4 * The kernel statd client.
6 * Copyright (C) 1996, Olaf Kirch <okir@monad.swb.de>
9 #include <linux/types.h>
10 #include <linux/kernel.h>
11 #include <linux/ktime.h>
12 #include <linux/slab.h>
14 #include <linux/sunrpc/clnt.h>
15 #include <linux/sunrpc/xprtsock.h>
16 #include <linux/sunrpc/svc.h>
17 #include <linux/lockd/lockd.h>
19 #include <asm/unaligned.h>
23 #define NLMDBG_FACILITY NLMDBG_MONITOR
24 #define NSM_PROGRAM 100024
38 struct nsm_private
*priv
;
39 u32 prog
; /* RPC callback info */
52 static const struct rpc_program nsm_program
;
53 static LIST_HEAD(nsm_handles
);
54 static DEFINE_SPINLOCK(nsm_lock
);
59 u32 __read_mostly nsm_local_state
;
60 bool __read_mostly nsm_use_hostnames
;
62 static inline struct sockaddr
*nsm_addr(const struct nsm_handle
*nsm
)
64 return (struct sockaddr
*)&nsm
->sm_addr
;
67 static struct rpc_clnt
*nsm_create(struct net
*net
)
69 struct sockaddr_in sin
= {
70 .sin_family
= AF_INET
,
71 .sin_addr
.s_addr
= htonl(INADDR_LOOPBACK
),
73 struct rpc_create_args args
= {
75 .protocol
= XPRT_TRANSPORT_TCP
,
76 .address
= (struct sockaddr
*)&sin
,
77 .addrsize
= sizeof(sin
),
78 .servername
= "rpc.statd",
79 .program
= &nsm_program
,
80 .version
= NSM_VERSION
,
81 .authflavor
= RPC_AUTH_NULL
,
82 .flags
= RPC_CLNT_CREATE_NOPING
,
85 return rpc_create(&args
);
88 static struct rpc_clnt
*nsm_client_set(struct lockd_net
*ln
,
89 struct rpc_clnt
*clnt
)
91 spin_lock(&ln
->nsm_clnt_lock
);
92 if (ln
->nsm_users
== 0) {
100 spin_unlock(&ln
->nsm_clnt_lock
);
104 static struct rpc_clnt
*nsm_client_get(struct net
*net
)
106 struct rpc_clnt
*clnt
, *new;
107 struct lockd_net
*ln
= net_generic(net
, lockd_net_id
);
109 clnt
= nsm_client_set(ln
, NULL
);
113 clnt
= new = nsm_create(net
);
117 clnt
= nsm_client_set(ln
, new);
119 rpc_shutdown_client(new);
124 static void nsm_client_put(struct net
*net
)
126 struct lockd_net
*ln
= net_generic(net
, lockd_net_id
);
127 struct rpc_clnt
*clnt
= NULL
;
129 spin_lock(&ln
->nsm_clnt_lock
);
131 if (ln
->nsm_users
== 0) {
135 spin_unlock(&ln
->nsm_clnt_lock
);
137 rpc_shutdown_client(clnt
);
140 static int nsm_mon_unmon(struct nsm_handle
*nsm
, u32 proc
, struct nsm_res
*res
,
141 struct rpc_clnt
*clnt
)
144 struct nsm_args args
= {
145 .priv
= &nsm
->sm_priv
,
148 .proc
= NLMPROC_NSM_NOTIFY
,
149 .mon_name
= nsm
->sm_mon_name
,
150 .nodename
= clnt
->cl_nodename
,
152 struct rpc_message msg
= {
157 BUG_ON(clnt
== NULL
);
159 memset(res
, 0, sizeof(*res
));
161 msg
.rpc_proc
= &clnt
->cl_procinfo
[proc
];
162 status
= rpc_call_sync(clnt
, &msg
, RPC_TASK_SOFTCONN
);
164 dprintk("lockd: NSM upcall RPC failed, status=%d\n",
172 * nsm_monitor - Notify a peer in case we reboot
173 * @host: pointer to nlm_host of peer to notify
175 * If this peer is not already monitored, this function sends an
176 * upcall to the local rpc.statd to record the name/address of
177 * the peer to notify in case we reboot.
179 * Returns zero if the peer is monitored by the local rpc.statd;
180 * otherwise a negative errno value is returned.
182 int nsm_monitor(const struct nlm_host
*host
)
184 struct nsm_handle
*nsm
= host
->h_nsmhandle
;
187 struct rpc_clnt
*clnt
;
189 dprintk("lockd: nsm_monitor(%s)\n", nsm
->sm_name
);
191 if (nsm
->sm_monitored
)
195 * Choose whether to record the caller_name or IP address of
196 * this peer in the local rpc.statd's database.
198 nsm
->sm_mon_name
= nsm_use_hostnames
? nsm
->sm_name
: nsm
->sm_addrbuf
;
200 clnt
= nsm_client_get(host
->net
);
202 status
= PTR_ERR(clnt
);
203 dprintk("lockd: failed to create NSM upcall transport, "
204 "status=%d, net=%p\n", status
, host
->net
);
208 status
= nsm_mon_unmon(nsm
, NSMPROC_MON
, &res
, clnt
);
209 if (unlikely(res
.status
!= 0))
211 if (unlikely(status
< 0)) {
212 printk(KERN_NOTICE
"lockd: cannot monitor %s\n", nsm
->sm_name
);
216 nsm
->sm_monitored
= 1;
217 if (unlikely(nsm_local_state
!= res
.state
)) {
218 nsm_local_state
= res
.state
;
219 dprintk("lockd: NSM state changed to %d\n", nsm_local_state
);
225 * nsm_unmonitor - Unregister peer notification
226 * @host: pointer to nlm_host of peer to stop monitoring
228 * If this peer is monitored, this function sends an upcall to
229 * tell the local rpc.statd not to send this peer a notification
232 void nsm_unmonitor(const struct nlm_host
*host
)
234 struct nsm_handle
*nsm
= host
->h_nsmhandle
;
238 if (atomic_read(&nsm
->sm_count
) == 1
239 && nsm
->sm_monitored
&& !nsm
->sm_sticky
) {
240 struct lockd_net
*ln
= net_generic(host
->net
, lockd_net_id
);
242 dprintk("lockd: nsm_unmonitor(%s)\n", nsm
->sm_name
);
244 status
= nsm_mon_unmon(nsm
, NSMPROC_UNMON
, &res
, ln
->nsm_clnt
);
248 printk(KERN_NOTICE
"lockd: cannot unmonitor %s\n",
251 nsm
->sm_monitored
= 0;
253 nsm_client_put(host
->net
);
257 static struct nsm_handle
*nsm_lookup_hostname(const char *hostname
,
260 struct nsm_handle
*nsm
;
262 list_for_each_entry(nsm
, &nsm_handles
, sm_link
)
263 if (strlen(nsm
->sm_name
) == len
&&
264 memcmp(nsm
->sm_name
, hostname
, len
) == 0)
269 static struct nsm_handle
*nsm_lookup_addr(const struct sockaddr
*sap
)
271 struct nsm_handle
*nsm
;
273 list_for_each_entry(nsm
, &nsm_handles
, sm_link
)
274 if (rpc_cmp_addr(nsm_addr(nsm
), sap
))
279 static struct nsm_handle
*nsm_lookup_priv(const struct nsm_private
*priv
)
281 struct nsm_handle
*nsm
;
283 list_for_each_entry(nsm
, &nsm_handles
, sm_link
)
284 if (memcmp(nsm
->sm_priv
.data
, priv
->data
,
285 sizeof(priv
->data
)) == 0)
291 * Construct a unique cookie to match this nsm_handle to this monitored
292 * host. It is passed to the local rpc.statd via NSMPROC_MON, and
293 * returned via NLMPROC_SM_NOTIFY, in the "priv" field of these
296 * The NSM protocol requires that these cookies be unique while the
297 * system is running. We prefer a stronger requirement of making them
298 * unique across reboots. If user space bugs cause a stale cookie to
299 * be sent to the kernel, it could cause the wrong host to lose its
300 * lock state if cookies were not unique across reboots.
302 * The cookies are exposed only to local user space via loopback. They
303 * do not appear on the physical network. If we want greater security
304 * for some reason, nsm_init_private() could perform a one-way hash to
305 * obscure the contents of the cookie.
307 static void nsm_init_private(struct nsm_handle
*nsm
)
309 u64
*p
= (u64
*)&nsm
->sm_priv
.data
;
314 ns
= timespec_to_ns(&ts
);
315 put_unaligned(ns
, p
);
316 put_unaligned((unsigned long)nsm
, p
+ 1);
319 static struct nsm_handle
*nsm_create_handle(const struct sockaddr
*sap
,
321 const char *hostname
,
322 const size_t hostname_len
)
324 struct nsm_handle
*new;
326 new = kzalloc(sizeof(*new) + hostname_len
+ 1, GFP_KERNEL
);
327 if (unlikely(new == NULL
))
330 atomic_set(&new->sm_count
, 1);
331 new->sm_name
= (char *)(new + 1);
332 memcpy(nsm_addr(new), sap
, salen
);
333 new->sm_addrlen
= salen
;
334 nsm_init_private(new);
336 if (rpc_ntop(nsm_addr(new), new->sm_addrbuf
,
337 sizeof(new->sm_addrbuf
)) == 0)
338 (void)snprintf(new->sm_addrbuf
, sizeof(new->sm_addrbuf
),
339 "unsupported address family");
340 memcpy(new->sm_name
, hostname
, hostname_len
);
341 new->sm_name
[hostname_len
] = '\0';
347 * nsm_get_handle - Find or create a cached nsm_handle
348 * @sap: pointer to socket address of handle to find
349 * @salen: length of socket address
350 * @hostname: pointer to C string containing hostname to find
351 * @hostname_len: length of C string
353 * Behavior is modulated by the global nsm_use_hostnames variable.
355 * Returns a cached nsm_handle after bumping its ref count, or
356 * returns a fresh nsm_handle if a handle that matches @sap and/or
357 * @hostname cannot be found in the handle cache. Returns NULL if
360 struct nsm_handle
*nsm_get_handle(const struct sockaddr
*sap
,
361 const size_t salen
, const char *hostname
,
362 const size_t hostname_len
)
364 struct nsm_handle
*cached
, *new = NULL
;
366 if (hostname
&& memchr(hostname
, '/', hostname_len
) != NULL
) {
367 if (printk_ratelimit()) {
368 printk(KERN_WARNING
"Invalid hostname \"%.*s\" "
369 "in NFS lock request\n",
370 (int)hostname_len
, hostname
);
376 spin_lock(&nsm_lock
);
378 if (nsm_use_hostnames
&& hostname
!= NULL
)
379 cached
= nsm_lookup_hostname(hostname
, hostname_len
);
381 cached
= nsm_lookup_addr(sap
);
383 if (cached
!= NULL
) {
384 atomic_inc(&cached
->sm_count
);
385 spin_unlock(&nsm_lock
);
387 dprintk("lockd: found nsm_handle for %s (%s), "
388 "cnt %d\n", cached
->sm_name
,
390 atomic_read(&cached
->sm_count
));
395 list_add(&new->sm_link
, &nsm_handles
);
396 spin_unlock(&nsm_lock
);
397 dprintk("lockd: created nsm_handle for %s (%s)\n",
398 new->sm_name
, new->sm_addrbuf
);
402 spin_unlock(&nsm_lock
);
404 new = nsm_create_handle(sap
, salen
, hostname
, hostname_len
);
405 if (unlikely(new == NULL
))
411 * nsm_reboot_lookup - match NLMPROC_SM_NOTIFY arguments to an nsm_handle
412 * @info: pointer to NLMPROC_SM_NOTIFY arguments
414 * Returns a matching nsm_handle if found in the nsm cache. The returned
415 * nsm_handle's reference count is bumped. Otherwise returns NULL if some
418 struct nsm_handle
*nsm_reboot_lookup(const struct nlm_reboot
*info
)
420 struct nsm_handle
*cached
;
422 spin_lock(&nsm_lock
);
424 cached
= nsm_lookup_priv(&info
->priv
);
425 if (unlikely(cached
== NULL
)) {
426 spin_unlock(&nsm_lock
);
427 dprintk("lockd: never saw rebooted peer '%.*s' before\n",
428 info
->len
, info
->mon
);
432 atomic_inc(&cached
->sm_count
);
433 spin_unlock(&nsm_lock
);
435 dprintk("lockd: host %s (%s) rebooted, cnt %d\n",
436 cached
->sm_name
, cached
->sm_addrbuf
,
437 atomic_read(&cached
->sm_count
));
442 * nsm_release - Release an NSM handle
443 * @nsm: pointer to handle to be released
446 void nsm_release(struct nsm_handle
*nsm
)
448 if (atomic_dec_and_lock(&nsm
->sm_count
, &nsm_lock
)) {
449 list_del(&nsm
->sm_link
);
450 spin_unlock(&nsm_lock
);
451 dprintk("lockd: destroyed nsm_handle for %s (%s)\n",
452 nsm
->sm_name
, nsm
->sm_addrbuf
);
458 * XDR functions for NSM.
460 * See http://www.opengroup.org/ for details on the Network
461 * Status Monitor wire protocol.
464 static void encode_nsm_string(struct xdr_stream
*xdr
, const char *string
)
466 const u32 len
= strlen(string
);
469 BUG_ON(len
> SM_MAXSTRLEN
);
470 p
= xdr_reserve_space(xdr
, 4 + len
);
471 xdr_encode_opaque(p
, string
, len
);
475 * "mon_name" specifies the host to be monitored.
477 static void encode_mon_name(struct xdr_stream
*xdr
, const struct nsm_args
*argp
)
479 encode_nsm_string(xdr
, argp
->mon_name
);
483 * The "my_id" argument specifies the hostname and RPC procedure
484 * to be called when the status manager receives notification
485 * (via the NLMPROC_SM_NOTIFY call) that the state of host "mon_name"
488 static void encode_my_id(struct xdr_stream
*xdr
, const struct nsm_args
*argp
)
492 encode_nsm_string(xdr
, argp
->nodename
);
493 p
= xdr_reserve_space(xdr
, 4 + 4 + 4);
494 *p
++ = cpu_to_be32(argp
->prog
);
495 *p
++ = cpu_to_be32(argp
->vers
);
496 *p
= cpu_to_be32(argp
->proc
);
500 * The "mon_id" argument specifies the non-private arguments
501 * of an NSMPROC_MON or NSMPROC_UNMON call.
503 static void encode_mon_id(struct xdr_stream
*xdr
, const struct nsm_args
*argp
)
505 encode_mon_name(xdr
, argp
);
506 encode_my_id(xdr
, argp
);
510 * The "priv" argument may contain private information required
511 * by the NSMPROC_MON call. This information will be supplied in the
512 * NLMPROC_SM_NOTIFY call.
514 static void encode_priv(struct xdr_stream
*xdr
, const struct nsm_args
*argp
)
518 p
= xdr_reserve_space(xdr
, SM_PRIV_SIZE
);
519 xdr_encode_opaque_fixed(p
, argp
->priv
->data
, SM_PRIV_SIZE
);
522 static void nsm_xdr_enc_mon(struct rpc_rqst
*req
, struct xdr_stream
*xdr
,
523 const struct nsm_args
*argp
)
525 encode_mon_id(xdr
, argp
);
526 encode_priv(xdr
, argp
);
529 static void nsm_xdr_enc_unmon(struct rpc_rqst
*req
, struct xdr_stream
*xdr
,
530 const struct nsm_args
*argp
)
532 encode_mon_id(xdr
, argp
);
535 static int nsm_xdr_dec_stat_res(struct rpc_rqst
*rqstp
,
536 struct xdr_stream
*xdr
,
537 struct nsm_res
*resp
)
541 p
= xdr_inline_decode(xdr
, 4 + 4);
542 if (unlikely(p
== NULL
))
544 resp
->status
= be32_to_cpup(p
++);
545 resp
->state
= be32_to_cpup(p
);
547 dprintk("lockd: %s status %d state %d\n",
548 __func__
, resp
->status
, resp
->state
);
552 static int nsm_xdr_dec_stat(struct rpc_rqst
*rqstp
,
553 struct xdr_stream
*xdr
,
554 struct nsm_res
*resp
)
558 p
= xdr_inline_decode(xdr
, 4);
559 if (unlikely(p
== NULL
))
561 resp
->state
= be32_to_cpup(p
);
563 dprintk("lockd: %s state %d\n", __func__
, resp
->state
);
567 #define SM_my_name_sz (1+XDR_QUADLEN(SM_MAXSTRLEN))
568 #define SM_my_id_sz (SM_my_name_sz+3)
569 #define SM_mon_name_sz (1+XDR_QUADLEN(SM_MAXSTRLEN))
570 #define SM_mon_id_sz (SM_mon_name_sz+SM_my_id_sz)
571 #define SM_priv_sz (XDR_QUADLEN(SM_PRIV_SIZE))
572 #define SM_mon_sz (SM_mon_id_sz+SM_priv_sz)
573 #define SM_monres_sz 2
574 #define SM_unmonres_sz 1
576 static struct rpc_procinfo nsm_procedures
[] = {
578 .p_proc
= NSMPROC_MON
,
579 .p_encode
= (kxdreproc_t
)nsm_xdr_enc_mon
,
580 .p_decode
= (kxdrdproc_t
)nsm_xdr_dec_stat_res
,
581 .p_arglen
= SM_mon_sz
,
582 .p_replen
= SM_monres_sz
,
583 .p_statidx
= NSMPROC_MON
,
587 .p_proc
= NSMPROC_UNMON
,
588 .p_encode
= (kxdreproc_t
)nsm_xdr_enc_unmon
,
589 .p_decode
= (kxdrdproc_t
)nsm_xdr_dec_stat
,
590 .p_arglen
= SM_mon_id_sz
,
591 .p_replen
= SM_unmonres_sz
,
592 .p_statidx
= NSMPROC_UNMON
,
593 .p_name
= "UNMONITOR",
597 static const struct rpc_version nsm_version1
= {
599 .nrprocs
= ARRAY_SIZE(nsm_procedures
),
600 .procs
= nsm_procedures
603 static const struct rpc_version
*nsm_version
[] = {
607 static struct rpc_stat nsm_stats
;
609 static const struct rpc_program nsm_program
= {
611 .number
= NSM_PROGRAM
,
612 .nrvers
= ARRAY_SIZE(nsm_version
),
613 .version
= nsm_version
,