1 /* 2 * Copyright (c) 2008 open80211s Ltd. 3 * Author: Luis Carlos Cobo <luisca@cozybit.com> 4 * 5 * This program is free software; you can redistribute it and/or modify 6 * it under the terms of the GNU General Public License version 2 as 7 * published by the Free Software Foundation. 8 */ 9 10 #include <linux/etherdevice.h> 11 #include <linux/list.h> 12 #include <linux/netdevice.h> 13 #include <linux/random.h> 14 #include <linux/spinlock.h> 15 #include <linux/string.h> 16 #include <net/mac80211.h> 17 #include "ieee80211_i.h" 18 #include "mesh.h" 19 20 /* There will be initially 2^INIT_PATHS_SIZE_ORDER buckets */ 21 #define INIT_PATHS_SIZE_ORDER 2 22 23 /* Keep the mean chain length below this constant */ 24 #define MEAN_CHAIN_LEN 2 25 26 #define MPATH_EXPIRED(mpath) ((mpath->flags & MESH_PATH_ACTIVE) && \ 27 time_after(jiffies, mpath->exp_time) && \ 28 !(mpath->flags & MESH_PATH_FIXED)) 29 30 struct mpath_node { 31 struct hlist_node list; 32 struct rcu_head rcu; 33 /* This indirection allows two different tables to point to the same 34 * mesh_path structure, useful when resizing 35 */ 36 struct mesh_path *mpath; 37 }; 38 39 static struct mesh_table *mesh_paths; 40 41 /* This lock will have the grow table function as writer and add / delete nodes 42 * as readers. When reading the table (i.e. doing lookups) we are well protected 43 * by RCU 44 */ 45 static DEFINE_RWLOCK(pathtbl_resize_lock); 46 47 /** 48 * 49 * mesh_path_assign_nexthop - update mesh path next hop 50 * 51 * @mpath: mesh path to update 52 * @sta: next hop to assign 53 * 54 * Locking: mpath->state_lock must be held when calling this function 55 */ 56 void mesh_path_assign_nexthop(struct mesh_path *mpath, struct sta_info *sta) 57 { 58 rcu_assign_pointer(mpath->next_hop, sta); 59 } 60 61 62 /** 63 * mesh_path_lookup - look up a path in the mesh path table 64 * @dst: hardware address (ETH_ALEN length) of destination 65 * @dev: local interface 66 * 67 * Returns: pointer to the mesh path structure, or NULL if not found 68 * 69 * Locking: must be called within a read rcu section. 70 */ 71 struct mesh_path *mesh_path_lookup(u8 *dst, struct net_device *dev) 72 { 73 struct mesh_path *mpath; 74 struct hlist_node *n; 75 struct hlist_head *bucket; 76 struct mesh_table *tbl; 77 struct mpath_node *node; 78 79 tbl = rcu_dereference(mesh_paths); 80 81 bucket = &tbl->hash_buckets[mesh_table_hash(dst, dev, tbl)]; 82 hlist_for_each_entry_rcu(node, n, bucket, list) { 83 mpath = node->mpath; 84 if (mpath->dev == dev && 85 memcmp(dst, mpath->dst, ETH_ALEN) == 0) { 86 if (MPATH_EXPIRED(mpath)) { 87 spin_lock_bh(&mpath->state_lock); 88 if (MPATH_EXPIRED(mpath)) 89 mpath->flags &= ~MESH_PATH_ACTIVE; 90 spin_unlock_bh(&mpath->state_lock); 91 } 92 return mpath; 93 } 94 } 95 return NULL; 96 } 97 98 /** 99 * mesh_path_lookup_by_idx - look up a path in the mesh path table by its index 100 * @idx: index 101 * @dev: local interface, or NULL for all entries 102 * 103 * Returns: pointer to the mesh path structure, or NULL if not found. 104 * 105 * Locking: must be called within a read rcu section. 106 */ 107 struct mesh_path *mesh_path_lookup_by_idx(int idx, struct net_device *dev) 108 { 109 struct mpath_node *node; 110 struct hlist_node *p; 111 int i; 112 int j = 0; 113 114 for_each_mesh_entry(mesh_paths, p, node, i) { 115 if (dev && node->mpath->dev != dev) 116 continue; 117 if (j++ == idx) { 118 if (MPATH_EXPIRED(node->mpath)) { 119 spin_lock_bh(&node->mpath->state_lock); 120 if (MPATH_EXPIRED(node->mpath)) 121 node->mpath->flags &= ~MESH_PATH_ACTIVE; 122 spin_unlock_bh(&node->mpath->state_lock); 123 } 124 return node->mpath; 125 } 126 } 127 128 return NULL; 129 } 130 131 /** 132 * mesh_path_add - allocate and add a new path to the mesh path table 133 * @addr: destination address of the path (ETH_ALEN length) 134 * @dev: local interface 135 * 136 * Returns: 0 on sucess 137 * 138 * State: the initial state of the new path is set to 0 139 */ 140 int mesh_path_add(u8 *dst, struct net_device *dev) 141 { 142 struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev); 143 struct mesh_path *mpath, *new_mpath; 144 struct mpath_node *node, *new_node; 145 struct hlist_head *bucket; 146 struct hlist_node *n; 147 int grow = 0; 148 int err = 0; 149 u32 hash_idx; 150 151 if (memcmp(dst, dev->dev_addr, ETH_ALEN) == 0) 152 /* never add ourselves as neighbours */ 153 return -ENOTSUPP; 154 155 if (is_multicast_ether_addr(dst)) 156 return -ENOTSUPP; 157 158 if (atomic_add_unless(&sdata->u.sta.mpaths, 1, MESH_MAX_MPATHS) == 0) 159 return -ENOSPC; 160 161 err = -ENOMEM; 162 new_mpath = kzalloc(sizeof(struct mesh_path), GFP_KERNEL); 163 if (!new_mpath) 164 goto err_path_alloc; 165 166 new_node = kmalloc(sizeof(struct mpath_node), GFP_KERNEL); 167 if (!new_node) 168 goto err_node_alloc; 169 170 read_lock(&pathtbl_resize_lock); 171 memcpy(new_mpath->dst, dst, ETH_ALEN); 172 new_mpath->dev = dev; 173 new_mpath->flags = 0; 174 skb_queue_head_init(&new_mpath->frame_queue); 175 new_node->mpath = new_mpath; 176 new_mpath->timer.data = (unsigned long) new_mpath; 177 new_mpath->timer.function = mesh_path_timer; 178 new_mpath->exp_time = jiffies; 179 spin_lock_init(&new_mpath->state_lock); 180 init_timer(&new_mpath->timer); 181 182 hash_idx = mesh_table_hash(dst, dev, mesh_paths); 183 bucket = &mesh_paths->hash_buckets[hash_idx]; 184 185 spin_lock(&mesh_paths->hashwlock[hash_idx]); 186 187 err = -EEXIST; 188 hlist_for_each_entry(node, n, bucket, list) { 189 mpath = node->mpath; 190 if (mpath->dev == dev && memcmp(dst, mpath->dst, ETH_ALEN) == 0) 191 goto err_exists; 192 } 193 194 hlist_add_head_rcu(&new_node->list, bucket); 195 if (atomic_inc_return(&mesh_paths->entries) >= 196 mesh_paths->mean_chain_len * (mesh_paths->hash_mask + 1)) 197 grow = 1; 198 199 spin_unlock(&mesh_paths->hashwlock[hash_idx]); 200 read_unlock(&pathtbl_resize_lock); 201 if (grow) { 202 struct mesh_table *oldtbl, *newtbl; 203 204 write_lock(&pathtbl_resize_lock); 205 oldtbl = mesh_paths; 206 newtbl = mesh_table_grow(mesh_paths); 207 if (!newtbl) { 208 write_unlock(&pathtbl_resize_lock); 209 return 0; 210 } 211 rcu_assign_pointer(mesh_paths, newtbl); 212 write_unlock(&pathtbl_resize_lock); 213 214 synchronize_rcu(); 215 mesh_table_free(oldtbl, false); 216 } 217 return 0; 218 219 err_exists: 220 spin_unlock(&mesh_paths->hashwlock[hash_idx]); 221 read_unlock(&pathtbl_resize_lock); 222 kfree(new_node); 223 err_node_alloc: 224 kfree(new_mpath); 225 err_path_alloc: 226 atomic_dec(&sdata->u.sta.mpaths); 227 return err; 228 } 229 230 231 /** 232 * mesh_plink_broken - deactivates paths and sends perr when a link breaks 233 * 234 * @sta: broken peer link 235 * 236 * This function must be called from the rate control algorithm if enough 237 * delivery errors suggest that a peer link is no longer usable. 238 */ 239 void mesh_plink_broken(struct sta_info *sta) 240 { 241 struct mesh_path *mpath; 242 struct mpath_node *node; 243 struct hlist_node *p; 244 struct net_device *dev = sta->sdata->dev; 245 int i; 246 247 rcu_read_lock(); 248 for_each_mesh_entry(mesh_paths, p, node, i) { 249 mpath = node->mpath; 250 spin_lock_bh(&mpath->state_lock); 251 if (mpath->next_hop == sta && 252 mpath->flags & MESH_PATH_ACTIVE && 253 !(mpath->flags & MESH_PATH_FIXED)) { 254 mpath->flags &= ~MESH_PATH_ACTIVE; 255 ++mpath->dsn; 256 spin_unlock_bh(&mpath->state_lock); 257 mesh_path_error_tx(mpath->dst, 258 cpu_to_le32(mpath->dsn), 259 dev->broadcast, dev); 260 } else 261 spin_unlock_bh(&mpath->state_lock); 262 } 263 rcu_read_unlock(); 264 } 265 266 /** 267 * mesh_path_flush_by_nexthop - Deletes mesh paths if their next hop matches 268 * 269 * @sta - mesh peer to match 270 * 271 * RCU notes: this function is called when a mesh plink transitions from 272 * PLINK_ESTAB to any other state, since PLINK_ESTAB state is the only one that 273 * allows path creation. This will happen before the sta can be freed (because 274 * sta_info_destroy() calls this) so any reader in a rcu read block will be 275 * protected against the plink disappearing. 276 */ 277 void mesh_path_flush_by_nexthop(struct sta_info *sta) 278 { 279 struct mesh_path *mpath; 280 struct mpath_node *node; 281 struct hlist_node *p; 282 int i; 283 284 for_each_mesh_entry(mesh_paths, p, node, i) { 285 mpath = node->mpath; 286 if (mpath->next_hop == sta) 287 mesh_path_del(mpath->dst, mpath->dev); 288 } 289 } 290 291 void mesh_path_flush(struct net_device *dev) 292 { 293 struct mesh_path *mpath; 294 struct mpath_node *node; 295 struct hlist_node *p; 296 int i; 297 298 for_each_mesh_entry(mesh_paths, p, node, i) { 299 mpath = node->mpath; 300 if (mpath->dev == dev) 301 mesh_path_del(mpath->dst, mpath->dev); 302 } 303 } 304 305 static void mesh_path_node_reclaim(struct rcu_head *rp) 306 { 307 struct mpath_node *node = container_of(rp, struct mpath_node, rcu); 308 struct ieee80211_sub_if_data *sdata = 309 IEEE80211_DEV_TO_SUB_IF(node->mpath->dev); 310 311 del_timer_sync(&node->mpath->timer); 312 atomic_dec(&sdata->u.sta.mpaths); 313 kfree(node->mpath); 314 kfree(node); 315 } 316 317 /** 318 * mesh_path_del - delete a mesh path from the table 319 * 320 * @addr: dst address (ETH_ALEN length) 321 * @dev: local interface 322 * 323 * Returns: 0 if succesful 324 */ 325 int mesh_path_del(u8 *addr, struct net_device *dev) 326 { 327 struct mesh_path *mpath; 328 struct mpath_node *node; 329 struct hlist_head *bucket; 330 struct hlist_node *n; 331 int hash_idx; 332 int err = 0; 333 334 read_lock(&pathtbl_resize_lock); 335 hash_idx = mesh_table_hash(addr, dev, mesh_paths); 336 bucket = &mesh_paths->hash_buckets[hash_idx]; 337 338 spin_lock(&mesh_paths->hashwlock[hash_idx]); 339 hlist_for_each_entry(node, n, bucket, list) { 340 mpath = node->mpath; 341 if (mpath->dev == dev && 342 memcmp(addr, mpath->dst, ETH_ALEN) == 0) { 343 spin_lock_bh(&mpath->state_lock); 344 mpath->flags |= MESH_PATH_RESOLVING; 345 hlist_del_rcu(&node->list); 346 call_rcu(&node->rcu, mesh_path_node_reclaim); 347 atomic_dec(&mesh_paths->entries); 348 spin_unlock_bh(&mpath->state_lock); 349 goto enddel; 350 } 351 } 352 353 err = -ENXIO; 354 enddel: 355 spin_unlock(&mesh_paths->hashwlock[hash_idx]); 356 read_unlock(&pathtbl_resize_lock); 357 return err; 358 } 359 360 /** 361 * mesh_path_tx_pending - sends pending frames in a mesh path queue 362 * 363 * @mpath: mesh path to activate 364 * 365 * Locking: the state_lock of the mpath structure must NOT be held when calling 366 * this function. 367 */ 368 void mesh_path_tx_pending(struct mesh_path *mpath) 369 { 370 struct sk_buff *skb; 371 372 while ((skb = skb_dequeue(&mpath->frame_queue)) && 373 (mpath->flags & MESH_PATH_ACTIVE)) 374 dev_queue_xmit(skb); 375 } 376 377 /** 378 * mesh_path_discard_frame - discard a frame whose path could not be resolved 379 * 380 * @skb: frame to discard 381 * @dev: network device the frame was to be sent through 382 * 383 * If the frame was beign forwarded from another MP, a PERR frame will be sent 384 * to the precursor. 385 * 386 * Locking: the function must me called within a rcu_read_lock region 387 */ 388 void mesh_path_discard_frame(struct sk_buff *skb, struct net_device *dev) 389 { 390 struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev); 391 struct ieee80211_hdr *hdr = (struct ieee80211_hdr *) skb->data; 392 struct mesh_path *mpath; 393 u32 dsn = 0; 394 395 if (memcmp(hdr->addr4, dev->dev_addr, ETH_ALEN) != 0) { 396 u8 *ra, *da; 397 398 da = hdr->addr3; 399 ra = hdr->addr2; 400 mpath = mesh_path_lookup(da, dev); 401 if (mpath) 402 dsn = ++mpath->dsn; 403 mesh_path_error_tx(skb->data, cpu_to_le32(dsn), ra, dev); 404 } 405 406 kfree_skb(skb); 407 sdata->u.sta.mshstats.dropped_frames_no_route++; 408 } 409 410 /** 411 * mesh_path_flush_pending - free the pending queue of a mesh path 412 * 413 * @mpath: mesh path whose queue has to be freed 414 * 415 * Locking: the function must me called withing a rcu_read_lock region 416 */ 417 void mesh_path_flush_pending(struct mesh_path *mpath) 418 { 419 struct ieee80211_sub_if_data *sdata; 420 struct sk_buff *skb; 421 422 sdata = IEEE80211_DEV_TO_SUB_IF(mpath->dev); 423 424 while ((skb = skb_dequeue(&mpath->frame_queue)) && 425 (mpath->flags & MESH_PATH_ACTIVE)) 426 mesh_path_discard_frame(skb, mpath->dev); 427 } 428 429 /** 430 * mesh_path_fix_nexthop - force a specific next hop for a mesh path 431 * 432 * @mpath: the mesh path to modify 433 * @next_hop: the next hop to force 434 * 435 * Locking: this function must be called holding mpath->state_lock 436 */ 437 void mesh_path_fix_nexthop(struct mesh_path *mpath, struct sta_info *next_hop) 438 { 439 spin_lock_bh(&mpath->state_lock); 440 mesh_path_assign_nexthop(mpath, next_hop); 441 mpath->dsn = 0xffff; 442 mpath->metric = 0; 443 mpath->hop_count = 0; 444 mpath->exp_time = 0; 445 mpath->flags |= MESH_PATH_FIXED; 446 mesh_path_activate(mpath); 447 spin_unlock_bh(&mpath->state_lock); 448 mesh_path_tx_pending(mpath); 449 } 450 451 static void mesh_path_node_free(struct hlist_node *p, bool free_leafs) 452 { 453 struct mesh_path *mpath; 454 struct mpath_node *node = hlist_entry(p, struct mpath_node, list); 455 mpath = node->mpath; 456 hlist_del_rcu(p); 457 if (free_leafs) 458 kfree(mpath); 459 kfree(node); 460 } 461 462 static int mesh_path_node_copy(struct hlist_node *p, struct mesh_table *newtbl) 463 { 464 struct mesh_path *mpath; 465 struct mpath_node *node, *new_node; 466 u32 hash_idx; 467 468 new_node = kmalloc(sizeof(struct mpath_node), GFP_ATOMIC); 469 if (new_node == NULL) 470 return -ENOMEM; 471 472 node = hlist_entry(p, struct mpath_node, list); 473 mpath = node->mpath; 474 new_node->mpath = mpath; 475 hash_idx = mesh_table_hash(mpath->dst, mpath->dev, newtbl); 476 hlist_add_head(&new_node->list, 477 &newtbl->hash_buckets[hash_idx]); 478 return 0; 479 } 480 481 int mesh_pathtbl_init(void) 482 { 483 mesh_paths = mesh_table_alloc(INIT_PATHS_SIZE_ORDER); 484 mesh_paths->free_node = &mesh_path_node_free; 485 mesh_paths->copy_node = &mesh_path_node_copy; 486 mesh_paths->mean_chain_len = MEAN_CHAIN_LEN; 487 if (!mesh_paths) 488 return -ENOMEM; 489 return 0; 490 } 491 492 void mesh_path_expire(struct net_device *dev) 493 { 494 struct mesh_path *mpath; 495 struct mpath_node *node; 496 struct hlist_node *p; 497 int i; 498 499 read_lock(&pathtbl_resize_lock); 500 for_each_mesh_entry(mesh_paths, p, node, i) { 501 if (node->mpath->dev != dev) 502 continue; 503 mpath = node->mpath; 504 spin_lock_bh(&mpath->state_lock); 505 if ((!(mpath->flags & MESH_PATH_RESOLVING)) && 506 (!(mpath->flags & MESH_PATH_FIXED)) && 507 time_after(jiffies, 508 mpath->exp_time + MESH_PATH_EXPIRE)) { 509 spin_unlock_bh(&mpath->state_lock); 510 mesh_path_del(mpath->dst, mpath->dev); 511 } else 512 spin_unlock_bh(&mpath->state_lock); 513 } 514 read_unlock(&pathtbl_resize_lock); 515 } 516 517 void mesh_pathtbl_unregister(void) 518 { 519 mesh_table_free(mesh_paths, true); 520 } 521