ocfs2_dlm: Cookies in locks not being printed correctly in error messages
[linux-2.6-block.git] / fs / ocfs2 / dlm / dlmmaster.c
CommitLineData
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1/* -*- mode: c; c-basic-offset: 8; -*-
2 * vim: noexpandtab sw=8 ts=8 sts=0:
3 *
4 * dlmmod.c
5 *
6 * standalone DLM module
7 *
8 * Copyright (C) 2004 Oracle. All rights reserved.
9 *
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public
12 * License as published by the Free Software Foundation; either
13 * version 2 of the License, or (at your option) any later version.
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public
21 * License along with this program; if not, write to the
22 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
23 * Boston, MA 021110-1307, USA.
24 *
25 */
26
27
28#include <linux/module.h>
29#include <linux/fs.h>
30#include <linux/types.h>
31#include <linux/slab.h>
32#include <linux/highmem.h>
33#include <linux/utsname.h>
34#include <linux/init.h>
35#include <linux/sysctl.h>
36#include <linux/random.h>
37#include <linux/blkdev.h>
38#include <linux/socket.h>
39#include <linux/inet.h>
40#include <linux/spinlock.h>
41#include <linux/delay.h>
42
43
44#include "cluster/heartbeat.h"
45#include "cluster/nodemanager.h"
46#include "cluster/tcp.h"
47
48#include "dlmapi.h"
49#include "dlmcommon.h"
82353b59 50#include "dlmdomain.h"
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51
52#define MLOG_MASK_PREFIX (ML_DLM|ML_DLM_MASTER)
53#include "cluster/masklog.h"
54
55enum dlm_mle_type {
56 DLM_MLE_BLOCK,
57 DLM_MLE_MASTER,
58 DLM_MLE_MIGRATION
59};
60
61struct dlm_lock_name
62{
63 u8 len;
64 u8 name[DLM_LOCKID_NAME_MAX];
65};
66
67struct dlm_master_list_entry
68{
69 struct list_head list;
70 struct list_head hb_events;
71 struct dlm_ctxt *dlm;
72 spinlock_t spinlock;
73 wait_queue_head_t wq;
74 atomic_t woken;
75 struct kref mle_refs;
a2bf0477 76 int inuse;
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77 unsigned long maybe_map[BITS_TO_LONGS(O2NM_MAX_NODES)];
78 unsigned long vote_map[BITS_TO_LONGS(O2NM_MAX_NODES)];
79 unsigned long response_map[BITS_TO_LONGS(O2NM_MAX_NODES)];
80 unsigned long node_map[BITS_TO_LONGS(O2NM_MAX_NODES)];
81 u8 master;
82 u8 new_master;
83 enum dlm_mle_type type;
84 struct o2hb_callback_func mle_hb_up;
85 struct o2hb_callback_func mle_hb_down;
86 union {
87 struct dlm_lock_resource *res;
88 struct dlm_lock_name name;
89 } u;
90};
91
92static void dlm_mle_node_down(struct dlm_ctxt *dlm,
93 struct dlm_master_list_entry *mle,
94 struct o2nm_node *node,
95 int idx);
96static void dlm_mle_node_up(struct dlm_ctxt *dlm,
97 struct dlm_master_list_entry *mle,
98 struct o2nm_node *node,
99 int idx);
100
101static void dlm_assert_master_worker(struct dlm_work_item *item, void *data);
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102static int dlm_do_assert_master(struct dlm_ctxt *dlm,
103 struct dlm_lock_resource *res,
104 void *nodemap, u32 flags);
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105
106static inline int dlm_mle_equal(struct dlm_ctxt *dlm,
107 struct dlm_master_list_entry *mle,
108 const char *name,
109 unsigned int namelen)
110{
111 struct dlm_lock_resource *res;
112
113 if (dlm != mle->dlm)
114 return 0;
115
116 if (mle->type == DLM_MLE_BLOCK ||
117 mle->type == DLM_MLE_MIGRATION) {
118 if (namelen != mle->u.name.len ||
119 memcmp(name, mle->u.name.name, namelen)!=0)
120 return 0;
121 } else {
122 res = mle->u.res;
123 if (namelen != res->lockname.len ||
124 memcmp(res->lockname.name, name, namelen) != 0)
125 return 0;
126 }
127 return 1;
128}
129
95883719 130#define dlm_print_nodemap(m) _dlm_print_nodemap(m,#m)
8a9343fa 131static void _dlm_print_nodemap(unsigned long *map, const char *mapname)
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132{
133 int i;
134 printk("%s=[ ", mapname);
135 for (i=0; i<O2NM_MAX_NODES; i++)
136 if (test_bit(i, map))
137 printk("%d ", i);
138 printk("]");
139}
140
8a9343fa 141static void dlm_print_one_mle(struct dlm_master_list_entry *mle)
6714d8e8 142{
95883719 143 int refs;
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144 char *type;
145 char attached;
146 u8 master;
147 unsigned int namelen;
148 const char *name;
149 struct kref *k;
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150 unsigned long *maybe = mle->maybe_map,
151 *vote = mle->vote_map,
152 *resp = mle->response_map,
153 *node = mle->node_map;
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154
155 k = &mle->mle_refs;
156 if (mle->type == DLM_MLE_BLOCK)
157 type = "BLK";
158 else if (mle->type == DLM_MLE_MASTER)
159 type = "MAS";
160 else
161 type = "MIG";
162 refs = atomic_read(&k->refcount);
163 master = mle->master;
164 attached = (list_empty(&mle->hb_events) ? 'N' : 'Y');
165
166 if (mle->type != DLM_MLE_MASTER) {
167 namelen = mle->u.name.len;
168 name = mle->u.name.name;
169 } else {
170 namelen = mle->u.res->lockname.len;
171 name = mle->u.res->lockname.name;
172 }
173
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174 mlog(ML_NOTICE, "%.*s: %3s refs=%3d mas=%3u new=%3u evt=%c inuse=%d ",
175 namelen, name, type, refs, master, mle->new_master, attached,
176 mle->inuse);
177 dlm_print_nodemap(maybe);
178 printk(", ");
179 dlm_print_nodemap(vote);
180 printk(", ");
181 dlm_print_nodemap(resp);
182 printk(", ");
183 dlm_print_nodemap(node);
184 printk(", ");
185 printk("\n");
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186}
187
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188#if 0
189/* Code here is included but defined out as it aids debugging */
190
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191static void dlm_dump_mles(struct dlm_ctxt *dlm)
192{
193 struct dlm_master_list_entry *mle;
194 struct list_head *iter;
195
196 mlog(ML_NOTICE, "dumping all mles for domain %s:\n", dlm->name);
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197 spin_lock(&dlm->master_lock);
198 list_for_each(iter, &dlm->master_list) {
199 mle = list_entry(iter, struct dlm_master_list_entry, list);
200 dlm_print_one_mle(mle);
201 }
202 spin_unlock(&dlm->master_lock);
203}
204
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205int dlm_dump_all_mles(const char __user *data, unsigned int len)
206{
207 struct list_head *iter;
208 struct dlm_ctxt *dlm;
209
210 spin_lock(&dlm_domain_lock);
211 list_for_each(iter, &dlm_domains) {
212 dlm = list_entry (iter, struct dlm_ctxt, list);
213 mlog(ML_NOTICE, "found dlm: %p, name=%s\n", dlm, dlm->name);
214 dlm_dump_mles(dlm);
215 }
216 spin_unlock(&dlm_domain_lock);
217 return len;
218}
219EXPORT_SYMBOL_GPL(dlm_dump_all_mles);
220
221#endif /* 0 */
222
223
e18b890b 224static struct kmem_cache *dlm_mle_cache = NULL;
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225
226
227static void dlm_mle_release(struct kref *kref);
228static void dlm_init_mle(struct dlm_master_list_entry *mle,
229 enum dlm_mle_type type,
230 struct dlm_ctxt *dlm,
231 struct dlm_lock_resource *res,
232 const char *name,
233 unsigned int namelen);
234static void dlm_put_mle(struct dlm_master_list_entry *mle);
235static void __dlm_put_mle(struct dlm_master_list_entry *mle);
236static int dlm_find_mle(struct dlm_ctxt *dlm,
237 struct dlm_master_list_entry **mle,
238 char *name, unsigned int namelen);
239
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240static int dlm_do_master_request(struct dlm_lock_resource *res,
241 struct dlm_master_list_entry *mle, int to);
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242
243
244static int dlm_wait_for_lock_mastery(struct dlm_ctxt *dlm,
245 struct dlm_lock_resource *res,
246 struct dlm_master_list_entry *mle,
247 int *blocked);
248static int dlm_restart_lock_mastery(struct dlm_ctxt *dlm,
249 struct dlm_lock_resource *res,
250 struct dlm_master_list_entry *mle,
251 int blocked);
252static int dlm_add_migration_mle(struct dlm_ctxt *dlm,
253 struct dlm_lock_resource *res,
254 struct dlm_master_list_entry *mle,
255 struct dlm_master_list_entry **oldmle,
256 const char *name, unsigned int namelen,
257 u8 new_master, u8 master);
258
259static u8 dlm_pick_migration_target(struct dlm_ctxt *dlm,
260 struct dlm_lock_resource *res);
261static void dlm_remove_nonlocal_locks(struct dlm_ctxt *dlm,
262 struct dlm_lock_resource *res);
263static int dlm_mark_lockres_migrating(struct dlm_ctxt *dlm,
264 struct dlm_lock_resource *res,
265 u8 target);
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266static int dlm_pre_master_reco_lockres(struct dlm_ctxt *dlm,
267 struct dlm_lock_resource *res);
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268
269
270int dlm_is_host_down(int errno)
271{
272 switch (errno) {
273 case -EBADF:
274 case -ECONNREFUSED:
275 case -ENOTCONN:
276 case -ECONNRESET:
277 case -EPIPE:
278 case -EHOSTDOWN:
279 case -EHOSTUNREACH:
280 case -ETIMEDOUT:
281 case -ECONNABORTED:
282 case -ENETDOWN:
283 case -ENETUNREACH:
284 case -ENETRESET:
285 case -ESHUTDOWN:
286 case -ENOPROTOOPT:
287 case -EINVAL: /* if returned from our tcp code,
288 this means there is no socket */
289 return 1;
290 }
291 return 0;
292}
293
294
295/*
296 * MASTER LIST FUNCTIONS
297 */
298
299
300/*
301 * regarding master list entries and heartbeat callbacks:
302 *
303 * in order to avoid sleeping and allocation that occurs in
304 * heartbeat, master list entries are simply attached to the
305 * dlm's established heartbeat callbacks. the mle is attached
306 * when it is created, and since the dlm->spinlock is held at
307 * that time, any heartbeat event will be properly discovered
308 * by the mle. the mle needs to be detached from the
309 * dlm->mle_hb_events list as soon as heartbeat events are no
310 * longer useful to the mle, and before the mle is freed.
311 *
312 * as a general rule, heartbeat events are no longer needed by
313 * the mle once an "answer" regarding the lock master has been
314 * received.
315 */
316static inline void __dlm_mle_attach_hb_events(struct dlm_ctxt *dlm,
317 struct dlm_master_list_entry *mle)
318{
319 assert_spin_locked(&dlm->spinlock);
320
321 list_add_tail(&mle->hb_events, &dlm->mle_hb_events);
322}
323
324
325static inline void __dlm_mle_detach_hb_events(struct dlm_ctxt *dlm,
326 struct dlm_master_list_entry *mle)
327{
328 if (!list_empty(&mle->hb_events))
329 list_del_init(&mle->hb_events);
330}
331
332
333static inline void dlm_mle_detach_hb_events(struct dlm_ctxt *dlm,
334 struct dlm_master_list_entry *mle)
335{
336 spin_lock(&dlm->spinlock);
337 __dlm_mle_detach_hb_events(dlm, mle);
338 spin_unlock(&dlm->spinlock);
339}
340
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341static void dlm_get_mle_inuse(struct dlm_master_list_entry *mle)
342{
343 struct dlm_ctxt *dlm;
344 dlm = mle->dlm;
345
346 assert_spin_locked(&dlm->spinlock);
347 assert_spin_locked(&dlm->master_lock);
348 mle->inuse++;
349 kref_get(&mle->mle_refs);
350}
351
352static void dlm_put_mle_inuse(struct dlm_master_list_entry *mle)
353{
354 struct dlm_ctxt *dlm;
355 dlm = mle->dlm;
356
357 spin_lock(&dlm->spinlock);
358 spin_lock(&dlm->master_lock);
359 mle->inuse--;
360 __dlm_put_mle(mle);
361 spin_unlock(&dlm->master_lock);
362 spin_unlock(&dlm->spinlock);
363
364}
365
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366/* remove from list and free */
367static void __dlm_put_mle(struct dlm_master_list_entry *mle)
368{
369 struct dlm_ctxt *dlm;
370 dlm = mle->dlm;
371
372 assert_spin_locked(&dlm->spinlock);
373 assert_spin_locked(&dlm->master_lock);
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374 if (!atomic_read(&mle->mle_refs.refcount)) {
375 /* this may or may not crash, but who cares.
376 * it's a BUG. */
377 mlog(ML_ERROR, "bad mle: %p\n", mle);
378 dlm_print_one_mle(mle);
379 BUG();
380 } else
381 kref_put(&mle->mle_refs, dlm_mle_release);
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382}
383
384
385/* must not have any spinlocks coming in */
386static void dlm_put_mle(struct dlm_master_list_entry *mle)
387{
388 struct dlm_ctxt *dlm;
389 dlm = mle->dlm;
390
391 spin_lock(&dlm->spinlock);
392 spin_lock(&dlm->master_lock);
393 __dlm_put_mle(mle);
394 spin_unlock(&dlm->master_lock);
395 spin_unlock(&dlm->spinlock);
396}
397
398static inline void dlm_get_mle(struct dlm_master_list_entry *mle)
399{
400 kref_get(&mle->mle_refs);
401}
402
403static void dlm_init_mle(struct dlm_master_list_entry *mle,
404 enum dlm_mle_type type,
405 struct dlm_ctxt *dlm,
406 struct dlm_lock_resource *res,
407 const char *name,
408 unsigned int namelen)
409{
410 assert_spin_locked(&dlm->spinlock);
411
412 mle->dlm = dlm;
413 mle->type = type;
414 INIT_LIST_HEAD(&mle->list);
415 INIT_LIST_HEAD(&mle->hb_events);
416 memset(mle->maybe_map, 0, sizeof(mle->maybe_map));
417 spin_lock_init(&mle->spinlock);
418 init_waitqueue_head(&mle->wq);
419 atomic_set(&mle->woken, 0);
420 kref_init(&mle->mle_refs);
421 memset(mle->response_map, 0, sizeof(mle->response_map));
422 mle->master = O2NM_MAX_NODES;
423 mle->new_master = O2NM_MAX_NODES;
a2bf0477 424 mle->inuse = 0;
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425
426 if (mle->type == DLM_MLE_MASTER) {
427 BUG_ON(!res);
428 mle->u.res = res;
429 } else if (mle->type == DLM_MLE_BLOCK) {
430 BUG_ON(!name);
431 memcpy(mle->u.name.name, name, namelen);
432 mle->u.name.len = namelen;
433 } else /* DLM_MLE_MIGRATION */ {
434 BUG_ON(!name);
435 memcpy(mle->u.name.name, name, namelen);
436 mle->u.name.len = namelen;
437 }
438
439 /* copy off the node_map and register hb callbacks on our copy */
440 memcpy(mle->node_map, dlm->domain_map, sizeof(mle->node_map));
441 memcpy(mle->vote_map, dlm->domain_map, sizeof(mle->vote_map));
442 clear_bit(dlm->node_num, mle->vote_map);
443 clear_bit(dlm->node_num, mle->node_map);
444
445 /* attach the mle to the domain node up/down events */
446 __dlm_mle_attach_hb_events(dlm, mle);
447}
448
449
450/* returns 1 if found, 0 if not */
451static int dlm_find_mle(struct dlm_ctxt *dlm,
452 struct dlm_master_list_entry **mle,
453 char *name, unsigned int namelen)
454{
455 struct dlm_master_list_entry *tmpmle;
456 struct list_head *iter;
457
458 assert_spin_locked(&dlm->master_lock);
459
460 list_for_each(iter, &dlm->master_list) {
461 tmpmle = list_entry(iter, struct dlm_master_list_entry, list);
462 if (!dlm_mle_equal(dlm, tmpmle, name, namelen))
463 continue;
464 dlm_get_mle(tmpmle);
465 *mle = tmpmle;
466 return 1;
467 }
468 return 0;
469}
470
471void dlm_hb_event_notify_attached(struct dlm_ctxt *dlm, int idx, int node_up)
472{
473 struct dlm_master_list_entry *mle;
474 struct list_head *iter;
475
476 assert_spin_locked(&dlm->spinlock);
477
478 list_for_each(iter, &dlm->mle_hb_events) {
479 mle = list_entry(iter, struct dlm_master_list_entry,
480 hb_events);
481 if (node_up)
482 dlm_mle_node_up(dlm, mle, NULL, idx);
483 else
484 dlm_mle_node_down(dlm, mle, NULL, idx);
485 }
486}
487
488static void dlm_mle_node_down(struct dlm_ctxt *dlm,
489 struct dlm_master_list_entry *mle,
490 struct o2nm_node *node, int idx)
491{
492 spin_lock(&mle->spinlock);
493
494 if (!test_bit(idx, mle->node_map))
495 mlog(0, "node %u already removed from nodemap!\n", idx);
496 else
497 clear_bit(idx, mle->node_map);
498
499 spin_unlock(&mle->spinlock);
500}
501
502static void dlm_mle_node_up(struct dlm_ctxt *dlm,
503 struct dlm_master_list_entry *mle,
504 struct o2nm_node *node, int idx)
505{
506 spin_lock(&mle->spinlock);
507
508 if (test_bit(idx, mle->node_map))
509 mlog(0, "node %u already in node map!\n", idx);
510 else
511 set_bit(idx, mle->node_map);
512
513 spin_unlock(&mle->spinlock);
514}
515
516
517int dlm_init_mle_cache(void)
518{
519 dlm_mle_cache = kmem_cache_create("dlm_mle_cache",
520 sizeof(struct dlm_master_list_entry),
521 0, SLAB_HWCACHE_ALIGN,
522 NULL, NULL);
523 if (dlm_mle_cache == NULL)
524 return -ENOMEM;
525 return 0;
526}
527
528void dlm_destroy_mle_cache(void)
529{
530 if (dlm_mle_cache)
531 kmem_cache_destroy(dlm_mle_cache);
532}
533
534static void dlm_mle_release(struct kref *kref)
535{
536 struct dlm_master_list_entry *mle;
537 struct dlm_ctxt *dlm;
538
539 mlog_entry_void();
540
541 mle = container_of(kref, struct dlm_master_list_entry, mle_refs);
542 dlm = mle->dlm;
543
544 if (mle->type != DLM_MLE_MASTER) {
545 mlog(0, "calling mle_release for %.*s, type %d\n",
546 mle->u.name.len, mle->u.name.name, mle->type);
547 } else {
548 mlog(0, "calling mle_release for %.*s, type %d\n",
549 mle->u.res->lockname.len,
550 mle->u.res->lockname.name, mle->type);
551 }
552 assert_spin_locked(&dlm->spinlock);
553 assert_spin_locked(&dlm->master_lock);
554
555 /* remove from list if not already */
556 if (!list_empty(&mle->list))
557 list_del_init(&mle->list);
558
559 /* detach the mle from the domain node up/down events */
560 __dlm_mle_detach_hb_events(dlm, mle);
561
562 /* NOTE: kfree under spinlock here.
563 * if this is bad, we can move this to a freelist. */
564 kmem_cache_free(dlm_mle_cache, mle);
565}
566
567
568/*
569 * LOCK RESOURCE FUNCTIONS
570 */
571
572static void dlm_set_lockres_owner(struct dlm_ctxt *dlm,
573 struct dlm_lock_resource *res,
574 u8 owner)
575{
576 assert_spin_locked(&res->spinlock);
577
578 mlog_entry("%.*s, %u\n", res->lockname.len, res->lockname.name, owner);
579
580 if (owner == dlm->node_num)
581 atomic_inc(&dlm->local_resources);
582 else if (owner == DLM_LOCK_RES_OWNER_UNKNOWN)
583 atomic_inc(&dlm->unknown_resources);
584 else
585 atomic_inc(&dlm->remote_resources);
586
587 res->owner = owner;
588}
589
590void dlm_change_lockres_owner(struct dlm_ctxt *dlm,
591 struct dlm_lock_resource *res, u8 owner)
592{
593 assert_spin_locked(&res->spinlock);
594
595 if (owner == res->owner)
596 return;
597
598 if (res->owner == dlm->node_num)
599 atomic_dec(&dlm->local_resources);
600 else if (res->owner == DLM_LOCK_RES_OWNER_UNKNOWN)
601 atomic_dec(&dlm->unknown_resources);
602 else
603 atomic_dec(&dlm->remote_resources);
604
605 dlm_set_lockres_owner(dlm, res, owner);
606}
607
608
609static void dlm_lockres_release(struct kref *kref)
610{
611 struct dlm_lock_resource *res;
612
613 res = container_of(kref, struct dlm_lock_resource, refs);
614
615 /* This should not happen -- all lockres' have a name
616 * associated with them at init time. */
617 BUG_ON(!res->lockname.name);
618
619 mlog(0, "destroying lockres %.*s\n", res->lockname.len,
620 res->lockname.name);
621
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622 if (!hlist_unhashed(&res->hash_node) ||
623 !list_empty(&res->granted) ||
624 !list_empty(&res->converting) ||
625 !list_empty(&res->blocked) ||
626 !list_empty(&res->dirty) ||
627 !list_empty(&res->recovering) ||
628 !list_empty(&res->purge)) {
629 mlog(ML_ERROR,
630 "Going to BUG for resource %.*s."
631 " We're on a list! [%c%c%c%c%c%c%c]\n",
632 res->lockname.len, res->lockname.name,
633 !hlist_unhashed(&res->hash_node) ? 'H' : ' ',
634 !list_empty(&res->granted) ? 'G' : ' ',
635 !list_empty(&res->converting) ? 'C' : ' ',
636 !list_empty(&res->blocked) ? 'B' : ' ',
637 !list_empty(&res->dirty) ? 'D' : ' ',
638 !list_empty(&res->recovering) ? 'R' : ' ',
639 !list_empty(&res->purge) ? 'P' : ' ');
640
641 dlm_print_one_lock_resource(res);
642 }
643
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644 /* By the time we're ready to blow this guy away, we shouldn't
645 * be on any lists. */
81f2094a 646 BUG_ON(!hlist_unhashed(&res->hash_node));
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647 BUG_ON(!list_empty(&res->granted));
648 BUG_ON(!list_empty(&res->converting));
649 BUG_ON(!list_empty(&res->blocked));
650 BUG_ON(!list_empty(&res->dirty));
651 BUG_ON(!list_empty(&res->recovering));
652 BUG_ON(!list_empty(&res->purge));
653
654 kfree(res->lockname.name);
655
656 kfree(res);
657}
658
6714d8e8
KH
659void dlm_lockres_put(struct dlm_lock_resource *res)
660{
661 kref_put(&res->refs, dlm_lockres_release);
662}
663
664static void dlm_init_lockres(struct dlm_ctxt *dlm,
665 struct dlm_lock_resource *res,
666 const char *name, unsigned int namelen)
667{
668 char *qname;
669
670 /* If we memset here, we lose our reference to the kmalloc'd
671 * res->lockname.name, so be sure to init every field
672 * correctly! */
673
674 qname = (char *) res->lockname.name;
675 memcpy(qname, name, namelen);
676
677 res->lockname.len = namelen;
a3d33291 678 res->lockname.hash = dlm_lockid_hash(name, namelen);
6714d8e8
KH
679
680 init_waitqueue_head(&res->wq);
681 spin_lock_init(&res->spinlock);
81f2094a 682 INIT_HLIST_NODE(&res->hash_node);
6714d8e8
KH
683 INIT_LIST_HEAD(&res->granted);
684 INIT_LIST_HEAD(&res->converting);
685 INIT_LIST_HEAD(&res->blocked);
686 INIT_LIST_HEAD(&res->dirty);
687 INIT_LIST_HEAD(&res->recovering);
688 INIT_LIST_HEAD(&res->purge);
689 atomic_set(&res->asts_reserved, 0);
690 res->migration_pending = 0;
ba2bf218 691 res->inflight_locks = 0;
6714d8e8
KH
692
693 kref_init(&res->refs);
694
695 /* just for consistency */
696 spin_lock(&res->spinlock);
697 dlm_set_lockres_owner(dlm, res, DLM_LOCK_RES_OWNER_UNKNOWN);
698 spin_unlock(&res->spinlock);
699
700 res->state = DLM_LOCK_RES_IN_PROGRESS;
701
702 res->last_used = 0;
703
704 memset(res->lvb, 0, DLM_LVB_LEN);
ba2bf218 705 memset(res->refmap, 0, sizeof(res->refmap));
6714d8e8
KH
706}
707
708struct dlm_lock_resource *dlm_new_lockres(struct dlm_ctxt *dlm,
709 const char *name,
710 unsigned int namelen)
711{
712 struct dlm_lock_resource *res;
713
ad8100e0 714 res = kmalloc(sizeof(struct dlm_lock_resource), GFP_NOFS);
6714d8e8
KH
715 if (!res)
716 return NULL;
717
ad8100e0 718 res->lockname.name = kmalloc(namelen, GFP_NOFS);
6714d8e8
KH
719 if (!res->lockname.name) {
720 kfree(res);
721 return NULL;
722 }
723
724 dlm_init_lockres(dlm, res, name, namelen);
725 return res;
726}
727
ba2bf218
KH
728void __dlm_lockres_grab_inflight_ref(struct dlm_ctxt *dlm,
729 struct dlm_lock_resource *res,
730 int new_lockres,
731 const char *file,
732 int line)
733{
734 if (!new_lockres)
735 assert_spin_locked(&res->spinlock);
736
737 if (!test_bit(dlm->node_num, res->refmap)) {
738 BUG_ON(res->inflight_locks != 0);
739 dlm_lockres_set_refmap_bit(dlm->node_num, res);
740 }
741 res->inflight_locks++;
742 mlog(0, "%s:%.*s: inflight++: now %u\n",
743 dlm->name, res->lockname.len, res->lockname.name,
744 res->inflight_locks);
745}
746
747void __dlm_lockres_drop_inflight_ref(struct dlm_ctxt *dlm,
748 struct dlm_lock_resource *res,
749 const char *file,
750 int line)
751{
752 assert_spin_locked(&res->spinlock);
753
754 BUG_ON(res->inflight_locks == 0);
755 res->inflight_locks--;
756 mlog(0, "%s:%.*s: inflight--: now %u\n",
757 dlm->name, res->lockname.len, res->lockname.name,
758 res->inflight_locks);
759 if (res->inflight_locks == 0)
760 dlm_lockres_clear_refmap_bit(dlm->node_num, res);
761 wake_up(&res->wq);
762}
763
6714d8e8
KH
764/*
765 * lookup a lock resource by name.
766 * may already exist in the hashtable.
767 * lockid is null terminated
768 *
769 * if not, allocate enough for the lockres and for
770 * the temporary structure used in doing the mastering.
771 *
772 * also, do a lookup in the dlm->master_list to see
773 * if another node has begun mastering the same lock.
774 * if so, there should be a block entry in there
775 * for this name, and we should *not* attempt to master
776 * the lock here. need to wait around for that node
777 * to assert_master (or die).
778 *
779 */
780struct dlm_lock_resource * dlm_get_lock_resource(struct dlm_ctxt *dlm,
781 const char *lockid,
3384f3df 782 int namelen,
6714d8e8
KH
783 int flags)
784{
785 struct dlm_lock_resource *tmpres=NULL, *res=NULL;
786 struct dlm_master_list_entry *mle = NULL;
787 struct dlm_master_list_entry *alloc_mle = NULL;
788 int blocked = 0;
789 int ret, nodenum;
790 struct dlm_node_iter iter;
3384f3df 791 unsigned int hash;
6714d8e8 792 int tries = 0;
c03872f5 793 int bit, wait_on_recovery = 0;
ba2bf218 794 int drop_inflight_if_nonlocal = 0;
6714d8e8
KH
795
796 BUG_ON(!lockid);
797
a3d33291 798 hash = dlm_lockid_hash(lockid, namelen);
6714d8e8
KH
799
800 mlog(0, "get lockres %s (len %d)\n", lockid, namelen);
801
802lookup:
803 spin_lock(&dlm->spinlock);
ba2bf218 804 tmpres = __dlm_lookup_lockres_full(dlm, lockid, namelen, hash);
6714d8e8 805 if (tmpres) {
ba2bf218
KH
806 int dropping_ref = 0;
807
808 spin_lock(&tmpres->spinlock);
809 if (tmpres->owner == dlm->node_num) {
810 BUG_ON(tmpres->state & DLM_LOCK_RES_DROPPING_REF);
811 dlm_lockres_grab_inflight_ref(dlm, tmpres);
812 } else if (tmpres->state & DLM_LOCK_RES_DROPPING_REF)
813 dropping_ref = 1;
814 spin_unlock(&tmpres->spinlock);
6714d8e8 815 spin_unlock(&dlm->spinlock);
ba2bf218
KH
816
817 /* wait until done messaging the master, drop our ref to allow
818 * the lockres to be purged, start over. */
819 if (dropping_ref) {
820 spin_lock(&tmpres->spinlock);
821 __dlm_wait_on_lockres_flags(tmpres, DLM_LOCK_RES_DROPPING_REF);
822 spin_unlock(&tmpres->spinlock);
823 dlm_lockres_put(tmpres);
824 tmpres = NULL;
825 goto lookup;
826 }
827
6714d8e8
KH
828 mlog(0, "found in hash!\n");
829 if (res)
830 dlm_lockres_put(res);
831 res = tmpres;
832 goto leave;
833 }
834
835 if (!res) {
836 spin_unlock(&dlm->spinlock);
837 mlog(0, "allocating a new resource\n");
838 /* nothing found and we need to allocate one. */
839 alloc_mle = (struct dlm_master_list_entry *)
ad8100e0 840 kmem_cache_alloc(dlm_mle_cache, GFP_NOFS);
6714d8e8
KH
841 if (!alloc_mle)
842 goto leave;
843 res = dlm_new_lockres(dlm, lockid, namelen);
844 if (!res)
845 goto leave;
846 goto lookup;
847 }
848
849 mlog(0, "no lockres found, allocated our own: %p\n", res);
850
851 if (flags & LKM_LOCAL) {
852 /* caller knows it's safe to assume it's not mastered elsewhere
853 * DONE! return right away */
854 spin_lock(&res->spinlock);
855 dlm_change_lockres_owner(dlm, res, dlm->node_num);
856 __dlm_insert_lockres(dlm, res);
ba2bf218 857 dlm_lockres_grab_inflight_ref(dlm, res);
6714d8e8
KH
858 spin_unlock(&res->spinlock);
859 spin_unlock(&dlm->spinlock);
860 /* lockres still marked IN_PROGRESS */
861 goto wake_waiters;
862 }
863
864 /* check master list to see if another node has started mastering it */
865 spin_lock(&dlm->master_lock);
866
867 /* if we found a block, wait for lock to be mastered by another node */
868 blocked = dlm_find_mle(dlm, &mle, (char *)lockid, namelen);
869 if (blocked) {
ba2bf218 870 int mig;
6714d8e8
KH
871 if (mle->type == DLM_MLE_MASTER) {
872 mlog(ML_ERROR, "master entry for nonexistent lock!\n");
873 BUG();
ba2bf218
KH
874 }
875 mig = (mle->type == DLM_MLE_MIGRATION);
876 /* if there is a migration in progress, let the migration
877 * finish before continuing. we can wait for the absence
878 * of the MIGRATION mle: either the migrate finished or
879 * one of the nodes died and the mle was cleaned up.
880 * if there is a BLOCK here, but it already has a master
881 * set, we are too late. the master does not have a ref
882 * for us in the refmap. detach the mle and drop it.
883 * either way, go back to the top and start over. */
884 if (mig || mle->master != O2NM_MAX_NODES) {
885 BUG_ON(mig && mle->master == dlm->node_num);
886 /* we arrived too late. the master does not
887 * have a ref for us. retry. */
888 mlog(0, "%s:%.*s: late on %s\n",
889 dlm->name, namelen, lockid,
890 mig ? "MIGRATION" : "BLOCK");
6714d8e8 891 spin_unlock(&dlm->master_lock);
6714d8e8
KH
892 spin_unlock(&dlm->spinlock);
893
894 /* master is known, detach */
ba2bf218
KH
895 if (!mig)
896 dlm_mle_detach_hb_events(dlm, mle);
6714d8e8
KH
897 dlm_put_mle(mle);
898 mle = NULL;
ba2bf218
KH
899 /* this is lame, but we cant wait on either
900 * the mle or lockres waitqueue here */
901 if (mig)
902 msleep(100);
903 goto lookup;
6714d8e8
KH
904 }
905 } else {
906 /* go ahead and try to master lock on this node */
907 mle = alloc_mle;
908 /* make sure this does not get freed below */
909 alloc_mle = NULL;
910 dlm_init_mle(mle, DLM_MLE_MASTER, dlm, res, NULL, 0);
911 set_bit(dlm->node_num, mle->maybe_map);
912 list_add(&mle->list, &dlm->master_list);
c03872f5
KH
913
914 /* still holding the dlm spinlock, check the recovery map
915 * to see if there are any nodes that still need to be
916 * considered. these will not appear in the mle nodemap
917 * but they might own this lockres. wait on them. */
918 bit = find_next_bit(dlm->recovery_map, O2NM_MAX_NODES, 0);
919 if (bit < O2NM_MAX_NODES) {
920 mlog(ML_NOTICE, "%s:%.*s: at least one node (%d) to"
921 "recover before lock mastery can begin\n",
922 dlm->name, namelen, (char *)lockid, bit);
923 wait_on_recovery = 1;
924 }
6714d8e8
KH
925 }
926
927 /* at this point there is either a DLM_MLE_BLOCK or a
928 * DLM_MLE_MASTER on the master list, so it's safe to add the
929 * lockres to the hashtable. anyone who finds the lock will
930 * still have to wait on the IN_PROGRESS. */
931
932 /* finally add the lockres to its hash bucket */
933 __dlm_insert_lockres(dlm, res);
ba2bf218
KH
934 /* since this lockres is new it doesnt not require the spinlock */
935 dlm_lockres_grab_inflight_ref_new(dlm, res);
936
937 /* if this node does not become the master make sure to drop
938 * this inflight reference below */
939 drop_inflight_if_nonlocal = 1;
940
6714d8e8
KH
941 /* get an extra ref on the mle in case this is a BLOCK
942 * if so, the creator of the BLOCK may try to put the last
943 * ref at this time in the assert master handler, so we
944 * need an extra one to keep from a bad ptr deref. */
a2bf0477 945 dlm_get_mle_inuse(mle);
6714d8e8
KH
946 spin_unlock(&dlm->master_lock);
947 spin_unlock(&dlm->spinlock);
948
e7e69eb3 949redo_request:
c03872f5
KH
950 while (wait_on_recovery) {
951 /* any cluster changes that occurred after dropping the
952 * dlm spinlock would be detectable be a change on the mle,
953 * so we only need to clear out the recovery map once. */
954 if (dlm_is_recovery_lock(lockid, namelen)) {
955 mlog(ML_NOTICE, "%s: recovery map is not empty, but "
956 "must master $RECOVERY lock now\n", dlm->name);
957 if (!dlm_pre_master_reco_lockres(dlm, res))
958 wait_on_recovery = 0;
959 else {
960 mlog(0, "%s: waiting 500ms for heartbeat state "
961 "change\n", dlm->name);
962 msleep(500);
963 }
964 continue;
965 }
966
967 dlm_kick_recovery_thread(dlm);
aa087b84 968 msleep(1000);
c03872f5
KH
969 dlm_wait_for_recovery(dlm);
970
971 spin_lock(&dlm->spinlock);
972 bit = find_next_bit(dlm->recovery_map, O2NM_MAX_NODES, 0);
973 if (bit < O2NM_MAX_NODES) {
974 mlog(ML_NOTICE, "%s:%.*s: at least one node (%d) to"
975 "recover before lock mastery can begin\n",
976 dlm->name, namelen, (char *)lockid, bit);
977 wait_on_recovery = 1;
978 } else
979 wait_on_recovery = 0;
980 spin_unlock(&dlm->spinlock);
b7084ab5
KH
981
982 if (wait_on_recovery)
983 dlm_wait_for_node_recovery(dlm, bit, 10000);
c03872f5
KH
984 }
985
6714d8e8
KH
986 /* must wait for lock to be mastered elsewhere */
987 if (blocked)
988 goto wait;
989
6714d8e8
KH
990 ret = -EINVAL;
991 dlm_node_iter_init(mle->vote_map, &iter);
992 while ((nodenum = dlm_node_iter_next(&iter)) >= 0) {
ba2bf218 993 ret = dlm_do_master_request(res, mle, nodenum);
6714d8e8
KH
994 if (ret < 0)
995 mlog_errno(ret);
996 if (mle->master != O2NM_MAX_NODES) {
997 /* found a master ! */
9c6510a5
KH
998 if (mle->master <= nodenum)
999 break;
1000 /* if our master request has not reached the master
1001 * yet, keep going until it does. this is how the
1002 * master will know that asserts are needed back to
1003 * the lower nodes. */
1004 mlog(0, "%s:%.*s: requests only up to %u but master "
1005 "is %u, keep going\n", dlm->name, namelen,
1006 lockid, nodenum, mle->master);
6714d8e8
KH
1007 }
1008 }
1009
1010wait:
1011 /* keep going until the response map includes all nodes */
1012 ret = dlm_wait_for_lock_mastery(dlm, res, mle, &blocked);
1013 if (ret < 0) {
e7e69eb3 1014 wait_on_recovery = 1;
6714d8e8
KH
1015 mlog(0, "%s:%.*s: node map changed, redo the "
1016 "master request now, blocked=%d\n",
1017 dlm->name, res->lockname.len,
1018 res->lockname.name, blocked);
1019 if (++tries > 20) {
1020 mlog(ML_ERROR, "%s:%.*s: spinning on "
1021 "dlm_wait_for_lock_mastery, blocked=%d\n",
1022 dlm->name, res->lockname.len,
1023 res->lockname.name, blocked);
1024 dlm_print_one_lock_resource(res);
8a9343fa 1025 dlm_print_one_mle(mle);
6714d8e8
KH
1026 tries = 0;
1027 }
1028 goto redo_request;
1029 }
1030
1031 mlog(0, "lockres mastered by %u\n", res->owner);
1032 /* make sure we never continue without this */
1033 BUG_ON(res->owner == O2NM_MAX_NODES);
1034
1035 /* master is known, detach if not already detached */
1036 dlm_mle_detach_hb_events(dlm, mle);
1037 dlm_put_mle(mle);
1038 /* put the extra ref */
a2bf0477 1039 dlm_put_mle_inuse(mle);
6714d8e8
KH
1040
1041wake_waiters:
1042 spin_lock(&res->spinlock);
ba2bf218
KH
1043 if (res->owner != dlm->node_num && drop_inflight_if_nonlocal)
1044 dlm_lockres_drop_inflight_ref(dlm, res);
6714d8e8
KH
1045 res->state &= ~DLM_LOCK_RES_IN_PROGRESS;
1046 spin_unlock(&res->spinlock);
1047 wake_up(&res->wq);
1048
1049leave:
1050 /* need to free the unused mle */
1051 if (alloc_mle)
1052 kmem_cache_free(dlm_mle_cache, alloc_mle);
1053
1054 return res;
1055}
1056
1057
1058#define DLM_MASTERY_TIMEOUT_MS 5000
1059
1060static int dlm_wait_for_lock_mastery(struct dlm_ctxt *dlm,
1061 struct dlm_lock_resource *res,
1062 struct dlm_master_list_entry *mle,
1063 int *blocked)
1064{
1065 u8 m;
1066 int ret, bit;
1067 int map_changed, voting_done;
1068 int assert, sleep;
1069
1070recheck:
1071 ret = 0;
1072 assert = 0;
1073
1074 /* check if another node has already become the owner */
1075 spin_lock(&res->spinlock);
1076 if (res->owner != DLM_LOCK_RES_OWNER_UNKNOWN) {
9c6510a5
KH
1077 mlog(0, "%s:%.*s: owner is suddenly %u\n", dlm->name,
1078 res->lockname.len, res->lockname.name, res->owner);
6714d8e8 1079 spin_unlock(&res->spinlock);
9c6510a5
KH
1080 /* this will cause the master to re-assert across
1081 * the whole cluster, freeing up mles */
588e0090 1082 if (res->owner != dlm->node_num) {
ba2bf218 1083 ret = dlm_do_master_request(res, mle, res->owner);
588e0090
KH
1084 if (ret < 0) {
1085 /* give recovery a chance to run */
1086 mlog(ML_ERROR, "link to %u went down?: %d\n", res->owner, ret);
1087 msleep(500);
1088 goto recheck;
1089 }
9c6510a5
KH
1090 }
1091 ret = 0;
6714d8e8
KH
1092 goto leave;
1093 }
1094 spin_unlock(&res->spinlock);
1095
1096 spin_lock(&mle->spinlock);
1097 m = mle->master;
1098 map_changed = (memcmp(mle->vote_map, mle->node_map,
1099 sizeof(mle->vote_map)) != 0);
1100 voting_done = (memcmp(mle->vote_map, mle->response_map,
1101 sizeof(mle->vote_map)) == 0);
1102
1103 /* restart if we hit any errors */
1104 if (map_changed) {
1105 int b;
1106 mlog(0, "%s: %.*s: node map changed, restarting\n",
1107 dlm->name, res->lockname.len, res->lockname.name);
1108 ret = dlm_restart_lock_mastery(dlm, res, mle, *blocked);
1109 b = (mle->type == DLM_MLE_BLOCK);
1110 if ((*blocked && !b) || (!*blocked && b)) {
1111 mlog(0, "%s:%.*s: status change: old=%d new=%d\n",
1112 dlm->name, res->lockname.len, res->lockname.name,
1113 *blocked, b);
1114 *blocked = b;
1115 }
1116 spin_unlock(&mle->spinlock);
1117 if (ret < 0) {
1118 mlog_errno(ret);
1119 goto leave;
1120 }
1121 mlog(0, "%s:%.*s: restart lock mastery succeeded, "
1122 "rechecking now\n", dlm->name, res->lockname.len,
1123 res->lockname.name);
1124 goto recheck;
aa852354
KH
1125 } else {
1126 if (!voting_done) {
1127 mlog(0, "map not changed and voting not done "
1128 "for %s:%.*s\n", dlm->name, res->lockname.len,
1129 res->lockname.name);
1130 }
6714d8e8
KH
1131 }
1132
1133 if (m != O2NM_MAX_NODES) {
1134 /* another node has done an assert!
1135 * all done! */
1136 sleep = 0;
1137 } else {
1138 sleep = 1;
1139 /* have all nodes responded? */
1140 if (voting_done && !*blocked) {
1141 bit = find_next_bit(mle->maybe_map, O2NM_MAX_NODES, 0);
1142 if (dlm->node_num <= bit) {
1143 /* my node number is lowest.
1144 * now tell other nodes that I am
1145 * mastering this. */
1146 mle->master = dlm->node_num;
ba2bf218
KH
1147 /* ref was grabbed in get_lock_resource
1148 * will be dropped in dlmlock_master */
6714d8e8
KH
1149 assert = 1;
1150 sleep = 0;
1151 }
1152 /* if voting is done, but we have not received
1153 * an assert master yet, we must sleep */
1154 }
1155 }
1156
1157 spin_unlock(&mle->spinlock);
1158
1159 /* sleep if we haven't finished voting yet */
1160 if (sleep) {
1161 unsigned long timeo = msecs_to_jiffies(DLM_MASTERY_TIMEOUT_MS);
1162
1163 /*
1164 if (atomic_read(&mle->mle_refs.refcount) < 2)
1165 mlog(ML_ERROR, "mle (%p) refs=%d, name=%.*s\n", mle,
1166 atomic_read(&mle->mle_refs.refcount),
1167 res->lockname.len, res->lockname.name);
1168 */
1169 atomic_set(&mle->woken, 0);
1170 (void)wait_event_timeout(mle->wq,
1171 (atomic_read(&mle->woken) == 1),
1172 timeo);
1173 if (res->owner == O2NM_MAX_NODES) {
ba2bf218
KH
1174 mlog(0, "%s:%.*s: waiting again\n", dlm->name,
1175 res->lockname.len, res->lockname.name);
6714d8e8
KH
1176 goto recheck;
1177 }
1178 mlog(0, "done waiting, master is %u\n", res->owner);
1179 ret = 0;
1180 goto leave;
1181 }
1182
1183 ret = 0; /* done */
1184 if (assert) {
1185 m = dlm->node_num;
1186 mlog(0, "about to master %.*s here, this=%u\n",
1187 res->lockname.len, res->lockname.name, m);
ba2bf218 1188 ret = dlm_do_assert_master(dlm, res, mle->vote_map, 0);
6714d8e8
KH
1189 if (ret) {
1190 /* This is a failure in the network path,
1191 * not in the response to the assert_master
1192 * (any nonzero response is a BUG on this node).
1193 * Most likely a socket just got disconnected
1194 * due to node death. */
1195 mlog_errno(ret);
1196 }
1197 /* no longer need to restart lock mastery.
1198 * all living nodes have been contacted. */
1199 ret = 0;
1200 }
1201
1202 /* set the lockres owner */
1203 spin_lock(&res->spinlock);
ba2bf218
KH
1204 /* mastery reference obtained either during
1205 * assert_master_handler or in get_lock_resource */
6714d8e8
KH
1206 dlm_change_lockres_owner(dlm, res, m);
1207 spin_unlock(&res->spinlock);
1208
1209leave:
1210 return ret;
1211}
1212
1213struct dlm_bitmap_diff_iter
1214{
1215 int curnode;
1216 unsigned long *orig_bm;
1217 unsigned long *cur_bm;
1218 unsigned long diff_bm[BITS_TO_LONGS(O2NM_MAX_NODES)];
1219};
1220
1221enum dlm_node_state_change
1222{
1223 NODE_DOWN = -1,
1224 NODE_NO_CHANGE = 0,
1225 NODE_UP
1226};
1227
1228static void dlm_bitmap_diff_iter_init(struct dlm_bitmap_diff_iter *iter,
1229 unsigned long *orig_bm,
1230 unsigned long *cur_bm)
1231{
1232 unsigned long p1, p2;
1233 int i;
1234
1235 iter->curnode = -1;
1236 iter->orig_bm = orig_bm;
1237 iter->cur_bm = cur_bm;
1238
1239 for (i = 0; i < BITS_TO_LONGS(O2NM_MAX_NODES); i++) {
1240 p1 = *(iter->orig_bm + i);
1241 p2 = *(iter->cur_bm + i);
1242 iter->diff_bm[i] = (p1 & ~p2) | (p2 & ~p1);
1243 }
1244}
1245
1246static int dlm_bitmap_diff_iter_next(struct dlm_bitmap_diff_iter *iter,
1247 enum dlm_node_state_change *state)
1248{
1249 int bit;
1250
1251 if (iter->curnode >= O2NM_MAX_NODES)
1252 return -ENOENT;
1253
1254 bit = find_next_bit(iter->diff_bm, O2NM_MAX_NODES,
1255 iter->curnode+1);
1256 if (bit >= O2NM_MAX_NODES) {
1257 iter->curnode = O2NM_MAX_NODES;
1258 return -ENOENT;
1259 }
1260
1261 /* if it was there in the original then this node died */
1262 if (test_bit(bit, iter->orig_bm))
1263 *state = NODE_DOWN;
1264 else
1265 *state = NODE_UP;
1266
1267 iter->curnode = bit;
1268 return bit;
1269}
1270
1271
1272static int dlm_restart_lock_mastery(struct dlm_ctxt *dlm,
1273 struct dlm_lock_resource *res,
1274 struct dlm_master_list_entry *mle,
1275 int blocked)
1276{
1277 struct dlm_bitmap_diff_iter bdi;
1278 enum dlm_node_state_change sc;
1279 int node;
1280 int ret = 0;
1281
1282 mlog(0, "something happened such that the "
1283 "master process may need to be restarted!\n");
1284
1285 assert_spin_locked(&mle->spinlock);
1286
1287 dlm_bitmap_diff_iter_init(&bdi, mle->vote_map, mle->node_map);
1288 node = dlm_bitmap_diff_iter_next(&bdi, &sc);
1289 while (node >= 0) {
1290 if (sc == NODE_UP) {
e2faea4c
KH
1291 /* a node came up. clear any old vote from
1292 * the response map and set it in the vote map
1293 * then restart the mastery. */
1294 mlog(ML_NOTICE, "node %d up while restarting\n", node);
6714d8e8
KH
1295
1296 /* redo the master request, but only for the new node */
1297 mlog(0, "sending request to new node\n");
1298 clear_bit(node, mle->response_map);
1299 set_bit(node, mle->vote_map);
1300 } else {
1301 mlog(ML_ERROR, "node down! %d\n", node);
6714d8e8
KH
1302 if (blocked) {
1303 int lowest = find_next_bit(mle->maybe_map,
1304 O2NM_MAX_NODES, 0);
1305
1306 /* act like it was never there */
1307 clear_bit(node, mle->maybe_map);
1308
e7e69eb3
KH
1309 if (node == lowest) {
1310 mlog(0, "expected master %u died"
1311 " while this node was blocked "
1312 "waiting on it!\n", node);
1313 lowest = find_next_bit(mle->maybe_map,
1314 O2NM_MAX_NODES,
1315 lowest+1);
1316 if (lowest < O2NM_MAX_NODES) {
1317 mlog(0, "%s:%.*s:still "
1318 "blocked. waiting on %u "
1319 "now\n", dlm->name,
1320 res->lockname.len,
1321 res->lockname.name,
1322 lowest);
1323 } else {
1324 /* mle is an MLE_BLOCK, but
1325 * there is now nothing left to
1326 * block on. we need to return
1327 * all the way back out and try
1328 * again with an MLE_MASTER.
1329 * dlm_do_local_recovery_cleanup
1330 * has already run, so the mle
1331 * refcount is ok */
1332 mlog(0, "%s:%.*s: no "
1333 "longer blocking. try to "
1334 "master this here\n",
1335 dlm->name,
1336 res->lockname.len,
1337 res->lockname.name);
1338 mle->type = DLM_MLE_MASTER;
1339 mle->u.res = res;
1340 }
6714d8e8 1341 }
6714d8e8
KH
1342 }
1343
e7e69eb3
KH
1344 /* now blank out everything, as if we had never
1345 * contacted anyone */
1346 memset(mle->maybe_map, 0, sizeof(mle->maybe_map));
1347 memset(mle->response_map, 0, sizeof(mle->response_map));
1348 /* reset the vote_map to the current node_map */
1349 memcpy(mle->vote_map, mle->node_map,
1350 sizeof(mle->node_map));
1351 /* put myself into the maybe map */
1352 if (mle->type != DLM_MLE_BLOCK)
1353 set_bit(dlm->node_num, mle->maybe_map);
6714d8e8
KH
1354 }
1355 ret = -EAGAIN;
6714d8e8
KH
1356 node = dlm_bitmap_diff_iter_next(&bdi, &sc);
1357 }
1358 return ret;
1359}
1360
1361
1362/*
1363 * DLM_MASTER_REQUEST_MSG
1364 *
1365 * returns: 0 on success,
1366 * -errno on a network error
1367 *
1368 * on error, the caller should assume the target node is "dead"
1369 *
1370 */
1371
ba2bf218
KH
1372static int dlm_do_master_request(struct dlm_lock_resource *res,
1373 struct dlm_master_list_entry *mle, int to)
6714d8e8
KH
1374{
1375 struct dlm_ctxt *dlm = mle->dlm;
1376 struct dlm_master_request request;
1377 int ret, response=0, resend;
1378
1379 memset(&request, 0, sizeof(request));
1380 request.node_idx = dlm->node_num;
1381
1382 BUG_ON(mle->type == DLM_MLE_MIGRATION);
1383
1384 if (mle->type != DLM_MLE_MASTER) {
1385 request.namelen = mle->u.name.len;
1386 memcpy(request.name, mle->u.name.name, request.namelen);
1387 } else {
1388 request.namelen = mle->u.res->lockname.len;
1389 memcpy(request.name, mle->u.res->lockname.name,
1390 request.namelen);
1391 }
1392
1393again:
1394 ret = o2net_send_message(DLM_MASTER_REQUEST_MSG, dlm->key, &request,
1395 sizeof(request), to, &response);
1396 if (ret < 0) {
1397 if (ret == -ESRCH) {
1398 /* should never happen */
1399 mlog(ML_ERROR, "TCP stack not ready!\n");
1400 BUG();
1401 } else if (ret == -EINVAL) {
1402 mlog(ML_ERROR, "bad args passed to o2net!\n");
1403 BUG();
1404 } else if (ret == -ENOMEM) {
1405 mlog(ML_ERROR, "out of memory while trying to send "
1406 "network message! retrying\n");
1407 /* this is totally crude */
1408 msleep(50);
1409 goto again;
1410 } else if (!dlm_is_host_down(ret)) {
1411 /* not a network error. bad. */
1412 mlog_errno(ret);
1413 mlog(ML_ERROR, "unhandled error!");
1414 BUG();
1415 }
1416 /* all other errors should be network errors,
1417 * and likely indicate node death */
1418 mlog(ML_ERROR, "link to %d went down!\n", to);
1419 goto out;
1420 }
1421
1422 ret = 0;
1423 resend = 0;
1424 spin_lock(&mle->spinlock);
1425 switch (response) {
1426 case DLM_MASTER_RESP_YES:
1427 set_bit(to, mle->response_map);
1428 mlog(0, "node %u is the master, response=YES\n", to);
ba2bf218
KH
1429 mlog(0, "%s:%.*s: master node %u now knows I have a "
1430 "reference\n", dlm->name, res->lockname.len,
1431 res->lockname.name, to);
6714d8e8
KH
1432 mle->master = to;
1433 break;
1434 case DLM_MASTER_RESP_NO:
1435 mlog(0, "node %u not master, response=NO\n", to);
1436 set_bit(to, mle->response_map);
1437 break;
1438 case DLM_MASTER_RESP_MAYBE:
1439 mlog(0, "node %u not master, response=MAYBE\n", to);
1440 set_bit(to, mle->response_map);
1441 set_bit(to, mle->maybe_map);
1442 break;
1443 case DLM_MASTER_RESP_ERROR:
1444 mlog(0, "node %u hit an error, resending\n", to);
1445 resend = 1;
1446 response = 0;
1447 break;
1448 default:
1449 mlog(ML_ERROR, "bad response! %u\n", response);
1450 BUG();
1451 }
1452 spin_unlock(&mle->spinlock);
1453 if (resend) {
1454 /* this is also totally crude */
1455 msleep(50);
1456 goto again;
1457 }
1458
1459out:
1460 return ret;
1461}
1462
1463/*
1464 * locks that can be taken here:
1465 * dlm->spinlock
1466 * res->spinlock
1467 * mle->spinlock
1468 * dlm->master_list
1469 *
1470 * if possible, TRIM THIS DOWN!!!
1471 */
1472int dlm_master_request_handler(struct o2net_msg *msg, u32 len, void *data)
1473{
1474 u8 response = DLM_MASTER_RESP_MAYBE;
1475 struct dlm_ctxt *dlm = data;
9c6510a5 1476 struct dlm_lock_resource *res = NULL;
6714d8e8
KH
1477 struct dlm_master_request *request = (struct dlm_master_request *) msg->buf;
1478 struct dlm_master_list_entry *mle = NULL, *tmpmle = NULL;
1479 char *name;
a3d33291 1480 unsigned int namelen, hash;
6714d8e8
KH
1481 int found, ret;
1482 int set_maybe;
9c6510a5 1483 int dispatch_assert = 0;
6714d8e8
KH
1484
1485 if (!dlm_grab(dlm))
1486 return DLM_MASTER_RESP_NO;
1487
1488 if (!dlm_domain_fully_joined(dlm)) {
1489 response = DLM_MASTER_RESP_NO;
1490 goto send_response;
1491 }
1492
1493 name = request->name;
1494 namelen = request->namelen;
a3d33291 1495 hash = dlm_lockid_hash(name, namelen);
6714d8e8
KH
1496
1497 if (namelen > DLM_LOCKID_NAME_MAX) {
1498 response = DLM_IVBUFLEN;
1499 goto send_response;
1500 }
1501
1502way_up_top:
1503 spin_lock(&dlm->spinlock);
a3d33291 1504 res = __dlm_lookup_lockres(dlm, name, namelen, hash);
6714d8e8
KH
1505 if (res) {
1506 spin_unlock(&dlm->spinlock);
1507
1508 /* take care of the easy cases up front */
1509 spin_lock(&res->spinlock);
1cd04dbe
KH
1510 if (res->state & (DLM_LOCK_RES_RECOVERING|
1511 DLM_LOCK_RES_MIGRATING)) {
6714d8e8
KH
1512 spin_unlock(&res->spinlock);
1513 mlog(0, "returning DLM_MASTER_RESP_ERROR since res is "
1cd04dbe 1514 "being recovered/migrated\n");
6714d8e8
KH
1515 response = DLM_MASTER_RESP_ERROR;
1516 if (mle)
1517 kmem_cache_free(dlm_mle_cache, mle);
1518 goto send_response;
1519 }
1520
1521 if (res->owner == dlm->node_num) {
ba2bf218
KH
1522 mlog(0, "%s:%.*s: setting bit %u in refmap\n",
1523 dlm->name, namelen, name, request->node_idx);
1524 dlm_lockres_set_refmap_bit(request->node_idx, res);
6714d8e8 1525 spin_unlock(&res->spinlock);
6714d8e8
KH
1526 response = DLM_MASTER_RESP_YES;
1527 if (mle)
1528 kmem_cache_free(dlm_mle_cache, mle);
1529
1530 /* this node is the owner.
1531 * there is some extra work that needs to
1532 * happen now. the requesting node has
1533 * caused all nodes up to this one to
1534 * create mles. this node now needs to
1535 * go back and clean those up. */
9c6510a5 1536 dispatch_assert = 1;
6714d8e8
KH
1537 goto send_response;
1538 } else if (res->owner != DLM_LOCK_RES_OWNER_UNKNOWN) {
1539 spin_unlock(&res->spinlock);
1540 // mlog(0, "node %u is the master\n", res->owner);
1541 response = DLM_MASTER_RESP_NO;
1542 if (mle)
1543 kmem_cache_free(dlm_mle_cache, mle);
1544 goto send_response;
1545 }
1546
1547 /* ok, there is no owner. either this node is
1548 * being blocked, or it is actively trying to
1549 * master this lock. */
1550 if (!(res->state & DLM_LOCK_RES_IN_PROGRESS)) {
1551 mlog(ML_ERROR, "lock with no owner should be "
1552 "in-progress!\n");
1553 BUG();
1554 }
1555
1556 // mlog(0, "lockres is in progress...\n");
1557 spin_lock(&dlm->master_lock);
1558 found = dlm_find_mle(dlm, &tmpmle, name, namelen);
1559 if (!found) {
1560 mlog(ML_ERROR, "no mle found for this lock!\n");
1561 BUG();
1562 }
1563 set_maybe = 1;
1564 spin_lock(&tmpmle->spinlock);
1565 if (tmpmle->type == DLM_MLE_BLOCK) {
1566 // mlog(0, "this node is waiting for "
1567 // "lockres to be mastered\n");
1568 response = DLM_MASTER_RESP_NO;
1569 } else if (tmpmle->type == DLM_MLE_MIGRATION) {
1570 mlog(0, "node %u is master, but trying to migrate to "
1571 "node %u.\n", tmpmle->master, tmpmle->new_master);
1572 if (tmpmle->master == dlm->node_num) {
6714d8e8
KH
1573 mlog(ML_ERROR, "no owner on lockres, but this "
1574 "node is trying to migrate it to %u?!\n",
1575 tmpmle->new_master);
1576 BUG();
1577 } else {
1578 /* the real master can respond on its own */
1579 response = DLM_MASTER_RESP_NO;
1580 }
1581 } else if (tmpmle->master != DLM_LOCK_RES_OWNER_UNKNOWN) {
1582 set_maybe = 0;
9c6510a5 1583 if (tmpmle->master == dlm->node_num) {
6714d8e8 1584 response = DLM_MASTER_RESP_YES;
9c6510a5
KH
1585 /* this node will be the owner.
1586 * go back and clean the mles on any
1587 * other nodes */
1588 dispatch_assert = 1;
ba2bf218
KH
1589 dlm_lockres_set_refmap_bit(request->node_idx, res);
1590 mlog(0, "%s:%.*s: setting bit %u in refmap\n",
1591 dlm->name, namelen, name,
1592 request->node_idx);
9c6510a5 1593 } else
6714d8e8
KH
1594 response = DLM_MASTER_RESP_NO;
1595 } else {
1596 // mlog(0, "this node is attempting to "
1597 // "master lockres\n");
1598 response = DLM_MASTER_RESP_MAYBE;
1599 }
1600 if (set_maybe)
1601 set_bit(request->node_idx, tmpmle->maybe_map);
1602 spin_unlock(&tmpmle->spinlock);
1603
1604 spin_unlock(&dlm->master_lock);
1605 spin_unlock(&res->spinlock);
1606
1607 /* keep the mle attached to heartbeat events */
1608 dlm_put_mle(tmpmle);
1609 if (mle)
1610 kmem_cache_free(dlm_mle_cache, mle);
1611 goto send_response;
1612 }
1613
1614 /*
1615 * lockres doesn't exist on this node
1616 * if there is an MLE_BLOCK, return NO
1617 * if there is an MLE_MASTER, return MAYBE
1618 * otherwise, add an MLE_BLOCK, return NO
1619 */
1620 spin_lock(&dlm->master_lock);
1621 found = dlm_find_mle(dlm, &tmpmle, name, namelen);
1622 if (!found) {
1623 /* this lockid has never been seen on this node yet */
1624 // mlog(0, "no mle found\n");
1625 if (!mle) {
1626 spin_unlock(&dlm->master_lock);
1627 spin_unlock(&dlm->spinlock);
1628
1629 mle = (struct dlm_master_list_entry *)
ad8100e0 1630 kmem_cache_alloc(dlm_mle_cache, GFP_NOFS);
6714d8e8 1631 if (!mle) {
6714d8e8 1632 response = DLM_MASTER_RESP_ERROR;
9c6510a5 1633 mlog_errno(-ENOMEM);
6714d8e8
KH
1634 goto send_response;
1635 }
6714d8e8
KH
1636 goto way_up_top;
1637 }
1638
1639 // mlog(0, "this is second time thru, already allocated, "
1640 // "add the block.\n");
41b8c8a1 1641 dlm_init_mle(mle, DLM_MLE_BLOCK, dlm, NULL, name, namelen);
6714d8e8
KH
1642 set_bit(request->node_idx, mle->maybe_map);
1643 list_add(&mle->list, &dlm->master_list);
1644 response = DLM_MASTER_RESP_NO;
1645 } else {
1646 // mlog(0, "mle was found\n");
1647 set_maybe = 1;
1648 spin_lock(&tmpmle->spinlock);
9c6510a5
KH
1649 if (tmpmle->master == dlm->node_num) {
1650 mlog(ML_ERROR, "no lockres, but an mle with this node as master!\n");
1651 BUG();
1652 }
6714d8e8
KH
1653 if (tmpmle->type == DLM_MLE_BLOCK)
1654 response = DLM_MASTER_RESP_NO;
1655 else if (tmpmle->type == DLM_MLE_MIGRATION) {
1656 mlog(0, "migration mle was found (%u->%u)\n",
1657 tmpmle->master, tmpmle->new_master);
6714d8e8
KH
1658 /* real master can respond on its own */
1659 response = DLM_MASTER_RESP_NO;
9c6510a5
KH
1660 } else
1661 response = DLM_MASTER_RESP_MAYBE;
6714d8e8
KH
1662 if (set_maybe)
1663 set_bit(request->node_idx, tmpmle->maybe_map);
1664 spin_unlock(&tmpmle->spinlock);
1665 }
1666 spin_unlock(&dlm->master_lock);
1667 spin_unlock(&dlm->spinlock);
1668
1669 if (found) {
1670 /* keep the mle attached to heartbeat events */
1671 dlm_put_mle(tmpmle);
1672 }
1673send_response:
9c6510a5
KH
1674
1675 if (dispatch_assert) {
1676 if (response != DLM_MASTER_RESP_YES)
1677 mlog(ML_ERROR, "invalid response %d\n", response);
1678 if (!res) {
1679 mlog(ML_ERROR, "bad lockres while trying to assert!\n");
1680 BUG();
1681 }
1682 mlog(0, "%u is the owner of %.*s, cleaning everyone else\n",
1683 dlm->node_num, res->lockname.len, res->lockname.name);
1684 ret = dlm_dispatch_assert_master(dlm, res, 0, request->node_idx,
1685 DLM_ASSERT_MASTER_MLE_CLEANUP);
1686 if (ret < 0) {
1687 mlog(ML_ERROR, "failed to dispatch assert master work\n");
1688 response = DLM_MASTER_RESP_ERROR;
1689 }
1690 }
1691
6714d8e8
KH
1692 dlm_put(dlm);
1693 return response;
1694}
1695
1696/*
1697 * DLM_ASSERT_MASTER_MSG
1698 */
1699
1700
1701/*
1702 * NOTE: this can be used for debugging
1703 * can periodically run all locks owned by this node
1704 * and re-assert across the cluster...
1705 */
ba2bf218
KH
1706int dlm_do_assert_master(struct dlm_ctxt *dlm,
1707 struct dlm_lock_resource *res,
1708 void *nodemap, u32 flags)
6714d8e8
KH
1709{
1710 struct dlm_assert_master assert;
1711 int to, tmpret;
1712 struct dlm_node_iter iter;
1713 int ret = 0;
9c6510a5 1714 int reassert;
ba2bf218
KH
1715 const char *lockname = res->lockname.name;
1716 unsigned int namelen = res->lockname.len;
6714d8e8
KH
1717
1718 BUG_ON(namelen > O2NM_MAX_NAME_LEN);
9c6510a5
KH
1719again:
1720 reassert = 0;
6714d8e8
KH
1721
1722 /* note that if this nodemap is empty, it returns 0 */
1723 dlm_node_iter_init(nodemap, &iter);
1724 while ((to = dlm_node_iter_next(&iter)) >= 0) {
1725 int r = 0;
a9ee4c8a
KH
1726 struct dlm_master_list_entry *mle = NULL;
1727
6714d8e8
KH
1728 mlog(0, "sending assert master to %d (%.*s)\n", to,
1729 namelen, lockname);
1730 memset(&assert, 0, sizeof(assert));
1731 assert.node_idx = dlm->node_num;
1732 assert.namelen = namelen;
1733 memcpy(assert.name, lockname, namelen);
1734 assert.flags = cpu_to_be32(flags);
1735
1736 tmpret = o2net_send_message(DLM_ASSERT_MASTER_MSG, dlm->key,
1737 &assert, sizeof(assert), to, &r);
1738 if (tmpret < 0) {
3b3b84a8 1739 mlog(0, "assert_master returned %d!\n", tmpret);
6714d8e8 1740 if (!dlm_is_host_down(tmpret)) {
3b3b84a8 1741 mlog(ML_ERROR, "unhandled error=%d!\n", tmpret);
6714d8e8
KH
1742 BUG();
1743 }
1744 /* a node died. finish out the rest of the nodes. */
3b3b84a8 1745 mlog(0, "link to %d went down!\n", to);
6714d8e8
KH
1746 /* any nonzero status return will do */
1747 ret = tmpret;
ba2bf218 1748 r = 0;
6714d8e8
KH
1749 } else if (r < 0) {
1750 /* ok, something horribly messed. kill thyself. */
1751 mlog(ML_ERROR,"during assert master of %.*s to %u, "
1752 "got %d.\n", namelen, lockname, to, r);
a9ee4c8a
KH
1753 spin_lock(&dlm->spinlock);
1754 spin_lock(&dlm->master_lock);
1755 if (dlm_find_mle(dlm, &mle, (char *)lockname,
1756 namelen)) {
1757 dlm_print_one_mle(mle);
1758 __dlm_put_mle(mle);
1759 }
1760 spin_unlock(&dlm->master_lock);
1761 spin_unlock(&dlm->spinlock);
6714d8e8 1762 BUG();
ba2bf218
KH
1763 }
1764
1765 if (r & DLM_ASSERT_RESPONSE_REASSERT &&
1766 !(r & DLM_ASSERT_RESPONSE_MASTERY_REF)) {
1767 mlog(ML_ERROR, "%.*s: very strange, "
1768 "master MLE but no lockres on %u\n",
1769 namelen, lockname, to);
1770 }
1771
1772 if (r & DLM_ASSERT_RESPONSE_REASSERT) {
9c6510a5
KH
1773 mlog(0, "%.*s: node %u create mles on other "
1774 "nodes and requests a re-assert\n",
1775 namelen, lockname, to);
1776 reassert = 1;
6714d8e8 1777 }
ba2bf218
KH
1778 if (r & DLM_ASSERT_RESPONSE_MASTERY_REF) {
1779 mlog(0, "%.*s: node %u has a reference to this "
1780 "lockres, set the bit in the refmap\n",
1781 namelen, lockname, to);
1782 spin_lock(&res->spinlock);
1783 dlm_lockres_set_refmap_bit(to, res);
1784 spin_unlock(&res->spinlock);
1785 }
6714d8e8
KH
1786 }
1787
9c6510a5
KH
1788 if (reassert)
1789 goto again;
1790
6714d8e8
KH
1791 return ret;
1792}
1793
1794/*
1795 * locks that can be taken here:
1796 * dlm->spinlock
1797 * res->spinlock
1798 * mle->spinlock
1799 * dlm->master_list
1800 *
1801 * if possible, TRIM THIS DOWN!!!
1802 */
1803int dlm_assert_master_handler(struct o2net_msg *msg, u32 len, void *data)
1804{
1805 struct dlm_ctxt *dlm = data;
1806 struct dlm_master_list_entry *mle = NULL;
1807 struct dlm_assert_master *assert = (struct dlm_assert_master *)msg->buf;
1808 struct dlm_lock_resource *res = NULL;
1809 char *name;
a3d33291 1810 unsigned int namelen, hash;
6714d8e8 1811 u32 flags;
ba2bf218 1812 int master_request = 0, have_lockres_ref = 0;
9c6510a5 1813 int ret = 0;
6714d8e8
KH
1814
1815 if (!dlm_grab(dlm))
1816 return 0;
1817
1818 name = assert->name;
1819 namelen = assert->namelen;
a3d33291 1820 hash = dlm_lockid_hash(name, namelen);
6714d8e8
KH
1821 flags = be32_to_cpu(assert->flags);
1822
1823 if (namelen > DLM_LOCKID_NAME_MAX) {
1824 mlog(ML_ERROR, "Invalid name length!");
1825 goto done;
1826 }
1827
1828 spin_lock(&dlm->spinlock);
1829
1830 if (flags)
1831 mlog(0, "assert_master with flags: %u\n", flags);
1832
1833 /* find the MLE */
1834 spin_lock(&dlm->master_lock);
1835 if (!dlm_find_mle(dlm, &mle, name, namelen)) {
1836 /* not an error, could be master just re-asserting */
1837 mlog(0, "just got an assert_master from %u, but no "
1838 "MLE for it! (%.*s)\n", assert->node_idx,
1839 namelen, name);
1840 } else {
1841 int bit = find_next_bit (mle->maybe_map, O2NM_MAX_NODES, 0);
1842 if (bit >= O2NM_MAX_NODES) {
1843 /* not necessarily an error, though less likely.
1844 * could be master just re-asserting. */
aa852354 1845 mlog(0, "no bits set in the maybe_map, but %u "
6714d8e8
KH
1846 "is asserting! (%.*s)\n", assert->node_idx,
1847 namelen, name);
1848 } else if (bit != assert->node_idx) {
1849 if (flags & DLM_ASSERT_MASTER_MLE_CLEANUP) {
1850 mlog(0, "master %u was found, %u should "
1851 "back off\n", assert->node_idx, bit);
1852 } else {
1853 /* with the fix for bug 569, a higher node
1854 * number winning the mastery will respond
1855 * YES to mastery requests, but this node
1856 * had no way of knowing. let it pass. */
aa852354 1857 mlog(0, "%u is the lowest node, "
6714d8e8
KH
1858 "%u is asserting. (%.*s) %u must "
1859 "have begun after %u won.\n", bit,
1860 assert->node_idx, namelen, name, bit,
1861 assert->node_idx);
1862 }
1863 }
2d1a868c
KH
1864 if (mle->type == DLM_MLE_MIGRATION) {
1865 if (flags & DLM_ASSERT_MASTER_MLE_CLEANUP) {
1866 mlog(0, "%s:%.*s: got cleanup assert"
1867 " from %u for migration\n",
1868 dlm->name, namelen, name,
1869 assert->node_idx);
1870 } else if (!(flags & DLM_ASSERT_MASTER_FINISH_MIGRATION)) {
1871 mlog(0, "%s:%.*s: got unrelated assert"
1872 " from %u for migration, ignoring\n",
1873 dlm->name, namelen, name,
1874 assert->node_idx);
1875 __dlm_put_mle(mle);
1876 spin_unlock(&dlm->master_lock);
1877 spin_unlock(&dlm->spinlock);
1878 goto done;
1879 }
1880 }
6714d8e8
KH
1881 }
1882 spin_unlock(&dlm->master_lock);
1883
1884 /* ok everything checks out with the MLE
1885 * now check to see if there is a lockres */
a3d33291 1886 res = __dlm_lookup_lockres(dlm, name, namelen, hash);
6714d8e8
KH
1887 if (res) {
1888 spin_lock(&res->spinlock);
1889 if (res->state & DLM_LOCK_RES_RECOVERING) {
1890 mlog(ML_ERROR, "%u asserting but %.*s is "
1891 "RECOVERING!\n", assert->node_idx, namelen, name);
1892 goto kill;
1893 }
1894 if (!mle) {
dc2ed195
KH
1895 if (res->owner != DLM_LOCK_RES_OWNER_UNKNOWN &&
1896 res->owner != assert->node_idx) {
6714d8e8
KH
1897 mlog(ML_ERROR, "assert_master from "
1898 "%u, but current owner is "
1899 "%u! (%.*s)\n",
1900 assert->node_idx, res->owner,
1901 namelen, name);
1902 goto kill;
1903 }
1904 } else if (mle->type != DLM_MLE_MIGRATION) {
1905 if (res->owner != DLM_LOCK_RES_OWNER_UNKNOWN) {
1906 /* owner is just re-asserting */
1907 if (res->owner == assert->node_idx) {
1908 mlog(0, "owner %u re-asserting on "
1909 "lock %.*s\n", assert->node_idx,
1910 namelen, name);
1911 goto ok;
1912 }
1913 mlog(ML_ERROR, "got assert_master from "
1914 "node %u, but %u is the owner! "
1915 "(%.*s)\n", assert->node_idx,
1916 res->owner, namelen, name);
1917 goto kill;
1918 }
1919 if (!(res->state & DLM_LOCK_RES_IN_PROGRESS)) {
1920 mlog(ML_ERROR, "got assert from %u, but lock "
1921 "with no owner should be "
1922 "in-progress! (%.*s)\n",
1923 assert->node_idx,
1924 namelen, name);
1925 goto kill;
1926 }
1927 } else /* mle->type == DLM_MLE_MIGRATION */ {
1928 /* should only be getting an assert from new master */
1929 if (assert->node_idx != mle->new_master) {
1930 mlog(ML_ERROR, "got assert from %u, but "
1931 "new master is %u, and old master "
1932 "was %u (%.*s)\n",
1933 assert->node_idx, mle->new_master,
1934 mle->master, namelen, name);
1935 goto kill;
1936 }
1937
1938 }
1939ok:
1940 spin_unlock(&res->spinlock);
1941 }
1942 spin_unlock(&dlm->spinlock);
1943
1944 // mlog(0, "woo! got an assert_master from node %u!\n",
1945 // assert->node_idx);
1946 if (mle) {
9c6510a5
KH
1947 int extra_ref = 0;
1948 int nn = -1;
a2bf0477 1949 int rr, err = 0;
6714d8e8
KH
1950
1951 spin_lock(&mle->spinlock);
9c6510a5
KH
1952 if (mle->type == DLM_MLE_BLOCK || mle->type == DLM_MLE_MIGRATION)
1953 extra_ref = 1;
1954 else {
1955 /* MASTER mle: if any bits set in the response map
1956 * then the calling node needs to re-assert to clear
1957 * up nodes that this node contacted */
1958 while ((nn = find_next_bit (mle->response_map, O2NM_MAX_NODES,
1959 nn+1)) < O2NM_MAX_NODES) {
1960 if (nn != dlm->node_num && nn != assert->node_idx)
1961 master_request = 1;
1962 }
1963 }
6714d8e8
KH
1964 mle->master = assert->node_idx;
1965 atomic_set(&mle->woken, 1);
1966 wake_up(&mle->wq);
1967 spin_unlock(&mle->spinlock);
1968
a2bf0477 1969 if (res) {
a6fa3640 1970 int wake = 0;
6714d8e8 1971 spin_lock(&res->spinlock);
a2bf0477
KH
1972 if (mle->type == DLM_MLE_MIGRATION) {
1973 mlog(0, "finishing off migration of lockres %.*s, "
1974 "from %u to %u\n",
1975 res->lockname.len, res->lockname.name,
1976 dlm->node_num, mle->new_master);
1977 res->state &= ~DLM_LOCK_RES_MIGRATING;
a6fa3640 1978 wake = 1;
a2bf0477
KH
1979 dlm_change_lockres_owner(dlm, res, mle->new_master);
1980 BUG_ON(res->state & DLM_LOCK_RES_DIRTY);
1981 } else {
1982 dlm_change_lockres_owner(dlm, res, mle->master);
1983 }
6714d8e8 1984 spin_unlock(&res->spinlock);
ba2bf218 1985 have_lockres_ref = 1;
a6fa3640
KH
1986 if (wake)
1987 wake_up(&res->wq);
6714d8e8 1988 }
a2bf0477
KH
1989
1990 /* master is known, detach if not already detached.
1991 * ensures that only one assert_master call will happen
1992 * on this mle. */
1993 spin_lock(&dlm->spinlock);
1994 spin_lock(&dlm->master_lock);
1995
1996 rr = atomic_read(&mle->mle_refs.refcount);
1997 if (mle->inuse > 0) {
1998 if (extra_ref && rr < 3)
1999 err = 1;
2000 else if (!extra_ref && rr < 2)
2001 err = 1;
2002 } else {
2003 if (extra_ref && rr < 2)
2004 err = 1;
2005 else if (!extra_ref && rr < 1)
2006 err = 1;
2007 }
2008 if (err) {
2009 mlog(ML_ERROR, "%s:%.*s: got assert master from %u "
2010 "that will mess up this node, refs=%d, extra=%d, "
2011 "inuse=%d\n", dlm->name, namelen, name,
2012 assert->node_idx, rr, extra_ref, mle->inuse);
2013 dlm_print_one_mle(mle);
2014 }
2015 list_del_init(&mle->list);
2016 __dlm_mle_detach_hb_events(dlm, mle);
2017 __dlm_put_mle(mle);
6714d8e8
KH
2018 if (extra_ref) {
2019 /* the assert master message now balances the extra
2020 * ref given by the master / migration request message.
2021 * if this is the last put, it will be removed
2022 * from the list. */
a2bf0477
KH
2023 __dlm_put_mle(mle);
2024 }
2025 spin_unlock(&dlm->master_lock);
2026 spin_unlock(&dlm->spinlock);
2027 } else if (res) {
2028 if (res->owner != assert->node_idx) {
2029 mlog(0, "assert_master from %u, but current "
2030 "owner is %u (%.*s), no mle\n", assert->node_idx,
2031 res->owner, namelen, name);
6714d8e8
KH
2032 }
2033 }
2034
2035done:
9c6510a5 2036 ret = 0;
6714d8e8
KH
2037 if (res)
2038 dlm_lockres_put(res);
2039 dlm_put(dlm);
9c6510a5
KH
2040 if (master_request) {
2041 mlog(0, "need to tell master to reassert\n");
ba2bf218
KH
2042 /* positive. negative would shoot down the node. */
2043 ret |= DLM_ASSERT_RESPONSE_REASSERT;
2044 if (!have_lockres_ref) {
2045 mlog(ML_ERROR, "strange, got assert from %u, MASTER "
2046 "mle present here for %s:%.*s, but no lockres!\n",
2047 assert->node_idx, dlm->name, namelen, name);
2048 }
2049 }
2050 if (have_lockres_ref) {
2051 /* let the master know we have a reference to the lockres */
2052 ret |= DLM_ASSERT_RESPONSE_MASTERY_REF;
2053 mlog(0, "%s:%.*s: got assert from %u, need a ref\n",
2054 dlm->name, namelen, name, assert->node_idx);
9c6510a5
KH
2055 }
2056 return ret;
6714d8e8
KH
2057
2058kill:
2059 /* kill the caller! */
a9ee4c8a
KH
2060 mlog(ML_ERROR, "Bad message received from another node. Dumping state "
2061 "and killing the other node now! This node is OK and can continue.\n");
2062 __dlm_print_one_lock_resource(res);
6714d8e8
KH
2063 spin_unlock(&res->spinlock);
2064 spin_unlock(&dlm->spinlock);
2065 dlm_lockres_put(res);
6714d8e8
KH
2066 dlm_put(dlm);
2067 return -EINVAL;
2068}
2069
2070int dlm_dispatch_assert_master(struct dlm_ctxt *dlm,
2071 struct dlm_lock_resource *res,
2072 int ignore_higher, u8 request_from, u32 flags)
2073{
2074 struct dlm_work_item *item;
cd861280 2075 item = kzalloc(sizeof(*item), GFP_NOFS);
6714d8e8
KH
2076 if (!item)
2077 return -ENOMEM;
2078
2079
2080 /* queue up work for dlm_assert_master_worker */
2081 dlm_grab(dlm); /* get an extra ref for the work item */
2082 dlm_init_work_item(dlm, item, dlm_assert_master_worker, NULL);
2083 item->u.am.lockres = res; /* already have a ref */
2084 /* can optionally ignore node numbers higher than this node */
2085 item->u.am.ignore_higher = ignore_higher;
2086 item->u.am.request_from = request_from;
2087 item->u.am.flags = flags;
2088
9c6510a5
KH
2089 if (ignore_higher)
2090 mlog(0, "IGNORE HIGHER: %.*s\n", res->lockname.len,
2091 res->lockname.name);
2092
6714d8e8
KH
2093 spin_lock(&dlm->work_lock);
2094 list_add_tail(&item->list, &dlm->work_list);
2095 spin_unlock(&dlm->work_lock);
2096
3156d267 2097 queue_work(dlm->dlm_worker, &dlm->dispatched_work);
6714d8e8
KH
2098 return 0;
2099}
2100
2101static void dlm_assert_master_worker(struct dlm_work_item *item, void *data)
2102{
2103 struct dlm_ctxt *dlm = data;
2104 int ret = 0;
2105 struct dlm_lock_resource *res;
2106 unsigned long nodemap[BITS_TO_LONGS(O2NM_MAX_NODES)];
2107 int ignore_higher;
2108 int bit;
2109 u8 request_from;
2110 u32 flags;
2111
2112 dlm = item->dlm;
2113 res = item->u.am.lockres;
2114 ignore_higher = item->u.am.ignore_higher;
2115 request_from = item->u.am.request_from;
2116 flags = item->u.am.flags;
2117
2118 spin_lock(&dlm->spinlock);
2119 memcpy(nodemap, dlm->domain_map, sizeof(nodemap));
2120 spin_unlock(&dlm->spinlock);
2121
2122 clear_bit(dlm->node_num, nodemap);
2123 if (ignore_higher) {
2124 /* if is this just to clear up mles for nodes below
2125 * this node, do not send the message to the original
2126 * caller or any node number higher than this */
2127 clear_bit(request_from, nodemap);
2128 bit = dlm->node_num;
2129 while (1) {
2130 bit = find_next_bit(nodemap, O2NM_MAX_NODES,
2131 bit+1);
2132 if (bit >= O2NM_MAX_NODES)
2133 break;
2134 clear_bit(bit, nodemap);
2135 }
2136 }
2137
36407488
KH
2138 /*
2139 * If we're migrating this lock to someone else, we are no
2140 * longer allowed to assert out own mastery. OTOH, we need to
2141 * prevent migration from starting while we're still asserting
2142 * our dominance. The reserved ast delays migration.
2143 */
2144 spin_lock(&res->spinlock);
2145 if (res->state & DLM_LOCK_RES_MIGRATING) {
2146 mlog(0, "Someone asked us to assert mastery, but we're "
2147 "in the middle of migration. Skipping assert, "
2148 "the new master will handle that.\n");
2149 spin_unlock(&res->spinlock);
2150 goto put;
2151 } else
2152 __dlm_lockres_reserve_ast(res);
2153 spin_unlock(&res->spinlock);
2154
6714d8e8
KH
2155 /* this call now finishes out the nodemap
2156 * even if one or more nodes die */
2157 mlog(0, "worker about to master %.*s here, this=%u\n",
2158 res->lockname.len, res->lockname.name, dlm->node_num);
ba2bf218 2159 ret = dlm_do_assert_master(dlm, res, nodemap, flags);
6714d8e8
KH
2160 if (ret < 0) {
2161 /* no need to restart, we are done */
3b3b84a8
KH
2162 if (!dlm_is_host_down(ret))
2163 mlog_errno(ret);
6714d8e8
KH
2164 }
2165
36407488
KH
2166 /* Ok, we've asserted ourselves. Let's let migration start. */
2167 dlm_lockres_release_ast(dlm, res);
2168
2169put:
6714d8e8
KH
2170 dlm_lockres_put(res);
2171
2172 mlog(0, "finished with dlm_assert_master_worker\n");
2173}
2174
c03872f5
KH
2175/* SPECIAL CASE for the $RECOVERY lock used by the recovery thread.
2176 * We cannot wait for node recovery to complete to begin mastering this
2177 * lockres because this lockres is used to kick off recovery! ;-)
2178 * So, do a pre-check on all living nodes to see if any of those nodes
2179 * think that $RECOVERY is currently mastered by a dead node. If so,
2180 * we wait a short time to allow that node to get notified by its own
2181 * heartbeat stack, then check again. All $RECOVERY lock resources
2182 * mastered by dead nodes are purged when the hearbeat callback is
2183 * fired, so we can know for sure that it is safe to continue once
2184 * the node returns a live node or no node. */
2185static int dlm_pre_master_reco_lockres(struct dlm_ctxt *dlm,
2186 struct dlm_lock_resource *res)
2187{
2188 struct dlm_node_iter iter;
2189 int nodenum;
2190 int ret = 0;
2191 u8 master = DLM_LOCK_RES_OWNER_UNKNOWN;
2192
2193 spin_lock(&dlm->spinlock);
2194 dlm_node_iter_init(dlm->domain_map, &iter);
2195 spin_unlock(&dlm->spinlock);
2196
2197 while ((nodenum = dlm_node_iter_next(&iter)) >= 0) {
2198 /* do not send to self */
2199 if (nodenum == dlm->node_num)
2200 continue;
2201 ret = dlm_do_master_requery(dlm, res, nodenum, &master);
2202 if (ret < 0) {
2203 mlog_errno(ret);
2204 if (!dlm_is_host_down(ret))
2205 BUG();
2206 /* host is down, so answer for that node would be
2207 * DLM_LOCK_RES_OWNER_UNKNOWN. continue. */
f42a100b 2208 ret = 0;
c03872f5
KH
2209 }
2210
2211 if (master != DLM_LOCK_RES_OWNER_UNKNOWN) {
2212 /* check to see if this master is in the recovery map */
2213 spin_lock(&dlm->spinlock);
2214 if (test_bit(master, dlm->recovery_map)) {
2215 mlog(ML_NOTICE, "%s: node %u has not seen "
2216 "node %u go down yet, and thinks the "
2217 "dead node is mastering the recovery "
2218 "lock. must wait.\n", dlm->name,
2219 nodenum, master);
2220 ret = -EAGAIN;
2221 }
2222 spin_unlock(&dlm->spinlock);
2223 mlog(0, "%s: reco lock master is %u\n", dlm->name,
2224 master);
2225 break;
2226 }
2227 }
2228 return ret;
2229}
2230
ba2bf218
KH
2231/*
2232 * DLM_DEREF_LOCKRES_MSG
2233 */
2234
2235int dlm_drop_lockres_ref(struct dlm_ctxt *dlm, struct dlm_lock_resource *res)
2236{
2237 struct dlm_deref_lockres deref;
2238 int ret = 0, r;
2239 const char *lockname;
2240 unsigned int namelen;
2241
2242 lockname = res->lockname.name;
2243 namelen = res->lockname.len;
2244 BUG_ON(namelen > O2NM_MAX_NAME_LEN);
2245
2246 mlog(0, "%s:%.*s: sending deref to %d\n",
2247 dlm->name, namelen, lockname, res->owner);
2248 memset(&deref, 0, sizeof(deref));
2249 deref.node_idx = dlm->node_num;
2250 deref.namelen = namelen;
2251 memcpy(deref.name, lockname, namelen);
2252
2253 ret = o2net_send_message(DLM_DEREF_LOCKRES_MSG, dlm->key,
2254 &deref, sizeof(deref), res->owner, &r);
2255 if (ret < 0)
2256 mlog_errno(ret);
2257 else if (r < 0) {
2258 /* BAD. other node says I did not have a ref. */
2259 mlog(ML_ERROR,"while dropping ref on %s:%.*s "
2260 "(master=%u) got %d.\n", dlm->name, namelen,
2261 lockname, res->owner, r);
2262 dlm_print_one_lock_resource(res);
2263 BUG();
2264 }
2265 return ret;
2266}
2267
2268int dlm_deref_lockres_handler(struct o2net_msg *msg, u32 len, void *data)
2269{
2270 struct dlm_ctxt *dlm = data;
2271 struct dlm_deref_lockres *deref = (struct dlm_deref_lockres *)msg->buf;
2272 struct dlm_lock_resource *res = NULL;
2273 char *name;
2274 unsigned int namelen;
2275 int ret = -EINVAL;
2276 u8 node;
2277 unsigned int hash;
2278
2279 if (!dlm_grab(dlm))
2280 return 0;
2281
2282 name = deref->name;
2283 namelen = deref->namelen;
2284 node = deref->node_idx;
2285
2286 if (namelen > DLM_LOCKID_NAME_MAX) {
2287 mlog(ML_ERROR, "Invalid name length!");
2288 goto done;
2289 }
2290 if (deref->node_idx >= O2NM_MAX_NODES) {
2291 mlog(ML_ERROR, "Invalid node number: %u\n", node);
2292 goto done;
2293 }
2294
2295 hash = dlm_lockid_hash(name, namelen);
2296
2297 spin_lock(&dlm->spinlock);
2298 res = __dlm_lookup_lockres_full(dlm, name, namelen, hash);
2299 if (!res) {
2300 spin_unlock(&dlm->spinlock);
2301 mlog(ML_ERROR, "%s:%.*s: bad lockres name\n",
2302 dlm->name, namelen, name);
2303 goto done;
2304 }
2305 spin_unlock(&dlm->spinlock);
2306
2307 spin_lock(&res->spinlock);
2308 BUG_ON(res->state & DLM_LOCK_RES_DROPPING_REF);
2309 if (test_bit(node, res->refmap)) {
2310 ret = 0;
2311 dlm_lockres_clear_refmap_bit(node, res);
2312 } else {
2313 mlog(ML_ERROR, "%s:%.*s: node %u trying to drop ref "
2314 "but it is already dropped!\n", dlm->name, namelen,
2315 name, node);
2316 __dlm_print_one_lock_resource(res);
2317 }
2318 spin_unlock(&res->spinlock);
2319
2320 if (!ret)
2321 dlm_lockres_calc_usage(dlm, res);
2322done:
2323 if (res)
2324 dlm_lockres_put(res);
2325 dlm_put(dlm);
2326 return ret;
2327}
2328
6714d8e8
KH
2329
2330/*
2331 * DLM_MIGRATE_LOCKRES
2332 */
2333
2334
faf0ec9f
AB
2335static int dlm_migrate_lockres(struct dlm_ctxt *dlm,
2336 struct dlm_lock_resource *res,
2337 u8 target)
6714d8e8
KH
2338{
2339 struct dlm_master_list_entry *mle = NULL;
2340 struct dlm_master_list_entry *oldmle = NULL;
2341 struct dlm_migratable_lockres *mres = NULL;
2342 int ret = -EINVAL;
2343 const char *name;
2344 unsigned int namelen;
2345 int mle_added = 0;
2346 struct list_head *queue, *iter;
2347 int i;
2348 struct dlm_lock *lock;
a6fa3640 2349 int empty = 1, wake = 0;
6714d8e8
KH
2350
2351 if (!dlm_grab(dlm))
2352 return -EINVAL;
2353
2354 name = res->lockname.name;
2355 namelen = res->lockname.len;
2356
2357 mlog(0, "migrating %.*s to %u\n", namelen, name, target);
2358
2359 /*
2360 * ensure this lockres is a proper candidate for migration
2361 */
2362 spin_lock(&res->spinlock);
2363 if (res->owner == DLM_LOCK_RES_OWNER_UNKNOWN) {
2364 mlog(0, "cannot migrate lockres with unknown owner!\n");
2365 spin_unlock(&res->spinlock);
2366 goto leave;
2367 }
2368 if (res->owner != dlm->node_num) {
2369 mlog(0, "cannot migrate lockres this node doesn't own!\n");
2370 spin_unlock(&res->spinlock);
2371 goto leave;
2372 }
2373 mlog(0, "checking queues...\n");
2374 queue = &res->granted;
2375 for (i=0; i<3; i++) {
2376 list_for_each(iter, queue) {
2377 lock = list_entry (iter, struct dlm_lock, list);
2378 empty = 0;
2379 if (lock->ml.node == dlm->node_num) {
2380 mlog(0, "found a lock owned by this node "
2381 "still on the %s queue! will not "
2382 "migrate this lockres\n",
2383 i==0 ? "granted" :
2384 (i==1 ? "converting" : "blocked"));
2385 spin_unlock(&res->spinlock);
2386 ret = -ENOTEMPTY;
2387 goto leave;
2388 }
2389 }
2390 queue++;
2391 }
2392 mlog(0, "all locks on this lockres are nonlocal. continuing\n");
2393 spin_unlock(&res->spinlock);
2394
2395 /* no work to do */
2396 if (empty) {
2397 mlog(0, "no locks were found on this lockres! done!\n");
2398 ret = 0;
2399 goto leave;
2400 }
2401
2402 /*
2403 * preallocate up front
2404 * if this fails, abort
2405 */
2406
2407 ret = -ENOMEM;
ad8100e0 2408 mres = (struct dlm_migratable_lockres *) __get_free_page(GFP_NOFS);
6714d8e8
KH
2409 if (!mres) {
2410 mlog_errno(ret);
2411 goto leave;
2412 }
2413
2414 mle = (struct dlm_master_list_entry *) kmem_cache_alloc(dlm_mle_cache,
ad8100e0 2415 GFP_NOFS);
6714d8e8
KH
2416 if (!mle) {
2417 mlog_errno(ret);
2418 goto leave;
2419 }
2420 ret = 0;
2421
2422 /*
2423 * find a node to migrate the lockres to
2424 */
2425
2426 mlog(0, "picking a migration node\n");
2427 spin_lock(&dlm->spinlock);
2428 /* pick a new node */
2429 if (!test_bit(target, dlm->domain_map) ||
2430 target >= O2NM_MAX_NODES) {
2431 target = dlm_pick_migration_target(dlm, res);
2432 }
2433 mlog(0, "node %u chosen for migration\n", target);
2434
2435 if (target >= O2NM_MAX_NODES ||
2436 !test_bit(target, dlm->domain_map)) {
2437 /* target chosen is not alive */
2438 ret = -EINVAL;
2439 }
2440
2441 if (ret) {
2442 spin_unlock(&dlm->spinlock);
2443 goto fail;
2444 }
2445
2446 mlog(0, "continuing with target = %u\n", target);
2447
2448 /*
2449 * clear any existing master requests and
2450 * add the migration mle to the list
2451 */
2452 spin_lock(&dlm->master_lock);
2453 ret = dlm_add_migration_mle(dlm, res, mle, &oldmle, name,
2454 namelen, target, dlm->node_num);
2455 spin_unlock(&dlm->master_lock);
2456 spin_unlock(&dlm->spinlock);
2457
2458 if (ret == -EEXIST) {
2459 mlog(0, "another process is already migrating it\n");
2460 goto fail;
2461 }
2462 mle_added = 1;
2463
2464 /*
2465 * set the MIGRATING flag and flush asts
2466 * if we fail after this we need to re-dirty the lockres
2467 */
2468 if (dlm_mark_lockres_migrating(dlm, res, target) < 0) {
2469 mlog(ML_ERROR, "tried to migrate %.*s to %u, but "
2470 "the target went down.\n", res->lockname.len,
2471 res->lockname.name, target);
2472 spin_lock(&res->spinlock);
2473 res->state &= ~DLM_LOCK_RES_MIGRATING;
a6fa3640 2474 wake = 1;
6714d8e8
KH
2475 spin_unlock(&res->spinlock);
2476 ret = -EINVAL;
2477 }
2478
2479fail:
2480 if (oldmle) {
2481 /* master is known, detach if not already detached */
2482 dlm_mle_detach_hb_events(dlm, oldmle);
2483 dlm_put_mle(oldmle);
2484 }
2485
2486 if (ret < 0) {
2487 if (mle_added) {
2488 dlm_mle_detach_hb_events(dlm, mle);
2489 dlm_put_mle(mle);
2490 } else if (mle) {
2491 kmem_cache_free(dlm_mle_cache, mle);
2492 }
2493 goto leave;
2494 }
2495
2496 /*
2497 * at this point, we have a migration target, an mle
2498 * in the master list, and the MIGRATING flag set on
2499 * the lockres
2500 */
2501
1cd04dbe
KH
2502 /* now that remote nodes are spinning on the MIGRATING flag,
2503 * ensure that all assert_master work is flushed. */
2504 flush_workqueue(dlm->dlm_worker);
6714d8e8
KH
2505
2506 /* get an extra reference on the mle.
2507 * otherwise the assert_master from the new
2508 * master will destroy this.
2509 * also, make sure that all callers of dlm_get_mle
2510 * take both dlm->spinlock and dlm->master_lock */
2511 spin_lock(&dlm->spinlock);
2512 spin_lock(&dlm->master_lock);
a2bf0477 2513 dlm_get_mle_inuse(mle);
6714d8e8
KH
2514 spin_unlock(&dlm->master_lock);
2515 spin_unlock(&dlm->spinlock);
2516
2517 /* notify new node and send all lock state */
2518 /* call send_one_lockres with migration flag.
2519 * this serves as notice to the target node that a
2520 * migration is starting. */
2521 ret = dlm_send_one_lockres(dlm, res, mres, target,
2522 DLM_MRES_MIGRATION);
2523
2524 if (ret < 0) {
2525 mlog(0, "migration to node %u failed with %d\n",
2526 target, ret);
2527 /* migration failed, detach and clean up mle */
2528 dlm_mle_detach_hb_events(dlm, mle);
2529 dlm_put_mle(mle);
a2bf0477
KH
2530 dlm_put_mle_inuse(mle);
2531 spin_lock(&res->spinlock);
2532 res->state &= ~DLM_LOCK_RES_MIGRATING;
a6fa3640 2533 wake = 1;
a2bf0477 2534 spin_unlock(&res->spinlock);
6714d8e8
KH
2535 goto leave;
2536 }
2537
2538 /* at this point, the target sends a message to all nodes,
2539 * (using dlm_do_migrate_request). this node is skipped since
2540 * we had to put an mle in the list to begin the process. this
2541 * node now waits for target to do an assert master. this node
2542 * will be the last one notified, ensuring that the migration
2543 * is complete everywhere. if the target dies while this is
2544 * going on, some nodes could potentially see the target as the
2545 * master, so it is important that my recovery finds the migration
2546 * mle and sets the master to UNKNONWN. */
2547
2548
2549 /* wait for new node to assert master */
2550 while (1) {
2551 ret = wait_event_interruptible_timeout(mle->wq,
2552 (atomic_read(&mle->woken) == 1),
2553 msecs_to_jiffies(5000));
2554
2555 if (ret >= 0) {
2556 if (atomic_read(&mle->woken) == 1 ||
2557 res->owner == target)
2558 break;
2559
1cd04dbe
KH
2560 mlog(0, "%s:%.*s: timed out during migration\n",
2561 dlm->name, res->lockname.len, res->lockname.name);
e2faea4c
KH
2562 /* avoid hang during shutdown when migrating lockres
2563 * to a node which also goes down */
2564 if (dlm_is_node_dead(dlm, target)) {
aa852354
KH
2565 mlog(0, "%s:%.*s: expected migration "
2566 "target %u is no longer up, restarting\n",
e2faea4c
KH
2567 dlm->name, res->lockname.len,
2568 res->lockname.name, target);
1cd04dbe
KH
2569 ret = -EINVAL;
2570 /* migration failed, detach and clean up mle */
2571 dlm_mle_detach_hb_events(dlm, mle);
2572 dlm_put_mle(mle);
2573 dlm_put_mle_inuse(mle);
2574 spin_lock(&res->spinlock);
2575 res->state &= ~DLM_LOCK_RES_MIGRATING;
a6fa3640 2576 wake = 1;
1cd04dbe
KH
2577 spin_unlock(&res->spinlock);
2578 goto leave;
e2faea4c 2579 }
1cd04dbe
KH
2580 } else
2581 mlog(0, "%s:%.*s: caught signal during migration\n",
2582 dlm->name, res->lockname.len, res->lockname.name);
6714d8e8
KH
2583 }
2584
2585 /* all done, set the owner, clear the flag */
2586 spin_lock(&res->spinlock);
2587 dlm_set_lockres_owner(dlm, res, target);
2588 res->state &= ~DLM_LOCK_RES_MIGRATING;
2589 dlm_remove_nonlocal_locks(dlm, res);
2590 spin_unlock(&res->spinlock);
2591 wake_up(&res->wq);
2592
2593 /* master is known, detach if not already detached */
2594 dlm_mle_detach_hb_events(dlm, mle);
a2bf0477 2595 dlm_put_mle_inuse(mle);
6714d8e8
KH
2596 ret = 0;
2597
2598 dlm_lockres_calc_usage(dlm, res);
2599
2600leave:
2601 /* re-dirty the lockres if we failed */
2602 if (ret < 0)
2603 dlm_kick_thread(dlm, res);
2604
a6fa3640
KH
2605 /* wake up waiters if the MIGRATING flag got set
2606 * but migration failed */
2607 if (wake)
2608 wake_up(&res->wq);
2609
6714d8e8
KH
2610 /* TODO: cleanup */
2611 if (mres)
2612 free_page((unsigned long)mres);
2613
2614 dlm_put(dlm);
2615
2616 mlog(0, "returning %d\n", ret);
2617 return ret;
2618}
6714d8e8 2619
ba2bf218
KH
2620#define DLM_MIGRATION_RETRY_MS 100
2621
2622/* Should be called only after beginning the domain leave process.
2623 * There should not be any remaining locks on nonlocal lock resources,
2624 * and there should be no local locks left on locally mastered resources.
2625 *
2626 * Called with the dlm spinlock held, may drop it to do migration, but
2627 * will re-acquire before exit.
2628 *
2629 * Returns: 1 if dlm->spinlock was dropped/retaken, 0 if never dropped */
2630int dlm_empty_lockres(struct dlm_ctxt *dlm, struct dlm_lock_resource *res)
2631{
2632 int ret;
2633 int lock_dropped = 0;
2634
2635 if (res->owner != dlm->node_num) {
2636 if (!__dlm_lockres_unused(res)) {
2637 mlog(ML_ERROR, "%s:%.*s: this node is not master, "
2638 "trying to free this but locks remain\n",
2639 dlm->name, res->lockname.len, res->lockname.name);
2640 }
2641 goto leave;
2642 }
2643
2644 /* Wheee! Migrate lockres here! Will sleep so drop spinlock. */
2645 spin_unlock(&dlm->spinlock);
2646 lock_dropped = 1;
2647 while (1) {
2648 ret = dlm_migrate_lockres(dlm, res, O2NM_MAX_NODES);
2649 if (ret >= 0)
2650 break;
2651 if (ret == -ENOTEMPTY) {
2652 mlog(ML_ERROR, "lockres %.*s still has local locks!\n",
2653 res->lockname.len, res->lockname.name);
2654 BUG();
2655 }
2656
2657 mlog(0, "lockres %.*s: migrate failed, "
2658 "retrying\n", res->lockname.len,
2659 res->lockname.name);
2660 msleep(DLM_MIGRATION_RETRY_MS);
2661 }
2662 spin_lock(&dlm->spinlock);
2663leave:
2664 return lock_dropped;
2665}
2666
6714d8e8
KH
2667int dlm_lock_basts_flushed(struct dlm_ctxt *dlm, struct dlm_lock *lock)
2668{
2669 int ret;
2670 spin_lock(&dlm->ast_lock);
2671 spin_lock(&lock->spinlock);
2672 ret = (list_empty(&lock->bast_list) && !lock->bast_pending);
2673 spin_unlock(&lock->spinlock);
2674 spin_unlock(&dlm->ast_lock);
2675 return ret;
2676}
2677
2678static int dlm_migration_can_proceed(struct dlm_ctxt *dlm,
2679 struct dlm_lock_resource *res,
2680 u8 mig_target)
2681{
2682 int can_proceed;
2683 spin_lock(&res->spinlock);
2684 can_proceed = !!(res->state & DLM_LOCK_RES_MIGRATING);
2685 spin_unlock(&res->spinlock);
2686
2687 /* target has died, so make the caller break out of the
2688 * wait_event, but caller must recheck the domain_map */
2689 spin_lock(&dlm->spinlock);
2690 if (!test_bit(mig_target, dlm->domain_map))
2691 can_proceed = 1;
2692 spin_unlock(&dlm->spinlock);
2693 return can_proceed;
2694}
2695
faf0ec9f
AB
2696static int dlm_lockres_is_dirty(struct dlm_ctxt *dlm,
2697 struct dlm_lock_resource *res)
6714d8e8
KH
2698{
2699 int ret;
2700 spin_lock(&res->spinlock);
2701 ret = !!(res->state & DLM_LOCK_RES_DIRTY);
2702 spin_unlock(&res->spinlock);
2703 return ret;
2704}
2705
2706
2707static int dlm_mark_lockres_migrating(struct dlm_ctxt *dlm,
2708 struct dlm_lock_resource *res,
2709 u8 target)
2710{
2711 int ret = 0;
2712
2713 mlog(0, "dlm_mark_lockres_migrating: %.*s, from %u to %u\n",
2714 res->lockname.len, res->lockname.name, dlm->node_num,
2715 target);
2716 /* need to set MIGRATING flag on lockres. this is done by
2717 * ensuring that all asts have been flushed for this lockres. */
2718 spin_lock(&res->spinlock);
2719 BUG_ON(res->migration_pending);
2720 res->migration_pending = 1;
2721 /* strategy is to reserve an extra ast then release
2722 * it below, letting the release do all of the work */
2723 __dlm_lockres_reserve_ast(res);
2724 spin_unlock(&res->spinlock);
2725
ddc09c8d 2726 /* now flush all the pending asts */
6714d8e8 2727 dlm_kick_thread(dlm, res);
ddc09c8d
KH
2728 /* before waiting on DIRTY, block processes which may
2729 * try to dirty the lockres before MIGRATING is set */
2730 spin_lock(&res->spinlock);
2731 BUG_ON(res->state & DLM_LOCK_RES_BLOCK_DIRTY);
2732 res->state |= DLM_LOCK_RES_BLOCK_DIRTY;
2733 spin_unlock(&res->spinlock);
2734 /* now wait on any pending asts and the DIRTY state */
6714d8e8
KH
2735 wait_event(dlm->ast_wq, !dlm_lockres_is_dirty(dlm, res));
2736 dlm_lockres_release_ast(dlm, res);
2737
2738 mlog(0, "about to wait on migration_wq, dirty=%s\n",
2739 res->state & DLM_LOCK_RES_DIRTY ? "yes" : "no");
2740 /* if the extra ref we just put was the final one, this
2741 * will pass thru immediately. otherwise, we need to wait
2742 * for the last ast to finish. */
2743again:
2744 ret = wait_event_interruptible_timeout(dlm->migration_wq,
2745 dlm_migration_can_proceed(dlm, res, target),
2746 msecs_to_jiffies(1000));
2747 if (ret < 0) {
2748 mlog(0, "woken again: migrating? %s, dead? %s\n",
2749 res->state & DLM_LOCK_RES_MIGRATING ? "yes":"no",
2750 test_bit(target, dlm->domain_map) ? "no":"yes");
2751 } else {
2752 mlog(0, "all is well: migrating? %s, dead? %s\n",
2753 res->state & DLM_LOCK_RES_MIGRATING ? "yes":"no",
2754 test_bit(target, dlm->domain_map) ? "no":"yes");
2755 }
2756 if (!dlm_migration_can_proceed(dlm, res, target)) {
2757 mlog(0, "trying again...\n");
2758 goto again;
2759 }
ddc09c8d
KH
2760 /* now that we are sure the MIGRATING state is there, drop
2761 * the unneded state which blocked threads trying to DIRTY */
2762 spin_lock(&res->spinlock);
2763 BUG_ON(!(res->state & DLM_LOCK_RES_BLOCK_DIRTY));
2764 BUG_ON(!(res->state & DLM_LOCK_RES_MIGRATING));
2765 res->state &= ~DLM_LOCK_RES_BLOCK_DIRTY;
2766 spin_unlock(&res->spinlock);
6714d8e8
KH
2767
2768 /* did the target go down or die? */
2769 spin_lock(&dlm->spinlock);
2770 if (!test_bit(target, dlm->domain_map)) {
2771 mlog(ML_ERROR, "aha. migration target %u just went down\n",
2772 target);
2773 ret = -EHOSTDOWN;
2774 }
2775 spin_unlock(&dlm->spinlock);
2776
2777 /*
2778 * at this point:
2779 *
2780 * o the DLM_LOCK_RES_MIGRATING flag is set
2781 * o there are no pending asts on this lockres
2782 * o all processes trying to reserve an ast on this
2783 * lockres must wait for the MIGRATING flag to clear
2784 */
2785 return ret;
2786}
2787
2788/* last step in the migration process.
2789 * original master calls this to free all of the dlm_lock
2790 * structures that used to be for other nodes. */
2791static void dlm_remove_nonlocal_locks(struct dlm_ctxt *dlm,
2792 struct dlm_lock_resource *res)
2793{
2794 struct list_head *iter, *iter2;
2795 struct list_head *queue = &res->granted;
ba2bf218 2796 int i, bit;
6714d8e8
KH
2797 struct dlm_lock *lock;
2798
2799 assert_spin_locked(&res->spinlock);
2800
2801 BUG_ON(res->owner == dlm->node_num);
2802
2803 for (i=0; i<3; i++) {
2804 list_for_each_safe(iter, iter2, queue) {
2805 lock = list_entry (iter, struct dlm_lock, list);
2806 if (lock->ml.node != dlm->node_num) {
2807 mlog(0, "putting lock for node %u\n",
2808 lock->ml.node);
2809 /* be extra careful */
2810 BUG_ON(!list_empty(&lock->ast_list));
2811 BUG_ON(!list_empty(&lock->bast_list));
2812 BUG_ON(lock->ast_pending);
2813 BUG_ON(lock->bast_pending);
ba2bf218 2814 dlm_lockres_clear_refmap_bit(lock->ml.node, res);
6714d8e8
KH
2815 list_del_init(&lock->list);
2816 dlm_lock_put(lock);
2817 }
2818 }
2819 queue++;
2820 }
ba2bf218
KH
2821 bit = 0;
2822 while (1) {
2823 bit = find_next_bit(res->refmap, O2NM_MAX_NODES, bit);
2824 if (bit >= O2NM_MAX_NODES)
2825 break;
2826 /* do not clear the local node reference, if there is a
2827 * process holding this, let it drop the ref itself */
2828 if (bit != dlm->node_num) {
2829 mlog(0, "%s:%.*s: node %u had a ref to this "
2830 "migrating lockres, clearing\n", dlm->name,
2831 res->lockname.len, res->lockname.name, bit);
2832 dlm_lockres_clear_refmap_bit(bit, res);
2833 }
2834 bit++;
2835 }
6714d8e8
KH
2836}
2837
2838/* for now this is not too intelligent. we will
2839 * need stats to make this do the right thing.
2840 * this just finds the first lock on one of the
2841 * queues and uses that node as the target. */
2842static u8 dlm_pick_migration_target(struct dlm_ctxt *dlm,
2843 struct dlm_lock_resource *res)
2844{
2845 int i;
2846 struct list_head *queue = &res->granted;
2847 struct list_head *iter;
2848 struct dlm_lock *lock;
2849 int nodenum;
2850
2851 assert_spin_locked(&dlm->spinlock);
2852
2853 spin_lock(&res->spinlock);
2854 for (i=0; i<3; i++) {
2855 list_for_each(iter, queue) {
2856 /* up to the caller to make sure this node
2857 * is alive */
2858 lock = list_entry (iter, struct dlm_lock, list);
2859 if (lock->ml.node != dlm->node_num) {
2860 spin_unlock(&res->spinlock);
2861 return lock->ml.node;
2862 }
2863 }
2864 queue++;
2865 }
2866 spin_unlock(&res->spinlock);
2867 mlog(0, "have not found a suitable target yet! checking domain map\n");
2868
2869 /* ok now we're getting desperate. pick anyone alive. */
2870 nodenum = -1;
2871 while (1) {
2872 nodenum = find_next_bit(dlm->domain_map,
2873 O2NM_MAX_NODES, nodenum+1);
2874 mlog(0, "found %d in domain map\n", nodenum);
2875 if (nodenum >= O2NM_MAX_NODES)
2876 break;
2877 if (nodenum != dlm->node_num) {
2878 mlog(0, "picking %d\n", nodenum);
2879 return nodenum;
2880 }
2881 }
2882
2883 mlog(0, "giving up. no master to migrate to\n");
2884 return DLM_LOCK_RES_OWNER_UNKNOWN;
2885}
2886
2887
2888
2889/* this is called by the new master once all lockres
2890 * data has been received */
2891static int dlm_do_migrate_request(struct dlm_ctxt *dlm,
2892 struct dlm_lock_resource *res,
2893 u8 master, u8 new_master,
2894 struct dlm_node_iter *iter)
2895{
2896 struct dlm_migrate_request migrate;
2897 int ret, status = 0;
2898 int nodenum;
2899
2900 memset(&migrate, 0, sizeof(migrate));
2901 migrate.namelen = res->lockname.len;
2902 memcpy(migrate.name, res->lockname.name, migrate.namelen);
2903 migrate.new_master = new_master;
2904 migrate.master = master;
2905
2906 ret = 0;
2907
2908 /* send message to all nodes, except the master and myself */
2909 while ((nodenum = dlm_node_iter_next(iter)) >= 0) {
2910 if (nodenum == master ||
2911 nodenum == new_master)
2912 continue;
2913
2914 ret = o2net_send_message(DLM_MIGRATE_REQUEST_MSG, dlm->key,
2915 &migrate, sizeof(migrate), nodenum,
2916 &status);
2917 if (ret < 0)
2918 mlog_errno(ret);
2919 else if (status < 0) {
2920 mlog(0, "migrate request (node %u) returned %d!\n",
2921 nodenum, status);
2922 ret = status;
ba2bf218
KH
2923 } else if (status == DLM_MIGRATE_RESPONSE_MASTERY_REF) {
2924 /* during the migration request we short-circuited
2925 * the mastery of the lockres. make sure we have
2926 * a mastery ref for nodenum */
2927 mlog(0, "%s:%.*s: need ref for node %u\n",
2928 dlm->name, res->lockname.len, res->lockname.name,
2929 nodenum);
2930 spin_lock(&res->spinlock);
2931 dlm_lockres_set_refmap_bit(nodenum, res);
2932 spin_unlock(&res->spinlock);
6714d8e8
KH
2933 }
2934 }
2935
2936 if (ret < 0)
2937 mlog_errno(ret);
2938
2939 mlog(0, "returning ret=%d\n", ret);
2940 return ret;
2941}
2942
2943
2944/* if there is an existing mle for this lockres, we now know who the master is.
2945 * (the one who sent us *this* message) we can clear it up right away.
2946 * since the process that put the mle on the list still has a reference to it,
2947 * we can unhash it now, set the master and wake the process. as a result,
2948 * we will have no mle in the list to start with. now we can add an mle for
2949 * the migration and this should be the only one found for those scanning the
2950 * list. */
2951int dlm_migrate_request_handler(struct o2net_msg *msg, u32 len, void *data)
2952{
2953 struct dlm_ctxt *dlm = data;
2954 struct dlm_lock_resource *res = NULL;
2955 struct dlm_migrate_request *migrate = (struct dlm_migrate_request *) msg->buf;
2956 struct dlm_master_list_entry *mle = NULL, *oldmle = NULL;
2957 const char *name;
a3d33291 2958 unsigned int namelen, hash;
6714d8e8
KH
2959 int ret = 0;
2960
2961 if (!dlm_grab(dlm))
2962 return -EINVAL;
2963
2964 name = migrate->name;
2965 namelen = migrate->namelen;
a3d33291 2966 hash = dlm_lockid_hash(name, namelen);
6714d8e8
KH
2967
2968 /* preallocate.. if this fails, abort */
2969 mle = (struct dlm_master_list_entry *) kmem_cache_alloc(dlm_mle_cache,
ad8100e0 2970 GFP_NOFS);
6714d8e8
KH
2971
2972 if (!mle) {
2973 ret = -ENOMEM;
2974 goto leave;
2975 }
2976
2977 /* check for pre-existing lock */
2978 spin_lock(&dlm->spinlock);
a3d33291 2979 res = __dlm_lookup_lockres(dlm, name, namelen, hash);
6714d8e8
KH
2980 spin_lock(&dlm->master_lock);
2981
2982 if (res) {
2983 spin_lock(&res->spinlock);
2984 if (res->state & DLM_LOCK_RES_RECOVERING) {
2985 /* if all is working ok, this can only mean that we got
2986 * a migrate request from a node that we now see as
2987 * dead. what can we do here? drop it to the floor? */
2988 spin_unlock(&res->spinlock);
2989 mlog(ML_ERROR, "Got a migrate request, but the "
2990 "lockres is marked as recovering!");
2991 kmem_cache_free(dlm_mle_cache, mle);
2992 ret = -EINVAL; /* need a better solution */
2993 goto unlock;
2994 }
2995 res->state |= DLM_LOCK_RES_MIGRATING;
2996 spin_unlock(&res->spinlock);
2997 }
2998
2999 /* ignore status. only nonzero status would BUG. */
3000 ret = dlm_add_migration_mle(dlm, res, mle, &oldmle,
3001 name, namelen,
3002 migrate->new_master,
3003 migrate->master);
3004
3005unlock:
3006 spin_unlock(&dlm->master_lock);
3007 spin_unlock(&dlm->spinlock);
3008
3009 if (oldmle) {
3010 /* master is known, detach if not already detached */
3011 dlm_mle_detach_hb_events(dlm, oldmle);
3012 dlm_put_mle(oldmle);
3013 }
3014
3015 if (res)
3016 dlm_lockres_put(res);
3017leave:
3018 dlm_put(dlm);
3019 return ret;
3020}
3021
3022/* must be holding dlm->spinlock and dlm->master_lock
3023 * when adding a migration mle, we can clear any other mles
3024 * in the master list because we know with certainty that
3025 * the master is "master". so we remove any old mle from
3026 * the list after setting it's master field, and then add
3027 * the new migration mle. this way we can hold with the rule
3028 * of having only one mle for a given lock name at all times. */
3029static int dlm_add_migration_mle(struct dlm_ctxt *dlm,
3030 struct dlm_lock_resource *res,
3031 struct dlm_master_list_entry *mle,
3032 struct dlm_master_list_entry **oldmle,
3033 const char *name, unsigned int namelen,
3034 u8 new_master, u8 master)
3035{
3036 int found;
3037 int ret = 0;
3038
3039 *oldmle = NULL;
3040
3041 mlog_entry_void();
3042
3043 assert_spin_locked(&dlm->spinlock);
3044 assert_spin_locked(&dlm->master_lock);
3045
3046 /* caller is responsible for any ref taken here on oldmle */
3047 found = dlm_find_mle(dlm, oldmle, (char *)name, namelen);
3048 if (found) {
3049 struct dlm_master_list_entry *tmp = *oldmle;
3050 spin_lock(&tmp->spinlock);
3051 if (tmp->type == DLM_MLE_MIGRATION) {
3052 if (master == dlm->node_num) {
3053 /* ah another process raced me to it */
3054 mlog(0, "tried to migrate %.*s, but some "
3055 "process beat me to it\n",
3056 namelen, name);
3057 ret = -EEXIST;
3058 } else {
3059 /* bad. 2 NODES are trying to migrate! */
3060 mlog(ML_ERROR, "migration error mle: "
3061 "master=%u new_master=%u // request: "
3062 "master=%u new_master=%u // "
3063 "lockres=%.*s\n",
3064 tmp->master, tmp->new_master,
3065 master, new_master,
3066 namelen, name);
3067 BUG();
3068 }
3069 } else {
3070 /* this is essentially what assert_master does */
3071 tmp->master = master;
3072 atomic_set(&tmp->woken, 1);
3073 wake_up(&tmp->wq);
3074 /* remove it from the list so that only one
3075 * mle will be found */
3076 list_del_init(&tmp->list);
ba2bf218
KH
3077 /* this was obviously WRONG. mle is uninited here. should be tmp. */
3078 __dlm_mle_detach_hb_events(dlm, tmp);
3079 ret = DLM_MIGRATE_RESPONSE_MASTERY_REF;
3080 mlog(0, "%s:%.*s: master=%u, newmaster=%u, "
3081 "telling master to get ref for cleared out mle "
3082 "during migration\n", dlm->name, namelen, name,
3083 master, new_master);
6714d8e8
KH
3084 }
3085 spin_unlock(&tmp->spinlock);
3086 }
3087
3088 /* now add a migration mle to the tail of the list */
3089 dlm_init_mle(mle, DLM_MLE_MIGRATION, dlm, res, name, namelen);
3090 mle->new_master = new_master;
ba2bf218
KH
3091 /* the new master will be sending an assert master for this.
3092 * at that point we will get the refmap reference */
6714d8e8
KH
3093 mle->master = master;
3094 /* do this for consistency with other mle types */
3095 set_bit(new_master, mle->maybe_map);
3096 list_add(&mle->list, &dlm->master_list);
3097
3098 return ret;
3099}
3100
3101
3102void dlm_clean_master_list(struct dlm_ctxt *dlm, u8 dead_node)
3103{
3104 struct list_head *iter, *iter2;
3105 struct dlm_master_list_entry *mle;
3106 struct dlm_lock_resource *res;
a3d33291 3107 unsigned int hash;
6714d8e8
KH
3108
3109 mlog_entry("dlm=%s, dead node=%u\n", dlm->name, dead_node);
3110top:
3111 assert_spin_locked(&dlm->spinlock);
3112
3113 /* clean the master list */
3114 spin_lock(&dlm->master_lock);
3115 list_for_each_safe(iter, iter2, &dlm->master_list) {
3116 mle = list_entry(iter, struct dlm_master_list_entry, list);
3117
3118 BUG_ON(mle->type != DLM_MLE_BLOCK &&
3119 mle->type != DLM_MLE_MASTER &&
3120 mle->type != DLM_MLE_MIGRATION);
3121
3122 /* MASTER mles are initiated locally. the waiting
3123 * process will notice the node map change
3124 * shortly. let that happen as normal. */
3125 if (mle->type == DLM_MLE_MASTER)
3126 continue;
3127
3128
3129 /* BLOCK mles are initiated by other nodes.
3130 * need to clean up if the dead node would have
3131 * been the master. */
3132 if (mle->type == DLM_MLE_BLOCK) {
3133 int bit;
3134
3135 spin_lock(&mle->spinlock);
3136 bit = find_next_bit(mle->maybe_map, O2NM_MAX_NODES, 0);
3137 if (bit != dead_node) {
3138 mlog(0, "mle found, but dead node %u would "
3139 "not have been master\n", dead_node);
3140 spin_unlock(&mle->spinlock);
3141 } else {
3142 /* must drop the refcount by one since the
3143 * assert_master will never arrive. this
3144 * may result in the mle being unlinked and
3145 * freed, but there may still be a process
3146 * waiting in the dlmlock path which is fine. */
3b3b84a8 3147 mlog(0, "node %u was expected master\n",
6714d8e8
KH
3148 dead_node);
3149 atomic_set(&mle->woken, 1);
3150 spin_unlock(&mle->spinlock);
3151 wake_up(&mle->wq);
f671c09b
KH
3152 /* do not need events any longer, so detach
3153 * from heartbeat */
3154 __dlm_mle_detach_hb_events(dlm, mle);
6714d8e8
KH
3155 __dlm_put_mle(mle);
3156 }
3157 continue;
3158 }
3159
3160 /* everything else is a MIGRATION mle */
3161
3162 /* the rule for MIGRATION mles is that the master
3163 * becomes UNKNOWN if *either* the original or
3164 * the new master dies. all UNKNOWN lockreses
3165 * are sent to whichever node becomes the recovery
3166 * master. the new master is responsible for
3167 * determining if there is still a master for
3168 * this lockres, or if he needs to take over
3169 * mastery. either way, this node should expect
3170 * another message to resolve this. */
3171 if (mle->master != dead_node &&
3172 mle->new_master != dead_node)
3173 continue;
3174
3175 /* if we have reached this point, this mle needs to
3176 * be removed from the list and freed. */
3177
3178 /* remove from the list early. NOTE: unlinking
3179 * list_head while in list_for_each_safe */
da01ad05 3180 __dlm_mle_detach_hb_events(dlm, mle);
6714d8e8
KH
3181 spin_lock(&mle->spinlock);
3182 list_del_init(&mle->list);
3183 atomic_set(&mle->woken, 1);
3184 spin_unlock(&mle->spinlock);
3185 wake_up(&mle->wq);
3186
aa852354
KH
3187 mlog(0, "%s: node %u died during migration from "
3188 "%u to %u!\n", dlm->name, dead_node,
6714d8e8
KH
3189 mle->master, mle->new_master);
3190 /* if there is a lockres associated with this
3191 * mle, find it and set its owner to UNKNOWN */
a3d33291 3192 hash = dlm_lockid_hash(mle->u.name.name, mle->u.name.len);
6714d8e8 3193 res = __dlm_lookup_lockres(dlm, mle->u.name.name,
a3d33291 3194 mle->u.name.len, hash);
6714d8e8
KH
3195 if (res) {
3196 /* unfortunately if we hit this rare case, our
3197 * lock ordering is messed. we need to drop
3198 * the master lock so that we can take the
3199 * lockres lock, meaning that we will have to
3200 * restart from the head of list. */
3201 spin_unlock(&dlm->master_lock);
3202
3203 /* move lockres onto recovery list */
3204 spin_lock(&res->spinlock);
3205 dlm_set_lockres_owner(dlm, res,
3206 DLM_LOCK_RES_OWNER_UNKNOWN);
3207 dlm_move_lockres_to_recovery_list(dlm, res);
3208 spin_unlock(&res->spinlock);
3209 dlm_lockres_put(res);
3210
f671c09b
KH
3211 /* about to get rid of mle, detach from heartbeat */
3212 __dlm_mle_detach_hb_events(dlm, mle);
3213
6714d8e8
KH
3214 /* dump the mle */
3215 spin_lock(&dlm->master_lock);
3216 __dlm_put_mle(mle);
3217 spin_unlock(&dlm->master_lock);
3218
3219 /* restart */
3220 goto top;
3221 }
3222
3223 /* this may be the last reference */
3224 __dlm_put_mle(mle);
3225 }
3226 spin_unlock(&dlm->master_lock);
3227}
3228
3229
3230int dlm_finish_migration(struct dlm_ctxt *dlm, struct dlm_lock_resource *res,
3231 u8 old_master)
3232{
3233 struct dlm_node_iter iter;
3234 int ret = 0;
3235
3236 spin_lock(&dlm->spinlock);
3237 dlm_node_iter_init(dlm->domain_map, &iter);
3238 clear_bit(old_master, iter.node_map);
3239 clear_bit(dlm->node_num, iter.node_map);
3240 spin_unlock(&dlm->spinlock);
3241
ba2bf218
KH
3242 /* ownership of the lockres is changing. account for the
3243 * mastery reference here since old_master will briefly have
3244 * a reference after the migration completes */
3245 spin_lock(&res->spinlock);
3246 dlm_lockres_set_refmap_bit(old_master, res);
3247 spin_unlock(&res->spinlock);
3248
6714d8e8
KH
3249 mlog(0, "now time to do a migrate request to other nodes\n");
3250 ret = dlm_do_migrate_request(dlm, res, old_master,
3251 dlm->node_num, &iter);
3252 if (ret < 0) {
3253 mlog_errno(ret);
3254 goto leave;
3255 }
3256
3257 mlog(0, "doing assert master of %.*s to all except the original node\n",
3258 res->lockname.len, res->lockname.name);
3259 /* this call now finishes out the nodemap
3260 * even if one or more nodes die */
ba2bf218 3261 ret = dlm_do_assert_master(dlm, res, iter.node_map,
6714d8e8
KH
3262 DLM_ASSERT_MASTER_FINISH_MIGRATION);
3263 if (ret < 0) {
3264 /* no longer need to retry. all living nodes contacted. */
3265 mlog_errno(ret);
3266 ret = 0;
3267 }
3268
3269 memset(iter.node_map, 0, sizeof(iter.node_map));
3270 set_bit(old_master, iter.node_map);
3271 mlog(0, "doing assert master of %.*s back to %u\n",
3272 res->lockname.len, res->lockname.name, old_master);
ba2bf218 3273 ret = dlm_do_assert_master(dlm, res, iter.node_map,
6714d8e8
KH
3274 DLM_ASSERT_MASTER_FINISH_MIGRATION);
3275 if (ret < 0) {
3276 mlog(0, "assert master to original master failed "
3277 "with %d.\n", ret);
3278 /* the only nonzero status here would be because of
3279 * a dead original node. we're done. */
3280 ret = 0;
3281 }
3282
3283 /* all done, set the owner, clear the flag */
3284 spin_lock(&res->spinlock);
3285 dlm_set_lockres_owner(dlm, res, dlm->node_num);
3286 res->state &= ~DLM_LOCK_RES_MIGRATING;
3287 spin_unlock(&res->spinlock);
3288 /* re-dirty it on the new master */
3289 dlm_kick_thread(dlm, res);
3290 wake_up(&res->wq);
3291leave:
3292 return ret;
3293}
3294
3295/*
3296 * LOCKRES AST REFCOUNT
3297 * this is integral to migration
3298 */
3299
3300/* for future intent to call an ast, reserve one ahead of time.
3301 * this should be called only after waiting on the lockres
3302 * with dlm_wait_on_lockres, and while still holding the
3303 * spinlock after the call. */
3304void __dlm_lockres_reserve_ast(struct dlm_lock_resource *res)
3305{
3306 assert_spin_locked(&res->spinlock);
3307 if (res->state & DLM_LOCK_RES_MIGRATING) {
3308 __dlm_print_one_lock_resource(res);
3309 }
3310 BUG_ON(res->state & DLM_LOCK_RES_MIGRATING);
3311
3312 atomic_inc(&res->asts_reserved);
3313}
3314
3315/*
3316 * used to drop the reserved ast, either because it went unused,
3317 * or because the ast/bast was actually called.
3318 *
3319 * also, if there is a pending migration on this lockres,
3320 * and this was the last pending ast on the lockres,
3321 * atomically set the MIGRATING flag before we drop the lock.
3322 * this is how we ensure that migration can proceed with no
3323 * asts in progress. note that it is ok if the state of the
3324 * queues is such that a lock should be granted in the future
3325 * or that a bast should be fired, because the new master will
3326 * shuffle the lists on this lockres as soon as it is migrated.
3327 */
3328void dlm_lockres_release_ast(struct dlm_ctxt *dlm,
3329 struct dlm_lock_resource *res)
3330{
3331 if (!atomic_dec_and_lock(&res->asts_reserved, &res->spinlock))
3332 return;
3333
3334 if (!res->migration_pending) {
3335 spin_unlock(&res->spinlock);
3336 return;
3337 }
3338
3339 BUG_ON(res->state & DLM_LOCK_RES_MIGRATING);
3340 res->migration_pending = 0;
3341 res->state |= DLM_LOCK_RES_MIGRATING;
3342 spin_unlock(&res->spinlock);
3343 wake_up(&res->wq);
3344 wake_up(&dlm->migration_wq);
3345}