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1 /* -*- mode: c; c-basic-offset: 8; -*-
2  * vim: noexpandtab sw=8 ts=8 sts=0:
3  *
4  * dlmglue.c
5  *
6  * Code which implements an OCFS2 specific interface to our DLM.
7  *
8  * Copyright (C) 2003, 2004 Oracle.  All rights reserved.
9  *
10  * This program is free software; you can redistribute it and/or
11  * modify it under the terms of the GNU General Public
12  * License as published by the Free Software Foundation; either
13  * version 2 of the License, or (at your option) any later version.
14  *
15  * This program is distributed in the hope that it will be useful,
16  * but WITHOUT ANY WARRANTY; without even the implied warranty of
17  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
18  * General Public License for more details.
19  *
20  * You should have received a copy of the GNU General Public
21  * License along with this program; if not, write to the
22  * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
23  * Boston, MA 021110-1307, USA.
24  */
25 
26 #include <linux/types.h>
27 #include <linux/slab.h>
28 #include <linux/highmem.h>
29 #include <linux/mm.h>
30 #include <linux/kthread.h>
31 #include <linux/pagemap.h>
32 #include <linux/debugfs.h>
33 #include <linux/seq_file.h>
34 #include <linux/time.h>
35 #include <linux/quotaops.h>
36 
37 #define MLOG_MASK_PREFIX ML_DLM_GLUE
38 #include <cluster/masklog.h>
39 
40 #include "ocfs2.h"
41 #include "ocfs2_lockingver.h"
42 
43 #include "alloc.h"
44 #include "dcache.h"
45 #include "dlmglue.h"
46 #include "extent_map.h"
47 #include "file.h"
48 #include "heartbeat.h"
49 #include "inode.h"
50 #include "journal.h"
51 #include "stackglue.h"
52 #include "slot_map.h"
53 #include "super.h"
54 #include "uptodate.h"
55 #include "quota.h"
56 #include "refcounttree.h"
57 
58 #include "buffer_head_io.h"
59 
60 struct ocfs2_mask_waiter {
61 	struct list_head	mw_item;
62 	int			mw_status;
63 	struct completion	mw_complete;
64 	unsigned long		mw_mask;
65 	unsigned long		mw_goal;
66 #ifdef CONFIG_OCFS2_FS_STATS
67 	ktime_t			mw_lock_start;
68 #endif
69 };
70 
71 static struct ocfs2_super *ocfs2_get_dentry_osb(struct ocfs2_lock_res *lockres);
72 static struct ocfs2_super *ocfs2_get_inode_osb(struct ocfs2_lock_res *lockres);
73 static struct ocfs2_super *ocfs2_get_file_osb(struct ocfs2_lock_res *lockres);
74 static struct ocfs2_super *ocfs2_get_qinfo_osb(struct ocfs2_lock_res *lockres);
75 
76 /*
77  * Return value from ->downconvert_worker functions.
78  *
79  * These control the precise actions of ocfs2_unblock_lock()
80  * and ocfs2_process_blocked_lock()
81  *
82  */
83 enum ocfs2_unblock_action {
84 	UNBLOCK_CONTINUE	= 0, /* Continue downconvert */
85 	UNBLOCK_CONTINUE_POST	= 1, /* Continue downconvert, fire
86 				      * ->post_unlock callback */
87 	UNBLOCK_STOP_POST	= 2, /* Do not downconvert, fire
88 				      * ->post_unlock() callback. */
89 };
90 
91 struct ocfs2_unblock_ctl {
92 	int requeue;
93 	enum ocfs2_unblock_action unblock_action;
94 };
95 
96 /* Lockdep class keys */
97 struct lock_class_key lockdep_keys[OCFS2_NUM_LOCK_TYPES];
98 
99 static int ocfs2_check_meta_downconvert(struct ocfs2_lock_res *lockres,
100 					int new_level);
101 static void ocfs2_set_meta_lvb(struct ocfs2_lock_res *lockres);
102 
103 static int ocfs2_data_convert_worker(struct ocfs2_lock_res *lockres,
104 				     int blocking);
105 
106 static int ocfs2_dentry_convert_worker(struct ocfs2_lock_res *lockres,
107 				       int blocking);
108 
109 static void ocfs2_dentry_post_unlock(struct ocfs2_super *osb,
110 				     struct ocfs2_lock_res *lockres);
111 
112 static void ocfs2_set_qinfo_lvb(struct ocfs2_lock_res *lockres);
113 
114 static int ocfs2_check_refcount_downconvert(struct ocfs2_lock_res *lockres,
115 					    int new_level);
116 static int ocfs2_refcount_convert_worker(struct ocfs2_lock_res *lockres,
117 					 int blocking);
118 
119 #define mlog_meta_lvb(__level, __lockres) ocfs2_dump_meta_lvb_info(__level, __PRETTY_FUNCTION__, __LINE__, __lockres)
120 
121 /* This aids in debugging situations where a bad LVB might be involved. */
ocfs2_dump_meta_lvb_info(u64 level,const char * function,unsigned int line,struct ocfs2_lock_res * lockres)122 static void ocfs2_dump_meta_lvb_info(u64 level,
123 				     const char *function,
124 				     unsigned int line,
125 				     struct ocfs2_lock_res *lockres)
126 {
127 	struct ocfs2_meta_lvb *lvb = ocfs2_dlm_lvb(&lockres->l_lksb);
128 
129 	mlog(level, "LVB information for %s (called from %s:%u):\n",
130 	     lockres->l_name, function, line);
131 	mlog(level, "version: %u, clusters: %u, generation: 0x%x\n",
132 	     lvb->lvb_version, be32_to_cpu(lvb->lvb_iclusters),
133 	     be32_to_cpu(lvb->lvb_igeneration));
134 	mlog(level, "size: %llu, uid %u, gid %u, mode 0x%x\n",
135 	     (unsigned long long)be64_to_cpu(lvb->lvb_isize),
136 	     be32_to_cpu(lvb->lvb_iuid), be32_to_cpu(lvb->lvb_igid),
137 	     be16_to_cpu(lvb->lvb_imode));
138 	mlog(level, "nlink %u, atime_packed 0x%llx, ctime_packed 0x%llx, "
139 	     "mtime_packed 0x%llx iattr 0x%x\n", be16_to_cpu(lvb->lvb_inlink),
140 	     (long long)be64_to_cpu(lvb->lvb_iatime_packed),
141 	     (long long)be64_to_cpu(lvb->lvb_ictime_packed),
142 	     (long long)be64_to_cpu(lvb->lvb_imtime_packed),
143 	     be32_to_cpu(lvb->lvb_iattr));
144 }
145 
146 
147 /*
148  * OCFS2 Lock Resource Operations
149  *
150  * These fine tune the behavior of the generic dlmglue locking infrastructure.
151  *
152  * The most basic of lock types can point ->l_priv to their respective
153  * struct ocfs2_super and allow the default actions to manage things.
154  *
155  * Right now, each lock type also needs to implement an init function,
156  * and trivial lock/unlock wrappers. ocfs2_simple_drop_lockres()
157  * should be called when the lock is no longer needed (i.e., object
158  * destruction time).
159  */
160 struct ocfs2_lock_res_ops {
161 	/*
162 	 * Translate an ocfs2_lock_res * into an ocfs2_super *. Define
163 	 * this callback if ->l_priv is not an ocfs2_super pointer
164 	 */
165 	struct ocfs2_super * (*get_osb)(struct ocfs2_lock_res *);
166 
167 	/*
168 	 * Optionally called in the downconvert thread after a
169 	 * successful downconvert. The lockres will not be referenced
170 	 * after this callback is called, so it is safe to free
171 	 * memory, etc.
172 	 *
173 	 * The exact semantics of when this is called are controlled
174 	 * by ->downconvert_worker()
175 	 */
176 	void (*post_unlock)(struct ocfs2_super *, struct ocfs2_lock_res *);
177 
178 	/*
179 	 * Allow a lock type to add checks to determine whether it is
180 	 * safe to downconvert a lock. Return 0 to re-queue the
181 	 * downconvert at a later time, nonzero to continue.
182 	 *
183 	 * For most locks, the default checks that there are no
184 	 * incompatible holders are sufficient.
185 	 *
186 	 * Called with the lockres spinlock held.
187 	 */
188 	int (*check_downconvert)(struct ocfs2_lock_res *, int);
189 
190 	/*
191 	 * Allows a lock type to populate the lock value block. This
192 	 * is called on downconvert, and when we drop a lock.
193 	 *
194 	 * Locks that want to use this should set LOCK_TYPE_USES_LVB
195 	 * in the flags field.
196 	 *
197 	 * Called with the lockres spinlock held.
198 	 */
199 	void (*set_lvb)(struct ocfs2_lock_res *);
200 
201 	/*
202 	 * Called from the downconvert thread when it is determined
203 	 * that a lock will be downconverted. This is called without
204 	 * any locks held so the function can do work that might
205 	 * schedule (syncing out data, etc).
206 	 *
207 	 * This should return any one of the ocfs2_unblock_action
208 	 * values, depending on what it wants the thread to do.
209 	 */
210 	int (*downconvert_worker)(struct ocfs2_lock_res *, int);
211 
212 	/*
213 	 * LOCK_TYPE_* flags which describe the specific requirements
214 	 * of a lock type. Descriptions of each individual flag follow.
215 	 */
216 	int flags;
217 };
218 
219 /*
220  * Some locks want to "refresh" potentially stale data when a
221  * meaningful (PRMODE or EXMODE) lock level is first obtained. If this
222  * flag is set, the OCFS2_LOCK_NEEDS_REFRESH flag will be set on the
223  * individual lockres l_flags member from the ast function. It is
224  * expected that the locking wrapper will clear the
225  * OCFS2_LOCK_NEEDS_REFRESH flag when done.
226  */
227 #define LOCK_TYPE_REQUIRES_REFRESH 0x1
228 
229 /*
230  * Indicate that a lock type makes use of the lock value block. The
231  * ->set_lvb lock type callback must be defined.
232  */
233 #define LOCK_TYPE_USES_LVB		0x2
234 
235 static struct ocfs2_lock_res_ops ocfs2_inode_rw_lops = {
236 	.get_osb	= ocfs2_get_inode_osb,
237 	.flags		= 0,
238 };
239 
240 static struct ocfs2_lock_res_ops ocfs2_inode_inode_lops = {
241 	.get_osb	= ocfs2_get_inode_osb,
242 	.check_downconvert = ocfs2_check_meta_downconvert,
243 	.set_lvb	= ocfs2_set_meta_lvb,
244 	.downconvert_worker = ocfs2_data_convert_worker,
245 	.flags		= LOCK_TYPE_REQUIRES_REFRESH|LOCK_TYPE_USES_LVB,
246 };
247 
248 static struct ocfs2_lock_res_ops ocfs2_super_lops = {
249 	.flags		= LOCK_TYPE_REQUIRES_REFRESH,
250 };
251 
252 static struct ocfs2_lock_res_ops ocfs2_rename_lops = {
253 	.flags		= 0,
254 };
255 
256 static struct ocfs2_lock_res_ops ocfs2_nfs_sync_lops = {
257 	.flags		= 0,
258 };
259 
260 static struct ocfs2_lock_res_ops ocfs2_orphan_scan_lops = {
261 	.flags		= LOCK_TYPE_REQUIRES_REFRESH|LOCK_TYPE_USES_LVB,
262 };
263 
264 static struct ocfs2_lock_res_ops ocfs2_dentry_lops = {
265 	.get_osb	= ocfs2_get_dentry_osb,
266 	.post_unlock	= ocfs2_dentry_post_unlock,
267 	.downconvert_worker = ocfs2_dentry_convert_worker,
268 	.flags		= 0,
269 };
270 
271 static struct ocfs2_lock_res_ops ocfs2_inode_open_lops = {
272 	.get_osb	= ocfs2_get_inode_osb,
273 	.flags		= 0,
274 };
275 
276 static struct ocfs2_lock_res_ops ocfs2_flock_lops = {
277 	.get_osb	= ocfs2_get_file_osb,
278 	.flags		= 0,
279 };
280 
281 static struct ocfs2_lock_res_ops ocfs2_qinfo_lops = {
282 	.set_lvb	= ocfs2_set_qinfo_lvb,
283 	.get_osb	= ocfs2_get_qinfo_osb,
284 	.flags		= LOCK_TYPE_REQUIRES_REFRESH | LOCK_TYPE_USES_LVB,
285 };
286 
287 static struct ocfs2_lock_res_ops ocfs2_refcount_block_lops = {
288 	.check_downconvert = ocfs2_check_refcount_downconvert,
289 	.downconvert_worker = ocfs2_refcount_convert_worker,
290 	.flags		= 0,
291 };
292 
ocfs2_is_inode_lock(struct ocfs2_lock_res * lockres)293 static inline int ocfs2_is_inode_lock(struct ocfs2_lock_res *lockres)
294 {
295 	return lockres->l_type == OCFS2_LOCK_TYPE_META ||
296 		lockres->l_type == OCFS2_LOCK_TYPE_RW ||
297 		lockres->l_type == OCFS2_LOCK_TYPE_OPEN;
298 }
299 
ocfs2_lksb_to_lock_res(struct ocfs2_dlm_lksb * lksb)300 static inline struct ocfs2_lock_res *ocfs2_lksb_to_lock_res(struct ocfs2_dlm_lksb *lksb)
301 {
302 	return container_of(lksb, struct ocfs2_lock_res, l_lksb);
303 }
304 
ocfs2_lock_res_inode(struct ocfs2_lock_res * lockres)305 static inline struct inode *ocfs2_lock_res_inode(struct ocfs2_lock_res *lockres)
306 {
307 	BUG_ON(!ocfs2_is_inode_lock(lockres));
308 
309 	return (struct inode *) lockres->l_priv;
310 }
311 
ocfs2_lock_res_dl(struct ocfs2_lock_res * lockres)312 static inline struct ocfs2_dentry_lock *ocfs2_lock_res_dl(struct ocfs2_lock_res *lockres)
313 {
314 	BUG_ON(lockres->l_type != OCFS2_LOCK_TYPE_DENTRY);
315 
316 	return (struct ocfs2_dentry_lock *)lockres->l_priv;
317 }
318 
ocfs2_lock_res_qinfo(struct ocfs2_lock_res * lockres)319 static inline struct ocfs2_mem_dqinfo *ocfs2_lock_res_qinfo(struct ocfs2_lock_res *lockres)
320 {
321 	BUG_ON(lockres->l_type != OCFS2_LOCK_TYPE_QINFO);
322 
323 	return (struct ocfs2_mem_dqinfo *)lockres->l_priv;
324 }
325 
326 static inline struct ocfs2_refcount_tree *
ocfs2_lock_res_refcount_tree(struct ocfs2_lock_res * res)327 ocfs2_lock_res_refcount_tree(struct ocfs2_lock_res *res)
328 {
329 	return container_of(res, struct ocfs2_refcount_tree, rf_lockres);
330 }
331 
ocfs2_get_lockres_osb(struct ocfs2_lock_res * lockres)332 static inline struct ocfs2_super *ocfs2_get_lockres_osb(struct ocfs2_lock_res *lockres)
333 {
334 	if (lockres->l_ops->get_osb)
335 		return lockres->l_ops->get_osb(lockres);
336 
337 	return (struct ocfs2_super *)lockres->l_priv;
338 }
339 
340 static int ocfs2_lock_create(struct ocfs2_super *osb,
341 			     struct ocfs2_lock_res *lockres,
342 			     int level,
343 			     u32 dlm_flags);
344 static inline int ocfs2_may_continue_on_blocked_lock(struct ocfs2_lock_res *lockres,
345 						     int wanted);
346 static void __ocfs2_cluster_unlock(struct ocfs2_super *osb,
347 				   struct ocfs2_lock_res *lockres,
348 				   int level, unsigned long caller_ip);
ocfs2_cluster_unlock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres,int level)349 static inline void ocfs2_cluster_unlock(struct ocfs2_super *osb,
350 					struct ocfs2_lock_res *lockres,
351 					int level)
352 {
353 	__ocfs2_cluster_unlock(osb, lockres, level, _RET_IP_);
354 }
355 
356 static inline void ocfs2_generic_handle_downconvert_action(struct ocfs2_lock_res *lockres);
357 static inline void ocfs2_generic_handle_convert_action(struct ocfs2_lock_res *lockres);
358 static inline void ocfs2_generic_handle_attach_action(struct ocfs2_lock_res *lockres);
359 static int ocfs2_generic_handle_bast(struct ocfs2_lock_res *lockres, int level);
360 static void ocfs2_schedule_blocked_lock(struct ocfs2_super *osb,
361 					struct ocfs2_lock_res *lockres);
362 static inline void ocfs2_recover_from_dlm_error(struct ocfs2_lock_res *lockres,
363 						int convert);
364 #define ocfs2_log_dlm_error(_func, _err, _lockres) do {					\
365 	if ((_lockres)->l_type != OCFS2_LOCK_TYPE_DENTRY)				\
366 		mlog(ML_ERROR, "DLM error %d while calling %s on resource %s\n",	\
367 		     _err, _func, _lockres->l_name);					\
368 	else										\
369 		mlog(ML_ERROR, "DLM error %d while calling %s on resource %.*s%08x\n",	\
370 		     _err, _func, OCFS2_DENTRY_LOCK_INO_START - 1, (_lockres)->l_name,	\
371 		     (unsigned int)ocfs2_get_dentry_lock_ino(_lockres));		\
372 } while (0)
373 static int ocfs2_downconvert_thread(void *arg);
374 static void ocfs2_downconvert_on_unlock(struct ocfs2_super *osb,
375 					struct ocfs2_lock_res *lockres);
376 static int ocfs2_inode_lock_update(struct inode *inode,
377 				  struct buffer_head **bh);
378 static void ocfs2_drop_osb_locks(struct ocfs2_super *osb);
379 static inline int ocfs2_highest_compat_lock_level(int level);
380 static unsigned int ocfs2_prepare_downconvert(struct ocfs2_lock_res *lockres,
381 					      int new_level);
382 static int ocfs2_downconvert_lock(struct ocfs2_super *osb,
383 				  struct ocfs2_lock_res *lockres,
384 				  int new_level,
385 				  int lvb,
386 				  unsigned int generation);
387 static int ocfs2_prepare_cancel_convert(struct ocfs2_super *osb,
388 				        struct ocfs2_lock_res *lockres);
389 static int ocfs2_cancel_convert(struct ocfs2_super *osb,
390 				struct ocfs2_lock_res *lockres);
391 
392 
ocfs2_build_lock_name(enum ocfs2_lock_type type,u64 blkno,u32 generation,char * name)393 static void ocfs2_build_lock_name(enum ocfs2_lock_type type,
394 				  u64 blkno,
395 				  u32 generation,
396 				  char *name)
397 {
398 	int len;
399 
400 	BUG_ON(type >= OCFS2_NUM_LOCK_TYPES);
401 
402 	len = snprintf(name, OCFS2_LOCK_ID_MAX_LEN, "%c%s%016llx%08x",
403 		       ocfs2_lock_type_char(type), OCFS2_LOCK_ID_PAD,
404 		       (long long)blkno, generation);
405 
406 	BUG_ON(len != (OCFS2_LOCK_ID_MAX_LEN - 1));
407 
408 	mlog(0, "built lock resource with name: %s\n", name);
409 }
410 
411 static DEFINE_SPINLOCK(ocfs2_dlm_tracking_lock);
412 
ocfs2_add_lockres_tracking(struct ocfs2_lock_res * res,struct ocfs2_dlm_debug * dlm_debug)413 static void ocfs2_add_lockres_tracking(struct ocfs2_lock_res *res,
414 				       struct ocfs2_dlm_debug *dlm_debug)
415 {
416 	mlog(0, "Add tracking for lockres %s\n", res->l_name);
417 
418 	spin_lock(&ocfs2_dlm_tracking_lock);
419 	list_add(&res->l_debug_list, &dlm_debug->d_lockres_tracking);
420 	spin_unlock(&ocfs2_dlm_tracking_lock);
421 }
422 
ocfs2_remove_lockres_tracking(struct ocfs2_lock_res * res)423 static void ocfs2_remove_lockres_tracking(struct ocfs2_lock_res *res)
424 {
425 	spin_lock(&ocfs2_dlm_tracking_lock);
426 	if (!list_empty(&res->l_debug_list))
427 		list_del_init(&res->l_debug_list);
428 	spin_unlock(&ocfs2_dlm_tracking_lock);
429 }
430 
431 #ifdef CONFIG_OCFS2_FS_STATS
ocfs2_init_lock_stats(struct ocfs2_lock_res * res)432 static void ocfs2_init_lock_stats(struct ocfs2_lock_res *res)
433 {
434 	res->l_lock_refresh = 0;
435 	memset(&res->l_lock_prmode, 0, sizeof(struct ocfs2_lock_stats));
436 	memset(&res->l_lock_exmode, 0, sizeof(struct ocfs2_lock_stats));
437 }
438 
ocfs2_update_lock_stats(struct ocfs2_lock_res * res,int level,struct ocfs2_mask_waiter * mw,int ret)439 static void ocfs2_update_lock_stats(struct ocfs2_lock_res *res, int level,
440 				    struct ocfs2_mask_waiter *mw, int ret)
441 {
442 	u32 usec;
443 	ktime_t kt;
444 	struct ocfs2_lock_stats *stats;
445 
446 	if (level == LKM_PRMODE)
447 		stats = &res->l_lock_prmode;
448 	else if (level == LKM_EXMODE)
449 		stats = &res->l_lock_exmode;
450 	else
451 		return;
452 
453 	kt = ktime_sub(ktime_get(), mw->mw_lock_start);
454 	usec = ktime_to_us(kt);
455 
456 	stats->ls_gets++;
457 	stats->ls_total += ktime_to_ns(kt);
458 	/* overflow */
459 	if (unlikely(stats->ls_gets == 0)) {
460 		stats->ls_gets++;
461 		stats->ls_total = ktime_to_ns(kt);
462 	}
463 
464 	if (stats->ls_max < usec)
465 		stats->ls_max = usec;
466 
467 	if (ret)
468 		stats->ls_fail++;
469 }
470 
ocfs2_track_lock_refresh(struct ocfs2_lock_res * lockres)471 static inline void ocfs2_track_lock_refresh(struct ocfs2_lock_res *lockres)
472 {
473 	lockres->l_lock_refresh++;
474 }
475 
ocfs2_init_start_time(struct ocfs2_mask_waiter * mw)476 static inline void ocfs2_init_start_time(struct ocfs2_mask_waiter *mw)
477 {
478 	mw->mw_lock_start = ktime_get();
479 }
480 #else
ocfs2_init_lock_stats(struct ocfs2_lock_res * res)481 static inline void ocfs2_init_lock_stats(struct ocfs2_lock_res *res)
482 {
483 }
ocfs2_update_lock_stats(struct ocfs2_lock_res * res,int level,struct ocfs2_mask_waiter * mw,int ret)484 static inline void ocfs2_update_lock_stats(struct ocfs2_lock_res *res,
485 			   int level, struct ocfs2_mask_waiter *mw, int ret)
486 {
487 }
ocfs2_track_lock_refresh(struct ocfs2_lock_res * lockres)488 static inline void ocfs2_track_lock_refresh(struct ocfs2_lock_res *lockres)
489 {
490 }
ocfs2_init_start_time(struct ocfs2_mask_waiter * mw)491 static inline void ocfs2_init_start_time(struct ocfs2_mask_waiter *mw)
492 {
493 }
494 #endif
495 
ocfs2_lock_res_init_common(struct ocfs2_super * osb,struct ocfs2_lock_res * res,enum ocfs2_lock_type type,struct ocfs2_lock_res_ops * ops,void * priv)496 static void ocfs2_lock_res_init_common(struct ocfs2_super *osb,
497 				       struct ocfs2_lock_res *res,
498 				       enum ocfs2_lock_type type,
499 				       struct ocfs2_lock_res_ops *ops,
500 				       void *priv)
501 {
502 	res->l_type          = type;
503 	res->l_ops           = ops;
504 	res->l_priv          = priv;
505 
506 	res->l_level         = DLM_LOCK_IV;
507 	res->l_requested     = DLM_LOCK_IV;
508 	res->l_blocking      = DLM_LOCK_IV;
509 	res->l_action        = OCFS2_AST_INVALID;
510 	res->l_unlock_action = OCFS2_UNLOCK_INVALID;
511 
512 	res->l_flags         = OCFS2_LOCK_INITIALIZED;
513 
514 	ocfs2_add_lockres_tracking(res, osb->osb_dlm_debug);
515 
516 	ocfs2_init_lock_stats(res);
517 #ifdef CONFIG_DEBUG_LOCK_ALLOC
518 	if (type != OCFS2_LOCK_TYPE_OPEN)
519 		lockdep_init_map(&res->l_lockdep_map, ocfs2_lock_type_strings[type],
520 				 &lockdep_keys[type], 0);
521 	else
522 		res->l_lockdep_map.key = NULL;
523 #endif
524 }
525 
ocfs2_lock_res_init_once(struct ocfs2_lock_res * res)526 void ocfs2_lock_res_init_once(struct ocfs2_lock_res *res)
527 {
528 	/* This also clears out the lock status block */
529 	memset(res, 0, sizeof(struct ocfs2_lock_res));
530 	spin_lock_init(&res->l_lock);
531 	init_waitqueue_head(&res->l_event);
532 	INIT_LIST_HEAD(&res->l_blocked_list);
533 	INIT_LIST_HEAD(&res->l_mask_waiters);
534 	INIT_LIST_HEAD(&res->l_holders);
535 }
536 
ocfs2_inode_lock_res_init(struct ocfs2_lock_res * res,enum ocfs2_lock_type type,unsigned int generation,struct inode * inode)537 void ocfs2_inode_lock_res_init(struct ocfs2_lock_res *res,
538 			       enum ocfs2_lock_type type,
539 			       unsigned int generation,
540 			       struct inode *inode)
541 {
542 	struct ocfs2_lock_res_ops *ops;
543 
544 	switch(type) {
545 		case OCFS2_LOCK_TYPE_RW:
546 			ops = &ocfs2_inode_rw_lops;
547 			break;
548 		case OCFS2_LOCK_TYPE_META:
549 			ops = &ocfs2_inode_inode_lops;
550 			break;
551 		case OCFS2_LOCK_TYPE_OPEN:
552 			ops = &ocfs2_inode_open_lops;
553 			break;
554 		default:
555 			mlog_bug_on_msg(1, "type: %d\n", type);
556 			ops = NULL; /* thanks, gcc */
557 			break;
558 	};
559 
560 	ocfs2_build_lock_name(type, OCFS2_I(inode)->ip_blkno,
561 			      generation, res->l_name);
562 	ocfs2_lock_res_init_common(OCFS2_SB(inode->i_sb), res, type, ops, inode);
563 }
564 
ocfs2_get_inode_osb(struct ocfs2_lock_res * lockres)565 static struct ocfs2_super *ocfs2_get_inode_osb(struct ocfs2_lock_res *lockres)
566 {
567 	struct inode *inode = ocfs2_lock_res_inode(lockres);
568 
569 	return OCFS2_SB(inode->i_sb);
570 }
571 
ocfs2_get_qinfo_osb(struct ocfs2_lock_res * lockres)572 static struct ocfs2_super *ocfs2_get_qinfo_osb(struct ocfs2_lock_res *lockres)
573 {
574 	struct ocfs2_mem_dqinfo *info = lockres->l_priv;
575 
576 	return OCFS2_SB(info->dqi_gi.dqi_sb);
577 }
578 
ocfs2_get_file_osb(struct ocfs2_lock_res * lockres)579 static struct ocfs2_super *ocfs2_get_file_osb(struct ocfs2_lock_res *lockres)
580 {
581 	struct ocfs2_file_private *fp = lockres->l_priv;
582 
583 	return OCFS2_SB(fp->fp_file->f_mapping->host->i_sb);
584 }
585 
ocfs2_get_dentry_lock_ino(struct ocfs2_lock_res * lockres)586 static __u64 ocfs2_get_dentry_lock_ino(struct ocfs2_lock_res *lockres)
587 {
588 	__be64 inode_blkno_be;
589 
590 	memcpy(&inode_blkno_be, &lockres->l_name[OCFS2_DENTRY_LOCK_INO_START],
591 	       sizeof(__be64));
592 
593 	return be64_to_cpu(inode_blkno_be);
594 }
595 
ocfs2_get_dentry_osb(struct ocfs2_lock_res * lockres)596 static struct ocfs2_super *ocfs2_get_dentry_osb(struct ocfs2_lock_res *lockres)
597 {
598 	struct ocfs2_dentry_lock *dl = lockres->l_priv;
599 
600 	return OCFS2_SB(dl->dl_inode->i_sb);
601 }
602 
ocfs2_dentry_lock_res_init(struct ocfs2_dentry_lock * dl,u64 parent,struct inode * inode)603 void ocfs2_dentry_lock_res_init(struct ocfs2_dentry_lock *dl,
604 				u64 parent, struct inode *inode)
605 {
606 	int len;
607 	u64 inode_blkno = OCFS2_I(inode)->ip_blkno;
608 	__be64 inode_blkno_be = cpu_to_be64(inode_blkno);
609 	struct ocfs2_lock_res *lockres = &dl->dl_lockres;
610 
611 	ocfs2_lock_res_init_once(lockres);
612 
613 	/*
614 	 * Unfortunately, the standard lock naming scheme won't work
615 	 * here because we have two 16 byte values to use. Instead,
616 	 * we'll stuff the inode number as a binary value. We still
617 	 * want error prints to show something without garbling the
618 	 * display, so drop a null byte in there before the inode
619 	 * number. A future version of OCFS2 will likely use all
620 	 * binary lock names. The stringified names have been a
621 	 * tremendous aid in debugging, but now that the debugfs
622 	 * interface exists, we can mangle things there if need be.
623 	 *
624 	 * NOTE: We also drop the standard "pad" value (the total lock
625 	 * name size stays the same though - the last part is all
626 	 * zeros due to the memset in ocfs2_lock_res_init_once()
627 	 */
628 	len = snprintf(lockres->l_name, OCFS2_DENTRY_LOCK_INO_START,
629 		       "%c%016llx",
630 		       ocfs2_lock_type_char(OCFS2_LOCK_TYPE_DENTRY),
631 		       (long long)parent);
632 
633 	BUG_ON(len != (OCFS2_DENTRY_LOCK_INO_START - 1));
634 
635 	memcpy(&lockres->l_name[OCFS2_DENTRY_LOCK_INO_START], &inode_blkno_be,
636 	       sizeof(__be64));
637 
638 	ocfs2_lock_res_init_common(OCFS2_SB(inode->i_sb), lockres,
639 				   OCFS2_LOCK_TYPE_DENTRY, &ocfs2_dentry_lops,
640 				   dl);
641 }
642 
ocfs2_super_lock_res_init(struct ocfs2_lock_res * res,struct ocfs2_super * osb)643 static void ocfs2_super_lock_res_init(struct ocfs2_lock_res *res,
644 				      struct ocfs2_super *osb)
645 {
646 	/* Superblock lockres doesn't come from a slab so we call init
647 	 * once on it manually.  */
648 	ocfs2_lock_res_init_once(res);
649 	ocfs2_build_lock_name(OCFS2_LOCK_TYPE_SUPER, OCFS2_SUPER_BLOCK_BLKNO,
650 			      0, res->l_name);
651 	ocfs2_lock_res_init_common(osb, res, OCFS2_LOCK_TYPE_SUPER,
652 				   &ocfs2_super_lops, osb);
653 }
654 
ocfs2_rename_lock_res_init(struct ocfs2_lock_res * res,struct ocfs2_super * osb)655 static void ocfs2_rename_lock_res_init(struct ocfs2_lock_res *res,
656 				       struct ocfs2_super *osb)
657 {
658 	/* Rename lockres doesn't come from a slab so we call init
659 	 * once on it manually.  */
660 	ocfs2_lock_res_init_once(res);
661 	ocfs2_build_lock_name(OCFS2_LOCK_TYPE_RENAME, 0, 0, res->l_name);
662 	ocfs2_lock_res_init_common(osb, res, OCFS2_LOCK_TYPE_RENAME,
663 				   &ocfs2_rename_lops, osb);
664 }
665 
ocfs2_nfs_sync_lock_res_init(struct ocfs2_lock_res * res,struct ocfs2_super * osb)666 static void ocfs2_nfs_sync_lock_res_init(struct ocfs2_lock_res *res,
667 					 struct ocfs2_super *osb)
668 {
669 	/* nfs_sync lockres doesn't come from a slab so we call init
670 	 * once on it manually.  */
671 	ocfs2_lock_res_init_once(res);
672 	ocfs2_build_lock_name(OCFS2_LOCK_TYPE_NFS_SYNC, 0, 0, res->l_name);
673 	ocfs2_lock_res_init_common(osb, res, OCFS2_LOCK_TYPE_NFS_SYNC,
674 				   &ocfs2_nfs_sync_lops, osb);
675 }
676 
ocfs2_orphan_scan_lock_res_init(struct ocfs2_lock_res * res,struct ocfs2_super * osb)677 static void ocfs2_orphan_scan_lock_res_init(struct ocfs2_lock_res *res,
678 					    struct ocfs2_super *osb)
679 {
680 	ocfs2_lock_res_init_once(res);
681 	ocfs2_build_lock_name(OCFS2_LOCK_TYPE_ORPHAN_SCAN, 0, 0, res->l_name);
682 	ocfs2_lock_res_init_common(osb, res, OCFS2_LOCK_TYPE_ORPHAN_SCAN,
683 				   &ocfs2_orphan_scan_lops, osb);
684 }
685 
ocfs2_file_lock_res_init(struct ocfs2_lock_res * lockres,struct ocfs2_file_private * fp)686 void ocfs2_file_lock_res_init(struct ocfs2_lock_res *lockres,
687 			      struct ocfs2_file_private *fp)
688 {
689 	struct inode *inode = fp->fp_file->f_mapping->host;
690 	struct ocfs2_inode_info *oi = OCFS2_I(inode);
691 
692 	ocfs2_lock_res_init_once(lockres);
693 	ocfs2_build_lock_name(OCFS2_LOCK_TYPE_FLOCK, oi->ip_blkno,
694 			      inode->i_generation, lockres->l_name);
695 	ocfs2_lock_res_init_common(OCFS2_SB(inode->i_sb), lockres,
696 				   OCFS2_LOCK_TYPE_FLOCK, &ocfs2_flock_lops,
697 				   fp);
698 	lockres->l_flags |= OCFS2_LOCK_NOCACHE;
699 }
700 
ocfs2_qinfo_lock_res_init(struct ocfs2_lock_res * lockres,struct ocfs2_mem_dqinfo * info)701 void ocfs2_qinfo_lock_res_init(struct ocfs2_lock_res *lockres,
702 			       struct ocfs2_mem_dqinfo *info)
703 {
704 	ocfs2_lock_res_init_once(lockres);
705 	ocfs2_build_lock_name(OCFS2_LOCK_TYPE_QINFO, info->dqi_gi.dqi_type,
706 			      0, lockres->l_name);
707 	ocfs2_lock_res_init_common(OCFS2_SB(info->dqi_gi.dqi_sb), lockres,
708 				   OCFS2_LOCK_TYPE_QINFO, &ocfs2_qinfo_lops,
709 				   info);
710 }
711 
ocfs2_refcount_lock_res_init(struct ocfs2_lock_res * lockres,struct ocfs2_super * osb,u64 ref_blkno,unsigned int generation)712 void ocfs2_refcount_lock_res_init(struct ocfs2_lock_res *lockres,
713 				  struct ocfs2_super *osb, u64 ref_blkno,
714 				  unsigned int generation)
715 {
716 	ocfs2_lock_res_init_once(lockres);
717 	ocfs2_build_lock_name(OCFS2_LOCK_TYPE_REFCOUNT, ref_blkno,
718 			      generation, lockres->l_name);
719 	ocfs2_lock_res_init_common(osb, lockres, OCFS2_LOCK_TYPE_REFCOUNT,
720 				   &ocfs2_refcount_block_lops, osb);
721 }
722 
ocfs2_lock_res_free(struct ocfs2_lock_res * res)723 void ocfs2_lock_res_free(struct ocfs2_lock_res *res)
724 {
725 	if (!(res->l_flags & OCFS2_LOCK_INITIALIZED))
726 		return;
727 
728 	ocfs2_remove_lockres_tracking(res);
729 
730 	mlog_bug_on_msg(!list_empty(&res->l_blocked_list),
731 			"Lockres %s is on the blocked list\n",
732 			res->l_name);
733 	mlog_bug_on_msg(!list_empty(&res->l_mask_waiters),
734 			"Lockres %s has mask waiters pending\n",
735 			res->l_name);
736 	mlog_bug_on_msg(spin_is_locked(&res->l_lock),
737 			"Lockres %s is locked\n",
738 			res->l_name);
739 	mlog_bug_on_msg(res->l_ro_holders,
740 			"Lockres %s has %u ro holders\n",
741 			res->l_name, res->l_ro_holders);
742 	mlog_bug_on_msg(res->l_ex_holders,
743 			"Lockres %s has %u ex holders\n",
744 			res->l_name, res->l_ex_holders);
745 
746 	/* Need to clear out the lock status block for the dlm */
747 	memset(&res->l_lksb, 0, sizeof(res->l_lksb));
748 
749 	res->l_flags = 0UL;
750 }
751 
752 /*
753  * Keep a list of processes who have interest in a lockres.
754  * Note: this is now only uesed for check recursive cluster locking.
755  */
ocfs2_add_holder(struct ocfs2_lock_res * lockres,struct ocfs2_lock_holder * oh)756 static inline void ocfs2_add_holder(struct ocfs2_lock_res *lockres,
757 				   struct ocfs2_lock_holder *oh)
758 {
759 	INIT_LIST_HEAD(&oh->oh_list);
760 	oh->oh_owner_pid = get_pid(task_pid(current));
761 
762 	spin_lock(&lockres->l_lock);
763 	list_add_tail(&oh->oh_list, &lockres->l_holders);
764 	spin_unlock(&lockres->l_lock);
765 }
766 
ocfs2_remove_holder(struct ocfs2_lock_res * lockres,struct ocfs2_lock_holder * oh)767 static inline void ocfs2_remove_holder(struct ocfs2_lock_res *lockres,
768 				       struct ocfs2_lock_holder *oh)
769 {
770 	spin_lock(&lockres->l_lock);
771 	list_del(&oh->oh_list);
772 	spin_unlock(&lockres->l_lock);
773 
774 	put_pid(oh->oh_owner_pid);
775 }
776 
ocfs2_is_locked_by_me(struct ocfs2_lock_res * lockres)777 static inline int ocfs2_is_locked_by_me(struct ocfs2_lock_res *lockres)
778 {
779 	struct ocfs2_lock_holder *oh;
780 	struct pid *pid;
781 
782 	/* look in the list of holders for one with the current task as owner */
783 	spin_lock(&lockres->l_lock);
784 	pid = task_pid(current);
785 	list_for_each_entry(oh, &lockres->l_holders, oh_list) {
786 		if (oh->oh_owner_pid == pid) {
787 			spin_unlock(&lockres->l_lock);
788 			return 1;
789 		}
790 	}
791 	spin_unlock(&lockres->l_lock);
792 
793 	return 0;
794 }
795 
ocfs2_inc_holders(struct ocfs2_lock_res * lockres,int level)796 static inline void ocfs2_inc_holders(struct ocfs2_lock_res *lockres,
797 				     int level)
798 {
799 	BUG_ON(!lockres);
800 
801 	switch(level) {
802 	case DLM_LOCK_EX:
803 		lockres->l_ex_holders++;
804 		break;
805 	case DLM_LOCK_PR:
806 		lockres->l_ro_holders++;
807 		break;
808 	default:
809 		BUG();
810 	}
811 }
812 
ocfs2_dec_holders(struct ocfs2_lock_res * lockres,int level)813 static inline void ocfs2_dec_holders(struct ocfs2_lock_res *lockres,
814 				     int level)
815 {
816 	BUG_ON(!lockres);
817 
818 	switch(level) {
819 	case DLM_LOCK_EX:
820 		BUG_ON(!lockres->l_ex_holders);
821 		lockres->l_ex_holders--;
822 		break;
823 	case DLM_LOCK_PR:
824 		BUG_ON(!lockres->l_ro_holders);
825 		lockres->l_ro_holders--;
826 		break;
827 	default:
828 		BUG();
829 	}
830 }
831 
832 /* WARNING: This function lives in a world where the only three lock
833  * levels are EX, PR, and NL. It *will* have to be adjusted when more
834  * lock types are added. */
ocfs2_highest_compat_lock_level(int level)835 static inline int ocfs2_highest_compat_lock_level(int level)
836 {
837 	int new_level = DLM_LOCK_EX;
838 
839 	if (level == DLM_LOCK_EX)
840 		new_level = DLM_LOCK_NL;
841 	else if (level == DLM_LOCK_PR)
842 		new_level = DLM_LOCK_PR;
843 	return new_level;
844 }
845 
lockres_set_flags(struct ocfs2_lock_res * lockres,unsigned long newflags)846 static void lockres_set_flags(struct ocfs2_lock_res *lockres,
847 			      unsigned long newflags)
848 {
849 	struct ocfs2_mask_waiter *mw, *tmp;
850 
851  	assert_spin_locked(&lockres->l_lock);
852 
853 	lockres->l_flags = newflags;
854 
855 	list_for_each_entry_safe(mw, tmp, &lockres->l_mask_waiters, mw_item) {
856 		if ((lockres->l_flags & mw->mw_mask) != mw->mw_goal)
857 			continue;
858 
859 		list_del_init(&mw->mw_item);
860 		mw->mw_status = 0;
861 		complete(&mw->mw_complete);
862 	}
863 }
lockres_or_flags(struct ocfs2_lock_res * lockres,unsigned long or)864 static void lockres_or_flags(struct ocfs2_lock_res *lockres, unsigned long or)
865 {
866 	lockres_set_flags(lockres, lockres->l_flags | or);
867 }
lockres_clear_flags(struct ocfs2_lock_res * lockres,unsigned long clear)868 static void lockres_clear_flags(struct ocfs2_lock_res *lockres,
869 				unsigned long clear)
870 {
871 	lockres_set_flags(lockres, lockres->l_flags & ~clear);
872 }
873 
ocfs2_generic_handle_downconvert_action(struct ocfs2_lock_res * lockres)874 static inline void ocfs2_generic_handle_downconvert_action(struct ocfs2_lock_res *lockres)
875 {
876 	BUG_ON(!(lockres->l_flags & OCFS2_LOCK_BUSY));
877 	BUG_ON(!(lockres->l_flags & OCFS2_LOCK_ATTACHED));
878 	BUG_ON(!(lockres->l_flags & OCFS2_LOCK_BLOCKED));
879 	BUG_ON(lockres->l_blocking <= DLM_LOCK_NL);
880 
881 	lockres->l_level = lockres->l_requested;
882 	if (lockres->l_level <=
883 	    ocfs2_highest_compat_lock_level(lockres->l_blocking)) {
884 		lockres->l_blocking = DLM_LOCK_NL;
885 		lockres_clear_flags(lockres, OCFS2_LOCK_BLOCKED);
886 	}
887 	lockres_clear_flags(lockres, OCFS2_LOCK_BUSY);
888 }
889 
ocfs2_generic_handle_convert_action(struct ocfs2_lock_res * lockres)890 static inline void ocfs2_generic_handle_convert_action(struct ocfs2_lock_res *lockres)
891 {
892 	BUG_ON(!(lockres->l_flags & OCFS2_LOCK_BUSY));
893 	BUG_ON(!(lockres->l_flags & OCFS2_LOCK_ATTACHED));
894 
895 	/* Convert from RO to EX doesn't really need anything as our
896 	 * information is already up to data. Convert from NL to
897 	 * *anything* however should mark ourselves as needing an
898 	 * update */
899 	if (lockres->l_level == DLM_LOCK_NL &&
900 	    lockres->l_ops->flags & LOCK_TYPE_REQUIRES_REFRESH)
901 		lockres_or_flags(lockres, OCFS2_LOCK_NEEDS_REFRESH);
902 
903 	lockres->l_level = lockres->l_requested;
904 
905 	/*
906 	 * We set the OCFS2_LOCK_UPCONVERT_FINISHING flag before clearing
907 	 * the OCFS2_LOCK_BUSY flag to prevent the dc thread from
908 	 * downconverting the lock before the upconvert has fully completed.
909 	 * Do not prevent the dc thread from downconverting if NONBLOCK lock
910 	 * had already returned.
911 	 */
912 	if (!(lockres->l_flags & OCFS2_LOCK_NONBLOCK_FINISHED))
913 		lockres_or_flags(lockres, OCFS2_LOCK_UPCONVERT_FINISHING);
914 	else
915 		lockres_clear_flags(lockres, OCFS2_LOCK_NONBLOCK_FINISHED);
916 
917 	lockres_clear_flags(lockres, OCFS2_LOCK_BUSY);
918 }
919 
ocfs2_generic_handle_attach_action(struct ocfs2_lock_res * lockres)920 static inline void ocfs2_generic_handle_attach_action(struct ocfs2_lock_res *lockres)
921 {
922 	BUG_ON((!(lockres->l_flags & OCFS2_LOCK_BUSY)));
923 	BUG_ON(lockres->l_flags & OCFS2_LOCK_ATTACHED);
924 
925 	if (lockres->l_requested > DLM_LOCK_NL &&
926 	    !(lockres->l_flags & OCFS2_LOCK_LOCAL) &&
927 	    lockres->l_ops->flags & LOCK_TYPE_REQUIRES_REFRESH)
928 		lockres_or_flags(lockres, OCFS2_LOCK_NEEDS_REFRESH);
929 
930 	lockres->l_level = lockres->l_requested;
931 	lockres_or_flags(lockres, OCFS2_LOCK_ATTACHED);
932 	lockres_clear_flags(lockres, OCFS2_LOCK_BUSY);
933 }
934 
ocfs2_generic_handle_bast(struct ocfs2_lock_res * lockres,int level)935 static int ocfs2_generic_handle_bast(struct ocfs2_lock_res *lockres,
936 				     int level)
937 {
938 	int needs_downconvert = 0;
939 
940 	assert_spin_locked(&lockres->l_lock);
941 
942 	if (level > lockres->l_blocking) {
943 		/* only schedule a downconvert if we haven't already scheduled
944 		 * one that goes low enough to satisfy the level we're
945 		 * blocking.  this also catches the case where we get
946 		 * duplicate BASTs */
947 		if (ocfs2_highest_compat_lock_level(level) <
948 		    ocfs2_highest_compat_lock_level(lockres->l_blocking))
949 			needs_downconvert = 1;
950 
951 		lockres->l_blocking = level;
952 	}
953 
954 	mlog(ML_BASTS, "lockres %s, block %d, level %d, l_block %d, dwn %d\n",
955 	     lockres->l_name, level, lockres->l_level, lockres->l_blocking,
956 	     needs_downconvert);
957 
958 	if (needs_downconvert)
959 		lockres_or_flags(lockres, OCFS2_LOCK_BLOCKED);
960 	mlog(0, "needs_downconvert = %d\n", needs_downconvert);
961 	return needs_downconvert;
962 }
963 
964 /*
965  * OCFS2_LOCK_PENDING and l_pending_gen.
966  *
967  * Why does OCFS2_LOCK_PENDING exist?  To close a race between setting
968  * OCFS2_LOCK_BUSY and calling ocfs2_dlm_lock().  See ocfs2_unblock_lock()
969  * for more details on the race.
970  *
971  * OCFS2_LOCK_PENDING closes the race quite nicely.  However, it introduces
972  * a race on itself.  In o2dlm, we can get the ast before ocfs2_dlm_lock()
973  * returns.  The ast clears OCFS2_LOCK_BUSY, and must therefore clear
974  * OCFS2_LOCK_PENDING at the same time.  When ocfs2_dlm_lock() returns,
975  * the caller is going to try to clear PENDING again.  If nothing else is
976  * happening, __lockres_clear_pending() sees PENDING is unset and does
977  * nothing.
978  *
979  * But what if another path (eg downconvert thread) has just started a
980  * new locking action?  The other path has re-set PENDING.  Our path
981  * cannot clear PENDING, because that will re-open the original race
982  * window.
983  *
984  * [Example]
985  *
986  * ocfs2_meta_lock()
987  *  ocfs2_cluster_lock()
988  *   set BUSY
989  *   set PENDING
990  *   drop l_lock
991  *   ocfs2_dlm_lock()
992  *    ocfs2_locking_ast()		ocfs2_downconvert_thread()
993  *     clear PENDING			 ocfs2_unblock_lock()
994  *					  take_l_lock
995  *					  !BUSY
996  *					  ocfs2_prepare_downconvert()
997  *					   set BUSY
998  *					   set PENDING
999  *					  drop l_lock
1000  *   take l_lock
1001  *   clear PENDING
1002  *   drop l_lock
1003  *			<window>
1004  *					  ocfs2_dlm_lock()
1005  *
1006  * So as you can see, we now have a window where l_lock is not held,
1007  * PENDING is not set, and ocfs2_dlm_lock() has not been called.
1008  *
1009  * The core problem is that ocfs2_cluster_lock() has cleared the PENDING
1010  * set by ocfs2_prepare_downconvert().  That wasn't nice.
1011  *
1012  * To solve this we introduce l_pending_gen.  A call to
1013  * lockres_clear_pending() will only do so when it is passed a generation
1014  * number that matches the lockres.  lockres_set_pending() will return the
1015  * current generation number.  When ocfs2_cluster_lock() goes to clear
1016  * PENDING, it passes the generation it got from set_pending().  In our
1017  * example above, the generation numbers will *not* match.  Thus,
1018  * ocfs2_cluster_lock() will not clear the PENDING set by
1019  * ocfs2_prepare_downconvert().
1020  */
1021 
1022 /* Unlocked version for ocfs2_locking_ast() */
__lockres_clear_pending(struct ocfs2_lock_res * lockres,unsigned int generation,struct ocfs2_super * osb)1023 static void __lockres_clear_pending(struct ocfs2_lock_res *lockres,
1024 				    unsigned int generation,
1025 				    struct ocfs2_super *osb)
1026 {
1027 	assert_spin_locked(&lockres->l_lock);
1028 
1029 	/*
1030 	 * The ast and locking functions can race us here.  The winner
1031 	 * will clear pending, the loser will not.
1032 	 */
1033 	if (!(lockres->l_flags & OCFS2_LOCK_PENDING) ||
1034 	    (lockres->l_pending_gen != generation))
1035 		return;
1036 
1037 	lockres_clear_flags(lockres, OCFS2_LOCK_PENDING);
1038 	lockres->l_pending_gen++;
1039 
1040 	/*
1041 	 * The downconvert thread may have skipped us because we
1042 	 * were PENDING.  Wake it up.
1043 	 */
1044 	if (lockres->l_flags & OCFS2_LOCK_BLOCKED)
1045 		ocfs2_wake_downconvert_thread(osb);
1046 }
1047 
1048 /* Locked version for callers of ocfs2_dlm_lock() */
lockres_clear_pending(struct ocfs2_lock_res * lockres,unsigned int generation,struct ocfs2_super * osb)1049 static void lockres_clear_pending(struct ocfs2_lock_res *lockres,
1050 				  unsigned int generation,
1051 				  struct ocfs2_super *osb)
1052 {
1053 	unsigned long flags;
1054 
1055 	spin_lock_irqsave(&lockres->l_lock, flags);
1056 	__lockres_clear_pending(lockres, generation, osb);
1057 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1058 }
1059 
lockres_set_pending(struct ocfs2_lock_res * lockres)1060 static unsigned int lockres_set_pending(struct ocfs2_lock_res *lockres)
1061 {
1062 	assert_spin_locked(&lockres->l_lock);
1063 	BUG_ON(!(lockres->l_flags & OCFS2_LOCK_BUSY));
1064 
1065 	lockres_or_flags(lockres, OCFS2_LOCK_PENDING);
1066 
1067 	return lockres->l_pending_gen;
1068 }
1069 
ocfs2_blocking_ast(struct ocfs2_dlm_lksb * lksb,int level)1070 static void ocfs2_blocking_ast(struct ocfs2_dlm_lksb *lksb, int level)
1071 {
1072 	struct ocfs2_lock_res *lockres = ocfs2_lksb_to_lock_res(lksb);
1073 	struct ocfs2_super *osb = ocfs2_get_lockres_osb(lockres);
1074 	int needs_downconvert;
1075 	unsigned long flags;
1076 
1077 	BUG_ON(level <= DLM_LOCK_NL);
1078 
1079 	mlog(ML_BASTS, "BAST fired for lockres %s, blocking %d, level %d, "
1080 	     "type %s\n", lockres->l_name, level, lockres->l_level,
1081 	     ocfs2_lock_type_string(lockres->l_type));
1082 
1083 	/*
1084 	 * We can skip the bast for locks which don't enable caching -
1085 	 * they'll be dropped at the earliest possible time anyway.
1086 	 */
1087 	if (lockres->l_flags & OCFS2_LOCK_NOCACHE)
1088 		return;
1089 
1090 	spin_lock_irqsave(&lockres->l_lock, flags);
1091 	needs_downconvert = ocfs2_generic_handle_bast(lockres, level);
1092 	if (needs_downconvert)
1093 		ocfs2_schedule_blocked_lock(osb, lockres);
1094 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1095 
1096 	wake_up(&lockres->l_event);
1097 
1098 	ocfs2_wake_downconvert_thread(osb);
1099 }
1100 
ocfs2_locking_ast(struct ocfs2_dlm_lksb * lksb)1101 static void ocfs2_locking_ast(struct ocfs2_dlm_lksb *lksb)
1102 {
1103 	struct ocfs2_lock_res *lockres = ocfs2_lksb_to_lock_res(lksb);
1104 	struct ocfs2_super *osb = ocfs2_get_lockres_osb(lockres);
1105 	unsigned long flags;
1106 	int status;
1107 
1108 	spin_lock_irqsave(&lockres->l_lock, flags);
1109 
1110 	status = ocfs2_dlm_lock_status(&lockres->l_lksb);
1111 
1112 	if (status == -EAGAIN) {
1113 		lockres_clear_flags(lockres, OCFS2_LOCK_BUSY);
1114 		goto out;
1115 	}
1116 
1117 	if (status) {
1118 		mlog(ML_ERROR, "lockres %s: lksb status value of %d!\n",
1119 		     lockres->l_name, status);
1120 		spin_unlock_irqrestore(&lockres->l_lock, flags);
1121 		return;
1122 	}
1123 
1124 	mlog(ML_BASTS, "AST fired for lockres %s, action %d, unlock %d, "
1125 	     "level %d => %d\n", lockres->l_name, lockres->l_action,
1126 	     lockres->l_unlock_action, lockres->l_level, lockres->l_requested);
1127 
1128 	switch(lockres->l_action) {
1129 	case OCFS2_AST_ATTACH:
1130 		ocfs2_generic_handle_attach_action(lockres);
1131 		lockres_clear_flags(lockres, OCFS2_LOCK_LOCAL);
1132 		break;
1133 	case OCFS2_AST_CONVERT:
1134 		ocfs2_generic_handle_convert_action(lockres);
1135 		break;
1136 	case OCFS2_AST_DOWNCONVERT:
1137 		ocfs2_generic_handle_downconvert_action(lockres);
1138 		break;
1139 	default:
1140 		mlog(ML_ERROR, "lockres %s: AST fired with invalid action: %u, "
1141 		     "flags 0x%lx, unlock: %u\n",
1142 		     lockres->l_name, lockres->l_action, lockres->l_flags,
1143 		     lockres->l_unlock_action);
1144 		BUG();
1145 	}
1146 out:
1147 	/* set it to something invalid so if we get called again we
1148 	 * can catch it. */
1149 	lockres->l_action = OCFS2_AST_INVALID;
1150 
1151 	/* Did we try to cancel this lock?  Clear that state */
1152 	if (lockres->l_unlock_action == OCFS2_UNLOCK_CANCEL_CONVERT)
1153 		lockres->l_unlock_action = OCFS2_UNLOCK_INVALID;
1154 
1155 	/*
1156 	 * We may have beaten the locking functions here.  We certainly
1157 	 * know that dlm_lock() has been called :-)
1158 	 * Because we can't have two lock calls in flight at once, we
1159 	 * can use lockres->l_pending_gen.
1160 	 */
1161 	__lockres_clear_pending(lockres, lockres->l_pending_gen,  osb);
1162 
1163 	wake_up(&lockres->l_event);
1164 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1165 }
1166 
ocfs2_unlock_ast(struct ocfs2_dlm_lksb * lksb,int error)1167 static void ocfs2_unlock_ast(struct ocfs2_dlm_lksb *lksb, int error)
1168 {
1169 	struct ocfs2_lock_res *lockres = ocfs2_lksb_to_lock_res(lksb);
1170 	unsigned long flags;
1171 
1172 	mlog(ML_BASTS, "UNLOCK AST fired for lockres %s, action = %d\n",
1173 	     lockres->l_name, lockres->l_unlock_action);
1174 
1175 	spin_lock_irqsave(&lockres->l_lock, flags);
1176 	if (error) {
1177 		mlog(ML_ERROR, "Dlm passes error %d for lock %s, "
1178 		     "unlock_action %d\n", error, lockres->l_name,
1179 		     lockres->l_unlock_action);
1180 		spin_unlock_irqrestore(&lockres->l_lock, flags);
1181 		return;
1182 	}
1183 
1184 	switch(lockres->l_unlock_action) {
1185 	case OCFS2_UNLOCK_CANCEL_CONVERT:
1186 		mlog(0, "Cancel convert success for %s\n", lockres->l_name);
1187 		lockres->l_action = OCFS2_AST_INVALID;
1188 		/* Downconvert thread may have requeued this lock, we
1189 		 * need to wake it. */
1190 		if (lockres->l_flags & OCFS2_LOCK_BLOCKED)
1191 			ocfs2_wake_downconvert_thread(ocfs2_get_lockres_osb(lockres));
1192 		break;
1193 	case OCFS2_UNLOCK_DROP_LOCK:
1194 		lockres->l_level = DLM_LOCK_IV;
1195 		break;
1196 	default:
1197 		BUG();
1198 	}
1199 
1200 	lockres_clear_flags(lockres, OCFS2_LOCK_BUSY);
1201 	lockres->l_unlock_action = OCFS2_UNLOCK_INVALID;
1202 	wake_up(&lockres->l_event);
1203 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1204 }
1205 
1206 /*
1207  * This is the filesystem locking protocol.  It provides the lock handling
1208  * hooks for the underlying DLM.  It has a maximum version number.
1209  * The version number allows interoperability with systems running at
1210  * the same major number and an equal or smaller minor number.
1211  *
1212  * Whenever the filesystem does new things with locks (adds or removes a
1213  * lock, orders them differently, does different things underneath a lock),
1214  * the version must be changed.  The protocol is negotiated when joining
1215  * the dlm domain.  A node may join the domain if its major version is
1216  * identical to all other nodes and its minor version is greater than
1217  * or equal to all other nodes.  When its minor version is greater than
1218  * the other nodes, it will run at the minor version specified by the
1219  * other nodes.
1220  *
1221  * If a locking change is made that will not be compatible with older
1222  * versions, the major number must be increased and the minor version set
1223  * to zero.  If a change merely adds a behavior that can be disabled when
1224  * speaking to older versions, the minor version must be increased.  If a
1225  * change adds a fully backwards compatible change (eg, LVB changes that
1226  * are just ignored by older versions), the version does not need to be
1227  * updated.
1228  */
1229 static struct ocfs2_locking_protocol lproto = {
1230 	.lp_max_version = {
1231 		.pv_major = OCFS2_LOCKING_PROTOCOL_MAJOR,
1232 		.pv_minor = OCFS2_LOCKING_PROTOCOL_MINOR,
1233 	},
1234 	.lp_lock_ast		= ocfs2_locking_ast,
1235 	.lp_blocking_ast	= ocfs2_blocking_ast,
1236 	.lp_unlock_ast		= ocfs2_unlock_ast,
1237 };
1238 
ocfs2_set_locking_protocol(void)1239 void ocfs2_set_locking_protocol(void)
1240 {
1241 	ocfs2_stack_glue_set_max_proto_version(&lproto.lp_max_version);
1242 }
1243 
ocfs2_recover_from_dlm_error(struct ocfs2_lock_res * lockres,int convert)1244 static inline void ocfs2_recover_from_dlm_error(struct ocfs2_lock_res *lockres,
1245 						int convert)
1246 {
1247 	unsigned long flags;
1248 
1249 	spin_lock_irqsave(&lockres->l_lock, flags);
1250 	lockres_clear_flags(lockres, OCFS2_LOCK_BUSY);
1251 	lockres_clear_flags(lockres, OCFS2_LOCK_UPCONVERT_FINISHING);
1252 	if (convert)
1253 		lockres->l_action = OCFS2_AST_INVALID;
1254 	else
1255 		lockres->l_unlock_action = OCFS2_UNLOCK_INVALID;
1256 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1257 
1258 	wake_up(&lockres->l_event);
1259 }
1260 
1261 /* Note: If we detect another process working on the lock (i.e.,
1262  * OCFS2_LOCK_BUSY), we'll bail out returning 0. It's up to the caller
1263  * to do the right thing in that case.
1264  */
ocfs2_lock_create(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres,int level,u32 dlm_flags)1265 static int ocfs2_lock_create(struct ocfs2_super *osb,
1266 			     struct ocfs2_lock_res *lockres,
1267 			     int level,
1268 			     u32 dlm_flags)
1269 {
1270 	int ret = 0;
1271 	unsigned long flags;
1272 	unsigned int gen;
1273 
1274 	mlog(0, "lock %s, level = %d, flags = %u\n", lockres->l_name, level,
1275 	     dlm_flags);
1276 
1277 	spin_lock_irqsave(&lockres->l_lock, flags);
1278 	if ((lockres->l_flags & OCFS2_LOCK_ATTACHED) ||
1279 	    (lockres->l_flags & OCFS2_LOCK_BUSY)) {
1280 		spin_unlock_irqrestore(&lockres->l_lock, flags);
1281 		goto bail;
1282 	}
1283 
1284 	lockres->l_action = OCFS2_AST_ATTACH;
1285 	lockres->l_requested = level;
1286 	lockres_or_flags(lockres, OCFS2_LOCK_BUSY);
1287 	gen = lockres_set_pending(lockres);
1288 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1289 
1290 	ret = ocfs2_dlm_lock(osb->cconn,
1291 			     level,
1292 			     &lockres->l_lksb,
1293 			     dlm_flags,
1294 			     lockres->l_name,
1295 			     OCFS2_LOCK_ID_MAX_LEN - 1);
1296 	lockres_clear_pending(lockres, gen, osb);
1297 	if (ret) {
1298 		ocfs2_log_dlm_error("ocfs2_dlm_lock", ret, lockres);
1299 		ocfs2_recover_from_dlm_error(lockres, 1);
1300 	}
1301 
1302 	mlog(0, "lock %s, return from ocfs2_dlm_lock\n", lockres->l_name);
1303 
1304 bail:
1305 	return ret;
1306 }
1307 
ocfs2_check_wait_flag(struct ocfs2_lock_res * lockres,int flag)1308 static inline int ocfs2_check_wait_flag(struct ocfs2_lock_res *lockres,
1309 					int flag)
1310 {
1311 	unsigned long flags;
1312 	int ret;
1313 
1314 	spin_lock_irqsave(&lockres->l_lock, flags);
1315 	ret = lockres->l_flags & flag;
1316 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1317 
1318 	return ret;
1319 }
1320 
ocfs2_wait_on_busy_lock(struct ocfs2_lock_res * lockres)1321 static inline void ocfs2_wait_on_busy_lock(struct ocfs2_lock_res *lockres)
1322 
1323 {
1324 	wait_event(lockres->l_event,
1325 		   !ocfs2_check_wait_flag(lockres, OCFS2_LOCK_BUSY));
1326 }
1327 
ocfs2_wait_on_refreshing_lock(struct ocfs2_lock_res * lockres)1328 static inline void ocfs2_wait_on_refreshing_lock(struct ocfs2_lock_res *lockres)
1329 
1330 {
1331 	wait_event(lockres->l_event,
1332 		   !ocfs2_check_wait_flag(lockres, OCFS2_LOCK_REFRESHING));
1333 }
1334 
1335 /* predict what lock level we'll be dropping down to on behalf
1336  * of another node, and return true if the currently wanted
1337  * level will be compatible with it. */
ocfs2_may_continue_on_blocked_lock(struct ocfs2_lock_res * lockres,int wanted)1338 static inline int ocfs2_may_continue_on_blocked_lock(struct ocfs2_lock_res *lockres,
1339 						     int wanted)
1340 {
1341 	BUG_ON(!(lockres->l_flags & OCFS2_LOCK_BLOCKED));
1342 
1343 	return wanted <= ocfs2_highest_compat_lock_level(lockres->l_blocking);
1344 }
1345 
ocfs2_init_mask_waiter(struct ocfs2_mask_waiter * mw)1346 static void ocfs2_init_mask_waiter(struct ocfs2_mask_waiter *mw)
1347 {
1348 	INIT_LIST_HEAD(&mw->mw_item);
1349 	init_completion(&mw->mw_complete);
1350 	ocfs2_init_start_time(mw);
1351 }
1352 
ocfs2_wait_for_mask(struct ocfs2_mask_waiter * mw)1353 static int ocfs2_wait_for_mask(struct ocfs2_mask_waiter *mw)
1354 {
1355 	wait_for_completion(&mw->mw_complete);
1356 	/* Re-arm the completion in case we want to wait on it again */
1357 	reinit_completion(&mw->mw_complete);
1358 	return mw->mw_status;
1359 }
1360 
lockres_add_mask_waiter(struct ocfs2_lock_res * lockres,struct ocfs2_mask_waiter * mw,unsigned long mask,unsigned long goal)1361 static void lockres_add_mask_waiter(struct ocfs2_lock_res *lockres,
1362 				    struct ocfs2_mask_waiter *mw,
1363 				    unsigned long mask,
1364 				    unsigned long goal)
1365 {
1366 	BUG_ON(!list_empty(&mw->mw_item));
1367 
1368 	assert_spin_locked(&lockres->l_lock);
1369 
1370 	list_add_tail(&mw->mw_item, &lockres->l_mask_waiters);
1371 	mw->mw_mask = mask;
1372 	mw->mw_goal = goal;
1373 }
1374 
1375 /* returns 0 if the mw that was removed was already satisfied, -EBUSY
1376  * if the mask still hadn't reached its goal */
__lockres_remove_mask_waiter(struct ocfs2_lock_res * lockres,struct ocfs2_mask_waiter * mw)1377 static int __lockres_remove_mask_waiter(struct ocfs2_lock_res *lockres,
1378 				      struct ocfs2_mask_waiter *mw)
1379 {
1380 	int ret = 0;
1381 
1382 	assert_spin_locked(&lockres->l_lock);
1383 	if (!list_empty(&mw->mw_item)) {
1384 		if ((lockres->l_flags & mw->mw_mask) != mw->mw_goal)
1385 			ret = -EBUSY;
1386 
1387 		list_del_init(&mw->mw_item);
1388 		init_completion(&mw->mw_complete);
1389 	}
1390 
1391 	return ret;
1392 }
1393 
lockres_remove_mask_waiter(struct ocfs2_lock_res * lockres,struct ocfs2_mask_waiter * mw)1394 static int lockres_remove_mask_waiter(struct ocfs2_lock_res *lockres,
1395 				      struct ocfs2_mask_waiter *mw)
1396 {
1397 	unsigned long flags;
1398 	int ret = 0;
1399 
1400 	spin_lock_irqsave(&lockres->l_lock, flags);
1401 	ret = __lockres_remove_mask_waiter(lockres, mw);
1402 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1403 
1404 	return ret;
1405 
1406 }
1407 
ocfs2_wait_for_mask_interruptible(struct ocfs2_mask_waiter * mw,struct ocfs2_lock_res * lockres)1408 static int ocfs2_wait_for_mask_interruptible(struct ocfs2_mask_waiter *mw,
1409 					     struct ocfs2_lock_res *lockres)
1410 {
1411 	int ret;
1412 
1413 	ret = wait_for_completion_interruptible(&mw->mw_complete);
1414 	if (ret)
1415 		lockres_remove_mask_waiter(lockres, mw);
1416 	else
1417 		ret = mw->mw_status;
1418 	/* Re-arm the completion in case we want to wait on it again */
1419 	reinit_completion(&mw->mw_complete);
1420 	return ret;
1421 }
1422 
__ocfs2_cluster_lock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres,int level,u32 lkm_flags,int arg_flags,int l_subclass,unsigned long caller_ip)1423 static int __ocfs2_cluster_lock(struct ocfs2_super *osb,
1424 				struct ocfs2_lock_res *lockres,
1425 				int level,
1426 				u32 lkm_flags,
1427 				int arg_flags,
1428 				int l_subclass,
1429 				unsigned long caller_ip)
1430 {
1431 	struct ocfs2_mask_waiter mw;
1432 	int wait, catch_signals = !(osb->s_mount_opt & OCFS2_MOUNT_NOINTR);
1433 	int ret = 0; /* gcc doesn't realize wait = 1 guarantees ret is set */
1434 	unsigned long flags;
1435 	unsigned int gen;
1436 	int noqueue_attempted = 0;
1437 	int dlm_locked = 0;
1438 	int kick_dc = 0;
1439 
1440 	if (!(lockres->l_flags & OCFS2_LOCK_INITIALIZED)) {
1441 		mlog_errno(-EINVAL);
1442 		return -EINVAL;
1443 	}
1444 
1445 	ocfs2_init_mask_waiter(&mw);
1446 
1447 	if (lockres->l_ops->flags & LOCK_TYPE_USES_LVB)
1448 		lkm_flags |= DLM_LKF_VALBLK;
1449 
1450 again:
1451 	wait = 0;
1452 
1453 	spin_lock_irqsave(&lockres->l_lock, flags);
1454 
1455 	if (catch_signals && signal_pending(current)) {
1456 		ret = -ERESTARTSYS;
1457 		goto unlock;
1458 	}
1459 
1460 	mlog_bug_on_msg(lockres->l_flags & OCFS2_LOCK_FREEING,
1461 			"Cluster lock called on freeing lockres %s! flags "
1462 			"0x%lx\n", lockres->l_name, lockres->l_flags);
1463 
1464 	/* We only compare against the currently granted level
1465 	 * here. If the lock is blocked waiting on a downconvert,
1466 	 * we'll get caught below. */
1467 	if (lockres->l_flags & OCFS2_LOCK_BUSY &&
1468 	    level > lockres->l_level) {
1469 		/* is someone sitting in dlm_lock? If so, wait on
1470 		 * them. */
1471 		lockres_add_mask_waiter(lockres, &mw, OCFS2_LOCK_BUSY, 0);
1472 		wait = 1;
1473 		goto unlock;
1474 	}
1475 
1476 	if (lockres->l_flags & OCFS2_LOCK_UPCONVERT_FINISHING) {
1477 		/*
1478 		 * We've upconverted. If the lock now has a level we can
1479 		 * work with, we take it. If, however, the lock is not at the
1480 		 * required level, we go thru the full cycle. One way this could
1481 		 * happen is if a process requesting an upconvert to PR is
1482 		 * closely followed by another requesting upconvert to an EX.
1483 		 * If the process requesting EX lands here, we want it to
1484 		 * continue attempting to upconvert and let the process
1485 		 * requesting PR take the lock.
1486 		 * If multiple processes request upconvert to PR, the first one
1487 		 * here will take the lock. The others will have to go thru the
1488 		 * OCFS2_LOCK_BLOCKED check to ensure that there is no pending
1489 		 * downconvert request.
1490 		 */
1491 		if (level <= lockres->l_level)
1492 			goto update_holders;
1493 	}
1494 
1495 	if (lockres->l_flags & OCFS2_LOCK_BLOCKED &&
1496 	    !ocfs2_may_continue_on_blocked_lock(lockres, level)) {
1497 		/* is the lock is currently blocked on behalf of
1498 		 * another node */
1499 		lockres_add_mask_waiter(lockres, &mw, OCFS2_LOCK_BLOCKED, 0);
1500 		wait = 1;
1501 		goto unlock;
1502 	}
1503 
1504 	if (level > lockres->l_level) {
1505 		if (noqueue_attempted > 0) {
1506 			ret = -EAGAIN;
1507 			goto unlock;
1508 		}
1509 		if (lkm_flags & DLM_LKF_NOQUEUE)
1510 			noqueue_attempted = 1;
1511 
1512 		if (lockres->l_action != OCFS2_AST_INVALID)
1513 			mlog(ML_ERROR, "lockres %s has action %u pending\n",
1514 			     lockres->l_name, lockres->l_action);
1515 
1516 		if (!(lockres->l_flags & OCFS2_LOCK_ATTACHED)) {
1517 			lockres->l_action = OCFS2_AST_ATTACH;
1518 			lkm_flags &= ~DLM_LKF_CONVERT;
1519 		} else {
1520 			lockres->l_action = OCFS2_AST_CONVERT;
1521 			lkm_flags |= DLM_LKF_CONVERT;
1522 		}
1523 
1524 		lockres->l_requested = level;
1525 		lockres_or_flags(lockres, OCFS2_LOCK_BUSY);
1526 		gen = lockres_set_pending(lockres);
1527 		spin_unlock_irqrestore(&lockres->l_lock, flags);
1528 
1529 		BUG_ON(level == DLM_LOCK_IV);
1530 		BUG_ON(level == DLM_LOCK_NL);
1531 
1532 		mlog(ML_BASTS, "lockres %s, convert from %d to %d\n",
1533 		     lockres->l_name, lockres->l_level, level);
1534 
1535 		/* call dlm_lock to upgrade lock now */
1536 		ret = ocfs2_dlm_lock(osb->cconn,
1537 				     level,
1538 				     &lockres->l_lksb,
1539 				     lkm_flags,
1540 				     lockres->l_name,
1541 				     OCFS2_LOCK_ID_MAX_LEN - 1);
1542 		lockres_clear_pending(lockres, gen, osb);
1543 		if (ret) {
1544 			if (!(lkm_flags & DLM_LKF_NOQUEUE) ||
1545 			    (ret != -EAGAIN)) {
1546 				ocfs2_log_dlm_error("ocfs2_dlm_lock",
1547 						    ret, lockres);
1548 			}
1549 			ocfs2_recover_from_dlm_error(lockres, 1);
1550 			goto out;
1551 		}
1552 		dlm_locked = 1;
1553 
1554 		mlog(0, "lock %s, successful return from ocfs2_dlm_lock\n",
1555 		     lockres->l_name);
1556 
1557 		/* At this point we've gone inside the dlm and need to
1558 		 * complete our work regardless. */
1559 		catch_signals = 0;
1560 
1561 		/* wait for busy to clear and carry on */
1562 		goto again;
1563 	}
1564 
1565 update_holders:
1566 	/* Ok, if we get here then we're good to go. */
1567 	ocfs2_inc_holders(lockres, level);
1568 
1569 	ret = 0;
1570 unlock:
1571 	lockres_clear_flags(lockres, OCFS2_LOCK_UPCONVERT_FINISHING);
1572 
1573 	/* ocfs2_unblock_lock reques on seeing OCFS2_LOCK_UPCONVERT_FINISHING */
1574 	kick_dc = (lockres->l_flags & OCFS2_LOCK_BLOCKED);
1575 
1576 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1577 	if (kick_dc)
1578 		ocfs2_wake_downconvert_thread(osb);
1579 out:
1580 	/*
1581 	 * This is helping work around a lock inversion between the page lock
1582 	 * and dlm locks.  One path holds the page lock while calling aops
1583 	 * which block acquiring dlm locks.  The voting thread holds dlm
1584 	 * locks while acquiring page locks while down converting data locks.
1585 	 * This block is helping an aop path notice the inversion and back
1586 	 * off to unlock its page lock before trying the dlm lock again.
1587 	 */
1588 	if (wait && arg_flags & OCFS2_LOCK_NONBLOCK &&
1589 	    mw.mw_mask & (OCFS2_LOCK_BUSY|OCFS2_LOCK_BLOCKED)) {
1590 		wait = 0;
1591 		spin_lock_irqsave(&lockres->l_lock, flags);
1592 		if (__lockres_remove_mask_waiter(lockres, &mw)) {
1593 			if (dlm_locked)
1594 				lockres_or_flags(lockres,
1595 					OCFS2_LOCK_NONBLOCK_FINISHED);
1596 			spin_unlock_irqrestore(&lockres->l_lock, flags);
1597 			ret = -EAGAIN;
1598 		} else {
1599 			spin_unlock_irqrestore(&lockres->l_lock, flags);
1600 			goto again;
1601 		}
1602 	}
1603 	if (wait) {
1604 		ret = ocfs2_wait_for_mask(&mw);
1605 		if (ret == 0)
1606 			goto again;
1607 		mlog_errno(ret);
1608 	}
1609 	ocfs2_update_lock_stats(lockres, level, &mw, ret);
1610 
1611 #ifdef CONFIG_DEBUG_LOCK_ALLOC
1612 	if (!ret && lockres->l_lockdep_map.key != NULL) {
1613 		if (level == DLM_LOCK_PR)
1614 			rwsem_acquire_read(&lockres->l_lockdep_map, l_subclass,
1615 				!!(arg_flags & OCFS2_META_LOCK_NOQUEUE),
1616 				caller_ip);
1617 		else
1618 			rwsem_acquire(&lockres->l_lockdep_map, l_subclass,
1619 				!!(arg_flags & OCFS2_META_LOCK_NOQUEUE),
1620 				caller_ip);
1621 	}
1622 #endif
1623 	return ret;
1624 }
1625 
ocfs2_cluster_lock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres,int level,u32 lkm_flags,int arg_flags)1626 static inline int ocfs2_cluster_lock(struct ocfs2_super *osb,
1627 				     struct ocfs2_lock_res *lockres,
1628 				     int level,
1629 				     u32 lkm_flags,
1630 				     int arg_flags)
1631 {
1632 	return __ocfs2_cluster_lock(osb, lockres, level, lkm_flags, arg_flags,
1633 				    0, _RET_IP_);
1634 }
1635 
1636 
__ocfs2_cluster_unlock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres,int level,unsigned long caller_ip)1637 static void __ocfs2_cluster_unlock(struct ocfs2_super *osb,
1638 				   struct ocfs2_lock_res *lockres,
1639 				   int level,
1640 				   unsigned long caller_ip)
1641 {
1642 	unsigned long flags;
1643 
1644 	spin_lock_irqsave(&lockres->l_lock, flags);
1645 	ocfs2_dec_holders(lockres, level);
1646 	ocfs2_downconvert_on_unlock(osb, lockres);
1647 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1648 #ifdef CONFIG_DEBUG_LOCK_ALLOC
1649 	if (lockres->l_lockdep_map.key != NULL)
1650 		rwsem_release(&lockres->l_lockdep_map, 1, caller_ip);
1651 #endif
1652 }
1653 
ocfs2_create_new_lock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres,int ex,int local)1654 static int ocfs2_create_new_lock(struct ocfs2_super *osb,
1655 				 struct ocfs2_lock_res *lockres,
1656 				 int ex,
1657 				 int local)
1658 {
1659 	int level =  ex ? DLM_LOCK_EX : DLM_LOCK_PR;
1660 	unsigned long flags;
1661 	u32 lkm_flags = local ? DLM_LKF_LOCAL : 0;
1662 
1663 	spin_lock_irqsave(&lockres->l_lock, flags);
1664 	BUG_ON(lockres->l_flags & OCFS2_LOCK_ATTACHED);
1665 	lockres_or_flags(lockres, OCFS2_LOCK_LOCAL);
1666 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1667 
1668 	return ocfs2_lock_create(osb, lockres, level, lkm_flags);
1669 }
1670 
1671 /* Grants us an EX lock on the data and metadata resources, skipping
1672  * the normal cluster directory lookup. Use this ONLY on newly created
1673  * inodes which other nodes can't possibly see, and which haven't been
1674  * hashed in the inode hash yet. This can give us a good performance
1675  * increase as it'll skip the network broadcast normally associated
1676  * with creating a new lock resource. */
ocfs2_create_new_inode_locks(struct inode * inode)1677 int ocfs2_create_new_inode_locks(struct inode *inode)
1678 {
1679 	int ret;
1680 	struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1681 
1682 	BUG_ON(!inode);
1683 	BUG_ON(!ocfs2_inode_is_new(inode));
1684 
1685 	mlog(0, "Inode %llu\n", (unsigned long long)OCFS2_I(inode)->ip_blkno);
1686 
1687 	/* NOTE: That we don't increment any of the holder counts, nor
1688 	 * do we add anything to a journal handle. Since this is
1689 	 * supposed to be a new inode which the cluster doesn't know
1690 	 * about yet, there is no need to.  As far as the LVB handling
1691 	 * is concerned, this is basically like acquiring an EX lock
1692 	 * on a resource which has an invalid one -- we'll set it
1693 	 * valid when we release the EX. */
1694 
1695 	ret = ocfs2_create_new_lock(osb, &OCFS2_I(inode)->ip_rw_lockres, 1, 1);
1696 	if (ret) {
1697 		mlog_errno(ret);
1698 		goto bail;
1699 	}
1700 
1701 	/*
1702 	 * We don't want to use DLM_LKF_LOCAL on a meta data lock as they
1703 	 * don't use a generation in their lock names.
1704 	 */
1705 	ret = ocfs2_create_new_lock(osb, &OCFS2_I(inode)->ip_inode_lockres, 1, 0);
1706 	if (ret) {
1707 		mlog_errno(ret);
1708 		goto bail;
1709 	}
1710 
1711 	ret = ocfs2_create_new_lock(osb, &OCFS2_I(inode)->ip_open_lockres, 0, 0);
1712 	if (ret) {
1713 		mlog_errno(ret);
1714 		goto bail;
1715 	}
1716 
1717 bail:
1718 	return ret;
1719 }
1720 
ocfs2_rw_lock(struct inode * inode,int write)1721 int ocfs2_rw_lock(struct inode *inode, int write)
1722 {
1723 	int status, level;
1724 	struct ocfs2_lock_res *lockres;
1725 	struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1726 
1727 	BUG_ON(!inode);
1728 
1729 	mlog(0, "inode %llu take %s RW lock\n",
1730 	     (unsigned long long)OCFS2_I(inode)->ip_blkno,
1731 	     write ? "EXMODE" : "PRMODE");
1732 
1733 	if (ocfs2_mount_local(osb))
1734 		return 0;
1735 
1736 	lockres = &OCFS2_I(inode)->ip_rw_lockres;
1737 
1738 	level = write ? DLM_LOCK_EX : DLM_LOCK_PR;
1739 
1740 	status = ocfs2_cluster_lock(OCFS2_SB(inode->i_sb), lockres, level, 0,
1741 				    0);
1742 	if (status < 0)
1743 		mlog_errno(status);
1744 
1745 	return status;
1746 }
1747 
ocfs2_rw_unlock(struct inode * inode,int write)1748 void ocfs2_rw_unlock(struct inode *inode, int write)
1749 {
1750 	int level = write ? DLM_LOCK_EX : DLM_LOCK_PR;
1751 	struct ocfs2_lock_res *lockres = &OCFS2_I(inode)->ip_rw_lockres;
1752 	struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1753 
1754 	mlog(0, "inode %llu drop %s RW lock\n",
1755 	     (unsigned long long)OCFS2_I(inode)->ip_blkno,
1756 	     write ? "EXMODE" : "PRMODE");
1757 
1758 	if (!ocfs2_mount_local(osb))
1759 		ocfs2_cluster_unlock(OCFS2_SB(inode->i_sb), lockres, level);
1760 }
1761 
1762 /*
1763  * ocfs2_open_lock always get PR mode lock.
1764  */
ocfs2_open_lock(struct inode * inode)1765 int ocfs2_open_lock(struct inode *inode)
1766 {
1767 	int status = 0;
1768 	struct ocfs2_lock_res *lockres;
1769 	struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1770 
1771 	BUG_ON(!inode);
1772 
1773 	mlog(0, "inode %llu take PRMODE open lock\n",
1774 	     (unsigned long long)OCFS2_I(inode)->ip_blkno);
1775 
1776 	if (ocfs2_is_hard_readonly(osb) || ocfs2_mount_local(osb))
1777 		goto out;
1778 
1779 	lockres = &OCFS2_I(inode)->ip_open_lockres;
1780 
1781 	status = ocfs2_cluster_lock(OCFS2_SB(inode->i_sb), lockres,
1782 				    DLM_LOCK_PR, 0, 0);
1783 	if (status < 0)
1784 		mlog_errno(status);
1785 
1786 out:
1787 	return status;
1788 }
1789 
ocfs2_try_open_lock(struct inode * inode,int write)1790 int ocfs2_try_open_lock(struct inode *inode, int write)
1791 {
1792 	int status = 0, level;
1793 	struct ocfs2_lock_res *lockres;
1794 	struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1795 
1796 	BUG_ON(!inode);
1797 
1798 	mlog(0, "inode %llu try to take %s open lock\n",
1799 	     (unsigned long long)OCFS2_I(inode)->ip_blkno,
1800 	     write ? "EXMODE" : "PRMODE");
1801 
1802 	if (ocfs2_is_hard_readonly(osb)) {
1803 		if (write)
1804 			status = -EROFS;
1805 		goto out;
1806 	}
1807 
1808 	if (ocfs2_mount_local(osb))
1809 		goto out;
1810 
1811 	lockres = &OCFS2_I(inode)->ip_open_lockres;
1812 
1813 	level = write ? DLM_LOCK_EX : DLM_LOCK_PR;
1814 
1815 	/*
1816 	 * The file system may already holding a PRMODE/EXMODE open lock.
1817 	 * Since we pass DLM_LKF_NOQUEUE, the request won't block waiting on
1818 	 * other nodes and the -EAGAIN will indicate to the caller that
1819 	 * this inode is still in use.
1820 	 */
1821 	status = ocfs2_cluster_lock(OCFS2_SB(inode->i_sb), lockres,
1822 				    level, DLM_LKF_NOQUEUE, 0);
1823 
1824 out:
1825 	return status;
1826 }
1827 
1828 /*
1829  * ocfs2_open_unlock unlock PR and EX mode open locks.
1830  */
ocfs2_open_unlock(struct inode * inode)1831 void ocfs2_open_unlock(struct inode *inode)
1832 {
1833 	struct ocfs2_lock_res *lockres = &OCFS2_I(inode)->ip_open_lockres;
1834 	struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
1835 
1836 	mlog(0, "inode %llu drop open lock\n",
1837 	     (unsigned long long)OCFS2_I(inode)->ip_blkno);
1838 
1839 	if (ocfs2_mount_local(osb))
1840 		goto out;
1841 
1842 	if(lockres->l_ro_holders)
1843 		ocfs2_cluster_unlock(OCFS2_SB(inode->i_sb), lockres,
1844 				     DLM_LOCK_PR);
1845 	if(lockres->l_ex_holders)
1846 		ocfs2_cluster_unlock(OCFS2_SB(inode->i_sb), lockres,
1847 				     DLM_LOCK_EX);
1848 
1849 out:
1850 	return;
1851 }
1852 
ocfs2_flock_handle_signal(struct ocfs2_lock_res * lockres,int level)1853 static int ocfs2_flock_handle_signal(struct ocfs2_lock_res *lockres,
1854 				     int level)
1855 {
1856 	int ret;
1857 	struct ocfs2_super *osb = ocfs2_get_lockres_osb(lockres);
1858 	unsigned long flags;
1859 	struct ocfs2_mask_waiter mw;
1860 
1861 	ocfs2_init_mask_waiter(&mw);
1862 
1863 retry_cancel:
1864 	spin_lock_irqsave(&lockres->l_lock, flags);
1865 	if (lockres->l_flags & OCFS2_LOCK_BUSY) {
1866 		ret = ocfs2_prepare_cancel_convert(osb, lockres);
1867 		if (ret) {
1868 			spin_unlock_irqrestore(&lockres->l_lock, flags);
1869 			ret = ocfs2_cancel_convert(osb, lockres);
1870 			if (ret < 0) {
1871 				mlog_errno(ret);
1872 				goto out;
1873 			}
1874 			goto retry_cancel;
1875 		}
1876 		lockres_add_mask_waiter(lockres, &mw, OCFS2_LOCK_BUSY, 0);
1877 		spin_unlock_irqrestore(&lockres->l_lock, flags);
1878 
1879 		ocfs2_wait_for_mask(&mw);
1880 		goto retry_cancel;
1881 	}
1882 
1883 	ret = -ERESTARTSYS;
1884 	/*
1885 	 * We may still have gotten the lock, in which case there's no
1886 	 * point to restarting the syscall.
1887 	 */
1888 	if (lockres->l_level == level)
1889 		ret = 0;
1890 
1891 	mlog(0, "Cancel returning %d. flags: 0x%lx, level: %d, act: %d\n", ret,
1892 	     lockres->l_flags, lockres->l_level, lockres->l_action);
1893 
1894 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1895 
1896 out:
1897 	return ret;
1898 }
1899 
1900 /*
1901  * ocfs2_file_lock() and ocfs2_file_unlock() map to a single pair of
1902  * flock() calls. The locking approach this requires is sufficiently
1903  * different from all other cluster lock types that we implement a
1904  * separate path to the "low-level" dlm calls. In particular:
1905  *
1906  * - No optimization of lock levels is done - we take at exactly
1907  *   what's been requested.
1908  *
1909  * - No lock caching is employed. We immediately downconvert to
1910  *   no-lock at unlock time. This also means flock locks never go on
1911  *   the blocking list).
1912  *
1913  * - Since userspace can trivially deadlock itself with flock, we make
1914  *   sure to allow cancellation of a misbehaving applications flock()
1915  *   request.
1916  *
1917  * - Access to any flock lockres doesn't require concurrency, so we
1918  *   can simplify the code by requiring the caller to guarantee
1919  *   serialization of dlmglue flock calls.
1920  */
ocfs2_file_lock(struct file * file,int ex,int trylock)1921 int ocfs2_file_lock(struct file *file, int ex, int trylock)
1922 {
1923 	int ret, level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
1924 	unsigned int lkm_flags = trylock ? DLM_LKF_NOQUEUE : 0;
1925 	unsigned long flags;
1926 	struct ocfs2_file_private *fp = file->private_data;
1927 	struct ocfs2_lock_res *lockres = &fp->fp_flock;
1928 	struct ocfs2_super *osb = OCFS2_SB(file->f_mapping->host->i_sb);
1929 	struct ocfs2_mask_waiter mw;
1930 
1931 	ocfs2_init_mask_waiter(&mw);
1932 
1933 	if ((lockres->l_flags & OCFS2_LOCK_BUSY) ||
1934 	    (lockres->l_level > DLM_LOCK_NL)) {
1935 		mlog(ML_ERROR,
1936 		     "File lock \"%s\" has busy or locked state: flags: 0x%lx, "
1937 		     "level: %u\n", lockres->l_name, lockres->l_flags,
1938 		     lockres->l_level);
1939 		return -EINVAL;
1940 	}
1941 
1942 	spin_lock_irqsave(&lockres->l_lock, flags);
1943 	if (!(lockres->l_flags & OCFS2_LOCK_ATTACHED)) {
1944 		lockres_add_mask_waiter(lockres, &mw, OCFS2_LOCK_BUSY, 0);
1945 		spin_unlock_irqrestore(&lockres->l_lock, flags);
1946 
1947 		/*
1948 		 * Get the lock at NLMODE to start - that way we
1949 		 * can cancel the upconvert request if need be.
1950 		 */
1951 		ret = ocfs2_lock_create(osb, lockres, DLM_LOCK_NL, 0);
1952 		if (ret < 0) {
1953 			mlog_errno(ret);
1954 			goto out;
1955 		}
1956 
1957 		ret = ocfs2_wait_for_mask(&mw);
1958 		if (ret) {
1959 			mlog_errno(ret);
1960 			goto out;
1961 		}
1962 		spin_lock_irqsave(&lockres->l_lock, flags);
1963 	}
1964 
1965 	lockres->l_action = OCFS2_AST_CONVERT;
1966 	lkm_flags |= DLM_LKF_CONVERT;
1967 	lockres->l_requested = level;
1968 	lockres_or_flags(lockres, OCFS2_LOCK_BUSY);
1969 
1970 	lockres_add_mask_waiter(lockres, &mw, OCFS2_LOCK_BUSY, 0);
1971 	spin_unlock_irqrestore(&lockres->l_lock, flags);
1972 
1973 	ret = ocfs2_dlm_lock(osb->cconn, level, &lockres->l_lksb, lkm_flags,
1974 			     lockres->l_name, OCFS2_LOCK_ID_MAX_LEN - 1);
1975 	if (ret) {
1976 		if (!trylock || (ret != -EAGAIN)) {
1977 			ocfs2_log_dlm_error("ocfs2_dlm_lock", ret, lockres);
1978 			ret = -EINVAL;
1979 		}
1980 
1981 		ocfs2_recover_from_dlm_error(lockres, 1);
1982 		lockres_remove_mask_waiter(lockres, &mw);
1983 		goto out;
1984 	}
1985 
1986 	ret = ocfs2_wait_for_mask_interruptible(&mw, lockres);
1987 	if (ret == -ERESTARTSYS) {
1988 		/*
1989 		 * Userspace can cause deadlock itself with
1990 		 * flock(). Current behavior locally is to allow the
1991 		 * deadlock, but abort the system call if a signal is
1992 		 * received. We follow this example, otherwise a
1993 		 * poorly written program could sit in kernel until
1994 		 * reboot.
1995 		 *
1996 		 * Handling this is a bit more complicated for Ocfs2
1997 		 * though. We can't exit this function with an
1998 		 * outstanding lock request, so a cancel convert is
1999 		 * required. We intentionally overwrite 'ret' - if the
2000 		 * cancel fails and the lock was granted, it's easier
2001 		 * to just bubble success back up to the user.
2002 		 */
2003 		ret = ocfs2_flock_handle_signal(lockres, level);
2004 	} else if (!ret && (level > lockres->l_level)) {
2005 		/* Trylock failed asynchronously */
2006 		BUG_ON(!trylock);
2007 		ret = -EAGAIN;
2008 	}
2009 
2010 out:
2011 
2012 	mlog(0, "Lock: \"%s\" ex: %d, trylock: %d, returns: %d\n",
2013 	     lockres->l_name, ex, trylock, ret);
2014 	return ret;
2015 }
2016 
ocfs2_file_unlock(struct file * file)2017 void ocfs2_file_unlock(struct file *file)
2018 {
2019 	int ret;
2020 	unsigned int gen;
2021 	unsigned long flags;
2022 	struct ocfs2_file_private *fp = file->private_data;
2023 	struct ocfs2_lock_res *lockres = &fp->fp_flock;
2024 	struct ocfs2_super *osb = OCFS2_SB(file->f_mapping->host->i_sb);
2025 	struct ocfs2_mask_waiter mw;
2026 
2027 	ocfs2_init_mask_waiter(&mw);
2028 
2029 	if (!(lockres->l_flags & OCFS2_LOCK_ATTACHED))
2030 		return;
2031 
2032 	if (lockres->l_level == DLM_LOCK_NL)
2033 		return;
2034 
2035 	mlog(0, "Unlock: \"%s\" flags: 0x%lx, level: %d, act: %d\n",
2036 	     lockres->l_name, lockres->l_flags, lockres->l_level,
2037 	     lockres->l_action);
2038 
2039 	spin_lock_irqsave(&lockres->l_lock, flags);
2040 	/*
2041 	 * Fake a blocking ast for the downconvert code.
2042 	 */
2043 	lockres_or_flags(lockres, OCFS2_LOCK_BLOCKED);
2044 	lockres->l_blocking = DLM_LOCK_EX;
2045 
2046 	gen = ocfs2_prepare_downconvert(lockres, DLM_LOCK_NL);
2047 	lockres_add_mask_waiter(lockres, &mw, OCFS2_LOCK_BUSY, 0);
2048 	spin_unlock_irqrestore(&lockres->l_lock, flags);
2049 
2050 	ret = ocfs2_downconvert_lock(osb, lockres, DLM_LOCK_NL, 0, gen);
2051 	if (ret) {
2052 		mlog_errno(ret);
2053 		return;
2054 	}
2055 
2056 	ret = ocfs2_wait_for_mask(&mw);
2057 	if (ret)
2058 		mlog_errno(ret);
2059 }
2060 
ocfs2_downconvert_on_unlock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres)2061 static void ocfs2_downconvert_on_unlock(struct ocfs2_super *osb,
2062 					struct ocfs2_lock_res *lockres)
2063 {
2064 	int kick = 0;
2065 
2066 	/* If we know that another node is waiting on our lock, kick
2067 	 * the downconvert thread * pre-emptively when we reach a release
2068 	 * condition. */
2069 	if (lockres->l_flags & OCFS2_LOCK_BLOCKED) {
2070 		switch(lockres->l_blocking) {
2071 		case DLM_LOCK_EX:
2072 			if (!lockres->l_ex_holders && !lockres->l_ro_holders)
2073 				kick = 1;
2074 			break;
2075 		case DLM_LOCK_PR:
2076 			if (!lockres->l_ex_holders)
2077 				kick = 1;
2078 			break;
2079 		default:
2080 			BUG();
2081 		}
2082 	}
2083 
2084 	if (kick)
2085 		ocfs2_wake_downconvert_thread(osb);
2086 }
2087 
2088 #define OCFS2_SEC_BITS   34
2089 #define OCFS2_SEC_SHIFT  (64 - 34)
2090 #define OCFS2_NSEC_MASK  ((1ULL << OCFS2_SEC_SHIFT) - 1)
2091 
2092 /* LVB only has room for 64 bits of time here so we pack it for
2093  * now. */
ocfs2_pack_timespec(struct timespec * spec)2094 static u64 ocfs2_pack_timespec(struct timespec *spec)
2095 {
2096 	u64 res;
2097 	u64 sec = spec->tv_sec;
2098 	u32 nsec = spec->tv_nsec;
2099 
2100 	res = (sec << OCFS2_SEC_SHIFT) | (nsec & OCFS2_NSEC_MASK);
2101 
2102 	return res;
2103 }
2104 
2105 /* Call this with the lockres locked. I am reasonably sure we don't
2106  * need ip_lock in this function as anyone who would be changing those
2107  * values is supposed to be blocked in ocfs2_inode_lock right now. */
__ocfs2_stuff_meta_lvb(struct inode * inode)2108 static void __ocfs2_stuff_meta_lvb(struct inode *inode)
2109 {
2110 	struct ocfs2_inode_info *oi = OCFS2_I(inode);
2111 	struct ocfs2_lock_res *lockres = &oi->ip_inode_lockres;
2112 	struct ocfs2_meta_lvb *lvb;
2113 
2114 	lvb = ocfs2_dlm_lvb(&lockres->l_lksb);
2115 
2116 	/*
2117 	 * Invalidate the LVB of a deleted inode - this way other
2118 	 * nodes are forced to go to disk and discover the new inode
2119 	 * status.
2120 	 */
2121 	if (oi->ip_flags & OCFS2_INODE_DELETED) {
2122 		lvb->lvb_version = 0;
2123 		goto out;
2124 	}
2125 
2126 	lvb->lvb_version   = OCFS2_LVB_VERSION;
2127 	lvb->lvb_isize	   = cpu_to_be64(i_size_read(inode));
2128 	lvb->lvb_iclusters = cpu_to_be32(oi->ip_clusters);
2129 	lvb->lvb_iuid      = cpu_to_be32(i_uid_read(inode));
2130 	lvb->lvb_igid      = cpu_to_be32(i_gid_read(inode));
2131 	lvb->lvb_imode     = cpu_to_be16(inode->i_mode);
2132 	lvb->lvb_inlink    = cpu_to_be16(inode->i_nlink);
2133 	lvb->lvb_iatime_packed  =
2134 		cpu_to_be64(ocfs2_pack_timespec(&inode->i_atime));
2135 	lvb->lvb_ictime_packed =
2136 		cpu_to_be64(ocfs2_pack_timespec(&inode->i_ctime));
2137 	lvb->lvb_imtime_packed =
2138 		cpu_to_be64(ocfs2_pack_timespec(&inode->i_mtime));
2139 	lvb->lvb_iattr    = cpu_to_be32(oi->ip_attr);
2140 	lvb->lvb_idynfeatures = cpu_to_be16(oi->ip_dyn_features);
2141 	lvb->lvb_igeneration = cpu_to_be32(inode->i_generation);
2142 
2143 out:
2144 	mlog_meta_lvb(0, lockres);
2145 }
2146 
ocfs2_unpack_timespec(struct timespec * spec,u64 packed_time)2147 static void ocfs2_unpack_timespec(struct timespec *spec,
2148 				  u64 packed_time)
2149 {
2150 	spec->tv_sec = packed_time >> OCFS2_SEC_SHIFT;
2151 	spec->tv_nsec = packed_time & OCFS2_NSEC_MASK;
2152 }
2153 
ocfs2_refresh_inode_from_lvb(struct inode * inode)2154 static void ocfs2_refresh_inode_from_lvb(struct inode *inode)
2155 {
2156 	struct ocfs2_inode_info *oi = OCFS2_I(inode);
2157 	struct ocfs2_lock_res *lockres = &oi->ip_inode_lockres;
2158 	struct ocfs2_meta_lvb *lvb;
2159 
2160 	mlog_meta_lvb(0, lockres);
2161 
2162 	lvb = ocfs2_dlm_lvb(&lockres->l_lksb);
2163 
2164 	/* We're safe here without the lockres lock... */
2165 	spin_lock(&oi->ip_lock);
2166 	oi->ip_clusters = be32_to_cpu(lvb->lvb_iclusters);
2167 	i_size_write(inode, be64_to_cpu(lvb->lvb_isize));
2168 
2169 	oi->ip_attr = be32_to_cpu(lvb->lvb_iattr);
2170 	oi->ip_dyn_features = be16_to_cpu(lvb->lvb_idynfeatures);
2171 	ocfs2_set_inode_flags(inode);
2172 
2173 	/* fast-symlinks are a special case */
2174 	if (S_ISLNK(inode->i_mode) && !oi->ip_clusters)
2175 		inode->i_blocks = 0;
2176 	else
2177 		inode->i_blocks = ocfs2_inode_sector_count(inode);
2178 
2179 	i_uid_write(inode, be32_to_cpu(lvb->lvb_iuid));
2180 	i_gid_write(inode, be32_to_cpu(lvb->lvb_igid));
2181 	inode->i_mode    = be16_to_cpu(lvb->lvb_imode);
2182 	set_nlink(inode, be16_to_cpu(lvb->lvb_inlink));
2183 	ocfs2_unpack_timespec(&inode->i_atime,
2184 			      be64_to_cpu(lvb->lvb_iatime_packed));
2185 	ocfs2_unpack_timespec(&inode->i_mtime,
2186 			      be64_to_cpu(lvb->lvb_imtime_packed));
2187 	ocfs2_unpack_timespec(&inode->i_ctime,
2188 			      be64_to_cpu(lvb->lvb_ictime_packed));
2189 	spin_unlock(&oi->ip_lock);
2190 }
2191 
ocfs2_meta_lvb_is_trustable(struct inode * inode,struct ocfs2_lock_res * lockres)2192 static inline int ocfs2_meta_lvb_is_trustable(struct inode *inode,
2193 					      struct ocfs2_lock_res *lockres)
2194 {
2195 	struct ocfs2_meta_lvb *lvb = ocfs2_dlm_lvb(&lockres->l_lksb);
2196 
2197 	if (ocfs2_dlm_lvb_valid(&lockres->l_lksb)
2198 	    && lvb->lvb_version == OCFS2_LVB_VERSION
2199 	    && be32_to_cpu(lvb->lvb_igeneration) == inode->i_generation)
2200 		return 1;
2201 	return 0;
2202 }
2203 
2204 /* Determine whether a lock resource needs to be refreshed, and
2205  * arbitrate who gets to refresh it.
2206  *
2207  *   0 means no refresh needed.
2208  *
2209  *   > 0 means you need to refresh this and you MUST call
2210  *   ocfs2_complete_lock_res_refresh afterwards. */
ocfs2_should_refresh_lock_res(struct ocfs2_lock_res * lockres)2211 static int ocfs2_should_refresh_lock_res(struct ocfs2_lock_res *lockres)
2212 {
2213 	unsigned long flags;
2214 	int status = 0;
2215 
2216 refresh_check:
2217 	spin_lock_irqsave(&lockres->l_lock, flags);
2218 	if (!(lockres->l_flags & OCFS2_LOCK_NEEDS_REFRESH)) {
2219 		spin_unlock_irqrestore(&lockres->l_lock, flags);
2220 		goto bail;
2221 	}
2222 
2223 	if (lockres->l_flags & OCFS2_LOCK_REFRESHING) {
2224 		spin_unlock_irqrestore(&lockres->l_lock, flags);
2225 
2226 		ocfs2_wait_on_refreshing_lock(lockres);
2227 		goto refresh_check;
2228 	}
2229 
2230 	/* Ok, I'll be the one to refresh this lock. */
2231 	lockres_or_flags(lockres, OCFS2_LOCK_REFRESHING);
2232 	spin_unlock_irqrestore(&lockres->l_lock, flags);
2233 
2234 	status = 1;
2235 bail:
2236 	mlog(0, "status %d\n", status);
2237 	return status;
2238 }
2239 
2240 /* If status is non zero, I'll mark it as not being in refresh
2241  * anymroe, but i won't clear the needs refresh flag. */
ocfs2_complete_lock_res_refresh(struct ocfs2_lock_res * lockres,int status)2242 static inline void ocfs2_complete_lock_res_refresh(struct ocfs2_lock_res *lockres,
2243 						   int status)
2244 {
2245 	unsigned long flags;
2246 
2247 	spin_lock_irqsave(&lockres->l_lock, flags);
2248 	lockres_clear_flags(lockres, OCFS2_LOCK_REFRESHING);
2249 	if (!status)
2250 		lockres_clear_flags(lockres, OCFS2_LOCK_NEEDS_REFRESH);
2251 	spin_unlock_irqrestore(&lockres->l_lock, flags);
2252 
2253 	wake_up(&lockres->l_event);
2254 }
2255 
2256 /* may or may not return a bh if it went to disk. */
ocfs2_inode_lock_update(struct inode * inode,struct buffer_head ** bh)2257 static int ocfs2_inode_lock_update(struct inode *inode,
2258 				  struct buffer_head **bh)
2259 {
2260 	int status = 0;
2261 	struct ocfs2_inode_info *oi = OCFS2_I(inode);
2262 	struct ocfs2_lock_res *lockres = &oi->ip_inode_lockres;
2263 	struct ocfs2_dinode *fe;
2264 	struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
2265 
2266 	if (ocfs2_mount_local(osb))
2267 		goto bail;
2268 
2269 	spin_lock(&oi->ip_lock);
2270 	if (oi->ip_flags & OCFS2_INODE_DELETED) {
2271 		mlog(0, "Orphaned inode %llu was deleted while we "
2272 		     "were waiting on a lock. ip_flags = 0x%x\n",
2273 		     (unsigned long long)oi->ip_blkno, oi->ip_flags);
2274 		spin_unlock(&oi->ip_lock);
2275 		status = -ENOENT;
2276 		goto bail;
2277 	}
2278 	spin_unlock(&oi->ip_lock);
2279 
2280 	if (!ocfs2_should_refresh_lock_res(lockres))
2281 		goto bail;
2282 
2283 	/* This will discard any caching information we might have had
2284 	 * for the inode metadata. */
2285 	ocfs2_metadata_cache_purge(INODE_CACHE(inode));
2286 
2287 	ocfs2_extent_map_trunc(inode, 0);
2288 
2289 	if (ocfs2_meta_lvb_is_trustable(inode, lockres)) {
2290 		mlog(0, "Trusting LVB on inode %llu\n",
2291 		     (unsigned long long)oi->ip_blkno);
2292 		ocfs2_refresh_inode_from_lvb(inode);
2293 	} else {
2294 		/* Boo, we have to go to disk. */
2295 		/* read bh, cast, ocfs2_refresh_inode */
2296 		status = ocfs2_read_inode_block(inode, bh);
2297 		if (status < 0) {
2298 			mlog_errno(status);
2299 			goto bail_refresh;
2300 		}
2301 		fe = (struct ocfs2_dinode *) (*bh)->b_data;
2302 
2303 		/* This is a good chance to make sure we're not
2304 		 * locking an invalid object.  ocfs2_read_inode_block()
2305 		 * already checked that the inode block is sane.
2306 		 *
2307 		 * We bug on a stale inode here because we checked
2308 		 * above whether it was wiped from disk. The wiping
2309 		 * node provides a guarantee that we receive that
2310 		 * message and can mark the inode before dropping any
2311 		 * locks associated with it. */
2312 		mlog_bug_on_msg(inode->i_generation !=
2313 				le32_to_cpu(fe->i_generation),
2314 				"Invalid dinode %llu disk generation: %u "
2315 				"inode->i_generation: %u\n",
2316 				(unsigned long long)oi->ip_blkno,
2317 				le32_to_cpu(fe->i_generation),
2318 				inode->i_generation);
2319 		mlog_bug_on_msg(le64_to_cpu(fe->i_dtime) ||
2320 				!(fe->i_flags & cpu_to_le32(OCFS2_VALID_FL)),
2321 				"Stale dinode %llu dtime: %llu flags: 0x%x\n",
2322 				(unsigned long long)oi->ip_blkno,
2323 				(unsigned long long)le64_to_cpu(fe->i_dtime),
2324 				le32_to_cpu(fe->i_flags));
2325 
2326 		ocfs2_refresh_inode(inode, fe);
2327 		ocfs2_track_lock_refresh(lockres);
2328 	}
2329 
2330 	status = 0;
2331 bail_refresh:
2332 	ocfs2_complete_lock_res_refresh(lockres, status);
2333 bail:
2334 	return status;
2335 }
2336 
ocfs2_assign_bh(struct inode * inode,struct buffer_head ** ret_bh,struct buffer_head * passed_bh)2337 static int ocfs2_assign_bh(struct inode *inode,
2338 			   struct buffer_head **ret_bh,
2339 			   struct buffer_head *passed_bh)
2340 {
2341 	int status;
2342 
2343 	if (passed_bh) {
2344 		/* Ok, the update went to disk for us, use the
2345 		 * returned bh. */
2346 		*ret_bh = passed_bh;
2347 		get_bh(*ret_bh);
2348 
2349 		return 0;
2350 	}
2351 
2352 	status = ocfs2_read_inode_block(inode, ret_bh);
2353 	if (status < 0)
2354 		mlog_errno(status);
2355 
2356 	return status;
2357 }
2358 
2359 /*
2360  * returns < 0 error if the callback will never be called, otherwise
2361  * the result of the lock will be communicated via the callback.
2362  */
ocfs2_inode_lock_full_nested(struct inode * inode,struct buffer_head ** ret_bh,int ex,int arg_flags,int subclass)2363 int ocfs2_inode_lock_full_nested(struct inode *inode,
2364 				 struct buffer_head **ret_bh,
2365 				 int ex,
2366 				 int arg_flags,
2367 				 int subclass)
2368 {
2369 	int status, level, acquired;
2370 	u32 dlm_flags;
2371 	struct ocfs2_lock_res *lockres = NULL;
2372 	struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
2373 	struct buffer_head *local_bh = NULL;
2374 
2375 	BUG_ON(!inode);
2376 
2377 	mlog(0, "inode %llu, take %s META lock\n",
2378 	     (unsigned long long)OCFS2_I(inode)->ip_blkno,
2379 	     ex ? "EXMODE" : "PRMODE");
2380 
2381 	status = 0;
2382 	acquired = 0;
2383 	/* We'll allow faking a readonly metadata lock for
2384 	 * rodevices. */
2385 	if (ocfs2_is_hard_readonly(osb)) {
2386 		if (ex)
2387 			status = -EROFS;
2388 		goto getbh;
2389 	}
2390 
2391 	if ((arg_flags & OCFS2_META_LOCK_GETBH) ||
2392 	    ocfs2_mount_local(osb))
2393 		goto update;
2394 
2395 	if (!(arg_flags & OCFS2_META_LOCK_RECOVERY))
2396 		ocfs2_wait_for_recovery(osb);
2397 
2398 	lockres = &OCFS2_I(inode)->ip_inode_lockres;
2399 	level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
2400 	dlm_flags = 0;
2401 	if (arg_flags & OCFS2_META_LOCK_NOQUEUE)
2402 		dlm_flags |= DLM_LKF_NOQUEUE;
2403 
2404 	status = __ocfs2_cluster_lock(osb, lockres, level, dlm_flags,
2405 				      arg_flags, subclass, _RET_IP_);
2406 	if (status < 0) {
2407 		if (status != -EAGAIN)
2408 			mlog_errno(status);
2409 		goto bail;
2410 	}
2411 
2412 	/* Notify the error cleanup path to drop the cluster lock. */
2413 	acquired = 1;
2414 
2415 	/* We wait twice because a node may have died while we were in
2416 	 * the lower dlm layers. The second time though, we've
2417 	 * committed to owning this lock so we don't allow signals to
2418 	 * abort the operation. */
2419 	if (!(arg_flags & OCFS2_META_LOCK_RECOVERY))
2420 		ocfs2_wait_for_recovery(osb);
2421 
2422 update:
2423 	/*
2424 	 * We only see this flag if we're being called from
2425 	 * ocfs2_read_locked_inode(). It means we're locking an inode
2426 	 * which hasn't been populated yet, so clear the refresh flag
2427 	 * and let the caller handle it.
2428 	 */
2429 	if (inode->i_state & I_NEW) {
2430 		status = 0;
2431 		if (lockres)
2432 			ocfs2_complete_lock_res_refresh(lockres, 0);
2433 		goto bail;
2434 	}
2435 
2436 	/* This is fun. The caller may want a bh back, or it may
2437 	 * not. ocfs2_inode_lock_update definitely wants one in, but
2438 	 * may or may not read one, depending on what's in the
2439 	 * LVB. The result of all of this is that we've *only* gone to
2440 	 * disk if we have to, so the complexity is worthwhile. */
2441 	status = ocfs2_inode_lock_update(inode, &local_bh);
2442 	if (status < 0) {
2443 		if (status != -ENOENT)
2444 			mlog_errno(status);
2445 		goto bail;
2446 	}
2447 getbh:
2448 	if (ret_bh) {
2449 		status = ocfs2_assign_bh(inode, ret_bh, local_bh);
2450 		if (status < 0) {
2451 			mlog_errno(status);
2452 			goto bail;
2453 		}
2454 	}
2455 
2456 bail:
2457 	if (status < 0) {
2458 		if (ret_bh && (*ret_bh)) {
2459 			brelse(*ret_bh);
2460 			*ret_bh = NULL;
2461 		}
2462 		if (acquired)
2463 			ocfs2_inode_unlock(inode, ex);
2464 	}
2465 
2466 	if (local_bh)
2467 		brelse(local_bh);
2468 
2469 	return status;
2470 }
2471 
2472 /*
2473  * This is working around a lock inversion between tasks acquiring DLM
2474  * locks while holding a page lock and the downconvert thread which
2475  * blocks dlm lock acquiry while acquiring page locks.
2476  *
2477  * ** These _with_page variantes are only intended to be called from aop
2478  * methods that hold page locks and return a very specific *positive* error
2479  * code that aop methods pass up to the VFS -- test for errors with != 0. **
2480  *
2481  * The DLM is called such that it returns -EAGAIN if it would have
2482  * blocked waiting for the downconvert thread.  In that case we unlock
2483  * our page so the downconvert thread can make progress.  Once we've
2484  * done this we have to return AOP_TRUNCATED_PAGE so the aop method
2485  * that called us can bubble that back up into the VFS who will then
2486  * immediately retry the aop call.
2487  *
2488  * We do a blocking lock and immediate unlock before returning, though, so that
2489  * the lock has a great chance of being cached on this node by the time the VFS
2490  * calls back to retry the aop.    This has a potential to livelock as nodes
2491  * ping locks back and forth, but that's a risk we're willing to take to avoid
2492  * the lock inversion simply.
2493  */
ocfs2_inode_lock_with_page(struct inode * inode,struct buffer_head ** ret_bh,int ex,struct page * page)2494 int ocfs2_inode_lock_with_page(struct inode *inode,
2495 			      struct buffer_head **ret_bh,
2496 			      int ex,
2497 			      struct page *page)
2498 {
2499 	int ret;
2500 
2501 	ret = ocfs2_inode_lock_full(inode, ret_bh, ex, OCFS2_LOCK_NONBLOCK);
2502 	if (ret == -EAGAIN) {
2503 		unlock_page(page);
2504 		if (ocfs2_inode_lock(inode, ret_bh, ex) == 0)
2505 			ocfs2_inode_unlock(inode, ex);
2506 		ret = AOP_TRUNCATED_PAGE;
2507 	}
2508 
2509 	return ret;
2510 }
2511 
ocfs2_inode_lock_atime(struct inode * inode,struct vfsmount * vfsmnt,int * level)2512 int ocfs2_inode_lock_atime(struct inode *inode,
2513 			  struct vfsmount *vfsmnt,
2514 			  int *level)
2515 {
2516 	int ret;
2517 
2518 	ret = ocfs2_inode_lock(inode, NULL, 0);
2519 	if (ret < 0) {
2520 		mlog_errno(ret);
2521 		return ret;
2522 	}
2523 
2524 	/*
2525 	 * If we should update atime, we will get EX lock,
2526 	 * otherwise we just get PR lock.
2527 	 */
2528 	if (ocfs2_should_update_atime(inode, vfsmnt)) {
2529 		struct buffer_head *bh = NULL;
2530 
2531 		ocfs2_inode_unlock(inode, 0);
2532 		ret = ocfs2_inode_lock(inode, &bh, 1);
2533 		if (ret < 0) {
2534 			mlog_errno(ret);
2535 			return ret;
2536 		}
2537 		*level = 1;
2538 		if (ocfs2_should_update_atime(inode, vfsmnt))
2539 			ocfs2_update_inode_atime(inode, bh);
2540 		if (bh)
2541 			brelse(bh);
2542 	} else
2543 		*level = 0;
2544 
2545 	return ret;
2546 }
2547 
ocfs2_inode_unlock(struct inode * inode,int ex)2548 void ocfs2_inode_unlock(struct inode *inode,
2549 		       int ex)
2550 {
2551 	int level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
2552 	struct ocfs2_lock_res *lockres = &OCFS2_I(inode)->ip_inode_lockres;
2553 	struct ocfs2_super *osb = OCFS2_SB(inode->i_sb);
2554 
2555 	mlog(0, "inode %llu drop %s META lock\n",
2556 	     (unsigned long long)OCFS2_I(inode)->ip_blkno,
2557 	     ex ? "EXMODE" : "PRMODE");
2558 
2559 	if (!ocfs2_is_hard_readonly(OCFS2_SB(inode->i_sb)) &&
2560 	    !ocfs2_mount_local(osb))
2561 		ocfs2_cluster_unlock(OCFS2_SB(inode->i_sb), lockres, level);
2562 }
2563 
2564 /*
2565  * This _tracker variantes are introduced to deal with the recursive cluster
2566  * locking issue. The idea is to keep track of a lock holder on the stack of
2567  * the current process. If there's a lock holder on the stack, we know the
2568  * task context is already protected by cluster locking. Currently, they're
2569  * used in some VFS entry routines.
2570  *
2571  * return < 0 on error, return == 0 if there's no lock holder on the stack
2572  * before this call, return == 1 if this call would be a recursive locking.
2573  */
ocfs2_inode_lock_tracker(struct inode * inode,struct buffer_head ** ret_bh,int ex,struct ocfs2_lock_holder * oh)2574 int ocfs2_inode_lock_tracker(struct inode *inode,
2575 			     struct buffer_head **ret_bh,
2576 			     int ex,
2577 			     struct ocfs2_lock_holder *oh)
2578 {
2579 	int status;
2580 	int arg_flags = 0, has_locked;
2581 	struct ocfs2_lock_res *lockres;
2582 
2583 	lockres = &OCFS2_I(inode)->ip_inode_lockres;
2584 	has_locked = ocfs2_is_locked_by_me(lockres);
2585 	/* Just get buffer head if the cluster lock has been taken */
2586 	if (has_locked)
2587 		arg_flags = OCFS2_META_LOCK_GETBH;
2588 
2589 	if (likely(!has_locked || ret_bh)) {
2590 		status = ocfs2_inode_lock_full(inode, ret_bh, ex, arg_flags);
2591 		if (status < 0) {
2592 			if (status != -ENOENT)
2593 				mlog_errno(status);
2594 			return status;
2595 		}
2596 	}
2597 	if (!has_locked)
2598 		ocfs2_add_holder(lockres, oh);
2599 
2600 	return has_locked;
2601 }
2602 
ocfs2_inode_unlock_tracker(struct inode * inode,int ex,struct ocfs2_lock_holder * oh,int had_lock)2603 void ocfs2_inode_unlock_tracker(struct inode *inode,
2604 				int ex,
2605 				struct ocfs2_lock_holder *oh,
2606 				int had_lock)
2607 {
2608 	struct ocfs2_lock_res *lockres;
2609 
2610 	lockres = &OCFS2_I(inode)->ip_inode_lockres;
2611 	if (!had_lock) {
2612 		ocfs2_remove_holder(lockres, oh);
2613 		ocfs2_inode_unlock(inode, ex);
2614 	}
2615 }
2616 
ocfs2_orphan_scan_lock(struct ocfs2_super * osb,u32 * seqno)2617 int ocfs2_orphan_scan_lock(struct ocfs2_super *osb, u32 *seqno)
2618 {
2619 	struct ocfs2_lock_res *lockres;
2620 	struct ocfs2_orphan_scan_lvb *lvb;
2621 	int status = 0;
2622 
2623 	if (ocfs2_is_hard_readonly(osb))
2624 		return -EROFS;
2625 
2626 	if (ocfs2_mount_local(osb))
2627 		return 0;
2628 
2629 	lockres = &osb->osb_orphan_scan.os_lockres;
2630 	status = ocfs2_cluster_lock(osb, lockres, DLM_LOCK_EX, 0, 0);
2631 	if (status < 0)
2632 		return status;
2633 
2634 	lvb = ocfs2_dlm_lvb(&lockres->l_lksb);
2635 	if (ocfs2_dlm_lvb_valid(&lockres->l_lksb) &&
2636 	    lvb->lvb_version == OCFS2_ORPHAN_LVB_VERSION)
2637 		*seqno = be32_to_cpu(lvb->lvb_os_seqno);
2638 	else
2639 		*seqno = osb->osb_orphan_scan.os_seqno + 1;
2640 
2641 	return status;
2642 }
2643 
ocfs2_orphan_scan_unlock(struct ocfs2_super * osb,u32 seqno)2644 void ocfs2_orphan_scan_unlock(struct ocfs2_super *osb, u32 seqno)
2645 {
2646 	struct ocfs2_lock_res *lockres;
2647 	struct ocfs2_orphan_scan_lvb *lvb;
2648 
2649 	if (!ocfs2_is_hard_readonly(osb) && !ocfs2_mount_local(osb)) {
2650 		lockres = &osb->osb_orphan_scan.os_lockres;
2651 		lvb = ocfs2_dlm_lvb(&lockres->l_lksb);
2652 		lvb->lvb_version = OCFS2_ORPHAN_LVB_VERSION;
2653 		lvb->lvb_os_seqno = cpu_to_be32(seqno);
2654 		ocfs2_cluster_unlock(osb, lockres, DLM_LOCK_EX);
2655 	}
2656 }
2657 
ocfs2_super_lock(struct ocfs2_super * osb,int ex)2658 int ocfs2_super_lock(struct ocfs2_super *osb,
2659 		     int ex)
2660 {
2661 	int status = 0;
2662 	int level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
2663 	struct ocfs2_lock_res *lockres = &osb->osb_super_lockres;
2664 
2665 	if (ocfs2_is_hard_readonly(osb))
2666 		return -EROFS;
2667 
2668 	if (ocfs2_mount_local(osb))
2669 		goto bail;
2670 
2671 	status = ocfs2_cluster_lock(osb, lockres, level, 0, 0);
2672 	if (status < 0) {
2673 		mlog_errno(status);
2674 		goto bail;
2675 	}
2676 
2677 	/* The super block lock path is really in the best position to
2678 	 * know when resources covered by the lock need to be
2679 	 * refreshed, so we do it here. Of course, making sense of
2680 	 * everything is up to the caller :) */
2681 	status = ocfs2_should_refresh_lock_res(lockres);
2682 	if (status) {
2683 		status = ocfs2_refresh_slot_info(osb);
2684 
2685 		ocfs2_complete_lock_res_refresh(lockres, status);
2686 
2687 		if (status < 0) {
2688 			ocfs2_cluster_unlock(osb, lockres, level);
2689 			mlog_errno(status);
2690 		}
2691 		ocfs2_track_lock_refresh(lockres);
2692 	}
2693 bail:
2694 	return status;
2695 }
2696 
ocfs2_super_unlock(struct ocfs2_super * osb,int ex)2697 void ocfs2_super_unlock(struct ocfs2_super *osb,
2698 			int ex)
2699 {
2700 	int level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
2701 	struct ocfs2_lock_res *lockres = &osb->osb_super_lockres;
2702 
2703 	if (!ocfs2_mount_local(osb))
2704 		ocfs2_cluster_unlock(osb, lockres, level);
2705 }
2706 
ocfs2_rename_lock(struct ocfs2_super * osb)2707 int ocfs2_rename_lock(struct ocfs2_super *osb)
2708 {
2709 	int status;
2710 	struct ocfs2_lock_res *lockres = &osb->osb_rename_lockres;
2711 
2712 	if (ocfs2_is_hard_readonly(osb))
2713 		return -EROFS;
2714 
2715 	if (ocfs2_mount_local(osb))
2716 		return 0;
2717 
2718 	status = ocfs2_cluster_lock(osb, lockres, DLM_LOCK_EX, 0, 0);
2719 	if (status < 0)
2720 		mlog_errno(status);
2721 
2722 	return status;
2723 }
2724 
ocfs2_rename_unlock(struct ocfs2_super * osb)2725 void ocfs2_rename_unlock(struct ocfs2_super *osb)
2726 {
2727 	struct ocfs2_lock_res *lockres = &osb->osb_rename_lockres;
2728 
2729 	if (!ocfs2_mount_local(osb))
2730 		ocfs2_cluster_unlock(osb, lockres, DLM_LOCK_EX);
2731 }
2732 
ocfs2_nfs_sync_lock(struct ocfs2_super * osb,int ex)2733 int ocfs2_nfs_sync_lock(struct ocfs2_super *osb, int ex)
2734 {
2735 	int status;
2736 	struct ocfs2_lock_res *lockres = &osb->osb_nfs_sync_lockres;
2737 
2738 	if (ocfs2_is_hard_readonly(osb))
2739 		return -EROFS;
2740 
2741 	if (ocfs2_mount_local(osb))
2742 		return 0;
2743 
2744 	status = ocfs2_cluster_lock(osb, lockres, ex ? LKM_EXMODE : LKM_PRMODE,
2745 				    0, 0);
2746 	if (status < 0)
2747 		mlog(ML_ERROR, "lock on nfs sync lock failed %d\n", status);
2748 
2749 	return status;
2750 }
2751 
ocfs2_nfs_sync_unlock(struct ocfs2_super * osb,int ex)2752 void ocfs2_nfs_sync_unlock(struct ocfs2_super *osb, int ex)
2753 {
2754 	struct ocfs2_lock_res *lockres = &osb->osb_nfs_sync_lockres;
2755 
2756 	if (!ocfs2_mount_local(osb))
2757 		ocfs2_cluster_unlock(osb, lockres,
2758 				     ex ? LKM_EXMODE : LKM_PRMODE);
2759 }
2760 
ocfs2_dentry_lock(struct dentry * dentry,int ex)2761 int ocfs2_dentry_lock(struct dentry *dentry, int ex)
2762 {
2763 	int ret;
2764 	int level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
2765 	struct ocfs2_dentry_lock *dl = dentry->d_fsdata;
2766 	struct ocfs2_super *osb = OCFS2_SB(dentry->d_sb);
2767 
2768 	BUG_ON(!dl);
2769 
2770 	if (ocfs2_is_hard_readonly(osb)) {
2771 		if (ex)
2772 			return -EROFS;
2773 		return 0;
2774 	}
2775 
2776 	if (ocfs2_mount_local(osb))
2777 		return 0;
2778 
2779 	ret = ocfs2_cluster_lock(osb, &dl->dl_lockres, level, 0, 0);
2780 	if (ret < 0)
2781 		mlog_errno(ret);
2782 
2783 	return ret;
2784 }
2785 
ocfs2_dentry_unlock(struct dentry * dentry,int ex)2786 void ocfs2_dentry_unlock(struct dentry *dentry, int ex)
2787 {
2788 	int level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
2789 	struct ocfs2_dentry_lock *dl = dentry->d_fsdata;
2790 	struct ocfs2_super *osb = OCFS2_SB(dentry->d_sb);
2791 
2792 	if (!ocfs2_is_hard_readonly(osb) && !ocfs2_mount_local(osb))
2793 		ocfs2_cluster_unlock(osb, &dl->dl_lockres, level);
2794 }
2795 
2796 /* Reference counting of the dlm debug structure. We want this because
2797  * open references on the debug inodes can live on after a mount, so
2798  * we can't rely on the ocfs2_super to always exist. */
ocfs2_dlm_debug_free(struct kref * kref)2799 static void ocfs2_dlm_debug_free(struct kref *kref)
2800 {
2801 	struct ocfs2_dlm_debug *dlm_debug;
2802 
2803 	dlm_debug = container_of(kref, struct ocfs2_dlm_debug, d_refcnt);
2804 
2805 	kfree(dlm_debug);
2806 }
2807 
ocfs2_put_dlm_debug(struct ocfs2_dlm_debug * dlm_debug)2808 void ocfs2_put_dlm_debug(struct ocfs2_dlm_debug *dlm_debug)
2809 {
2810 	if (dlm_debug)
2811 		kref_put(&dlm_debug->d_refcnt, ocfs2_dlm_debug_free);
2812 }
2813 
ocfs2_get_dlm_debug(struct ocfs2_dlm_debug * debug)2814 static void ocfs2_get_dlm_debug(struct ocfs2_dlm_debug *debug)
2815 {
2816 	kref_get(&debug->d_refcnt);
2817 }
2818 
ocfs2_new_dlm_debug(void)2819 struct ocfs2_dlm_debug *ocfs2_new_dlm_debug(void)
2820 {
2821 	struct ocfs2_dlm_debug *dlm_debug;
2822 
2823 	dlm_debug = kmalloc(sizeof(struct ocfs2_dlm_debug), GFP_KERNEL);
2824 	if (!dlm_debug) {
2825 		mlog_errno(-ENOMEM);
2826 		goto out;
2827 	}
2828 
2829 	kref_init(&dlm_debug->d_refcnt);
2830 	INIT_LIST_HEAD(&dlm_debug->d_lockres_tracking);
2831 	dlm_debug->d_locking_state = NULL;
2832 out:
2833 	return dlm_debug;
2834 }
2835 
2836 /* Access to this is arbitrated for us via seq_file->sem. */
2837 struct ocfs2_dlm_seq_priv {
2838 	struct ocfs2_dlm_debug *p_dlm_debug;
2839 	struct ocfs2_lock_res p_iter_res;
2840 	struct ocfs2_lock_res p_tmp_res;
2841 };
2842 
ocfs2_dlm_next_res(struct ocfs2_lock_res * start,struct ocfs2_dlm_seq_priv * priv)2843 static struct ocfs2_lock_res *ocfs2_dlm_next_res(struct ocfs2_lock_res *start,
2844 						 struct ocfs2_dlm_seq_priv *priv)
2845 {
2846 	struct ocfs2_lock_res *iter, *ret = NULL;
2847 	struct ocfs2_dlm_debug *dlm_debug = priv->p_dlm_debug;
2848 
2849 	assert_spin_locked(&ocfs2_dlm_tracking_lock);
2850 
2851 	list_for_each_entry(iter, &start->l_debug_list, l_debug_list) {
2852 		/* discover the head of the list */
2853 		if (&iter->l_debug_list == &dlm_debug->d_lockres_tracking) {
2854 			mlog(0, "End of list found, %p\n", ret);
2855 			break;
2856 		}
2857 
2858 		/* We track our "dummy" iteration lockres' by a NULL
2859 		 * l_ops field. */
2860 		if (iter->l_ops != NULL) {
2861 			ret = iter;
2862 			break;
2863 		}
2864 	}
2865 
2866 	return ret;
2867 }
2868 
ocfs2_dlm_seq_start(struct seq_file * m,loff_t * pos)2869 static void *ocfs2_dlm_seq_start(struct seq_file *m, loff_t *pos)
2870 {
2871 	struct ocfs2_dlm_seq_priv *priv = m->private;
2872 	struct ocfs2_lock_res *iter;
2873 
2874 	spin_lock(&ocfs2_dlm_tracking_lock);
2875 	iter = ocfs2_dlm_next_res(&priv->p_iter_res, priv);
2876 	if (iter) {
2877 		/* Since lockres' have the lifetime of their container
2878 		 * (which can be inodes, ocfs2_supers, etc) we want to
2879 		 * copy this out to a temporary lockres while still
2880 		 * under the spinlock. Obviously after this we can't
2881 		 * trust any pointers on the copy returned, but that's
2882 		 * ok as the information we want isn't typically held
2883 		 * in them. */
2884 		priv->p_tmp_res = *iter;
2885 		iter = &priv->p_tmp_res;
2886 	}
2887 	spin_unlock(&ocfs2_dlm_tracking_lock);
2888 
2889 	return iter;
2890 }
2891 
ocfs2_dlm_seq_stop(struct seq_file * m,void * v)2892 static void ocfs2_dlm_seq_stop(struct seq_file *m, void *v)
2893 {
2894 }
2895 
ocfs2_dlm_seq_next(struct seq_file * m,void * v,loff_t * pos)2896 static void *ocfs2_dlm_seq_next(struct seq_file *m, void *v, loff_t *pos)
2897 {
2898 	struct ocfs2_dlm_seq_priv *priv = m->private;
2899 	struct ocfs2_lock_res *iter = v;
2900 	struct ocfs2_lock_res *dummy = &priv->p_iter_res;
2901 
2902 	spin_lock(&ocfs2_dlm_tracking_lock);
2903 	iter = ocfs2_dlm_next_res(iter, priv);
2904 	list_del_init(&dummy->l_debug_list);
2905 	if (iter) {
2906 		list_add(&dummy->l_debug_list, &iter->l_debug_list);
2907 		priv->p_tmp_res = *iter;
2908 		iter = &priv->p_tmp_res;
2909 	}
2910 	spin_unlock(&ocfs2_dlm_tracking_lock);
2911 
2912 	return iter;
2913 }
2914 
2915 /*
2916  * Version is used by debugfs.ocfs2 to determine the format being used
2917  *
2918  * New in version 2
2919  *	- Lock stats printed
2920  * New in version 3
2921  *	- Max time in lock stats is in usecs (instead of nsecs)
2922  */
2923 #define OCFS2_DLM_DEBUG_STR_VERSION 3
ocfs2_dlm_seq_show(struct seq_file * m,void * v)2924 static int ocfs2_dlm_seq_show(struct seq_file *m, void *v)
2925 {
2926 	int i;
2927 	char *lvb;
2928 	struct ocfs2_lock_res *lockres = v;
2929 
2930 	if (!lockres)
2931 		return -EINVAL;
2932 
2933 	seq_printf(m, "0x%x\t", OCFS2_DLM_DEBUG_STR_VERSION);
2934 
2935 	if (lockres->l_type == OCFS2_LOCK_TYPE_DENTRY)
2936 		seq_printf(m, "%.*s%08x\t", OCFS2_DENTRY_LOCK_INO_START - 1,
2937 			   lockres->l_name,
2938 			   (unsigned int)ocfs2_get_dentry_lock_ino(lockres));
2939 	else
2940 		seq_printf(m, "%.*s\t", OCFS2_LOCK_ID_MAX_LEN, lockres->l_name);
2941 
2942 	seq_printf(m, "%d\t"
2943 		   "0x%lx\t"
2944 		   "0x%x\t"
2945 		   "0x%x\t"
2946 		   "%u\t"
2947 		   "%u\t"
2948 		   "%d\t"
2949 		   "%d\t",
2950 		   lockres->l_level,
2951 		   lockres->l_flags,
2952 		   lockres->l_action,
2953 		   lockres->l_unlock_action,
2954 		   lockres->l_ro_holders,
2955 		   lockres->l_ex_holders,
2956 		   lockres->l_requested,
2957 		   lockres->l_blocking);
2958 
2959 	/* Dump the raw LVB */
2960 	lvb = ocfs2_dlm_lvb(&lockres->l_lksb);
2961 	for(i = 0; i < DLM_LVB_LEN; i++)
2962 		seq_printf(m, "0x%x\t", lvb[i]);
2963 
2964 #ifdef CONFIG_OCFS2_FS_STATS
2965 # define lock_num_prmode(_l)		((_l)->l_lock_prmode.ls_gets)
2966 # define lock_num_exmode(_l)		((_l)->l_lock_exmode.ls_gets)
2967 # define lock_num_prmode_failed(_l)	((_l)->l_lock_prmode.ls_fail)
2968 # define lock_num_exmode_failed(_l)	((_l)->l_lock_exmode.ls_fail)
2969 # define lock_total_prmode(_l)		((_l)->l_lock_prmode.ls_total)
2970 # define lock_total_exmode(_l)		((_l)->l_lock_exmode.ls_total)
2971 # define lock_max_prmode(_l)		((_l)->l_lock_prmode.ls_max)
2972 # define lock_max_exmode(_l)		((_l)->l_lock_exmode.ls_max)
2973 # define lock_refresh(_l)		((_l)->l_lock_refresh)
2974 #else
2975 # define lock_num_prmode(_l)		(0)
2976 # define lock_num_exmode(_l)		(0)
2977 # define lock_num_prmode_failed(_l)	(0)
2978 # define lock_num_exmode_failed(_l)	(0)
2979 # define lock_total_prmode(_l)		(0ULL)
2980 # define lock_total_exmode(_l)		(0ULL)
2981 # define lock_max_prmode(_l)		(0)
2982 # define lock_max_exmode(_l)		(0)
2983 # define lock_refresh(_l)		(0)
2984 #endif
2985 	/* The following seq_print was added in version 2 of this output */
2986 	seq_printf(m, "%u\t"
2987 		   "%u\t"
2988 		   "%u\t"
2989 		   "%u\t"
2990 		   "%llu\t"
2991 		   "%llu\t"
2992 		   "%u\t"
2993 		   "%u\t"
2994 		   "%u\t",
2995 		   lock_num_prmode(lockres),
2996 		   lock_num_exmode(lockres),
2997 		   lock_num_prmode_failed(lockres),
2998 		   lock_num_exmode_failed(lockres),
2999 		   lock_total_prmode(lockres),
3000 		   lock_total_exmode(lockres),
3001 		   lock_max_prmode(lockres),
3002 		   lock_max_exmode(lockres),
3003 		   lock_refresh(lockres));
3004 
3005 	/* End the line */
3006 	seq_printf(m, "\n");
3007 	return 0;
3008 }
3009 
3010 static const struct seq_operations ocfs2_dlm_seq_ops = {
3011 	.start =	ocfs2_dlm_seq_start,
3012 	.stop =		ocfs2_dlm_seq_stop,
3013 	.next =		ocfs2_dlm_seq_next,
3014 	.show =		ocfs2_dlm_seq_show,
3015 };
3016 
ocfs2_dlm_debug_release(struct inode * inode,struct file * file)3017 static int ocfs2_dlm_debug_release(struct inode *inode, struct file *file)
3018 {
3019 	struct seq_file *seq = file->private_data;
3020 	struct ocfs2_dlm_seq_priv *priv = seq->private;
3021 	struct ocfs2_lock_res *res = &priv->p_iter_res;
3022 
3023 	ocfs2_remove_lockres_tracking(res);
3024 	ocfs2_put_dlm_debug(priv->p_dlm_debug);
3025 	return seq_release_private(inode, file);
3026 }
3027 
ocfs2_dlm_debug_open(struct inode * inode,struct file * file)3028 static int ocfs2_dlm_debug_open(struct inode *inode, struct file *file)
3029 {
3030 	struct ocfs2_dlm_seq_priv *priv;
3031 	struct ocfs2_super *osb;
3032 
3033 	priv = __seq_open_private(file, &ocfs2_dlm_seq_ops, sizeof(*priv));
3034 	if (!priv) {
3035 		mlog_errno(-ENOMEM);
3036 		return -ENOMEM;
3037 	}
3038 
3039 	osb = inode->i_private;
3040 	ocfs2_get_dlm_debug(osb->osb_dlm_debug);
3041 	priv->p_dlm_debug = osb->osb_dlm_debug;
3042 	INIT_LIST_HEAD(&priv->p_iter_res.l_debug_list);
3043 
3044 	ocfs2_add_lockres_tracking(&priv->p_iter_res,
3045 				   priv->p_dlm_debug);
3046 
3047 	return 0;
3048 }
3049 
3050 static const struct file_operations ocfs2_dlm_debug_fops = {
3051 	.open =		ocfs2_dlm_debug_open,
3052 	.release =	ocfs2_dlm_debug_release,
3053 	.read =		seq_read,
3054 	.llseek =	seq_lseek,
3055 };
3056 
ocfs2_dlm_init_debug(struct ocfs2_super * osb)3057 static int ocfs2_dlm_init_debug(struct ocfs2_super *osb)
3058 {
3059 	int ret = 0;
3060 	struct ocfs2_dlm_debug *dlm_debug = osb->osb_dlm_debug;
3061 
3062 	dlm_debug->d_locking_state = debugfs_create_file("locking_state",
3063 							 S_IFREG|S_IRUSR,
3064 							 osb->osb_debug_root,
3065 							 osb,
3066 							 &ocfs2_dlm_debug_fops);
3067 	if (!dlm_debug->d_locking_state) {
3068 		ret = -EINVAL;
3069 		mlog(ML_ERROR,
3070 		     "Unable to create locking state debugfs file.\n");
3071 		goto out;
3072 	}
3073 
3074 	ocfs2_get_dlm_debug(dlm_debug);
3075 out:
3076 	return ret;
3077 }
3078 
ocfs2_dlm_shutdown_debug(struct ocfs2_super * osb)3079 static void ocfs2_dlm_shutdown_debug(struct ocfs2_super *osb)
3080 {
3081 	struct ocfs2_dlm_debug *dlm_debug = osb->osb_dlm_debug;
3082 
3083 	if (dlm_debug) {
3084 		debugfs_remove(dlm_debug->d_locking_state);
3085 		ocfs2_put_dlm_debug(dlm_debug);
3086 	}
3087 }
3088 
ocfs2_dlm_init(struct ocfs2_super * osb)3089 int ocfs2_dlm_init(struct ocfs2_super *osb)
3090 {
3091 	int status = 0;
3092 	struct ocfs2_cluster_connection *conn = NULL;
3093 
3094 	if (ocfs2_mount_local(osb)) {
3095 		osb->node_num = 0;
3096 		goto local;
3097 	}
3098 
3099 	status = ocfs2_dlm_init_debug(osb);
3100 	if (status < 0) {
3101 		mlog_errno(status);
3102 		goto bail;
3103 	}
3104 
3105 	/* launch downconvert thread */
3106 	osb->dc_task = kthread_run(ocfs2_downconvert_thread, osb, "ocfs2dc-%s",
3107 			osb->uuid_str);
3108 	if (IS_ERR(osb->dc_task)) {
3109 		status = PTR_ERR(osb->dc_task);
3110 		osb->dc_task = NULL;
3111 		mlog_errno(status);
3112 		goto bail;
3113 	}
3114 
3115 	/* for now, uuid == domain */
3116 	status = ocfs2_cluster_connect(osb->osb_cluster_stack,
3117 				       osb->osb_cluster_name,
3118 				       strlen(osb->osb_cluster_name),
3119 				       osb->uuid_str,
3120 				       strlen(osb->uuid_str),
3121 				       &lproto, ocfs2_do_node_down, osb,
3122 				       &conn);
3123 	if (status) {
3124 		mlog_errno(status);
3125 		goto bail;
3126 	}
3127 
3128 	status = ocfs2_cluster_this_node(conn, &osb->node_num);
3129 	if (status < 0) {
3130 		mlog_errno(status);
3131 		mlog(ML_ERROR,
3132 		     "could not find this host's node number\n");
3133 		ocfs2_cluster_disconnect(conn, 0);
3134 		goto bail;
3135 	}
3136 
3137 local:
3138 	ocfs2_super_lock_res_init(&osb->osb_super_lockres, osb);
3139 	ocfs2_rename_lock_res_init(&osb->osb_rename_lockres, osb);
3140 	ocfs2_nfs_sync_lock_res_init(&osb->osb_nfs_sync_lockres, osb);
3141 	ocfs2_orphan_scan_lock_res_init(&osb->osb_orphan_scan.os_lockres, osb);
3142 
3143 	osb->cconn = conn;
3144 bail:
3145 	if (status < 0) {
3146 		ocfs2_dlm_shutdown_debug(osb);
3147 		if (osb->dc_task)
3148 			kthread_stop(osb->dc_task);
3149 	}
3150 
3151 	return status;
3152 }
3153 
ocfs2_dlm_shutdown(struct ocfs2_super * osb,int hangup_pending)3154 void ocfs2_dlm_shutdown(struct ocfs2_super *osb,
3155 			int hangup_pending)
3156 {
3157 	ocfs2_drop_osb_locks(osb);
3158 
3159 	/*
3160 	 * Now that we have dropped all locks and ocfs2_dismount_volume()
3161 	 * has disabled recovery, the DLM won't be talking to us.  It's
3162 	 * safe to tear things down before disconnecting the cluster.
3163 	 */
3164 
3165 	if (osb->dc_task) {
3166 		kthread_stop(osb->dc_task);
3167 		osb->dc_task = NULL;
3168 	}
3169 
3170 	ocfs2_lock_res_free(&osb->osb_super_lockres);
3171 	ocfs2_lock_res_free(&osb->osb_rename_lockres);
3172 	ocfs2_lock_res_free(&osb->osb_nfs_sync_lockres);
3173 	ocfs2_lock_res_free(&osb->osb_orphan_scan.os_lockres);
3174 
3175 	ocfs2_cluster_disconnect(osb->cconn, hangup_pending);
3176 	osb->cconn = NULL;
3177 
3178 	ocfs2_dlm_shutdown_debug(osb);
3179 }
3180 
ocfs2_drop_lock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres)3181 static int ocfs2_drop_lock(struct ocfs2_super *osb,
3182 			   struct ocfs2_lock_res *lockres)
3183 {
3184 	int ret;
3185 	unsigned long flags;
3186 	u32 lkm_flags = 0;
3187 
3188 	/* We didn't get anywhere near actually using this lockres. */
3189 	if (!(lockres->l_flags & OCFS2_LOCK_INITIALIZED))
3190 		goto out;
3191 
3192 	if (lockres->l_ops->flags & LOCK_TYPE_USES_LVB)
3193 		lkm_flags |= DLM_LKF_VALBLK;
3194 
3195 	spin_lock_irqsave(&lockres->l_lock, flags);
3196 
3197 	mlog_bug_on_msg(!(lockres->l_flags & OCFS2_LOCK_FREEING),
3198 			"lockres %s, flags 0x%lx\n",
3199 			lockres->l_name, lockres->l_flags);
3200 
3201 	while (lockres->l_flags & OCFS2_LOCK_BUSY) {
3202 		mlog(0, "waiting on busy lock \"%s\": flags = %lx, action = "
3203 		     "%u, unlock_action = %u\n",
3204 		     lockres->l_name, lockres->l_flags, lockres->l_action,
3205 		     lockres->l_unlock_action);
3206 
3207 		spin_unlock_irqrestore(&lockres->l_lock, flags);
3208 
3209 		/* XXX: Today we just wait on any busy
3210 		 * locks... Perhaps we need to cancel converts in the
3211 		 * future? */
3212 		ocfs2_wait_on_busy_lock(lockres);
3213 
3214 		spin_lock_irqsave(&lockres->l_lock, flags);
3215 	}
3216 
3217 	if (lockres->l_ops->flags & LOCK_TYPE_USES_LVB) {
3218 		if (lockres->l_flags & OCFS2_LOCK_ATTACHED &&
3219 		    lockres->l_level == DLM_LOCK_EX &&
3220 		    !(lockres->l_flags & OCFS2_LOCK_NEEDS_REFRESH))
3221 			lockres->l_ops->set_lvb(lockres);
3222 	}
3223 
3224 	if (lockres->l_flags & OCFS2_LOCK_BUSY)
3225 		mlog(ML_ERROR, "destroying busy lock: \"%s\"\n",
3226 		     lockres->l_name);
3227 	if (lockres->l_flags & OCFS2_LOCK_BLOCKED)
3228 		mlog(0, "destroying blocked lock: \"%s\"\n", lockres->l_name);
3229 
3230 	if (!(lockres->l_flags & OCFS2_LOCK_ATTACHED)) {
3231 		spin_unlock_irqrestore(&lockres->l_lock, flags);
3232 		goto out;
3233 	}
3234 
3235 	lockres_clear_flags(lockres, OCFS2_LOCK_ATTACHED);
3236 
3237 	/* make sure we never get here while waiting for an ast to
3238 	 * fire. */
3239 	BUG_ON(lockres->l_action != OCFS2_AST_INVALID);
3240 
3241 	/* is this necessary? */
3242 	lockres_or_flags(lockres, OCFS2_LOCK_BUSY);
3243 	lockres->l_unlock_action = OCFS2_UNLOCK_DROP_LOCK;
3244 	spin_unlock_irqrestore(&lockres->l_lock, flags);
3245 
3246 	mlog(0, "lock %s\n", lockres->l_name);
3247 
3248 	ret = ocfs2_dlm_unlock(osb->cconn, &lockres->l_lksb, lkm_flags);
3249 	if (ret) {
3250 		ocfs2_log_dlm_error("ocfs2_dlm_unlock", ret, lockres);
3251 		mlog(ML_ERROR, "lockres flags: %lu\n", lockres->l_flags);
3252 		ocfs2_dlm_dump_lksb(&lockres->l_lksb);
3253 		BUG();
3254 	}
3255 	mlog(0, "lock %s, successful return from ocfs2_dlm_unlock\n",
3256 	     lockres->l_name);
3257 
3258 	ocfs2_wait_on_busy_lock(lockres);
3259 out:
3260 	return 0;
3261 }
3262 
3263 static void ocfs2_process_blocked_lock(struct ocfs2_super *osb,
3264 				       struct ocfs2_lock_res *lockres);
3265 
3266 /* Mark the lockres as being dropped. It will no longer be
3267  * queued if blocking, but we still may have to wait on it
3268  * being dequeued from the downconvert thread before we can consider
3269  * it safe to drop.
3270  *
3271  * You can *not* attempt to call cluster_lock on this lockres anymore. */
ocfs2_mark_lockres_freeing(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres)3272 void ocfs2_mark_lockres_freeing(struct ocfs2_super *osb,
3273 				struct ocfs2_lock_res *lockres)
3274 {
3275 	int status;
3276 	struct ocfs2_mask_waiter mw;
3277 	unsigned long flags, flags2;
3278 
3279 	ocfs2_init_mask_waiter(&mw);
3280 
3281 	spin_lock_irqsave(&lockres->l_lock, flags);
3282 	lockres->l_flags |= OCFS2_LOCK_FREEING;
3283 	if (lockres->l_flags & OCFS2_LOCK_QUEUED && current == osb->dc_task) {
3284 		/*
3285 		 * We know the downconvert is queued but not in progress
3286 		 * because we are the downconvert thread and processing
3287 		 * different lock. So we can just remove the lock from the
3288 		 * queue. This is not only an optimization but also a way
3289 		 * to avoid the following deadlock:
3290 		 *   ocfs2_dentry_post_unlock()
3291 		 *     ocfs2_dentry_lock_put()
3292 		 *       ocfs2_drop_dentry_lock()
3293 		 *         iput()
3294 		 *           ocfs2_evict_inode()
3295 		 *             ocfs2_clear_inode()
3296 		 *               ocfs2_mark_lockres_freeing()
3297 		 *                 ... blocks waiting for OCFS2_LOCK_QUEUED
3298 		 *                 since we are the downconvert thread which
3299 		 *                 should clear the flag.
3300 		 */
3301 		spin_unlock_irqrestore(&lockres->l_lock, flags);
3302 		spin_lock_irqsave(&osb->dc_task_lock, flags2);
3303 		list_del_init(&lockres->l_blocked_list);
3304 		osb->blocked_lock_count--;
3305 		spin_unlock_irqrestore(&osb->dc_task_lock, flags2);
3306 		/*
3307 		 * Warn if we recurse into another post_unlock call.  Strictly
3308 		 * speaking it isn't a problem but we need to be careful if
3309 		 * that happens (stack overflow, deadlocks, ...) so warn if
3310 		 * ocfs2 grows a path for which this can happen.
3311 		 */
3312 		WARN_ON_ONCE(lockres->l_ops->post_unlock);
3313 		/* Since the lock is freeing we don't do much in the fn below */
3314 		ocfs2_process_blocked_lock(osb, lockres);
3315 		return;
3316 	}
3317 	while (lockres->l_flags & OCFS2_LOCK_QUEUED) {
3318 		lockres_add_mask_waiter(lockres, &mw, OCFS2_LOCK_QUEUED, 0);
3319 		spin_unlock_irqrestore(&lockres->l_lock, flags);
3320 
3321 		mlog(0, "Waiting on lockres %s\n", lockres->l_name);
3322 
3323 		status = ocfs2_wait_for_mask(&mw);
3324 		if (status)
3325 			mlog_errno(status);
3326 
3327 		spin_lock_irqsave(&lockres->l_lock, flags);
3328 	}
3329 	spin_unlock_irqrestore(&lockres->l_lock, flags);
3330 }
3331 
ocfs2_simple_drop_lockres(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres)3332 void ocfs2_simple_drop_lockres(struct ocfs2_super *osb,
3333 			       struct ocfs2_lock_res *lockres)
3334 {
3335 	int ret;
3336 
3337 	ocfs2_mark_lockres_freeing(osb, lockres);
3338 	ret = ocfs2_drop_lock(osb, lockres);
3339 	if (ret)
3340 		mlog_errno(ret);
3341 }
3342 
ocfs2_drop_osb_locks(struct ocfs2_super * osb)3343 static void ocfs2_drop_osb_locks(struct ocfs2_super *osb)
3344 {
3345 	ocfs2_simple_drop_lockres(osb, &osb->osb_super_lockres);
3346 	ocfs2_simple_drop_lockres(osb, &osb->osb_rename_lockres);
3347 	ocfs2_simple_drop_lockres(osb, &osb->osb_nfs_sync_lockres);
3348 	ocfs2_simple_drop_lockres(osb, &osb->osb_orphan_scan.os_lockres);
3349 }
3350 
ocfs2_drop_inode_locks(struct inode * inode)3351 int ocfs2_drop_inode_locks(struct inode *inode)
3352 {
3353 	int status, err;
3354 
3355 	/* No need to call ocfs2_mark_lockres_freeing here -
3356 	 * ocfs2_clear_inode has done it for us. */
3357 
3358 	err = ocfs2_drop_lock(OCFS2_SB(inode->i_sb),
3359 			      &OCFS2_I(inode)->ip_open_lockres);
3360 	if (err < 0)
3361 		mlog_errno(err);
3362 
3363 	status = err;
3364 
3365 	err = ocfs2_drop_lock(OCFS2_SB(inode->i_sb),
3366 			      &OCFS2_I(inode)->ip_inode_lockres);
3367 	if (err < 0)
3368 		mlog_errno(err);
3369 	if (err < 0 && !status)
3370 		status = err;
3371 
3372 	err = ocfs2_drop_lock(OCFS2_SB(inode->i_sb),
3373 			      &OCFS2_I(inode)->ip_rw_lockres);
3374 	if (err < 0)
3375 		mlog_errno(err);
3376 	if (err < 0 && !status)
3377 		status = err;
3378 
3379 	return status;
3380 }
3381 
ocfs2_prepare_downconvert(struct ocfs2_lock_res * lockres,int new_level)3382 static unsigned int ocfs2_prepare_downconvert(struct ocfs2_lock_res *lockres,
3383 					      int new_level)
3384 {
3385 	assert_spin_locked(&lockres->l_lock);
3386 
3387 	BUG_ON(lockres->l_blocking <= DLM_LOCK_NL);
3388 
3389 	if (lockres->l_level <= new_level) {
3390 		mlog(ML_ERROR, "lockres %s, lvl %d <= %d, blcklst %d, mask %d, "
3391 		     "type %d, flags 0x%lx, hold %d %d, act %d %d, req %d, "
3392 		     "block %d, pgen %d\n", lockres->l_name, lockres->l_level,
3393 		     new_level, list_empty(&lockres->l_blocked_list),
3394 		     list_empty(&lockres->l_mask_waiters), lockres->l_type,
3395 		     lockres->l_flags, lockres->l_ro_holders,
3396 		     lockres->l_ex_holders, lockres->l_action,
3397 		     lockres->l_unlock_action, lockres->l_requested,
3398 		     lockres->l_blocking, lockres->l_pending_gen);
3399 		BUG();
3400 	}
3401 
3402 	mlog(ML_BASTS, "lockres %s, level %d => %d, blocking %d\n",
3403 	     lockres->l_name, lockres->l_level, new_level, lockres->l_blocking);
3404 
3405 	lockres->l_action = OCFS2_AST_DOWNCONVERT;
3406 	lockres->l_requested = new_level;
3407 	lockres_or_flags(lockres, OCFS2_LOCK_BUSY);
3408 	return lockres_set_pending(lockres);
3409 }
3410 
ocfs2_downconvert_lock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres,int new_level,int lvb,unsigned int generation)3411 static int ocfs2_downconvert_lock(struct ocfs2_super *osb,
3412 				  struct ocfs2_lock_res *lockres,
3413 				  int new_level,
3414 				  int lvb,
3415 				  unsigned int generation)
3416 {
3417 	int ret;
3418 	u32 dlm_flags = DLM_LKF_CONVERT;
3419 
3420 	mlog(ML_BASTS, "lockres %s, level %d => %d\n", lockres->l_name,
3421 	     lockres->l_level, new_level);
3422 
3423 	/*
3424 	 * On DLM_LKF_VALBLK, fsdlm behaves differently with o2cb. It always
3425 	 * expects DLM_LKF_VALBLK being set if the LKB has LVB, so that
3426 	 * we can recover correctly from node failure. Otherwise, we may get
3427 	 * invalid LVB in LKB, but without DLM_SBF_VALNOTVALID being set.
3428 	 */
3429 	if (ocfs2_userspace_stack(osb) &&
3430 	    lockres->l_ops->flags & LOCK_TYPE_USES_LVB)
3431 		lvb = 1;
3432 
3433 	if (lvb)
3434 		dlm_flags |= DLM_LKF_VALBLK;
3435 
3436 	ret = ocfs2_dlm_lock(osb->cconn,
3437 			     new_level,
3438 			     &lockres->l_lksb,
3439 			     dlm_flags,
3440 			     lockres->l_name,
3441 			     OCFS2_LOCK_ID_MAX_LEN - 1);
3442 	lockres_clear_pending(lockres, generation, osb);
3443 	if (ret) {
3444 		ocfs2_log_dlm_error("ocfs2_dlm_lock", ret, lockres);
3445 		ocfs2_recover_from_dlm_error(lockres, 1);
3446 		goto bail;
3447 	}
3448 
3449 	ret = 0;
3450 bail:
3451 	return ret;
3452 }
3453 
3454 /* returns 1 when the caller should unlock and call ocfs2_dlm_unlock */
ocfs2_prepare_cancel_convert(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres)3455 static int ocfs2_prepare_cancel_convert(struct ocfs2_super *osb,
3456 				        struct ocfs2_lock_res *lockres)
3457 {
3458 	assert_spin_locked(&lockres->l_lock);
3459 
3460 	if (lockres->l_unlock_action == OCFS2_UNLOCK_CANCEL_CONVERT) {
3461 		/* If we're already trying to cancel a lock conversion
3462 		 * then just drop the spinlock and allow the caller to
3463 		 * requeue this lock. */
3464 		mlog(ML_BASTS, "lockres %s, skip convert\n", lockres->l_name);
3465 		return 0;
3466 	}
3467 
3468 	/* were we in a convert when we got the bast fire? */
3469 	BUG_ON(lockres->l_action != OCFS2_AST_CONVERT &&
3470 	       lockres->l_action != OCFS2_AST_DOWNCONVERT);
3471 	/* set things up for the unlockast to know to just
3472 	 * clear out the ast_action and unset busy, etc. */
3473 	lockres->l_unlock_action = OCFS2_UNLOCK_CANCEL_CONVERT;
3474 
3475 	mlog_bug_on_msg(!(lockres->l_flags & OCFS2_LOCK_BUSY),
3476 			"lock %s, invalid flags: 0x%lx\n",
3477 			lockres->l_name, lockres->l_flags);
3478 
3479 	mlog(ML_BASTS, "lockres %s\n", lockres->l_name);
3480 
3481 	return 1;
3482 }
3483 
ocfs2_cancel_convert(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres)3484 static int ocfs2_cancel_convert(struct ocfs2_super *osb,
3485 				struct ocfs2_lock_res *lockres)
3486 {
3487 	int ret;
3488 
3489 	ret = ocfs2_dlm_unlock(osb->cconn, &lockres->l_lksb,
3490 			       DLM_LKF_CANCEL);
3491 	if (ret) {
3492 		ocfs2_log_dlm_error("ocfs2_dlm_unlock", ret, lockres);
3493 		ocfs2_recover_from_dlm_error(lockres, 0);
3494 	}
3495 
3496 	mlog(ML_BASTS, "lockres %s\n", lockres->l_name);
3497 
3498 	return ret;
3499 }
3500 
ocfs2_unblock_lock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres,struct ocfs2_unblock_ctl * ctl)3501 static int ocfs2_unblock_lock(struct ocfs2_super *osb,
3502 			      struct ocfs2_lock_res *lockres,
3503 			      struct ocfs2_unblock_ctl *ctl)
3504 {
3505 	unsigned long flags;
3506 	int blocking;
3507 	int new_level;
3508 	int level;
3509 	int ret = 0;
3510 	int set_lvb = 0;
3511 	unsigned int gen;
3512 
3513 	spin_lock_irqsave(&lockres->l_lock, flags);
3514 
3515 recheck:
3516 	/*
3517 	 * Is it still blocking? If not, we have no more work to do.
3518 	 */
3519 	if (!(lockres->l_flags & OCFS2_LOCK_BLOCKED)) {
3520 		BUG_ON(lockres->l_blocking != DLM_LOCK_NL);
3521 		spin_unlock_irqrestore(&lockres->l_lock, flags);
3522 		ret = 0;
3523 		goto leave;
3524 	}
3525 
3526 	if (lockres->l_flags & OCFS2_LOCK_BUSY) {
3527 		/* XXX
3528 		 * This is a *big* race.  The OCFS2_LOCK_PENDING flag
3529 		 * exists entirely for one reason - another thread has set
3530 		 * OCFS2_LOCK_BUSY, but has *NOT* yet called dlm_lock().
3531 		 *
3532 		 * If we do ocfs2_cancel_convert() before the other thread
3533 		 * calls dlm_lock(), our cancel will do nothing.  We will
3534 		 * get no ast, and we will have no way of knowing the
3535 		 * cancel failed.  Meanwhile, the other thread will call
3536 		 * into dlm_lock() and wait...forever.
3537 		 *
3538 		 * Why forever?  Because another node has asked for the
3539 		 * lock first; that's why we're here in unblock_lock().
3540 		 *
3541 		 * The solution is OCFS2_LOCK_PENDING.  When PENDING is
3542 		 * set, we just requeue the unblock.  Only when the other
3543 		 * thread has called dlm_lock() and cleared PENDING will
3544 		 * we then cancel their request.
3545 		 *
3546 		 * All callers of dlm_lock() must set OCFS2_DLM_PENDING
3547 		 * at the same time they set OCFS2_DLM_BUSY.  They must
3548 		 * clear OCFS2_DLM_PENDING after dlm_lock() returns.
3549 		 */
3550 		if (lockres->l_flags & OCFS2_LOCK_PENDING) {
3551 			mlog(ML_BASTS, "lockres %s, ReQ: Pending\n",
3552 			     lockres->l_name);
3553 			goto leave_requeue;
3554 		}
3555 
3556 		ctl->requeue = 1;
3557 		ret = ocfs2_prepare_cancel_convert(osb, lockres);
3558 		spin_unlock_irqrestore(&lockres->l_lock, flags);
3559 		if (ret) {
3560 			ret = ocfs2_cancel_convert(osb, lockres);
3561 			if (ret < 0)
3562 				mlog_errno(ret);
3563 		}
3564 		goto leave;
3565 	}
3566 
3567 	/*
3568 	 * This prevents livelocks. OCFS2_LOCK_UPCONVERT_FINISHING flag is
3569 	 * set when the ast is received for an upconvert just before the
3570 	 * OCFS2_LOCK_BUSY flag is cleared. Now if the fs received a bast
3571 	 * on the heels of the ast, we want to delay the downconvert just
3572 	 * enough to allow the up requestor to do its task. Because this
3573 	 * lock is in the blocked queue, the lock will be downconverted
3574 	 * as soon as the requestor is done with the lock.
3575 	 */
3576 	if (lockres->l_flags & OCFS2_LOCK_UPCONVERT_FINISHING)
3577 		goto leave_requeue;
3578 
3579 	/*
3580 	 * How can we block and yet be at NL?  We were trying to upconvert
3581 	 * from NL and got canceled.  The code comes back here, and now
3582 	 * we notice and clear BLOCKING.
3583 	 */
3584 	if (lockres->l_level == DLM_LOCK_NL) {
3585 		BUG_ON(lockres->l_ex_holders || lockres->l_ro_holders);
3586 		mlog(ML_BASTS, "lockres %s, Aborting dc\n", lockres->l_name);
3587 		lockres->l_blocking = DLM_LOCK_NL;
3588 		lockres_clear_flags(lockres, OCFS2_LOCK_BLOCKED);
3589 		spin_unlock_irqrestore(&lockres->l_lock, flags);
3590 		goto leave;
3591 	}
3592 
3593 	/* if we're blocking an exclusive and we have *any* holders,
3594 	 * then requeue. */
3595 	if ((lockres->l_blocking == DLM_LOCK_EX)
3596 	    && (lockres->l_ex_holders || lockres->l_ro_holders)) {
3597 		mlog(ML_BASTS, "lockres %s, ReQ: EX/PR Holders %u,%u\n",
3598 		     lockres->l_name, lockres->l_ex_holders,
3599 		     lockres->l_ro_holders);
3600 		goto leave_requeue;
3601 	}
3602 
3603 	/* If it's a PR we're blocking, then only
3604 	 * requeue if we've got any EX holders */
3605 	if (lockres->l_blocking == DLM_LOCK_PR &&
3606 	    lockres->l_ex_holders) {
3607 		mlog(ML_BASTS, "lockres %s, ReQ: EX Holders %u\n",
3608 		     lockres->l_name, lockres->l_ex_holders);
3609 		goto leave_requeue;
3610 	}
3611 
3612 	/*
3613 	 * Can we get a lock in this state if the holder counts are
3614 	 * zero? The meta data unblock code used to check this.
3615 	 */
3616 	if ((lockres->l_ops->flags & LOCK_TYPE_REQUIRES_REFRESH)
3617 	    && (lockres->l_flags & OCFS2_LOCK_REFRESHING)) {
3618 		mlog(ML_BASTS, "lockres %s, ReQ: Lock Refreshing\n",
3619 		     lockres->l_name);
3620 		goto leave_requeue;
3621 	}
3622 
3623 	new_level = ocfs2_highest_compat_lock_level(lockres->l_blocking);
3624 
3625 	if (lockres->l_ops->check_downconvert
3626 	    && !lockres->l_ops->check_downconvert(lockres, new_level)) {
3627 		mlog(ML_BASTS, "lockres %s, ReQ: Checkpointing\n",
3628 		     lockres->l_name);
3629 		goto leave_requeue;
3630 	}
3631 
3632 	/* If we get here, then we know that there are no more
3633 	 * incompatible holders (and anyone asking for an incompatible
3634 	 * lock is blocked). We can now downconvert the lock */
3635 	if (!lockres->l_ops->downconvert_worker)
3636 		goto downconvert;
3637 
3638 	/* Some lockres types want to do a bit of work before
3639 	 * downconverting a lock. Allow that here. The worker function
3640 	 * may sleep, so we save off a copy of what we're blocking as
3641 	 * it may change while we're not holding the spin lock. */
3642 	blocking = lockres->l_blocking;
3643 	level = lockres->l_level;
3644 	spin_unlock_irqrestore(&lockres->l_lock, flags);
3645 
3646 	ctl->unblock_action = lockres->l_ops->downconvert_worker(lockres, blocking);
3647 
3648 	if (ctl->unblock_action == UNBLOCK_STOP_POST) {
3649 		mlog(ML_BASTS, "lockres %s, UNBLOCK_STOP_POST\n",
3650 		     lockres->l_name);
3651 		goto leave;
3652 	}
3653 
3654 	spin_lock_irqsave(&lockres->l_lock, flags);
3655 	if ((blocking != lockres->l_blocking) || (level != lockres->l_level)) {
3656 		/* If this changed underneath us, then we can't drop
3657 		 * it just yet. */
3658 		mlog(ML_BASTS, "lockres %s, block=%d:%d, level=%d:%d, "
3659 		     "Recheck\n", lockres->l_name, blocking,
3660 		     lockres->l_blocking, level, lockres->l_level);
3661 		goto recheck;
3662 	}
3663 
3664 downconvert:
3665 	ctl->requeue = 0;
3666 
3667 	if (lockres->l_ops->flags & LOCK_TYPE_USES_LVB) {
3668 		if (lockres->l_level == DLM_LOCK_EX)
3669 			set_lvb = 1;
3670 
3671 		/*
3672 		 * We only set the lvb if the lock has been fully
3673 		 * refreshed - otherwise we risk setting stale
3674 		 * data. Otherwise, there's no need to actually clear
3675 		 * out the lvb here as it's value is still valid.
3676 		 */
3677 		if (set_lvb && !(lockres->l_flags & OCFS2_LOCK_NEEDS_REFRESH))
3678 			lockres->l_ops->set_lvb(lockres);
3679 	}
3680 
3681 	gen = ocfs2_prepare_downconvert(lockres, new_level);
3682 	spin_unlock_irqrestore(&lockres->l_lock, flags);
3683 	ret = ocfs2_downconvert_lock(osb, lockres, new_level, set_lvb,
3684 				     gen);
3685 
3686 leave:
3687 	if (ret)
3688 		mlog_errno(ret);
3689 	return ret;
3690 
3691 leave_requeue:
3692 	spin_unlock_irqrestore(&lockres->l_lock, flags);
3693 	ctl->requeue = 1;
3694 
3695 	return 0;
3696 }
3697 
ocfs2_data_convert_worker(struct ocfs2_lock_res * lockres,int blocking)3698 static int ocfs2_data_convert_worker(struct ocfs2_lock_res *lockres,
3699 				     int blocking)
3700 {
3701 	struct inode *inode;
3702 	struct address_space *mapping;
3703 	struct ocfs2_inode_info *oi;
3704 
3705        	inode = ocfs2_lock_res_inode(lockres);
3706 	mapping = inode->i_mapping;
3707 
3708 	if (S_ISDIR(inode->i_mode)) {
3709 		oi = OCFS2_I(inode);
3710 		oi->ip_dir_lock_gen++;
3711 		mlog(0, "generation: %u\n", oi->ip_dir_lock_gen);
3712 		goto out;
3713 	}
3714 
3715 	if (!S_ISREG(inode->i_mode))
3716 		goto out;
3717 
3718 	/*
3719 	 * We need this before the filemap_fdatawrite() so that it can
3720 	 * transfer the dirty bit from the PTE to the
3721 	 * page. Unfortunately this means that even for EX->PR
3722 	 * downconverts, we'll lose our mappings and have to build
3723 	 * them up again.
3724 	 */
3725 	unmap_mapping_range(mapping, 0, 0, 0);
3726 
3727 	if (filemap_fdatawrite(mapping)) {
3728 		mlog(ML_ERROR, "Could not sync inode %llu for downconvert!",
3729 		     (unsigned long long)OCFS2_I(inode)->ip_blkno);
3730 	}
3731 	sync_mapping_buffers(mapping);
3732 	if (blocking == DLM_LOCK_EX) {
3733 		truncate_inode_pages(mapping, 0);
3734 	} else {
3735 		/* We only need to wait on the I/O if we're not also
3736 		 * truncating pages because truncate_inode_pages waits
3737 		 * for us above. We don't truncate pages if we're
3738 		 * blocking anything < EXMODE because we want to keep
3739 		 * them around in that case. */
3740 		filemap_fdatawait(mapping);
3741 	}
3742 
3743 out:
3744 	return UNBLOCK_CONTINUE;
3745 }
3746 
ocfs2_ci_checkpointed(struct ocfs2_caching_info * ci,struct ocfs2_lock_res * lockres,int new_level)3747 static int ocfs2_ci_checkpointed(struct ocfs2_caching_info *ci,
3748 				 struct ocfs2_lock_res *lockres,
3749 				 int new_level)
3750 {
3751 	int checkpointed = ocfs2_ci_fully_checkpointed(ci);
3752 
3753 	BUG_ON(new_level != DLM_LOCK_NL && new_level != DLM_LOCK_PR);
3754 	BUG_ON(lockres->l_level != DLM_LOCK_EX && !checkpointed);
3755 
3756 	if (checkpointed)
3757 		return 1;
3758 
3759 	ocfs2_start_checkpoint(OCFS2_SB(ocfs2_metadata_cache_get_super(ci)));
3760 	return 0;
3761 }
3762 
ocfs2_check_meta_downconvert(struct ocfs2_lock_res * lockres,int new_level)3763 static int ocfs2_check_meta_downconvert(struct ocfs2_lock_res *lockres,
3764 					int new_level)
3765 {
3766 	struct inode *inode = ocfs2_lock_res_inode(lockres);
3767 
3768 	return ocfs2_ci_checkpointed(INODE_CACHE(inode), lockres, new_level);
3769 }
3770 
ocfs2_set_meta_lvb(struct ocfs2_lock_res * lockres)3771 static void ocfs2_set_meta_lvb(struct ocfs2_lock_res *lockres)
3772 {
3773 	struct inode *inode = ocfs2_lock_res_inode(lockres);
3774 
3775 	__ocfs2_stuff_meta_lvb(inode);
3776 }
3777 
3778 /*
3779  * Does the final reference drop on our dentry lock. Right now this
3780  * happens in the downconvert thread, but we could choose to simplify the
3781  * dlmglue API and push these off to the ocfs2_wq in the future.
3782  */
ocfs2_dentry_post_unlock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres)3783 static void ocfs2_dentry_post_unlock(struct ocfs2_super *osb,
3784 				     struct ocfs2_lock_res *lockres)
3785 {
3786 	struct ocfs2_dentry_lock *dl = ocfs2_lock_res_dl(lockres);
3787 	ocfs2_dentry_lock_put(osb, dl);
3788 }
3789 
3790 /*
3791  * d_delete() matching dentries before the lock downconvert.
3792  *
3793  * At this point, any process waiting to destroy the
3794  * dentry_lock due to last ref count is stopped by the
3795  * OCFS2_LOCK_QUEUED flag.
3796  *
3797  * We have two potential problems
3798  *
3799  * 1) If we do the last reference drop on our dentry_lock (via dput)
3800  *    we'll wind up in ocfs2_release_dentry_lock(), waiting on
3801  *    the downconvert to finish. Instead we take an elevated
3802  *    reference and push the drop until after we've completed our
3803  *    unblock processing.
3804  *
3805  * 2) There might be another process with a final reference,
3806  *    waiting on us to finish processing. If this is the case, we
3807  *    detect it and exit out - there's no more dentries anyway.
3808  */
ocfs2_dentry_convert_worker(struct ocfs2_lock_res * lockres,int blocking)3809 static int ocfs2_dentry_convert_worker(struct ocfs2_lock_res *lockres,
3810 				       int blocking)
3811 {
3812 	struct ocfs2_dentry_lock *dl = ocfs2_lock_res_dl(lockres);
3813 	struct ocfs2_inode_info *oi = OCFS2_I(dl->dl_inode);
3814 	struct dentry *dentry;
3815 	unsigned long flags;
3816 	int extra_ref = 0;
3817 
3818 	/*
3819 	 * This node is blocking another node from getting a read
3820 	 * lock. This happens when we've renamed within a
3821 	 * directory. We've forced the other nodes to d_delete(), but
3822 	 * we never actually dropped our lock because it's still
3823 	 * valid. The downconvert code will retain a PR for this node,
3824 	 * so there's no further work to do.
3825 	 */
3826 	if (blocking == DLM_LOCK_PR)
3827 		return UNBLOCK_CONTINUE;
3828 
3829 	/*
3830 	 * Mark this inode as potentially orphaned. The code in
3831 	 * ocfs2_delete_inode() will figure out whether it actually
3832 	 * needs to be freed or not.
3833 	 */
3834 	spin_lock(&oi->ip_lock);
3835 	oi->ip_flags |= OCFS2_INODE_MAYBE_ORPHANED;
3836 	spin_unlock(&oi->ip_lock);
3837 
3838 	/*
3839 	 * Yuck. We need to make sure however that the check of
3840 	 * OCFS2_LOCK_FREEING and the extra reference are atomic with
3841 	 * respect to a reference decrement or the setting of that
3842 	 * flag.
3843 	 */
3844 	spin_lock_irqsave(&lockres->l_lock, flags);
3845 	spin_lock(&dentry_attach_lock);
3846 	if (!(lockres->l_flags & OCFS2_LOCK_FREEING)
3847 	    && dl->dl_count) {
3848 		dl->dl_count++;
3849 		extra_ref = 1;
3850 	}
3851 	spin_unlock(&dentry_attach_lock);
3852 	spin_unlock_irqrestore(&lockres->l_lock, flags);
3853 
3854 	mlog(0, "extra_ref = %d\n", extra_ref);
3855 
3856 	/*
3857 	 * We have a process waiting on us in ocfs2_dentry_iput(),
3858 	 * which means we can't have any more outstanding
3859 	 * aliases. There's no need to do any more work.
3860 	 */
3861 	if (!extra_ref)
3862 		return UNBLOCK_CONTINUE;
3863 
3864 	spin_lock(&dentry_attach_lock);
3865 	while (1) {
3866 		dentry = ocfs2_find_local_alias(dl->dl_inode,
3867 						dl->dl_parent_blkno, 1);
3868 		if (!dentry)
3869 			break;
3870 		spin_unlock(&dentry_attach_lock);
3871 
3872 		if (S_ISDIR(dl->dl_inode->i_mode))
3873 			shrink_dcache_parent(dentry);
3874 
3875 		mlog(0, "d_delete(%pd);\n", dentry);
3876 
3877 		/*
3878 		 * The following dcache calls may do an
3879 		 * iput(). Normally we don't want that from the
3880 		 * downconverting thread, but in this case it's ok
3881 		 * because the requesting node already has an
3882 		 * exclusive lock on the inode, so it can't be queued
3883 		 * for a downconvert.
3884 		 */
3885 		d_delete(dentry);
3886 		dput(dentry);
3887 
3888 		spin_lock(&dentry_attach_lock);
3889 	}
3890 	spin_unlock(&dentry_attach_lock);
3891 
3892 	/*
3893 	 * If we are the last holder of this dentry lock, there is no
3894 	 * reason to downconvert so skip straight to the unlock.
3895 	 */
3896 	if (dl->dl_count == 1)
3897 		return UNBLOCK_STOP_POST;
3898 
3899 	return UNBLOCK_CONTINUE_POST;
3900 }
3901 
ocfs2_check_refcount_downconvert(struct ocfs2_lock_res * lockres,int new_level)3902 static int ocfs2_check_refcount_downconvert(struct ocfs2_lock_res *lockres,
3903 					    int new_level)
3904 {
3905 	struct ocfs2_refcount_tree *tree =
3906 				ocfs2_lock_res_refcount_tree(lockres);
3907 
3908 	return ocfs2_ci_checkpointed(&tree->rf_ci, lockres, new_level);
3909 }
3910 
ocfs2_refcount_convert_worker(struct ocfs2_lock_res * lockres,int blocking)3911 static int ocfs2_refcount_convert_worker(struct ocfs2_lock_res *lockres,
3912 					 int blocking)
3913 {
3914 	struct ocfs2_refcount_tree *tree =
3915 				ocfs2_lock_res_refcount_tree(lockres);
3916 
3917 	ocfs2_metadata_cache_purge(&tree->rf_ci);
3918 
3919 	return UNBLOCK_CONTINUE;
3920 }
3921 
ocfs2_set_qinfo_lvb(struct ocfs2_lock_res * lockres)3922 static void ocfs2_set_qinfo_lvb(struct ocfs2_lock_res *lockres)
3923 {
3924 	struct ocfs2_qinfo_lvb *lvb;
3925 	struct ocfs2_mem_dqinfo *oinfo = ocfs2_lock_res_qinfo(lockres);
3926 	struct mem_dqinfo *info = sb_dqinfo(oinfo->dqi_gi.dqi_sb,
3927 					    oinfo->dqi_gi.dqi_type);
3928 
3929 	lvb = ocfs2_dlm_lvb(&lockres->l_lksb);
3930 	lvb->lvb_version = OCFS2_QINFO_LVB_VERSION;
3931 	lvb->lvb_bgrace = cpu_to_be32(info->dqi_bgrace);
3932 	lvb->lvb_igrace = cpu_to_be32(info->dqi_igrace);
3933 	lvb->lvb_syncms = cpu_to_be32(oinfo->dqi_syncms);
3934 	lvb->lvb_blocks = cpu_to_be32(oinfo->dqi_gi.dqi_blocks);
3935 	lvb->lvb_free_blk = cpu_to_be32(oinfo->dqi_gi.dqi_free_blk);
3936 	lvb->lvb_free_entry = cpu_to_be32(oinfo->dqi_gi.dqi_free_entry);
3937 }
3938 
ocfs2_qinfo_unlock(struct ocfs2_mem_dqinfo * oinfo,int ex)3939 void ocfs2_qinfo_unlock(struct ocfs2_mem_dqinfo *oinfo, int ex)
3940 {
3941 	struct ocfs2_lock_res *lockres = &oinfo->dqi_gqlock;
3942 	struct ocfs2_super *osb = OCFS2_SB(oinfo->dqi_gi.dqi_sb);
3943 	int level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
3944 
3945 	if (!ocfs2_is_hard_readonly(osb) && !ocfs2_mount_local(osb))
3946 		ocfs2_cluster_unlock(osb, lockres, level);
3947 }
3948 
ocfs2_refresh_qinfo(struct ocfs2_mem_dqinfo * oinfo)3949 static int ocfs2_refresh_qinfo(struct ocfs2_mem_dqinfo *oinfo)
3950 {
3951 	struct mem_dqinfo *info = sb_dqinfo(oinfo->dqi_gi.dqi_sb,
3952 					    oinfo->dqi_gi.dqi_type);
3953 	struct ocfs2_lock_res *lockres = &oinfo->dqi_gqlock;
3954 	struct ocfs2_qinfo_lvb *lvb = ocfs2_dlm_lvb(&lockres->l_lksb);
3955 	struct buffer_head *bh = NULL;
3956 	struct ocfs2_global_disk_dqinfo *gdinfo;
3957 	int status = 0;
3958 
3959 	if (ocfs2_dlm_lvb_valid(&lockres->l_lksb) &&
3960 	    lvb->lvb_version == OCFS2_QINFO_LVB_VERSION) {
3961 		info->dqi_bgrace = be32_to_cpu(lvb->lvb_bgrace);
3962 		info->dqi_igrace = be32_to_cpu(lvb->lvb_igrace);
3963 		oinfo->dqi_syncms = be32_to_cpu(lvb->lvb_syncms);
3964 		oinfo->dqi_gi.dqi_blocks = be32_to_cpu(lvb->lvb_blocks);
3965 		oinfo->dqi_gi.dqi_free_blk = be32_to_cpu(lvb->lvb_free_blk);
3966 		oinfo->dqi_gi.dqi_free_entry =
3967 					be32_to_cpu(lvb->lvb_free_entry);
3968 	} else {
3969 		status = ocfs2_read_quota_phys_block(oinfo->dqi_gqinode,
3970 						     oinfo->dqi_giblk, &bh);
3971 		if (status) {
3972 			mlog_errno(status);
3973 			goto bail;
3974 		}
3975 		gdinfo = (struct ocfs2_global_disk_dqinfo *)
3976 					(bh->b_data + OCFS2_GLOBAL_INFO_OFF);
3977 		info->dqi_bgrace = le32_to_cpu(gdinfo->dqi_bgrace);
3978 		info->dqi_igrace = le32_to_cpu(gdinfo->dqi_igrace);
3979 		oinfo->dqi_syncms = le32_to_cpu(gdinfo->dqi_syncms);
3980 		oinfo->dqi_gi.dqi_blocks = le32_to_cpu(gdinfo->dqi_blocks);
3981 		oinfo->dqi_gi.dqi_free_blk = le32_to_cpu(gdinfo->dqi_free_blk);
3982 		oinfo->dqi_gi.dqi_free_entry =
3983 					le32_to_cpu(gdinfo->dqi_free_entry);
3984 		brelse(bh);
3985 		ocfs2_track_lock_refresh(lockres);
3986 	}
3987 
3988 bail:
3989 	return status;
3990 }
3991 
3992 /* Lock quota info, this function expects at least shared lock on the quota file
3993  * so that we can safely refresh quota info from disk. */
ocfs2_qinfo_lock(struct ocfs2_mem_dqinfo * oinfo,int ex)3994 int ocfs2_qinfo_lock(struct ocfs2_mem_dqinfo *oinfo, int ex)
3995 {
3996 	struct ocfs2_lock_res *lockres = &oinfo->dqi_gqlock;
3997 	struct ocfs2_super *osb = OCFS2_SB(oinfo->dqi_gi.dqi_sb);
3998 	int level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
3999 	int status = 0;
4000 
4001 	/* On RO devices, locking really isn't needed... */
4002 	if (ocfs2_is_hard_readonly(osb)) {
4003 		if (ex)
4004 			status = -EROFS;
4005 		goto bail;
4006 	}
4007 	if (ocfs2_mount_local(osb))
4008 		goto bail;
4009 
4010 	status = ocfs2_cluster_lock(osb, lockres, level, 0, 0);
4011 	if (status < 0) {
4012 		mlog_errno(status);
4013 		goto bail;
4014 	}
4015 	if (!ocfs2_should_refresh_lock_res(lockres))
4016 		goto bail;
4017 	/* OK, we have the lock but we need to refresh the quota info */
4018 	status = ocfs2_refresh_qinfo(oinfo);
4019 	if (status)
4020 		ocfs2_qinfo_unlock(oinfo, ex);
4021 	ocfs2_complete_lock_res_refresh(lockres, status);
4022 bail:
4023 	return status;
4024 }
4025 
ocfs2_refcount_lock(struct ocfs2_refcount_tree * ref_tree,int ex)4026 int ocfs2_refcount_lock(struct ocfs2_refcount_tree *ref_tree, int ex)
4027 {
4028 	int status;
4029 	int level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
4030 	struct ocfs2_lock_res *lockres = &ref_tree->rf_lockres;
4031 	struct ocfs2_super *osb = lockres->l_priv;
4032 
4033 
4034 	if (ocfs2_is_hard_readonly(osb))
4035 		return -EROFS;
4036 
4037 	if (ocfs2_mount_local(osb))
4038 		return 0;
4039 
4040 	status = ocfs2_cluster_lock(osb, lockres, level, 0, 0);
4041 	if (status < 0)
4042 		mlog_errno(status);
4043 
4044 	return status;
4045 }
4046 
ocfs2_refcount_unlock(struct ocfs2_refcount_tree * ref_tree,int ex)4047 void ocfs2_refcount_unlock(struct ocfs2_refcount_tree *ref_tree, int ex)
4048 {
4049 	int level = ex ? DLM_LOCK_EX : DLM_LOCK_PR;
4050 	struct ocfs2_lock_res *lockres = &ref_tree->rf_lockres;
4051 	struct ocfs2_super *osb = lockres->l_priv;
4052 
4053 	if (!ocfs2_mount_local(osb))
4054 		ocfs2_cluster_unlock(osb, lockres, level);
4055 }
4056 
ocfs2_process_blocked_lock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres)4057 static void ocfs2_process_blocked_lock(struct ocfs2_super *osb,
4058 				       struct ocfs2_lock_res *lockres)
4059 {
4060 	int status;
4061 	struct ocfs2_unblock_ctl ctl = {0, 0,};
4062 	unsigned long flags;
4063 
4064 	/* Our reference to the lockres in this function can be
4065 	 * considered valid until we remove the OCFS2_LOCK_QUEUED
4066 	 * flag. */
4067 
4068 	BUG_ON(!lockres);
4069 	BUG_ON(!lockres->l_ops);
4070 
4071 	mlog(ML_BASTS, "lockres %s blocked\n", lockres->l_name);
4072 
4073 	/* Detect whether a lock has been marked as going away while
4074 	 * the downconvert thread was processing other things. A lock can
4075 	 * still be marked with OCFS2_LOCK_FREEING after this check,
4076 	 * but short circuiting here will still save us some
4077 	 * performance. */
4078 	spin_lock_irqsave(&lockres->l_lock, flags);
4079 	if (lockres->l_flags & OCFS2_LOCK_FREEING)
4080 		goto unqueue;
4081 	spin_unlock_irqrestore(&lockres->l_lock, flags);
4082 
4083 	status = ocfs2_unblock_lock(osb, lockres, &ctl);
4084 	if (status < 0)
4085 		mlog_errno(status);
4086 
4087 	spin_lock_irqsave(&lockres->l_lock, flags);
4088 unqueue:
4089 	if (lockres->l_flags & OCFS2_LOCK_FREEING || !ctl.requeue) {
4090 		lockres_clear_flags(lockres, OCFS2_LOCK_QUEUED);
4091 	} else
4092 		ocfs2_schedule_blocked_lock(osb, lockres);
4093 
4094 	mlog(ML_BASTS, "lockres %s, requeue = %s.\n", lockres->l_name,
4095 	     ctl.requeue ? "yes" : "no");
4096 	spin_unlock_irqrestore(&lockres->l_lock, flags);
4097 
4098 	if (ctl.unblock_action != UNBLOCK_CONTINUE
4099 	    && lockres->l_ops->post_unlock)
4100 		lockres->l_ops->post_unlock(osb, lockres);
4101 }
4102 
ocfs2_schedule_blocked_lock(struct ocfs2_super * osb,struct ocfs2_lock_res * lockres)4103 static void ocfs2_schedule_blocked_lock(struct ocfs2_super *osb,
4104 					struct ocfs2_lock_res *lockres)
4105 {
4106 	unsigned long flags;
4107 
4108 	assert_spin_locked(&lockres->l_lock);
4109 
4110 	if (lockres->l_flags & OCFS2_LOCK_FREEING) {
4111 		/* Do not schedule a lock for downconvert when it's on
4112 		 * the way to destruction - any nodes wanting access
4113 		 * to the resource will get it soon. */
4114 		mlog(ML_BASTS, "lockres %s won't be scheduled: flags 0x%lx\n",
4115 		     lockres->l_name, lockres->l_flags);
4116 		return;
4117 	}
4118 
4119 	lockres_or_flags(lockres, OCFS2_LOCK_QUEUED);
4120 
4121 	spin_lock_irqsave(&osb->dc_task_lock, flags);
4122 	if (list_empty(&lockres->l_blocked_list)) {
4123 		list_add_tail(&lockres->l_blocked_list,
4124 			      &osb->blocked_lock_list);
4125 		osb->blocked_lock_count++;
4126 	}
4127 	spin_unlock_irqrestore(&osb->dc_task_lock, flags);
4128 }
4129 
ocfs2_downconvert_thread_do_work(struct ocfs2_super * osb)4130 static void ocfs2_downconvert_thread_do_work(struct ocfs2_super *osb)
4131 {
4132 	unsigned long processed;
4133 	unsigned long flags;
4134 	struct ocfs2_lock_res *lockres;
4135 
4136 	spin_lock_irqsave(&osb->dc_task_lock, flags);
4137 	/* grab this early so we know to try again if a state change and
4138 	 * wake happens part-way through our work  */
4139 	osb->dc_work_sequence = osb->dc_wake_sequence;
4140 
4141 	processed = osb->blocked_lock_count;
4142 	/*
4143 	 * blocked lock processing in this loop might call iput which can
4144 	 * remove items off osb->blocked_lock_list. Downconvert up to
4145 	 * 'processed' number of locks, but stop short if we had some
4146 	 * removed in ocfs2_mark_lockres_freeing when downconverting.
4147 	 */
4148 	while (processed && !list_empty(&osb->blocked_lock_list)) {
4149 		lockres = list_entry(osb->blocked_lock_list.next,
4150 				     struct ocfs2_lock_res, l_blocked_list);
4151 		list_del_init(&lockres->l_blocked_list);
4152 		osb->blocked_lock_count--;
4153 		spin_unlock_irqrestore(&osb->dc_task_lock, flags);
4154 
4155 		BUG_ON(!processed);
4156 		processed--;
4157 
4158 		ocfs2_process_blocked_lock(osb, lockres);
4159 
4160 		spin_lock_irqsave(&osb->dc_task_lock, flags);
4161 	}
4162 	spin_unlock_irqrestore(&osb->dc_task_lock, flags);
4163 }
4164 
ocfs2_downconvert_thread_lists_empty(struct ocfs2_super * osb)4165 static int ocfs2_downconvert_thread_lists_empty(struct ocfs2_super *osb)
4166 {
4167 	int empty = 0;
4168 	unsigned long flags;
4169 
4170 	spin_lock_irqsave(&osb->dc_task_lock, flags);
4171 	if (list_empty(&osb->blocked_lock_list))
4172 		empty = 1;
4173 
4174 	spin_unlock_irqrestore(&osb->dc_task_lock, flags);
4175 	return empty;
4176 }
4177 
ocfs2_downconvert_thread_should_wake(struct ocfs2_super * osb)4178 static int ocfs2_downconvert_thread_should_wake(struct ocfs2_super *osb)
4179 {
4180 	int should_wake = 0;
4181 	unsigned long flags;
4182 
4183 	spin_lock_irqsave(&osb->dc_task_lock, flags);
4184 	if (osb->dc_work_sequence != osb->dc_wake_sequence)
4185 		should_wake = 1;
4186 	spin_unlock_irqrestore(&osb->dc_task_lock, flags);
4187 
4188 	return should_wake;
4189 }
4190 
ocfs2_downconvert_thread(void * arg)4191 static int ocfs2_downconvert_thread(void *arg)
4192 {
4193 	int status = 0;
4194 	struct ocfs2_super *osb = arg;
4195 
4196 	/* only quit once we've been asked to stop and there is no more
4197 	 * work available */
4198 	while (!(kthread_should_stop() &&
4199 		ocfs2_downconvert_thread_lists_empty(osb))) {
4200 
4201 		wait_event_interruptible(osb->dc_event,
4202 					 ocfs2_downconvert_thread_should_wake(osb) ||
4203 					 kthread_should_stop());
4204 
4205 		mlog(0, "downconvert_thread: awoken\n");
4206 
4207 		ocfs2_downconvert_thread_do_work(osb);
4208 	}
4209 
4210 	osb->dc_task = NULL;
4211 	return status;
4212 }
4213 
ocfs2_wake_downconvert_thread(struct ocfs2_super * osb)4214 void ocfs2_wake_downconvert_thread(struct ocfs2_super *osb)
4215 {
4216 	unsigned long flags;
4217 
4218 	spin_lock_irqsave(&osb->dc_task_lock, flags);
4219 	/* make sure the voting thread gets a swipe at whatever changes
4220 	 * the caller may have made to the voting state */
4221 	osb->dc_wake_sequence++;
4222 	spin_unlock_irqrestore(&osb->dc_task_lock, flags);
4223 	wake_up(&osb->dc_event);
4224 }
4225