drbd: Request lookup code cleanup (3)
[deliverable/linux.git] / drivers / block / drbd / drbd_receiver.c
CommitLineData
b411b363
PR
1/*
2 drbd_receiver.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
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26#include <linux/module.h>
27
28#include <asm/uaccess.h>
29#include <net/sock.h>
30
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31#include <linux/drbd.h>
32#include <linux/fs.h>
33#include <linux/file.h>
34#include <linux/in.h>
35#include <linux/mm.h>
36#include <linux/memcontrol.h>
37#include <linux/mm_inline.h>
38#include <linux/slab.h>
b411b363
PR
39#include <linux/pkt_sched.h>
40#define __KERNEL_SYSCALLS__
41#include <linux/unistd.h>
42#include <linux/vmalloc.h>
43#include <linux/random.h>
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PR
44#include <linux/string.h>
45#include <linux/scatterlist.h>
46#include "drbd_int.h"
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PR
47#include "drbd_req.h"
48
49#include "drbd_vli.h"
50
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PR
51enum finish_epoch {
52 FE_STILL_LIVE,
53 FE_DESTROYED,
54 FE_RECYCLED,
55};
56
57static int drbd_do_handshake(struct drbd_conf *mdev);
58static int drbd_do_auth(struct drbd_conf *mdev);
59
60static enum finish_epoch drbd_may_finish_epoch(struct drbd_conf *, struct drbd_epoch *, enum epoch_event);
61static int e_end_block(struct drbd_conf *, struct drbd_work *, int);
62
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63
64#define GFP_TRY (__GFP_HIGHMEM | __GFP_NOWARN)
65
45bb912b
LE
66/*
67 * some helper functions to deal with single linked page lists,
68 * page->private being our "next" pointer.
69 */
70
71/* If at least n pages are linked at head, get n pages off.
72 * Otherwise, don't modify head, and return NULL.
73 * Locking is the responsibility of the caller.
74 */
75static struct page *page_chain_del(struct page **head, int n)
76{
77 struct page *page;
78 struct page *tmp;
79
80 BUG_ON(!n);
81 BUG_ON(!head);
82
83 page = *head;
23ce4227
PR
84
85 if (!page)
86 return NULL;
87
45bb912b
LE
88 while (page) {
89 tmp = page_chain_next(page);
90 if (--n == 0)
91 break; /* found sufficient pages */
92 if (tmp == NULL)
93 /* insufficient pages, don't use any of them. */
94 return NULL;
95 page = tmp;
96 }
97
98 /* add end of list marker for the returned list */
99 set_page_private(page, 0);
100 /* actual return value, and adjustment of head */
101 page = *head;
102 *head = tmp;
103 return page;
104}
105
106/* may be used outside of locks to find the tail of a (usually short)
107 * "private" page chain, before adding it back to a global chain head
108 * with page_chain_add() under a spinlock. */
109static struct page *page_chain_tail(struct page *page, int *len)
110{
111 struct page *tmp;
112 int i = 1;
113 while ((tmp = page_chain_next(page)))
114 ++i, page = tmp;
115 if (len)
116 *len = i;
117 return page;
118}
119
120static int page_chain_free(struct page *page)
121{
122 struct page *tmp;
123 int i = 0;
124 page_chain_for_each_safe(page, tmp) {
125 put_page(page);
126 ++i;
127 }
128 return i;
129}
130
131static void page_chain_add(struct page **head,
132 struct page *chain_first, struct page *chain_last)
133{
134#if 1
135 struct page *tmp;
136 tmp = page_chain_tail(chain_first, NULL);
137 BUG_ON(tmp != chain_last);
138#endif
139
140 /* add chain to head */
141 set_page_private(chain_last, (unsigned long)*head);
142 *head = chain_first;
143}
144
145static struct page *drbd_pp_first_pages_or_try_alloc(struct drbd_conf *mdev, int number)
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PR
146{
147 struct page *page = NULL;
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LE
148 struct page *tmp = NULL;
149 int i = 0;
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PR
150
151 /* Yes, testing drbd_pp_vacant outside the lock is racy.
152 * So what. It saves a spin_lock. */
45bb912b 153 if (drbd_pp_vacant >= number) {
b411b363 154 spin_lock(&drbd_pp_lock);
45bb912b
LE
155 page = page_chain_del(&drbd_pp_pool, number);
156 if (page)
157 drbd_pp_vacant -= number;
b411b363 158 spin_unlock(&drbd_pp_lock);
45bb912b
LE
159 if (page)
160 return page;
b411b363 161 }
45bb912b 162
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PR
163 /* GFP_TRY, because we must not cause arbitrary write-out: in a DRBD
164 * "criss-cross" setup, that might cause write-out on some other DRBD,
165 * which in turn might block on the other node at this very place. */
45bb912b
LE
166 for (i = 0; i < number; i++) {
167 tmp = alloc_page(GFP_TRY);
168 if (!tmp)
169 break;
170 set_page_private(tmp, (unsigned long)page);
171 page = tmp;
172 }
173
174 if (i == number)
175 return page;
176
177 /* Not enough pages immediately available this time.
178 * No need to jump around here, drbd_pp_alloc will retry this
179 * function "soon". */
180 if (page) {
181 tmp = page_chain_tail(page, NULL);
182 spin_lock(&drbd_pp_lock);
183 page_chain_add(&drbd_pp_pool, page, tmp);
184 drbd_pp_vacant += i;
185 spin_unlock(&drbd_pp_lock);
186 }
187 return NULL;
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PR
188}
189
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190static void reclaim_net_ee(struct drbd_conf *mdev, struct list_head *to_be_freed)
191{
192 struct drbd_epoch_entry *e;
193 struct list_head *le, *tle;
194
195 /* The EEs are always appended to the end of the list. Since
196 they are sent in order over the wire, they have to finish
197 in order. As soon as we see the first not finished we can
198 stop to examine the list... */
199
200 list_for_each_safe(le, tle, &mdev->net_ee) {
201 e = list_entry(le, struct drbd_epoch_entry, w.list);
45bb912b 202 if (drbd_ee_has_active_page(e))
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PR
203 break;
204 list_move(le, to_be_freed);
205 }
206}
207
208static void drbd_kick_lo_and_reclaim_net(struct drbd_conf *mdev)
209{
210 LIST_HEAD(reclaimed);
211 struct drbd_epoch_entry *e, *t;
212
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PR
213 spin_lock_irq(&mdev->req_lock);
214 reclaim_net_ee(mdev, &reclaimed);
215 spin_unlock_irq(&mdev->req_lock);
216
217 list_for_each_entry_safe(e, t, &reclaimed, w.list)
435f0740 218 drbd_free_net_ee(mdev, e);
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PR
219}
220
221/**
45bb912b 222 * drbd_pp_alloc() - Returns @number pages, retries forever (or until signalled)
b411b363 223 * @mdev: DRBD device.
45bb912b
LE
224 * @number: number of pages requested
225 * @retry: whether to retry, if not enough pages are available right now
226 *
227 * Tries to allocate number pages, first from our own page pool, then from
228 * the kernel, unless this allocation would exceed the max_buffers setting.
229 * Possibly retry until DRBD frees sufficient pages somewhere else.
b411b363 230 *
45bb912b 231 * Returns a page chain linked via page->private.
b411b363 232 */
45bb912b 233static struct page *drbd_pp_alloc(struct drbd_conf *mdev, unsigned number, bool retry)
b411b363
PR
234{
235 struct page *page = NULL;
236 DEFINE_WAIT(wait);
237
45bb912b
LE
238 /* Yes, we may run up to @number over max_buffers. If we
239 * follow it strictly, the admin will get it wrong anyways. */
240 if (atomic_read(&mdev->pp_in_use) < mdev->net_conf->max_buffers)
241 page = drbd_pp_first_pages_or_try_alloc(mdev, number);
b411b363 242
45bb912b 243 while (page == NULL) {
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PR
244 prepare_to_wait(&drbd_pp_wait, &wait, TASK_INTERRUPTIBLE);
245
246 drbd_kick_lo_and_reclaim_net(mdev);
247
248 if (atomic_read(&mdev->pp_in_use) < mdev->net_conf->max_buffers) {
45bb912b 249 page = drbd_pp_first_pages_or_try_alloc(mdev, number);
b411b363
PR
250 if (page)
251 break;
252 }
253
254 if (!retry)
255 break;
256
257 if (signal_pending(current)) {
258 dev_warn(DEV, "drbd_pp_alloc interrupted!\n");
259 break;
260 }
261
262 schedule();
263 }
264 finish_wait(&drbd_pp_wait, &wait);
265
45bb912b
LE
266 if (page)
267 atomic_add(number, &mdev->pp_in_use);
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268 return page;
269}
270
271/* Must not be used from irq, as that may deadlock: see drbd_pp_alloc.
45bb912b
LE
272 * Is also used from inside an other spin_lock_irq(&mdev->req_lock);
273 * Either links the page chain back to the global pool,
274 * or returns all pages to the system. */
435f0740 275static void drbd_pp_free(struct drbd_conf *mdev, struct page *page, int is_net)
b411b363 276{
435f0740 277 atomic_t *a = is_net ? &mdev->pp_in_use_by_net : &mdev->pp_in_use;
b411b363 278 int i;
435f0740 279
1816a2b4 280 if (drbd_pp_vacant > (DRBD_MAX_BIO_SIZE/PAGE_SIZE)*minor_count)
45bb912b
LE
281 i = page_chain_free(page);
282 else {
283 struct page *tmp;
284 tmp = page_chain_tail(page, &i);
285 spin_lock(&drbd_pp_lock);
286 page_chain_add(&drbd_pp_pool, page, tmp);
287 drbd_pp_vacant += i;
288 spin_unlock(&drbd_pp_lock);
b411b363 289 }
435f0740 290 i = atomic_sub_return(i, a);
45bb912b 291 if (i < 0)
435f0740
LE
292 dev_warn(DEV, "ASSERTION FAILED: %s: %d < 0\n",
293 is_net ? "pp_in_use_by_net" : "pp_in_use", i);
b411b363
PR
294 wake_up(&drbd_pp_wait);
295}
296
297/*
298You need to hold the req_lock:
299 _drbd_wait_ee_list_empty()
300
301You must not have the req_lock:
302 drbd_free_ee()
303 drbd_alloc_ee()
304 drbd_init_ee()
305 drbd_release_ee()
306 drbd_ee_fix_bhs()
307 drbd_process_done_ee()
308 drbd_clear_done_ee()
309 drbd_wait_ee_list_empty()
310*/
311
312struct drbd_epoch_entry *drbd_alloc_ee(struct drbd_conf *mdev,
313 u64 id,
314 sector_t sector,
315 unsigned int data_size,
316 gfp_t gfp_mask) __must_hold(local)
317{
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PR
318 struct drbd_epoch_entry *e;
319 struct page *page;
45bb912b 320 unsigned nr_pages = (data_size + PAGE_SIZE -1) >> PAGE_SHIFT;
b411b363 321
0cf9d27e 322 if (drbd_insert_fault(mdev, DRBD_FAULT_AL_EE))
b411b363
PR
323 return NULL;
324
325 e = mempool_alloc(drbd_ee_mempool, gfp_mask & ~__GFP_HIGHMEM);
326 if (!e) {
327 if (!(gfp_mask & __GFP_NOWARN))
328 dev_err(DEV, "alloc_ee: Allocation of an EE failed\n");
329 return NULL;
330 }
331
45bb912b
LE
332 page = drbd_pp_alloc(mdev, nr_pages, (gfp_mask & __GFP_WAIT));
333 if (!page)
334 goto fail;
b411b363 335
24c4830c 336 INIT_HLIST_NODE(&e->collision);
b411b363 337 e->epoch = NULL;
45bb912b
LE
338 e->mdev = mdev;
339 e->pages = page;
340 atomic_set(&e->pending_bios, 0);
341 e->size = data_size;
b411b363 342 e->flags = 0;
45bb912b 343 e->sector = sector;
9a8e7753
AG
344 /*
345 * The block_id is opaque to the receiver. It is not endianness
346 * converted, and sent back to the sender unchanged.
347 */
45bb912b 348 e->block_id = id;
b411b363 349
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PR
350 return e;
351
45bb912b 352 fail:
b411b363 353 mempool_free(e, drbd_ee_mempool);
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PR
354 return NULL;
355}
356
435f0740 357void drbd_free_some_ee(struct drbd_conf *mdev, struct drbd_epoch_entry *e, int is_net)
b411b363 358{
c36c3ced
LE
359 if (e->flags & EE_HAS_DIGEST)
360 kfree(e->digest);
435f0740 361 drbd_pp_free(mdev, e->pages, is_net);
45bb912b 362 D_ASSERT(atomic_read(&e->pending_bios) == 0);
24c4830c 363 D_ASSERT(hlist_unhashed(&e->collision));
b411b363
PR
364 mempool_free(e, drbd_ee_mempool);
365}
366
367int drbd_release_ee(struct drbd_conf *mdev, struct list_head *list)
368{
369 LIST_HEAD(work_list);
370 struct drbd_epoch_entry *e, *t;
371 int count = 0;
435f0740 372 int is_net = list == &mdev->net_ee;
b411b363
PR
373
374 spin_lock_irq(&mdev->req_lock);
375 list_splice_init(list, &work_list);
376 spin_unlock_irq(&mdev->req_lock);
377
378 list_for_each_entry_safe(e, t, &work_list, w.list) {
435f0740 379 drbd_free_some_ee(mdev, e, is_net);
b411b363
PR
380 count++;
381 }
382 return count;
383}
384
385
386/*
387 * This function is called from _asender only_
388 * but see also comments in _req_mod(,barrier_acked)
389 * and receive_Barrier.
390 *
391 * Move entries from net_ee to done_ee, if ready.
392 * Grab done_ee, call all callbacks, free the entries.
393 * The callbacks typically send out ACKs.
394 */
395static int drbd_process_done_ee(struct drbd_conf *mdev)
396{
397 LIST_HEAD(work_list);
398 LIST_HEAD(reclaimed);
399 struct drbd_epoch_entry *e, *t;
400 int ok = (mdev->state.conn >= C_WF_REPORT_PARAMS);
401
402 spin_lock_irq(&mdev->req_lock);
403 reclaim_net_ee(mdev, &reclaimed);
404 list_splice_init(&mdev->done_ee, &work_list);
405 spin_unlock_irq(&mdev->req_lock);
406
407 list_for_each_entry_safe(e, t, &reclaimed, w.list)
435f0740 408 drbd_free_net_ee(mdev, e);
b411b363
PR
409
410 /* possible callbacks here:
411 * e_end_block, and e_end_resync_block, e_send_discard_ack.
412 * all ignore the last argument.
413 */
414 list_for_each_entry_safe(e, t, &work_list, w.list) {
b411b363
PR
415 /* list_del not necessary, next/prev members not touched */
416 ok = e->w.cb(mdev, &e->w, !ok) && ok;
417 drbd_free_ee(mdev, e);
418 }
419 wake_up(&mdev->ee_wait);
420
421 return ok;
422}
423
424void _drbd_wait_ee_list_empty(struct drbd_conf *mdev, struct list_head *head)
425{
426 DEFINE_WAIT(wait);
427
428 /* avoids spin_lock/unlock
429 * and calling prepare_to_wait in the fast path */
430 while (!list_empty(head)) {
431 prepare_to_wait(&mdev->ee_wait, &wait, TASK_UNINTERRUPTIBLE);
432 spin_unlock_irq(&mdev->req_lock);
7eaceacc 433 io_schedule();
b411b363
PR
434 finish_wait(&mdev->ee_wait, &wait);
435 spin_lock_irq(&mdev->req_lock);
436 }
437}
438
439void drbd_wait_ee_list_empty(struct drbd_conf *mdev, struct list_head *head)
440{
441 spin_lock_irq(&mdev->req_lock);
442 _drbd_wait_ee_list_empty(mdev, head);
443 spin_unlock_irq(&mdev->req_lock);
444}
445
446/* see also kernel_accept; which is only present since 2.6.18.
447 * also we want to log which part of it failed, exactly */
448static int drbd_accept(struct drbd_conf *mdev, const char **what,
449 struct socket *sock, struct socket **newsock)
450{
451 struct sock *sk = sock->sk;
452 int err = 0;
453
454 *what = "listen";
455 err = sock->ops->listen(sock, 5);
456 if (err < 0)
457 goto out;
458
459 *what = "sock_create_lite";
460 err = sock_create_lite(sk->sk_family, sk->sk_type, sk->sk_protocol,
461 newsock);
462 if (err < 0)
463 goto out;
464
465 *what = "accept";
466 err = sock->ops->accept(sock, *newsock, 0);
467 if (err < 0) {
468 sock_release(*newsock);
469 *newsock = NULL;
470 goto out;
471 }
472 (*newsock)->ops = sock->ops;
473
474out:
475 return err;
476}
477
478static int drbd_recv_short(struct drbd_conf *mdev, struct socket *sock,
479 void *buf, size_t size, int flags)
480{
481 mm_segment_t oldfs;
482 struct kvec iov = {
483 .iov_base = buf,
484 .iov_len = size,
485 };
486 struct msghdr msg = {
487 .msg_iovlen = 1,
488 .msg_iov = (struct iovec *)&iov,
489 .msg_flags = (flags ? flags : MSG_WAITALL | MSG_NOSIGNAL)
490 };
491 int rv;
492
493 oldfs = get_fs();
494 set_fs(KERNEL_DS);
495 rv = sock_recvmsg(sock, &msg, size, msg.msg_flags);
496 set_fs(oldfs);
497
498 return rv;
499}
500
501static int drbd_recv(struct drbd_conf *mdev, void *buf, size_t size)
502{
503 mm_segment_t oldfs;
504 struct kvec iov = {
505 .iov_base = buf,
506 .iov_len = size,
507 };
508 struct msghdr msg = {
509 .msg_iovlen = 1,
510 .msg_iov = (struct iovec *)&iov,
511 .msg_flags = MSG_WAITALL | MSG_NOSIGNAL
512 };
513 int rv;
514
515 oldfs = get_fs();
516 set_fs(KERNEL_DS);
517
518 for (;;) {
519 rv = sock_recvmsg(mdev->data.socket, &msg, size, msg.msg_flags);
520 if (rv == size)
521 break;
522
523 /* Note:
524 * ECONNRESET other side closed the connection
525 * ERESTARTSYS (on sock) we got a signal
526 */
527
528 if (rv < 0) {
529 if (rv == -ECONNRESET)
530 dev_info(DEV, "sock was reset by peer\n");
531 else if (rv != -ERESTARTSYS)
532 dev_err(DEV, "sock_recvmsg returned %d\n", rv);
533 break;
534 } else if (rv == 0) {
535 dev_info(DEV, "sock was shut down by peer\n");
536 break;
537 } else {
538 /* signal came in, or peer/link went down,
539 * after we read a partial message
540 */
541 /* D_ASSERT(signal_pending(current)); */
542 break;
543 }
544 };
545
546 set_fs(oldfs);
547
548 if (rv != size)
549 drbd_force_state(mdev, NS(conn, C_BROKEN_PIPE));
550
551 return rv;
552}
553
5dbf1673
LE
554/* quoting tcp(7):
555 * On individual connections, the socket buffer size must be set prior to the
556 * listen(2) or connect(2) calls in order to have it take effect.
557 * This is our wrapper to do so.
558 */
559static void drbd_setbufsize(struct socket *sock, unsigned int snd,
560 unsigned int rcv)
561{
562 /* open coded SO_SNDBUF, SO_RCVBUF */
563 if (snd) {
564 sock->sk->sk_sndbuf = snd;
565 sock->sk->sk_userlocks |= SOCK_SNDBUF_LOCK;
566 }
567 if (rcv) {
568 sock->sk->sk_rcvbuf = rcv;
569 sock->sk->sk_userlocks |= SOCK_RCVBUF_LOCK;
570 }
571}
572
b411b363
PR
573static struct socket *drbd_try_connect(struct drbd_conf *mdev)
574{
575 const char *what;
576 struct socket *sock;
577 struct sockaddr_in6 src_in6;
578 int err;
579 int disconnect_on_error = 1;
580
581 if (!get_net_conf(mdev))
582 return NULL;
583
584 what = "sock_create_kern";
585 err = sock_create_kern(((struct sockaddr *)mdev->net_conf->my_addr)->sa_family,
586 SOCK_STREAM, IPPROTO_TCP, &sock);
587 if (err < 0) {
588 sock = NULL;
589 goto out;
590 }
591
592 sock->sk->sk_rcvtimeo =
593 sock->sk->sk_sndtimeo = mdev->net_conf->try_connect_int*HZ;
5dbf1673
LE
594 drbd_setbufsize(sock, mdev->net_conf->sndbuf_size,
595 mdev->net_conf->rcvbuf_size);
b411b363
PR
596
597 /* explicitly bind to the configured IP as source IP
598 * for the outgoing connections.
599 * This is needed for multihomed hosts and to be
600 * able to use lo: interfaces for drbd.
601 * Make sure to use 0 as port number, so linux selects
602 * a free one dynamically.
603 */
604 memcpy(&src_in6, mdev->net_conf->my_addr,
605 min_t(int, mdev->net_conf->my_addr_len, sizeof(src_in6)));
606 if (((struct sockaddr *)mdev->net_conf->my_addr)->sa_family == AF_INET6)
607 src_in6.sin6_port = 0;
608 else
609 ((struct sockaddr_in *)&src_in6)->sin_port = 0; /* AF_INET & AF_SCI */
610
611 what = "bind before connect";
612 err = sock->ops->bind(sock,
613 (struct sockaddr *) &src_in6,
614 mdev->net_conf->my_addr_len);
615 if (err < 0)
616 goto out;
617
618 /* connect may fail, peer not yet available.
619 * stay C_WF_CONNECTION, don't go Disconnecting! */
620 disconnect_on_error = 0;
621 what = "connect";
622 err = sock->ops->connect(sock,
623 (struct sockaddr *)mdev->net_conf->peer_addr,
624 mdev->net_conf->peer_addr_len, 0);
625
626out:
627 if (err < 0) {
628 if (sock) {
629 sock_release(sock);
630 sock = NULL;
631 }
632 switch (-err) {
633 /* timeout, busy, signal pending */
634 case ETIMEDOUT: case EAGAIN: case EINPROGRESS:
635 case EINTR: case ERESTARTSYS:
636 /* peer not (yet) available, network problem */
637 case ECONNREFUSED: case ENETUNREACH:
638 case EHOSTDOWN: case EHOSTUNREACH:
639 disconnect_on_error = 0;
640 break;
641 default:
642 dev_err(DEV, "%s failed, err = %d\n", what, err);
643 }
644 if (disconnect_on_error)
645 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
646 }
647 put_net_conf(mdev);
648 return sock;
649}
650
651static struct socket *drbd_wait_for_connect(struct drbd_conf *mdev)
652{
653 int timeo, err;
654 struct socket *s_estab = NULL, *s_listen;
655 const char *what;
656
657 if (!get_net_conf(mdev))
658 return NULL;
659
660 what = "sock_create_kern";
661 err = sock_create_kern(((struct sockaddr *)mdev->net_conf->my_addr)->sa_family,
662 SOCK_STREAM, IPPROTO_TCP, &s_listen);
663 if (err) {
664 s_listen = NULL;
665 goto out;
666 }
667
668 timeo = mdev->net_conf->try_connect_int * HZ;
669 timeo += (random32() & 1) ? timeo / 7 : -timeo / 7; /* 28.5% random jitter */
670
671 s_listen->sk->sk_reuse = 1; /* SO_REUSEADDR */
672 s_listen->sk->sk_rcvtimeo = timeo;
673 s_listen->sk->sk_sndtimeo = timeo;
5dbf1673
LE
674 drbd_setbufsize(s_listen, mdev->net_conf->sndbuf_size,
675 mdev->net_conf->rcvbuf_size);
b411b363
PR
676
677 what = "bind before listen";
678 err = s_listen->ops->bind(s_listen,
679 (struct sockaddr *) mdev->net_conf->my_addr,
680 mdev->net_conf->my_addr_len);
681 if (err < 0)
682 goto out;
683
684 err = drbd_accept(mdev, &what, s_listen, &s_estab);
685
686out:
687 if (s_listen)
688 sock_release(s_listen);
689 if (err < 0) {
690 if (err != -EAGAIN && err != -EINTR && err != -ERESTARTSYS) {
691 dev_err(DEV, "%s failed, err = %d\n", what, err);
692 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
693 }
694 }
695 put_net_conf(mdev);
696
697 return s_estab;
698}
699
700static int drbd_send_fp(struct drbd_conf *mdev,
701 struct socket *sock, enum drbd_packets cmd)
702{
02918be2 703 struct p_header80 *h = &mdev->data.sbuf.header.h80;
b411b363
PR
704
705 return _drbd_send_cmd(mdev, sock, cmd, h, sizeof(*h), 0);
706}
707
708static enum drbd_packets drbd_recv_fp(struct drbd_conf *mdev, struct socket *sock)
709{
02918be2 710 struct p_header80 *h = &mdev->data.rbuf.header.h80;
b411b363
PR
711 int rr;
712
713 rr = drbd_recv_short(mdev, sock, h, sizeof(*h), 0);
714
ca9bc12b 715 if (rr == sizeof(*h) && h->magic == cpu_to_be32(DRBD_MAGIC))
b411b363
PR
716 return be16_to_cpu(h->command);
717
718 return 0xffff;
719}
720
721/**
722 * drbd_socket_okay() - Free the socket if its connection is not okay
723 * @mdev: DRBD device.
724 * @sock: pointer to the pointer to the socket.
725 */
726static int drbd_socket_okay(struct drbd_conf *mdev, struct socket **sock)
727{
728 int rr;
729 char tb[4];
730
731 if (!*sock)
81e84650 732 return false;
b411b363
PR
733
734 rr = drbd_recv_short(mdev, *sock, tb, 4, MSG_DONTWAIT | MSG_PEEK);
735
736 if (rr > 0 || rr == -EAGAIN) {
81e84650 737 return true;
b411b363
PR
738 } else {
739 sock_release(*sock);
740 *sock = NULL;
81e84650 741 return false;
b411b363
PR
742 }
743}
744
745/*
746 * return values:
747 * 1 yes, we have a valid connection
748 * 0 oops, did not work out, please try again
749 * -1 peer talks different language,
750 * no point in trying again, please go standalone.
751 * -2 We do not have a network config...
752 */
753static int drbd_connect(struct drbd_conf *mdev)
754{
755 struct socket *s, *sock, *msock;
756 int try, h, ok;
757
758 D_ASSERT(!mdev->data.socket);
759
b411b363
PR
760 if (drbd_request_state(mdev, NS(conn, C_WF_CONNECTION)) < SS_SUCCESS)
761 return -2;
762
763 clear_bit(DISCARD_CONCURRENT, &mdev->flags);
764
765 sock = NULL;
766 msock = NULL;
767
768 do {
769 for (try = 0;;) {
770 /* 3 tries, this should take less than a second! */
771 s = drbd_try_connect(mdev);
772 if (s || ++try >= 3)
773 break;
774 /* give the other side time to call bind() & listen() */
20ee6390 775 schedule_timeout_interruptible(HZ / 10);
b411b363
PR
776 }
777
778 if (s) {
779 if (!sock) {
780 drbd_send_fp(mdev, s, P_HAND_SHAKE_S);
781 sock = s;
782 s = NULL;
783 } else if (!msock) {
784 drbd_send_fp(mdev, s, P_HAND_SHAKE_M);
785 msock = s;
786 s = NULL;
787 } else {
788 dev_err(DEV, "Logic error in drbd_connect()\n");
789 goto out_release_sockets;
790 }
791 }
792
793 if (sock && msock) {
a8e40792 794 schedule_timeout_interruptible(mdev->net_conf->ping_timeo*HZ/10);
b411b363
PR
795 ok = drbd_socket_okay(mdev, &sock);
796 ok = drbd_socket_okay(mdev, &msock) && ok;
797 if (ok)
798 break;
799 }
800
801retry:
802 s = drbd_wait_for_connect(mdev);
803 if (s) {
804 try = drbd_recv_fp(mdev, s);
805 drbd_socket_okay(mdev, &sock);
806 drbd_socket_okay(mdev, &msock);
807 switch (try) {
808 case P_HAND_SHAKE_S:
809 if (sock) {
810 dev_warn(DEV, "initial packet S crossed\n");
811 sock_release(sock);
812 }
813 sock = s;
814 break;
815 case P_HAND_SHAKE_M:
816 if (msock) {
817 dev_warn(DEV, "initial packet M crossed\n");
818 sock_release(msock);
819 }
820 msock = s;
821 set_bit(DISCARD_CONCURRENT, &mdev->flags);
822 break;
823 default:
824 dev_warn(DEV, "Error receiving initial packet\n");
825 sock_release(s);
826 if (random32() & 1)
827 goto retry;
828 }
829 }
830
831 if (mdev->state.conn <= C_DISCONNECTING)
832 goto out_release_sockets;
833 if (signal_pending(current)) {
834 flush_signals(current);
835 smp_rmb();
836 if (get_t_state(&mdev->receiver) == Exiting)
837 goto out_release_sockets;
838 }
839
840 if (sock && msock) {
841 ok = drbd_socket_okay(mdev, &sock);
842 ok = drbd_socket_okay(mdev, &msock) && ok;
843 if (ok)
844 break;
845 }
846 } while (1);
847
848 msock->sk->sk_reuse = 1; /* SO_REUSEADDR */
849 sock->sk->sk_reuse = 1; /* SO_REUSEADDR */
850
851 sock->sk->sk_allocation = GFP_NOIO;
852 msock->sk->sk_allocation = GFP_NOIO;
853
854 sock->sk->sk_priority = TC_PRIO_INTERACTIVE_BULK;
855 msock->sk->sk_priority = TC_PRIO_INTERACTIVE;
856
b411b363
PR
857 /* NOT YET ...
858 * sock->sk->sk_sndtimeo = mdev->net_conf->timeout*HZ/10;
859 * sock->sk->sk_rcvtimeo = MAX_SCHEDULE_TIMEOUT;
860 * first set it to the P_HAND_SHAKE timeout,
861 * which we set to 4x the configured ping_timeout. */
862 sock->sk->sk_sndtimeo =
863 sock->sk->sk_rcvtimeo = mdev->net_conf->ping_timeo*4*HZ/10;
864
865 msock->sk->sk_sndtimeo = mdev->net_conf->timeout*HZ/10;
866 msock->sk->sk_rcvtimeo = mdev->net_conf->ping_int*HZ;
867
868 /* we don't want delays.
25985edc 869 * we use TCP_CORK where appropriate, though */
b411b363
PR
870 drbd_tcp_nodelay(sock);
871 drbd_tcp_nodelay(msock);
872
873 mdev->data.socket = sock;
874 mdev->meta.socket = msock;
875 mdev->last_received = jiffies;
876
877 D_ASSERT(mdev->asender.task == NULL);
878
879 h = drbd_do_handshake(mdev);
880 if (h <= 0)
881 return h;
882
883 if (mdev->cram_hmac_tfm) {
884 /* drbd_request_state(mdev, NS(conn, WFAuth)); */
b10d96cb
JT
885 switch (drbd_do_auth(mdev)) {
886 case -1:
b411b363
PR
887 dev_err(DEV, "Authentication of peer failed\n");
888 return -1;
b10d96cb
JT
889 case 0:
890 dev_err(DEV, "Authentication of peer failed, trying again.\n");
891 return 0;
b411b363
PR
892 }
893 }
894
895 if (drbd_request_state(mdev, NS(conn, C_WF_REPORT_PARAMS)) < SS_SUCCESS)
896 return 0;
897
898 sock->sk->sk_sndtimeo = mdev->net_conf->timeout*HZ/10;
899 sock->sk->sk_rcvtimeo = MAX_SCHEDULE_TIMEOUT;
900
901 atomic_set(&mdev->packet_seq, 0);
902 mdev->peer_seq = 0;
903
904 drbd_thread_start(&mdev->asender);
905
148efa16 906 if (drbd_send_protocol(mdev) == -1)
7e2455c1 907 return -1;
b411b363 908 drbd_send_sync_param(mdev, &mdev->sync_conf);
e89b591c 909 drbd_send_sizes(mdev, 0, 0);
b411b363
PR
910 drbd_send_uuids(mdev);
911 drbd_send_state(mdev);
912 clear_bit(USE_DEGR_WFC_T, &mdev->flags);
913 clear_bit(RESIZE_PENDING, &mdev->flags);
7fde2be9 914 mod_timer(&mdev->request_timer, jiffies + HZ); /* just start it here. */
b411b363
PR
915
916 return 1;
917
918out_release_sockets:
919 if (sock)
920 sock_release(sock);
921 if (msock)
922 sock_release(msock);
923 return -1;
924}
925
02918be2 926static int drbd_recv_header(struct drbd_conf *mdev, enum drbd_packets *cmd, unsigned int *packet_size)
b411b363 927{
02918be2 928 union p_header *h = &mdev->data.rbuf.header;
b411b363
PR
929 int r;
930
931 r = drbd_recv(mdev, h, sizeof(*h));
b411b363 932 if (unlikely(r != sizeof(*h))) {
0ddc5549
LE
933 if (!signal_pending(current))
934 dev_warn(DEV, "short read expecting header on sock: r=%d\n", r);
81e84650 935 return false;
02918be2
PR
936 }
937
ca9bc12b 938 if (likely(h->h80.magic == cpu_to_be32(DRBD_MAGIC))) {
02918be2
PR
939 *cmd = be16_to_cpu(h->h80.command);
940 *packet_size = be16_to_cpu(h->h80.length);
ca9bc12b 941 } else if (h->h95.magic == cpu_to_be16(DRBD_MAGIC_BIG)) {
02918be2
PR
942 *cmd = be16_to_cpu(h->h95.command);
943 *packet_size = be32_to_cpu(h->h95.length);
944 } else {
004352fa
LE
945 dev_err(DEV, "magic?? on data m: 0x%08x c: %d l: %d\n",
946 be32_to_cpu(h->h80.magic),
947 be16_to_cpu(h->h80.command),
948 be16_to_cpu(h->h80.length));
81e84650 949 return false;
b411b363
PR
950 }
951 mdev->last_received = jiffies;
952
81e84650 953 return true;
b411b363
PR
954}
955
2451fc3b 956static void drbd_flush(struct drbd_conf *mdev)
b411b363
PR
957{
958 int rv;
959
960 if (mdev->write_ordering >= WO_bdev_flush && get_ldev(mdev)) {
fbd9b09a 961 rv = blkdev_issue_flush(mdev->ldev->backing_bdev, GFP_KERNEL,
dd3932ed 962 NULL);
b411b363
PR
963 if (rv) {
964 dev_err(DEV, "local disk flush failed with status %d\n", rv);
965 /* would rather check on EOPNOTSUPP, but that is not reliable.
966 * don't try again for ANY return value != 0
967 * if (rv == -EOPNOTSUPP) */
968 drbd_bump_write_ordering(mdev, WO_drain_io);
969 }
970 put_ldev(mdev);
971 }
b411b363
PR
972}
973
974/**
975 * drbd_may_finish_epoch() - Applies an epoch_event to the epoch's state, eventually finishes it.
976 * @mdev: DRBD device.
977 * @epoch: Epoch object.
978 * @ev: Epoch event.
979 */
980static enum finish_epoch drbd_may_finish_epoch(struct drbd_conf *mdev,
981 struct drbd_epoch *epoch,
982 enum epoch_event ev)
983{
2451fc3b 984 int epoch_size;
b411b363 985 struct drbd_epoch *next_epoch;
b411b363
PR
986 enum finish_epoch rv = FE_STILL_LIVE;
987
988 spin_lock(&mdev->epoch_lock);
989 do {
990 next_epoch = NULL;
b411b363
PR
991
992 epoch_size = atomic_read(&epoch->epoch_size);
993
994 switch (ev & ~EV_CLEANUP) {
995 case EV_PUT:
996 atomic_dec(&epoch->active);
997 break;
998 case EV_GOT_BARRIER_NR:
999 set_bit(DE_HAVE_BARRIER_NUMBER, &epoch->flags);
b411b363
PR
1000 break;
1001 case EV_BECAME_LAST:
1002 /* nothing to do*/
1003 break;
1004 }
1005
b411b363
PR
1006 if (epoch_size != 0 &&
1007 atomic_read(&epoch->active) == 0 &&
2451fc3b 1008 test_bit(DE_HAVE_BARRIER_NUMBER, &epoch->flags)) {
b411b363
PR
1009 if (!(ev & EV_CLEANUP)) {
1010 spin_unlock(&mdev->epoch_lock);
1011 drbd_send_b_ack(mdev, epoch->barrier_nr, epoch_size);
1012 spin_lock(&mdev->epoch_lock);
1013 }
1014 dec_unacked(mdev);
1015
1016 if (mdev->current_epoch != epoch) {
1017 next_epoch = list_entry(epoch->list.next, struct drbd_epoch, list);
1018 list_del(&epoch->list);
1019 ev = EV_BECAME_LAST | (ev & EV_CLEANUP);
1020 mdev->epochs--;
b411b363
PR
1021 kfree(epoch);
1022
1023 if (rv == FE_STILL_LIVE)
1024 rv = FE_DESTROYED;
1025 } else {
1026 epoch->flags = 0;
1027 atomic_set(&epoch->epoch_size, 0);
698f9315 1028 /* atomic_set(&epoch->active, 0); is already zero */
b411b363
PR
1029 if (rv == FE_STILL_LIVE)
1030 rv = FE_RECYCLED;
2451fc3b 1031 wake_up(&mdev->ee_wait);
b411b363
PR
1032 }
1033 }
1034
1035 if (!next_epoch)
1036 break;
1037
1038 epoch = next_epoch;
1039 } while (1);
1040
1041 spin_unlock(&mdev->epoch_lock);
1042
b411b363
PR
1043 return rv;
1044}
1045
1046/**
1047 * drbd_bump_write_ordering() - Fall back to an other write ordering method
1048 * @mdev: DRBD device.
1049 * @wo: Write ordering method to try.
1050 */
1051void drbd_bump_write_ordering(struct drbd_conf *mdev, enum write_ordering_e wo) __must_hold(local)
1052{
1053 enum write_ordering_e pwo;
1054 static char *write_ordering_str[] = {
1055 [WO_none] = "none",
1056 [WO_drain_io] = "drain",
1057 [WO_bdev_flush] = "flush",
b411b363
PR
1058 };
1059
1060 pwo = mdev->write_ordering;
1061 wo = min(pwo, wo);
b411b363
PR
1062 if (wo == WO_bdev_flush && mdev->ldev->dc.no_disk_flush)
1063 wo = WO_drain_io;
1064 if (wo == WO_drain_io && mdev->ldev->dc.no_disk_drain)
1065 wo = WO_none;
1066 mdev->write_ordering = wo;
2451fc3b 1067 if (pwo != mdev->write_ordering || wo == WO_bdev_flush)
b411b363
PR
1068 dev_info(DEV, "Method to ensure write ordering: %s\n", write_ordering_str[mdev->write_ordering]);
1069}
1070
45bb912b
LE
1071/**
1072 * drbd_submit_ee()
1073 * @mdev: DRBD device.
1074 * @e: epoch entry
1075 * @rw: flag field, see bio->bi_rw
10f6d992
LE
1076 *
1077 * May spread the pages to multiple bios,
1078 * depending on bio_add_page restrictions.
1079 *
1080 * Returns 0 if all bios have been submitted,
1081 * -ENOMEM if we could not allocate enough bios,
1082 * -ENOSPC (any better suggestion?) if we have not been able to bio_add_page a
1083 * single page to an empty bio (which should never happen and likely indicates
1084 * that the lower level IO stack is in some way broken). This has been observed
1085 * on certain Xen deployments.
45bb912b
LE
1086 */
1087/* TODO allocate from our own bio_set. */
1088int drbd_submit_ee(struct drbd_conf *mdev, struct drbd_epoch_entry *e,
1089 const unsigned rw, const int fault_type)
1090{
1091 struct bio *bios = NULL;
1092 struct bio *bio;
1093 struct page *page = e->pages;
1094 sector_t sector = e->sector;
1095 unsigned ds = e->size;
1096 unsigned n_bios = 0;
1097 unsigned nr_pages = (ds + PAGE_SIZE -1) >> PAGE_SHIFT;
10f6d992 1098 int err = -ENOMEM;
45bb912b
LE
1099
1100 /* In most cases, we will only need one bio. But in case the lower
1101 * level restrictions happen to be different at this offset on this
1102 * side than those of the sending peer, we may need to submit the
1103 * request in more than one bio. */
1104next_bio:
1105 bio = bio_alloc(GFP_NOIO, nr_pages);
1106 if (!bio) {
1107 dev_err(DEV, "submit_ee: Allocation of a bio failed\n");
1108 goto fail;
1109 }
1110 /* > e->sector, unless this is the first bio */
1111 bio->bi_sector = sector;
1112 bio->bi_bdev = mdev->ldev->backing_bdev;
45bb912b
LE
1113 bio->bi_rw = rw;
1114 bio->bi_private = e;
1115 bio->bi_end_io = drbd_endio_sec;
1116
1117 bio->bi_next = bios;
1118 bios = bio;
1119 ++n_bios;
1120
1121 page_chain_for_each(page) {
1122 unsigned len = min_t(unsigned, ds, PAGE_SIZE);
1123 if (!bio_add_page(bio, page, len, 0)) {
10f6d992
LE
1124 /* A single page must always be possible!
1125 * But in case it fails anyways,
1126 * we deal with it, and complain (below). */
1127 if (bio->bi_vcnt == 0) {
1128 dev_err(DEV,
1129 "bio_add_page failed for len=%u, "
1130 "bi_vcnt=0 (bi_sector=%llu)\n",
1131 len, (unsigned long long)bio->bi_sector);
1132 err = -ENOSPC;
1133 goto fail;
1134 }
45bb912b
LE
1135 goto next_bio;
1136 }
1137 ds -= len;
1138 sector += len >> 9;
1139 --nr_pages;
1140 }
1141 D_ASSERT(page == NULL);
1142 D_ASSERT(ds == 0);
1143
1144 atomic_set(&e->pending_bios, n_bios);
1145 do {
1146 bio = bios;
1147 bios = bios->bi_next;
1148 bio->bi_next = NULL;
1149
45bb912b 1150 drbd_generic_make_request(mdev, fault_type, bio);
45bb912b 1151 } while (bios);
45bb912b
LE
1152 return 0;
1153
1154fail:
1155 while (bios) {
1156 bio = bios;
1157 bios = bios->bi_next;
1158 bio_put(bio);
1159 }
10f6d992 1160 return err;
45bb912b
LE
1161}
1162
02918be2 1163static int receive_Barrier(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363 1164{
2451fc3b 1165 int rv;
02918be2 1166 struct p_barrier *p = &mdev->data.rbuf.barrier;
b411b363
PR
1167 struct drbd_epoch *epoch;
1168
b411b363
PR
1169 inc_unacked(mdev);
1170
b411b363
PR
1171 mdev->current_epoch->barrier_nr = p->barrier;
1172 rv = drbd_may_finish_epoch(mdev, mdev->current_epoch, EV_GOT_BARRIER_NR);
1173
1174 /* P_BARRIER_ACK may imply that the corresponding extent is dropped from
1175 * the activity log, which means it would not be resynced in case the
1176 * R_PRIMARY crashes now.
1177 * Therefore we must send the barrier_ack after the barrier request was
1178 * completed. */
1179 switch (mdev->write_ordering) {
b411b363
PR
1180 case WO_none:
1181 if (rv == FE_RECYCLED)
81e84650 1182 return true;
2451fc3b
PR
1183
1184 /* receiver context, in the writeout path of the other node.
1185 * avoid potential distributed deadlock */
1186 epoch = kmalloc(sizeof(struct drbd_epoch), GFP_NOIO);
1187 if (epoch)
1188 break;
1189 else
1190 dev_warn(DEV, "Allocation of an epoch failed, slowing down\n");
1191 /* Fall through */
b411b363
PR
1192
1193 case WO_bdev_flush:
1194 case WO_drain_io:
b411b363 1195 drbd_wait_ee_list_empty(mdev, &mdev->active_ee);
2451fc3b
PR
1196 drbd_flush(mdev);
1197
1198 if (atomic_read(&mdev->current_epoch->epoch_size)) {
1199 epoch = kmalloc(sizeof(struct drbd_epoch), GFP_NOIO);
1200 if (epoch)
1201 break;
b411b363
PR
1202 }
1203
2451fc3b
PR
1204 epoch = mdev->current_epoch;
1205 wait_event(mdev->ee_wait, atomic_read(&epoch->epoch_size) == 0);
1206
1207 D_ASSERT(atomic_read(&epoch->active) == 0);
1208 D_ASSERT(epoch->flags == 0);
b411b363 1209
81e84650 1210 return true;
2451fc3b
PR
1211 default:
1212 dev_err(DEV, "Strangeness in mdev->write_ordering %d\n", mdev->write_ordering);
81e84650 1213 return false;
b411b363
PR
1214 }
1215
1216 epoch->flags = 0;
1217 atomic_set(&epoch->epoch_size, 0);
1218 atomic_set(&epoch->active, 0);
1219
1220 spin_lock(&mdev->epoch_lock);
1221 if (atomic_read(&mdev->current_epoch->epoch_size)) {
1222 list_add(&epoch->list, &mdev->current_epoch->list);
1223 mdev->current_epoch = epoch;
1224 mdev->epochs++;
b411b363
PR
1225 } else {
1226 /* The current_epoch got recycled while we allocated this one... */
1227 kfree(epoch);
1228 }
1229 spin_unlock(&mdev->epoch_lock);
1230
81e84650 1231 return true;
b411b363
PR
1232}
1233
1234/* used from receive_RSDataReply (recv_resync_read)
1235 * and from receive_Data */
1236static struct drbd_epoch_entry *
1237read_in_block(struct drbd_conf *mdev, u64 id, sector_t sector, int data_size) __must_hold(local)
1238{
6666032a 1239 const sector_t capacity = drbd_get_capacity(mdev->this_bdev);
b411b363 1240 struct drbd_epoch_entry *e;
b411b363 1241 struct page *page;
45bb912b 1242 int dgs, ds, rr;
b411b363
PR
1243 void *dig_in = mdev->int_dig_in;
1244 void *dig_vv = mdev->int_dig_vv;
6b4388ac 1245 unsigned long *data;
b411b363
PR
1246
1247 dgs = (mdev->agreed_pro_version >= 87 && mdev->integrity_r_tfm) ?
1248 crypto_hash_digestsize(mdev->integrity_r_tfm) : 0;
1249
1250 if (dgs) {
1251 rr = drbd_recv(mdev, dig_in, dgs);
1252 if (rr != dgs) {
0ddc5549
LE
1253 if (!signal_pending(current))
1254 dev_warn(DEV,
1255 "short read receiving data digest: read %d expected %d\n",
1256 rr, dgs);
b411b363
PR
1257 return NULL;
1258 }
1259 }
1260
1261 data_size -= dgs;
1262
d07c9c10 1263 ERR_IF(data_size == 0) return NULL;
b411b363 1264 ERR_IF(data_size & 0x1ff) return NULL;
1816a2b4 1265 ERR_IF(data_size > DRBD_MAX_BIO_SIZE) return NULL;
b411b363 1266
6666032a
LE
1267 /* even though we trust out peer,
1268 * we sometimes have to double check. */
1269 if (sector + (data_size>>9) > capacity) {
fdda6544
LE
1270 dev_err(DEV, "request from peer beyond end of local disk: "
1271 "capacity: %llus < sector: %llus + size: %u\n",
6666032a
LE
1272 (unsigned long long)capacity,
1273 (unsigned long long)sector, data_size);
1274 return NULL;
1275 }
1276
b411b363
PR
1277 /* GFP_NOIO, because we must not cause arbitrary write-out: in a DRBD
1278 * "criss-cross" setup, that might cause write-out on some other DRBD,
1279 * which in turn might block on the other node at this very place. */
1280 e = drbd_alloc_ee(mdev, id, sector, data_size, GFP_NOIO);
1281 if (!e)
1282 return NULL;
45bb912b 1283
b411b363 1284 ds = data_size;
45bb912b
LE
1285 page = e->pages;
1286 page_chain_for_each(page) {
1287 unsigned len = min_t(int, ds, PAGE_SIZE);
6b4388ac 1288 data = kmap(page);
45bb912b 1289 rr = drbd_recv(mdev, data, len);
0cf9d27e 1290 if (drbd_insert_fault(mdev, DRBD_FAULT_RECEIVE)) {
6b4388ac
PR
1291 dev_err(DEV, "Fault injection: Corrupting data on receive\n");
1292 data[0] = data[0] ^ (unsigned long)-1;
1293 }
b411b363 1294 kunmap(page);
45bb912b 1295 if (rr != len) {
b411b363 1296 drbd_free_ee(mdev, e);
0ddc5549
LE
1297 if (!signal_pending(current))
1298 dev_warn(DEV, "short read receiving data: read %d expected %d\n",
1299 rr, len);
b411b363
PR
1300 return NULL;
1301 }
1302 ds -= rr;
1303 }
1304
1305 if (dgs) {
45bb912b 1306 drbd_csum_ee(mdev, mdev->integrity_r_tfm, e, dig_vv);
b411b363 1307 if (memcmp(dig_in, dig_vv, dgs)) {
470be44a
LE
1308 dev_err(DEV, "Digest integrity check FAILED: %llus +%u\n",
1309 (unsigned long long)sector, data_size);
b411b363
PR
1310 drbd_bcast_ee(mdev, "digest failed",
1311 dgs, dig_in, dig_vv, e);
1312 drbd_free_ee(mdev, e);
1313 return NULL;
1314 }
1315 }
1316 mdev->recv_cnt += data_size>>9;
1317 return e;
1318}
1319
1320/* drbd_drain_block() just takes a data block
1321 * out of the socket input buffer, and discards it.
1322 */
1323static int drbd_drain_block(struct drbd_conf *mdev, int data_size)
1324{
1325 struct page *page;
1326 int rr, rv = 1;
1327 void *data;
1328
c3470cde 1329 if (!data_size)
81e84650 1330 return true;
c3470cde 1331
45bb912b 1332 page = drbd_pp_alloc(mdev, 1, 1);
b411b363
PR
1333
1334 data = kmap(page);
1335 while (data_size) {
1336 rr = drbd_recv(mdev, data, min_t(int, data_size, PAGE_SIZE));
1337 if (rr != min_t(int, data_size, PAGE_SIZE)) {
1338 rv = 0;
0ddc5549
LE
1339 if (!signal_pending(current))
1340 dev_warn(DEV,
1341 "short read receiving data: read %d expected %d\n",
1342 rr, min_t(int, data_size, PAGE_SIZE));
b411b363
PR
1343 break;
1344 }
1345 data_size -= rr;
1346 }
1347 kunmap(page);
435f0740 1348 drbd_pp_free(mdev, page, 0);
b411b363
PR
1349 return rv;
1350}
1351
1352static int recv_dless_read(struct drbd_conf *mdev, struct drbd_request *req,
1353 sector_t sector, int data_size)
1354{
1355 struct bio_vec *bvec;
1356 struct bio *bio;
1357 int dgs, rr, i, expect;
1358 void *dig_in = mdev->int_dig_in;
1359 void *dig_vv = mdev->int_dig_vv;
1360
1361 dgs = (mdev->agreed_pro_version >= 87 && mdev->integrity_r_tfm) ?
1362 crypto_hash_digestsize(mdev->integrity_r_tfm) : 0;
1363
1364 if (dgs) {
1365 rr = drbd_recv(mdev, dig_in, dgs);
1366 if (rr != dgs) {
0ddc5549
LE
1367 if (!signal_pending(current))
1368 dev_warn(DEV,
1369 "short read receiving data reply digest: read %d expected %d\n",
1370 rr, dgs);
b411b363
PR
1371 return 0;
1372 }
1373 }
1374
1375 data_size -= dgs;
1376
1377 /* optimistically update recv_cnt. if receiving fails below,
1378 * we disconnect anyways, and counters will be reset. */
1379 mdev->recv_cnt += data_size>>9;
1380
1381 bio = req->master_bio;
1382 D_ASSERT(sector == bio->bi_sector);
1383
1384 bio_for_each_segment(bvec, bio, i) {
1385 expect = min_t(int, data_size, bvec->bv_len);
1386 rr = drbd_recv(mdev,
1387 kmap(bvec->bv_page)+bvec->bv_offset,
1388 expect);
1389 kunmap(bvec->bv_page);
1390 if (rr != expect) {
0ddc5549
LE
1391 if (!signal_pending(current))
1392 dev_warn(DEV, "short read receiving data reply: "
1393 "read %d expected %d\n",
1394 rr, expect);
b411b363
PR
1395 return 0;
1396 }
1397 data_size -= rr;
1398 }
1399
1400 if (dgs) {
45bb912b 1401 drbd_csum_bio(mdev, mdev->integrity_r_tfm, bio, dig_vv);
b411b363
PR
1402 if (memcmp(dig_in, dig_vv, dgs)) {
1403 dev_err(DEV, "Digest integrity check FAILED. Broken NICs?\n");
1404 return 0;
1405 }
1406 }
1407
1408 D_ASSERT(data_size == 0);
1409 return 1;
1410}
1411
1412/* e_end_resync_block() is called via
1413 * drbd_process_done_ee() by asender only */
1414static int e_end_resync_block(struct drbd_conf *mdev, struct drbd_work *w, int unused)
1415{
1416 struct drbd_epoch_entry *e = (struct drbd_epoch_entry *)w;
1417 sector_t sector = e->sector;
1418 int ok;
1419
24c4830c 1420 D_ASSERT(hlist_unhashed(&e->collision));
b411b363 1421
45bb912b 1422 if (likely((e->flags & EE_WAS_ERROR) == 0)) {
b411b363
PR
1423 drbd_set_in_sync(mdev, sector, e->size);
1424 ok = drbd_send_ack(mdev, P_RS_WRITE_ACK, e);
1425 } else {
1426 /* Record failure to sync */
1427 drbd_rs_failed_io(mdev, sector, e->size);
1428
1429 ok = drbd_send_ack(mdev, P_NEG_ACK, e);
1430 }
1431 dec_unacked(mdev);
1432
1433 return ok;
1434}
1435
1436static int recv_resync_read(struct drbd_conf *mdev, sector_t sector, int data_size) __releases(local)
1437{
1438 struct drbd_epoch_entry *e;
1439
1440 e = read_in_block(mdev, ID_SYNCER, sector, data_size);
45bb912b
LE
1441 if (!e)
1442 goto fail;
b411b363
PR
1443
1444 dec_rs_pending(mdev);
1445
b411b363
PR
1446 inc_unacked(mdev);
1447 /* corresponding dec_unacked() in e_end_resync_block()
1448 * respective _drbd_clear_done_ee */
1449
45bb912b
LE
1450 e->w.cb = e_end_resync_block;
1451
b411b363
PR
1452 spin_lock_irq(&mdev->req_lock);
1453 list_add(&e->w.list, &mdev->sync_ee);
1454 spin_unlock_irq(&mdev->req_lock);
1455
0f0601f4 1456 atomic_add(data_size >> 9, &mdev->rs_sect_ev);
45bb912b 1457 if (drbd_submit_ee(mdev, e, WRITE, DRBD_FAULT_RS_WR) == 0)
81e84650 1458 return true;
b411b363 1459
10f6d992
LE
1460 /* don't care for the reason here */
1461 dev_err(DEV, "submit failed, triggering re-connect\n");
22cc37a9
LE
1462 spin_lock_irq(&mdev->req_lock);
1463 list_del(&e->w.list);
1464 spin_unlock_irq(&mdev->req_lock);
1465
45bb912b
LE
1466 drbd_free_ee(mdev, e);
1467fail:
1468 put_ldev(mdev);
81e84650 1469 return false;
b411b363
PR
1470}
1471
668eebc6
AG
1472static struct drbd_request *
1473find_request(struct drbd_conf *mdev,
1474 struct hlist_head *(*hash_slot)(struct drbd_conf *, sector_t),
1475 u64 id, sector_t sector, const char *func)
51624585 1476{
668eebc6 1477 struct hlist_head *slot = hash_slot(mdev, sector);
51624585
AG
1478 struct hlist_node *n;
1479 struct drbd_request *req;
1480
1481 hlist_for_each_entry(req, n, slot, collision) {
668eebc6
AG
1482 if ((unsigned long)req != (unsigned long)id)
1483 continue;
1484 if (req->sector != sector) {
1485 dev_err(DEV, "%s: found request %lu but it has "
1486 "wrong sector (%llus versus %llus)\n",
1487 func, (unsigned long)req,
1488 (unsigned long long)req->sector,
1489 (unsigned long long)sector);
1490 break;
51624585 1491 }
668eebc6 1492 return req;
51624585
AG
1493 }
1494 return NULL;
1495}
1496
02918be2 1497static int receive_DataReply(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363
PR
1498{
1499 struct drbd_request *req;
1500 sector_t sector;
b411b363 1501 int ok;
02918be2 1502 struct p_data *p = &mdev->data.rbuf.data;
b411b363
PR
1503
1504 sector = be64_to_cpu(p->sector);
1505
1506 spin_lock_irq(&mdev->req_lock);
ae3388da 1507 req = find_request(mdev, ar_hash_slot, p->block_id, sector, __func__);
b411b363
PR
1508 spin_unlock_irq(&mdev->req_lock);
1509 if (unlikely(!req)) {
1510 dev_err(DEV, "Got a corrupt block_id/sector pair(1).\n");
81e84650 1511 return false;
b411b363
PR
1512 }
1513
24c4830c 1514 /* hlist_del(&req->collision) is done in _req_may_be_done, to avoid
b411b363
PR
1515 * special casing it there for the various failure cases.
1516 * still no race with drbd_fail_pending_reads */
1517 ok = recv_dless_read(mdev, req, sector, data_size);
1518
1519 if (ok)
1520 req_mod(req, data_received);
1521 /* else: nothing. handled from drbd_disconnect...
1522 * I don't think we may complete this just yet
1523 * in case we are "on-disconnect: freeze" */
1524
1525 return ok;
1526}
1527
02918be2 1528static int receive_RSDataReply(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363
PR
1529{
1530 sector_t sector;
b411b363 1531 int ok;
02918be2 1532 struct p_data *p = &mdev->data.rbuf.data;
b411b363
PR
1533
1534 sector = be64_to_cpu(p->sector);
1535 D_ASSERT(p->block_id == ID_SYNCER);
1536
1537 if (get_ldev(mdev)) {
1538 /* data is submitted to disk within recv_resync_read.
1539 * corresponding put_ldev done below on error,
9c50842a 1540 * or in drbd_endio_sec. */
b411b363
PR
1541 ok = recv_resync_read(mdev, sector, data_size);
1542 } else {
1543 if (__ratelimit(&drbd_ratelimit_state))
1544 dev_err(DEV, "Can not write resync data to local disk.\n");
1545
1546 ok = drbd_drain_block(mdev, data_size);
1547
2b2bf214 1548 drbd_send_ack_dp(mdev, P_NEG_ACK, p, data_size);
b411b363
PR
1549 }
1550
778f271d
PR
1551 atomic_add(data_size >> 9, &mdev->rs_sect_in);
1552
b411b363
PR
1553 return ok;
1554}
1555
1556/* e_end_block() is called via drbd_process_done_ee().
1557 * this means this function only runs in the asender thread
1558 */
1559static int e_end_block(struct drbd_conf *mdev, struct drbd_work *w, int cancel)
1560{
1561 struct drbd_epoch_entry *e = (struct drbd_epoch_entry *)w;
1562 sector_t sector = e->sector;
b411b363
PR
1563 int ok = 1, pcmd;
1564
b411b363 1565 if (mdev->net_conf->wire_protocol == DRBD_PROT_C) {
45bb912b 1566 if (likely((e->flags & EE_WAS_ERROR) == 0)) {
b411b363
PR
1567 pcmd = (mdev->state.conn >= C_SYNC_SOURCE &&
1568 mdev->state.conn <= C_PAUSED_SYNC_T &&
1569 e->flags & EE_MAY_SET_IN_SYNC) ?
1570 P_RS_WRITE_ACK : P_WRITE_ACK;
1571 ok &= drbd_send_ack(mdev, pcmd, e);
1572 if (pcmd == P_RS_WRITE_ACK)
1573 drbd_set_in_sync(mdev, sector, e->size);
1574 } else {
1575 ok = drbd_send_ack(mdev, P_NEG_ACK, e);
1576 /* we expect it to be marked out of sync anyways...
1577 * maybe assert this? */
1578 }
1579 dec_unacked(mdev);
1580 }
1581 /* we delete from the conflict detection hash _after_ we sent out the
1582 * P_WRITE_ACK / P_NEG_ACK, to get the sequence number right. */
1583 if (mdev->net_conf->two_primaries) {
1584 spin_lock_irq(&mdev->req_lock);
24c4830c
BVA
1585 D_ASSERT(!hlist_unhashed(&e->collision));
1586 hlist_del_init(&e->collision);
b411b363
PR
1587 spin_unlock_irq(&mdev->req_lock);
1588 } else {
24c4830c 1589 D_ASSERT(hlist_unhashed(&e->collision));
b411b363
PR
1590 }
1591
1592 drbd_may_finish_epoch(mdev, e->epoch, EV_PUT + (cancel ? EV_CLEANUP : 0));
1593
1594 return ok;
1595}
1596
1597static int e_send_discard_ack(struct drbd_conf *mdev, struct drbd_work *w, int unused)
1598{
1599 struct drbd_epoch_entry *e = (struct drbd_epoch_entry *)w;
1600 int ok = 1;
1601
1602 D_ASSERT(mdev->net_conf->wire_protocol == DRBD_PROT_C);
1603 ok = drbd_send_ack(mdev, P_DISCARD_ACK, e);
1604
1605 spin_lock_irq(&mdev->req_lock);
24c4830c
BVA
1606 D_ASSERT(!hlist_unhashed(&e->collision));
1607 hlist_del_init(&e->collision);
b411b363
PR
1608 spin_unlock_irq(&mdev->req_lock);
1609
1610 dec_unacked(mdev);
1611
1612 return ok;
1613}
1614
1615/* Called from receive_Data.
1616 * Synchronize packets on sock with packets on msock.
1617 *
1618 * This is here so even when a P_DATA packet traveling via sock overtook an Ack
1619 * packet traveling on msock, they are still processed in the order they have
1620 * been sent.
1621 *
1622 * Note: we don't care for Ack packets overtaking P_DATA packets.
1623 *
1624 * In case packet_seq is larger than mdev->peer_seq number, there are
1625 * outstanding packets on the msock. We wait for them to arrive.
1626 * In case we are the logically next packet, we update mdev->peer_seq
1627 * ourselves. Correctly handles 32bit wrap around.
1628 *
1629 * Assume we have a 10 GBit connection, that is about 1<<30 byte per second,
1630 * about 1<<21 sectors per second. So "worst" case, we have 1<<3 == 8 seconds
1631 * for the 24bit wrap (historical atomic_t guarantee on some archs), and we have
1632 * 1<<9 == 512 seconds aka ages for the 32bit wrap around...
1633 *
1634 * returns 0 if we may process the packet,
1635 * -ERESTARTSYS if we were interrupted (by disconnect signal). */
1636static int drbd_wait_peer_seq(struct drbd_conf *mdev, const u32 packet_seq)
1637{
1638 DEFINE_WAIT(wait);
1639 unsigned int p_seq;
1640 long timeout;
1641 int ret = 0;
1642 spin_lock(&mdev->peer_seq_lock);
1643 for (;;) {
1644 prepare_to_wait(&mdev->seq_wait, &wait, TASK_INTERRUPTIBLE);
1645 if (seq_le(packet_seq, mdev->peer_seq+1))
1646 break;
1647 if (signal_pending(current)) {
1648 ret = -ERESTARTSYS;
1649 break;
1650 }
1651 p_seq = mdev->peer_seq;
1652 spin_unlock(&mdev->peer_seq_lock);
1653 timeout = schedule_timeout(30*HZ);
1654 spin_lock(&mdev->peer_seq_lock);
1655 if (timeout == 0 && p_seq == mdev->peer_seq) {
1656 ret = -ETIMEDOUT;
1657 dev_err(DEV, "ASSERT FAILED waited 30 seconds for sequence update, forcing reconnect\n");
1658 break;
1659 }
1660 }
1661 finish_wait(&mdev->seq_wait, &wait);
1662 if (mdev->peer_seq+1 == packet_seq)
1663 mdev->peer_seq++;
1664 spin_unlock(&mdev->peer_seq_lock);
1665 return ret;
1666}
1667
688593c5
LE
1668/* see also bio_flags_to_wire()
1669 * DRBD_REQ_*, because we need to semantically map the flags to data packet
1670 * flags and back. We may replicate to other kernel versions. */
1671static unsigned long wire_flags_to_bio(struct drbd_conf *mdev, u32 dpf)
76d2e7ec 1672{
688593c5
LE
1673 return (dpf & DP_RW_SYNC ? REQ_SYNC : 0) |
1674 (dpf & DP_FUA ? REQ_FUA : 0) |
1675 (dpf & DP_FLUSH ? REQ_FLUSH : 0) |
1676 (dpf & DP_DISCARD ? REQ_DISCARD : 0);
76d2e7ec
PR
1677}
1678
b411b363 1679/* mirrored write */
02918be2 1680static int receive_Data(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363
PR
1681{
1682 sector_t sector;
1683 struct drbd_epoch_entry *e;
02918be2 1684 struct p_data *p = &mdev->data.rbuf.data;
b411b363
PR
1685 int rw = WRITE;
1686 u32 dp_flags;
1687
b411b363 1688 if (!get_ldev(mdev)) {
b411b363
PR
1689 spin_lock(&mdev->peer_seq_lock);
1690 if (mdev->peer_seq+1 == be32_to_cpu(p->seq_num))
1691 mdev->peer_seq++;
1692 spin_unlock(&mdev->peer_seq_lock);
1693
2b2bf214 1694 drbd_send_ack_dp(mdev, P_NEG_ACK, p, data_size);
b411b363
PR
1695 atomic_inc(&mdev->current_epoch->epoch_size);
1696 return drbd_drain_block(mdev, data_size);
1697 }
1698
1699 /* get_ldev(mdev) successful.
1700 * Corresponding put_ldev done either below (on various errors),
9c50842a 1701 * or in drbd_endio_sec, if we successfully submit the data at
b411b363
PR
1702 * the end of this function. */
1703
1704 sector = be64_to_cpu(p->sector);
1705 e = read_in_block(mdev, p->block_id, sector, data_size);
1706 if (!e) {
1707 put_ldev(mdev);
81e84650 1708 return false;
b411b363
PR
1709 }
1710
b411b363
PR
1711 e->w.cb = e_end_block;
1712
688593c5
LE
1713 dp_flags = be32_to_cpu(p->dp_flags);
1714 rw |= wire_flags_to_bio(mdev, dp_flags);
1715
1716 if (dp_flags & DP_MAY_SET_IN_SYNC)
1717 e->flags |= EE_MAY_SET_IN_SYNC;
1718
b411b363
PR
1719 spin_lock(&mdev->epoch_lock);
1720 e->epoch = mdev->current_epoch;
1721 atomic_inc(&e->epoch->epoch_size);
1722 atomic_inc(&e->epoch->active);
b411b363
PR
1723 spin_unlock(&mdev->epoch_lock);
1724
b411b363
PR
1725 /* I'm the receiver, I do hold a net_cnt reference. */
1726 if (!mdev->net_conf->two_primaries) {
1727 spin_lock_irq(&mdev->req_lock);
1728 } else {
1729 /* don't get the req_lock yet,
1730 * we may sleep in drbd_wait_peer_seq */
1731 const int size = e->size;
1732 const int discard = test_bit(DISCARD_CONCURRENT, &mdev->flags);
1733 DEFINE_WAIT(wait);
1734 struct drbd_request *i;
1735 struct hlist_node *n;
1736 struct hlist_head *slot;
1737 int first;
1738
1739 D_ASSERT(mdev->net_conf->wire_protocol == DRBD_PROT_C);
1740 BUG_ON(mdev->ee_hash == NULL);
1741 BUG_ON(mdev->tl_hash == NULL);
1742
1743 /* conflict detection and handling:
1744 * 1. wait on the sequence number,
1745 * in case this data packet overtook ACK packets.
1746 * 2. check our hash tables for conflicting requests.
1747 * we only need to walk the tl_hash, since an ee can not
1748 * have a conflict with an other ee: on the submitting
1749 * node, the corresponding req had already been conflicting,
1750 * and a conflicting req is never sent.
1751 *
1752 * Note: for two_primaries, we are protocol C,
1753 * so there cannot be any request that is DONE
1754 * but still on the transfer log.
1755 *
1756 * unconditionally add to the ee_hash.
1757 *
1758 * if no conflicting request is found:
1759 * submit.
1760 *
1761 * if any conflicting request is found
1762 * that has not yet been acked,
1763 * AND I have the "discard concurrent writes" flag:
1764 * queue (via done_ee) the P_DISCARD_ACK; OUT.
1765 *
1766 * if any conflicting request is found:
1767 * block the receiver, waiting on misc_wait
1768 * until no more conflicting requests are there,
1769 * or we get interrupted (disconnect).
1770 *
1771 * we do not just write after local io completion of those
1772 * requests, but only after req is done completely, i.e.
1773 * we wait for the P_DISCARD_ACK to arrive!
1774 *
1775 * then proceed normally, i.e. submit.
1776 */
1777 if (drbd_wait_peer_seq(mdev, be32_to_cpu(p->seq_num)))
1778 goto out_interrupted;
1779
1780 spin_lock_irq(&mdev->req_lock);
1781
24c4830c 1782 hlist_add_head(&e->collision, ee_hash_slot(mdev, sector));
b411b363
PR
1783
1784#define OVERLAPS overlaps(i->sector, i->size, sector, size)
1785 slot = tl_hash_slot(mdev, sector);
1786 first = 1;
1787 for (;;) {
1788 int have_unacked = 0;
1789 int have_conflict = 0;
1790 prepare_to_wait(&mdev->misc_wait, &wait,
1791 TASK_INTERRUPTIBLE);
24c4830c 1792 hlist_for_each_entry(i, n, slot, collision) {
b411b363
PR
1793 if (OVERLAPS) {
1794 /* only ALERT on first iteration,
1795 * we may be woken up early... */
1796 if (first)
1797 dev_alert(DEV, "%s[%u] Concurrent local write detected!"
1798 " new: %llus +%u; pending: %llus +%u\n",
1799 current->comm, current->pid,
1800 (unsigned long long)sector, size,
1801 (unsigned long long)i->sector, i->size);
1802 if (i->rq_state & RQ_NET_PENDING)
1803 ++have_unacked;
1804 ++have_conflict;
1805 }
1806 }
1807#undef OVERLAPS
1808 if (!have_conflict)
1809 break;
1810
1811 /* Discard Ack only for the _first_ iteration */
1812 if (first && discard && have_unacked) {
1813 dev_alert(DEV, "Concurrent write! [DISCARD BY FLAG] sec=%llus\n",
1814 (unsigned long long)sector);
1815 inc_unacked(mdev);
1816 e->w.cb = e_send_discard_ack;
1817 list_add_tail(&e->w.list, &mdev->done_ee);
1818
1819 spin_unlock_irq(&mdev->req_lock);
1820
1821 /* we could probably send that P_DISCARD_ACK ourselves,
1822 * but I don't like the receiver using the msock */
1823
1824 put_ldev(mdev);
1825 wake_asender(mdev);
1826 finish_wait(&mdev->misc_wait, &wait);
81e84650 1827 return true;
b411b363
PR
1828 }
1829
1830 if (signal_pending(current)) {
24c4830c 1831 hlist_del_init(&e->collision);
b411b363
PR
1832
1833 spin_unlock_irq(&mdev->req_lock);
1834
1835 finish_wait(&mdev->misc_wait, &wait);
1836 goto out_interrupted;
1837 }
1838
1839 spin_unlock_irq(&mdev->req_lock);
1840 if (first) {
1841 first = 0;
1842 dev_alert(DEV, "Concurrent write! [W AFTERWARDS] "
1843 "sec=%llus\n", (unsigned long long)sector);
1844 } else if (discard) {
1845 /* we had none on the first iteration.
1846 * there must be none now. */
1847 D_ASSERT(have_unacked == 0);
1848 }
1849 schedule();
1850 spin_lock_irq(&mdev->req_lock);
1851 }
1852 finish_wait(&mdev->misc_wait, &wait);
1853 }
1854
1855 list_add(&e->w.list, &mdev->active_ee);
1856 spin_unlock_irq(&mdev->req_lock);
1857
1858 switch (mdev->net_conf->wire_protocol) {
1859 case DRBD_PROT_C:
1860 inc_unacked(mdev);
1861 /* corresponding dec_unacked() in e_end_block()
1862 * respective _drbd_clear_done_ee */
1863 break;
1864 case DRBD_PROT_B:
1865 /* I really don't like it that the receiver thread
1866 * sends on the msock, but anyways */
1867 drbd_send_ack(mdev, P_RECV_ACK, e);
1868 break;
1869 case DRBD_PROT_A:
1870 /* nothing to do */
1871 break;
1872 }
1873
6719fb03 1874 if (mdev->state.pdsk < D_INCONSISTENT) {
b411b363
PR
1875 /* In case we have the only disk of the cluster, */
1876 drbd_set_out_of_sync(mdev, e->sector, e->size);
1877 e->flags |= EE_CALL_AL_COMPLETE_IO;
6719fb03 1878 e->flags &= ~EE_MAY_SET_IN_SYNC;
b411b363
PR
1879 drbd_al_begin_io(mdev, e->sector);
1880 }
1881
45bb912b 1882 if (drbd_submit_ee(mdev, e, rw, DRBD_FAULT_DT_WR) == 0)
81e84650 1883 return true;
b411b363 1884
10f6d992
LE
1885 /* don't care for the reason here */
1886 dev_err(DEV, "submit failed, triggering re-connect\n");
22cc37a9
LE
1887 spin_lock_irq(&mdev->req_lock);
1888 list_del(&e->w.list);
24c4830c 1889 hlist_del_init(&e->collision);
22cc37a9
LE
1890 spin_unlock_irq(&mdev->req_lock);
1891 if (e->flags & EE_CALL_AL_COMPLETE_IO)
1892 drbd_al_complete_io(mdev, e->sector);
1893
b411b363 1894out_interrupted:
10f6d992 1895 drbd_may_finish_epoch(mdev, e->epoch, EV_PUT + EV_CLEANUP);
b411b363
PR
1896 put_ldev(mdev);
1897 drbd_free_ee(mdev, e);
81e84650 1898 return false;
b411b363
PR
1899}
1900
0f0601f4
LE
1901/* We may throttle resync, if the lower device seems to be busy,
1902 * and current sync rate is above c_min_rate.
1903 *
1904 * To decide whether or not the lower device is busy, we use a scheme similar
1905 * to MD RAID is_mddev_idle(): if the partition stats reveal "significant"
1906 * (more than 64 sectors) of activity we cannot account for with our own resync
1907 * activity, it obviously is "busy".
1908 *
1909 * The current sync rate used here uses only the most recent two step marks,
1910 * to have a short time average so we can react faster.
1911 */
e3555d85 1912int drbd_rs_should_slow_down(struct drbd_conf *mdev, sector_t sector)
0f0601f4
LE
1913{
1914 struct gendisk *disk = mdev->ldev->backing_bdev->bd_contains->bd_disk;
1915 unsigned long db, dt, dbdt;
e3555d85 1916 struct lc_element *tmp;
0f0601f4
LE
1917 int curr_events;
1918 int throttle = 0;
1919
1920 /* feature disabled? */
1921 if (mdev->sync_conf.c_min_rate == 0)
1922 return 0;
1923
e3555d85
PR
1924 spin_lock_irq(&mdev->al_lock);
1925 tmp = lc_find(mdev->resync, BM_SECT_TO_EXT(sector));
1926 if (tmp) {
1927 struct bm_extent *bm_ext = lc_entry(tmp, struct bm_extent, lce);
1928 if (test_bit(BME_PRIORITY, &bm_ext->flags)) {
1929 spin_unlock_irq(&mdev->al_lock);
1930 return 0;
1931 }
1932 /* Do not slow down if app IO is already waiting for this extent */
1933 }
1934 spin_unlock_irq(&mdev->al_lock);
1935
0f0601f4
LE
1936 curr_events = (int)part_stat_read(&disk->part0, sectors[0]) +
1937 (int)part_stat_read(&disk->part0, sectors[1]) -
1938 atomic_read(&mdev->rs_sect_ev);
e3555d85 1939
0f0601f4
LE
1940 if (!mdev->rs_last_events || curr_events - mdev->rs_last_events > 64) {
1941 unsigned long rs_left;
1942 int i;
1943
1944 mdev->rs_last_events = curr_events;
1945
1946 /* sync speed average over the last 2*DRBD_SYNC_MARK_STEP,
1947 * approx. */
2649f080
LE
1948 i = (mdev->rs_last_mark + DRBD_SYNC_MARKS-1) % DRBD_SYNC_MARKS;
1949
1950 if (mdev->state.conn == C_VERIFY_S || mdev->state.conn == C_VERIFY_T)
1951 rs_left = mdev->ov_left;
1952 else
1953 rs_left = drbd_bm_total_weight(mdev) - mdev->rs_failed;
0f0601f4
LE
1954
1955 dt = ((long)jiffies - (long)mdev->rs_mark_time[i]) / HZ;
1956 if (!dt)
1957 dt++;
1958 db = mdev->rs_mark_left[i] - rs_left;
1959 dbdt = Bit2KB(db/dt);
1960
1961 if (dbdt > mdev->sync_conf.c_min_rate)
1962 throttle = 1;
1963 }
1964 return throttle;
1965}
1966
1967
02918be2 1968static int receive_DataRequest(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int digest_size)
b411b363
PR
1969{
1970 sector_t sector;
1971 const sector_t capacity = drbd_get_capacity(mdev->this_bdev);
1972 struct drbd_epoch_entry *e;
1973 struct digest_info *di = NULL;
b18b37be 1974 int size, verb;
b411b363 1975 unsigned int fault_type;
02918be2 1976 struct p_block_req *p = &mdev->data.rbuf.block_req;
b411b363
PR
1977
1978 sector = be64_to_cpu(p->sector);
1979 size = be32_to_cpu(p->blksize);
1980
1816a2b4 1981 if (size <= 0 || (size & 0x1ff) != 0 || size > DRBD_MAX_BIO_SIZE) {
b411b363
PR
1982 dev_err(DEV, "%s:%d: sector: %llus, size: %u\n", __FILE__, __LINE__,
1983 (unsigned long long)sector, size);
81e84650 1984 return false;
b411b363
PR
1985 }
1986 if (sector + (size>>9) > capacity) {
1987 dev_err(DEV, "%s:%d: sector: %llus, size: %u\n", __FILE__, __LINE__,
1988 (unsigned long long)sector, size);
81e84650 1989 return false;
b411b363
PR
1990 }
1991
1992 if (!get_ldev_if_state(mdev, D_UP_TO_DATE)) {
b18b37be
PR
1993 verb = 1;
1994 switch (cmd) {
1995 case P_DATA_REQUEST:
1996 drbd_send_ack_rp(mdev, P_NEG_DREPLY, p);
1997 break;
1998 case P_RS_DATA_REQUEST:
1999 case P_CSUM_RS_REQUEST:
2000 case P_OV_REQUEST:
2001 drbd_send_ack_rp(mdev, P_NEG_RS_DREPLY , p);
2002 break;
2003 case P_OV_REPLY:
2004 verb = 0;
2005 dec_rs_pending(mdev);
2006 drbd_send_ack_ex(mdev, P_OV_RESULT, sector, size, ID_IN_SYNC);
2007 break;
2008 default:
2009 dev_err(DEV, "unexpected command (%s) in receive_DataRequest\n",
2010 cmdname(cmd));
2011 }
2012 if (verb && __ratelimit(&drbd_ratelimit_state))
b411b363
PR
2013 dev_err(DEV, "Can not satisfy peer's read request, "
2014 "no local data.\n");
b18b37be 2015
a821cc4a
LE
2016 /* drain possibly payload */
2017 return drbd_drain_block(mdev, digest_size);
b411b363
PR
2018 }
2019
2020 /* GFP_NOIO, because we must not cause arbitrary write-out: in a DRBD
2021 * "criss-cross" setup, that might cause write-out on some other DRBD,
2022 * which in turn might block on the other node at this very place. */
2023 e = drbd_alloc_ee(mdev, p->block_id, sector, size, GFP_NOIO);
2024 if (!e) {
2025 put_ldev(mdev);
81e84650 2026 return false;
b411b363
PR
2027 }
2028
02918be2 2029 switch (cmd) {
b411b363
PR
2030 case P_DATA_REQUEST:
2031 e->w.cb = w_e_end_data_req;
2032 fault_type = DRBD_FAULT_DT_RD;
80a40e43
LE
2033 /* application IO, don't drbd_rs_begin_io */
2034 goto submit;
2035
b411b363
PR
2036 case P_RS_DATA_REQUEST:
2037 e->w.cb = w_e_end_rsdata_req;
2038 fault_type = DRBD_FAULT_RS_RD;
5f9915bb
LE
2039 /* used in the sector offset progress display */
2040 mdev->bm_resync_fo = BM_SECT_TO_BIT(sector);
b411b363
PR
2041 break;
2042
2043 case P_OV_REPLY:
2044 case P_CSUM_RS_REQUEST:
2045 fault_type = DRBD_FAULT_RS_RD;
b411b363
PR
2046 di = kmalloc(sizeof(*di) + digest_size, GFP_NOIO);
2047 if (!di)
2048 goto out_free_e;
2049
2050 di->digest_size = digest_size;
2051 di->digest = (((char *)di)+sizeof(struct digest_info));
2052
c36c3ced
LE
2053 e->digest = di;
2054 e->flags |= EE_HAS_DIGEST;
2055
b411b363
PR
2056 if (drbd_recv(mdev, di->digest, digest_size) != digest_size)
2057 goto out_free_e;
2058
02918be2 2059 if (cmd == P_CSUM_RS_REQUEST) {
b411b363
PR
2060 D_ASSERT(mdev->agreed_pro_version >= 89);
2061 e->w.cb = w_e_end_csum_rs_req;
5f9915bb
LE
2062 /* used in the sector offset progress display */
2063 mdev->bm_resync_fo = BM_SECT_TO_BIT(sector);
02918be2 2064 } else if (cmd == P_OV_REPLY) {
2649f080
LE
2065 /* track progress, we may need to throttle */
2066 atomic_add(size >> 9, &mdev->rs_sect_in);
b411b363
PR
2067 e->w.cb = w_e_end_ov_reply;
2068 dec_rs_pending(mdev);
0f0601f4
LE
2069 /* drbd_rs_begin_io done when we sent this request,
2070 * but accounting still needs to be done. */
2071 goto submit_for_resync;
b411b363
PR
2072 }
2073 break;
2074
2075 case P_OV_REQUEST:
b411b363
PR
2076 if (mdev->ov_start_sector == ~(sector_t)0 &&
2077 mdev->agreed_pro_version >= 90) {
de228bba
LE
2078 unsigned long now = jiffies;
2079 int i;
b411b363
PR
2080 mdev->ov_start_sector = sector;
2081 mdev->ov_position = sector;
30b743a2
LE
2082 mdev->ov_left = drbd_bm_bits(mdev) - BM_SECT_TO_BIT(sector);
2083 mdev->rs_total = mdev->ov_left;
de228bba
LE
2084 for (i = 0; i < DRBD_SYNC_MARKS; i++) {
2085 mdev->rs_mark_left[i] = mdev->ov_left;
2086 mdev->rs_mark_time[i] = now;
2087 }
b411b363
PR
2088 dev_info(DEV, "Online Verify start sector: %llu\n",
2089 (unsigned long long)sector);
2090 }
2091 e->w.cb = w_e_end_ov_req;
2092 fault_type = DRBD_FAULT_RS_RD;
b411b363
PR
2093 break;
2094
b411b363
PR
2095 default:
2096 dev_err(DEV, "unexpected command (%s) in receive_DataRequest\n",
02918be2 2097 cmdname(cmd));
b411b363 2098 fault_type = DRBD_FAULT_MAX;
80a40e43 2099 goto out_free_e;
b411b363
PR
2100 }
2101
0f0601f4
LE
2102 /* Throttle, drbd_rs_begin_io and submit should become asynchronous
2103 * wrt the receiver, but it is not as straightforward as it may seem.
2104 * Various places in the resync start and stop logic assume resync
2105 * requests are processed in order, requeuing this on the worker thread
2106 * introduces a bunch of new code for synchronization between threads.
2107 *
2108 * Unlimited throttling before drbd_rs_begin_io may stall the resync
2109 * "forever", throttling after drbd_rs_begin_io will lock that extent
2110 * for application writes for the same time. For now, just throttle
2111 * here, where the rest of the code expects the receiver to sleep for
2112 * a while, anyways.
2113 */
2114
2115 /* Throttle before drbd_rs_begin_io, as that locks out application IO;
2116 * this defers syncer requests for some time, before letting at least
2117 * on request through. The resync controller on the receiving side
2118 * will adapt to the incoming rate accordingly.
2119 *
2120 * We cannot throttle here if remote is Primary/SyncTarget:
2121 * we would also throttle its application reads.
2122 * In that case, throttling is done on the SyncTarget only.
2123 */
e3555d85
PR
2124 if (mdev->state.peer != R_PRIMARY && drbd_rs_should_slow_down(mdev, sector))
2125 schedule_timeout_uninterruptible(HZ/10);
2126 if (drbd_rs_begin_io(mdev, sector))
80a40e43 2127 goto out_free_e;
b411b363 2128
0f0601f4
LE
2129submit_for_resync:
2130 atomic_add(size >> 9, &mdev->rs_sect_ev);
2131
80a40e43 2132submit:
b411b363 2133 inc_unacked(mdev);
80a40e43
LE
2134 spin_lock_irq(&mdev->req_lock);
2135 list_add_tail(&e->w.list, &mdev->read_ee);
2136 spin_unlock_irq(&mdev->req_lock);
b411b363 2137
45bb912b 2138 if (drbd_submit_ee(mdev, e, READ, fault_type) == 0)
81e84650 2139 return true;
b411b363 2140
10f6d992
LE
2141 /* don't care for the reason here */
2142 dev_err(DEV, "submit failed, triggering re-connect\n");
22cc37a9
LE
2143 spin_lock_irq(&mdev->req_lock);
2144 list_del(&e->w.list);
2145 spin_unlock_irq(&mdev->req_lock);
2146 /* no drbd_rs_complete_io(), we are dropping the connection anyways */
2147
b411b363 2148out_free_e:
b411b363
PR
2149 put_ldev(mdev);
2150 drbd_free_ee(mdev, e);
81e84650 2151 return false;
b411b363
PR
2152}
2153
2154static int drbd_asb_recover_0p(struct drbd_conf *mdev) __must_hold(local)
2155{
2156 int self, peer, rv = -100;
2157 unsigned long ch_self, ch_peer;
2158
2159 self = mdev->ldev->md.uuid[UI_BITMAP] & 1;
2160 peer = mdev->p_uuid[UI_BITMAP] & 1;
2161
2162 ch_peer = mdev->p_uuid[UI_SIZE];
2163 ch_self = mdev->comm_bm_set;
2164
2165 switch (mdev->net_conf->after_sb_0p) {
2166 case ASB_CONSENSUS:
2167 case ASB_DISCARD_SECONDARY:
2168 case ASB_CALL_HELPER:
2169 dev_err(DEV, "Configuration error.\n");
2170 break;
2171 case ASB_DISCONNECT:
2172 break;
2173 case ASB_DISCARD_YOUNGER_PRI:
2174 if (self == 0 && peer == 1) {
2175 rv = -1;
2176 break;
2177 }
2178 if (self == 1 && peer == 0) {
2179 rv = 1;
2180 break;
2181 }
2182 /* Else fall through to one of the other strategies... */
2183 case ASB_DISCARD_OLDER_PRI:
2184 if (self == 0 && peer == 1) {
2185 rv = 1;
2186 break;
2187 }
2188 if (self == 1 && peer == 0) {
2189 rv = -1;
2190 break;
2191 }
2192 /* Else fall through to one of the other strategies... */
ad19bf6e 2193 dev_warn(DEV, "Discard younger/older primary did not find a decision\n"
b411b363
PR
2194 "Using discard-least-changes instead\n");
2195 case ASB_DISCARD_ZERO_CHG:
2196 if (ch_peer == 0 && ch_self == 0) {
2197 rv = test_bit(DISCARD_CONCURRENT, &mdev->flags)
2198 ? -1 : 1;
2199 break;
2200 } else {
2201 if (ch_peer == 0) { rv = 1; break; }
2202 if (ch_self == 0) { rv = -1; break; }
2203 }
2204 if (mdev->net_conf->after_sb_0p == ASB_DISCARD_ZERO_CHG)
2205 break;
2206 case ASB_DISCARD_LEAST_CHG:
2207 if (ch_self < ch_peer)
2208 rv = -1;
2209 else if (ch_self > ch_peer)
2210 rv = 1;
2211 else /* ( ch_self == ch_peer ) */
2212 /* Well, then use something else. */
2213 rv = test_bit(DISCARD_CONCURRENT, &mdev->flags)
2214 ? -1 : 1;
2215 break;
2216 case ASB_DISCARD_LOCAL:
2217 rv = -1;
2218 break;
2219 case ASB_DISCARD_REMOTE:
2220 rv = 1;
2221 }
2222
2223 return rv;
2224}
2225
2226static int drbd_asb_recover_1p(struct drbd_conf *mdev) __must_hold(local)
2227{
6184ea21 2228 int hg, rv = -100;
b411b363
PR
2229
2230 switch (mdev->net_conf->after_sb_1p) {
2231 case ASB_DISCARD_YOUNGER_PRI:
2232 case ASB_DISCARD_OLDER_PRI:
2233 case ASB_DISCARD_LEAST_CHG:
2234 case ASB_DISCARD_LOCAL:
2235 case ASB_DISCARD_REMOTE:
2236 dev_err(DEV, "Configuration error.\n");
2237 break;
2238 case ASB_DISCONNECT:
2239 break;
2240 case ASB_CONSENSUS:
2241 hg = drbd_asb_recover_0p(mdev);
2242 if (hg == -1 && mdev->state.role == R_SECONDARY)
2243 rv = hg;
2244 if (hg == 1 && mdev->state.role == R_PRIMARY)
2245 rv = hg;
2246 break;
2247 case ASB_VIOLENTLY:
2248 rv = drbd_asb_recover_0p(mdev);
2249 break;
2250 case ASB_DISCARD_SECONDARY:
2251 return mdev->state.role == R_PRIMARY ? 1 : -1;
2252 case ASB_CALL_HELPER:
2253 hg = drbd_asb_recover_0p(mdev);
2254 if (hg == -1 && mdev->state.role == R_PRIMARY) {
bb437946
AG
2255 enum drbd_state_rv rv2;
2256
2257 drbd_set_role(mdev, R_SECONDARY, 0);
b411b363
PR
2258 /* drbd_change_state() does not sleep while in SS_IN_TRANSIENT_STATE,
2259 * we might be here in C_WF_REPORT_PARAMS which is transient.
2260 * we do not need to wait for the after state change work either. */
bb437946
AG
2261 rv2 = drbd_change_state(mdev, CS_VERBOSE, NS(role, R_SECONDARY));
2262 if (rv2 != SS_SUCCESS) {
b411b363
PR
2263 drbd_khelper(mdev, "pri-lost-after-sb");
2264 } else {
2265 dev_warn(DEV, "Successfully gave up primary role.\n");
2266 rv = hg;
2267 }
2268 } else
2269 rv = hg;
2270 }
2271
2272 return rv;
2273}
2274
2275static int drbd_asb_recover_2p(struct drbd_conf *mdev) __must_hold(local)
2276{
6184ea21 2277 int hg, rv = -100;
b411b363
PR
2278
2279 switch (mdev->net_conf->after_sb_2p) {
2280 case ASB_DISCARD_YOUNGER_PRI:
2281 case ASB_DISCARD_OLDER_PRI:
2282 case ASB_DISCARD_LEAST_CHG:
2283 case ASB_DISCARD_LOCAL:
2284 case ASB_DISCARD_REMOTE:
2285 case ASB_CONSENSUS:
2286 case ASB_DISCARD_SECONDARY:
2287 dev_err(DEV, "Configuration error.\n");
2288 break;
2289 case ASB_VIOLENTLY:
2290 rv = drbd_asb_recover_0p(mdev);
2291 break;
2292 case ASB_DISCONNECT:
2293 break;
2294 case ASB_CALL_HELPER:
2295 hg = drbd_asb_recover_0p(mdev);
2296 if (hg == -1) {
bb437946
AG
2297 enum drbd_state_rv rv2;
2298
b411b363
PR
2299 /* drbd_change_state() does not sleep while in SS_IN_TRANSIENT_STATE,
2300 * we might be here in C_WF_REPORT_PARAMS which is transient.
2301 * we do not need to wait for the after state change work either. */
bb437946
AG
2302 rv2 = drbd_change_state(mdev, CS_VERBOSE, NS(role, R_SECONDARY));
2303 if (rv2 != SS_SUCCESS) {
b411b363
PR
2304 drbd_khelper(mdev, "pri-lost-after-sb");
2305 } else {
2306 dev_warn(DEV, "Successfully gave up primary role.\n");
2307 rv = hg;
2308 }
2309 } else
2310 rv = hg;
2311 }
2312
2313 return rv;
2314}
2315
2316static void drbd_uuid_dump(struct drbd_conf *mdev, char *text, u64 *uuid,
2317 u64 bits, u64 flags)
2318{
2319 if (!uuid) {
2320 dev_info(DEV, "%s uuid info vanished while I was looking!\n", text);
2321 return;
2322 }
2323 dev_info(DEV, "%s %016llX:%016llX:%016llX:%016llX bits:%llu flags:%llX\n",
2324 text,
2325 (unsigned long long)uuid[UI_CURRENT],
2326 (unsigned long long)uuid[UI_BITMAP],
2327 (unsigned long long)uuid[UI_HISTORY_START],
2328 (unsigned long long)uuid[UI_HISTORY_END],
2329 (unsigned long long)bits,
2330 (unsigned long long)flags);
2331}
2332
2333/*
2334 100 after split brain try auto recover
2335 2 C_SYNC_SOURCE set BitMap
2336 1 C_SYNC_SOURCE use BitMap
2337 0 no Sync
2338 -1 C_SYNC_TARGET use BitMap
2339 -2 C_SYNC_TARGET set BitMap
2340 -100 after split brain, disconnect
2341-1000 unrelated data
4a23f264
PR
2342-1091 requires proto 91
2343-1096 requires proto 96
b411b363
PR
2344 */
2345static int drbd_uuid_compare(struct drbd_conf *mdev, int *rule_nr) __must_hold(local)
2346{
2347 u64 self, peer;
2348 int i, j;
2349
2350 self = mdev->ldev->md.uuid[UI_CURRENT] & ~((u64)1);
2351 peer = mdev->p_uuid[UI_CURRENT] & ~((u64)1);
2352
2353 *rule_nr = 10;
2354 if (self == UUID_JUST_CREATED && peer == UUID_JUST_CREATED)
2355 return 0;
2356
2357 *rule_nr = 20;
2358 if ((self == UUID_JUST_CREATED || self == (u64)0) &&
2359 peer != UUID_JUST_CREATED)
2360 return -2;
2361
2362 *rule_nr = 30;
2363 if (self != UUID_JUST_CREATED &&
2364 (peer == UUID_JUST_CREATED || peer == (u64)0))
2365 return 2;
2366
2367 if (self == peer) {
2368 int rct, dc; /* roles at crash time */
2369
2370 if (mdev->p_uuid[UI_BITMAP] == (u64)0 && mdev->ldev->md.uuid[UI_BITMAP] != (u64)0) {
2371
2372 if (mdev->agreed_pro_version < 91)
4a23f264 2373 return -1091;
b411b363
PR
2374
2375 if ((mdev->ldev->md.uuid[UI_BITMAP] & ~((u64)1)) == (mdev->p_uuid[UI_HISTORY_START] & ~((u64)1)) &&
2376 (mdev->ldev->md.uuid[UI_HISTORY_START] & ~((u64)1)) == (mdev->p_uuid[UI_HISTORY_START + 1] & ~((u64)1))) {
2377 dev_info(DEV, "was SyncSource, missed the resync finished event, corrected myself:\n");
2378 drbd_uuid_set_bm(mdev, 0UL);
2379
2380 drbd_uuid_dump(mdev, "self", mdev->ldev->md.uuid,
2381 mdev->state.disk >= D_NEGOTIATING ? drbd_bm_total_weight(mdev) : 0, 0);
2382 *rule_nr = 34;
2383 } else {
2384 dev_info(DEV, "was SyncSource (peer failed to write sync_uuid)\n");
2385 *rule_nr = 36;
2386 }
2387
2388 return 1;
2389 }
2390
2391 if (mdev->ldev->md.uuid[UI_BITMAP] == (u64)0 && mdev->p_uuid[UI_BITMAP] != (u64)0) {
2392
2393 if (mdev->agreed_pro_version < 91)
4a23f264 2394 return -1091;
b411b363
PR
2395
2396 if ((mdev->ldev->md.uuid[UI_HISTORY_START] & ~((u64)1)) == (mdev->p_uuid[UI_BITMAP] & ~((u64)1)) &&
2397 (mdev->ldev->md.uuid[UI_HISTORY_START + 1] & ~((u64)1)) == (mdev->p_uuid[UI_HISTORY_START] & ~((u64)1))) {
2398 dev_info(DEV, "was SyncTarget, peer missed the resync finished event, corrected peer:\n");
2399
2400 mdev->p_uuid[UI_HISTORY_START + 1] = mdev->p_uuid[UI_HISTORY_START];
2401 mdev->p_uuid[UI_HISTORY_START] = mdev->p_uuid[UI_BITMAP];
2402 mdev->p_uuid[UI_BITMAP] = 0UL;
2403
2404 drbd_uuid_dump(mdev, "peer", mdev->p_uuid, mdev->p_uuid[UI_SIZE], mdev->p_uuid[UI_FLAGS]);
2405 *rule_nr = 35;
2406 } else {
2407 dev_info(DEV, "was SyncTarget (failed to write sync_uuid)\n");
2408 *rule_nr = 37;
2409 }
2410
2411 return -1;
2412 }
2413
2414 /* Common power [off|failure] */
2415 rct = (test_bit(CRASHED_PRIMARY, &mdev->flags) ? 1 : 0) +
2416 (mdev->p_uuid[UI_FLAGS] & 2);
2417 /* lowest bit is set when we were primary,
2418 * next bit (weight 2) is set when peer was primary */
2419 *rule_nr = 40;
2420
2421 switch (rct) {
2422 case 0: /* !self_pri && !peer_pri */ return 0;
2423 case 1: /* self_pri && !peer_pri */ return 1;
2424 case 2: /* !self_pri && peer_pri */ return -1;
2425 case 3: /* self_pri && peer_pri */
2426 dc = test_bit(DISCARD_CONCURRENT, &mdev->flags);
2427 return dc ? -1 : 1;
2428 }
2429 }
2430
2431 *rule_nr = 50;
2432 peer = mdev->p_uuid[UI_BITMAP] & ~((u64)1);
2433 if (self == peer)
2434 return -1;
2435
2436 *rule_nr = 51;
2437 peer = mdev->p_uuid[UI_HISTORY_START] & ~((u64)1);
2438 if (self == peer) {
4a23f264
PR
2439 if (mdev->agreed_pro_version < 96 ?
2440 (mdev->ldev->md.uuid[UI_HISTORY_START] & ~((u64)1)) ==
2441 (mdev->p_uuid[UI_HISTORY_START + 1] & ~((u64)1)) :
2442 peer + UUID_NEW_BM_OFFSET == (mdev->p_uuid[UI_BITMAP] & ~((u64)1))) {
b411b363
PR
2443 /* The last P_SYNC_UUID did not get though. Undo the last start of
2444 resync as sync source modifications of the peer's UUIDs. */
2445
2446 if (mdev->agreed_pro_version < 91)
4a23f264 2447 return -1091;
b411b363
PR
2448
2449 mdev->p_uuid[UI_BITMAP] = mdev->p_uuid[UI_HISTORY_START];
2450 mdev->p_uuid[UI_HISTORY_START] = mdev->p_uuid[UI_HISTORY_START + 1];
4a23f264
PR
2451
2452 dev_info(DEV, "Did not got last syncUUID packet, corrected:\n");
2453 drbd_uuid_dump(mdev, "peer", mdev->p_uuid, mdev->p_uuid[UI_SIZE], mdev->p_uuid[UI_FLAGS]);
2454
b411b363
PR
2455 return -1;
2456 }
2457 }
2458
2459 *rule_nr = 60;
2460 self = mdev->ldev->md.uuid[UI_CURRENT] & ~((u64)1);
2461 for (i = UI_HISTORY_START; i <= UI_HISTORY_END; i++) {
2462 peer = mdev->p_uuid[i] & ~((u64)1);
2463 if (self == peer)
2464 return -2;
2465 }
2466
2467 *rule_nr = 70;
2468 self = mdev->ldev->md.uuid[UI_BITMAP] & ~((u64)1);
2469 peer = mdev->p_uuid[UI_CURRENT] & ~((u64)1);
2470 if (self == peer)
2471 return 1;
2472
2473 *rule_nr = 71;
2474 self = mdev->ldev->md.uuid[UI_HISTORY_START] & ~((u64)1);
2475 if (self == peer) {
4a23f264
PR
2476 if (mdev->agreed_pro_version < 96 ?
2477 (mdev->ldev->md.uuid[UI_HISTORY_START + 1] & ~((u64)1)) ==
2478 (mdev->p_uuid[UI_HISTORY_START] & ~((u64)1)) :
2479 self + UUID_NEW_BM_OFFSET == (mdev->ldev->md.uuid[UI_BITMAP] & ~((u64)1))) {
b411b363
PR
2480 /* The last P_SYNC_UUID did not get though. Undo the last start of
2481 resync as sync source modifications of our UUIDs. */
2482
2483 if (mdev->agreed_pro_version < 91)
4a23f264 2484 return -1091;
b411b363
PR
2485
2486 _drbd_uuid_set(mdev, UI_BITMAP, mdev->ldev->md.uuid[UI_HISTORY_START]);
2487 _drbd_uuid_set(mdev, UI_HISTORY_START, mdev->ldev->md.uuid[UI_HISTORY_START + 1]);
2488
4a23f264 2489 dev_info(DEV, "Last syncUUID did not get through, corrected:\n");
b411b363
PR
2490 drbd_uuid_dump(mdev, "self", mdev->ldev->md.uuid,
2491 mdev->state.disk >= D_NEGOTIATING ? drbd_bm_total_weight(mdev) : 0, 0);
2492
2493 return 1;
2494 }
2495 }
2496
2497
2498 *rule_nr = 80;
d8c2a36b 2499 peer = mdev->p_uuid[UI_CURRENT] & ~((u64)1);
b411b363
PR
2500 for (i = UI_HISTORY_START; i <= UI_HISTORY_END; i++) {
2501 self = mdev->ldev->md.uuid[i] & ~((u64)1);
2502 if (self == peer)
2503 return 2;
2504 }
2505
2506 *rule_nr = 90;
2507 self = mdev->ldev->md.uuid[UI_BITMAP] & ~((u64)1);
2508 peer = mdev->p_uuid[UI_BITMAP] & ~((u64)1);
2509 if (self == peer && self != ((u64)0))
2510 return 100;
2511
2512 *rule_nr = 100;
2513 for (i = UI_HISTORY_START; i <= UI_HISTORY_END; i++) {
2514 self = mdev->ldev->md.uuid[i] & ~((u64)1);
2515 for (j = UI_HISTORY_START; j <= UI_HISTORY_END; j++) {
2516 peer = mdev->p_uuid[j] & ~((u64)1);
2517 if (self == peer)
2518 return -100;
2519 }
2520 }
2521
2522 return -1000;
2523}
2524
2525/* drbd_sync_handshake() returns the new conn state on success, or
2526 CONN_MASK (-1) on failure.
2527 */
2528static enum drbd_conns drbd_sync_handshake(struct drbd_conf *mdev, enum drbd_role peer_role,
2529 enum drbd_disk_state peer_disk) __must_hold(local)
2530{
2531 int hg, rule_nr;
2532 enum drbd_conns rv = C_MASK;
2533 enum drbd_disk_state mydisk;
2534
2535 mydisk = mdev->state.disk;
2536 if (mydisk == D_NEGOTIATING)
2537 mydisk = mdev->new_state_tmp.disk;
2538
2539 dev_info(DEV, "drbd_sync_handshake:\n");
2540 drbd_uuid_dump(mdev, "self", mdev->ldev->md.uuid, mdev->comm_bm_set, 0);
2541 drbd_uuid_dump(mdev, "peer", mdev->p_uuid,
2542 mdev->p_uuid[UI_SIZE], mdev->p_uuid[UI_FLAGS]);
2543
2544 hg = drbd_uuid_compare(mdev, &rule_nr);
2545
2546 dev_info(DEV, "uuid_compare()=%d by rule %d\n", hg, rule_nr);
2547
2548 if (hg == -1000) {
2549 dev_alert(DEV, "Unrelated data, aborting!\n");
2550 return C_MASK;
2551 }
4a23f264
PR
2552 if (hg < -1000) {
2553 dev_alert(DEV, "To resolve this both sides have to support at least protocol %d\n", -hg - 1000);
b411b363
PR
2554 return C_MASK;
2555 }
2556
2557 if ((mydisk == D_INCONSISTENT && peer_disk > D_INCONSISTENT) ||
2558 (peer_disk == D_INCONSISTENT && mydisk > D_INCONSISTENT)) {
2559 int f = (hg == -100) || abs(hg) == 2;
2560 hg = mydisk > D_INCONSISTENT ? 1 : -1;
2561 if (f)
2562 hg = hg*2;
2563 dev_info(DEV, "Becoming sync %s due to disk states.\n",
2564 hg > 0 ? "source" : "target");
2565 }
2566
3a11a487
AG
2567 if (abs(hg) == 100)
2568 drbd_khelper(mdev, "initial-split-brain");
2569
b411b363
PR
2570 if (hg == 100 || (hg == -100 && mdev->net_conf->always_asbp)) {
2571 int pcount = (mdev->state.role == R_PRIMARY)
2572 + (peer_role == R_PRIMARY);
2573 int forced = (hg == -100);
2574
2575 switch (pcount) {
2576 case 0:
2577 hg = drbd_asb_recover_0p(mdev);
2578 break;
2579 case 1:
2580 hg = drbd_asb_recover_1p(mdev);
2581 break;
2582 case 2:
2583 hg = drbd_asb_recover_2p(mdev);
2584 break;
2585 }
2586 if (abs(hg) < 100) {
2587 dev_warn(DEV, "Split-Brain detected, %d primaries, "
2588 "automatically solved. Sync from %s node\n",
2589 pcount, (hg < 0) ? "peer" : "this");
2590 if (forced) {
2591 dev_warn(DEV, "Doing a full sync, since"
2592 " UUIDs where ambiguous.\n");
2593 hg = hg*2;
2594 }
2595 }
2596 }
2597
2598 if (hg == -100) {
2599 if (mdev->net_conf->want_lose && !(mdev->p_uuid[UI_FLAGS]&1))
2600 hg = -1;
2601 if (!mdev->net_conf->want_lose && (mdev->p_uuid[UI_FLAGS]&1))
2602 hg = 1;
2603
2604 if (abs(hg) < 100)
2605 dev_warn(DEV, "Split-Brain detected, manually solved. "
2606 "Sync from %s node\n",
2607 (hg < 0) ? "peer" : "this");
2608 }
2609
2610 if (hg == -100) {
580b9767
LE
2611 /* FIXME this log message is not correct if we end up here
2612 * after an attempted attach on a diskless node.
2613 * We just refuse to attach -- well, we drop the "connection"
2614 * to that disk, in a way... */
3a11a487 2615 dev_alert(DEV, "Split-Brain detected but unresolved, dropping connection!\n");
b411b363
PR
2616 drbd_khelper(mdev, "split-brain");
2617 return C_MASK;
2618 }
2619
2620 if (hg > 0 && mydisk <= D_INCONSISTENT) {
2621 dev_err(DEV, "I shall become SyncSource, but I am inconsistent!\n");
2622 return C_MASK;
2623 }
2624
2625 if (hg < 0 && /* by intention we do not use mydisk here. */
2626 mdev->state.role == R_PRIMARY && mdev->state.disk >= D_CONSISTENT) {
2627 switch (mdev->net_conf->rr_conflict) {
2628 case ASB_CALL_HELPER:
2629 drbd_khelper(mdev, "pri-lost");
2630 /* fall through */
2631 case ASB_DISCONNECT:
2632 dev_err(DEV, "I shall become SyncTarget, but I am primary!\n");
2633 return C_MASK;
2634 case ASB_VIOLENTLY:
2635 dev_warn(DEV, "Becoming SyncTarget, violating the stable-data"
2636 "assumption\n");
2637 }
2638 }
2639
cf14c2e9
PR
2640 if (mdev->net_conf->dry_run || test_bit(CONN_DRY_RUN, &mdev->flags)) {
2641 if (hg == 0)
2642 dev_info(DEV, "dry-run connect: No resync, would become Connected immediately.\n");
2643 else
2644 dev_info(DEV, "dry-run connect: Would become %s, doing a %s resync.",
2645 drbd_conn_str(hg > 0 ? C_SYNC_SOURCE : C_SYNC_TARGET),
2646 abs(hg) >= 2 ? "full" : "bit-map based");
2647 return C_MASK;
2648 }
2649
b411b363
PR
2650 if (abs(hg) >= 2) {
2651 dev_info(DEV, "Writing the whole bitmap, full sync required after drbd_sync_handshake.\n");
20ceb2b2
LE
2652 if (drbd_bitmap_io(mdev, &drbd_bmio_set_n_write, "set_n_write from sync_handshake",
2653 BM_LOCKED_SET_ALLOWED))
b411b363
PR
2654 return C_MASK;
2655 }
2656
2657 if (hg > 0) { /* become sync source. */
2658 rv = C_WF_BITMAP_S;
2659 } else if (hg < 0) { /* become sync target */
2660 rv = C_WF_BITMAP_T;
2661 } else {
2662 rv = C_CONNECTED;
2663 if (drbd_bm_total_weight(mdev)) {
2664 dev_info(DEV, "No resync, but %lu bits in bitmap!\n",
2665 drbd_bm_total_weight(mdev));
2666 }
2667 }
2668
2669 return rv;
2670}
2671
2672/* returns 1 if invalid */
2673static int cmp_after_sb(enum drbd_after_sb_p peer, enum drbd_after_sb_p self)
2674{
2675 /* ASB_DISCARD_REMOTE - ASB_DISCARD_LOCAL is valid */
2676 if ((peer == ASB_DISCARD_REMOTE && self == ASB_DISCARD_LOCAL) ||
2677 (self == ASB_DISCARD_REMOTE && peer == ASB_DISCARD_LOCAL))
2678 return 0;
2679
2680 /* any other things with ASB_DISCARD_REMOTE or ASB_DISCARD_LOCAL are invalid */
2681 if (peer == ASB_DISCARD_REMOTE || peer == ASB_DISCARD_LOCAL ||
2682 self == ASB_DISCARD_REMOTE || self == ASB_DISCARD_LOCAL)
2683 return 1;
2684
2685 /* everything else is valid if they are equal on both sides. */
2686 if (peer == self)
2687 return 0;
2688
2689 /* everything es is invalid. */
2690 return 1;
2691}
2692
02918be2 2693static int receive_protocol(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363 2694{
02918be2 2695 struct p_protocol *p = &mdev->data.rbuf.protocol;
b411b363 2696 int p_proto, p_after_sb_0p, p_after_sb_1p, p_after_sb_2p;
cf14c2e9 2697 int p_want_lose, p_two_primaries, cf;
b411b363
PR
2698 char p_integrity_alg[SHARED_SECRET_MAX] = "";
2699
b411b363
PR
2700 p_proto = be32_to_cpu(p->protocol);
2701 p_after_sb_0p = be32_to_cpu(p->after_sb_0p);
2702 p_after_sb_1p = be32_to_cpu(p->after_sb_1p);
2703 p_after_sb_2p = be32_to_cpu(p->after_sb_2p);
b411b363 2704 p_two_primaries = be32_to_cpu(p->two_primaries);
cf14c2e9
PR
2705 cf = be32_to_cpu(p->conn_flags);
2706 p_want_lose = cf & CF_WANT_LOSE;
2707
2708 clear_bit(CONN_DRY_RUN, &mdev->flags);
2709
2710 if (cf & CF_DRY_RUN)
2711 set_bit(CONN_DRY_RUN, &mdev->flags);
b411b363
PR
2712
2713 if (p_proto != mdev->net_conf->wire_protocol) {
2714 dev_err(DEV, "incompatible communication protocols\n");
2715 goto disconnect;
2716 }
2717
2718 if (cmp_after_sb(p_after_sb_0p, mdev->net_conf->after_sb_0p)) {
2719 dev_err(DEV, "incompatible after-sb-0pri settings\n");
2720 goto disconnect;
2721 }
2722
2723 if (cmp_after_sb(p_after_sb_1p, mdev->net_conf->after_sb_1p)) {
2724 dev_err(DEV, "incompatible after-sb-1pri settings\n");
2725 goto disconnect;
2726 }
2727
2728 if (cmp_after_sb(p_after_sb_2p, mdev->net_conf->after_sb_2p)) {
2729 dev_err(DEV, "incompatible after-sb-2pri settings\n");
2730 goto disconnect;
2731 }
2732
2733 if (p_want_lose && mdev->net_conf->want_lose) {
2734 dev_err(DEV, "both sides have the 'want_lose' flag set\n");
2735 goto disconnect;
2736 }
2737
2738 if (p_two_primaries != mdev->net_conf->two_primaries) {
2739 dev_err(DEV, "incompatible setting of the two-primaries options\n");
2740 goto disconnect;
2741 }
2742
2743 if (mdev->agreed_pro_version >= 87) {
2744 unsigned char *my_alg = mdev->net_conf->integrity_alg;
2745
2746 if (drbd_recv(mdev, p_integrity_alg, data_size) != data_size)
81e84650 2747 return false;
b411b363
PR
2748
2749 p_integrity_alg[SHARED_SECRET_MAX-1] = 0;
2750 if (strcmp(p_integrity_alg, my_alg)) {
2751 dev_err(DEV, "incompatible setting of the data-integrity-alg\n");
2752 goto disconnect;
2753 }
2754 dev_info(DEV, "data-integrity-alg: %s\n",
2755 my_alg[0] ? my_alg : (unsigned char *)"<not-used>");
2756 }
2757
81e84650 2758 return true;
b411b363
PR
2759
2760disconnect:
2761 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
81e84650 2762 return false;
b411b363
PR
2763}
2764
2765/* helper function
2766 * input: alg name, feature name
2767 * return: NULL (alg name was "")
2768 * ERR_PTR(error) if something goes wrong
2769 * or the crypto hash ptr, if it worked out ok. */
2770struct crypto_hash *drbd_crypto_alloc_digest_safe(const struct drbd_conf *mdev,
2771 const char *alg, const char *name)
2772{
2773 struct crypto_hash *tfm;
2774
2775 if (!alg[0])
2776 return NULL;
2777
2778 tfm = crypto_alloc_hash(alg, 0, CRYPTO_ALG_ASYNC);
2779 if (IS_ERR(tfm)) {
2780 dev_err(DEV, "Can not allocate \"%s\" as %s (reason: %ld)\n",
2781 alg, name, PTR_ERR(tfm));
2782 return tfm;
2783 }
2784 if (!drbd_crypto_is_hash(crypto_hash_tfm(tfm))) {
2785 crypto_free_hash(tfm);
2786 dev_err(DEV, "\"%s\" is not a digest (%s)\n", alg, name);
2787 return ERR_PTR(-EINVAL);
2788 }
2789 return tfm;
2790}
2791
02918be2 2792static int receive_SyncParam(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int packet_size)
b411b363 2793{
81e84650 2794 int ok = true;
02918be2 2795 struct p_rs_param_95 *p = &mdev->data.rbuf.rs_param_95;
b411b363
PR
2796 unsigned int header_size, data_size, exp_max_sz;
2797 struct crypto_hash *verify_tfm = NULL;
2798 struct crypto_hash *csums_tfm = NULL;
2799 const int apv = mdev->agreed_pro_version;
778f271d
PR
2800 int *rs_plan_s = NULL;
2801 int fifo_size = 0;
b411b363
PR
2802
2803 exp_max_sz = apv <= 87 ? sizeof(struct p_rs_param)
2804 : apv == 88 ? sizeof(struct p_rs_param)
2805 + SHARED_SECRET_MAX
8e26f9cc
PR
2806 : apv <= 94 ? sizeof(struct p_rs_param_89)
2807 : /* apv >= 95 */ sizeof(struct p_rs_param_95);
b411b363 2808
02918be2 2809 if (packet_size > exp_max_sz) {
b411b363 2810 dev_err(DEV, "SyncParam packet too long: received %u, expected <= %u bytes\n",
02918be2 2811 packet_size, exp_max_sz);
81e84650 2812 return false;
b411b363
PR
2813 }
2814
2815 if (apv <= 88) {
02918be2
PR
2816 header_size = sizeof(struct p_rs_param) - sizeof(struct p_header80);
2817 data_size = packet_size - header_size;
8e26f9cc 2818 } else if (apv <= 94) {
02918be2
PR
2819 header_size = sizeof(struct p_rs_param_89) - sizeof(struct p_header80);
2820 data_size = packet_size - header_size;
b411b363 2821 D_ASSERT(data_size == 0);
8e26f9cc 2822 } else {
02918be2
PR
2823 header_size = sizeof(struct p_rs_param_95) - sizeof(struct p_header80);
2824 data_size = packet_size - header_size;
b411b363
PR
2825 D_ASSERT(data_size == 0);
2826 }
2827
2828 /* initialize verify_alg and csums_alg */
2829 memset(p->verify_alg, 0, 2 * SHARED_SECRET_MAX);
2830
02918be2 2831 if (drbd_recv(mdev, &p->head.payload, header_size) != header_size)
81e84650 2832 return false;
b411b363
PR
2833
2834 mdev->sync_conf.rate = be32_to_cpu(p->rate);
2835
2836 if (apv >= 88) {
2837 if (apv == 88) {
2838 if (data_size > SHARED_SECRET_MAX) {
2839 dev_err(DEV, "verify-alg too long, "
2840 "peer wants %u, accepting only %u byte\n",
2841 data_size, SHARED_SECRET_MAX);
81e84650 2842 return false;
b411b363
PR
2843 }
2844
2845 if (drbd_recv(mdev, p->verify_alg, data_size) != data_size)
81e84650 2846 return false;
b411b363
PR
2847
2848 /* we expect NUL terminated string */
2849 /* but just in case someone tries to be evil */
2850 D_ASSERT(p->verify_alg[data_size-1] == 0);
2851 p->verify_alg[data_size-1] = 0;
2852
2853 } else /* apv >= 89 */ {
2854 /* we still expect NUL terminated strings */
2855 /* but just in case someone tries to be evil */
2856 D_ASSERT(p->verify_alg[SHARED_SECRET_MAX-1] == 0);
2857 D_ASSERT(p->csums_alg[SHARED_SECRET_MAX-1] == 0);
2858 p->verify_alg[SHARED_SECRET_MAX-1] = 0;
2859 p->csums_alg[SHARED_SECRET_MAX-1] = 0;
2860 }
2861
2862 if (strcmp(mdev->sync_conf.verify_alg, p->verify_alg)) {
2863 if (mdev->state.conn == C_WF_REPORT_PARAMS) {
2864 dev_err(DEV, "Different verify-alg settings. me=\"%s\" peer=\"%s\"\n",
2865 mdev->sync_conf.verify_alg, p->verify_alg);
2866 goto disconnect;
2867 }
2868 verify_tfm = drbd_crypto_alloc_digest_safe(mdev,
2869 p->verify_alg, "verify-alg");
2870 if (IS_ERR(verify_tfm)) {
2871 verify_tfm = NULL;
2872 goto disconnect;
2873 }
2874 }
2875
2876 if (apv >= 89 && strcmp(mdev->sync_conf.csums_alg, p->csums_alg)) {
2877 if (mdev->state.conn == C_WF_REPORT_PARAMS) {
2878 dev_err(DEV, "Different csums-alg settings. me=\"%s\" peer=\"%s\"\n",
2879 mdev->sync_conf.csums_alg, p->csums_alg);
2880 goto disconnect;
2881 }
2882 csums_tfm = drbd_crypto_alloc_digest_safe(mdev,
2883 p->csums_alg, "csums-alg");
2884 if (IS_ERR(csums_tfm)) {
2885 csums_tfm = NULL;
2886 goto disconnect;
2887 }
2888 }
2889
8e26f9cc
PR
2890 if (apv > 94) {
2891 mdev->sync_conf.rate = be32_to_cpu(p->rate);
2892 mdev->sync_conf.c_plan_ahead = be32_to_cpu(p->c_plan_ahead);
2893 mdev->sync_conf.c_delay_target = be32_to_cpu(p->c_delay_target);
2894 mdev->sync_conf.c_fill_target = be32_to_cpu(p->c_fill_target);
2895 mdev->sync_conf.c_max_rate = be32_to_cpu(p->c_max_rate);
778f271d
PR
2896
2897 fifo_size = (mdev->sync_conf.c_plan_ahead * 10 * SLEEP_TIME) / HZ;
2898 if (fifo_size != mdev->rs_plan_s.size && fifo_size > 0) {
2899 rs_plan_s = kzalloc(sizeof(int) * fifo_size, GFP_KERNEL);
2900 if (!rs_plan_s) {
2901 dev_err(DEV, "kmalloc of fifo_buffer failed");
2902 goto disconnect;
2903 }
2904 }
8e26f9cc 2905 }
b411b363
PR
2906
2907 spin_lock(&mdev->peer_seq_lock);
2908 /* lock against drbd_nl_syncer_conf() */
2909 if (verify_tfm) {
2910 strcpy(mdev->sync_conf.verify_alg, p->verify_alg);
2911 mdev->sync_conf.verify_alg_len = strlen(p->verify_alg) + 1;
2912 crypto_free_hash(mdev->verify_tfm);
2913 mdev->verify_tfm = verify_tfm;
2914 dev_info(DEV, "using verify-alg: \"%s\"\n", p->verify_alg);
2915 }
2916 if (csums_tfm) {
2917 strcpy(mdev->sync_conf.csums_alg, p->csums_alg);
2918 mdev->sync_conf.csums_alg_len = strlen(p->csums_alg) + 1;
2919 crypto_free_hash(mdev->csums_tfm);
2920 mdev->csums_tfm = csums_tfm;
2921 dev_info(DEV, "using csums-alg: \"%s\"\n", p->csums_alg);
2922 }
778f271d
PR
2923 if (fifo_size != mdev->rs_plan_s.size) {
2924 kfree(mdev->rs_plan_s.values);
2925 mdev->rs_plan_s.values = rs_plan_s;
2926 mdev->rs_plan_s.size = fifo_size;
2927 mdev->rs_planed = 0;
2928 }
b411b363
PR
2929 spin_unlock(&mdev->peer_seq_lock);
2930 }
2931
2932 return ok;
2933disconnect:
2934 /* just for completeness: actually not needed,
2935 * as this is not reached if csums_tfm was ok. */
2936 crypto_free_hash(csums_tfm);
2937 /* but free the verify_tfm again, if csums_tfm did not work out */
2938 crypto_free_hash(verify_tfm);
2939 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
81e84650 2940 return false;
b411b363
PR
2941}
2942
b411b363
PR
2943/* warn if the arguments differ by more than 12.5% */
2944static void warn_if_differ_considerably(struct drbd_conf *mdev,
2945 const char *s, sector_t a, sector_t b)
2946{
2947 sector_t d;
2948 if (a == 0 || b == 0)
2949 return;
2950 d = (a > b) ? (a - b) : (b - a);
2951 if (d > (a>>3) || d > (b>>3))
2952 dev_warn(DEV, "Considerable difference in %s: %llus vs. %llus\n", s,
2953 (unsigned long long)a, (unsigned long long)b);
2954}
2955
02918be2 2956static int receive_sizes(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363 2957{
02918be2 2958 struct p_sizes *p = &mdev->data.rbuf.sizes;
b411b363 2959 enum determine_dev_size dd = unchanged;
b411b363
PR
2960 sector_t p_size, p_usize, my_usize;
2961 int ldsc = 0; /* local disk size changed */
e89b591c 2962 enum dds_flags ddsf;
b411b363 2963
b411b363
PR
2964 p_size = be64_to_cpu(p->d_size);
2965 p_usize = be64_to_cpu(p->u_size);
2966
2967 if (p_size == 0 && mdev->state.disk == D_DISKLESS) {
2968 dev_err(DEV, "some backing storage is needed\n");
2969 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
81e84650 2970 return false;
b411b363
PR
2971 }
2972
2973 /* just store the peer's disk size for now.
2974 * we still need to figure out whether we accept that. */
2975 mdev->p_size = p_size;
2976
b411b363
PR
2977 if (get_ldev(mdev)) {
2978 warn_if_differ_considerably(mdev, "lower level device sizes",
2979 p_size, drbd_get_max_capacity(mdev->ldev));
2980 warn_if_differ_considerably(mdev, "user requested size",
2981 p_usize, mdev->ldev->dc.disk_size);
2982
2983 /* if this is the first connect, or an otherwise expected
2984 * param exchange, choose the minimum */
2985 if (mdev->state.conn == C_WF_REPORT_PARAMS)
2986 p_usize = min_not_zero((sector_t)mdev->ldev->dc.disk_size,
2987 p_usize);
2988
2989 my_usize = mdev->ldev->dc.disk_size;
2990
2991 if (mdev->ldev->dc.disk_size != p_usize) {
2992 mdev->ldev->dc.disk_size = p_usize;
2993 dev_info(DEV, "Peer sets u_size to %lu sectors\n",
2994 (unsigned long)mdev->ldev->dc.disk_size);
2995 }
2996
2997 /* Never shrink a device with usable data during connect.
2998 But allow online shrinking if we are connected. */
a393db6f 2999 if (drbd_new_dev_size(mdev, mdev->ldev, 0) <
b411b363
PR
3000 drbd_get_capacity(mdev->this_bdev) &&
3001 mdev->state.disk >= D_OUTDATED &&
3002 mdev->state.conn < C_CONNECTED) {
3003 dev_err(DEV, "The peer's disk size is too small!\n");
3004 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
3005 mdev->ldev->dc.disk_size = my_usize;
3006 put_ldev(mdev);
81e84650 3007 return false;
b411b363
PR
3008 }
3009 put_ldev(mdev);
3010 }
b411b363 3011
e89b591c 3012 ddsf = be16_to_cpu(p->dds_flags);
b411b363 3013 if (get_ldev(mdev)) {
24c4830c 3014 dd = drbd_determine_dev_size(mdev, ddsf);
b411b363
PR
3015 put_ldev(mdev);
3016 if (dd == dev_size_error)
81e84650 3017 return false;
b411b363
PR
3018 drbd_md_sync(mdev);
3019 } else {
3020 /* I am diskless, need to accept the peer's size. */
3021 drbd_set_my_capacity(mdev, p_size);
3022 }
3023
99432fcc
PR
3024 mdev->peer_max_bio_size = be32_to_cpu(p->max_bio_size);
3025 drbd_reconsider_max_bio_size(mdev);
3026
b411b363
PR
3027 if (get_ldev(mdev)) {
3028 if (mdev->ldev->known_size != drbd_get_capacity(mdev->ldev->backing_bdev)) {
3029 mdev->ldev->known_size = drbd_get_capacity(mdev->ldev->backing_bdev);
3030 ldsc = 1;
3031 }
3032
b411b363
PR
3033 put_ldev(mdev);
3034 }
3035
3036 if (mdev->state.conn > C_WF_REPORT_PARAMS) {
3037 if (be64_to_cpu(p->c_size) !=
3038 drbd_get_capacity(mdev->this_bdev) || ldsc) {
3039 /* we have different sizes, probably peer
3040 * needs to know my new size... */
e89b591c 3041 drbd_send_sizes(mdev, 0, ddsf);
b411b363
PR
3042 }
3043 if (test_and_clear_bit(RESIZE_PENDING, &mdev->flags) ||
3044 (dd == grew && mdev->state.conn == C_CONNECTED)) {
3045 if (mdev->state.pdsk >= D_INCONSISTENT &&
e89b591c
PR
3046 mdev->state.disk >= D_INCONSISTENT) {
3047 if (ddsf & DDSF_NO_RESYNC)
3048 dev_info(DEV, "Resync of new storage suppressed with --assume-clean\n");
3049 else
3050 resync_after_online_grow(mdev);
3051 } else
b411b363
PR
3052 set_bit(RESYNC_AFTER_NEG, &mdev->flags);
3053 }
3054 }
3055
81e84650 3056 return true;
b411b363
PR
3057}
3058
02918be2 3059static int receive_uuids(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363 3060{
02918be2 3061 struct p_uuids *p = &mdev->data.rbuf.uuids;
b411b363 3062 u64 *p_uuid;
62b0da3a 3063 int i, updated_uuids = 0;
b411b363 3064
b411b363
PR
3065 p_uuid = kmalloc(sizeof(u64)*UI_EXTENDED_SIZE, GFP_NOIO);
3066
3067 for (i = UI_CURRENT; i < UI_EXTENDED_SIZE; i++)
3068 p_uuid[i] = be64_to_cpu(p->uuid[i]);
3069
3070 kfree(mdev->p_uuid);
3071 mdev->p_uuid = p_uuid;
3072
3073 if (mdev->state.conn < C_CONNECTED &&
3074 mdev->state.disk < D_INCONSISTENT &&
3075 mdev->state.role == R_PRIMARY &&
3076 (mdev->ed_uuid & ~((u64)1)) != (p_uuid[UI_CURRENT] & ~((u64)1))) {
3077 dev_err(DEV, "Can only connect to data with current UUID=%016llX\n",
3078 (unsigned long long)mdev->ed_uuid);
3079 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
81e84650 3080 return false;
b411b363
PR
3081 }
3082
3083 if (get_ldev(mdev)) {
3084 int skip_initial_sync =
3085 mdev->state.conn == C_CONNECTED &&
3086 mdev->agreed_pro_version >= 90 &&
3087 mdev->ldev->md.uuid[UI_CURRENT] == UUID_JUST_CREATED &&
3088 (p_uuid[UI_FLAGS] & 8);
3089 if (skip_initial_sync) {
3090 dev_info(DEV, "Accepted new current UUID, preparing to skip initial sync\n");
3091 drbd_bitmap_io(mdev, &drbd_bmio_clear_n_write,
20ceb2b2
LE
3092 "clear_n_write from receive_uuids",
3093 BM_LOCKED_TEST_ALLOWED);
b411b363
PR
3094 _drbd_uuid_set(mdev, UI_CURRENT, p_uuid[UI_CURRENT]);
3095 _drbd_uuid_set(mdev, UI_BITMAP, 0);
3096 _drbd_set_state(_NS2(mdev, disk, D_UP_TO_DATE, pdsk, D_UP_TO_DATE),
3097 CS_VERBOSE, NULL);
3098 drbd_md_sync(mdev);
62b0da3a 3099 updated_uuids = 1;
b411b363
PR
3100 }
3101 put_ldev(mdev);
18a50fa2
PR
3102 } else if (mdev->state.disk < D_INCONSISTENT &&
3103 mdev->state.role == R_PRIMARY) {
3104 /* I am a diskless primary, the peer just created a new current UUID
3105 for me. */
62b0da3a 3106 updated_uuids = drbd_set_ed_uuid(mdev, p_uuid[UI_CURRENT]);
b411b363
PR
3107 }
3108
3109 /* Before we test for the disk state, we should wait until an eventually
3110 ongoing cluster wide state change is finished. That is important if
3111 we are primary and are detaching from our disk. We need to see the
3112 new disk state... */
3113 wait_event(mdev->misc_wait, !test_bit(CLUSTER_ST_CHANGE, &mdev->flags));
3114 if (mdev->state.conn >= C_CONNECTED && mdev->state.disk < D_INCONSISTENT)
62b0da3a
LE
3115 updated_uuids |= drbd_set_ed_uuid(mdev, p_uuid[UI_CURRENT]);
3116
3117 if (updated_uuids)
3118 drbd_print_uuids(mdev, "receiver updated UUIDs to");
b411b363 3119
81e84650 3120 return true;
b411b363
PR
3121}
3122
3123/**
3124 * convert_state() - Converts the peer's view of the cluster state to our point of view
3125 * @ps: The state as seen by the peer.
3126 */
3127static union drbd_state convert_state(union drbd_state ps)
3128{
3129 union drbd_state ms;
3130
3131 static enum drbd_conns c_tab[] = {
3132 [C_CONNECTED] = C_CONNECTED,
3133
3134 [C_STARTING_SYNC_S] = C_STARTING_SYNC_T,
3135 [C_STARTING_SYNC_T] = C_STARTING_SYNC_S,
3136 [C_DISCONNECTING] = C_TEAR_DOWN, /* C_NETWORK_FAILURE, */
3137 [C_VERIFY_S] = C_VERIFY_T,
3138 [C_MASK] = C_MASK,
3139 };
3140
3141 ms.i = ps.i;
3142
3143 ms.conn = c_tab[ps.conn];
3144 ms.peer = ps.role;
3145 ms.role = ps.peer;
3146 ms.pdsk = ps.disk;
3147 ms.disk = ps.pdsk;
3148 ms.peer_isp = (ps.aftr_isp | ps.user_isp);
3149
3150 return ms;
3151}
3152
02918be2 3153static int receive_req_state(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363 3154{
02918be2 3155 struct p_req_state *p = &mdev->data.rbuf.req_state;
b411b363 3156 union drbd_state mask, val;
bf885f8a 3157 enum drbd_state_rv rv;
b411b363 3158
b411b363
PR
3159 mask.i = be32_to_cpu(p->mask);
3160 val.i = be32_to_cpu(p->val);
3161
3162 if (test_bit(DISCARD_CONCURRENT, &mdev->flags) &&
3163 test_bit(CLUSTER_ST_CHANGE, &mdev->flags)) {
3164 drbd_send_sr_reply(mdev, SS_CONCURRENT_ST_CHG);
81e84650 3165 return true;
b411b363
PR
3166 }
3167
3168 mask = convert_state(mask);
3169 val = convert_state(val);
3170
3171 rv = drbd_change_state(mdev, CS_VERBOSE, mask, val);
3172
3173 drbd_send_sr_reply(mdev, rv);
3174 drbd_md_sync(mdev);
3175
81e84650 3176 return true;
b411b363
PR
3177}
3178
02918be2 3179static int receive_state(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363 3180{
02918be2 3181 struct p_state *p = &mdev->data.rbuf.state;
4ac4aada 3182 union drbd_state os, ns, peer_state;
b411b363 3183 enum drbd_disk_state real_peer_disk;
65d922c3 3184 enum chg_state_flags cs_flags;
b411b363
PR
3185 int rv;
3186
b411b363
PR
3187 peer_state.i = be32_to_cpu(p->state);
3188
3189 real_peer_disk = peer_state.disk;
3190 if (peer_state.disk == D_NEGOTIATING) {
3191 real_peer_disk = mdev->p_uuid[UI_FLAGS] & 4 ? D_INCONSISTENT : D_CONSISTENT;
3192 dev_info(DEV, "real peer disk state = %s\n", drbd_disk_str(real_peer_disk));
3193 }
3194
3195 spin_lock_irq(&mdev->req_lock);
3196 retry:
4ac4aada 3197 os = ns = mdev->state;
b411b363
PR
3198 spin_unlock_irq(&mdev->req_lock);
3199
e9ef7bb6
LE
3200 /* peer says his disk is uptodate, while we think it is inconsistent,
3201 * and this happens while we think we have a sync going on. */
3202 if (os.pdsk == D_INCONSISTENT && real_peer_disk == D_UP_TO_DATE &&
3203 os.conn > C_CONNECTED && os.disk == D_UP_TO_DATE) {
3204 /* If we are (becoming) SyncSource, but peer is still in sync
3205 * preparation, ignore its uptodate-ness to avoid flapping, it
3206 * will change to inconsistent once the peer reaches active
3207 * syncing states.
3208 * It may have changed syncer-paused flags, however, so we
3209 * cannot ignore this completely. */
3210 if (peer_state.conn > C_CONNECTED &&
3211 peer_state.conn < C_SYNC_SOURCE)
3212 real_peer_disk = D_INCONSISTENT;
3213
3214 /* if peer_state changes to connected at the same time,
3215 * it explicitly notifies us that it finished resync.
3216 * Maybe we should finish it up, too? */
3217 else if (os.conn >= C_SYNC_SOURCE &&
3218 peer_state.conn == C_CONNECTED) {
3219 if (drbd_bm_total_weight(mdev) <= mdev->rs_failed)
3220 drbd_resync_finished(mdev);
81e84650 3221 return true;
e9ef7bb6
LE
3222 }
3223 }
3224
3225 /* peer says his disk is inconsistent, while we think it is uptodate,
3226 * and this happens while the peer still thinks we have a sync going on,
3227 * but we think we are already done with the sync.
3228 * We ignore this to avoid flapping pdsk.
3229 * This should not happen, if the peer is a recent version of drbd. */
3230 if (os.pdsk == D_UP_TO_DATE && real_peer_disk == D_INCONSISTENT &&
3231 os.conn == C_CONNECTED && peer_state.conn > C_SYNC_SOURCE)
3232 real_peer_disk = D_UP_TO_DATE;
3233
4ac4aada
LE
3234 if (ns.conn == C_WF_REPORT_PARAMS)
3235 ns.conn = C_CONNECTED;
b411b363 3236
67531718
PR
3237 if (peer_state.conn == C_AHEAD)
3238 ns.conn = C_BEHIND;
3239
b411b363
PR
3240 if (mdev->p_uuid && peer_state.disk >= D_NEGOTIATING &&
3241 get_ldev_if_state(mdev, D_NEGOTIATING)) {
3242 int cr; /* consider resync */
3243
3244 /* if we established a new connection */
4ac4aada 3245 cr = (os.conn < C_CONNECTED);
b411b363
PR
3246 /* if we had an established connection
3247 * and one of the nodes newly attaches a disk */
4ac4aada 3248 cr |= (os.conn == C_CONNECTED &&
b411b363 3249 (peer_state.disk == D_NEGOTIATING ||
4ac4aada 3250 os.disk == D_NEGOTIATING));
b411b363
PR
3251 /* if we have both been inconsistent, and the peer has been
3252 * forced to be UpToDate with --overwrite-data */
3253 cr |= test_bit(CONSIDER_RESYNC, &mdev->flags);
3254 /* if we had been plain connected, and the admin requested to
3255 * start a sync by "invalidate" or "invalidate-remote" */
4ac4aada 3256 cr |= (os.conn == C_CONNECTED &&
b411b363
PR
3257 (peer_state.conn >= C_STARTING_SYNC_S &&
3258 peer_state.conn <= C_WF_BITMAP_T));
3259
3260 if (cr)
4ac4aada 3261 ns.conn = drbd_sync_handshake(mdev, peer_state.role, real_peer_disk);
b411b363
PR
3262
3263 put_ldev(mdev);
4ac4aada
LE
3264 if (ns.conn == C_MASK) {
3265 ns.conn = C_CONNECTED;
b411b363 3266 if (mdev->state.disk == D_NEGOTIATING) {
82f59cc6 3267 drbd_force_state(mdev, NS(disk, D_FAILED));
b411b363
PR
3268 } else if (peer_state.disk == D_NEGOTIATING) {
3269 dev_err(DEV, "Disk attach process on the peer node was aborted.\n");
3270 peer_state.disk = D_DISKLESS;
580b9767 3271 real_peer_disk = D_DISKLESS;
b411b363 3272 } else {
cf14c2e9 3273 if (test_and_clear_bit(CONN_DRY_RUN, &mdev->flags))
81e84650 3274 return false;
4ac4aada 3275 D_ASSERT(os.conn == C_WF_REPORT_PARAMS);
b411b363 3276 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
81e84650 3277 return false;
b411b363
PR
3278 }
3279 }
3280 }
3281
3282 spin_lock_irq(&mdev->req_lock);
4ac4aada 3283 if (mdev->state.i != os.i)
b411b363
PR
3284 goto retry;
3285 clear_bit(CONSIDER_RESYNC, &mdev->flags);
b411b363
PR
3286 ns.peer = peer_state.role;
3287 ns.pdsk = real_peer_disk;
3288 ns.peer_isp = (peer_state.aftr_isp | peer_state.user_isp);
4ac4aada 3289 if ((ns.conn == C_CONNECTED || ns.conn == C_WF_BITMAP_S) && ns.disk == D_NEGOTIATING)
b411b363 3290 ns.disk = mdev->new_state_tmp.disk;
4ac4aada
LE
3291 cs_flags = CS_VERBOSE + (os.conn < C_CONNECTED && ns.conn >= C_CONNECTED ? 0 : CS_HARD);
3292 if (ns.pdsk == D_CONSISTENT && is_susp(ns) && ns.conn == C_CONNECTED && os.conn < C_CONNECTED &&
481c6f50
PR
3293 test_bit(NEW_CUR_UUID, &mdev->flags)) {
3294 /* Do not allow tl_restart(resend) for a rebooted peer. We can only allow this
3295 for temporal network outages! */
3296 spin_unlock_irq(&mdev->req_lock);
3297 dev_err(DEV, "Aborting Connect, can not thaw IO with an only Consistent peer\n");
3298 tl_clear(mdev);
3299 drbd_uuid_new_current(mdev);
3300 clear_bit(NEW_CUR_UUID, &mdev->flags);
3301 drbd_force_state(mdev, NS2(conn, C_PROTOCOL_ERROR, susp, 0));
81e84650 3302 return false;
481c6f50 3303 }
65d922c3 3304 rv = _drbd_set_state(mdev, ns, cs_flags, NULL);
b411b363
PR
3305 ns = mdev->state;
3306 spin_unlock_irq(&mdev->req_lock);
3307
3308 if (rv < SS_SUCCESS) {
3309 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
81e84650 3310 return false;
b411b363
PR
3311 }
3312
4ac4aada
LE
3313 if (os.conn > C_WF_REPORT_PARAMS) {
3314 if (ns.conn > C_CONNECTED && peer_state.conn <= C_CONNECTED &&
b411b363
PR
3315 peer_state.disk != D_NEGOTIATING ) {
3316 /* we want resync, peer has not yet decided to sync... */
3317 /* Nowadays only used when forcing a node into primary role and
3318 setting its disk to UpToDate with that */
3319 drbd_send_uuids(mdev);
3320 drbd_send_state(mdev);
3321 }
3322 }
3323
3324 mdev->net_conf->want_lose = 0;
3325
3326 drbd_md_sync(mdev); /* update connected indicator, la_size, ... */
3327
81e84650 3328 return true;
b411b363
PR
3329}
3330
02918be2 3331static int receive_sync_uuid(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363 3332{
02918be2 3333 struct p_rs_uuid *p = &mdev->data.rbuf.rs_uuid;
b411b363
PR
3334
3335 wait_event(mdev->misc_wait,
3336 mdev->state.conn == C_WF_SYNC_UUID ||
c4752ef1 3337 mdev->state.conn == C_BEHIND ||
b411b363
PR
3338 mdev->state.conn < C_CONNECTED ||
3339 mdev->state.disk < D_NEGOTIATING);
3340
3341 /* D_ASSERT( mdev->state.conn == C_WF_SYNC_UUID ); */
3342
b411b363
PR
3343 /* Here the _drbd_uuid_ functions are right, current should
3344 _not_ be rotated into the history */
3345 if (get_ldev_if_state(mdev, D_NEGOTIATING)) {
3346 _drbd_uuid_set(mdev, UI_CURRENT, be64_to_cpu(p->uuid));
3347 _drbd_uuid_set(mdev, UI_BITMAP, 0UL);
3348
62b0da3a 3349 drbd_print_uuids(mdev, "updated sync uuid");
b411b363
PR
3350 drbd_start_resync(mdev, C_SYNC_TARGET);
3351
3352 put_ldev(mdev);
3353 } else
3354 dev_err(DEV, "Ignoring SyncUUID packet!\n");
3355
81e84650 3356 return true;
b411b363
PR
3357}
3358
2c46407d
AG
3359/**
3360 * receive_bitmap_plain
3361 *
3362 * Return 0 when done, 1 when another iteration is needed, and a negative error
3363 * code upon failure.
3364 */
3365static int
02918be2
PR
3366receive_bitmap_plain(struct drbd_conf *mdev, unsigned int data_size,
3367 unsigned long *buffer, struct bm_xfer_ctx *c)
b411b363
PR
3368{
3369 unsigned num_words = min_t(size_t, BM_PACKET_WORDS, c->bm_words - c->word_offset);
3370 unsigned want = num_words * sizeof(long);
2c46407d 3371 int err;
b411b363 3372
02918be2
PR
3373 if (want != data_size) {
3374 dev_err(DEV, "%s:want (%u) != data_size (%u)\n", __func__, want, data_size);
2c46407d 3375 return -EIO;
b411b363
PR
3376 }
3377 if (want == 0)
2c46407d
AG
3378 return 0;
3379 err = drbd_recv(mdev, buffer, want);
3380 if (err != want) {
3381 if (err >= 0)
3382 err = -EIO;
3383 return err;
3384 }
b411b363
PR
3385
3386 drbd_bm_merge_lel(mdev, c->word_offset, num_words, buffer);
3387
3388 c->word_offset += num_words;
3389 c->bit_offset = c->word_offset * BITS_PER_LONG;
3390 if (c->bit_offset > c->bm_bits)
3391 c->bit_offset = c->bm_bits;
3392
2c46407d 3393 return 1;
b411b363
PR
3394}
3395
2c46407d
AG
3396/**
3397 * recv_bm_rle_bits
3398 *
3399 * Return 0 when done, 1 when another iteration is needed, and a negative error
3400 * code upon failure.
3401 */
3402static int
b411b363
PR
3403recv_bm_rle_bits(struct drbd_conf *mdev,
3404 struct p_compressed_bm *p,
3405 struct bm_xfer_ctx *c)
3406{
3407 struct bitstream bs;
3408 u64 look_ahead;
3409 u64 rl;
3410 u64 tmp;
3411 unsigned long s = c->bit_offset;
3412 unsigned long e;
004352fa 3413 int len = be16_to_cpu(p->head.length) - (sizeof(*p) - sizeof(p->head));
b411b363
PR
3414 int toggle = DCBP_get_start(p);
3415 int have;
3416 int bits;
3417
3418 bitstream_init(&bs, p->code, len, DCBP_get_pad_bits(p));
3419
3420 bits = bitstream_get_bits(&bs, &look_ahead, 64);
3421 if (bits < 0)
2c46407d 3422 return -EIO;
b411b363
PR
3423
3424 for (have = bits; have > 0; s += rl, toggle = !toggle) {
3425 bits = vli_decode_bits(&rl, look_ahead);
3426 if (bits <= 0)
2c46407d 3427 return -EIO;
b411b363
PR
3428
3429 if (toggle) {
3430 e = s + rl -1;
3431 if (e >= c->bm_bits) {
3432 dev_err(DEV, "bitmap overflow (e:%lu) while decoding bm RLE packet\n", e);
2c46407d 3433 return -EIO;
b411b363
PR
3434 }
3435 _drbd_bm_set_bits(mdev, s, e);
3436 }
3437
3438 if (have < bits) {
3439 dev_err(DEV, "bitmap decoding error: h:%d b:%d la:0x%08llx l:%u/%u\n",
3440 have, bits, look_ahead,
3441 (unsigned int)(bs.cur.b - p->code),
3442 (unsigned int)bs.buf_len);
2c46407d 3443 return -EIO;
b411b363
PR
3444 }
3445 look_ahead >>= bits;
3446 have -= bits;
3447
3448 bits = bitstream_get_bits(&bs, &tmp, 64 - have);
3449 if (bits < 0)
2c46407d 3450 return -EIO;
b411b363
PR
3451 look_ahead |= tmp << have;
3452 have += bits;
3453 }
3454
3455 c->bit_offset = s;
3456 bm_xfer_ctx_bit_to_word_offset(c);
3457
2c46407d 3458 return (s != c->bm_bits);
b411b363
PR
3459}
3460
2c46407d
AG
3461/**
3462 * decode_bitmap_c
3463 *
3464 * Return 0 when done, 1 when another iteration is needed, and a negative error
3465 * code upon failure.
3466 */
3467static int
b411b363
PR
3468decode_bitmap_c(struct drbd_conf *mdev,
3469 struct p_compressed_bm *p,
3470 struct bm_xfer_ctx *c)
3471{
3472 if (DCBP_get_code(p) == RLE_VLI_Bits)
3473 return recv_bm_rle_bits(mdev, p, c);
3474
3475 /* other variants had been implemented for evaluation,
3476 * but have been dropped as this one turned out to be "best"
3477 * during all our tests. */
3478
3479 dev_err(DEV, "receive_bitmap_c: unknown encoding %u\n", p->encoding);
3480 drbd_force_state(mdev, NS(conn, C_PROTOCOL_ERROR));
2c46407d 3481 return -EIO;
b411b363
PR
3482}
3483
3484void INFO_bm_xfer_stats(struct drbd_conf *mdev,
3485 const char *direction, struct bm_xfer_ctx *c)
3486{
3487 /* what would it take to transfer it "plaintext" */
0b70a13d 3488 unsigned plain = sizeof(struct p_header80) *
b411b363
PR
3489 ((c->bm_words+BM_PACKET_WORDS-1)/BM_PACKET_WORDS+1)
3490 + c->bm_words * sizeof(long);
3491 unsigned total = c->bytes[0] + c->bytes[1];
3492 unsigned r;
3493
3494 /* total can not be zero. but just in case: */
3495 if (total == 0)
3496 return;
3497
3498 /* don't report if not compressed */
3499 if (total >= plain)
3500 return;
3501
3502 /* total < plain. check for overflow, still */
3503 r = (total > UINT_MAX/1000) ? (total / (plain/1000))
3504 : (1000 * total / plain);
3505
3506 if (r > 1000)
3507 r = 1000;
3508
3509 r = 1000 - r;
3510 dev_info(DEV, "%s bitmap stats [Bytes(packets)]: plain %u(%u), RLE %u(%u), "
3511 "total %u; compression: %u.%u%%\n",
3512 direction,
3513 c->bytes[1], c->packets[1],
3514 c->bytes[0], c->packets[0],
3515 total, r/10, r % 10);
3516}
3517
3518/* Since we are processing the bitfield from lower addresses to higher,
3519 it does not matter if the process it in 32 bit chunks or 64 bit
3520 chunks as long as it is little endian. (Understand it as byte stream,
3521 beginning with the lowest byte...) If we would use big endian
3522 we would need to process it from the highest address to the lowest,
3523 in order to be agnostic to the 32 vs 64 bits issue.
3524
3525 returns 0 on failure, 1 if we successfully received it. */
02918be2 3526static int receive_bitmap(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363
PR
3527{
3528 struct bm_xfer_ctx c;
3529 void *buffer;
2c46407d 3530 int err;
81e84650 3531 int ok = false;
02918be2 3532 struct p_header80 *h = &mdev->data.rbuf.header.h80;
b411b363 3533
20ceb2b2
LE
3534 drbd_bm_lock(mdev, "receive bitmap", BM_LOCKED_SET_ALLOWED);
3535 /* you are supposed to send additional out-of-sync information
3536 * if you actually set bits during this phase */
b411b363
PR
3537
3538 /* maybe we should use some per thread scratch page,
3539 * and allocate that during initial device creation? */
3540 buffer = (unsigned long *) __get_free_page(GFP_NOIO);
3541 if (!buffer) {
3542 dev_err(DEV, "failed to allocate one page buffer in %s\n", __func__);
3543 goto out;
3544 }
3545
3546 c = (struct bm_xfer_ctx) {
3547 .bm_bits = drbd_bm_bits(mdev),
3548 .bm_words = drbd_bm_words(mdev),
3549 };
3550
2c46407d 3551 for(;;) {
02918be2 3552 if (cmd == P_BITMAP) {
2c46407d 3553 err = receive_bitmap_plain(mdev, data_size, buffer, &c);
02918be2 3554 } else if (cmd == P_COMPRESSED_BITMAP) {
b411b363
PR
3555 /* MAYBE: sanity check that we speak proto >= 90,
3556 * and the feature is enabled! */
3557 struct p_compressed_bm *p;
3558
02918be2 3559 if (data_size > BM_PACKET_PAYLOAD_BYTES) {
b411b363
PR
3560 dev_err(DEV, "ReportCBitmap packet too large\n");
3561 goto out;
3562 }
3563 /* use the page buff */
3564 p = buffer;
3565 memcpy(p, h, sizeof(*h));
02918be2 3566 if (drbd_recv(mdev, p->head.payload, data_size) != data_size)
b411b363 3567 goto out;
004352fa
LE
3568 if (data_size <= (sizeof(*p) - sizeof(p->head))) {
3569 dev_err(DEV, "ReportCBitmap packet too small (l:%u)\n", data_size);
78fcbdae 3570 goto out;
b411b363 3571 }
2c46407d 3572 err = decode_bitmap_c(mdev, p, &c);
b411b363 3573 } else {
02918be2 3574 dev_warn(DEV, "receive_bitmap: cmd neither ReportBitMap nor ReportCBitMap (is 0x%x)", cmd);
b411b363
PR
3575 goto out;
3576 }
3577
02918be2
PR
3578 c.packets[cmd == P_BITMAP]++;
3579 c.bytes[cmd == P_BITMAP] += sizeof(struct p_header80) + data_size;
b411b363 3580
2c46407d
AG
3581 if (err <= 0) {
3582 if (err < 0)
3583 goto out;
b411b363 3584 break;
2c46407d 3585 }
02918be2 3586 if (!drbd_recv_header(mdev, &cmd, &data_size))
b411b363 3587 goto out;
2c46407d 3588 }
b411b363
PR
3589
3590 INFO_bm_xfer_stats(mdev, "receive", &c);
3591
3592 if (mdev->state.conn == C_WF_BITMAP_T) {
de1f8e4a
AG
3593 enum drbd_state_rv rv;
3594
b411b363
PR
3595 ok = !drbd_send_bitmap(mdev);
3596 if (!ok)
3597 goto out;
3598 /* Omit CS_ORDERED with this state transition to avoid deadlocks. */
de1f8e4a
AG
3599 rv = _drbd_request_state(mdev, NS(conn, C_WF_SYNC_UUID), CS_VERBOSE);
3600 D_ASSERT(rv == SS_SUCCESS);
b411b363
PR
3601 } else if (mdev->state.conn != C_WF_BITMAP_S) {
3602 /* admin may have requested C_DISCONNECTING,
3603 * other threads may have noticed network errors */
3604 dev_info(DEV, "unexpected cstate (%s) in receive_bitmap\n",
3605 drbd_conn_str(mdev->state.conn));
3606 }
3607
81e84650 3608 ok = true;
b411b363 3609 out:
20ceb2b2 3610 drbd_bm_unlock(mdev);
b411b363
PR
3611 if (ok && mdev->state.conn == C_WF_BITMAP_S)
3612 drbd_start_resync(mdev, C_SYNC_SOURCE);
3613 free_page((unsigned long) buffer);
3614 return ok;
3615}
3616
02918be2 3617static int receive_skip(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
b411b363
PR
3618{
3619 /* TODO zero copy sink :) */
3620 static char sink[128];
3621 int size, want, r;
3622
02918be2
PR
3623 dev_warn(DEV, "skipping unknown optional packet type %d, l: %d!\n",
3624 cmd, data_size);
b411b363 3625
02918be2 3626 size = data_size;
b411b363
PR
3627 while (size > 0) {
3628 want = min_t(int, size, sizeof(sink));
3629 r = drbd_recv(mdev, sink, want);
3630 ERR_IF(r <= 0) break;
3631 size -= r;
3632 }
3633 return size == 0;
3634}
3635
02918be2 3636static int receive_UnplugRemote(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
0ced55a3 3637{
e7f52dfb
LE
3638 /* Make sure we've acked all the TCP data associated
3639 * with the data requests being unplugged */
3640 drbd_tcp_quickack(mdev->data.socket);
0ced55a3 3641
81e84650 3642 return true;
0ced55a3
PR
3643}
3644
73a01a18
PR
3645static int receive_out_of_sync(struct drbd_conf *mdev, enum drbd_packets cmd, unsigned int data_size)
3646{
3647 struct p_block_desc *p = &mdev->data.rbuf.block_desc;
3648
f735e363
LE
3649 switch (mdev->state.conn) {
3650 case C_WF_SYNC_UUID:
3651 case C_WF_BITMAP_T:
3652 case C_BEHIND:
3653 break;
3654 default:
3655 dev_err(DEV, "ASSERT FAILED cstate = %s, expected: WFSyncUUID|WFBitMapT|Behind\n",
3656 drbd_conn_str(mdev->state.conn));
3657 }
3658
73a01a18
PR
3659 drbd_set_out_of_sync(mdev, be64_to_cpu(p->sector), be32_to_cpu(p->blksize));
3660
81e84650 3661 return true;
73a01a18
PR
3662}
3663
02918be2
PR
3664typedef int (*drbd_cmd_handler_f)(struct drbd_conf *, enum drbd_packets cmd, unsigned int to_receive);
3665
3666struct data_cmd {
3667 int expect_payload;
3668 size_t pkt_size;
3669 drbd_cmd_handler_f function;
3670};
3671
3672static struct data_cmd drbd_cmd_handler[] = {
3673 [P_DATA] = { 1, sizeof(struct p_data), receive_Data },
3674 [P_DATA_REPLY] = { 1, sizeof(struct p_data), receive_DataReply },
3675 [P_RS_DATA_REPLY] = { 1, sizeof(struct p_data), receive_RSDataReply } ,
3676 [P_BARRIER] = { 0, sizeof(struct p_barrier), receive_Barrier } ,
3677 [P_BITMAP] = { 1, sizeof(struct p_header80), receive_bitmap } ,
3678 [P_COMPRESSED_BITMAP] = { 1, sizeof(struct p_header80), receive_bitmap } ,
3679 [P_UNPLUG_REMOTE] = { 0, sizeof(struct p_header80), receive_UnplugRemote },
3680 [P_DATA_REQUEST] = { 0, sizeof(struct p_block_req), receive_DataRequest },
3681 [P_RS_DATA_REQUEST] = { 0, sizeof(struct p_block_req), receive_DataRequest },
3682 [P_SYNC_PARAM] = { 1, sizeof(struct p_header80), receive_SyncParam },
3683 [P_SYNC_PARAM89] = { 1, sizeof(struct p_header80), receive_SyncParam },
3684 [P_PROTOCOL] = { 1, sizeof(struct p_protocol), receive_protocol },
3685 [P_UUIDS] = { 0, sizeof(struct p_uuids), receive_uuids },
3686 [P_SIZES] = { 0, sizeof(struct p_sizes), receive_sizes },
3687 [P_STATE] = { 0, sizeof(struct p_state), receive_state },
3688 [P_STATE_CHG_REQ] = { 0, sizeof(struct p_req_state), receive_req_state },
3689 [P_SYNC_UUID] = { 0, sizeof(struct p_rs_uuid), receive_sync_uuid },
3690 [P_OV_REQUEST] = { 0, sizeof(struct p_block_req), receive_DataRequest },
3691 [P_OV_REPLY] = { 1, sizeof(struct p_block_req), receive_DataRequest },
3692 [P_CSUM_RS_REQUEST] = { 1, sizeof(struct p_block_req), receive_DataRequest },
3693 [P_DELAY_PROBE] = { 0, sizeof(struct p_delay_probe93), receive_skip },
73a01a18 3694 [P_OUT_OF_SYNC] = { 0, sizeof(struct p_block_desc), receive_out_of_sync },
b411b363
PR
3695 /* anything missing from this table is in
3696 * the asender_tbl, see get_asender_cmd */
02918be2 3697 [P_MAX_CMD] = { 0, 0, NULL },
b411b363
PR
3698};
3699
02918be2
PR
3700/* All handler functions that expect a sub-header get that sub-heder in
3701 mdev->data.rbuf.header.head.payload.
3702
3703 Usually in mdev->data.rbuf.header.head the callback can find the usual
3704 p_header, but they may not rely on that. Since there is also p_header95 !
3705 */
b411b363
PR
3706
3707static void drbdd(struct drbd_conf *mdev)
3708{
02918be2
PR
3709 union p_header *header = &mdev->data.rbuf.header;
3710 unsigned int packet_size;
3711 enum drbd_packets cmd;
3712 size_t shs; /* sub header size */
3713 int rv;
b411b363
PR
3714
3715 while (get_t_state(&mdev->receiver) == Running) {
3716 drbd_thread_current_set_cpu(mdev);
02918be2
PR
3717 if (!drbd_recv_header(mdev, &cmd, &packet_size))
3718 goto err_out;
b411b363 3719
02918be2
PR
3720 if (unlikely(cmd >= P_MAX_CMD || !drbd_cmd_handler[cmd].function)) {
3721 dev_err(DEV, "unknown packet type %d, l: %d!\n", cmd, packet_size);
3722 goto err_out;
0b33a916 3723 }
b411b363 3724
02918be2 3725 shs = drbd_cmd_handler[cmd].pkt_size - sizeof(union p_header);
02918be2
PR
3726 if (packet_size - shs > 0 && !drbd_cmd_handler[cmd].expect_payload) {
3727 dev_err(DEV, "No payload expected %s l:%d\n", cmdname(cmd), packet_size);
3728 goto err_out;
b411b363 3729 }
b411b363 3730
c13f7e1a
LE
3731 if (shs) {
3732 rv = drbd_recv(mdev, &header->h80.payload, shs);
3733 if (unlikely(rv != shs)) {
0ddc5549
LE
3734 if (!signal_pending(current))
3735 dev_warn(DEV, "short read while reading sub header: rv=%d\n", rv);
c13f7e1a
LE
3736 goto err_out;
3737 }
3738 }
3739
02918be2 3740 rv = drbd_cmd_handler[cmd].function(mdev, cmd, packet_size - shs);
b411b363 3741
02918be2 3742 if (unlikely(!rv)) {
b411b363 3743 dev_err(DEV, "error receiving %s, l: %d!\n",
02918be2
PR
3744 cmdname(cmd), packet_size);
3745 goto err_out;
b411b363
PR
3746 }
3747 }
b411b363 3748
02918be2
PR
3749 if (0) {
3750 err_out:
3751 drbd_force_state(mdev, NS(conn, C_PROTOCOL_ERROR));
3752 }
856c50c7
LE
3753 /* If we leave here, we probably want to update at least the
3754 * "Connected" indicator on stable storage. Do so explicitly here. */
3755 drbd_md_sync(mdev);
b411b363
PR
3756}
3757
3758void drbd_flush_workqueue(struct drbd_conf *mdev)
3759{
3760 struct drbd_wq_barrier barr;
3761
3762 barr.w.cb = w_prev_work_done;
3763 init_completion(&barr.done);
3764 drbd_queue_work(&mdev->data.work, &barr.w);
3765 wait_for_completion(&barr.done);
3766}
3767
3768static void drbd_disconnect(struct drbd_conf *mdev)
3769{
3770 enum drbd_fencing_p fp;
3771 union drbd_state os, ns;
3772 int rv = SS_UNKNOWN_ERROR;
3773 unsigned int i;
3774
3775 if (mdev->state.conn == C_STANDALONE)
3776 return;
b411b363
PR
3777
3778 /* asender does not clean up anything. it must not interfere, either */
3779 drbd_thread_stop(&mdev->asender);
b411b363 3780 drbd_free_sock(mdev);
b411b363 3781
85719573 3782 /* wait for current activity to cease. */
b411b363
PR
3783 spin_lock_irq(&mdev->req_lock);
3784 _drbd_wait_ee_list_empty(mdev, &mdev->active_ee);
3785 _drbd_wait_ee_list_empty(mdev, &mdev->sync_ee);
3786 _drbd_wait_ee_list_empty(mdev, &mdev->read_ee);
3787 spin_unlock_irq(&mdev->req_lock);
3788
3789 /* We do not have data structures that would allow us to
3790 * get the rs_pending_cnt down to 0 again.
3791 * * On C_SYNC_TARGET we do not have any data structures describing
3792 * the pending RSDataRequest's we have sent.
3793 * * On C_SYNC_SOURCE there is no data structure that tracks
3794 * the P_RS_DATA_REPLY blocks that we sent to the SyncTarget.
3795 * And no, it is not the sum of the reference counts in the
3796 * resync_LRU. The resync_LRU tracks the whole operation including
3797 * the disk-IO, while the rs_pending_cnt only tracks the blocks
3798 * on the fly. */
3799 drbd_rs_cancel_all(mdev);
3800 mdev->rs_total = 0;
3801 mdev->rs_failed = 0;
3802 atomic_set(&mdev->rs_pending_cnt, 0);
3803 wake_up(&mdev->misc_wait);
3804
7fde2be9
PR
3805 del_timer(&mdev->request_timer);
3806
b411b363
PR
3807 /* make sure syncer is stopped and w_resume_next_sg queued */
3808 del_timer_sync(&mdev->resync_timer);
b411b363
PR
3809 resync_timer_fn((unsigned long)mdev);
3810
b411b363
PR
3811 /* wait for all w_e_end_data_req, w_e_end_rsdata_req, w_send_barrier,
3812 * w_make_resync_request etc. which may still be on the worker queue
3813 * to be "canceled" */
3814 drbd_flush_workqueue(mdev);
3815
3816 /* This also does reclaim_net_ee(). If we do this too early, we might
3817 * miss some resync ee and pages.*/
3818 drbd_process_done_ee(mdev);
3819
3820 kfree(mdev->p_uuid);
3821 mdev->p_uuid = NULL;
3822
fb22c402 3823 if (!is_susp(mdev->state))
b411b363
PR
3824 tl_clear(mdev);
3825
b411b363
PR
3826 dev_info(DEV, "Connection closed\n");
3827
3828 drbd_md_sync(mdev);
3829
3830 fp = FP_DONT_CARE;
3831 if (get_ldev(mdev)) {
3832 fp = mdev->ldev->dc.fencing;
3833 put_ldev(mdev);
3834 }
3835
87f7be4c
PR
3836 if (mdev->state.role == R_PRIMARY && fp >= FP_RESOURCE && mdev->state.pdsk >= D_UNKNOWN)
3837 drbd_try_outdate_peer_async(mdev);
b411b363
PR
3838
3839 spin_lock_irq(&mdev->req_lock);
3840 os = mdev->state;
3841 if (os.conn >= C_UNCONNECTED) {
3842 /* Do not restart in case we are C_DISCONNECTING */
3843 ns = os;
3844 ns.conn = C_UNCONNECTED;
3845 rv = _drbd_set_state(mdev, ns, CS_VERBOSE, NULL);
3846 }
3847 spin_unlock_irq(&mdev->req_lock);
3848
3849 if (os.conn == C_DISCONNECTING) {
84dfb9f5 3850 wait_event(mdev->net_cnt_wait, atomic_read(&mdev->net_cnt) == 0);
b411b363 3851
b411b363
PR
3852 crypto_free_hash(mdev->cram_hmac_tfm);
3853 mdev->cram_hmac_tfm = NULL;
3854
3855 kfree(mdev->net_conf);
3856 mdev->net_conf = NULL;
3857 drbd_request_state(mdev, NS(conn, C_STANDALONE));
3858 }
3859
20ceb2b2
LE
3860 /* serialize with bitmap writeout triggered by the state change,
3861 * if any. */
3862 wait_event(mdev->misc_wait, !test_bit(BITMAP_IO, &mdev->flags));
3863
b411b363
PR
3864 /* tcp_close and release of sendpage pages can be deferred. I don't
3865 * want to use SO_LINGER, because apparently it can be deferred for
3866 * more than 20 seconds (longest time I checked).
3867 *
3868 * Actually we don't care for exactly when the network stack does its
3869 * put_page(), but release our reference on these pages right here.
3870 */
3871 i = drbd_release_ee(mdev, &mdev->net_ee);
3872 if (i)
3873 dev_info(DEV, "net_ee not empty, killed %u entries\n", i);
435f0740
LE
3874 i = atomic_read(&mdev->pp_in_use_by_net);
3875 if (i)
3876 dev_info(DEV, "pp_in_use_by_net = %d, expected 0\n", i);
b411b363
PR
3877 i = atomic_read(&mdev->pp_in_use);
3878 if (i)
45bb912b 3879 dev_info(DEV, "pp_in_use = %d, expected 0\n", i);
b411b363
PR
3880
3881 D_ASSERT(list_empty(&mdev->read_ee));
3882 D_ASSERT(list_empty(&mdev->active_ee));
3883 D_ASSERT(list_empty(&mdev->sync_ee));
3884 D_ASSERT(list_empty(&mdev->done_ee));
3885
3886 /* ok, no more ee's on the fly, it is safe to reset the epoch_size */
3887 atomic_set(&mdev->current_epoch->epoch_size, 0);
3888 D_ASSERT(list_empty(&mdev->current_epoch->list));
3889}
3890
3891/*
3892 * We support PRO_VERSION_MIN to PRO_VERSION_MAX. The protocol version
3893 * we can agree on is stored in agreed_pro_version.
3894 *
3895 * feature flags and the reserved array should be enough room for future
3896 * enhancements of the handshake protocol, and possible plugins...
3897 *
3898 * for now, they are expected to be zero, but ignored.
3899 */
3900static int drbd_send_handshake(struct drbd_conf *mdev)
3901{
3902 /* ASSERT current == mdev->receiver ... */
3903 struct p_handshake *p = &mdev->data.sbuf.handshake;
3904 int ok;
3905
3906 if (mutex_lock_interruptible(&mdev->data.mutex)) {
3907 dev_err(DEV, "interrupted during initial handshake\n");
3908 return 0; /* interrupted. not ok. */
3909 }
3910
3911 if (mdev->data.socket == NULL) {
3912 mutex_unlock(&mdev->data.mutex);
3913 return 0;
3914 }
3915
3916 memset(p, 0, sizeof(*p));
3917 p->protocol_min = cpu_to_be32(PRO_VERSION_MIN);
3918 p->protocol_max = cpu_to_be32(PRO_VERSION_MAX);
3919 ok = _drbd_send_cmd( mdev, mdev->data.socket, P_HAND_SHAKE,
0b70a13d 3920 (struct p_header80 *)p, sizeof(*p), 0 );
b411b363
PR
3921 mutex_unlock(&mdev->data.mutex);
3922 return ok;
3923}
3924
3925/*
3926 * return values:
3927 * 1 yes, we have a valid connection
3928 * 0 oops, did not work out, please try again
3929 * -1 peer talks different language,
3930 * no point in trying again, please go standalone.
3931 */
3932static int drbd_do_handshake(struct drbd_conf *mdev)
3933{
3934 /* ASSERT current == mdev->receiver ... */
3935 struct p_handshake *p = &mdev->data.rbuf.handshake;
02918be2
PR
3936 const int expect = sizeof(struct p_handshake) - sizeof(struct p_header80);
3937 unsigned int length;
3938 enum drbd_packets cmd;
b411b363
PR
3939 int rv;
3940
3941 rv = drbd_send_handshake(mdev);
3942 if (!rv)
3943 return 0;
3944
02918be2 3945 rv = drbd_recv_header(mdev, &cmd, &length);
b411b363
PR
3946 if (!rv)
3947 return 0;
3948
02918be2 3949 if (cmd != P_HAND_SHAKE) {
b411b363 3950 dev_err(DEV, "expected HandShake packet, received: %s (0x%04x)\n",
02918be2 3951 cmdname(cmd), cmd);
b411b363
PR
3952 return -1;
3953 }
3954
02918be2 3955 if (length != expect) {
b411b363 3956 dev_err(DEV, "expected HandShake length: %u, received: %u\n",
02918be2 3957 expect, length);
b411b363
PR
3958 return -1;
3959 }
3960
3961 rv = drbd_recv(mdev, &p->head.payload, expect);
3962
3963 if (rv != expect) {
0ddc5549
LE
3964 if (!signal_pending(current))
3965 dev_warn(DEV, "short read receiving handshake packet: l=%u\n", rv);
b411b363
PR
3966 return 0;
3967 }
3968
b411b363
PR
3969 p->protocol_min = be32_to_cpu(p->protocol_min);
3970 p->protocol_max = be32_to_cpu(p->protocol_max);
3971 if (p->protocol_max == 0)
3972 p->protocol_max = p->protocol_min;
3973
3974 if (PRO_VERSION_MAX < p->protocol_min ||
3975 PRO_VERSION_MIN > p->protocol_max)
3976 goto incompat;
3977
3978 mdev->agreed_pro_version = min_t(int, PRO_VERSION_MAX, p->protocol_max);
3979
3980 dev_info(DEV, "Handshake successful: "
3981 "Agreed network protocol version %d\n", mdev->agreed_pro_version);
3982
3983 return 1;
3984
3985 incompat:
3986 dev_err(DEV, "incompatible DRBD dialects: "
3987 "I support %d-%d, peer supports %d-%d\n",
3988 PRO_VERSION_MIN, PRO_VERSION_MAX,
3989 p->protocol_min, p->protocol_max);
3990 return -1;
3991}
3992
3993#if !defined(CONFIG_CRYPTO_HMAC) && !defined(CONFIG_CRYPTO_HMAC_MODULE)
3994static int drbd_do_auth(struct drbd_conf *mdev)
3995{
3996 dev_err(DEV, "This kernel was build without CONFIG_CRYPTO_HMAC.\n");
3997 dev_err(DEV, "You need to disable 'cram-hmac-alg' in drbd.conf.\n");
b10d96cb 3998 return -1;
b411b363
PR
3999}
4000#else
4001#define CHALLENGE_LEN 64
b10d96cb
JT
4002
4003/* Return value:
4004 1 - auth succeeded,
4005 0 - failed, try again (network error),
4006 -1 - auth failed, don't try again.
4007*/
4008
b411b363
PR
4009static int drbd_do_auth(struct drbd_conf *mdev)
4010{
4011 char my_challenge[CHALLENGE_LEN]; /* 64 Bytes... */
4012 struct scatterlist sg;
4013 char *response = NULL;
4014 char *right_response = NULL;
4015 char *peers_ch = NULL;
b411b363
PR
4016 unsigned int key_len = strlen(mdev->net_conf->shared_secret);
4017 unsigned int resp_size;
4018 struct hash_desc desc;
02918be2
PR
4019 enum drbd_packets cmd;
4020 unsigned int length;
b411b363
PR
4021 int rv;
4022
4023 desc.tfm = mdev->cram_hmac_tfm;
4024 desc.flags = 0;
4025
4026 rv = crypto_hash_setkey(mdev->cram_hmac_tfm,
4027 (u8 *)mdev->net_conf->shared_secret, key_len);
4028 if (rv) {
4029 dev_err(DEV, "crypto_hash_setkey() failed with %d\n", rv);
b10d96cb 4030 rv = -1;
b411b363
PR
4031 goto fail;
4032 }
4033
4034 get_random_bytes(my_challenge, CHALLENGE_LEN);
4035
4036 rv = drbd_send_cmd2(mdev, P_AUTH_CHALLENGE, my_challenge, CHALLENGE_LEN);
4037 if (!rv)
4038 goto fail;
4039
02918be2 4040 rv = drbd_recv_header(mdev, &cmd, &length);
b411b363
PR
4041 if (!rv)
4042 goto fail;
4043
02918be2 4044 if (cmd != P_AUTH_CHALLENGE) {
b411b363 4045 dev_err(DEV, "expected AuthChallenge packet, received: %s (0x%04x)\n",
02918be2 4046 cmdname(cmd), cmd);
b411b363
PR
4047 rv = 0;
4048 goto fail;
4049 }
4050
02918be2 4051 if (length > CHALLENGE_LEN * 2) {
b411b363 4052 dev_err(DEV, "expected AuthChallenge payload too big.\n");
b10d96cb 4053 rv = -1;
b411b363
PR
4054 goto fail;
4055 }
4056
02918be2 4057 peers_ch = kmalloc(length, GFP_NOIO);
b411b363
PR
4058 if (peers_ch == NULL) {
4059 dev_err(DEV, "kmalloc of peers_ch failed\n");
b10d96cb 4060 rv = -1;
b411b363
PR
4061 goto fail;
4062 }
4063
02918be2 4064 rv = drbd_recv(mdev, peers_ch, length);
b411b363 4065
02918be2 4066 if (rv != length) {
0ddc5549
LE
4067 if (!signal_pending(current))
4068 dev_warn(DEV, "short read AuthChallenge: l=%u\n", rv);
b411b363
PR
4069 rv = 0;
4070 goto fail;
4071 }
4072
4073 resp_size = crypto_hash_digestsize(mdev->cram_hmac_tfm);
4074 response = kmalloc(resp_size, GFP_NOIO);
4075 if (response == NULL) {
4076 dev_err(DEV, "kmalloc of response failed\n");
b10d96cb 4077 rv = -1;
b411b363
PR
4078 goto fail;
4079 }
4080
4081 sg_init_table(&sg, 1);
02918be2 4082 sg_set_buf(&sg, peers_ch, length);
b411b363
PR
4083
4084 rv = crypto_hash_digest(&desc, &sg, sg.length, response);
4085 if (rv) {
4086 dev_err(DEV, "crypto_hash_digest() failed with %d\n", rv);
b10d96cb 4087 rv = -1;
b411b363
PR
4088 goto fail;
4089 }
4090
4091 rv = drbd_send_cmd2(mdev, P_AUTH_RESPONSE, response, resp_size);
4092 if (!rv)
4093 goto fail;
4094
02918be2 4095 rv = drbd_recv_header(mdev, &cmd, &length);
b411b363
PR
4096 if (!rv)
4097 goto fail;
4098
02918be2 4099 if (cmd != P_AUTH_RESPONSE) {
b411b363 4100 dev_err(DEV, "expected AuthResponse packet, received: %s (0x%04x)\n",
02918be2 4101 cmdname(cmd), cmd);
b411b363
PR
4102 rv = 0;
4103 goto fail;
4104 }
4105
02918be2 4106 if (length != resp_size) {
b411b363
PR
4107 dev_err(DEV, "expected AuthResponse payload of wrong size\n");
4108 rv = 0;
4109 goto fail;
4110 }
4111
4112 rv = drbd_recv(mdev, response , resp_size);
4113
4114 if (rv != resp_size) {
0ddc5549
LE
4115 if (!signal_pending(current))
4116 dev_warn(DEV, "short read receiving AuthResponse: l=%u\n", rv);
b411b363
PR
4117 rv = 0;
4118 goto fail;
4119 }
4120
4121 right_response = kmalloc(resp_size, GFP_NOIO);
2d1ee87d 4122 if (right_response == NULL) {
b411b363 4123 dev_err(DEV, "kmalloc of right_response failed\n");
b10d96cb 4124 rv = -1;
b411b363
PR
4125 goto fail;
4126 }
4127
4128 sg_set_buf(&sg, my_challenge, CHALLENGE_LEN);
4129
4130 rv = crypto_hash_digest(&desc, &sg, sg.length, right_response);
4131 if (rv) {
4132 dev_err(DEV, "crypto_hash_digest() failed with %d\n", rv);
b10d96cb 4133 rv = -1;
b411b363
PR
4134 goto fail;
4135 }
4136
4137 rv = !memcmp(response, right_response, resp_size);
4138
4139 if (rv)
4140 dev_info(DEV, "Peer authenticated using %d bytes of '%s' HMAC\n",
4141 resp_size, mdev->net_conf->cram_hmac_alg);
b10d96cb
JT
4142 else
4143 rv = -1;
b411b363
PR
4144
4145 fail:
4146 kfree(peers_ch);
4147 kfree(response);
4148 kfree(right_response);
4149
4150 return rv;
4151}
4152#endif
4153
4154int drbdd_init(struct drbd_thread *thi)
4155{
4156 struct drbd_conf *mdev = thi->mdev;
4157 unsigned int minor = mdev_to_minor(mdev);
4158 int h;
4159
4160 sprintf(current->comm, "drbd%d_receiver", minor);
4161
4162 dev_info(DEV, "receiver (re)started\n");
4163
4164 do {
4165 h = drbd_connect(mdev);
4166 if (h == 0) {
4167 drbd_disconnect(mdev);
20ee6390 4168 schedule_timeout_interruptible(HZ);
b411b363
PR
4169 }
4170 if (h == -1) {
4171 dev_warn(DEV, "Discarding network configuration.\n");
4172 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
4173 }
4174 } while (h == 0);
4175
4176 if (h > 0) {
4177 if (get_net_conf(mdev)) {
4178 drbdd(mdev);
4179 put_net_conf(mdev);
4180 }
4181 }
4182
4183 drbd_disconnect(mdev);
4184
4185 dev_info(DEV, "receiver terminated\n");
4186 return 0;
4187}
4188
4189/* ********* acknowledge sender ******** */
4190
0b70a13d 4191static int got_RqSReply(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4192{
4193 struct p_req_state_reply *p = (struct p_req_state_reply *)h;
4194
4195 int retcode = be32_to_cpu(p->retcode);
4196
4197 if (retcode >= SS_SUCCESS) {
4198 set_bit(CL_ST_CHG_SUCCESS, &mdev->flags);
4199 } else {
4200 set_bit(CL_ST_CHG_FAIL, &mdev->flags);
4201 dev_err(DEV, "Requested state change failed by peer: %s (%d)\n",
4202 drbd_set_st_err_str(retcode), retcode);
4203 }
4204 wake_up(&mdev->state_wait);
4205
81e84650 4206 return true;
b411b363
PR
4207}
4208
0b70a13d 4209static int got_Ping(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4210{
4211 return drbd_send_ping_ack(mdev);
4212
4213}
4214
0b70a13d 4215static int got_PingAck(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4216{
4217 /* restore idle timeout */
4218 mdev->meta.socket->sk->sk_rcvtimeo = mdev->net_conf->ping_int*HZ;
309d1608
PR
4219 if (!test_and_set_bit(GOT_PING_ACK, &mdev->flags))
4220 wake_up(&mdev->misc_wait);
b411b363 4221
81e84650 4222 return true;
b411b363
PR
4223}
4224
0b70a13d 4225static int got_IsInSync(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4226{
4227 struct p_block_ack *p = (struct p_block_ack *)h;
4228 sector_t sector = be64_to_cpu(p->sector);
4229 int blksize = be32_to_cpu(p->blksize);
4230
4231 D_ASSERT(mdev->agreed_pro_version >= 89);
4232
4233 update_peer_seq(mdev, be32_to_cpu(p->seq_num));
4234
1d53f09e
LE
4235 if (get_ldev(mdev)) {
4236 drbd_rs_complete_io(mdev, sector);
4237 drbd_set_in_sync(mdev, sector, blksize);
4238 /* rs_same_csums is supposed to count in units of BM_BLOCK_SIZE */
4239 mdev->rs_same_csum += (blksize >> BM_BLOCK_SHIFT);
4240 put_ldev(mdev);
4241 }
b411b363 4242 dec_rs_pending(mdev);
778f271d 4243 atomic_add(blksize >> 9, &mdev->rs_sect_in);
b411b363 4244
81e84650 4245 return true;
b411b363
PR
4246}
4247
b411b363 4248static int validate_req_change_req_state(struct drbd_conf *mdev,
28c455ce 4249 u64 id, sector_t sector,
ae3388da 4250 struct hlist_head *(*hash_slot)(struct drbd_conf *, sector_t),
b411b363
PR
4251 const char *func, enum drbd_req_event what)
4252{
4253 struct drbd_request *req;
4254 struct bio_and_error m;
4255
4256 spin_lock_irq(&mdev->req_lock);
ae3388da 4257 req = find_request(mdev, hash_slot, id, sector, func);
b411b363
PR
4258 if (unlikely(!req)) {
4259 spin_unlock_irq(&mdev->req_lock);
2deb8336
PR
4260
4261 dev_err(DEV, "%s: failed to find req %p, sector %llus\n", func,
4262 (void *)(unsigned long)id, (unsigned long long)sector);
81e84650 4263 return false;
b411b363
PR
4264 }
4265 __req_mod(req, what, &m);
4266 spin_unlock_irq(&mdev->req_lock);
4267
4268 if (m.bio)
4269 complete_master_bio(mdev, &m);
81e84650 4270 return true;
b411b363
PR
4271}
4272
0b70a13d 4273static int got_BlockAck(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4274{
4275 struct p_block_ack *p = (struct p_block_ack *)h;
4276 sector_t sector = be64_to_cpu(p->sector);
4277 int blksize = be32_to_cpu(p->blksize);
4278 enum drbd_req_event what;
4279
4280 update_peer_seq(mdev, be32_to_cpu(p->seq_num));
4281
579b57ed 4282 if (p->block_id == ID_SYNCER) {
b411b363
PR
4283 drbd_set_in_sync(mdev, sector, blksize);
4284 dec_rs_pending(mdev);
81e84650 4285 return true;
b411b363
PR
4286 }
4287 switch (be16_to_cpu(h->command)) {
4288 case P_RS_WRITE_ACK:
4289 D_ASSERT(mdev->net_conf->wire_protocol == DRBD_PROT_C);
4290 what = write_acked_by_peer_and_sis;
4291 break;
4292 case P_WRITE_ACK:
4293 D_ASSERT(mdev->net_conf->wire_protocol == DRBD_PROT_C);
4294 what = write_acked_by_peer;
4295 break;
4296 case P_RECV_ACK:
4297 D_ASSERT(mdev->net_conf->wire_protocol == DRBD_PROT_B);
4298 what = recv_acked_by_peer;
4299 break;
4300 case P_DISCARD_ACK:
4301 D_ASSERT(mdev->net_conf->wire_protocol == DRBD_PROT_C);
4302 what = conflict_discarded_by_peer;
4303 break;
4304 default:
4305 D_ASSERT(0);
81e84650 4306 return false;
b411b363
PR
4307 }
4308
4309 return validate_req_change_req_state(mdev, p->block_id, sector,
ae3388da 4310 tl_hash_slot, __func__, what);
b411b363
PR
4311}
4312
0b70a13d 4313static int got_NegAck(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4314{
4315 struct p_block_ack *p = (struct p_block_ack *)h;
4316 sector_t sector = be64_to_cpu(p->sector);
2deb8336
PR
4317 int size = be32_to_cpu(p->blksize);
4318 struct drbd_request *req;
4319 struct bio_and_error m;
b411b363
PR
4320
4321 update_peer_seq(mdev, be32_to_cpu(p->seq_num));
4322
579b57ed 4323 if (p->block_id == ID_SYNCER) {
b411b363
PR
4324 dec_rs_pending(mdev);
4325 drbd_rs_failed_io(mdev, sector, size);
81e84650 4326 return true;
b411b363 4327 }
2deb8336
PR
4328
4329 spin_lock_irq(&mdev->req_lock);
ae3388da 4330 req = find_request(mdev, tl_hash_slot, p->block_id, sector, __func__);
2deb8336
PR
4331 if (!req) {
4332 spin_unlock_irq(&mdev->req_lock);
4333 if (mdev->net_conf->wire_protocol == DRBD_PROT_A ||
4334 mdev->net_conf->wire_protocol == DRBD_PROT_B) {
4335 /* Protocol A has no P_WRITE_ACKs, but has P_NEG_ACKs.
4336 The master bio might already be completed, therefore the
4337 request is no longer in the collision hash.
4338 => Do not try to validate block_id as request. */
4339 /* In Protocol B we might already have got a P_RECV_ACK
4340 but then get a P_NEG_ACK after wards. */
4341 drbd_set_out_of_sync(mdev, sector, size);
4342 return true;
4343 } else {
4344 dev_err(DEV, "%s: failed to find req %p, sector %llus\n", __func__,
4345 (void *)(unsigned long)p->block_id, (unsigned long long)sector);
4346 return false;
4347 }
4348 }
4349 __req_mod(req, neg_acked, &m);
4350 spin_unlock_irq(&mdev->req_lock);
4351
4352 if (m.bio)
4353 complete_master_bio(mdev, &m);
4354 return true;
b411b363
PR
4355}
4356
0b70a13d 4357static int got_NegDReply(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4358{
4359 struct p_block_ack *p = (struct p_block_ack *)h;
4360 sector_t sector = be64_to_cpu(p->sector);
4361
4362 update_peer_seq(mdev, be32_to_cpu(p->seq_num));
4363 dev_err(DEV, "Got NegDReply; Sector %llus, len %u; Fail original request.\n",
4364 (unsigned long long)sector, be32_to_cpu(p->blksize));
4365
4366 return validate_req_change_req_state(mdev, p->block_id, sector,
ae3388da 4367 ar_hash_slot, __func__, neg_acked);
b411b363
PR
4368}
4369
0b70a13d 4370static int got_NegRSDReply(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4371{
4372 sector_t sector;
4373 int size;
4374 struct p_block_ack *p = (struct p_block_ack *)h;
4375
4376 sector = be64_to_cpu(p->sector);
4377 size = be32_to_cpu(p->blksize);
b411b363
PR
4378
4379 update_peer_seq(mdev, be32_to_cpu(p->seq_num));
4380
4381 dec_rs_pending(mdev);
4382
4383 if (get_ldev_if_state(mdev, D_FAILED)) {
4384 drbd_rs_complete_io(mdev, sector);
d612d309
PR
4385 switch (be16_to_cpu(h->command)) {
4386 case P_NEG_RS_DREPLY:
4387 drbd_rs_failed_io(mdev, sector, size);
4388 case P_RS_CANCEL:
4389 break;
4390 default:
4391 D_ASSERT(0);
4392 put_ldev(mdev);
4393 return false;
4394 }
b411b363
PR
4395 put_ldev(mdev);
4396 }
4397
81e84650 4398 return true;
b411b363
PR
4399}
4400
0b70a13d 4401static int got_BarrierAck(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4402{
4403 struct p_barrier_ack *p = (struct p_barrier_ack *)h;
4404
4405 tl_release(mdev, p->barrier, be32_to_cpu(p->set_size));
4406
c4752ef1
PR
4407 if (mdev->state.conn == C_AHEAD &&
4408 atomic_read(&mdev->ap_in_flight) == 0 &&
370a43e7
PR
4409 !test_and_set_bit(AHEAD_TO_SYNC_SOURCE, &mdev->current_epoch->flags)) {
4410 mdev->start_resync_timer.expires = jiffies + HZ;
4411 add_timer(&mdev->start_resync_timer);
c4752ef1
PR
4412 }
4413
81e84650 4414 return true;
b411b363
PR
4415}
4416
0b70a13d 4417static int got_OVResult(struct drbd_conf *mdev, struct p_header80 *h)
b411b363
PR
4418{
4419 struct p_block_ack *p = (struct p_block_ack *)h;
4420 struct drbd_work *w;
4421 sector_t sector;
4422 int size;
4423
4424 sector = be64_to_cpu(p->sector);
4425 size = be32_to_cpu(p->blksize);
4426
4427 update_peer_seq(mdev, be32_to_cpu(p->seq_num));
4428
4429 if (be64_to_cpu(p->block_id) == ID_OUT_OF_SYNC)
4430 drbd_ov_oos_found(mdev, sector, size);
4431 else
4432 ov_oos_print(mdev);
4433
1d53f09e 4434 if (!get_ldev(mdev))
81e84650 4435 return true;
1d53f09e 4436
b411b363
PR
4437 drbd_rs_complete_io(mdev, sector);
4438 dec_rs_pending(mdev);
4439
ea5442af
LE
4440 --mdev->ov_left;
4441
4442 /* let's advance progress step marks only for every other megabyte */
4443 if ((mdev->ov_left & 0x200) == 0x200)
4444 drbd_advance_rs_marks(mdev, mdev->ov_left);
4445
4446 if (mdev->ov_left == 0) {
b411b363
PR
4447 w = kmalloc(sizeof(*w), GFP_NOIO);
4448 if (w) {
4449 w->cb = w_ov_finished;
4450 drbd_queue_work_front(&mdev->data.work, w);
4451 } else {
4452 dev_err(DEV, "kmalloc(w) failed.");
4453 ov_oos_print(mdev);
4454 drbd_resync_finished(mdev);
4455 }
4456 }
1d53f09e 4457 put_ldev(mdev);
81e84650 4458 return true;
b411b363
PR
4459}
4460
02918be2 4461static int got_skip(struct drbd_conf *mdev, struct p_header80 *h)
0ced55a3 4462{
81e84650 4463 return true;
0ced55a3
PR
4464}
4465
b411b363
PR
4466struct asender_cmd {
4467 size_t pkt_size;
0b70a13d 4468 int (*process)(struct drbd_conf *mdev, struct p_header80 *h);
b411b363
PR
4469};
4470
4471static struct asender_cmd *get_asender_cmd(int cmd)
4472{
4473 static struct asender_cmd asender_tbl[] = {
4474 /* anything missing from this table is in
4475 * the drbd_cmd_handler (drbd_default_handler) table,
4476 * see the beginning of drbdd() */
0b70a13d
PR
4477 [P_PING] = { sizeof(struct p_header80), got_Ping },
4478 [P_PING_ACK] = { sizeof(struct p_header80), got_PingAck },
b411b363
PR
4479 [P_RECV_ACK] = { sizeof(struct p_block_ack), got_BlockAck },
4480 [P_WRITE_ACK] = { sizeof(struct p_block_ack), got_BlockAck },
4481 [P_RS_WRITE_ACK] = { sizeof(struct p_block_ack), got_BlockAck },
4482 [P_DISCARD_ACK] = { sizeof(struct p_block_ack), got_BlockAck },
4483 [P_NEG_ACK] = { sizeof(struct p_block_ack), got_NegAck },
4484 [P_NEG_DREPLY] = { sizeof(struct p_block_ack), got_NegDReply },
4485 [P_NEG_RS_DREPLY] = { sizeof(struct p_block_ack), got_NegRSDReply},
4486 [P_OV_RESULT] = { sizeof(struct p_block_ack), got_OVResult },
4487 [P_BARRIER_ACK] = { sizeof(struct p_barrier_ack), got_BarrierAck },
4488 [P_STATE_CHG_REPLY] = { sizeof(struct p_req_state_reply), got_RqSReply },
4489 [P_RS_IS_IN_SYNC] = { sizeof(struct p_block_ack), got_IsInSync },
02918be2 4490 [P_DELAY_PROBE] = { sizeof(struct p_delay_probe93), got_skip },
d612d309 4491 [P_RS_CANCEL] = { sizeof(struct p_block_ack), got_NegRSDReply},
b411b363
PR
4492 [P_MAX_CMD] = { 0, NULL },
4493 };
4494 if (cmd > P_MAX_CMD || asender_tbl[cmd].process == NULL)
4495 return NULL;
4496 return &asender_tbl[cmd];
4497}
4498
4499int drbd_asender(struct drbd_thread *thi)
4500{
4501 struct drbd_conf *mdev = thi->mdev;
02918be2 4502 struct p_header80 *h = &mdev->meta.rbuf.header.h80;
b411b363
PR
4503 struct asender_cmd *cmd = NULL;
4504
4505 int rv, len;
4506 void *buf = h;
4507 int received = 0;
0b70a13d 4508 int expect = sizeof(struct p_header80);
b411b363 4509 int empty;
f36af18c 4510 int ping_timeout_active = 0;
b411b363
PR
4511
4512 sprintf(current->comm, "drbd%d_asender", mdev_to_minor(mdev));
4513
4514 current->policy = SCHED_RR; /* Make this a realtime task! */
4515 current->rt_priority = 2; /* more important than all other tasks */
4516
4517 while (get_t_state(thi) == Running) {
4518 drbd_thread_current_set_cpu(mdev);
4519 if (test_and_clear_bit(SEND_PING, &mdev->flags)) {
4520 ERR_IF(!drbd_send_ping(mdev)) goto reconnect;
4521 mdev->meta.socket->sk->sk_rcvtimeo =
4522 mdev->net_conf->ping_timeo*HZ/10;
f36af18c 4523 ping_timeout_active = 1;
b411b363
PR
4524 }
4525
4526 /* conditionally cork;
4527 * it may hurt latency if we cork without much to send */
4528 if (!mdev->net_conf->no_cork &&
4529 3 < atomic_read(&mdev->unacked_cnt))
4530 drbd_tcp_cork(mdev->meta.socket);
4531 while (1) {
4532 clear_bit(SIGNAL_ASENDER, &mdev->flags);
4533 flush_signals(current);
0f8488e1 4534 if (!drbd_process_done_ee(mdev))
b411b363 4535 goto reconnect;
b411b363
PR
4536 /* to avoid race with newly queued ACKs */
4537 set_bit(SIGNAL_ASENDER, &mdev->flags);
4538 spin_lock_irq(&mdev->req_lock);
4539 empty = list_empty(&mdev->done_ee);
4540 spin_unlock_irq(&mdev->req_lock);
4541 /* new ack may have been queued right here,
4542 * but then there is also a signal pending,
4543 * and we start over... */
4544 if (empty)
4545 break;
4546 }
4547 /* but unconditionally uncork unless disabled */
4548 if (!mdev->net_conf->no_cork)
4549 drbd_tcp_uncork(mdev->meta.socket);
4550
4551 /* short circuit, recv_msg would return EINTR anyways. */
4552 if (signal_pending(current))
4553 continue;
4554
4555 rv = drbd_recv_short(mdev, mdev->meta.socket,
4556 buf, expect-received, 0);
4557 clear_bit(SIGNAL_ASENDER, &mdev->flags);
4558
4559 flush_signals(current);
4560
4561 /* Note:
4562 * -EINTR (on meta) we got a signal
4563 * -EAGAIN (on meta) rcvtimeo expired
4564 * -ECONNRESET other side closed the connection
4565 * -ERESTARTSYS (on data) we got a signal
4566 * rv < 0 other than above: unexpected error!
4567 * rv == expected: full header or command
4568 * rv < expected: "woken" by signal during receive
4569 * rv == 0 : "connection shut down by peer"
4570 */
4571 if (likely(rv > 0)) {
4572 received += rv;
4573 buf += rv;
4574 } else if (rv == 0) {
4575 dev_err(DEV, "meta connection shut down by peer.\n");
4576 goto reconnect;
4577 } else if (rv == -EAGAIN) {
cb6518cb
LE
4578 /* If the data socket received something meanwhile,
4579 * that is good enough: peer is still alive. */
4580 if (time_after(mdev->last_received,
4581 jiffies - mdev->meta.socket->sk->sk_rcvtimeo))
4582 continue;
f36af18c 4583 if (ping_timeout_active) {
b411b363
PR
4584 dev_err(DEV, "PingAck did not arrive in time.\n");
4585 goto reconnect;
4586 }
4587 set_bit(SEND_PING, &mdev->flags);
4588 continue;
4589 } else if (rv == -EINTR) {
4590 continue;
4591 } else {
4592 dev_err(DEV, "sock_recvmsg returned %d\n", rv);
4593 goto reconnect;
4594 }
4595
4596 if (received == expect && cmd == NULL) {
ca9bc12b 4597 if (unlikely(h->magic != cpu_to_be32(DRBD_MAGIC))) {
004352fa
LE
4598 dev_err(DEV, "magic?? on meta m: 0x%08x c: %d l: %d\n",
4599 be32_to_cpu(h->magic),
4600 be16_to_cpu(h->command),
4601 be16_to_cpu(h->length));
b411b363
PR
4602 goto reconnect;
4603 }
4604 cmd = get_asender_cmd(be16_to_cpu(h->command));
4605 len = be16_to_cpu(h->length);
4606 if (unlikely(cmd == NULL)) {
004352fa
LE
4607 dev_err(DEV, "unknown command?? on meta m: 0x%08x c: %d l: %d\n",
4608 be32_to_cpu(h->magic),
4609 be16_to_cpu(h->command),
4610 be16_to_cpu(h->length));
b411b363
PR
4611 goto disconnect;
4612 }
4613 expect = cmd->pkt_size;
0b70a13d 4614 ERR_IF(len != expect-sizeof(struct p_header80))
b411b363 4615 goto reconnect;
b411b363
PR
4616 }
4617 if (received == expect) {
cb6518cb 4618 mdev->last_received = jiffies;
b411b363 4619 D_ASSERT(cmd != NULL);
b411b363
PR
4620 if (!cmd->process(mdev, h))
4621 goto reconnect;
4622
f36af18c
LE
4623 /* the idle_timeout (ping-int)
4624 * has been restored in got_PingAck() */
4625 if (cmd == get_asender_cmd(P_PING_ACK))
4626 ping_timeout_active = 0;
4627
b411b363
PR
4628 buf = h;
4629 received = 0;
0b70a13d 4630 expect = sizeof(struct p_header80);
b411b363
PR
4631 cmd = NULL;
4632 }
4633 }
4634
4635 if (0) {
4636reconnect:
4637 drbd_force_state(mdev, NS(conn, C_NETWORK_FAILURE));
856c50c7 4638 drbd_md_sync(mdev);
b411b363
PR
4639 }
4640 if (0) {
4641disconnect:
4642 drbd_force_state(mdev, NS(conn, C_DISCONNECTING));
856c50c7 4643 drbd_md_sync(mdev);
b411b363
PR
4644 }
4645 clear_bit(SIGNAL_ASENDER, &mdev->flags);
4646
4647 D_ASSERT(mdev->state.conn < C_CONNECTED);
4648 dev_info(DEV, "asender terminated\n");
4649
4650 return 0;
4651}
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