blob: 78c54bb7898dfb9ccade324247bbf73e206e2584 [file] [log] [blame]
David Brazdil0f672f62019-12-10 10:32:29 +00001// SPDX-License-Identifier: GPL-2.0
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002/*
3 * fs/f2fs/segment.c
4 *
5 * Copyright (c) 2012 Samsung Electronics Co., Ltd.
6 * http://www.samsung.com/
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00007 */
8#include <linux/fs.h>
9#include <linux/f2fs_fs.h>
10#include <linux/bio.h>
11#include <linux/blkdev.h>
12#include <linux/prefetch.h>
13#include <linux/kthread.h>
14#include <linux/swap.h>
15#include <linux/timer.h>
16#include <linux/freezer.h>
17#include <linux/sched/signal.h>
18
19#include "f2fs.h"
20#include "segment.h"
21#include "node.h"
22#include "gc.h"
23#include "trace.h"
24#include <trace/events/f2fs.h>
25
26#define __reverse_ffz(x) __reverse_ffs(~(x))
27
28static struct kmem_cache *discard_entry_slab;
29static struct kmem_cache *discard_cmd_slab;
30static struct kmem_cache *sit_entry_set_slab;
31static struct kmem_cache *inmem_entry_slab;
32
33static unsigned long __reverse_ulong(unsigned char *str)
34{
35 unsigned long tmp = 0;
36 int shift = 24, idx = 0;
37
38#if BITS_PER_LONG == 64
39 shift = 56;
40#endif
41 while (shift >= 0) {
42 tmp |= (unsigned long)str[idx++] << shift;
43 shift -= BITS_PER_BYTE;
44 }
45 return tmp;
46}
47
48/*
49 * __reverse_ffs is copied from include/asm-generic/bitops/__ffs.h since
50 * MSB and LSB are reversed in a byte by f2fs_set_bit.
51 */
52static inline unsigned long __reverse_ffs(unsigned long word)
53{
54 int num = 0;
55
56#if BITS_PER_LONG == 64
57 if ((word & 0xffffffff00000000UL) == 0)
58 num += 32;
59 else
60 word >>= 32;
61#endif
62 if ((word & 0xffff0000) == 0)
63 num += 16;
64 else
65 word >>= 16;
66
67 if ((word & 0xff00) == 0)
68 num += 8;
69 else
70 word >>= 8;
71
72 if ((word & 0xf0) == 0)
73 num += 4;
74 else
75 word >>= 4;
76
77 if ((word & 0xc) == 0)
78 num += 2;
79 else
80 word >>= 2;
81
82 if ((word & 0x2) == 0)
83 num += 1;
84 return num;
85}
86
87/*
88 * __find_rev_next(_zero)_bit is copied from lib/find_next_bit.c because
89 * f2fs_set_bit makes MSB and LSB reversed in a byte.
90 * @size must be integral times of unsigned long.
91 * Example:
92 * MSB <--> LSB
93 * f2fs_set_bit(0, bitmap) => 1000 0000
94 * f2fs_set_bit(7, bitmap) => 0000 0001
95 */
96static unsigned long __find_rev_next_bit(const unsigned long *addr,
97 unsigned long size, unsigned long offset)
98{
99 const unsigned long *p = addr + BIT_WORD(offset);
100 unsigned long result = size;
101 unsigned long tmp;
102
103 if (offset >= size)
104 return size;
105
106 size -= (offset & ~(BITS_PER_LONG - 1));
107 offset %= BITS_PER_LONG;
108
109 while (1) {
110 if (*p == 0)
111 goto pass;
112
113 tmp = __reverse_ulong((unsigned char *)p);
114
115 tmp &= ~0UL >> offset;
116 if (size < BITS_PER_LONG)
117 tmp &= (~0UL << (BITS_PER_LONG - size));
118 if (tmp)
119 goto found;
120pass:
121 if (size <= BITS_PER_LONG)
122 break;
123 size -= BITS_PER_LONG;
124 offset = 0;
125 p++;
126 }
127 return result;
128found:
129 return result - size + __reverse_ffs(tmp);
130}
131
132static unsigned long __find_rev_next_zero_bit(const unsigned long *addr,
133 unsigned long size, unsigned long offset)
134{
135 const unsigned long *p = addr + BIT_WORD(offset);
136 unsigned long result = size;
137 unsigned long tmp;
138
139 if (offset >= size)
140 return size;
141
142 size -= (offset & ~(BITS_PER_LONG - 1));
143 offset %= BITS_PER_LONG;
144
145 while (1) {
146 if (*p == ~0UL)
147 goto pass;
148
149 tmp = __reverse_ulong((unsigned char *)p);
150
151 if (offset)
152 tmp |= ~0UL << (BITS_PER_LONG - offset);
153 if (size < BITS_PER_LONG)
154 tmp |= ~0UL >> size;
155 if (tmp != ~0UL)
156 goto found;
157pass:
158 if (size <= BITS_PER_LONG)
159 break;
160 size -= BITS_PER_LONG;
161 offset = 0;
162 p++;
163 }
164 return result;
165found:
166 return result - size + __reverse_ffz(tmp);
167}
168
169bool f2fs_need_SSR(struct f2fs_sb_info *sbi)
170{
171 int node_secs = get_blocktype_secs(sbi, F2FS_DIRTY_NODES);
172 int dent_secs = get_blocktype_secs(sbi, F2FS_DIRTY_DENTS);
173 int imeta_secs = get_blocktype_secs(sbi, F2FS_DIRTY_IMETA);
174
175 if (test_opt(sbi, LFS))
176 return false;
177 if (sbi->gc_mode == GC_URGENT)
178 return true;
David Brazdil0f672f62019-12-10 10:32:29 +0000179 if (unlikely(is_sbi_flag_set(sbi, SBI_CP_DISABLED)))
180 return true;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000181
182 return free_sections(sbi) <= (node_secs + 2 * dent_secs + imeta_secs +
183 SM_I(sbi)->min_ssr_sections + reserved_sections(sbi));
184}
185
186void f2fs_register_inmem_page(struct inode *inode, struct page *page)
187{
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000188 struct inmem_pages *new;
189
190 f2fs_trace_pid(page);
191
David Brazdil0f672f62019-12-10 10:32:29 +0000192 f2fs_set_page_private(page, (unsigned long)ATOMIC_WRITTEN_PAGE);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000193
194 new = f2fs_kmem_cache_alloc(inmem_entry_slab, GFP_NOFS);
195
196 /* add atomic page indices to the list */
197 new->page = page;
198 INIT_LIST_HEAD(&new->list);
199
200 /* increase reference count with clean state */
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000201 get_page(page);
David Brazdil0f672f62019-12-10 10:32:29 +0000202 mutex_lock(&F2FS_I(inode)->inmem_lock);
203 list_add_tail(&new->list, &F2FS_I(inode)->inmem_pages);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000204 inc_page_count(F2FS_I_SB(inode), F2FS_INMEM_PAGES);
David Brazdil0f672f62019-12-10 10:32:29 +0000205 mutex_unlock(&F2FS_I(inode)->inmem_lock);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000206
207 trace_f2fs_register_inmem_page(page, INMEM);
208}
209
210static int __revoke_inmem_pages(struct inode *inode,
David Brazdil0f672f62019-12-10 10:32:29 +0000211 struct list_head *head, bool drop, bool recover,
212 bool trylock)
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000213{
214 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
215 struct inmem_pages *cur, *tmp;
216 int err = 0;
217
218 list_for_each_entry_safe(cur, tmp, head, list) {
219 struct page *page = cur->page;
220
221 if (drop)
222 trace_f2fs_commit_inmem_page(page, INMEM_DROP);
223
David Brazdil0f672f62019-12-10 10:32:29 +0000224 if (trylock) {
225 /*
226 * to avoid deadlock in between page lock and
227 * inmem_lock.
228 */
229 if (!trylock_page(page))
230 continue;
231 } else {
232 lock_page(page);
233 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000234
David Brazdil0f672f62019-12-10 10:32:29 +0000235 f2fs_wait_on_page_writeback(page, DATA, true, true);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000236
237 if (recover) {
238 struct dnode_of_data dn;
239 struct node_info ni;
240
241 trace_f2fs_commit_inmem_page(page, INMEM_REVOKE);
242retry:
243 set_new_dnode(&dn, inode, NULL, NULL, 0);
244 err = f2fs_get_dnode_of_data(&dn, page->index,
245 LOOKUP_NODE);
246 if (err) {
247 if (err == -ENOMEM) {
248 congestion_wait(BLK_RW_ASYNC, HZ/50);
249 cond_resched();
250 goto retry;
251 }
252 err = -EAGAIN;
253 goto next;
254 }
255
256 err = f2fs_get_node_info(sbi, dn.nid, &ni);
257 if (err) {
258 f2fs_put_dnode(&dn);
259 return err;
260 }
261
262 if (cur->old_addr == NEW_ADDR) {
263 f2fs_invalidate_blocks(sbi, dn.data_blkaddr);
264 f2fs_update_data_blkaddr(&dn, NEW_ADDR);
265 } else
266 f2fs_replace_block(sbi, &dn, dn.data_blkaddr,
267 cur->old_addr, ni.version, true, true);
268 f2fs_put_dnode(&dn);
269 }
270next:
271 /* we don't need to invalidate this in the sccessful status */
David Brazdil0f672f62019-12-10 10:32:29 +0000272 if (drop || recover) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000273 ClearPageUptodate(page);
David Brazdil0f672f62019-12-10 10:32:29 +0000274 clear_cold_data(page);
275 }
276 f2fs_clear_page_private(page);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000277 f2fs_put_page(page, 1);
278
279 list_del(&cur->list);
280 kmem_cache_free(inmem_entry_slab, cur);
281 dec_page_count(F2FS_I_SB(inode), F2FS_INMEM_PAGES);
282 }
283 return err;
284}
285
286void f2fs_drop_inmem_pages_all(struct f2fs_sb_info *sbi, bool gc_failure)
287{
288 struct list_head *head = &sbi->inode_list[ATOMIC_FILE];
289 struct inode *inode;
290 struct f2fs_inode_info *fi;
Olivier Deprez0e641232021-09-23 10:07:05 +0200291 unsigned int count = sbi->atomic_files;
292 unsigned int looped = 0;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000293next:
294 spin_lock(&sbi->inode_lock[ATOMIC_FILE]);
295 if (list_empty(head)) {
296 spin_unlock(&sbi->inode_lock[ATOMIC_FILE]);
297 return;
298 }
299 fi = list_first_entry(head, struct f2fs_inode_info, inmem_ilist);
300 inode = igrab(&fi->vfs_inode);
Olivier Deprez0e641232021-09-23 10:07:05 +0200301 if (inode)
302 list_move_tail(&fi->inmem_ilist, head);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000303 spin_unlock(&sbi->inode_lock[ATOMIC_FILE]);
304
305 if (inode) {
306 if (gc_failure) {
Olivier Deprez0e641232021-09-23 10:07:05 +0200307 if (!fi->i_gc_failures[GC_FAILURE_ATOMIC])
308 goto skip;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000309 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000310 set_inode_flag(inode, FI_ATOMIC_REVOKE_REQUEST);
311 f2fs_drop_inmem_pages(inode);
Olivier Deprez0e641232021-09-23 10:07:05 +0200312skip:
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000313 iput(inode);
314 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000315 congestion_wait(BLK_RW_ASYNC, HZ/50);
316 cond_resched();
Olivier Deprez0e641232021-09-23 10:07:05 +0200317 if (gc_failure) {
318 if (++looped >= count)
319 return;
320 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000321 goto next;
322}
323
324void f2fs_drop_inmem_pages(struct inode *inode)
325{
326 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
327 struct f2fs_inode_info *fi = F2FS_I(inode);
328
David Brazdil0f672f62019-12-10 10:32:29 +0000329 while (!list_empty(&fi->inmem_pages)) {
330 mutex_lock(&fi->inmem_lock);
331 __revoke_inmem_pages(inode, &fi->inmem_pages,
332 true, false, true);
333 mutex_unlock(&fi->inmem_lock);
334 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000335
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000336 fi->i_gc_failures[GC_FAILURE_ATOMIC] = 0;
337 stat_dec_atomic_write(inode);
David Brazdil0f672f62019-12-10 10:32:29 +0000338
339 spin_lock(&sbi->inode_lock[ATOMIC_FILE]);
340 if (!list_empty(&fi->inmem_ilist))
341 list_del_init(&fi->inmem_ilist);
Olivier Deprez0e641232021-09-23 10:07:05 +0200342 if (f2fs_is_atomic_file(inode)) {
343 clear_inode_flag(inode, FI_ATOMIC_FILE);
344 sbi->atomic_files--;
345 }
David Brazdil0f672f62019-12-10 10:32:29 +0000346 spin_unlock(&sbi->inode_lock[ATOMIC_FILE]);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000347}
348
349void f2fs_drop_inmem_page(struct inode *inode, struct page *page)
350{
351 struct f2fs_inode_info *fi = F2FS_I(inode);
352 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
353 struct list_head *head = &fi->inmem_pages;
354 struct inmem_pages *cur = NULL;
355
356 f2fs_bug_on(sbi, !IS_ATOMIC_WRITTEN_PAGE(page));
357
358 mutex_lock(&fi->inmem_lock);
359 list_for_each_entry(cur, head, list) {
360 if (cur->page == page)
361 break;
362 }
363
364 f2fs_bug_on(sbi, list_empty(head) || cur->page != page);
365 list_del(&cur->list);
366 mutex_unlock(&fi->inmem_lock);
367
368 dec_page_count(sbi, F2FS_INMEM_PAGES);
369 kmem_cache_free(inmem_entry_slab, cur);
370
371 ClearPageUptodate(page);
David Brazdil0f672f62019-12-10 10:32:29 +0000372 f2fs_clear_page_private(page);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000373 f2fs_put_page(page, 0);
374
375 trace_f2fs_commit_inmem_page(page, INMEM_INVALIDATE);
376}
377
378static int __f2fs_commit_inmem_pages(struct inode *inode)
379{
380 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
381 struct f2fs_inode_info *fi = F2FS_I(inode);
382 struct inmem_pages *cur, *tmp;
383 struct f2fs_io_info fio = {
384 .sbi = sbi,
385 .ino = inode->i_ino,
386 .type = DATA,
387 .op = REQ_OP_WRITE,
388 .op_flags = REQ_SYNC | REQ_PRIO,
389 .io_type = FS_DATA_IO,
390 };
391 struct list_head revoke_list;
David Brazdil0f672f62019-12-10 10:32:29 +0000392 bool submit_bio = false;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000393 int err = 0;
394
395 INIT_LIST_HEAD(&revoke_list);
396
397 list_for_each_entry_safe(cur, tmp, &fi->inmem_pages, list) {
398 struct page *page = cur->page;
399
400 lock_page(page);
401 if (page->mapping == inode->i_mapping) {
402 trace_f2fs_commit_inmem_page(page, INMEM);
403
David Brazdil0f672f62019-12-10 10:32:29 +0000404 f2fs_wait_on_page_writeback(page, DATA, true, true);
405
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000406 set_page_dirty(page);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000407 if (clear_page_dirty_for_io(page)) {
408 inode_dec_dirty_pages(inode);
409 f2fs_remove_dirty_inode(inode);
410 }
411retry:
412 fio.page = page;
413 fio.old_blkaddr = NULL_ADDR;
414 fio.encrypted_page = NULL;
415 fio.need_lock = LOCK_DONE;
416 err = f2fs_do_write_data_page(&fio);
417 if (err) {
418 if (err == -ENOMEM) {
419 congestion_wait(BLK_RW_ASYNC, HZ/50);
420 cond_resched();
421 goto retry;
422 }
423 unlock_page(page);
424 break;
425 }
426 /* record old blkaddr for revoking */
427 cur->old_addr = fio.old_blkaddr;
David Brazdil0f672f62019-12-10 10:32:29 +0000428 submit_bio = true;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000429 }
430 unlock_page(page);
431 list_move_tail(&cur->list, &revoke_list);
432 }
433
David Brazdil0f672f62019-12-10 10:32:29 +0000434 if (submit_bio)
435 f2fs_submit_merged_write_cond(sbi, inode, NULL, 0, DATA);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000436
437 if (err) {
438 /*
439 * try to revoke all committed pages, but still we could fail
440 * due to no memory or other reason, if that happened, EAGAIN
441 * will be returned, which means in such case, transaction is
442 * already not integrity, caller should use journal to do the
443 * recovery or rewrite & commit last transaction. For other
444 * error number, revoking was done by filesystem itself.
445 */
David Brazdil0f672f62019-12-10 10:32:29 +0000446 err = __revoke_inmem_pages(inode, &revoke_list,
447 false, true, false);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000448
449 /* drop all uncommitted pages */
David Brazdil0f672f62019-12-10 10:32:29 +0000450 __revoke_inmem_pages(inode, &fi->inmem_pages,
451 true, false, false);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000452 } else {
David Brazdil0f672f62019-12-10 10:32:29 +0000453 __revoke_inmem_pages(inode, &revoke_list,
454 false, false, false);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000455 }
456
457 return err;
458}
459
460int f2fs_commit_inmem_pages(struct inode *inode)
461{
462 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
463 struct f2fs_inode_info *fi = F2FS_I(inode);
464 int err;
465
466 f2fs_balance_fs(sbi, true);
467
468 down_write(&fi->i_gc_rwsem[WRITE]);
469
470 f2fs_lock_op(sbi);
471 set_inode_flag(inode, FI_ATOMIC_COMMIT);
472
473 mutex_lock(&fi->inmem_lock);
474 err = __f2fs_commit_inmem_pages(inode);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000475 mutex_unlock(&fi->inmem_lock);
476
477 clear_inode_flag(inode, FI_ATOMIC_COMMIT);
478
479 f2fs_unlock_op(sbi);
480 up_write(&fi->i_gc_rwsem[WRITE]);
481
482 return err;
483}
484
485/*
486 * This function balances dirty node and dentry pages.
487 * In addition, it controls garbage collection.
488 */
489void f2fs_balance_fs(struct f2fs_sb_info *sbi, bool need)
490{
491 if (time_to_inject(sbi, FAULT_CHECKPOINT)) {
Olivier Deprez0e641232021-09-23 10:07:05 +0200492 f2fs_show_injection_info(sbi, FAULT_CHECKPOINT);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000493 f2fs_stop_checkpoint(sbi, false);
494 }
495
496 /* balance_fs_bg is able to be pending */
497 if (need && excess_cached_nats(sbi))
498 f2fs_balance_fs_bg(sbi);
499
David Brazdil0f672f62019-12-10 10:32:29 +0000500 if (!f2fs_is_checkpoint_ready(sbi))
501 return;
502
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000503 /*
504 * We should do GC or end up with checkpoint, if there are so many dirty
505 * dir/node pages without enough free segments.
506 */
507 if (has_not_enough_free_secs(sbi, 0, 0)) {
508 mutex_lock(&sbi->gc_mutex);
509 f2fs_gc(sbi, false, false, NULL_SEGNO);
510 }
511}
512
513void f2fs_balance_fs_bg(struct f2fs_sb_info *sbi)
514{
515 if (unlikely(is_sbi_flag_set(sbi, SBI_POR_DOING)))
516 return;
517
518 /* try to shrink extent cache when there is no enough memory */
519 if (!f2fs_available_free_memory(sbi, EXTENT_CACHE))
520 f2fs_shrink_extent_tree(sbi, EXTENT_CACHE_SHRINK_NUMBER);
521
522 /* check the # of cached NAT entries */
523 if (!f2fs_available_free_memory(sbi, NAT_ENTRIES))
524 f2fs_try_to_free_nats(sbi, NAT_ENTRY_PER_BLOCK);
525
526 if (!f2fs_available_free_memory(sbi, FREE_NIDS))
527 f2fs_try_to_free_nids(sbi, MAX_FREE_NIDS);
528 else
529 f2fs_build_free_nids(sbi, false, false);
530
David Brazdil0f672f62019-12-10 10:32:29 +0000531 if (!is_idle(sbi, REQ_TIME) &&
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000532 (!excess_dirty_nats(sbi) && !excess_dirty_nodes(sbi)))
533 return;
534
535 /* checkpoint is the only way to shrink partial cached entries */
536 if (!f2fs_available_free_memory(sbi, NAT_ENTRIES) ||
537 !f2fs_available_free_memory(sbi, INO_ENTRIES) ||
538 excess_prefree_segs(sbi) ||
539 excess_dirty_nats(sbi) ||
540 excess_dirty_nodes(sbi) ||
541 f2fs_time_over(sbi, CP_TIME)) {
542 if (test_opt(sbi, DATA_FLUSH)) {
543 struct blk_plug plug;
544
David Brazdil0f672f62019-12-10 10:32:29 +0000545 mutex_lock(&sbi->flush_lock);
546
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000547 blk_start_plug(&plug);
548 f2fs_sync_dirty_inodes(sbi, FILE_INODE);
549 blk_finish_plug(&plug);
David Brazdil0f672f62019-12-10 10:32:29 +0000550
551 mutex_unlock(&sbi->flush_lock);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000552 }
553 f2fs_sync_fs(sbi->sb, true);
554 stat_inc_bg_cp_count(sbi->stat_info);
555 }
556}
557
558static int __submit_flush_wait(struct f2fs_sb_info *sbi,
559 struct block_device *bdev)
560{
David Brazdil0f672f62019-12-10 10:32:29 +0000561 struct bio *bio;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000562 int ret;
563
David Brazdil0f672f62019-12-10 10:32:29 +0000564 bio = f2fs_bio_alloc(sbi, 0, false);
565 if (!bio)
566 return -ENOMEM;
567
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000568 bio->bi_opf = REQ_OP_WRITE | REQ_SYNC | REQ_PREFLUSH;
569 bio_set_dev(bio, bdev);
570 ret = submit_bio_wait(bio);
571 bio_put(bio);
572
573 trace_f2fs_issue_flush(bdev, test_opt(sbi, NOBARRIER),
574 test_opt(sbi, FLUSH_MERGE), ret);
575 return ret;
576}
577
578static int submit_flush_wait(struct f2fs_sb_info *sbi, nid_t ino)
579{
580 int ret = 0;
581 int i;
582
David Brazdil0f672f62019-12-10 10:32:29 +0000583 if (!f2fs_is_multi_device(sbi))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000584 return __submit_flush_wait(sbi, sbi->sb->s_bdev);
585
586 for (i = 0; i < sbi->s_ndevs; i++) {
587 if (!f2fs_is_dirty_device(sbi, ino, i, FLUSH_INO))
588 continue;
589 ret = __submit_flush_wait(sbi, FDEV(i).bdev);
590 if (ret)
591 break;
592 }
593 return ret;
594}
595
596static int issue_flush_thread(void *data)
597{
598 struct f2fs_sb_info *sbi = data;
599 struct flush_cmd_control *fcc = SM_I(sbi)->fcc_info;
600 wait_queue_head_t *q = &fcc->flush_wait_queue;
601repeat:
602 if (kthread_should_stop())
603 return 0;
604
605 sb_start_intwrite(sbi->sb);
606
607 if (!llist_empty(&fcc->issue_list)) {
608 struct flush_cmd *cmd, *next;
609 int ret;
610
611 fcc->dispatch_list = llist_del_all(&fcc->issue_list);
612 fcc->dispatch_list = llist_reverse_order(fcc->dispatch_list);
613
614 cmd = llist_entry(fcc->dispatch_list, struct flush_cmd, llnode);
615
616 ret = submit_flush_wait(sbi, cmd->ino);
617 atomic_inc(&fcc->issued_flush);
618
619 llist_for_each_entry_safe(cmd, next,
620 fcc->dispatch_list, llnode) {
621 cmd->ret = ret;
622 complete(&cmd->wait);
623 }
624 fcc->dispatch_list = NULL;
625 }
626
627 sb_end_intwrite(sbi->sb);
628
629 wait_event_interruptible(*q,
630 kthread_should_stop() || !llist_empty(&fcc->issue_list));
631 goto repeat;
632}
633
634int f2fs_issue_flush(struct f2fs_sb_info *sbi, nid_t ino)
635{
636 struct flush_cmd_control *fcc = SM_I(sbi)->fcc_info;
637 struct flush_cmd cmd;
638 int ret;
639
640 if (test_opt(sbi, NOBARRIER))
641 return 0;
642
643 if (!test_opt(sbi, FLUSH_MERGE)) {
David Brazdil0f672f62019-12-10 10:32:29 +0000644 atomic_inc(&fcc->queued_flush);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000645 ret = submit_flush_wait(sbi, ino);
David Brazdil0f672f62019-12-10 10:32:29 +0000646 atomic_dec(&fcc->queued_flush);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000647 atomic_inc(&fcc->issued_flush);
648 return ret;
649 }
650
David Brazdil0f672f62019-12-10 10:32:29 +0000651 if (atomic_inc_return(&fcc->queued_flush) == 1 ||
652 f2fs_is_multi_device(sbi)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000653 ret = submit_flush_wait(sbi, ino);
David Brazdil0f672f62019-12-10 10:32:29 +0000654 atomic_dec(&fcc->queued_flush);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000655
656 atomic_inc(&fcc->issued_flush);
657 return ret;
658 }
659
660 cmd.ino = ino;
661 init_completion(&cmd.wait);
662
663 llist_add(&cmd.llnode, &fcc->issue_list);
664
665 /* update issue_list before we wake up issue_flush thread */
666 smp_mb();
667
668 if (waitqueue_active(&fcc->flush_wait_queue))
669 wake_up(&fcc->flush_wait_queue);
670
671 if (fcc->f2fs_issue_flush) {
672 wait_for_completion(&cmd.wait);
David Brazdil0f672f62019-12-10 10:32:29 +0000673 atomic_dec(&fcc->queued_flush);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000674 } else {
675 struct llist_node *list;
676
677 list = llist_del_all(&fcc->issue_list);
678 if (!list) {
679 wait_for_completion(&cmd.wait);
David Brazdil0f672f62019-12-10 10:32:29 +0000680 atomic_dec(&fcc->queued_flush);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000681 } else {
682 struct flush_cmd *tmp, *next;
683
684 ret = submit_flush_wait(sbi, ino);
685
686 llist_for_each_entry_safe(tmp, next, list, llnode) {
687 if (tmp == &cmd) {
688 cmd.ret = ret;
David Brazdil0f672f62019-12-10 10:32:29 +0000689 atomic_dec(&fcc->queued_flush);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000690 continue;
691 }
692 tmp->ret = ret;
693 complete(&tmp->wait);
694 }
695 }
696 }
697
698 return cmd.ret;
699}
700
701int f2fs_create_flush_cmd_control(struct f2fs_sb_info *sbi)
702{
703 dev_t dev = sbi->sb->s_bdev->bd_dev;
704 struct flush_cmd_control *fcc;
705 int err = 0;
706
707 if (SM_I(sbi)->fcc_info) {
708 fcc = SM_I(sbi)->fcc_info;
709 if (fcc->f2fs_issue_flush)
710 return err;
711 goto init_thread;
712 }
713
714 fcc = f2fs_kzalloc(sbi, sizeof(struct flush_cmd_control), GFP_KERNEL);
715 if (!fcc)
716 return -ENOMEM;
717 atomic_set(&fcc->issued_flush, 0);
David Brazdil0f672f62019-12-10 10:32:29 +0000718 atomic_set(&fcc->queued_flush, 0);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000719 init_waitqueue_head(&fcc->flush_wait_queue);
720 init_llist_head(&fcc->issue_list);
721 SM_I(sbi)->fcc_info = fcc;
722 if (!test_opt(sbi, FLUSH_MERGE))
723 return err;
724
725init_thread:
726 fcc->f2fs_issue_flush = kthread_run(issue_flush_thread, sbi,
727 "f2fs_flush-%u:%u", MAJOR(dev), MINOR(dev));
728 if (IS_ERR(fcc->f2fs_issue_flush)) {
729 err = PTR_ERR(fcc->f2fs_issue_flush);
David Brazdil0f672f62019-12-10 10:32:29 +0000730 kvfree(fcc);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000731 SM_I(sbi)->fcc_info = NULL;
732 return err;
733 }
734
735 return err;
736}
737
738void f2fs_destroy_flush_cmd_control(struct f2fs_sb_info *sbi, bool free)
739{
740 struct flush_cmd_control *fcc = SM_I(sbi)->fcc_info;
741
742 if (fcc && fcc->f2fs_issue_flush) {
743 struct task_struct *flush_thread = fcc->f2fs_issue_flush;
744
745 fcc->f2fs_issue_flush = NULL;
746 kthread_stop(flush_thread);
747 }
748 if (free) {
David Brazdil0f672f62019-12-10 10:32:29 +0000749 kvfree(fcc);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000750 SM_I(sbi)->fcc_info = NULL;
751 }
752}
753
754int f2fs_flush_device_cache(struct f2fs_sb_info *sbi)
755{
756 int ret = 0, i;
757
David Brazdil0f672f62019-12-10 10:32:29 +0000758 if (!f2fs_is_multi_device(sbi))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000759 return 0;
760
761 for (i = 1; i < sbi->s_ndevs; i++) {
762 if (!f2fs_test_bit(i, (char *)&sbi->dirty_device))
763 continue;
764 ret = __submit_flush_wait(sbi, FDEV(i).bdev);
765 if (ret)
766 break;
767
768 spin_lock(&sbi->dev_lock);
769 f2fs_clear_bit(i, (char *)&sbi->dirty_device);
770 spin_unlock(&sbi->dev_lock);
771 }
772
773 return ret;
774}
775
776static void __locate_dirty_segment(struct f2fs_sb_info *sbi, unsigned int segno,
777 enum dirty_type dirty_type)
778{
779 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
780
781 /* need not be added */
782 if (IS_CURSEG(sbi, segno))
783 return;
784
785 if (!test_and_set_bit(segno, dirty_i->dirty_segmap[dirty_type]))
786 dirty_i->nr_dirty[dirty_type]++;
787
788 if (dirty_type == DIRTY) {
789 struct seg_entry *sentry = get_seg_entry(sbi, segno);
790 enum dirty_type t = sentry->type;
791
792 if (unlikely(t >= DIRTY)) {
793 f2fs_bug_on(sbi, 1);
794 return;
795 }
796 if (!test_and_set_bit(segno, dirty_i->dirty_segmap[t]))
797 dirty_i->nr_dirty[t]++;
798 }
799}
800
801static void __remove_dirty_segment(struct f2fs_sb_info *sbi, unsigned int segno,
802 enum dirty_type dirty_type)
803{
804 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
805
806 if (test_and_clear_bit(segno, dirty_i->dirty_segmap[dirty_type]))
807 dirty_i->nr_dirty[dirty_type]--;
808
809 if (dirty_type == DIRTY) {
810 struct seg_entry *sentry = get_seg_entry(sbi, segno);
811 enum dirty_type t = sentry->type;
812
813 if (test_and_clear_bit(segno, dirty_i->dirty_segmap[t]))
814 dirty_i->nr_dirty[t]--;
815
David Brazdil0f672f62019-12-10 10:32:29 +0000816 if (get_valid_blocks(sbi, segno, true) == 0) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000817 clear_bit(GET_SEC_FROM_SEG(sbi, segno),
818 dirty_i->victim_secmap);
David Brazdil0f672f62019-12-10 10:32:29 +0000819#ifdef CONFIG_F2FS_CHECK_FS
820 clear_bit(segno, SIT_I(sbi)->invalid_segmap);
821#endif
822 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000823 }
824}
825
826/*
827 * Should not occur error such as -ENOMEM.
828 * Adding dirty entry into seglist is not critical operation.
829 * If a given segment is one of current working segments, it won't be added.
830 */
831static void locate_dirty_segment(struct f2fs_sb_info *sbi, unsigned int segno)
832{
833 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
David Brazdil0f672f62019-12-10 10:32:29 +0000834 unsigned short valid_blocks, ckpt_valid_blocks;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000835
836 if (segno == NULL_SEGNO || IS_CURSEG(sbi, segno))
837 return;
838
839 mutex_lock(&dirty_i->seglist_lock);
840
841 valid_blocks = get_valid_blocks(sbi, segno, false);
David Brazdil0f672f62019-12-10 10:32:29 +0000842 ckpt_valid_blocks = get_ckpt_valid_blocks(sbi, segno);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000843
David Brazdil0f672f62019-12-10 10:32:29 +0000844 if (valid_blocks == 0 && (!is_sbi_flag_set(sbi, SBI_CP_DISABLED) ||
845 ckpt_valid_blocks == sbi->blocks_per_seg)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000846 __locate_dirty_segment(sbi, segno, PRE);
847 __remove_dirty_segment(sbi, segno, DIRTY);
848 } else if (valid_blocks < sbi->blocks_per_seg) {
849 __locate_dirty_segment(sbi, segno, DIRTY);
850 } else {
851 /* Recovery routine with SSR needs this */
852 __remove_dirty_segment(sbi, segno, DIRTY);
853 }
854
855 mutex_unlock(&dirty_i->seglist_lock);
856}
857
David Brazdil0f672f62019-12-10 10:32:29 +0000858/* This moves currently empty dirty blocks to prefree. Must hold seglist_lock */
859void f2fs_dirty_to_prefree(struct f2fs_sb_info *sbi)
860{
861 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
862 unsigned int segno;
863
864 mutex_lock(&dirty_i->seglist_lock);
865 for_each_set_bit(segno, dirty_i->dirty_segmap[DIRTY], MAIN_SEGS(sbi)) {
866 if (get_valid_blocks(sbi, segno, false))
867 continue;
868 if (IS_CURSEG(sbi, segno))
869 continue;
870 __locate_dirty_segment(sbi, segno, PRE);
871 __remove_dirty_segment(sbi, segno, DIRTY);
872 }
873 mutex_unlock(&dirty_i->seglist_lock);
874}
875
876block_t f2fs_get_unusable_blocks(struct f2fs_sb_info *sbi)
877{
878 int ovp_hole_segs =
879 (overprovision_segments(sbi) - reserved_segments(sbi));
880 block_t ovp_holes = ovp_hole_segs << sbi->log_blocks_per_seg;
881 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
882 block_t holes[2] = {0, 0}; /* DATA and NODE */
883 block_t unusable;
884 struct seg_entry *se;
885 unsigned int segno;
886
887 mutex_lock(&dirty_i->seglist_lock);
888 for_each_set_bit(segno, dirty_i->dirty_segmap[DIRTY], MAIN_SEGS(sbi)) {
889 se = get_seg_entry(sbi, segno);
890 if (IS_NODESEG(se->type))
891 holes[NODE] += sbi->blocks_per_seg - se->valid_blocks;
892 else
893 holes[DATA] += sbi->blocks_per_seg - se->valid_blocks;
894 }
895 mutex_unlock(&dirty_i->seglist_lock);
896
897 unusable = holes[DATA] > holes[NODE] ? holes[DATA] : holes[NODE];
898 if (unusable > ovp_holes)
899 return unusable - ovp_holes;
900 return 0;
901}
902
903int f2fs_disable_cp_again(struct f2fs_sb_info *sbi, block_t unusable)
904{
905 int ovp_hole_segs =
906 (overprovision_segments(sbi) - reserved_segments(sbi));
907 if (unusable > F2FS_OPTION(sbi).unusable_cap)
908 return -EAGAIN;
909 if (is_sbi_flag_set(sbi, SBI_CP_DISABLED_QUICK) &&
910 dirty_segments(sbi) > ovp_hole_segs)
911 return -EAGAIN;
912 return 0;
913}
914
915/* This is only used by SBI_CP_DISABLED */
916static unsigned int get_free_segment(struct f2fs_sb_info *sbi)
917{
918 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
919 unsigned int segno = 0;
920
921 mutex_lock(&dirty_i->seglist_lock);
922 for_each_set_bit(segno, dirty_i->dirty_segmap[DIRTY], MAIN_SEGS(sbi)) {
923 if (get_valid_blocks(sbi, segno, false))
924 continue;
925 if (get_ckpt_valid_blocks(sbi, segno))
926 continue;
927 mutex_unlock(&dirty_i->seglist_lock);
928 return segno;
929 }
930 mutex_unlock(&dirty_i->seglist_lock);
931 return NULL_SEGNO;
932}
933
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000934static struct discard_cmd *__create_discard_cmd(struct f2fs_sb_info *sbi,
935 struct block_device *bdev, block_t lstart,
936 block_t start, block_t len)
937{
938 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
939 struct list_head *pend_list;
940 struct discard_cmd *dc;
941
942 f2fs_bug_on(sbi, !len);
943
944 pend_list = &dcc->pend_list[plist_idx(len)];
945
946 dc = f2fs_kmem_cache_alloc(discard_cmd_slab, GFP_NOFS);
947 INIT_LIST_HEAD(&dc->list);
948 dc->bdev = bdev;
949 dc->lstart = lstart;
950 dc->start = start;
951 dc->len = len;
952 dc->ref = 0;
953 dc->state = D_PREP;
David Brazdil0f672f62019-12-10 10:32:29 +0000954 dc->queued = 0;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000955 dc->error = 0;
956 init_completion(&dc->wait);
957 list_add_tail(&dc->list, pend_list);
958 spin_lock_init(&dc->lock);
959 dc->bio_ref = 0;
960 atomic_inc(&dcc->discard_cmd_cnt);
961 dcc->undiscard_blks += len;
962
963 return dc;
964}
965
966static struct discard_cmd *__attach_discard_cmd(struct f2fs_sb_info *sbi,
967 struct block_device *bdev, block_t lstart,
968 block_t start, block_t len,
David Brazdil0f672f62019-12-10 10:32:29 +0000969 struct rb_node *parent, struct rb_node **p,
970 bool leftmost)
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000971{
972 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
973 struct discard_cmd *dc;
974
975 dc = __create_discard_cmd(sbi, bdev, lstart, start, len);
976
977 rb_link_node(&dc->rb_node, parent, p);
David Brazdil0f672f62019-12-10 10:32:29 +0000978 rb_insert_color_cached(&dc->rb_node, &dcc->root, leftmost);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000979
980 return dc;
981}
982
983static void __detach_discard_cmd(struct discard_cmd_control *dcc,
984 struct discard_cmd *dc)
985{
986 if (dc->state == D_DONE)
David Brazdil0f672f62019-12-10 10:32:29 +0000987 atomic_sub(dc->queued, &dcc->queued_discard);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000988
989 list_del(&dc->list);
David Brazdil0f672f62019-12-10 10:32:29 +0000990 rb_erase_cached(&dc->rb_node, &dcc->root);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000991 dcc->undiscard_blks -= dc->len;
992
993 kmem_cache_free(discard_cmd_slab, dc);
994
995 atomic_dec(&dcc->discard_cmd_cnt);
996}
997
998static void __remove_discard_cmd(struct f2fs_sb_info *sbi,
999 struct discard_cmd *dc)
1000{
1001 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1002 unsigned long flags;
1003
1004 trace_f2fs_remove_discard(dc->bdev, dc->start, dc->len);
1005
1006 spin_lock_irqsave(&dc->lock, flags);
1007 if (dc->bio_ref) {
1008 spin_unlock_irqrestore(&dc->lock, flags);
1009 return;
1010 }
1011 spin_unlock_irqrestore(&dc->lock, flags);
1012
1013 f2fs_bug_on(sbi, dc->ref);
1014
1015 if (dc->error == -EOPNOTSUPP)
1016 dc->error = 0;
1017
1018 if (dc->error)
David Brazdil0f672f62019-12-10 10:32:29 +00001019 printk_ratelimited(
Olivier Deprez0e641232021-09-23 10:07:05 +02001020 "%sF2FS-fs (%s): Issue discard(%u, %u, %u) failed, ret: %d",
1021 KERN_INFO, sbi->sb->s_id,
1022 dc->lstart, dc->start, dc->len, dc->error);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001023 __detach_discard_cmd(dcc, dc);
1024}
1025
1026static void f2fs_submit_discard_endio(struct bio *bio)
1027{
1028 struct discard_cmd *dc = (struct discard_cmd *)bio->bi_private;
1029 unsigned long flags;
1030
1031 dc->error = blk_status_to_errno(bio->bi_status);
1032
1033 spin_lock_irqsave(&dc->lock, flags);
1034 dc->bio_ref--;
1035 if (!dc->bio_ref && dc->state == D_SUBMIT) {
1036 dc->state = D_DONE;
1037 complete_all(&dc->wait);
1038 }
1039 spin_unlock_irqrestore(&dc->lock, flags);
1040 bio_put(bio);
1041}
1042
1043static void __check_sit_bitmap(struct f2fs_sb_info *sbi,
1044 block_t start, block_t end)
1045{
1046#ifdef CONFIG_F2FS_CHECK_FS
1047 struct seg_entry *sentry;
1048 unsigned int segno;
1049 block_t blk = start;
1050 unsigned long offset, size, max_blocks = sbi->blocks_per_seg;
1051 unsigned long *map;
1052
1053 while (blk < end) {
1054 segno = GET_SEGNO(sbi, blk);
1055 sentry = get_seg_entry(sbi, segno);
1056 offset = GET_BLKOFF_FROM_SEG0(sbi, blk);
1057
1058 if (end < START_BLOCK(sbi, segno + 1))
1059 size = GET_BLKOFF_FROM_SEG0(sbi, end);
1060 else
1061 size = max_blocks;
1062 map = (unsigned long *)(sentry->cur_valid_map);
1063 offset = __find_rev_next_bit(map, size, offset);
1064 f2fs_bug_on(sbi, offset != size);
1065 blk = START_BLOCK(sbi, segno + 1);
1066 }
1067#endif
1068}
1069
1070static void __init_discard_policy(struct f2fs_sb_info *sbi,
1071 struct discard_policy *dpolicy,
1072 int discard_type, unsigned int granularity)
1073{
1074 /* common policy */
1075 dpolicy->type = discard_type;
1076 dpolicy->sync = true;
1077 dpolicy->ordered = false;
1078 dpolicy->granularity = granularity;
1079
1080 dpolicy->max_requests = DEF_MAX_DISCARD_REQUEST;
1081 dpolicy->io_aware_gran = MAX_PLIST_NUM;
David Brazdil0f672f62019-12-10 10:32:29 +00001082 dpolicy->timeout = 0;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001083
1084 if (discard_type == DPOLICY_BG) {
1085 dpolicy->min_interval = DEF_MIN_DISCARD_ISSUE_TIME;
1086 dpolicy->mid_interval = DEF_MID_DISCARD_ISSUE_TIME;
1087 dpolicy->max_interval = DEF_MAX_DISCARD_ISSUE_TIME;
1088 dpolicy->io_aware = true;
1089 dpolicy->sync = false;
1090 dpolicy->ordered = true;
1091 if (utilization(sbi) > DEF_DISCARD_URGENT_UTIL) {
1092 dpolicy->granularity = 1;
1093 dpolicy->max_interval = DEF_MIN_DISCARD_ISSUE_TIME;
1094 }
1095 } else if (discard_type == DPOLICY_FORCE) {
1096 dpolicy->min_interval = DEF_MIN_DISCARD_ISSUE_TIME;
1097 dpolicy->mid_interval = DEF_MID_DISCARD_ISSUE_TIME;
1098 dpolicy->max_interval = DEF_MAX_DISCARD_ISSUE_TIME;
1099 dpolicy->io_aware = false;
1100 } else if (discard_type == DPOLICY_FSTRIM) {
1101 dpolicy->io_aware = false;
1102 } else if (discard_type == DPOLICY_UMOUNT) {
1103 dpolicy->max_requests = UINT_MAX;
1104 dpolicy->io_aware = false;
David Brazdil0f672f62019-12-10 10:32:29 +00001105 /* we need to issue all to keep CP_TRIMMED_FLAG */
1106 dpolicy->granularity = 1;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001107 }
1108}
1109
1110static void __update_discard_tree_range(struct f2fs_sb_info *sbi,
1111 struct block_device *bdev, block_t lstart,
1112 block_t start, block_t len);
1113/* this function is copied from blkdev_issue_discard from block/blk-lib.c */
1114static int __submit_discard_cmd(struct f2fs_sb_info *sbi,
1115 struct discard_policy *dpolicy,
1116 struct discard_cmd *dc,
1117 unsigned int *issued)
1118{
1119 struct block_device *bdev = dc->bdev;
1120 struct request_queue *q = bdev_get_queue(bdev);
1121 unsigned int max_discard_blocks =
1122 SECTOR_TO_BLOCK(q->limits.max_discard_sectors);
1123 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1124 struct list_head *wait_list = (dpolicy->type == DPOLICY_FSTRIM) ?
1125 &(dcc->fstrim_list) : &(dcc->wait_list);
1126 int flag = dpolicy->sync ? REQ_SYNC : 0;
1127 block_t lstart, start, len, total_len;
1128 int err = 0;
1129
1130 if (dc->state != D_PREP)
1131 return 0;
1132
1133 if (is_sbi_flag_set(sbi, SBI_NEED_FSCK))
1134 return 0;
1135
1136 trace_f2fs_issue_discard(bdev, dc->start, dc->len);
1137
1138 lstart = dc->lstart;
1139 start = dc->start;
1140 len = dc->len;
1141 total_len = len;
1142
1143 dc->len = 0;
1144
1145 while (total_len && *issued < dpolicy->max_requests && !err) {
1146 struct bio *bio = NULL;
1147 unsigned long flags;
1148 bool last = true;
1149
1150 if (len > max_discard_blocks) {
1151 len = max_discard_blocks;
1152 last = false;
1153 }
1154
1155 (*issued)++;
1156 if (*issued == dpolicy->max_requests)
1157 last = true;
1158
1159 dc->len += len;
1160
1161 if (time_to_inject(sbi, FAULT_DISCARD)) {
Olivier Deprez0e641232021-09-23 10:07:05 +02001162 f2fs_show_injection_info(sbi, FAULT_DISCARD);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001163 err = -EIO;
1164 goto submit;
1165 }
1166 err = __blkdev_issue_discard(bdev,
1167 SECTOR_FROM_BLOCK(start),
1168 SECTOR_FROM_BLOCK(len),
1169 GFP_NOFS, 0, &bio);
1170submit:
1171 if (err) {
1172 spin_lock_irqsave(&dc->lock, flags);
1173 if (dc->state == D_PARTIAL)
1174 dc->state = D_SUBMIT;
1175 spin_unlock_irqrestore(&dc->lock, flags);
1176
1177 break;
1178 }
1179
1180 f2fs_bug_on(sbi, !bio);
1181
1182 /*
1183 * should keep before submission to avoid D_DONE
1184 * right away
1185 */
1186 spin_lock_irqsave(&dc->lock, flags);
1187 if (last)
1188 dc->state = D_SUBMIT;
1189 else
1190 dc->state = D_PARTIAL;
1191 dc->bio_ref++;
1192 spin_unlock_irqrestore(&dc->lock, flags);
1193
David Brazdil0f672f62019-12-10 10:32:29 +00001194 atomic_inc(&dcc->queued_discard);
1195 dc->queued++;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001196 list_move_tail(&dc->list, wait_list);
1197
1198 /* sanity check on discard range */
David Brazdil0f672f62019-12-10 10:32:29 +00001199 __check_sit_bitmap(sbi, lstart, lstart + len);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001200
1201 bio->bi_private = dc;
1202 bio->bi_end_io = f2fs_submit_discard_endio;
1203 bio->bi_opf |= flag;
1204 submit_bio(bio);
1205
1206 atomic_inc(&dcc->issued_discard);
1207
1208 f2fs_update_iostat(sbi, FS_DISCARD, 1);
1209
1210 lstart += len;
1211 start += len;
1212 total_len -= len;
1213 len = total_len;
1214 }
1215
1216 if (!err && len)
1217 __update_discard_tree_range(sbi, bdev, lstart, start, len);
1218 return err;
1219}
1220
1221static struct discard_cmd *__insert_discard_tree(struct f2fs_sb_info *sbi,
1222 struct block_device *bdev, block_t lstart,
1223 block_t start, block_t len,
1224 struct rb_node **insert_p,
1225 struct rb_node *insert_parent)
1226{
1227 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1228 struct rb_node **p;
1229 struct rb_node *parent = NULL;
1230 struct discard_cmd *dc = NULL;
David Brazdil0f672f62019-12-10 10:32:29 +00001231 bool leftmost = true;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001232
1233 if (insert_p && insert_parent) {
1234 parent = insert_parent;
1235 p = insert_p;
1236 goto do_insert;
1237 }
1238
David Brazdil0f672f62019-12-10 10:32:29 +00001239 p = f2fs_lookup_rb_tree_for_insert(sbi, &dcc->root, &parent,
1240 lstart, &leftmost);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001241do_insert:
David Brazdil0f672f62019-12-10 10:32:29 +00001242 dc = __attach_discard_cmd(sbi, bdev, lstart, start, len, parent,
1243 p, leftmost);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001244 if (!dc)
1245 return NULL;
1246
1247 return dc;
1248}
1249
1250static void __relocate_discard_cmd(struct discard_cmd_control *dcc,
1251 struct discard_cmd *dc)
1252{
1253 list_move_tail(&dc->list, &dcc->pend_list[plist_idx(dc->len)]);
1254}
1255
1256static void __punch_discard_cmd(struct f2fs_sb_info *sbi,
1257 struct discard_cmd *dc, block_t blkaddr)
1258{
1259 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1260 struct discard_info di = dc->di;
1261 bool modified = false;
1262
1263 if (dc->state == D_DONE || dc->len == 1) {
1264 __remove_discard_cmd(sbi, dc);
1265 return;
1266 }
1267
1268 dcc->undiscard_blks -= di.len;
1269
1270 if (blkaddr > di.lstart) {
1271 dc->len = blkaddr - dc->lstart;
1272 dcc->undiscard_blks += dc->len;
1273 __relocate_discard_cmd(dcc, dc);
1274 modified = true;
1275 }
1276
1277 if (blkaddr < di.lstart + di.len - 1) {
1278 if (modified) {
1279 __insert_discard_tree(sbi, dc->bdev, blkaddr + 1,
1280 di.start + blkaddr + 1 - di.lstart,
1281 di.lstart + di.len - 1 - blkaddr,
1282 NULL, NULL);
1283 } else {
1284 dc->lstart++;
1285 dc->len--;
1286 dc->start++;
1287 dcc->undiscard_blks += dc->len;
1288 __relocate_discard_cmd(dcc, dc);
1289 }
1290 }
1291}
1292
1293static void __update_discard_tree_range(struct f2fs_sb_info *sbi,
1294 struct block_device *bdev, block_t lstart,
1295 block_t start, block_t len)
1296{
1297 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1298 struct discard_cmd *prev_dc = NULL, *next_dc = NULL;
1299 struct discard_cmd *dc;
1300 struct discard_info di = {0};
1301 struct rb_node **insert_p = NULL, *insert_parent = NULL;
1302 struct request_queue *q = bdev_get_queue(bdev);
1303 unsigned int max_discard_blocks =
1304 SECTOR_TO_BLOCK(q->limits.max_discard_sectors);
1305 block_t end = lstart + len;
1306
1307 dc = (struct discard_cmd *)f2fs_lookup_rb_tree_ret(&dcc->root,
1308 NULL, lstart,
1309 (struct rb_entry **)&prev_dc,
1310 (struct rb_entry **)&next_dc,
David Brazdil0f672f62019-12-10 10:32:29 +00001311 &insert_p, &insert_parent, true, NULL);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001312 if (dc)
1313 prev_dc = dc;
1314
1315 if (!prev_dc) {
1316 di.lstart = lstart;
1317 di.len = next_dc ? next_dc->lstart - lstart : len;
1318 di.len = min(di.len, len);
1319 di.start = start;
1320 }
1321
1322 while (1) {
1323 struct rb_node *node;
1324 bool merged = false;
1325 struct discard_cmd *tdc = NULL;
1326
1327 if (prev_dc) {
1328 di.lstart = prev_dc->lstart + prev_dc->len;
1329 if (di.lstart < lstart)
1330 di.lstart = lstart;
1331 if (di.lstart >= end)
1332 break;
1333
1334 if (!next_dc || next_dc->lstart > end)
1335 di.len = end - di.lstart;
1336 else
1337 di.len = next_dc->lstart - di.lstart;
1338 di.start = start + di.lstart - lstart;
1339 }
1340
1341 if (!di.len)
1342 goto next;
1343
1344 if (prev_dc && prev_dc->state == D_PREP &&
1345 prev_dc->bdev == bdev &&
1346 __is_discard_back_mergeable(&di, &prev_dc->di,
1347 max_discard_blocks)) {
1348 prev_dc->di.len += di.len;
1349 dcc->undiscard_blks += di.len;
1350 __relocate_discard_cmd(dcc, prev_dc);
1351 di = prev_dc->di;
1352 tdc = prev_dc;
1353 merged = true;
1354 }
1355
1356 if (next_dc && next_dc->state == D_PREP &&
1357 next_dc->bdev == bdev &&
1358 __is_discard_front_mergeable(&di, &next_dc->di,
1359 max_discard_blocks)) {
1360 next_dc->di.lstart = di.lstart;
1361 next_dc->di.len += di.len;
1362 next_dc->di.start = di.start;
1363 dcc->undiscard_blks += di.len;
1364 __relocate_discard_cmd(dcc, next_dc);
1365 if (tdc)
1366 __remove_discard_cmd(sbi, tdc);
1367 merged = true;
1368 }
1369
1370 if (!merged) {
1371 __insert_discard_tree(sbi, bdev, di.lstart, di.start,
1372 di.len, NULL, NULL);
1373 }
1374 next:
1375 prev_dc = next_dc;
1376 if (!prev_dc)
1377 break;
1378
1379 node = rb_next(&prev_dc->rb_node);
1380 next_dc = rb_entry_safe(node, struct discard_cmd, rb_node);
1381 }
1382}
1383
1384static int __queue_discard_cmd(struct f2fs_sb_info *sbi,
1385 struct block_device *bdev, block_t blkstart, block_t blklen)
1386{
1387 block_t lblkstart = blkstart;
1388
David Brazdil0f672f62019-12-10 10:32:29 +00001389 if (!f2fs_bdev_support_discard(bdev))
1390 return 0;
1391
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001392 trace_f2fs_queue_discard(bdev, blkstart, blklen);
1393
David Brazdil0f672f62019-12-10 10:32:29 +00001394 if (f2fs_is_multi_device(sbi)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001395 int devi = f2fs_target_device_index(sbi, blkstart);
1396
1397 blkstart -= FDEV(devi).start_blk;
1398 }
1399 mutex_lock(&SM_I(sbi)->dcc_info->cmd_lock);
1400 __update_discard_tree_range(sbi, bdev, lblkstart, blkstart, blklen);
1401 mutex_unlock(&SM_I(sbi)->dcc_info->cmd_lock);
1402 return 0;
1403}
1404
1405static unsigned int __issue_discard_cmd_orderly(struct f2fs_sb_info *sbi,
1406 struct discard_policy *dpolicy)
1407{
1408 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1409 struct discard_cmd *prev_dc = NULL, *next_dc = NULL;
1410 struct rb_node **insert_p = NULL, *insert_parent = NULL;
1411 struct discard_cmd *dc;
1412 struct blk_plug plug;
1413 unsigned int pos = dcc->next_pos;
1414 unsigned int issued = 0;
1415 bool io_interrupted = false;
1416
1417 mutex_lock(&dcc->cmd_lock);
1418 dc = (struct discard_cmd *)f2fs_lookup_rb_tree_ret(&dcc->root,
1419 NULL, pos,
1420 (struct rb_entry **)&prev_dc,
1421 (struct rb_entry **)&next_dc,
David Brazdil0f672f62019-12-10 10:32:29 +00001422 &insert_p, &insert_parent, true, NULL);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001423 if (!dc)
1424 dc = next_dc;
1425
1426 blk_start_plug(&plug);
1427
1428 while (dc) {
1429 struct rb_node *node;
1430 int err = 0;
1431
1432 if (dc->state != D_PREP)
1433 goto next;
1434
David Brazdil0f672f62019-12-10 10:32:29 +00001435 if (dpolicy->io_aware && !is_idle(sbi, DISCARD_TIME)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001436 io_interrupted = true;
1437 break;
1438 }
1439
1440 dcc->next_pos = dc->lstart + dc->len;
1441 err = __submit_discard_cmd(sbi, dpolicy, dc, &issued);
1442
1443 if (issued >= dpolicy->max_requests)
1444 break;
1445next:
1446 node = rb_next(&dc->rb_node);
1447 if (err)
1448 __remove_discard_cmd(sbi, dc);
1449 dc = rb_entry_safe(node, struct discard_cmd, rb_node);
1450 }
1451
1452 blk_finish_plug(&plug);
1453
1454 if (!dc)
1455 dcc->next_pos = 0;
1456
1457 mutex_unlock(&dcc->cmd_lock);
1458
1459 if (!issued && io_interrupted)
1460 issued = -1;
1461
1462 return issued;
1463}
1464
1465static int __issue_discard_cmd(struct f2fs_sb_info *sbi,
1466 struct discard_policy *dpolicy)
1467{
1468 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1469 struct list_head *pend_list;
1470 struct discard_cmd *dc, *tmp;
1471 struct blk_plug plug;
1472 int i, issued = 0;
1473 bool io_interrupted = false;
1474
David Brazdil0f672f62019-12-10 10:32:29 +00001475 if (dpolicy->timeout != 0)
1476 f2fs_update_time(sbi, dpolicy->timeout);
1477
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001478 for (i = MAX_PLIST_NUM - 1; i >= 0; i--) {
David Brazdil0f672f62019-12-10 10:32:29 +00001479 if (dpolicy->timeout != 0 &&
1480 f2fs_time_over(sbi, dpolicy->timeout))
1481 break;
1482
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001483 if (i + 1 < dpolicy->granularity)
1484 break;
1485
1486 if (i < DEFAULT_DISCARD_GRANULARITY && dpolicy->ordered)
1487 return __issue_discard_cmd_orderly(sbi, dpolicy);
1488
1489 pend_list = &dcc->pend_list[i];
1490
1491 mutex_lock(&dcc->cmd_lock);
1492 if (list_empty(pend_list))
1493 goto next;
1494 if (unlikely(dcc->rbtree_check))
1495 f2fs_bug_on(sbi, !f2fs_check_rb_tree_consistence(sbi,
1496 &dcc->root));
1497 blk_start_plug(&plug);
1498 list_for_each_entry_safe(dc, tmp, pend_list, list) {
1499 f2fs_bug_on(sbi, dc->state != D_PREP);
1500
David Brazdil0f672f62019-12-10 10:32:29 +00001501 if (dpolicy->timeout != 0 &&
1502 f2fs_time_over(sbi, dpolicy->timeout))
1503 break;
1504
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001505 if (dpolicy->io_aware && i < dpolicy->io_aware_gran &&
David Brazdil0f672f62019-12-10 10:32:29 +00001506 !is_idle(sbi, DISCARD_TIME)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001507 io_interrupted = true;
1508 break;
1509 }
1510
1511 __submit_discard_cmd(sbi, dpolicy, dc, &issued);
1512
1513 if (issued >= dpolicy->max_requests)
1514 break;
1515 }
1516 blk_finish_plug(&plug);
1517next:
1518 mutex_unlock(&dcc->cmd_lock);
1519
1520 if (issued >= dpolicy->max_requests || io_interrupted)
1521 break;
1522 }
1523
1524 if (!issued && io_interrupted)
1525 issued = -1;
1526
1527 return issued;
1528}
1529
1530static bool __drop_discard_cmd(struct f2fs_sb_info *sbi)
1531{
1532 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1533 struct list_head *pend_list;
1534 struct discard_cmd *dc, *tmp;
1535 int i;
1536 bool dropped = false;
1537
1538 mutex_lock(&dcc->cmd_lock);
1539 for (i = MAX_PLIST_NUM - 1; i >= 0; i--) {
1540 pend_list = &dcc->pend_list[i];
1541 list_for_each_entry_safe(dc, tmp, pend_list, list) {
1542 f2fs_bug_on(sbi, dc->state != D_PREP);
1543 __remove_discard_cmd(sbi, dc);
1544 dropped = true;
1545 }
1546 }
1547 mutex_unlock(&dcc->cmd_lock);
1548
1549 return dropped;
1550}
1551
1552void f2fs_drop_discard_cmd(struct f2fs_sb_info *sbi)
1553{
1554 __drop_discard_cmd(sbi);
1555}
1556
1557static unsigned int __wait_one_discard_bio(struct f2fs_sb_info *sbi,
1558 struct discard_cmd *dc)
1559{
1560 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1561 unsigned int len = 0;
1562
1563 wait_for_completion_io(&dc->wait);
1564 mutex_lock(&dcc->cmd_lock);
1565 f2fs_bug_on(sbi, dc->state != D_DONE);
1566 dc->ref--;
1567 if (!dc->ref) {
1568 if (!dc->error)
1569 len = dc->len;
1570 __remove_discard_cmd(sbi, dc);
1571 }
1572 mutex_unlock(&dcc->cmd_lock);
1573
1574 return len;
1575}
1576
1577static unsigned int __wait_discard_cmd_range(struct f2fs_sb_info *sbi,
1578 struct discard_policy *dpolicy,
1579 block_t start, block_t end)
1580{
1581 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1582 struct list_head *wait_list = (dpolicy->type == DPOLICY_FSTRIM) ?
1583 &(dcc->fstrim_list) : &(dcc->wait_list);
1584 struct discard_cmd *dc, *tmp;
1585 bool need_wait;
1586 unsigned int trimmed = 0;
1587
1588next:
1589 need_wait = false;
1590
1591 mutex_lock(&dcc->cmd_lock);
1592 list_for_each_entry_safe(dc, tmp, wait_list, list) {
1593 if (dc->lstart + dc->len <= start || end <= dc->lstart)
1594 continue;
1595 if (dc->len < dpolicy->granularity)
1596 continue;
1597 if (dc->state == D_DONE && !dc->ref) {
1598 wait_for_completion_io(&dc->wait);
1599 if (!dc->error)
1600 trimmed += dc->len;
1601 __remove_discard_cmd(sbi, dc);
1602 } else {
1603 dc->ref++;
1604 need_wait = true;
1605 break;
1606 }
1607 }
1608 mutex_unlock(&dcc->cmd_lock);
1609
1610 if (need_wait) {
1611 trimmed += __wait_one_discard_bio(sbi, dc);
1612 goto next;
1613 }
1614
1615 return trimmed;
1616}
1617
1618static unsigned int __wait_all_discard_cmd(struct f2fs_sb_info *sbi,
1619 struct discard_policy *dpolicy)
1620{
1621 struct discard_policy dp;
1622 unsigned int discard_blks;
1623
1624 if (dpolicy)
1625 return __wait_discard_cmd_range(sbi, dpolicy, 0, UINT_MAX);
1626
1627 /* wait all */
1628 __init_discard_policy(sbi, &dp, DPOLICY_FSTRIM, 1);
1629 discard_blks = __wait_discard_cmd_range(sbi, &dp, 0, UINT_MAX);
1630 __init_discard_policy(sbi, &dp, DPOLICY_UMOUNT, 1);
1631 discard_blks += __wait_discard_cmd_range(sbi, &dp, 0, UINT_MAX);
1632
1633 return discard_blks;
1634}
1635
1636/* This should be covered by global mutex, &sit_i->sentry_lock */
1637static void f2fs_wait_discard_bio(struct f2fs_sb_info *sbi, block_t blkaddr)
1638{
1639 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1640 struct discard_cmd *dc;
1641 bool need_wait = false;
1642
1643 mutex_lock(&dcc->cmd_lock);
1644 dc = (struct discard_cmd *)f2fs_lookup_rb_tree(&dcc->root,
1645 NULL, blkaddr);
1646 if (dc) {
1647 if (dc->state == D_PREP) {
1648 __punch_discard_cmd(sbi, dc, blkaddr);
1649 } else {
1650 dc->ref++;
1651 need_wait = true;
1652 }
1653 }
1654 mutex_unlock(&dcc->cmd_lock);
1655
1656 if (need_wait)
1657 __wait_one_discard_bio(sbi, dc);
1658}
1659
1660void f2fs_stop_discard_thread(struct f2fs_sb_info *sbi)
1661{
1662 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1663
1664 if (dcc && dcc->f2fs_issue_discard) {
1665 struct task_struct *discard_thread = dcc->f2fs_issue_discard;
1666
1667 dcc->f2fs_issue_discard = NULL;
1668 kthread_stop(discard_thread);
1669 }
1670}
1671
1672/* This comes from f2fs_put_super */
David Brazdil0f672f62019-12-10 10:32:29 +00001673bool f2fs_issue_discard_timeout(struct f2fs_sb_info *sbi)
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001674{
1675 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1676 struct discard_policy dpolicy;
1677 bool dropped;
1678
1679 __init_discard_policy(sbi, &dpolicy, DPOLICY_UMOUNT,
1680 dcc->discard_granularity);
David Brazdil0f672f62019-12-10 10:32:29 +00001681 dpolicy.timeout = UMOUNT_DISCARD_TIMEOUT;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001682 __issue_discard_cmd(sbi, &dpolicy);
1683 dropped = __drop_discard_cmd(sbi);
1684
1685 /* just to make sure there is no pending discard commands */
1686 __wait_all_discard_cmd(sbi, NULL);
1687
1688 f2fs_bug_on(sbi, atomic_read(&dcc->discard_cmd_cnt));
1689 return dropped;
1690}
1691
1692static int issue_discard_thread(void *data)
1693{
1694 struct f2fs_sb_info *sbi = data;
1695 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1696 wait_queue_head_t *q = &dcc->discard_wait_queue;
1697 struct discard_policy dpolicy;
1698 unsigned int wait_ms = DEF_MIN_DISCARD_ISSUE_TIME;
1699 int issued;
1700
1701 set_freezable();
1702
1703 do {
1704 __init_discard_policy(sbi, &dpolicy, DPOLICY_BG,
1705 dcc->discard_granularity);
1706
1707 wait_event_interruptible_timeout(*q,
1708 kthread_should_stop() || freezing(current) ||
1709 dcc->discard_wake,
1710 msecs_to_jiffies(wait_ms));
1711
1712 if (dcc->discard_wake)
1713 dcc->discard_wake = 0;
1714
David Brazdil0f672f62019-12-10 10:32:29 +00001715 /* clean up pending candidates before going to sleep */
1716 if (atomic_read(&dcc->queued_discard))
1717 __wait_all_discard_cmd(sbi, NULL);
1718
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001719 if (try_to_freeze())
1720 continue;
1721 if (f2fs_readonly(sbi->sb))
1722 continue;
1723 if (kthread_should_stop())
1724 return 0;
1725 if (is_sbi_flag_set(sbi, SBI_NEED_FSCK)) {
1726 wait_ms = dpolicy.max_interval;
1727 continue;
1728 }
1729
1730 if (sbi->gc_mode == GC_URGENT)
1731 __init_discard_policy(sbi, &dpolicy, DPOLICY_FORCE, 1);
1732
1733 sb_start_intwrite(sbi->sb);
1734
1735 issued = __issue_discard_cmd(sbi, &dpolicy);
1736 if (issued > 0) {
1737 __wait_all_discard_cmd(sbi, &dpolicy);
1738 wait_ms = dpolicy.min_interval;
1739 } else if (issued == -1){
David Brazdil0f672f62019-12-10 10:32:29 +00001740 wait_ms = f2fs_time_to_wait(sbi, DISCARD_TIME);
1741 if (!wait_ms)
1742 wait_ms = dpolicy.mid_interval;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001743 } else {
1744 wait_ms = dpolicy.max_interval;
1745 }
1746
1747 sb_end_intwrite(sbi->sb);
1748
1749 } while (!kthread_should_stop());
1750 return 0;
1751}
1752
1753#ifdef CONFIG_BLK_DEV_ZONED
1754static int __f2fs_issue_discard_zone(struct f2fs_sb_info *sbi,
1755 struct block_device *bdev, block_t blkstart, block_t blklen)
1756{
1757 sector_t sector, nr_sects;
1758 block_t lblkstart = blkstart;
1759 int devi = 0;
1760
David Brazdil0f672f62019-12-10 10:32:29 +00001761 if (f2fs_is_multi_device(sbi)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001762 devi = f2fs_target_device_index(sbi, blkstart);
David Brazdil0f672f62019-12-10 10:32:29 +00001763 if (blkstart < FDEV(devi).start_blk ||
1764 blkstart > FDEV(devi).end_blk) {
1765 f2fs_err(sbi, "Invalid block %x", blkstart);
1766 return -EIO;
1767 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001768 blkstart -= FDEV(devi).start_blk;
1769 }
1770
David Brazdil0f672f62019-12-10 10:32:29 +00001771 /* For sequential zones, reset the zone write pointer */
1772 if (f2fs_blkz_is_seq(sbi, devi, blkstart)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001773 sector = SECTOR_FROM_BLOCK(blkstart);
1774 nr_sects = SECTOR_FROM_BLOCK(blklen);
1775
1776 if (sector & (bdev_zone_sectors(bdev) - 1) ||
1777 nr_sects != bdev_zone_sectors(bdev)) {
David Brazdil0f672f62019-12-10 10:32:29 +00001778 f2fs_err(sbi, "(%d) %s: Unaligned zone reset attempted (block %x + %x)",
1779 devi, sbi->s_ndevs ? FDEV(devi).path : "",
1780 blkstart, blklen);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001781 return -EIO;
1782 }
1783 trace_f2fs_issue_reset_zone(bdev, blkstart);
David Brazdil0f672f62019-12-10 10:32:29 +00001784 return blkdev_reset_zones(bdev, sector, nr_sects, GFP_NOFS);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001785 }
David Brazdil0f672f62019-12-10 10:32:29 +00001786
1787 /* For conventional zones, use regular discard if supported */
1788 return __queue_discard_cmd(sbi, bdev, lblkstart, blklen);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001789}
1790#endif
1791
1792static int __issue_discard_async(struct f2fs_sb_info *sbi,
1793 struct block_device *bdev, block_t blkstart, block_t blklen)
1794{
1795#ifdef CONFIG_BLK_DEV_ZONED
David Brazdil0f672f62019-12-10 10:32:29 +00001796 if (f2fs_sb_has_blkzoned(sbi) && bdev_is_zoned(bdev))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001797 return __f2fs_issue_discard_zone(sbi, bdev, blkstart, blklen);
1798#endif
1799 return __queue_discard_cmd(sbi, bdev, blkstart, blklen);
1800}
1801
1802static int f2fs_issue_discard(struct f2fs_sb_info *sbi,
1803 block_t blkstart, block_t blklen)
1804{
1805 sector_t start = blkstart, len = 0;
1806 struct block_device *bdev;
1807 struct seg_entry *se;
1808 unsigned int offset;
1809 block_t i;
1810 int err = 0;
1811
1812 bdev = f2fs_target_device(sbi, blkstart, NULL);
1813
1814 for (i = blkstart; i < blkstart + blklen; i++, len++) {
1815 if (i != start) {
1816 struct block_device *bdev2 =
1817 f2fs_target_device(sbi, i, NULL);
1818
1819 if (bdev2 != bdev) {
1820 err = __issue_discard_async(sbi, bdev,
1821 start, len);
1822 if (err)
1823 return err;
1824 bdev = bdev2;
1825 start = i;
1826 len = 0;
1827 }
1828 }
1829
1830 se = get_seg_entry(sbi, GET_SEGNO(sbi, i));
1831 offset = GET_BLKOFF_FROM_SEG0(sbi, i);
1832
1833 if (!f2fs_test_and_set_bit(offset, se->discard_map))
1834 sbi->discard_blks--;
1835 }
1836
1837 if (len)
1838 err = __issue_discard_async(sbi, bdev, start, len);
1839 return err;
1840}
1841
1842static bool add_discard_addrs(struct f2fs_sb_info *sbi, struct cp_control *cpc,
1843 bool check_only)
1844{
1845 int entries = SIT_VBLOCK_MAP_SIZE / sizeof(unsigned long);
1846 int max_blocks = sbi->blocks_per_seg;
1847 struct seg_entry *se = get_seg_entry(sbi, cpc->trim_start);
1848 unsigned long *cur_map = (unsigned long *)se->cur_valid_map;
1849 unsigned long *ckpt_map = (unsigned long *)se->ckpt_valid_map;
1850 unsigned long *discard_map = (unsigned long *)se->discard_map;
1851 unsigned long *dmap = SIT_I(sbi)->tmp_map;
1852 unsigned int start = 0, end = -1;
1853 bool force = (cpc->reason & CP_DISCARD);
1854 struct discard_entry *de = NULL;
1855 struct list_head *head = &SM_I(sbi)->dcc_info->entry_list;
1856 int i;
1857
David Brazdil0f672f62019-12-10 10:32:29 +00001858 if (se->valid_blocks == max_blocks || !f2fs_hw_support_discard(sbi))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001859 return false;
1860
1861 if (!force) {
David Brazdil0f672f62019-12-10 10:32:29 +00001862 if (!f2fs_realtime_discard_enable(sbi) || !se->valid_blocks ||
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001863 SM_I(sbi)->dcc_info->nr_discards >=
1864 SM_I(sbi)->dcc_info->max_discards)
1865 return false;
1866 }
1867
1868 /* SIT_VBLOCK_MAP_SIZE should be multiple of sizeof(unsigned long) */
1869 for (i = 0; i < entries; i++)
1870 dmap[i] = force ? ~ckpt_map[i] & ~discard_map[i] :
1871 (cur_map[i] ^ ckpt_map[i]) & ckpt_map[i];
1872
1873 while (force || SM_I(sbi)->dcc_info->nr_discards <=
1874 SM_I(sbi)->dcc_info->max_discards) {
1875 start = __find_rev_next_bit(dmap, max_blocks, end + 1);
1876 if (start >= max_blocks)
1877 break;
1878
1879 end = __find_rev_next_zero_bit(dmap, max_blocks, start + 1);
1880 if (force && start && end != max_blocks
1881 && (end - start) < cpc->trim_minlen)
1882 continue;
1883
1884 if (check_only)
1885 return true;
1886
1887 if (!de) {
1888 de = f2fs_kmem_cache_alloc(discard_entry_slab,
1889 GFP_F2FS_ZERO);
1890 de->start_blkaddr = START_BLOCK(sbi, cpc->trim_start);
1891 list_add_tail(&de->list, head);
1892 }
1893
1894 for (i = start; i < end; i++)
1895 __set_bit_le(i, (void *)de->discard_map);
1896
1897 SM_I(sbi)->dcc_info->nr_discards += end - start;
1898 }
1899 return false;
1900}
1901
1902static void release_discard_addr(struct discard_entry *entry)
1903{
1904 list_del(&entry->list);
1905 kmem_cache_free(discard_entry_slab, entry);
1906}
1907
1908void f2fs_release_discard_addrs(struct f2fs_sb_info *sbi)
1909{
1910 struct list_head *head = &(SM_I(sbi)->dcc_info->entry_list);
1911 struct discard_entry *entry, *this;
1912
1913 /* drop caches */
1914 list_for_each_entry_safe(entry, this, head, list)
1915 release_discard_addr(entry);
1916}
1917
1918/*
1919 * Should call f2fs_clear_prefree_segments after checkpoint is done.
1920 */
1921static void set_prefree_as_free_segments(struct f2fs_sb_info *sbi)
1922{
1923 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
1924 unsigned int segno;
1925
1926 mutex_lock(&dirty_i->seglist_lock);
1927 for_each_set_bit(segno, dirty_i->dirty_segmap[PRE], MAIN_SEGS(sbi))
1928 __set_test_and_free(sbi, segno);
1929 mutex_unlock(&dirty_i->seglist_lock);
1930}
1931
1932void f2fs_clear_prefree_segments(struct f2fs_sb_info *sbi,
1933 struct cp_control *cpc)
1934{
1935 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
1936 struct list_head *head = &dcc->entry_list;
1937 struct discard_entry *entry, *this;
1938 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
1939 unsigned long *prefree_map = dirty_i->dirty_segmap[PRE];
1940 unsigned int start = 0, end = -1;
1941 unsigned int secno, start_segno;
1942 bool force = (cpc->reason & CP_DISCARD);
David Brazdil0f672f62019-12-10 10:32:29 +00001943 bool need_align = test_opt(sbi, LFS) && __is_large_section(sbi);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001944
1945 mutex_lock(&dirty_i->seglist_lock);
1946
1947 while (1) {
1948 int i;
1949
1950 if (need_align && end != -1)
1951 end--;
1952 start = find_next_bit(prefree_map, MAIN_SEGS(sbi), end + 1);
1953 if (start >= MAIN_SEGS(sbi))
1954 break;
1955 end = find_next_zero_bit(prefree_map, MAIN_SEGS(sbi),
1956 start + 1);
1957
1958 if (need_align) {
1959 start = rounddown(start, sbi->segs_per_sec);
1960 end = roundup(end, sbi->segs_per_sec);
1961 }
1962
1963 for (i = start; i < end; i++) {
1964 if (test_and_clear_bit(i, prefree_map))
1965 dirty_i->nr_dirty[PRE]--;
1966 }
1967
David Brazdil0f672f62019-12-10 10:32:29 +00001968 if (!f2fs_realtime_discard_enable(sbi))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001969 continue;
1970
1971 if (force && start >= cpc->trim_start &&
1972 (end - 1) <= cpc->trim_end)
1973 continue;
1974
David Brazdil0f672f62019-12-10 10:32:29 +00001975 if (!test_opt(sbi, LFS) || !__is_large_section(sbi)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001976 f2fs_issue_discard(sbi, START_BLOCK(sbi, start),
1977 (end - start) << sbi->log_blocks_per_seg);
1978 continue;
1979 }
1980next:
1981 secno = GET_SEC_FROM_SEG(sbi, start);
1982 start_segno = GET_SEG_FROM_SEC(sbi, secno);
1983 if (!IS_CURSEC(sbi, secno) &&
1984 !get_valid_blocks(sbi, start, true))
1985 f2fs_issue_discard(sbi, START_BLOCK(sbi, start_segno),
1986 sbi->segs_per_sec << sbi->log_blocks_per_seg);
1987
1988 start = start_segno + sbi->segs_per_sec;
1989 if (start < end)
1990 goto next;
1991 else
1992 end = start - 1;
1993 }
1994 mutex_unlock(&dirty_i->seglist_lock);
1995
1996 /* send small discards */
1997 list_for_each_entry_safe(entry, this, head, list) {
1998 unsigned int cur_pos = 0, next_pos, len, total_len = 0;
1999 bool is_valid = test_bit_le(0, entry->discard_map);
2000
2001find_next:
2002 if (is_valid) {
2003 next_pos = find_next_zero_bit_le(entry->discard_map,
2004 sbi->blocks_per_seg, cur_pos);
2005 len = next_pos - cur_pos;
2006
David Brazdil0f672f62019-12-10 10:32:29 +00002007 if (f2fs_sb_has_blkzoned(sbi) ||
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002008 (force && len < cpc->trim_minlen))
2009 goto skip;
2010
2011 f2fs_issue_discard(sbi, entry->start_blkaddr + cur_pos,
2012 len);
2013 total_len += len;
2014 } else {
2015 next_pos = find_next_bit_le(entry->discard_map,
2016 sbi->blocks_per_seg, cur_pos);
2017 }
2018skip:
2019 cur_pos = next_pos;
2020 is_valid = !is_valid;
2021
2022 if (cur_pos < sbi->blocks_per_seg)
2023 goto find_next;
2024
2025 release_discard_addr(entry);
2026 dcc->nr_discards -= total_len;
2027 }
2028
2029 wake_up_discard_thread(sbi, false);
2030}
2031
2032static int create_discard_cmd_control(struct f2fs_sb_info *sbi)
2033{
2034 dev_t dev = sbi->sb->s_bdev->bd_dev;
2035 struct discard_cmd_control *dcc;
2036 int err = 0, i;
2037
2038 if (SM_I(sbi)->dcc_info) {
2039 dcc = SM_I(sbi)->dcc_info;
2040 goto init_thread;
2041 }
2042
2043 dcc = f2fs_kzalloc(sbi, sizeof(struct discard_cmd_control), GFP_KERNEL);
2044 if (!dcc)
2045 return -ENOMEM;
2046
2047 dcc->discard_granularity = DEFAULT_DISCARD_GRANULARITY;
2048 INIT_LIST_HEAD(&dcc->entry_list);
2049 for (i = 0; i < MAX_PLIST_NUM; i++)
2050 INIT_LIST_HEAD(&dcc->pend_list[i]);
2051 INIT_LIST_HEAD(&dcc->wait_list);
2052 INIT_LIST_HEAD(&dcc->fstrim_list);
2053 mutex_init(&dcc->cmd_lock);
2054 atomic_set(&dcc->issued_discard, 0);
David Brazdil0f672f62019-12-10 10:32:29 +00002055 atomic_set(&dcc->queued_discard, 0);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002056 atomic_set(&dcc->discard_cmd_cnt, 0);
2057 dcc->nr_discards = 0;
2058 dcc->max_discards = MAIN_SEGS(sbi) << sbi->log_blocks_per_seg;
2059 dcc->undiscard_blks = 0;
2060 dcc->next_pos = 0;
David Brazdil0f672f62019-12-10 10:32:29 +00002061 dcc->root = RB_ROOT_CACHED;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002062 dcc->rbtree_check = false;
2063
2064 init_waitqueue_head(&dcc->discard_wait_queue);
2065 SM_I(sbi)->dcc_info = dcc;
2066init_thread:
2067 dcc->f2fs_issue_discard = kthread_run(issue_discard_thread, sbi,
2068 "f2fs_discard-%u:%u", MAJOR(dev), MINOR(dev));
2069 if (IS_ERR(dcc->f2fs_issue_discard)) {
2070 err = PTR_ERR(dcc->f2fs_issue_discard);
David Brazdil0f672f62019-12-10 10:32:29 +00002071 kvfree(dcc);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002072 SM_I(sbi)->dcc_info = NULL;
2073 return err;
2074 }
2075
2076 return err;
2077}
2078
2079static void destroy_discard_cmd_control(struct f2fs_sb_info *sbi)
2080{
2081 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
2082
2083 if (!dcc)
2084 return;
2085
2086 f2fs_stop_discard_thread(sbi);
2087
David Brazdil0f672f62019-12-10 10:32:29 +00002088 /*
2089 * Recovery can cache discard commands, so in error path of
2090 * fill_super(), it needs to give a chance to handle them.
2091 */
2092 if (unlikely(atomic_read(&dcc->discard_cmd_cnt)))
2093 f2fs_issue_discard_timeout(sbi);
2094
2095 kvfree(dcc);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002096 SM_I(sbi)->dcc_info = NULL;
2097}
2098
2099static bool __mark_sit_entry_dirty(struct f2fs_sb_info *sbi, unsigned int segno)
2100{
2101 struct sit_info *sit_i = SIT_I(sbi);
2102
2103 if (!__test_and_set_bit(segno, sit_i->dirty_sentries_bitmap)) {
2104 sit_i->dirty_sentries++;
2105 return false;
2106 }
2107
2108 return true;
2109}
2110
2111static void __set_sit_entry_type(struct f2fs_sb_info *sbi, int type,
2112 unsigned int segno, int modified)
2113{
2114 struct seg_entry *se = get_seg_entry(sbi, segno);
2115 se->type = type;
2116 if (modified)
2117 __mark_sit_entry_dirty(sbi, segno);
2118}
2119
2120static void update_sit_entry(struct f2fs_sb_info *sbi, block_t blkaddr, int del)
2121{
2122 struct seg_entry *se;
2123 unsigned int segno, offset;
2124 long int new_vblocks;
2125 bool exist;
2126#ifdef CONFIG_F2FS_CHECK_FS
2127 bool mir_exist;
2128#endif
2129
2130 segno = GET_SEGNO(sbi, blkaddr);
2131
2132 se = get_seg_entry(sbi, segno);
2133 new_vblocks = se->valid_blocks + del;
2134 offset = GET_BLKOFF_FROM_SEG0(sbi, blkaddr);
2135
2136 f2fs_bug_on(sbi, (new_vblocks >> (sizeof(unsigned short) << 3) ||
2137 (new_vblocks > sbi->blocks_per_seg)));
2138
2139 se->valid_blocks = new_vblocks;
2140 se->mtime = get_mtime(sbi, false);
2141 if (se->mtime > SIT_I(sbi)->max_mtime)
2142 SIT_I(sbi)->max_mtime = se->mtime;
2143
2144 /* Update valid block bitmap */
2145 if (del > 0) {
2146 exist = f2fs_test_and_set_bit(offset, se->cur_valid_map);
2147#ifdef CONFIG_F2FS_CHECK_FS
2148 mir_exist = f2fs_test_and_set_bit(offset,
2149 se->cur_valid_map_mir);
2150 if (unlikely(exist != mir_exist)) {
David Brazdil0f672f62019-12-10 10:32:29 +00002151 f2fs_err(sbi, "Inconsistent error when setting bitmap, blk:%u, old bit:%d",
2152 blkaddr, exist);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002153 f2fs_bug_on(sbi, 1);
2154 }
2155#endif
2156 if (unlikely(exist)) {
David Brazdil0f672f62019-12-10 10:32:29 +00002157 f2fs_err(sbi, "Bitmap was wrongly set, blk:%u",
2158 blkaddr);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002159 f2fs_bug_on(sbi, 1);
2160 se->valid_blocks--;
2161 del = 0;
2162 }
2163
David Brazdil0f672f62019-12-10 10:32:29 +00002164 if (!f2fs_test_and_set_bit(offset, se->discard_map))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002165 sbi->discard_blks--;
2166
David Brazdil0f672f62019-12-10 10:32:29 +00002167 /*
2168 * SSR should never reuse block which is checkpointed
2169 * or newly invalidated.
2170 */
2171 if (!is_sbi_flag_set(sbi, SBI_CP_DISABLED)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002172 if (!f2fs_test_and_set_bit(offset, se->ckpt_valid_map))
2173 se->ckpt_valid_blocks++;
2174 }
2175 } else {
2176 exist = f2fs_test_and_clear_bit(offset, se->cur_valid_map);
2177#ifdef CONFIG_F2FS_CHECK_FS
2178 mir_exist = f2fs_test_and_clear_bit(offset,
2179 se->cur_valid_map_mir);
2180 if (unlikely(exist != mir_exist)) {
David Brazdil0f672f62019-12-10 10:32:29 +00002181 f2fs_err(sbi, "Inconsistent error when clearing bitmap, blk:%u, old bit:%d",
2182 blkaddr, exist);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002183 f2fs_bug_on(sbi, 1);
2184 }
2185#endif
2186 if (unlikely(!exist)) {
David Brazdil0f672f62019-12-10 10:32:29 +00002187 f2fs_err(sbi, "Bitmap was wrongly cleared, blk:%u",
2188 blkaddr);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002189 f2fs_bug_on(sbi, 1);
2190 se->valid_blocks++;
2191 del = 0;
David Brazdil0f672f62019-12-10 10:32:29 +00002192 } else if (unlikely(is_sbi_flag_set(sbi, SBI_CP_DISABLED))) {
2193 /*
2194 * If checkpoints are off, we must not reuse data that
2195 * was used in the previous checkpoint. If it was used
2196 * before, we must track that to know how much space we
2197 * really have.
2198 */
2199 if (f2fs_test_bit(offset, se->ckpt_valid_map)) {
2200 spin_lock(&sbi->stat_lock);
2201 sbi->unusable_block_count++;
2202 spin_unlock(&sbi->stat_lock);
2203 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002204 }
2205
David Brazdil0f672f62019-12-10 10:32:29 +00002206 if (f2fs_test_and_clear_bit(offset, se->discard_map))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002207 sbi->discard_blks++;
2208 }
2209 if (!f2fs_test_bit(offset, se->ckpt_valid_map))
2210 se->ckpt_valid_blocks += del;
2211
2212 __mark_sit_entry_dirty(sbi, segno);
2213
2214 /* update total number of valid blocks to be written in ckpt area */
2215 SIT_I(sbi)->written_valid_blocks += del;
2216
David Brazdil0f672f62019-12-10 10:32:29 +00002217 if (__is_large_section(sbi))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002218 get_sec_entry(sbi, segno)->valid_blocks += del;
2219}
2220
2221void f2fs_invalidate_blocks(struct f2fs_sb_info *sbi, block_t addr)
2222{
2223 unsigned int segno = GET_SEGNO(sbi, addr);
2224 struct sit_info *sit_i = SIT_I(sbi);
2225
2226 f2fs_bug_on(sbi, addr == NULL_ADDR);
2227 if (addr == NEW_ADDR)
2228 return;
2229
2230 invalidate_mapping_pages(META_MAPPING(sbi), addr, addr);
2231
2232 /* add it into sit main buffer */
2233 down_write(&sit_i->sentry_lock);
2234
2235 update_sit_entry(sbi, addr, -1);
2236
2237 /* add it into dirty seglist */
2238 locate_dirty_segment(sbi, segno);
2239
2240 up_write(&sit_i->sentry_lock);
2241}
2242
2243bool f2fs_is_checkpointed_data(struct f2fs_sb_info *sbi, block_t blkaddr)
2244{
2245 struct sit_info *sit_i = SIT_I(sbi);
2246 unsigned int segno, offset;
2247 struct seg_entry *se;
2248 bool is_cp = false;
2249
David Brazdil0f672f62019-12-10 10:32:29 +00002250 if (!__is_valid_data_blkaddr(blkaddr))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002251 return true;
2252
2253 down_read(&sit_i->sentry_lock);
2254
2255 segno = GET_SEGNO(sbi, blkaddr);
2256 se = get_seg_entry(sbi, segno);
2257 offset = GET_BLKOFF_FROM_SEG0(sbi, blkaddr);
2258
2259 if (f2fs_test_bit(offset, se->ckpt_valid_map))
2260 is_cp = true;
2261
2262 up_read(&sit_i->sentry_lock);
2263
2264 return is_cp;
2265}
2266
2267/*
2268 * This function should be resided under the curseg_mutex lock
2269 */
2270static void __add_sum_entry(struct f2fs_sb_info *sbi, int type,
2271 struct f2fs_summary *sum)
2272{
2273 struct curseg_info *curseg = CURSEG_I(sbi, type);
2274 void *addr = curseg->sum_blk;
2275 addr += curseg->next_blkoff * sizeof(struct f2fs_summary);
2276 memcpy(addr, sum, sizeof(struct f2fs_summary));
2277}
2278
2279/*
2280 * Calculate the number of current summary pages for writing
2281 */
2282int f2fs_npages_for_summary_flush(struct f2fs_sb_info *sbi, bool for_ra)
2283{
2284 int valid_sum_count = 0;
2285 int i, sum_in_page;
2286
2287 for (i = CURSEG_HOT_DATA; i <= CURSEG_COLD_DATA; i++) {
2288 if (sbi->ckpt->alloc_type[i] == SSR)
2289 valid_sum_count += sbi->blocks_per_seg;
2290 else {
2291 if (for_ra)
2292 valid_sum_count += le16_to_cpu(
2293 F2FS_CKPT(sbi)->cur_data_blkoff[i]);
2294 else
2295 valid_sum_count += curseg_blkoff(sbi, i);
2296 }
2297 }
2298
2299 sum_in_page = (PAGE_SIZE - 2 * SUM_JOURNAL_SIZE -
2300 SUM_FOOTER_SIZE) / SUMMARY_SIZE;
2301 if (valid_sum_count <= sum_in_page)
2302 return 1;
2303 else if ((valid_sum_count - sum_in_page) <=
2304 (PAGE_SIZE - SUM_FOOTER_SIZE) / SUMMARY_SIZE)
2305 return 2;
2306 return 3;
2307}
2308
2309/*
2310 * Caller should put this summary page
2311 */
2312struct page *f2fs_get_sum_page(struct f2fs_sb_info *sbi, unsigned int segno)
2313{
Olivier Deprez0e641232021-09-23 10:07:05 +02002314 if (unlikely(f2fs_cp_error(sbi)))
2315 return ERR_PTR(-EIO);
2316 return f2fs_get_meta_page_retry(sbi, GET_SUM_BLOCK(sbi, segno));
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002317}
2318
2319void f2fs_update_meta_page(struct f2fs_sb_info *sbi,
2320 void *src, block_t blk_addr)
2321{
2322 struct page *page = f2fs_grab_meta_page(sbi, blk_addr);
2323
2324 memcpy(page_address(page), src, PAGE_SIZE);
2325 set_page_dirty(page);
2326 f2fs_put_page(page, 1);
2327}
2328
2329static void write_sum_page(struct f2fs_sb_info *sbi,
2330 struct f2fs_summary_block *sum_blk, block_t blk_addr)
2331{
2332 f2fs_update_meta_page(sbi, (void *)sum_blk, blk_addr);
2333}
2334
2335static void write_current_sum_page(struct f2fs_sb_info *sbi,
2336 int type, block_t blk_addr)
2337{
2338 struct curseg_info *curseg = CURSEG_I(sbi, type);
2339 struct page *page = f2fs_grab_meta_page(sbi, blk_addr);
2340 struct f2fs_summary_block *src = curseg->sum_blk;
2341 struct f2fs_summary_block *dst;
2342
2343 dst = (struct f2fs_summary_block *)page_address(page);
2344 memset(dst, 0, PAGE_SIZE);
2345
2346 mutex_lock(&curseg->curseg_mutex);
2347
2348 down_read(&curseg->journal_rwsem);
2349 memcpy(&dst->journal, curseg->journal, SUM_JOURNAL_SIZE);
2350 up_read(&curseg->journal_rwsem);
2351
2352 memcpy(dst->entries, src->entries, SUM_ENTRY_SIZE);
2353 memcpy(&dst->footer, &src->footer, SUM_FOOTER_SIZE);
2354
2355 mutex_unlock(&curseg->curseg_mutex);
2356
2357 set_page_dirty(page);
2358 f2fs_put_page(page, 1);
2359}
2360
2361static int is_next_segment_free(struct f2fs_sb_info *sbi, int type)
2362{
2363 struct curseg_info *curseg = CURSEG_I(sbi, type);
2364 unsigned int segno = curseg->segno + 1;
2365 struct free_segmap_info *free_i = FREE_I(sbi);
2366
2367 if (segno < MAIN_SEGS(sbi) && segno % sbi->segs_per_sec)
2368 return !test_bit(segno, free_i->free_segmap);
2369 return 0;
2370}
2371
2372/*
2373 * Find a new segment from the free segments bitmap to right order
2374 * This function should be returned with success, otherwise BUG
2375 */
2376static void get_new_segment(struct f2fs_sb_info *sbi,
2377 unsigned int *newseg, bool new_sec, int dir)
2378{
2379 struct free_segmap_info *free_i = FREE_I(sbi);
2380 unsigned int segno, secno, zoneno;
2381 unsigned int total_zones = MAIN_SECS(sbi) / sbi->secs_per_zone;
2382 unsigned int hint = GET_SEC_FROM_SEG(sbi, *newseg);
2383 unsigned int old_zoneno = GET_ZONE_FROM_SEG(sbi, *newseg);
2384 unsigned int left_start = hint;
2385 bool init = true;
2386 int go_left = 0;
2387 int i;
2388
2389 spin_lock(&free_i->segmap_lock);
2390
2391 if (!new_sec && ((*newseg + 1) % sbi->segs_per_sec)) {
2392 segno = find_next_zero_bit(free_i->free_segmap,
2393 GET_SEG_FROM_SEC(sbi, hint + 1), *newseg + 1);
2394 if (segno < GET_SEG_FROM_SEC(sbi, hint + 1))
2395 goto got_it;
2396 }
2397find_other_zone:
2398 secno = find_next_zero_bit(free_i->free_secmap, MAIN_SECS(sbi), hint);
2399 if (secno >= MAIN_SECS(sbi)) {
2400 if (dir == ALLOC_RIGHT) {
2401 secno = find_next_zero_bit(free_i->free_secmap,
2402 MAIN_SECS(sbi), 0);
2403 f2fs_bug_on(sbi, secno >= MAIN_SECS(sbi));
2404 } else {
2405 go_left = 1;
2406 left_start = hint - 1;
2407 }
2408 }
2409 if (go_left == 0)
2410 goto skip_left;
2411
2412 while (test_bit(left_start, free_i->free_secmap)) {
2413 if (left_start > 0) {
2414 left_start--;
2415 continue;
2416 }
2417 left_start = find_next_zero_bit(free_i->free_secmap,
2418 MAIN_SECS(sbi), 0);
2419 f2fs_bug_on(sbi, left_start >= MAIN_SECS(sbi));
2420 break;
2421 }
2422 secno = left_start;
2423skip_left:
2424 segno = GET_SEG_FROM_SEC(sbi, secno);
2425 zoneno = GET_ZONE_FROM_SEC(sbi, secno);
2426
2427 /* give up on finding another zone */
2428 if (!init)
2429 goto got_it;
2430 if (sbi->secs_per_zone == 1)
2431 goto got_it;
2432 if (zoneno == old_zoneno)
2433 goto got_it;
2434 if (dir == ALLOC_LEFT) {
2435 if (!go_left && zoneno + 1 >= total_zones)
2436 goto got_it;
2437 if (go_left && zoneno == 0)
2438 goto got_it;
2439 }
2440 for (i = 0; i < NR_CURSEG_TYPE; i++)
2441 if (CURSEG_I(sbi, i)->zone == zoneno)
2442 break;
2443
2444 if (i < NR_CURSEG_TYPE) {
2445 /* zone is in user, try another */
2446 if (go_left)
2447 hint = zoneno * sbi->secs_per_zone - 1;
2448 else if (zoneno + 1 >= total_zones)
2449 hint = 0;
2450 else
2451 hint = (zoneno + 1) * sbi->secs_per_zone;
2452 init = false;
2453 goto find_other_zone;
2454 }
2455got_it:
2456 /* set it as dirty segment in free segmap */
2457 f2fs_bug_on(sbi, test_bit(segno, free_i->free_segmap));
2458 __set_inuse(sbi, segno);
2459 *newseg = segno;
2460 spin_unlock(&free_i->segmap_lock);
2461}
2462
2463static void reset_curseg(struct f2fs_sb_info *sbi, int type, int modified)
2464{
2465 struct curseg_info *curseg = CURSEG_I(sbi, type);
2466 struct summary_footer *sum_footer;
2467
2468 curseg->segno = curseg->next_segno;
2469 curseg->zone = GET_ZONE_FROM_SEG(sbi, curseg->segno);
2470 curseg->next_blkoff = 0;
2471 curseg->next_segno = NULL_SEGNO;
2472
2473 sum_footer = &(curseg->sum_blk->footer);
2474 memset(sum_footer, 0, sizeof(struct summary_footer));
2475 if (IS_DATASEG(type))
2476 SET_SUM_TYPE(sum_footer, SUM_TYPE_DATA);
2477 if (IS_NODESEG(type))
2478 SET_SUM_TYPE(sum_footer, SUM_TYPE_NODE);
2479 __set_sit_entry_type(sbi, type, curseg->segno, modified);
2480}
2481
2482static unsigned int __get_next_segno(struct f2fs_sb_info *sbi, int type)
2483{
2484 /* if segs_per_sec is large than 1, we need to keep original policy. */
David Brazdil0f672f62019-12-10 10:32:29 +00002485 if (__is_large_section(sbi))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002486 return CURSEG_I(sbi, type)->segno;
2487
David Brazdil0f672f62019-12-10 10:32:29 +00002488 if (unlikely(is_sbi_flag_set(sbi, SBI_CP_DISABLED)))
2489 return 0;
2490
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002491 if (test_opt(sbi, NOHEAP) &&
2492 (type == CURSEG_HOT_DATA || IS_NODESEG(type)))
2493 return 0;
2494
2495 if (SIT_I(sbi)->last_victim[ALLOC_NEXT])
2496 return SIT_I(sbi)->last_victim[ALLOC_NEXT];
2497
2498 /* find segments from 0 to reuse freed segments */
2499 if (F2FS_OPTION(sbi).alloc_mode == ALLOC_MODE_REUSE)
2500 return 0;
2501
2502 return CURSEG_I(sbi, type)->segno;
2503}
2504
2505/*
2506 * Allocate a current working segment.
2507 * This function always allocates a free segment in LFS manner.
2508 */
2509static void new_curseg(struct f2fs_sb_info *sbi, int type, bool new_sec)
2510{
2511 struct curseg_info *curseg = CURSEG_I(sbi, type);
2512 unsigned int segno = curseg->segno;
2513 int dir = ALLOC_LEFT;
2514
2515 write_sum_page(sbi, curseg->sum_blk,
2516 GET_SUM_BLOCK(sbi, segno));
2517 if (type == CURSEG_WARM_DATA || type == CURSEG_COLD_DATA)
2518 dir = ALLOC_RIGHT;
2519
2520 if (test_opt(sbi, NOHEAP))
2521 dir = ALLOC_RIGHT;
2522
2523 segno = __get_next_segno(sbi, type);
2524 get_new_segment(sbi, &segno, new_sec, dir);
2525 curseg->next_segno = segno;
2526 reset_curseg(sbi, type, 1);
2527 curseg->alloc_type = LFS;
2528}
2529
2530static void __next_free_blkoff(struct f2fs_sb_info *sbi,
2531 struct curseg_info *seg, block_t start)
2532{
2533 struct seg_entry *se = get_seg_entry(sbi, seg->segno);
2534 int entries = SIT_VBLOCK_MAP_SIZE / sizeof(unsigned long);
2535 unsigned long *target_map = SIT_I(sbi)->tmp_map;
2536 unsigned long *ckpt_map = (unsigned long *)se->ckpt_valid_map;
2537 unsigned long *cur_map = (unsigned long *)se->cur_valid_map;
2538 int i, pos;
2539
2540 for (i = 0; i < entries; i++)
2541 target_map[i] = ckpt_map[i] | cur_map[i];
2542
2543 pos = __find_rev_next_zero_bit(target_map, sbi->blocks_per_seg, start);
2544
2545 seg->next_blkoff = pos;
2546}
2547
2548/*
2549 * If a segment is written by LFS manner, next block offset is just obtained
2550 * by increasing the current block offset. However, if a segment is written by
2551 * SSR manner, next block offset obtained by calling __next_free_blkoff
2552 */
2553static void __refresh_next_blkoff(struct f2fs_sb_info *sbi,
2554 struct curseg_info *seg)
2555{
2556 if (seg->alloc_type == SSR)
2557 __next_free_blkoff(sbi, seg, seg->next_blkoff + 1);
2558 else
2559 seg->next_blkoff++;
2560}
2561
2562/*
2563 * This function always allocates a used segment(from dirty seglist) by SSR
2564 * manner, so it should recover the existing segment information of valid blocks
2565 */
2566static void change_curseg(struct f2fs_sb_info *sbi, int type)
2567{
2568 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
2569 struct curseg_info *curseg = CURSEG_I(sbi, type);
2570 unsigned int new_segno = curseg->next_segno;
2571 struct f2fs_summary_block *sum_node;
2572 struct page *sum_page;
2573
2574 write_sum_page(sbi, curseg->sum_blk,
2575 GET_SUM_BLOCK(sbi, curseg->segno));
2576 __set_test_and_inuse(sbi, new_segno);
2577
2578 mutex_lock(&dirty_i->seglist_lock);
2579 __remove_dirty_segment(sbi, new_segno, PRE);
2580 __remove_dirty_segment(sbi, new_segno, DIRTY);
2581 mutex_unlock(&dirty_i->seglist_lock);
2582
2583 reset_curseg(sbi, type, 1);
2584 curseg->alloc_type = SSR;
2585 __next_free_blkoff(sbi, curseg, 0);
2586
2587 sum_page = f2fs_get_sum_page(sbi, new_segno);
Olivier Deprez0e641232021-09-23 10:07:05 +02002588 if (IS_ERR(sum_page)) {
2589 /* GC won't be able to use stale summary pages by cp_error */
2590 memset(curseg->sum_blk, 0, SUM_ENTRY_SIZE);
2591 return;
2592 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002593 sum_node = (struct f2fs_summary_block *)page_address(sum_page);
2594 memcpy(curseg->sum_blk, sum_node, SUM_ENTRY_SIZE);
2595 f2fs_put_page(sum_page, 1);
2596}
2597
2598static int get_ssr_segment(struct f2fs_sb_info *sbi, int type)
2599{
2600 struct curseg_info *curseg = CURSEG_I(sbi, type);
2601 const struct victim_selection *v_ops = DIRTY_I(sbi)->v_ops;
2602 unsigned segno = NULL_SEGNO;
2603 int i, cnt;
2604 bool reversed = false;
2605
2606 /* f2fs_need_SSR() already forces to do this */
2607 if (v_ops->get_victim(sbi, &segno, BG_GC, type, SSR)) {
2608 curseg->next_segno = segno;
2609 return 1;
2610 }
2611
2612 /* For node segments, let's do SSR more intensively */
2613 if (IS_NODESEG(type)) {
2614 if (type >= CURSEG_WARM_NODE) {
2615 reversed = true;
2616 i = CURSEG_COLD_NODE;
2617 } else {
2618 i = CURSEG_HOT_NODE;
2619 }
2620 cnt = NR_CURSEG_NODE_TYPE;
2621 } else {
2622 if (type >= CURSEG_WARM_DATA) {
2623 reversed = true;
2624 i = CURSEG_COLD_DATA;
2625 } else {
2626 i = CURSEG_HOT_DATA;
2627 }
2628 cnt = NR_CURSEG_DATA_TYPE;
2629 }
2630
2631 for (; cnt-- > 0; reversed ? i-- : i++) {
2632 if (i == type)
2633 continue;
2634 if (v_ops->get_victim(sbi, &segno, BG_GC, i, SSR)) {
2635 curseg->next_segno = segno;
2636 return 1;
2637 }
2638 }
David Brazdil0f672f62019-12-10 10:32:29 +00002639
2640 /* find valid_blocks=0 in dirty list */
2641 if (unlikely(is_sbi_flag_set(sbi, SBI_CP_DISABLED))) {
2642 segno = get_free_segment(sbi);
2643 if (segno != NULL_SEGNO) {
2644 curseg->next_segno = segno;
2645 return 1;
2646 }
2647 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002648 return 0;
2649}
2650
2651/*
2652 * flush out current segment and replace it with new segment
2653 * This function should be returned with success, otherwise BUG
2654 */
2655static void allocate_segment_by_default(struct f2fs_sb_info *sbi,
2656 int type, bool force)
2657{
2658 struct curseg_info *curseg = CURSEG_I(sbi, type);
2659
2660 if (force)
2661 new_curseg(sbi, type, true);
2662 else if (!is_set_ckpt_flags(sbi, CP_CRC_RECOVERY_FLAG) &&
2663 type == CURSEG_WARM_NODE)
2664 new_curseg(sbi, type, false);
David Brazdil0f672f62019-12-10 10:32:29 +00002665 else if (curseg->alloc_type == LFS && is_next_segment_free(sbi, type) &&
2666 likely(!is_sbi_flag_set(sbi, SBI_CP_DISABLED)))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002667 new_curseg(sbi, type, false);
2668 else if (f2fs_need_SSR(sbi) && get_ssr_segment(sbi, type))
2669 change_curseg(sbi, type);
2670 else
2671 new_curseg(sbi, type, false);
2672
2673 stat_inc_seg_type(sbi, curseg);
2674}
2675
David Brazdil0f672f62019-12-10 10:32:29 +00002676void allocate_segment_for_resize(struct f2fs_sb_info *sbi, int type,
2677 unsigned int start, unsigned int end)
2678{
2679 struct curseg_info *curseg = CURSEG_I(sbi, type);
2680 unsigned int segno;
2681
2682 down_read(&SM_I(sbi)->curseg_lock);
2683 mutex_lock(&curseg->curseg_mutex);
2684 down_write(&SIT_I(sbi)->sentry_lock);
2685
2686 segno = CURSEG_I(sbi, type)->segno;
2687 if (segno < start || segno > end)
2688 goto unlock;
2689
2690 if (f2fs_need_SSR(sbi) && get_ssr_segment(sbi, type))
2691 change_curseg(sbi, type);
2692 else
2693 new_curseg(sbi, type, true);
2694
2695 stat_inc_seg_type(sbi, curseg);
2696
2697 locate_dirty_segment(sbi, segno);
2698unlock:
2699 up_write(&SIT_I(sbi)->sentry_lock);
2700
2701 if (segno != curseg->segno)
2702 f2fs_notice(sbi, "For resize: curseg of type %d: %u ==> %u",
2703 type, segno, curseg->segno);
2704
2705 mutex_unlock(&curseg->curseg_mutex);
2706 up_read(&SM_I(sbi)->curseg_lock);
2707}
2708
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002709void f2fs_allocate_new_segments(struct f2fs_sb_info *sbi)
2710{
2711 struct curseg_info *curseg;
2712 unsigned int old_segno;
2713 int i;
2714
2715 down_write(&SIT_I(sbi)->sentry_lock);
2716
2717 for (i = CURSEG_HOT_DATA; i <= CURSEG_COLD_DATA; i++) {
2718 curseg = CURSEG_I(sbi, i);
2719 old_segno = curseg->segno;
2720 SIT_I(sbi)->s_ops->allocate_segment(sbi, i, true);
2721 locate_dirty_segment(sbi, old_segno);
2722 }
2723
2724 up_write(&SIT_I(sbi)->sentry_lock);
2725}
2726
2727static const struct segment_allocation default_salloc_ops = {
2728 .allocate_segment = allocate_segment_by_default,
2729};
2730
2731bool f2fs_exist_trim_candidates(struct f2fs_sb_info *sbi,
2732 struct cp_control *cpc)
2733{
2734 __u64 trim_start = cpc->trim_start;
2735 bool has_candidate = false;
2736
2737 down_write(&SIT_I(sbi)->sentry_lock);
2738 for (; cpc->trim_start <= cpc->trim_end; cpc->trim_start++) {
2739 if (add_discard_addrs(sbi, cpc, true)) {
2740 has_candidate = true;
2741 break;
2742 }
2743 }
2744 up_write(&SIT_I(sbi)->sentry_lock);
2745
2746 cpc->trim_start = trim_start;
2747 return has_candidate;
2748}
2749
2750static unsigned int __issue_discard_cmd_range(struct f2fs_sb_info *sbi,
2751 struct discard_policy *dpolicy,
2752 unsigned int start, unsigned int end)
2753{
2754 struct discard_cmd_control *dcc = SM_I(sbi)->dcc_info;
2755 struct discard_cmd *prev_dc = NULL, *next_dc = NULL;
2756 struct rb_node **insert_p = NULL, *insert_parent = NULL;
2757 struct discard_cmd *dc;
2758 struct blk_plug plug;
2759 int issued;
2760 unsigned int trimmed = 0;
2761
2762next:
2763 issued = 0;
2764
2765 mutex_lock(&dcc->cmd_lock);
2766 if (unlikely(dcc->rbtree_check))
2767 f2fs_bug_on(sbi, !f2fs_check_rb_tree_consistence(sbi,
2768 &dcc->root));
2769
2770 dc = (struct discard_cmd *)f2fs_lookup_rb_tree_ret(&dcc->root,
2771 NULL, start,
2772 (struct rb_entry **)&prev_dc,
2773 (struct rb_entry **)&next_dc,
David Brazdil0f672f62019-12-10 10:32:29 +00002774 &insert_p, &insert_parent, true, NULL);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002775 if (!dc)
2776 dc = next_dc;
2777
2778 blk_start_plug(&plug);
2779
2780 while (dc && dc->lstart <= end) {
2781 struct rb_node *node;
2782 int err = 0;
2783
2784 if (dc->len < dpolicy->granularity)
2785 goto skip;
2786
2787 if (dc->state != D_PREP) {
2788 list_move_tail(&dc->list, &dcc->fstrim_list);
2789 goto skip;
2790 }
2791
2792 err = __submit_discard_cmd(sbi, dpolicy, dc, &issued);
2793
2794 if (issued >= dpolicy->max_requests) {
2795 start = dc->lstart + dc->len;
2796
2797 if (err)
2798 __remove_discard_cmd(sbi, dc);
2799
2800 blk_finish_plug(&plug);
2801 mutex_unlock(&dcc->cmd_lock);
2802 trimmed += __wait_all_discard_cmd(sbi, NULL);
2803 congestion_wait(BLK_RW_ASYNC, HZ/50);
2804 goto next;
2805 }
2806skip:
2807 node = rb_next(&dc->rb_node);
2808 if (err)
2809 __remove_discard_cmd(sbi, dc);
2810 dc = rb_entry_safe(node, struct discard_cmd, rb_node);
2811
2812 if (fatal_signal_pending(current))
2813 break;
2814 }
2815
2816 blk_finish_plug(&plug);
2817 mutex_unlock(&dcc->cmd_lock);
2818
2819 return trimmed;
2820}
2821
2822int f2fs_trim_fs(struct f2fs_sb_info *sbi, struct fstrim_range *range)
2823{
2824 __u64 start = F2FS_BYTES_TO_BLK(range->start);
2825 __u64 end = start + F2FS_BYTES_TO_BLK(range->len) - 1;
2826 unsigned int start_segno, end_segno;
2827 block_t start_block, end_block;
2828 struct cp_control cpc;
2829 struct discard_policy dpolicy;
2830 unsigned long long trimmed = 0;
2831 int err = 0;
David Brazdil0f672f62019-12-10 10:32:29 +00002832 bool need_align = test_opt(sbi, LFS) && __is_large_section(sbi);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002833
2834 if (start >= MAX_BLKADDR(sbi) || range->len < sbi->blocksize)
2835 return -EINVAL;
2836
2837 if (end < MAIN_BLKADDR(sbi))
2838 goto out;
2839
2840 if (is_sbi_flag_set(sbi, SBI_NEED_FSCK)) {
David Brazdil0f672f62019-12-10 10:32:29 +00002841 f2fs_warn(sbi, "Found FS corruption, run fsck to fix.");
2842 return -EFSCORRUPTED;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002843 }
2844
2845 /* start/end segment number in main_area */
2846 start_segno = (start <= MAIN_BLKADDR(sbi)) ? 0 : GET_SEGNO(sbi, start);
2847 end_segno = (end >= MAX_BLKADDR(sbi)) ? MAIN_SEGS(sbi) - 1 :
2848 GET_SEGNO(sbi, end);
2849 if (need_align) {
2850 start_segno = rounddown(start_segno, sbi->segs_per_sec);
2851 end_segno = roundup(end_segno + 1, sbi->segs_per_sec) - 1;
2852 }
2853
2854 cpc.reason = CP_DISCARD;
2855 cpc.trim_minlen = max_t(__u64, 1, F2FS_BYTES_TO_BLK(range->minlen));
2856 cpc.trim_start = start_segno;
2857 cpc.trim_end = end_segno;
2858
2859 if (sbi->discard_blks == 0)
2860 goto out;
2861
2862 mutex_lock(&sbi->gc_mutex);
2863 err = f2fs_write_checkpoint(sbi, &cpc);
2864 mutex_unlock(&sbi->gc_mutex);
2865 if (err)
2866 goto out;
2867
2868 /*
2869 * We filed discard candidates, but actually we don't need to wait for
2870 * all of them, since they'll be issued in idle time along with runtime
2871 * discard option. User configuration looks like using runtime discard
2872 * or periodic fstrim instead of it.
2873 */
David Brazdil0f672f62019-12-10 10:32:29 +00002874 if (f2fs_realtime_discard_enable(sbi))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00002875 goto out;
2876
2877 start_block = START_BLOCK(sbi, start_segno);
2878 end_block = START_BLOCK(sbi, end_segno + 1);
2879
2880 __init_discard_policy(sbi, &dpolicy, DPOLICY_FSTRIM, cpc.trim_minlen);
2881 trimmed = __issue_discard_cmd_range(sbi, &dpolicy,
2882 start_block, end_block);
2883
2884 trimmed += __wait_discard_cmd_range(sbi, &dpolicy,
2885 start_block, end_block);
2886out:
2887 if (!err)
2888 range->len = F2FS_BLK_TO_BYTES(trimmed);
2889 return err;
2890}
2891
2892static bool __has_curseg_space(struct f2fs_sb_info *sbi, int type)
2893{
2894 struct curseg_info *curseg = CURSEG_I(sbi, type);
2895 if (curseg->next_blkoff < sbi->blocks_per_seg)
2896 return true;
2897 return false;
2898}
2899
2900int f2fs_rw_hint_to_seg_type(enum rw_hint hint)
2901{
2902 switch (hint) {
2903 case WRITE_LIFE_SHORT:
2904 return CURSEG_HOT_DATA;
2905 case WRITE_LIFE_EXTREME:
2906 return CURSEG_COLD_DATA;
2907 default:
2908 return CURSEG_WARM_DATA;
2909 }
2910}
2911
2912/* This returns write hints for each segment type. This hints will be
2913 * passed down to block layer. There are mapping tables which depend on
2914 * the mount option 'whint_mode'.
2915 *
2916 * 1) whint_mode=off. F2FS only passes down WRITE_LIFE_NOT_SET.
2917 *
2918 * 2) whint_mode=user-based. F2FS tries to pass down hints given by users.
2919 *
2920 * User F2FS Block
2921 * ---- ---- -----
2922 * META WRITE_LIFE_NOT_SET
2923 * HOT_NODE "
2924 * WARM_NODE "
2925 * COLD_NODE "
2926 * ioctl(COLD) COLD_DATA WRITE_LIFE_EXTREME
2927 * extension list " "
2928 *
2929 * -- buffered io
2930 * WRITE_LIFE_EXTREME COLD_DATA WRITE_LIFE_EXTREME
2931 * WRITE_LIFE_SHORT HOT_DATA WRITE_LIFE_SHORT
2932 * WRITE_LIFE_NOT_SET WARM_DATA WRITE_LIFE_NOT_SET
2933 * WRITE_LIFE_NONE " "
2934 * WRITE_LIFE_MEDIUM " "
2935 * WRITE_LIFE_LONG " "
2936 *
2937 * -- direct io
2938 * WRITE_LIFE_EXTREME COLD_DATA WRITE_LIFE_EXTREME
2939 * WRITE_LIFE_SHORT HOT_DATA WRITE_LIFE_SHORT
2940 * WRITE_LIFE_NOT_SET WARM_DATA WRITE_LIFE_NOT_SET
2941 * WRITE_LIFE_NONE " WRITE_LIFE_NONE
2942 * WRITE_LIFE_MEDIUM " WRITE_LIFE_MEDIUM
2943 * WRITE_LIFE_LONG " WRITE_LIFE_LONG
2944 *
2945 * 3) whint_mode=fs-based. F2FS passes down hints with its policy.
2946 *
2947 * User F2FS Block
2948 * ---- ---- -----
2949 * META WRITE_LIFE_MEDIUM;
2950 * HOT_NODE WRITE_LIFE_NOT_SET
2951 * WARM_NODE "
2952 * COLD_NODE WRITE_LIFE_NONE
2953 * ioctl(COLD) COLD_DATA WRITE_LIFE_EXTREME
2954 * extension list " "
2955 *
2956 * -- buffered io
2957 * WRITE_LIFE_EXTREME COLD_DATA WRITE_LIFE_EXTREME
2958 * WRITE_LIFE_SHORT HOT_DATA WRITE_LIFE_SHORT
2959 * WRITE_LIFE_NOT_SET WARM_DATA WRITE_LIFE_LONG
2960 * WRITE_LIFE_NONE " "
2961 * WRITE_LIFE_MEDIUM " "
2962 * WRITE_LIFE_LONG " "
2963 *
2964 * -- direct io
2965 * WRITE_LIFE_EXTREME COLD_DATA WRITE_LIFE_EXTREME
2966 * WRITE_LIFE_SHORT HOT_DATA WRITE_LIFE_SHORT
2967 * WRITE_LIFE_NOT_SET WARM_DATA WRITE_LIFE_NOT_SET
2968 * WRITE_LIFE_NONE " WRITE_LIFE_NONE
2969 * WRITE_LIFE_MEDIUM " WRITE_LIFE_MEDIUM
2970 * WRITE_LIFE_LONG " WRITE_LIFE_LONG
2971 */
2972
2973enum rw_hint f2fs_io_type_to_rw_hint(struct f2fs_sb_info *sbi,
2974 enum page_type type, enum temp_type temp)
2975{
2976 if (F2FS_OPTION(sbi).whint_mode == WHINT_MODE_USER) {
2977 if (type == DATA) {
2978 if (temp == WARM)
2979 return WRITE_LIFE_NOT_SET;
2980 else if (temp == HOT)
2981 return WRITE_LIFE_SHORT;
2982 else if (temp == COLD)
2983 return WRITE_LIFE_EXTREME;
2984 } else {
2985 return WRITE_LIFE_NOT_SET;
2986 }
2987 } else if (F2FS_OPTION(sbi).whint_mode == WHINT_MODE_FS) {
2988 if (type == DATA) {
2989 if (temp == WARM)
2990 return WRITE_LIFE_LONG;
2991 else if (temp == HOT)
2992 return WRITE_LIFE_SHORT;
2993 else if (temp == COLD)
2994 return WRITE_LIFE_EXTREME;
2995 } else if (type == NODE) {
2996 if (temp == WARM || temp == HOT)
2997 return WRITE_LIFE_NOT_SET;
2998 else if (temp == COLD)
2999 return WRITE_LIFE_NONE;
3000 } else if (type == META) {
3001 return WRITE_LIFE_MEDIUM;
3002 }
3003 }
3004 return WRITE_LIFE_NOT_SET;
3005}
3006
3007static int __get_segment_type_2(struct f2fs_io_info *fio)
3008{
3009 if (fio->type == DATA)
3010 return CURSEG_HOT_DATA;
3011 else
3012 return CURSEG_HOT_NODE;
3013}
3014
3015static int __get_segment_type_4(struct f2fs_io_info *fio)
3016{
3017 if (fio->type == DATA) {
3018 struct inode *inode = fio->page->mapping->host;
3019
3020 if (S_ISDIR(inode->i_mode))
3021 return CURSEG_HOT_DATA;
3022 else
3023 return CURSEG_COLD_DATA;
3024 } else {
3025 if (IS_DNODE(fio->page) && is_cold_node(fio->page))
3026 return CURSEG_WARM_NODE;
3027 else
3028 return CURSEG_COLD_NODE;
3029 }
3030}
3031
3032static int __get_segment_type_6(struct f2fs_io_info *fio)
3033{
3034 if (fio->type == DATA) {
3035 struct inode *inode = fio->page->mapping->host;
3036
3037 if (is_cold_data(fio->page) || file_is_cold(inode))
3038 return CURSEG_COLD_DATA;
3039 if (file_is_hot(inode) ||
3040 is_inode_flag_set(inode, FI_HOT_DATA) ||
3041 f2fs_is_atomic_file(inode) ||
3042 f2fs_is_volatile_file(inode))
3043 return CURSEG_HOT_DATA;
3044 return f2fs_rw_hint_to_seg_type(inode->i_write_hint);
3045 } else {
3046 if (IS_DNODE(fio->page))
3047 return is_cold_node(fio->page) ? CURSEG_WARM_NODE :
3048 CURSEG_HOT_NODE;
3049 return CURSEG_COLD_NODE;
3050 }
3051}
3052
3053static int __get_segment_type(struct f2fs_io_info *fio)
3054{
3055 int type = 0;
3056
3057 switch (F2FS_OPTION(fio->sbi).active_logs) {
3058 case 2:
3059 type = __get_segment_type_2(fio);
3060 break;
3061 case 4:
3062 type = __get_segment_type_4(fio);
3063 break;
3064 case 6:
3065 type = __get_segment_type_6(fio);
3066 break;
3067 default:
3068 f2fs_bug_on(fio->sbi, true);
3069 }
3070
3071 if (IS_HOT(type))
3072 fio->temp = HOT;
3073 else if (IS_WARM(type))
3074 fio->temp = WARM;
3075 else
3076 fio->temp = COLD;
3077 return type;
3078}
3079
3080void f2fs_allocate_data_block(struct f2fs_sb_info *sbi, struct page *page,
3081 block_t old_blkaddr, block_t *new_blkaddr,
3082 struct f2fs_summary *sum, int type,
3083 struct f2fs_io_info *fio, bool add_list)
3084{
3085 struct sit_info *sit_i = SIT_I(sbi);
3086 struct curseg_info *curseg = CURSEG_I(sbi, type);
3087
3088 down_read(&SM_I(sbi)->curseg_lock);
3089
3090 mutex_lock(&curseg->curseg_mutex);
3091 down_write(&sit_i->sentry_lock);
3092
3093 *new_blkaddr = NEXT_FREE_BLKADDR(sbi, curseg);
3094
3095 f2fs_wait_discard_bio(sbi, *new_blkaddr);
3096
3097 /*
3098 * __add_sum_entry should be resided under the curseg_mutex
3099 * because, this function updates a summary entry in the
3100 * current summary block.
3101 */
3102 __add_sum_entry(sbi, type, sum);
3103
3104 __refresh_next_blkoff(sbi, curseg);
3105
3106 stat_inc_block_count(sbi, curseg);
3107
3108 /*
3109 * SIT information should be updated before segment allocation,
3110 * since SSR needs latest valid block information.
3111 */
3112 update_sit_entry(sbi, *new_blkaddr, 1);
3113 if (GET_SEGNO(sbi, old_blkaddr) != NULL_SEGNO)
3114 update_sit_entry(sbi, old_blkaddr, -1);
3115
3116 if (!__has_curseg_space(sbi, type))
3117 sit_i->s_ops->allocate_segment(sbi, type, false);
3118
3119 /*
3120 * segment dirty status should be updated after segment allocation,
3121 * so we just need to update status only one time after previous
3122 * segment being closed.
3123 */
3124 locate_dirty_segment(sbi, GET_SEGNO(sbi, old_blkaddr));
3125 locate_dirty_segment(sbi, GET_SEGNO(sbi, *new_blkaddr));
3126
3127 up_write(&sit_i->sentry_lock);
3128
3129 if (page && IS_NODESEG(type)) {
3130 fill_node_footer_blkaddr(page, NEXT_FREE_BLKADDR(sbi, curseg));
3131
3132 f2fs_inode_chksum_set(sbi, page);
3133 }
3134
David Brazdil0f672f62019-12-10 10:32:29 +00003135 if (F2FS_IO_ALIGNED(sbi))
3136 fio->retry = false;
3137
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003138 if (add_list) {
3139 struct f2fs_bio_info *io;
3140
3141 INIT_LIST_HEAD(&fio->list);
3142 fio->in_list = true;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003143 io = sbi->write_io[fio->type] + fio->temp;
3144 spin_lock(&io->io_lock);
3145 list_add_tail(&fio->list, &io->io_list);
3146 spin_unlock(&io->io_lock);
3147 }
3148
3149 mutex_unlock(&curseg->curseg_mutex);
3150
3151 up_read(&SM_I(sbi)->curseg_lock);
3152}
3153
3154static void update_device_state(struct f2fs_io_info *fio)
3155{
3156 struct f2fs_sb_info *sbi = fio->sbi;
3157 unsigned int devidx;
3158
David Brazdil0f672f62019-12-10 10:32:29 +00003159 if (!f2fs_is_multi_device(sbi))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003160 return;
3161
3162 devidx = f2fs_target_device_index(sbi, fio->new_blkaddr);
3163
3164 /* update device state for fsync */
3165 f2fs_set_dirty_device(sbi, fio->ino, devidx, FLUSH_INO);
3166
3167 /* update device state for checkpoint */
3168 if (!f2fs_test_bit(devidx, (char *)&sbi->dirty_device)) {
3169 spin_lock(&sbi->dev_lock);
3170 f2fs_set_bit(devidx, (char *)&sbi->dirty_device);
3171 spin_unlock(&sbi->dev_lock);
3172 }
3173}
3174
3175static void do_write_page(struct f2fs_summary *sum, struct f2fs_io_info *fio)
3176{
3177 int type = __get_segment_type(fio);
3178 bool keep_order = (test_opt(fio->sbi, LFS) && type == CURSEG_COLD_DATA);
3179
3180 if (keep_order)
3181 down_read(&fio->sbi->io_order_lock);
3182reallocate:
3183 f2fs_allocate_data_block(fio->sbi, fio->page, fio->old_blkaddr,
3184 &fio->new_blkaddr, sum, type, fio, true);
3185 if (GET_SEGNO(fio->sbi, fio->old_blkaddr) != NULL_SEGNO)
3186 invalidate_mapping_pages(META_MAPPING(fio->sbi),
3187 fio->old_blkaddr, fio->old_blkaddr);
3188
3189 /* writeout dirty page into bdev */
3190 f2fs_submit_page_write(fio);
3191 if (fio->retry) {
3192 fio->old_blkaddr = fio->new_blkaddr;
3193 goto reallocate;
3194 }
3195
3196 update_device_state(fio);
3197
3198 if (keep_order)
3199 up_read(&fio->sbi->io_order_lock);
3200}
3201
3202void f2fs_do_write_meta_page(struct f2fs_sb_info *sbi, struct page *page,
3203 enum iostat_type io_type)
3204{
3205 struct f2fs_io_info fio = {
3206 .sbi = sbi,
3207 .type = META,
3208 .temp = HOT,
3209 .op = REQ_OP_WRITE,
3210 .op_flags = REQ_SYNC | REQ_META | REQ_PRIO,
3211 .old_blkaddr = page->index,
3212 .new_blkaddr = page->index,
3213 .page = page,
3214 .encrypted_page = NULL,
3215 .in_list = false,
3216 };
3217
3218 if (unlikely(page->index >= MAIN_BLKADDR(sbi)))
3219 fio.op_flags &= ~REQ_META;
3220
3221 set_page_writeback(page);
3222 ClearPageError(page);
3223 f2fs_submit_page_write(&fio);
3224
David Brazdil0f672f62019-12-10 10:32:29 +00003225 stat_inc_meta_count(sbi, page->index);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003226 f2fs_update_iostat(sbi, io_type, F2FS_BLKSIZE);
3227}
3228
3229void f2fs_do_write_node_page(unsigned int nid, struct f2fs_io_info *fio)
3230{
3231 struct f2fs_summary sum;
3232
3233 set_summary(&sum, nid, 0, 0);
3234 do_write_page(&sum, fio);
3235
3236 f2fs_update_iostat(fio->sbi, fio->io_type, F2FS_BLKSIZE);
3237}
3238
3239void f2fs_outplace_write_data(struct dnode_of_data *dn,
3240 struct f2fs_io_info *fio)
3241{
3242 struct f2fs_sb_info *sbi = fio->sbi;
3243 struct f2fs_summary sum;
3244
3245 f2fs_bug_on(sbi, dn->data_blkaddr == NULL_ADDR);
3246 set_summary(&sum, dn->nid, dn->ofs_in_node, fio->version);
3247 do_write_page(&sum, fio);
3248 f2fs_update_data_blkaddr(dn, fio->new_blkaddr);
3249
3250 f2fs_update_iostat(sbi, fio->io_type, F2FS_BLKSIZE);
3251}
3252
3253int f2fs_inplace_write_data(struct f2fs_io_info *fio)
3254{
3255 int err;
3256 struct f2fs_sb_info *sbi = fio->sbi;
David Brazdil0f672f62019-12-10 10:32:29 +00003257 unsigned int segno;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003258
3259 fio->new_blkaddr = fio->old_blkaddr;
3260 /* i/o temperature is needed for passing down write hints */
3261 __get_segment_type(fio);
3262
David Brazdil0f672f62019-12-10 10:32:29 +00003263 segno = GET_SEGNO(sbi, fio->new_blkaddr);
3264
3265 if (!IS_DATASEG(get_seg_entry(sbi, segno)->type)) {
3266 set_sbi_flag(sbi, SBI_NEED_FSCK);
3267 f2fs_warn(sbi, "%s: incorrect segment(%u) type, run fsck to fix.",
3268 __func__, segno);
3269 return -EFSCORRUPTED;
3270 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003271
3272 stat_inc_inplace_blocks(fio->sbi);
3273
David Brazdil0f672f62019-12-10 10:32:29 +00003274 if (fio->bio)
3275 err = f2fs_merge_page_bio(fio);
3276 else
3277 err = f2fs_submit_page_bio(fio);
3278 if (!err) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003279 update_device_state(fio);
David Brazdil0f672f62019-12-10 10:32:29 +00003280 f2fs_update_iostat(fio->sbi, fio->io_type, F2FS_BLKSIZE);
3281 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003282
3283 return err;
3284}
3285
3286static inline int __f2fs_get_curseg(struct f2fs_sb_info *sbi,
3287 unsigned int segno)
3288{
3289 int i;
3290
3291 for (i = CURSEG_HOT_DATA; i < NO_CHECK_TYPE; i++) {
3292 if (CURSEG_I(sbi, i)->segno == segno)
3293 break;
3294 }
3295 return i;
3296}
3297
3298void f2fs_do_replace_block(struct f2fs_sb_info *sbi, struct f2fs_summary *sum,
3299 block_t old_blkaddr, block_t new_blkaddr,
3300 bool recover_curseg, bool recover_newaddr)
3301{
3302 struct sit_info *sit_i = SIT_I(sbi);
3303 struct curseg_info *curseg;
3304 unsigned int segno, old_cursegno;
3305 struct seg_entry *se;
3306 int type;
3307 unsigned short old_blkoff;
3308
3309 segno = GET_SEGNO(sbi, new_blkaddr);
3310 se = get_seg_entry(sbi, segno);
3311 type = se->type;
3312
3313 down_write(&SM_I(sbi)->curseg_lock);
3314
3315 if (!recover_curseg) {
3316 /* for recovery flow */
3317 if (se->valid_blocks == 0 && !IS_CURSEG(sbi, segno)) {
3318 if (old_blkaddr == NULL_ADDR)
3319 type = CURSEG_COLD_DATA;
3320 else
3321 type = CURSEG_WARM_DATA;
3322 }
3323 } else {
3324 if (IS_CURSEG(sbi, segno)) {
3325 /* se->type is volatile as SSR allocation */
3326 type = __f2fs_get_curseg(sbi, segno);
3327 f2fs_bug_on(sbi, type == NO_CHECK_TYPE);
3328 } else {
3329 type = CURSEG_WARM_DATA;
3330 }
3331 }
3332
3333 f2fs_bug_on(sbi, !IS_DATASEG(type));
3334 curseg = CURSEG_I(sbi, type);
3335
3336 mutex_lock(&curseg->curseg_mutex);
3337 down_write(&sit_i->sentry_lock);
3338
3339 old_cursegno = curseg->segno;
3340 old_blkoff = curseg->next_blkoff;
3341
3342 /* change the current segment */
3343 if (segno != curseg->segno) {
3344 curseg->next_segno = segno;
3345 change_curseg(sbi, type);
3346 }
3347
3348 curseg->next_blkoff = GET_BLKOFF_FROM_SEG0(sbi, new_blkaddr);
3349 __add_sum_entry(sbi, type, sum);
3350
3351 if (!recover_curseg || recover_newaddr)
3352 update_sit_entry(sbi, new_blkaddr, 1);
3353 if (GET_SEGNO(sbi, old_blkaddr) != NULL_SEGNO) {
3354 invalidate_mapping_pages(META_MAPPING(sbi),
3355 old_blkaddr, old_blkaddr);
3356 update_sit_entry(sbi, old_blkaddr, -1);
3357 }
3358
3359 locate_dirty_segment(sbi, GET_SEGNO(sbi, old_blkaddr));
3360 locate_dirty_segment(sbi, GET_SEGNO(sbi, new_blkaddr));
3361
3362 locate_dirty_segment(sbi, old_cursegno);
3363
3364 if (recover_curseg) {
3365 if (old_cursegno != curseg->segno) {
3366 curseg->next_segno = old_cursegno;
3367 change_curseg(sbi, type);
3368 }
3369 curseg->next_blkoff = old_blkoff;
3370 }
3371
3372 up_write(&sit_i->sentry_lock);
3373 mutex_unlock(&curseg->curseg_mutex);
3374 up_write(&SM_I(sbi)->curseg_lock);
3375}
3376
3377void f2fs_replace_block(struct f2fs_sb_info *sbi, struct dnode_of_data *dn,
3378 block_t old_addr, block_t new_addr,
3379 unsigned char version, bool recover_curseg,
3380 bool recover_newaddr)
3381{
3382 struct f2fs_summary sum;
3383
3384 set_summary(&sum, dn->nid, dn->ofs_in_node, version);
3385
3386 f2fs_do_replace_block(sbi, &sum, old_addr, new_addr,
3387 recover_curseg, recover_newaddr);
3388
3389 f2fs_update_data_blkaddr(dn, new_addr);
3390}
3391
3392void f2fs_wait_on_page_writeback(struct page *page,
David Brazdil0f672f62019-12-10 10:32:29 +00003393 enum page_type type, bool ordered, bool locked)
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003394{
3395 if (PageWriteback(page)) {
3396 struct f2fs_sb_info *sbi = F2FS_P_SB(page);
3397
David Brazdil0f672f62019-12-10 10:32:29 +00003398 f2fs_submit_merged_write_cond(sbi, NULL, page, 0, type);
3399 if (ordered) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003400 wait_on_page_writeback(page);
David Brazdil0f672f62019-12-10 10:32:29 +00003401 f2fs_bug_on(sbi, locked && PageWriteback(page));
3402 } else {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003403 wait_for_stable_page(page);
David Brazdil0f672f62019-12-10 10:32:29 +00003404 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003405 }
3406}
3407
David Brazdil0f672f62019-12-10 10:32:29 +00003408void f2fs_wait_on_block_writeback(struct inode *inode, block_t blkaddr)
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003409{
David Brazdil0f672f62019-12-10 10:32:29 +00003410 struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003411 struct page *cpage;
3412
David Brazdil0f672f62019-12-10 10:32:29 +00003413 if (!f2fs_post_read_required(inode))
3414 return;
3415
3416 if (!__is_valid_data_blkaddr(blkaddr))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003417 return;
3418
3419 cpage = find_lock_page(META_MAPPING(sbi), blkaddr);
3420 if (cpage) {
David Brazdil0f672f62019-12-10 10:32:29 +00003421 f2fs_wait_on_page_writeback(cpage, DATA, true, true);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003422 f2fs_put_page(cpage, 1);
3423 }
3424}
3425
David Brazdil0f672f62019-12-10 10:32:29 +00003426void f2fs_wait_on_block_writeback_range(struct inode *inode, block_t blkaddr,
3427 block_t len)
3428{
3429 block_t i;
3430
3431 for (i = 0; i < len; i++)
3432 f2fs_wait_on_block_writeback(inode, blkaddr + i);
3433}
3434
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003435static int read_compacted_summaries(struct f2fs_sb_info *sbi)
3436{
3437 struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
3438 struct curseg_info *seg_i;
3439 unsigned char *kaddr;
3440 struct page *page;
3441 block_t start;
3442 int i, j, offset;
3443
3444 start = start_sum_block(sbi);
3445
3446 page = f2fs_get_meta_page(sbi, start++);
3447 if (IS_ERR(page))
3448 return PTR_ERR(page);
3449 kaddr = (unsigned char *)page_address(page);
3450
3451 /* Step 1: restore nat cache */
3452 seg_i = CURSEG_I(sbi, CURSEG_HOT_DATA);
3453 memcpy(seg_i->journal, kaddr, SUM_JOURNAL_SIZE);
3454
3455 /* Step 2: restore sit cache */
3456 seg_i = CURSEG_I(sbi, CURSEG_COLD_DATA);
3457 memcpy(seg_i->journal, kaddr + SUM_JOURNAL_SIZE, SUM_JOURNAL_SIZE);
3458 offset = 2 * SUM_JOURNAL_SIZE;
3459
3460 /* Step 3: restore summary entries */
3461 for (i = CURSEG_HOT_DATA; i <= CURSEG_COLD_DATA; i++) {
3462 unsigned short blk_off;
3463 unsigned int segno;
3464
3465 seg_i = CURSEG_I(sbi, i);
3466 segno = le32_to_cpu(ckpt->cur_data_segno[i]);
3467 blk_off = le16_to_cpu(ckpt->cur_data_blkoff[i]);
3468 seg_i->next_segno = segno;
3469 reset_curseg(sbi, i, 0);
3470 seg_i->alloc_type = ckpt->alloc_type[i];
3471 seg_i->next_blkoff = blk_off;
3472
3473 if (seg_i->alloc_type == SSR)
3474 blk_off = sbi->blocks_per_seg;
3475
3476 for (j = 0; j < blk_off; j++) {
3477 struct f2fs_summary *s;
3478 s = (struct f2fs_summary *)(kaddr + offset);
3479 seg_i->sum_blk->entries[j] = *s;
3480 offset += SUMMARY_SIZE;
3481 if (offset + SUMMARY_SIZE <= PAGE_SIZE -
3482 SUM_FOOTER_SIZE)
3483 continue;
3484
3485 f2fs_put_page(page, 1);
3486 page = NULL;
3487
3488 page = f2fs_get_meta_page(sbi, start++);
3489 if (IS_ERR(page))
3490 return PTR_ERR(page);
3491 kaddr = (unsigned char *)page_address(page);
3492 offset = 0;
3493 }
3494 }
3495 f2fs_put_page(page, 1);
3496 return 0;
3497}
3498
3499static int read_normal_summaries(struct f2fs_sb_info *sbi, int type)
3500{
3501 struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
3502 struct f2fs_summary_block *sum;
3503 struct curseg_info *curseg;
3504 struct page *new;
3505 unsigned short blk_off;
3506 unsigned int segno = 0;
3507 block_t blk_addr = 0;
3508 int err = 0;
3509
3510 /* get segment number and block addr */
3511 if (IS_DATASEG(type)) {
3512 segno = le32_to_cpu(ckpt->cur_data_segno[type]);
3513 blk_off = le16_to_cpu(ckpt->cur_data_blkoff[type -
3514 CURSEG_HOT_DATA]);
3515 if (__exist_node_summaries(sbi))
3516 blk_addr = sum_blk_addr(sbi, NR_CURSEG_TYPE, type);
3517 else
3518 blk_addr = sum_blk_addr(sbi, NR_CURSEG_DATA_TYPE, type);
3519 } else {
3520 segno = le32_to_cpu(ckpt->cur_node_segno[type -
3521 CURSEG_HOT_NODE]);
3522 blk_off = le16_to_cpu(ckpt->cur_node_blkoff[type -
3523 CURSEG_HOT_NODE]);
3524 if (__exist_node_summaries(sbi))
3525 blk_addr = sum_blk_addr(sbi, NR_CURSEG_NODE_TYPE,
3526 type - CURSEG_HOT_NODE);
3527 else
3528 blk_addr = GET_SUM_BLOCK(sbi, segno);
3529 }
3530
3531 new = f2fs_get_meta_page(sbi, blk_addr);
3532 if (IS_ERR(new))
3533 return PTR_ERR(new);
3534 sum = (struct f2fs_summary_block *)page_address(new);
3535
3536 if (IS_NODESEG(type)) {
3537 if (__exist_node_summaries(sbi)) {
3538 struct f2fs_summary *ns = &sum->entries[0];
3539 int i;
3540 for (i = 0; i < sbi->blocks_per_seg; i++, ns++) {
3541 ns->version = 0;
3542 ns->ofs_in_node = 0;
3543 }
3544 } else {
3545 err = f2fs_restore_node_summary(sbi, segno, sum);
3546 if (err)
3547 goto out;
3548 }
3549 }
3550
3551 /* set uncompleted segment to curseg */
3552 curseg = CURSEG_I(sbi, type);
3553 mutex_lock(&curseg->curseg_mutex);
3554
3555 /* update journal info */
3556 down_write(&curseg->journal_rwsem);
3557 memcpy(curseg->journal, &sum->journal, SUM_JOURNAL_SIZE);
3558 up_write(&curseg->journal_rwsem);
3559
3560 memcpy(curseg->sum_blk->entries, sum->entries, SUM_ENTRY_SIZE);
3561 memcpy(&curseg->sum_blk->footer, &sum->footer, SUM_FOOTER_SIZE);
3562 curseg->next_segno = segno;
3563 reset_curseg(sbi, type, 0);
3564 curseg->alloc_type = ckpt->alloc_type[type];
3565 curseg->next_blkoff = blk_off;
3566 mutex_unlock(&curseg->curseg_mutex);
3567out:
3568 f2fs_put_page(new, 1);
3569 return err;
3570}
3571
3572static int restore_curseg_summaries(struct f2fs_sb_info *sbi)
3573{
3574 struct f2fs_journal *sit_j = CURSEG_I(sbi, CURSEG_COLD_DATA)->journal;
3575 struct f2fs_journal *nat_j = CURSEG_I(sbi, CURSEG_HOT_DATA)->journal;
3576 int type = CURSEG_HOT_DATA;
3577 int err;
3578
3579 if (is_set_ckpt_flags(sbi, CP_COMPACT_SUM_FLAG)) {
3580 int npages = f2fs_npages_for_summary_flush(sbi, true);
3581
3582 if (npages >= 2)
3583 f2fs_ra_meta_pages(sbi, start_sum_block(sbi), npages,
3584 META_CP, true);
3585
3586 /* restore for compacted data summary */
3587 err = read_compacted_summaries(sbi);
3588 if (err)
3589 return err;
3590 type = CURSEG_HOT_NODE;
3591 }
3592
3593 if (__exist_node_summaries(sbi))
3594 f2fs_ra_meta_pages(sbi, sum_blk_addr(sbi, NR_CURSEG_TYPE, type),
3595 NR_CURSEG_TYPE - type, META_CP, true);
3596
3597 for (; type <= CURSEG_COLD_NODE; type++) {
3598 err = read_normal_summaries(sbi, type);
3599 if (err)
3600 return err;
3601 }
3602
3603 /* sanity check for summary blocks */
3604 if (nats_in_cursum(nat_j) > NAT_JOURNAL_ENTRIES ||
David Brazdil0f672f62019-12-10 10:32:29 +00003605 sits_in_cursum(sit_j) > SIT_JOURNAL_ENTRIES) {
3606 f2fs_err(sbi, "invalid journal entries nats %u sits %u\n",
3607 nats_in_cursum(nat_j), sits_in_cursum(sit_j));
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003608 return -EINVAL;
David Brazdil0f672f62019-12-10 10:32:29 +00003609 }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003610
3611 return 0;
3612}
3613
3614static void write_compacted_summaries(struct f2fs_sb_info *sbi, block_t blkaddr)
3615{
3616 struct page *page;
3617 unsigned char *kaddr;
3618 struct f2fs_summary *summary;
3619 struct curseg_info *seg_i;
3620 int written_size = 0;
3621 int i, j;
3622
3623 page = f2fs_grab_meta_page(sbi, blkaddr++);
3624 kaddr = (unsigned char *)page_address(page);
3625 memset(kaddr, 0, PAGE_SIZE);
3626
3627 /* Step 1: write nat cache */
3628 seg_i = CURSEG_I(sbi, CURSEG_HOT_DATA);
3629 memcpy(kaddr, seg_i->journal, SUM_JOURNAL_SIZE);
3630 written_size += SUM_JOURNAL_SIZE;
3631
3632 /* Step 2: write sit cache */
3633 seg_i = CURSEG_I(sbi, CURSEG_COLD_DATA);
3634 memcpy(kaddr + written_size, seg_i->journal, SUM_JOURNAL_SIZE);
3635 written_size += SUM_JOURNAL_SIZE;
3636
3637 /* Step 3: write summary entries */
3638 for (i = CURSEG_HOT_DATA; i <= CURSEG_COLD_DATA; i++) {
3639 unsigned short blkoff;
3640 seg_i = CURSEG_I(sbi, i);
3641 if (sbi->ckpt->alloc_type[i] == SSR)
3642 blkoff = sbi->blocks_per_seg;
3643 else
3644 blkoff = curseg_blkoff(sbi, i);
3645
3646 for (j = 0; j < blkoff; j++) {
3647 if (!page) {
3648 page = f2fs_grab_meta_page(sbi, blkaddr++);
3649 kaddr = (unsigned char *)page_address(page);
3650 memset(kaddr, 0, PAGE_SIZE);
3651 written_size = 0;
3652 }
3653 summary = (struct f2fs_summary *)(kaddr + written_size);
3654 *summary = seg_i->sum_blk->entries[j];
3655 written_size += SUMMARY_SIZE;
3656
3657 if (written_size + SUMMARY_SIZE <= PAGE_SIZE -
3658 SUM_FOOTER_SIZE)
3659 continue;
3660
3661 set_page_dirty(page);
3662 f2fs_put_page(page, 1);
3663 page = NULL;
3664 }
3665 }
3666 if (page) {
3667 set_page_dirty(page);
3668 f2fs_put_page(page, 1);
3669 }
3670}
3671
3672static void write_normal_summaries(struct f2fs_sb_info *sbi,
3673 block_t blkaddr, int type)
3674{
3675 int i, end;
3676 if (IS_DATASEG(type))
3677 end = type + NR_CURSEG_DATA_TYPE;
3678 else
3679 end = type + NR_CURSEG_NODE_TYPE;
3680
3681 for (i = type; i < end; i++)
3682 write_current_sum_page(sbi, i, blkaddr + (i - type));
3683}
3684
3685void f2fs_write_data_summaries(struct f2fs_sb_info *sbi, block_t start_blk)
3686{
3687 if (is_set_ckpt_flags(sbi, CP_COMPACT_SUM_FLAG))
3688 write_compacted_summaries(sbi, start_blk);
3689 else
3690 write_normal_summaries(sbi, start_blk, CURSEG_HOT_DATA);
3691}
3692
3693void f2fs_write_node_summaries(struct f2fs_sb_info *sbi, block_t start_blk)
3694{
3695 write_normal_summaries(sbi, start_blk, CURSEG_HOT_NODE);
3696}
3697
3698int f2fs_lookup_journal_in_cursum(struct f2fs_journal *journal, int type,
3699 unsigned int val, int alloc)
3700{
3701 int i;
3702
3703 if (type == NAT_JOURNAL) {
3704 for (i = 0; i < nats_in_cursum(journal); i++) {
3705 if (le32_to_cpu(nid_in_journal(journal, i)) == val)
3706 return i;
3707 }
3708 if (alloc && __has_cursum_space(journal, 1, NAT_JOURNAL))
3709 return update_nats_in_cursum(journal, 1);
3710 } else if (type == SIT_JOURNAL) {
3711 for (i = 0; i < sits_in_cursum(journal); i++)
3712 if (le32_to_cpu(segno_in_journal(journal, i)) == val)
3713 return i;
3714 if (alloc && __has_cursum_space(journal, 1, SIT_JOURNAL))
3715 return update_sits_in_cursum(journal, 1);
3716 }
3717 return -1;
3718}
3719
3720static struct page *get_current_sit_page(struct f2fs_sb_info *sbi,
3721 unsigned int segno)
3722{
Olivier Deprez0e641232021-09-23 10:07:05 +02003723 return f2fs_get_meta_page(sbi, current_sit_addr(sbi, segno));
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003724}
3725
3726static struct page *get_next_sit_page(struct f2fs_sb_info *sbi,
3727 unsigned int start)
3728{
3729 struct sit_info *sit_i = SIT_I(sbi);
3730 struct page *page;
3731 pgoff_t src_off, dst_off;
3732
3733 src_off = current_sit_addr(sbi, start);
3734 dst_off = next_sit_addr(sbi, src_off);
3735
3736 page = f2fs_grab_meta_page(sbi, dst_off);
3737 seg_info_to_sit_page(sbi, page, start);
3738
3739 set_page_dirty(page);
3740 set_to_next_sit(sit_i, start);
3741
3742 return page;
3743}
3744
3745static struct sit_entry_set *grab_sit_entry_set(void)
3746{
3747 struct sit_entry_set *ses =
3748 f2fs_kmem_cache_alloc(sit_entry_set_slab, GFP_NOFS);
3749
3750 ses->entry_cnt = 0;
3751 INIT_LIST_HEAD(&ses->set_list);
3752 return ses;
3753}
3754
3755static void release_sit_entry_set(struct sit_entry_set *ses)
3756{
3757 list_del(&ses->set_list);
3758 kmem_cache_free(sit_entry_set_slab, ses);
3759}
3760
3761static void adjust_sit_entry_set(struct sit_entry_set *ses,
3762 struct list_head *head)
3763{
3764 struct sit_entry_set *next = ses;
3765
3766 if (list_is_last(&ses->set_list, head))
3767 return;
3768
3769 list_for_each_entry_continue(next, head, set_list)
3770 if (ses->entry_cnt <= next->entry_cnt)
3771 break;
3772
3773 list_move_tail(&ses->set_list, &next->set_list);
3774}
3775
3776static void add_sit_entry(unsigned int segno, struct list_head *head)
3777{
3778 struct sit_entry_set *ses;
3779 unsigned int start_segno = START_SEGNO(segno);
3780
3781 list_for_each_entry(ses, head, set_list) {
3782 if (ses->start_segno == start_segno) {
3783 ses->entry_cnt++;
3784 adjust_sit_entry_set(ses, head);
3785 return;
3786 }
3787 }
3788
3789 ses = grab_sit_entry_set();
3790
3791 ses->start_segno = start_segno;
3792 ses->entry_cnt++;
3793 list_add(&ses->set_list, head);
3794}
3795
3796static void add_sits_in_set(struct f2fs_sb_info *sbi)
3797{
3798 struct f2fs_sm_info *sm_info = SM_I(sbi);
3799 struct list_head *set_list = &sm_info->sit_entry_set;
3800 unsigned long *bitmap = SIT_I(sbi)->dirty_sentries_bitmap;
3801 unsigned int segno;
3802
3803 for_each_set_bit(segno, bitmap, MAIN_SEGS(sbi))
3804 add_sit_entry(segno, set_list);
3805}
3806
3807static void remove_sits_in_journal(struct f2fs_sb_info *sbi)
3808{
3809 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_COLD_DATA);
3810 struct f2fs_journal *journal = curseg->journal;
3811 int i;
3812
3813 down_write(&curseg->journal_rwsem);
3814 for (i = 0; i < sits_in_cursum(journal); i++) {
3815 unsigned int segno;
3816 bool dirtied;
3817
3818 segno = le32_to_cpu(segno_in_journal(journal, i));
3819 dirtied = __mark_sit_entry_dirty(sbi, segno);
3820
3821 if (!dirtied)
3822 add_sit_entry(segno, &SM_I(sbi)->sit_entry_set);
3823 }
3824 update_sits_in_cursum(journal, -i);
3825 up_write(&curseg->journal_rwsem);
3826}
3827
3828/*
3829 * CP calls this function, which flushes SIT entries including sit_journal,
3830 * and moves prefree segs to free segs.
3831 */
3832void f2fs_flush_sit_entries(struct f2fs_sb_info *sbi, struct cp_control *cpc)
3833{
3834 struct sit_info *sit_i = SIT_I(sbi);
3835 unsigned long *bitmap = sit_i->dirty_sentries_bitmap;
3836 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_COLD_DATA);
3837 struct f2fs_journal *journal = curseg->journal;
3838 struct sit_entry_set *ses, *tmp;
3839 struct list_head *head = &SM_I(sbi)->sit_entry_set;
David Brazdil0f672f62019-12-10 10:32:29 +00003840 bool to_journal = !is_sbi_flag_set(sbi, SBI_IS_RESIZEFS);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003841 struct seg_entry *se;
3842
3843 down_write(&sit_i->sentry_lock);
3844
3845 if (!sit_i->dirty_sentries)
3846 goto out;
3847
3848 /*
3849 * add and account sit entries of dirty bitmap in sit entry
3850 * set temporarily
3851 */
3852 add_sits_in_set(sbi);
3853
3854 /*
3855 * if there are no enough space in journal to store dirty sit
3856 * entries, remove all entries from journal and add and account
3857 * them in sit entry set.
3858 */
David Brazdil0f672f62019-12-10 10:32:29 +00003859 if (!__has_cursum_space(journal, sit_i->dirty_sentries, SIT_JOURNAL) ||
3860 !to_journal)
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003861 remove_sits_in_journal(sbi);
3862
3863 /*
3864 * there are two steps to flush sit entries:
3865 * #1, flush sit entries to journal in current cold data summary block.
3866 * #2, flush sit entries to sit page.
3867 */
3868 list_for_each_entry_safe(ses, tmp, head, set_list) {
3869 struct page *page = NULL;
3870 struct f2fs_sit_block *raw_sit = NULL;
3871 unsigned int start_segno = ses->start_segno;
3872 unsigned int end = min(start_segno + SIT_ENTRY_PER_BLOCK,
3873 (unsigned long)MAIN_SEGS(sbi));
3874 unsigned int segno = start_segno;
3875
3876 if (to_journal &&
3877 !__has_cursum_space(journal, ses->entry_cnt, SIT_JOURNAL))
3878 to_journal = false;
3879
3880 if (to_journal) {
3881 down_write(&curseg->journal_rwsem);
3882 } else {
3883 page = get_next_sit_page(sbi, start_segno);
3884 raw_sit = page_address(page);
3885 }
3886
3887 /* flush dirty sit entries in region of current sit set */
3888 for_each_set_bit_from(segno, bitmap, end) {
3889 int offset, sit_offset;
3890
3891 se = get_seg_entry(sbi, segno);
3892#ifdef CONFIG_F2FS_CHECK_FS
3893 if (memcmp(se->cur_valid_map, se->cur_valid_map_mir,
3894 SIT_VBLOCK_MAP_SIZE))
3895 f2fs_bug_on(sbi, 1);
3896#endif
3897
3898 /* add discard candidates */
3899 if (!(cpc->reason & CP_DISCARD)) {
3900 cpc->trim_start = segno;
3901 add_discard_addrs(sbi, cpc, false);
3902 }
3903
3904 if (to_journal) {
3905 offset = f2fs_lookup_journal_in_cursum(journal,
3906 SIT_JOURNAL, segno, 1);
3907 f2fs_bug_on(sbi, offset < 0);
3908 segno_in_journal(journal, offset) =
3909 cpu_to_le32(segno);
3910 seg_info_to_raw_sit(se,
3911 &sit_in_journal(journal, offset));
3912 check_block_count(sbi, segno,
3913 &sit_in_journal(journal, offset));
3914 } else {
3915 sit_offset = SIT_ENTRY_OFFSET(sit_i, segno);
3916 seg_info_to_raw_sit(se,
3917 &raw_sit->entries[sit_offset]);
3918 check_block_count(sbi, segno,
3919 &raw_sit->entries[sit_offset]);
3920 }
3921
3922 __clear_bit(segno, bitmap);
3923 sit_i->dirty_sentries--;
3924 ses->entry_cnt--;
3925 }
3926
3927 if (to_journal)
3928 up_write(&curseg->journal_rwsem);
3929 else
3930 f2fs_put_page(page, 1);
3931
3932 f2fs_bug_on(sbi, ses->entry_cnt);
3933 release_sit_entry_set(ses);
3934 }
3935
3936 f2fs_bug_on(sbi, !list_empty(head));
3937 f2fs_bug_on(sbi, sit_i->dirty_sentries);
3938out:
3939 if (cpc->reason & CP_DISCARD) {
3940 __u64 trim_start = cpc->trim_start;
3941
3942 for (; cpc->trim_start <= cpc->trim_end; cpc->trim_start++)
3943 add_discard_addrs(sbi, cpc, false);
3944
3945 cpc->trim_start = trim_start;
3946 }
3947 up_write(&sit_i->sentry_lock);
3948
3949 set_prefree_as_free_segments(sbi);
3950}
3951
3952static int build_sit_info(struct f2fs_sb_info *sbi)
3953{
3954 struct f2fs_super_block *raw_super = F2FS_RAW_SUPER(sbi);
3955 struct sit_info *sit_i;
3956 unsigned int sit_segs, start;
David Brazdil0f672f62019-12-10 10:32:29 +00003957 char *src_bitmap, *bitmap;
3958 unsigned int bitmap_size, main_bitmap_size, sit_bitmap_size;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003959
3960 /* allocate memory for SIT information */
3961 sit_i = f2fs_kzalloc(sbi, sizeof(struct sit_info), GFP_KERNEL);
3962 if (!sit_i)
3963 return -ENOMEM;
3964
3965 SM_I(sbi)->sit_info = sit_i;
3966
3967 sit_i->sentries =
3968 f2fs_kvzalloc(sbi, array_size(sizeof(struct seg_entry),
3969 MAIN_SEGS(sbi)),
3970 GFP_KERNEL);
3971 if (!sit_i->sentries)
3972 return -ENOMEM;
3973
David Brazdil0f672f62019-12-10 10:32:29 +00003974 main_bitmap_size = f2fs_bitmap_size(MAIN_SEGS(sbi));
3975 sit_i->dirty_sentries_bitmap = f2fs_kvzalloc(sbi, main_bitmap_size,
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003976 GFP_KERNEL);
3977 if (!sit_i->dirty_sentries_bitmap)
3978 return -ENOMEM;
3979
David Brazdil0f672f62019-12-10 10:32:29 +00003980#ifdef CONFIG_F2FS_CHECK_FS
3981 bitmap_size = MAIN_SEGS(sbi) * SIT_VBLOCK_MAP_SIZE * 4;
3982#else
3983 bitmap_size = MAIN_SEGS(sbi) * SIT_VBLOCK_MAP_SIZE * 3;
3984#endif
3985 sit_i->bitmap = f2fs_kvzalloc(sbi, bitmap_size, GFP_KERNEL);
3986 if (!sit_i->bitmap)
3987 return -ENOMEM;
3988
3989 bitmap = sit_i->bitmap;
3990
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003991 for (start = 0; start < MAIN_SEGS(sbi); start++) {
David Brazdil0f672f62019-12-10 10:32:29 +00003992 sit_i->sentries[start].cur_valid_map = bitmap;
3993 bitmap += SIT_VBLOCK_MAP_SIZE;
3994
3995 sit_i->sentries[start].ckpt_valid_map = bitmap;
3996 bitmap += SIT_VBLOCK_MAP_SIZE;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00003997
3998#ifdef CONFIG_F2FS_CHECK_FS
David Brazdil0f672f62019-12-10 10:32:29 +00003999 sit_i->sentries[start].cur_valid_map_mir = bitmap;
4000 bitmap += SIT_VBLOCK_MAP_SIZE;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004001#endif
4002
David Brazdil0f672f62019-12-10 10:32:29 +00004003 sit_i->sentries[start].discard_map = bitmap;
4004 bitmap += SIT_VBLOCK_MAP_SIZE;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004005 }
4006
4007 sit_i->tmp_map = f2fs_kzalloc(sbi, SIT_VBLOCK_MAP_SIZE, GFP_KERNEL);
4008 if (!sit_i->tmp_map)
4009 return -ENOMEM;
4010
David Brazdil0f672f62019-12-10 10:32:29 +00004011 if (__is_large_section(sbi)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004012 sit_i->sec_entries =
4013 f2fs_kvzalloc(sbi, array_size(sizeof(struct sec_entry),
4014 MAIN_SECS(sbi)),
4015 GFP_KERNEL);
4016 if (!sit_i->sec_entries)
4017 return -ENOMEM;
4018 }
4019
4020 /* get information related with SIT */
4021 sit_segs = le32_to_cpu(raw_super->segment_count_sit) >> 1;
4022
4023 /* setup SIT bitmap from ckeckpoint pack */
David Brazdil0f672f62019-12-10 10:32:29 +00004024 sit_bitmap_size = __bitmap_size(sbi, SIT_BITMAP);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004025 src_bitmap = __bitmap_ptr(sbi, SIT_BITMAP);
4026
David Brazdil0f672f62019-12-10 10:32:29 +00004027 sit_i->sit_bitmap = kmemdup(src_bitmap, sit_bitmap_size, GFP_KERNEL);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004028 if (!sit_i->sit_bitmap)
4029 return -ENOMEM;
4030
4031#ifdef CONFIG_F2FS_CHECK_FS
David Brazdil0f672f62019-12-10 10:32:29 +00004032 sit_i->sit_bitmap_mir = kmemdup(src_bitmap,
4033 sit_bitmap_size, GFP_KERNEL);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004034 if (!sit_i->sit_bitmap_mir)
4035 return -ENOMEM;
David Brazdil0f672f62019-12-10 10:32:29 +00004036
4037 sit_i->invalid_segmap = f2fs_kvzalloc(sbi,
4038 main_bitmap_size, GFP_KERNEL);
4039 if (!sit_i->invalid_segmap)
4040 return -ENOMEM;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004041#endif
4042
4043 /* init SIT information */
4044 sit_i->s_ops = &default_salloc_ops;
4045
4046 sit_i->sit_base_addr = le32_to_cpu(raw_super->sit_blkaddr);
4047 sit_i->sit_blocks = sit_segs << sbi->log_blocks_per_seg;
4048 sit_i->written_valid_blocks = 0;
David Brazdil0f672f62019-12-10 10:32:29 +00004049 sit_i->bitmap_size = sit_bitmap_size;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004050 sit_i->dirty_sentries = 0;
4051 sit_i->sents_per_block = SIT_ENTRY_PER_BLOCK;
4052 sit_i->elapsed_time = le64_to_cpu(sbi->ckpt->elapsed_time);
4053 sit_i->mounted_time = ktime_get_real_seconds();
4054 init_rwsem(&sit_i->sentry_lock);
4055 return 0;
4056}
4057
4058static int build_free_segmap(struct f2fs_sb_info *sbi)
4059{
4060 struct free_segmap_info *free_i;
4061 unsigned int bitmap_size, sec_bitmap_size;
4062
4063 /* allocate memory for free segmap information */
4064 free_i = f2fs_kzalloc(sbi, sizeof(struct free_segmap_info), GFP_KERNEL);
4065 if (!free_i)
4066 return -ENOMEM;
4067
4068 SM_I(sbi)->free_info = free_i;
4069
4070 bitmap_size = f2fs_bitmap_size(MAIN_SEGS(sbi));
4071 free_i->free_segmap = f2fs_kvmalloc(sbi, bitmap_size, GFP_KERNEL);
4072 if (!free_i->free_segmap)
4073 return -ENOMEM;
4074
4075 sec_bitmap_size = f2fs_bitmap_size(MAIN_SECS(sbi));
4076 free_i->free_secmap = f2fs_kvmalloc(sbi, sec_bitmap_size, GFP_KERNEL);
4077 if (!free_i->free_secmap)
4078 return -ENOMEM;
4079
4080 /* set all segments as dirty temporarily */
4081 memset(free_i->free_segmap, 0xff, bitmap_size);
4082 memset(free_i->free_secmap, 0xff, sec_bitmap_size);
4083
4084 /* init free segmap information */
4085 free_i->start_segno = GET_SEGNO_FROM_SEG0(sbi, MAIN_BLKADDR(sbi));
4086 free_i->free_segments = 0;
4087 free_i->free_sections = 0;
4088 spin_lock_init(&free_i->segmap_lock);
4089 return 0;
4090}
4091
4092static int build_curseg(struct f2fs_sb_info *sbi)
4093{
4094 struct curseg_info *array;
4095 int i;
4096
4097 array = f2fs_kzalloc(sbi, array_size(NR_CURSEG_TYPE, sizeof(*array)),
4098 GFP_KERNEL);
4099 if (!array)
4100 return -ENOMEM;
4101
4102 SM_I(sbi)->curseg_array = array;
4103
4104 for (i = 0; i < NR_CURSEG_TYPE; i++) {
4105 mutex_init(&array[i].curseg_mutex);
4106 array[i].sum_blk = f2fs_kzalloc(sbi, PAGE_SIZE, GFP_KERNEL);
4107 if (!array[i].sum_blk)
4108 return -ENOMEM;
4109 init_rwsem(&array[i].journal_rwsem);
4110 array[i].journal = f2fs_kzalloc(sbi,
4111 sizeof(struct f2fs_journal), GFP_KERNEL);
4112 if (!array[i].journal)
4113 return -ENOMEM;
4114 array[i].segno = NULL_SEGNO;
4115 array[i].next_blkoff = 0;
4116 }
4117 return restore_curseg_summaries(sbi);
4118}
4119
4120static int build_sit_entries(struct f2fs_sb_info *sbi)
4121{
4122 struct sit_info *sit_i = SIT_I(sbi);
4123 struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_COLD_DATA);
4124 struct f2fs_journal *journal = curseg->journal;
4125 struct seg_entry *se;
4126 struct f2fs_sit_entry sit;
4127 int sit_blk_cnt = SIT_BLK_CNT(sbi);
4128 unsigned int i, start, end;
4129 unsigned int readed, start_blk = 0;
4130 int err = 0;
4131 block_t total_node_blocks = 0;
4132
4133 do {
4134 readed = f2fs_ra_meta_pages(sbi, start_blk, BIO_MAX_PAGES,
4135 META_SIT, true);
4136
4137 start = start_blk * sit_i->sents_per_block;
4138 end = (start_blk + readed) * sit_i->sents_per_block;
4139
4140 for (; start < end && start < MAIN_SEGS(sbi); start++) {
4141 struct f2fs_sit_block *sit_blk;
4142 struct page *page;
4143
4144 se = &sit_i->sentries[start];
4145 page = get_current_sit_page(sbi, start);
David Brazdil0f672f62019-12-10 10:32:29 +00004146 if (IS_ERR(page))
4147 return PTR_ERR(page);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004148 sit_blk = (struct f2fs_sit_block *)page_address(page);
4149 sit = sit_blk->entries[SIT_ENTRY_OFFSET(sit_i, start)];
4150 f2fs_put_page(page, 1);
4151
4152 err = check_block_count(sbi, start, &sit);
4153 if (err)
4154 return err;
4155 seg_info_from_raw_sit(se, &sit);
4156 if (IS_NODESEG(se->type))
4157 total_node_blocks += se->valid_blocks;
4158
4159 /* build discard map only one time */
David Brazdil0f672f62019-12-10 10:32:29 +00004160 if (is_set_ckpt_flags(sbi, CP_TRIMMED_FLAG)) {
4161 memset(se->discard_map, 0xff,
4162 SIT_VBLOCK_MAP_SIZE);
4163 } else {
4164 memcpy(se->discard_map,
4165 se->cur_valid_map,
4166 SIT_VBLOCK_MAP_SIZE);
4167 sbi->discard_blks +=
4168 sbi->blocks_per_seg -
4169 se->valid_blocks;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004170 }
4171
David Brazdil0f672f62019-12-10 10:32:29 +00004172 if (__is_large_section(sbi))
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004173 get_sec_entry(sbi, start)->valid_blocks +=
4174 se->valid_blocks;
4175 }
4176 start_blk += readed;
4177 } while (start_blk < sit_blk_cnt);
4178
4179 down_read(&curseg->journal_rwsem);
4180 for (i = 0; i < sits_in_cursum(journal); i++) {
4181 unsigned int old_valid_blocks;
4182
4183 start = le32_to_cpu(segno_in_journal(journal, i));
4184 if (start >= MAIN_SEGS(sbi)) {
David Brazdil0f672f62019-12-10 10:32:29 +00004185 f2fs_err(sbi, "Wrong journal entry on segno %u",
4186 start);
4187 err = -EFSCORRUPTED;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004188 break;
4189 }
4190
4191 se = &sit_i->sentries[start];
4192 sit = sit_in_journal(journal, i);
4193
4194 old_valid_blocks = se->valid_blocks;
4195 if (IS_NODESEG(se->type))
4196 total_node_blocks -= old_valid_blocks;
4197
4198 err = check_block_count(sbi, start, &sit);
4199 if (err)
4200 break;
4201 seg_info_from_raw_sit(se, &sit);
4202 if (IS_NODESEG(se->type))
4203 total_node_blocks += se->valid_blocks;
4204
David Brazdil0f672f62019-12-10 10:32:29 +00004205 if (is_set_ckpt_flags(sbi, CP_TRIMMED_FLAG)) {
4206 memset(se->discard_map, 0xff, SIT_VBLOCK_MAP_SIZE);
4207 } else {
4208 memcpy(se->discard_map, se->cur_valid_map,
4209 SIT_VBLOCK_MAP_SIZE);
4210 sbi->discard_blks += old_valid_blocks;
4211 sbi->discard_blks -= se->valid_blocks;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004212 }
4213
David Brazdil0f672f62019-12-10 10:32:29 +00004214 if (__is_large_section(sbi)) {
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004215 get_sec_entry(sbi, start)->valid_blocks +=
4216 se->valid_blocks;
4217 get_sec_entry(sbi, start)->valid_blocks -=
4218 old_valid_blocks;
4219 }
4220 }
4221 up_read(&curseg->journal_rwsem);
4222
4223 if (!err && total_node_blocks != valid_node_count(sbi)) {
David Brazdil0f672f62019-12-10 10:32:29 +00004224 f2fs_err(sbi, "SIT is corrupted node# %u vs %u",
4225 total_node_blocks, valid_node_count(sbi));
4226 err = -EFSCORRUPTED;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004227 }
4228
4229 return err;
4230}
4231
4232static void init_free_segmap(struct f2fs_sb_info *sbi)
4233{
4234 unsigned int start;
4235 int type;
4236
4237 for (start = 0; start < MAIN_SEGS(sbi); start++) {
4238 struct seg_entry *sentry = get_seg_entry(sbi, start);
4239 if (!sentry->valid_blocks)
4240 __set_free(sbi, start);
4241 else
4242 SIT_I(sbi)->written_valid_blocks +=
4243 sentry->valid_blocks;
4244 }
4245
4246 /* set use the current segments */
4247 for (type = CURSEG_HOT_DATA; type <= CURSEG_COLD_NODE; type++) {
4248 struct curseg_info *curseg_t = CURSEG_I(sbi, type);
4249 __set_test_and_inuse(sbi, curseg_t->segno);
4250 }
4251}
4252
4253static void init_dirty_segmap(struct f2fs_sb_info *sbi)
4254{
4255 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
4256 struct free_segmap_info *free_i = FREE_I(sbi);
4257 unsigned int segno = 0, offset = 0;
4258 unsigned short valid_blocks;
4259
4260 while (1) {
4261 /* find dirty segment based on free segmap */
4262 segno = find_next_inuse(free_i, MAIN_SEGS(sbi), offset);
4263 if (segno >= MAIN_SEGS(sbi))
4264 break;
4265 offset = segno + 1;
4266 valid_blocks = get_valid_blocks(sbi, segno, false);
4267 if (valid_blocks == sbi->blocks_per_seg || !valid_blocks)
4268 continue;
4269 if (valid_blocks > sbi->blocks_per_seg) {
4270 f2fs_bug_on(sbi, 1);
4271 continue;
4272 }
4273 mutex_lock(&dirty_i->seglist_lock);
4274 __locate_dirty_segment(sbi, segno, DIRTY);
4275 mutex_unlock(&dirty_i->seglist_lock);
4276 }
4277}
4278
4279static int init_victim_secmap(struct f2fs_sb_info *sbi)
4280{
4281 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
4282 unsigned int bitmap_size = f2fs_bitmap_size(MAIN_SECS(sbi));
4283
4284 dirty_i->victim_secmap = f2fs_kvzalloc(sbi, bitmap_size, GFP_KERNEL);
4285 if (!dirty_i->victim_secmap)
4286 return -ENOMEM;
4287 return 0;
4288}
4289
4290static int build_dirty_segmap(struct f2fs_sb_info *sbi)
4291{
4292 struct dirty_seglist_info *dirty_i;
4293 unsigned int bitmap_size, i;
4294
4295 /* allocate memory for dirty segments list information */
4296 dirty_i = f2fs_kzalloc(sbi, sizeof(struct dirty_seglist_info),
4297 GFP_KERNEL);
4298 if (!dirty_i)
4299 return -ENOMEM;
4300
4301 SM_I(sbi)->dirty_info = dirty_i;
4302 mutex_init(&dirty_i->seglist_lock);
4303
4304 bitmap_size = f2fs_bitmap_size(MAIN_SEGS(sbi));
4305
4306 for (i = 0; i < NR_DIRTY_TYPE; i++) {
4307 dirty_i->dirty_segmap[i] = f2fs_kvzalloc(sbi, bitmap_size,
4308 GFP_KERNEL);
4309 if (!dirty_i->dirty_segmap[i])
4310 return -ENOMEM;
4311 }
4312
4313 init_dirty_segmap(sbi);
4314 return init_victim_secmap(sbi);
4315}
4316
David Brazdil0f672f62019-12-10 10:32:29 +00004317static int sanity_check_curseg(struct f2fs_sb_info *sbi)
4318{
4319 int i;
4320
4321 /*
4322 * In LFS/SSR curseg, .next_blkoff should point to an unused blkaddr;
4323 * In LFS curseg, all blkaddr after .next_blkoff should be unused.
4324 */
4325 for (i = 0; i < NO_CHECK_TYPE; i++) {
4326 struct curseg_info *curseg = CURSEG_I(sbi, i);
4327 struct seg_entry *se = get_seg_entry(sbi, curseg->segno);
4328 unsigned int blkofs = curseg->next_blkoff;
4329
4330 if (f2fs_test_bit(blkofs, se->cur_valid_map))
4331 goto out;
4332
4333 if (curseg->alloc_type == SSR)
4334 continue;
4335
4336 for (blkofs += 1; blkofs < sbi->blocks_per_seg; blkofs++) {
4337 if (!f2fs_test_bit(blkofs, se->cur_valid_map))
4338 continue;
4339out:
4340 f2fs_err(sbi,
4341 "Current segment's next free block offset is inconsistent with bitmap, logtype:%u, segno:%u, type:%u, next_blkoff:%u, blkofs:%u",
4342 i, curseg->segno, curseg->alloc_type,
4343 curseg->next_blkoff, blkofs);
4344 return -EFSCORRUPTED;
4345 }
4346 }
4347 return 0;
4348}
4349
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004350/*
4351 * Update min, max modified time for cost-benefit GC algorithm
4352 */
4353static void init_min_max_mtime(struct f2fs_sb_info *sbi)
4354{
4355 struct sit_info *sit_i = SIT_I(sbi);
4356 unsigned int segno;
4357
4358 down_write(&sit_i->sentry_lock);
4359
4360 sit_i->min_mtime = ULLONG_MAX;
4361
4362 for (segno = 0; segno < MAIN_SEGS(sbi); segno += sbi->segs_per_sec) {
4363 unsigned int i;
4364 unsigned long long mtime = 0;
4365
4366 for (i = 0; i < sbi->segs_per_sec; i++)
4367 mtime += get_seg_entry(sbi, segno + i)->mtime;
4368
4369 mtime = div_u64(mtime, sbi->segs_per_sec);
4370
4371 if (sit_i->min_mtime > mtime)
4372 sit_i->min_mtime = mtime;
4373 }
4374 sit_i->max_mtime = get_mtime(sbi, false);
4375 up_write(&sit_i->sentry_lock);
4376}
4377
4378int f2fs_build_segment_manager(struct f2fs_sb_info *sbi)
4379{
4380 struct f2fs_super_block *raw_super = F2FS_RAW_SUPER(sbi);
4381 struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi);
4382 struct f2fs_sm_info *sm_info;
4383 int err;
4384
4385 sm_info = f2fs_kzalloc(sbi, sizeof(struct f2fs_sm_info), GFP_KERNEL);
4386 if (!sm_info)
4387 return -ENOMEM;
4388
4389 /* init sm info */
4390 sbi->sm_info = sm_info;
4391 sm_info->seg0_blkaddr = le32_to_cpu(raw_super->segment0_blkaddr);
4392 sm_info->main_blkaddr = le32_to_cpu(raw_super->main_blkaddr);
4393 sm_info->segment_count = le32_to_cpu(raw_super->segment_count);
4394 sm_info->reserved_segments = le32_to_cpu(ckpt->rsvd_segment_count);
4395 sm_info->ovp_segments = le32_to_cpu(ckpt->overprov_segment_count);
4396 sm_info->main_segments = le32_to_cpu(raw_super->segment_count_main);
4397 sm_info->ssa_blkaddr = le32_to_cpu(raw_super->ssa_blkaddr);
4398 sm_info->rec_prefree_segments = sm_info->main_segments *
4399 DEF_RECLAIM_PREFREE_SEGMENTS / 100;
4400 if (sm_info->rec_prefree_segments > DEF_MAX_RECLAIM_PREFREE_SEGMENTS)
4401 sm_info->rec_prefree_segments = DEF_MAX_RECLAIM_PREFREE_SEGMENTS;
4402
4403 if (!test_opt(sbi, LFS))
4404 sm_info->ipu_policy = 1 << F2FS_IPU_FSYNC;
4405 sm_info->min_ipu_util = DEF_MIN_IPU_UTIL;
4406 sm_info->min_fsync_blocks = DEF_MIN_FSYNC_BLOCKS;
4407 sm_info->min_seq_blocks = sbi->blocks_per_seg * sbi->segs_per_sec;
4408 sm_info->min_hot_blocks = DEF_MIN_HOT_BLOCKS;
4409 sm_info->min_ssr_sections = reserved_sections(sbi);
4410
4411 INIT_LIST_HEAD(&sm_info->sit_entry_set);
4412
4413 init_rwsem(&sm_info->curseg_lock);
4414
4415 if (!f2fs_readonly(sbi->sb)) {
4416 err = f2fs_create_flush_cmd_control(sbi);
4417 if (err)
4418 return err;
4419 }
4420
4421 err = create_discard_cmd_control(sbi);
4422 if (err)
4423 return err;
4424
4425 err = build_sit_info(sbi);
4426 if (err)
4427 return err;
4428 err = build_free_segmap(sbi);
4429 if (err)
4430 return err;
4431 err = build_curseg(sbi);
4432 if (err)
4433 return err;
4434
4435 /* reinit free segmap based on SIT */
4436 err = build_sit_entries(sbi);
4437 if (err)
4438 return err;
4439
4440 init_free_segmap(sbi);
4441 err = build_dirty_segmap(sbi);
4442 if (err)
4443 return err;
4444
David Brazdil0f672f62019-12-10 10:32:29 +00004445 err = sanity_check_curseg(sbi);
4446 if (err)
4447 return err;
4448
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004449 init_min_max_mtime(sbi);
4450 return 0;
4451}
4452
4453static void discard_dirty_segmap(struct f2fs_sb_info *sbi,
4454 enum dirty_type dirty_type)
4455{
4456 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
4457
4458 mutex_lock(&dirty_i->seglist_lock);
4459 kvfree(dirty_i->dirty_segmap[dirty_type]);
4460 dirty_i->nr_dirty[dirty_type] = 0;
4461 mutex_unlock(&dirty_i->seglist_lock);
4462}
4463
4464static void destroy_victim_secmap(struct f2fs_sb_info *sbi)
4465{
4466 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
4467 kvfree(dirty_i->victim_secmap);
4468}
4469
4470static void destroy_dirty_segmap(struct f2fs_sb_info *sbi)
4471{
4472 struct dirty_seglist_info *dirty_i = DIRTY_I(sbi);
4473 int i;
4474
4475 if (!dirty_i)
4476 return;
4477
4478 /* discard pre-free/dirty segments list */
4479 for (i = 0; i < NR_DIRTY_TYPE; i++)
4480 discard_dirty_segmap(sbi, i);
4481
4482 destroy_victim_secmap(sbi);
4483 SM_I(sbi)->dirty_info = NULL;
David Brazdil0f672f62019-12-10 10:32:29 +00004484 kvfree(dirty_i);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004485}
4486
4487static void destroy_curseg(struct f2fs_sb_info *sbi)
4488{
4489 struct curseg_info *array = SM_I(sbi)->curseg_array;
4490 int i;
4491
4492 if (!array)
4493 return;
4494 SM_I(sbi)->curseg_array = NULL;
4495 for (i = 0; i < NR_CURSEG_TYPE; i++) {
David Brazdil0f672f62019-12-10 10:32:29 +00004496 kvfree(array[i].sum_blk);
4497 kvfree(array[i].journal);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004498 }
David Brazdil0f672f62019-12-10 10:32:29 +00004499 kvfree(array);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004500}
4501
4502static void destroy_free_segmap(struct f2fs_sb_info *sbi)
4503{
4504 struct free_segmap_info *free_i = SM_I(sbi)->free_info;
4505 if (!free_i)
4506 return;
4507 SM_I(sbi)->free_info = NULL;
4508 kvfree(free_i->free_segmap);
4509 kvfree(free_i->free_secmap);
David Brazdil0f672f62019-12-10 10:32:29 +00004510 kvfree(free_i);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004511}
4512
4513static void destroy_sit_info(struct f2fs_sb_info *sbi)
4514{
4515 struct sit_info *sit_i = SIT_I(sbi);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004516
4517 if (!sit_i)
4518 return;
4519
David Brazdil0f672f62019-12-10 10:32:29 +00004520 if (sit_i->sentries)
4521 kvfree(sit_i->bitmap);
4522 kvfree(sit_i->tmp_map);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004523
4524 kvfree(sit_i->sentries);
4525 kvfree(sit_i->sec_entries);
4526 kvfree(sit_i->dirty_sentries_bitmap);
4527
4528 SM_I(sbi)->sit_info = NULL;
David Brazdil0f672f62019-12-10 10:32:29 +00004529 kvfree(sit_i->sit_bitmap);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004530#ifdef CONFIG_F2FS_CHECK_FS
David Brazdil0f672f62019-12-10 10:32:29 +00004531 kvfree(sit_i->sit_bitmap_mir);
4532 kvfree(sit_i->invalid_segmap);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004533#endif
David Brazdil0f672f62019-12-10 10:32:29 +00004534 kvfree(sit_i);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004535}
4536
4537void f2fs_destroy_segment_manager(struct f2fs_sb_info *sbi)
4538{
4539 struct f2fs_sm_info *sm_info = SM_I(sbi);
4540
4541 if (!sm_info)
4542 return;
4543 f2fs_destroy_flush_cmd_control(sbi, true);
4544 destroy_discard_cmd_control(sbi);
4545 destroy_dirty_segmap(sbi);
4546 destroy_curseg(sbi);
4547 destroy_free_segmap(sbi);
4548 destroy_sit_info(sbi);
4549 sbi->sm_info = NULL;
David Brazdil0f672f62019-12-10 10:32:29 +00004550 kvfree(sm_info);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00004551}
4552
4553int __init f2fs_create_segment_manager_caches(void)
4554{
4555 discard_entry_slab = f2fs_kmem_cache_create("discard_entry",
4556 sizeof(struct discard_entry));
4557 if (!discard_entry_slab)
4558 goto fail;
4559
4560 discard_cmd_slab = f2fs_kmem_cache_create("discard_cmd",
4561 sizeof(struct discard_cmd));
4562 if (!discard_cmd_slab)
4563 goto destroy_discard_entry;
4564
4565 sit_entry_set_slab = f2fs_kmem_cache_create("sit_entry_set",
4566 sizeof(struct sit_entry_set));
4567 if (!sit_entry_set_slab)
4568 goto destroy_discard_cmd;
4569
4570 inmem_entry_slab = f2fs_kmem_cache_create("inmem_page_entry",
4571 sizeof(struct inmem_pages));
4572 if (!inmem_entry_slab)
4573 goto destroy_sit_entry_set;
4574 return 0;
4575
4576destroy_sit_entry_set:
4577 kmem_cache_destroy(sit_entry_set_slab);
4578destroy_discard_cmd:
4579 kmem_cache_destroy(discard_cmd_slab);
4580destroy_discard_entry:
4581 kmem_cache_destroy(discard_entry_slab);
4582fail:
4583 return -ENOMEM;
4584}
4585
4586void f2fs_destroy_segment_manager_caches(void)
4587{
4588 kmem_cache_destroy(sit_entry_set_slab);
4589 kmem_cache_destroy(discard_cmd_slab);
4590 kmem_cache_destroy(discard_entry_slab);
4591 kmem_cache_destroy(inmem_entry_slab);
4592}