2 * linux/fs/lockd/clntproc.c
4 * RPC procedures for the client side NLM implementation
6 * Copyright (C) 1996, Olaf Kirch <okir@monad.swb.de>
9 #include <linux/config.h>
10 #include <linux/module.h>
11 #include <linux/types.h>
12 #include <linux/errno.h>
14 #include <linux/nfs_fs.h>
15 #include <linux/utsname.h>
16 #include <linux/smp_lock.h>
17 #include <linux/sunrpc/clnt.h>
18 #include <linux/sunrpc/svc.h>
19 #include <linux/lockd/lockd.h>
20 #include <linux/lockd/sm_inter.h>
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
27 static int nlmclnt_test(struct nlm_rqst
*, struct file_lock
*);
28 static int nlmclnt_lock(struct nlm_rqst
*, struct file_lock
*);
29 static int nlmclnt_unlock(struct nlm_rqst
*, struct file_lock
*);
30 static int nlm_stat_to_errno(u32 stat
);
31 static void nlmclnt_locks_init_private(struct file_lock
*fl
, struct nlm_host
*host
);
32 static int nlmclnt_cancel(struct nlm_host
*, int , struct file_lock
*);
34 static const struct rpc_call_ops nlmclnt_unlock_ops
;
35 static const struct rpc_call_ops nlmclnt_cancel_ops
;
38 * Cookie counter for NLM requests
40 static u32 nlm_cookie
= 0x1234;
42 static inline void nlmclnt_next_cookie(struct nlm_cookie
*c
)
44 memcpy(c
->data
, &nlm_cookie
, 4);
45 memset(c
->data
+4, 0, 4);
50 static struct nlm_lockowner
*nlm_get_lockowner(struct nlm_lockowner
*lockowner
)
52 atomic_inc(&lockowner
->count
);
56 static void nlm_put_lockowner(struct nlm_lockowner
*lockowner
)
58 if (!atomic_dec_and_lock(&lockowner
->count
, &lockowner
->host
->h_lock
))
60 list_del(&lockowner
->list
);
61 spin_unlock(&lockowner
->host
->h_lock
);
62 nlm_release_host(lockowner
->host
);
66 static inline int nlm_pidbusy(struct nlm_host
*host
, uint32_t pid
)
68 struct nlm_lockowner
*lockowner
;
69 list_for_each_entry(lockowner
, &host
->h_lockowners
, list
) {
70 if (lockowner
->pid
== pid
)
76 static inline uint32_t __nlm_alloc_pid(struct nlm_host
*host
)
80 res
= host
->h_pidcount
++;
81 } while (nlm_pidbusy(host
, res
) < 0);
85 static struct nlm_lockowner
*__nlm_find_lockowner(struct nlm_host
*host
, fl_owner_t owner
)
87 struct nlm_lockowner
*lockowner
;
88 list_for_each_entry(lockowner
, &host
->h_lockowners
, list
) {
89 if (lockowner
->owner
!= owner
)
91 return nlm_get_lockowner(lockowner
);
96 static struct nlm_lockowner
*nlm_find_lockowner(struct nlm_host
*host
, fl_owner_t owner
)
98 struct nlm_lockowner
*res
, *new = NULL
;
100 spin_lock(&host
->h_lock
);
101 res
= __nlm_find_lockowner(host
, owner
);
103 spin_unlock(&host
->h_lock
);
104 new = (struct nlm_lockowner
*)kmalloc(sizeof(*new), GFP_KERNEL
);
105 spin_lock(&host
->h_lock
);
106 res
= __nlm_find_lockowner(host
, owner
);
107 if (res
== NULL
&& new != NULL
) {
109 atomic_set(&new->count
, 1);
111 new->pid
= __nlm_alloc_pid(host
);
112 new->host
= nlm_get_host(host
);
113 list_add(&new->list
, &host
->h_lockowners
);
117 spin_unlock(&host
->h_lock
);
123 * Initialize arguments for TEST/LOCK/UNLOCK/CANCEL calls
125 static void nlmclnt_setlockargs(struct nlm_rqst
*req
, struct file_lock
*fl
)
127 struct nlm_args
*argp
= &req
->a_args
;
128 struct nlm_lock
*lock
= &argp
->lock
;
130 nlmclnt_next_cookie(&argp
->cookie
);
131 argp
->state
= nsm_local_state
;
132 memcpy(&lock
->fh
, NFS_FH(fl
->fl_file
->f_dentry
->d_inode
), sizeof(struct nfs_fh
));
133 lock
->caller
= system_utsname
.nodename
;
134 lock
->oh
.data
= req
->a_owner
;
135 lock
->oh
.len
= sprintf(req
->a_owner
, "%d@%s",
136 current
->pid
, system_utsname
.nodename
);
137 locks_copy_lock(&lock
->fl
, fl
);
140 static void nlmclnt_release_lockargs(struct nlm_rqst
*req
)
142 struct file_lock
*fl
= &req
->a_args
.lock
.fl
;
144 if (fl
->fl_ops
&& fl
->fl_ops
->fl_release_private
)
145 fl
->fl_ops
->fl_release_private(fl
);
149 * Initialize arguments for GRANTED call. The nlm_rqst structure
150 * has been cleared already.
153 nlmclnt_setgrantargs(struct nlm_rqst
*call
, struct nlm_lock
*lock
)
155 locks_copy_lock(&call
->a_args
.lock
.fl
, &lock
->fl
);
156 memcpy(&call
->a_args
.lock
.fh
, &lock
->fh
, sizeof(call
->a_args
.lock
.fh
));
157 call
->a_args
.lock
.caller
= system_utsname
.nodename
;
158 call
->a_args
.lock
.oh
.len
= lock
->oh
.len
;
160 /* set default data area */
161 call
->a_args
.lock
.oh
.data
= call
->a_owner
;
163 if (lock
->oh
.len
> NLMCLNT_OHSIZE
) {
164 void *data
= kmalloc(lock
->oh
.len
, GFP_KERNEL
);
166 nlmclnt_freegrantargs(call
);
169 call
->a_args
.lock
.oh
.data
= (u8
*) data
;
172 memcpy(call
->a_args
.lock
.oh
.data
, lock
->oh
.data
, lock
->oh
.len
);
177 nlmclnt_freegrantargs(struct nlm_rqst
*call
)
179 struct file_lock
*fl
= &call
->a_args
.lock
.fl
;
181 * Check whether we allocated memory for the owner.
183 if (call
->a_args
.lock
.oh
.data
!= (u8
*) call
->a_owner
) {
184 kfree(call
->a_args
.lock
.oh
.data
);
186 if (fl
->fl_ops
&& fl
->fl_ops
->fl_release_private
)
187 fl
->fl_ops
->fl_release_private(fl
);
191 * This is the main entry point for the NLM client.
194 nlmclnt_proc(struct inode
*inode
, int cmd
, struct file_lock
*fl
)
196 struct nfs_server
*nfssrv
= NFS_SERVER(inode
);
197 struct nlm_host
*host
;
198 struct nlm_rqst reqst
, *call
= &reqst
;
201 int status
, proto
, vers
;
203 vers
= (NFS_PROTO(inode
)->version
== 3) ? 4 : 1;
204 if (NFS_PROTO(inode
)->version
> 3) {
205 printk(KERN_NOTICE
"NFSv4 file locking not implemented!\n");
209 /* Retrieve transport protocol from NFS client */
210 proto
= NFS_CLIENT(inode
)->cl_xprt
->prot
;
212 if (!(host
= nlmclnt_lookup_host(NFS_ADDR(inode
), proto
, vers
)))
215 /* Create RPC client handle if not there, and copy soft
216 * and intr flags from NFS client. */
217 if (host
->h_rpcclnt
== NULL
) {
218 struct rpc_clnt
*clnt
;
220 /* Bind an rpc client to this host handle (does not
221 * perform a portmapper lookup) */
222 if (!(clnt
= nlm_bind_host(host
))) {
226 clnt
->cl_softrtry
= nfssrv
->client
->cl_softrtry
;
227 clnt
->cl_intr
= nfssrv
->client
->cl_intr
;
230 /* Keep the old signal mask */
231 spin_lock_irqsave(¤t
->sighand
->siglock
, flags
);
232 oldset
= current
->blocked
;
234 /* If we're cleaning up locks because the process is exiting,
235 * perform the RPC call asynchronously. */
236 if ((IS_SETLK(cmd
) || IS_SETLKW(cmd
))
237 && fl
->fl_type
== F_UNLCK
238 && (current
->flags
& PF_EXITING
)) {
239 sigfillset(¤t
->blocked
); /* Mask all signals */
241 spin_unlock_irqrestore(¤t
->sighand
->siglock
, flags
);
243 call
= nlmclnt_alloc_call();
248 call
->a_flags
= RPC_TASK_ASYNC
;
250 spin_unlock_irqrestore(¤t
->sighand
->siglock
, flags
);
251 memset(call
, 0, sizeof(*call
));
252 locks_init_lock(&call
->a_args
.lock
.fl
);
253 locks_init_lock(&call
->a_res
.lock
.fl
);
257 nlmclnt_locks_init_private(fl
, host
);
259 /* Set up the argument struct */
260 nlmclnt_setlockargs(call
, fl
);
262 if (IS_SETLK(cmd
) || IS_SETLKW(cmd
)) {
263 if (fl
->fl_type
!= F_UNLCK
) {
264 call
->a_args
.block
= IS_SETLKW(cmd
) ? 1 : 0;
265 status
= nlmclnt_lock(call
, fl
);
267 status
= nlmclnt_unlock(call
, fl
);
268 } else if (IS_GETLK(cmd
))
269 status
= nlmclnt_test(call
, fl
);
274 spin_lock_irqsave(¤t
->sighand
->siglock
, flags
);
275 current
->blocked
= oldset
;
277 spin_unlock_irqrestore(¤t
->sighand
->siglock
, flags
);
280 dprintk("lockd: clnt proc returns %d\n", status
);
281 nlm_release_host(host
);
284 EXPORT_SYMBOL(nlmclnt_proc
);
287 * Allocate an NLM RPC call struct
290 nlmclnt_alloc_call(void)
292 struct nlm_rqst
*call
;
294 while (!signalled()) {
295 call
= (struct nlm_rqst
*) kmalloc(sizeof(struct nlm_rqst
), GFP_KERNEL
);
297 memset(call
, 0, sizeof(*call
));
298 locks_init_lock(&call
->a_args
.lock
.fl
);
299 locks_init_lock(&call
->a_res
.lock
.fl
);
302 printk("nlmclnt_alloc_call: failed, waiting for memory\n");
303 schedule_timeout_interruptible(5*HZ
);
308 static int nlm_wait_on_grace(wait_queue_head_t
*queue
)
313 prepare_to_wait(queue
, &wait
, TASK_INTERRUPTIBLE
);
315 schedule_timeout(NLMCLNT_GRACE_WAIT
);
320 finish_wait(queue
, &wait
);
328 nlmclnt_call(struct nlm_rqst
*req
, u32 proc
)
330 struct nlm_host
*host
= req
->a_host
;
331 struct rpc_clnt
*clnt
;
332 struct nlm_args
*argp
= &req
->a_args
;
333 struct nlm_res
*resp
= &req
->a_res
;
334 struct rpc_message msg
= {
340 dprintk("lockd: call procedure %d on %s\n",
341 (int)proc
, host
->h_name
);
344 if (host
->h_reclaiming
&& !argp
->reclaim
)
345 goto in_grace_period
;
347 /* If we have no RPC client yet, create one. */
348 if ((clnt
= nlm_bind_host(host
)) == NULL
)
350 msg
.rpc_proc
= &clnt
->cl_procinfo
[proc
];
352 /* Perform the RPC call. If an error occurs, try again */
353 if ((status
= rpc_call_sync(clnt
, &msg
, 0)) < 0) {
354 dprintk("lockd: rpc_call returned error %d\n", -status
);
356 case -EPROTONOSUPPORT
:
362 nlm_rebind_host(host
);
366 return signalled () ? -EINTR
: status
;
372 if (resp
->status
== NLM_LCK_DENIED_GRACE_PERIOD
) {
373 dprintk("lockd: server in grace period\n");
376 "lockd: spurious grace period reject?!\n");
380 if (!argp
->reclaim
) {
381 /* We appear to be out of the grace period */
382 wake_up_all(&host
->h_gracewait
);
384 dprintk("lockd: server returns status %d\n", resp
->status
);
385 return 0; /* Okay, call complete */
390 * The server has rebooted and appears to be in the grace
391 * period during which locks are only allowed to be
393 * We can only back off and try again later.
395 status
= nlm_wait_on_grace(&host
->h_gracewait
);
396 } while (status
== 0);
402 * Generic NLM call, async version.
404 int nlmsvc_async_call(struct nlm_rqst
*req
, u32 proc
, const struct rpc_call_ops
*tk_ops
)
406 struct nlm_host
*host
= req
->a_host
;
407 struct rpc_clnt
*clnt
;
408 struct rpc_message msg
= {
409 .rpc_argp
= &req
->a_args
,
410 .rpc_resp
= &req
->a_res
,
414 dprintk("lockd: call procedure %d on %s (async)\n",
415 (int)proc
, host
->h_name
);
417 /* If we have no RPC client yet, create one. */
418 if ((clnt
= nlm_bind_host(host
)) == NULL
)
420 msg
.rpc_proc
= &clnt
->cl_procinfo
[proc
];
422 /* bootstrap and kick off the async RPC call */
423 status
= rpc_call_async(clnt
, &msg
, RPC_TASK_ASYNC
, tk_ops
, req
);
428 static int nlmclnt_async_call(struct nlm_rqst
*req
, u32 proc
, const struct rpc_call_ops
*tk_ops
)
430 struct nlm_host
*host
= req
->a_host
;
431 struct rpc_clnt
*clnt
;
432 struct nlm_args
*argp
= &req
->a_args
;
433 struct nlm_res
*resp
= &req
->a_res
;
434 struct rpc_message msg
= {
440 dprintk("lockd: call procedure %d on %s (async)\n",
441 (int)proc
, host
->h_name
);
443 /* If we have no RPC client yet, create one. */
444 if ((clnt
= nlm_bind_host(host
)) == NULL
)
446 msg
.rpc_proc
= &clnt
->cl_procinfo
[proc
];
448 /* Increment host refcount */
450 /* bootstrap and kick off the async RPC call */
451 status
= rpc_call_async(clnt
, &msg
, RPC_TASK_ASYNC
, tk_ops
, req
);
453 nlm_release_host(host
);
458 * TEST for the presence of a conflicting lock
461 nlmclnt_test(struct nlm_rqst
*req
, struct file_lock
*fl
)
465 status
= nlmclnt_call(req
, NLMPROC_TEST
);
466 nlmclnt_release_lockargs(req
);
470 status
= req
->a_res
.status
;
471 if (status
== NLM_LCK_GRANTED
) {
472 fl
->fl_type
= F_UNLCK
;
473 } if (status
== NLM_LCK_DENIED
) {
475 * Report the conflicting lock back to the application.
477 locks_copy_lock(fl
, &req
->a_res
.lock
.fl
);
480 return nlm_stat_to_errno(req
->a_res
.status
);
486 static void nlmclnt_locks_copy_lock(struct file_lock
*new, struct file_lock
*fl
)
488 memcpy(&new->fl_u
.nfs_fl
, &fl
->fl_u
.nfs_fl
, sizeof(new->fl_u
.nfs_fl
));
489 nlm_get_lockowner(new->fl_u
.nfs_fl
.owner
);
492 static void nlmclnt_locks_release_private(struct file_lock
*fl
)
494 nlm_put_lockowner(fl
->fl_u
.nfs_fl
.owner
);
498 static struct file_lock_operations nlmclnt_lock_ops
= {
499 .fl_copy_lock
= nlmclnt_locks_copy_lock
,
500 .fl_release_private
= nlmclnt_locks_release_private
,
503 static void nlmclnt_locks_init_private(struct file_lock
*fl
, struct nlm_host
*host
)
505 BUG_ON(fl
->fl_ops
!= NULL
);
506 fl
->fl_u
.nfs_fl
.state
= 0;
507 fl
->fl_u
.nfs_fl
.flags
= 0;
508 fl
->fl_u
.nfs_fl
.owner
= nlm_find_lockowner(host
, fl
->fl_owner
);
509 fl
->fl_ops
= &nlmclnt_lock_ops
;
512 static void do_vfs_lock(struct file_lock
*fl
)
515 switch (fl
->fl_flags
& (FL_POSIX
|FL_FLOCK
)) {
517 res
= posix_lock_file_wait(fl
->fl_file
, fl
);
520 res
= flock_lock_file_wait(fl
->fl_file
, fl
);
526 printk(KERN_WARNING
"%s: VFS is out of sync with lock manager!\n",
531 * LOCK: Try to create a lock
533 * Programmer Harassment Alert
535 * When given a blocking lock request in a sync RPC call, the HPUX lockd
536 * will faithfully return LCK_BLOCKED but never cares to notify us when
537 * the lock could be granted. This way, our local process could hang
538 * around forever waiting for the callback.
540 * Solution A: Implement busy-waiting
541 * Solution B: Use the async version of the call (NLM_LOCK_{MSG,RES})
543 * For now I am implementing solution A, because I hate the idea of
544 * re-implementing lockd for a third time in two months. The async
545 * calls shouldn't be too hard to do, however.
547 * This is one of the lovely things about standards in the NFS area:
548 * they're so soft and squishy you can't really blame HP for doing this.
551 nlmclnt_lock(struct nlm_rqst
*req
, struct file_lock
*fl
)
553 struct nlm_host
*host
= req
->a_host
;
554 struct nlm_res
*resp
= &req
->a_res
;
558 if (!host
->h_monitored
&& nsm_monitor(host
) < 0) {
559 printk(KERN_NOTICE
"lockd: failed to monitor %s\n",
565 if (req
->a_args
.block
) {
566 status
= nlmclnt_prepare_block(req
, host
, fl
);
571 status
= nlmclnt_call(req
, NLMPROC_LOCK
);
574 if (resp
->status
!= NLM_LCK_BLOCKED
)
576 /* Wait on an NLM blocking lock */
577 timeout
= nlmclnt_block(req
, NLMCLNT_POLL_TIMEOUT
);
578 /* Did a reclaimer thread notify us of a server reboot? */
579 if (resp
->status
== NLM_LCK_DENIED_GRACE_PERIOD
)
581 if (resp
->status
!= NLM_LCK_BLOCKED
)
585 /* We were interrupted. Send a CANCEL request to the server
588 status
= (int)timeout
;
592 if (resp
->status
== NLM_LCK_GRANTED
) {
593 fl
->fl_u
.nfs_fl
.state
= host
->h_state
;
594 fl
->fl_u
.nfs_fl
.flags
|= NFS_LCK_GRANTED
;
595 fl
->fl_flags
|= FL_SLEEP
;
598 status
= nlm_stat_to_errno(resp
->status
);
600 nlmclnt_finish_block(req
);
601 /* Cancel the blocked request if it is still pending */
602 if (resp
->status
== NLM_LCK_BLOCKED
)
603 nlmclnt_cancel(host
, req
->a_args
.block
, fl
);
605 nlmclnt_release_lockargs(req
);
610 * RECLAIM: Try to reclaim a lock
613 nlmclnt_reclaim(struct nlm_host
*host
, struct file_lock
*fl
)
615 struct nlm_rqst reqst
, *req
;
619 memset(req
, 0, sizeof(*req
));
620 locks_init_lock(&req
->a_args
.lock
.fl
);
621 locks_init_lock(&req
->a_res
.lock
.fl
);
625 /* Set up the argument struct */
626 nlmclnt_setlockargs(req
, fl
);
627 req
->a_args
.reclaim
= 1;
629 if ((status
= nlmclnt_call(req
, NLMPROC_LOCK
)) >= 0
630 && req
->a_res
.status
== NLM_LCK_GRANTED
)
633 printk(KERN_WARNING
"lockd: failed to reclaim lock for pid %d "
634 "(errno %d, status %d)\n", fl
->fl_pid
,
635 status
, req
->a_res
.status
);
638 * FIXME: This is a serious failure. We can
640 * a. Ignore the problem
641 * b. Send the owning process some signal (Linux doesn't have
642 * SIGLOST, though...)
643 * c. Retry the operation
645 * Until someone comes up with a simple implementation
646 * for b or c, I'll choose option a.
653 * UNLOCK: remove an existing lock
656 nlmclnt_unlock(struct nlm_rqst
*req
, struct file_lock
*fl
)
658 struct nlm_res
*resp
= &req
->a_res
;
661 /* Clean the GRANTED flag now so the lock doesn't get
662 * reclaimed while we're stuck in the unlock call. */
663 fl
->fl_u
.nfs_fl
.flags
&= ~NFS_LCK_GRANTED
;
666 * Note: the server is supposed to either grant us the unlock
667 * request, or to deny it with NLM_LCK_DENIED_GRACE_PERIOD. In either
668 * case, we want to unlock.
672 if (req
->a_flags
& RPC_TASK_ASYNC
) {
673 status
= nlmclnt_async_call(req
, NLMPROC_UNLOCK
,
674 &nlmclnt_unlock_ops
);
675 /* Hrmf... Do the unlock early since locks_remove_posix()
676 * really expects us to free the lock synchronously */
678 nlmclnt_release_lockargs(req
);
684 status
= nlmclnt_call(req
, NLMPROC_UNLOCK
);
685 nlmclnt_release_lockargs(req
);
689 if (resp
->status
== NLM_LCK_GRANTED
)
692 if (resp
->status
!= NLM_LCK_DENIED_NOLOCKS
)
693 printk("lockd: unexpected unlock status: %d\n", resp
->status
);
695 /* What to do now? I'm out of my depth... */
700 static void nlmclnt_unlock_callback(struct rpc_task
*task
, void *data
)
702 struct nlm_rqst
*req
= data
;
703 int status
= req
->a_res
.status
;
705 if (RPC_ASSASSINATED(task
))
708 if (task
->tk_status
< 0) {
709 dprintk("lockd: unlock failed (err = %d)\n", -task
->tk_status
);
712 if (status
== NLM_LCK_DENIED_GRACE_PERIOD
) {
713 rpc_delay(task
, NLMCLNT_GRACE_WAIT
);
716 if (status
!= NLM_LCK_GRANTED
)
717 printk(KERN_WARNING
"lockd: unexpected unlock status: %d\n", status
);
719 nlm_release_host(req
->a_host
);
720 nlmclnt_release_lockargs(req
);
724 nlm_rebind_host(req
->a_host
);
726 rpc_restart_call(task
);
729 static const struct rpc_call_ops nlmclnt_unlock_ops
= {
730 .rpc_call_done
= nlmclnt_unlock_callback
,
734 * Cancel a blocked lock request.
735 * We always use an async RPC call for this in order not to hang a
736 * process that has been Ctrl-C'ed.
738 static int nlmclnt_cancel(struct nlm_host
*host
, int block
, struct file_lock
*fl
)
740 struct nlm_rqst
*req
;
745 /* Block all signals while setting up call */
746 spin_lock_irqsave(¤t
->sighand
->siglock
, flags
);
747 oldset
= current
->blocked
;
748 sigfillset(¤t
->blocked
);
750 spin_unlock_irqrestore(¤t
->sighand
->siglock
, flags
);
752 req
= nlmclnt_alloc_call();
756 req
->a_flags
= RPC_TASK_ASYNC
;
758 nlmclnt_setlockargs(req
, fl
);
759 req
->a_args
.block
= block
;
761 status
= nlmclnt_async_call(req
, NLMPROC_CANCEL
, &nlmclnt_cancel_ops
);
763 nlmclnt_release_lockargs(req
);
767 spin_lock_irqsave(¤t
->sighand
->siglock
, flags
);
768 current
->blocked
= oldset
;
770 spin_unlock_irqrestore(¤t
->sighand
->siglock
, flags
);
775 static void nlmclnt_cancel_callback(struct rpc_task
*task
, void *data
)
777 struct nlm_rqst
*req
= data
;
779 if (RPC_ASSASSINATED(task
))
782 if (task
->tk_status
< 0) {
783 dprintk("lockd: CANCEL call error %d, retrying.\n",
788 dprintk("lockd: cancel status %d (task %d)\n",
789 req
->a_res
.status
, task
->tk_pid
);
791 switch (req
->a_res
.status
) {
792 case NLM_LCK_GRANTED
:
793 case NLM_LCK_DENIED_GRACE_PERIOD
:
794 /* Everything's good */
796 case NLM_LCK_DENIED_NOLOCKS
:
797 dprintk("lockd: CANCEL failed (server has no locks)\n");
800 printk(KERN_NOTICE
"lockd: weird return %d for CANCEL call\n",
805 nlm_release_host(req
->a_host
);
806 nlmclnt_release_lockargs(req
);
811 /* Don't ever retry more than 3 times */
812 if (req
->a_retries
++ >= NLMCLNT_MAX_RETRIES
)
814 nlm_rebind_host(req
->a_host
);
815 rpc_restart_call(task
);
816 rpc_delay(task
, 30 * HZ
);
819 static const struct rpc_call_ops nlmclnt_cancel_ops
= {
820 .rpc_call_done
= nlmclnt_cancel_callback
,
824 * Convert an NLM status code to a generic kernel errno
827 nlm_stat_to_errno(u32 status
)
830 case NLM_LCK_GRANTED
:
834 case NLM_LCK_DENIED_NOLOCKS
:
835 case NLM_LCK_DENIED_GRACE_PERIOD
:
837 case NLM_LCK_BLOCKED
:
838 printk(KERN_NOTICE
"lockd: unexpected status NLM_BLOCKED\n");
840 #ifdef CONFIG_LOCKD_V4
853 printk(KERN_NOTICE
"lockd: unexpected server status %d\n", status
);