6lowpan.c 33 KB

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  1. /*
  2. * Copyright 2011, Siemens AG
  3. * written by Alexander Smirnov <alex.bluesman.smirnov@gmail.com>
  4. */
  5. /*
  6. * Based on patches from Jon Smirl <jonsmirl@gmail.com>
  7. * Copyright (c) 2011 Jon Smirl <jonsmirl@gmail.com>
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License version 2
  11. * as published by the Free Software Foundation.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License along
  19. * with this program; if not, write to the Free Software Foundation, Inc.,
  20. * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
  21. */
  22. /* Jon's code is based on 6lowpan implementation for Contiki which is:
  23. * Copyright (c) 2008, Swedish Institute of Computer Science.
  24. * All rights reserved.
  25. *
  26. * Redistribution and use in source and binary forms, with or without
  27. * modification, are permitted provided that the following conditions
  28. * are met:
  29. * 1. Redistributions of source code must retain the above copyright
  30. * notice, this list of conditions and the following disclaimer.
  31. * 2. Redistributions in binary form must reproduce the above copyright
  32. * notice, this list of conditions and the following disclaimer in the
  33. * documentation and/or other materials provided with the distribution.
  34. * 3. Neither the name of the Institute nor the names of its contributors
  35. * may be used to endorse or promote products derived from this software
  36. * without specific prior written permission.
  37. *
  38. * THIS SOFTWARE IS PROVIDED BY THE INSTITUTE AND CONTRIBUTORS ``AS IS'' AND
  39. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  40. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  41. * ARE DISCLAIMED. IN NO EVENT SHALL THE INSTITUTE OR CONTRIBUTORS BE LIABLE
  42. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  43. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  44. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  45. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  46. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
  47. * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
  48. * SUCH DAMAGE.
  49. */
  50. #include <linux/bitops.h>
  51. #include <linux/if_arp.h>
  52. #include <linux/module.h>
  53. #include <linux/moduleparam.h>
  54. #include <linux/netdevice.h>
  55. #include <net/af_ieee802154.h>
  56. #include <net/ieee802154.h>
  57. #include <net/ieee802154_netdev.h>
  58. #include <net/ipv6.h>
  59. #include "6lowpan.h"
  60. /* TTL uncompression values */
  61. static const u8 lowpan_ttl_values[] = {0, 1, 64, 255};
  62. static LIST_HEAD(lowpan_devices);
  63. /*
  64. * Uncompression of linklocal:
  65. * 0 -> 16 bytes from packet
  66. * 1 -> 2 bytes from prefix - bunch of zeroes and 8 from packet
  67. * 2 -> 2 bytes from prefix - zeroes + 2 from packet
  68. * 3 -> 2 bytes from prefix - infer 8 bytes from lladdr
  69. *
  70. * NOTE: => the uncompress function does change 0xf to 0x10
  71. * NOTE: 0x00 => no-autoconfig => unspecified
  72. */
  73. static const u8 lowpan_unc_llconf[] = {0x0f, 0x28, 0x22, 0x20};
  74. /*
  75. * Uncompression of ctx-based:
  76. * 0 -> 0 bits from packet [unspecified / reserved]
  77. * 1 -> 8 bytes from prefix - bunch of zeroes and 8 from packet
  78. * 2 -> 8 bytes from prefix - zeroes + 2 from packet
  79. * 3 -> 8 bytes from prefix - infer 8 bytes from lladdr
  80. */
  81. static const u8 lowpan_unc_ctxconf[] = {0x00, 0x88, 0x82, 0x80};
  82. /*
  83. * Uncompression of ctx-base
  84. * 0 -> 0 bits from packet
  85. * 1 -> 2 bytes from prefix - bunch of zeroes 5 from packet
  86. * 2 -> 2 bytes from prefix - zeroes + 3 from packet
  87. * 3 -> 2 bytes from prefix - infer 1 bytes from lladdr
  88. */
  89. static const u8 lowpan_unc_mxconf[] = {0x0f, 0x25, 0x23, 0x21};
  90. /* Link local prefix */
  91. static const u8 lowpan_llprefix[] = {0xfe, 0x80};
  92. /* private device info */
  93. struct lowpan_dev_info {
  94. struct net_device *real_dev; /* real WPAN device ptr */
  95. struct mutex dev_list_mtx; /* mutex for list ops */
  96. };
  97. struct lowpan_dev_record {
  98. struct net_device *ldev;
  99. struct list_head list;
  100. };
  101. struct lowpan_fragment {
  102. struct sk_buff *skb; /* skb to be assembled */
  103. spinlock_t lock; /* concurency lock */
  104. u16 length; /* length to be assemled */
  105. u32 bytes_rcv; /* bytes received */
  106. u16 tag; /* current fragment tag */
  107. struct timer_list timer; /* assembling timer */
  108. struct list_head list; /* fragments list */
  109. };
  110. static unsigned short fragment_tag;
  111. static LIST_HEAD(lowpan_fragments);
  112. static DEFINE_SPINLOCK(flist_lock);
  113. static inline struct
  114. lowpan_dev_info *lowpan_dev_info(const struct net_device *dev)
  115. {
  116. return netdev_priv(dev);
  117. }
  118. static inline void lowpan_address_flip(u8 *src, u8 *dest)
  119. {
  120. int i;
  121. for (i = 0; i < IEEE802154_ADDR_LEN; i++)
  122. (dest)[IEEE802154_ADDR_LEN - i - 1] = (src)[i];
  123. }
  124. /* list of all 6lowpan devices, uses for package delivering */
  125. /* print data in line */
  126. static inline void lowpan_raw_dump_inline(const char *caller, char *msg,
  127. unsigned char *buf, int len)
  128. {
  129. #ifdef DEBUG
  130. if (msg)
  131. pr_debug("(%s) %s: ", caller, msg);
  132. print_hex_dump(KERN_DEBUG, "", DUMP_PREFIX_NONE,
  133. 16, 1, buf, len, false);
  134. #endif /* DEBUG */
  135. }
  136. /*
  137. * print data in a table format:
  138. *
  139. * addr: xx xx xx xx xx xx
  140. * addr: xx xx xx xx xx xx
  141. * ...
  142. */
  143. static inline void lowpan_raw_dump_table(const char *caller, char *msg,
  144. unsigned char *buf, int len)
  145. {
  146. #ifdef DEBUG
  147. if (msg)
  148. pr_debug("(%s) %s:\n", caller, msg);
  149. print_hex_dump(KERN_DEBUG, "\t", DUMP_PREFIX_OFFSET,
  150. 16, 1, buf, len, false);
  151. #endif /* DEBUG */
  152. }
  153. static u8
  154. lowpan_compress_addr_64(u8 **hc06_ptr, u8 shift, const struct in6_addr *ipaddr,
  155. const unsigned char *lladdr)
  156. {
  157. u8 val = 0;
  158. if (is_addr_mac_addr_based(ipaddr, lladdr))
  159. val = 3; /* 0-bits */
  160. else if (lowpan_is_iid_16_bit_compressable(ipaddr)) {
  161. /* compress IID to 16 bits xxxx::XXXX */
  162. memcpy(*hc06_ptr, &ipaddr->s6_addr16[7], 2);
  163. *hc06_ptr += 2;
  164. val = 2; /* 16-bits */
  165. } else {
  166. /* do not compress IID => xxxx::IID */
  167. memcpy(*hc06_ptr, &ipaddr->s6_addr16[4], 8);
  168. *hc06_ptr += 8;
  169. val = 1; /* 64-bits */
  170. }
  171. return rol8(val, shift);
  172. }
  173. static void
  174. lowpan_uip_ds6_set_addr_iid(struct in6_addr *ipaddr, unsigned char *lladdr)
  175. {
  176. memcpy(&ipaddr->s6_addr[8], lladdr, IEEE802154_ADDR_LEN);
  177. /* second bit-flip (Universe/Local) is done according RFC2464 */
  178. ipaddr->s6_addr[8] ^= 0x02;
  179. }
  180. /*
  181. * Uncompress addresses based on a prefix and a postfix with zeroes in
  182. * between. If the postfix is zero in length it will use the link address
  183. * to configure the IP address (autoconf style).
  184. * pref_post_count takes a byte where the first nibble specify prefix count
  185. * and the second postfix count (NOTE: 15/0xf => 16 bytes copy).
  186. */
  187. static int
  188. lowpan_uncompress_addr(struct sk_buff *skb, struct in6_addr *ipaddr,
  189. u8 const *prefix, u8 pref_post_count, unsigned char *lladdr)
  190. {
  191. u8 prefcount = pref_post_count >> 4;
  192. u8 postcount = pref_post_count & 0x0f;
  193. /* full nibble 15 => 16 */
  194. prefcount = (prefcount == 15 ? 16 : prefcount);
  195. postcount = (postcount == 15 ? 16 : postcount);
  196. if (lladdr)
  197. lowpan_raw_dump_inline(__func__, "linklocal address",
  198. lladdr, IEEE802154_ADDR_LEN);
  199. if (prefcount > 0)
  200. memcpy(ipaddr, prefix, prefcount);
  201. if (prefcount + postcount < 16)
  202. memset(&ipaddr->s6_addr[prefcount], 0,
  203. 16 - (prefcount + postcount));
  204. if (postcount > 0) {
  205. memcpy(&ipaddr->s6_addr[16 - postcount], skb->data, postcount);
  206. skb_pull(skb, postcount);
  207. } else if (prefcount > 0) {
  208. if (lladdr == NULL)
  209. return -EINVAL;
  210. /* no IID based configuration if no prefix and no data */
  211. lowpan_uip_ds6_set_addr_iid(ipaddr, lladdr);
  212. }
  213. pr_debug("uncompressing %d + %d => ", prefcount, postcount);
  214. lowpan_raw_dump_inline(NULL, NULL, ipaddr->s6_addr, 16);
  215. return 0;
  216. }
  217. static void
  218. lowpan_compress_udp_header(u8 **hc06_ptr, struct sk_buff *skb)
  219. {
  220. struct udphdr *uh = udp_hdr(skb);
  221. if (((uh->source & LOWPAN_NHC_UDP_4BIT_MASK) ==
  222. LOWPAN_NHC_UDP_4BIT_PORT) &&
  223. ((uh->dest & LOWPAN_NHC_UDP_4BIT_MASK) ==
  224. LOWPAN_NHC_UDP_4BIT_PORT)) {
  225. pr_debug("UDP header: both ports compression to 4 bits\n");
  226. **hc06_ptr = LOWPAN_NHC_UDP_CS_P_11;
  227. **(hc06_ptr + 1) = /* subtraction is faster */
  228. (u8)((uh->dest - LOWPAN_NHC_UDP_4BIT_PORT) +
  229. ((uh->source & LOWPAN_NHC_UDP_4BIT_PORT) << 4));
  230. *hc06_ptr += 2;
  231. } else if ((uh->dest & LOWPAN_NHC_UDP_8BIT_MASK) ==
  232. LOWPAN_NHC_UDP_8BIT_PORT) {
  233. pr_debug("UDP header: remove 8 bits of dest\n");
  234. **hc06_ptr = LOWPAN_NHC_UDP_CS_P_01;
  235. memcpy(*hc06_ptr + 1, &uh->source, 2);
  236. **(hc06_ptr + 3) = (u8)(uh->dest - LOWPAN_NHC_UDP_8BIT_PORT);
  237. *hc06_ptr += 4;
  238. } else if ((uh->source & LOWPAN_NHC_UDP_8BIT_MASK) ==
  239. LOWPAN_NHC_UDP_8BIT_PORT) {
  240. pr_debug("UDP header: remove 8 bits of source\n");
  241. **hc06_ptr = LOWPAN_NHC_UDP_CS_P_10;
  242. memcpy(*hc06_ptr + 1, &uh->dest, 2);
  243. **(hc06_ptr + 3) = (u8)(uh->source - LOWPAN_NHC_UDP_8BIT_PORT);
  244. *hc06_ptr += 4;
  245. } else {
  246. pr_debug("UDP header: can't compress\n");
  247. **hc06_ptr = LOWPAN_NHC_UDP_CS_P_00;
  248. memcpy(*hc06_ptr + 1, &uh->source, 2);
  249. memcpy(*hc06_ptr + 3, &uh->dest, 2);
  250. *hc06_ptr += 5;
  251. }
  252. /* checksum is always inline */
  253. memcpy(*hc06_ptr, &uh->check, 2);
  254. *hc06_ptr += 2;
  255. }
  256. static inline int lowpan_fetch_skb_u8(struct sk_buff *skb, u8 *val)
  257. {
  258. if (unlikely(!pskb_may_pull(skb, 1)))
  259. return -EINVAL;
  260. *val = skb->data[0];
  261. skb_pull(skb, 1);
  262. return 0;
  263. }
  264. static inline int lowpan_fetch_skb_u16(struct sk_buff *skb, u16 *val)
  265. {
  266. if (unlikely(!pskb_may_pull(skb, 2)))
  267. return -EINVAL;
  268. *val = skb->data[0] | (skb->data[1] << 8);
  269. skb_pull(skb, 2);
  270. return 0;
  271. }
  272. static int
  273. lowpan_uncompress_udp_header(struct sk_buff *skb)
  274. {
  275. struct udphdr *uh = udp_hdr(skb);
  276. u8 tmp;
  277. if (lowpan_fetch_skb_u8(skb, &tmp))
  278. goto err;
  279. if ((tmp & LOWPAN_NHC_UDP_MASK) == LOWPAN_NHC_UDP_ID) {
  280. pr_debug("UDP header uncompression\n");
  281. switch (tmp & LOWPAN_NHC_UDP_CS_P_11) {
  282. case LOWPAN_NHC_UDP_CS_P_00:
  283. memcpy(&uh->source, &skb->data[0], 2);
  284. memcpy(&uh->dest, &skb->data[2], 2);
  285. skb_pull(skb, 4);
  286. break;
  287. case LOWPAN_NHC_UDP_CS_P_01:
  288. memcpy(&uh->source, &skb->data[0], 2);
  289. uh->dest =
  290. skb->data[2] + LOWPAN_NHC_UDP_8BIT_PORT;
  291. skb_pull(skb, 3);
  292. break;
  293. case LOWPAN_NHC_UDP_CS_P_10:
  294. uh->source = skb->data[0] + LOWPAN_NHC_UDP_8BIT_PORT;
  295. memcpy(&uh->dest, &skb->data[1], 2);
  296. skb_pull(skb, 3);
  297. break;
  298. case LOWPAN_NHC_UDP_CS_P_11:
  299. uh->source =
  300. LOWPAN_NHC_UDP_4BIT_PORT + (skb->data[0] >> 4);
  301. uh->dest =
  302. LOWPAN_NHC_UDP_4BIT_PORT + (skb->data[0] & 0x0f);
  303. skb_pull(skb, 1);
  304. break;
  305. default:
  306. pr_debug("ERROR: unknown UDP format\n");
  307. goto err;
  308. break;
  309. }
  310. pr_debug("uncompressed UDP ports: src = %d, dst = %d\n",
  311. uh->source, uh->dest);
  312. /* copy checksum */
  313. memcpy(&uh->check, &skb->data[0], 2);
  314. skb_pull(skb, 2);
  315. } else {
  316. pr_debug("ERROR: unsupported NH format\n");
  317. goto err;
  318. }
  319. return 0;
  320. err:
  321. return -EINVAL;
  322. }
  323. static int lowpan_header_create(struct sk_buff *skb,
  324. struct net_device *dev,
  325. unsigned short type, const void *_daddr,
  326. const void *_saddr, unsigned int len)
  327. {
  328. u8 tmp, iphc0, iphc1, *hc06_ptr;
  329. struct ipv6hdr *hdr;
  330. const u8 *saddr = _saddr;
  331. const u8 *daddr = _daddr;
  332. u8 *head;
  333. struct ieee802154_addr sa, da;
  334. if (type != ETH_P_IPV6)
  335. return 0;
  336. /* TODO:
  337. * if this package isn't ipv6 one, where should it be routed?
  338. */
  339. head = kzalloc(100, GFP_KERNEL);
  340. if (head == NULL)
  341. return -ENOMEM;
  342. hdr = ipv6_hdr(skb);
  343. hc06_ptr = head + 2;
  344. pr_debug("IPv6 header dump:\n\tversion = %d\n\tlength = %d\n"
  345. "\tnexthdr = 0x%02x\n\thop_lim = %d\n", hdr->version,
  346. ntohs(hdr->payload_len), hdr->nexthdr, hdr->hop_limit);
  347. lowpan_raw_dump_table(__func__, "raw skb network header dump",
  348. skb_network_header(skb), sizeof(struct ipv6hdr));
  349. if (!saddr)
  350. saddr = dev->dev_addr;
  351. lowpan_raw_dump_inline(__func__, "saddr", (unsigned char *)saddr, 8);
  352. /*
  353. * As we copy some bit-length fields, in the IPHC encoding bytes,
  354. * we sometimes use |=
  355. * If the field is 0, and the current bit value in memory is 1,
  356. * this does not work. We therefore reset the IPHC encoding here
  357. */
  358. iphc0 = LOWPAN_DISPATCH_IPHC;
  359. iphc1 = 0;
  360. /* TODO: context lookup */
  361. lowpan_raw_dump_inline(__func__, "daddr", (unsigned char *)daddr, 8);
  362. /*
  363. * Traffic class, flow label
  364. * If flow label is 0, compress it. If traffic class is 0, compress it
  365. * We have to process both in the same time as the offset of traffic
  366. * class depends on the presence of version and flow label
  367. */
  368. /* hc06 format of TC is ECN | DSCP , original one is DSCP | ECN */
  369. tmp = (hdr->priority << 4) | (hdr->flow_lbl[0] >> 4);
  370. tmp = ((tmp & 0x03) << 6) | (tmp >> 2);
  371. if (((hdr->flow_lbl[0] & 0x0F) == 0) &&
  372. (hdr->flow_lbl[1] == 0) && (hdr->flow_lbl[2] == 0)) {
  373. /* flow label can be compressed */
  374. iphc0 |= LOWPAN_IPHC_FL_C;
  375. if ((hdr->priority == 0) &&
  376. ((hdr->flow_lbl[0] & 0xF0) == 0)) {
  377. /* compress (elide) all */
  378. iphc0 |= LOWPAN_IPHC_TC_C;
  379. } else {
  380. /* compress only the flow label */
  381. *hc06_ptr = tmp;
  382. hc06_ptr += 1;
  383. }
  384. } else {
  385. /* Flow label cannot be compressed */
  386. if ((hdr->priority == 0) &&
  387. ((hdr->flow_lbl[0] & 0xF0) == 0)) {
  388. /* compress only traffic class */
  389. iphc0 |= LOWPAN_IPHC_TC_C;
  390. *hc06_ptr = (tmp & 0xc0) | (hdr->flow_lbl[0] & 0x0F);
  391. memcpy(hc06_ptr + 1, &hdr->flow_lbl[1], 2);
  392. hc06_ptr += 3;
  393. } else {
  394. /* compress nothing */
  395. memcpy(hc06_ptr, &hdr, 4);
  396. /* replace the top byte with new ECN | DSCP format */
  397. *hc06_ptr = tmp;
  398. hc06_ptr += 4;
  399. }
  400. }
  401. /* NOTE: payload length is always compressed */
  402. /* Next Header is compress if UDP */
  403. if (hdr->nexthdr == UIP_PROTO_UDP)
  404. iphc0 |= LOWPAN_IPHC_NH_C;
  405. if ((iphc0 & LOWPAN_IPHC_NH_C) == 0) {
  406. *hc06_ptr = hdr->nexthdr;
  407. hc06_ptr += 1;
  408. }
  409. /*
  410. * Hop limit
  411. * if 1: compress, encoding is 01
  412. * if 64: compress, encoding is 10
  413. * if 255: compress, encoding is 11
  414. * else do not compress
  415. */
  416. switch (hdr->hop_limit) {
  417. case 1:
  418. iphc0 |= LOWPAN_IPHC_TTL_1;
  419. break;
  420. case 64:
  421. iphc0 |= LOWPAN_IPHC_TTL_64;
  422. break;
  423. case 255:
  424. iphc0 |= LOWPAN_IPHC_TTL_255;
  425. break;
  426. default:
  427. *hc06_ptr = hdr->hop_limit;
  428. hc06_ptr += 1;
  429. break;
  430. }
  431. /* source address compression */
  432. if (is_addr_unspecified(&hdr->saddr)) {
  433. pr_debug("source address is unspecified, setting SAC\n");
  434. iphc1 |= LOWPAN_IPHC_SAC;
  435. /* TODO: context lookup */
  436. } else if (is_addr_link_local(&hdr->saddr)) {
  437. pr_debug("source address is link-local\n");
  438. iphc1 |= lowpan_compress_addr_64(&hc06_ptr,
  439. LOWPAN_IPHC_SAM_BIT, &hdr->saddr, saddr);
  440. } else {
  441. pr_debug("send the full source address\n");
  442. memcpy(hc06_ptr, &hdr->saddr.s6_addr16[0], 16);
  443. hc06_ptr += 16;
  444. }
  445. /* destination address compression */
  446. if (is_addr_mcast(&hdr->daddr)) {
  447. pr_debug("destination address is multicast: ");
  448. iphc1 |= LOWPAN_IPHC_M;
  449. if (lowpan_is_mcast_addr_compressable8(&hdr->daddr)) {
  450. pr_debug("compressed to 1 octet\n");
  451. iphc1 |= LOWPAN_IPHC_DAM_11;
  452. /* use last byte */
  453. *hc06_ptr = hdr->daddr.s6_addr[15];
  454. hc06_ptr += 1;
  455. } else if (lowpan_is_mcast_addr_compressable32(&hdr->daddr)) {
  456. pr_debug("compressed to 4 octets\n");
  457. iphc1 |= LOWPAN_IPHC_DAM_10;
  458. /* second byte + the last three */
  459. *hc06_ptr = hdr->daddr.s6_addr[1];
  460. memcpy(hc06_ptr + 1, &hdr->daddr.s6_addr[13], 3);
  461. hc06_ptr += 4;
  462. } else if (lowpan_is_mcast_addr_compressable48(&hdr->daddr)) {
  463. pr_debug("compressed to 6 octets\n");
  464. iphc1 |= LOWPAN_IPHC_DAM_01;
  465. /* second byte + the last five */
  466. *hc06_ptr = hdr->daddr.s6_addr[1];
  467. memcpy(hc06_ptr + 1, &hdr->daddr.s6_addr[11], 5);
  468. hc06_ptr += 6;
  469. } else {
  470. pr_debug("using full address\n");
  471. iphc1 |= LOWPAN_IPHC_DAM_00;
  472. memcpy(hc06_ptr, &hdr->daddr.s6_addr[0], 16);
  473. hc06_ptr += 16;
  474. }
  475. } else {
  476. /* TODO: context lookup */
  477. if (is_addr_link_local(&hdr->daddr)) {
  478. pr_debug("dest address is unicast and link-local\n");
  479. iphc1 |= lowpan_compress_addr_64(&hc06_ptr,
  480. LOWPAN_IPHC_DAM_BIT, &hdr->daddr, daddr);
  481. } else {
  482. pr_debug("dest address is unicast: using full one\n");
  483. memcpy(hc06_ptr, &hdr->daddr.s6_addr16[0], 16);
  484. hc06_ptr += 16;
  485. }
  486. }
  487. /* UDP header compression */
  488. if (hdr->nexthdr == UIP_PROTO_UDP)
  489. lowpan_compress_udp_header(&hc06_ptr, skb);
  490. head[0] = iphc0;
  491. head[1] = iphc1;
  492. skb_pull(skb, sizeof(struct ipv6hdr));
  493. memcpy(skb_push(skb, hc06_ptr - head), head, hc06_ptr - head);
  494. kfree(head);
  495. lowpan_raw_dump_table(__func__, "raw skb data dump", skb->data,
  496. skb->len);
  497. /*
  498. * NOTE1: I'm still unsure about the fact that compression and WPAN
  499. * header are created here and not later in the xmit. So wait for
  500. * an opinion of net maintainers.
  501. */
  502. /*
  503. * NOTE2: to be absolutely correct, we must derive PANid information
  504. * from MAC subif of the 'dev' and 'real_dev' network devices, but
  505. * this isn't implemented in mainline yet, so currently we assign 0xff
  506. */
  507. {
  508. /* prepare wpan address data */
  509. sa.addr_type = IEEE802154_ADDR_LONG;
  510. sa.pan_id = 0xff;
  511. da.addr_type = IEEE802154_ADDR_LONG;
  512. da.pan_id = 0xff;
  513. memcpy(&(da.hwaddr), daddr, 8);
  514. memcpy(&(sa.hwaddr), saddr, 8);
  515. mac_cb(skb)->flags = IEEE802154_FC_TYPE_DATA;
  516. return dev_hard_header(skb, lowpan_dev_info(dev)->real_dev,
  517. type, (void *)&da, (void *)&sa, skb->len);
  518. }
  519. }
  520. static int lowpan_skb_deliver(struct sk_buff *skb, struct ipv6hdr *hdr)
  521. {
  522. struct sk_buff *new;
  523. struct lowpan_dev_record *entry;
  524. int stat = NET_RX_SUCCESS;
  525. new = skb_copy_expand(skb, sizeof(struct ipv6hdr), skb_tailroom(skb),
  526. GFP_ATOMIC);
  527. kfree_skb(skb);
  528. if (!new)
  529. return -ENOMEM;
  530. skb_push(new, sizeof(struct ipv6hdr));
  531. skb_reset_network_header(new);
  532. skb_copy_to_linear_data(new, hdr, sizeof(struct ipv6hdr));
  533. new->protocol = htons(ETH_P_IPV6);
  534. new->pkt_type = PACKET_HOST;
  535. rcu_read_lock();
  536. list_for_each_entry_rcu(entry, &lowpan_devices, list)
  537. if (lowpan_dev_info(entry->ldev)->real_dev == new->dev) {
  538. skb = skb_copy(new, GFP_ATOMIC);
  539. if (!skb) {
  540. stat = -ENOMEM;
  541. break;
  542. }
  543. skb->dev = entry->ldev;
  544. stat = netif_rx(skb);
  545. }
  546. rcu_read_unlock();
  547. kfree_skb(new);
  548. return stat;
  549. }
  550. static void lowpan_fragment_timer_expired(unsigned long entry_addr)
  551. {
  552. struct lowpan_fragment *entry = (struct lowpan_fragment *)entry_addr;
  553. pr_debug("timer expired for frame with tag %d\n", entry->tag);
  554. spin_lock(&flist_lock);
  555. list_del(&entry->list);
  556. spin_unlock(&flist_lock);
  557. dev_kfree_skb(entry->skb);
  558. kfree(entry);
  559. }
  560. static struct lowpan_fragment *
  561. lowpan_alloc_new_frame(struct sk_buff *skb, u8 iphc0, u8 len, u8 tag)
  562. {
  563. struct lowpan_fragment *frame;
  564. frame = kzalloc(sizeof(struct lowpan_fragment),
  565. GFP_ATOMIC);
  566. if (!frame)
  567. goto frame_err;
  568. INIT_LIST_HEAD(&frame->list);
  569. frame->length = (iphc0 & 7) | (len << 3);
  570. frame->tag = tag;
  571. /* allocate buffer for frame assembling */
  572. frame->skb = netdev_alloc_skb_ip_align(skb->dev, frame->length +
  573. sizeof(struct ipv6hdr));
  574. if (!frame->skb)
  575. goto skb_err;
  576. frame->skb->priority = skb->priority;
  577. frame->skb->dev = skb->dev;
  578. /* reserve headroom for uncompressed ipv6 header */
  579. skb_reserve(frame->skb, sizeof(struct ipv6hdr));
  580. skb_put(frame->skb, frame->length);
  581. init_timer(&frame->timer);
  582. /* time out is the same as for ipv6 - 60 sec */
  583. frame->timer.expires = jiffies + LOWPAN_FRAG_TIMEOUT;
  584. frame->timer.data = (unsigned long)frame;
  585. frame->timer.function = lowpan_fragment_timer_expired;
  586. add_timer(&frame->timer);
  587. list_add_tail(&frame->list, &lowpan_fragments);
  588. return frame;
  589. skb_err:
  590. kfree(frame);
  591. frame_err:
  592. return NULL;
  593. }
  594. static int
  595. lowpan_process_data(struct sk_buff *skb)
  596. {
  597. struct ipv6hdr hdr;
  598. u8 tmp, iphc0, iphc1, num_context = 0;
  599. u8 *_saddr, *_daddr;
  600. int err;
  601. lowpan_raw_dump_table(__func__, "raw skb data dump", skb->data,
  602. skb->len);
  603. /* at least two bytes will be used for the encoding */
  604. if (skb->len < 2)
  605. goto drop;
  606. if (lowpan_fetch_skb_u8(skb, &iphc0))
  607. goto drop;
  608. /* fragments assembling */
  609. switch (iphc0 & LOWPAN_DISPATCH_MASK) {
  610. case LOWPAN_DISPATCH_FRAG1:
  611. case LOWPAN_DISPATCH_FRAGN:
  612. {
  613. struct lowpan_fragment *frame;
  614. u8 len, offset;
  615. u16 tag;
  616. bool found = false;
  617. if (lowpan_fetch_skb_u8(skb, &len) || /* frame length */
  618. lowpan_fetch_skb_u16(skb, &tag)) /* fragment tag */
  619. goto drop;
  620. /*
  621. * check if frame assembling with the same tag is
  622. * already in progress
  623. */
  624. spin_lock(&flist_lock);
  625. list_for_each_entry(frame, &lowpan_fragments, list)
  626. if (frame->tag == tag) {
  627. found = true;
  628. break;
  629. }
  630. /* alloc new frame structure */
  631. if (!found) {
  632. frame = lowpan_alloc_new_frame(skb, iphc0, len, tag);
  633. if (!frame)
  634. goto unlock_and_drop;
  635. }
  636. if ((iphc0 & LOWPAN_DISPATCH_MASK) == LOWPAN_DISPATCH_FRAG1)
  637. goto unlock_and_drop;
  638. if (lowpan_fetch_skb_u8(skb, &offset)) /* fetch offset */
  639. goto unlock_and_drop;
  640. /* if payload fits buffer, copy it */
  641. if (likely((offset * 8 + skb->len) <= frame->length))
  642. skb_copy_to_linear_data_offset(frame->skb, offset * 8,
  643. skb->data, skb->len);
  644. else
  645. goto unlock_and_drop;
  646. frame->bytes_rcv += skb->len;
  647. /* frame assembling complete */
  648. if ((frame->bytes_rcv == frame->length) &&
  649. frame->timer.expires > jiffies) {
  650. /* if timer haven't expired - first of all delete it */
  651. del_timer(&frame->timer);
  652. list_del(&frame->list);
  653. spin_unlock(&flist_lock);
  654. dev_kfree_skb(skb);
  655. skb = frame->skb;
  656. kfree(frame);
  657. if (lowpan_fetch_skb_u8(skb, &iphc0))
  658. goto drop;
  659. break;
  660. }
  661. spin_unlock(&flist_lock);
  662. return kfree_skb(skb), 0;
  663. }
  664. default:
  665. break;
  666. }
  667. if (lowpan_fetch_skb_u8(skb, &iphc1))
  668. goto drop;
  669. _saddr = mac_cb(skb)->sa.hwaddr;
  670. _daddr = mac_cb(skb)->da.hwaddr;
  671. pr_debug("iphc0 = %02x, iphc1 = %02x\n", iphc0, iphc1);
  672. /* another if the CID flag is set */
  673. if (iphc1 & LOWPAN_IPHC_CID) {
  674. pr_debug("CID flag is set, increase header with one\n");
  675. if (lowpan_fetch_skb_u8(skb, &num_context))
  676. goto drop;
  677. }
  678. hdr.version = 6;
  679. /* Traffic Class and Flow Label */
  680. switch ((iphc0 & LOWPAN_IPHC_TF) >> 3) {
  681. /*
  682. * Traffic Class and FLow Label carried in-line
  683. * ECN + DSCP + 4-bit Pad + Flow Label (4 bytes)
  684. */
  685. case 0: /* 00b */
  686. if (lowpan_fetch_skb_u8(skb, &tmp))
  687. goto drop;
  688. memcpy(&hdr.flow_lbl, &skb->data[0], 3);
  689. skb_pull(skb, 3);
  690. hdr.priority = ((tmp >> 2) & 0x0f);
  691. hdr.flow_lbl[0] = ((tmp >> 2) & 0x30) | (tmp << 6) |
  692. (hdr.flow_lbl[0] & 0x0f);
  693. break;
  694. /*
  695. * Traffic class carried in-line
  696. * ECN + DSCP (1 byte), Flow Label is elided
  697. */
  698. case 1: /* 10b */
  699. if (lowpan_fetch_skb_u8(skb, &tmp))
  700. goto drop;
  701. hdr.priority = ((tmp >> 2) & 0x0f);
  702. hdr.flow_lbl[0] = ((tmp << 6) & 0xC0) | ((tmp >> 2) & 0x30);
  703. hdr.flow_lbl[1] = 0;
  704. hdr.flow_lbl[2] = 0;
  705. break;
  706. /*
  707. * Flow Label carried in-line
  708. * ECN + 2-bit Pad + Flow Label (3 bytes), DSCP is elided
  709. */
  710. case 2: /* 01b */
  711. if (lowpan_fetch_skb_u8(skb, &tmp))
  712. goto drop;
  713. hdr.flow_lbl[0] = (skb->data[0] & 0x0F) | ((tmp >> 2) & 0x30);
  714. memcpy(&hdr.flow_lbl[1], &skb->data[0], 2);
  715. skb_pull(skb, 2);
  716. break;
  717. /* Traffic Class and Flow Label are elided */
  718. case 3: /* 11b */
  719. hdr.priority = 0;
  720. hdr.flow_lbl[0] = 0;
  721. hdr.flow_lbl[1] = 0;
  722. hdr.flow_lbl[2] = 0;
  723. break;
  724. default:
  725. break;
  726. }
  727. /* Next Header */
  728. if ((iphc0 & LOWPAN_IPHC_NH_C) == 0) {
  729. /* Next header is carried inline */
  730. if (lowpan_fetch_skb_u8(skb, &(hdr.nexthdr)))
  731. goto drop;
  732. pr_debug("NH flag is set, next header carried inline: %02x\n",
  733. hdr.nexthdr);
  734. }
  735. /* Hop Limit */
  736. if ((iphc0 & 0x03) != LOWPAN_IPHC_TTL_I)
  737. hdr.hop_limit = lowpan_ttl_values[iphc0 & 0x03];
  738. else {
  739. if (lowpan_fetch_skb_u8(skb, &(hdr.hop_limit)))
  740. goto drop;
  741. }
  742. /* Extract SAM to the tmp variable */
  743. tmp = ((iphc1 & LOWPAN_IPHC_SAM) >> LOWPAN_IPHC_SAM_BIT) & 0x03;
  744. /* Source address uncompression */
  745. pr_debug("source address stateless compression\n");
  746. err = lowpan_uncompress_addr(skb, &hdr.saddr, lowpan_llprefix,
  747. lowpan_unc_llconf[tmp], skb->data);
  748. if (err)
  749. goto drop;
  750. /* Extract DAM to the tmp variable */
  751. tmp = ((iphc1 & LOWPAN_IPHC_DAM_11) >> LOWPAN_IPHC_DAM_BIT) & 0x03;
  752. /* check for Multicast Compression */
  753. if (iphc1 & LOWPAN_IPHC_M) {
  754. if (iphc1 & LOWPAN_IPHC_DAC) {
  755. pr_debug("dest: context-based mcast compression\n");
  756. /* TODO: implement this */
  757. } else {
  758. u8 prefix[] = {0xff, 0x02};
  759. pr_debug("dest: non context-based mcast compression\n");
  760. if (0 < tmp && tmp < 3) {
  761. if (lowpan_fetch_skb_u8(skb, &prefix[1]))
  762. goto drop;
  763. }
  764. err = lowpan_uncompress_addr(skb, &hdr.daddr, prefix,
  765. lowpan_unc_mxconf[tmp], NULL);
  766. if (err)
  767. goto drop;
  768. }
  769. } else {
  770. pr_debug("dest: stateless compression\n");
  771. err = lowpan_uncompress_addr(skb, &hdr.daddr, lowpan_llprefix,
  772. lowpan_unc_llconf[tmp], skb->data);
  773. if (err)
  774. goto drop;
  775. }
  776. /* UDP data uncompression */
  777. if (iphc0 & LOWPAN_IPHC_NH_C)
  778. if (lowpan_uncompress_udp_header(skb))
  779. goto drop;
  780. /* Not fragmented package */
  781. hdr.payload_len = htons(skb->len);
  782. pr_debug("skb headroom size = %d, data length = %d\n",
  783. skb_headroom(skb), skb->len);
  784. pr_debug("IPv6 header dump:\n\tversion = %d\n\tlength = %d\n\t"
  785. "nexthdr = 0x%02x\n\thop_lim = %d\n", hdr.version,
  786. ntohs(hdr.payload_len), hdr.nexthdr, hdr.hop_limit);
  787. lowpan_raw_dump_table(__func__, "raw header dump", (u8 *)&hdr,
  788. sizeof(hdr));
  789. return lowpan_skb_deliver(skb, &hdr);
  790. unlock_and_drop:
  791. spin_unlock(&flist_lock);
  792. drop:
  793. kfree_skb(skb);
  794. return -EINVAL;
  795. }
  796. static int lowpan_set_address(struct net_device *dev, void *p)
  797. {
  798. struct sockaddr *sa = p;
  799. if (netif_running(dev))
  800. return -EBUSY;
  801. /* TODO: validate addr */
  802. memcpy(dev->dev_addr, sa->sa_data, dev->addr_len);
  803. return 0;
  804. }
  805. static int lowpan_get_mac_header_length(struct sk_buff *skb)
  806. {
  807. /*
  808. * Currently long addressing mode is supported only, so the overall
  809. * header size is 21:
  810. * FC SeqNum DPAN DA SA Sec
  811. * 2 + 1 + 2 + 8 + 8 + 0 = 21
  812. */
  813. return 21;
  814. }
  815. static int
  816. lowpan_fragment_xmit(struct sk_buff *skb, u8 *head,
  817. int mlen, int plen, int offset)
  818. {
  819. struct sk_buff *frag;
  820. int hlen, ret;
  821. /* if payload length is zero, therefore it's a first fragment */
  822. hlen = (plen == 0 ? LOWPAN_FRAG1_HEAD_SIZE : LOWPAN_FRAGN_HEAD_SIZE);
  823. lowpan_raw_dump_inline(__func__, "6lowpan fragment header", head, hlen);
  824. frag = dev_alloc_skb(hlen + mlen + plen + IEEE802154_MFR_SIZE);
  825. if (!frag)
  826. return -ENOMEM;
  827. frag->priority = skb->priority;
  828. frag->dev = skb->dev;
  829. /* copy header, MFR and payload */
  830. memcpy(skb_put(frag, mlen), skb->data, mlen);
  831. memcpy(skb_put(frag, hlen), head, hlen);
  832. if (plen)
  833. skb_copy_from_linear_data_offset(skb, offset + mlen,
  834. skb_put(frag, plen), plen);
  835. lowpan_raw_dump_table(__func__, " raw fragment dump", frag->data,
  836. frag->len);
  837. ret = dev_queue_xmit(frag);
  838. return ret;
  839. }
  840. static int
  841. lowpan_skb_fragmentation(struct sk_buff *skb)
  842. {
  843. int err, header_length, payload_length, tag, offset = 0;
  844. u8 head[5];
  845. header_length = lowpan_get_mac_header_length(skb);
  846. payload_length = skb->len - header_length;
  847. tag = fragment_tag++;
  848. /* first fragment header */
  849. head[0] = LOWPAN_DISPATCH_FRAG1 | (payload_length & 0x7);
  850. head[1] = (payload_length >> 3) & 0xff;
  851. head[2] = tag & 0xff;
  852. head[3] = tag >> 8;
  853. err = lowpan_fragment_xmit(skb, head, header_length, 0, 0);
  854. /* next fragment header */
  855. head[0] &= ~LOWPAN_DISPATCH_FRAG1;
  856. head[0] |= LOWPAN_DISPATCH_FRAGN;
  857. while ((payload_length - offset > 0) && (err >= 0)) {
  858. int len = LOWPAN_FRAG_SIZE;
  859. head[4] = offset / 8;
  860. if (payload_length - offset < len)
  861. len = payload_length - offset;
  862. err = lowpan_fragment_xmit(skb, head, header_length,
  863. len, offset);
  864. offset += len;
  865. }
  866. return err;
  867. }
  868. static netdev_tx_t lowpan_xmit(struct sk_buff *skb, struct net_device *dev)
  869. {
  870. int err = -1;
  871. pr_debug("package xmit\n");
  872. skb->dev = lowpan_dev_info(dev)->real_dev;
  873. if (skb->dev == NULL) {
  874. pr_debug("ERROR: no real wpan device found\n");
  875. goto error;
  876. }
  877. if (skb->len <= IEEE802154_MTU) {
  878. err = dev_queue_xmit(skb);
  879. goto out;
  880. }
  881. pr_debug("frame is too big, fragmentation is needed\n");
  882. err = lowpan_skb_fragmentation(skb);
  883. error:
  884. dev_kfree_skb(skb);
  885. out:
  886. if (err < 0)
  887. pr_debug("ERROR: xmit failed\n");
  888. return (err < 0 ? NETDEV_TX_BUSY : NETDEV_TX_OK);
  889. }
  890. static void lowpan_dev_free(struct net_device *dev)
  891. {
  892. dev_put(lowpan_dev_info(dev)->real_dev);
  893. free_netdev(dev);
  894. }
  895. static struct wpan_phy *lowpan_get_phy(const struct net_device *dev)
  896. {
  897. struct net_device *real_dev = lowpan_dev_info(dev)->real_dev;
  898. return ieee802154_mlme_ops(real_dev)->get_phy(real_dev);
  899. }
  900. static u16 lowpan_get_pan_id(const struct net_device *dev)
  901. {
  902. struct net_device *real_dev = lowpan_dev_info(dev)->real_dev;
  903. return ieee802154_mlme_ops(real_dev)->get_pan_id(real_dev);
  904. }
  905. static u16 lowpan_get_short_addr(const struct net_device *dev)
  906. {
  907. struct net_device *real_dev = lowpan_dev_info(dev)->real_dev;
  908. return ieee802154_mlme_ops(real_dev)->get_short_addr(real_dev);
  909. }
  910. static struct header_ops lowpan_header_ops = {
  911. .create = lowpan_header_create,
  912. };
  913. static const struct net_device_ops lowpan_netdev_ops = {
  914. .ndo_start_xmit = lowpan_xmit,
  915. .ndo_set_mac_address = lowpan_set_address,
  916. };
  917. static struct ieee802154_mlme_ops lowpan_mlme = {
  918. .get_pan_id = lowpan_get_pan_id,
  919. .get_phy = lowpan_get_phy,
  920. .get_short_addr = lowpan_get_short_addr,
  921. };
  922. static void lowpan_setup(struct net_device *dev)
  923. {
  924. dev->addr_len = IEEE802154_ADDR_LEN;
  925. memset(dev->broadcast, 0xff, IEEE802154_ADDR_LEN);
  926. dev->type = ARPHRD_IEEE802154;
  927. /* Frame Control + Sequence Number + Address fields + Security Header */
  928. dev->hard_header_len = 2 + 1 + 20 + 14;
  929. dev->needed_tailroom = 2; /* FCS */
  930. dev->mtu = 1281;
  931. dev->tx_queue_len = 0;
  932. dev->flags = IFF_BROADCAST | IFF_MULTICAST;
  933. dev->watchdog_timeo = 0;
  934. dev->netdev_ops = &lowpan_netdev_ops;
  935. dev->header_ops = &lowpan_header_ops;
  936. dev->ml_priv = &lowpan_mlme;
  937. dev->destructor = lowpan_dev_free;
  938. }
  939. static int lowpan_validate(struct nlattr *tb[], struct nlattr *data[])
  940. {
  941. if (tb[IFLA_ADDRESS]) {
  942. if (nla_len(tb[IFLA_ADDRESS]) != IEEE802154_ADDR_LEN)
  943. return -EINVAL;
  944. }
  945. return 0;
  946. }
  947. static int lowpan_rcv(struct sk_buff *skb, struct net_device *dev,
  948. struct packet_type *pt, struct net_device *orig_dev)
  949. {
  950. if (!netif_running(dev))
  951. goto drop;
  952. if (dev->type != ARPHRD_IEEE802154)
  953. goto drop;
  954. /* check that it's our buffer */
  955. switch (skb->data[0] & 0xe0) {
  956. case LOWPAN_DISPATCH_IPHC: /* ipv6 datagram */
  957. case LOWPAN_DISPATCH_FRAG1: /* first fragment header */
  958. case LOWPAN_DISPATCH_FRAGN: /* next fragments headers */
  959. lowpan_process_data(skb);
  960. break;
  961. default:
  962. break;
  963. }
  964. return NET_RX_SUCCESS;
  965. drop:
  966. kfree_skb(skb);
  967. return NET_RX_DROP;
  968. }
  969. static int lowpan_newlink(struct net *src_net, struct net_device *dev,
  970. struct nlattr *tb[], struct nlattr *data[])
  971. {
  972. struct net_device *real_dev;
  973. struct lowpan_dev_record *entry;
  974. pr_debug("adding new link\n");
  975. if (!tb[IFLA_LINK])
  976. return -EINVAL;
  977. /* find and hold real wpan device */
  978. real_dev = dev_get_by_index(src_net, nla_get_u32(tb[IFLA_LINK]));
  979. if (!real_dev)
  980. return -ENODEV;
  981. lowpan_dev_info(dev)->real_dev = real_dev;
  982. mutex_init(&lowpan_dev_info(dev)->dev_list_mtx);
  983. entry = kzalloc(sizeof(struct lowpan_dev_record), GFP_KERNEL);
  984. if (!entry) {
  985. dev_put(real_dev);
  986. lowpan_dev_info(dev)->real_dev = NULL;
  987. return -ENOMEM;
  988. }
  989. entry->ldev = dev;
  990. mutex_lock(&lowpan_dev_info(dev)->dev_list_mtx);
  991. INIT_LIST_HEAD(&entry->list);
  992. list_add_tail(&entry->list, &lowpan_devices);
  993. mutex_unlock(&lowpan_dev_info(dev)->dev_list_mtx);
  994. register_netdevice(dev);
  995. return 0;
  996. }
  997. static void lowpan_dellink(struct net_device *dev, struct list_head *head)
  998. {
  999. struct lowpan_dev_info *lowpan_dev = lowpan_dev_info(dev);
  1000. struct net_device *real_dev = lowpan_dev->real_dev;
  1001. struct lowpan_dev_record *entry, *tmp;
  1002. struct lowpan_fragment *frame, *tframe;
  1003. ASSERT_RTNL();
  1004. spin_lock(&flist_lock);
  1005. list_for_each_entry_safe(frame, tframe, &lowpan_fragments, list) {
  1006. del_timer(&frame->timer);
  1007. list_del(&frame->list);
  1008. dev_kfree_skb(frame->skb);
  1009. kfree(frame);
  1010. }
  1011. spin_unlock(&flist_lock);
  1012. mutex_lock(&lowpan_dev_info(dev)->dev_list_mtx);
  1013. list_for_each_entry_safe(entry, tmp, &lowpan_devices, list) {
  1014. if (entry->ldev == dev) {
  1015. list_del(&entry->list);
  1016. kfree(entry);
  1017. }
  1018. }
  1019. mutex_unlock(&lowpan_dev_info(dev)->dev_list_mtx);
  1020. mutex_destroy(&lowpan_dev_info(dev)->dev_list_mtx);
  1021. unregister_netdevice_queue(dev, head);
  1022. dev_put(real_dev);
  1023. }
  1024. static struct rtnl_link_ops lowpan_link_ops __read_mostly = {
  1025. .kind = "lowpan",
  1026. .priv_size = sizeof(struct lowpan_dev_info),
  1027. .setup = lowpan_setup,
  1028. .newlink = lowpan_newlink,
  1029. .dellink = lowpan_dellink,
  1030. .validate = lowpan_validate,
  1031. };
  1032. static inline int __init lowpan_netlink_init(void)
  1033. {
  1034. return rtnl_link_register(&lowpan_link_ops);
  1035. }
  1036. static inline void __init lowpan_netlink_fini(void)
  1037. {
  1038. rtnl_link_unregister(&lowpan_link_ops);
  1039. }
  1040. static struct packet_type lowpan_packet_type = {
  1041. .type = __constant_htons(ETH_P_IEEE802154),
  1042. .func = lowpan_rcv,
  1043. };
  1044. static int __init lowpan_init_module(void)
  1045. {
  1046. int err = 0;
  1047. err = lowpan_netlink_init();
  1048. if (err < 0)
  1049. goto out;
  1050. dev_add_pack(&lowpan_packet_type);
  1051. out:
  1052. return err;
  1053. }
  1054. static void __exit lowpan_cleanup_module(void)
  1055. {
  1056. lowpan_netlink_fini();
  1057. dev_remove_pack(&lowpan_packet_type);
  1058. }
  1059. module_init(lowpan_init_module);
  1060. module_exit(lowpan_cleanup_module);
  1061. MODULE_LICENSE("GPL");
  1062. MODULE_ALIAS_RTNL_LINK("lowpan");