xref: /openbmc/linux/fs/ocfs2/dlm/dlmrecovery.c (revision 3384f3df5ed939a25135e1b2734fb7cdee1720a8)
16714d8e8SKurt Hackel /* -*- mode: c; c-basic-offset: 8; -*-
26714d8e8SKurt Hackel  * vim: noexpandtab sw=8 ts=8 sts=0:
36714d8e8SKurt Hackel  *
46714d8e8SKurt Hackel  * dlmrecovery.c
56714d8e8SKurt Hackel  *
66714d8e8SKurt Hackel  * recovery stuff
76714d8e8SKurt Hackel  *
86714d8e8SKurt Hackel  * Copyright (C) 2004 Oracle.  All rights reserved.
96714d8e8SKurt Hackel  *
106714d8e8SKurt Hackel  * This program is free software; you can redistribute it and/or
116714d8e8SKurt Hackel  * modify it under the terms of the GNU General Public
126714d8e8SKurt Hackel  * License as published by the Free Software Foundation; either
136714d8e8SKurt Hackel  * version 2 of the License, or (at your option) any later version.
146714d8e8SKurt Hackel  *
156714d8e8SKurt Hackel  * This program is distributed in the hope that it will be useful,
166714d8e8SKurt Hackel  * but WITHOUT ANY WARRANTY; without even the implied warranty of
176714d8e8SKurt Hackel  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
186714d8e8SKurt Hackel  * General Public License for more details.
196714d8e8SKurt Hackel  *
206714d8e8SKurt Hackel  * You should have received a copy of the GNU General Public
216714d8e8SKurt Hackel  * License along with this program; if not, write to the
226714d8e8SKurt Hackel  * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
236714d8e8SKurt Hackel  * Boston, MA 021110-1307, USA.
246714d8e8SKurt Hackel  *
256714d8e8SKurt Hackel  */
266714d8e8SKurt Hackel 
276714d8e8SKurt Hackel 
286714d8e8SKurt Hackel #include <linux/module.h>
296714d8e8SKurt Hackel #include <linux/fs.h>
306714d8e8SKurt Hackel #include <linux/types.h>
316714d8e8SKurt Hackel #include <linux/slab.h>
326714d8e8SKurt Hackel #include <linux/highmem.h>
336714d8e8SKurt Hackel #include <linux/utsname.h>
346714d8e8SKurt Hackel #include <linux/init.h>
356714d8e8SKurt Hackel #include <linux/sysctl.h>
366714d8e8SKurt Hackel #include <linux/random.h>
376714d8e8SKurt Hackel #include <linux/blkdev.h>
386714d8e8SKurt Hackel #include <linux/socket.h>
396714d8e8SKurt Hackel #include <linux/inet.h>
406714d8e8SKurt Hackel #include <linux/timer.h>
416714d8e8SKurt Hackel #include <linux/kthread.h>
42b4c7f538SAdrian Bunk #include <linux/delay.h>
436714d8e8SKurt Hackel 
446714d8e8SKurt Hackel 
456714d8e8SKurt Hackel #include "cluster/heartbeat.h"
466714d8e8SKurt Hackel #include "cluster/nodemanager.h"
476714d8e8SKurt Hackel #include "cluster/tcp.h"
486714d8e8SKurt Hackel 
496714d8e8SKurt Hackel #include "dlmapi.h"
506714d8e8SKurt Hackel #include "dlmcommon.h"
516714d8e8SKurt Hackel #include "dlmdomain.h"
526714d8e8SKurt Hackel 
536714d8e8SKurt Hackel #define MLOG_MASK_PREFIX (ML_DLM|ML_DLM_RECOVERY)
546714d8e8SKurt Hackel #include "cluster/masklog.h"
556714d8e8SKurt Hackel 
566714d8e8SKurt Hackel static void dlm_do_local_recovery_cleanup(struct dlm_ctxt *dlm, u8 dead_node);
576714d8e8SKurt Hackel 
586714d8e8SKurt Hackel static int dlm_recovery_thread(void *data);
596714d8e8SKurt Hackel void dlm_complete_recovery_thread(struct dlm_ctxt *dlm);
606714d8e8SKurt Hackel int dlm_launch_recovery_thread(struct dlm_ctxt *dlm);
61c03872f5SKurt Hackel void dlm_kick_recovery_thread(struct dlm_ctxt *dlm);
626714d8e8SKurt Hackel static int dlm_do_recovery(struct dlm_ctxt *dlm);
636714d8e8SKurt Hackel 
646714d8e8SKurt Hackel static int dlm_pick_recovery_master(struct dlm_ctxt *dlm);
656714d8e8SKurt Hackel static int dlm_remaster_locks(struct dlm_ctxt *dlm, u8 dead_node);
666714d8e8SKurt Hackel static int dlm_init_recovery_area(struct dlm_ctxt *dlm, u8 dead_node);
676714d8e8SKurt Hackel static int dlm_request_all_locks(struct dlm_ctxt *dlm,
686714d8e8SKurt Hackel 				 u8 request_from, u8 dead_node);
696714d8e8SKurt Hackel static void dlm_destroy_recovery_area(struct dlm_ctxt *dlm, u8 dead_node);
706714d8e8SKurt Hackel 
716714d8e8SKurt Hackel static inline int dlm_num_locks_in_lockres(struct dlm_lock_resource *res);
726714d8e8SKurt Hackel static void dlm_init_migratable_lockres(struct dlm_migratable_lockres *mres,
736714d8e8SKurt Hackel 					const char *lockname, int namelen,
746714d8e8SKurt Hackel 					int total_locks, u64 cookie,
756714d8e8SKurt Hackel 					u8 flags, u8 master);
766714d8e8SKurt Hackel static int dlm_send_mig_lockres_msg(struct dlm_ctxt *dlm,
776714d8e8SKurt Hackel 				    struct dlm_migratable_lockres *mres,
786714d8e8SKurt Hackel 				    u8 send_to,
796714d8e8SKurt Hackel 				    struct dlm_lock_resource *res,
806714d8e8SKurt Hackel 				    int total_locks);
816714d8e8SKurt Hackel static int dlm_process_recovery_data(struct dlm_ctxt *dlm,
826714d8e8SKurt Hackel 				     struct dlm_lock_resource *res,
836714d8e8SKurt Hackel 				     struct dlm_migratable_lockres *mres);
846714d8e8SKurt Hackel static int dlm_send_finalize_reco_message(struct dlm_ctxt *dlm);
856714d8e8SKurt Hackel static int dlm_send_all_done_msg(struct dlm_ctxt *dlm,
866714d8e8SKurt Hackel 				 u8 dead_node, u8 send_to);
876714d8e8SKurt Hackel static int dlm_send_begin_reco_message(struct dlm_ctxt *dlm, u8 dead_node);
886714d8e8SKurt Hackel static void dlm_move_reco_locks_to_list(struct dlm_ctxt *dlm,
896714d8e8SKurt Hackel 					struct list_head *list, u8 dead_node);
906714d8e8SKurt Hackel static void dlm_finish_local_lockres_recovery(struct dlm_ctxt *dlm,
916714d8e8SKurt Hackel 					      u8 dead_node, u8 new_master);
926714d8e8SKurt Hackel static void dlm_reco_ast(void *astdata);
936714d8e8SKurt Hackel static void dlm_reco_bast(void *astdata, int blocked_type);
946714d8e8SKurt Hackel static void dlm_reco_unlock_ast(void *astdata, enum dlm_status st);
956714d8e8SKurt Hackel static void dlm_request_all_locks_worker(struct dlm_work_item *item,
966714d8e8SKurt Hackel 					 void *data);
976714d8e8SKurt Hackel static void dlm_mig_lockres_worker(struct dlm_work_item *item, void *data);
988169cae5SAdrian Bunk static int dlm_lockres_master_requery(struct dlm_ctxt *dlm,
998169cae5SAdrian Bunk 				      struct dlm_lock_resource *res,
1008169cae5SAdrian Bunk 				      u8 *real_master);
1016714d8e8SKurt Hackel 
1026714d8e8SKurt Hackel static u64 dlm_get_next_mig_cookie(void);
1036714d8e8SKurt Hackel 
10434af946aSIngo Molnar static DEFINE_SPINLOCK(dlm_reco_state_lock);
10534af946aSIngo Molnar static DEFINE_SPINLOCK(dlm_mig_cookie_lock);
1066714d8e8SKurt Hackel static u64 dlm_mig_cookie = 1;
1076714d8e8SKurt Hackel 
1086714d8e8SKurt Hackel static u64 dlm_get_next_mig_cookie(void)
1096714d8e8SKurt Hackel {
1106714d8e8SKurt Hackel 	u64 c;
1116714d8e8SKurt Hackel 	spin_lock(&dlm_mig_cookie_lock);
1126714d8e8SKurt Hackel 	c = dlm_mig_cookie;
1136714d8e8SKurt Hackel 	if (dlm_mig_cookie == (~0ULL))
1146714d8e8SKurt Hackel 		dlm_mig_cookie = 1;
1156714d8e8SKurt Hackel 	else
1166714d8e8SKurt Hackel 		dlm_mig_cookie++;
1176714d8e8SKurt Hackel 	spin_unlock(&dlm_mig_cookie_lock);
1186714d8e8SKurt Hackel 	return c;
1196714d8e8SKurt Hackel }
1206714d8e8SKurt Hackel 
121ab27eb6fSKurt Hackel static inline void dlm_set_reco_dead_node(struct dlm_ctxt *dlm,
122ab27eb6fSKurt Hackel 					  u8 dead_node)
123ab27eb6fSKurt Hackel {
124ab27eb6fSKurt Hackel 	assert_spin_locked(&dlm->spinlock);
125ab27eb6fSKurt Hackel 	if (dlm->reco.dead_node != dead_node)
126ab27eb6fSKurt Hackel 		mlog(0, "%s: changing dead_node from %u to %u\n",
127ab27eb6fSKurt Hackel 		     dlm->name, dlm->reco.dead_node, dead_node);
128ab27eb6fSKurt Hackel 	dlm->reco.dead_node = dead_node;
129ab27eb6fSKurt Hackel }
130ab27eb6fSKurt Hackel 
131ab27eb6fSKurt Hackel static inline void dlm_set_reco_master(struct dlm_ctxt *dlm,
132ab27eb6fSKurt Hackel 				       u8 master)
133ab27eb6fSKurt Hackel {
134ab27eb6fSKurt Hackel 	assert_spin_locked(&dlm->spinlock);
135ab27eb6fSKurt Hackel 	mlog(0, "%s: changing new_master from %u to %u\n",
136ab27eb6fSKurt Hackel 	     dlm->name, dlm->reco.new_master, master);
137ab27eb6fSKurt Hackel 	dlm->reco.new_master = master;
138ab27eb6fSKurt Hackel }
139ab27eb6fSKurt Hackel 
140466d1a45SKurt Hackel static inline void __dlm_reset_recovery(struct dlm_ctxt *dlm)
1416714d8e8SKurt Hackel {
142466d1a45SKurt Hackel 	assert_spin_locked(&dlm->spinlock);
1436714d8e8SKurt Hackel 	clear_bit(dlm->reco.dead_node, dlm->recovery_map);
144ab27eb6fSKurt Hackel 	dlm_set_reco_dead_node(dlm, O2NM_INVALID_NODE_NUM);
145ab27eb6fSKurt Hackel 	dlm_set_reco_master(dlm, O2NM_INVALID_NODE_NUM);
146466d1a45SKurt Hackel }
147466d1a45SKurt Hackel 
148466d1a45SKurt Hackel static inline void dlm_reset_recovery(struct dlm_ctxt *dlm)
149466d1a45SKurt Hackel {
150466d1a45SKurt Hackel 	spin_lock(&dlm->spinlock);
151466d1a45SKurt Hackel 	__dlm_reset_recovery(dlm);
1526714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
1536714d8e8SKurt Hackel }
1546714d8e8SKurt Hackel 
1556714d8e8SKurt Hackel /* Worker function used during recovery. */
1566714d8e8SKurt Hackel void dlm_dispatch_work(void *data)
1576714d8e8SKurt Hackel {
1586714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = (struct dlm_ctxt *)data;
1596714d8e8SKurt Hackel 	LIST_HEAD(tmp_list);
1606714d8e8SKurt Hackel 	struct list_head *iter, *iter2;
1616714d8e8SKurt Hackel 	struct dlm_work_item *item;
1626714d8e8SKurt Hackel 	dlm_workfunc_t *workfunc;
1633156d267SKurt Hackel 	int tot=0;
1643156d267SKurt Hackel 
1653156d267SKurt Hackel 	if (!dlm_joined(dlm))
1663156d267SKurt Hackel 		return;
1676714d8e8SKurt Hackel 
1686714d8e8SKurt Hackel 	spin_lock(&dlm->work_lock);
1696714d8e8SKurt Hackel 	list_splice_init(&dlm->work_list, &tmp_list);
1706714d8e8SKurt Hackel 	spin_unlock(&dlm->work_lock);
1716714d8e8SKurt Hackel 
1726714d8e8SKurt Hackel 	list_for_each_safe(iter, iter2, &tmp_list) {
1733156d267SKurt Hackel 		tot++;
1743156d267SKurt Hackel 	}
1753156d267SKurt Hackel 	mlog(0, "%s: work thread has %d work items\n", dlm->name, tot);
1763156d267SKurt Hackel 
1773156d267SKurt Hackel 	list_for_each_safe(iter, iter2, &tmp_list) {
1786714d8e8SKurt Hackel 		item = list_entry(iter, struct dlm_work_item, list);
1796714d8e8SKurt Hackel 		workfunc = item->func;
1806714d8e8SKurt Hackel 		list_del_init(&item->list);
1816714d8e8SKurt Hackel 
1826714d8e8SKurt Hackel 		/* already have ref on dlm to avoid having
1836714d8e8SKurt Hackel 		 * it disappear.  just double-check. */
1846714d8e8SKurt Hackel 		BUG_ON(item->dlm != dlm);
1856714d8e8SKurt Hackel 
1866714d8e8SKurt Hackel 		/* this is allowed to sleep and
1876714d8e8SKurt Hackel 		 * call network stuff */
1886714d8e8SKurt Hackel 		workfunc(item, item->data);
1896714d8e8SKurt Hackel 
1906714d8e8SKurt Hackel 		dlm_put(dlm);
1916714d8e8SKurt Hackel 		kfree(item);
1926714d8e8SKurt Hackel 	}
1936714d8e8SKurt Hackel }
1946714d8e8SKurt Hackel 
1956714d8e8SKurt Hackel /*
1966714d8e8SKurt Hackel  * RECOVERY THREAD
1976714d8e8SKurt Hackel  */
1986714d8e8SKurt Hackel 
199c03872f5SKurt Hackel void dlm_kick_recovery_thread(struct dlm_ctxt *dlm)
2006714d8e8SKurt Hackel {
2016714d8e8SKurt Hackel 	/* wake the recovery thread
2026714d8e8SKurt Hackel 	 * this will wake the reco thread in one of three places
2036714d8e8SKurt Hackel 	 * 1) sleeping with no recovery happening
2046714d8e8SKurt Hackel 	 * 2) sleeping with recovery mastered elsewhere
2056714d8e8SKurt Hackel 	 * 3) recovery mastered here, waiting on reco data */
2066714d8e8SKurt Hackel 
2076714d8e8SKurt Hackel 	wake_up(&dlm->dlm_reco_thread_wq);
2086714d8e8SKurt Hackel }
2096714d8e8SKurt Hackel 
2106714d8e8SKurt Hackel /* Launch the recovery thread */
2116714d8e8SKurt Hackel int dlm_launch_recovery_thread(struct dlm_ctxt *dlm)
2126714d8e8SKurt Hackel {
2136714d8e8SKurt Hackel 	mlog(0, "starting dlm recovery thread...\n");
2146714d8e8SKurt Hackel 
2156714d8e8SKurt Hackel 	dlm->dlm_reco_thread_task = kthread_run(dlm_recovery_thread, dlm,
2166714d8e8SKurt Hackel 						"dlm_reco_thread");
2176714d8e8SKurt Hackel 	if (IS_ERR(dlm->dlm_reco_thread_task)) {
2186714d8e8SKurt Hackel 		mlog_errno(PTR_ERR(dlm->dlm_reco_thread_task));
2196714d8e8SKurt Hackel 		dlm->dlm_reco_thread_task = NULL;
2206714d8e8SKurt Hackel 		return -EINVAL;
2216714d8e8SKurt Hackel 	}
2226714d8e8SKurt Hackel 
2236714d8e8SKurt Hackel 	return 0;
2246714d8e8SKurt Hackel }
2256714d8e8SKurt Hackel 
2266714d8e8SKurt Hackel void dlm_complete_recovery_thread(struct dlm_ctxt *dlm)
2276714d8e8SKurt Hackel {
2286714d8e8SKurt Hackel 	if (dlm->dlm_reco_thread_task) {
2296714d8e8SKurt Hackel 		mlog(0, "waiting for dlm recovery thread to exit\n");
2306714d8e8SKurt Hackel 		kthread_stop(dlm->dlm_reco_thread_task);
2316714d8e8SKurt Hackel 		dlm->dlm_reco_thread_task = NULL;
2326714d8e8SKurt Hackel 	}
2336714d8e8SKurt Hackel }
2346714d8e8SKurt Hackel 
2356714d8e8SKurt Hackel 
2366714d8e8SKurt Hackel 
2376714d8e8SKurt Hackel /*
2386714d8e8SKurt Hackel  * this is lame, but here's how recovery works...
2396714d8e8SKurt Hackel  * 1) all recovery threads cluster wide will work on recovering
2406714d8e8SKurt Hackel  *    ONE node at a time
2416714d8e8SKurt Hackel  * 2) negotiate who will take over all the locks for the dead node.
2426714d8e8SKurt Hackel  *    thats right... ALL the locks.
2436714d8e8SKurt Hackel  * 3) once a new master is chosen, everyone scans all locks
2446714d8e8SKurt Hackel  *    and moves aside those mastered by the dead guy
2456714d8e8SKurt Hackel  * 4) each of these locks should be locked until recovery is done
2466714d8e8SKurt Hackel  * 5) the new master collects up all of secondary lock queue info
2476714d8e8SKurt Hackel  *    one lock at a time, forcing each node to communicate back
2486714d8e8SKurt Hackel  *    before continuing
2496714d8e8SKurt Hackel  * 6) each secondary lock queue responds with the full known lock info
2506714d8e8SKurt Hackel  * 7) once the new master has run all its locks, it sends a ALLDONE!
2516714d8e8SKurt Hackel  *    message to everyone
2526714d8e8SKurt Hackel  * 8) upon receiving this message, the secondary queue node unlocks
2536714d8e8SKurt Hackel  *    and responds to the ALLDONE
2546714d8e8SKurt Hackel  * 9) once the new master gets responses from everyone, he unlocks
2556714d8e8SKurt Hackel  *    everything and recovery for this dead node is done
2566714d8e8SKurt Hackel  *10) go back to 2) while there are still dead nodes
2576714d8e8SKurt Hackel  *
2586714d8e8SKurt Hackel  */
2596714d8e8SKurt Hackel 
260d6dea6e9SKurt Hackel static void dlm_print_reco_node_status(struct dlm_ctxt *dlm)
261d6dea6e9SKurt Hackel {
262d6dea6e9SKurt Hackel 	struct dlm_reco_node_data *ndata;
263d6dea6e9SKurt Hackel 	struct dlm_lock_resource *res;
264d6dea6e9SKurt Hackel 
265d6dea6e9SKurt Hackel 	mlog(ML_NOTICE, "%s(%d): recovery info, state=%s, dead=%u, master=%u\n",
266d6dea6e9SKurt Hackel 	     dlm->name, dlm->dlm_reco_thread_task->pid,
267d6dea6e9SKurt Hackel 	     dlm->reco.state & DLM_RECO_STATE_ACTIVE ? "ACTIVE" : "inactive",
268d6dea6e9SKurt Hackel 	     dlm->reco.dead_node, dlm->reco.new_master);
269d6dea6e9SKurt Hackel 
270d6dea6e9SKurt Hackel 	list_for_each_entry(ndata, &dlm->reco.node_data, list) {
271d6dea6e9SKurt Hackel 		char *st = "unknown";
272d6dea6e9SKurt Hackel 		switch (ndata->state) {
273d6dea6e9SKurt Hackel 			case DLM_RECO_NODE_DATA_INIT:
274d6dea6e9SKurt Hackel 				st = "init";
275d6dea6e9SKurt Hackel 				break;
276d6dea6e9SKurt Hackel 			case DLM_RECO_NODE_DATA_REQUESTING:
277d6dea6e9SKurt Hackel 				st = "requesting";
278d6dea6e9SKurt Hackel 				break;
279d6dea6e9SKurt Hackel 			case DLM_RECO_NODE_DATA_DEAD:
280d6dea6e9SKurt Hackel 				st = "dead";
281d6dea6e9SKurt Hackel 				break;
282d6dea6e9SKurt Hackel 			case DLM_RECO_NODE_DATA_RECEIVING:
283d6dea6e9SKurt Hackel 				st = "receiving";
284d6dea6e9SKurt Hackel 				break;
285d6dea6e9SKurt Hackel 			case DLM_RECO_NODE_DATA_REQUESTED:
286d6dea6e9SKurt Hackel 				st = "requested";
287d6dea6e9SKurt Hackel 				break;
288d6dea6e9SKurt Hackel 			case DLM_RECO_NODE_DATA_DONE:
289d6dea6e9SKurt Hackel 				st = "done";
290d6dea6e9SKurt Hackel 				break;
291d6dea6e9SKurt Hackel 			case DLM_RECO_NODE_DATA_FINALIZE_SENT:
292d6dea6e9SKurt Hackel 				st = "finalize-sent";
293d6dea6e9SKurt Hackel 				break;
294d6dea6e9SKurt Hackel 			default:
295d6dea6e9SKurt Hackel 				st = "bad";
296d6dea6e9SKurt Hackel 				break;
297d6dea6e9SKurt Hackel 		}
298d6dea6e9SKurt Hackel 		mlog(ML_NOTICE, "%s: reco state, node %u, state=%s\n",
299d6dea6e9SKurt Hackel 		     dlm->name, ndata->node_num, st);
300d6dea6e9SKurt Hackel 	}
301d6dea6e9SKurt Hackel 	list_for_each_entry(res, &dlm->reco.resources, recovering) {
302d6dea6e9SKurt Hackel 		mlog(ML_NOTICE, "%s: lockres %.*s on recovering list\n",
303d6dea6e9SKurt Hackel 		     dlm->name, res->lockname.len, res->lockname.name);
304d6dea6e9SKurt Hackel 	}
305d6dea6e9SKurt Hackel }
3066714d8e8SKurt Hackel 
3076714d8e8SKurt Hackel #define DLM_RECO_THREAD_TIMEOUT_MS (5 * 1000)
3086714d8e8SKurt Hackel 
3096714d8e8SKurt Hackel static int dlm_recovery_thread(void *data)
3106714d8e8SKurt Hackel {
3116714d8e8SKurt Hackel 	int status;
3126714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
3136714d8e8SKurt Hackel 	unsigned long timeout = msecs_to_jiffies(DLM_RECO_THREAD_TIMEOUT_MS);
3146714d8e8SKurt Hackel 
3156714d8e8SKurt Hackel 	mlog(0, "dlm thread running for %s...\n", dlm->name);
3166714d8e8SKurt Hackel 
3176714d8e8SKurt Hackel 	while (!kthread_should_stop()) {
3186714d8e8SKurt Hackel 		if (dlm_joined(dlm)) {
3196714d8e8SKurt Hackel 			status = dlm_do_recovery(dlm);
3206714d8e8SKurt Hackel 			if (status == -EAGAIN) {
3216714d8e8SKurt Hackel 				/* do not sleep, recheck immediately. */
3226714d8e8SKurt Hackel 				continue;
3236714d8e8SKurt Hackel 			}
3246714d8e8SKurt Hackel 			if (status < 0)
3256714d8e8SKurt Hackel 				mlog_errno(status);
3266714d8e8SKurt Hackel 		}
3276714d8e8SKurt Hackel 
3286714d8e8SKurt Hackel 		wait_event_interruptible_timeout(dlm->dlm_reco_thread_wq,
3296714d8e8SKurt Hackel 						 kthread_should_stop(),
3306714d8e8SKurt Hackel 						 timeout);
3316714d8e8SKurt Hackel 	}
3326714d8e8SKurt Hackel 
3336714d8e8SKurt Hackel 	mlog(0, "quitting DLM recovery thread\n");
3346714d8e8SKurt Hackel 	return 0;
3356714d8e8SKurt Hackel }
3366714d8e8SKurt Hackel 
337e2faea4cSKurt Hackel /* returns true when the recovery master has contacted us */
338e2faea4cSKurt Hackel static int dlm_reco_master_ready(struct dlm_ctxt *dlm)
339e2faea4cSKurt Hackel {
340e2faea4cSKurt Hackel 	int ready;
341e2faea4cSKurt Hackel 	spin_lock(&dlm->spinlock);
342e2faea4cSKurt Hackel 	ready = (dlm->reco.new_master != O2NM_INVALID_NODE_NUM);
343e2faea4cSKurt Hackel 	spin_unlock(&dlm->spinlock);
344e2faea4cSKurt Hackel 	return ready;
345e2faea4cSKurt Hackel }
346e2faea4cSKurt Hackel 
347e2faea4cSKurt Hackel /* returns true if node is no longer in the domain
348e2faea4cSKurt Hackel  * could be dead or just not joined */
349e2faea4cSKurt Hackel int dlm_is_node_dead(struct dlm_ctxt *dlm, u8 node)
350e2faea4cSKurt Hackel {
351e2faea4cSKurt Hackel 	int dead;
352e2faea4cSKurt Hackel 	spin_lock(&dlm->spinlock);
353aba9aac7SKurt Hackel 	dead = !test_bit(node, dlm->domain_map);
354e2faea4cSKurt Hackel 	spin_unlock(&dlm->spinlock);
355e2faea4cSKurt Hackel 	return dead;
356e2faea4cSKurt Hackel }
357e2faea4cSKurt Hackel 
358b7084ab5SKurt Hackel /* returns true if node is no longer in the domain
359b7084ab5SKurt Hackel  * could be dead or just not joined */
3603fb5a989SAdrian Bunk static int dlm_is_node_recovered(struct dlm_ctxt *dlm, u8 node)
361b7084ab5SKurt Hackel {
362b7084ab5SKurt Hackel 	int recovered;
363b7084ab5SKurt Hackel 	spin_lock(&dlm->spinlock);
364b7084ab5SKurt Hackel 	recovered = !test_bit(node, dlm->recovery_map);
365b7084ab5SKurt Hackel 	spin_unlock(&dlm->spinlock);
366b7084ab5SKurt Hackel 	return recovered;
367b7084ab5SKurt Hackel }
368b7084ab5SKurt Hackel 
369b7084ab5SKurt Hackel 
37044465a7dSKurt Hackel int dlm_wait_for_node_death(struct dlm_ctxt *dlm, u8 node, int timeout)
37144465a7dSKurt Hackel {
37244465a7dSKurt Hackel 	if (timeout) {
37344465a7dSKurt Hackel 		mlog(ML_NOTICE, "%s: waiting %dms for notification of "
37444465a7dSKurt Hackel 		     "death of node %u\n", dlm->name, timeout, node);
37544465a7dSKurt Hackel 		wait_event_timeout(dlm->dlm_reco_thread_wq,
37644465a7dSKurt Hackel 			   dlm_is_node_dead(dlm, node),
37744465a7dSKurt Hackel 			   msecs_to_jiffies(timeout));
37844465a7dSKurt Hackel 	} else {
37944465a7dSKurt Hackel 		mlog(ML_NOTICE, "%s: waiting indefinitely for notification "
38044465a7dSKurt Hackel 		     "of death of node %u\n", dlm->name, node);
38144465a7dSKurt Hackel 		wait_event(dlm->dlm_reco_thread_wq,
38244465a7dSKurt Hackel 			   dlm_is_node_dead(dlm, node));
38344465a7dSKurt Hackel 	}
38444465a7dSKurt Hackel 	/* for now, return 0 */
38544465a7dSKurt Hackel 	return 0;
38644465a7dSKurt Hackel }
38744465a7dSKurt Hackel 
388b7084ab5SKurt Hackel int dlm_wait_for_node_recovery(struct dlm_ctxt *dlm, u8 node, int timeout)
389b7084ab5SKurt Hackel {
390b7084ab5SKurt Hackel 	if (timeout) {
391b7084ab5SKurt Hackel 		mlog(0, "%s: waiting %dms for notification of "
392b7084ab5SKurt Hackel 		     "recovery of node %u\n", dlm->name, timeout, node);
393b7084ab5SKurt Hackel 		wait_event_timeout(dlm->dlm_reco_thread_wq,
394b7084ab5SKurt Hackel 			   dlm_is_node_recovered(dlm, node),
395b7084ab5SKurt Hackel 			   msecs_to_jiffies(timeout));
396b7084ab5SKurt Hackel 	} else {
397b7084ab5SKurt Hackel 		mlog(0, "%s: waiting indefinitely for notification "
398b7084ab5SKurt Hackel 		     "of recovery of node %u\n", dlm->name, node);
399b7084ab5SKurt Hackel 		wait_event(dlm->dlm_reco_thread_wq,
400b7084ab5SKurt Hackel 			   dlm_is_node_recovered(dlm, node));
401b7084ab5SKurt Hackel 	}
402b7084ab5SKurt Hackel 	/* for now, return 0 */
403b7084ab5SKurt Hackel 	return 0;
404b7084ab5SKurt Hackel }
405b7084ab5SKurt Hackel 
4066714d8e8SKurt Hackel /* callers of the top-level api calls (dlmlock/dlmunlock) should
4076714d8e8SKurt Hackel  * block on the dlm->reco.event when recovery is in progress.
4086714d8e8SKurt Hackel  * the dlm recovery thread will set this state when it begins
4096714d8e8SKurt Hackel  * recovering a dead node (as the new master or not) and clear
4106714d8e8SKurt Hackel  * the state and wake as soon as all affected lock resources have
4116714d8e8SKurt Hackel  * been marked with the RECOVERY flag */
4126714d8e8SKurt Hackel static int dlm_in_recovery(struct dlm_ctxt *dlm)
4136714d8e8SKurt Hackel {
4146714d8e8SKurt Hackel 	int in_recovery;
4156714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
4166714d8e8SKurt Hackel 	in_recovery = !!(dlm->reco.state & DLM_RECO_STATE_ACTIVE);
4176714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
4186714d8e8SKurt Hackel 	return in_recovery;
4196714d8e8SKurt Hackel }
4206714d8e8SKurt Hackel 
4216714d8e8SKurt Hackel 
4226714d8e8SKurt Hackel void dlm_wait_for_recovery(struct dlm_ctxt *dlm)
4236714d8e8SKurt Hackel {
42456a7c104SKurt Hackel 	if (dlm_in_recovery(dlm)) {
4253b3b84a8SKurt Hackel 		mlog(0, "%s: reco thread %d in recovery: "
42656a7c104SKurt Hackel 		     "state=%d, master=%u, dead=%u\n",
42756a7c104SKurt Hackel 		     dlm->name, dlm->dlm_reco_thread_task->pid,
42856a7c104SKurt Hackel 		     dlm->reco.state, dlm->reco.new_master,
42956a7c104SKurt Hackel 		     dlm->reco.dead_node);
43056a7c104SKurt Hackel 	}
4316714d8e8SKurt Hackel 	wait_event(dlm->reco.event, !dlm_in_recovery(dlm));
4326714d8e8SKurt Hackel }
4336714d8e8SKurt Hackel 
4346714d8e8SKurt Hackel static void dlm_begin_recovery(struct dlm_ctxt *dlm)
4356714d8e8SKurt Hackel {
4366714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
4376714d8e8SKurt Hackel 	BUG_ON(dlm->reco.state & DLM_RECO_STATE_ACTIVE);
4386714d8e8SKurt Hackel 	dlm->reco.state |= DLM_RECO_STATE_ACTIVE;
4396714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
4406714d8e8SKurt Hackel }
4416714d8e8SKurt Hackel 
4426714d8e8SKurt Hackel static void dlm_end_recovery(struct dlm_ctxt *dlm)
4436714d8e8SKurt Hackel {
4446714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
4456714d8e8SKurt Hackel 	BUG_ON(!(dlm->reco.state & DLM_RECO_STATE_ACTIVE));
4466714d8e8SKurt Hackel 	dlm->reco.state &= ~DLM_RECO_STATE_ACTIVE;
4476714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
4486714d8e8SKurt Hackel 	wake_up(&dlm->reco.event);
4496714d8e8SKurt Hackel }
4506714d8e8SKurt Hackel 
4516714d8e8SKurt Hackel static int dlm_do_recovery(struct dlm_ctxt *dlm)
4526714d8e8SKurt Hackel {
4536714d8e8SKurt Hackel 	int status = 0;
454e2faea4cSKurt Hackel 	int ret;
4556714d8e8SKurt Hackel 
4566714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
4576714d8e8SKurt Hackel 
4586714d8e8SKurt Hackel 	/* check to see if the new master has died */
4596714d8e8SKurt Hackel 	if (dlm->reco.new_master != O2NM_INVALID_NODE_NUM &&
4606714d8e8SKurt Hackel 	    test_bit(dlm->reco.new_master, dlm->recovery_map)) {
4616714d8e8SKurt Hackel 		mlog(0, "new master %u died while recovering %u!\n",
4626714d8e8SKurt Hackel 		     dlm->reco.new_master, dlm->reco.dead_node);
4636714d8e8SKurt Hackel 		/* unset the new_master, leave dead_node */
464ab27eb6fSKurt Hackel 		dlm_set_reco_master(dlm, O2NM_INVALID_NODE_NUM);
4656714d8e8SKurt Hackel 	}
4666714d8e8SKurt Hackel 
4676714d8e8SKurt Hackel 	/* select a target to recover */
4686714d8e8SKurt Hackel 	if (dlm->reco.dead_node == O2NM_INVALID_NODE_NUM) {
4696714d8e8SKurt Hackel 		int bit;
4706714d8e8SKurt Hackel 
4716714d8e8SKurt Hackel 		bit = find_next_bit (dlm->recovery_map, O2NM_MAX_NODES+1, 0);
4726714d8e8SKurt Hackel 		if (bit >= O2NM_MAX_NODES || bit < 0)
473ab27eb6fSKurt Hackel 			dlm_set_reco_dead_node(dlm, O2NM_INVALID_NODE_NUM);
4746714d8e8SKurt Hackel 		else
475ab27eb6fSKurt Hackel 			dlm_set_reco_dead_node(dlm, bit);
4766714d8e8SKurt Hackel 	} else if (!test_bit(dlm->reco.dead_node, dlm->recovery_map)) {
4776714d8e8SKurt Hackel 		/* BUG? */
4786714d8e8SKurt Hackel 		mlog(ML_ERROR, "dead_node %u no longer in recovery map!\n",
4796714d8e8SKurt Hackel 		     dlm->reco.dead_node);
480ab27eb6fSKurt Hackel 		dlm_set_reco_dead_node(dlm, O2NM_INVALID_NODE_NUM);
4816714d8e8SKurt Hackel 	}
4826714d8e8SKurt Hackel 
4836714d8e8SKurt Hackel 	if (dlm->reco.dead_node == O2NM_INVALID_NODE_NUM) {
4846714d8e8SKurt Hackel 		// mlog(0, "nothing to recover!  sleeping now!\n");
4856714d8e8SKurt Hackel 		spin_unlock(&dlm->spinlock);
4866714d8e8SKurt Hackel 		/* return to main thread loop and sleep. */
4876714d8e8SKurt Hackel 		return 0;
4886714d8e8SKurt Hackel 	}
489d6dea6e9SKurt Hackel 	mlog(0, "%s(%d):recovery thread found node %u in the recovery map!\n",
490d6dea6e9SKurt Hackel 	     dlm->name, dlm->dlm_reco_thread_task->pid,
4916714d8e8SKurt Hackel 	     dlm->reco.dead_node);
4926714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
4936714d8e8SKurt Hackel 
4946714d8e8SKurt Hackel 	/* take write barrier */
4956714d8e8SKurt Hackel 	/* (stops the list reshuffling thread, proxy ast handling) */
4966714d8e8SKurt Hackel 	dlm_begin_recovery(dlm);
4976714d8e8SKurt Hackel 
4986714d8e8SKurt Hackel 	if (dlm->reco.new_master == dlm->node_num)
4996714d8e8SKurt Hackel 		goto master_here;
5006714d8e8SKurt Hackel 
5016714d8e8SKurt Hackel 	if (dlm->reco.new_master == O2NM_INVALID_NODE_NUM) {
502e2faea4cSKurt Hackel 		/* choose a new master, returns 0 if this node
503e2faea4cSKurt Hackel 		 * is the master, -EEXIST if it's another node.
504e2faea4cSKurt Hackel 		 * this does not return until a new master is chosen
505e2faea4cSKurt Hackel 		 * or recovery completes entirely. */
506e2faea4cSKurt Hackel 		ret = dlm_pick_recovery_master(dlm);
507e2faea4cSKurt Hackel 		if (!ret) {
5086714d8e8SKurt Hackel 			/* already notified everyone.  go. */
5096714d8e8SKurt Hackel 			goto master_here;
5106714d8e8SKurt Hackel 		}
5116714d8e8SKurt Hackel 		mlog(0, "another node will master this recovery session.\n");
5126714d8e8SKurt Hackel 	}
513d6dea6e9SKurt Hackel 	mlog(0, "dlm=%s (%d), new_master=%u, this node=%u, dead_node=%u\n",
514d6dea6e9SKurt Hackel 	     dlm->name, dlm->dlm_reco_thread_task->pid, dlm->reco.new_master,
5156714d8e8SKurt Hackel 	     dlm->node_num, dlm->reco.dead_node);
5166714d8e8SKurt Hackel 
5176714d8e8SKurt Hackel 	/* it is safe to start everything back up here
5186714d8e8SKurt Hackel 	 * because all of the dead node's lock resources
5196714d8e8SKurt Hackel 	 * have been marked as in-recovery */
5206714d8e8SKurt Hackel 	dlm_end_recovery(dlm);
5216714d8e8SKurt Hackel 
5226714d8e8SKurt Hackel 	/* sleep out in main dlm_recovery_thread loop. */
5236714d8e8SKurt Hackel 	return 0;
5246714d8e8SKurt Hackel 
5256714d8e8SKurt Hackel master_here:
526d6dea6e9SKurt Hackel 	mlog(0, "(%d) mastering recovery of %s:%u here(this=%u)!\n",
527d6dea6e9SKurt Hackel 	     dlm->dlm_reco_thread_task->pid,
5286714d8e8SKurt Hackel 	     dlm->name, dlm->reco.dead_node, dlm->node_num);
5296714d8e8SKurt Hackel 
5306714d8e8SKurt Hackel 	status = dlm_remaster_locks(dlm, dlm->reco.dead_node);
5316714d8e8SKurt Hackel 	if (status < 0) {
5326a413211SKurt Hackel 		/* we should never hit this anymore */
5336714d8e8SKurt Hackel 		mlog(ML_ERROR, "error %d remastering locks for node %u, "
5346714d8e8SKurt Hackel 		     "retrying.\n", status, dlm->reco.dead_node);
535e2faea4cSKurt Hackel 		/* yield a bit to allow any final network messages
536e2faea4cSKurt Hackel 		 * to get handled on remaining nodes */
537e2faea4cSKurt Hackel 		msleep(100);
5386714d8e8SKurt Hackel 	} else {
5396714d8e8SKurt Hackel 		/* success!  see if any other nodes need recovery */
540e2faea4cSKurt Hackel 		mlog(0, "DONE mastering recovery of %s:%u here(this=%u)!\n",
541e2faea4cSKurt Hackel 		     dlm->name, dlm->reco.dead_node, dlm->node_num);
5426714d8e8SKurt Hackel 		dlm_reset_recovery(dlm);
5436714d8e8SKurt Hackel 	}
5446714d8e8SKurt Hackel 	dlm_end_recovery(dlm);
5456714d8e8SKurt Hackel 
5466714d8e8SKurt Hackel 	/* continue and look for another dead node */
5476714d8e8SKurt Hackel 	return -EAGAIN;
5486714d8e8SKurt Hackel }
5496714d8e8SKurt Hackel 
5506714d8e8SKurt Hackel static int dlm_remaster_locks(struct dlm_ctxt *dlm, u8 dead_node)
5516714d8e8SKurt Hackel {
5526714d8e8SKurt Hackel 	int status = 0;
5536714d8e8SKurt Hackel 	struct dlm_reco_node_data *ndata;
5546714d8e8SKurt Hackel 	struct list_head *iter;
5556714d8e8SKurt Hackel 	int all_nodes_done;
5566714d8e8SKurt Hackel 	int destroy = 0;
5576714d8e8SKurt Hackel 	int pass = 0;
5586714d8e8SKurt Hackel 
5596a413211SKurt Hackel 	do {
5606a413211SKurt Hackel 		/* we have become recovery master.  there is no escaping
5616a413211SKurt Hackel 		 * this, so just keep trying until we get it. */
5626714d8e8SKurt Hackel 		status = dlm_init_recovery_area(dlm, dead_node);
5636a413211SKurt Hackel 		if (status < 0) {
5646a413211SKurt Hackel 			mlog(ML_ERROR, "%s: failed to alloc recovery area, "
5656a413211SKurt Hackel 			     "retrying\n", dlm->name);
5666a413211SKurt Hackel 			msleep(1000);
5676a413211SKurt Hackel 		}
5686a413211SKurt Hackel 	} while (status != 0);
5696714d8e8SKurt Hackel 
5706714d8e8SKurt Hackel 	/* safe to access the node data list without a lock, since this
5716714d8e8SKurt Hackel 	 * process is the only one to change the list */
5726714d8e8SKurt Hackel 	list_for_each(iter, &dlm->reco.node_data) {
5736714d8e8SKurt Hackel 		ndata = list_entry (iter, struct dlm_reco_node_data, list);
5746714d8e8SKurt Hackel 		BUG_ON(ndata->state != DLM_RECO_NODE_DATA_INIT);
5756714d8e8SKurt Hackel 		ndata->state = DLM_RECO_NODE_DATA_REQUESTING;
5766714d8e8SKurt Hackel 
5776714d8e8SKurt Hackel 		mlog(0, "requesting lock info from node %u\n",
5786714d8e8SKurt Hackel 		     ndata->node_num);
5796714d8e8SKurt Hackel 
5806714d8e8SKurt Hackel 		if (ndata->node_num == dlm->node_num) {
5816714d8e8SKurt Hackel 			ndata->state = DLM_RECO_NODE_DATA_DONE;
5826714d8e8SKurt Hackel 			continue;
5836714d8e8SKurt Hackel 		}
5846714d8e8SKurt Hackel 
5856a413211SKurt Hackel 		do {
5866a413211SKurt Hackel 			status = dlm_request_all_locks(dlm, ndata->node_num,
5876a413211SKurt Hackel 						       dead_node);
5886714d8e8SKurt Hackel 			if (status < 0) {
5896714d8e8SKurt Hackel 				mlog_errno(status);
5906a413211SKurt Hackel 				if (dlm_is_host_down(status)) {
5916a413211SKurt Hackel 					/* node died, ignore it for recovery */
5926a413211SKurt Hackel 					status = 0;
5936714d8e8SKurt Hackel 					ndata->state = DLM_RECO_NODE_DATA_DEAD;
5946a413211SKurt Hackel 					/* wait for the domain map to catch up
5956a413211SKurt Hackel 					 * with the network state. */
5966a413211SKurt Hackel 					wait_event_timeout(dlm->dlm_reco_thread_wq,
5976a413211SKurt Hackel 							   dlm_is_node_dead(dlm,
5986a413211SKurt Hackel 								ndata->node_num),
5996a413211SKurt Hackel 							   msecs_to_jiffies(1000));
6006a413211SKurt Hackel 					mlog(0, "waited 1 sec for %u, "
6016a413211SKurt Hackel 					     "dead? %s\n", ndata->node_num,
6026a413211SKurt Hackel 					     dlm_is_node_dead(dlm, ndata->node_num) ?
6036a413211SKurt Hackel 					     "yes" : "no");
6046a413211SKurt Hackel 				} else {
6056a413211SKurt Hackel 					/* -ENOMEM on the other node */
6066a413211SKurt Hackel 					mlog(0, "%s: node %u returned "
6076a413211SKurt Hackel 					     "%d during recovery, retrying "
6086a413211SKurt Hackel 					     "after a short wait\n",
6096a413211SKurt Hackel 					     dlm->name, ndata->node_num,
6106a413211SKurt Hackel 					     status);
6116a413211SKurt Hackel 					msleep(100);
6126714d8e8SKurt Hackel 				}
6136714d8e8SKurt Hackel 			}
6146a413211SKurt Hackel 		} while (status != 0);
6156714d8e8SKurt Hackel 
6166714d8e8SKurt Hackel 		switch (ndata->state) {
6176714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_INIT:
6186714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_FINALIZE_SENT:
6196714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_REQUESTED:
6206714d8e8SKurt Hackel 				BUG();
6216714d8e8SKurt Hackel 				break;
6226714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_DEAD:
6236714d8e8SKurt Hackel 				mlog(0, "node %u died after requesting "
6246714d8e8SKurt Hackel 				     "recovery info for node %u\n",
6256714d8e8SKurt Hackel 				     ndata->node_num, dead_node);
6266a413211SKurt Hackel 				/* fine.  don't need this node's info.
6276a413211SKurt Hackel 				 * continue without it. */
6286a413211SKurt Hackel 				break;
6296714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_REQUESTING:
6306714d8e8SKurt Hackel 				ndata->state = DLM_RECO_NODE_DATA_REQUESTED;
6316714d8e8SKurt Hackel 				mlog(0, "now receiving recovery data from "
6326714d8e8SKurt Hackel 				     "node %u for dead node %u\n",
6336714d8e8SKurt Hackel 				     ndata->node_num, dead_node);
6346714d8e8SKurt Hackel 				break;
6356714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_RECEIVING:
6366714d8e8SKurt Hackel 				mlog(0, "already receiving recovery data from "
6376714d8e8SKurt Hackel 				     "node %u for dead node %u\n",
6386714d8e8SKurt Hackel 				     ndata->node_num, dead_node);
6396714d8e8SKurt Hackel 				break;
6406714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_DONE:
6416714d8e8SKurt Hackel 				mlog(0, "already DONE receiving recovery data "
6426714d8e8SKurt Hackel 				     "from node %u for dead node %u\n",
6436714d8e8SKurt Hackel 				     ndata->node_num, dead_node);
6446714d8e8SKurt Hackel 				break;
6456714d8e8SKurt Hackel 		}
6466714d8e8SKurt Hackel 	}
6476714d8e8SKurt Hackel 
6486714d8e8SKurt Hackel 	mlog(0, "done requesting all lock info\n");
6496714d8e8SKurt Hackel 
6506714d8e8SKurt Hackel 	/* nodes should be sending reco data now
6516714d8e8SKurt Hackel 	 * just need to wait */
6526714d8e8SKurt Hackel 
6536714d8e8SKurt Hackel 	while (1) {
6546714d8e8SKurt Hackel 		/* check all the nodes now to see if we are
6556714d8e8SKurt Hackel 		 * done, or if anyone died */
6566714d8e8SKurt Hackel 		all_nodes_done = 1;
6576714d8e8SKurt Hackel 		spin_lock(&dlm_reco_state_lock);
6586714d8e8SKurt Hackel 		list_for_each(iter, &dlm->reco.node_data) {
6596714d8e8SKurt Hackel 			ndata = list_entry (iter, struct dlm_reco_node_data, list);
6606714d8e8SKurt Hackel 
6616714d8e8SKurt Hackel 			mlog(0, "checking recovery state of node %u\n",
6626714d8e8SKurt Hackel 			     ndata->node_num);
6636714d8e8SKurt Hackel 			switch (ndata->state) {
6646714d8e8SKurt Hackel 				case DLM_RECO_NODE_DATA_INIT:
6656714d8e8SKurt Hackel 				case DLM_RECO_NODE_DATA_REQUESTING:
6666714d8e8SKurt Hackel 					mlog(ML_ERROR, "bad ndata state for "
6676714d8e8SKurt Hackel 					     "node %u: state=%d\n",
6686714d8e8SKurt Hackel 					     ndata->node_num, ndata->state);
6696714d8e8SKurt Hackel 					BUG();
6706714d8e8SKurt Hackel 					break;
6716714d8e8SKurt Hackel 				case DLM_RECO_NODE_DATA_DEAD:
6726a413211SKurt Hackel 					mlog(0, "node %u died after "
6736714d8e8SKurt Hackel 					     "requesting recovery info for "
6746714d8e8SKurt Hackel 					     "node %u\n", ndata->node_num,
6756714d8e8SKurt Hackel 					     dead_node);
6766a413211SKurt Hackel 					break;
6776714d8e8SKurt Hackel 				case DLM_RECO_NODE_DATA_RECEIVING:
6786714d8e8SKurt Hackel 				case DLM_RECO_NODE_DATA_REQUESTED:
679d6dea6e9SKurt Hackel 					mlog(0, "%s: node %u still in state %s\n",
680d6dea6e9SKurt Hackel 					     dlm->name, ndata->node_num,
681d6dea6e9SKurt Hackel 					     ndata->state==DLM_RECO_NODE_DATA_RECEIVING ?
682d6dea6e9SKurt Hackel 					     "receiving" : "requested");
6836714d8e8SKurt Hackel 					all_nodes_done = 0;
6846714d8e8SKurt Hackel 					break;
6856714d8e8SKurt Hackel 				case DLM_RECO_NODE_DATA_DONE:
686d6dea6e9SKurt Hackel 					mlog(0, "%s: node %u state is done\n",
687d6dea6e9SKurt Hackel 					     dlm->name, ndata->node_num);
6886714d8e8SKurt Hackel 					break;
6896714d8e8SKurt Hackel 				case DLM_RECO_NODE_DATA_FINALIZE_SENT:
690d6dea6e9SKurt Hackel 					mlog(0, "%s: node %u state is finalize\n",
691d6dea6e9SKurt Hackel 					     dlm->name, ndata->node_num);
6926714d8e8SKurt Hackel 					break;
6936714d8e8SKurt Hackel 			}
6946714d8e8SKurt Hackel 		}
6956714d8e8SKurt Hackel 		spin_unlock(&dlm_reco_state_lock);
6966714d8e8SKurt Hackel 
6976714d8e8SKurt Hackel 		mlog(0, "pass #%d, all_nodes_done?: %s\n", ++pass,
6986714d8e8SKurt Hackel 		     all_nodes_done?"yes":"no");
6996714d8e8SKurt Hackel 		if (all_nodes_done) {
7006714d8e8SKurt Hackel 			int ret;
7016714d8e8SKurt Hackel 
7026714d8e8SKurt Hackel 			/* all nodes are now in DLM_RECO_NODE_DATA_DONE state
7036714d8e8SKurt Hackel 	 		 * just send a finalize message to everyone and
7046714d8e8SKurt Hackel 	 		 * clean up */
7056714d8e8SKurt Hackel 			mlog(0, "all nodes are done! send finalize\n");
7066714d8e8SKurt Hackel 			ret = dlm_send_finalize_reco_message(dlm);
7076714d8e8SKurt Hackel 			if (ret < 0)
7086714d8e8SKurt Hackel 				mlog_errno(ret);
7096714d8e8SKurt Hackel 
7106714d8e8SKurt Hackel 			spin_lock(&dlm->spinlock);
7116714d8e8SKurt Hackel 			dlm_finish_local_lockres_recovery(dlm, dead_node,
7126714d8e8SKurt Hackel 							  dlm->node_num);
7136714d8e8SKurt Hackel 			spin_unlock(&dlm->spinlock);
7146714d8e8SKurt Hackel 			mlog(0, "should be done with recovery!\n");
7156714d8e8SKurt Hackel 
7166714d8e8SKurt Hackel 			mlog(0, "finishing recovery of %s at %lu, "
7176714d8e8SKurt Hackel 			     "dead=%u, this=%u, new=%u\n", dlm->name,
7186714d8e8SKurt Hackel 			     jiffies, dlm->reco.dead_node,
7196714d8e8SKurt Hackel 			     dlm->node_num, dlm->reco.new_master);
7206714d8e8SKurt Hackel 			destroy = 1;
7216a413211SKurt Hackel 			status = 0;
7226714d8e8SKurt Hackel 			/* rescan everything marked dirty along the way */
7236714d8e8SKurt Hackel 			dlm_kick_thread(dlm, NULL);
7246714d8e8SKurt Hackel 			break;
7256714d8e8SKurt Hackel 		}
7266714d8e8SKurt Hackel 		/* wait to be signalled, with periodic timeout
7276714d8e8SKurt Hackel 		 * to check for node death */
7286714d8e8SKurt Hackel 		wait_event_interruptible_timeout(dlm->dlm_reco_thread_wq,
7296714d8e8SKurt Hackel 					 kthread_should_stop(),
7306714d8e8SKurt Hackel 					 msecs_to_jiffies(DLM_RECO_THREAD_TIMEOUT_MS));
7316714d8e8SKurt Hackel 
7326714d8e8SKurt Hackel 	}
7336714d8e8SKurt Hackel 
7346714d8e8SKurt Hackel 	if (destroy)
7356714d8e8SKurt Hackel 		dlm_destroy_recovery_area(dlm, dead_node);
7366714d8e8SKurt Hackel 
7376714d8e8SKurt Hackel 	mlog_exit(status);
7386714d8e8SKurt Hackel 	return status;
7396714d8e8SKurt Hackel }
7406714d8e8SKurt Hackel 
7416714d8e8SKurt Hackel static int dlm_init_recovery_area(struct dlm_ctxt *dlm, u8 dead_node)
7426714d8e8SKurt Hackel {
7436714d8e8SKurt Hackel 	int num=0;
7446714d8e8SKurt Hackel 	struct dlm_reco_node_data *ndata;
7456714d8e8SKurt Hackel 
7466714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
7476714d8e8SKurt Hackel 	memcpy(dlm->reco.node_map, dlm->domain_map, sizeof(dlm->domain_map));
7486714d8e8SKurt Hackel 	/* nodes can only be removed (by dying) after dropping
7496714d8e8SKurt Hackel 	 * this lock, and death will be trapped later, so this should do */
7506714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
7516714d8e8SKurt Hackel 
7526714d8e8SKurt Hackel 	while (1) {
7536714d8e8SKurt Hackel 		num = find_next_bit (dlm->reco.node_map, O2NM_MAX_NODES, num);
7546714d8e8SKurt Hackel 		if (num >= O2NM_MAX_NODES) {
7556714d8e8SKurt Hackel 			break;
7566714d8e8SKurt Hackel 		}
7576714d8e8SKurt Hackel 		BUG_ON(num == dead_node);
7586714d8e8SKurt Hackel 
759ad8100e0SKurt Hackel 		ndata = kcalloc(1, sizeof(*ndata), GFP_NOFS);
7606714d8e8SKurt Hackel 		if (!ndata) {
7616714d8e8SKurt Hackel 			dlm_destroy_recovery_area(dlm, dead_node);
7626714d8e8SKurt Hackel 			return -ENOMEM;
7636714d8e8SKurt Hackel 		}
7646714d8e8SKurt Hackel 		ndata->node_num = num;
7656714d8e8SKurt Hackel 		ndata->state = DLM_RECO_NODE_DATA_INIT;
7666714d8e8SKurt Hackel 		spin_lock(&dlm_reco_state_lock);
7676714d8e8SKurt Hackel 		list_add_tail(&ndata->list, &dlm->reco.node_data);
7686714d8e8SKurt Hackel 		spin_unlock(&dlm_reco_state_lock);
7696714d8e8SKurt Hackel 		num++;
7706714d8e8SKurt Hackel 	}
7716714d8e8SKurt Hackel 
7726714d8e8SKurt Hackel 	return 0;
7736714d8e8SKurt Hackel }
7746714d8e8SKurt Hackel 
7756714d8e8SKurt Hackel static void dlm_destroy_recovery_area(struct dlm_ctxt *dlm, u8 dead_node)
7766714d8e8SKurt Hackel {
7776714d8e8SKurt Hackel 	struct list_head *iter, *iter2;
7786714d8e8SKurt Hackel 	struct dlm_reco_node_data *ndata;
7796714d8e8SKurt Hackel 	LIST_HEAD(tmplist);
7806714d8e8SKurt Hackel 
7816714d8e8SKurt Hackel 	spin_lock(&dlm_reco_state_lock);
7826714d8e8SKurt Hackel 	list_splice_init(&dlm->reco.node_data, &tmplist);
7836714d8e8SKurt Hackel 	spin_unlock(&dlm_reco_state_lock);
7846714d8e8SKurt Hackel 
7856714d8e8SKurt Hackel 	list_for_each_safe(iter, iter2, &tmplist) {
7866714d8e8SKurt Hackel 		ndata = list_entry (iter, struct dlm_reco_node_data, list);
7876714d8e8SKurt Hackel 		list_del_init(&ndata->list);
7886714d8e8SKurt Hackel 		kfree(ndata);
7896714d8e8SKurt Hackel 	}
7906714d8e8SKurt Hackel }
7916714d8e8SKurt Hackel 
7926714d8e8SKurt Hackel static int dlm_request_all_locks(struct dlm_ctxt *dlm, u8 request_from,
7936714d8e8SKurt Hackel 				 u8 dead_node)
7946714d8e8SKurt Hackel {
7956714d8e8SKurt Hackel 	struct dlm_lock_request lr;
7966714d8e8SKurt Hackel 	enum dlm_status ret;
7976714d8e8SKurt Hackel 
7986714d8e8SKurt Hackel 	mlog(0, "\n");
7996714d8e8SKurt Hackel 
8006714d8e8SKurt Hackel 
8016714d8e8SKurt Hackel 	mlog(0, "dlm_request_all_locks: dead node is %u, sending request "
8026714d8e8SKurt Hackel 		  "to %u\n", dead_node, request_from);
8036714d8e8SKurt Hackel 
8046714d8e8SKurt Hackel 	memset(&lr, 0, sizeof(lr));
8056714d8e8SKurt Hackel 	lr.node_idx = dlm->node_num;
8066714d8e8SKurt Hackel 	lr.dead_node = dead_node;
8076714d8e8SKurt Hackel 
8086714d8e8SKurt Hackel 	// send message
8096714d8e8SKurt Hackel 	ret = DLM_NOLOCKMGR;
8106714d8e8SKurt Hackel 	ret = o2net_send_message(DLM_LOCK_REQUEST_MSG, dlm->key,
8116714d8e8SKurt Hackel 				 &lr, sizeof(lr), request_from, NULL);
8126714d8e8SKurt Hackel 
8136714d8e8SKurt Hackel 	/* negative status is handled by caller */
8146714d8e8SKurt Hackel 	if (ret < 0)
8156714d8e8SKurt Hackel 		mlog_errno(ret);
8166714d8e8SKurt Hackel 
8176714d8e8SKurt Hackel 	// return from here, then
8186714d8e8SKurt Hackel 	// sleep until all received or error
8196714d8e8SKurt Hackel 	return ret;
8206714d8e8SKurt Hackel 
8216714d8e8SKurt Hackel }
8226714d8e8SKurt Hackel 
8236714d8e8SKurt Hackel int dlm_request_all_locks_handler(struct o2net_msg *msg, u32 len, void *data)
8246714d8e8SKurt Hackel {
8256714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
8266714d8e8SKurt Hackel 	struct dlm_lock_request *lr = (struct dlm_lock_request *)msg->buf;
8276714d8e8SKurt Hackel 	char *buf = NULL;
8286714d8e8SKurt Hackel 	struct dlm_work_item *item = NULL;
8296714d8e8SKurt Hackel 
8306714d8e8SKurt Hackel 	if (!dlm_grab(dlm))
8316714d8e8SKurt Hackel 		return -EINVAL;
8326714d8e8SKurt Hackel 
833c3187ce5SKurt Hackel 	if (lr->dead_node != dlm->reco.dead_node) {
834c3187ce5SKurt Hackel 		mlog(ML_ERROR, "%s: node %u sent dead_node=%u, but local "
835c3187ce5SKurt Hackel 		     "dead_node is %u\n", dlm->name, lr->node_idx,
836c3187ce5SKurt Hackel 		     lr->dead_node, dlm->reco.dead_node);
837d6dea6e9SKurt Hackel 		dlm_print_reco_node_status(dlm);
838c3187ce5SKurt Hackel 		/* this is a hack */
839c3187ce5SKurt Hackel 		dlm_put(dlm);
840c3187ce5SKurt Hackel 		return -ENOMEM;
841c3187ce5SKurt Hackel 	}
8426714d8e8SKurt Hackel 	BUG_ON(lr->dead_node != dlm->reco.dead_node);
8436714d8e8SKurt Hackel 
844ad8100e0SKurt Hackel 	item = kcalloc(1, sizeof(*item), GFP_NOFS);
8456714d8e8SKurt Hackel 	if (!item) {
8466714d8e8SKurt Hackel 		dlm_put(dlm);
8476714d8e8SKurt Hackel 		return -ENOMEM;
8486714d8e8SKurt Hackel 	}
8496714d8e8SKurt Hackel 
8506714d8e8SKurt Hackel 	/* this will get freed by dlm_request_all_locks_worker */
851ad8100e0SKurt Hackel 	buf = (char *) __get_free_page(GFP_NOFS);
8526714d8e8SKurt Hackel 	if (!buf) {
8536714d8e8SKurt Hackel 		kfree(item);
8546714d8e8SKurt Hackel 		dlm_put(dlm);
8556714d8e8SKurt Hackel 		return -ENOMEM;
8566714d8e8SKurt Hackel 	}
8576714d8e8SKurt Hackel 
8586714d8e8SKurt Hackel 	/* queue up work for dlm_request_all_locks_worker */
8596714d8e8SKurt Hackel 	dlm_grab(dlm);  /* get an extra ref for the work item */
8606714d8e8SKurt Hackel 	dlm_init_work_item(dlm, item, dlm_request_all_locks_worker, buf);
8616714d8e8SKurt Hackel 	item->u.ral.reco_master = lr->node_idx;
8626714d8e8SKurt Hackel 	item->u.ral.dead_node = lr->dead_node;
8636714d8e8SKurt Hackel 	spin_lock(&dlm->work_lock);
8646714d8e8SKurt Hackel 	list_add_tail(&item->list, &dlm->work_list);
8656714d8e8SKurt Hackel 	spin_unlock(&dlm->work_lock);
8663156d267SKurt Hackel 	queue_work(dlm->dlm_worker, &dlm->dispatched_work);
8676714d8e8SKurt Hackel 
8686714d8e8SKurt Hackel 	dlm_put(dlm);
8696714d8e8SKurt Hackel 	return 0;
8706714d8e8SKurt Hackel }
8716714d8e8SKurt Hackel 
8726714d8e8SKurt Hackel static void dlm_request_all_locks_worker(struct dlm_work_item *item, void *data)
8736714d8e8SKurt Hackel {
8746714d8e8SKurt Hackel 	struct dlm_migratable_lockres *mres;
8756714d8e8SKurt Hackel 	struct dlm_lock_resource *res;
8766714d8e8SKurt Hackel 	struct dlm_ctxt *dlm;
8776714d8e8SKurt Hackel 	LIST_HEAD(resources);
8786714d8e8SKurt Hackel 	struct list_head *iter;
8796714d8e8SKurt Hackel 	int ret;
8806714d8e8SKurt Hackel 	u8 dead_node, reco_master;
88129c0fa0fSKurt Hackel 	int skip_all_done = 0;
8826714d8e8SKurt Hackel 
8836714d8e8SKurt Hackel 	dlm = item->dlm;
8846714d8e8SKurt Hackel 	dead_node = item->u.ral.dead_node;
8856714d8e8SKurt Hackel 	reco_master = item->u.ral.reco_master;
886e2faea4cSKurt Hackel 	mres = (struct dlm_migratable_lockres *)data;
887e2faea4cSKurt Hackel 
888d6dea6e9SKurt Hackel 	mlog(0, "%s: recovery worker started, dead=%u, master=%u\n",
889d6dea6e9SKurt Hackel 	     dlm->name, dead_node, reco_master);
890d6dea6e9SKurt Hackel 
891e2faea4cSKurt Hackel 	if (dead_node != dlm->reco.dead_node ||
892e2faea4cSKurt Hackel 	    reco_master != dlm->reco.new_master) {
8936a413211SKurt Hackel 		/* worker could have been created before the recovery master
8946a413211SKurt Hackel 		 * died.  if so, do not continue, but do not error. */
8956a413211SKurt Hackel 		if (dlm->reco.new_master == O2NM_INVALID_NODE_NUM) {
8966a413211SKurt Hackel 			mlog(ML_NOTICE, "%s: will not send recovery state, "
8976a413211SKurt Hackel 			     "recovery master %u died, thread=(dead=%u,mas=%u)"
8986a413211SKurt Hackel 			     " current=(dead=%u,mas=%u)\n", dlm->name,
8996a413211SKurt Hackel 			     reco_master, dead_node, reco_master,
9006a413211SKurt Hackel 			     dlm->reco.dead_node, dlm->reco.new_master);
9016a413211SKurt Hackel 		} else {
9026a413211SKurt Hackel 			mlog(ML_NOTICE, "%s: reco state invalid: reco(dead=%u, "
9036a413211SKurt Hackel 			     "master=%u), request(dead=%u, master=%u)\n",
9046a413211SKurt Hackel 			     dlm->name, dlm->reco.dead_node,
9056a413211SKurt Hackel 			     dlm->reco.new_master, dead_node, reco_master);
906e2faea4cSKurt Hackel 		}
9076a413211SKurt Hackel 		goto leave;
9086a413211SKurt Hackel 	}
9096714d8e8SKurt Hackel 
9106714d8e8SKurt Hackel 	/* lock resources should have already been moved to the
9116714d8e8SKurt Hackel  	 * dlm->reco.resources list.  now move items from that list
9126714d8e8SKurt Hackel  	 * to a temp list if the dead owner matches.  note that the
9136714d8e8SKurt Hackel 	 * whole cluster recovers only one node at a time, so we
9146714d8e8SKurt Hackel 	 * can safely move UNKNOWN lock resources for each recovery
9156714d8e8SKurt Hackel 	 * session. */
9166714d8e8SKurt Hackel 	dlm_move_reco_locks_to_list(dlm, &resources, dead_node);
9176714d8e8SKurt Hackel 
9186714d8e8SKurt Hackel 	/* now we can begin blasting lockreses without the dlm lock */
91929c0fa0fSKurt Hackel 
92029c0fa0fSKurt Hackel 	/* any errors returned will be due to the new_master dying,
92129c0fa0fSKurt Hackel 	 * the dlm_reco_thread should detect this */
9226714d8e8SKurt Hackel 	list_for_each(iter, &resources) {
9236714d8e8SKurt Hackel 		res = list_entry (iter, struct dlm_lock_resource, recovering);
9246714d8e8SKurt Hackel 		ret = dlm_send_one_lockres(dlm, res, mres, reco_master,
9256714d8e8SKurt Hackel 				   	DLM_MRES_RECOVERY);
92629c0fa0fSKurt Hackel 		if (ret < 0) {
927d6dea6e9SKurt Hackel 			mlog(ML_ERROR, "%s: node %u went down while sending "
928d6dea6e9SKurt Hackel 			     "recovery state for dead node %u, ret=%d\n", dlm->name,
929d6dea6e9SKurt Hackel 			     reco_master, dead_node, ret);
93029c0fa0fSKurt Hackel 			skip_all_done = 1;
93129c0fa0fSKurt Hackel 			break;
93229c0fa0fSKurt Hackel 		}
9336714d8e8SKurt Hackel 	}
9346714d8e8SKurt Hackel 
9356714d8e8SKurt Hackel 	/* move the resources back to the list */
9366714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
9376714d8e8SKurt Hackel 	list_splice_init(&resources, &dlm->reco.resources);
9386714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
9396714d8e8SKurt Hackel 
94029c0fa0fSKurt Hackel 	if (!skip_all_done) {
9416714d8e8SKurt Hackel 		ret = dlm_send_all_done_msg(dlm, dead_node, reco_master);
94229c0fa0fSKurt Hackel 		if (ret < 0) {
943d6dea6e9SKurt Hackel 			mlog(ML_ERROR, "%s: node %u went down while sending "
944d6dea6e9SKurt Hackel 			     "recovery all-done for dead node %u, ret=%d\n",
945d6dea6e9SKurt Hackel 			     dlm->name, reco_master, dead_node, ret);
94629c0fa0fSKurt Hackel 		}
94729c0fa0fSKurt Hackel 	}
9486a413211SKurt Hackel leave:
9496714d8e8SKurt Hackel 	free_page((unsigned long)data);
9506714d8e8SKurt Hackel }
9516714d8e8SKurt Hackel 
9526714d8e8SKurt Hackel 
9536714d8e8SKurt Hackel static int dlm_send_all_done_msg(struct dlm_ctxt *dlm, u8 dead_node, u8 send_to)
9546714d8e8SKurt Hackel {
9556714d8e8SKurt Hackel 	int ret, tmpret;
9566714d8e8SKurt Hackel 	struct dlm_reco_data_done done_msg;
9576714d8e8SKurt Hackel 
9586714d8e8SKurt Hackel 	memset(&done_msg, 0, sizeof(done_msg));
9596714d8e8SKurt Hackel 	done_msg.node_idx = dlm->node_num;
9606714d8e8SKurt Hackel 	done_msg.dead_node = dead_node;
9616714d8e8SKurt Hackel 	mlog(0, "sending DATA DONE message to %u, "
9626714d8e8SKurt Hackel 	     "my node=%u, dead node=%u\n", send_to, done_msg.node_idx,
9636714d8e8SKurt Hackel 	     done_msg.dead_node);
9646714d8e8SKurt Hackel 
9656714d8e8SKurt Hackel 	ret = o2net_send_message(DLM_RECO_DATA_DONE_MSG, dlm->key, &done_msg,
9666714d8e8SKurt Hackel 				 sizeof(done_msg), send_to, &tmpret);
96729c0fa0fSKurt Hackel 	if (ret < 0) {
96829c0fa0fSKurt Hackel 		if (!dlm_is_host_down(ret)) {
96929c0fa0fSKurt Hackel 			mlog_errno(ret);
97029c0fa0fSKurt Hackel 			mlog(ML_ERROR, "%s: unknown error sending data-done "
97129c0fa0fSKurt Hackel 			     "to %u\n", dlm->name, send_to);
97229c0fa0fSKurt Hackel 			BUG();
97329c0fa0fSKurt Hackel 		}
97429c0fa0fSKurt Hackel 	} else
9756714d8e8SKurt Hackel 		ret = tmpret;
9766714d8e8SKurt Hackel 	return ret;
9776714d8e8SKurt Hackel }
9786714d8e8SKurt Hackel 
9796714d8e8SKurt Hackel 
9806714d8e8SKurt Hackel int dlm_reco_data_done_handler(struct o2net_msg *msg, u32 len, void *data)
9816714d8e8SKurt Hackel {
9826714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
9836714d8e8SKurt Hackel 	struct dlm_reco_data_done *done = (struct dlm_reco_data_done *)msg->buf;
9846714d8e8SKurt Hackel 	struct list_head *iter;
9856714d8e8SKurt Hackel 	struct dlm_reco_node_data *ndata = NULL;
9866714d8e8SKurt Hackel 	int ret = -EINVAL;
9876714d8e8SKurt Hackel 
9886714d8e8SKurt Hackel 	if (!dlm_grab(dlm))
9896714d8e8SKurt Hackel 		return -EINVAL;
9906714d8e8SKurt Hackel 
9916714d8e8SKurt Hackel 	mlog(0, "got DATA DONE: dead_node=%u, reco.dead_node=%u, "
9926714d8e8SKurt Hackel 	     "node_idx=%u, this node=%u\n", done->dead_node,
9936714d8e8SKurt Hackel 	     dlm->reco.dead_node, done->node_idx, dlm->node_num);
994d6dea6e9SKurt Hackel 
995d6dea6e9SKurt Hackel 	mlog_bug_on_msg((done->dead_node != dlm->reco.dead_node),
996d6dea6e9SKurt Hackel 			"Got DATA DONE: dead_node=%u, reco.dead_node=%u, "
997d6dea6e9SKurt Hackel 			"node_idx=%u, this node=%u\n", done->dead_node,
998d6dea6e9SKurt Hackel 			dlm->reco.dead_node, done->node_idx, dlm->node_num);
9996714d8e8SKurt Hackel 
10006714d8e8SKurt Hackel 	spin_lock(&dlm_reco_state_lock);
10016714d8e8SKurt Hackel 	list_for_each(iter, &dlm->reco.node_data) {
10026714d8e8SKurt Hackel 		ndata = list_entry (iter, struct dlm_reco_node_data, list);
10036714d8e8SKurt Hackel 		if (ndata->node_num != done->node_idx)
10046714d8e8SKurt Hackel 			continue;
10056714d8e8SKurt Hackel 
10066714d8e8SKurt Hackel 		switch (ndata->state) {
1007e2faea4cSKurt Hackel 			/* should have moved beyond INIT but not to FINALIZE yet */
10086714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_INIT:
10096714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_DEAD:
10106714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_FINALIZE_SENT:
10116714d8e8SKurt Hackel 				mlog(ML_ERROR, "bad ndata state for node %u:"
10126714d8e8SKurt Hackel 				     " state=%d\n", ndata->node_num,
10136714d8e8SKurt Hackel 				     ndata->state);
10146714d8e8SKurt Hackel 				BUG();
10156714d8e8SKurt Hackel 				break;
1016e2faea4cSKurt Hackel 			/* these states are possible at this point, anywhere along
1017e2faea4cSKurt Hackel 			 * the line of recovery */
1018e2faea4cSKurt Hackel 			case DLM_RECO_NODE_DATA_DONE:
10196714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_RECEIVING:
10206714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_REQUESTED:
10216714d8e8SKurt Hackel 			case DLM_RECO_NODE_DATA_REQUESTING:
10226714d8e8SKurt Hackel 				mlog(0, "node %u is DONE sending "
10236714d8e8SKurt Hackel 					  "recovery data!\n",
10246714d8e8SKurt Hackel 					  ndata->node_num);
10256714d8e8SKurt Hackel 
10266714d8e8SKurt Hackel 				ndata->state = DLM_RECO_NODE_DATA_DONE;
10276714d8e8SKurt Hackel 				ret = 0;
10286714d8e8SKurt Hackel 				break;
10296714d8e8SKurt Hackel 		}
10306714d8e8SKurt Hackel 	}
10316714d8e8SKurt Hackel 	spin_unlock(&dlm_reco_state_lock);
10326714d8e8SKurt Hackel 
10336714d8e8SKurt Hackel 	/* wake the recovery thread, some node is done */
10346714d8e8SKurt Hackel 	if (!ret)
10356714d8e8SKurt Hackel 		dlm_kick_recovery_thread(dlm);
10366714d8e8SKurt Hackel 
10376714d8e8SKurt Hackel 	if (ret < 0)
10386714d8e8SKurt Hackel 		mlog(ML_ERROR, "failed to find recovery node data for node "
10396714d8e8SKurt Hackel 		     "%u\n", done->node_idx);
10406714d8e8SKurt Hackel 	dlm_put(dlm);
10416714d8e8SKurt Hackel 
10426714d8e8SKurt Hackel 	mlog(0, "leaving reco data done handler, ret=%d\n", ret);
10436714d8e8SKurt Hackel 	return ret;
10446714d8e8SKurt Hackel }
10456714d8e8SKurt Hackel 
10466714d8e8SKurt Hackel static void dlm_move_reco_locks_to_list(struct dlm_ctxt *dlm,
10476714d8e8SKurt Hackel 					struct list_head *list,
10486714d8e8SKurt Hackel 				       	u8 dead_node)
10496714d8e8SKurt Hackel {
10506714d8e8SKurt Hackel 	struct dlm_lock_resource *res;
10516714d8e8SKurt Hackel 	struct list_head *iter, *iter2;
1052e2faea4cSKurt Hackel 	struct dlm_lock *lock;
10536714d8e8SKurt Hackel 
10546714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
10556714d8e8SKurt Hackel 	list_for_each_safe(iter, iter2, &dlm->reco.resources) {
10566714d8e8SKurt Hackel 		res = list_entry (iter, struct dlm_lock_resource, recovering);
1057e2faea4cSKurt Hackel 		/* always prune any $RECOVERY entries for dead nodes,
1058e2faea4cSKurt Hackel 		 * otherwise hangs can occur during later recovery */
10596714d8e8SKurt Hackel 		if (dlm_is_recovery_lock(res->lockname.name,
1060e2faea4cSKurt Hackel 					 res->lockname.len)) {
1061e2faea4cSKurt Hackel 			spin_lock(&res->spinlock);
1062e2faea4cSKurt Hackel 			list_for_each_entry(lock, &res->granted, list) {
1063e2faea4cSKurt Hackel 				if (lock->ml.node == dead_node) {
1064e2faea4cSKurt Hackel 					mlog(0, "AHA! there was "
1065e2faea4cSKurt Hackel 					     "a $RECOVERY lock for dead "
1066e2faea4cSKurt Hackel 					     "node %u (%s)!\n",
1067e2faea4cSKurt Hackel 					     dead_node, dlm->name);
1068e2faea4cSKurt Hackel 					list_del_init(&lock->list);
1069e2faea4cSKurt Hackel 					dlm_lock_put(lock);
1070e2faea4cSKurt Hackel 					break;
1071e2faea4cSKurt Hackel 				}
1072e2faea4cSKurt Hackel 			}
1073e2faea4cSKurt Hackel 			spin_unlock(&res->spinlock);
10746714d8e8SKurt Hackel 			continue;
1075e2faea4cSKurt Hackel 		}
1076e2faea4cSKurt Hackel 
10776714d8e8SKurt Hackel 		if (res->owner == dead_node) {
10786714d8e8SKurt Hackel 			mlog(0, "found lockres owned by dead node while "
10796714d8e8SKurt Hackel 				  "doing recovery for node %u. sending it.\n",
10806714d8e8SKurt Hackel 				  dead_node);
1081f116629dSAkinobu Mita 			list_move_tail(&res->recovering, list);
10826714d8e8SKurt Hackel 		} else if (res->owner == DLM_LOCK_RES_OWNER_UNKNOWN) {
10836714d8e8SKurt Hackel 			mlog(0, "found UNKNOWN owner while doing recovery "
10846714d8e8SKurt Hackel 				  "for node %u. sending it.\n", dead_node);
1085f116629dSAkinobu Mita 			list_move_tail(&res->recovering, list);
10866714d8e8SKurt Hackel 		}
10876714d8e8SKurt Hackel 	}
10886714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
10896714d8e8SKurt Hackel }
10906714d8e8SKurt Hackel 
10916714d8e8SKurt Hackel static inline int dlm_num_locks_in_lockres(struct dlm_lock_resource *res)
10926714d8e8SKurt Hackel {
10936714d8e8SKurt Hackel 	int total_locks = 0;
10946714d8e8SKurt Hackel 	struct list_head *iter, *queue = &res->granted;
10956714d8e8SKurt Hackel 	int i;
10966714d8e8SKurt Hackel 
10976714d8e8SKurt Hackel 	for (i=0; i<3; i++) {
10986714d8e8SKurt Hackel 		list_for_each(iter, queue)
10996714d8e8SKurt Hackel 			total_locks++;
11006714d8e8SKurt Hackel 		queue++;
11016714d8e8SKurt Hackel 	}
11026714d8e8SKurt Hackel 	return total_locks;
11036714d8e8SKurt Hackel }
11046714d8e8SKurt Hackel 
11056714d8e8SKurt Hackel 
11066714d8e8SKurt Hackel static int dlm_send_mig_lockres_msg(struct dlm_ctxt *dlm,
11076714d8e8SKurt Hackel 				      struct dlm_migratable_lockres *mres,
11086714d8e8SKurt Hackel 				      u8 send_to,
11096714d8e8SKurt Hackel 				      struct dlm_lock_resource *res,
11106714d8e8SKurt Hackel 				      int total_locks)
11116714d8e8SKurt Hackel {
11126714d8e8SKurt Hackel 	u64 mig_cookie = be64_to_cpu(mres->mig_cookie);
11136714d8e8SKurt Hackel 	int mres_total_locks = be32_to_cpu(mres->total_locks);
11146714d8e8SKurt Hackel 	int sz, ret = 0, status = 0;
11156714d8e8SKurt Hackel 	u8 orig_flags = mres->flags,
11166714d8e8SKurt Hackel 	   orig_master = mres->master;
11176714d8e8SKurt Hackel 
11186714d8e8SKurt Hackel 	BUG_ON(mres->num_locks > DLM_MAX_MIGRATABLE_LOCKS);
11196714d8e8SKurt Hackel 	if (!mres->num_locks)
11206714d8e8SKurt Hackel 		return 0;
11216714d8e8SKurt Hackel 
11226714d8e8SKurt Hackel 	sz = sizeof(struct dlm_migratable_lockres) +
11236714d8e8SKurt Hackel 		(mres->num_locks * sizeof(struct dlm_migratable_lock));
11246714d8e8SKurt Hackel 
11256714d8e8SKurt Hackel 	/* add an all-done flag if we reached the last lock */
11266714d8e8SKurt Hackel 	orig_flags = mres->flags;
11276714d8e8SKurt Hackel 	BUG_ON(total_locks > mres_total_locks);
11286714d8e8SKurt Hackel 	if (total_locks == mres_total_locks)
11296714d8e8SKurt Hackel 		mres->flags |= DLM_MRES_ALL_DONE;
11306714d8e8SKurt Hackel 
11316714d8e8SKurt Hackel 	/* send it */
11326714d8e8SKurt Hackel 	ret = o2net_send_message(DLM_MIG_LOCKRES_MSG, dlm->key, mres,
11336714d8e8SKurt Hackel 				 sz, send_to, &status);
11346714d8e8SKurt Hackel 	if (ret < 0) {
11356714d8e8SKurt Hackel 		/* XXX: negative status is not handled.
11366714d8e8SKurt Hackel 		 * this will end up killing this node. */
11376714d8e8SKurt Hackel 		mlog_errno(ret);
11386714d8e8SKurt Hackel 	} else {
11396714d8e8SKurt Hackel 		/* might get an -ENOMEM back here */
11406714d8e8SKurt Hackel 		ret = status;
11416714d8e8SKurt Hackel 		if (ret < 0) {
11426714d8e8SKurt Hackel 			mlog_errno(ret);
11436714d8e8SKurt Hackel 
11446714d8e8SKurt Hackel 			if (ret == -EFAULT) {
11456714d8e8SKurt Hackel 				mlog(ML_ERROR, "node %u told me to kill "
11466714d8e8SKurt Hackel 				     "myself!\n", send_to);
11476714d8e8SKurt Hackel 				BUG();
11486714d8e8SKurt Hackel 			}
11496714d8e8SKurt Hackel 		}
11506714d8e8SKurt Hackel 	}
11516714d8e8SKurt Hackel 
11526714d8e8SKurt Hackel 	/* zero and reinit the message buffer */
11536714d8e8SKurt Hackel 	dlm_init_migratable_lockres(mres, res->lockname.name,
11546714d8e8SKurt Hackel 				    res->lockname.len, mres_total_locks,
11556714d8e8SKurt Hackel 				    mig_cookie, orig_flags, orig_master);
11566714d8e8SKurt Hackel 	return ret;
11576714d8e8SKurt Hackel }
11586714d8e8SKurt Hackel 
11596714d8e8SKurt Hackel static void dlm_init_migratable_lockres(struct dlm_migratable_lockres *mres,
11606714d8e8SKurt Hackel 					const char *lockname, int namelen,
11616714d8e8SKurt Hackel 					int total_locks, u64 cookie,
11626714d8e8SKurt Hackel 					u8 flags, u8 master)
11636714d8e8SKurt Hackel {
11646714d8e8SKurt Hackel 	/* mres here is one full page */
11656714d8e8SKurt Hackel 	memset(mres, 0, PAGE_SIZE);
11666714d8e8SKurt Hackel 	mres->lockname_len = namelen;
11676714d8e8SKurt Hackel 	memcpy(mres->lockname, lockname, namelen);
11686714d8e8SKurt Hackel 	mres->num_locks = 0;
11696714d8e8SKurt Hackel 	mres->total_locks = cpu_to_be32(total_locks);
11706714d8e8SKurt Hackel 	mres->mig_cookie = cpu_to_be64(cookie);
11716714d8e8SKurt Hackel 	mres->flags = flags;
11726714d8e8SKurt Hackel 	mres->master = master;
11736714d8e8SKurt Hackel }
11746714d8e8SKurt Hackel 
11756714d8e8SKurt Hackel 
11766714d8e8SKurt Hackel /* returns 1 if this lock fills the network structure,
11776714d8e8SKurt Hackel  * 0 otherwise */
11786714d8e8SKurt Hackel static int dlm_add_lock_to_array(struct dlm_lock *lock,
11796714d8e8SKurt Hackel 				 struct dlm_migratable_lockres *mres, int queue)
11806714d8e8SKurt Hackel {
11816714d8e8SKurt Hackel 	struct dlm_migratable_lock *ml;
11826714d8e8SKurt Hackel 	int lock_num = mres->num_locks;
11836714d8e8SKurt Hackel 
11846714d8e8SKurt Hackel 	ml = &(mres->ml[lock_num]);
11856714d8e8SKurt Hackel 	ml->cookie = lock->ml.cookie;
11866714d8e8SKurt Hackel 	ml->type = lock->ml.type;
11876714d8e8SKurt Hackel 	ml->convert_type = lock->ml.convert_type;
11886714d8e8SKurt Hackel 	ml->highest_blocked = lock->ml.highest_blocked;
11896714d8e8SKurt Hackel 	ml->list = queue;
11906714d8e8SKurt Hackel 	if (lock->lksb) {
11916714d8e8SKurt Hackel 		ml->flags = lock->lksb->flags;
11926714d8e8SKurt Hackel 		/* send our current lvb */
11936714d8e8SKurt Hackel 		if (ml->type == LKM_EXMODE ||
11946714d8e8SKurt Hackel 		    ml->type == LKM_PRMODE) {
11956714d8e8SKurt Hackel 			/* if it is already set, this had better be a PR
11966714d8e8SKurt Hackel 			 * and it has to match */
11978bc674cbSKurt Hackel 			if (!dlm_lvb_is_empty(mres->lvb) &&
11988bc674cbSKurt Hackel 			    (ml->type == LKM_EXMODE ||
11996714d8e8SKurt Hackel 			     memcmp(mres->lvb, lock->lksb->lvb, DLM_LVB_LEN))) {
12006714d8e8SKurt Hackel 				mlog(ML_ERROR, "mismatched lvbs!\n");
12016714d8e8SKurt Hackel 				__dlm_print_one_lock_resource(lock->lockres);
12026714d8e8SKurt Hackel 				BUG();
12036714d8e8SKurt Hackel 			}
12046714d8e8SKurt Hackel 			memcpy(mres->lvb, lock->lksb->lvb, DLM_LVB_LEN);
12056714d8e8SKurt Hackel 		}
12066714d8e8SKurt Hackel 	}
12076714d8e8SKurt Hackel 	ml->node = lock->ml.node;
12086714d8e8SKurt Hackel 	mres->num_locks++;
12096714d8e8SKurt Hackel 	/* we reached the max, send this network message */
12106714d8e8SKurt Hackel 	if (mres->num_locks == DLM_MAX_MIGRATABLE_LOCKS)
12116714d8e8SKurt Hackel 		return 1;
12126714d8e8SKurt Hackel 	return 0;
12136714d8e8SKurt Hackel }
12146714d8e8SKurt Hackel 
12156714d8e8SKurt Hackel 
12166714d8e8SKurt Hackel int dlm_send_one_lockres(struct dlm_ctxt *dlm, struct dlm_lock_resource *res,
12176714d8e8SKurt Hackel 			 struct dlm_migratable_lockres *mres,
12186714d8e8SKurt Hackel 			 u8 send_to, u8 flags)
12196714d8e8SKurt Hackel {
12206714d8e8SKurt Hackel 	struct list_head *queue, *iter;
12216714d8e8SKurt Hackel 	int total_locks, i;
12226714d8e8SKurt Hackel 	u64 mig_cookie = 0;
12236714d8e8SKurt Hackel 	struct dlm_lock *lock;
12246714d8e8SKurt Hackel 	int ret = 0;
12256714d8e8SKurt Hackel 
12266714d8e8SKurt Hackel 	BUG_ON(!(flags & (DLM_MRES_RECOVERY|DLM_MRES_MIGRATION)));
12276714d8e8SKurt Hackel 
12286714d8e8SKurt Hackel 	mlog(0, "sending to %u\n", send_to);
12296714d8e8SKurt Hackel 
12306714d8e8SKurt Hackel 	total_locks = dlm_num_locks_in_lockres(res);
12316714d8e8SKurt Hackel 	if (total_locks > DLM_MAX_MIGRATABLE_LOCKS) {
12326714d8e8SKurt Hackel 		/* rare, but possible */
12336714d8e8SKurt Hackel 		mlog(0, "argh.  lockres has %d locks.  this will "
12346714d8e8SKurt Hackel 			  "require more than one network packet to "
12356714d8e8SKurt Hackel 			  "migrate\n", total_locks);
12366714d8e8SKurt Hackel 		mig_cookie = dlm_get_next_mig_cookie();
12376714d8e8SKurt Hackel 	}
12386714d8e8SKurt Hackel 
12396714d8e8SKurt Hackel 	dlm_init_migratable_lockres(mres, res->lockname.name,
12406714d8e8SKurt Hackel 				    res->lockname.len, total_locks,
12416714d8e8SKurt Hackel 				    mig_cookie, flags, res->owner);
12426714d8e8SKurt Hackel 
12436714d8e8SKurt Hackel 	total_locks = 0;
12446714d8e8SKurt Hackel 	for (i=DLM_GRANTED_LIST; i<=DLM_BLOCKED_LIST; i++) {
12456714d8e8SKurt Hackel 		queue = dlm_list_idx_to_ptr(res, i);
12466714d8e8SKurt Hackel 		list_for_each(iter, queue) {
12476714d8e8SKurt Hackel 			lock = list_entry (iter, struct dlm_lock, list);
12486714d8e8SKurt Hackel 
12496714d8e8SKurt Hackel 			/* add another lock. */
12506714d8e8SKurt Hackel 			total_locks++;
12516714d8e8SKurt Hackel 			if (!dlm_add_lock_to_array(lock, mres, i))
12526714d8e8SKurt Hackel 				continue;
12536714d8e8SKurt Hackel 
12546714d8e8SKurt Hackel 			/* this filled the lock message,
12556714d8e8SKurt Hackel 			 * we must send it immediately. */
12566714d8e8SKurt Hackel 			ret = dlm_send_mig_lockres_msg(dlm, mres, send_to,
12576714d8e8SKurt Hackel 						       res, total_locks);
125829c0fa0fSKurt Hackel 			if (ret < 0)
125929c0fa0fSKurt Hackel 				goto error;
12606714d8e8SKurt Hackel 		}
12616714d8e8SKurt Hackel 	}
12626714d8e8SKurt Hackel 	/* flush any remaining locks */
12636714d8e8SKurt Hackel 	ret = dlm_send_mig_lockres_msg(dlm, mres, send_to, res, total_locks);
126429c0fa0fSKurt Hackel 	if (ret < 0)
126529c0fa0fSKurt Hackel 		goto error;
126629c0fa0fSKurt Hackel 	return ret;
126729c0fa0fSKurt Hackel 
126829c0fa0fSKurt Hackel error:
126929c0fa0fSKurt Hackel 	mlog(ML_ERROR, "%s: dlm_send_mig_lockres_msg returned %d\n",
127029c0fa0fSKurt Hackel 	     dlm->name, ret);
127129c0fa0fSKurt Hackel 	if (!dlm_is_host_down(ret))
12726714d8e8SKurt Hackel 		BUG();
127329c0fa0fSKurt Hackel 	mlog(0, "%s: node %u went down while sending %s "
127429c0fa0fSKurt Hackel 	     "lockres %.*s\n", dlm->name, send_to,
127529c0fa0fSKurt Hackel 	     flags & DLM_MRES_RECOVERY ?  "recovery" : "migration",
127629c0fa0fSKurt Hackel 	     res->lockname.len, res->lockname.name);
12776714d8e8SKurt Hackel 	return ret;
12786714d8e8SKurt Hackel }
12796714d8e8SKurt Hackel 
12806714d8e8SKurt Hackel 
12816714d8e8SKurt Hackel 
12826714d8e8SKurt Hackel /*
12836714d8e8SKurt Hackel  * this message will contain no more than one page worth of
12846714d8e8SKurt Hackel  * recovery data, and it will work on only one lockres.
12856714d8e8SKurt Hackel  * there may be many locks in this page, and we may need to wait
12866714d8e8SKurt Hackel  * for additional packets to complete all the locks (rare, but
12876714d8e8SKurt Hackel  * possible).
12886714d8e8SKurt Hackel  */
12896714d8e8SKurt Hackel /*
12906714d8e8SKurt Hackel  * NOTE: the allocation error cases here are scary
12916714d8e8SKurt Hackel  * we really cannot afford to fail an alloc in recovery
12926714d8e8SKurt Hackel  * do we spin?  returning an error only delays the problem really
12936714d8e8SKurt Hackel  */
12946714d8e8SKurt Hackel 
12956714d8e8SKurt Hackel int dlm_mig_lockres_handler(struct o2net_msg *msg, u32 len, void *data)
12966714d8e8SKurt Hackel {
12976714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
12986714d8e8SKurt Hackel 	struct dlm_migratable_lockres *mres =
12996714d8e8SKurt Hackel 		(struct dlm_migratable_lockres *)msg->buf;
13006714d8e8SKurt Hackel 	int ret = 0;
13016714d8e8SKurt Hackel 	u8 real_master;
13026714d8e8SKurt Hackel 	char *buf = NULL;
13036714d8e8SKurt Hackel 	struct dlm_work_item *item = NULL;
13046714d8e8SKurt Hackel 	struct dlm_lock_resource *res = NULL;
13056714d8e8SKurt Hackel 
13066714d8e8SKurt Hackel 	if (!dlm_grab(dlm))
13076714d8e8SKurt Hackel 		return -EINVAL;
13086714d8e8SKurt Hackel 
13096714d8e8SKurt Hackel 	BUG_ON(!(mres->flags & (DLM_MRES_RECOVERY|DLM_MRES_MIGRATION)));
13106714d8e8SKurt Hackel 
13116714d8e8SKurt Hackel 	real_master = mres->master;
13126714d8e8SKurt Hackel 	if (real_master == DLM_LOCK_RES_OWNER_UNKNOWN) {
13136714d8e8SKurt Hackel 		/* cannot migrate a lockres with no master */
13146714d8e8SKurt Hackel 		BUG_ON(!(mres->flags & DLM_MRES_RECOVERY));
13156714d8e8SKurt Hackel 	}
13166714d8e8SKurt Hackel 
13176714d8e8SKurt Hackel 	mlog(0, "%s message received from node %u\n",
13186714d8e8SKurt Hackel 		  (mres->flags & DLM_MRES_RECOVERY) ?
13196714d8e8SKurt Hackel 		  "recovery" : "migration", mres->master);
13206714d8e8SKurt Hackel 	if (mres->flags & DLM_MRES_ALL_DONE)
13216714d8e8SKurt Hackel 		mlog(0, "all done flag.  all lockres data received!\n");
13226714d8e8SKurt Hackel 
13236714d8e8SKurt Hackel 	ret = -ENOMEM;
1324ad8100e0SKurt Hackel 	buf = kmalloc(be16_to_cpu(msg->data_len), GFP_NOFS);
1325ad8100e0SKurt Hackel 	item = kcalloc(1, sizeof(*item), GFP_NOFS);
13266714d8e8SKurt Hackel 	if (!buf || !item)
13276714d8e8SKurt Hackel 		goto leave;
13286714d8e8SKurt Hackel 
13296714d8e8SKurt Hackel 	/* lookup the lock to see if we have a secondary queue for this
13306714d8e8SKurt Hackel 	 * already...  just add the locks in and this will have its owner
13316714d8e8SKurt Hackel 	 * and RECOVERY flag changed when it completes. */
13326714d8e8SKurt Hackel 	res = dlm_lookup_lockres(dlm, mres->lockname, mres->lockname_len);
13336714d8e8SKurt Hackel 	if (res) {
13346714d8e8SKurt Hackel 	 	/* this will get a ref on res */
13356714d8e8SKurt Hackel 		/* mark it as recovering/migrating and hash it */
13366714d8e8SKurt Hackel 		spin_lock(&res->spinlock);
13376714d8e8SKurt Hackel 		if (mres->flags & DLM_MRES_RECOVERY) {
13386714d8e8SKurt Hackel 			res->state |= DLM_LOCK_RES_RECOVERING;
13396714d8e8SKurt Hackel 		} else {
13406714d8e8SKurt Hackel 			if (res->state & DLM_LOCK_RES_MIGRATING) {
13416714d8e8SKurt Hackel 				/* this is at least the second
13426714d8e8SKurt Hackel 				 * lockres message */
13436714d8e8SKurt Hackel 				mlog(0, "lock %.*s is already migrating\n",
13446714d8e8SKurt Hackel 					  mres->lockname_len,
13456714d8e8SKurt Hackel 					  mres->lockname);
13466714d8e8SKurt Hackel 			} else if (res->state & DLM_LOCK_RES_RECOVERING) {
13476714d8e8SKurt Hackel 				/* caller should BUG */
13486714d8e8SKurt Hackel 				mlog(ML_ERROR, "node is attempting to migrate "
13496714d8e8SKurt Hackel 				     "lock %.*s, but marked as recovering!\n",
13506714d8e8SKurt Hackel 				     mres->lockname_len, mres->lockname);
13516714d8e8SKurt Hackel 				ret = -EFAULT;
13526714d8e8SKurt Hackel 				spin_unlock(&res->spinlock);
13536714d8e8SKurt Hackel 				goto leave;
13546714d8e8SKurt Hackel 			}
13556714d8e8SKurt Hackel 			res->state |= DLM_LOCK_RES_MIGRATING;
13566714d8e8SKurt Hackel 		}
13576714d8e8SKurt Hackel 		spin_unlock(&res->spinlock);
13586714d8e8SKurt Hackel 	} else {
13596714d8e8SKurt Hackel 		/* need to allocate, just like if it was
13606714d8e8SKurt Hackel 		 * mastered here normally  */
13616714d8e8SKurt Hackel 		res = dlm_new_lockres(dlm, mres->lockname, mres->lockname_len);
13626714d8e8SKurt Hackel 		if (!res)
13636714d8e8SKurt Hackel 			goto leave;
13646714d8e8SKurt Hackel 
13656714d8e8SKurt Hackel 		/* to match the ref that we would have gotten if
13666714d8e8SKurt Hackel 		 * dlm_lookup_lockres had succeeded */
13676714d8e8SKurt Hackel 		dlm_lockres_get(res);
13686714d8e8SKurt Hackel 
13696714d8e8SKurt Hackel 		/* mark it as recovering/migrating and hash it */
13706714d8e8SKurt Hackel 		if (mres->flags & DLM_MRES_RECOVERY)
13716714d8e8SKurt Hackel 			res->state |= DLM_LOCK_RES_RECOVERING;
13726714d8e8SKurt Hackel 		else
13736714d8e8SKurt Hackel 			res->state |= DLM_LOCK_RES_MIGRATING;
13746714d8e8SKurt Hackel 
13756714d8e8SKurt Hackel 		spin_lock(&dlm->spinlock);
13766714d8e8SKurt Hackel 		__dlm_insert_lockres(dlm, res);
13776714d8e8SKurt Hackel 		spin_unlock(&dlm->spinlock);
13786714d8e8SKurt Hackel 
13796714d8e8SKurt Hackel 		/* now that the new lockres is inserted,
13806714d8e8SKurt Hackel 		 * make it usable by other processes */
13816714d8e8SKurt Hackel 		spin_lock(&res->spinlock);
13826714d8e8SKurt Hackel 		res->state &= ~DLM_LOCK_RES_IN_PROGRESS;
13836714d8e8SKurt Hackel 		spin_unlock(&res->spinlock);
13846714d8e8SKurt Hackel 
13856714d8e8SKurt Hackel 		/* add an extra ref for just-allocated lockres
13866714d8e8SKurt Hackel 		 * otherwise the lockres will be purged immediately */
13876714d8e8SKurt Hackel 		dlm_lockres_get(res);
13886714d8e8SKurt Hackel 
13896714d8e8SKurt Hackel 	}
13906714d8e8SKurt Hackel 
13916714d8e8SKurt Hackel 	/* at this point we have allocated everything we need,
13926714d8e8SKurt Hackel 	 * and we have a hashed lockres with an extra ref and
13936714d8e8SKurt Hackel 	 * the proper res->state flags. */
13946714d8e8SKurt Hackel 	ret = 0;
13956714d8e8SKurt Hackel 	if (mres->master == DLM_LOCK_RES_OWNER_UNKNOWN) {
13966714d8e8SKurt Hackel 		/* migration cannot have an unknown master */
13976714d8e8SKurt Hackel 		BUG_ON(!(mres->flags & DLM_MRES_RECOVERY));
13986714d8e8SKurt Hackel 		mlog(0, "recovery has passed me a lockres with an "
13996714d8e8SKurt Hackel 			  "unknown owner.. will need to requery: "
14006714d8e8SKurt Hackel 			  "%.*s\n", mres->lockname_len, mres->lockname);
14016714d8e8SKurt Hackel 	} else {
14026714d8e8SKurt Hackel 		spin_lock(&res->spinlock);
14036714d8e8SKurt Hackel 		dlm_change_lockres_owner(dlm, res, dlm->node_num);
14046714d8e8SKurt Hackel 		spin_unlock(&res->spinlock);
14056714d8e8SKurt Hackel 	}
14066714d8e8SKurt Hackel 
14076714d8e8SKurt Hackel 	/* queue up work for dlm_mig_lockres_worker */
14086714d8e8SKurt Hackel 	dlm_grab(dlm);  /* get an extra ref for the work item */
14096714d8e8SKurt Hackel 	memcpy(buf, msg->buf, be16_to_cpu(msg->data_len));  /* copy the whole message */
14106714d8e8SKurt Hackel 	dlm_init_work_item(dlm, item, dlm_mig_lockres_worker, buf);
14116714d8e8SKurt Hackel 	item->u.ml.lockres = res; /* already have a ref */
14126714d8e8SKurt Hackel 	item->u.ml.real_master = real_master;
14136714d8e8SKurt Hackel 	spin_lock(&dlm->work_lock);
14146714d8e8SKurt Hackel 	list_add_tail(&item->list, &dlm->work_list);
14156714d8e8SKurt Hackel 	spin_unlock(&dlm->work_lock);
14163156d267SKurt Hackel 	queue_work(dlm->dlm_worker, &dlm->dispatched_work);
14176714d8e8SKurt Hackel 
14186714d8e8SKurt Hackel leave:
14196714d8e8SKurt Hackel 	dlm_put(dlm);
14206714d8e8SKurt Hackel 	if (ret < 0) {
14216714d8e8SKurt Hackel 		if (buf)
14226714d8e8SKurt Hackel 			kfree(buf);
14236714d8e8SKurt Hackel 		if (item)
14246714d8e8SKurt Hackel 			kfree(item);
14256714d8e8SKurt Hackel 	}
14266714d8e8SKurt Hackel 
14276714d8e8SKurt Hackel 	mlog_exit(ret);
14286714d8e8SKurt Hackel 	return ret;
14296714d8e8SKurt Hackel }
14306714d8e8SKurt Hackel 
14316714d8e8SKurt Hackel 
14326714d8e8SKurt Hackel static void dlm_mig_lockres_worker(struct dlm_work_item *item, void *data)
14336714d8e8SKurt Hackel {
14346714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
14356714d8e8SKurt Hackel 	struct dlm_migratable_lockres *mres;
14366714d8e8SKurt Hackel 	int ret = 0;
14376714d8e8SKurt Hackel 	struct dlm_lock_resource *res;
14386714d8e8SKurt Hackel 	u8 real_master;
14396714d8e8SKurt Hackel 
14406714d8e8SKurt Hackel 	dlm = item->dlm;
14416714d8e8SKurt Hackel 	mres = (struct dlm_migratable_lockres *)data;
14426714d8e8SKurt Hackel 
14436714d8e8SKurt Hackel 	res = item->u.ml.lockres;
14446714d8e8SKurt Hackel 	real_master = item->u.ml.real_master;
14456714d8e8SKurt Hackel 
14466714d8e8SKurt Hackel 	if (real_master == DLM_LOCK_RES_OWNER_UNKNOWN) {
14476714d8e8SKurt Hackel 		/* this case is super-rare. only occurs if
14486714d8e8SKurt Hackel 		 * node death happens during migration. */
14496714d8e8SKurt Hackel again:
14506714d8e8SKurt Hackel 		ret = dlm_lockres_master_requery(dlm, res, &real_master);
14516714d8e8SKurt Hackel 		if (ret < 0) {
1452e2faea4cSKurt Hackel 			mlog(0, "dlm_lockres_master_requery ret=%d\n",
14536714d8e8SKurt Hackel 				  ret);
14546714d8e8SKurt Hackel 			goto again;
14556714d8e8SKurt Hackel 		}
14566714d8e8SKurt Hackel 		if (real_master == DLM_LOCK_RES_OWNER_UNKNOWN) {
14576714d8e8SKurt Hackel 			mlog(0, "lockres %.*s not claimed.  "
14586714d8e8SKurt Hackel 				   "this node will take it.\n",
14596714d8e8SKurt Hackel 				   res->lockname.len, res->lockname.name);
14606714d8e8SKurt Hackel 		} else {
14616714d8e8SKurt Hackel 			mlog(0, "master needs to respond to sender "
14626714d8e8SKurt Hackel 				  "that node %u still owns %.*s\n",
14636714d8e8SKurt Hackel 				  real_master, res->lockname.len,
14646714d8e8SKurt Hackel 				  res->lockname.name);
14656714d8e8SKurt Hackel 			/* cannot touch this lockres */
14666714d8e8SKurt Hackel 			goto leave;
14676714d8e8SKurt Hackel 		}
14686714d8e8SKurt Hackel 	}
14696714d8e8SKurt Hackel 
14706714d8e8SKurt Hackel 	ret = dlm_process_recovery_data(dlm, res, mres);
14716714d8e8SKurt Hackel 	if (ret < 0)
14726714d8e8SKurt Hackel 		mlog(0, "dlm_process_recovery_data returned  %d\n", ret);
14736714d8e8SKurt Hackel 	else
14746714d8e8SKurt Hackel 		mlog(0, "dlm_process_recovery_data succeeded\n");
14756714d8e8SKurt Hackel 
14766714d8e8SKurt Hackel 	if ((mres->flags & (DLM_MRES_MIGRATION|DLM_MRES_ALL_DONE)) ==
14776714d8e8SKurt Hackel 	                   (DLM_MRES_MIGRATION|DLM_MRES_ALL_DONE)) {
14786714d8e8SKurt Hackel 		ret = dlm_finish_migration(dlm, res, mres->master);
14796714d8e8SKurt Hackel 		if (ret < 0)
14806714d8e8SKurt Hackel 			mlog_errno(ret);
14816714d8e8SKurt Hackel 	}
14826714d8e8SKurt Hackel 
14836714d8e8SKurt Hackel leave:
14846714d8e8SKurt Hackel 	kfree(data);
14856714d8e8SKurt Hackel 	mlog_exit(ret);
14866714d8e8SKurt Hackel }
14876714d8e8SKurt Hackel 
14886714d8e8SKurt Hackel 
14896714d8e8SKurt Hackel 
14908169cae5SAdrian Bunk static int dlm_lockres_master_requery(struct dlm_ctxt *dlm,
14918169cae5SAdrian Bunk 				      struct dlm_lock_resource *res,
14928169cae5SAdrian Bunk 				      u8 *real_master)
14936714d8e8SKurt Hackel {
14946714d8e8SKurt Hackel 	struct dlm_node_iter iter;
14956714d8e8SKurt Hackel 	int nodenum;
14966714d8e8SKurt Hackel 	int ret = 0;
14976714d8e8SKurt Hackel 
14986714d8e8SKurt Hackel 	*real_master = DLM_LOCK_RES_OWNER_UNKNOWN;
14996714d8e8SKurt Hackel 
15006714d8e8SKurt Hackel 	/* we only reach here if one of the two nodes in a
15016714d8e8SKurt Hackel 	 * migration died while the migration was in progress.
15026714d8e8SKurt Hackel 	 * at this point we need to requery the master.  we
15036714d8e8SKurt Hackel 	 * know that the new_master got as far as creating
15046714d8e8SKurt Hackel 	 * an mle on at least one node, but we do not know
15056714d8e8SKurt Hackel 	 * if any nodes had actually cleared the mle and set
15066714d8e8SKurt Hackel 	 * the master to the new_master.  the old master
15076714d8e8SKurt Hackel 	 * is supposed to set the owner to UNKNOWN in the
15086714d8e8SKurt Hackel 	 * event of a new_master death, so the only possible
15096714d8e8SKurt Hackel 	 * responses that we can get from nodes here are
15106714d8e8SKurt Hackel 	 * that the master is new_master, or that the master
15116714d8e8SKurt Hackel 	 * is UNKNOWN.
15126714d8e8SKurt Hackel 	 * if all nodes come back with UNKNOWN then we know
15136714d8e8SKurt Hackel 	 * the lock needs remastering here.
15146714d8e8SKurt Hackel 	 * if any node comes back with a valid master, check
15156714d8e8SKurt Hackel 	 * to see if that master is the one that we are
15166714d8e8SKurt Hackel 	 * recovering.  if so, then the new_master died and
15176714d8e8SKurt Hackel 	 * we need to remaster this lock.  if not, then the
15186714d8e8SKurt Hackel 	 * new_master survived and that node will respond to
15196714d8e8SKurt Hackel 	 * other nodes about the owner.
15206714d8e8SKurt Hackel 	 * if there is an owner, this node needs to dump this
15216714d8e8SKurt Hackel 	 * lockres and alert the sender that this lockres
15226714d8e8SKurt Hackel 	 * was rejected. */
15236714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
15246714d8e8SKurt Hackel 	dlm_node_iter_init(dlm->domain_map, &iter);
15256714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
15266714d8e8SKurt Hackel 
15276714d8e8SKurt Hackel 	while ((nodenum = dlm_node_iter_next(&iter)) >= 0) {
15286714d8e8SKurt Hackel 		/* do not send to self */
15296714d8e8SKurt Hackel 		if (nodenum == dlm->node_num)
15306714d8e8SKurt Hackel 			continue;
15316714d8e8SKurt Hackel 		ret = dlm_do_master_requery(dlm, res, nodenum, real_master);
15326714d8e8SKurt Hackel 		if (ret < 0) {
15336714d8e8SKurt Hackel 			mlog_errno(ret);
1534c03872f5SKurt Hackel 			if (!dlm_is_host_down(ret))
15356714d8e8SKurt Hackel 				BUG();
1536c03872f5SKurt Hackel 			/* host is down, so answer for that node would be
1537c03872f5SKurt Hackel 			 * DLM_LOCK_RES_OWNER_UNKNOWN.  continue. */
15386714d8e8SKurt Hackel 		}
15396714d8e8SKurt Hackel 		if (*real_master != DLM_LOCK_RES_OWNER_UNKNOWN) {
15406714d8e8SKurt Hackel 			mlog(0, "lock master is %u\n", *real_master);
15416714d8e8SKurt Hackel 			break;
15426714d8e8SKurt Hackel 		}
15436714d8e8SKurt Hackel 	}
15446714d8e8SKurt Hackel 	return ret;
15456714d8e8SKurt Hackel }
15466714d8e8SKurt Hackel 
15476714d8e8SKurt Hackel 
1548c03872f5SKurt Hackel int dlm_do_master_requery(struct dlm_ctxt *dlm, struct dlm_lock_resource *res,
15496714d8e8SKurt Hackel 			  u8 nodenum, u8 *real_master)
15506714d8e8SKurt Hackel {
15516714d8e8SKurt Hackel 	int ret = -EINVAL;
15526714d8e8SKurt Hackel 	struct dlm_master_requery req;
15536714d8e8SKurt Hackel 	int status = DLM_LOCK_RES_OWNER_UNKNOWN;
15546714d8e8SKurt Hackel 
15556714d8e8SKurt Hackel 	memset(&req, 0, sizeof(req));
15566714d8e8SKurt Hackel 	req.node_idx = dlm->node_num;
15576714d8e8SKurt Hackel 	req.namelen = res->lockname.len;
15586714d8e8SKurt Hackel 	memcpy(req.name, res->lockname.name, res->lockname.len);
15596714d8e8SKurt Hackel 
15606714d8e8SKurt Hackel 	ret = o2net_send_message(DLM_MASTER_REQUERY_MSG, dlm->key,
15616714d8e8SKurt Hackel 				 &req, sizeof(req), nodenum, &status);
15626714d8e8SKurt Hackel 	/* XXX: negative status not handled properly here. */
15636714d8e8SKurt Hackel 	if (ret < 0)
15646714d8e8SKurt Hackel 		mlog_errno(ret);
15656714d8e8SKurt Hackel 	else {
15666714d8e8SKurt Hackel 		BUG_ON(status < 0);
15676714d8e8SKurt Hackel 		BUG_ON(status > DLM_LOCK_RES_OWNER_UNKNOWN);
15686714d8e8SKurt Hackel 		*real_master = (u8) (status & 0xff);
15696714d8e8SKurt Hackel 		mlog(0, "node %u responded to master requery with %u\n",
15706714d8e8SKurt Hackel 			  nodenum, *real_master);
15716714d8e8SKurt Hackel 		ret = 0;
15726714d8e8SKurt Hackel 	}
15736714d8e8SKurt Hackel 	return ret;
15746714d8e8SKurt Hackel }
15756714d8e8SKurt Hackel 
15766714d8e8SKurt Hackel 
15776714d8e8SKurt Hackel /* this function cannot error, so unless the sending
15786714d8e8SKurt Hackel  * or receiving of the message failed, the owner can
15796714d8e8SKurt Hackel  * be trusted */
15806714d8e8SKurt Hackel int dlm_master_requery_handler(struct o2net_msg *msg, u32 len, void *data)
15816714d8e8SKurt Hackel {
15826714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
15836714d8e8SKurt Hackel 	struct dlm_master_requery *req = (struct dlm_master_requery *)msg->buf;
15846714d8e8SKurt Hackel 	struct dlm_lock_resource *res = NULL;
1585a3d33291SMark Fasheh 	unsigned int hash;
15866714d8e8SKurt Hackel 	int master = DLM_LOCK_RES_OWNER_UNKNOWN;
15876714d8e8SKurt Hackel 	u32 flags = DLM_ASSERT_MASTER_REQUERY;
15886714d8e8SKurt Hackel 
15896714d8e8SKurt Hackel 	if (!dlm_grab(dlm)) {
15906714d8e8SKurt Hackel 		/* since the domain has gone away on this
15916714d8e8SKurt Hackel 		 * node, the proper response is UNKNOWN */
15926714d8e8SKurt Hackel 		return master;
15936714d8e8SKurt Hackel 	}
15946714d8e8SKurt Hackel 
1595a3d33291SMark Fasheh 	hash = dlm_lockid_hash(req->name, req->namelen);
1596a3d33291SMark Fasheh 
15976714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
1598a3d33291SMark Fasheh 	res = __dlm_lookup_lockres(dlm, req->name, req->namelen, hash);
15996714d8e8SKurt Hackel 	if (res) {
16006714d8e8SKurt Hackel 		spin_lock(&res->spinlock);
16016714d8e8SKurt Hackel 		master = res->owner;
16026714d8e8SKurt Hackel 		if (master == dlm->node_num) {
16036714d8e8SKurt Hackel 			int ret = dlm_dispatch_assert_master(dlm, res,
16046714d8e8SKurt Hackel 							     0, 0, flags);
16056714d8e8SKurt Hackel 			if (ret < 0) {
16066714d8e8SKurt Hackel 				mlog_errno(-ENOMEM);
16076714d8e8SKurt Hackel 				/* retry!? */
16086714d8e8SKurt Hackel 				BUG();
16096714d8e8SKurt Hackel 			}
16106714d8e8SKurt Hackel 		}
16116714d8e8SKurt Hackel 		spin_unlock(&res->spinlock);
16126714d8e8SKurt Hackel 	}
16136714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
16146714d8e8SKurt Hackel 
16156714d8e8SKurt Hackel 	dlm_put(dlm);
16166714d8e8SKurt Hackel 	return master;
16176714d8e8SKurt Hackel }
16186714d8e8SKurt Hackel 
16196714d8e8SKurt Hackel static inline struct list_head *
16206714d8e8SKurt Hackel dlm_list_num_to_pointer(struct dlm_lock_resource *res, int list_num)
16216714d8e8SKurt Hackel {
16226714d8e8SKurt Hackel 	struct list_head *ret;
16236714d8e8SKurt Hackel 	BUG_ON(list_num < 0);
16246714d8e8SKurt Hackel 	BUG_ON(list_num > 2);
16256714d8e8SKurt Hackel 	ret = &(res->granted);
16266714d8e8SKurt Hackel 	ret += list_num;
16276714d8e8SKurt Hackel 	return ret;
16286714d8e8SKurt Hackel }
16296714d8e8SKurt Hackel /* TODO: do ast flush business
16306714d8e8SKurt Hackel  * TODO: do MIGRATING and RECOVERING spinning
16316714d8e8SKurt Hackel  */
16326714d8e8SKurt Hackel 
16336714d8e8SKurt Hackel /*
16346714d8e8SKurt Hackel * NOTE about in-flight requests during migration:
16356714d8e8SKurt Hackel *
16366714d8e8SKurt Hackel * Before attempting the migrate, the master has marked the lockres as
16376714d8e8SKurt Hackel * MIGRATING and then flushed all of its pending ASTS.  So any in-flight
16386714d8e8SKurt Hackel * requests either got queued before the MIGRATING flag got set, in which
16396714d8e8SKurt Hackel * case the lock data will reflect the change and a return message is on
16406714d8e8SKurt Hackel * the way, or the request failed to get in before MIGRATING got set.  In
16416714d8e8SKurt Hackel * this case, the caller will be told to spin and wait for the MIGRATING
16426714d8e8SKurt Hackel * flag to be dropped, then recheck the master.
16436714d8e8SKurt Hackel * This holds true for the convert, cancel and unlock cases, and since lvb
16446714d8e8SKurt Hackel * updates are tied to these same messages, it applies to lvb updates as
16456714d8e8SKurt Hackel * well.  For the lock case, there is no way a lock can be on the master
16466714d8e8SKurt Hackel * queue and not be on the secondary queue since the lock is always added
16476714d8e8SKurt Hackel * locally first.  This means that the new target node will never be sent
16486714d8e8SKurt Hackel * a lock that he doesn't already have on the list.
16496714d8e8SKurt Hackel * In total, this means that the local lock is correct and should not be
16506714d8e8SKurt Hackel * updated to match the one sent by the master.  Any messages sent back
16516714d8e8SKurt Hackel * from the master before the MIGRATING flag will bring the lock properly
16526714d8e8SKurt Hackel * up-to-date, and the change will be ordered properly for the waiter.
16536714d8e8SKurt Hackel * We will *not* attempt to modify the lock underneath the waiter.
16546714d8e8SKurt Hackel */
16556714d8e8SKurt Hackel 
16566714d8e8SKurt Hackel static int dlm_process_recovery_data(struct dlm_ctxt *dlm,
16576714d8e8SKurt Hackel 				     struct dlm_lock_resource *res,
16586714d8e8SKurt Hackel 				     struct dlm_migratable_lockres *mres)
16596714d8e8SKurt Hackel {
16606714d8e8SKurt Hackel 	struct dlm_migratable_lock *ml;
16616714d8e8SKurt Hackel 	struct list_head *queue;
16626714d8e8SKurt Hackel 	struct dlm_lock *newlock = NULL;
16636714d8e8SKurt Hackel 	struct dlm_lockstatus *lksb = NULL;
16646714d8e8SKurt Hackel 	int ret = 0;
1665c3187ce5SKurt Hackel 	int i, bad;
16666714d8e8SKurt Hackel 	struct list_head *iter;
16676714d8e8SKurt Hackel 	struct dlm_lock *lock = NULL;
16686714d8e8SKurt Hackel 
16696714d8e8SKurt Hackel 	mlog(0, "running %d locks for this lockres\n", mres->num_locks);
16706714d8e8SKurt Hackel 	for (i=0; i<mres->num_locks; i++) {
16716714d8e8SKurt Hackel 		ml = &(mres->ml[i]);
16726714d8e8SKurt Hackel 		BUG_ON(ml->highest_blocked != LKM_IVMODE);
16736714d8e8SKurt Hackel 		newlock = NULL;
16746714d8e8SKurt Hackel 		lksb = NULL;
16756714d8e8SKurt Hackel 
16766714d8e8SKurt Hackel 		queue = dlm_list_num_to_pointer(res, ml->list);
16776714d8e8SKurt Hackel 
16786714d8e8SKurt Hackel 		/* if the lock is for the local node it needs to
16796714d8e8SKurt Hackel 		 * be moved to the proper location within the queue.
16806714d8e8SKurt Hackel 		 * do not allocate a new lock structure. */
16816714d8e8SKurt Hackel 		if (ml->node == dlm->node_num) {
16826714d8e8SKurt Hackel 			/* MIGRATION ONLY! */
16836714d8e8SKurt Hackel 			BUG_ON(!(mres->flags & DLM_MRES_MIGRATION));
16846714d8e8SKurt Hackel 
16856714d8e8SKurt Hackel 			spin_lock(&res->spinlock);
16866714d8e8SKurt Hackel 			list_for_each(iter, queue) {
16876714d8e8SKurt Hackel 				lock = list_entry (iter, struct dlm_lock, list);
16886714d8e8SKurt Hackel 				if (lock->ml.cookie != ml->cookie)
16896714d8e8SKurt Hackel 					lock = NULL;
16906714d8e8SKurt Hackel 				else
16916714d8e8SKurt Hackel 					break;
16926714d8e8SKurt Hackel 			}
16936714d8e8SKurt Hackel 
16946714d8e8SKurt Hackel 			/* lock is always created locally first, and
16956714d8e8SKurt Hackel 			 * destroyed locally last.  it must be on the list */
16966714d8e8SKurt Hackel 			if (!lock) {
169729004858SKurt Hackel 				u64 c = ml->cookie;
16986714d8e8SKurt Hackel 				mlog(ML_ERROR, "could not find local lock "
169929004858SKurt Hackel 					       "with cookie %u:%llu!\n",
170029004858SKurt Hackel 					       dlm_get_lock_cookie_node(c),
170129004858SKurt Hackel 					       dlm_get_lock_cookie_seq(c));
17026714d8e8SKurt Hackel 				BUG();
17036714d8e8SKurt Hackel 			}
17046714d8e8SKurt Hackel 			BUG_ON(lock->ml.node != ml->node);
17056714d8e8SKurt Hackel 
17066714d8e8SKurt Hackel 			/* see NOTE above about why we do not update
17076714d8e8SKurt Hackel 			 * to match the master here */
17086714d8e8SKurt Hackel 
17096714d8e8SKurt Hackel 			/* move the lock to its proper place */
17106714d8e8SKurt Hackel 			/* do not alter lock refcount.  switching lists. */
1711f116629dSAkinobu Mita 			list_move_tail(&lock->list, queue);
17126714d8e8SKurt Hackel 			spin_unlock(&res->spinlock);
17136714d8e8SKurt Hackel 
17146714d8e8SKurt Hackel 			mlog(0, "just reordered a local lock!\n");
17156714d8e8SKurt Hackel 			continue;
17166714d8e8SKurt Hackel 		}
17176714d8e8SKurt Hackel 
17186714d8e8SKurt Hackel 		/* lock is for another node. */
17196714d8e8SKurt Hackel 		newlock = dlm_new_lock(ml->type, ml->node,
17206714d8e8SKurt Hackel 				       be64_to_cpu(ml->cookie), NULL);
17216714d8e8SKurt Hackel 		if (!newlock) {
17226714d8e8SKurt Hackel 			ret = -ENOMEM;
17236714d8e8SKurt Hackel 			goto leave;
17246714d8e8SKurt Hackel 		}
17256714d8e8SKurt Hackel 		lksb = newlock->lksb;
17266714d8e8SKurt Hackel 		dlm_lock_attach_lockres(newlock, res);
17276714d8e8SKurt Hackel 
17286714d8e8SKurt Hackel 		if (ml->convert_type != LKM_IVMODE) {
17296714d8e8SKurt Hackel 			BUG_ON(queue != &res->converting);
17306714d8e8SKurt Hackel 			newlock->ml.convert_type = ml->convert_type;
17316714d8e8SKurt Hackel 		}
17326714d8e8SKurt Hackel 		lksb->flags |= (ml->flags &
17336714d8e8SKurt Hackel 				(DLM_LKSB_PUT_LVB|DLM_LKSB_GET_LVB));
17346714d8e8SKurt Hackel 
1735ccd8b1f9SKurt Hackel 		if (ml->type == LKM_NLMODE)
1736ccd8b1f9SKurt Hackel 			goto skip_lvb;
1737ccd8b1f9SKurt Hackel 
17388bc674cbSKurt Hackel 		if (!dlm_lvb_is_empty(mres->lvb)) {
17396714d8e8SKurt Hackel 			if (lksb->flags & DLM_LKSB_PUT_LVB) {
17406714d8e8SKurt Hackel 				/* other node was trying to update
17416714d8e8SKurt Hackel 				 * lvb when node died.  recreate the
17426714d8e8SKurt Hackel 				 * lksb with the updated lvb. */
17436714d8e8SKurt Hackel 				memcpy(lksb->lvb, mres->lvb, DLM_LVB_LEN);
1744ccd8b1f9SKurt Hackel 				/* the lock resource lvb update must happen
1745ccd8b1f9SKurt Hackel 				 * NOW, before the spinlock is dropped.
1746ccd8b1f9SKurt Hackel 				 * we no longer wait for the AST to update
1747ccd8b1f9SKurt Hackel 				 * the lvb. */
1748ccd8b1f9SKurt Hackel 				memcpy(res->lvb, mres->lvb, DLM_LVB_LEN);
17496714d8e8SKurt Hackel 			} else {
17506714d8e8SKurt Hackel 				/* otherwise, the node is sending its
17516714d8e8SKurt Hackel 				 * most recent valid lvb info */
17526714d8e8SKurt Hackel 				BUG_ON(ml->type != LKM_EXMODE &&
17536714d8e8SKurt Hackel 				       ml->type != LKM_PRMODE);
17548bc674cbSKurt Hackel 				if (!dlm_lvb_is_empty(res->lvb) &&
17558bc674cbSKurt Hackel  				    (ml->type == LKM_EXMODE ||
17566714d8e8SKurt Hackel  				     memcmp(res->lvb, mres->lvb, DLM_LVB_LEN))) {
1757343e26a4SKurt Hackel  					int i;
1758343e26a4SKurt Hackel  					mlog(ML_ERROR, "%s:%.*s: received bad "
1759343e26a4SKurt Hackel  					     "lvb! type=%d\n", dlm->name,
1760343e26a4SKurt Hackel  					     res->lockname.len,
1761343e26a4SKurt Hackel  					     res->lockname.name, ml->type);
1762343e26a4SKurt Hackel  					printk("lockres lvb=[");
1763343e26a4SKurt Hackel  					for (i=0; i<DLM_LVB_LEN; i++)
1764343e26a4SKurt Hackel  						printk("%02x", res->lvb[i]);
1765343e26a4SKurt Hackel  					printk("]\nmigrated lvb=[");
1766343e26a4SKurt Hackel  					for (i=0; i<DLM_LVB_LEN; i++)
1767343e26a4SKurt Hackel  						printk("%02x", mres->lvb[i]);
1768343e26a4SKurt Hackel  					printk("]\n");
1769343e26a4SKurt Hackel  					dlm_print_one_lock_resource(res);
17706714d8e8SKurt Hackel  					BUG();
17716714d8e8SKurt Hackel 				}
17726714d8e8SKurt Hackel 				memcpy(res->lvb, mres->lvb, DLM_LVB_LEN);
17736714d8e8SKurt Hackel 			}
17746714d8e8SKurt Hackel 		}
1775ccd8b1f9SKurt Hackel skip_lvb:
17766714d8e8SKurt Hackel 
17776714d8e8SKurt Hackel 		/* NOTE:
17786714d8e8SKurt Hackel 		 * wrt lock queue ordering and recovery:
17796714d8e8SKurt Hackel 		 *    1. order of locks on granted queue is
17806714d8e8SKurt Hackel 		 *       meaningless.
17816714d8e8SKurt Hackel 		 *    2. order of locks on converting queue is
17826714d8e8SKurt Hackel 		 *       LOST with the node death.  sorry charlie.
17836714d8e8SKurt Hackel 		 *    3. order of locks on the blocked queue is
17846714d8e8SKurt Hackel 		 *       also LOST.
17856714d8e8SKurt Hackel 		 * order of locks does not affect integrity, it
17866714d8e8SKurt Hackel 		 * just means that a lock request may get pushed
17876714d8e8SKurt Hackel 		 * back in line as a result of the node death.
17886714d8e8SKurt Hackel 		 * also note that for a given node the lock order
17896714d8e8SKurt Hackel 		 * for its secondary queue locks is preserved
17906714d8e8SKurt Hackel 		 * relative to each other, but clearly *not*
17916714d8e8SKurt Hackel 		 * preserved relative to locks from other nodes.
17926714d8e8SKurt Hackel 		 */
1793c3187ce5SKurt Hackel 		bad = 0;
17946714d8e8SKurt Hackel 		spin_lock(&res->spinlock);
1795c3187ce5SKurt Hackel 		list_for_each_entry(lock, queue, list) {
1796c3187ce5SKurt Hackel 			if (lock->ml.cookie == ml->cookie) {
1797c3187ce5SKurt Hackel 				u64 c = lock->ml.cookie;
1798c3187ce5SKurt Hackel 				mlog(ML_ERROR, "%s:%.*s: %u:%llu: lock already "
1799c3187ce5SKurt Hackel 				     "exists on this lockres!\n", dlm->name,
1800c3187ce5SKurt Hackel 				     res->lockname.len, res->lockname.name,
1801c3187ce5SKurt Hackel 				     dlm_get_lock_cookie_node(c),
1802c3187ce5SKurt Hackel 				     dlm_get_lock_cookie_seq(c));
1803c3187ce5SKurt Hackel 
1804c3187ce5SKurt Hackel 				mlog(ML_NOTICE, "sent lock: type=%d, conv=%d, "
1805c3187ce5SKurt Hackel 				     "node=%u, cookie=%u:%llu, queue=%d\n",
1806c3187ce5SKurt Hackel 	      			     ml->type, ml->convert_type, ml->node,
1807c3187ce5SKurt Hackel 				     dlm_get_lock_cookie_node(ml->cookie),
1808c3187ce5SKurt Hackel 				     dlm_get_lock_cookie_seq(ml->cookie),
1809c3187ce5SKurt Hackel 				     ml->list);
1810c3187ce5SKurt Hackel 
1811c3187ce5SKurt Hackel 				__dlm_print_one_lock_resource(res);
1812c3187ce5SKurt Hackel 				bad = 1;
1813c3187ce5SKurt Hackel 				break;
1814c3187ce5SKurt Hackel 			}
1815c3187ce5SKurt Hackel 		}
1816c3187ce5SKurt Hackel 		if (!bad) {
18176714d8e8SKurt Hackel 			dlm_lock_get(newlock);
18186714d8e8SKurt Hackel 			list_add_tail(&newlock->list, queue);
1819c3187ce5SKurt Hackel 		}
18206714d8e8SKurt Hackel 		spin_unlock(&res->spinlock);
18216714d8e8SKurt Hackel 	}
18226714d8e8SKurt Hackel 	mlog(0, "done running all the locks\n");
18236714d8e8SKurt Hackel 
18246714d8e8SKurt Hackel leave:
18256714d8e8SKurt Hackel 	if (ret < 0) {
18266714d8e8SKurt Hackel 		mlog_errno(ret);
18276714d8e8SKurt Hackel 		if (newlock)
18286714d8e8SKurt Hackel 			dlm_lock_put(newlock);
18296714d8e8SKurt Hackel 	}
18306714d8e8SKurt Hackel 
18316714d8e8SKurt Hackel 	mlog_exit(ret);
18326714d8e8SKurt Hackel 	return ret;
18336714d8e8SKurt Hackel }
18346714d8e8SKurt Hackel 
18356714d8e8SKurt Hackel void dlm_move_lockres_to_recovery_list(struct dlm_ctxt *dlm,
18366714d8e8SKurt Hackel 				       struct dlm_lock_resource *res)
18376714d8e8SKurt Hackel {
18386714d8e8SKurt Hackel 	int i;
18396714d8e8SKurt Hackel 	struct list_head *queue, *iter, *iter2;
18406714d8e8SKurt Hackel 	struct dlm_lock *lock;
18416714d8e8SKurt Hackel 
18426714d8e8SKurt Hackel 	res->state |= DLM_LOCK_RES_RECOVERING;
184369d72b06SKurt Hackel 	if (!list_empty(&res->recovering)) {
184469d72b06SKurt Hackel 		mlog(0,
184569d72b06SKurt Hackel 		     "Recovering res %s:%.*s, is already on recovery list!\n",
184669d72b06SKurt Hackel 		     dlm->name, res->lockname.len, res->lockname.name);
18476714d8e8SKurt Hackel 		list_del_init(&res->recovering);
184869d72b06SKurt Hackel 	}
184969d72b06SKurt Hackel 	/* We need to hold a reference while on the recovery list */
185069d72b06SKurt Hackel 	dlm_lockres_get(res);
18516714d8e8SKurt Hackel 	list_add_tail(&res->recovering, &dlm->reco.resources);
18526714d8e8SKurt Hackel 
18536714d8e8SKurt Hackel 	/* find any pending locks and put them back on proper list */
18546714d8e8SKurt Hackel 	for (i=DLM_BLOCKED_LIST; i>=DLM_GRANTED_LIST; i--) {
18556714d8e8SKurt Hackel 		queue = dlm_list_idx_to_ptr(res, i);
18566714d8e8SKurt Hackel 		list_for_each_safe(iter, iter2, queue) {
18576714d8e8SKurt Hackel 			lock = list_entry (iter, struct dlm_lock, list);
18586714d8e8SKurt Hackel 			dlm_lock_get(lock);
18596714d8e8SKurt Hackel 			if (lock->convert_pending) {
18606714d8e8SKurt Hackel 				/* move converting lock back to granted */
18616714d8e8SKurt Hackel 				BUG_ON(i != DLM_CONVERTING_LIST);
18626714d8e8SKurt Hackel 				mlog(0, "node died with convert pending "
18636714d8e8SKurt Hackel 				     "on %.*s. move back to granted list.\n",
18646714d8e8SKurt Hackel 				     res->lockname.len, res->lockname.name);
18656714d8e8SKurt Hackel 				dlm_revert_pending_convert(res, lock);
18666714d8e8SKurt Hackel 				lock->convert_pending = 0;
18676714d8e8SKurt Hackel 			} else if (lock->lock_pending) {
18686714d8e8SKurt Hackel 				/* remove pending lock requests completely */
18696714d8e8SKurt Hackel 				BUG_ON(i != DLM_BLOCKED_LIST);
18706714d8e8SKurt Hackel 				mlog(0, "node died with lock pending "
18716714d8e8SKurt Hackel 				     "on %.*s. remove from blocked list and skip.\n",
18726714d8e8SKurt Hackel 				     res->lockname.len, res->lockname.name);
18736714d8e8SKurt Hackel 				/* lock will be floating until ref in
18746714d8e8SKurt Hackel 				 * dlmlock_remote is freed after the network
18756714d8e8SKurt Hackel 				 * call returns.  ok for it to not be on any
18766714d8e8SKurt Hackel 				 * list since no ast can be called
18776714d8e8SKurt Hackel 				 * (the master is dead). */
18786714d8e8SKurt Hackel 				dlm_revert_pending_lock(res, lock);
18796714d8e8SKurt Hackel 				lock->lock_pending = 0;
18806714d8e8SKurt Hackel 			} else if (lock->unlock_pending) {
18816714d8e8SKurt Hackel 				/* if an unlock was in progress, treat as
18826714d8e8SKurt Hackel 				 * if this had completed successfully
18836714d8e8SKurt Hackel 				 * before sending this lock state to the
18846714d8e8SKurt Hackel 				 * new master.  note that the dlm_unlock
18856714d8e8SKurt Hackel 				 * call is still responsible for calling
18866714d8e8SKurt Hackel 				 * the unlockast.  that will happen after
18876714d8e8SKurt Hackel 				 * the network call times out.  for now,
18886714d8e8SKurt Hackel 				 * just move lists to prepare the new
18896714d8e8SKurt Hackel 				 * recovery master.  */
18906714d8e8SKurt Hackel 				BUG_ON(i != DLM_GRANTED_LIST);
18916714d8e8SKurt Hackel 				mlog(0, "node died with unlock pending "
18926714d8e8SKurt Hackel 				     "on %.*s. remove from blocked list and skip.\n",
18936714d8e8SKurt Hackel 				     res->lockname.len, res->lockname.name);
18946714d8e8SKurt Hackel 				dlm_commit_pending_unlock(res, lock);
18956714d8e8SKurt Hackel 				lock->unlock_pending = 0;
18966714d8e8SKurt Hackel 			} else if (lock->cancel_pending) {
18976714d8e8SKurt Hackel 				/* if a cancel was in progress, treat as
18986714d8e8SKurt Hackel 				 * if this had completed successfully
18996714d8e8SKurt Hackel 				 * before sending this lock state to the
19006714d8e8SKurt Hackel 				 * new master */
19016714d8e8SKurt Hackel 				BUG_ON(i != DLM_CONVERTING_LIST);
19026714d8e8SKurt Hackel 				mlog(0, "node died with cancel pending "
19036714d8e8SKurt Hackel 				     "on %.*s. move back to granted list.\n",
19046714d8e8SKurt Hackel 				     res->lockname.len, res->lockname.name);
19056714d8e8SKurt Hackel 				dlm_commit_pending_cancel(res, lock);
19066714d8e8SKurt Hackel 				lock->cancel_pending = 0;
19076714d8e8SKurt Hackel 			}
19086714d8e8SKurt Hackel 			dlm_lock_put(lock);
19096714d8e8SKurt Hackel 		}
19106714d8e8SKurt Hackel 	}
19116714d8e8SKurt Hackel }
19126714d8e8SKurt Hackel 
19136714d8e8SKurt Hackel 
19146714d8e8SKurt Hackel 
19156714d8e8SKurt Hackel /* removes all recovered locks from the recovery list.
19166714d8e8SKurt Hackel  * sets the res->owner to the new master.
19176714d8e8SKurt Hackel  * unsets the RECOVERY flag and wakes waiters. */
19186714d8e8SKurt Hackel static void dlm_finish_local_lockres_recovery(struct dlm_ctxt *dlm,
19196714d8e8SKurt Hackel 					      u8 dead_node, u8 new_master)
19206714d8e8SKurt Hackel {
19216714d8e8SKurt Hackel 	int i;
192281f2094aSMark Fasheh 	struct list_head *iter, *iter2;
192381f2094aSMark Fasheh 	struct hlist_node *hash_iter;
192481f2094aSMark Fasheh 	struct hlist_head *bucket;
192581f2094aSMark Fasheh 
19266714d8e8SKurt Hackel 	struct dlm_lock_resource *res;
19276714d8e8SKurt Hackel 
19286714d8e8SKurt Hackel 	mlog_entry_void();
19296714d8e8SKurt Hackel 
19306714d8e8SKurt Hackel 	assert_spin_locked(&dlm->spinlock);
19316714d8e8SKurt Hackel 
19326714d8e8SKurt Hackel 	list_for_each_safe(iter, iter2, &dlm->reco.resources) {
19336714d8e8SKurt Hackel 		res = list_entry (iter, struct dlm_lock_resource, recovering);
19346714d8e8SKurt Hackel 		if (res->owner == dead_node) {
19356714d8e8SKurt Hackel 			list_del_init(&res->recovering);
19366714d8e8SKurt Hackel 			spin_lock(&res->spinlock);
19376714d8e8SKurt Hackel 			dlm_change_lockres_owner(dlm, res, new_master);
19386714d8e8SKurt Hackel 			res->state &= ~DLM_LOCK_RES_RECOVERING;
193969d72b06SKurt Hackel 			if (!__dlm_lockres_unused(res))
19406714d8e8SKurt Hackel 				__dlm_dirty_lockres(dlm, res);
19416714d8e8SKurt Hackel 			spin_unlock(&res->spinlock);
19426714d8e8SKurt Hackel 			wake_up(&res->wq);
194369d72b06SKurt Hackel 			dlm_lockres_put(res);
19446714d8e8SKurt Hackel 		}
19456714d8e8SKurt Hackel 	}
19466714d8e8SKurt Hackel 
19476714d8e8SKurt Hackel 	/* this will become unnecessary eventually, but
19486714d8e8SKurt Hackel 	 * for now we need to run the whole hash, clear
19496714d8e8SKurt Hackel 	 * the RECOVERING state and set the owner
19506714d8e8SKurt Hackel 	 * if necessary */
195181f2094aSMark Fasheh 	for (i = 0; i < DLM_HASH_BUCKETS; i++) {
195203d864c0SDaniel Phillips 		bucket = dlm_lockres_hash(dlm, i);
195381f2094aSMark Fasheh 		hlist_for_each_entry(res, hash_iter, bucket, hash_node) {
19546714d8e8SKurt Hackel 			if (res->state & DLM_LOCK_RES_RECOVERING) {
19556714d8e8SKurt Hackel 				if (res->owner == dead_node) {
19566714d8e8SKurt Hackel 					mlog(0, "(this=%u) res %.*s owner=%u "
19576714d8e8SKurt Hackel 					     "was not on recovering list, but "
19586714d8e8SKurt Hackel 					     "clearing state anyway\n",
19596714d8e8SKurt Hackel 					     dlm->node_num, res->lockname.len,
19606714d8e8SKurt Hackel 					     res->lockname.name, new_master);
19616714d8e8SKurt Hackel 				} else if (res->owner == dlm->node_num) {
19626714d8e8SKurt Hackel 					mlog(0, "(this=%u) res %.*s owner=%u "
19636714d8e8SKurt Hackel 					     "was not on recovering list, "
19646714d8e8SKurt Hackel 					     "owner is THIS node, clearing\n",
19656714d8e8SKurt Hackel 					     dlm->node_num, res->lockname.len,
19666714d8e8SKurt Hackel 					     res->lockname.name, new_master);
19676714d8e8SKurt Hackel 				} else
19686714d8e8SKurt Hackel 					continue;
19696714d8e8SKurt Hackel 
1970c03872f5SKurt Hackel 				if (!list_empty(&res->recovering)) {
1971c03872f5SKurt Hackel 					mlog(0, "%s:%.*s: lockres was "
1972c03872f5SKurt Hackel 					     "marked RECOVERING, owner=%u\n",
1973c03872f5SKurt Hackel 					     dlm->name, res->lockname.len,
1974c03872f5SKurt Hackel 					     res->lockname.name, res->owner);
1975c03872f5SKurt Hackel 					list_del_init(&res->recovering);
197669d72b06SKurt Hackel 					dlm_lockres_put(res);
1977c03872f5SKurt Hackel 				}
19786714d8e8SKurt Hackel 				spin_lock(&res->spinlock);
19796714d8e8SKurt Hackel 				dlm_change_lockres_owner(dlm, res, new_master);
19806714d8e8SKurt Hackel 				res->state &= ~DLM_LOCK_RES_RECOVERING;
198169d72b06SKurt Hackel 				if (!__dlm_lockres_unused(res))
19826714d8e8SKurt Hackel 					__dlm_dirty_lockres(dlm, res);
19836714d8e8SKurt Hackel 				spin_unlock(&res->spinlock);
19846714d8e8SKurt Hackel 				wake_up(&res->wq);
19856714d8e8SKurt Hackel 			}
19866714d8e8SKurt Hackel 		}
19876714d8e8SKurt Hackel 	}
19886714d8e8SKurt Hackel }
19896714d8e8SKurt Hackel 
19906714d8e8SKurt Hackel static inline int dlm_lvb_needs_invalidation(struct dlm_lock *lock, int local)
19916714d8e8SKurt Hackel {
19926714d8e8SKurt Hackel 	if (local) {
19936714d8e8SKurt Hackel 		if (lock->ml.type != LKM_EXMODE &&
19946714d8e8SKurt Hackel 		    lock->ml.type != LKM_PRMODE)
19956714d8e8SKurt Hackel 			return 1;
19966714d8e8SKurt Hackel 	} else if (lock->ml.type == LKM_EXMODE)
19976714d8e8SKurt Hackel 		return 1;
19986714d8e8SKurt Hackel 	return 0;
19996714d8e8SKurt Hackel }
20006714d8e8SKurt Hackel 
20016714d8e8SKurt Hackel static void dlm_revalidate_lvb(struct dlm_ctxt *dlm,
20026714d8e8SKurt Hackel 			       struct dlm_lock_resource *res, u8 dead_node)
20036714d8e8SKurt Hackel {
20046714d8e8SKurt Hackel 	struct list_head *iter, *queue;
20056714d8e8SKurt Hackel 	struct dlm_lock *lock;
20066714d8e8SKurt Hackel 	int blank_lvb = 0, local = 0;
20076714d8e8SKurt Hackel 	int i;
20086714d8e8SKurt Hackel 	u8 search_node;
20096714d8e8SKurt Hackel 
20106714d8e8SKurt Hackel 	assert_spin_locked(&dlm->spinlock);
20116714d8e8SKurt Hackel 	assert_spin_locked(&res->spinlock);
20126714d8e8SKurt Hackel 
20136714d8e8SKurt Hackel 	if (res->owner == dlm->node_num)
20146714d8e8SKurt Hackel 		/* if this node owned the lockres, and if the dead node
20156714d8e8SKurt Hackel 		 * had an EX when he died, blank out the lvb */
20166714d8e8SKurt Hackel 		search_node = dead_node;
20176714d8e8SKurt Hackel 	else {
20186714d8e8SKurt Hackel 		/* if this is a secondary lockres, and we had no EX or PR
20196714d8e8SKurt Hackel 		 * locks granted, we can no longer trust the lvb */
20206714d8e8SKurt Hackel 		search_node = dlm->node_num;
20216714d8e8SKurt Hackel 		local = 1;  /* check local state for valid lvb */
20226714d8e8SKurt Hackel 	}
20236714d8e8SKurt Hackel 
20246714d8e8SKurt Hackel 	for (i=DLM_GRANTED_LIST; i<=DLM_CONVERTING_LIST; i++) {
20256714d8e8SKurt Hackel 		queue = dlm_list_idx_to_ptr(res, i);
20266714d8e8SKurt Hackel 		list_for_each(iter, queue) {
20276714d8e8SKurt Hackel 			lock = list_entry (iter, struct dlm_lock, list);
20286714d8e8SKurt Hackel 			if (lock->ml.node == search_node) {
20296714d8e8SKurt Hackel 				if (dlm_lvb_needs_invalidation(lock, local)) {
20306714d8e8SKurt Hackel 					/* zero the lksb lvb and lockres lvb */
20316714d8e8SKurt Hackel 					blank_lvb = 1;
20326714d8e8SKurt Hackel 					memset(lock->lksb->lvb, 0, DLM_LVB_LEN);
20336714d8e8SKurt Hackel 				}
20346714d8e8SKurt Hackel 			}
20356714d8e8SKurt Hackel 		}
20366714d8e8SKurt Hackel 	}
20376714d8e8SKurt Hackel 
20386714d8e8SKurt Hackel 	if (blank_lvb) {
20396714d8e8SKurt Hackel 		mlog(0, "clearing %.*s lvb, dead node %u had EX\n",
20406714d8e8SKurt Hackel 		     res->lockname.len, res->lockname.name, dead_node);
20416714d8e8SKurt Hackel 		memset(res->lvb, 0, DLM_LVB_LEN);
20426714d8e8SKurt Hackel 	}
20436714d8e8SKurt Hackel }
20446714d8e8SKurt Hackel 
20456714d8e8SKurt Hackel static void dlm_free_dead_locks(struct dlm_ctxt *dlm,
20466714d8e8SKurt Hackel 				struct dlm_lock_resource *res, u8 dead_node)
20476714d8e8SKurt Hackel {
20486714d8e8SKurt Hackel 	struct list_head *iter, *tmpiter;
20496714d8e8SKurt Hackel 	struct dlm_lock *lock;
20506714d8e8SKurt Hackel 
20516714d8e8SKurt Hackel 	/* this node is the lockres master:
20526714d8e8SKurt Hackel 	 * 1) remove any stale locks for the dead node
20536714d8e8SKurt Hackel 	 * 2) if the dead node had an EX when he died, blank out the lvb
20546714d8e8SKurt Hackel 	 */
20556714d8e8SKurt Hackel 	assert_spin_locked(&dlm->spinlock);
20566714d8e8SKurt Hackel 	assert_spin_locked(&res->spinlock);
20576714d8e8SKurt Hackel 
20586714d8e8SKurt Hackel 	/* TODO: check pending_asts, pending_basts here */
20596714d8e8SKurt Hackel 	list_for_each_safe(iter, tmpiter, &res->granted) {
20606714d8e8SKurt Hackel 		lock = list_entry (iter, struct dlm_lock, list);
20616714d8e8SKurt Hackel 		if (lock->ml.node == dead_node) {
20626714d8e8SKurt Hackel 			list_del_init(&lock->list);
20636714d8e8SKurt Hackel 			dlm_lock_put(lock);
20646714d8e8SKurt Hackel 		}
20656714d8e8SKurt Hackel 	}
20666714d8e8SKurt Hackel 	list_for_each_safe(iter, tmpiter, &res->converting) {
20676714d8e8SKurt Hackel 		lock = list_entry (iter, struct dlm_lock, list);
20686714d8e8SKurt Hackel 		if (lock->ml.node == dead_node) {
20696714d8e8SKurt Hackel 			list_del_init(&lock->list);
20706714d8e8SKurt Hackel 			dlm_lock_put(lock);
20716714d8e8SKurt Hackel 		}
20726714d8e8SKurt Hackel 	}
20736714d8e8SKurt Hackel 	list_for_each_safe(iter, tmpiter, &res->blocked) {
20746714d8e8SKurt Hackel 		lock = list_entry (iter, struct dlm_lock, list);
20756714d8e8SKurt Hackel 		if (lock->ml.node == dead_node) {
20766714d8e8SKurt Hackel 			list_del_init(&lock->list);
20776714d8e8SKurt Hackel 			dlm_lock_put(lock);
20786714d8e8SKurt Hackel 		}
20796714d8e8SKurt Hackel 	}
20806714d8e8SKurt Hackel 
20816714d8e8SKurt Hackel 	/* do not kick thread yet */
20826714d8e8SKurt Hackel 	__dlm_dirty_lockres(dlm, res);
20836714d8e8SKurt Hackel }
20846714d8e8SKurt Hackel 
20856714d8e8SKurt Hackel /* if this node is the recovery master, and there are no
20866714d8e8SKurt Hackel  * locks for a given lockres owned by this node that are in
20876714d8e8SKurt Hackel  * either PR or EX mode, zero out the lvb before requesting.
20886714d8e8SKurt Hackel  *
20896714d8e8SKurt Hackel  */
20906714d8e8SKurt Hackel 
20916714d8e8SKurt Hackel 
20926714d8e8SKurt Hackel static void dlm_do_local_recovery_cleanup(struct dlm_ctxt *dlm, u8 dead_node)
20936714d8e8SKurt Hackel {
209481f2094aSMark Fasheh 	struct hlist_node *iter;
20956714d8e8SKurt Hackel 	struct dlm_lock_resource *res;
20966714d8e8SKurt Hackel 	int i;
209781f2094aSMark Fasheh 	struct hlist_head *bucket;
2098e2faea4cSKurt Hackel 	struct dlm_lock *lock;
20996714d8e8SKurt Hackel 
21006714d8e8SKurt Hackel 
21016714d8e8SKurt Hackel 	/* purge any stale mles */
21026714d8e8SKurt Hackel 	dlm_clean_master_list(dlm, dead_node);
21036714d8e8SKurt Hackel 
21046714d8e8SKurt Hackel 	/*
21056714d8e8SKurt Hackel 	 * now clean up all lock resources.  there are two rules:
21066714d8e8SKurt Hackel 	 *
21076714d8e8SKurt Hackel 	 * 1) if the dead node was the master, move the lockres
21086714d8e8SKurt Hackel 	 *    to the recovering list.  set the RECOVERING flag.
21096714d8e8SKurt Hackel 	 *    this lockres needs to be cleaned up before it can
21106714d8e8SKurt Hackel 	 *    be used further.
21116714d8e8SKurt Hackel 	 *
21126714d8e8SKurt Hackel 	 * 2) if this node was the master, remove all locks from
21136714d8e8SKurt Hackel 	 *    each of the lockres queues that were owned by the
21146714d8e8SKurt Hackel 	 *    dead node.  once recovery finishes, the dlm thread
21156714d8e8SKurt Hackel 	 *    can be kicked again to see if any ASTs or BASTs
21166714d8e8SKurt Hackel 	 *    need to be fired as a result.
21176714d8e8SKurt Hackel 	 */
211881f2094aSMark Fasheh 	for (i = 0; i < DLM_HASH_BUCKETS; i++) {
211903d864c0SDaniel Phillips 		bucket = dlm_lockres_hash(dlm, i);
212081f2094aSMark Fasheh 		hlist_for_each_entry(res, iter, bucket, hash_node) {
2121e2faea4cSKurt Hackel  			/* always prune any $RECOVERY entries for dead nodes,
2122e2faea4cSKurt Hackel  			 * otherwise hangs can occur during later recovery */
21236714d8e8SKurt Hackel 			if (dlm_is_recovery_lock(res->lockname.name,
2124e2faea4cSKurt Hackel 						 res->lockname.len)) {
2125e2faea4cSKurt Hackel 				spin_lock(&res->spinlock);
2126e2faea4cSKurt Hackel 				list_for_each_entry(lock, &res->granted, list) {
2127e2faea4cSKurt Hackel 					if (lock->ml.node == dead_node) {
2128e2faea4cSKurt Hackel 						mlog(0, "AHA! there was "
2129e2faea4cSKurt Hackel 						     "a $RECOVERY lock for dead "
2130e2faea4cSKurt Hackel 						     "node %u (%s)!\n",
2131e2faea4cSKurt Hackel 						     dead_node, dlm->name);
2132e2faea4cSKurt Hackel 						list_del_init(&lock->list);
2133e2faea4cSKurt Hackel 						dlm_lock_put(lock);
2134e2faea4cSKurt Hackel 						break;
2135e2faea4cSKurt Hackel 					}
2136e2faea4cSKurt Hackel 				}
2137e2faea4cSKurt Hackel 				spin_unlock(&res->spinlock);
21386714d8e8SKurt Hackel 				continue;
2139e2faea4cSKurt Hackel 			}
21406714d8e8SKurt Hackel 			spin_lock(&res->spinlock);
21416714d8e8SKurt Hackel 			/* zero the lvb if necessary */
21426714d8e8SKurt Hackel 			dlm_revalidate_lvb(dlm, res, dead_node);
21436714d8e8SKurt Hackel 			if (res->owner == dead_node)
21446714d8e8SKurt Hackel 				dlm_move_lockres_to_recovery_list(dlm, res);
21456714d8e8SKurt Hackel 			else if (res->owner == dlm->node_num) {
21466714d8e8SKurt Hackel 				dlm_free_dead_locks(dlm, res, dead_node);
21476714d8e8SKurt Hackel 				__dlm_lockres_calc_usage(dlm, res);
21486714d8e8SKurt Hackel 			}
21496714d8e8SKurt Hackel 			spin_unlock(&res->spinlock);
21506714d8e8SKurt Hackel 		}
21516714d8e8SKurt Hackel 	}
21526714d8e8SKurt Hackel 
21536714d8e8SKurt Hackel }
21546714d8e8SKurt Hackel 
21556714d8e8SKurt Hackel static void __dlm_hb_node_down(struct dlm_ctxt *dlm, int idx)
21566714d8e8SKurt Hackel {
21576714d8e8SKurt Hackel 	assert_spin_locked(&dlm->spinlock);
21586714d8e8SKurt Hackel 
2159466d1a45SKurt Hackel 	if (dlm->reco.new_master == idx) {
2160466d1a45SKurt Hackel 		mlog(0, "%s: recovery master %d just died\n",
2161466d1a45SKurt Hackel 		     dlm->name, idx);
2162466d1a45SKurt Hackel 		if (dlm->reco.state & DLM_RECO_STATE_FINALIZE) {
2163466d1a45SKurt Hackel 			/* finalize1 was reached, so it is safe to clear
2164466d1a45SKurt Hackel 			 * the new_master and dead_node.  that recovery
2165466d1a45SKurt Hackel 			 * is complete. */
2166466d1a45SKurt Hackel 			mlog(0, "%s: dead master %d had reached "
2167466d1a45SKurt Hackel 			     "finalize1 state, clearing\n", dlm->name, idx);
2168466d1a45SKurt Hackel 			dlm->reco.state &= ~DLM_RECO_STATE_FINALIZE;
2169466d1a45SKurt Hackel 			__dlm_reset_recovery(dlm);
2170466d1a45SKurt Hackel 		}
2171466d1a45SKurt Hackel 	}
2172466d1a45SKurt Hackel 
21736714d8e8SKurt Hackel 	/* check to see if the node is already considered dead */
21746714d8e8SKurt Hackel 	if (!test_bit(idx, dlm->live_nodes_map)) {
21756714d8e8SKurt Hackel 		mlog(0, "for domain %s, node %d is already dead. "
21766714d8e8SKurt Hackel 		     "another node likely did recovery already.\n",
21776714d8e8SKurt Hackel 		     dlm->name, idx);
21786714d8e8SKurt Hackel 		return;
21796714d8e8SKurt Hackel 	}
21806714d8e8SKurt Hackel 
21816714d8e8SKurt Hackel 	/* check to see if we do not care about this node */
21826714d8e8SKurt Hackel 	if (!test_bit(idx, dlm->domain_map)) {
21836714d8e8SKurt Hackel 		/* This also catches the case that we get a node down
21846714d8e8SKurt Hackel 		 * but haven't joined the domain yet. */
21856714d8e8SKurt Hackel 		mlog(0, "node %u already removed from domain!\n", idx);
21866714d8e8SKurt Hackel 		return;
21876714d8e8SKurt Hackel 	}
21886714d8e8SKurt Hackel 
21896714d8e8SKurt Hackel 	clear_bit(idx, dlm->live_nodes_map);
21906714d8e8SKurt Hackel 
21916714d8e8SKurt Hackel 	/* Clean up join state on node death. */
21926714d8e8SKurt Hackel 	if (dlm->joining_node == idx) {
21936714d8e8SKurt Hackel 		mlog(0, "Clearing join state for node %u\n", idx);
21946714d8e8SKurt Hackel 		__dlm_set_joining_node(dlm, DLM_LOCK_RES_OWNER_UNKNOWN);
21956714d8e8SKurt Hackel 	}
21966714d8e8SKurt Hackel 
21976714d8e8SKurt Hackel 	/* make sure local cleanup occurs before the heartbeat events */
21986714d8e8SKurt Hackel 	if (!test_bit(idx, dlm->recovery_map))
21996714d8e8SKurt Hackel 		dlm_do_local_recovery_cleanup(dlm, idx);
22006714d8e8SKurt Hackel 
22016714d8e8SKurt Hackel 	/* notify anything attached to the heartbeat events */
22026714d8e8SKurt Hackel 	dlm_hb_event_notify_attached(dlm, idx, 0);
22036714d8e8SKurt Hackel 
22046714d8e8SKurt Hackel 	mlog(0, "node %u being removed from domain map!\n", idx);
22056714d8e8SKurt Hackel 	clear_bit(idx, dlm->domain_map);
22066714d8e8SKurt Hackel 	/* wake up migration waiters if a node goes down.
22076714d8e8SKurt Hackel 	 * perhaps later we can genericize this for other waiters. */
22086714d8e8SKurt Hackel 	wake_up(&dlm->migration_wq);
22096714d8e8SKurt Hackel 
22106714d8e8SKurt Hackel 	if (test_bit(idx, dlm->recovery_map))
22116714d8e8SKurt Hackel 		mlog(0, "domain %s, node %u already added "
22126714d8e8SKurt Hackel 		     "to recovery map!\n", dlm->name, idx);
22136714d8e8SKurt Hackel 	else
22146714d8e8SKurt Hackel 		set_bit(idx, dlm->recovery_map);
22156714d8e8SKurt Hackel }
22166714d8e8SKurt Hackel 
22176714d8e8SKurt Hackel void dlm_hb_node_down_cb(struct o2nm_node *node, int idx, void *data)
22186714d8e8SKurt Hackel {
22196714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
22206714d8e8SKurt Hackel 
22216714d8e8SKurt Hackel 	if (!dlm_grab(dlm))
22226714d8e8SKurt Hackel 		return;
22236714d8e8SKurt Hackel 
22246714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
22256714d8e8SKurt Hackel 	__dlm_hb_node_down(dlm, idx);
22266714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
22276714d8e8SKurt Hackel 
22286714d8e8SKurt Hackel 	dlm_put(dlm);
22296714d8e8SKurt Hackel }
22306714d8e8SKurt Hackel 
22316714d8e8SKurt Hackel void dlm_hb_node_up_cb(struct o2nm_node *node, int idx, void *data)
22326714d8e8SKurt Hackel {
22336714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
22346714d8e8SKurt Hackel 
22356714d8e8SKurt Hackel 	if (!dlm_grab(dlm))
22366714d8e8SKurt Hackel 		return;
22376714d8e8SKurt Hackel 
22386714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
22396714d8e8SKurt Hackel 	set_bit(idx, dlm->live_nodes_map);
2240e2faea4cSKurt Hackel 	/* do NOT notify mle attached to the heartbeat events.
2241e2faea4cSKurt Hackel 	 * new nodes are not interesting in mastery until joined. */
22426714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
22436714d8e8SKurt Hackel 
22446714d8e8SKurt Hackel 	dlm_put(dlm);
22456714d8e8SKurt Hackel }
22466714d8e8SKurt Hackel 
22476714d8e8SKurt Hackel static void dlm_reco_ast(void *astdata)
22486714d8e8SKurt Hackel {
22496714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = astdata;
22506714d8e8SKurt Hackel 	mlog(0, "ast for recovery lock fired!, this=%u, dlm=%s\n",
22516714d8e8SKurt Hackel 	     dlm->node_num, dlm->name);
22526714d8e8SKurt Hackel }
22536714d8e8SKurt Hackel static void dlm_reco_bast(void *astdata, int blocked_type)
22546714d8e8SKurt Hackel {
22556714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = astdata;
22566714d8e8SKurt Hackel 	mlog(0, "bast for recovery lock fired!, this=%u, dlm=%s\n",
22576714d8e8SKurt Hackel 	     dlm->node_num, dlm->name);
22586714d8e8SKurt Hackel }
22596714d8e8SKurt Hackel static void dlm_reco_unlock_ast(void *astdata, enum dlm_status st)
22606714d8e8SKurt Hackel {
22616714d8e8SKurt Hackel 	mlog(0, "unlockast for recovery lock fired!\n");
22626714d8e8SKurt Hackel }
22636714d8e8SKurt Hackel 
2264e2faea4cSKurt Hackel /*
2265e2faea4cSKurt Hackel  * dlm_pick_recovery_master will continually attempt to use
2266e2faea4cSKurt Hackel  * dlmlock() on the special "$RECOVERY" lockres with the
2267e2faea4cSKurt Hackel  * LKM_NOQUEUE flag to get an EX.  every thread that enters
2268e2faea4cSKurt Hackel  * this function on each node racing to become the recovery
2269e2faea4cSKurt Hackel  * master will not stop attempting this until either:
2270e2faea4cSKurt Hackel  * a) this node gets the EX (and becomes the recovery master),
2271e2faea4cSKurt Hackel  * or b) dlm->reco.new_master gets set to some nodenum
2272e2faea4cSKurt Hackel  * != O2NM_INVALID_NODE_NUM (another node will do the reco).
2273e2faea4cSKurt Hackel  * so each time a recovery master is needed, the entire cluster
2274e2faea4cSKurt Hackel  * will sync at this point.  if the new master dies, that will
2275e2faea4cSKurt Hackel  * be detected in dlm_do_recovery */
22766714d8e8SKurt Hackel static int dlm_pick_recovery_master(struct dlm_ctxt *dlm)
22776714d8e8SKurt Hackel {
22786714d8e8SKurt Hackel 	enum dlm_status ret;
22796714d8e8SKurt Hackel 	struct dlm_lockstatus lksb;
22806714d8e8SKurt Hackel 	int status = -EINVAL;
22816714d8e8SKurt Hackel 
22826714d8e8SKurt Hackel 	mlog(0, "starting recovery of %s at %lu, dead=%u, this=%u\n",
22836714d8e8SKurt Hackel 	     dlm->name, jiffies, dlm->reco.dead_node, dlm->node_num);
2284e2faea4cSKurt Hackel again:
22856714d8e8SKurt Hackel 	memset(&lksb, 0, sizeof(lksb));
22866714d8e8SKurt Hackel 
22876714d8e8SKurt Hackel 	ret = dlmlock(dlm, LKM_EXMODE, &lksb, LKM_NOQUEUE|LKM_RECOVERY,
2288*3384f3dfSMark Fasheh 		      DLM_RECOVERY_LOCK_NAME, DLM_RECOVERY_LOCK_NAME_LEN,
2289*3384f3dfSMark Fasheh 		      dlm_reco_ast, dlm, dlm_reco_bast);
22906714d8e8SKurt Hackel 
2291e2faea4cSKurt Hackel 	mlog(0, "%s: dlmlock($RECOVERY) returned %d, lksb=%d\n",
2292e2faea4cSKurt Hackel 	     dlm->name, ret, lksb.status);
2293e2faea4cSKurt Hackel 
22946714d8e8SKurt Hackel 	if (ret == DLM_NORMAL) {
22956714d8e8SKurt Hackel 		mlog(0, "dlm=%s dlmlock says I got it (this=%u)\n",
22966714d8e8SKurt Hackel 		     dlm->name, dlm->node_num);
2297e2faea4cSKurt Hackel 
2298e2faea4cSKurt Hackel 		/* got the EX lock.  check to see if another node
2299e2faea4cSKurt Hackel 		 * just became the reco master */
2300e2faea4cSKurt Hackel 		if (dlm_reco_master_ready(dlm)) {
2301e2faea4cSKurt Hackel 			mlog(0, "%s: got reco EX lock, but %u will "
2302e2faea4cSKurt Hackel 			     "do the recovery\n", dlm->name,
2303e2faea4cSKurt Hackel 			     dlm->reco.new_master);
2304e2faea4cSKurt Hackel 			status = -EEXIST;
2305e2faea4cSKurt Hackel 		} else {
2306898effacSKurt Hackel 			status = 0;
2307898effacSKurt Hackel 
2308898effacSKurt Hackel 			/* see if recovery was already finished elsewhere */
2309898effacSKurt Hackel 			spin_lock(&dlm->spinlock);
2310898effacSKurt Hackel 			if (dlm->reco.dead_node == O2NM_INVALID_NODE_NUM) {
2311898effacSKurt Hackel 				status = -EINVAL;
2312898effacSKurt Hackel 				mlog(0, "%s: got reco EX lock, but "
2313898effacSKurt Hackel 				     "node got recovered already\n", dlm->name);
2314898effacSKurt Hackel 				if (dlm->reco.new_master != O2NM_INVALID_NODE_NUM) {
2315898effacSKurt Hackel 					mlog(ML_ERROR, "%s: new master is %u "
2316898effacSKurt Hackel 					     "but no dead node!\n",
2317898effacSKurt Hackel 					     dlm->name, dlm->reco.new_master);
2318898effacSKurt Hackel 					BUG();
2319898effacSKurt Hackel 				}
2320898effacSKurt Hackel 			}
2321898effacSKurt Hackel 			spin_unlock(&dlm->spinlock);
2322898effacSKurt Hackel 		}
2323898effacSKurt Hackel 
2324898effacSKurt Hackel 		/* if this node has actually become the recovery master,
2325898effacSKurt Hackel 		 * set the master and send the messages to begin recovery */
2326898effacSKurt Hackel 		if (!status) {
2327898effacSKurt Hackel 			mlog(0, "%s: dead=%u, this=%u, sending "
2328898effacSKurt Hackel 			     "begin_reco now\n", dlm->name,
2329898effacSKurt Hackel 			     dlm->reco.dead_node, dlm->node_num);
23306714d8e8SKurt Hackel 			status = dlm_send_begin_reco_message(dlm,
23316714d8e8SKurt Hackel 				      dlm->reco.dead_node);
2332e2faea4cSKurt Hackel 			/* this always succeeds */
2333e2faea4cSKurt Hackel 			BUG_ON(status);
2334e2faea4cSKurt Hackel 
2335e2faea4cSKurt Hackel 			/* set the new_master to this node */
2336e2faea4cSKurt Hackel 			spin_lock(&dlm->spinlock);
2337ab27eb6fSKurt Hackel 			dlm_set_reco_master(dlm, dlm->node_num);
2338e2faea4cSKurt Hackel 			spin_unlock(&dlm->spinlock);
2339e2faea4cSKurt Hackel 		}
23406714d8e8SKurt Hackel 
23416714d8e8SKurt Hackel 		/* recovery lock is a special case.  ast will not get fired,
23426714d8e8SKurt Hackel 		 * so just go ahead and unlock it. */
23436714d8e8SKurt Hackel 		ret = dlmunlock(dlm, &lksb, 0, dlm_reco_unlock_ast, dlm);
2344e2faea4cSKurt Hackel 		if (ret == DLM_DENIED) {
2345e2faea4cSKurt Hackel 			mlog(0, "got DLM_DENIED, trying LKM_CANCEL\n");
2346e2faea4cSKurt Hackel 			ret = dlmunlock(dlm, &lksb, LKM_CANCEL, dlm_reco_unlock_ast, dlm);
2347e2faea4cSKurt Hackel 		}
23486714d8e8SKurt Hackel 		if (ret != DLM_NORMAL) {
23496714d8e8SKurt Hackel 			/* this would really suck. this could only happen
23506714d8e8SKurt Hackel 			 * if there was a network error during the unlock
23516714d8e8SKurt Hackel 			 * because of node death.  this means the unlock
23526714d8e8SKurt Hackel 			 * is actually "done" and the lock structure is
23536714d8e8SKurt Hackel 			 * even freed.  we can continue, but only
23546714d8e8SKurt Hackel 			 * because this specific lock name is special. */
2355e2faea4cSKurt Hackel 			mlog(ML_ERROR, "dlmunlock returned %d\n", ret);
23566714d8e8SKurt Hackel 		}
23576714d8e8SKurt Hackel 	} else if (ret == DLM_NOTQUEUED) {
23586714d8e8SKurt Hackel 		mlog(0, "dlm=%s dlmlock says another node got it (this=%u)\n",
23596714d8e8SKurt Hackel 		     dlm->name, dlm->node_num);
23606714d8e8SKurt Hackel 		/* another node is master. wait on
2361e2faea4cSKurt Hackel 		 * reco.new_master != O2NM_INVALID_NODE_NUM
2362e2faea4cSKurt Hackel 		 * for at most one second */
2363e2faea4cSKurt Hackel 		wait_event_timeout(dlm->dlm_reco_thread_wq,
2364e2faea4cSKurt Hackel 					 dlm_reco_master_ready(dlm),
2365e2faea4cSKurt Hackel 					 msecs_to_jiffies(1000));
2366e2faea4cSKurt Hackel 		if (!dlm_reco_master_ready(dlm)) {
2367e2faea4cSKurt Hackel 			mlog(0, "%s: reco master taking awhile\n",
2368e2faea4cSKurt Hackel 			     dlm->name);
2369e2faea4cSKurt Hackel 			goto again;
2370e2faea4cSKurt Hackel 		}
2371e2faea4cSKurt Hackel 		/* another node has informed this one that it is reco master */
2372e2faea4cSKurt Hackel 		mlog(0, "%s: reco master %u is ready to recover %u\n",
2373e2faea4cSKurt Hackel 		     dlm->name, dlm->reco.new_master, dlm->reco.dead_node);
23746714d8e8SKurt Hackel 		status = -EEXIST;
2375c8df412eSKurt Hackel 	} else if (ret == DLM_RECOVERING) {
2376c8df412eSKurt Hackel 		mlog(0, "dlm=%s dlmlock says master node died (this=%u)\n",
2377c8df412eSKurt Hackel 		     dlm->name, dlm->node_num);
2378c8df412eSKurt Hackel 		goto again;
2379e2faea4cSKurt Hackel 	} else {
2380e2faea4cSKurt Hackel 		struct dlm_lock_resource *res;
2381e2faea4cSKurt Hackel 
2382e2faea4cSKurt Hackel 		/* dlmlock returned something other than NOTQUEUED or NORMAL */
2383e2faea4cSKurt Hackel 		mlog(ML_ERROR, "%s: got %s from dlmlock($RECOVERY), "
2384e2faea4cSKurt Hackel 		     "lksb.status=%s\n", dlm->name, dlm_errname(ret),
2385e2faea4cSKurt Hackel 		     dlm_errname(lksb.status));
2386e2faea4cSKurt Hackel 		res = dlm_lookup_lockres(dlm, DLM_RECOVERY_LOCK_NAME,
2387e2faea4cSKurt Hackel 					 DLM_RECOVERY_LOCK_NAME_LEN);
2388e2faea4cSKurt Hackel 		if (res) {
2389e2faea4cSKurt Hackel 			dlm_print_one_lock_resource(res);
2390e2faea4cSKurt Hackel 			dlm_lockres_put(res);
2391e2faea4cSKurt Hackel 		} else {
2392e2faea4cSKurt Hackel 			mlog(ML_ERROR, "recovery lock not found\n");
2393e2faea4cSKurt Hackel 		}
2394e2faea4cSKurt Hackel 		BUG();
23956714d8e8SKurt Hackel 	}
23966714d8e8SKurt Hackel 
23976714d8e8SKurt Hackel 	return status;
23986714d8e8SKurt Hackel }
23996714d8e8SKurt Hackel 
24006714d8e8SKurt Hackel static int dlm_send_begin_reco_message(struct dlm_ctxt *dlm, u8 dead_node)
24016714d8e8SKurt Hackel {
24026714d8e8SKurt Hackel 	struct dlm_begin_reco br;
24036714d8e8SKurt Hackel 	int ret = 0;
24046714d8e8SKurt Hackel 	struct dlm_node_iter iter;
24056714d8e8SKurt Hackel 	int nodenum;
24066714d8e8SKurt Hackel 	int status;
24076714d8e8SKurt Hackel 
24086714d8e8SKurt Hackel 	mlog_entry("%u\n", dead_node);
24096714d8e8SKurt Hackel 
2410d6dea6e9SKurt Hackel 	mlog(0, "%s: dead node is %u\n", dlm->name, dead_node);
24116714d8e8SKurt Hackel 
24126714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
24136714d8e8SKurt Hackel 	dlm_node_iter_init(dlm->domain_map, &iter);
24146714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
24156714d8e8SKurt Hackel 
24166714d8e8SKurt Hackel 	clear_bit(dead_node, iter.node_map);
24176714d8e8SKurt Hackel 
24186714d8e8SKurt Hackel 	memset(&br, 0, sizeof(br));
24196714d8e8SKurt Hackel 	br.node_idx = dlm->node_num;
24206714d8e8SKurt Hackel 	br.dead_node = dead_node;
24216714d8e8SKurt Hackel 
24226714d8e8SKurt Hackel 	while ((nodenum = dlm_node_iter_next(&iter)) >= 0) {
24236714d8e8SKurt Hackel 		ret = 0;
24246714d8e8SKurt Hackel 		if (nodenum == dead_node) {
24256714d8e8SKurt Hackel 			mlog(0, "not sending begin reco to dead node "
24266714d8e8SKurt Hackel 				  "%u\n", dead_node);
24276714d8e8SKurt Hackel 			continue;
24286714d8e8SKurt Hackel 		}
24296714d8e8SKurt Hackel 		if (nodenum == dlm->node_num) {
24306714d8e8SKurt Hackel 			mlog(0, "not sending begin reco to self\n");
24316714d8e8SKurt Hackel 			continue;
24326714d8e8SKurt Hackel 		}
2433e2faea4cSKurt Hackel retry:
24346714d8e8SKurt Hackel 		ret = -EINVAL;
24356714d8e8SKurt Hackel 		mlog(0, "attempting to send begin reco msg to %d\n",
24366714d8e8SKurt Hackel 			  nodenum);
24376714d8e8SKurt Hackel 		ret = o2net_send_message(DLM_BEGIN_RECO_MSG, dlm->key,
24386714d8e8SKurt Hackel 					 &br, sizeof(br), nodenum, &status);
24396714d8e8SKurt Hackel 		/* negative status is handled ok by caller here */
24406714d8e8SKurt Hackel 		if (ret >= 0)
24416714d8e8SKurt Hackel 			ret = status;
2442e2faea4cSKurt Hackel 		if (dlm_is_host_down(ret)) {
2443e2faea4cSKurt Hackel 			/* node is down.  not involved in recovery
2444e2faea4cSKurt Hackel 			 * so just keep going */
2445e2faea4cSKurt Hackel 			mlog(0, "%s: node %u was down when sending "
2446e2faea4cSKurt Hackel 			     "begin reco msg (%d)\n", dlm->name, nodenum, ret);
2447e2faea4cSKurt Hackel 			ret = 0;
2448e2faea4cSKurt Hackel 		}
24496714d8e8SKurt Hackel 		if (ret < 0) {
24506714d8e8SKurt Hackel 			struct dlm_lock_resource *res;
2451e2faea4cSKurt Hackel 			/* this is now a serious problem, possibly ENOMEM
2452e2faea4cSKurt Hackel 			 * in the network stack.  must retry */
24536714d8e8SKurt Hackel 			mlog_errno(ret);
24546714d8e8SKurt Hackel 			mlog(ML_ERROR, "begin reco of dlm %s to node %u "
24556714d8e8SKurt Hackel 			    " returned %d\n", dlm->name, nodenum, ret);
24566714d8e8SKurt Hackel 			res = dlm_lookup_lockres(dlm, DLM_RECOVERY_LOCK_NAME,
24576714d8e8SKurt Hackel 						 DLM_RECOVERY_LOCK_NAME_LEN);
24586714d8e8SKurt Hackel 			if (res) {
24596714d8e8SKurt Hackel 				dlm_print_one_lock_resource(res);
24606714d8e8SKurt Hackel 				dlm_lockres_put(res);
24616714d8e8SKurt Hackel 			} else {
24626714d8e8SKurt Hackel 				mlog(ML_ERROR, "recovery lock not found\n");
24636714d8e8SKurt Hackel 			}
2464e2faea4cSKurt Hackel 			/* sleep for a bit in hopes that we can avoid
2465e2faea4cSKurt Hackel 			 * another ENOMEM */
2466e2faea4cSKurt Hackel 			msleep(100);
2467e2faea4cSKurt Hackel 			goto retry;
2468466d1a45SKurt Hackel 		} else if (ret == EAGAIN) {
2469466d1a45SKurt Hackel 			mlog(0, "%s: trying to start recovery of node "
2470466d1a45SKurt Hackel 			     "%u, but node %u is waiting for last recovery "
2471466d1a45SKurt Hackel 			     "to complete, backoff for a bit\n", dlm->name,
2472466d1a45SKurt Hackel 			     dead_node, nodenum);
2473466d1a45SKurt Hackel 			/* TODO Look into replacing msleep with cond_resched() */
2474466d1a45SKurt Hackel 			msleep(100);
2475466d1a45SKurt Hackel 			goto retry;
24766714d8e8SKurt Hackel 		}
24776714d8e8SKurt Hackel 	}
24786714d8e8SKurt Hackel 
24796714d8e8SKurt Hackel 	return ret;
24806714d8e8SKurt Hackel }
24816714d8e8SKurt Hackel 
24826714d8e8SKurt Hackel int dlm_begin_reco_handler(struct o2net_msg *msg, u32 len, void *data)
24836714d8e8SKurt Hackel {
24846714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
24856714d8e8SKurt Hackel 	struct dlm_begin_reco *br = (struct dlm_begin_reco *)msg->buf;
24866714d8e8SKurt Hackel 
24876714d8e8SKurt Hackel 	/* ok to return 0, domain has gone away */
24886714d8e8SKurt Hackel 	if (!dlm_grab(dlm))
24896714d8e8SKurt Hackel 		return 0;
24906714d8e8SKurt Hackel 
2491466d1a45SKurt Hackel 	spin_lock(&dlm->spinlock);
2492466d1a45SKurt Hackel 	if (dlm->reco.state & DLM_RECO_STATE_FINALIZE) {
2493466d1a45SKurt Hackel 		mlog(0, "%s: node %u wants to recover node %u (%u:%u) "
2494466d1a45SKurt Hackel 		     "but this node is in finalize state, waiting on finalize2\n",
2495466d1a45SKurt Hackel 		     dlm->name, br->node_idx, br->dead_node,
2496466d1a45SKurt Hackel 		     dlm->reco.dead_node, dlm->reco.new_master);
2497466d1a45SKurt Hackel 		spin_unlock(&dlm->spinlock);
2498466d1a45SKurt Hackel 		return EAGAIN;
2499466d1a45SKurt Hackel 	}
2500466d1a45SKurt Hackel 	spin_unlock(&dlm->spinlock);
2501466d1a45SKurt Hackel 
2502d6dea6e9SKurt Hackel 	mlog(0, "%s: node %u wants to recover node %u (%u:%u)\n",
2503d6dea6e9SKurt Hackel 	     dlm->name, br->node_idx, br->dead_node,
2504d6dea6e9SKurt Hackel 	     dlm->reco.dead_node, dlm->reco.new_master);
25056714d8e8SKurt Hackel 
25066714d8e8SKurt Hackel 	dlm_fire_domain_eviction_callbacks(dlm, br->dead_node);
25076714d8e8SKurt Hackel 
25086714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
25096714d8e8SKurt Hackel 	if (dlm->reco.new_master != O2NM_INVALID_NODE_NUM) {
2510e2faea4cSKurt Hackel 		if (test_bit(dlm->reco.new_master, dlm->recovery_map)) {
2511e2faea4cSKurt Hackel 			mlog(0, "%s: new_master %u died, changing "
2512e2faea4cSKurt Hackel 			     "to %u\n", dlm->name, dlm->reco.new_master,
2513e2faea4cSKurt Hackel 			     br->node_idx);
2514e2faea4cSKurt Hackel 		} else {
2515e2faea4cSKurt Hackel 			mlog(0, "%s: new_master %u NOT DEAD, changing "
2516e2faea4cSKurt Hackel 			     "to %u\n", dlm->name, dlm->reco.new_master,
2517e2faea4cSKurt Hackel 			     br->node_idx);
2518e2faea4cSKurt Hackel 			/* may not have seen the new master as dead yet */
2519e2faea4cSKurt Hackel 		}
25206714d8e8SKurt Hackel 	}
25216714d8e8SKurt Hackel 	if (dlm->reco.dead_node != O2NM_INVALID_NODE_NUM) {
2522e2faea4cSKurt Hackel 		mlog(ML_NOTICE, "%s: dead_node previously set to %u, "
2523e2faea4cSKurt Hackel 		     "node %u changing it to %u\n", dlm->name,
2524e2faea4cSKurt Hackel 		     dlm->reco.dead_node, br->node_idx, br->dead_node);
25256714d8e8SKurt Hackel 	}
2526ab27eb6fSKurt Hackel 	dlm_set_reco_master(dlm, br->node_idx);
2527ab27eb6fSKurt Hackel 	dlm_set_reco_dead_node(dlm, br->dead_node);
25286714d8e8SKurt Hackel 	if (!test_bit(br->dead_node, dlm->recovery_map)) {
2529e2faea4cSKurt Hackel 		mlog(0, "recovery master %u sees %u as dead, but this "
25306714d8e8SKurt Hackel 		     "node has not yet.  marking %u as dead\n",
25316714d8e8SKurt Hackel 		     br->node_idx, br->dead_node, br->dead_node);
2532e2faea4cSKurt Hackel 		if (!test_bit(br->dead_node, dlm->domain_map) ||
2533e2faea4cSKurt Hackel 		    !test_bit(br->dead_node, dlm->live_nodes_map))
2534e2faea4cSKurt Hackel 			mlog(0, "%u not in domain/live_nodes map "
2535e2faea4cSKurt Hackel 			     "so setting it in reco map manually\n",
2536e2faea4cSKurt Hackel 			     br->dead_node);
2537c03872f5SKurt Hackel 		/* force the recovery cleanup in __dlm_hb_node_down
2538c03872f5SKurt Hackel 		 * both of these will be cleared in a moment */
2539c03872f5SKurt Hackel 		set_bit(br->dead_node, dlm->domain_map);
2540c03872f5SKurt Hackel 		set_bit(br->dead_node, dlm->live_nodes_map);
25416714d8e8SKurt Hackel 		__dlm_hb_node_down(dlm, br->dead_node);
25426714d8e8SKurt Hackel 	}
25436714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
25446714d8e8SKurt Hackel 
25456714d8e8SKurt Hackel 	dlm_kick_recovery_thread(dlm);
2546d6dea6e9SKurt Hackel 
2547d6dea6e9SKurt Hackel 	mlog(0, "%s: recovery started by node %u, for %u (%u:%u)\n",
2548d6dea6e9SKurt Hackel 	     dlm->name, br->node_idx, br->dead_node,
2549d6dea6e9SKurt Hackel 	     dlm->reco.dead_node, dlm->reco.new_master);
2550d6dea6e9SKurt Hackel 
25516714d8e8SKurt Hackel 	dlm_put(dlm);
25526714d8e8SKurt Hackel 	return 0;
25536714d8e8SKurt Hackel }
25546714d8e8SKurt Hackel 
2555466d1a45SKurt Hackel #define DLM_FINALIZE_STAGE2  0x01
25566714d8e8SKurt Hackel static int dlm_send_finalize_reco_message(struct dlm_ctxt *dlm)
25576714d8e8SKurt Hackel {
25586714d8e8SKurt Hackel 	int ret = 0;
25596714d8e8SKurt Hackel 	struct dlm_finalize_reco fr;
25606714d8e8SKurt Hackel 	struct dlm_node_iter iter;
25616714d8e8SKurt Hackel 	int nodenum;
25626714d8e8SKurt Hackel 	int status;
2563466d1a45SKurt Hackel 	int stage = 1;
25646714d8e8SKurt Hackel 
2565466d1a45SKurt Hackel 	mlog(0, "finishing recovery for node %s:%u, "
2566466d1a45SKurt Hackel 	     "stage %d\n", dlm->name, dlm->reco.dead_node, stage);
25676714d8e8SKurt Hackel 
25686714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
25696714d8e8SKurt Hackel 	dlm_node_iter_init(dlm->domain_map, &iter);
25706714d8e8SKurt Hackel 	spin_unlock(&dlm->spinlock);
25716714d8e8SKurt Hackel 
2572466d1a45SKurt Hackel stage2:
25736714d8e8SKurt Hackel 	memset(&fr, 0, sizeof(fr));
25746714d8e8SKurt Hackel 	fr.node_idx = dlm->node_num;
25756714d8e8SKurt Hackel 	fr.dead_node = dlm->reco.dead_node;
2576466d1a45SKurt Hackel 	if (stage == 2)
2577466d1a45SKurt Hackel 		fr.flags |= DLM_FINALIZE_STAGE2;
25786714d8e8SKurt Hackel 
25796714d8e8SKurt Hackel 	while ((nodenum = dlm_node_iter_next(&iter)) >= 0) {
25806714d8e8SKurt Hackel 		if (nodenum == dlm->node_num)
25816714d8e8SKurt Hackel 			continue;
25826714d8e8SKurt Hackel 		ret = o2net_send_message(DLM_FINALIZE_RECO_MSG, dlm->key,
25836714d8e8SKurt Hackel 					 &fr, sizeof(fr), nodenum, &status);
2584466d1a45SKurt Hackel 		if (ret >= 0)
25856714d8e8SKurt Hackel 			ret = status;
2586466d1a45SKurt Hackel 		if (ret < 0) {
2587466d1a45SKurt Hackel 			mlog_errno(ret);
25886714d8e8SKurt Hackel 			if (dlm_is_host_down(ret)) {
25896714d8e8SKurt Hackel 				/* this has no effect on this recovery
25906714d8e8SKurt Hackel 				 * session, so set the status to zero to
25916714d8e8SKurt Hackel 				 * finish out the last recovery */
25926714d8e8SKurt Hackel 				mlog(ML_ERROR, "node %u went down after this "
25936714d8e8SKurt Hackel 				     "node finished recovery.\n", nodenum);
25946714d8e8SKurt Hackel 				ret = 0;
2595c27069e6SKurt Hackel 				continue;
25966714d8e8SKurt Hackel 			}
25976714d8e8SKurt Hackel 			break;
25986714d8e8SKurt Hackel 		}
25996714d8e8SKurt Hackel 	}
2600466d1a45SKurt Hackel 	if (stage == 1) {
2601466d1a45SKurt Hackel 		/* reset the node_iter back to the top and send finalize2 */
2602466d1a45SKurt Hackel 		iter.curnode = -1;
2603466d1a45SKurt Hackel 		stage = 2;
2604466d1a45SKurt Hackel 		goto stage2;
2605466d1a45SKurt Hackel 	}
26066714d8e8SKurt Hackel 
26076714d8e8SKurt Hackel 	return ret;
26086714d8e8SKurt Hackel }
26096714d8e8SKurt Hackel 
26106714d8e8SKurt Hackel int dlm_finalize_reco_handler(struct o2net_msg *msg, u32 len, void *data)
26116714d8e8SKurt Hackel {
26126714d8e8SKurt Hackel 	struct dlm_ctxt *dlm = data;
26136714d8e8SKurt Hackel 	struct dlm_finalize_reco *fr = (struct dlm_finalize_reco *)msg->buf;
2614466d1a45SKurt Hackel 	int stage = 1;
26156714d8e8SKurt Hackel 
26166714d8e8SKurt Hackel 	/* ok to return 0, domain has gone away */
26176714d8e8SKurt Hackel 	if (!dlm_grab(dlm))
26186714d8e8SKurt Hackel 		return 0;
26196714d8e8SKurt Hackel 
2620466d1a45SKurt Hackel 	if (fr->flags & DLM_FINALIZE_STAGE2)
2621466d1a45SKurt Hackel 		stage = 2;
2622466d1a45SKurt Hackel 
2623466d1a45SKurt Hackel 	mlog(0, "%s: node %u finalizing recovery stage%d of "
2624466d1a45SKurt Hackel 	     "node %u (%u:%u)\n", dlm->name, fr->node_idx, stage,
2625466d1a45SKurt Hackel 	     fr->dead_node, dlm->reco.dead_node, dlm->reco.new_master);
26266714d8e8SKurt Hackel 
26276714d8e8SKurt Hackel 	spin_lock(&dlm->spinlock);
26286714d8e8SKurt Hackel 
26296714d8e8SKurt Hackel 	if (dlm->reco.new_master != fr->node_idx) {
26306714d8e8SKurt Hackel 		mlog(ML_ERROR, "node %u sent recovery finalize msg, but node "
26316714d8e8SKurt Hackel 		     "%u is supposed to be the new master, dead=%u\n",
26326714d8e8SKurt Hackel 		     fr->node_idx, dlm->reco.new_master, fr->dead_node);
26336714d8e8SKurt Hackel 		BUG();
26346714d8e8SKurt Hackel 	}
26356714d8e8SKurt Hackel 	if (dlm->reco.dead_node != fr->dead_node) {
26366714d8e8SKurt Hackel 		mlog(ML_ERROR, "node %u sent recovery finalize msg for dead "
26376714d8e8SKurt Hackel 		     "node %u, but node %u is supposed to be dead\n",
26386714d8e8SKurt Hackel 		     fr->node_idx, fr->dead_node, dlm->reco.dead_node);
26396714d8e8SKurt Hackel 		BUG();
26406714d8e8SKurt Hackel 	}
26416714d8e8SKurt Hackel 
2642466d1a45SKurt Hackel 	switch (stage) {
2643466d1a45SKurt Hackel 		case 1:
26446714d8e8SKurt Hackel 			dlm_finish_local_lockres_recovery(dlm, fr->dead_node, fr->node_idx);
2645466d1a45SKurt Hackel 			if (dlm->reco.state & DLM_RECO_STATE_FINALIZE) {
2646466d1a45SKurt Hackel 				mlog(ML_ERROR, "%s: received finalize1 from "
2647466d1a45SKurt Hackel 				     "new master %u for dead node %u, but "
2648466d1a45SKurt Hackel 				     "this node has already received it!\n",
2649466d1a45SKurt Hackel 				     dlm->name, fr->node_idx, fr->dead_node);
2650466d1a45SKurt Hackel 				dlm_print_reco_node_status(dlm);
2651466d1a45SKurt Hackel 				BUG();
2652466d1a45SKurt Hackel 			}
2653466d1a45SKurt Hackel 			dlm->reco.state |= DLM_RECO_STATE_FINALIZE;
26546714d8e8SKurt Hackel 			spin_unlock(&dlm->spinlock);
2655466d1a45SKurt Hackel 			break;
2656466d1a45SKurt Hackel 		case 2:
2657466d1a45SKurt Hackel 			if (!(dlm->reco.state & DLM_RECO_STATE_FINALIZE)) {
2658466d1a45SKurt Hackel 				mlog(ML_ERROR, "%s: received finalize2 from "
2659466d1a45SKurt Hackel 				     "new master %u for dead node %u, but "
2660466d1a45SKurt Hackel 				     "this node did not have finalize1!\n",
2661466d1a45SKurt Hackel 				     dlm->name, fr->node_idx, fr->dead_node);
2662466d1a45SKurt Hackel 				dlm_print_reco_node_status(dlm);
2663466d1a45SKurt Hackel 				BUG();
2664466d1a45SKurt Hackel 			}
2665466d1a45SKurt Hackel 			dlm->reco.state &= ~DLM_RECO_STATE_FINALIZE;
2666466d1a45SKurt Hackel 			spin_unlock(&dlm->spinlock);
26676714d8e8SKurt Hackel 			dlm_reset_recovery(dlm);
26686714d8e8SKurt Hackel 			dlm_kick_recovery_thread(dlm);
2669466d1a45SKurt Hackel 			break;
2670466d1a45SKurt Hackel 		default:
2671466d1a45SKurt Hackel 			BUG();
2672466d1a45SKurt Hackel 	}
2673466d1a45SKurt Hackel 
2674d6dea6e9SKurt Hackel 	mlog(0, "%s: recovery done, reco master was %u, dead now %u, master now %u\n",
2675d6dea6e9SKurt Hackel 	     dlm->name, fr->node_idx, dlm->reco.dead_node, dlm->reco.new_master);
2676d6dea6e9SKurt Hackel 
26776714d8e8SKurt Hackel 	dlm_put(dlm);
26786714d8e8SKurt Hackel 	return 0;
26796714d8e8SKurt Hackel }
2680