rx.c 11 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (C) 2007-2012 Siemens AG
  4. *
  5. * Written by:
  6. * Pavel Smolenskiy <pavel.smolenskiy@gmail.com>
  7. * Maxim Gorbachyov <maxim.gorbachev@siemens.com>
  8. * Dmitry Eremin-Solenikov <dbaryshkov@gmail.com>
  9. * Alexander Smirnov <alex.bluesman.smirnov@gmail.com>
  10. */
  11. #include <linux/kernel.h>
  12. #include <linux/module.h>
  13. #include <linux/netdevice.h>
  14. #include <linux/crc-ccitt.h>
  15. #include <linux/unaligned.h>
  16. #include <net/mac802154.h>
  17. #include <net/ieee802154_netdev.h>
  18. #include <net/nl802154.h>
  19. #include "ieee802154_i.h"
  20. static int ieee802154_deliver_skb(struct sk_buff *skb)
  21. {
  22. skb->ip_summed = CHECKSUM_UNNECESSARY;
  23. skb->protocol = htons(ETH_P_IEEE802154);
  24. return netif_receive_skb(skb);
  25. }
  26. void mac802154_rx_beacon_worker(struct work_struct *work)
  27. {
  28. struct ieee802154_local *local =
  29. container_of(work, struct ieee802154_local, rx_beacon_work);
  30. struct cfg802154_mac_pkt *mac_pkt;
  31. mac_pkt = list_first_entry_or_null(&local->rx_beacon_list,
  32. struct cfg802154_mac_pkt, node);
  33. if (!mac_pkt)
  34. return;
  35. mac802154_process_beacon(local, mac_pkt->skb, mac_pkt->page, mac_pkt->channel);
  36. list_del(&mac_pkt->node);
  37. kfree_skb(mac_pkt->skb);
  38. kfree(mac_pkt);
  39. }
  40. static bool mac802154_should_answer_beacon_req(struct ieee802154_local *local)
  41. {
  42. struct cfg802154_beacon_request *beacon_req;
  43. unsigned int interval;
  44. rcu_read_lock();
  45. beacon_req = rcu_dereference(local->beacon_req);
  46. if (!beacon_req) {
  47. rcu_read_unlock();
  48. return false;
  49. }
  50. interval = beacon_req->interval;
  51. rcu_read_unlock();
  52. if (!mac802154_is_beaconing(local))
  53. return false;
  54. return interval == IEEE802154_ACTIVE_SCAN_DURATION;
  55. }
  56. void mac802154_rx_mac_cmd_worker(struct work_struct *work)
  57. {
  58. struct ieee802154_local *local =
  59. container_of(work, struct ieee802154_local, rx_mac_cmd_work);
  60. struct cfg802154_mac_pkt *mac_pkt;
  61. u8 mac_cmd;
  62. int rc;
  63. mac_pkt = list_first_entry_or_null(&local->rx_mac_cmd_list,
  64. struct cfg802154_mac_pkt, node);
  65. if (!mac_pkt)
  66. return;
  67. rc = ieee802154_get_mac_cmd(mac_pkt->skb, &mac_cmd);
  68. if (rc)
  69. goto out;
  70. switch (mac_cmd) {
  71. case IEEE802154_CMD_BEACON_REQ:
  72. dev_dbg(&mac_pkt->sdata->dev->dev, "processing BEACON REQ\n");
  73. if (!mac802154_should_answer_beacon_req(local))
  74. break;
  75. queue_delayed_work(local->mac_wq, &local->beacon_work, 0);
  76. break;
  77. case IEEE802154_CMD_ASSOCIATION_RESP:
  78. dev_dbg(&mac_pkt->sdata->dev->dev, "processing ASSOC RESP\n");
  79. if (!mac802154_is_associating(local))
  80. break;
  81. mac802154_process_association_resp(mac_pkt->sdata, mac_pkt->skb);
  82. break;
  83. case IEEE802154_CMD_ASSOCIATION_REQ:
  84. dev_dbg(&mac_pkt->sdata->dev->dev, "processing ASSOC REQ\n");
  85. if (mac_pkt->sdata->wpan_dev.iftype != NL802154_IFTYPE_COORD)
  86. break;
  87. mac802154_process_association_req(mac_pkt->sdata, mac_pkt->skb);
  88. break;
  89. case IEEE802154_CMD_DISASSOCIATION_NOTIFY:
  90. dev_dbg(&mac_pkt->sdata->dev->dev, "processing DISASSOC NOTIF\n");
  91. if (mac_pkt->sdata->wpan_dev.iftype != NL802154_IFTYPE_COORD)
  92. break;
  93. mac802154_process_disassociation_notif(mac_pkt->sdata, mac_pkt->skb);
  94. break;
  95. default:
  96. break;
  97. }
  98. out:
  99. list_del(&mac_pkt->node);
  100. kfree_skb(mac_pkt->skb);
  101. kfree(mac_pkt);
  102. }
  103. static int
  104. ieee802154_subif_frame(struct ieee802154_sub_if_data *sdata,
  105. struct sk_buff *skb, const struct ieee802154_hdr *hdr)
  106. {
  107. struct wpan_phy *wpan_phy = sdata->local->hw.phy;
  108. struct wpan_dev *wpan_dev = &sdata->wpan_dev;
  109. struct cfg802154_mac_pkt *mac_pkt;
  110. __le16 span, sshort;
  111. int rc;
  112. pr_debug("getting packet via slave interface %s\n", sdata->dev->name);
  113. span = wpan_dev->pan_id;
  114. sshort = wpan_dev->short_addr;
  115. /* Level 3 filtering: Only beacons are accepted during scans */
  116. if (sdata->required_filtering == IEEE802154_FILTERING_3_SCAN &&
  117. sdata->required_filtering > wpan_phy->filtering) {
  118. if (mac_cb(skb)->type != IEEE802154_FC_TYPE_BEACON) {
  119. dev_dbg(&sdata->dev->dev,
  120. "drop non-beacon frame (0x%x) during scan\n",
  121. mac_cb(skb)->type);
  122. goto fail;
  123. }
  124. }
  125. switch (mac_cb(skb)->dest.mode) {
  126. case IEEE802154_ADDR_NONE:
  127. if (hdr->source.mode == IEEE802154_ADDR_NONE)
  128. /* ACK comes with both addresses empty */
  129. skb->pkt_type = PACKET_HOST;
  130. else if (!wpan_dev->parent)
  131. /* No dest means PAN coordinator is the recipient */
  132. skb->pkt_type = PACKET_HOST;
  133. else
  134. /* We are not the PAN coordinator, just relaying */
  135. skb->pkt_type = PACKET_OTHERHOST;
  136. break;
  137. case IEEE802154_ADDR_LONG:
  138. if (mac_cb(skb)->dest.pan_id != span &&
  139. mac_cb(skb)->dest.pan_id != cpu_to_le16(IEEE802154_PANID_BROADCAST))
  140. skb->pkt_type = PACKET_OTHERHOST;
  141. else if (mac_cb(skb)->dest.extended_addr == wpan_dev->extended_addr)
  142. skb->pkt_type = PACKET_HOST;
  143. else
  144. skb->pkt_type = PACKET_OTHERHOST;
  145. break;
  146. case IEEE802154_ADDR_SHORT:
  147. if (mac_cb(skb)->dest.pan_id != span &&
  148. mac_cb(skb)->dest.pan_id != cpu_to_le16(IEEE802154_PANID_BROADCAST))
  149. skb->pkt_type = PACKET_OTHERHOST;
  150. else if (mac_cb(skb)->dest.short_addr == sshort)
  151. skb->pkt_type = PACKET_HOST;
  152. else if (mac_cb(skb)->dest.short_addr ==
  153. cpu_to_le16(IEEE802154_ADDR_BROADCAST))
  154. skb->pkt_type = PACKET_BROADCAST;
  155. else
  156. skb->pkt_type = PACKET_OTHERHOST;
  157. break;
  158. default:
  159. pr_debug("invalid dest mode\n");
  160. goto fail;
  161. }
  162. skb->dev = sdata->dev;
  163. /* TODO this should be moved after netif_receive_skb call, otherwise
  164. * wireshark will show a mac header with security fields and the
  165. * payload is already decrypted.
  166. */
  167. rc = mac802154_llsec_decrypt(&sdata->sec, skb);
  168. if (rc) {
  169. pr_debug("decryption failed: %i\n", rc);
  170. goto fail;
  171. }
  172. sdata->dev->stats.rx_packets++;
  173. sdata->dev->stats.rx_bytes += skb->len;
  174. switch (mac_cb(skb)->type) {
  175. case IEEE802154_FC_TYPE_BEACON:
  176. dev_dbg(&sdata->dev->dev, "BEACON received\n");
  177. if (!mac802154_is_scanning(sdata->local))
  178. goto fail;
  179. mac_pkt = kzalloc(sizeof(*mac_pkt), GFP_ATOMIC);
  180. if (!mac_pkt)
  181. goto fail;
  182. mac_pkt->skb = skb_get(skb);
  183. mac_pkt->sdata = sdata;
  184. mac_pkt->page = sdata->local->scan_page;
  185. mac_pkt->channel = sdata->local->scan_channel;
  186. list_add_tail(&mac_pkt->node, &sdata->local->rx_beacon_list);
  187. queue_work(sdata->local->mac_wq, &sdata->local->rx_beacon_work);
  188. return NET_RX_SUCCESS;
  189. case IEEE802154_FC_TYPE_MAC_CMD:
  190. dev_dbg(&sdata->dev->dev, "MAC COMMAND received\n");
  191. mac_pkt = kzalloc(sizeof(*mac_pkt), GFP_ATOMIC);
  192. if (!mac_pkt)
  193. goto fail;
  194. mac_pkt->skb = skb_get(skb);
  195. mac_pkt->sdata = sdata;
  196. list_add_tail(&mac_pkt->node, &sdata->local->rx_mac_cmd_list);
  197. queue_work(sdata->local->mac_wq, &sdata->local->rx_mac_cmd_work);
  198. return NET_RX_SUCCESS;
  199. case IEEE802154_FC_TYPE_ACK:
  200. goto fail;
  201. case IEEE802154_FC_TYPE_DATA:
  202. return ieee802154_deliver_skb(skb);
  203. default:
  204. pr_warn_ratelimited("ieee802154: bad frame received "
  205. "(type = %d)\n", mac_cb(skb)->type);
  206. goto fail;
  207. }
  208. fail:
  209. kfree_skb(skb);
  210. return NET_RX_DROP;
  211. }
  212. static void
  213. ieee802154_print_addr(const char *name, const struct ieee802154_addr *addr)
  214. {
  215. if (addr->mode == IEEE802154_ADDR_NONE) {
  216. pr_debug("%s not present\n", name);
  217. return;
  218. }
  219. pr_debug("%s PAN ID: %04x\n", name, le16_to_cpu(addr->pan_id));
  220. if (addr->mode == IEEE802154_ADDR_SHORT) {
  221. pr_debug("%s is short: %04x\n", name,
  222. le16_to_cpu(addr->short_addr));
  223. } else {
  224. u64 hw = swab64((__force u64)addr->extended_addr);
  225. pr_debug("%s is hardware: %8phC\n", name, &hw);
  226. }
  227. }
  228. static int
  229. ieee802154_parse_frame_start(struct sk_buff *skb, struct ieee802154_hdr *hdr)
  230. {
  231. int hlen;
  232. struct ieee802154_mac_cb *cb = mac_cb(skb);
  233. skb_reset_mac_header(skb);
  234. hlen = ieee802154_hdr_pull(skb, hdr);
  235. if (hlen < 0)
  236. return -EINVAL;
  237. skb->mac_len = hlen;
  238. pr_debug("fc: %04x dsn: %02x\n", le16_to_cpup((__le16 *)&hdr->fc),
  239. hdr->seq);
  240. cb->type = hdr->fc.type;
  241. cb->ackreq = hdr->fc.ack_request;
  242. cb->secen = hdr->fc.security_enabled;
  243. ieee802154_print_addr("destination", &hdr->dest);
  244. ieee802154_print_addr("source", &hdr->source);
  245. cb->source = hdr->source;
  246. cb->dest = hdr->dest;
  247. if (hdr->fc.security_enabled) {
  248. u64 key;
  249. pr_debug("seclevel %i\n", hdr->sec.level);
  250. switch (hdr->sec.key_id_mode) {
  251. case IEEE802154_SCF_KEY_IMPLICIT:
  252. pr_debug("implicit key\n");
  253. break;
  254. case IEEE802154_SCF_KEY_INDEX:
  255. pr_debug("key %02x\n", hdr->sec.key_id);
  256. break;
  257. case IEEE802154_SCF_KEY_SHORT_INDEX:
  258. pr_debug("key %04x:%04x %02x\n",
  259. le32_to_cpu(hdr->sec.short_src) >> 16,
  260. le32_to_cpu(hdr->sec.short_src) & 0xffff,
  261. hdr->sec.key_id);
  262. break;
  263. case IEEE802154_SCF_KEY_HW_INDEX:
  264. key = swab64((__force u64)hdr->sec.extended_src);
  265. pr_debug("key source %8phC %02x\n", &key,
  266. hdr->sec.key_id);
  267. break;
  268. }
  269. }
  270. return 0;
  271. }
  272. static void
  273. __ieee802154_rx_handle_packet(struct ieee802154_local *local,
  274. struct sk_buff *skb)
  275. {
  276. int ret;
  277. struct ieee802154_sub_if_data *sdata;
  278. struct ieee802154_hdr hdr;
  279. struct sk_buff *skb2;
  280. ret = ieee802154_parse_frame_start(skb, &hdr);
  281. if (ret) {
  282. pr_debug("got invalid frame\n");
  283. return;
  284. }
  285. list_for_each_entry_rcu(sdata, &local->interfaces, list) {
  286. if (sdata->wpan_dev.iftype == NL802154_IFTYPE_MONITOR)
  287. continue;
  288. if (!ieee802154_sdata_running(sdata))
  289. continue;
  290. /* Do not deliver packets received on interfaces expecting
  291. * AACK=1 if the address filters where disabled.
  292. */
  293. if (local->hw.phy->filtering < IEEE802154_FILTERING_4_FRAME_FIELDS &&
  294. sdata->required_filtering == IEEE802154_FILTERING_4_FRAME_FIELDS)
  295. continue;
  296. skb2 = skb_clone(skb, GFP_ATOMIC);
  297. if (skb2) {
  298. skb2->dev = sdata->dev;
  299. ieee802154_subif_frame(sdata, skb2, &hdr);
  300. }
  301. }
  302. }
  303. static void
  304. ieee802154_monitors_rx(struct ieee802154_local *local, struct sk_buff *skb)
  305. {
  306. struct sk_buff *skb2;
  307. struct ieee802154_sub_if_data *sdata;
  308. skb_reset_mac_header(skb);
  309. skb->ip_summed = CHECKSUM_UNNECESSARY;
  310. skb->pkt_type = PACKET_OTHERHOST;
  311. skb->protocol = htons(ETH_P_IEEE802154);
  312. list_for_each_entry_rcu(sdata, &local->interfaces, list) {
  313. if (sdata->wpan_dev.iftype != NL802154_IFTYPE_MONITOR)
  314. continue;
  315. if (!ieee802154_sdata_running(sdata))
  316. continue;
  317. skb2 = skb_clone(skb, GFP_ATOMIC);
  318. if (skb2) {
  319. skb2->dev = sdata->dev;
  320. ieee802154_deliver_skb(skb2);
  321. sdata->dev->stats.rx_packets++;
  322. sdata->dev->stats.rx_bytes += skb->len;
  323. }
  324. }
  325. }
  326. void ieee802154_rx(struct ieee802154_local *local, struct sk_buff *skb)
  327. {
  328. u16 crc;
  329. WARN_ON_ONCE(softirq_count() == 0);
  330. if (local->suspended)
  331. goto free_skb;
  332. /* TODO: When a transceiver omits the checksum here, we
  333. * add an own calculated one. This is currently an ugly
  334. * solution because the monitor needs a crc here.
  335. */
  336. if (local->hw.flags & IEEE802154_HW_RX_OMIT_CKSUM) {
  337. crc = crc_ccitt(0, skb->data, skb->len);
  338. put_unaligned_le16(crc, skb_put(skb, 2));
  339. }
  340. rcu_read_lock();
  341. ieee802154_monitors_rx(local, skb);
  342. /* Level 1 filtering: Check the FCS by software when relevant */
  343. if (local->hw.phy->filtering == IEEE802154_FILTERING_NONE) {
  344. crc = crc_ccitt(0, skb->data, skb->len);
  345. if (crc)
  346. goto drop;
  347. }
  348. /* remove crc */
  349. skb_trim(skb, skb->len - 2);
  350. __ieee802154_rx_handle_packet(local, skb);
  351. drop:
  352. rcu_read_unlock();
  353. free_skb:
  354. kfree_skb(skb);
  355. }
  356. void
  357. ieee802154_rx_irqsafe(struct ieee802154_hw *hw, struct sk_buff *skb, u8 lqi)
  358. {
  359. struct ieee802154_local *local = hw_to_local(hw);
  360. struct ieee802154_mac_cb *cb = mac_cb_init(skb);
  361. cb->lqi = lqi;
  362. skb->pkt_type = IEEE802154_RX_MSG;
  363. skb_queue_tail(&local->skb_queue, skb);
  364. tasklet_schedule(&local->tasklet);
  365. }
  366. EXPORT_SYMBOL(ieee802154_rx_irqsafe);