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v6.13.7
  1// SPDX-License-Identifier: GPL-2.0-or-later
  2/* AFS server record management
  3 *
  4 * Copyright (C) 2002, 2007 Red Hat, Inc. All Rights Reserved.
  5 * Written by David Howells (dhowells@redhat.com)
  6 */
  7
  8#include <linux/sched.h>
  9#include <linux/slab.h>
 10#include "afs_fs.h"
 11#include "internal.h"
 12#include "protocol_yfs.h"
 13
 14static unsigned afs_server_gc_delay = 10;	/* Server record timeout in seconds */
 
 15static atomic_t afs_server_debug_id;
 16
 17static struct afs_server *afs_maybe_use_server(struct afs_server *,
 18					       enum afs_server_trace);
 19static void __afs_put_server(struct afs_net *, struct afs_server *);
 
 
 
 
 
 
 
 20
 21/*
 22 * Find a server by one of its addresses.
 23 */
 24struct afs_server *afs_find_server(struct afs_net *net, const struct rxrpc_peer *peer)
 
 25{
 26	const struct afs_endpoint_state *estate;
 27	const struct afs_addr_list *alist;
 28	struct afs_server *server = NULL;
 29	unsigned int i;
 30	int seq = 1;
 
 
 
 
 
 
 31
 32	rcu_read_lock();
 33
 34	do {
 35		if (server)
 36			afs_unuse_server_notime(net, server, afs_server_trace_put_find_rsq);
 37		server = NULL;
 38		seq++; /* 2 on the 1st/lockless path, otherwise odd */
 39		read_seqbegin_or_lock(&net->fs_addr_lock, &seq);
 40
 41		hlist_for_each_entry_rcu(server, &net->fs_addresses, addr_link) {
 42			estate = rcu_dereference(server->endpoint_state);
 43			alist = estate->addresses;
 44			for (i = 0; i < alist->nr_addrs; i++)
 45				if (alist->addrs[i].peer == peer)
 46					goto found;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 47		}
 48
 49		server = NULL;
 50		continue;
 51	found:
 52		server = afs_maybe_use_server(server, afs_server_trace_get_by_addr);
 
 53
 54	} while (need_seqretry(&net->fs_addr_lock, seq));
 55
 56	done_seqretry(&net->fs_addr_lock, seq);
 57
 58	rcu_read_unlock();
 59	return server;
 60}
 61
 62/*
 63 * Look up a server by its UUID and mark it active.
 64 */
 65struct afs_server *afs_find_server_by_uuid(struct afs_net *net, const uuid_t *uuid)
 66{
 67	struct afs_server *server = NULL;
 68	struct rb_node *p;
 69	int diff, seq = 1;
 70
 71	_enter("%pU", uuid);
 72
 73	do {
 74		/* Unfortunately, rbtree walking doesn't give reliable results
 75		 * under just the RCU read lock, so we have to check for
 76		 * changes.
 77		 */
 78		if (server)
 79			afs_unuse_server(net, server, afs_server_trace_put_uuid_rsq);
 80		server = NULL;
 81		seq++; /* 2 on the 1st/lockless path, otherwise odd */
 82		read_seqbegin_or_lock(&net->fs_lock, &seq);
 83
 84		p = net->fs_servers.rb_node;
 85		while (p) {
 86			server = rb_entry(p, struct afs_server, uuid_rb);
 87
 88			diff = memcmp(uuid, &server->uuid, sizeof(*uuid));
 89			if (diff < 0) {
 90				p = p->rb_left;
 91			} else if (diff > 0) {
 92				p = p->rb_right;
 93			} else {
 94				afs_use_server(server, afs_server_trace_get_by_uuid);
 95				break;
 96			}
 97
 98			server = NULL;
 99		}
100	} while (need_seqretry(&net->fs_lock, seq));
101
102	done_seqretry(&net->fs_lock, seq);
103
104	_leave(" = %p", server);
105	return server;
106}
107
108/*
109 * Install a server record in the namespace tree.  If there's a clash, we stick
110 * it into a list anchored on whichever afs_server struct is actually in the
111 * tree.
112 */
113static struct afs_server *afs_install_server(struct afs_cell *cell,
114					     struct afs_server *candidate)
115{
116	const struct afs_endpoint_state *estate;
117	const struct afs_addr_list *alist;
118	struct afs_server *server, *next;
119	struct afs_net *net = cell->net;
120	struct rb_node **pp, *p;
121	int diff;
122
123	_enter("%p", candidate);
124
125	write_seqlock(&net->fs_lock);
126
127	/* Firstly install the server in the UUID lookup tree */
128	pp = &net->fs_servers.rb_node;
129	p = NULL;
130	while (*pp) {
131		p = *pp;
132		_debug("- consider %p", p);
133		server = rb_entry(p, struct afs_server, uuid_rb);
134		diff = memcmp(&candidate->uuid, &server->uuid, sizeof(uuid_t));
135		if (diff < 0) {
136			pp = &(*pp)->rb_left;
137		} else if (diff > 0) {
138			pp = &(*pp)->rb_right;
139		} else {
140			if (server->cell == cell)
141				goto exists;
142
143			/* We have the same UUID representing servers in
144			 * different cells.  Append the new server to the list.
145			 */
146			for (;;) {
147				next = rcu_dereference_protected(
148					server->uuid_next,
149					lockdep_is_held(&net->fs_lock.lock));
150				if (!next)
151					break;
152				server = next;
153			}
154			rcu_assign_pointer(server->uuid_next, candidate);
155			candidate->uuid_prev = server;
156			server = candidate;
157			goto added_dup;
158		}
159	}
160
161	server = candidate;
162	rb_link_node(&server->uuid_rb, p, pp);
163	rb_insert_color(&server->uuid_rb, &net->fs_servers);
164	hlist_add_head_rcu(&server->proc_link, &net->fs_proc);
165
166	afs_get_cell(cell, afs_cell_trace_get_server);
167
168added_dup:
169	write_seqlock(&net->fs_addr_lock);
170	estate = rcu_dereference_protected(server->endpoint_state,
171					   lockdep_is_held(&net->fs_addr_lock.lock));
172	alist = estate->addresses;
173
174	/* Secondly, if the server has any IPv4 and/or IPv6 addresses, install
175	 * it in the IPv4 and/or IPv6 reverse-map lists.
176	 *
177	 * TODO: For speed we want to use something other than a flat list
178	 * here; even sorting the list in terms of lowest address would help a
179	 * bit, but anything we might want to do gets messy and memory
180	 * intensive.
181	 */
182	if (alist->nr_addrs > 0)
183		hlist_add_head_rcu(&server->addr_link, &net->fs_addresses);
 
 
184
185	write_sequnlock(&net->fs_addr_lock);
 
186
187exists:
188	afs_get_server(server, afs_server_trace_get_install);
189	write_sequnlock(&net->fs_lock);
190	return server;
191}
192
193/*
194 * Allocate a new server record and mark it active.
195 */
196static struct afs_server *afs_alloc_server(struct afs_cell *cell,
197					   const uuid_t *uuid,
198					   struct afs_addr_list *alist)
199{
200	struct afs_endpoint_state *estate;
201	struct afs_server *server;
202	struct afs_net *net = cell->net;
203
204	_enter("");
205
206	server = kzalloc(sizeof(struct afs_server), GFP_KERNEL);
207	if (!server)
208		goto enomem;
209
210	estate = kzalloc(sizeof(struct afs_endpoint_state), GFP_KERNEL);
211	if (!estate)
212		goto enomem_server;
213
214	refcount_set(&server->ref, 1);
215	atomic_set(&server->active, 1);
216	server->debug_id = atomic_inc_return(&afs_server_debug_id);
 
217	server->addr_version = alist->version;
218	server->uuid = *uuid;
 
219	rwlock_init(&server->fs_lock);
220	INIT_LIST_HEAD(&server->volumes);
 
221	init_waitqueue_head(&server->probe_wq);
222	INIT_LIST_HEAD(&server->probe_link);
223	spin_lock_init(&server->probe_lock);
224	server->cell = cell;
225	server->rtt = UINT_MAX;
226	server->service_id = FS_SERVICE;
227
228	server->probe_counter = 1;
229	server->probed_at = jiffies - LONG_MAX / 2;
230	refcount_set(&estate->ref, 1);
231	estate->addresses = alist;
232	estate->server_id = server->debug_id;
233	estate->probe_seq = 1;
234	rcu_assign_pointer(server->endpoint_state, estate);
235
236	afs_inc_servers_outstanding(net);
237	trace_afs_server(server->debug_id, 1, 1, afs_server_trace_alloc);
238	trace_afs_estate(estate->server_id, estate->probe_seq, refcount_read(&estate->ref),
239			 afs_estate_trace_alloc_server);
240	_leave(" = %p", server);
241	return server;
242
243enomem_server:
244	kfree(server);
245enomem:
246	_leave(" = NULL [nomem]");
247	return NULL;
248}
249
250/*
251 * Look up an address record for a server
252 */
253static struct afs_addr_list *afs_vl_lookup_addrs(struct afs_cell *cell,
254						 struct key *key, const uuid_t *uuid)
255{
256	struct afs_vl_cursor vc;
257	struct afs_addr_list *alist = NULL;
258	int ret;
259
260	ret = -ERESTARTSYS;
261	if (afs_begin_vlserver_operation(&vc, cell, key)) {
262		while (afs_select_vlserver(&vc)) {
263			if (test_bit(AFS_VLSERVER_FL_IS_YFS, &vc.server->flags))
264				alist = afs_yfsvl_get_endpoints(&vc, uuid);
265			else
266				alist = afs_vl_get_addrs_u(&vc, uuid);
267		}
268
269		ret = afs_end_vlserver_operation(&vc);
270	}
271
272	return ret < 0 ? ERR_PTR(ret) : alist;
273}
274
275/*
276 * Get or create a fileserver record.
277 */
278struct afs_server *afs_lookup_server(struct afs_cell *cell, struct key *key,
279				     const uuid_t *uuid, u32 addr_version)
280{
281	struct afs_addr_list *alist;
282	struct afs_server *server, *candidate;
283
284	_enter("%p,%pU", cell->net, uuid);
285
286	server = afs_find_server_by_uuid(cell->net, uuid);
287	if (server) {
288		if (server->addr_version != addr_version)
289			set_bit(AFS_SERVER_FL_NEEDS_UPDATE, &server->flags);
290		return server;
291	}
292
293	alist = afs_vl_lookup_addrs(cell, key, uuid);
294	if (IS_ERR(alist))
295		return ERR_CAST(alist);
296
297	candidate = afs_alloc_server(cell, uuid, alist);
298	if (!candidate) {
299		afs_put_addrlist(alist, afs_alist_trace_put_server_oom);
300		return ERR_PTR(-ENOMEM);
301	}
302
303	server = afs_install_server(cell, candidate);
304	if (server != candidate) {
305		afs_put_addrlist(alist, afs_alist_trace_put_server_dup);
306		kfree(candidate);
307	} else {
308		/* Immediately dispatch an asynchronous probe to each interface
309		 * on the fileserver.  This will make sure the repeat-probing
310		 * service is started.
311		 */
312		afs_fs_probe_fileserver(cell->net, server, alist, key);
313	}
314
 
315	return server;
316}
317
318/*
319 * Set the server timer to fire after a given delay, assuming it's not already
320 * set for an earlier time.
321 */
322static void afs_set_server_timer(struct afs_net *net, time64_t delay)
323{
324	if (net->live) {
325		afs_inc_servers_outstanding(net);
326		if (timer_reduce(&net->fs_timer, jiffies + delay * HZ))
327			afs_dec_servers_outstanding(net);
328	}
329}
330
331/*
332 * Server management timer.  We have an increment on fs_outstanding that we
333 * need to pass along to the work item.
334 */
335void afs_servers_timer(struct timer_list *timer)
336{
337	struct afs_net *net = container_of(timer, struct afs_net, fs_timer);
338
339	_enter("");
340	if (!queue_work(afs_wq, &net->fs_manager))
341		afs_dec_servers_outstanding(net);
342}
343
344/*
345 * Get a reference on a server object.
346 */
347struct afs_server *afs_get_server(struct afs_server *server,
348				  enum afs_server_trace reason)
349{
350	unsigned int a;
351	int r;
352
353	__refcount_inc(&server->ref, &r);
354	a = atomic_read(&server->active);
355	trace_afs_server(server->debug_id, r + 1, a, reason);
356	return server;
357}
358
359/*
360 * Try to get a reference on a server object.
361 */
362static struct afs_server *afs_maybe_use_server(struct afs_server *server,
363					       enum afs_server_trace reason)
364{
365	unsigned int a;
366	int r;
367
368	if (!__refcount_inc_not_zero(&server->ref, &r))
369		return NULL;
370
371	a = atomic_inc_return(&server->active);
372	trace_afs_server(server->debug_id, r + 1, a, reason);
373	return server;
374}
375
376/*
377 * Get an active count on a server object.
378 */
379struct afs_server *afs_use_server(struct afs_server *server, enum afs_server_trace reason)
380{
381	unsigned int a;
382	int r;
383
384	__refcount_inc(&server->ref, &r);
385	a = atomic_inc_return(&server->active);
386
387	trace_afs_server(server->debug_id, r + 1, a, reason);
388	return server;
389}
390
391/*
392 * Release a reference on a server record.
393 */
394void afs_put_server(struct afs_net *net, struct afs_server *server,
395		    enum afs_server_trace reason)
396{
397	unsigned int a, debug_id = server->debug_id;
398	bool zero;
399	int r;
400
401	if (!server)
402		return;
403
404	a = atomic_read(&server->active);
405	zero = __refcount_dec_and_test(&server->ref, &r);
406	trace_afs_server(debug_id, r - 1, a, reason);
407	if (unlikely(zero))
408		__afs_put_server(net, server);
409}
410
411/*
412 * Drop an active count on a server object without updating the last-unused
413 * time.
414 */
415void afs_unuse_server_notime(struct afs_net *net, struct afs_server *server,
416			     enum afs_server_trace reason)
417{
418	if (server) {
419		unsigned int active = atomic_dec_return(&server->active);
420
421		if (active == 0)
422			afs_set_server_timer(net, afs_server_gc_delay);
423		afs_put_server(net, server, reason);
424	}
425}
426
427/*
428 * Drop an active count on a server object.
429 */
430void afs_unuse_server(struct afs_net *net, struct afs_server *server,
431		      enum afs_server_trace reason)
432{
433	if (server) {
434		server->unuse_time = ktime_get_real_seconds();
435		afs_unuse_server_notime(net, server, reason);
436	}
437}
438
439static void afs_server_rcu(struct rcu_head *rcu)
440{
441	struct afs_server *server = container_of(rcu, struct afs_server, rcu);
442
443	trace_afs_server(server->debug_id, refcount_read(&server->ref),
444			 atomic_read(&server->active), afs_server_trace_free);
445	afs_put_endpoint_state(rcu_access_pointer(server->endpoint_state),
446			       afs_estate_trace_put_server);
447	afs_put_cell(server->cell, afs_cell_trace_put_server);
448	kfree(server);
449}
450
451static void __afs_put_server(struct afs_net *net, struct afs_server *server)
452{
453	call_rcu(&server->rcu, afs_server_rcu);
454	afs_dec_servers_outstanding(net);
455}
456
457static void afs_give_up_callbacks(struct afs_net *net, struct afs_server *server)
458{
459	struct afs_endpoint_state *estate = rcu_access_pointer(server->endpoint_state);
460	struct afs_addr_list *alist = estate->addresses;
461
462	afs_fs_give_up_all_callbacks(net, server, &alist->addrs[alist->preferred], NULL);
463}
464
465/*
466 * destroy a dead server
467 */
468static void afs_destroy_server(struct afs_net *net, struct afs_server *server)
469{
 
 
 
 
 
 
 
 
 
 
470	if (test_bit(AFS_SERVER_FL_MAY_HAVE_CB, &server->flags))
471		afs_give_up_callbacks(net, server);
472
473	afs_put_server(net, server, afs_server_trace_destroy);
 
 
 
 
 
 
474}
475
476/*
477 * Garbage collect any expired servers.
478 */
479static void afs_gc_servers(struct afs_net *net, struct afs_server *gc_list)
480{
481	struct afs_server *server, *next, *prev;
482	int active;
 
483
484	while ((server = gc_list)) {
485		gc_list = server->gc_next;
486
487		write_seqlock(&net->fs_lock);
488
489		active = atomic_read(&server->active);
490		if (active == 0) {
491			trace_afs_server(server->debug_id, refcount_read(&server->ref),
492					 active, afs_server_trace_gc);
493			next = rcu_dereference_protected(
494				server->uuid_next, lockdep_is_held(&net->fs_lock.lock));
495			prev = server->uuid_prev;
496			if (!prev) {
497				/* The one at the front is in the tree */
498				if (!next) {
499					rb_erase(&server->uuid_rb, &net->fs_servers);
500				} else {
501					rb_replace_node_rcu(&server->uuid_rb,
502							    &next->uuid_rb,
503							    &net->fs_servers);
504					next->uuid_prev = NULL;
505				}
506			} else {
507				/* This server is not at the front */
508				rcu_assign_pointer(prev->uuid_next, next);
509				if (next)
510					next->uuid_prev = prev;
511			}
512
513			list_del(&server->probe_link);
514			hlist_del_rcu(&server->proc_link);
515			if (!hlist_unhashed(&server->addr_link))
516				hlist_del_rcu(&server->addr_link);
517		}
518		write_sequnlock(&net->fs_lock);
519
520		if (active == 0)
 
 
 
 
 
 
521			afs_destroy_server(net, server);
 
522	}
523}
524
525/*
526 * Manage the records of servers known to be within a network namespace.  This
527 * includes garbage collecting unused servers.
528 *
529 * Note also that we were given an increment on net->servers_outstanding by
530 * whoever queued us that we need to deal with before returning.
531 */
532void afs_manage_servers(struct work_struct *work)
533{
534	struct afs_net *net = container_of(work, struct afs_net, fs_manager);
535	struct afs_server *gc_list = NULL;
536	struct rb_node *cursor;
537	time64_t now = ktime_get_real_seconds(), next_manage = TIME64_MAX;
538	bool purging = !net->live;
539
540	_enter("");
541
542	/* Trawl the server list looking for servers that have expired from
543	 * lack of use.
544	 */
545	read_seqlock_excl(&net->fs_lock);
546
547	for (cursor = rb_first(&net->fs_servers); cursor; cursor = rb_next(cursor)) {
548		struct afs_server *server =
549			rb_entry(cursor, struct afs_server, uuid_rb);
550		int active = atomic_read(&server->active);
551
552		_debug("manage %pU %u", &server->uuid, active);
553
554		if (purging) {
555			trace_afs_server(server->debug_id, refcount_read(&server->ref),
556					 active, afs_server_trace_purging);
557			if (active != 0)
558				pr_notice("Can't purge s=%08x\n", server->debug_id);
559		}
560
561		if (active == 0) {
562			time64_t expire_at = server->unuse_time;
563
564			if (!test_bit(AFS_SERVER_FL_VL_FAIL, &server->flags) &&
565			    !test_bit(AFS_SERVER_FL_NOT_FOUND, &server->flags))
566				expire_at += afs_server_gc_delay;
567			if (purging || expire_at <= now) {
568				server->gc_next = gc_list;
569				gc_list = server;
570			} else if (expire_at < next_manage) {
571				next_manage = expire_at;
572			}
573		}
574	}
575
576	read_sequnlock_excl(&net->fs_lock);
577
578	/* Update the timer on the way out.  We have to pass an increment on
579	 * servers_outstanding in the namespace that we are in to the timer or
580	 * the work scheduler.
581	 */
582	if (!purging && next_manage < TIME64_MAX) {
583		now = ktime_get_real_seconds();
584
585		if (next_manage - now <= 0) {
586			if (queue_work(afs_wq, &net->fs_manager))
587				afs_inc_servers_outstanding(net);
588		} else {
589			afs_set_server_timer(net, next_manage - now);
590		}
591	}
592
593	afs_gc_servers(net, gc_list);
594
595	afs_dec_servers_outstanding(net);
596	_leave(" [%d]", atomic_read(&net->servers_outstanding));
597}
598
599static void afs_queue_server_manager(struct afs_net *net)
600{
601	afs_inc_servers_outstanding(net);
602	if (!queue_work(afs_wq, &net->fs_manager))
603		afs_dec_servers_outstanding(net);
604}
605
606/*
607 * Purge list of servers.
608 */
609void afs_purge_servers(struct afs_net *net)
610{
611	_enter("");
612
613	if (del_timer_sync(&net->fs_timer))
614		afs_dec_servers_outstanding(net);
615
616	afs_queue_server_manager(net);
617
618	_debug("wait");
619	atomic_dec(&net->servers_outstanding);
620	wait_var_event(&net->servers_outstanding,
621		       !atomic_read(&net->servers_outstanding));
622	_leave("");
623}
624
625/*
626 * Get an update for a server's address list.
627 */
628static noinline bool afs_update_server_record(struct afs_operation *op,
629					      struct afs_server *server,
630					      struct key *key)
631{
632	struct afs_endpoint_state *estate;
633	struct afs_addr_list *alist;
634	bool has_addrs;
635
636	_enter("");
637
638	trace_afs_server(server->debug_id, refcount_read(&server->ref),
639			 atomic_read(&server->active),
640			 afs_server_trace_update);
641
642	alist = afs_vl_lookup_addrs(op->volume->cell, op->key, &server->uuid);
 
643	if (IS_ERR(alist)) {
644		rcu_read_lock();
645		estate = rcu_dereference(server->endpoint_state);
646		has_addrs = estate->addresses;
647		rcu_read_unlock();
648
649		if ((PTR_ERR(alist) == -ERESTARTSYS ||
650		     PTR_ERR(alist) == -EINTR) &&
651		    (op->flags & AFS_OPERATION_UNINTR) &&
652		    has_addrs) {
653			_leave(" = t [intr]");
654			return true;
655		}
656		afs_op_set_error(op, PTR_ERR(alist));
657		_leave(" = f [%d]", afs_op_error(op));
658		return false;
659	}
660
661	if (server->addr_version != alist->version)
662		afs_fs_probe_fileserver(op->net, server, alist, key);
 
 
 
 
 
 
 
663
664	afs_put_addrlist(alist, afs_alist_trace_put_server_update);
 
665	_leave(" = t");
666	return true;
667}
668
669/*
670 * See if a server's address list needs updating.
671 */
672bool afs_check_server_record(struct afs_operation *op, struct afs_server *server,
673			     struct key *key)
674{
 
 
675	bool success;
676	int ret, retries = 0;
677
678	_enter("");
679
680	ASSERT(server);
681
682retry:
683	if (test_bit(AFS_SERVER_FL_UPDATING, &server->flags))
684		goto wait;
685	if (test_bit(AFS_SERVER_FL_NEEDS_UPDATE, &server->flags))
686		goto update;
687	_leave(" = t [good]");
688	return true;
689
690update:
691	if (!test_and_set_bit_lock(AFS_SERVER_FL_UPDATING, &server->flags)) {
692		clear_bit(AFS_SERVER_FL_NEEDS_UPDATE, &server->flags);
693		success = afs_update_server_record(op, server, key);
694		clear_bit_unlock(AFS_SERVER_FL_UPDATING, &server->flags);
695		wake_up_bit(&server->flags, AFS_SERVER_FL_UPDATING);
696		_leave(" = %d", success);
697		return success;
698	}
699
700wait:
701	ret = wait_on_bit(&server->flags, AFS_SERVER_FL_UPDATING,
702			  (op->flags & AFS_OPERATION_UNINTR) ?
703			  TASK_UNINTERRUPTIBLE : TASK_INTERRUPTIBLE);
704	if (ret == -ERESTARTSYS) {
705		afs_op_set_error(op, ret);
 
 
 
 
706		_leave(" = f [intr]");
707		return false;
708	}
709
710	retries++;
711	if (retries == 4) {
712		_leave(" = f [stale]");
713		ret = -ESTALE;
714		return false;
715	}
716	goto retry;
717}
v5.4
  1// SPDX-License-Identifier: GPL-2.0-or-later
  2/* AFS server record management
  3 *
  4 * Copyright (C) 2002, 2007 Red Hat, Inc. All Rights Reserved.
  5 * Written by David Howells (dhowells@redhat.com)
  6 */
  7
  8#include <linux/sched.h>
  9#include <linux/slab.h>
 10#include "afs_fs.h"
 11#include "internal.h"
 12#include "protocol_yfs.h"
 13
 14static unsigned afs_server_gc_delay = 10;	/* Server record timeout in seconds */
 15static unsigned afs_server_update_delay = 30;	/* Time till VLDB recheck in secs */
 16static atomic_t afs_server_debug_id;
 17
 18static void afs_inc_servers_outstanding(struct afs_net *net)
 19{
 20	atomic_inc(&net->servers_outstanding);
 21}
 22
 23static void afs_dec_servers_outstanding(struct afs_net *net)
 24{
 25	if (atomic_dec_and_test(&net->servers_outstanding))
 26		wake_up_var(&net->servers_outstanding);
 27}
 28
 29/*
 30 * Find a server by one of its addresses.
 31 */
 32struct afs_server *afs_find_server(struct afs_net *net,
 33				   const struct sockaddr_rxrpc *srx)
 34{
 35	const struct sockaddr_in6 *a = &srx->transport.sin6, *b;
 36	const struct afs_addr_list *alist;
 37	struct afs_server *server = NULL;
 38	unsigned int i;
 39	bool ipv6 = true;
 40	int seq = 0, diff;
 41
 42	if (srx->transport.sin6.sin6_addr.s6_addr32[0] == 0 ||
 43	    srx->transport.sin6.sin6_addr.s6_addr32[1] == 0 ||
 44	    srx->transport.sin6.sin6_addr.s6_addr32[2] == htonl(0xffff))
 45		ipv6 = false;
 46
 47	rcu_read_lock();
 48
 49	do {
 50		if (server)
 51			afs_put_server(net, server, afs_server_trace_put_find_rsq);
 52		server = NULL;
 
 53		read_seqbegin_or_lock(&net->fs_addr_lock, &seq);
 54
 55		if (ipv6) {
 56			hlist_for_each_entry_rcu(server, &net->fs_addresses6, addr6_link) {
 57				alist = rcu_dereference(server->addresses);
 58				for (i = alist->nr_ipv4; i < alist->nr_addrs; i++) {
 59					b = &alist->addrs[i].transport.sin6;
 60					diff = ((u16 __force)a->sin6_port -
 61						(u16 __force)b->sin6_port);
 62					if (diff == 0)
 63						diff = memcmp(&a->sin6_addr,
 64							      &b->sin6_addr,
 65							      sizeof(struct in6_addr));
 66					if (diff == 0)
 67						goto found;
 68				}
 69			}
 70		} else {
 71			hlist_for_each_entry_rcu(server, &net->fs_addresses4, addr4_link) {
 72				alist = rcu_dereference(server->addresses);
 73				for (i = 0; i < alist->nr_ipv4; i++) {
 74					b = &alist->addrs[i].transport.sin6;
 75					diff = ((u16 __force)a->sin6_port -
 76						(u16 __force)b->sin6_port);
 77					if (diff == 0)
 78						diff = ((u32 __force)a->sin6_addr.s6_addr32[3] -
 79							(u32 __force)b->sin6_addr.s6_addr32[3]);
 80					if (diff == 0)
 81						goto found;
 82				}
 83			}
 84		}
 85
 86		server = NULL;
 
 87	found:
 88		if (server && !atomic_inc_not_zero(&server->usage))
 89			server = NULL;
 90
 91	} while (need_seqretry(&net->fs_addr_lock, seq));
 92
 93	done_seqretry(&net->fs_addr_lock, seq);
 94
 95	rcu_read_unlock();
 96	return server;
 97}
 98
 99/*
100 * Look up a server by its UUID
101 */
102struct afs_server *afs_find_server_by_uuid(struct afs_net *net, const uuid_t *uuid)
103{
104	struct afs_server *server = NULL;
105	struct rb_node *p;
106	int diff, seq = 0;
107
108	_enter("%pU", uuid);
109
110	do {
111		/* Unfortunately, rbtree walking doesn't give reliable results
112		 * under just the RCU read lock, so we have to check for
113		 * changes.
114		 */
115		if (server)
116			afs_put_server(net, server, afs_server_trace_put_uuid_rsq);
117		server = NULL;
118
119		read_seqbegin_or_lock(&net->fs_lock, &seq);
120
121		p = net->fs_servers.rb_node;
122		while (p) {
123			server = rb_entry(p, struct afs_server, uuid_rb);
124
125			diff = memcmp(uuid, &server->uuid, sizeof(*uuid));
126			if (diff < 0) {
127				p = p->rb_left;
128			} else if (diff > 0) {
129				p = p->rb_right;
130			} else {
131				afs_get_server(server, afs_server_trace_get_by_uuid);
132				break;
133			}
134
135			server = NULL;
136		}
137	} while (need_seqretry(&net->fs_lock, seq));
138
139	done_seqretry(&net->fs_lock, seq);
140
141	_leave(" = %p", server);
142	return server;
143}
144
145/*
146 * Install a server record in the namespace tree
 
 
147 */
148static struct afs_server *afs_install_server(struct afs_net *net,
149					     struct afs_server *candidate)
150{
 
151	const struct afs_addr_list *alist;
152	struct afs_server *server;
 
153	struct rb_node **pp, *p;
154	int ret = -EEXIST, diff;
155
156	_enter("%p", candidate);
157
158	write_seqlock(&net->fs_lock);
159
160	/* Firstly install the server in the UUID lookup tree */
161	pp = &net->fs_servers.rb_node;
162	p = NULL;
163	while (*pp) {
164		p = *pp;
165		_debug("- consider %p", p);
166		server = rb_entry(p, struct afs_server, uuid_rb);
167		diff = memcmp(&candidate->uuid, &server->uuid, sizeof(uuid_t));
168		if (diff < 0)
169			pp = &(*pp)->rb_left;
170		else if (diff > 0)
171			pp = &(*pp)->rb_right;
172		else
173			goto exists;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
174	}
175
176	server = candidate;
177	rb_link_node(&server->uuid_rb, p, pp);
178	rb_insert_color(&server->uuid_rb, &net->fs_servers);
179	hlist_add_head_rcu(&server->proc_link, &net->fs_proc);
180
 
 
 
181	write_seqlock(&net->fs_addr_lock);
182	alist = rcu_dereference_protected(server->addresses,
183					  lockdep_is_held(&net->fs_addr_lock.lock));
 
184
185	/* Secondly, if the server has any IPv4 and/or IPv6 addresses, install
186	 * it in the IPv4 and/or IPv6 reverse-map lists.
187	 *
188	 * TODO: For speed we want to use something other than a flat list
189	 * here; even sorting the list in terms of lowest address would help a
190	 * bit, but anything we might want to do gets messy and memory
191	 * intensive.
192	 */
193	if (alist->nr_ipv4 > 0)
194		hlist_add_head_rcu(&server->addr4_link, &net->fs_addresses4);
195	if (alist->nr_addrs > alist->nr_ipv4)
196		hlist_add_head_rcu(&server->addr6_link, &net->fs_addresses6);
197
198	write_sequnlock(&net->fs_addr_lock);
199	ret = 0;
200
201exists:
202	afs_get_server(server, afs_server_trace_get_install);
203	write_sequnlock(&net->fs_lock);
204	return server;
205}
206
207/*
208 * allocate a new server record
209 */
210static struct afs_server *afs_alloc_server(struct afs_net *net,
211					   const uuid_t *uuid,
212					   struct afs_addr_list *alist)
213{
 
214	struct afs_server *server;
 
215
216	_enter("");
217
218	server = kzalloc(sizeof(struct afs_server), GFP_KERNEL);
219	if (!server)
220		goto enomem;
221
222	atomic_set(&server->usage, 1);
 
 
 
 
 
223	server->debug_id = atomic_inc_return(&afs_server_debug_id);
224	RCU_INIT_POINTER(server->addresses, alist);
225	server->addr_version = alist->version;
226	server->uuid = *uuid;
227	server->update_at = ktime_get_real_seconds() + afs_server_update_delay;
228	rwlock_init(&server->fs_lock);
229	INIT_HLIST_HEAD(&server->cb_volumes);
230	rwlock_init(&server->cb_break_lock);
231	init_waitqueue_head(&server->probe_wq);
 
232	spin_lock_init(&server->probe_lock);
 
 
 
 
 
 
 
 
 
 
 
233
234	afs_inc_servers_outstanding(net);
235	trace_afs_server(server, 1, afs_server_trace_alloc);
 
 
236	_leave(" = %p", server);
237	return server;
238
 
 
239enomem:
240	_leave(" = NULL [nomem]");
241	return NULL;
242}
243
244/*
245 * Look up an address record for a server
246 */
247static struct afs_addr_list *afs_vl_lookup_addrs(struct afs_cell *cell,
248						 struct key *key, const uuid_t *uuid)
249{
250	struct afs_vl_cursor vc;
251	struct afs_addr_list *alist = NULL;
252	int ret;
253
254	ret = -ERESTARTSYS;
255	if (afs_begin_vlserver_operation(&vc, cell, key)) {
256		while (afs_select_vlserver(&vc)) {
257			if (test_bit(AFS_VLSERVER_FL_IS_YFS, &vc.server->flags))
258				alist = afs_yfsvl_get_endpoints(&vc, uuid);
259			else
260				alist = afs_vl_get_addrs_u(&vc, uuid);
261		}
262
263		ret = afs_end_vlserver_operation(&vc);
264	}
265
266	return ret < 0 ? ERR_PTR(ret) : alist;
267}
268
269/*
270 * Get or create a fileserver record.
271 */
272struct afs_server *afs_lookup_server(struct afs_cell *cell, struct key *key,
273				     const uuid_t *uuid)
274{
275	struct afs_addr_list *alist;
276	struct afs_server *server, *candidate;
277
278	_enter("%p,%pU", cell->net, uuid);
279
280	server = afs_find_server_by_uuid(cell->net, uuid);
281	if (server)
 
 
282		return server;
 
283
284	alist = afs_vl_lookup_addrs(cell, key, uuid);
285	if (IS_ERR(alist))
286		return ERR_CAST(alist);
287
288	candidate = afs_alloc_server(cell->net, uuid, alist);
289	if (!candidate) {
290		afs_put_addrlist(alist);
291		return ERR_PTR(-ENOMEM);
292	}
293
294	server = afs_install_server(cell->net, candidate);
295	if (server != candidate) {
296		afs_put_addrlist(alist);
297		kfree(candidate);
 
 
 
 
 
 
298	}
299
300	_leave(" = %p{%d}", server, atomic_read(&server->usage));
301	return server;
302}
303
304/*
305 * Set the server timer to fire after a given delay, assuming it's not already
306 * set for an earlier time.
307 */
308static void afs_set_server_timer(struct afs_net *net, time64_t delay)
309{
310	if (net->live) {
311		afs_inc_servers_outstanding(net);
312		if (timer_reduce(&net->fs_timer, jiffies + delay * HZ))
313			afs_dec_servers_outstanding(net);
314	}
315}
316
317/*
318 * Server management timer.  We have an increment on fs_outstanding that we
319 * need to pass along to the work item.
320 */
321void afs_servers_timer(struct timer_list *timer)
322{
323	struct afs_net *net = container_of(timer, struct afs_net, fs_timer);
324
325	_enter("");
326	if (!queue_work(afs_wq, &net->fs_manager))
327		afs_dec_servers_outstanding(net);
328}
329
330/*
331 * Get a reference on a server object.
332 */
333struct afs_server *afs_get_server(struct afs_server *server,
334				  enum afs_server_trace reason)
335{
336	unsigned int u = atomic_inc_return(&server->usage);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
337
338	trace_afs_server(server, u, reason);
339	return server;
340}
341
342/*
343 * Release a reference on a server record.
344 */
345void afs_put_server(struct afs_net *net, struct afs_server *server,
346		    enum afs_server_trace reason)
347{
348	unsigned int usage;
 
 
349
350	if (!server)
351		return;
352
353	server->put_time = ktime_get_real_seconds();
 
 
 
 
 
354
355	usage = atomic_dec_return(&server->usage);
 
 
 
 
 
 
 
 
356
357	trace_afs_server(server, usage, reason);
 
 
 
 
358
359	if (likely(usage > 0))
360		return;
361
362	afs_set_server_timer(net, afs_server_gc_delay);
 
 
 
 
 
 
363}
364
365static void afs_server_rcu(struct rcu_head *rcu)
366{
367	struct afs_server *server = container_of(rcu, struct afs_server, rcu);
368
369	trace_afs_server(server, atomic_read(&server->usage),
370			 afs_server_trace_free);
371	afs_put_addrlist(rcu_access_pointer(server->addresses));
 
 
372	kfree(server);
373}
374
 
 
 
 
 
 
 
 
 
 
 
 
 
 
375/*
376 * destroy a dead server
377 */
378static void afs_destroy_server(struct afs_net *net, struct afs_server *server)
379{
380	struct afs_addr_list *alist = rcu_access_pointer(server->addresses);
381	struct afs_addr_cursor ac = {
382		.alist	= alist,
383		.index	= alist->preferred,
384		.error	= 0,
385	};
386
387	trace_afs_server(server, atomic_read(&server->usage),
388			 afs_server_trace_give_up_cb);
389
390	if (test_bit(AFS_SERVER_FL_MAY_HAVE_CB, &server->flags))
391		afs_fs_give_up_all_callbacks(net, server, &ac, NULL);
392
393	wait_var_event(&server->probe_outstanding,
394		       atomic_read(&server->probe_outstanding) == 0);
395
396	trace_afs_server(server, atomic_read(&server->usage),
397			 afs_server_trace_destroy);
398	call_rcu(&server->rcu, afs_server_rcu);
399	afs_dec_servers_outstanding(net);
400}
401
402/*
403 * Garbage collect any expired servers.
404 */
405static void afs_gc_servers(struct afs_net *net, struct afs_server *gc_list)
406{
407	struct afs_server *server;
408	bool deleted;
409	int usage;
410
411	while ((server = gc_list)) {
412		gc_list = server->gc_next;
413
414		write_seqlock(&net->fs_lock);
415		usage = 1;
416		deleted = atomic_try_cmpxchg(&server->usage, &usage, 0);
417		trace_afs_server(server, usage, afs_server_trace_gc);
418		if (deleted) {
419			rb_erase(&server->uuid_rb, &net->fs_servers);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
420			hlist_del_rcu(&server->proc_link);
 
 
421		}
422		write_sequnlock(&net->fs_lock);
423
424		if (deleted) {
425			write_seqlock(&net->fs_addr_lock);
426			if (!hlist_unhashed(&server->addr4_link))
427				hlist_del_rcu(&server->addr4_link);
428			if (!hlist_unhashed(&server->addr6_link))
429				hlist_del_rcu(&server->addr6_link);
430			write_sequnlock(&net->fs_addr_lock);
431			afs_destroy_server(net, server);
432		}
433	}
434}
435
436/*
437 * Manage the records of servers known to be within a network namespace.  This
438 * includes garbage collecting unused servers.
439 *
440 * Note also that we were given an increment on net->servers_outstanding by
441 * whoever queued us that we need to deal with before returning.
442 */
443void afs_manage_servers(struct work_struct *work)
444{
445	struct afs_net *net = container_of(work, struct afs_net, fs_manager);
446	struct afs_server *gc_list = NULL;
447	struct rb_node *cursor;
448	time64_t now = ktime_get_real_seconds(), next_manage = TIME64_MAX;
449	bool purging = !net->live;
450
451	_enter("");
452
453	/* Trawl the server list looking for servers that have expired from
454	 * lack of use.
455	 */
456	read_seqlock_excl(&net->fs_lock);
457
458	for (cursor = rb_first(&net->fs_servers); cursor; cursor = rb_next(cursor)) {
459		struct afs_server *server =
460			rb_entry(cursor, struct afs_server, uuid_rb);
461		int usage = atomic_read(&server->usage);
462
463		_debug("manage %pU %u", &server->uuid, usage);
464
465		ASSERTCMP(usage, >=, 1);
466		ASSERTIFCMP(purging, usage, ==, 1);
 
 
 
 
467
468		if (usage == 1) {
469			time64_t expire_at = server->put_time;
470
471			if (!test_bit(AFS_SERVER_FL_VL_FAIL, &server->flags) &&
472			    !test_bit(AFS_SERVER_FL_NOT_FOUND, &server->flags))
473				expire_at += afs_server_gc_delay;
474			if (purging || expire_at <= now) {
475				server->gc_next = gc_list;
476				gc_list = server;
477			} else if (expire_at < next_manage) {
478				next_manage = expire_at;
479			}
480		}
481	}
482
483	read_sequnlock_excl(&net->fs_lock);
484
485	/* Update the timer on the way out.  We have to pass an increment on
486	 * servers_outstanding in the namespace that we are in to the timer or
487	 * the work scheduler.
488	 */
489	if (!purging && next_manage < TIME64_MAX) {
490		now = ktime_get_real_seconds();
491
492		if (next_manage - now <= 0) {
493			if (queue_work(afs_wq, &net->fs_manager))
494				afs_inc_servers_outstanding(net);
495		} else {
496			afs_set_server_timer(net, next_manage - now);
497		}
498	}
499
500	afs_gc_servers(net, gc_list);
501
502	afs_dec_servers_outstanding(net);
503	_leave(" [%d]", atomic_read(&net->servers_outstanding));
504}
505
506static void afs_queue_server_manager(struct afs_net *net)
507{
508	afs_inc_servers_outstanding(net);
509	if (!queue_work(afs_wq, &net->fs_manager))
510		afs_dec_servers_outstanding(net);
511}
512
513/*
514 * Purge list of servers.
515 */
516void afs_purge_servers(struct afs_net *net)
517{
518	_enter("");
519
520	if (del_timer_sync(&net->fs_timer))
521		atomic_dec(&net->servers_outstanding);
522
523	afs_queue_server_manager(net);
524
525	_debug("wait");
 
526	wait_var_event(&net->servers_outstanding,
527		       !atomic_read(&net->servers_outstanding));
528	_leave("");
529}
530
531/*
532 * Get an update for a server's address list.
533 */
534static noinline bool afs_update_server_record(struct afs_fs_cursor *fc, struct afs_server *server)
 
 
535{
536	struct afs_addr_list *alist, *discard;
 
 
537
538	_enter("");
539
540	trace_afs_server(server, atomic_read(&server->usage), afs_server_trace_update);
 
 
541
542	alist = afs_vl_lookup_addrs(fc->vnode->volume->cell, fc->key,
543				    &server->uuid);
544	if (IS_ERR(alist)) {
 
 
 
 
 
545		if ((PTR_ERR(alist) == -ERESTARTSYS ||
546		     PTR_ERR(alist) == -EINTR) &&
547		    !(fc->flags & AFS_FS_CURSOR_INTR) &&
548		    server->addresses) {
549			_leave(" = t [intr]");
550			return true;
551		}
552		fc->error = PTR_ERR(alist);
553		_leave(" = f [%d]", fc->error);
554		return false;
555	}
556
557	discard = alist;
558	if (server->addr_version != alist->version) {
559		write_lock(&server->fs_lock);
560		discard = rcu_dereference_protected(server->addresses,
561						    lockdep_is_held(&server->fs_lock));
562		rcu_assign_pointer(server->addresses, alist);
563		server->addr_version = alist->version;
564		write_unlock(&server->fs_lock);
565	}
566
567	server->update_at = ktime_get_real_seconds() + afs_server_update_delay;
568	afs_put_addrlist(discard);
569	_leave(" = t");
570	return true;
571}
572
573/*
574 * See if a server's address list needs updating.
575 */
576bool afs_check_server_record(struct afs_fs_cursor *fc, struct afs_server *server)
 
577{
578	time64_t now = ktime_get_real_seconds();
579	long diff;
580	bool success;
581	int ret, retries = 0;
582
583	_enter("");
584
585	ASSERT(server);
586
587retry:
588	diff = READ_ONCE(server->update_at) - now;
589	if (diff > 0) {
590		_leave(" = t [not now %ld]", diff);
591		return true;
592	}
 
593
 
594	if (!test_and_set_bit_lock(AFS_SERVER_FL_UPDATING, &server->flags)) {
595		success = afs_update_server_record(fc, server);
 
596		clear_bit_unlock(AFS_SERVER_FL_UPDATING, &server->flags);
597		wake_up_bit(&server->flags, AFS_SERVER_FL_UPDATING);
598		_leave(" = %d", success);
599		return success;
600	}
601
 
602	ret = wait_on_bit(&server->flags, AFS_SERVER_FL_UPDATING,
603			  TASK_INTERRUPTIBLE);
 
604	if (ret == -ERESTARTSYS) {
605		if (!(fc->flags & AFS_FS_CURSOR_INTR) && server->addresses) {
606			_leave(" = t [intr]");
607			return true;
608		}
609		fc->error = ret;
610		_leave(" = f [intr]");
611		return false;
612	}
613
614	retries++;
615	if (retries == 4) {
616		_leave(" = f [stale]");
617		ret = -ESTALE;
618		return false;
619	}
620	goto retry;
621}