1 // SPDX-License-Identifier: GPL-2.0 2 /* Copyright (C) B.A.T.M.A.N. contributors: 3 * 4 * Linus Lüssing, Marek Lindner 5 */ 6 7 #include "bat_v_elp.h" 8 #include "main.h" 9 10 #include <linux/atomic.h> 11 #include <linux/bitops.h> 12 #include <linux/byteorder/generic.h> 13 #include <linux/container_of.h> 14 #include <linux/errno.h> 15 #include <linux/etherdevice.h> 16 #include <linux/ethtool.h> 17 #include <linux/gfp.h> 18 #include <linux/if_ether.h> 19 #include <linux/jiffies.h> 20 #include <linux/kref.h> 21 #include <linux/list.h> 22 #include <linux/minmax.h> 23 #include <linux/netdevice.h> 24 #include <linux/nl80211.h> 25 #include <linux/random.h> 26 #include <linux/rculist.h> 27 #include <linux/rcupdate.h> 28 #include <linux/rtnetlink.h> 29 #include <linux/skbuff.h> 30 #include <linux/slab.h> 31 #include <linux/stddef.h> 32 #include <linux/string.h> 33 #include <linux/types.h> 34 #include <linux/workqueue.h> 35 #include <net/cfg80211.h> 36 #include <uapi/linux/batadv_packet.h> 37 38 #include "bat_algo.h" 39 #include "bat_v_ogm.h" 40 #include "hard-interface.h" 41 #include "log.h" 42 #include "originator.h" 43 #include "routing.h" 44 #include "send.h" 45 46 /** 47 * struct batadv_v_metric_queue_entry - list of hardif neighbors which require 48 * and metric update 49 */ 50 struct batadv_v_metric_queue_entry { 51 /** @hardif_neigh: hardif neighbor scheduled for metric update */ 52 struct batadv_hardif_neigh_node *hardif_neigh; 53 54 /** @list: list node for metric_queue */ 55 struct list_head list; 56 }; 57 58 /** 59 * batadv_v_elp_start_timer() - restart timer for ELP periodic work 60 * @hard_iface: the interface for which the timer has to be reset 61 */ 62 static void batadv_v_elp_start_timer(struct batadv_hard_iface *hard_iface) 63 { 64 unsigned int msecs; 65 66 msecs = atomic_read(&hard_iface->bat_v.elp_interval) - BATADV_JITTER; 67 msecs += get_random_u32_below(2 * BATADV_JITTER); 68 69 queue_delayed_work(batadv_event_workqueue, &hard_iface->bat_v.elp_wq, 70 msecs_to_jiffies(msecs)); 71 } 72 73 /** 74 * batadv_v_elp_get_throughput() - get the throughput towards a neighbour 75 * @neigh: the neighbour for which the throughput has to be obtained 76 * @pthroughput: calculated throughput towards the given neighbour in multiples 77 * of 100kpbs (a value of '1' equals 0.1Mbps, '10' equals 1Mbps, etc). 78 * 79 * Return: true when value behind @pthroughput was set 80 */ 81 static bool batadv_v_elp_get_throughput(struct batadv_hardif_neigh_node *neigh, 82 u32 *pthroughput) 83 { 84 struct batadv_hard_iface *hard_iface = neigh->if_incoming; 85 struct net_device *mesh_iface = hard_iface->mesh_iface; 86 struct ethtool_link_ksettings link_settings; 87 struct net_device *real_netdev; 88 struct station_info sinfo; 89 u32 throughput; 90 int ret; 91 92 /* don't query throughput when no longer associated with any 93 * batman-adv interface 94 */ 95 if (!mesh_iface) 96 return false; 97 98 /* if the user specified a customised value for this interface, then 99 * return it directly 100 */ 101 throughput = atomic_read(&hard_iface->bat_v.throughput_override); 102 if (throughput != 0) { 103 *pthroughput = throughput; 104 return true; 105 } 106 107 /* if this is a wireless device, then ask its throughput through 108 * cfg80211 API 109 */ 110 if (batadv_is_wifi_hardif(hard_iface)) { 111 if (!batadv_is_cfg80211_hardif(hard_iface)) 112 /* unsupported WiFi driver version */ 113 goto default_throughput; 114 115 real_netdev = batadv_get_real_netdev(hard_iface->net_dev); 116 if (!real_netdev) 117 goto default_throughput; 118 119 ret = cfg80211_get_station(real_netdev, neigh->addr, &sinfo); 120 121 if (!ret) { 122 /* free the TID stats immediately */ 123 cfg80211_sinfo_release_content(&sinfo); 124 } 125 126 dev_put(real_netdev); 127 if (ret == -ENOENT) { 128 /* Node is not associated anymore! It would be 129 * possible to delete this neighbor. For now set 130 * the throughput metric to 0. 131 */ 132 *pthroughput = 0; 133 return true; 134 } 135 if (ret) 136 goto default_throughput; 137 138 if (sinfo.filled & BIT(NL80211_STA_INFO_EXPECTED_THROUGHPUT)) { 139 *pthroughput = sinfo.expected_throughput / 100; 140 return true; 141 } 142 143 /* try to estimate the expected throughput based on reported tx 144 * rates 145 */ 146 if (sinfo.filled & BIT(NL80211_STA_INFO_TX_BITRATE)) { 147 *pthroughput = cfg80211_calculate_bitrate(&sinfo.txrate) / 3; 148 return true; 149 } 150 151 goto default_throughput; 152 } 153 154 /* only use rtnl_trylock because the elp worker will be cancelled while 155 * the rntl_lock is held. the cancel_delayed_work_sync() would otherwise 156 * wait forever when the elp work_item was started and it is then also 157 * trying to rtnl_lock 158 */ 159 if (!rtnl_trylock()) 160 return false; 161 162 /* if not a wifi interface, check if this device provides data via 163 * ethtool (e.g. an Ethernet adapter) 164 */ 165 ret = __ethtool_get_link_ksettings(hard_iface->net_dev, &link_settings); 166 rtnl_unlock(); 167 if (ret == 0) { 168 /* link characteristics might change over time */ 169 if (link_settings.base.duplex == DUPLEX_FULL) 170 hard_iface->bat_v.flags |= BATADV_FULL_DUPLEX; 171 else 172 hard_iface->bat_v.flags &= ~BATADV_FULL_DUPLEX; 173 174 throughput = link_settings.base.speed; 175 if (throughput && throughput != SPEED_UNKNOWN) { 176 *pthroughput = throughput * 10; 177 return true; 178 } 179 } 180 181 default_throughput: 182 if (!(hard_iface->bat_v.flags & BATADV_WARNING_DEFAULT)) { 183 batadv_info(mesh_iface, 184 "WiFi driver or ethtool info does not provide information about link speeds on interface %s, therefore defaulting to hardcoded throughput values of %u.%1u Mbps. Consider overriding the throughput manually or checking your driver.\n", 185 hard_iface->net_dev->name, 186 BATADV_THROUGHPUT_DEFAULT_VALUE / 10, 187 BATADV_THROUGHPUT_DEFAULT_VALUE % 10); 188 hard_iface->bat_v.flags |= BATADV_WARNING_DEFAULT; 189 } 190 191 /* if none of the above cases apply, return the base_throughput */ 192 *pthroughput = BATADV_THROUGHPUT_DEFAULT_VALUE; 193 return true; 194 } 195 196 /** 197 * batadv_v_elp_throughput_metric_update() - worker updating the throughput 198 * metric of a single hop neighbour 199 * @neigh: the neighbour to probe 200 */ 201 static void 202 batadv_v_elp_throughput_metric_update(struct batadv_hardif_neigh_node *neigh) 203 { 204 u32 throughput; 205 bool valid; 206 207 valid = batadv_v_elp_get_throughput(neigh, &throughput); 208 if (!valid) 209 return; 210 211 ewma_throughput_add(&neigh->bat_v.throughput, throughput); 212 } 213 214 /** 215 * batadv_v_elp_wifi_neigh_probe() - send link probing packets to a neighbour 216 * @neigh: the neighbour to probe 217 * 218 * Sends a predefined number of unicast wifi packets to a given neighbour in 219 * order to trigger the throughput estimation on this link by the RC algorithm. 220 * Packets are sent only if there is not enough payload unicast traffic towards 221 * this neighbour.. 222 * 223 * Return: True on success and false in case of error during skb preparation. 224 */ 225 static bool 226 batadv_v_elp_wifi_neigh_probe(struct batadv_hardif_neigh_node *neigh) 227 { 228 struct batadv_hard_iface *hard_iface = neigh->if_incoming; 229 struct batadv_priv *bat_priv = netdev_priv(hard_iface->mesh_iface); 230 unsigned long last_tx_diff; 231 struct sk_buff *skb; 232 int probe_len, i; 233 int elp_skb_len; 234 235 /* this probing routine is for Wifi neighbours only */ 236 if (!batadv_is_wifi_hardif(hard_iface)) 237 return true; 238 239 /* probe the neighbor only if no unicast packets have been sent 240 * to it in the last 100 milliseconds: this is the rate control 241 * algorithm sampling interval (minstrel). In this way, if not 242 * enough traffic has been sent to the neighbor, batman-adv can 243 * generate 2 probe packets and push the RC algorithm to perform 244 * the sampling 245 */ 246 last_tx_diff = jiffies_to_msecs(jiffies - neigh->bat_v.last_unicast_tx); 247 if (last_tx_diff <= BATADV_ELP_PROBE_MAX_TX_DIFF) 248 return true; 249 250 probe_len = max_t(int, sizeof(struct batadv_elp_packet), 251 BATADV_ELP_MIN_PROBE_SIZE); 252 253 for (i = 0; i < BATADV_ELP_PROBES_PER_NODE; i++) { 254 elp_skb_len = hard_iface->bat_v.elp_skb->len; 255 skb = skb_copy_expand(hard_iface->bat_v.elp_skb, 0, 256 probe_len - elp_skb_len, 257 GFP_ATOMIC); 258 if (!skb) 259 return false; 260 261 /* Tell the skb to get as big as the allocated space (we want 262 * the packet to be exactly of that size to make the link 263 * throughput estimation effective. 264 */ 265 skb_put_zero(skb, probe_len - hard_iface->bat_v.elp_skb->len); 266 267 batadv_dbg(BATADV_DBG_BATMAN, bat_priv, 268 "Sending unicast (probe) ELP packet on interface %s to %pM\n", 269 hard_iface->net_dev->name, neigh->addr); 270 271 batadv_send_skb_packet(skb, hard_iface, neigh->addr); 272 } 273 274 return true; 275 } 276 277 /** 278 * batadv_v_elp_periodic_work() - ELP periodic task per interface 279 * @work: work queue item 280 * 281 * Emits broadcast ELP messages in regular intervals. 282 */ 283 static void batadv_v_elp_periodic_work(struct work_struct *work) 284 { 285 struct batadv_v_metric_queue_entry *metric_entry; 286 struct batadv_v_metric_queue_entry *metric_safe; 287 struct batadv_hardif_neigh_node *hardif_neigh; 288 struct batadv_hard_iface *hard_iface; 289 struct batadv_hard_iface_bat_v *bat_v; 290 struct batadv_elp_packet *elp_packet; 291 struct list_head metric_queue; 292 struct batadv_priv *bat_priv; 293 struct sk_buff *skb; 294 u32 elp_interval; 295 296 bat_v = container_of(work, struct batadv_hard_iface_bat_v, elp_wq.work); 297 hard_iface = container_of(bat_v, struct batadv_hard_iface, bat_v); 298 bat_priv = netdev_priv(hard_iface->mesh_iface); 299 300 if (atomic_read(&bat_priv->mesh_state) == BATADV_MESH_DEACTIVATING) 301 goto out; 302 303 /* we are in the process of shutting this interface down */ 304 if (hard_iface->if_status == BATADV_IF_NOT_IN_USE || 305 hard_iface->if_status == BATADV_IF_TO_BE_REMOVED) 306 goto out; 307 308 /* the interface was enabled but may not be ready yet */ 309 if (hard_iface->if_status != BATADV_IF_ACTIVE) 310 goto restart_timer; 311 312 skb = skb_copy(hard_iface->bat_v.elp_skb, GFP_ATOMIC); 313 if (!skb) 314 goto restart_timer; 315 316 elp_packet = (struct batadv_elp_packet *)skb->data; 317 elp_packet->seqno = htonl(atomic_read(&hard_iface->bat_v.elp_seqno)); 318 elp_interval = atomic_read(&hard_iface->bat_v.elp_interval); 319 elp_packet->elp_interval = htonl(elp_interval); 320 321 batadv_dbg(BATADV_DBG_BATMAN, bat_priv, 322 "Sending broadcast ELP packet on interface %s, seqno %u\n", 323 hard_iface->net_dev->name, 324 atomic_read(&hard_iface->bat_v.elp_seqno)); 325 326 batadv_send_broadcast_skb(skb, hard_iface); 327 328 atomic_inc(&hard_iface->bat_v.elp_seqno); 329 330 INIT_LIST_HEAD(&metric_queue); 331 332 /* The throughput metric is updated on each sent packet. This way, if a 333 * node is dead and no longer sends packets, batman-adv is still able to 334 * react timely to its death. 335 * 336 * The throughput metric is updated by following these steps: 337 * 1) if the hard_iface is wifi => send a number of unicast ELPs for 338 * probing/sampling to each neighbor 339 * 2) update the throughput metric value of each neighbor (note that the 340 * value retrieved in this step might be 100ms old because the 341 * probing packets at point 1) could still be in the HW queue) 342 */ 343 rcu_read_lock(); 344 hlist_for_each_entry_rcu(hardif_neigh, &hard_iface->neigh_list, list) { 345 if (!batadv_v_elp_wifi_neigh_probe(hardif_neigh)) 346 /* if something goes wrong while probing, better to stop 347 * sending packets immediately and reschedule the task 348 */ 349 break; 350 351 if (!kref_get_unless_zero(&hardif_neigh->refcount)) 352 continue; 353 354 /* Reading the estimated throughput from cfg80211 is a task that 355 * may sleep and that is not allowed in an rcu protected 356 * context. Therefore add it to metric_queue and process it 357 * outside rcu protected context. 358 */ 359 metric_entry = kzalloc(sizeof(*metric_entry), GFP_ATOMIC); 360 if (!metric_entry) { 361 batadv_hardif_neigh_put(hardif_neigh); 362 continue; 363 } 364 365 metric_entry->hardif_neigh = hardif_neigh; 366 list_add(&metric_entry->list, &metric_queue); 367 } 368 rcu_read_unlock(); 369 370 list_for_each_entry_safe(metric_entry, metric_safe, &metric_queue, list) { 371 batadv_v_elp_throughput_metric_update(metric_entry->hardif_neigh); 372 373 batadv_hardif_neigh_put(metric_entry->hardif_neigh); 374 list_del(&metric_entry->list); 375 kfree(metric_entry); 376 } 377 378 restart_timer: 379 batadv_v_elp_start_timer(hard_iface); 380 out: 381 return; 382 } 383 384 /** 385 * batadv_v_elp_iface_enable() - setup the ELP interface private resources 386 * @hard_iface: interface for which the data has to be prepared 387 * 388 * Return: 0 on success or a -ENOMEM in case of failure. 389 */ 390 int batadv_v_elp_iface_enable(struct batadv_hard_iface *hard_iface) 391 { 392 static const size_t tvlv_padding = sizeof(__be32); 393 struct batadv_elp_packet *elp_packet; 394 unsigned char *elp_buff; 395 u32 random_seqno; 396 size_t size; 397 int res = -ENOMEM; 398 399 size = ETH_HLEN + NET_IP_ALIGN + BATADV_ELP_HLEN + tvlv_padding; 400 hard_iface->bat_v.elp_skb = dev_alloc_skb(size); 401 if (!hard_iface->bat_v.elp_skb) 402 goto out; 403 404 skb_reserve(hard_iface->bat_v.elp_skb, ETH_HLEN + NET_IP_ALIGN); 405 elp_buff = skb_put_zero(hard_iface->bat_v.elp_skb, 406 BATADV_ELP_HLEN + tvlv_padding); 407 elp_packet = (struct batadv_elp_packet *)elp_buff; 408 409 elp_packet->packet_type = BATADV_ELP; 410 elp_packet->version = BATADV_COMPAT_VERSION; 411 412 /* randomize initial seqno to avoid collision */ 413 get_random_bytes(&random_seqno, sizeof(random_seqno)); 414 atomic_set(&hard_iface->bat_v.elp_seqno, random_seqno); 415 416 /* assume full-duplex by default */ 417 hard_iface->bat_v.flags |= BATADV_FULL_DUPLEX; 418 419 /* warn the user (again) if there is no throughput data is available */ 420 hard_iface->bat_v.flags &= ~BATADV_WARNING_DEFAULT; 421 422 if (batadv_is_wifi_hardif(hard_iface)) 423 hard_iface->bat_v.flags &= ~BATADV_FULL_DUPLEX; 424 425 INIT_DELAYED_WORK(&hard_iface->bat_v.elp_wq, 426 batadv_v_elp_periodic_work); 427 batadv_v_elp_start_timer(hard_iface); 428 res = 0; 429 430 out: 431 return res; 432 } 433 434 /** 435 * batadv_v_elp_iface_disable() - release ELP interface private resources 436 * @hard_iface: interface for which the resources have to be released 437 */ 438 void batadv_v_elp_iface_disable(struct batadv_hard_iface *hard_iface) 439 { 440 cancel_delayed_work_sync(&hard_iface->bat_v.elp_wq); 441 442 dev_kfree_skb(hard_iface->bat_v.elp_skb); 443 hard_iface->bat_v.elp_skb = NULL; 444 } 445 446 /** 447 * batadv_v_elp_iface_activate() - update the ELP buffer belonging to the given 448 * hard-interface 449 * @primary_iface: the new primary interface 450 * @hard_iface: interface holding the to-be-updated buffer 451 */ 452 void batadv_v_elp_iface_activate(struct batadv_hard_iface *primary_iface, 453 struct batadv_hard_iface *hard_iface) 454 { 455 struct batadv_elp_packet *elp_packet; 456 struct sk_buff *skb; 457 458 if (!hard_iface->bat_v.elp_skb) 459 return; 460 461 skb = hard_iface->bat_v.elp_skb; 462 elp_packet = (struct batadv_elp_packet *)skb->data; 463 ether_addr_copy(elp_packet->orig, 464 primary_iface->net_dev->dev_addr); 465 } 466 467 /** 468 * batadv_v_elp_primary_iface_set() - change internal data to reflect the new 469 * primary interface 470 * @primary_iface: the new primary interface 471 */ 472 void batadv_v_elp_primary_iface_set(struct batadv_hard_iface *primary_iface) 473 { 474 struct batadv_hard_iface *hard_iface; 475 476 /* update orig field of every elp iface belonging to this mesh */ 477 rcu_read_lock(); 478 list_for_each_entry_rcu(hard_iface, &batadv_hardif_list, list) { 479 if (primary_iface->mesh_iface != hard_iface->mesh_iface) 480 continue; 481 482 batadv_v_elp_iface_activate(primary_iface, hard_iface); 483 } 484 rcu_read_unlock(); 485 } 486 487 /** 488 * batadv_v_elp_neigh_update() - update an ELP neighbour node 489 * @bat_priv: the bat priv with all the mesh interface information 490 * @neigh_addr: the neighbour interface address 491 * @if_incoming: the interface the packet was received through 492 * @elp_packet: the received ELP packet 493 * 494 * Updates the ELP neighbour node state with the data received within the new 495 * ELP packet. 496 */ 497 static void batadv_v_elp_neigh_update(struct batadv_priv *bat_priv, 498 u8 *neigh_addr, 499 struct batadv_hard_iface *if_incoming, 500 struct batadv_elp_packet *elp_packet) 501 502 { 503 struct batadv_neigh_node *neigh; 504 struct batadv_orig_node *orig_neigh; 505 struct batadv_hardif_neigh_node *hardif_neigh; 506 s32 seqno_diff; 507 s32 elp_latest_seqno; 508 509 orig_neigh = batadv_v_ogm_orig_get(bat_priv, elp_packet->orig); 510 if (!orig_neigh) 511 return; 512 513 neigh = batadv_neigh_node_get_or_create(orig_neigh, 514 if_incoming, neigh_addr); 515 if (!neigh) 516 goto orig_free; 517 518 hardif_neigh = batadv_hardif_neigh_get(if_incoming, neigh_addr); 519 if (!hardif_neigh) 520 goto neigh_free; 521 522 elp_latest_seqno = hardif_neigh->bat_v.elp_latest_seqno; 523 seqno_diff = ntohl(elp_packet->seqno) - elp_latest_seqno; 524 525 /* known or older sequence numbers are ignored. However always adopt 526 * if the router seems to have been restarted. 527 */ 528 if (seqno_diff < 1 && seqno_diff > -BATADV_ELP_MAX_AGE) 529 goto hardif_free; 530 531 neigh->last_seen = jiffies; 532 hardif_neigh->last_seen = jiffies; 533 hardif_neigh->bat_v.elp_latest_seqno = ntohl(elp_packet->seqno); 534 hardif_neigh->bat_v.elp_interval = ntohl(elp_packet->elp_interval); 535 536 hardif_free: 537 batadv_hardif_neigh_put(hardif_neigh); 538 neigh_free: 539 batadv_neigh_node_put(neigh); 540 orig_free: 541 batadv_orig_node_put(orig_neigh); 542 } 543 544 /** 545 * batadv_v_elp_packet_recv() - main ELP packet handler 546 * @skb: the received packet 547 * @if_incoming: the interface this packet was received through 548 * 549 * Return: NET_RX_SUCCESS and consumes the skb if the packet was properly 550 * processed or NET_RX_DROP in case of failure. 551 */ 552 int batadv_v_elp_packet_recv(struct sk_buff *skb, 553 struct batadv_hard_iface *if_incoming) 554 { 555 struct batadv_priv *bat_priv = netdev_priv(if_incoming->mesh_iface); 556 struct batadv_elp_packet *elp_packet; 557 struct batadv_hard_iface *primary_if; 558 struct ethhdr *ethhdr; 559 bool res; 560 int ret = NET_RX_DROP; 561 562 res = batadv_check_management_packet(skb, if_incoming, BATADV_ELP_HLEN); 563 if (!res) 564 goto free_skb; 565 566 ethhdr = eth_hdr(skb); 567 if (batadv_is_my_mac(bat_priv, ethhdr->h_source)) 568 goto free_skb; 569 570 /* did we receive a B.A.T.M.A.N. V ELP packet on an interface 571 * that does not have B.A.T.M.A.N. V ELP enabled ? 572 */ 573 if (strcmp(bat_priv->algo_ops->name, "BATMAN_V") != 0) 574 goto free_skb; 575 576 elp_packet = (struct batadv_elp_packet *)skb->data; 577 578 batadv_dbg(BATADV_DBG_BATMAN, bat_priv, 579 "Received ELP packet from %pM seqno %u ORIG: %pM\n", 580 ethhdr->h_source, ntohl(elp_packet->seqno), 581 elp_packet->orig); 582 583 primary_if = batadv_primary_if_get_selected(bat_priv); 584 if (!primary_if) 585 goto free_skb; 586 587 batadv_v_elp_neigh_update(bat_priv, ethhdr->h_source, if_incoming, 588 elp_packet); 589 590 ret = NET_RX_SUCCESS; 591 batadv_hardif_put(primary_if); 592 593 free_skb: 594 if (ret == NET_RX_SUCCESS) 595 consume_skb(skb); 596 else 597 kfree_skb(skb); 598 599 return ret; 600 } 601