nlm_prot_impl.c revision 178241
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>
5 *
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.
14 *
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.
26 */
27
28#include "opt_inet6.h"
29
30#include <sys/cdefs.h>
31__FBSDID("$FreeBSD: head/sys/nlm/nlm_prot_impl.c 178241 2008-04-16 09:09:50Z dfr $");
32
33#include <sys/param.h>
34#include <sys/fcntl.h>
35#include <sys/kernel.h>
36#include <sys/lockf.h>
37#include <sys/malloc.h>
38#include <sys/mount.h>
39#if __FreeBSD_version >= 700000
40#include <sys/priv.h>
41#endif
42#include <sys/proc.h>
43#include <sys/socket.h>
44#include <sys/socketvar.h>
45#include <sys/syscall.h>
46#include <sys/sysctl.h>
47#include <sys/sysent.h>
48#include <sys/sysproto.h>
49#include <sys/systm.h>
50#include <sys/taskqueue.h>
51#include <sys/unistd.h>
52#include <sys/vnode.h>
53
54#include <nlm/nlm_prot.h>
55#include <nlm/sm_inter.h>
56#include <nlm/nlm.h>
57#include <rpc/rpc_com.h>
58#include <rpc/rpcb_prot.h>
59
60MALLOC_DEFINE(M_NLM, "NLM", "Network Lock Manager");
61
62/*
63 * If a host is inactive (and holds no locks) for this amount of
64 * seconds, we consider it idle and stop tracking it.
65 */
66#define NLM_IDLE_TIMEOUT	30
67
68/*
69 * We check the host list for idle every few seconds.
70 */
71#define NLM_IDLE_PERIOD		5
72
73/*
74 * Support for sysctl vfs.nlm.sysid
75 */
76SYSCTL_NODE(_vfs, OID_AUTO, nlm, CTLFLAG_RW, NULL, "Network Lock Manager");
77SYSCTL_NODE(_vfs_nlm, OID_AUTO, sysid, CTLFLAG_RW, NULL, "");
78
79/*
80 * Syscall hooks
81 */
82static int nlm_syscall_offset = SYS_nlm_syscall;
83static struct sysent nlm_syscall_prev_sysent;
84#if __FreeBSD_version < 700000
85static struct sysent nlm_syscall_sysent = {
86	(sizeof(struct nlm_syscall_args) / sizeof(register_t)) | SYF_MPSAFE,
87	(sy_call_t *) nlm_syscall
88};
89#else
90MAKE_SYSENT(nlm_syscall);
91#endif
92static bool_t nlm_syscall_registered = FALSE;
93
94/*
95 * Debug level passed in from userland. We also support a sysctl hook
96 * so that it can be changed on a live system.
97 */
98static int nlm_debug_level;
99SYSCTL_INT(_debug, OID_AUTO, nlm_debug, CTLFLAG_RW, &nlm_debug_level, 0, "");
100
101/*
102 * Grace period handling. The value of nlm_grace_threshold is the
103 * value of time_uptime after which we are serving requests normally.
104 */
105static time_t nlm_grace_threshold;
106
107/*
108 * We check for idle hosts if time_uptime is greater than
109 * nlm_next_idle_check,
110 */
111static time_t nlm_next_idle_check;
112
113/*
114 * A socket to use for RPC - shared by all IPv4 RPC clients.
115 */
116static struct socket *nlm_socket;
117
118#ifdef INET6
119
120/*
121 * A socket to use for RPC - shared by all IPv6 RPC clients.
122 */
123static struct socket *nlm_socket6;
124
125#endif
126
127/*
128 * An RPC client handle that can be used to communicate with the local
129 * NSM.
130 */
131static CLIENT *nlm_nsm;
132
133/*
134 * An RPC client handle that can be used to communicate with the
135 * userland part of lockd.
136 */
137static CLIENT *nlm_lockd;
138
139/*
140 * Locks:
141 * (l)		locked by nh_lock
142 * (s)		only accessed via server RPC which is single threaded
143 * (c)		const until freeing
144 */
145
146/*
147 * A pending asynchronous lock request, stored on the nh_pending list
148 * of the NLM host.
149 */
150struct nlm_async_lock {
151	TAILQ_ENTRY(nlm_async_lock) af_link; /* (l) host's list of locks */
152	struct task	af_task;	/* (c) async callback details */
153	void		*af_cookie;	/* (l) lock manager cancel token */
154	struct vnode	*af_vp;		/* (l) vnode to lock */
155	struct flock	af_fl;		/* (c) lock details */
156	struct nlm_host *af_host;	/* (c) host which is locking */
157	nlm4_testargs	af_granted;	/* (c) notification details */
158};
159TAILQ_HEAD(nlm_async_lock_list, nlm_async_lock);
160
161/*
162 * NLM host.
163 */
164enum nlm_host_state {
165	NLM_UNMONITORED,
166	NLM_MONITORED,
167	NLM_MONITOR_FAILED
168};
169struct nlm_host {
170	struct mtx	nh_lock;
171	TAILQ_ENTRY(nlm_host) nh_link; /* (s) global list of hosts */
172	char		*nh_caller_name; /* (c) printable name of host */
173	uint32_t	nh_sysid;	 /* (c) our allocaed system ID */
174	char		nh_sysid_string[10]; /* (c) string rep. of sysid */
175	struct sockaddr_storage	nh_addr; /* (s) remote address of host */
176	CLIENT		*nh_rpc;	 /* (s) RPC handle to send to host */
177	rpcvers_t	nh_vers;	 /* (s) NLM version of host */
178	int		nh_state;	 /* (s) last seen NSM state of host */
179	enum nlm_host_state nh_monstate; /* (s) local NSM monitoring state */
180	time_t		nh_idle_timeout; /* (s) Time at which host is idle */
181	struct sysctl_ctx_list nh_sysctl; /* (c) vfs.nlm.sysid nodes */
182	struct nlm_async_lock_list nh_pending; /* (l) pending async locks */
183	struct nlm_async_lock_list nh_finished; /* (l) finished async locks */
184};
185TAILQ_HEAD(nlm_host_list, nlm_host);
186
187static struct nlm_host_list nlm_hosts;
188static uint32_t nlm_next_sysid = 1;
189
190static void	nlm_host_unmonitor(struct nlm_host *);
191
192/**********************************************************************/
193
194/*
195 * Initialise NLM globals.
196 */
197static void
198nlm_init(void *dummy)
199{
200	int error;
201
202	TAILQ_INIT(&nlm_hosts);
203
204	error = syscall_register(&nlm_syscall_offset, &nlm_syscall_sysent,
205	    &nlm_syscall_prev_sysent);
206	if (error)
207		printf("Can't register NLM syscall\n");
208	else
209		nlm_syscall_registered = TRUE;
210}
211SYSINIT(nlm_init, SI_SUB_LOCK, SI_ORDER_FIRST, nlm_init, NULL);
212
213static void
214nlm_uninit(void *dummy)
215{
216
217	if (nlm_syscall_registered)
218		syscall_deregister(&nlm_syscall_offset,
219		    &nlm_syscall_prev_sysent);
220}
221SYSUNINIT(nlm_uninit, SI_SUB_LOCK, SI_ORDER_FIRST, nlm_uninit, NULL);
222
223/*
224 * Copy a struct netobj.
225 */
226void
227nlm_copy_netobj(struct netobj *dst, struct netobj *src,
228    struct malloc_type *type)
229{
230
231	dst->n_len = src->n_len;
232	dst->n_bytes = malloc(src->n_len, type, M_WAITOK);
233	memcpy(dst->n_bytes, src->n_bytes, src->n_len);
234}
235
236/*
237 * Create an RPC client handle for the given (address,prog,vers)
238 * triple using UDP.
239 */
240static CLIENT *
241nlm_get_rpc(struct sockaddr *sa, rpcprog_t prog, rpcvers_t vers)
242{
243	const char *wchan = "nlmrcv";
244	const char* protofmly;
245	struct sockaddr_storage ss;
246	struct socket *so;
247	CLIENT *rpcb;
248	struct timeval timo;
249	RPCB parms;
250	char *uaddr;
251	enum clnt_stat stat;
252	int rpcvers;
253
254	/*
255	 * First we need to contact the remote RPCBIND service to find
256	 * the right port.
257	 */
258	memcpy(&ss, sa, sa->sa_len);
259	switch (ss.ss_family) {
260	case AF_INET:
261		((struct sockaddr_in *)&ss)->sin_port = htons(111);
262		protofmly = "inet";
263		so = nlm_socket;
264		break;
265
266#ifdef INET6
267	case AF_INET6:
268		((struct sockaddr_in6 *)&ss)->sin6_port = htons(111);
269		protofmly = "inet6";
270		so = nlm_socket6;
271		break;
272#endif
273
274	default:
275		/*
276		 * Unsupported address family - fail.
277		 */
278		return (NULL);
279	}
280
281	rpcb = clnt_dg_create(so, (struct sockaddr *)&ss,
282	    RPCBPROG, RPCBVERS4, 0, 0);
283	if (!rpcb)
284		return (NULL);
285
286	parms.r_prog = prog;
287	parms.r_vers = vers;
288	parms.r_netid = "udp";
289	parms.r_addr = "";
290	parms.r_owner = "";
291
292	/*
293	 * Use the default timeout.
294	 */
295	timo.tv_sec = 25;
296	timo.tv_usec = 0;
297again:
298	uaddr = NULL;
299	stat = CLNT_CALL(rpcb, (rpcprog_t) RPCBPROC_GETADDR,
300	    (xdrproc_t) xdr_rpcb, &parms,
301	    (xdrproc_t) xdr_wrapstring, &uaddr, timo);
302	if (stat == RPC_PROGVERSMISMATCH) {
303		/*
304		 * Try RPCBIND version 3 if we haven't already.
305		 *
306		 * XXX fall back to portmap?
307		 */
308		CLNT_CONTROL(rpcb, CLGET_VERS, &rpcvers);
309		if (rpcvers == RPCBVERS4) {
310			rpcvers = RPCBVERS;
311			CLNT_CONTROL(rpcb, CLSET_VERS, &rpcvers);
312			goto again;
313		}
314	}
315
316	if (stat == RPC_SUCCESS) {
317		/*
318		 * We have a reply from the remote RPCBIND - turn it into an
319		 * appropriate address and make a new client that can talk to
320		 * the remote NLM.
321		 *
322		 * XXX fixup IPv6 scope ID.
323		 */
324		struct netbuf *a;
325		a = __rpc_uaddr2taddr_af(ss.ss_family, uaddr);
326		if (!a) {
327			CLNT_DESTROY(rpcb);
328			return (NULL);
329		}
330		memcpy(&ss, a->buf, a->len);
331		free(a->buf, M_RPC);
332		free(a, M_RPC);
333		xdr_free((xdrproc_t) xdr_wrapstring, &uaddr);
334	} else if (stat == RPC_PROGVERSMISMATCH) {
335		/*
336		 * Try portmap.
337		 */
338		struct pmap mapping;
339		u_short port;
340
341		rpcvers = PMAPVERS;
342		CLNT_CONTROL(rpcb, CLSET_VERS, &rpcvers);
343
344		mapping.pm_prog = parms.r_prog;
345		mapping.pm_vers = parms.r_vers;
346		mapping.pm_prot = IPPROTO_UDP;
347		mapping.pm_port = 0;
348
349		stat = CLNT_CALL(rpcb, (rpcprog_t) PMAPPROC_GETPORT,
350		    (xdrproc_t) xdr_pmap, &mapping,
351		    (xdrproc_t) xdr_u_short, &port, timo);
352
353		if (stat == RPC_SUCCESS) {
354			switch (ss.ss_family) {
355			case AF_INET:
356				((struct sockaddr_in *)&ss)->sin_port =
357					htons(port);
358				break;
359
360#ifdef INET6
361			case AF_INET6:
362				((struct sockaddr_in6 *)&ss)->sin6_port =
363					htons(port);
364				break;
365#endif
366			}
367		}
368	}
369	if (stat != RPC_SUCCESS) {
370		printf("NLM: failed to contact remote rpcbind, stat = %d\n",
371		    (int) stat);
372		CLNT_DESTROY(rpcb);
373		return (NULL);
374	}
375
376	/*
377	 * Re-use the client we used to speak to rpcbind.
378	 */
379	CLNT_CONTROL(rpcb, CLSET_SVC_ADDR, &ss);
380	CLNT_CONTROL(rpcb, CLSET_PROG, &prog);
381	CLNT_CONTROL(rpcb, CLSET_VERS, &vers);
382	CLNT_CONTROL(rpcb, CLSET_WAITCHAN, &wchan);
383	rpcb->cl_auth = authunix_create(curthread->td_ucred);
384
385	return (rpcb);
386}
387
388/*
389 * This async callback after when an async lock request has been
390 * granted. We notify the host which initiated the request.
391 */
392static void
393nlm_lock_callback(void *arg, int pending)
394{
395	struct nlm_async_lock *af = (struct nlm_async_lock *) arg;
396
397	if (nlm_debug_level >= 2)
398		printf("NLM: async lock %p for %s (sysid %d) granted\n",
399		    af, af->af_host->nh_caller_name,
400		    af->af_host->nh_sysid);
401
402	/*
403	 * Send the results back to the host.
404	 *
405	 * Note: there is a possible race here with nlm_host_notify
406	 * destroying the RPC client. To avoid problems, the first
407	 * thing nlm_host_notify does is to cancel pending async lock
408	 * requests.
409	 */
410	if (af->af_host->nh_vers == NLM_VERS4) {
411		nlm4_granted_msg_4(&af->af_granted,
412		    NULL, af->af_host->nh_rpc);
413	} else {
414		/*
415		 * Back-convert to legacy protocol
416		 */
417		nlm_testargs granted;
418		granted.cookie = af->af_granted.cookie;
419		granted.exclusive = af->af_granted.exclusive;
420		granted.alock.caller_name =
421			af->af_granted.alock.caller_name;
422		granted.alock.fh = af->af_granted.alock.fh;
423		granted.alock.oh = af->af_granted.alock.oh;
424		granted.alock.svid = af->af_granted.alock.svid;
425		granted.alock.l_offset =
426			af->af_granted.alock.l_offset;
427		granted.alock.l_len =
428			af->af_granted.alock.l_len;
429
430		nlm_granted_msg_1(&granted,
431		    NULL, af->af_host->nh_rpc);
432	}
433
434	/*
435	 * Move this entry to the nh_finished list. Someone else will
436	 * free it later - its too hard to do it here safely without
437	 * racing with cancel.
438	 *
439	 * XXX possibly we should have a third "granted sent but not
440	 * ack'ed" list so that we can re-send the granted message.
441	 */
442	mtx_lock(&af->af_host->nh_lock);
443	TAILQ_REMOVE(&af->af_host->nh_pending, af, af_link);
444	TAILQ_INSERT_TAIL(&af->af_host->nh_finished, af, af_link);
445	mtx_unlock(&af->af_host->nh_lock);
446}
447
448/*
449 * Free an async lock request. The request must have been removed from
450 * any list.
451 */
452static void
453nlm_free_async_lock(struct nlm_async_lock *af)
454{
455	/*
456	 * Free an async lock.
457	 */
458	xdr_free((xdrproc_t) xdr_nlm4_testargs, &af->af_granted);
459	if (af->af_vp)
460		vrele(af->af_vp);
461	free(af, M_NLM);
462}
463
464/*
465 * Cancel our async request - this must be called with
466 * af->nh_host->nh_lock held. This is slightly complicated by a
467 * potential race with our own callback. If we fail to cancel the
468 * lock, it must already have been granted - we make sure our async
469 * task has completed by calling taskqueue_drain in this case.
470 */
471static int
472nlm_cancel_async_lock(struct nlm_async_lock *af)
473{
474	struct nlm_host *host = af->af_host;
475	int error;
476
477	mtx_assert(&host->nh_lock, MA_OWNED);
478
479	mtx_unlock(&host->nh_lock);
480
481	error = VOP_ADVLOCKASYNC(af->af_vp, NULL, F_CANCEL, &af->af_fl,
482	    F_REMOTE, NULL, &af->af_cookie);
483
484	if (error) {
485		/*
486		 * We failed to cancel - make sure our callback has
487		 * completed before we continue.
488		 */
489		taskqueue_drain(taskqueue_thread, &af->af_task);
490	}
491
492	mtx_lock(&host->nh_lock);
493
494	if (!error) {
495		if (nlm_debug_level >= 2)
496			printf("NLM: async lock %p for %s (sysid %d) "
497			    "cancelled\n",
498			    af, host->nh_caller_name, host->nh_sysid);
499
500		/*
501		 * Remove from the nh_pending list and free now that
502		 * we are safe from the callback.
503		 */
504		TAILQ_REMOVE(&host->nh_pending, af, af_link);
505		mtx_unlock(&host->nh_lock);
506		nlm_free_async_lock(af);
507		mtx_lock(&host->nh_lock);
508	}
509
510	return (error);
511}
512
513static void
514nlm_free_finished_locks(struct nlm_host *host)
515{
516	struct nlm_async_lock *af;
517
518	mtx_lock(&host->nh_lock);
519	while ((af = TAILQ_FIRST(&host->nh_finished)) != NULL) {
520		TAILQ_REMOVE(&host->nh_finished, af, af_link);
521		mtx_unlock(&host->nh_lock);
522		nlm_free_async_lock(af);
523		mtx_lock(&host->nh_lock);
524	}
525	mtx_unlock(&host->nh_lock);
526}
527
528/*
529 * This is called when we receive a host state change
530 * notification. We unlock any active locks owned by the host.
531 */
532static void
533nlm_host_notify(struct nlm_host *host, int newstate, bool_t destroy)
534{
535	struct nlm_async_lock *af;
536
537	if (newstate) {
538		if (nlm_debug_level >= 1)
539			printf("NLM: host %s (sysid %d) rebooted, new "
540			    "state is %d\n",
541			    host->nh_caller_name, host->nh_sysid, newstate);
542	}
543
544	/*
545	 * Cancel any pending async locks for this host.
546	 */
547	mtx_lock(&host->nh_lock);
548	while ((af = TAILQ_FIRST(&host->nh_pending)) != NULL) {
549		/*
550		 * nlm_cancel_async_lock will remove the entry from
551		 * nh_pending and free it.
552		 */
553		nlm_cancel_async_lock(af);
554	}
555	mtx_unlock(&host->nh_lock);
556	nlm_free_finished_locks(host);
557
558	/*
559	 * The host just rebooted - trash its locks and forget any
560	 * RPC client handle that we may have for it.
561	 */
562	lf_clearremotesys(host->nh_sysid);
563	if (host->nh_rpc) {
564		AUTH_DESTROY(host->nh_rpc->cl_auth);
565		CLNT_DESTROY(host->nh_rpc);
566		host->nh_rpc = NULL;
567	}
568	host->nh_state = newstate;
569
570	/*
571	 * Destroy the host if the caller believes that it won't be
572	 * used again. This is safe enough - if we see the same name
573	 * again, we will just create a new host.
574	 */
575	if (destroy) {
576		TAILQ_REMOVE(&nlm_hosts, host, nh_link);
577		mtx_destroy(&host->nh_lock);
578		sysctl_ctx_free(&host->nh_sysctl);
579		free(host->nh_caller_name, M_NLM);
580		free(host, M_NLM);
581	}
582}
583
584/*
585 * Sysctl handler to count the number of locks for a sysid.
586 */
587static int
588nlm_host_lock_count_sysctl(SYSCTL_HANDLER_ARGS)
589{
590	struct nlm_host *host;
591	int count;
592
593	host = oidp->oid_arg1;
594	count = lf_countlocks(host->nh_sysid);
595	return sysctl_handle_int(oidp, &count, 0, req);
596}
597
598/*
599 * Create a new NLM host.
600 */
601static struct nlm_host *
602nlm_create_host(const char* caller_name)
603{
604	struct nlm_host *host;
605	struct sysctl_oid *oid;
606
607	if (nlm_debug_level >= 1)
608		printf("NLM: new host %s (sysid %d)\n",
609		    caller_name, nlm_next_sysid);
610	host = malloc(sizeof(struct nlm_host), M_NLM, M_WAITOK|M_ZERO);
611	mtx_init(&host->nh_lock, "nh_lock", NULL, MTX_DEF);
612	host->nh_caller_name = strdup(caller_name, M_NLM);
613	host->nh_sysid = nlm_next_sysid++;
614	snprintf(host->nh_sysid_string, sizeof(host->nh_sysid_string),
615		"%d", host->nh_sysid);
616	host->nh_rpc = NULL;
617	host->nh_vers = 0;
618	host->nh_state = 0;
619	host->nh_monstate = NLM_UNMONITORED;
620	TAILQ_INIT(&host->nh_pending);
621	TAILQ_INIT(&host->nh_finished);
622	TAILQ_INSERT_TAIL(&nlm_hosts, host, nh_link);
623
624	sysctl_ctx_init(&host->nh_sysctl);
625	oid = SYSCTL_ADD_NODE(&host->nh_sysctl,
626	    SYSCTL_STATIC_CHILDREN(_vfs_nlm_sysid),
627	    OID_AUTO, host->nh_sysid_string, CTLFLAG_RD, NULL, "");
628	SYSCTL_ADD_STRING(&host->nh_sysctl, SYSCTL_CHILDREN(oid), OID_AUTO,
629	    "hostname", CTLFLAG_RD, host->nh_caller_name, 0, "");
630	SYSCTL_ADD_INT(&host->nh_sysctl, SYSCTL_CHILDREN(oid), OID_AUTO,
631	    "version", CTLFLAG_RD, &host->nh_vers, 0, "");
632	SYSCTL_ADD_INT(&host->nh_sysctl, SYSCTL_CHILDREN(oid), OID_AUTO,
633	    "monitored", CTLFLAG_RD, &host->nh_monstate, 0, "");
634	SYSCTL_ADD_PROC(&host->nh_sysctl, SYSCTL_CHILDREN(oid), OID_AUTO,
635	    "lock_count", CTLTYPE_INT | CTLFLAG_RD, host, 0,
636	    nlm_host_lock_count_sysctl, "I", "");
637
638	return (host);
639}
640
641/*
642 * Return non-zero if the address parts of the two sockaddrs are the
643 * same.
644 */
645static int
646nlm_compare_addr(const struct sockaddr *a, const struct sockaddr *b)
647{
648	const struct sockaddr_in *a4, *b4;
649#ifdef INET6
650	const struct sockaddr_in6 *a6, *b6;
651#endif
652
653	if (a->sa_family != b->sa_family)
654		return (FALSE);
655
656	switch (a->sa_family) {
657	case AF_INET:
658		a4 = (const struct sockaddr_in *) a;
659		b4 = (const struct sockaddr_in *) b;
660		return !memcmp(&a4->sin_addr, &b4->sin_addr,
661		    sizeof(a4->sin_addr));
662#ifdef INET6
663	case AF_INET6:
664		a6 = (const struct sockaddr_in6 *) a;
665		b6 = (const struct sockaddr_in6 *) b;
666		return !memcmp(&a6->sin6_addr, &b6->sin6_addr,
667		    sizeof(a6->sin6_addr));
668#endif
669	}
670
671	return (0);
672}
673
674/*
675 * Check for idle hosts and stop monitoring them. We could also free
676 * the host structure here, possibly after a larger timeout but that
677 * would require some care to avoid races with
678 * e.g. nlm_host_lock_count_sysctl.
679 */
680static void
681nlm_check_idle(void)
682{
683	struct nlm_host *host;
684
685	if (time_uptime <= nlm_next_idle_check)
686		return;
687
688	nlm_next_idle_check = time_uptime + NLM_IDLE_PERIOD;
689
690	TAILQ_FOREACH(host, &nlm_hosts, nh_link) {
691		if (host->nh_monstate == NLM_MONITORED
692		    && time_uptime > host->nh_idle_timeout) {
693			if (lf_countlocks(host->nh_sysid) > 0) {
694				host->nh_idle_timeout =
695					time_uptime + NLM_IDLE_TIMEOUT;
696				continue;
697			}
698			nlm_host_unmonitor(host);
699		}
700	}
701}
702
703/*
704 * Search for an existing NLM host that matches the given name
705 * (typically the caller_name element of an nlm4_lock).  If none is
706 * found, create a new host. If 'rqstp' is non-NULL, record the remote
707 * address of the host so that we can call it back for async
708 * responses.
709 */
710struct nlm_host *
711nlm_find_host_by_name(const char *name, struct svc_req *rqstp)
712{
713	struct nlm_host *host;
714
715	nlm_check_idle();
716
717	/*
718	 * The remote host is determined by caller_name.
719	 */
720	TAILQ_FOREACH(host, &nlm_hosts, nh_link) {
721		if (!strcmp(host->nh_caller_name, name))
722			break;
723	}
724
725	if (!host)
726		host = nlm_create_host(name);
727	host->nh_idle_timeout = time_uptime + NLM_IDLE_TIMEOUT;
728
729	/*
730	 * If we have an RPC request, record the remote address so
731	 * that can send async replies etc.
732	 */
733	if (rqstp) {
734		struct netbuf *addr = &rqstp->rq_xprt->xp_rtaddr;
735
736		KASSERT(addr->len < sizeof(struct sockaddr_storage),
737		    ("Strange remote transport address length"));
738
739		/*
740		 * If we have seen an address before and we currently
741		 * have an RPC client handle, make sure the address is
742		 * the same, otherwise discard the client handle.
743		 */
744		if (host->nh_addr.ss_len && host->nh_rpc) {
745			if (!nlm_compare_addr(
746				    (struct sockaddr *) &host->nh_addr,
747				    (struct sockaddr *) addr->buf)
748			    || host->nh_vers != rqstp->rq_vers) {
749				AUTH_DESTROY(host->nh_rpc->cl_auth);
750				CLNT_DESTROY(host->nh_rpc);
751				host->nh_rpc = NULL;
752			}
753		}
754		memcpy(&host->nh_addr, addr->buf, addr->len);
755		host->nh_vers = rqstp->rq_vers;
756	}
757
758	return (host);
759}
760
761/*
762 * Search for an existing NLM host that matches the given remote
763 * address. If none is found, create a new host with the requested
764 * address and remember 'vers' as the NLM protocol version to use for
765 * that host.
766 */
767struct nlm_host *
768nlm_find_host_by_addr(const struct sockaddr *addr, int vers)
769{
770	struct nlm_host *host;
771
772	nlm_check_idle();
773
774	/*
775	 * The remote host is determined by caller_name.
776	 */
777	TAILQ_FOREACH(host, &nlm_hosts, nh_link) {
778		if (nlm_compare_addr(addr,
779			(const struct sockaddr *) &host->nh_addr))
780			break;
781	}
782
783	if (!host) {
784		/*
785		 * Fake up a name using inet_ntop. This buffer is
786		 * large enough for an IPv6 address.
787		 */
788		char tmp[sizeof "ffff:ffff:ffff:ffff:ffff:ffff:255.255.255.255"];
789		switch (addr->sa_family) {
790		case AF_INET:
791			__rpc_inet_ntop(AF_INET,
792			    &((const struct sockaddr_in *) addr)->sin_addr,
793			    tmp, sizeof tmp);
794			break;
795#ifdef INET6
796		case AF_INET6:
797			__rpc_inet_ntop(AF_INET6,
798			    &((const struct sockaddr_in6 *) addr)->sin6_addr,
799			    tmp, sizeof tmp);
800			break;
801#endif
802		default:
803			strcmp(tmp, "<unknown>");
804		}
805		host = nlm_create_host(tmp);
806		memcpy(&host->nh_addr, addr, addr->sa_len);
807		host->nh_vers = vers;
808	}
809	host->nh_idle_timeout = time_uptime + NLM_IDLE_TIMEOUT;
810
811	return (host);
812}
813
814/*
815 * Find the NLM host that matches the value of 'sysid'. If none
816 * exists, return NULL.
817 */
818static struct nlm_host *
819nlm_find_host_by_sysid(int sysid)
820{
821	struct nlm_host *host;
822
823	TAILQ_FOREACH(host, &nlm_hosts, nh_link) {
824		if (host->nh_sysid == sysid)
825			return (host);
826	}
827
828	return (NULL);
829}
830
831/*
832 * Unregister this NLM host with the local NSM due to idleness.
833 */
834static void
835nlm_host_unmonitor(struct nlm_host *host)
836{
837	mon_id smmonid;
838	sm_stat_res smstat;
839	struct timeval timo;
840	enum clnt_stat stat;
841
842	if (nlm_debug_level >= 1)
843		printf("NLM: unmonitoring %s (sysid %d)\n",
844		    host->nh_caller_name, host->nh_sysid);
845
846	/*
847	 * We put our assigned system ID value in the priv field to
848	 * make it simpler to find the host if we are notified of a
849	 * host restart.
850	 */
851	smmonid.mon_name = host->nh_caller_name;
852	smmonid.my_id.my_name = "localhost";
853	smmonid.my_id.my_prog = NLM_PROG;
854	smmonid.my_id.my_vers = NLM_SM;
855	smmonid.my_id.my_proc = NLM_SM_NOTIFY;
856
857	timo.tv_sec = 25;
858	timo.tv_usec = 0;
859	stat = CLNT_CALL(nlm_nsm, SM_UNMON,
860	    (xdrproc_t) xdr_mon, &smmonid,
861	    (xdrproc_t) xdr_sm_stat, &smstat, timo);
862
863	if (stat != RPC_SUCCESS) {
864		printf("Failed to contact local NSM - rpc error %d\n", stat);
865		return;
866	}
867	if (smstat.res_stat == stat_fail) {
868		printf("Local NSM refuses to unmonitor %s\n",
869		    host->nh_caller_name);
870		return;
871	}
872
873	host->nh_monstate = NLM_UNMONITORED;
874}
875
876/*
877 * Register this NLM host with the local NSM so that we can be
878 * notified if it reboots.
879 */
880static void
881nlm_host_monitor(struct nlm_host *host, int state)
882{
883	mon smmon;
884	sm_stat_res smstat;
885	struct timeval timo;
886	enum clnt_stat stat;
887
888	if (host->nh_state && state && host->nh_state != state) {
889		/*
890		 * The host rebooted without telling us. Trash its
891		 * locks.
892		 */
893		nlm_host_notify(host, state, FALSE);
894	}
895
896	if (state && !host->nh_state) {
897		/*
898		 * This is the first time we have seen an NSM state
899		 * value for this host. We record it here to help
900		 * detect host reboots.
901		 */
902		host->nh_state = state;
903		if (nlm_debug_level >= 1)
904			printf("NLM: host %s (sysid %d) has NSM state %d\n",
905			    host->nh_caller_name, host->nh_sysid, state);
906	}
907
908	if (host->nh_monstate != NLM_UNMONITORED)
909		return;
910
911	if (nlm_debug_level >= 1)
912		printf("NLM: monitoring %s (sysid %d)\n",
913		    host->nh_caller_name, host->nh_sysid);
914
915	/*
916	 * We put our assigned system ID value in the priv field to
917	 * make it simpler to find the host if we are notified of a
918	 * host restart.
919	 */
920	smmon.mon_id.mon_name = host->nh_caller_name;
921	smmon.mon_id.my_id.my_name = "localhost";
922	smmon.mon_id.my_id.my_prog = NLM_PROG;
923	smmon.mon_id.my_id.my_vers = NLM_SM;
924	smmon.mon_id.my_id.my_proc = NLM_SM_NOTIFY;
925	memcpy(smmon.priv, &host->nh_sysid, sizeof(host->nh_sysid));
926
927	timo.tv_sec = 25;
928	timo.tv_usec = 0;
929	stat = CLNT_CALL(nlm_nsm, SM_MON,
930	    (xdrproc_t) xdr_mon, &smmon,
931	    (xdrproc_t) xdr_sm_stat, &smstat, timo);
932
933	if (stat != RPC_SUCCESS) {
934		printf("Failed to contact local NSM - rpc error %d\n", stat);
935		return;
936	}
937	if (smstat.res_stat == stat_fail) {
938		printf("Local NSM refuses to monitor %s\n",
939		    host->nh_caller_name);
940		host->nh_monstate = NLM_MONITOR_FAILED;
941		return;
942	}
943
944	host->nh_monstate = NLM_MONITORED;
945}
946
947/*
948 * Return an RPC client handle that can be used to talk to the NLM
949 * running on the given host.
950 */
951CLIENT *
952nlm_host_get_rpc(struct nlm_host *host)
953{
954	struct timeval zero;
955
956	if (host->nh_rpc)
957		return (host->nh_rpc);
958
959	/*
960	 * Set the send timeout to zero - we only use this rpc handle
961	 * for sending async replies which have no return value.
962	 */
963	host->nh_rpc = nlm_get_rpc((struct sockaddr *)&host->nh_addr,
964	    NLM_PROG, host->nh_vers);
965
966	if (host->nh_rpc) {
967		zero.tv_sec = 0;
968		zero.tv_usec = 0;
969		CLNT_CONTROL(host->nh_rpc, CLSET_TIMEOUT, &zero);
970
971		/*
972		 * Monitor the host - if it reboots, the address of
973		 * its NSM might change so we must discard our RPC
974		 * handle.
975		 */
976		nlm_host_monitor(host, 0);
977	}
978
979	return (host->nh_rpc);
980}
981
982/**********************************************************************/
983
984/*
985 * Syscall interface with userland.
986 */
987
988extern void nlm_prog_0(struct svc_req *rqstp, SVCXPRT *transp);
989extern void nlm_prog_1(struct svc_req *rqstp, SVCXPRT *transp);
990extern void nlm_prog_3(struct svc_req *rqstp, SVCXPRT *transp);
991extern void nlm_prog_4(struct svc_req *rqstp, SVCXPRT *transp);
992
993static int
994nlm_register_services(SVCPOOL *pool, int addr_count, char **addrs)
995{
996	static rpcvers_t versions[] = {
997		NLM_SM, NLM_VERS, NLM_VERSX, NLM_VERS4
998	};
999	static void (*dispatchers[])(struct svc_req *, SVCXPRT *) = {
1000		nlm_prog_0, nlm_prog_1, nlm_prog_3, nlm_prog_4
1001	};
1002	static const int version_count = sizeof(versions) / sizeof(versions[0]);
1003
1004	SVCXPRT **xprts;
1005	char netid[16];
1006	char uaddr[128];
1007	struct netconfig *nconf;
1008	int i, j, error;
1009
1010	if (!addr_count) {
1011		printf("NLM: no service addresses given - can't start server");
1012		return (EINVAL);
1013	}
1014
1015	xprts = malloc(addr_count * sizeof(SVCXPRT *), M_NLM, M_WAITOK);
1016	for (i = 0; i < version_count; i++) {
1017		for (j = 0; j < addr_count; j++) {
1018			/*
1019			 * Create transports for the first version and
1020			 * then just register everything else to the
1021			 * same transports.
1022			 */
1023			if (i == 0) {
1024				char *up;
1025
1026				error = copyin(&addrs[2*j], &up,
1027				    sizeof(char*));
1028				if (error)
1029					goto out;
1030				error = copyinstr(up, netid, sizeof(netid),
1031				    NULL);
1032				if (error)
1033					goto out;
1034				error = copyin(&addrs[2*j+1], &up,
1035				    sizeof(char*));
1036				if (error)
1037					goto out;
1038				error = copyinstr(up, uaddr, sizeof(uaddr),
1039				    NULL);
1040				if (error)
1041					goto out;
1042				nconf = getnetconfigent(netid);
1043				if (!nconf) {
1044					printf("Can't lookup netid %s\n",
1045					    netid);
1046					error = EINVAL;
1047					goto out;
1048				}
1049				xprts[j] = svc_tp_create(pool, dispatchers[i],
1050				    NLM_PROG, versions[i], uaddr, nconf);
1051				if (!xprts[j]) {
1052					printf("NLM: unable to create "
1053					    "(NLM_PROG, %d).\n", versions[i]);
1054					error = EINVAL;
1055					goto out;
1056				}
1057				freenetconfigent(nconf);
1058			} else {
1059				nconf = getnetconfigent(xprts[j]->xp_netid);
1060				rpcb_unset(NLM_PROG, versions[i], nconf);
1061				if (!svc_reg(xprts[j], NLM_PROG, versions[i],
1062					dispatchers[i], nconf)) {
1063					printf("NLM: can't register "
1064					    "(NLM_PROG, %d)\n", versions[i]);
1065					error = EINVAL;
1066					goto out;
1067				}
1068			}
1069		}
1070	}
1071	error = 0;
1072out:
1073	free(xprts, M_NLM);
1074	return (error);
1075}
1076
1077/*
1078 * Main server entry point. Contacts the local NSM to get its current
1079 * state and send SM_UNMON_ALL. Registers the NLM services and then
1080 * services requests. Does not return until the server is interrupted
1081 * by a signal.
1082 */
1083static int
1084nlm_server_main(int addr_count, char **addrs)
1085{
1086	struct thread *td = curthread;
1087	int error;
1088	SVCPOOL *pool = NULL;
1089	struct sockopt opt;
1090	int portlow;
1091#ifdef INET6
1092	struct sockaddr_in6 sin6;
1093#endif
1094	struct sockaddr_in sin;
1095	my_id id;
1096	sm_stat smstat;
1097	struct timeval timo;
1098	enum clnt_stat stat;
1099	struct nlm_host *host;
1100
1101	if (nlm_socket) {
1102		printf("NLM: can't start server - it appears to be running already\n");
1103		return (EPERM);
1104	}
1105
1106	memset(&opt, 0, sizeof(opt));
1107
1108	nlm_socket = NULL;
1109	error = socreate(AF_INET, &nlm_socket, SOCK_DGRAM, 0,
1110	    td->td_ucred, td);
1111	if (error) {
1112		printf("NLM: can't create IPv4 socket - error %d\n", error);
1113		return (error);
1114	}
1115	opt.sopt_dir = SOPT_SET;
1116	opt.sopt_level = IPPROTO_IP;
1117	opt.sopt_name = IP_PORTRANGE;
1118	portlow = IP_PORTRANGE_LOW;
1119	opt.sopt_val = &portlow;
1120	opt.sopt_valsize = sizeof(portlow);
1121	sosetopt(nlm_socket, &opt);
1122
1123#ifdef INET6
1124	nlm_socket6 = NULL;
1125	error = socreate(AF_INET6, &nlm_socket6, SOCK_DGRAM, 0,
1126	    td->td_ucred, td);
1127	if (error) {
1128		printf("NLM: can't create IPv6 socket - error %d\n", error);
1129		return (error);
1130	}
1131	opt.sopt_dir = SOPT_SET;
1132	opt.sopt_level = IPPROTO_IPV6;
1133	opt.sopt_name = IPV6_PORTRANGE;
1134	portlow = IPV6_PORTRANGE_LOW;
1135	opt.sopt_val = &portlow;
1136	opt.sopt_valsize = sizeof(portlow);
1137	sosetopt(nlm_socket6, &opt);
1138#endif
1139
1140#ifdef INET6
1141	memset(&sin6, 0, sizeof(sin6));
1142	sin6.sin6_len = sizeof(sin6);
1143	sin6.sin6_family = AF_INET6;
1144	sin6.sin6_addr = in6addr_loopback;
1145	nlm_nsm = nlm_get_rpc((struct sockaddr *) &sin6, SM_PROG, SM_VERS);
1146	if (!nlm_nsm) {
1147#endif
1148		memset(&sin, 0, sizeof(sin));
1149		sin.sin_len = sizeof(sin);
1150		sin.sin_family = AF_INET;
1151		sin.sin_addr.s_addr = htonl(INADDR_LOOPBACK);
1152		nlm_nsm = nlm_get_rpc((struct sockaddr *) &sin, SM_PROG,
1153		    SM_VERS);
1154#ifdef INET6
1155	}
1156#endif
1157
1158	if (!nlm_nsm) {
1159		printf("Can't start NLM - unable to contact NSM\n");
1160		error = EINVAL;
1161		goto out;
1162	}
1163
1164	pool = svcpool_create();
1165
1166	error = nlm_register_services(pool, addr_count, addrs);
1167	if (error)
1168		goto out;
1169
1170	memset(&id, 0, sizeof(id));
1171	id.my_name = "NFS NLM";
1172
1173	timo.tv_sec = 25;
1174	timo.tv_usec = 0;
1175	stat = CLNT_CALL(nlm_nsm, SM_UNMON_ALL,
1176	    (xdrproc_t) xdr_my_id, &id,
1177	    (xdrproc_t) xdr_sm_stat, &smstat, timo);
1178
1179	if (stat != RPC_SUCCESS) {
1180		struct rpc_err err;
1181
1182		CLNT_GETERR(nlm_nsm, &err);
1183		printf("NLM: unexpected error contacting NSM, stat=%d, errno=%d\n",
1184		    stat, err.re_errno);
1185		error = EINVAL;
1186		goto out;
1187	}
1188
1189	if (nlm_debug_level >= 1)
1190		printf("NLM: local NSM state is %d\n", smstat.state);
1191
1192	svc_run(pool);
1193	error = 0;
1194
1195out:
1196	if (pool)
1197		svcpool_destroy(pool);
1198
1199	/*
1200	 * Trash all the existing state so that if the server
1201	 * restarts, it gets a clean slate.
1202	 */
1203	while ((host = TAILQ_FIRST(&nlm_hosts)) != NULL) {
1204		nlm_host_notify(host, 0, TRUE);
1205	}
1206	if (nlm_nsm) {
1207		AUTH_DESTROY(nlm_nsm->cl_auth);
1208		CLNT_DESTROY(nlm_nsm);
1209		nlm_nsm = NULL;
1210	}
1211	if (nlm_lockd) {
1212		AUTH_DESTROY(nlm_lockd->cl_auth);
1213		CLNT_DESTROY(nlm_lockd);
1214		nlm_lockd = NULL;
1215	}
1216
1217	soclose(nlm_socket);
1218	nlm_socket = NULL;
1219#ifdef INET6
1220	soclose(nlm_socket6);
1221	nlm_socket6 = NULL;
1222#endif
1223
1224	return (error);
1225}
1226
1227int
1228nlm_syscall(struct thread *td, struct nlm_syscall_args *uap)
1229{
1230	int error;
1231
1232#if __FreeBSD_version >= 700000
1233	error = priv_check(td, PRIV_NFS_LOCKD);
1234#else
1235	error = suser(td);
1236#endif
1237	if (error)
1238		return (error);
1239
1240	nlm_debug_level = uap->debug_level;
1241	nlm_grace_threshold = time_uptime + uap->grace_period;
1242	nlm_next_idle_check = time_uptime + NLM_IDLE_PERIOD;
1243
1244	return nlm_server_main(uap->addr_count, uap->addrs);
1245}
1246
1247/**********************************************************************/
1248
1249/*
1250 * NLM implementation details, called from the RPC stubs.
1251 */
1252
1253
1254void
1255nlm_sm_notify(struct nlm_sm_status *argp)
1256{
1257	uint32_t sysid;
1258	struct nlm_host *host;
1259
1260	if (nlm_debug_level >= 3)
1261		printf("nlm_sm_notify(): mon_name = %s\n", argp->mon_name);
1262	memcpy(&sysid, &argp->priv, sizeof(sysid));
1263	host = nlm_find_host_by_sysid(sysid);
1264	if (host)
1265		nlm_host_notify(host, argp->state, FALSE);
1266}
1267
1268static void
1269nlm_convert_to_fhandle_t(fhandle_t *fhp, struct netobj *p)
1270{
1271	memcpy(fhp, p->n_bytes, sizeof(fhandle_t));
1272}
1273
1274struct vfs_state {
1275	struct mount	*vs_mp;
1276	struct vnode	*vs_vp;
1277	int		vs_vfslocked;
1278	int		vs_vnlocked;
1279};
1280
1281static int
1282nlm_get_vfs_state(struct nlm_host *host, struct svc_req *rqstp,
1283    fhandle_t *fhp, struct vfs_state *vs)
1284{
1285	int error, exflags, freecred;
1286	struct ucred *cred = NULL, *credanon;
1287
1288	memset(vs, 0, sizeof(*vs));
1289	freecred = FALSE;
1290
1291	vs->vs_mp = vfs_getvfs(&fhp->fh_fsid);
1292	if (!vs->vs_mp) {
1293		return (ESTALE);
1294	}
1295	vs->vs_vfslocked = VFS_LOCK_GIANT(vs->vs_mp);
1296
1297	error = VFS_CHECKEXP(vs->vs_mp, (struct sockaddr *)&host->nh_addr,
1298	    &exflags, &credanon);
1299	if (error)
1300		goto out;
1301
1302	if (exflags & MNT_EXRDONLY || (vs->vs_mp->mnt_flag & MNT_RDONLY)) {
1303		error = EROFS;
1304		goto out;
1305	}
1306
1307	error = VFS_FHTOVP(vs->vs_mp, &fhp->fh_fid, &vs->vs_vp);
1308	if (error)
1309		goto out;
1310	vs->vs_vnlocked = TRUE;
1311
1312	cred = crget();
1313	freecred = TRUE;
1314	if (!svc_getcred(rqstp, cred, NULL)) {
1315		error = EINVAL;
1316		goto out;
1317	}
1318	if (cred->cr_uid == 0 || (exflags & MNT_EXPORTANON)) {
1319		crfree(cred);
1320		cred = credanon;
1321		freecred = FALSE;
1322	}
1323
1324	/*
1325	 * Check cred.
1326	 */
1327	error = VOP_ACCESS(vs->vs_vp, VWRITE, cred, curthread);
1328	if (error)
1329		goto out;
1330
1331#if __FreeBSD_version < 800011
1332	VOP_UNLOCK(vs->vs_vp, 0, curthread);
1333#else
1334	VOP_UNLOCK(vs->vs_vp, 0);
1335#endif
1336	vs->vs_vnlocked = FALSE;
1337
1338out:
1339	if (freecred)
1340		crfree(cred);
1341
1342	return (error);
1343}
1344
1345static void
1346nlm_release_vfs_state(struct vfs_state *vs)
1347{
1348
1349	if (vs->vs_vp) {
1350		if (vs->vs_vnlocked)
1351			vput(vs->vs_vp);
1352		else
1353			vrele(vs->vs_vp);
1354	}
1355	if (vs->vs_mp)
1356		vfs_rel(vs->vs_mp);
1357	VFS_UNLOCK_GIANT(vs->vs_vfslocked);
1358}
1359
1360static nlm4_stats
1361nlm_convert_error(int error)
1362{
1363
1364	if (error == ESTALE)
1365		return nlm4_stale_fh;
1366	else if (error == EROFS)
1367		return nlm4_rofs;
1368	else
1369		return nlm4_failed;
1370}
1371
1372struct nlm_host *
1373nlm_do_test(nlm4_testargs *argp, nlm4_testres *result, struct svc_req *rqstp)
1374{
1375	fhandle_t fh;
1376	struct vfs_state vs;
1377	struct nlm_host *host, *bhost;
1378	int error, sysid;
1379	struct flock fl;
1380
1381	memset(result, 0, sizeof(*result));
1382
1383	host = nlm_find_host_by_name(argp->alock.caller_name, rqstp);
1384	if (!host) {
1385		result->stat.stat = nlm4_denied_nolocks;
1386		return (NULL);
1387	}
1388
1389	if (nlm_debug_level >= 3)
1390		printf("nlm_do_test(): caller_name = %s (sysid = %d)\n",
1391		    host->nh_caller_name, host->nh_sysid);
1392
1393	nlm_free_finished_locks(host);
1394	sysid = host->nh_sysid;
1395
1396	nlm_convert_to_fhandle_t(&fh, &argp->alock.fh);
1397	nlm_copy_netobj(&result->cookie, &argp->cookie, M_RPC);
1398
1399	if (time_uptime < nlm_grace_threshold) {
1400		result->stat.stat = nlm4_denied_grace_period;
1401		return (host);
1402	}
1403
1404	error = nlm_get_vfs_state(host, rqstp, &fh, &vs);
1405	if (error) {
1406		result->stat.stat = nlm_convert_error(error);
1407		goto out;
1408	}
1409
1410	fl.l_start = argp->alock.l_offset;
1411	fl.l_len = argp->alock.l_len;
1412	fl.l_pid = argp->alock.svid;
1413	fl.l_sysid = sysid;
1414	fl.l_whence = SEEK_SET;
1415	if (argp->exclusive)
1416		fl.l_type = F_WRLCK;
1417	else
1418		fl.l_type = F_RDLCK;
1419	error = VOP_ADVLOCK(vs.vs_vp, NULL, F_GETLK, &fl, F_REMOTE);
1420	if (error) {
1421		result->stat.stat = nlm4_failed;
1422		goto out;
1423	}
1424
1425	if (fl.l_type == F_UNLCK) {
1426		result->stat.stat = nlm4_granted;
1427	} else {
1428		result->stat.stat = nlm4_denied;
1429		result->stat.nlm4_testrply_u.holder.exclusive =
1430			(fl.l_type == F_WRLCK);
1431		result->stat.nlm4_testrply_u.holder.svid = fl.l_pid;
1432		bhost = nlm_find_host_by_sysid(fl.l_sysid);
1433		if (bhost) {
1434			/*
1435			 * We don't have any useful way of recording
1436			 * the value of oh used in the original lock
1437			 * request. Ideally, the test reply would have
1438			 * a space for the owning host's name allowing
1439			 * our caller's NLM to keep track.
1440			 *
1441			 * As far as I can see, Solaris uses an eight
1442			 * byte structure for oh which contains a four
1443			 * byte pid encoded in local byte order and
1444			 * the first four bytes of the host
1445			 * name. Linux uses a variable length string
1446			 * 'pid@hostname' in ascii but doesn't even
1447			 * return that in test replies.
1448			 *
1449			 * For the moment, return nothing in oh
1450			 * (already zero'ed above).
1451			 */
1452		}
1453		result->stat.nlm4_testrply_u.holder.l_offset = fl.l_start;
1454		result->stat.nlm4_testrply_u.holder.l_len = fl.l_len;
1455	}
1456
1457out:
1458	nlm_release_vfs_state(&vs);
1459	return (host);
1460}
1461
1462struct nlm_host *
1463nlm_do_lock(nlm4_lockargs *argp, nlm4_res *result, struct svc_req *rqstp,
1464    bool_t monitor)
1465{
1466	fhandle_t fh;
1467	struct vfs_state vs;
1468	struct nlm_host *host;
1469	int error, sysid;
1470	struct flock fl;
1471
1472	memset(result, 0, sizeof(*result));
1473
1474	host = nlm_find_host_by_name(argp->alock.caller_name, rqstp);
1475	if (!host) {
1476		result->stat.stat = nlm4_denied_nolocks;
1477		return (NULL);
1478	}
1479
1480	if (nlm_debug_level >= 3)
1481		printf("nlm_do_lock(): caller_name = %s (sysid = %d)\n",
1482		    host->nh_caller_name, host->nh_sysid);
1483
1484	nlm_free_finished_locks(host);
1485	sysid = host->nh_sysid;
1486
1487	nlm_convert_to_fhandle_t(&fh, &argp->alock.fh);
1488	nlm_copy_netobj(&result->cookie, &argp->cookie, M_RPC);
1489
1490	if (time_uptime < nlm_grace_threshold && !argp->reclaim) {
1491		result->stat.stat = nlm4_denied_grace_period;
1492		return (host);
1493	}
1494
1495	error = nlm_get_vfs_state(host, rqstp, &fh, &vs);
1496	if (error) {
1497		result->stat.stat = nlm_convert_error(error);
1498		goto out;
1499	}
1500
1501	fl.l_start = argp->alock.l_offset;
1502	fl.l_len = argp->alock.l_len;
1503	fl.l_pid = argp->alock.svid;
1504	fl.l_sysid = sysid;
1505	fl.l_whence = SEEK_SET;
1506	if (argp->exclusive)
1507		fl.l_type = F_WRLCK;
1508	else
1509		fl.l_type = F_RDLCK;
1510	if (argp->block) {
1511		struct nlm_async_lock *af;
1512
1513		/*
1514		 * First, make sure we can contact the host's NLM.
1515		 */
1516		if (!nlm_host_get_rpc(host)) {
1517			result->stat.stat = nlm4_failed;
1518			goto out;
1519		}
1520
1521		/*
1522		 * First we need to check and see if there is an
1523		 * existing blocked lock that matches. This could be a
1524		 * badly behaved client or an RPC re-send. If we find
1525		 * one, just return nlm4_blocked.
1526		 */
1527		mtx_lock(&host->nh_lock);
1528		TAILQ_FOREACH(af, &host->nh_pending, af_link) {
1529			if (af->af_fl.l_start == fl.l_start
1530			    && af->af_fl.l_len == fl.l_len
1531			    && af->af_fl.l_pid == fl.l_pid
1532			    && af->af_fl.l_type == fl.l_type) {
1533				break;
1534			}
1535		}
1536		mtx_unlock(&host->nh_lock);
1537		if (af) {
1538			result->stat.stat = nlm4_blocked;
1539			goto out;
1540		}
1541
1542		af = malloc(sizeof(struct nlm_async_lock), M_NLM,
1543		    M_WAITOK|M_ZERO);
1544		TASK_INIT(&af->af_task, 0, nlm_lock_callback, af);
1545		af->af_vp = vs.vs_vp;
1546		af->af_fl = fl;
1547		af->af_host = host;
1548		/*
1549		 * We use M_RPC here so that we can xdr_free the thing
1550		 * later.
1551		 */
1552		af->af_granted.exclusive = argp->exclusive;
1553		af->af_granted.alock.caller_name =
1554			strdup(argp->alock.caller_name, M_RPC);
1555		nlm_copy_netobj(&af->af_granted.alock.fh,
1556		    &argp->alock.fh, M_RPC);
1557		nlm_copy_netobj(&af->af_granted.alock.oh,
1558		    &argp->alock.oh, M_RPC);
1559		af->af_granted.alock.svid = argp->alock.svid;
1560		af->af_granted.alock.l_offset = argp->alock.l_offset;
1561		af->af_granted.alock.l_len = argp->alock.l_len;
1562
1563		/*
1564		 * Put the entry on the pending list before calling
1565		 * VOP_ADVLOCKASYNC. We do this in case the lock
1566		 * request was blocked (returning EINPROGRESS) but
1567		 * then granted before we manage to run again. The
1568		 * client may receive the granted message before we
1569		 * send our blocked reply but thats their problem.
1570		 */
1571		mtx_lock(&host->nh_lock);
1572		TAILQ_INSERT_TAIL(&host->nh_pending, af, af_link);
1573		mtx_unlock(&host->nh_lock);
1574
1575		error = VOP_ADVLOCKASYNC(vs.vs_vp, NULL, F_SETLK, &fl, F_REMOTE,
1576		    &af->af_task, &af->af_cookie);
1577
1578		/*
1579		 * If the lock completed synchronously, just free the
1580		 * tracking structure now.
1581		 */
1582		if (error != EINPROGRESS) {
1583			mtx_lock(&host->nh_lock);
1584			TAILQ_REMOVE(&host->nh_pending, af, af_link);
1585			mtx_unlock(&host->nh_lock);
1586			xdr_free((xdrproc_t) xdr_nlm4_testargs,
1587			    &af->af_granted);
1588			free(af, M_NLM);
1589		} else {
1590			if (nlm_debug_level >= 2)
1591				printf("NLM: pending async lock %p for %s "
1592				    "(sysid %d)\n",
1593				    af, host->nh_caller_name, sysid);
1594			/*
1595			 * Don't vrele the vnode just yet - this must
1596			 * wait until either the async callback
1597			 * happens or the lock is cancelled.
1598			 */
1599			vs.vs_vp = NULL;
1600		}
1601	} else {
1602		error = VOP_ADVLOCK(vs.vs_vp, NULL, F_SETLK, &fl, F_REMOTE);
1603	}
1604
1605	if (error) {
1606		if (error == EINPROGRESS) {
1607			result->stat.stat = nlm4_blocked;
1608		} else if (error == EDEADLK) {
1609			result->stat.stat = nlm4_deadlck;
1610		} else if (error == EAGAIN) {
1611			result->stat.stat = nlm4_denied;
1612		} else {
1613			result->stat.stat = nlm4_failed;
1614		}
1615	} else {
1616		if (monitor)
1617			nlm_host_monitor(host, argp->state);
1618		result->stat.stat = nlm4_granted;
1619	}
1620
1621out:
1622	nlm_release_vfs_state(&vs);
1623
1624	return (host);
1625}
1626
1627struct nlm_host *
1628nlm_do_cancel(nlm4_cancargs *argp, nlm4_res *result, struct svc_req *rqstp)
1629{
1630	fhandle_t fh;
1631	struct vfs_state vs;
1632	struct nlm_host *host;
1633	int error, sysid;
1634	struct flock fl;
1635	struct nlm_async_lock *af;
1636
1637	memset(result, 0, sizeof(*result));
1638
1639	host = nlm_find_host_by_name(argp->alock.caller_name, rqstp);
1640	if (!host) {
1641		result->stat.stat = nlm4_denied_nolocks;
1642		return (NULL);
1643	}
1644
1645	if (nlm_debug_level >= 3)
1646		printf("nlm_do_cancel(): caller_name = %s (sysid = %d)\n",
1647		    host->nh_caller_name, host->nh_sysid);
1648
1649	nlm_free_finished_locks(host);
1650	sysid = host->nh_sysid;
1651
1652	nlm_convert_to_fhandle_t(&fh, &argp->alock.fh);
1653	nlm_copy_netobj(&result->cookie, &argp->cookie, M_RPC);
1654
1655	if (time_uptime < nlm_grace_threshold) {
1656		result->stat.stat = nlm4_denied_grace_period;
1657		return (host);
1658	}
1659
1660	error = nlm_get_vfs_state(host, rqstp, &fh, &vs);
1661	if (error) {
1662		result->stat.stat = nlm_convert_error(error);
1663		goto out;
1664	}
1665
1666	fl.l_start = argp->alock.l_offset;
1667	fl.l_len = argp->alock.l_len;
1668	fl.l_pid = argp->alock.svid;
1669	fl.l_sysid = sysid;
1670	fl.l_whence = SEEK_SET;
1671	if (argp->exclusive)
1672		fl.l_type = F_WRLCK;
1673	else
1674		fl.l_type = F_RDLCK;
1675
1676	/*
1677	 * First we need to try and find the async lock request - if
1678	 * there isn't one, we give up and return nlm4_denied.
1679	 */
1680	mtx_lock(&host->nh_lock);
1681
1682	TAILQ_FOREACH(af, &host->nh_pending, af_link) {
1683		if (af->af_fl.l_start == fl.l_start
1684		    && af->af_fl.l_len == fl.l_len
1685		    && af->af_fl.l_pid == fl.l_pid
1686		    && af->af_fl.l_type == fl.l_type) {
1687			break;
1688		}
1689	}
1690
1691	if (!af) {
1692		mtx_unlock(&host->nh_lock);
1693		result->stat.stat = nlm4_denied;
1694		goto out;
1695	}
1696
1697	error = nlm_cancel_async_lock(af);
1698
1699	if (error) {
1700		result->stat.stat = nlm4_denied;
1701	} else {
1702		result->stat.stat = nlm4_granted;
1703	}
1704
1705	mtx_unlock(&host->nh_lock);
1706
1707out:
1708	nlm_release_vfs_state(&vs);
1709
1710	return (host);
1711}
1712
1713struct nlm_host *
1714nlm_do_unlock(nlm4_unlockargs *argp, nlm4_res *result, struct svc_req *rqstp)
1715{
1716	fhandle_t fh;
1717	struct vfs_state vs;
1718	struct nlm_host *host;
1719	int error, sysid;
1720	struct flock fl;
1721
1722	memset(result, 0, sizeof(*result));
1723
1724	host = nlm_find_host_by_name(argp->alock.caller_name, rqstp);
1725	if (!host) {
1726		result->stat.stat = nlm4_denied_nolocks;
1727		return (NULL);
1728	}
1729
1730	if (nlm_debug_level >= 3)
1731		printf("nlm_do_unlock(): caller_name = %s (sysid = %d)\n",
1732		    host->nh_caller_name, host->nh_sysid);
1733
1734	nlm_free_finished_locks(host);
1735	sysid = host->nh_sysid;
1736
1737	nlm_convert_to_fhandle_t(&fh, &argp->alock.fh);
1738	nlm_copy_netobj(&result->cookie, &argp->cookie, M_RPC);
1739
1740	if (time_uptime < nlm_grace_threshold) {
1741		result->stat.stat = nlm4_denied_grace_period;
1742		return (host);
1743	}
1744
1745	error = nlm_get_vfs_state(host, rqstp, &fh, &vs);
1746	if (error) {
1747		result->stat.stat = nlm_convert_error(error);
1748		goto out;
1749	}
1750
1751	fl.l_start = argp->alock.l_offset;
1752	fl.l_len = argp->alock.l_len;
1753	fl.l_pid = argp->alock.svid;
1754	fl.l_sysid = sysid;
1755	fl.l_whence = SEEK_SET;
1756	fl.l_type = F_UNLCK;
1757	error = VOP_ADVLOCK(vs.vs_vp, NULL, F_UNLCK, &fl, F_REMOTE);
1758
1759	/*
1760	 * Ignore the error - there is no result code for failure,
1761	 * only for grace period.
1762	 */
1763	result->stat.stat = nlm4_granted;
1764
1765out:
1766	nlm_release_vfs_state(&vs);
1767
1768	return (host);
1769}
1770
1771void
1772nlm_do_free_all(nlm4_notify *argp)
1773{
1774	struct nlm_host *host, *thost;
1775
1776	TAILQ_FOREACH_SAFE(host, &nlm_hosts, nh_link, thost) {
1777		if (!strcmp(host->nh_caller_name, argp->name))
1778			nlm_host_notify(host, argp->state, FALSE);
1779	}
1780}
1781
1782#define _PATH_RPCLOCKDSOCK	"/var/run/rpclockd.sock"
1783
1784/*
1785 * Make a connection to the userland lockd - we push anything we can't
1786 * handle out to userland.
1787 */
1788CLIENT *
1789nlm_user_lockd(void)
1790{
1791	struct sockaddr_un sun;
1792	struct netconfig *nconf;
1793	struct timeval zero;
1794
1795	if (nlm_lockd)
1796		return (nlm_lockd);
1797
1798	sun.sun_family = AF_LOCAL;
1799	strcpy(sun.sun_path, _PATH_RPCLOCKDSOCK);
1800	sun.sun_len = SUN_LEN(&sun);
1801
1802	nconf = getnetconfigent("local");
1803	nlm_lockd = clnt_reconnect_create(nconf, (struct sockaddr *) &sun,
1804	    NLM_PROG, NLM_VERS4, RPC_MAXDATASIZE, RPC_MAXDATASIZE);
1805
1806	/*
1807	 * Set the send timeout to zero - we only use this rpc handle
1808	 * for sending async replies which have no return value.
1809	 */
1810	zero.tv_sec = 0;
1811	zero.tv_usec = 0;
1812	CLNT_CONTROL(nlm_lockd, CLSET_TIMEOUT, &zero);
1813
1814	return (nlm_lockd);
1815}
1816
1817/*
1818 * Kernel module glue
1819 */
1820static int
1821nfslockd_modevent(module_t mod, int type, void *data)
1822{
1823
1824	return (0);
1825}
1826static moduledata_t nfslockd_mod = {
1827	"nfslockd",
1828	nfslockd_modevent,
1829	NULL,
1830};
1831DECLARE_MODULE(nfslockd, nfslockd_mod, SI_SUB_VFS, SI_ORDER_ANY);
1832
1833/* So that loader and kldload(2) can find us, wherever we are.. */
1834MODULE_DEPEND(nfslockd, krpc, 1, 1, 1);
1835MODULE_VERSION(nfslockd, 1);
1836