FrameDecider.c 28 KB

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  1. /**
  2. * @file FrameDecider.c
  3. * @author Ambroz Bizjak <ambrop7@gmail.com>
  4. *
  5. * @section LICENSE
  6. *
  7. * This file is part of BadVPN.
  8. *
  9. * BadVPN 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. * BadVPN 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. #include <string.h>
  23. #include <stddef.h>
  24. #include <inttypes.h>
  25. #include <misc/debug.h>
  26. #include <misc/offset.h>
  27. #include <misc/balloc.h>
  28. #include <misc/ethernet_proto.h>
  29. #include <misc/ipv4_proto.h>
  30. #include <misc/igmp_proto.h>
  31. #include <misc/byteorder.h>
  32. #include <system/BLog.h>
  33. #include <client/FrameDecider.h>
  34. #include <generated/blog_channel_FrameDecider.h>
  35. #define DECIDE_STATE_NONE 1
  36. #define DECIDE_STATE_UNICAST 2
  37. #define DECIDE_STATE_FLOOD 3
  38. #define DECIDE_STATE_MULTICAST 4
  39. static int mac_comparator (void *user, uint8_t *mac1, uint8_t *mac2)
  40. {
  41. int c = memcmp(mac1, mac2, 6);
  42. if (c < 0) {
  43. return -1;
  44. }
  45. if (c > 0) {
  46. return 1;
  47. }
  48. return 0;
  49. }
  50. static int uint32_comparator (void *user, uint32_t *v1, uint32_t *v2)
  51. {
  52. if (*v1 < *v2) {
  53. return -1;
  54. }
  55. if (*v1 > *v2) {
  56. return 1;
  57. }
  58. return 0;
  59. }
  60. static void add_mac_to_peer (FrameDeciderPeer *o, uint8_t *mac)
  61. {
  62. FrameDecider *d = o->d;
  63. // locate entry in tree
  64. BAVLNode *tree_node = BAVL_LookupExact(&d->macs_tree, mac);
  65. if (tree_node) {
  66. struct _FrameDecider_mac_entry *entry = UPPER_OBJECT(tree_node, struct _FrameDecider_mac_entry, tree_node);
  67. if (entry->peer == o) {
  68. // this is our MAC; only move it to the end of the used list
  69. LinkedList2_Remove(&o->mac_entries_used, &entry->list_node);
  70. LinkedList2_Append(&o->mac_entries_used, &entry->list_node);
  71. return;
  72. }
  73. // some other peer has that MAC; disassociate it
  74. BAVL_Remove(&d->macs_tree, &entry->tree_node);
  75. LinkedList2_Remove(&entry->peer->mac_entries_used, &entry->list_node);
  76. LinkedList2_Append(&entry->peer->mac_entries_free, &entry->list_node);
  77. }
  78. // aquire MAC address entry, if there are no free ones reuse the oldest used one
  79. LinkedList2Node *list_node;
  80. struct _FrameDecider_mac_entry *entry;
  81. if (list_node = LinkedList2_GetFirst(&o->mac_entries_free)) {
  82. entry = UPPER_OBJECT(list_node, struct _FrameDecider_mac_entry, list_node);
  83. ASSERT(entry->peer == o)
  84. // remove from free
  85. LinkedList2_Remove(&o->mac_entries_free, &entry->list_node);
  86. } else {
  87. list_node = LinkedList2_GetFirst(&o->mac_entries_used);
  88. ASSERT(list_node)
  89. entry = UPPER_OBJECT(list_node, struct _FrameDecider_mac_entry, list_node);
  90. ASSERT(entry->peer == o)
  91. // remove from used
  92. BAVL_Remove(&d->macs_tree, &entry->tree_node);
  93. LinkedList2_Remove(&o->mac_entries_used, &entry->list_node);
  94. }
  95. BLog(BLOG_INFO, "adding MAC %02"PRIx8":%02"PRIx8":%02"PRIx8":%02"PRIx8":%02"PRIx8":%02"PRIx8"", mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]);
  96. // set MAC in entry
  97. memcpy(entry->mac, mac, sizeof(entry->mac));
  98. // add to used
  99. LinkedList2_Append(&o->mac_entries_used, &entry->list_node);
  100. ASSERT_EXECUTE(BAVL_Insert(&d->macs_tree, &entry->tree_node, NULL))
  101. }
  102. static uint32_t compute_sig_for_group (uint32_t group)
  103. {
  104. return hton32(ntoh32(group)&0x7FFFFF);
  105. }
  106. static uint32_t compute_sig_for_mac (uint8_t *mac)
  107. {
  108. uint32_t sig;
  109. memcpy(&sig, mac + 2, 4);
  110. sig = hton32(ntoh32(sig)&0x7FFFFF);
  111. return sig;
  112. }
  113. static void add_to_multicast (FrameDecider *d, struct _FrameDecider_group_entry *group_entry)
  114. {
  115. // compute sig
  116. uint32_t sig = compute_sig_for_group(group_entry->group);
  117. BAVLNode *node;
  118. if (node = BAVL_LookupExact(&d->multicast_tree, &sig)) {
  119. // use existing master
  120. struct _FrameDecider_group_entry *master = UPPER_OBJECT(node, struct _FrameDecider_group_entry, master.tree_node);
  121. ASSERT(master->is_master)
  122. // set not master
  123. group_entry->is_master = 0;
  124. // insert to list
  125. LinkedList3Node_InitAfter(&group_entry->sig_list_node, &master->sig_list_node);
  126. } else {
  127. // make this entry master
  128. // set master
  129. group_entry->is_master = 1;
  130. // set sig
  131. group_entry->master.sig = sig;
  132. // insert to multicast tree
  133. ASSERT_EXECUTE(BAVL_Insert(&d->multicast_tree, &group_entry->master.tree_node, NULL))
  134. // init list node
  135. LinkedList3Node_InitLonely(&group_entry->sig_list_node);
  136. }
  137. }
  138. static void remove_from_multicast (FrameDecider *d, struct _FrameDecider_group_entry *group_entry)
  139. {
  140. // compute sig
  141. uint32_t sig = compute_sig_for_group(group_entry->group);
  142. if (group_entry->is_master) {
  143. // remove master from multicast tree
  144. BAVL_Remove(&d->multicast_tree, &group_entry->master.tree_node);
  145. if (!LinkedList3Node_IsLonely(&group_entry->sig_list_node)) {
  146. // at least one more group entry for this sig; make another entry the master
  147. // get an entry
  148. LinkedList3Node *list_node = LinkedList3Node_NextOrPrev(&group_entry->sig_list_node);
  149. struct _FrameDecider_group_entry *newmaster = UPPER_OBJECT(list_node, struct _FrameDecider_group_entry, sig_list_node);
  150. ASSERT(!newmaster->is_master)
  151. // set master
  152. newmaster->is_master = 1;
  153. // set sig
  154. newmaster->master.sig = sig;
  155. // insert to multicast tree
  156. ASSERT_EXECUTE(BAVL_Insert(&d->multicast_tree, &newmaster->master.tree_node, NULL))
  157. }
  158. }
  159. // free linked list node
  160. LinkedList3Node_Free(&group_entry->sig_list_node);
  161. }
  162. static void add_group_to_peer (FrameDeciderPeer *o, uint32_t group)
  163. {
  164. FrameDecider *d = o->d;
  165. struct _FrameDecider_group_entry *group_entry;
  166. // lookup if the peer already has that group
  167. BAVLNode *old_tree_node;
  168. if ((old_tree_node = BAVL_LookupExact(&o->groups_tree, &group))) {
  169. group_entry = UPPER_OBJECT(old_tree_node, struct _FrameDecider_group_entry, tree_node);
  170. // move to end of used list
  171. LinkedList2_Remove(&o->group_entries_used, &group_entry->list_node);
  172. LinkedList2_Append(&o->group_entries_used, &group_entry->list_node);
  173. } else {
  174. BLog(BLOG_INFO, "joined group %"PRIu8".%"PRIu8".%"PRIu8".%"PRIu8"",
  175. ((uint8_t *)&group)[0], ((uint8_t *)&group)[1], ((uint8_t *)&group)[2], ((uint8_t *)&group)[3]
  176. );
  177. // aquire group entry, if there are no free ones reuse the earliest used one
  178. LinkedList2Node *node;
  179. if (node = LinkedList2_GetFirst(&o->group_entries_free)) {
  180. group_entry = UPPER_OBJECT(node, struct _FrameDecider_group_entry, list_node);
  181. // remove from free list
  182. LinkedList2_Remove(&o->group_entries_free, &group_entry->list_node);
  183. } else {
  184. node = LinkedList2_GetFirst(&o->group_entries_used);
  185. ASSERT(node)
  186. group_entry = UPPER_OBJECT(node, struct _FrameDecider_group_entry, list_node);
  187. // remove from multicast
  188. remove_from_multicast(d, group_entry);
  189. // remove from peer's groups tree
  190. BAVL_Remove(&o->groups_tree, &group_entry->tree_node);
  191. // remove from used list
  192. LinkedList2_Remove(&o->group_entries_used, &group_entry->list_node);
  193. }
  194. // add entry to used list
  195. LinkedList2_Append(&o->group_entries_used, &group_entry->list_node);
  196. // set group address
  197. group_entry->group = group;
  198. // insert to peer's groups tree
  199. ASSERT_EXECUTE(BAVL_Insert(&o->groups_tree, &group_entry->tree_node, NULL))
  200. // add to multicast
  201. add_to_multicast(d, group_entry);
  202. }
  203. // set timer
  204. group_entry->timer_endtime = btime_gettime() + d->igmp_group_membership_interval;
  205. BReactor_SetTimerAbsolute(d->reactor, &group_entry->timer, group_entry->timer_endtime);
  206. }
  207. static void remove_group_entry (struct _FrameDecider_group_entry *group_entry)
  208. {
  209. FrameDeciderPeer *peer = group_entry->peer;
  210. FrameDecider *d = peer->d;
  211. uint32_t group = group_entry->group;
  212. BLog(BLOG_INFO, "left group %"PRIu8".%"PRIu8".%"PRIu8".%"PRIu8"",
  213. ((uint8_t *)&group)[0], ((uint8_t *)&group)[1], ((uint8_t *)&group)[2], ((uint8_t *)&group)[3]
  214. );
  215. // remove from multicast
  216. remove_from_multicast(d, group_entry);
  217. // remove from peer's groups tree
  218. BAVL_Remove(&peer->groups_tree, &group_entry->tree_node);
  219. // remove from used list
  220. LinkedList2_Remove(&peer->group_entries_used, &group_entry->list_node);
  221. // add to free list
  222. LinkedList2_Append(&peer->group_entries_free, &group_entry->list_node);
  223. // stop timer
  224. BReactor_RemoveTimer(d->reactor, &group_entry->timer);
  225. }
  226. static void lower_group_timers_to_lmqt (FrameDecider *d, uint32_t group)
  227. {
  228. // have to lower all the group timers of this group down to LMQT
  229. // compute sig
  230. uint32_t sig = compute_sig_for_group(group);
  231. // look up the sig in multicast tree
  232. BAVLNode *tree_node;
  233. if (!(tree_node = BAVL_LookupExact(&d->multicast_tree, &sig))) {
  234. return;
  235. }
  236. struct _FrameDecider_group_entry *master = UPPER_OBJECT(tree_node, struct _FrameDecider_group_entry, master.tree_node);
  237. ASSERT(master->is_master)
  238. // iterate all group entries with this sig
  239. LinkedList3Iterator it;
  240. LinkedList3Iterator_Init(&it, LinkedList3Node_First(&master->sig_list_node), 1);
  241. LinkedList3Node *sig_list_node;
  242. while (sig_list_node = LinkedList3Iterator_Next(&it)) {
  243. struct _FrameDecider_group_entry *group_entry = UPPER_OBJECT(sig_list_node, struct _FrameDecider_group_entry, sig_list_node);
  244. // skip wrong groups
  245. if (group_entry->group != group) {
  246. continue;
  247. }
  248. // lower timer down to LMQT
  249. btime_t now = btime_gettime();
  250. if (group_entry->timer_endtime > now + d->igmp_last_member_query_time) {
  251. group_entry->timer_endtime = now + d->igmp_last_member_query_time;
  252. BReactor_SetTimerAbsolute(d->reactor, &group_entry->timer, group_entry->timer_endtime);
  253. }
  254. }
  255. }
  256. static void group_entry_timer_handler (struct _FrameDecider_group_entry *group_entry)
  257. {
  258. DebugObject_Access(&group_entry->peer->d_obj);
  259. remove_group_entry(group_entry);
  260. }
  261. void FrameDecider_Init (FrameDecider *o, int max_peer_macs, int max_peer_groups, btime_t igmp_group_membership_interval, btime_t igmp_last_member_query_time, BReactor *reactor)
  262. {
  263. ASSERT(max_peer_macs > 0)
  264. ASSERT(max_peer_groups > 0)
  265. // init arguments
  266. o->max_peer_macs = max_peer_macs;
  267. o->max_peer_groups = max_peer_groups;
  268. o->igmp_group_membership_interval = igmp_group_membership_interval;
  269. o->igmp_last_member_query_time = igmp_last_member_query_time;
  270. o->reactor = reactor;
  271. // init peers list
  272. LinkedList2_Init(&o->peers_list);
  273. // init MAC tree
  274. BAVL_Init(&o->macs_tree, OFFSET_DIFF(struct _FrameDecider_mac_entry, mac, tree_node), (BAVL_comparator)mac_comparator, NULL);
  275. // init multicast tree
  276. BAVL_Init(&o->multicast_tree, OFFSET_DIFF(struct _FrameDecider_group_entry, master.sig, master.tree_node), (BAVL_comparator)uint32_comparator, NULL);
  277. // init decide state
  278. o->decide_state = DECIDE_STATE_NONE;
  279. DebugObject_Init(&o->d_obj);
  280. }
  281. void FrameDecider_Free (FrameDecider *o)
  282. {
  283. ASSERT(BAVL_IsEmpty(&o->multicast_tree))
  284. ASSERT(BAVL_IsEmpty(&o->macs_tree))
  285. ASSERT(LinkedList2_IsEmpty(&o->peers_list))
  286. DebugObject_Free(&o->d_obj);
  287. }
  288. void FrameDecider_AnalyzeAndDecide (FrameDecider *o, const uint8_t *frame, int frame_len)
  289. {
  290. ASSERT(frame_len >= 0)
  291. DebugObject_Access(&o->d_obj);
  292. // reset decide state
  293. switch (o->decide_state) {
  294. case DECIDE_STATE_NONE:
  295. break;
  296. case DECIDE_STATE_UNICAST:
  297. break;
  298. case DECIDE_STATE_FLOOD:
  299. LinkedList2Iterator_Free(&o->decide_flood_it);
  300. break;
  301. case DECIDE_STATE_MULTICAST:
  302. LinkedList3Iterator_Free(&o->decide_multicast_it);
  303. return;
  304. default:
  305. ASSERT(0);
  306. }
  307. o->decide_state = DECIDE_STATE_NONE;
  308. // analyze frame
  309. const uint8_t *pos = frame;
  310. int len = frame_len;
  311. if (len < sizeof(struct ethernet_header)) {
  312. return;
  313. }
  314. struct ethernet_header *eh = (struct ethernet_header *)pos;
  315. pos += sizeof(struct ethernet_header);
  316. len -= sizeof(struct ethernet_header);
  317. int is_igmp = 0;
  318. switch (ntoh16(eh->type)) {
  319. case ETHERTYPE_IPV4: {
  320. // check IPv4 header
  321. struct ipv4_header *ipv4_header;
  322. if (!ipv4_check((uint8_t *)pos, len, &ipv4_header, (uint8_t **)&pos, &len)) {
  323. BLog(BLOG_INFO, "decide: wrong IP packet");
  324. goto out;
  325. }
  326. // check if it's IGMP
  327. if (ntoh8(ipv4_header->protocol) != IPV4_PROTOCOL_IGMP) {
  328. goto out;
  329. }
  330. // remember that it's IGMP; we have to flood IGMP frames
  331. is_igmp = 1;
  332. // check IGMP header
  333. if (len < sizeof(struct igmp_base)) {
  334. BLog(BLOG_INFO, "decide: IGMP: short packet");
  335. goto out;
  336. }
  337. struct igmp_base *igmp_base = (struct igmp_base *)pos;
  338. pos += sizeof(struct igmp_base);
  339. len -= sizeof(struct igmp_base);
  340. switch (ntoh8(igmp_base->type)) {
  341. case IGMP_TYPE_MEMBERSHIP_QUERY: {
  342. if (len == sizeof(struct igmp_v2_extra) && ntoh8(igmp_base->max_resp_code) != 0) {
  343. // V2 query
  344. struct igmp_v2_extra *query = (struct igmp_v2_extra *)pos;
  345. pos += sizeof(struct igmp_v2_extra);
  346. len -= sizeof(struct igmp_v2_extra);
  347. if (ntoh32(query->group) != 0) {
  348. // got a Group-Specific Query, lower group timers to LMQT
  349. lower_group_timers_to_lmqt(o, query->group);
  350. }
  351. }
  352. else if (len >= sizeof(struct igmp_v3_query_extra)) {
  353. // V3 query
  354. struct igmp_v3_query_extra *query = (struct igmp_v3_query_extra *)pos;
  355. pos += sizeof(struct igmp_v3_query_extra);
  356. len -= sizeof(struct igmp_v3_query_extra);
  357. // iterate sources
  358. uint16_t num_sources = ntoh16(query->number_of_sources);
  359. int i;
  360. for (i = 0; i < num_sources; i++) {
  361. // check source
  362. if (len < sizeof(struct igmp_source)) {
  363. BLog(BLOG_NOTICE, "decide: IGMP: short source");
  364. goto out;
  365. }
  366. pos += sizeof(struct igmp_source);
  367. len -= sizeof(struct igmp_source);
  368. }
  369. if (ntoh32(query->group) != 0 && num_sources == 0) {
  370. // got a Group-Specific Query, lower group timers to LMQT
  371. lower_group_timers_to_lmqt(o, query->group);
  372. }
  373. }
  374. } break;
  375. }
  376. } break;
  377. }
  378. out:;
  379. const uint8_t broadcast_mac[] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
  380. const uint8_t multicast_mac_header[] = {0x01, 0x00, 0x5e};
  381. // if it's broadcast or IGMP, flood it
  382. if (is_igmp || !memcmp(eh->dest, broadcast_mac, sizeof(broadcast_mac))) {
  383. o->decide_state = DECIDE_STATE_FLOOD;
  384. LinkedList2Iterator_InitForward(&o->decide_flood_it, &o->peers_list);
  385. return;
  386. }
  387. // if it's multicast, forward to all peers with the given sig
  388. if (!memcmp(eh->dest, multicast_mac_header, sizeof(multicast_mac_header))) {
  389. // extract group's sig from destination MAC
  390. uint32_t sig = compute_sig_for_mac(eh->dest);
  391. // look up the sig in multicast tree
  392. BAVLNode *node;
  393. if (node = BAVL_LookupExact(&o->multicast_tree, &sig)) {
  394. struct _FrameDecider_group_entry *master = UPPER_OBJECT(node, struct _FrameDecider_group_entry, master.tree_node);
  395. ASSERT(master->is_master)
  396. o->decide_state = DECIDE_STATE_MULTICAST;
  397. LinkedList3Iterator_Init(&o->decide_multicast_it, LinkedList3Node_First(&master->sig_list_node), 1);
  398. }
  399. return;
  400. }
  401. // look for MAC entry
  402. BAVLNode *tree_node;
  403. if (tree_node = BAVL_LookupExact(&o->macs_tree, eh->dest)) {
  404. struct _FrameDecider_mac_entry *entry = UPPER_OBJECT(tree_node, struct _FrameDecider_mac_entry, tree_node);
  405. o->decide_state = DECIDE_STATE_UNICAST;
  406. o->decide_unicast_peer = entry->peer;
  407. return;
  408. }
  409. // unknown destination MAC, flood
  410. o->decide_state = DECIDE_STATE_FLOOD;
  411. LinkedList2Iterator_InitForward(&o->decide_flood_it, &o->peers_list);
  412. return;
  413. }
  414. FrameDeciderPeer * FrameDecider_NextDestination (FrameDecider *o)
  415. {
  416. DebugObject_Access(&o->d_obj);
  417. switch (o->decide_state) {
  418. case DECIDE_STATE_NONE: {
  419. return NULL;
  420. } break;
  421. case DECIDE_STATE_UNICAST: {
  422. o->decide_state = DECIDE_STATE_NONE;
  423. return o->decide_unicast_peer;
  424. } break;
  425. case DECIDE_STATE_FLOOD: {
  426. LinkedList2Node *list_node = LinkedList2Iterator_Next(&o->decide_flood_it);
  427. if (!list_node) {
  428. o->decide_state = DECIDE_STATE_NONE;
  429. return NULL;
  430. }
  431. FrameDeciderPeer *peer = UPPER_OBJECT(list_node, FrameDeciderPeer, list_node);
  432. return peer;
  433. } break;
  434. case DECIDE_STATE_MULTICAST: {
  435. LinkedList3Node *list_node = LinkedList3Iterator_Next(&o->decide_multicast_it);
  436. if (!list_node) {
  437. o->decide_state = DECIDE_STATE_NONE;
  438. return NULL;
  439. }
  440. struct _FrameDecider_group_entry *group_entry = UPPER_OBJECT(list_node, struct _FrameDecider_group_entry, sig_list_node);
  441. return group_entry->peer;
  442. } break;
  443. default:
  444. ASSERT(0);
  445. return NULL;
  446. }
  447. }
  448. int FrameDeciderPeer_Init (FrameDeciderPeer *o, FrameDecider *d)
  449. {
  450. // init arguments
  451. o->d = d;
  452. // allocate MAC entries
  453. if (!(o->mac_entries = BAllocArray(d->max_peer_macs, sizeof(struct _FrameDecider_mac_entry)))) {
  454. BLog(BLOG_ERROR, "failed to allocate MAC entries");
  455. goto fail0;
  456. }
  457. // allocate group entries
  458. if (!(o->group_entries = BAllocArray(d->max_peer_groups, sizeof(struct _FrameDecider_group_entry)))) {
  459. BLog(BLOG_ERROR, "failed to allocate group entries");
  460. goto fail1;
  461. }
  462. // insert to peers list
  463. LinkedList2_Append(&d->peers_list, &o->list_node);
  464. // init MAC entry lists
  465. LinkedList2_Init(&o->mac_entries_free);
  466. LinkedList2_Init(&o->mac_entries_used);
  467. // initialize MAC entries
  468. for (int i = 0; i < d->max_peer_macs; i++) {
  469. struct _FrameDecider_mac_entry *entry = &o->mac_entries[i];
  470. // set peer
  471. entry->peer = o;
  472. // insert to free list
  473. LinkedList2_Append(&o->mac_entries_free, &entry->list_node);
  474. }
  475. // init group entry lists
  476. LinkedList2_Init(&o->group_entries_free);
  477. LinkedList2_Init(&o->group_entries_used);
  478. // initialize group entries
  479. for (int i = 0; i < d->max_peer_groups; i++) {
  480. struct _FrameDecider_group_entry *entry = &o->group_entries[i];
  481. // set peer
  482. entry->peer = o;
  483. // insert to free list
  484. LinkedList2_Append(&o->group_entries_free, &entry->list_node);
  485. // init timer
  486. BTimer_Init(&entry->timer, 0, (BTimer_handler)group_entry_timer_handler, entry);
  487. }
  488. // initialize groups tree
  489. BAVL_Init(&o->groups_tree, OFFSET_DIFF(struct _FrameDecider_group_entry, group, tree_node), (BAVL_comparator)uint32_comparator, NULL);
  490. DebugObject_Init(&o->d_obj);
  491. return 1;
  492. fail1:
  493. BFree(o->mac_entries);
  494. fail0:
  495. return 0;
  496. }
  497. void FrameDeciderPeer_Free (FrameDeciderPeer *o)
  498. {
  499. DebugObject_Free(&o->d_obj);
  500. FrameDecider *d = o->d;
  501. // remove decide unicast reference
  502. if (d->decide_state == DECIDE_STATE_UNICAST && d->decide_unicast_peer == o) {
  503. d->decide_state = DECIDE_STATE_NONE;
  504. }
  505. LinkedList2Iterator it;
  506. LinkedList2Node *node;
  507. // free group entries
  508. LinkedList2Iterator_InitForward(&it, &o->group_entries_used);
  509. while (node = LinkedList2Iterator_Next(&it)) {
  510. struct _FrameDecider_group_entry *entry = UPPER_OBJECT(node, struct _FrameDecider_group_entry, list_node);
  511. // remove from multicast
  512. remove_from_multicast(d, entry);
  513. // stop timer
  514. BReactor_RemoveTimer(d->reactor, &entry->timer);
  515. }
  516. // remove used MAC entries from tree
  517. LinkedList2Iterator_InitForward(&it, &o->mac_entries_used);
  518. while (node = LinkedList2Iterator_Next(&it)) {
  519. struct _FrameDecider_mac_entry *entry = UPPER_OBJECT(node, struct _FrameDecider_mac_entry, list_node);
  520. // remove from tree
  521. BAVL_Remove(&d->macs_tree, &entry->tree_node);
  522. }
  523. // remove from peers list
  524. LinkedList2_Remove(&d->peers_list, &o->list_node);
  525. // free group entries
  526. BFree(o->group_entries);
  527. // free MAC entries
  528. BFree(o->mac_entries);
  529. }
  530. void FrameDeciderPeer_Analyze (FrameDeciderPeer *o, const uint8_t *frame, int frame_len)
  531. {
  532. ASSERT(frame_len >= 0)
  533. DebugObject_Access(&o->d_obj);
  534. const uint8_t *pos = frame;
  535. int len = frame_len;
  536. if (len < sizeof(struct ethernet_header)) {
  537. goto out;
  538. }
  539. struct ethernet_header *eh = (struct ethernet_header *)pos;
  540. pos += sizeof(struct ethernet_header);
  541. len -= sizeof(struct ethernet_header);
  542. // register source MAC address with this peer
  543. add_mac_to_peer(o, eh->source);
  544. switch (ntoh16(eh->type)) {
  545. case ETHERTYPE_IPV4: {
  546. // check IPv4 header
  547. struct ipv4_header *ipv4_header;
  548. if (!ipv4_check((uint8_t *)pos, len, &ipv4_header, (uint8_t **)&pos, &len)) {
  549. BLog(BLOG_INFO, "analyze: wrong IP packet");
  550. goto out;
  551. }
  552. // check if it's IGMP
  553. if (ntoh8(ipv4_header->protocol) != IPV4_PROTOCOL_IGMP) {
  554. goto out;
  555. }
  556. // check IGMP header
  557. if (len < sizeof(struct igmp_base)) {
  558. BLog(BLOG_INFO, "analyze: IGMP: short packet");
  559. goto out;
  560. }
  561. struct igmp_base *igmp_base = (struct igmp_base *)pos;
  562. pos += sizeof(struct igmp_base);
  563. len -= sizeof(struct igmp_base);
  564. switch (ntoh8(igmp_base->type)) {
  565. case IGMP_TYPE_V2_MEMBERSHIP_REPORT: {
  566. // check extra
  567. if (len < sizeof(struct igmp_v2_extra)) {
  568. BLog(BLOG_INFO, "analyze: IGMP: short v2 report");
  569. goto out;
  570. }
  571. struct igmp_v2_extra *report = (struct igmp_v2_extra *)pos;
  572. pos += sizeof(struct igmp_v2_extra);
  573. len -= sizeof(struct igmp_v2_extra);
  574. // add to group
  575. add_group_to_peer(o, report->group);
  576. } break;
  577. case IGMP_TYPE_V3_MEMBERSHIP_REPORT: {
  578. // check extra
  579. if (len < sizeof(struct igmp_v3_report_extra)) {
  580. BLog(BLOG_INFO, "analyze: IGMP: short v3 report");
  581. goto out;
  582. }
  583. struct igmp_v3_report_extra *report = (struct igmp_v3_report_extra *)pos;
  584. pos += sizeof(struct igmp_v3_report_extra);
  585. len -= sizeof(struct igmp_v3_report_extra);
  586. // iterate records
  587. uint16_t num_records = ntoh16(report->number_of_group_records);
  588. for (int i = 0; i < num_records; i++) {
  589. // check record
  590. if (len < sizeof(struct igmp_v3_report_record)) {
  591. BLog(BLOG_INFO, "analyze: IGMP: short record header");
  592. goto out;
  593. }
  594. struct igmp_v3_report_record *record = (struct igmp_v3_report_record *)pos;
  595. pos += sizeof(struct igmp_v3_report_record);
  596. len -= sizeof(struct igmp_v3_report_record);
  597. // iterate sources
  598. uint16_t num_sources = ntoh16(record->number_of_sources);
  599. int j;
  600. for (j = 0; j < num_sources; j++) {
  601. // check source
  602. if (len < sizeof(struct igmp_source)) {
  603. BLog(BLOG_INFO, "analyze: IGMP: short source");
  604. goto out;
  605. }
  606. struct igmp_source *source = (struct igmp_source *)pos;
  607. pos += sizeof(struct igmp_source);
  608. len -= sizeof(struct igmp_source);
  609. }
  610. // check aux data
  611. uint16_t aux_len = ntoh16(record->aux_data_len);
  612. if (len < aux_len) {
  613. BLog(BLOG_INFO, "analyze: IGMP: short record aux data");
  614. goto out;
  615. }
  616. pos += aux_len;
  617. len -= aux_len;
  618. switch (record->type) {
  619. case IGMP_RECORD_TYPE_MODE_IS_INCLUDE:
  620. case IGMP_RECORD_TYPE_CHANGE_TO_INCLUDE_MODE:
  621. if (num_sources != 0) {
  622. add_group_to_peer(o, record->group);
  623. }
  624. break;
  625. case IGMP_RECORD_TYPE_MODE_IS_EXCLUDE:
  626. case IGMP_RECORD_TYPE_CHANGE_TO_EXCLUDE_MODE:
  627. add_group_to_peer(o, record->group);
  628. break;
  629. }
  630. }
  631. } break;
  632. }
  633. } break;
  634. }
  635. out:;
  636. }