]> Git Repo - J-linux.git/blob - fs/bcachefs/rebalance.c
Merge tag 'vfs-6.13-rc7.fixes' of git://git.kernel.org/pub/scm/linux/kernel/git/vfs/vfs
[J-linux.git] / fs / bcachefs / rebalance.c
1 // SPDX-License-Identifier: GPL-2.0
2
3 #include "bcachefs.h"
4 #include "alloc_background.h"
5 #include "alloc_foreground.h"
6 #include "btree_iter.h"
7 #include "btree_update.h"
8 #include "btree_write_buffer.h"
9 #include "buckets.h"
10 #include "clock.h"
11 #include "compress.h"
12 #include "disk_groups.h"
13 #include "errcode.h"
14 #include "error.h"
15 #include "inode.h"
16 #include "io_write.h"
17 #include "move.h"
18 #include "rebalance.h"
19 #include "subvolume.h"
20 #include "super-io.h"
21 #include "trace.h"
22
23 #include <linux/freezer.h>
24 #include <linux/kthread.h>
25 #include <linux/sched/cputime.h>
26
27 #define REBALANCE_WORK_SCAN_OFFSET      (U64_MAX - 1)
28
29 static const char * const bch2_rebalance_state_strs[] = {
30 #define x(t) #t,
31         BCH_REBALANCE_STATES()
32         NULL
33 #undef x
34 };
35
36 static int __bch2_set_rebalance_needs_scan(struct btree_trans *trans, u64 inum)
37 {
38         struct btree_iter iter;
39         struct bkey_s_c k;
40         struct bkey_i_cookie *cookie;
41         u64 v;
42         int ret;
43
44         bch2_trans_iter_init(trans, &iter, BTREE_ID_rebalance_work,
45                              SPOS(inum, REBALANCE_WORK_SCAN_OFFSET, U32_MAX),
46                              BTREE_ITER_intent);
47         k = bch2_btree_iter_peek_slot(&iter);
48         ret = bkey_err(k);
49         if (ret)
50                 goto err;
51
52         v = k.k->type == KEY_TYPE_cookie
53                 ? le64_to_cpu(bkey_s_c_to_cookie(k).v->cookie)
54                 : 0;
55
56         cookie = bch2_trans_kmalloc(trans, sizeof(*cookie));
57         ret = PTR_ERR_OR_ZERO(cookie);
58         if (ret)
59                 goto err;
60
61         bkey_cookie_init(&cookie->k_i);
62         cookie->k.p = iter.pos;
63         cookie->v.cookie = cpu_to_le64(v + 1);
64
65         ret = bch2_trans_update(trans, &iter, &cookie->k_i, 0);
66 err:
67         bch2_trans_iter_exit(trans, &iter);
68         return ret;
69 }
70
71 int bch2_set_rebalance_needs_scan(struct bch_fs *c, u64 inum)
72 {
73         int ret = bch2_trans_commit_do(c, NULL, NULL,
74                                        BCH_TRANS_COMMIT_no_enospc|
75                                        BCH_TRANS_COMMIT_lazy_rw,
76                             __bch2_set_rebalance_needs_scan(trans, inum));
77         rebalance_wakeup(c);
78         return ret;
79 }
80
81 int bch2_set_fs_needs_rebalance(struct bch_fs *c)
82 {
83         return bch2_set_rebalance_needs_scan(c, 0);
84 }
85
86 static int bch2_clear_rebalance_needs_scan(struct btree_trans *trans, u64 inum, u64 cookie)
87 {
88         struct btree_iter iter;
89         struct bkey_s_c k;
90         u64 v;
91         int ret;
92
93         bch2_trans_iter_init(trans, &iter, BTREE_ID_rebalance_work,
94                              SPOS(inum, REBALANCE_WORK_SCAN_OFFSET, U32_MAX),
95                              BTREE_ITER_intent);
96         k = bch2_btree_iter_peek_slot(&iter);
97         ret = bkey_err(k);
98         if (ret)
99                 goto err;
100
101         v = k.k->type == KEY_TYPE_cookie
102                 ? le64_to_cpu(bkey_s_c_to_cookie(k).v->cookie)
103                 : 0;
104
105         if (v == cookie)
106                 ret = bch2_btree_delete_at(trans, &iter, 0);
107 err:
108         bch2_trans_iter_exit(trans, &iter);
109         return ret;
110 }
111
112 static struct bkey_s_c next_rebalance_entry(struct btree_trans *trans,
113                                             struct btree_iter *work_iter)
114 {
115         return !kthread_should_stop()
116                 ? bch2_btree_iter_peek(work_iter)
117                 : bkey_s_c_null;
118 }
119
120 static int bch2_bkey_clear_needs_rebalance(struct btree_trans *trans,
121                                            struct btree_iter *iter,
122                                            struct bkey_s_c k)
123 {
124         struct bkey_i *n = bch2_bkey_make_mut(trans, iter, &k, 0);
125         int ret = PTR_ERR_OR_ZERO(n);
126         if (ret)
127                 return ret;
128
129         extent_entry_drop(bkey_i_to_s(n),
130                           (void *) bch2_bkey_rebalance_opts(bkey_i_to_s_c(n)));
131         return bch2_trans_commit(trans, NULL, NULL, BCH_TRANS_COMMIT_no_enospc);
132 }
133
134 static struct bkey_s_c next_rebalance_extent(struct btree_trans *trans,
135                         struct bpos work_pos,
136                         struct btree_iter *extent_iter,
137                         struct data_update_opts *data_opts)
138 {
139         struct bch_fs *c = trans->c;
140         struct bkey_s_c k;
141
142         bch2_trans_iter_exit(trans, extent_iter);
143         bch2_trans_iter_init(trans, extent_iter,
144                              work_pos.inode ? BTREE_ID_extents : BTREE_ID_reflink,
145                              work_pos,
146                              BTREE_ITER_all_snapshots);
147         k = bch2_btree_iter_peek_slot(extent_iter);
148         if (bkey_err(k))
149                 return k;
150
151         const struct bch_extent_rebalance *r = k.k ? bch2_bkey_rebalance_opts(k) : NULL;
152         if (!r) {
153                 /* raced due to btree write buffer, nothing to do */
154                 return bkey_s_c_null;
155         }
156
157         memset(data_opts, 0, sizeof(*data_opts));
158
159         data_opts->rewrite_ptrs         =
160                 bch2_bkey_ptrs_need_rebalance(c, k, r->target, r->compression);
161         data_opts->target               = r->target;
162         data_opts->write_flags          |= BCH_WRITE_ONLY_SPECIFIED_DEVS;
163
164         if (!data_opts->rewrite_ptrs) {
165                 /*
166                  * device we would want to write to offline? devices in target
167                  * changed?
168                  *
169                  * We'll now need a full scan before this extent is picked up
170                  * again:
171                  */
172                 int ret = bch2_bkey_clear_needs_rebalance(trans, extent_iter, k);
173                 if (ret)
174                         return bkey_s_c_err(ret);
175                 return bkey_s_c_null;
176         }
177
178         if (trace_rebalance_extent_enabled()) {
179                 struct printbuf buf = PRINTBUF;
180
181                 prt_str(&buf, "target=");
182                 bch2_target_to_text(&buf, c, r->target);
183                 prt_str(&buf, " compression=");
184                 bch2_compression_opt_to_text(&buf, r->compression);
185                 prt_str(&buf, " ");
186                 bch2_bkey_val_to_text(&buf, c, k);
187
188                 trace_rebalance_extent(c, buf.buf);
189                 printbuf_exit(&buf);
190         }
191
192         return k;
193 }
194
195 noinline_for_stack
196 static int do_rebalance_extent(struct moving_context *ctxt,
197                                struct bpos work_pos,
198                                struct btree_iter *extent_iter)
199 {
200         struct btree_trans *trans = ctxt->trans;
201         struct bch_fs *c = trans->c;
202         struct bch_fs_rebalance *r = &trans->c->rebalance;
203         struct data_update_opts data_opts;
204         struct bch_io_opts io_opts;
205         struct bkey_s_c k;
206         struct bkey_buf sk;
207         int ret;
208
209         ctxt->stats = &r->work_stats;
210         r->state = BCH_REBALANCE_working;
211
212         bch2_bkey_buf_init(&sk);
213
214         ret = bkey_err(k = next_rebalance_extent(trans, work_pos,
215                                                  extent_iter, &data_opts));
216         if (ret || !k.k)
217                 goto out;
218
219         ret = bch2_move_get_io_opts_one(trans, &io_opts, k);
220         if (ret)
221                 goto out;
222
223         atomic64_add(k.k->size, &ctxt->stats->sectors_seen);
224
225         /*
226          * The iterator gets unlocked by __bch2_read_extent - need to
227          * save a copy of @k elsewhere:
228          */
229         bch2_bkey_buf_reassemble(&sk, c, k);
230         k = bkey_i_to_s_c(sk.k);
231
232         ret = bch2_move_extent(ctxt, NULL, extent_iter, k, io_opts, data_opts);
233         if (ret) {
234                 if (bch2_err_matches(ret, ENOMEM)) {
235                         /* memory allocation failure, wait for some IO to finish */
236                         bch2_move_ctxt_wait_for_io(ctxt);
237                         ret = -BCH_ERR_transaction_restart_nested;
238                 }
239
240                 if (bch2_err_matches(ret, BCH_ERR_transaction_restart))
241                         goto out;
242
243                 /* skip it and continue, XXX signal failure */
244                 ret = 0;
245         }
246 out:
247         bch2_bkey_buf_exit(&sk, c);
248         return ret;
249 }
250
251 static bool rebalance_pred(struct bch_fs *c, void *arg,
252                            struct bkey_s_c k,
253                            struct bch_io_opts *io_opts,
254                            struct data_update_opts *data_opts)
255 {
256         unsigned target, compression;
257
258         if (k.k->p.inode) {
259                 target          = io_opts->background_target;
260                 compression     = background_compression(*io_opts);
261         } else {
262                 const struct bch_extent_rebalance *r = bch2_bkey_rebalance_opts(k);
263
264                 target          = r ? r->target : io_opts->background_target;
265                 compression     = r ? r->compression : background_compression(*io_opts);
266         }
267
268         data_opts->rewrite_ptrs         = bch2_bkey_ptrs_need_rebalance(c, k, target, compression);
269         data_opts->target               = target;
270         data_opts->write_flags          |= BCH_WRITE_ONLY_SPECIFIED_DEVS;
271         return data_opts->rewrite_ptrs != 0;
272 }
273
274 static int do_rebalance_scan(struct moving_context *ctxt, u64 inum, u64 cookie)
275 {
276         struct btree_trans *trans = ctxt->trans;
277         struct bch_fs_rebalance *r = &trans->c->rebalance;
278         int ret;
279
280         bch2_move_stats_init(&r->scan_stats, "rebalance_scan");
281         ctxt->stats = &r->scan_stats;
282
283         if (!inum) {
284                 r->scan_start   = BBPOS_MIN;
285                 r->scan_end     = BBPOS_MAX;
286         } else {
287                 r->scan_start   = BBPOS(BTREE_ID_extents, POS(inum, 0));
288                 r->scan_end     = BBPOS(BTREE_ID_extents, POS(inum, U64_MAX));
289         }
290
291         r->state = BCH_REBALANCE_scanning;
292
293         ret = __bch2_move_data(ctxt, r->scan_start, r->scan_end, rebalance_pred, NULL) ?:
294                 commit_do(trans, NULL, NULL, BCH_TRANS_COMMIT_no_enospc,
295                           bch2_clear_rebalance_needs_scan(trans, inum, cookie));
296
297         bch2_move_stats_exit(&r->scan_stats, trans->c);
298         return ret;
299 }
300
301 static void rebalance_wait(struct bch_fs *c)
302 {
303         struct bch_fs_rebalance *r = &c->rebalance;
304         struct io_clock *clock = &c->io_clock[WRITE];
305         u64 now = atomic64_read(&clock->now);
306         u64 min_member_capacity = bch2_min_rw_member_capacity(c);
307
308         if (min_member_capacity == U64_MAX)
309                 min_member_capacity = 128 * 2048;
310
311         r->wait_iotime_end              = now + (min_member_capacity >> 6);
312
313         if (r->state != BCH_REBALANCE_waiting) {
314                 r->wait_iotime_start    = now;
315                 r->wait_wallclock_start = ktime_get_real_ns();
316                 r->state                = BCH_REBALANCE_waiting;
317         }
318
319         bch2_kthread_io_clock_wait(clock, r->wait_iotime_end, MAX_SCHEDULE_TIMEOUT);
320 }
321
322 static int do_rebalance(struct moving_context *ctxt)
323 {
324         struct btree_trans *trans = ctxt->trans;
325         struct bch_fs *c = trans->c;
326         struct bch_fs_rebalance *r = &c->rebalance;
327         struct btree_iter rebalance_work_iter, extent_iter = { NULL };
328         struct bkey_s_c k;
329         int ret = 0;
330
331         bch2_trans_begin(trans);
332
333         bch2_move_stats_init(&r->work_stats, "rebalance_work");
334         bch2_move_stats_init(&r->scan_stats, "rebalance_scan");
335
336         bch2_trans_iter_init(trans, &rebalance_work_iter,
337                              BTREE_ID_rebalance_work, POS_MIN,
338                              BTREE_ITER_all_snapshots);
339
340         while (!bch2_move_ratelimit(ctxt)) {
341                 if (!r->enabled) {
342                         bch2_moving_ctxt_flush_all(ctxt);
343                         kthread_wait_freezable(r->enabled ||
344                                                kthread_should_stop());
345                 }
346
347                 if (kthread_should_stop())
348                         break;
349
350                 bch2_trans_begin(trans);
351
352                 ret = bkey_err(k = next_rebalance_entry(trans, &rebalance_work_iter));
353                 if (bch2_err_matches(ret, BCH_ERR_transaction_restart))
354                         continue;
355                 if (ret || !k.k)
356                         break;
357
358                 ret = k.k->type == KEY_TYPE_cookie
359                         ? do_rebalance_scan(ctxt, k.k->p.inode,
360                                             le64_to_cpu(bkey_s_c_to_cookie(k).v->cookie))
361                         : do_rebalance_extent(ctxt, k.k->p, &extent_iter);
362
363                 if (bch2_err_matches(ret, BCH_ERR_transaction_restart))
364                         continue;
365                 if (ret)
366                         break;
367
368                 bch2_btree_iter_advance(&rebalance_work_iter);
369         }
370
371         bch2_trans_iter_exit(trans, &extent_iter);
372         bch2_trans_iter_exit(trans, &rebalance_work_iter);
373         bch2_move_stats_exit(&r->scan_stats, c);
374
375         if (!ret &&
376             !kthread_should_stop() &&
377             !atomic64_read(&r->work_stats.sectors_seen) &&
378             !atomic64_read(&r->scan_stats.sectors_seen)) {
379                 bch2_moving_ctxt_flush_all(ctxt);
380                 bch2_trans_unlock_long(trans);
381                 rebalance_wait(c);
382         }
383
384         if (!bch2_err_matches(ret, EROFS))
385                 bch_err_fn(c, ret);
386         return ret;
387 }
388
389 static int bch2_rebalance_thread(void *arg)
390 {
391         struct bch_fs *c = arg;
392         struct bch_fs_rebalance *r = &c->rebalance;
393         struct moving_context ctxt;
394
395         set_freezable();
396
397         bch2_moving_ctxt_init(&ctxt, c, NULL, &r->work_stats,
398                               writepoint_ptr(&c->rebalance_write_point),
399                               true);
400
401         while (!kthread_should_stop() && !do_rebalance(&ctxt))
402                 ;
403
404         bch2_moving_ctxt_exit(&ctxt);
405
406         return 0;
407 }
408
409 void bch2_rebalance_status_to_text(struct printbuf *out, struct bch_fs *c)
410 {
411         struct bch_fs_rebalance *r = &c->rebalance;
412
413         prt_str(out, bch2_rebalance_state_strs[r->state]);
414         prt_newline(out);
415         printbuf_indent_add(out, 2);
416
417         switch (r->state) {
418         case BCH_REBALANCE_waiting: {
419                 u64 now = atomic64_read(&c->io_clock[WRITE].now);
420
421                 prt_str(out, "io wait duration:  ");
422                 bch2_prt_human_readable_s64(out, (r->wait_iotime_end - r->wait_iotime_start) << 9);
423                 prt_newline(out);
424
425                 prt_str(out, "io wait remaining: ");
426                 bch2_prt_human_readable_s64(out, (r->wait_iotime_end - now) << 9);
427                 prt_newline(out);
428
429                 prt_str(out, "duration waited:   ");
430                 bch2_pr_time_units(out, ktime_get_real_ns() - r->wait_wallclock_start);
431                 prt_newline(out);
432                 break;
433         }
434         case BCH_REBALANCE_working:
435                 bch2_move_stats_to_text(out, &r->work_stats);
436                 break;
437         case BCH_REBALANCE_scanning:
438                 bch2_move_stats_to_text(out, &r->scan_stats);
439                 break;
440         }
441         prt_newline(out);
442         printbuf_indent_sub(out, 2);
443 }
444
445 void bch2_rebalance_stop(struct bch_fs *c)
446 {
447         struct task_struct *p;
448
449         c->rebalance.pd.rate.rate = UINT_MAX;
450         bch2_ratelimit_reset(&c->rebalance.pd.rate);
451
452         p = rcu_dereference_protected(c->rebalance.thread, 1);
453         c->rebalance.thread = NULL;
454
455         if (p) {
456                 /* for sychronizing with rebalance_wakeup() */
457                 synchronize_rcu();
458
459                 kthread_stop(p);
460                 put_task_struct(p);
461         }
462 }
463
464 int bch2_rebalance_start(struct bch_fs *c)
465 {
466         struct task_struct *p;
467         int ret;
468
469         if (c->rebalance.thread)
470                 return 0;
471
472         if (c->opts.nochanges)
473                 return 0;
474
475         p = kthread_create(bch2_rebalance_thread, c, "bch-rebalance/%s", c->name);
476         ret = PTR_ERR_OR_ZERO(p);
477         bch_err_msg(c, ret, "creating rebalance thread");
478         if (ret)
479                 return ret;
480
481         get_task_struct(p);
482         rcu_assign_pointer(c->rebalance.thread, p);
483         wake_up_process(p);
484         return 0;
485 }
486
487 void bch2_fs_rebalance_init(struct bch_fs *c)
488 {
489         bch2_pd_controller_init(&c->rebalance.pd);
490 }
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