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v6.2
  1// SPDX-License-Identifier: GPL-2.0-only
  2/*
  3 * linux/fs/lockd/clntproc.c
  4 *
  5 * RPC procedures for the client side NLM implementation
  6 *
  7 * Copyright (C) 1996, Olaf Kirch <okir@monad.swb.de>
  8 */
  9
 10#include <linux/module.h>
 11#include <linux/slab.h>
 12#include <linux/types.h>
 13#include <linux/errno.h>
 14#include <linux/fs.h>
 15#include <linux/nfs_fs.h>
 16#include <linux/utsname.h>
 17#include <linux/freezer.h>
 18#include <linux/sunrpc/clnt.h>
 19#include <linux/sunrpc/svc.h>
 20#include <linux/lockd/lockd.h>
 21
 22#define NLMDBG_FACILITY		NLMDBG_CLIENT
 23#define NLMCLNT_GRACE_WAIT	(5*HZ)
 24#define NLMCLNT_POLL_TIMEOUT	(30*HZ)
 25#define NLMCLNT_MAX_RETRIES	3
 26
 27static int	nlmclnt_test(struct nlm_rqst *, struct file_lock *);
 28static int	nlmclnt_lock(struct nlm_rqst *, struct file_lock *);
 29static int	nlmclnt_unlock(struct nlm_rqst *, struct file_lock *);
 30static int	nlm_stat_to_errno(__be32 stat);
 31static void	nlmclnt_locks_init_private(struct file_lock *fl, struct nlm_host *host);
 32static int	nlmclnt_cancel(struct nlm_host *, int , struct file_lock *);
 33
 34static const struct rpc_call_ops nlmclnt_unlock_ops;
 35static const struct rpc_call_ops nlmclnt_cancel_ops;
 36
 37/*
 38 * Cookie counter for NLM requests
 39 */
 40static atomic_t	nlm_cookie = ATOMIC_INIT(0x1234);
 41
 42void nlmclnt_next_cookie(struct nlm_cookie *c)
 43{
 44	u32	cookie = atomic_inc_return(&nlm_cookie);
 45
 46	memcpy(c->data, &cookie, 4);
 47	c->len=4;
 48}
 49
 50static struct nlm_lockowner *
 51nlmclnt_get_lockowner(struct nlm_lockowner *lockowner)
 52{
 53	refcount_inc(&lockowner->count);
 54	return lockowner;
 55}
 56
 57static void nlmclnt_put_lockowner(struct nlm_lockowner *lockowner)
 58{
 59	if (!refcount_dec_and_lock(&lockowner->count, &lockowner->host->h_lock))
 60		return;
 61	list_del(&lockowner->list);
 62	spin_unlock(&lockowner->host->h_lock);
 63	nlmclnt_release_host(lockowner->host);
 64	kfree(lockowner);
 65}
 66
 67static inline int nlm_pidbusy(struct nlm_host *host, uint32_t pid)
 68{
 69	struct nlm_lockowner *lockowner;
 70	list_for_each_entry(lockowner, &host->h_lockowners, list) {
 71		if (lockowner->pid == pid)
 72			return -EBUSY;
 73	}
 74	return 0;
 75}
 76
 77static inline uint32_t __nlm_alloc_pid(struct nlm_host *host)
 78{
 79	uint32_t res;
 80	do {
 81		res = host->h_pidcount++;
 82	} while (nlm_pidbusy(host, res) < 0);
 83	return res;
 84}
 85
 86static struct nlm_lockowner *__nlmclnt_find_lockowner(struct nlm_host *host, fl_owner_t owner)
 87{
 88	struct nlm_lockowner *lockowner;
 89	list_for_each_entry(lockowner, &host->h_lockowners, list) {
 90		if (lockowner->owner != owner)
 91			continue;
 92		return nlmclnt_get_lockowner(lockowner);
 93	}
 94	return NULL;
 95}
 96
 97static struct nlm_lockowner *nlmclnt_find_lockowner(struct nlm_host *host, fl_owner_t owner)
 98{
 99	struct nlm_lockowner *res, *new = NULL;
100
101	spin_lock(&host->h_lock);
102	res = __nlmclnt_find_lockowner(host, owner);
103	if (res == NULL) {
104		spin_unlock(&host->h_lock);
105		new = kmalloc(sizeof(*new), GFP_KERNEL);
106		spin_lock(&host->h_lock);
107		res = __nlmclnt_find_lockowner(host, owner);
108		if (res == NULL && new != NULL) {
109			res = new;
110			refcount_set(&new->count, 1);
111			new->owner = owner;
112			new->pid = __nlm_alloc_pid(host);
113			new->host = nlm_get_host(host);
114			list_add(&new->list, &host->h_lockowners);
115			new = NULL;
116		}
117	}
118	spin_unlock(&host->h_lock);
119	kfree(new);
120	return res;
121}
122
123/*
124 * Initialize arguments for TEST/LOCK/UNLOCK/CANCEL calls
125 */
126static void nlmclnt_setlockargs(struct nlm_rqst *req, struct file_lock *fl)
127{
128	struct nlm_args	*argp = &req->a_args;
129	struct nlm_lock	*lock = &argp->lock;
130	char *nodename = req->a_host->h_rpcclnt->cl_nodename;
131
132	nlmclnt_next_cookie(&argp->cookie);
133	memcpy(&lock->fh, NFS_FH(locks_inode(fl->fl_file)), sizeof(struct nfs_fh));
134	lock->caller  = nodename;
135	lock->oh.data = req->a_owner;
136	lock->oh.len  = snprintf(req->a_owner, sizeof(req->a_owner), "%u@%s",
137				(unsigned int)fl->fl_u.nfs_fl.owner->pid,
138				nodename);
139	lock->svid = fl->fl_u.nfs_fl.owner->pid;
140	lock->fl.fl_start = fl->fl_start;
141	lock->fl.fl_end = fl->fl_end;
142	lock->fl.fl_type = fl->fl_type;
143}
144
145static void nlmclnt_release_lockargs(struct nlm_rqst *req)
146{
147	WARN_ON_ONCE(req->a_args.lock.fl.fl_ops != NULL);
148}
149
150/**
151 * nlmclnt_proc - Perform a single client-side lock request
152 * @host: address of a valid nlm_host context representing the NLM server
153 * @cmd: fcntl-style file lock operation to perform
154 * @fl: address of arguments for the lock operation
155 * @data: address of data to be sent to callback operations
156 *
157 */
158int nlmclnt_proc(struct nlm_host *host, int cmd, struct file_lock *fl, void *data)
159{
160	struct nlm_rqst		*call;
161	int			status;
162	const struct nlmclnt_operations *nlmclnt_ops = host->h_nlmclnt_ops;
163
164	call = nlm_alloc_call(host);
165	if (call == NULL)
166		return -ENOMEM;
167
168	if (nlmclnt_ops && nlmclnt_ops->nlmclnt_alloc_call)
169		nlmclnt_ops->nlmclnt_alloc_call(data);
170
171	nlmclnt_locks_init_private(fl, host);
172	if (!fl->fl_u.nfs_fl.owner) {
173		/* lockowner allocation has failed */
174		nlmclnt_release_call(call);
175		return -ENOMEM;
176	}
177	/* Set up the argument struct */
178	nlmclnt_setlockargs(call, fl);
179	call->a_callback_data = data;
180
181	if (IS_SETLK(cmd) || IS_SETLKW(cmd)) {
182		if (fl->fl_type != F_UNLCK) {
183			call->a_args.block = IS_SETLKW(cmd) ? 1 : 0;
184			status = nlmclnt_lock(call, fl);
185		} else
186			status = nlmclnt_unlock(call, fl);
187	} else if (IS_GETLK(cmd))
188		status = nlmclnt_test(call, fl);
189	else
190		status = -EINVAL;
191	fl->fl_ops->fl_release_private(fl);
192	fl->fl_ops = NULL;
193
194	dprintk("lockd: clnt proc returns %d\n", status);
195	return status;
196}
197EXPORT_SYMBOL_GPL(nlmclnt_proc);
198
199/*
200 * Allocate an NLM RPC call struct
201 */
202struct nlm_rqst *nlm_alloc_call(struct nlm_host *host)
203{
204	struct nlm_rqst	*call;
205
206	for(;;) {
207		call = kzalloc(sizeof(*call), GFP_KERNEL);
208		if (call != NULL) {
209			refcount_set(&call->a_count, 1);
210			locks_init_lock(&call->a_args.lock.fl);
211			locks_init_lock(&call->a_res.lock.fl);
212			call->a_host = nlm_get_host(host);
213			return call;
214		}
215		if (signalled())
216			break;
217		printk("nlm_alloc_call: failed, waiting for memory\n");
218		schedule_timeout_interruptible(5*HZ);
219	}
220	return NULL;
221}
222
223void nlmclnt_release_call(struct nlm_rqst *call)
224{
225	const struct nlmclnt_operations *nlmclnt_ops = call->a_host->h_nlmclnt_ops;
226
227	if (!refcount_dec_and_test(&call->a_count))
228		return;
229	if (nlmclnt_ops && nlmclnt_ops->nlmclnt_release_call)
230		nlmclnt_ops->nlmclnt_release_call(call->a_callback_data);
231	nlmclnt_release_host(call->a_host);
232	nlmclnt_release_lockargs(call);
233	kfree(call);
234}
235
236static void nlmclnt_rpc_release(void *data)
237{
238	nlmclnt_release_call(data);
239}
240
241static int nlm_wait_on_grace(wait_queue_head_t *queue)
242{
243	DEFINE_WAIT(wait);
244	int status = -EINTR;
245
246	prepare_to_wait(queue, &wait, TASK_INTERRUPTIBLE);
247	if (!signalled ()) {
248		schedule_timeout(NLMCLNT_GRACE_WAIT);
249		try_to_freeze();
250		if (!signalled ())
251			status = 0;
252	}
253	finish_wait(queue, &wait);
254	return status;
255}
256
257/*
258 * Generic NLM call
259 */
260static int
261nlmclnt_call(const struct cred *cred, struct nlm_rqst *req, u32 proc)
262{
263	struct nlm_host	*host = req->a_host;
264	struct rpc_clnt	*clnt;
265	struct nlm_args	*argp = &req->a_args;
266	struct nlm_res	*resp = &req->a_res;
267	struct rpc_message msg = {
268		.rpc_argp	= argp,
269		.rpc_resp	= resp,
270		.rpc_cred	= cred,
271	};
272	int		status;
273
274	dprintk("lockd: call procedure %d on %s\n",
275			(int)proc, host->h_name);
276
277	do {
278		if (host->h_reclaiming && !argp->reclaim)
279			goto in_grace_period;
280
281		/* If we have no RPC client yet, create one. */
282		if ((clnt = nlm_bind_host(host)) == NULL)
283			return -ENOLCK;
284		msg.rpc_proc = &clnt->cl_procinfo[proc];
285
286		/* Perform the RPC call. If an error occurs, try again */
287		if ((status = rpc_call_sync(clnt, &msg, 0)) < 0) {
288			dprintk("lockd: rpc_call returned error %d\n", -status);
289			switch (status) {
290			case -EPROTONOSUPPORT:
291				status = -EINVAL;
292				break;
293			case -ECONNREFUSED:
294			case -ETIMEDOUT:
295			case -ENOTCONN:
296				nlm_rebind_host(host);
297				status = -EAGAIN;
298				break;
299			case -ERESTARTSYS:
300				return signalled () ? -EINTR : status;
301			default:
302				break;
303			}
304			break;
305		} else
306		if (resp->status == nlm_lck_denied_grace_period) {
307			dprintk("lockd: server in grace period\n");
308			if (argp->reclaim) {
309				printk(KERN_WARNING
310				     "lockd: spurious grace period reject?!\n");
311				return -ENOLCK;
312			}
313		} else {
314			if (!argp->reclaim) {
315				/* We appear to be out of the grace period */
316				wake_up_all(&host->h_gracewait);
317			}
318			dprintk("lockd: server returns status %d\n",
319				ntohl(resp->status));
320			return 0;	/* Okay, call complete */
321		}
322
323in_grace_period:
324		/*
325		 * The server has rebooted and appears to be in the grace
326		 * period during which locks are only allowed to be
327		 * reclaimed.
328		 * We can only back off and try again later.
329		 */
330		status = nlm_wait_on_grace(&host->h_gracewait);
331	} while (status == 0);
332
333	return status;
334}
335
336/*
337 * Generic NLM call, async version.
338 */
339static struct rpc_task *__nlm_async_call(struct nlm_rqst *req, u32 proc, struct rpc_message *msg, const struct rpc_call_ops *tk_ops)
340{
341	struct nlm_host	*host = req->a_host;
342	struct rpc_clnt	*clnt;
343	struct rpc_task_setup task_setup_data = {
344		.rpc_message = msg,
345		.callback_ops = tk_ops,
346		.callback_data = req,
347		.flags = RPC_TASK_ASYNC,
348	};
349
350	dprintk("lockd: call procedure %d on %s (async)\n",
351			(int)proc, host->h_name);
352
353	/* If we have no RPC client yet, create one. */
354	clnt = nlm_bind_host(host);
355	if (clnt == NULL)
356		goto out_err;
357	msg->rpc_proc = &clnt->cl_procinfo[proc];
358	task_setup_data.rpc_client = clnt;
359
360        /* bootstrap and kick off the async RPC call */
361	return rpc_run_task(&task_setup_data);
362out_err:
363	tk_ops->rpc_release(req);
364	return ERR_PTR(-ENOLCK);
365}
366
367static int nlm_do_async_call(struct nlm_rqst *req, u32 proc, struct rpc_message *msg, const struct rpc_call_ops *tk_ops)
368{
369	struct rpc_task *task;
370
371	task = __nlm_async_call(req, proc, msg, tk_ops);
372	if (IS_ERR(task))
373		return PTR_ERR(task);
374	rpc_put_task(task);
375	return 0;
376}
377
378/*
379 * NLM asynchronous call.
380 */
381int nlm_async_call(struct nlm_rqst *req, u32 proc, const struct rpc_call_ops *tk_ops)
382{
383	struct rpc_message msg = {
384		.rpc_argp	= &req->a_args,
385		.rpc_resp	= &req->a_res,
386	};
387	return nlm_do_async_call(req, proc, &msg, tk_ops);
388}
389
390int nlm_async_reply(struct nlm_rqst *req, u32 proc, const struct rpc_call_ops *tk_ops)
391{
392	struct rpc_message msg = {
393		.rpc_argp	= &req->a_res,
394	};
395	return nlm_do_async_call(req, proc, &msg, tk_ops);
396}
397
398/*
399 * NLM client asynchronous call.
400 *
401 * Note that although the calls are asynchronous, and are therefore
402 *      guaranteed to complete, we still always attempt to wait for
403 *      completion in order to be able to correctly track the lock
404 *      state.
405 */
406static int nlmclnt_async_call(const struct cred *cred, struct nlm_rqst *req, u32 proc, const struct rpc_call_ops *tk_ops)
407{
408	struct rpc_message msg = {
409		.rpc_argp	= &req->a_args,
410		.rpc_resp	= &req->a_res,
411		.rpc_cred	= cred,
412	};
413	struct rpc_task *task;
414	int err;
415
416	task = __nlm_async_call(req, proc, &msg, tk_ops);
417	if (IS_ERR(task))
418		return PTR_ERR(task);
419	err = rpc_wait_for_completion_task(task);
420	rpc_put_task(task);
421	return err;
422}
423
424/*
425 * TEST for the presence of a conflicting lock
426 */
427static int
428nlmclnt_test(struct nlm_rqst *req, struct file_lock *fl)
429{
430	int	status;
431
432	status = nlmclnt_call(nfs_file_cred(fl->fl_file), req, NLMPROC_TEST);
433	if (status < 0)
434		goto out;
435
436	switch (req->a_res.status) {
437		case nlm_granted:
438			fl->fl_type = F_UNLCK;
439			break;
440		case nlm_lck_denied:
441			/*
442			 * Report the conflicting lock back to the application.
443			 */
444			fl->fl_start = req->a_res.lock.fl.fl_start;
445			fl->fl_end = req->a_res.lock.fl.fl_end;
446			fl->fl_type = req->a_res.lock.fl.fl_type;
447			fl->fl_pid = -req->a_res.lock.fl.fl_pid;
448			break;
449		default:
450			status = nlm_stat_to_errno(req->a_res.status);
451	}
452out:
453	nlmclnt_release_call(req);
454	return status;
455}
456
457static void nlmclnt_locks_copy_lock(struct file_lock *new, struct file_lock *fl)
458{
459	spin_lock(&fl->fl_u.nfs_fl.owner->host->h_lock);
460	new->fl_u.nfs_fl.state = fl->fl_u.nfs_fl.state;
461	new->fl_u.nfs_fl.owner = nlmclnt_get_lockowner(fl->fl_u.nfs_fl.owner);
462	list_add_tail(&new->fl_u.nfs_fl.list, &fl->fl_u.nfs_fl.owner->host->h_granted);
463	spin_unlock(&fl->fl_u.nfs_fl.owner->host->h_lock);
464}
465
466static void nlmclnt_locks_release_private(struct file_lock *fl)
467{
468	spin_lock(&fl->fl_u.nfs_fl.owner->host->h_lock);
469	list_del(&fl->fl_u.nfs_fl.list);
470	spin_unlock(&fl->fl_u.nfs_fl.owner->host->h_lock);
471	nlmclnt_put_lockowner(fl->fl_u.nfs_fl.owner);
472}
473
474static const struct file_lock_operations nlmclnt_lock_ops = {
475	.fl_copy_lock = nlmclnt_locks_copy_lock,
476	.fl_release_private = nlmclnt_locks_release_private,
477};
478
479static void nlmclnt_locks_init_private(struct file_lock *fl, struct nlm_host *host)
480{
481	fl->fl_u.nfs_fl.state = 0;
482	fl->fl_u.nfs_fl.owner = nlmclnt_find_lockowner(host, fl->fl_owner);
483	INIT_LIST_HEAD(&fl->fl_u.nfs_fl.list);
484	fl->fl_ops = &nlmclnt_lock_ops;
485}
486
487static int do_vfs_lock(struct file_lock *fl)
488{
489	return locks_lock_file_wait(fl->fl_file, fl);
 
 
 
 
 
 
 
 
 
 
 
490}
491
492/*
493 * LOCK: Try to create a lock
494 *
495 *			Programmer Harassment Alert
496 *
497 * When given a blocking lock request in a sync RPC call, the HPUX lockd
498 * will faithfully return LCK_BLOCKED but never cares to notify us when
499 * the lock could be granted. This way, our local process could hang
500 * around forever waiting for the callback.
501 *
502 *  Solution A:	Implement busy-waiting
503 *  Solution B: Use the async version of the call (NLM_LOCK_{MSG,RES})
504 *
505 * For now I am implementing solution A, because I hate the idea of
506 * re-implementing lockd for a third time in two months. The async
507 * calls shouldn't be too hard to do, however.
508 *
509 * This is one of the lovely things about standards in the NFS area:
510 * they're so soft and squishy you can't really blame HP for doing this.
511 */
512static int
513nlmclnt_lock(struct nlm_rqst *req, struct file_lock *fl)
514{
515	const struct cred *cred = nfs_file_cred(fl->fl_file);
516	struct nlm_host	*host = req->a_host;
517	struct nlm_res	*resp = &req->a_res;
518	struct nlm_wait *block = NULL;
519	unsigned char fl_flags = fl->fl_flags;
520	unsigned char fl_type;
521	int status = -ENOLCK;
522
523	if (nsm_monitor(host) < 0)
524		goto out;
525	req->a_args.state = nsm_local_state;
526
527	fl->fl_flags |= FL_ACCESS;
528	status = do_vfs_lock(fl);
529	fl->fl_flags = fl_flags;
530	if (status < 0)
531		goto out;
532
533	block = nlmclnt_prepare_block(host, fl);
534again:
535	/*
536	 * Initialise resp->status to a valid non-zero value,
537	 * since 0 == nlm_lck_granted
538	 */
539	resp->status = nlm_lck_blocked;
540	for(;;) {
541		/* Reboot protection */
542		fl->fl_u.nfs_fl.state = host->h_state;
543		status = nlmclnt_call(cred, req, NLMPROC_LOCK);
544		if (status < 0)
545			break;
546		/* Did a reclaimer thread notify us of a server reboot? */
547		if (resp->status ==  nlm_lck_denied_grace_period)
548			continue;
549		if (resp->status != nlm_lck_blocked)
550			break;
551		/* Wait on an NLM blocking lock */
552		status = nlmclnt_block(block, req, NLMCLNT_POLL_TIMEOUT);
553		if (status < 0)
554			break;
555		if (resp->status != nlm_lck_blocked)
556			break;
557	}
558
559	/* if we were interrupted while blocking, then cancel the lock request
560	 * and exit
561	 */
562	if (resp->status == nlm_lck_blocked) {
563		if (!req->a_args.block)
564			goto out_unlock;
565		if (nlmclnt_cancel(host, req->a_args.block, fl) == 0)
566			goto out_unblock;
567	}
568
569	if (resp->status == nlm_granted) {
570		down_read(&host->h_rwsem);
571		/* Check whether or not the server has rebooted */
572		if (fl->fl_u.nfs_fl.state != host->h_state) {
573			up_read(&host->h_rwsem);
574			goto again;
575		}
576		/* Ensure the resulting lock will get added to granted list */
577		fl->fl_flags |= FL_SLEEP;
578		if (do_vfs_lock(fl) < 0)
579			printk(KERN_WARNING "%s: VFS is out of sync with lock manager!\n", __func__);
580		up_read(&host->h_rwsem);
581		fl->fl_flags = fl_flags;
582		status = 0;
583	}
584	if (status < 0)
585		goto out_unlock;
586	/*
587	 * EAGAIN doesn't make sense for sleeping locks, and in some
588	 * cases NLM_LCK_DENIED is returned for a permanent error.  So
589	 * turn it into an ENOLCK.
590	 */
591	if (resp->status == nlm_lck_denied && (fl_flags & FL_SLEEP))
592		status = -ENOLCK;
593	else
594		status = nlm_stat_to_errno(resp->status);
595out_unblock:
596	nlmclnt_finish_block(block);
597out:
598	nlmclnt_release_call(req);
599	return status;
600out_unlock:
601	/* Fatal error: ensure that we remove the lock altogether */
602	dprintk("lockd: lock attempt ended in fatal error.\n"
603		"       Attempting to unlock.\n");
604	nlmclnt_finish_block(block);
605	fl_type = fl->fl_type;
606	fl->fl_type = F_UNLCK;
607	down_read(&host->h_rwsem);
608	do_vfs_lock(fl);
609	up_read(&host->h_rwsem);
610	fl->fl_type = fl_type;
611	fl->fl_flags = fl_flags;
612	nlmclnt_async_call(cred, req, NLMPROC_UNLOCK, &nlmclnt_unlock_ops);
613	return status;
614}
615
616/*
617 * RECLAIM: Try to reclaim a lock
618 */
619int
620nlmclnt_reclaim(struct nlm_host *host, struct file_lock *fl,
621		struct nlm_rqst *req)
622{
623	int		status;
624
625	memset(req, 0, sizeof(*req));
626	locks_init_lock(&req->a_args.lock.fl);
627	locks_init_lock(&req->a_res.lock.fl);
628	req->a_host  = host;
629
630	/* Set up the argument struct */
631	nlmclnt_setlockargs(req, fl);
632	req->a_args.reclaim = 1;
633
634	status = nlmclnt_call(nfs_file_cred(fl->fl_file), req, NLMPROC_LOCK);
635	if (status >= 0 && req->a_res.status == nlm_granted)
636		return 0;
637
638	printk(KERN_WARNING "lockd: failed to reclaim lock for pid %d "
639				"(errno %d, status %d)\n", fl->fl_pid,
640				status, ntohl(req->a_res.status));
641
642	/*
643	 * FIXME: This is a serious failure. We can
644	 *
645	 *  a.	Ignore the problem
646	 *  b.	Send the owning process some signal (Linux doesn't have
647	 *	SIGLOST, though...)
648	 *  c.	Retry the operation
649	 *
650	 * Until someone comes up with a simple implementation
651	 * for b or c, I'll choose option a.
652	 */
653
654	return -ENOLCK;
655}
656
657/*
658 * UNLOCK: remove an existing lock
659 */
660static int
661nlmclnt_unlock(struct nlm_rqst *req, struct file_lock *fl)
662{
663	struct nlm_host	*host = req->a_host;
664	struct nlm_res	*resp = &req->a_res;
665	int status;
666	unsigned char fl_flags = fl->fl_flags;
667
668	/*
669	 * Note: the server is supposed to either grant us the unlock
670	 * request, or to deny it with NLM_LCK_DENIED_GRACE_PERIOD. In either
671	 * case, we want to unlock.
672	 */
673	fl->fl_flags |= FL_EXISTS;
674	down_read(&host->h_rwsem);
675	status = do_vfs_lock(fl);
676	up_read(&host->h_rwsem);
677	fl->fl_flags = fl_flags;
678	if (status == -ENOENT) {
679		status = 0;
680		goto out;
681	}
682
683	refcount_inc(&req->a_count);
684	status = nlmclnt_async_call(nfs_file_cred(fl->fl_file), req,
685			NLMPROC_UNLOCK, &nlmclnt_unlock_ops);
686	if (status < 0)
687		goto out;
688
689	if (resp->status == nlm_granted)
690		goto out;
691
692	if (resp->status != nlm_lck_denied_nolocks)
693		printk("lockd: unexpected unlock status: %d\n",
694			ntohl(resp->status));
695	/* What to do now? I'm out of my depth... */
696	status = -ENOLCK;
697out:
698	nlmclnt_release_call(req);
699	return status;
700}
701
702static void nlmclnt_unlock_prepare(struct rpc_task *task, void *data)
703{
704	struct nlm_rqst	*req = data;
705	const struct nlmclnt_operations *nlmclnt_ops = req->a_host->h_nlmclnt_ops;
706	bool defer_call = false;
707
708	if (nlmclnt_ops && nlmclnt_ops->nlmclnt_unlock_prepare)
709		defer_call = nlmclnt_ops->nlmclnt_unlock_prepare(task, req->a_callback_data);
710
711	if (!defer_call)
712		rpc_call_start(task);
713}
714
715static void nlmclnt_unlock_callback(struct rpc_task *task, void *data)
716{
717	struct nlm_rqst	*req = data;
718	u32 status = ntohl(req->a_res.status);
719
720	if (RPC_SIGNALLED(task))
721		goto die;
722
723	if (task->tk_status < 0) {
724		dprintk("lockd: unlock failed (err = %d)\n", -task->tk_status);
725		switch (task->tk_status) {
726		case -EACCES:
727		case -EIO:
728			goto die;
729		default:
730			goto retry_rebind;
731		}
732	}
733	if (status == NLM_LCK_DENIED_GRACE_PERIOD) {
734		rpc_delay(task, NLMCLNT_GRACE_WAIT);
735		goto retry_unlock;
736	}
737	if (status != NLM_LCK_GRANTED)
738		printk(KERN_WARNING "lockd: unexpected unlock status: %d\n", status);
739die:
740	return;
741 retry_rebind:
742	nlm_rebind_host(req->a_host);
743 retry_unlock:
744	rpc_restart_call(task);
745}
746
747static const struct rpc_call_ops nlmclnt_unlock_ops = {
748	.rpc_call_prepare = nlmclnt_unlock_prepare,
749	.rpc_call_done = nlmclnt_unlock_callback,
750	.rpc_release = nlmclnt_rpc_release,
751};
752
753/*
754 * Cancel a blocked lock request.
755 * We always use an async RPC call for this in order not to hang a
756 * process that has been Ctrl-C'ed.
757 */
758static int nlmclnt_cancel(struct nlm_host *host, int block, struct file_lock *fl)
759{
760	struct nlm_rqst	*req;
761	int status;
762
763	dprintk("lockd: blocking lock attempt was interrupted by a signal.\n"
764		"       Attempting to cancel lock.\n");
765
766	req = nlm_alloc_call(host);
767	if (!req)
768		return -ENOMEM;
769	req->a_flags = RPC_TASK_ASYNC;
770
771	nlmclnt_setlockargs(req, fl);
772	req->a_args.block = block;
773
774	refcount_inc(&req->a_count);
775	status = nlmclnt_async_call(nfs_file_cred(fl->fl_file), req,
776			NLMPROC_CANCEL, &nlmclnt_cancel_ops);
777	if (status == 0 && req->a_res.status == nlm_lck_denied)
778		status = -ENOLCK;
779	nlmclnt_release_call(req);
780	return status;
781}
782
783static void nlmclnt_cancel_callback(struct rpc_task *task, void *data)
784{
785	struct nlm_rqst	*req = data;
786	u32 status = ntohl(req->a_res.status);
787
788	if (RPC_SIGNALLED(task))
789		goto die;
790
791	if (task->tk_status < 0) {
792		dprintk("lockd: CANCEL call error %d, retrying.\n",
793					task->tk_status);
794		goto retry_cancel;
795	}
 
 
 
796
797	switch (status) {
798	case NLM_LCK_GRANTED:
799	case NLM_LCK_DENIED_GRACE_PERIOD:
800	case NLM_LCK_DENIED:
801		/* Everything's good */
802		break;
803	case NLM_LCK_DENIED_NOLOCKS:
804		dprintk("lockd: CANCEL failed (server has no locks)\n");
805		goto retry_cancel;
806	default:
807		printk(KERN_NOTICE "lockd: weird return %d for CANCEL call\n",
808			status);
809	}
810
811die:
812	return;
813
814retry_cancel:
815	/* Don't ever retry more than 3 times */
816	if (req->a_retries++ >= NLMCLNT_MAX_RETRIES)
817		goto die;
818	nlm_rebind_host(req->a_host);
819	rpc_restart_call(task);
820	rpc_delay(task, 30 * HZ);
821}
822
823static const struct rpc_call_ops nlmclnt_cancel_ops = {
824	.rpc_call_done = nlmclnt_cancel_callback,
825	.rpc_release = nlmclnt_rpc_release,
826};
827
828/*
829 * Convert an NLM status code to a generic kernel errno
830 */
831static int
832nlm_stat_to_errno(__be32 status)
833{
834	switch(ntohl(status)) {
835	case NLM_LCK_GRANTED:
836		return 0;
837	case NLM_LCK_DENIED:
838		return -EAGAIN;
839	case NLM_LCK_DENIED_NOLOCKS:
840	case NLM_LCK_DENIED_GRACE_PERIOD:
841		return -ENOLCK;
842	case NLM_LCK_BLOCKED:
843		printk(KERN_NOTICE "lockd: unexpected status NLM_BLOCKED\n");
844		return -ENOLCK;
845#ifdef CONFIG_LOCKD_V4
846	case NLM_DEADLCK:
847		return -EDEADLK;
848	case NLM_ROFS:
849		return -EROFS;
850	case NLM_STALE_FH:
851		return -ESTALE;
852	case NLM_FBIG:
853		return -EOVERFLOW;
854	case NLM_FAILED:
855		return -ENOLCK;
856#endif
857	}
858	printk(KERN_NOTICE "lockd: unexpected server status %d\n",
859		 ntohl(status));
860	return -ENOLCK;
861}
v3.15
 
  1/*
  2 * linux/fs/lockd/clntproc.c
  3 *
  4 * RPC procedures for the client side NLM implementation
  5 *
  6 * Copyright (C) 1996, Olaf Kirch <okir@monad.swb.de>
  7 */
  8
  9#include <linux/module.h>
 10#include <linux/slab.h>
 11#include <linux/types.h>
 12#include <linux/errno.h>
 13#include <linux/fs.h>
 14#include <linux/nfs_fs.h>
 15#include <linux/utsname.h>
 16#include <linux/freezer.h>
 17#include <linux/sunrpc/clnt.h>
 18#include <linux/sunrpc/svc.h>
 19#include <linux/lockd/lockd.h>
 20
 21#define NLMDBG_FACILITY		NLMDBG_CLIENT
 22#define NLMCLNT_GRACE_WAIT	(5*HZ)
 23#define NLMCLNT_POLL_TIMEOUT	(30*HZ)
 24#define NLMCLNT_MAX_RETRIES	3
 25
 26static int	nlmclnt_test(struct nlm_rqst *, struct file_lock *);
 27static int	nlmclnt_lock(struct nlm_rqst *, struct file_lock *);
 28static int	nlmclnt_unlock(struct nlm_rqst *, struct file_lock *);
 29static int	nlm_stat_to_errno(__be32 stat);
 30static void	nlmclnt_locks_init_private(struct file_lock *fl, struct nlm_host *host);
 31static int	nlmclnt_cancel(struct nlm_host *, int , struct file_lock *);
 32
 33static const struct rpc_call_ops nlmclnt_unlock_ops;
 34static const struct rpc_call_ops nlmclnt_cancel_ops;
 35
 36/*
 37 * Cookie counter for NLM requests
 38 */
 39static atomic_t	nlm_cookie = ATOMIC_INIT(0x1234);
 40
 41void nlmclnt_next_cookie(struct nlm_cookie *c)
 42{
 43	u32	cookie = atomic_inc_return(&nlm_cookie);
 44
 45	memcpy(c->data, &cookie, 4);
 46	c->len=4;
 47}
 48
 49static struct nlm_lockowner *nlm_get_lockowner(struct nlm_lockowner *lockowner)
 
 50{
 51	atomic_inc(&lockowner->count);
 52	return lockowner;
 53}
 54
 55static void nlm_put_lockowner(struct nlm_lockowner *lockowner)
 56{
 57	if (!atomic_dec_and_lock(&lockowner->count, &lockowner->host->h_lock))
 58		return;
 59	list_del(&lockowner->list);
 60	spin_unlock(&lockowner->host->h_lock);
 61	nlmclnt_release_host(lockowner->host);
 62	kfree(lockowner);
 63}
 64
 65static inline int nlm_pidbusy(struct nlm_host *host, uint32_t pid)
 66{
 67	struct nlm_lockowner *lockowner;
 68	list_for_each_entry(lockowner, &host->h_lockowners, list) {
 69		if (lockowner->pid == pid)
 70			return -EBUSY;
 71	}
 72	return 0;
 73}
 74
 75static inline uint32_t __nlm_alloc_pid(struct nlm_host *host)
 76{
 77	uint32_t res;
 78	do {
 79		res = host->h_pidcount++;
 80	} while (nlm_pidbusy(host, res) < 0);
 81	return res;
 82}
 83
 84static struct nlm_lockowner *__nlm_find_lockowner(struct nlm_host *host, fl_owner_t owner)
 85{
 86	struct nlm_lockowner *lockowner;
 87	list_for_each_entry(lockowner, &host->h_lockowners, list) {
 88		if (lockowner->owner != owner)
 89			continue;
 90		return nlm_get_lockowner(lockowner);
 91	}
 92	return NULL;
 93}
 94
 95static struct nlm_lockowner *nlm_find_lockowner(struct nlm_host *host, fl_owner_t owner)
 96{
 97	struct nlm_lockowner *res, *new = NULL;
 98
 99	spin_lock(&host->h_lock);
100	res = __nlm_find_lockowner(host, owner);
101	if (res == NULL) {
102		spin_unlock(&host->h_lock);
103		new = kmalloc(sizeof(*new), GFP_KERNEL);
104		spin_lock(&host->h_lock);
105		res = __nlm_find_lockowner(host, owner);
106		if (res == NULL && new != NULL) {
107			res = new;
108			atomic_set(&new->count, 1);
109			new->owner = owner;
110			new->pid = __nlm_alloc_pid(host);
111			new->host = nlm_get_host(host);
112			list_add(&new->list, &host->h_lockowners);
113			new = NULL;
114		}
115	}
116	spin_unlock(&host->h_lock);
117	kfree(new);
118	return res;
119}
120
121/*
122 * Initialize arguments for TEST/LOCK/UNLOCK/CANCEL calls
123 */
124static void nlmclnt_setlockargs(struct nlm_rqst *req, struct file_lock *fl)
125{
126	struct nlm_args	*argp = &req->a_args;
127	struct nlm_lock	*lock = &argp->lock;
128	char *nodename = req->a_host->h_rpcclnt->cl_nodename;
129
130	nlmclnt_next_cookie(&argp->cookie);
131	memcpy(&lock->fh, NFS_FH(file_inode(fl->fl_file)), sizeof(struct nfs_fh));
132	lock->caller  = nodename;
133	lock->oh.data = req->a_owner;
134	lock->oh.len  = snprintf(req->a_owner, sizeof(req->a_owner), "%u@%s",
135				(unsigned int)fl->fl_u.nfs_fl.owner->pid,
136				nodename);
137	lock->svid = fl->fl_u.nfs_fl.owner->pid;
138	lock->fl.fl_start = fl->fl_start;
139	lock->fl.fl_end = fl->fl_end;
140	lock->fl.fl_type = fl->fl_type;
141}
142
143static void nlmclnt_release_lockargs(struct nlm_rqst *req)
144{
145	WARN_ON_ONCE(req->a_args.lock.fl.fl_ops != NULL);
146}
147
148/**
149 * nlmclnt_proc - Perform a single client-side lock request
150 * @host: address of a valid nlm_host context representing the NLM server
151 * @cmd: fcntl-style file lock operation to perform
152 * @fl: address of arguments for the lock operation
 
153 *
154 */
155int nlmclnt_proc(struct nlm_host *host, int cmd, struct file_lock *fl)
156{
157	struct nlm_rqst		*call;
158	int			status;
 
159
160	call = nlm_alloc_call(host);
161	if (call == NULL)
162		return -ENOMEM;
163
 
 
 
164	nlmclnt_locks_init_private(fl, host);
165	if (!fl->fl_u.nfs_fl.owner) {
166		/* lockowner allocation has failed */
167		nlmclnt_release_call(call);
168		return -ENOMEM;
169	}
170	/* Set up the argument struct */
171	nlmclnt_setlockargs(call, fl);
 
172
173	if (IS_SETLK(cmd) || IS_SETLKW(cmd)) {
174		if (fl->fl_type != F_UNLCK) {
175			call->a_args.block = IS_SETLKW(cmd) ? 1 : 0;
176			status = nlmclnt_lock(call, fl);
177		} else
178			status = nlmclnt_unlock(call, fl);
179	} else if (IS_GETLK(cmd))
180		status = nlmclnt_test(call, fl);
181	else
182		status = -EINVAL;
183	fl->fl_ops->fl_release_private(fl);
184	fl->fl_ops = NULL;
185
186	dprintk("lockd: clnt proc returns %d\n", status);
187	return status;
188}
189EXPORT_SYMBOL_GPL(nlmclnt_proc);
190
191/*
192 * Allocate an NLM RPC call struct
193 */
194struct nlm_rqst *nlm_alloc_call(struct nlm_host *host)
195{
196	struct nlm_rqst	*call;
197
198	for(;;) {
199		call = kzalloc(sizeof(*call), GFP_KERNEL);
200		if (call != NULL) {
201			atomic_set(&call->a_count, 1);
202			locks_init_lock(&call->a_args.lock.fl);
203			locks_init_lock(&call->a_res.lock.fl);
204			call->a_host = nlm_get_host(host);
205			return call;
206		}
207		if (signalled())
208			break;
209		printk("nlm_alloc_call: failed, waiting for memory\n");
210		schedule_timeout_interruptible(5*HZ);
211	}
212	return NULL;
213}
214
215void nlmclnt_release_call(struct nlm_rqst *call)
216{
217	if (!atomic_dec_and_test(&call->a_count))
 
 
218		return;
 
 
219	nlmclnt_release_host(call->a_host);
220	nlmclnt_release_lockargs(call);
221	kfree(call);
222}
223
224static void nlmclnt_rpc_release(void *data)
225{
226	nlmclnt_release_call(data);
227}
228
229static int nlm_wait_on_grace(wait_queue_head_t *queue)
230{
231	DEFINE_WAIT(wait);
232	int status = -EINTR;
233
234	prepare_to_wait(queue, &wait, TASK_INTERRUPTIBLE);
235	if (!signalled ()) {
236		schedule_timeout(NLMCLNT_GRACE_WAIT);
237		try_to_freeze();
238		if (!signalled ())
239			status = 0;
240	}
241	finish_wait(queue, &wait);
242	return status;
243}
244
245/*
246 * Generic NLM call
247 */
248static int
249nlmclnt_call(struct rpc_cred *cred, struct nlm_rqst *req, u32 proc)
250{
251	struct nlm_host	*host = req->a_host;
252	struct rpc_clnt	*clnt;
253	struct nlm_args	*argp = &req->a_args;
254	struct nlm_res	*resp = &req->a_res;
255	struct rpc_message msg = {
256		.rpc_argp	= argp,
257		.rpc_resp	= resp,
258		.rpc_cred	= cred,
259	};
260	int		status;
261
262	dprintk("lockd: call procedure %d on %s\n",
263			(int)proc, host->h_name);
264
265	do {
266		if (host->h_reclaiming && !argp->reclaim)
267			goto in_grace_period;
268
269		/* If we have no RPC client yet, create one. */
270		if ((clnt = nlm_bind_host(host)) == NULL)
271			return -ENOLCK;
272		msg.rpc_proc = &clnt->cl_procinfo[proc];
273
274		/* Perform the RPC call. If an error occurs, try again */
275		if ((status = rpc_call_sync(clnt, &msg, 0)) < 0) {
276			dprintk("lockd: rpc_call returned error %d\n", -status);
277			switch (status) {
278			case -EPROTONOSUPPORT:
279				status = -EINVAL;
280				break;
281			case -ECONNREFUSED:
282			case -ETIMEDOUT:
283			case -ENOTCONN:
284				nlm_rebind_host(host);
285				status = -EAGAIN;
286				break;
287			case -ERESTARTSYS:
288				return signalled () ? -EINTR : status;
289			default:
290				break;
291			}
292			break;
293		} else
294		if (resp->status == nlm_lck_denied_grace_period) {
295			dprintk("lockd: server in grace period\n");
296			if (argp->reclaim) {
297				printk(KERN_WARNING
298				     "lockd: spurious grace period reject?!\n");
299				return -ENOLCK;
300			}
301		} else {
302			if (!argp->reclaim) {
303				/* We appear to be out of the grace period */
304				wake_up_all(&host->h_gracewait);
305			}
306			dprintk("lockd: server returns status %d\n",
307				ntohl(resp->status));
308			return 0;	/* Okay, call complete */
309		}
310
311in_grace_period:
312		/*
313		 * The server has rebooted and appears to be in the grace
314		 * period during which locks are only allowed to be
315		 * reclaimed.
316		 * We can only back off and try again later.
317		 */
318		status = nlm_wait_on_grace(&host->h_gracewait);
319	} while (status == 0);
320
321	return status;
322}
323
324/*
325 * Generic NLM call, async version.
326 */
327static struct rpc_task *__nlm_async_call(struct nlm_rqst *req, u32 proc, struct rpc_message *msg, const struct rpc_call_ops *tk_ops)
328{
329	struct nlm_host	*host = req->a_host;
330	struct rpc_clnt	*clnt;
331	struct rpc_task_setup task_setup_data = {
332		.rpc_message = msg,
333		.callback_ops = tk_ops,
334		.callback_data = req,
335		.flags = RPC_TASK_ASYNC,
336	};
337
338	dprintk("lockd: call procedure %d on %s (async)\n",
339			(int)proc, host->h_name);
340
341	/* If we have no RPC client yet, create one. */
342	clnt = nlm_bind_host(host);
343	if (clnt == NULL)
344		goto out_err;
345	msg->rpc_proc = &clnt->cl_procinfo[proc];
346	task_setup_data.rpc_client = clnt;
347
348        /* bootstrap and kick off the async RPC call */
349	return rpc_run_task(&task_setup_data);
350out_err:
351	tk_ops->rpc_release(req);
352	return ERR_PTR(-ENOLCK);
353}
354
355static int nlm_do_async_call(struct nlm_rqst *req, u32 proc, struct rpc_message *msg, const struct rpc_call_ops *tk_ops)
356{
357	struct rpc_task *task;
358
359	task = __nlm_async_call(req, proc, msg, tk_ops);
360	if (IS_ERR(task))
361		return PTR_ERR(task);
362	rpc_put_task(task);
363	return 0;
364}
365
366/*
367 * NLM asynchronous call.
368 */
369int nlm_async_call(struct nlm_rqst *req, u32 proc, const struct rpc_call_ops *tk_ops)
370{
371	struct rpc_message msg = {
372		.rpc_argp	= &req->a_args,
373		.rpc_resp	= &req->a_res,
374	};
375	return nlm_do_async_call(req, proc, &msg, tk_ops);
376}
377
378int nlm_async_reply(struct nlm_rqst *req, u32 proc, const struct rpc_call_ops *tk_ops)
379{
380	struct rpc_message msg = {
381		.rpc_argp	= &req->a_res,
382	};
383	return nlm_do_async_call(req, proc, &msg, tk_ops);
384}
385
386/*
387 * NLM client asynchronous call.
388 *
389 * Note that although the calls are asynchronous, and are therefore
390 *      guaranteed to complete, we still always attempt to wait for
391 *      completion in order to be able to correctly track the lock
392 *      state.
393 */
394static int nlmclnt_async_call(struct rpc_cred *cred, struct nlm_rqst *req, u32 proc, const struct rpc_call_ops *tk_ops)
395{
396	struct rpc_message msg = {
397		.rpc_argp	= &req->a_args,
398		.rpc_resp	= &req->a_res,
399		.rpc_cred	= cred,
400	};
401	struct rpc_task *task;
402	int err;
403
404	task = __nlm_async_call(req, proc, &msg, tk_ops);
405	if (IS_ERR(task))
406		return PTR_ERR(task);
407	err = rpc_wait_for_completion_task(task);
408	rpc_put_task(task);
409	return err;
410}
411
412/*
413 * TEST for the presence of a conflicting lock
414 */
415static int
416nlmclnt_test(struct nlm_rqst *req, struct file_lock *fl)
417{
418	int	status;
419
420	status = nlmclnt_call(nfs_file_cred(fl->fl_file), req, NLMPROC_TEST);
421	if (status < 0)
422		goto out;
423
424	switch (req->a_res.status) {
425		case nlm_granted:
426			fl->fl_type = F_UNLCK;
427			break;
428		case nlm_lck_denied:
429			/*
430			 * Report the conflicting lock back to the application.
431			 */
432			fl->fl_start = req->a_res.lock.fl.fl_start;
433			fl->fl_end = req->a_res.lock.fl.fl_end;
434			fl->fl_type = req->a_res.lock.fl.fl_type;
435			fl->fl_pid = 0;
436			break;
437		default:
438			status = nlm_stat_to_errno(req->a_res.status);
439	}
440out:
441	nlmclnt_release_call(req);
442	return status;
443}
444
445static void nlmclnt_locks_copy_lock(struct file_lock *new, struct file_lock *fl)
446{
447	spin_lock(&fl->fl_u.nfs_fl.owner->host->h_lock);
448	new->fl_u.nfs_fl.state = fl->fl_u.nfs_fl.state;
449	new->fl_u.nfs_fl.owner = nlm_get_lockowner(fl->fl_u.nfs_fl.owner);
450	list_add_tail(&new->fl_u.nfs_fl.list, &fl->fl_u.nfs_fl.owner->host->h_granted);
451	spin_unlock(&fl->fl_u.nfs_fl.owner->host->h_lock);
452}
453
454static void nlmclnt_locks_release_private(struct file_lock *fl)
455{
456	spin_lock(&fl->fl_u.nfs_fl.owner->host->h_lock);
457	list_del(&fl->fl_u.nfs_fl.list);
458	spin_unlock(&fl->fl_u.nfs_fl.owner->host->h_lock);
459	nlm_put_lockowner(fl->fl_u.nfs_fl.owner);
460}
461
462static const struct file_lock_operations nlmclnt_lock_ops = {
463	.fl_copy_lock = nlmclnt_locks_copy_lock,
464	.fl_release_private = nlmclnt_locks_release_private,
465};
466
467static void nlmclnt_locks_init_private(struct file_lock *fl, struct nlm_host *host)
468{
469	fl->fl_u.nfs_fl.state = 0;
470	fl->fl_u.nfs_fl.owner = nlm_find_lockowner(host, fl->fl_owner);
471	INIT_LIST_HEAD(&fl->fl_u.nfs_fl.list);
472	fl->fl_ops = &nlmclnt_lock_ops;
473}
474
475static int do_vfs_lock(struct file_lock *fl)
476{
477	int res = 0;
478	switch (fl->fl_flags & (FL_POSIX|FL_FLOCK)) {
479		case FL_POSIX:
480			res = posix_lock_file_wait(fl->fl_file, fl);
481			break;
482		case FL_FLOCK:
483			res = flock_lock_file_wait(fl->fl_file, fl);
484			break;
485		default:
486			BUG();
487	}
488	return res;
489}
490
491/*
492 * LOCK: Try to create a lock
493 *
494 *			Programmer Harassment Alert
495 *
496 * When given a blocking lock request in a sync RPC call, the HPUX lockd
497 * will faithfully return LCK_BLOCKED but never cares to notify us when
498 * the lock could be granted. This way, our local process could hang
499 * around forever waiting for the callback.
500 *
501 *  Solution A:	Implement busy-waiting
502 *  Solution B: Use the async version of the call (NLM_LOCK_{MSG,RES})
503 *
504 * For now I am implementing solution A, because I hate the idea of
505 * re-implementing lockd for a third time in two months. The async
506 * calls shouldn't be too hard to do, however.
507 *
508 * This is one of the lovely things about standards in the NFS area:
509 * they're so soft and squishy you can't really blame HP for doing this.
510 */
511static int
512nlmclnt_lock(struct nlm_rqst *req, struct file_lock *fl)
513{
514	struct rpc_cred *cred = nfs_file_cred(fl->fl_file);
515	struct nlm_host	*host = req->a_host;
516	struct nlm_res	*resp = &req->a_res;
517	struct nlm_wait *block = NULL;
518	unsigned char fl_flags = fl->fl_flags;
519	unsigned char fl_type;
520	int status = -ENOLCK;
521
522	if (nsm_monitor(host) < 0)
523		goto out;
524	req->a_args.state = nsm_local_state;
525
526	fl->fl_flags |= FL_ACCESS;
527	status = do_vfs_lock(fl);
528	fl->fl_flags = fl_flags;
529	if (status < 0)
530		goto out;
531
532	block = nlmclnt_prepare_block(host, fl);
533again:
534	/*
535	 * Initialise resp->status to a valid non-zero value,
536	 * since 0 == nlm_lck_granted
537	 */
538	resp->status = nlm_lck_blocked;
539	for(;;) {
540		/* Reboot protection */
541		fl->fl_u.nfs_fl.state = host->h_state;
542		status = nlmclnt_call(cred, req, NLMPROC_LOCK);
543		if (status < 0)
544			break;
545		/* Did a reclaimer thread notify us of a server reboot? */
546		if (resp->status ==  nlm_lck_denied_grace_period)
547			continue;
548		if (resp->status != nlm_lck_blocked)
549			break;
550		/* Wait on an NLM blocking lock */
551		status = nlmclnt_block(block, req, NLMCLNT_POLL_TIMEOUT);
552		if (status < 0)
553			break;
554		if (resp->status != nlm_lck_blocked)
555			break;
556	}
557
558	/* if we were interrupted while blocking, then cancel the lock request
559	 * and exit
560	 */
561	if (resp->status == nlm_lck_blocked) {
562		if (!req->a_args.block)
563			goto out_unlock;
564		if (nlmclnt_cancel(host, req->a_args.block, fl) == 0)
565			goto out_unblock;
566	}
567
568	if (resp->status == nlm_granted) {
569		down_read(&host->h_rwsem);
570		/* Check whether or not the server has rebooted */
571		if (fl->fl_u.nfs_fl.state != host->h_state) {
572			up_read(&host->h_rwsem);
573			goto again;
574		}
575		/* Ensure the resulting lock will get added to granted list */
576		fl->fl_flags |= FL_SLEEP;
577		if (do_vfs_lock(fl) < 0)
578			printk(KERN_WARNING "%s: VFS is out of sync with lock manager!\n", __func__);
579		up_read(&host->h_rwsem);
580		fl->fl_flags = fl_flags;
581		status = 0;
582	}
583	if (status < 0)
584		goto out_unlock;
585	/*
586	 * EAGAIN doesn't make sense for sleeping locks, and in some
587	 * cases NLM_LCK_DENIED is returned for a permanent error.  So
588	 * turn it into an ENOLCK.
589	 */
590	if (resp->status == nlm_lck_denied && (fl_flags & FL_SLEEP))
591		status = -ENOLCK;
592	else
593		status = nlm_stat_to_errno(resp->status);
594out_unblock:
595	nlmclnt_finish_block(block);
596out:
597	nlmclnt_release_call(req);
598	return status;
599out_unlock:
600	/* Fatal error: ensure that we remove the lock altogether */
601	dprintk("lockd: lock attempt ended in fatal error.\n"
602		"       Attempting to unlock.\n");
603	nlmclnt_finish_block(block);
604	fl_type = fl->fl_type;
605	fl->fl_type = F_UNLCK;
606	down_read(&host->h_rwsem);
607	do_vfs_lock(fl);
608	up_read(&host->h_rwsem);
609	fl->fl_type = fl_type;
610	fl->fl_flags = fl_flags;
611	nlmclnt_async_call(cred, req, NLMPROC_UNLOCK, &nlmclnt_unlock_ops);
612	return status;
613}
614
615/*
616 * RECLAIM: Try to reclaim a lock
617 */
618int
619nlmclnt_reclaim(struct nlm_host *host, struct file_lock *fl,
620		struct nlm_rqst *req)
621{
622	int		status;
623
624	memset(req, 0, sizeof(*req));
625	locks_init_lock(&req->a_args.lock.fl);
626	locks_init_lock(&req->a_res.lock.fl);
627	req->a_host  = host;
628
629	/* Set up the argument struct */
630	nlmclnt_setlockargs(req, fl);
631	req->a_args.reclaim = 1;
632
633	status = nlmclnt_call(nfs_file_cred(fl->fl_file), req, NLMPROC_LOCK);
634	if (status >= 0 && req->a_res.status == nlm_granted)
635		return 0;
636
637	printk(KERN_WARNING "lockd: failed to reclaim lock for pid %d "
638				"(errno %d, status %d)\n", fl->fl_pid,
639				status, ntohl(req->a_res.status));
640
641	/*
642	 * FIXME: This is a serious failure. We can
643	 *
644	 *  a.	Ignore the problem
645	 *  b.	Send the owning process some signal (Linux doesn't have
646	 *	SIGLOST, though...)
647	 *  c.	Retry the operation
648	 *
649	 * Until someone comes up with a simple implementation
650	 * for b or c, I'll choose option a.
651	 */
652
653	return -ENOLCK;
654}
655
656/*
657 * UNLOCK: remove an existing lock
658 */
659static int
660nlmclnt_unlock(struct nlm_rqst *req, struct file_lock *fl)
661{
662	struct nlm_host	*host = req->a_host;
663	struct nlm_res	*resp = &req->a_res;
664	int status;
665	unsigned char fl_flags = fl->fl_flags;
666
667	/*
668	 * Note: the server is supposed to either grant us the unlock
669	 * request, or to deny it with NLM_LCK_DENIED_GRACE_PERIOD. In either
670	 * case, we want to unlock.
671	 */
672	fl->fl_flags |= FL_EXISTS;
673	down_read(&host->h_rwsem);
674	status = do_vfs_lock(fl);
675	up_read(&host->h_rwsem);
676	fl->fl_flags = fl_flags;
677	if (status == -ENOENT) {
678		status = 0;
679		goto out;
680	}
681
682	atomic_inc(&req->a_count);
683	status = nlmclnt_async_call(nfs_file_cred(fl->fl_file), req,
684			NLMPROC_UNLOCK, &nlmclnt_unlock_ops);
685	if (status < 0)
686		goto out;
687
688	if (resp->status == nlm_granted)
689		goto out;
690
691	if (resp->status != nlm_lck_denied_nolocks)
692		printk("lockd: unexpected unlock status: %d\n",
693			ntohl(resp->status));
694	/* What to do now? I'm out of my depth... */
695	status = -ENOLCK;
696out:
697	nlmclnt_release_call(req);
698	return status;
699}
700
 
 
 
 
 
 
 
 
 
 
 
 
 
701static void nlmclnt_unlock_callback(struct rpc_task *task, void *data)
702{
703	struct nlm_rqst	*req = data;
704	u32 status = ntohl(req->a_res.status);
705
706	if (RPC_ASSASSINATED(task))
707		goto die;
708
709	if (task->tk_status < 0) {
710		dprintk("lockd: unlock failed (err = %d)\n", -task->tk_status);
711		switch (task->tk_status) {
712		case -EACCES:
713		case -EIO:
714			goto die;
715		default:
716			goto retry_rebind;
717		}
718	}
719	if (status == NLM_LCK_DENIED_GRACE_PERIOD) {
720		rpc_delay(task, NLMCLNT_GRACE_WAIT);
721		goto retry_unlock;
722	}
723	if (status != NLM_LCK_GRANTED)
724		printk(KERN_WARNING "lockd: unexpected unlock status: %d\n", status);
725die:
726	return;
727 retry_rebind:
728	nlm_rebind_host(req->a_host);
729 retry_unlock:
730	rpc_restart_call(task);
731}
732
733static const struct rpc_call_ops nlmclnt_unlock_ops = {
 
734	.rpc_call_done = nlmclnt_unlock_callback,
735	.rpc_release = nlmclnt_rpc_release,
736};
737
738/*
739 * Cancel a blocked lock request.
740 * We always use an async RPC call for this in order not to hang a
741 * process that has been Ctrl-C'ed.
742 */
743static int nlmclnt_cancel(struct nlm_host *host, int block, struct file_lock *fl)
744{
745	struct nlm_rqst	*req;
746	int status;
747
748	dprintk("lockd: blocking lock attempt was interrupted by a signal.\n"
749		"       Attempting to cancel lock.\n");
750
751	req = nlm_alloc_call(host);
752	if (!req)
753		return -ENOMEM;
754	req->a_flags = RPC_TASK_ASYNC;
755
756	nlmclnt_setlockargs(req, fl);
757	req->a_args.block = block;
758
759	atomic_inc(&req->a_count);
760	status = nlmclnt_async_call(nfs_file_cred(fl->fl_file), req,
761			NLMPROC_CANCEL, &nlmclnt_cancel_ops);
762	if (status == 0 && req->a_res.status == nlm_lck_denied)
763		status = -ENOLCK;
764	nlmclnt_release_call(req);
765	return status;
766}
767
768static void nlmclnt_cancel_callback(struct rpc_task *task, void *data)
769{
770	struct nlm_rqst	*req = data;
771	u32 status = ntohl(req->a_res.status);
772
773	if (RPC_ASSASSINATED(task))
774		goto die;
775
776	if (task->tk_status < 0) {
777		dprintk("lockd: CANCEL call error %d, retrying.\n",
778					task->tk_status);
779		goto retry_cancel;
780	}
781
782	dprintk("lockd: cancel status %u (task %u)\n",
783			status, task->tk_pid);
784
785	switch (status) {
786	case NLM_LCK_GRANTED:
787	case NLM_LCK_DENIED_GRACE_PERIOD:
788	case NLM_LCK_DENIED:
789		/* Everything's good */
790		break;
791	case NLM_LCK_DENIED_NOLOCKS:
792		dprintk("lockd: CANCEL failed (server has no locks)\n");
793		goto retry_cancel;
794	default:
795		printk(KERN_NOTICE "lockd: weird return %d for CANCEL call\n",
796			status);
797	}
798
799die:
800	return;
801
802retry_cancel:
803	/* Don't ever retry more than 3 times */
804	if (req->a_retries++ >= NLMCLNT_MAX_RETRIES)
805		goto die;
806	nlm_rebind_host(req->a_host);
807	rpc_restart_call(task);
808	rpc_delay(task, 30 * HZ);
809}
810
811static const struct rpc_call_ops nlmclnt_cancel_ops = {
812	.rpc_call_done = nlmclnt_cancel_callback,
813	.rpc_release = nlmclnt_rpc_release,
814};
815
816/*
817 * Convert an NLM status code to a generic kernel errno
818 */
819static int
820nlm_stat_to_errno(__be32 status)
821{
822	switch(ntohl(status)) {
823	case NLM_LCK_GRANTED:
824		return 0;
825	case NLM_LCK_DENIED:
826		return -EAGAIN;
827	case NLM_LCK_DENIED_NOLOCKS:
828	case NLM_LCK_DENIED_GRACE_PERIOD:
829		return -ENOLCK;
830	case NLM_LCK_BLOCKED:
831		printk(KERN_NOTICE "lockd: unexpected status NLM_BLOCKED\n");
832		return -ENOLCK;
833#ifdef CONFIG_LOCKD_V4
834	case NLM_DEADLCK:
835		return -EDEADLK;
836	case NLM_ROFS:
837		return -EROFS;
838	case NLM_STALE_FH:
839		return -ESTALE;
840	case NLM_FBIG:
841		return -EOVERFLOW;
842	case NLM_FAILED:
843		return -ENOLCK;
844#endif
845	}
846	printk(KERN_NOTICE "lockd: unexpected server status %d\n",
847		 ntohl(status));
848	return -ENOLCK;
849}