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drbd: Work on the Ahead -> SyncSource transition
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b411b363
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1/*
2 drbd_worker.c
3
4 This file is part of DRBD by Philipp Reisner and Lars Ellenberg.
5
6 Copyright (C) 2001-2008, LINBIT Information Technologies GmbH.
7 Copyright (C) 1999-2008, Philipp Reisner <philipp.reisner@linbit.com>.
8 Copyright (C) 2002-2008, Lars Ellenberg <lars.ellenberg@linbit.com>.
9
10 drbd is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 2, or (at your option)
13 any later version.
14
15 drbd is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
19
20 You should have received a copy of the GNU General Public License
21 along with drbd; see the file COPYING. If not, write to
22 the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
23
24 */
25
b411b363 26#include <linux/module.h>
b411b363
PR
27#include <linux/drbd.h>
28#include <linux/sched.h>
b411b363
PR
29#include <linux/wait.h>
30#include <linux/mm.h>
31#include <linux/memcontrol.h>
32#include <linux/mm_inline.h>
33#include <linux/slab.h>
34#include <linux/random.h>
b411b363
PR
35#include <linux/string.h>
36#include <linux/scatterlist.h>
37
38#include "drbd_int.h"
39#include "drbd_req.h"
b411b363 40
b411b363 41static int w_make_ov_request(struct drbd_conf *mdev, struct drbd_work *w, int cancel);
9d77a5fe
PR
42static int w_make_resync_request(struct drbd_conf *mdev,
43 struct drbd_work *w, int cancel);
b411b363
PR
44
45
46
47/* defined here:
48 drbd_md_io_complete
45bb912b 49 drbd_endio_sec
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50 drbd_endio_pri
51
52 * more endio handlers:
53 atodb_endio in drbd_actlog.c
54 drbd_bm_async_io_complete in drbd_bitmap.c
55
56 * For all these callbacks, note the following:
57 * The callbacks will be called in irq context by the IDE drivers,
58 * and in Softirqs/Tasklets/BH context by the SCSI drivers.
59 * Try to get the locking right :)
60 *
61 */
62
63
64/* About the global_state_lock
65 Each state transition on an device holds a read lock. In case we have
66 to evaluate the sync after dependencies, we grab a write lock, because
67 we need stable states on all devices for that. */
68rwlock_t global_state_lock;
69
70/* used for synchronous meta data and bitmap IO
71 * submitted by drbd_md_sync_page_io()
72 */
73void drbd_md_io_complete(struct bio *bio, int error)
74{
75 struct drbd_md_io *md_io;
76
77 md_io = (struct drbd_md_io *)bio->bi_private;
78 md_io->error = error;
79
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PR
80 complete(&md_io->event);
81}
82
83/* reads on behalf of the partner,
84 * "submitted" by the receiver
85 */
45bb912b 86void drbd_endio_read_sec_final(struct drbd_epoch_entry *e) __releases(local)
b411b363
PR
87{
88 unsigned long flags = 0;
45bb912b 89 struct drbd_conf *mdev = e->mdev;
b411b363
PR
90
91 D_ASSERT(e->block_id != ID_VACANT);
92
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PR
93 spin_lock_irqsave(&mdev->req_lock, flags);
94 mdev->read_cnt += e->size >> 9;
95 list_del(&e->w.list);
96 if (list_empty(&mdev->read_ee))
97 wake_up(&mdev->ee_wait);
45bb912b 98 if (test_bit(__EE_WAS_ERROR, &e->flags))
81e84650 99 __drbd_chk_io_error(mdev, false);
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PR
100 spin_unlock_irqrestore(&mdev->req_lock, flags);
101
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102 drbd_queue_work(&mdev->data.work, &e->w);
103 put_ldev(mdev);
b411b363
PR
104}
105
106/* writes on behalf of the partner, or resync writes,
45bb912b
LE
107 * "submitted" by the receiver, final stage. */
108static void drbd_endio_write_sec_final(struct drbd_epoch_entry *e) __releases(local)
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PR
109{
110 unsigned long flags = 0;
45bb912b 111 struct drbd_conf *mdev = e->mdev;
b411b363
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112 sector_t e_sector;
113 int do_wake;
114 int is_syncer_req;
115 int do_al_complete_io;
b411b363 116
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PR
117 D_ASSERT(e->block_id != ID_VACANT);
118
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PR
119 /* after we moved e to done_ee,
120 * we may no longer access it,
121 * it may be freed/reused already!
122 * (as soon as we release the req_lock) */
123 e_sector = e->sector;
124 do_al_complete_io = e->flags & EE_CALL_AL_COMPLETE_IO;
45bb912b 125 is_syncer_req = is_syncer_block_id(e->block_id);
b411b363 126
45bb912b
LE
127 spin_lock_irqsave(&mdev->req_lock, flags);
128 mdev->writ_cnt += e->size >> 9;
b411b363
PR
129 list_del(&e->w.list); /* has been on active_ee or sync_ee */
130 list_add_tail(&e->w.list, &mdev->done_ee);
131
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PR
132 /* No hlist_del_init(&e->colision) here, we did not send the Ack yet,
133 * neither did we wake possibly waiting conflicting requests.
134 * done from "drbd_process_done_ee" within the appropriate w.cb
135 * (e_end_block/e_end_resync_block) or from _drbd_clear_done_ee */
136
137 do_wake = is_syncer_req
138 ? list_empty(&mdev->sync_ee)
139 : list_empty(&mdev->active_ee);
140
45bb912b 141 if (test_bit(__EE_WAS_ERROR, &e->flags))
81e84650 142 __drbd_chk_io_error(mdev, false);
b411b363
PR
143 spin_unlock_irqrestore(&mdev->req_lock, flags);
144
145 if (is_syncer_req)
146 drbd_rs_complete_io(mdev, e_sector);
147
148 if (do_wake)
149 wake_up(&mdev->ee_wait);
150
151 if (do_al_complete_io)
152 drbd_al_complete_io(mdev, e_sector);
153
154 wake_asender(mdev);
155 put_ldev(mdev);
45bb912b 156}
b411b363 157
45bb912b
LE
158/* writes on behalf of the partner, or resync writes,
159 * "submitted" by the receiver.
160 */
161void drbd_endio_sec(struct bio *bio, int error)
162{
163 struct drbd_epoch_entry *e = bio->bi_private;
164 struct drbd_conf *mdev = e->mdev;
165 int uptodate = bio_flagged(bio, BIO_UPTODATE);
166 int is_write = bio_data_dir(bio) == WRITE;
167
07194272 168 if (error && __ratelimit(&drbd_ratelimit_state))
45bb912b
LE
169 dev_warn(DEV, "%s: error=%d s=%llus\n",
170 is_write ? "write" : "read", error,
171 (unsigned long long)e->sector);
172 if (!error && !uptodate) {
07194272
LE
173 if (__ratelimit(&drbd_ratelimit_state))
174 dev_warn(DEV, "%s: setting error to -EIO s=%llus\n",
175 is_write ? "write" : "read",
176 (unsigned long long)e->sector);
45bb912b
LE
177 /* strange behavior of some lower level drivers...
178 * fail the request by clearing the uptodate flag,
179 * but do not return any error?! */
180 error = -EIO;
181 }
182
183 if (error)
184 set_bit(__EE_WAS_ERROR, &e->flags);
185
186 bio_put(bio); /* no need for the bio anymore */
187 if (atomic_dec_and_test(&e->pending_bios)) {
188 if (is_write)
189 drbd_endio_write_sec_final(e);
190 else
191 drbd_endio_read_sec_final(e);
192 }
b411b363
PR
193}
194
195/* read, readA or write requests on R_PRIMARY coming from drbd_make_request
196 */
197void drbd_endio_pri(struct bio *bio, int error)
198{
a115413d 199 unsigned long flags;
b411b363
PR
200 struct drbd_request *req = bio->bi_private;
201 struct drbd_conf *mdev = req->mdev;
a115413d 202 struct bio_and_error m;
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PR
203 enum drbd_req_event what;
204 int uptodate = bio_flagged(bio, BIO_UPTODATE);
205
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PR
206 if (!error && !uptodate) {
207 dev_warn(DEV, "p %s: setting error to -EIO\n",
208 bio_data_dir(bio) == WRITE ? "write" : "read");
209 /* strange behavior of some lower level drivers...
210 * fail the request by clearing the uptodate flag,
211 * but do not return any error?! */
212 error = -EIO;
213 }
214
b411b363
PR
215 /* to avoid recursion in __req_mod */
216 if (unlikely(error)) {
217 what = (bio_data_dir(bio) == WRITE)
218 ? write_completed_with_error
5c3c7e64 219 : (bio_rw(bio) == READ)
b411b363
PR
220 ? read_completed_with_error
221 : read_ahead_completed_with_error;
222 } else
223 what = completed_ok;
224
225 bio_put(req->private_bio);
226 req->private_bio = ERR_PTR(error);
227
a115413d
LE
228 /* not req_mod(), we need irqsave here! */
229 spin_lock_irqsave(&mdev->req_lock, flags);
230 __req_mod(req, what, &m);
231 spin_unlock_irqrestore(&mdev->req_lock, flags);
232
233 if (m.bio)
234 complete_master_bio(mdev, &m);
b411b363
PR
235}
236
b411b363
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237int w_read_retry_remote(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
238{
239 struct drbd_request *req = container_of(w, struct drbd_request, w);
240
241 /* We should not detach for read io-error,
242 * but try to WRITE the P_DATA_REPLY to the failed location,
243 * to give the disk the chance to relocate that block */
244
245 spin_lock_irq(&mdev->req_lock);
d255e5ff
LE
246 if (cancel || mdev->state.pdsk != D_UP_TO_DATE) {
247 _req_mod(req, read_retry_remote_canceled);
b411b363 248 spin_unlock_irq(&mdev->req_lock);
b411b363
PR
249 return 1;
250 }
251 spin_unlock_irq(&mdev->req_lock);
252
253 return w_send_read_req(mdev, w, 0);
254}
255
45bb912b
LE
256void drbd_csum_ee(struct drbd_conf *mdev, struct crypto_hash *tfm, struct drbd_epoch_entry *e, void *digest)
257{
258 struct hash_desc desc;
259 struct scatterlist sg;
260 struct page *page = e->pages;
261 struct page *tmp;
262 unsigned len;
263
264 desc.tfm = tfm;
265 desc.flags = 0;
266
267 sg_init_table(&sg, 1);
268 crypto_hash_init(&desc);
269
270 while ((tmp = page_chain_next(page))) {
271 /* all but the last page will be fully used */
272 sg_set_page(&sg, page, PAGE_SIZE, 0);
273 crypto_hash_update(&desc, &sg, sg.length);
274 page = tmp;
275 }
276 /* and now the last, possibly only partially used page */
277 len = e->size & (PAGE_SIZE - 1);
278 sg_set_page(&sg, page, len ?: PAGE_SIZE, 0);
279 crypto_hash_update(&desc, &sg, sg.length);
280 crypto_hash_final(&desc, digest);
281}
282
283void drbd_csum_bio(struct drbd_conf *mdev, struct crypto_hash *tfm, struct bio *bio, void *digest)
b411b363
PR
284{
285 struct hash_desc desc;
286 struct scatterlist sg;
287 struct bio_vec *bvec;
288 int i;
289
290 desc.tfm = tfm;
291 desc.flags = 0;
292
293 sg_init_table(&sg, 1);
294 crypto_hash_init(&desc);
295
296 __bio_for_each_segment(bvec, bio, i, 0) {
297 sg_set_page(&sg, bvec->bv_page, bvec->bv_len, bvec->bv_offset);
298 crypto_hash_update(&desc, &sg, sg.length);
299 }
300 crypto_hash_final(&desc, digest);
301}
302
303static int w_e_send_csum(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
304{
305 struct drbd_epoch_entry *e = container_of(w, struct drbd_epoch_entry, w);
306 int digest_size;
307 void *digest;
308 int ok;
309
310 D_ASSERT(e->block_id == DRBD_MAGIC + 0xbeef);
311
312 if (unlikely(cancel)) {
313 drbd_free_ee(mdev, e);
314 return 1;
315 }
316
45bb912b 317 if (likely((e->flags & EE_WAS_ERROR) == 0)) {
b411b363
PR
318 digest_size = crypto_hash_digestsize(mdev->csums_tfm);
319 digest = kmalloc(digest_size, GFP_NOIO);
320 if (digest) {
45bb912b 321 drbd_csum_ee(mdev, mdev->csums_tfm, e, digest);
b411b363
PR
322
323 inc_rs_pending(mdev);
324 ok = drbd_send_drequest_csum(mdev,
325 e->sector,
326 e->size,
327 digest,
328 digest_size,
329 P_CSUM_RS_REQUEST);
330 kfree(digest);
331 } else {
332 dev_err(DEV, "kmalloc() of digest failed.\n");
333 ok = 0;
334 }
335 } else
336 ok = 1;
337
338 drbd_free_ee(mdev, e);
339
340 if (unlikely(!ok))
341 dev_err(DEV, "drbd_send_drequest(..., csum) failed\n");
342 return ok;
343}
344
345#define GFP_TRY (__GFP_HIGHMEM | __GFP_NOWARN)
346
347static int read_for_csum(struct drbd_conf *mdev, sector_t sector, int size)
348{
349 struct drbd_epoch_entry *e;
350
351 if (!get_ldev(mdev))
80a40e43 352 return -EIO;
b411b363 353
e3555d85 354 if (drbd_rs_should_slow_down(mdev, sector))
0f0601f4
LE
355 goto defer;
356
b411b363
PR
357 /* GFP_TRY, because if there is no memory available right now, this may
358 * be rescheduled for later. It is "only" background resync, after all. */
359 e = drbd_alloc_ee(mdev, DRBD_MAGIC+0xbeef, sector, size, GFP_TRY);
45bb912b 360 if (!e)
80a40e43 361 goto defer;
b411b363 362
80a40e43 363 e->w.cb = w_e_send_csum;
b411b363
PR
364 spin_lock_irq(&mdev->req_lock);
365 list_add(&e->w.list, &mdev->read_ee);
366 spin_unlock_irq(&mdev->req_lock);
367
0f0601f4 368 atomic_add(size >> 9, &mdev->rs_sect_ev);
45bb912b 369 if (drbd_submit_ee(mdev, e, READ, DRBD_FAULT_RS_RD) == 0)
80a40e43 370 return 0;
b411b363 371
22cc37a9
LE
372 /* drbd_submit_ee currently fails for one reason only:
373 * not being able to allocate enough bios.
374 * Is dropping the connection going to help? */
375 spin_lock_irq(&mdev->req_lock);
376 list_del(&e->w.list);
377 spin_unlock_irq(&mdev->req_lock);
378
45bb912b 379 drbd_free_ee(mdev, e);
80a40e43 380defer:
45bb912b 381 put_ldev(mdev);
80a40e43 382 return -EAGAIN;
b411b363
PR
383}
384
794abb75 385int w_resync_timer(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
b411b363 386{
63106d3c
PR
387 switch (mdev->state.conn) {
388 case C_VERIFY_S:
794abb75 389 w_make_ov_request(mdev, w, cancel);
63106d3c
PR
390 break;
391 case C_SYNC_TARGET:
794abb75 392 w_make_resync_request(mdev, w, cancel);
63106d3c 393 break;
b411b363
PR
394 }
395
794abb75
PR
396 return 1;
397}
398
399void resync_timer_fn(unsigned long data)
400{
401 struct drbd_conf *mdev = (struct drbd_conf *) data;
402
403 if (list_empty(&mdev->resync_work.list))
b411b363
PR
404 drbd_queue_work(&mdev->data.work, &mdev->resync_work);
405}
406
778f271d
PR
407static void fifo_set(struct fifo_buffer *fb, int value)
408{
409 int i;
410
411 for (i = 0; i < fb->size; i++)
f10f2623 412 fb->values[i] = value;
778f271d
PR
413}
414
415static int fifo_push(struct fifo_buffer *fb, int value)
416{
417 int ov;
418
419 ov = fb->values[fb->head_index];
420 fb->values[fb->head_index++] = value;
421
422 if (fb->head_index >= fb->size)
423 fb->head_index = 0;
424
425 return ov;
426}
427
428static void fifo_add_val(struct fifo_buffer *fb, int value)
429{
430 int i;
431
432 for (i = 0; i < fb->size; i++)
433 fb->values[i] += value;
434}
435
9d77a5fe 436static int drbd_rs_controller(struct drbd_conf *mdev)
778f271d
PR
437{
438 unsigned int sect_in; /* Number of sectors that came in since the last turn */
439 unsigned int want; /* The number of sectors we want in the proxy */
440 int req_sect; /* Number of sectors to request in this turn */
441 int correction; /* Number of sectors more we need in the proxy*/
442 int cps; /* correction per invocation of drbd_rs_controller() */
443 int steps; /* Number of time steps to plan ahead */
444 int curr_corr;
445 int max_sect;
446
447 sect_in = atomic_xchg(&mdev->rs_sect_in, 0); /* Number of sectors that came in */
448 mdev->rs_in_flight -= sect_in;
449
450 spin_lock(&mdev->peer_seq_lock); /* get an atomic view on mdev->rs_plan_s */
451
452 steps = mdev->rs_plan_s.size; /* (mdev->sync_conf.c_plan_ahead * 10 * SLEEP_TIME) / HZ; */
453
454 if (mdev->rs_in_flight + sect_in == 0) { /* At start of resync */
455 want = ((mdev->sync_conf.rate * 2 * SLEEP_TIME) / HZ) * steps;
456 } else { /* normal path */
457 want = mdev->sync_conf.c_fill_target ? mdev->sync_conf.c_fill_target :
458 sect_in * mdev->sync_conf.c_delay_target * HZ / (SLEEP_TIME * 10);
459 }
460
461 correction = want - mdev->rs_in_flight - mdev->rs_planed;
462
463 /* Plan ahead */
464 cps = correction / steps;
465 fifo_add_val(&mdev->rs_plan_s, cps);
466 mdev->rs_planed += cps * steps;
467
468 /* What we do in this step */
469 curr_corr = fifo_push(&mdev->rs_plan_s, 0);
470 spin_unlock(&mdev->peer_seq_lock);
471 mdev->rs_planed -= curr_corr;
472
473 req_sect = sect_in + curr_corr;
474 if (req_sect < 0)
475 req_sect = 0;
476
477 max_sect = (mdev->sync_conf.c_max_rate * 2 * SLEEP_TIME) / HZ;
478 if (req_sect > max_sect)
479 req_sect = max_sect;
480
481 /*
482 dev_warn(DEV, "si=%u if=%d wa=%u co=%d st=%d cps=%d pl=%d cc=%d rs=%d\n",
483 sect_in, mdev->rs_in_flight, want, correction,
484 steps, cps, mdev->rs_planed, curr_corr, req_sect);
485 */
486
487 return req_sect;
488}
489
9d77a5fe 490static int drbd_rs_number_requests(struct drbd_conf *mdev)
e65f440d
LE
491{
492 int number;
493 if (mdev->rs_plan_s.size) { /* mdev->sync_conf.c_plan_ahead */
494 number = drbd_rs_controller(mdev) >> (BM_BLOCK_SHIFT - 9);
495 mdev->c_sync_rate = number * HZ * (BM_BLOCK_SIZE / 1024) / SLEEP_TIME;
496 } else {
497 mdev->c_sync_rate = mdev->sync_conf.rate;
498 number = SLEEP_TIME * mdev->c_sync_rate / ((BM_BLOCK_SIZE / 1024) * HZ);
499 }
500
e65f440d
LE
501 /* ignore the amount of pending requests, the resync controller should
502 * throttle down to incoming reply rate soon enough anyways. */
503 return number;
504}
505
9d77a5fe
PR
506static int w_make_resync_request(struct drbd_conf *mdev,
507 struct drbd_work *w, int cancel)
b411b363
PR
508{
509 unsigned long bit;
510 sector_t sector;
511 const sector_t capacity = drbd_get_capacity(mdev->this_bdev);
1816a2b4 512 int max_bio_size;
e65f440d 513 int number, rollback_i, size;
b411b363 514 int align, queued, sndbuf;
0f0601f4 515 int i = 0;
b411b363
PR
516
517 if (unlikely(cancel))
518 return 1;
519
af85e8e8
LE
520 if (mdev->rs_total == 0) {
521 /* empty resync? */
522 drbd_resync_finished(mdev);
523 return 1;
524 }
525
b411b363
PR
526 if (!get_ldev(mdev)) {
527 /* Since we only need to access mdev->rsync a
528 get_ldev_if_state(mdev,D_FAILED) would be sufficient, but
529 to continue resync with a broken disk makes no sense at
530 all */
531 dev_err(DEV, "Disk broke down during resync!\n");
b411b363
PR
532 return 1;
533 }
534
bb3d000c
LE
535 /* starting with drbd 8.3.8, we can handle multi-bio EEs,
536 * if it should be necessary */
1816a2b4
LE
537 max_bio_size =
538 mdev->agreed_pro_version < 94 ? queue_max_hw_sectors(mdev->rq_queue) << 9 :
539 mdev->agreed_pro_version < 95 ? DRBD_MAX_SIZE_H80_PACKET : DRBD_MAX_BIO_SIZE;
bb3d000c 540
e65f440d
LE
541 number = drbd_rs_number_requests(mdev);
542 if (number == 0)
0f0601f4 543 goto requeue;
b411b363 544
b411b363
PR
545 for (i = 0; i < number; i++) {
546 /* Stop generating RS requests, when half of the send buffer is filled */
547 mutex_lock(&mdev->data.mutex);
548 if (mdev->data.socket) {
549 queued = mdev->data.socket->sk->sk_wmem_queued;
550 sndbuf = mdev->data.socket->sk->sk_sndbuf;
551 } else {
552 queued = 1;
553 sndbuf = 0;
554 }
555 mutex_unlock(&mdev->data.mutex);
556 if (queued > sndbuf / 2)
557 goto requeue;
558
559next_sector:
560 size = BM_BLOCK_SIZE;
561 bit = drbd_bm_find_next(mdev, mdev->bm_resync_fo);
562
4b0715f0 563 if (bit == DRBD_END_OF_BITMAP) {
b411b363 564 mdev->bm_resync_fo = drbd_bm_bits(mdev);
b411b363
PR
565 put_ldev(mdev);
566 return 1;
567 }
568
569 sector = BM_BIT_TO_SECT(bit);
570
e3555d85
PR
571 if (drbd_rs_should_slow_down(mdev, sector) ||
572 drbd_try_rs_begin_io(mdev, sector)) {
b411b363
PR
573 mdev->bm_resync_fo = bit;
574 goto requeue;
575 }
576 mdev->bm_resync_fo = bit + 1;
577
578 if (unlikely(drbd_bm_test_bit(mdev, bit) == 0)) {
579 drbd_rs_complete_io(mdev, sector);
580 goto next_sector;
581 }
582
1816a2b4 583#if DRBD_MAX_BIO_SIZE > BM_BLOCK_SIZE
b411b363
PR
584 /* try to find some adjacent bits.
585 * we stop if we have already the maximum req size.
586 *
587 * Additionally always align bigger requests, in order to
588 * be prepared for all stripe sizes of software RAIDs.
b411b363
PR
589 */
590 align = 1;
d207450c 591 rollback_i = i;
b411b363 592 for (;;) {
1816a2b4 593 if (size + BM_BLOCK_SIZE > max_bio_size)
b411b363
PR
594 break;
595
596 /* Be always aligned */
597 if (sector & ((1<<(align+3))-1))
598 break;
599
600 /* do not cross extent boundaries */
601 if (((bit+1) & BM_BLOCKS_PER_BM_EXT_MASK) == 0)
602 break;
603 /* now, is it actually dirty, after all?
604 * caution, drbd_bm_test_bit is tri-state for some
605 * obscure reason; ( b == 0 ) would get the out-of-band
606 * only accidentally right because of the "oddly sized"
607 * adjustment below */
608 if (drbd_bm_test_bit(mdev, bit+1) != 1)
609 break;
610 bit++;
611 size += BM_BLOCK_SIZE;
612 if ((BM_BLOCK_SIZE << align) <= size)
613 align++;
614 i++;
615 }
616 /* if we merged some,
617 * reset the offset to start the next drbd_bm_find_next from */
618 if (size > BM_BLOCK_SIZE)
619 mdev->bm_resync_fo = bit + 1;
620#endif
621
622 /* adjust very last sectors, in case we are oddly sized */
623 if (sector + (size>>9) > capacity)
624 size = (capacity-sector)<<9;
625 if (mdev->agreed_pro_version >= 89 && mdev->csums_tfm) {
626 switch (read_for_csum(mdev, sector, size)) {
80a40e43 627 case -EIO: /* Disk failure */
b411b363
PR
628 put_ldev(mdev);
629 return 0;
80a40e43 630 case -EAGAIN: /* allocation failed, or ldev busy */
b411b363
PR
631 drbd_rs_complete_io(mdev, sector);
632 mdev->bm_resync_fo = BM_SECT_TO_BIT(sector);
d207450c 633 i = rollback_i;
b411b363 634 goto requeue;
80a40e43
LE
635 case 0:
636 /* everything ok */
637 break;
638 default:
639 BUG();
b411b363
PR
640 }
641 } else {
642 inc_rs_pending(mdev);
643 if (!drbd_send_drequest(mdev, P_RS_DATA_REQUEST,
644 sector, size, ID_SYNCER)) {
645 dev_err(DEV, "drbd_send_drequest() failed, aborting...\n");
646 dec_rs_pending(mdev);
647 put_ldev(mdev);
648 return 0;
649 }
650 }
651 }
652
653 if (mdev->bm_resync_fo >= drbd_bm_bits(mdev)) {
654 /* last syncer _request_ was sent,
655 * but the P_RS_DATA_REPLY not yet received. sync will end (and
656 * next sync group will resume), as soon as we receive the last
657 * resync data block, and the last bit is cleared.
658 * until then resync "work" is "inactive" ...
659 */
b411b363
PR
660 put_ldev(mdev);
661 return 1;
662 }
663
664 requeue:
778f271d 665 mdev->rs_in_flight += (i << (BM_BLOCK_SHIFT - 9));
b411b363
PR
666 mod_timer(&mdev->resync_timer, jiffies + SLEEP_TIME);
667 put_ldev(mdev);
668 return 1;
669}
670
671static int w_make_ov_request(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
672{
673 int number, i, size;
674 sector_t sector;
675 const sector_t capacity = drbd_get_capacity(mdev->this_bdev);
676
677 if (unlikely(cancel))
678 return 1;
679
2649f080 680 number = drbd_rs_number_requests(mdev);
b411b363
PR
681
682 sector = mdev->ov_position;
683 for (i = 0; i < number; i++) {
684 if (sector >= capacity) {
b411b363
PR
685 return 1;
686 }
687
688 size = BM_BLOCK_SIZE;
689
e3555d85
PR
690 if (drbd_rs_should_slow_down(mdev, sector) ||
691 drbd_try_rs_begin_io(mdev, sector)) {
b411b363
PR
692 mdev->ov_position = sector;
693 goto requeue;
694 }
695
696 if (sector + (size>>9) > capacity)
697 size = (capacity-sector)<<9;
698
699 inc_rs_pending(mdev);
700 if (!drbd_send_ov_request(mdev, sector, size)) {
701 dec_rs_pending(mdev);
702 return 0;
703 }
704 sector += BM_SECT_PER_BIT;
705 }
706 mdev->ov_position = sector;
707
708 requeue:
2649f080 709 mdev->rs_in_flight += (i << (BM_BLOCK_SHIFT - 9));
b411b363
PR
710 mod_timer(&mdev->resync_timer, jiffies + SLEEP_TIME);
711 return 1;
712}
713
c4752ef1 714
370a43e7
PR
715void start_resync_timer_fn(unsigned long data)
716{
717 struct drbd_conf *mdev = (struct drbd_conf *) data;
718
719 drbd_queue_work(&mdev->data.work, &mdev->start_resync_work);
720}
721
c4752ef1
PR
722int w_start_resync(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
723{
370a43e7
PR
724 if (atomic_read(&mdev->unacked_cnt) || atomic_read(&mdev->rs_pending_cnt)) {
725 dev_warn(DEV, "w_start_resync later...\n");
726 mdev->start_resync_timer.expires = jiffies + HZ/10;
727 add_timer(&mdev->start_resync_timer);
728 return 1;
729 }
c4752ef1 730
370a43e7
PR
731 drbd_start_resync(mdev, C_SYNC_SOURCE);
732 clear_bit(AHEAD_TO_SYNC_SOURCE, &mdev->current_epoch->flags);
c4752ef1
PR
733 return 1;
734}
735
b411b363
PR
736int w_ov_finished(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
737{
738 kfree(w);
739 ov_oos_print(mdev);
740 drbd_resync_finished(mdev);
741
742 return 1;
743}
744
745static int w_resync_finished(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
746{
747 kfree(w);
748
749 drbd_resync_finished(mdev);
750
751 return 1;
752}
753
af85e8e8
LE
754static void ping_peer(struct drbd_conf *mdev)
755{
756 clear_bit(GOT_PING_ACK, &mdev->flags);
757 request_ping(mdev);
758 wait_event(mdev->misc_wait,
759 test_bit(GOT_PING_ACK, &mdev->flags) || mdev->state.conn < C_CONNECTED);
760}
761
b411b363
PR
762int drbd_resync_finished(struct drbd_conf *mdev)
763{
764 unsigned long db, dt, dbdt;
765 unsigned long n_oos;
766 union drbd_state os, ns;
767 struct drbd_work *w;
768 char *khelper_cmd = NULL;
26525618 769 int verify_done = 0;
b411b363
PR
770
771 /* Remove all elements from the resync LRU. Since future actions
772 * might set bits in the (main) bitmap, then the entries in the
773 * resync LRU would be wrong. */
774 if (drbd_rs_del_all(mdev)) {
775 /* In case this is not possible now, most probably because
776 * there are P_RS_DATA_REPLY Packets lingering on the worker's
777 * queue (or even the read operations for those packets
778 * is not finished by now). Retry in 100ms. */
779
b411b363
PR
780 __set_current_state(TASK_INTERRUPTIBLE);
781 schedule_timeout(HZ / 10);
782 w = kmalloc(sizeof(struct drbd_work), GFP_ATOMIC);
783 if (w) {
784 w->cb = w_resync_finished;
785 drbd_queue_work(&mdev->data.work, w);
786 return 1;
787 }
788 dev_err(DEV, "Warn failed to drbd_rs_del_all() and to kmalloc(w).\n");
789 }
790
791 dt = (jiffies - mdev->rs_start - mdev->rs_paused) / HZ;
792 if (dt <= 0)
793 dt = 1;
794 db = mdev->rs_total;
795 dbdt = Bit2KB(db/dt);
796 mdev->rs_paused /= HZ;
797
798 if (!get_ldev(mdev))
799 goto out;
800
af85e8e8
LE
801 ping_peer(mdev);
802
b411b363
PR
803 spin_lock_irq(&mdev->req_lock);
804 os = mdev->state;
805
26525618
LE
806 verify_done = (os.conn == C_VERIFY_S || os.conn == C_VERIFY_T);
807
b411b363
PR
808 /* This protects us against multiple calls (that can happen in the presence
809 of application IO), and against connectivity loss just before we arrive here. */
810 if (os.conn <= C_CONNECTED)
811 goto out_unlock;
812
813 ns = os;
814 ns.conn = C_CONNECTED;
815
816 dev_info(DEV, "%s done (total %lu sec; paused %lu sec; %lu K/sec)\n",
26525618 817 verify_done ? "Online verify " : "Resync",
b411b363
PR
818 dt + mdev->rs_paused, mdev->rs_paused, dbdt);
819
820 n_oos = drbd_bm_total_weight(mdev);
821
822 if (os.conn == C_VERIFY_S || os.conn == C_VERIFY_T) {
823 if (n_oos) {
824 dev_alert(DEV, "Online verify found %lu %dk block out of sync!\n",
825 n_oos, Bit2KB(1));
826 khelper_cmd = "out-of-sync";
827 }
828 } else {
829 D_ASSERT((n_oos - mdev->rs_failed) == 0);
830
831 if (os.conn == C_SYNC_TARGET || os.conn == C_PAUSED_SYNC_T)
832 khelper_cmd = "after-resync-target";
833
834 if (mdev->csums_tfm && mdev->rs_total) {
835 const unsigned long s = mdev->rs_same_csum;
836 const unsigned long t = mdev->rs_total;
837 const int ratio =
838 (t == 0) ? 0 :
839 (t < 100000) ? ((s*100)/t) : (s/(t/100));
840 dev_info(DEV, "%u %% had equal check sums, eliminated: %luK; "
841 "transferred %luK total %luK\n",
842 ratio,
843 Bit2KB(mdev->rs_same_csum),
844 Bit2KB(mdev->rs_total - mdev->rs_same_csum),
845 Bit2KB(mdev->rs_total));
846 }
847 }
848
849 if (mdev->rs_failed) {
850 dev_info(DEV, " %lu failed blocks\n", mdev->rs_failed);
851
852 if (os.conn == C_SYNC_TARGET || os.conn == C_PAUSED_SYNC_T) {
853 ns.disk = D_INCONSISTENT;
854 ns.pdsk = D_UP_TO_DATE;
855 } else {
856 ns.disk = D_UP_TO_DATE;
857 ns.pdsk = D_INCONSISTENT;
858 }
859 } else {
860 ns.disk = D_UP_TO_DATE;
861 ns.pdsk = D_UP_TO_DATE;
862
863 if (os.conn == C_SYNC_TARGET || os.conn == C_PAUSED_SYNC_T) {
864 if (mdev->p_uuid) {
865 int i;
866 for (i = UI_BITMAP ; i <= UI_HISTORY_END ; i++)
867 _drbd_uuid_set(mdev, i, mdev->p_uuid[i]);
868 drbd_uuid_set(mdev, UI_BITMAP, mdev->ldev->md.uuid[UI_CURRENT]);
869 _drbd_uuid_set(mdev, UI_CURRENT, mdev->p_uuid[UI_CURRENT]);
870 } else {
871 dev_err(DEV, "mdev->p_uuid is NULL! BUG\n");
872 }
873 }
874
875 drbd_uuid_set_bm(mdev, 0UL);
876
877 if (mdev->p_uuid) {
878 /* Now the two UUID sets are equal, update what we
879 * know of the peer. */
880 int i;
881 for (i = UI_CURRENT ; i <= UI_HISTORY_END ; i++)
882 mdev->p_uuid[i] = mdev->ldev->md.uuid[i];
883 }
884 }
885
886 _drbd_set_state(mdev, ns, CS_VERBOSE, NULL);
887out_unlock:
888 spin_unlock_irq(&mdev->req_lock);
889 put_ldev(mdev);
890out:
891 mdev->rs_total = 0;
892 mdev->rs_failed = 0;
893 mdev->rs_paused = 0;
26525618
LE
894 if (verify_done)
895 mdev->ov_start_sector = 0;
b411b363 896
13d42685
LE
897 drbd_md_sync(mdev);
898
b411b363
PR
899 if (khelper_cmd)
900 drbd_khelper(mdev, khelper_cmd);
901
902 return 1;
903}
904
905/* helper */
906static void move_to_net_ee_or_free(struct drbd_conf *mdev, struct drbd_epoch_entry *e)
907{
45bb912b 908 if (drbd_ee_has_active_page(e)) {
b411b363 909 /* This might happen if sendpage() has not finished */
78db8928 910 int i = (e->size + PAGE_SIZE -1) >> PAGE_SHIFT;
435f0740
LE
911 atomic_add(i, &mdev->pp_in_use_by_net);
912 atomic_sub(i, &mdev->pp_in_use);
b411b363
PR
913 spin_lock_irq(&mdev->req_lock);
914 list_add_tail(&e->w.list, &mdev->net_ee);
915 spin_unlock_irq(&mdev->req_lock);
435f0740 916 wake_up(&drbd_pp_wait);
b411b363
PR
917 } else
918 drbd_free_ee(mdev, e);
919}
920
921/**
922 * w_e_end_data_req() - Worker callback, to send a P_DATA_REPLY packet in response to a P_DATA_REQUEST
923 * @mdev: DRBD device.
924 * @w: work object.
925 * @cancel: The connection will be closed anyways
926 */
927int w_e_end_data_req(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
928{
929 struct drbd_epoch_entry *e = container_of(w, struct drbd_epoch_entry, w);
930 int ok;
931
932 if (unlikely(cancel)) {
933 drbd_free_ee(mdev, e);
934 dec_unacked(mdev);
935 return 1;
936 }
937
45bb912b 938 if (likely((e->flags & EE_WAS_ERROR) == 0)) {
b411b363
PR
939 ok = drbd_send_block(mdev, P_DATA_REPLY, e);
940 } else {
941 if (__ratelimit(&drbd_ratelimit_state))
942 dev_err(DEV, "Sending NegDReply. sector=%llus.\n",
943 (unsigned long long)e->sector);
944
945 ok = drbd_send_ack(mdev, P_NEG_DREPLY, e);
946 }
947
948 dec_unacked(mdev);
949
950 move_to_net_ee_or_free(mdev, e);
951
952 if (unlikely(!ok))
953 dev_err(DEV, "drbd_send_block() failed\n");
954 return ok;
955}
956
957/**
958 * w_e_end_rsdata_req() - Worker callback to send a P_RS_DATA_REPLY packet in response to a P_RS_DATA_REQUESTRS
959 * @mdev: DRBD device.
960 * @w: work object.
961 * @cancel: The connection will be closed anyways
962 */
963int w_e_end_rsdata_req(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
964{
965 struct drbd_epoch_entry *e = container_of(w, struct drbd_epoch_entry, w);
966 int ok;
967
968 if (unlikely(cancel)) {
969 drbd_free_ee(mdev, e);
970 dec_unacked(mdev);
971 return 1;
972 }
973
974 if (get_ldev_if_state(mdev, D_FAILED)) {
975 drbd_rs_complete_io(mdev, e->sector);
976 put_ldev(mdev);
977 }
978
d612d309
PR
979 if (mdev->state.conn == C_AHEAD) {
980 ok = drbd_send_ack(mdev, P_RS_CANCEL, e);
981 } else if (likely((e->flags & EE_WAS_ERROR) == 0)) {
b411b363
PR
982 if (likely(mdev->state.pdsk >= D_INCONSISTENT)) {
983 inc_rs_pending(mdev);
984 ok = drbd_send_block(mdev, P_RS_DATA_REPLY, e);
985 } else {
986 if (__ratelimit(&drbd_ratelimit_state))
987 dev_err(DEV, "Not sending RSDataReply, "
988 "partner DISKLESS!\n");
989 ok = 1;
990 }
991 } else {
992 if (__ratelimit(&drbd_ratelimit_state))
993 dev_err(DEV, "Sending NegRSDReply. sector %llus.\n",
994 (unsigned long long)e->sector);
995
996 ok = drbd_send_ack(mdev, P_NEG_RS_DREPLY, e);
997
998 /* update resync data with failure */
999 drbd_rs_failed_io(mdev, e->sector, e->size);
1000 }
1001
1002 dec_unacked(mdev);
1003
1004 move_to_net_ee_or_free(mdev, e);
1005
1006 if (unlikely(!ok))
1007 dev_err(DEV, "drbd_send_block() failed\n");
1008 return ok;
1009}
1010
1011int w_e_end_csum_rs_req(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1012{
1013 struct drbd_epoch_entry *e = container_of(w, struct drbd_epoch_entry, w);
1014 struct digest_info *di;
1015 int digest_size;
1016 void *digest = NULL;
1017 int ok, eq = 0;
1018
1019 if (unlikely(cancel)) {
1020 drbd_free_ee(mdev, e);
1021 dec_unacked(mdev);
1022 return 1;
1023 }
1024
1d53f09e
LE
1025 if (get_ldev(mdev)) {
1026 drbd_rs_complete_io(mdev, e->sector);
1027 put_ldev(mdev);
1028 }
b411b363 1029
85719573 1030 di = e->digest;
b411b363 1031
45bb912b 1032 if (likely((e->flags & EE_WAS_ERROR) == 0)) {
b411b363
PR
1033 /* quick hack to try to avoid a race against reconfiguration.
1034 * a real fix would be much more involved,
1035 * introducing more locking mechanisms */
1036 if (mdev->csums_tfm) {
1037 digest_size = crypto_hash_digestsize(mdev->csums_tfm);
1038 D_ASSERT(digest_size == di->digest_size);
1039 digest = kmalloc(digest_size, GFP_NOIO);
1040 }
1041 if (digest) {
45bb912b 1042 drbd_csum_ee(mdev, mdev->csums_tfm, e, digest);
b411b363
PR
1043 eq = !memcmp(digest, di->digest, digest_size);
1044 kfree(digest);
1045 }
1046
1047 if (eq) {
1048 drbd_set_in_sync(mdev, e->sector, e->size);
676396d5
LE
1049 /* rs_same_csums unit is BM_BLOCK_SIZE */
1050 mdev->rs_same_csum += e->size >> BM_BLOCK_SHIFT;
b411b363
PR
1051 ok = drbd_send_ack(mdev, P_RS_IS_IN_SYNC, e);
1052 } else {
1053 inc_rs_pending(mdev);
204bba99
PR
1054 e->block_id = ID_SYNCER; /* By setting block_id, digest pointer becomes invalid! */
1055 e->flags &= ~EE_HAS_DIGEST; /* This e no longer has a digest pointer */
1056 kfree(di);
b411b363
PR
1057 ok = drbd_send_block(mdev, P_RS_DATA_REPLY, e);
1058 }
1059 } else {
1060 ok = drbd_send_ack(mdev, P_NEG_RS_DREPLY, e);
1061 if (__ratelimit(&drbd_ratelimit_state))
1062 dev_err(DEV, "Sending NegDReply. I guess it gets messy.\n");
1063 }
1064
1065 dec_unacked(mdev);
b411b363
PR
1066 move_to_net_ee_or_free(mdev, e);
1067
1068 if (unlikely(!ok))
1069 dev_err(DEV, "drbd_send_block/ack() failed\n");
1070 return ok;
1071}
1072
1073int w_e_end_ov_req(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1074{
1075 struct drbd_epoch_entry *e = container_of(w, struct drbd_epoch_entry, w);
1076 int digest_size;
1077 void *digest;
1078 int ok = 1;
1079
1080 if (unlikely(cancel))
1081 goto out;
1082
45bb912b 1083 if (unlikely((e->flags & EE_WAS_ERROR) != 0))
b411b363
PR
1084 goto out;
1085
1086 digest_size = crypto_hash_digestsize(mdev->verify_tfm);
1087 /* FIXME if this allocation fails, online verify will not terminate! */
1088 digest = kmalloc(digest_size, GFP_NOIO);
1089 if (digest) {
45bb912b 1090 drbd_csum_ee(mdev, mdev->verify_tfm, e, digest);
b411b363
PR
1091 inc_rs_pending(mdev);
1092 ok = drbd_send_drequest_csum(mdev, e->sector, e->size,
1093 digest, digest_size, P_OV_REPLY);
1094 if (!ok)
1095 dec_rs_pending(mdev);
1096 kfree(digest);
1097 }
1098
1099out:
1100 drbd_free_ee(mdev, e);
1101
1102 dec_unacked(mdev);
1103
1104 return ok;
1105}
1106
1107void drbd_ov_oos_found(struct drbd_conf *mdev, sector_t sector, int size)
1108{
1109 if (mdev->ov_last_oos_start + mdev->ov_last_oos_size == sector) {
1110 mdev->ov_last_oos_size += size>>9;
1111 } else {
1112 mdev->ov_last_oos_start = sector;
1113 mdev->ov_last_oos_size = size>>9;
1114 }
1115 drbd_set_out_of_sync(mdev, sector, size);
b411b363
PR
1116}
1117
1118int w_e_end_ov_reply(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1119{
1120 struct drbd_epoch_entry *e = container_of(w, struct drbd_epoch_entry, w);
1121 struct digest_info *di;
1122 int digest_size;
1123 void *digest;
1124 int ok, eq = 0;
1125
1126 if (unlikely(cancel)) {
1127 drbd_free_ee(mdev, e);
1128 dec_unacked(mdev);
1129 return 1;
1130 }
1131
1132 /* after "cancel", because after drbd_disconnect/drbd_rs_cancel_all
1133 * the resync lru has been cleaned up already */
1d53f09e
LE
1134 if (get_ldev(mdev)) {
1135 drbd_rs_complete_io(mdev, e->sector);
1136 put_ldev(mdev);
1137 }
b411b363 1138
85719573 1139 di = e->digest;
b411b363 1140
45bb912b 1141 if (likely((e->flags & EE_WAS_ERROR) == 0)) {
b411b363
PR
1142 digest_size = crypto_hash_digestsize(mdev->verify_tfm);
1143 digest = kmalloc(digest_size, GFP_NOIO);
1144 if (digest) {
45bb912b 1145 drbd_csum_ee(mdev, mdev->verify_tfm, e, digest);
b411b363
PR
1146
1147 D_ASSERT(digest_size == di->digest_size);
1148 eq = !memcmp(digest, di->digest, digest_size);
1149 kfree(digest);
1150 }
1151 } else {
1152 ok = drbd_send_ack(mdev, P_NEG_RS_DREPLY, e);
1153 if (__ratelimit(&drbd_ratelimit_state))
1154 dev_err(DEV, "Sending NegDReply. I guess it gets messy.\n");
1155 }
1156
1157 dec_unacked(mdev);
b411b363
PR
1158 if (!eq)
1159 drbd_ov_oos_found(mdev, e->sector, e->size);
1160 else
1161 ov_oos_print(mdev);
1162
1163 ok = drbd_send_ack_ex(mdev, P_OV_RESULT, e->sector, e->size,
1164 eq ? ID_IN_SYNC : ID_OUT_OF_SYNC);
1165
1166 drbd_free_ee(mdev, e);
1167
ea5442af
LE
1168 --mdev->ov_left;
1169
1170 /* let's advance progress step marks only for every other megabyte */
1171 if ((mdev->ov_left & 0x200) == 0x200)
1172 drbd_advance_rs_marks(mdev, mdev->ov_left);
1173
1174 if (mdev->ov_left == 0) {
b411b363
PR
1175 ov_oos_print(mdev);
1176 drbd_resync_finished(mdev);
1177 }
1178
1179 return ok;
1180}
1181
1182int w_prev_work_done(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1183{
1184 struct drbd_wq_barrier *b = container_of(w, struct drbd_wq_barrier, w);
1185 complete(&b->done);
1186 return 1;
1187}
1188
1189int w_send_barrier(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1190{
1191 struct drbd_tl_epoch *b = container_of(w, struct drbd_tl_epoch, w);
1192 struct p_barrier *p = &mdev->data.sbuf.barrier;
1193 int ok = 1;
1194
1195 /* really avoid racing with tl_clear. w.cb may have been referenced
1196 * just before it was reassigned and re-queued, so double check that.
1197 * actually, this race was harmless, since we only try to send the
1198 * barrier packet here, and otherwise do nothing with the object.
1199 * but compare with the head of w_clear_epoch */
1200 spin_lock_irq(&mdev->req_lock);
1201 if (w->cb != w_send_barrier || mdev->state.conn < C_CONNECTED)
1202 cancel = 1;
1203 spin_unlock_irq(&mdev->req_lock);
1204 if (cancel)
1205 return 1;
1206
1207 if (!drbd_get_data_sock(mdev))
1208 return 0;
1209 p->barrier = b->br_number;
1210 /* inc_ap_pending was done where this was queued.
1211 * dec_ap_pending will be done in got_BarrierAck
1212 * or (on connection loss) in w_clear_epoch. */
1213 ok = _drbd_send_cmd(mdev, mdev->data.socket, P_BARRIER,
0b70a13d 1214 (struct p_header80 *)p, sizeof(*p), 0);
b411b363
PR
1215 drbd_put_data_sock(mdev);
1216
1217 return ok;
1218}
1219
1220int w_send_write_hint(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1221{
1222 if (cancel)
1223 return 1;
1224 return drbd_send_short_cmd(mdev, P_UNPLUG_REMOTE);
1225}
1226
73a01a18
PR
1227int w_send_oos(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1228{
1229 struct drbd_request *req = container_of(w, struct drbd_request, w);
1230 int ok;
1231
1232 if (unlikely(cancel)) {
1233 req_mod(req, send_canceled);
1234 return 1;
1235 }
1236
1237 ok = drbd_send_oos(mdev, req);
1238 req_mod(req, oos_handed_to_network);
1239
1240 return ok;
1241}
1242
b411b363
PR
1243/**
1244 * w_send_dblock() - Worker callback to send a P_DATA packet in order to mirror a write request
1245 * @mdev: DRBD device.
1246 * @w: work object.
1247 * @cancel: The connection will be closed anyways
1248 */
1249int w_send_dblock(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1250{
1251 struct drbd_request *req = container_of(w, struct drbd_request, w);
1252 int ok;
1253
1254 if (unlikely(cancel)) {
1255 req_mod(req, send_canceled);
1256 return 1;
1257 }
1258
1259 ok = drbd_send_dblock(mdev, req);
1260 req_mod(req, ok ? handed_over_to_network : send_failed);
1261
1262 return ok;
1263}
1264
1265/**
1266 * w_send_read_req() - Worker callback to send a read request (P_DATA_REQUEST) packet
1267 * @mdev: DRBD device.
1268 * @w: work object.
1269 * @cancel: The connection will be closed anyways
1270 */
1271int w_send_read_req(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1272{
1273 struct drbd_request *req = container_of(w, struct drbd_request, w);
1274 int ok;
1275
1276 if (unlikely(cancel)) {
1277 req_mod(req, send_canceled);
1278 return 1;
1279 }
1280
1281 ok = drbd_send_drequest(mdev, P_DATA_REQUEST, req->sector, req->size,
1282 (unsigned long)req);
1283
1284 if (!ok) {
1285 /* ?? we set C_TIMEOUT or C_BROKEN_PIPE in drbd_send();
1286 * so this is probably redundant */
1287 if (mdev->state.conn >= C_CONNECTED)
1288 drbd_force_state(mdev, NS(conn, C_NETWORK_FAILURE));
1289 }
1290 req_mod(req, ok ? handed_over_to_network : send_failed);
1291
1292 return ok;
1293}
1294
265be2d0
PR
1295int w_restart_disk_io(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1296{
1297 struct drbd_request *req = container_of(w, struct drbd_request, w);
1298
0778286a 1299 if (bio_data_dir(req->master_bio) == WRITE && req->rq_state & RQ_IN_ACT_LOG)
265be2d0
PR
1300 drbd_al_begin_io(mdev, req->sector);
1301 /* Calling drbd_al_begin_io() out of the worker might deadlocks
1302 theoretically. Practically it can not deadlock, since this is
1303 only used when unfreezing IOs. All the extents of the requests
1304 that made it into the TL are already active */
1305
1306 drbd_req_make_private_bio(req, req->master_bio);
1307 req->private_bio->bi_bdev = mdev->ldev->backing_bdev;
1308 generic_make_request(req->private_bio);
1309
1310 return 1;
1311}
1312
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PR
1313static int _drbd_may_sync_now(struct drbd_conf *mdev)
1314{
1315 struct drbd_conf *odev = mdev;
1316
1317 while (1) {
1318 if (odev->sync_conf.after == -1)
1319 return 1;
1320 odev = minor_to_mdev(odev->sync_conf.after);
1321 ERR_IF(!odev) return 1;
1322 if ((odev->state.conn >= C_SYNC_SOURCE &&
1323 odev->state.conn <= C_PAUSED_SYNC_T) ||
1324 odev->state.aftr_isp || odev->state.peer_isp ||
1325 odev->state.user_isp)
1326 return 0;
1327 }
1328}
1329
1330/**
1331 * _drbd_pause_after() - Pause resync on all devices that may not resync now
1332 * @mdev: DRBD device.
1333 *
1334 * Called from process context only (admin command and after_state_ch).
1335 */
1336static int _drbd_pause_after(struct drbd_conf *mdev)
1337{
1338 struct drbd_conf *odev;
1339 int i, rv = 0;
1340
1341 for (i = 0; i < minor_count; i++) {
1342 odev = minor_to_mdev(i);
1343 if (!odev)
1344 continue;
1345 if (odev->state.conn == C_STANDALONE && odev->state.disk == D_DISKLESS)
1346 continue;
1347 if (!_drbd_may_sync_now(odev))
1348 rv |= (__drbd_set_state(_NS(odev, aftr_isp, 1), CS_HARD, NULL)
1349 != SS_NOTHING_TO_DO);
1350 }
1351
1352 return rv;
1353}
1354
1355/**
1356 * _drbd_resume_next() - Resume resync on all devices that may resync now
1357 * @mdev: DRBD device.
1358 *
1359 * Called from process context only (admin command and worker).
1360 */
1361static int _drbd_resume_next(struct drbd_conf *mdev)
1362{
1363 struct drbd_conf *odev;
1364 int i, rv = 0;
1365
1366 for (i = 0; i < minor_count; i++) {
1367 odev = minor_to_mdev(i);
1368 if (!odev)
1369 continue;
1370 if (odev->state.conn == C_STANDALONE && odev->state.disk == D_DISKLESS)
1371 continue;
1372 if (odev->state.aftr_isp) {
1373 if (_drbd_may_sync_now(odev))
1374 rv |= (__drbd_set_state(_NS(odev, aftr_isp, 0),
1375 CS_HARD, NULL)
1376 != SS_NOTHING_TO_DO) ;
1377 }
1378 }
1379 return rv;
1380}
1381
1382void resume_next_sg(struct drbd_conf *mdev)
1383{
1384 write_lock_irq(&global_state_lock);
1385 _drbd_resume_next(mdev);
1386 write_unlock_irq(&global_state_lock);
1387}
1388
1389void suspend_other_sg(struct drbd_conf *mdev)
1390{
1391 write_lock_irq(&global_state_lock);
1392 _drbd_pause_after(mdev);
1393 write_unlock_irq(&global_state_lock);
1394}
1395
1396static int sync_after_error(struct drbd_conf *mdev, int o_minor)
1397{
1398 struct drbd_conf *odev;
1399
1400 if (o_minor == -1)
1401 return NO_ERROR;
1402 if (o_minor < -1 || minor_to_mdev(o_minor) == NULL)
1403 return ERR_SYNC_AFTER;
1404
1405 /* check for loops */
1406 odev = minor_to_mdev(o_minor);
1407 while (1) {
1408 if (odev == mdev)
1409 return ERR_SYNC_AFTER_CYCLE;
1410
1411 /* dependency chain ends here, no cycles. */
1412 if (odev->sync_conf.after == -1)
1413 return NO_ERROR;
1414
1415 /* follow the dependency chain */
1416 odev = minor_to_mdev(odev->sync_conf.after);
1417 }
1418}
1419
1420int drbd_alter_sa(struct drbd_conf *mdev, int na)
1421{
1422 int changes;
1423 int retcode;
1424
1425 write_lock_irq(&global_state_lock);
1426 retcode = sync_after_error(mdev, na);
1427 if (retcode == NO_ERROR) {
1428 mdev->sync_conf.after = na;
1429 do {
1430 changes = _drbd_pause_after(mdev);
1431 changes |= _drbd_resume_next(mdev);
1432 } while (changes);
1433 }
1434 write_unlock_irq(&global_state_lock);
1435 return retcode;
1436}
1437
9bd28d3c
LE
1438void drbd_rs_controller_reset(struct drbd_conf *mdev)
1439{
1440 atomic_set(&mdev->rs_sect_in, 0);
1441 atomic_set(&mdev->rs_sect_ev, 0);
1442 mdev->rs_in_flight = 0;
1443 mdev->rs_planed = 0;
1444 spin_lock(&mdev->peer_seq_lock);
1445 fifo_set(&mdev->rs_plan_s, 0);
1446 spin_unlock(&mdev->peer_seq_lock);
1447}
1448
b411b363
PR
1449/**
1450 * drbd_start_resync() - Start the resync process
1451 * @mdev: DRBD device.
1452 * @side: Either C_SYNC_SOURCE or C_SYNC_TARGET
1453 *
1454 * This function might bring you directly into one of the
1455 * C_PAUSED_SYNC_* states.
1456 */
1457void drbd_start_resync(struct drbd_conf *mdev, enum drbd_conns side)
1458{
1459 union drbd_state ns;
1460 int r;
1461
c4752ef1 1462 if (mdev->state.conn >= C_SYNC_SOURCE && mdev->state.conn < C_AHEAD) {
b411b363
PR
1463 dev_err(DEV, "Resync already running!\n");
1464 return;
1465 }
1466
59817f4f
PR
1467 if (mdev->state.conn < C_AHEAD) {
1468 /* In case a previous resync run was aborted by an IO error/detach on the peer. */
1469 drbd_rs_cancel_all(mdev);
1470 /* This should be done when we abort the resync. We definitely do not
1471 want to have this for connections going back and forth between
1472 Ahead/Behind and SyncSource/SyncTarget */
1473 }
b411b363
PR
1474
1475 if (side == C_SYNC_TARGET) {
1476 /* Since application IO was locked out during C_WF_BITMAP_T and
1477 C_WF_SYNC_UUID we are still unmodified. Before going to C_SYNC_TARGET
1478 we check that we might make the data inconsistent. */
1479 r = drbd_khelper(mdev, "before-resync-target");
1480 r = (r >> 8) & 0xff;
1481 if (r > 0) {
1482 dev_info(DEV, "before-resync-target handler returned %d, "
1483 "dropping connection.\n", r);
1484 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
1485 return;
1486 }
09b9e797
PR
1487 } else /* C_SYNC_SOURCE */ {
1488 r = drbd_khelper(mdev, "before-resync-source");
1489 r = (r >> 8) & 0xff;
1490 if (r > 0) {
1491 if (r == 3) {
1492 dev_info(DEV, "before-resync-source handler returned %d, "
1493 "ignoring. Old userland tools?", r);
1494 } else {
1495 dev_info(DEV, "before-resync-source handler returned %d, "
1496 "dropping connection.\n", r);
1497 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
1498 return;
1499 }
1500 }
b411b363
PR
1501 }
1502
1503 drbd_state_lock(mdev);
1504
1505 if (!get_ldev_if_state(mdev, D_NEGOTIATING)) {
1506 drbd_state_unlock(mdev);
1507 return;
1508 }
1509
b411b363
PR
1510 write_lock_irq(&global_state_lock);
1511 ns = mdev->state;
1512
1513 ns.aftr_isp = !_drbd_may_sync_now(mdev);
1514
1515 ns.conn = side;
1516
1517 if (side == C_SYNC_TARGET)
1518 ns.disk = D_INCONSISTENT;
1519 else /* side == C_SYNC_SOURCE */
1520 ns.pdsk = D_INCONSISTENT;
1521
1522 r = __drbd_set_state(mdev, ns, CS_VERBOSE, NULL);
1523 ns = mdev->state;
1524
1525 if (ns.conn < C_CONNECTED)
1526 r = SS_UNKNOWN_ERROR;
1527
1528 if (r == SS_SUCCESS) {
1d7734a0
LE
1529 unsigned long tw = drbd_bm_total_weight(mdev);
1530 unsigned long now = jiffies;
1531 int i;
1532
b411b363
PR
1533 mdev->rs_failed = 0;
1534 mdev->rs_paused = 0;
b411b363 1535 mdev->rs_same_csum = 0;
0f0601f4
LE
1536 mdev->rs_last_events = 0;
1537 mdev->rs_last_sect_ev = 0;
1d7734a0
LE
1538 mdev->rs_total = tw;
1539 mdev->rs_start = now;
1540 for (i = 0; i < DRBD_SYNC_MARKS; i++) {
1541 mdev->rs_mark_left[i] = tw;
1542 mdev->rs_mark_time[i] = now;
1543 }
b411b363
PR
1544 _drbd_pause_after(mdev);
1545 }
1546 write_unlock_irq(&global_state_lock);
5a22db89
LE
1547
1548 if (side == C_SYNC_TARGET)
1549 mdev->bm_resync_fo = 0;
1550
1551 /* Since protocol 96, we must serialize drbd_gen_and_send_sync_uuid
1552 * with w_send_oos, or the sync target will get confused as to
1553 * how much bits to resync. We cannot do that always, because for an
1554 * empty resync and protocol < 95, we need to do it here, as we call
1555 * drbd_resync_finished from here in that case.
1556 * We drbd_gen_and_send_sync_uuid here for protocol < 96,
1557 * and from after_state_ch otherwise. */
1558 if (side == C_SYNC_SOURCE && mdev->agreed_pro_version < 96)
1559 drbd_gen_and_send_sync_uuid(mdev);
b411b363
PR
1560
1561 if (r == SS_SUCCESS) {
1562 dev_info(DEV, "Began resync as %s (will sync %lu KB [%lu bits set]).\n",
1563 drbd_conn_str(ns.conn),
1564 (unsigned long) mdev->rs_total << (BM_BLOCK_SHIFT-10),
1565 (unsigned long) mdev->rs_total);
1566
af85e8e8
LE
1567 if (mdev->agreed_pro_version < 95 && mdev->rs_total == 0) {
1568 /* This still has a race (about when exactly the peers
1569 * detect connection loss) that can lead to a full sync
1570 * on next handshake. In 8.3.9 we fixed this with explicit
1571 * resync-finished notifications, but the fix
1572 * introduces a protocol change. Sleeping for some
1573 * time longer than the ping interval + timeout on the
1574 * SyncSource, to give the SyncTarget the chance to
1575 * detect connection loss, then waiting for a ping
1576 * response (implicit in drbd_resync_finished) reduces
1577 * the race considerably, but does not solve it. */
1578 if (side == C_SYNC_SOURCE)
1579 schedule_timeout_interruptible(
1580 mdev->net_conf->ping_int * HZ +
1581 mdev->net_conf->ping_timeo*HZ/9);
b411b363 1582 drbd_resync_finished(mdev);
b411b363
PR
1583 }
1584
9bd28d3c 1585 drbd_rs_controller_reset(mdev);
b411b363
PR
1586 /* ns.conn may already be != mdev->state.conn,
1587 * we may have been paused in between, or become paused until
1588 * the timer triggers.
1589 * No matter, that is handled in resync_timer_fn() */
1590 if (ns.conn == C_SYNC_TARGET)
1591 mod_timer(&mdev->resync_timer, jiffies);
1592
1593 drbd_md_sync(mdev);
1594 }
5a22db89 1595 put_ldev(mdev);
d0c3f60f 1596 drbd_state_unlock(mdev);
b411b363
PR
1597}
1598
1599int drbd_worker(struct drbd_thread *thi)
1600{
1601 struct drbd_conf *mdev = thi->mdev;
1602 struct drbd_work *w = NULL;
1603 LIST_HEAD(work_list);
1604 int intr = 0, i;
1605
1606 sprintf(current->comm, "drbd%d_worker", mdev_to_minor(mdev));
1607
1608 while (get_t_state(thi) == Running) {
1609 drbd_thread_current_set_cpu(mdev);
1610
1611 if (down_trylock(&mdev->data.work.s)) {
1612 mutex_lock(&mdev->data.mutex);
1613 if (mdev->data.socket && !mdev->net_conf->no_cork)
1614 drbd_tcp_uncork(mdev->data.socket);
1615 mutex_unlock(&mdev->data.mutex);
1616
1617 intr = down_interruptible(&mdev->data.work.s);
1618
1619 mutex_lock(&mdev->data.mutex);
1620 if (mdev->data.socket && !mdev->net_conf->no_cork)
1621 drbd_tcp_cork(mdev->data.socket);
1622 mutex_unlock(&mdev->data.mutex);
1623 }
1624
1625 if (intr) {
1626 D_ASSERT(intr == -EINTR);
1627 flush_signals(current);
1628 ERR_IF (get_t_state(thi) == Running)
1629 continue;
1630 break;
1631 }
1632
1633 if (get_t_state(thi) != Running)
1634 break;
1635 /* With this break, we have done a down() but not consumed
1636 the entry from the list. The cleanup code takes care of
1637 this... */
1638
1639 w = NULL;
1640 spin_lock_irq(&mdev->data.work.q_lock);
1641 ERR_IF(list_empty(&mdev->data.work.q)) {
1642 /* something terribly wrong in our logic.
1643 * we were able to down() the semaphore,
1644 * but the list is empty... doh.
1645 *
1646 * what is the best thing to do now?
1647 * try again from scratch, restarting the receiver,
1648 * asender, whatnot? could break even more ugly,
1649 * e.g. when we are primary, but no good local data.
1650 *
1651 * I'll try to get away just starting over this loop.
1652 */
1653 spin_unlock_irq(&mdev->data.work.q_lock);
1654 continue;
1655 }
1656 w = list_entry(mdev->data.work.q.next, struct drbd_work, list);
1657 list_del_init(&w->list);
1658 spin_unlock_irq(&mdev->data.work.q_lock);
1659
1660 if (!w->cb(mdev, w, mdev->state.conn < C_CONNECTED)) {
1661 /* dev_warn(DEV, "worker: a callback failed! \n"); */
1662 if (mdev->state.conn >= C_CONNECTED)
1663 drbd_force_state(mdev,
1664 NS(conn, C_NETWORK_FAILURE));
1665 }
1666 }
1667 D_ASSERT(test_bit(DEVICE_DYING, &mdev->flags));
1668 D_ASSERT(test_bit(CONFIG_PENDING, &mdev->flags));
1669
1670 spin_lock_irq(&mdev->data.work.q_lock);
1671 i = 0;
1672 while (!list_empty(&mdev->data.work.q)) {
1673 list_splice_init(&mdev->data.work.q, &work_list);
1674 spin_unlock_irq(&mdev->data.work.q_lock);
1675
1676 while (!list_empty(&work_list)) {
1677 w = list_entry(work_list.next, struct drbd_work, list);
1678 list_del_init(&w->list);
1679 w->cb(mdev, w, 1);
1680 i++; /* dead debugging code */
1681 }
1682
1683 spin_lock_irq(&mdev->data.work.q_lock);
1684 }
1685 sema_init(&mdev->data.work.s, 0);
1686 /* DANGEROUS race: if someone did queue his work within the spinlock,
1687 * but up() ed outside the spinlock, we could get an up() on the
1688 * semaphore without corresponding list entry.
1689 * So don't do that.
1690 */
1691 spin_unlock_irq(&mdev->data.work.q_lock);
1692
1693 D_ASSERT(mdev->state.disk == D_DISKLESS && mdev->state.conn == C_STANDALONE);
1694 /* _drbd_set_state only uses stop_nowait.
1695 * wait here for the Exiting receiver. */
1696 drbd_thread_stop(&mdev->receiver);
1697 drbd_mdev_cleanup(mdev);
1698
1699 dev_info(DEV, "worker terminated\n");
1700
1701 clear_bit(DEVICE_DYING, &mdev->flags);
1702 clear_bit(CONFIG_PENDING, &mdev->flags);
1703 wake_up(&mdev->state_wait);
1704
1705 return 0;
1706}