kill tsol ("Trusted Solaris") aka TX ("Trusted Extensions")
[unleashed.git] / usr / src / uts / common / klm / nlm_impl.h
blob4c344733acc6d8a5599834598885a129e943d41a
1 /*
2 * Copyright (c) 2008 Isilon Inc http://www.isilon.com/
3 * Authors: Doug Rabson <dfr@rabson.org>
4 * Developed with Red Inc: Alfred Perlstein <alfred@freebsd.org>
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 * 1. Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * 2. Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 * SUCH DAMAGE.
27 * $FreeBSD$
31 * Copyright 2012 Nexenta Systems, Inc. All rights reserved.
32 * Copyright (c) 2012 by Delphix. All rights reserved.
36 * NFS Lock Manager (NLM) private declarations, etc.
38 * Source code derived from FreeBSD nlm.h
41 #ifndef _NLM_NLM_H_
42 #define _NLM_NLM_H_
44 #include <sys/cmn_err.h>
45 #include <sys/queue.h>
46 #include <sys/modhash.h>
47 #include <sys/avl.h>
48 #include <sys/vnode.h>
50 #define RPC_MSGOUT(args...) cmn_err(CE_NOTE, args)
51 #define NLM_ERR(...) cmn_err(CE_NOTE, __VA_ARGS__)
52 #define NLM_WARN(...) cmn_err(CE_WARN, __VA_ARGS__)
54 #ifndef SEEK_SET
55 #define SEEK_SET 0
56 #endif
57 #ifndef SEEK_CUR
58 #define SEEK_CUR 1
59 #endif
60 #ifndef SEEK_END
61 #define SEEK_END 2
62 #endif
65 * Maximum offset supported by NLM calls using the older
66 * (32-bit) versions of the protocol.
68 #define MAX_UOFF32 0xffffffffULL
70 struct nlm_host;
71 struct vnode;
72 struct exportinfo;
73 struct shrlock;
74 struct _kthread;
77 * How to read the code: probably the best point to start
78 * it the nlm_host structure that is sort of most major
79 * structure in klmmod. nlm_host is closely tied with all
80 * other NLM structures.
82 * There're three major locks we use inside NLM:
83 * 1) Global read-write lock (lm_lck) that is used to
84 * protect operations with sysid allocation and
85 * management of zone globals structures for each
86 * zone.
87 * 2) Zone global lock: (nlm_globals->lock) is a mutex
88 * used to protect all operations inside particular
89 * zone.
90 * 3) Host's lock: (nlm_host->nh_lock) is per-host mutex
91 * used to protect host's internal fields and all
92 * operations with the given host.
94 * Locks order _must_ obey the following scheme:
95 * lm_lck then nlm_globals->lock then nlm_host->nh_lock
97 * Locks:
98 * (g) locked by lm_lck
99 * (z) locked by nlm_globals->lock
100 * (l) locked by host->nh_lock
101 * (c) const until freeing
105 * Callback functions for nlm_do_lock() and others.
107 * Calls to nlm_do_lock are unusual, because it needs to handle
108 * the reply itself, instead of letting it happen the normal way.
109 * It also needs to make an RPC call _back_ to the client when a
110 * blocked lock request completes.
112 * We pass three callback functions to nlm_do_lock:
113 * nlm_reply_cb: send a normal RPC reply
114 * nlm_res_cb: do a _res (message style) RPC (call)
115 * nlm_testargs_cb: do a "granted" RPC call (after blocking)
116 * Only one of the 1st or 2nd is used.
117 * The 3rd is used only for blocking
119 * We also use callback functions for all the _msg variants
120 * of the NLM svc calls, where the reply is a reverse call.
121 * The nlm_testres_cb is used by the _test_msg svc calls.
122 * The nlm_res_cb type is used by the other _msg calls.
124 typedef bool_t (*nlm_reply_cb)(SVCXPRT *, nlm4_res *);
125 typedef enum clnt_stat (*nlm_res_cb)(nlm4_res *, void *, CLIENT *);
126 typedef enum clnt_stat (*nlm_testargs_cb)(nlm4_testargs *, void *, CLIENT *);
127 typedef enum clnt_stat (*nlm_testres_cb)(nlm4_testres *, void *, CLIENT *);
130 * NLM sleeping lock request.
132 * Sleeping lock requests are server side only objects
133 * that are created when client asks server to add new
134 * sleeping lock and when this lock needs to block.
135 * Server keeps a track of these requests in order to be
136 * able to cancel them or clean them up.
138 * Sleeping lock requests are closely tiled with particular
139 * vnode or, strictly speaking, NLM vhold object that holds
140 * the vnode.
142 * struct nlm_slreq:
143 * nsr_fl: an information about file lock
144 * nsr_link: a list node to store lock requests
145 * in vhold object.
147 struct nlm_slreq {
148 struct flock64 nsr_fl;
149 TAILQ_ENTRY(nlm_slreq) nsr_link;
151 TAILQ_HEAD(nlm_slreq_list, nlm_slreq);
154 * NLM vhold object is a sort of wrapper on vnodes remote
155 * clients have locked (or added share reservation)
156 * on NLM server. Vhold keeps vnode held (by VN_HOLD())
157 * while vnode has any locks or shares made by parent host.
158 * Vholds are used for two purposes:
159 * 1) Hold vnode (with VN_HOLD) while it has any locks;
160 * 2) Keep a track of all vnodes remote host touched
161 * with lock/share operations on NLM server, so that NLM
162 * can know what vnodes are potentially locked;
164 * Vholds are used on server side only. For server side it's really
165 * important to keep vnodes held while they potentially have
166 * any locks/shares. In contrast, it's not important for clinet
167 * side at all. When particular vnode comes to the NLM client side
168 * code, it's already held (VN_HOLD) by the process calling
169 * lock/share function (it's referenced because client calls open()
170 * before making locks or shares).
172 * Each NLM host object has a collection of vholds associated
173 * with vnodes host touched earlier by adding locks or shares.
174 * Having this collection allows us to decide if host is still
175 * in use. When it has any vhold objects it's considered to be
176 * in use. Otherwise we're free to destroy it.
178 * Vholds are destroyed by the NLM garbage collecter thread that
179 * periodically checks whether they have any locks or shares.
180 * Checking occures when parent host is untouched by client
181 * or server for some period of time.
183 * struct nlm_vhold:
184 * nv_vp: a pointer to vnode that is hold by given nlm_vhold
185 * nv_refcnt: reference counter (non zero when vhold is inuse)
186 * nv_slreqs: sleeping lock requests that were made on the nv_vp
187 * nv_link: list node to store vholds in host's nh_vnodes_list
189 struct nlm_vhold {
190 vnode_t *nv_vp; /* (c) */
191 int nv_refcnt; /* (l) */
192 struct nlm_slreq_list nv_slreqs; /* (l) */
193 TAILQ_ENTRY(nlm_vhold) nv_link; /* (l) */
195 TAILQ_HEAD(nlm_vhold_list, nlm_vhold);
198 * Client side sleeping lock state.
199 * - NLM_SL_BLOCKED: some thread is blocked on this lock
200 * - NLM_SL_GRANTED: server granted us the lock
201 * - NLM_SL_CANCELLED: the lock is cancelled (i.e. invalid/inactive)
203 typedef enum nlm_slock_state {
204 NLM_SL_UNKNOWN = 0,
205 NLM_SL_BLOCKED,
206 NLM_SL_GRANTED,
207 NLM_SL_CANCELLED
208 } nlm_slock_state_t;
211 * A client side sleeping lock request (set by F_SETLKW)
212 * stored in nlm_slocks collection of nlm_globals.
214 * struct nlm_slock
215 * nsl_state: Sleeping lock state.
216 * (see nlm_slock_state for more information)
217 * nsl_cond: Condvar that is used when sleeping lock
218 * needs to wait for a GRANT callback
219 * or cancellation event.
220 * nsl_lock: nlm4_lock structure that is sent to the server
221 * nsl_fh: Filehandle that corresponds to nw_vp
222 * nsl_host: A host owning this sleeping lock
223 * nsl_vp: A vnode sleeping lock is waiting on.
224 * nsl_link: A list node for nlm_globals->nlm_slocks list.
226 struct nlm_slock {
227 nlm_slock_state_t nsl_state; /* (z) */
228 kcondvar_t nsl_cond; /* (z) */
229 nlm4_lock nsl_lock; /* (c) */
230 struct netobj nsl_fh; /* (c) */
231 struct nlm_host *nsl_host; /* (c) */
232 struct vnode *nsl_vp; /* (c) */
233 TAILQ_ENTRY(nlm_slock) nsl_link; /* (z) */
235 TAILQ_HEAD(nlm_slock_list, nlm_slock);
238 * Share reservation description. NLM tracks all active
239 * share reservations made by the client side, so that
240 * they can be easily recovered if remote NLM server
241 * reboots. Share reservations tracking is also useful
242 * when NLM needs to determine whether host owns any
243 * resources on the system and can't be destroyed.
245 * nlm_shres:
246 * ns_shr: share reservation description
247 * ns_vp: a pointer to vnode where share reservation is located
248 * ns_next: next nlm_shres instance (or NULL if next item isn't
249 * present).
251 struct nlm_shres {
252 struct shrlock *ns_shr;
253 vnode_t *ns_vp;
254 struct nlm_shres *ns_next;
258 * NLM RPC handle object.
260 * In kRPC subsystem it's unsafe to use one RPC handle by
261 * several threads simultaneously. It was designed so that
262 * each thread has to create an RPC handle that it'll use.
263 * RPC handle creation can be quite expensive operation, especially
264 * with session oriented protocols (such as TCP) that need to
265 * establish session at first. NLM RPC handle object is a sort of
266 * wrapper on kRPC handle object that can be cached and used in
267 * future. We store all created RPC handles for given host in a
268 * host's RPC handles cache, so that to make new requests threads
269 * can simply take ready objects from the cache. That improves
270 * NLM performance.
272 * nlm_rpc_t:
273 * nr_handle: a kRPC handle itself.
274 * nr_vers: a version of NLM protocol kRPC handle was
275 * created for.
276 * nr_link: a list node to store NLM RPC handles in the host
277 * RPC handles cache.
279 typedef struct nlm_rpc {
280 CLIENT *nr_handle; /* (l) */
281 rpcvers_t nr_vers; /* (c) */
282 TAILQ_ENTRY(nlm_rpc) nr_link; /* (l) */
283 } nlm_rpc_t;
284 TAILQ_HEAD(nlm_rpch_list, nlm_rpc);
287 * Describes the state of NLM host's RPC binding.
288 * RPC binding can be in one of three states:
289 * 1) NRPCB_NEED_UPDATE:
290 * Binding is either not initialized or stale.
291 * 2) NRPCB_UPDATE_INPROGRESS:
292 * When some thread updates host's RPC binding,
293 * it sets binding's state to NRPCB_UPDATE_INPROGRESS
294 * which denotes that other threads must wait until
295 * update process is finished.
296 * 3) NRPCB_UPDATED:
297 * Denotes that host's RPC binding is both initialized
298 * and fresh.
300 enum nlm_rpcb_state {
301 NRPCB_NEED_UPDATE = 0,
302 NRPCB_UPDATE_INPROGRESS,
303 NRPCB_UPDATED
307 * NLM host flags
309 #define NLM_NH_MONITORED 0x01
310 #define NLM_NH_RECLAIM 0x02
311 #define NLM_NH_INIDLE 0x04
312 #define NLM_NH_SUSPEND 0x08
315 * NLM host object is the most major structure in NLM.
316 * It identifies remote client or remote server or both.
317 * NLM host object keep a track of all vnodes client/server
318 * locked and all sleeping locks it has. All lock/unlock
319 * operations are done using host object.
321 * nlm_host:
322 * nh_lock: a mutex protecting host object fields
323 * nh_refs: reference counter. Identifies how many threads
324 * uses this host object.
325 * nh_link: a list node for keeping host in zone-global list.
326 * nh_by_addr: an AVL tree node for keeping host in zone-global tree.
327 * Host can be looked up in the tree by <netid, address>
328 * pair.
329 * nh_name: host name.
330 * nh_netid: netid string identifying type of transport host uses.
331 * nh_knc: host's knetconfig (used by kRPC subsystem).
332 * nh_addr: host's address (either IPv4 or IPv6).
333 * nh_sysid: unique sysid associated with this host.
334 * nh_state: last seen host's state reported by NSM.
335 * nh_flags: ORed host flags.
336 * nh_idle_timeout: host idle timeout. When expired host is freed.
337 * nh_recl_cv: condition variable used for reporting that reclamation
338 * process is finished.
339 * nh_rpcb_cv: condition variable that is used to make sure
340 * that only one thread renews host's RPC binding.
341 * nh_rpcb_ustat: error code returned by RPC binding update operation.
342 * nh_rpcb_state: host's RPC binding state (see enum nlm_rpcb_state
343 * for more details).
344 * nh_rpchc: host's RPC handles cache.
345 * nh_vholds_by_vp: a hash table of all vholds host owns. (used for lookup)
346 * nh_vholds_list: a linked list of all vholds host owns. (used for iteration)
347 * nh_shrlist: a list of all active share resevations on the client side.
348 * nh_reclaimer: a pointer to reclamation thread (kthread_t)
349 * NULL if reclamation thread doesn't exist
351 struct nlm_host {
352 kmutex_t nh_lock; /* (c) */
353 volatile uint_t nh_refs; /* (z) */
354 TAILQ_ENTRY(nlm_host) nh_link; /* (z) */
355 avl_node_t nh_by_addr; /* (z) */
356 char *nh_name; /* (c) */
357 char *nh_netid; /* (c) */
358 struct knetconfig nh_knc; /* (c) */
359 struct netbuf nh_addr; /* (c) */
360 sysid_t nh_sysid; /* (c) */
361 int32_t nh_state; /* (z) */
362 clock_t nh_idle_timeout; /* (z) */
363 uint8_t nh_flags; /* (z) */
364 kcondvar_t nh_recl_cv; /* (z) */
365 kcondvar_t nh_rpcb_cv; /* (l) */
366 enum clnt_stat nh_rpcb_ustat; /* (l) */
367 enum nlm_rpcb_state nh_rpcb_state; /* (l) */
368 struct nlm_rpch_list nh_rpchc; /* (l) */
369 mod_hash_t *nh_vholds_by_vp; /* (l) */
370 struct nlm_vhold_list nh_vholds_list; /* (l) */
371 struct nlm_shres *nh_shrlist; /* (l) */
372 kthread_t *nh_reclaimer; /* (l) */
374 TAILQ_HEAD(nlm_host_list, nlm_host);
377 * nlm_nsm structure describes RPC client handle that can be
378 * used to communicate with local NSM via kRPC.
380 * We need to wrap handle with nlm_nsm structure because kRPC
381 * can not share one handle between several threads. It's assumed
382 * that NLM uses only one NSM handle per zone, thus all RPC operations
383 * on NSM's handle are serialized using nlm_nsm->sem semaphore.
385 * nlm_nsm also contains refcnt field used for reference counting.
386 * It's used because there exist a possibility of simultaneous
387 * execution of NLM shutdown operation and host monitor/unmonitor
388 * operations.
390 * struct nlm_nsm:
391 * ns_sem: a semaphore for serialization network operations to statd
392 * ns_knc: a kneconfig describing transport that is used for communication
393 * ns_addr: an address of local statd we're talking to
394 * ns_handle: an RPC handle used for talking to local statd using the status
395 * monitor protocol (SM_PROG)
396 * ns_addr_handle: an RPC handle used for talking to local statd using the
397 * address registration protocol (NSM_ADDR_PROGRAM)
399 struct nlm_nsm {
400 ksema_t ns_sem;
401 struct knetconfig ns_knc; /* (c) */
402 struct netbuf ns_addr; /* (c) */
403 CLIENT *ns_handle; /* (c) */
404 CLIENT *ns_addr_handle; /* (c) */
408 * Could use flock.h flk_nlm_status_t instead, but
409 * prefer our own enum with initial zero...
411 typedef enum {
412 NLM_ST_DOWN = 0,
413 NLM_ST_STOPPING,
414 NLM_ST_UP,
415 NLM_ST_STARTING
416 } nlm_run_status_t;
419 * nlm_globals structure allows NLM be zone aware. The structure
420 * collects all "global variables" NLM has for each zone.
422 * struct nlm_globals:
423 * lock: mutex protecting all operations inside given zone
424 * grace_threshold: grace period expiration time (in ticks)
425 * lockd_pid: PID of lockd user space daemon
426 * run_status: run status of klmmod inside given zone
427 * nsm_state: state obtained from local statd during klmmod startup
428 * nlm_gc_thread: garbage collector thread
429 * nlm_gc_sched_cv: condvar that can be signalled to wakeup GC
430 * nlm_gc_finish_cv: condvar that is signalled just before GC thread exits
431 * nlm_nsm: an object describing RPC handle used for talking to local statd
432 * nlm_hosts_tree: an AVL tree of all hosts in the given zone
433 * (used for hosts lookup by <netid, address> pair)
434 * nlm_hosts_hash: a hash table of all hosts in the given zone
435 * (used for hosts lookup by sysid)
436 * nlm_idle_hosts: a list of all hosts that are idle state (i.e. unused)
437 * nlm_slocks: a list of all client-side sleeping locks in the zone
438 * cn_idle_tmo: a value of idle timeout (in seconds) obtained from lockd
439 * grace_period: a value of grace period (in seconds) obtained from lockd
440 * retrans_tmo: a value of retransmission timeout (in seconds) obtained
441 * from lockd.
442 * clean_lock: mutex used to serialize clear_locks calls.
443 * nlm_link: a list node used for keeping all nlm_globals objects
444 * in one global linked list.
446 struct nlm_globals {
447 kmutex_t lock;
448 clock_t grace_threshold; /* (z) */
449 pid_t lockd_pid; /* (z) */
450 nlm_run_status_t run_status; /* (z) */
451 int32_t nsm_state; /* (z) */
452 kthread_t *nlm_gc_thread; /* (z) */
453 kcondvar_t nlm_gc_sched_cv; /* (z) */
454 kcondvar_t nlm_gc_finish_cv; /* (z) */
455 struct nlm_nsm nlm_nsm; /* (z) */
456 avl_tree_t nlm_hosts_tree; /* (z) */
457 mod_hash_t *nlm_hosts_hash; /* (z) */
458 struct nlm_host_list nlm_idle_hosts; /* (z) */
459 struct nlm_slock_list nlm_slocks; /* (z) */
460 int cn_idle_tmo; /* (z) */
461 int grace_period; /* (z) */
462 int retrans_tmo; /* (z) */
463 kmutex_t clean_lock; /* (c) */
464 TAILQ_ENTRY(nlm_globals) nlm_link; /* (g) */
466 TAILQ_HEAD(nlm_globals_list, nlm_globals);
470 * This is what we pass as the "owner handle" for NLM_LOCK.
471 * This lets us find the blocked lock in NLM_GRANTED.
472 * It also exposes on the wire what we're using as the
473 * sysid for any server, which can be very helpful for
474 * problem diagnosis. (Observability is good).
476 struct nlm_owner_handle {
477 sysid_t oh_sysid; /* of remote host */
481 * Number retries NLM RPC call is repeatead in case of failure.
482 * (used in case of conectionless transport).
484 #define NLM_RPC_RETRIES 5
487 * Klmmod global variables
489 extern krwlock_t lm_lck;
490 extern zone_key_t nlm_zone_key;
493 * NLM interface functions (called directly by
494 * either klmmod or klmpos)
496 extern int nlm_frlock(struct vnode *, int, struct flock64 *, int, u_offset_t,
497 struct cred *, struct netobj *, struct flk_callback *, int);
498 extern int nlm_shrlock(struct vnode *, int, struct shrlock *, int,
499 struct netobj *, int);
500 extern int nlm_safemap(const vnode_t *);
501 extern int nlm_safelock(vnode_t *, const struct flock64 *, cred_t *);
502 extern int nlm_has_sleep(const vnode_t *);
503 extern void nlm_register_lock_locally(struct vnode *, struct nlm_host *,
504 struct flock64 *, int, u_offset_t);
505 int nlm_vp_active(const vnode_t *vp);
506 void nlm_sysid_free(sysid_t);
507 int nlm_vp_active(const vnode_t *);
508 void nlm_unexport(struct exportinfo *);
511 * NLM startup/shutdown
513 int nlm_svc_starting(struct nlm_globals *, struct file *,
514 const char *, struct knetconfig *);
515 void nlm_svc_stopping(struct nlm_globals *);
516 int nlm_svc_add_ep(struct file *, const char *, struct knetconfig *);
519 * NLM suspend/resume
521 void nlm_cprsuspend(void);
522 void nlm_cprresume(void);
525 * NLM internal functions for initialization.
527 void nlm_init(void);
528 void nlm_rpc_init(void);
529 void nlm_rpc_cache_destroy(struct nlm_host *);
530 void nlm_globals_register(struct nlm_globals *);
531 void nlm_globals_unregister(struct nlm_globals *);
532 sysid_t nlm_sysid_alloc(void);
535 * Client reclamation/cancelation
537 void nlm_reclaim_client(struct nlm_globals *, struct nlm_host *);
538 void nlm_client_cancel_all(struct nlm_globals *, struct nlm_host *);
540 /* (nlm_rpc_clnt.c) */
541 enum clnt_stat nlm_null_rpc(CLIENT *, rpcvers_t);
542 enum clnt_stat nlm_test_rpc(nlm4_testargs *, nlm4_testres *,
543 CLIENT *, rpcvers_t);
544 enum clnt_stat nlm_lock_rpc(nlm4_lockargs *, nlm4_res *,
545 CLIENT *, rpcvers_t);
546 enum clnt_stat nlm_cancel_rpc(nlm4_cancargs *, nlm4_res *,
547 CLIENT *, rpcvers_t);
548 enum clnt_stat nlm_unlock_rpc(nlm4_unlockargs *, nlm4_res *,
549 CLIENT *, rpcvers_t);
550 enum clnt_stat nlm_share_rpc(nlm4_shareargs *, nlm4_shareres *,
551 CLIENT *, rpcvers_t);
552 enum clnt_stat nlm_unshare_rpc(nlm4_shareargs *, nlm4_shareres *,
553 CLIENT *, rpcvers_t);
557 * RPC service functions.
558 * nlm_dispatch.c
560 void nlm_prog_3(struct svc_req *rqstp, SVCXPRT *transp);
561 void nlm_prog_4(struct svc_req *rqstp, SVCXPRT *transp);
564 * Functions for working with knetconfigs (nlm_netconfig.c)
566 const char *nlm_knc_to_netid(struct knetconfig *);
567 int nlm_knc_from_netid(const char *, struct knetconfig *);
570 * NLM host functions (nlm_impl.c)
572 struct nlm_host *nlm_host_findcreate(struct nlm_globals *, char *,
573 const char *, struct netbuf *);
574 struct nlm_host *nlm_host_find(struct nlm_globals *,
575 const char *, struct netbuf *);
576 struct nlm_host *nlm_host_find_by_sysid(struct nlm_globals *, sysid_t);
577 void nlm_host_release(struct nlm_globals *, struct nlm_host *);
579 void nlm_host_monitor(struct nlm_globals *, struct nlm_host *, int);
580 void nlm_host_unmonitor(struct nlm_globals *, struct nlm_host *);
582 void nlm_host_notify_server(struct nlm_host *, int32_t);
583 void nlm_host_notify_client(struct nlm_host *, int32_t);
585 int nlm_host_get_state(struct nlm_host *);
587 struct nlm_vhold *nlm_vhold_get(struct nlm_host *, vnode_t *);
588 void nlm_vhold_release(struct nlm_host *, struct nlm_vhold *);
589 struct nlm_vhold *nlm_vhold_find_locked(struct nlm_host *, const vnode_t *);
591 struct nlm_slock *nlm_slock_register(struct nlm_globals *,
592 struct nlm_host *, struct nlm4_lock *, struct vnode *);
593 void nlm_slock_unregister(struct nlm_globals *, struct nlm_slock *);
594 int nlm_slock_wait(struct nlm_globals *, struct nlm_slock *, uint_t);
595 int nlm_slock_grant(struct nlm_globals *,
596 struct nlm_host *, struct nlm4_lock *);
597 void nlm_host_cancel_slocks(struct nlm_globals *, struct nlm_host *);
599 int nlm_slreq_register(struct nlm_host *,
600 struct nlm_vhold *, struct flock64 *);
601 int nlm_slreq_unregister(struct nlm_host *,
602 struct nlm_vhold *, struct flock64 *);
604 void nlm_shres_track(struct nlm_host *, vnode_t *, struct shrlock *);
605 void nlm_shres_untrack(struct nlm_host *, vnode_t *, struct shrlock *);
606 struct nlm_shres *nlm_get_active_shres(struct nlm_host *);
607 void nlm_free_shrlist(struct nlm_shres *);
609 int nlm_host_wait_grace(struct nlm_host *);
610 int nlm_host_cmp(const void *, const void *);
611 void nlm_copy_netobj(struct netobj *, struct netobj *);
613 int nlm_host_get_rpc(struct nlm_host *, int, nlm_rpc_t **);
614 void nlm_host_rele_rpc(struct nlm_host *, nlm_rpc_t *);
617 * NLM server functions (nlm_service.c)
619 int nlm_vp_active(const vnode_t *vp);
620 void nlm_do_notify1(nlm_sm_status *, void *, struct svc_req *);
621 void nlm_do_notify2(nlm_sm_status *, void *, struct svc_req *);
622 void nlm_do_test(nlm4_testargs *, nlm4_testres *,
623 struct svc_req *, nlm_testres_cb);
624 void nlm_do_lock(nlm4_lockargs *, nlm4_res *, struct svc_req *,
625 nlm_reply_cb, nlm_res_cb, nlm_testargs_cb);
626 void nlm_do_cancel(nlm4_cancargs *, nlm4_res *,
627 struct svc_req *, nlm_res_cb);
628 void nlm_do_unlock(nlm4_unlockargs *, nlm4_res *,
629 struct svc_req *, nlm_res_cb);
630 void nlm_do_granted(nlm4_testargs *, nlm4_res *,
631 struct svc_req *, nlm_res_cb);
632 void nlm_do_share(nlm4_shareargs *, nlm4_shareres *, struct svc_req *);
633 void nlm_do_unshare(nlm4_shareargs *, nlm4_shareres *, struct svc_req *);
634 void nlm_do_free_all(nlm4_notify *, void *, struct svc_req *);
637 * NLM RPC functions
639 enum clnt_stat nlm_clnt_call(CLIENT *, rpcproc_t, xdrproc_t,
640 caddr_t, xdrproc_t, caddr_t, struct timeval);
641 bool_t nlm_caller_is_local(SVCXPRT *);
643 #endif /* _NLM_NLM_H_ */