
148 spin_lock(&root->inode_lock);
Chris Mason0d0ca302011-05-22 07:11:22 -0400149 ret = radix_tree_insert(&root->delayed_nodes_tree, ino, node);
Miao Xie16cdcec2011-04-22 18:12:22 +0800150 if (ret == -EEXIST) {
151 kmem_cache_free(delayed_node_cache, node);
152 spin_unlock(&root->inode_lock);
153 radix_tree_preload_end();
154 goto again;
155 }
156 btrfs_inode->delayed_node = node;
157 spin_unlock(&root->inode_lock);
158 radix_tree_preload_end();
159
160 return node;
161}
162
163/*
164 * Call it when holding delayed_node->mutex
165 *
166 * If mod = 1, add this node into the prepared list.
167 */
168static void btrfs_queue_delayed_node(struct btrfs_delayed_root *root,
169 struct btrfs_delayed_node *node,
170 int mod)
171{
172 spin_lock(&root->lock);
173 if (node->in_list) {
174 if (!list_empty(&node->p_list))
175 list_move_tail(&node->p_list, &root->prepare_list);
176 else if (mod)
177 list_add_tail(&node->p_list, &root->prepare_list);
178 } else {
179 list_add_tail(&node->n_list, &root->node_list);
180 list_add_tail(&node->p_list, &root->prepare_list);
181 atomic_inc(&node->refs); /* inserted into list */
182 root->nodes++;
183 node->in_list = 1;
184 }
185 spin_unlock(&root->lock);
186}
187
188/* Call it when holding delayed_node->mutex */
189static void btrfs_dequeue_delayed_node(struct btrfs_delayed_root *root,
190 struct btrfs_delayed_node *node)
191{
192 spin_lock(&root->lock);
193 if (node->in_list) {
194 root->nodes--;
195 atomic_dec(&node->refs); /* not in the list */
196 list_del_init(&node->n_list);
197 if (!list_empty(&node->p_list))
198 list_del_init(&node->p_list);
199 node->in_list = 0;
200 }
201 spin_unlock(&root->lock);
202}
203
204struct btrfs_delayed_node *btrfs_first_delayed_node(
205 struct btrfs_delayed_root *delayed_root)
206{
207 struct list_head *p;
208 struct btrfs_delayed_node *node = NULL;
209
210 spin_lock(&delayed_root->lock);
211 if (list_empty(&delayed_root->node_list))
212 goto out;
213
214 p = delayed_root->node_list.next;
215 node = list_entry(p, struct btrfs_delayed_node, n_list);
216 atomic_inc(&node->refs);
217out:
218 spin_unlock(&delayed_root->lock);
219
220 return node;
221}
222
223struct btrfs_delayed_node *btrfs_next_delayed_node(
224 struct btrfs_delayed_node *node)
225{
226 struct btrfs_delayed_root *delayed_root;
227 struct list_head *p;
228 struct btrfs_delayed_node *next = NULL;
229
230 delayed_root = node->root->fs_info->delayed_root;
231 spin_lock(&delayed_root->lock);
232 if (!node->in_list) { /* not in the list */
233 if (list_empty(&delayed_root->node_list))
234 goto out;
235 p = delayed_root->node_list.next;
236 } else if (list_is_last(&node->n_list, &delayed_root->node_list))
237 goto out;
238 else
239 p = node->n_list.next;
240
241 next = list_entry(p, struct btrfs_delayed_node, n_list);
242 atomic_inc(&next->refs);
243out:
244 spin_unlock(&delayed_root->lock);
245
246 return next;
247}
248
249static void __btrfs_release_delayed_node(
250 struct btrfs_delayed_node *delayed_node,
251 int mod)
252{
253 struct btrfs_delayed_root *delayed_root;
254
255 if (!delayed_node)
256 return;
257
258 delayed_root = delayed_node->root->fs_info->delayed_root;
259
260 mutex_lock(&delayed_node->mutex);
261 if (delayed_node->count)
262 btrfs_queue_delayed_node(delayed_root, delayed_node, mod);
263 else
264 btrfs_dequeue_delayed_node(delayed_root, delayed_node);
265 mutex_unlock(&delayed_node->mutex);
266
267 if (atomic_dec_and_test(&delayed_node->refs)) {
268 struct btrfs_root *root = delayed_node->root;
269 spin_lock(&root->inode_lock);
270 if (atomic_read(&delayed_node->refs) == 0) {
271 radix_tree_delete(&root->delayed_nodes_tree,
272 delayed_node->inode_id);
273 kmem_cache_free(delayed_node_cache, delayed_node);
274 }
275 spin_unlock(&root->inode_lock);
276 }
277}
278
279static inline void btrfs_release_delayed_node(struct btrfs_delayed_node *node)
280{
281 __btrfs_release_delayed_node(node, 0);
282}
283
284struct btrfs_delayed_node *btrfs_first_prepared_delayed_node(
285 struct btrfs_delayed_root *delayed_root)
286{
287 struct list_head *p;
288 struct btrfs_delayed_node *node = NULL;
289
290 spin_lock(&delayed_root->lock);
291 if (list_empty(&delayed_root->prepare_list))
292 goto out;
293
294 p = delayed_root->prepare_list.next;
295 list_del_init(p);
296 node = list_entry(p, struct btrfs_delayed_node, p_list);
297 atomic_inc(&node->refs);
298out:
299 spin_unlock(&delayed_root->lock);
300
301 return node;
302}
303
304static inline void btrfs_release_prepared_delayed_node(
305 struct btrfs_delayed_node *node)
306{
307 __btrfs_release_delayed_node(node, 1);
308}
309
310struct btrfs_delayed_item *btrfs_alloc_delayed_item(u32 data_len)
311{
312 struct btrfs_delayed_item *item;
313 item = kmalloc(sizeof(*item) + data_len, GFP_NOFS);
314 if (item) {
315 item->data_len = data_len;
316 item->ins_or_del = 0;
317 item->bytes_reserved = 0;
Miao Xie16cdcec2011-04-22 18:12:22 +0800318 item->delayed_node = NULL;
319 atomic_set(&item->refs, 1);
320 }
321 return item;
322}
323
324/*
325 * __btrfs_lookup_delayed_item - look up the delayed item by key
326 * @delayed_node: pointer to the delayed node
327 * @key: the key to look up
328 * @prev: used to store the prev item if the right item isn't found
329 * @next: used to store the next item if the right item isn't found
330 *
331 * Note: if we don't find the right item, we will return the prev item and
332 * the next item.
333 */
334static struct btrfs_delayed_item *__btrfs_lookup_delayed_item(
335 struct rb_root *root,
336 struct btrfs_key *key,
337 struct btrfs_delayed_item **prev,
338 struct btrfs_delayed_item **next)
339{
340 struct rb_node *node, *prev_node = NULL;
341 struct btrfs_delayed_item *delayed_item = NULL;
342 int ret = 0;
343
344 node = root->rb_node;
345
346 while (node) {
347 delayed_item = rb_entry(node, struct btrfs_delayed_item,
348 rb_node);
349 prev_node = node;
350 ret = btrfs_comp_cpu_keys(&delayed_item->key, key);
351 if (ret < 0)
352 node = node->rb_right;
353 else if (ret > 0)
354 node = node->rb_left;
355 else
356 return delayed_item;
357 }
358
359 if (prev) {
360 if (!prev_node)
361 *prev = NULL;
362 else if (ret < 0)
363 *prev = delayed_item;
364 else if ((node = rb_prev(prev_node)) != NULL) {
365 *prev = rb_entry(node, struct btrfs_delayed_item,
366 rb_node);
367 } else
368 *prev = NULL;
369 }
370
371 if (next) {
372 if (!prev_node)
373 *next = NULL;
374 else if (ret > 0)
375 *next = delayed_item;
376 else if ((node = rb_next(prev_node)) != NULL) {
377 *next = rb_entry(node, struct btrfs_delayed_item,
378 rb_node);
379 } else
380 *next = NULL;
381 }
382 return NULL;
383}
384
385struct btrfs_delayed_item *__btrfs_lookup_delayed_insertion_item(
386 struct btrfs_delayed_node *delayed_node,
387 struct btrfs_key *key)
388{
389 struct btrfs_delayed_item *item;
390
391 item = __btrfs_lookup_delayed_item(&delayed_node->ins_root, key,
392 NULL, NULL);
393 return item;
394}
395
396struct btrfs_delayed_item *__btrfs_lookup_delayed_deletion_item(
397 struct btrfs_delayed_node *delayed_node,
398 struct btrfs_key *key)
399{
400 struct btrfs_delayed_item *item;
401
402 item = __btrfs_lookup_delayed_item(&delayed_node->del_root, key,
403 NULL, NULL);
404 return item;
405}
406
407struct btrfs_delayed_item *__btrfs_search_delayed_insertion_item(
408 struct btrfs_delayed_node *delayed_node,
409 struct btrfs_key *key)
410{
411 struct btrfs_delayed_item *item, *next;
412
413 item = __btrfs_lookup_delayed_item(&delayed_node->ins_root, key,
414 NULL, &next);
415 if (!item)
416 item = next;
417
418 return item;
419}
420
421struct btrfs_delayed_item *__btrfs_search_delayed_deletion_item(
422 struct btrfs_delayed_node *delayed_node,
423 struct btrfs_key *key)
424{
425 struct btrfs_delayed_item *item, *next;
426
427 item = __btrfs_lookup_delayed_item(&delayed_node->del_root, key,
428 NULL, &next);
429 if (!item)
430 item = next;
431
432 return item;
433}
434
435static int __btrfs_add_delayed_item(struct btrfs_delayed_node *delayed_node,
436 struct btrfs_delayed_item *ins,
437 int action)
438{
439 struct rb_node **p, *node;
440 struct rb_node *parent_node = NULL;
441 struct rb_root *root;
442 struct btrfs_delayed_item *item;
443 int cmp;
444
445 if (action == BTRFS_DELAYED_INSERTION_ITEM)
446 root = &delayed_node->ins_root;
447 else if (action == BTRFS_DELAYED_DELETION_ITEM)
448 root = &delayed_node->del_root;
449 else
450 BUG();
451 p = &root->rb_node;
452 node = &ins->rb_node;
453
454 while (*p) {
455 parent_node = *p;
456 item = rb_entry(parent_node, struct btrfs_delayed_item,
457 rb_node);
458
459 cmp = btrfs_comp_cpu_keys(&item->key, &ins->key);
460 if (cmp < 0)
461 p = &(*p)->rb_right;
462 else if (cmp > 0)
463 p = &(*p)->rb_left;
464 else
465 return -EEXIST;
466 }
467
468 rb_link_node(node, parent_node, p);
469 rb_insert_color(node, root);
470 ins->delayed_node = delayed_node;
471 ins->ins_or_del = action;
472
473 if (ins->key.type == BTRFS_DIR_INDEX_KEY &&
474 action == BTRFS_DELAYED_INSERTION_ITEM &&
475 ins->key.offset >= delayed_node->index_cnt)
476 delayed_node->index_cnt = ins->key.offset + 1;
477
478 delayed_node->count++;
479 atomic_inc(&delayed_node->root->fs_info->delayed_root->items);
480 return 0;
481}
482
483static int __btrfs_add_delayed_insertion_item(struct btrfs_delayed_node *node,
484 struct btrfs_delayed_item *item)
485{
486 return __btrfs_add_delayed_item(node, item,
487 BTRFS_DELAYED_INSERTION_ITEM);
488}
489
490static int __btrfs_add_delayed_deletion_item(struct btrfs_delayed_node *node,
491 struct btrfs_delayed_item *item)
492{
493 return __btrfs_add_delayed_item(node, item,
494 BTRFS_DELAYED_DELETION_ITEM);
495}
496
497static void __btrfs_remove_delayed_item(struct btrfs_delayed_item *delayed_item)
498{
499 struct rb_root *root;
500 struct btrfs_delayed_root *delayed_root;
501
502 delayed_root = delayed_item->delayed_node->root->fs_info->delayed_root;
503
504 BUG_ON(!delayed_root);
505 BUG_ON(delayed_item->ins_or_del != BTRFS_DELAYED_DELETION_ITEM &&
506 delayed_item->ins_or_del != BTRFS_DELAYED_INSERTION_ITEM);
507
508 if (delayed_item->ins_or_del == BTRFS_DELAYED_INSERTION_ITEM)
509 root = &delayed_item->delayed_node->ins_root;
510 else
511 root = &delayed_item->delayed_node->del_root;
512
513 rb_erase(&delayed_item->rb_node, root);
514 delayed_item->delayed_node->count--;
515 atomic_dec(&delayed_root->items);
516 if (atomic_read(&delayed_root->items) < BTRFS_DELAYED_BACKGROUND &&
517 waitqueue_active(&delayed_root->wait))
518 wake_up(&delayed_root->wait);
519}
520
521static void btrfs_release_delayed_item(struct btrfs_delayed_item *item)
522{
523 if (item) {
524 __btrfs_remove_delayed_item(item);
525 if (atomic_dec_and_test(&item->refs))
526 kfree(item);
527 }
528}
529
530struct btrfs_delayed_item *__btrfs_first_delayed_insertion_item(
531 struct btrfs_delayed_node *delayed_node)
532{
533 struct rb_node *p;
534 struct btrfs_delayed_item *item = NULL;
535
536 p = rb_first(&delayed_node->ins_root);
537 if (p)
538 item = rb_entry(p, struct btrfs_delayed_item, rb_node);
539
540 return item;
541}
542
543struct btrfs_delayed_item *__btrfs_first_delayed_deletion_item(
544 struct btrfs_delayed_node *delayed_node)
545{
546 struct rb_node *p;
547 struct btrfs_delayed_item *item = NULL;
548
549 p = rb_first(&delayed_node->del_root);
550 if (p)
551 item = rb_entry(p, struct btrfs_delayed_item, rb_node);
552
553 return item;
554}
555
556struct btrfs_delayed_item *__btrfs_next_delayed_item(
557 struct btrfs_delayed_item *item)
558{
559 struct rb_node *p;
560 struct btrfs_delayed_item *next = NULL;
561
562 p = rb_next(&item->rb_node);
563 if (p)
564 next = rb_entry(p, struct btrfs_delayed_item, rb_node);
565
566 return next;
567}
568
Miao Xie16cdcec2011-04-22 18:12:22 +0800569static inline struct btrfs_root *btrfs_get_fs_root(struct btrfs_root *root,
570 u64 root_id)
571{
572 struct btrfs_key root_key;
573
574 if (root->objectid == root_id)
575 return root;
576
577 root_key.objectid = root_id;
578 root_key.type = BTRFS_ROOT_ITEM_KEY;
579 root_key.offset = (u64)-1;
580 return btrfs_read_fs_root_no_name(root->fs_info, &root_key);
581}
582
583static int btrfs_delayed_item_reserve_metadata(struct btrfs_trans_handle *trans,
584 struct btrfs_root *root,
585 struct btrfs_delayed_item *item)
586{
587 struct btrfs_block_rsv *src_rsv;
588 struct btrfs_block_rsv *dst_rsv;
589 u64 num_bytes;
590 int ret;
591
592 if (!trans->bytes_reserved)
593 return 0;
594
595 src_rsv = trans->block_rsv;
Josef Bacik6d668dd2011-11-03 22:54:25 -0400596 dst_rsv = &root->fs_info->delayed_block_rsv;
Miao Xie16cdcec2011-04-22 18:12:22 +0800597
598 num_bytes = btrfs_calc_trans_metadata_size(root, 1);
599 ret = btrfs_block_rsv_migrate(src_rsv, dst_rsv, num_bytes);
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500600 if (!ret) {
601 trace_btrfs_space_reservation(root->fs_info, "delayed_item",
602 item->key.objectid,
603 num_bytes, 1);
Miao Xie16cdcec2011-04-22 18:12:22 +0800604 item->bytes_reserved = num_bytes;
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500605 }
Miao Xie16cdcec2011-04-22 18:12:22 +0800606
607 return ret;
608}
609
610static void btrfs_delayed_item_release_metadata(struct btrfs_root *root,
611 struct btrfs_delayed_item *item)
612{
Miao Xie19fd2942011-06-15 10:47:30 +0000613 struct btrfs_block_rsv *rsv;
614
Miao Xie16cdcec2011-04-22 18:12:22 +0800615 if (!item->bytes_reserved)
616 return;
617
Josef Bacik6d668dd2011-11-03 22:54:25 -0400618 rsv = &root->fs_info->delayed_block_rsv;
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500619 trace_btrfs_space_reservation(root->fs_info, "delayed_item",
620 item->key.objectid, item->bytes_reserved,
621 0);
Miao Xie19fd2942011-06-15 10:47:30 +0000622 btrfs_block_rsv_release(root, rsv,
Miao Xie16cdcec2011-04-22 18:12:22 +0800623 item->bytes_reserved);
624}
625
626static int btrfs_delayed_inode_reserve_metadata(
627 struct btrfs_trans_handle *trans,
628 struct btrfs_root *root,
Josef Bacik7fd2ae22011-11-08 15:47:34 -0500629 struct inode *inode,
Miao Xie16cdcec2011-04-22 18:12:22 +0800630 struct btrfs_delayed_node *node)
631{
632 struct btrfs_block_rsv *src_rsv;
633 struct btrfs_block_rsv *dst_rsv;
634 u64 num_bytes;
635 int ret;
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500636 bool release = false;
Miao Xie16cdcec2011-04-22 18:12:22 +0800637
Miao Xie16cdcec2011-04-22 18:12:22 +0800638 src_rsv = trans->block_rsv;
Josef Bacik6d668dd2011-11-03 22:54:25 -0400639 dst_rsv = &root->fs_info->delayed_block_rsv;
Miao Xie16cdcec2011-04-22 18:12:22 +0800640
641 num_bytes = btrfs_calc_trans_metadata_size(root, 1);
Josef Bacikc06a0e12011-11-04 19:56:02 -0400642
643 /*
644 * btrfs_dirty_inode will update the inode under btrfs_join_transaction
645 * which doesn't reserve space for speed. This is a problem since we
646 * still need to reserve space for this update, so try to reserve the
647 * space.
648 *
649 * Now if src_rsv == delalloc_block_rsv we'll let it just steal since
650 * we're accounted for.
651 */
Chris Masone755d9a2011-12-15 13:36:29 -0500652 if (!src_rsv || (!trans->bytes_reserved &&
653 src_rsv != &root->fs_info->delalloc_block_rsv)) {
Josef Bacikc06a0e12011-11-04 19:56:02 -0400654 ret = btrfs_block_rsv_add_noflush(root, dst_rsv, num_bytes);
655 /*
656 * Since we're under a transaction reserve_metadata_bytes could
657 * try to commit the transaction which will make it return
658 * EAGAIN to make us stop the transaction we have, so return
659 * ENOSPC instead so that btrfs_dirty_inode knows what to do.
660 */
661 if (ret == -EAGAIN)
662 ret = -ENOSPC;
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500663 if (!ret) {
Josef Bacikc06a0e12011-11-04 19:56:02 -0400664 node->bytes_reserved = num_bytes;
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500665 trace_btrfs_space_reservation(root->fs_info,
666 "delayed_inode",
667 btrfs_ino(inode),
668 num_bytes, 1);
669 }
Josef Bacikc06a0e12011-11-04 19:56:02 -0400670 return ret;
Josef Bacik7fd2ae22011-11-08 15:47:34 -0500671 } else if (src_rsv == &root->fs_info->delalloc_block_rsv) {
672 spin_lock(&BTRFS_I(inode)->lock);
Josef Bacik72ac3c02012-05-23 14:13:11 -0400673 if (test_and_clear_bit(BTRFS_INODE_DELALLOC_META_RESERVED,
674 &BTRFS_I(inode)->runtime_flags)) {
Josef Bacik7fd2ae22011-11-08 15:47:34 -0500675 spin_unlock(&BTRFS_I(inode)->lock);
676 release = true;
677 goto migrate;
678 }
679 spin_unlock(&BTRFS_I(inode)->lock);
680
681 /* Ok we didn't have space pre-reserved. This shouldn't happen
682 * too often but it can happen if we do delalloc to an existing
683 * inode which gets dirtied because of the time update, and then
684 * isn't touched again until after the transaction commits and
685 * then we try to write out the data. First try to be nice and
686 * reserve something strictly for us. If not be a pain and try
687 * to steal from the delalloc block rsv.
688 */
689 ret = btrfs_block_rsv_add_noflush(root, dst_rsv, num_bytes);
690 if (!ret)
691 goto out;
692
693 ret = btrfs_block_rsv_migrate(src_rsv, dst_rsv, num_bytes);
694 if (!ret)
695 goto out;
696
697 /*
698 * Ok this is a problem, let's just steal from the global rsv
699 * since this really shouldn't happen that often.
700 */
701 WARN_ON(1);
702 ret = btrfs_block_rsv_migrate(&root->fs_info->global_block_rsv,
703 dst_rsv, num_bytes);
704 goto out;
Josef Bacikc06a0e12011-11-04 19:56:02 -0400705 }
706
Josef Bacik7fd2ae22011-11-08 15:47:34 -0500707migrate:
Miao Xie16cdcec2011-04-22 18:12:22 +0800708 ret = btrfs_block_rsv_migrate(src_rsv, dst_rsv, num_bytes);
Josef Bacik7fd2ae22011-11-08 15:47:34 -0500709
710out:
711 /*
712 * Migrate only takes a reservation, it doesn't touch the size of the
713 * block_rsv. This is to simplify people who don't normally have things
714 * migrated from their block rsv. If they go to release their
715 * reservation, that will decrease the size as well, so if migrate
716 * reduced size we'd end up with a negative size. But for the
717 * delalloc_meta_reserved stuff we will only know to drop 1 reservation,
718 * but we could in fact do this reserve/migrate dance several times
719 * between the time we did the original reservation and we'd clean it
720 * up. So to take care of this, release the space for the meta
721 * reservation here. I think it may be time for a documentation page on
722 * how block rsvs. work.
723 */
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500724 if (!ret) {
725 trace_btrfs_space_reservation(root->fs_info, "delayed_inode",
726 btrfs_ino(inode), num_bytes, 1);
Miao Xie16cdcec2011-04-22 18:12:22 +0800727 node->bytes_reserved = num_bytes;
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500728 }
Miao Xie16cdcec2011-04-22 18:12:22 +0800729
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500730 if (release) {
731 trace_btrfs_space_reservation(root->fs_info, "delalloc",
732 btrfs_ino(inode), num_bytes, 0);
Josef Bacik7fd2ae22011-11-08 15:47:34 -0500733 btrfs_block_rsv_release(root, src_rsv, num_bytes);
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500734 }
Miao Xie16cdcec2011-04-22 18:12:22 +0800735
736 return ret;
737}
738
739static void btrfs_delayed_inode_release_metadata(struct btrfs_root *root,
740 struct btrfs_delayed_node *node)
741{
742 struct btrfs_block_rsv *rsv;
743
744 if (!node->bytes_reserved)
745 return;
746
Josef Bacik6d668dd2011-11-03 22:54:25 -0400747 rsv = &root->fs_info->delayed_block_rsv;
Josef Bacik8c2a3ca2012-01-10 10:31:31 -0500748 trace_btrfs_space_reservation(root->fs_info, "delayed_inode",
749 node->inode_id, node->bytes_reserved, 0);
Miao Xie16cdcec2011-04-22 18:12:22 +0800750 btrfs_block_rsv_release(root, rsv,
751 node->bytes_reserved);
752 node->bytes_reserved = 0;
753}
754
755/*
756 * This helper will insert some continuous items into the same leaf according
757 * to the free space of the leaf.
758 */
759static int btrfs_batch_insert_items(struct btrfs_trans_handle *trans,
760 struct btrfs_root *root,
761 struct btrfs_path *path,
762 struct btrfs_delayed_item *item)
763{
764 struct btrfs_delayed_item *curr, *next;
765 int free_space;
766 int total_data_size = 0, total_size = 0;
767 struct extent_buffer *leaf;
768 char *data_ptr;
769 struct btrfs_key *keys;
770 u32 *data_size;
771 struct list_head head;
772 int slot;
773 int nitems;
774 int i;
775 int ret = 0;
776
777 BUG_ON(!path->nodes[0]);
778
779 leaf = path->nodes[0];
780 free_space = btrfs_leaf_free_space(root, leaf);
781 INIT_LIST_HEAD(&head);
782
783 next = item;
Chris Mason17aca1c2011-06-03 01:13:45 -0400784 nitems = 0;
Miao Xie16cdcec2011-04-22 18:12:22 +0800785
786 /*
787 * count the number of the continuous items that we can insert in batch
788 */
789 while (total_size + next->data_len + sizeof(struct btrfs_item) <=
790 free_space) {
791 total_data_size += next->data_len;
792 total_size += next->data_len + sizeof(struct btrfs_item);
793 list_add_tail(&next->tree_list, &head);
794 nitems++;
795
796 curr = next;
797 next = __btrfs_next_delayed_item(curr);
798 if (!next)
799 break;
800
801 if (!btrfs_is_continuous_delayed_item(curr, next))
802 break;
803 }
804
805 if (!nitems) {
806 ret = 0;
807 goto out;
808 }
809
810 /*
811 * we need allocate some memory space, but it might cause the task
812 * to sleep, so we set all locked nodes in the path to blocking locks
813 * first.
814 */
815 btrfs_set_path_blocking(path);
816
817 keys = kmalloc(sizeof(struct btrfs_key) * nitems, GFP_NOFS);
818 if (!keys) {
819 ret = -ENOMEM;
820 goto out;
821 }
822
823 data_size = kmalloc(sizeof(u32) * nitems, GFP_NOFS);
824 if (!data_size) {
825 ret = -ENOMEM;
826 goto error;
827 }
828
829 /* get keys of all the delayed items */
830 i = 0;
831 list_for_each_entry(next, &head, tree_list) {
832 keys[i] = next->key;
833 data_size[i] = next->data_len;
834 i++;
835 }
836
837 /* reset all the locked nodes in the patch to spinning locks. */
Chris Masonbd681512011-07-16 15:23:14 -0400838 btrfs_clear_path_blocking(path, NULL, 0);
Miao Xie16cdcec2011-04-22 18:12:22 +0800839
840 /* insert the keys of the items */
Jeff Mahoney143bede2012-03-01 14:56:26 +0100841 setup_items_for_insert(trans, root, path, keys, data_size,
842 total_data_size, total_size, nitems);
Miao Xie16cdcec2011-04-22 18:12:22 +0800843
844 /* insert the dir index items */
845 slot = path->slots[0];
846 list_for_each_entry_safe(curr, next, &head, tree_list) {
847 data_ptr = btrfs_item_ptr(leaf, slot, char);
848 write_extent_buffer(leaf, &curr->data,
849 (unsigned long)data_ptr,
850 curr->data_len);
851 slot++;
852
853 btrfs_delayed_item_release_metadata(root, curr);
854
855 list_del(&curr->tree_list);
856 btrfs_release_delayed_item(curr);
857 }
858
859error:
860 kfree(data_size);
861 kfree(keys);
862out:
863 return ret;
864}
865
866/*
867 * This helper can just do simple insertion that needn't extend item for new
868 * data, such as directory name index insertion, inode insertion.
869 */
870static int btrfs_insert_delayed_item(struct btrfs_trans_handle *trans,
871 struct btrfs_root *root,
872 struct btrfs_path *path,
873 struct btrfs_delayed_item *delayed_item)
874{
875 struct extent_buffer *leaf;
876 struct btrfs_item *item;
877 char *ptr;
878 int ret;
879
880 ret = btrfs_insert_empty_item(trans, root, path, &delayed_item->key,
881 delayed_item->data_len);
882 if (ret < 0 && ret != -EEXIST)
883 return ret;
884
885 leaf = path->nodes[0];
886
887 item = btrfs_item_nr(leaf, path->slots[0]);
888 ptr = btrfs_item_ptr(leaf, path->slots[0], char);
889
890 write_extent_buffer(leaf, delayed_item->data, (unsigned long)ptr,
891 delayed_item->data_len);
892 btrfs_mark_buffer_dirty(leaf);
893
894 btrfs_delayed_item_release_metadata(root, delayed_item);
895 return 0;
896}
897
898/*
899 * we insert an item first, then if there are some continuous items, we try
900 * to insert those items into the same leaf.
901 */
902static int btrfs_insert_delayed_items(struct btrfs_trans_handle *trans,
903 struct btrfs_path *path,
904 struct btrfs_root *root,
905 struct btrfs_delayed_node *node)
906{
907 struct btrfs_delayed_item *curr, *prev;
908 int ret = 0;
909
910do_again:
911 mutex_lock(&node->mutex);
912 curr = __btrfs_first_delayed_insertion_item(node);
913 if (!curr)
914 goto insert_end;
915
916 ret = btrfs_insert_delayed_item(trans, root, path, curr);
917 if (ret < 0) {
Chris Mason945d8962011-05-22 12:33:42 -0400918 btrfs_release_path(path);
Miao Xie16cdcec2011-04-22 18:12:22 +0800919 goto insert_end;
920 }
921
922 prev = curr;
923 curr = __btrfs_next_delayed_item(prev);
924 if (curr && btrfs_is_continuous_delayed_item(prev, curr)) {
925 /* insert the continuous items into the same leaf */
926 path->slots[0]++;
927 btrfs_batch_insert_items(trans, root, path, curr);
928 }
929 btrfs_release_delayed_item(prev);
930 btrfs_mark_buffer_dirty(path->nodes[0]);
931
Chris Mason945d8962011-05-22 12:33:42 -0400932 btrfs_release_path(path);
Miao Xie16cdcec2011-04-22 18:12:22 +0800933 mutex_unlock(&node->mutex);
934 goto do_again;
935
936insert_end:
937 mutex_unlock(&node->mutex);
938 return ret;
939}
940
941static int btrfs_batch_delete_items(struct btrfs_trans_handle *trans,
942 struct btrfs_root *root,
943 struct btrfs_path *path,
944 struct btrfs_delayed_item *item)
945{
946 struct btrfs_delayed_item *curr, *next;
947 struct extent_buffer *leaf;
948 struct btrfs_key key;
949 struct list_head head;
950 int nitems, i, last_item;
951 int ret = 0;
952
953 BUG_ON(!path->nodes[0]);
954
955 leaf = path->nodes[0];
956
957 i = path->slots[0];
958 last_item = btrfs_header_nritems(leaf) - 1;
959 if (i > last_item)
960 return -ENOENT; /* FIXME: Is errno suitable? */
961
962 next = item;
963 INIT_LIST_HEAD(&head);
964 btrfs_item_key_to_cpu(leaf, &key, i);
965 nitems = 0;
966 /*
967 * count the number of the dir index items that we can delete in batch
968 */
969 while (btrfs_comp_cpu_keys(&next->key, &key) == 0) {
970 list_add_tail(&next->tree_list, &head);
971 nitems++;
972
973 curr = next;
974 next = __btrfs_next_delayed_item(curr);
975 if (!next)
976 break;
977
978 if (!btrfs_is_continuous_delayed_item(curr, next))
979 break;
980
981 i++;
982 if (i > last_item)
983 break;
984 btrfs_item_key_to_cpu(leaf, &key, i);
985 }
986
987 if (!nitems)
988 return 0;
989
990 ret = btrfs_del_items(trans, root, path, path->slots[0], nitems);
991 if (ret)
992 goto out;
993
994 list_for_each_entry_safe(curr, next, &head, tree_list) {
995 btrfs_delayed_item_release_metadata(root, curr);
996 list_del(&curr->tree_list);
997 btrfs_release_delayed_item(curr);
998 }
999
1000out:
1001 return ret;
1002}
1003
1004static int btrfs_delete_delayed_items(struct btrfs_trans_handle *trans,
1005 struct btrfs_path *path,
1006 struct btrfs_root *root,
1007 struct btrfs_delayed_node *node)
1008{
1009 struct btrfs_delayed_item *curr, *prev;
1010 int ret = 0;
1011
1012do_again:
1013 mutex_lock(&node->mutex);
1014 curr = __btrfs_first_delayed_deletion_item(node);
1015 if (!curr)
1016 goto delete_fail;
1017
1018 ret = btrfs_search_slot(trans, root, &curr->key, path, -1, 1);
1019 if (ret < 0)
1020 goto delete_fail;
1021 else if (ret > 0) {
1022 /*
1023 * can't find the item which the node points to, so this node
1024 * is invalid, just drop it.
1025 */
1026 prev = curr;
1027 curr = __btrfs_next_delayed_item(prev);
1028 btrfs_release_delayed_item(prev);
1029 ret = 0;
Chris Mason945d8962011-05-22 12:33:42 -04001030 btrfs_release_path(path);
Fengguang Wu62095262012-08-04 01:45:02 -06001031 if (curr) {
1032 mutex_unlock(&node->mutex);
Miao Xie16cdcec2011-04-22 18:12:22 +08001033 goto do_again;
Fengguang Wu62095262012-08-04 01:45:02 -06001034 } else
Miao Xie16cdcec2011-04-22 18:12:22 +08001035 goto delete_fail;
1036 }
1037
1038 btrfs_batch_delete_items(trans, root, path, curr);
Chris Mason945d8962011-05-22 12:33:42 -04001039 btrfs_release_path(path);
Miao Xie16cdcec2011-04-22 18:12:22 +08001040 mutex_unlock(&node->mutex);
1041 goto do_again;
1042
1043delete_fail:
Chris Mason945d8962011-05-22 12:33:42 -04001044 btrfs_release_path(path);
Miao Xie16cdcec2011-04-22 18:12:22 +08001045 mutex_unlock(&node->mutex);
1046 return ret;
1047}
1048
1049static void btrfs_release_delayed_inode(struct btrfs_delayed_node *delayed_node)
1050{
1051 struct btrfs_delayed_root *delayed_root;
1052
1053 if (delayed_node && delayed_node->inode_dirty) {
1054 BUG_ON(!delayed_node->root);
1055 delayed_node->inode_dirty = 0;
1056 delayed_node->count--;
1057
1058 delayed_root = delayed_node->root->fs_info->delayed_root;
1059 atomic_dec(&delayed_root->items);
1060 if (atomic_read(&delayed_root->items) <
1061 BTRFS_DELAYED_BACKGROUND &&
1062 waitqueue_active(&delayed_root->wait))
1063 wake_up(&delayed_root->wait);
1064 }
1065}
1066
1067static int btrfs_update_delayed_inode(struct btrfs_trans_handle *trans,
1068 struct btrfs_root *root,
1069 struct btrfs_path *path,
1070 struct btrfs_delayed_node *node)
1071{
1072 struct btrfs_key key;
1073 struct btrfs_inode_item *inode_item;
1074 struct extent_buffer *leaf;
1075 int ret;
1076
1077 mutex_lock(&node->mutex);
1078 if (!node->inode_dirty) {
1079 mutex_unlock(&node->mutex);
1080 return 0;
1081 }
1082
1083 key.objectid = node->inode_id;
1084 btrfs_set_key_type(&key, BTRFS_INODE_ITEM_KEY);
1085 key.offset = 0;
1086 ret = btrfs_lookup_inode(trans, root, path, &key, 1);
1087 if (ret > 0) {
Chris Mason945d8962011-05-22 12:33:42 -04001088 btrfs_release_path(path);
Miao Xie16cdcec2011-04-22 18:12:22 +08001089 mutex_unlock(&node->mutex);
1090 return -ENOENT;
1091 } else if (ret < 0) {
1092 mutex_unlock(&node->mutex);
1093 return ret;
1094 }
1095
1096 btrfs_unlock_up_safe(path, 1);
1097 leaf = path->nodes[0];
1098 inode_item = btrfs_item_ptr(leaf, path->slots[0],
1099 struct btrfs_inode_item);
1100 write_extent_buffer(leaf, &node->inode_item, (unsigned long)inode_item,
1101 sizeof(struct btrfs_inode_item));
1102 btrfs_mark_buffer_dirty(leaf);
Chris Mason945d8962011-05-22 12:33:42 -04001103 btrfs_release_path(path);
Miao Xie16cdcec2011-04-22 18:12:22 +08001104
1105 btrfs_delayed_inode_release_metadata(root, node);
1106 btrfs_release_delayed_inode(node);
1107 mutex_unlock(&node->mutex);
1108
1109 return 0;
1110}
1111
Jeff Mahoney79787ea2012-03-12 16:03:00 +01001112/*
1113 * Called when committing the transaction.
1114 * Returns 0 on success.
1115 * Returns < 0 on error and returns with an aborted transaction with any
1116 * outstanding delayed items cleaned up.
1117 */
Josef Bacik96c3f432012-06-21 14:05:49 -04001118static int __btrfs_run_delayed_items(struct btrfs_trans_handle *trans,
1119 struct btrfs_root *root, int nr)
Miao Xie16cdcec2011-04-22 18:12:22 +08001120{
Jeff Mahoney79787ea2012-03-12 16:03:00 +01001121 struct btrfs_root *curr_root = root;
Miao Xie16cdcec2011-04-22 18:12:22 +08001122 struct btrfs_delayed_root *delayed_root;
1123 struct btrfs_delayed_node *curr_node, *prev_node;
1124 struct btrfs_path *path;
Miao Xie19fd2942011-06-15 10:47:30 +00001125 struct btrfs_block_rsv *block_rsv;
Miao Xie16cdcec2011-04-22 18:12:22 +08001126 int ret = 0;
Josef Bacik96c3f432012-06-21 14:05:49 -04001127 bool count = (nr > 0);
Miao Xie16cdcec2011-04-22 18:12:22 +08001128
Jeff Mahoney79787ea2012-03-12 16:03:00 +01001129 if (trans->aborted)
1130 return -EIO;
1131
Miao Xie16cdcec2011-04-22 18:12:22 +08001132 path = btrfs_alloc_path();
1133 if (!path)
1134 return -ENOMEM;
1135 path->leave_spinning = 1;
1136
Miao Xie19fd2942011-06-15 10:47:30 +00001137 block_rsv = trans->block_rsv;
Josef Bacik6d668dd2011-11-03 22:54:25 -04001138 trans->block_rsv = &root->fs_info->delayed_block_rsv;
Miao Xie19fd2942011-06-15 10:47:30 +00001139
Miao Xie16cdcec2011-04-22 18:12:22 +08001140 delayed_root = btrfs_get_delayed_root(root);
1141
1142 curr_node = btrfs_first_delayed_node(delayed_root);
Josef Bacik96c3f432012-06-21 14:05:49 -04001143 while (curr_node && (!count || (count && nr--))) {
Jeff Mahoney79787ea2012-03-12 16:03:00 +01001144 curr_root = curr_node->root;
1145 ret = btrfs_insert_delayed_items(trans, path, curr_root,
Miao Xie16cdcec2011-04-22 18:12:22 +08001146 curr_node);
1147 if (!ret)
Jeff Mahoney79787ea2012-03-12 16:03:00 +01001148 ret = btrfs_delete_delayed_items(trans, path,
1149 curr_root, curr_node);
Miao Xie16cdcec2011-04-22 18:12:22 +08001150 if (!ret)
Jeff Mahoney79787ea2012-03-12 16:03:00 +01001151 ret = btrfs_update_delayed_inode(trans, curr_root,
1152 path, curr_node);
Miao Xie16cdcec2011-04-22 18:12:22 +08001153 if (ret) {
1154 btrfs_release_delayed_node(curr_node);
Josef Bacik96c3f432012-06-21 14:05:49 -04001155 curr_node = NULL;
Jeff Mahoney79787ea2012-03-12 16:03:00 +01001156 btrfs_abort_transaction(trans, root, ret);
Miao Xie16cdcec2011-04-22 18:12:22 +08001157 break;
1158 }
1159
1160 prev_node = curr_node;
1161 curr_node = btrfs_next_delayed_node(curr_node);
1162 btrfs_release_delayed_node(prev_node);
1163 }
1164
Josef Bacik96c3f432012-06-21 14:05:49 -04001165 if (curr_node)
1166 btrfs_release_delayed_node(curr_node);
Miao Xie16cdcec2011-04-22 18:12:22 +08001167 btrfs_free_path(path);
Miao Xie19fd2942011-06-15 10:47:30 +00001168 trans->block_rsv = block_rsv;
Jeff Mahoney79787ea2012-03-12 16:03:00 +01001169
Miao Xie16cdcec2011-04-22 18:12:22 +08001170 return ret;
1171}
1172
Josef Bacik96c3f432012-06-21 14:05:49 -04001173int btrfs_run_delayed_items(struct btrfs_trans_handle *trans,
1174 struct btrfs_root *root)
1175{
1176 return __btrfs_run_delayed_items(trans, root, -1);
1177}
1178
1179int btrfs_run_delayed_items_nr(struct btrfs_trans_handle *trans,
1180 struct btrfs_root *root, int nr)
1181{
1182 return __btrfs_run_delayed_items(trans, root, nr);
1183}
1184
Miao Xie16cdcec2011-04-22 18:12:22 +08001185static int __btrfs_commit_inode_delayed_items(struct btrfs_trans_handle *trans,
1186 struct btrfs_delayed_node *node)
1187{
1188 struct btrfs_path *path;
Miao Xie19fd2942011-06-15 10:47:30 +00001189 struct btrfs_block_rsv *block_rsv;
Miao Xie16cdcec2011-04-22 18:12:22 +08001190 int ret;
1191
1192 path = btrfs_alloc_path();
1193 if (!path)
1194 return -ENOMEM;
1195 path->leave_spinning = 1;
1196
Miao Xie19fd2942011-06-15 10:47:30 +00001197 block_rsv = trans->block_rsv;
Josef Bacik6d668dd2011-11-03 22:54:25 -04001198 trans->block_rsv = &node->root->fs_info->delayed_block_rsv;
Miao Xie19fd2942011-06-15 10:47:30 +00001199
Miao Xie16cdcec2011-04-22 18:12:22 +08001200 ret = btrfs_insert_delayed_items(trans, path, node->root, node);
1201 if (!ret)
1202 ret = btrfs_delete_delayed_items(trans, path, node->root, node);
1203 if (!ret)
1204 ret = btrfs_update_delayed_inode(trans, node->root, path, node);
1205 btrfs_free_path(path);
1206
Miao Xie19fd2942011-06-15 10:47:30 +00001207 trans->block_rsv = block_rsv;
Miao Xie16cdcec2011-04-22 18:12:22 +08001208 return ret;
1209}
1210
1211int btrfs_commit_inode_delayed_items(struct btrfs_trans_handle *trans,
1212 struct inode *inode)
1213{
1214 struct btrfs_delayed_node *delayed_node = btrfs_get_delayed_node(inode);
1215 int ret;
1216
1217 if (!delayed_node)
1218 return 0;
1219
1220 mutex_lock(&delayed_node->mutex);
1221 if (!delayed_node->count) {
1222 mutex_unlock(&delayed_node->mutex);
1223 btrfs_release_delayed_node(delayed_node);
1224 return 0;
1225 }
1226 mutex_unlock(&delayed_node->mutex);
1227
1228 ret = __btrfs_commit_inode_delayed_items(trans, delayed_node);
1229 btrfs_release_delayed_node(delayed_node);
1230 return ret;
1231}
1232
1233void btrfs_remove_delayed_node(struct inode *inode)
1234{
1235 struct btrfs_delayed_node *delayed_node;
1236
1237 delayed_node = ACCESS_ONCE(BTRFS_I(inode)->delayed_node);
1238 if (!delayed_node)
1239 return;
1240
1241 BTRFS_I(inode)->delayed_node = NULL;
1242 btrfs_release_delayed_node(delayed_node);
1243}
1244
1245struct btrfs_async_delayed_node {
1246 struct btrfs_root *root;
1247 struct btrfs_delayed_node *delayed_node;
1248 struct btrfs_work work;
1249};
1250
1251static void btrfs_async_run_delayed_node_done(struct btrfs_work *work)
1252{
1253 struct btrfs_async_delayed_node *async_node;
1254 struct btrfs_trans_handle *trans;
1255 struct btrfs_path *path;
1256 struct btrfs_delayed_node *delayed_node = NULL;
1257 struct btrfs_root *root;
Miao Xie19fd2942011-06-15 10:47:30 +00001258 struct btrfs_block_rsv *block_rsv;
Miao Xie16cdcec2011-04-22 18:12:22 +08001259 unsigned long nr = 0;
1260 int need_requeue = 0;
1261 int ret;
1262
1263 async_node = container_of(work, struct btrfs_async_delayed_node, work);
1264
1265 path = btrfs_alloc_path();
1266 if (!path)
1267 goto out;
1268 path->leave_spinning = 1;
1269
1270 delayed_node = async_node->delayed_node;
1271 root = delayed_node->root;
1272
Chris Masonff5714c2011-05-28 07:00:39 -04001273 trans = btrfs_join_transaction(root);
Miao Xie16cdcec2011-04-22 18:12:22 +08001274 if (IS_ERR(trans))
1275 goto free_path;
1276
Miao Xie19fd2942011-06-15 10:47:30 +00001277 block_rsv = trans->block_rsv;
Josef Bacik6d668dd2011-11-03 22:54:25 -04001278 trans->block_rsv = &root->fs_info->delayed_block_rsv;
Miao Xie19fd2942011-06-15 10:47:30 +00001279
Miao Xie16cdcec2011-04-22 18:12:22 +08001280 ret = btrfs_insert_delayed_items(trans, path, root, delayed_node);
1281 if (!ret)
1282 ret = btrfs_delete_delayed_items(trans, path, root,
1283 delayed_node);
1284
1285 if (!ret)
1286 btrfs_update_delayed_inode(trans, root, path, delayed_node);
1287
1288 /*
1289 * Maybe new delayed items have been inserted, so we need requeue
1290 * the work. Besides that, we must dequeue the empty delayed nodes
1291 * to avoid the race between delayed items balance and the worker.
1292 * The race like this:
1293 * Task1 Worker thread
1294 * count == 0, needn't requeue
1295 * also needn't insert the
1296 * delayed node into prepare
1297 * list again.
1298 * add lots of delayed items
1299 * queue the delayed node
1300 * already in the list,
1301 * and not in the prepare
1302 * list, it means the delayed
1303 * node is being dealt with
1304 * by the worker.
1305 * do delayed items balance
1306 * the delayed node is being
1307 * dealt with by the worker
1308 * now, just wait.
1309 * the worker goto idle.
1310 * Task1 will sleep until the transaction is commited.
1311 */
1312 mutex_lock(&delayed_node->mutex);
1313 if (delayed_node->count)
1314 need_requeue = 1;
1315 else
1316 btrfs_dequeue_delayed_node(root->fs_info->delayed_root,
1317 delayed_node);
1318 mutex_unlock(&delayed_node->mutex);
1319
1320 nr = trans->blocks_used;
1321
Miao Xie19fd2942011-06-15 10:47:30 +00001322 trans->block_rsv = block_rsv;
Miao Xie16cdcec2011-04-22 18:12:22 +08001323 btrfs_end_transaction_dmeta(trans, root);
1324 __btrfs_btree_balance_dirty(root, nr);
1325free_path:
1326 btrfs_free_path(path);
1327out:
1328 if (need_requeue)
1329 btrfs_requeue_work(&async_node->work);
1330 else {
1331 btrfs_release_prepared_delayed_node(delayed_node);
1332 kfree(async_node);
1333 }
1334}
1335
1336static int btrfs_wq_run_delayed_node(struct btrfs_delayed_root *delayed_root,
1337 struct btrfs_root *root, int all)
1338{
1339 struct btrfs_async_delayed_node *async_node;
1340 struct btrfs_delayed_node *curr;
1341 int count = 0;
1342
1343again:
1344 curr = btrfs_first_prepared_delayed_node(delayed_root);
1345 if (!curr)
1346 return 0;
1347
1348 async_node = kmalloc(sizeof(*async_node), GFP_NOFS);
1349 if (!async_node) {
1350 btrfs_release_prepared_delayed_node(curr);
1351 return -ENOMEM;
1352 }
1353
1354 async_node->root = root;
1355 async_node->delayed_node = curr;
1356
1357 async_node->work.func = btrfs_async_run_delayed_node_done;
1358 async_node->work.flags = 0;
1359
1360 btrfs_queue_worker(&root->fs_info->delayed_workers, &async_node->work);
1361 count++;
1362
1363 if (all || count < 4)
1364 goto again;
1365
1366 return 0;
1367}
1368
Chris Masone9993762011-06-17 16:14:09 -04001369void btrfs_assert_delayed_root_empty(struct btrfs_root *root)
1370{
1371 struct btrfs_delayed_root *delayed_root;
1372 delayed_root = btrfs_get_delayed_root(root);
1373 WARN_ON(btrfs_first_delayed_node(delayed_root));
1374}
1375
Miao Xie16cdcec2011-04-22 18:12:22 +08001376void btrfs_balance_delayed_items(struct btrfs_root *root)
1377{
1378 struct btrfs_delayed_root *delayed_root;
1379
1380 delayed_root = btrfs_get_delayed_root(root);
1381
1382 if (atomic_read(&delayed_root->items) < BTRFS_DELAYED_BACKGROUND)
1383 return;
1384
1385 if (atomic_read(&delayed_root->items) >= BTRFS_DELAYED_WRITEBACK) {
1386 int ret;
1387 ret = btrfs_wq_run_delayed_node(delayed_root, root, 1);
1388 if (ret)
1389 return;
1390
1391 wait_event_interruptible_timeout(
1392 delayed_root->wait,
1393 (atomic_read(&delayed_root->items) <
1394 BTRFS_DELAYED_BACKGROUND),
1395 HZ);
1396 return;
1397 }
1398
1399 btrfs_wq_run_delayed_node(delayed_root, root, 0);
1400}
1401
Jeff Mahoney79787ea2012-03-12 16:03:00 +01001402/* Will return 0 or -ENOMEM */
Miao Xie16cdcec2011-04-22 18:12:22 +08001403int btrfs_insert_delayed_dir_index(struct btrfs_trans_handle *trans,
1404 struct btrfs_root *root, const char *name,
1405 int name_len, struct inode *dir,
1406 struct btrfs_disk_key *disk_key, u8 type,
1407 u64 index)
1408{
1409 struct btrfs_delayed_node *delayed_node;
1410 struct btrfs_delayed_item *delayed_item;
1411 struct btrfs_dir_item *dir_item;
1412 int ret;
1413
1414 delayed_node = btrfs_get_or_create_delayed_node(dir);
1415 if (IS_ERR(delayed_node))
1416 return PTR_ERR(delayed_node);
1417
1418 delayed_item = btrfs_alloc_delayed_item(sizeof(*dir_item) + name_len);
1419 if (!delayed_item) {
1420 ret = -ENOMEM;
1421 goto release_node;
1422 }
1423
Chris Mason0d0ca302011-05-22 07:11:22 -04001424 delayed_item->key.objectid = btrfs_ino(dir);
Miao Xie16cdcec2011-04-22 18:12:22 +08001425 btrfs_set_key_type(&delayed_item->key, BTRFS_DIR_INDEX_KEY);
1426 delayed_item->key.offset = index;
1427
1428 dir_item = (struct btrfs_dir_item *)delayed_item->data;
1429 dir_item->location = *disk_key;
1430 dir_item->transid = cpu_to_le64(trans->transid);
1431 dir_item->data_len = 0;
1432 dir_item->name_len = cpu_to_le16(name_len);
1433 dir_item->type = type;
1434 memcpy((char *)(dir_item + 1), name, name_len);
1435
Josef Bacik8c2a3ca2012-01-10 10:31:31 -05001436 ret = btrfs_delayed_item_reserve_metadata(trans, root, delayed_item);
1437 /*
1438 * we have reserved enough space when we start a new transaction,
1439 * so reserving metadata failure is impossible
1440 */
1441 BUG_ON(ret);
1442
1443
Miao Xie16cdcec2011-04-22 18:12:22 +08001444 mutex_lock(&delayed_node->mutex);
1445 ret = __btrfs_add_delayed_insertion_item(delayed_node, delayed_item);
1446 if (unlikely(ret)) {
1447 printk(KERN_ERR "err add delayed dir index item(name: %s) into "
1448 "the insertion tree of the delayed node"
1449 "(root id: %llu, inode id: %llu, errno: %d)\n",
1450 name,
1451 (unsigned long long)delayed_node->root->objectid,
1452 (unsigned long long)delayed_node->inode_id,
1453 ret);
1454 BUG();
1455 }
1456 mutex_unlock(&delayed_node->mutex);
1457
1458release_node:
1459 btrfs_release_delayed_node(delayed_node);
1460 return ret;
1461}
1462
1463static int btrfs_delete_delayed_insertion_item(struct btrfs_root *root,
1464 struct btrfs_delayed_node *node,
1465 struct btrfs_key *key)
1466{
1467 struct btrfs_delayed_item *item;
1468
1469 mutex_lock(&node->mutex);
1470 item = __btrfs_lookup_delayed_insertion_item(node, key);
1471 if (!item) {
1472 mutex_unlock(&node->mutex);
1473 return 1;
1474 }
1475
1476 btrfs_delayed_item_release_metadata(root, item);
1477 btrfs_release_delayed_item(item);
1478 mutex_unlock(&node->mutex);
1479 return 0;
1480}
1481
1482int btrfs_delete_delayed_dir_index(struct btrfs_trans_handle *trans,
1483 struct btrfs_root *root, struct inode *dir,
1484 u64 index)
1485{
1486 struct btrfs_delayed_node *node;
1487 struct btrfs_delayed_item *item;
1488 struct btrfs_key item_key;
1489 int ret;
1490
1491 node = btrfs_get_or_create_delayed_node(dir);
1492 if (IS_ERR(node))
1493 return PTR_ERR(node);
1494
Chris Mason0d0ca302011-05-22 07:11:22 -04001495 item_key.objectid = btrfs_ino(dir);
Miao Xie16cdcec2011-04-22 18:12:22 +08001496 btrfs_set_key_type(&item_key, BTRFS_DIR_INDEX_KEY);
1497 item_key.offset = index;
1498
1499 ret = btrfs_delete_delayed_insertion_item(root, node, &item_key);
1500 if (!ret)
1501 goto end;
1502
1503 item = btrfs_alloc_delayed_item(0);
1504 if (!item) {
1505 ret = -ENOMEM;
1506 goto end;
1507 }
1508
1509 item->key = item_key;
1510
1511 ret = btrfs_delayed_item_reserve_metadata(trans, root, item);
1512 /*
1513 * we have reserved enough space when we start a new transaction,
1514 * so reserving metadata failure is impossible.
1515 */
1516 BUG_ON(ret);
1517
1518 mutex_lock(&node->mutex);
1519 ret = __btrfs_add_delayed_deletion_item(node, item);
1520 if (unlikely(ret)) {
1521 printk(KERN_ERR "err add delayed dir index item(index: %llu) "
1522 "into the deletion tree of the delayed node"
1523 "(root id: %llu, inode id: %llu, errno: %d)\n",
1524 (unsigned long long)index,
1525 (unsigned long long)node->root->objectid,
1526 (unsigned long long)node->inode_id,
1527 ret);
1528 BUG();
1529 }
1530 mutex_unlock(&node->mutex);
1531end:
1532 btrfs_release_delayed_node(node);
1533 return ret;
1534}
1535
1536int btrfs_inode_delayed_dir_index_count(struct inode *inode)
1537{
Miao Xie2f7e33d2011-06-23 07:27:13 +00001538 struct btrfs_delayed_node *delayed_node = btrfs_get_delayed_node(inode);
Miao Xie16cdcec2011-04-22 18:12:22 +08001539
1540 if (!delayed_node)
1541 return -ENOENT;
1542
1543 /*
1544 * Since we have held i_mutex of this directory, it is impossible that
1545 * a new directory index is added into the delayed node and index_cnt
1546 * is updated now. So we needn't lock the delayed node.
1547 */
Miao Xie2f7e33d2011-06-23 07:27:13 +00001548 if (!delayed_node->index_cnt) {
1549 btrfs_release_delayed_node(delayed_node);
Miao Xie16cdcec2011-04-22 18:12:22 +08001550 return -EINVAL;
Miao Xie2f7e33d2011-06-23 07:27:13 +00001551 }
Miao Xie16cdcec2011-04-22 18:12:22 +08001552
1553 BTRFS_I(inode)->index_cnt = delayed_node->index_cnt;
Miao Xie2f7e33d2011-06-23 07:27:13 +00001554 btrfs_release_delayed_node(delayed_node);
1555 return 0;
Miao Xie16cdcec2011-04-22 18:12:22 +08001556}
1557
1558void btrfs_get_delayed_items(struct inode *inode, struct list_head *ins_list,
1559 struct list_head *del_list)
1560{
1561 struct btrfs_delayed_node *delayed_node;
1562 struct btrfs_delayed_item *item;
1563
1564 delayed_node = btrfs_get_delayed_node(inode);
1565 if (!delayed_node)
1566 return;
1567
1568 mutex_lock(&delayed_node->mutex);
1569 item = __btrfs_first_delayed_insertion_item(delayed_node);
1570 while (item) {
1571 atomic_inc(&item->refs);
1572 list_add_tail(&item->readdir_list, ins_list);
1573 item = __btrfs_next_delayed_item(item);
1574 }
1575
1576 item = __btrfs_first_delayed_deletion_item(delayed_node);
1577 while (item) {
1578 atomic_inc(&item->refs);
1579 list_add_tail(&item->readdir_list, del_list);
1580 item = __btrfs_next_delayed_item(item);
1581 }
1582 mutex_unlock(&delayed_node->mutex);
1583 /*
1584 * This delayed node is still cached in the btrfs inode, so refs
1585 * must be > 1 now, and we needn't check it is going to be freed
1586 * or not.
1587 *
1588 * Besides that, this function is used to read dir, we do not
1589 * insert/delete delayed items in this period. So we also needn't
1590 * requeue or dequeue this delayed node.
1591 */
1592 atomic_dec(&delayed_node->refs);
1593}
1594
1595void btrfs_put_delayed_items(struct list_head *ins_list,
1596 struct list_head *del_list)
1597{
1598 struct btrfs_delayed_item *curr, *next;
1599
1600 list_for_each_entry_safe(curr, next, ins_list, readdir_list) {
1601 list_del(&curr->readdir_list);
1602 if (atomic_dec_and_test(&curr->refs))
1603 kfree(curr);
1604 }
1605
1606 list_for_each_entry_safe(curr, next, del_list, readdir_list) {
1607 list_del(&curr->readdir_list);
1608 if (atomic_dec_and_test(&curr->refs))
1609 kfree(curr);
1610 }
1611}
1612
1613int btrfs_should_delete_dir_index(struct list_head *del_list,
1614 u64 index)
1615{
1616 struct btrfs_delayed_item *curr, *next;
1617 int ret;
1618
1619 if (list_empty(del_list))
1620 return 0;
1621
1622 list_for_each_entry_safe(curr, next, del_list, readdir_list) {
1623 if (curr->key.offset > index)
1624 break;
1625
1626 list_del(&curr->readdir_list);
1627 ret = (curr->key.offset == index);
1628
1629 if (atomic_dec_and_test(&curr->refs))
1630 kfree(curr);
1631
1632 if (ret)
1633 return 1;
1634 else
1635 continue;
1636 }
1637 return 0;
1638}
1639
1640/*
1641 * btrfs_readdir_delayed_dir_index - read dir info stored in the delayed tree
1642 *
1643 */
1644int btrfs_readdir_delayed_dir_index(struct file *filp, void *dirent,
1645 filldir_t filldir,
1646 struct list_head *ins_list)
1647{
1648 struct btrfs_dir_item *di;
1649 struct btrfs_delayed_item *curr, *next;
1650 struct btrfs_key location;
1651 char *name;
1652 int name_len;
1653 int over = 0;
1654 unsigned char d_type;
1655
1656 if (list_empty(ins_list))
1657 return 0;
1658
1659 /*
1660 * Changing the data of the delayed item is impossible. So
1661 * we needn't lock them. And we have held i_mutex of the
1662 * directory, nobody can delete any directory indexes now.
1663 */
1664 list_for_each_entry_safe(curr, next, ins_list, readdir_list) {
1665 list_del(&curr->readdir_list);
1666
1667 if (curr->key.offset < filp->f_pos) {
1668 if (atomic_dec_and_test(&curr->refs))
1669 kfree(curr);
1670 continue;
1671 }
1672
1673 filp->f_pos = curr->key.offset;
1674
1675 di = (struct btrfs_dir_item *)curr->data;
1676 name = (char *)(di + 1);
1677 name_len = le16_to_cpu(di->name_len);
1678
1679 d_type = btrfs_filetype_table[di->type];
1680 btrfs_disk_key_to_cpu(&location, &di->location);
1681
1682 over = filldir(dirent, name, name_len, curr->key.offset,
1683 location.objectid, d_type);
1684
1685 if (atomic_dec_and_test(&curr->refs))
1686 kfree(curr);
1687
1688 if (over)
1689 return 1;
1690 }
1691 return 0;
1692}
1693
1694BTRFS_SETGET_STACK_FUNCS(stack_inode_generation, struct btrfs_inode_item,
1695 generation, 64);
1696BTRFS_SETGET_STACK_FUNCS(stack_inode_sequence, struct btrfs_inode_item,
1697 sequence, 64);
1698BTRFS_SETGET_STACK_FUNCS(stack_inode_transid, struct btrfs_inode_item,
1699 transid, 64);
1700BTRFS_SETGET_STACK_FUNCS(stack_inode_size, struct btrfs_inode_item, size, 64);
1701BTRFS_SETGET_STACK_FUNCS(stack_inode_nbytes, struct btrfs_inode_item,
1702 nbytes, 64);
1703BTRFS_SETGET_STACK_FUNCS(stack_inode_block_group, struct btrfs_inode_item,
1704 block_group, 64);
1705BTRFS_SETGET_STACK_FUNCS(stack_inode_nlink, struct btrfs_inode_item, nlink, 32);
1706BTRFS_SETGET_STACK_FUNCS(stack_inode_uid, struct btrfs_inode_item, uid, 32);
1707BTRFS_SETGET_STACK_FUNCS(stack_inode_gid, struct btrfs_inode_item, gid, 32);
1708BTRFS_SETGET_STACK_FUNCS(stack_inode_mode, struct btrfs_inode_item, mode, 32);
1709BTRFS_SETGET_STACK_FUNCS(stack_inode_rdev, struct btrfs_inode_item, rdev, 64);
1710BTRFS_SETGET_STACK_FUNCS(stack_inode_flags, struct btrfs_inode_item, flags, 64);
1711
1712BTRFS_SETGET_STACK_FUNCS(stack_timespec_sec, struct btrfs_timespec, sec, 64);
1713BTRFS_SETGET_STACK_FUNCS(stack_timespec_nsec, struct btrfs_timespec, nsec, 32);
1714
1715static void fill_stack_inode_item(struct btrfs_trans_handle *trans,
1716 struct btrfs_inode_item *inode_item,
1717 struct inode *inode)
1718{
1719 btrfs_set_stack_inode_uid(inode_item, inode->i_uid);
1720 btrfs_set_stack_inode_gid(inode_item, inode->i_gid);
1721 btrfs_set_stack_inode_size(inode_item, BTRFS_I(inode)->disk_i_size);
1722 btrfs_set_stack_inode_mode(inode_item, inode->i_mode);
1723 btrfs_set_stack_inode_nlink(inode_item, inode->i_nlink);
1724 btrfs_set_stack_inode_nbytes(inode_item, inode_get_bytes(inode));
1725 btrfs_set_stack_inode_generation(inode_item,
1726 BTRFS_I(inode)->generation);
Josef Bacik0c4d2d92012-04-05 15:03:02 -04001727 btrfs_set_stack_inode_sequence(inode_item, inode->i_version);
Miao Xie16cdcec2011-04-22 18:12:22 +08001728 btrfs_set_stack_inode_transid(inode_item, trans->transid);
1729 btrfs_set_stack_inode_rdev(inode_item, inode->i_rdev);
1730 btrfs_set_stack_inode_flags(inode_item, BTRFS_I(inode)->flags);
Chris Masonff5714c2011-05-28 07:00:39 -04001731 btrfs_set_stack_inode_block_group(inode_item, 0);
Miao Xie16cdcec2011-04-22 18:12:22 +08001732
1733 btrfs_set_stack_timespec_sec(btrfs_inode_atime(inode_item),
1734 inode->i_atime.tv_sec);
1735 btrfs_set_stack_timespec_nsec(btrfs_inode_atime(inode_item),
1736 inode->i_atime.tv_nsec);
1737
1738 btrfs_set_stack_timespec_sec(btrfs_inode_mtime(inode_item),
1739 inode->i_mtime.tv_sec);
1740 btrfs_set_stack_timespec_nsec(btrfs_inode_mtime(inode_item),
1741 inode->i_mtime.tv_nsec);
1742
1743 btrfs_set_stack_timespec_sec(btrfs_inode_ctime(inode_item),
1744 inode->i_ctime.tv_sec);
1745 btrfs_set_stack_timespec_nsec(btrfs_inode_ctime(inode_item),
1746 inode->i_ctime.tv_nsec);
1747}
1748
Miao Xie2f7e33d2011-06-23 07:27:13 +00001749int btrfs_fill_inode(struct inode *inode, u32 *rdev)
1750{
1751 struct btrfs_delayed_node *delayed_node;
1752 struct btrfs_inode_item *inode_item;
1753 struct btrfs_timespec *tspec;
1754
1755 delayed_node = btrfs_get_delayed_node(inode);
1756 if (!delayed_node)
1757 return -ENOENT;
1758
1759 mutex_lock(&delayed_node->mutex);
1760 if (!delayed_node->inode_dirty) {
1761 mutex_unlock(&delayed_node->mutex);
1762 btrfs_release_delayed_node(delayed_node);
1763 return -ENOENT;
1764 }
1765
1766 inode_item = &delayed_node->inode_item;
1767
1768 inode->i_uid = btrfs_stack_inode_uid(inode_item);
1769 inode->i_gid = btrfs_stack_inode_gid(inode_item);
1770 btrfs_i_size_write(inode, btrfs_stack_inode_size(inode_item));
1771 inode->i_mode = btrfs_stack_inode_mode(inode_item);
Miklos Szeredibfe86842011-10-28 14:13:29 +02001772 set_nlink(inode, btrfs_stack_inode_nlink(inode_item));
Miao Xie2f7e33d2011-06-23 07:27:13 +00001773 inode_set_bytes(inode, btrfs_stack_inode_nbytes(inode_item));
1774 BTRFS_I(inode)->generation = btrfs_stack_inode_generation(inode_item);
Josef Bacik0c4d2d92012-04-05 15:03:02 -04001775 inode->i_version = btrfs_stack_inode_sequence(inode_item);
Miao Xie2f7e33d2011-06-23 07:27:13 +00001776 inode->i_rdev = 0;
1777 *rdev = btrfs_stack_inode_rdev(inode_item);
1778 BTRFS_I(inode)->flags = btrfs_stack_inode_flags(inode_item);
1779
1780 tspec = btrfs_inode_atime(inode_item);
1781 inode->i_atime.tv_sec = btrfs_stack_timespec_sec(tspec);
1782 inode->i_atime.tv_nsec = btrfs_stack_timespec_nsec(tspec);
1783
1784 tspec = btrfs_inode_mtime(inode_item);
1785 inode->i_mtime.tv_sec = btrfs_stack_timespec_sec(tspec);
1786 inode->i_mtime.tv_nsec = btrfs_stack_timespec_nsec(tspec);
1787
1788 tspec = btrfs_inode_ctime(inode_item);
1789 inode->i_ctime.tv_sec = btrfs_stack_timespec_sec(tspec);
1790 inode->i_ctime.tv_nsec = btrfs_stack_timespec_nsec(tspec);
1791
1792 inode->i_generation = BTRFS_I(inode)->generation;
1793 BTRFS_I(inode)->index_cnt = (u64)-1;
1794
1795 mutex_unlock(&delayed_node->mutex);
1796 btrfs_release_delayed_node(delayed_node);
1797 return 0;
1798}
1799
Miao Xie16cdcec2011-04-22 18:12:22 +08001800int btrfs_delayed_update_inode(struct btrfs_trans_handle *trans,
1801 struct btrfs_root *root, struct inode *inode)
1802{
1803 struct btrfs_delayed_node *delayed_node;
David Sterbaaa0467d2011-06-03 16:29:08 +02001804 int ret = 0;
Miao Xie16cdcec2011-04-22 18:12:22 +08001805
1806 delayed_node = btrfs_get_or_create_delayed_node(inode);
1807 if (IS_ERR(delayed_node))
1808 return PTR_ERR(delayed_node);
1809
1810 mutex_lock(&delayed_node->mutex);
1811 if (delayed_node->inode_dirty) {
1812 fill_stack_inode_item(trans, &delayed_node->inode_item, inode);
1813 goto release_node;
1814 }
1815
Josef Bacik7fd2ae22011-11-08 15:47:34 -05001816 ret = btrfs_delayed_inode_reserve_metadata(trans, root, inode,
1817 delayed_node);
Josef Bacikc06a0e12011-11-04 19:56:02 -04001818 if (ret)
1819 goto release_node;
Miao Xie16cdcec2011-04-22 18:12:22 +08001820
1821 fill_stack_inode_item(trans, &delayed_node->inode_item, inode);
1822 delayed_node->inode_dirty = 1;
1823 delayed_node->count++;
1824 atomic_inc(&root->fs_info->delayed_root->items);
1825release_node:
1826 mutex_unlock(&delayed_node->mutex);
1827 btrfs_release_delayed_node(delayed_node);
1828 return ret;
1829}
1830
1831static void __btrfs_kill_delayed_node(struct btrfs_delayed_node *delayed_node)
1832{
1833 struct btrfs_root *root = delayed_node->root;
1834 struct btrfs_delayed_item *curr_item, *prev_item;
1835
1836 mutex_lock(&delayed_node->mutex);
1837 curr_item = __btrfs_first_delayed_insertion_item(delayed_node);
1838 while (curr_item) {
1839 btrfs_delayed_item_release_metadata(root, curr_item);
1840 prev_item = curr_item;
1841 curr_item = __btrfs_next_delayed_item(prev_item);
1842 btrfs_release_delayed_item(prev_item);
1843 }
1844
1845 curr_item = __btrfs_first_delayed_deletion_item(delayed_node);
1846 while (curr_item) {
1847 btrfs_delayed_item_release_metadata(root, curr_item);
1848 prev_item = curr_item;
1849 curr_item = __btrfs_next_delayed_item(prev_item);
1850 btrfs_release_delayed_item(prev_item);
1851 }
1852
1853 if (delayed_node->inode_dirty) {
1854 btrfs_delayed_inode_release_metadata(root, delayed_node);
1855 btrfs_release_delayed_inode(delayed_node);
1856 }
1857 mutex_unlock(&delayed_node->mutex);
1858}
1859
1860void btrfs_kill_delayed_inode_items(struct inode *inode)
1861{
1862 struct btrfs_delayed_node *delayed_node;
1863
1864 delayed_node = btrfs_get_delayed_node(inode);
1865 if (!delayed_node)
1866 return;
1867
1868 __btrfs_kill_delayed_node(delayed_node);
1869 btrfs_release_delayed_node(delayed_node);
1870}
1871
1872void btrfs_kill_all_delayed_nodes(struct btrfs_root *root)
1873{
1874 u64 inode_id = 0;
1875 struct btrfs_delayed_node *delayed_nodes[8];
1876 int i, n;
1877
1878 while (1) {
1879 spin_lock(&root->inode_lock);
1880 n = radix_tree_gang_lookup(&root->delayed_nodes_tree,
1881 (void **)delayed_nodes, inode_id,
1882 ARRAY_SIZE(delayed_nodes));
1883 if (!n) {
1884 spin_unlock(&root->inode_lock);
1885 break;
1886 }
1887
1888 inode_id = delayed_nodes[n - 1]->inode_id + 1;
1889
1890 for (i = 0; i < n; i++)
1891 atomic_inc(&delayed_nodes[i]->refs);
1892 spin_unlock(&root->inode_lock);
1893
1894 for (i = 0; i < n; i++) {
1895 __btrfs_kill_delayed_node(delayed_nodes[i]);
1896 btrfs_release_delayed_node(delayed_nodes[i]);
1897 }
1898 }
1899}
Miao Xie67cde342012-06-14 02:23:22 -06001900
1901void btrfs_destroy_delayed_inodes(struct btrfs_root *root)
1902{
1903 struct btrfs_delayed_root *delayed_root;
1904 struct btrfs_delayed_node *curr_node, *prev_node;
1905
1906 delayed_root = btrfs_get_delayed_root(root);
1907
1908 curr_node = btrfs_first_delayed_node(delayed_root);
1909 while (curr_node) {
1910 __btrfs_kill_delayed_node(curr_node);
1911
1912 prev_node = curr_node;
1913 curr_node = btrfs_next_delayed_node(curr_node);
1914 btrfs_release_delayed_node(prev_node);
1915 }
1916}
1917