Commit | Line | Data |
---|---|---|
0a8165d7 | 1 | /* |
351df4b2 JK |
2 | * fs/f2fs/segment.c |
3 | * | |
4 | * Copyright (c) 2012 Samsung Electronics Co., Ltd. | |
5 | * http://www.samsung.com/ | |
6 | * | |
7 | * This program is free software; you can redistribute it and/or modify | |
8 | * it under the terms of the GNU General Public License version 2 as | |
9 | * published by the Free Software Foundation. | |
10 | */ | |
11 | #include <linux/fs.h> | |
12 | #include <linux/f2fs_fs.h> | |
13 | #include <linux/bio.h> | |
14 | #include <linux/blkdev.h> | |
690e4a3e | 15 | #include <linux/prefetch.h> |
6b4afdd7 | 16 | #include <linux/kthread.h> |
74de593a | 17 | #include <linux/swap.h> |
60b99b48 | 18 | #include <linux/timer.h> |
351df4b2 JK |
19 | |
20 | #include "f2fs.h" | |
21 | #include "segment.h" | |
22 | #include "node.h" | |
9e4ded3f | 23 | #include "trace.h" |
6ec178da | 24 | #include <trace/events/f2fs.h> |
351df4b2 | 25 | |
9a7f143a CL |
26 | #define __reverse_ffz(x) __reverse_ffs(~(x)) |
27 | ||
7fd9e544 | 28 | static struct kmem_cache *discard_entry_slab; |
184a5cd2 | 29 | static struct kmem_cache *sit_entry_set_slab; |
88b88a66 | 30 | static struct kmem_cache *inmem_entry_slab; |
7fd9e544 | 31 | |
f96999c3 JK |
32 | static unsigned long __reverse_ulong(unsigned char *str) |
33 | { | |
34 | unsigned long tmp = 0; | |
35 | int shift = 24, idx = 0; | |
36 | ||
37 | #if BITS_PER_LONG == 64 | |
38 | shift = 56; | |
39 | #endif | |
40 | while (shift >= 0) { | |
41 | tmp |= (unsigned long)str[idx++] << shift; | |
42 | shift -= BITS_PER_BYTE; | |
43 | } | |
44 | return tmp; | |
45 | } | |
46 | ||
9a7f143a CL |
47 | /* |
48 | * __reverse_ffs is copied from include/asm-generic/bitops/__ffs.h since | |
49 | * MSB and LSB are reversed in a byte by f2fs_set_bit. | |
50 | */ | |
51 | static inline unsigned long __reverse_ffs(unsigned long word) | |
52 | { | |
53 | int num = 0; | |
54 | ||
55 | #if BITS_PER_LONG == 64 | |
f96999c3 | 56 | if ((word & 0xffffffff00000000UL) == 0) |
9a7f143a | 57 | num += 32; |
f96999c3 | 58 | else |
9a7f143a | 59 | word >>= 32; |
9a7f143a | 60 | #endif |
f96999c3 | 61 | if ((word & 0xffff0000) == 0) |
9a7f143a | 62 | num += 16; |
f96999c3 | 63 | else |
9a7f143a | 64 | word >>= 16; |
f96999c3 JK |
65 | |
66 | if ((word & 0xff00) == 0) | |
9a7f143a | 67 | num += 8; |
f96999c3 | 68 | else |
9a7f143a | 69 | word >>= 8; |
f96999c3 | 70 | |
9a7f143a CL |
71 | if ((word & 0xf0) == 0) |
72 | num += 4; | |
73 | else | |
74 | word >>= 4; | |
f96999c3 | 75 | |
9a7f143a CL |
76 | if ((word & 0xc) == 0) |
77 | num += 2; | |
78 | else | |
79 | word >>= 2; | |
f96999c3 | 80 | |
9a7f143a CL |
81 | if ((word & 0x2) == 0) |
82 | num += 1; | |
83 | return num; | |
84 | } | |
85 | ||
86 | /* | |
e1c42045 | 87 | * __find_rev_next(_zero)_bit is copied from lib/find_next_bit.c because |
9a7f143a | 88 | * f2fs_set_bit makes MSB and LSB reversed in a byte. |
692223d1 | 89 | * @size must be integral times of unsigned long. |
9a7f143a | 90 | * Example: |
f96999c3 JK |
91 | * MSB <--> LSB |
92 | * f2fs_set_bit(0, bitmap) => 1000 0000 | |
93 | * f2fs_set_bit(7, bitmap) => 0000 0001 | |
9a7f143a CL |
94 | */ |
95 | static unsigned long __find_rev_next_bit(const unsigned long *addr, | |
96 | unsigned long size, unsigned long offset) | |
97 | { | |
98 | const unsigned long *p = addr + BIT_WORD(offset); | |
692223d1 | 99 | unsigned long result = size; |
9a7f143a | 100 | unsigned long tmp; |
9a7f143a CL |
101 | |
102 | if (offset >= size) | |
103 | return size; | |
104 | ||
692223d1 | 105 | size -= (offset & ~(BITS_PER_LONG - 1)); |
9a7f143a | 106 | offset %= BITS_PER_LONG; |
f96999c3 | 107 | |
692223d1 FL |
108 | while (1) { |
109 | if (*p == 0) | |
110 | goto pass; | |
9a7f143a | 111 | |
f96999c3 | 112 | tmp = __reverse_ulong((unsigned char *)p); |
692223d1 FL |
113 | |
114 | tmp &= ~0UL >> offset; | |
115 | if (size < BITS_PER_LONG) | |
116 | tmp &= (~0UL << (BITS_PER_LONG - size)); | |
9a7f143a | 117 | if (tmp) |
692223d1 FL |
118 | goto found; |
119 | pass: | |
120 | if (size <= BITS_PER_LONG) | |
121 | break; | |
9a7f143a | 122 | size -= BITS_PER_LONG; |
692223d1 | 123 | offset = 0; |
f96999c3 | 124 | p++; |
9a7f143a | 125 | } |
692223d1 FL |
126 | return result; |
127 | found: | |
128 | return result - size + __reverse_ffs(tmp); | |
9a7f143a CL |
129 | } |
130 | ||
131 | static unsigned long __find_rev_next_zero_bit(const unsigned long *addr, | |
132 | unsigned long size, unsigned long offset) | |
133 | { | |
134 | const unsigned long *p = addr + BIT_WORD(offset); | |
80609448 | 135 | unsigned long result = size; |
9a7f143a | 136 | unsigned long tmp; |
9a7f143a CL |
137 | |
138 | if (offset >= size) | |
139 | return size; | |
140 | ||
80609448 | 141 | size -= (offset & ~(BITS_PER_LONG - 1)); |
9a7f143a | 142 | offset %= BITS_PER_LONG; |
80609448 JK |
143 | |
144 | while (1) { | |
145 | if (*p == ~0UL) | |
146 | goto pass; | |
147 | ||
f96999c3 | 148 | tmp = __reverse_ulong((unsigned char *)p); |
80609448 JK |
149 | |
150 | if (offset) | |
151 | tmp |= ~0UL << (BITS_PER_LONG - offset); | |
152 | if (size < BITS_PER_LONG) | |
153 | tmp |= ~0UL >> size; | |
f96999c3 | 154 | if (tmp != ~0UL) |
80609448 JK |
155 | goto found; |
156 | pass: | |
157 | if (size <= BITS_PER_LONG) | |
158 | break; | |
9a7f143a | 159 | size -= BITS_PER_LONG; |
80609448 | 160 | offset = 0; |
f96999c3 | 161 | p++; |
9a7f143a | 162 | } |
80609448 JK |
163 | return result; |
164 | found: | |
165 | return result - size + __reverse_ffz(tmp); | |
9a7f143a CL |
166 | } |
167 | ||
88b88a66 JK |
168 | void register_inmem_page(struct inode *inode, struct page *page) |
169 | { | |
170 | struct f2fs_inode_info *fi = F2FS_I(inode); | |
171 | struct inmem_pages *new; | |
9be32d72 | 172 | |
9e4ded3f | 173 | f2fs_trace_pid(page); |
0722b101 | 174 | |
decd36b6 CY |
175 | set_page_private(page, (unsigned long)ATOMIC_WRITTEN_PAGE); |
176 | SetPagePrivate(page); | |
177 | ||
88b88a66 JK |
178 | new = f2fs_kmem_cache_alloc(inmem_entry_slab, GFP_NOFS); |
179 | ||
180 | /* add atomic page indices to the list */ | |
181 | new->page = page; | |
182 | INIT_LIST_HEAD(&new->list); | |
decd36b6 | 183 | |
88b88a66 JK |
184 | /* increase reference count with clean state */ |
185 | mutex_lock(&fi->inmem_lock); | |
186 | get_page(page); | |
187 | list_add_tail(&new->list, &fi->inmem_pages); | |
8dcf2ff7 | 188 | inc_page_count(F2FS_I_SB(inode), F2FS_INMEM_PAGES); |
88b88a66 | 189 | mutex_unlock(&fi->inmem_lock); |
8ce67cb0 JK |
190 | |
191 | trace_f2fs_register_inmem_page(page, INMEM); | |
88b88a66 JK |
192 | } |
193 | ||
28bc106b CY |
194 | static int __revoke_inmem_pages(struct inode *inode, |
195 | struct list_head *head, bool drop, bool recover) | |
29b96b54 | 196 | { |
28bc106b | 197 | struct f2fs_sb_info *sbi = F2FS_I_SB(inode); |
29b96b54 | 198 | struct inmem_pages *cur, *tmp; |
28bc106b | 199 | int err = 0; |
29b96b54 CY |
200 | |
201 | list_for_each_entry_safe(cur, tmp, head, list) { | |
28bc106b CY |
202 | struct page *page = cur->page; |
203 | ||
204 | if (drop) | |
205 | trace_f2fs_commit_inmem_page(page, INMEM_DROP); | |
206 | ||
207 | lock_page(page); | |
29b96b54 | 208 | |
28bc106b CY |
209 | if (recover) { |
210 | struct dnode_of_data dn; | |
211 | struct node_info ni; | |
212 | ||
213 | trace_f2fs_commit_inmem_page(page, INMEM_REVOKE); | |
214 | ||
215 | set_new_dnode(&dn, inode, NULL, NULL, 0); | |
216 | if (get_dnode_of_data(&dn, page->index, LOOKUP_NODE)) { | |
217 | err = -EAGAIN; | |
218 | goto next; | |
219 | } | |
220 | get_node_info(sbi, dn.nid, &ni); | |
221 | f2fs_replace_block(sbi, &dn, dn.data_blkaddr, | |
222 | cur->old_addr, ni.version, true, true); | |
223 | f2fs_put_dnode(&dn); | |
224 | } | |
225 | next: | |
63c52d78 JK |
226 | /* we don't need to invalidate this in the sccessful status */ |
227 | if (drop || recover) | |
228 | ClearPageUptodate(page); | |
28bc106b | 229 | set_page_private(page, 0); |
c81ced05 | 230 | ClearPagePrivate(page); |
28bc106b | 231 | f2fs_put_page(page, 1); |
29b96b54 CY |
232 | |
233 | list_del(&cur->list); | |
234 | kmem_cache_free(inmem_entry_slab, cur); | |
235 | dec_page_count(F2FS_I_SB(inode), F2FS_INMEM_PAGES); | |
236 | } | |
28bc106b | 237 | return err; |
29b96b54 CY |
238 | } |
239 | ||
240 | void drop_inmem_pages(struct inode *inode) | |
241 | { | |
242 | struct f2fs_inode_info *fi = F2FS_I(inode); | |
243 | ||
91942321 | 244 | clear_inode_flag(inode, FI_ATOMIC_FILE); |
26dc3d44 | 245 | |
29b96b54 | 246 | mutex_lock(&fi->inmem_lock); |
28bc106b | 247 | __revoke_inmem_pages(inode, &fi->inmem_pages, true, false); |
29b96b54 CY |
248 | mutex_unlock(&fi->inmem_lock); |
249 | } | |
250 | ||
28bc106b CY |
251 | static int __commit_inmem_pages(struct inode *inode, |
252 | struct list_head *revoke_list) | |
88b88a66 JK |
253 | { |
254 | struct f2fs_sb_info *sbi = F2FS_I_SB(inode); | |
255 | struct f2fs_inode_info *fi = F2FS_I(inode); | |
256 | struct inmem_pages *cur, *tmp; | |
88b88a66 | 257 | struct f2fs_io_info fio = { |
05ca3632 | 258 | .sbi = sbi, |
88b88a66 | 259 | .type = DATA, |
04d328de MC |
260 | .op = REQ_OP_WRITE, |
261 | .op_flags = WRITE_SYNC | REQ_PRIO, | |
4375a336 | 262 | .encrypted_page = NULL, |
88b88a66 | 263 | }; |
29b96b54 | 264 | bool submit_bio = false; |
edb27dee | 265 | int err = 0; |
88b88a66 | 266 | |
88b88a66 | 267 | list_for_each_entry_safe(cur, tmp, &fi->inmem_pages, list) { |
28bc106b CY |
268 | struct page *page = cur->page; |
269 | ||
270 | lock_page(page); | |
271 | if (page->mapping == inode->i_mapping) { | |
272 | trace_f2fs_commit_inmem_page(page, INMEM); | |
273 | ||
274 | set_page_dirty(page); | |
275 | f2fs_wait_on_page_writeback(page, DATA, true); | |
276 | if (clear_page_dirty_for_io(page)) | |
29b96b54 | 277 | inode_dec_dirty_pages(inode); |
28bc106b CY |
278 | |
279 | fio.page = page; | |
29b96b54 CY |
280 | err = do_write_data_page(&fio); |
281 | if (err) { | |
28bc106b | 282 | unlock_page(page); |
29b96b54 | 283 | break; |
70c640b1 | 284 | } |
29b96b54 | 285 | |
28bc106b CY |
286 | /* record old blkaddr for revoking */ |
287 | cur->old_addr = fio.old_blkaddr; | |
decd36b6 | 288 | |
28bc106b CY |
289 | clear_cold_data(page); |
290 | submit_bio = true; | |
291 | } | |
292 | unlock_page(page); | |
293 | list_move_tail(&cur->list, revoke_list); | |
88b88a66 | 294 | } |
29b96b54 CY |
295 | |
296 | if (submit_bio) | |
297 | f2fs_submit_merged_bio_cond(sbi, inode, NULL, 0, DATA, WRITE); | |
28bc106b CY |
298 | |
299 | if (!err) | |
300 | __revoke_inmem_pages(inode, revoke_list, false, false); | |
301 | ||
29b96b54 CY |
302 | return err; |
303 | } | |
304 | ||
305 | int commit_inmem_pages(struct inode *inode) | |
306 | { | |
307 | struct f2fs_sb_info *sbi = F2FS_I_SB(inode); | |
308 | struct f2fs_inode_info *fi = F2FS_I(inode); | |
28bc106b CY |
309 | struct list_head revoke_list; |
310 | int err; | |
29b96b54 | 311 | |
28bc106b | 312 | INIT_LIST_HEAD(&revoke_list); |
29b96b54 CY |
313 | f2fs_balance_fs(sbi, true); |
314 | f2fs_lock_op(sbi); | |
315 | ||
316 | mutex_lock(&fi->inmem_lock); | |
28bc106b CY |
317 | err = __commit_inmem_pages(inode, &revoke_list); |
318 | if (err) { | |
319 | int ret; | |
320 | /* | |
321 | * try to revoke all committed pages, but still we could fail | |
322 | * due to no memory or other reason, if that happened, EAGAIN | |
323 | * will be returned, which means in such case, transaction is | |
324 | * already not integrity, caller should use journal to do the | |
325 | * recovery or rewrite & commit last transaction. For other | |
326 | * error number, revoking was done by filesystem itself. | |
327 | */ | |
328 | ret = __revoke_inmem_pages(inode, &revoke_list, false, true); | |
329 | if (ret) | |
330 | err = ret; | |
331 | ||
332 | /* drop all uncommitted pages */ | |
333 | __revoke_inmem_pages(inode, &fi->inmem_pages, true, false); | |
334 | } | |
88b88a66 JK |
335 | mutex_unlock(&fi->inmem_lock); |
336 | ||
29b96b54 | 337 | f2fs_unlock_op(sbi); |
edb27dee | 338 | return err; |
88b88a66 JK |
339 | } |
340 | ||
0a8165d7 | 341 | /* |
351df4b2 JK |
342 | * This function balances dirty node and dentry pages. |
343 | * In addition, it controls garbage collection. | |
344 | */ | |
2c4db1a6 | 345 | void f2fs_balance_fs(struct f2fs_sb_info *sbi, bool need) |
351df4b2 | 346 | { |
2c4db1a6 JK |
347 | if (!need) |
348 | return; | |
e589c2c4 JK |
349 | |
350 | /* balance_fs_bg is able to be pending */ | |
351 | if (excess_cached_nats(sbi)) | |
352 | f2fs_balance_fs_bg(sbi); | |
353 | ||
351df4b2 | 354 | /* |
029cd28c JK |
355 | * We should do GC or end up with checkpoint, if there are so many dirty |
356 | * dir/node pages without enough free segments. | |
351df4b2 | 357 | */ |
43727527 | 358 | if (has_not_enough_free_secs(sbi, 0)) { |
351df4b2 | 359 | mutex_lock(&sbi->gc_mutex); |
d530d4d8 | 360 | f2fs_gc(sbi, false); |
351df4b2 JK |
361 | } |
362 | } | |
363 | ||
4660f9c0 JK |
364 | void f2fs_balance_fs_bg(struct f2fs_sb_info *sbi) |
365 | { | |
1dcc336b | 366 | /* try to shrink extent cache when there is no enough memory */ |
554df79e JK |
367 | if (!available_free_memory(sbi, EXTENT_CACHE)) |
368 | f2fs_shrink_extent_tree(sbi, EXTENT_CACHE_SHRINK_NUMBER); | |
1dcc336b | 369 | |
1b38dc8e JK |
370 | /* check the # of cached NAT entries */ |
371 | if (!available_free_memory(sbi, NAT_ENTRIES)) | |
372 | try_to_free_nats(sbi, NAT_ENTRY_PER_BLOCK); | |
373 | ||
31696580 | 374 | if (!available_free_memory(sbi, FREE_NIDS)) |
ad4edb83 JK |
375 | try_to_free_nids(sbi, MAX_FREE_NIDS); |
376 | else | |
377 | build_free_nids(sbi); | |
31696580 | 378 | |
1b38dc8e JK |
379 | /* checkpoint is the only way to shrink partial cached entries */ |
380 | if (!available_free_memory(sbi, NAT_ENTRIES) || | |
60b99b48 | 381 | !available_free_memory(sbi, INO_ENTRIES) || |
7d768d2c CY |
382 | excess_prefree_segs(sbi) || |
383 | excess_dirty_nats(sbi) || | |
d0239e1b | 384 | (is_idle(sbi) && f2fs_time_over(sbi, CP_TIME))) { |
e9f5b8b8 CY |
385 | if (test_opt(sbi, DATA_FLUSH)) { |
386 | struct blk_plug plug; | |
387 | ||
388 | blk_start_plug(&plug); | |
36b35a0d | 389 | sync_dirty_inodes(sbi, FILE_INODE); |
e9f5b8b8 CY |
390 | blk_finish_plug(&plug); |
391 | } | |
4660f9c0 | 392 | f2fs_sync_fs(sbi->sb, true); |
42190d2a | 393 | stat_inc_bg_cp_count(sbi->stat_info); |
36b35a0d | 394 | } |
4660f9c0 JK |
395 | } |
396 | ||
2163d198 | 397 | static int issue_flush_thread(void *data) |
6b4afdd7 JK |
398 | { |
399 | struct f2fs_sb_info *sbi = data; | |
a688b9d9 GZ |
400 | struct flush_cmd_control *fcc = SM_I(sbi)->cmd_control_info; |
401 | wait_queue_head_t *q = &fcc->flush_wait_queue; | |
6b4afdd7 JK |
402 | repeat: |
403 | if (kthread_should_stop()) | |
404 | return 0; | |
405 | ||
721bd4d5 | 406 | if (!llist_empty(&fcc->issue_list)) { |
740432f8 | 407 | struct bio *bio; |
6b4afdd7 JK |
408 | struct flush_cmd *cmd, *next; |
409 | int ret; | |
410 | ||
740432f8 JK |
411 | bio = f2fs_bio_alloc(0); |
412 | ||
721bd4d5 GZ |
413 | fcc->dispatch_list = llist_del_all(&fcc->issue_list); |
414 | fcc->dispatch_list = llist_reverse_order(fcc->dispatch_list); | |
415 | ||
6b4afdd7 | 416 | bio->bi_bdev = sbi->sb->s_bdev; |
04d328de | 417 | bio_set_op_attrs(bio, REQ_OP_WRITE, WRITE_FLUSH); |
4e49ea4a | 418 | ret = submit_bio_wait(bio); |
6b4afdd7 | 419 | |
721bd4d5 GZ |
420 | llist_for_each_entry_safe(cmd, next, |
421 | fcc->dispatch_list, llnode) { | |
6b4afdd7 | 422 | cmd->ret = ret; |
6b4afdd7 JK |
423 | complete(&cmd->wait); |
424 | } | |
a4ed23f2 | 425 | bio_put(bio); |
a688b9d9 | 426 | fcc->dispatch_list = NULL; |
6b4afdd7 JK |
427 | } |
428 | ||
a688b9d9 | 429 | wait_event_interruptible(*q, |
721bd4d5 | 430 | kthread_should_stop() || !llist_empty(&fcc->issue_list)); |
6b4afdd7 JK |
431 | goto repeat; |
432 | } | |
433 | ||
434 | int f2fs_issue_flush(struct f2fs_sb_info *sbi) | |
435 | { | |
a688b9d9 | 436 | struct flush_cmd_control *fcc = SM_I(sbi)->cmd_control_info; |
adf8d90b | 437 | struct flush_cmd cmd; |
6b4afdd7 | 438 | |
24a9ee0f JK |
439 | trace_f2fs_issue_flush(sbi->sb, test_opt(sbi, NOBARRIER), |
440 | test_opt(sbi, FLUSH_MERGE)); | |
441 | ||
0f7b2abd JK |
442 | if (test_opt(sbi, NOBARRIER)) |
443 | return 0; | |
444 | ||
0a87f664 | 445 | if (!test_opt(sbi, FLUSH_MERGE) || !atomic_read(&fcc->submit_flush)) { |
740432f8 JK |
446 | struct bio *bio = f2fs_bio_alloc(0); |
447 | int ret; | |
448 | ||
0a87f664 | 449 | atomic_inc(&fcc->submit_flush); |
740432f8 | 450 | bio->bi_bdev = sbi->sb->s_bdev; |
04d328de | 451 | bio_set_op_attrs(bio, REQ_OP_WRITE, WRITE_FLUSH); |
4e49ea4a | 452 | ret = submit_bio_wait(bio); |
0a87f664 | 453 | atomic_dec(&fcc->submit_flush); |
740432f8 JK |
454 | bio_put(bio); |
455 | return ret; | |
456 | } | |
6b4afdd7 | 457 | |
adf8d90b | 458 | init_completion(&cmd.wait); |
6b4afdd7 | 459 | |
0a87f664 | 460 | atomic_inc(&fcc->submit_flush); |
721bd4d5 | 461 | llist_add(&cmd.llnode, &fcc->issue_list); |
6b4afdd7 | 462 | |
a688b9d9 GZ |
463 | if (!fcc->dispatch_list) |
464 | wake_up(&fcc->flush_wait_queue); | |
6b4afdd7 | 465 | |
adf8d90b | 466 | wait_for_completion(&cmd.wait); |
0a87f664 | 467 | atomic_dec(&fcc->submit_flush); |
adf8d90b CY |
468 | |
469 | return cmd.ret; | |
6b4afdd7 JK |
470 | } |
471 | ||
2163d198 GZ |
472 | int create_flush_cmd_control(struct f2fs_sb_info *sbi) |
473 | { | |
474 | dev_t dev = sbi->sb->s_bdev->bd_dev; | |
475 | struct flush_cmd_control *fcc; | |
476 | int err = 0; | |
477 | ||
478 | fcc = kzalloc(sizeof(struct flush_cmd_control), GFP_KERNEL); | |
479 | if (!fcc) | |
480 | return -ENOMEM; | |
0a87f664 | 481 | atomic_set(&fcc->submit_flush, 0); |
2163d198 | 482 | init_waitqueue_head(&fcc->flush_wait_queue); |
721bd4d5 | 483 | init_llist_head(&fcc->issue_list); |
6b2920a5 | 484 | SM_I(sbi)->cmd_control_info = fcc; |
2163d198 GZ |
485 | fcc->f2fs_issue_flush = kthread_run(issue_flush_thread, sbi, |
486 | "f2fs_flush-%u:%u", MAJOR(dev), MINOR(dev)); | |
487 | if (IS_ERR(fcc->f2fs_issue_flush)) { | |
488 | err = PTR_ERR(fcc->f2fs_issue_flush); | |
489 | kfree(fcc); | |
6b2920a5 | 490 | SM_I(sbi)->cmd_control_info = NULL; |
2163d198 GZ |
491 | return err; |
492 | } | |
2163d198 GZ |
493 | |
494 | return err; | |
495 | } | |
496 | ||
497 | void destroy_flush_cmd_control(struct f2fs_sb_info *sbi) | |
498 | { | |
6b2920a5 | 499 | struct flush_cmd_control *fcc = SM_I(sbi)->cmd_control_info; |
2163d198 GZ |
500 | |
501 | if (fcc && fcc->f2fs_issue_flush) | |
502 | kthread_stop(fcc->f2fs_issue_flush); | |
503 | kfree(fcc); | |
6b2920a5 | 504 | SM_I(sbi)->cmd_control_info = NULL; |
2163d198 GZ |
505 | } |
506 | ||
351df4b2 JK |
507 | static void __locate_dirty_segment(struct f2fs_sb_info *sbi, unsigned int segno, |
508 | enum dirty_type dirty_type) | |
509 | { | |
510 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
511 | ||
512 | /* need not be added */ | |
513 | if (IS_CURSEG(sbi, segno)) | |
514 | return; | |
515 | ||
516 | if (!test_and_set_bit(segno, dirty_i->dirty_segmap[dirty_type])) | |
517 | dirty_i->nr_dirty[dirty_type]++; | |
518 | ||
519 | if (dirty_type == DIRTY) { | |
520 | struct seg_entry *sentry = get_seg_entry(sbi, segno); | |
4625d6aa | 521 | enum dirty_type t = sentry->type; |
b2f2c390 | 522 | |
ec325b52 JK |
523 | if (unlikely(t >= DIRTY)) { |
524 | f2fs_bug_on(sbi, 1); | |
525 | return; | |
526 | } | |
4625d6aa CL |
527 | if (!test_and_set_bit(segno, dirty_i->dirty_segmap[t])) |
528 | dirty_i->nr_dirty[t]++; | |
351df4b2 JK |
529 | } |
530 | } | |
531 | ||
532 | static void __remove_dirty_segment(struct f2fs_sb_info *sbi, unsigned int segno, | |
533 | enum dirty_type dirty_type) | |
534 | { | |
535 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
536 | ||
537 | if (test_and_clear_bit(segno, dirty_i->dirty_segmap[dirty_type])) | |
538 | dirty_i->nr_dirty[dirty_type]--; | |
539 | ||
540 | if (dirty_type == DIRTY) { | |
4625d6aa CL |
541 | struct seg_entry *sentry = get_seg_entry(sbi, segno); |
542 | enum dirty_type t = sentry->type; | |
543 | ||
544 | if (test_and_clear_bit(segno, dirty_i->dirty_segmap[t])) | |
545 | dirty_i->nr_dirty[t]--; | |
b2f2c390 | 546 | |
5ec4e49f JK |
547 | if (get_valid_blocks(sbi, segno, sbi->segs_per_sec) == 0) |
548 | clear_bit(GET_SECNO(sbi, segno), | |
549 | dirty_i->victim_secmap); | |
351df4b2 JK |
550 | } |
551 | } | |
552 | ||
0a8165d7 | 553 | /* |
351df4b2 JK |
554 | * Should not occur error such as -ENOMEM. |
555 | * Adding dirty entry into seglist is not critical operation. | |
556 | * If a given segment is one of current working segments, it won't be added. | |
557 | */ | |
8d8451af | 558 | static void locate_dirty_segment(struct f2fs_sb_info *sbi, unsigned int segno) |
351df4b2 JK |
559 | { |
560 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
561 | unsigned short valid_blocks; | |
562 | ||
563 | if (segno == NULL_SEGNO || IS_CURSEG(sbi, segno)) | |
564 | return; | |
565 | ||
566 | mutex_lock(&dirty_i->seglist_lock); | |
567 | ||
568 | valid_blocks = get_valid_blocks(sbi, segno, 0); | |
569 | ||
570 | if (valid_blocks == 0) { | |
571 | __locate_dirty_segment(sbi, segno, PRE); | |
572 | __remove_dirty_segment(sbi, segno, DIRTY); | |
573 | } else if (valid_blocks < sbi->blocks_per_seg) { | |
574 | __locate_dirty_segment(sbi, segno, DIRTY); | |
575 | } else { | |
576 | /* Recovery routine with SSR needs this */ | |
577 | __remove_dirty_segment(sbi, segno, DIRTY); | |
578 | } | |
579 | ||
580 | mutex_unlock(&dirty_i->seglist_lock); | |
351df4b2 JK |
581 | } |
582 | ||
1e87a78d | 583 | static int f2fs_issue_discard(struct f2fs_sb_info *sbi, |
37208879 JK |
584 | block_t blkstart, block_t blklen) |
585 | { | |
55cf9cb6 CY |
586 | sector_t start = SECTOR_FROM_BLOCK(blkstart); |
587 | sector_t len = SECTOR_FROM_BLOCK(blklen); | |
a66cdd98 JK |
588 | struct seg_entry *se; |
589 | unsigned int offset; | |
590 | block_t i; | |
591 | ||
592 | for (i = blkstart; i < blkstart + blklen; i++) { | |
593 | se = get_seg_entry(sbi, GET_SEGNO(sbi, i)); | |
594 | offset = GET_BLKOFF_FROM_SEG0(sbi, i); | |
595 | ||
596 | if (!f2fs_test_and_set_bit(offset, se->discard_map)) | |
597 | sbi->discard_blks--; | |
598 | } | |
1661d07c | 599 | trace_f2fs_issue_discard(sbi->sb, blkstart, blklen); |
1e87a78d JK |
600 | return blkdev_issue_discard(sbi->sb->s_bdev, start, len, GFP_NOFS, 0); |
601 | } | |
602 | ||
e90c2d28 | 603 | bool discard_next_dnode(struct f2fs_sb_info *sbi, block_t blkaddr) |
1e87a78d | 604 | { |
60b286c4 | 605 | int err = -EOPNOTSUPP; |
40a02be1 JK |
606 | |
607 | if (test_opt(sbi, DISCARD)) { | |
608 | struct seg_entry *se = get_seg_entry(sbi, | |
609 | GET_SEGNO(sbi, blkaddr)); | |
610 | unsigned int offset = GET_BLKOFF_FROM_SEG0(sbi, blkaddr); | |
611 | ||
612 | if (f2fs_test_bit(offset, se->discard_map)) | |
e90c2d28 | 613 | return false; |
40a02be1 JK |
614 | |
615 | err = f2fs_issue_discard(sbi, blkaddr, 1); | |
616 | } | |
617 | ||
e90c2d28 | 618 | if (err) { |
381722d2 | 619 | update_meta_page(sbi, NULL, blkaddr); |
e90c2d28 CY |
620 | return true; |
621 | } | |
622 | return false; | |
37208879 JK |
623 | } |
624 | ||
adf4983b | 625 | static void __add_discard_entry(struct f2fs_sb_info *sbi, |
a66cdd98 JK |
626 | struct cp_control *cpc, struct seg_entry *se, |
627 | unsigned int start, unsigned int end) | |
b2955550 JK |
628 | { |
629 | struct list_head *head = &SM_I(sbi)->discard_list; | |
adf4983b JK |
630 | struct discard_entry *new, *last; |
631 | ||
632 | if (!list_empty(head)) { | |
633 | last = list_last_entry(head, struct discard_entry, list); | |
634 | if (START_BLOCK(sbi, cpc->trim_start) + start == | |
635 | last->blkaddr + last->len) { | |
636 | last->len += end - start; | |
637 | goto done; | |
638 | } | |
639 | } | |
640 | ||
641 | new = f2fs_kmem_cache_alloc(discard_entry_slab, GFP_NOFS); | |
642 | INIT_LIST_HEAD(&new->list); | |
643 | new->blkaddr = START_BLOCK(sbi, cpc->trim_start) + start; | |
644 | new->len = end - start; | |
645 | list_add_tail(&new->list, head); | |
646 | done: | |
647 | SM_I(sbi)->nr_discards += end - start; | |
adf4983b JK |
648 | } |
649 | ||
650 | static void add_discard_addrs(struct f2fs_sb_info *sbi, struct cp_control *cpc) | |
651 | { | |
b2955550 JK |
652 | int entries = SIT_VBLOCK_MAP_SIZE / sizeof(unsigned long); |
653 | int max_blocks = sbi->blocks_per_seg; | |
4b2fecc8 | 654 | struct seg_entry *se = get_seg_entry(sbi, cpc->trim_start); |
b2955550 JK |
655 | unsigned long *cur_map = (unsigned long *)se->cur_valid_map; |
656 | unsigned long *ckpt_map = (unsigned long *)se->ckpt_valid_map; | |
a66cdd98 | 657 | unsigned long *discard_map = (unsigned long *)se->discard_map; |
60a3b782 | 658 | unsigned long *dmap = SIT_I(sbi)->tmp_map; |
b2955550 | 659 | unsigned int start = 0, end = -1; |
4b2fecc8 | 660 | bool force = (cpc->reason == CP_DISCARD); |
b2955550 JK |
661 | int i; |
662 | ||
a66cdd98 | 663 | if (se->valid_blocks == max_blocks) |
b2955550 JK |
664 | return; |
665 | ||
a66cdd98 JK |
666 | if (!force) { |
667 | if (!test_opt(sbi, DISCARD) || !se->valid_blocks || | |
912a83b5 DC |
668 | SM_I(sbi)->nr_discards >= SM_I(sbi)->max_discards) |
669 | return; | |
4b2fecc8 JK |
670 | } |
671 | ||
b2955550 JK |
672 | /* SIT_VBLOCK_MAP_SIZE should be multiple of sizeof(unsigned long) */ |
673 | for (i = 0; i < entries; i++) | |
a66cdd98 | 674 | dmap[i] = force ? ~ckpt_map[i] & ~discard_map[i] : |
d7bc2484 | 675 | (cur_map[i] ^ ckpt_map[i]) & ckpt_map[i]; |
b2955550 | 676 | |
4b2fecc8 | 677 | while (force || SM_I(sbi)->nr_discards <= SM_I(sbi)->max_discards) { |
b2955550 JK |
678 | start = __find_rev_next_bit(dmap, max_blocks, end + 1); |
679 | if (start >= max_blocks) | |
680 | break; | |
681 | ||
682 | end = __find_rev_next_zero_bit(dmap, max_blocks, start + 1); | |
c7b41e16 YH |
683 | if (force && start && end != max_blocks |
684 | && (end - start) < cpc->trim_minlen) | |
685 | continue; | |
686 | ||
a66cdd98 | 687 | __add_discard_entry(sbi, cpc, se, start, end); |
b2955550 JK |
688 | } |
689 | } | |
690 | ||
4b2fecc8 JK |
691 | void release_discard_addrs(struct f2fs_sb_info *sbi) |
692 | { | |
693 | struct list_head *head = &(SM_I(sbi)->discard_list); | |
694 | struct discard_entry *entry, *this; | |
695 | ||
696 | /* drop caches */ | |
697 | list_for_each_entry_safe(entry, this, head, list) { | |
698 | list_del(&entry->list); | |
699 | kmem_cache_free(discard_entry_slab, entry); | |
700 | } | |
701 | } | |
702 | ||
0a8165d7 | 703 | /* |
351df4b2 JK |
704 | * Should call clear_prefree_segments after checkpoint is done. |
705 | */ | |
706 | static void set_prefree_as_free_segments(struct f2fs_sb_info *sbi) | |
707 | { | |
708 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
b65ee148 | 709 | unsigned int segno; |
351df4b2 JK |
710 | |
711 | mutex_lock(&dirty_i->seglist_lock); | |
7cd8558b | 712 | for_each_set_bit(segno, dirty_i->dirty_segmap[PRE], MAIN_SEGS(sbi)) |
351df4b2 | 713 | __set_test_and_free(sbi, segno); |
351df4b2 JK |
714 | mutex_unlock(&dirty_i->seglist_lock); |
715 | } | |
716 | ||
836b5a63 | 717 | void clear_prefree_segments(struct f2fs_sb_info *sbi, struct cp_control *cpc) |
351df4b2 | 718 | { |
b2955550 | 719 | struct list_head *head = &(SM_I(sbi)->discard_list); |
2d7b822a | 720 | struct discard_entry *entry, *this; |
351df4b2 | 721 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); |
29e59c14 | 722 | unsigned long *prefree_map = dirty_i->dirty_segmap[PRE]; |
29e59c14 | 723 | unsigned int start = 0, end = -1; |
36abef4e | 724 | unsigned int secno, start_segno; |
c24a0fd6 | 725 | bool force = (cpc->reason == CP_DISCARD); |
351df4b2 JK |
726 | |
727 | mutex_lock(&dirty_i->seglist_lock); | |
29e59c14 | 728 | |
351df4b2 | 729 | while (1) { |
29e59c14 | 730 | int i; |
7cd8558b JK |
731 | start = find_next_bit(prefree_map, MAIN_SEGS(sbi), end + 1); |
732 | if (start >= MAIN_SEGS(sbi)) | |
351df4b2 | 733 | break; |
7cd8558b JK |
734 | end = find_next_zero_bit(prefree_map, MAIN_SEGS(sbi), |
735 | start + 1); | |
29e59c14 CL |
736 | |
737 | for (i = start; i < end; i++) | |
738 | clear_bit(i, prefree_map); | |
739 | ||
740 | dirty_i->nr_dirty[PRE] -= end - start; | |
741 | ||
c24a0fd6 | 742 | if (force || !test_opt(sbi, DISCARD)) |
29e59c14 | 743 | continue; |
351df4b2 | 744 | |
36abef4e JK |
745 | if (!test_opt(sbi, LFS) || sbi->segs_per_sec == 1) { |
746 | f2fs_issue_discard(sbi, START_BLOCK(sbi, start), | |
37208879 | 747 | (end - start) << sbi->log_blocks_per_seg); |
36abef4e JK |
748 | continue; |
749 | } | |
750 | next: | |
751 | secno = GET_SECNO(sbi, start); | |
752 | start_segno = secno * sbi->segs_per_sec; | |
753 | if (!IS_CURSEC(sbi, secno) && | |
754 | !get_valid_blocks(sbi, start, sbi->segs_per_sec)) | |
755 | f2fs_issue_discard(sbi, START_BLOCK(sbi, start_segno), | |
756 | sbi->segs_per_sec << sbi->log_blocks_per_seg); | |
757 | ||
758 | start = start_segno + sbi->segs_per_sec; | |
759 | if (start < end) | |
760 | goto next; | |
351df4b2 JK |
761 | } |
762 | mutex_unlock(&dirty_i->seglist_lock); | |
b2955550 JK |
763 | |
764 | /* send small discards */ | |
2d7b822a | 765 | list_for_each_entry_safe(entry, this, head, list) { |
c24a0fd6 | 766 | if (force && entry->len < cpc->trim_minlen) |
836b5a63 | 767 | goto skip; |
37208879 | 768 | f2fs_issue_discard(sbi, entry->blkaddr, entry->len); |
f56aa1c5 | 769 | cpc->trimmed += entry->len; |
836b5a63 | 770 | skip: |
b2955550 JK |
771 | list_del(&entry->list); |
772 | SM_I(sbi)->nr_discards -= entry->len; | |
773 | kmem_cache_free(discard_entry_slab, entry); | |
774 | } | |
351df4b2 JK |
775 | } |
776 | ||
184a5cd2 | 777 | static bool __mark_sit_entry_dirty(struct f2fs_sb_info *sbi, unsigned int segno) |
351df4b2 JK |
778 | { |
779 | struct sit_info *sit_i = SIT_I(sbi); | |
184a5cd2 CY |
780 | |
781 | if (!__test_and_set_bit(segno, sit_i->dirty_sentries_bitmap)) { | |
351df4b2 | 782 | sit_i->dirty_sentries++; |
184a5cd2 CY |
783 | return false; |
784 | } | |
785 | ||
786 | return true; | |
351df4b2 JK |
787 | } |
788 | ||
789 | static void __set_sit_entry_type(struct f2fs_sb_info *sbi, int type, | |
790 | unsigned int segno, int modified) | |
791 | { | |
792 | struct seg_entry *se = get_seg_entry(sbi, segno); | |
793 | se->type = type; | |
794 | if (modified) | |
795 | __mark_sit_entry_dirty(sbi, segno); | |
796 | } | |
797 | ||
798 | static void update_sit_entry(struct f2fs_sb_info *sbi, block_t blkaddr, int del) | |
799 | { | |
800 | struct seg_entry *se; | |
801 | unsigned int segno, offset; | |
802 | long int new_vblocks; | |
803 | ||
804 | segno = GET_SEGNO(sbi, blkaddr); | |
805 | ||
806 | se = get_seg_entry(sbi, segno); | |
807 | new_vblocks = se->valid_blocks + del; | |
491c0854 | 808 | offset = GET_BLKOFF_FROM_SEG0(sbi, blkaddr); |
351df4b2 | 809 | |
9850cf4a | 810 | f2fs_bug_on(sbi, (new_vblocks >> (sizeof(unsigned short) << 3) || |
351df4b2 JK |
811 | (new_vblocks > sbi->blocks_per_seg))); |
812 | ||
813 | se->valid_blocks = new_vblocks; | |
814 | se->mtime = get_mtime(sbi); | |
815 | SIT_I(sbi)->max_mtime = se->mtime; | |
816 | ||
817 | /* Update valid block bitmap */ | |
818 | if (del > 0) { | |
52aca074 | 819 | if (f2fs_test_and_set_bit(offset, se->cur_valid_map)) |
05796763 | 820 | f2fs_bug_on(sbi, 1); |
a66cdd98 JK |
821 | if (!f2fs_test_and_set_bit(offset, se->discard_map)) |
822 | sbi->discard_blks--; | |
351df4b2 | 823 | } else { |
52aca074 | 824 | if (!f2fs_test_and_clear_bit(offset, se->cur_valid_map)) |
05796763 | 825 | f2fs_bug_on(sbi, 1); |
a66cdd98 JK |
826 | if (f2fs_test_and_clear_bit(offset, se->discard_map)) |
827 | sbi->discard_blks++; | |
351df4b2 JK |
828 | } |
829 | if (!f2fs_test_bit(offset, se->ckpt_valid_map)) | |
830 | se->ckpt_valid_blocks += del; | |
831 | ||
832 | __mark_sit_entry_dirty(sbi, segno); | |
833 | ||
834 | /* update total number of valid blocks to be written in ckpt area */ | |
835 | SIT_I(sbi)->written_valid_blocks += del; | |
836 | ||
837 | if (sbi->segs_per_sec > 1) | |
838 | get_sec_entry(sbi, segno)->valid_blocks += del; | |
839 | } | |
840 | ||
5e443818 | 841 | void refresh_sit_entry(struct f2fs_sb_info *sbi, block_t old, block_t new) |
351df4b2 | 842 | { |
5e443818 JK |
843 | update_sit_entry(sbi, new, 1); |
844 | if (GET_SEGNO(sbi, old) != NULL_SEGNO) | |
845 | update_sit_entry(sbi, old, -1); | |
846 | ||
847 | locate_dirty_segment(sbi, GET_SEGNO(sbi, old)); | |
848 | locate_dirty_segment(sbi, GET_SEGNO(sbi, new)); | |
351df4b2 JK |
849 | } |
850 | ||
851 | void invalidate_blocks(struct f2fs_sb_info *sbi, block_t addr) | |
852 | { | |
853 | unsigned int segno = GET_SEGNO(sbi, addr); | |
854 | struct sit_info *sit_i = SIT_I(sbi); | |
855 | ||
9850cf4a | 856 | f2fs_bug_on(sbi, addr == NULL_ADDR); |
351df4b2 JK |
857 | if (addr == NEW_ADDR) |
858 | return; | |
859 | ||
860 | /* add it into sit main buffer */ | |
861 | mutex_lock(&sit_i->sentry_lock); | |
862 | ||
863 | update_sit_entry(sbi, addr, -1); | |
864 | ||
865 | /* add it into dirty seglist */ | |
866 | locate_dirty_segment(sbi, segno); | |
867 | ||
868 | mutex_unlock(&sit_i->sentry_lock); | |
869 | } | |
870 | ||
6e2c64ad JK |
871 | bool is_checkpointed_data(struct f2fs_sb_info *sbi, block_t blkaddr) |
872 | { | |
873 | struct sit_info *sit_i = SIT_I(sbi); | |
874 | unsigned int segno, offset; | |
875 | struct seg_entry *se; | |
876 | bool is_cp = false; | |
877 | ||
878 | if (blkaddr == NEW_ADDR || blkaddr == NULL_ADDR) | |
879 | return true; | |
880 | ||
881 | mutex_lock(&sit_i->sentry_lock); | |
882 | ||
883 | segno = GET_SEGNO(sbi, blkaddr); | |
884 | se = get_seg_entry(sbi, segno); | |
885 | offset = GET_BLKOFF_FROM_SEG0(sbi, blkaddr); | |
886 | ||
887 | if (f2fs_test_bit(offset, se->ckpt_valid_map)) | |
888 | is_cp = true; | |
889 | ||
890 | mutex_unlock(&sit_i->sentry_lock); | |
891 | ||
892 | return is_cp; | |
893 | } | |
894 | ||
0a8165d7 | 895 | /* |
351df4b2 JK |
896 | * This function should be resided under the curseg_mutex lock |
897 | */ | |
898 | static void __add_sum_entry(struct f2fs_sb_info *sbi, int type, | |
e79efe3b | 899 | struct f2fs_summary *sum) |
351df4b2 JK |
900 | { |
901 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
902 | void *addr = curseg->sum_blk; | |
e79efe3b | 903 | addr += curseg->next_blkoff * sizeof(struct f2fs_summary); |
351df4b2 | 904 | memcpy(addr, sum, sizeof(struct f2fs_summary)); |
351df4b2 JK |
905 | } |
906 | ||
0a8165d7 | 907 | /* |
351df4b2 JK |
908 | * Calculate the number of current summary pages for writing |
909 | */ | |
3fa06d7b | 910 | int npages_for_summary_flush(struct f2fs_sb_info *sbi, bool for_ra) |
351df4b2 | 911 | { |
351df4b2 | 912 | int valid_sum_count = 0; |
9a47938b | 913 | int i, sum_in_page; |
351df4b2 JK |
914 | |
915 | for (i = CURSEG_HOT_DATA; i <= CURSEG_COLD_DATA; i++) { | |
916 | if (sbi->ckpt->alloc_type[i] == SSR) | |
917 | valid_sum_count += sbi->blocks_per_seg; | |
3fa06d7b CY |
918 | else { |
919 | if (for_ra) | |
920 | valid_sum_count += le16_to_cpu( | |
921 | F2FS_CKPT(sbi)->cur_data_blkoff[i]); | |
922 | else | |
923 | valid_sum_count += curseg_blkoff(sbi, i); | |
924 | } | |
351df4b2 JK |
925 | } |
926 | ||
09cbfeaf | 927 | sum_in_page = (PAGE_SIZE - 2 * SUM_JOURNAL_SIZE - |
9a47938b FL |
928 | SUM_FOOTER_SIZE) / SUMMARY_SIZE; |
929 | if (valid_sum_count <= sum_in_page) | |
351df4b2 | 930 | return 1; |
9a47938b | 931 | else if ((valid_sum_count - sum_in_page) <= |
09cbfeaf | 932 | (PAGE_SIZE - SUM_FOOTER_SIZE) / SUMMARY_SIZE) |
351df4b2 JK |
933 | return 2; |
934 | return 3; | |
935 | } | |
936 | ||
0a8165d7 | 937 | /* |
351df4b2 JK |
938 | * Caller should put this summary page |
939 | */ | |
940 | struct page *get_sum_page(struct f2fs_sb_info *sbi, unsigned int segno) | |
941 | { | |
942 | return get_meta_page(sbi, GET_SUM_BLOCK(sbi, segno)); | |
943 | } | |
944 | ||
381722d2 | 945 | void update_meta_page(struct f2fs_sb_info *sbi, void *src, block_t blk_addr) |
351df4b2 JK |
946 | { |
947 | struct page *page = grab_meta_page(sbi, blk_addr); | |
381722d2 CY |
948 | void *dst = page_address(page); |
949 | ||
950 | if (src) | |
09cbfeaf | 951 | memcpy(dst, src, PAGE_SIZE); |
381722d2 | 952 | else |
09cbfeaf | 953 | memset(dst, 0, PAGE_SIZE); |
351df4b2 JK |
954 | set_page_dirty(page); |
955 | f2fs_put_page(page, 1); | |
956 | } | |
957 | ||
381722d2 CY |
958 | static void write_sum_page(struct f2fs_sb_info *sbi, |
959 | struct f2fs_summary_block *sum_blk, block_t blk_addr) | |
960 | { | |
961 | update_meta_page(sbi, (void *)sum_blk, blk_addr); | |
962 | } | |
963 | ||
b7ad7512 CY |
964 | static void write_current_sum_page(struct f2fs_sb_info *sbi, |
965 | int type, block_t blk_addr) | |
966 | { | |
967 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
968 | struct page *page = grab_meta_page(sbi, blk_addr); | |
969 | struct f2fs_summary_block *src = curseg->sum_blk; | |
970 | struct f2fs_summary_block *dst; | |
971 | ||
972 | dst = (struct f2fs_summary_block *)page_address(page); | |
973 | ||
974 | mutex_lock(&curseg->curseg_mutex); | |
975 | ||
976 | down_read(&curseg->journal_rwsem); | |
977 | memcpy(&dst->journal, curseg->journal, SUM_JOURNAL_SIZE); | |
978 | up_read(&curseg->journal_rwsem); | |
979 | ||
980 | memcpy(dst->entries, src->entries, SUM_ENTRY_SIZE); | |
981 | memcpy(&dst->footer, &src->footer, SUM_FOOTER_SIZE); | |
982 | ||
983 | mutex_unlock(&curseg->curseg_mutex); | |
984 | ||
985 | set_page_dirty(page); | |
986 | f2fs_put_page(page, 1); | |
987 | } | |
988 | ||
60374688 JK |
989 | static int is_next_segment_free(struct f2fs_sb_info *sbi, int type) |
990 | { | |
991 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
81fb5e87 | 992 | unsigned int segno = curseg->segno + 1; |
60374688 JK |
993 | struct free_segmap_info *free_i = FREE_I(sbi); |
994 | ||
7cd8558b | 995 | if (segno < MAIN_SEGS(sbi) && segno % sbi->segs_per_sec) |
81fb5e87 | 996 | return !test_bit(segno, free_i->free_segmap); |
60374688 JK |
997 | return 0; |
998 | } | |
999 | ||
0a8165d7 | 1000 | /* |
351df4b2 JK |
1001 | * Find a new segment from the free segments bitmap to right order |
1002 | * This function should be returned with success, otherwise BUG | |
1003 | */ | |
1004 | static void get_new_segment(struct f2fs_sb_info *sbi, | |
1005 | unsigned int *newseg, bool new_sec, int dir) | |
1006 | { | |
1007 | struct free_segmap_info *free_i = FREE_I(sbi); | |
351df4b2 | 1008 | unsigned int segno, secno, zoneno; |
7cd8558b | 1009 | unsigned int total_zones = MAIN_SECS(sbi) / sbi->secs_per_zone; |
351df4b2 JK |
1010 | unsigned int hint = *newseg / sbi->segs_per_sec; |
1011 | unsigned int old_zoneno = GET_ZONENO_FROM_SEGNO(sbi, *newseg); | |
1012 | unsigned int left_start = hint; | |
1013 | bool init = true; | |
1014 | int go_left = 0; | |
1015 | int i; | |
1016 | ||
1a118ccf | 1017 | spin_lock(&free_i->segmap_lock); |
351df4b2 JK |
1018 | |
1019 | if (!new_sec && ((*newseg + 1) % sbi->segs_per_sec)) { | |
1020 | segno = find_next_zero_bit(free_i->free_segmap, | |
0ab14356 CY |
1021 | (hint + 1) * sbi->segs_per_sec, *newseg + 1); |
1022 | if (segno < (hint + 1) * sbi->segs_per_sec) | |
351df4b2 JK |
1023 | goto got_it; |
1024 | } | |
1025 | find_other_zone: | |
7cd8558b JK |
1026 | secno = find_next_zero_bit(free_i->free_secmap, MAIN_SECS(sbi), hint); |
1027 | if (secno >= MAIN_SECS(sbi)) { | |
351df4b2 JK |
1028 | if (dir == ALLOC_RIGHT) { |
1029 | secno = find_next_zero_bit(free_i->free_secmap, | |
7cd8558b JK |
1030 | MAIN_SECS(sbi), 0); |
1031 | f2fs_bug_on(sbi, secno >= MAIN_SECS(sbi)); | |
351df4b2 JK |
1032 | } else { |
1033 | go_left = 1; | |
1034 | left_start = hint - 1; | |
1035 | } | |
1036 | } | |
1037 | if (go_left == 0) | |
1038 | goto skip_left; | |
1039 | ||
1040 | while (test_bit(left_start, free_i->free_secmap)) { | |
1041 | if (left_start > 0) { | |
1042 | left_start--; | |
1043 | continue; | |
1044 | } | |
1045 | left_start = find_next_zero_bit(free_i->free_secmap, | |
7cd8558b JK |
1046 | MAIN_SECS(sbi), 0); |
1047 | f2fs_bug_on(sbi, left_start >= MAIN_SECS(sbi)); | |
351df4b2 JK |
1048 | break; |
1049 | } | |
1050 | secno = left_start; | |
1051 | skip_left: | |
1052 | hint = secno; | |
1053 | segno = secno * sbi->segs_per_sec; | |
1054 | zoneno = secno / sbi->secs_per_zone; | |
1055 | ||
1056 | /* give up on finding another zone */ | |
1057 | if (!init) | |
1058 | goto got_it; | |
1059 | if (sbi->secs_per_zone == 1) | |
1060 | goto got_it; | |
1061 | if (zoneno == old_zoneno) | |
1062 | goto got_it; | |
1063 | if (dir == ALLOC_LEFT) { | |
1064 | if (!go_left && zoneno + 1 >= total_zones) | |
1065 | goto got_it; | |
1066 | if (go_left && zoneno == 0) | |
1067 | goto got_it; | |
1068 | } | |
1069 | for (i = 0; i < NR_CURSEG_TYPE; i++) | |
1070 | if (CURSEG_I(sbi, i)->zone == zoneno) | |
1071 | break; | |
1072 | ||
1073 | if (i < NR_CURSEG_TYPE) { | |
1074 | /* zone is in user, try another */ | |
1075 | if (go_left) | |
1076 | hint = zoneno * sbi->secs_per_zone - 1; | |
1077 | else if (zoneno + 1 >= total_zones) | |
1078 | hint = 0; | |
1079 | else | |
1080 | hint = (zoneno + 1) * sbi->secs_per_zone; | |
1081 | init = false; | |
1082 | goto find_other_zone; | |
1083 | } | |
1084 | got_it: | |
1085 | /* set it as dirty segment in free segmap */ | |
9850cf4a | 1086 | f2fs_bug_on(sbi, test_bit(segno, free_i->free_segmap)); |
351df4b2 JK |
1087 | __set_inuse(sbi, segno); |
1088 | *newseg = segno; | |
1a118ccf | 1089 | spin_unlock(&free_i->segmap_lock); |
351df4b2 JK |
1090 | } |
1091 | ||
1092 | static void reset_curseg(struct f2fs_sb_info *sbi, int type, int modified) | |
1093 | { | |
1094 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
1095 | struct summary_footer *sum_footer; | |
1096 | ||
1097 | curseg->segno = curseg->next_segno; | |
1098 | curseg->zone = GET_ZONENO_FROM_SEGNO(sbi, curseg->segno); | |
1099 | curseg->next_blkoff = 0; | |
1100 | curseg->next_segno = NULL_SEGNO; | |
1101 | ||
1102 | sum_footer = &(curseg->sum_blk->footer); | |
1103 | memset(sum_footer, 0, sizeof(struct summary_footer)); | |
1104 | if (IS_DATASEG(type)) | |
1105 | SET_SUM_TYPE(sum_footer, SUM_TYPE_DATA); | |
1106 | if (IS_NODESEG(type)) | |
1107 | SET_SUM_TYPE(sum_footer, SUM_TYPE_NODE); | |
1108 | __set_sit_entry_type(sbi, type, curseg->segno, modified); | |
1109 | } | |
1110 | ||
0a8165d7 | 1111 | /* |
351df4b2 JK |
1112 | * Allocate a current working segment. |
1113 | * This function always allocates a free segment in LFS manner. | |
1114 | */ | |
1115 | static void new_curseg(struct f2fs_sb_info *sbi, int type, bool new_sec) | |
1116 | { | |
1117 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
1118 | unsigned int segno = curseg->segno; | |
1119 | int dir = ALLOC_LEFT; | |
1120 | ||
1121 | write_sum_page(sbi, curseg->sum_blk, | |
81fb5e87 | 1122 | GET_SUM_BLOCK(sbi, segno)); |
351df4b2 JK |
1123 | if (type == CURSEG_WARM_DATA || type == CURSEG_COLD_DATA) |
1124 | dir = ALLOC_RIGHT; | |
1125 | ||
1126 | if (test_opt(sbi, NOHEAP)) | |
1127 | dir = ALLOC_RIGHT; | |
1128 | ||
1129 | get_new_segment(sbi, &segno, new_sec, dir); | |
1130 | curseg->next_segno = segno; | |
1131 | reset_curseg(sbi, type, 1); | |
1132 | curseg->alloc_type = LFS; | |
1133 | } | |
1134 | ||
1135 | static void __next_free_blkoff(struct f2fs_sb_info *sbi, | |
1136 | struct curseg_info *seg, block_t start) | |
1137 | { | |
1138 | struct seg_entry *se = get_seg_entry(sbi, seg->segno); | |
e81c93cf | 1139 | int entries = SIT_VBLOCK_MAP_SIZE / sizeof(unsigned long); |
60a3b782 | 1140 | unsigned long *target_map = SIT_I(sbi)->tmp_map; |
e81c93cf CL |
1141 | unsigned long *ckpt_map = (unsigned long *)se->ckpt_valid_map; |
1142 | unsigned long *cur_map = (unsigned long *)se->cur_valid_map; | |
1143 | int i, pos; | |
1144 | ||
1145 | for (i = 0; i < entries; i++) | |
1146 | target_map[i] = ckpt_map[i] | cur_map[i]; | |
1147 | ||
1148 | pos = __find_rev_next_zero_bit(target_map, sbi->blocks_per_seg, start); | |
1149 | ||
1150 | seg->next_blkoff = pos; | |
351df4b2 JK |
1151 | } |
1152 | ||
0a8165d7 | 1153 | /* |
351df4b2 JK |
1154 | * If a segment is written by LFS manner, next block offset is just obtained |
1155 | * by increasing the current block offset. However, if a segment is written by | |
1156 | * SSR manner, next block offset obtained by calling __next_free_blkoff | |
1157 | */ | |
1158 | static void __refresh_next_blkoff(struct f2fs_sb_info *sbi, | |
1159 | struct curseg_info *seg) | |
1160 | { | |
1161 | if (seg->alloc_type == SSR) | |
1162 | __next_free_blkoff(sbi, seg, seg->next_blkoff + 1); | |
1163 | else | |
1164 | seg->next_blkoff++; | |
1165 | } | |
1166 | ||
0a8165d7 | 1167 | /* |
e1c42045 | 1168 | * This function always allocates a used segment(from dirty seglist) by SSR |
351df4b2 JK |
1169 | * manner, so it should recover the existing segment information of valid blocks |
1170 | */ | |
1171 | static void change_curseg(struct f2fs_sb_info *sbi, int type, bool reuse) | |
1172 | { | |
1173 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
1174 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
1175 | unsigned int new_segno = curseg->next_segno; | |
1176 | struct f2fs_summary_block *sum_node; | |
1177 | struct page *sum_page; | |
1178 | ||
1179 | write_sum_page(sbi, curseg->sum_blk, | |
1180 | GET_SUM_BLOCK(sbi, curseg->segno)); | |
1181 | __set_test_and_inuse(sbi, new_segno); | |
1182 | ||
1183 | mutex_lock(&dirty_i->seglist_lock); | |
1184 | __remove_dirty_segment(sbi, new_segno, PRE); | |
1185 | __remove_dirty_segment(sbi, new_segno, DIRTY); | |
1186 | mutex_unlock(&dirty_i->seglist_lock); | |
1187 | ||
1188 | reset_curseg(sbi, type, 1); | |
1189 | curseg->alloc_type = SSR; | |
1190 | __next_free_blkoff(sbi, curseg, 0); | |
1191 | ||
1192 | if (reuse) { | |
1193 | sum_page = get_sum_page(sbi, new_segno); | |
1194 | sum_node = (struct f2fs_summary_block *)page_address(sum_page); | |
1195 | memcpy(curseg->sum_blk, sum_node, SUM_ENTRY_SIZE); | |
1196 | f2fs_put_page(sum_page, 1); | |
1197 | } | |
1198 | } | |
1199 | ||
43727527 JK |
1200 | static int get_ssr_segment(struct f2fs_sb_info *sbi, int type) |
1201 | { | |
1202 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
1203 | const struct victim_selection *v_ops = DIRTY_I(sbi)->v_ops; | |
1204 | ||
1205 | if (IS_NODESEG(type) || !has_not_enough_free_secs(sbi, 0)) | |
1206 | return v_ops->get_victim(sbi, | |
1207 | &(curseg)->next_segno, BG_GC, type, SSR); | |
1208 | ||
1209 | /* For data segments, let's do SSR more intensively */ | |
1210 | for (; type >= CURSEG_HOT_DATA; type--) | |
1211 | if (v_ops->get_victim(sbi, &(curseg)->next_segno, | |
1212 | BG_GC, type, SSR)) | |
1213 | return 1; | |
1214 | return 0; | |
1215 | } | |
1216 | ||
351df4b2 JK |
1217 | /* |
1218 | * flush out current segment and replace it with new segment | |
1219 | * This function should be returned with success, otherwise BUG | |
1220 | */ | |
1221 | static void allocate_segment_by_default(struct f2fs_sb_info *sbi, | |
1222 | int type, bool force) | |
1223 | { | |
1224 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
351df4b2 | 1225 | |
7b405275 | 1226 | if (force) |
351df4b2 | 1227 | new_curseg(sbi, type, true); |
7b405275 | 1228 | else if (type == CURSEG_WARM_NODE) |
351df4b2 | 1229 | new_curseg(sbi, type, false); |
60374688 JK |
1230 | else if (curseg->alloc_type == LFS && is_next_segment_free(sbi, type)) |
1231 | new_curseg(sbi, type, false); | |
351df4b2 JK |
1232 | else if (need_SSR(sbi) && get_ssr_segment(sbi, type)) |
1233 | change_curseg(sbi, type, true); | |
1234 | else | |
1235 | new_curseg(sbi, type, false); | |
dcdfff65 JK |
1236 | |
1237 | stat_inc_seg_type(sbi, curseg); | |
351df4b2 JK |
1238 | } |
1239 | ||
38aa0889 JK |
1240 | static void __allocate_new_segments(struct f2fs_sb_info *sbi, int type) |
1241 | { | |
1242 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
1243 | unsigned int old_segno; | |
1244 | ||
1245 | old_segno = curseg->segno; | |
1246 | SIT_I(sbi)->s_ops->allocate_segment(sbi, type, true); | |
1247 | locate_dirty_segment(sbi, old_segno); | |
1248 | } | |
1249 | ||
351df4b2 JK |
1250 | void allocate_new_segments(struct f2fs_sb_info *sbi) |
1251 | { | |
351df4b2 JK |
1252 | int i; |
1253 | ||
36abef4e JK |
1254 | if (test_opt(sbi, LFS)) |
1255 | return; | |
1256 | ||
38aa0889 JK |
1257 | for (i = CURSEG_HOT_DATA; i <= CURSEG_COLD_DATA; i++) |
1258 | __allocate_new_segments(sbi, i); | |
351df4b2 JK |
1259 | } |
1260 | ||
1261 | static const struct segment_allocation default_salloc_ops = { | |
1262 | .allocate_segment = allocate_segment_by_default, | |
1263 | }; | |
1264 | ||
4b2fecc8 JK |
1265 | int f2fs_trim_fs(struct f2fs_sb_info *sbi, struct fstrim_range *range) |
1266 | { | |
f7ef9b83 JK |
1267 | __u64 start = F2FS_BYTES_TO_BLK(range->start); |
1268 | __u64 end = start + F2FS_BYTES_TO_BLK(range->len) - 1; | |
4b2fecc8 JK |
1269 | unsigned int start_segno, end_segno; |
1270 | struct cp_control cpc; | |
c34f42e2 | 1271 | int err = 0; |
4b2fecc8 | 1272 | |
836b5a63 | 1273 | if (start >= MAX_BLKADDR(sbi) || range->len < sbi->blocksize) |
4b2fecc8 JK |
1274 | return -EINVAL; |
1275 | ||
9bd27ae4 | 1276 | cpc.trimmed = 0; |
7cd8558b | 1277 | if (end <= MAIN_BLKADDR(sbi)) |
4b2fecc8 JK |
1278 | goto out; |
1279 | ||
1280 | /* start/end segment number in main_area */ | |
7cd8558b JK |
1281 | start_segno = (start <= MAIN_BLKADDR(sbi)) ? 0 : GET_SEGNO(sbi, start); |
1282 | end_segno = (end >= MAX_BLKADDR(sbi)) ? MAIN_SEGS(sbi) - 1 : | |
1283 | GET_SEGNO(sbi, end); | |
4b2fecc8 | 1284 | cpc.reason = CP_DISCARD; |
836b5a63 | 1285 | cpc.trim_minlen = max_t(__u64, 1, F2FS_BYTES_TO_BLK(range->minlen)); |
4b2fecc8 JK |
1286 | |
1287 | /* do checkpoint to issue discard commands safely */ | |
bba681cb JK |
1288 | for (; start_segno <= end_segno; start_segno = cpc.trim_end + 1) { |
1289 | cpc.trim_start = start_segno; | |
a66cdd98 JK |
1290 | |
1291 | if (sbi->discard_blks == 0) | |
1292 | break; | |
1293 | else if (sbi->discard_blks < BATCHED_TRIM_BLOCKS(sbi)) | |
1294 | cpc.trim_end = end_segno; | |
1295 | else | |
1296 | cpc.trim_end = min_t(unsigned int, | |
1297 | rounddown(start_segno + | |
bba681cb JK |
1298 | BATCHED_TRIM_SEGMENTS(sbi), |
1299 | sbi->segs_per_sec) - 1, end_segno); | |
1300 | ||
1301 | mutex_lock(&sbi->gc_mutex); | |
c34f42e2 | 1302 | err = write_checkpoint(sbi, &cpc); |
bba681cb JK |
1303 | mutex_unlock(&sbi->gc_mutex); |
1304 | } | |
4b2fecc8 | 1305 | out: |
f7ef9b83 | 1306 | range->len = F2FS_BLK_TO_BYTES(cpc.trimmed); |
c34f42e2 | 1307 | return err; |
4b2fecc8 JK |
1308 | } |
1309 | ||
351df4b2 JK |
1310 | static bool __has_curseg_space(struct f2fs_sb_info *sbi, int type) |
1311 | { | |
1312 | struct curseg_info *curseg = CURSEG_I(sbi, type); | |
1313 | if (curseg->next_blkoff < sbi->blocks_per_seg) | |
1314 | return true; | |
1315 | return false; | |
1316 | } | |
1317 | ||
1318 | static int __get_segment_type_2(struct page *page, enum page_type p_type) | |
1319 | { | |
1320 | if (p_type == DATA) | |
1321 | return CURSEG_HOT_DATA; | |
1322 | else | |
1323 | return CURSEG_HOT_NODE; | |
1324 | } | |
1325 | ||
1326 | static int __get_segment_type_4(struct page *page, enum page_type p_type) | |
1327 | { | |
1328 | if (p_type == DATA) { | |
1329 | struct inode *inode = page->mapping->host; | |
1330 | ||
1331 | if (S_ISDIR(inode->i_mode)) | |
1332 | return CURSEG_HOT_DATA; | |
1333 | else | |
1334 | return CURSEG_COLD_DATA; | |
1335 | } else { | |
a344b9fd JK |
1336 | if (IS_DNODE(page) && is_cold_node(page)) |
1337 | return CURSEG_WARM_NODE; | |
351df4b2 JK |
1338 | else |
1339 | return CURSEG_COLD_NODE; | |
1340 | } | |
1341 | } | |
1342 | ||
1343 | static int __get_segment_type_6(struct page *page, enum page_type p_type) | |
1344 | { | |
1345 | if (p_type == DATA) { | |
1346 | struct inode *inode = page->mapping->host; | |
1347 | ||
1348 | if (S_ISDIR(inode->i_mode)) | |
1349 | return CURSEG_HOT_DATA; | |
354a3399 | 1350 | else if (is_cold_data(page) || file_is_cold(inode)) |
351df4b2 JK |
1351 | return CURSEG_COLD_DATA; |
1352 | else | |
1353 | return CURSEG_WARM_DATA; | |
1354 | } else { | |
1355 | if (IS_DNODE(page)) | |
1356 | return is_cold_node(page) ? CURSEG_WARM_NODE : | |
1357 | CURSEG_HOT_NODE; | |
1358 | else | |
1359 | return CURSEG_COLD_NODE; | |
1360 | } | |
1361 | } | |
1362 | ||
1363 | static int __get_segment_type(struct page *page, enum page_type p_type) | |
1364 | { | |
4081363f | 1365 | switch (F2FS_P_SB(page)->active_logs) { |
351df4b2 JK |
1366 | case 2: |
1367 | return __get_segment_type_2(page, p_type); | |
1368 | case 4: | |
1369 | return __get_segment_type_4(page, p_type); | |
351df4b2 | 1370 | } |
12a67146 | 1371 | /* NR_CURSEG_TYPE(6) logs by default */ |
9850cf4a JK |
1372 | f2fs_bug_on(F2FS_P_SB(page), |
1373 | F2FS_P_SB(page)->active_logs != NR_CURSEG_TYPE); | |
12a67146 | 1374 | return __get_segment_type_6(page, p_type); |
351df4b2 JK |
1375 | } |
1376 | ||
bfad7c2d JK |
1377 | void allocate_data_block(struct f2fs_sb_info *sbi, struct page *page, |
1378 | block_t old_blkaddr, block_t *new_blkaddr, | |
1379 | struct f2fs_summary *sum, int type) | |
351df4b2 JK |
1380 | { |
1381 | struct sit_info *sit_i = SIT_I(sbi); | |
1382 | struct curseg_info *curseg; | |
38aa0889 JK |
1383 | bool direct_io = (type == CURSEG_DIRECT_IO); |
1384 | ||
1385 | type = direct_io ? CURSEG_WARM_DATA : type; | |
351df4b2 | 1386 | |
351df4b2 JK |
1387 | curseg = CURSEG_I(sbi, type); |
1388 | ||
1389 | mutex_lock(&curseg->curseg_mutex); | |
21cb1d99 | 1390 | mutex_lock(&sit_i->sentry_lock); |
351df4b2 | 1391 | |
38aa0889 | 1392 | /* direct_io'ed data is aligned to the segment for better performance */ |
47e70ca4 JK |
1393 | if (direct_io && curseg->next_blkoff && |
1394 | !has_not_enough_free_secs(sbi, 0)) | |
38aa0889 JK |
1395 | __allocate_new_segments(sbi, type); |
1396 | ||
351df4b2 | 1397 | *new_blkaddr = NEXT_FREE_BLKADDR(sbi, curseg); |
351df4b2 JK |
1398 | |
1399 | /* | |
1400 | * __add_sum_entry should be resided under the curseg_mutex | |
1401 | * because, this function updates a summary entry in the | |
1402 | * current summary block. | |
1403 | */ | |
e79efe3b | 1404 | __add_sum_entry(sbi, type, sum); |
351df4b2 | 1405 | |
351df4b2 | 1406 | __refresh_next_blkoff(sbi, curseg); |
dcdfff65 JK |
1407 | |
1408 | stat_inc_block_count(sbi, curseg); | |
351df4b2 | 1409 | |
5e443818 JK |
1410 | if (!__has_curseg_space(sbi, type)) |
1411 | sit_i->s_ops->allocate_segment(sbi, type, false); | |
351df4b2 JK |
1412 | /* |
1413 | * SIT information should be updated before segment allocation, | |
1414 | * since SSR needs latest valid block information. | |
1415 | */ | |
1416 | refresh_sit_entry(sbi, old_blkaddr, *new_blkaddr); | |
5e443818 | 1417 | |
351df4b2 JK |
1418 | mutex_unlock(&sit_i->sentry_lock); |
1419 | ||
bfad7c2d | 1420 | if (page && IS_NODESEG(type)) |
351df4b2 JK |
1421 | fill_node_footer_blkaddr(page, NEXT_FREE_BLKADDR(sbi, curseg)); |
1422 | ||
bfad7c2d JK |
1423 | mutex_unlock(&curseg->curseg_mutex); |
1424 | } | |
1425 | ||
05ca3632 | 1426 | static void do_write_page(struct f2fs_summary *sum, struct f2fs_io_info *fio) |
bfad7c2d | 1427 | { |
05ca3632 | 1428 | int type = __get_segment_type(fio->page, fio->type); |
bfad7c2d | 1429 | |
7dfeaa32 JK |
1430 | if (fio->type == NODE || fio->type == DATA) |
1431 | mutex_lock(&fio->sbi->wio_mutex[fio->type]); | |
1432 | ||
7a9d7548 CY |
1433 | allocate_data_block(fio->sbi, fio->page, fio->old_blkaddr, |
1434 | &fio->new_blkaddr, sum, type); | |
bfad7c2d | 1435 | |
351df4b2 | 1436 | /* writeout dirty page into bdev */ |
05ca3632 | 1437 | f2fs_submit_page_mbio(fio); |
7dfeaa32 JK |
1438 | |
1439 | if (fio->type == NODE || fio->type == DATA) | |
1440 | mutex_unlock(&fio->sbi->wio_mutex[fio->type]); | |
351df4b2 JK |
1441 | } |
1442 | ||
577e3495 | 1443 | void write_meta_page(struct f2fs_sb_info *sbi, struct page *page) |
351df4b2 | 1444 | { |
458e6197 | 1445 | struct f2fs_io_info fio = { |
05ca3632 | 1446 | .sbi = sbi, |
458e6197 | 1447 | .type = META, |
04d328de MC |
1448 | .op = REQ_OP_WRITE, |
1449 | .op_flags = WRITE_SYNC | REQ_META | REQ_PRIO, | |
7a9d7548 CY |
1450 | .old_blkaddr = page->index, |
1451 | .new_blkaddr = page->index, | |
05ca3632 | 1452 | .page = page, |
4375a336 | 1453 | .encrypted_page = NULL, |
458e6197 JK |
1454 | }; |
1455 | ||
2b947003 | 1456 | if (unlikely(page->index >= MAIN_BLKADDR(sbi))) |
04d328de | 1457 | fio.op_flags &= ~REQ_META; |
2b947003 | 1458 | |
351df4b2 | 1459 | set_page_writeback(page); |
05ca3632 | 1460 | f2fs_submit_page_mbio(&fio); |
351df4b2 JK |
1461 | } |
1462 | ||
05ca3632 | 1463 | void write_node_page(unsigned int nid, struct f2fs_io_info *fio) |
351df4b2 JK |
1464 | { |
1465 | struct f2fs_summary sum; | |
05ca3632 | 1466 | |
351df4b2 | 1467 | set_summary(&sum, nid, 0, 0); |
05ca3632 | 1468 | do_write_page(&sum, fio); |
351df4b2 JK |
1469 | } |
1470 | ||
05ca3632 | 1471 | void write_data_page(struct dnode_of_data *dn, struct f2fs_io_info *fio) |
351df4b2 | 1472 | { |
05ca3632 | 1473 | struct f2fs_sb_info *sbi = fio->sbi; |
351df4b2 JK |
1474 | struct f2fs_summary sum; |
1475 | struct node_info ni; | |
1476 | ||
9850cf4a | 1477 | f2fs_bug_on(sbi, dn->data_blkaddr == NULL_ADDR); |
351df4b2 JK |
1478 | get_node_info(sbi, dn->nid, &ni); |
1479 | set_summary(&sum, dn->nid, dn->ofs_in_node, ni.version); | |
05ca3632 | 1480 | do_write_page(&sum, fio); |
f28b3434 | 1481 | f2fs_update_data_blkaddr(dn, fio->new_blkaddr); |
351df4b2 JK |
1482 | } |
1483 | ||
05ca3632 | 1484 | void rewrite_data_page(struct f2fs_io_info *fio) |
351df4b2 | 1485 | { |
7a9d7548 | 1486 | fio->new_blkaddr = fio->old_blkaddr; |
05ca3632 JK |
1487 | stat_inc_inplace_blocks(fio->sbi); |
1488 | f2fs_submit_page_mbio(fio); | |
351df4b2 JK |
1489 | } |
1490 | ||
4356e48e | 1491 | void __f2fs_replace_block(struct f2fs_sb_info *sbi, struct f2fs_summary *sum, |
19f106bc | 1492 | block_t old_blkaddr, block_t new_blkaddr, |
28bc106b | 1493 | bool recover_curseg, bool recover_newaddr) |
351df4b2 JK |
1494 | { |
1495 | struct sit_info *sit_i = SIT_I(sbi); | |
1496 | struct curseg_info *curseg; | |
1497 | unsigned int segno, old_cursegno; | |
1498 | struct seg_entry *se; | |
1499 | int type; | |
19f106bc | 1500 | unsigned short old_blkoff; |
351df4b2 JK |
1501 | |
1502 | segno = GET_SEGNO(sbi, new_blkaddr); | |
1503 | se = get_seg_entry(sbi, segno); | |
1504 | type = se->type; | |
1505 | ||
19f106bc CY |
1506 | if (!recover_curseg) { |
1507 | /* for recovery flow */ | |
1508 | if (se->valid_blocks == 0 && !IS_CURSEG(sbi, segno)) { | |
1509 | if (old_blkaddr == NULL_ADDR) | |
1510 | type = CURSEG_COLD_DATA; | |
1511 | else | |
1512 | type = CURSEG_WARM_DATA; | |
1513 | } | |
1514 | } else { | |
1515 | if (!IS_CURSEG(sbi, segno)) | |
351df4b2 JK |
1516 | type = CURSEG_WARM_DATA; |
1517 | } | |
19f106bc | 1518 | |
351df4b2 JK |
1519 | curseg = CURSEG_I(sbi, type); |
1520 | ||
1521 | mutex_lock(&curseg->curseg_mutex); | |
1522 | mutex_lock(&sit_i->sentry_lock); | |
1523 | ||
1524 | old_cursegno = curseg->segno; | |
19f106bc | 1525 | old_blkoff = curseg->next_blkoff; |
351df4b2 JK |
1526 | |
1527 | /* change the current segment */ | |
1528 | if (segno != curseg->segno) { | |
1529 | curseg->next_segno = segno; | |
1530 | change_curseg(sbi, type, true); | |
1531 | } | |
1532 | ||
491c0854 | 1533 | curseg->next_blkoff = GET_BLKOFF_FROM_SEG0(sbi, new_blkaddr); |
e79efe3b | 1534 | __add_sum_entry(sbi, type, sum); |
351df4b2 | 1535 | |
28bc106b | 1536 | if (!recover_curseg || recover_newaddr) |
6e2c64ad JK |
1537 | update_sit_entry(sbi, new_blkaddr, 1); |
1538 | if (GET_SEGNO(sbi, old_blkaddr) != NULL_SEGNO) | |
1539 | update_sit_entry(sbi, old_blkaddr, -1); | |
1540 | ||
1541 | locate_dirty_segment(sbi, GET_SEGNO(sbi, old_blkaddr)); | |
1542 | locate_dirty_segment(sbi, GET_SEGNO(sbi, new_blkaddr)); | |
1543 | ||
351df4b2 | 1544 | locate_dirty_segment(sbi, old_cursegno); |
351df4b2 | 1545 | |
19f106bc CY |
1546 | if (recover_curseg) { |
1547 | if (old_cursegno != curseg->segno) { | |
1548 | curseg->next_segno = old_cursegno; | |
1549 | change_curseg(sbi, type, true); | |
1550 | } | |
1551 | curseg->next_blkoff = old_blkoff; | |
1552 | } | |
1553 | ||
351df4b2 JK |
1554 | mutex_unlock(&sit_i->sentry_lock); |
1555 | mutex_unlock(&curseg->curseg_mutex); | |
1556 | } | |
1557 | ||
528e3459 CY |
1558 | void f2fs_replace_block(struct f2fs_sb_info *sbi, struct dnode_of_data *dn, |
1559 | block_t old_addr, block_t new_addr, | |
28bc106b CY |
1560 | unsigned char version, bool recover_curseg, |
1561 | bool recover_newaddr) | |
528e3459 CY |
1562 | { |
1563 | struct f2fs_summary sum; | |
1564 | ||
1565 | set_summary(&sum, dn->nid, dn->ofs_in_node, version); | |
1566 | ||
28bc106b CY |
1567 | __f2fs_replace_block(sbi, &sum, old_addr, new_addr, |
1568 | recover_curseg, recover_newaddr); | |
528e3459 | 1569 | |
f28b3434 | 1570 | f2fs_update_data_blkaddr(dn, new_addr); |
528e3459 CY |
1571 | } |
1572 | ||
93dfe2ac | 1573 | void f2fs_wait_on_page_writeback(struct page *page, |
fec1d657 | 1574 | enum page_type type, bool ordered) |
93dfe2ac | 1575 | { |
93dfe2ac | 1576 | if (PageWriteback(page)) { |
4081363f JK |
1577 | struct f2fs_sb_info *sbi = F2FS_P_SB(page); |
1578 | ||
0c3a5797 | 1579 | f2fs_submit_merged_bio_cond(sbi, NULL, page, 0, type, WRITE); |
fec1d657 JK |
1580 | if (ordered) |
1581 | wait_on_page_writeback(page); | |
1582 | else | |
1583 | wait_for_stable_page(page); | |
93dfe2ac JK |
1584 | } |
1585 | } | |
1586 | ||
08b39fbd CY |
1587 | void f2fs_wait_on_encrypted_page_writeback(struct f2fs_sb_info *sbi, |
1588 | block_t blkaddr) | |
1589 | { | |
1590 | struct page *cpage; | |
1591 | ||
1592 | if (blkaddr == NEW_ADDR) | |
1593 | return; | |
1594 | ||
1595 | f2fs_bug_on(sbi, blkaddr == NULL_ADDR); | |
1596 | ||
1597 | cpage = find_lock_page(META_MAPPING(sbi), blkaddr); | |
1598 | if (cpage) { | |
fec1d657 | 1599 | f2fs_wait_on_page_writeback(cpage, DATA, true); |
08b39fbd CY |
1600 | f2fs_put_page(cpage, 1); |
1601 | } | |
1602 | } | |
1603 | ||
351df4b2 JK |
1604 | static int read_compacted_summaries(struct f2fs_sb_info *sbi) |
1605 | { | |
1606 | struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi); | |
1607 | struct curseg_info *seg_i; | |
1608 | unsigned char *kaddr; | |
1609 | struct page *page; | |
1610 | block_t start; | |
1611 | int i, j, offset; | |
1612 | ||
1613 | start = start_sum_block(sbi); | |
1614 | ||
1615 | page = get_meta_page(sbi, start++); | |
1616 | kaddr = (unsigned char *)page_address(page); | |
1617 | ||
1618 | /* Step 1: restore nat cache */ | |
1619 | seg_i = CURSEG_I(sbi, CURSEG_HOT_DATA); | |
b7ad7512 | 1620 | memcpy(seg_i->journal, kaddr, SUM_JOURNAL_SIZE); |
351df4b2 JK |
1621 | |
1622 | /* Step 2: restore sit cache */ | |
1623 | seg_i = CURSEG_I(sbi, CURSEG_COLD_DATA); | |
b7ad7512 | 1624 | memcpy(seg_i->journal, kaddr + SUM_JOURNAL_SIZE, SUM_JOURNAL_SIZE); |
351df4b2 JK |
1625 | offset = 2 * SUM_JOURNAL_SIZE; |
1626 | ||
1627 | /* Step 3: restore summary entries */ | |
1628 | for (i = CURSEG_HOT_DATA; i <= CURSEG_COLD_DATA; i++) { | |
1629 | unsigned short blk_off; | |
1630 | unsigned int segno; | |
1631 | ||
1632 | seg_i = CURSEG_I(sbi, i); | |
1633 | segno = le32_to_cpu(ckpt->cur_data_segno[i]); | |
1634 | blk_off = le16_to_cpu(ckpt->cur_data_blkoff[i]); | |
1635 | seg_i->next_segno = segno; | |
1636 | reset_curseg(sbi, i, 0); | |
1637 | seg_i->alloc_type = ckpt->alloc_type[i]; | |
1638 | seg_i->next_blkoff = blk_off; | |
1639 | ||
1640 | if (seg_i->alloc_type == SSR) | |
1641 | blk_off = sbi->blocks_per_seg; | |
1642 | ||
1643 | for (j = 0; j < blk_off; j++) { | |
1644 | struct f2fs_summary *s; | |
1645 | s = (struct f2fs_summary *)(kaddr + offset); | |
1646 | seg_i->sum_blk->entries[j] = *s; | |
1647 | offset += SUMMARY_SIZE; | |
09cbfeaf | 1648 | if (offset + SUMMARY_SIZE <= PAGE_SIZE - |
351df4b2 JK |
1649 | SUM_FOOTER_SIZE) |
1650 | continue; | |
1651 | ||
1652 | f2fs_put_page(page, 1); | |
1653 | page = NULL; | |
1654 | ||
1655 | page = get_meta_page(sbi, start++); | |
1656 | kaddr = (unsigned char *)page_address(page); | |
1657 | offset = 0; | |
1658 | } | |
1659 | } | |
1660 | f2fs_put_page(page, 1); | |
1661 | return 0; | |
1662 | } | |
1663 | ||
1664 | static int read_normal_summaries(struct f2fs_sb_info *sbi, int type) | |
1665 | { | |
1666 | struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi); | |
1667 | struct f2fs_summary_block *sum; | |
1668 | struct curseg_info *curseg; | |
1669 | struct page *new; | |
1670 | unsigned short blk_off; | |
1671 | unsigned int segno = 0; | |
1672 | block_t blk_addr = 0; | |
1673 | ||
1674 | /* get segment number and block addr */ | |
1675 | if (IS_DATASEG(type)) { | |
1676 | segno = le32_to_cpu(ckpt->cur_data_segno[type]); | |
1677 | blk_off = le16_to_cpu(ckpt->cur_data_blkoff[type - | |
1678 | CURSEG_HOT_DATA]); | |
119ee914 | 1679 | if (__exist_node_summaries(sbi)) |
351df4b2 JK |
1680 | blk_addr = sum_blk_addr(sbi, NR_CURSEG_TYPE, type); |
1681 | else | |
1682 | blk_addr = sum_blk_addr(sbi, NR_CURSEG_DATA_TYPE, type); | |
1683 | } else { | |
1684 | segno = le32_to_cpu(ckpt->cur_node_segno[type - | |
1685 | CURSEG_HOT_NODE]); | |
1686 | blk_off = le16_to_cpu(ckpt->cur_node_blkoff[type - | |
1687 | CURSEG_HOT_NODE]); | |
119ee914 | 1688 | if (__exist_node_summaries(sbi)) |
351df4b2 JK |
1689 | blk_addr = sum_blk_addr(sbi, NR_CURSEG_NODE_TYPE, |
1690 | type - CURSEG_HOT_NODE); | |
1691 | else | |
1692 | blk_addr = GET_SUM_BLOCK(sbi, segno); | |
1693 | } | |
1694 | ||
1695 | new = get_meta_page(sbi, blk_addr); | |
1696 | sum = (struct f2fs_summary_block *)page_address(new); | |
1697 | ||
1698 | if (IS_NODESEG(type)) { | |
119ee914 | 1699 | if (__exist_node_summaries(sbi)) { |
351df4b2 JK |
1700 | struct f2fs_summary *ns = &sum->entries[0]; |
1701 | int i; | |
1702 | for (i = 0; i < sbi->blocks_per_seg; i++, ns++) { | |
1703 | ns->version = 0; | |
1704 | ns->ofs_in_node = 0; | |
1705 | } | |
1706 | } else { | |
d653788a GZ |
1707 | int err; |
1708 | ||
1709 | err = restore_node_summary(sbi, segno, sum); | |
1710 | if (err) { | |
351df4b2 | 1711 | f2fs_put_page(new, 1); |
d653788a | 1712 | return err; |
351df4b2 JK |
1713 | } |
1714 | } | |
1715 | } | |
1716 | ||
1717 | /* set uncompleted segment to curseg */ | |
1718 | curseg = CURSEG_I(sbi, type); | |
1719 | mutex_lock(&curseg->curseg_mutex); | |
b7ad7512 CY |
1720 | |
1721 | /* update journal info */ | |
1722 | down_write(&curseg->journal_rwsem); | |
1723 | memcpy(curseg->journal, &sum->journal, SUM_JOURNAL_SIZE); | |
1724 | up_write(&curseg->journal_rwsem); | |
1725 | ||
1726 | memcpy(curseg->sum_blk->entries, sum->entries, SUM_ENTRY_SIZE); | |
1727 | memcpy(&curseg->sum_blk->footer, &sum->footer, SUM_FOOTER_SIZE); | |
351df4b2 JK |
1728 | curseg->next_segno = segno; |
1729 | reset_curseg(sbi, type, 0); | |
1730 | curseg->alloc_type = ckpt->alloc_type[type]; | |
1731 | curseg->next_blkoff = blk_off; | |
1732 | mutex_unlock(&curseg->curseg_mutex); | |
1733 | f2fs_put_page(new, 1); | |
1734 | return 0; | |
1735 | } | |
1736 | ||
1737 | static int restore_curseg_summaries(struct f2fs_sb_info *sbi) | |
1738 | { | |
1739 | int type = CURSEG_HOT_DATA; | |
e4fc5fbf | 1740 | int err; |
351df4b2 | 1741 | |
25ca923b | 1742 | if (is_set_ckpt_flags(F2FS_CKPT(sbi), CP_COMPACT_SUM_FLAG)) { |
3fa06d7b CY |
1743 | int npages = npages_for_summary_flush(sbi, true); |
1744 | ||
1745 | if (npages >= 2) | |
1746 | ra_meta_pages(sbi, start_sum_block(sbi), npages, | |
26879fb1 | 1747 | META_CP, true); |
3fa06d7b | 1748 | |
351df4b2 JK |
1749 | /* restore for compacted data summary */ |
1750 | if (read_compacted_summaries(sbi)) | |
1751 | return -EINVAL; | |
1752 | type = CURSEG_HOT_NODE; | |
1753 | } | |
1754 | ||
119ee914 | 1755 | if (__exist_node_summaries(sbi)) |
3fa06d7b | 1756 | ra_meta_pages(sbi, sum_blk_addr(sbi, NR_CURSEG_TYPE, type), |
26879fb1 | 1757 | NR_CURSEG_TYPE - type, META_CP, true); |
3fa06d7b | 1758 | |
e4fc5fbf CY |
1759 | for (; type <= CURSEG_COLD_NODE; type++) { |
1760 | err = read_normal_summaries(sbi, type); | |
1761 | if (err) | |
1762 | return err; | |
1763 | } | |
1764 | ||
351df4b2 JK |
1765 | return 0; |
1766 | } | |
1767 | ||
1768 | static void write_compacted_summaries(struct f2fs_sb_info *sbi, block_t blkaddr) | |
1769 | { | |
1770 | struct page *page; | |
1771 | unsigned char *kaddr; | |
1772 | struct f2fs_summary *summary; | |
1773 | struct curseg_info *seg_i; | |
1774 | int written_size = 0; | |
1775 | int i, j; | |
1776 | ||
1777 | page = grab_meta_page(sbi, blkaddr++); | |
1778 | kaddr = (unsigned char *)page_address(page); | |
1779 | ||
1780 | /* Step 1: write nat cache */ | |
1781 | seg_i = CURSEG_I(sbi, CURSEG_HOT_DATA); | |
b7ad7512 | 1782 | memcpy(kaddr, seg_i->journal, SUM_JOURNAL_SIZE); |
351df4b2 JK |
1783 | written_size += SUM_JOURNAL_SIZE; |
1784 | ||
1785 | /* Step 2: write sit cache */ | |
1786 | seg_i = CURSEG_I(sbi, CURSEG_COLD_DATA); | |
b7ad7512 | 1787 | memcpy(kaddr + written_size, seg_i->journal, SUM_JOURNAL_SIZE); |
351df4b2 JK |
1788 | written_size += SUM_JOURNAL_SIZE; |
1789 | ||
351df4b2 JK |
1790 | /* Step 3: write summary entries */ |
1791 | for (i = CURSEG_HOT_DATA; i <= CURSEG_COLD_DATA; i++) { | |
1792 | unsigned short blkoff; | |
1793 | seg_i = CURSEG_I(sbi, i); | |
1794 | if (sbi->ckpt->alloc_type[i] == SSR) | |
1795 | blkoff = sbi->blocks_per_seg; | |
1796 | else | |
1797 | blkoff = curseg_blkoff(sbi, i); | |
1798 | ||
1799 | for (j = 0; j < blkoff; j++) { | |
1800 | if (!page) { | |
1801 | page = grab_meta_page(sbi, blkaddr++); | |
1802 | kaddr = (unsigned char *)page_address(page); | |
1803 | written_size = 0; | |
1804 | } | |
1805 | summary = (struct f2fs_summary *)(kaddr + written_size); | |
1806 | *summary = seg_i->sum_blk->entries[j]; | |
1807 | written_size += SUMMARY_SIZE; | |
351df4b2 | 1808 | |
09cbfeaf | 1809 | if (written_size + SUMMARY_SIZE <= PAGE_SIZE - |
351df4b2 JK |
1810 | SUM_FOOTER_SIZE) |
1811 | continue; | |
1812 | ||
e8d61a74 | 1813 | set_page_dirty(page); |
351df4b2 JK |
1814 | f2fs_put_page(page, 1); |
1815 | page = NULL; | |
1816 | } | |
1817 | } | |
e8d61a74 CY |
1818 | if (page) { |
1819 | set_page_dirty(page); | |
351df4b2 | 1820 | f2fs_put_page(page, 1); |
e8d61a74 | 1821 | } |
351df4b2 JK |
1822 | } |
1823 | ||
1824 | static void write_normal_summaries(struct f2fs_sb_info *sbi, | |
1825 | block_t blkaddr, int type) | |
1826 | { | |
1827 | int i, end; | |
1828 | if (IS_DATASEG(type)) | |
1829 | end = type + NR_CURSEG_DATA_TYPE; | |
1830 | else | |
1831 | end = type + NR_CURSEG_NODE_TYPE; | |
1832 | ||
b7ad7512 CY |
1833 | for (i = type; i < end; i++) |
1834 | write_current_sum_page(sbi, i, blkaddr + (i - type)); | |
351df4b2 JK |
1835 | } |
1836 | ||
1837 | void write_data_summaries(struct f2fs_sb_info *sbi, block_t start_blk) | |
1838 | { | |
25ca923b | 1839 | if (is_set_ckpt_flags(F2FS_CKPT(sbi), CP_COMPACT_SUM_FLAG)) |
351df4b2 JK |
1840 | write_compacted_summaries(sbi, start_blk); |
1841 | else | |
1842 | write_normal_summaries(sbi, start_blk, CURSEG_HOT_DATA); | |
1843 | } | |
1844 | ||
1845 | void write_node_summaries(struct f2fs_sb_info *sbi, block_t start_blk) | |
1846 | { | |
119ee914 | 1847 | write_normal_summaries(sbi, start_blk, CURSEG_HOT_NODE); |
351df4b2 JK |
1848 | } |
1849 | ||
dfc08a12 | 1850 | int lookup_journal_in_cursum(struct f2fs_journal *journal, int type, |
351df4b2 JK |
1851 | unsigned int val, int alloc) |
1852 | { | |
1853 | int i; | |
1854 | ||
1855 | if (type == NAT_JOURNAL) { | |
dfc08a12 CY |
1856 | for (i = 0; i < nats_in_cursum(journal); i++) { |
1857 | if (le32_to_cpu(nid_in_journal(journal, i)) == val) | |
351df4b2 JK |
1858 | return i; |
1859 | } | |
dfc08a12 CY |
1860 | if (alloc && __has_cursum_space(journal, 1, NAT_JOURNAL)) |
1861 | return update_nats_in_cursum(journal, 1); | |
351df4b2 | 1862 | } else if (type == SIT_JOURNAL) { |
dfc08a12 CY |
1863 | for (i = 0; i < sits_in_cursum(journal); i++) |
1864 | if (le32_to_cpu(segno_in_journal(journal, i)) == val) | |
351df4b2 | 1865 | return i; |
dfc08a12 CY |
1866 | if (alloc && __has_cursum_space(journal, 1, SIT_JOURNAL)) |
1867 | return update_sits_in_cursum(journal, 1); | |
351df4b2 JK |
1868 | } |
1869 | return -1; | |
1870 | } | |
1871 | ||
1872 | static struct page *get_current_sit_page(struct f2fs_sb_info *sbi, | |
1873 | unsigned int segno) | |
1874 | { | |
2cc22186 | 1875 | return get_meta_page(sbi, current_sit_addr(sbi, segno)); |
351df4b2 JK |
1876 | } |
1877 | ||
1878 | static struct page *get_next_sit_page(struct f2fs_sb_info *sbi, | |
1879 | unsigned int start) | |
1880 | { | |
1881 | struct sit_info *sit_i = SIT_I(sbi); | |
1882 | struct page *src_page, *dst_page; | |
1883 | pgoff_t src_off, dst_off; | |
1884 | void *src_addr, *dst_addr; | |
1885 | ||
1886 | src_off = current_sit_addr(sbi, start); | |
1887 | dst_off = next_sit_addr(sbi, src_off); | |
1888 | ||
1889 | /* get current sit block page without lock */ | |
1890 | src_page = get_meta_page(sbi, src_off); | |
1891 | dst_page = grab_meta_page(sbi, dst_off); | |
9850cf4a | 1892 | f2fs_bug_on(sbi, PageDirty(src_page)); |
351df4b2 JK |
1893 | |
1894 | src_addr = page_address(src_page); | |
1895 | dst_addr = page_address(dst_page); | |
09cbfeaf | 1896 | memcpy(dst_addr, src_addr, PAGE_SIZE); |
351df4b2 JK |
1897 | |
1898 | set_page_dirty(dst_page); | |
1899 | f2fs_put_page(src_page, 1); | |
1900 | ||
1901 | set_to_next_sit(sit_i, start); | |
1902 | ||
1903 | return dst_page; | |
1904 | } | |
1905 | ||
184a5cd2 CY |
1906 | static struct sit_entry_set *grab_sit_entry_set(void) |
1907 | { | |
1908 | struct sit_entry_set *ses = | |
80c54505 | 1909 | f2fs_kmem_cache_alloc(sit_entry_set_slab, GFP_NOFS); |
184a5cd2 CY |
1910 | |
1911 | ses->entry_cnt = 0; | |
1912 | INIT_LIST_HEAD(&ses->set_list); | |
1913 | return ses; | |
1914 | } | |
1915 | ||
1916 | static void release_sit_entry_set(struct sit_entry_set *ses) | |
1917 | { | |
1918 | list_del(&ses->set_list); | |
1919 | kmem_cache_free(sit_entry_set_slab, ses); | |
1920 | } | |
1921 | ||
1922 | static void adjust_sit_entry_set(struct sit_entry_set *ses, | |
1923 | struct list_head *head) | |
1924 | { | |
1925 | struct sit_entry_set *next = ses; | |
1926 | ||
1927 | if (list_is_last(&ses->set_list, head)) | |
1928 | return; | |
1929 | ||
1930 | list_for_each_entry_continue(next, head, set_list) | |
1931 | if (ses->entry_cnt <= next->entry_cnt) | |
1932 | break; | |
1933 | ||
1934 | list_move_tail(&ses->set_list, &next->set_list); | |
1935 | } | |
1936 | ||
1937 | static void add_sit_entry(unsigned int segno, struct list_head *head) | |
1938 | { | |
1939 | struct sit_entry_set *ses; | |
1940 | unsigned int start_segno = START_SEGNO(segno); | |
1941 | ||
1942 | list_for_each_entry(ses, head, set_list) { | |
1943 | if (ses->start_segno == start_segno) { | |
1944 | ses->entry_cnt++; | |
1945 | adjust_sit_entry_set(ses, head); | |
1946 | return; | |
1947 | } | |
1948 | } | |
1949 | ||
1950 | ses = grab_sit_entry_set(); | |
1951 | ||
1952 | ses->start_segno = start_segno; | |
1953 | ses->entry_cnt++; | |
1954 | list_add(&ses->set_list, head); | |
1955 | } | |
1956 | ||
1957 | static void add_sits_in_set(struct f2fs_sb_info *sbi) | |
1958 | { | |
1959 | struct f2fs_sm_info *sm_info = SM_I(sbi); | |
1960 | struct list_head *set_list = &sm_info->sit_entry_set; | |
1961 | unsigned long *bitmap = SIT_I(sbi)->dirty_sentries_bitmap; | |
184a5cd2 CY |
1962 | unsigned int segno; |
1963 | ||
7cd8558b | 1964 | for_each_set_bit(segno, bitmap, MAIN_SEGS(sbi)) |
184a5cd2 CY |
1965 | add_sit_entry(segno, set_list); |
1966 | } | |
1967 | ||
1968 | static void remove_sits_in_journal(struct f2fs_sb_info *sbi) | |
351df4b2 JK |
1969 | { |
1970 | struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_COLD_DATA); | |
b7ad7512 | 1971 | struct f2fs_journal *journal = curseg->journal; |
351df4b2 JK |
1972 | int i; |
1973 | ||
b7ad7512 | 1974 | down_write(&curseg->journal_rwsem); |
dfc08a12 | 1975 | for (i = 0; i < sits_in_cursum(journal); i++) { |
184a5cd2 CY |
1976 | unsigned int segno; |
1977 | bool dirtied; | |
1978 | ||
dfc08a12 | 1979 | segno = le32_to_cpu(segno_in_journal(journal, i)); |
184a5cd2 CY |
1980 | dirtied = __mark_sit_entry_dirty(sbi, segno); |
1981 | ||
1982 | if (!dirtied) | |
1983 | add_sit_entry(segno, &SM_I(sbi)->sit_entry_set); | |
351df4b2 | 1984 | } |
dfc08a12 | 1985 | update_sits_in_cursum(journal, -i); |
b7ad7512 | 1986 | up_write(&curseg->journal_rwsem); |
351df4b2 JK |
1987 | } |
1988 | ||
0a8165d7 | 1989 | /* |
351df4b2 JK |
1990 | * CP calls this function, which flushes SIT entries including sit_journal, |
1991 | * and moves prefree segs to free segs. | |
1992 | */ | |
4b2fecc8 | 1993 | void flush_sit_entries(struct f2fs_sb_info *sbi, struct cp_control *cpc) |
351df4b2 JK |
1994 | { |
1995 | struct sit_info *sit_i = SIT_I(sbi); | |
1996 | unsigned long *bitmap = sit_i->dirty_sentries_bitmap; | |
1997 | struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_COLD_DATA); | |
b7ad7512 | 1998 | struct f2fs_journal *journal = curseg->journal; |
184a5cd2 CY |
1999 | struct sit_entry_set *ses, *tmp; |
2000 | struct list_head *head = &SM_I(sbi)->sit_entry_set; | |
184a5cd2 | 2001 | bool to_journal = true; |
4b2fecc8 | 2002 | struct seg_entry *se; |
351df4b2 | 2003 | |
351df4b2 JK |
2004 | mutex_lock(&sit_i->sentry_lock); |
2005 | ||
2b11a74b WL |
2006 | if (!sit_i->dirty_sentries) |
2007 | goto out; | |
2008 | ||
351df4b2 | 2009 | /* |
184a5cd2 CY |
2010 | * add and account sit entries of dirty bitmap in sit entry |
2011 | * set temporarily | |
351df4b2 | 2012 | */ |
184a5cd2 | 2013 | add_sits_in_set(sbi); |
351df4b2 | 2014 | |
184a5cd2 CY |
2015 | /* |
2016 | * if there are no enough space in journal to store dirty sit | |
2017 | * entries, remove all entries from journal and add and account | |
2018 | * them in sit entry set. | |
2019 | */ | |
dfc08a12 | 2020 | if (!__has_cursum_space(journal, sit_i->dirty_sentries, SIT_JOURNAL)) |
184a5cd2 | 2021 | remove_sits_in_journal(sbi); |
b2955550 | 2022 | |
184a5cd2 CY |
2023 | /* |
2024 | * there are two steps to flush sit entries: | |
2025 | * #1, flush sit entries to journal in current cold data summary block. | |
2026 | * #2, flush sit entries to sit page. | |
2027 | */ | |
2028 | list_for_each_entry_safe(ses, tmp, head, set_list) { | |
4a257ed6 | 2029 | struct page *page = NULL; |
184a5cd2 CY |
2030 | struct f2fs_sit_block *raw_sit = NULL; |
2031 | unsigned int start_segno = ses->start_segno; | |
2032 | unsigned int end = min(start_segno + SIT_ENTRY_PER_BLOCK, | |
7cd8558b | 2033 | (unsigned long)MAIN_SEGS(sbi)); |
184a5cd2 CY |
2034 | unsigned int segno = start_segno; |
2035 | ||
2036 | if (to_journal && | |
dfc08a12 | 2037 | !__has_cursum_space(journal, ses->entry_cnt, SIT_JOURNAL)) |
184a5cd2 CY |
2038 | to_journal = false; |
2039 | ||
b7ad7512 CY |
2040 | if (to_journal) { |
2041 | down_write(&curseg->journal_rwsem); | |
2042 | } else { | |
184a5cd2 CY |
2043 | page = get_next_sit_page(sbi, start_segno); |
2044 | raw_sit = page_address(page); | |
351df4b2 | 2045 | } |
351df4b2 | 2046 | |
184a5cd2 CY |
2047 | /* flush dirty sit entries in region of current sit set */ |
2048 | for_each_set_bit_from(segno, bitmap, end) { | |
2049 | int offset, sit_offset; | |
4b2fecc8 JK |
2050 | |
2051 | se = get_seg_entry(sbi, segno); | |
184a5cd2 CY |
2052 | |
2053 | /* add discard candidates */ | |
d7bc2484 | 2054 | if (cpc->reason != CP_DISCARD) { |
4b2fecc8 JK |
2055 | cpc->trim_start = segno; |
2056 | add_discard_addrs(sbi, cpc); | |
2057 | } | |
184a5cd2 CY |
2058 | |
2059 | if (to_journal) { | |
dfc08a12 | 2060 | offset = lookup_journal_in_cursum(journal, |
184a5cd2 CY |
2061 | SIT_JOURNAL, segno, 1); |
2062 | f2fs_bug_on(sbi, offset < 0); | |
dfc08a12 | 2063 | segno_in_journal(journal, offset) = |
184a5cd2 CY |
2064 | cpu_to_le32(segno); |
2065 | seg_info_to_raw_sit(se, | |
dfc08a12 | 2066 | &sit_in_journal(journal, offset)); |
184a5cd2 CY |
2067 | } else { |
2068 | sit_offset = SIT_ENTRY_OFFSET(sit_i, segno); | |
2069 | seg_info_to_raw_sit(se, | |
2070 | &raw_sit->entries[sit_offset]); | |
2071 | } | |
351df4b2 | 2072 | |
184a5cd2 CY |
2073 | __clear_bit(segno, bitmap); |
2074 | sit_i->dirty_sentries--; | |
2075 | ses->entry_cnt--; | |
351df4b2 JK |
2076 | } |
2077 | ||
b7ad7512 CY |
2078 | if (to_journal) |
2079 | up_write(&curseg->journal_rwsem); | |
2080 | else | |
184a5cd2 CY |
2081 | f2fs_put_page(page, 1); |
2082 | ||
2083 | f2fs_bug_on(sbi, ses->entry_cnt); | |
2084 | release_sit_entry_set(ses); | |
351df4b2 | 2085 | } |
184a5cd2 CY |
2086 | |
2087 | f2fs_bug_on(sbi, !list_empty(head)); | |
2088 | f2fs_bug_on(sbi, sit_i->dirty_sentries); | |
184a5cd2 | 2089 | out: |
4b2fecc8 JK |
2090 | if (cpc->reason == CP_DISCARD) { |
2091 | for (; cpc->trim_start <= cpc->trim_end; cpc->trim_start++) | |
2092 | add_discard_addrs(sbi, cpc); | |
2093 | } | |
351df4b2 | 2094 | mutex_unlock(&sit_i->sentry_lock); |
351df4b2 | 2095 | |
351df4b2 JK |
2096 | set_prefree_as_free_segments(sbi); |
2097 | } | |
2098 | ||
2099 | static int build_sit_info(struct f2fs_sb_info *sbi) | |
2100 | { | |
2101 | struct f2fs_super_block *raw_super = F2FS_RAW_SUPER(sbi); | |
2102 | struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi); | |
2103 | struct sit_info *sit_i; | |
2104 | unsigned int sit_segs, start; | |
2105 | char *src_bitmap, *dst_bitmap; | |
2106 | unsigned int bitmap_size; | |
2107 | ||
2108 | /* allocate memory for SIT information */ | |
2109 | sit_i = kzalloc(sizeof(struct sit_info), GFP_KERNEL); | |
2110 | if (!sit_i) | |
2111 | return -ENOMEM; | |
2112 | ||
2113 | SM_I(sbi)->sit_info = sit_i; | |
2114 | ||
39307a8e JK |
2115 | sit_i->sentries = f2fs_kvzalloc(MAIN_SEGS(sbi) * |
2116 | sizeof(struct seg_entry), GFP_KERNEL); | |
351df4b2 JK |
2117 | if (!sit_i->sentries) |
2118 | return -ENOMEM; | |
2119 | ||
7cd8558b | 2120 | bitmap_size = f2fs_bitmap_size(MAIN_SEGS(sbi)); |
39307a8e | 2121 | sit_i->dirty_sentries_bitmap = f2fs_kvzalloc(bitmap_size, GFP_KERNEL); |
351df4b2 JK |
2122 | if (!sit_i->dirty_sentries_bitmap) |
2123 | return -ENOMEM; | |
2124 | ||
7cd8558b | 2125 | for (start = 0; start < MAIN_SEGS(sbi); start++) { |
351df4b2 JK |
2126 | sit_i->sentries[start].cur_valid_map |
2127 | = kzalloc(SIT_VBLOCK_MAP_SIZE, GFP_KERNEL); | |
2128 | sit_i->sentries[start].ckpt_valid_map | |
2129 | = kzalloc(SIT_VBLOCK_MAP_SIZE, GFP_KERNEL); | |
a66cdd98 JK |
2130 | sit_i->sentries[start].discard_map |
2131 | = kzalloc(SIT_VBLOCK_MAP_SIZE, GFP_KERNEL); | |
2132 | if (!sit_i->sentries[start].cur_valid_map || | |
2133 | !sit_i->sentries[start].ckpt_valid_map || | |
2134 | !sit_i->sentries[start].discard_map) | |
351df4b2 JK |
2135 | return -ENOMEM; |
2136 | } | |
2137 | ||
60a3b782 JK |
2138 | sit_i->tmp_map = kzalloc(SIT_VBLOCK_MAP_SIZE, GFP_KERNEL); |
2139 | if (!sit_i->tmp_map) | |
2140 | return -ENOMEM; | |
2141 | ||
351df4b2 | 2142 | if (sbi->segs_per_sec > 1) { |
39307a8e JK |
2143 | sit_i->sec_entries = f2fs_kvzalloc(MAIN_SECS(sbi) * |
2144 | sizeof(struct sec_entry), GFP_KERNEL); | |
351df4b2 JK |
2145 | if (!sit_i->sec_entries) |
2146 | return -ENOMEM; | |
2147 | } | |
2148 | ||
2149 | /* get information related with SIT */ | |
2150 | sit_segs = le32_to_cpu(raw_super->segment_count_sit) >> 1; | |
2151 | ||
2152 | /* setup SIT bitmap from ckeckpoint pack */ | |
2153 | bitmap_size = __bitmap_size(sbi, SIT_BITMAP); | |
2154 | src_bitmap = __bitmap_ptr(sbi, SIT_BITMAP); | |
2155 | ||
79b5793b | 2156 | dst_bitmap = kmemdup(src_bitmap, bitmap_size, GFP_KERNEL); |
351df4b2 JK |
2157 | if (!dst_bitmap) |
2158 | return -ENOMEM; | |
351df4b2 JK |
2159 | |
2160 | /* init SIT information */ | |
2161 | sit_i->s_ops = &default_salloc_ops; | |
2162 | ||
2163 | sit_i->sit_base_addr = le32_to_cpu(raw_super->sit_blkaddr); | |
2164 | sit_i->sit_blocks = sit_segs << sbi->log_blocks_per_seg; | |
2165 | sit_i->written_valid_blocks = le64_to_cpu(ckpt->valid_block_count); | |
2166 | sit_i->sit_bitmap = dst_bitmap; | |
2167 | sit_i->bitmap_size = bitmap_size; | |
2168 | sit_i->dirty_sentries = 0; | |
2169 | sit_i->sents_per_block = SIT_ENTRY_PER_BLOCK; | |
2170 | sit_i->elapsed_time = le64_to_cpu(sbi->ckpt->elapsed_time); | |
2171 | sit_i->mounted_time = CURRENT_TIME_SEC.tv_sec; | |
2172 | mutex_init(&sit_i->sentry_lock); | |
2173 | return 0; | |
2174 | } | |
2175 | ||
2176 | static int build_free_segmap(struct f2fs_sb_info *sbi) | |
2177 | { | |
351df4b2 JK |
2178 | struct free_segmap_info *free_i; |
2179 | unsigned int bitmap_size, sec_bitmap_size; | |
2180 | ||
2181 | /* allocate memory for free segmap information */ | |
2182 | free_i = kzalloc(sizeof(struct free_segmap_info), GFP_KERNEL); | |
2183 | if (!free_i) | |
2184 | return -ENOMEM; | |
2185 | ||
2186 | SM_I(sbi)->free_info = free_i; | |
2187 | ||
7cd8558b | 2188 | bitmap_size = f2fs_bitmap_size(MAIN_SEGS(sbi)); |
39307a8e | 2189 | free_i->free_segmap = f2fs_kvmalloc(bitmap_size, GFP_KERNEL); |
351df4b2 JK |
2190 | if (!free_i->free_segmap) |
2191 | return -ENOMEM; | |
2192 | ||
7cd8558b | 2193 | sec_bitmap_size = f2fs_bitmap_size(MAIN_SECS(sbi)); |
39307a8e | 2194 | free_i->free_secmap = f2fs_kvmalloc(sec_bitmap_size, GFP_KERNEL); |
351df4b2 JK |
2195 | if (!free_i->free_secmap) |
2196 | return -ENOMEM; | |
2197 | ||
2198 | /* set all segments as dirty temporarily */ | |
2199 | memset(free_i->free_segmap, 0xff, bitmap_size); | |
2200 | memset(free_i->free_secmap, 0xff, sec_bitmap_size); | |
2201 | ||
2202 | /* init free segmap information */ | |
7cd8558b | 2203 | free_i->start_segno = GET_SEGNO_FROM_SEG0(sbi, MAIN_BLKADDR(sbi)); |
351df4b2 JK |
2204 | free_i->free_segments = 0; |
2205 | free_i->free_sections = 0; | |
1a118ccf | 2206 | spin_lock_init(&free_i->segmap_lock); |
351df4b2 JK |
2207 | return 0; |
2208 | } | |
2209 | ||
2210 | static int build_curseg(struct f2fs_sb_info *sbi) | |
2211 | { | |
1042d60f | 2212 | struct curseg_info *array; |
351df4b2 JK |
2213 | int i; |
2214 | ||
b434babf | 2215 | array = kcalloc(NR_CURSEG_TYPE, sizeof(*array), GFP_KERNEL); |
351df4b2 JK |
2216 | if (!array) |
2217 | return -ENOMEM; | |
2218 | ||
2219 | SM_I(sbi)->curseg_array = array; | |
2220 | ||
2221 | for (i = 0; i < NR_CURSEG_TYPE; i++) { | |
2222 | mutex_init(&array[i].curseg_mutex); | |
09cbfeaf | 2223 | array[i].sum_blk = kzalloc(PAGE_SIZE, GFP_KERNEL); |
351df4b2 JK |
2224 | if (!array[i].sum_blk) |
2225 | return -ENOMEM; | |
b7ad7512 CY |
2226 | init_rwsem(&array[i].journal_rwsem); |
2227 | array[i].journal = kzalloc(sizeof(struct f2fs_journal), | |
2228 | GFP_KERNEL); | |
2229 | if (!array[i].journal) | |
2230 | return -ENOMEM; | |
351df4b2 JK |
2231 | array[i].segno = NULL_SEGNO; |
2232 | array[i].next_blkoff = 0; | |
2233 | } | |
2234 | return restore_curseg_summaries(sbi); | |
2235 | } | |
2236 | ||
2237 | static void build_sit_entries(struct f2fs_sb_info *sbi) | |
2238 | { | |
2239 | struct sit_info *sit_i = SIT_I(sbi); | |
2240 | struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_COLD_DATA); | |
b7ad7512 | 2241 | struct f2fs_journal *journal = curseg->journal; |
74de593a CY |
2242 | int sit_blk_cnt = SIT_BLK_CNT(sbi); |
2243 | unsigned int i, start, end; | |
2244 | unsigned int readed, start_blk = 0; | |
e9f5b8b8 | 2245 | int nrpages = MAX_BIO_BLOCKS(sbi) * 8; |
351df4b2 | 2246 | |
74de593a | 2247 | do { |
26879fb1 | 2248 | readed = ra_meta_pages(sbi, start_blk, nrpages, META_SIT, true); |
74de593a CY |
2249 | |
2250 | start = start_blk * sit_i->sents_per_block; | |
2251 | end = (start_blk + readed) * sit_i->sents_per_block; | |
2252 | ||
7cd8558b | 2253 | for (; start < end && start < MAIN_SEGS(sbi); start++) { |
74de593a CY |
2254 | struct seg_entry *se = &sit_i->sentries[start]; |
2255 | struct f2fs_sit_block *sit_blk; | |
2256 | struct f2fs_sit_entry sit; | |
2257 | struct page *page; | |
2258 | ||
b7ad7512 | 2259 | down_read(&curseg->journal_rwsem); |
dfc08a12 CY |
2260 | for (i = 0; i < sits_in_cursum(journal); i++) { |
2261 | if (le32_to_cpu(segno_in_journal(journal, i)) | |
6c311ec6 | 2262 | == start) { |
dfc08a12 | 2263 | sit = sit_in_journal(journal, i); |
b7ad7512 | 2264 | up_read(&curseg->journal_rwsem); |
74de593a CY |
2265 | goto got_it; |
2266 | } | |
351df4b2 | 2267 | } |
b7ad7512 | 2268 | up_read(&curseg->journal_rwsem); |
74de593a CY |
2269 | |
2270 | page = get_current_sit_page(sbi, start); | |
2271 | sit_blk = (struct f2fs_sit_block *)page_address(page); | |
2272 | sit = sit_blk->entries[SIT_ENTRY_OFFSET(sit_i, start)]; | |
2273 | f2fs_put_page(page, 1); | |
351df4b2 | 2274 | got_it: |
74de593a CY |
2275 | check_block_count(sbi, start, &sit); |
2276 | seg_info_from_raw_sit(se, &sit); | |
a66cdd98 JK |
2277 | |
2278 | /* build discard map only one time */ | |
2279 | memcpy(se->discard_map, se->cur_valid_map, SIT_VBLOCK_MAP_SIZE); | |
2280 | sbi->discard_blks += sbi->blocks_per_seg - se->valid_blocks; | |
2281 | ||
74de593a CY |
2282 | if (sbi->segs_per_sec > 1) { |
2283 | struct sec_entry *e = get_sec_entry(sbi, start); | |
2284 | e->valid_blocks += se->valid_blocks; | |
2285 | } | |
351df4b2 | 2286 | } |
74de593a CY |
2287 | start_blk += readed; |
2288 | } while (start_blk < sit_blk_cnt); | |
351df4b2 JK |
2289 | } |
2290 | ||
2291 | static void init_free_segmap(struct f2fs_sb_info *sbi) | |
2292 | { | |
2293 | unsigned int start; | |
2294 | int type; | |
2295 | ||
7cd8558b | 2296 | for (start = 0; start < MAIN_SEGS(sbi); start++) { |
351df4b2 JK |
2297 | struct seg_entry *sentry = get_seg_entry(sbi, start); |
2298 | if (!sentry->valid_blocks) | |
2299 | __set_free(sbi, start); | |
2300 | } | |
2301 | ||
2302 | /* set use the current segments */ | |
2303 | for (type = CURSEG_HOT_DATA; type <= CURSEG_COLD_NODE; type++) { | |
2304 | struct curseg_info *curseg_t = CURSEG_I(sbi, type); | |
2305 | __set_test_and_inuse(sbi, curseg_t->segno); | |
2306 | } | |
2307 | } | |
2308 | ||
2309 | static void init_dirty_segmap(struct f2fs_sb_info *sbi) | |
2310 | { | |
2311 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
2312 | struct free_segmap_info *free_i = FREE_I(sbi); | |
7cd8558b | 2313 | unsigned int segno = 0, offset = 0; |
351df4b2 JK |
2314 | unsigned short valid_blocks; |
2315 | ||
8736fbf0 | 2316 | while (1) { |
351df4b2 | 2317 | /* find dirty segment based on free segmap */ |
7cd8558b JK |
2318 | segno = find_next_inuse(free_i, MAIN_SEGS(sbi), offset); |
2319 | if (segno >= MAIN_SEGS(sbi)) | |
351df4b2 JK |
2320 | break; |
2321 | offset = segno + 1; | |
2322 | valid_blocks = get_valid_blocks(sbi, segno, 0); | |
ec325b52 | 2323 | if (valid_blocks == sbi->blocks_per_seg || !valid_blocks) |
351df4b2 | 2324 | continue; |
ec325b52 JK |
2325 | if (valid_blocks > sbi->blocks_per_seg) { |
2326 | f2fs_bug_on(sbi, 1); | |
2327 | continue; | |
2328 | } | |
351df4b2 JK |
2329 | mutex_lock(&dirty_i->seglist_lock); |
2330 | __locate_dirty_segment(sbi, segno, DIRTY); | |
2331 | mutex_unlock(&dirty_i->seglist_lock); | |
2332 | } | |
2333 | } | |
2334 | ||
5ec4e49f | 2335 | static int init_victim_secmap(struct f2fs_sb_info *sbi) |
351df4b2 JK |
2336 | { |
2337 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
7cd8558b | 2338 | unsigned int bitmap_size = f2fs_bitmap_size(MAIN_SECS(sbi)); |
351df4b2 | 2339 | |
39307a8e | 2340 | dirty_i->victim_secmap = f2fs_kvzalloc(bitmap_size, GFP_KERNEL); |
5ec4e49f | 2341 | if (!dirty_i->victim_secmap) |
351df4b2 JK |
2342 | return -ENOMEM; |
2343 | return 0; | |
2344 | } | |
2345 | ||
2346 | static int build_dirty_segmap(struct f2fs_sb_info *sbi) | |
2347 | { | |
2348 | struct dirty_seglist_info *dirty_i; | |
2349 | unsigned int bitmap_size, i; | |
2350 | ||
2351 | /* allocate memory for dirty segments list information */ | |
2352 | dirty_i = kzalloc(sizeof(struct dirty_seglist_info), GFP_KERNEL); | |
2353 | if (!dirty_i) | |
2354 | return -ENOMEM; | |
2355 | ||
2356 | SM_I(sbi)->dirty_info = dirty_i; | |
2357 | mutex_init(&dirty_i->seglist_lock); | |
2358 | ||
7cd8558b | 2359 | bitmap_size = f2fs_bitmap_size(MAIN_SEGS(sbi)); |
351df4b2 JK |
2360 | |
2361 | for (i = 0; i < NR_DIRTY_TYPE; i++) { | |
39307a8e | 2362 | dirty_i->dirty_segmap[i] = f2fs_kvzalloc(bitmap_size, GFP_KERNEL); |
351df4b2 JK |
2363 | if (!dirty_i->dirty_segmap[i]) |
2364 | return -ENOMEM; | |
2365 | } | |
2366 | ||
2367 | init_dirty_segmap(sbi); | |
5ec4e49f | 2368 | return init_victim_secmap(sbi); |
351df4b2 JK |
2369 | } |
2370 | ||
0a8165d7 | 2371 | /* |
351df4b2 JK |
2372 | * Update min, max modified time for cost-benefit GC algorithm |
2373 | */ | |
2374 | static void init_min_max_mtime(struct f2fs_sb_info *sbi) | |
2375 | { | |
2376 | struct sit_info *sit_i = SIT_I(sbi); | |
2377 | unsigned int segno; | |
2378 | ||
2379 | mutex_lock(&sit_i->sentry_lock); | |
2380 | ||
2381 | sit_i->min_mtime = LLONG_MAX; | |
2382 | ||
7cd8558b | 2383 | for (segno = 0; segno < MAIN_SEGS(sbi); segno += sbi->segs_per_sec) { |
351df4b2 JK |
2384 | unsigned int i; |
2385 | unsigned long long mtime = 0; | |
2386 | ||
2387 | for (i = 0; i < sbi->segs_per_sec; i++) | |
2388 | mtime += get_seg_entry(sbi, segno + i)->mtime; | |
2389 | ||
2390 | mtime = div_u64(mtime, sbi->segs_per_sec); | |
2391 | ||
2392 | if (sit_i->min_mtime > mtime) | |
2393 | sit_i->min_mtime = mtime; | |
2394 | } | |
2395 | sit_i->max_mtime = get_mtime(sbi); | |
2396 | mutex_unlock(&sit_i->sentry_lock); | |
2397 | } | |
2398 | ||
2399 | int build_segment_manager(struct f2fs_sb_info *sbi) | |
2400 | { | |
2401 | struct f2fs_super_block *raw_super = F2FS_RAW_SUPER(sbi); | |
2402 | struct f2fs_checkpoint *ckpt = F2FS_CKPT(sbi); | |
1042d60f | 2403 | struct f2fs_sm_info *sm_info; |
351df4b2 JK |
2404 | int err; |
2405 | ||
2406 | sm_info = kzalloc(sizeof(struct f2fs_sm_info), GFP_KERNEL); | |
2407 | if (!sm_info) | |
2408 | return -ENOMEM; | |
2409 | ||
2410 | /* init sm info */ | |
2411 | sbi->sm_info = sm_info; | |
351df4b2 JK |
2412 | sm_info->seg0_blkaddr = le32_to_cpu(raw_super->segment0_blkaddr); |
2413 | sm_info->main_blkaddr = le32_to_cpu(raw_super->main_blkaddr); | |
2414 | sm_info->segment_count = le32_to_cpu(raw_super->segment_count); | |
2415 | sm_info->reserved_segments = le32_to_cpu(ckpt->rsvd_segment_count); | |
2416 | sm_info->ovp_segments = le32_to_cpu(ckpt->overprov_segment_count); | |
2417 | sm_info->main_segments = le32_to_cpu(raw_super->segment_count_main); | |
2418 | sm_info->ssa_blkaddr = le32_to_cpu(raw_super->ssa_blkaddr); | |
58c41035 JK |
2419 | sm_info->rec_prefree_segments = sm_info->main_segments * |
2420 | DEF_RECLAIM_PREFREE_SEGMENTS / 100; | |
44a83499 JK |
2421 | if (sm_info->rec_prefree_segments > DEF_MAX_RECLAIM_PREFREE_SEGMENTS) |
2422 | sm_info->rec_prefree_segments = DEF_MAX_RECLAIM_PREFREE_SEGMENTS; | |
2423 | ||
52763a4b JK |
2424 | if (!test_opt(sbi, LFS)) |
2425 | sm_info->ipu_policy = 1 << F2FS_IPU_FSYNC; | |
216fbd64 | 2426 | sm_info->min_ipu_util = DEF_MIN_IPU_UTIL; |
c1ce1b02 | 2427 | sm_info->min_fsync_blocks = DEF_MIN_FSYNC_BLOCKS; |
351df4b2 | 2428 | |
7fd9e544 JK |
2429 | INIT_LIST_HEAD(&sm_info->discard_list); |
2430 | sm_info->nr_discards = 0; | |
2431 | sm_info->max_discards = 0; | |
2432 | ||
bba681cb JK |
2433 | sm_info->trim_sections = DEF_BATCHED_TRIM_SECTIONS; |
2434 | ||
184a5cd2 CY |
2435 | INIT_LIST_HEAD(&sm_info->sit_entry_set); |
2436 | ||
b270ad6f | 2437 | if (test_opt(sbi, FLUSH_MERGE) && !f2fs_readonly(sbi->sb)) { |
2163d198 GZ |
2438 | err = create_flush_cmd_control(sbi); |
2439 | if (err) | |
a688b9d9 | 2440 | return err; |
6b4afdd7 JK |
2441 | } |
2442 | ||
351df4b2 JK |
2443 | err = build_sit_info(sbi); |
2444 | if (err) | |
2445 | return err; | |
2446 | err = build_free_segmap(sbi); | |
2447 | if (err) | |
2448 | return err; | |
2449 | err = build_curseg(sbi); | |
2450 | if (err) | |
2451 | return err; | |
2452 | ||
2453 | /* reinit free segmap based on SIT */ | |
2454 | build_sit_entries(sbi); | |
2455 | ||
2456 | init_free_segmap(sbi); | |
2457 | err = build_dirty_segmap(sbi); | |
2458 | if (err) | |
2459 | return err; | |
2460 | ||
2461 | init_min_max_mtime(sbi); | |
2462 | return 0; | |
2463 | } | |
2464 | ||
2465 | static void discard_dirty_segmap(struct f2fs_sb_info *sbi, | |
2466 | enum dirty_type dirty_type) | |
2467 | { | |
2468 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
2469 | ||
2470 | mutex_lock(&dirty_i->seglist_lock); | |
39307a8e | 2471 | kvfree(dirty_i->dirty_segmap[dirty_type]); |
351df4b2 JK |
2472 | dirty_i->nr_dirty[dirty_type] = 0; |
2473 | mutex_unlock(&dirty_i->seglist_lock); | |
2474 | } | |
2475 | ||
5ec4e49f | 2476 | static void destroy_victim_secmap(struct f2fs_sb_info *sbi) |
351df4b2 JK |
2477 | { |
2478 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
39307a8e | 2479 | kvfree(dirty_i->victim_secmap); |
351df4b2 JK |
2480 | } |
2481 | ||
2482 | static void destroy_dirty_segmap(struct f2fs_sb_info *sbi) | |
2483 | { | |
2484 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
2485 | int i; | |
2486 | ||
2487 | if (!dirty_i) | |
2488 | return; | |
2489 | ||
2490 | /* discard pre-free/dirty segments list */ | |
2491 | for (i = 0; i < NR_DIRTY_TYPE; i++) | |
2492 | discard_dirty_segmap(sbi, i); | |
2493 | ||
5ec4e49f | 2494 | destroy_victim_secmap(sbi); |
351df4b2 JK |
2495 | SM_I(sbi)->dirty_info = NULL; |
2496 | kfree(dirty_i); | |
2497 | } | |
2498 | ||
2499 | static void destroy_curseg(struct f2fs_sb_info *sbi) | |
2500 | { | |
2501 | struct curseg_info *array = SM_I(sbi)->curseg_array; | |
2502 | int i; | |
2503 | ||
2504 | if (!array) | |
2505 | return; | |
2506 | SM_I(sbi)->curseg_array = NULL; | |
b7ad7512 | 2507 | for (i = 0; i < NR_CURSEG_TYPE; i++) { |
351df4b2 | 2508 | kfree(array[i].sum_blk); |
b7ad7512 CY |
2509 | kfree(array[i].journal); |
2510 | } | |
351df4b2 JK |
2511 | kfree(array); |
2512 | } | |
2513 | ||
2514 | static void destroy_free_segmap(struct f2fs_sb_info *sbi) | |
2515 | { | |
2516 | struct free_segmap_info *free_i = SM_I(sbi)->free_info; | |
2517 | if (!free_i) | |
2518 | return; | |
2519 | SM_I(sbi)->free_info = NULL; | |
39307a8e JK |
2520 | kvfree(free_i->free_segmap); |
2521 | kvfree(free_i->free_secmap); | |
351df4b2 JK |
2522 | kfree(free_i); |
2523 | } | |
2524 | ||
2525 | static void destroy_sit_info(struct f2fs_sb_info *sbi) | |
2526 | { | |
2527 | struct sit_info *sit_i = SIT_I(sbi); | |
2528 | unsigned int start; | |
2529 | ||
2530 | if (!sit_i) | |
2531 | return; | |
2532 | ||
2533 | if (sit_i->sentries) { | |
7cd8558b | 2534 | for (start = 0; start < MAIN_SEGS(sbi); start++) { |
351df4b2 JK |
2535 | kfree(sit_i->sentries[start].cur_valid_map); |
2536 | kfree(sit_i->sentries[start].ckpt_valid_map); | |
a66cdd98 | 2537 | kfree(sit_i->sentries[start].discard_map); |
351df4b2 JK |
2538 | } |
2539 | } | |
60a3b782 JK |
2540 | kfree(sit_i->tmp_map); |
2541 | ||
39307a8e JK |
2542 | kvfree(sit_i->sentries); |
2543 | kvfree(sit_i->sec_entries); | |
2544 | kvfree(sit_i->dirty_sentries_bitmap); | |
351df4b2 JK |
2545 | |
2546 | SM_I(sbi)->sit_info = NULL; | |
2547 | kfree(sit_i->sit_bitmap); | |
2548 | kfree(sit_i); | |
2549 | } | |
2550 | ||
2551 | void destroy_segment_manager(struct f2fs_sb_info *sbi) | |
2552 | { | |
2553 | struct f2fs_sm_info *sm_info = SM_I(sbi); | |
a688b9d9 | 2554 | |
3b03f724 CY |
2555 | if (!sm_info) |
2556 | return; | |
2163d198 | 2557 | destroy_flush_cmd_control(sbi); |
351df4b2 JK |
2558 | destroy_dirty_segmap(sbi); |
2559 | destroy_curseg(sbi); | |
2560 | destroy_free_segmap(sbi); | |
2561 | destroy_sit_info(sbi); | |
2562 | sbi->sm_info = NULL; | |
2563 | kfree(sm_info); | |
2564 | } | |
7fd9e544 JK |
2565 | |
2566 | int __init create_segment_manager_caches(void) | |
2567 | { | |
2568 | discard_entry_slab = f2fs_kmem_cache_create("discard_entry", | |
e8512d2e | 2569 | sizeof(struct discard_entry)); |
7fd9e544 | 2570 | if (!discard_entry_slab) |
184a5cd2 CY |
2571 | goto fail; |
2572 | ||
2573 | sit_entry_set_slab = f2fs_kmem_cache_create("sit_entry_set", | |
c9ee0085 | 2574 | sizeof(struct sit_entry_set)); |
184a5cd2 CY |
2575 | if (!sit_entry_set_slab) |
2576 | goto destory_discard_entry; | |
88b88a66 JK |
2577 | |
2578 | inmem_entry_slab = f2fs_kmem_cache_create("inmem_page_entry", | |
2579 | sizeof(struct inmem_pages)); | |
2580 | if (!inmem_entry_slab) | |
2581 | goto destroy_sit_entry_set; | |
7fd9e544 | 2582 | return 0; |
184a5cd2 | 2583 | |
88b88a66 JK |
2584 | destroy_sit_entry_set: |
2585 | kmem_cache_destroy(sit_entry_set_slab); | |
184a5cd2 CY |
2586 | destory_discard_entry: |
2587 | kmem_cache_destroy(discard_entry_slab); | |
2588 | fail: | |
2589 | return -ENOMEM; | |
7fd9e544 JK |
2590 | } |
2591 | ||
2592 | void destroy_segment_manager_caches(void) | |
2593 | { | |
184a5cd2 | 2594 | kmem_cache_destroy(sit_entry_set_slab); |
7fd9e544 | 2595 | kmem_cache_destroy(discard_entry_slab); |
88b88a66 | 2596 | kmem_cache_destroy(inmem_entry_slab); |
7fd9e544 | 2597 | } |