client.c 90 KB

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  1. /**
  2. * @file client.c
  3. * @author Ambroz Bizjak <ambrop7@gmail.com>
  4. *
  5. * @section LICENSE
  6. *
  7. * Redistribution and use in source and binary forms, with or without
  8. * modification, are permitted provided that the following conditions are met:
  9. * 1. Redistributions of source code must retain the above copyright
  10. * notice, this list of conditions and the following disclaimer.
  11. * 2. Redistributions in binary form must reproduce the above copyright
  12. * notice, this list of conditions and the following disclaimer in the
  13. * documentation and/or other materials provided with the distribution.
  14. * 3. Neither the name of the author nor the
  15. * names of its contributors may be used to endorse or promote products
  16. * derived from this software without specific prior written permission.
  17. *
  18. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
  19. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
  20. * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  21. * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
  22. * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
  23. * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
  24. * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
  25. * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  26. * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
  27. * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  28. */
  29. #include <stdint.h>
  30. #include <stdlib.h>
  31. #include <string.h>
  32. #include <limits.h>
  33. #include <protocol/msgproto.h>
  34. #include <protocol/addr.h>
  35. #include <protocol/dataproto.h>
  36. #include <misc/version.h>
  37. #include <misc/debug.h>
  38. #include <misc/offset.h>
  39. #include <misc/byteorder.h>
  40. #include <misc/nsskey.h>
  41. #include <misc/loglevel.h>
  42. #include <misc/loggers_string.h>
  43. #include <misc/string_begins_with.h>
  44. #include <misc/open_standard_streams.h>
  45. #include <structure/LinkedList2.h>
  46. #include <base/DebugObject.h>
  47. #include <base/BLog.h>
  48. #include <security/BSecurity.h>
  49. #include <security/BRandom.h>
  50. #include <system/BSignal.h>
  51. #include <system/BTime.h>
  52. #include <system/BNetwork.h>
  53. #include <nspr_support/DummyPRFileDesc.h>
  54. #include <nspr_support/BSSLConnection.h>
  55. #include <server_connection/ServerConnection.h>
  56. #include <tuntap/BTap.h>
  57. #ifndef BADVPN_USE_WINAPI
  58. #include <base/BLog_syslog.h>
  59. #endif
  60. #include <client/client.h>
  61. #include <generated/blog_channel_client.h>
  62. #define TRANSPORT_MODE_UDP 0
  63. #define TRANSPORT_MODE_TCP 1
  64. #define LOGGER_STDOUT 1
  65. #define LOGGER_SYSLOG 2
  66. // command-line options
  67. struct ext_addr_option {
  68. char *addr;
  69. char *scope;
  70. };
  71. struct bind_addr_option {
  72. char *addr;
  73. int num_ports;
  74. int num_ext_addrs;
  75. struct ext_addr_option ext_addrs[MAX_EXT_ADDRS];
  76. };
  77. struct {
  78. int help;
  79. int version;
  80. int logger;
  81. #ifndef BADVPN_USE_WINAPI
  82. char *logger_syslog_facility;
  83. char *logger_syslog_ident;
  84. #endif
  85. int loglevel;
  86. int loglevels[BLOG_NUM_CHANNELS];
  87. int threads;
  88. int ssl;
  89. char *nssdb;
  90. char *client_cert_name;
  91. char *server_name;
  92. char *server_addr;
  93. char *tapdev;
  94. int num_scopes;
  95. char *scopes[MAX_SCOPES];
  96. int num_bind_addrs;
  97. struct bind_addr_option bind_addrs[MAX_BIND_ADDRS];
  98. int transport_mode;
  99. int encryption_mode;
  100. int hash_mode;
  101. int otp_mode;
  102. int otp_num;
  103. int otp_num_warn;
  104. int fragmentation_latency;
  105. int peer_ssl;
  106. int peer_tcp_socket_sndbuf;
  107. int send_buffer_size;
  108. int send_buffer_relay_size;
  109. int max_macs;
  110. int max_groups;
  111. int igmp_group_membership_interval;
  112. int igmp_last_member_query_time;
  113. int allow_peer_talk_without_ssl;
  114. } options;
  115. // bind addresses
  116. struct ext_addr {
  117. int server_reported_port;
  118. BAddr addr; // if server_reported_port>=0, defined only after hello received
  119. char scope[64];
  120. };
  121. struct bind_addr {
  122. BAddr addr;
  123. int num_ports;
  124. int num_ext_addrs;
  125. struct ext_addr ext_addrs[MAX_EXT_ADDRS];
  126. };
  127. int num_bind_addrs;
  128. struct bind_addr bind_addrs[MAX_BIND_ADDRS];
  129. // TCP listeners
  130. PasswordListener listeners[MAX_BIND_ADDRS];
  131. // SPProto parameters (UDP only)
  132. struct spproto_security_params sp_params;
  133. // server address we connect to
  134. BAddr server_addr;
  135. // server name to use for SSL
  136. char server_name[256];
  137. // reactor
  138. BReactor ss;
  139. // thread work dispatcher
  140. BThreadWorkDispatcher twd;
  141. // client certificate if using SSL
  142. CERTCertificate *client_cert;
  143. // client private key if using SSL
  144. SECKEYPrivateKey *client_key;
  145. // device
  146. BTap device;
  147. int device_mtu;
  148. // DataProtoSource for device input (reading)
  149. DataProtoSource device_dpsource;
  150. // DPReceiveDevice for device output (writing)
  151. DPReceiveDevice device_output_dprd;
  152. // data communication MTU
  153. int data_mtu;
  154. // peers list
  155. LinkedList2 peers;
  156. int num_peers;
  157. // frame decider
  158. FrameDecider frame_decider;
  159. // peers that can be user as relays
  160. LinkedList2 relays;
  161. // peers than need a relay
  162. LinkedList2 waiting_relay_peers;
  163. // server connection
  164. ServerConnection server;
  165. // my ID, defined only after server_ready
  166. peerid_t my_id;
  167. // fair queue for sending peer messages to the server
  168. PacketPassFairQueue server_queue;
  169. // whether server is ready
  170. int server_ready;
  171. // dying server flow
  172. struct server_flow *dying_server_flow;
  173. // stops event processing, causing the program to exit
  174. static void terminate (void);
  175. // prints program name and version to standard output
  176. static void print_help (const char *name);
  177. // prints program name and version to standard output
  178. static void print_version (void);
  179. // parses the command line
  180. static int parse_arguments (int argc, char *argv[]);
  181. // processes certain command line options
  182. static int process_arguments (void);
  183. // handler for program termination request
  184. static void signal_handler (void *unused);
  185. // adds a new peer
  186. static void peer_add (peerid_t id, int flags, const uint8_t *cert, int cert_len);
  187. // removes a peer
  188. static void peer_remove (struct peer_data *peer, int exiting);
  189. // appends the peer log prefix to the logger
  190. static void peer_logfunc (struct peer_data *peer);
  191. // passes a message to the logger, prepending it info about the peer
  192. static void peer_log (struct peer_data *peer, int level, const char *fmt, ...);
  193. // see if we are the master relative to this peer
  194. static int peer_am_master (struct peer_data *peer);
  195. // frees PeerChat, disconnecting it from the server flow
  196. static void peer_free_chat (struct peer_data *peer);
  197. // initializes the link
  198. static int peer_init_link (struct peer_data *peer);
  199. // frees link resources
  200. static void peer_free_link (struct peer_data *peer);
  201. // frees link, relaying, waiting relaying
  202. static void peer_cleanup_connections (struct peer_data *peer);
  203. // registers the peer as a relay provider
  204. static void peer_enable_relay_provider (struct peer_data *peer);
  205. // unregisters the peer as a relay provider
  206. static void peer_disable_relay_provider (struct peer_data *peer);
  207. // install relaying for a peer
  208. static void peer_install_relaying (struct peer_data *peer, struct peer_data *relay);
  209. // uninstall relaying for a peer
  210. static void peer_free_relaying (struct peer_data *peer);
  211. // handle a peer that needs a relay
  212. static void peer_need_relay (struct peer_data *peer);
  213. // inserts the peer into the need relay list
  214. static void peer_register_need_relay (struct peer_data *peer);
  215. // removes the peer from the need relay list
  216. static void peer_unregister_need_relay (struct peer_data *peer);
  217. // handle a link setup failure
  218. static void peer_reset (struct peer_data *peer);
  219. // fees chat and sends resetpeer
  220. static void peer_resetpeer (struct peer_data *peer);
  221. // chat handlers
  222. static void peer_chat_handler_error (struct peer_data *peer);
  223. static void peer_chat_handler_message (struct peer_data *peer, uint8_t *data, int data_len);
  224. // handlers for different message types
  225. static void peer_msg_youconnect (struct peer_data *peer, uint8_t *data, int data_len);
  226. static void peer_msg_cannotconnect (struct peer_data *peer, uint8_t *data, int data_len);
  227. static void peer_msg_cannotbind (struct peer_data *peer, uint8_t *data, int data_len);
  228. static void peer_msg_seed (struct peer_data *peer, uint8_t *data, int data_len);
  229. static void peer_msg_confirmseed (struct peer_data *peer, uint8_t *data, int data_len);
  230. static void peer_msg_youretry (struct peer_data *peer, uint8_t *data, int data_len);
  231. // handler from DatagramPeerIO when we should generate a new OTP send seed
  232. static void peer_udp_pio_handler_seed_warning (struct peer_data *peer);
  233. // handler from DatagramPeerIO when a new OTP seed can be recognized once it was provided to it
  234. static void peer_udp_pio_handler_seed_ready (struct peer_data *peer);
  235. // handler from DatagramPeerIO when an error occurs on the connection
  236. static void peer_udp_pio_handler_error (struct peer_data *peer);
  237. // handler from StreamPeerIO when an error occurs on the connection
  238. static void peer_tcp_pio_handler_error (struct peer_data *peer);
  239. // peer retry timer handler. The timer is used only on the master side,
  240. // wither when we detect an error, or the peer reports an error.
  241. static void peer_reset_timer_handler (struct peer_data *peer);
  242. // start binding, according to the protocol
  243. static void peer_start_binding (struct peer_data *peer);
  244. // tries binding on one address, according to the protocol
  245. static void peer_bind (struct peer_data *peer);
  246. static void peer_bind_one_address (struct peer_data *peer, int addr_index, int *cont);
  247. static void peer_connect (struct peer_data *peer, BAddr addr, uint8_t *encryption_key, uint64_t password);
  248. static int peer_start_msg (struct peer_data *peer, void **data, int type, int len);
  249. static void peer_end_msg (struct peer_data *peer);
  250. // sends a message with no payload to the peer
  251. static void peer_send_simple (struct peer_data *peer, int msgid);
  252. static void peer_send_conectinfo (struct peer_data *peer, int addr_index, int port_adjust, uint8_t *enckey, uint64_t pass);
  253. static void peer_send_confirmseed (struct peer_data *peer, uint16_t seed_id);
  254. // handler for peer DataProto up state changes
  255. static void peer_dataproto_handler (struct peer_data *peer, int up);
  256. // looks for a peer with the given ID
  257. static struct peer_data * find_peer_by_id (peerid_t id);
  258. // device error handler
  259. static void device_error_handler (void *unused);
  260. // DataProtoSource handler for packets from the device
  261. static void device_dpsource_handler (void *unused, const uint8_t *frame, int frame_len);
  262. // assign relays to clients waiting for them
  263. static void assign_relays (void);
  264. // checks if the given address scope is known (i.e. we can connect to an address in it)
  265. static char * address_scope_known (uint8_t *name, int name_len);
  266. // handlers for server messages
  267. static void server_handler_error (void *user);
  268. static void server_handler_ready (void *user, peerid_t param_my_id, uint32_t ext_ip);
  269. static void server_handler_newclient (void *user, peerid_t peer_id, int flags, const uint8_t *cert, int cert_len);
  270. static void server_handler_endclient (void *user, peerid_t peer_id);
  271. static void server_handler_message (void *user, peerid_t peer_id, uint8_t *data, int data_len);
  272. // jobs
  273. static void peer_job_send_seed (struct peer_data *peer);
  274. static void peer_job_init (struct peer_data *peer);
  275. // server flows
  276. static struct server_flow * server_flow_init (void);
  277. static void server_flow_free (struct server_flow *flow);
  278. static void server_flow_die (struct server_flow *flow);
  279. static void server_flow_qflow_handler_busy (struct server_flow *flow);
  280. static void server_flow_connect (struct server_flow *flow, PacketRecvInterface *input);
  281. static void server_flow_disconnect (struct server_flow *flow);
  282. int main (int argc, char *argv[])
  283. {
  284. if (argc <= 0) {
  285. return 1;
  286. }
  287. // open standard streams
  288. open_standard_streams();
  289. // parse command-line arguments
  290. if (!parse_arguments(argc, argv)) {
  291. fprintf(stderr, "Failed to parse arguments\n");
  292. print_help(argv[0]);
  293. goto fail0;
  294. }
  295. // handle --help and --version
  296. if (options.help) {
  297. print_version();
  298. print_help(argv[0]);
  299. return 0;
  300. }
  301. if (options.version) {
  302. print_version();
  303. return 0;
  304. }
  305. // initialize logger
  306. switch (options.logger) {
  307. case LOGGER_STDOUT:
  308. BLog_InitStdout();
  309. break;
  310. #ifndef BADVPN_USE_WINAPI
  311. case LOGGER_SYSLOG:
  312. if (!BLog_InitSyslog(options.logger_syslog_ident, options.logger_syslog_facility)) {
  313. fprintf(stderr, "Failed to initialize syslog logger\n");
  314. goto fail0;
  315. }
  316. break;
  317. #endif
  318. default:
  319. ASSERT(0);
  320. }
  321. // configure logger channels
  322. for (int i = 0; i < BLOG_NUM_CHANNELS; i++) {
  323. if (options.loglevels[i] >= 0) {
  324. BLog_SetChannelLoglevel(i, options.loglevels[i]);
  325. }
  326. else if (options.loglevel >= 0) {
  327. BLog_SetChannelLoglevel(i, options.loglevel);
  328. }
  329. }
  330. BLog(BLOG_NOTICE, "initializing "GLOBAL_PRODUCT_NAME" "PROGRAM_NAME" "GLOBAL_VERSION);
  331. // initialize network
  332. if (!BNetwork_GlobalInit()) {
  333. BLog(BLOG_ERROR, "BNetwork_GlobalInit failed");
  334. goto fail1;
  335. }
  336. // init time
  337. BTime_Init();
  338. // process arguments
  339. if (!process_arguments()) {
  340. BLog(BLOG_ERROR, "Failed to process arguments");
  341. goto fail1;
  342. }
  343. // init reactor
  344. if (!BReactor_Init(&ss)) {
  345. BLog(BLOG_ERROR, "BReactor_Init failed");
  346. goto fail1;
  347. }
  348. // setup signal handler
  349. if (!BSignal_Init(&ss, signal_handler, NULL)) {
  350. BLog(BLOG_ERROR, "BSignal_Init failed");
  351. goto fail2;
  352. }
  353. // init thread work dispatcher
  354. if (!BThreadWorkDispatcher_Init(&twd, &ss, options.threads)) {
  355. BLog(BLOG_ERROR, "BThreadWorkDispatcher_Init failed");
  356. goto fail3;
  357. }
  358. // init BSecurity
  359. if (BThreadWorkDispatcher_UsingThreads(&twd)) {
  360. if (!BSecurity_GlobalInitThreadSafe()) {
  361. BLog(BLOG_ERROR, "BSecurity_GlobalInitThreadSafe failed");
  362. goto fail4;
  363. }
  364. }
  365. if (options.ssl) {
  366. // init NSPR
  367. PR_Init(PR_USER_THREAD, PR_PRIORITY_NORMAL, 0);
  368. // register local NSPR file types
  369. if (!DummyPRFileDesc_GlobalInit()) {
  370. BLog(BLOG_ERROR, "DummyPRFileDesc_GlobalInit failed");
  371. goto fail5;
  372. }
  373. if (!BSSLConnection_GlobalInit()) {
  374. BLog(BLOG_ERROR, "BSSLConnection_GlobalInit failed");
  375. goto fail5;
  376. }
  377. // init NSS
  378. if (NSS_Init(options.nssdb) != SECSuccess) {
  379. BLog(BLOG_ERROR, "NSS_Init failed (%d)", (int)PR_GetError());
  380. goto fail5;
  381. }
  382. // set cipher policy
  383. if (NSS_SetDomesticPolicy() != SECSuccess) {
  384. BLog(BLOG_ERROR, "NSS_SetDomesticPolicy failed (%d)", (int)PR_GetError());
  385. goto fail6;
  386. }
  387. // init server cache
  388. if (SSL_ConfigServerSessionIDCache(0, 0, 0, NULL) != SECSuccess) {
  389. BLog(BLOG_ERROR, "SSL_ConfigServerSessionIDCache failed (%d)", (int)PR_GetError());
  390. goto fail6;
  391. }
  392. // open server certificate and private key
  393. if (!open_nss_cert_and_key(options.client_cert_name, &client_cert, &client_key)) {
  394. BLog(BLOG_ERROR, "Cannot open certificate and key");
  395. goto fail7;
  396. }
  397. }
  398. // init listeners
  399. int num_listeners = 0;
  400. if (options.transport_mode == TRANSPORT_MODE_TCP) {
  401. while (num_listeners < num_bind_addrs) {
  402. struct bind_addr *addr = &bind_addrs[num_listeners];
  403. if (!PasswordListener_Init(&listeners[num_listeners], &ss, addr->addr, TCP_MAX_PASSWORD_LISTENER_CLIENTS, options.peer_ssl, client_cert, client_key)) {
  404. BLog(BLOG_ERROR, "PasswordListener_Init failed");
  405. goto fail8;
  406. }
  407. num_listeners++;
  408. }
  409. }
  410. // init device
  411. if (!BTap_Init(&device, &ss, options.tapdev, device_error_handler, NULL, 0)) {
  412. BLog(BLOG_ERROR, "BTap_Init failed");
  413. goto fail8;
  414. }
  415. // remember device MTU
  416. device_mtu = BTap_GetMTU(&device);
  417. BLog(BLOG_INFO, "device MTU is %d", device_mtu);
  418. // calculate data MTU
  419. if (device_mtu > INT_MAX - DATAPROTO_MAX_OVERHEAD) {
  420. BLog(BLOG_ERROR, "Device MTU is too large");
  421. goto fail9;
  422. }
  423. data_mtu = DATAPROTO_MAX_OVERHEAD + device_mtu;
  424. // init device input
  425. if (!DataProtoSource_Init(&device_dpsource, BTap_GetOutput(&device), device_dpsource_handler, NULL, &ss)) {
  426. BLog(BLOG_ERROR, "DataProtoSource_Init failed");
  427. goto fail9;
  428. }
  429. // init device output
  430. if (!DPReceiveDevice_Init(&device_output_dprd, device_mtu, (DPReceiveDevice_output_func)BTap_Send, &device, &ss, options.send_buffer_relay_size, PEER_RELAY_FLOW_INACTIVITY_TIME)) {
  431. BLog(BLOG_ERROR, "DPReceiveDevice_Init failed");
  432. goto fail10;
  433. }
  434. // init peers list
  435. LinkedList2_Init(&peers);
  436. num_peers = 0;
  437. // init frame decider
  438. FrameDecider_Init(&frame_decider, options.max_macs, options.max_groups, options.igmp_group_membership_interval, options.igmp_last_member_query_time, &ss);
  439. // init relays list
  440. LinkedList2_Init(&relays);
  441. // init need relay list
  442. LinkedList2_Init(&waiting_relay_peers);
  443. // start connecting to server
  444. if (!ServerConnection_Init(&server, &ss, server_addr, SC_KEEPALIVE_INTERVAL, SERVER_BUFFER_MIN_PACKETS, options.ssl, client_cert, client_key, server_name, NULL,
  445. server_handler_error, server_handler_ready, server_handler_newclient, server_handler_endclient, server_handler_message
  446. )) {
  447. BLog(BLOG_ERROR, "ServerConnection_Init failed");
  448. goto fail11;
  449. }
  450. // set server not ready
  451. server_ready = 0;
  452. // set no dying flow
  453. dying_server_flow = NULL;
  454. // enter event loop
  455. BLog(BLOG_NOTICE, "entering event loop");
  456. BReactor_Exec(&ss);
  457. // allow freeing server queue flows
  458. if (server_ready) {
  459. PacketPassFairQueue_PrepareFree(&server_queue);
  460. }
  461. // free peers
  462. LinkedList2Node *node;
  463. while (node = LinkedList2_GetFirst(&peers)) {
  464. struct peer_data *peer = UPPER_OBJECT(node, struct peer_data, list_node);
  465. peer_remove(peer, 1);
  466. }
  467. // free dying server flow
  468. if (dying_server_flow) {
  469. server_flow_free(dying_server_flow);
  470. }
  471. if (server_ready) {
  472. PacketPassFairQueue_Free(&server_queue);
  473. }
  474. ServerConnection_Free(&server);
  475. fail11:
  476. FrameDecider_Free(&frame_decider);
  477. DPReceiveDevice_Free(&device_output_dprd);
  478. fail10:
  479. DataProtoSource_Free(&device_dpsource);
  480. fail9:
  481. BTap_Free(&device);
  482. fail8:
  483. if (options.transport_mode == TRANSPORT_MODE_TCP) {
  484. while (num_listeners-- > 0) {
  485. PasswordListener_Free(&listeners[num_listeners]);
  486. }
  487. }
  488. if (options.ssl) {
  489. CERT_DestroyCertificate(client_cert);
  490. SECKEY_DestroyPrivateKey(client_key);
  491. fail7:
  492. ASSERT_FORCE(SSL_ShutdownServerSessionIDCache() == SECSuccess)
  493. fail6:
  494. SSL_ClearSessionCache();
  495. ASSERT_FORCE(NSS_Shutdown() == SECSuccess)
  496. fail5:
  497. ASSERT_FORCE(PR_Cleanup() == PR_SUCCESS)
  498. PL_ArenaFinish();
  499. }
  500. if (BThreadWorkDispatcher_UsingThreads(&twd)) {
  501. BSecurity_GlobalFreeThreadSafe();
  502. }
  503. fail4:
  504. BThreadWorkDispatcher_Free(&twd);
  505. fail3:
  506. BSignal_Finish();
  507. fail2:
  508. BReactor_Free(&ss);
  509. fail1:
  510. BLog(BLOG_NOTICE, "exiting");
  511. BLog_Free();
  512. fail0:
  513. // finish objects
  514. DebugObjectGlobal_Finish();
  515. return 1;
  516. }
  517. void terminate (void)
  518. {
  519. BLog(BLOG_NOTICE, "tearing down");
  520. // exit event loop
  521. BReactor_Quit(&ss, 0);
  522. }
  523. void print_help (const char *name)
  524. {
  525. printf(
  526. "Usage:\n"
  527. " %s\n"
  528. " [--help]\n"
  529. " [--version]\n"
  530. " [--logger <"LOGGERS_STRING">]\n"
  531. #ifndef BADVPN_USE_WINAPI
  532. " (logger=syslog?\n"
  533. " [--syslog-facility <string>]\n"
  534. " [--syslog-ident <string>]\n"
  535. " )\n"
  536. #endif
  537. " [--loglevel <0-5/none/error/warning/notice/info/debug>]\n"
  538. " [--channel-loglevel <channel-name> <0-5/none/error/warning/notice/info/debug>] ...\n"
  539. " [--threads <integer>]\n"
  540. " [--ssl --nssdb <string> --client-cert-name <string>]\n"
  541. " [--server-name <string>]\n"
  542. " --server-addr <addr>\n"
  543. " [--tapdev <name>]\n"
  544. " [--scope <scope_name>] ...\n"
  545. " [\n"
  546. " --bind-addr <addr>\n"
  547. " (transport-mode=udp? --num-ports <num>)\n"
  548. " [--ext-addr <addr / {server_reported}:port> <scope_name>] ...\n"
  549. " ] ...\n"
  550. " --transport-mode <udp/tcp>\n"
  551. " (transport-mode=udp?\n"
  552. " --encryption-mode <blowfish/aes/none>\n"
  553. " --hash-mode <md5/sha1/none>\n"
  554. " [--otp <blowfish/aes> <num> <num-warn>]\n"
  555. " [--fragmentation-latency <milliseconds>]\n"
  556. " )\n"
  557. " (transport-mode=tcp?\n"
  558. " (ssl? [--peer-ssl])\n"
  559. " [--peer-tcp-socket-sndbuf <bytes / 0>]\n"
  560. " )\n"
  561. " [--send-buffer-size <num-packets>]\n"
  562. " [--send-buffer-relay-size <num-packets>]\n"
  563. " [--max-macs <num>]\n"
  564. " [--max-groups <num>]\n"
  565. " [--igmp-group-membership-interval <ms>]\n"
  566. " [--igmp-last-member-query-time <ms>]\n"
  567. " [--allow-peer-talk-without-ssl]\n"
  568. "Address format is a.b.c.d:port (IPv4) or [addr]:port (IPv6).\n",
  569. name
  570. );
  571. }
  572. void print_version (void)
  573. {
  574. printf(GLOBAL_PRODUCT_NAME" "PROGRAM_NAME" "GLOBAL_VERSION"\n"GLOBAL_COPYRIGHT_NOTICE"\n");
  575. }
  576. int parse_arguments (int argc, char *argv[])
  577. {
  578. if (argc <= 0) {
  579. return 0;
  580. }
  581. options.help = 0;
  582. options.version = 0;
  583. options.logger = LOGGER_STDOUT;
  584. #ifndef BADVPN_USE_WINAPI
  585. options.logger_syslog_facility = "daemon";
  586. options.logger_syslog_ident = argv[0];
  587. #endif
  588. options.loglevel = -1;
  589. for (int i = 0; i < BLOG_NUM_CHANNELS; i++) {
  590. options.loglevels[i] = -1;
  591. }
  592. options.threads = 0;
  593. options.ssl = 0;
  594. options.nssdb = NULL;
  595. options.client_cert_name = NULL;
  596. options.server_name = NULL;
  597. options.server_addr = NULL;
  598. options.tapdev = NULL;
  599. options.num_scopes = 0;
  600. options.num_bind_addrs = 0;
  601. options.transport_mode = -1;
  602. options.encryption_mode = -1;
  603. options.hash_mode = -1;
  604. options.otp_mode = SPPROTO_OTP_MODE_NONE;
  605. options.fragmentation_latency = PEER_DEFAULT_UDP_FRAGMENTATION_LATENCY;
  606. options.peer_ssl = 0;
  607. options.peer_tcp_socket_sndbuf = -1;
  608. options.send_buffer_size = PEER_DEFAULT_SEND_BUFFER_SIZE;
  609. options.send_buffer_relay_size = PEER_DEFAULT_SEND_BUFFER_RELAY_SIZE;
  610. options.max_macs = PEER_DEFAULT_MAX_MACS;
  611. options.max_groups = PEER_DEFAULT_MAX_GROUPS;
  612. options.igmp_group_membership_interval = DEFAULT_IGMP_GROUP_MEMBERSHIP_INTERVAL;
  613. options.igmp_last_member_query_time = DEFAULT_IGMP_LAST_MEMBER_QUERY_TIME;
  614. options.allow_peer_talk_without_ssl = 0;
  615. int have_fragmentation_latency = 0;
  616. int i;
  617. for (i = 1; i < argc; i++) {
  618. char *arg = argv[i];
  619. if (!strcmp(arg, "--help")) {
  620. options.help = 1;
  621. }
  622. else if (!strcmp(arg, "--version")) {
  623. options.version = 1;
  624. }
  625. else if (!strcmp(arg, "--logger")) {
  626. if (1 >= argc - i) {
  627. fprintf(stderr, "%s: requires an argument\n", arg);
  628. return 0;
  629. }
  630. char *arg2 = argv[i + 1];
  631. if (!strcmp(arg2, "stdout")) {
  632. options.logger = LOGGER_STDOUT;
  633. }
  634. #ifndef BADVPN_USE_WINAPI
  635. else if (!strcmp(arg2, "syslog")) {
  636. options.logger = LOGGER_SYSLOG;
  637. }
  638. #endif
  639. else {
  640. fprintf(stderr, "%s: wrong argument\n", arg);
  641. return 0;
  642. }
  643. i++;
  644. }
  645. #ifndef BADVPN_USE_WINAPI
  646. else if (!strcmp(arg, "--syslog-facility")) {
  647. if (1 >= argc - i) {
  648. fprintf(stderr, "%s: requires an argument\n", arg);
  649. return 0;
  650. }
  651. options.logger_syslog_facility = argv[i + 1];
  652. i++;
  653. }
  654. else if (!strcmp(arg, "--syslog-ident")) {
  655. if (1 >= argc - i) {
  656. fprintf(stderr, "%s: requires an argument\n", arg);
  657. return 0;
  658. }
  659. options.logger_syslog_ident = argv[i + 1];
  660. i++;
  661. }
  662. #endif
  663. else if (!strcmp(arg, "--loglevel")) {
  664. if (1 >= argc - i) {
  665. fprintf(stderr, "%s: requires an argument\n", arg);
  666. return 0;
  667. }
  668. if ((options.loglevel = parse_loglevel(argv[i + 1])) < 0) {
  669. fprintf(stderr, "%s: wrong argument\n", arg);
  670. return 0;
  671. }
  672. i++;
  673. }
  674. else if (!strcmp(arg, "--channel-loglevel")) {
  675. if (2 >= argc - i) {
  676. fprintf(stderr, "%s: requires two arguments\n", arg);
  677. return 0;
  678. }
  679. int channel = BLogGlobal_GetChannelByName(argv[i + 1]);
  680. if (channel < 0) {
  681. fprintf(stderr, "%s: wrong channel argument\n", arg);
  682. return 0;
  683. }
  684. int loglevel = parse_loglevel(argv[i + 2]);
  685. if (loglevel < 0) {
  686. fprintf(stderr, "%s: wrong loglevel argument\n", arg);
  687. return 0;
  688. }
  689. options.loglevels[channel] = loglevel;
  690. i += 2;
  691. }
  692. else if (!strcmp(arg, "--threads")) {
  693. if (1 >= argc - i) {
  694. fprintf(stderr, "%s: requires an argument\n", arg);
  695. return 0;
  696. }
  697. options.threads = atoi(argv[i + 1]);
  698. i++;
  699. }
  700. else if (!strcmp(arg, "--ssl")) {
  701. options.ssl = 1;
  702. }
  703. else if (!strcmp(arg, "--nssdb")) {
  704. if (1 >= argc - i) {
  705. fprintf(stderr, "%s: requires an argument\n", arg);
  706. return 0;
  707. }
  708. options.nssdb = argv[i + 1];
  709. i++;
  710. }
  711. else if (!strcmp(arg, "--client-cert-name")) {
  712. if (1 >= argc - i) {
  713. fprintf(stderr, "%s: requires an argument\n", arg);
  714. return 0;
  715. }
  716. options.client_cert_name = argv[i + 1];
  717. i++;
  718. }
  719. else if (!strcmp(arg, "--server-name")) {
  720. if (1 >= argc - i) {
  721. fprintf(stderr, "%s: requires an argument\n", arg);
  722. return 0;
  723. }
  724. options.server_name = argv[i + 1];
  725. i++;
  726. }
  727. else if (!strcmp(arg, "--server-addr")) {
  728. if (1 >= argc - i) {
  729. fprintf(stderr, "%s: requires an argument\n", arg);
  730. return 0;
  731. }
  732. options.server_addr = argv[i + 1];
  733. i++;
  734. }
  735. else if (!strcmp(arg, "--tapdev")) {
  736. if (1 >= argc - i) {
  737. fprintf(stderr, "%s: requires an argument\n", arg);
  738. return 0;
  739. }
  740. options.tapdev = argv[i + 1];
  741. i++;
  742. }
  743. else if (!strcmp(arg, "--scope")) {
  744. if (1 >= argc - i) {
  745. fprintf(stderr, "%s: requires an argument\n", arg);
  746. return 0;
  747. }
  748. if (options.num_scopes == MAX_SCOPES) {
  749. fprintf(stderr, "%s: too many\n", arg);
  750. return 0;
  751. }
  752. options.scopes[options.num_scopes] = argv[i + 1];
  753. options.num_scopes++;
  754. i++;
  755. }
  756. else if (!strcmp(arg, "--bind-addr")) {
  757. if (1 >= argc - i) {
  758. fprintf(stderr, "%s: requires an argument\n", arg);
  759. return 0;
  760. }
  761. if (options.num_bind_addrs == MAX_BIND_ADDRS) {
  762. fprintf(stderr, "%s: too many\n", arg);
  763. return 0;
  764. }
  765. struct bind_addr_option *addr = &options.bind_addrs[options.num_bind_addrs];
  766. addr->addr = argv[i + 1];
  767. addr->num_ports = -1;
  768. addr->num_ext_addrs = 0;
  769. options.num_bind_addrs++;
  770. i++;
  771. }
  772. else if (!strcmp(arg, "--num-ports")) {
  773. if (1 >= argc - i) {
  774. fprintf(stderr, "%s: requires an argument\n", arg);
  775. return 0;
  776. }
  777. if (options.num_bind_addrs == 0) {
  778. fprintf(stderr, "%s: must folow --bind-addr\n", arg);
  779. return 0;
  780. }
  781. struct bind_addr_option *addr = &options.bind_addrs[options.num_bind_addrs - 1];
  782. if ((addr->num_ports = atoi(argv[i + 1])) < 0) {
  783. fprintf(stderr, "%s: wrong argument\n", arg);
  784. return 0;
  785. }
  786. i++;
  787. }
  788. else if (!strcmp(arg, "--ext-addr")) {
  789. if (2 >= argc - i) {
  790. fprintf(stderr, "%s: requires two arguments\n", arg);
  791. return 0;
  792. }
  793. if (options.num_bind_addrs == 0) {
  794. fprintf(stderr, "%s: must folow --bind-addr\n", arg);
  795. return 0;
  796. }
  797. struct bind_addr_option *addr = &options.bind_addrs[options.num_bind_addrs - 1];
  798. if (addr->num_ext_addrs == MAX_EXT_ADDRS) {
  799. fprintf(stderr, "%s: too many\n", arg);
  800. return 0;
  801. }
  802. struct ext_addr_option *eaddr = &addr->ext_addrs[addr->num_ext_addrs];
  803. eaddr->addr = argv[i + 1];
  804. eaddr->scope = argv[i + 2];
  805. addr->num_ext_addrs++;
  806. i += 2;
  807. }
  808. else if (!strcmp(arg, "--transport-mode")) {
  809. if (1 >= argc - i) {
  810. fprintf(stderr, "%s: requires an argument\n", arg);
  811. return 0;
  812. }
  813. char *arg2 = argv[i + 1];
  814. if (!strcmp(arg2, "udp")) {
  815. options.transport_mode = TRANSPORT_MODE_UDP;
  816. }
  817. else if (!strcmp(arg2, "tcp")) {
  818. options.transport_mode = TRANSPORT_MODE_TCP;
  819. }
  820. else {
  821. fprintf(stderr, "%s: wrong argument\n", arg);
  822. return 0;
  823. }
  824. i++;
  825. }
  826. else if (!strcmp(arg, "--encryption-mode")) {
  827. if (1 >= argc - i) {
  828. fprintf(stderr, "%s: requires an argument\n", arg);
  829. return 0;
  830. }
  831. char *arg2 = argv[i + 1];
  832. if (!strcmp(arg2, "none")) {
  833. options.encryption_mode = SPPROTO_ENCRYPTION_MODE_NONE;
  834. }
  835. else if (!strcmp(arg2, "blowfish")) {
  836. options.encryption_mode = BENCRYPTION_CIPHER_BLOWFISH;
  837. }
  838. else if (!strcmp(arg2, "aes")) {
  839. options.encryption_mode = BENCRYPTION_CIPHER_AES;
  840. }
  841. else {
  842. fprintf(stderr, "%s: wrong argument\n", arg);
  843. return 0;
  844. }
  845. i++;
  846. }
  847. else if (!strcmp(arg, "--hash-mode")) {
  848. if (1 >= argc - i) {
  849. fprintf(stderr, "%s: requires an argument\n", arg);
  850. return 0;
  851. }
  852. char *arg2 = argv[i + 1];
  853. if (!strcmp(arg2, "none")) {
  854. options.hash_mode = SPPROTO_HASH_MODE_NONE;
  855. }
  856. else if (!strcmp(arg2, "md5")) {
  857. options.hash_mode = BHASH_TYPE_MD5;
  858. }
  859. else if (!strcmp(arg2, "sha1")) {
  860. options.hash_mode = BHASH_TYPE_SHA1;
  861. }
  862. else {
  863. fprintf(stderr, "%s: wrong argument\n", arg);
  864. return 0;
  865. }
  866. i++;
  867. }
  868. else if (!strcmp(arg, "--otp")) {
  869. if (3 >= argc - i) {
  870. fprintf(stderr, "%s: requires three arguments\n", arg);
  871. return 0;
  872. }
  873. char *otp_mode = argv[i + 1];
  874. char *otp_num = argv[i + 2];
  875. char *otp_num_warn = argv[i + 3];
  876. if (!strcmp(otp_mode, "blowfish")) {
  877. options.otp_mode = BENCRYPTION_CIPHER_BLOWFISH;
  878. }
  879. else if (!strcmp(otp_mode, "aes")) {
  880. options.otp_mode = BENCRYPTION_CIPHER_AES;
  881. }
  882. else {
  883. fprintf(stderr, "%s: wrong mode\n", arg);
  884. return 0;
  885. }
  886. if ((options.otp_num = atoi(otp_num)) <= 0) {
  887. fprintf(stderr, "%s: wrong num\n", arg);
  888. return 0;
  889. }
  890. options.otp_num_warn = atoi(otp_num_warn);
  891. if (options.otp_num_warn <= 0 || options.otp_num_warn > options.otp_num) {
  892. fprintf(stderr, "%s: wrong num warn\n", arg);
  893. return 0;
  894. }
  895. i += 3;
  896. }
  897. else if (!strcmp(arg, "--fragmentation-latency")) {
  898. if (1 >= argc - i) {
  899. fprintf(stderr, "%s: requires an argument\n", arg);
  900. return 0;
  901. }
  902. options.fragmentation_latency = atoi(argv[i + 1]);
  903. have_fragmentation_latency = 1;
  904. i++;
  905. }
  906. else if (!strcmp(arg, "--peer-ssl")) {
  907. options.peer_ssl = 1;
  908. }
  909. else if (!strcmp(arg, "--peer-tcp-socket-sndbuf")) {
  910. if (1 >= argc - i) {
  911. fprintf(stderr, "%s: requires an argument\n", arg);
  912. return 0;
  913. }
  914. if ((options.peer_tcp_socket_sndbuf = atoi(argv[i + 1])) < 0) {
  915. fprintf(stderr, "%s: wrong argument\n", arg);
  916. return 0;
  917. }
  918. i++;
  919. }
  920. else if (!strcmp(arg, "--send-buffer-size")) {
  921. if (1 >= argc - i) {
  922. fprintf(stderr, "%s: requires an argument\n", arg);
  923. return 0;
  924. }
  925. if ((options.send_buffer_size = atoi(argv[i + 1])) <= 0) {
  926. fprintf(stderr, "%s: wrong argument\n", arg);
  927. return 0;
  928. }
  929. i++;
  930. }
  931. else if (!strcmp(arg, "--send-buffer-relay-size")) {
  932. if (1 >= argc - i) {
  933. fprintf(stderr, "%s: requires an argument\n", arg);
  934. return 0;
  935. }
  936. if ((options.send_buffer_relay_size = atoi(argv[i + 1])) <= 0) {
  937. fprintf(stderr, "%s: wrong argument\n", arg);
  938. return 0;
  939. }
  940. i++;
  941. }
  942. else if (!strcmp(arg, "--max-macs")) {
  943. if (1 >= argc - i) {
  944. fprintf(stderr, "%s: requires an argument\n", arg);
  945. return 0;
  946. }
  947. if ((options.max_macs = atoi(argv[i + 1])) <= 0) {
  948. fprintf(stderr, "%s: wrong argument\n", arg);
  949. return 0;
  950. }
  951. i++;
  952. }
  953. else if (!strcmp(arg, "--max-groups")) {
  954. if (1 >= argc - i) {
  955. fprintf(stderr, "%s: requires an argument\n", arg);
  956. return 0;
  957. }
  958. if ((options.max_groups = atoi(argv[i + 1])) <= 0) {
  959. fprintf(stderr, "%s: wrong argument\n", arg);
  960. return 0;
  961. }
  962. i++;
  963. }
  964. else if (!strcmp(arg, "--igmp-group-membership-interval")) {
  965. if (1 >= argc - i) {
  966. fprintf(stderr, "%s: requires an argument\n", arg);
  967. return 0;
  968. }
  969. if ((options.igmp_group_membership_interval = atoi(argv[i + 1])) <= 0) {
  970. fprintf(stderr, "%s: wrong argument\n", arg);
  971. return 0;
  972. }
  973. i++;
  974. }
  975. else if (!strcmp(arg, "--igmp-last-member-query-time")) {
  976. if (1 >= argc - i) {
  977. fprintf(stderr, "%s: requires an argument\n", arg);
  978. return 0;
  979. }
  980. if ((options.igmp_last_member_query_time = atoi(argv[i + 1])) <= 0) {
  981. fprintf(stderr, "%s: wrong argument\n", arg);
  982. return 0;
  983. }
  984. i++;
  985. }
  986. else if (!strcmp(arg, "--allow-peer-talk-without-ssl")) {
  987. options.allow_peer_talk_without_ssl = 1;
  988. }
  989. else {
  990. fprintf(stderr, "unknown option: %s\n", arg);
  991. return 0;
  992. }
  993. }
  994. if (options.help || options.version) {
  995. return 1;
  996. }
  997. if (options.ssl != !!options.nssdb) {
  998. fprintf(stderr, "False: --ssl <=> --nssdb\n");
  999. return 0;
  1000. }
  1001. if (options.ssl != !!options.client_cert_name) {
  1002. fprintf(stderr, "False: --ssl <=> --client-cert-name\n");
  1003. return 0;
  1004. }
  1005. if (!options.server_addr) {
  1006. fprintf(stderr, "False: --server-addr\n");
  1007. return 0;
  1008. }
  1009. if (options.transport_mode < 0) {
  1010. fprintf(stderr, "False: --transport-mode\n");
  1011. return 0;
  1012. }
  1013. if ((options.transport_mode == TRANSPORT_MODE_UDP) != (options.encryption_mode >= 0)) {
  1014. fprintf(stderr, "False: UDP <=> --encryption-mode\n");
  1015. return 0;
  1016. }
  1017. if ((options.transport_mode == TRANSPORT_MODE_UDP) != (options.hash_mode >= 0)) {
  1018. fprintf(stderr, "False: UDP <=> --hash-mode\n");
  1019. return 0;
  1020. }
  1021. if (!(!(options.otp_mode != SPPROTO_OTP_MODE_NONE) || (options.transport_mode == TRANSPORT_MODE_UDP))) {
  1022. fprintf(stderr, "False: --otp => UDP\n");
  1023. return 0;
  1024. }
  1025. if (!(!have_fragmentation_latency || (options.transport_mode == TRANSPORT_MODE_UDP))) {
  1026. fprintf(stderr, "False: --fragmentation-latency => UDP\n");
  1027. return 0;
  1028. }
  1029. if (!(!options.peer_ssl || (options.ssl && options.transport_mode == TRANSPORT_MODE_TCP))) {
  1030. fprintf(stderr, "False: --peer-ssl => (--ssl && TCP)\n");
  1031. return 0;
  1032. }
  1033. if (!(!(options.peer_tcp_socket_sndbuf >= 0) || options.transport_mode == TRANSPORT_MODE_TCP)) {
  1034. fprintf(stderr, "False: --peer-tcp-socket-sndbuf => TCP\n");
  1035. return 0;
  1036. }
  1037. return 1;
  1038. }
  1039. int process_arguments (void)
  1040. {
  1041. // resolve server address
  1042. ASSERT(options.server_addr)
  1043. if (!BAddr_Parse(&server_addr, options.server_addr, server_name, sizeof(server_name))) {
  1044. BLog(BLOG_ERROR, "server addr: BAddr_Parse failed");
  1045. return 0;
  1046. }
  1047. // override server name if requested
  1048. if (options.server_name) {
  1049. if (strlen(options.server_name) >= sizeof(server_name)) {
  1050. BLog(BLOG_ERROR, "server name: too long");
  1051. return 0;
  1052. }
  1053. strcpy(server_name, options.server_name);
  1054. }
  1055. // resolve bind addresses and external addresses
  1056. num_bind_addrs = 0;
  1057. for (int i = 0; i < options.num_bind_addrs; i++) {
  1058. struct bind_addr_option *addr = &options.bind_addrs[i];
  1059. struct bind_addr *out = &bind_addrs[num_bind_addrs];
  1060. // read addr
  1061. if (!BAddr_Parse(&out->addr, addr->addr, NULL, 0)) {
  1062. BLog(BLOG_ERROR, "bind addr: BAddr_Parse failed");
  1063. return 0;
  1064. }
  1065. // read num ports
  1066. if (options.transport_mode == TRANSPORT_MODE_UDP) {
  1067. if (addr->num_ports < 0) {
  1068. BLog(BLOG_ERROR, "bind addr: num ports missing");
  1069. return 0;
  1070. }
  1071. out->num_ports = addr->num_ports;
  1072. }
  1073. else if (addr->num_ports >= 0) {
  1074. BLog(BLOG_ERROR, "bind addr: num ports given, but not using UDP");
  1075. return 0;
  1076. }
  1077. // read ext addrs
  1078. out->num_ext_addrs = 0;
  1079. for (int j = 0; j < addr->num_ext_addrs; j++) {
  1080. struct ext_addr_option *eaddr = &addr->ext_addrs[j];
  1081. struct ext_addr *eout = &out->ext_addrs[out->num_ext_addrs];
  1082. // read addr
  1083. if (string_begins_with(eaddr->addr, "{server_reported}:")) {
  1084. char *colon = strstr(eaddr->addr, ":");
  1085. if ((eout->server_reported_port = atoi(colon + 1)) < 0) {
  1086. BLog(BLOG_ERROR, "ext addr: wrong port");
  1087. return 0;
  1088. }
  1089. } else {
  1090. eout->server_reported_port = -1;
  1091. if (!BAddr_Parse(&eout->addr, eaddr->addr, NULL, 0)) {
  1092. BLog(BLOG_ERROR, "ext addr: BAddr_Parse failed");
  1093. return 0;
  1094. }
  1095. if (!addr_supported(eout->addr)) {
  1096. BLog(BLOG_ERROR, "ext addr: addr_supported failed");
  1097. return 0;
  1098. }
  1099. }
  1100. // read scope
  1101. if (strlen(eaddr->scope) >= sizeof(eout->scope)) {
  1102. BLog(BLOG_ERROR, "ext addr: too long");
  1103. return 0;
  1104. }
  1105. strcpy(eout->scope, eaddr->scope);
  1106. out->num_ext_addrs++;
  1107. }
  1108. num_bind_addrs++;
  1109. }
  1110. // initialize SPProto parameters
  1111. if (options.transport_mode == TRANSPORT_MODE_UDP) {
  1112. sp_params.encryption_mode = options.encryption_mode;
  1113. sp_params.hash_mode = options.hash_mode;
  1114. sp_params.otp_mode = options.otp_mode;
  1115. if (options.otp_mode > 0) {
  1116. sp_params.otp_num = options.otp_num;
  1117. }
  1118. }
  1119. return 1;
  1120. }
  1121. void signal_handler (void *unused)
  1122. {
  1123. BLog(BLOG_NOTICE, "termination requested");
  1124. terminate();
  1125. }
  1126. void peer_add (peerid_t id, int flags, const uint8_t *cert, int cert_len)
  1127. {
  1128. ASSERT(server_ready)
  1129. ASSERT(num_peers < MAX_PEERS)
  1130. ASSERT(!find_peer_by_id(id))
  1131. ASSERT(id != my_id)
  1132. ASSERT(cert_len >= 0)
  1133. ASSERT(cert_len <= SCID_NEWCLIENT_MAX_CERT_LEN)
  1134. // allocate structure
  1135. struct peer_data *peer = (struct peer_data *)malloc(sizeof(*peer));
  1136. if (!peer) {
  1137. BLog(BLOG_ERROR, "peer %d: failed to allocate memory", (int)id);
  1138. goto fail0;
  1139. }
  1140. // remember id
  1141. peer->id = id;
  1142. // remember flags
  1143. peer->flags = flags;
  1144. // set no common name
  1145. peer->common_name = NULL;
  1146. if (options.ssl) {
  1147. // remember certificate
  1148. memcpy(peer->cert, cert, cert_len);
  1149. peer->cert_len = cert_len;
  1150. // make sure that CERT_DecodeCertFromPackage will interpretet the input as raw DER and not base64,
  1151. // in which case following workaroud wouldn't help
  1152. if (!(cert_len > 0 && (cert[0] & 0x1f) == 0x10)) {
  1153. peer_log(peer, BLOG_ERROR, "certificate does not look like DER");
  1154. goto fail1;
  1155. }
  1156. // copy the certificate and append it a good load of zero bytes,
  1157. // hopefully preventing the crappy CERT_DecodeCertFromPackage from crashing
  1158. // by reading past the of its input
  1159. uint8_t *certbuf = (uint8_t *)malloc(cert_len + 100);
  1160. if (!certbuf) {
  1161. peer_log(peer, BLOG_ERROR, "malloc failed");
  1162. goto fail1;
  1163. }
  1164. memcpy(certbuf, cert, cert_len);
  1165. memset(certbuf + cert_len, 0, 100);
  1166. // decode certificate, so we can extract the common name
  1167. CERTCertificate *nsscert = CERT_DecodeCertFromPackage((char *)certbuf, cert_len);
  1168. if (!nsscert) {
  1169. peer_log(peer, BLOG_ERROR, "CERT_DecodeCertFromPackage failed (%d)", PORT_GetError());
  1170. free(certbuf);
  1171. goto fail1;
  1172. }
  1173. free(certbuf);
  1174. // remember common name
  1175. if (!(peer->common_name = CERT_GetCommonName(&nsscert->subject))) {
  1176. peer_log(peer, BLOG_ERROR, "CERT_GetCommonName failed");
  1177. CERT_DestroyCertificate(nsscert);
  1178. goto fail1;
  1179. }
  1180. CERT_DestroyCertificate(nsscert);
  1181. }
  1182. // init and set init job (must be before initing server flow so we can send)
  1183. BPending_Init(&peer->job_init, BReactor_PendingGroup(&ss), (BPending_handler)peer_job_init, peer);
  1184. BPending_Set(&peer->job_init);
  1185. // init server flow
  1186. if (!(peer->server_flow = server_flow_init())) {
  1187. peer_log(peer, BLOG_ERROR, "server_flow_init failed");
  1188. goto fail2;
  1189. }
  1190. if ((peer->flags & SCID_NEWCLIENT_FLAG_SSL) && !options.ssl) {
  1191. peer_log(peer, BLOG_ERROR, "peer requires talking with SSL, but we're not using SSL!?");
  1192. goto fail3;
  1193. }
  1194. if (options.ssl && !(peer->flags & SCID_NEWCLIENT_FLAG_SSL) && !options.allow_peer_talk_without_ssl) {
  1195. peer_log(peer, BLOG_ERROR, "peer requires talking without SSL, but we don't allow that");
  1196. goto fail3;
  1197. }
  1198. // choose chat SSL mode
  1199. int chat_ssl_mode = PEERCHAT_SSL_NONE;
  1200. if ((peer->flags & SCID_NEWCLIENT_FLAG_SSL)) {
  1201. chat_ssl_mode = (peer_am_master(peer) ? PEERCHAT_SSL_SERVER : PEERCHAT_SSL_CLIENT);
  1202. }
  1203. // init chat
  1204. if (!PeerChat_Init(&peer->chat, peer->id, chat_ssl_mode, client_cert, client_key, peer->cert, peer->cert_len, BReactor_PendingGroup(&ss), peer,
  1205. (BLog_logfunc)peer_logfunc,
  1206. (PeerChat_handler_error)peer_chat_handler_error,
  1207. (PeerChat_handler_message)peer_chat_handler_message
  1208. )) {
  1209. peer_log(peer, BLOG_ERROR, "PeerChat_Init failed");
  1210. goto fail3;
  1211. }
  1212. // set no message
  1213. peer->chat_send_msg_len = -1;
  1214. // connect server flow to chat
  1215. server_flow_connect(peer->server_flow, PeerChat_GetSendOutput(&peer->chat));
  1216. // set have chat
  1217. peer->have_chat = 1;
  1218. // set have no resetpeer
  1219. peer->have_resetpeer = 0;
  1220. // init local flow
  1221. if (!DataProtoFlow_Init(&peer->local_dpflow, &device_dpsource, my_id, peer->id, options.send_buffer_size, -1, NULL, NULL)) {
  1222. peer_log(peer, BLOG_ERROR, "DataProtoFlow_Init failed");
  1223. goto fail4;
  1224. }
  1225. // init frame decider peer
  1226. if (!FrameDeciderPeer_Init(&peer->decider_peer, &frame_decider, peer, (BLog_logfunc)peer_logfunc)) {
  1227. peer_log(peer, BLOG_ERROR, "FrameDeciderPeer_Init failed");
  1228. goto fail5;
  1229. }
  1230. // init receive peer
  1231. DPReceivePeer_Init(&peer->receive_peer, &device_output_dprd, peer->id, &peer->decider_peer, !!(peer->flags & SCID_NEWCLIENT_FLAG_RELAY_CLIENT));
  1232. // have no link
  1233. peer->have_link = 0;
  1234. // have no relaying
  1235. peer->relaying_peer = NULL;
  1236. // not waiting for relay
  1237. peer->waiting_relay = 0;
  1238. // init reset timer
  1239. BTimer_Init(&peer->reset_timer, PEER_RETRY_TIME, (BTimer_handler)peer_reset_timer_handler, peer);
  1240. // is not relay server
  1241. peer->is_relay = 0;
  1242. // init binding
  1243. peer->binding = 0;
  1244. // add to peers list
  1245. LinkedList2_Append(&peers, &peer->list_node);
  1246. num_peers++;
  1247. switch (chat_ssl_mode) {
  1248. case PEERCHAT_SSL_NONE:
  1249. peer_log(peer, BLOG_INFO, "initialized; talking to peer in plaintext mode");
  1250. break;
  1251. case PEERCHAT_SSL_CLIENT:
  1252. peer_log(peer, BLOG_INFO, "initialized; talking to peer in SSL client mode");
  1253. break;
  1254. case PEERCHAT_SSL_SERVER:
  1255. peer_log(peer, BLOG_INFO, "initialized; talking to peer in SSL server mode");
  1256. break;
  1257. }
  1258. return;
  1259. fail5:
  1260. DataProtoFlow_Free(&peer->local_dpflow);
  1261. fail4:
  1262. server_flow_disconnect(peer->server_flow);
  1263. PeerChat_Free(&peer->chat);
  1264. fail3:
  1265. server_flow_free(peer->server_flow);
  1266. fail2:
  1267. BPending_Free(&peer->job_init);
  1268. if (peer->common_name) {
  1269. PORT_Free(peer->common_name);
  1270. }
  1271. fail1:
  1272. free(peer);
  1273. fail0:
  1274. return;
  1275. }
  1276. void peer_remove (struct peer_data *peer, int exiting)
  1277. {
  1278. peer_log(peer, BLOG_INFO, "removing");
  1279. // cleanup connections
  1280. peer_cleanup_connections(peer);
  1281. ASSERT(!peer->have_link)
  1282. ASSERT(!peer->relaying_peer)
  1283. ASSERT(!peer->waiting_relay)
  1284. ASSERT(!peer->is_relay)
  1285. // remove from peers list
  1286. LinkedList2_Remove(&peers, &peer->list_node);
  1287. num_peers--;
  1288. // free reset timer
  1289. BReactor_RemoveTimer(&ss, &peer->reset_timer);
  1290. // free receive peer
  1291. DPReceivePeer_Free(&peer->receive_peer);
  1292. // free frame decider
  1293. FrameDeciderPeer_Free(&peer->decider_peer);
  1294. // free local flow
  1295. DataProtoFlow_Free(&peer->local_dpflow);
  1296. // free chat
  1297. if (peer->have_chat) {
  1298. peer_free_chat(peer);
  1299. }
  1300. // free resetpeer
  1301. if (peer->have_resetpeer) {
  1302. // disconnect resetpeer source from server flow
  1303. server_flow_disconnect(peer->server_flow);
  1304. // free resetpeer source
  1305. SinglePacketSource_Free(&peer->resetpeer_source);
  1306. }
  1307. // free/die server flow
  1308. if (exiting || !PacketPassFairQueueFlow_IsBusy(&peer->server_flow->qflow)) {
  1309. server_flow_free(peer->server_flow);
  1310. } else {
  1311. server_flow_die(peer->server_flow);
  1312. }
  1313. // free jobs
  1314. BPending_Free(&peer->job_init);
  1315. // free common name
  1316. if (peer->common_name) {
  1317. PORT_Free(peer->common_name);
  1318. }
  1319. // free peer structure
  1320. free(peer);
  1321. }
  1322. void peer_logfunc (struct peer_data *peer)
  1323. {
  1324. BLog_Append("peer %d", (int)peer->id);
  1325. if (peer->common_name) {
  1326. BLog_Append(" (%s)", peer->common_name);
  1327. }
  1328. BLog_Append(": ");
  1329. }
  1330. void peer_log (struct peer_data *peer, int level, const char *fmt, ...)
  1331. {
  1332. va_list vl;
  1333. va_start(vl, fmt);
  1334. BLog_LogViaFuncVarArg((BLog_logfunc)peer_logfunc, peer, BLOG_CURRENT_CHANNEL, level, fmt, vl);
  1335. va_end(vl);
  1336. }
  1337. int peer_am_master (struct peer_data *peer)
  1338. {
  1339. return (my_id > peer->id);
  1340. }
  1341. void peer_free_chat (struct peer_data *peer)
  1342. {
  1343. ASSERT(peer->have_chat)
  1344. // disconnect chat from server flow
  1345. server_flow_disconnect(peer->server_flow);
  1346. // free chat
  1347. PeerChat_Free(&peer->chat);
  1348. // set have no chat
  1349. peer->have_chat = 0;
  1350. }
  1351. int peer_init_link (struct peer_data *peer)
  1352. {
  1353. ASSERT(!peer->have_link)
  1354. ASSERT(!peer->relaying_peer)
  1355. ASSERT(!peer->waiting_relay)
  1356. ASSERT(!peer->is_relay)
  1357. // init receive receiver
  1358. DPReceiveReceiver_Init(&peer->receive_receiver, &peer->receive_peer);
  1359. PacketPassInterface *recv_if = DPReceiveReceiver_GetInput(&peer->receive_receiver);
  1360. // init transport-specific link objects
  1361. PacketPassInterface *link_if;
  1362. if (options.transport_mode == TRANSPORT_MODE_UDP) {
  1363. // init DatagramPeerIO
  1364. if (!DatagramPeerIO_Init(
  1365. &peer->pio.udp.pio, &ss, data_mtu, CLIENT_UDP_MTU, sp_params,
  1366. options.fragmentation_latency, PEER_UDP_ASSEMBLER_NUM_FRAMES, recv_if,
  1367. options.otp_num_warn, &twd, peer,
  1368. (BLog_logfunc)peer_logfunc,
  1369. (DatagramPeerIO_handler_error)peer_udp_pio_handler_error,
  1370. (DatagramPeerIO_handler_otp_warning)peer_udp_pio_handler_seed_warning,
  1371. (DatagramPeerIO_handler_otp_ready)peer_udp_pio_handler_seed_ready
  1372. )) {
  1373. peer_log(peer, BLOG_ERROR, "DatagramPeerIO_Init failed");
  1374. goto fail1;
  1375. }
  1376. if (SPPROTO_HAVE_OTP(sp_params)) {
  1377. // init send seed state
  1378. peer->pio.udp.sendseed_nextid = 0;
  1379. peer->pio.udp.sendseed_sent = 0;
  1380. // init send seed job
  1381. BPending_Init(&peer->pio.udp.job_send_seed, BReactor_PendingGroup(&ss), (BPending_handler)peer_job_send_seed, peer);
  1382. }
  1383. link_if = DatagramPeerIO_GetSendInput(&peer->pio.udp.pio);
  1384. } else {
  1385. // init StreamPeerIO
  1386. if (!StreamPeerIO_Init(
  1387. &peer->pio.tcp.pio, &ss, options.peer_ssl,
  1388. (options.peer_ssl ? peer->cert : NULL),
  1389. (options.peer_ssl ? peer->cert_len : -1),
  1390. data_mtu,
  1391. (options.peer_tcp_socket_sndbuf >= 0 ? options.peer_tcp_socket_sndbuf : PEER_DEFAULT_TCP_SOCKET_SNDBUF),
  1392. recv_if,
  1393. (BLog_logfunc)peer_logfunc,
  1394. (StreamPeerIO_handler_error)peer_tcp_pio_handler_error, peer
  1395. )) {
  1396. peer_log(peer, BLOG_ERROR, "StreamPeerIO_Init failed");
  1397. goto fail1;
  1398. }
  1399. link_if = StreamPeerIO_GetSendInput(&peer->pio.tcp.pio);
  1400. }
  1401. // init sending
  1402. if (!DataProtoSink_Init(&peer->send_dp, &ss, link_if, PEER_KEEPALIVE_INTERVAL, PEER_KEEPALIVE_RECEIVE_TIMER, (DataProtoSink_handler)peer_dataproto_handler, peer)) {
  1403. peer_log(peer, BLOG_ERROR, "DataProto_Init failed");
  1404. goto fail2;
  1405. }
  1406. // attach local flow to our DataProtoSink
  1407. DataProtoFlow_Attach(&peer->local_dpflow, &peer->send_dp);
  1408. // attach receive peer to our DataProtoSink
  1409. DPReceivePeer_AttachSink(&peer->receive_peer, &peer->send_dp);
  1410. // set have link
  1411. peer->have_link = 1;
  1412. return 1;
  1413. fail2:
  1414. if (options.transport_mode == TRANSPORT_MODE_UDP) {
  1415. if (SPPROTO_HAVE_OTP(sp_params)) {
  1416. BPending_Free(&peer->pio.udp.job_send_seed);
  1417. }
  1418. DatagramPeerIO_Free(&peer->pio.udp.pio);
  1419. } else {
  1420. StreamPeerIO_Free(&peer->pio.tcp.pio);
  1421. }
  1422. fail1:
  1423. DPReceiveReceiver_Free(&peer->receive_receiver);
  1424. return 0;
  1425. }
  1426. void peer_free_link (struct peer_data *peer)
  1427. {
  1428. ASSERT(peer->have_link)
  1429. ASSERT(!peer->is_relay)
  1430. ASSERT(!peer->relaying_peer)
  1431. ASSERT(!peer->waiting_relay)
  1432. // detach receive peer from our DataProtoSink
  1433. DPReceivePeer_DetachSink(&peer->receive_peer);
  1434. // detach local flow from our DataProtoSink
  1435. DataProtoFlow_Detach(&peer->local_dpflow);
  1436. // free sending
  1437. DataProtoSink_Free(&peer->send_dp);
  1438. // free transport-specific link objects
  1439. if (options.transport_mode == TRANSPORT_MODE_UDP) {
  1440. if (SPPROTO_HAVE_OTP(sp_params)) {
  1441. BPending_Free(&peer->pio.udp.job_send_seed);
  1442. }
  1443. DatagramPeerIO_Free(&peer->pio.udp.pio);
  1444. } else {
  1445. StreamPeerIO_Free(&peer->pio.tcp.pio);
  1446. }
  1447. // free receive receiver
  1448. DPReceiveReceiver_Free(&peer->receive_receiver);
  1449. // set have no link
  1450. peer->have_link = 0;
  1451. }
  1452. void peer_cleanup_connections (struct peer_data *peer)
  1453. {
  1454. if (peer->have_link) {
  1455. if (peer->is_relay) {
  1456. peer_disable_relay_provider(peer);
  1457. }
  1458. peer_free_link(peer);
  1459. }
  1460. else if (peer->relaying_peer) {
  1461. peer_free_relaying(peer);
  1462. }
  1463. else if (peer->waiting_relay) {
  1464. peer_unregister_need_relay(peer);
  1465. }
  1466. ASSERT(!peer->have_link)
  1467. ASSERT(!peer->relaying_peer)
  1468. ASSERT(!peer->waiting_relay)
  1469. ASSERT(!peer->is_relay)
  1470. }
  1471. void peer_enable_relay_provider (struct peer_data *peer)
  1472. {
  1473. ASSERT(peer->have_link)
  1474. ASSERT(!peer->is_relay)
  1475. ASSERT(!peer->relaying_peer)
  1476. ASSERT(!peer->waiting_relay)
  1477. // add to relays list
  1478. LinkedList2_Append(&relays, &peer->relay_list_node);
  1479. // init users list
  1480. LinkedList2_Init(&peer->relay_users);
  1481. // set is relay
  1482. peer->is_relay = 1;
  1483. // assign relays
  1484. assign_relays();
  1485. }
  1486. void peer_disable_relay_provider (struct peer_data *peer)
  1487. {
  1488. ASSERT(peer->is_relay)
  1489. ASSERT(peer->have_link)
  1490. ASSERT(!peer->relaying_peer)
  1491. ASSERT(!peer->waiting_relay)
  1492. // disconnect relay users
  1493. LinkedList2Node *list_node;
  1494. while (list_node = LinkedList2_GetFirst(&peer->relay_users)) {
  1495. struct peer_data *relay_user = UPPER_OBJECT(list_node, struct peer_data, relaying_list_node);
  1496. ASSERT(relay_user->relaying_peer == peer)
  1497. // disconnect relay user
  1498. peer_free_relaying(relay_user);
  1499. // add it to need relay list
  1500. peer_register_need_relay(relay_user);
  1501. }
  1502. // remove from relays list
  1503. LinkedList2_Remove(&relays, &peer->relay_list_node);
  1504. // set is not relay
  1505. peer->is_relay = 0;
  1506. // assign relays
  1507. assign_relays();
  1508. }
  1509. void peer_install_relaying (struct peer_data *peer, struct peer_data *relay)
  1510. {
  1511. ASSERT(!peer->relaying_peer)
  1512. ASSERT(!peer->have_link)
  1513. ASSERT(!peer->waiting_relay)
  1514. ASSERT(relay->is_relay)
  1515. ASSERT(!peer->is_relay)
  1516. ASSERT(relay->have_link)
  1517. peer_log(peer, BLOG_INFO, "installing relaying through %d", (int)relay->id);
  1518. // add to relay's users list
  1519. LinkedList2_Append(&relay->relay_users, &peer->relaying_list_node);
  1520. // attach local flow to relay
  1521. DataProtoFlow_Attach(&peer->local_dpflow, &relay->send_dp);
  1522. // set relaying
  1523. peer->relaying_peer = relay;
  1524. }
  1525. void peer_free_relaying (struct peer_data *peer)
  1526. {
  1527. ASSERT(peer->relaying_peer)
  1528. ASSERT(!peer->have_link)
  1529. ASSERT(!peer->waiting_relay)
  1530. struct peer_data *relay = peer->relaying_peer;
  1531. ASSERT(relay->is_relay)
  1532. ASSERT(relay->have_link)
  1533. peer_log(peer, BLOG_INFO, "uninstalling relaying through %d", (int)relay->id);
  1534. // detach local flow from relay
  1535. DataProtoFlow_Detach(&peer->local_dpflow);
  1536. // remove from relay's users list
  1537. LinkedList2_Remove(&relay->relay_users, &peer->relaying_list_node);
  1538. // set not relaying
  1539. peer->relaying_peer = NULL;
  1540. }
  1541. void peer_need_relay (struct peer_data *peer)
  1542. {
  1543. ASSERT(!peer->is_relay)
  1544. if (peer->waiting_relay) {
  1545. // already waiting for relay, do nothing
  1546. return;
  1547. }
  1548. if (peer->have_link) {
  1549. peer_free_link(peer);
  1550. }
  1551. else if (peer->relaying_peer) {
  1552. peer_free_relaying(peer);
  1553. }
  1554. // register the peer as needing a relay
  1555. peer_register_need_relay(peer);
  1556. // assign relays
  1557. assign_relays();
  1558. }
  1559. void peer_register_need_relay (struct peer_data *peer)
  1560. {
  1561. ASSERT(!peer->waiting_relay)
  1562. ASSERT(!peer->have_link)
  1563. ASSERT(!peer->relaying_peer)
  1564. ASSERT(!peer->is_relay)
  1565. // add to need relay list
  1566. LinkedList2_Append(&waiting_relay_peers, &peer->waiting_relay_list_node);
  1567. // set waiting relay
  1568. peer->waiting_relay = 1;
  1569. }
  1570. void peer_unregister_need_relay (struct peer_data *peer)
  1571. {
  1572. ASSERT(peer->waiting_relay)
  1573. ASSERT(!peer->have_link)
  1574. ASSERT(!peer->relaying_peer)
  1575. ASSERT(!peer->is_relay)
  1576. // remove from need relay list
  1577. LinkedList2_Remove(&waiting_relay_peers, &peer->waiting_relay_list_node);
  1578. // set not waiting relay
  1579. peer->waiting_relay = 0;
  1580. }
  1581. void peer_reset (struct peer_data *peer)
  1582. {
  1583. peer_log(peer, BLOG_NOTICE, "resetting");
  1584. // cleanup connections
  1585. peer_cleanup_connections(peer);
  1586. if (peer_am_master(peer)) {
  1587. // if we're the master, schedule retry
  1588. BReactor_SetTimer(&ss, &peer->reset_timer);
  1589. } else {
  1590. // if we're the slave, report to master
  1591. peer_send_simple(peer, MSGID_YOURETRY);
  1592. }
  1593. }
  1594. void peer_resetpeer (struct peer_data *peer)
  1595. {
  1596. ASSERT(peer->have_chat)
  1597. ASSERT(!peer->have_resetpeer)
  1598. // free chat
  1599. peer_free_chat(peer);
  1600. // build resetpeer packet
  1601. struct packetproto_header *pp_header = (struct packetproto_header *)peer->resetpeer_packet;
  1602. pp_header->len = htol16(sizeof(struct sc_header) + sizeof(struct sc_client_resetpeer));
  1603. struct sc_header *sc_header = (struct sc_header *)(pp_header + 1);
  1604. sc_header->type = htol8(SCID_RESETPEER);
  1605. struct sc_client_resetpeer *sc_resetpeer = (struct sc_client_resetpeer *)(sc_header + 1);
  1606. sc_resetpeer->clientid = htol16(peer->id);
  1607. // init resetpeer sourse
  1608. SinglePacketSource_Init(&peer->resetpeer_source, peer->resetpeer_packet, sizeof(peer->resetpeer_packet), BReactor_PendingGroup(&ss));
  1609. // connect server flow to resetpeer source
  1610. server_flow_connect(peer->server_flow, SinglePacketSource_GetOutput(&peer->resetpeer_source));
  1611. // set have resetpeer
  1612. peer->have_resetpeer = 1;
  1613. }
  1614. void peer_chat_handler_error (struct peer_data *peer)
  1615. {
  1616. ASSERT(peer->have_chat)
  1617. ASSERT(!peer->have_resetpeer)
  1618. peer_log(peer, BLOG_ERROR, "chat error, sending resetpeer");
  1619. peer_resetpeer(peer);
  1620. }
  1621. void peer_chat_handler_message (struct peer_data *peer, uint8_t *data, int data_len)
  1622. {
  1623. ASSERT(peer->have_chat)
  1624. ASSERT(data_len >= 0)
  1625. ASSERT(data_len <= SC_MAX_MSGLEN)
  1626. // parse message
  1627. msgParser parser;
  1628. if (!msgParser_Init(&parser, data, data_len)) {
  1629. peer_log(peer, BLOG_NOTICE, "msg: failed to parse");
  1630. return;
  1631. }
  1632. // read message
  1633. uint16_t type;
  1634. ASSERT_EXECUTE(msgParser_Gettype(&parser, &type))
  1635. uint8_t *payload;
  1636. int payload_len;
  1637. ASSERT_EXECUTE(msgParser_Getpayload(&parser, &payload, &payload_len))
  1638. // dispatch according to message type
  1639. switch (type) {
  1640. case MSGID_YOUCONNECT:
  1641. peer_msg_youconnect(peer, payload, payload_len);
  1642. return;
  1643. case MSGID_CANNOTCONNECT:
  1644. peer_msg_cannotconnect(peer, payload, payload_len);
  1645. return;
  1646. case MSGID_CANNOTBIND:
  1647. peer_msg_cannotbind(peer, payload, payload_len);
  1648. return;
  1649. case MSGID_YOURETRY:
  1650. peer_msg_youretry(peer, payload, payload_len);
  1651. return;
  1652. case MSGID_SEED:
  1653. peer_msg_seed(peer, payload, payload_len);
  1654. return;
  1655. case MSGID_CONFIRMSEED:
  1656. peer_msg_confirmseed(peer, payload, payload_len);
  1657. return;
  1658. default:
  1659. BLog(BLOG_NOTICE, "msg: unknown type");
  1660. return;
  1661. }
  1662. }
  1663. void peer_msg_youconnect (struct peer_data *peer, uint8_t *data, int data_len)
  1664. {
  1665. // init parser
  1666. msg_youconnectParser parser;
  1667. if (!msg_youconnectParser_Init(&parser, data, data_len)) {
  1668. peer_log(peer, BLOG_WARNING, "msg_youconnect: failed to parse");
  1669. return;
  1670. }
  1671. // try addresses
  1672. BAddr addr;
  1673. while (1) {
  1674. // get address message
  1675. uint8_t *addrmsg_data;
  1676. int addrmsg_len;
  1677. if (!msg_youconnectParser_Getaddr(&parser, &addrmsg_data, &addrmsg_len)) {
  1678. peer_log(peer, BLOG_NOTICE, "msg_youconnect: no usable addresses");
  1679. peer_send_simple(peer, MSGID_CANNOTCONNECT);
  1680. return;
  1681. }
  1682. // parse address message
  1683. msg_youconnect_addrParser aparser;
  1684. if (!msg_youconnect_addrParser_Init(&aparser, addrmsg_data, addrmsg_len)) {
  1685. peer_log(peer, BLOG_WARNING, "msg_youconnect: failed to parse address message");
  1686. return;
  1687. }
  1688. // check if the address scope is known
  1689. uint8_t *name_data;
  1690. int name_len;
  1691. ASSERT_EXECUTE(msg_youconnect_addrParser_Getname(&aparser, &name_data, &name_len))
  1692. char *name;
  1693. if (!(name = address_scope_known(name_data, name_len))) {
  1694. continue;
  1695. }
  1696. // read address
  1697. uint8_t *addr_data;
  1698. int addr_len;
  1699. ASSERT_EXECUTE(msg_youconnect_addrParser_Getaddr(&aparser, &addr_data, &addr_len))
  1700. if (!addr_read(addr_data, addr_len, &addr)) {
  1701. peer_log(peer, BLOG_WARNING, "msg_youconnect: failed to read address");
  1702. continue;
  1703. }
  1704. peer_log(peer, BLOG_NOTICE, "msg_youconnect: using address in scope '%s'", name);
  1705. break;
  1706. }
  1707. // discard further addresses
  1708. msg_youconnectParser_Forwardaddr(&parser);
  1709. uint8_t *key = NULL;
  1710. uint64_t password = 0;
  1711. // read additonal parameters
  1712. if (options.transport_mode == TRANSPORT_MODE_UDP) {
  1713. if (SPPROTO_HAVE_ENCRYPTION(sp_params)) {
  1714. int key_len;
  1715. if (!msg_youconnectParser_Getkey(&parser, &key, &key_len)) {
  1716. peer_log(peer, BLOG_WARNING, "msg_youconnect: no key");
  1717. return;
  1718. }
  1719. if (key_len != BEncryption_cipher_key_size(sp_params.encryption_mode)) {
  1720. peer_log(peer, BLOG_WARNING, "msg_youconnect: wrong key size");
  1721. return;
  1722. }
  1723. }
  1724. } else {
  1725. if (!msg_youconnectParser_Getpassword(&parser, &password)) {
  1726. peer_log(peer, BLOG_WARNING, "msg_youconnect: no password");
  1727. return;
  1728. }
  1729. }
  1730. if (!msg_youconnectParser_GotEverything(&parser)) {
  1731. peer_log(peer, BLOG_WARNING, "msg_youconnect: stray data");
  1732. return;
  1733. }
  1734. peer_log(peer, BLOG_INFO, "connecting");
  1735. peer_connect(peer, addr, key, password);
  1736. }
  1737. void peer_msg_cannotconnect (struct peer_data *peer, uint8_t *data, int data_len)
  1738. {
  1739. if (data_len != 0) {
  1740. peer_log(peer, BLOG_WARNING, "msg_cannotconnect: invalid length");
  1741. return;
  1742. }
  1743. if (!peer->binding) {
  1744. peer_log(peer, BLOG_WARNING, "msg_cannotconnect: not binding");
  1745. return;
  1746. }
  1747. peer_log(peer, BLOG_INFO, "peer could not connect");
  1748. // continue trying bind addresses
  1749. peer_bind(peer);
  1750. return;
  1751. }
  1752. void peer_msg_cannotbind (struct peer_data *peer, uint8_t *data, int data_len)
  1753. {
  1754. if (data_len != 0) {
  1755. peer_log(peer, BLOG_WARNING, "msg_cannotbind: invalid length");
  1756. return;
  1757. }
  1758. peer_log(peer, BLOG_INFO, "peer cannot bind");
  1759. if (!peer_am_master(peer)) {
  1760. peer_start_binding(peer);
  1761. } else {
  1762. if (!peer->is_relay) {
  1763. peer_need_relay(peer);
  1764. }
  1765. }
  1766. }
  1767. void peer_msg_seed (struct peer_data *peer, uint8_t *data, int data_len)
  1768. {
  1769. msg_seedParser parser;
  1770. if (!msg_seedParser_Init(&parser, data, data_len)) {
  1771. peer_log(peer, BLOG_WARNING, "msg_seed: failed to parse");
  1772. return;
  1773. }
  1774. // read message
  1775. uint16_t seed_id;
  1776. ASSERT_EXECUTE(msg_seedParser_Getseed_id(&parser, &seed_id))
  1777. uint8_t *key;
  1778. int key_len;
  1779. ASSERT_EXECUTE(msg_seedParser_Getkey(&parser, &key, &key_len))
  1780. uint8_t *iv;
  1781. int iv_len;
  1782. ASSERT_EXECUTE(msg_seedParser_Getiv(&parser, &iv, &iv_len))
  1783. if (options.transport_mode != TRANSPORT_MODE_UDP) {
  1784. peer_log(peer, BLOG_WARNING, "msg_seed: not in UDP mode");
  1785. return;
  1786. }
  1787. if (!SPPROTO_HAVE_OTP(sp_params)) {
  1788. peer_log(peer, BLOG_WARNING, "msg_seed: OTPs disabled");
  1789. return;
  1790. }
  1791. if (key_len != BEncryption_cipher_key_size(sp_params.otp_mode)) {
  1792. peer_log(peer, BLOG_WARNING, "msg_seed: wrong key length");
  1793. return;
  1794. }
  1795. if (iv_len != BEncryption_cipher_block_size(sp_params.otp_mode)) {
  1796. peer_log(peer, BLOG_WARNING, "msg_seed: wrong IV length");
  1797. return;
  1798. }
  1799. if (!peer->have_link) {
  1800. peer_log(peer, BLOG_WARNING, "msg_seed: have no link");
  1801. return;
  1802. }
  1803. peer_log(peer, BLOG_DEBUG, "received OTP receive seed");
  1804. // add receive seed
  1805. DatagramPeerIO_AddOTPRecvSeed(&peer->pio.udp.pio, seed_id, key, iv);
  1806. // remember seed ID so we can confirm it from peer_udp_pio_handler_seed_ready
  1807. peer->pio.udp.pending_recvseed_id = seed_id;
  1808. }
  1809. void peer_msg_confirmseed (struct peer_data *peer, uint8_t *data, int data_len)
  1810. {
  1811. msg_confirmseedParser parser;
  1812. if (!msg_confirmseedParser_Init(&parser, data, data_len)) {
  1813. peer_log(peer, BLOG_WARNING, "msg_confirmseed: failed to parse");
  1814. return;
  1815. }
  1816. // read message
  1817. uint16_t seed_id;
  1818. ASSERT_EXECUTE(msg_confirmseedParser_Getseed_id(&parser, &seed_id))
  1819. if (options.transport_mode != TRANSPORT_MODE_UDP) {
  1820. peer_log(peer, BLOG_WARNING, "msg_confirmseed: not in UDP mode");
  1821. return;
  1822. }
  1823. if (!SPPROTO_HAVE_OTP(sp_params)) {
  1824. peer_log(peer, BLOG_WARNING, "msg_confirmseed: OTPs disabled");
  1825. return;
  1826. }
  1827. if (!peer->have_link) {
  1828. peer_log(peer, BLOG_WARNING, "msg_confirmseed: have no link");
  1829. return;
  1830. }
  1831. if (!peer->pio.udp.sendseed_sent) {
  1832. peer_log(peer, BLOG_WARNING, "msg_confirmseed: no seed has been sent");
  1833. return;
  1834. }
  1835. if (seed_id != peer->pio.udp.sendseed_sent_id) {
  1836. peer_log(peer, BLOG_WARNING, "msg_confirmseed: invalid seed: expecting %d, received %d", (int)peer->pio.udp.sendseed_sent_id, (int)seed_id);
  1837. return;
  1838. }
  1839. peer_log(peer, BLOG_DEBUG, "OTP send seed confirmed");
  1840. // no longer waiting for confirmation
  1841. peer->pio.udp.sendseed_sent = 0;
  1842. // start using the seed
  1843. DatagramPeerIO_SetOTPSendSeed(&peer->pio.udp.pio, peer->pio.udp.sendseed_sent_id, peer->pio.udp.sendseed_sent_key, peer->pio.udp.sendseed_sent_iv);
  1844. }
  1845. void peer_msg_youretry (struct peer_data *peer, uint8_t *data, int data_len)
  1846. {
  1847. if (data_len != 0) {
  1848. peer_log(peer, BLOG_WARNING, "msg_youretry: invalid length");
  1849. return;
  1850. }
  1851. if (!peer_am_master(peer)) {
  1852. peer_log(peer, BLOG_WARNING, "msg_youretry: we are not master");
  1853. return;
  1854. }
  1855. peer_log(peer, BLOG_NOTICE, "requests reset");
  1856. peer_reset(peer);
  1857. }
  1858. void peer_udp_pio_handler_seed_warning (struct peer_data *peer)
  1859. {
  1860. ASSERT(options.transport_mode == TRANSPORT_MODE_UDP)
  1861. ASSERT(SPPROTO_HAVE_OTP(sp_params))
  1862. ASSERT(peer->have_link)
  1863. // generate and send a new seed
  1864. if (!peer->pio.udp.sendseed_sent) {
  1865. BPending_Set(&peer->pio.udp.job_send_seed);
  1866. }
  1867. }
  1868. void peer_udp_pio_handler_seed_ready (struct peer_data *peer)
  1869. {
  1870. ASSERT(options.transport_mode == TRANSPORT_MODE_UDP)
  1871. ASSERT(SPPROTO_HAVE_OTP(sp_params))
  1872. ASSERT(peer->have_link)
  1873. // send confirmation
  1874. peer_send_confirmseed(peer, peer->pio.udp.pending_recvseed_id);
  1875. }
  1876. void peer_udp_pio_handler_error (struct peer_data *peer)
  1877. {
  1878. ASSERT(options.transport_mode == TRANSPORT_MODE_UDP)
  1879. ASSERT(peer->have_link)
  1880. peer_log(peer, BLOG_NOTICE, "UDP connection failed");
  1881. peer_reset(peer);
  1882. return;
  1883. }
  1884. void peer_tcp_pio_handler_error (struct peer_data *peer)
  1885. {
  1886. ASSERT(options.transport_mode == TRANSPORT_MODE_TCP)
  1887. ASSERT(peer->have_link)
  1888. peer_log(peer, BLOG_NOTICE, "TCP connection failed");
  1889. peer_reset(peer);
  1890. return;
  1891. }
  1892. void peer_reset_timer_handler (struct peer_data *peer)
  1893. {
  1894. ASSERT(peer_am_master(peer))
  1895. BLog(BLOG_NOTICE, "retry timer expired");
  1896. // start setup process
  1897. peer_start_binding(peer);
  1898. }
  1899. void peer_start_binding (struct peer_data *peer)
  1900. {
  1901. peer->binding = 1;
  1902. peer->binding_addrpos = 0;
  1903. peer_bind(peer);
  1904. }
  1905. void peer_bind (struct peer_data *peer)
  1906. {
  1907. ASSERT(peer->binding)
  1908. ASSERT(peer->binding_addrpos >= 0)
  1909. ASSERT(peer->binding_addrpos <= num_bind_addrs)
  1910. while (peer->binding_addrpos < num_bind_addrs) {
  1911. // if there are no external addresses, skip bind address
  1912. if (bind_addrs[peer->binding_addrpos].num_ext_addrs == 0) {
  1913. peer->binding_addrpos++;
  1914. continue;
  1915. }
  1916. // try to bind
  1917. int cont;
  1918. peer_bind_one_address(peer, peer->binding_addrpos, &cont);
  1919. // increment address counter
  1920. peer->binding_addrpos++;
  1921. if (!cont) {
  1922. return;
  1923. }
  1924. }
  1925. peer_log(peer, BLOG_NOTICE, "no more addresses to bind to");
  1926. // no longer binding
  1927. peer->binding = 0;
  1928. // tell the peer we failed to bind
  1929. peer_send_simple(peer, MSGID_CANNOTBIND);
  1930. // if we are the slave, setup relaying
  1931. if (!peer_am_master(peer)) {
  1932. if (!peer->is_relay) {
  1933. peer_need_relay(peer);
  1934. }
  1935. }
  1936. }
  1937. void peer_bind_one_address (struct peer_data *peer, int addr_index, int *cont)
  1938. {
  1939. ASSERT(addr_index >= 0)
  1940. ASSERT(addr_index < num_bind_addrs)
  1941. ASSERT(bind_addrs[addr_index].num_ext_addrs > 0)
  1942. // get a fresh link
  1943. peer_cleanup_connections(peer);
  1944. if (!peer_init_link(peer)) {
  1945. peer_log(peer, BLOG_ERROR, "cannot get link");
  1946. *cont = 0;
  1947. peer_reset(peer);
  1948. return;
  1949. }
  1950. if (options.transport_mode == TRANSPORT_MODE_UDP) {
  1951. // get addr
  1952. struct bind_addr *addr = &bind_addrs[addr_index];
  1953. // try binding to all ports in the range
  1954. int port_add;
  1955. for (port_add = 0; port_add < addr->num_ports; port_add++) {
  1956. BAddr tryaddr = addr->addr;
  1957. BAddr_SetPort(&tryaddr, hton16(ntoh16(BAddr_GetPort(&tryaddr)) + port_add));
  1958. if (DatagramPeerIO_Bind(&peer->pio.udp.pio, tryaddr)) {
  1959. break;
  1960. }
  1961. }
  1962. if (port_add == addr->num_ports) {
  1963. BLog(BLOG_NOTICE, "failed to bind to any port");
  1964. *cont = 1;
  1965. return;
  1966. }
  1967. uint8_t key[BENCRYPTION_MAX_KEY_SIZE];
  1968. // generate and set encryption key
  1969. if (SPPROTO_HAVE_ENCRYPTION(sp_params)) {
  1970. BRandom_randomize(key, BEncryption_cipher_key_size(sp_params.encryption_mode));
  1971. DatagramPeerIO_SetEncryptionKey(&peer->pio.udp.pio, key);
  1972. }
  1973. // schedule sending OTP seed
  1974. if (SPPROTO_HAVE_OTP(sp_params)) {
  1975. BPending_Set(&peer->pio.udp.job_send_seed);
  1976. }
  1977. // send connectinfo
  1978. peer_send_conectinfo(peer, addr_index, port_add, key, 0);
  1979. } else {
  1980. // order StreamPeerIO to listen
  1981. uint64_t pass;
  1982. StreamPeerIO_Listen(&peer->pio.tcp.pio, &listeners[addr_index], &pass);
  1983. // send connectinfo
  1984. peer_send_conectinfo(peer, addr_index, 0, NULL, pass);
  1985. }
  1986. peer_log(peer, BLOG_NOTICE, "bound to address number %d", addr_index);
  1987. *cont = 0;
  1988. }
  1989. void peer_connect (struct peer_data *peer, BAddr addr, uint8_t* encryption_key, uint64_t password)
  1990. {
  1991. // get a fresh link
  1992. peer_cleanup_connections(peer);
  1993. if (!peer_init_link(peer)) {
  1994. peer_log(peer, BLOG_ERROR, "cannot get link");
  1995. peer_reset(peer);
  1996. return;
  1997. }
  1998. if (options.transport_mode == TRANSPORT_MODE_UDP) {
  1999. // order DatagramPeerIO to connect
  2000. if (!DatagramPeerIO_Connect(&peer->pio.udp.pio, addr)) {
  2001. peer_log(peer, BLOG_NOTICE, "DatagramPeerIO_Connect failed");
  2002. peer_reset(peer);
  2003. return;
  2004. }
  2005. // set encryption key
  2006. if (SPPROTO_HAVE_ENCRYPTION(sp_params)) {
  2007. DatagramPeerIO_SetEncryptionKey(&peer->pio.udp.pio, encryption_key);
  2008. }
  2009. // generate and send a send seed
  2010. if (SPPROTO_HAVE_OTP(sp_params)) {
  2011. BPending_Set(&peer->pio.udp.job_send_seed);
  2012. }
  2013. } else {
  2014. // order StreamPeerIO to connect
  2015. if (!StreamPeerIO_Connect(&peer->pio.tcp.pio, addr, password, client_cert, client_key)) {
  2016. peer_log(peer, BLOG_NOTICE, "StreamPeerIO_Connect failed");
  2017. peer_reset(peer);
  2018. return;
  2019. }
  2020. }
  2021. }
  2022. static int peer_start_msg (struct peer_data *peer, void **data, int type, int len)
  2023. {
  2024. ASSERT(len >= 0)
  2025. ASSERT(len <= MSG_MAX_PAYLOAD)
  2026. ASSERT(!(len > 0) || data)
  2027. ASSERT(peer->chat_send_msg_len == -1)
  2028. // make sure we have chat
  2029. if (!peer->have_chat) {
  2030. peer_log(peer, BLOG_ERROR, "cannot send message, chat is down");
  2031. return 0;
  2032. }
  2033. #ifdef SIMULATE_PEER_OUT_OF_BUFFER
  2034. uint8_t x;
  2035. BRandom_randomize(&x, sizeof(x));
  2036. if (x < SIMULATE_PEER_OUT_OF_BUFFER) {
  2037. peer_log(peer, BLOG_ERROR, "simulating out of buffer, sending resetpeer");
  2038. peer_resetpeer(peer);
  2039. return 0;
  2040. }
  2041. #endif
  2042. // obtain buffer location
  2043. uint8_t *packet;
  2044. if (!PeerChat_StartMessage(&peer->chat, &packet)) {
  2045. peer_log(peer, BLOG_ERROR, "cannot send message, out of buffer, sending resetpeer");
  2046. peer_resetpeer(peer);
  2047. return 0;
  2048. }
  2049. // write fields
  2050. msgWriter writer;
  2051. msgWriter_Init(&writer, packet);
  2052. msgWriter_Addtype(&writer, type);
  2053. uint8_t *payload_dst = msgWriter_Addpayload(&writer, len);
  2054. msgWriter_Finish(&writer);
  2055. // set have message
  2056. peer->chat_send_msg_len = len;
  2057. if (data) {
  2058. *data = payload_dst;
  2059. }
  2060. return 1;
  2061. }
  2062. static void peer_end_msg (struct peer_data *peer)
  2063. {
  2064. ASSERT(peer->chat_send_msg_len >= 0)
  2065. ASSERT(peer->have_chat)
  2066. // submit packet to buffer
  2067. PeerChat_EndMessage(&peer->chat, msg_SIZEtype + msg_SIZEpayload(peer->chat_send_msg_len));
  2068. // set no message
  2069. peer->chat_send_msg_len = -1;
  2070. }
  2071. void peer_send_simple (struct peer_data *peer, int msgid)
  2072. {
  2073. if (!peer_start_msg(peer, NULL, msgid, 0)) {
  2074. return;
  2075. }
  2076. peer_end_msg(peer);
  2077. }
  2078. void peer_send_conectinfo (struct peer_data *peer, int addr_index, int port_adjust, uint8_t *enckey, uint64_t pass)
  2079. {
  2080. ASSERT(addr_index >= 0)
  2081. ASSERT(addr_index < num_bind_addrs)
  2082. ASSERT(bind_addrs[addr_index].num_ext_addrs > 0)
  2083. // get address
  2084. struct bind_addr *bind_addr = &bind_addrs[addr_index];
  2085. // remember encryption key size
  2086. int key_size;
  2087. if (options.transport_mode == TRANSPORT_MODE_UDP && SPPROTO_HAVE_ENCRYPTION(sp_params)) {
  2088. key_size = BEncryption_cipher_key_size(sp_params.encryption_mode);
  2089. }
  2090. // calculate message length ..
  2091. int msg_len = 0;
  2092. // addresses
  2093. for (int i = 0; i < bind_addr->num_ext_addrs; i++) {
  2094. int addrmsg_len =
  2095. msg_youconnect_addr_SIZEname(strlen(bind_addr->ext_addrs[i].scope)) +
  2096. msg_youconnect_addr_SIZEaddr(addr_size(bind_addr->ext_addrs[i].addr));
  2097. msg_len += msg_youconnect_SIZEaddr(addrmsg_len);
  2098. }
  2099. // encryption key
  2100. if (options.transport_mode == TRANSPORT_MODE_UDP && SPPROTO_HAVE_ENCRYPTION(sp_params)) {
  2101. msg_len += msg_youconnect_SIZEkey(key_size);
  2102. }
  2103. // password
  2104. if (options.transport_mode == TRANSPORT_MODE_TCP) {
  2105. msg_len += msg_youconnect_SIZEpassword;
  2106. }
  2107. // check if it's too big (because of the addresses)
  2108. if (msg_len > MSG_MAX_PAYLOAD) {
  2109. BLog(BLOG_ERROR, "cannot send too big youconnect message");
  2110. return;
  2111. }
  2112. // start message
  2113. uint8_t *msg;
  2114. if (!peer_start_msg(peer, (void **)&msg, MSGID_YOUCONNECT, msg_len)) {
  2115. return;
  2116. }
  2117. // init writer
  2118. msg_youconnectWriter writer;
  2119. msg_youconnectWriter_Init(&writer, msg);
  2120. // write addresses
  2121. for (int i = 0; i < bind_addr->num_ext_addrs; i++) {
  2122. int name_len = strlen(bind_addr->ext_addrs[i].scope);
  2123. int addr_len = addr_size(bind_addr->ext_addrs[i].addr);
  2124. // get a pointer for writing the address
  2125. int addrmsg_len =
  2126. msg_youconnect_addr_SIZEname(name_len) +
  2127. msg_youconnect_addr_SIZEaddr(addr_len);
  2128. uint8_t *addrmsg_dst = msg_youconnectWriter_Addaddr(&writer, addrmsg_len);
  2129. // init address writer
  2130. msg_youconnect_addrWriter awriter;
  2131. msg_youconnect_addrWriter_Init(&awriter, addrmsg_dst);
  2132. // write scope
  2133. uint8_t *name_dst = msg_youconnect_addrWriter_Addname(&awriter, name_len);
  2134. memcpy(name_dst, bind_addr->ext_addrs[i].scope, name_len);
  2135. // write address with adjusted port
  2136. BAddr addr = bind_addr->ext_addrs[i].addr;
  2137. BAddr_SetPort(&addr, hton16(ntoh16(BAddr_GetPort(&addr)) + port_adjust));
  2138. uint8_t *addr_dst = msg_youconnect_addrWriter_Addaddr(&awriter, addr_len);
  2139. addr_write(addr_dst, addr);
  2140. // finish address writer
  2141. msg_youconnect_addrWriter_Finish(&awriter);
  2142. }
  2143. // write encryption key
  2144. if (options.transport_mode == TRANSPORT_MODE_UDP && SPPROTO_HAVE_ENCRYPTION(sp_params)) {
  2145. uint8_t *key_dst = msg_youconnectWriter_Addkey(&writer, key_size);
  2146. memcpy(key_dst, enckey, key_size);
  2147. }
  2148. // write password
  2149. if (options.transport_mode == TRANSPORT_MODE_TCP) {
  2150. msg_youconnectWriter_Addpassword(&writer, pass);
  2151. }
  2152. // finish writer
  2153. msg_youconnectWriter_Finish(&writer);
  2154. // end message
  2155. peer_end_msg(peer);
  2156. }
  2157. void peer_send_confirmseed (struct peer_data *peer, uint16_t seed_id)
  2158. {
  2159. ASSERT(options.transport_mode == TRANSPORT_MODE_UDP)
  2160. ASSERT(SPPROTO_HAVE_OTP(sp_params))
  2161. // send confirmation
  2162. int msg_len = msg_confirmseed_SIZEseed_id;
  2163. uint8_t *msg;
  2164. if (!peer_start_msg(peer, (void **)&msg, MSGID_CONFIRMSEED, msg_len)) {
  2165. return;
  2166. }
  2167. msg_confirmseedWriter writer;
  2168. msg_confirmseedWriter_Init(&writer, msg);
  2169. msg_confirmseedWriter_Addseed_id(&writer, seed_id);
  2170. msg_confirmseedWriter_Finish(&writer);
  2171. peer_end_msg(peer);
  2172. }
  2173. void peer_dataproto_handler (struct peer_data *peer, int up)
  2174. {
  2175. ASSERT(peer->have_link)
  2176. if (up) {
  2177. peer_log(peer, BLOG_INFO, "up");
  2178. // if it can be a relay provided, enable it
  2179. if ((peer->flags & SCID_NEWCLIENT_FLAG_RELAY_SERVER) && !peer->is_relay) {
  2180. peer_enable_relay_provider(peer);
  2181. }
  2182. } else {
  2183. peer_log(peer, BLOG_INFO, "down");
  2184. // if it is a relay provider, disable it
  2185. if (peer->is_relay) {
  2186. peer_disable_relay_provider(peer);
  2187. }
  2188. }
  2189. }
  2190. struct peer_data * find_peer_by_id (peerid_t id)
  2191. {
  2192. for (LinkedList2Node *node = LinkedList2_GetFirst(&peers); node; node = LinkedList2Node_Next(node)) {
  2193. struct peer_data *peer = UPPER_OBJECT(node, struct peer_data, list_node);
  2194. if (peer->id == id) {
  2195. return peer;
  2196. }
  2197. }
  2198. return NULL;
  2199. }
  2200. void device_error_handler (void *unused)
  2201. {
  2202. BLog(BLOG_ERROR, "device error");
  2203. terminate();
  2204. }
  2205. void device_dpsource_handler (void *unused, const uint8_t *frame, int frame_len)
  2206. {
  2207. ASSERT(frame_len >= 0)
  2208. ASSERT(frame_len <= device_mtu)
  2209. // give frame to decider
  2210. FrameDecider_AnalyzeAndDecide(&frame_decider, frame, frame_len);
  2211. // forward frame to peers
  2212. FrameDeciderPeer *decider_peer = FrameDecider_NextDestination(&frame_decider);
  2213. while (decider_peer) {
  2214. FrameDeciderPeer *next = FrameDecider_NextDestination(&frame_decider);
  2215. struct peer_data *peer = UPPER_OBJECT(decider_peer, struct peer_data, decider_peer);
  2216. DataProtoFlow_Route(&peer->local_dpflow, !!next);
  2217. decider_peer = next;
  2218. }
  2219. }
  2220. void assign_relays (void)
  2221. {
  2222. LinkedList2Node *list_node;
  2223. while (list_node = LinkedList2_GetFirst(&waiting_relay_peers)) {
  2224. struct peer_data *peer = UPPER_OBJECT(list_node, struct peer_data, waiting_relay_list_node);
  2225. ASSERT(peer->waiting_relay)
  2226. ASSERT(!peer->relaying_peer)
  2227. ASSERT(!peer->have_link)
  2228. // get a relay
  2229. LinkedList2Node *list_node2 = LinkedList2_GetFirst(&relays);
  2230. if (!list_node2) {
  2231. BLog(BLOG_NOTICE, "no relays");
  2232. return;
  2233. }
  2234. struct peer_data *relay = UPPER_OBJECT(list_node2, struct peer_data, relay_list_node);
  2235. ASSERT(relay->is_relay)
  2236. // no longer waiting for relay
  2237. peer_unregister_need_relay(peer);
  2238. // install the relay
  2239. peer_install_relaying(peer, relay);
  2240. }
  2241. }
  2242. char * address_scope_known (uint8_t *name, int name_len)
  2243. {
  2244. ASSERT(name_len >= 0)
  2245. for (int i = 0; i < options.num_scopes; i++) {
  2246. if (name_len == strlen(options.scopes[i]) && !memcmp(name, options.scopes[i], name_len)) {
  2247. return options.scopes[i];
  2248. }
  2249. }
  2250. return NULL;
  2251. }
  2252. void server_handler_error (void *user)
  2253. {
  2254. BLog(BLOG_ERROR, "server connection failed, exiting");
  2255. terminate();
  2256. }
  2257. void server_handler_ready (void *user, peerid_t param_my_id, uint32_t ext_ip)
  2258. {
  2259. ASSERT(!server_ready)
  2260. // remember our ID
  2261. my_id = param_my_id;
  2262. // store server reported addresses
  2263. for (int i = 0; i < num_bind_addrs; i++) {
  2264. struct bind_addr *addr = &bind_addrs[i];
  2265. for (int j = 0; j < addr->num_ext_addrs; j++) {
  2266. struct ext_addr *eaddr = &addr->ext_addrs[j];
  2267. if (eaddr->server_reported_port >= 0) {
  2268. if (ext_ip == 0) {
  2269. BLog(BLOG_ERROR, "server did not provide our address");
  2270. terminate();
  2271. return;
  2272. }
  2273. BAddr_InitIPv4(&eaddr->addr, ext_ip, hton16(eaddr->server_reported_port));
  2274. char str[BADDR_MAX_PRINT_LEN];
  2275. BAddr_Print(&eaddr->addr, str);
  2276. BLog(BLOG_INFO, "external address (%d,%d): server reported %s", i, j, str);
  2277. }
  2278. }
  2279. }
  2280. // give receive device the ID
  2281. DPReceiveDevice_SetPeerID(&device_output_dprd, my_id);
  2282. // init server queue
  2283. if (!PacketPassFairQueue_Init(&server_queue, ServerConnection_GetSendInterface(&server), BReactor_PendingGroup(&ss), 0, 1)) {
  2284. BLog(BLOG_ERROR, "PacketPassFairQueue_Init failed");
  2285. terminate();
  2286. return;
  2287. }
  2288. // set server ready
  2289. server_ready = 1;
  2290. BLog(BLOG_INFO, "server: ready, my ID is %d", (int)my_id);
  2291. }
  2292. void server_handler_newclient (void *user, peerid_t peer_id, int flags, const uint8_t *cert, int cert_len)
  2293. {
  2294. ASSERT(server_ready)
  2295. ASSERT(cert_len >= 0)
  2296. ASSERT(cert_len <= SCID_NEWCLIENT_MAX_CERT_LEN)
  2297. // check if the peer already exists
  2298. if (find_peer_by_id(peer_id)) {
  2299. BLog(BLOG_WARNING, "server: newclient: peer already known");
  2300. return;
  2301. }
  2302. // make sure it's not the same ID as us
  2303. if (peer_id == my_id) {
  2304. BLog(BLOG_WARNING, "server: newclient: peer has our ID");
  2305. return;
  2306. }
  2307. // check if there is spece for the peer
  2308. if (num_peers >= MAX_PEERS) {
  2309. BLog(BLOG_WARNING, "server: newclient: no space for new peer (maximum number reached)");
  2310. return;
  2311. }
  2312. if (!options.ssl && cert_len > 0) {
  2313. BLog(BLOG_WARNING, "server: newclient: certificate supplied, but not using TLS");
  2314. return;
  2315. }
  2316. peer_add(peer_id, flags, cert, cert_len);
  2317. }
  2318. void server_handler_endclient (void *user, peerid_t peer_id)
  2319. {
  2320. ASSERT(server_ready)
  2321. // find peer
  2322. struct peer_data *peer = find_peer_by_id(peer_id);
  2323. if (!peer) {
  2324. BLog(BLOG_WARNING, "server: endclient: peer %d not known", (int)peer_id);
  2325. return;
  2326. }
  2327. // remove peer
  2328. peer_remove(peer, 0);
  2329. }
  2330. void server_handler_message (void *user, peerid_t peer_id, uint8_t *data, int data_len)
  2331. {
  2332. ASSERT(server_ready)
  2333. ASSERT(data_len >= 0)
  2334. ASSERT(data_len <= SC_MAX_MSGLEN)
  2335. // find peer
  2336. struct peer_data *peer = find_peer_by_id(peer_id);
  2337. if (!peer) {
  2338. BLog(BLOG_WARNING, "server: message: peer not known");
  2339. return;
  2340. }
  2341. // make sure we have chat
  2342. if (!peer->have_chat) {
  2343. peer_log(peer, BLOG_ERROR, "cannot process message, chat is down");
  2344. return;
  2345. }
  2346. // pass message to chat
  2347. PeerChat_InputReceived(&peer->chat, data, data_len);
  2348. }
  2349. void peer_job_send_seed (struct peer_data *peer)
  2350. {
  2351. ASSERT(options.transport_mode == TRANSPORT_MODE_UDP)
  2352. ASSERT(SPPROTO_HAVE_OTP(sp_params))
  2353. ASSERT(peer->have_link)
  2354. ASSERT(!peer->pio.udp.sendseed_sent)
  2355. peer_log(peer, BLOG_DEBUG, "sending OTP send seed");
  2356. int key_len = BEncryption_cipher_key_size(sp_params.otp_mode);
  2357. int iv_len = BEncryption_cipher_block_size(sp_params.otp_mode);
  2358. // generate seed
  2359. peer->pio.udp.sendseed_sent_id = peer->pio.udp.sendseed_nextid;
  2360. BRandom_randomize(peer->pio.udp.sendseed_sent_key, key_len);
  2361. BRandom_randomize(peer->pio.udp.sendseed_sent_iv, iv_len);
  2362. // set as sent, increment next seed ID
  2363. peer->pio.udp.sendseed_sent = 1;
  2364. peer->pio.udp.sendseed_nextid++;
  2365. // send seed to the peer
  2366. int msg_len = msg_seed_SIZEseed_id + msg_seed_SIZEkey(key_len) + msg_seed_SIZEiv(iv_len);
  2367. if (msg_len > MSG_MAX_PAYLOAD) {
  2368. peer_log(peer, BLOG_ERROR, "OTP send seed message too big");
  2369. return;
  2370. }
  2371. uint8_t *msg;
  2372. if (!peer_start_msg(peer, (void **)&msg, MSGID_SEED, msg_len)) {
  2373. return;
  2374. }
  2375. msg_seedWriter writer;
  2376. msg_seedWriter_Init(&writer, msg);
  2377. msg_seedWriter_Addseed_id(&writer, peer->pio.udp.sendseed_sent_id);
  2378. uint8_t *key_dst = msg_seedWriter_Addkey(&writer, key_len);
  2379. memcpy(key_dst, peer->pio.udp.sendseed_sent_key, key_len);
  2380. uint8_t *iv_dst = msg_seedWriter_Addiv(&writer, iv_len);
  2381. memcpy(iv_dst, peer->pio.udp.sendseed_sent_iv, iv_len);
  2382. msg_seedWriter_Finish(&writer);
  2383. peer_end_msg(peer);
  2384. }
  2385. void peer_job_init (struct peer_data *peer)
  2386. {
  2387. // start setup process
  2388. if (peer_am_master(peer)) {
  2389. peer_start_binding(peer);
  2390. }
  2391. }
  2392. struct server_flow * server_flow_init (void)
  2393. {
  2394. ASSERT(server_ready)
  2395. // allocate structure
  2396. struct server_flow *flow = (struct server_flow *)malloc(sizeof(*flow));
  2397. if (!flow) {
  2398. BLog(BLOG_ERROR, "malloc failed");
  2399. goto fail0;
  2400. }
  2401. // init queue flow
  2402. PacketPassFairQueueFlow_Init(&flow->qflow, &server_queue);
  2403. // init connector
  2404. PacketRecvConnector_Init(&flow->connector, sizeof(struct packetproto_header) + SC_MAX_ENC, BReactor_PendingGroup(&ss));
  2405. // init encoder buffer
  2406. if (!SinglePacketBuffer_Init(&flow->encoder_buffer, PacketRecvConnector_GetOutput(&flow->connector), PacketPassFairQueueFlow_GetInput(&flow->qflow), BReactor_PendingGroup(&ss))) {
  2407. BLog(BLOG_ERROR, "SinglePacketBuffer_Init failed");
  2408. goto fail1;
  2409. }
  2410. // set not connected
  2411. flow->connected = 0;
  2412. return flow;
  2413. fail1:
  2414. PacketRecvConnector_Free(&flow->connector);
  2415. PacketPassFairQueueFlow_Free(&flow->qflow);
  2416. free(flow);
  2417. fail0:
  2418. return NULL;
  2419. }
  2420. void server_flow_free (struct server_flow *flow)
  2421. {
  2422. PacketPassFairQueueFlow_AssertFree(&flow->qflow);
  2423. ASSERT(!flow->connected)
  2424. // remove dying flow reference
  2425. if (flow == dying_server_flow) {
  2426. dying_server_flow = NULL;
  2427. }
  2428. // free encoder buffer
  2429. SinglePacketBuffer_Free(&flow->encoder_buffer);
  2430. // free connector
  2431. PacketRecvConnector_Free(&flow->connector);
  2432. // free queue flow
  2433. PacketPassFairQueueFlow_Free(&flow->qflow);
  2434. // free structure
  2435. free(flow);
  2436. }
  2437. void server_flow_die (struct server_flow *flow)
  2438. {
  2439. ASSERT(PacketPassFairQueueFlow_IsBusy(&flow->qflow))
  2440. ASSERT(!flow->connected)
  2441. ASSERT(!dying_server_flow)
  2442. // request notification when flow is done
  2443. PacketPassFairQueueFlow_SetBusyHandler(&flow->qflow, (PacketPassFairQueue_handler_busy)server_flow_qflow_handler_busy, flow);
  2444. // set dying flow
  2445. dying_server_flow = flow;
  2446. }
  2447. void server_flow_qflow_handler_busy (struct server_flow *flow)
  2448. {
  2449. ASSERT(flow == dying_server_flow)
  2450. ASSERT(!flow->connected)
  2451. PacketPassFairQueueFlow_AssertFree(&flow->qflow);
  2452. // finally free flow
  2453. server_flow_free(flow);
  2454. }
  2455. void server_flow_connect (struct server_flow *flow, PacketRecvInterface *input)
  2456. {
  2457. ASSERT(!flow->connected)
  2458. ASSERT(flow != dying_server_flow)
  2459. // connect input
  2460. PacketRecvConnector_ConnectInput(&flow->connector, input);
  2461. // set connected
  2462. flow->connected = 1;
  2463. }
  2464. void server_flow_disconnect (struct server_flow *flow)
  2465. {
  2466. ASSERT(flow->connected)
  2467. ASSERT(flow != dying_server_flow)
  2468. // disconnect input
  2469. PacketRecvConnector_DisconnectInput(&flow->connector);
  2470. // set not connected
  2471. flow->connected = 0;
  2472. }