DataProto.c 20 KB

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  1. /**
  2. * @file DataProto.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 <stdlib.h>
  23. #include <string.h>
  24. #include <limits.h>
  25. #include <protocol/dataproto.h>
  26. #include <misc/offset.h>
  27. #include <misc/byteorder.h>
  28. #include <misc/debug.h>
  29. #include <system/BLog.h>
  30. #include <client/DataProto.h>
  31. #include <generated/blog_channel_DataProto.h>
  32. #define DATAPROTO_TIMEOUT 30000
  33. static int peerid_comparator (void *user, peerid_t *val1, peerid_t *val2);
  34. static struct dp_relay_flow * create_relay_flow (DataProtoRelaySource *rs, DataProtoDest *dp, int num_packets, uint8_t *first_frame, int first_frame_len);
  35. static void free_relay_flow (struct dp_relay_flow *flow);
  36. static void flow_monitor_handler (struct dp_relay_flow *flow);
  37. static void monitor_handler (DataProtoDest *o);
  38. static void send_keepalive (DataProtoDest *o);
  39. static void receive_timer_handler (DataProtoDest *o);
  40. static void notifier_handler (DataProtoDest *o, uint8_t *data, int data_len);
  41. static int pointer_comparator (void *user, void **val1, void **val2);
  42. static void keepalive_job_handler (DataProtoDest *o);
  43. static void relay_job_handler (struct dp_relay_flow *flow);
  44. static void submit_relay_frame (struct dp_relay_flow *flow, uint8_t *frame, int frame_len);
  45. int peerid_comparator (void *user, peerid_t *val1, peerid_t *val2)
  46. {
  47. if (*val1 < *val2) {
  48. return -1;
  49. }
  50. if (*val1 > *val2) {
  51. return 1;
  52. }
  53. return 0;
  54. }
  55. struct dp_relay_flow * create_relay_flow (DataProtoRelaySource *rs, DataProtoDest *dp, int num_packets, uint8_t *first_frame, int first_frame_len)
  56. {
  57. ASSERT(first_frame_len >= 0)
  58. ASSERT(first_frame_len <= dp->frame_mtu)
  59. ASSERT(!BAVL_LookupExact(&rs->relay_flows_tree, &dp))
  60. ASSERT(num_packets > 0)
  61. ASSERT(!dp->freeing)
  62. // allocate flow structure
  63. struct dp_relay_flow *flow = malloc(sizeof(struct dp_relay_flow));
  64. if (!flow) {
  65. BLog(BLOG_ERROR, "failed to allocate flow structure for relay flow from peer %d to %d", (int)rs->source_id, (int)dp->dest_id);
  66. goto fail0;
  67. }
  68. // init arguments
  69. flow->rs = rs;
  70. flow->dp = dp;
  71. flow->first_frame = first_frame;
  72. flow->first_frame_len = first_frame_len;
  73. // init first frame job
  74. BPending_Init(&flow->first_frame_job, BReactor_PendingGroup(dp->reactor), (BPending_handler)relay_job_handler, flow);
  75. BPending_Set(&flow->first_frame_job);
  76. // init queue flow
  77. PacketPassFairQueueFlow_Init(&flow->qflow, &dp->queue);
  78. // init inacitvity monitor
  79. PacketPassInactivityMonitor_Init(&flow->monitor, PacketPassFairQueueFlow_GetInput(&flow->qflow), dp->reactor, DATAPROTO_TIMEOUT, (PacketPassInactivityMonitor_handler)flow_monitor_handler, flow);
  80. // init async input
  81. BufferWriter_Init(&flow->ainput, dp->mtu, BReactor_PendingGroup(dp->reactor));
  82. // init buffer
  83. if (!PacketBuffer_Init(&flow->buffer, BufferWriter_GetOutput(&flow->ainput), PacketPassInactivityMonitor_GetInput(&flow->monitor), num_packets, BReactor_PendingGroup(dp->reactor))) {
  84. BLog(BLOG_ERROR, "PacketBuffer_Init failed for relay flow from peer %d to %d", (int)rs->source_id, (int)dp->dest_id);
  85. goto fail1;
  86. }
  87. // insert to source list
  88. LinkedList2_Append(&rs->relay_flows_list, &flow->source_list_node);
  89. // insert to source tree
  90. ASSERT_EXECUTE(BAVL_Insert(&rs->relay_flows_tree, &flow->source_tree_node, NULL))
  91. // insert to dp list
  92. LinkedList2_Append(&dp->relay_flows_list, &flow->dp_list_node);
  93. BLog(BLOG_NOTICE, "created relay flow from peer %d to %d", (int)rs->source_id, (int)dp->dest_id);
  94. return flow;
  95. fail1:
  96. BufferWriter_Free(&flow->ainput);
  97. PacketPassInactivityMonitor_Free(&flow->monitor);
  98. PacketPassFairQueueFlow_Free(&flow->qflow);
  99. BPending_Free(&flow->first_frame_job);
  100. free(flow);
  101. fail0:
  102. return NULL;
  103. }
  104. void free_relay_flow (struct dp_relay_flow *flow)
  105. {
  106. // release it if it's busy
  107. if (!flow->dp->freeing && PacketPassFairQueueFlow_IsBusy(&flow->qflow)) {
  108. PacketPassFairQueueFlow_Release(&flow->qflow);
  109. }
  110. // remove from dp list
  111. LinkedList2_Remove(&flow->dp->relay_flows_list, &flow->dp_list_node);
  112. // remove from source tree
  113. BAVL_Remove(&flow->rs->relay_flows_tree, &flow->source_tree_node);
  114. // remove from source list
  115. LinkedList2_Remove(&flow->rs->relay_flows_list, &flow->source_list_node);
  116. // free buffer
  117. PacketBuffer_Free(&flow->buffer);
  118. // free async input
  119. BufferWriter_Free(&flow->ainput);
  120. // free inacitvity monitor
  121. PacketPassInactivityMonitor_Free(&flow->monitor);
  122. // free queue flow
  123. PacketPassFairQueueFlow_Free(&flow->qflow);
  124. // free first frame job
  125. BPending_Free(&flow->first_frame_job);
  126. // free flow structure
  127. free(flow);
  128. }
  129. void flow_monitor_handler (struct dp_relay_flow *flow)
  130. {
  131. ASSERT(!flow->dp->freeing)
  132. BLog(BLOG_NOTICE, "relay flow from peer %d to %d timed out", (int)flow->rs->source_id, (int)flow->dp->dest_id);
  133. free_relay_flow(flow);
  134. }
  135. void monitor_handler (DataProtoDest *o)
  136. {
  137. ASSERT(!o->freeing)
  138. DebugObject_Access(&o->d_obj);
  139. send_keepalive(o);
  140. }
  141. void send_keepalive (DataProtoDest *o)
  142. {
  143. ASSERT(!o->freeing)
  144. BLog(BLOG_DEBUG, "sending keepalive to peer %d", (int)o->dest_id);
  145. PacketRecvBlocker_AllowBlockedPacket(&o->ka_blocker);
  146. }
  147. void receive_timer_handler (DataProtoDest *o)
  148. {
  149. DebugObject_Access(&o->d_obj);
  150. BLog(BLOG_DEBUG, "receive timer triggered for peer %d", (int)o->dest_id);
  151. int prev_up = o->up;
  152. // consider down
  153. o->up = 0;
  154. // call handler if up state changed
  155. if (o->handler && o->up != prev_up) {
  156. o->handler(o->user, o->up);
  157. return;
  158. }
  159. }
  160. void notifier_handler (DataProtoDest *o, uint8_t *data, int data_len)
  161. {
  162. ASSERT(data_len >= sizeof(struct dataproto_header))
  163. DebugObject_Access(&o->d_obj);
  164. // modify existing packet here
  165. struct dataproto_header *header = (struct dataproto_header *)data;
  166. header->flags = 0;
  167. // if we are receiving keepalives, set the flag
  168. if (BTimer_IsRunning(&o->receive_timer)) {
  169. header->flags |= DATAPROTO_FLAGS_RECEIVING_KEEPALIVES;
  170. }
  171. }
  172. int pointer_comparator (void *user, void **val1, void **val2)
  173. {
  174. if (*val1 < *val2) {
  175. return -1;
  176. }
  177. if (*val1 > *val2) {
  178. return 1;
  179. }
  180. return 0;
  181. }
  182. void keepalive_job_handler (DataProtoDest *o)
  183. {
  184. ASSERT(!o->freeing)
  185. DebugObject_Access(&o->d_obj);
  186. send_keepalive(o);
  187. }
  188. void relay_job_handler (struct dp_relay_flow *flow)
  189. {
  190. ASSERT(flow->first_frame_len >= 0)
  191. int frame_len = flow->first_frame_len;
  192. // set no first frame
  193. flow->first_frame_len = -1;
  194. // submit first frame
  195. submit_relay_frame(flow, flow->first_frame, frame_len);
  196. }
  197. void submit_relay_frame (struct dp_relay_flow *flow, uint8_t *frame, int frame_len)
  198. {
  199. ASSERT(flow->first_frame_len == -1)
  200. // get a buffer
  201. uint8_t *out;
  202. // safe because of PacketBufferAsyncInput
  203. if (!BufferWriter_StartPacket(&flow->ainput, &out)) {
  204. BLog(BLOG_NOTICE, "out of buffer for relayed frame from peer %d to %d", (int)flow->rs->source_id, (int)flow->dp->dest_id);
  205. return;
  206. }
  207. // write header
  208. struct dataproto_header *header = (struct dataproto_header *)out;
  209. // don't set flags, it will be set in notifier_handler
  210. header->from_id = htol16(flow->rs->source_id);
  211. header->num_peer_ids = htol16(1);
  212. struct dataproto_peer_id *id = (struct dataproto_peer_id *)(out + sizeof(struct dataproto_header));
  213. id->id = htol16(flow->dp->dest_id);
  214. // write data
  215. memcpy(out + sizeof(struct dataproto_header) + sizeof(struct dataproto_peer_id), frame, frame_len);
  216. // submit it
  217. BufferWriter_EndPacket(&flow->ainput, sizeof(struct dataproto_header) + sizeof(struct dataproto_peer_id) + frame_len);
  218. }
  219. static void device_router_handler (DataProtoDevice *o, uint8_t *buf, int recv_len)
  220. {
  221. ASSERT(buf)
  222. ASSERT(recv_len >= 0)
  223. ASSERT(recv_len <= o->frame_mtu)
  224. DebugObject_Access(&o->d_obj);
  225. // remember packet
  226. o->current_buf = buf;
  227. o->current_recv_len = recv_len;
  228. // call handler
  229. o->handler(o->user, buf + DATAPROTO_MAX_OVERHEAD, recv_len);
  230. return;
  231. }
  232. int DataProtoDest_Init (DataProtoDest *o, BReactor *reactor, peerid_t dest_id, PacketPassInterface *output, btime_t keepalive_time, btime_t tolerance_time, DataProtoDest_handler handler, void *user)
  233. {
  234. ASSERT(PacketPassInterface_HasCancel(output))
  235. ASSERT(PacketPassInterface_GetMTU(output) >= sizeof(struct dataproto_header) + sizeof(struct dataproto_peer_id))
  236. // init arguments
  237. o->reactor = reactor;
  238. o->dest_id = dest_id;
  239. o->handler = handler;
  240. o->user = user;
  241. // set MTU
  242. o->mtu = PacketPassInterface_GetMTU(output);
  243. // set frame MTU
  244. o->frame_mtu = o->mtu - (sizeof(struct dataproto_header) + sizeof(struct dataproto_peer_id));
  245. // schedule keep-alive (needs to be before the buffer)
  246. BPending_Init(&o->keepalive_job, BReactor_PendingGroup(o->reactor), (BPending_handler)keepalive_job_handler, o);
  247. BPending_Set(&o->keepalive_job);
  248. // init notifier
  249. PacketPassNotifier_Init(&o->notifier, output, BReactor_PendingGroup(o->reactor));
  250. PacketPassNotifier_SetHandler(&o->notifier, (PacketPassNotifier_handler_notify)notifier_handler, o);
  251. // init monitor
  252. PacketPassInactivityMonitor_Init(&o->monitor, PacketPassNotifier_GetInput(&o->notifier), o->reactor, keepalive_time, (PacketPassInactivityMonitor_handler)monitor_handler, o);
  253. // init queue
  254. PacketPassFairQueue_Init(&o->queue, PacketPassInactivityMonitor_GetInput(&o->monitor), BReactor_PendingGroup(o->reactor), 1, 1);
  255. // init keepalive queue flow
  256. PacketPassFairQueueFlow_Init(&o->ka_qflow, &o->queue);
  257. // init keepalive source
  258. DataProtoKeepaliveSource_Init(&o->ka_source, BReactor_PendingGroup(o->reactor));
  259. // init keepalive blocker
  260. PacketRecvBlocker_Init(&o->ka_blocker, DataProtoKeepaliveSource_GetOutput(&o->ka_source), BReactor_PendingGroup(o->reactor));
  261. // init keepalive buffer
  262. if (!SinglePacketBuffer_Init(&o->ka_buffer, PacketRecvBlocker_GetOutput(&o->ka_blocker), PacketPassFairQueueFlow_GetInput(&o->ka_qflow), BReactor_PendingGroup(o->reactor))) {
  263. BLog(BLOG_ERROR, "SinglePacketBuffer_Init failed");
  264. goto fail0;
  265. }
  266. // init receive timer
  267. BTimer_Init(&o->receive_timer, tolerance_time, (BTimer_handler)receive_timer_handler, o);
  268. // set not up
  269. o->up = 0;
  270. // init relay flows list
  271. LinkedList2_Init(&o->relay_flows_list);
  272. // set not freeing
  273. o->freeing = 0;
  274. DebugCounter_Init(&o->flows_counter);
  275. DebugObject_Init(&o->d_obj);
  276. #ifndef NDEBUG
  277. o->d_output = output;
  278. #endif
  279. return 1;
  280. fail0:
  281. PacketRecvBlocker_Free(&o->ka_blocker);
  282. DataProtoKeepaliveSource_Free(&o->ka_source);
  283. PacketPassFairQueueFlow_Free(&o->ka_qflow);
  284. PacketPassFairQueue_Free(&o->queue);
  285. PacketPassInactivityMonitor_Free(&o->monitor);
  286. PacketPassNotifier_Free(&o->notifier);
  287. BPending_Free(&o->keepalive_job);
  288. return 0;
  289. }
  290. void DataProtoDest_Free (DataProtoDest *o)
  291. {
  292. DebugCounter_Free(&o->flows_counter);
  293. DebugObject_Free(&o->d_obj);
  294. // allow freeing queue flows
  295. PacketPassFairQueue_PrepareFree(&o->queue);
  296. // set freeing so free_relay_flow will not attempt releasing
  297. o->freeing = 1;
  298. // free relay flows
  299. LinkedList2Node *node;
  300. while (node = LinkedList2_GetFirst(&o->relay_flows_list)) {
  301. struct dp_relay_flow *flow = UPPER_OBJECT(node, struct dp_relay_flow, dp_list_node);
  302. free_relay_flow(flow);
  303. }
  304. // free receive timer
  305. BReactor_RemoveTimer(o->reactor, &o->receive_timer);
  306. // free keepalive buffer
  307. SinglePacketBuffer_Free(&o->ka_buffer);
  308. // free keepalive blocker
  309. PacketRecvBlocker_Free(&o->ka_blocker);
  310. // free keepalive source
  311. DataProtoKeepaliveSource_Free(&o->ka_source);
  312. // free keepalive queue flow
  313. PacketPassFairQueueFlow_Free(&o->ka_qflow);
  314. // free queue
  315. PacketPassFairQueue_Free(&o->queue);
  316. // free monitor
  317. PacketPassInactivityMonitor_Free(&o->monitor);
  318. // free notifier
  319. PacketPassNotifier_Free(&o->notifier);
  320. // free keepalive job
  321. BPending_Free(&o->keepalive_job);
  322. }
  323. void DataProtoDest_PrepareFree (DataProtoDest *o)
  324. {
  325. DebugObject_Access(&o->d_obj);
  326. // allow freeing queue flows
  327. PacketPassFairQueue_PrepareFree(&o->queue);
  328. // set freeing
  329. o->freeing = 1;
  330. }
  331. void DataProtoDest_SubmitRelayFrame (DataProtoDest *o, DataProtoRelaySource *rs, uint8_t *data, int data_len, int buffer_num_packets)
  332. {
  333. ASSERT(data_len >= 0)
  334. ASSERT(data_len <= o->frame_mtu)
  335. ASSERT(buffer_num_packets > 0)
  336. ASSERT(!o->freeing)
  337. DebugObject_Access(&rs->d_obj);
  338. DebugObject_Access(&o->d_obj);
  339. // lookup relay flow from source to this DataProto
  340. struct dp_relay_flow *flow;
  341. BAVLNode *node = BAVL_LookupExact(&rs->relay_flows_tree, &o);
  342. if (!node) {
  343. // create new flow
  344. create_relay_flow(rs, o, buffer_num_packets, data, data_len);
  345. return;
  346. }
  347. flow = UPPER_OBJECT(node, struct dp_relay_flow, source_tree_node);
  348. // submit frame
  349. submit_relay_frame(flow, data, data_len);
  350. }
  351. void DataProtoDest_Received (DataProtoDest *o, int peer_receiving)
  352. {
  353. ASSERT(peer_receiving == 0 || peer_receiving == 1)
  354. ASSERT(!o->freeing)
  355. DebugObject_Access(&o->d_obj);
  356. int prev_up = o->up;
  357. // reset receive timer
  358. BReactor_SetTimer(o->reactor, &o->receive_timer);
  359. if (!peer_receiving) {
  360. // peer reports not receiving, consider down
  361. o->up = 0;
  362. // send keep-alive to converge faster
  363. send_keepalive(o);
  364. } else {
  365. // consider up
  366. o->up = 1;
  367. }
  368. // call handler if up state changed
  369. if (o->handler && o->up != prev_up) {
  370. o->handler(o->user, o->up);
  371. return;
  372. }
  373. }
  374. int DataProtoDevice_Init (DataProtoDevice *o, PacketRecvInterface *input, DataProtoDevice_handler handler, void *user, BReactor *reactor)
  375. {
  376. ASSERT(PacketRecvInterface_GetMTU(input) <= INT_MAX - DATAPROTO_MAX_OVERHEAD)
  377. // init arguments
  378. o->handler = handler;
  379. o->user = user;
  380. o->reactor = reactor;
  381. // remember frame MTU
  382. o->frame_mtu = PacketRecvInterface_GetMTU(input);
  383. // init router
  384. if (!PacketRouter_Init(&o->router, DATAPROTO_MAX_OVERHEAD + o->frame_mtu, DATAPROTO_MAX_OVERHEAD, input, (PacketRouter_handler)device_router_handler, o, BReactor_PendingGroup(reactor))) {
  385. goto fail1;
  386. }
  387. DebugObject_Init(&o->d_obj);
  388. DebugCounter_Init(&o->d_ctr);
  389. return 1;
  390. fail1:
  391. return 0;
  392. }
  393. void DataProtoDevice_Free (DataProtoDevice *o)
  394. {
  395. DebugCounter_Free(&o->d_ctr);
  396. DebugObject_Free(&o->d_obj);
  397. // free router
  398. PacketRouter_Free(&o->router);
  399. }
  400. int DataProtoLocalSource_Init (DataProtoLocalSource *o, DataProtoDevice *device, peerid_t source_id, peerid_t dest_id, int num_packets)
  401. {
  402. ASSERT(num_packets > 0)
  403. // init arguments
  404. o->device = device;
  405. o->source_id = source_id;
  406. o->dest_id = dest_id;
  407. // init connector
  408. PacketPassConnector_Init(&o->connector, DATAPROTO_MAX_OVERHEAD + device->frame_mtu, BReactor_PendingGroup(device->reactor));
  409. // init route buffer
  410. if (!RouteBuffer_Init(&o->rbuf, DATAPROTO_MAX_OVERHEAD + device->frame_mtu, PacketPassConnector_GetInput(&o->connector), num_packets)) {
  411. BLog(BLOG_ERROR, "RouteBuffer_Init failed");
  412. goto fail1;
  413. }
  414. // set no DataProto
  415. o->dp = NULL;
  416. DebugObject_Init(&o->d_obj);
  417. DebugCounter_Increment(&device->d_ctr);
  418. return 1;
  419. fail1:
  420. PacketPassConnector_Free(&o->connector);
  421. fail0:
  422. return 0;
  423. }
  424. void DataProtoLocalSource_Free (DataProtoLocalSource *o)
  425. {
  426. ASSERT(!o->dp)
  427. DebugCounter_Decrement(&o->device->d_ctr);
  428. DebugObject_Free(&o->d_obj);
  429. // free route buffer
  430. RouteBuffer_Free(&o->rbuf);
  431. // free connector
  432. PacketPassConnector_Free(&o->connector);
  433. }
  434. void DataProtoLocalSource_Route (DataProtoLocalSource *o, int more)
  435. {
  436. ASSERT(more == 0 || more == 1)
  437. PacketRouter_AssertRoute(&o->device->router);
  438. ASSERT(o->device->current_buf)
  439. if (o->dp) {
  440. ASSERT(!o->dp->freeing)
  441. }
  442. DebugObject_Access(&o->d_obj);
  443. // write header
  444. struct dataproto_header *header = (struct dataproto_header *)o->device->current_buf;
  445. // don't set flags, it will be set in notifier_handler
  446. header->from_id = htol16(o->source_id);
  447. header->num_peer_ids = htol16(1);
  448. struct dataproto_peer_id *id = (struct dataproto_peer_id *)(header + 1);
  449. id->id = htol16(o->dest_id);
  450. // route
  451. uint8_t *next_buf;
  452. if (!PacketRouter_Route(
  453. &o->device->router, DATAPROTO_MAX_OVERHEAD + o->device->current_recv_len, &o->rbuf,
  454. &next_buf, DATAPROTO_MAX_OVERHEAD, (more ? o->device->current_recv_len : 0)
  455. )) {
  456. BLog(BLOG_NOTICE, "out of buffer for frame from peer %d to %d", (int)o->source_id, (int)o->dest_id);
  457. return;
  458. }
  459. o->device->current_buf = (more ? next_buf : NULL);
  460. }
  461. void DataProtoLocalSource_Attach (DataProtoLocalSource *o, DataProtoDest *dp)
  462. {
  463. ASSERT(dp)
  464. ASSERT(!o->dp)
  465. ASSERT(o->device->frame_mtu <= dp->frame_mtu)
  466. ASSERT(!dp->freeing)
  467. DebugObject_Access(&o->d_obj);
  468. DebugObject_Access(&dp->d_obj);
  469. // set DataProto
  470. o->dp = dp;
  471. // init queue flow
  472. PacketPassFairQueueFlow_Init(&o->dp_qflow, &dp->queue);
  473. // connect to queue flow
  474. PacketPassConnector_ConnectOutput(&o->connector, PacketPassFairQueueFlow_GetInput(&o->dp_qflow));
  475. // increment flows counter
  476. DebugCounter_Increment(&dp->flows_counter);
  477. }
  478. void DataProtoLocalSource_Detach (DataProtoLocalSource *o)
  479. {
  480. #ifndef NDEBUG
  481. ASSERT(o->dp)
  482. #endif
  483. DebugObject_Access(&o->d_obj);
  484. DataProtoDest *dp = o->dp;
  485. // release flow if needed
  486. if (!o->dp->freeing && PacketPassFairQueueFlow_IsBusy(&o->dp_qflow)) {
  487. PacketPassFairQueueFlow_Release(&o->dp_qflow);
  488. }
  489. // decrement flows counter
  490. DebugCounter_Decrement(&dp->flows_counter);
  491. // disconnect from queue flow
  492. PacketPassConnector_DisconnectOutput(&o->connector);
  493. // free queue flow
  494. PacketPassFairQueueFlow_Free(&o->dp_qflow);
  495. // set no DataProto
  496. o->dp = NULL;
  497. }
  498. void DataProtoRelaySource_Init (DataProtoRelaySource *o, peerid_t source_id)
  499. {
  500. // init arguments
  501. o->source_id = source_id;
  502. // init relay flows list
  503. LinkedList2_Init(&o->relay_flows_list);
  504. // init relay flows tree
  505. BAVL_Init(&o->relay_flows_tree, OFFSET_DIFF(struct dp_relay_flow, dp, source_tree_node), (BAVL_comparator)pointer_comparator, NULL);
  506. DebugObject_Init(&o->d_obj);
  507. }
  508. void DataProtoRelaySource_Free (DataProtoRelaySource *o)
  509. {
  510. ASSERT(BAVL_IsEmpty(&o->relay_flows_tree))
  511. ASSERT(LinkedList2_IsEmpty(&o->relay_flows_list))
  512. DebugObject_Free(&o->d_obj);
  513. }
  514. void DataProtoRelaySource_AssertFree (DataProtoRelaySource *o)
  515. {
  516. ASSERT(LinkedList2_IsEmpty(&o->relay_flows_list))
  517. DebugObject_Access(&o->d_obj);
  518. }
  519. void DataProtoRelaySource_Release (DataProtoRelaySource *o)
  520. {
  521. DebugObject_Access(&o->d_obj);
  522. LinkedList2Node *node;
  523. while (node = LinkedList2_GetFirst(&o->relay_flows_list)) {
  524. struct dp_relay_flow *flow = UPPER_OBJECT(node, struct dp_relay_flow, source_list_node);
  525. free_relay_flow(flow);
  526. }
  527. }
  528. void DataProtoRelaySource_FreeRelease (DataProtoRelaySource *o)
  529. {
  530. DebugObject_Access(&o->d_obj);
  531. LinkedList2Node *node;
  532. while (node = LinkedList2_GetFirst(&o->relay_flows_list)) {
  533. struct dp_relay_flow *flow = UPPER_OBJECT(node, struct dp_relay_flow, source_list_node);
  534. DataProtoDest_PrepareFree(flow->dp);
  535. free_relay_flow(flow);
  536. }
  537. }