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1 /*
2  *  fs/nfs/nfs4state.c
3  *
4  *  Client-side XDR for NFSv4.
5  *
6  *  Copyright (c) 2002 The Regents of the University of Michigan.
7  *  All rights reserved.
8  *
9  *  Kendrick Smith <kmsmith@umich.edu>
10  *
11  *  Redistribution and use in source and binary forms, with or without
12  *  modification, are permitted provided that the following conditions
13  *  are met:
14  *
15  *  1. Redistributions of source code must retain the above copyright
16  *     notice, this list of conditions and the following disclaimer.
17  *  2. Redistributions in binary form must reproduce the above copyright
18  *     notice, this list of conditions and the following disclaimer in the
19  *     documentation and/or other materials provided with the distribution.
20  *  3. Neither the name of the University nor the names of its
21  *     contributors may be used to endorse or promote products derived
22  *     from this software without specific prior written permission.
23  *
24  *  THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
25  *  WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
26  *  MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
27  *  DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28  *  FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
29  *  CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
30  *  SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
31  *  BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
32  *  LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
33  *  NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
34  *  SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
35  *
36  * Implementation of the NFSv4 state model.  For the time being,
37  * this is minimal, but will be made much more complex in a
38  * subsequent patch.
39  */
40 
41 #include <linux/kernel.h>
42 #include <linux/slab.h>
43 #include <linux/fs.h>
44 #include <linux/nfs_fs.h>
45 #include <linux/kthread.h>
46 #include <linux/module.h>
47 #include <linux/random.h>
48 #include <linux/ratelimit.h>
49 #include <linux/workqueue.h>
50 #include <linux/bitops.h>
51 #include <linux/jiffies.h>
52 #include <linux/sched/mm.h>
53 
54 #include <linux/sunrpc/clnt.h>
55 
56 #include "nfs4_fs.h"
57 #include "callback.h"
58 #include "delegation.h"
59 #include "internal.h"
60 #include "nfs4idmap.h"
61 #include "nfs4session.h"
62 #include "pnfs.h"
63 #include "netns.h"
64 #include "nfs4trace.h"
65 
66 #define NFSDBG_FACILITY		NFSDBG_STATE
67 
68 #define OPENOWNER_POOL_SIZE	8
69 
70 const nfs4_stateid zero_stateid = {
71 	{ .data = { 0 } },
72 	.type = NFS4_SPECIAL_STATEID_TYPE,
73 };
74 const nfs4_stateid invalid_stateid = {
75 	{
76 		/* Funky initialiser keeps older gcc versions happy */
77 		.data = { 0xff, 0xff, 0xff, 0xff, 0 },
78 	},
79 	.type = NFS4_INVALID_STATEID_TYPE,
80 };
81 
82 const nfs4_stateid current_stateid = {
83 	{
84 		/* Funky initialiser keeps older gcc versions happy */
85 		.data = { 0x0, 0x0, 0x0, 0x1, 0 },
86 	},
87 	.type = NFS4_SPECIAL_STATEID_TYPE,
88 };
89 
90 static DEFINE_MUTEX(nfs_clid_init_mutex);
91 
nfs4_setup_state_renewal(struct nfs_client * clp)92 static int nfs4_setup_state_renewal(struct nfs_client *clp)
93 {
94 	int status;
95 	struct nfs_fsinfo fsinfo;
96 
97 	if (!test_bit(NFS_CS_CHECK_LEASE_TIME, &clp->cl_res_state)) {
98 		nfs4_schedule_state_renewal(clp);
99 		return 0;
100 	}
101 
102 	status = nfs4_proc_get_lease_time(clp, &fsinfo);
103 	if (status == 0) {
104 		nfs4_set_lease_period(clp, fsinfo.lease_time * HZ);
105 		nfs4_schedule_state_renewal(clp);
106 	}
107 
108 	return status;
109 }
110 
nfs4_init_clientid(struct nfs_client * clp,const struct cred * cred)111 int nfs4_init_clientid(struct nfs_client *clp, const struct cred *cred)
112 {
113 	struct nfs4_setclientid_res clid = {
114 		.clientid = clp->cl_clientid,
115 		.confirm = clp->cl_confirm,
116 	};
117 	unsigned short port;
118 	int status;
119 	struct nfs_net *nn = net_generic(clp->cl_net, nfs_net_id);
120 
121 	if (test_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state))
122 		goto do_confirm;
123 	port = nn->nfs_callback_tcpport;
124 	if (clp->cl_addr.ss_family == AF_INET6)
125 		port = nn->nfs_callback_tcpport6;
126 
127 	status = nfs4_proc_setclientid(clp, NFS4_CALLBACK, port, cred, &clid);
128 	if (status != 0)
129 		goto out;
130 	clp->cl_clientid = clid.clientid;
131 	clp->cl_confirm = clid.confirm;
132 	set_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state);
133 do_confirm:
134 	status = nfs4_proc_setclientid_confirm(clp, &clid, cred);
135 	if (status != 0)
136 		goto out;
137 	clear_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state);
138 	nfs4_setup_state_renewal(clp);
139 out:
140 	return status;
141 }
142 
143 /**
144  * nfs40_discover_server_trunking - Detect server IP address trunking (mv0)
145  *
146  * @clp: nfs_client under test
147  * @result: OUT: found nfs_client, or clp
148  * @cred: credential to use for trunking test
149  *
150  * Returns zero, a negative errno, or a negative NFS4ERR status.
151  * If zero is returned, an nfs_client pointer is planted in
152  * "result".
153  *
154  * Note: The returned client may not yet be marked ready.
155  */
nfs40_discover_server_trunking(struct nfs_client * clp,struct nfs_client ** result,const struct cred * cred)156 int nfs40_discover_server_trunking(struct nfs_client *clp,
157 				   struct nfs_client **result,
158 				   const struct cred *cred)
159 {
160 	struct nfs4_setclientid_res clid = {
161 		.clientid = clp->cl_clientid,
162 		.confirm = clp->cl_confirm,
163 	};
164 	struct nfs_net *nn = net_generic(clp->cl_net, nfs_net_id);
165 	unsigned short port;
166 	int status;
167 
168 	port = nn->nfs_callback_tcpport;
169 	if (clp->cl_addr.ss_family == AF_INET6)
170 		port = nn->nfs_callback_tcpport6;
171 
172 	status = nfs4_proc_setclientid(clp, NFS4_CALLBACK, port, cred, &clid);
173 	if (status != 0)
174 		goto out;
175 	clp->cl_clientid = clid.clientid;
176 	clp->cl_confirm = clid.confirm;
177 
178 	status = nfs40_walk_client_list(clp, result, cred);
179 	if (status == 0) {
180 		/* Sustain the lease, even if it's empty.  If the clientid4
181 		 * goes stale it's of no use for trunking discovery. */
182 		nfs4_schedule_state_renewal(*result);
183 
184 		/* If the client state need to recover, do it. */
185 		if (clp->cl_state)
186 			nfs4_schedule_state_manager(clp);
187 	}
188 out:
189 	return status;
190 }
191 
nfs4_get_machine_cred(struct nfs_client * clp)192 const struct cred *nfs4_get_machine_cred(struct nfs_client *clp)
193 {
194 	return get_cred(rpc_machine_cred());
195 }
196 
nfs4_root_machine_cred(struct nfs_client * clp)197 static void nfs4_root_machine_cred(struct nfs_client *clp)
198 {
199 
200 	/* Force root creds instead of machine */
201 	clp->cl_principal = NULL;
202 	clp->cl_rpcclient->cl_principal = NULL;
203 }
204 
205 static const struct cred *
nfs4_get_renew_cred_server_locked(struct nfs_server * server)206 nfs4_get_renew_cred_server_locked(struct nfs_server *server)
207 {
208 	const struct cred *cred = NULL;
209 	struct nfs4_state_owner *sp;
210 	struct rb_node *pos;
211 
212 	for (pos = rb_first(&server->state_owners);
213 	     pos != NULL;
214 	     pos = rb_next(pos)) {
215 		sp = rb_entry(pos, struct nfs4_state_owner, so_server_node);
216 		if (list_empty(&sp->so_states))
217 			continue;
218 		cred = get_cred(sp->so_cred);
219 		break;
220 	}
221 	return cred;
222 }
223 
224 /**
225  * nfs4_get_renew_cred - Acquire credential for a renew operation
226  * @clp: client state handle
227  *
228  * Returns an rpc_cred with reference count bumped, or NULL.
229  * Caller must hold clp->cl_lock.
230  */
nfs4_get_renew_cred(struct nfs_client * clp)231 const struct cred *nfs4_get_renew_cred(struct nfs_client *clp)
232 {
233 	const struct cred *cred = NULL;
234 	struct nfs_server *server;
235 
236 	/* Use machine credentials if available */
237 	cred = nfs4_get_machine_cred(clp);
238 	if (cred != NULL)
239 		goto out;
240 
241 	spin_lock(&clp->cl_lock);
242 	rcu_read_lock();
243 	list_for_each_entry_rcu(server, &clp->cl_superblocks, client_link) {
244 		cred = nfs4_get_renew_cred_server_locked(server);
245 		if (cred != NULL)
246 			break;
247 	}
248 	rcu_read_unlock();
249 	spin_unlock(&clp->cl_lock);
250 
251 out:
252 	return cred;
253 }
254 
nfs4_end_drain_slot_table(struct nfs4_slot_table * tbl)255 static void nfs4_end_drain_slot_table(struct nfs4_slot_table *tbl)
256 {
257 	if (test_and_clear_bit(NFS4_SLOT_TBL_DRAINING, &tbl->slot_tbl_state)) {
258 		spin_lock(&tbl->slot_tbl_lock);
259 		nfs41_wake_slot_table(tbl);
260 		spin_unlock(&tbl->slot_tbl_lock);
261 	}
262 }
263 
nfs4_end_drain_session(struct nfs_client * clp)264 static void nfs4_end_drain_session(struct nfs_client *clp)
265 {
266 	struct nfs4_session *ses = clp->cl_session;
267 
268 	if (clp->cl_slot_tbl) {
269 		nfs4_end_drain_slot_table(clp->cl_slot_tbl);
270 		return;
271 	}
272 
273 	if (ses != NULL) {
274 		nfs4_end_drain_slot_table(&ses->bc_slot_table);
275 		nfs4_end_drain_slot_table(&ses->fc_slot_table);
276 	}
277 }
278 
nfs4_drain_slot_tbl(struct nfs4_slot_table * tbl)279 static int nfs4_drain_slot_tbl(struct nfs4_slot_table *tbl)
280 {
281 	set_bit(NFS4_SLOT_TBL_DRAINING, &tbl->slot_tbl_state);
282 	spin_lock(&tbl->slot_tbl_lock);
283 	if (tbl->highest_used_slotid != NFS4_NO_SLOT) {
284 		reinit_completion(&tbl->complete);
285 		spin_unlock(&tbl->slot_tbl_lock);
286 		return wait_for_completion_interruptible(&tbl->complete);
287 	}
288 	spin_unlock(&tbl->slot_tbl_lock);
289 	return 0;
290 }
291 
nfs4_begin_drain_session(struct nfs_client * clp)292 static int nfs4_begin_drain_session(struct nfs_client *clp)
293 {
294 	struct nfs4_session *ses = clp->cl_session;
295 	int ret;
296 
297 	if (clp->cl_slot_tbl)
298 		return nfs4_drain_slot_tbl(clp->cl_slot_tbl);
299 
300 	/* back channel */
301 	ret = nfs4_drain_slot_tbl(&ses->bc_slot_table);
302 	if (ret)
303 		return ret;
304 	/* fore channel */
305 	return nfs4_drain_slot_tbl(&ses->fc_slot_table);
306 }
307 
308 #if defined(CONFIG_NFS_V4_1)
309 
nfs41_finish_session_reset(struct nfs_client * clp)310 static void nfs41_finish_session_reset(struct nfs_client *clp)
311 {
312 	clear_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state);
313 	clear_bit(NFS4CLNT_SESSION_RESET, &clp->cl_state);
314 	/* create_session negotiated new slot table */
315 	clear_bit(NFS4CLNT_BIND_CONN_TO_SESSION, &clp->cl_state);
316 	nfs4_setup_state_renewal(clp);
317 }
318 
nfs41_init_clientid(struct nfs_client * clp,const struct cred * cred)319 int nfs41_init_clientid(struct nfs_client *clp, const struct cred *cred)
320 {
321 	int status;
322 
323 	if (test_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state))
324 		goto do_confirm;
325 	status = nfs4_proc_exchange_id(clp, cred);
326 	if (status != 0)
327 		goto out;
328 	set_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state);
329 do_confirm:
330 	status = nfs4_proc_create_session(clp, cred);
331 	if (status != 0)
332 		goto out;
333 	nfs41_finish_session_reset(clp);
334 	nfs_mark_client_ready(clp, NFS_CS_READY);
335 out:
336 	return status;
337 }
338 
339 /**
340  * nfs41_discover_server_trunking - Detect server IP address trunking (mv1)
341  *
342  * @clp: nfs_client under test
343  * @result: OUT: found nfs_client, or clp
344  * @cred: credential to use for trunking test
345  *
346  * Returns NFS4_OK, a negative errno, or a negative NFS4ERR status.
347  * If NFS4_OK is returned, an nfs_client pointer is planted in
348  * "result".
349  *
350  * Note: The returned client may not yet be marked ready.
351  */
nfs41_discover_server_trunking(struct nfs_client * clp,struct nfs_client ** result,const struct cred * cred)352 int nfs41_discover_server_trunking(struct nfs_client *clp,
353 				   struct nfs_client **result,
354 				   const struct cred *cred)
355 {
356 	int status;
357 
358 	status = nfs4_proc_exchange_id(clp, cred);
359 	if (status != NFS4_OK)
360 		return status;
361 
362 	status = nfs41_walk_client_list(clp, result, cred);
363 	if (status < 0)
364 		return status;
365 	if (clp != *result)
366 		return 0;
367 
368 	/*
369 	 * Purge state if the client id was established in a prior
370 	 * instance and the client id could not have arrived on the
371 	 * server via Transparent State Migration.
372 	 */
373 	if (clp->cl_exchange_flags & EXCHGID4_FLAG_CONFIRMED_R) {
374 		if (!test_bit(NFS_CS_TSM_POSSIBLE, &clp->cl_flags))
375 			set_bit(NFS4CLNT_PURGE_STATE, &clp->cl_state);
376 		else
377 			set_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state);
378 	}
379 	nfs4_schedule_state_manager(clp);
380 	status = nfs_wait_client_init_complete(clp);
381 	if (status < 0)
382 		nfs_put_client(clp);
383 	return status;
384 }
385 
386 #endif /* CONFIG_NFS_V4_1 */
387 
388 /**
389  * nfs4_get_clid_cred - Acquire credential for a setclientid operation
390  * @clp: client state handle
391  *
392  * Returns a cred with reference count bumped, or NULL.
393  */
nfs4_get_clid_cred(struct nfs_client * clp)394 const struct cred *nfs4_get_clid_cred(struct nfs_client *clp)
395 {
396 	const struct cred *cred;
397 
398 	cred = nfs4_get_machine_cred(clp);
399 	return cred;
400 }
401 
402 static struct nfs4_state_owner *
nfs4_find_state_owner_locked(struct nfs_server * server,const struct cred * cred)403 nfs4_find_state_owner_locked(struct nfs_server *server, const struct cred *cred)
404 {
405 	struct rb_node **p = &server->state_owners.rb_node,
406 		       *parent = NULL;
407 	struct nfs4_state_owner *sp;
408 	int cmp;
409 
410 	while (*p != NULL) {
411 		parent = *p;
412 		sp = rb_entry(parent, struct nfs4_state_owner, so_server_node);
413 		cmp = cred_fscmp(cred, sp->so_cred);
414 
415 		if (cmp < 0)
416 			p = &parent->rb_left;
417 		else if (cmp > 0)
418 			p = &parent->rb_right;
419 		else {
420 			if (!list_empty(&sp->so_lru))
421 				list_del_init(&sp->so_lru);
422 			atomic_inc(&sp->so_count);
423 			return sp;
424 		}
425 	}
426 	return NULL;
427 }
428 
429 static struct nfs4_state_owner *
nfs4_insert_state_owner_locked(struct nfs4_state_owner * new)430 nfs4_insert_state_owner_locked(struct nfs4_state_owner *new)
431 {
432 	struct nfs_server *server = new->so_server;
433 	struct rb_node **p = &server->state_owners.rb_node,
434 		       *parent = NULL;
435 	struct nfs4_state_owner *sp;
436 	int cmp;
437 
438 	while (*p != NULL) {
439 		parent = *p;
440 		sp = rb_entry(parent, struct nfs4_state_owner, so_server_node);
441 		cmp = cred_fscmp(new->so_cred, sp->so_cred);
442 
443 		if (cmp < 0)
444 			p = &parent->rb_left;
445 		else if (cmp > 0)
446 			p = &parent->rb_right;
447 		else {
448 			if (!list_empty(&sp->so_lru))
449 				list_del_init(&sp->so_lru);
450 			atomic_inc(&sp->so_count);
451 			return sp;
452 		}
453 	}
454 	rb_link_node(&new->so_server_node, parent, p);
455 	rb_insert_color(&new->so_server_node, &server->state_owners);
456 	return new;
457 }
458 
459 static void
nfs4_remove_state_owner_locked(struct nfs4_state_owner * sp)460 nfs4_remove_state_owner_locked(struct nfs4_state_owner *sp)
461 {
462 	struct nfs_server *server = sp->so_server;
463 
464 	if (!RB_EMPTY_NODE(&sp->so_server_node))
465 		rb_erase(&sp->so_server_node, &server->state_owners);
466 }
467 
468 static void
nfs4_init_seqid_counter(struct nfs_seqid_counter * sc)469 nfs4_init_seqid_counter(struct nfs_seqid_counter *sc)
470 {
471 	sc->create_time = ktime_get();
472 	sc->flags = 0;
473 	sc->counter = 0;
474 	spin_lock_init(&sc->lock);
475 	INIT_LIST_HEAD(&sc->list);
476 	rpc_init_wait_queue(&sc->wait, "Seqid_waitqueue");
477 }
478 
479 static void
nfs4_destroy_seqid_counter(struct nfs_seqid_counter * sc)480 nfs4_destroy_seqid_counter(struct nfs_seqid_counter *sc)
481 {
482 	rpc_destroy_wait_queue(&sc->wait);
483 }
484 
485 /*
486  * nfs4_alloc_state_owner(): this is called on the OPEN or CREATE path to
487  * create a new state_owner.
488  *
489  */
490 static struct nfs4_state_owner *
nfs4_alloc_state_owner(struct nfs_server * server,const struct cred * cred,gfp_t gfp_flags)491 nfs4_alloc_state_owner(struct nfs_server *server,
492 		const struct cred *cred,
493 		gfp_t gfp_flags)
494 {
495 	struct nfs4_state_owner *sp;
496 
497 	sp = kzalloc(sizeof(*sp), gfp_flags);
498 	if (!sp)
499 		return NULL;
500 	sp->so_seqid.owner_id = ida_simple_get(&server->openowner_id, 0, 0,
501 						gfp_flags);
502 	if (sp->so_seqid.owner_id < 0) {
503 		kfree(sp);
504 		return NULL;
505 	}
506 	sp->so_server = server;
507 	sp->so_cred = get_cred(cred);
508 	spin_lock_init(&sp->so_lock);
509 	INIT_LIST_HEAD(&sp->so_states);
510 	nfs4_init_seqid_counter(&sp->so_seqid);
511 	atomic_set(&sp->so_count, 1);
512 	INIT_LIST_HEAD(&sp->so_lru);
513 	seqcount_spinlock_init(&sp->so_reclaim_seqcount, &sp->so_lock);
514 	mutex_init(&sp->so_delegreturn_mutex);
515 	return sp;
516 }
517 
518 static void
nfs4_reset_state_owner(struct nfs4_state_owner * sp)519 nfs4_reset_state_owner(struct nfs4_state_owner *sp)
520 {
521 	/* This state_owner is no longer usable, but must
522 	 * remain in place so that state recovery can find it
523 	 * and the opens associated with it.
524 	 * It may also be used for new 'open' request to
525 	 * return a delegation to the server.
526 	 * So update the 'create_time' so that it looks like
527 	 * a new state_owner.  This will cause the server to
528 	 * request an OPEN_CONFIRM to start a new sequence.
529 	 */
530 	sp->so_seqid.create_time = ktime_get();
531 }
532 
nfs4_free_state_owner(struct nfs4_state_owner * sp)533 static void nfs4_free_state_owner(struct nfs4_state_owner *sp)
534 {
535 	nfs4_destroy_seqid_counter(&sp->so_seqid);
536 	put_cred(sp->so_cred);
537 	ida_simple_remove(&sp->so_server->openowner_id, sp->so_seqid.owner_id);
538 	kfree(sp);
539 }
540 
nfs4_gc_state_owners(struct nfs_server * server)541 static void nfs4_gc_state_owners(struct nfs_server *server)
542 {
543 	struct nfs_client *clp = server->nfs_client;
544 	struct nfs4_state_owner *sp, *tmp;
545 	unsigned long time_min, time_max;
546 	LIST_HEAD(doomed);
547 
548 	spin_lock(&clp->cl_lock);
549 	time_max = jiffies;
550 	time_min = (long)time_max - (long)clp->cl_lease_time;
551 	list_for_each_entry_safe(sp, tmp, &server->state_owners_lru, so_lru) {
552 		/* NB: LRU is sorted so that oldest is at the head */
553 		if (time_in_range(sp->so_expires, time_min, time_max))
554 			break;
555 		list_move(&sp->so_lru, &doomed);
556 		nfs4_remove_state_owner_locked(sp);
557 	}
558 	spin_unlock(&clp->cl_lock);
559 
560 	list_for_each_entry_safe(sp, tmp, &doomed, so_lru) {
561 		list_del(&sp->so_lru);
562 		nfs4_free_state_owner(sp);
563 	}
564 }
565 
566 /**
567  * nfs4_get_state_owner - Look up a state owner given a credential
568  * @server: nfs_server to search
569  * @cred: RPC credential to match
570  * @gfp_flags: allocation mode
571  *
572  * Returns a pointer to an instantiated nfs4_state_owner struct, or NULL.
573  */
nfs4_get_state_owner(struct nfs_server * server,const struct cred * cred,gfp_t gfp_flags)574 struct nfs4_state_owner *nfs4_get_state_owner(struct nfs_server *server,
575 					      const struct cred *cred,
576 					      gfp_t gfp_flags)
577 {
578 	struct nfs_client *clp = server->nfs_client;
579 	struct nfs4_state_owner *sp, *new;
580 
581 	spin_lock(&clp->cl_lock);
582 	sp = nfs4_find_state_owner_locked(server, cred);
583 	spin_unlock(&clp->cl_lock);
584 	if (sp != NULL)
585 		goto out;
586 	new = nfs4_alloc_state_owner(server, cred, gfp_flags);
587 	if (new == NULL)
588 		goto out;
589 	spin_lock(&clp->cl_lock);
590 	sp = nfs4_insert_state_owner_locked(new);
591 	spin_unlock(&clp->cl_lock);
592 	if (sp != new)
593 		nfs4_free_state_owner(new);
594 out:
595 	nfs4_gc_state_owners(server);
596 	return sp;
597 }
598 
599 /**
600  * nfs4_put_state_owner - Release a nfs4_state_owner
601  * @sp: state owner data to release
602  *
603  * Note that we keep released state owners on an LRU
604  * list.
605  * This caches valid state owners so that they can be
606  * reused, to avoid the OPEN_CONFIRM on minor version 0.
607  * It also pins the uniquifier of dropped state owners for
608  * a while, to ensure that those state owner names are
609  * never reused.
610  */
nfs4_put_state_owner(struct nfs4_state_owner * sp)611 void nfs4_put_state_owner(struct nfs4_state_owner *sp)
612 {
613 	struct nfs_server *server = sp->so_server;
614 	struct nfs_client *clp = server->nfs_client;
615 
616 	if (!atomic_dec_and_lock(&sp->so_count, &clp->cl_lock))
617 		return;
618 
619 	sp->so_expires = jiffies;
620 	list_add_tail(&sp->so_lru, &server->state_owners_lru);
621 	spin_unlock(&clp->cl_lock);
622 }
623 
624 /**
625  * nfs4_purge_state_owners - Release all cached state owners
626  * @server: nfs_server with cached state owners to release
627  * @head: resulting list of state owners
628  *
629  * Called at umount time.  Remaining state owners will be on
630  * the LRU with ref count of zero.
631  * Note that the state owners are not freed, but are added
632  * to the list @head, which can later be used as an argument
633  * to nfs4_free_state_owners.
634  */
nfs4_purge_state_owners(struct nfs_server * server,struct list_head * head)635 void nfs4_purge_state_owners(struct nfs_server *server, struct list_head *head)
636 {
637 	struct nfs_client *clp = server->nfs_client;
638 	struct nfs4_state_owner *sp, *tmp;
639 
640 	spin_lock(&clp->cl_lock);
641 	list_for_each_entry_safe(sp, tmp, &server->state_owners_lru, so_lru) {
642 		list_move(&sp->so_lru, head);
643 		nfs4_remove_state_owner_locked(sp);
644 	}
645 	spin_unlock(&clp->cl_lock);
646 }
647 
648 /**
649  * nfs4_purge_state_owners - Release all cached state owners
650  * @head: resulting list of state owners
651  *
652  * Frees a list of state owners that was generated by
653  * nfs4_purge_state_owners
654  */
nfs4_free_state_owners(struct list_head * head)655 void nfs4_free_state_owners(struct list_head *head)
656 {
657 	struct nfs4_state_owner *sp, *tmp;
658 
659 	list_for_each_entry_safe(sp, tmp, head, so_lru) {
660 		list_del(&sp->so_lru);
661 		nfs4_free_state_owner(sp);
662 	}
663 }
664 
665 static struct nfs4_state *
nfs4_alloc_open_state(void)666 nfs4_alloc_open_state(void)
667 {
668 	struct nfs4_state *state;
669 
670 	state = kzalloc(sizeof(*state), GFP_NOFS);
671 	if (!state)
672 		return NULL;
673 	refcount_set(&state->count, 1);
674 	INIT_LIST_HEAD(&state->lock_states);
675 	spin_lock_init(&state->state_lock);
676 	seqlock_init(&state->seqlock);
677 	init_waitqueue_head(&state->waitq);
678 	return state;
679 }
680 
681 void
nfs4_state_set_mode_locked(struct nfs4_state * state,fmode_t fmode)682 nfs4_state_set_mode_locked(struct nfs4_state *state, fmode_t fmode)
683 {
684 	if (state->state == fmode)
685 		return;
686 	/* NB! List reordering - see the reclaim code for why.  */
687 	if ((fmode & FMODE_WRITE) != (state->state & FMODE_WRITE)) {
688 		if (fmode & FMODE_WRITE)
689 			list_move(&state->open_states, &state->owner->so_states);
690 		else
691 			list_move_tail(&state->open_states, &state->owner->so_states);
692 	}
693 	state->state = fmode;
694 }
695 
696 static struct nfs4_state *
__nfs4_find_state_byowner(struct inode * inode,struct nfs4_state_owner * owner)697 __nfs4_find_state_byowner(struct inode *inode, struct nfs4_state_owner *owner)
698 {
699 	struct nfs_inode *nfsi = NFS_I(inode);
700 	struct nfs4_state *state;
701 
702 	list_for_each_entry_rcu(state, &nfsi->open_states, inode_states) {
703 		if (state->owner != owner)
704 			continue;
705 		if (!nfs4_valid_open_stateid(state))
706 			continue;
707 		if (refcount_inc_not_zero(&state->count))
708 			return state;
709 	}
710 	return NULL;
711 }
712 
713 static void
nfs4_free_open_state(struct nfs4_state * state)714 nfs4_free_open_state(struct nfs4_state *state)
715 {
716 	kfree_rcu(state, rcu_head);
717 }
718 
719 struct nfs4_state *
nfs4_get_open_state(struct inode * inode,struct nfs4_state_owner * owner)720 nfs4_get_open_state(struct inode *inode, struct nfs4_state_owner *owner)
721 {
722 	struct nfs4_state *state, *new;
723 	struct nfs_inode *nfsi = NFS_I(inode);
724 
725 	rcu_read_lock();
726 	state = __nfs4_find_state_byowner(inode, owner);
727 	rcu_read_unlock();
728 	if (state)
729 		goto out;
730 	new = nfs4_alloc_open_state();
731 	spin_lock(&owner->so_lock);
732 	spin_lock(&inode->i_lock);
733 	state = __nfs4_find_state_byowner(inode, owner);
734 	if (state == NULL && new != NULL) {
735 		state = new;
736 		state->owner = owner;
737 		atomic_inc(&owner->so_count);
738 		ihold(inode);
739 		state->inode = inode;
740 		list_add_rcu(&state->inode_states, &nfsi->open_states);
741 		spin_unlock(&inode->i_lock);
742 		/* Note: The reclaim code dictates that we add stateless
743 		 * and read-only stateids to the end of the list */
744 		list_add_tail(&state->open_states, &owner->so_states);
745 		spin_unlock(&owner->so_lock);
746 	} else {
747 		spin_unlock(&inode->i_lock);
748 		spin_unlock(&owner->so_lock);
749 		if (new)
750 			nfs4_free_open_state(new);
751 	}
752 out:
753 	return state;
754 }
755 
nfs4_put_open_state(struct nfs4_state * state)756 void nfs4_put_open_state(struct nfs4_state *state)
757 {
758 	struct inode *inode = state->inode;
759 	struct nfs4_state_owner *owner = state->owner;
760 
761 	if (!refcount_dec_and_lock(&state->count, &owner->so_lock))
762 		return;
763 	spin_lock(&inode->i_lock);
764 	list_del_rcu(&state->inode_states);
765 	list_del(&state->open_states);
766 	spin_unlock(&inode->i_lock);
767 	spin_unlock(&owner->so_lock);
768 	nfs4_inode_return_delegation_on_close(inode);
769 	iput(inode);
770 	nfs4_free_open_state(state);
771 	nfs4_put_state_owner(owner);
772 }
773 
774 /*
775  * Close the current file.
776  */
__nfs4_close(struct nfs4_state * state,fmode_t fmode,gfp_t gfp_mask,int wait)777 static void __nfs4_close(struct nfs4_state *state,
778 		fmode_t fmode, gfp_t gfp_mask, int wait)
779 {
780 	struct nfs4_state_owner *owner = state->owner;
781 	int call_close = 0;
782 	fmode_t newstate;
783 
784 	atomic_inc(&owner->so_count);
785 	/* Protect against nfs4_find_state() */
786 	spin_lock(&owner->so_lock);
787 	switch (fmode & (FMODE_READ | FMODE_WRITE)) {
788 		case FMODE_READ:
789 			state->n_rdonly--;
790 			break;
791 		case FMODE_WRITE:
792 			state->n_wronly--;
793 			break;
794 		case FMODE_READ|FMODE_WRITE:
795 			state->n_rdwr--;
796 	}
797 	newstate = FMODE_READ|FMODE_WRITE;
798 	if (state->n_rdwr == 0) {
799 		if (state->n_rdonly == 0) {
800 			newstate &= ~FMODE_READ;
801 			call_close |= test_bit(NFS_O_RDONLY_STATE, &state->flags);
802 			call_close |= test_bit(NFS_O_RDWR_STATE, &state->flags);
803 		}
804 		if (state->n_wronly == 0) {
805 			newstate &= ~FMODE_WRITE;
806 			call_close |= test_bit(NFS_O_WRONLY_STATE, &state->flags);
807 			call_close |= test_bit(NFS_O_RDWR_STATE, &state->flags);
808 		}
809 		if (newstate == 0)
810 			clear_bit(NFS_DELEGATED_STATE, &state->flags);
811 	}
812 	nfs4_state_set_mode_locked(state, newstate);
813 	spin_unlock(&owner->so_lock);
814 
815 	if (!call_close) {
816 		nfs4_put_open_state(state);
817 		nfs4_put_state_owner(owner);
818 	} else
819 		nfs4_do_close(state, gfp_mask, wait);
820 }
821 
nfs4_close_state(struct nfs4_state * state,fmode_t fmode)822 void nfs4_close_state(struct nfs4_state *state, fmode_t fmode)
823 {
824 	__nfs4_close(state, fmode, GFP_NOFS, 0);
825 }
826 
nfs4_close_sync(struct nfs4_state * state,fmode_t fmode)827 void nfs4_close_sync(struct nfs4_state *state, fmode_t fmode)
828 {
829 	__nfs4_close(state, fmode, GFP_KERNEL, 1);
830 }
831 
832 /*
833  * Search the state->lock_states for an existing lock_owner
834  * that is compatible with either of the given owners.
835  * If the second is non-zero, then the first refers to a Posix-lock
836  * owner (current->files) and the second refers to a flock/OFD
837  * owner (struct file*).  In that case, prefer a match for the first
838  * owner.
839  * If both sorts of locks are held on the one file we cannot know
840  * which stateid was intended to be used, so a "correct" choice cannot
841  * be made.  Failing that, a "consistent" choice is preferable.  The
842  * consistent choice we make is to prefer the first owner, that of a
843  * Posix lock.
844  */
845 static struct nfs4_lock_state *
__nfs4_find_lock_state(struct nfs4_state * state,fl_owner_t fl_owner,fl_owner_t fl_owner2)846 __nfs4_find_lock_state(struct nfs4_state *state,
847 		       fl_owner_t fl_owner, fl_owner_t fl_owner2)
848 {
849 	struct nfs4_lock_state *pos, *ret = NULL;
850 	list_for_each_entry(pos, &state->lock_states, ls_locks) {
851 		if (pos->ls_owner == fl_owner) {
852 			ret = pos;
853 			break;
854 		}
855 		if (pos->ls_owner == fl_owner2)
856 			ret = pos;
857 	}
858 	if (ret)
859 		refcount_inc(&ret->ls_count);
860 	return ret;
861 }
862 
863 /*
864  * Return a compatible lock_state. If no initialized lock_state structure
865  * exists, return an uninitialized one.
866  *
867  */
nfs4_alloc_lock_state(struct nfs4_state * state,fl_owner_t fl_owner)868 static struct nfs4_lock_state *nfs4_alloc_lock_state(struct nfs4_state *state, fl_owner_t fl_owner)
869 {
870 	struct nfs4_lock_state *lsp;
871 	struct nfs_server *server = state->owner->so_server;
872 
873 	lsp = kzalloc(sizeof(*lsp), GFP_NOFS);
874 	if (lsp == NULL)
875 		return NULL;
876 	nfs4_init_seqid_counter(&lsp->ls_seqid);
877 	refcount_set(&lsp->ls_count, 1);
878 	lsp->ls_state = state;
879 	lsp->ls_owner = fl_owner;
880 	lsp->ls_seqid.owner_id = ida_simple_get(&server->lockowner_id, 0, 0, GFP_NOFS);
881 	if (lsp->ls_seqid.owner_id < 0)
882 		goto out_free;
883 	INIT_LIST_HEAD(&lsp->ls_locks);
884 	return lsp;
885 out_free:
886 	kfree(lsp);
887 	return NULL;
888 }
889 
nfs4_free_lock_state(struct nfs_server * server,struct nfs4_lock_state * lsp)890 void nfs4_free_lock_state(struct nfs_server *server, struct nfs4_lock_state *lsp)
891 {
892 	ida_simple_remove(&server->lockowner_id, lsp->ls_seqid.owner_id);
893 	nfs4_destroy_seqid_counter(&lsp->ls_seqid);
894 	kfree(lsp);
895 }
896 
897 /*
898  * Return a compatible lock_state. If no initialized lock_state structure
899  * exists, return an uninitialized one.
900  *
901  */
nfs4_get_lock_state(struct nfs4_state * state,fl_owner_t owner)902 static struct nfs4_lock_state *nfs4_get_lock_state(struct nfs4_state *state, fl_owner_t owner)
903 {
904 	struct nfs4_lock_state *lsp, *new = NULL;
905 
906 	for(;;) {
907 		spin_lock(&state->state_lock);
908 		lsp = __nfs4_find_lock_state(state, owner, NULL);
909 		if (lsp != NULL)
910 			break;
911 		if (new != NULL) {
912 			list_add(&new->ls_locks, &state->lock_states);
913 			set_bit(LK_STATE_IN_USE, &state->flags);
914 			lsp = new;
915 			new = NULL;
916 			break;
917 		}
918 		spin_unlock(&state->state_lock);
919 		new = nfs4_alloc_lock_state(state, owner);
920 		if (new == NULL)
921 			return NULL;
922 	}
923 	spin_unlock(&state->state_lock);
924 	if (new != NULL)
925 		nfs4_free_lock_state(state->owner->so_server, new);
926 	return lsp;
927 }
928 
929 /*
930  * Release reference to lock_state, and free it if we see that
931  * it is no longer in use
932  */
nfs4_put_lock_state(struct nfs4_lock_state * lsp)933 void nfs4_put_lock_state(struct nfs4_lock_state *lsp)
934 {
935 	struct nfs_server *server;
936 	struct nfs4_state *state;
937 
938 	if (lsp == NULL)
939 		return;
940 	state = lsp->ls_state;
941 	if (!refcount_dec_and_lock(&lsp->ls_count, &state->state_lock))
942 		return;
943 	list_del(&lsp->ls_locks);
944 	if (list_empty(&state->lock_states))
945 		clear_bit(LK_STATE_IN_USE, &state->flags);
946 	spin_unlock(&state->state_lock);
947 	server = state->owner->so_server;
948 	if (test_bit(NFS_LOCK_INITIALIZED, &lsp->ls_flags)) {
949 		struct nfs_client *clp = server->nfs_client;
950 
951 		clp->cl_mvops->free_lock_state(server, lsp);
952 	} else
953 		nfs4_free_lock_state(server, lsp);
954 }
955 
nfs4_fl_copy_lock(struct file_lock * dst,struct file_lock * src)956 static void nfs4_fl_copy_lock(struct file_lock *dst, struct file_lock *src)
957 {
958 	struct nfs4_lock_state *lsp = src->fl_u.nfs4_fl.owner;
959 
960 	dst->fl_u.nfs4_fl.owner = lsp;
961 	refcount_inc(&lsp->ls_count);
962 }
963 
nfs4_fl_release_lock(struct file_lock * fl)964 static void nfs4_fl_release_lock(struct file_lock *fl)
965 {
966 	nfs4_put_lock_state(fl->fl_u.nfs4_fl.owner);
967 }
968 
969 static const struct file_lock_operations nfs4_fl_lock_ops = {
970 	.fl_copy_lock = nfs4_fl_copy_lock,
971 	.fl_release_private = nfs4_fl_release_lock,
972 };
973 
nfs4_set_lock_state(struct nfs4_state * state,struct file_lock * fl)974 int nfs4_set_lock_state(struct nfs4_state *state, struct file_lock *fl)
975 {
976 	struct nfs4_lock_state *lsp;
977 
978 	if (fl->fl_ops != NULL)
979 		return 0;
980 	lsp = nfs4_get_lock_state(state, fl->fl_owner);
981 	if (lsp == NULL)
982 		return -ENOMEM;
983 	fl->fl_u.nfs4_fl.owner = lsp;
984 	fl->fl_ops = &nfs4_fl_lock_ops;
985 	return 0;
986 }
987 
nfs4_copy_lock_stateid(nfs4_stateid * dst,struct nfs4_state * state,const struct nfs_lock_context * l_ctx)988 static int nfs4_copy_lock_stateid(nfs4_stateid *dst,
989 		struct nfs4_state *state,
990 		const struct nfs_lock_context *l_ctx)
991 {
992 	struct nfs4_lock_state *lsp;
993 	fl_owner_t fl_owner, fl_flock_owner;
994 	int ret = -ENOENT;
995 
996 	if (l_ctx == NULL)
997 		goto out;
998 
999 	if (test_bit(LK_STATE_IN_USE, &state->flags) == 0)
1000 		goto out;
1001 
1002 	fl_owner = l_ctx->lockowner;
1003 	fl_flock_owner = l_ctx->open_context->flock_owner;
1004 
1005 	spin_lock(&state->state_lock);
1006 	lsp = __nfs4_find_lock_state(state, fl_owner, fl_flock_owner);
1007 	if (lsp && test_bit(NFS_LOCK_LOST, &lsp->ls_flags))
1008 		ret = -EIO;
1009 	else if (lsp != NULL && test_bit(NFS_LOCK_INITIALIZED, &lsp->ls_flags) != 0) {
1010 		nfs4_stateid_copy(dst, &lsp->ls_stateid);
1011 		ret = 0;
1012 	}
1013 	spin_unlock(&state->state_lock);
1014 	nfs4_put_lock_state(lsp);
1015 out:
1016 	return ret;
1017 }
1018 
nfs4_copy_open_stateid(nfs4_stateid * dst,struct nfs4_state * state)1019 bool nfs4_copy_open_stateid(nfs4_stateid *dst, struct nfs4_state *state)
1020 {
1021 	bool ret;
1022 	const nfs4_stateid *src;
1023 	int seq;
1024 
1025 	do {
1026 		ret = false;
1027 		src = &zero_stateid;
1028 		seq = read_seqbegin(&state->seqlock);
1029 		if (test_bit(NFS_OPEN_STATE, &state->flags)) {
1030 			src = &state->open_stateid;
1031 			ret = true;
1032 		}
1033 		nfs4_stateid_copy(dst, src);
1034 	} while (read_seqretry(&state->seqlock, seq));
1035 	return ret;
1036 }
1037 
1038 /*
1039  * Byte-range lock aware utility to initialize the stateid of read/write
1040  * requests.
1041  */
nfs4_select_rw_stateid(struct nfs4_state * state,fmode_t fmode,const struct nfs_lock_context * l_ctx,nfs4_stateid * dst,const struct cred ** cred)1042 int nfs4_select_rw_stateid(struct nfs4_state *state,
1043 		fmode_t fmode, const struct nfs_lock_context *l_ctx,
1044 		nfs4_stateid *dst, const struct cred **cred)
1045 {
1046 	int ret;
1047 
1048 	if (!nfs4_valid_open_stateid(state))
1049 		return -EIO;
1050 	if (cred != NULL)
1051 		*cred = NULL;
1052 	ret = nfs4_copy_lock_stateid(dst, state, l_ctx);
1053 	if (ret == -EIO)
1054 		/* A lost lock - don't even consider delegations */
1055 		goto out;
1056 	/* returns true if delegation stateid found and copied */
1057 	if (nfs4_copy_delegation_stateid(state->inode, fmode, dst, cred)) {
1058 		ret = 0;
1059 		goto out;
1060 	}
1061 	if (ret != -ENOENT)
1062 		/* nfs4_copy_delegation_stateid() didn't over-write
1063 		 * dst, so it still has the lock stateid which we now
1064 		 * choose to use.
1065 		 */
1066 		goto out;
1067 	ret = nfs4_copy_open_stateid(dst, state) ? 0 : -EAGAIN;
1068 out:
1069 	if (nfs_server_capable(state->inode, NFS_CAP_STATEID_NFSV41))
1070 		dst->seqid = 0;
1071 	return ret;
1072 }
1073 
nfs_alloc_seqid(struct nfs_seqid_counter * counter,gfp_t gfp_mask)1074 struct nfs_seqid *nfs_alloc_seqid(struct nfs_seqid_counter *counter, gfp_t gfp_mask)
1075 {
1076 	struct nfs_seqid *new;
1077 
1078 	new = kmalloc(sizeof(*new), gfp_mask);
1079 	if (new == NULL)
1080 		return ERR_PTR(-ENOMEM);
1081 	new->sequence = counter;
1082 	INIT_LIST_HEAD(&new->list);
1083 	new->task = NULL;
1084 	return new;
1085 }
1086 
nfs_release_seqid(struct nfs_seqid * seqid)1087 void nfs_release_seqid(struct nfs_seqid *seqid)
1088 {
1089 	struct nfs_seqid_counter *sequence;
1090 
1091 	if (seqid == NULL || list_empty(&seqid->list))
1092 		return;
1093 	sequence = seqid->sequence;
1094 	spin_lock(&sequence->lock);
1095 	list_del_init(&seqid->list);
1096 	if (!list_empty(&sequence->list)) {
1097 		struct nfs_seqid *next;
1098 
1099 		next = list_first_entry(&sequence->list,
1100 				struct nfs_seqid, list);
1101 		rpc_wake_up_queued_task(&sequence->wait, next->task);
1102 	}
1103 	spin_unlock(&sequence->lock);
1104 }
1105 
nfs_free_seqid(struct nfs_seqid * seqid)1106 void nfs_free_seqid(struct nfs_seqid *seqid)
1107 {
1108 	nfs_release_seqid(seqid);
1109 	kfree(seqid);
1110 }
1111 
1112 /*
1113  * Increment the seqid if the OPEN/OPEN_DOWNGRADE/CLOSE succeeded, or
1114  * failed with a seqid incrementing error -
1115  * see comments nfs4.h:seqid_mutating_error()
1116  */
nfs_increment_seqid(int status,struct nfs_seqid * seqid)1117 static void nfs_increment_seqid(int status, struct nfs_seqid *seqid)
1118 {
1119 	switch (status) {
1120 		case 0:
1121 			break;
1122 		case -NFS4ERR_BAD_SEQID:
1123 			if (seqid->sequence->flags & NFS_SEQID_CONFIRMED)
1124 				return;
1125 			pr_warn_ratelimited("NFS: v4 server returned a bad"
1126 					" sequence-id error on an"
1127 					" unconfirmed sequence %p!\n",
1128 					seqid->sequence);
1129 		case -NFS4ERR_STALE_CLIENTID:
1130 		case -NFS4ERR_STALE_STATEID:
1131 		case -NFS4ERR_BAD_STATEID:
1132 		case -NFS4ERR_BADXDR:
1133 		case -NFS4ERR_RESOURCE:
1134 		case -NFS4ERR_NOFILEHANDLE:
1135 		case -NFS4ERR_MOVED:
1136 			/* Non-seqid mutating errors */
1137 			return;
1138 	}
1139 	/*
1140 	 * Note: no locking needed as we are guaranteed to be first
1141 	 * on the sequence list
1142 	 */
1143 	seqid->sequence->counter++;
1144 }
1145 
nfs_increment_open_seqid(int status,struct nfs_seqid * seqid)1146 void nfs_increment_open_seqid(int status, struct nfs_seqid *seqid)
1147 {
1148 	struct nfs4_state_owner *sp;
1149 
1150 	if (seqid == NULL)
1151 		return;
1152 
1153 	sp = container_of(seqid->sequence, struct nfs4_state_owner, so_seqid);
1154 	if (status == -NFS4ERR_BAD_SEQID)
1155 		nfs4_reset_state_owner(sp);
1156 	if (!nfs4_has_session(sp->so_server->nfs_client))
1157 		nfs_increment_seqid(status, seqid);
1158 }
1159 
1160 /*
1161  * Increment the seqid if the LOCK/LOCKU succeeded, or
1162  * failed with a seqid incrementing error -
1163  * see comments nfs4.h:seqid_mutating_error()
1164  */
nfs_increment_lock_seqid(int status,struct nfs_seqid * seqid)1165 void nfs_increment_lock_seqid(int status, struct nfs_seqid *seqid)
1166 {
1167 	if (seqid != NULL)
1168 		nfs_increment_seqid(status, seqid);
1169 }
1170 
nfs_wait_on_sequence(struct nfs_seqid * seqid,struct rpc_task * task)1171 int nfs_wait_on_sequence(struct nfs_seqid *seqid, struct rpc_task *task)
1172 {
1173 	struct nfs_seqid_counter *sequence;
1174 	int status = 0;
1175 
1176 	if (seqid == NULL)
1177 		goto out;
1178 	sequence = seqid->sequence;
1179 	spin_lock(&sequence->lock);
1180 	seqid->task = task;
1181 	if (list_empty(&seqid->list))
1182 		list_add_tail(&seqid->list, &sequence->list);
1183 	if (list_first_entry(&sequence->list, struct nfs_seqid, list) == seqid)
1184 		goto unlock;
1185 	rpc_sleep_on(&sequence->wait, task, NULL);
1186 	status = -EAGAIN;
1187 unlock:
1188 	spin_unlock(&sequence->lock);
1189 out:
1190 	return status;
1191 }
1192 
1193 static int nfs4_run_state_manager(void *);
1194 
nfs4_clear_state_manager_bit(struct nfs_client * clp)1195 static void nfs4_clear_state_manager_bit(struct nfs_client *clp)
1196 {
1197 	smp_mb__before_atomic();
1198 	clear_bit(NFS4CLNT_MANAGER_RUNNING, &clp->cl_state);
1199 	smp_mb__after_atomic();
1200 	wake_up_bit(&clp->cl_state, NFS4CLNT_MANAGER_RUNNING);
1201 	rpc_wake_up(&clp->cl_rpcwaitq);
1202 }
1203 
1204 /*
1205  * Schedule the nfs_client asynchronous state management routine
1206  */
nfs4_schedule_state_manager(struct nfs_client * clp)1207 void nfs4_schedule_state_manager(struct nfs_client *clp)
1208 {
1209 	struct task_struct *task;
1210 	char buf[INET6_ADDRSTRLEN + sizeof("-manager") + 1];
1211 
1212 	set_bit(NFS4CLNT_RUN_MANAGER, &clp->cl_state);
1213 	if (test_and_set_bit(NFS4CLNT_MANAGER_RUNNING, &clp->cl_state) != 0)
1214 		return;
1215 	__module_get(THIS_MODULE);
1216 	refcount_inc(&clp->cl_count);
1217 
1218 	/* The rcu_read_lock() is not strictly necessary, as the state
1219 	 * manager is the only thread that ever changes the rpc_xprt
1220 	 * after it's initialized.  At this point, we're single threaded. */
1221 	rcu_read_lock();
1222 	snprintf(buf, sizeof(buf), "%s-manager",
1223 			rpc_peeraddr2str(clp->cl_rpcclient, RPC_DISPLAY_ADDR));
1224 	rcu_read_unlock();
1225 	task = kthread_run(nfs4_run_state_manager, clp, "%s", buf);
1226 	if (IS_ERR(task)) {
1227 		printk(KERN_ERR "%s: kthread_run: %ld\n",
1228 			__func__, PTR_ERR(task));
1229 		if (!nfs_client_init_is_complete(clp))
1230 			nfs_mark_client_ready(clp, PTR_ERR(task));
1231 		nfs4_clear_state_manager_bit(clp);
1232 		nfs_put_client(clp);
1233 		module_put(THIS_MODULE);
1234 	}
1235 }
1236 
1237 /*
1238  * Schedule a lease recovery attempt
1239  */
nfs4_schedule_lease_recovery(struct nfs_client * clp)1240 void nfs4_schedule_lease_recovery(struct nfs_client *clp)
1241 {
1242 	if (!clp)
1243 		return;
1244 	if (!test_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state))
1245 		set_bit(NFS4CLNT_CHECK_LEASE, &clp->cl_state);
1246 	dprintk("%s: scheduling lease recovery for server %s\n", __func__,
1247 			clp->cl_hostname);
1248 	nfs4_schedule_state_manager(clp);
1249 }
1250 EXPORT_SYMBOL_GPL(nfs4_schedule_lease_recovery);
1251 
1252 /**
1253  * nfs4_schedule_migration_recovery - trigger migration recovery
1254  *
1255  * @server: FSID that is migrating
1256  *
1257  * Returns zero if recovery has started, otherwise a negative NFS4ERR
1258  * value is returned.
1259  */
nfs4_schedule_migration_recovery(const struct nfs_server * server)1260 int nfs4_schedule_migration_recovery(const struct nfs_server *server)
1261 {
1262 	struct nfs_client *clp = server->nfs_client;
1263 
1264 	if (server->fh_expire_type != NFS4_FH_PERSISTENT) {
1265 		pr_err("NFS: volatile file handles not supported (server %s)\n",
1266 				clp->cl_hostname);
1267 		return -NFS4ERR_IO;
1268 	}
1269 
1270 	if (test_bit(NFS_MIG_FAILED, &server->mig_status))
1271 		return -NFS4ERR_IO;
1272 
1273 	dprintk("%s: scheduling migration recovery for (%llx:%llx) on %s\n",
1274 			__func__,
1275 			(unsigned long long)server->fsid.major,
1276 			(unsigned long long)server->fsid.minor,
1277 			clp->cl_hostname);
1278 
1279 	set_bit(NFS_MIG_IN_TRANSITION,
1280 			&((struct nfs_server *)server)->mig_status);
1281 	set_bit(NFS4CLNT_MOVED, &clp->cl_state);
1282 
1283 	nfs4_schedule_state_manager(clp);
1284 	return 0;
1285 }
1286 EXPORT_SYMBOL_GPL(nfs4_schedule_migration_recovery);
1287 
1288 /**
1289  * nfs4_schedule_lease_moved_recovery - start lease-moved recovery
1290  *
1291  * @clp: server to check for moved leases
1292  *
1293  */
nfs4_schedule_lease_moved_recovery(struct nfs_client * clp)1294 void nfs4_schedule_lease_moved_recovery(struct nfs_client *clp)
1295 {
1296 	dprintk("%s: scheduling lease-moved recovery for client ID %llx on %s\n",
1297 		__func__, clp->cl_clientid, clp->cl_hostname);
1298 
1299 	set_bit(NFS4CLNT_LEASE_MOVED, &clp->cl_state);
1300 	nfs4_schedule_state_manager(clp);
1301 }
1302 EXPORT_SYMBOL_GPL(nfs4_schedule_lease_moved_recovery);
1303 
nfs4_wait_clnt_recover(struct nfs_client * clp)1304 int nfs4_wait_clnt_recover(struct nfs_client *clp)
1305 {
1306 	int res;
1307 
1308 	might_sleep();
1309 
1310 	refcount_inc(&clp->cl_count);
1311 	res = wait_on_bit_action(&clp->cl_state, NFS4CLNT_MANAGER_RUNNING,
1312 				 nfs_wait_bit_killable, TASK_KILLABLE);
1313 	if (res)
1314 		goto out;
1315 	if (clp->cl_cons_state < 0)
1316 		res = clp->cl_cons_state;
1317 out:
1318 	nfs_put_client(clp);
1319 	return res;
1320 }
1321 
nfs4_client_recover_expired_lease(struct nfs_client * clp)1322 int nfs4_client_recover_expired_lease(struct nfs_client *clp)
1323 {
1324 	unsigned int loop;
1325 	int ret;
1326 
1327 	for (loop = NFS4_MAX_LOOP_ON_RECOVER; loop != 0; loop--) {
1328 		ret = nfs4_wait_clnt_recover(clp);
1329 		if (ret != 0)
1330 			break;
1331 		if (!test_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state) &&
1332 		    !test_bit(NFS4CLNT_CHECK_LEASE,&clp->cl_state))
1333 			break;
1334 		nfs4_schedule_state_manager(clp);
1335 		ret = -EIO;
1336 	}
1337 	return ret;
1338 }
1339 
1340 /*
1341  * nfs40_handle_cb_pathdown - return all delegations after NFS4ERR_CB_PATH_DOWN
1342  * @clp: client to process
1343  *
1344  * Set the NFS4CLNT_LEASE_EXPIRED state in order to force a
1345  * resend of the SETCLIENTID and hence re-establish the
1346  * callback channel. Then return all existing delegations.
1347  */
nfs40_handle_cb_pathdown(struct nfs_client * clp)1348 static void nfs40_handle_cb_pathdown(struct nfs_client *clp)
1349 {
1350 	set_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state);
1351 	nfs_expire_all_delegations(clp);
1352 	dprintk("%s: handling CB_PATHDOWN recovery for server %s\n", __func__,
1353 			clp->cl_hostname);
1354 }
1355 
nfs4_schedule_path_down_recovery(struct nfs_client * clp)1356 void nfs4_schedule_path_down_recovery(struct nfs_client *clp)
1357 {
1358 	nfs40_handle_cb_pathdown(clp);
1359 	nfs4_schedule_state_manager(clp);
1360 }
1361 
nfs4_state_mark_reclaim_reboot(struct nfs_client * clp,struct nfs4_state * state)1362 static int nfs4_state_mark_reclaim_reboot(struct nfs_client *clp, struct nfs4_state *state)
1363 {
1364 
1365 	if (!nfs4_valid_open_stateid(state))
1366 		return 0;
1367 	set_bit(NFS_STATE_RECLAIM_REBOOT, &state->flags);
1368 	/* Don't recover state that expired before the reboot */
1369 	if (test_bit(NFS_STATE_RECLAIM_NOGRACE, &state->flags)) {
1370 		clear_bit(NFS_STATE_RECLAIM_REBOOT, &state->flags);
1371 		return 0;
1372 	}
1373 	set_bit(NFS_OWNER_RECLAIM_REBOOT, &state->owner->so_flags);
1374 	set_bit(NFS4CLNT_RECLAIM_REBOOT, &clp->cl_state);
1375 	return 1;
1376 }
1377 
nfs4_state_mark_reclaim_nograce(struct nfs_client * clp,struct nfs4_state * state)1378 int nfs4_state_mark_reclaim_nograce(struct nfs_client *clp, struct nfs4_state *state)
1379 {
1380 	if (!nfs4_valid_open_stateid(state))
1381 		return 0;
1382 	set_bit(NFS_STATE_RECLAIM_NOGRACE, &state->flags);
1383 	clear_bit(NFS_STATE_RECLAIM_REBOOT, &state->flags);
1384 	set_bit(NFS_OWNER_RECLAIM_NOGRACE, &state->owner->so_flags);
1385 	set_bit(NFS4CLNT_RECLAIM_NOGRACE, &clp->cl_state);
1386 	return 1;
1387 }
1388 
nfs4_schedule_stateid_recovery(const struct nfs_server * server,struct nfs4_state * state)1389 int nfs4_schedule_stateid_recovery(const struct nfs_server *server, struct nfs4_state *state)
1390 {
1391 	struct nfs_client *clp = server->nfs_client;
1392 
1393 	if (!nfs4_state_mark_reclaim_nograce(clp, state))
1394 		return -EBADF;
1395 	nfs_inode_find_delegation_state_and_recover(state->inode,
1396 			&state->stateid);
1397 	dprintk("%s: scheduling stateid recovery for server %s\n", __func__,
1398 			clp->cl_hostname);
1399 	nfs4_schedule_state_manager(clp);
1400 	return 0;
1401 }
1402 EXPORT_SYMBOL_GPL(nfs4_schedule_stateid_recovery);
1403 
1404 static struct nfs4_lock_state *
nfs_state_find_lock_state_by_stateid(struct nfs4_state * state,const nfs4_stateid * stateid)1405 nfs_state_find_lock_state_by_stateid(struct nfs4_state *state,
1406 		const nfs4_stateid *stateid)
1407 {
1408 	struct nfs4_lock_state *pos;
1409 
1410 	list_for_each_entry(pos, &state->lock_states, ls_locks) {
1411 		if (!test_bit(NFS_LOCK_INITIALIZED, &pos->ls_flags))
1412 			continue;
1413 		if (nfs4_stateid_match_or_older(&pos->ls_stateid, stateid))
1414 			return pos;
1415 	}
1416 	return NULL;
1417 }
1418 
nfs_state_lock_state_matches_stateid(struct nfs4_state * state,const nfs4_stateid * stateid)1419 static bool nfs_state_lock_state_matches_stateid(struct nfs4_state *state,
1420 		const nfs4_stateid *stateid)
1421 {
1422 	bool found = false;
1423 
1424 	if (test_bit(LK_STATE_IN_USE, &state->flags)) {
1425 		spin_lock(&state->state_lock);
1426 		if (nfs_state_find_lock_state_by_stateid(state, stateid))
1427 			found = true;
1428 		spin_unlock(&state->state_lock);
1429 	}
1430 	return found;
1431 }
1432 
nfs_inode_find_state_and_recover(struct inode * inode,const nfs4_stateid * stateid)1433 void nfs_inode_find_state_and_recover(struct inode *inode,
1434 		const nfs4_stateid *stateid)
1435 {
1436 	struct nfs_client *clp = NFS_SERVER(inode)->nfs_client;
1437 	struct nfs_inode *nfsi = NFS_I(inode);
1438 	struct nfs_open_context *ctx;
1439 	struct nfs4_state *state;
1440 	bool found = false;
1441 
1442 	rcu_read_lock();
1443 	list_for_each_entry_rcu(ctx, &nfsi->open_files, list) {
1444 		state = ctx->state;
1445 		if (state == NULL)
1446 			continue;
1447 		if (nfs4_stateid_match_or_older(&state->stateid, stateid) &&
1448 		    nfs4_state_mark_reclaim_nograce(clp, state)) {
1449 			found = true;
1450 			continue;
1451 		}
1452 		if (test_bit(NFS_OPEN_STATE, &state->flags) &&
1453 		    nfs4_stateid_match_or_older(&state->open_stateid, stateid) &&
1454 		    nfs4_state_mark_reclaim_nograce(clp, state)) {
1455 			found = true;
1456 			continue;
1457 		}
1458 		if (nfs_state_lock_state_matches_stateid(state, stateid) &&
1459 		    nfs4_state_mark_reclaim_nograce(clp, state))
1460 			found = true;
1461 	}
1462 	rcu_read_unlock();
1463 
1464 	nfs_inode_find_delegation_state_and_recover(inode, stateid);
1465 	if (found)
1466 		nfs4_schedule_state_manager(clp);
1467 }
1468 
nfs4_state_mark_open_context_bad(struct nfs4_state * state,int err)1469 static void nfs4_state_mark_open_context_bad(struct nfs4_state *state, int err)
1470 {
1471 	struct inode *inode = state->inode;
1472 	struct nfs_inode *nfsi = NFS_I(inode);
1473 	struct nfs_open_context *ctx;
1474 
1475 	rcu_read_lock();
1476 	list_for_each_entry_rcu(ctx, &nfsi->open_files, list) {
1477 		if (ctx->state != state)
1478 			continue;
1479 		set_bit(NFS_CONTEXT_BAD, &ctx->flags);
1480 		pr_warn("NFSv4: state recovery failed for open file %pd2, "
1481 				"error = %d\n", ctx->dentry, err);
1482 	}
1483 	rcu_read_unlock();
1484 }
1485 
nfs4_state_mark_recovery_failed(struct nfs4_state * state,int error)1486 static void nfs4_state_mark_recovery_failed(struct nfs4_state *state, int error)
1487 {
1488 	set_bit(NFS_STATE_RECOVERY_FAILED, &state->flags);
1489 	nfs4_state_mark_open_context_bad(state, error);
1490 }
1491 
1492 
nfs4_reclaim_locks(struct nfs4_state * state,const struct nfs4_state_recovery_ops * ops)1493 static int nfs4_reclaim_locks(struct nfs4_state *state, const struct nfs4_state_recovery_ops *ops)
1494 {
1495 	struct inode *inode = state->inode;
1496 	struct nfs_inode *nfsi = NFS_I(inode);
1497 	struct file_lock *fl;
1498 	struct nfs4_lock_state *lsp;
1499 	int status = 0;
1500 	struct file_lock_context *flctx = inode->i_flctx;
1501 	struct list_head *list;
1502 
1503 	if (flctx == NULL)
1504 		return 0;
1505 
1506 	list = &flctx->flc_posix;
1507 
1508 	/* Guard against delegation returns and new lock/unlock calls */
1509 	down_write(&nfsi->rwsem);
1510 	spin_lock(&flctx->flc_lock);
1511 restart:
1512 	list_for_each_entry(fl, list, fl_list) {
1513 		if (nfs_file_open_context(fl->fl_file)->state != state)
1514 			continue;
1515 		spin_unlock(&flctx->flc_lock);
1516 		status = ops->recover_lock(state, fl);
1517 		switch (status) {
1518 		case 0:
1519 			break;
1520 		case -ETIMEDOUT:
1521 		case -ESTALE:
1522 		case -NFS4ERR_ADMIN_REVOKED:
1523 		case -NFS4ERR_STALE_STATEID:
1524 		case -NFS4ERR_BAD_STATEID:
1525 		case -NFS4ERR_EXPIRED:
1526 		case -NFS4ERR_NO_GRACE:
1527 		case -NFS4ERR_STALE_CLIENTID:
1528 		case -NFS4ERR_BADSESSION:
1529 		case -NFS4ERR_BADSLOT:
1530 		case -NFS4ERR_BAD_HIGH_SLOT:
1531 		case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
1532 			goto out;
1533 		default:
1534 			pr_err("NFS: %s: unhandled error %d\n",
1535 					__func__, status);
1536 			fallthrough;
1537 		case -ENOMEM:
1538 		case -NFS4ERR_DENIED:
1539 		case -NFS4ERR_RECLAIM_BAD:
1540 		case -NFS4ERR_RECLAIM_CONFLICT:
1541 			lsp = fl->fl_u.nfs4_fl.owner;
1542 			if (lsp)
1543 				set_bit(NFS_LOCK_LOST, &lsp->ls_flags);
1544 			status = 0;
1545 		}
1546 		spin_lock(&flctx->flc_lock);
1547 	}
1548 	if (list == &flctx->flc_posix) {
1549 		list = &flctx->flc_flock;
1550 		goto restart;
1551 	}
1552 	spin_unlock(&flctx->flc_lock);
1553 out:
1554 	up_write(&nfsi->rwsem);
1555 	return status;
1556 }
1557 
1558 #ifdef CONFIG_NFS_V4_2
nfs42_complete_copies(struct nfs4_state_owner * sp,struct nfs4_state * state)1559 static void nfs42_complete_copies(struct nfs4_state_owner *sp, struct nfs4_state *state)
1560 {
1561 	struct nfs4_copy_state *copy;
1562 
1563 	if (!test_bit(NFS_CLNT_DST_SSC_COPY_STATE, &state->flags) &&
1564 		!test_bit(NFS_CLNT_SRC_SSC_COPY_STATE, &state->flags))
1565 		return;
1566 
1567 	spin_lock(&sp->so_server->nfs_client->cl_lock);
1568 	list_for_each_entry(copy, &sp->so_server->ss_copies, copies) {
1569 		if ((test_bit(NFS_CLNT_DST_SSC_COPY_STATE, &state->flags) &&
1570 				!nfs4_stateid_match_other(&state->stateid,
1571 				&copy->parent_dst_state->stateid)))
1572 				continue;
1573 		copy->flags = 1;
1574 		if (test_and_clear_bit(NFS_CLNT_DST_SSC_COPY_STATE,
1575 				&state->flags)) {
1576 			clear_bit(NFS_CLNT_SRC_SSC_COPY_STATE, &state->flags);
1577 			complete(&copy->completion);
1578 		}
1579 	}
1580 	list_for_each_entry(copy, &sp->so_server->ss_copies, src_copies) {
1581 		if ((test_bit(NFS_CLNT_SRC_SSC_COPY_STATE, &state->flags) &&
1582 				!nfs4_stateid_match_other(&state->stateid,
1583 				&copy->parent_src_state->stateid)))
1584 				continue;
1585 		copy->flags = 1;
1586 		if (test_and_clear_bit(NFS_CLNT_DST_SSC_COPY_STATE,
1587 				&state->flags))
1588 			complete(&copy->completion);
1589 	}
1590 	spin_unlock(&sp->so_server->nfs_client->cl_lock);
1591 }
1592 #else /* !CONFIG_NFS_V4_2 */
nfs42_complete_copies(struct nfs4_state_owner * sp,struct nfs4_state * state)1593 static inline void nfs42_complete_copies(struct nfs4_state_owner *sp,
1594 					 struct nfs4_state *state)
1595 {
1596 }
1597 #endif /* CONFIG_NFS_V4_2 */
1598 
__nfs4_reclaim_open_state(struct nfs4_state_owner * sp,struct nfs4_state * state,const struct nfs4_state_recovery_ops * ops)1599 static int __nfs4_reclaim_open_state(struct nfs4_state_owner *sp, struct nfs4_state *state,
1600 				     const struct nfs4_state_recovery_ops *ops)
1601 {
1602 	struct nfs4_lock_state *lock;
1603 	int status;
1604 
1605 	status = ops->recover_open(sp, state);
1606 	if (status < 0)
1607 		return status;
1608 
1609 	status = nfs4_reclaim_locks(state, ops);
1610 	if (status < 0)
1611 		return status;
1612 
1613 	if (!test_bit(NFS_DELEGATED_STATE, &state->flags)) {
1614 		spin_lock(&state->state_lock);
1615 		list_for_each_entry(lock, &state->lock_states, ls_locks) {
1616 			trace_nfs4_state_lock_reclaim(state, lock);
1617 			if (!test_bit(NFS_LOCK_INITIALIZED, &lock->ls_flags))
1618 				pr_warn_ratelimited("NFS: %s: Lock reclaim failed!\n", __func__);
1619 		}
1620 		spin_unlock(&state->state_lock);
1621 	}
1622 
1623 	nfs42_complete_copies(sp, state);
1624 	clear_bit(NFS_STATE_RECLAIM_NOGRACE, &state->flags);
1625 	return status;
1626 }
1627 
nfs4_reclaim_open_state(struct nfs4_state_owner * sp,const struct nfs4_state_recovery_ops * ops)1628 static int nfs4_reclaim_open_state(struct nfs4_state_owner *sp, const struct nfs4_state_recovery_ops *ops)
1629 {
1630 	struct nfs4_state *state;
1631 	unsigned int loop = 0;
1632 	int status = 0;
1633 #ifdef CONFIG_NFS_V4_2
1634 	bool found_ssc_copy_state = false;
1635 #endif /* CONFIG_NFS_V4_2 */
1636 
1637 	/* Note: we rely on the sp->so_states list being ordered
1638 	 * so that we always reclaim open(O_RDWR) and/or open(O_WRITE)
1639 	 * states first.
1640 	 * This is needed to ensure that the server won't give us any
1641 	 * read delegations that we have to return if, say, we are
1642 	 * recovering after a network partition or a reboot from a
1643 	 * server that doesn't support a grace period.
1644 	 */
1645 	spin_lock(&sp->so_lock);
1646 	raw_write_seqcount_begin(&sp->so_reclaim_seqcount);
1647 restart:
1648 	list_for_each_entry(state, &sp->so_states, open_states) {
1649 		if (!test_and_clear_bit(ops->state_flag_bit, &state->flags))
1650 			continue;
1651 		if (!nfs4_valid_open_stateid(state))
1652 			continue;
1653 		if (state->state == 0)
1654 			continue;
1655 #ifdef CONFIG_NFS_V4_2
1656 		if (test_bit(NFS_SRV_SSC_COPY_STATE, &state->flags)) {
1657 			nfs4_state_mark_recovery_failed(state, -EIO);
1658 			found_ssc_copy_state = true;
1659 			continue;
1660 		}
1661 #endif /* CONFIG_NFS_V4_2 */
1662 		refcount_inc(&state->count);
1663 		spin_unlock(&sp->so_lock);
1664 		status = __nfs4_reclaim_open_state(sp, state, ops);
1665 
1666 		switch (status) {
1667 		default:
1668 			if (status >= 0) {
1669 				loop = 0;
1670 				break;
1671 			}
1672 			printk(KERN_ERR "NFS: %s: unhandled error %d\n", __func__, status);
1673 			fallthrough;
1674 		case -ENOENT:
1675 		case -ENOMEM:
1676 		case -EACCES:
1677 		case -EROFS:
1678 		case -EIO:
1679 		case -ESTALE:
1680 			/* Open state on this file cannot be recovered */
1681 			nfs4_state_mark_recovery_failed(state, status);
1682 			break;
1683 		case -EAGAIN:
1684 			ssleep(1);
1685 			if (loop++ < 10) {
1686 				set_bit(ops->state_flag_bit, &state->flags);
1687 				break;
1688 			}
1689 			fallthrough;
1690 		case -NFS4ERR_ADMIN_REVOKED:
1691 		case -NFS4ERR_STALE_STATEID:
1692 		case -NFS4ERR_OLD_STATEID:
1693 		case -NFS4ERR_BAD_STATEID:
1694 		case -NFS4ERR_RECLAIM_BAD:
1695 		case -NFS4ERR_RECLAIM_CONFLICT:
1696 			nfs4_state_mark_reclaim_nograce(sp->so_server->nfs_client, state);
1697 			break;
1698 		case -NFS4ERR_EXPIRED:
1699 		case -NFS4ERR_NO_GRACE:
1700 			nfs4_state_mark_reclaim_nograce(sp->so_server->nfs_client, state);
1701 			fallthrough;
1702 		case -NFS4ERR_STALE_CLIENTID:
1703 		case -NFS4ERR_BADSESSION:
1704 		case -NFS4ERR_BADSLOT:
1705 		case -NFS4ERR_BAD_HIGH_SLOT:
1706 		case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
1707 		case -ETIMEDOUT:
1708 			goto out_err;
1709 		}
1710 		nfs4_put_open_state(state);
1711 		spin_lock(&sp->so_lock);
1712 		goto restart;
1713 	}
1714 	raw_write_seqcount_end(&sp->so_reclaim_seqcount);
1715 	spin_unlock(&sp->so_lock);
1716 #ifdef CONFIG_NFS_V4_2
1717 	if (found_ssc_copy_state)
1718 		return -EIO;
1719 #endif /* CONFIG_NFS_V4_2 */
1720 	return 0;
1721 out_err:
1722 	nfs4_put_open_state(state);
1723 	spin_lock(&sp->so_lock);
1724 	raw_write_seqcount_end(&sp->so_reclaim_seqcount);
1725 	spin_unlock(&sp->so_lock);
1726 	return status;
1727 }
1728 
nfs4_clear_open_state(struct nfs4_state * state)1729 static void nfs4_clear_open_state(struct nfs4_state *state)
1730 {
1731 	struct nfs4_lock_state *lock;
1732 
1733 	clear_bit(NFS_DELEGATED_STATE, &state->flags);
1734 	clear_bit(NFS_O_RDONLY_STATE, &state->flags);
1735 	clear_bit(NFS_O_WRONLY_STATE, &state->flags);
1736 	clear_bit(NFS_O_RDWR_STATE, &state->flags);
1737 	spin_lock(&state->state_lock);
1738 	list_for_each_entry(lock, &state->lock_states, ls_locks) {
1739 		lock->ls_seqid.flags = 0;
1740 		clear_bit(NFS_LOCK_INITIALIZED, &lock->ls_flags);
1741 	}
1742 	spin_unlock(&state->state_lock);
1743 }
1744 
nfs4_reset_seqids(struct nfs_server * server,int (* mark_reclaim)(struct nfs_client * clp,struct nfs4_state * state))1745 static void nfs4_reset_seqids(struct nfs_server *server,
1746 	int (*mark_reclaim)(struct nfs_client *clp, struct nfs4_state *state))
1747 {
1748 	struct nfs_client *clp = server->nfs_client;
1749 	struct nfs4_state_owner *sp;
1750 	struct rb_node *pos;
1751 	struct nfs4_state *state;
1752 
1753 	spin_lock(&clp->cl_lock);
1754 	for (pos = rb_first(&server->state_owners);
1755 	     pos != NULL;
1756 	     pos = rb_next(pos)) {
1757 		sp = rb_entry(pos, struct nfs4_state_owner, so_server_node);
1758 		sp->so_seqid.flags = 0;
1759 		spin_lock(&sp->so_lock);
1760 		list_for_each_entry(state, &sp->so_states, open_states) {
1761 			if (mark_reclaim(clp, state))
1762 				nfs4_clear_open_state(state);
1763 		}
1764 		spin_unlock(&sp->so_lock);
1765 	}
1766 	spin_unlock(&clp->cl_lock);
1767 }
1768 
nfs4_state_mark_reclaim_helper(struct nfs_client * clp,int (* mark_reclaim)(struct nfs_client * clp,struct nfs4_state * state))1769 static void nfs4_state_mark_reclaim_helper(struct nfs_client *clp,
1770 	int (*mark_reclaim)(struct nfs_client *clp, struct nfs4_state *state))
1771 {
1772 	struct nfs_server *server;
1773 
1774 	rcu_read_lock();
1775 	list_for_each_entry_rcu(server, &clp->cl_superblocks, client_link)
1776 		nfs4_reset_seqids(server, mark_reclaim);
1777 	rcu_read_unlock();
1778 }
1779 
nfs4_state_start_reclaim_reboot(struct nfs_client * clp)1780 static void nfs4_state_start_reclaim_reboot(struct nfs_client *clp)
1781 {
1782 	set_bit(NFS4CLNT_RECLAIM_REBOOT, &clp->cl_state);
1783 	/* Mark all delegations for reclaim */
1784 	nfs_delegation_mark_reclaim(clp);
1785 	nfs4_state_mark_reclaim_helper(clp, nfs4_state_mark_reclaim_reboot);
1786 }
1787 
nfs4_reclaim_complete(struct nfs_client * clp,const struct nfs4_state_recovery_ops * ops,const struct cred * cred)1788 static int nfs4_reclaim_complete(struct nfs_client *clp,
1789 				 const struct nfs4_state_recovery_ops *ops,
1790 				 const struct cred *cred)
1791 {
1792 	/* Notify the server we're done reclaiming our state */
1793 	if (ops->reclaim_complete)
1794 		return ops->reclaim_complete(clp, cred);
1795 	return 0;
1796 }
1797 
nfs4_clear_reclaim_server(struct nfs_server * server)1798 static void nfs4_clear_reclaim_server(struct nfs_server *server)
1799 {
1800 	struct nfs_client *clp = server->nfs_client;
1801 	struct nfs4_state_owner *sp;
1802 	struct rb_node *pos;
1803 	struct nfs4_state *state;
1804 
1805 	spin_lock(&clp->cl_lock);
1806 	for (pos = rb_first(&server->state_owners);
1807 	     pos != NULL;
1808 	     pos = rb_next(pos)) {
1809 		sp = rb_entry(pos, struct nfs4_state_owner, so_server_node);
1810 		spin_lock(&sp->so_lock);
1811 		list_for_each_entry(state, &sp->so_states, open_states) {
1812 			if (!test_and_clear_bit(NFS_STATE_RECLAIM_REBOOT,
1813 						&state->flags))
1814 				continue;
1815 			nfs4_state_mark_reclaim_nograce(clp, state);
1816 		}
1817 		spin_unlock(&sp->so_lock);
1818 	}
1819 	spin_unlock(&clp->cl_lock);
1820 }
1821 
nfs4_state_clear_reclaim_reboot(struct nfs_client * clp)1822 static int nfs4_state_clear_reclaim_reboot(struct nfs_client *clp)
1823 {
1824 	struct nfs_server *server;
1825 
1826 	if (!test_and_clear_bit(NFS4CLNT_RECLAIM_REBOOT, &clp->cl_state))
1827 		return 0;
1828 
1829 	rcu_read_lock();
1830 	list_for_each_entry_rcu(server, &clp->cl_superblocks, client_link)
1831 		nfs4_clear_reclaim_server(server);
1832 	rcu_read_unlock();
1833 
1834 	nfs_delegation_reap_unclaimed(clp);
1835 	return 1;
1836 }
1837 
nfs4_state_end_reclaim_reboot(struct nfs_client * clp)1838 static void nfs4_state_end_reclaim_reboot(struct nfs_client *clp)
1839 {
1840 	const struct nfs4_state_recovery_ops *ops;
1841 	const struct cred *cred;
1842 	int err;
1843 
1844 	if (!nfs4_state_clear_reclaim_reboot(clp))
1845 		return;
1846 	ops = clp->cl_mvops->reboot_recovery_ops;
1847 	cred = nfs4_get_clid_cred(clp);
1848 	err = nfs4_reclaim_complete(clp, ops, cred);
1849 	put_cred(cred);
1850 	if (err == -NFS4ERR_CONN_NOT_BOUND_TO_SESSION)
1851 		set_bit(NFS4CLNT_RECLAIM_REBOOT, &clp->cl_state);
1852 }
1853 
nfs4_state_start_reclaim_nograce(struct nfs_client * clp)1854 static void nfs4_state_start_reclaim_nograce(struct nfs_client *clp)
1855 {
1856 	nfs_mark_test_expired_all_delegations(clp);
1857 	nfs4_state_mark_reclaim_helper(clp, nfs4_state_mark_reclaim_nograce);
1858 }
1859 
nfs4_recovery_handle_error(struct nfs_client * clp,int error)1860 static int nfs4_recovery_handle_error(struct nfs_client *clp, int error)
1861 {
1862 	switch (error) {
1863 	case 0:
1864 		break;
1865 	case -NFS4ERR_CB_PATH_DOWN:
1866 		nfs40_handle_cb_pathdown(clp);
1867 		break;
1868 	case -NFS4ERR_NO_GRACE:
1869 		nfs4_state_end_reclaim_reboot(clp);
1870 		break;
1871 	case -NFS4ERR_STALE_CLIENTID:
1872 		set_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state);
1873 		nfs4_state_start_reclaim_reboot(clp);
1874 		break;
1875 	case -NFS4ERR_EXPIRED:
1876 		set_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state);
1877 		nfs4_state_start_reclaim_nograce(clp);
1878 		break;
1879 	case -NFS4ERR_BADSESSION:
1880 	case -NFS4ERR_BADSLOT:
1881 	case -NFS4ERR_BAD_HIGH_SLOT:
1882 	case -NFS4ERR_DEADSESSION:
1883 	case -NFS4ERR_SEQ_FALSE_RETRY:
1884 	case -NFS4ERR_SEQ_MISORDERED:
1885 		set_bit(NFS4CLNT_SESSION_RESET, &clp->cl_state);
1886 		/* Zero session reset errors */
1887 		break;
1888 	case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
1889 		set_bit(NFS4CLNT_BIND_CONN_TO_SESSION, &clp->cl_state);
1890 		break;
1891 	default:
1892 		dprintk("%s: failed to handle error %d for server %s\n",
1893 				__func__, error, clp->cl_hostname);
1894 		return error;
1895 	}
1896 	dprintk("%s: handled error %d for server %s\n", __func__, error,
1897 			clp->cl_hostname);
1898 	return 0;
1899 }
1900 
nfs4_do_reclaim(struct nfs_client * clp,const struct nfs4_state_recovery_ops * ops)1901 static int nfs4_do_reclaim(struct nfs_client *clp, const struct nfs4_state_recovery_ops *ops)
1902 {
1903 	struct nfs4_state_owner *sp;
1904 	struct nfs_server *server;
1905 	struct rb_node *pos;
1906 	LIST_HEAD(freeme);
1907 	int status = 0;
1908 
1909 restart:
1910 	rcu_read_lock();
1911 	list_for_each_entry_rcu(server, &clp->cl_superblocks, client_link) {
1912 		nfs4_purge_state_owners(server, &freeme);
1913 		spin_lock(&clp->cl_lock);
1914 		for (pos = rb_first(&server->state_owners);
1915 		     pos != NULL;
1916 		     pos = rb_next(pos)) {
1917 			sp = rb_entry(pos,
1918 				struct nfs4_state_owner, so_server_node);
1919 			if (!test_and_clear_bit(ops->owner_flag_bit,
1920 							&sp->so_flags))
1921 				continue;
1922 			if (!atomic_inc_not_zero(&sp->so_count))
1923 				continue;
1924 			spin_unlock(&clp->cl_lock);
1925 			rcu_read_unlock();
1926 
1927 			status = nfs4_reclaim_open_state(sp, ops);
1928 			if (status < 0) {
1929 				set_bit(ops->owner_flag_bit, &sp->so_flags);
1930 				nfs4_put_state_owner(sp);
1931 				status = nfs4_recovery_handle_error(clp, status);
1932 				return (status != 0) ? status : -EAGAIN;
1933 			}
1934 
1935 			nfs4_put_state_owner(sp);
1936 			goto restart;
1937 		}
1938 		spin_unlock(&clp->cl_lock);
1939 	}
1940 	rcu_read_unlock();
1941 	nfs4_free_state_owners(&freeme);
1942 	return 0;
1943 }
1944 
nfs4_check_lease(struct nfs_client * clp)1945 static int nfs4_check_lease(struct nfs_client *clp)
1946 {
1947 	const struct cred *cred;
1948 	const struct nfs4_state_maintenance_ops *ops =
1949 		clp->cl_mvops->state_renewal_ops;
1950 	int status;
1951 
1952 	/* Is the client already known to have an expired lease? */
1953 	if (test_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state))
1954 		return 0;
1955 	cred = ops->get_state_renewal_cred(clp);
1956 	if (cred == NULL) {
1957 		cred = nfs4_get_clid_cred(clp);
1958 		status = -ENOKEY;
1959 		if (cred == NULL)
1960 			goto out;
1961 	}
1962 	status = ops->renew_lease(clp, cred);
1963 	put_cred(cred);
1964 	if (status == -ETIMEDOUT) {
1965 		set_bit(NFS4CLNT_CHECK_LEASE, &clp->cl_state);
1966 		return 0;
1967 	}
1968 out:
1969 	return nfs4_recovery_handle_error(clp, status);
1970 }
1971 
1972 /* Set NFS4CLNT_LEASE_EXPIRED and reclaim reboot state for all v4.0 errors
1973  * and for recoverable errors on EXCHANGE_ID for v4.1
1974  */
nfs4_handle_reclaim_lease_error(struct nfs_client * clp,int status)1975 static int nfs4_handle_reclaim_lease_error(struct nfs_client *clp, int status)
1976 {
1977 	switch (status) {
1978 	case -NFS4ERR_SEQ_MISORDERED:
1979 		if (test_and_set_bit(NFS4CLNT_PURGE_STATE, &clp->cl_state))
1980 			return -ESERVERFAULT;
1981 		/* Lease confirmation error: retry after purging the lease */
1982 		ssleep(1);
1983 		clear_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state);
1984 		break;
1985 	case -NFS4ERR_STALE_CLIENTID:
1986 		clear_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state);
1987 		nfs4_state_start_reclaim_reboot(clp);
1988 		break;
1989 	case -NFS4ERR_CLID_INUSE:
1990 		pr_err("NFS: Server %s reports our clientid is in use\n",
1991 			clp->cl_hostname);
1992 		nfs_mark_client_ready(clp, -EPERM);
1993 		clear_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state);
1994 		return -EPERM;
1995 	case -EACCES:
1996 	case -NFS4ERR_DELAY:
1997 	case -EAGAIN:
1998 		ssleep(1);
1999 		break;
2000 
2001 	case -NFS4ERR_MINOR_VERS_MISMATCH:
2002 		if (clp->cl_cons_state == NFS_CS_SESSION_INITING)
2003 			nfs_mark_client_ready(clp, -EPROTONOSUPPORT);
2004 		dprintk("%s: exit with error %d for server %s\n",
2005 				__func__, -EPROTONOSUPPORT, clp->cl_hostname);
2006 		return -EPROTONOSUPPORT;
2007 	case -NFS4ERR_NOT_SAME: /* FixMe: implement recovery
2008 				 * in nfs4_exchange_id */
2009 	default:
2010 		dprintk("%s: exit with error %d for server %s\n", __func__,
2011 				status, clp->cl_hostname);
2012 		return status;
2013 	}
2014 	set_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state);
2015 	dprintk("%s: handled error %d for server %s\n", __func__, status,
2016 			clp->cl_hostname);
2017 	return 0;
2018 }
2019 
nfs4_establish_lease(struct nfs_client * clp)2020 static int nfs4_establish_lease(struct nfs_client *clp)
2021 {
2022 	const struct cred *cred;
2023 	const struct nfs4_state_recovery_ops *ops =
2024 		clp->cl_mvops->reboot_recovery_ops;
2025 	int status;
2026 
2027 	status = nfs4_begin_drain_session(clp);
2028 	if (status != 0)
2029 		return status;
2030 	cred = nfs4_get_clid_cred(clp);
2031 	if (cred == NULL)
2032 		return -ENOENT;
2033 	status = ops->establish_clid(clp, cred);
2034 	put_cred(cred);
2035 	if (status != 0)
2036 		return status;
2037 	pnfs_destroy_all_layouts(clp);
2038 	return 0;
2039 }
2040 
2041 /*
2042  * Returns zero or a negative errno.  NFS4ERR values are converted
2043  * to local errno values.
2044  */
nfs4_reclaim_lease(struct nfs_client * clp)2045 static int nfs4_reclaim_lease(struct nfs_client *clp)
2046 {
2047 	int status;
2048 
2049 	status = nfs4_establish_lease(clp);
2050 	if (status < 0)
2051 		return nfs4_handle_reclaim_lease_error(clp, status);
2052 	if (test_and_clear_bit(NFS4CLNT_SERVER_SCOPE_MISMATCH, &clp->cl_state))
2053 		nfs4_state_start_reclaim_nograce(clp);
2054 	if (!test_bit(NFS4CLNT_RECLAIM_NOGRACE, &clp->cl_state))
2055 		set_bit(NFS4CLNT_RECLAIM_REBOOT, &clp->cl_state);
2056 	clear_bit(NFS4CLNT_CHECK_LEASE, &clp->cl_state);
2057 	clear_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state);
2058 	return 0;
2059 }
2060 
nfs4_purge_lease(struct nfs_client * clp)2061 static int nfs4_purge_lease(struct nfs_client *clp)
2062 {
2063 	int status;
2064 
2065 	status = nfs4_establish_lease(clp);
2066 	if (status < 0)
2067 		return nfs4_handle_reclaim_lease_error(clp, status);
2068 	clear_bit(NFS4CLNT_PURGE_STATE, &clp->cl_state);
2069 	set_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state);
2070 	nfs4_state_start_reclaim_nograce(clp);
2071 	return 0;
2072 }
2073 
2074 /*
2075  * Try remote migration of one FSID from a source server to a
2076  * destination server.  The source server provides a list of
2077  * potential destinations.
2078  *
2079  * Returns zero or a negative NFS4ERR status code.
2080  */
nfs4_try_migration(struct nfs_server * server,const struct cred * cred)2081 static int nfs4_try_migration(struct nfs_server *server, const struct cred *cred)
2082 {
2083 	struct nfs_client *clp = server->nfs_client;
2084 	struct nfs4_fs_locations *locations = NULL;
2085 	struct inode *inode;
2086 	struct page *page;
2087 	int status, result;
2088 
2089 	dprintk("--> %s: FSID %llx:%llx on \"%s\"\n", __func__,
2090 			(unsigned long long)server->fsid.major,
2091 			(unsigned long long)server->fsid.minor,
2092 			clp->cl_hostname);
2093 
2094 	result = 0;
2095 	page = alloc_page(GFP_KERNEL);
2096 	locations = kmalloc(sizeof(struct nfs4_fs_locations), GFP_KERNEL);
2097 	if (page == NULL || locations == NULL) {
2098 		dprintk("<-- %s: no memory\n", __func__);
2099 		goto out;
2100 	}
2101 
2102 	inode = d_inode(server->super->s_root);
2103 	result = nfs4_proc_get_locations(inode, locations, page, cred);
2104 	if (result) {
2105 		dprintk("<-- %s: failed to retrieve fs_locations: %d\n",
2106 			__func__, result);
2107 		goto out;
2108 	}
2109 
2110 	result = -NFS4ERR_NXIO;
2111 	if (!locations->nlocations)
2112 		goto out;
2113 
2114 	if (!(locations->fattr.valid & NFS_ATTR_FATTR_V4_LOCATIONS)) {
2115 		dprintk("<-- %s: No fs_locations data, migration skipped\n",
2116 			__func__);
2117 		goto out;
2118 	}
2119 
2120 	status = nfs4_begin_drain_session(clp);
2121 	if (status != 0) {
2122 		result = status;
2123 		goto out;
2124 	}
2125 
2126 	status = nfs4_replace_transport(server, locations);
2127 	if (status != 0) {
2128 		dprintk("<-- %s: failed to replace transport: %d\n",
2129 			__func__, status);
2130 		goto out;
2131 	}
2132 
2133 	result = 0;
2134 	dprintk("<-- %s: migration succeeded\n", __func__);
2135 
2136 out:
2137 	if (page != NULL)
2138 		__free_page(page);
2139 	kfree(locations);
2140 	if (result) {
2141 		pr_err("NFS: migration recovery failed (server %s)\n",
2142 				clp->cl_hostname);
2143 		set_bit(NFS_MIG_FAILED, &server->mig_status);
2144 	}
2145 	return result;
2146 }
2147 
2148 /*
2149  * Returns zero or a negative NFS4ERR status code.
2150  */
nfs4_handle_migration(struct nfs_client * clp)2151 static int nfs4_handle_migration(struct nfs_client *clp)
2152 {
2153 	const struct nfs4_state_maintenance_ops *ops =
2154 				clp->cl_mvops->state_renewal_ops;
2155 	struct nfs_server *server;
2156 	const struct cred *cred;
2157 
2158 	dprintk("%s: migration reported on \"%s\"\n", __func__,
2159 			clp->cl_hostname);
2160 
2161 	cred = ops->get_state_renewal_cred(clp);
2162 	if (cred == NULL)
2163 		return -NFS4ERR_NOENT;
2164 
2165 	clp->cl_mig_gen++;
2166 restart:
2167 	rcu_read_lock();
2168 	list_for_each_entry_rcu(server, &clp->cl_superblocks, client_link) {
2169 		int status;
2170 
2171 		if (server->mig_gen == clp->cl_mig_gen)
2172 			continue;
2173 		server->mig_gen = clp->cl_mig_gen;
2174 
2175 		if (!test_and_clear_bit(NFS_MIG_IN_TRANSITION,
2176 						&server->mig_status))
2177 			continue;
2178 
2179 		rcu_read_unlock();
2180 		status = nfs4_try_migration(server, cred);
2181 		if (status < 0) {
2182 			put_cred(cred);
2183 			return status;
2184 		}
2185 		goto restart;
2186 	}
2187 	rcu_read_unlock();
2188 	put_cred(cred);
2189 	return 0;
2190 }
2191 
2192 /*
2193  * Test each nfs_server on the clp's cl_superblocks list to see
2194  * if it's moved to another server.  Stop when the server no longer
2195  * returns NFS4ERR_LEASE_MOVED.
2196  */
nfs4_handle_lease_moved(struct nfs_client * clp)2197 static int nfs4_handle_lease_moved(struct nfs_client *clp)
2198 {
2199 	const struct nfs4_state_maintenance_ops *ops =
2200 				clp->cl_mvops->state_renewal_ops;
2201 	struct nfs_server *server;
2202 	const struct cred *cred;
2203 
2204 	dprintk("%s: lease moved reported on \"%s\"\n", __func__,
2205 			clp->cl_hostname);
2206 
2207 	cred = ops->get_state_renewal_cred(clp);
2208 	if (cred == NULL)
2209 		return -NFS4ERR_NOENT;
2210 
2211 	clp->cl_mig_gen++;
2212 restart:
2213 	rcu_read_lock();
2214 	list_for_each_entry_rcu(server, &clp->cl_superblocks, client_link) {
2215 		struct inode *inode;
2216 		int status;
2217 
2218 		if (server->mig_gen == clp->cl_mig_gen)
2219 			continue;
2220 		server->mig_gen = clp->cl_mig_gen;
2221 
2222 		rcu_read_unlock();
2223 
2224 		inode = d_inode(server->super->s_root);
2225 		status = nfs4_proc_fsid_present(inode, cred);
2226 		if (status != -NFS4ERR_MOVED)
2227 			goto restart;	/* wasn't this one */
2228 		if (nfs4_try_migration(server, cred) == -NFS4ERR_LEASE_MOVED)
2229 			goto restart;	/* there are more */
2230 		goto out;
2231 	}
2232 	rcu_read_unlock();
2233 
2234 out:
2235 	put_cred(cred);
2236 	return 0;
2237 }
2238 
2239 /**
2240  * nfs4_discover_server_trunking - Detect server IP address trunking
2241  *
2242  * @clp: nfs_client under test
2243  * @result: OUT: found nfs_client, or clp
2244  *
2245  * Returns zero or a negative errno.  If zero is returned,
2246  * an nfs_client pointer is planted in "result".
2247  *
2248  * Note: since we are invoked in process context, and
2249  * not from inside the state manager, we cannot use
2250  * nfs4_handle_reclaim_lease_error().
2251  */
nfs4_discover_server_trunking(struct nfs_client * clp,struct nfs_client ** result)2252 int nfs4_discover_server_trunking(struct nfs_client *clp,
2253 				  struct nfs_client **result)
2254 {
2255 	const struct nfs4_state_recovery_ops *ops =
2256 				clp->cl_mvops->reboot_recovery_ops;
2257 	struct rpc_clnt *clnt;
2258 	const struct cred *cred;
2259 	int i, status;
2260 
2261 	dprintk("NFS: %s: testing '%s'\n", __func__, clp->cl_hostname);
2262 
2263 	clnt = clp->cl_rpcclient;
2264 	i = 0;
2265 
2266 	mutex_lock(&nfs_clid_init_mutex);
2267 again:
2268 	status  = -ENOENT;
2269 	cred = nfs4_get_clid_cred(clp);
2270 	if (cred == NULL)
2271 		goto out_unlock;
2272 
2273 	status = ops->detect_trunking(clp, result, cred);
2274 	put_cred(cred);
2275 	switch (status) {
2276 	case 0:
2277 	case -EINTR:
2278 	case -ERESTARTSYS:
2279 		break;
2280 	case -ETIMEDOUT:
2281 		if (clnt->cl_softrtry)
2282 			break;
2283 		fallthrough;
2284 	case -NFS4ERR_DELAY:
2285 	case -EAGAIN:
2286 		ssleep(1);
2287 		fallthrough;
2288 	case -NFS4ERR_STALE_CLIENTID:
2289 		dprintk("NFS: %s after status %d, retrying\n",
2290 			__func__, status);
2291 		goto again;
2292 	case -EACCES:
2293 		if (i++ == 0) {
2294 			nfs4_root_machine_cred(clp);
2295 			goto again;
2296 		}
2297 		if (clnt->cl_auth->au_flavor == RPC_AUTH_UNIX)
2298 			break;
2299 		fallthrough;
2300 	case -NFS4ERR_CLID_INUSE:
2301 	case -NFS4ERR_WRONGSEC:
2302 		/* No point in retrying if we already used RPC_AUTH_UNIX */
2303 		if (clnt->cl_auth->au_flavor == RPC_AUTH_UNIX) {
2304 			status = -EPERM;
2305 			break;
2306 		}
2307 		clnt = rpc_clone_client_set_auth(clnt, RPC_AUTH_UNIX);
2308 		if (IS_ERR(clnt)) {
2309 			status = PTR_ERR(clnt);
2310 			break;
2311 		}
2312 		/* Note: this is safe because we haven't yet marked the
2313 		 * client as ready, so we are the only user of
2314 		 * clp->cl_rpcclient
2315 		 */
2316 		clnt = xchg(&clp->cl_rpcclient, clnt);
2317 		rpc_shutdown_client(clnt);
2318 		clnt = clp->cl_rpcclient;
2319 		goto again;
2320 
2321 	case -NFS4ERR_MINOR_VERS_MISMATCH:
2322 		status = -EPROTONOSUPPORT;
2323 		break;
2324 
2325 	case -EKEYEXPIRED:
2326 	case -NFS4ERR_NOT_SAME: /* FixMe: implement recovery
2327 				 * in nfs4_exchange_id */
2328 		status = -EKEYEXPIRED;
2329 		break;
2330 	default:
2331 		pr_warn("NFS: %s unhandled error %d. Exiting with error EIO\n",
2332 				__func__, status);
2333 		status = -EIO;
2334 	}
2335 
2336 out_unlock:
2337 	mutex_unlock(&nfs_clid_init_mutex);
2338 	dprintk("NFS: %s: status = %d\n", __func__, status);
2339 	return status;
2340 }
2341 
2342 #ifdef CONFIG_NFS_V4_1
nfs4_schedule_session_recovery(struct nfs4_session * session,int err)2343 void nfs4_schedule_session_recovery(struct nfs4_session *session, int err)
2344 {
2345 	struct nfs_client *clp = session->clp;
2346 
2347 	switch (err) {
2348 	default:
2349 		set_bit(NFS4CLNT_SESSION_RESET, &clp->cl_state);
2350 		break;
2351 	case -NFS4ERR_CONN_NOT_BOUND_TO_SESSION:
2352 		set_bit(NFS4CLNT_BIND_CONN_TO_SESSION, &clp->cl_state);
2353 	}
2354 	nfs4_schedule_state_manager(clp);
2355 }
2356 EXPORT_SYMBOL_GPL(nfs4_schedule_session_recovery);
2357 
nfs41_notify_server(struct nfs_client * clp)2358 void nfs41_notify_server(struct nfs_client *clp)
2359 {
2360 	/* Use CHECK_LEASE to ping the server with a SEQUENCE */
2361 	set_bit(NFS4CLNT_CHECK_LEASE, &clp->cl_state);
2362 	nfs4_schedule_state_manager(clp);
2363 }
2364 
nfs4_reset_all_state(struct nfs_client * clp)2365 static void nfs4_reset_all_state(struct nfs_client *clp)
2366 {
2367 	if (test_and_set_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state) == 0) {
2368 		set_bit(NFS4CLNT_PURGE_STATE, &clp->cl_state);
2369 		clear_bit(NFS4CLNT_LEASE_CONFIRM, &clp->cl_state);
2370 		nfs4_state_start_reclaim_nograce(clp);
2371 		dprintk("%s: scheduling reset of all state for server %s!\n",
2372 				__func__, clp->cl_hostname);
2373 		nfs4_schedule_state_manager(clp);
2374 	}
2375 }
2376 
nfs41_handle_server_reboot(struct nfs_client * clp)2377 static void nfs41_handle_server_reboot(struct nfs_client *clp)
2378 {
2379 	if (test_and_set_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state) == 0) {
2380 		nfs4_state_start_reclaim_reboot(clp);
2381 		dprintk("%s: server %s rebooted!\n", __func__,
2382 				clp->cl_hostname);
2383 		nfs4_schedule_state_manager(clp);
2384 	}
2385 }
2386 
nfs41_handle_all_state_revoked(struct nfs_client * clp)2387 static void nfs41_handle_all_state_revoked(struct nfs_client *clp)
2388 {
2389 	nfs4_reset_all_state(clp);
2390 	dprintk("%s: state revoked on server %s\n", __func__, clp->cl_hostname);
2391 }
2392 
nfs41_handle_some_state_revoked(struct nfs_client * clp)2393 static void nfs41_handle_some_state_revoked(struct nfs_client *clp)
2394 {
2395 	nfs4_state_start_reclaim_nograce(clp);
2396 	nfs4_schedule_state_manager(clp);
2397 
2398 	dprintk("%s: state revoked on server %s\n", __func__, clp->cl_hostname);
2399 }
2400 
nfs41_handle_recallable_state_revoked(struct nfs_client * clp)2401 static void nfs41_handle_recallable_state_revoked(struct nfs_client *clp)
2402 {
2403 	/* FIXME: For now, we destroy all layouts. */
2404 	pnfs_destroy_all_layouts(clp);
2405 	nfs_test_expired_all_delegations(clp);
2406 	dprintk("%s: Recallable state revoked on server %s!\n", __func__,
2407 			clp->cl_hostname);
2408 }
2409 
nfs41_handle_backchannel_fault(struct nfs_client * clp)2410 static void nfs41_handle_backchannel_fault(struct nfs_client *clp)
2411 {
2412 	set_bit(NFS4CLNT_SESSION_RESET, &clp->cl_state);
2413 	nfs4_schedule_state_manager(clp);
2414 
2415 	dprintk("%s: server %s declared a backchannel fault\n", __func__,
2416 			clp->cl_hostname);
2417 }
2418 
nfs41_handle_cb_path_down(struct nfs_client * clp)2419 static void nfs41_handle_cb_path_down(struct nfs_client *clp)
2420 {
2421 	if (test_and_set_bit(NFS4CLNT_BIND_CONN_TO_SESSION,
2422 		&clp->cl_state) == 0)
2423 		nfs4_schedule_state_manager(clp);
2424 }
2425 
nfs41_handle_sequence_flag_errors(struct nfs_client * clp,u32 flags,bool recovery)2426 void nfs41_handle_sequence_flag_errors(struct nfs_client *clp, u32 flags,
2427 		bool recovery)
2428 {
2429 	if (!flags)
2430 		return;
2431 
2432 	dprintk("%s: \"%s\" (client ID %llx) flags=0x%08x\n",
2433 		__func__, clp->cl_hostname, clp->cl_clientid, flags);
2434 	/*
2435 	 * If we're called from the state manager thread, then assume we're
2436 	 * already handling the RECLAIM_NEEDED and/or STATE_REVOKED.
2437 	 * Those flags are expected to remain set until we're done
2438 	 * recovering (see RFC5661, section 18.46.3).
2439 	 */
2440 	if (recovery)
2441 		goto out_recovery;
2442 
2443 	if (flags & SEQ4_STATUS_RESTART_RECLAIM_NEEDED)
2444 		nfs41_handle_server_reboot(clp);
2445 	if (flags & (SEQ4_STATUS_EXPIRED_ALL_STATE_REVOKED))
2446 		nfs41_handle_all_state_revoked(clp);
2447 	if (flags & (SEQ4_STATUS_EXPIRED_SOME_STATE_REVOKED |
2448 			    SEQ4_STATUS_ADMIN_STATE_REVOKED))
2449 		nfs41_handle_some_state_revoked(clp);
2450 	if (flags & SEQ4_STATUS_LEASE_MOVED)
2451 		nfs4_schedule_lease_moved_recovery(clp);
2452 	if (flags & SEQ4_STATUS_RECALLABLE_STATE_REVOKED)
2453 		nfs41_handle_recallable_state_revoked(clp);
2454 out_recovery:
2455 	if (flags & SEQ4_STATUS_BACKCHANNEL_FAULT)
2456 		nfs41_handle_backchannel_fault(clp);
2457 	else if (flags & (SEQ4_STATUS_CB_PATH_DOWN |
2458 				SEQ4_STATUS_CB_PATH_DOWN_SESSION))
2459 		nfs41_handle_cb_path_down(clp);
2460 }
2461 
nfs4_reset_session(struct nfs_client * clp)2462 static int nfs4_reset_session(struct nfs_client *clp)
2463 {
2464 	const struct cred *cred;
2465 	int status;
2466 
2467 	if (!nfs4_has_session(clp))
2468 		return 0;
2469 	status = nfs4_begin_drain_session(clp);
2470 	if (status != 0)
2471 		return status;
2472 	cred = nfs4_get_clid_cred(clp);
2473 	status = nfs4_proc_destroy_session(clp->cl_session, cred);
2474 	switch (status) {
2475 	case 0:
2476 	case -NFS4ERR_BADSESSION:
2477 	case -NFS4ERR_DEADSESSION:
2478 		break;
2479 	case -NFS4ERR_BACK_CHAN_BUSY:
2480 	case -NFS4ERR_DELAY:
2481 		set_bit(NFS4CLNT_SESSION_RESET, &clp->cl_state);
2482 		status = 0;
2483 		ssleep(1);
2484 		goto out;
2485 	default:
2486 		status = nfs4_recovery_handle_error(clp, status);
2487 		goto out;
2488 	}
2489 
2490 	memset(clp->cl_session->sess_id.data, 0, NFS4_MAX_SESSIONID_LEN);
2491 	status = nfs4_proc_create_session(clp, cred);
2492 	if (status) {
2493 		dprintk("%s: session reset failed with status %d for server %s!\n",
2494 			__func__, status, clp->cl_hostname);
2495 		status = nfs4_handle_reclaim_lease_error(clp, status);
2496 		goto out;
2497 	}
2498 	nfs41_finish_session_reset(clp);
2499 	dprintk("%s: session reset was successful for server %s!\n",
2500 			__func__, clp->cl_hostname);
2501 out:
2502 	put_cred(cred);
2503 	return status;
2504 }
2505 
nfs4_bind_conn_to_session(struct nfs_client * clp)2506 static int nfs4_bind_conn_to_session(struct nfs_client *clp)
2507 {
2508 	const struct cred *cred;
2509 	int ret;
2510 
2511 	if (!nfs4_has_session(clp))
2512 		return 0;
2513 	ret = nfs4_begin_drain_session(clp);
2514 	if (ret != 0)
2515 		return ret;
2516 	cred = nfs4_get_clid_cred(clp);
2517 	ret = nfs4_proc_bind_conn_to_session(clp, cred);
2518 	put_cred(cred);
2519 	clear_bit(NFS4CLNT_BIND_CONN_TO_SESSION, &clp->cl_state);
2520 	switch (ret) {
2521 	case 0:
2522 		dprintk("%s: bind_conn_to_session was successful for server %s!\n",
2523 			__func__, clp->cl_hostname);
2524 		break;
2525 	case -NFS4ERR_DELAY:
2526 		ssleep(1);
2527 		set_bit(NFS4CLNT_BIND_CONN_TO_SESSION, &clp->cl_state);
2528 		break;
2529 	default:
2530 		return nfs4_recovery_handle_error(clp, ret);
2531 	}
2532 	return 0;
2533 }
2534 
nfs4_layoutreturn_any_run(struct nfs_client * clp)2535 static void nfs4_layoutreturn_any_run(struct nfs_client *clp)
2536 {
2537 	int iomode = 0;
2538 
2539 	if (test_and_clear_bit(NFS4CLNT_RECALL_ANY_LAYOUT_READ, &clp->cl_state))
2540 		iomode += IOMODE_READ;
2541 	if (test_and_clear_bit(NFS4CLNT_RECALL_ANY_LAYOUT_RW, &clp->cl_state))
2542 		iomode += IOMODE_RW;
2543 	/* Note: IOMODE_READ + IOMODE_RW == IOMODE_ANY */
2544 	if (iomode) {
2545 		pnfs_layout_return_unused_byclid(clp, iomode);
2546 		set_bit(NFS4CLNT_RUN_MANAGER, &clp->cl_state);
2547 	}
2548 }
2549 #else /* CONFIG_NFS_V4_1 */
nfs4_reset_session(struct nfs_client * clp)2550 static int nfs4_reset_session(struct nfs_client *clp) { return 0; }
2551 
nfs4_bind_conn_to_session(struct nfs_client * clp)2552 static int nfs4_bind_conn_to_session(struct nfs_client *clp)
2553 {
2554 	return 0;
2555 }
2556 
nfs4_layoutreturn_any_run(struct nfs_client * clp)2557 static void nfs4_layoutreturn_any_run(struct nfs_client *clp)
2558 {
2559 }
2560 #endif /* CONFIG_NFS_V4_1 */
2561 
nfs4_state_manager(struct nfs_client * clp)2562 static void nfs4_state_manager(struct nfs_client *clp)
2563 {
2564 	unsigned int memflags;
2565 	int status = 0;
2566 	const char *section = "", *section_sep = "";
2567 
2568 	/*
2569 	 * State recovery can deadlock if the direct reclaim code tries
2570 	 * start NFS writeback. So ensure memory allocations are all
2571 	 * GFP_NOFS.
2572 	 */
2573 	memflags = memalloc_nofs_save();
2574 
2575 	/* Ensure exclusive access to NFSv4 state */
2576 	do {
2577 		trace_nfs4_state_mgr(clp);
2578 		clear_bit(NFS4CLNT_RUN_MANAGER, &clp->cl_state);
2579 		if (test_bit(NFS4CLNT_PURGE_STATE, &clp->cl_state)) {
2580 			section = "purge state";
2581 			status = nfs4_purge_lease(clp);
2582 			if (status < 0)
2583 				goto out_error;
2584 			continue;
2585 		}
2586 
2587 		if (test_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state)) {
2588 			section = "lease expired";
2589 			/* We're going to have to re-establish a clientid */
2590 			status = nfs4_reclaim_lease(clp);
2591 			if (status < 0)
2592 				goto out_error;
2593 			continue;
2594 		}
2595 
2596 		/* Initialize or reset the session */
2597 		if (test_and_clear_bit(NFS4CLNT_SESSION_RESET, &clp->cl_state)) {
2598 			section = "reset session";
2599 			status = nfs4_reset_session(clp);
2600 			if (test_bit(NFS4CLNT_LEASE_EXPIRED, &clp->cl_state))
2601 				continue;
2602 			if (status < 0)
2603 				goto out_error;
2604 		}
2605 
2606 		/* Send BIND_CONN_TO_SESSION */
2607 		if (test_and_clear_bit(NFS4CLNT_BIND_CONN_TO_SESSION,
2608 				&clp->cl_state)) {
2609 			section = "bind conn to session";
2610 			status = nfs4_bind_conn_to_session(clp);
2611 			if (status < 0)
2612 				goto out_error;
2613 			continue;
2614 		}
2615 
2616 		if (test_and_clear_bit(NFS4CLNT_CHECK_LEASE, &clp->cl_state)) {
2617 			section = "check lease";
2618 			status = nfs4_check_lease(clp);
2619 			if (status < 0)
2620 				goto out_error;
2621 			continue;
2622 		}
2623 
2624 		if (test_and_clear_bit(NFS4CLNT_MOVED, &clp->cl_state)) {
2625 			section = "migration";
2626 			status = nfs4_handle_migration(clp);
2627 			if (status < 0)
2628 				goto out_error;
2629 		}
2630 
2631 		if (test_and_clear_bit(NFS4CLNT_LEASE_MOVED, &clp->cl_state)) {
2632 			section = "lease moved";
2633 			status = nfs4_handle_lease_moved(clp);
2634 			if (status < 0)
2635 				goto out_error;
2636 		}
2637 
2638 		/* First recover reboot state... */
2639 		if (test_bit(NFS4CLNT_RECLAIM_REBOOT, &clp->cl_state)) {
2640 			section = "reclaim reboot";
2641 			status = nfs4_do_reclaim(clp,
2642 				clp->cl_mvops->reboot_recovery_ops);
2643 			if (status == -EAGAIN)
2644 				continue;
2645 			if (status < 0)
2646 				goto out_error;
2647 			nfs4_state_end_reclaim_reboot(clp);
2648 			continue;
2649 		}
2650 
2651 		/* Detect expired delegations... */
2652 		if (test_and_clear_bit(NFS4CLNT_DELEGATION_EXPIRED, &clp->cl_state)) {
2653 			section = "detect expired delegations";
2654 			nfs_reap_expired_delegations(clp);
2655 			continue;
2656 		}
2657 
2658 		/* Now recover expired state... */
2659 		if (test_bit(NFS4CLNT_RECLAIM_NOGRACE, &clp->cl_state)) {
2660 			section = "reclaim nograce";
2661 			status = nfs4_do_reclaim(clp,
2662 				clp->cl_mvops->nograce_recovery_ops);
2663 			if (status == -EAGAIN)
2664 				continue;
2665 			if (status < 0)
2666 				goto out_error;
2667 			clear_bit(NFS4CLNT_RECLAIM_NOGRACE, &clp->cl_state);
2668 		}
2669 
2670 		memalloc_nofs_restore(memflags);
2671 		nfs4_end_drain_session(clp);
2672 		nfs4_clear_state_manager_bit(clp);
2673 
2674 		if (!test_and_set_bit(NFS4CLNT_RECALL_RUNNING, &clp->cl_state)) {
2675 			if (test_and_clear_bit(NFS4CLNT_DELEGRETURN, &clp->cl_state)) {
2676 				nfs_client_return_marked_delegations(clp);
2677 				set_bit(NFS4CLNT_RUN_MANAGER, &clp->cl_state);
2678 			}
2679 			nfs4_layoutreturn_any_run(clp);
2680 			clear_bit(NFS4CLNT_RECALL_RUNNING, &clp->cl_state);
2681 		}
2682 
2683 		/* Did we race with an attempt to give us more work? */
2684 		if (!test_bit(NFS4CLNT_RUN_MANAGER, &clp->cl_state))
2685 			return;
2686 		if (test_and_set_bit(NFS4CLNT_MANAGER_RUNNING, &clp->cl_state) != 0)
2687 			return;
2688 		memflags = memalloc_nofs_save();
2689 	} while (refcount_read(&clp->cl_count) > 1 && !signalled());
2690 	goto out_drain;
2691 
2692 out_error:
2693 	if (strlen(section))
2694 		section_sep = ": ";
2695 	trace_nfs4_state_mgr_failed(clp, section, status);
2696 	pr_warn_ratelimited("NFS: state manager%s%s failed on NFSv4 server %s"
2697 			" with error %d\n", section_sep, section,
2698 			clp->cl_hostname, -status);
2699 	ssleep(1);
2700 out_drain:
2701 	memalloc_nofs_restore(memflags);
2702 	nfs4_end_drain_session(clp);
2703 	nfs4_clear_state_manager_bit(clp);
2704 }
2705 
nfs4_run_state_manager(void * ptr)2706 static int nfs4_run_state_manager(void *ptr)
2707 {
2708 	struct nfs_client *clp = ptr;
2709 
2710 	allow_signal(SIGKILL);
2711 	nfs4_state_manager(clp);
2712 	nfs_put_client(clp);
2713 	module_put_and_exit(0);
2714 	return 0;
2715 }
2716 
2717 /*
2718  * Local variables:
2719  *  c-basic-offset: 8
2720  * End:
2721  */
2722