1 /* 2 * net/tipc/bcast.c: TIPC broadcast code 3 * 4 * Copyright (c) 2004-2006, Ericsson AB 5 * Copyright (c) 2004, Intel Corporation. 6 * Copyright (c) 2005, 2010-2011, Wind River Systems 7 * All rights reserved. 8 * 9 * Redistribution and use in source and binary forms, with or without 10 * modification, are permitted provided that the following conditions are met: 11 * 12 * 1. Redistributions of source code must retain the above copyright 13 * notice, this list of conditions and the following disclaimer. 14 * 2. Redistributions in binary form must reproduce the above copyright 15 * notice, this list of conditions and the following disclaimer in the 16 * documentation and/or other materials provided with the distribution. 17 * 3. Neither the names of the copyright holders nor the names of its 18 * contributors may be used to endorse or promote products derived from 19 * this software without specific prior written permission. 20 * 21 * Alternatively, this software may be distributed under the terms of the 22 * GNU General Public License ("GPL") version 2 as published by the Free 23 * Software Foundation. 24 * 25 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" 26 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 27 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 28 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE 29 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 30 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 31 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 32 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 33 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 34 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 35 * POSSIBILITY OF SUCH DAMAGE. 36 */ 37 38 #include "core.h" 39 #include "link.h" 40 #include "port.h" 41 #include "bcast.h" 42 #include "name_distr.h" 43 44 #define MAX_PKT_DEFAULT_MCAST 1500 /* bcast link max packet size (fixed) */ 45 #define BCLINK_WIN_DEFAULT 20 /* bcast link window size (default) */ 46 #define BCBEARER MAX_BEARERS 47 48 /** 49 * struct tipc_bcbearer_pair - a pair of bearers used by broadcast link 50 * @primary: pointer to primary bearer 51 * @secondary: pointer to secondary bearer 52 * 53 * Bearers must have same priority and same set of reachable destinations 54 * to be paired. 55 */ 56 57 struct tipc_bcbearer_pair { 58 struct tipc_bearer *primary; 59 struct tipc_bearer *secondary; 60 }; 61 62 /** 63 * struct tipc_bcbearer - bearer used by broadcast link 64 * @bearer: (non-standard) broadcast bearer structure 65 * @media: (non-standard) broadcast media structure 66 * @bpairs: array of bearer pairs 67 * @bpairs_temp: temporary array of bearer pairs used by tipc_bcbearer_sort() 68 * @remains: temporary node map used by tipc_bcbearer_send() 69 * @remains_new: temporary node map used tipc_bcbearer_send() 70 * 71 * Note: The fields labelled "temporary" are incorporated into the bearer 72 * to avoid consuming potentially limited stack space through the use of 73 * large local variables within multicast routines. Concurrent access is 74 * prevented through use of the spinlock "bc_lock". 75 */ 76 struct tipc_bcbearer { 77 struct tipc_bearer bearer; 78 struct tipc_media media; 79 struct tipc_bcbearer_pair bpairs[MAX_BEARERS]; 80 struct tipc_bcbearer_pair bpairs_temp[TIPC_MAX_LINK_PRI + 1]; 81 struct tipc_node_map remains; 82 struct tipc_node_map remains_new; 83 }; 84 85 /** 86 * struct tipc_bclink - link used for broadcast messages 87 * @link: (non-standard) broadcast link structure 88 * @node: (non-standard) node structure representing b'cast link's peer node 89 * @bcast_nodes: map of broadcast-capable nodes 90 * @retransmit_to: node that most recently requested a retransmit 91 * 92 * Handles sequence numbering, fragmentation, bundling, etc. 93 */ 94 struct tipc_bclink { 95 struct tipc_link link; 96 struct tipc_node node; 97 struct tipc_node_map bcast_nodes; 98 struct tipc_node *retransmit_to; 99 }; 100 101 static struct tipc_bcbearer bcast_bearer; 102 static struct tipc_bclink bcast_link; 103 104 static struct tipc_bcbearer *bcbearer = &bcast_bearer; 105 static struct tipc_bclink *bclink = &bcast_link; 106 static struct tipc_link *bcl = &bcast_link.link; 107 108 static DEFINE_SPINLOCK(bc_lock); 109 110 const char tipc_bclink_name[] = "broadcast-link"; 111 112 static void tipc_nmap_diff(struct tipc_node_map *nm_a, 113 struct tipc_node_map *nm_b, 114 struct tipc_node_map *nm_diff); 115 116 static u32 bcbuf_acks(struct sk_buff *buf) 117 { 118 return (u32)(unsigned long)TIPC_SKB_CB(buf)->handle; 119 } 120 121 static void bcbuf_set_acks(struct sk_buff *buf, u32 acks) 122 { 123 TIPC_SKB_CB(buf)->handle = (void *)(unsigned long)acks; 124 } 125 126 static void bcbuf_decr_acks(struct sk_buff *buf) 127 { 128 bcbuf_set_acks(buf, bcbuf_acks(buf) - 1); 129 } 130 131 void tipc_bclink_add_node(u32 addr) 132 { 133 spin_lock_bh(&bc_lock); 134 tipc_nmap_add(&bclink->bcast_nodes, addr); 135 spin_unlock_bh(&bc_lock); 136 } 137 138 void tipc_bclink_remove_node(u32 addr) 139 { 140 spin_lock_bh(&bc_lock); 141 tipc_nmap_remove(&bclink->bcast_nodes, addr); 142 spin_unlock_bh(&bc_lock); 143 } 144 145 static void bclink_set_last_sent(void) 146 { 147 if (bcl->next_out) 148 bcl->fsm_msg_cnt = mod(buf_seqno(bcl->next_out) - 1); 149 else 150 bcl->fsm_msg_cnt = mod(bcl->next_out_no - 1); 151 } 152 153 u32 tipc_bclink_get_last_sent(void) 154 { 155 return bcl->fsm_msg_cnt; 156 } 157 158 static void bclink_update_last_sent(struct tipc_node *node, u32 seqno) 159 { 160 node->bclink.last_sent = less_eq(node->bclink.last_sent, seqno) ? 161 seqno : node->bclink.last_sent; 162 } 163 164 165 /** 166 * tipc_bclink_retransmit_to - get most recent node to request retransmission 167 * 168 * Called with bc_lock locked 169 */ 170 struct tipc_node *tipc_bclink_retransmit_to(void) 171 { 172 return bclink->retransmit_to; 173 } 174 175 /** 176 * bclink_retransmit_pkt - retransmit broadcast packets 177 * @after: sequence number of last packet to *not* retransmit 178 * @to: sequence number of last packet to retransmit 179 * 180 * Called with bc_lock locked 181 */ 182 static void bclink_retransmit_pkt(u32 after, u32 to) 183 { 184 struct sk_buff *buf; 185 186 buf = bcl->first_out; 187 while (buf && less_eq(buf_seqno(buf), after)) 188 buf = buf->next; 189 tipc_link_retransmit(bcl, buf, mod(to - after)); 190 } 191 192 /** 193 * tipc_bclink_acknowledge - handle acknowledgement of broadcast packets 194 * @n_ptr: node that sent acknowledgement info 195 * @acked: broadcast sequence # that has been acknowledged 196 * 197 * Node is locked, bc_lock unlocked. 198 */ 199 void tipc_bclink_acknowledge(struct tipc_node *n_ptr, u32 acked) 200 { 201 struct sk_buff *crs; 202 struct sk_buff *next; 203 unsigned int released = 0; 204 205 spin_lock_bh(&bc_lock); 206 207 /* Bail out if tx queue is empty (no clean up is required) */ 208 crs = bcl->first_out; 209 if (!crs) 210 goto exit; 211 212 /* Determine which messages need to be acknowledged */ 213 if (acked == INVALID_LINK_SEQ) { 214 /* 215 * Contact with specified node has been lost, so need to 216 * acknowledge sent messages only (if other nodes still exist) 217 * or both sent and unsent messages (otherwise) 218 */ 219 if (bclink->bcast_nodes.count) 220 acked = bcl->fsm_msg_cnt; 221 else 222 acked = bcl->next_out_no; 223 } else { 224 /* 225 * Bail out if specified sequence number does not correspond 226 * to a message that has been sent and not yet acknowledged 227 */ 228 if (less(acked, buf_seqno(crs)) || 229 less(bcl->fsm_msg_cnt, acked) || 230 less_eq(acked, n_ptr->bclink.acked)) 231 goto exit; 232 } 233 234 /* Skip over packets that node has previously acknowledged */ 235 while (crs && less_eq(buf_seqno(crs), n_ptr->bclink.acked)) 236 crs = crs->next; 237 238 /* Update packets that node is now acknowledging */ 239 240 while (crs && less_eq(buf_seqno(crs), acked)) { 241 next = crs->next; 242 243 if (crs != bcl->next_out) 244 bcbuf_decr_acks(crs); 245 else { 246 bcbuf_set_acks(crs, 0); 247 bcl->next_out = next; 248 bclink_set_last_sent(); 249 } 250 251 if (bcbuf_acks(crs) == 0) { 252 bcl->first_out = next; 253 bcl->out_queue_size--; 254 kfree_skb(crs); 255 released = 1; 256 } 257 crs = next; 258 } 259 n_ptr->bclink.acked = acked; 260 261 /* Try resolving broadcast link congestion, if necessary */ 262 263 if (unlikely(bcl->next_out)) { 264 tipc_link_push_queue(bcl); 265 bclink_set_last_sent(); 266 } 267 if (unlikely(released && !list_empty(&bcl->waiting_ports))) 268 tipc_link_wakeup_ports(bcl, 0); 269 exit: 270 spin_unlock_bh(&bc_lock); 271 } 272 273 /** 274 * tipc_bclink_update_link_state - update broadcast link state 275 * 276 * tipc_net_lock and node lock set 277 */ 278 void tipc_bclink_update_link_state(struct tipc_node *n_ptr, u32 last_sent) 279 { 280 struct sk_buff *buf; 281 282 /* Ignore "stale" link state info */ 283 284 if (less_eq(last_sent, n_ptr->bclink.last_in)) 285 return; 286 287 /* Update link synchronization state; quit if in sync */ 288 289 bclink_update_last_sent(n_ptr, last_sent); 290 291 if (n_ptr->bclink.last_sent == n_ptr->bclink.last_in) 292 return; 293 294 /* Update out-of-sync state; quit if loss is still unconfirmed */ 295 296 if ((++n_ptr->bclink.oos_state) == 1) { 297 if (n_ptr->bclink.deferred_size < (TIPC_MIN_LINK_WIN / 2)) 298 return; 299 n_ptr->bclink.oos_state++; 300 } 301 302 /* Don't NACK if one has been recently sent (or seen) */ 303 304 if (n_ptr->bclink.oos_state & 0x1) 305 return; 306 307 /* Send NACK */ 308 309 buf = tipc_buf_acquire(INT_H_SIZE); 310 if (buf) { 311 struct tipc_msg *msg = buf_msg(buf); 312 313 tipc_msg_init(msg, BCAST_PROTOCOL, STATE_MSG, 314 INT_H_SIZE, n_ptr->addr); 315 msg_set_non_seq(msg, 1); 316 msg_set_mc_netid(msg, tipc_net_id); 317 msg_set_bcast_ack(msg, n_ptr->bclink.last_in); 318 msg_set_bcgap_after(msg, n_ptr->bclink.last_in); 319 msg_set_bcgap_to(msg, n_ptr->bclink.deferred_head 320 ? buf_seqno(n_ptr->bclink.deferred_head) - 1 321 : n_ptr->bclink.last_sent); 322 323 spin_lock_bh(&bc_lock); 324 tipc_bearer_send(&bcbearer->bearer, buf, NULL); 325 bcl->stats.sent_nacks++; 326 spin_unlock_bh(&bc_lock); 327 kfree_skb(buf); 328 329 n_ptr->bclink.oos_state++; 330 } 331 } 332 333 /** 334 * bclink_peek_nack - monitor retransmission requests sent by other nodes 335 * 336 * Delay any upcoming NACK by this node if another node has already 337 * requested the first message this node is going to ask for. 338 * 339 * Only tipc_net_lock set. 340 */ 341 static void bclink_peek_nack(struct tipc_msg *msg) 342 { 343 struct tipc_node *n_ptr = tipc_node_find(msg_destnode(msg)); 344 345 if (unlikely(!n_ptr)) 346 return; 347 348 tipc_node_lock(n_ptr); 349 350 if (n_ptr->bclink.recv_permitted && 351 (n_ptr->bclink.last_in != n_ptr->bclink.last_sent) && 352 (n_ptr->bclink.last_in == msg_bcgap_after(msg))) 353 n_ptr->bclink.oos_state = 2; 354 355 tipc_node_unlock(n_ptr); 356 } 357 358 /* 359 * tipc_bclink_xmit - broadcast a packet to all nodes in cluster 360 */ 361 int tipc_bclink_xmit(struct sk_buff *buf) 362 { 363 int res; 364 365 spin_lock_bh(&bc_lock); 366 367 if (!bclink->bcast_nodes.count) { 368 res = msg_data_sz(buf_msg(buf)); 369 kfree_skb(buf); 370 goto exit; 371 } 372 373 res = __tipc_link_xmit(bcl, buf); 374 if (likely(res >= 0)) { 375 bclink_set_last_sent(); 376 bcl->stats.queue_sz_counts++; 377 bcl->stats.accu_queue_sz += bcl->out_queue_size; 378 } 379 exit: 380 spin_unlock_bh(&bc_lock); 381 return res; 382 } 383 384 /** 385 * bclink_accept_pkt - accept an incoming, in-sequence broadcast packet 386 * 387 * Called with both sending node's lock and bc_lock taken. 388 */ 389 static void bclink_accept_pkt(struct tipc_node *node, u32 seqno) 390 { 391 bclink_update_last_sent(node, seqno); 392 node->bclink.last_in = seqno; 393 node->bclink.oos_state = 0; 394 bcl->stats.recv_info++; 395 396 /* 397 * Unicast an ACK periodically, ensuring that 398 * all nodes in the cluster don't ACK at the same time 399 */ 400 401 if (((seqno - tipc_own_addr) % TIPC_MIN_LINK_WIN) == 0) { 402 tipc_link_proto_xmit(node->active_links[node->addr & 1], 403 STATE_MSG, 0, 0, 0, 0, 0); 404 bcl->stats.sent_acks++; 405 } 406 } 407 408 /** 409 * tipc_bclink_rcv - receive a broadcast packet, and deliver upwards 410 * 411 * tipc_net_lock is read_locked, no other locks set 412 */ 413 void tipc_bclink_rcv(struct sk_buff *buf) 414 { 415 struct tipc_msg *msg = buf_msg(buf); 416 struct tipc_node *node; 417 u32 next_in; 418 u32 seqno; 419 int deferred; 420 421 /* Screen out unwanted broadcast messages */ 422 423 if (msg_mc_netid(msg) != tipc_net_id) 424 goto exit; 425 426 node = tipc_node_find(msg_prevnode(msg)); 427 if (unlikely(!node)) 428 goto exit; 429 430 tipc_node_lock(node); 431 if (unlikely(!node->bclink.recv_permitted)) 432 goto unlock; 433 434 /* Handle broadcast protocol message */ 435 436 if (unlikely(msg_user(msg) == BCAST_PROTOCOL)) { 437 if (msg_type(msg) != STATE_MSG) 438 goto unlock; 439 if (msg_destnode(msg) == tipc_own_addr) { 440 tipc_bclink_acknowledge(node, msg_bcast_ack(msg)); 441 tipc_node_unlock(node); 442 spin_lock_bh(&bc_lock); 443 bcl->stats.recv_nacks++; 444 bclink->retransmit_to = node; 445 bclink_retransmit_pkt(msg_bcgap_after(msg), 446 msg_bcgap_to(msg)); 447 spin_unlock_bh(&bc_lock); 448 } else { 449 tipc_node_unlock(node); 450 bclink_peek_nack(msg); 451 } 452 goto exit; 453 } 454 455 /* Handle in-sequence broadcast message */ 456 457 seqno = msg_seqno(msg); 458 next_in = mod(node->bclink.last_in + 1); 459 460 if (likely(seqno == next_in)) { 461 receive: 462 /* Deliver message to destination */ 463 464 if (likely(msg_isdata(msg))) { 465 spin_lock_bh(&bc_lock); 466 bclink_accept_pkt(node, seqno); 467 spin_unlock_bh(&bc_lock); 468 tipc_node_unlock(node); 469 if (likely(msg_mcast(msg))) 470 tipc_port_mcast_rcv(buf, NULL); 471 else 472 kfree_skb(buf); 473 } else if (msg_user(msg) == MSG_BUNDLER) { 474 spin_lock_bh(&bc_lock); 475 bclink_accept_pkt(node, seqno); 476 bcl->stats.recv_bundles++; 477 bcl->stats.recv_bundled += msg_msgcnt(msg); 478 spin_unlock_bh(&bc_lock); 479 tipc_node_unlock(node); 480 tipc_link_bundle_rcv(buf); 481 } else if (msg_user(msg) == MSG_FRAGMENTER) { 482 int ret; 483 ret = tipc_link_frag_rcv(&node->bclink.reasm_head, 484 &node->bclink.reasm_tail, 485 &buf); 486 if (ret == LINK_REASM_ERROR) 487 goto unlock; 488 spin_lock_bh(&bc_lock); 489 bclink_accept_pkt(node, seqno); 490 bcl->stats.recv_fragments++; 491 if (ret == LINK_REASM_COMPLETE) { 492 bcl->stats.recv_fragmented++; 493 /* Point msg to inner header */ 494 msg = buf_msg(buf); 495 spin_unlock_bh(&bc_lock); 496 goto receive; 497 } 498 spin_unlock_bh(&bc_lock); 499 tipc_node_unlock(node); 500 } else if (msg_user(msg) == NAME_DISTRIBUTOR) { 501 spin_lock_bh(&bc_lock); 502 bclink_accept_pkt(node, seqno); 503 spin_unlock_bh(&bc_lock); 504 tipc_node_unlock(node); 505 tipc_named_rcv(buf); 506 } else { 507 spin_lock_bh(&bc_lock); 508 bclink_accept_pkt(node, seqno); 509 spin_unlock_bh(&bc_lock); 510 tipc_node_unlock(node); 511 kfree_skb(buf); 512 } 513 buf = NULL; 514 515 /* Determine new synchronization state */ 516 517 tipc_node_lock(node); 518 if (unlikely(!tipc_node_is_up(node))) 519 goto unlock; 520 521 if (node->bclink.last_in == node->bclink.last_sent) 522 goto unlock; 523 524 if (!node->bclink.deferred_head) { 525 node->bclink.oos_state = 1; 526 goto unlock; 527 } 528 529 msg = buf_msg(node->bclink.deferred_head); 530 seqno = msg_seqno(msg); 531 next_in = mod(next_in + 1); 532 if (seqno != next_in) 533 goto unlock; 534 535 /* Take in-sequence message from deferred queue & deliver it */ 536 537 buf = node->bclink.deferred_head; 538 node->bclink.deferred_head = buf->next; 539 node->bclink.deferred_size--; 540 goto receive; 541 } 542 543 /* Handle out-of-sequence broadcast message */ 544 545 if (less(next_in, seqno)) { 546 deferred = tipc_link_defer_pkt(&node->bclink.deferred_head, 547 &node->bclink.deferred_tail, 548 buf); 549 node->bclink.deferred_size += deferred; 550 bclink_update_last_sent(node, seqno); 551 buf = NULL; 552 } else 553 deferred = 0; 554 555 spin_lock_bh(&bc_lock); 556 557 if (deferred) 558 bcl->stats.deferred_recv++; 559 else 560 bcl->stats.duplicates++; 561 562 spin_unlock_bh(&bc_lock); 563 564 unlock: 565 tipc_node_unlock(node); 566 exit: 567 kfree_skb(buf); 568 } 569 570 u32 tipc_bclink_acks_missing(struct tipc_node *n_ptr) 571 { 572 return (n_ptr->bclink.recv_permitted && 573 (tipc_bclink_get_last_sent() != n_ptr->bclink.acked)); 574 } 575 576 577 /** 578 * tipc_bcbearer_send - send a packet through the broadcast pseudo-bearer 579 * 580 * Send packet over as many bearers as necessary to reach all nodes 581 * that have joined the broadcast link. 582 * 583 * Returns 0 (packet sent successfully) under all circumstances, 584 * since the broadcast link's pseudo-bearer never blocks 585 */ 586 static int tipc_bcbearer_send(struct sk_buff *buf, struct tipc_bearer *unused1, 587 struct tipc_media_addr *unused2) 588 { 589 int bp_index; 590 591 /* Prepare broadcast link message for reliable transmission, 592 * if first time trying to send it; 593 * preparation is skipped for broadcast link protocol messages 594 * since they are sent in an unreliable manner and don't need it 595 */ 596 if (likely(!msg_non_seq(buf_msg(buf)))) { 597 struct tipc_msg *msg; 598 599 bcbuf_set_acks(buf, bclink->bcast_nodes.count); 600 msg = buf_msg(buf); 601 msg_set_non_seq(msg, 1); 602 msg_set_mc_netid(msg, tipc_net_id); 603 bcl->stats.sent_info++; 604 605 if (WARN_ON(!bclink->bcast_nodes.count)) { 606 dump_stack(); 607 return 0; 608 } 609 } 610 611 /* Send buffer over bearers until all targets reached */ 612 bcbearer->remains = bclink->bcast_nodes; 613 614 for (bp_index = 0; bp_index < MAX_BEARERS; bp_index++) { 615 struct tipc_bearer *p = bcbearer->bpairs[bp_index].primary; 616 struct tipc_bearer *s = bcbearer->bpairs[bp_index].secondary; 617 struct tipc_bearer *b = p; 618 struct sk_buff *tbuf; 619 620 if (!p) 621 break; /* No more bearers to try */ 622 623 tipc_nmap_diff(&bcbearer->remains, &b->nodes, 624 &bcbearer->remains_new); 625 if (bcbearer->remains_new.count == bcbearer->remains.count) 626 continue; /* Nothing added by bearer pair */ 627 628 if (bp_index == 0) { 629 /* Use original buffer for first bearer */ 630 tipc_bearer_send(b, buf, &b->bcast_addr); 631 } else { 632 /* Avoid concurrent buffer access */ 633 tbuf = pskb_copy(buf, GFP_ATOMIC); 634 if (!tbuf) 635 break; 636 tipc_bearer_send(b, tbuf, &b->bcast_addr); 637 kfree_skb(tbuf); /* Bearer keeps a clone */ 638 } 639 640 /* Swap bearers for next packet */ 641 if (s) { 642 bcbearer->bpairs[bp_index].primary = s; 643 bcbearer->bpairs[bp_index].secondary = p; 644 } 645 646 if (bcbearer->remains_new.count == 0) 647 break; /* All targets reached */ 648 649 bcbearer->remains = bcbearer->remains_new; 650 } 651 652 return 0; 653 } 654 655 /** 656 * tipc_bcbearer_sort - create sets of bearer pairs used by broadcast bearer 657 */ 658 void tipc_bcbearer_sort(void) 659 { 660 struct tipc_bcbearer_pair *bp_temp = bcbearer->bpairs_temp; 661 struct tipc_bcbearer_pair *bp_curr; 662 int b_index; 663 int pri; 664 665 spin_lock_bh(&bc_lock); 666 667 /* Group bearers by priority (can assume max of two per priority) */ 668 memset(bp_temp, 0, sizeof(bcbearer->bpairs_temp)); 669 670 for (b_index = 0; b_index < MAX_BEARERS; b_index++) { 671 struct tipc_bearer *b = bearer_list[b_index]; 672 if (!b || !b->nodes.count) 673 continue; 674 675 if (!bp_temp[b->priority].primary) 676 bp_temp[b->priority].primary = b; 677 else 678 bp_temp[b->priority].secondary = b; 679 } 680 681 /* Create array of bearer pairs for broadcasting */ 682 bp_curr = bcbearer->bpairs; 683 memset(bcbearer->bpairs, 0, sizeof(bcbearer->bpairs)); 684 685 for (pri = TIPC_MAX_LINK_PRI; pri >= 0; pri--) { 686 687 if (!bp_temp[pri].primary) 688 continue; 689 690 bp_curr->primary = bp_temp[pri].primary; 691 692 if (bp_temp[pri].secondary) { 693 if (tipc_nmap_equal(&bp_temp[pri].primary->nodes, 694 &bp_temp[pri].secondary->nodes)) { 695 bp_curr->secondary = bp_temp[pri].secondary; 696 } else { 697 bp_curr++; 698 bp_curr->primary = bp_temp[pri].secondary; 699 } 700 } 701 702 bp_curr++; 703 } 704 705 spin_unlock_bh(&bc_lock); 706 } 707 708 709 int tipc_bclink_stats(char *buf, const u32 buf_size) 710 { 711 int ret; 712 struct tipc_stats *s; 713 714 if (!bcl) 715 return 0; 716 717 spin_lock_bh(&bc_lock); 718 719 s = &bcl->stats; 720 721 ret = tipc_snprintf(buf, buf_size, "Link <%s>\n" 722 " Window:%u packets\n", 723 bcl->name, bcl->queue_limit[0]); 724 ret += tipc_snprintf(buf + ret, buf_size - ret, 725 " RX packets:%u fragments:%u/%u bundles:%u/%u\n", 726 s->recv_info, s->recv_fragments, 727 s->recv_fragmented, s->recv_bundles, 728 s->recv_bundled); 729 ret += tipc_snprintf(buf + ret, buf_size - ret, 730 " TX packets:%u fragments:%u/%u bundles:%u/%u\n", 731 s->sent_info, s->sent_fragments, 732 s->sent_fragmented, s->sent_bundles, 733 s->sent_bundled); 734 ret += tipc_snprintf(buf + ret, buf_size - ret, 735 " RX naks:%u defs:%u dups:%u\n", 736 s->recv_nacks, s->deferred_recv, s->duplicates); 737 ret += tipc_snprintf(buf + ret, buf_size - ret, 738 " TX naks:%u acks:%u dups:%u\n", 739 s->sent_nacks, s->sent_acks, s->retransmitted); 740 ret += tipc_snprintf(buf + ret, buf_size - ret, 741 " Congestion link:%u Send queue max:%u avg:%u\n", 742 s->link_congs, s->max_queue_sz, 743 s->queue_sz_counts ? 744 (s->accu_queue_sz / s->queue_sz_counts) : 0); 745 746 spin_unlock_bh(&bc_lock); 747 return ret; 748 } 749 750 int tipc_bclink_reset_stats(void) 751 { 752 if (!bcl) 753 return -ENOPROTOOPT; 754 755 spin_lock_bh(&bc_lock); 756 memset(&bcl->stats, 0, sizeof(bcl->stats)); 757 spin_unlock_bh(&bc_lock); 758 return 0; 759 } 760 761 int tipc_bclink_set_queue_limits(u32 limit) 762 { 763 if (!bcl) 764 return -ENOPROTOOPT; 765 if ((limit < TIPC_MIN_LINK_WIN) || (limit > TIPC_MAX_LINK_WIN)) 766 return -EINVAL; 767 768 spin_lock_bh(&bc_lock); 769 tipc_link_set_queue_limits(bcl, limit); 770 spin_unlock_bh(&bc_lock); 771 return 0; 772 } 773 774 void tipc_bclink_init(void) 775 { 776 bcbearer->bearer.media = &bcbearer->media; 777 bcbearer->media.send_msg = tipc_bcbearer_send; 778 sprintf(bcbearer->media.name, "tipc-broadcast"); 779 780 INIT_LIST_HEAD(&bcl->waiting_ports); 781 bcl->next_out_no = 1; 782 spin_lock_init(&bclink->node.lock); 783 bcl->owner = &bclink->node; 784 bcl->max_pkt = MAX_PKT_DEFAULT_MCAST; 785 tipc_link_set_queue_limits(bcl, BCLINK_WIN_DEFAULT); 786 bcl->b_ptr = &bcbearer->bearer; 787 bearer_list[BCBEARER] = &bcbearer->bearer; 788 bcl->state = WORKING_WORKING; 789 strlcpy(bcl->name, tipc_bclink_name, TIPC_MAX_LINK_NAME); 790 } 791 792 void tipc_bclink_stop(void) 793 { 794 spin_lock_bh(&bc_lock); 795 tipc_link_purge_queues(bcl); 796 spin_unlock_bh(&bc_lock); 797 798 bearer_list[BCBEARER] = NULL; 799 memset(bclink, 0, sizeof(*bclink)); 800 memset(bcbearer, 0, sizeof(*bcbearer)); 801 } 802 803 804 /** 805 * tipc_nmap_add - add a node to a node map 806 */ 807 void tipc_nmap_add(struct tipc_node_map *nm_ptr, u32 node) 808 { 809 int n = tipc_node(node); 810 int w = n / WSIZE; 811 u32 mask = (1 << (n % WSIZE)); 812 813 if ((nm_ptr->map[w] & mask) == 0) { 814 nm_ptr->count++; 815 nm_ptr->map[w] |= mask; 816 } 817 } 818 819 /** 820 * tipc_nmap_remove - remove a node from a node map 821 */ 822 void tipc_nmap_remove(struct tipc_node_map *nm_ptr, u32 node) 823 { 824 int n = tipc_node(node); 825 int w = n / WSIZE; 826 u32 mask = (1 << (n % WSIZE)); 827 828 if ((nm_ptr->map[w] & mask) != 0) { 829 nm_ptr->map[w] &= ~mask; 830 nm_ptr->count--; 831 } 832 } 833 834 /** 835 * tipc_nmap_diff - find differences between node maps 836 * @nm_a: input node map A 837 * @nm_b: input node map B 838 * @nm_diff: output node map A-B (i.e. nodes of A that are not in B) 839 */ 840 static void tipc_nmap_diff(struct tipc_node_map *nm_a, 841 struct tipc_node_map *nm_b, 842 struct tipc_node_map *nm_diff) 843 { 844 int stop = ARRAY_SIZE(nm_a->map); 845 int w; 846 int b; 847 u32 map; 848 849 memset(nm_diff, 0, sizeof(*nm_diff)); 850 for (w = 0; w < stop; w++) { 851 map = nm_a->map[w] ^ (nm_a->map[w] & nm_b->map[w]); 852 nm_diff->map[w] = map; 853 if (map != 0) { 854 for (b = 0 ; b < WSIZE; b++) { 855 if (map & (1 << b)) 856 nm_diff->count++; 857 } 858 } 859 } 860 } 861 862 /** 863 * tipc_port_list_add - add a port to a port list, ensuring no duplicates 864 */ 865 void tipc_port_list_add(struct tipc_port_list *pl_ptr, u32 port) 866 { 867 struct tipc_port_list *item = pl_ptr; 868 int i; 869 int item_sz = PLSIZE; 870 int cnt = pl_ptr->count; 871 872 for (; ; cnt -= item_sz, item = item->next) { 873 if (cnt < PLSIZE) 874 item_sz = cnt; 875 for (i = 0; i < item_sz; i++) 876 if (item->ports[i] == port) 877 return; 878 if (i < PLSIZE) { 879 item->ports[i] = port; 880 pl_ptr->count++; 881 return; 882 } 883 if (!item->next) { 884 item->next = kmalloc(sizeof(*item), GFP_ATOMIC); 885 if (!item->next) { 886 pr_warn("Incomplete multicast delivery, no memory\n"); 887 return; 888 } 889 item->next->next = NULL; 890 } 891 } 892 } 893 894 /** 895 * tipc_port_list_free - free dynamically created entries in port_list chain 896 * 897 */ 898 void tipc_port_list_free(struct tipc_port_list *pl_ptr) 899 { 900 struct tipc_port_list *item; 901 struct tipc_port_list *next; 902 903 for (item = pl_ptr->next; item; item = next) { 904 next = item->next; 905 kfree(item); 906 } 907 } 908