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[bcachefs-tools-debian] / libbcachefs / buckets.h
1 /* SPDX-License-Identifier: GPL-2.0 */
2 /*
3  * Code for manipulating bucket marks for garbage collection.
4  *
5  * Copyright 2014 Datera, Inc.
6  */
7
8 #ifndef _BUCKETS_H
9 #define _BUCKETS_H
10
11 #include "buckets_types.h"
12 #include "super.h"
13
14 #define for_each_bucket(_b, _buckets)                           \
15         for (_b = (_buckets)->b + (_buckets)->first_bucket;     \
16              _b < (_buckets)->b + (_buckets)->nbuckets; _b++)
17
18 #define bucket_cmpxchg(g, new, expr)                            \
19 ({                                                              \
20         struct bucket *_g = g;                                  \
21         u64 _v = atomic64_read(&(g)->_mark.v);                  \
22         struct bucket_mark _old;                                \
23                                                                 \
24         do {                                                    \
25                 (new).v.counter = _old.v.counter = _v;          \
26                 expr;                                           \
27         } while ((_v = atomic64_cmpxchg(&(_g)->_mark.v,         \
28                                _old.v.counter,                  \
29                                (new).v.counter)) != _old.v.counter);\
30         _old;                                                   \
31 })
32
33 static inline struct bucket_array *__bucket_array(struct bch_dev *ca,
34                                                   bool gc)
35 {
36         return rcu_dereference_check(ca->buckets[gc],
37                                      !ca->fs ||
38                                      percpu_rwsem_is_held(&ca->fs->mark_lock) ||
39                                      lockdep_is_held(&ca->fs->gc_lock) ||
40                                      lockdep_is_held(&ca->bucket_lock));
41 }
42
43 static inline struct bucket_array *bucket_array(struct bch_dev *ca)
44 {
45         return __bucket_array(ca, false);
46 }
47
48 static inline struct bucket *__bucket(struct bch_dev *ca, size_t b, bool gc)
49 {
50         struct bucket_array *buckets = __bucket_array(ca, gc);
51
52         BUG_ON(b < buckets->first_bucket || b >= buckets->nbuckets);
53         return buckets->b + b;
54 }
55
56 static inline struct bucket *bucket(struct bch_dev *ca, size_t b)
57 {
58         return __bucket(ca, b, false);
59 }
60
61 static inline void bucket_io_clock_reset(struct bch_fs *c, struct bch_dev *ca,
62                                          size_t b, int rw)
63 {
64         bucket(ca, b)->io_time[rw] = c->bucket_clock[rw].hand;
65 }
66
67 static inline u16 bucket_last_io(struct bch_fs *c, struct bucket *g, int rw)
68 {
69         return c->bucket_clock[rw].hand - g->io_time[rw];
70 }
71
72 /*
73  * bucket_gc_gen() returns the difference between the bucket's current gen and
74  * the oldest gen of any pointer into that bucket in the btree.
75  */
76
77 static inline u8 bucket_gc_gen(struct bch_dev *ca, size_t b)
78 {
79         struct bucket *g = bucket(ca, b);
80
81         return g->mark.gen - g->oldest_gen;
82 }
83
84 static inline size_t PTR_BUCKET_NR(const struct bch_dev *ca,
85                                    const struct bch_extent_ptr *ptr)
86 {
87         return sector_to_bucket(ca, ptr->offset);
88 }
89
90 static inline struct bucket *PTR_BUCKET(struct bch_dev *ca,
91                                         const struct bch_extent_ptr *ptr,
92                                         bool gc)
93 {
94         return __bucket(ca, PTR_BUCKET_NR(ca, ptr), gc);
95 }
96
97 static inline enum bch_data_type ptr_data_type(const struct bkey *k,
98                                                const struct bch_extent_ptr *ptr)
99 {
100         if (k->type == KEY_TYPE_btree_ptr ||
101             k->type == KEY_TYPE_btree_ptr_v2)
102                 return BCH_DATA_BTREE;
103
104         return ptr->cached ? BCH_DATA_CACHED : BCH_DATA_USER;
105 }
106
107 static inline struct bucket_mark ptr_bucket_mark(struct bch_dev *ca,
108                                                  const struct bch_extent_ptr *ptr)
109 {
110         struct bucket_mark m;
111
112         rcu_read_lock();
113         m = READ_ONCE(PTR_BUCKET(ca, ptr, 0)->mark);
114         rcu_read_unlock();
115
116         return m;
117 }
118
119 static inline int gen_cmp(u8 a, u8 b)
120 {
121         return (s8) (a - b);
122 }
123
124 static inline int gen_after(u8 a, u8 b)
125 {
126         int r = gen_cmp(a, b);
127
128         return r > 0 ? r : 0;
129 }
130
131 /**
132  * ptr_stale() - check if a pointer points into a bucket that has been
133  * invalidated.
134  */
135 static inline u8 ptr_stale(struct bch_dev *ca,
136                            const struct bch_extent_ptr *ptr)
137 {
138         return gen_after(ptr_bucket_mark(ca, ptr).gen, ptr->gen);
139 }
140
141 static inline s64 __ptr_disk_sectors(struct extent_ptr_decoded p,
142                                      unsigned live_size)
143 {
144         return live_size && p.crc.compression_type
145                 ? max(1U, DIV_ROUND_UP(live_size * p.crc.compressed_size,
146                                        p.crc.uncompressed_size))
147                 : live_size;
148 }
149
150 static inline s64 ptr_disk_sectors(struct extent_ptr_decoded p)
151 {
152         return __ptr_disk_sectors(p, p.crc.live_size);
153 }
154
155 /* bucket gc marks */
156
157 static inline unsigned bucket_sectors_used(struct bucket_mark mark)
158 {
159         return mark.dirty_sectors + mark.cached_sectors;
160 }
161
162 static inline bool bucket_unused(struct bucket_mark mark)
163 {
164         return !mark.owned_by_allocator &&
165                 !mark.data_type &&
166                 !bucket_sectors_used(mark);
167 }
168
169 static inline bool is_available_bucket(struct bucket_mark mark)
170 {
171         return (!mark.owned_by_allocator &&
172                 !mark.dirty_sectors &&
173                 !mark.stripe);
174 }
175
176 static inline bool bucket_needs_journal_commit(struct bucket_mark m,
177                                                u16 last_seq_ondisk)
178 {
179         return m.journal_seq_valid &&
180                 ((s16) m.journal_seq - (s16) last_seq_ondisk > 0);
181 }
182
183 /* Device usage: */
184
185 struct bch_dev_usage bch2_dev_usage_read(struct bch_fs *, struct bch_dev *);
186
187 void bch2_dev_usage_from_buckets(struct bch_fs *);
188
189 static inline u64 __dev_buckets_available(struct bch_dev *ca,
190                                           struct bch_dev_usage stats)
191 {
192         u64 total = ca->mi.nbuckets - ca->mi.first_bucket;
193
194         if (WARN_ONCE(stats.buckets_unavailable > total,
195                       "buckets_unavailable overflow (%llu > %llu)\n",
196                       stats.buckets_unavailable, total))
197                 return 0;
198
199         return total - stats.buckets_unavailable;
200 }
201
202 /*
203  * Number of reclaimable buckets - only for use by the allocator thread:
204  */
205 static inline u64 dev_buckets_available(struct bch_fs *c, struct bch_dev *ca)
206 {
207         return __dev_buckets_available(ca, bch2_dev_usage_read(c, ca));
208 }
209
210 static inline u64 __dev_buckets_free(struct bch_dev *ca,
211                                      struct bch_dev_usage stats)
212 {
213         return __dev_buckets_available(ca, stats) +
214                 fifo_used(&ca->free[RESERVE_NONE]) +
215                 fifo_used(&ca->free_inc);
216 }
217
218 static inline u64 dev_buckets_free(struct bch_fs *c, struct bch_dev *ca)
219 {
220         return __dev_buckets_free(ca, bch2_dev_usage_read(c, ca));
221 }
222
223 /* Filesystem usage: */
224
225 static inline unsigned fs_usage_u64s(struct bch_fs *c)
226 {
227
228         return sizeof(struct bch_fs_usage) / sizeof(u64) +
229                 READ_ONCE(c->replicas.nr);
230 }
231
232 void bch2_fs_usage_scratch_put(struct bch_fs *, struct bch_fs_usage *);
233 struct bch_fs_usage *bch2_fs_usage_scratch_get(struct bch_fs *);
234
235 u64 bch2_fs_usage_read_one(struct bch_fs *, u64 *);
236
237 struct bch_fs_usage *bch2_fs_usage_read(struct bch_fs *);
238
239 void bch2_fs_usage_acc_to_base(struct bch_fs *, unsigned);
240
241 void bch2_fs_usage_to_text(struct printbuf *,
242                            struct bch_fs *, struct bch_fs_usage *);
243
244 u64 bch2_fs_sectors_used(struct bch_fs *, struct bch_fs_usage *);
245
246 struct bch_fs_usage_short
247 bch2_fs_usage_read_short(struct bch_fs *);
248
249 /* key/bucket marking: */
250
251 void bch2_bucket_seq_cleanup(struct bch_fs *);
252 void bch2_fs_usage_initialize(struct bch_fs *);
253
254 void bch2_invalidate_bucket(struct bch_fs *, struct bch_dev *,
255                             size_t, struct bucket_mark *);
256 void bch2_mark_alloc_bucket(struct bch_fs *, struct bch_dev *,
257                             size_t, bool, struct gc_pos, unsigned);
258 void bch2_mark_metadata_bucket(struct bch_fs *, struct bch_dev *,
259                                size_t, enum bch_data_type, unsigned,
260                                struct gc_pos, unsigned);
261
262 int bch2_mark_key_locked(struct bch_fs *, struct bkey_s_c, unsigned, s64,
263                          struct bch_fs_usage *, u64, unsigned);
264 int bch2_mark_key(struct bch_fs *, struct bkey_s_c, unsigned, s64,
265                   struct bch_fs_usage *, u64, unsigned);
266 int bch2_fs_usage_apply(struct bch_fs *, struct bch_fs_usage *,
267                         struct disk_reservation *, unsigned);
268
269 int bch2_mark_overwrite(struct btree_trans *, struct btree_iter *,
270                         struct bkey_s_c, struct bkey_i *,
271                         struct bch_fs_usage *, unsigned, bool);
272 int bch2_mark_update(struct btree_trans *, struct btree_iter *,
273                      struct bkey_i *, struct bch_fs_usage *, unsigned);
274
275 int bch2_replicas_delta_list_apply(struct bch_fs *,
276                                    struct bch_fs_usage *,
277                                    struct replicas_delta_list *);
278 int bch2_trans_mark_key(struct btree_trans *, struct bkey_s_c,
279                         unsigned, s64, unsigned);
280 int bch2_trans_mark_update(struct btree_trans *, struct btree_iter *iter,
281                            struct bkey_i *insert, unsigned);
282 void bch2_trans_fs_usage_apply(struct btree_trans *, struct bch_fs_usage *);
283
284 /* disk reservations: */
285
286 void __bch2_disk_reservation_put(struct bch_fs *, struct disk_reservation *);
287
288 static inline void bch2_disk_reservation_put(struct bch_fs *c,
289                                              struct disk_reservation *res)
290 {
291         if (res->sectors)
292                 __bch2_disk_reservation_put(c, res);
293 }
294
295 #define BCH_DISK_RESERVATION_NOFAIL             (1 << 0)
296
297 int bch2_disk_reservation_add(struct bch_fs *,
298                              struct disk_reservation *,
299                              unsigned, int);
300
301 static inline struct disk_reservation
302 bch2_disk_reservation_init(struct bch_fs *c, unsigned nr_replicas)
303 {
304         return (struct disk_reservation) {
305                 .sectors        = 0,
306 #if 0
307                 /* not used yet: */
308                 .gen            = c->capacity_gen,
309 #endif
310                 .nr_replicas    = nr_replicas,
311         };
312 }
313
314 static inline int bch2_disk_reservation_get(struct bch_fs *c,
315                                             struct disk_reservation *res,
316                                             unsigned sectors,
317                                             unsigned nr_replicas,
318                                             int flags)
319 {
320         *res = bch2_disk_reservation_init(c, nr_replicas);
321
322         return bch2_disk_reservation_add(c, res, sectors * nr_replicas, flags);
323 }
324
325 int bch2_dev_buckets_resize(struct bch_fs *, struct bch_dev *, u64);
326 void bch2_dev_buckets_free(struct bch_dev *);
327 int bch2_dev_buckets_alloc(struct bch_fs *, struct bch_dev *);
328
329 #endif /* _BUCKETS_H */