drbd: receive_bitmap(): Use the pre-allocated receive buffer
[deliverable/linux.git] / drivers / block / drbd / drbd_main.c
CommitLineData
b411b363
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1/*
2 drbd.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 Thanks to Carter Burden, Bart Grantham and Gennadiy Nerubayev
11 from Logicworks, Inc. for making SDP replication support possible.
12
13 drbd is free software; you can redistribute it and/or modify
14 it under the terms of the GNU General Public License as published by
15 the Free Software Foundation; either version 2, or (at your option)
16 any later version.
17
18 drbd is distributed in the hope that it will be useful,
19 but WITHOUT ANY WARRANTY; without even the implied warranty of
20 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
21 GNU General Public License for more details.
22
23 You should have received a copy of the GNU General Public License
24 along with drbd; see the file COPYING. If not, write to
25 the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
26
27 */
28
b411b363 29#include <linux/module.h>
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30#include <linux/drbd.h>
31#include <asm/uaccess.h>
32#include <asm/types.h>
33#include <net/sock.h>
34#include <linux/ctype.h>
2a48fc0a 35#include <linux/mutex.h>
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36#include <linux/fs.h>
37#include <linux/file.h>
38#include <linux/proc_fs.h>
39#include <linux/init.h>
40#include <linux/mm.h>
41#include <linux/memcontrol.h>
42#include <linux/mm_inline.h>
43#include <linux/slab.h>
44#include <linux/random.h>
45#include <linux/reboot.h>
46#include <linux/notifier.h>
47#include <linux/kthread.h>
48
49#define __KERNEL_SYSCALLS__
50#include <linux/unistd.h>
51#include <linux/vmalloc.h>
52
53#include <linux/drbd_limits.h>
54#include "drbd_int.h"
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55#include "drbd_req.h" /* only for _req_mod in tl_release and tl_clear */
56
57#include "drbd_vli.h"
58
2a48fc0a 59static DEFINE_MUTEX(drbd_main_mutex);
b411b363
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60int drbdd_init(struct drbd_thread *);
61int drbd_worker(struct drbd_thread *);
62int drbd_asender(struct drbd_thread *);
63
64int drbd_init(void);
65static int drbd_open(struct block_device *bdev, fmode_t mode);
66static int drbd_release(struct gendisk *gd, fmode_t mode);
99920dc5 67static int w_md_sync(struct drbd_work *w, int unused);
b411b363 68static void md_sync_timer_fn(unsigned long data);
99920dc5
AG
69static int w_bitmap_io(struct drbd_work *w, int unused);
70static int w_go_diskless(struct drbd_work *w, int unused);
b411b363 71
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72MODULE_AUTHOR("Philipp Reisner <phil@linbit.com>, "
73 "Lars Ellenberg <lars@linbit.com>");
74MODULE_DESCRIPTION("drbd - Distributed Replicated Block Device v" REL_VERSION);
75MODULE_VERSION(REL_VERSION);
76MODULE_LICENSE("GPL");
81a5d60e 77MODULE_PARM_DESC(minor_count, "Approximate number of drbd devices ("
2b8a90b5 78 __stringify(DRBD_MINOR_COUNT_MIN) "-" __stringify(DRBD_MINOR_COUNT_MAX) ")");
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79MODULE_ALIAS_BLOCKDEV_MAJOR(DRBD_MAJOR);
80
81#include <linux/moduleparam.h>
82/* allow_open_on_secondary */
83MODULE_PARM_DESC(allow_oos, "DONT USE!");
84/* thanks to these macros, if compiled into the kernel (not-module),
85 * this becomes the boot parameter drbd.minor_count */
86module_param(minor_count, uint, 0444);
87module_param(disable_sendpage, bool, 0644);
88module_param(allow_oos, bool, 0);
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89module_param(proc_details, int, 0644);
90
91#ifdef CONFIG_DRBD_FAULT_INJECTION
92int enable_faults;
93int fault_rate;
94static int fault_count;
95int fault_devs;
96/* bitmap of enabled faults */
97module_param(enable_faults, int, 0664);
98/* fault rate % value - applies to all enabled faults */
99module_param(fault_rate, int, 0664);
100/* count of faults inserted */
101module_param(fault_count, int, 0664);
102/* bitmap of devices to insert faults on */
103module_param(fault_devs, int, 0644);
104#endif
105
106/* module parameter, defined */
2b8a90b5 107unsigned int minor_count = DRBD_MINOR_COUNT_DEF;
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108int disable_sendpage;
109int allow_oos;
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110int proc_details; /* Detail level in proc drbd*/
111
112/* Module parameter for setting the user mode helper program
113 * to run. Default is /sbin/drbdadm */
114char usermode_helper[80] = "/sbin/drbdadm";
115
116module_param_string(usermode_helper, usermode_helper, sizeof(usermode_helper), 0644);
117
118/* in 2.6.x, our device mapping and config info contains our virtual gendisks
119 * as member "struct gendisk *vdisk;"
120 */
81a5d60e 121struct idr minors;
2111438b 122struct list_head drbd_tconns; /* list of struct drbd_tconn */
543cc10b 123DEFINE_MUTEX(drbd_cfg_mutex);
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124
125struct kmem_cache *drbd_request_cache;
6c852bec 126struct kmem_cache *drbd_ee_cache; /* peer requests */
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127struct kmem_cache *drbd_bm_ext_cache; /* bitmap extents */
128struct kmem_cache *drbd_al_ext_cache; /* activity log extents */
129mempool_t *drbd_request_mempool;
130mempool_t *drbd_ee_mempool;
35abf594 131mempool_t *drbd_md_io_page_pool;
da4a75d2 132struct bio_set *drbd_md_io_bio_set;
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133
134/* I do not use a standard mempool, because:
135 1) I want to hand out the pre-allocated objects first.
136 2) I want to be able to interrupt sleeping allocation with a signal.
137 Note: This is a single linked list, the next pointer is the private
138 member of struct page.
139 */
140struct page *drbd_pp_pool;
141spinlock_t drbd_pp_lock;
142int drbd_pp_vacant;
143wait_queue_head_t drbd_pp_wait;
144
145DEFINE_RATELIMIT_STATE(drbd_ratelimit_state, 5 * HZ, 5);
146
7d4e9d09 147static const struct block_device_operations drbd_ops = {
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148 .owner = THIS_MODULE,
149 .open = drbd_open,
150 .release = drbd_release,
151};
152
da4a75d2
LE
153static void bio_destructor_drbd(struct bio *bio)
154{
155 bio_free(bio, drbd_md_io_bio_set);
156}
157
158struct bio *bio_alloc_drbd(gfp_t gfp_mask)
159{
160 struct bio *bio;
161
162 if (!drbd_md_io_bio_set)
163 return bio_alloc(gfp_mask, 1);
164
165 bio = bio_alloc_bioset(gfp_mask, 1, drbd_md_io_bio_set);
166 if (!bio)
167 return NULL;
168 bio->bi_destructor = bio_destructor_drbd;
169 return bio;
170}
171
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172#ifdef __CHECKER__
173/* When checking with sparse, and this is an inline function, sparse will
174 give tons of false positives. When this is a real functions sparse works.
175 */
176int _get_ldev_if_state(struct drbd_conf *mdev, enum drbd_disk_state mins)
177{
178 int io_allowed;
179
180 atomic_inc(&mdev->local_cnt);
181 io_allowed = (mdev->state.disk >= mins);
182 if (!io_allowed) {
183 if (atomic_dec_and_test(&mdev->local_cnt))
184 wake_up(&mdev->misc_wait);
185 }
186 return io_allowed;
187}
188
189#endif
190
191/**
192 * DOC: The transfer log
193 *
194 * The transfer log is a single linked list of &struct drbd_tl_epoch objects.
87eeee41 195 * mdev->tconn->newest_tle points to the head, mdev->tconn->oldest_tle points to the tail
b411b363
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196 * of the list. There is always at least one &struct drbd_tl_epoch object.
197 *
198 * Each &struct drbd_tl_epoch has a circular double linked list of requests
199 * attached.
200 */
2f5cdd0b 201static int tl_init(struct drbd_tconn *tconn)
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202{
203 struct drbd_tl_epoch *b;
204
205 /* during device minor initialization, we may well use GFP_KERNEL */
206 b = kmalloc(sizeof(struct drbd_tl_epoch), GFP_KERNEL);
207 if (!b)
208 return 0;
209 INIT_LIST_HEAD(&b->requests);
210 INIT_LIST_HEAD(&b->w.list);
211 b->next = NULL;
212 b->br_number = 4711;
7e602c0a 213 b->n_writes = 0;
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214 b->w.cb = NULL; /* if this is != NULL, we need to dec_ap_pending in tl_clear */
215
2f5cdd0b
PR
216 tconn->oldest_tle = b;
217 tconn->newest_tle = b;
218 INIT_LIST_HEAD(&tconn->out_of_sequence_requests);
b411b363 219
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220 return 1;
221}
222
2f5cdd0b 223static void tl_cleanup(struct drbd_tconn *tconn)
b411b363 224{
2f5cdd0b
PR
225 if (tconn->oldest_tle != tconn->newest_tle)
226 conn_err(tconn, "ASSERT FAILED: oldest_tle == newest_tle\n");
227 if (!list_empty(&tconn->out_of_sequence_requests))
228 conn_err(tconn, "ASSERT FAILED: list_empty(out_of_sequence_requests)\n");
229 kfree(tconn->oldest_tle);
230 tconn->oldest_tle = NULL;
231 kfree(tconn->unused_spare_tle);
232 tconn->unused_spare_tle = NULL;
d628769b
AG
233}
234
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235/**
236 * _tl_add_barrier() - Adds a barrier to the transfer log
237 * @mdev: DRBD device.
238 * @new: Barrier to be added before the current head of the TL.
239 *
240 * The caller must hold the req_lock.
241 */
2f5cdd0b 242void _tl_add_barrier(struct drbd_tconn *tconn, struct drbd_tl_epoch *new)
b411b363
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243{
244 struct drbd_tl_epoch *newest_before;
245
246 INIT_LIST_HEAD(&new->requests);
247 INIT_LIST_HEAD(&new->w.list);
248 new->w.cb = NULL; /* if this is != NULL, we need to dec_ap_pending in tl_clear */
249 new->next = NULL;
7e602c0a 250 new->n_writes = 0;
b411b363 251
2f5cdd0b 252 newest_before = tconn->newest_tle;
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253 /* never send a barrier number == 0, because that is special-cased
254 * when using TCQ for our write ordering code */
255 new->br_number = (newest_before->br_number+1) ?: 1;
2f5cdd0b
PR
256 if (tconn->newest_tle != new) {
257 tconn->newest_tle->next = new;
258 tconn->newest_tle = new;
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259 }
260}
261
262/**
263 * tl_release() - Free or recycle the oldest &struct drbd_tl_epoch object of the TL
264 * @mdev: DRBD device.
265 * @barrier_nr: Expected identifier of the DRBD write barrier packet.
266 * @set_size: Expected number of requests before that barrier.
267 *
268 * In case the passed barrier_nr or set_size does not match the oldest
269 * &struct drbd_tl_epoch objects this function will cause a termination
270 * of the connection.
271 */
2f5cdd0b
PR
272void tl_release(struct drbd_tconn *tconn, unsigned int barrier_nr,
273 unsigned int set_size)
b411b363 274{
2f5cdd0b 275 struct drbd_conf *mdev;
b411b363
PR
276 struct drbd_tl_epoch *b, *nob; /* next old barrier */
277 struct list_head *le, *tle;
278 struct drbd_request *r;
279
2f5cdd0b 280 spin_lock_irq(&tconn->req_lock);
b411b363 281
2f5cdd0b 282 b = tconn->oldest_tle;
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283
284 /* first some paranoia code */
285 if (b == NULL) {
2f5cdd0b
PR
286 conn_err(tconn, "BAD! BarrierAck #%u received, but no epoch in tl!?\n",
287 barrier_nr);
b411b363
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288 goto bail;
289 }
290 if (b->br_number != barrier_nr) {
2f5cdd0b
PR
291 conn_err(tconn, "BAD! BarrierAck #%u received, expected #%u!\n",
292 barrier_nr, b->br_number);
b411b363
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293 goto bail;
294 }
7e602c0a 295 if (b->n_writes != set_size) {
2f5cdd0b
PR
296 conn_err(tconn, "BAD! BarrierAck #%u received with n_writes=%u, expected n_writes=%u!\n",
297 barrier_nr, set_size, b->n_writes);
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298 goto bail;
299 }
300
301 /* Clean up list of requests processed during current epoch */
302 list_for_each_safe(le, tle, &b->requests) {
303 r = list_entry(le, struct drbd_request, tl_requests);
8554df1c 304 _req_mod(r, BARRIER_ACKED);
b411b363
PR
305 }
306 /* There could be requests on the list waiting for completion
307 of the write to the local disk. To avoid corruptions of
308 slab's data structures we have to remove the lists head.
309
310 Also there could have been a barrier ack out of sequence, overtaking
311 the write acks - which would be a bug and violating write ordering.
312 To not deadlock in case we lose connection while such requests are
313 still pending, we need some way to find them for the
8554df1c 314 _req_mode(CONNECTION_LOST_WHILE_PENDING).
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315
316 These have been list_move'd to the out_of_sequence_requests list in
8554df1c 317 _req_mod(, BARRIER_ACKED) above.
b411b363
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318 */
319 list_del_init(&b->requests);
2f5cdd0b 320 mdev = b->w.mdev;
b411b363
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321
322 nob = b->next;
323 if (test_and_clear_bit(CREATE_BARRIER, &mdev->flags)) {
2f5cdd0b 324 _tl_add_barrier(tconn, b);
b411b363 325 if (nob)
2f5cdd0b 326 tconn->oldest_tle = nob;
b411b363 327 /* if nob == NULL b was the only barrier, and becomes the new
2f5cdd0b 328 barrier. Therefore tconn->oldest_tle points already to b */
b411b363
PR
329 } else {
330 D_ASSERT(nob != NULL);
2f5cdd0b 331 tconn->oldest_tle = nob;
b411b363
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332 kfree(b);
333 }
334
2f5cdd0b 335 spin_unlock_irq(&tconn->req_lock);
b411b363
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336 dec_ap_pending(mdev);
337
338 return;
339
340bail:
2f5cdd0b
PR
341 spin_unlock_irq(&tconn->req_lock);
342 conn_request_state(tconn, NS(conn, C_PROTOCOL_ERROR), CS_HARD);
b411b363
PR
343}
344
617049aa 345
b411b363 346/**
11b58e73 347 * _tl_restart() - Walks the transfer log, and applies an action to all requests
b411b363 348 * @mdev: DRBD device.
11b58e73 349 * @what: The action/event to perform with all request objects
b411b363 350 *
8554df1c
AG
351 * @what might be one of CONNECTION_LOST_WHILE_PENDING, RESEND, FAIL_FROZEN_DISK_IO,
352 * RESTART_FROZEN_DISK_IO.
b411b363 353 */
2f5cdd0b 354void _tl_restart(struct drbd_tconn *tconn, enum drbd_req_event what)
b411b363 355{
11b58e73 356 struct drbd_tl_epoch *b, *tmp, **pn;
b9b98716 357 struct list_head *le, *tle, carry_reads;
11b58e73
PR
358 struct drbd_request *req;
359 int rv, n_writes, n_reads;
b411b363 360
2f5cdd0b
PR
361 b = tconn->oldest_tle;
362 pn = &tconn->oldest_tle;
b411b363 363 while (b) {
11b58e73
PR
364 n_writes = 0;
365 n_reads = 0;
b9b98716 366 INIT_LIST_HEAD(&carry_reads);
b411b363 367 list_for_each_safe(le, tle, &b->requests) {
11b58e73
PR
368 req = list_entry(le, struct drbd_request, tl_requests);
369 rv = _req_mod(req, what);
370
371 n_writes += (rv & MR_WRITE) >> MR_WRITE_SHIFT;
372 n_reads += (rv & MR_READ) >> MR_READ_SHIFT;
b411b363
PR
373 }
374 tmp = b->next;
375
b9b98716 376 if (n_writes) {
8554df1c 377 if (what == RESEND) {
11b58e73
PR
378 b->n_writes = n_writes;
379 if (b->w.cb == NULL) {
380 b->w.cb = w_send_barrier;
2f5cdd0b
PR
381 inc_ap_pending(b->w.mdev);
382 set_bit(CREATE_BARRIER, &b->w.mdev->flags);
11b58e73
PR
383 }
384
2f5cdd0b 385 drbd_queue_work(&tconn->data.work, &b->w);
11b58e73
PR
386 }
387 pn = &b->next;
388 } else {
b9b98716
PR
389 if (n_reads)
390 list_add(&carry_reads, &b->requests);
11b58e73
PR
391 /* there could still be requests on that ring list,
392 * in case local io is still pending */
393 list_del(&b->requests);
394
395 /* dec_ap_pending corresponding to queue_barrier.
396 * the newest barrier may not have been queued yet,
397 * in which case w.cb is still NULL. */
398 if (b->w.cb != NULL)
2f5cdd0b 399 dec_ap_pending(b->w.mdev);
11b58e73 400
2f5cdd0b 401 if (b == tconn->newest_tle) {
11b58e73 402 /* recycle, but reinit! */
2f5cdd0b
PR
403 if (tmp != NULL)
404 conn_err(tconn, "ASSERT FAILED tmp == NULL");
11b58e73 405 INIT_LIST_HEAD(&b->requests);
b9b98716 406 list_splice(&carry_reads, &b->requests);
11b58e73
PR
407 INIT_LIST_HEAD(&b->w.list);
408 b->w.cb = NULL;
409 b->br_number = net_random();
410 b->n_writes = 0;
411
412 *pn = b;
413 break;
414 }
415 *pn = tmp;
416 kfree(b);
b411b363 417 }
b411b363 418 b = tmp;
b9b98716 419 list_splice(&carry_reads, &b->requests);
b411b363 420 }
11b58e73
PR
421}
422
b411b363
PR
423
424/**
425 * tl_clear() - Clears all requests and &struct drbd_tl_epoch objects out of the TL
426 * @mdev: DRBD device.
427 *
428 * This is called after the connection to the peer was lost. The storage covered
429 * by the requests on the transfer gets marked as our of sync. Called from the
430 * receiver thread and the worker thread.
431 */
2f5cdd0b 432void tl_clear(struct drbd_tconn *tconn)
b411b363 433{
2f5cdd0b 434 struct drbd_conf *mdev;
b411b363
PR
435 struct list_head *le, *tle;
436 struct drbd_request *r;
e90285e0 437 int vnr;
b411b363 438
2f5cdd0b 439 spin_lock_irq(&tconn->req_lock);
b411b363 440
2f5cdd0b 441 _tl_restart(tconn, CONNECTION_LOST_WHILE_PENDING);
b411b363
PR
442
443 /* we expect this list to be empty. */
2f5cdd0b
PR
444 if (!list_empty(&tconn->out_of_sequence_requests))
445 conn_err(tconn, "ASSERT FAILED list_empty(&out_of_sequence_requests)\n");
b411b363
PR
446
447 /* but just in case, clean it up anyways! */
2f5cdd0b 448 list_for_each_safe(le, tle, &tconn->out_of_sequence_requests) {
b411b363
PR
449 r = list_entry(le, struct drbd_request, tl_requests);
450 /* It would be nice to complete outside of spinlock.
451 * But this is easier for now. */
8554df1c 452 _req_mod(r, CONNECTION_LOST_WHILE_PENDING);
b411b363
PR
453 }
454
455 /* ensure bit indicating barrier is required is clear */
e90285e0 456 idr_for_each_entry(&tconn->volumes, mdev, vnr)
2f5cdd0b 457 clear_bit(CREATE_BARRIER, &mdev->flags);
b411b363 458
2f5cdd0b 459 spin_unlock_irq(&tconn->req_lock);
b411b363
PR
460}
461
2f5cdd0b 462void tl_restart(struct drbd_tconn *tconn, enum drbd_req_event what)
11b58e73 463{
2f5cdd0b
PR
464 spin_lock_irq(&tconn->req_lock);
465 _tl_restart(tconn, what);
466 spin_unlock_irq(&tconn->req_lock);
b411b363
PR
467}
468
b411b363
PR
469static int drbd_thread_setup(void *arg)
470{
471 struct drbd_thread *thi = (struct drbd_thread *) arg;
392c8801 472 struct drbd_tconn *tconn = thi->tconn;
b411b363
PR
473 unsigned long flags;
474 int retval;
475
f1b3a6ec 476 snprintf(current->comm, sizeof(current->comm), "drbd_%c_%s",
392c8801 477 thi->name[0], thi->tconn->name);
f1b3a6ec 478
b411b363
PR
479restart:
480 retval = thi->function(thi);
481
482 spin_lock_irqsave(&thi->t_lock, flags);
483
e77a0a5c 484 /* if the receiver has been "EXITING", the last thing it did
b411b363
PR
485 * was set the conn state to "StandAlone",
486 * if now a re-connect request comes in, conn state goes C_UNCONNECTED,
487 * and receiver thread will be "started".
e77a0a5c 488 * drbd_thread_start needs to set "RESTARTING" in that case.
b411b363 489 * t_state check and assignment needs to be within the same spinlock,
e77a0a5c
AG
490 * so either thread_start sees EXITING, and can remap to RESTARTING,
491 * or thread_start see NONE, and can proceed as normal.
b411b363
PR
492 */
493
e77a0a5c 494 if (thi->t_state == RESTARTING) {
392c8801 495 conn_info(tconn, "Restarting %s thread\n", thi->name);
e77a0a5c 496 thi->t_state = RUNNING;
b411b363
PR
497 spin_unlock_irqrestore(&thi->t_lock, flags);
498 goto restart;
499 }
500
501 thi->task = NULL;
e77a0a5c 502 thi->t_state = NONE;
b411b363
PR
503 smp_mb();
504 complete(&thi->stop);
505 spin_unlock_irqrestore(&thi->t_lock, flags);
506
392c8801 507 conn_info(tconn, "Terminating %s\n", current->comm);
b411b363
PR
508
509 /* Release mod reference taken when thread was started */
510 module_put(THIS_MODULE);
511 return retval;
512}
513
392c8801 514static void drbd_thread_init(struct drbd_tconn *tconn, struct drbd_thread *thi,
bed879ae 515 int (*func) (struct drbd_thread *), char *name)
b411b363
PR
516{
517 spin_lock_init(&thi->t_lock);
518 thi->task = NULL;
e77a0a5c 519 thi->t_state = NONE;
b411b363 520 thi->function = func;
392c8801 521 thi->tconn = tconn;
bed879ae 522 strncpy(thi->name, name, ARRAY_SIZE(thi->name));
b411b363
PR
523}
524
525int drbd_thread_start(struct drbd_thread *thi)
526{
392c8801 527 struct drbd_tconn *tconn = thi->tconn;
b411b363
PR
528 struct task_struct *nt;
529 unsigned long flags;
530
b411b363
PR
531 /* is used from state engine doing drbd_thread_stop_nowait,
532 * while holding the req lock irqsave */
533 spin_lock_irqsave(&thi->t_lock, flags);
534
535 switch (thi->t_state) {
e77a0a5c 536 case NONE:
392c8801 537 conn_info(tconn, "Starting %s thread (from %s [%d])\n",
bed879ae 538 thi->name, current->comm, current->pid);
b411b363
PR
539
540 /* Get ref on module for thread - this is released when thread exits */
541 if (!try_module_get(THIS_MODULE)) {
392c8801 542 conn_err(tconn, "Failed to get module reference in drbd_thread_start\n");
b411b363 543 spin_unlock_irqrestore(&thi->t_lock, flags);
81e84650 544 return false;
b411b363
PR
545 }
546
547 init_completion(&thi->stop);
b411b363 548 thi->reset_cpu_mask = 1;
e77a0a5c 549 thi->t_state = RUNNING;
b411b363
PR
550 spin_unlock_irqrestore(&thi->t_lock, flags);
551 flush_signals(current); /* otherw. may get -ERESTARTNOINTR */
552
553 nt = kthread_create(drbd_thread_setup, (void *) thi,
392c8801 554 "drbd_%c_%s", thi->name[0], thi->tconn->name);
b411b363
PR
555
556 if (IS_ERR(nt)) {
392c8801 557 conn_err(tconn, "Couldn't start thread\n");
b411b363
PR
558
559 module_put(THIS_MODULE);
81e84650 560 return false;
b411b363
PR
561 }
562 spin_lock_irqsave(&thi->t_lock, flags);
563 thi->task = nt;
e77a0a5c 564 thi->t_state = RUNNING;
b411b363
PR
565 spin_unlock_irqrestore(&thi->t_lock, flags);
566 wake_up_process(nt);
567 break;
e77a0a5c
AG
568 case EXITING:
569 thi->t_state = RESTARTING;
392c8801 570 conn_info(tconn, "Restarting %s thread (from %s [%d])\n",
bed879ae 571 thi->name, current->comm, current->pid);
b411b363 572 /* fall through */
e77a0a5c
AG
573 case RUNNING:
574 case RESTARTING:
b411b363
PR
575 default:
576 spin_unlock_irqrestore(&thi->t_lock, flags);
577 break;
578 }
579
81e84650 580 return true;
b411b363
PR
581}
582
583
584void _drbd_thread_stop(struct drbd_thread *thi, int restart, int wait)
585{
586 unsigned long flags;
587
e77a0a5c 588 enum drbd_thread_state ns = restart ? RESTARTING : EXITING;
b411b363
PR
589
590 /* may be called from state engine, holding the req lock irqsave */
591 spin_lock_irqsave(&thi->t_lock, flags);
592
e77a0a5c 593 if (thi->t_state == NONE) {
b411b363
PR
594 spin_unlock_irqrestore(&thi->t_lock, flags);
595 if (restart)
596 drbd_thread_start(thi);
597 return;
598 }
599
600 if (thi->t_state != ns) {
601 if (thi->task == NULL) {
602 spin_unlock_irqrestore(&thi->t_lock, flags);
603 return;
604 }
605
606 thi->t_state = ns;
607 smp_mb();
608 init_completion(&thi->stop);
609 if (thi->task != current)
610 force_sig(DRBD_SIGKILL, thi->task);
b411b363
PR
611 }
612
613 spin_unlock_irqrestore(&thi->t_lock, flags);
614
615 if (wait)
616 wait_for_completion(&thi->stop);
617}
618
392c8801 619static struct drbd_thread *drbd_task_to_thread(struct drbd_tconn *tconn, struct task_struct *task)
bed879ae 620{
bed879ae
PR
621 struct drbd_thread *thi =
622 task == tconn->receiver.task ? &tconn->receiver :
623 task == tconn->asender.task ? &tconn->asender :
624 task == tconn->worker.task ? &tconn->worker : NULL;
625
626 return thi;
627}
628
392c8801 629char *drbd_task_to_thread_name(struct drbd_tconn *tconn, struct task_struct *task)
bed879ae 630{
392c8801 631 struct drbd_thread *thi = drbd_task_to_thread(tconn, task);
bed879ae
PR
632 return thi ? thi->name : task->comm;
633}
634
80883197 635int conn_lowest_minor(struct drbd_tconn *tconn)
80822284 636{
e90285e0
PR
637 int vnr = 0;
638 struct drbd_conf *mdev;
774b3055 639
e90285e0
PR
640 mdev = idr_get_next(&tconn->volumes, &vnr);
641 if (!mdev)
774b3055 642 return -1;
e90285e0 643 return mdev_to_minor(mdev);
80822284 644}
774b3055
PR
645
646#ifdef CONFIG_SMP
b411b363
PR
647/**
648 * drbd_calc_cpu_mask() - Generate CPU masks, spread over all CPUs
649 * @mdev: DRBD device.
650 *
651 * Forces all threads of a device onto the same CPU. This is beneficial for
652 * DRBD's performance. May be overwritten by user's configuration.
653 */
80822284 654void drbd_calc_cpu_mask(struct drbd_tconn *tconn)
b411b363
PR
655{
656 int ord, cpu;
657
658 /* user override. */
80822284 659 if (cpumask_weight(tconn->cpu_mask))
b411b363
PR
660 return;
661
80822284 662 ord = conn_lowest_minor(tconn) % cpumask_weight(cpu_online_mask);
b411b363
PR
663 for_each_online_cpu(cpu) {
664 if (ord-- == 0) {
80822284 665 cpumask_set_cpu(cpu, tconn->cpu_mask);
b411b363
PR
666 return;
667 }
668 }
669 /* should not be reached */
80822284 670 cpumask_setall(tconn->cpu_mask);
b411b363
PR
671}
672
673/**
674 * drbd_thread_current_set_cpu() - modifies the cpu mask of the _current_ thread
675 * @mdev: DRBD device.
bc31fe33 676 * @thi: drbd_thread object
b411b363
PR
677 *
678 * call in the "main loop" of _all_ threads, no need for any mutex, current won't die
679 * prematurely.
680 */
80822284 681void drbd_thread_current_set_cpu(struct drbd_thread *thi)
b411b363
PR
682{
683 struct task_struct *p = current;
bed879ae 684
b411b363
PR
685 if (!thi->reset_cpu_mask)
686 return;
687 thi->reset_cpu_mask = 0;
392c8801 688 set_cpus_allowed_ptr(p, thi->tconn->cpu_mask);
b411b363
PR
689}
690#endif
691
d38e787e 692static void prepare_header80(struct p_header80 *h, enum drbd_packet cmd, int size)
fd340c12
PR
693{
694 h->magic = cpu_to_be32(DRBD_MAGIC);
695 h->command = cpu_to_be16(cmd);
696 h->length = cpu_to_be16(size);
697}
698
d38e787e 699static void prepare_header95(struct p_header95 *h, enum drbd_packet cmd, int size)
fd340c12
PR
700{
701 h->magic = cpu_to_be16(DRBD_MAGIC_BIG);
702 h->command = cpu_to_be16(cmd);
703 h->length = cpu_to_be32(size);
704}
705
d38e787e
PR
706static void _prepare_header(struct drbd_tconn *tconn, int vnr, struct p_header *h,
707 enum drbd_packet cmd, int size)
708{
0916e0e3 709 if (tconn->agreed_pro_version >= 95)
d38e787e
PR
710 prepare_header95(&h->h95, cmd, size);
711 else
712 prepare_header80(&h->h80, cmd, size);
713}
714
fd340c12 715static void prepare_header(struct drbd_conf *mdev, struct p_header *h,
d8763023 716 enum drbd_packet cmd, int size)
fd340c12 717{
d38e787e 718 _prepare_header(mdev->tconn, mdev->vnr, h, cmd, size);
fd340c12
PR
719}
720
b411b363 721/* the appropriate socket mutex must be held already */
d38e787e 722int _conn_send_cmd(struct drbd_tconn *tconn, int vnr, struct socket *sock,
d8763023
AG
723 enum drbd_packet cmd, struct p_header *h, size_t size,
724 unsigned msg_flags)
b411b363 725{
ecf2363c 726 int err;
b411b363 727
d38e787e 728 _prepare_header(tconn, vnr, h, cmd, size - sizeof(struct p_header));
ecf2363c
AG
729 err = drbd_send_all(tconn, sock, h, size, msg_flags);
730 if (err && !signal_pending(current))
731 conn_warn(tconn, "short send %s size=%d\n",
732 cmdname(cmd), (int)size);
733 return err;
b411b363
PR
734}
735
736/* don't pass the socket. we may only look at it
737 * when we hold the appropriate socket mutex.
738 */
7d168ed3 739int conn_send_cmd(struct drbd_tconn *tconn, int vnr, struct drbd_socket *sock,
d8763023 740 enum drbd_packet cmd, struct p_header *h, size_t size)
b411b363 741{
596a37f9 742 int err = -EIO;
b411b363 743
7d168ed3
AG
744 mutex_lock(&sock->mutex);
745 if (sock->socket)
746 err = _conn_send_cmd(tconn, vnr, sock->socket, cmd, h, size, 0);
747 mutex_unlock(&sock->mutex);
596a37f9 748 return err;
b411b363
PR
749}
750
61120870 751int conn_send_cmd2(struct drbd_tconn *tconn, enum drbd_packet cmd, char *data,
b411b363
PR
752 size_t size)
753{
61120870 754 struct p_header80 h;
ce9879cb 755 int err;
b411b363 756
61120870 757 prepare_header80(&h, cmd, size);
ce9879cb
AG
758 err = drbd_get_data_sock(tconn);
759 if (!err) {
760 err = drbd_send_all(tconn, tconn->data.socket, &h, sizeof(h), 0);
761 if (!err)
762 err = drbd_send_all(tconn, tconn->data.socket, data, size, 0);
763 drbd_put_data_sock(tconn);
764 }
765 return err;
b411b363
PR
766}
767
e307f352
AG
768int drbd_send_ping(struct drbd_tconn *tconn)
769{
770 struct p_header h;
771 return !conn_send_cmd(tconn, 0, &tconn->meta, P_PING, &h, sizeof(h));
772}
773
774int drbd_send_ping_ack(struct drbd_tconn *tconn)
775{
776 struct p_header h;
777 return !conn_send_cmd(tconn, 0, &tconn->meta, P_PING_ACK, &h, sizeof(h));
778}
779
f399002e 780int drbd_send_sync_param(struct drbd_conf *mdev)
b411b363 781{
8e26f9cc 782 struct p_rs_param_95 *p;
b411b363 783 struct socket *sock;
103ea275 784 int size, err;
31890f4a 785 const int apv = mdev->tconn->agreed_pro_version;
b411b363
PR
786
787 size = apv <= 87 ? sizeof(struct p_rs_param)
788 : apv == 88 ? sizeof(struct p_rs_param)
f399002e 789 + strlen(mdev->tconn->net_conf->verify_alg) + 1
8e26f9cc
PR
790 : apv <= 94 ? sizeof(struct p_rs_param_89)
791 : /* apv >= 95 */ sizeof(struct p_rs_param_95);
b411b363
PR
792
793 /* used from admin command context and receiver/worker context.
794 * to avoid kmalloc, grab the socket right here,
795 * then use the pre-allocated sbuf there */
e42325a5
PR
796 mutex_lock(&mdev->tconn->data.mutex);
797 sock = mdev->tconn->data.socket;
b411b363
PR
798
799 if (likely(sock != NULL)) {
d8763023
AG
800 enum drbd_packet cmd =
801 apv >= 89 ? P_SYNC_PARAM89 : P_SYNC_PARAM;
b411b363 802
e42325a5 803 p = &mdev->tconn->data.sbuf.rs_param_95;
b411b363
PR
804
805 /* initialize verify_alg and csums_alg */
806 memset(p->verify_alg, 0, 2 * SHARED_SECRET_MAX);
807
f399002e
LE
808 if (get_ldev(mdev)) {
809 p->rate = cpu_to_be32(mdev->ldev->dc.resync_rate);
810 p->c_plan_ahead = cpu_to_be32(mdev->ldev->dc.c_plan_ahead);
811 p->c_delay_target = cpu_to_be32(mdev->ldev->dc.c_delay_target);
812 p->c_fill_target = cpu_to_be32(mdev->ldev->dc.c_fill_target);
813 p->c_max_rate = cpu_to_be32(mdev->ldev->dc.c_max_rate);
814 put_ldev(mdev);
815 } else {
816 p->rate = cpu_to_be32(DRBD_RATE_DEF);
817 p->c_plan_ahead = cpu_to_be32(DRBD_C_PLAN_AHEAD_DEF);
818 p->c_delay_target = cpu_to_be32(DRBD_C_DELAY_TARGET_DEF);
819 p->c_fill_target = cpu_to_be32(DRBD_C_FILL_TARGET_DEF);
820 p->c_max_rate = cpu_to_be32(DRBD_C_MAX_RATE_DEF);
821 }
b411b363
PR
822
823 if (apv >= 88)
f399002e 824 strcpy(p->verify_alg, mdev->tconn->net_conf->verify_alg);
b411b363 825 if (apv >= 89)
f399002e 826 strcpy(p->csums_alg, mdev->tconn->net_conf->csums_alg);
b411b363 827
103ea275 828 err = _drbd_send_cmd(mdev, sock, cmd, &p->head, size, 0);
b411b363 829 } else
103ea275 830 err = -EIO;
b411b363 831
e42325a5 832 mutex_unlock(&mdev->tconn->data.mutex);
b411b363 833
103ea275 834 return err;
b411b363
PR
835}
836
dc8228d1 837int drbd_send_protocol(struct drbd_tconn *tconn)
b411b363
PR
838{
839 struct p_protocol *p;
387eb308 840 int size, cf, err;
b411b363
PR
841
842 size = sizeof(struct p_protocol);
843
dc8228d1
PR
844 if (tconn->agreed_pro_version >= 87)
845 size += strlen(tconn->net_conf->integrity_alg) + 1;
b411b363
PR
846
847 /* we must not recurse into our own queue,
848 * as that is blocked during handshake */
849 p = kmalloc(size, GFP_NOIO);
850 if (p == NULL)
387eb308 851 return -ENOMEM;
b411b363 852
dc8228d1
PR
853 p->protocol = cpu_to_be32(tconn->net_conf->wire_protocol);
854 p->after_sb_0p = cpu_to_be32(tconn->net_conf->after_sb_0p);
855 p->after_sb_1p = cpu_to_be32(tconn->net_conf->after_sb_1p);
856 p->after_sb_2p = cpu_to_be32(tconn->net_conf->after_sb_2p);
857 p->two_primaries = cpu_to_be32(tconn->net_conf->two_primaries);
b411b363 858
cf14c2e9 859 cf = 0;
dc8228d1 860 if (tconn->net_conf->want_lose)
cf14c2e9 861 cf |= CF_WANT_LOSE;
dc8228d1
PR
862 if (tconn->net_conf->dry_run) {
863 if (tconn->agreed_pro_version >= 92)
cf14c2e9
PR
864 cf |= CF_DRY_RUN;
865 else {
dc8228d1 866 conn_err(tconn, "--dry-run is not supported by peer");
7ac314c8 867 kfree(p);
387eb308 868 return -EOPNOTSUPP;
cf14c2e9
PR
869 }
870 }
871 p->conn_flags = cpu_to_be32(cf);
872
dc8228d1
PR
873 if (tconn->agreed_pro_version >= 87)
874 strcpy(p->integrity_alg, tconn->net_conf->integrity_alg);
b411b363 875
387eb308 876 err = conn_send_cmd2(tconn, P_PROTOCOL, p->head.payload, size - sizeof(struct p_header));
b411b363 877 kfree(p);
387eb308 878 return err;
b411b363
PR
879}
880
881int _drbd_send_uuids(struct drbd_conf *mdev, u64 uuid_flags)
882{
883 struct p_uuids p;
884 int i;
885
886 if (!get_ldev_if_state(mdev, D_NEGOTIATING))
2ae5f95b 887 return 0;
b411b363
PR
888
889 for (i = UI_CURRENT; i < UI_SIZE; i++)
890 p.uuid[i] = mdev->ldev ? cpu_to_be64(mdev->ldev->md.uuid[i]) : 0;
891
892 mdev->comm_bm_set = drbd_bm_total_weight(mdev);
893 p.uuid[UI_SIZE] = cpu_to_be64(mdev->comm_bm_set);
89e58e75 894 uuid_flags |= mdev->tconn->net_conf->want_lose ? 1 : 0;
b411b363
PR
895 uuid_flags |= test_bit(CRASHED_PRIMARY, &mdev->flags) ? 2 : 0;
896 uuid_flags |= mdev->new_state_tmp.disk == D_INCONSISTENT ? 4 : 0;
897 p.uuid[UI_FLAGS] = cpu_to_be64(uuid_flags);
898
899 put_ldev(mdev);
900
2ae5f95b 901 return drbd_send_cmd(mdev, &mdev->tconn->data, P_UUIDS, &p.head, sizeof(p));
b411b363
PR
902}
903
904int drbd_send_uuids(struct drbd_conf *mdev)
905{
906 return _drbd_send_uuids(mdev, 0);
907}
908
909int drbd_send_uuids_skip_initial_sync(struct drbd_conf *mdev)
910{
911 return _drbd_send_uuids(mdev, 8);
912}
913
62b0da3a
LE
914void drbd_print_uuids(struct drbd_conf *mdev, const char *text)
915{
916 if (get_ldev_if_state(mdev, D_NEGOTIATING)) {
917 u64 *uuid = mdev->ldev->md.uuid;
918 dev_info(DEV, "%s %016llX:%016llX:%016llX:%016llX\n",
919 text,
920 (unsigned long long)uuid[UI_CURRENT],
921 (unsigned long long)uuid[UI_BITMAP],
922 (unsigned long long)uuid[UI_HISTORY_START],
923 (unsigned long long)uuid[UI_HISTORY_END]);
924 put_ldev(mdev);
925 } else {
926 dev_info(DEV, "%s effective data uuid: %016llX\n",
927 text,
928 (unsigned long long)mdev->ed_uuid);
929 }
930}
931
9c1b7f72 932void drbd_gen_and_send_sync_uuid(struct drbd_conf *mdev)
b411b363
PR
933{
934 struct p_rs_uuid p;
5a22db89
LE
935 u64 uuid;
936
937 D_ASSERT(mdev->state.disk == D_UP_TO_DATE);
b411b363 938
4a23f264 939 uuid = mdev->ldev->md.uuid[UI_BITMAP] + UUID_NEW_BM_OFFSET;
5a22db89 940 drbd_uuid_set(mdev, UI_BITMAP, uuid);
62b0da3a 941 drbd_print_uuids(mdev, "updated sync UUID");
5a22db89
LE
942 drbd_md_sync(mdev);
943 p.uuid = cpu_to_be64(uuid);
b411b363 944
9c1b7f72 945 drbd_send_cmd(mdev, &mdev->tconn->data, P_SYNC_UUID, &p.head, sizeof(p));
b411b363
PR
946}
947
e89b591c 948int drbd_send_sizes(struct drbd_conf *mdev, int trigger_reply, enum dds_flags flags)
b411b363
PR
949{
950 struct p_sizes p;
951 sector_t d_size, u_size;
99432fcc 952 int q_order_type, max_bio_size;
b411b363
PR
953
954 if (get_ldev_if_state(mdev, D_NEGOTIATING)) {
955 D_ASSERT(mdev->ldev->backing_bdev);
956 d_size = drbd_get_max_capacity(mdev->ldev);
957 u_size = mdev->ldev->dc.disk_size;
958 q_order_type = drbd_queue_order_type(mdev);
99432fcc
PR
959 max_bio_size = queue_max_hw_sectors(mdev->ldev->backing_bdev->bd_disk->queue) << 9;
960 max_bio_size = min_t(int, max_bio_size, DRBD_MAX_BIO_SIZE);
b411b363
PR
961 put_ldev(mdev);
962 } else {
963 d_size = 0;
964 u_size = 0;
965 q_order_type = QUEUE_ORDERED_NONE;
99432fcc 966 max_bio_size = DRBD_MAX_BIO_SIZE; /* ... multiple BIOs per peer_request */
b411b363
PR
967 }
968
969 p.d_size = cpu_to_be64(d_size);
970 p.u_size = cpu_to_be64(u_size);
971 p.c_size = cpu_to_be64(trigger_reply ? 0 : drbd_get_capacity(mdev->this_bdev));
99432fcc 972 p.max_bio_size = cpu_to_be32(max_bio_size);
e89b591c
PR
973 p.queue_order_type = cpu_to_be16(q_order_type);
974 p.dds_flags = cpu_to_be16(flags);
b411b363 975
f02d4d0a 976 return drbd_send_cmd(mdev, &mdev->tconn->data, P_SIZES, &p.head, sizeof(p));
b411b363
PR
977}
978
979/**
980 * drbd_send_state() - Sends the drbd state to the peer
981 * @mdev: DRBD device.
982 */
983int drbd_send_state(struct drbd_conf *mdev)
984{
985 struct socket *sock;
986 struct p_state p;
927036f9 987 int err = -EIO;
b411b363 988
e42325a5 989 mutex_lock(&mdev->tconn->data.mutex);
b411b363
PR
990
991 p.state = cpu_to_be32(mdev->state.i); /* Within the send mutex */
e42325a5 992 sock = mdev->tconn->data.socket;
b411b363 993
04dfa137 994 if (likely(sock != NULL))
927036f9 995 err = _drbd_send_cmd(mdev, sock, P_STATE, &p.head, sizeof(p), 0);
b411b363 996
e42325a5 997 mutex_unlock(&mdev->tconn->data.mutex);
b411b363 998
927036f9 999 return err;
b411b363
PR
1000}
1001
cf29c9d8
PR
1002int _conn_send_state_req(struct drbd_tconn *tconn, int vnr, enum drbd_packet cmd,
1003 union drbd_state mask, union drbd_state val)
b411b363
PR
1004{
1005 struct p_req_state p;
1006
1007 p.mask = cpu_to_be32(mask.i);
1008 p.val = cpu_to_be32(val.i);
1009
758970c8 1010 return conn_send_cmd(tconn, vnr, &tconn->data, cmd, &p.head, sizeof(p));
b411b363
PR
1011}
1012
2f4e7abe 1013void drbd_send_sr_reply(struct drbd_conf *mdev, enum drbd_state_rv retcode)
b411b363
PR
1014{
1015 struct p_req_state_reply p;
1016
1017 p.retcode = cpu_to_be32(retcode);
1018
2f4e7abe 1019 drbd_send_cmd(mdev, &mdev->tconn->meta, P_STATE_CHG_REPLY, &p.head, sizeof(p));
b411b363
PR
1020}
1021
047cd4a6
PR
1022int conn_send_sr_reply(struct drbd_tconn *tconn, enum drbd_state_rv retcode)
1023{
1024 struct p_req_state_reply p;
1025 enum drbd_packet cmd = tconn->agreed_pro_version < 100 ? P_STATE_CHG_REPLY : P_CONN_ST_CHG_REPLY;
1026
1027 p.retcode = cpu_to_be32(retcode);
1028
7d168ed3 1029 return !conn_send_cmd(tconn, 0, &tconn->meta, cmd, &p.head, sizeof(p));
047cd4a6
PR
1030}
1031
a02d1240
AG
1032static void dcbp_set_code(struct p_compressed_bm *p, enum drbd_bitmap_code code)
1033{
1034 BUG_ON(code & ~0xf);
1035 p->encoding = (p->encoding & ~0xf) | code;
1036}
1037
1038static void dcbp_set_start(struct p_compressed_bm *p, int set)
1039{
1040 p->encoding = (p->encoding & ~0x80) | (set ? 0x80 : 0);
1041}
1042
1043static void dcbp_set_pad_bits(struct p_compressed_bm *p, int n)
1044{
1045 BUG_ON(n & ~0x7);
1046 p->encoding = (p->encoding & (~0x7 << 4)) | (n << 4);
1047}
1048
b411b363
PR
1049int fill_bitmap_rle_bits(struct drbd_conf *mdev,
1050 struct p_compressed_bm *p,
1051 struct bm_xfer_ctx *c)
1052{
1053 struct bitstream bs;
1054 unsigned long plain_bits;
1055 unsigned long tmp;
1056 unsigned long rl;
1057 unsigned len;
1058 unsigned toggle;
1059 int bits;
1060
1061 /* may we use this feature? */
f399002e 1062 if ((mdev->tconn->net_conf->use_rle == 0) ||
31890f4a 1063 (mdev->tconn->agreed_pro_version < 90))
b411b363
PR
1064 return 0;
1065
1066 if (c->bit_offset >= c->bm_bits)
1067 return 0; /* nothing to do. */
1068
1069 /* use at most thus many bytes */
1070 bitstream_init(&bs, p->code, BM_PACKET_VLI_BYTES_MAX, 0);
1071 memset(p->code, 0, BM_PACKET_VLI_BYTES_MAX);
1072 /* plain bits covered in this code string */
1073 plain_bits = 0;
1074
1075 /* p->encoding & 0x80 stores whether the first run length is set.
1076 * bit offset is implicit.
1077 * start with toggle == 2 to be able to tell the first iteration */
1078 toggle = 2;
1079
1080 /* see how much plain bits we can stuff into one packet
1081 * using RLE and VLI. */
1082 do {
1083 tmp = (toggle == 0) ? _drbd_bm_find_next_zero(mdev, c->bit_offset)
1084 : _drbd_bm_find_next(mdev, c->bit_offset);
1085 if (tmp == -1UL)
1086 tmp = c->bm_bits;
1087 rl = tmp - c->bit_offset;
1088
1089 if (toggle == 2) { /* first iteration */
1090 if (rl == 0) {
1091 /* the first checked bit was set,
1092 * store start value, */
a02d1240 1093 dcbp_set_start(p, 1);
b411b363
PR
1094 /* but skip encoding of zero run length */
1095 toggle = !toggle;
1096 continue;
1097 }
a02d1240 1098 dcbp_set_start(p, 0);
b411b363
PR
1099 }
1100
1101 /* paranoia: catch zero runlength.
1102 * can only happen if bitmap is modified while we scan it. */
1103 if (rl == 0) {
1104 dev_err(DEV, "unexpected zero runlength while encoding bitmap "
1105 "t:%u bo:%lu\n", toggle, c->bit_offset);
1106 return -1;
1107 }
1108
1109 bits = vli_encode_bits(&bs, rl);
1110 if (bits == -ENOBUFS) /* buffer full */
1111 break;
1112 if (bits <= 0) {
1113 dev_err(DEV, "error while encoding bitmap: %d\n", bits);
1114 return 0;
1115 }
1116
1117 toggle = !toggle;
1118 plain_bits += rl;
1119 c->bit_offset = tmp;
1120 } while (c->bit_offset < c->bm_bits);
1121
1122 len = bs.cur.b - p->code + !!bs.cur.bit;
1123
1124 if (plain_bits < (len << 3)) {
1125 /* incompressible with this method.
1126 * we need to rewind both word and bit position. */
1127 c->bit_offset -= plain_bits;
1128 bm_xfer_ctx_bit_to_word_offset(c);
1129 c->bit_offset = c->word_offset * BITS_PER_LONG;
1130 return 0;
1131 }
1132
1133 /* RLE + VLI was able to compress it just fine.
1134 * update c->word_offset. */
1135 bm_xfer_ctx_bit_to_word_offset(c);
1136
1137 /* store pad_bits */
a02d1240 1138 dcbp_set_pad_bits(p, (8 - bs.cur.bit) & 0x7);
b411b363
PR
1139
1140 return len;
1141}
1142
f70af118
AG
1143/**
1144 * send_bitmap_rle_or_plain
1145 *
1146 * Return 0 when done, 1 when another iteration is needed, and a negative error
1147 * code upon failure.
1148 */
1149static int
b411b363 1150send_bitmap_rle_or_plain(struct drbd_conf *mdev,
c012949a 1151 struct p_header *h, struct bm_xfer_ctx *c)
b411b363
PR
1152{
1153 struct p_compressed_bm *p = (void*)h;
1154 unsigned long num_words;
a982dd57 1155 int len, err;
b411b363
PR
1156
1157 len = fill_bitmap_rle_bits(mdev, p, c);
1158
1159 if (len < 0)
f70af118 1160 return -EIO;
b411b363
PR
1161
1162 if (len) {
a02d1240 1163 dcbp_set_code(p, RLE_VLI_Bits);
a982dd57
AG
1164 err = _drbd_send_cmd(mdev, mdev->tconn->data.socket,
1165 P_COMPRESSED_BITMAP, h,
04dfa137 1166 sizeof(*p) + len, 0);
b411b363
PR
1167
1168 c->packets[0]++;
1169 c->bytes[0] += sizeof(*p) + len;
1170
1171 if (c->bit_offset >= c->bm_bits)
1172 len = 0; /* DONE */
1173 } else {
1174 /* was not compressible.
1175 * send a buffer full of plain text bits instead. */
1176 num_words = min_t(size_t, BM_PACKET_WORDS, c->bm_words - c->word_offset);
1177 len = num_words * sizeof(long);
1178 if (len)
1179 drbd_bm_get_lel(mdev, c->word_offset, num_words, (unsigned long*)h->payload);
a982dd57 1180 err = _drbd_send_cmd(mdev, mdev->tconn->data.socket, P_BITMAP,
04dfa137 1181 h, sizeof(struct p_header80) + len, 0);
b411b363
PR
1182 c->word_offset += num_words;
1183 c->bit_offset = c->word_offset * BITS_PER_LONG;
1184
1185 c->packets[1]++;
0b70a13d 1186 c->bytes[1] += sizeof(struct p_header80) + len;
b411b363
PR
1187
1188 if (c->bit_offset > c->bm_bits)
1189 c->bit_offset = c->bm_bits;
1190 }
a982dd57 1191 if (!err) {
f70af118
AG
1192 if (len == 0) {
1193 INFO_bm_xfer_stats(mdev, "send", c);
1194 return 0;
1195 } else
1196 return 1;
1197 }
1198 return -EIO;
b411b363
PR
1199}
1200
1201/* See the comment at receive_bitmap() */
058820cd 1202static int _drbd_send_bitmap(struct drbd_conf *mdev)
b411b363
PR
1203{
1204 struct bm_xfer_ctx c;
c012949a 1205 struct p_header *p;
f70af118 1206 int err;
b411b363 1207
841ce241
AG
1208 if (!expect(mdev->bitmap))
1209 return false;
b411b363
PR
1210
1211 /* maybe we should use some per thread scratch page,
1212 * and allocate that during initial device creation? */
c012949a 1213 p = (struct p_header *) __get_free_page(GFP_NOIO);
b411b363
PR
1214 if (!p) {
1215 dev_err(DEV, "failed to allocate one page buffer in %s\n", __func__);
81e84650 1216 return false;
b411b363
PR
1217 }
1218
1219 if (get_ldev(mdev)) {
1220 if (drbd_md_test_flag(mdev->ldev, MDF_FULL_SYNC)) {
1221 dev_info(DEV, "Writing the whole bitmap, MDF_FullSync was set.\n");
1222 drbd_bm_set_all(mdev);
1223 if (drbd_bm_write(mdev)) {
1224 /* write_bm did fail! Leave full sync flag set in Meta P_DATA
1225 * but otherwise process as per normal - need to tell other
1226 * side that a full resync is required! */
1227 dev_err(DEV, "Failed to write bitmap to disk!\n");
1228 } else {
1229 drbd_md_clear_flag(mdev, MDF_FULL_SYNC);
1230 drbd_md_sync(mdev);
1231 }
1232 }
1233 put_ldev(mdev);
1234 }
1235
1236 c = (struct bm_xfer_ctx) {
1237 .bm_bits = drbd_bm_bits(mdev),
1238 .bm_words = drbd_bm_words(mdev),
1239 };
1240
1241 do {
f70af118
AG
1242 err = send_bitmap_rle_or_plain(mdev, p, &c);
1243 } while (err > 0);
b411b363
PR
1244
1245 free_page((unsigned long) p);
f70af118 1246 return err == 0;
b411b363
PR
1247}
1248
1249int drbd_send_bitmap(struct drbd_conf *mdev)
1250{
1251 int err;
1252
11b0be28 1253 if (drbd_get_data_sock(mdev->tconn))
b411b363
PR
1254 return -1;
1255 err = !_drbd_send_bitmap(mdev);
61120870 1256 drbd_put_data_sock(mdev->tconn);
b411b363
PR
1257 return err;
1258}
d4e67d7c 1259void drbd_send_b_ack(struct drbd_conf *mdev, u32 barrier_nr, u32 set_size)
b411b363 1260{
b411b363
PR
1261 struct p_barrier_ack p;
1262
1263 p.barrier = barrier_nr;
1264 p.set_size = cpu_to_be32(set_size);
1265
d4e67d7c
AG
1266 if (mdev->state.conn >= C_CONNECTED)
1267 drbd_send_cmd(mdev, &mdev->tconn->meta, P_BARRIER_ACK, &p.head, sizeof(p));
b411b363
PR
1268}
1269
1270/**
1271 * _drbd_send_ack() - Sends an ack packet
1272 * @mdev: DRBD device.
1273 * @cmd: Packet command code.
1274 * @sector: sector, needs to be in big endian byte order
1275 * @blksize: size in byte, needs to be in big endian byte order
1276 * @block_id: Id, big endian byte order
1277 */
d8763023
AG
1278static int _drbd_send_ack(struct drbd_conf *mdev, enum drbd_packet cmd,
1279 u64 sector, u32 blksize, u64 block_id)
b411b363 1280{
b411b363
PR
1281 struct p_block_ack p;
1282
1283 p.sector = sector;
1284 p.block_id = block_id;
1285 p.blksize = blksize;
8ccf218e 1286 p.seq_num = cpu_to_be32(atomic_inc_return(&mdev->packet_seq));
b411b363 1287
e42325a5 1288 if (!mdev->tconn->meta.socket || mdev->state.conn < C_CONNECTED)
a8c32aa8
AG
1289 return -EIO;
1290 return drbd_send_cmd(mdev, &mdev->tconn->meta, cmd, &p.head, sizeof(p));
b411b363
PR
1291}
1292
2b2bf214
LE
1293/* dp->sector and dp->block_id already/still in network byte order,
1294 * data_size is payload size according to dp->head,
1295 * and may need to be corrected for digest size. */
a9a9994d
AG
1296void drbd_send_ack_dp(struct drbd_conf *mdev, enum drbd_packet cmd,
1297 struct p_data *dp, int data_size)
b411b363 1298{
a0638456
PR
1299 data_size -= (mdev->tconn->agreed_pro_version >= 87 && mdev->tconn->integrity_r_tfm) ?
1300 crypto_hash_digestsize(mdev->tconn->integrity_r_tfm) : 0;
a9a9994d
AG
1301 _drbd_send_ack(mdev, cmd, dp->sector, cpu_to_be32(data_size),
1302 dp->block_id);
b411b363
PR
1303}
1304
a9a9994d
AG
1305void drbd_send_ack_rp(struct drbd_conf *mdev, enum drbd_packet cmd,
1306 struct p_block_req *rp)
b411b363 1307{
a9a9994d 1308 _drbd_send_ack(mdev, cmd, rp->sector, rp->blksize, rp->block_id);
b411b363
PR
1309}
1310
1311/**
1312 * drbd_send_ack() - Sends an ack packet
db830c46
AG
1313 * @mdev: DRBD device
1314 * @cmd: packet command code
1315 * @peer_req: peer request
b411b363 1316 */
d8763023 1317int drbd_send_ack(struct drbd_conf *mdev, enum drbd_packet cmd,
db830c46 1318 struct drbd_peer_request *peer_req)
b411b363 1319{
dd516121
AG
1320 return _drbd_send_ack(mdev, cmd,
1321 cpu_to_be64(peer_req->i.sector),
1322 cpu_to_be32(peer_req->i.size),
1323 peer_req->block_id);
b411b363
PR
1324}
1325
1326/* This function misuses the block_id field to signal if the blocks
1327 * are is sync or not. */
d8763023 1328int drbd_send_ack_ex(struct drbd_conf *mdev, enum drbd_packet cmd,
b411b363
PR
1329 sector_t sector, int blksize, u64 block_id)
1330{
fa79abd8
AG
1331 return _drbd_send_ack(mdev, cmd,
1332 cpu_to_be64(sector),
1333 cpu_to_be32(blksize),
1334 cpu_to_be64(block_id));
b411b363
PR
1335}
1336
1337int drbd_send_drequest(struct drbd_conf *mdev, int cmd,
1338 sector_t sector, int size, u64 block_id)
1339{
b411b363
PR
1340 struct p_block_req p;
1341
1342 p.sector = cpu_to_be64(sector);
1343 p.block_id = block_id;
1344 p.blksize = cpu_to_be32(size);
1345
6c1005e7 1346 return drbd_send_cmd(mdev, &mdev->tconn->data, cmd, &p.head, sizeof(p));
b411b363
PR
1347}
1348
d8763023
AG
1349int drbd_send_drequest_csum(struct drbd_conf *mdev, sector_t sector, int size,
1350 void *digest, int digest_size, enum drbd_packet cmd)
b411b363 1351{
db1b0b72 1352 int err;
b411b363
PR
1353 struct p_block_req p;
1354
fd340c12 1355 prepare_header(mdev, &p.head, cmd, sizeof(p) - sizeof(struct p_header) + digest_size);
b411b363 1356 p.sector = cpu_to_be64(sector);
9a8e7753 1357 p.block_id = ID_SYNCER /* unused */;
b411b363
PR
1358 p.blksize = cpu_to_be32(size);
1359
e42325a5 1360 mutex_lock(&mdev->tconn->data.mutex);
db1b0b72
AG
1361 err = drbd_send_all(mdev->tconn, mdev->tconn->data.socket, &p, sizeof(p), 0);
1362 if (!err)
1363 err = drbd_send_all(mdev->tconn, mdev->tconn->data.socket, digest, digest_size, 0);
e42325a5 1364 mutex_unlock(&mdev->tconn->data.mutex);
db1b0b72 1365 return err;
b411b363
PR
1366}
1367
1368int drbd_send_ov_request(struct drbd_conf *mdev, sector_t sector, int size)
1369{
b411b363
PR
1370 struct p_block_req p;
1371
1372 p.sector = cpu_to_be64(sector);
9a8e7753 1373 p.block_id = ID_SYNCER /* unused */;
b411b363
PR
1374 p.blksize = cpu_to_be32(size);
1375
5b9f499c 1376 return drbd_send_cmd(mdev, &mdev->tconn->data, P_OV_REQUEST, &p.head, sizeof(p));
b411b363
PR
1377}
1378
1379/* called on sndtimeo
81e84650
AG
1380 * returns false if we should retry,
1381 * true if we think connection is dead
b411b363 1382 */
1a7ba646 1383static int we_should_drop_the_connection(struct drbd_tconn *tconn, struct socket *sock)
b411b363
PR
1384{
1385 int drop_it;
1386 /* long elapsed = (long)(jiffies - mdev->last_received); */
1387
1a7ba646
PR
1388 drop_it = tconn->meta.socket == sock
1389 || !tconn->asender.task
1390 || get_t_state(&tconn->asender) != RUNNING
bbeb641c 1391 || tconn->cstate < C_WF_REPORT_PARAMS;
b411b363
PR
1392
1393 if (drop_it)
81e84650 1394 return true;
b411b363 1395
1a7ba646 1396 drop_it = !--tconn->ko_count;
b411b363 1397 if (!drop_it) {
1a7ba646
PR
1398 conn_err(tconn, "[%s/%d] sock_sendmsg time expired, ko = %u\n",
1399 current->comm, current->pid, tconn->ko_count);
1400 request_ping(tconn);
b411b363
PR
1401 }
1402
1403 return drop_it; /* && (mdev->state == R_PRIMARY) */;
1404}
1405
1a7ba646 1406static void drbd_update_congested(struct drbd_tconn *tconn)
9e204cdd 1407{
1a7ba646 1408 struct sock *sk = tconn->data.socket->sk;
9e204cdd 1409 if (sk->sk_wmem_queued > sk->sk_sndbuf * 4 / 5)
1a7ba646 1410 set_bit(NET_CONGESTED, &tconn->flags);
9e204cdd
AG
1411}
1412
b411b363
PR
1413/* The idea of sendpage seems to be to put some kind of reference
1414 * to the page into the skb, and to hand it over to the NIC. In
1415 * this process get_page() gets called.
1416 *
1417 * As soon as the page was really sent over the network put_page()
1418 * gets called by some part of the network layer. [ NIC driver? ]
1419 *
1420 * [ get_page() / put_page() increment/decrement the count. If count
1421 * reaches 0 the page will be freed. ]
1422 *
1423 * This works nicely with pages from FSs.
1424 * But this means that in protocol A we might signal IO completion too early!
1425 *
1426 * In order not to corrupt data during a resync we must make sure
1427 * that we do not reuse our own buffer pages (EEs) to early, therefore
1428 * we have the net_ee list.
1429 *
1430 * XFS seems to have problems, still, it submits pages with page_count == 0!
1431 * As a workaround, we disable sendpage on pages
1432 * with page_count == 0 or PageSlab.
1433 */
1434static int _drbd_no_send_page(struct drbd_conf *mdev, struct page *page,
b987427b 1435 int offset, size_t size, unsigned msg_flags)
b411b363 1436{
b987427b
AG
1437 struct socket *socket;
1438 void *addr;
1439 int err;
1440
1441 socket = mdev->tconn->data.socket;
1442 addr = kmap(page) + offset;
1443 err = drbd_send_all(mdev->tconn, socket, addr, size, msg_flags);
b411b363 1444 kunmap(page);
b987427b
AG
1445 if (!err)
1446 mdev->send_cnt += size >> 9;
1447 return err;
b411b363
PR
1448}
1449
1450static int _drbd_send_page(struct drbd_conf *mdev, struct page *page,
ba11ad9a 1451 int offset, size_t size, unsigned msg_flags)
b411b363 1452{
88b390ff 1453 struct socket *socket = mdev->tconn->data.socket;
b411b363 1454 mm_segment_t oldfs = get_fs();
b411b363 1455 int len = size;
88b390ff 1456 int err = -EIO;
b411b363
PR
1457
1458 /* e.g. XFS meta- & log-data is in slab pages, which have a
1459 * page_count of 0 and/or have PageSlab() set.
1460 * we cannot use send_page for those, as that does get_page();
1461 * put_page(); and would cause either a VM_BUG directly, or
1462 * __page_cache_release a page that would actually still be referenced
1463 * by someone, leading to some obscure delayed Oops somewhere else. */
1464 if (disable_sendpage || (page_count(page) < 1) || PageSlab(page))
88b390ff 1465 return _drbd_no_send_page(mdev, page, offset, size, msg_flags);
b411b363 1466
ba11ad9a 1467 msg_flags |= MSG_NOSIGNAL;
1a7ba646 1468 drbd_update_congested(mdev->tconn);
b411b363
PR
1469 set_fs(KERNEL_DS);
1470 do {
88b390ff
AG
1471 int sent;
1472
1473 sent = socket->ops->sendpage(socket, page, offset, len, msg_flags);
b411b363 1474 if (sent <= 0) {
88b390ff
AG
1475 if (sent == -EAGAIN) {
1476 if (we_should_drop_the_connection(mdev->tconn, socket))
1477 break;
1478 continue;
1479 }
b411b363
PR
1480 dev_warn(DEV, "%s: size=%d len=%d sent=%d\n",
1481 __func__, (int)size, len, sent);
88b390ff
AG
1482 if (sent < 0)
1483 err = sent;
b411b363
PR
1484 break;
1485 }
1486 len -= sent;
1487 offset += sent;
1488 } while (len > 0 /* THINK && mdev->cstate >= C_CONNECTED*/);
1489 set_fs(oldfs);
01a311a5 1490 clear_bit(NET_CONGESTED, &mdev->tconn->flags);
b411b363 1491
88b390ff
AG
1492 if (len == 0) {
1493 err = 0;
1494 mdev->send_cnt += size >> 9;
1495 }
1496 return err;
b411b363
PR
1497}
1498
1499static int _drbd_send_bio(struct drbd_conf *mdev, struct bio *bio)
1500{
1501 struct bio_vec *bvec;
1502 int i;
ba11ad9a 1503 /* hint all but last page with MSG_MORE */
b411b363 1504 __bio_for_each_segment(bvec, bio, i, 0) {
7fae55da
AG
1505 int err;
1506
1507 err = _drbd_no_send_page(mdev, bvec->bv_page,
1508 bvec->bv_offset, bvec->bv_len,
1509 i == bio->bi_vcnt - 1 ? 0 : MSG_MORE);
1510 if (err)
1511 return err;
b411b363 1512 }
7fae55da 1513 return 0;
b411b363
PR
1514}
1515
1516static int _drbd_send_zc_bio(struct drbd_conf *mdev, struct bio *bio)
1517{
1518 struct bio_vec *bvec;
1519 int i;
ba11ad9a 1520 /* hint all but last page with MSG_MORE */
b411b363 1521 __bio_for_each_segment(bvec, bio, i, 0) {
7fae55da
AG
1522 int err;
1523
1524 err = _drbd_send_page(mdev, bvec->bv_page,
1525 bvec->bv_offset, bvec->bv_len,
1526 i == bio->bi_vcnt - 1 ? 0 : MSG_MORE);
1527 if (err)
1528 return err;
b411b363 1529 }
7fae55da 1530 return 0;
b411b363
PR
1531}
1532
db830c46
AG
1533static int _drbd_send_zc_ee(struct drbd_conf *mdev,
1534 struct drbd_peer_request *peer_req)
45bb912b 1535{
db830c46
AG
1536 struct page *page = peer_req->pages;
1537 unsigned len = peer_req->i.size;
9f69230c 1538 int err;
db830c46 1539
ba11ad9a 1540 /* hint all but last page with MSG_MORE */
45bb912b
LE
1541 page_chain_for_each(page) {
1542 unsigned l = min_t(unsigned, len, PAGE_SIZE);
9f69230c
AG
1543
1544 err = _drbd_send_page(mdev, page, 0, l,
1545 page_chain_next(page) ? MSG_MORE : 0);
1546 if (err)
1547 return err;
45bb912b
LE
1548 len -= l;
1549 }
9f69230c 1550 return 0;
45bb912b
LE
1551}
1552
76d2e7ec
PR
1553static u32 bio_flags_to_wire(struct drbd_conf *mdev, unsigned long bi_rw)
1554{
31890f4a 1555 if (mdev->tconn->agreed_pro_version >= 95)
76d2e7ec 1556 return (bi_rw & REQ_SYNC ? DP_RW_SYNC : 0) |
76d2e7ec
PR
1557 (bi_rw & REQ_FUA ? DP_FUA : 0) |
1558 (bi_rw & REQ_FLUSH ? DP_FLUSH : 0) |
1559 (bi_rw & REQ_DISCARD ? DP_DISCARD : 0);
1560 else
721a9602 1561 return bi_rw & REQ_SYNC ? DP_RW_SYNC : 0;
76d2e7ec
PR
1562}
1563
b411b363
PR
1564/* Used to send write requests
1565 * R_PRIMARY -> Peer (P_DATA)
1566 */
1567int drbd_send_dblock(struct drbd_conf *mdev, struct drbd_request *req)
1568{
6bdb9b0e 1569 int err;
b411b363
PR
1570 struct p_data p;
1571 unsigned int dp_flags = 0;
1572 void *dgb;
1573 int dgs;
1574
6bdb9b0e
AG
1575 err = drbd_get_data_sock(mdev->tconn);
1576 if (err)
1577 return err;
b411b363 1578
a0638456
PR
1579 dgs = (mdev->tconn->agreed_pro_version >= 87 && mdev->tconn->integrity_w_tfm) ?
1580 crypto_hash_digestsize(mdev->tconn->integrity_w_tfm) : 0;
b411b363 1581
fd340c12 1582 prepare_header(mdev, &p.head, P_DATA, sizeof(p) - sizeof(struct p_header) + dgs + req->i.size);
ace652ac 1583 p.sector = cpu_to_be64(req->i.sector);
b411b363 1584 p.block_id = (unsigned long)req;
8ccf218e 1585 p.seq_num = cpu_to_be32(req->seq_num = atomic_inc_return(&mdev->packet_seq));
b411b363 1586
76d2e7ec
PR
1587 dp_flags = bio_flags_to_wire(mdev, req->master_bio->bi_rw);
1588
b411b363
PR
1589 if (mdev->state.conn >= C_SYNC_SOURCE &&
1590 mdev->state.conn <= C_PAUSED_SYNC_T)
1591 dp_flags |= DP_MAY_SET_IN_SYNC;
1592
1593 p.dp_flags = cpu_to_be32(dp_flags);
b411b363 1594 set_bit(UNPLUG_REMOTE, &mdev->flags);
6bdb9b0e
AG
1595 err = drbd_send_all(mdev->tconn, mdev->tconn->data.socket, &p,
1596 sizeof(p), dgs ? MSG_MORE : 0);
1597 if (!err && dgs) {
a0638456
PR
1598 dgb = mdev->tconn->int_dig_out;
1599 drbd_csum_bio(mdev, mdev->tconn->integrity_w_tfm, req->master_bio, dgb);
6bdb9b0e 1600 err = drbd_send_all(mdev->tconn, mdev->tconn->data.socket, dgb, dgs, 0);
b411b363 1601 }
6bdb9b0e 1602 if (!err) {
470be44a
LE
1603 /* For protocol A, we have to memcpy the payload into
1604 * socket buffers, as we may complete right away
1605 * as soon as we handed it over to tcp, at which point the data
1606 * pages may become invalid.
1607 *
1608 * For data-integrity enabled, we copy it as well, so we can be
1609 * sure that even if the bio pages may still be modified, it
1610 * won't change the data on the wire, thus if the digest checks
1611 * out ok after sending on this side, but does not fit on the
1612 * receiving side, we sure have detected corruption elsewhere.
1613 */
89e58e75 1614 if (mdev->tconn->net_conf->wire_protocol == DRBD_PROT_A || dgs)
6bdb9b0e 1615 err = _drbd_send_bio(mdev, req->master_bio);
b411b363 1616 else
6bdb9b0e 1617 err = _drbd_send_zc_bio(mdev, req->master_bio);
470be44a
LE
1618
1619 /* double check digest, sometimes buffers have been modified in flight. */
1620 if (dgs > 0 && dgs <= 64) {
24c4830c 1621 /* 64 byte, 512 bit, is the largest digest size
470be44a
LE
1622 * currently supported in kernel crypto. */
1623 unsigned char digest[64];
a0638456
PR
1624 drbd_csum_bio(mdev, mdev->tconn->integrity_w_tfm, req->master_bio, digest);
1625 if (memcmp(mdev->tconn->int_dig_out, digest, dgs)) {
470be44a
LE
1626 dev_warn(DEV,
1627 "Digest mismatch, buffer modified by upper layers during write: %llus +%u\n",
ace652ac 1628 (unsigned long long)req->i.sector, req->i.size);
470be44a
LE
1629 }
1630 } /* else if (dgs > 64) {
1631 ... Be noisy about digest too large ...
1632 } */
b411b363
PR
1633 }
1634
61120870 1635 drbd_put_data_sock(mdev->tconn);
bd26bfc5 1636
6bdb9b0e 1637 return err;
b411b363
PR
1638}
1639
1640/* answer packet, used to send data back for read requests:
1641 * Peer -> (diskless) R_PRIMARY (P_DATA_REPLY)
1642 * C_SYNC_SOURCE -> C_SYNC_TARGET (P_RS_DATA_REPLY)
1643 */
d8763023 1644int drbd_send_block(struct drbd_conf *mdev, enum drbd_packet cmd,
db830c46 1645 struct drbd_peer_request *peer_req)
b411b363 1646{
7b57b89d 1647 int err;
b411b363
PR
1648 struct p_data p;
1649 void *dgb;
1650 int dgs;
1651
a0638456
PR
1652 dgs = (mdev->tconn->agreed_pro_version >= 87 && mdev->tconn->integrity_w_tfm) ?
1653 crypto_hash_digestsize(mdev->tconn->integrity_w_tfm) : 0;
b411b363 1654
db830c46
AG
1655 prepare_header(mdev, &p.head, cmd, sizeof(p) -
1656 sizeof(struct p_header80) +
1657 dgs + peer_req->i.size);
1658 p.sector = cpu_to_be64(peer_req->i.sector);
1659 p.block_id = peer_req->block_id;
cc378270 1660 p.seq_num = 0; /* unused */
b411b363
PR
1661
1662 /* Only called by our kernel thread.
1663 * This one may be interrupted by DRBD_SIG and/or DRBD_SIGKILL
1664 * in response to admin command or module unload.
1665 */
7b57b89d
AG
1666 err = drbd_get_data_sock(mdev->tconn);
1667 if (err)
1668 return err;
1669 err = drbd_send_all(mdev->tconn, mdev->tconn->data.socket, &p,
1670 sizeof(p), dgs ? MSG_MORE : 0);
1671 if (!err && dgs) {
a0638456 1672 dgb = mdev->tconn->int_dig_out;
db830c46 1673 drbd_csum_ee(mdev, mdev->tconn->integrity_w_tfm, peer_req, dgb);
7b57b89d
AG
1674 err = drbd_send_all(mdev->tconn, mdev->tconn->data.socket, dgb,
1675 dgs, 0);
b411b363 1676 }
7b57b89d
AG
1677 if (!err)
1678 err = _drbd_send_zc_ee(mdev, peer_req);
61120870 1679 drbd_put_data_sock(mdev->tconn);
bd26bfc5 1680
7b57b89d 1681 return err;
b411b363
PR
1682}
1683
8f7bed77 1684int drbd_send_out_of_sync(struct drbd_conf *mdev, struct drbd_request *req)
73a01a18
PR
1685{
1686 struct p_block_desc p;
1687
ace652ac
AG
1688 p.sector = cpu_to_be64(req->i.sector);
1689 p.blksize = cpu_to_be32(req->i.size);
73a01a18 1690
73218a3c 1691 return drbd_send_cmd(mdev, &mdev->tconn->data, P_OUT_OF_SYNC, &p.head, sizeof(p));
73a01a18
PR
1692}
1693
b411b363
PR
1694/*
1695 drbd_send distinguishes two cases:
1696
1697 Packets sent via the data socket "sock"
1698 and packets sent via the meta data socket "msock"
1699
1700 sock msock
1701 -----------------+-------------------------+------------------------------
1702 timeout conf.timeout / 2 conf.timeout / 2
1703 timeout action send a ping via msock Abort communication
1704 and close all sockets
1705*/
1706
1707/*
1708 * you must have down()ed the appropriate [m]sock_mutex elsewhere!
1709 */
bedbd2a5 1710int drbd_send(struct drbd_tconn *tconn, struct socket *sock,
b411b363
PR
1711 void *buf, size_t size, unsigned msg_flags)
1712{
1713 struct kvec iov;
1714 struct msghdr msg;
1715 int rv, sent = 0;
1716
1717 if (!sock)
c0d42c8e 1718 return -EBADR;
b411b363
PR
1719
1720 /* THINK if (signal_pending) return ... ? */
1721
1722 iov.iov_base = buf;
1723 iov.iov_len = size;
1724
1725 msg.msg_name = NULL;
1726 msg.msg_namelen = 0;
1727 msg.msg_control = NULL;
1728 msg.msg_controllen = 0;
1729 msg.msg_flags = msg_flags | MSG_NOSIGNAL;
1730
bedbd2a5
PR
1731 if (sock == tconn->data.socket) {
1732 tconn->ko_count = tconn->net_conf->ko_count;
1733 drbd_update_congested(tconn);
b411b363
PR
1734 }
1735 do {
1736 /* STRANGE
1737 * tcp_sendmsg does _not_ use its size parameter at all ?
1738 *
1739 * -EAGAIN on timeout, -EINTR on signal.
1740 */
1741/* THINK
1742 * do we need to block DRBD_SIG if sock == &meta.socket ??
1743 * otherwise wake_asender() might interrupt some send_*Ack !
1744 */
1745 rv = kernel_sendmsg(sock, &msg, &iov, 1, size);
1746 if (rv == -EAGAIN) {
bedbd2a5 1747 if (we_should_drop_the_connection(tconn, sock))
b411b363
PR
1748 break;
1749 else
1750 continue;
1751 }
b411b363
PR
1752 if (rv == -EINTR) {
1753 flush_signals(current);
1754 rv = 0;
1755 }
1756 if (rv < 0)
1757 break;
1758 sent += rv;
1759 iov.iov_base += rv;
1760 iov.iov_len -= rv;
1761 } while (sent < size);
1762
bedbd2a5
PR
1763 if (sock == tconn->data.socket)
1764 clear_bit(NET_CONGESTED, &tconn->flags);
b411b363
PR
1765
1766 if (rv <= 0) {
1767 if (rv != -EAGAIN) {
bedbd2a5
PR
1768 conn_err(tconn, "%s_sendmsg returned %d\n",
1769 sock == tconn->meta.socket ? "msock" : "sock",
1770 rv);
bbeb641c 1771 conn_request_state(tconn, NS(conn, C_BROKEN_PIPE), CS_HARD);
b411b363 1772 } else
bbeb641c 1773 conn_request_state(tconn, NS(conn, C_TIMEOUT), CS_HARD);
b411b363
PR
1774 }
1775
1776 return sent;
1777}
1778
fb708e40
AG
1779/**
1780 * drbd_send_all - Send an entire buffer
1781 *
1782 * Returns 0 upon success and a negative error value otherwise.
1783 */
1784int drbd_send_all(struct drbd_tconn *tconn, struct socket *sock, void *buffer,
1785 size_t size, unsigned msg_flags)
1786{
1787 int err;
1788
1789 err = drbd_send(tconn, sock, buffer, size, msg_flags);
1790 if (err < 0)
1791 return err;
1792 if (err != size)
1793 return -EIO;
1794 return 0;
1795}
1796
b411b363
PR
1797static int drbd_open(struct block_device *bdev, fmode_t mode)
1798{
1799 struct drbd_conf *mdev = bdev->bd_disk->private_data;
1800 unsigned long flags;
1801 int rv = 0;
1802
2a48fc0a 1803 mutex_lock(&drbd_main_mutex);
87eeee41 1804 spin_lock_irqsave(&mdev->tconn->req_lock, flags);
b411b363
PR
1805 /* to have a stable mdev->state.role
1806 * and no race with updating open_cnt */
1807
1808 if (mdev->state.role != R_PRIMARY) {
1809 if (mode & FMODE_WRITE)
1810 rv = -EROFS;
1811 else if (!allow_oos)
1812 rv = -EMEDIUMTYPE;
1813 }
1814
1815 if (!rv)
1816 mdev->open_cnt++;
87eeee41 1817 spin_unlock_irqrestore(&mdev->tconn->req_lock, flags);
2a48fc0a 1818 mutex_unlock(&drbd_main_mutex);
b411b363
PR
1819
1820 return rv;
1821}
1822
1823static int drbd_release(struct gendisk *gd, fmode_t mode)
1824{
1825 struct drbd_conf *mdev = gd->private_data;
2a48fc0a 1826 mutex_lock(&drbd_main_mutex);
b411b363 1827 mdev->open_cnt--;
2a48fc0a 1828 mutex_unlock(&drbd_main_mutex);
b411b363
PR
1829 return 0;
1830}
1831
b411b363
PR
1832static void drbd_set_defaults(struct drbd_conf *mdev)
1833{
f399002e
LE
1834 /* Beware! The actual layout differs
1835 * between big endian and little endian */
b411b363
PR
1836 mdev->state = (union drbd_state) {
1837 { .role = R_SECONDARY,
1838 .peer = R_UNKNOWN,
1839 .conn = C_STANDALONE,
1840 .disk = D_DISKLESS,
1841 .pdsk = D_UNKNOWN,
fb22c402
PR
1842 .susp = 0,
1843 .susp_nod = 0,
1844 .susp_fen = 0
b411b363
PR
1845 } };
1846}
1847
1848void drbd_init_set_defaults(struct drbd_conf *mdev)
1849{
1850 /* the memset(,0,) did most of this.
1851 * note: only assignments, no allocation in here */
1852
1853 drbd_set_defaults(mdev);
1854
b411b363
PR
1855 atomic_set(&mdev->ap_bio_cnt, 0);
1856 atomic_set(&mdev->ap_pending_cnt, 0);
1857 atomic_set(&mdev->rs_pending_cnt, 0);
1858 atomic_set(&mdev->unacked_cnt, 0);
1859 atomic_set(&mdev->local_cnt, 0);
435f0740 1860 atomic_set(&mdev->pp_in_use_by_net, 0);
778f271d 1861 atomic_set(&mdev->rs_sect_in, 0);
0f0601f4 1862 atomic_set(&mdev->rs_sect_ev, 0);
759fbdfb 1863 atomic_set(&mdev->ap_in_flight, 0);
b411b363
PR
1864
1865 mutex_init(&mdev->md_io_mutex);
8410da8f
PR
1866 mutex_init(&mdev->own_state_mutex);
1867 mdev->state_mutex = &mdev->own_state_mutex;
b411b363 1868
b411b363 1869 spin_lock_init(&mdev->al_lock);
b411b363
PR
1870 spin_lock_init(&mdev->peer_seq_lock);
1871 spin_lock_init(&mdev->epoch_lock);
1872
1873 INIT_LIST_HEAD(&mdev->active_ee);
1874 INIT_LIST_HEAD(&mdev->sync_ee);
1875 INIT_LIST_HEAD(&mdev->done_ee);
1876 INIT_LIST_HEAD(&mdev->read_ee);
1877 INIT_LIST_HEAD(&mdev->net_ee);
1878 INIT_LIST_HEAD(&mdev->resync_reads);
b411b363
PR
1879 INIT_LIST_HEAD(&mdev->resync_work.list);
1880 INIT_LIST_HEAD(&mdev->unplug_work.list);
e9e6f3ec 1881 INIT_LIST_HEAD(&mdev->go_diskless.list);
b411b363 1882 INIT_LIST_HEAD(&mdev->md_sync_work.list);
c4752ef1 1883 INIT_LIST_HEAD(&mdev->start_resync_work.list);
b411b363 1884 INIT_LIST_HEAD(&mdev->bm_io_work.w.list);
0ced55a3 1885
794abb75 1886 mdev->resync_work.cb = w_resync_timer;
b411b363 1887 mdev->unplug_work.cb = w_send_write_hint;
e9e6f3ec 1888 mdev->go_diskless.cb = w_go_diskless;
b411b363
PR
1889 mdev->md_sync_work.cb = w_md_sync;
1890 mdev->bm_io_work.w.cb = w_bitmap_io;
370a43e7 1891 mdev->start_resync_work.cb = w_start_resync;
a21e9298
PR
1892
1893 mdev->resync_work.mdev = mdev;
1894 mdev->unplug_work.mdev = mdev;
1895 mdev->go_diskless.mdev = mdev;
1896 mdev->md_sync_work.mdev = mdev;
1897 mdev->bm_io_work.w.mdev = mdev;
1898 mdev->start_resync_work.mdev = mdev;
1899
b411b363
PR
1900 init_timer(&mdev->resync_timer);
1901 init_timer(&mdev->md_sync_timer);
370a43e7 1902 init_timer(&mdev->start_resync_timer);
7fde2be9 1903 init_timer(&mdev->request_timer);
b411b363
PR
1904 mdev->resync_timer.function = resync_timer_fn;
1905 mdev->resync_timer.data = (unsigned long) mdev;
1906 mdev->md_sync_timer.function = md_sync_timer_fn;
1907 mdev->md_sync_timer.data = (unsigned long) mdev;
370a43e7
PR
1908 mdev->start_resync_timer.function = start_resync_timer_fn;
1909 mdev->start_resync_timer.data = (unsigned long) mdev;
7fde2be9
PR
1910 mdev->request_timer.function = request_timer_fn;
1911 mdev->request_timer.data = (unsigned long) mdev;
b411b363
PR
1912
1913 init_waitqueue_head(&mdev->misc_wait);
1914 init_waitqueue_head(&mdev->state_wait);
1915 init_waitqueue_head(&mdev->ee_wait);
1916 init_waitqueue_head(&mdev->al_wait);
1917 init_waitqueue_head(&mdev->seq_wait);
1918
fd340c12 1919 /* mdev->tconn->agreed_pro_version gets initialized in drbd_connect() */
2451fc3b 1920 mdev->write_ordering = WO_bdev_flush;
b411b363 1921 mdev->resync_wenr = LC_FREE;
99432fcc
PR
1922 mdev->peer_max_bio_size = DRBD_MAX_BIO_SIZE_SAFE;
1923 mdev->local_max_bio_size = DRBD_MAX_BIO_SIZE_SAFE;
b411b363
PR
1924}
1925
1926void drbd_mdev_cleanup(struct drbd_conf *mdev)
1927{
1d7734a0 1928 int i;
e6b3ea83 1929 if (mdev->tconn->receiver.t_state != NONE)
b411b363 1930 dev_err(DEV, "ASSERT FAILED: receiver t_state == %d expected 0.\n",
e6b3ea83 1931 mdev->tconn->receiver.t_state);
b411b363
PR
1932
1933 /* no need to lock it, I'm the only thread alive */
1934 if (atomic_read(&mdev->current_epoch->epoch_size) != 0)
1935 dev_err(DEV, "epoch_size:%d\n", atomic_read(&mdev->current_epoch->epoch_size));
1936 mdev->al_writ_cnt =
1937 mdev->bm_writ_cnt =
1938 mdev->read_cnt =
1939 mdev->recv_cnt =
1940 mdev->send_cnt =
1941 mdev->writ_cnt =
1942 mdev->p_size =
1943 mdev->rs_start =
1944 mdev->rs_total =
1d7734a0
LE
1945 mdev->rs_failed = 0;
1946 mdev->rs_last_events = 0;
0f0601f4 1947 mdev->rs_last_sect_ev = 0;
1d7734a0
LE
1948 for (i = 0; i < DRBD_SYNC_MARKS; i++) {
1949 mdev->rs_mark_left[i] = 0;
1950 mdev->rs_mark_time[i] = 0;
1951 }
89e58e75 1952 D_ASSERT(mdev->tconn->net_conf == NULL);
b411b363
PR
1953
1954 drbd_set_my_capacity(mdev, 0);
1955 if (mdev->bitmap) {
1956 /* maybe never allocated. */
02d9a94b 1957 drbd_bm_resize(mdev, 0, 1);
b411b363
PR
1958 drbd_bm_cleanup(mdev);
1959 }
1960
1961 drbd_free_resources(mdev);
0778286a 1962 clear_bit(AL_SUSPENDED, &mdev->flags);
b411b363
PR
1963
1964 /*
1965 * currently we drbd_init_ee only on module load, so
1966 * we may do drbd_release_ee only on module unload!
1967 */
1968 D_ASSERT(list_empty(&mdev->active_ee));
1969 D_ASSERT(list_empty(&mdev->sync_ee));
1970 D_ASSERT(list_empty(&mdev->done_ee));
1971 D_ASSERT(list_empty(&mdev->read_ee));
1972 D_ASSERT(list_empty(&mdev->net_ee));
1973 D_ASSERT(list_empty(&mdev->resync_reads));
e42325a5
PR
1974 D_ASSERT(list_empty(&mdev->tconn->data.work.q));
1975 D_ASSERT(list_empty(&mdev->tconn->meta.work.q));
b411b363
PR
1976 D_ASSERT(list_empty(&mdev->resync_work.list));
1977 D_ASSERT(list_empty(&mdev->unplug_work.list));
e9e6f3ec 1978 D_ASSERT(list_empty(&mdev->go_diskless.list));
2265b473
LE
1979
1980 drbd_set_defaults(mdev);
b411b363
PR
1981}
1982
1983
1984static void drbd_destroy_mempools(void)
1985{
1986 struct page *page;
1987
1988 while (drbd_pp_pool) {
1989 page = drbd_pp_pool;
1990 drbd_pp_pool = (struct page *)page_private(page);
1991 __free_page(page);
1992 drbd_pp_vacant--;
1993 }
1994
1995 /* D_ASSERT(atomic_read(&drbd_pp_vacant)==0); */
1996
da4a75d2
LE
1997 if (drbd_md_io_bio_set)
1998 bioset_free(drbd_md_io_bio_set);
35abf594
LE
1999 if (drbd_md_io_page_pool)
2000 mempool_destroy(drbd_md_io_page_pool);
b411b363
PR
2001 if (drbd_ee_mempool)
2002 mempool_destroy(drbd_ee_mempool);
2003 if (drbd_request_mempool)
2004 mempool_destroy(drbd_request_mempool);
2005 if (drbd_ee_cache)
2006 kmem_cache_destroy(drbd_ee_cache);
2007 if (drbd_request_cache)
2008 kmem_cache_destroy(drbd_request_cache);
2009 if (drbd_bm_ext_cache)
2010 kmem_cache_destroy(drbd_bm_ext_cache);
2011 if (drbd_al_ext_cache)
2012 kmem_cache_destroy(drbd_al_ext_cache);
2013
da4a75d2 2014 drbd_md_io_bio_set = NULL;
35abf594 2015 drbd_md_io_page_pool = NULL;
b411b363
PR
2016 drbd_ee_mempool = NULL;
2017 drbd_request_mempool = NULL;
2018 drbd_ee_cache = NULL;
2019 drbd_request_cache = NULL;
2020 drbd_bm_ext_cache = NULL;
2021 drbd_al_ext_cache = NULL;
2022
2023 return;
2024}
2025
2026static int drbd_create_mempools(void)
2027{
2028 struct page *page;
1816a2b4 2029 const int number = (DRBD_MAX_BIO_SIZE/PAGE_SIZE) * minor_count;
b411b363
PR
2030 int i;
2031
2032 /* prepare our caches and mempools */
2033 drbd_request_mempool = NULL;
2034 drbd_ee_cache = NULL;
2035 drbd_request_cache = NULL;
2036 drbd_bm_ext_cache = NULL;
2037 drbd_al_ext_cache = NULL;
2038 drbd_pp_pool = NULL;
35abf594 2039 drbd_md_io_page_pool = NULL;
da4a75d2 2040 drbd_md_io_bio_set = NULL;
b411b363
PR
2041
2042 /* caches */
2043 drbd_request_cache = kmem_cache_create(
2044 "drbd_req", sizeof(struct drbd_request), 0, 0, NULL);
2045 if (drbd_request_cache == NULL)
2046 goto Enomem;
2047
2048 drbd_ee_cache = kmem_cache_create(
f6ffca9f 2049 "drbd_ee", sizeof(struct drbd_peer_request), 0, 0, NULL);
b411b363
PR
2050 if (drbd_ee_cache == NULL)
2051 goto Enomem;
2052
2053 drbd_bm_ext_cache = kmem_cache_create(
2054 "drbd_bm", sizeof(struct bm_extent), 0, 0, NULL);
2055 if (drbd_bm_ext_cache == NULL)
2056 goto Enomem;
2057
2058 drbd_al_ext_cache = kmem_cache_create(
2059 "drbd_al", sizeof(struct lc_element), 0, 0, NULL);
2060 if (drbd_al_ext_cache == NULL)
2061 goto Enomem;
2062
2063 /* mempools */
da4a75d2
LE
2064 drbd_md_io_bio_set = bioset_create(DRBD_MIN_POOL_PAGES, 0);
2065 if (drbd_md_io_bio_set == NULL)
2066 goto Enomem;
2067
35abf594
LE
2068 drbd_md_io_page_pool = mempool_create_page_pool(DRBD_MIN_POOL_PAGES, 0);
2069 if (drbd_md_io_page_pool == NULL)
2070 goto Enomem;
2071
b411b363
PR
2072 drbd_request_mempool = mempool_create(number,
2073 mempool_alloc_slab, mempool_free_slab, drbd_request_cache);
2074 if (drbd_request_mempool == NULL)
2075 goto Enomem;
2076
2077 drbd_ee_mempool = mempool_create(number,
2078 mempool_alloc_slab, mempool_free_slab, drbd_ee_cache);
2027ae1f 2079 if (drbd_ee_mempool == NULL)
b411b363
PR
2080 goto Enomem;
2081
2082 /* drbd's page pool */
2083 spin_lock_init(&drbd_pp_lock);
2084
2085 for (i = 0; i < number; i++) {
2086 page = alloc_page(GFP_HIGHUSER);
2087 if (!page)
2088 goto Enomem;
2089 set_page_private(page, (unsigned long)drbd_pp_pool);
2090 drbd_pp_pool = page;
2091 }
2092 drbd_pp_vacant = number;
2093
2094 return 0;
2095
2096Enomem:
2097 drbd_destroy_mempools(); /* in case we allocated some */
2098 return -ENOMEM;
2099}
2100
2101static int drbd_notify_sys(struct notifier_block *this, unsigned long code,
2102 void *unused)
2103{
2104 /* just so we have it. you never know what interesting things we
2105 * might want to do here some day...
2106 */
2107
2108 return NOTIFY_DONE;
2109}
2110
2111static struct notifier_block drbd_notifier = {
2112 .notifier_call = drbd_notify_sys,
2113};
2114
2115static void drbd_release_ee_lists(struct drbd_conf *mdev)
2116{
2117 int rr;
2118
2119 rr = drbd_release_ee(mdev, &mdev->active_ee);
2120 if (rr)
2121 dev_err(DEV, "%d EEs in active list found!\n", rr);
2122
2123 rr = drbd_release_ee(mdev, &mdev->sync_ee);
2124 if (rr)
2125 dev_err(DEV, "%d EEs in sync list found!\n", rr);
2126
2127 rr = drbd_release_ee(mdev, &mdev->read_ee);
2128 if (rr)
2129 dev_err(DEV, "%d EEs in read list found!\n", rr);
2130
2131 rr = drbd_release_ee(mdev, &mdev->done_ee);
2132 if (rr)
2133 dev_err(DEV, "%d EEs in done list found!\n", rr);
2134
2135 rr = drbd_release_ee(mdev, &mdev->net_ee);
2136 if (rr)
2137 dev_err(DEV, "%d EEs in net list found!\n", rr);
2138}
2139
774b3055
PR
2140/* caution. no locking. */
2141void drbd_delete_device(unsigned int minor)
b411b363
PR
2142{
2143 struct drbd_conf *mdev = minor_to_mdev(minor);
2144
2145 if (!mdev)
2146 return;
2147
569083c0
LE
2148 idr_remove(&mdev->tconn->volumes, mdev->vnr);
2149 idr_remove(&minors, minor);
2150 synchronize_rcu();
774b3055 2151
b411b363 2152 /* paranoia asserts */
70dc65e1 2153 D_ASSERT(mdev->open_cnt == 0);
e42325a5 2154 D_ASSERT(list_empty(&mdev->tconn->data.work.q));
b411b363
PR
2155 /* end paranoia asserts */
2156
2157 del_gendisk(mdev->vdisk);
2158
2159 /* cleanup stuff that may have been allocated during
2160 * device (re-)configuration or state changes */
2161
2162 if (mdev->this_bdev)
2163 bdput(mdev->this_bdev);
2164
2165 drbd_free_resources(mdev);
2166
2167 drbd_release_ee_lists(mdev);
2168
b411b363
PR
2169 lc_destroy(mdev->act_log);
2170 lc_destroy(mdev->resync);
2171
2172 kfree(mdev->p_uuid);
2173 /* mdev->p_uuid = NULL; */
2174
b411b363
PR
2175 /* cleanup the rest that has been
2176 * allocated from drbd_new_device
2177 * and actually free the mdev itself */
2178 drbd_free_mdev(mdev);
2179}
2180
2181static void drbd_cleanup(void)
2182{
2183 unsigned int i;
81a5d60e 2184 struct drbd_conf *mdev;
b411b363
PR
2185
2186 unregister_reboot_notifier(&drbd_notifier);
2187
17a93f30
LE
2188 /* first remove proc,
2189 * drbdsetup uses it's presence to detect
2190 * whether DRBD is loaded.
2191 * If we would get stuck in proc removal,
2192 * but have netlink already deregistered,
2193 * some drbdsetup commands may wait forever
2194 * for an answer.
2195 */
2196 if (drbd_proc)
2197 remove_proc_entry("drbd", NULL);
2198
3b98c0c2 2199 drbd_genl_unregister();
b411b363 2200
81a5d60e
PR
2201 idr_for_each_entry(&minors, mdev, i)
2202 drbd_delete_device(i);
2203 drbd_destroy_mempools();
b411b363
PR
2204 unregister_blkdev(DRBD_MAJOR, "drbd");
2205
81a5d60e
PR
2206 idr_destroy(&minors);
2207
b411b363
PR
2208 printk(KERN_INFO "drbd: module cleanup done.\n");
2209}
2210
2211/**
2212 * drbd_congested() - Callback for pdflush
2213 * @congested_data: User data
2214 * @bdi_bits: Bits pdflush is currently interested in
2215 *
2216 * Returns 1<<BDI_async_congested and/or 1<<BDI_sync_congested if we are congested.
2217 */
2218static int drbd_congested(void *congested_data, int bdi_bits)
2219{
2220 struct drbd_conf *mdev = congested_data;
2221 struct request_queue *q;
2222 char reason = '-';
2223 int r = 0;
2224
1b881ef7 2225 if (!may_inc_ap_bio(mdev)) {
b411b363
PR
2226 /* DRBD has frozen IO */
2227 r = bdi_bits;
2228 reason = 'd';
2229 goto out;
2230 }
2231
2232 if (get_ldev(mdev)) {
2233 q = bdev_get_queue(mdev->ldev->backing_bdev);
2234 r = bdi_congested(&q->backing_dev_info, bdi_bits);
2235 put_ldev(mdev);
2236 if (r)
2237 reason = 'b';
2238 }
2239
01a311a5 2240 if (bdi_bits & (1 << BDI_async_congested) && test_bit(NET_CONGESTED, &mdev->tconn->flags)) {
b411b363
PR
2241 r |= (1 << BDI_async_congested);
2242 reason = reason == 'b' ? 'a' : 'n';
2243 }
2244
2245out:
2246 mdev->congestion_reason = reason;
2247 return r;
2248}
2249
6699b655
PR
2250static void drbd_init_workqueue(struct drbd_work_queue* wq)
2251{
2252 sema_init(&wq->s, 0);
2253 spin_lock_init(&wq->q_lock);
2254 INIT_LIST_HEAD(&wq->q);
2255}
2256
1aba4d7f
PR
2257struct drbd_tconn *conn_by_name(const char *name)
2258{
2259 struct drbd_tconn *tconn;
2260
3b98c0c2
LE
2261 if (!name || !name[0])
2262 return NULL;
2263
543cc10b 2264 mutex_lock(&drbd_cfg_mutex);
1aba4d7f
PR
2265 list_for_each_entry(tconn, &drbd_tconns, all_tconn) {
2266 if (!strcmp(tconn->name, name))
2267 goto found;
2268 }
2269 tconn = NULL;
2270found:
543cc10b 2271 mutex_unlock(&drbd_cfg_mutex);
1aba4d7f
PR
2272 return tconn;
2273}
2274
e6ef8a5c
AG
2275static int drbd_alloc_socket(struct drbd_socket *socket)
2276{
2277 socket->rbuf = (void *) __get_free_page(GFP_KERNEL);
2278 if (!socket->rbuf)
2279 return -ENOMEM;
2280 return 0;
2281}
2282
2283static void drbd_free_socket(struct drbd_socket *socket)
2284{
2285 free_page((unsigned long) socket->rbuf);
2286}
2287
3b98c0c2 2288struct drbd_tconn *drbd_new_tconn(const char *name)
2111438b
PR
2289{
2290 struct drbd_tconn *tconn;
2291
2292 tconn = kzalloc(sizeof(struct drbd_tconn), GFP_KERNEL);
2293 if (!tconn)
2294 return NULL;
2295
2296 tconn->name = kstrdup(name, GFP_KERNEL);
2297 if (!tconn->name)
2298 goto fail;
2299
e6ef8a5c
AG
2300 if (drbd_alloc_socket(&tconn->data))
2301 goto fail;
2302 if (drbd_alloc_socket(&tconn->meta))
2303 goto fail;
2304
774b3055
PR
2305 if (!zalloc_cpumask_var(&tconn->cpu_mask, GFP_KERNEL))
2306 goto fail;
2307
2f5cdd0b
PR
2308 if (!tl_init(tconn))
2309 goto fail;
2310
bbeb641c 2311 tconn->cstate = C_STANDALONE;
8410da8f 2312 mutex_init(&tconn->cstate_mutex);
6699b655 2313 spin_lock_init(&tconn->req_lock);
b2fb6dbe
PR
2314 atomic_set(&tconn->net_cnt, 0);
2315 init_waitqueue_head(&tconn->net_cnt_wait);
2a67d8b9 2316 init_waitqueue_head(&tconn->ping_wait);
062e879c 2317 idr_init(&tconn->volumes);
b2fb6dbe 2318
6699b655
PR
2319 drbd_init_workqueue(&tconn->data.work);
2320 mutex_init(&tconn->data.mutex);
2321
2322 drbd_init_workqueue(&tconn->meta.work);
2323 mutex_init(&tconn->meta.mutex);
2324
392c8801
PR
2325 drbd_thread_init(tconn, &tconn->receiver, drbdd_init, "receiver");
2326 drbd_thread_init(tconn, &tconn->worker, drbd_worker, "worker");
2327 drbd_thread_init(tconn, &tconn->asender, drbd_asender, "asender");
2328
f399002e
LE
2329 tconn->res_opts = (struct res_opts) {
2330 {}, 0, /* cpu_mask */
2331 DRBD_ON_NO_DATA_DEF, /* on_no_data */
2332 };
2333
543cc10b
LE
2334 mutex_lock(&drbd_cfg_mutex);
2335 list_add_tail(&tconn->all_tconn, &drbd_tconns);
2336 mutex_unlock(&drbd_cfg_mutex);
2111438b
PR
2337
2338 return tconn;
2339
2340fail:
2f5cdd0b 2341 tl_cleanup(tconn);
774b3055 2342 free_cpumask_var(tconn->cpu_mask);
e6ef8a5c
AG
2343 drbd_free_socket(&tconn->meta);
2344 drbd_free_socket(&tconn->data);
2111438b
PR
2345 kfree(tconn->name);
2346 kfree(tconn);
2347
2348 return NULL;
2349}
2350
2351void drbd_free_tconn(struct drbd_tconn *tconn)
2352{
2111438b 2353 list_del(&tconn->all_tconn);
062e879c 2354 idr_destroy(&tconn->volumes);
2111438b 2355
774b3055 2356 free_cpumask_var(tconn->cpu_mask);
e6ef8a5c
AG
2357 drbd_free_socket(&tconn->meta);
2358 drbd_free_socket(&tconn->data);
2111438b 2359 kfree(tconn->name);
b42a70ad
PR
2360 kfree(tconn->int_dig_out);
2361 kfree(tconn->int_dig_in);
2362 kfree(tconn->int_dig_vv);
2111438b
PR
2363 kfree(tconn);
2364}
2365
774b3055 2366enum drbd_ret_code conn_new_minor(struct drbd_tconn *tconn, unsigned int minor, int vnr)
b411b363
PR
2367{
2368 struct drbd_conf *mdev;
2369 struct gendisk *disk;
2370 struct request_queue *q;
774b3055 2371 int vnr_got = vnr;
81a5d60e 2372 int minor_got = minor;
8432b314 2373 enum drbd_ret_code err = ERR_NOMEM;
774b3055
PR
2374
2375 mdev = minor_to_mdev(minor);
2376 if (mdev)
2377 return ERR_MINOR_EXISTS;
b411b363
PR
2378
2379 /* GFP_KERNEL, we are outside of all write-out paths */
2380 mdev = kzalloc(sizeof(struct drbd_conf), GFP_KERNEL);
2381 if (!mdev)
774b3055
PR
2382 return ERR_NOMEM;
2383
2384 mdev->tconn = tconn;
b411b363 2385 mdev->minor = minor;
3b98c0c2 2386 mdev->vnr = vnr;
b411b363
PR
2387
2388 drbd_init_set_defaults(mdev);
2389
2390 q = blk_alloc_queue(GFP_KERNEL);
2391 if (!q)
2392 goto out_no_q;
2393 mdev->rq_queue = q;
2394 q->queuedata = mdev;
b411b363
PR
2395
2396 disk = alloc_disk(1);
2397 if (!disk)
2398 goto out_no_disk;
2399 mdev->vdisk = disk;
2400
81e84650 2401 set_disk_ro(disk, true);
b411b363
PR
2402
2403 disk->queue = q;
2404 disk->major = DRBD_MAJOR;
2405 disk->first_minor = minor;
2406 disk->fops = &drbd_ops;
2407 sprintf(disk->disk_name, "drbd%d", minor);
2408 disk->private_data = mdev;
2409
2410 mdev->this_bdev = bdget(MKDEV(DRBD_MAJOR, minor));
2411 /* we have no partitions. we contain only ourselves. */
2412 mdev->this_bdev->bd_contains = mdev->this_bdev;
2413
2414 q->backing_dev_info.congested_fn = drbd_congested;
2415 q->backing_dev_info.congested_data = mdev;
2416
2f58dcfc 2417 blk_queue_make_request(q, drbd_make_request);
99432fcc
PR
2418 /* Setting the max_hw_sectors to an odd value of 8kibyte here
2419 This triggers a max_bio_size message upon first attach or connect */
2420 blk_queue_max_hw_sectors(q, DRBD_MAX_BIO_SIZE_SAFE >> 8);
b411b363
PR
2421 blk_queue_bounce_limit(q, BLK_BOUNCE_ANY);
2422 blk_queue_merge_bvec(q, drbd_merge_bvec);
87eeee41 2423 q->queue_lock = &mdev->tconn->req_lock; /* needed since we use */
b411b363
PR
2424
2425 mdev->md_io_page = alloc_page(GFP_KERNEL);
2426 if (!mdev->md_io_page)
2427 goto out_no_io_page;
2428
2429 if (drbd_bm_init(mdev))
2430 goto out_no_bitmap;
dac1389c 2431 mdev->read_requests = RB_ROOT;
de696716 2432 mdev->write_requests = RB_ROOT;
b411b363 2433
b411b363
PR
2434 mdev->current_epoch = kzalloc(sizeof(struct drbd_epoch), GFP_KERNEL);
2435 if (!mdev->current_epoch)
2436 goto out_no_epoch;
2437
2438 INIT_LIST_HEAD(&mdev->current_epoch->list);
2439 mdev->epochs = 1;
2440
81a5d60e 2441 if (!idr_pre_get(&minors, GFP_KERNEL))
8432b314
LE
2442 goto out_no_minor_idr;
2443 if (idr_get_new_above(&minors, mdev, minor, &minor_got))
2444 goto out_no_minor_idr;
81a5d60e 2445 if (minor_got != minor) {
8432b314
LE
2446 err = ERR_MINOR_EXISTS;
2447 drbd_msg_put_info("requested minor exists already");
569083c0 2448 goto out_idr_remove_minor;
81a5d60e 2449 }
8432b314
LE
2450
2451 if (!idr_pre_get(&tconn->volumes, GFP_KERNEL))
2452 goto out_idr_remove_minor;
2453 if (idr_get_new_above(&tconn->volumes, mdev, vnr, &vnr_got))
2454 goto out_idr_remove_minor;
2455 if (vnr_got != vnr) {
2456 err = ERR_INVALID_REQUEST;
2457 drbd_msg_put_info("requested volume exists already");
2458 goto out_idr_remove_vol;
2459 }
774b3055
PR
2460 add_disk(disk);
2461
2325eb66
PR
2462 /* inherit the connection state */
2463 mdev->state.conn = tconn->cstate;
2464 if (mdev->state.conn == C_WF_REPORT_PARAMS)
2465 drbd_connected(vnr, mdev, tconn);
2466
774b3055 2467 return NO_ERROR;
b411b363 2468
569083c0
LE
2469out_idr_remove_vol:
2470 idr_remove(&tconn->volumes, vnr_got);
8432b314
LE
2471out_idr_remove_minor:
2472 idr_remove(&minors, minor_got);
569083c0 2473 synchronize_rcu();
8432b314 2474out_no_minor_idr:
81a5d60e 2475 kfree(mdev->current_epoch);
b411b363 2476out_no_epoch:
b411b363
PR
2477 drbd_bm_cleanup(mdev);
2478out_no_bitmap:
2479 __free_page(mdev->md_io_page);
2480out_no_io_page:
2481 put_disk(disk);
2482out_no_disk:
2483 blk_cleanup_queue(q);
2484out_no_q:
b411b363 2485 kfree(mdev);
8432b314 2486 return err;
b411b363
PR
2487}
2488
2489/* counterpart of drbd_new_device.
2490 * last part of drbd_delete_device. */
2491void drbd_free_mdev(struct drbd_conf *mdev)
2492{
2493 kfree(mdev->current_epoch);
b411b363
PR
2494 if (mdev->bitmap) /* should no longer be there. */
2495 drbd_bm_cleanup(mdev);
2496 __free_page(mdev->md_io_page);
2497 put_disk(mdev->vdisk);
2498 blk_cleanup_queue(mdev->rq_queue);
b411b363
PR
2499 kfree(mdev);
2500}
2501
2502
2503int __init drbd_init(void)
2504{
2505 int err;
2506
fd340c12
PR
2507 BUILD_BUG_ON(sizeof(struct p_header80) != sizeof(struct p_header95));
2508 BUILD_BUG_ON(sizeof(struct p_handshake) != 80);
b411b363 2509
2b8a90b5 2510 if (minor_count < DRBD_MINOR_COUNT_MIN || minor_count > DRBD_MINOR_COUNT_MAX) {
b411b363 2511 printk(KERN_ERR
81a5d60e 2512 "drbd: invalid minor_count (%d)\n", minor_count);
b411b363
PR
2513#ifdef MODULE
2514 return -EINVAL;
2515#else
2516 minor_count = 8;
2517#endif
2518 }
2519
b411b363
PR
2520 err = register_blkdev(DRBD_MAJOR, "drbd");
2521 if (err) {
2522 printk(KERN_ERR
2523 "drbd: unable to register block device major %d\n",
2524 DRBD_MAJOR);
2525 return err;
2526 }
2527
3b98c0c2
LE
2528 err = drbd_genl_register();
2529 if (err) {
2530 printk(KERN_ERR "drbd: unable to register generic netlink family\n");
2531 goto fail;
2532 }
2533
2534
b411b363
PR
2535 register_reboot_notifier(&drbd_notifier);
2536
2537 /*
2538 * allocate all necessary structs
2539 */
2540 err = -ENOMEM;
2541
2542 init_waitqueue_head(&drbd_pp_wait);
2543
2544 drbd_proc = NULL; /* play safe for drbd_cleanup */
81a5d60e 2545 idr_init(&minors);
b411b363
PR
2546
2547 err = drbd_create_mempools();
2548 if (err)
3b98c0c2 2549 goto fail;
b411b363 2550
8c484ee4 2551 drbd_proc = proc_create_data("drbd", S_IFREG | S_IRUGO , NULL, &drbd_proc_fops, NULL);
b411b363
PR
2552 if (!drbd_proc) {
2553 printk(KERN_ERR "drbd: unable to register proc file\n");
3b98c0c2 2554 goto fail;
b411b363
PR
2555 }
2556
2557 rwlock_init(&global_state_lock);
2111438b 2558 INIT_LIST_HEAD(&drbd_tconns);
b411b363
PR
2559
2560 printk(KERN_INFO "drbd: initialized. "
2561 "Version: " REL_VERSION " (api:%d/proto:%d-%d)\n",
2562 API_VERSION, PRO_VERSION_MIN, PRO_VERSION_MAX);
2563 printk(KERN_INFO "drbd: %s\n", drbd_buildtag());
2564 printk(KERN_INFO "drbd: registered as block device major %d\n",
2565 DRBD_MAJOR);
b411b363
PR
2566
2567 return 0; /* Success! */
2568
3b98c0c2 2569fail:
b411b363
PR
2570 drbd_cleanup();
2571 if (err == -ENOMEM)
2572 /* currently always the case */
2573 printk(KERN_ERR "drbd: ran out of memory\n");
2574 else
2575 printk(KERN_ERR "drbd: initialization failure\n");
2576 return err;
2577}
2578
2579void drbd_free_bc(struct drbd_backing_dev *ldev)
2580{
2581 if (ldev == NULL)
2582 return;
2583
e525fd89
TH
2584 blkdev_put(ldev->backing_bdev, FMODE_READ | FMODE_WRITE | FMODE_EXCL);
2585 blkdev_put(ldev->md_bdev, FMODE_READ | FMODE_WRITE | FMODE_EXCL);
b411b363
PR
2586
2587 kfree(ldev);
2588}
2589
360cc740
PR
2590void drbd_free_sock(struct drbd_tconn *tconn)
2591{
2592 if (tconn->data.socket) {
2593 mutex_lock(&tconn->data.mutex);
2594 kernel_sock_shutdown(tconn->data.socket, SHUT_RDWR);
2595 sock_release(tconn->data.socket);
2596 tconn->data.socket = NULL;
2597 mutex_unlock(&tconn->data.mutex);
b411b363 2598 }
360cc740
PR
2599 if (tconn->meta.socket) {
2600 mutex_lock(&tconn->meta.mutex);
2601 kernel_sock_shutdown(tconn->meta.socket, SHUT_RDWR);
2602 sock_release(tconn->meta.socket);
2603 tconn->meta.socket = NULL;
2604 mutex_unlock(&tconn->meta.mutex);
b411b363
PR
2605 }
2606}
2607
2608
2609void drbd_free_resources(struct drbd_conf *mdev)
2610{
f399002e
LE
2611 crypto_free_hash(mdev->tconn->csums_tfm);
2612 mdev->tconn->csums_tfm = NULL;
2613 crypto_free_hash(mdev->tconn->verify_tfm);
2614 mdev->tconn->verify_tfm = NULL;
a0638456
PR
2615 crypto_free_hash(mdev->tconn->cram_hmac_tfm);
2616 mdev->tconn->cram_hmac_tfm = NULL;
2617 crypto_free_hash(mdev->tconn->integrity_w_tfm);
2618 mdev->tconn->integrity_w_tfm = NULL;
2619 crypto_free_hash(mdev->tconn->integrity_r_tfm);
2620 mdev->tconn->integrity_r_tfm = NULL;
b411b363 2621
360cc740 2622 drbd_free_sock(mdev->tconn);
b411b363
PR
2623
2624 __no_warn(local,
2625 drbd_free_bc(mdev->ldev);
2626 mdev->ldev = NULL;);
2627}
2628
2629/* meta data management */
2630
2631struct meta_data_on_disk {
2632 u64 la_size; /* last agreed size. */
2633 u64 uuid[UI_SIZE]; /* UUIDs. */
2634 u64 device_uuid;
2635 u64 reserved_u64_1;
2636 u32 flags; /* MDF */
2637 u32 magic;
2638 u32 md_size_sect;
2639 u32 al_offset; /* offset to this block */
2640 u32 al_nr_extents; /* important for restoring the AL */
f399002e 2641 /* `-- act_log->nr_elements <-- ldev->dc.al_extents */
b411b363
PR
2642 u32 bm_offset; /* offset to the bitmap, from here */
2643 u32 bm_bytes_per_bit; /* BM_BLOCK_SIZE */
99432fcc
PR
2644 u32 la_peer_max_bio_size; /* last peer max_bio_size */
2645 u32 reserved_u32[3];
b411b363
PR
2646
2647} __packed;
2648
2649/**
2650 * drbd_md_sync() - Writes the meta data super block if the MD_DIRTY flag bit is set
2651 * @mdev: DRBD device.
2652 */
2653void drbd_md_sync(struct drbd_conf *mdev)
2654{
2655 struct meta_data_on_disk *buffer;
2656 sector_t sector;
2657 int i;
2658
ee15b038
LE
2659 del_timer(&mdev->md_sync_timer);
2660 /* timer may be rearmed by drbd_md_mark_dirty() now. */
b411b363
PR
2661 if (!test_and_clear_bit(MD_DIRTY, &mdev->flags))
2662 return;
b411b363
PR
2663
2664 /* We use here D_FAILED and not D_ATTACHING because we try to write
2665 * metadata even if we detach due to a disk failure! */
2666 if (!get_ldev_if_state(mdev, D_FAILED))
2667 return;
2668
b411b363
PR
2669 mutex_lock(&mdev->md_io_mutex);
2670 buffer = (struct meta_data_on_disk *)page_address(mdev->md_io_page);
2671 memset(buffer, 0, 512);
2672
2673 buffer->la_size = cpu_to_be64(drbd_get_capacity(mdev->this_bdev));
2674 for (i = UI_CURRENT; i < UI_SIZE; i++)
2675 buffer->uuid[i] = cpu_to_be64(mdev->ldev->md.uuid[i]);
2676 buffer->flags = cpu_to_be32(mdev->ldev->md.flags);
2677 buffer->magic = cpu_to_be32(DRBD_MD_MAGIC);
2678
2679 buffer->md_size_sect = cpu_to_be32(mdev->ldev->md.md_size_sect);
2680 buffer->al_offset = cpu_to_be32(mdev->ldev->md.al_offset);
2681 buffer->al_nr_extents = cpu_to_be32(mdev->act_log->nr_elements);
2682 buffer->bm_bytes_per_bit = cpu_to_be32(BM_BLOCK_SIZE);
2683 buffer->device_uuid = cpu_to_be64(mdev->ldev->md.device_uuid);
2684
2685 buffer->bm_offset = cpu_to_be32(mdev->ldev->md.bm_offset);
99432fcc 2686 buffer->la_peer_max_bio_size = cpu_to_be32(mdev->peer_max_bio_size);
b411b363
PR
2687
2688 D_ASSERT(drbd_md_ss__(mdev, mdev->ldev) == mdev->ldev->md.md_offset);
2689 sector = mdev->ldev->md.md_offset;
2690
3fbf4d21 2691 if (drbd_md_sync_page_io(mdev, mdev->ldev, sector, WRITE)) {
b411b363
PR
2692 /* this was a try anyways ... */
2693 dev_err(DEV, "meta data update failed!\n");
81e84650 2694 drbd_chk_io_error(mdev, 1, true);
b411b363
PR
2695 }
2696
2697 /* Update mdev->ldev->md.la_size_sect,
2698 * since we updated it on metadata. */
2699 mdev->ldev->md.la_size_sect = drbd_get_capacity(mdev->this_bdev);
2700
2701 mutex_unlock(&mdev->md_io_mutex);
2702 put_ldev(mdev);
2703}
2704
2705/**
2706 * drbd_md_read() - Reads in the meta data super block
2707 * @mdev: DRBD device.
2708 * @bdev: Device from which the meta data should be read in.
2709 *
116676ca 2710 * Return 0 (NO_ERROR) on success, and an enum drbd_ret_code in case
b411b363
PR
2711 * something goes wrong. Currently only: ERR_IO_MD_DISK, ERR_MD_INVALID.
2712 */
2713int drbd_md_read(struct drbd_conf *mdev, struct drbd_backing_dev *bdev)
2714{
2715 struct meta_data_on_disk *buffer;
2716 int i, rv = NO_ERROR;
2717
2718 if (!get_ldev_if_state(mdev, D_ATTACHING))
2719 return ERR_IO_MD_DISK;
2720
b411b363
PR
2721 mutex_lock(&mdev->md_io_mutex);
2722 buffer = (struct meta_data_on_disk *)page_address(mdev->md_io_page);
2723
3fbf4d21 2724 if (drbd_md_sync_page_io(mdev, bdev, bdev->md.md_offset, READ)) {
25985edc 2725 /* NOTE: can't do normal error processing here as this is
b411b363
PR
2726 called BEFORE disk is attached */
2727 dev_err(DEV, "Error while reading metadata.\n");
2728 rv = ERR_IO_MD_DISK;
2729 goto err;
2730 }
2731
e7fad8af 2732 if (buffer->magic != cpu_to_be32(DRBD_MD_MAGIC)) {
b411b363
PR
2733 dev_err(DEV, "Error while reading metadata, magic not found.\n");
2734 rv = ERR_MD_INVALID;
2735 goto err;
2736 }
2737 if (be32_to_cpu(buffer->al_offset) != bdev->md.al_offset) {
2738 dev_err(DEV, "unexpected al_offset: %d (expected %d)\n",
2739 be32_to_cpu(buffer->al_offset), bdev->md.al_offset);
2740 rv = ERR_MD_INVALID;
2741 goto err;
2742 }
2743 if (be32_to_cpu(buffer->bm_offset) != bdev->md.bm_offset) {
2744 dev_err(DEV, "unexpected bm_offset: %d (expected %d)\n",
2745 be32_to_cpu(buffer->bm_offset), bdev->md.bm_offset);
2746 rv = ERR_MD_INVALID;
2747 goto err;
2748 }
2749 if (be32_to_cpu(buffer->md_size_sect) != bdev->md.md_size_sect) {
2750 dev_err(DEV, "unexpected md_size: %u (expected %u)\n",
2751 be32_to_cpu(buffer->md_size_sect), bdev->md.md_size_sect);
2752 rv = ERR_MD_INVALID;
2753 goto err;
2754 }
2755
2756 if (be32_to_cpu(buffer->bm_bytes_per_bit) != BM_BLOCK_SIZE) {
2757 dev_err(DEV, "unexpected bm_bytes_per_bit: %u (expected %u)\n",
2758 be32_to_cpu(buffer->bm_bytes_per_bit), BM_BLOCK_SIZE);
2759 rv = ERR_MD_INVALID;
2760 goto err;
2761 }
2762
2763 bdev->md.la_size_sect = be64_to_cpu(buffer->la_size);
2764 for (i = UI_CURRENT; i < UI_SIZE; i++)
2765 bdev->md.uuid[i] = be64_to_cpu(buffer->uuid[i]);
2766 bdev->md.flags = be32_to_cpu(buffer->flags);
f399002e 2767 bdev->dc.al_extents = be32_to_cpu(buffer->al_nr_extents);
b411b363
PR
2768 bdev->md.device_uuid = be64_to_cpu(buffer->device_uuid);
2769
87eeee41 2770 spin_lock_irq(&mdev->tconn->req_lock);
99432fcc
PR
2771 if (mdev->state.conn < C_CONNECTED) {
2772 int peer;
2773 peer = be32_to_cpu(buffer->la_peer_max_bio_size);
2774 peer = max_t(int, peer, DRBD_MAX_BIO_SIZE_SAFE);
2775 mdev->peer_max_bio_size = peer;
2776 }
87eeee41 2777 spin_unlock_irq(&mdev->tconn->req_lock);
99432fcc 2778
f399002e
LE
2779 if (bdev->dc.al_extents < 7)
2780 bdev->dc.al_extents = 127;
b411b363
PR
2781
2782 err:
2783 mutex_unlock(&mdev->md_io_mutex);
2784 put_ldev(mdev);
2785
2786 return rv;
2787}
2788
2789/**
2790 * drbd_md_mark_dirty() - Mark meta data super block as dirty
2791 * @mdev: DRBD device.
2792 *
2793 * Call this function if you change anything that should be written to
2794 * the meta-data super block. This function sets MD_DIRTY, and starts a
2795 * timer that ensures that within five seconds you have to call drbd_md_sync().
2796 */
ca0e6098 2797#ifdef DEBUG
ee15b038
LE
2798void drbd_md_mark_dirty_(struct drbd_conf *mdev, unsigned int line, const char *func)
2799{
2800 if (!test_and_set_bit(MD_DIRTY, &mdev->flags)) {
2801 mod_timer(&mdev->md_sync_timer, jiffies + HZ);
2802 mdev->last_md_mark_dirty.line = line;
2803 mdev->last_md_mark_dirty.func = func;
2804 }
2805}
2806#else
b411b363
PR
2807void drbd_md_mark_dirty(struct drbd_conf *mdev)
2808{
ee15b038 2809 if (!test_and_set_bit(MD_DIRTY, &mdev->flags))
ca0e6098 2810 mod_timer(&mdev->md_sync_timer, jiffies + 5*HZ);
b411b363 2811}
ee15b038 2812#endif
b411b363
PR
2813
2814static void drbd_uuid_move_history(struct drbd_conf *mdev) __must_hold(local)
2815{
2816 int i;
2817
62b0da3a 2818 for (i = UI_HISTORY_START; i < UI_HISTORY_END; i++)
b411b363 2819 mdev->ldev->md.uuid[i+1] = mdev->ldev->md.uuid[i];
b411b363
PR
2820}
2821
2822void _drbd_uuid_set(struct drbd_conf *mdev, int idx, u64 val) __must_hold(local)
2823{
2824 if (idx == UI_CURRENT) {
2825 if (mdev->state.role == R_PRIMARY)
2826 val |= 1;
2827 else
2828 val &= ~((u64)1);
2829
2830 drbd_set_ed_uuid(mdev, val);
2831 }
2832
2833 mdev->ldev->md.uuid[idx] = val;
b411b363
PR
2834 drbd_md_mark_dirty(mdev);
2835}
2836
2837
2838void drbd_uuid_set(struct drbd_conf *mdev, int idx, u64 val) __must_hold(local)
2839{
2840 if (mdev->ldev->md.uuid[idx]) {
2841 drbd_uuid_move_history(mdev);
2842 mdev->ldev->md.uuid[UI_HISTORY_START] = mdev->ldev->md.uuid[idx];
b411b363
PR
2843 }
2844 _drbd_uuid_set(mdev, idx, val);
2845}
2846
2847/**
2848 * drbd_uuid_new_current() - Creates a new current UUID
2849 * @mdev: DRBD device.
2850 *
2851 * Creates a new current UUID, and rotates the old current UUID into
2852 * the bitmap slot. Causes an incremental resync upon next connect.
2853 */
2854void drbd_uuid_new_current(struct drbd_conf *mdev) __must_hold(local)
2855{
2856 u64 val;
62b0da3a
LE
2857 unsigned long long bm_uuid = mdev->ldev->md.uuid[UI_BITMAP];
2858
2859 if (bm_uuid)
2860 dev_warn(DEV, "bm UUID was already set: %llX\n", bm_uuid);
b411b363 2861
b411b363 2862 mdev->ldev->md.uuid[UI_BITMAP] = mdev->ldev->md.uuid[UI_CURRENT];
b411b363
PR
2863
2864 get_random_bytes(&val, sizeof(u64));
2865 _drbd_uuid_set(mdev, UI_CURRENT, val);
62b0da3a 2866 drbd_print_uuids(mdev, "new current UUID");
aaa8e2b3
LE
2867 /* get it to stable storage _now_ */
2868 drbd_md_sync(mdev);
b411b363
PR
2869}
2870
2871void drbd_uuid_set_bm(struct drbd_conf *mdev, u64 val) __must_hold(local)
2872{
2873 if (mdev->ldev->md.uuid[UI_BITMAP] == 0 && val == 0)
2874 return;
2875
2876 if (val == 0) {
2877 drbd_uuid_move_history(mdev);
2878 mdev->ldev->md.uuid[UI_HISTORY_START] = mdev->ldev->md.uuid[UI_BITMAP];
2879 mdev->ldev->md.uuid[UI_BITMAP] = 0;
b411b363 2880 } else {
62b0da3a
LE
2881 unsigned long long bm_uuid = mdev->ldev->md.uuid[UI_BITMAP];
2882 if (bm_uuid)
2883 dev_warn(DEV, "bm UUID was already set: %llX\n", bm_uuid);
b411b363 2884
62b0da3a 2885 mdev->ldev->md.uuid[UI_BITMAP] = val & ~((u64)1);
b411b363
PR
2886 }
2887 drbd_md_mark_dirty(mdev);
2888}
2889
2890/**
2891 * drbd_bmio_set_n_write() - io_fn for drbd_queue_bitmap_io() or drbd_bitmap_io()
2892 * @mdev: DRBD device.
2893 *
2894 * Sets all bits in the bitmap and writes the whole bitmap to stable storage.
2895 */
2896int drbd_bmio_set_n_write(struct drbd_conf *mdev)
2897{
2898 int rv = -EIO;
2899
2900 if (get_ldev_if_state(mdev, D_ATTACHING)) {
2901 drbd_md_set_flag(mdev, MDF_FULL_SYNC);
2902 drbd_md_sync(mdev);
2903 drbd_bm_set_all(mdev);
2904
2905 rv = drbd_bm_write(mdev);
2906
2907 if (!rv) {
2908 drbd_md_clear_flag(mdev, MDF_FULL_SYNC);
2909 drbd_md_sync(mdev);
2910 }
2911
2912 put_ldev(mdev);
2913 }
2914
2915 return rv;
2916}
2917
2918/**
2919 * drbd_bmio_clear_n_write() - io_fn for drbd_queue_bitmap_io() or drbd_bitmap_io()
2920 * @mdev: DRBD device.
2921 *
2922 * Clears all bits in the bitmap and writes the whole bitmap to stable storage.
2923 */
2924int drbd_bmio_clear_n_write(struct drbd_conf *mdev)
2925{
2926 int rv = -EIO;
2927
0778286a 2928 drbd_resume_al(mdev);
b411b363
PR
2929 if (get_ldev_if_state(mdev, D_ATTACHING)) {
2930 drbd_bm_clear_all(mdev);
2931 rv = drbd_bm_write(mdev);
2932 put_ldev(mdev);
2933 }
2934
2935 return rv;
2936}
2937
99920dc5 2938static int w_bitmap_io(struct drbd_work *w, int unused)
b411b363
PR
2939{
2940 struct bm_io_work *work = container_of(w, struct bm_io_work, w);
00d56944 2941 struct drbd_conf *mdev = w->mdev;
02851e9f 2942 int rv = -EIO;
b411b363
PR
2943
2944 D_ASSERT(atomic_read(&mdev->ap_bio_cnt) == 0);
2945
02851e9f 2946 if (get_ldev(mdev)) {
20ceb2b2 2947 drbd_bm_lock(mdev, work->why, work->flags);
02851e9f
LE
2948 rv = work->io_fn(mdev);
2949 drbd_bm_unlock(mdev);
2950 put_ldev(mdev);
2951 }
b411b363 2952
4738fa16 2953 clear_bit_unlock(BITMAP_IO, &mdev->flags);
b411b363
PR
2954 wake_up(&mdev->misc_wait);
2955
2956 if (work->done)
2957 work->done(mdev, rv);
2958
2959 clear_bit(BITMAP_IO_QUEUED, &mdev->flags);
2960 work->why = NULL;
20ceb2b2 2961 work->flags = 0;
b411b363 2962
99920dc5 2963 return 0;
b411b363
PR
2964}
2965
82f59cc6
LE
2966void drbd_ldev_destroy(struct drbd_conf *mdev)
2967{
2968 lc_destroy(mdev->resync);
2969 mdev->resync = NULL;
2970 lc_destroy(mdev->act_log);
2971 mdev->act_log = NULL;
2972 __no_warn(local,
2973 drbd_free_bc(mdev->ldev);
2974 mdev->ldev = NULL;);
2975
82f59cc6
LE
2976 clear_bit(GO_DISKLESS, &mdev->flags);
2977}
2978
99920dc5 2979static int w_go_diskless(struct drbd_work *w, int unused)
e9e6f3ec 2980{
00d56944
PR
2981 struct drbd_conf *mdev = w->mdev;
2982
e9e6f3ec 2983 D_ASSERT(mdev->state.disk == D_FAILED);
9d282875
LE
2984 /* we cannot assert local_cnt == 0 here, as get_ldev_if_state will
2985 * inc/dec it frequently. Once we are D_DISKLESS, no one will touch
82f59cc6
LE
2986 * the protected members anymore, though, so once put_ldev reaches zero
2987 * again, it will be safe to free them. */
e9e6f3ec 2988 drbd_force_state(mdev, NS(disk, D_DISKLESS));
99920dc5 2989 return 0;
e9e6f3ec
LE
2990}
2991
2992void drbd_go_diskless(struct drbd_conf *mdev)
2993{
2994 D_ASSERT(mdev->state.disk == D_FAILED);
2995 if (!test_and_set_bit(GO_DISKLESS, &mdev->flags))
e42325a5 2996 drbd_queue_work(&mdev->tconn->data.work, &mdev->go_diskless);
e9e6f3ec
LE
2997}
2998
b411b363
PR
2999/**
3000 * drbd_queue_bitmap_io() - Queues an IO operation on the whole bitmap
3001 * @mdev: DRBD device.
3002 * @io_fn: IO callback to be called when bitmap IO is possible
3003 * @done: callback to be called after the bitmap IO was performed
3004 * @why: Descriptive text of the reason for doing the IO
3005 *
3006 * While IO on the bitmap happens we freeze application IO thus we ensure
3007 * that drbd_set_out_of_sync() can not be called. This function MAY ONLY be
3008 * called from worker context. It MUST NOT be used while a previous such
3009 * work is still pending!
3010 */
3011void drbd_queue_bitmap_io(struct drbd_conf *mdev,
3012 int (*io_fn)(struct drbd_conf *),
3013 void (*done)(struct drbd_conf *, int),
20ceb2b2 3014 char *why, enum bm_flag flags)
b411b363 3015{
e6b3ea83 3016 D_ASSERT(current == mdev->tconn->worker.task);
b411b363
PR
3017
3018 D_ASSERT(!test_bit(BITMAP_IO_QUEUED, &mdev->flags));
3019 D_ASSERT(!test_bit(BITMAP_IO, &mdev->flags));
3020 D_ASSERT(list_empty(&mdev->bm_io_work.w.list));
3021 if (mdev->bm_io_work.why)
3022 dev_err(DEV, "FIXME going to queue '%s' but '%s' still pending?\n",
3023 why, mdev->bm_io_work.why);
3024
3025 mdev->bm_io_work.io_fn = io_fn;
3026 mdev->bm_io_work.done = done;
3027 mdev->bm_io_work.why = why;
20ceb2b2 3028 mdev->bm_io_work.flags = flags;
b411b363 3029
87eeee41 3030 spin_lock_irq(&mdev->tconn->req_lock);
b411b363
PR
3031 set_bit(BITMAP_IO, &mdev->flags);
3032 if (atomic_read(&mdev->ap_bio_cnt) == 0) {
127b3178 3033 if (!test_and_set_bit(BITMAP_IO_QUEUED, &mdev->flags))
e42325a5 3034 drbd_queue_work(&mdev->tconn->data.work, &mdev->bm_io_work.w);
b411b363 3035 }
87eeee41 3036 spin_unlock_irq(&mdev->tconn->req_lock);
b411b363
PR
3037}
3038
3039/**
3040 * drbd_bitmap_io() - Does an IO operation on the whole bitmap
3041 * @mdev: DRBD device.
3042 * @io_fn: IO callback to be called when bitmap IO is possible
3043 * @why: Descriptive text of the reason for doing the IO
3044 *
3045 * freezes application IO while that the actual IO operations runs. This
3046 * functions MAY NOT be called from worker context.
3047 */
20ceb2b2
LE
3048int drbd_bitmap_io(struct drbd_conf *mdev, int (*io_fn)(struct drbd_conf *),
3049 char *why, enum bm_flag flags)
b411b363
PR
3050{
3051 int rv;
3052
e6b3ea83 3053 D_ASSERT(current != mdev->tconn->worker.task);
b411b363 3054
20ceb2b2
LE
3055 if ((flags & BM_LOCKED_SET_ALLOWED) == 0)
3056 drbd_suspend_io(mdev);
b411b363 3057
20ceb2b2 3058 drbd_bm_lock(mdev, why, flags);
b411b363
PR
3059 rv = io_fn(mdev);
3060 drbd_bm_unlock(mdev);
3061
20ceb2b2
LE
3062 if ((flags & BM_LOCKED_SET_ALLOWED) == 0)
3063 drbd_resume_io(mdev);
b411b363
PR
3064
3065 return rv;
3066}
3067
3068void drbd_md_set_flag(struct drbd_conf *mdev, int flag) __must_hold(local)
3069{
3070 if ((mdev->ldev->md.flags & flag) != flag) {
3071 drbd_md_mark_dirty(mdev);
3072 mdev->ldev->md.flags |= flag;
3073 }
3074}
3075
3076void drbd_md_clear_flag(struct drbd_conf *mdev, int flag) __must_hold(local)
3077{
3078 if ((mdev->ldev->md.flags & flag) != 0) {
3079 drbd_md_mark_dirty(mdev);
3080 mdev->ldev->md.flags &= ~flag;
3081 }
3082}
3083int drbd_md_test_flag(struct drbd_backing_dev *bdev, int flag)
3084{
3085 return (bdev->md.flags & flag) != 0;
3086}
3087
3088static void md_sync_timer_fn(unsigned long data)
3089{
3090 struct drbd_conf *mdev = (struct drbd_conf *) data;
3091
e42325a5 3092 drbd_queue_work_front(&mdev->tconn->data.work, &mdev->md_sync_work);
b411b363
PR
3093}
3094
99920dc5 3095static int w_md_sync(struct drbd_work *w, int unused)
b411b363 3096{
00d56944
PR
3097 struct drbd_conf *mdev = w->mdev;
3098
b411b363 3099 dev_warn(DEV, "md_sync_timer expired! Worker calls drbd_md_sync().\n");
ee15b038
LE
3100#ifdef DEBUG
3101 dev_warn(DEV, "last md_mark_dirty: %s:%u\n",
3102 mdev->last_md_mark_dirty.func, mdev->last_md_mark_dirty.line);
3103#endif
b411b363 3104 drbd_md_sync(mdev);
99920dc5 3105 return 0;
b411b363
PR
3106}
3107
d8763023 3108const char *cmdname(enum drbd_packet cmd)
f2ad9063
AG
3109{
3110 /* THINK may need to become several global tables
3111 * when we want to support more than
3112 * one PRO_VERSION */
3113 static const char *cmdnames[] = {
3114 [P_DATA] = "Data",
3115 [P_DATA_REPLY] = "DataReply",
3116 [P_RS_DATA_REPLY] = "RSDataReply",
3117 [P_BARRIER] = "Barrier",
3118 [P_BITMAP] = "ReportBitMap",
3119 [P_BECOME_SYNC_TARGET] = "BecomeSyncTarget",
3120 [P_BECOME_SYNC_SOURCE] = "BecomeSyncSource",
3121 [P_UNPLUG_REMOTE] = "UnplugRemote",
3122 [P_DATA_REQUEST] = "DataRequest",
3123 [P_RS_DATA_REQUEST] = "RSDataRequest",
3124 [P_SYNC_PARAM] = "SyncParam",
3125 [P_SYNC_PARAM89] = "SyncParam89",
3126 [P_PROTOCOL] = "ReportProtocol",
3127 [P_UUIDS] = "ReportUUIDs",
3128 [P_SIZES] = "ReportSizes",
3129 [P_STATE] = "ReportState",
3130 [P_SYNC_UUID] = "ReportSyncUUID",
3131 [P_AUTH_CHALLENGE] = "AuthChallenge",
3132 [P_AUTH_RESPONSE] = "AuthResponse",
3133 [P_PING] = "Ping",
3134 [P_PING_ACK] = "PingAck",
3135 [P_RECV_ACK] = "RecvAck",
3136 [P_WRITE_ACK] = "WriteAck",
3137 [P_RS_WRITE_ACK] = "RSWriteAck",
7be8da07 3138 [P_DISCARD_WRITE] = "DiscardWrite",
f2ad9063
AG
3139 [P_NEG_ACK] = "NegAck",
3140 [P_NEG_DREPLY] = "NegDReply",
3141 [P_NEG_RS_DREPLY] = "NegRSDReply",
3142 [P_BARRIER_ACK] = "BarrierAck",
3143 [P_STATE_CHG_REQ] = "StateChgRequest",
3144 [P_STATE_CHG_REPLY] = "StateChgReply",
3145 [P_OV_REQUEST] = "OVRequest",
3146 [P_OV_REPLY] = "OVReply",
3147 [P_OV_RESULT] = "OVResult",
3148 [P_CSUM_RS_REQUEST] = "CsumRSRequest",
3149 [P_RS_IS_IN_SYNC] = "CsumRSIsInSync",
3150 [P_COMPRESSED_BITMAP] = "CBitmap",
3151 [P_DELAY_PROBE] = "DelayProbe",
3152 [P_OUT_OF_SYNC] = "OutOfSync",
7be8da07 3153 [P_RETRY_WRITE] = "RetryWrite",
f2ad9063
AG
3154 };
3155
3156 if (cmd == P_HAND_SHAKE_M)
3157 return "HandShakeM";
3158 if (cmd == P_HAND_SHAKE_S)
3159 return "HandShakeS";
3160 if (cmd == P_HAND_SHAKE)
3161 return "HandShake";
6e849ce8 3162 if (cmd >= ARRAY_SIZE(cmdnames))
f2ad9063
AG
3163 return "Unknown";
3164 return cmdnames[cmd];
3165}
3166
7be8da07
AG
3167/**
3168 * drbd_wait_misc - wait for a request to make progress
3169 * @mdev: device associated with the request
3170 * @i: the struct drbd_interval embedded in struct drbd_request or
3171 * struct drbd_peer_request
3172 */
3173int drbd_wait_misc(struct drbd_conf *mdev, struct drbd_interval *i)
3174{
3175 struct net_conf *net_conf = mdev->tconn->net_conf;
3176 DEFINE_WAIT(wait);
3177 long timeout;
3178
3179 if (!net_conf)
3180 return -ETIMEDOUT;
3181 timeout = MAX_SCHEDULE_TIMEOUT;
3182 if (net_conf->ko_count)
3183 timeout = net_conf->timeout * HZ / 10 * net_conf->ko_count;
3184
3185 /* Indicate to wake up mdev->misc_wait on progress. */
3186 i->waiting = true;
3187 prepare_to_wait(&mdev->misc_wait, &wait, TASK_INTERRUPTIBLE);
3188 spin_unlock_irq(&mdev->tconn->req_lock);
3189 timeout = schedule_timeout(timeout);
3190 finish_wait(&mdev->misc_wait, &wait);
3191 spin_lock_irq(&mdev->tconn->req_lock);
3192 if (!timeout || mdev->state.conn < C_CONNECTED)
3193 return -ETIMEDOUT;
3194 if (signal_pending(current))
3195 return -ERESTARTSYS;
3196 return 0;
3197}
3198
b411b363
PR
3199#ifdef CONFIG_DRBD_FAULT_INJECTION
3200/* Fault insertion support including random number generator shamelessly
3201 * stolen from kernel/rcutorture.c */
3202struct fault_random_state {
3203 unsigned long state;
3204 unsigned long count;
3205};
3206
3207#define FAULT_RANDOM_MULT 39916801 /* prime */
3208#define FAULT_RANDOM_ADD 479001701 /* prime */
3209#define FAULT_RANDOM_REFRESH 10000
3210
3211/*
3212 * Crude but fast random-number generator. Uses a linear congruential
3213 * generator, with occasional help from get_random_bytes().
3214 */
3215static unsigned long
3216_drbd_fault_random(struct fault_random_state *rsp)
3217{
3218 long refresh;
3219
49829ea7 3220 if (!rsp->count--) {
b411b363
PR
3221 get_random_bytes(&refresh, sizeof(refresh));
3222 rsp->state += refresh;
3223 rsp->count = FAULT_RANDOM_REFRESH;
3224 }
3225 rsp->state = rsp->state * FAULT_RANDOM_MULT + FAULT_RANDOM_ADD;
3226 return swahw32(rsp->state);
3227}
3228
3229static char *
3230_drbd_fault_str(unsigned int type) {
3231 static char *_faults[] = {
3232 [DRBD_FAULT_MD_WR] = "Meta-data write",
3233 [DRBD_FAULT_MD_RD] = "Meta-data read",
3234 [DRBD_FAULT_RS_WR] = "Resync write",
3235 [DRBD_FAULT_RS_RD] = "Resync read",
3236 [DRBD_FAULT_DT_WR] = "Data write",
3237 [DRBD_FAULT_DT_RD] = "Data read",
3238 [DRBD_FAULT_DT_RA] = "Data read ahead",
3239 [DRBD_FAULT_BM_ALLOC] = "BM allocation",
6b4388ac
PR
3240 [DRBD_FAULT_AL_EE] = "EE allocation",
3241 [DRBD_FAULT_RECEIVE] = "receive data corruption",
b411b363
PR
3242 };
3243
3244 return (type < DRBD_FAULT_MAX) ? _faults[type] : "**Unknown**";
3245}
3246
3247unsigned int
3248_drbd_insert_fault(struct drbd_conf *mdev, unsigned int type)
3249{
3250 static struct fault_random_state rrs = {0, 0};
3251
3252 unsigned int ret = (
3253 (fault_devs == 0 ||
3254 ((1 << mdev_to_minor(mdev)) & fault_devs) != 0) &&
3255 (((_drbd_fault_random(&rrs) % 100) + 1) <= fault_rate));
3256
3257 if (ret) {
3258 fault_count++;
3259
7383506c 3260 if (__ratelimit(&drbd_ratelimit_state))
b411b363
PR
3261 dev_warn(DEV, "***Simulating %s failure\n",
3262 _drbd_fault_str(type));
3263 }
3264
3265 return ret;
3266}
3267#endif
3268
3269const char *drbd_buildtag(void)
3270{
3271 /* DRBD built from external sources has here a reference to the
3272 git hash of the source code. */
3273
3274 static char buildtag[38] = "\0uilt-in";
3275
3276 if (buildtag[0] == 0) {
3277#ifdef CONFIG_MODULES
3278 if (THIS_MODULE != NULL)
3279 sprintf(buildtag, "srcversion: %-24s", THIS_MODULE->srcversion);
3280 else
3281#endif
3282 buildtag[0] = 'b';
3283 }
3284
3285 return buildtag;
3286}
3287
3288module_init(drbd_init)
3289module_exit(drbd_cleanup)
3290
b411b363
PR
3291EXPORT_SYMBOL(drbd_conn_str);
3292EXPORT_SYMBOL(drbd_role_str);
3293EXPORT_SYMBOL(drbd_disk_str);
3294EXPORT_SYMBOL(drbd_set_st_err_str);
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