f2fs: split journal cache from curseg cache
[linux-2.6-block.git] / fs / f2fs / node.c
CommitLineData
0a8165d7 1/*
e05df3b1
JK
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"
9e4ded3f 22#include "trace.h"
51dd6249 23#include <trace/events/f2fs.h>
e05df3b1 24
f978f5a0
GZ
25#define on_build_free_nids(nmi) mutex_is_locked(&nm_i->build_lock)
26
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27static struct kmem_cache *nat_entry_slab;
28static struct kmem_cache *free_nid_slab;
aec71382 29static struct kmem_cache *nat_entry_set_slab;
e05df3b1 30
6fb03f3a 31bool available_free_memory(struct f2fs_sb_info *sbi, int type)
cdfc41c1 32{
6fb03f3a 33 struct f2fs_nm_info *nm_i = NM_I(sbi);
cdfc41c1 34 struct sysinfo val;
e5e7ea3c 35 unsigned long avail_ram;
cdfc41c1 36 unsigned long mem_size = 0;
6fb03f3a 37 bool res = false;
cdfc41c1
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38
39 si_meminfo(&val);
e5e7ea3c
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40
41 /* only uses low memory */
42 avail_ram = val.totalram - val.totalhigh;
43
429511cd
CY
44 /*
45 * give 25%, 25%, 50%, 50%, 50% memory for each components respectively
46 */
6fb03f3a 47 if (type == FREE_NIDS) {
e5e7ea3c
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48 mem_size = (nm_i->fcnt * sizeof(struct free_nid)) >>
49 PAGE_CACHE_SHIFT;
50 res = mem_size < ((avail_ram * nm_i->ram_thresh / 100) >> 2);
6fb03f3a 51 } else if (type == NAT_ENTRIES) {
e5e7ea3c
JK
52 mem_size = (nm_i->nat_cnt * sizeof(struct nat_entry)) >>
53 PAGE_CACHE_SHIFT;
54 res = mem_size < ((avail_ram * nm_i->ram_thresh / 100) >> 2);
a1257023
JK
55 } else if (type == DIRTY_DENTS) {
56 if (sbi->sb->s_bdi->wb.dirty_exceeded)
57 return false;
58 mem_size = get_pages(sbi, F2FS_DIRTY_DENTS);
59 res = mem_size < ((avail_ram * nm_i->ram_thresh / 100) >> 1);
e5e7ea3c
JK
60 } else if (type == INO_ENTRIES) {
61 int i;
62
e5e7ea3c 63 for (i = 0; i <= UPDATE_INO; i++)
67298804
CY
64 mem_size += (sbi->im[i].ino_num *
65 sizeof(struct ino_entry)) >> PAGE_CACHE_SHIFT;
e5e7ea3c 66 res = mem_size < ((avail_ram * nm_i->ram_thresh / 100) >> 1);
429511cd 67 } else if (type == EXTENT_CACHE) {
7441ccef
JK
68 mem_size = (atomic_read(&sbi->total_ext_tree) *
69 sizeof(struct extent_tree) +
429511cd
CY
70 atomic_read(&sbi->total_ext_node) *
71 sizeof(struct extent_node)) >> PAGE_CACHE_SHIFT;
72 res = mem_size < ((avail_ram * nm_i->ram_thresh / 100) >> 1);
1e84371f 73 } else {
1663cae4
JK
74 if (!sbi->sb->s_bdi->wb.dirty_exceeded)
75 return true;
6fb03f3a
JK
76 }
77 return res;
cdfc41c1
JK
78}
79
e05df3b1
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80static void clear_node_page_dirty(struct page *page)
81{
82 struct address_space *mapping = page->mapping;
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83 unsigned int long flags;
84
85 if (PageDirty(page)) {
86 spin_lock_irqsave(&mapping->tree_lock, flags);
87 radix_tree_tag_clear(&mapping->page_tree,
88 page_index(page),
89 PAGECACHE_TAG_DIRTY);
90 spin_unlock_irqrestore(&mapping->tree_lock, flags);
91
92 clear_page_dirty_for_io(page);
4081363f 93 dec_page_count(F2FS_M_SB(mapping), F2FS_DIRTY_NODES);
e05df3b1
JK
94 }
95 ClearPageUptodate(page);
96}
97
98static struct page *get_current_nat_page(struct f2fs_sb_info *sbi, nid_t nid)
99{
100 pgoff_t index = current_nat_addr(sbi, nid);
101 return get_meta_page(sbi, index);
102}
103
104static struct page *get_next_nat_page(struct f2fs_sb_info *sbi, nid_t nid)
105{
106 struct page *src_page;
107 struct page *dst_page;
108 pgoff_t src_off;
109 pgoff_t dst_off;
110 void *src_addr;
111 void *dst_addr;
112 struct f2fs_nm_info *nm_i = NM_I(sbi);
113
114 src_off = current_nat_addr(sbi, nid);
115 dst_off = next_nat_addr(sbi, src_off);
116
117 /* get current nat block page with lock */
118 src_page = get_meta_page(sbi, src_off);
e05df3b1 119 dst_page = grab_meta_page(sbi, dst_off);
9850cf4a 120 f2fs_bug_on(sbi, PageDirty(src_page));
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JK
121
122 src_addr = page_address(src_page);
123 dst_addr = page_address(dst_page);
124 memcpy(dst_addr, src_addr, PAGE_CACHE_SIZE);
125 set_page_dirty(dst_page);
126 f2fs_put_page(src_page, 1);
127
128 set_to_next_nat(nm_i, nid);
129
130 return dst_page;
131}
132
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133static struct nat_entry *__lookup_nat_cache(struct f2fs_nm_info *nm_i, nid_t n)
134{
135 return radix_tree_lookup(&nm_i->nat_root, n);
136}
137
138static unsigned int __gang_lookup_nat_cache(struct f2fs_nm_info *nm_i,
139 nid_t start, unsigned int nr, struct nat_entry **ep)
140{
141 return radix_tree_gang_lookup(&nm_i->nat_root, (void **)ep, start, nr);
142}
143
144static void __del_from_nat_cache(struct f2fs_nm_info *nm_i, struct nat_entry *e)
145{
146 list_del(&e->list);
147 radix_tree_delete(&nm_i->nat_root, nat_get_nid(e));
148 nm_i->nat_cnt--;
149 kmem_cache_free(nat_entry_slab, e);
150}
151
309cc2b6
JK
152static void __set_nat_cache_dirty(struct f2fs_nm_info *nm_i,
153 struct nat_entry *ne)
154{
155 nid_t set = NAT_BLOCK_OFFSET(ne->ni.nid);
156 struct nat_entry_set *head;
157
158 if (get_nat_flag(ne, IS_DIRTY))
159 return;
9be32d72 160
309cc2b6
JK
161 head = radix_tree_lookup(&nm_i->nat_set_root, set);
162 if (!head) {
80c54505 163 head = f2fs_kmem_cache_alloc(nat_entry_set_slab, GFP_NOFS);
309cc2b6
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164
165 INIT_LIST_HEAD(&head->entry_list);
166 INIT_LIST_HEAD(&head->set_list);
167 head->set = set;
168 head->entry_cnt = 0;
9be32d72 169 f2fs_radix_tree_insert(&nm_i->nat_set_root, set, head);
309cc2b6
JK
170 }
171 list_move_tail(&ne->list, &head->entry_list);
172 nm_i->dirty_nat_cnt++;
173 head->entry_cnt++;
174 set_nat_flag(ne, IS_DIRTY, true);
175}
176
177static void __clear_nat_cache_dirty(struct f2fs_nm_info *nm_i,
178 struct nat_entry *ne)
179{
20d047c8 180 nid_t set = NAT_BLOCK_OFFSET(ne->ni.nid);
309cc2b6
JK
181 struct nat_entry_set *head;
182
183 head = radix_tree_lookup(&nm_i->nat_set_root, set);
184 if (head) {
185 list_move_tail(&ne->list, &nm_i->nat_entries);
186 set_nat_flag(ne, IS_DIRTY, false);
187 head->entry_cnt--;
188 nm_i->dirty_nat_cnt--;
189 }
190}
191
192static unsigned int __gang_lookup_nat_set(struct f2fs_nm_info *nm_i,
193 nid_t start, unsigned int nr, struct nat_entry_set **ep)
194{
195 return radix_tree_gang_lookup(&nm_i->nat_set_root, (void **)ep,
196 start, nr);
197}
198
2dcf51ab 199int need_dentry_mark(struct f2fs_sb_info *sbi, nid_t nid)
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200{
201 struct f2fs_nm_info *nm_i = NM_I(sbi);
202 struct nat_entry *e;
2dcf51ab 203 bool need = false;
e05df3b1 204
8b26ef98 205 down_read(&nm_i->nat_tree_lock);
e05df3b1 206 e = __lookup_nat_cache(nm_i, nid);
2dcf51ab
JK
207 if (e) {
208 if (!get_nat_flag(e, IS_CHECKPOINTED) &&
209 !get_nat_flag(e, HAS_FSYNCED_INODE))
210 need = true;
211 }
8b26ef98 212 up_read(&nm_i->nat_tree_lock);
2dcf51ab 213 return need;
e05df3b1
JK
214}
215
2dcf51ab 216bool is_checkpointed_node(struct f2fs_sb_info *sbi, nid_t nid)
479f40c4
JK
217{
218 struct f2fs_nm_info *nm_i = NM_I(sbi);
219 struct nat_entry *e;
2dcf51ab 220 bool is_cp = true;
479f40c4 221
8b26ef98 222 down_read(&nm_i->nat_tree_lock);
2dcf51ab
JK
223 e = __lookup_nat_cache(nm_i, nid);
224 if (e && !get_nat_flag(e, IS_CHECKPOINTED))
225 is_cp = false;
8b26ef98 226 up_read(&nm_i->nat_tree_lock);
2dcf51ab 227 return is_cp;
479f40c4
JK
228}
229
88bd02c9 230bool need_inode_block_update(struct f2fs_sb_info *sbi, nid_t ino)
b6fe5873
JK
231{
232 struct f2fs_nm_info *nm_i = NM_I(sbi);
233 struct nat_entry *e;
88bd02c9 234 bool need_update = true;
b6fe5873 235
8b26ef98 236 down_read(&nm_i->nat_tree_lock);
88bd02c9
JK
237 e = __lookup_nat_cache(nm_i, ino);
238 if (e && get_nat_flag(e, HAS_LAST_FSYNC) &&
239 (get_nat_flag(e, IS_CHECKPOINTED) ||
240 get_nat_flag(e, HAS_FSYNCED_INODE)))
241 need_update = false;
8b26ef98 242 up_read(&nm_i->nat_tree_lock);
88bd02c9 243 return need_update;
b6fe5873
JK
244}
245
e05df3b1
JK
246static struct nat_entry *grab_nat_entry(struct f2fs_nm_info *nm_i, nid_t nid)
247{
248 struct nat_entry *new;
249
80c54505 250 new = f2fs_kmem_cache_alloc(nat_entry_slab, GFP_NOFS);
9be32d72 251 f2fs_radix_tree_insert(&nm_i->nat_root, nid, new);
e05df3b1
JK
252 memset(new, 0, sizeof(struct nat_entry));
253 nat_set_nid(new, nid);
88bd02c9 254 nat_reset_flag(new);
e05df3b1
JK
255 list_add_tail(&new->list, &nm_i->nat_entries);
256 nm_i->nat_cnt++;
257 return new;
258}
259
260static void cache_nat_entry(struct f2fs_nm_info *nm_i, nid_t nid,
261 struct f2fs_nat_entry *ne)
262{
263 struct nat_entry *e;
9be32d72 264
e05df3b1
JK
265 e = __lookup_nat_cache(nm_i, nid);
266 if (!e) {
267 e = grab_nat_entry(nm_i, nid);
94dac22e 268 node_info_from_raw_nat(&e->ni, ne);
e05df3b1 269 }
e05df3b1
JK
270}
271
272static void set_node_addr(struct f2fs_sb_info *sbi, struct node_info *ni,
479f40c4 273 block_t new_blkaddr, bool fsync_done)
e05df3b1
JK
274{
275 struct f2fs_nm_info *nm_i = NM_I(sbi);
276 struct nat_entry *e;
9be32d72 277
8b26ef98 278 down_write(&nm_i->nat_tree_lock);
e05df3b1
JK
279 e = __lookup_nat_cache(nm_i, ni->nid);
280 if (!e) {
281 e = grab_nat_entry(nm_i, ni->nid);
5c27f4ee 282 copy_node_info(&e->ni, ni);
9850cf4a 283 f2fs_bug_on(sbi, ni->blk_addr == NEW_ADDR);
e05df3b1
JK
284 } else if (new_blkaddr == NEW_ADDR) {
285 /*
286 * when nid is reallocated,
287 * previous nat entry can be remained in nat cache.
288 * So, reinitialize it with new information.
289 */
5c27f4ee 290 copy_node_info(&e->ni, ni);
9850cf4a 291 f2fs_bug_on(sbi, ni->blk_addr != NULL_ADDR);
e05df3b1
JK
292 }
293
e05df3b1 294 /* sanity check */
9850cf4a
JK
295 f2fs_bug_on(sbi, nat_get_blkaddr(e) != ni->blk_addr);
296 f2fs_bug_on(sbi, nat_get_blkaddr(e) == NULL_ADDR &&
e05df3b1 297 new_blkaddr == NULL_ADDR);
9850cf4a 298 f2fs_bug_on(sbi, nat_get_blkaddr(e) == NEW_ADDR &&
e05df3b1 299 new_blkaddr == NEW_ADDR);
9850cf4a 300 f2fs_bug_on(sbi, nat_get_blkaddr(e) != NEW_ADDR &&
e05df3b1
JK
301 nat_get_blkaddr(e) != NULL_ADDR &&
302 new_blkaddr == NEW_ADDR);
303
e1c42045 304 /* increment version no as node is removed */
e05df3b1
JK
305 if (nat_get_blkaddr(e) != NEW_ADDR && new_blkaddr == NULL_ADDR) {
306 unsigned char version = nat_get_version(e);
307 nat_set_version(e, inc_node_version(version));
26834466
JK
308
309 /* in order to reuse the nid */
310 if (nm_i->next_scan_nid > ni->nid)
311 nm_i->next_scan_nid = ni->nid;
e05df3b1
JK
312 }
313
314 /* change address */
315 nat_set_blkaddr(e, new_blkaddr);
88bd02c9
JK
316 if (new_blkaddr == NEW_ADDR || new_blkaddr == NULL_ADDR)
317 set_nat_flag(e, IS_CHECKPOINTED, false);
e05df3b1 318 __set_nat_cache_dirty(nm_i, e);
479f40c4
JK
319
320 /* update fsync_mark if its inode nat entry is still alive */
d5b692b7
CY
321 if (ni->nid != ni->ino)
322 e = __lookup_nat_cache(nm_i, ni->ino);
88bd02c9
JK
323 if (e) {
324 if (fsync_done && ni->nid == ni->ino)
325 set_nat_flag(e, HAS_FSYNCED_INODE, true);
326 set_nat_flag(e, HAS_LAST_FSYNC, fsync_done);
327 }
8b26ef98 328 up_write(&nm_i->nat_tree_lock);
e05df3b1
JK
329}
330
4660f9c0 331int try_to_free_nats(struct f2fs_sb_info *sbi, int nr_shrink)
e05df3b1
JK
332{
333 struct f2fs_nm_info *nm_i = NM_I(sbi);
1b38dc8e 334 int nr = nr_shrink;
e05df3b1 335
1b38dc8e 336 if (!down_write_trylock(&nm_i->nat_tree_lock))
e05df3b1
JK
337 return 0;
338
e05df3b1
JK
339 while (nr_shrink && !list_empty(&nm_i->nat_entries)) {
340 struct nat_entry *ne;
341 ne = list_first_entry(&nm_i->nat_entries,
342 struct nat_entry, list);
343 __del_from_nat_cache(nm_i, ne);
344 nr_shrink--;
345 }
8b26ef98 346 up_write(&nm_i->nat_tree_lock);
1b38dc8e 347 return nr - nr_shrink;
e05df3b1
JK
348}
349
0a8165d7 350/*
e1c42045 351 * This function always returns success
e05df3b1
JK
352 */
353void get_node_info(struct f2fs_sb_info *sbi, nid_t nid, struct node_info *ni)
354{
355 struct f2fs_nm_info *nm_i = NM_I(sbi);
356 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA);
b7ad7512 357 struct f2fs_journal *journal = curseg->journal;
e05df3b1
JK
358 nid_t start_nid = START_NID(nid);
359 struct f2fs_nat_block *nat_blk;
360 struct page *page = NULL;
361 struct f2fs_nat_entry ne;
362 struct nat_entry *e;
363 int i;
364
365 ni->nid = nid;
366
367 /* Check nat cache */
8b26ef98 368 down_read(&nm_i->nat_tree_lock);
e05df3b1
JK
369 e = __lookup_nat_cache(nm_i, nid);
370 if (e) {
371 ni->ino = nat_get_ino(e);
372 ni->blk_addr = nat_get_blkaddr(e);
373 ni->version = nat_get_version(e);
374 }
8b26ef98 375 up_read(&nm_i->nat_tree_lock);
e05df3b1
JK
376 if (e)
377 return;
378
3547ea96
JK
379 memset(&ne, 0, sizeof(struct f2fs_nat_entry));
380
a5131193
JK
381 down_write(&nm_i->nat_tree_lock);
382
e05df3b1 383 /* Check current segment summary */
b7ad7512 384 down_read(&curseg->journal_rwsem);
dfc08a12 385 i = lookup_journal_in_cursum(journal, NAT_JOURNAL, nid, 0);
e05df3b1 386 if (i >= 0) {
dfc08a12 387 ne = nat_in_journal(journal, i);
e05df3b1
JK
388 node_info_from_raw_nat(ni, &ne);
389 }
b7ad7512 390 up_read(&curseg->journal_rwsem);
e05df3b1
JK
391 if (i >= 0)
392 goto cache;
393
394 /* Fill node_info from nat page */
395 page = get_current_nat_page(sbi, start_nid);
396 nat_blk = (struct f2fs_nat_block *)page_address(page);
397 ne = nat_blk->entries[nid - start_nid];
398 node_info_from_raw_nat(ni, &ne);
399 f2fs_put_page(page, 1);
400cache:
401 /* cache nat entry */
402 cache_nat_entry(NM_I(sbi), nid, &ne);
a5131193 403 up_write(&nm_i->nat_tree_lock);
e05df3b1
JK
404}
405
3cf45747
CY
406pgoff_t get_next_page_offset(struct dnode_of_data *dn, pgoff_t pgofs)
407{
408 const long direct_index = ADDRS_PER_INODE(dn->inode);
409 const long direct_blks = ADDRS_PER_BLOCK;
410 const long indirect_blks = ADDRS_PER_BLOCK * NIDS_PER_BLOCK;
411 unsigned int skipped_unit = ADDRS_PER_BLOCK;
412 int cur_level = dn->cur_level;
413 int max_level = dn->max_level;
414 pgoff_t base = 0;
415
416 if (!dn->max_level)
417 return pgofs + 1;
418
419 while (max_level-- > cur_level)
420 skipped_unit *= NIDS_PER_BLOCK;
421
422 switch (dn->max_level) {
423 case 3:
424 base += 2 * indirect_blks;
425 case 2:
426 base += 2 * direct_blks;
427 case 1:
428 base += direct_index;
429 break;
430 default:
431 f2fs_bug_on(F2FS_I_SB(dn->inode), 1);
432 }
433
434 return ((pgofs - base) / skipped_unit + 1) * skipped_unit + base;
435}
436
0a8165d7 437/*
e05df3b1
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438 * The maximum depth is four.
439 * Offset[0] will have raw inode offset.
440 */
81ca7350 441static int get_node_path(struct inode *inode, long block,
de93653f 442 int offset[4], unsigned int noffset[4])
e05df3b1 443{
81ca7350 444 const long direct_index = ADDRS_PER_INODE(inode);
e05df3b1
JK
445 const long direct_blks = ADDRS_PER_BLOCK;
446 const long dptrs_per_blk = NIDS_PER_BLOCK;
447 const long indirect_blks = ADDRS_PER_BLOCK * NIDS_PER_BLOCK;
448 const long dindirect_blks = indirect_blks * NIDS_PER_BLOCK;
449 int n = 0;
450 int level = 0;
451
452 noffset[0] = 0;
453
454 if (block < direct_index) {
25c0a6e5 455 offset[n] = block;
e05df3b1
JK
456 goto got;
457 }
458 block -= direct_index;
459 if (block < direct_blks) {
460 offset[n++] = NODE_DIR1_BLOCK;
461 noffset[n] = 1;
25c0a6e5 462 offset[n] = block;
e05df3b1
JK
463 level = 1;
464 goto got;
465 }
466 block -= direct_blks;
467 if (block < direct_blks) {
468 offset[n++] = NODE_DIR2_BLOCK;
469 noffset[n] = 2;
25c0a6e5 470 offset[n] = block;
e05df3b1
JK
471 level = 1;
472 goto got;
473 }
474 block -= direct_blks;
475 if (block < indirect_blks) {
476 offset[n++] = NODE_IND1_BLOCK;
477 noffset[n] = 3;
478 offset[n++] = block / direct_blks;
479 noffset[n] = 4 + offset[n - 1];
25c0a6e5 480 offset[n] = block % direct_blks;
e05df3b1
JK
481 level = 2;
482 goto got;
483 }
484 block -= indirect_blks;
485 if (block < indirect_blks) {
486 offset[n++] = NODE_IND2_BLOCK;
487 noffset[n] = 4 + dptrs_per_blk;
488 offset[n++] = block / direct_blks;
489 noffset[n] = 5 + dptrs_per_blk + offset[n - 1];
25c0a6e5 490 offset[n] = block % direct_blks;
e05df3b1
JK
491 level = 2;
492 goto got;
493 }
494 block -= indirect_blks;
495 if (block < dindirect_blks) {
496 offset[n++] = NODE_DIND_BLOCK;
497 noffset[n] = 5 + (dptrs_per_blk * 2);
498 offset[n++] = block / indirect_blks;
499 noffset[n] = 6 + (dptrs_per_blk * 2) +
500 offset[n - 1] * (dptrs_per_blk + 1);
501 offset[n++] = (block / direct_blks) % dptrs_per_blk;
502 noffset[n] = 7 + (dptrs_per_blk * 2) +
503 offset[n - 2] * (dptrs_per_blk + 1) +
504 offset[n - 1];
25c0a6e5 505 offset[n] = block % direct_blks;
e05df3b1
JK
506 level = 3;
507 goto got;
508 } else {
509 BUG();
510 }
511got:
512 return level;
513}
514
515/*
516 * Caller should call f2fs_put_dnode(dn).
4f4124d0
CY
517 * Also, it should grab and release a rwsem by calling f2fs_lock_op() and
518 * f2fs_unlock_op() only if ro is not set RDONLY_NODE.
39936837 519 * In the case of RDONLY_NODE, we don't need to care about mutex.
e05df3b1 520 */
266e97a8 521int get_dnode_of_data(struct dnode_of_data *dn, pgoff_t index, int mode)
e05df3b1 522{
4081363f 523 struct f2fs_sb_info *sbi = F2FS_I_SB(dn->inode);
e05df3b1 524 struct page *npage[4];
f1a3b98e 525 struct page *parent = NULL;
e05df3b1
JK
526 int offset[4];
527 unsigned int noffset[4];
528 nid_t nids[4];
3cf45747 529 int level, i = 0;
e05df3b1
JK
530 int err = 0;
531
81ca7350 532 level = get_node_path(dn->inode, index, offset, noffset);
e05df3b1
JK
533
534 nids[0] = dn->inode->i_ino;
1646cfac 535 npage[0] = dn->inode_page;
e05df3b1 536
1646cfac
JK
537 if (!npage[0]) {
538 npage[0] = get_node_page(sbi, nids[0]);
539 if (IS_ERR(npage[0]))
540 return PTR_ERR(npage[0]);
541 }
f1a3b98e
JK
542
543 /* if inline_data is set, should not report any block indices */
544 if (f2fs_has_inline_data(dn->inode) && index) {
76629165 545 err = -ENOENT;
f1a3b98e
JK
546 f2fs_put_page(npage[0], 1);
547 goto release_out;
548 }
549
e05df3b1 550 parent = npage[0];
52c2db3f
CL
551 if (level != 0)
552 nids[1] = get_nid(parent, offset[0], true);
e05df3b1
JK
553 dn->inode_page = npage[0];
554 dn->inode_page_locked = true;
555
556 /* get indirect or direct nodes */
557 for (i = 1; i <= level; i++) {
558 bool done = false;
559
266e97a8 560 if (!nids[i] && mode == ALLOC_NODE) {
e05df3b1
JK
561 /* alloc new node */
562 if (!alloc_nid(sbi, &(nids[i]))) {
e05df3b1
JK
563 err = -ENOSPC;
564 goto release_pages;
565 }
566
567 dn->nid = nids[i];
8ae8f162 568 npage[i] = new_node_page(dn, noffset[i], NULL);
e05df3b1
JK
569 if (IS_ERR(npage[i])) {
570 alloc_nid_failed(sbi, nids[i]);
e05df3b1
JK
571 err = PTR_ERR(npage[i]);
572 goto release_pages;
573 }
574
575 set_nid(parent, offset[i - 1], nids[i], i == 1);
576 alloc_nid_done(sbi, nids[i]);
e05df3b1 577 done = true;
266e97a8 578 } else if (mode == LOOKUP_NODE_RA && i == level && level > 1) {
e05df3b1
JK
579 npage[i] = get_node_page_ra(parent, offset[i - 1]);
580 if (IS_ERR(npage[i])) {
581 err = PTR_ERR(npage[i]);
582 goto release_pages;
583 }
584 done = true;
585 }
586 if (i == 1) {
587 dn->inode_page_locked = false;
588 unlock_page(parent);
589 } else {
590 f2fs_put_page(parent, 1);
591 }
592
593 if (!done) {
594 npage[i] = get_node_page(sbi, nids[i]);
595 if (IS_ERR(npage[i])) {
596 err = PTR_ERR(npage[i]);
597 f2fs_put_page(npage[0], 0);
598 goto release_out;
599 }
600 }
601 if (i < level) {
602 parent = npage[i];
603 nids[i + 1] = get_nid(parent, offset[i], false);
604 }
605 }
606 dn->nid = nids[level];
607 dn->ofs_in_node = offset[level];
608 dn->node_page = npage[level];
609 dn->data_blkaddr = datablock_addr(dn->node_page, dn->ofs_in_node);
610 return 0;
611
612release_pages:
613 f2fs_put_page(parent, 1);
614 if (i > 1)
615 f2fs_put_page(npage[0], 0);
616release_out:
617 dn->inode_page = NULL;
618 dn->node_page = NULL;
3cf45747
CY
619 if (err == -ENOENT) {
620 dn->cur_level = i;
621 dn->max_level = level;
622 }
e05df3b1
JK
623 return err;
624}
625
626static void truncate_node(struct dnode_of_data *dn)
627{
4081363f 628 struct f2fs_sb_info *sbi = F2FS_I_SB(dn->inode);
e05df3b1
JK
629 struct node_info ni;
630
631 get_node_info(sbi, dn->nid, &ni);
71e9fec5 632 if (dn->inode->i_blocks == 0) {
9850cf4a 633 f2fs_bug_on(sbi, ni.blk_addr != NULL_ADDR);
71e9fec5
JK
634 goto invalidate;
635 }
9850cf4a 636 f2fs_bug_on(sbi, ni.blk_addr == NULL_ADDR);
e05df3b1 637
e05df3b1 638 /* Deallocate node address */
71e9fec5 639 invalidate_blocks(sbi, ni.blk_addr);
ef86d709 640 dec_valid_node_count(sbi, dn->inode);
479f40c4 641 set_node_addr(sbi, &ni, NULL_ADDR, false);
e05df3b1
JK
642
643 if (dn->nid == dn->inode->i_ino) {
644 remove_orphan_inode(sbi, dn->nid);
645 dec_valid_inode_count(sbi);
646 } else {
647 sync_inode_page(dn);
648 }
71e9fec5 649invalidate:
e05df3b1 650 clear_node_page_dirty(dn->node_page);
caf0047e 651 set_sbi_flag(sbi, SBI_IS_DIRTY);
e05df3b1
JK
652
653 f2fs_put_page(dn->node_page, 1);
bf39c00a
JK
654
655 invalidate_mapping_pages(NODE_MAPPING(sbi),
656 dn->node_page->index, dn->node_page->index);
657
e05df3b1 658 dn->node_page = NULL;
51dd6249 659 trace_f2fs_truncate_node(dn->inode, dn->nid, ni.blk_addr);
e05df3b1
JK
660}
661
662static int truncate_dnode(struct dnode_of_data *dn)
663{
e05df3b1
JK
664 struct page *page;
665
666 if (dn->nid == 0)
667 return 1;
668
669 /* get direct node */
4081363f 670 page = get_node_page(F2FS_I_SB(dn->inode), dn->nid);
e05df3b1
JK
671 if (IS_ERR(page) && PTR_ERR(page) == -ENOENT)
672 return 1;
673 else if (IS_ERR(page))
674 return PTR_ERR(page);
675
676 /* Make dnode_of_data for parameter */
677 dn->node_page = page;
678 dn->ofs_in_node = 0;
679 truncate_data_blocks(dn);
680 truncate_node(dn);
681 return 1;
682}
683
684static int truncate_nodes(struct dnode_of_data *dn, unsigned int nofs,
685 int ofs, int depth)
686{
e05df3b1
JK
687 struct dnode_of_data rdn = *dn;
688 struct page *page;
689 struct f2fs_node *rn;
690 nid_t child_nid;
691 unsigned int child_nofs;
692 int freed = 0;
693 int i, ret;
694
695 if (dn->nid == 0)
696 return NIDS_PER_BLOCK + 1;
697
51dd6249
NJ
698 trace_f2fs_truncate_nodes_enter(dn->inode, dn->nid, dn->data_blkaddr);
699
4081363f 700 page = get_node_page(F2FS_I_SB(dn->inode), dn->nid);
51dd6249
NJ
701 if (IS_ERR(page)) {
702 trace_f2fs_truncate_nodes_exit(dn->inode, PTR_ERR(page));
e05df3b1 703 return PTR_ERR(page);
51dd6249 704 }
e05df3b1 705
45590710 706 rn = F2FS_NODE(page);
e05df3b1
JK
707 if (depth < 3) {
708 for (i = ofs; i < NIDS_PER_BLOCK; i++, freed++) {
709 child_nid = le32_to_cpu(rn->in.nid[i]);
710 if (child_nid == 0)
711 continue;
712 rdn.nid = child_nid;
713 ret = truncate_dnode(&rdn);
714 if (ret < 0)
715 goto out_err;
12719ae1
JK
716 if (set_nid(page, i, 0, false))
717 dn->node_changed = true;
e05df3b1
JK
718 }
719 } else {
720 child_nofs = nofs + ofs * (NIDS_PER_BLOCK + 1) + 1;
721 for (i = ofs; i < NIDS_PER_BLOCK; i++) {
722 child_nid = le32_to_cpu(rn->in.nid[i]);
723 if (child_nid == 0) {
724 child_nofs += NIDS_PER_BLOCK + 1;
725 continue;
726 }
727 rdn.nid = child_nid;
728 ret = truncate_nodes(&rdn, child_nofs, 0, depth - 1);
729 if (ret == (NIDS_PER_BLOCK + 1)) {
12719ae1
JK
730 if (set_nid(page, i, 0, false))
731 dn->node_changed = true;
e05df3b1
JK
732 child_nofs += ret;
733 } else if (ret < 0 && ret != -ENOENT) {
734 goto out_err;
735 }
736 }
737 freed = child_nofs;
738 }
739
740 if (!ofs) {
741 /* remove current indirect node */
742 dn->node_page = page;
743 truncate_node(dn);
744 freed++;
745 } else {
746 f2fs_put_page(page, 1);
747 }
51dd6249 748 trace_f2fs_truncate_nodes_exit(dn->inode, freed);
e05df3b1
JK
749 return freed;
750
751out_err:
752 f2fs_put_page(page, 1);
51dd6249 753 trace_f2fs_truncate_nodes_exit(dn->inode, ret);
e05df3b1
JK
754 return ret;
755}
756
757static int truncate_partial_nodes(struct dnode_of_data *dn,
758 struct f2fs_inode *ri, int *offset, int depth)
759{
e05df3b1
JK
760 struct page *pages[2];
761 nid_t nid[3];
762 nid_t child_nid;
763 int err = 0;
764 int i;
765 int idx = depth - 2;
766
767 nid[0] = le32_to_cpu(ri->i_nid[offset[0] - NODE_DIR1_BLOCK]);
768 if (!nid[0])
769 return 0;
770
771 /* get indirect nodes in the path */
a225dca3 772 for (i = 0; i < idx + 1; i++) {
e1c42045 773 /* reference count'll be increased */
4081363f 774 pages[i] = get_node_page(F2FS_I_SB(dn->inode), nid[i]);
e05df3b1 775 if (IS_ERR(pages[i])) {
e05df3b1 776 err = PTR_ERR(pages[i]);
a225dca3 777 idx = i - 1;
e05df3b1
JK
778 goto fail;
779 }
780 nid[i + 1] = get_nid(pages[i], offset[i + 1], false);
781 }
782
783 /* free direct nodes linked to a partial indirect node */
a225dca3 784 for (i = offset[idx + 1]; i < NIDS_PER_BLOCK; i++) {
e05df3b1
JK
785 child_nid = get_nid(pages[idx], i, false);
786 if (!child_nid)
787 continue;
788 dn->nid = child_nid;
789 err = truncate_dnode(dn);
790 if (err < 0)
791 goto fail;
12719ae1
JK
792 if (set_nid(pages[idx], i, 0, false))
793 dn->node_changed = true;
e05df3b1
JK
794 }
795
a225dca3 796 if (offset[idx + 1] == 0) {
e05df3b1
JK
797 dn->node_page = pages[idx];
798 dn->nid = nid[idx];
799 truncate_node(dn);
800 } else {
801 f2fs_put_page(pages[idx], 1);
802 }
803 offset[idx]++;
a225dca3 804 offset[idx + 1] = 0;
805 idx--;
e05df3b1 806fail:
a225dca3 807 for (i = idx; i >= 0; i--)
e05df3b1 808 f2fs_put_page(pages[i], 1);
51dd6249
NJ
809
810 trace_f2fs_truncate_partial_nodes(dn->inode, nid, depth, err);
811
e05df3b1
JK
812 return err;
813}
814
0a8165d7 815/*
e05df3b1
JK
816 * All the block addresses of data and nodes should be nullified.
817 */
818int truncate_inode_blocks(struct inode *inode, pgoff_t from)
819{
4081363f 820 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
e05df3b1
JK
821 int err = 0, cont = 1;
822 int level, offset[4], noffset[4];
7dd690c8 823 unsigned int nofs = 0;
58bfaf44 824 struct f2fs_inode *ri;
e05df3b1
JK
825 struct dnode_of_data dn;
826 struct page *page;
827
51dd6249
NJ
828 trace_f2fs_truncate_inode_blocks_enter(inode, from);
829
81ca7350 830 level = get_node_path(inode, from, offset, noffset);
afcb7ca0 831restart:
e05df3b1 832 page = get_node_page(sbi, inode->i_ino);
51dd6249
NJ
833 if (IS_ERR(page)) {
834 trace_f2fs_truncate_inode_blocks_exit(inode, PTR_ERR(page));
e05df3b1 835 return PTR_ERR(page);
51dd6249 836 }
e05df3b1
JK
837
838 set_new_dnode(&dn, inode, page, NULL, 0);
839 unlock_page(page);
840
58bfaf44 841 ri = F2FS_INODE(page);
e05df3b1
JK
842 switch (level) {
843 case 0:
844 case 1:
845 nofs = noffset[1];
846 break;
847 case 2:
848 nofs = noffset[1];
849 if (!offset[level - 1])
850 goto skip_partial;
58bfaf44 851 err = truncate_partial_nodes(&dn, ri, offset, level);
e05df3b1
JK
852 if (err < 0 && err != -ENOENT)
853 goto fail;
854 nofs += 1 + NIDS_PER_BLOCK;
855 break;
856 case 3:
857 nofs = 5 + 2 * NIDS_PER_BLOCK;
858 if (!offset[level - 1])
859 goto skip_partial;
58bfaf44 860 err = truncate_partial_nodes(&dn, ri, offset, level);
e05df3b1
JK
861 if (err < 0 && err != -ENOENT)
862 goto fail;
863 break;
864 default:
865 BUG();
866 }
867
868skip_partial:
869 while (cont) {
58bfaf44 870 dn.nid = le32_to_cpu(ri->i_nid[offset[0] - NODE_DIR1_BLOCK]);
e05df3b1
JK
871 switch (offset[0]) {
872 case NODE_DIR1_BLOCK:
873 case NODE_DIR2_BLOCK:
874 err = truncate_dnode(&dn);
875 break;
876
877 case NODE_IND1_BLOCK:
878 case NODE_IND2_BLOCK:
879 err = truncate_nodes(&dn, nofs, offset[1], 2);
880 break;
881
882 case NODE_DIND_BLOCK:
883 err = truncate_nodes(&dn, nofs, offset[1], 3);
884 cont = 0;
885 break;
886
887 default:
888 BUG();
889 }
890 if (err < 0 && err != -ENOENT)
891 goto fail;
892 if (offset[1] == 0 &&
58bfaf44 893 ri->i_nid[offset[0] - NODE_DIR1_BLOCK]) {
e05df3b1 894 lock_page(page);
4ef51a8f 895 if (unlikely(page->mapping != NODE_MAPPING(sbi))) {
afcb7ca0
JK
896 f2fs_put_page(page, 1);
897 goto restart;
898 }
fec1d657 899 f2fs_wait_on_page_writeback(page, NODE, true);
58bfaf44 900 ri->i_nid[offset[0] - NODE_DIR1_BLOCK] = 0;
e05df3b1
JK
901 set_page_dirty(page);
902 unlock_page(page);
903 }
904 offset[1] = 0;
905 offset[0]++;
906 nofs += err;
907 }
908fail:
909 f2fs_put_page(page, 0);
51dd6249 910 trace_f2fs_truncate_inode_blocks_exit(inode, err);
e05df3b1
JK
911 return err > 0 ? 0 : err;
912}
913
4f16fb0f
JK
914int truncate_xattr_node(struct inode *inode, struct page *page)
915{
4081363f 916 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
4f16fb0f
JK
917 nid_t nid = F2FS_I(inode)->i_xattr_nid;
918 struct dnode_of_data dn;
919 struct page *npage;
920
921 if (!nid)
922 return 0;
923
924 npage = get_node_page(sbi, nid);
925 if (IS_ERR(npage))
926 return PTR_ERR(npage);
927
928 F2FS_I(inode)->i_xattr_nid = 0;
65985d93
JK
929
930 /* need to do checkpoint during fsync */
931 F2FS_I(inode)->xattr_ver = cur_cp_version(F2FS_CKPT(sbi));
932
4f16fb0f
JK
933 set_new_dnode(&dn, inode, page, npage, nid);
934
935 if (page)
01d2d1aa 936 dn.inode_page_locked = true;
4f16fb0f
JK
937 truncate_node(&dn);
938 return 0;
939}
940
39936837 941/*
4f4124d0
CY
942 * Caller should grab and release a rwsem by calling f2fs_lock_op() and
943 * f2fs_unlock_op().
39936837 944 */
13ec7297 945int remove_inode_page(struct inode *inode)
e05df3b1 946{
e05df3b1 947 struct dnode_of_data dn;
13ec7297 948 int err;
e05df3b1 949
c2e69583 950 set_new_dnode(&dn, inode, NULL, NULL, inode->i_ino);
13ec7297
CY
951 err = get_dnode_of_data(&dn, 0, LOOKUP_NODE);
952 if (err)
953 return err;
e05df3b1 954
13ec7297
CY
955 err = truncate_xattr_node(inode, dn.inode_page);
956 if (err) {
c2e69583 957 f2fs_put_dnode(&dn);
13ec7297 958 return err;
e05df3b1 959 }
c2e69583
JK
960
961 /* remove potential inline_data blocks */
962 if (S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode) ||
963 S_ISLNK(inode->i_mode))
964 truncate_data_blocks_range(&dn, 1);
965
e1c42045 966 /* 0 is possible, after f2fs_new_inode() has failed */
9850cf4a
JK
967 f2fs_bug_on(F2FS_I_SB(inode),
968 inode->i_blocks != 0 && inode->i_blocks != 1);
c2e69583
JK
969
970 /* will put inode & node pages */
71e9fec5 971 truncate_node(&dn);
13ec7297 972 return 0;
e05df3b1
JK
973}
974
a014e037 975struct page *new_inode_page(struct inode *inode)
e05df3b1 976{
e05df3b1
JK
977 struct dnode_of_data dn;
978
979 /* allocate inode page for new inode */
980 set_new_dnode(&dn, inode, NULL, NULL, inode->i_ino);
44a83ff6
JK
981
982 /* caller should f2fs_put_page(page, 1); */
8ae8f162 983 return new_node_page(&dn, 0, NULL);
e05df3b1
JK
984}
985
8ae8f162
JK
986struct page *new_node_page(struct dnode_of_data *dn,
987 unsigned int ofs, struct page *ipage)
e05df3b1 988{
4081363f 989 struct f2fs_sb_info *sbi = F2FS_I_SB(dn->inode);
e05df3b1
JK
990 struct node_info old_ni, new_ni;
991 struct page *page;
992 int err;
993
6bacf52f 994 if (unlikely(is_inode_flag_set(F2FS_I(dn->inode), FI_NO_ALLOC)))
e05df3b1
JK
995 return ERR_PTR(-EPERM);
996
54b591df 997 page = grab_cache_page(NODE_MAPPING(sbi), dn->nid);
e05df3b1
JK
998 if (!page)
999 return ERR_PTR(-ENOMEM);
1000
6bacf52f 1001 if (unlikely(!inc_valid_node_count(sbi, dn->inode))) {
9c02740c
JK
1002 err = -ENOSPC;
1003 goto fail;
1004 }
e05df3b1 1005
9c02740c 1006 get_node_info(sbi, dn->nid, &old_ni);
e05df3b1
JK
1007
1008 /* Reinitialize old_ni with new node page */
9850cf4a 1009 f2fs_bug_on(sbi, old_ni.blk_addr != NULL_ADDR);
e05df3b1
JK
1010 new_ni = old_ni;
1011 new_ni.ino = dn->inode->i_ino;
479f40c4 1012 set_node_addr(sbi, &new_ni, NEW_ADDR, false);
9c02740c 1013
fec1d657 1014 f2fs_wait_on_page_writeback(page, NODE, true);
9c02740c 1015 fill_node_footer(page, dn->nid, dn->inode->i_ino, ofs, true);
398b1ac5 1016 set_cold_node(dn->inode, page);
9c02740c 1017 SetPageUptodate(page);
12719ae1
JK
1018 if (set_page_dirty(page))
1019 dn->node_changed = true;
e05df3b1 1020
4bc8e9bc 1021 if (f2fs_has_xattr_block(ofs))
479bd73a
JK
1022 F2FS_I(dn->inode)->i_xattr_nid = dn->nid;
1023
e05df3b1 1024 dn->node_page = page;
8ae8f162
JK
1025 if (ipage)
1026 update_inode(dn->inode, ipage);
1027 else
1028 sync_inode_page(dn);
e05df3b1
JK
1029 if (ofs == 0)
1030 inc_valid_inode_count(sbi);
1031
1032 return page;
1033
1034fail:
71e9fec5 1035 clear_node_page_dirty(page);
e05df3b1
JK
1036 f2fs_put_page(page, 1);
1037 return ERR_PTR(err);
1038}
1039
56ae674c
JK
1040/*
1041 * Caller should do after getting the following values.
1042 * 0: f2fs_put_page(page, 0)
86531d6b 1043 * LOCKED_PAGE or error: f2fs_put_page(page, 1)
56ae674c 1044 */
93dfe2ac 1045static int read_node_page(struct page *page, int rw)
e05df3b1 1046{
4081363f 1047 struct f2fs_sb_info *sbi = F2FS_P_SB(page);
e05df3b1 1048 struct node_info ni;
cf04e8eb 1049 struct f2fs_io_info fio = {
05ca3632 1050 .sbi = sbi,
cf04e8eb
JK
1051 .type = NODE,
1052 .rw = rw,
05ca3632 1053 .page = page,
4375a336 1054 .encrypted_page = NULL,
cf04e8eb 1055 };
e05df3b1
JK
1056
1057 get_node_info(sbi, page->index, &ni);
1058
6bacf52f 1059 if (unlikely(ni.blk_addr == NULL_ADDR)) {
2bca1e23 1060 ClearPageUptodate(page);
e05df3b1 1061 return -ENOENT;
393ff91f
JK
1062 }
1063
56ae674c
JK
1064 if (PageUptodate(page))
1065 return LOCKED_PAGE;
393ff91f 1066
cf04e8eb 1067 fio.blk_addr = ni.blk_addr;
05ca3632 1068 return f2fs_submit_page_bio(&fio);
e05df3b1
JK
1069}
1070
0a8165d7 1071/*
e05df3b1
JK
1072 * Readahead a node page
1073 */
1074void ra_node_page(struct f2fs_sb_info *sbi, nid_t nid)
1075{
e05df3b1 1076 struct page *apage;
56ae674c 1077 int err;
e05df3b1 1078
e8458725
CY
1079 if (!nid)
1080 return;
1081 f2fs_bug_on(sbi, check_nid_range(sbi, nid));
1082
4ef51a8f 1083 apage = find_get_page(NODE_MAPPING(sbi), nid);
393ff91f
JK
1084 if (apage && PageUptodate(apage)) {
1085 f2fs_put_page(apage, 0);
1086 return;
1087 }
e05df3b1
JK
1088 f2fs_put_page(apage, 0);
1089
4ef51a8f 1090 apage = grab_cache_page(NODE_MAPPING(sbi), nid);
e05df3b1
JK
1091 if (!apage)
1092 return;
1093
56ae674c 1094 err = read_node_page(apage, READA);
86531d6b 1095 f2fs_put_page(apage, err ? 1 : 0);
e05df3b1
JK
1096}
1097
0e022ea8
CY
1098/*
1099 * readahead MAX_RA_NODE number of node pages.
1100 */
1101void ra_node_pages(struct page *parent, int start)
e05df3b1 1102{
0e022ea8
CY
1103 struct f2fs_sb_info *sbi = F2FS_P_SB(parent);
1104 struct blk_plug plug;
1105 int i, end;
1106 nid_t nid;
4aa69d56 1107
0e022ea8 1108 blk_start_plug(&plug);
e05df3b1 1109
0e022ea8
CY
1110 /* Then, try readahead for siblings of the desired node */
1111 end = start + MAX_RA_NODE;
1112 end = min(end, NIDS_PER_BLOCK);
1113 for (i = start; i < end; i++) {
1114 nid = get_nid(parent, i, false);
1115 ra_node_page(sbi, nid);
86531d6b 1116 }
e05df3b1 1117
0e022ea8 1118 blk_finish_plug(&plug);
e05df3b1
JK
1119}
1120
0e022ea8
CY
1121struct page *__get_node_page(struct f2fs_sb_info *sbi, pgoff_t nid,
1122 struct page *parent, int start)
e05df3b1 1123{
e05df3b1 1124 struct page *page;
0e022ea8 1125 int err;
e05df3b1 1126
e05df3b1
JK
1127 if (!nid)
1128 return ERR_PTR(-ENOENT);
e8458725 1129 f2fs_bug_on(sbi, check_nid_range(sbi, nid));
afcb7ca0 1130repeat:
4ef51a8f 1131 page = grab_cache_page(NODE_MAPPING(sbi), nid);
e05df3b1
JK
1132 if (!page)
1133 return ERR_PTR(-ENOMEM);
1134
66d36a29 1135 err = read_node_page(page, READ_SYNC);
86531d6b
JK
1136 if (err < 0) {
1137 f2fs_put_page(page, 1);
e05df3b1 1138 return ERR_PTR(err);
86531d6b 1139 } else if (err == LOCKED_PAGE) {
56ae674c 1140 goto page_hit;
86531d6b 1141 }
e05df3b1 1142
0e022ea8
CY
1143 if (parent)
1144 ra_node_pages(parent, start + 1);
c718379b 1145
e05df3b1 1146 lock_page(page);
0e022ea8 1147
e1c51b9f
CY
1148 if (unlikely(!PageUptodate(page))) {
1149 f2fs_put_page(page, 1);
1150 return ERR_PTR(-EIO);
1151 }
4ef51a8f 1152 if (unlikely(page->mapping != NODE_MAPPING(sbi))) {
afcb7ca0
JK
1153 f2fs_put_page(page, 1);
1154 goto repeat;
1155 }
e0f56cb4 1156page_hit:
e1c51b9f 1157 f2fs_bug_on(sbi, nid != nid_of_node(page));
e05df3b1
JK
1158 return page;
1159}
1160
0e022ea8
CY
1161struct page *get_node_page(struct f2fs_sb_info *sbi, pgoff_t nid)
1162{
1163 return __get_node_page(sbi, nid, NULL, 0);
1164}
1165
1166struct page *get_node_page_ra(struct page *parent, int start)
1167{
1168 struct f2fs_sb_info *sbi = F2FS_P_SB(parent);
1169 nid_t nid = get_nid(parent, start, false);
1170
1171 return __get_node_page(sbi, nid, parent, start);
1172}
1173
e05df3b1
JK
1174void sync_inode_page(struct dnode_of_data *dn)
1175{
12719ae1
JK
1176 int ret = 0;
1177
e05df3b1 1178 if (IS_INODE(dn->node_page) || dn->inode_page == dn->node_page) {
12719ae1 1179 ret = update_inode(dn->inode, dn->node_page);
e05df3b1
JK
1180 } else if (dn->inode_page) {
1181 if (!dn->inode_page_locked)
1182 lock_page(dn->inode_page);
12719ae1 1183 ret = update_inode(dn->inode, dn->inode_page);
e05df3b1
JK
1184 if (!dn->inode_page_locked)
1185 unlock_page(dn->inode_page);
1186 } else {
12719ae1 1187 ret = update_inode_page(dn->inode);
e05df3b1 1188 }
12719ae1 1189 dn->node_changed = ret ? true: false;
e05df3b1
JK
1190}
1191
2049d4fc
JK
1192static void flush_inline_data(struct f2fs_sb_info *sbi, nid_t ino)
1193{
1194 struct inode *inode;
1195 struct page *page;
1196
1197 /* should flush inline_data before evict_inode */
1198 inode = ilookup(sbi->sb, ino);
1199 if (!inode)
1200 return;
1201
1202 page = pagecache_get_page(inode->i_mapping, 0, FGP_LOCK|FGP_NOWAIT, 0);
1203 if (!page)
1204 goto iput_out;
1205
1206 if (!PageUptodate(page))
1207 goto page_out;
1208
1209 if (!PageDirty(page))
1210 goto page_out;
1211
1212 if (!clear_page_dirty_for_io(page))
1213 goto page_out;
1214
1215 if (!f2fs_write_inline_data(inode, page))
1216 inode_dec_dirty_pages(inode);
1217 else
1218 set_page_dirty(page);
1219page_out:
1220 f2fs_put_page(page, 1);
1221iput_out:
1222 iput(inode);
1223}
1224
e05df3b1
JK
1225int sync_node_pages(struct f2fs_sb_info *sbi, nid_t ino,
1226 struct writeback_control *wbc)
1227{
e05df3b1
JK
1228 pgoff_t index, end;
1229 struct pagevec pvec;
1230 int step = ino ? 2 : 0;
1231 int nwritten = 0, wrote = 0;
1232
1233 pagevec_init(&pvec, 0);
1234
1235next_step:
1236 index = 0;
1237 end = LONG_MAX;
1238
1239 while (index <= end) {
1240 int i, nr_pages;
4ef51a8f 1241 nr_pages = pagevec_lookup_tag(&pvec, NODE_MAPPING(sbi), &index,
e05df3b1
JK
1242 PAGECACHE_TAG_DIRTY,
1243 min(end - index, (pgoff_t)PAGEVEC_SIZE-1) + 1);
1244 if (nr_pages == 0)
1245 break;
1246
1247 for (i = 0; i < nr_pages; i++) {
1248 struct page *page = pvec.pages[i];
1249
6d5a1495
CY
1250 if (unlikely(f2fs_cp_error(sbi))) {
1251 pagevec_release(&pvec);
1252 return -EIO;
1253 }
1254
e05df3b1
JK
1255 /*
1256 * flushing sequence with step:
1257 * 0. indirect nodes
1258 * 1. dentry dnodes
1259 * 2. file dnodes
1260 */
1261 if (step == 0 && IS_DNODE(page))
1262 continue;
1263 if (step == 1 && (!IS_DNODE(page) ||
1264 is_cold_node(page)))
1265 continue;
1266 if (step == 2 && (!IS_DNODE(page) ||
1267 !is_cold_node(page)))
1268 continue;
1269
1270 /*
1271 * If an fsync mode,
1272 * we should not skip writing node pages.
1273 */
1274 if (ino && ino_of_node(page) == ino)
1275 lock_page(page);
1276 else if (!trylock_page(page))
1277 continue;
1278
4ef51a8f 1279 if (unlikely(page->mapping != NODE_MAPPING(sbi))) {
e05df3b1
JK
1280continue_unlock:
1281 unlock_page(page);
1282 continue;
1283 }
1284 if (ino && ino_of_node(page) != ino)
1285 goto continue_unlock;
1286
1287 if (!PageDirty(page)) {
1288 /* someone wrote it for us */
1289 goto continue_unlock;
1290 }
1291
2049d4fc
JK
1292 /* flush inline_data */
1293 if (!ino && is_inline_node(page)) {
1294 clear_inline_node(page);
1295 unlock_page(page);
1296 flush_inline_data(sbi, ino_of_node(page));
1297 continue;
1298 }
1299
fa3d2bdf
JK
1300 f2fs_wait_on_page_writeback(page, NODE, true);
1301
1302 BUG_ON(PageWriteback(page));
e05df3b1
JK
1303 if (!clear_page_dirty_for_io(page))
1304 goto continue_unlock;
1305
1306 /* called by fsync() */
1307 if (ino && IS_DNODE(page)) {
e05df3b1 1308 set_fsync_mark(page, 1);
2dcf51ab
JK
1309 if (IS_INODE(page))
1310 set_dentry_mark(page,
1311 need_dentry_mark(sbi, ino));
e05df3b1
JK
1312 nwritten++;
1313 } else {
1314 set_fsync_mark(page, 0);
1315 set_dentry_mark(page, 0);
1316 }
52746519
JK
1317
1318 if (NODE_MAPPING(sbi)->a_ops->writepage(page, wbc))
1319 unlock_page(page);
1320 else
1321 wrote++;
e05df3b1
JK
1322
1323 if (--wbc->nr_to_write == 0)
1324 break;
1325 }
1326 pagevec_release(&pvec);
1327 cond_resched();
1328
1329 if (wbc->nr_to_write == 0) {
1330 step = 2;
1331 break;
1332 }
1333 }
1334
1335 if (step < 2) {
1336 step++;
1337 goto next_step;
1338 }
1339
0c3a5797
CY
1340 if (wrote) {
1341 if (ino)
1342 f2fs_submit_merged_bio_cond(sbi, NULL, NULL,
1343 ino, NODE, WRITE);
1344 else
1345 f2fs_submit_merged_bio(sbi, NODE, WRITE);
1346 }
e05df3b1
JK
1347 return nwritten;
1348}
1349
cfe58f9d
JK
1350int wait_on_node_pages_writeback(struct f2fs_sb_info *sbi, nid_t ino)
1351{
cfe58f9d
JK
1352 pgoff_t index = 0, end = LONG_MAX;
1353 struct pagevec pvec;
cfe58f9d
JK
1354 int ret2 = 0, ret = 0;
1355
1356 pagevec_init(&pvec, 0);
4ef51a8f
JK
1357
1358 while (index <= end) {
1359 int i, nr_pages;
1360 nr_pages = pagevec_lookup_tag(&pvec, NODE_MAPPING(sbi), &index,
1361 PAGECACHE_TAG_WRITEBACK,
1362 min(end - index, (pgoff_t)PAGEVEC_SIZE-1) + 1);
1363 if (nr_pages == 0)
1364 break;
cfe58f9d
JK
1365
1366 for (i = 0; i < nr_pages; i++) {
1367 struct page *page = pvec.pages[i];
1368
1369 /* until radix tree lookup accepts end_index */
cfb271d4 1370 if (unlikely(page->index > end))
cfe58f9d
JK
1371 continue;
1372
4bf08ff6 1373 if (ino && ino_of_node(page) == ino) {
fec1d657 1374 f2fs_wait_on_page_writeback(page, NODE, true);
4bf08ff6
CY
1375 if (TestClearPageError(page))
1376 ret = -EIO;
1377 }
cfe58f9d
JK
1378 }
1379 pagevec_release(&pvec);
1380 cond_resched();
1381 }
1382
4ef51a8f 1383 if (unlikely(test_and_clear_bit(AS_ENOSPC, &NODE_MAPPING(sbi)->flags)))
cfe58f9d 1384 ret2 = -ENOSPC;
4ef51a8f 1385 if (unlikely(test_and_clear_bit(AS_EIO, &NODE_MAPPING(sbi)->flags)))
cfe58f9d
JK
1386 ret2 = -EIO;
1387 if (!ret)
1388 ret = ret2;
1389 return ret;
1390}
1391
e05df3b1
JK
1392static int f2fs_write_node_page(struct page *page,
1393 struct writeback_control *wbc)
1394{
4081363f 1395 struct f2fs_sb_info *sbi = F2FS_P_SB(page);
e05df3b1 1396 nid_t nid;
e05df3b1 1397 struct node_info ni;
fb5566da 1398 struct f2fs_io_info fio = {
05ca3632 1399 .sbi = sbi,
fb5566da 1400 .type = NODE,
6c311ec6 1401 .rw = (wbc->sync_mode == WB_SYNC_ALL) ? WRITE_SYNC : WRITE,
05ca3632 1402 .page = page,
4375a336 1403 .encrypted_page = NULL,
fb5566da 1404 };
e05df3b1 1405
ecda0de3
CY
1406 trace_f2fs_writepage(page, NODE);
1407
caf0047e 1408 if (unlikely(is_sbi_flag_set(sbi, SBI_POR_DOING)))
87a9bd26 1409 goto redirty_out;
cf779cab
JK
1410 if (unlikely(f2fs_cp_error(sbi)))
1411 goto redirty_out;
87a9bd26 1412
e05df3b1
JK
1413 /* get old block addr of this node page */
1414 nid = nid_of_node(page);
9850cf4a 1415 f2fs_bug_on(sbi, page->index != nid);
e05df3b1 1416
25b93346
JK
1417 if (wbc->for_reclaim) {
1418 if (!down_read_trylock(&sbi->node_write))
1419 goto redirty_out;
1420 } else {
1421 down_read(&sbi->node_write);
1422 }
1423
e05df3b1
JK
1424 get_node_info(sbi, nid, &ni);
1425
1426 /* This page is already truncated */
6bacf52f 1427 if (unlikely(ni.blk_addr == NULL_ADDR)) {
2bca1e23 1428 ClearPageUptodate(page);
39936837 1429 dec_page_count(sbi, F2FS_DIRTY_NODES);
25b93346 1430 up_read(&sbi->node_write);
39936837
JK
1431 unlock_page(page);
1432 return 0;
1433 }
e05df3b1
JK
1434
1435 set_page_writeback(page);
cf04e8eb 1436 fio.blk_addr = ni.blk_addr;
05ca3632 1437 write_node_page(nid, &fio);
cf04e8eb 1438 set_node_addr(sbi, &ni, fio.blk_addr, is_fsync_dnode(page));
e05df3b1 1439 dec_page_count(sbi, F2FS_DIRTY_NODES);
b3582c68 1440 up_read(&sbi->node_write);
0c3a5797
CY
1441
1442 if (wbc->for_reclaim)
1443 f2fs_submit_merged_bio_cond(sbi, NULL, page, 0, NODE, WRITE);
1444
e05df3b1 1445 unlock_page(page);
27c6bd60 1446
0c3a5797 1447 if (unlikely(f2fs_cp_error(sbi)))
27c6bd60
JK
1448 f2fs_submit_merged_bio(sbi, NODE, WRITE);
1449
e05df3b1 1450 return 0;
87a9bd26
JK
1451
1452redirty_out:
76f60268 1453 redirty_page_for_writepage(wbc, page);
87a9bd26 1454 return AOP_WRITEPAGE_ACTIVATE;
e05df3b1
JK
1455}
1456
1457static int f2fs_write_node_pages(struct address_space *mapping,
1458 struct writeback_control *wbc)
1459{
4081363f 1460 struct f2fs_sb_info *sbi = F2FS_M_SB(mapping);
50c8cdb3 1461 long diff;
e05df3b1 1462
4660f9c0
JK
1463 /* balancing f2fs's metadata in background */
1464 f2fs_balance_fs_bg(sbi);
e05df3b1 1465
a7fdffbd 1466 /* collect a number of dirty node pages and write together */
87d6f890 1467 if (get_pages(sbi, F2FS_DIRTY_NODES) < nr_pages_to_skip(sbi, NODE))
d3baf95d 1468 goto skip_write;
a7fdffbd 1469
d31c7c3f
YH
1470 trace_f2fs_writepages(mapping->host, wbc, NODE);
1471
50c8cdb3 1472 diff = nr_pages_to_write(sbi, NODE, wbc);
fb5566da 1473 wbc->sync_mode = WB_SYNC_NONE;
e05df3b1 1474 sync_node_pages(sbi, 0, wbc);
50c8cdb3 1475 wbc->nr_to_write = max((long)0, wbc->nr_to_write - diff);
e05df3b1 1476 return 0;
d3baf95d
JK
1477
1478skip_write:
1479 wbc->pages_skipped += get_pages(sbi, F2FS_DIRTY_NODES);
d31c7c3f 1480 trace_f2fs_writepages(mapping->host, wbc, NODE);
d3baf95d 1481 return 0;
e05df3b1
JK
1482}
1483
1484static int f2fs_set_node_page_dirty(struct page *page)
1485{
26c6b887
JK
1486 trace_f2fs_set_page_dirty(page, NODE);
1487
e05df3b1
JK
1488 SetPageUptodate(page);
1489 if (!PageDirty(page)) {
1490 __set_page_dirty_nobuffers(page);
4081363f 1491 inc_page_count(F2FS_P_SB(page), F2FS_DIRTY_NODES);
e05df3b1 1492 SetPagePrivate(page);
9e4ded3f 1493 f2fs_trace_pid(page);
e05df3b1
JK
1494 return 1;
1495 }
1496 return 0;
1497}
1498
0a8165d7 1499/*
e05df3b1
JK
1500 * Structure of the f2fs node operations
1501 */
1502const struct address_space_operations f2fs_node_aops = {
1503 .writepage = f2fs_write_node_page,
1504 .writepages = f2fs_write_node_pages,
1505 .set_page_dirty = f2fs_set_node_page_dirty,
487261f3
CY
1506 .invalidatepage = f2fs_invalidate_page,
1507 .releasepage = f2fs_release_page,
e05df3b1
JK
1508};
1509
8a7ed66a
JK
1510static struct free_nid *__lookup_free_nid_list(struct f2fs_nm_info *nm_i,
1511 nid_t n)
e05df3b1 1512{
8a7ed66a 1513 return radix_tree_lookup(&nm_i->free_nid_root, n);
e05df3b1
JK
1514}
1515
8a7ed66a
JK
1516static void __del_from_free_nid_list(struct f2fs_nm_info *nm_i,
1517 struct free_nid *i)
e05df3b1
JK
1518{
1519 list_del(&i->list);
8a7ed66a 1520 radix_tree_delete(&nm_i->free_nid_root, i->nid);
e05df3b1
JK
1521}
1522
6fb03f3a 1523static int add_free_nid(struct f2fs_sb_info *sbi, nid_t nid, bool build)
e05df3b1 1524{
6fb03f3a 1525 struct f2fs_nm_info *nm_i = NM_I(sbi);
e05df3b1 1526 struct free_nid *i;
59bbd474
JK
1527 struct nat_entry *ne;
1528 bool allocated = false;
e05df3b1 1529
6fb03f3a 1530 if (!available_free_memory(sbi, FREE_NIDS))
23d38844 1531 return -1;
9198aceb
JK
1532
1533 /* 0 nid should not be used */
cfb271d4 1534 if (unlikely(nid == 0))
9198aceb 1535 return 0;
59bbd474 1536
7bd59381
GZ
1537 if (build) {
1538 /* do not add allocated nids */
7bd59381 1539 ne = __lookup_nat_cache(nm_i, nid);
a5131193 1540 if (ne && (!get_nat_flag(ne, IS_CHECKPOINTED) ||
7ef35e3b 1541 nat_get_blkaddr(ne) != NULL_ADDR))
7bd59381 1542 allocated = true;
7bd59381
GZ
1543 if (allocated)
1544 return 0;
e05df3b1 1545 }
7bd59381
GZ
1546
1547 i = f2fs_kmem_cache_alloc(free_nid_slab, GFP_NOFS);
e05df3b1
JK
1548 i->nid = nid;
1549 i->state = NID_NEW;
1550
769ec6e5
JK
1551 if (radix_tree_preload(GFP_NOFS)) {
1552 kmem_cache_free(free_nid_slab, i);
1553 return 0;
1554 }
1555
e05df3b1 1556 spin_lock(&nm_i->free_nid_list_lock);
8a7ed66a 1557 if (radix_tree_insert(&nm_i->free_nid_root, i->nid, i)) {
e05df3b1 1558 spin_unlock(&nm_i->free_nid_list_lock);
769ec6e5 1559 radix_tree_preload_end();
e05df3b1
JK
1560 kmem_cache_free(free_nid_slab, i);
1561 return 0;
1562 }
1563 list_add_tail(&i->list, &nm_i->free_nid_list);
1564 nm_i->fcnt++;
1565 spin_unlock(&nm_i->free_nid_list_lock);
769ec6e5 1566 radix_tree_preload_end();
e05df3b1
JK
1567 return 1;
1568}
1569
1570static void remove_free_nid(struct f2fs_nm_info *nm_i, nid_t nid)
1571{
1572 struct free_nid *i;
cf0ee0f0
CY
1573 bool need_free = false;
1574
e05df3b1 1575 spin_lock(&nm_i->free_nid_list_lock);
8a7ed66a 1576 i = __lookup_free_nid_list(nm_i, nid);
e05df3b1 1577 if (i && i->state == NID_NEW) {
8a7ed66a 1578 __del_from_free_nid_list(nm_i, i);
e05df3b1 1579 nm_i->fcnt--;
cf0ee0f0 1580 need_free = true;
e05df3b1
JK
1581 }
1582 spin_unlock(&nm_i->free_nid_list_lock);
cf0ee0f0
CY
1583
1584 if (need_free)
1585 kmem_cache_free(free_nid_slab, i);
e05df3b1
JK
1586}
1587
6fb03f3a 1588static void scan_nat_page(struct f2fs_sb_info *sbi,
e05df3b1
JK
1589 struct page *nat_page, nid_t start_nid)
1590{
6fb03f3a 1591 struct f2fs_nm_info *nm_i = NM_I(sbi);
e05df3b1
JK
1592 struct f2fs_nat_block *nat_blk = page_address(nat_page);
1593 block_t blk_addr;
e05df3b1
JK
1594 int i;
1595
e05df3b1
JK
1596 i = start_nid % NAT_ENTRY_PER_BLOCK;
1597
1598 for (; i < NAT_ENTRY_PER_BLOCK; i++, start_nid++) {
23d38844 1599
cfb271d4 1600 if (unlikely(start_nid >= nm_i->max_nid))
04431c44 1601 break;
23d38844
HL
1602
1603 blk_addr = le32_to_cpu(nat_blk->entries[i].block_addr);
9850cf4a 1604 f2fs_bug_on(sbi, blk_addr == NEW_ADDR);
23d38844 1605 if (blk_addr == NULL_ADDR) {
6fb03f3a 1606 if (add_free_nid(sbi, start_nid, true) < 0)
23d38844
HL
1607 break;
1608 }
e05df3b1 1609 }
e05df3b1
JK
1610}
1611
1612static void build_free_nids(struct f2fs_sb_info *sbi)
1613{
e05df3b1
JK
1614 struct f2fs_nm_info *nm_i = NM_I(sbi);
1615 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA);
b7ad7512 1616 struct f2fs_journal *journal = curseg->journal;
8760952d 1617 int i = 0;
55008d84 1618 nid_t nid = nm_i->next_scan_nid;
e05df3b1 1619
55008d84
JK
1620 /* Enough entries */
1621 if (nm_i->fcnt > NAT_ENTRY_PER_BLOCK)
1622 return;
e05df3b1 1623
55008d84 1624 /* readahead nat pages to be scanned */
26879fb1
CY
1625 ra_meta_pages(sbi, NAT_BLOCK_OFFSET(nid), FREE_NID_PAGES,
1626 META_NAT, true);
e05df3b1 1627
a5131193
JK
1628 down_read(&nm_i->nat_tree_lock);
1629
e05df3b1
JK
1630 while (1) {
1631 struct page *page = get_current_nat_page(sbi, nid);
1632
6fb03f3a 1633 scan_nat_page(sbi, page, nid);
e05df3b1
JK
1634 f2fs_put_page(page, 1);
1635
1636 nid += (NAT_ENTRY_PER_BLOCK - (nid % NAT_ENTRY_PER_BLOCK));
cfb271d4 1637 if (unlikely(nid >= nm_i->max_nid))
e05df3b1 1638 nid = 0;
55008d84 1639
a6d494b6 1640 if (++i >= FREE_NID_PAGES)
e05df3b1
JK
1641 break;
1642 }
1643
55008d84
JK
1644 /* go to the next free nat pages to find free nids abundantly */
1645 nm_i->next_scan_nid = nid;
e05df3b1
JK
1646
1647 /* find free nids from current sum_pages */
b7ad7512 1648 down_read(&curseg->journal_rwsem);
dfc08a12
CY
1649 for (i = 0; i < nats_in_cursum(journal); i++) {
1650 block_t addr;
1651
1652 addr = le32_to_cpu(nat_in_journal(journal, i).block_addr);
1653 nid = le32_to_cpu(nid_in_journal(journal, i));
e05df3b1 1654 if (addr == NULL_ADDR)
6fb03f3a 1655 add_free_nid(sbi, nid, true);
e05df3b1
JK
1656 else
1657 remove_free_nid(nm_i, nid);
1658 }
b7ad7512 1659 up_read(&curseg->journal_rwsem);
a5131193 1660 up_read(&nm_i->nat_tree_lock);
2db2388f
CY
1661
1662 ra_meta_pages(sbi, NAT_BLOCK_OFFSET(nm_i->next_scan_nid),
ea1a29a0 1663 nm_i->ra_nid_pages, META_NAT, false);
e05df3b1
JK
1664}
1665
1666/*
1667 * If this function returns success, caller can obtain a new nid
1668 * from second parameter of this function.
1669 * The returned nid could be used ino as well as nid when inode is created.
1670 */
1671bool alloc_nid(struct f2fs_sb_info *sbi, nid_t *nid)
1672{
1673 struct f2fs_nm_info *nm_i = NM_I(sbi);
1674 struct free_nid *i = NULL;
e05df3b1 1675retry:
7ee0eeab 1676 if (unlikely(sbi->total_valid_node_count + 1 > nm_i->available_nids))
55008d84 1677 return false;
e05df3b1 1678
e05df3b1 1679 spin_lock(&nm_i->free_nid_list_lock);
e05df3b1 1680
55008d84 1681 /* We should not use stale free nids created by build_free_nids */
f978f5a0 1682 if (nm_i->fcnt && !on_build_free_nids(nm_i)) {
9850cf4a 1683 f2fs_bug_on(sbi, list_empty(&nm_i->free_nid_list));
2d7b822a 1684 list_for_each_entry(i, &nm_i->free_nid_list, list)
55008d84
JK
1685 if (i->state == NID_NEW)
1686 break;
e05df3b1 1687
9850cf4a 1688 f2fs_bug_on(sbi, i->state != NID_NEW);
55008d84
JK
1689 *nid = i->nid;
1690 i->state = NID_ALLOC;
1691 nm_i->fcnt--;
1692 spin_unlock(&nm_i->free_nid_list_lock);
1693 return true;
1694 }
e05df3b1 1695 spin_unlock(&nm_i->free_nid_list_lock);
55008d84
JK
1696
1697 /* Let's scan nat pages and its caches to get free nids */
1698 mutex_lock(&nm_i->build_lock);
55008d84 1699 build_free_nids(sbi);
55008d84
JK
1700 mutex_unlock(&nm_i->build_lock);
1701 goto retry;
e05df3b1
JK
1702}
1703
0a8165d7 1704/*
e05df3b1
JK
1705 * alloc_nid() should be called prior to this function.
1706 */
1707void alloc_nid_done(struct f2fs_sb_info *sbi, nid_t nid)
1708{
1709 struct f2fs_nm_info *nm_i = NM_I(sbi);
1710 struct free_nid *i;
1711
1712 spin_lock(&nm_i->free_nid_list_lock);
8a7ed66a 1713 i = __lookup_free_nid_list(nm_i, nid);
9850cf4a 1714 f2fs_bug_on(sbi, !i || i->state != NID_ALLOC);
8a7ed66a 1715 __del_from_free_nid_list(nm_i, i);
e05df3b1 1716 spin_unlock(&nm_i->free_nid_list_lock);
cf0ee0f0
CY
1717
1718 kmem_cache_free(free_nid_slab, i);
e05df3b1
JK
1719}
1720
0a8165d7 1721/*
e05df3b1
JK
1722 * alloc_nid() should be called prior to this function.
1723 */
1724void alloc_nid_failed(struct f2fs_sb_info *sbi, nid_t nid)
1725{
49952fa1
JK
1726 struct f2fs_nm_info *nm_i = NM_I(sbi);
1727 struct free_nid *i;
cf0ee0f0 1728 bool need_free = false;
49952fa1 1729
65985d93
JK
1730 if (!nid)
1731 return;
1732
49952fa1 1733 spin_lock(&nm_i->free_nid_list_lock);
8a7ed66a 1734 i = __lookup_free_nid_list(nm_i, nid);
9850cf4a 1735 f2fs_bug_on(sbi, !i || i->state != NID_ALLOC);
6fb03f3a 1736 if (!available_free_memory(sbi, FREE_NIDS)) {
8a7ed66a 1737 __del_from_free_nid_list(nm_i, i);
cf0ee0f0 1738 need_free = true;
95630cba
HL
1739 } else {
1740 i->state = NID_NEW;
1741 nm_i->fcnt++;
1742 }
49952fa1 1743 spin_unlock(&nm_i->free_nid_list_lock);
cf0ee0f0
CY
1744
1745 if (need_free)
1746 kmem_cache_free(free_nid_slab, i);
e05df3b1
JK
1747}
1748
31696580
CY
1749int try_to_free_nids(struct f2fs_sb_info *sbi, int nr_shrink)
1750{
1751 struct f2fs_nm_info *nm_i = NM_I(sbi);
1752 struct free_nid *i, *next;
1753 int nr = nr_shrink;
1754
1755 if (!mutex_trylock(&nm_i->build_lock))
1756 return 0;
1757
1758 spin_lock(&nm_i->free_nid_list_lock);
1759 list_for_each_entry_safe(i, next, &nm_i->free_nid_list, list) {
1760 if (nr_shrink <= 0 || nm_i->fcnt <= NAT_ENTRY_PER_BLOCK)
1761 break;
1762 if (i->state == NID_ALLOC)
1763 continue;
1764 __del_from_free_nid_list(nm_i, i);
31696580 1765 kmem_cache_free(free_nid_slab, i);
f7409d0f 1766 nm_i->fcnt--;
31696580 1767 nr_shrink--;
31696580
CY
1768 }
1769 spin_unlock(&nm_i->free_nid_list_lock);
1770 mutex_unlock(&nm_i->build_lock);
1771
1772 return nr - nr_shrink;
1773}
1774
70cfed88 1775void recover_inline_xattr(struct inode *inode, struct page *page)
28cdce04 1776{
28cdce04
CY
1777 void *src_addr, *dst_addr;
1778 size_t inline_size;
1779 struct page *ipage;
1780 struct f2fs_inode *ri;
1781
4081363f 1782 ipage = get_node_page(F2FS_I_SB(inode), inode->i_ino);
9850cf4a 1783 f2fs_bug_on(F2FS_I_SB(inode), IS_ERR(ipage));
28cdce04 1784
e3b4d43f
JK
1785 ri = F2FS_INODE(page);
1786 if (!(ri->i_inline & F2FS_INLINE_XATTR)) {
1787 clear_inode_flag(F2FS_I(inode), FI_INLINE_XATTR);
1788 goto update_inode;
1789 }
1790
28cdce04
CY
1791 dst_addr = inline_xattr_addr(ipage);
1792 src_addr = inline_xattr_addr(page);
1793 inline_size = inline_xattr_size(inode);
1794
fec1d657 1795 f2fs_wait_on_page_writeback(ipage, NODE, true);
28cdce04 1796 memcpy(dst_addr, src_addr, inline_size);
e3b4d43f 1797update_inode:
28cdce04
CY
1798 update_inode(inode, ipage);
1799 f2fs_put_page(ipage, 1);
1800}
1801
1c35a90e 1802void recover_xattr_data(struct inode *inode, struct page *page, block_t blkaddr)
abb2366c 1803{
4081363f 1804 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
abb2366c
JK
1805 nid_t prev_xnid = F2FS_I(inode)->i_xattr_nid;
1806 nid_t new_xnid = nid_of_node(page);
1807 struct node_info ni;
1808
abb2366c
JK
1809 /* 1: invalidate the previous xattr nid */
1810 if (!prev_xnid)
1811 goto recover_xnid;
1812
1813 /* Deallocate node address */
1814 get_node_info(sbi, prev_xnid, &ni);
9850cf4a 1815 f2fs_bug_on(sbi, ni.blk_addr == NULL_ADDR);
abb2366c
JK
1816 invalidate_blocks(sbi, ni.blk_addr);
1817 dec_valid_node_count(sbi, inode);
479f40c4 1818 set_node_addr(sbi, &ni, NULL_ADDR, false);
abb2366c
JK
1819
1820recover_xnid:
1821 /* 2: allocate new xattr nid */
1822 if (unlikely(!inc_valid_node_count(sbi, inode)))
9850cf4a 1823 f2fs_bug_on(sbi, 1);
abb2366c
JK
1824
1825 remove_free_nid(NM_I(sbi), new_xnid);
1826 get_node_info(sbi, new_xnid, &ni);
1827 ni.ino = inode->i_ino;
479f40c4 1828 set_node_addr(sbi, &ni, NEW_ADDR, false);
abb2366c
JK
1829 F2FS_I(inode)->i_xattr_nid = new_xnid;
1830
1831 /* 3: update xattr blkaddr */
1832 refresh_sit_entry(sbi, NEW_ADDR, blkaddr);
479f40c4 1833 set_node_addr(sbi, &ni, blkaddr, false);
abb2366c
JK
1834
1835 update_inode_page(inode);
abb2366c
JK
1836}
1837
e05df3b1
JK
1838int recover_inode_page(struct f2fs_sb_info *sbi, struct page *page)
1839{
58bfaf44 1840 struct f2fs_inode *src, *dst;
e05df3b1
JK
1841 nid_t ino = ino_of_node(page);
1842 struct node_info old_ni, new_ni;
1843 struct page *ipage;
1844
e8271fa3
JK
1845 get_node_info(sbi, ino, &old_ni);
1846
1847 if (unlikely(old_ni.blk_addr != NULL_ADDR))
1848 return -EINVAL;
1849
4ef51a8f 1850 ipage = grab_cache_page(NODE_MAPPING(sbi), ino);
e05df3b1
JK
1851 if (!ipage)
1852 return -ENOMEM;
1853
e1c42045 1854 /* Should not use this inode from free nid list */
e05df3b1
JK
1855 remove_free_nid(NM_I(sbi), ino);
1856
e05df3b1
JK
1857 SetPageUptodate(ipage);
1858 fill_node_footer(ipage, ino, ino, 0, true);
1859
58bfaf44
JK
1860 src = F2FS_INODE(page);
1861 dst = F2FS_INODE(ipage);
e05df3b1 1862
58bfaf44
JK
1863 memcpy(dst, src, (unsigned long)&src->i_ext - (unsigned long)src);
1864 dst->i_size = 0;
1865 dst->i_blocks = cpu_to_le64(1);
1866 dst->i_links = cpu_to_le32(1);
1867 dst->i_xattr_nid = 0;
617deb8c 1868 dst->i_inline = src->i_inline & F2FS_INLINE_XATTR;
e05df3b1
JK
1869
1870 new_ni = old_ni;
1871 new_ni.ino = ino;
1872
cfb271d4 1873 if (unlikely(!inc_valid_node_count(sbi, NULL)))
65e5cd0a 1874 WARN_ON(1);
479f40c4 1875 set_node_addr(sbi, &new_ni, NEW_ADDR, false);
e05df3b1 1876 inc_valid_inode_count(sbi);
617deb8c 1877 set_page_dirty(ipage);
e05df3b1
JK
1878 f2fs_put_page(ipage, 1);
1879 return 0;
1880}
1881
1882int restore_node_summary(struct f2fs_sb_info *sbi,
1883 unsigned int segno, struct f2fs_summary_block *sum)
1884{
1885 struct f2fs_node *rn;
1886 struct f2fs_summary *sum_entry;
e05df3b1 1887 block_t addr;
90a893c7 1888 int bio_blocks = MAX_BIO_BLOCKS(sbi);
9ecf4b80 1889 int i, idx, last_offset, nrpages;
e05df3b1
JK
1890
1891 /* scan the node segment */
1892 last_offset = sbi->blocks_per_seg;
1893 addr = START_BLOCK(sbi, segno);
1894 sum_entry = &sum->entries[0];
1895
9ecf4b80 1896 for (i = 0; i < last_offset; i += nrpages, addr += nrpages) {
9af0ff1c 1897 nrpages = min(last_offset - i, bio_blocks);
393ff91f 1898
e1c42045 1899 /* readahead node pages */
26879fb1 1900 ra_meta_pages(sbi, addr, nrpages, META_POR, true);
e05df3b1 1901
9ecf4b80 1902 for (idx = addr; idx < addr + nrpages; idx++) {
2b947003 1903 struct page *page = get_tmp_page(sbi, idx);
9af0ff1c 1904
9ecf4b80
CY
1905 rn = F2FS_NODE(page);
1906 sum_entry->nid = rn->footer.nid;
1907 sum_entry->version = 0;
1908 sum_entry->ofs_in_node = 0;
1909 sum_entry++;
1910 f2fs_put_page(page, 1);
9af0ff1c 1911 }
bac4eef6 1912
9ecf4b80 1913 invalidate_mapping_pages(META_MAPPING(sbi), addr,
bac4eef6 1914 addr + nrpages);
e05df3b1 1915 }
9ecf4b80 1916 return 0;
e05df3b1
JK
1917}
1918
aec71382 1919static void remove_nats_in_journal(struct f2fs_sb_info *sbi)
e05df3b1
JK
1920{
1921 struct f2fs_nm_info *nm_i = NM_I(sbi);
1922 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA);
b7ad7512 1923 struct f2fs_journal *journal = curseg->journal;
e05df3b1
JK
1924 int i;
1925
b7ad7512 1926 down_write(&curseg->journal_rwsem);
dfc08a12 1927 for (i = 0; i < nats_in_cursum(journal); i++) {
e05df3b1
JK
1928 struct nat_entry *ne;
1929 struct f2fs_nat_entry raw_ne;
dfc08a12 1930 nid_t nid = le32_to_cpu(nid_in_journal(journal, i));
e05df3b1 1931
dfc08a12 1932 raw_ne = nat_in_journal(journal, i);
9be32d72 1933
e05df3b1 1934 ne = __lookup_nat_cache(nm_i, nid);
e05df3b1 1935 if (!ne) {
9be32d72
JK
1936 ne = grab_nat_entry(nm_i, nid);
1937 node_info_from_raw_nat(&ne->ni, &raw_ne);
e05df3b1 1938 }
e05df3b1 1939 __set_nat_cache_dirty(nm_i, ne);
e05df3b1 1940 }
dfc08a12 1941 update_nats_in_cursum(journal, -i);
b7ad7512 1942 up_write(&curseg->journal_rwsem);
e05df3b1
JK
1943}
1944
309cc2b6
JK
1945static void __adjust_nat_entry_set(struct nat_entry_set *nes,
1946 struct list_head *head, int max)
e05df3b1 1947{
309cc2b6 1948 struct nat_entry_set *cur;
e05df3b1 1949
309cc2b6
JK
1950 if (nes->entry_cnt >= max)
1951 goto add_out;
e05df3b1 1952
309cc2b6
JK
1953 list_for_each_entry(cur, head, set_list) {
1954 if (cur->entry_cnt >= nes->entry_cnt) {
1955 list_add(&nes->set_list, cur->set_list.prev);
1956 return;
1957 }
aec71382 1958 }
309cc2b6
JK
1959add_out:
1960 list_add_tail(&nes->set_list, head);
1961}
e05df3b1 1962
309cc2b6
JK
1963static void __flush_nat_entry_set(struct f2fs_sb_info *sbi,
1964 struct nat_entry_set *set)
1965{
1966 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA);
b7ad7512 1967 struct f2fs_journal *journal = curseg->journal;
309cc2b6
JK
1968 nid_t start_nid = set->set * NAT_ENTRY_PER_BLOCK;
1969 bool to_journal = true;
1970 struct f2fs_nat_block *nat_blk;
1971 struct nat_entry *ne, *cur;
1972 struct page *page = NULL;
e05df3b1 1973
aec71382
CY
1974 /*
1975 * there are two steps to flush nat entries:
1976 * #1, flush nat entries to journal in current hot data summary block.
1977 * #2, flush nat entries to nat page.
1978 */
dfc08a12 1979 if (!__has_cursum_space(journal, set->entry_cnt, NAT_JOURNAL))
309cc2b6
JK
1980 to_journal = false;
1981
1982 if (to_journal) {
b7ad7512 1983 down_write(&curseg->journal_rwsem);
309cc2b6
JK
1984 } else {
1985 page = get_next_nat_page(sbi, start_nid);
1986 nat_blk = page_address(page);
1987 f2fs_bug_on(sbi, !nat_blk);
1988 }
aec71382 1989
309cc2b6
JK
1990 /* flush dirty nats in nat entry set */
1991 list_for_each_entry_safe(ne, cur, &set->entry_list, list) {
1992 struct f2fs_nat_entry *raw_ne;
1993 nid_t nid = nat_get_nid(ne);
1994 int offset;
1995
1996 if (nat_get_blkaddr(ne) == NEW_ADDR)
1997 continue;
aec71382
CY
1998
1999 if (to_journal) {
dfc08a12 2000 offset = lookup_journal_in_cursum(journal,
309cc2b6
JK
2001 NAT_JOURNAL, nid, 1);
2002 f2fs_bug_on(sbi, offset < 0);
dfc08a12
CY
2003 raw_ne = &nat_in_journal(journal, offset);
2004 nid_in_journal(journal, offset) = cpu_to_le32(nid);
aec71382 2005 } else {
309cc2b6 2006 raw_ne = &nat_blk->entries[nid - start_nid];
e05df3b1 2007 }
309cc2b6 2008 raw_nat_from_node_info(raw_ne, &ne->ni);
309cc2b6
JK
2009 nat_reset_flag(ne);
2010 __clear_nat_cache_dirty(NM_I(sbi), ne);
309cc2b6
JK
2011 if (nat_get_blkaddr(ne) == NULL_ADDR)
2012 add_free_nid(sbi, nid, false);
2013 }
e05df3b1 2014
309cc2b6 2015 if (to_journal)
b7ad7512 2016 up_write(&curseg->journal_rwsem);
309cc2b6
JK
2017 else
2018 f2fs_put_page(page, 1);
aec71382 2019
80ec2e91
CL
2020 f2fs_bug_on(sbi, set->entry_cnt);
2021
2022 radix_tree_delete(&NM_I(sbi)->nat_set_root, set->set);
2023 kmem_cache_free(nat_entry_set_slab, set);
309cc2b6 2024}
aec71382 2025
309cc2b6
JK
2026/*
2027 * This function is called during the checkpointing process.
2028 */
2029void flush_nat_entries(struct f2fs_sb_info *sbi)
2030{
2031 struct f2fs_nm_info *nm_i = NM_I(sbi);
2032 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA);
b7ad7512 2033 struct f2fs_journal *journal = curseg->journal;
7aed0d45 2034 struct nat_entry_set *setvec[SETVEC_SIZE];
309cc2b6
JK
2035 struct nat_entry_set *set, *tmp;
2036 unsigned int found;
2037 nid_t set_idx = 0;
2038 LIST_HEAD(sets);
2039
20d047c8
CL
2040 if (!nm_i->dirty_nat_cnt)
2041 return;
a5131193
JK
2042
2043 down_write(&nm_i->nat_tree_lock);
2044
309cc2b6
JK
2045 /*
2046 * if there are no enough space in journal to store dirty nat
2047 * entries, remove all entries from journal and merge them
2048 * into nat entry set.
2049 */
dfc08a12 2050 if (!__has_cursum_space(journal, nm_i->dirty_nat_cnt, NAT_JOURNAL))
309cc2b6
JK
2051 remove_nats_in_journal(sbi);
2052
309cc2b6 2053 while ((found = __gang_lookup_nat_set(nm_i,
7aed0d45 2054 set_idx, SETVEC_SIZE, setvec))) {
309cc2b6
JK
2055 unsigned idx;
2056 set_idx = setvec[found - 1]->set + 1;
2057 for (idx = 0; idx < found; idx++)
2058 __adjust_nat_entry_set(setvec[idx], &sets,
dfc08a12 2059 MAX_NAT_JENTRIES(journal));
e05df3b1 2060 }
aec71382 2061
309cc2b6
JK
2062 /* flush dirty nats in nat entry set */
2063 list_for_each_entry_safe(set, tmp, &sets, set_list)
2064 __flush_nat_entry_set(sbi, set);
2065
a5131193
JK
2066 up_write(&nm_i->nat_tree_lock);
2067
9850cf4a 2068 f2fs_bug_on(sbi, nm_i->dirty_nat_cnt);
e05df3b1
JK
2069}
2070
2071static int init_node_manager(struct f2fs_sb_info *sbi)
2072{
2073 struct f2fs_super_block *sb_raw = F2FS_RAW_SUPER(sbi);
2074 struct f2fs_nm_info *nm_i = NM_I(sbi);
2075 unsigned char *version_bitmap;
2076 unsigned int nat_segs, nat_blocks;
2077
2078 nm_i->nat_blkaddr = le32_to_cpu(sb_raw->nat_blkaddr);
2079
2080 /* segment_count_nat includes pair segment so divide to 2. */
2081 nat_segs = le32_to_cpu(sb_raw->segment_count_nat) >> 1;
2082 nat_blocks = nat_segs << le32_to_cpu(sb_raw->log_blocks_per_seg);
b63da15e 2083
7ee0eeab
JK
2084 nm_i->max_nid = NAT_ENTRY_PER_BLOCK * nat_blocks;
2085
b63da15e 2086 /* not used nids: 0, node, meta, (and root counted as valid node) */
c200b1aa 2087 nm_i->available_nids = nm_i->max_nid - F2FS_RESERVED_NODE_NUM;
e05df3b1
JK
2088 nm_i->fcnt = 0;
2089 nm_i->nat_cnt = 0;
cdfc41c1 2090 nm_i->ram_thresh = DEF_RAM_THRESHOLD;
ea1a29a0 2091 nm_i->ra_nid_pages = DEF_RA_NID_PAGES;
2304cb0c 2092 nm_i->dirty_nats_ratio = DEF_DIRTY_NAT_RATIO_THRESHOLD;
e05df3b1 2093
8a7ed66a 2094 INIT_RADIX_TREE(&nm_i->free_nid_root, GFP_ATOMIC);
e05df3b1 2095 INIT_LIST_HEAD(&nm_i->free_nid_list);
769ec6e5
JK
2096 INIT_RADIX_TREE(&nm_i->nat_root, GFP_NOIO);
2097 INIT_RADIX_TREE(&nm_i->nat_set_root, GFP_NOIO);
e05df3b1 2098 INIT_LIST_HEAD(&nm_i->nat_entries);
e05df3b1
JK
2099
2100 mutex_init(&nm_i->build_lock);
2101 spin_lock_init(&nm_i->free_nid_list_lock);
8b26ef98 2102 init_rwsem(&nm_i->nat_tree_lock);
e05df3b1 2103
e05df3b1 2104 nm_i->next_scan_nid = le32_to_cpu(sbi->ckpt->next_free_nid);
79b5793b 2105 nm_i->bitmap_size = __bitmap_size(sbi, NAT_BITMAP);
e05df3b1
JK
2106 version_bitmap = __bitmap_ptr(sbi, NAT_BITMAP);
2107 if (!version_bitmap)
2108 return -EFAULT;
2109
79b5793b
AG
2110 nm_i->nat_bitmap = kmemdup(version_bitmap, nm_i->bitmap_size,
2111 GFP_KERNEL);
2112 if (!nm_i->nat_bitmap)
2113 return -ENOMEM;
e05df3b1
JK
2114 return 0;
2115}
2116
2117int build_node_manager(struct f2fs_sb_info *sbi)
2118{
2119 int err;
2120
2121 sbi->nm_info = kzalloc(sizeof(struct f2fs_nm_info), GFP_KERNEL);
2122 if (!sbi->nm_info)
2123 return -ENOMEM;
2124
2125 err = init_node_manager(sbi);
2126 if (err)
2127 return err;
2128
2129 build_free_nids(sbi);
2130 return 0;
2131}
2132
2133void destroy_node_manager(struct f2fs_sb_info *sbi)
2134{
2135 struct f2fs_nm_info *nm_i = NM_I(sbi);
2136 struct free_nid *i, *next_i;
2137 struct nat_entry *natvec[NATVEC_SIZE];
7aed0d45 2138 struct nat_entry_set *setvec[SETVEC_SIZE];
e05df3b1
JK
2139 nid_t nid = 0;
2140 unsigned int found;
2141
2142 if (!nm_i)
2143 return;
2144
2145 /* destroy free nid list */
2146 spin_lock(&nm_i->free_nid_list_lock);
2147 list_for_each_entry_safe(i, next_i, &nm_i->free_nid_list, list) {
9850cf4a 2148 f2fs_bug_on(sbi, i->state == NID_ALLOC);
8a7ed66a 2149 __del_from_free_nid_list(nm_i, i);
e05df3b1 2150 nm_i->fcnt--;
cf0ee0f0
CY
2151 spin_unlock(&nm_i->free_nid_list_lock);
2152 kmem_cache_free(free_nid_slab, i);
2153 spin_lock(&nm_i->free_nid_list_lock);
e05df3b1 2154 }
9850cf4a 2155 f2fs_bug_on(sbi, nm_i->fcnt);
e05df3b1
JK
2156 spin_unlock(&nm_i->free_nid_list_lock);
2157
2158 /* destroy nat cache */
8b26ef98 2159 down_write(&nm_i->nat_tree_lock);
e05df3b1
JK
2160 while ((found = __gang_lookup_nat_cache(nm_i,
2161 nid, NATVEC_SIZE, natvec))) {
2162 unsigned idx;
7aed0d45 2163
b6ce391e
GZ
2164 nid = nat_get_nid(natvec[found - 1]) + 1;
2165 for (idx = 0; idx < found; idx++)
2166 __del_from_nat_cache(nm_i, natvec[idx]);
e05df3b1 2167 }
9850cf4a 2168 f2fs_bug_on(sbi, nm_i->nat_cnt);
7aed0d45
JK
2169
2170 /* destroy nat set cache */
2171 nid = 0;
2172 while ((found = __gang_lookup_nat_set(nm_i,
2173 nid, SETVEC_SIZE, setvec))) {
2174 unsigned idx;
2175
2176 nid = setvec[found - 1]->set + 1;
2177 for (idx = 0; idx < found; idx++) {
2178 /* entry_cnt is not zero, when cp_error was occurred */
2179 f2fs_bug_on(sbi, !list_empty(&setvec[idx]->entry_list));
2180 radix_tree_delete(&nm_i->nat_set_root, setvec[idx]->set);
2181 kmem_cache_free(nat_entry_set_slab, setvec[idx]);
2182 }
2183 }
8b26ef98 2184 up_write(&nm_i->nat_tree_lock);
e05df3b1
JK
2185
2186 kfree(nm_i->nat_bitmap);
2187 sbi->nm_info = NULL;
2188 kfree(nm_i);
2189}
2190
6e6093a8 2191int __init create_node_manager_caches(void)
e05df3b1
JK
2192{
2193 nat_entry_slab = f2fs_kmem_cache_create("nat_entry",
e8512d2e 2194 sizeof(struct nat_entry));
e05df3b1 2195 if (!nat_entry_slab)
aec71382 2196 goto fail;
e05df3b1
JK
2197
2198 free_nid_slab = f2fs_kmem_cache_create("free_nid",
e8512d2e 2199 sizeof(struct free_nid));
aec71382 2200 if (!free_nid_slab)
ce3e6d25 2201 goto destroy_nat_entry;
aec71382
CY
2202
2203 nat_entry_set_slab = f2fs_kmem_cache_create("nat_entry_set",
2204 sizeof(struct nat_entry_set));
2205 if (!nat_entry_set_slab)
ce3e6d25 2206 goto destroy_free_nid;
e05df3b1 2207 return 0;
aec71382 2208
ce3e6d25 2209destroy_free_nid:
aec71382 2210 kmem_cache_destroy(free_nid_slab);
ce3e6d25 2211destroy_nat_entry:
aec71382
CY
2212 kmem_cache_destroy(nat_entry_slab);
2213fail:
2214 return -ENOMEM;
e05df3b1
JK
2215}
2216
2217void destroy_node_manager_caches(void)
2218{
aec71382 2219 kmem_cache_destroy(nat_entry_set_slab);
e05df3b1
JK
2220 kmem_cache_destroy(free_nid_slab);
2221 kmem_cache_destroy(nat_entry_slab);
2222}