1 /*
2 * net/tipc/node.c: TIPC node management routines
3 *
4 * Copyright (c) 2000-2006, 2012-2016, Ericsson AB
5 * Copyright (c) 2005-2006, 2010-2014, Wind River Systems
6 * All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions are met:
10 *
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * 3. Neither the names of the copyright holders nor the names of its
17 * contributors may be used to endorse or promote products derived from
18 * this software without specific prior written permission.
19 *
20 * Alternatively, this software may be distributed under the terms of the
21 * GNU General Public License ("GPL") version 2 as published by the Free
22 * Software Foundation.
23 *
24 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
25 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
28 * LIABLE 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 BUSINESS
31 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
32 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
33 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
34 * POSSIBILITY OF SUCH DAMAGE.
35 */
36
37 #include "core.h"
38 #include "link.h"
39 #include "node.h"
40 #include "name_distr.h"
41 #include "socket.h"
42 #include "bcast.h"
43 #include "monitor.h"
44 #include "discover.h"
45 #include "netlink.h"
46 #include "trace.h"
47 #include "crypto.h"
48
49 #define INVALID_NODE_SIG 0x10000
50 #define NODE_CLEANUP_AFTER 300000
51
52 /* Flags used to take different actions according to flag type
53 * TIPC_NOTIFY_NODE_DOWN: notify node is down
54 * TIPC_NOTIFY_NODE_UP: notify node is up
55 * TIPC_DISTRIBUTE_NAME: publish or withdraw link state name type
56 */
57 enum {
58 TIPC_NOTIFY_NODE_DOWN = (1 << 3),
59 TIPC_NOTIFY_NODE_UP = (1 << 4),
60 TIPC_NOTIFY_LINK_UP = (1 << 6),
61 TIPC_NOTIFY_LINK_DOWN = (1 << 7)
62 };
63
64 struct tipc_link_entry {
65 struct tipc_link *link;
66 spinlock_t lock; /* per link */
67 u32 mtu;
68 struct sk_buff_head inputq;
69 struct tipc_media_addr maddr;
70 };
71
72 struct tipc_bclink_entry {
73 struct tipc_link *link;
74 struct sk_buff_head inputq1;
75 struct sk_buff_head arrvq;
76 struct sk_buff_head inputq2;
77 struct sk_buff_head namedq;
78 u16 named_rcv_nxt;
79 bool named_open;
80 };
81
82 /**
83 * struct tipc_node - TIPC node structure
84 * @addr: network address of node
85 * @kref: reference counter to node object
86 * @lock: rwlock governing access to structure
87 * @net: the applicable net namespace
88 * @hash: links to adjacent nodes in unsorted hash chain
89 * @active_links: bearer ids of active links, used as index into links[] array
90 * @links: array containing references to all links to node
91 * @bc_entry: broadcast link entry
92 * @action_flags: bit mask of different types of node actions
93 * @state: connectivity state vs peer node
94 * @preliminary: a preliminary node or not
95 * @failover_sent: failover sent or not
96 * @sync_point: sequence number where synch/failover is finished
97 * @list: links to adjacent nodes in sorted list of cluster's nodes
98 * @working_links: number of working links to node (both active and standby)
99 * @link_cnt: number of links to node
100 * @capabilities: bitmap, indicating peer node's functional capabilities
101 * @signature: node instance identifier
102 * @link_id: local and remote bearer ids of changing link, if any
103 * @peer_id: 128-bit ID of peer
104 * @peer_id_string: ID string of peer
105 * @publ_list: list of publications
106 * @conn_sks: list of connections (FIXME)
107 * @timer: node's keepalive timer
108 * @keepalive_intv: keepalive interval in milliseconds
109 * @rcu: rcu struct for tipc_node
110 * @delete_at: indicates the time for deleting a down node
111 * @peer_net: peer's net namespace
112 * @peer_hash_mix: hash for this peer (FIXME)
113 * @crypto_rx: RX crypto handler
114 */
115 struct tipc_node {
116 u32 addr;
117 struct kref kref;
118 rwlock_t lock;
119 struct net *net;
120 struct hlist_node hash;
121 int active_links[2];
122 struct tipc_link_entry links[MAX_BEARERS];
123 struct tipc_bclink_entry bc_entry;
124 int action_flags;
125 struct list_head list;
126 int state;
127 bool preliminary;
128 bool failover_sent;
129 u16 sync_point;
130 int link_cnt;
131 u16 working_links;
132 u16 capabilities;
133 u32 signature;
134 u32 link_id;
135 u8 peer_id[16];
136 char peer_id_string[NODE_ID_STR_LEN];
137 struct list_head publ_list;
138 struct list_head conn_sks;
139 unsigned long keepalive_intv;
140 struct timer_list timer;
141 struct rcu_head rcu;
142 unsigned long delete_at;
143 struct net *peer_net;
144 u32 peer_hash_mix;
145 #ifdef CONFIG_TIPC_CRYPTO
146 struct tipc_crypto *crypto_rx;
147 #endif
148 };
149
150 /* Node FSM states and events:
151 */
152 enum {
153 SELF_DOWN_PEER_DOWN = 0xdd,
154 SELF_UP_PEER_UP = 0xaa,
155 SELF_DOWN_PEER_LEAVING = 0xd1,
156 SELF_UP_PEER_COMING = 0xac,
157 SELF_COMING_PEER_UP = 0xca,
158 SELF_LEAVING_PEER_DOWN = 0x1d,
159 NODE_FAILINGOVER = 0xf0,
160 NODE_SYNCHING = 0xcc
161 };
162
163 enum {
164 SELF_ESTABL_CONTACT_EVT = 0xece,
165 SELF_LOST_CONTACT_EVT = 0x1ce,
166 PEER_ESTABL_CONTACT_EVT = 0x9ece,
167 PEER_LOST_CONTACT_EVT = 0x91ce,
168 NODE_FAILOVER_BEGIN_EVT = 0xfbe,
169 NODE_FAILOVER_END_EVT = 0xfee,
170 NODE_SYNCH_BEGIN_EVT = 0xcbe,
171 NODE_SYNCH_END_EVT = 0xcee
172 };
173
174 static void __tipc_node_link_down(struct tipc_node *n, int *bearer_id,
175 struct sk_buff_head *xmitq,
176 struct tipc_media_addr **maddr);
177 static void tipc_node_link_down(struct tipc_node *n, int bearer_id,
178 bool delete);
179 static void node_lost_contact(struct tipc_node *n, struct sk_buff_head *inputq);
180 static void tipc_node_delete(struct tipc_node *node);
181 static void tipc_node_timeout(struct timer_list *t);
182 static void tipc_node_fsm_evt(struct tipc_node *n, int evt);
183 static struct tipc_node *tipc_node_find(struct net *net, u32 addr);
184 static struct tipc_node *tipc_node_find_by_id(struct net *net, u8 *id);
185 static bool node_is_up(struct tipc_node *n);
186 static void tipc_node_delete_from_list(struct tipc_node *node);
187
188 struct tipc_sock_conn {
189 u32 port;
190 u32 peer_port;
191 u32 peer_node;
192 struct list_head list;
193 };
194
node_active_link(struct tipc_node * n,int sel)195 static struct tipc_link *node_active_link(struct tipc_node *n, int sel)
196 {
197 int bearer_id = n->active_links[sel & 1];
198
199 if (unlikely(bearer_id == INVALID_BEARER_ID))
200 return NULL;
201
202 return n->links[bearer_id].link;
203 }
204
tipc_node_get_mtu(struct net * net,u32 addr,u32 sel,bool connected)205 int tipc_node_get_mtu(struct net *net, u32 addr, u32 sel, bool connected)
206 {
207 struct tipc_node *n;
208 int bearer_id;
209 unsigned int mtu = MAX_MSG_SIZE;
210
211 n = tipc_node_find(net, addr);
212 if (unlikely(!n))
213 return mtu;
214
215 /* Allow MAX_MSG_SIZE when building connection oriented message
216 * if they are in the same core network
217 */
218 if (n->peer_net && connected) {
219 tipc_node_put(n);
220 return mtu;
221 }
222
223 bearer_id = n->active_links[sel & 1];
224 if (likely(bearer_id != INVALID_BEARER_ID))
225 mtu = n->links[bearer_id].mtu;
226 tipc_node_put(n);
227 return mtu;
228 }
229
tipc_node_get_id(struct net * net,u32 addr,u8 * id)230 bool tipc_node_get_id(struct net *net, u32 addr, u8 *id)
231 {
232 u8 *own_id = tipc_own_id(net);
233 struct tipc_node *n;
234
235 if (!own_id)
236 return true;
237
238 if (addr == tipc_own_addr(net)) {
239 memcpy(id, own_id, TIPC_NODEID_LEN);
240 return true;
241 }
242 n = tipc_node_find(net, addr);
243 if (!n)
244 return false;
245
246 memcpy(id, &n->peer_id, TIPC_NODEID_LEN);
247 tipc_node_put(n);
248 return true;
249 }
250
tipc_node_get_capabilities(struct net * net,u32 addr)251 u16 tipc_node_get_capabilities(struct net *net, u32 addr)
252 {
253 struct tipc_node *n;
254 u16 caps;
255
256 n = tipc_node_find(net, addr);
257 if (unlikely(!n))
258 return TIPC_NODE_CAPABILITIES;
259 caps = n->capabilities;
260 tipc_node_put(n);
261 return caps;
262 }
263
tipc_node_get_addr(struct tipc_node * node)264 u32 tipc_node_get_addr(struct tipc_node *node)
265 {
266 return (node) ? node->addr : 0;
267 }
268
tipc_node_get_id_str(struct tipc_node * node)269 char *tipc_node_get_id_str(struct tipc_node *node)
270 {
271 return node->peer_id_string;
272 }
273
274 #ifdef CONFIG_TIPC_CRYPTO
275 /**
276 * tipc_node_crypto_rx - Retrieve crypto RX handle from node
277 * @__n: target tipc_node
278 * Note: node ref counter must be held first!
279 */
tipc_node_crypto_rx(struct tipc_node * __n)280 struct tipc_crypto *tipc_node_crypto_rx(struct tipc_node *__n)
281 {
282 return (__n) ? __n->crypto_rx : NULL;
283 }
284
tipc_node_crypto_rx_by_list(struct list_head * pos)285 struct tipc_crypto *tipc_node_crypto_rx_by_list(struct list_head *pos)
286 {
287 return container_of(pos, struct tipc_node, list)->crypto_rx;
288 }
289
tipc_node_crypto_rx_by_addr(struct net * net,u32 addr)290 struct tipc_crypto *tipc_node_crypto_rx_by_addr(struct net *net, u32 addr)
291 {
292 struct tipc_node *n;
293
294 n = tipc_node_find(net, addr);
295 return (n) ? n->crypto_rx : NULL;
296 }
297 #endif
298
tipc_node_free(struct rcu_head * rp)299 static void tipc_node_free(struct rcu_head *rp)
300 {
301 struct tipc_node *n = container_of(rp, struct tipc_node, rcu);
302
303 #ifdef CONFIG_TIPC_CRYPTO
304 tipc_crypto_stop(&n->crypto_rx);
305 #endif
306 kfree(n);
307 }
308
tipc_node_kref_release(struct kref * kref)309 static void tipc_node_kref_release(struct kref *kref)
310 {
311 struct tipc_node *n = container_of(kref, struct tipc_node, kref);
312
313 kfree(n->bc_entry.link);
314 call_rcu(&n->rcu, tipc_node_free);
315 }
316
tipc_node_put(struct tipc_node * node)317 void tipc_node_put(struct tipc_node *node)
318 {
319 kref_put(&node->kref, tipc_node_kref_release);
320 }
321
tipc_node_get(struct tipc_node * node)322 void tipc_node_get(struct tipc_node *node)
323 {
324 kref_get(&node->kref);
325 }
326
327 /*
328 * tipc_node_find - locate specified node object, if it exists
329 */
tipc_node_find(struct net * net,u32 addr)330 static struct tipc_node *tipc_node_find(struct net *net, u32 addr)
331 {
332 struct tipc_net *tn = tipc_net(net);
333 struct tipc_node *node;
334 unsigned int thash = tipc_hashfn(addr);
335
336 rcu_read_lock();
337 hlist_for_each_entry_rcu(node, &tn->node_htable[thash], hash) {
338 if (node->addr != addr || node->preliminary)
339 continue;
340 if (!kref_get_unless_zero(&node->kref))
341 node = NULL;
342 break;
343 }
344 rcu_read_unlock();
345 return node;
346 }
347
348 /* tipc_node_find_by_id - locate specified node object by its 128-bit id
349 * Note: this function is called only when a discovery request failed
350 * to find the node by its 32-bit id, and is not time critical
351 */
tipc_node_find_by_id(struct net * net,u8 * id)352 static struct tipc_node *tipc_node_find_by_id(struct net *net, u8 *id)
353 {
354 struct tipc_net *tn = tipc_net(net);
355 struct tipc_node *n;
356 bool found = false;
357
358 rcu_read_lock();
359 list_for_each_entry_rcu(n, &tn->node_list, list) {
360 read_lock_bh(&n->lock);
361 if (!memcmp(id, n->peer_id, 16) &&
362 kref_get_unless_zero(&n->kref))
363 found = true;
364 read_unlock_bh(&n->lock);
365 if (found)
366 break;
367 }
368 rcu_read_unlock();
369 return found ? n : NULL;
370 }
371
tipc_node_read_lock(struct tipc_node * n)372 static void tipc_node_read_lock(struct tipc_node *n)
373 __acquires(n->lock)
374 {
375 read_lock_bh(&n->lock);
376 }
377
tipc_node_read_unlock(struct tipc_node * n)378 static void tipc_node_read_unlock(struct tipc_node *n)
379 __releases(n->lock)
380 {
381 read_unlock_bh(&n->lock);
382 }
383
tipc_node_write_lock(struct tipc_node * n)384 static void tipc_node_write_lock(struct tipc_node *n)
385 __acquires(n->lock)
386 {
387 write_lock_bh(&n->lock);
388 }
389
tipc_node_write_unlock_fast(struct tipc_node * n)390 static void tipc_node_write_unlock_fast(struct tipc_node *n)
391 __releases(n->lock)
392 {
393 write_unlock_bh(&n->lock);
394 }
395
tipc_node_write_unlock(struct tipc_node * n)396 static void tipc_node_write_unlock(struct tipc_node *n)
397 __releases(n->lock)
398 {
399 struct tipc_socket_addr sk;
400 struct net *net = n->net;
401 u32 flags = n->action_flags;
402 struct list_head *publ_list;
403 struct tipc_uaddr ua;
404 u32 bearer_id, node;
405
406 if (likely(!flags)) {
407 write_unlock_bh(&n->lock);
408 return;
409 }
410
411 tipc_uaddr(&ua, TIPC_SERVICE_RANGE, TIPC_NODE_SCOPE,
412 TIPC_LINK_STATE, n->addr, n->addr);
413 sk.ref = n->link_id;
414 sk.node = tipc_own_addr(net);
415 node = n->addr;
416 bearer_id = n->link_id & 0xffff;
417 publ_list = &n->publ_list;
418
419 n->action_flags &= ~(TIPC_NOTIFY_NODE_DOWN | TIPC_NOTIFY_NODE_UP |
420 TIPC_NOTIFY_LINK_DOWN | TIPC_NOTIFY_LINK_UP);
421
422 write_unlock_bh(&n->lock);
423
424 if (flags & TIPC_NOTIFY_NODE_DOWN)
425 tipc_publ_notify(net, publ_list, node, n->capabilities);
426
427 if (flags & TIPC_NOTIFY_NODE_UP)
428 tipc_named_node_up(net, node, n->capabilities);
429
430 if (flags & TIPC_NOTIFY_LINK_UP) {
431 tipc_mon_peer_up(net, node, bearer_id);
432 tipc_nametbl_publish(net, &ua, &sk, sk.ref);
433 }
434 if (flags & TIPC_NOTIFY_LINK_DOWN) {
435 tipc_mon_peer_down(net, node, bearer_id);
436 tipc_nametbl_withdraw(net, &ua, &sk, sk.ref);
437 }
438 }
439
tipc_node_assign_peer_net(struct tipc_node * n,u32 hash_mixes)440 static void tipc_node_assign_peer_net(struct tipc_node *n, u32 hash_mixes)
441 {
442 int net_id = tipc_netid(n->net);
443 struct tipc_net *tn_peer;
444 struct net *tmp;
445 u32 hash_chk;
446
447 if (n->peer_net)
448 return;
449
450 for_each_net_rcu(tmp) {
451 tn_peer = tipc_net(tmp);
452 if (!tn_peer)
453 continue;
454 /* Integrity checking whether node exists in namespace or not */
455 if (tn_peer->net_id != net_id)
456 continue;
457 if (memcmp(n->peer_id, tn_peer->node_id, NODE_ID_LEN))
458 continue;
459 hash_chk = tipc_net_hash_mixes(tmp, tn_peer->random);
460 if (hash_mixes ^ hash_chk)
461 continue;
462 n->peer_net = tmp;
463 n->peer_hash_mix = hash_mixes;
464 break;
465 }
466 }
467
tipc_node_create(struct net * net,u32 addr,u8 * peer_id,u16 capabilities,u32 hash_mixes,bool preliminary)468 struct tipc_node *tipc_node_create(struct net *net, u32 addr, u8 *peer_id,
469 u16 capabilities, u32 hash_mixes,
470 bool preliminary)
471 {
472 struct tipc_net *tn = net_generic(net, tipc_net_id);
473 struct tipc_link *l, *snd_l = tipc_bc_sndlink(net);
474 struct tipc_node *n, *temp_node;
475 unsigned long intv;
476 int bearer_id;
477 int i;
478
479 spin_lock_bh(&tn->node_list_lock);
480 n = tipc_node_find(net, addr) ?:
481 tipc_node_find_by_id(net, peer_id);
482 if (n) {
483 if (!n->preliminary)
484 goto update;
485 if (preliminary)
486 goto exit;
487 /* A preliminary node becomes "real" now, refresh its data */
488 tipc_node_write_lock(n);
489 if (!tipc_link_bc_create(net, tipc_own_addr(net), addr, peer_id, U16_MAX,
490 tipc_link_min_win(snd_l), tipc_link_max_win(snd_l),
491 n->capabilities, &n->bc_entry.inputq1,
492 &n->bc_entry.namedq, snd_l, &n->bc_entry.link)) {
493 pr_warn("Broadcast rcv link refresh failed, no memory\n");
494 tipc_node_write_unlock_fast(n);
495 tipc_node_put(n);
496 n = NULL;
497 goto exit;
498 }
499 n->preliminary = false;
500 n->addr = addr;
501 hlist_del_rcu(&n->hash);
502 hlist_add_head_rcu(&n->hash,
503 &tn->node_htable[tipc_hashfn(addr)]);
504 list_del_rcu(&n->list);
505 list_for_each_entry_rcu(temp_node, &tn->node_list, list) {
506 if (n->addr < temp_node->addr)
507 break;
508 }
509 list_add_tail_rcu(&n->list, &temp_node->list);
510 tipc_node_write_unlock_fast(n);
511
512 update:
513 if (n->peer_hash_mix ^ hash_mixes)
514 tipc_node_assign_peer_net(n, hash_mixes);
515 if (n->capabilities == capabilities)
516 goto exit;
517 /* Same node may come back with new capabilities */
518 tipc_node_write_lock(n);
519 n->capabilities = capabilities;
520 for (bearer_id = 0; bearer_id < MAX_BEARERS; bearer_id++) {
521 l = n->links[bearer_id].link;
522 if (l)
523 tipc_link_update_caps(l, capabilities);
524 }
525 tipc_node_write_unlock_fast(n);
526
527 /* Calculate cluster capabilities */
528 tn->capabilities = TIPC_NODE_CAPABILITIES;
529 list_for_each_entry_rcu(temp_node, &tn->node_list, list) {
530 tn->capabilities &= temp_node->capabilities;
531 }
532
533 tipc_bcast_toggle_rcast(net,
534 (tn->capabilities & TIPC_BCAST_RCAST));
535
536 goto exit;
537 }
538 n = kzalloc_obj(*n, GFP_ATOMIC);
539 if (!n) {
540 pr_warn("Node creation failed, no memory\n");
541 goto exit;
542 }
543 tipc_nodeid2string(n->peer_id_string, peer_id);
544 #ifdef CONFIG_TIPC_CRYPTO
545 if (unlikely(tipc_crypto_start(&n->crypto_rx, net, n))) {
546 pr_warn("Failed to start crypto RX(%s)!\n", n->peer_id_string);
547 kfree(n);
548 n = NULL;
549 goto exit;
550 }
551 #endif
552 n->addr = addr;
553 n->preliminary = preliminary;
554 memcpy(&n->peer_id, peer_id, 16);
555 n->net = net;
556 n->peer_net = NULL;
557 n->peer_hash_mix = 0;
558 /* Assign kernel local namespace if exists */
559 tipc_node_assign_peer_net(n, hash_mixes);
560 n->capabilities = capabilities;
561 kref_init(&n->kref);
562 rwlock_init(&n->lock);
563 INIT_HLIST_NODE(&n->hash);
564 INIT_LIST_HEAD(&n->list);
565 INIT_LIST_HEAD(&n->publ_list);
566 INIT_LIST_HEAD(&n->conn_sks);
567 skb_queue_head_init(&n->bc_entry.namedq);
568 skb_queue_head_init(&n->bc_entry.inputq1);
569 __skb_queue_head_init(&n->bc_entry.arrvq);
570 skb_queue_head_init(&n->bc_entry.inputq2);
571 for (i = 0; i < MAX_BEARERS; i++)
572 spin_lock_init(&n->links[i].lock);
573 n->state = SELF_DOWN_PEER_LEAVING;
574 n->delete_at = jiffies + msecs_to_jiffies(NODE_CLEANUP_AFTER);
575 n->signature = INVALID_NODE_SIG;
576 n->active_links[0] = INVALID_BEARER_ID;
577 n->active_links[1] = INVALID_BEARER_ID;
578 if (!preliminary &&
579 !tipc_link_bc_create(net, tipc_own_addr(net), addr, peer_id, U16_MAX,
580 tipc_link_min_win(snd_l), tipc_link_max_win(snd_l),
581 n->capabilities, &n->bc_entry.inputq1,
582 &n->bc_entry.namedq, snd_l, &n->bc_entry.link)) {
583 pr_warn("Broadcast rcv link creation failed, no memory\n");
584 tipc_node_put(n);
585 n = NULL;
586 goto exit;
587 }
588 tipc_node_get(n);
589 timer_setup(&n->timer, tipc_node_timeout, 0);
590 /* Start a slow timer anyway, crypto needs it */
591 n->keepalive_intv = 10000;
592 intv = jiffies + msecs_to_jiffies(n->keepalive_intv);
593 if (!mod_timer(&n->timer, intv))
594 tipc_node_get(n);
595 hlist_add_head_rcu(&n->hash, &tn->node_htable[tipc_hashfn(addr)]);
596 list_for_each_entry_rcu(temp_node, &tn->node_list, list) {
597 if (n->addr < temp_node->addr)
598 break;
599 }
600 list_add_tail_rcu(&n->list, &temp_node->list);
601 /* Calculate cluster capabilities */
602 tn->capabilities = TIPC_NODE_CAPABILITIES;
603 list_for_each_entry_rcu(temp_node, &tn->node_list, list) {
604 tn->capabilities &= temp_node->capabilities;
605 }
606 tipc_bcast_toggle_rcast(net, (tn->capabilities & TIPC_BCAST_RCAST));
607 trace_tipc_node_create(n, true, " ");
608 exit:
609 spin_unlock_bh(&tn->node_list_lock);
610 return n;
611 }
612
tipc_node_calculate_timer(struct tipc_node * n,struct tipc_link * l)613 static void tipc_node_calculate_timer(struct tipc_node *n, struct tipc_link *l)
614 {
615 unsigned long tol = tipc_link_tolerance(l);
616 unsigned long intv = ((tol / 4) > 500) ? 500 : tol / 4;
617
618 /* Link with lowest tolerance determines timer interval */
619 if (intv < n->keepalive_intv)
620 n->keepalive_intv = intv;
621
622 /* Ensure link's abort limit corresponds to current tolerance */
623 tipc_link_set_abort_limit(l, tol / n->keepalive_intv);
624 }
625
tipc_node_delete_from_list(struct tipc_node * node)626 static void tipc_node_delete_from_list(struct tipc_node *node)
627 {
628 #ifdef CONFIG_TIPC_CRYPTO
629 tipc_crypto_key_flush(node->crypto_rx);
630 #endif
631 list_del_rcu(&node->list);
632 hlist_del_rcu(&node->hash);
633 tipc_node_put(node);
634 }
635
tipc_node_delete(struct tipc_node * node)636 static void tipc_node_delete(struct tipc_node *node)
637 {
638 trace_tipc_node_delete(node, true, " ");
639 tipc_node_delete_from_list(node);
640
641 timer_delete_sync(&node->timer);
642 tipc_node_put(node);
643 }
644
tipc_node_stop(struct net * net)645 void tipc_node_stop(struct net *net)
646 {
647 struct tipc_net *tn = tipc_net(net);
648 struct tipc_node *node, *t_node;
649
650 spin_lock_bh(&tn->node_list_lock);
651 list_for_each_entry_safe(node, t_node, &tn->node_list, list)
652 tipc_node_delete(node);
653 spin_unlock_bh(&tn->node_list_lock);
654 }
655
tipc_node_subscribe(struct net * net,struct list_head * subscr,u32 addr)656 void tipc_node_subscribe(struct net *net, struct list_head *subscr, u32 addr)
657 {
658 struct tipc_node *n;
659
660 if (in_own_node(net, addr))
661 return;
662
663 n = tipc_node_find(net, addr);
664 if (!n) {
665 pr_warn("Node subscribe rejected, unknown node 0x%x\n", addr);
666 return;
667 }
668 tipc_node_write_lock(n);
669 list_add_tail(subscr, &n->publ_list);
670 tipc_node_write_unlock_fast(n);
671 tipc_node_put(n);
672 }
673
tipc_node_unsubscribe(struct net * net,struct list_head * subscr,u32 addr)674 void tipc_node_unsubscribe(struct net *net, struct list_head *subscr, u32 addr)
675 {
676 struct tipc_node *n;
677
678 if (in_own_node(net, addr))
679 return;
680
681 n = tipc_node_find(net, addr);
682 if (!n) {
683 pr_warn("Node unsubscribe rejected, unknown node 0x%x\n", addr);
684 return;
685 }
686 tipc_node_write_lock(n);
687 list_del_init(subscr);
688 tipc_node_write_unlock_fast(n);
689 tipc_node_put(n);
690 }
691
tipc_node_add_conn(struct net * net,u32 dnode,u32 port,u32 peer_port)692 int tipc_node_add_conn(struct net *net, u32 dnode, u32 port, u32 peer_port)
693 {
694 struct tipc_node *node;
695 struct tipc_sock_conn *conn;
696 int err = 0;
697
698 if (in_own_node(net, dnode))
699 return 0;
700
701 node = tipc_node_find(net, dnode);
702 if (!node) {
703 pr_warn("Connecting sock to node 0x%x failed\n", dnode);
704 return -EHOSTUNREACH;
705 }
706 conn = kmalloc_obj(*conn, GFP_ATOMIC);
707 if (!conn) {
708 err = -EHOSTUNREACH;
709 goto exit;
710 }
711 conn->peer_node = dnode;
712 conn->port = port;
713 conn->peer_port = peer_port;
714
715 tipc_node_write_lock(node);
716 list_add_tail(&conn->list, &node->conn_sks);
717 tipc_node_write_unlock(node);
718 exit:
719 tipc_node_put(node);
720 return err;
721 }
722
tipc_node_remove_conn(struct net * net,u32 dnode,u32 port)723 void tipc_node_remove_conn(struct net *net, u32 dnode, u32 port)
724 {
725 struct tipc_node *node;
726 struct tipc_sock_conn *conn, *safe;
727
728 if (in_own_node(net, dnode))
729 return;
730
731 node = tipc_node_find(net, dnode);
732 if (!node)
733 return;
734
735 tipc_node_write_lock(node);
736 list_for_each_entry_safe(conn, safe, &node->conn_sks, list) {
737 if (port != conn->port)
738 continue;
739 list_del(&conn->list);
740 kfree(conn);
741 }
742 tipc_node_write_unlock(node);
743 tipc_node_put(node);
744 }
745
tipc_node_clear_links(struct tipc_node * node)746 static void tipc_node_clear_links(struct tipc_node *node)
747 {
748 int i;
749
750 for (i = 0; i < MAX_BEARERS; i++) {
751 struct tipc_link_entry *le = &node->links[i];
752
753 if (le->link) {
754 kfree(le->link);
755 le->link = NULL;
756 node->link_cnt--;
757 }
758 }
759 }
760
761 /* tipc_node_cleanup - delete nodes that does not
762 * have active links for NODE_CLEANUP_AFTER time
763 */
tipc_node_cleanup(struct tipc_node * peer)764 static bool tipc_node_cleanup(struct tipc_node *peer)
765 {
766 struct tipc_node *temp_node;
767 struct tipc_net *tn = tipc_net(peer->net);
768 bool deleted = false;
769
770 /* If lock held by tipc_node_stop() the node will be deleted anyway */
771 if (!spin_trylock_bh(&tn->node_list_lock))
772 return false;
773
774 tipc_node_write_lock(peer);
775
776 if (!node_is_up(peer) && time_after(jiffies, peer->delete_at)) {
777 tipc_node_clear_links(peer);
778 tipc_node_delete_from_list(peer);
779 deleted = true;
780 }
781 tipc_node_write_unlock(peer);
782
783 if (!deleted) {
784 spin_unlock_bh(&tn->node_list_lock);
785 return deleted;
786 }
787
788 /* Calculate cluster capabilities */
789 tn->capabilities = TIPC_NODE_CAPABILITIES;
790 list_for_each_entry_rcu(temp_node, &tn->node_list, list) {
791 tn->capabilities &= temp_node->capabilities;
792 }
793 tipc_bcast_toggle_rcast(peer->net,
794 (tn->capabilities & TIPC_BCAST_RCAST));
795 spin_unlock_bh(&tn->node_list_lock);
796 return deleted;
797 }
798
799 /* tipc_node_timeout - handle expiration of node timer
800 */
tipc_node_timeout(struct timer_list * t)801 static void tipc_node_timeout(struct timer_list *t)
802 {
803 struct tipc_node *n = timer_container_of(n, t, timer);
804 struct tipc_link_entry *le;
805 struct sk_buff_head xmitq;
806 int remains = n->link_cnt;
807 int bearer_id;
808 int rc = 0;
809
810 trace_tipc_node_timeout(n, false, " ");
811 if (!node_is_up(n) && tipc_node_cleanup(n)) {
812 /*Removing the reference of Timer*/
813 tipc_node_put(n);
814 return;
815 }
816
817 #ifdef CONFIG_TIPC_CRYPTO
818 /* Take any crypto key related actions first */
819 tipc_crypto_timeout(n->crypto_rx);
820 #endif
821 __skb_queue_head_init(&xmitq);
822
823 /* Initial node interval to value larger (10 seconds), then it will be
824 * recalculated with link lowest tolerance
825 */
826 tipc_node_read_lock(n);
827 n->keepalive_intv = 10000;
828 tipc_node_read_unlock(n);
829 for (bearer_id = 0; remains && (bearer_id < MAX_BEARERS); bearer_id++) {
830 tipc_node_read_lock(n);
831 le = &n->links[bearer_id];
832 if (le->link) {
833 spin_lock_bh(&le->lock);
834 /* Link tolerance may change asynchronously: */
835 tipc_node_calculate_timer(n, le->link);
836 rc = tipc_link_timeout(le->link, &xmitq);
837 spin_unlock_bh(&le->lock);
838 remains--;
839 }
840 tipc_node_read_unlock(n);
841 tipc_bearer_xmit(n->net, bearer_id, &xmitq, &le->maddr, n);
842 if (rc & TIPC_LINK_DOWN_EVT)
843 tipc_node_link_down(n, bearer_id, false);
844 }
845 mod_timer(&n->timer, jiffies + msecs_to_jiffies(n->keepalive_intv));
846 }
847
848 /**
849 * __tipc_node_link_up - handle addition of link
850 * @n: target tipc_node
851 * @bearer_id: id of the bearer
852 * @xmitq: queue for messages to be xmited on
853 * Node lock must be held by caller
854 * Link becomes active (alone or shared) or standby, depending on its priority.
855 */
__tipc_node_link_up(struct tipc_node * n,int bearer_id,struct sk_buff_head * xmitq)856 static void __tipc_node_link_up(struct tipc_node *n, int bearer_id,
857 struct sk_buff_head *xmitq)
858 {
859 int *slot0 = &n->active_links[0];
860 int *slot1 = &n->active_links[1];
861 struct tipc_link *ol = node_active_link(n, 0);
862 struct tipc_link *nl = n->links[bearer_id].link;
863
864 if (!nl || tipc_link_is_up(nl))
865 return;
866
867 tipc_link_fsm_evt(nl, LINK_ESTABLISH_EVT);
868 if (!tipc_link_is_up(nl))
869 return;
870
871 n->working_links++;
872 n->action_flags |= TIPC_NOTIFY_LINK_UP;
873 n->link_id = tipc_link_id(nl);
874
875 /* Leave room for tunnel header when returning 'mtu' to users: */
876 n->links[bearer_id].mtu = tipc_link_mss(nl);
877
878 tipc_bearer_add_dest(n->net, bearer_id, n->addr);
879 tipc_bcast_inc_bearer_dst_cnt(n->net, bearer_id);
880
881 pr_debug("Established link <%s> on network plane %c\n",
882 tipc_link_name(nl), tipc_link_plane(nl));
883 trace_tipc_node_link_up(n, true, " ");
884
885 /* Ensure that a STATE message goes first */
886 tipc_link_build_state_msg(nl, xmitq);
887
888 /* First link? => give it both slots */
889 if (!ol) {
890 *slot0 = bearer_id;
891 *slot1 = bearer_id;
892 tipc_node_fsm_evt(n, SELF_ESTABL_CONTACT_EVT);
893 n->action_flags |= TIPC_NOTIFY_NODE_UP;
894 tipc_link_set_active(nl, true);
895 tipc_bcast_add_peer(n->net, nl, xmitq);
896 return;
897 }
898
899 /* Second link => redistribute slots */
900 if (tipc_link_prio(nl) > tipc_link_prio(ol)) {
901 pr_debug("Old link <%s> becomes standby\n", tipc_link_name(ol));
902 *slot0 = bearer_id;
903 *slot1 = bearer_id;
904 tipc_link_set_active(nl, true);
905 tipc_link_set_active(ol, false);
906 } else if (tipc_link_prio(nl) == tipc_link_prio(ol)) {
907 tipc_link_set_active(nl, true);
908 *slot1 = bearer_id;
909 } else {
910 pr_debug("New link <%s> is standby\n", tipc_link_name(nl));
911 }
912
913 /* Prepare synchronization with first link */
914 tipc_link_tnl_prepare(ol, nl, SYNCH_MSG, xmitq);
915 }
916
917 /**
918 * tipc_node_link_up - handle addition of link
919 * @n: target tipc_node
920 * @bearer_id: id of the bearer
921 * @xmitq: queue for messages to be xmited on
922 *
923 * Link becomes active (alone or shared) or standby, depending on its priority.
924 */
tipc_node_link_up(struct tipc_node * n,int bearer_id,struct sk_buff_head * xmitq)925 static void tipc_node_link_up(struct tipc_node *n, int bearer_id,
926 struct sk_buff_head *xmitq)
927 {
928 struct tipc_media_addr *maddr;
929
930 tipc_node_write_lock(n);
931 __tipc_node_link_up(n, bearer_id, xmitq);
932 maddr = &n->links[bearer_id].maddr;
933 tipc_bearer_xmit(n->net, bearer_id, xmitq, maddr, n);
934 tipc_node_write_unlock(n);
935 }
936
937 /**
938 * tipc_node_link_failover() - start failover in case "half-failover"
939 *
940 * This function is only called in a very special situation where link
941 * failover can be already started on peer node but not on this node.
942 * This can happen when e.g.::
943 *
944 * 1. Both links <1A-2A>, <1B-2B> down
945 * 2. Link endpoint 2A up, but 1A still down (e.g. due to network
946 * disturbance, wrong session, etc.)
947 * 3. Link <1B-2B> up
948 * 4. Link endpoint 2A down (e.g. due to link tolerance timeout)
949 * 5. Node 2 starts failover onto link <1B-2B>
950 *
951 * ==> Node 1 does never start link/node failover!
952 *
953 * @n: tipc node structure
954 * @l: link peer endpoint failingover (- can be NULL)
955 * @tnl: tunnel link
956 * @xmitq: queue for messages to be xmited on tnl link later
957 */
tipc_node_link_failover(struct tipc_node * n,struct tipc_link * l,struct tipc_link * tnl,struct sk_buff_head * xmitq)958 static void tipc_node_link_failover(struct tipc_node *n, struct tipc_link *l,
959 struct tipc_link *tnl,
960 struct sk_buff_head *xmitq)
961 {
962 /* Avoid to be "self-failover" that can never end */
963 if (!tipc_link_is_up(tnl))
964 return;
965
966 /* Don't rush, failure link may be in the process of resetting */
967 if (l && !tipc_link_is_reset(l))
968 return;
969
970 tipc_link_fsm_evt(tnl, LINK_SYNCH_END_EVT);
971 tipc_node_fsm_evt(n, NODE_SYNCH_END_EVT);
972
973 n->sync_point = tipc_link_rcv_nxt(tnl) + (U16_MAX / 2 - 1);
974 tipc_link_failover_prepare(l, tnl, xmitq);
975
976 if (l)
977 tipc_link_fsm_evt(l, LINK_FAILOVER_BEGIN_EVT);
978 tipc_node_fsm_evt(n, NODE_FAILOVER_BEGIN_EVT);
979 }
980
981 /**
982 * __tipc_node_link_down - handle loss of link
983 * @n: target tipc_node
984 * @bearer_id: id of the bearer
985 * @xmitq: queue for messages to be xmited on
986 * @maddr: output media address of the bearer
987 */
__tipc_node_link_down(struct tipc_node * n,int * bearer_id,struct sk_buff_head * xmitq,struct tipc_media_addr ** maddr)988 static void __tipc_node_link_down(struct tipc_node *n, int *bearer_id,
989 struct sk_buff_head *xmitq,
990 struct tipc_media_addr **maddr)
991 {
992 struct tipc_link_entry *le = &n->links[*bearer_id];
993 int *slot0 = &n->active_links[0];
994 int *slot1 = &n->active_links[1];
995 int i, highest = 0, prio;
996 struct tipc_link *l, *_l, *tnl;
997
998 l = n->links[*bearer_id].link;
999 if (!l || tipc_link_is_reset(l))
1000 return;
1001
1002 n->working_links--;
1003 n->action_flags |= TIPC_NOTIFY_LINK_DOWN;
1004 n->link_id = tipc_link_id(l);
1005
1006 tipc_bearer_remove_dest(n->net, *bearer_id, n->addr);
1007
1008 pr_debug("Lost link <%s> on network plane %c\n",
1009 tipc_link_name(l), tipc_link_plane(l));
1010
1011 /* Select new active link if any available */
1012 *slot0 = INVALID_BEARER_ID;
1013 *slot1 = INVALID_BEARER_ID;
1014 for (i = 0; i < MAX_BEARERS; i++) {
1015 _l = n->links[i].link;
1016 if (!_l || !tipc_link_is_up(_l))
1017 continue;
1018 if (_l == l)
1019 continue;
1020 prio = tipc_link_prio(_l);
1021 if (prio < highest)
1022 continue;
1023 if (prio > highest) {
1024 highest = prio;
1025 *slot0 = i;
1026 *slot1 = i;
1027 continue;
1028 }
1029 *slot1 = i;
1030 }
1031
1032 if (!node_is_up(n)) {
1033 if (tipc_link_peer_is_down(l))
1034 tipc_node_fsm_evt(n, PEER_LOST_CONTACT_EVT);
1035 tipc_node_fsm_evt(n, SELF_LOST_CONTACT_EVT);
1036 trace_tipc_link_reset(l, TIPC_DUMP_ALL, "link down!");
1037 tipc_link_fsm_evt(l, LINK_RESET_EVT);
1038 tipc_link_reset(l);
1039 tipc_link_build_reset_msg(l, xmitq);
1040 *maddr = &n->links[*bearer_id].maddr;
1041 node_lost_contact(n, &le->inputq);
1042 tipc_bcast_dec_bearer_dst_cnt(n->net, *bearer_id);
1043 return;
1044 }
1045 tipc_bcast_dec_bearer_dst_cnt(n->net, *bearer_id);
1046
1047 /* There is still a working link => initiate failover */
1048 *bearer_id = n->active_links[0];
1049 tnl = n->links[*bearer_id].link;
1050 tipc_link_fsm_evt(tnl, LINK_SYNCH_END_EVT);
1051 tipc_node_fsm_evt(n, NODE_SYNCH_END_EVT);
1052 n->sync_point = tipc_link_rcv_nxt(tnl) + (U16_MAX / 2 - 1);
1053 tipc_link_tnl_prepare(l, tnl, FAILOVER_MSG, xmitq);
1054 trace_tipc_link_reset(l, TIPC_DUMP_ALL, "link down -> failover!");
1055 tipc_link_reset(l);
1056 tipc_link_fsm_evt(l, LINK_RESET_EVT);
1057 tipc_link_fsm_evt(l, LINK_FAILOVER_BEGIN_EVT);
1058 tipc_node_fsm_evt(n, NODE_FAILOVER_BEGIN_EVT);
1059 *maddr = &n->links[*bearer_id].maddr;
1060 }
1061
tipc_node_link_down(struct tipc_node * n,int bearer_id,bool delete)1062 static void tipc_node_link_down(struct tipc_node *n, int bearer_id, bool delete)
1063 {
1064 struct tipc_media_addr *maddr = NULL;
1065 int old_bearer_id = bearer_id;
1066 struct tipc_link_entry *le;
1067 struct sk_buff_head xmitq;
1068 struct tipc_link *l;
1069
1070 __skb_queue_head_init(&xmitq);
1071
1072 /* Synchronize the link lookup with bearer teardown. */
1073 tipc_node_write_lock(n);
1074 le = &n->links[bearer_id];
1075 l = le->link;
1076 if (!l) {
1077 tipc_node_write_unlock_fast(n);
1078 return;
1079 }
1080
1081 if (!tipc_link_is_establishing(l)) {
1082 __tipc_node_link_down(n, &bearer_id, &xmitq, &maddr);
1083 } else {
1084 /* Defuse pending tipc_node_link_up() */
1085 tipc_link_reset(l);
1086 tipc_link_fsm_evt(l, LINK_RESET_EVT);
1087 }
1088 if (delete) {
1089 kfree(l);
1090 le->link = NULL;
1091 n->link_cnt--;
1092 }
1093 trace_tipc_node_link_down(n, true, "node link down or deleted!");
1094 tipc_node_write_unlock(n);
1095 if (delete)
1096 tipc_mon_remove_peer(n->net, n->addr, old_bearer_id);
1097 if (!skb_queue_empty(&xmitq))
1098 tipc_bearer_xmit(n->net, bearer_id, &xmitq, maddr, n);
1099 tipc_sk_rcv(n->net, &le->inputq);
1100 }
1101
node_is_up(struct tipc_node * n)1102 static bool node_is_up(struct tipc_node *n)
1103 {
1104 return n->active_links[0] != INVALID_BEARER_ID;
1105 }
1106
tipc_node_is_up(struct net * net,u32 addr)1107 bool tipc_node_is_up(struct net *net, u32 addr)
1108 {
1109 struct tipc_node *n;
1110 bool retval = false;
1111
1112 if (in_own_node(net, addr))
1113 return true;
1114
1115 n = tipc_node_find(net, addr);
1116 if (!n)
1117 return false;
1118 retval = node_is_up(n);
1119 tipc_node_put(n);
1120 return retval;
1121 }
1122
tipc_node_suggest_addr(struct net * net,u32 addr)1123 static u32 tipc_node_suggest_addr(struct net *net, u32 addr)
1124 {
1125 struct tipc_node *n;
1126
1127 addr ^= tipc_net(net)->random;
1128 while ((n = tipc_node_find(net, addr))) {
1129 tipc_node_put(n);
1130 addr++;
1131 }
1132 return addr;
1133 }
1134
1135 /* tipc_node_try_addr(): Check if addr can be used by peer, suggest other if not
1136 * Returns suggested address if any, otherwise 0
1137 */
tipc_node_try_addr(struct net * net,u8 * id,u32 addr)1138 u32 tipc_node_try_addr(struct net *net, u8 *id, u32 addr)
1139 {
1140 struct tipc_net *tn = tipc_net(net);
1141 struct tipc_node *n;
1142 bool preliminary;
1143 u32 sugg_addr;
1144
1145 /* Suggest new address if some other peer is using this one */
1146 n = tipc_node_find(net, addr);
1147 if (n) {
1148 if (!memcmp(n->peer_id, id, NODE_ID_LEN))
1149 addr = 0;
1150 tipc_node_put(n);
1151 if (!addr)
1152 return 0;
1153 return tipc_node_suggest_addr(net, addr);
1154 }
1155
1156 /* Suggest previously used address if peer is known */
1157 n = tipc_node_find_by_id(net, id);
1158 if (n) {
1159 sugg_addr = n->addr;
1160 preliminary = n->preliminary;
1161 tipc_node_put(n);
1162 if (!preliminary)
1163 return sugg_addr;
1164 }
1165
1166 /* Even this node may be in conflict */
1167 if (tn->trial_addr == addr)
1168 return tipc_node_suggest_addr(net, addr);
1169
1170 return 0;
1171 }
1172
tipc_node_check_dest(struct net * net,u32 addr,u8 * peer_id,struct tipc_bearer * b,u16 capabilities,u32 signature,u32 hash_mixes,struct tipc_media_addr * maddr,bool * respond,bool * dupl_addr)1173 void tipc_node_check_dest(struct net *net, u32 addr,
1174 u8 *peer_id, struct tipc_bearer *b,
1175 u16 capabilities, u32 signature, u32 hash_mixes,
1176 struct tipc_media_addr *maddr,
1177 bool *respond, bool *dupl_addr)
1178 {
1179 struct tipc_node *n;
1180 struct tipc_link *l;
1181 struct tipc_link_entry *le;
1182 bool addr_match = false;
1183 bool sign_match = false;
1184 bool link_up = false;
1185 bool link_is_reset = false;
1186 bool accept_addr = false;
1187 bool reset = false;
1188 char *if_name;
1189 unsigned long intv;
1190 u16 session;
1191
1192 *dupl_addr = false;
1193 *respond = false;
1194
1195 n = tipc_node_create(net, addr, peer_id, capabilities, hash_mixes,
1196 false);
1197 if (!n)
1198 return;
1199
1200 tipc_node_write_lock(n);
1201
1202 le = &n->links[b->identity];
1203
1204 /* Prepare to validate requesting node's signature and media address */
1205 l = le->link;
1206 link_up = l && tipc_link_is_up(l);
1207 link_is_reset = l && tipc_link_is_reset(l);
1208 addr_match = l && !memcmp(&le->maddr, maddr, sizeof(*maddr));
1209 sign_match = (signature == n->signature);
1210
1211 /* These three flags give us eight permutations: */
1212
1213 if (sign_match && addr_match && link_up) {
1214 /* All is fine. Ignore requests. */
1215 /* Peer node is not a container/local namespace */
1216 if (!n->peer_hash_mix)
1217 n->peer_hash_mix = hash_mixes;
1218 } else if (sign_match && addr_match && !link_up) {
1219 /* Respond. The link will come up in due time */
1220 *respond = true;
1221 } else if (sign_match && !addr_match && link_up) {
1222 /* Peer has changed i/f address without rebooting.
1223 * If so, the link will reset soon, and the next
1224 * discovery will be accepted. So we can ignore it.
1225 * It may also be a cloned or malicious peer having
1226 * chosen the same node address and signature as an
1227 * existing one.
1228 * Ignore requests until the link goes down, if ever.
1229 */
1230 *dupl_addr = true;
1231 } else if (sign_match && !addr_match && !link_up) {
1232 /* Peer link has changed i/f address without rebooting.
1233 * It may also be a cloned or malicious peer; we can't
1234 * distinguish between the two.
1235 * The signature is correct, so we must accept.
1236 */
1237 accept_addr = true;
1238 *respond = true;
1239 reset = true;
1240 } else if (!sign_match && addr_match && link_up) {
1241 /* Peer node rebooted. Two possibilities:
1242 * - Delayed re-discovery; this link endpoint has already
1243 * reset and re-established contact with the peer, before
1244 * receiving a discovery message from that node.
1245 * (The peer happened to receive one from this node first).
1246 * - The peer came back so fast that our side has not
1247 * discovered it yet. Probing from this side will soon
1248 * reset the link, since there can be no working link
1249 * endpoint at the peer end, and the link will re-establish.
1250 * Accept the signature, since it comes from a known peer.
1251 */
1252 n->signature = signature;
1253 } else if (!sign_match && addr_match && !link_up) {
1254 /* The peer node has rebooted.
1255 * Accept signature, since it is a known peer.
1256 */
1257 n->signature = signature;
1258 *respond = true;
1259 } else if (!sign_match && !addr_match && link_up) {
1260 /* Peer rebooted with new address, or a new/duplicate peer.
1261 * Ignore until the link goes down, if ever.
1262 */
1263 *dupl_addr = true;
1264 } else if (!sign_match && !addr_match && !link_up) {
1265 /* Peer rebooted with new address, or it is a new peer.
1266 * Accept signature and address.
1267 */
1268 n->signature = signature;
1269 accept_addr = true;
1270 *respond = true;
1271 reset = true;
1272 }
1273
1274 if (!accept_addr)
1275 goto exit;
1276
1277 /* Now create new link if not already existing */
1278 if (!l) {
1279 if (n->link_cnt == 2)
1280 goto exit;
1281
1282 if_name = strchr(b->name, ':') + 1;
1283 session = get_random_u16();
1284 if (!tipc_link_create(net, if_name, b->identity, b->tolerance,
1285 b->net_plane, b->mtu, b->priority,
1286 b->min_win, b->max_win, session,
1287 tipc_own_addr(net), addr, peer_id,
1288 n->capabilities,
1289 tipc_bc_sndlink(n->net), n->bc_entry.link,
1290 &le->inputq,
1291 &n->bc_entry.namedq, &l)) {
1292 *respond = false;
1293 goto exit;
1294 }
1295 trace_tipc_link_reset(l, TIPC_DUMP_ALL, "link created!");
1296 tipc_link_reset(l);
1297 tipc_link_fsm_evt(l, LINK_RESET_EVT);
1298 if (n->state == NODE_FAILINGOVER)
1299 tipc_link_fsm_evt(l, LINK_FAILOVER_BEGIN_EVT);
1300 link_is_reset = tipc_link_is_reset(l);
1301 le->link = l;
1302 n->link_cnt++;
1303 tipc_node_calculate_timer(n, l);
1304 if (n->link_cnt == 1) {
1305 intv = jiffies + msecs_to_jiffies(n->keepalive_intv);
1306 if (!mod_timer(&n->timer, intv))
1307 tipc_node_get(n);
1308 }
1309 }
1310 memcpy(&le->maddr, maddr, sizeof(*maddr));
1311 exit:
1312 tipc_node_write_unlock(n);
1313 if (reset && !link_is_reset)
1314 tipc_node_link_down(n, b->identity, false);
1315 tipc_node_put(n);
1316 }
1317
tipc_node_delete_links(struct net * net,int bearer_id)1318 void tipc_node_delete_links(struct net *net, int bearer_id)
1319 {
1320 struct tipc_net *tn = net_generic(net, tipc_net_id);
1321 struct tipc_node *n;
1322
1323 rcu_read_lock();
1324 list_for_each_entry_rcu(n, &tn->node_list, list) {
1325 tipc_node_link_down(n, bearer_id, true);
1326 }
1327 rcu_read_unlock();
1328 }
1329
tipc_node_reset_links(struct tipc_node * n)1330 static void tipc_node_reset_links(struct tipc_node *n)
1331 {
1332 int i;
1333
1334 pr_warn("Resetting all links to %x\n", n->addr);
1335
1336 tipc_node_write_lock(n);
1337 trace_tipc_node_reset_links(n, true, " ");
1338 tipc_node_write_unlock_fast(n);
1339 for (i = 0; i < MAX_BEARERS; i++) {
1340 tipc_node_link_down(n, i, false);
1341 }
1342 }
1343
1344 /* tipc_node_fsm_evt - node finite state machine
1345 * Determines when contact is allowed with peer node
1346 */
tipc_node_fsm_evt(struct tipc_node * n,int evt)1347 static void tipc_node_fsm_evt(struct tipc_node *n, int evt)
1348 {
1349 int state = n->state;
1350
1351 switch (state) {
1352 case SELF_DOWN_PEER_DOWN:
1353 switch (evt) {
1354 case SELF_ESTABL_CONTACT_EVT:
1355 state = SELF_UP_PEER_COMING;
1356 break;
1357 case PEER_ESTABL_CONTACT_EVT:
1358 state = SELF_COMING_PEER_UP;
1359 break;
1360 case SELF_LOST_CONTACT_EVT:
1361 case PEER_LOST_CONTACT_EVT:
1362 break;
1363 case NODE_SYNCH_END_EVT:
1364 case NODE_SYNCH_BEGIN_EVT:
1365 case NODE_FAILOVER_BEGIN_EVT:
1366 case NODE_FAILOVER_END_EVT:
1367 default:
1368 goto illegal_evt;
1369 }
1370 break;
1371 case SELF_UP_PEER_UP:
1372 switch (evt) {
1373 case SELF_LOST_CONTACT_EVT:
1374 state = SELF_DOWN_PEER_LEAVING;
1375 break;
1376 case PEER_LOST_CONTACT_EVT:
1377 state = SELF_LEAVING_PEER_DOWN;
1378 break;
1379 case NODE_SYNCH_BEGIN_EVT:
1380 state = NODE_SYNCHING;
1381 break;
1382 case NODE_FAILOVER_BEGIN_EVT:
1383 state = NODE_FAILINGOVER;
1384 break;
1385 case SELF_ESTABL_CONTACT_EVT:
1386 case PEER_ESTABL_CONTACT_EVT:
1387 case NODE_SYNCH_END_EVT:
1388 case NODE_FAILOVER_END_EVT:
1389 break;
1390 default:
1391 goto illegal_evt;
1392 }
1393 break;
1394 case SELF_DOWN_PEER_LEAVING:
1395 switch (evt) {
1396 case PEER_LOST_CONTACT_EVT:
1397 state = SELF_DOWN_PEER_DOWN;
1398 break;
1399 case SELF_ESTABL_CONTACT_EVT:
1400 case PEER_ESTABL_CONTACT_EVT:
1401 case SELF_LOST_CONTACT_EVT:
1402 break;
1403 case NODE_SYNCH_END_EVT:
1404 case NODE_SYNCH_BEGIN_EVT:
1405 case NODE_FAILOVER_BEGIN_EVT:
1406 case NODE_FAILOVER_END_EVT:
1407 default:
1408 goto illegal_evt;
1409 }
1410 break;
1411 case SELF_UP_PEER_COMING:
1412 switch (evt) {
1413 case PEER_ESTABL_CONTACT_EVT:
1414 state = SELF_UP_PEER_UP;
1415 break;
1416 case SELF_LOST_CONTACT_EVT:
1417 state = SELF_DOWN_PEER_DOWN;
1418 break;
1419 case SELF_ESTABL_CONTACT_EVT:
1420 case PEER_LOST_CONTACT_EVT:
1421 case NODE_SYNCH_END_EVT:
1422 case NODE_FAILOVER_BEGIN_EVT:
1423 break;
1424 case NODE_SYNCH_BEGIN_EVT:
1425 case NODE_FAILOVER_END_EVT:
1426 default:
1427 goto illegal_evt;
1428 }
1429 break;
1430 case SELF_COMING_PEER_UP:
1431 switch (evt) {
1432 case SELF_ESTABL_CONTACT_EVT:
1433 state = SELF_UP_PEER_UP;
1434 break;
1435 case PEER_LOST_CONTACT_EVT:
1436 state = SELF_DOWN_PEER_DOWN;
1437 break;
1438 case SELF_LOST_CONTACT_EVT:
1439 case PEER_ESTABL_CONTACT_EVT:
1440 break;
1441 case NODE_SYNCH_END_EVT:
1442 case NODE_SYNCH_BEGIN_EVT:
1443 case NODE_FAILOVER_BEGIN_EVT:
1444 case NODE_FAILOVER_END_EVT:
1445 default:
1446 goto illegal_evt;
1447 }
1448 break;
1449 case SELF_LEAVING_PEER_DOWN:
1450 switch (evt) {
1451 case SELF_LOST_CONTACT_EVT:
1452 state = SELF_DOWN_PEER_DOWN;
1453 break;
1454 case SELF_ESTABL_CONTACT_EVT:
1455 case PEER_ESTABL_CONTACT_EVT:
1456 case PEER_LOST_CONTACT_EVT:
1457 break;
1458 case NODE_SYNCH_END_EVT:
1459 case NODE_SYNCH_BEGIN_EVT:
1460 case NODE_FAILOVER_BEGIN_EVT:
1461 case NODE_FAILOVER_END_EVT:
1462 default:
1463 goto illegal_evt;
1464 }
1465 break;
1466 case NODE_FAILINGOVER:
1467 switch (evt) {
1468 case SELF_LOST_CONTACT_EVT:
1469 state = SELF_DOWN_PEER_LEAVING;
1470 break;
1471 case PEER_LOST_CONTACT_EVT:
1472 state = SELF_LEAVING_PEER_DOWN;
1473 break;
1474 case NODE_FAILOVER_END_EVT:
1475 state = SELF_UP_PEER_UP;
1476 break;
1477 case NODE_FAILOVER_BEGIN_EVT:
1478 case SELF_ESTABL_CONTACT_EVT:
1479 case PEER_ESTABL_CONTACT_EVT:
1480 break;
1481 case NODE_SYNCH_BEGIN_EVT:
1482 case NODE_SYNCH_END_EVT:
1483 default:
1484 goto illegal_evt;
1485 }
1486 break;
1487 case NODE_SYNCHING:
1488 switch (evt) {
1489 case SELF_LOST_CONTACT_EVT:
1490 state = SELF_DOWN_PEER_LEAVING;
1491 break;
1492 case PEER_LOST_CONTACT_EVT:
1493 state = SELF_LEAVING_PEER_DOWN;
1494 break;
1495 case NODE_SYNCH_END_EVT:
1496 state = SELF_UP_PEER_UP;
1497 break;
1498 case NODE_FAILOVER_BEGIN_EVT:
1499 state = NODE_FAILINGOVER;
1500 break;
1501 case NODE_SYNCH_BEGIN_EVT:
1502 case SELF_ESTABL_CONTACT_EVT:
1503 case PEER_ESTABL_CONTACT_EVT:
1504 break;
1505 case NODE_FAILOVER_END_EVT:
1506 default:
1507 goto illegal_evt;
1508 }
1509 break;
1510 default:
1511 pr_err("Unknown node fsm state %x\n", state);
1512 break;
1513 }
1514 trace_tipc_node_fsm(n->peer_id, n->state, state, evt);
1515 n->state = state;
1516 return;
1517
1518 illegal_evt:
1519 pr_err("Illegal node fsm evt %x in state %x\n", evt, state);
1520 trace_tipc_node_fsm(n->peer_id, n->state, state, evt);
1521 }
1522
node_lost_contact(struct tipc_node * n,struct sk_buff_head * inputq)1523 static void node_lost_contact(struct tipc_node *n,
1524 struct sk_buff_head *inputq)
1525 {
1526 struct tipc_sock_conn *conn, *safe;
1527 struct tipc_link *l;
1528 struct list_head *conns = &n->conn_sks;
1529 struct sk_buff *skb;
1530 uint i;
1531
1532 pr_debug("Lost contact with %x\n", n->addr);
1533 n->delete_at = jiffies + msecs_to_jiffies(NODE_CLEANUP_AFTER);
1534 trace_tipc_node_lost_contact(n, true, " ");
1535
1536 /* Clean up broadcast state */
1537 tipc_bcast_remove_peer(n->net, n->bc_entry.link);
1538 skb_queue_purge(&n->bc_entry.namedq);
1539
1540 /* Abort any ongoing link failover */
1541 for (i = 0; i < MAX_BEARERS; i++) {
1542 l = n->links[i].link;
1543 if (l)
1544 tipc_link_fsm_evt(l, LINK_FAILOVER_END_EVT);
1545 }
1546
1547 /* Notify publications from this node */
1548 n->action_flags |= TIPC_NOTIFY_NODE_DOWN;
1549 n->peer_net = NULL;
1550 n->peer_hash_mix = 0;
1551 /* Notify sockets connected to node */
1552 list_for_each_entry_safe(conn, safe, conns, list) {
1553 skb = tipc_msg_create(TIPC_CRITICAL_IMPORTANCE, TIPC_CONN_MSG,
1554 SHORT_H_SIZE, 0, tipc_own_addr(n->net),
1555 conn->peer_node, conn->port,
1556 conn->peer_port, TIPC_ERR_NO_NODE);
1557 if (likely(skb))
1558 skb_queue_tail(inputq, skb);
1559 list_del(&conn->list);
1560 kfree(conn);
1561 }
1562 }
1563
1564 /**
1565 * tipc_node_get_linkname - get the name of a link
1566 *
1567 * @net: the applicable net namespace
1568 * @bearer_id: id of the bearer
1569 * @addr: peer node address
1570 * @linkname: link name output buffer
1571 * @len: size of @linkname output buffer
1572 *
1573 * Return: 0 on success
1574 */
tipc_node_get_linkname(struct net * net,u32 bearer_id,u32 addr,char * linkname,size_t len)1575 int tipc_node_get_linkname(struct net *net, u32 bearer_id, u32 addr,
1576 char *linkname, size_t len)
1577 {
1578 struct tipc_link *link;
1579 int err = -EINVAL;
1580 struct tipc_node *node = tipc_node_find(net, addr);
1581
1582 if (!node)
1583 return err;
1584
1585 if (bearer_id >= MAX_BEARERS)
1586 goto exit;
1587
1588 tipc_node_read_lock(node);
1589 link = node->links[bearer_id].link;
1590 if (link) {
1591 strscpy(linkname, tipc_link_name(link), len);
1592 err = 0;
1593 }
1594 tipc_node_read_unlock(node);
1595 exit:
1596 tipc_node_put(node);
1597 return err;
1598 }
1599
1600 /* Caller should hold node lock for the passed node */
__tipc_nl_add_node(struct tipc_nl_msg * msg,struct tipc_node * node)1601 static int __tipc_nl_add_node(struct tipc_nl_msg *msg, struct tipc_node *node)
1602 {
1603 void *hdr;
1604 struct nlattr *attrs;
1605
1606 hdr = genlmsg_put(msg->skb, msg->portid, msg->seq, &tipc_genl_family,
1607 NLM_F_MULTI, TIPC_NL_NODE_GET);
1608 if (!hdr)
1609 return -EMSGSIZE;
1610
1611 attrs = nla_nest_start_noflag(msg->skb, TIPC_NLA_NODE);
1612 if (!attrs)
1613 goto msg_full;
1614
1615 if (nla_put_u32(msg->skb, TIPC_NLA_NODE_ADDR, node->addr))
1616 goto attr_msg_full;
1617 if (node_is_up(node))
1618 if (nla_put_flag(msg->skb, TIPC_NLA_NODE_UP))
1619 goto attr_msg_full;
1620
1621 nla_nest_end(msg->skb, attrs);
1622 genlmsg_end(msg->skb, hdr);
1623
1624 return 0;
1625
1626 attr_msg_full:
1627 nla_nest_cancel(msg->skb, attrs);
1628 msg_full:
1629 genlmsg_cancel(msg->skb, hdr);
1630
1631 return -EMSGSIZE;
1632 }
1633
tipc_lxc_xmit(struct net * peer_net,struct sk_buff_head * list)1634 static void tipc_lxc_xmit(struct net *peer_net, struct sk_buff_head *list)
1635 {
1636 struct tipc_msg *hdr = buf_msg(skb_peek(list));
1637 struct sk_buff_head inputq;
1638
1639 switch (msg_user(hdr)) {
1640 case TIPC_LOW_IMPORTANCE:
1641 case TIPC_MEDIUM_IMPORTANCE:
1642 case TIPC_HIGH_IMPORTANCE:
1643 case TIPC_CRITICAL_IMPORTANCE:
1644 if (msg_connected(hdr) || msg_named(hdr) ||
1645 msg_direct(hdr)) {
1646 tipc_loopback_trace(peer_net, list);
1647 spin_lock_init(&list->lock);
1648 tipc_sk_rcv(peer_net, list);
1649 return;
1650 }
1651 if (msg_mcast(hdr)) {
1652 tipc_loopback_trace(peer_net, list);
1653 skb_queue_head_init(&inputq);
1654 tipc_sk_mcast_rcv(peer_net, list, &inputq);
1655 __skb_queue_purge(list);
1656 skb_queue_purge(&inputq);
1657 return;
1658 }
1659 return;
1660 case MSG_FRAGMENTER:
1661 if (tipc_msg_assemble(list)) {
1662 tipc_loopback_trace(peer_net, list);
1663 skb_queue_head_init(&inputq);
1664 tipc_sk_mcast_rcv(peer_net, list, &inputq);
1665 __skb_queue_purge(list);
1666 skb_queue_purge(&inputq);
1667 }
1668 return;
1669 case GROUP_PROTOCOL:
1670 case CONN_MANAGER:
1671 tipc_loopback_trace(peer_net, list);
1672 spin_lock_init(&list->lock);
1673 tipc_sk_rcv(peer_net, list);
1674 return;
1675 case LINK_PROTOCOL:
1676 case NAME_DISTRIBUTOR:
1677 case TUNNEL_PROTOCOL:
1678 case BCAST_PROTOCOL:
1679 return;
1680 default:
1681 return;
1682 }
1683 }
1684
1685 /**
1686 * tipc_node_xmit() - general link level function for message sending
1687 * @net: the applicable net namespace
1688 * @list: chain of buffers containing message
1689 * @dnode: address of destination node
1690 * @selector: a number used for deterministic link selection
1691 * Consumes the buffer chain.
1692 * Return: 0 if success, otherwise: -ELINKCONG,-EHOSTUNREACH,-EMSGSIZE,-ENOBUF
1693 */
tipc_node_xmit(struct net * net,struct sk_buff_head * list,u32 dnode,int selector)1694 int tipc_node_xmit(struct net *net, struct sk_buff_head *list,
1695 u32 dnode, int selector)
1696 {
1697 struct tipc_link_entry *le = NULL;
1698 struct tipc_node *n;
1699 struct sk_buff_head xmitq;
1700 bool node_up = false;
1701 struct net *peer_net;
1702 int bearer_id;
1703 int rc;
1704
1705 if (in_own_node(net, dnode)) {
1706 tipc_loopback_trace(net, list);
1707 spin_lock_init(&list->lock);
1708 tipc_sk_rcv(net, list);
1709 return 0;
1710 }
1711
1712 n = tipc_node_find(net, dnode);
1713 if (unlikely(!n)) {
1714 __skb_queue_purge(list);
1715 return -EHOSTUNREACH;
1716 }
1717
1718 rcu_read_lock();
1719 tipc_node_read_lock(n);
1720 node_up = node_is_up(n);
1721 peer_net = n->peer_net;
1722 tipc_node_read_unlock(n);
1723 if (node_up && peer_net && check_net(peer_net)) {
1724 /* xmit inner linux container */
1725 tipc_lxc_xmit(peer_net, list);
1726 if (likely(skb_queue_empty(list))) {
1727 rcu_read_unlock();
1728 tipc_node_put(n);
1729 return 0;
1730 }
1731 }
1732 rcu_read_unlock();
1733
1734 tipc_node_read_lock(n);
1735 bearer_id = n->active_links[selector & 1];
1736 if (unlikely(bearer_id == INVALID_BEARER_ID)) {
1737 tipc_node_read_unlock(n);
1738 tipc_node_put(n);
1739 __skb_queue_purge(list);
1740 return -EHOSTUNREACH;
1741 }
1742
1743 __skb_queue_head_init(&xmitq);
1744 le = &n->links[bearer_id];
1745 spin_lock_bh(&le->lock);
1746 rc = tipc_link_xmit(le->link, list, &xmitq);
1747 spin_unlock_bh(&le->lock);
1748 tipc_node_read_unlock(n);
1749
1750 if (unlikely(rc == -ENOBUFS))
1751 tipc_node_link_down(n, bearer_id, false);
1752 else
1753 tipc_bearer_xmit(net, bearer_id, &xmitq, &le->maddr, n);
1754
1755 tipc_node_put(n);
1756
1757 return rc;
1758 }
1759
1760 /* tipc_node_xmit_skb(): send single buffer to destination
1761 * Buffers sent via this function are generally TIPC_SYSTEM_IMPORTANCE
1762 * messages, which will not be rejected
1763 * The only exception is datagram messages rerouted after secondary
1764 * lookup, which are rare and safe to dispose of anyway.
1765 */
tipc_node_xmit_skb(struct net * net,struct sk_buff * skb,u32 dnode,u32 selector)1766 int tipc_node_xmit_skb(struct net *net, struct sk_buff *skb, u32 dnode,
1767 u32 selector)
1768 {
1769 struct sk_buff_head head;
1770
1771 __skb_queue_head_init(&head);
1772 __skb_queue_tail(&head, skb);
1773 tipc_node_xmit(net, &head, dnode, selector);
1774 return 0;
1775 }
1776
1777 /* tipc_node_distr_xmit(): send single buffer msgs to individual destinations
1778 * Note: this is only for SYSTEM_IMPORTANCE messages, which cannot be rejected
1779 */
tipc_node_distr_xmit(struct net * net,struct sk_buff_head * xmitq)1780 int tipc_node_distr_xmit(struct net *net, struct sk_buff_head *xmitq)
1781 {
1782 struct sk_buff *skb;
1783 u32 selector, dnode;
1784
1785 while ((skb = __skb_dequeue(xmitq))) {
1786 selector = msg_origport(buf_msg(skb));
1787 dnode = msg_destnode(buf_msg(skb));
1788 tipc_node_xmit_skb(net, skb, dnode, selector);
1789 }
1790 return 0;
1791 }
1792
tipc_node_broadcast(struct net * net,struct sk_buff * skb,int rc_dests)1793 void tipc_node_broadcast(struct net *net, struct sk_buff *skb, int rc_dests)
1794 {
1795 struct sk_buff_head xmitq;
1796 struct sk_buff *txskb;
1797 struct tipc_node *n;
1798 u16 dummy;
1799 u32 dst;
1800
1801 /* Use broadcast if all nodes support it */
1802 if (!rc_dests && tipc_bcast_get_mode(net) != BCLINK_MODE_RCAST) {
1803 __skb_queue_head_init(&xmitq);
1804 __skb_queue_tail(&xmitq, skb);
1805 tipc_bcast_xmit(net, &xmitq, &dummy);
1806 return;
1807 }
1808
1809 /* Otherwise use legacy replicast method */
1810 rcu_read_lock();
1811 list_for_each_entry_rcu(n, tipc_nodes(net), list) {
1812 dst = n->addr;
1813 if (in_own_node(net, dst))
1814 continue;
1815 if (!node_is_up(n))
1816 continue;
1817 txskb = pskb_copy(skb, GFP_ATOMIC);
1818 if (!txskb)
1819 break;
1820 msg_set_destnode(buf_msg(txskb), dst);
1821 tipc_node_xmit_skb(net, txskb, dst, 0);
1822 }
1823 rcu_read_unlock();
1824 kfree_skb(skb);
1825 }
1826
tipc_node_mcast_rcv(struct tipc_node * n)1827 static void tipc_node_mcast_rcv(struct tipc_node *n)
1828 {
1829 struct tipc_bclink_entry *be = &n->bc_entry;
1830
1831 /* 'arrvq' is under inputq2's lock protection */
1832 spin_lock_bh(&be->inputq2.lock);
1833 spin_lock_bh(&be->inputq1.lock);
1834 skb_queue_splice_tail_init(&be->inputq1, &be->arrvq);
1835 spin_unlock_bh(&be->inputq1.lock);
1836 spin_unlock_bh(&be->inputq2.lock);
1837 tipc_sk_mcast_rcv(n->net, &be->arrvq, &be->inputq2);
1838 }
1839
tipc_node_bc_sync_rcv(struct tipc_node * n,struct tipc_msg * hdr,int bearer_id,struct sk_buff_head * xmitq,bool * valid)1840 static void tipc_node_bc_sync_rcv(struct tipc_node *n, struct tipc_msg *hdr,
1841 int bearer_id, struct sk_buff_head *xmitq,
1842 bool *valid)
1843 {
1844 struct tipc_link *ucl;
1845 int rc;
1846
1847 rc = tipc_bcast_sync_rcv(n->net, n->bc_entry.link, hdr, xmitq, valid);
1848 if (!*valid)
1849 return;
1850
1851 if (rc & TIPC_LINK_DOWN_EVT) {
1852 tipc_node_reset_links(n);
1853 return;
1854 }
1855
1856 if (!(rc & TIPC_LINK_SND_STATE))
1857 return;
1858
1859 /* If probe message, a STATE response will be sent anyway */
1860 if (msg_probe(hdr))
1861 return;
1862
1863 /* Produce a STATE message carrying broadcast NACK */
1864 tipc_node_read_lock(n);
1865 ucl = n->links[bearer_id].link;
1866 if (ucl)
1867 tipc_link_build_state_msg(ucl, xmitq);
1868 tipc_node_read_unlock(n);
1869 }
1870
1871 /**
1872 * tipc_node_bc_rcv - process TIPC broadcast packet arriving from off-node
1873 * @net: the applicable net namespace
1874 * @skb: TIPC packet
1875 * @bearer_id: id of bearer message arrived on
1876 *
1877 * Invoked with no locks held.
1878 */
tipc_node_bc_rcv(struct net * net,struct sk_buff * skb,int bearer_id)1879 static void tipc_node_bc_rcv(struct net *net, struct sk_buff *skb, int bearer_id)
1880 {
1881 int rc;
1882 struct sk_buff_head xmitq;
1883 struct tipc_bclink_entry *be;
1884 struct tipc_link_entry *le;
1885 struct tipc_msg *hdr = buf_msg(skb);
1886 int usr = msg_user(hdr);
1887 u32 dnode = msg_destnode(hdr);
1888 struct tipc_node *n;
1889
1890 __skb_queue_head_init(&xmitq);
1891
1892 /* If NACK for other node, let rcv link for that node peek into it */
1893 if ((usr == BCAST_PROTOCOL) && (dnode != tipc_own_addr(net)))
1894 n = tipc_node_find(net, dnode);
1895 else
1896 n = tipc_node_find(net, msg_prevnode(hdr));
1897 if (!n) {
1898 kfree_skb(skb);
1899 return;
1900 }
1901 be = &n->bc_entry;
1902 le = &n->links[bearer_id];
1903
1904 rc = tipc_bcast_rcv(net, be->link, skb);
1905
1906 /* Broadcast ACKs are sent on a unicast link */
1907 if (rc & TIPC_LINK_SND_STATE) {
1908 tipc_node_read_lock(n);
1909 tipc_link_build_state_msg(le->link, &xmitq);
1910 tipc_node_read_unlock(n);
1911 }
1912
1913 if (!skb_queue_empty(&xmitq))
1914 tipc_bearer_xmit(net, bearer_id, &xmitq, &le->maddr, n);
1915
1916 if (!skb_queue_empty(&be->inputq1))
1917 tipc_node_mcast_rcv(n);
1918
1919 /* Handle NAME_DISTRIBUTOR messages sent from 1.7 nodes */
1920 if (!skb_queue_empty(&n->bc_entry.namedq))
1921 tipc_named_rcv(net, &n->bc_entry.namedq,
1922 &n->bc_entry.named_rcv_nxt,
1923 &n->bc_entry.named_open);
1924
1925 /* If reassembly or retransmission failure => reset all links to peer */
1926 if (rc & TIPC_LINK_DOWN_EVT)
1927 tipc_node_reset_links(n);
1928
1929 tipc_node_put(n);
1930 }
1931
1932 /**
1933 * tipc_node_check_state - check and if necessary update node state
1934 * @n: target tipc_node
1935 * @skb: TIPC packet
1936 * @bearer_id: identity of bearer delivering the packet
1937 * @xmitq: queue for messages to be xmited on
1938 * Return: true if state and msg are ok, otherwise false
1939 */
tipc_node_check_state(struct tipc_node * n,struct sk_buff * skb,int bearer_id,struct sk_buff_head * xmitq)1940 static bool tipc_node_check_state(struct tipc_node *n, struct sk_buff *skb,
1941 int bearer_id, struct sk_buff_head *xmitq)
1942 {
1943 struct tipc_msg *hdr = buf_msg(skb);
1944 int usr = msg_user(hdr);
1945 int mtyp = msg_type(hdr);
1946 u16 oseqno = msg_seqno(hdr);
1947 u16 exp_pkts = msg_msgcnt(hdr);
1948 u16 rcv_nxt, syncpt, dlv_nxt, inputq_len;
1949 int state = n->state;
1950 struct tipc_link *l, *tnl, *pl = NULL;
1951 struct tipc_media_addr *maddr;
1952 int pb_id;
1953
1954 if (trace_tipc_node_check_state_enabled()) {
1955 trace_tipc_skb_dump(skb, false, "skb for node state check");
1956 trace_tipc_node_check_state(n, true, " ");
1957 }
1958 l = n->links[bearer_id].link;
1959 if (!l)
1960 return false;
1961 rcv_nxt = tipc_link_rcv_nxt(l);
1962
1963
1964 if (likely((state == SELF_UP_PEER_UP) && (usr != TUNNEL_PROTOCOL)))
1965 return true;
1966
1967 /* Find parallel link, if any */
1968 for (pb_id = 0; pb_id < MAX_BEARERS; pb_id++) {
1969 if ((pb_id != bearer_id) && n->links[pb_id].link) {
1970 pl = n->links[pb_id].link;
1971 break;
1972 }
1973 }
1974
1975 if (!tipc_link_validate_msg(l, hdr)) {
1976 trace_tipc_skb_dump(skb, false, "PROTO invalid (2)!");
1977 trace_tipc_link_dump(l, TIPC_DUMP_NONE, "PROTO invalid (2)!");
1978 return false;
1979 }
1980
1981 /* Check and update node accesibility if applicable */
1982 if (state == SELF_UP_PEER_COMING) {
1983 if (!tipc_link_is_up(l))
1984 return true;
1985 if (!msg_peer_link_is_up(hdr))
1986 return true;
1987 tipc_node_fsm_evt(n, PEER_ESTABL_CONTACT_EVT);
1988 }
1989
1990 if (state == SELF_DOWN_PEER_LEAVING) {
1991 if (msg_peer_node_is_up(hdr))
1992 return false;
1993 tipc_node_fsm_evt(n, PEER_LOST_CONTACT_EVT);
1994 return true;
1995 }
1996
1997 if (state == SELF_LEAVING_PEER_DOWN)
1998 return false;
1999
2000 /* Ignore duplicate packets */
2001 if ((usr != LINK_PROTOCOL) && less(oseqno, rcv_nxt))
2002 return true;
2003
2004 /* Initiate or update failover mode if applicable */
2005 if ((usr == TUNNEL_PROTOCOL) && (mtyp == FAILOVER_MSG)) {
2006 syncpt = oseqno + exp_pkts - 1;
2007 if (pl && !tipc_link_is_reset(pl)) {
2008 __tipc_node_link_down(n, &pb_id, xmitq, &maddr);
2009 trace_tipc_node_link_down(n, true,
2010 "node link down <- failover!");
2011 tipc_skb_queue_splice_tail_init(tipc_link_inputq(pl),
2012 tipc_link_inputq(l));
2013 }
2014
2015 /* If parallel link was already down, and this happened before
2016 * the tunnel link came up, node failover was never started.
2017 * Ensure that a FAILOVER_MSG is sent to get peer out of
2018 * NODE_FAILINGOVER state, also this node must accept
2019 * TUNNEL_MSGs from peer.
2020 */
2021 if (n->state != NODE_FAILINGOVER)
2022 tipc_node_link_failover(n, pl, l, xmitq);
2023
2024 /* If pkts arrive out of order, use lowest calculated syncpt */
2025 if (less(syncpt, n->sync_point))
2026 n->sync_point = syncpt;
2027 }
2028
2029 /* Open parallel link when tunnel link reaches synch point */
2030 if ((n->state == NODE_FAILINGOVER) && tipc_link_is_up(l)) {
2031 if (!more(rcv_nxt, n->sync_point))
2032 return true;
2033 tipc_node_fsm_evt(n, NODE_FAILOVER_END_EVT);
2034 if (pl)
2035 tipc_link_fsm_evt(pl, LINK_FAILOVER_END_EVT);
2036 return true;
2037 }
2038
2039 /* No syncing needed if only one link */
2040 if (!pl || !tipc_link_is_up(pl))
2041 return true;
2042
2043 /* Initiate synch mode if applicable */
2044 if ((usr == TUNNEL_PROTOCOL) && (mtyp == SYNCH_MSG) && (oseqno == 1)) {
2045 if (n->capabilities & TIPC_TUNNEL_ENHANCED)
2046 syncpt = msg_syncpt(hdr);
2047 else
2048 syncpt = msg_seqno(msg_inner_hdr(hdr)) + exp_pkts - 1;
2049 if (!tipc_link_is_up(l))
2050 __tipc_node_link_up(n, bearer_id, xmitq);
2051 if (n->state == SELF_UP_PEER_UP) {
2052 n->sync_point = syncpt;
2053 tipc_link_fsm_evt(l, LINK_SYNCH_BEGIN_EVT);
2054 tipc_node_fsm_evt(n, NODE_SYNCH_BEGIN_EVT);
2055 }
2056 }
2057
2058 /* Open tunnel link when parallel link reaches synch point */
2059 if (n->state == NODE_SYNCHING) {
2060 if (tipc_link_is_synching(l)) {
2061 tnl = l;
2062 } else {
2063 tnl = pl;
2064 pl = l;
2065 }
2066 inputq_len = skb_queue_len(tipc_link_inputq(pl));
2067 dlv_nxt = tipc_link_rcv_nxt(pl) - inputq_len;
2068 if (more(dlv_nxt, n->sync_point)) {
2069 tipc_link_fsm_evt(tnl, LINK_SYNCH_END_EVT);
2070 tipc_node_fsm_evt(n, NODE_SYNCH_END_EVT);
2071 return true;
2072 }
2073 if (l == pl)
2074 return true;
2075 if ((usr == TUNNEL_PROTOCOL) && (mtyp == SYNCH_MSG))
2076 return true;
2077 if (usr == LINK_PROTOCOL)
2078 return true;
2079 return false;
2080 }
2081 return true;
2082 }
2083
2084 /**
2085 * tipc_rcv - process TIPC packets/messages arriving from off-node
2086 * @net: the applicable net namespace
2087 * @skb: TIPC packet
2088 * @b: pointer to bearer message arrived on
2089 *
2090 * Invoked with no locks held. Bearer pointer must point to a valid bearer
2091 * structure (i.e. cannot be NULL), but bearer can be inactive.
2092 */
tipc_rcv(struct net * net,struct sk_buff * skb,struct tipc_bearer * b)2093 void tipc_rcv(struct net *net, struct sk_buff *skb, struct tipc_bearer *b)
2094 {
2095 struct sk_buff_head xmitq;
2096 struct tipc_link_entry *le;
2097 struct tipc_msg *hdr;
2098 struct tipc_node *n;
2099 int bearer_id = b->identity;
2100 u32 self = tipc_own_addr(net);
2101 int usr, rc = 0;
2102 u16 bc_ack;
2103 #ifdef CONFIG_TIPC_CRYPTO
2104 struct tipc_ehdr *ehdr;
2105
2106 /* Check if message must be decrypted first */
2107 if (TIPC_SKB_CB(skb)->decrypted || !tipc_ehdr_validate(skb))
2108 goto rcv;
2109
2110 ehdr = (struct tipc_ehdr *)skb->data;
2111 if (likely(ehdr->user != LINK_CONFIG)) {
2112 n = tipc_node_find(net, ntohl(ehdr->addr));
2113 if (unlikely(!n))
2114 goto discard;
2115 } else {
2116 n = tipc_node_find_by_id(net, ehdr->id);
2117 }
2118 skb_dst_force(skb);
2119 tipc_crypto_rcv(net, (n) ? n->crypto_rx : NULL, &skb, b);
2120 if (!skb)
2121 return;
2122
2123 rcv:
2124 #endif
2125 /* Ensure message is well-formed before touching the header */
2126 if (unlikely(!tipc_msg_validate(&skb)))
2127 goto discard;
2128 __skb_queue_head_init(&xmitq);
2129 hdr = buf_msg(skb);
2130 usr = msg_user(hdr);
2131 bc_ack = msg_bcast_ack(hdr);
2132
2133 /* Handle arrival of discovery or broadcast packet */
2134 if (unlikely(msg_non_seq(hdr))) {
2135 if (unlikely(usr == LINK_CONFIG))
2136 return tipc_disc_rcv(net, skb, b);
2137 else
2138 return tipc_node_bc_rcv(net, skb, bearer_id);
2139 }
2140
2141 /* Discard unicast link messages destined for another node */
2142 if (unlikely(!msg_short(hdr) && (msg_destnode(hdr) != self)))
2143 goto discard;
2144
2145 /* Locate neighboring node that sent packet */
2146 n = tipc_node_find(net, msg_prevnode(hdr));
2147 if (unlikely(!n))
2148 goto discard;
2149 le = &n->links[bearer_id];
2150
2151 /* Ensure broadcast reception is in synch with peer's send state */
2152 if (unlikely(usr == LINK_PROTOCOL)) {
2153 bool valid = true;
2154
2155 if (unlikely(skb_linearize(skb))) {
2156 tipc_node_put(n);
2157 goto discard;
2158 }
2159 hdr = buf_msg(skb);
2160 tipc_node_bc_sync_rcv(n, hdr, bearer_id, &xmitq, &valid);
2161 if (!valid) {
2162 tipc_node_put(n);
2163 goto discard;
2164 }
2165 } else if (unlikely(tipc_link_acked(n->bc_entry.link) != bc_ack)) {
2166 tipc_bcast_ack_rcv(net, n->bc_entry.link, hdr);
2167 }
2168
2169 /* Receive packet directly if conditions permit */
2170 tipc_node_read_lock(n);
2171 if (likely((n->state == SELF_UP_PEER_UP) && (usr != TUNNEL_PROTOCOL))) {
2172 spin_lock_bh(&le->lock);
2173 if (le->link) {
2174 rc = tipc_link_rcv(le->link, skb, &xmitq);
2175 skb = NULL;
2176 }
2177 spin_unlock_bh(&le->lock);
2178 }
2179 tipc_node_read_unlock(n);
2180
2181 /* Check/update node state before receiving */
2182 if (unlikely(skb)) {
2183 if (unlikely(skb_linearize(skb)))
2184 goto out_node_put;
2185 tipc_node_write_lock(n);
2186 if (tipc_node_check_state(n, skb, bearer_id, &xmitq)) {
2187 if (le->link) {
2188 rc = tipc_link_rcv(le->link, skb, &xmitq);
2189 skb = NULL;
2190 }
2191 }
2192 tipc_node_write_unlock(n);
2193 }
2194
2195 if (unlikely(rc & TIPC_LINK_UP_EVT))
2196 tipc_node_link_up(n, bearer_id, &xmitq);
2197
2198 if (unlikely(rc & TIPC_LINK_DOWN_EVT))
2199 tipc_node_link_down(n, bearer_id, false);
2200
2201 if (unlikely(!skb_queue_empty(&n->bc_entry.namedq)))
2202 tipc_named_rcv(net, &n->bc_entry.namedq,
2203 &n->bc_entry.named_rcv_nxt,
2204 &n->bc_entry.named_open);
2205
2206 if (unlikely(!skb_queue_empty(&n->bc_entry.inputq1)))
2207 tipc_node_mcast_rcv(n);
2208
2209 if (!skb_queue_empty(&le->inputq))
2210 tipc_sk_rcv(net, &le->inputq);
2211
2212 if (!skb_queue_empty(&xmitq))
2213 tipc_bearer_xmit(net, bearer_id, &xmitq, &le->maddr, n);
2214
2215 out_node_put:
2216 tipc_node_put(n);
2217 discard:
2218 kfree_skb(skb);
2219 }
2220
tipc_node_apply_property(struct net * net,struct tipc_bearer * b,int prop)2221 void tipc_node_apply_property(struct net *net, struct tipc_bearer *b,
2222 int prop)
2223 {
2224 struct tipc_net *tn = tipc_net(net);
2225 int bearer_id = b->identity;
2226 struct sk_buff_head xmitq;
2227 struct tipc_link_entry *e;
2228 struct tipc_node *n;
2229
2230 __skb_queue_head_init(&xmitq);
2231
2232 rcu_read_lock();
2233
2234 list_for_each_entry_rcu(n, &tn->node_list, list) {
2235 tipc_node_write_lock(n);
2236 e = &n->links[bearer_id];
2237 if (e->link) {
2238 if (prop == TIPC_NLA_PROP_TOL)
2239 tipc_link_set_tolerance(e->link, b->tolerance,
2240 &xmitq);
2241 else if (prop == TIPC_NLA_PROP_MTU)
2242 tipc_link_set_mtu(e->link, b->mtu);
2243
2244 /* Update MTU for node link entry */
2245 e->mtu = tipc_link_mss(e->link);
2246 }
2247
2248 tipc_node_write_unlock(n);
2249 tipc_bearer_xmit(net, bearer_id, &xmitq, &e->maddr, NULL);
2250 }
2251
2252 rcu_read_unlock();
2253 }
2254
tipc_nl_peer_rm(struct sk_buff * skb,struct genl_info * info)2255 int tipc_nl_peer_rm(struct sk_buff *skb, struct genl_info *info)
2256 {
2257 struct net *net = sock_net(skb->sk);
2258 struct tipc_net *tn = net_generic(net, tipc_net_id);
2259 struct nlattr *attrs[TIPC_NLA_NET_MAX + 1];
2260 struct tipc_node *peer, *temp_node;
2261 u8 node_id[NODE_ID_LEN];
2262 u64 *w0 = (u64 *)&node_id[0];
2263 u64 *w1 = (u64 *)&node_id[8];
2264 u32 addr;
2265 int err;
2266
2267 /* We identify the peer by its net */
2268 if (!info->attrs[TIPC_NLA_NET])
2269 return -EINVAL;
2270
2271 err = nla_parse_nested_deprecated(attrs, TIPC_NLA_NET_MAX,
2272 info->attrs[TIPC_NLA_NET],
2273 tipc_nl_net_policy, info->extack);
2274 if (err)
2275 return err;
2276
2277 /* attrs[TIPC_NLA_NET_NODEID] and attrs[TIPC_NLA_NET_ADDR] are
2278 * mutually exclusive cases
2279 */
2280 if (attrs[TIPC_NLA_NET_ADDR]) {
2281 addr = nla_get_u32(attrs[TIPC_NLA_NET_ADDR]);
2282 if (!addr)
2283 return -EINVAL;
2284 }
2285
2286 if (attrs[TIPC_NLA_NET_NODEID]) {
2287 if (!attrs[TIPC_NLA_NET_NODEID_W1])
2288 return -EINVAL;
2289 *w0 = nla_get_u64(attrs[TIPC_NLA_NET_NODEID]);
2290 *w1 = nla_get_u64(attrs[TIPC_NLA_NET_NODEID_W1]);
2291 addr = hash128to32(node_id);
2292 }
2293
2294 if (in_own_node(net, addr))
2295 return -ENOTSUPP;
2296
2297 spin_lock_bh(&tn->node_list_lock);
2298 peer = tipc_node_find(net, addr);
2299 if (!peer) {
2300 spin_unlock_bh(&tn->node_list_lock);
2301 return -ENXIO;
2302 }
2303
2304 tipc_node_write_lock(peer);
2305 if (peer->state != SELF_DOWN_PEER_DOWN &&
2306 peer->state != SELF_DOWN_PEER_LEAVING) {
2307 tipc_node_write_unlock(peer);
2308 err = -EBUSY;
2309 goto err_out;
2310 }
2311
2312 tipc_node_clear_links(peer);
2313 tipc_node_write_unlock(peer);
2314 tipc_node_delete(peer);
2315
2316 /* Calculate cluster capabilities */
2317 tn->capabilities = TIPC_NODE_CAPABILITIES;
2318 list_for_each_entry_rcu(temp_node, &tn->node_list, list) {
2319 tn->capabilities &= temp_node->capabilities;
2320 }
2321 tipc_bcast_toggle_rcast(net, (tn->capabilities & TIPC_BCAST_RCAST));
2322 err = 0;
2323 err_out:
2324 tipc_node_put(peer);
2325 spin_unlock_bh(&tn->node_list_lock);
2326
2327 return err;
2328 }
2329
tipc_nl_node_dump(struct sk_buff * skb,struct netlink_callback * cb)2330 int tipc_nl_node_dump(struct sk_buff *skb, struct netlink_callback *cb)
2331 {
2332 int err;
2333 struct net *net = sock_net(skb->sk);
2334 struct tipc_net *tn = net_generic(net, tipc_net_id);
2335 int done = cb->args[0];
2336 int last_addr = cb->args[1];
2337 struct tipc_node *node;
2338 struct tipc_nl_msg msg;
2339
2340 if (done)
2341 return 0;
2342
2343 msg.skb = skb;
2344 msg.portid = NETLINK_CB(cb->skb).portid;
2345 msg.seq = cb->nlh->nlmsg_seq;
2346
2347 rcu_read_lock();
2348 if (last_addr) {
2349 node = tipc_node_find(net, last_addr);
2350 if (!node) {
2351 rcu_read_unlock();
2352 /* We never set seq or call nl_dump_check_consistent()
2353 * this means that setting prev_seq here will cause the
2354 * consistence check to fail in the netlink callback
2355 * handler. Resulting in the NLMSG_DONE message having
2356 * the NLM_F_DUMP_INTR flag set if the node state
2357 * changed while we released the lock.
2358 */
2359 cb->prev_seq = 1;
2360 return -EPIPE;
2361 }
2362 tipc_node_put(node);
2363 }
2364
2365 list_for_each_entry_rcu(node, &tn->node_list, list) {
2366 if (node->preliminary)
2367 continue;
2368 if (last_addr) {
2369 if (node->addr == last_addr)
2370 last_addr = 0;
2371 else
2372 continue;
2373 }
2374
2375 tipc_node_read_lock(node);
2376 err = __tipc_nl_add_node(&msg, node);
2377 if (err) {
2378 last_addr = node->addr;
2379 tipc_node_read_unlock(node);
2380 goto out;
2381 }
2382
2383 tipc_node_read_unlock(node);
2384 }
2385 done = 1;
2386 out:
2387 cb->args[0] = done;
2388 cb->args[1] = last_addr;
2389 rcu_read_unlock();
2390
2391 return skb->len;
2392 }
2393
2394 /* tipc_node_find_by_name - locate owner node of link by link's name
2395 * @net: the applicable net namespace
2396 * @name: pointer to link name string
2397 * @bearer_id: pointer to index in 'node->links' array where the link was found.
2398 *
2399 * Returns pointer to node owning the link, or 0 if no matching link is found.
2400 */
tipc_node_find_by_name(struct net * net,const char * link_name,unsigned int * bearer_id)2401 static struct tipc_node *tipc_node_find_by_name(struct net *net,
2402 const char *link_name,
2403 unsigned int *bearer_id)
2404 {
2405 struct tipc_net *tn = net_generic(net, tipc_net_id);
2406 struct tipc_link *l;
2407 struct tipc_node *n;
2408 struct tipc_node *found_node = NULL;
2409 int i;
2410
2411 *bearer_id = 0;
2412 rcu_read_lock();
2413 list_for_each_entry_rcu(n, &tn->node_list, list) {
2414 tipc_node_read_lock(n);
2415 for (i = 0; i < MAX_BEARERS; i++) {
2416 l = n->links[i].link;
2417 if (l && !strcmp(tipc_link_name(l), link_name)) {
2418 *bearer_id = i;
2419 found_node = n;
2420 break;
2421 }
2422 }
2423 tipc_node_read_unlock(n);
2424 if (found_node)
2425 break;
2426 }
2427 rcu_read_unlock();
2428
2429 return found_node;
2430 }
2431
tipc_nl_node_set_link(struct sk_buff * skb,struct genl_info * info)2432 int tipc_nl_node_set_link(struct sk_buff *skb, struct genl_info *info)
2433 {
2434 int err;
2435 int res = 0;
2436 int bearer_id;
2437 char *name;
2438 struct tipc_link *link;
2439 struct tipc_node *node;
2440 struct sk_buff_head xmitq;
2441 struct nlattr *attrs[TIPC_NLA_LINK_MAX + 1];
2442 struct net *net = sock_net(skb->sk);
2443
2444 __skb_queue_head_init(&xmitq);
2445
2446 if (!info->attrs[TIPC_NLA_LINK])
2447 return -EINVAL;
2448
2449 err = nla_parse_nested_deprecated(attrs, TIPC_NLA_LINK_MAX,
2450 info->attrs[TIPC_NLA_LINK],
2451 tipc_nl_link_policy, info->extack);
2452 if (err)
2453 return err;
2454
2455 if (!attrs[TIPC_NLA_LINK_NAME])
2456 return -EINVAL;
2457
2458 name = nla_data(attrs[TIPC_NLA_LINK_NAME]);
2459
2460 if (strcmp(name, tipc_bclink_name) == 0)
2461 return tipc_nl_bc_link_set(net, attrs);
2462
2463 node = tipc_node_find_by_name(net, name, &bearer_id);
2464 if (!node)
2465 return -EINVAL;
2466
2467 tipc_node_read_lock(node);
2468
2469 link = node->links[bearer_id].link;
2470 if (!link) {
2471 res = -EINVAL;
2472 goto out;
2473 }
2474
2475 if (attrs[TIPC_NLA_LINK_PROP]) {
2476 struct nlattr *props[TIPC_NLA_PROP_MAX + 1];
2477
2478 err = tipc_nl_parse_link_prop(attrs[TIPC_NLA_LINK_PROP], props);
2479 if (err) {
2480 res = err;
2481 goto out;
2482 }
2483
2484 if (props[TIPC_NLA_PROP_TOL]) {
2485 u32 tol;
2486
2487 tol = nla_get_u32(props[TIPC_NLA_PROP_TOL]);
2488 tipc_link_set_tolerance(link, tol, &xmitq);
2489 }
2490 if (props[TIPC_NLA_PROP_PRIO]) {
2491 u32 prio;
2492
2493 prio = nla_get_u32(props[TIPC_NLA_PROP_PRIO]);
2494 tipc_link_set_prio(link, prio, &xmitq);
2495 }
2496 if (props[TIPC_NLA_PROP_WIN]) {
2497 u32 max_win;
2498
2499 max_win = nla_get_u32(props[TIPC_NLA_PROP_WIN]);
2500 tipc_link_set_queue_limits(link,
2501 tipc_link_min_win(link),
2502 max_win);
2503 }
2504 }
2505
2506 out:
2507 tipc_node_read_unlock(node);
2508 tipc_bearer_xmit(net, bearer_id, &xmitq, &node->links[bearer_id].maddr,
2509 NULL);
2510 return res;
2511 }
2512
tipc_nl_node_get_link(struct sk_buff * skb,struct genl_info * info)2513 int tipc_nl_node_get_link(struct sk_buff *skb, struct genl_info *info)
2514 {
2515 struct net *net = genl_info_net(info);
2516 struct nlattr *attrs[TIPC_NLA_LINK_MAX + 1];
2517 struct tipc_nl_msg msg;
2518 char *name;
2519 int err;
2520
2521 msg.portid = info->snd_portid;
2522 msg.seq = info->snd_seq;
2523
2524 if (!info->attrs[TIPC_NLA_LINK])
2525 return -EINVAL;
2526
2527 err = nla_parse_nested_deprecated(attrs, TIPC_NLA_LINK_MAX,
2528 info->attrs[TIPC_NLA_LINK],
2529 tipc_nl_link_policy, info->extack);
2530 if (err)
2531 return err;
2532
2533 if (!attrs[TIPC_NLA_LINK_NAME])
2534 return -EINVAL;
2535
2536 name = nla_data(attrs[TIPC_NLA_LINK_NAME]);
2537
2538 msg.skb = nlmsg_new(NLMSG_GOODSIZE, GFP_KERNEL);
2539 if (!msg.skb)
2540 return -ENOMEM;
2541
2542 if (strcmp(name, tipc_bclink_name) == 0) {
2543 err = tipc_nl_add_bc_link(net, &msg, tipc_net(net)->bcl);
2544 if (err)
2545 goto err_free;
2546 } else {
2547 int bearer_id;
2548 struct tipc_node *node;
2549 struct tipc_link *link;
2550
2551 node = tipc_node_find_by_name(net, name, &bearer_id);
2552 if (!node) {
2553 err = -EINVAL;
2554 goto err_free;
2555 }
2556
2557 tipc_node_read_lock(node);
2558 link = node->links[bearer_id].link;
2559 if (!link) {
2560 tipc_node_read_unlock(node);
2561 err = -EINVAL;
2562 goto err_free;
2563 }
2564
2565 err = __tipc_nl_add_link(net, &msg, link, 0);
2566 tipc_node_read_unlock(node);
2567 if (err)
2568 goto err_free;
2569 }
2570
2571 return genlmsg_reply(msg.skb, info);
2572
2573 err_free:
2574 nlmsg_free(msg.skb);
2575 return err;
2576 }
2577
tipc_nl_node_reset_link_stats(struct sk_buff * skb,struct genl_info * info)2578 int tipc_nl_node_reset_link_stats(struct sk_buff *skb, struct genl_info *info)
2579 {
2580 int err;
2581 char *link_name;
2582 unsigned int bearer_id;
2583 struct tipc_link *link;
2584 struct tipc_node *node;
2585 struct nlattr *attrs[TIPC_NLA_LINK_MAX + 1];
2586 struct net *net = sock_net(skb->sk);
2587 struct tipc_net *tn = tipc_net(net);
2588 struct tipc_link_entry *le;
2589
2590 if (!info->attrs[TIPC_NLA_LINK])
2591 return -EINVAL;
2592
2593 err = nla_parse_nested_deprecated(attrs, TIPC_NLA_LINK_MAX,
2594 info->attrs[TIPC_NLA_LINK],
2595 tipc_nl_link_policy, info->extack);
2596 if (err)
2597 return err;
2598
2599 if (!attrs[TIPC_NLA_LINK_NAME])
2600 return -EINVAL;
2601
2602 link_name = nla_data(attrs[TIPC_NLA_LINK_NAME]);
2603
2604 err = -EINVAL;
2605 if (!strcmp(link_name, tipc_bclink_name)) {
2606 err = tipc_bclink_reset_stats(net, tipc_bc_sndlink(net));
2607 if (err)
2608 return err;
2609 return 0;
2610 } else if (strstr(link_name, tipc_bclink_name)) {
2611 rcu_read_lock();
2612 list_for_each_entry_rcu(node, &tn->node_list, list) {
2613 tipc_node_read_lock(node);
2614 link = node->bc_entry.link;
2615 if (link && !strcmp(link_name, tipc_link_name(link))) {
2616 err = tipc_bclink_reset_stats(net, link);
2617 tipc_node_read_unlock(node);
2618 break;
2619 }
2620 tipc_node_read_unlock(node);
2621 }
2622 rcu_read_unlock();
2623 return err;
2624 }
2625
2626 node = tipc_node_find_by_name(net, link_name, &bearer_id);
2627 if (!node)
2628 return -EINVAL;
2629
2630 le = &node->links[bearer_id];
2631 tipc_node_read_lock(node);
2632 spin_lock_bh(&le->lock);
2633 link = node->links[bearer_id].link;
2634 if (!link) {
2635 spin_unlock_bh(&le->lock);
2636 tipc_node_read_unlock(node);
2637 return -EINVAL;
2638 }
2639 tipc_link_reset_stats(link);
2640 spin_unlock_bh(&le->lock);
2641 tipc_node_read_unlock(node);
2642 return 0;
2643 }
2644
2645 /* Caller should hold node lock */
__tipc_nl_add_node_links(struct net * net,struct tipc_nl_msg * msg,struct tipc_node * node,u32 * prev_link,bool bc_link)2646 static int __tipc_nl_add_node_links(struct net *net, struct tipc_nl_msg *msg,
2647 struct tipc_node *node, u32 *prev_link,
2648 bool bc_link)
2649 {
2650 u32 i;
2651 int err;
2652
2653 for (i = *prev_link; i < MAX_BEARERS; i++) {
2654 *prev_link = i;
2655
2656 if (!node->links[i].link)
2657 continue;
2658
2659 err = __tipc_nl_add_link(net, msg,
2660 node->links[i].link, NLM_F_MULTI);
2661 if (err)
2662 return err;
2663 }
2664
2665 if (bc_link) {
2666 *prev_link = i;
2667 err = tipc_nl_add_bc_link(net, msg, node->bc_entry.link);
2668 if (err)
2669 return err;
2670 }
2671
2672 *prev_link = 0;
2673
2674 return 0;
2675 }
2676
tipc_nl_node_dump_link(struct sk_buff * skb,struct netlink_callback * cb)2677 int tipc_nl_node_dump_link(struct sk_buff *skb, struct netlink_callback *cb)
2678 {
2679 struct net *net = sock_net(skb->sk);
2680 struct nlattr **attrs = genl_dumpit_info(cb)->info.attrs;
2681 struct nlattr *link[TIPC_NLA_LINK_MAX + 1];
2682 struct tipc_net *tn = net_generic(net, tipc_net_id);
2683 struct tipc_node *node;
2684 struct tipc_nl_msg msg;
2685 u32 prev_node = cb->args[0];
2686 u32 prev_link = cb->args[1];
2687 int done = cb->args[2];
2688 bool bc_link = cb->args[3];
2689 int err;
2690
2691 if (done)
2692 return 0;
2693
2694 if (!prev_node) {
2695 /* Check if broadcast-receiver links dumping is needed */
2696 if (attrs && attrs[TIPC_NLA_LINK]) {
2697 err = nla_parse_nested_deprecated(link,
2698 TIPC_NLA_LINK_MAX,
2699 attrs[TIPC_NLA_LINK],
2700 tipc_nl_link_policy,
2701 NULL);
2702 if (unlikely(err))
2703 return err;
2704 if (unlikely(!link[TIPC_NLA_LINK_BROADCAST]))
2705 return -EINVAL;
2706 bc_link = true;
2707 }
2708 }
2709
2710 msg.skb = skb;
2711 msg.portid = NETLINK_CB(cb->skb).portid;
2712 msg.seq = cb->nlh->nlmsg_seq;
2713
2714 rcu_read_lock();
2715 if (prev_node) {
2716 node = tipc_node_find(net, prev_node);
2717 if (!node) {
2718 /* We never set seq or call nl_dump_check_consistent()
2719 * this means that setting prev_seq here will cause the
2720 * consistence check to fail in the netlink callback
2721 * handler. Resulting in the last NLMSG_DONE message
2722 * having the NLM_F_DUMP_INTR flag set.
2723 */
2724 cb->prev_seq = 1;
2725 goto out;
2726 }
2727 tipc_node_put(node);
2728
2729 list_for_each_entry_continue_rcu(node, &tn->node_list,
2730 list) {
2731 tipc_node_read_lock(node);
2732 err = __tipc_nl_add_node_links(net, &msg, node,
2733 &prev_link, bc_link);
2734 tipc_node_read_unlock(node);
2735 if (err)
2736 goto out;
2737
2738 prev_node = node->addr;
2739 }
2740 } else {
2741 err = tipc_nl_add_bc_link(net, &msg, tn->bcl);
2742 if (err)
2743 goto out;
2744
2745 list_for_each_entry_rcu(node, &tn->node_list, list) {
2746 tipc_node_read_lock(node);
2747 err = __tipc_nl_add_node_links(net, &msg, node,
2748 &prev_link, bc_link);
2749 tipc_node_read_unlock(node);
2750 if (err)
2751 goto out;
2752
2753 prev_node = node->addr;
2754 }
2755 }
2756 done = 1;
2757 out:
2758 rcu_read_unlock();
2759
2760 cb->args[0] = prev_node;
2761 cb->args[1] = prev_link;
2762 cb->args[2] = done;
2763 cb->args[3] = bc_link;
2764
2765 return skb->len;
2766 }
2767
tipc_nl_node_set_monitor(struct sk_buff * skb,struct genl_info * info)2768 int tipc_nl_node_set_monitor(struct sk_buff *skb, struct genl_info *info)
2769 {
2770 struct nlattr *attrs[TIPC_NLA_MON_MAX + 1];
2771 struct net *net = sock_net(skb->sk);
2772 int err;
2773
2774 if (!info->attrs[TIPC_NLA_MON])
2775 return -EINVAL;
2776
2777 err = nla_parse_nested_deprecated(attrs, TIPC_NLA_MON_MAX,
2778 info->attrs[TIPC_NLA_MON],
2779 tipc_nl_monitor_policy,
2780 info->extack);
2781 if (err)
2782 return err;
2783
2784 if (attrs[TIPC_NLA_MON_ACTIVATION_THRESHOLD]) {
2785 u32 val;
2786
2787 val = nla_get_u32(attrs[TIPC_NLA_MON_ACTIVATION_THRESHOLD]);
2788 err = tipc_nl_monitor_set_threshold(net, val);
2789 if (err)
2790 return err;
2791 }
2792
2793 return 0;
2794 }
2795
__tipc_nl_add_monitor_prop(struct net * net,struct tipc_nl_msg * msg)2796 static int __tipc_nl_add_monitor_prop(struct net *net, struct tipc_nl_msg *msg)
2797 {
2798 struct nlattr *attrs;
2799 void *hdr;
2800 u32 val;
2801
2802 hdr = genlmsg_put(msg->skb, msg->portid, msg->seq, &tipc_genl_family,
2803 0, TIPC_NL_MON_GET);
2804 if (!hdr)
2805 return -EMSGSIZE;
2806
2807 attrs = nla_nest_start_noflag(msg->skb, TIPC_NLA_MON);
2808 if (!attrs)
2809 goto msg_full;
2810
2811 val = tipc_nl_monitor_get_threshold(net);
2812
2813 if (nla_put_u32(msg->skb, TIPC_NLA_MON_ACTIVATION_THRESHOLD, val))
2814 goto attr_msg_full;
2815
2816 nla_nest_end(msg->skb, attrs);
2817 genlmsg_end(msg->skb, hdr);
2818
2819 return 0;
2820
2821 attr_msg_full:
2822 nla_nest_cancel(msg->skb, attrs);
2823 msg_full:
2824 genlmsg_cancel(msg->skb, hdr);
2825
2826 return -EMSGSIZE;
2827 }
2828
tipc_nl_node_get_monitor(struct sk_buff * skb,struct genl_info * info)2829 int tipc_nl_node_get_monitor(struct sk_buff *skb, struct genl_info *info)
2830 {
2831 struct net *net = sock_net(skb->sk);
2832 struct tipc_nl_msg msg;
2833 int err;
2834
2835 msg.skb = nlmsg_new(NLMSG_GOODSIZE, GFP_KERNEL);
2836 if (!msg.skb)
2837 return -ENOMEM;
2838 msg.portid = info->snd_portid;
2839 msg.seq = info->snd_seq;
2840
2841 err = __tipc_nl_add_monitor_prop(net, &msg);
2842 if (err) {
2843 nlmsg_free(msg.skb);
2844 return err;
2845 }
2846
2847 return genlmsg_reply(msg.skb, info);
2848 }
2849
tipc_nl_node_dump_monitor(struct sk_buff * skb,struct netlink_callback * cb)2850 int tipc_nl_node_dump_monitor(struct sk_buff *skb, struct netlink_callback *cb)
2851 {
2852 struct net *net = sock_net(skb->sk);
2853 u32 prev_bearer = cb->args[0];
2854 struct tipc_nl_msg msg;
2855 int bearer_id;
2856 int err;
2857
2858 if (prev_bearer == MAX_BEARERS)
2859 return 0;
2860
2861 msg.skb = skb;
2862 msg.portid = NETLINK_CB(cb->skb).portid;
2863 msg.seq = cb->nlh->nlmsg_seq;
2864
2865 rtnl_lock();
2866 for (bearer_id = prev_bearer; bearer_id < MAX_BEARERS; bearer_id++) {
2867 err = __tipc_nl_add_monitor(net, &msg, bearer_id);
2868 if (err)
2869 break;
2870 }
2871 rtnl_unlock();
2872 cb->args[0] = bearer_id;
2873
2874 return skb->len;
2875 }
2876
tipc_nl_node_dump_monitor_peer(struct sk_buff * skb,struct netlink_callback * cb)2877 int tipc_nl_node_dump_monitor_peer(struct sk_buff *skb,
2878 struct netlink_callback *cb)
2879 {
2880 struct net *net = sock_net(skb->sk);
2881 u32 prev_node = cb->args[1];
2882 u32 bearer_id = cb->args[2];
2883 int done = cb->args[0];
2884 struct tipc_nl_msg msg;
2885 int err;
2886
2887 if (!prev_node) {
2888 struct nlattr **attrs = genl_dumpit_info(cb)->info.attrs;
2889 struct nlattr *mon[TIPC_NLA_MON_MAX + 1];
2890
2891 if (!attrs[TIPC_NLA_MON])
2892 return -EINVAL;
2893
2894 err = nla_parse_nested_deprecated(mon, TIPC_NLA_MON_MAX,
2895 attrs[TIPC_NLA_MON],
2896 tipc_nl_monitor_policy,
2897 NULL);
2898 if (err)
2899 return err;
2900
2901 if (!mon[TIPC_NLA_MON_REF])
2902 return -EINVAL;
2903
2904 bearer_id = nla_get_u32(mon[TIPC_NLA_MON_REF]);
2905
2906 if (bearer_id >= MAX_BEARERS)
2907 return -EINVAL;
2908 }
2909
2910 if (done)
2911 return 0;
2912
2913 msg.skb = skb;
2914 msg.portid = NETLINK_CB(cb->skb).portid;
2915 msg.seq = cb->nlh->nlmsg_seq;
2916
2917 rtnl_lock();
2918 err = tipc_nl_add_monitor_peer(net, &msg, bearer_id, &prev_node);
2919 if (!err)
2920 done = 1;
2921
2922 rtnl_unlock();
2923 cb->args[0] = done;
2924 cb->args[1] = prev_node;
2925 cb->args[2] = bearer_id;
2926
2927 return skb->len;
2928 }
2929
2930 #ifdef CONFIG_TIPC_CRYPTO
tipc_nl_retrieve_key(struct nlattr ** attrs,struct tipc_aead_key ** pkey)2931 static int tipc_nl_retrieve_key(struct nlattr **attrs,
2932 struct tipc_aead_key **pkey)
2933 {
2934 struct nlattr *attr = attrs[TIPC_NLA_NODE_KEY];
2935 struct tipc_aead_key *key;
2936
2937 if (!attr)
2938 return -ENODATA;
2939
2940 if (nla_len(attr) < sizeof(*key))
2941 return -EINVAL;
2942 key = (struct tipc_aead_key *)nla_data(attr);
2943 if (key->keylen > TIPC_AEAD_KEYLEN_MAX ||
2944 nla_len(attr) < tipc_aead_key_size(key))
2945 return -EINVAL;
2946
2947 *pkey = key;
2948 return 0;
2949 }
2950
tipc_nl_retrieve_nodeid(struct nlattr ** attrs,u8 ** node_id)2951 static int tipc_nl_retrieve_nodeid(struct nlattr **attrs, u8 **node_id)
2952 {
2953 struct nlattr *attr = attrs[TIPC_NLA_NODE_ID];
2954
2955 if (!attr)
2956 return -ENODATA;
2957
2958 if (nla_len(attr) < TIPC_NODEID_LEN)
2959 return -EINVAL;
2960
2961 *node_id = (u8 *)nla_data(attr);
2962 return 0;
2963 }
2964
tipc_nl_retrieve_rekeying(struct nlattr ** attrs,u32 * intv)2965 static int tipc_nl_retrieve_rekeying(struct nlattr **attrs, u32 *intv)
2966 {
2967 struct nlattr *attr = attrs[TIPC_NLA_NODE_REKEYING];
2968
2969 if (!attr)
2970 return -ENODATA;
2971
2972 *intv = nla_get_u32(attr);
2973 return 0;
2974 }
2975
__tipc_nl_node_set_key(struct sk_buff * skb,struct genl_info * info)2976 static int __tipc_nl_node_set_key(struct sk_buff *skb, struct genl_info *info)
2977 {
2978 struct nlattr *attrs[TIPC_NLA_NODE_MAX + 1];
2979 struct net *net = sock_net(skb->sk);
2980 struct tipc_crypto *tx = tipc_net(net)->crypto_tx, *c = tx;
2981 struct tipc_node *n = NULL;
2982 struct tipc_aead_key *ukey;
2983 bool rekeying = true, master_key = false;
2984 u8 *id, *own_id, mode;
2985 u32 intv = 0;
2986 int rc = 0;
2987
2988 if (!info->attrs[TIPC_NLA_NODE])
2989 return -EINVAL;
2990
2991 rc = nla_parse_nested(attrs, TIPC_NLA_NODE_MAX,
2992 info->attrs[TIPC_NLA_NODE],
2993 tipc_nl_node_policy, info->extack);
2994 if (rc)
2995 return rc;
2996
2997 own_id = tipc_own_id(net);
2998 if (!own_id) {
2999 GENL_SET_ERR_MSG(info, "not found own node identity (set id?)");
3000 return -EPERM;
3001 }
3002
3003 rc = tipc_nl_retrieve_rekeying(attrs, &intv);
3004 if (rc == -ENODATA)
3005 rekeying = false;
3006
3007 rc = tipc_nl_retrieve_key(attrs, &ukey);
3008 if (rc == -ENODATA && rekeying)
3009 goto rekeying;
3010 else if (rc)
3011 return rc;
3012
3013 rc = tipc_aead_key_validate(ukey, info);
3014 if (rc)
3015 return rc;
3016
3017 rc = tipc_nl_retrieve_nodeid(attrs, &id);
3018 switch (rc) {
3019 case -ENODATA:
3020 mode = CLUSTER_KEY;
3021 master_key = !!(attrs[TIPC_NLA_NODE_KEY_MASTER]);
3022 break;
3023 case 0:
3024 mode = PER_NODE_KEY;
3025 if (memcmp(id, own_id, NODE_ID_LEN)) {
3026 n = tipc_node_find_by_id(net, id) ?:
3027 tipc_node_create(net, 0, id, 0xffffu, 0, true);
3028 if (unlikely(!n))
3029 return -ENOMEM;
3030 c = n->crypto_rx;
3031 }
3032 break;
3033 default:
3034 return rc;
3035 }
3036
3037 /* Initiate the TX/RX key */
3038 rc = tipc_crypto_key_init(c, ukey, mode, master_key);
3039 if (n)
3040 tipc_node_put(n);
3041
3042 if (unlikely(rc < 0)) {
3043 GENL_SET_ERR_MSG(info, "unable to initiate or attach new key");
3044 return rc;
3045 } else if (c == tx) {
3046 /* Distribute TX key but not master one */
3047 if (!master_key && tipc_crypto_key_distr(tx, rc, NULL))
3048 GENL_SET_ERR_MSG(info, "failed to replicate new key");
3049 rekeying:
3050 /* Schedule TX rekeying if needed */
3051 tipc_crypto_rekeying_sched(tx, rekeying, intv);
3052 }
3053
3054 return 0;
3055 }
3056
tipc_nl_node_set_key(struct sk_buff * skb,struct genl_info * info)3057 int tipc_nl_node_set_key(struct sk_buff *skb, struct genl_info *info)
3058 {
3059 int err;
3060
3061 rtnl_lock();
3062 err = __tipc_nl_node_set_key(skb, info);
3063 rtnl_unlock();
3064
3065 return err;
3066 }
3067
__tipc_nl_node_flush_key(struct sk_buff * skb,struct genl_info * info)3068 static int __tipc_nl_node_flush_key(struct sk_buff *skb,
3069 struct genl_info *info)
3070 {
3071 struct net *net = sock_net(skb->sk);
3072 struct tipc_net *tn = tipc_net(net);
3073 struct tipc_node *n;
3074
3075 tipc_crypto_key_flush(tn->crypto_tx);
3076 rcu_read_lock();
3077 list_for_each_entry_rcu(n, &tn->node_list, list)
3078 tipc_crypto_key_flush(n->crypto_rx);
3079 rcu_read_unlock();
3080
3081 return 0;
3082 }
3083
tipc_nl_node_flush_key(struct sk_buff * skb,struct genl_info * info)3084 int tipc_nl_node_flush_key(struct sk_buff *skb, struct genl_info *info)
3085 {
3086 int err;
3087
3088 rtnl_lock();
3089 err = __tipc_nl_node_flush_key(skb, info);
3090 rtnl_unlock();
3091
3092 return err;
3093 }
3094 #endif
3095
3096 /**
3097 * tipc_node_dump - dump TIPC node data
3098 * @n: tipc node to be dumped
3099 * @more: dump more?
3100 * - false: dump only tipc node data
3101 * - true: dump node link data as well
3102 * @buf: returned buffer of dump data in format
3103 */
tipc_node_dump(struct tipc_node * n,bool more,char * buf)3104 int tipc_node_dump(struct tipc_node *n, bool more, char *buf)
3105 {
3106 int i = 0;
3107 size_t sz = (more) ? NODE_LMAX : NODE_LMIN;
3108
3109 if (!n) {
3110 i += scnprintf(buf, sz, "node data: (null)\n");
3111 return i;
3112 }
3113
3114 i += scnprintf(buf, sz, "node data: %x", n->addr);
3115 i += scnprintf(buf + i, sz - i, " %x", n->state);
3116 i += scnprintf(buf + i, sz - i, " %d", n->active_links[0]);
3117 i += scnprintf(buf + i, sz - i, " %d", n->active_links[1]);
3118 i += scnprintf(buf + i, sz - i, " %x", n->action_flags);
3119 i += scnprintf(buf + i, sz - i, " %u", n->failover_sent);
3120 i += scnprintf(buf + i, sz - i, " %u", n->sync_point);
3121 i += scnprintf(buf + i, sz - i, " %d", n->link_cnt);
3122 i += scnprintf(buf + i, sz - i, " %u", n->working_links);
3123 i += scnprintf(buf + i, sz - i, " %x", n->capabilities);
3124 i += scnprintf(buf + i, sz - i, " %lu\n", n->keepalive_intv);
3125
3126 if (!more)
3127 return i;
3128
3129 i += scnprintf(buf + i, sz - i, "link_entry[0]:\n");
3130 i += scnprintf(buf + i, sz - i, " mtu: %u\n", n->links[0].mtu);
3131 i += scnprintf(buf + i, sz - i, " media: ");
3132 i += tipc_media_addr_printf(buf + i, sz - i, &n->links[0].maddr);
3133 i += scnprintf(buf + i, sz - i, "\n");
3134 i += tipc_link_dump(n->links[0].link, TIPC_DUMP_NONE, buf + i);
3135 i += scnprintf(buf + i, sz - i, " inputq: ");
3136 i += tipc_list_dump(&n->links[0].inputq, false, buf + i);
3137
3138 i += scnprintf(buf + i, sz - i, "link_entry[1]:\n");
3139 i += scnprintf(buf + i, sz - i, " mtu: %u\n", n->links[1].mtu);
3140 i += scnprintf(buf + i, sz - i, " media: ");
3141 i += tipc_media_addr_printf(buf + i, sz - i, &n->links[1].maddr);
3142 i += scnprintf(buf + i, sz - i, "\n");
3143 i += tipc_link_dump(n->links[1].link, TIPC_DUMP_NONE, buf + i);
3144 i += scnprintf(buf + i, sz - i, " inputq: ");
3145 i += tipc_list_dump(&n->links[1].inputq, false, buf + i);
3146
3147 i += scnprintf(buf + i, sz - i, "bclink:\n ");
3148 i += tipc_link_dump(n->bc_entry.link, TIPC_DUMP_NONE, buf + i);
3149
3150 return i;
3151 }
3152
tipc_node_pre_cleanup_net(struct net * exit_net)3153 void tipc_node_pre_cleanup_net(struct net *exit_net)
3154 {
3155 struct tipc_node *n;
3156 struct tipc_net *tn;
3157 struct net *tmp;
3158
3159 rcu_read_lock();
3160 for_each_net_rcu(tmp) {
3161 if (tmp == exit_net)
3162 continue;
3163 tn = tipc_net(tmp);
3164 if (!tn)
3165 continue;
3166 spin_lock_bh(&tn->node_list_lock);
3167 list_for_each_entry_rcu(n, &tn->node_list, list) {
3168 if (!n->peer_net)
3169 continue;
3170 if (n->peer_net != exit_net)
3171 continue;
3172 tipc_node_write_lock(n);
3173 n->peer_net = NULL;
3174 n->peer_hash_mix = 0;
3175 tipc_node_write_unlock_fast(n);
3176 break;
3177 }
3178 spin_unlock_bh(&tn->node_list_lock);
3179 }
3180 rcu_read_unlock();
3181 }
3182