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 48 #define INVALID_NODE_SIG 0x10000 49 #define NODE_CLEANUP_AFTER 300000 50 51 /* Flags used to take different actions according to flag type 52 * TIPC_NOTIFY_NODE_DOWN: notify node is down 53 * TIPC_NOTIFY_NODE_UP: notify node is up 54 * TIPC_DISTRIBUTE_NAME: publish or withdraw link state name type 55 */ 56 enum { 57 TIPC_NOTIFY_NODE_DOWN = (1 << 3), 58 TIPC_NOTIFY_NODE_UP = (1 << 4), 59 TIPC_NOTIFY_LINK_UP = (1 << 6), 60 TIPC_NOTIFY_LINK_DOWN = (1 << 7) 61 }; 62 63 struct tipc_link_entry { 64 struct tipc_link *link; 65 spinlock_t lock; /* per link */ 66 u32 mtu; 67 struct sk_buff_head inputq; 68 struct tipc_media_addr maddr; 69 }; 70 71 struct tipc_bclink_entry { 72 struct tipc_link *link; 73 struct sk_buff_head inputq1; 74 struct sk_buff_head arrvq; 75 struct sk_buff_head inputq2; 76 struct sk_buff_head namedq; 77 }; 78 79 /** 80 * struct tipc_node - TIPC node structure 81 * @addr: network address of node 82 * @ref: reference counter to node object 83 * @lock: rwlock governing access to structure 84 * @net: the applicable net namespace 85 * @hash: links to adjacent nodes in unsorted hash chain 86 * @inputq: pointer to input queue containing messages for msg event 87 * @namedq: pointer to name table input queue with name table messages 88 * @active_links: bearer ids of active links, used as index into links[] array 89 * @links: array containing references to all links to node 90 * @action_flags: bit mask of different types of node actions 91 * @state: connectivity state vs peer node 92 * @sync_point: sequence number where synch/failover is finished 93 * @list: links to adjacent nodes in sorted list of cluster's nodes 94 * @working_links: number of working links to node (both active and standby) 95 * @link_cnt: number of links to node 96 * @capabilities: bitmap, indicating peer node's functional capabilities 97 * @signature: node instance identifier 98 * @link_id: local and remote bearer ids of changing link, if any 99 * @publ_list: list of publications 100 * @rcu: rcu struct for tipc_node 101 * @delete_at: indicates the time for deleting a down node 102 */ 103 struct tipc_node { 104 u32 addr; 105 struct kref kref; 106 rwlock_t lock; 107 struct net *net; 108 struct hlist_node hash; 109 int active_links[2]; 110 struct tipc_link_entry links[MAX_BEARERS]; 111 struct tipc_bclink_entry bc_entry; 112 int action_flags; 113 struct list_head list; 114 int state; 115 bool failover_sent; 116 u16 sync_point; 117 int link_cnt; 118 u16 working_links; 119 u16 capabilities; 120 u32 signature; 121 u32 link_id; 122 u8 peer_id[16]; 123 struct list_head publ_list; 124 struct list_head conn_sks; 125 unsigned long keepalive_intv; 126 struct timer_list timer; 127 struct rcu_head rcu; 128 unsigned long delete_at; 129 }; 130 131 /* Node FSM states and events: 132 */ 133 enum { 134 SELF_DOWN_PEER_DOWN = 0xdd, 135 SELF_UP_PEER_UP = 0xaa, 136 SELF_DOWN_PEER_LEAVING = 0xd1, 137 SELF_UP_PEER_COMING = 0xac, 138 SELF_COMING_PEER_UP = 0xca, 139 SELF_LEAVING_PEER_DOWN = 0x1d, 140 NODE_FAILINGOVER = 0xf0, 141 NODE_SYNCHING = 0xcc 142 }; 143 144 enum { 145 SELF_ESTABL_CONTACT_EVT = 0xece, 146 SELF_LOST_CONTACT_EVT = 0x1ce, 147 PEER_ESTABL_CONTACT_EVT = 0x9ece, 148 PEER_LOST_CONTACT_EVT = 0x91ce, 149 NODE_FAILOVER_BEGIN_EVT = 0xfbe, 150 NODE_FAILOVER_END_EVT = 0xfee, 151 NODE_SYNCH_BEGIN_EVT = 0xcbe, 152 NODE_SYNCH_END_EVT = 0xcee 153 }; 154 155 static void __tipc_node_link_down(struct tipc_node *n, int *bearer_id, 156 struct sk_buff_head *xmitq, 157 struct tipc_media_addr **maddr); 158 static void tipc_node_link_down(struct tipc_node *n, int bearer_id, 159 bool delete); 160 static void node_lost_contact(struct tipc_node *n, struct sk_buff_head *inputq); 161 static void tipc_node_delete(struct tipc_node *node); 162 static void tipc_node_timeout(struct timer_list *t); 163 static void tipc_node_fsm_evt(struct tipc_node *n, int evt); 164 static struct tipc_node *tipc_node_find(struct net *net, u32 addr); 165 static struct tipc_node *tipc_node_find_by_id(struct net *net, u8 *id); 166 static void tipc_node_put(struct tipc_node *node); 167 static bool node_is_up(struct tipc_node *n); 168 static void tipc_node_delete_from_list(struct tipc_node *node); 169 170 struct tipc_sock_conn { 171 u32 port; 172 u32 peer_port; 173 u32 peer_node; 174 struct list_head list; 175 }; 176 177 static struct tipc_link *node_active_link(struct tipc_node *n, int sel) 178 { 179 int bearer_id = n->active_links[sel & 1]; 180 181 if (unlikely(bearer_id == INVALID_BEARER_ID)) 182 return NULL; 183 184 return n->links[bearer_id].link; 185 } 186 187 int tipc_node_get_mtu(struct net *net, u32 addr, u32 sel) 188 { 189 struct tipc_node *n; 190 int bearer_id; 191 unsigned int mtu = MAX_MSG_SIZE; 192 193 n = tipc_node_find(net, addr); 194 if (unlikely(!n)) 195 return mtu; 196 197 bearer_id = n->active_links[sel & 1]; 198 if (likely(bearer_id != INVALID_BEARER_ID)) 199 mtu = n->links[bearer_id].mtu; 200 tipc_node_put(n); 201 return mtu; 202 } 203 204 bool tipc_node_get_id(struct net *net, u32 addr, u8 *id) 205 { 206 u8 *own_id = tipc_own_id(net); 207 struct tipc_node *n; 208 209 if (!own_id) 210 return true; 211 212 if (addr == tipc_own_addr(net)) { 213 memcpy(id, own_id, TIPC_NODEID_LEN); 214 return true; 215 } 216 n = tipc_node_find(net, addr); 217 if (!n) 218 return false; 219 220 memcpy(id, &n->peer_id, TIPC_NODEID_LEN); 221 tipc_node_put(n); 222 return true; 223 } 224 225 u16 tipc_node_get_capabilities(struct net *net, u32 addr) 226 { 227 struct tipc_node *n; 228 u16 caps; 229 230 n = tipc_node_find(net, addr); 231 if (unlikely(!n)) 232 return TIPC_NODE_CAPABILITIES; 233 caps = n->capabilities; 234 tipc_node_put(n); 235 return caps; 236 } 237 238 static void tipc_node_kref_release(struct kref *kref) 239 { 240 struct tipc_node *n = container_of(kref, struct tipc_node, kref); 241 242 kfree(n->bc_entry.link); 243 kfree_rcu(n, rcu); 244 } 245 246 static void tipc_node_put(struct tipc_node *node) 247 { 248 kref_put(&node->kref, tipc_node_kref_release); 249 } 250 251 static void tipc_node_get(struct tipc_node *node) 252 { 253 kref_get(&node->kref); 254 } 255 256 /* 257 * tipc_node_find - locate specified node object, if it exists 258 */ 259 static struct tipc_node *tipc_node_find(struct net *net, u32 addr) 260 { 261 struct tipc_net *tn = tipc_net(net); 262 struct tipc_node *node; 263 unsigned int thash = tipc_hashfn(addr); 264 265 rcu_read_lock(); 266 hlist_for_each_entry_rcu(node, &tn->node_htable[thash], hash) { 267 if (node->addr != addr) 268 continue; 269 if (!kref_get_unless_zero(&node->kref)) 270 node = NULL; 271 break; 272 } 273 rcu_read_unlock(); 274 return node; 275 } 276 277 /* tipc_node_find_by_id - locate specified node object by its 128-bit id 278 * Note: this function is called only when a discovery request failed 279 * to find the node by its 32-bit id, and is not time critical 280 */ 281 static struct tipc_node *tipc_node_find_by_id(struct net *net, u8 *id) 282 { 283 struct tipc_net *tn = tipc_net(net); 284 struct tipc_node *n; 285 bool found = false; 286 287 rcu_read_lock(); 288 list_for_each_entry_rcu(n, &tn->node_list, list) { 289 read_lock_bh(&n->lock); 290 if (!memcmp(id, n->peer_id, 16) && 291 kref_get_unless_zero(&n->kref)) 292 found = true; 293 read_unlock_bh(&n->lock); 294 if (found) 295 break; 296 } 297 rcu_read_unlock(); 298 return found ? n : NULL; 299 } 300 301 static void tipc_node_read_lock(struct tipc_node *n) 302 { 303 read_lock_bh(&n->lock); 304 } 305 306 static void tipc_node_read_unlock(struct tipc_node *n) 307 { 308 read_unlock_bh(&n->lock); 309 } 310 311 static void tipc_node_write_lock(struct tipc_node *n) 312 { 313 write_lock_bh(&n->lock); 314 } 315 316 static void tipc_node_write_unlock_fast(struct tipc_node *n) 317 { 318 write_unlock_bh(&n->lock); 319 } 320 321 static void tipc_node_write_unlock(struct tipc_node *n) 322 { 323 struct net *net = n->net; 324 u32 addr = 0; 325 u32 flags = n->action_flags; 326 u32 link_id = 0; 327 u32 bearer_id; 328 struct list_head *publ_list; 329 330 if (likely(!flags)) { 331 write_unlock_bh(&n->lock); 332 return; 333 } 334 335 addr = n->addr; 336 link_id = n->link_id; 337 bearer_id = link_id & 0xffff; 338 publ_list = &n->publ_list; 339 340 n->action_flags &= ~(TIPC_NOTIFY_NODE_DOWN | TIPC_NOTIFY_NODE_UP | 341 TIPC_NOTIFY_LINK_DOWN | TIPC_NOTIFY_LINK_UP); 342 343 write_unlock_bh(&n->lock); 344 345 if (flags & TIPC_NOTIFY_NODE_DOWN) 346 tipc_publ_notify(net, publ_list, addr); 347 348 if (flags & TIPC_NOTIFY_NODE_UP) 349 tipc_named_node_up(net, addr); 350 351 if (flags & TIPC_NOTIFY_LINK_UP) { 352 tipc_mon_peer_up(net, addr, bearer_id); 353 tipc_nametbl_publish(net, TIPC_LINK_STATE, addr, addr, 354 TIPC_NODE_SCOPE, link_id, link_id); 355 } 356 if (flags & TIPC_NOTIFY_LINK_DOWN) { 357 tipc_mon_peer_down(net, addr, bearer_id); 358 tipc_nametbl_withdraw(net, TIPC_LINK_STATE, addr, 359 addr, link_id); 360 } 361 } 362 363 static struct tipc_node *tipc_node_create(struct net *net, u32 addr, 364 u8 *peer_id, u16 capabilities) 365 { 366 struct tipc_net *tn = net_generic(net, tipc_net_id); 367 struct tipc_node *n, *temp_node; 368 struct tipc_link *l; 369 int bearer_id; 370 int i; 371 372 spin_lock_bh(&tn->node_list_lock); 373 n = tipc_node_find(net, addr); 374 if (n) { 375 if (n->capabilities == capabilities) 376 goto exit; 377 /* Same node may come back with new capabilities */ 378 tipc_node_write_lock(n); 379 n->capabilities = capabilities; 380 for (bearer_id = 0; bearer_id < MAX_BEARERS; bearer_id++) { 381 l = n->links[bearer_id].link; 382 if (l) 383 tipc_link_update_caps(l, capabilities); 384 } 385 tipc_node_write_unlock_fast(n); 386 387 /* Calculate cluster capabilities */ 388 tn->capabilities = TIPC_NODE_CAPABILITIES; 389 list_for_each_entry_rcu(temp_node, &tn->node_list, list) { 390 tn->capabilities &= temp_node->capabilities; 391 } 392 goto exit; 393 } 394 n = kzalloc(sizeof(*n), GFP_ATOMIC); 395 if (!n) { 396 pr_warn("Node creation failed, no memory\n"); 397 goto exit; 398 } 399 n->addr = addr; 400 memcpy(&n->peer_id, peer_id, 16); 401 n->net = net; 402 n->capabilities = capabilities; 403 kref_init(&n->kref); 404 rwlock_init(&n->lock); 405 INIT_HLIST_NODE(&n->hash); 406 INIT_LIST_HEAD(&n->list); 407 INIT_LIST_HEAD(&n->publ_list); 408 INIT_LIST_HEAD(&n->conn_sks); 409 skb_queue_head_init(&n->bc_entry.namedq); 410 skb_queue_head_init(&n->bc_entry.inputq1); 411 __skb_queue_head_init(&n->bc_entry.arrvq); 412 skb_queue_head_init(&n->bc_entry.inputq2); 413 for (i = 0; i < MAX_BEARERS; i++) 414 spin_lock_init(&n->links[i].lock); 415 n->state = SELF_DOWN_PEER_LEAVING; 416 n->delete_at = jiffies + msecs_to_jiffies(NODE_CLEANUP_AFTER); 417 n->signature = INVALID_NODE_SIG; 418 n->active_links[0] = INVALID_BEARER_ID; 419 n->active_links[1] = INVALID_BEARER_ID; 420 if (!tipc_link_bc_create(net, tipc_own_addr(net), 421 addr, U16_MAX, 422 tipc_link_window(tipc_bc_sndlink(net)), 423 n->capabilities, 424 &n->bc_entry.inputq1, 425 &n->bc_entry.namedq, 426 tipc_bc_sndlink(net), 427 &n->bc_entry.link)) { 428 pr_warn("Broadcast rcv link creation failed, no memory\n"); 429 kfree(n); 430 n = NULL; 431 goto exit; 432 } 433 tipc_node_get(n); 434 timer_setup(&n->timer, tipc_node_timeout, 0); 435 n->keepalive_intv = U32_MAX; 436 hlist_add_head_rcu(&n->hash, &tn->node_htable[tipc_hashfn(addr)]); 437 list_for_each_entry_rcu(temp_node, &tn->node_list, list) { 438 if (n->addr < temp_node->addr) 439 break; 440 } 441 list_add_tail_rcu(&n->list, &temp_node->list); 442 /* Calculate cluster capabilities */ 443 tn->capabilities = TIPC_NODE_CAPABILITIES; 444 list_for_each_entry_rcu(temp_node, &tn->node_list, list) { 445 tn->capabilities &= temp_node->capabilities; 446 } 447 trace_tipc_node_create(n, true, " "); 448 exit: 449 spin_unlock_bh(&tn->node_list_lock); 450 return n; 451 } 452 453 static void tipc_node_calculate_timer(struct tipc_node *n, struct tipc_link *l) 454 { 455 unsigned long tol = tipc_link_tolerance(l); 456 unsigned long intv = ((tol / 4) > 500) ? 500 : tol / 4; 457 458 /* Link with lowest tolerance determines timer interval */ 459 if (intv < n->keepalive_intv) 460 n->keepalive_intv = intv; 461 462 /* Ensure link's abort limit corresponds to current tolerance */ 463 tipc_link_set_abort_limit(l, tol / n->keepalive_intv); 464 } 465 466 static void tipc_node_delete_from_list(struct tipc_node *node) 467 { 468 list_del_rcu(&node->list); 469 hlist_del_rcu(&node->hash); 470 tipc_node_put(node); 471 } 472 473 static void tipc_node_delete(struct tipc_node *node) 474 { 475 trace_tipc_node_delete(node, true, " "); 476 tipc_node_delete_from_list(node); 477 478 del_timer_sync(&node->timer); 479 tipc_node_put(node); 480 } 481 482 void tipc_node_stop(struct net *net) 483 { 484 struct tipc_net *tn = tipc_net(net); 485 struct tipc_node *node, *t_node; 486 487 spin_lock_bh(&tn->node_list_lock); 488 list_for_each_entry_safe(node, t_node, &tn->node_list, list) 489 tipc_node_delete(node); 490 spin_unlock_bh(&tn->node_list_lock); 491 } 492 493 void tipc_node_subscribe(struct net *net, struct list_head *subscr, u32 addr) 494 { 495 struct tipc_node *n; 496 497 if (in_own_node(net, addr)) 498 return; 499 500 n = tipc_node_find(net, addr); 501 if (!n) { 502 pr_warn("Node subscribe rejected, unknown node 0x%x\n", addr); 503 return; 504 } 505 tipc_node_write_lock(n); 506 list_add_tail(subscr, &n->publ_list); 507 tipc_node_write_unlock_fast(n); 508 tipc_node_put(n); 509 } 510 511 void tipc_node_unsubscribe(struct net *net, struct list_head *subscr, u32 addr) 512 { 513 struct tipc_node *n; 514 515 if (in_own_node(net, addr)) 516 return; 517 518 n = tipc_node_find(net, addr); 519 if (!n) { 520 pr_warn("Node unsubscribe rejected, unknown node 0x%x\n", addr); 521 return; 522 } 523 tipc_node_write_lock(n); 524 list_del_init(subscr); 525 tipc_node_write_unlock_fast(n); 526 tipc_node_put(n); 527 } 528 529 int tipc_node_add_conn(struct net *net, u32 dnode, u32 port, u32 peer_port) 530 { 531 struct tipc_node *node; 532 struct tipc_sock_conn *conn; 533 int err = 0; 534 535 if (in_own_node(net, dnode)) 536 return 0; 537 538 node = tipc_node_find(net, dnode); 539 if (!node) { 540 pr_warn("Connecting sock to node 0x%x failed\n", dnode); 541 return -EHOSTUNREACH; 542 } 543 conn = kmalloc(sizeof(*conn), GFP_ATOMIC); 544 if (!conn) { 545 err = -EHOSTUNREACH; 546 goto exit; 547 } 548 conn->peer_node = dnode; 549 conn->port = port; 550 conn->peer_port = peer_port; 551 552 tipc_node_write_lock(node); 553 list_add_tail(&conn->list, &node->conn_sks); 554 tipc_node_write_unlock(node); 555 exit: 556 tipc_node_put(node); 557 return err; 558 } 559 560 void tipc_node_remove_conn(struct net *net, u32 dnode, u32 port) 561 { 562 struct tipc_node *node; 563 struct tipc_sock_conn *conn, *safe; 564 565 if (in_own_node(net, dnode)) 566 return; 567 568 node = tipc_node_find(net, dnode); 569 if (!node) 570 return; 571 572 tipc_node_write_lock(node); 573 list_for_each_entry_safe(conn, safe, &node->conn_sks, list) { 574 if (port != conn->port) 575 continue; 576 list_del(&conn->list); 577 kfree(conn); 578 } 579 tipc_node_write_unlock(node); 580 tipc_node_put(node); 581 } 582 583 static void tipc_node_clear_links(struct tipc_node *node) 584 { 585 int i; 586 587 for (i = 0; i < MAX_BEARERS; i++) { 588 struct tipc_link_entry *le = &node->links[i]; 589 590 if (le->link) { 591 kfree(le->link); 592 le->link = NULL; 593 node->link_cnt--; 594 } 595 } 596 } 597 598 /* tipc_node_cleanup - delete nodes that does not 599 * have active links for NODE_CLEANUP_AFTER time 600 */ 601 static bool tipc_node_cleanup(struct tipc_node *peer) 602 { 603 struct tipc_node *temp_node; 604 struct tipc_net *tn = tipc_net(peer->net); 605 bool deleted = false; 606 607 /* If lock held by tipc_node_stop() the node will be deleted anyway */ 608 if (!spin_trylock_bh(&tn->node_list_lock)) 609 return false; 610 611 tipc_node_write_lock(peer); 612 613 if (!node_is_up(peer) && time_after(jiffies, peer->delete_at)) { 614 tipc_node_clear_links(peer); 615 tipc_node_delete_from_list(peer); 616 deleted = true; 617 } 618 tipc_node_write_unlock(peer); 619 620 /* Calculate cluster capabilities */ 621 tn->capabilities = TIPC_NODE_CAPABILITIES; 622 list_for_each_entry_rcu(temp_node, &tn->node_list, list) { 623 tn->capabilities &= temp_node->capabilities; 624 } 625 626 spin_unlock_bh(&tn->node_list_lock); 627 return deleted; 628 } 629 630 /* tipc_node_timeout - handle expiration of node timer 631 */ 632 static void tipc_node_timeout(struct timer_list *t) 633 { 634 struct tipc_node *n = from_timer(n, t, timer); 635 struct tipc_link_entry *le; 636 struct sk_buff_head xmitq; 637 int remains = n->link_cnt; 638 int bearer_id; 639 int rc = 0; 640 641 trace_tipc_node_timeout(n, false, " "); 642 if (!node_is_up(n) && tipc_node_cleanup(n)) { 643 /*Removing the reference of Timer*/ 644 tipc_node_put(n); 645 return; 646 } 647 648 __skb_queue_head_init(&xmitq); 649 650 /* Initial node interval to value larger (10 seconds), then it will be 651 * recalculated with link lowest tolerance 652 */ 653 tipc_node_read_lock(n); 654 n->keepalive_intv = 10000; 655 tipc_node_read_unlock(n); 656 for (bearer_id = 0; remains && (bearer_id < MAX_BEARERS); bearer_id++) { 657 tipc_node_read_lock(n); 658 le = &n->links[bearer_id]; 659 if (le->link) { 660 spin_lock_bh(&le->lock); 661 /* Link tolerance may change asynchronously: */ 662 tipc_node_calculate_timer(n, le->link); 663 rc = tipc_link_timeout(le->link, &xmitq); 664 spin_unlock_bh(&le->lock); 665 remains--; 666 } 667 tipc_node_read_unlock(n); 668 tipc_bearer_xmit(n->net, bearer_id, &xmitq, &le->maddr); 669 if (rc & TIPC_LINK_DOWN_EVT) 670 tipc_node_link_down(n, bearer_id, false); 671 } 672 mod_timer(&n->timer, jiffies + msecs_to_jiffies(n->keepalive_intv)); 673 } 674 675 /** 676 * __tipc_node_link_up - handle addition of link 677 * Node lock must be held by caller 678 * Link becomes active (alone or shared) or standby, depending on its priority. 679 */ 680 static void __tipc_node_link_up(struct tipc_node *n, int bearer_id, 681 struct sk_buff_head *xmitq) 682 { 683 int *slot0 = &n->active_links[0]; 684 int *slot1 = &n->active_links[1]; 685 struct tipc_link *ol = node_active_link(n, 0); 686 struct tipc_link *nl = n->links[bearer_id].link; 687 688 if (!nl || tipc_link_is_up(nl)) 689 return; 690 691 tipc_link_fsm_evt(nl, LINK_ESTABLISH_EVT); 692 if (!tipc_link_is_up(nl)) 693 return; 694 695 n->working_links++; 696 n->action_flags |= TIPC_NOTIFY_LINK_UP; 697 n->link_id = tipc_link_id(nl); 698 699 /* Leave room for tunnel header when returning 'mtu' to users: */ 700 n->links[bearer_id].mtu = tipc_link_mtu(nl) - INT_H_SIZE; 701 702 tipc_bearer_add_dest(n->net, bearer_id, n->addr); 703 tipc_bcast_inc_bearer_dst_cnt(n->net, bearer_id); 704 705 pr_debug("Established link <%s> on network plane %c\n", 706 tipc_link_name(nl), tipc_link_plane(nl)); 707 trace_tipc_node_link_up(n, true, " "); 708 709 /* Ensure that a STATE message goes first */ 710 tipc_link_build_state_msg(nl, xmitq); 711 712 /* First link? => give it both slots */ 713 if (!ol) { 714 *slot0 = bearer_id; 715 *slot1 = bearer_id; 716 tipc_node_fsm_evt(n, SELF_ESTABL_CONTACT_EVT); 717 n->failover_sent = false; 718 n->action_flags |= TIPC_NOTIFY_NODE_UP; 719 tipc_link_set_active(nl, true); 720 tipc_bcast_add_peer(n->net, nl, xmitq); 721 return; 722 } 723 724 /* Second link => redistribute slots */ 725 if (tipc_link_prio(nl) > tipc_link_prio(ol)) { 726 pr_debug("Old link <%s> becomes standby\n", tipc_link_name(ol)); 727 *slot0 = bearer_id; 728 *slot1 = bearer_id; 729 tipc_link_set_active(nl, true); 730 tipc_link_set_active(ol, false); 731 } else if (tipc_link_prio(nl) == tipc_link_prio(ol)) { 732 tipc_link_set_active(nl, true); 733 *slot1 = bearer_id; 734 } else { 735 pr_debug("New link <%s> is standby\n", tipc_link_name(nl)); 736 } 737 738 /* Prepare synchronization with first link */ 739 tipc_link_tnl_prepare(ol, nl, SYNCH_MSG, xmitq); 740 } 741 742 /** 743 * tipc_node_link_up - handle addition of link 744 * 745 * Link becomes active (alone or shared) or standby, depending on its priority. 746 */ 747 static void tipc_node_link_up(struct tipc_node *n, int bearer_id, 748 struct sk_buff_head *xmitq) 749 { 750 struct tipc_media_addr *maddr; 751 752 tipc_node_write_lock(n); 753 __tipc_node_link_up(n, bearer_id, xmitq); 754 maddr = &n->links[bearer_id].maddr; 755 tipc_bearer_xmit(n->net, bearer_id, xmitq, maddr); 756 tipc_node_write_unlock(n); 757 } 758 759 /** 760 * __tipc_node_link_down - handle loss of link 761 */ 762 static void __tipc_node_link_down(struct tipc_node *n, int *bearer_id, 763 struct sk_buff_head *xmitq, 764 struct tipc_media_addr **maddr) 765 { 766 struct tipc_link_entry *le = &n->links[*bearer_id]; 767 int *slot0 = &n->active_links[0]; 768 int *slot1 = &n->active_links[1]; 769 int i, highest = 0, prio; 770 struct tipc_link *l, *_l, *tnl; 771 772 l = n->links[*bearer_id].link; 773 if (!l || tipc_link_is_reset(l)) 774 return; 775 776 n->working_links--; 777 n->action_flags |= TIPC_NOTIFY_LINK_DOWN; 778 n->link_id = tipc_link_id(l); 779 780 tipc_bearer_remove_dest(n->net, *bearer_id, n->addr); 781 782 pr_debug("Lost link <%s> on network plane %c\n", 783 tipc_link_name(l), tipc_link_plane(l)); 784 785 /* Select new active link if any available */ 786 *slot0 = INVALID_BEARER_ID; 787 *slot1 = INVALID_BEARER_ID; 788 for (i = 0; i < MAX_BEARERS; i++) { 789 _l = n->links[i].link; 790 if (!_l || !tipc_link_is_up(_l)) 791 continue; 792 if (_l == l) 793 continue; 794 prio = tipc_link_prio(_l); 795 if (prio < highest) 796 continue; 797 if (prio > highest) { 798 highest = prio; 799 *slot0 = i; 800 *slot1 = i; 801 continue; 802 } 803 *slot1 = i; 804 } 805 806 if (!node_is_up(n)) { 807 if (tipc_link_peer_is_down(l)) 808 tipc_node_fsm_evt(n, PEER_LOST_CONTACT_EVT); 809 tipc_node_fsm_evt(n, SELF_LOST_CONTACT_EVT); 810 trace_tipc_link_reset(l, TIPC_DUMP_ALL, "link down!"); 811 tipc_link_fsm_evt(l, LINK_RESET_EVT); 812 tipc_link_reset(l); 813 tipc_link_build_reset_msg(l, xmitq); 814 *maddr = &n->links[*bearer_id].maddr; 815 node_lost_contact(n, &le->inputq); 816 tipc_bcast_dec_bearer_dst_cnt(n->net, *bearer_id); 817 return; 818 } 819 tipc_bcast_dec_bearer_dst_cnt(n->net, *bearer_id); 820 821 /* There is still a working link => initiate failover */ 822 *bearer_id = n->active_links[0]; 823 tnl = n->links[*bearer_id].link; 824 tipc_link_fsm_evt(tnl, LINK_SYNCH_END_EVT); 825 tipc_node_fsm_evt(n, NODE_SYNCH_END_EVT); 826 n->sync_point = tipc_link_rcv_nxt(tnl) + (U16_MAX / 2 - 1); 827 tipc_link_tnl_prepare(l, tnl, FAILOVER_MSG, xmitq); 828 trace_tipc_link_reset(l, TIPC_DUMP_ALL, "link down -> failover!"); 829 tipc_link_reset(l); 830 tipc_link_fsm_evt(l, LINK_RESET_EVT); 831 tipc_link_fsm_evt(l, LINK_FAILOVER_BEGIN_EVT); 832 tipc_node_fsm_evt(n, NODE_FAILOVER_BEGIN_EVT); 833 *maddr = &n->links[*bearer_id].maddr; 834 } 835 836 static void tipc_node_link_down(struct tipc_node *n, int bearer_id, bool delete) 837 { 838 struct tipc_link_entry *le = &n->links[bearer_id]; 839 struct tipc_media_addr *maddr = NULL; 840 struct tipc_link *l = le->link; 841 int old_bearer_id = bearer_id; 842 struct sk_buff_head xmitq; 843 844 if (!l) 845 return; 846 847 __skb_queue_head_init(&xmitq); 848 849 tipc_node_write_lock(n); 850 if (!tipc_link_is_establishing(l)) { 851 __tipc_node_link_down(n, &bearer_id, &xmitq, &maddr); 852 } else { 853 /* Defuse pending tipc_node_link_up() */ 854 tipc_link_reset(l); 855 tipc_link_fsm_evt(l, LINK_RESET_EVT); 856 } 857 if (delete) { 858 kfree(l); 859 le->link = NULL; 860 n->link_cnt--; 861 } 862 trace_tipc_node_link_down(n, true, "node link down or deleted!"); 863 tipc_node_write_unlock(n); 864 if (delete) 865 tipc_mon_remove_peer(n->net, n->addr, old_bearer_id); 866 if (!skb_queue_empty(&xmitq)) 867 tipc_bearer_xmit(n->net, bearer_id, &xmitq, maddr); 868 tipc_sk_rcv(n->net, &le->inputq); 869 } 870 871 static bool node_is_up(struct tipc_node *n) 872 { 873 return n->active_links[0] != INVALID_BEARER_ID; 874 } 875 876 bool tipc_node_is_up(struct net *net, u32 addr) 877 { 878 struct tipc_node *n; 879 bool retval = false; 880 881 if (in_own_node(net, addr)) 882 return true; 883 884 n = tipc_node_find(net, addr); 885 if (!n) 886 return false; 887 retval = node_is_up(n); 888 tipc_node_put(n); 889 return retval; 890 } 891 892 static u32 tipc_node_suggest_addr(struct net *net, u32 addr) 893 { 894 struct tipc_node *n; 895 896 addr ^= tipc_net(net)->random; 897 while ((n = tipc_node_find(net, addr))) { 898 tipc_node_put(n); 899 addr++; 900 } 901 return addr; 902 } 903 904 /* tipc_node_try_addr(): Check if addr can be used by peer, suggest other if not 905 * Returns suggested address if any, otherwise 0 906 */ 907 u32 tipc_node_try_addr(struct net *net, u8 *id, u32 addr) 908 { 909 struct tipc_net *tn = tipc_net(net); 910 struct tipc_node *n; 911 912 /* Suggest new address if some other peer is using this one */ 913 n = tipc_node_find(net, addr); 914 if (n) { 915 if (!memcmp(n->peer_id, id, NODE_ID_LEN)) 916 addr = 0; 917 tipc_node_put(n); 918 if (!addr) 919 return 0; 920 return tipc_node_suggest_addr(net, addr); 921 } 922 923 /* Suggest previously used address if peer is known */ 924 n = tipc_node_find_by_id(net, id); 925 if (n) { 926 addr = n->addr; 927 tipc_node_put(n); 928 return addr; 929 } 930 931 /* Even this node may be in conflict */ 932 if (tn->trial_addr == addr) 933 return tipc_node_suggest_addr(net, addr); 934 935 return 0; 936 } 937 938 void tipc_node_check_dest(struct net *net, u32 addr, 939 u8 *peer_id, struct tipc_bearer *b, 940 u16 capabilities, u32 signature, 941 struct tipc_media_addr *maddr, 942 bool *respond, bool *dupl_addr) 943 { 944 struct tipc_node *n; 945 struct tipc_link *l; 946 struct tipc_link_entry *le; 947 bool addr_match = false; 948 bool sign_match = false; 949 bool link_up = false; 950 bool accept_addr = false; 951 bool reset = true; 952 char *if_name; 953 unsigned long intv; 954 u16 session; 955 956 *dupl_addr = false; 957 *respond = false; 958 959 n = tipc_node_create(net, addr, peer_id, capabilities); 960 if (!n) 961 return; 962 963 tipc_node_write_lock(n); 964 965 le = &n->links[b->identity]; 966 967 /* Prepare to validate requesting node's signature and media address */ 968 l = le->link; 969 link_up = l && tipc_link_is_up(l); 970 addr_match = l && !memcmp(&le->maddr, maddr, sizeof(*maddr)); 971 sign_match = (signature == n->signature); 972 973 /* These three flags give us eight permutations: */ 974 975 if (sign_match && addr_match && link_up) { 976 /* All is fine. Do nothing. */ 977 reset = false; 978 } else if (sign_match && addr_match && !link_up) { 979 /* Respond. The link will come up in due time */ 980 *respond = true; 981 } else if (sign_match && !addr_match && link_up) { 982 /* Peer has changed i/f address without rebooting. 983 * If so, the link will reset soon, and the next 984 * discovery will be accepted. So we can ignore it. 985 * It may also be an cloned or malicious peer having 986 * chosen the same node address and signature as an 987 * existing one. 988 * Ignore requests until the link goes down, if ever. 989 */ 990 *dupl_addr = true; 991 } else if (sign_match && !addr_match && !link_up) { 992 /* Peer link has changed i/f address without rebooting. 993 * It may also be a cloned or malicious peer; we can't 994 * distinguish between the two. 995 * The signature is correct, so we must accept. 996 */ 997 accept_addr = true; 998 *respond = true; 999 } else if (!sign_match && addr_match && link_up) { 1000 /* Peer node rebooted. Two possibilities: 1001 * - Delayed re-discovery; this link endpoint has already 1002 * reset and re-established contact with the peer, before 1003 * receiving a discovery message from that node. 1004 * (The peer happened to receive one from this node first). 1005 * - The peer came back so fast that our side has not 1006 * discovered it yet. Probing from this side will soon 1007 * reset the link, since there can be no working link 1008 * endpoint at the peer end, and the link will re-establish. 1009 * Accept the signature, since it comes from a known peer. 1010 */ 1011 n->signature = signature; 1012 } else if (!sign_match && addr_match && !link_up) { 1013 /* The peer node has rebooted. 1014 * Accept signature, since it is a known peer. 1015 */ 1016 n->signature = signature; 1017 *respond = true; 1018 } else if (!sign_match && !addr_match && link_up) { 1019 /* Peer rebooted with new address, or a new/duplicate peer. 1020 * Ignore until the link goes down, if ever. 1021 */ 1022 *dupl_addr = true; 1023 } else if (!sign_match && !addr_match && !link_up) { 1024 /* Peer rebooted with new address, or it is a new peer. 1025 * Accept signature and address. 1026 */ 1027 n->signature = signature; 1028 accept_addr = true; 1029 *respond = true; 1030 } 1031 1032 if (!accept_addr) 1033 goto exit; 1034 1035 /* Now create new link if not already existing */ 1036 if (!l) { 1037 if (n->link_cnt == 2) 1038 goto exit; 1039 1040 if_name = strchr(b->name, ':') + 1; 1041 get_random_bytes(&session, sizeof(u16)); 1042 if (!tipc_link_create(net, if_name, b->identity, b->tolerance, 1043 b->net_plane, b->mtu, b->priority, 1044 b->window, session, 1045 tipc_own_addr(net), addr, peer_id, 1046 n->capabilities, 1047 tipc_bc_sndlink(n->net), n->bc_entry.link, 1048 &le->inputq, 1049 &n->bc_entry.namedq, &l)) { 1050 *respond = false; 1051 goto exit; 1052 } 1053 trace_tipc_link_reset(l, TIPC_DUMP_ALL, "link created!"); 1054 tipc_link_reset(l); 1055 tipc_link_fsm_evt(l, LINK_RESET_EVT); 1056 if (n->state == NODE_FAILINGOVER) 1057 tipc_link_fsm_evt(l, LINK_FAILOVER_BEGIN_EVT); 1058 le->link = l; 1059 n->link_cnt++; 1060 tipc_node_calculate_timer(n, l); 1061 if (n->link_cnt == 1) { 1062 intv = jiffies + msecs_to_jiffies(n->keepalive_intv); 1063 if (!mod_timer(&n->timer, intv)) 1064 tipc_node_get(n); 1065 } 1066 } 1067 memcpy(&le->maddr, maddr, sizeof(*maddr)); 1068 exit: 1069 tipc_node_write_unlock(n); 1070 if (reset && l && !tipc_link_is_reset(l)) 1071 tipc_node_link_down(n, b->identity, false); 1072 tipc_node_put(n); 1073 } 1074 1075 void tipc_node_delete_links(struct net *net, int bearer_id) 1076 { 1077 struct tipc_net *tn = net_generic(net, tipc_net_id); 1078 struct tipc_node *n; 1079 1080 rcu_read_lock(); 1081 list_for_each_entry_rcu(n, &tn->node_list, list) { 1082 tipc_node_link_down(n, bearer_id, true); 1083 } 1084 rcu_read_unlock(); 1085 } 1086 1087 static void tipc_node_reset_links(struct tipc_node *n) 1088 { 1089 int i; 1090 1091 pr_warn("Resetting all links to %x\n", n->addr); 1092 1093 trace_tipc_node_reset_links(n, true, " "); 1094 for (i = 0; i < MAX_BEARERS; i++) { 1095 tipc_node_link_down(n, i, false); 1096 } 1097 } 1098 1099 /* tipc_node_fsm_evt - node finite state machine 1100 * Determines when contact is allowed with peer node 1101 */ 1102 static void tipc_node_fsm_evt(struct tipc_node *n, int evt) 1103 { 1104 int state = n->state; 1105 1106 switch (state) { 1107 case SELF_DOWN_PEER_DOWN: 1108 switch (evt) { 1109 case SELF_ESTABL_CONTACT_EVT: 1110 state = SELF_UP_PEER_COMING; 1111 break; 1112 case PEER_ESTABL_CONTACT_EVT: 1113 state = SELF_COMING_PEER_UP; 1114 break; 1115 case SELF_LOST_CONTACT_EVT: 1116 case PEER_LOST_CONTACT_EVT: 1117 break; 1118 case NODE_SYNCH_END_EVT: 1119 case NODE_SYNCH_BEGIN_EVT: 1120 case NODE_FAILOVER_BEGIN_EVT: 1121 case NODE_FAILOVER_END_EVT: 1122 default: 1123 goto illegal_evt; 1124 } 1125 break; 1126 case SELF_UP_PEER_UP: 1127 switch (evt) { 1128 case SELF_LOST_CONTACT_EVT: 1129 state = SELF_DOWN_PEER_LEAVING; 1130 break; 1131 case PEER_LOST_CONTACT_EVT: 1132 state = SELF_LEAVING_PEER_DOWN; 1133 break; 1134 case NODE_SYNCH_BEGIN_EVT: 1135 state = NODE_SYNCHING; 1136 break; 1137 case NODE_FAILOVER_BEGIN_EVT: 1138 state = NODE_FAILINGOVER; 1139 break; 1140 case SELF_ESTABL_CONTACT_EVT: 1141 case PEER_ESTABL_CONTACT_EVT: 1142 case NODE_SYNCH_END_EVT: 1143 case NODE_FAILOVER_END_EVT: 1144 break; 1145 default: 1146 goto illegal_evt; 1147 } 1148 break; 1149 case SELF_DOWN_PEER_LEAVING: 1150 switch (evt) { 1151 case PEER_LOST_CONTACT_EVT: 1152 state = SELF_DOWN_PEER_DOWN; 1153 break; 1154 case SELF_ESTABL_CONTACT_EVT: 1155 case PEER_ESTABL_CONTACT_EVT: 1156 case SELF_LOST_CONTACT_EVT: 1157 break; 1158 case NODE_SYNCH_END_EVT: 1159 case NODE_SYNCH_BEGIN_EVT: 1160 case NODE_FAILOVER_BEGIN_EVT: 1161 case NODE_FAILOVER_END_EVT: 1162 default: 1163 goto illegal_evt; 1164 } 1165 break; 1166 case SELF_UP_PEER_COMING: 1167 switch (evt) { 1168 case PEER_ESTABL_CONTACT_EVT: 1169 state = SELF_UP_PEER_UP; 1170 break; 1171 case SELF_LOST_CONTACT_EVT: 1172 state = SELF_DOWN_PEER_DOWN; 1173 break; 1174 case SELF_ESTABL_CONTACT_EVT: 1175 case PEER_LOST_CONTACT_EVT: 1176 case NODE_SYNCH_END_EVT: 1177 case NODE_FAILOVER_BEGIN_EVT: 1178 break; 1179 case NODE_SYNCH_BEGIN_EVT: 1180 case NODE_FAILOVER_END_EVT: 1181 default: 1182 goto illegal_evt; 1183 } 1184 break; 1185 case SELF_COMING_PEER_UP: 1186 switch (evt) { 1187 case SELF_ESTABL_CONTACT_EVT: 1188 state = SELF_UP_PEER_UP; 1189 break; 1190 case PEER_LOST_CONTACT_EVT: 1191 state = SELF_DOWN_PEER_DOWN; 1192 break; 1193 case SELF_LOST_CONTACT_EVT: 1194 case PEER_ESTABL_CONTACT_EVT: 1195 break; 1196 case NODE_SYNCH_END_EVT: 1197 case NODE_SYNCH_BEGIN_EVT: 1198 case NODE_FAILOVER_BEGIN_EVT: 1199 case NODE_FAILOVER_END_EVT: 1200 default: 1201 goto illegal_evt; 1202 } 1203 break; 1204 case SELF_LEAVING_PEER_DOWN: 1205 switch (evt) { 1206 case SELF_LOST_CONTACT_EVT: 1207 state = SELF_DOWN_PEER_DOWN; 1208 break; 1209 case SELF_ESTABL_CONTACT_EVT: 1210 case PEER_ESTABL_CONTACT_EVT: 1211 case PEER_LOST_CONTACT_EVT: 1212 break; 1213 case NODE_SYNCH_END_EVT: 1214 case NODE_SYNCH_BEGIN_EVT: 1215 case NODE_FAILOVER_BEGIN_EVT: 1216 case NODE_FAILOVER_END_EVT: 1217 default: 1218 goto illegal_evt; 1219 } 1220 break; 1221 case NODE_FAILINGOVER: 1222 switch (evt) { 1223 case SELF_LOST_CONTACT_EVT: 1224 state = SELF_DOWN_PEER_LEAVING; 1225 break; 1226 case PEER_LOST_CONTACT_EVT: 1227 state = SELF_LEAVING_PEER_DOWN; 1228 break; 1229 case NODE_FAILOVER_END_EVT: 1230 state = SELF_UP_PEER_UP; 1231 break; 1232 case NODE_FAILOVER_BEGIN_EVT: 1233 case SELF_ESTABL_CONTACT_EVT: 1234 case PEER_ESTABL_CONTACT_EVT: 1235 break; 1236 case NODE_SYNCH_BEGIN_EVT: 1237 case NODE_SYNCH_END_EVT: 1238 default: 1239 goto illegal_evt; 1240 } 1241 break; 1242 case NODE_SYNCHING: 1243 switch (evt) { 1244 case SELF_LOST_CONTACT_EVT: 1245 state = SELF_DOWN_PEER_LEAVING; 1246 break; 1247 case PEER_LOST_CONTACT_EVT: 1248 state = SELF_LEAVING_PEER_DOWN; 1249 break; 1250 case NODE_SYNCH_END_EVT: 1251 state = SELF_UP_PEER_UP; 1252 break; 1253 case NODE_FAILOVER_BEGIN_EVT: 1254 state = NODE_FAILINGOVER; 1255 break; 1256 case NODE_SYNCH_BEGIN_EVT: 1257 case SELF_ESTABL_CONTACT_EVT: 1258 case PEER_ESTABL_CONTACT_EVT: 1259 break; 1260 case NODE_FAILOVER_END_EVT: 1261 default: 1262 goto illegal_evt; 1263 } 1264 break; 1265 default: 1266 pr_err("Unknown node fsm state %x\n", state); 1267 break; 1268 } 1269 trace_tipc_node_fsm(n->peer_id, n->state, state, evt); 1270 n->state = state; 1271 return; 1272 1273 illegal_evt: 1274 pr_err("Illegal node fsm evt %x in state %x\n", evt, state); 1275 trace_tipc_node_fsm(n->peer_id, n->state, state, evt); 1276 } 1277 1278 static void node_lost_contact(struct tipc_node *n, 1279 struct sk_buff_head *inputq) 1280 { 1281 struct tipc_sock_conn *conn, *safe; 1282 struct tipc_link *l; 1283 struct list_head *conns = &n->conn_sks; 1284 struct sk_buff *skb; 1285 uint i; 1286 1287 pr_debug("Lost contact with %x\n", n->addr); 1288 n->delete_at = jiffies + msecs_to_jiffies(NODE_CLEANUP_AFTER); 1289 trace_tipc_node_lost_contact(n, true, " "); 1290 1291 /* Clean up broadcast state */ 1292 tipc_bcast_remove_peer(n->net, n->bc_entry.link); 1293 1294 /* Abort any ongoing link failover */ 1295 for (i = 0; i < MAX_BEARERS; i++) { 1296 l = n->links[i].link; 1297 if (l) 1298 tipc_link_fsm_evt(l, LINK_FAILOVER_END_EVT); 1299 } 1300 1301 /* Notify publications from this node */ 1302 n->action_flags |= TIPC_NOTIFY_NODE_DOWN; 1303 1304 /* Notify sockets connected to node */ 1305 list_for_each_entry_safe(conn, safe, conns, list) { 1306 skb = tipc_msg_create(TIPC_CRITICAL_IMPORTANCE, TIPC_CONN_MSG, 1307 SHORT_H_SIZE, 0, tipc_own_addr(n->net), 1308 conn->peer_node, conn->port, 1309 conn->peer_port, TIPC_ERR_NO_NODE); 1310 if (likely(skb)) 1311 skb_queue_tail(inputq, skb); 1312 list_del(&conn->list); 1313 kfree(conn); 1314 } 1315 } 1316 1317 /** 1318 * tipc_node_get_linkname - get the name of a link 1319 * 1320 * @bearer_id: id of the bearer 1321 * @node: peer node address 1322 * @linkname: link name output buffer 1323 * 1324 * Returns 0 on success 1325 */ 1326 int tipc_node_get_linkname(struct net *net, u32 bearer_id, u32 addr, 1327 char *linkname, size_t len) 1328 { 1329 struct tipc_link *link; 1330 int err = -EINVAL; 1331 struct tipc_node *node = tipc_node_find(net, addr); 1332 1333 if (!node) 1334 return err; 1335 1336 if (bearer_id >= MAX_BEARERS) 1337 goto exit; 1338 1339 tipc_node_read_lock(node); 1340 link = node->links[bearer_id].link; 1341 if (link) { 1342 strncpy(linkname, tipc_link_name(link), len); 1343 err = 0; 1344 } 1345 tipc_node_read_unlock(node); 1346 exit: 1347 tipc_node_put(node); 1348 return err; 1349 } 1350 1351 /* Caller should hold node lock for the passed node */ 1352 static int __tipc_nl_add_node(struct tipc_nl_msg *msg, struct tipc_node *node) 1353 { 1354 void *hdr; 1355 struct nlattr *attrs; 1356 1357 hdr = genlmsg_put(msg->skb, msg->portid, msg->seq, &tipc_genl_family, 1358 NLM_F_MULTI, TIPC_NL_NODE_GET); 1359 if (!hdr) 1360 return -EMSGSIZE; 1361 1362 attrs = nla_nest_start(msg->skb, TIPC_NLA_NODE); 1363 if (!attrs) 1364 goto msg_full; 1365 1366 if (nla_put_u32(msg->skb, TIPC_NLA_NODE_ADDR, node->addr)) 1367 goto attr_msg_full; 1368 if (node_is_up(node)) 1369 if (nla_put_flag(msg->skb, TIPC_NLA_NODE_UP)) 1370 goto attr_msg_full; 1371 1372 nla_nest_end(msg->skb, attrs); 1373 genlmsg_end(msg->skb, hdr); 1374 1375 return 0; 1376 1377 attr_msg_full: 1378 nla_nest_cancel(msg->skb, attrs); 1379 msg_full: 1380 genlmsg_cancel(msg->skb, hdr); 1381 1382 return -EMSGSIZE; 1383 } 1384 1385 /** 1386 * tipc_node_xmit() is the general link level function for message sending 1387 * @net: the applicable net namespace 1388 * @list: chain of buffers containing message 1389 * @dnode: address of destination node 1390 * @selector: a number used for deterministic link selection 1391 * Consumes the buffer chain. 1392 * Returns 0 if success, otherwise: -ELINKCONG,-EHOSTUNREACH,-EMSGSIZE,-ENOBUF 1393 */ 1394 int tipc_node_xmit(struct net *net, struct sk_buff_head *list, 1395 u32 dnode, int selector) 1396 { 1397 struct tipc_link_entry *le = NULL; 1398 struct tipc_node *n; 1399 struct sk_buff_head xmitq; 1400 int bearer_id; 1401 int rc; 1402 1403 if (in_own_node(net, dnode)) { 1404 tipc_sk_rcv(net, list); 1405 return 0; 1406 } 1407 1408 n = tipc_node_find(net, dnode); 1409 if (unlikely(!n)) { 1410 skb_queue_purge(list); 1411 return -EHOSTUNREACH; 1412 } 1413 1414 tipc_node_read_lock(n); 1415 bearer_id = n->active_links[selector & 1]; 1416 if (unlikely(bearer_id == INVALID_BEARER_ID)) { 1417 tipc_node_read_unlock(n); 1418 tipc_node_put(n); 1419 skb_queue_purge(list); 1420 return -EHOSTUNREACH; 1421 } 1422 1423 __skb_queue_head_init(&xmitq); 1424 le = &n->links[bearer_id]; 1425 spin_lock_bh(&le->lock); 1426 rc = tipc_link_xmit(le->link, list, &xmitq); 1427 spin_unlock_bh(&le->lock); 1428 tipc_node_read_unlock(n); 1429 1430 if (unlikely(rc == -ENOBUFS)) 1431 tipc_node_link_down(n, bearer_id, false); 1432 else 1433 tipc_bearer_xmit(net, bearer_id, &xmitq, &le->maddr); 1434 1435 tipc_node_put(n); 1436 1437 return rc; 1438 } 1439 1440 /* tipc_node_xmit_skb(): send single buffer to destination 1441 * Buffers sent via this functon are generally TIPC_SYSTEM_IMPORTANCE 1442 * messages, which will not be rejected 1443 * The only exception is datagram messages rerouted after secondary 1444 * lookup, which are rare and safe to dispose of anyway. 1445 */ 1446 int tipc_node_xmit_skb(struct net *net, struct sk_buff *skb, u32 dnode, 1447 u32 selector) 1448 { 1449 struct sk_buff_head head; 1450 1451 skb_queue_head_init(&head); 1452 __skb_queue_tail(&head, skb); 1453 tipc_node_xmit(net, &head, dnode, selector); 1454 return 0; 1455 } 1456 1457 /* tipc_node_distr_xmit(): send single buffer msgs to individual destinations 1458 * Note: this is only for SYSTEM_IMPORTANCE messages, which cannot be rejected 1459 */ 1460 int tipc_node_distr_xmit(struct net *net, struct sk_buff_head *xmitq) 1461 { 1462 struct sk_buff *skb; 1463 u32 selector, dnode; 1464 1465 while ((skb = __skb_dequeue(xmitq))) { 1466 selector = msg_origport(buf_msg(skb)); 1467 dnode = msg_destnode(buf_msg(skb)); 1468 tipc_node_xmit_skb(net, skb, dnode, selector); 1469 } 1470 return 0; 1471 } 1472 1473 void tipc_node_broadcast(struct net *net, struct sk_buff *skb) 1474 { 1475 struct sk_buff *txskb; 1476 struct tipc_node *n; 1477 u32 dst; 1478 1479 rcu_read_lock(); 1480 list_for_each_entry_rcu(n, tipc_nodes(net), list) { 1481 dst = n->addr; 1482 if (in_own_node(net, dst)) 1483 continue; 1484 if (!node_is_up(n)) 1485 continue; 1486 txskb = pskb_copy(skb, GFP_ATOMIC); 1487 if (!txskb) 1488 break; 1489 msg_set_destnode(buf_msg(txskb), dst); 1490 tipc_node_xmit_skb(net, txskb, dst, 0); 1491 } 1492 rcu_read_unlock(); 1493 1494 kfree_skb(skb); 1495 } 1496 1497 static void tipc_node_mcast_rcv(struct tipc_node *n) 1498 { 1499 struct tipc_bclink_entry *be = &n->bc_entry; 1500 1501 /* 'arrvq' is under inputq2's lock protection */ 1502 spin_lock_bh(&be->inputq2.lock); 1503 spin_lock_bh(&be->inputq1.lock); 1504 skb_queue_splice_tail_init(&be->inputq1, &be->arrvq); 1505 spin_unlock_bh(&be->inputq1.lock); 1506 spin_unlock_bh(&be->inputq2.lock); 1507 tipc_sk_mcast_rcv(n->net, &be->arrvq, &be->inputq2); 1508 } 1509 1510 static void tipc_node_bc_sync_rcv(struct tipc_node *n, struct tipc_msg *hdr, 1511 int bearer_id, struct sk_buff_head *xmitq) 1512 { 1513 struct tipc_link *ucl; 1514 int rc; 1515 1516 rc = tipc_bcast_sync_rcv(n->net, n->bc_entry.link, hdr); 1517 1518 if (rc & TIPC_LINK_DOWN_EVT) { 1519 tipc_node_reset_links(n); 1520 return; 1521 } 1522 1523 if (!(rc & TIPC_LINK_SND_STATE)) 1524 return; 1525 1526 /* If probe message, a STATE response will be sent anyway */ 1527 if (msg_probe(hdr)) 1528 return; 1529 1530 /* Produce a STATE message carrying broadcast NACK */ 1531 tipc_node_read_lock(n); 1532 ucl = n->links[bearer_id].link; 1533 if (ucl) 1534 tipc_link_build_state_msg(ucl, xmitq); 1535 tipc_node_read_unlock(n); 1536 } 1537 1538 /** 1539 * tipc_node_bc_rcv - process TIPC broadcast packet arriving from off-node 1540 * @net: the applicable net namespace 1541 * @skb: TIPC packet 1542 * @bearer_id: id of bearer message arrived on 1543 * 1544 * Invoked with no locks held. 1545 */ 1546 static void tipc_node_bc_rcv(struct net *net, struct sk_buff *skb, int bearer_id) 1547 { 1548 int rc; 1549 struct sk_buff_head xmitq; 1550 struct tipc_bclink_entry *be; 1551 struct tipc_link_entry *le; 1552 struct tipc_msg *hdr = buf_msg(skb); 1553 int usr = msg_user(hdr); 1554 u32 dnode = msg_destnode(hdr); 1555 struct tipc_node *n; 1556 1557 __skb_queue_head_init(&xmitq); 1558 1559 /* If NACK for other node, let rcv link for that node peek into it */ 1560 if ((usr == BCAST_PROTOCOL) && (dnode != tipc_own_addr(net))) 1561 n = tipc_node_find(net, dnode); 1562 else 1563 n = tipc_node_find(net, msg_prevnode(hdr)); 1564 if (!n) { 1565 kfree_skb(skb); 1566 return; 1567 } 1568 be = &n->bc_entry; 1569 le = &n->links[bearer_id]; 1570 1571 rc = tipc_bcast_rcv(net, be->link, skb); 1572 1573 /* Broadcast ACKs are sent on a unicast link */ 1574 if (rc & TIPC_LINK_SND_STATE) { 1575 tipc_node_read_lock(n); 1576 tipc_link_build_state_msg(le->link, &xmitq); 1577 tipc_node_read_unlock(n); 1578 } 1579 1580 if (!skb_queue_empty(&xmitq)) 1581 tipc_bearer_xmit(net, bearer_id, &xmitq, &le->maddr); 1582 1583 if (!skb_queue_empty(&be->inputq1)) 1584 tipc_node_mcast_rcv(n); 1585 1586 /* Handle NAME_DISTRIBUTOR messages sent from 1.7 nodes */ 1587 if (!skb_queue_empty(&n->bc_entry.namedq)) 1588 tipc_named_rcv(net, &n->bc_entry.namedq); 1589 1590 /* If reassembly or retransmission failure => reset all links to peer */ 1591 if (rc & TIPC_LINK_DOWN_EVT) 1592 tipc_node_reset_links(n); 1593 1594 tipc_node_put(n); 1595 } 1596 1597 /** 1598 * tipc_node_check_state - check and if necessary update node state 1599 * @skb: TIPC packet 1600 * @bearer_id: identity of bearer delivering the packet 1601 * Returns true if state and msg are ok, otherwise false 1602 */ 1603 static bool tipc_node_check_state(struct tipc_node *n, struct sk_buff *skb, 1604 int bearer_id, struct sk_buff_head *xmitq) 1605 { 1606 struct tipc_msg *hdr = buf_msg(skb); 1607 int usr = msg_user(hdr); 1608 int mtyp = msg_type(hdr); 1609 u16 oseqno = msg_seqno(hdr); 1610 u16 iseqno = msg_seqno(msg_get_wrapped(hdr)); 1611 u16 exp_pkts = msg_msgcnt(hdr); 1612 u16 rcv_nxt, syncpt, dlv_nxt, inputq_len; 1613 int state = n->state; 1614 struct tipc_link *l, *tnl, *pl = NULL; 1615 struct tipc_media_addr *maddr; 1616 int pb_id; 1617 1618 if (trace_tipc_node_check_state_enabled()) { 1619 trace_tipc_skb_dump(skb, false, "skb for node state check"); 1620 trace_tipc_node_check_state(n, true, " "); 1621 } 1622 l = n->links[bearer_id].link; 1623 if (!l) 1624 return false; 1625 rcv_nxt = tipc_link_rcv_nxt(l); 1626 1627 1628 if (likely((state == SELF_UP_PEER_UP) && (usr != TUNNEL_PROTOCOL))) 1629 return true; 1630 1631 /* Find parallel link, if any */ 1632 for (pb_id = 0; pb_id < MAX_BEARERS; pb_id++) { 1633 if ((pb_id != bearer_id) && n->links[pb_id].link) { 1634 pl = n->links[pb_id].link; 1635 break; 1636 } 1637 } 1638 1639 if (!tipc_link_validate_msg(l, hdr)) { 1640 trace_tipc_skb_dump(skb, false, "PROTO invalid (2)!"); 1641 trace_tipc_link_dump(l, TIPC_DUMP_NONE, "PROTO invalid (2)!"); 1642 return false; 1643 } 1644 1645 /* Check and update node accesibility if applicable */ 1646 if (state == SELF_UP_PEER_COMING) { 1647 if (!tipc_link_is_up(l)) 1648 return true; 1649 if (!msg_peer_link_is_up(hdr)) 1650 return true; 1651 tipc_node_fsm_evt(n, PEER_ESTABL_CONTACT_EVT); 1652 } 1653 1654 if (state == SELF_DOWN_PEER_LEAVING) { 1655 if (msg_peer_node_is_up(hdr)) 1656 return false; 1657 tipc_node_fsm_evt(n, PEER_LOST_CONTACT_EVT); 1658 return true; 1659 } 1660 1661 if (state == SELF_LEAVING_PEER_DOWN) 1662 return false; 1663 1664 /* Ignore duplicate packets */ 1665 if ((usr != LINK_PROTOCOL) && less(oseqno, rcv_nxt)) 1666 return true; 1667 1668 /* Initiate or update failover mode if applicable */ 1669 if ((usr == TUNNEL_PROTOCOL) && (mtyp == FAILOVER_MSG)) { 1670 syncpt = oseqno + exp_pkts - 1; 1671 if (pl && tipc_link_is_up(pl)) { 1672 __tipc_node_link_down(n, &pb_id, xmitq, &maddr); 1673 trace_tipc_node_link_down(n, true, 1674 "node link down <- failover!"); 1675 tipc_skb_queue_splice_tail_init(tipc_link_inputq(pl), 1676 tipc_link_inputq(l)); 1677 } 1678 /* If parallel link was already down, and this happened before 1679 * the tunnel link came up, FAILOVER was never sent. Ensure that 1680 * FAILOVER is sent to get peer out of NODE_FAILINGOVER state. 1681 */ 1682 if (n->state != NODE_FAILINGOVER && !n->failover_sent) { 1683 tipc_link_create_dummy_tnl_msg(l, xmitq); 1684 n->failover_sent = true; 1685 } 1686 /* If pkts arrive out of order, use lowest calculated syncpt */ 1687 if (less(syncpt, n->sync_point)) 1688 n->sync_point = syncpt; 1689 } 1690 1691 /* Open parallel link when tunnel link reaches synch point */ 1692 if ((n->state == NODE_FAILINGOVER) && tipc_link_is_up(l)) { 1693 if (!more(rcv_nxt, n->sync_point)) 1694 return true; 1695 tipc_node_fsm_evt(n, NODE_FAILOVER_END_EVT); 1696 if (pl) 1697 tipc_link_fsm_evt(pl, LINK_FAILOVER_END_EVT); 1698 return true; 1699 } 1700 1701 /* No synching needed if only one link */ 1702 if (!pl || !tipc_link_is_up(pl)) 1703 return true; 1704 1705 /* Initiate synch mode if applicable */ 1706 if ((usr == TUNNEL_PROTOCOL) && (mtyp == SYNCH_MSG) && (oseqno == 1)) { 1707 syncpt = iseqno + exp_pkts - 1; 1708 if (!tipc_link_is_up(l)) 1709 __tipc_node_link_up(n, bearer_id, xmitq); 1710 if (n->state == SELF_UP_PEER_UP) { 1711 n->sync_point = syncpt; 1712 tipc_link_fsm_evt(l, LINK_SYNCH_BEGIN_EVT); 1713 tipc_node_fsm_evt(n, NODE_SYNCH_BEGIN_EVT); 1714 } 1715 } 1716 1717 /* Open tunnel link when parallel link reaches synch point */ 1718 if (n->state == NODE_SYNCHING) { 1719 if (tipc_link_is_synching(l)) { 1720 tnl = l; 1721 } else { 1722 tnl = pl; 1723 pl = l; 1724 } 1725 inputq_len = skb_queue_len(tipc_link_inputq(pl)); 1726 dlv_nxt = tipc_link_rcv_nxt(pl) - inputq_len; 1727 if (more(dlv_nxt, n->sync_point)) { 1728 tipc_link_fsm_evt(tnl, LINK_SYNCH_END_EVT); 1729 tipc_node_fsm_evt(n, NODE_SYNCH_END_EVT); 1730 return true; 1731 } 1732 if (l == pl) 1733 return true; 1734 if ((usr == TUNNEL_PROTOCOL) && (mtyp == SYNCH_MSG)) 1735 return true; 1736 if (usr == LINK_PROTOCOL) 1737 return true; 1738 return false; 1739 } 1740 return true; 1741 } 1742 1743 /** 1744 * tipc_rcv - process TIPC packets/messages arriving from off-node 1745 * @net: the applicable net namespace 1746 * @skb: TIPC packet 1747 * @bearer: pointer to bearer message arrived on 1748 * 1749 * Invoked with no locks held. Bearer pointer must point to a valid bearer 1750 * structure (i.e. cannot be NULL), but bearer can be inactive. 1751 */ 1752 void tipc_rcv(struct net *net, struct sk_buff *skb, struct tipc_bearer *b) 1753 { 1754 struct sk_buff_head xmitq; 1755 struct tipc_node *n; 1756 struct tipc_msg *hdr; 1757 int bearer_id = b->identity; 1758 struct tipc_link_entry *le; 1759 u32 self = tipc_own_addr(net); 1760 int usr, rc = 0; 1761 u16 bc_ack; 1762 1763 __skb_queue_head_init(&xmitq); 1764 1765 /* Ensure message is well-formed before touching the header */ 1766 if (unlikely(!tipc_msg_validate(&skb))) 1767 goto discard; 1768 hdr = buf_msg(skb); 1769 usr = msg_user(hdr); 1770 bc_ack = msg_bcast_ack(hdr); 1771 1772 /* Handle arrival of discovery or broadcast packet */ 1773 if (unlikely(msg_non_seq(hdr))) { 1774 if (unlikely(usr == LINK_CONFIG)) 1775 return tipc_disc_rcv(net, skb, b); 1776 else 1777 return tipc_node_bc_rcv(net, skb, bearer_id); 1778 } 1779 1780 /* Discard unicast link messages destined for another node */ 1781 if (unlikely(!msg_short(hdr) && (msg_destnode(hdr) != self))) 1782 goto discard; 1783 1784 /* Locate neighboring node that sent packet */ 1785 n = tipc_node_find(net, msg_prevnode(hdr)); 1786 if (unlikely(!n)) 1787 goto discard; 1788 le = &n->links[bearer_id]; 1789 1790 /* Ensure broadcast reception is in synch with peer's send state */ 1791 if (unlikely(usr == LINK_PROTOCOL)) 1792 tipc_node_bc_sync_rcv(n, hdr, bearer_id, &xmitq); 1793 else if (unlikely(tipc_link_acked(n->bc_entry.link) != bc_ack)) 1794 tipc_bcast_ack_rcv(net, n->bc_entry.link, hdr); 1795 1796 /* Receive packet directly if conditions permit */ 1797 tipc_node_read_lock(n); 1798 if (likely((n->state == SELF_UP_PEER_UP) && (usr != TUNNEL_PROTOCOL))) { 1799 spin_lock_bh(&le->lock); 1800 if (le->link) { 1801 rc = tipc_link_rcv(le->link, skb, &xmitq); 1802 skb = NULL; 1803 } 1804 spin_unlock_bh(&le->lock); 1805 } 1806 tipc_node_read_unlock(n); 1807 1808 /* Check/update node state before receiving */ 1809 if (unlikely(skb)) { 1810 if (unlikely(skb_linearize(skb))) 1811 goto discard; 1812 tipc_node_write_lock(n); 1813 if (tipc_node_check_state(n, skb, bearer_id, &xmitq)) { 1814 if (le->link) { 1815 rc = tipc_link_rcv(le->link, skb, &xmitq); 1816 skb = NULL; 1817 } 1818 } 1819 tipc_node_write_unlock(n); 1820 } 1821 1822 if (unlikely(rc & TIPC_LINK_UP_EVT)) 1823 tipc_node_link_up(n, bearer_id, &xmitq); 1824 1825 if (unlikely(rc & TIPC_LINK_DOWN_EVT)) 1826 tipc_node_link_down(n, bearer_id, false); 1827 1828 if (unlikely(!skb_queue_empty(&n->bc_entry.namedq))) 1829 tipc_named_rcv(net, &n->bc_entry.namedq); 1830 1831 if (unlikely(!skb_queue_empty(&n->bc_entry.inputq1))) 1832 tipc_node_mcast_rcv(n); 1833 1834 if (!skb_queue_empty(&le->inputq)) 1835 tipc_sk_rcv(net, &le->inputq); 1836 1837 if (!skb_queue_empty(&xmitq)) 1838 tipc_bearer_xmit(net, bearer_id, &xmitq, &le->maddr); 1839 1840 tipc_node_put(n); 1841 discard: 1842 kfree_skb(skb); 1843 } 1844 1845 void tipc_node_apply_property(struct net *net, struct tipc_bearer *b, 1846 int prop) 1847 { 1848 struct tipc_net *tn = tipc_net(net); 1849 int bearer_id = b->identity; 1850 struct sk_buff_head xmitq; 1851 struct tipc_link_entry *e; 1852 struct tipc_node *n; 1853 1854 __skb_queue_head_init(&xmitq); 1855 1856 rcu_read_lock(); 1857 1858 list_for_each_entry_rcu(n, &tn->node_list, list) { 1859 tipc_node_write_lock(n); 1860 e = &n->links[bearer_id]; 1861 if (e->link) { 1862 if (prop == TIPC_NLA_PROP_TOL) 1863 tipc_link_set_tolerance(e->link, b->tolerance, 1864 &xmitq); 1865 else if (prop == TIPC_NLA_PROP_MTU) 1866 tipc_link_set_mtu(e->link, b->mtu); 1867 } 1868 tipc_node_write_unlock(n); 1869 tipc_bearer_xmit(net, bearer_id, &xmitq, &e->maddr); 1870 } 1871 1872 rcu_read_unlock(); 1873 } 1874 1875 int tipc_nl_peer_rm(struct sk_buff *skb, struct genl_info *info) 1876 { 1877 struct net *net = sock_net(skb->sk); 1878 struct tipc_net *tn = net_generic(net, tipc_net_id); 1879 struct nlattr *attrs[TIPC_NLA_NET_MAX + 1]; 1880 struct tipc_node *peer; 1881 u32 addr; 1882 int err; 1883 1884 /* We identify the peer by its net */ 1885 if (!info->attrs[TIPC_NLA_NET]) 1886 return -EINVAL; 1887 1888 err = nla_parse_nested(attrs, TIPC_NLA_NET_MAX, 1889 info->attrs[TIPC_NLA_NET], tipc_nl_net_policy, 1890 info->extack); 1891 if (err) 1892 return err; 1893 1894 if (!attrs[TIPC_NLA_NET_ADDR]) 1895 return -EINVAL; 1896 1897 addr = nla_get_u32(attrs[TIPC_NLA_NET_ADDR]); 1898 1899 if (in_own_node(net, addr)) 1900 return -ENOTSUPP; 1901 1902 spin_lock_bh(&tn->node_list_lock); 1903 peer = tipc_node_find(net, addr); 1904 if (!peer) { 1905 spin_unlock_bh(&tn->node_list_lock); 1906 return -ENXIO; 1907 } 1908 1909 tipc_node_write_lock(peer); 1910 if (peer->state != SELF_DOWN_PEER_DOWN && 1911 peer->state != SELF_DOWN_PEER_LEAVING) { 1912 tipc_node_write_unlock(peer); 1913 err = -EBUSY; 1914 goto err_out; 1915 } 1916 1917 tipc_node_clear_links(peer); 1918 tipc_node_write_unlock(peer); 1919 tipc_node_delete(peer); 1920 1921 err = 0; 1922 err_out: 1923 tipc_node_put(peer); 1924 spin_unlock_bh(&tn->node_list_lock); 1925 1926 return err; 1927 } 1928 1929 int tipc_nl_node_dump(struct sk_buff *skb, struct netlink_callback *cb) 1930 { 1931 int err; 1932 struct net *net = sock_net(skb->sk); 1933 struct tipc_net *tn = net_generic(net, tipc_net_id); 1934 int done = cb->args[0]; 1935 int last_addr = cb->args[1]; 1936 struct tipc_node *node; 1937 struct tipc_nl_msg msg; 1938 1939 if (done) 1940 return 0; 1941 1942 msg.skb = skb; 1943 msg.portid = NETLINK_CB(cb->skb).portid; 1944 msg.seq = cb->nlh->nlmsg_seq; 1945 1946 rcu_read_lock(); 1947 if (last_addr) { 1948 node = tipc_node_find(net, last_addr); 1949 if (!node) { 1950 rcu_read_unlock(); 1951 /* We never set seq or call nl_dump_check_consistent() 1952 * this means that setting prev_seq here will cause the 1953 * consistence check to fail in the netlink callback 1954 * handler. Resulting in the NLMSG_DONE message having 1955 * the NLM_F_DUMP_INTR flag set if the node state 1956 * changed while we released the lock. 1957 */ 1958 cb->prev_seq = 1; 1959 return -EPIPE; 1960 } 1961 tipc_node_put(node); 1962 } 1963 1964 list_for_each_entry_rcu(node, &tn->node_list, list) { 1965 if (last_addr) { 1966 if (node->addr == last_addr) 1967 last_addr = 0; 1968 else 1969 continue; 1970 } 1971 1972 tipc_node_read_lock(node); 1973 err = __tipc_nl_add_node(&msg, node); 1974 if (err) { 1975 last_addr = node->addr; 1976 tipc_node_read_unlock(node); 1977 goto out; 1978 } 1979 1980 tipc_node_read_unlock(node); 1981 } 1982 done = 1; 1983 out: 1984 cb->args[0] = done; 1985 cb->args[1] = last_addr; 1986 rcu_read_unlock(); 1987 1988 return skb->len; 1989 } 1990 1991 /* tipc_node_find_by_name - locate owner node of link by link's name 1992 * @net: the applicable net namespace 1993 * @name: pointer to link name string 1994 * @bearer_id: pointer to index in 'node->links' array where the link was found. 1995 * 1996 * Returns pointer to node owning the link, or 0 if no matching link is found. 1997 */ 1998 static struct tipc_node *tipc_node_find_by_name(struct net *net, 1999 const char *link_name, 2000 unsigned int *bearer_id) 2001 { 2002 struct tipc_net *tn = net_generic(net, tipc_net_id); 2003 struct tipc_link *l; 2004 struct tipc_node *n; 2005 struct tipc_node *found_node = NULL; 2006 int i; 2007 2008 *bearer_id = 0; 2009 rcu_read_lock(); 2010 list_for_each_entry_rcu(n, &tn->node_list, list) { 2011 tipc_node_read_lock(n); 2012 for (i = 0; i < MAX_BEARERS; i++) { 2013 l = n->links[i].link; 2014 if (l && !strcmp(tipc_link_name(l), link_name)) { 2015 *bearer_id = i; 2016 found_node = n; 2017 break; 2018 } 2019 } 2020 tipc_node_read_unlock(n); 2021 if (found_node) 2022 break; 2023 } 2024 rcu_read_unlock(); 2025 2026 return found_node; 2027 } 2028 2029 int tipc_nl_node_set_link(struct sk_buff *skb, struct genl_info *info) 2030 { 2031 int err; 2032 int res = 0; 2033 int bearer_id; 2034 char *name; 2035 struct tipc_link *link; 2036 struct tipc_node *node; 2037 struct sk_buff_head xmitq; 2038 struct nlattr *attrs[TIPC_NLA_LINK_MAX + 1]; 2039 struct net *net = sock_net(skb->sk); 2040 2041 __skb_queue_head_init(&xmitq); 2042 2043 if (!info->attrs[TIPC_NLA_LINK]) 2044 return -EINVAL; 2045 2046 err = nla_parse_nested(attrs, TIPC_NLA_LINK_MAX, 2047 info->attrs[TIPC_NLA_LINK], 2048 tipc_nl_link_policy, info->extack); 2049 if (err) 2050 return err; 2051 2052 if (!attrs[TIPC_NLA_LINK_NAME]) 2053 return -EINVAL; 2054 2055 name = nla_data(attrs[TIPC_NLA_LINK_NAME]); 2056 2057 if (strcmp(name, tipc_bclink_name) == 0) 2058 return tipc_nl_bc_link_set(net, attrs); 2059 2060 node = tipc_node_find_by_name(net, name, &bearer_id); 2061 if (!node) 2062 return -EINVAL; 2063 2064 tipc_node_read_lock(node); 2065 2066 link = node->links[bearer_id].link; 2067 if (!link) { 2068 res = -EINVAL; 2069 goto out; 2070 } 2071 2072 if (attrs[TIPC_NLA_LINK_PROP]) { 2073 struct nlattr *props[TIPC_NLA_PROP_MAX + 1]; 2074 2075 err = tipc_nl_parse_link_prop(attrs[TIPC_NLA_LINK_PROP], 2076 props); 2077 if (err) { 2078 res = err; 2079 goto out; 2080 } 2081 2082 if (props[TIPC_NLA_PROP_TOL]) { 2083 u32 tol; 2084 2085 tol = nla_get_u32(props[TIPC_NLA_PROP_TOL]); 2086 tipc_link_set_tolerance(link, tol, &xmitq); 2087 } 2088 if (props[TIPC_NLA_PROP_PRIO]) { 2089 u32 prio; 2090 2091 prio = nla_get_u32(props[TIPC_NLA_PROP_PRIO]); 2092 tipc_link_set_prio(link, prio, &xmitq); 2093 } 2094 if (props[TIPC_NLA_PROP_WIN]) { 2095 u32 win; 2096 2097 win = nla_get_u32(props[TIPC_NLA_PROP_WIN]); 2098 tipc_link_set_queue_limits(link, win); 2099 } 2100 } 2101 2102 out: 2103 tipc_node_read_unlock(node); 2104 tipc_bearer_xmit(net, bearer_id, &xmitq, &node->links[bearer_id].maddr); 2105 return res; 2106 } 2107 2108 int tipc_nl_node_get_link(struct sk_buff *skb, struct genl_info *info) 2109 { 2110 struct net *net = genl_info_net(info); 2111 struct nlattr *attrs[TIPC_NLA_LINK_MAX + 1]; 2112 struct tipc_nl_msg msg; 2113 char *name; 2114 int err; 2115 2116 msg.portid = info->snd_portid; 2117 msg.seq = info->snd_seq; 2118 2119 if (!info->attrs[TIPC_NLA_LINK]) 2120 return -EINVAL; 2121 2122 err = nla_parse_nested(attrs, TIPC_NLA_LINK_MAX, 2123 info->attrs[TIPC_NLA_LINK], 2124 tipc_nl_link_policy, info->extack); 2125 if (err) 2126 return err; 2127 2128 if (!attrs[TIPC_NLA_LINK_NAME]) 2129 return -EINVAL; 2130 2131 name = nla_data(attrs[TIPC_NLA_LINK_NAME]); 2132 2133 msg.skb = nlmsg_new(NLMSG_GOODSIZE, GFP_KERNEL); 2134 if (!msg.skb) 2135 return -ENOMEM; 2136 2137 if (strcmp(name, tipc_bclink_name) == 0) { 2138 err = tipc_nl_add_bc_link(net, &msg); 2139 if (err) 2140 goto err_free; 2141 } else { 2142 int bearer_id; 2143 struct tipc_node *node; 2144 struct tipc_link *link; 2145 2146 node = tipc_node_find_by_name(net, name, &bearer_id); 2147 if (!node) { 2148 err = -EINVAL; 2149 goto err_free; 2150 } 2151 2152 tipc_node_read_lock(node); 2153 link = node->links[bearer_id].link; 2154 if (!link) { 2155 tipc_node_read_unlock(node); 2156 err = -EINVAL; 2157 goto err_free; 2158 } 2159 2160 err = __tipc_nl_add_link(net, &msg, link, 0); 2161 tipc_node_read_unlock(node); 2162 if (err) 2163 goto err_free; 2164 } 2165 2166 return genlmsg_reply(msg.skb, info); 2167 2168 err_free: 2169 nlmsg_free(msg.skb); 2170 return err; 2171 } 2172 2173 int tipc_nl_node_reset_link_stats(struct sk_buff *skb, struct genl_info *info) 2174 { 2175 int err; 2176 char *link_name; 2177 unsigned int bearer_id; 2178 struct tipc_link *link; 2179 struct tipc_node *node; 2180 struct nlattr *attrs[TIPC_NLA_LINK_MAX + 1]; 2181 struct net *net = sock_net(skb->sk); 2182 struct tipc_link_entry *le; 2183 2184 if (!info->attrs[TIPC_NLA_LINK]) 2185 return -EINVAL; 2186 2187 err = nla_parse_nested(attrs, TIPC_NLA_LINK_MAX, 2188 info->attrs[TIPC_NLA_LINK], 2189 tipc_nl_link_policy, info->extack); 2190 if (err) 2191 return err; 2192 2193 if (!attrs[TIPC_NLA_LINK_NAME]) 2194 return -EINVAL; 2195 2196 link_name = nla_data(attrs[TIPC_NLA_LINK_NAME]); 2197 2198 if (strcmp(link_name, tipc_bclink_name) == 0) { 2199 err = tipc_bclink_reset_stats(net); 2200 if (err) 2201 return err; 2202 return 0; 2203 } 2204 2205 node = tipc_node_find_by_name(net, link_name, &bearer_id); 2206 if (!node) 2207 return -EINVAL; 2208 2209 le = &node->links[bearer_id]; 2210 tipc_node_read_lock(node); 2211 spin_lock_bh(&le->lock); 2212 link = node->links[bearer_id].link; 2213 if (!link) { 2214 spin_unlock_bh(&le->lock); 2215 tipc_node_read_unlock(node); 2216 return -EINVAL; 2217 } 2218 tipc_link_reset_stats(link); 2219 spin_unlock_bh(&le->lock); 2220 tipc_node_read_unlock(node); 2221 return 0; 2222 } 2223 2224 /* Caller should hold node lock */ 2225 static int __tipc_nl_add_node_links(struct net *net, struct tipc_nl_msg *msg, 2226 struct tipc_node *node, u32 *prev_link) 2227 { 2228 u32 i; 2229 int err; 2230 2231 for (i = *prev_link; i < MAX_BEARERS; i++) { 2232 *prev_link = i; 2233 2234 if (!node->links[i].link) 2235 continue; 2236 2237 err = __tipc_nl_add_link(net, msg, 2238 node->links[i].link, NLM_F_MULTI); 2239 if (err) 2240 return err; 2241 } 2242 *prev_link = 0; 2243 2244 return 0; 2245 } 2246 2247 int tipc_nl_node_dump_link(struct sk_buff *skb, struct netlink_callback *cb) 2248 { 2249 struct net *net = sock_net(skb->sk); 2250 struct tipc_net *tn = net_generic(net, tipc_net_id); 2251 struct tipc_node *node; 2252 struct tipc_nl_msg msg; 2253 u32 prev_node = cb->args[0]; 2254 u32 prev_link = cb->args[1]; 2255 int done = cb->args[2]; 2256 int err; 2257 2258 if (done) 2259 return 0; 2260 2261 msg.skb = skb; 2262 msg.portid = NETLINK_CB(cb->skb).portid; 2263 msg.seq = cb->nlh->nlmsg_seq; 2264 2265 rcu_read_lock(); 2266 if (prev_node) { 2267 node = tipc_node_find(net, prev_node); 2268 if (!node) { 2269 /* We never set seq or call nl_dump_check_consistent() 2270 * this means that setting prev_seq here will cause the 2271 * consistence check to fail in the netlink callback 2272 * handler. Resulting in the last NLMSG_DONE message 2273 * having the NLM_F_DUMP_INTR flag set. 2274 */ 2275 cb->prev_seq = 1; 2276 goto out; 2277 } 2278 tipc_node_put(node); 2279 2280 list_for_each_entry_continue_rcu(node, &tn->node_list, 2281 list) { 2282 tipc_node_read_lock(node); 2283 err = __tipc_nl_add_node_links(net, &msg, node, 2284 &prev_link); 2285 tipc_node_read_unlock(node); 2286 if (err) 2287 goto out; 2288 2289 prev_node = node->addr; 2290 } 2291 } else { 2292 err = tipc_nl_add_bc_link(net, &msg); 2293 if (err) 2294 goto out; 2295 2296 list_for_each_entry_rcu(node, &tn->node_list, list) { 2297 tipc_node_read_lock(node); 2298 err = __tipc_nl_add_node_links(net, &msg, node, 2299 &prev_link); 2300 tipc_node_read_unlock(node); 2301 if (err) 2302 goto out; 2303 2304 prev_node = node->addr; 2305 } 2306 } 2307 done = 1; 2308 out: 2309 rcu_read_unlock(); 2310 2311 cb->args[0] = prev_node; 2312 cb->args[1] = prev_link; 2313 cb->args[2] = done; 2314 2315 return skb->len; 2316 } 2317 2318 int tipc_nl_node_set_monitor(struct sk_buff *skb, struct genl_info *info) 2319 { 2320 struct nlattr *attrs[TIPC_NLA_MON_MAX + 1]; 2321 struct net *net = sock_net(skb->sk); 2322 int err; 2323 2324 if (!info->attrs[TIPC_NLA_MON]) 2325 return -EINVAL; 2326 2327 err = nla_parse_nested(attrs, TIPC_NLA_MON_MAX, 2328 info->attrs[TIPC_NLA_MON], 2329 tipc_nl_monitor_policy, info->extack); 2330 if (err) 2331 return err; 2332 2333 if (attrs[TIPC_NLA_MON_ACTIVATION_THRESHOLD]) { 2334 u32 val; 2335 2336 val = nla_get_u32(attrs[TIPC_NLA_MON_ACTIVATION_THRESHOLD]); 2337 err = tipc_nl_monitor_set_threshold(net, val); 2338 if (err) 2339 return err; 2340 } 2341 2342 return 0; 2343 } 2344 2345 static int __tipc_nl_add_monitor_prop(struct net *net, struct tipc_nl_msg *msg) 2346 { 2347 struct nlattr *attrs; 2348 void *hdr; 2349 u32 val; 2350 2351 hdr = genlmsg_put(msg->skb, msg->portid, msg->seq, &tipc_genl_family, 2352 0, TIPC_NL_MON_GET); 2353 if (!hdr) 2354 return -EMSGSIZE; 2355 2356 attrs = nla_nest_start(msg->skb, TIPC_NLA_MON); 2357 if (!attrs) 2358 goto msg_full; 2359 2360 val = tipc_nl_monitor_get_threshold(net); 2361 2362 if (nla_put_u32(msg->skb, TIPC_NLA_MON_ACTIVATION_THRESHOLD, val)) 2363 goto attr_msg_full; 2364 2365 nla_nest_end(msg->skb, attrs); 2366 genlmsg_end(msg->skb, hdr); 2367 2368 return 0; 2369 2370 attr_msg_full: 2371 nla_nest_cancel(msg->skb, attrs); 2372 msg_full: 2373 genlmsg_cancel(msg->skb, hdr); 2374 2375 return -EMSGSIZE; 2376 } 2377 2378 int tipc_nl_node_get_monitor(struct sk_buff *skb, struct genl_info *info) 2379 { 2380 struct net *net = sock_net(skb->sk); 2381 struct tipc_nl_msg msg; 2382 int err; 2383 2384 msg.skb = nlmsg_new(NLMSG_GOODSIZE, GFP_KERNEL); 2385 if (!msg.skb) 2386 return -ENOMEM; 2387 msg.portid = info->snd_portid; 2388 msg.seq = info->snd_seq; 2389 2390 err = __tipc_nl_add_monitor_prop(net, &msg); 2391 if (err) { 2392 nlmsg_free(msg.skb); 2393 return err; 2394 } 2395 2396 return genlmsg_reply(msg.skb, info); 2397 } 2398 2399 int tipc_nl_node_dump_monitor(struct sk_buff *skb, struct netlink_callback *cb) 2400 { 2401 struct net *net = sock_net(skb->sk); 2402 u32 prev_bearer = cb->args[0]; 2403 struct tipc_nl_msg msg; 2404 int bearer_id; 2405 int err; 2406 2407 if (prev_bearer == MAX_BEARERS) 2408 return 0; 2409 2410 msg.skb = skb; 2411 msg.portid = NETLINK_CB(cb->skb).portid; 2412 msg.seq = cb->nlh->nlmsg_seq; 2413 2414 rtnl_lock(); 2415 for (bearer_id = prev_bearer; bearer_id < MAX_BEARERS; bearer_id++) { 2416 err = __tipc_nl_add_monitor(net, &msg, bearer_id); 2417 if (err) 2418 break; 2419 } 2420 rtnl_unlock(); 2421 cb->args[0] = bearer_id; 2422 2423 return skb->len; 2424 } 2425 2426 int tipc_nl_node_dump_monitor_peer(struct sk_buff *skb, 2427 struct netlink_callback *cb) 2428 { 2429 struct net *net = sock_net(skb->sk); 2430 u32 prev_node = cb->args[1]; 2431 u32 bearer_id = cb->args[2]; 2432 int done = cb->args[0]; 2433 struct tipc_nl_msg msg; 2434 int err; 2435 2436 if (!prev_node) { 2437 struct nlattr **attrs; 2438 struct nlattr *mon[TIPC_NLA_MON_MAX + 1]; 2439 2440 err = tipc_nlmsg_parse(cb->nlh, &attrs); 2441 if (err) 2442 return err; 2443 2444 if (!attrs[TIPC_NLA_MON]) 2445 return -EINVAL; 2446 2447 err = nla_parse_nested(mon, TIPC_NLA_MON_MAX, 2448 attrs[TIPC_NLA_MON], 2449 tipc_nl_monitor_policy, NULL); 2450 if (err) 2451 return err; 2452 2453 if (!mon[TIPC_NLA_MON_REF]) 2454 return -EINVAL; 2455 2456 bearer_id = nla_get_u32(mon[TIPC_NLA_MON_REF]); 2457 2458 if (bearer_id >= MAX_BEARERS) 2459 return -EINVAL; 2460 } 2461 2462 if (done) 2463 return 0; 2464 2465 msg.skb = skb; 2466 msg.portid = NETLINK_CB(cb->skb).portid; 2467 msg.seq = cb->nlh->nlmsg_seq; 2468 2469 rtnl_lock(); 2470 err = tipc_nl_add_monitor_peer(net, &msg, bearer_id, &prev_node); 2471 if (!err) 2472 done = 1; 2473 2474 rtnl_unlock(); 2475 cb->args[0] = done; 2476 cb->args[1] = prev_node; 2477 cb->args[2] = bearer_id; 2478 2479 return skb->len; 2480 } 2481 2482 u32 tipc_node_get_addr(struct tipc_node *node) 2483 { 2484 return (node) ? node->addr : 0; 2485 } 2486 2487 /** 2488 * tipc_node_dump - dump TIPC node data 2489 * @n: tipc node to be dumped 2490 * @more: dump more? 2491 * - false: dump only tipc node data 2492 * - true: dump node link data as well 2493 * @buf: returned buffer of dump data in format 2494 */ 2495 int tipc_node_dump(struct tipc_node *n, bool more, char *buf) 2496 { 2497 int i = 0; 2498 size_t sz = (more) ? NODE_LMAX : NODE_LMIN; 2499 2500 if (!n) { 2501 i += scnprintf(buf, sz, "node data: (null)\n"); 2502 return i; 2503 } 2504 2505 i += scnprintf(buf, sz, "node data: %x", n->addr); 2506 i += scnprintf(buf + i, sz - i, " %x", n->state); 2507 i += scnprintf(buf + i, sz - i, " %d", n->active_links[0]); 2508 i += scnprintf(buf + i, sz - i, " %d", n->active_links[1]); 2509 i += scnprintf(buf + i, sz - i, " %x", n->action_flags); 2510 i += scnprintf(buf + i, sz - i, " %u", n->failover_sent); 2511 i += scnprintf(buf + i, sz - i, " %u", n->sync_point); 2512 i += scnprintf(buf + i, sz - i, " %d", n->link_cnt); 2513 i += scnprintf(buf + i, sz - i, " %u", n->working_links); 2514 i += scnprintf(buf + i, sz - i, " %x", n->capabilities); 2515 i += scnprintf(buf + i, sz - i, " %lu\n", n->keepalive_intv); 2516 2517 if (!more) 2518 return i; 2519 2520 i += scnprintf(buf + i, sz - i, "link_entry[0]:\n"); 2521 i += scnprintf(buf + i, sz - i, " mtu: %u\n", n->links[0].mtu); 2522 i += scnprintf(buf + i, sz - i, " media: "); 2523 i += tipc_media_addr_printf(buf + i, sz - i, &n->links[0].maddr); 2524 i += scnprintf(buf + i, sz - i, "\n"); 2525 i += tipc_link_dump(n->links[0].link, TIPC_DUMP_NONE, buf + i); 2526 i += scnprintf(buf + i, sz - i, " inputq: "); 2527 i += tipc_list_dump(&n->links[0].inputq, false, buf + i); 2528 2529 i += scnprintf(buf + i, sz - i, "link_entry[1]:\n"); 2530 i += scnprintf(buf + i, sz - i, " mtu: %u\n", n->links[1].mtu); 2531 i += scnprintf(buf + i, sz - i, " media: "); 2532 i += tipc_media_addr_printf(buf + i, sz - i, &n->links[1].maddr); 2533 i += scnprintf(buf + i, sz - i, "\n"); 2534 i += tipc_link_dump(n->links[1].link, TIPC_DUMP_NONE, buf + i); 2535 i += scnprintf(buf + i, sz - i, " inputq: "); 2536 i += tipc_list_dump(&n->links[1].inputq, false, buf + i); 2537 2538 i += scnprintf(buf + i, sz - i, "bclink:\n "); 2539 i += tipc_link_dump(n->bc_entry.link, TIPC_DUMP_NONE, buf + i); 2540 2541 return i; 2542 } 2543