xref: /openbmc/linux/fs/ocfs2/dlm/dlmdomain.c (revision 8a10bc9d)
1 /* -*- mode: c; c-basic-offset: 8; -*-
2  * vim: noexpandtab sw=8 ts=8 sts=0:
3  *
4  * dlmdomain.c
5  *
6  * defines domain join / leave apis
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 #include <linux/module.h>
28 #include <linux/types.h>
29 #include <linux/slab.h>
30 #include <linux/highmem.h>
31 #include <linux/init.h>
32 #include <linux/spinlock.h>
33 #include <linux/delay.h>
34 #include <linux/err.h>
35 #include <linux/debugfs.h>
36 
37 #include "cluster/heartbeat.h"
38 #include "cluster/nodemanager.h"
39 #include "cluster/tcp.h"
40 
41 #include "dlmapi.h"
42 #include "dlmcommon.h"
43 #include "dlmdomain.h"
44 #include "dlmdebug.h"
45 
46 #define MLOG_MASK_PREFIX (ML_DLM|ML_DLM_DOMAIN)
47 #include "cluster/masklog.h"
48 
49 /*
50  * ocfs2 node maps are array of long int, which limits to send them freely
51  * across the wire due to endianness issues. To workaround this, we convert
52  * long ints to byte arrays. Following 3 routines are helper functions to
53  * set/test/copy bits within those array of bytes
54  */
55 static inline void byte_set_bit(u8 nr, u8 map[])
56 {
57 	map[nr >> 3] |= (1UL << (nr & 7));
58 }
59 
60 static inline int byte_test_bit(u8 nr, u8 map[])
61 {
62 	return ((1UL << (nr & 7)) & (map[nr >> 3])) != 0;
63 }
64 
65 static inline void byte_copymap(u8 dmap[], unsigned long smap[],
66 			unsigned int sz)
67 {
68 	unsigned int nn;
69 
70 	if (!sz)
71 		return;
72 
73 	memset(dmap, 0, ((sz + 7) >> 3));
74 	for (nn = 0 ; nn < sz; nn++)
75 		if (test_bit(nn, smap))
76 			byte_set_bit(nn, dmap);
77 }
78 
79 static void dlm_free_pagevec(void **vec, int pages)
80 {
81 	while (pages--)
82 		free_page((unsigned long)vec[pages]);
83 	kfree(vec);
84 }
85 
86 static void **dlm_alloc_pagevec(int pages)
87 {
88 	void **vec = kmalloc(pages * sizeof(void *), GFP_KERNEL);
89 	int i;
90 
91 	if (!vec)
92 		return NULL;
93 
94 	for (i = 0; i < pages; i++)
95 		if (!(vec[i] = (void *)__get_free_page(GFP_KERNEL)))
96 			goto out_free;
97 
98 	mlog(0, "Allocated DLM hash pagevec; %d pages (%lu expected), %lu buckets per page\n",
99 	     pages, (unsigned long)DLM_HASH_PAGES,
100 	     (unsigned long)DLM_BUCKETS_PER_PAGE);
101 	return vec;
102 out_free:
103 	dlm_free_pagevec(vec, i);
104 	return NULL;
105 }
106 
107 /*
108  *
109  * spinlock lock ordering: if multiple locks are needed, obey this ordering:
110  *    dlm_domain_lock
111  *    struct dlm_ctxt->spinlock
112  *    struct dlm_lock_resource->spinlock
113  *    struct dlm_ctxt->master_lock
114  *    struct dlm_ctxt->ast_lock
115  *    dlm_master_list_entry->spinlock
116  *    dlm_lock->spinlock
117  *
118  */
119 
120 DEFINE_SPINLOCK(dlm_domain_lock);
121 LIST_HEAD(dlm_domains);
122 static DECLARE_WAIT_QUEUE_HEAD(dlm_domain_events);
123 
124 /*
125  * The supported protocol version for DLM communication.  Running domains
126  * will have a negotiated version with the same major number and a minor
127  * number equal or smaller.  The dlm_ctxt->dlm_locking_proto field should
128  * be used to determine what a running domain is actually using.
129  *
130  * New in version 1.1:
131  *	- Message DLM_QUERY_REGION added to support global heartbeat
132  *	- Message DLM_QUERY_NODEINFO added to allow online node removes
133  * New in version 1.2:
134  * 	- Message DLM_BEGIN_EXIT_DOMAIN_MSG added to mark start of exit domain
135  */
136 static const struct dlm_protocol_version dlm_protocol = {
137 	.pv_major = 1,
138 	.pv_minor = 2,
139 };
140 
141 #define DLM_DOMAIN_BACKOFF_MS 200
142 
143 static int dlm_query_join_handler(struct o2net_msg *msg, u32 len, void *data,
144 				  void **ret_data);
145 static int dlm_assert_joined_handler(struct o2net_msg *msg, u32 len, void *data,
146 				     void **ret_data);
147 static int dlm_cancel_join_handler(struct o2net_msg *msg, u32 len, void *data,
148 				   void **ret_data);
149 static int dlm_query_region_handler(struct o2net_msg *msg, u32 len,
150 				    void *data, void **ret_data);
151 static int dlm_exit_domain_handler(struct o2net_msg *msg, u32 len, void *data,
152 				   void **ret_data);
153 static int dlm_protocol_compare(struct dlm_protocol_version *existing,
154 				struct dlm_protocol_version *request);
155 
156 static void dlm_unregister_domain_handlers(struct dlm_ctxt *dlm);
157 
158 void __dlm_unhash_lockres(struct dlm_ctxt *dlm, struct dlm_lock_resource *res)
159 {
160 	if (hlist_unhashed(&res->hash_node))
161 		return;
162 
163 	mlog(0, "%s: Unhash res %.*s\n", dlm->name, res->lockname.len,
164 	     res->lockname.name);
165 	hlist_del_init(&res->hash_node);
166 	dlm_lockres_put(res);
167 }
168 
169 void __dlm_insert_lockres(struct dlm_ctxt *dlm, struct dlm_lock_resource *res)
170 {
171 	struct hlist_head *bucket;
172 	struct qstr *q;
173 
174 	assert_spin_locked(&dlm->spinlock);
175 
176 	q = &res->lockname;
177 	bucket = dlm_lockres_hash(dlm, q->hash);
178 
179 	/* get a reference for our hashtable */
180 	dlm_lockres_get(res);
181 
182 	hlist_add_head(&res->hash_node, bucket);
183 
184 	mlog(0, "%s: Hash res %.*s\n", dlm->name, res->lockname.len,
185 	     res->lockname.name);
186 }
187 
188 struct dlm_lock_resource * __dlm_lookup_lockres_full(struct dlm_ctxt *dlm,
189 						     const char *name,
190 						     unsigned int len,
191 						     unsigned int hash)
192 {
193 	struct hlist_head *bucket;
194 	struct dlm_lock_resource *res;
195 
196 	mlog(0, "%.*s\n", len, name);
197 
198 	assert_spin_locked(&dlm->spinlock);
199 
200 	bucket = dlm_lockres_hash(dlm, hash);
201 
202 	hlist_for_each_entry(res, bucket, hash_node) {
203 		if (res->lockname.name[0] != name[0])
204 			continue;
205 		if (unlikely(res->lockname.len != len))
206 			continue;
207 		if (memcmp(res->lockname.name + 1, name + 1, len - 1))
208 			continue;
209 		dlm_lockres_get(res);
210 		return res;
211 	}
212 	return NULL;
213 }
214 
215 /* intended to be called by functions which do not care about lock
216  * resources which are being purged (most net _handler functions).
217  * this will return NULL for any lock resource which is found but
218  * currently in the process of dropping its mastery reference.
219  * use __dlm_lookup_lockres_full when you need the lock resource
220  * regardless (e.g. dlm_get_lock_resource) */
221 struct dlm_lock_resource * __dlm_lookup_lockres(struct dlm_ctxt *dlm,
222 						const char *name,
223 						unsigned int len,
224 						unsigned int hash)
225 {
226 	struct dlm_lock_resource *res = NULL;
227 
228 	mlog(0, "%.*s\n", len, name);
229 
230 	assert_spin_locked(&dlm->spinlock);
231 
232 	res = __dlm_lookup_lockres_full(dlm, name, len, hash);
233 	if (res) {
234 		spin_lock(&res->spinlock);
235 		if (res->state & DLM_LOCK_RES_DROPPING_REF) {
236 			spin_unlock(&res->spinlock);
237 			dlm_lockres_put(res);
238 			return NULL;
239 		}
240 		spin_unlock(&res->spinlock);
241 	}
242 
243 	return res;
244 }
245 
246 struct dlm_lock_resource * dlm_lookup_lockres(struct dlm_ctxt *dlm,
247 				    const char *name,
248 				    unsigned int len)
249 {
250 	struct dlm_lock_resource *res;
251 	unsigned int hash = dlm_lockid_hash(name, len);
252 
253 	spin_lock(&dlm->spinlock);
254 	res = __dlm_lookup_lockres(dlm, name, len, hash);
255 	spin_unlock(&dlm->spinlock);
256 	return res;
257 }
258 
259 static struct dlm_ctxt * __dlm_lookup_domain_full(const char *domain, int len)
260 {
261 	struct dlm_ctxt *tmp;
262 
263 	assert_spin_locked(&dlm_domain_lock);
264 
265 	/* tmp->name here is always NULL terminated,
266 	 * but domain may not be! */
267 	list_for_each_entry(tmp, &dlm_domains, list) {
268 		if (strlen(tmp->name) == len &&
269 		    memcmp(tmp->name, domain, len)==0)
270 			return tmp;
271 	}
272 
273 	return NULL;
274 }
275 
276 /* For null terminated domain strings ONLY */
277 static struct dlm_ctxt * __dlm_lookup_domain(const char *domain)
278 {
279 	assert_spin_locked(&dlm_domain_lock);
280 
281 	return __dlm_lookup_domain_full(domain, strlen(domain));
282 }
283 
284 
285 /* returns true on one of two conditions:
286  * 1) the domain does not exist
287  * 2) the domain exists and it's state is "joined" */
288 static int dlm_wait_on_domain_helper(const char *domain)
289 {
290 	int ret = 0;
291 	struct dlm_ctxt *tmp = NULL;
292 
293 	spin_lock(&dlm_domain_lock);
294 
295 	tmp = __dlm_lookup_domain(domain);
296 	if (!tmp)
297 		ret = 1;
298 	else if (tmp->dlm_state == DLM_CTXT_JOINED)
299 		ret = 1;
300 
301 	spin_unlock(&dlm_domain_lock);
302 	return ret;
303 }
304 
305 static void dlm_free_ctxt_mem(struct dlm_ctxt *dlm)
306 {
307 	dlm_destroy_debugfs_subroot(dlm);
308 
309 	if (dlm->lockres_hash)
310 		dlm_free_pagevec((void **)dlm->lockres_hash, DLM_HASH_PAGES);
311 
312 	if (dlm->master_hash)
313 		dlm_free_pagevec((void **)dlm->master_hash, DLM_HASH_PAGES);
314 
315 	kfree(dlm->name);
316 	kfree(dlm);
317 }
318 
319 /* A little strange - this function will be called while holding
320  * dlm_domain_lock and is expected to be holding it on the way out. We
321  * will however drop and reacquire it multiple times */
322 static void dlm_ctxt_release(struct kref *kref)
323 {
324 	struct dlm_ctxt *dlm;
325 
326 	dlm = container_of(kref, struct dlm_ctxt, dlm_refs);
327 
328 	BUG_ON(dlm->num_joins);
329 	BUG_ON(dlm->dlm_state == DLM_CTXT_JOINED);
330 
331 	/* we may still be in the list if we hit an error during join. */
332 	list_del_init(&dlm->list);
333 
334 	spin_unlock(&dlm_domain_lock);
335 
336 	mlog(0, "freeing memory from domain %s\n", dlm->name);
337 
338 	wake_up(&dlm_domain_events);
339 
340 	dlm_free_ctxt_mem(dlm);
341 
342 	spin_lock(&dlm_domain_lock);
343 }
344 
345 void dlm_put(struct dlm_ctxt *dlm)
346 {
347 	spin_lock(&dlm_domain_lock);
348 	kref_put(&dlm->dlm_refs, dlm_ctxt_release);
349 	spin_unlock(&dlm_domain_lock);
350 }
351 
352 static void __dlm_get(struct dlm_ctxt *dlm)
353 {
354 	kref_get(&dlm->dlm_refs);
355 }
356 
357 /* given a questionable reference to a dlm object, gets a reference if
358  * it can find it in the list, otherwise returns NULL in which case
359  * you shouldn't trust your pointer. */
360 struct dlm_ctxt *dlm_grab(struct dlm_ctxt *dlm)
361 {
362 	struct dlm_ctxt *target;
363 	struct dlm_ctxt *ret = NULL;
364 
365 	spin_lock(&dlm_domain_lock);
366 
367 	list_for_each_entry(target, &dlm_domains, list) {
368 		if (target == dlm) {
369 			__dlm_get(target);
370 			ret = target;
371 			break;
372 		}
373 	}
374 
375 	spin_unlock(&dlm_domain_lock);
376 
377 	return ret;
378 }
379 
380 int dlm_domain_fully_joined(struct dlm_ctxt *dlm)
381 {
382 	int ret;
383 
384 	spin_lock(&dlm_domain_lock);
385 	ret = (dlm->dlm_state == DLM_CTXT_JOINED) ||
386 		(dlm->dlm_state == DLM_CTXT_IN_SHUTDOWN);
387 	spin_unlock(&dlm_domain_lock);
388 
389 	return ret;
390 }
391 
392 static void dlm_destroy_dlm_worker(struct dlm_ctxt *dlm)
393 {
394 	if (dlm->dlm_worker) {
395 		flush_workqueue(dlm->dlm_worker);
396 		destroy_workqueue(dlm->dlm_worker);
397 		dlm->dlm_worker = NULL;
398 	}
399 }
400 
401 static void dlm_complete_dlm_shutdown(struct dlm_ctxt *dlm)
402 {
403 	dlm_unregister_domain_handlers(dlm);
404 	dlm_debug_shutdown(dlm);
405 	dlm_complete_thread(dlm);
406 	dlm_complete_recovery_thread(dlm);
407 	dlm_destroy_dlm_worker(dlm);
408 
409 	/* We've left the domain. Now we can take ourselves out of the
410 	 * list and allow the kref stuff to help us free the
411 	 * memory. */
412 	spin_lock(&dlm_domain_lock);
413 	list_del_init(&dlm->list);
414 	spin_unlock(&dlm_domain_lock);
415 
416 	/* Wake up anyone waiting for us to remove this domain */
417 	wake_up(&dlm_domain_events);
418 }
419 
420 static int dlm_migrate_all_locks(struct dlm_ctxt *dlm)
421 {
422 	int i, num, n, ret = 0;
423 	struct dlm_lock_resource *res;
424 	struct hlist_node *iter;
425 	struct hlist_head *bucket;
426 	int dropped;
427 
428 	mlog(0, "Migrating locks from domain %s\n", dlm->name);
429 
430 	num = 0;
431 	spin_lock(&dlm->spinlock);
432 	for (i = 0; i < DLM_HASH_BUCKETS; i++) {
433 redo_bucket:
434 		n = 0;
435 		bucket = dlm_lockres_hash(dlm, i);
436 		iter = bucket->first;
437 		while (iter) {
438 			n++;
439 			res = hlist_entry(iter, struct dlm_lock_resource,
440 					  hash_node);
441 			dlm_lockres_get(res);
442 			/* migrate, if necessary.  this will drop the dlm
443 			 * spinlock and retake it if it does migration. */
444 			dropped = dlm_empty_lockres(dlm, res);
445 
446 			spin_lock(&res->spinlock);
447 			if (dropped)
448 				__dlm_lockres_calc_usage(dlm, res);
449 			else
450 				iter = res->hash_node.next;
451 			spin_unlock(&res->spinlock);
452 
453 			dlm_lockres_put(res);
454 
455 			if (dropped) {
456 				cond_resched_lock(&dlm->spinlock);
457 				goto redo_bucket;
458 			}
459 		}
460 		cond_resched_lock(&dlm->spinlock);
461 		num += n;
462 	}
463 	spin_unlock(&dlm->spinlock);
464 	wake_up(&dlm->dlm_thread_wq);
465 
466 	/* let the dlm thread take care of purging, keep scanning until
467 	 * nothing remains in the hash */
468 	if (num) {
469 		mlog(0, "%s: %d lock resources in hash last pass\n",
470 		     dlm->name, num);
471 		ret = -EAGAIN;
472 	}
473 	mlog(0, "DONE Migrating locks from domain %s\n", dlm->name);
474 	return ret;
475 }
476 
477 static int dlm_no_joining_node(struct dlm_ctxt *dlm)
478 {
479 	int ret;
480 
481 	spin_lock(&dlm->spinlock);
482 	ret = dlm->joining_node == DLM_LOCK_RES_OWNER_UNKNOWN;
483 	spin_unlock(&dlm->spinlock);
484 
485 	return ret;
486 }
487 
488 static int dlm_begin_exit_domain_handler(struct o2net_msg *msg, u32 len,
489 					 void *data, void **ret_data)
490 {
491 	struct dlm_ctxt *dlm = data;
492 	unsigned int node;
493 	struct dlm_exit_domain *exit_msg = (struct dlm_exit_domain *) msg->buf;
494 
495 	if (!dlm_grab(dlm))
496 		return 0;
497 
498 	node = exit_msg->node_idx;
499 	mlog(0, "%s: Node %u sent a begin exit domain message\n", dlm->name, node);
500 
501 	spin_lock(&dlm->spinlock);
502 	set_bit(node, dlm->exit_domain_map);
503 	spin_unlock(&dlm->spinlock);
504 
505 	dlm_put(dlm);
506 
507 	return 0;
508 }
509 
510 static void dlm_mark_domain_leaving(struct dlm_ctxt *dlm)
511 {
512 	/* Yikes, a double spinlock! I need domain_lock for the dlm
513 	 * state and the dlm spinlock for join state... Sorry! */
514 again:
515 	spin_lock(&dlm_domain_lock);
516 	spin_lock(&dlm->spinlock);
517 
518 	if (dlm->joining_node != DLM_LOCK_RES_OWNER_UNKNOWN) {
519 		mlog(0, "Node %d is joining, we wait on it.\n",
520 			  dlm->joining_node);
521 		spin_unlock(&dlm->spinlock);
522 		spin_unlock(&dlm_domain_lock);
523 
524 		wait_event(dlm->dlm_join_events, dlm_no_joining_node(dlm));
525 		goto again;
526 	}
527 
528 	dlm->dlm_state = DLM_CTXT_LEAVING;
529 	spin_unlock(&dlm->spinlock);
530 	spin_unlock(&dlm_domain_lock);
531 }
532 
533 static void __dlm_print_nodes(struct dlm_ctxt *dlm)
534 {
535 	int node = -1, num = 0;
536 
537 	assert_spin_locked(&dlm->spinlock);
538 
539 	printk("( ");
540 	while ((node = find_next_bit(dlm->domain_map, O2NM_MAX_NODES,
541 				     node + 1)) < O2NM_MAX_NODES) {
542 		printk("%d ", node);
543 		++num;
544 	}
545 	printk(") %u nodes\n", num);
546 }
547 
548 static int dlm_exit_domain_handler(struct o2net_msg *msg, u32 len, void *data,
549 				   void **ret_data)
550 {
551 	struct dlm_ctxt *dlm = data;
552 	unsigned int node;
553 	struct dlm_exit_domain *exit_msg = (struct dlm_exit_domain *) msg->buf;
554 
555 	mlog(0, "%p %u %p", msg, len, data);
556 
557 	if (!dlm_grab(dlm))
558 		return 0;
559 
560 	node = exit_msg->node_idx;
561 
562 	spin_lock(&dlm->spinlock);
563 	clear_bit(node, dlm->domain_map);
564 	clear_bit(node, dlm->exit_domain_map);
565 	printk(KERN_NOTICE "o2dlm: Node %u leaves domain %s ", node, dlm->name);
566 	__dlm_print_nodes(dlm);
567 
568 	/* notify anything attached to the heartbeat events */
569 	dlm_hb_event_notify_attached(dlm, node, 0);
570 
571 	spin_unlock(&dlm->spinlock);
572 
573 	dlm_put(dlm);
574 
575 	return 0;
576 }
577 
578 static int dlm_send_one_domain_exit(struct dlm_ctxt *dlm, u32 msg_type,
579 				    unsigned int node)
580 {
581 	int status;
582 	struct dlm_exit_domain leave_msg;
583 
584 	mlog(0, "%s: Sending domain exit message %u to node %u\n", dlm->name,
585 	     msg_type, node);
586 
587 	memset(&leave_msg, 0, sizeof(leave_msg));
588 	leave_msg.node_idx = dlm->node_num;
589 
590 	status = o2net_send_message(msg_type, dlm->key, &leave_msg,
591 				    sizeof(leave_msg), node, NULL);
592 	if (status < 0)
593 		mlog(ML_ERROR, "Error %d sending domain exit message %u "
594 		     "to node %u on domain %s\n", status, msg_type, node,
595 		     dlm->name);
596 
597 	return status;
598 }
599 
600 static void dlm_begin_exit_domain(struct dlm_ctxt *dlm)
601 {
602 	int node = -1;
603 
604 	/* Support for begin exit domain was added in 1.2 */
605 	if (dlm->dlm_locking_proto.pv_major == 1 &&
606 	    dlm->dlm_locking_proto.pv_minor < 2)
607 		return;
608 
609 	/*
610 	 * Unlike DLM_EXIT_DOMAIN_MSG, DLM_BEGIN_EXIT_DOMAIN_MSG is purely
611 	 * informational. Meaning if a node does not receive the message,
612 	 * so be it.
613 	 */
614 	spin_lock(&dlm->spinlock);
615 	while (1) {
616 		node = find_next_bit(dlm->domain_map, O2NM_MAX_NODES, node + 1);
617 		if (node >= O2NM_MAX_NODES)
618 			break;
619 		if (node == dlm->node_num)
620 			continue;
621 
622 		spin_unlock(&dlm->spinlock);
623 		dlm_send_one_domain_exit(dlm, DLM_BEGIN_EXIT_DOMAIN_MSG, node);
624 		spin_lock(&dlm->spinlock);
625 	}
626 	spin_unlock(&dlm->spinlock);
627 }
628 
629 static void dlm_leave_domain(struct dlm_ctxt *dlm)
630 {
631 	int node, clear_node, status;
632 
633 	/* At this point we've migrated away all our locks and won't
634 	 * accept mastership of new ones. The dlm is responsible for
635 	 * almost nothing now. We make sure not to confuse any joining
636 	 * nodes and then commence shutdown procedure. */
637 
638 	spin_lock(&dlm->spinlock);
639 	/* Clear ourselves from the domain map */
640 	clear_bit(dlm->node_num, dlm->domain_map);
641 	while ((node = find_next_bit(dlm->domain_map, O2NM_MAX_NODES,
642 				     0)) < O2NM_MAX_NODES) {
643 		/* Drop the dlm spinlock. This is safe wrt the domain_map.
644 		 * -nodes cannot be added now as the
645 		 *   query_join_handlers knows to respond with OK_NO_MAP
646 		 * -we catch the right network errors if a node is
647 		 *   removed from the map while we're sending him the
648 		 *   exit message. */
649 		spin_unlock(&dlm->spinlock);
650 
651 		clear_node = 1;
652 
653 		status = dlm_send_one_domain_exit(dlm, DLM_EXIT_DOMAIN_MSG,
654 						  node);
655 		if (status < 0 &&
656 		    status != -ENOPROTOOPT &&
657 		    status != -ENOTCONN) {
658 			mlog(ML_NOTICE, "Error %d sending domain exit message "
659 			     "to node %d\n", status, node);
660 
661 			/* Not sure what to do here but lets sleep for
662 			 * a bit in case this was a transient
663 			 * error... */
664 			msleep(DLM_DOMAIN_BACKOFF_MS);
665 			clear_node = 0;
666 		}
667 
668 		spin_lock(&dlm->spinlock);
669 		/* If we're not clearing the node bit then we intend
670 		 * to loop back around to try again. */
671 		if (clear_node)
672 			clear_bit(node, dlm->domain_map);
673 	}
674 	spin_unlock(&dlm->spinlock);
675 }
676 
677 int dlm_joined(struct dlm_ctxt *dlm)
678 {
679 	int ret = 0;
680 
681 	spin_lock(&dlm_domain_lock);
682 
683 	if (dlm->dlm_state == DLM_CTXT_JOINED)
684 		ret = 1;
685 
686 	spin_unlock(&dlm_domain_lock);
687 
688 	return ret;
689 }
690 
691 int dlm_shutting_down(struct dlm_ctxt *dlm)
692 {
693 	int ret = 0;
694 
695 	spin_lock(&dlm_domain_lock);
696 
697 	if (dlm->dlm_state == DLM_CTXT_IN_SHUTDOWN)
698 		ret = 1;
699 
700 	spin_unlock(&dlm_domain_lock);
701 
702 	return ret;
703 }
704 
705 void dlm_unregister_domain(struct dlm_ctxt *dlm)
706 {
707 	int leave = 0;
708 	struct dlm_lock_resource *res;
709 
710 	spin_lock(&dlm_domain_lock);
711 	BUG_ON(dlm->dlm_state != DLM_CTXT_JOINED);
712 	BUG_ON(!dlm->num_joins);
713 
714 	dlm->num_joins--;
715 	if (!dlm->num_joins) {
716 		/* We mark it "in shutdown" now so new register
717 		 * requests wait until we've completely left the
718 		 * domain. Don't use DLM_CTXT_LEAVING yet as we still
719 		 * want new domain joins to communicate with us at
720 		 * least until we've completed migration of our
721 		 * resources. */
722 		dlm->dlm_state = DLM_CTXT_IN_SHUTDOWN;
723 		leave = 1;
724 	}
725 	spin_unlock(&dlm_domain_lock);
726 
727 	if (leave) {
728 		mlog(0, "shutting down domain %s\n", dlm->name);
729 		dlm_begin_exit_domain(dlm);
730 
731 		/* We changed dlm state, notify the thread */
732 		dlm_kick_thread(dlm, NULL);
733 
734 		while (dlm_migrate_all_locks(dlm)) {
735 			/* Give dlm_thread time to purge the lockres' */
736 			msleep(500);
737 			mlog(0, "%s: more migration to do\n", dlm->name);
738 		}
739 
740 		/* This list should be empty. If not, print remaining lockres */
741 		if (!list_empty(&dlm->tracking_list)) {
742 			mlog(ML_ERROR, "Following lockres' are still on the "
743 			     "tracking list:\n");
744 			list_for_each_entry(res, &dlm->tracking_list, tracking)
745 				dlm_print_one_lock_resource(res);
746 		}
747 
748 		dlm_mark_domain_leaving(dlm);
749 		dlm_leave_domain(dlm);
750 		printk(KERN_NOTICE "o2dlm: Leaving domain %s\n", dlm->name);
751 		dlm_force_free_mles(dlm);
752 		dlm_complete_dlm_shutdown(dlm);
753 	}
754 	dlm_put(dlm);
755 }
756 EXPORT_SYMBOL_GPL(dlm_unregister_domain);
757 
758 static int dlm_query_join_proto_check(char *proto_type, int node,
759 				      struct dlm_protocol_version *ours,
760 				      struct dlm_protocol_version *request)
761 {
762 	int rc;
763 	struct dlm_protocol_version proto = *request;
764 
765 	if (!dlm_protocol_compare(ours, &proto)) {
766 		mlog(0,
767 		     "node %u wanted to join with %s locking protocol "
768 		     "%u.%u, we respond with %u.%u\n",
769 		     node, proto_type,
770 		     request->pv_major,
771 		     request->pv_minor,
772 		     proto.pv_major, proto.pv_minor);
773 		request->pv_minor = proto.pv_minor;
774 		rc = 0;
775 	} else {
776 		mlog(ML_NOTICE,
777 		     "Node %u wanted to join with %s locking "
778 		     "protocol %u.%u, but we have %u.%u, disallowing\n",
779 		     node, proto_type,
780 		     request->pv_major,
781 		     request->pv_minor,
782 		     ours->pv_major,
783 		     ours->pv_minor);
784 		rc = 1;
785 	}
786 
787 	return rc;
788 }
789 
790 /*
791  * struct dlm_query_join_packet is made up of four one-byte fields.  They
792  * are effectively in big-endian order already.  However, little-endian
793  * machines swap them before putting the packet on the wire (because
794  * query_join's response is a status, and that status is treated as a u32
795  * on the wire).  Thus, a big-endian and little-endian machines will treat
796  * this structure differently.
797  *
798  * The solution is to have little-endian machines swap the structure when
799  * converting from the structure to the u32 representation.  This will
800  * result in the structure having the correct format on the wire no matter
801  * the host endian format.
802  */
803 static void dlm_query_join_packet_to_wire(struct dlm_query_join_packet *packet,
804 					  u32 *wire)
805 {
806 	union dlm_query_join_response response;
807 
808 	response.packet = *packet;
809 	*wire = be32_to_cpu(response.intval);
810 }
811 
812 static void dlm_query_join_wire_to_packet(u32 wire,
813 					  struct dlm_query_join_packet *packet)
814 {
815 	union dlm_query_join_response response;
816 
817 	response.intval = cpu_to_be32(wire);
818 	*packet = response.packet;
819 }
820 
821 static int dlm_query_join_handler(struct o2net_msg *msg, u32 len, void *data,
822 				  void **ret_data)
823 {
824 	struct dlm_query_join_request *query;
825 	struct dlm_query_join_packet packet = {
826 		.code = JOIN_DISALLOW,
827 	};
828 	struct dlm_ctxt *dlm = NULL;
829 	u32 response;
830 	u8 nodenum;
831 
832 	query = (struct dlm_query_join_request *) msg->buf;
833 
834 	mlog(0, "node %u wants to join domain %s\n", query->node_idx,
835 		  query->domain);
836 
837 	/*
838 	 * If heartbeat doesn't consider the node live, tell it
839 	 * to back off and try again.  This gives heartbeat a chance
840 	 * to catch up.
841 	 */
842 	if (!o2hb_check_node_heartbeating(query->node_idx)) {
843 		mlog(0, "node %u is not in our live map yet\n",
844 		     query->node_idx);
845 
846 		packet.code = JOIN_DISALLOW;
847 		goto respond;
848 	}
849 
850 	packet.code = JOIN_OK_NO_MAP;
851 
852 	spin_lock(&dlm_domain_lock);
853 	dlm = __dlm_lookup_domain_full(query->domain, query->name_len);
854 	if (!dlm)
855 		goto unlock_respond;
856 
857 	/*
858 	 * There is a small window where the joining node may not see the
859 	 * node(s) that just left but still part of the cluster. DISALLOW
860 	 * join request if joining node has different node map.
861 	 */
862 	nodenum=0;
863 	while (nodenum < O2NM_MAX_NODES) {
864 		if (test_bit(nodenum, dlm->domain_map)) {
865 			if (!byte_test_bit(nodenum, query->node_map)) {
866 				mlog(0, "disallow join as node %u does not "
867 				     "have node %u in its nodemap\n",
868 				     query->node_idx, nodenum);
869 				packet.code = JOIN_DISALLOW;
870 				goto unlock_respond;
871 			}
872 		}
873 		nodenum++;
874 	}
875 
876 	/* Once the dlm ctxt is marked as leaving then we don't want
877 	 * to be put in someone's domain map.
878 	 * Also, explicitly disallow joining at certain troublesome
879 	 * times (ie. during recovery). */
880 	if (dlm && dlm->dlm_state != DLM_CTXT_LEAVING) {
881 		int bit = query->node_idx;
882 		spin_lock(&dlm->spinlock);
883 
884 		if (dlm->dlm_state == DLM_CTXT_NEW &&
885 		    dlm->joining_node == DLM_LOCK_RES_OWNER_UNKNOWN) {
886 			/*If this is a brand new context and we
887 			 * haven't started our join process yet, then
888 			 * the other node won the race. */
889 			packet.code = JOIN_OK_NO_MAP;
890 		} else if (dlm->joining_node != DLM_LOCK_RES_OWNER_UNKNOWN) {
891 			/* Disallow parallel joins. */
892 			packet.code = JOIN_DISALLOW;
893 		} else if (dlm->reco.state & DLM_RECO_STATE_ACTIVE) {
894 			mlog(0, "node %u trying to join, but recovery "
895 			     "is ongoing.\n", bit);
896 			packet.code = JOIN_DISALLOW;
897 		} else if (test_bit(bit, dlm->recovery_map)) {
898 			mlog(0, "node %u trying to join, but it "
899 			     "still needs recovery.\n", bit);
900 			packet.code = JOIN_DISALLOW;
901 		} else if (test_bit(bit, dlm->domain_map)) {
902 			mlog(0, "node %u trying to join, but it "
903 			     "is still in the domain! needs recovery?\n",
904 			     bit);
905 			packet.code = JOIN_DISALLOW;
906 		} else {
907 			/* Alright we're fully a part of this domain
908 			 * so we keep some state as to who's joining
909 			 * and indicate to him that needs to be fixed
910 			 * up. */
911 
912 			/* Make sure we speak compatible locking protocols.  */
913 			if (dlm_query_join_proto_check("DLM", bit,
914 						       &dlm->dlm_locking_proto,
915 						       &query->dlm_proto)) {
916 				packet.code = JOIN_PROTOCOL_MISMATCH;
917 			} else if (dlm_query_join_proto_check("fs", bit,
918 							      &dlm->fs_locking_proto,
919 							      &query->fs_proto)) {
920 				packet.code = JOIN_PROTOCOL_MISMATCH;
921 			} else {
922 				packet.dlm_minor = query->dlm_proto.pv_minor;
923 				packet.fs_minor = query->fs_proto.pv_minor;
924 				packet.code = JOIN_OK;
925 				__dlm_set_joining_node(dlm, query->node_idx);
926 			}
927 		}
928 
929 		spin_unlock(&dlm->spinlock);
930 	}
931 unlock_respond:
932 	spin_unlock(&dlm_domain_lock);
933 
934 respond:
935 	mlog(0, "We respond with %u\n", packet.code);
936 
937 	dlm_query_join_packet_to_wire(&packet, &response);
938 	return response;
939 }
940 
941 static int dlm_assert_joined_handler(struct o2net_msg *msg, u32 len, void *data,
942 				     void **ret_data)
943 {
944 	struct dlm_assert_joined *assert;
945 	struct dlm_ctxt *dlm = NULL;
946 
947 	assert = (struct dlm_assert_joined *) msg->buf;
948 
949 	mlog(0, "node %u asserts join on domain %s\n", assert->node_idx,
950 		  assert->domain);
951 
952 	spin_lock(&dlm_domain_lock);
953 	dlm = __dlm_lookup_domain_full(assert->domain, assert->name_len);
954 	/* XXX should we consider no dlm ctxt an error? */
955 	if (dlm) {
956 		spin_lock(&dlm->spinlock);
957 
958 		/* Alright, this node has officially joined our
959 		 * domain. Set him in the map and clean up our
960 		 * leftover join state. */
961 		BUG_ON(dlm->joining_node != assert->node_idx);
962 		set_bit(assert->node_idx, dlm->domain_map);
963 		clear_bit(assert->node_idx, dlm->exit_domain_map);
964 		__dlm_set_joining_node(dlm, DLM_LOCK_RES_OWNER_UNKNOWN);
965 
966 		printk(KERN_NOTICE "o2dlm: Node %u joins domain %s ",
967 		       assert->node_idx, dlm->name);
968 		__dlm_print_nodes(dlm);
969 
970 		/* notify anything attached to the heartbeat events */
971 		dlm_hb_event_notify_attached(dlm, assert->node_idx, 1);
972 
973 		spin_unlock(&dlm->spinlock);
974 	}
975 	spin_unlock(&dlm_domain_lock);
976 
977 	return 0;
978 }
979 
980 static int dlm_match_regions(struct dlm_ctxt *dlm,
981 			     struct dlm_query_region *qr,
982 			     char *local, int locallen)
983 {
984 	char *remote = qr->qr_regions;
985 	char *l, *r;
986 	int localnr, i, j, foundit;
987 	int status = 0;
988 
989 	if (!o2hb_global_heartbeat_active()) {
990 		if (qr->qr_numregions) {
991 			mlog(ML_ERROR, "Domain %s: Joining node %d has global "
992 			     "heartbeat enabled but local node %d does not\n",
993 			     qr->qr_domain, qr->qr_node, dlm->node_num);
994 			status = -EINVAL;
995 		}
996 		goto bail;
997 	}
998 
999 	if (o2hb_global_heartbeat_active() && !qr->qr_numregions) {
1000 		mlog(ML_ERROR, "Domain %s: Local node %d has global "
1001 		     "heartbeat enabled but joining node %d does not\n",
1002 		     qr->qr_domain, dlm->node_num, qr->qr_node);
1003 		status = -EINVAL;
1004 		goto bail;
1005 	}
1006 
1007 	r = remote;
1008 	for (i = 0; i < qr->qr_numregions; ++i) {
1009 		mlog(0, "Region %.*s\n", O2HB_MAX_REGION_NAME_LEN, r);
1010 		r += O2HB_MAX_REGION_NAME_LEN;
1011 	}
1012 
1013 	localnr = min(O2NM_MAX_REGIONS, locallen/O2HB_MAX_REGION_NAME_LEN);
1014 	localnr = o2hb_get_all_regions(local, (u8)localnr);
1015 
1016 	/* compare local regions with remote */
1017 	l = local;
1018 	for (i = 0; i < localnr; ++i) {
1019 		foundit = 0;
1020 		r = remote;
1021 		for (j = 0; j <= qr->qr_numregions; ++j) {
1022 			if (!memcmp(l, r, O2HB_MAX_REGION_NAME_LEN)) {
1023 				foundit = 1;
1024 				break;
1025 			}
1026 			r += O2HB_MAX_REGION_NAME_LEN;
1027 		}
1028 		if (!foundit) {
1029 			status = -EINVAL;
1030 			mlog(ML_ERROR, "Domain %s: Region '%.*s' registered "
1031 			     "in local node %d but not in joining node %d\n",
1032 			     qr->qr_domain, O2HB_MAX_REGION_NAME_LEN, l,
1033 			     dlm->node_num, qr->qr_node);
1034 			goto bail;
1035 		}
1036 		l += O2HB_MAX_REGION_NAME_LEN;
1037 	}
1038 
1039 	/* compare remote with local regions */
1040 	r = remote;
1041 	for (i = 0; i < qr->qr_numregions; ++i) {
1042 		foundit = 0;
1043 		l = local;
1044 		for (j = 0; j < localnr; ++j) {
1045 			if (!memcmp(r, l, O2HB_MAX_REGION_NAME_LEN)) {
1046 				foundit = 1;
1047 				break;
1048 			}
1049 			l += O2HB_MAX_REGION_NAME_LEN;
1050 		}
1051 		if (!foundit) {
1052 			status = -EINVAL;
1053 			mlog(ML_ERROR, "Domain %s: Region '%.*s' registered "
1054 			     "in joining node %d but not in local node %d\n",
1055 			     qr->qr_domain, O2HB_MAX_REGION_NAME_LEN, r,
1056 			     qr->qr_node, dlm->node_num);
1057 			goto bail;
1058 		}
1059 		r += O2HB_MAX_REGION_NAME_LEN;
1060 	}
1061 
1062 bail:
1063 	return status;
1064 }
1065 
1066 static int dlm_send_regions(struct dlm_ctxt *dlm, unsigned long *node_map)
1067 {
1068 	struct dlm_query_region *qr = NULL;
1069 	int status, ret = 0, i;
1070 	char *p;
1071 
1072 	if (find_next_bit(node_map, O2NM_MAX_NODES, 0) >= O2NM_MAX_NODES)
1073 		goto bail;
1074 
1075 	qr = kzalloc(sizeof(struct dlm_query_region), GFP_KERNEL);
1076 	if (!qr) {
1077 		ret = -ENOMEM;
1078 		mlog_errno(ret);
1079 		goto bail;
1080 	}
1081 
1082 	qr->qr_node = dlm->node_num;
1083 	qr->qr_namelen = strlen(dlm->name);
1084 	memcpy(qr->qr_domain, dlm->name, qr->qr_namelen);
1085 	/* if local hb, the numregions will be zero */
1086 	if (o2hb_global_heartbeat_active())
1087 		qr->qr_numregions = o2hb_get_all_regions(qr->qr_regions,
1088 							 O2NM_MAX_REGIONS);
1089 
1090 	p = qr->qr_regions;
1091 	for (i = 0; i < qr->qr_numregions; ++i, p += O2HB_MAX_REGION_NAME_LEN)
1092 		mlog(0, "Region %.*s\n", O2HB_MAX_REGION_NAME_LEN, p);
1093 
1094 	i = -1;
1095 	while ((i = find_next_bit(node_map, O2NM_MAX_NODES,
1096 				  i + 1)) < O2NM_MAX_NODES) {
1097 		if (i == dlm->node_num)
1098 			continue;
1099 
1100 		mlog(0, "Sending regions to node %d\n", i);
1101 
1102 		ret = o2net_send_message(DLM_QUERY_REGION, DLM_MOD_KEY, qr,
1103 					 sizeof(struct dlm_query_region),
1104 					 i, &status);
1105 		if (ret >= 0)
1106 			ret = status;
1107 		if (ret) {
1108 			mlog(ML_ERROR, "Region mismatch %d, node %d\n",
1109 			     ret, i);
1110 			break;
1111 		}
1112 	}
1113 
1114 bail:
1115 	kfree(qr);
1116 	return ret;
1117 }
1118 
1119 static int dlm_query_region_handler(struct o2net_msg *msg, u32 len,
1120 				    void *data, void **ret_data)
1121 {
1122 	struct dlm_query_region *qr;
1123 	struct dlm_ctxt *dlm = NULL;
1124 	char *local = NULL;
1125 	int status = 0;
1126 	int locked = 0;
1127 
1128 	qr = (struct dlm_query_region *) msg->buf;
1129 
1130 	mlog(0, "Node %u queries hb regions on domain %s\n", qr->qr_node,
1131 	     qr->qr_domain);
1132 
1133 	/* buffer used in dlm_mast_regions() */
1134 	local = kmalloc(sizeof(qr->qr_regions), GFP_KERNEL);
1135 	if (!local) {
1136 		status = -ENOMEM;
1137 		goto bail;
1138 	}
1139 
1140 	status = -EINVAL;
1141 
1142 	spin_lock(&dlm_domain_lock);
1143 	dlm = __dlm_lookup_domain_full(qr->qr_domain, qr->qr_namelen);
1144 	if (!dlm) {
1145 		mlog(ML_ERROR, "Node %d queried hb regions on domain %s "
1146 		     "before join domain\n", qr->qr_node, qr->qr_domain);
1147 		goto bail;
1148 	}
1149 
1150 	spin_lock(&dlm->spinlock);
1151 	locked = 1;
1152 	if (dlm->joining_node != qr->qr_node) {
1153 		mlog(ML_ERROR, "Node %d queried hb regions on domain %s "
1154 		     "but joining node is %d\n", qr->qr_node, qr->qr_domain,
1155 		     dlm->joining_node);
1156 		goto bail;
1157 	}
1158 
1159 	/* Support for global heartbeat was added in 1.1 */
1160 	if (dlm->dlm_locking_proto.pv_major == 1 &&
1161 	    dlm->dlm_locking_proto.pv_minor == 0) {
1162 		mlog(ML_ERROR, "Node %d queried hb regions on domain %s "
1163 		     "but active dlm protocol is %d.%d\n", qr->qr_node,
1164 		     qr->qr_domain, dlm->dlm_locking_proto.pv_major,
1165 		     dlm->dlm_locking_proto.pv_minor);
1166 		goto bail;
1167 	}
1168 
1169 	status = dlm_match_regions(dlm, qr, local, sizeof(qr->qr_regions));
1170 
1171 bail:
1172 	if (locked)
1173 		spin_unlock(&dlm->spinlock);
1174 	spin_unlock(&dlm_domain_lock);
1175 
1176 	kfree(local);
1177 
1178 	return status;
1179 }
1180 
1181 static int dlm_match_nodes(struct dlm_ctxt *dlm, struct dlm_query_nodeinfo *qn)
1182 {
1183 	struct o2nm_node *local;
1184 	struct dlm_node_info *remote;
1185 	int i, j;
1186 	int status = 0;
1187 
1188 	for (j = 0; j < qn->qn_numnodes; ++j)
1189 		mlog(0, "Node %3d, %pI4:%u\n", qn->qn_nodes[j].ni_nodenum,
1190 		     &(qn->qn_nodes[j].ni_ipv4_address),
1191 		     ntohs(qn->qn_nodes[j].ni_ipv4_port));
1192 
1193 	for (i = 0; i < O2NM_MAX_NODES && !status; ++i) {
1194 		local = o2nm_get_node_by_num(i);
1195 		remote = NULL;
1196 		for (j = 0; j < qn->qn_numnodes; ++j) {
1197 			if (qn->qn_nodes[j].ni_nodenum == i) {
1198 				remote = &(qn->qn_nodes[j]);
1199 				break;
1200 			}
1201 		}
1202 
1203 		if (!local && !remote)
1204 			continue;
1205 
1206 		if ((local && !remote) || (!local && remote))
1207 			status = -EINVAL;
1208 
1209 		if (!status &&
1210 		    ((remote->ni_nodenum != local->nd_num) ||
1211 		     (remote->ni_ipv4_port != local->nd_ipv4_port) ||
1212 		     (remote->ni_ipv4_address != local->nd_ipv4_address)))
1213 			status = -EINVAL;
1214 
1215 		if (status) {
1216 			if (remote && !local)
1217 				mlog(ML_ERROR, "Domain %s: Node %d (%pI4:%u) "
1218 				     "registered in joining node %d but not in "
1219 				     "local node %d\n", qn->qn_domain,
1220 				     remote->ni_nodenum,
1221 				     &(remote->ni_ipv4_address),
1222 				     ntohs(remote->ni_ipv4_port),
1223 				     qn->qn_nodenum, dlm->node_num);
1224 			if (local && !remote)
1225 				mlog(ML_ERROR, "Domain %s: Node %d (%pI4:%u) "
1226 				     "registered in local node %d but not in "
1227 				     "joining node %d\n", qn->qn_domain,
1228 				     local->nd_num, &(local->nd_ipv4_address),
1229 				     ntohs(local->nd_ipv4_port),
1230 				     dlm->node_num, qn->qn_nodenum);
1231 			BUG_ON((!local && !remote));
1232 		}
1233 
1234 		if (local)
1235 			o2nm_node_put(local);
1236 	}
1237 
1238 	return status;
1239 }
1240 
1241 static int dlm_send_nodeinfo(struct dlm_ctxt *dlm, unsigned long *node_map)
1242 {
1243 	struct dlm_query_nodeinfo *qn = NULL;
1244 	struct o2nm_node *node;
1245 	int ret = 0, status, count, i;
1246 
1247 	if (find_next_bit(node_map, O2NM_MAX_NODES, 0) >= O2NM_MAX_NODES)
1248 		goto bail;
1249 
1250 	qn = kzalloc(sizeof(struct dlm_query_nodeinfo), GFP_KERNEL);
1251 	if (!qn) {
1252 		ret = -ENOMEM;
1253 		mlog_errno(ret);
1254 		goto bail;
1255 	}
1256 
1257 	for (i = 0, count = 0; i < O2NM_MAX_NODES; ++i) {
1258 		node = o2nm_get_node_by_num(i);
1259 		if (!node)
1260 			continue;
1261 		qn->qn_nodes[count].ni_nodenum = node->nd_num;
1262 		qn->qn_nodes[count].ni_ipv4_port = node->nd_ipv4_port;
1263 		qn->qn_nodes[count].ni_ipv4_address = node->nd_ipv4_address;
1264 		mlog(0, "Node %3d, %pI4:%u\n", node->nd_num,
1265 		     &(node->nd_ipv4_address), ntohs(node->nd_ipv4_port));
1266 		++count;
1267 		o2nm_node_put(node);
1268 	}
1269 
1270 	qn->qn_nodenum = dlm->node_num;
1271 	qn->qn_numnodes = count;
1272 	qn->qn_namelen = strlen(dlm->name);
1273 	memcpy(qn->qn_domain, dlm->name, qn->qn_namelen);
1274 
1275 	i = -1;
1276 	while ((i = find_next_bit(node_map, O2NM_MAX_NODES,
1277 				  i + 1)) < O2NM_MAX_NODES) {
1278 		if (i == dlm->node_num)
1279 			continue;
1280 
1281 		mlog(0, "Sending nodeinfo to node %d\n", i);
1282 
1283 		ret = o2net_send_message(DLM_QUERY_NODEINFO, DLM_MOD_KEY,
1284 					 qn, sizeof(struct dlm_query_nodeinfo),
1285 					 i, &status);
1286 		if (ret >= 0)
1287 			ret = status;
1288 		if (ret) {
1289 			mlog(ML_ERROR, "node mismatch %d, node %d\n", ret, i);
1290 			break;
1291 		}
1292 	}
1293 
1294 bail:
1295 	kfree(qn);
1296 	return ret;
1297 }
1298 
1299 static int dlm_query_nodeinfo_handler(struct o2net_msg *msg, u32 len,
1300 				      void *data, void **ret_data)
1301 {
1302 	struct dlm_query_nodeinfo *qn;
1303 	struct dlm_ctxt *dlm = NULL;
1304 	int locked = 0, status = -EINVAL;
1305 
1306 	qn = (struct dlm_query_nodeinfo *) msg->buf;
1307 
1308 	mlog(0, "Node %u queries nodes on domain %s\n", qn->qn_nodenum,
1309 	     qn->qn_domain);
1310 
1311 	spin_lock(&dlm_domain_lock);
1312 	dlm = __dlm_lookup_domain_full(qn->qn_domain, qn->qn_namelen);
1313 	if (!dlm) {
1314 		mlog(ML_ERROR, "Node %d queried nodes on domain %s before "
1315 		     "join domain\n", qn->qn_nodenum, qn->qn_domain);
1316 		goto bail;
1317 	}
1318 
1319 	spin_lock(&dlm->spinlock);
1320 	locked = 1;
1321 	if (dlm->joining_node != qn->qn_nodenum) {
1322 		mlog(ML_ERROR, "Node %d queried nodes on domain %s but "
1323 		     "joining node is %d\n", qn->qn_nodenum, qn->qn_domain,
1324 		     dlm->joining_node);
1325 		goto bail;
1326 	}
1327 
1328 	/* Support for node query was added in 1.1 */
1329 	if (dlm->dlm_locking_proto.pv_major == 1 &&
1330 	    dlm->dlm_locking_proto.pv_minor == 0) {
1331 		mlog(ML_ERROR, "Node %d queried nodes on domain %s "
1332 		     "but active dlm protocol is %d.%d\n", qn->qn_nodenum,
1333 		     qn->qn_domain, dlm->dlm_locking_proto.pv_major,
1334 		     dlm->dlm_locking_proto.pv_minor);
1335 		goto bail;
1336 	}
1337 
1338 	status = dlm_match_nodes(dlm, qn);
1339 
1340 bail:
1341 	if (locked)
1342 		spin_unlock(&dlm->spinlock);
1343 	spin_unlock(&dlm_domain_lock);
1344 
1345 	return status;
1346 }
1347 
1348 static int dlm_cancel_join_handler(struct o2net_msg *msg, u32 len, void *data,
1349 				   void **ret_data)
1350 {
1351 	struct dlm_cancel_join *cancel;
1352 	struct dlm_ctxt *dlm = NULL;
1353 
1354 	cancel = (struct dlm_cancel_join *) msg->buf;
1355 
1356 	mlog(0, "node %u cancels join on domain %s\n", cancel->node_idx,
1357 		  cancel->domain);
1358 
1359 	spin_lock(&dlm_domain_lock);
1360 	dlm = __dlm_lookup_domain_full(cancel->domain, cancel->name_len);
1361 
1362 	if (dlm) {
1363 		spin_lock(&dlm->spinlock);
1364 
1365 		/* Yikes, this guy wants to cancel his join. No
1366 		 * problem, we simply cleanup our join state. */
1367 		BUG_ON(dlm->joining_node != cancel->node_idx);
1368 		__dlm_set_joining_node(dlm, DLM_LOCK_RES_OWNER_UNKNOWN);
1369 
1370 		spin_unlock(&dlm->spinlock);
1371 	}
1372 	spin_unlock(&dlm_domain_lock);
1373 
1374 	return 0;
1375 }
1376 
1377 static int dlm_send_one_join_cancel(struct dlm_ctxt *dlm,
1378 				    unsigned int node)
1379 {
1380 	int status;
1381 	struct dlm_cancel_join cancel_msg;
1382 
1383 	memset(&cancel_msg, 0, sizeof(cancel_msg));
1384 	cancel_msg.node_idx = dlm->node_num;
1385 	cancel_msg.name_len = strlen(dlm->name);
1386 	memcpy(cancel_msg.domain, dlm->name, cancel_msg.name_len);
1387 
1388 	status = o2net_send_message(DLM_CANCEL_JOIN_MSG, DLM_MOD_KEY,
1389 				    &cancel_msg, sizeof(cancel_msg), node,
1390 				    NULL);
1391 	if (status < 0) {
1392 		mlog(ML_ERROR, "Error %d when sending message %u (key 0x%x) to "
1393 		     "node %u\n", status, DLM_CANCEL_JOIN_MSG, DLM_MOD_KEY,
1394 		     node);
1395 		goto bail;
1396 	}
1397 
1398 bail:
1399 	return status;
1400 }
1401 
1402 /* map_size should be in bytes. */
1403 static int dlm_send_join_cancels(struct dlm_ctxt *dlm,
1404 				 unsigned long *node_map,
1405 				 unsigned int map_size)
1406 {
1407 	int status, tmpstat;
1408 	unsigned int node;
1409 
1410 	if (map_size != (BITS_TO_LONGS(O2NM_MAX_NODES) *
1411 			 sizeof(unsigned long))) {
1412 		mlog(ML_ERROR,
1413 		     "map_size %u != BITS_TO_LONGS(O2NM_MAX_NODES) %u\n",
1414 		     map_size, (unsigned)BITS_TO_LONGS(O2NM_MAX_NODES));
1415 		return -EINVAL;
1416 	}
1417 
1418 	status = 0;
1419 	node = -1;
1420 	while ((node = find_next_bit(node_map, O2NM_MAX_NODES,
1421 				     node + 1)) < O2NM_MAX_NODES) {
1422 		if (node == dlm->node_num)
1423 			continue;
1424 
1425 		tmpstat = dlm_send_one_join_cancel(dlm, node);
1426 		if (tmpstat) {
1427 			mlog(ML_ERROR, "Error return %d cancelling join on "
1428 			     "node %d\n", tmpstat, node);
1429 			if (!status)
1430 				status = tmpstat;
1431 		}
1432 	}
1433 
1434 	if (status)
1435 		mlog_errno(status);
1436 	return status;
1437 }
1438 
1439 static int dlm_request_join(struct dlm_ctxt *dlm,
1440 			    int node,
1441 			    enum dlm_query_join_response_code *response)
1442 {
1443 	int status;
1444 	struct dlm_query_join_request join_msg;
1445 	struct dlm_query_join_packet packet;
1446 	u32 join_resp;
1447 
1448 	mlog(0, "querying node %d\n", node);
1449 
1450 	memset(&join_msg, 0, sizeof(join_msg));
1451 	join_msg.node_idx = dlm->node_num;
1452 	join_msg.name_len = strlen(dlm->name);
1453 	memcpy(join_msg.domain, dlm->name, join_msg.name_len);
1454 	join_msg.dlm_proto = dlm->dlm_locking_proto;
1455 	join_msg.fs_proto = dlm->fs_locking_proto;
1456 
1457 	/* copy live node map to join message */
1458 	byte_copymap(join_msg.node_map, dlm->live_nodes_map, O2NM_MAX_NODES);
1459 
1460 	status = o2net_send_message(DLM_QUERY_JOIN_MSG, DLM_MOD_KEY, &join_msg,
1461 				    sizeof(join_msg), node, &join_resp);
1462 	if (status < 0 && status != -ENOPROTOOPT) {
1463 		mlog(ML_ERROR, "Error %d when sending message %u (key 0x%x) to "
1464 		     "node %u\n", status, DLM_QUERY_JOIN_MSG, DLM_MOD_KEY,
1465 		     node);
1466 		goto bail;
1467 	}
1468 	dlm_query_join_wire_to_packet(join_resp, &packet);
1469 
1470 	/* -ENOPROTOOPT from the net code means the other side isn't
1471 	    listening for our message type -- that's fine, it means
1472 	    his dlm isn't up, so we can consider him a 'yes' but not
1473 	    joined into the domain.  */
1474 	if (status == -ENOPROTOOPT) {
1475 		status = 0;
1476 		*response = JOIN_OK_NO_MAP;
1477 	} else if (packet.code == JOIN_DISALLOW ||
1478 		   packet.code == JOIN_OK_NO_MAP) {
1479 		*response = packet.code;
1480 	} else if (packet.code == JOIN_PROTOCOL_MISMATCH) {
1481 		mlog(ML_NOTICE,
1482 		     "This node requested DLM locking protocol %u.%u and "
1483 		     "filesystem locking protocol %u.%u.  At least one of "
1484 		     "the protocol versions on node %d is not compatible, "
1485 		     "disconnecting\n",
1486 		     dlm->dlm_locking_proto.pv_major,
1487 		     dlm->dlm_locking_proto.pv_minor,
1488 		     dlm->fs_locking_proto.pv_major,
1489 		     dlm->fs_locking_proto.pv_minor,
1490 		     node);
1491 		status = -EPROTO;
1492 		*response = packet.code;
1493 	} else if (packet.code == JOIN_OK) {
1494 		*response = packet.code;
1495 		/* Use the same locking protocol as the remote node */
1496 		dlm->dlm_locking_proto.pv_minor = packet.dlm_minor;
1497 		dlm->fs_locking_proto.pv_minor = packet.fs_minor;
1498 		mlog(0,
1499 		     "Node %d responds JOIN_OK with DLM locking protocol "
1500 		     "%u.%u and fs locking protocol %u.%u\n",
1501 		     node,
1502 		     dlm->dlm_locking_proto.pv_major,
1503 		     dlm->dlm_locking_proto.pv_minor,
1504 		     dlm->fs_locking_proto.pv_major,
1505 		     dlm->fs_locking_proto.pv_minor);
1506 	} else {
1507 		status = -EINVAL;
1508 		mlog(ML_ERROR, "invalid response %d from node %u\n",
1509 		     packet.code, node);
1510 	}
1511 
1512 	mlog(0, "status %d, node %d response is %d\n", status, node,
1513 	     *response);
1514 
1515 bail:
1516 	return status;
1517 }
1518 
1519 static int dlm_send_one_join_assert(struct dlm_ctxt *dlm,
1520 				    unsigned int node)
1521 {
1522 	int status;
1523 	struct dlm_assert_joined assert_msg;
1524 
1525 	mlog(0, "Sending join assert to node %u\n", node);
1526 
1527 	memset(&assert_msg, 0, sizeof(assert_msg));
1528 	assert_msg.node_idx = dlm->node_num;
1529 	assert_msg.name_len = strlen(dlm->name);
1530 	memcpy(assert_msg.domain, dlm->name, assert_msg.name_len);
1531 
1532 	status = o2net_send_message(DLM_ASSERT_JOINED_MSG, DLM_MOD_KEY,
1533 				    &assert_msg, sizeof(assert_msg), node,
1534 				    NULL);
1535 	if (status < 0)
1536 		mlog(ML_ERROR, "Error %d when sending message %u (key 0x%x) to "
1537 		     "node %u\n", status, DLM_ASSERT_JOINED_MSG, DLM_MOD_KEY,
1538 		     node);
1539 
1540 	return status;
1541 }
1542 
1543 static void dlm_send_join_asserts(struct dlm_ctxt *dlm,
1544 				  unsigned long *node_map)
1545 {
1546 	int status, node, live;
1547 
1548 	status = 0;
1549 	node = -1;
1550 	while ((node = find_next_bit(node_map, O2NM_MAX_NODES,
1551 				     node + 1)) < O2NM_MAX_NODES) {
1552 		if (node == dlm->node_num)
1553 			continue;
1554 
1555 		do {
1556 			/* It is very important that this message be
1557 			 * received so we spin until either the node
1558 			 * has died or it gets the message. */
1559 			status = dlm_send_one_join_assert(dlm, node);
1560 
1561 			spin_lock(&dlm->spinlock);
1562 			live = test_bit(node, dlm->live_nodes_map);
1563 			spin_unlock(&dlm->spinlock);
1564 
1565 			if (status) {
1566 				mlog(ML_ERROR, "Error return %d asserting "
1567 				     "join on node %d\n", status, node);
1568 
1569 				/* give us some time between errors... */
1570 				if (live)
1571 					msleep(DLM_DOMAIN_BACKOFF_MS);
1572 			}
1573 		} while (status && live);
1574 	}
1575 }
1576 
1577 struct domain_join_ctxt {
1578 	unsigned long live_map[BITS_TO_LONGS(O2NM_MAX_NODES)];
1579 	unsigned long yes_resp_map[BITS_TO_LONGS(O2NM_MAX_NODES)];
1580 };
1581 
1582 static int dlm_should_restart_join(struct dlm_ctxt *dlm,
1583 				   struct domain_join_ctxt *ctxt,
1584 				   enum dlm_query_join_response_code response)
1585 {
1586 	int ret;
1587 
1588 	if (response == JOIN_DISALLOW) {
1589 		mlog(0, "Latest response of disallow -- should restart\n");
1590 		return 1;
1591 	}
1592 
1593 	spin_lock(&dlm->spinlock);
1594 	/* For now, we restart the process if the node maps have
1595 	 * changed at all */
1596 	ret = memcmp(ctxt->live_map, dlm->live_nodes_map,
1597 		     sizeof(dlm->live_nodes_map));
1598 	spin_unlock(&dlm->spinlock);
1599 
1600 	if (ret)
1601 		mlog(0, "Node maps changed -- should restart\n");
1602 
1603 	return ret;
1604 }
1605 
1606 static int dlm_try_to_join_domain(struct dlm_ctxt *dlm)
1607 {
1608 	int status = 0, tmpstat, node;
1609 	struct domain_join_ctxt *ctxt;
1610 	enum dlm_query_join_response_code response = JOIN_DISALLOW;
1611 
1612 	mlog(0, "%p", dlm);
1613 
1614 	ctxt = kzalloc(sizeof(*ctxt), GFP_KERNEL);
1615 	if (!ctxt) {
1616 		status = -ENOMEM;
1617 		mlog_errno(status);
1618 		goto bail;
1619 	}
1620 
1621 	/* group sem locking should work for us here -- we're already
1622 	 * registered for heartbeat events so filling this should be
1623 	 * atomic wrt getting those handlers called. */
1624 	o2hb_fill_node_map(dlm->live_nodes_map, sizeof(dlm->live_nodes_map));
1625 
1626 	spin_lock(&dlm->spinlock);
1627 	memcpy(ctxt->live_map, dlm->live_nodes_map, sizeof(ctxt->live_map));
1628 
1629 	__dlm_set_joining_node(dlm, dlm->node_num);
1630 
1631 	spin_unlock(&dlm->spinlock);
1632 
1633 	node = -1;
1634 	while ((node = find_next_bit(ctxt->live_map, O2NM_MAX_NODES,
1635 				     node + 1)) < O2NM_MAX_NODES) {
1636 		if (node == dlm->node_num)
1637 			continue;
1638 
1639 		status = dlm_request_join(dlm, node, &response);
1640 		if (status < 0) {
1641 			mlog_errno(status);
1642 			goto bail;
1643 		}
1644 
1645 		/* Ok, either we got a response or the node doesn't have a
1646 		 * dlm up. */
1647 		if (response == JOIN_OK)
1648 			set_bit(node, ctxt->yes_resp_map);
1649 
1650 		if (dlm_should_restart_join(dlm, ctxt, response)) {
1651 			status = -EAGAIN;
1652 			goto bail;
1653 		}
1654 	}
1655 
1656 	mlog(0, "Yay, done querying nodes!\n");
1657 
1658 	/* Yay, everyone agree's we can join the domain. My domain is
1659 	 * comprised of all nodes who were put in the
1660 	 * yes_resp_map. Copy that into our domain map and send a join
1661 	 * assert message to clean up everyone elses state. */
1662 	spin_lock(&dlm->spinlock);
1663 	memcpy(dlm->domain_map, ctxt->yes_resp_map,
1664 	       sizeof(ctxt->yes_resp_map));
1665 	set_bit(dlm->node_num, dlm->domain_map);
1666 	spin_unlock(&dlm->spinlock);
1667 
1668 	/* Support for global heartbeat and node info was added in 1.1 */
1669 	if (dlm->dlm_locking_proto.pv_major > 1 ||
1670 	    dlm->dlm_locking_proto.pv_minor > 0) {
1671 		status = dlm_send_nodeinfo(dlm, ctxt->yes_resp_map);
1672 		if (status) {
1673 			mlog_errno(status);
1674 			goto bail;
1675 		}
1676 		status = dlm_send_regions(dlm, ctxt->yes_resp_map);
1677 		if (status) {
1678 			mlog_errno(status);
1679 			goto bail;
1680 		}
1681 	}
1682 
1683 	dlm_send_join_asserts(dlm, ctxt->yes_resp_map);
1684 
1685 	/* Joined state *must* be set before the joining node
1686 	 * information, otherwise the query_join handler may read no
1687 	 * current joiner but a state of NEW and tell joining nodes
1688 	 * we're not in the domain. */
1689 	spin_lock(&dlm_domain_lock);
1690 	dlm->dlm_state = DLM_CTXT_JOINED;
1691 	dlm->num_joins++;
1692 	spin_unlock(&dlm_domain_lock);
1693 
1694 bail:
1695 	spin_lock(&dlm->spinlock);
1696 	__dlm_set_joining_node(dlm, DLM_LOCK_RES_OWNER_UNKNOWN);
1697 	if (!status) {
1698 		printk(KERN_NOTICE "o2dlm: Joining domain %s ", dlm->name);
1699 		__dlm_print_nodes(dlm);
1700 	}
1701 	spin_unlock(&dlm->spinlock);
1702 
1703 	if (ctxt) {
1704 		/* Do we need to send a cancel message to any nodes? */
1705 		if (status < 0) {
1706 			tmpstat = dlm_send_join_cancels(dlm,
1707 							ctxt->yes_resp_map,
1708 							sizeof(ctxt->yes_resp_map));
1709 			if (tmpstat < 0)
1710 				mlog_errno(tmpstat);
1711 		}
1712 		kfree(ctxt);
1713 	}
1714 
1715 	mlog(0, "returning %d\n", status);
1716 	return status;
1717 }
1718 
1719 static void dlm_unregister_domain_handlers(struct dlm_ctxt *dlm)
1720 {
1721 	o2hb_unregister_callback(dlm->name, &dlm->dlm_hb_up);
1722 	o2hb_unregister_callback(dlm->name, &dlm->dlm_hb_down);
1723 	o2net_unregister_handler_list(&dlm->dlm_domain_handlers);
1724 }
1725 
1726 static int dlm_register_domain_handlers(struct dlm_ctxt *dlm)
1727 {
1728 	int status;
1729 
1730 	mlog(0, "registering handlers.\n");
1731 
1732 	o2hb_setup_callback(&dlm->dlm_hb_down, O2HB_NODE_DOWN_CB,
1733 			    dlm_hb_node_down_cb, dlm, DLM_HB_NODE_DOWN_PRI);
1734 	status = o2hb_register_callback(dlm->name, &dlm->dlm_hb_down);
1735 	if (status)
1736 		goto bail;
1737 
1738 	o2hb_setup_callback(&dlm->dlm_hb_up, O2HB_NODE_UP_CB,
1739 			    dlm_hb_node_up_cb, dlm, DLM_HB_NODE_UP_PRI);
1740 	status = o2hb_register_callback(dlm->name, &dlm->dlm_hb_up);
1741 	if (status)
1742 		goto bail;
1743 
1744 	status = o2net_register_handler(DLM_MASTER_REQUEST_MSG, dlm->key,
1745 					sizeof(struct dlm_master_request),
1746 					dlm_master_request_handler,
1747 					dlm, NULL, &dlm->dlm_domain_handlers);
1748 	if (status)
1749 		goto bail;
1750 
1751 	status = o2net_register_handler(DLM_ASSERT_MASTER_MSG, dlm->key,
1752 					sizeof(struct dlm_assert_master),
1753 					dlm_assert_master_handler,
1754 					dlm, dlm_assert_master_post_handler,
1755 					&dlm->dlm_domain_handlers);
1756 	if (status)
1757 		goto bail;
1758 
1759 	status = o2net_register_handler(DLM_CREATE_LOCK_MSG, dlm->key,
1760 					sizeof(struct dlm_create_lock),
1761 					dlm_create_lock_handler,
1762 					dlm, NULL, &dlm->dlm_domain_handlers);
1763 	if (status)
1764 		goto bail;
1765 
1766 	status = o2net_register_handler(DLM_CONVERT_LOCK_MSG, dlm->key,
1767 					DLM_CONVERT_LOCK_MAX_LEN,
1768 					dlm_convert_lock_handler,
1769 					dlm, NULL, &dlm->dlm_domain_handlers);
1770 	if (status)
1771 		goto bail;
1772 
1773 	status = o2net_register_handler(DLM_UNLOCK_LOCK_MSG, dlm->key,
1774 					DLM_UNLOCK_LOCK_MAX_LEN,
1775 					dlm_unlock_lock_handler,
1776 					dlm, NULL, &dlm->dlm_domain_handlers);
1777 	if (status)
1778 		goto bail;
1779 
1780 	status = o2net_register_handler(DLM_PROXY_AST_MSG, dlm->key,
1781 					DLM_PROXY_AST_MAX_LEN,
1782 					dlm_proxy_ast_handler,
1783 					dlm, NULL, &dlm->dlm_domain_handlers);
1784 	if (status)
1785 		goto bail;
1786 
1787 	status = o2net_register_handler(DLM_EXIT_DOMAIN_MSG, dlm->key,
1788 					sizeof(struct dlm_exit_domain),
1789 					dlm_exit_domain_handler,
1790 					dlm, NULL, &dlm->dlm_domain_handlers);
1791 	if (status)
1792 		goto bail;
1793 
1794 	status = o2net_register_handler(DLM_DEREF_LOCKRES_MSG, dlm->key,
1795 					sizeof(struct dlm_deref_lockres),
1796 					dlm_deref_lockres_handler,
1797 					dlm, NULL, &dlm->dlm_domain_handlers);
1798 	if (status)
1799 		goto bail;
1800 
1801 	status = o2net_register_handler(DLM_MIGRATE_REQUEST_MSG, dlm->key,
1802 					sizeof(struct dlm_migrate_request),
1803 					dlm_migrate_request_handler,
1804 					dlm, NULL, &dlm->dlm_domain_handlers);
1805 	if (status)
1806 		goto bail;
1807 
1808 	status = o2net_register_handler(DLM_MIG_LOCKRES_MSG, dlm->key,
1809 					DLM_MIG_LOCKRES_MAX_LEN,
1810 					dlm_mig_lockres_handler,
1811 					dlm, NULL, &dlm->dlm_domain_handlers);
1812 	if (status)
1813 		goto bail;
1814 
1815 	status = o2net_register_handler(DLM_MASTER_REQUERY_MSG, dlm->key,
1816 					sizeof(struct dlm_master_requery),
1817 					dlm_master_requery_handler,
1818 					dlm, NULL, &dlm->dlm_domain_handlers);
1819 	if (status)
1820 		goto bail;
1821 
1822 	status = o2net_register_handler(DLM_LOCK_REQUEST_MSG, dlm->key,
1823 					sizeof(struct dlm_lock_request),
1824 					dlm_request_all_locks_handler,
1825 					dlm, NULL, &dlm->dlm_domain_handlers);
1826 	if (status)
1827 		goto bail;
1828 
1829 	status = o2net_register_handler(DLM_RECO_DATA_DONE_MSG, dlm->key,
1830 					sizeof(struct dlm_reco_data_done),
1831 					dlm_reco_data_done_handler,
1832 					dlm, NULL, &dlm->dlm_domain_handlers);
1833 	if (status)
1834 		goto bail;
1835 
1836 	status = o2net_register_handler(DLM_BEGIN_RECO_MSG, dlm->key,
1837 					sizeof(struct dlm_begin_reco),
1838 					dlm_begin_reco_handler,
1839 					dlm, NULL, &dlm->dlm_domain_handlers);
1840 	if (status)
1841 		goto bail;
1842 
1843 	status = o2net_register_handler(DLM_FINALIZE_RECO_MSG, dlm->key,
1844 					sizeof(struct dlm_finalize_reco),
1845 					dlm_finalize_reco_handler,
1846 					dlm, NULL, &dlm->dlm_domain_handlers);
1847 	if (status)
1848 		goto bail;
1849 
1850 	status = o2net_register_handler(DLM_BEGIN_EXIT_DOMAIN_MSG, dlm->key,
1851 					sizeof(struct dlm_exit_domain),
1852 					dlm_begin_exit_domain_handler,
1853 					dlm, NULL, &dlm->dlm_domain_handlers);
1854 	if (status)
1855 		goto bail;
1856 
1857 bail:
1858 	if (status)
1859 		dlm_unregister_domain_handlers(dlm);
1860 
1861 	return status;
1862 }
1863 
1864 static int dlm_join_domain(struct dlm_ctxt *dlm)
1865 {
1866 	int status;
1867 	unsigned int backoff;
1868 	unsigned int total_backoff = 0;
1869 
1870 	BUG_ON(!dlm);
1871 
1872 	mlog(0, "Join domain %s\n", dlm->name);
1873 
1874 	status = dlm_register_domain_handlers(dlm);
1875 	if (status) {
1876 		mlog_errno(status);
1877 		goto bail;
1878 	}
1879 
1880 	status = dlm_debug_init(dlm);
1881 	if (status < 0) {
1882 		mlog_errno(status);
1883 		goto bail;
1884 	}
1885 
1886 	status = dlm_launch_thread(dlm);
1887 	if (status < 0) {
1888 		mlog_errno(status);
1889 		goto bail;
1890 	}
1891 
1892 	status = dlm_launch_recovery_thread(dlm);
1893 	if (status < 0) {
1894 		mlog_errno(status);
1895 		goto bail;
1896 	}
1897 
1898 	dlm->dlm_worker = create_singlethread_workqueue("dlm_wq");
1899 	if (!dlm->dlm_worker) {
1900 		status = -ENOMEM;
1901 		mlog_errno(status);
1902 		goto bail;
1903 	}
1904 
1905 	do {
1906 		status = dlm_try_to_join_domain(dlm);
1907 
1908 		/* If we're racing another node to the join, then we
1909 		 * need to back off temporarily and let them
1910 		 * complete. */
1911 #define	DLM_JOIN_TIMEOUT_MSECS	90000
1912 		if (status == -EAGAIN) {
1913 			if (signal_pending(current)) {
1914 				status = -ERESTARTSYS;
1915 				goto bail;
1916 			}
1917 
1918 			if (total_backoff >
1919 			    msecs_to_jiffies(DLM_JOIN_TIMEOUT_MSECS)) {
1920 				status = -ERESTARTSYS;
1921 				mlog(ML_NOTICE, "Timed out joining dlm domain "
1922 				     "%s after %u msecs\n", dlm->name,
1923 				     jiffies_to_msecs(total_backoff));
1924 				goto bail;
1925 			}
1926 
1927 			/*
1928 			 * <chip> After you!
1929 			 * <dale> No, after you!
1930 			 * <chip> I insist!
1931 			 * <dale> But you first!
1932 			 * ...
1933 			 */
1934 			backoff = (unsigned int)(jiffies & 0x3);
1935 			backoff *= DLM_DOMAIN_BACKOFF_MS;
1936 			total_backoff += backoff;
1937 			mlog(0, "backoff %d\n", backoff);
1938 			msleep(backoff);
1939 		}
1940 	} while (status == -EAGAIN);
1941 
1942 	if (status < 0) {
1943 		mlog_errno(status);
1944 		goto bail;
1945 	}
1946 
1947 	status = 0;
1948 bail:
1949 	wake_up(&dlm_domain_events);
1950 
1951 	if (status) {
1952 		dlm_unregister_domain_handlers(dlm);
1953 		dlm_debug_shutdown(dlm);
1954 		dlm_complete_thread(dlm);
1955 		dlm_complete_recovery_thread(dlm);
1956 		dlm_destroy_dlm_worker(dlm);
1957 	}
1958 
1959 	return status;
1960 }
1961 
1962 static struct dlm_ctxt *dlm_alloc_ctxt(const char *domain,
1963 				u32 key)
1964 {
1965 	int i;
1966 	int ret;
1967 	struct dlm_ctxt *dlm = NULL;
1968 
1969 	dlm = kzalloc(sizeof(*dlm), GFP_KERNEL);
1970 	if (!dlm) {
1971 		mlog_errno(-ENOMEM);
1972 		goto leave;
1973 	}
1974 
1975 	dlm->name = kstrdup(domain, GFP_KERNEL);
1976 	if (dlm->name == NULL) {
1977 		mlog_errno(-ENOMEM);
1978 		kfree(dlm);
1979 		dlm = NULL;
1980 		goto leave;
1981 	}
1982 
1983 	dlm->lockres_hash = (struct hlist_head **)dlm_alloc_pagevec(DLM_HASH_PAGES);
1984 	if (!dlm->lockres_hash) {
1985 		mlog_errno(-ENOMEM);
1986 		kfree(dlm->name);
1987 		kfree(dlm);
1988 		dlm = NULL;
1989 		goto leave;
1990 	}
1991 
1992 	for (i = 0; i < DLM_HASH_BUCKETS; i++)
1993 		INIT_HLIST_HEAD(dlm_lockres_hash(dlm, i));
1994 
1995 	dlm->master_hash = (struct hlist_head **)
1996 				dlm_alloc_pagevec(DLM_HASH_PAGES);
1997 	if (!dlm->master_hash) {
1998 		mlog_errno(-ENOMEM);
1999 		dlm_free_pagevec((void **)dlm->lockres_hash, DLM_HASH_PAGES);
2000 		kfree(dlm->name);
2001 		kfree(dlm);
2002 		dlm = NULL;
2003 		goto leave;
2004 	}
2005 
2006 	for (i = 0; i < DLM_HASH_BUCKETS; i++)
2007 		INIT_HLIST_HEAD(dlm_master_hash(dlm, i));
2008 
2009 	dlm->key = key;
2010 	dlm->node_num = o2nm_this_node();
2011 
2012 	ret = dlm_create_debugfs_subroot(dlm);
2013 	if (ret < 0) {
2014 		dlm_free_pagevec((void **)dlm->master_hash, DLM_HASH_PAGES);
2015 		dlm_free_pagevec((void **)dlm->lockres_hash, DLM_HASH_PAGES);
2016 		kfree(dlm->name);
2017 		kfree(dlm);
2018 		dlm = NULL;
2019 		goto leave;
2020 	}
2021 
2022 	spin_lock_init(&dlm->spinlock);
2023 	spin_lock_init(&dlm->master_lock);
2024 	spin_lock_init(&dlm->ast_lock);
2025 	spin_lock_init(&dlm->track_lock);
2026 	INIT_LIST_HEAD(&dlm->list);
2027 	INIT_LIST_HEAD(&dlm->dirty_list);
2028 	INIT_LIST_HEAD(&dlm->reco.resources);
2029 	INIT_LIST_HEAD(&dlm->reco.received);
2030 	INIT_LIST_HEAD(&dlm->reco.node_data);
2031 	INIT_LIST_HEAD(&dlm->purge_list);
2032 	INIT_LIST_HEAD(&dlm->dlm_domain_handlers);
2033 	INIT_LIST_HEAD(&dlm->tracking_list);
2034 	dlm->reco.state = 0;
2035 
2036 	INIT_LIST_HEAD(&dlm->pending_asts);
2037 	INIT_LIST_HEAD(&dlm->pending_basts);
2038 
2039 	mlog(0, "dlm->recovery_map=%p, &(dlm->recovery_map[0])=%p\n",
2040 		  dlm->recovery_map, &(dlm->recovery_map[0]));
2041 
2042 	memset(dlm->recovery_map, 0, sizeof(dlm->recovery_map));
2043 	memset(dlm->live_nodes_map, 0, sizeof(dlm->live_nodes_map));
2044 	memset(dlm->domain_map, 0, sizeof(dlm->domain_map));
2045 
2046 	dlm->dlm_thread_task = NULL;
2047 	dlm->dlm_reco_thread_task = NULL;
2048 	dlm->dlm_worker = NULL;
2049 	init_waitqueue_head(&dlm->dlm_thread_wq);
2050 	init_waitqueue_head(&dlm->dlm_reco_thread_wq);
2051 	init_waitqueue_head(&dlm->reco.event);
2052 	init_waitqueue_head(&dlm->ast_wq);
2053 	init_waitqueue_head(&dlm->migration_wq);
2054 	INIT_LIST_HEAD(&dlm->mle_hb_events);
2055 
2056 	dlm->joining_node = DLM_LOCK_RES_OWNER_UNKNOWN;
2057 	init_waitqueue_head(&dlm->dlm_join_events);
2058 
2059 	dlm->reco.new_master = O2NM_INVALID_NODE_NUM;
2060 	dlm->reco.dead_node = O2NM_INVALID_NODE_NUM;
2061 
2062 	atomic_set(&dlm->res_tot_count, 0);
2063 	atomic_set(&dlm->res_cur_count, 0);
2064 	for (i = 0; i < DLM_MLE_NUM_TYPES; ++i) {
2065 		atomic_set(&dlm->mle_tot_count[i], 0);
2066 		atomic_set(&dlm->mle_cur_count[i], 0);
2067 	}
2068 
2069 	spin_lock_init(&dlm->work_lock);
2070 	INIT_LIST_HEAD(&dlm->work_list);
2071 	INIT_WORK(&dlm->dispatched_work, dlm_dispatch_work);
2072 
2073 	kref_init(&dlm->dlm_refs);
2074 	dlm->dlm_state = DLM_CTXT_NEW;
2075 
2076 	INIT_LIST_HEAD(&dlm->dlm_eviction_callbacks);
2077 
2078 	mlog(0, "context init: refcount %u\n",
2079 		  atomic_read(&dlm->dlm_refs.refcount));
2080 
2081 leave:
2082 	return dlm;
2083 }
2084 
2085 /*
2086  * Compare a requested locking protocol version against the current one.
2087  *
2088  * If the major numbers are different, they are incompatible.
2089  * If the current minor is greater than the request, they are incompatible.
2090  * If the current minor is less than or equal to the request, they are
2091  * compatible, and the requester should run at the current minor version.
2092  */
2093 static int dlm_protocol_compare(struct dlm_protocol_version *existing,
2094 				struct dlm_protocol_version *request)
2095 {
2096 	if (existing->pv_major != request->pv_major)
2097 		return 1;
2098 
2099 	if (existing->pv_minor > request->pv_minor)
2100 		return 1;
2101 
2102 	if (existing->pv_minor < request->pv_minor)
2103 		request->pv_minor = existing->pv_minor;
2104 
2105 	return 0;
2106 }
2107 
2108 /*
2109  * dlm_register_domain: one-time setup per "domain".
2110  *
2111  * The filesystem passes in the requested locking version via proto.
2112  * If registration was successful, proto will contain the negotiated
2113  * locking protocol.
2114  */
2115 struct dlm_ctxt * dlm_register_domain(const char *domain,
2116 			       u32 key,
2117 			       struct dlm_protocol_version *fs_proto)
2118 {
2119 	int ret;
2120 	struct dlm_ctxt *dlm = NULL;
2121 	struct dlm_ctxt *new_ctxt = NULL;
2122 
2123 	if (strlen(domain) >= O2NM_MAX_NAME_LEN) {
2124 		ret = -ENAMETOOLONG;
2125 		mlog(ML_ERROR, "domain name length too long\n");
2126 		goto leave;
2127 	}
2128 
2129 	mlog(0, "register called for domain \"%s\"\n", domain);
2130 
2131 retry:
2132 	dlm = NULL;
2133 	if (signal_pending(current)) {
2134 		ret = -ERESTARTSYS;
2135 		mlog_errno(ret);
2136 		goto leave;
2137 	}
2138 
2139 	spin_lock(&dlm_domain_lock);
2140 
2141 	dlm = __dlm_lookup_domain(domain);
2142 	if (dlm) {
2143 		if (dlm->dlm_state != DLM_CTXT_JOINED) {
2144 			spin_unlock(&dlm_domain_lock);
2145 
2146 			mlog(0, "This ctxt is not joined yet!\n");
2147 			wait_event_interruptible(dlm_domain_events,
2148 						 dlm_wait_on_domain_helper(
2149 							 domain));
2150 			goto retry;
2151 		}
2152 
2153 		if (dlm_protocol_compare(&dlm->fs_locking_proto, fs_proto)) {
2154 			spin_unlock(&dlm_domain_lock);
2155 			mlog(ML_ERROR,
2156 			     "Requested locking protocol version is not "
2157 			     "compatible with already registered domain "
2158 			     "\"%s\"\n", domain);
2159 			ret = -EPROTO;
2160 			goto leave;
2161 		}
2162 
2163 		__dlm_get(dlm);
2164 		dlm->num_joins++;
2165 
2166 		spin_unlock(&dlm_domain_lock);
2167 
2168 		ret = 0;
2169 		goto leave;
2170 	}
2171 
2172 	/* doesn't exist */
2173 	if (!new_ctxt) {
2174 		spin_unlock(&dlm_domain_lock);
2175 
2176 		new_ctxt = dlm_alloc_ctxt(domain, key);
2177 		if (new_ctxt)
2178 			goto retry;
2179 
2180 		ret = -ENOMEM;
2181 		mlog_errno(ret);
2182 		goto leave;
2183 	}
2184 
2185 	/* a little variable switch-a-roo here... */
2186 	dlm = new_ctxt;
2187 	new_ctxt = NULL;
2188 
2189 	/* add the new domain */
2190 	list_add_tail(&dlm->list, &dlm_domains);
2191 	spin_unlock(&dlm_domain_lock);
2192 
2193 	/*
2194 	 * Pass the locking protocol version into the join.  If the join
2195 	 * succeeds, it will have the negotiated protocol set.
2196 	 */
2197 	dlm->dlm_locking_proto = dlm_protocol;
2198 	dlm->fs_locking_proto = *fs_proto;
2199 
2200 	ret = dlm_join_domain(dlm);
2201 	if (ret) {
2202 		mlog_errno(ret);
2203 		dlm_put(dlm);
2204 		goto leave;
2205 	}
2206 
2207 	/* Tell the caller what locking protocol we negotiated */
2208 	*fs_proto = dlm->fs_locking_proto;
2209 
2210 	ret = 0;
2211 leave:
2212 	if (new_ctxt)
2213 		dlm_free_ctxt_mem(new_ctxt);
2214 
2215 	if (ret < 0)
2216 		dlm = ERR_PTR(ret);
2217 
2218 	return dlm;
2219 }
2220 EXPORT_SYMBOL_GPL(dlm_register_domain);
2221 
2222 static LIST_HEAD(dlm_join_handlers);
2223 
2224 static void dlm_unregister_net_handlers(void)
2225 {
2226 	o2net_unregister_handler_list(&dlm_join_handlers);
2227 }
2228 
2229 static int dlm_register_net_handlers(void)
2230 {
2231 	int status = 0;
2232 
2233 	status = o2net_register_handler(DLM_QUERY_JOIN_MSG, DLM_MOD_KEY,
2234 					sizeof(struct dlm_query_join_request),
2235 					dlm_query_join_handler,
2236 					NULL, NULL, &dlm_join_handlers);
2237 	if (status)
2238 		goto bail;
2239 
2240 	status = o2net_register_handler(DLM_ASSERT_JOINED_MSG, DLM_MOD_KEY,
2241 					sizeof(struct dlm_assert_joined),
2242 					dlm_assert_joined_handler,
2243 					NULL, NULL, &dlm_join_handlers);
2244 	if (status)
2245 		goto bail;
2246 
2247 	status = o2net_register_handler(DLM_CANCEL_JOIN_MSG, DLM_MOD_KEY,
2248 					sizeof(struct dlm_cancel_join),
2249 					dlm_cancel_join_handler,
2250 					NULL, NULL, &dlm_join_handlers);
2251 	if (status)
2252 		goto bail;
2253 
2254 	status = o2net_register_handler(DLM_QUERY_REGION, DLM_MOD_KEY,
2255 					sizeof(struct dlm_query_region),
2256 					dlm_query_region_handler,
2257 					NULL, NULL, &dlm_join_handlers);
2258 
2259 	if (status)
2260 		goto bail;
2261 
2262 	status = o2net_register_handler(DLM_QUERY_NODEINFO, DLM_MOD_KEY,
2263 					sizeof(struct dlm_query_nodeinfo),
2264 					dlm_query_nodeinfo_handler,
2265 					NULL, NULL, &dlm_join_handlers);
2266 bail:
2267 	if (status < 0)
2268 		dlm_unregister_net_handlers();
2269 
2270 	return status;
2271 }
2272 
2273 /* Domain eviction callback handling.
2274  *
2275  * The file system requires notification of node death *before* the
2276  * dlm completes it's recovery work, otherwise it may be able to
2277  * acquire locks on resources requiring recovery. Since the dlm can
2278  * evict a node from it's domain *before* heartbeat fires, a similar
2279  * mechanism is required. */
2280 
2281 /* Eviction is not expected to happen often, so a per-domain lock is
2282  * not necessary. Eviction callbacks are allowed to sleep for short
2283  * periods of time. */
2284 static DECLARE_RWSEM(dlm_callback_sem);
2285 
2286 void dlm_fire_domain_eviction_callbacks(struct dlm_ctxt *dlm,
2287 					int node_num)
2288 {
2289 	struct dlm_eviction_cb *cb;
2290 
2291 	down_read(&dlm_callback_sem);
2292 	list_for_each_entry(cb, &dlm->dlm_eviction_callbacks, ec_item) {
2293 		cb->ec_func(node_num, cb->ec_data);
2294 	}
2295 	up_read(&dlm_callback_sem);
2296 }
2297 
2298 void dlm_setup_eviction_cb(struct dlm_eviction_cb *cb,
2299 			   dlm_eviction_func *f,
2300 			   void *data)
2301 {
2302 	INIT_LIST_HEAD(&cb->ec_item);
2303 	cb->ec_func = f;
2304 	cb->ec_data = data;
2305 }
2306 EXPORT_SYMBOL_GPL(dlm_setup_eviction_cb);
2307 
2308 void dlm_register_eviction_cb(struct dlm_ctxt *dlm,
2309 			      struct dlm_eviction_cb *cb)
2310 {
2311 	down_write(&dlm_callback_sem);
2312 	list_add_tail(&cb->ec_item, &dlm->dlm_eviction_callbacks);
2313 	up_write(&dlm_callback_sem);
2314 }
2315 EXPORT_SYMBOL_GPL(dlm_register_eviction_cb);
2316 
2317 void dlm_unregister_eviction_cb(struct dlm_eviction_cb *cb)
2318 {
2319 	down_write(&dlm_callback_sem);
2320 	list_del_init(&cb->ec_item);
2321 	up_write(&dlm_callback_sem);
2322 }
2323 EXPORT_SYMBOL_GPL(dlm_unregister_eviction_cb);
2324 
2325 static int __init dlm_init(void)
2326 {
2327 	int status;
2328 
2329 	status = dlm_init_mle_cache();
2330 	if (status) {
2331 		mlog(ML_ERROR, "Could not create o2dlm_mle slabcache\n");
2332 		goto error;
2333 	}
2334 
2335 	status = dlm_init_master_caches();
2336 	if (status) {
2337 		mlog(ML_ERROR, "Could not create o2dlm_lockres and "
2338 		     "o2dlm_lockname slabcaches\n");
2339 		goto error;
2340 	}
2341 
2342 	status = dlm_init_lock_cache();
2343 	if (status) {
2344 		mlog(ML_ERROR, "Count not create o2dlm_lock slabcache\n");
2345 		goto error;
2346 	}
2347 
2348 	status = dlm_register_net_handlers();
2349 	if (status) {
2350 		mlog(ML_ERROR, "Unable to register network handlers\n");
2351 		goto error;
2352 	}
2353 
2354 	status = dlm_create_debugfs_root();
2355 	if (status)
2356 		goto error;
2357 
2358 	return 0;
2359 error:
2360 	dlm_unregister_net_handlers();
2361 	dlm_destroy_lock_cache();
2362 	dlm_destroy_master_caches();
2363 	dlm_destroy_mle_cache();
2364 	return -1;
2365 }
2366 
2367 static void __exit dlm_exit (void)
2368 {
2369 	dlm_destroy_debugfs_root();
2370 	dlm_unregister_net_handlers();
2371 	dlm_destroy_lock_cache();
2372 	dlm_destroy_master_caches();
2373 	dlm_destroy_mle_cache();
2374 }
2375 
2376 MODULE_AUTHOR("Oracle");
2377 MODULE_LICENSE("GPL");
2378 MODULE_DESCRIPTION("OCFS2 Distributed Lock Management");
2379 
2380 module_init(dlm_init);
2381 module_exit(dlm_exit);
2382