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1 /*
2    drbd_state.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 #include <linux/drbd_limits.h>
29 #include "drbd_int.h"
30 #include "drbd_protocol.h"
31 #include "drbd_req.h"
32
33 struct after_state_chg_work {
34         struct drbd_work w;
35         struct drbd_device *device;
36         union drbd_state os;
37         union drbd_state ns;
38         enum chg_state_flags flags;
39         struct completion *done;
40 };
41
42 enum sanitize_state_warnings {
43         NO_WARNING,
44         ABORTED_ONLINE_VERIFY,
45         ABORTED_RESYNC,
46         CONNECTION_LOST_NEGOTIATING,
47         IMPLICITLY_UPGRADED_DISK,
48         IMPLICITLY_UPGRADED_PDSK,
49 };
50
51 static int w_after_state_ch(struct drbd_work *w, int unused);
52 static void after_state_ch(struct drbd_device *device, union drbd_state os,
53                            union drbd_state ns, enum chg_state_flags flags);
54 static enum drbd_state_rv is_valid_state(struct drbd_device *, union drbd_state);
55 static enum drbd_state_rv is_valid_soft_transition(union drbd_state, union drbd_state, struct drbd_connection *);
56 static enum drbd_state_rv is_valid_transition(union drbd_state os, union drbd_state ns);
57 static union drbd_state sanitize_state(struct drbd_device *device, union drbd_state ns,
58                                        enum sanitize_state_warnings *warn);
59
60 static inline bool is_susp(union drbd_state s)
61 {
62         return s.susp || s.susp_nod || s.susp_fen;
63 }
64
65 bool conn_all_vols_unconf(struct drbd_connection *connection)
66 {
67         struct drbd_peer_device *peer_device;
68         bool rv = true;
69         int vnr;
70
71         rcu_read_lock();
72         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
73                 struct drbd_device *device = peer_device->device;
74                 if (device->state.disk != D_DISKLESS ||
75                     device->state.conn != C_STANDALONE ||
76                     device->state.role != R_SECONDARY) {
77                         rv = false;
78                         break;
79                 }
80         }
81         rcu_read_unlock();
82
83         return rv;
84 }
85
86 /* Unfortunately the states where not correctly ordered, when
87    they where defined. therefore can not use max_t() here. */
88 static enum drbd_role max_role(enum drbd_role role1, enum drbd_role role2)
89 {
90         if (role1 == R_PRIMARY || role2 == R_PRIMARY)
91                 return R_PRIMARY;
92         if (role1 == R_SECONDARY || role2 == R_SECONDARY)
93                 return R_SECONDARY;
94         return R_UNKNOWN;
95 }
96 static enum drbd_role min_role(enum drbd_role role1, enum drbd_role role2)
97 {
98         if (role1 == R_UNKNOWN || role2 == R_UNKNOWN)
99                 return R_UNKNOWN;
100         if (role1 == R_SECONDARY || role2 == R_SECONDARY)
101                 return R_SECONDARY;
102         return R_PRIMARY;
103 }
104
105 enum drbd_role conn_highest_role(struct drbd_connection *connection)
106 {
107         enum drbd_role role = R_UNKNOWN;
108         struct drbd_peer_device *peer_device;
109         int vnr;
110
111         rcu_read_lock();
112         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
113                 struct drbd_device *device = peer_device->device;
114                 role = max_role(role, device->state.role);
115         }
116         rcu_read_unlock();
117
118         return role;
119 }
120
121 enum drbd_role conn_highest_peer(struct drbd_connection *connection)
122 {
123         enum drbd_role peer = R_UNKNOWN;
124         struct drbd_peer_device *peer_device;
125         int vnr;
126
127         rcu_read_lock();
128         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
129                 struct drbd_device *device = peer_device->device;
130                 peer = max_role(peer, device->state.peer);
131         }
132         rcu_read_unlock();
133
134         return peer;
135 }
136
137 enum drbd_disk_state conn_highest_disk(struct drbd_connection *connection)
138 {
139         enum drbd_disk_state ds = D_DISKLESS;
140         struct drbd_peer_device *peer_device;
141         int vnr;
142
143         rcu_read_lock();
144         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
145                 struct drbd_device *device = peer_device->device;
146                 ds = max_t(enum drbd_disk_state, ds, device->state.disk);
147         }
148         rcu_read_unlock();
149
150         return ds;
151 }
152
153 enum drbd_disk_state conn_lowest_disk(struct drbd_connection *connection)
154 {
155         enum drbd_disk_state ds = D_MASK;
156         struct drbd_peer_device *peer_device;
157         int vnr;
158
159         rcu_read_lock();
160         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
161                 struct drbd_device *device = peer_device->device;
162                 ds = min_t(enum drbd_disk_state, ds, device->state.disk);
163         }
164         rcu_read_unlock();
165
166         return ds;
167 }
168
169 enum drbd_disk_state conn_highest_pdsk(struct drbd_connection *connection)
170 {
171         enum drbd_disk_state ds = D_DISKLESS;
172         struct drbd_peer_device *peer_device;
173         int vnr;
174
175         rcu_read_lock();
176         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
177                 struct drbd_device *device = peer_device->device;
178                 ds = max_t(enum drbd_disk_state, ds, device->state.pdsk);
179         }
180         rcu_read_unlock();
181
182         return ds;
183 }
184
185 enum drbd_conns conn_lowest_conn(struct drbd_connection *connection)
186 {
187         enum drbd_conns conn = C_MASK;
188         struct drbd_peer_device *peer_device;
189         int vnr;
190
191         rcu_read_lock();
192         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
193                 struct drbd_device *device = peer_device->device;
194                 conn = min_t(enum drbd_conns, conn, device->state.conn);
195         }
196         rcu_read_unlock();
197
198         return conn;
199 }
200
201 static bool no_peer_wf_report_params(struct drbd_connection *connection)
202 {
203         struct drbd_peer_device *peer_device;
204         int vnr;
205         bool rv = true;
206
207         rcu_read_lock();
208         idr_for_each_entry(&connection->peer_devices, peer_device, vnr)
209                 if (peer_device->device->state.conn == C_WF_REPORT_PARAMS) {
210                         rv = false;
211                         break;
212                 }
213         rcu_read_unlock();
214
215         return rv;
216 }
217
218
219 /**
220  * cl_wide_st_chg() - true if the state change is a cluster wide one
221  * @device:     DRBD device.
222  * @os:         old (current) state.
223  * @ns:         new (wanted) state.
224  */
225 static int cl_wide_st_chg(struct drbd_device *device,
226                           union drbd_state os, union drbd_state ns)
227 {
228         return (os.conn >= C_CONNECTED && ns.conn >= C_CONNECTED &&
229                  ((os.role != R_PRIMARY && ns.role == R_PRIMARY) ||
230                   (os.conn != C_STARTING_SYNC_T && ns.conn == C_STARTING_SYNC_T) ||
231                   (os.conn != C_STARTING_SYNC_S && ns.conn == C_STARTING_SYNC_S) ||
232                   (os.disk != D_FAILED && ns.disk == D_FAILED))) ||
233                 (os.conn >= C_CONNECTED && ns.conn == C_DISCONNECTING) ||
234                 (os.conn == C_CONNECTED && ns.conn == C_VERIFY_S) ||
235                 (os.conn == C_CONNECTED && ns.conn == C_WF_REPORT_PARAMS);
236 }
237
238 static union drbd_state
239 apply_mask_val(union drbd_state os, union drbd_state mask, union drbd_state val)
240 {
241         union drbd_state ns;
242         ns.i = (os.i & ~mask.i) | val.i;
243         return ns;
244 }
245
246 enum drbd_state_rv
247 drbd_change_state(struct drbd_device *device, enum chg_state_flags f,
248                   union drbd_state mask, union drbd_state val)
249 {
250         unsigned long flags;
251         union drbd_state ns;
252         enum drbd_state_rv rv;
253
254         spin_lock_irqsave(&device->resource->req_lock, flags);
255         ns = apply_mask_val(drbd_read_state(device), mask, val);
256         rv = _drbd_set_state(device, ns, f, NULL);
257         spin_unlock_irqrestore(&device->resource->req_lock, flags);
258
259         return rv;
260 }
261
262 /**
263  * drbd_force_state() - Impose a change which happens outside our control on our state
264  * @device:     DRBD device.
265  * @mask:       mask of state bits to change.
266  * @val:        value of new state bits.
267  */
268 void drbd_force_state(struct drbd_device *device,
269         union drbd_state mask, union drbd_state val)
270 {
271         drbd_change_state(device, CS_HARD, mask, val);
272 }
273
274 static enum drbd_state_rv
275 _req_st_cond(struct drbd_device *device, union drbd_state mask,
276              union drbd_state val)
277 {
278         union drbd_state os, ns;
279         unsigned long flags;
280         enum drbd_state_rv rv;
281
282         if (test_and_clear_bit(CL_ST_CHG_SUCCESS, &device->flags))
283                 return SS_CW_SUCCESS;
284
285         if (test_and_clear_bit(CL_ST_CHG_FAIL, &device->flags))
286                 return SS_CW_FAILED_BY_PEER;
287
288         spin_lock_irqsave(&device->resource->req_lock, flags);
289         os = drbd_read_state(device);
290         ns = sanitize_state(device, apply_mask_val(os, mask, val), NULL);
291         rv = is_valid_transition(os, ns);
292         if (rv >= SS_SUCCESS)
293                 rv = SS_UNKNOWN_ERROR;  /* cont waiting, otherwise fail. */
294
295         if (!cl_wide_st_chg(device, os, ns))
296                 rv = SS_CW_NO_NEED;
297         if (rv == SS_UNKNOWN_ERROR) {
298                 rv = is_valid_state(device, ns);
299                 if (rv >= SS_SUCCESS) {
300                         rv = is_valid_soft_transition(os, ns, first_peer_device(device)->connection);
301                         if (rv >= SS_SUCCESS)
302                                 rv = SS_UNKNOWN_ERROR; /* cont waiting, otherwise fail. */
303                 }
304         }
305         spin_unlock_irqrestore(&device->resource->req_lock, flags);
306
307         return rv;
308 }
309
310 /**
311  * drbd_req_state() - Perform an eventually cluster wide state change
312  * @device:     DRBD device.
313  * @mask:       mask of state bits to change.
314  * @val:        value of new state bits.
315  * @f:          flags
316  *
317  * Should not be called directly, use drbd_request_state() or
318  * _drbd_request_state().
319  */
320 static enum drbd_state_rv
321 drbd_req_state(struct drbd_device *device, union drbd_state mask,
322                union drbd_state val, enum chg_state_flags f)
323 {
324         struct completion done;
325         unsigned long flags;
326         union drbd_state os, ns;
327         enum drbd_state_rv rv;
328
329         init_completion(&done);
330
331         if (f & CS_SERIALIZE)
332                 mutex_lock(device->state_mutex);
333
334         spin_lock_irqsave(&device->resource->req_lock, flags);
335         os = drbd_read_state(device);
336         ns = sanitize_state(device, apply_mask_val(os, mask, val), NULL);
337         rv = is_valid_transition(os, ns);
338         if (rv < SS_SUCCESS) {
339                 spin_unlock_irqrestore(&device->resource->req_lock, flags);
340                 goto abort;
341         }
342
343         if (cl_wide_st_chg(device, os, ns)) {
344                 rv = is_valid_state(device, ns);
345                 if (rv == SS_SUCCESS)
346                         rv = is_valid_soft_transition(os, ns, first_peer_device(device)->connection);
347                 spin_unlock_irqrestore(&device->resource->req_lock, flags);
348
349                 if (rv < SS_SUCCESS) {
350                         if (f & CS_VERBOSE)
351                                 print_st_err(device, os, ns, rv);
352                         goto abort;
353                 }
354
355                 if (drbd_send_state_req(first_peer_device(device), mask, val)) {
356                         rv = SS_CW_FAILED_BY_PEER;
357                         if (f & CS_VERBOSE)
358                                 print_st_err(device, os, ns, rv);
359                         goto abort;
360                 }
361
362                 wait_event(device->state_wait,
363                         (rv = _req_st_cond(device, mask, val)));
364
365                 if (rv < SS_SUCCESS) {
366                         if (f & CS_VERBOSE)
367                                 print_st_err(device, os, ns, rv);
368                         goto abort;
369                 }
370                 spin_lock_irqsave(&device->resource->req_lock, flags);
371                 ns = apply_mask_val(drbd_read_state(device), mask, val);
372                 rv = _drbd_set_state(device, ns, f, &done);
373         } else {
374                 rv = _drbd_set_state(device, ns, f, &done);
375         }
376
377         spin_unlock_irqrestore(&device->resource->req_lock, flags);
378
379         if (f & CS_WAIT_COMPLETE && rv == SS_SUCCESS) {
380                 D_ASSERT(device, current != first_peer_device(device)->connection->worker.task);
381                 wait_for_completion(&done);
382         }
383
384 abort:
385         if (f & CS_SERIALIZE)
386                 mutex_unlock(device->state_mutex);
387
388         return rv;
389 }
390
391 /**
392  * _drbd_request_state() - Request a state change (with flags)
393  * @device:     DRBD device.
394  * @mask:       mask of state bits to change.
395  * @val:        value of new state bits.
396  * @f:          flags
397  *
398  * Cousin of drbd_request_state(), useful with the CS_WAIT_COMPLETE
399  * flag, or when logging of failed state change requests is not desired.
400  */
401 enum drbd_state_rv
402 _drbd_request_state(struct drbd_device *device, union drbd_state mask,
403                     union drbd_state val, enum chg_state_flags f)
404 {
405         enum drbd_state_rv rv;
406
407         wait_event(device->state_wait,
408                    (rv = drbd_req_state(device, mask, val, f)) != SS_IN_TRANSIENT_STATE);
409
410         return rv;
411 }
412
413 static void print_st(struct drbd_device *device, char *name, union drbd_state ns)
414 {
415         drbd_err(device, " %s = { cs:%s ro:%s/%s ds:%s/%s %c%c%c%c%c%c }\n",
416             name,
417             drbd_conn_str(ns.conn),
418             drbd_role_str(ns.role),
419             drbd_role_str(ns.peer),
420             drbd_disk_str(ns.disk),
421             drbd_disk_str(ns.pdsk),
422             is_susp(ns) ? 's' : 'r',
423             ns.aftr_isp ? 'a' : '-',
424             ns.peer_isp ? 'p' : '-',
425             ns.user_isp ? 'u' : '-',
426             ns.susp_fen ? 'F' : '-',
427             ns.susp_nod ? 'N' : '-'
428             );
429 }
430
431 void print_st_err(struct drbd_device *device, union drbd_state os,
432                   union drbd_state ns, enum drbd_state_rv err)
433 {
434         if (err == SS_IN_TRANSIENT_STATE)
435                 return;
436         drbd_err(device, "State change failed: %s\n", drbd_set_st_err_str(err));
437         print_st(device, " state", os);
438         print_st(device, "wanted", ns);
439 }
440
441 static long print_state_change(char *pb, union drbd_state os, union drbd_state ns,
442                                enum chg_state_flags flags)
443 {
444         char *pbp;
445         pbp = pb;
446         *pbp = 0;
447
448         if (ns.role != os.role && flags & CS_DC_ROLE)
449                 pbp += sprintf(pbp, "role( %s -> %s ) ",
450                                drbd_role_str(os.role),
451                                drbd_role_str(ns.role));
452         if (ns.peer != os.peer && flags & CS_DC_PEER)
453                 pbp += sprintf(pbp, "peer( %s -> %s ) ",
454                                drbd_role_str(os.peer),
455                                drbd_role_str(ns.peer));
456         if (ns.conn != os.conn && flags & CS_DC_CONN)
457                 pbp += sprintf(pbp, "conn( %s -> %s ) ",
458                                drbd_conn_str(os.conn),
459                                drbd_conn_str(ns.conn));
460         if (ns.disk != os.disk && flags & CS_DC_DISK)
461                 pbp += sprintf(pbp, "disk( %s -> %s ) ",
462                                drbd_disk_str(os.disk),
463                                drbd_disk_str(ns.disk));
464         if (ns.pdsk != os.pdsk && flags & CS_DC_PDSK)
465                 pbp += sprintf(pbp, "pdsk( %s -> %s ) ",
466                                drbd_disk_str(os.pdsk),
467                                drbd_disk_str(ns.pdsk));
468
469         return pbp - pb;
470 }
471
472 static void drbd_pr_state_change(struct drbd_device *device, union drbd_state os, union drbd_state ns,
473                                  enum chg_state_flags flags)
474 {
475         char pb[300];
476         char *pbp = pb;
477
478         pbp += print_state_change(pbp, os, ns, flags ^ CS_DC_MASK);
479
480         if (ns.aftr_isp != os.aftr_isp)
481                 pbp += sprintf(pbp, "aftr_isp( %d -> %d ) ",
482                                os.aftr_isp,
483                                ns.aftr_isp);
484         if (ns.peer_isp != os.peer_isp)
485                 pbp += sprintf(pbp, "peer_isp( %d -> %d ) ",
486                                os.peer_isp,
487                                ns.peer_isp);
488         if (ns.user_isp != os.user_isp)
489                 pbp += sprintf(pbp, "user_isp( %d -> %d ) ",
490                                os.user_isp,
491                                ns.user_isp);
492
493         if (pbp != pb)
494                 drbd_info(device, "%s\n", pb);
495 }
496
497 static void conn_pr_state_change(struct drbd_connection *connection, union drbd_state os, union drbd_state ns,
498                                  enum chg_state_flags flags)
499 {
500         char pb[300];
501         char *pbp = pb;
502
503         pbp += print_state_change(pbp, os, ns, flags);
504
505         if (is_susp(ns) != is_susp(os) && flags & CS_DC_SUSP)
506                 pbp += sprintf(pbp, "susp( %d -> %d ) ",
507                                is_susp(os),
508                                is_susp(ns));
509
510         if (pbp != pb)
511                 drbd_info(connection, "%s\n", pb);
512 }
513
514
515 /**
516  * is_valid_state() - Returns an SS_ error code if ns is not valid
517  * @device:     DRBD device.
518  * @ns:         State to consider.
519  */
520 static enum drbd_state_rv
521 is_valid_state(struct drbd_device *device, union drbd_state ns)
522 {
523         /* See drbd_state_sw_errors in drbd_strings.c */
524
525         enum drbd_fencing_p fp;
526         enum drbd_state_rv rv = SS_SUCCESS;
527         struct net_conf *nc;
528
529         rcu_read_lock();
530         fp = FP_DONT_CARE;
531         if (get_ldev(device)) {
532                 fp = rcu_dereference(device->ldev->disk_conf)->fencing;
533                 put_ldev(device);
534         }
535
536         nc = rcu_dereference(first_peer_device(device)->connection->net_conf);
537         if (nc) {
538                 if (!nc->two_primaries && ns.role == R_PRIMARY) {
539                         if (ns.peer == R_PRIMARY)
540                                 rv = SS_TWO_PRIMARIES;
541                         else if (conn_highest_peer(first_peer_device(device)->connection) == R_PRIMARY)
542                                 rv = SS_O_VOL_PEER_PRI;
543                 }
544         }
545
546         if (rv <= 0)
547                 /* already found a reason to abort */;
548         else if (ns.role == R_SECONDARY && device->open_cnt)
549                 rv = SS_DEVICE_IN_USE;
550
551         else if (ns.role == R_PRIMARY && ns.conn < C_CONNECTED && ns.disk < D_UP_TO_DATE)
552                 rv = SS_NO_UP_TO_DATE_DISK;
553
554         else if (fp >= FP_RESOURCE &&
555                  ns.role == R_PRIMARY && ns.conn < C_CONNECTED && ns.pdsk >= D_UNKNOWN)
556                 rv = SS_PRIMARY_NOP;
557
558         else if (ns.role == R_PRIMARY && ns.disk <= D_INCONSISTENT && ns.pdsk <= D_INCONSISTENT)
559                 rv = SS_NO_UP_TO_DATE_DISK;
560
561         else if (ns.conn > C_CONNECTED && ns.disk < D_INCONSISTENT)
562                 rv = SS_NO_LOCAL_DISK;
563
564         else if (ns.conn > C_CONNECTED && ns.pdsk < D_INCONSISTENT)
565                 rv = SS_NO_REMOTE_DISK;
566
567         else if (ns.conn > C_CONNECTED && ns.disk < D_UP_TO_DATE && ns.pdsk < D_UP_TO_DATE)
568                 rv = SS_NO_UP_TO_DATE_DISK;
569
570         else if ((ns.conn == C_CONNECTED ||
571                   ns.conn == C_WF_BITMAP_S ||
572                   ns.conn == C_SYNC_SOURCE ||
573                   ns.conn == C_PAUSED_SYNC_S) &&
574                   ns.disk == D_OUTDATED)
575                 rv = SS_CONNECTED_OUTDATES;
576
577         else if ((ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T) &&
578                  (nc->verify_alg[0] == 0))
579                 rv = SS_NO_VERIFY_ALG;
580
581         else if ((ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T) &&
582                   first_peer_device(device)->connection->agreed_pro_version < 88)
583                 rv = SS_NOT_SUPPORTED;
584
585         else if (ns.role == R_PRIMARY && ns.disk < D_UP_TO_DATE && ns.pdsk < D_UP_TO_DATE)
586                 rv = SS_NO_UP_TO_DATE_DISK;
587
588         else if ((ns.conn == C_STARTING_SYNC_S || ns.conn == C_STARTING_SYNC_T) &&
589                  ns.pdsk == D_UNKNOWN)
590                 rv = SS_NEED_CONNECTION;
591
592         else if (ns.conn >= C_CONNECTED && ns.pdsk == D_UNKNOWN)
593                 rv = SS_CONNECTED_OUTDATES;
594
595         rcu_read_unlock();
596
597         return rv;
598 }
599
600 /**
601  * is_valid_soft_transition() - Returns an SS_ error code if the state transition is not possible
602  * This function limits state transitions that may be declined by DRBD. I.e.
603  * user requests (aka soft transitions).
604  * @device:     DRBD device.
605  * @ns:         new state.
606  * @os:         old state.
607  */
608 static enum drbd_state_rv
609 is_valid_soft_transition(union drbd_state os, union drbd_state ns, struct drbd_connection *connection)
610 {
611         enum drbd_state_rv rv = SS_SUCCESS;
612
613         if ((ns.conn == C_STARTING_SYNC_T || ns.conn == C_STARTING_SYNC_S) &&
614             os.conn > C_CONNECTED)
615                 rv = SS_RESYNC_RUNNING;
616
617         if (ns.conn == C_DISCONNECTING && os.conn == C_STANDALONE)
618                 rv = SS_ALREADY_STANDALONE;
619
620         if (ns.disk > D_ATTACHING && os.disk == D_DISKLESS)
621                 rv = SS_IS_DISKLESS;
622
623         if (ns.conn == C_WF_CONNECTION && os.conn < C_UNCONNECTED)
624                 rv = SS_NO_NET_CONFIG;
625
626         if (ns.disk == D_OUTDATED && os.disk < D_OUTDATED && os.disk != D_ATTACHING)
627                 rv = SS_LOWER_THAN_OUTDATED;
628
629         if (ns.conn == C_DISCONNECTING && os.conn == C_UNCONNECTED)
630                 rv = SS_IN_TRANSIENT_STATE;
631
632         /* if (ns.conn == os.conn && ns.conn == C_WF_REPORT_PARAMS)
633            rv = SS_IN_TRANSIENT_STATE; */
634
635         /* While establishing a connection only allow cstate to change.
636            Delay/refuse role changes, detach attach etc... */
637         if (test_bit(STATE_SENT, &connection->flags) &&
638             !(os.conn == C_WF_REPORT_PARAMS ||
639               (ns.conn == C_WF_REPORT_PARAMS && os.conn == C_WF_CONNECTION)))
640                 rv = SS_IN_TRANSIENT_STATE;
641
642         if ((ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T) && os.conn < C_CONNECTED)
643                 rv = SS_NEED_CONNECTION;
644
645         if ((ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T) &&
646             ns.conn != os.conn && os.conn > C_CONNECTED)
647                 rv = SS_RESYNC_RUNNING;
648
649         if ((ns.conn == C_STARTING_SYNC_S || ns.conn == C_STARTING_SYNC_T) &&
650             os.conn < C_CONNECTED)
651                 rv = SS_NEED_CONNECTION;
652
653         if ((ns.conn == C_SYNC_TARGET || ns.conn == C_SYNC_SOURCE)
654             && os.conn < C_WF_REPORT_PARAMS)
655                 rv = SS_NEED_CONNECTION; /* No NetworkFailure -> SyncTarget etc... */
656
657         if (ns.conn == C_DISCONNECTING && ns.pdsk == D_OUTDATED &&
658             os.conn < C_CONNECTED && os.pdsk > D_OUTDATED)
659                 rv = SS_OUTDATE_WO_CONN;
660
661         return rv;
662 }
663
664 static enum drbd_state_rv
665 is_valid_conn_transition(enum drbd_conns oc, enum drbd_conns nc)
666 {
667         /* no change -> nothing to do, at least for the connection part */
668         if (oc == nc)
669                 return SS_NOTHING_TO_DO;
670
671         /* disconnect of an unconfigured connection does not make sense */
672         if (oc == C_STANDALONE && nc == C_DISCONNECTING)
673                 return SS_ALREADY_STANDALONE;
674
675         /* from C_STANDALONE, we start with C_UNCONNECTED */
676         if (oc == C_STANDALONE && nc != C_UNCONNECTED)
677                 return SS_NEED_CONNECTION;
678
679         /* When establishing a connection we need to go through WF_REPORT_PARAMS!
680            Necessary to do the right thing upon invalidate-remote on a disconnected resource */
681         if (oc < C_WF_REPORT_PARAMS && nc >= C_CONNECTED)
682                 return SS_NEED_CONNECTION;
683
684         /* After a network error only C_UNCONNECTED or C_DISCONNECTING may follow. */
685         if (oc >= C_TIMEOUT && oc <= C_TEAR_DOWN && nc != C_UNCONNECTED && nc != C_DISCONNECTING)
686                 return SS_IN_TRANSIENT_STATE;
687
688         /* After C_DISCONNECTING only C_STANDALONE may follow */
689         if (oc == C_DISCONNECTING && nc != C_STANDALONE)
690                 return SS_IN_TRANSIENT_STATE;
691
692         return SS_SUCCESS;
693 }
694
695
696 /**
697  * is_valid_transition() - Returns an SS_ error code if the state transition is not possible
698  * This limits hard state transitions. Hard state transitions are facts there are
699  * imposed on DRBD by the environment. E.g. disk broke or network broke down.
700  * But those hard state transitions are still not allowed to do everything.
701  * @ns:         new state.
702  * @os:         old state.
703  */
704 static enum drbd_state_rv
705 is_valid_transition(union drbd_state os, union drbd_state ns)
706 {
707         enum drbd_state_rv rv;
708
709         rv = is_valid_conn_transition(os.conn, ns.conn);
710
711         /* we cannot fail (again) if we already detached */
712         if (ns.disk == D_FAILED && os.disk == D_DISKLESS)
713                 rv = SS_IS_DISKLESS;
714
715         return rv;
716 }
717
718 static void print_sanitize_warnings(struct drbd_device *device, enum sanitize_state_warnings warn)
719 {
720         static const char *msg_table[] = {
721                 [NO_WARNING] = "",
722                 [ABORTED_ONLINE_VERIFY] = "Online-verify aborted.",
723                 [ABORTED_RESYNC] = "Resync aborted.",
724                 [CONNECTION_LOST_NEGOTIATING] = "Connection lost while negotiating, no data!",
725                 [IMPLICITLY_UPGRADED_DISK] = "Implicitly upgraded disk",
726                 [IMPLICITLY_UPGRADED_PDSK] = "Implicitly upgraded pdsk",
727         };
728
729         if (warn != NO_WARNING)
730                 drbd_warn(device, "%s\n", msg_table[warn]);
731 }
732
733 /**
734  * sanitize_state() - Resolves implicitly necessary additional changes to a state transition
735  * @device:     DRBD device.
736  * @os:         old state.
737  * @ns:         new state.
738  * @warn_sync_abort:
739  *
740  * When we loose connection, we have to set the state of the peers disk (pdsk)
741  * to D_UNKNOWN. This rule and many more along those lines are in this function.
742  */
743 static union drbd_state sanitize_state(struct drbd_device *device, union drbd_state ns,
744                                        enum sanitize_state_warnings *warn)
745 {
746         enum drbd_fencing_p fp;
747         enum drbd_disk_state disk_min, disk_max, pdsk_min, pdsk_max;
748
749         if (warn)
750                 *warn = NO_WARNING;
751
752         fp = FP_DONT_CARE;
753         if (get_ldev(device)) {
754                 rcu_read_lock();
755                 fp = rcu_dereference(device->ldev->disk_conf)->fencing;
756                 rcu_read_unlock();
757                 put_ldev(device);
758         }
759
760         /* Implications from connection to peer and peer_isp */
761         if (ns.conn < C_CONNECTED) {
762                 ns.peer_isp = 0;
763                 ns.peer = R_UNKNOWN;
764                 if (ns.pdsk > D_UNKNOWN || ns.pdsk < D_INCONSISTENT)
765                         ns.pdsk = D_UNKNOWN;
766         }
767
768         /* Clear the aftr_isp when becoming unconfigured */
769         if (ns.conn == C_STANDALONE && ns.disk == D_DISKLESS && ns.role == R_SECONDARY)
770                 ns.aftr_isp = 0;
771
772         /* An implication of the disk states onto the connection state */
773         /* Abort resync if a disk fails/detaches */
774         if (ns.conn > C_CONNECTED && (ns.disk <= D_FAILED || ns.pdsk <= D_FAILED)) {
775                 if (warn)
776                         *warn = ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T ?
777                                 ABORTED_ONLINE_VERIFY : ABORTED_RESYNC;
778                 ns.conn = C_CONNECTED;
779         }
780
781         /* Connection breaks down before we finished "Negotiating" */
782         if (ns.conn < C_CONNECTED && ns.disk == D_NEGOTIATING &&
783             get_ldev_if_state(device, D_NEGOTIATING)) {
784                 if (device->ed_uuid == device->ldev->md.uuid[UI_CURRENT]) {
785                         ns.disk = device->new_state_tmp.disk;
786                         ns.pdsk = device->new_state_tmp.pdsk;
787                 } else {
788                         if (warn)
789                                 *warn = CONNECTION_LOST_NEGOTIATING;
790                         ns.disk = D_DISKLESS;
791                         ns.pdsk = D_UNKNOWN;
792                 }
793                 put_ldev(device);
794         }
795
796         /* D_CONSISTENT and D_OUTDATED vanish when we get connected */
797         if (ns.conn >= C_CONNECTED && ns.conn < C_AHEAD) {
798                 if (ns.disk == D_CONSISTENT || ns.disk == D_OUTDATED)
799                         ns.disk = D_UP_TO_DATE;
800                 if (ns.pdsk == D_CONSISTENT || ns.pdsk == D_OUTDATED)
801                         ns.pdsk = D_UP_TO_DATE;
802         }
803
804         /* Implications of the connection stat on the disk states */
805         disk_min = D_DISKLESS;
806         disk_max = D_UP_TO_DATE;
807         pdsk_min = D_INCONSISTENT;
808         pdsk_max = D_UNKNOWN;
809         switch ((enum drbd_conns)ns.conn) {
810         case C_WF_BITMAP_T:
811         case C_PAUSED_SYNC_T:
812         case C_STARTING_SYNC_T:
813         case C_WF_SYNC_UUID:
814         case C_BEHIND:
815                 disk_min = D_INCONSISTENT;
816                 disk_max = D_OUTDATED;
817                 pdsk_min = D_UP_TO_DATE;
818                 pdsk_max = D_UP_TO_DATE;
819                 break;
820         case C_VERIFY_S:
821         case C_VERIFY_T:
822                 disk_min = D_UP_TO_DATE;
823                 disk_max = D_UP_TO_DATE;
824                 pdsk_min = D_UP_TO_DATE;
825                 pdsk_max = D_UP_TO_DATE;
826                 break;
827         case C_CONNECTED:
828                 disk_min = D_DISKLESS;
829                 disk_max = D_UP_TO_DATE;
830                 pdsk_min = D_DISKLESS;
831                 pdsk_max = D_UP_TO_DATE;
832                 break;
833         case C_WF_BITMAP_S:
834         case C_PAUSED_SYNC_S:
835         case C_STARTING_SYNC_S:
836         case C_AHEAD:
837                 disk_min = D_UP_TO_DATE;
838                 disk_max = D_UP_TO_DATE;
839                 pdsk_min = D_INCONSISTENT;
840                 pdsk_max = D_CONSISTENT; /* D_OUTDATED would be nice. But explicit outdate necessary*/
841                 break;
842         case C_SYNC_TARGET:
843                 disk_min = D_INCONSISTENT;
844                 disk_max = D_INCONSISTENT;
845                 pdsk_min = D_UP_TO_DATE;
846                 pdsk_max = D_UP_TO_DATE;
847                 break;
848         case C_SYNC_SOURCE:
849                 disk_min = D_UP_TO_DATE;
850                 disk_max = D_UP_TO_DATE;
851                 pdsk_min = D_INCONSISTENT;
852                 pdsk_max = D_INCONSISTENT;
853                 break;
854         case C_STANDALONE:
855         case C_DISCONNECTING:
856         case C_UNCONNECTED:
857         case C_TIMEOUT:
858         case C_BROKEN_PIPE:
859         case C_NETWORK_FAILURE:
860         case C_PROTOCOL_ERROR:
861         case C_TEAR_DOWN:
862         case C_WF_CONNECTION:
863         case C_WF_REPORT_PARAMS:
864         case C_MASK:
865                 break;
866         }
867         if (ns.disk > disk_max)
868                 ns.disk = disk_max;
869
870         if (ns.disk < disk_min) {
871                 if (warn)
872                         *warn = IMPLICITLY_UPGRADED_DISK;
873                 ns.disk = disk_min;
874         }
875         if (ns.pdsk > pdsk_max)
876                 ns.pdsk = pdsk_max;
877
878         if (ns.pdsk < pdsk_min) {
879                 if (warn)
880                         *warn = IMPLICITLY_UPGRADED_PDSK;
881                 ns.pdsk = pdsk_min;
882         }
883
884         if (fp == FP_STONITH &&
885             (ns.role == R_PRIMARY && ns.conn < C_CONNECTED && ns.pdsk > D_OUTDATED))
886                 ns.susp_fen = 1; /* Suspend IO while fence-peer handler runs (peer lost) */
887
888         if (device->resource->res_opts.on_no_data == OND_SUSPEND_IO &&
889             (ns.role == R_PRIMARY && ns.disk < D_UP_TO_DATE && ns.pdsk < D_UP_TO_DATE))
890                 ns.susp_nod = 1; /* Suspend IO while no data available (no accessible data available) */
891
892         if (ns.aftr_isp || ns.peer_isp || ns.user_isp) {
893                 if (ns.conn == C_SYNC_SOURCE)
894                         ns.conn = C_PAUSED_SYNC_S;
895                 if (ns.conn == C_SYNC_TARGET)
896                         ns.conn = C_PAUSED_SYNC_T;
897         } else {
898                 if (ns.conn == C_PAUSED_SYNC_S)
899                         ns.conn = C_SYNC_SOURCE;
900                 if (ns.conn == C_PAUSED_SYNC_T)
901                         ns.conn = C_SYNC_TARGET;
902         }
903
904         return ns;
905 }
906
907 void drbd_resume_al(struct drbd_device *device)
908 {
909         if (test_and_clear_bit(AL_SUSPENDED, &device->flags))
910                 drbd_info(device, "Resumed AL updates\n");
911 }
912
913 /* helper for __drbd_set_state */
914 static void set_ov_position(struct drbd_device *device, enum drbd_conns cs)
915 {
916         if (first_peer_device(device)->connection->agreed_pro_version < 90)
917                 device->ov_start_sector = 0;
918         device->rs_total = drbd_bm_bits(device);
919         device->ov_position = 0;
920         if (cs == C_VERIFY_T) {
921                 /* starting online verify from an arbitrary position
922                  * does not fit well into the existing protocol.
923                  * on C_VERIFY_T, we initialize ov_left and friends
924                  * implicitly in receive_DataRequest once the
925                  * first P_OV_REQUEST is received */
926                 device->ov_start_sector = ~(sector_t)0;
927         } else {
928                 unsigned long bit = BM_SECT_TO_BIT(device->ov_start_sector);
929                 if (bit >= device->rs_total) {
930                         device->ov_start_sector =
931                                 BM_BIT_TO_SECT(device->rs_total - 1);
932                         device->rs_total = 1;
933                 } else
934                         device->rs_total -= bit;
935                 device->ov_position = device->ov_start_sector;
936         }
937         device->ov_left = device->rs_total;
938 }
939
940 /**
941  * __drbd_set_state() - Set a new DRBD state
942  * @device:     DRBD device.
943  * @ns:         new state.
944  * @flags:      Flags
945  * @done:       Optional completion, that will get completed after the after_state_ch() finished
946  *
947  * Caller needs to hold req_lock, and global_state_lock. Do not call directly.
948  */
949 enum drbd_state_rv
950 __drbd_set_state(struct drbd_device *device, union drbd_state ns,
951                  enum chg_state_flags flags, struct completion *done)
952 {
953         union drbd_state os;
954         enum drbd_state_rv rv = SS_SUCCESS;
955         enum sanitize_state_warnings ssw;
956         struct after_state_chg_work *ascw;
957         bool did_remote, should_do_remote;
958
959         os = drbd_read_state(device);
960
961         ns = sanitize_state(device, ns, &ssw);
962         if (ns.i == os.i)
963                 return SS_NOTHING_TO_DO;
964
965         rv = is_valid_transition(os, ns);
966         if (rv < SS_SUCCESS)
967                 return rv;
968
969         if (!(flags & CS_HARD)) {
970                 /*  pre-state-change checks ; only look at ns  */
971                 /* See drbd_state_sw_errors in drbd_strings.c */
972
973                 rv = is_valid_state(device, ns);
974                 if (rv < SS_SUCCESS) {
975                         /* If the old state was illegal as well, then let
976                            this happen...*/
977
978                         if (is_valid_state(device, os) == rv)
979                                 rv = is_valid_soft_transition(os, ns, first_peer_device(device)->connection);
980                 } else
981                         rv = is_valid_soft_transition(os, ns, first_peer_device(device)->connection);
982         }
983
984         if (rv < SS_SUCCESS) {
985                 if (flags & CS_VERBOSE)
986                         print_st_err(device, os, ns, rv);
987                 return rv;
988         }
989
990         print_sanitize_warnings(device, ssw);
991
992         drbd_pr_state_change(device, os, ns, flags);
993
994         /* Display changes to the susp* flags that where caused by the call to
995            sanitize_state(). Only display it here if we where not called from
996            _conn_request_state() */
997         if (!(flags & CS_DC_SUSP))
998                 conn_pr_state_change(first_peer_device(device)->connection, os, ns,
999                                      (flags & ~CS_DC_MASK) | CS_DC_SUSP);
1000
1001         /* if we are going -> D_FAILED or D_DISKLESS, grab one extra reference
1002          * on the ldev here, to be sure the transition -> D_DISKLESS resp.
1003          * drbd_ldev_destroy() won't happen before our corresponding
1004          * after_state_ch works run, where we put_ldev again. */
1005         if ((os.disk != D_FAILED && ns.disk == D_FAILED) ||
1006             (os.disk != D_DISKLESS && ns.disk == D_DISKLESS))
1007                 atomic_inc(&device->local_cnt);
1008
1009         did_remote = drbd_should_do_remote(device->state);
1010         device->state.i = ns.i;
1011         should_do_remote = drbd_should_do_remote(device->state);
1012         device->resource->susp = ns.susp;
1013         device->resource->susp_nod = ns.susp_nod;
1014         device->resource->susp_fen = ns.susp_fen;
1015
1016         /* put replicated vs not-replicated requests in seperate epochs */
1017         if (did_remote != should_do_remote)
1018                 start_new_tl_epoch(first_peer_device(device)->connection);
1019
1020         if (os.disk == D_ATTACHING && ns.disk >= D_NEGOTIATING)
1021                 drbd_print_uuids(device, "attached to UUIDs");
1022
1023         /* Wake up role changes, that were delayed because of connection establishing */
1024         if (os.conn == C_WF_REPORT_PARAMS && ns.conn != C_WF_REPORT_PARAMS &&
1025             no_peer_wf_report_params(first_peer_device(device)->connection))
1026                 clear_bit(STATE_SENT, &first_peer_device(device)->connection->flags);
1027
1028         wake_up(&device->misc_wait);
1029         wake_up(&device->state_wait);
1030         wake_up(&first_peer_device(device)->connection->ping_wait);
1031
1032         /* Aborted verify run, or we reached the stop sector.
1033          * Log the last position, unless end-of-device. */
1034         if ((os.conn == C_VERIFY_S || os.conn == C_VERIFY_T) &&
1035             ns.conn <= C_CONNECTED) {
1036                 device->ov_start_sector =
1037                         BM_BIT_TO_SECT(drbd_bm_bits(device) - device->ov_left);
1038                 if (device->ov_left)
1039                         drbd_info(device, "Online Verify reached sector %llu\n",
1040                                 (unsigned long long)device->ov_start_sector);
1041         }
1042
1043         if ((os.conn == C_PAUSED_SYNC_T || os.conn == C_PAUSED_SYNC_S) &&
1044             (ns.conn == C_SYNC_TARGET  || ns.conn == C_SYNC_SOURCE)) {
1045                 drbd_info(device, "Syncer continues.\n");
1046                 device->rs_paused += (long)jiffies
1047                                   -(long)device->rs_mark_time[device->rs_last_mark];
1048                 if (ns.conn == C_SYNC_TARGET)
1049                         mod_timer(&device->resync_timer, jiffies);
1050         }
1051
1052         if ((os.conn == C_SYNC_TARGET  || os.conn == C_SYNC_SOURCE) &&
1053             (ns.conn == C_PAUSED_SYNC_T || ns.conn == C_PAUSED_SYNC_S)) {
1054                 drbd_info(device, "Resync suspended\n");
1055                 device->rs_mark_time[device->rs_last_mark] = jiffies;
1056         }
1057
1058         if (os.conn == C_CONNECTED &&
1059             (ns.conn == C_VERIFY_S || ns.conn == C_VERIFY_T)) {
1060                 unsigned long now = jiffies;
1061                 int i;
1062
1063                 set_ov_position(device, ns.conn);
1064                 device->rs_start = now;
1065                 device->rs_last_events = 0;
1066                 device->rs_last_sect_ev = 0;
1067                 device->ov_last_oos_size = 0;
1068                 device->ov_last_oos_start = 0;
1069
1070                 for (i = 0; i < DRBD_SYNC_MARKS; i++) {
1071                         device->rs_mark_left[i] = device->ov_left;
1072                         device->rs_mark_time[i] = now;
1073                 }
1074
1075                 drbd_rs_controller_reset(device);
1076
1077                 if (ns.conn == C_VERIFY_S) {
1078                         drbd_info(device, "Starting Online Verify from sector %llu\n",
1079                                         (unsigned long long)device->ov_position);
1080                         mod_timer(&device->resync_timer, jiffies);
1081                 }
1082         }
1083
1084         if (get_ldev(device)) {
1085                 u32 mdf = device->ldev->md.flags & ~(MDF_CONSISTENT|MDF_PRIMARY_IND|
1086                                                  MDF_CONNECTED_IND|MDF_WAS_UP_TO_DATE|
1087                                                  MDF_PEER_OUT_DATED|MDF_CRASHED_PRIMARY);
1088
1089                 mdf &= ~MDF_AL_CLEAN;
1090                 if (test_bit(CRASHED_PRIMARY, &device->flags))
1091                         mdf |= MDF_CRASHED_PRIMARY;
1092                 if (device->state.role == R_PRIMARY ||
1093                     (device->state.pdsk < D_INCONSISTENT && device->state.peer == R_PRIMARY))
1094                         mdf |= MDF_PRIMARY_IND;
1095                 if (device->state.conn > C_WF_REPORT_PARAMS)
1096                         mdf |= MDF_CONNECTED_IND;
1097                 if (device->state.disk > D_INCONSISTENT)
1098                         mdf |= MDF_CONSISTENT;
1099                 if (device->state.disk > D_OUTDATED)
1100                         mdf |= MDF_WAS_UP_TO_DATE;
1101                 if (device->state.pdsk <= D_OUTDATED && device->state.pdsk >= D_INCONSISTENT)
1102                         mdf |= MDF_PEER_OUT_DATED;
1103                 if (mdf != device->ldev->md.flags) {
1104                         device->ldev->md.flags = mdf;
1105                         drbd_md_mark_dirty(device);
1106                 }
1107                 if (os.disk < D_CONSISTENT && ns.disk >= D_CONSISTENT)
1108                         drbd_set_ed_uuid(device, device->ldev->md.uuid[UI_CURRENT]);
1109                 put_ldev(device);
1110         }
1111
1112         /* Peer was forced D_UP_TO_DATE & R_PRIMARY, consider to resync */
1113         if (os.disk == D_INCONSISTENT && os.pdsk == D_INCONSISTENT &&
1114             os.peer == R_SECONDARY && ns.peer == R_PRIMARY)
1115                 set_bit(CONSIDER_RESYNC, &device->flags);
1116
1117         /* Receiver should clean up itself */
1118         if (os.conn != C_DISCONNECTING && ns.conn == C_DISCONNECTING)
1119                 drbd_thread_stop_nowait(&first_peer_device(device)->connection->receiver);
1120
1121         /* Now the receiver finished cleaning up itself, it should die */
1122         if (os.conn != C_STANDALONE && ns.conn == C_STANDALONE)
1123                 drbd_thread_stop_nowait(&first_peer_device(device)->connection->receiver);
1124
1125         /* Upon network failure, we need to restart the receiver. */
1126         if (os.conn > C_WF_CONNECTION &&
1127             ns.conn <= C_TEAR_DOWN && ns.conn >= C_TIMEOUT)
1128                 drbd_thread_restart_nowait(&first_peer_device(device)->connection->receiver);
1129
1130         /* Resume AL writing if we get a connection */
1131         if (os.conn < C_CONNECTED && ns.conn >= C_CONNECTED) {
1132                 drbd_resume_al(device);
1133                 first_peer_device(device)->connection->connect_cnt++;
1134         }
1135
1136         /* remember last attach time so request_timer_fn() won't
1137          * kill newly established sessions while we are still trying to thaw
1138          * previously frozen IO */
1139         if ((os.disk == D_ATTACHING || os.disk == D_NEGOTIATING) &&
1140             ns.disk > D_NEGOTIATING)
1141                 device->last_reattach_jif = jiffies;
1142
1143         ascw = kmalloc(sizeof(*ascw), GFP_ATOMIC);
1144         if (ascw) {
1145                 ascw->os = os;
1146                 ascw->ns = ns;
1147                 ascw->flags = flags;
1148                 ascw->w.cb = w_after_state_ch;
1149                 ascw->device = device;
1150                 ascw->done = done;
1151                 drbd_queue_work(&first_peer_device(device)->connection->sender_work,
1152                                 &ascw->w);
1153         } else {
1154                 drbd_err(device, "Could not kmalloc an ascw\n");
1155         }
1156
1157         return rv;
1158 }
1159
1160 static int w_after_state_ch(struct drbd_work *w, int unused)
1161 {
1162         struct after_state_chg_work *ascw =
1163                 container_of(w, struct after_state_chg_work, w);
1164         struct drbd_device *device = ascw->device;
1165
1166         after_state_ch(device, ascw->os, ascw->ns, ascw->flags);
1167         if (ascw->flags & CS_WAIT_COMPLETE)
1168                 complete(ascw->done);
1169         kfree(ascw);
1170
1171         return 0;
1172 }
1173
1174 static void abw_start_sync(struct drbd_device *device, int rv)
1175 {
1176         if (rv) {
1177                 drbd_err(device, "Writing the bitmap failed not starting resync.\n");
1178                 _drbd_request_state(device, NS(conn, C_CONNECTED), CS_VERBOSE);
1179                 return;
1180         }
1181
1182         switch (device->state.conn) {
1183         case C_STARTING_SYNC_T:
1184                 _drbd_request_state(device, NS(conn, C_WF_SYNC_UUID), CS_VERBOSE);
1185                 break;
1186         case C_STARTING_SYNC_S:
1187                 drbd_start_resync(device, C_SYNC_SOURCE);
1188                 break;
1189         }
1190 }
1191
1192 int drbd_bitmap_io_from_worker(struct drbd_device *device,
1193                 int (*io_fn)(struct drbd_device *),
1194                 char *why, enum bm_flag flags)
1195 {
1196         int rv;
1197
1198         D_ASSERT(device, current == first_peer_device(device)->connection->worker.task);
1199
1200         /* open coded non-blocking drbd_suspend_io(device); */
1201         set_bit(SUSPEND_IO, &device->flags);
1202
1203         drbd_bm_lock(device, why, flags);
1204         rv = io_fn(device);
1205         drbd_bm_unlock(device);
1206
1207         drbd_resume_io(device);
1208
1209         return rv;
1210 }
1211
1212 /**
1213  * after_state_ch() - Perform after state change actions that may sleep
1214  * @device:     DRBD device.
1215  * @os:         old state.
1216  * @ns:         new state.
1217  * @flags:      Flags
1218  */
1219 static void after_state_ch(struct drbd_device *device, union drbd_state os,
1220                            union drbd_state ns, enum chg_state_flags flags)
1221 {
1222         struct drbd_resource *resource = device->resource;
1223         struct sib_info sib;
1224
1225         sib.sib_reason = SIB_STATE_CHANGE;
1226         sib.os = os;
1227         sib.ns = ns;
1228
1229         if (os.conn != C_CONNECTED && ns.conn == C_CONNECTED) {
1230                 clear_bit(CRASHED_PRIMARY, &device->flags);
1231                 if (device->p_uuid)
1232                         device->p_uuid[UI_FLAGS] &= ~((u64)2);
1233         }
1234
1235         /* Inform userspace about the change... */
1236         drbd_bcast_event(device, &sib);
1237
1238         if (!(os.role == R_PRIMARY && os.disk < D_UP_TO_DATE && os.pdsk < D_UP_TO_DATE) &&
1239             (ns.role == R_PRIMARY && ns.disk < D_UP_TO_DATE && ns.pdsk < D_UP_TO_DATE))
1240                 drbd_khelper(device, "pri-on-incon-degr");
1241
1242         /* Here we have the actions that are performed after a
1243            state change. This function might sleep */
1244
1245         if (ns.susp_nod) {
1246                 struct drbd_connection *connection = first_peer_device(device)->connection;
1247                 enum drbd_req_event what = NOTHING;
1248
1249                 spin_lock_irq(&device->resource->req_lock);
1250                 if (os.conn < C_CONNECTED && conn_lowest_conn(connection) >= C_CONNECTED)
1251                         what = RESEND;
1252
1253                 if ((os.disk == D_ATTACHING || os.disk == D_NEGOTIATING) &&
1254                     conn_lowest_disk(connection) > D_NEGOTIATING)
1255                         what = RESTART_FROZEN_DISK_IO;
1256
1257                 if (resource->susp_nod && what != NOTHING) {
1258                         _tl_restart(connection, what);
1259                         _conn_request_state(connection,
1260                                             (union drbd_state) { { .susp_nod = 1 } },
1261                                             (union drbd_state) { { .susp_nod = 0 } },
1262                                             CS_VERBOSE);
1263                 }
1264                 spin_unlock_irq(&device->resource->req_lock);
1265         }
1266
1267         if (ns.susp_fen) {
1268                 struct drbd_connection *connection = first_peer_device(device)->connection;
1269
1270                 spin_lock_irq(&device->resource->req_lock);
1271                 if (resource->susp_fen && conn_lowest_conn(connection) >= C_CONNECTED) {
1272                         /* case2: The connection was established again: */
1273                         struct drbd_peer_device *peer_device;
1274                         int vnr;
1275
1276                         rcu_read_lock();
1277                         idr_for_each_entry(&connection->peer_devices, peer_device, vnr)
1278                                 clear_bit(NEW_CUR_UUID, &peer_device->device->flags);
1279                         rcu_read_unlock();
1280                         _tl_restart(connection, RESEND);
1281                         _conn_request_state(connection,
1282                                             (union drbd_state) { { .susp_fen = 1 } },
1283                                             (union drbd_state) { { .susp_fen = 0 } },
1284                                             CS_VERBOSE);
1285                 }
1286                 spin_unlock_irq(&device->resource->req_lock);
1287         }
1288
1289         /* Became sync source.  With protocol >= 96, we still need to send out
1290          * the sync uuid now. Need to do that before any drbd_send_state, or
1291          * the other side may go "paused sync" before receiving the sync uuids,
1292          * which is unexpected. */
1293         if ((os.conn != C_SYNC_SOURCE && os.conn != C_PAUSED_SYNC_S) &&
1294             (ns.conn == C_SYNC_SOURCE || ns.conn == C_PAUSED_SYNC_S) &&
1295             first_peer_device(device)->connection->agreed_pro_version >= 96 && get_ldev(device)) {
1296                 drbd_gen_and_send_sync_uuid(first_peer_device(device));
1297                 put_ldev(device);
1298         }
1299
1300         /* Do not change the order of the if above and the two below... */
1301         if (os.pdsk == D_DISKLESS &&
1302             ns.pdsk > D_DISKLESS && ns.pdsk != D_UNKNOWN) {      /* attach on the peer */
1303                 /* we probably will start a resync soon.
1304                  * make sure those things are properly reset. */
1305                 device->rs_total = 0;
1306                 device->rs_failed = 0;
1307                 atomic_set(&device->rs_pending_cnt, 0);
1308                 drbd_rs_cancel_all(device);
1309
1310                 drbd_send_uuids(first_peer_device(device));
1311                 drbd_send_state(first_peer_device(device), ns);
1312         }
1313         /* No point in queuing send_bitmap if we don't have a connection
1314          * anymore, so check also the _current_ state, not only the new state
1315          * at the time this work was queued. */
1316         if (os.conn != C_WF_BITMAP_S && ns.conn == C_WF_BITMAP_S &&
1317             device->state.conn == C_WF_BITMAP_S)
1318                 drbd_queue_bitmap_io(device, &drbd_send_bitmap, NULL,
1319                                 "send_bitmap (WFBitMapS)",
1320                                 BM_LOCKED_TEST_ALLOWED);
1321
1322         /* Lost contact to peer's copy of the data */
1323         if ((os.pdsk >= D_INCONSISTENT &&
1324              os.pdsk != D_UNKNOWN &&
1325              os.pdsk != D_OUTDATED)
1326         &&  (ns.pdsk < D_INCONSISTENT ||
1327              ns.pdsk == D_UNKNOWN ||
1328              ns.pdsk == D_OUTDATED)) {
1329                 if (get_ldev(device)) {
1330                         if ((ns.role == R_PRIMARY || ns.peer == R_PRIMARY) &&
1331                             device->ldev->md.uuid[UI_BITMAP] == 0 && ns.disk >= D_UP_TO_DATE) {
1332                                 if (drbd_suspended(device)) {
1333                                         set_bit(NEW_CUR_UUID, &device->flags);
1334                                 } else {
1335                                         drbd_uuid_new_current(device);
1336                                         drbd_send_uuids(first_peer_device(device));
1337                                 }
1338                         }
1339                         put_ldev(device);
1340                 }
1341         }
1342
1343         if (ns.pdsk < D_INCONSISTENT && get_ldev(device)) {
1344                 if (os.peer == R_SECONDARY && ns.peer == R_PRIMARY &&
1345                     device->ldev->md.uuid[UI_BITMAP] == 0 && ns.disk >= D_UP_TO_DATE) {
1346                         drbd_uuid_new_current(device);
1347                         drbd_send_uuids(first_peer_device(device));
1348                 }
1349                 /* D_DISKLESS Peer becomes secondary */
1350                 if (os.peer == R_PRIMARY && ns.peer == R_SECONDARY)
1351                         /* We may still be Primary ourselves.
1352                          * No harm done if the bitmap still changes,
1353                          * redirtied pages will follow later. */
1354                         drbd_bitmap_io_from_worker(device, &drbd_bm_write,
1355                                 "demote diskless peer", BM_LOCKED_SET_ALLOWED);
1356                 put_ldev(device);
1357         }
1358
1359         /* Write out all changed bits on demote.
1360          * Though, no need to da that just yet
1361          * if there is a resync going on still */
1362         if (os.role == R_PRIMARY && ns.role == R_SECONDARY &&
1363                 device->state.conn <= C_CONNECTED && get_ldev(device)) {
1364                 /* No changes to the bitmap expected this time, so assert that,
1365                  * even though no harm was done if it did change. */
1366                 drbd_bitmap_io_from_worker(device, &drbd_bm_write,
1367                                 "demote", BM_LOCKED_TEST_ALLOWED);
1368                 put_ldev(device);
1369         }
1370
1371         /* Last part of the attaching process ... */
1372         if (ns.conn >= C_CONNECTED &&
1373             os.disk == D_ATTACHING && ns.disk == D_NEGOTIATING) {
1374                 drbd_send_sizes(first_peer_device(device), 0, 0);  /* to start sync... */
1375                 drbd_send_uuids(first_peer_device(device));
1376                 drbd_send_state(first_peer_device(device), ns);
1377         }
1378
1379         /* We want to pause/continue resync, tell peer. */
1380         if (ns.conn >= C_CONNECTED &&
1381              ((os.aftr_isp != ns.aftr_isp) ||
1382               (os.user_isp != ns.user_isp)))
1383                 drbd_send_state(first_peer_device(device), ns);
1384
1385         /* In case one of the isp bits got set, suspend other devices. */
1386         if ((!os.aftr_isp && !os.peer_isp && !os.user_isp) &&
1387             (ns.aftr_isp || ns.peer_isp || ns.user_isp))
1388                 suspend_other_sg(device);
1389
1390         /* Make sure the peer gets informed about eventual state
1391            changes (ISP bits) while we were in WFReportParams. */
1392         if (os.conn == C_WF_REPORT_PARAMS && ns.conn >= C_CONNECTED)
1393                 drbd_send_state(first_peer_device(device), ns);
1394
1395         if (os.conn != C_AHEAD && ns.conn == C_AHEAD)
1396                 drbd_send_state(first_peer_device(device), ns);
1397
1398         /* We are in the progress to start a full sync... */
1399         if ((os.conn != C_STARTING_SYNC_T && ns.conn == C_STARTING_SYNC_T) ||
1400             (os.conn != C_STARTING_SYNC_S && ns.conn == C_STARTING_SYNC_S))
1401                 /* no other bitmap changes expected during this phase */
1402                 drbd_queue_bitmap_io(device,
1403                         &drbd_bmio_set_n_write, &abw_start_sync,
1404                         "set_n_write from StartingSync", BM_LOCKED_TEST_ALLOWED);
1405
1406         /* first half of local IO error, failure to attach,
1407          * or administrative detach */
1408         if (os.disk != D_FAILED && ns.disk == D_FAILED) {
1409                 enum drbd_io_error_p eh = EP_PASS_ON;
1410                 int was_io_error = 0;
1411                 /* corresponding get_ldev was in __drbd_set_state, to serialize
1412                  * our cleanup here with the transition to D_DISKLESS.
1413                  * But is is still not save to dreference ldev here, since
1414                  * we might come from an failed Attach before ldev was set. */
1415                 if (device->ldev) {
1416                         rcu_read_lock();
1417                         eh = rcu_dereference(device->ldev->disk_conf)->on_io_error;
1418                         rcu_read_unlock();
1419
1420                         was_io_error = test_and_clear_bit(WAS_IO_ERROR, &device->flags);
1421
1422                         if (was_io_error && eh == EP_CALL_HELPER)
1423                                 drbd_khelper(device, "local-io-error");
1424
1425                         /* Immediately allow completion of all application IO,
1426                          * that waits for completion from the local disk,
1427                          * if this was a force-detach due to disk_timeout
1428                          * or administrator request (drbdsetup detach --force).
1429                          * Do NOT abort otherwise.
1430                          * Aborting local requests may cause serious problems,
1431                          * if requests are completed to upper layers already,
1432                          * and then later the already submitted local bio completes.
1433                          * This can cause DMA into former bio pages that meanwhile
1434                          * have been re-used for other things.
1435                          * So aborting local requests may cause crashes,
1436                          * or even worse, silent data corruption.
1437                          */
1438                         if (test_and_clear_bit(FORCE_DETACH, &device->flags))
1439                                 tl_abort_disk_io(device);
1440
1441                         /* current state still has to be D_FAILED,
1442                          * there is only one way out: to D_DISKLESS,
1443                          * and that may only happen after our put_ldev below. */
1444                         if (device->state.disk != D_FAILED)
1445                                 drbd_err(device,
1446                                         "ASSERT FAILED: disk is %s during detach\n",
1447                                         drbd_disk_str(device->state.disk));
1448
1449                         if (ns.conn >= C_CONNECTED)
1450                                 drbd_send_state(first_peer_device(device), ns);
1451
1452                         drbd_rs_cancel_all(device);
1453
1454                         /* In case we want to get something to stable storage still,
1455                          * this may be the last chance.
1456                          * Following put_ldev may transition to D_DISKLESS. */
1457                         drbd_md_sync(device);
1458                 }
1459                 put_ldev(device);
1460         }
1461
1462         /* second half of local IO error, failure to attach,
1463          * or administrative detach,
1464          * after local_cnt references have reached zero again */
1465         if (os.disk != D_DISKLESS && ns.disk == D_DISKLESS) {
1466                 /* We must still be diskless,
1467                  * re-attach has to be serialized with this! */
1468                 if (device->state.disk != D_DISKLESS)
1469                         drbd_err(device,
1470                                  "ASSERT FAILED: disk is %s while going diskless\n",
1471                                  drbd_disk_str(device->state.disk));
1472
1473                 if (ns.conn >= C_CONNECTED)
1474                         drbd_send_state(first_peer_device(device), ns);
1475                 /* corresponding get_ldev in __drbd_set_state
1476                  * this may finally trigger drbd_ldev_destroy. */
1477                 put_ldev(device);
1478         }
1479
1480         /* Notify peer that I had a local IO error, and did not detached.. */
1481         if (os.disk == D_UP_TO_DATE && ns.disk == D_INCONSISTENT && ns.conn >= C_CONNECTED)
1482                 drbd_send_state(first_peer_device(device), ns);
1483
1484         /* Disks got bigger while they were detached */
1485         if (ns.disk > D_NEGOTIATING && ns.pdsk > D_NEGOTIATING &&
1486             test_and_clear_bit(RESYNC_AFTER_NEG, &device->flags)) {
1487                 if (ns.conn == C_CONNECTED)
1488                         resync_after_online_grow(device);
1489         }
1490
1491         /* A resync finished or aborted, wake paused devices... */
1492         if ((os.conn > C_CONNECTED && ns.conn <= C_CONNECTED) ||
1493             (os.peer_isp && !ns.peer_isp) ||
1494             (os.user_isp && !ns.user_isp))
1495                 resume_next_sg(device);
1496
1497         /* sync target done with resync.  Explicitly notify peer, even though
1498          * it should (at least for non-empty resyncs) already know itself. */
1499         if (os.disk < D_UP_TO_DATE && os.conn >= C_SYNC_SOURCE && ns.conn == C_CONNECTED)
1500                 drbd_send_state(first_peer_device(device), ns);
1501
1502         /* Verify finished, or reached stop sector.  Peer did not know about
1503          * the stop sector, and we may even have changed the stop sector during
1504          * verify to interrupt/stop early.  Send the new state. */
1505         if (os.conn == C_VERIFY_S && ns.conn == C_CONNECTED
1506         && verify_can_do_stop_sector(device))
1507                 drbd_send_state(first_peer_device(device), ns);
1508
1509         /* This triggers bitmap writeout of potentially still unwritten pages
1510          * if the resync finished cleanly, or aborted because of peer disk
1511          * failure, or because of connection loss.
1512          * For resync aborted because of local disk failure, we cannot do
1513          * any bitmap writeout anymore.
1514          * No harm done if some bits change during this phase.
1515          */
1516         if (os.conn > C_CONNECTED && ns.conn <= C_CONNECTED && get_ldev(device)) {
1517                 drbd_queue_bitmap_io(device, &drbd_bm_write_copy_pages, NULL,
1518                         "write from resync_finished", BM_LOCKED_CHANGE_ALLOWED);
1519                 put_ldev(device);
1520         }
1521
1522         if (ns.disk == D_DISKLESS &&
1523             ns.conn == C_STANDALONE &&
1524             ns.role == R_SECONDARY) {
1525                 if (os.aftr_isp != ns.aftr_isp)
1526                         resume_next_sg(device);
1527         }
1528
1529         drbd_md_sync(device);
1530 }
1531
1532 struct after_conn_state_chg_work {
1533         struct drbd_work w;
1534         enum drbd_conns oc;
1535         union drbd_state ns_min;
1536         union drbd_state ns_max; /* new, max state, over all devices */
1537         enum chg_state_flags flags;
1538         struct drbd_connection *connection;
1539 };
1540
1541 static int w_after_conn_state_ch(struct drbd_work *w, int unused)
1542 {
1543         struct after_conn_state_chg_work *acscw =
1544                 container_of(w, struct after_conn_state_chg_work, w);
1545         struct drbd_connection *connection = acscw->connection;
1546         enum drbd_conns oc = acscw->oc;
1547         union drbd_state ns_max = acscw->ns_max;
1548         struct drbd_peer_device *peer_device;
1549         int vnr;
1550
1551         kfree(acscw);
1552
1553         /* Upon network configuration, we need to start the receiver */
1554         if (oc == C_STANDALONE && ns_max.conn == C_UNCONNECTED)
1555                 drbd_thread_start(&connection->receiver);
1556
1557         if (oc == C_DISCONNECTING && ns_max.conn == C_STANDALONE) {
1558                 struct net_conf *old_conf;
1559
1560                 mutex_lock(&connection->resource->conf_update);
1561                 old_conf = connection->net_conf;
1562                 connection->my_addr_len = 0;
1563                 connection->peer_addr_len = 0;
1564                 rcu_assign_pointer(connection->net_conf, NULL);
1565                 conn_free_crypto(connection);
1566                 mutex_unlock(&connection->resource->conf_update);
1567
1568                 synchronize_rcu();
1569                 kfree(old_conf);
1570         }
1571
1572         if (ns_max.susp_fen) {
1573                 /* case1: The outdate peer handler is successful: */
1574                 if (ns_max.pdsk <= D_OUTDATED) {
1575                         rcu_read_lock();
1576                         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
1577                                 struct drbd_device *device = peer_device->device;
1578                                 if (test_bit(NEW_CUR_UUID, &device->flags)) {
1579                                         drbd_uuid_new_current(device);
1580                                         clear_bit(NEW_CUR_UUID, &device->flags);
1581                                 }
1582                         }
1583                         rcu_read_unlock();
1584                         spin_lock_irq(&connection->resource->req_lock);
1585                         _tl_restart(connection, CONNECTION_LOST_WHILE_PENDING);
1586                         _conn_request_state(connection,
1587                                             (union drbd_state) { { .susp_fen = 1 } },
1588                                             (union drbd_state) { { .susp_fen = 0 } },
1589                                             CS_VERBOSE);
1590                         spin_unlock_irq(&connection->resource->req_lock);
1591                 }
1592         }
1593         kref_put(&connection->kref, drbd_destroy_connection);
1594
1595         conn_md_sync(connection);
1596
1597         return 0;
1598 }
1599
1600 void conn_old_common_state(struct drbd_connection *connection, union drbd_state *pcs, enum chg_state_flags *pf)
1601 {
1602         enum chg_state_flags flags = ~0;
1603         struct drbd_peer_device *peer_device;
1604         int vnr, first_vol = 1;
1605         union drbd_dev_state os, cs = {
1606                 { .role = R_SECONDARY,
1607                   .peer = R_UNKNOWN,
1608                   .conn = connection->cstate,
1609                   .disk = D_DISKLESS,
1610                   .pdsk = D_UNKNOWN,
1611                 } };
1612
1613         rcu_read_lock();
1614         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
1615                 struct drbd_device *device = peer_device->device;
1616                 os = device->state;
1617
1618                 if (first_vol) {
1619                         cs = os;
1620                         first_vol = 0;
1621                         continue;
1622                 }
1623
1624                 if (cs.role != os.role)
1625                         flags &= ~CS_DC_ROLE;
1626
1627                 if (cs.peer != os.peer)
1628                         flags &= ~CS_DC_PEER;
1629
1630                 if (cs.conn != os.conn)
1631                         flags &= ~CS_DC_CONN;
1632
1633                 if (cs.disk != os.disk)
1634                         flags &= ~CS_DC_DISK;
1635
1636                 if (cs.pdsk != os.pdsk)
1637                         flags &= ~CS_DC_PDSK;
1638         }
1639         rcu_read_unlock();
1640
1641         *pf |= CS_DC_MASK;
1642         *pf &= flags;
1643         (*pcs).i = cs.i;
1644 }
1645
1646 static enum drbd_state_rv
1647 conn_is_valid_transition(struct drbd_connection *connection, union drbd_state mask, union drbd_state val,
1648                          enum chg_state_flags flags)
1649 {
1650         enum drbd_state_rv rv = SS_SUCCESS;
1651         union drbd_state ns, os;
1652         struct drbd_peer_device *peer_device;
1653         int vnr;
1654
1655         rcu_read_lock();
1656         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
1657                 struct drbd_device *device = peer_device->device;
1658                 os = drbd_read_state(device);
1659                 ns = sanitize_state(device, apply_mask_val(os, mask, val), NULL);
1660
1661                 if (flags & CS_IGN_OUTD_FAIL && ns.disk == D_OUTDATED && os.disk < D_OUTDATED)
1662                         ns.disk = os.disk;
1663
1664                 if (ns.i == os.i)
1665                         continue;
1666
1667                 rv = is_valid_transition(os, ns);
1668
1669                 if (rv >= SS_SUCCESS && !(flags & CS_HARD)) {
1670                         rv = is_valid_state(device, ns);
1671                         if (rv < SS_SUCCESS) {
1672                                 if (is_valid_state(device, os) == rv)
1673                                         rv = is_valid_soft_transition(os, ns, connection);
1674                         } else
1675                                 rv = is_valid_soft_transition(os, ns, connection);
1676                 }
1677
1678                 if (rv < SS_SUCCESS) {
1679                         if (flags & CS_VERBOSE)
1680                                 print_st_err(device, os, ns, rv);
1681                         break;
1682                 }
1683         }
1684         rcu_read_unlock();
1685
1686         return rv;
1687 }
1688
1689 void
1690 conn_set_state(struct drbd_connection *connection, union drbd_state mask, union drbd_state val,
1691                union drbd_state *pns_min, union drbd_state *pns_max, enum chg_state_flags flags)
1692 {
1693         union drbd_state ns, os, ns_max = { };
1694         union drbd_state ns_min = {
1695                 { .role = R_MASK,
1696                   .peer = R_MASK,
1697                   .conn = val.conn,
1698                   .disk = D_MASK,
1699                   .pdsk = D_MASK
1700                 } };
1701         struct drbd_peer_device *peer_device;
1702         enum drbd_state_rv rv;
1703         int vnr, number_of_volumes = 0;
1704
1705         if (mask.conn == C_MASK) {
1706                 /* remember last connect time so request_timer_fn() won't
1707                  * kill newly established sessions while we are still trying to thaw
1708                  * previously frozen IO */
1709                 if (connection->cstate != C_WF_REPORT_PARAMS && val.conn == C_WF_REPORT_PARAMS)
1710                         connection->last_reconnect_jif = jiffies;
1711
1712                 connection->cstate = val.conn;
1713         }
1714
1715         rcu_read_lock();
1716         idr_for_each_entry(&connection->peer_devices, peer_device, vnr) {
1717                 struct drbd_device *device = peer_device->device;
1718                 number_of_volumes++;
1719                 os = drbd_read_state(device);
1720                 ns = apply_mask_val(os, mask, val);
1721                 ns = sanitize_state(device, ns, NULL);
1722
1723                 if (flags & CS_IGN_OUTD_FAIL && ns.disk == D_OUTDATED && os.disk < D_OUTDATED)
1724                         ns.disk = os.disk;
1725
1726                 rv = __drbd_set_state(device, ns, flags, NULL);
1727                 if (rv < SS_SUCCESS)
1728                         BUG();
1729
1730                 ns.i = device->state.i;
1731                 ns_max.role = max_role(ns.role, ns_max.role);
1732                 ns_max.peer = max_role(ns.peer, ns_max.peer);
1733                 ns_max.conn = max_t(enum drbd_conns, ns.conn, ns_max.conn);
1734                 ns_max.disk = max_t(enum drbd_disk_state, ns.disk, ns_max.disk);
1735                 ns_max.pdsk = max_t(enum drbd_disk_state, ns.pdsk, ns_max.pdsk);
1736
1737                 ns_min.role = min_role(ns.role, ns_min.role);
1738                 ns_min.peer = min_role(ns.peer, ns_min.peer);
1739                 ns_min.conn = min_t(enum drbd_conns, ns.conn, ns_min.conn);
1740                 ns_min.disk = min_t(enum drbd_disk_state, ns.disk, ns_min.disk);
1741                 ns_min.pdsk = min_t(enum drbd_disk_state, ns.pdsk, ns_min.pdsk);
1742         }
1743         rcu_read_unlock();
1744
1745         if (number_of_volumes == 0) {
1746                 ns_min = ns_max = (union drbd_state) { {
1747                                 .role = R_SECONDARY,
1748                                 .peer = R_UNKNOWN,
1749                                 .conn = val.conn,
1750                                 .disk = D_DISKLESS,
1751                                 .pdsk = D_UNKNOWN
1752                         } };
1753         }
1754
1755         ns_min.susp = ns_max.susp = connection->resource->susp;
1756         ns_min.susp_nod = ns_max.susp_nod = connection->resource->susp_nod;
1757         ns_min.susp_fen = ns_max.susp_fen = connection->resource->susp_fen;
1758
1759         *pns_min = ns_min;
1760         *pns_max = ns_max;
1761 }
1762
1763 static enum drbd_state_rv
1764 _conn_rq_cond(struct drbd_connection *connection, union drbd_state mask, union drbd_state val)
1765 {
1766         enum drbd_state_rv rv;
1767
1768         if (test_and_clear_bit(CONN_WD_ST_CHG_OKAY, &connection->flags))
1769                 return SS_CW_SUCCESS;
1770
1771         if (test_and_clear_bit(CONN_WD_ST_CHG_FAIL, &connection->flags))
1772                 return SS_CW_FAILED_BY_PEER;
1773
1774         rv = conn_is_valid_transition(connection, mask, val, 0);
1775         if (rv == SS_SUCCESS && connection->cstate == C_WF_REPORT_PARAMS)
1776                 rv = SS_UNKNOWN_ERROR; /* continue waiting */
1777
1778         return rv;
1779 }
1780
1781 enum drbd_state_rv
1782 _conn_request_state(struct drbd_connection *connection, union drbd_state mask, union drbd_state val,
1783                     enum chg_state_flags flags)
1784 {
1785         enum drbd_state_rv rv = SS_SUCCESS;
1786         struct after_conn_state_chg_work *acscw;
1787         enum drbd_conns oc = connection->cstate;
1788         union drbd_state ns_max, ns_min, os;
1789         bool have_mutex = false;
1790
1791         if (mask.conn) {
1792                 rv = is_valid_conn_transition(oc, val.conn);
1793                 if (rv < SS_SUCCESS)
1794                         goto abort;
1795         }
1796
1797         rv = conn_is_valid_transition(connection, mask, val, flags);
1798         if (rv < SS_SUCCESS)
1799                 goto abort;
1800
1801         if (oc == C_WF_REPORT_PARAMS && val.conn == C_DISCONNECTING &&
1802             !(flags & (CS_LOCAL_ONLY | CS_HARD))) {
1803
1804                 /* This will be a cluster-wide state change.
1805                  * Need to give up the spinlock, grab the mutex,
1806                  * then send the state change request, ... */
1807                 spin_unlock_irq(&connection->resource->req_lock);
1808                 mutex_lock(&connection->cstate_mutex);
1809                 have_mutex = true;
1810
1811                 set_bit(CONN_WD_ST_CHG_REQ, &connection->flags);
1812                 if (conn_send_state_req(connection, mask, val)) {
1813                         /* sending failed. */
1814                         clear_bit(CONN_WD_ST_CHG_REQ, &connection->flags);
1815                         rv = SS_CW_FAILED_BY_PEER;
1816                         /* need to re-aquire the spin lock, though */
1817                         goto abort_unlocked;
1818                 }
1819
1820                 if (val.conn == C_DISCONNECTING)
1821                         set_bit(DISCONNECT_SENT, &connection->flags);
1822
1823                 /* ... and re-aquire the spinlock.
1824                  * If _conn_rq_cond() returned >= SS_SUCCESS, we must call
1825                  * conn_set_state() within the same spinlock. */
1826                 spin_lock_irq(&connection->resource->req_lock);
1827                 wait_event_lock_irq(connection->ping_wait,
1828                                 (rv = _conn_rq_cond(connection, mask, val)),
1829                                 connection->resource->req_lock);
1830                 clear_bit(CONN_WD_ST_CHG_REQ, &connection->flags);
1831                 if (rv < SS_SUCCESS)
1832                         goto abort;
1833         }
1834
1835         conn_old_common_state(connection, &os, &flags);
1836         flags |= CS_DC_SUSP;
1837         conn_set_state(connection, mask, val, &ns_min, &ns_max, flags);
1838         conn_pr_state_change(connection, os, ns_max, flags);
1839
1840         acscw = kmalloc(sizeof(*acscw), GFP_ATOMIC);
1841         if (acscw) {
1842                 acscw->oc = os.conn;
1843                 acscw->ns_min = ns_min;
1844                 acscw->ns_max = ns_max;
1845                 acscw->flags = flags;
1846                 acscw->w.cb = w_after_conn_state_ch;
1847                 kref_get(&connection->kref);
1848                 acscw->connection = connection;
1849                 drbd_queue_work(&connection->sender_work, &acscw->w);
1850         } else {
1851                 drbd_err(connection, "Could not kmalloc an acscw\n");
1852         }
1853
1854  abort:
1855         if (have_mutex) {
1856                 /* mutex_unlock() "... must not be used in interrupt context.",
1857                  * so give up the spinlock, then re-aquire it */
1858                 spin_unlock_irq(&connection->resource->req_lock);
1859  abort_unlocked:
1860                 mutex_unlock(&connection->cstate_mutex);
1861                 spin_lock_irq(&connection->resource->req_lock);
1862         }
1863         if (rv < SS_SUCCESS && flags & CS_VERBOSE) {
1864                 drbd_err(connection, "State change failed: %s\n", drbd_set_st_err_str(rv));
1865                 drbd_err(connection, " mask = 0x%x val = 0x%x\n", mask.i, val.i);
1866                 drbd_err(connection, " old_conn:%s wanted_conn:%s\n", drbd_conn_str(oc), drbd_conn_str(val.conn));
1867         }
1868         return rv;
1869 }
1870
1871 enum drbd_state_rv
1872 conn_request_state(struct drbd_connection *connection, union drbd_state mask, union drbd_state val,
1873                    enum chg_state_flags flags)
1874 {
1875         enum drbd_state_rv rv;
1876
1877         spin_lock_irq(&connection->resource->req_lock);
1878         rv = _conn_request_state(connection, mask, val, flags);
1879         spin_unlock_irq(&connection->resource->req_lock);
1880
1881         return rv;
1882 }