blob: a494e7211f6c0dd0a5da9b051e77a8f44e9f2f2d [file] [log] [blame]
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001/*
2 * fs/f2fs/node.c
3 *
4 * Copyright (c) 2012 Samsung Electronics Co., Ltd.
5 * http://www.samsung.com/
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
10 */
11#include <linux/fs.h>
12#include <linux/f2fs_fs.h>
13#include <linux/mpage.h>
14#include <linux/backing-dev.h>
15#include <linux/blkdev.h>
16#include <linux/pagevec.h>
17#include <linux/swap.h>
18
19#include "f2fs.h"
20#include "node.h"
21#include "segment.h"
22#include <trace/events/f2fs.h>
23
Gu Zhengaa9c8b02014-02-21 18:08:29 +080024#define on_build_free_nids(nmi) mutex_is_locked(&nm_i->build_lock)
25
Linus Torvalds8005ecc2012-12-20 13:54:51 -080026static struct kmem_cache *nat_entry_slab;
27static struct kmem_cache *free_nid_slab;
28
Jaegeuk Kim250c7692014-04-16 10:47:06 +090029bool available_free_memory(struct f2fs_sb_info *sbi, int type)
Jaegeuk Kim327c57d2014-03-19 13:31:37 +090030{
Jaegeuk Kim250c7692014-04-16 10:47:06 +090031 struct f2fs_nm_info *nm_i = NM_I(sbi);
Jaegeuk Kim327c57d2014-03-19 13:31:37 +090032 struct sysinfo val;
33 unsigned long mem_size = 0;
Jaegeuk Kim250c7692014-04-16 10:47:06 +090034 bool res = false;
Jaegeuk Kim327c57d2014-03-19 13:31:37 +090035
36 si_meminfo(&val);
Jaegeuk Kim250c7692014-04-16 10:47:06 +090037 /* give 25%, 25%, 50% memory for each components respectively */
38 if (type == FREE_NIDS) {
39 mem_size = (nm_i->fcnt * sizeof(struct free_nid)) >> 12;
40 res = mem_size < ((val.totalram * nm_i->ram_thresh / 100) >> 2);
41 } else if (type == NAT_ENTRIES) {
42 mem_size = (nm_i->nat_cnt * sizeof(struct nat_entry)) >> 12;
43 res = mem_size < ((val.totalram * nm_i->ram_thresh / 100) >> 2);
44 } else if (type == DIRTY_DENTS) {
Jaegeuk Kim5d8bad12014-06-28 01:00:41 +090045 if (sbi->sb->s_bdi->dirty_exceeded)
46 return false;
Jaegeuk Kim250c7692014-04-16 10:47:06 +090047 mem_size = get_pages(sbi, F2FS_DIRTY_DENTS);
48 res = mem_size < ((val.totalram * nm_i->ram_thresh / 100) >> 1);
49 }
50 return res;
Jaegeuk Kim327c57d2014-03-19 13:31:37 +090051}
52
Linus Torvalds8005ecc2012-12-20 13:54:51 -080053static void clear_node_page_dirty(struct page *page)
54{
55 struct address_space *mapping = page->mapping;
56 struct f2fs_sb_info *sbi = F2FS_SB(mapping->host->i_sb);
57 unsigned int long flags;
58
59 if (PageDirty(page)) {
60 spin_lock_irqsave(&mapping->tree_lock, flags);
61 radix_tree_tag_clear(&mapping->page_tree,
62 page_index(page),
63 PAGECACHE_TAG_DIRTY);
64 spin_unlock_irqrestore(&mapping->tree_lock, flags);
65
66 clear_page_dirty_for_io(page);
67 dec_page_count(sbi, F2FS_DIRTY_NODES);
68 }
69 ClearPageUptodate(page);
70}
71
72static struct page *get_current_nat_page(struct f2fs_sb_info *sbi, nid_t nid)
73{
74 pgoff_t index = current_nat_addr(sbi, nid);
75 return get_meta_page(sbi, index);
76}
77
78static struct page *get_next_nat_page(struct f2fs_sb_info *sbi, nid_t nid)
79{
80 struct page *src_page;
81 struct page *dst_page;
82 pgoff_t src_off;
83 pgoff_t dst_off;
84 void *src_addr;
85 void *dst_addr;
86 struct f2fs_nm_info *nm_i = NM_I(sbi);
87
88 src_off = current_nat_addr(sbi, nid);
89 dst_off = next_nat_addr(sbi, src_off);
90
91 /* get current nat block page with lock */
92 src_page = get_meta_page(sbi, src_off);
93
94 /* Dirty src_page means that it is already the new target NAT page. */
95 if (PageDirty(src_page))
96 return src_page;
97
98 dst_page = grab_meta_page(sbi, dst_off);
99
100 src_addr = page_address(src_page);
101 dst_addr = page_address(dst_page);
102 memcpy(dst_addr, src_addr, PAGE_CACHE_SIZE);
103 set_page_dirty(dst_page);
104 f2fs_put_page(src_page, 1);
105
106 set_to_next_nat(nm_i, nid);
107
108 return dst_page;
109}
110
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800111static struct nat_entry *__lookup_nat_cache(struct f2fs_nm_info *nm_i, nid_t n)
112{
113 return radix_tree_lookup(&nm_i->nat_root, n);
114}
115
116static unsigned int __gang_lookup_nat_cache(struct f2fs_nm_info *nm_i,
117 nid_t start, unsigned int nr, struct nat_entry **ep)
118{
119 return radix_tree_gang_lookup(&nm_i->nat_root, (void **)ep, start, nr);
120}
121
122static void __del_from_nat_cache(struct f2fs_nm_info *nm_i, struct nat_entry *e)
123{
124 list_del(&e->list);
125 radix_tree_delete(&nm_i->nat_root, nat_get_nid(e));
126 nm_i->nat_cnt--;
127 kmem_cache_free(nat_entry_slab, e);
128}
129
130int is_checkpointed_node(struct f2fs_sb_info *sbi, nid_t nid)
131{
132 struct f2fs_nm_info *nm_i = NM_I(sbi);
133 struct nat_entry *e;
134 int is_cp = 1;
135
136 read_lock(&nm_i->nat_tree_lock);
137 e = __lookup_nat_cache(nm_i, nid);
138 if (e && !e->checkpointed)
139 is_cp = 0;
140 read_unlock(&nm_i->nat_tree_lock);
141 return is_cp;
142}
143
Jaegeuk Kimc0563e22014-03-20 21:52:53 +0900144bool fsync_mark_done(struct f2fs_sb_info *sbi, nid_t nid)
145{
146 struct f2fs_nm_info *nm_i = NM_I(sbi);
147 struct nat_entry *e;
148 bool fsync_done = false;
149
150 read_lock(&nm_i->nat_tree_lock);
151 e = __lookup_nat_cache(nm_i, nid);
152 if (e)
153 fsync_done = e->fsync_done;
154 read_unlock(&nm_i->nat_tree_lock);
155 return fsync_done;
156}
157
Jaegeuk Kim44f7a3b2014-06-04 00:39:42 +0900158void fsync_mark_clear(struct f2fs_sb_info *sbi, nid_t nid)
159{
160 struct f2fs_nm_info *nm_i = NM_I(sbi);
161 struct nat_entry *e;
162
163 write_lock(&nm_i->nat_tree_lock);
164 e = __lookup_nat_cache(nm_i, nid);
165 if (e)
166 e->fsync_done = false;
167 write_unlock(&nm_i->nat_tree_lock);
168}
169
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800170static struct nat_entry *grab_nat_entry(struct f2fs_nm_info *nm_i, nid_t nid)
171{
172 struct nat_entry *new;
173
174 new = kmem_cache_alloc(nat_entry_slab, GFP_ATOMIC);
175 if (!new)
176 return NULL;
177 if (radix_tree_insert(&nm_i->nat_root, nid, new)) {
178 kmem_cache_free(nat_entry_slab, new);
179 return NULL;
180 }
181 memset(new, 0, sizeof(struct nat_entry));
182 nat_set_nid(new, nid);
Jaegeuk Kimc5ed3b72014-02-21 13:17:22 +0900183 new->checkpointed = true;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800184 list_add_tail(&new->list, &nm_i->nat_entries);
185 nm_i->nat_cnt++;
186 return new;
187}
188
189static void cache_nat_entry(struct f2fs_nm_info *nm_i, nid_t nid,
190 struct f2fs_nat_entry *ne)
191{
192 struct nat_entry *e;
193retry:
194 write_lock(&nm_i->nat_tree_lock);
195 e = __lookup_nat_cache(nm_i, nid);
196 if (!e) {
197 e = grab_nat_entry(nm_i, nid);
198 if (!e) {
199 write_unlock(&nm_i->nat_tree_lock);
200 goto retry;
201 }
Chao Yu17eac8c2014-04-17 10:51:05 +0800202 node_info_from_raw_nat(&e->ni, ne);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800203 }
204 write_unlock(&nm_i->nat_tree_lock);
205}
206
207static void set_node_addr(struct f2fs_sb_info *sbi, struct node_info *ni,
Jaegeuk Kimc0563e22014-03-20 21:52:53 +0900208 block_t new_blkaddr, bool fsync_done)
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800209{
210 struct f2fs_nm_info *nm_i = NM_I(sbi);
211 struct nat_entry *e;
212retry:
213 write_lock(&nm_i->nat_tree_lock);
214 e = __lookup_nat_cache(nm_i, ni->nid);
215 if (!e) {
216 e = grab_nat_entry(nm_i, ni->nid);
217 if (!e) {
218 write_unlock(&nm_i->nat_tree_lock);
219 goto retry;
220 }
221 e->ni = *ni;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800222 f2fs_bug_on(ni->blk_addr == NEW_ADDR);
223 } else if (new_blkaddr == NEW_ADDR) {
224 /*
225 * when nid is reallocated,
226 * previous nat entry can be remained in nat cache.
227 * So, reinitialize it with new information.
228 */
229 e->ni = *ni;
230 f2fs_bug_on(ni->blk_addr != NULL_ADDR);
231 }
232
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800233 /* sanity check */
234 f2fs_bug_on(nat_get_blkaddr(e) != ni->blk_addr);
235 f2fs_bug_on(nat_get_blkaddr(e) == NULL_ADDR &&
236 new_blkaddr == NULL_ADDR);
237 f2fs_bug_on(nat_get_blkaddr(e) == NEW_ADDR &&
238 new_blkaddr == NEW_ADDR);
239 f2fs_bug_on(nat_get_blkaddr(e) != NEW_ADDR &&
240 nat_get_blkaddr(e) != NULL_ADDR &&
241 new_blkaddr == NEW_ADDR);
242
243 /* increament version no as node is removed */
244 if (nat_get_blkaddr(e) != NEW_ADDR && new_blkaddr == NULL_ADDR) {
245 unsigned char version = nat_get_version(e);
246 nat_set_version(e, inc_node_version(version));
247 }
248
249 /* change address */
250 nat_set_blkaddr(e, new_blkaddr);
251 __set_nat_cache_dirty(nm_i, e);
Jaegeuk Kimc0563e22014-03-20 21:52:53 +0900252
253 /* update fsync_mark if its inode nat entry is still alive */
254 e = __lookup_nat_cache(nm_i, ni->ino);
255 if (e)
256 e->fsync_done = fsync_done;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800257 write_unlock(&nm_i->nat_tree_lock);
258}
259
260int try_to_free_nats(struct f2fs_sb_info *sbi, int nr_shrink)
261{
262 struct f2fs_nm_info *nm_i = NM_I(sbi);
263
Jaegeuk Kim250c7692014-04-16 10:47:06 +0900264 if (available_free_memory(sbi, NAT_ENTRIES))
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800265 return 0;
266
267 write_lock(&nm_i->nat_tree_lock);
268 while (nr_shrink && !list_empty(&nm_i->nat_entries)) {
269 struct nat_entry *ne;
270 ne = list_first_entry(&nm_i->nat_entries,
271 struct nat_entry, list);
272 __del_from_nat_cache(nm_i, ne);
273 nr_shrink--;
274 }
275 write_unlock(&nm_i->nat_tree_lock);
276 return nr_shrink;
277}
278
279/*
280 * This function returns always success
281 */
282void get_node_info(struct f2fs_sb_info *sbi, nid_t nid, struct node_info *ni)
283{
284 struct f2fs_nm_info *nm_i = NM_I(sbi);
285 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA);
286 struct f2fs_summary_block *sum = curseg->sum_blk;
287 nid_t start_nid = START_NID(nid);
288 struct f2fs_nat_block *nat_blk;
289 struct page *page = NULL;
290 struct f2fs_nat_entry ne;
291 struct nat_entry *e;
292 int i;
293
294 memset(&ne, 0, sizeof(struct f2fs_nat_entry));
295 ni->nid = nid;
296
297 /* Check nat cache */
298 read_lock(&nm_i->nat_tree_lock);
299 e = __lookup_nat_cache(nm_i, nid);
300 if (e) {
301 ni->ino = nat_get_ino(e);
302 ni->blk_addr = nat_get_blkaddr(e);
303 ni->version = nat_get_version(e);
304 }
305 read_unlock(&nm_i->nat_tree_lock);
306 if (e)
307 return;
308
309 /* Check current segment summary */
310 mutex_lock(&curseg->curseg_mutex);
311 i = lookup_journal_in_cursum(sum, NAT_JOURNAL, nid, 0);
312 if (i >= 0) {
313 ne = nat_in_journal(sum, i);
314 node_info_from_raw_nat(ni, &ne);
315 }
316 mutex_unlock(&curseg->curseg_mutex);
317 if (i >= 0)
318 goto cache;
319
320 /* Fill node_info from nat page */
321 page = get_current_nat_page(sbi, start_nid);
322 nat_blk = (struct f2fs_nat_block *)page_address(page);
323 ne = nat_blk->entries[nid - start_nid];
324 node_info_from_raw_nat(ni, &ne);
325 f2fs_put_page(page, 1);
326cache:
327 /* cache nat entry */
328 cache_nat_entry(NM_I(sbi), nid, &ne);
329}
330
331/*
332 * The maximum depth is four.
333 * Offset[0] will have raw inode offset.
334 */
335static int get_node_path(struct f2fs_inode_info *fi, long block,
336 int offset[4], unsigned int noffset[4])
337{
338 const long direct_index = ADDRS_PER_INODE(fi);
339 const long direct_blks = ADDRS_PER_BLOCK;
340 const long dptrs_per_blk = NIDS_PER_BLOCK;
341 const long indirect_blks = ADDRS_PER_BLOCK * NIDS_PER_BLOCK;
342 const long dindirect_blks = indirect_blks * NIDS_PER_BLOCK;
343 int n = 0;
344 int level = 0;
345
346 noffset[0] = 0;
347
348 if (block < direct_index) {
349 offset[n] = block;
350 goto got;
351 }
352 block -= direct_index;
353 if (block < direct_blks) {
354 offset[n++] = NODE_DIR1_BLOCK;
355 noffset[n] = 1;
356 offset[n] = block;
357 level = 1;
358 goto got;
359 }
360 block -= direct_blks;
361 if (block < direct_blks) {
362 offset[n++] = NODE_DIR2_BLOCK;
363 noffset[n] = 2;
364 offset[n] = block;
365 level = 1;
366 goto got;
367 }
368 block -= direct_blks;
369 if (block < indirect_blks) {
370 offset[n++] = NODE_IND1_BLOCK;
371 noffset[n] = 3;
372 offset[n++] = block / direct_blks;
373 noffset[n] = 4 + offset[n - 1];
374 offset[n] = block % direct_blks;
375 level = 2;
376 goto got;
377 }
378 block -= indirect_blks;
379 if (block < indirect_blks) {
380 offset[n++] = NODE_IND2_BLOCK;
381 noffset[n] = 4 + dptrs_per_blk;
382 offset[n++] = block / direct_blks;
383 noffset[n] = 5 + dptrs_per_blk + offset[n - 1];
384 offset[n] = block % direct_blks;
385 level = 2;
386 goto got;
387 }
388 block -= indirect_blks;
389 if (block < dindirect_blks) {
390 offset[n++] = NODE_DIND_BLOCK;
391 noffset[n] = 5 + (dptrs_per_blk * 2);
392 offset[n++] = block / indirect_blks;
393 noffset[n] = 6 + (dptrs_per_blk * 2) +
394 offset[n - 1] * (dptrs_per_blk + 1);
395 offset[n++] = (block / direct_blks) % dptrs_per_blk;
396 noffset[n] = 7 + (dptrs_per_blk * 2) +
397 offset[n - 2] * (dptrs_per_blk + 1) +
398 offset[n - 1];
399 offset[n] = block % direct_blks;
400 level = 3;
401 goto got;
402 } else {
403 BUG();
404 }
405got:
406 return level;
407}
408
409/*
410 * Caller should call f2fs_put_dnode(dn).
Changman Leeb1a94e82013-11-15 10:42:51 +0900411 * Also, it should grab and release a rwsem by calling f2fs_lock_op() and
412 * f2fs_unlock_op() only if ro is not set RDONLY_NODE.
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800413 * In the case of RDONLY_NODE, we don't need to care about mutex.
414 */
415int get_dnode_of_data(struct dnode_of_data *dn, pgoff_t index, int mode)
416{
417 struct f2fs_sb_info *sbi = F2FS_SB(dn->inode->i_sb);
418 struct page *npage[4];
419 struct page *parent;
420 int offset[4];
421 unsigned int noffset[4];
422 nid_t nids[4];
423 int level, i;
424 int err = 0;
425
426 level = get_node_path(F2FS_I(dn->inode), index, offset, noffset);
427
428 nids[0] = dn->inode->i_ino;
429 npage[0] = dn->inode_page;
430
431 if (!npage[0]) {
432 npage[0] = get_node_page(sbi, nids[0]);
433 if (IS_ERR(npage[0]))
434 return PTR_ERR(npage[0]);
435 }
436 parent = npage[0];
437 if (level != 0)
438 nids[1] = get_nid(parent, offset[0], true);
439 dn->inode_page = npage[0];
440 dn->inode_page_locked = true;
441
442 /* get indirect or direct nodes */
443 for (i = 1; i <= level; i++) {
444 bool done = false;
445
446 if (!nids[i] && mode == ALLOC_NODE) {
447 /* alloc new node */
448 if (!alloc_nid(sbi, &(nids[i]))) {
449 err = -ENOSPC;
450 goto release_pages;
451 }
452
453 dn->nid = nids[i];
454 npage[i] = new_node_page(dn, noffset[i], NULL);
455 if (IS_ERR(npage[i])) {
456 alloc_nid_failed(sbi, nids[i]);
457 err = PTR_ERR(npage[i]);
458 goto release_pages;
459 }
460
461 set_nid(parent, offset[i - 1], nids[i], i == 1);
462 alloc_nid_done(sbi, nids[i]);
463 done = true;
464 } else if (mode == LOOKUP_NODE_RA && i == level && level > 1) {
465 npage[i] = get_node_page_ra(parent, offset[i - 1]);
466 if (IS_ERR(npage[i])) {
467 err = PTR_ERR(npage[i]);
468 goto release_pages;
469 }
470 done = true;
471 }
472 if (i == 1) {
473 dn->inode_page_locked = false;
474 unlock_page(parent);
475 } else {
476 f2fs_put_page(parent, 1);
477 }
478
479 if (!done) {
480 npage[i] = get_node_page(sbi, nids[i]);
481 if (IS_ERR(npage[i])) {
482 err = PTR_ERR(npage[i]);
483 f2fs_put_page(npage[0], 0);
484 goto release_out;
485 }
486 }
487 if (i < level) {
488 parent = npage[i];
489 nids[i + 1] = get_nid(parent, offset[i], false);
490 }
491 }
492 dn->nid = nids[level];
493 dn->ofs_in_node = offset[level];
494 dn->node_page = npage[level];
495 dn->data_blkaddr = datablock_addr(dn->node_page, dn->ofs_in_node);
496 return 0;
497
498release_pages:
499 f2fs_put_page(parent, 1);
500 if (i > 1)
501 f2fs_put_page(npage[0], 0);
502release_out:
503 dn->inode_page = NULL;
504 dn->node_page = NULL;
505 return err;
506}
507
508static void truncate_node(struct dnode_of_data *dn)
509{
510 struct f2fs_sb_info *sbi = F2FS_SB(dn->inode->i_sb);
511 struct node_info ni;
512
513 get_node_info(sbi, dn->nid, &ni);
514 if (dn->inode->i_blocks == 0) {
515 f2fs_bug_on(ni.blk_addr != NULL_ADDR);
516 goto invalidate;
517 }
518 f2fs_bug_on(ni.blk_addr == NULL_ADDR);
519
520 /* Deallocate node address */
521 invalidate_blocks(sbi, ni.blk_addr);
Changman Leeb1a94e82013-11-15 10:42:51 +0900522 dec_valid_node_count(sbi, dn->inode);
Jaegeuk Kimc0563e22014-03-20 21:52:53 +0900523 set_node_addr(sbi, &ni, NULL_ADDR, false);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800524
525 if (dn->nid == dn->inode->i_ino) {
526 remove_orphan_inode(sbi, dn->nid);
527 dec_valid_inode_count(sbi);
528 } else {
529 sync_inode_page(dn);
530 }
531invalidate:
532 clear_node_page_dirty(dn->node_page);
533 F2FS_SET_SB_DIRT(sbi);
534
535 f2fs_put_page(dn->node_page, 1);
Changman Leeb1a94e82013-11-15 10:42:51 +0900536
537 invalidate_mapping_pages(NODE_MAPPING(sbi),
538 dn->node_page->index, dn->node_page->index);
539
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800540 dn->node_page = NULL;
541 trace_f2fs_truncate_node(dn->inode, dn->nid, ni.blk_addr);
542}
543
544static int truncate_dnode(struct dnode_of_data *dn)
545{
546 struct f2fs_sb_info *sbi = F2FS_SB(dn->inode->i_sb);
547 struct page *page;
548
549 if (dn->nid == 0)
550 return 1;
551
552 /* get direct node */
553 page = get_node_page(sbi, dn->nid);
554 if (IS_ERR(page) && PTR_ERR(page) == -ENOENT)
555 return 1;
556 else if (IS_ERR(page))
557 return PTR_ERR(page);
558
559 /* Make dnode_of_data for parameter */
560 dn->node_page = page;
561 dn->ofs_in_node = 0;
562 truncate_data_blocks(dn);
563 truncate_node(dn);
564 return 1;
565}
566
567static int truncate_nodes(struct dnode_of_data *dn, unsigned int nofs,
568 int ofs, int depth)
569{
570 struct f2fs_sb_info *sbi = F2FS_SB(dn->inode->i_sb);
571 struct dnode_of_data rdn = *dn;
572 struct page *page;
573 struct f2fs_node *rn;
574 nid_t child_nid;
575 unsigned int child_nofs;
576 int freed = 0;
577 int i, ret;
578
579 if (dn->nid == 0)
580 return NIDS_PER_BLOCK + 1;
581
582 trace_f2fs_truncate_nodes_enter(dn->inode, dn->nid, dn->data_blkaddr);
583
584 page = get_node_page(sbi, dn->nid);
585 if (IS_ERR(page)) {
586 trace_f2fs_truncate_nodes_exit(dn->inode, PTR_ERR(page));
587 return PTR_ERR(page);
588 }
589
590 rn = F2FS_NODE(page);
591 if (depth < 3) {
592 for (i = ofs; i < NIDS_PER_BLOCK; i++, freed++) {
593 child_nid = le32_to_cpu(rn->in.nid[i]);
594 if (child_nid == 0)
595 continue;
596 rdn.nid = child_nid;
597 ret = truncate_dnode(&rdn);
598 if (ret < 0)
599 goto out_err;
600 set_nid(page, i, 0, false);
601 }
602 } else {
603 child_nofs = nofs + ofs * (NIDS_PER_BLOCK + 1) + 1;
604 for (i = ofs; i < NIDS_PER_BLOCK; i++) {
605 child_nid = le32_to_cpu(rn->in.nid[i]);
606 if (child_nid == 0) {
607 child_nofs += NIDS_PER_BLOCK + 1;
608 continue;
609 }
610 rdn.nid = child_nid;
611 ret = truncate_nodes(&rdn, child_nofs, 0, depth - 1);
612 if (ret == (NIDS_PER_BLOCK + 1)) {
613 set_nid(page, i, 0, false);
614 child_nofs += ret;
615 } else if (ret < 0 && ret != -ENOENT) {
616 goto out_err;
617 }
618 }
619 freed = child_nofs;
620 }
621
622 if (!ofs) {
623 /* remove current indirect node */
624 dn->node_page = page;
625 truncate_node(dn);
626 freed++;
627 } else {
628 f2fs_put_page(page, 1);
629 }
630 trace_f2fs_truncate_nodes_exit(dn->inode, freed);
631 return freed;
632
633out_err:
634 f2fs_put_page(page, 1);
635 trace_f2fs_truncate_nodes_exit(dn->inode, ret);
636 return ret;
637}
638
639static int truncate_partial_nodes(struct dnode_of_data *dn,
640 struct f2fs_inode *ri, int *offset, int depth)
641{
642 struct f2fs_sb_info *sbi = F2FS_SB(dn->inode->i_sb);
643 struct page *pages[2];
644 nid_t nid[3];
645 nid_t child_nid;
646 int err = 0;
647 int i;
648 int idx = depth - 2;
649
650 nid[0] = le32_to_cpu(ri->i_nid[offset[0] - NODE_DIR1_BLOCK]);
651 if (!nid[0])
652 return 0;
653
654 /* get indirect nodes in the path */
Changman Leeb1a94e82013-11-15 10:42:51 +0900655 for (i = 0; i < idx + 1; i++) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800656 /* refernece count'll be increased */
657 pages[i] = get_node_page(sbi, nid[i]);
658 if (IS_ERR(pages[i])) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800659 err = PTR_ERR(pages[i]);
Changman Leeb1a94e82013-11-15 10:42:51 +0900660 idx = i - 1;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800661 goto fail;
662 }
663 nid[i + 1] = get_nid(pages[i], offset[i + 1], false);
664 }
665
666 /* free direct nodes linked to a partial indirect node */
Changman Leeb1a94e82013-11-15 10:42:51 +0900667 for (i = offset[idx + 1]; i < NIDS_PER_BLOCK; i++) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800668 child_nid = get_nid(pages[idx], i, false);
669 if (!child_nid)
670 continue;
671 dn->nid = child_nid;
672 err = truncate_dnode(dn);
673 if (err < 0)
674 goto fail;
675 set_nid(pages[idx], i, 0, false);
676 }
677
Changman Leeb1a94e82013-11-15 10:42:51 +0900678 if (offset[idx + 1] == 0) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800679 dn->node_page = pages[idx];
680 dn->nid = nid[idx];
681 truncate_node(dn);
682 } else {
683 f2fs_put_page(pages[idx], 1);
684 }
685 offset[idx]++;
Changman Leeb1a94e82013-11-15 10:42:51 +0900686 offset[idx + 1] = 0;
687 idx--;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800688fail:
Changman Leeb1a94e82013-11-15 10:42:51 +0900689 for (i = idx; i >= 0; i--)
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800690 f2fs_put_page(pages[i], 1);
691
692 trace_f2fs_truncate_partial_nodes(dn->inode, nid, depth, err);
693
694 return err;
695}
696
697/*
698 * All the block addresses of data and nodes should be nullified.
699 */
700int truncate_inode_blocks(struct inode *inode, pgoff_t from)
701{
702 struct f2fs_sb_info *sbi = F2FS_SB(inode->i_sb);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800703 int err = 0, cont = 1;
704 int level, offset[4], noffset[4];
705 unsigned int nofs = 0;
Changman Leeb1a94e82013-11-15 10:42:51 +0900706 struct f2fs_inode *ri;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800707 struct dnode_of_data dn;
708 struct page *page;
709
710 trace_f2fs_truncate_inode_blocks_enter(inode, from);
711
712 level = get_node_path(F2FS_I(inode), from, offset, noffset);
713restart:
714 page = get_node_page(sbi, inode->i_ino);
715 if (IS_ERR(page)) {
716 trace_f2fs_truncate_inode_blocks_exit(inode, PTR_ERR(page));
717 return PTR_ERR(page);
718 }
719
720 set_new_dnode(&dn, inode, page, NULL, 0);
721 unlock_page(page);
722
Changman Leeb1a94e82013-11-15 10:42:51 +0900723 ri = F2FS_INODE(page);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800724 switch (level) {
725 case 0:
726 case 1:
727 nofs = noffset[1];
728 break;
729 case 2:
730 nofs = noffset[1];
731 if (!offset[level - 1])
732 goto skip_partial;
Changman Leeb1a94e82013-11-15 10:42:51 +0900733 err = truncate_partial_nodes(&dn, ri, offset, level);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800734 if (err < 0 && err != -ENOENT)
735 goto fail;
736 nofs += 1 + NIDS_PER_BLOCK;
737 break;
738 case 3:
739 nofs = 5 + 2 * NIDS_PER_BLOCK;
740 if (!offset[level - 1])
741 goto skip_partial;
Changman Leeb1a94e82013-11-15 10:42:51 +0900742 err = truncate_partial_nodes(&dn, ri, offset, level);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800743 if (err < 0 && err != -ENOENT)
744 goto fail;
745 break;
746 default:
747 BUG();
748 }
749
750skip_partial:
751 while (cont) {
Changman Leeb1a94e82013-11-15 10:42:51 +0900752 dn.nid = le32_to_cpu(ri->i_nid[offset[0] - NODE_DIR1_BLOCK]);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800753 switch (offset[0]) {
754 case NODE_DIR1_BLOCK:
755 case NODE_DIR2_BLOCK:
756 err = truncate_dnode(&dn);
757 break;
758
759 case NODE_IND1_BLOCK:
760 case NODE_IND2_BLOCK:
761 err = truncate_nodes(&dn, nofs, offset[1], 2);
762 break;
763
764 case NODE_DIND_BLOCK:
765 err = truncate_nodes(&dn, nofs, offset[1], 3);
766 cont = 0;
767 break;
768
769 default:
770 BUG();
771 }
772 if (err < 0 && err != -ENOENT)
773 goto fail;
774 if (offset[1] == 0 &&
Changman Leeb1a94e82013-11-15 10:42:51 +0900775 ri->i_nid[offset[0] - NODE_DIR1_BLOCK]) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800776 lock_page(page);
Changman Leeb1a94e82013-11-15 10:42:51 +0900777 if (unlikely(page->mapping != NODE_MAPPING(sbi))) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800778 f2fs_put_page(page, 1);
779 goto restart;
780 }
Jaegeuk Kim4b66d802014-03-18 13:29:07 +0900781 f2fs_wait_on_page_writeback(page, NODE);
Changman Leeb1a94e82013-11-15 10:42:51 +0900782 ri->i_nid[offset[0] - NODE_DIR1_BLOCK] = 0;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800783 set_page_dirty(page);
784 unlock_page(page);
785 }
786 offset[1] = 0;
787 offset[0]++;
788 nofs += err;
789 }
790fail:
791 f2fs_put_page(page, 0);
792 trace_f2fs_truncate_inode_blocks_exit(inode, err);
793 return err > 0 ? 0 : err;
794}
795
796int truncate_xattr_node(struct inode *inode, struct page *page)
797{
798 struct f2fs_sb_info *sbi = F2FS_SB(inode->i_sb);
799 nid_t nid = F2FS_I(inode)->i_xattr_nid;
800 struct dnode_of_data dn;
801 struct page *npage;
802
803 if (!nid)
804 return 0;
805
806 npage = get_node_page(sbi, nid);
807 if (IS_ERR(npage))
808 return PTR_ERR(npage);
809
810 F2FS_I(inode)->i_xattr_nid = 0;
811
812 /* need to do checkpoint during fsync */
813 F2FS_I(inode)->xattr_ver = cur_cp_version(F2FS_CKPT(sbi));
814
815 set_new_dnode(&dn, inode, page, npage, nid);
816
817 if (page)
Changman Leeb1a94e82013-11-15 10:42:51 +0900818 dn.inode_page_locked = true;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800819 truncate_node(&dn);
820 return 0;
821}
822
823/*
Changman Leeb1a94e82013-11-15 10:42:51 +0900824 * Caller should grab and release a rwsem by calling f2fs_lock_op() and
825 * f2fs_unlock_op().
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800826 */
Changman Leeb1a94e82013-11-15 10:42:51 +0900827void remove_inode_page(struct inode *inode)
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800828{
829 struct f2fs_sb_info *sbi = F2FS_SB(inode->i_sb);
830 struct page *page;
831 nid_t ino = inode->i_ino;
832 struct dnode_of_data dn;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800833
834 page = get_node_page(sbi, ino);
835 if (IS_ERR(page))
Changman Leeb1a94e82013-11-15 10:42:51 +0900836 return;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800837
Changman Leeb1a94e82013-11-15 10:42:51 +0900838 if (truncate_xattr_node(inode, page)) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800839 f2fs_put_page(page, 1);
Changman Leeb1a94e82013-11-15 10:42:51 +0900840 return;
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800841 }
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800842 /* 0 is possible, after f2fs_new_inode() is failed */
843 f2fs_bug_on(inode->i_blocks != 0 && inode->i_blocks != 1);
844 set_new_dnode(&dn, inode, page, page, ino);
845 truncate_node(&dn);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800846}
847
848struct page *new_inode_page(struct inode *inode, const struct qstr *name)
849{
850 struct dnode_of_data dn;
851
852 /* allocate inode page for new inode */
853 set_new_dnode(&dn, inode, NULL, NULL, inode->i_ino);
854
855 /* caller should f2fs_put_page(page, 1); */
856 return new_node_page(&dn, 0, NULL);
857}
858
859struct page *new_node_page(struct dnode_of_data *dn,
860 unsigned int ofs, struct page *ipage)
861{
862 struct f2fs_sb_info *sbi = F2FS_SB(dn->inode->i_sb);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800863 struct node_info old_ni, new_ni;
864 struct page *page;
865 int err;
866
Changman Leeb1a94e82013-11-15 10:42:51 +0900867 if (unlikely(is_inode_flag_set(F2FS_I(dn->inode), FI_NO_ALLOC)))
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800868 return ERR_PTR(-EPERM);
869
Jaegeuk Kim0f9e6b52014-04-29 17:28:32 +0900870 page = grab_cache_page(NODE_MAPPING(sbi), dn->nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800871 if (!page)
872 return ERR_PTR(-ENOMEM);
873
Changman Leeb1a94e82013-11-15 10:42:51 +0900874 if (unlikely(!inc_valid_node_count(sbi, dn->inode))) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800875 err = -ENOSPC;
876 goto fail;
877 }
878
879 get_node_info(sbi, dn->nid, &old_ni);
880
881 /* Reinitialize old_ni with new node page */
882 f2fs_bug_on(old_ni.blk_addr != NULL_ADDR);
883 new_ni = old_ni;
884 new_ni.ino = dn->inode->i_ino;
Jaegeuk Kimc0563e22014-03-20 21:52:53 +0900885 set_node_addr(sbi, &new_ni, NEW_ADDR, false);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800886
Jaegeuk Kim0f9e6b52014-04-29 17:28:32 +0900887 f2fs_wait_on_page_writeback(page, NODE);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800888 fill_node_footer(page, dn->nid, dn->inode->i_ino, ofs, true);
889 set_cold_node(dn->inode, page);
890 SetPageUptodate(page);
891 set_page_dirty(page);
892
Chao Yueea95c42014-03-17 16:35:06 +0800893 if (f2fs_has_xattr_block(ofs))
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800894 F2FS_I(dn->inode)->i_xattr_nid = dn->nid;
895
896 dn->node_page = page;
897 if (ipage)
898 update_inode(dn->inode, ipage);
899 else
900 sync_inode_page(dn);
901 if (ofs == 0)
902 inc_valid_inode_count(sbi);
903
904 return page;
905
906fail:
907 clear_node_page_dirty(page);
908 f2fs_put_page(page, 1);
909 return ERR_PTR(err);
910}
911
912/*
913 * Caller should do after getting the following values.
914 * 0: f2fs_put_page(page, 0)
915 * LOCKED_PAGE: f2fs_put_page(page, 1)
916 * error: nothing
917 */
Changman Leeb1a94e82013-11-15 10:42:51 +0900918static int read_node_page(struct page *page, int rw)
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800919{
920 struct f2fs_sb_info *sbi = F2FS_SB(page->mapping->host->i_sb);
921 struct node_info ni;
922
923 get_node_info(sbi, page->index, &ni);
924
Changman Leeb1a94e82013-11-15 10:42:51 +0900925 if (unlikely(ni.blk_addr == NULL_ADDR)) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800926 f2fs_put_page(page, 1);
927 return -ENOENT;
928 }
929
930 if (PageUptodate(page))
931 return LOCKED_PAGE;
932
Changman Leeb1a94e82013-11-15 10:42:51 +0900933 return f2fs_submit_page_bio(sbi, page, ni.blk_addr, rw);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800934}
935
936/*
937 * Readahead a node page
938 */
939void ra_node_page(struct f2fs_sb_info *sbi, nid_t nid)
940{
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800941 struct page *apage;
942 int err;
943
Changman Leeb1a94e82013-11-15 10:42:51 +0900944 apage = find_get_page(NODE_MAPPING(sbi), nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800945 if (apage && PageUptodate(apage)) {
946 f2fs_put_page(apage, 0);
947 return;
948 }
949 f2fs_put_page(apage, 0);
950
Changman Leeb1a94e82013-11-15 10:42:51 +0900951 apage = grab_cache_page(NODE_MAPPING(sbi), nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800952 if (!apage)
953 return;
954
955 err = read_node_page(apage, READA);
956 if (err == 0)
957 f2fs_put_page(apage, 0);
958 else if (err == LOCKED_PAGE)
959 f2fs_put_page(apage, 1);
960}
961
962struct page *get_node_page(struct f2fs_sb_info *sbi, pgoff_t nid)
963{
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800964 struct page *page;
965 int err;
966repeat:
Jaegeuk Kim0f9e6b52014-04-29 17:28:32 +0900967 page = grab_cache_page(NODE_MAPPING(sbi), nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800968 if (!page)
969 return ERR_PTR(-ENOMEM);
970
971 err = read_node_page(page, READ_SYNC);
972 if (err < 0)
973 return ERR_PTR(err);
974 else if (err == LOCKED_PAGE)
975 goto got_it;
976
977 lock_page(page);
Jaegeuk Kima68f2892014-04-01 17:38:26 +0900978 if (unlikely(!PageUptodate(page) || nid != nid_of_node(page))) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800979 f2fs_put_page(page, 1);
980 return ERR_PTR(-EIO);
981 }
Changman Leeb1a94e82013-11-15 10:42:51 +0900982 if (unlikely(page->mapping != NODE_MAPPING(sbi))) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800983 f2fs_put_page(page, 1);
984 goto repeat;
985 }
986got_it:
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800987 mark_page_accessed(page);
988 return page;
989}
990
991/*
992 * Return a locked page for the desired node page.
993 * And, readahead MAX_RA_NODE number of node pages.
994 */
995struct page *get_node_page_ra(struct page *parent, int start)
996{
997 struct f2fs_sb_info *sbi = F2FS_SB(parent->mapping->host->i_sb);
Linus Torvalds8005ecc2012-12-20 13:54:51 -0800998 struct blk_plug plug;
999 struct page *page;
1000 int err, i, end;
1001 nid_t nid;
1002
1003 /* First, try getting the desired direct node. */
1004 nid = get_nid(parent, start, false);
1005 if (!nid)
1006 return ERR_PTR(-ENOENT);
1007repeat:
Changman Leeb1a94e82013-11-15 10:42:51 +09001008 page = grab_cache_page(NODE_MAPPING(sbi), nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001009 if (!page)
1010 return ERR_PTR(-ENOMEM);
1011
1012 err = read_node_page(page, READ_SYNC);
1013 if (err < 0)
1014 return ERR_PTR(err);
1015 else if (err == LOCKED_PAGE)
1016 goto page_hit;
1017
1018 blk_start_plug(&plug);
1019
1020 /* Then, try readahead for siblings of the desired node */
1021 end = start + MAX_RA_NODE;
1022 end = min(end, NIDS_PER_BLOCK);
1023 for (i = start + 1; i < end; i++) {
1024 nid = get_nid(parent, i, false);
1025 if (!nid)
1026 continue;
1027 ra_node_page(sbi, nid);
1028 }
1029
1030 blk_finish_plug(&plug);
1031
1032 lock_page(page);
Changman Leeb1a94e82013-11-15 10:42:51 +09001033 if (unlikely(page->mapping != NODE_MAPPING(sbi))) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001034 f2fs_put_page(page, 1);
1035 goto repeat;
1036 }
1037page_hit:
Changman Leeb1a94e82013-11-15 10:42:51 +09001038 if (unlikely(!PageUptodate(page))) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001039 f2fs_put_page(page, 1);
1040 return ERR_PTR(-EIO);
1041 }
1042 mark_page_accessed(page);
1043 return page;
1044}
1045
1046void sync_inode_page(struct dnode_of_data *dn)
1047{
1048 if (IS_INODE(dn->node_page) || dn->inode_page == dn->node_page) {
1049 update_inode(dn->inode, dn->node_page);
1050 } else if (dn->inode_page) {
1051 if (!dn->inode_page_locked)
1052 lock_page(dn->inode_page);
1053 update_inode(dn->inode, dn->inode_page);
1054 if (!dn->inode_page_locked)
1055 unlock_page(dn->inode_page);
1056 } else {
1057 update_inode_page(dn->inode);
1058 }
1059}
1060
1061int sync_node_pages(struct f2fs_sb_info *sbi, nid_t ino,
1062 struct writeback_control *wbc)
1063{
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001064 pgoff_t index, end;
1065 struct pagevec pvec;
1066 int step = ino ? 2 : 0;
1067 int nwritten = 0, wrote = 0;
1068
1069 pagevec_init(&pvec, 0);
1070
1071next_step:
1072 index = 0;
1073 end = LONG_MAX;
1074
1075 while (index <= end) {
1076 int i, nr_pages;
Changman Leeb1a94e82013-11-15 10:42:51 +09001077 nr_pages = pagevec_lookup_tag(&pvec, NODE_MAPPING(sbi), &index,
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001078 PAGECACHE_TAG_DIRTY,
1079 min(end - index, (pgoff_t)PAGEVEC_SIZE-1) + 1);
1080 if (nr_pages == 0)
1081 break;
1082
1083 for (i = 0; i < nr_pages; i++) {
1084 struct page *page = pvec.pages[i];
1085
1086 /*
1087 * flushing sequence with step:
1088 * 0. indirect nodes
1089 * 1. dentry dnodes
1090 * 2. file dnodes
1091 */
1092 if (step == 0 && IS_DNODE(page))
1093 continue;
1094 if (step == 1 && (!IS_DNODE(page) ||
1095 is_cold_node(page)))
1096 continue;
1097 if (step == 2 && (!IS_DNODE(page) ||
1098 !is_cold_node(page)))
1099 continue;
1100
1101 /*
1102 * If an fsync mode,
1103 * we should not skip writing node pages.
1104 */
1105 if (ino && ino_of_node(page) == ino)
1106 lock_page(page);
1107 else if (!trylock_page(page))
1108 continue;
1109
Changman Leeb1a94e82013-11-15 10:42:51 +09001110 if (unlikely(page->mapping != NODE_MAPPING(sbi))) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001111continue_unlock:
1112 unlock_page(page);
1113 continue;
1114 }
1115 if (ino && ino_of_node(page) != ino)
1116 goto continue_unlock;
1117
1118 if (!PageDirty(page)) {
1119 /* someone wrote it for us */
1120 goto continue_unlock;
1121 }
1122
1123 if (!clear_page_dirty_for_io(page))
1124 goto continue_unlock;
1125
1126 /* called by fsync() */
1127 if (ino && IS_DNODE(page)) {
1128 int mark = !is_checkpointed_node(sbi, ino);
1129 set_fsync_mark(page, 1);
1130 if (IS_INODE(page))
1131 set_dentry_mark(page, mark);
1132 nwritten++;
1133 } else {
1134 set_fsync_mark(page, 0);
1135 set_dentry_mark(page, 0);
1136 }
Changman Leeb1a94e82013-11-15 10:42:51 +09001137 NODE_MAPPING(sbi)->a_ops->writepage(page, wbc);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001138 wrote++;
1139
1140 if (--wbc->nr_to_write == 0)
1141 break;
1142 }
1143 pagevec_release(&pvec);
1144 cond_resched();
1145
1146 if (wbc->nr_to_write == 0) {
1147 step = 2;
1148 break;
1149 }
1150 }
1151
1152 if (step < 2) {
1153 step++;
1154 goto next_step;
1155 }
1156
1157 if (wrote)
Changman Leeb1a94e82013-11-15 10:42:51 +09001158 f2fs_submit_merged_bio(sbi, NODE, WRITE);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001159 return nwritten;
1160}
1161
1162int wait_on_node_pages_writeback(struct f2fs_sb_info *sbi, nid_t ino)
1163{
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001164 pgoff_t index = 0, end = LONG_MAX;
1165 struct pagevec pvec;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001166 int ret2 = 0, ret = 0;
1167
1168 pagevec_init(&pvec, 0);
Changman Leeb1a94e82013-11-15 10:42:51 +09001169
1170 while (index <= end) {
1171 int i, nr_pages;
1172 nr_pages = pagevec_lookup_tag(&pvec, NODE_MAPPING(sbi), &index,
1173 PAGECACHE_TAG_WRITEBACK,
1174 min(end - index, (pgoff_t)PAGEVEC_SIZE-1) + 1);
1175 if (nr_pages == 0)
1176 break;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001177
1178 for (i = 0; i < nr_pages; i++) {
1179 struct page *page = pvec.pages[i];
1180
1181 /* until radix tree lookup accepts end_index */
Changman Leeb1a94e82013-11-15 10:42:51 +09001182 if (unlikely(page->index > end))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001183 continue;
1184
1185 if (ino && ino_of_node(page) == ino) {
Jaegeuk Kim4b66d802014-03-18 13:29:07 +09001186 f2fs_wait_on_page_writeback(page, NODE);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001187 if (TestClearPageError(page))
1188 ret = -EIO;
1189 }
1190 }
1191 pagevec_release(&pvec);
1192 cond_resched();
1193 }
1194
Changman Leeb1a94e82013-11-15 10:42:51 +09001195 if (unlikely(test_and_clear_bit(AS_ENOSPC, &NODE_MAPPING(sbi)->flags)))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001196 ret2 = -ENOSPC;
Changman Leeb1a94e82013-11-15 10:42:51 +09001197 if (unlikely(test_and_clear_bit(AS_EIO, &NODE_MAPPING(sbi)->flags)))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001198 ret2 = -EIO;
1199 if (!ret)
1200 ret = ret2;
1201 return ret;
1202}
1203
1204static int f2fs_write_node_page(struct page *page,
1205 struct writeback_control *wbc)
1206{
1207 struct f2fs_sb_info *sbi = F2FS_SB(page->mapping->host->i_sb);
1208 nid_t nid;
1209 block_t new_addr;
1210 struct node_info ni;
Changman Leeb1a94e82013-11-15 10:42:51 +09001211 struct f2fs_io_info fio = {
1212 .type = NODE,
1213 .rw = (wbc->sync_mode == WB_SYNC_ALL) ? WRITE_SYNC : WRITE,
1214 };
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001215
Chao Yu327cb6d2014-05-06 16:48:26 +08001216 trace_f2fs_writepage(page, NODE);
1217
Changman Leeb1a94e82013-11-15 10:42:51 +09001218 if (unlikely(sbi->por_doing))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001219 goto redirty_out;
1220
Jaegeuk Kim4b66d802014-03-18 13:29:07 +09001221 f2fs_wait_on_page_writeback(page, NODE);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001222
1223 /* get old block addr of this node page */
1224 nid = nid_of_node(page);
1225 f2fs_bug_on(page->index != nid);
1226
1227 get_node_info(sbi, nid, &ni);
1228
1229 /* This page is already truncated */
Changman Leeb1a94e82013-11-15 10:42:51 +09001230 if (unlikely(ni.blk_addr == NULL_ADDR)) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001231 dec_page_count(sbi, F2FS_DIRTY_NODES);
1232 unlock_page(page);
1233 return 0;
1234 }
1235
1236 if (wbc->for_reclaim)
1237 goto redirty_out;
1238
1239 mutex_lock(&sbi->node_write);
1240 set_page_writeback(page);
Changman Leeb1a94e82013-11-15 10:42:51 +09001241 write_node_page(sbi, page, &fio, nid, ni.blk_addr, &new_addr);
Jaegeuk Kimc0563e22014-03-20 21:52:53 +09001242 set_node_addr(sbi, &ni, new_addr, is_fsync_dnode(page));
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001243 dec_page_count(sbi, F2FS_DIRTY_NODES);
1244 mutex_unlock(&sbi->node_write);
1245 unlock_page(page);
1246 return 0;
1247
1248redirty_out:
Jaegeuk Kimdc8c2462014-04-15 16:04:15 +09001249 redirty_page_for_writepage(wbc, page);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001250 return AOP_WRITEPAGE_ACTIVATE;
1251}
1252
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001253static int f2fs_write_node_pages(struct address_space *mapping,
1254 struct writeback_control *wbc)
1255{
1256 struct f2fs_sb_info *sbi = F2FS_SB(mapping->host->i_sb);
Jaegeuk Kim1f1eaf42014-03-18 13:47:11 +09001257 long diff;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001258
Chao Yub4d85492014-05-06 16:51:24 +08001259 trace_f2fs_writepages(mapping->host, wbc, NODE);
1260
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001261 /* balancing f2fs's metadata in background */
1262 f2fs_balance_fs_bg(sbi);
1263
1264 /* collect a number of dirty node pages and write together */
Jaegeuk Kimc7f9f432014-03-18 12:40:49 +09001265 if (get_pages(sbi, F2FS_DIRTY_NODES) < nr_pages_to_skip(sbi, NODE))
Jaegeuk Kim823d59f2014-03-18 13:43:05 +09001266 goto skip_write;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001267
Jaegeuk Kim1f1eaf42014-03-18 13:47:11 +09001268 diff = nr_pages_to_write(sbi, NODE, wbc);
Changman Leeb1a94e82013-11-15 10:42:51 +09001269 wbc->sync_mode = WB_SYNC_NONE;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001270 sync_node_pages(sbi, 0, wbc);
Jaegeuk Kim1f1eaf42014-03-18 13:47:11 +09001271 wbc->nr_to_write = max((long)0, wbc->nr_to_write - diff);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001272 return 0;
Jaegeuk Kim823d59f2014-03-18 13:43:05 +09001273
1274skip_write:
1275 wbc->pages_skipped += get_pages(sbi, F2FS_DIRTY_NODES);
1276 return 0;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001277}
1278
1279static int f2fs_set_node_page_dirty(struct page *page)
1280{
1281 struct address_space *mapping = page->mapping;
1282 struct f2fs_sb_info *sbi = F2FS_SB(mapping->host->i_sb);
1283
1284 trace_f2fs_set_page_dirty(page, NODE);
1285
1286 SetPageUptodate(page);
1287 if (!PageDirty(page)) {
1288 __set_page_dirty_nobuffers(page);
1289 inc_page_count(sbi, F2FS_DIRTY_NODES);
1290 SetPagePrivate(page);
1291 return 1;
1292 }
1293 return 0;
1294}
1295
1296static void f2fs_invalidate_node_page(struct page *page, unsigned long offset)
1297{
1298 struct inode *inode = page->mapping->host;
1299 struct f2fs_sb_info *sbi = F2FS_SB(inode->i_sb);
1300 if (PageDirty(page))
1301 dec_page_count(sbi, F2FS_DIRTY_NODES);
1302 ClearPagePrivate(page);
1303}
1304
1305static int f2fs_release_node_page(struct page *page, gfp_t wait)
1306{
1307 ClearPagePrivate(page);
1308 return 1;
1309}
1310
1311/*
1312 * Structure of the f2fs node operations
1313 */
1314const struct address_space_operations f2fs_node_aops = {
1315 .writepage = f2fs_write_node_page,
1316 .writepages = f2fs_write_node_pages,
1317 .set_page_dirty = f2fs_set_node_page_dirty,
1318 .invalidatepage = f2fs_invalidate_node_page,
1319 .releasepage = f2fs_release_node_page,
1320};
1321
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001322static struct free_nid *__lookup_free_nid_list(struct f2fs_nm_info *nm_i,
1323 nid_t n)
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001324{
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001325 return radix_tree_lookup(&nm_i->free_nid_root, n);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001326}
1327
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001328static void __del_from_free_nid_list(struct f2fs_nm_info *nm_i,
1329 struct free_nid *i)
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001330{
1331 list_del(&i->list);
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001332 radix_tree_delete(&nm_i->free_nid_root, i->nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001333}
1334
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001335static int add_free_nid(struct f2fs_sb_info *sbi, nid_t nid, bool build)
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001336{
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001337 struct f2fs_nm_info *nm_i = NM_I(sbi);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001338 struct free_nid *i;
1339 struct nat_entry *ne;
1340 bool allocated = false;
1341
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001342 if (!available_free_memory(sbi, FREE_NIDS))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001343 return -1;
1344
1345 /* 0 nid should not be used */
Changman Leeb1a94e82013-11-15 10:42:51 +09001346 if (unlikely(nid == 0))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001347 return 0;
1348
1349 if (build) {
1350 /* do not add allocated nids */
1351 read_lock(&nm_i->nat_tree_lock);
1352 ne = __lookup_nat_cache(nm_i, nid);
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001353 if (ne &&
1354 (!ne->checkpointed || nat_get_blkaddr(ne) != NULL_ADDR))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001355 allocated = true;
1356 read_unlock(&nm_i->nat_tree_lock);
1357 if (allocated)
1358 return 0;
1359 }
1360
1361 i = f2fs_kmem_cache_alloc(free_nid_slab, GFP_NOFS);
1362 i->nid = nid;
1363 i->state = NID_NEW;
1364
1365 spin_lock(&nm_i->free_nid_list_lock);
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001366 if (radix_tree_insert(&nm_i->free_nid_root, i->nid, i)) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001367 spin_unlock(&nm_i->free_nid_list_lock);
1368 kmem_cache_free(free_nid_slab, i);
1369 return 0;
1370 }
1371 list_add_tail(&i->list, &nm_i->free_nid_list);
1372 nm_i->fcnt++;
1373 spin_unlock(&nm_i->free_nid_list_lock);
1374 return 1;
1375}
1376
1377static void remove_free_nid(struct f2fs_nm_info *nm_i, nid_t nid)
1378{
1379 struct free_nid *i;
Chao Yu784b1352014-04-02 08:55:00 +08001380 bool need_free = false;
1381
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001382 spin_lock(&nm_i->free_nid_list_lock);
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001383 i = __lookup_free_nid_list(nm_i, nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001384 if (i && i->state == NID_NEW) {
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001385 __del_from_free_nid_list(nm_i, i);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001386 nm_i->fcnt--;
Chao Yu784b1352014-04-02 08:55:00 +08001387 need_free = true;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001388 }
1389 spin_unlock(&nm_i->free_nid_list_lock);
Chao Yu784b1352014-04-02 08:55:00 +08001390
1391 if (need_free)
1392 kmem_cache_free(free_nid_slab, i);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001393}
1394
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001395static void scan_nat_page(struct f2fs_sb_info *sbi,
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001396 struct page *nat_page, nid_t start_nid)
1397{
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001398 struct f2fs_nm_info *nm_i = NM_I(sbi);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001399 struct f2fs_nat_block *nat_blk = page_address(nat_page);
1400 block_t blk_addr;
1401 int i;
1402
1403 i = start_nid % NAT_ENTRY_PER_BLOCK;
1404
1405 for (; i < NAT_ENTRY_PER_BLOCK; i++, start_nid++) {
1406
Changman Leeb1a94e82013-11-15 10:42:51 +09001407 if (unlikely(start_nid >= nm_i->max_nid))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001408 break;
1409
1410 blk_addr = le32_to_cpu(nat_blk->entries[i].block_addr);
1411 f2fs_bug_on(blk_addr == NEW_ADDR);
1412 if (blk_addr == NULL_ADDR) {
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001413 if (add_free_nid(sbi, start_nid, true) < 0)
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001414 break;
1415 }
1416 }
1417}
1418
1419static void build_free_nids(struct f2fs_sb_info *sbi)
1420{
1421 struct f2fs_nm_info *nm_i = NM_I(sbi);
1422 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA);
1423 struct f2fs_summary_block *sum = curseg->sum_blk;
1424 int i = 0;
1425 nid_t nid = nm_i->next_scan_nid;
1426
1427 /* Enough entries */
1428 if (nm_i->fcnt > NAT_ENTRY_PER_BLOCK)
1429 return;
1430
1431 /* readahead nat pages to be scanned */
Chao Yu624b14f2014-02-07 16:11:53 +08001432 ra_meta_pages(sbi, NAT_BLOCK_OFFSET(nid), FREE_NID_PAGES, META_NAT);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001433
1434 while (1) {
1435 struct page *page = get_current_nat_page(sbi, nid);
1436
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001437 scan_nat_page(sbi, page, nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001438 f2fs_put_page(page, 1);
1439
1440 nid += (NAT_ENTRY_PER_BLOCK - (nid % NAT_ENTRY_PER_BLOCK));
Changman Leeb1a94e82013-11-15 10:42:51 +09001441 if (unlikely(nid >= nm_i->max_nid))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001442 nid = 0;
1443
1444 if (i++ == FREE_NID_PAGES)
1445 break;
1446 }
1447
1448 /* go to the next free nat pages to find free nids abundantly */
1449 nm_i->next_scan_nid = nid;
1450
1451 /* find free nids from current sum_pages */
1452 mutex_lock(&curseg->curseg_mutex);
1453 for (i = 0; i < nats_in_cursum(sum); i++) {
1454 block_t addr = le32_to_cpu(nat_in_journal(sum, i).block_addr);
1455 nid = le32_to_cpu(nid_in_journal(sum, i));
1456 if (addr == NULL_ADDR)
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001457 add_free_nid(sbi, nid, true);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001458 else
1459 remove_free_nid(nm_i, nid);
1460 }
1461 mutex_unlock(&curseg->curseg_mutex);
1462}
1463
1464/*
1465 * If this function returns success, caller can obtain a new nid
1466 * from second parameter of this function.
1467 * The returned nid could be used ino as well as nid when inode is created.
1468 */
1469bool alloc_nid(struct f2fs_sb_info *sbi, nid_t *nid)
1470{
1471 struct f2fs_nm_info *nm_i = NM_I(sbi);
1472 struct free_nid *i = NULL;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001473retry:
Jaegeuk Kim989f9142014-04-18 11:14:37 +09001474 if (unlikely(sbi->total_valid_node_count + 1 > nm_i->available_nids))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001475 return false;
1476
1477 spin_lock(&nm_i->free_nid_list_lock);
1478
1479 /* We should not use stale free nids created by build_free_nids */
Gu Zhengaa9c8b02014-02-21 18:08:29 +08001480 if (nm_i->fcnt && !on_build_free_nids(nm_i)) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001481 f2fs_bug_on(list_empty(&nm_i->free_nid_list));
Chao Yu48c561a2014-03-29 11:33:17 +08001482 list_for_each_entry(i, &nm_i->free_nid_list, list)
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001483 if (i->state == NID_NEW)
1484 break;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001485
1486 f2fs_bug_on(i->state != NID_NEW);
1487 *nid = i->nid;
1488 i->state = NID_ALLOC;
1489 nm_i->fcnt--;
1490 spin_unlock(&nm_i->free_nid_list_lock);
1491 return true;
1492 }
1493 spin_unlock(&nm_i->free_nid_list_lock);
1494
1495 /* Let's scan nat pages and its caches to get free nids */
1496 mutex_lock(&nm_i->build_lock);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001497 build_free_nids(sbi);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001498 mutex_unlock(&nm_i->build_lock);
1499 goto retry;
1500}
1501
1502/*
1503 * alloc_nid() should be called prior to this function.
1504 */
1505void alloc_nid_done(struct f2fs_sb_info *sbi, nid_t nid)
1506{
1507 struct f2fs_nm_info *nm_i = NM_I(sbi);
1508 struct free_nid *i;
1509
1510 spin_lock(&nm_i->free_nid_list_lock);
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001511 i = __lookup_free_nid_list(nm_i, nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001512 f2fs_bug_on(!i || i->state != NID_ALLOC);
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001513 __del_from_free_nid_list(nm_i, i);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001514 spin_unlock(&nm_i->free_nid_list_lock);
Chao Yu784b1352014-04-02 08:55:00 +08001515
1516 kmem_cache_free(free_nid_slab, i);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001517}
1518
1519/*
1520 * alloc_nid() should be called prior to this function.
1521 */
1522void alloc_nid_failed(struct f2fs_sb_info *sbi, nid_t nid)
1523{
1524 struct f2fs_nm_info *nm_i = NM_I(sbi);
1525 struct free_nid *i;
Chao Yu784b1352014-04-02 08:55:00 +08001526 bool need_free = false;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001527
1528 if (!nid)
1529 return;
1530
1531 spin_lock(&nm_i->free_nid_list_lock);
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001532 i = __lookup_free_nid_list(nm_i, nid);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001533 f2fs_bug_on(!i || i->state != NID_ALLOC);
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001534 if (!available_free_memory(sbi, FREE_NIDS)) {
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001535 __del_from_free_nid_list(nm_i, i);
Chao Yu784b1352014-04-02 08:55:00 +08001536 need_free = true;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001537 } else {
1538 i->state = NID_NEW;
1539 nm_i->fcnt++;
1540 }
1541 spin_unlock(&nm_i->free_nid_list_lock);
Chao Yu784b1352014-04-02 08:55:00 +08001542
1543 if (need_free)
1544 kmem_cache_free(free_nid_slab, i);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001545}
1546
1547void recover_node_page(struct f2fs_sb_info *sbi, struct page *page,
1548 struct f2fs_summary *sum, struct node_info *ni,
1549 block_t new_blkaddr)
1550{
1551 rewrite_node_page(sbi, page, sum, ni->blk_addr, new_blkaddr);
Jaegeuk Kimc0563e22014-03-20 21:52:53 +09001552 set_node_addr(sbi, ni, new_blkaddr, false);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001553 clear_node_page_dirty(page);
1554}
1555
Jingoo Han2e4e9862014-04-15 17:51:05 +09001556static void recover_inline_xattr(struct inode *inode, struct page *page)
Chao Yub3606c92014-03-11 13:37:38 +08001557{
1558 struct f2fs_sb_info *sbi = F2FS_SB(inode->i_sb);
1559 void *src_addr, *dst_addr;
1560 size_t inline_size;
1561 struct page *ipage;
1562 struct f2fs_inode *ri;
1563
Chao Yu70da8c62014-03-12 15:59:03 +08001564 if (!f2fs_has_inline_xattr(inode))
Chao Yub3606c92014-03-11 13:37:38 +08001565 return;
1566
1567 if (!IS_INODE(page))
1568 return;
1569
1570 ri = F2FS_INODE(page);
1571 if (!(ri->i_inline & F2FS_INLINE_XATTR))
1572 return;
1573
1574 ipage = get_node_page(sbi, inode->i_ino);
1575 f2fs_bug_on(IS_ERR(ipage));
1576
1577 dst_addr = inline_xattr_addr(ipage);
1578 src_addr = inline_xattr_addr(page);
1579 inline_size = inline_xattr_size(inode);
1580
Jaegeuk Kim0f9e6b52014-04-29 17:28:32 +09001581 f2fs_wait_on_page_writeback(ipage, NODE);
Chao Yub3606c92014-03-11 13:37:38 +08001582 memcpy(dst_addr, src_addr, inline_size);
1583
1584 update_inode(inode, ipage);
1585 f2fs_put_page(ipage, 1);
1586}
1587
Jaegeuk Kimb759f5f2014-01-28 12:25:06 +09001588bool recover_xattr_data(struct inode *inode, struct page *page, block_t blkaddr)
1589{
1590 struct f2fs_sb_info *sbi = F2FS_SB(inode->i_sb);
1591 nid_t prev_xnid = F2FS_I(inode)->i_xattr_nid;
1592 nid_t new_xnid = nid_of_node(page);
1593 struct node_info ni;
1594
Chao Yub3606c92014-03-11 13:37:38 +08001595 recover_inline_xattr(inode, page);
1596
Chao Yueea95c42014-03-17 16:35:06 +08001597 if (!f2fs_has_xattr_block(ofs_of_node(page)))
Jaegeuk Kimb759f5f2014-01-28 12:25:06 +09001598 return false;
1599
1600 /* 1: invalidate the previous xattr nid */
1601 if (!prev_xnid)
1602 goto recover_xnid;
1603
1604 /* Deallocate node address */
1605 get_node_info(sbi, prev_xnid, &ni);
1606 f2fs_bug_on(ni.blk_addr == NULL_ADDR);
1607 invalidate_blocks(sbi, ni.blk_addr);
1608 dec_valid_node_count(sbi, inode);
Jaegeuk Kimc0563e22014-03-20 21:52:53 +09001609 set_node_addr(sbi, &ni, NULL_ADDR, false);
Jaegeuk Kimb759f5f2014-01-28 12:25:06 +09001610
1611recover_xnid:
1612 /* 2: allocate new xattr nid */
1613 if (unlikely(!inc_valid_node_count(sbi, inode)))
1614 f2fs_bug_on(1);
1615
1616 remove_free_nid(NM_I(sbi), new_xnid);
1617 get_node_info(sbi, new_xnid, &ni);
1618 ni.ino = inode->i_ino;
Jaegeuk Kimc0563e22014-03-20 21:52:53 +09001619 set_node_addr(sbi, &ni, NEW_ADDR, false);
Jaegeuk Kimb759f5f2014-01-28 12:25:06 +09001620 F2FS_I(inode)->i_xattr_nid = new_xnid;
1621
1622 /* 3: update xattr blkaddr */
1623 refresh_sit_entry(sbi, NEW_ADDR, blkaddr);
Jaegeuk Kimc0563e22014-03-20 21:52:53 +09001624 set_node_addr(sbi, &ni, blkaddr, false);
Jaegeuk Kimb759f5f2014-01-28 12:25:06 +09001625
1626 update_inode_page(inode);
1627 return true;
1628}
1629
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001630int recover_inode_page(struct f2fs_sb_info *sbi, struct page *page)
1631{
Changman Leeb1a94e82013-11-15 10:42:51 +09001632 struct f2fs_inode *src, *dst;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001633 nid_t ino = ino_of_node(page);
1634 struct node_info old_ni, new_ni;
1635 struct page *ipage;
1636
Jaegeuk Kimeb6b0492014-04-18 15:21:04 +09001637 get_node_info(sbi, ino, &old_ni);
1638
1639 if (unlikely(old_ni.blk_addr != NULL_ADDR))
1640 return -EINVAL;
1641
Changman Leeb1a94e82013-11-15 10:42:51 +09001642 ipage = grab_cache_page(NODE_MAPPING(sbi), ino);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001643 if (!ipage)
1644 return -ENOMEM;
1645
1646 /* Should not use this inode from free nid list */
1647 remove_free_nid(NM_I(sbi), ino);
1648
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001649 SetPageUptodate(ipage);
1650 fill_node_footer(ipage, ino, ino, 0, true);
1651
Changman Leeb1a94e82013-11-15 10:42:51 +09001652 src = F2FS_INODE(page);
1653 dst = F2FS_INODE(ipage);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001654
Changman Leeb1a94e82013-11-15 10:42:51 +09001655 memcpy(dst, src, (unsigned long)&src->i_ext - (unsigned long)src);
1656 dst->i_size = 0;
1657 dst->i_blocks = cpu_to_le64(1);
1658 dst->i_links = cpu_to_le32(1);
1659 dst->i_xattr_nid = 0;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001660
1661 new_ni = old_ni;
1662 new_ni.ino = ino;
1663
Changman Leeb1a94e82013-11-15 10:42:51 +09001664 if (unlikely(!inc_valid_node_count(sbi, NULL)))
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001665 WARN_ON(1);
Jaegeuk Kimc0563e22014-03-20 21:52:53 +09001666 set_node_addr(sbi, &new_ni, NEW_ADDR, false);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001667 inc_valid_inode_count(sbi);
1668 f2fs_put_page(ipage, 1);
1669 return 0;
1670}
1671
Changman Leeb1a94e82013-11-15 10:42:51 +09001672/*
1673 * ra_sum_pages() merge contiguous pages into one bio and submit.
Chao Yu53826b52014-05-27 08:41:07 +08001674 * these pre-readed pages are alloced in bd_inode's mapping tree.
Changman Leeb1a94e82013-11-15 10:42:51 +09001675 */
Chao Yu53826b52014-05-27 08:41:07 +08001676static int ra_sum_pages(struct f2fs_sb_info *sbi, struct page **pages,
Changman Leeb1a94e82013-11-15 10:42:51 +09001677 int start, int nrpages)
1678{
Chao Yu53826b52014-05-27 08:41:07 +08001679 struct inode *inode = sbi->sb->s_bdev->bd_inode;
1680 struct address_space *mapping = inode->i_mapping;
1681 int i, page_idx = start;
Changman Leeb1a94e82013-11-15 10:42:51 +09001682 struct f2fs_io_info fio = {
1683 .type = META,
1684 .rw = READ_SYNC | REQ_META | REQ_PRIO
1685 };
1686
Chao Yu53826b52014-05-27 08:41:07 +08001687 for (i = 0; page_idx < start + nrpages; page_idx++, i++) {
1688 /* alloc page in bd_inode for reading node summary info */
1689 pages[i] = grab_cache_page(mapping, page_idx);
1690 if (!pages[i])
Gu Zheng12e374b2014-03-07 18:43:36 +08001691 break;
Chao Yu53826b52014-05-27 08:41:07 +08001692 f2fs_submit_page_mbio(sbi, pages[i], page_idx, &fio);
Changman Leeb1a94e82013-11-15 10:42:51 +09001693 }
1694
Changman Leeb1a94e82013-11-15 10:42:51 +09001695 f2fs_submit_merged_bio(sbi, META, READ);
Chao Yu53826b52014-05-27 08:41:07 +08001696 return i;
Changman Leeb1a94e82013-11-15 10:42:51 +09001697}
1698
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001699int restore_node_summary(struct f2fs_sb_info *sbi,
1700 unsigned int segno, struct f2fs_summary_block *sum)
1701{
1702 struct f2fs_node *rn;
1703 struct f2fs_summary *sum_entry;
Chao Yu53826b52014-05-27 08:41:07 +08001704 struct inode *inode = sbi->sb->s_bdev->bd_inode;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001705 block_t addr;
Changman Leeb1a94e82013-11-15 10:42:51 +09001706 int bio_blocks = MAX_BIO_BLOCKS(max_hw_blocks(sbi));
Chao Yu53826b52014-05-27 08:41:07 +08001707 struct page *pages[bio_blocks];
1708 int i, idx, last_offset, nrpages, err = 0;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001709
1710 /* scan the node segment */
1711 last_offset = sbi->blocks_per_seg;
1712 addr = START_BLOCK(sbi, segno);
1713 sum_entry = &sum->entries[0];
1714
Gu Zheng12e374b2014-03-07 18:43:36 +08001715 for (i = 0; !err && i < last_offset; i += nrpages, addr += nrpages) {
Changman Leeb1a94e82013-11-15 10:42:51 +09001716 nrpages = min(last_offset - i, bio_blocks);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001717
Changman Leeb1a94e82013-11-15 10:42:51 +09001718 /* read ahead node pages */
Chao Yu53826b52014-05-27 08:41:07 +08001719 nrpages = ra_sum_pages(sbi, pages, addr, nrpages);
Gu Zheng12e374b2014-03-07 18:43:36 +08001720 if (!nrpages)
1721 return -ENOMEM;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001722
Chao Yu53826b52014-05-27 08:41:07 +08001723 for (idx = 0; idx < nrpages; idx++) {
Gu Zheng12e374b2014-03-07 18:43:36 +08001724 if (err)
1725 goto skip;
Changman Leeb1a94e82013-11-15 10:42:51 +09001726
Chao Yu53826b52014-05-27 08:41:07 +08001727 lock_page(pages[idx]);
1728 if (unlikely(!PageUptodate(pages[idx]))) {
Changman Leeb1a94e82013-11-15 10:42:51 +09001729 err = -EIO;
1730 } else {
Chao Yu53826b52014-05-27 08:41:07 +08001731 rn = F2FS_NODE(pages[idx]);
Changman Leeb1a94e82013-11-15 10:42:51 +09001732 sum_entry->nid = rn->footer.nid;
1733 sum_entry->version = 0;
1734 sum_entry->ofs_in_node = 0;
1735 sum_entry++;
1736 }
Chao Yu53826b52014-05-27 08:41:07 +08001737 unlock_page(pages[idx]);
Gu Zheng12e374b2014-03-07 18:43:36 +08001738skip:
Chao Yu53826b52014-05-27 08:41:07 +08001739 page_cache_release(pages[idx]);
Changman Leeb1a94e82013-11-15 10:42:51 +09001740 }
Chao Yu53826b52014-05-27 08:41:07 +08001741
1742 invalidate_mapping_pages(inode->i_mapping, addr,
1743 addr + nrpages);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001744 }
Changman Leeb1a94e82013-11-15 10:42:51 +09001745 return err;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001746}
1747
1748static bool flush_nats_in_journal(struct f2fs_sb_info *sbi)
1749{
1750 struct f2fs_nm_info *nm_i = NM_I(sbi);
1751 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA);
1752 struct f2fs_summary_block *sum = curseg->sum_blk;
1753 int i;
1754
1755 mutex_lock(&curseg->curseg_mutex);
1756
1757 if (nats_in_cursum(sum) < NAT_JOURNAL_ENTRIES) {
1758 mutex_unlock(&curseg->curseg_mutex);
1759 return false;
1760 }
1761
1762 for (i = 0; i < nats_in_cursum(sum); i++) {
1763 struct nat_entry *ne;
1764 struct f2fs_nat_entry raw_ne;
1765 nid_t nid = le32_to_cpu(nid_in_journal(sum, i));
1766
1767 raw_ne = nat_in_journal(sum, i);
1768retry:
1769 write_lock(&nm_i->nat_tree_lock);
1770 ne = __lookup_nat_cache(nm_i, nid);
1771 if (ne) {
1772 __set_nat_cache_dirty(nm_i, ne);
1773 write_unlock(&nm_i->nat_tree_lock);
1774 continue;
1775 }
1776 ne = grab_nat_entry(nm_i, nid);
1777 if (!ne) {
1778 write_unlock(&nm_i->nat_tree_lock);
1779 goto retry;
1780 }
Chao Yu17eac8c2014-04-17 10:51:05 +08001781 node_info_from_raw_nat(&ne->ni, &raw_ne);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001782 __set_nat_cache_dirty(nm_i, ne);
1783 write_unlock(&nm_i->nat_tree_lock);
1784 }
1785 update_nats_in_cursum(sum, -i);
1786 mutex_unlock(&curseg->curseg_mutex);
1787 return true;
1788}
1789
1790/*
1791 * This function is called during the checkpointing process.
1792 */
1793void flush_nat_entries(struct f2fs_sb_info *sbi)
1794{
1795 struct f2fs_nm_info *nm_i = NM_I(sbi);
1796 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA);
1797 struct f2fs_summary_block *sum = curseg->sum_blk;
Chao Yu48c561a2014-03-29 11:33:17 +08001798 struct nat_entry *ne, *cur;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001799 struct page *page = NULL;
1800 struct f2fs_nat_block *nat_blk = NULL;
1801 nid_t start_nid = 0, end_nid = 0;
1802 bool flushed;
1803
1804 flushed = flush_nats_in_journal(sbi);
1805
1806 if (!flushed)
1807 mutex_lock(&curseg->curseg_mutex);
1808
1809 /* 1) flush dirty nat caches */
Chao Yu48c561a2014-03-29 11:33:17 +08001810 list_for_each_entry_safe(ne, cur, &nm_i->dirty_nat_entries, list) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001811 nid_t nid;
1812 struct f2fs_nat_entry raw_ne;
1813 int offset = -1;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001814
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001815 if (nat_get_blkaddr(ne) == NEW_ADDR)
1816 continue;
Chao Yu48c561a2014-03-29 11:33:17 +08001817
1818 nid = nat_get_nid(ne);
1819
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001820 if (flushed)
1821 goto to_nat_page;
1822
1823 /* if there is room for nat enries in curseg->sumpage */
1824 offset = lookup_journal_in_cursum(sum, NAT_JOURNAL, nid, 1);
1825 if (offset >= 0) {
1826 raw_ne = nat_in_journal(sum, offset);
1827 goto flush_now;
1828 }
1829to_nat_page:
1830 if (!page || (start_nid > nid || nid > end_nid)) {
1831 if (page) {
1832 f2fs_put_page(page, 1);
1833 page = NULL;
1834 }
1835 start_nid = START_NID(nid);
1836 end_nid = start_nid + NAT_ENTRY_PER_BLOCK - 1;
1837
1838 /*
1839 * get nat block with dirty flag, increased reference
1840 * count, mapped and lock
1841 */
1842 page = get_next_nat_page(sbi, start_nid);
1843 nat_blk = page_address(page);
1844 }
1845
1846 f2fs_bug_on(!nat_blk);
1847 raw_ne = nat_blk->entries[nid - start_nid];
1848flush_now:
Chao Yu17eac8c2014-04-17 10:51:05 +08001849 raw_nat_from_node_info(&raw_ne, &ne->ni);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001850
1851 if (offset < 0) {
1852 nat_blk->entries[nid - start_nid] = raw_ne;
1853 } else {
1854 nat_in_journal(sum, offset) = raw_ne;
1855 nid_in_journal(sum, offset) = cpu_to_le32(nid);
1856 }
1857
1858 if (nat_get_blkaddr(ne) == NULL_ADDR &&
Jaegeuk Kim250c7692014-04-16 10:47:06 +09001859 add_free_nid(sbi, nid, false) <= 0) {
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001860 write_lock(&nm_i->nat_tree_lock);
1861 __del_from_nat_cache(nm_i, ne);
1862 write_unlock(&nm_i->nat_tree_lock);
1863 } else {
1864 write_lock(&nm_i->nat_tree_lock);
1865 __clear_nat_cache_dirty(nm_i, ne);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001866 write_unlock(&nm_i->nat_tree_lock);
1867 }
1868 }
1869 if (!flushed)
1870 mutex_unlock(&curseg->curseg_mutex);
1871 f2fs_put_page(page, 1);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001872}
1873
1874static int init_node_manager(struct f2fs_sb_info *sbi)
1875{
1876 struct f2fs_super_block *sb_raw = F2FS_RAW_SUPER(sbi);
1877 struct f2fs_nm_info *nm_i = NM_I(sbi);
1878 unsigned char *version_bitmap;
1879 unsigned int nat_segs, nat_blocks;
1880
1881 nm_i->nat_blkaddr = le32_to_cpu(sb_raw->nat_blkaddr);
1882
1883 /* segment_count_nat includes pair segment so divide to 2. */
1884 nat_segs = le32_to_cpu(sb_raw->segment_count_nat) >> 1;
1885 nat_blocks = nat_segs << le32_to_cpu(sb_raw->log_blocks_per_seg);
Jaegeuk Kim8fa144b2014-02-17 12:44:20 +09001886
Jaegeuk Kim989f9142014-04-18 11:14:37 +09001887 nm_i->max_nid = NAT_ENTRY_PER_BLOCK * nat_blocks;
1888
Jaegeuk Kim8fa144b2014-02-17 12:44:20 +09001889 /* not used nids: 0, node, meta, (and root counted as valid node) */
Jaegeuk Kim989f9142014-04-18 11:14:37 +09001890 nm_i->available_nids = nm_i->max_nid - 3;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001891 nm_i->fcnt = 0;
1892 nm_i->nat_cnt = 0;
Jaegeuk Kim327c57d2014-03-19 13:31:37 +09001893 nm_i->ram_thresh = DEF_RAM_THRESHOLD;
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001894
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001895 INIT_RADIX_TREE(&nm_i->free_nid_root, GFP_ATOMIC);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001896 INIT_LIST_HEAD(&nm_i->free_nid_list);
1897 INIT_RADIX_TREE(&nm_i->nat_root, GFP_ATOMIC);
1898 INIT_LIST_HEAD(&nm_i->nat_entries);
1899 INIT_LIST_HEAD(&nm_i->dirty_nat_entries);
1900
1901 mutex_init(&nm_i->build_lock);
1902 spin_lock_init(&nm_i->free_nid_list_lock);
1903 rwlock_init(&nm_i->nat_tree_lock);
1904
1905 nm_i->next_scan_nid = le32_to_cpu(sbi->ckpt->next_free_nid);
1906 nm_i->bitmap_size = __bitmap_size(sbi, NAT_BITMAP);
1907 version_bitmap = __bitmap_ptr(sbi, NAT_BITMAP);
1908 if (!version_bitmap)
1909 return -EFAULT;
1910
1911 nm_i->nat_bitmap = kmemdup(version_bitmap, nm_i->bitmap_size,
1912 GFP_KERNEL);
1913 if (!nm_i->nat_bitmap)
1914 return -ENOMEM;
1915 return 0;
1916}
1917
1918int build_node_manager(struct f2fs_sb_info *sbi)
1919{
1920 int err;
1921
1922 sbi->nm_info = kzalloc(sizeof(struct f2fs_nm_info), GFP_KERNEL);
1923 if (!sbi->nm_info)
1924 return -ENOMEM;
1925
1926 err = init_node_manager(sbi);
1927 if (err)
1928 return err;
1929
1930 build_free_nids(sbi);
1931 return 0;
1932}
1933
1934void destroy_node_manager(struct f2fs_sb_info *sbi)
1935{
1936 struct f2fs_nm_info *nm_i = NM_I(sbi);
1937 struct free_nid *i, *next_i;
1938 struct nat_entry *natvec[NATVEC_SIZE];
1939 nid_t nid = 0;
1940 unsigned int found;
1941
1942 if (!nm_i)
1943 return;
1944
1945 /* destroy free nid list */
1946 spin_lock(&nm_i->free_nid_list_lock);
1947 list_for_each_entry_safe(i, next_i, &nm_i->free_nid_list, list) {
1948 f2fs_bug_on(i->state == NID_ALLOC);
Jaegeuk Kim8409a8a2014-02-21 14:29:35 +09001949 __del_from_free_nid_list(nm_i, i);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001950 nm_i->fcnt--;
Chao Yu784b1352014-04-02 08:55:00 +08001951 spin_unlock(&nm_i->free_nid_list_lock);
1952 kmem_cache_free(free_nid_slab, i);
1953 spin_lock(&nm_i->free_nid_list_lock);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001954 }
1955 f2fs_bug_on(nm_i->fcnt);
1956 spin_unlock(&nm_i->free_nid_list_lock);
1957
1958 /* destroy nat cache */
1959 write_lock(&nm_i->nat_tree_lock);
1960 while ((found = __gang_lookup_nat_cache(nm_i,
1961 nid, NATVEC_SIZE, natvec))) {
1962 unsigned idx;
Gu Zheng0c97ea92014-03-07 18:43:24 +08001963 nid = nat_get_nid(natvec[found - 1]) + 1;
1964 for (idx = 0; idx < found; idx++)
1965 __del_from_nat_cache(nm_i, natvec[idx]);
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001966 }
1967 f2fs_bug_on(nm_i->nat_cnt);
1968 write_unlock(&nm_i->nat_tree_lock);
1969
1970 kfree(nm_i->nat_bitmap);
1971 sbi->nm_info = NULL;
1972 kfree(nm_i);
1973}
1974
1975int __init create_node_manager_caches(void)
1976{
1977 nat_entry_slab = f2fs_kmem_cache_create("nat_entry",
Gu Zhenge33dcea2014-03-07 18:43:28 +08001978 sizeof(struct nat_entry));
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001979 if (!nat_entry_slab)
1980 return -ENOMEM;
1981
1982 free_nid_slab = f2fs_kmem_cache_create("free_nid",
Gu Zhenge33dcea2014-03-07 18:43:28 +08001983 sizeof(struct free_nid));
Linus Torvalds8005ecc2012-12-20 13:54:51 -08001984 if (!free_nid_slab) {
1985 kmem_cache_destroy(nat_entry_slab);
1986 return -ENOMEM;
1987 }
1988 return 0;
1989}
1990
1991void destroy_node_manager_caches(void)
1992{
1993 kmem_cache_destroy(free_nid_slab);
1994 kmem_cache_destroy(nat_entry_slab);
1995}