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Commit | Line | Data |
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0a8165d7 | 1 | /* |
7bc09003 JK |
2 | * fs/f2fs/gc.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/module.h> | |
13 | #include <linux/backing-dev.h> | |
7bc09003 JK |
14 | #include <linux/init.h> |
15 | #include <linux/f2fs_fs.h> | |
16 | #include <linux/kthread.h> | |
17 | #include <linux/delay.h> | |
18 | #include <linux/freezer.h> | |
7bc09003 JK |
19 | |
20 | #include "f2fs.h" | |
21 | #include "node.h" | |
22 | #include "segment.h" | |
23 | #include "gc.h" | |
8e46b3ed | 24 | #include <trace/events/f2fs.h> |
7bc09003 | 25 | |
7bc09003 JK |
26 | static int gc_thread_func(void *data) |
27 | { | |
28 | struct f2fs_sb_info *sbi = data; | |
b59d0bae | 29 | struct f2fs_gc_kthread *gc_th = sbi->gc_thread; |
7bc09003 JK |
30 | wait_queue_head_t *wq = &sbi->gc_thread->gc_wait_queue_head; |
31 | long wait_ms; | |
32 | ||
b59d0bae | 33 | wait_ms = gc_th->min_sleep_time; |
7bc09003 JK |
34 | |
35 | do { | |
36 | if (try_to_freeze()) | |
37 | continue; | |
38 | else | |
39 | wait_event_interruptible_timeout(*wq, | |
40 | kthread_should_stop(), | |
41 | msecs_to_jiffies(wait_ms)); | |
42 | if (kthread_should_stop()) | |
43 | break; | |
44 | ||
d6212a5f | 45 | if (sbi->sb->s_writers.frozen >= SB_FREEZE_WRITE) { |
88dd8934 | 46 | increase_sleep_time(gc_th, &wait_ms); |
d6212a5f CL |
47 | continue; |
48 | } | |
49 | ||
0f348028 | 50 | #ifdef CONFIG_F2FS_FAULT_INJECTION |
55523519 CY |
51 | if (time_to_inject(sbi, FAULT_CHECKPOINT)) { |
52 | f2fs_show_injection_info(FAULT_CHECKPOINT); | |
0f348028 | 53 | f2fs_stop_checkpoint(sbi, false); |
55523519 | 54 | } |
0f348028 CY |
55 | #endif |
56 | ||
7bc09003 JK |
57 | /* |
58 | * [GC triggering condition] | |
59 | * 0. GC is not conducted currently. | |
60 | * 1. There are enough dirty segments. | |
61 | * 2. IO subsystem is idle by checking the # of writeback pages. | |
62 | * 3. IO subsystem is idle by checking the # of requests in | |
63 | * bdev's request list. | |
64 | * | |
e1c42045 | 65 | * Note) We have to avoid triggering GCs frequently. |
7bc09003 JK |
66 | * Because it is possible that some segments can be |
67 | * invalidated soon after by user update or deletion. | |
68 | * So, I'd like to wait some time to collect dirty segments. | |
69 | */ | |
70 | if (!mutex_trylock(&sbi->gc_mutex)) | |
71 | continue; | |
72 | ||
73 | if (!is_idle(sbi)) { | |
88dd8934 | 74 | increase_sleep_time(gc_th, &wait_ms); |
7bc09003 JK |
75 | mutex_unlock(&sbi->gc_mutex); |
76 | continue; | |
77 | } | |
78 | ||
79 | if (has_enough_invalid_blocks(sbi)) | |
88dd8934 | 80 | decrease_sleep_time(gc_th, &wait_ms); |
7bc09003 | 81 | else |
88dd8934 | 82 | increase_sleep_time(gc_th, &wait_ms); |
7bc09003 | 83 | |
dcdfff65 | 84 | stat_inc_bggc_count(sbi); |
7bc09003 | 85 | |
43727527 | 86 | /* if return value is not zero, no victim was selected */ |
e066b83c | 87 | if (f2fs_gc(sbi, test_opt(sbi, FORCE_FG_GC), true, NULL_SEGNO)) |
b59d0bae | 88 | wait_ms = gc_th->no_gc_sleep_time; |
81eb8d6e | 89 | |
84e4214f JK |
90 | trace_f2fs_background_gc(sbi->sb, wait_ms, |
91 | prefree_segments(sbi), free_segments(sbi)); | |
92 | ||
4660f9c0 JK |
93 | /* balancing f2fs's metadata periodically */ |
94 | f2fs_balance_fs_bg(sbi); | |
81eb8d6e | 95 | |
7bc09003 JK |
96 | } while (!kthread_should_stop()); |
97 | return 0; | |
98 | } | |
99 | ||
100 | int start_gc_thread(struct f2fs_sb_info *sbi) | |
101 | { | |
1042d60f | 102 | struct f2fs_gc_kthread *gc_th; |
ec7b1f2d | 103 | dev_t dev = sbi->sb->s_bdev->bd_dev; |
7a267f8d | 104 | int err = 0; |
7bc09003 | 105 | |
1ecc0c5c | 106 | gc_th = f2fs_kmalloc(sbi, sizeof(struct f2fs_gc_kthread), GFP_KERNEL); |
7a267f8d NJ |
107 | if (!gc_th) { |
108 | err = -ENOMEM; | |
109 | goto out; | |
110 | } | |
7bc09003 | 111 | |
b59d0bae NJ |
112 | gc_th->min_sleep_time = DEF_GC_THREAD_MIN_SLEEP_TIME; |
113 | gc_th->max_sleep_time = DEF_GC_THREAD_MAX_SLEEP_TIME; | |
114 | gc_th->no_gc_sleep_time = DEF_GC_THREAD_NOGC_SLEEP_TIME; | |
115 | ||
d2dc095f NJ |
116 | gc_th->gc_idle = 0; |
117 | ||
7bc09003 JK |
118 | sbi->gc_thread = gc_th; |
119 | init_waitqueue_head(&sbi->gc_thread->gc_wait_queue_head); | |
120 | sbi->gc_thread->f2fs_gc_task = kthread_run(gc_thread_func, sbi, | |
ec7b1f2d | 121 | "f2fs_gc-%u:%u", MAJOR(dev), MINOR(dev)); |
7bc09003 | 122 | if (IS_ERR(gc_th->f2fs_gc_task)) { |
7a267f8d | 123 | err = PTR_ERR(gc_th->f2fs_gc_task); |
7bc09003 | 124 | kfree(gc_th); |
25718423 | 125 | sbi->gc_thread = NULL; |
7bc09003 | 126 | } |
7a267f8d NJ |
127 | out: |
128 | return err; | |
7bc09003 JK |
129 | } |
130 | ||
131 | void stop_gc_thread(struct f2fs_sb_info *sbi) | |
132 | { | |
133 | struct f2fs_gc_kthread *gc_th = sbi->gc_thread; | |
134 | if (!gc_th) | |
135 | return; | |
136 | kthread_stop(gc_th->f2fs_gc_task); | |
137 | kfree(gc_th); | |
138 | sbi->gc_thread = NULL; | |
139 | } | |
140 | ||
d2dc095f | 141 | static int select_gc_type(struct f2fs_gc_kthread *gc_th, int gc_type) |
7bc09003 | 142 | { |
d2dc095f NJ |
143 | int gc_mode = (gc_type == BG_GC) ? GC_CB : GC_GREEDY; |
144 | ||
145 | if (gc_th && gc_th->gc_idle) { | |
146 | if (gc_th->gc_idle == 1) | |
147 | gc_mode = GC_CB; | |
148 | else if (gc_th->gc_idle == 2) | |
149 | gc_mode = GC_GREEDY; | |
150 | } | |
151 | return gc_mode; | |
7bc09003 JK |
152 | } |
153 | ||
154 | static void select_policy(struct f2fs_sb_info *sbi, int gc_type, | |
155 | int type, struct victim_sel_policy *p) | |
156 | { | |
157 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
158 | ||
4ebefc44 | 159 | if (p->alloc_mode == SSR) { |
7bc09003 JK |
160 | p->gc_mode = GC_GREEDY; |
161 | p->dirty_segmap = dirty_i->dirty_segmap[type]; | |
a26b7c8a | 162 | p->max_search = dirty_i->nr_dirty[type]; |
7bc09003 JK |
163 | p->ofs_unit = 1; |
164 | } else { | |
d2dc095f | 165 | p->gc_mode = select_gc_type(sbi->gc_thread, gc_type); |
7bc09003 | 166 | p->dirty_segmap = dirty_i->dirty_segmap[DIRTY]; |
a26b7c8a | 167 | p->max_search = dirty_i->nr_dirty[DIRTY]; |
7bc09003 JK |
168 | p->ofs_unit = sbi->segs_per_sec; |
169 | } | |
a26b7c8a | 170 | |
e93b9865 HP |
171 | /* we need to check every dirty segments in the FG_GC case */ |
172 | if (gc_type != FG_GC && p->max_search > sbi->max_victim_search) | |
b1c57c1c | 173 | p->max_search = sbi->max_victim_search; |
a26b7c8a | 174 | |
7a20b8a6 JK |
175 | /* let's select beginning hot/small space first */ |
176 | if (type == CURSEG_HOT_DATA || IS_NODESEG(type)) | |
177 | p->offset = 0; | |
178 | else | |
e066b83c | 179 | p->offset = SIT_I(sbi)->last_victim[p->gc_mode]; |
7bc09003 JK |
180 | } |
181 | ||
182 | static unsigned int get_max_cost(struct f2fs_sb_info *sbi, | |
183 | struct victim_sel_policy *p) | |
184 | { | |
b7250d2d JK |
185 | /* SSR allocates in a segment unit */ |
186 | if (p->alloc_mode == SSR) | |
3519e3f9 | 187 | return sbi->blocks_per_seg; |
7bc09003 | 188 | if (p->gc_mode == GC_GREEDY) |
c541a51b | 189 | return 2 * sbi->blocks_per_seg * p->ofs_unit; |
7bc09003 JK |
190 | else if (p->gc_mode == GC_CB) |
191 | return UINT_MAX; | |
192 | else /* No other gc_mode */ | |
193 | return 0; | |
194 | } | |
195 | ||
196 | static unsigned int check_bg_victims(struct f2fs_sb_info *sbi) | |
197 | { | |
198 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
5ec4e49f | 199 | unsigned int secno; |
7bc09003 JK |
200 | |
201 | /* | |
202 | * If the gc_type is FG_GC, we can select victim segments | |
203 | * selected by background GC before. | |
204 | * Those segments guarantee they have small valid blocks. | |
205 | */ | |
7cd8558b | 206 | for_each_set_bit(secno, dirty_i->victim_secmap, MAIN_SECS(sbi)) { |
5ec4e49f | 207 | if (sec_usage_check(sbi, secno)) |
b65ee148 | 208 | continue; |
e93b9865 HP |
209 | |
210 | if (no_fggc_candidate(sbi, secno)) | |
211 | continue; | |
212 | ||
5ec4e49f | 213 | clear_bit(secno, dirty_i->victim_secmap); |
4ddb1a4d | 214 | return GET_SEG_FROM_SEC(sbi, secno); |
7bc09003 JK |
215 | } |
216 | return NULL_SEGNO; | |
217 | } | |
218 | ||
219 | static unsigned int get_cb_cost(struct f2fs_sb_info *sbi, unsigned int segno) | |
220 | { | |
221 | struct sit_info *sit_i = SIT_I(sbi); | |
4ddb1a4d JK |
222 | unsigned int secno = GET_SEC_FROM_SEG(sbi, segno); |
223 | unsigned int start = GET_SEG_FROM_SEC(sbi, secno); | |
7bc09003 JK |
224 | unsigned long long mtime = 0; |
225 | unsigned int vblocks; | |
226 | unsigned char age = 0; | |
227 | unsigned char u; | |
228 | unsigned int i; | |
229 | ||
230 | for (i = 0; i < sbi->segs_per_sec; i++) | |
231 | mtime += get_seg_entry(sbi, start + i)->mtime; | |
302bd348 | 232 | vblocks = get_valid_blocks(sbi, segno, true); |
7bc09003 JK |
233 | |
234 | mtime = div_u64(mtime, sbi->segs_per_sec); | |
235 | vblocks = div_u64(vblocks, sbi->segs_per_sec); | |
236 | ||
237 | u = (vblocks * 100) >> sbi->log_blocks_per_seg; | |
238 | ||
e1c42045 | 239 | /* Handle if the system time has changed by the user */ |
7bc09003 JK |
240 | if (mtime < sit_i->min_mtime) |
241 | sit_i->min_mtime = mtime; | |
242 | if (mtime > sit_i->max_mtime) | |
243 | sit_i->max_mtime = mtime; | |
244 | if (sit_i->max_mtime != sit_i->min_mtime) | |
245 | age = 100 - div64_u64(100 * (mtime - sit_i->min_mtime), | |
246 | sit_i->max_mtime - sit_i->min_mtime); | |
247 | ||
248 | return UINT_MAX - ((100 * (100 - u) * age) / (100 + u)); | |
249 | } | |
250 | ||
b9cd2061 HP |
251 | static unsigned int get_greedy_cost(struct f2fs_sb_info *sbi, |
252 | unsigned int segno) | |
253 | { | |
254 | unsigned int valid_blocks = | |
302bd348 | 255 | get_valid_blocks(sbi, segno, true); |
b9cd2061 HP |
256 | |
257 | return IS_DATASEG(get_seg_entry(sbi, segno)->type) ? | |
258 | valid_blocks * 2 : valid_blocks; | |
259 | } | |
260 | ||
a57e564d JX |
261 | static inline unsigned int get_gc_cost(struct f2fs_sb_info *sbi, |
262 | unsigned int segno, struct victim_sel_policy *p) | |
7bc09003 JK |
263 | { |
264 | if (p->alloc_mode == SSR) | |
265 | return get_seg_entry(sbi, segno)->ckpt_valid_blocks; | |
266 | ||
267 | /* alloc_mode == LFS */ | |
268 | if (p->gc_mode == GC_GREEDY) | |
b9cd2061 | 269 | return get_greedy_cost(sbi, segno); |
7bc09003 JK |
270 | else |
271 | return get_cb_cost(sbi, segno); | |
272 | } | |
273 | ||
688159b6 FL |
274 | static unsigned int count_bits(const unsigned long *addr, |
275 | unsigned int offset, unsigned int len) | |
276 | { | |
277 | unsigned int end = offset + len, sum = 0; | |
278 | ||
279 | while (offset < end) { | |
280 | if (test_bit(offset++, addr)) | |
281 | ++sum; | |
282 | } | |
283 | return sum; | |
284 | } | |
285 | ||
0a8165d7 | 286 | /* |
111d2495 | 287 | * This function is called from two paths. |
7bc09003 JK |
288 | * One is garbage collection and the other is SSR segment selection. |
289 | * When it is called during GC, it just gets a victim segment | |
290 | * and it does not remove it from dirty seglist. | |
291 | * When it is called from SSR segment selection, it finds a segment | |
292 | * which has minimum valid blocks and removes it from dirty seglist. | |
293 | */ | |
294 | static int get_victim_by_default(struct f2fs_sb_info *sbi, | |
295 | unsigned int *result, int gc_type, int type, char alloc_mode) | |
296 | { | |
297 | struct dirty_seglist_info *dirty_i = DIRTY_I(sbi); | |
e066b83c | 298 | struct sit_info *sm = SIT_I(sbi); |
7bc09003 | 299 | struct victim_sel_policy p; |
3fa56503 | 300 | unsigned int secno, last_victim; |
a43f7ec3 | 301 | unsigned int last_segment = MAIN_SEGS(sbi); |
688159b6 | 302 | unsigned int nsearched = 0; |
7bc09003 | 303 | |
210f41bc CY |
304 | mutex_lock(&dirty_i->seglist_lock); |
305 | ||
7bc09003 JK |
306 | p.alloc_mode = alloc_mode; |
307 | select_policy(sbi, gc_type, type, &p); | |
308 | ||
309 | p.min_segno = NULL_SEGNO; | |
3fa56503 | 310 | p.min_cost = get_max_cost(sbi, &p); |
7bc09003 | 311 | |
e066b83c JK |
312 | if (*result != NULL_SEGNO) { |
313 | if (IS_DATASEG(get_seg_entry(sbi, *result)->type) && | |
314 | get_valid_blocks(sbi, *result, false) && | |
315 | !sec_usage_check(sbi, GET_SEC_FROM_SEG(sbi, *result))) | |
316 | p.min_segno = *result; | |
317 | goto out; | |
318 | } | |
319 | ||
3342bb30 CY |
320 | if (p.max_search == 0) |
321 | goto out; | |
322 | ||
e066b83c | 323 | last_victim = sm->last_victim[p.gc_mode]; |
7bc09003 JK |
324 | if (p.alloc_mode == LFS && gc_type == FG_GC) { |
325 | p.min_segno = check_bg_victims(sbi); | |
326 | if (p.min_segno != NULL_SEGNO) | |
327 | goto got_it; | |
328 | } | |
329 | ||
330 | while (1) { | |
331 | unsigned long cost; | |
5ec4e49f | 332 | unsigned int segno; |
7bc09003 | 333 | |
a43f7ec3 CY |
334 | segno = find_next_bit(p.dirty_segmap, last_segment, p.offset); |
335 | if (segno >= last_segment) { | |
e066b83c JK |
336 | if (sm->last_victim[p.gc_mode]) { |
337 | last_segment = | |
338 | sm->last_victim[p.gc_mode]; | |
339 | sm->last_victim[p.gc_mode] = 0; | |
7bc09003 JK |
340 | p.offset = 0; |
341 | continue; | |
342 | } | |
343 | break; | |
344 | } | |
a57e564d JX |
345 | |
346 | p.offset = segno + p.ofs_unit; | |
688159b6 | 347 | if (p.ofs_unit > 1) { |
a57e564d | 348 | p.offset -= segno % p.ofs_unit; |
688159b6 FL |
349 | nsearched += count_bits(p.dirty_segmap, |
350 | p.offset - p.ofs_unit, | |
351 | p.ofs_unit); | |
352 | } else { | |
353 | nsearched++; | |
354 | } | |
355 | ||
4ddb1a4d | 356 | secno = GET_SEC_FROM_SEG(sbi, segno); |
7bc09003 | 357 | |
5ec4e49f | 358 | if (sec_usage_check(sbi, secno)) |
688159b6 | 359 | goto next; |
5ec4e49f | 360 | if (gc_type == BG_GC && test_bit(secno, dirty_i->victim_secmap)) |
688159b6 | 361 | goto next; |
e93b9865 HP |
362 | if (gc_type == FG_GC && p.alloc_mode == LFS && |
363 | no_fggc_candidate(sbi, secno)) | |
364 | goto next; | |
7bc09003 JK |
365 | |
366 | cost = get_gc_cost(sbi, segno, &p); | |
367 | ||
368 | if (p.min_cost > cost) { | |
369 | p.min_segno = segno; | |
370 | p.min_cost = cost; | |
a57e564d | 371 | } |
688159b6 FL |
372 | next: |
373 | if (nsearched >= p.max_search) { | |
e066b83c JK |
374 | if (!sm->last_victim[p.gc_mode] && segno <= last_victim) |
375 | sm->last_victim[p.gc_mode] = last_victim + 1; | |
4ce53776 | 376 | else |
e066b83c JK |
377 | sm->last_victim[p.gc_mode] = segno + 1; |
378 | sm->last_victim[p.gc_mode] %= MAIN_SEGS(sbi); | |
7bc09003 JK |
379 | break; |
380 | } | |
381 | } | |
7bc09003 | 382 | if (p.min_segno != NULL_SEGNO) { |
b2b3460a | 383 | got_it: |
7bc09003 | 384 | if (p.alloc_mode == LFS) { |
4ddb1a4d | 385 | secno = GET_SEC_FROM_SEG(sbi, p.min_segno); |
5ec4e49f JK |
386 | if (gc_type == FG_GC) |
387 | sbi->cur_victim_sec = secno; | |
388 | else | |
389 | set_bit(secno, dirty_i->victim_secmap); | |
7bc09003 | 390 | } |
5ec4e49f | 391 | *result = (p.min_segno / p.ofs_unit) * p.ofs_unit; |
8e46b3ed NJ |
392 | |
393 | trace_f2fs_get_victim(sbi->sb, type, gc_type, &p, | |
394 | sbi->cur_victim_sec, | |
395 | prefree_segments(sbi), free_segments(sbi)); | |
7bc09003 | 396 | } |
3342bb30 | 397 | out: |
7bc09003 JK |
398 | mutex_unlock(&dirty_i->seglist_lock); |
399 | ||
400 | return (p.min_segno == NULL_SEGNO) ? 0 : 1; | |
401 | } | |
402 | ||
403 | static const struct victim_selection default_v_ops = { | |
404 | .get_victim = get_victim_by_default, | |
405 | }; | |
406 | ||
7dda2af8 | 407 | static struct inode *find_gc_inode(struct gc_inode_list *gc_list, nid_t ino) |
7bc09003 | 408 | { |
7bc09003 JK |
409 | struct inode_entry *ie; |
410 | ||
7dda2af8 CL |
411 | ie = radix_tree_lookup(&gc_list->iroot, ino); |
412 | if (ie) | |
413 | return ie->inode; | |
7bc09003 JK |
414 | return NULL; |
415 | } | |
416 | ||
7dda2af8 | 417 | static void add_gc_inode(struct gc_inode_list *gc_list, struct inode *inode) |
7bc09003 | 418 | { |
6cc4af56 GZ |
419 | struct inode_entry *new_ie; |
420 | ||
7dda2af8 | 421 | if (inode == find_gc_inode(gc_list, inode->i_ino)) { |
6cc4af56 GZ |
422 | iput(inode); |
423 | return; | |
7bc09003 | 424 | } |
06292073 | 425 | new_ie = f2fs_kmem_cache_alloc(inode_entry_slab, GFP_NOFS); |
7bc09003 | 426 | new_ie->inode = inode; |
f28e5034 CY |
427 | |
428 | f2fs_radix_tree_insert(&gc_list->iroot, inode->i_ino, new_ie); | |
7dda2af8 | 429 | list_add_tail(&new_ie->list, &gc_list->ilist); |
7bc09003 JK |
430 | } |
431 | ||
7dda2af8 | 432 | static void put_gc_inode(struct gc_inode_list *gc_list) |
7bc09003 JK |
433 | { |
434 | struct inode_entry *ie, *next_ie; | |
7dda2af8 CL |
435 | list_for_each_entry_safe(ie, next_ie, &gc_list->ilist, list) { |
436 | radix_tree_delete(&gc_list->iroot, ie->inode->i_ino); | |
7bc09003 JK |
437 | iput(ie->inode); |
438 | list_del(&ie->list); | |
06292073 | 439 | kmem_cache_free(inode_entry_slab, ie); |
7bc09003 JK |
440 | } |
441 | } | |
442 | ||
443 | static int check_valid_map(struct f2fs_sb_info *sbi, | |
444 | unsigned int segno, int offset) | |
445 | { | |
446 | struct sit_info *sit_i = SIT_I(sbi); | |
447 | struct seg_entry *sentry; | |
448 | int ret; | |
449 | ||
450 | mutex_lock(&sit_i->sentry_lock); | |
451 | sentry = get_seg_entry(sbi, segno); | |
452 | ret = f2fs_test_bit(offset, sentry->cur_valid_map); | |
453 | mutex_unlock(&sit_i->sentry_lock); | |
43727527 | 454 | return ret; |
7bc09003 JK |
455 | } |
456 | ||
0a8165d7 | 457 | /* |
7bc09003 JK |
458 | * This function compares node address got in summary with that in NAT. |
459 | * On validity, copy that node with cold status, otherwise (invalid node) | |
460 | * ignore that. | |
461 | */ | |
718e53fa | 462 | static void gc_node_segment(struct f2fs_sb_info *sbi, |
7bc09003 JK |
463 | struct f2fs_summary *sum, unsigned int segno, int gc_type) |
464 | { | |
7bc09003 | 465 | struct f2fs_summary *entry; |
26d58599 | 466 | block_t start_addr; |
7bc09003 | 467 | int off; |
7ea984b0 | 468 | int phase = 0; |
7bc09003 | 469 | |
26d58599 JK |
470 | start_addr = START_BLOCK(sbi, segno); |
471 | ||
7bc09003 JK |
472 | next_step: |
473 | entry = sum; | |
c718379b | 474 | |
7bc09003 JK |
475 | for (off = 0; off < sbi->blocks_per_seg; off++, entry++) { |
476 | nid_t nid = le32_to_cpu(entry->nid); | |
477 | struct page *node_page; | |
26d58599 | 478 | struct node_info ni; |
7bc09003 | 479 | |
43727527 | 480 | /* stop BG_GC if there is not enough free sections. */ |
7f3037a5 | 481 | if (gc_type == BG_GC && has_not_enough_free_secs(sbi, 0, 0)) |
718e53fa | 482 | return; |
7bc09003 | 483 | |
43727527 | 484 | if (check_valid_map(sbi, segno, off) == 0) |
7bc09003 JK |
485 | continue; |
486 | ||
7ea984b0 CY |
487 | if (phase == 0) { |
488 | ra_meta_pages(sbi, NAT_BLOCK_OFFSET(nid), 1, | |
489 | META_NAT, true); | |
490 | continue; | |
491 | } | |
492 | ||
493 | if (phase == 1) { | |
7bc09003 JK |
494 | ra_node_page(sbi, nid); |
495 | continue; | |
496 | } | |
7ea984b0 CY |
497 | |
498 | /* phase == 2 */ | |
7bc09003 JK |
499 | node_page = get_node_page(sbi, nid); |
500 | if (IS_ERR(node_page)) | |
501 | continue; | |
502 | ||
9a01b56b YH |
503 | /* block may become invalid during get_node_page */ |
504 | if (check_valid_map(sbi, segno, off) == 0) { | |
505 | f2fs_put_page(node_page, 1); | |
506 | continue; | |
26d58599 JK |
507 | } |
508 | ||
509 | get_node_info(sbi, nid, &ni); | |
510 | if (ni.blk_addr != start_addr + off) { | |
511 | f2fs_put_page(node_page, 1); | |
512 | continue; | |
9a01b56b YH |
513 | } |
514 | ||
da011cc0 | 515 | move_node_page(node_page, gc_type); |
e1235983 | 516 | stat_inc_node_blk_count(sbi, 1, gc_type); |
7bc09003 | 517 | } |
c718379b | 518 | |
7ea984b0 | 519 | if (++phase < 3) |
7bc09003 | 520 | goto next_step; |
7bc09003 JK |
521 | } |
522 | ||
0a8165d7 | 523 | /* |
9af45ef5 JK |
524 | * Calculate start block index indicating the given node offset. |
525 | * Be careful, caller should give this node offset only indicating direct node | |
526 | * blocks. If any node offsets, which point the other types of node blocks such | |
527 | * as indirect or double indirect node blocks, are given, it must be a caller's | |
528 | * bug. | |
7bc09003 | 529 | */ |
81ca7350 | 530 | block_t start_bidx_of_node(unsigned int node_ofs, struct inode *inode) |
7bc09003 | 531 | { |
ce19a5d4 JK |
532 | unsigned int indirect_blks = 2 * NIDS_PER_BLOCK + 4; |
533 | unsigned int bidx; | |
7bc09003 | 534 | |
ce19a5d4 JK |
535 | if (node_ofs == 0) |
536 | return 0; | |
7bc09003 | 537 | |
ce19a5d4 | 538 | if (node_ofs <= 2) { |
7bc09003 JK |
539 | bidx = node_ofs - 1; |
540 | } else if (node_ofs <= indirect_blks) { | |
ce19a5d4 | 541 | int dec = (node_ofs - 4) / (NIDS_PER_BLOCK + 1); |
7bc09003 JK |
542 | bidx = node_ofs - 2 - dec; |
543 | } else { | |
ce19a5d4 | 544 | int dec = (node_ofs - indirect_blks - 3) / (NIDS_PER_BLOCK + 1); |
7bc09003 JK |
545 | bidx = node_ofs - 5 - dec; |
546 | } | |
81ca7350 | 547 | return bidx * ADDRS_PER_BLOCK + ADDRS_PER_INODE(inode); |
7bc09003 JK |
548 | } |
549 | ||
c1079892 | 550 | static bool is_alive(struct f2fs_sb_info *sbi, struct f2fs_summary *sum, |
7bc09003 JK |
551 | struct node_info *dni, block_t blkaddr, unsigned int *nofs) |
552 | { | |
553 | struct page *node_page; | |
554 | nid_t nid; | |
555 | unsigned int ofs_in_node; | |
556 | block_t source_blkaddr; | |
557 | ||
558 | nid = le32_to_cpu(sum->nid); | |
559 | ofs_in_node = le16_to_cpu(sum->ofs_in_node); | |
560 | ||
561 | node_page = get_node_page(sbi, nid); | |
562 | if (IS_ERR(node_page)) | |
c1079892 | 563 | return false; |
7bc09003 JK |
564 | |
565 | get_node_info(sbi, nid, dni); | |
566 | ||
567 | if (sum->version != dni->version) { | |
c13ff37e JK |
568 | f2fs_msg(sbi->sb, KERN_WARNING, |
569 | "%s: valid data with mismatched node version.", | |
570 | __func__); | |
571 | set_sbi_flag(sbi, SBI_NEED_FSCK); | |
7bc09003 JK |
572 | } |
573 | ||
574 | *nofs = ofs_of_node(node_page); | |
575 | source_blkaddr = datablock_addr(node_page, ofs_in_node); | |
576 | f2fs_put_page(node_page, 1); | |
577 | ||
578 | if (source_blkaddr != blkaddr) | |
c1079892 NK |
579 | return false; |
580 | return true; | |
7bc09003 JK |
581 | } |
582 | ||
20614711 YH |
583 | static void move_encrypted_block(struct inode *inode, block_t bidx, |
584 | unsigned int segno, int off) | |
4375a336 JK |
585 | { |
586 | struct f2fs_io_info fio = { | |
587 | .sbi = F2FS_I_SB(inode), | |
588 | .type = DATA, | |
04d328de | 589 | .op = REQ_OP_READ, |
70fd7614 | 590 | .op_flags = 0, |
4375a336 JK |
591 | .encrypted_page = NULL, |
592 | }; | |
593 | struct dnode_of_data dn; | |
594 | struct f2fs_summary sum; | |
595 | struct node_info ni; | |
596 | struct page *page; | |
4356e48e | 597 | block_t newaddr; |
4375a336 JK |
598 | int err; |
599 | ||
600 | /* do not read out */ | |
a56c7c6f | 601 | page = f2fs_grab_cache_page(inode->i_mapping, bidx, false); |
4375a336 JK |
602 | if (!page) |
603 | return; | |
604 | ||
20614711 YH |
605 | if (!check_valid_map(F2FS_I_SB(inode), segno, off)) |
606 | goto out; | |
607 | ||
5fe45743 CY |
608 | if (f2fs_is_atomic_file(inode)) |
609 | goto out; | |
610 | ||
4375a336 JK |
611 | set_new_dnode(&dn, inode, NULL, NULL, 0); |
612 | err = get_dnode_of_data(&dn, bidx, LOOKUP_NODE); | |
613 | if (err) | |
614 | goto out; | |
615 | ||
08b39fbd CY |
616 | if (unlikely(dn.data_blkaddr == NULL_ADDR)) { |
617 | ClearPageUptodate(page); | |
4375a336 | 618 | goto put_out; |
08b39fbd CY |
619 | } |
620 | ||
621 | /* | |
622 | * don't cache encrypted data into meta inode until previous dirty | |
623 | * data were writebacked to avoid racing between GC and flush. | |
624 | */ | |
fec1d657 | 625 | f2fs_wait_on_page_writeback(page, DATA, true); |
4375a336 JK |
626 | |
627 | get_node_info(fio.sbi, dn.nid, &ni); | |
628 | set_summary(&sum, dn.nid, dn.ofs_in_node, ni.version); | |
629 | ||
630 | /* read page */ | |
631 | fio.page = page; | |
7a9d7548 | 632 | fio.new_blkaddr = fio.old_blkaddr = dn.data_blkaddr; |
4375a336 | 633 | |
4356e48e CY |
634 | allocate_data_block(fio.sbi, NULL, fio.old_blkaddr, &newaddr, |
635 | &sum, CURSEG_COLD_DATA); | |
636 | ||
637 | fio.encrypted_page = pagecache_get_page(META_MAPPING(fio.sbi), newaddr, | |
638 | FGP_LOCK | FGP_CREAT, GFP_NOFS); | |
639 | if (!fio.encrypted_page) { | |
640 | err = -ENOMEM; | |
641 | goto recover_block; | |
642 | } | |
4375a336 | 643 | |
548aedac JK |
644 | err = f2fs_submit_page_bio(&fio); |
645 | if (err) | |
646 | goto put_page_out; | |
647 | ||
648 | /* write page */ | |
649 | lock_page(fio.encrypted_page); | |
650 | ||
1563ac75 | 651 | if (unlikely(fio.encrypted_page->mapping != META_MAPPING(fio.sbi))) { |
4356e48e | 652 | err = -EIO; |
548aedac | 653 | goto put_page_out; |
4356e48e | 654 | } |
1563ac75 | 655 | if (unlikely(!PageUptodate(fio.encrypted_page))) { |
4356e48e | 656 | err = -EIO; |
548aedac | 657 | goto put_page_out; |
4356e48e | 658 | } |
548aedac | 659 | |
6282adbf | 660 | set_page_dirty(fio.encrypted_page); |
fec1d657 | 661 | f2fs_wait_on_page_writeback(fio.encrypted_page, DATA, true); |
6282adbf JK |
662 | if (clear_page_dirty_for_io(fio.encrypted_page)) |
663 | dec_page_count(fio.sbi, F2FS_DIRTY_META); | |
664 | ||
548aedac | 665 | set_page_writeback(fio.encrypted_page); |
4375a336 JK |
666 | |
667 | /* allocate block address */ | |
fec1d657 | 668 | f2fs_wait_on_page_writeback(dn.node_page, NODE, true); |
4356e48e | 669 | |
04d328de | 670 | fio.op = REQ_OP_WRITE; |
70fd7614 | 671 | fio.op_flags = REQ_SYNC; |
4356e48e | 672 | fio.new_blkaddr = newaddr; |
4375a336 JK |
673 | f2fs_submit_page_mbio(&fio); |
674 | ||
f28b3434 | 675 | f2fs_update_data_blkaddr(&dn, newaddr); |
91942321 | 676 | set_inode_flag(inode, FI_APPEND_WRITE); |
4375a336 | 677 | if (page->index == 0) |
91942321 | 678 | set_inode_flag(inode, FI_FIRST_BLOCK_WRITTEN); |
548aedac | 679 | put_page_out: |
4375a336 | 680 | f2fs_put_page(fio.encrypted_page, 1); |
4356e48e CY |
681 | recover_block: |
682 | if (err) | |
683 | __f2fs_replace_block(fio.sbi, &sum, newaddr, fio.old_blkaddr, | |
684 | true, true); | |
4375a336 JK |
685 | put_out: |
686 | f2fs_put_dnode(&dn); | |
687 | out: | |
688 | f2fs_put_page(page, 1); | |
689 | } | |
690 | ||
20614711 YH |
691 | static void move_data_page(struct inode *inode, block_t bidx, int gc_type, |
692 | unsigned int segno, int off) | |
7bc09003 | 693 | { |
c879f90d JK |
694 | struct page *page; |
695 | ||
a56c7c6f | 696 | page = get_lock_data_page(inode, bidx, true); |
c879f90d JK |
697 | if (IS_ERR(page)) |
698 | return; | |
63a0b7cb | 699 | |
20614711 YH |
700 | if (!check_valid_map(F2FS_I_SB(inode), segno, off)) |
701 | goto out; | |
702 | ||
5fe45743 CY |
703 | if (f2fs_is_atomic_file(inode)) |
704 | goto out; | |
705 | ||
7bc09003 | 706 | if (gc_type == BG_GC) { |
4ebefc44 JK |
707 | if (PageWriteback(page)) |
708 | goto out; | |
7bc09003 JK |
709 | set_page_dirty(page); |
710 | set_cold_data(page); | |
711 | } else { | |
c879f90d JK |
712 | struct f2fs_io_info fio = { |
713 | .sbi = F2FS_I_SB(inode), | |
714 | .type = DATA, | |
04d328de | 715 | .op = REQ_OP_WRITE, |
70fd7614 | 716 | .op_flags = REQ_SYNC, |
e959c8f5 | 717 | .old_blkaddr = NULL_ADDR, |
c879f90d | 718 | .page = page, |
4375a336 | 719 | .encrypted_page = NULL, |
279d6df2 | 720 | .need_lock = true, |
c879f90d | 721 | }; |
72e1c797 CY |
722 | bool is_dirty = PageDirty(page); |
723 | int err; | |
724 | ||
725 | retry: | |
6282adbf | 726 | set_page_dirty(page); |
fec1d657 | 727 | f2fs_wait_on_page_writeback(page, DATA, true); |
933439c8 | 728 | if (clear_page_dirty_for_io(page)) { |
a7ffdbe2 | 729 | inode_dec_dirty_pages(inode); |
933439c8 CY |
730 | remove_dirty_inode(inode); |
731 | } | |
72e1c797 | 732 | |
7bc09003 | 733 | set_cold_data(page); |
72e1c797 CY |
734 | |
735 | err = do_write_data_page(&fio); | |
736 | if (err == -ENOMEM && is_dirty) { | |
737 | congestion_wait(BLK_RW_ASYNC, HZ/50); | |
738 | goto retry; | |
739 | } | |
7bc09003 JK |
740 | } |
741 | out: | |
742 | f2fs_put_page(page, 1); | |
743 | } | |
744 | ||
0a8165d7 | 745 | /* |
7bc09003 JK |
746 | * This function tries to get parent node of victim data block, and identifies |
747 | * data block validity. If the block is valid, copy that with cold status and | |
748 | * modify parent node. | |
749 | * If the parent node is not valid or the data block address is different, | |
750 | * the victim data block is ignored. | |
751 | */ | |
718e53fa | 752 | static void gc_data_segment(struct f2fs_sb_info *sbi, struct f2fs_summary *sum, |
7dda2af8 | 753 | struct gc_inode_list *gc_list, unsigned int segno, int gc_type) |
7bc09003 JK |
754 | { |
755 | struct super_block *sb = sbi->sb; | |
756 | struct f2fs_summary *entry; | |
757 | block_t start_addr; | |
43727527 | 758 | int off; |
7bc09003 JK |
759 | int phase = 0; |
760 | ||
761 | start_addr = START_BLOCK(sbi, segno); | |
762 | ||
763 | next_step: | |
764 | entry = sum; | |
c718379b | 765 | |
7bc09003 JK |
766 | for (off = 0; off < sbi->blocks_per_seg; off++, entry++) { |
767 | struct page *data_page; | |
768 | struct inode *inode; | |
769 | struct node_info dni; /* dnode info for the data */ | |
770 | unsigned int ofs_in_node, nofs; | |
771 | block_t start_bidx; | |
7ea984b0 | 772 | nid_t nid = le32_to_cpu(entry->nid); |
7bc09003 | 773 | |
43727527 | 774 | /* stop BG_GC if there is not enough free sections. */ |
7f3037a5 | 775 | if (gc_type == BG_GC && has_not_enough_free_secs(sbi, 0, 0)) |
718e53fa | 776 | return; |
7bc09003 | 777 | |
43727527 | 778 | if (check_valid_map(sbi, segno, off) == 0) |
7bc09003 JK |
779 | continue; |
780 | ||
781 | if (phase == 0) { | |
7ea984b0 CY |
782 | ra_meta_pages(sbi, NAT_BLOCK_OFFSET(nid), 1, |
783 | META_NAT, true); | |
784 | continue; | |
785 | } | |
786 | ||
787 | if (phase == 1) { | |
788 | ra_node_page(sbi, nid); | |
7bc09003 JK |
789 | continue; |
790 | } | |
791 | ||
792 | /* Get an inode by ino with checking validity */ | |
c1079892 | 793 | if (!is_alive(sbi, entry, &dni, start_addr + off, &nofs)) |
7bc09003 JK |
794 | continue; |
795 | ||
7ea984b0 | 796 | if (phase == 2) { |
7bc09003 JK |
797 | ra_node_page(sbi, dni.ino); |
798 | continue; | |
799 | } | |
800 | ||
7bc09003 JK |
801 | ofs_in_node = le16_to_cpu(entry->ofs_in_node); |
802 | ||
7ea984b0 | 803 | if (phase == 3) { |
d4686d56 | 804 | inode = f2fs_iget(sb, dni.ino); |
b73e5282 | 805 | if (IS_ERR(inode) || is_bad_inode(inode)) |
7bc09003 JK |
806 | continue; |
807 | ||
4375a336 JK |
808 | /* if encrypted inode, let's go phase 3 */ |
809 | if (f2fs_encrypted_inode(inode) && | |
810 | S_ISREG(inode->i_mode)) { | |
811 | add_gc_inode(gc_list, inode); | |
812 | continue; | |
813 | } | |
814 | ||
81ca7350 | 815 | start_bidx = start_bidx_of_node(nofs, inode); |
43f3eae1 | 816 | data_page = get_read_data_page(inode, |
70246286 CH |
817 | start_bidx + ofs_in_node, REQ_RAHEAD, |
818 | true); | |
31a32688 CL |
819 | if (IS_ERR(data_page)) { |
820 | iput(inode); | |
821 | continue; | |
822 | } | |
7bc09003 JK |
823 | |
824 | f2fs_put_page(data_page, 0); | |
7dda2af8 | 825 | add_gc_inode(gc_list, inode); |
31a32688 CL |
826 | continue; |
827 | } | |
828 | ||
7ea984b0 | 829 | /* phase 4 */ |
7dda2af8 | 830 | inode = find_gc_inode(gc_list, dni.ino); |
31a32688 | 831 | if (inode) { |
82e0a5aa CY |
832 | struct f2fs_inode_info *fi = F2FS_I(inode); |
833 | bool locked = false; | |
834 | ||
835 | if (S_ISREG(inode->i_mode)) { | |
836 | if (!down_write_trylock(&fi->dio_rwsem[READ])) | |
837 | continue; | |
838 | if (!down_write_trylock( | |
839 | &fi->dio_rwsem[WRITE])) { | |
840 | up_write(&fi->dio_rwsem[READ]); | |
841 | continue; | |
842 | } | |
843 | locked = true; | |
844 | } | |
845 | ||
81ca7350 | 846 | start_bidx = start_bidx_of_node(nofs, inode) |
c879f90d | 847 | + ofs_in_node; |
4375a336 | 848 | if (f2fs_encrypted_inode(inode) && S_ISREG(inode->i_mode)) |
20614711 | 849 | move_encrypted_block(inode, start_bidx, segno, off); |
4375a336 | 850 | else |
20614711 | 851 | move_data_page(inode, start_bidx, gc_type, segno, off); |
82e0a5aa CY |
852 | |
853 | if (locked) { | |
854 | up_write(&fi->dio_rwsem[WRITE]); | |
855 | up_write(&fi->dio_rwsem[READ]); | |
856 | } | |
857 | ||
e1235983 | 858 | stat_inc_data_blk_count(sbi, 1, gc_type); |
7bc09003 | 859 | } |
7bc09003 | 860 | } |
c718379b | 861 | |
7ea984b0 | 862 | if (++phase < 5) |
7bc09003 | 863 | goto next_step; |
7bc09003 JK |
864 | } |
865 | ||
866 | static int __get_victim(struct f2fs_sb_info *sbi, unsigned int *victim, | |
8a2d0ace | 867 | int gc_type) |
7bc09003 JK |
868 | { |
869 | struct sit_info *sit_i = SIT_I(sbi); | |
870 | int ret; | |
8a2d0ace | 871 | |
7bc09003 | 872 | mutex_lock(&sit_i->sentry_lock); |
8a2d0ace GZ |
873 | ret = DIRTY_I(sbi)->v_ops->get_victim(sbi, victim, gc_type, |
874 | NO_CHECK_TYPE, LFS); | |
7bc09003 JK |
875 | mutex_unlock(&sit_i->sentry_lock); |
876 | return ret; | |
877 | } | |
878 | ||
718e53fa CY |
879 | static int do_garbage_collect(struct f2fs_sb_info *sbi, |
880 | unsigned int start_segno, | |
7dda2af8 | 881 | struct gc_inode_list *gc_list, int gc_type) |
7bc09003 JK |
882 | { |
883 | struct page *sum_page; | |
884 | struct f2fs_summary_block *sum; | |
c718379b | 885 | struct blk_plug plug; |
718e53fa CY |
886 | unsigned int segno = start_segno; |
887 | unsigned int end_segno = start_segno + sbi->segs_per_sec; | |
43ced84e | 888 | int sec_freed = 0; |
718e53fa CY |
889 | unsigned char type = IS_DATASEG(get_seg_entry(sbi, segno)->type) ? |
890 | SUM_TYPE_DATA : SUM_TYPE_NODE; | |
7bc09003 | 891 | |
718e53fa CY |
892 | /* readahead multi ssa blocks those have contiguous address */ |
893 | if (sbi->segs_per_sec > 1) | |
894 | ra_meta_pages(sbi, GET_SUM_BLOCK(sbi, segno), | |
895 | sbi->segs_per_sec, META_SSA, true); | |
896 | ||
897 | /* reference all summary page */ | |
898 | while (segno < end_segno) { | |
899 | sum_page = get_sum_page(sbi, segno++); | |
900 | unlock_page(sum_page); | |
901 | } | |
7bc09003 | 902 | |
c718379b JK |
903 | blk_start_plug(&plug); |
904 | ||
718e53fa | 905 | for (segno = start_segno; segno < end_segno; segno++) { |
aa987273 | 906 | |
718e53fa CY |
907 | /* find segment summary of victim */ |
908 | sum_page = find_get_page(META_MAPPING(sbi), | |
909 | GET_SUM_BLOCK(sbi, segno)); | |
718e53fa | 910 | f2fs_put_page(sum_page, 0); |
7bc09003 | 911 | |
302bd348 | 912 | if (get_valid_blocks(sbi, segno, false) == 0 || |
de0dcc40 JK |
913 | !PageUptodate(sum_page) || |
914 | unlikely(f2fs_cp_error(sbi))) | |
915 | goto next; | |
916 | ||
718e53fa CY |
917 | sum = page_address(sum_page); |
918 | f2fs_bug_on(sbi, type != GET_SUM_TYPE((&sum->footer))); | |
919 | ||
920 | /* | |
921 | * this is to avoid deadlock: | |
922 | * - lock_page(sum_page) - f2fs_replace_block | |
923 | * - check_valid_map() - mutex_lock(sentry_lock) | |
924 | * - mutex_lock(sentry_lock) - change_curseg() | |
925 | * - lock_page(sum_page) | |
926 | */ | |
718e53fa CY |
927 | if (type == SUM_TYPE_NODE) |
928 | gc_node_segment(sbi, sum->entries, segno, gc_type); | |
929 | else | |
930 | gc_data_segment(sbi, sum->entries, gc_list, segno, | |
931 | gc_type); | |
932 | ||
933 | stat_inc_seg_count(sbi, type, gc_type); | |
f6fe2be3 | 934 | next: |
718e53fa CY |
935 | f2fs_put_page(sum_page, 0); |
936 | } | |
937 | ||
da011cc0 CY |
938 | if (gc_type == FG_GC) |
939 | f2fs_submit_merged_bio(sbi, | |
940 | (type == SUM_TYPE_NODE) ? NODE : DATA, WRITE); | |
c718379b | 941 | |
718e53fa | 942 | blk_finish_plug(&plug); |
7bc09003 | 943 | |
43ced84e | 944 | if (gc_type == FG_GC && |
302bd348 | 945 | get_valid_blocks(sbi, start_segno, true) == 0) |
43ced84e | 946 | sec_freed = 1; |
17d899df CY |
947 | |
948 | stat_inc_call_count(sbi->stat_info); | |
949 | ||
43ced84e | 950 | return sec_freed; |
7bc09003 JK |
951 | } |
952 | ||
e066b83c JK |
953 | int f2fs_gc(struct f2fs_sb_info *sbi, bool sync, |
954 | bool background, unsigned int segno) | |
7bc09003 | 955 | { |
d530d4d8 | 956 | int gc_type = sync ? FG_GC : BG_GC; |
43ced84e | 957 | int sec_freed = 0; |
d530d4d8 | 958 | int ret = -EINVAL; |
d5053a34 | 959 | struct cp_control cpc; |
e066b83c | 960 | unsigned int init_segno = segno; |
7dda2af8 CL |
961 | struct gc_inode_list gc_list = { |
962 | .ilist = LIST_HEAD_INIT(gc_list.ilist), | |
769ec6e5 | 963 | .iroot = RADIX_TREE_INIT(GFP_NOFS), |
7dda2af8 | 964 | }; |
d5053a34 | 965 | |
119ee914 | 966 | cpc.reason = __get_cp_reason(sbi); |
7bc09003 | 967 | gc_more: |
6bacf52f | 968 | if (unlikely(!(sbi->sb->s_flags & MS_ACTIVE))) |
408e9375 | 969 | goto stop; |
6d5a1495 CY |
970 | if (unlikely(f2fs_cp_error(sbi))) { |
971 | ret = -EIO; | |
203681f6 | 972 | goto stop; |
6d5a1495 | 973 | } |
7bc09003 | 974 | |
19f4e688 | 975 | if (gc_type == BG_GC && has_not_enough_free_secs(sbi, 0, 0)) { |
6e17bfbc | 976 | /* |
19f4e688 HP |
977 | * For example, if there are many prefree_segments below given |
978 | * threshold, we can make them free by checkpoint. Then, we | |
979 | * secure free segments which doesn't need fggc any more. | |
6e17bfbc | 980 | */ |
8fd5a37e JK |
981 | if (prefree_segments(sbi)) { |
982 | ret = write_checkpoint(sbi, &cpc); | |
983 | if (ret) | |
984 | goto stop; | |
985 | } | |
19f4e688 HP |
986 | if (has_not_enough_free_secs(sbi, 0, 0)) |
987 | gc_type = FG_GC; | |
d64f8047 | 988 | } |
7bc09003 | 989 | |
19f4e688 HP |
990 | /* f2fs_balance_fs doesn't need to do BG_GC in critical path. */ |
991 | if (gc_type == BG_GC && !background) | |
992 | goto stop; | |
05eeb118 | 993 | if (!__get_victim(sbi, &segno, gc_type)) |
408e9375 | 994 | goto stop; |
43727527 | 995 | ret = 0; |
7bc09003 | 996 | |
43ced84e CY |
997 | if (do_garbage_collect(sbi, segno, &gc_list, gc_type) && |
998 | gc_type == FG_GC) | |
45fe8492 | 999 | sec_freed++; |
43727527 | 1000 | |
5ee5293c | 1001 | if (gc_type == FG_GC) |
5ec4e49f | 1002 | sbi->cur_victim_sec = NULL_SEGNO; |
43727527 | 1003 | |
d530d4d8 | 1004 | if (!sync) { |
e066b83c JK |
1005 | if (has_not_enough_free_secs(sbi, sec_freed, 0)) { |
1006 | segno = NULL_SEGNO; | |
d530d4d8 | 1007 | goto gc_more; |
e066b83c | 1008 | } |
43727527 | 1009 | |
d530d4d8 | 1010 | if (gc_type == FG_GC) |
2956e450 | 1011 | ret = write_checkpoint(sbi, &cpc); |
d530d4d8 | 1012 | } |
408e9375 | 1013 | stop: |
e066b83c JK |
1014 | SIT_I(sbi)->last_victim[ALLOC_NEXT] = 0; |
1015 | SIT_I(sbi)->last_victim[FLUSH_DEVICE] = init_segno; | |
7bc09003 JK |
1016 | mutex_unlock(&sbi->gc_mutex); |
1017 | ||
7dda2af8 | 1018 | put_gc_inode(&gc_list); |
d530d4d8 CY |
1019 | |
1020 | if (sync) | |
1021 | ret = sec_freed ? 0 : -EAGAIN; | |
43727527 | 1022 | return ret; |
7bc09003 JK |
1023 | } |
1024 | ||
1025 | void build_gc_manager(struct f2fs_sb_info *sbi) | |
1026 | { | |
4ddb1a4d | 1027 | u64 main_count, resv_count, ovp_count; |
e93b9865 | 1028 | |
7bc09003 | 1029 | DIRTY_I(sbi)->v_ops = &default_v_ops; |
e93b9865 HP |
1030 | |
1031 | /* threshold of # of valid blocks in a section for victims of FG_GC */ | |
1032 | main_count = SM_I(sbi)->main_segments << sbi->log_blocks_per_seg; | |
1033 | resv_count = SM_I(sbi)->reserved_segments << sbi->log_blocks_per_seg; | |
1034 | ovp_count = SM_I(sbi)->ovp_segments << sbi->log_blocks_per_seg; | |
e93b9865 | 1035 | |
4ddb1a4d JK |
1036 | sbi->fggc_threshold = div64_u64((main_count - ovp_count) * |
1037 | BLKS_PER_SEC(sbi), (main_count - resv_count)); | |
d5793249 JK |
1038 | |
1039 | /* give warm/cold data area from slower device */ | |
1040 | if (sbi->s_ndevs && sbi->segs_per_sec == 1) | |
1041 | SIT_I(sbi)->last_victim[ALLOC_NEXT] = | |
1042 | GET_SEGNO(sbi, FDEV(0).end_blk) + 1; | |
7bc09003 | 1043 | } |