wsl_peer.cpp 26 KB

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  1. /**************************************************************************/
  2. /* wsl_peer.cpp */
  3. /**************************************************************************/
  4. /* This file is part of: */
  5. /* GODOT ENGINE */
  6. /* https://godotengine.org */
  7. /**************************************************************************/
  8. /* Copyright (c) 2014-present Godot Engine contributors (see AUTHORS.md). */
  9. /* Copyright (c) 2007-2014 Juan Linietsky, Ariel Manzur. */
  10. /* */
  11. /* Permission is hereby granted, free of charge, to any person obtaining */
  12. /* a copy of this software and associated documentation files (the */
  13. /* "Software"), to deal in the Software without restriction, including */
  14. /* without limitation the rights to use, copy, modify, merge, publish, */
  15. /* distribute, sublicense, and/or sell copies of the Software, and to */
  16. /* permit persons to whom the Software is furnished to do so, subject to */
  17. /* the following conditions: */
  18. /* */
  19. /* The above copyright notice and this permission notice shall be */
  20. /* included in all copies or substantial portions of the Software. */
  21. /* */
  22. /* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
  23. /* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
  24. /* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. */
  25. /* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
  26. /* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
  27. /* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
  28. /* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
  29. /**************************************************************************/
  30. #ifndef WEB_ENABLED
  31. #include "wsl_peer.h"
  32. #include "wsl_peer.h"
  33. #include "core/io/stream_peer_tls.h"
  34. CryptoCore::RandomGenerator *WSLPeer::_static_rng = nullptr;
  35. void WSLPeer::initialize() {
  36. WebSocketPeer::_create = WSLPeer::_create;
  37. _static_rng = memnew(CryptoCore::RandomGenerator);
  38. _static_rng->init();
  39. }
  40. void WSLPeer::deinitialize() {
  41. if (_static_rng) {
  42. memdelete(_static_rng);
  43. _static_rng = nullptr;
  44. }
  45. }
  46. ///
  47. /// Resolver
  48. ///
  49. void WSLPeer::Resolver::start(const String &p_host, int p_port) {
  50. stop();
  51. port = p_port;
  52. if (p_host.is_valid_ip_address()) {
  53. ip_candidates.push_back(IPAddress(p_host));
  54. } else {
  55. // Queue hostname for resolution.
  56. resolver_id = IP::get_singleton()->resolve_hostname_queue_item(p_host);
  57. ERR_FAIL_COND(resolver_id == IP::RESOLVER_INVALID_ID);
  58. // Check if it was found in cache.
  59. IP::ResolverStatus ip_status = IP::get_singleton()->get_resolve_item_status(resolver_id);
  60. if (ip_status == IP::RESOLVER_STATUS_DONE) {
  61. ip_candidates = IP::get_singleton()->get_resolve_item_addresses(resolver_id);
  62. IP::get_singleton()->erase_resolve_item(resolver_id);
  63. resolver_id = IP::RESOLVER_INVALID_ID;
  64. }
  65. }
  66. }
  67. void WSLPeer::Resolver::stop() {
  68. if (resolver_id != IP::RESOLVER_INVALID_ID) {
  69. IP::get_singleton()->erase_resolve_item(resolver_id);
  70. resolver_id = IP::RESOLVER_INVALID_ID;
  71. }
  72. port = 0;
  73. }
  74. void WSLPeer::Resolver::try_next_candidate(Ref<StreamPeerTCP> &p_tcp) {
  75. // Check if we still need resolving.
  76. if (resolver_id != IP::RESOLVER_INVALID_ID) {
  77. IP::ResolverStatus ip_status = IP::get_singleton()->get_resolve_item_status(resolver_id);
  78. if (ip_status == IP::RESOLVER_STATUS_WAITING) {
  79. return;
  80. }
  81. if (ip_status == IP::RESOLVER_STATUS_DONE) {
  82. ip_candidates = IP::get_singleton()->get_resolve_item_addresses(resolver_id);
  83. }
  84. IP::get_singleton()->erase_resolve_item(resolver_id);
  85. resolver_id = IP::RESOLVER_INVALID_ID;
  86. }
  87. // Try the current candidate if we have one.
  88. if (p_tcp->get_status() != StreamPeerTCP::STATUS_NONE) {
  89. p_tcp->poll();
  90. StreamPeerTCP::Status status = p_tcp->get_status();
  91. if (status == StreamPeerTCP::STATUS_CONNECTED) {
  92. p_tcp->set_no_delay(true);
  93. ip_candidates.clear();
  94. return;
  95. } else if (status == StreamPeerTCP::STATUS_CONNECTING) {
  96. return; // Keep connecting.
  97. } else {
  98. p_tcp->disconnect_from_host();
  99. }
  100. }
  101. // Keep trying next candidate.
  102. while (ip_candidates.size()) {
  103. Error err = p_tcp->connect_to_host(ip_candidates.pop_front(), port);
  104. if (err == OK) {
  105. return;
  106. } else {
  107. p_tcp->disconnect_from_host();
  108. }
  109. }
  110. }
  111. ///
  112. /// Server functions
  113. ///
  114. Error WSLPeer::accept_stream(Ref<StreamPeer> p_stream) {
  115. ERR_FAIL_COND_V(wsl_ctx || tcp.is_valid(), ERR_ALREADY_IN_USE);
  116. ERR_FAIL_COND_V(p_stream.is_null(), ERR_INVALID_PARAMETER);
  117. _clear();
  118. if (p_stream->is_class_ptr(StreamPeerTCP::get_class_ptr_static())) {
  119. tcp = p_stream;
  120. connection = p_stream;
  121. use_tls = false;
  122. } else if (p_stream->is_class_ptr(StreamPeerTLS::get_class_ptr_static())) {
  123. Ref<StreamPeer> base_stream = static_cast<Ref<StreamPeerTLS>>(p_stream)->get_stream();
  124. ERR_FAIL_COND_V(base_stream.is_null() || !base_stream->is_class_ptr(StreamPeerTCP::get_class_ptr_static()), ERR_INVALID_PARAMETER);
  125. tcp = static_cast<Ref<StreamPeerTCP>>(base_stream);
  126. connection = p_stream;
  127. use_tls = true;
  128. }
  129. ERR_FAIL_COND_V(connection.is_null() || tcp.is_null(), ERR_INVALID_PARAMETER);
  130. is_server = true;
  131. ready_state = STATE_CONNECTING;
  132. handshake_buffer->resize(WSL_MAX_HEADER_SIZE);
  133. handshake_buffer->seek(0);
  134. return OK;
  135. }
  136. bool WSLPeer::_parse_client_request() {
  137. Vector<String> psa = String((const char *)handshake_buffer->get_data_array().ptr(), handshake_buffer->get_position() - 4).split("\r\n");
  138. int len = psa.size();
  139. ERR_FAIL_COND_V_MSG(len < 4, false, "Not enough response headers, got: " + itos(len) + ", expected >= 4.");
  140. Vector<String> req = psa[0].split(" ", false);
  141. ERR_FAIL_COND_V_MSG(req.size() < 2, false, "Invalid protocol or status code.");
  142. // Wrong protocol
  143. ERR_FAIL_COND_V_MSG(req[0] != "GET" || req[2] != "HTTP/1.1", false, "Invalid method or HTTP version.");
  144. HashMap<String, String> headers;
  145. for (int i = 1; i < len; i++) {
  146. Vector<String> header = psa[i].split(":", false, 1);
  147. ERR_FAIL_COND_V_MSG(header.size() != 2, false, "Invalid header -> " + psa[i]);
  148. String name = header[0].to_lower();
  149. String value = header[1].strip_edges();
  150. if (headers.has(name)) {
  151. headers[name] += "," + value;
  152. } else {
  153. headers[name] = value;
  154. }
  155. }
  156. requested_host = headers.has("host") ? headers.get("host") : "";
  157. requested_url = (use_tls ? "wss://" : "ws://") + requested_host + req[1];
  158. #define WSL_CHECK(NAME, VALUE) \
  159. ERR_FAIL_COND_V_MSG(!headers.has(NAME) || headers[NAME].to_lower() != VALUE, false, \
  160. "Missing or invalid header '" + String(NAME) + "'. Expected value '" + VALUE + "'.");
  161. #define WSL_CHECK_EX(NAME) \
  162. ERR_FAIL_COND_V_MSG(!headers.has(NAME), false, "Missing header '" + String(NAME) + "'.");
  163. WSL_CHECK("upgrade", "websocket");
  164. WSL_CHECK("sec-websocket-version", "13");
  165. WSL_CHECK_EX("sec-websocket-key");
  166. WSL_CHECK_EX("connection");
  167. #undef WSL_CHECK_EX
  168. #undef WSL_CHECK
  169. session_key = headers["sec-websocket-key"];
  170. if (headers.has("sec-websocket-protocol")) {
  171. Vector<String> protos = headers["sec-websocket-protocol"].split(",");
  172. for (int i = 0; i < protos.size(); i++) {
  173. String proto = protos[i].strip_edges();
  174. // Check if we have the given protocol
  175. for (int j = 0; j < supported_protocols.size(); j++) {
  176. if (proto != supported_protocols[j]) {
  177. continue;
  178. }
  179. selected_protocol = proto;
  180. break;
  181. }
  182. // Found a protocol
  183. if (!selected_protocol.is_empty()) {
  184. break;
  185. }
  186. }
  187. if (selected_protocol.is_empty()) { // Invalid protocol(s) requested
  188. return false;
  189. }
  190. } else if (supported_protocols.size() > 0) { // No protocol requested, but we need one
  191. return false;
  192. }
  193. return true;
  194. }
  195. Error WSLPeer::_do_server_handshake() {
  196. if (use_tls) {
  197. Ref<StreamPeerTLS> tls = static_cast<Ref<StreamPeerTLS>>(connection);
  198. if (tls.is_null()) {
  199. ERR_FAIL_V_MSG(ERR_BUG, "Couldn't get StreamPeerTLS for WebSocket handshake.");
  200. close(-1);
  201. return FAILED;
  202. }
  203. tls->poll();
  204. if (tls->get_status() == StreamPeerTLS::STATUS_HANDSHAKING) {
  205. return OK; // Pending handshake
  206. } else if (tls->get_status() != StreamPeerTLS::STATUS_CONNECTED) {
  207. print_verbose(vformat("WebSocket SSL connection error during handshake (StreamPeerTLS status code %d).", tls->get_status()));
  208. close(-1);
  209. return FAILED;
  210. }
  211. }
  212. if (pending_request) {
  213. int read = 0;
  214. while (true) {
  215. ERR_FAIL_COND_V_MSG(handshake_buffer->get_available_bytes() < 1, ERR_OUT_OF_MEMORY, "WebSocket response headers are too big.");
  216. int pos = handshake_buffer->get_position();
  217. uint8_t byte;
  218. Error err = connection->get_partial_data(&byte, 1, read);
  219. if (err != OK) { // Got an error
  220. print_verbose(vformat("WebSocket error while getting partial data (StreamPeer error code %d).", err));
  221. close(-1);
  222. return FAILED;
  223. } else if (read != 1) { // Busy, wait next poll
  224. return OK;
  225. }
  226. handshake_buffer->put_u8(byte);
  227. const char *r = (const char *)handshake_buffer->get_data_array().ptr();
  228. int l = pos;
  229. if (l > 3 && r[l] == '\n' && r[l - 1] == '\r' && r[l - 2] == '\n' && r[l - 3] == '\r') {
  230. if (!_parse_client_request()) {
  231. close(-1);
  232. return FAILED;
  233. }
  234. String s = "HTTP/1.1 101 Switching Protocols\r\n";
  235. s += "Upgrade: websocket\r\n";
  236. s += "Connection: Upgrade\r\n";
  237. s += "Sec-WebSocket-Accept: " + _compute_key_response(session_key) + "\r\n";
  238. if (!selected_protocol.is_empty()) {
  239. s += "Sec-WebSocket-Protocol: " + selected_protocol + "\r\n";
  240. }
  241. for (int i = 0; i < handshake_headers.size(); i++) {
  242. s += handshake_headers[i] + "\r\n";
  243. }
  244. s += "\r\n";
  245. CharString cs = s.utf8();
  246. handshake_buffer->clear();
  247. handshake_buffer->put_data((const uint8_t *)cs.get_data(), cs.length());
  248. handshake_buffer->seek(0);
  249. pending_request = false;
  250. break;
  251. }
  252. }
  253. }
  254. if (pending_request) { // Still pending.
  255. return OK;
  256. }
  257. int left = handshake_buffer->get_available_bytes();
  258. if (left) {
  259. Vector<uint8_t> data = handshake_buffer->get_data_array();
  260. int pos = handshake_buffer->get_position();
  261. int sent = 0;
  262. Error err = connection->put_partial_data(data.ptr() + pos, left, sent);
  263. if (err != OK) {
  264. print_verbose(vformat("WebSocket error while putting partial data (StreamPeer error code %d).", err));
  265. close(-1);
  266. return err;
  267. }
  268. handshake_buffer->seek(pos + sent);
  269. left -= sent;
  270. if (left == 0) {
  271. resolver.stop();
  272. // Response sent, initialize wslay context.
  273. wslay_event_context_server_init(&wsl_ctx, &_wsl_callbacks, this);
  274. wslay_event_config_set_max_recv_msg_length(wsl_ctx, inbound_buffer_size);
  275. in_buffer.resize(nearest_shift(inbound_buffer_size), max_queued_packets);
  276. packet_buffer.resize(inbound_buffer_size);
  277. ready_state = STATE_OPEN;
  278. }
  279. }
  280. return OK;
  281. }
  282. ///
  283. /// Client functions
  284. ///
  285. void WSLPeer::_do_client_handshake() {
  286. ERR_FAIL_COND(tcp.is_null());
  287. // Try to connect to candidates.
  288. if (resolver.has_more_candidates()) {
  289. resolver.try_next_candidate(tcp);
  290. if (resolver.has_more_candidates()) {
  291. return; // Still pending.
  292. }
  293. }
  294. tcp->poll();
  295. if (tcp->get_status() == StreamPeerTCP::STATUS_CONNECTING) {
  296. return; // Keep connecting.
  297. } else if (tcp->get_status() != StreamPeerTCP::STATUS_CONNECTED) {
  298. close(-1); // Failed to connect.
  299. return;
  300. }
  301. if (use_tls) {
  302. Ref<StreamPeerTLS> tls;
  303. if (connection == tcp) {
  304. // Start SSL handshake
  305. tls = Ref<StreamPeerTLS>(StreamPeerTLS::create());
  306. ERR_FAIL_COND_MSG(tls.is_null(), "SSL is not available in this build.");
  307. if (tls->connect_to_stream(tcp, requested_host, tls_options) != OK) {
  308. close(-1);
  309. return; // Error.
  310. }
  311. connection = tls;
  312. } else {
  313. tls = static_cast<Ref<StreamPeerTLS>>(connection);
  314. ERR_FAIL_COND(tls.is_null());
  315. tls->poll();
  316. }
  317. if (tls->get_status() == StreamPeerTLS::STATUS_HANDSHAKING) {
  318. return; // Need more polling.
  319. } else if (tls->get_status() != StreamPeerTLS::STATUS_CONNECTED) {
  320. close(-1);
  321. return; // Error.
  322. }
  323. }
  324. // Do websocket handshake.
  325. if (pending_request) {
  326. int left = handshake_buffer->get_available_bytes();
  327. int pos = handshake_buffer->get_position();
  328. const Vector<uint8_t> data = handshake_buffer->get_data_array();
  329. int sent = 0;
  330. Error err = connection->put_partial_data(data.ptr() + pos, left, sent);
  331. // Sending handshake failed
  332. if (err != OK) {
  333. close(-1);
  334. return; // Error.
  335. }
  336. handshake_buffer->seek(pos + sent);
  337. if (handshake_buffer->get_available_bytes() == 0) {
  338. pending_request = false;
  339. handshake_buffer->clear();
  340. handshake_buffer->resize(WSL_MAX_HEADER_SIZE);
  341. handshake_buffer->seek(0);
  342. }
  343. } else {
  344. int read = 0;
  345. while (true) {
  346. int left = handshake_buffer->get_available_bytes();
  347. int pos = handshake_buffer->get_position();
  348. if (left == 0) {
  349. // Header is too big
  350. close(-1);
  351. ERR_FAIL_MSG("Response headers too big.");
  352. return;
  353. }
  354. uint8_t byte;
  355. Error err = connection->get_partial_data(&byte, 1, read);
  356. if (err != OK) {
  357. // Got some error.
  358. close(-1);
  359. return;
  360. } else if (read != 1) {
  361. // Busy, wait next poll.
  362. break;
  363. }
  364. handshake_buffer->put_u8(byte);
  365. // Check "\r\n\r\n" header terminator
  366. const char *r = (const char *)handshake_buffer->get_data_array().ptr();
  367. int l = pos;
  368. if (l > 3 && r[l] == '\n' && r[l - 1] == '\r' && r[l - 2] == '\n' && r[l - 3] == '\r') {
  369. // Response is over, verify headers and initialize wslay context/
  370. if (!_verify_server_response()) {
  371. close(-1);
  372. ERR_FAIL_MSG("Invalid response headers.");
  373. return;
  374. }
  375. wslay_event_context_client_init(&wsl_ctx, &_wsl_callbacks, this);
  376. wslay_event_config_set_max_recv_msg_length(wsl_ctx, inbound_buffer_size);
  377. in_buffer.resize(nearest_shift(inbound_buffer_size), max_queued_packets);
  378. packet_buffer.resize(inbound_buffer_size);
  379. ready_state = STATE_OPEN;
  380. break;
  381. }
  382. }
  383. }
  384. }
  385. bool WSLPeer::_verify_server_response() {
  386. Vector<String> psa = String((const char *)handshake_buffer->get_data_array().ptr(), handshake_buffer->get_position() - 4).split("\r\n");
  387. int len = psa.size();
  388. ERR_FAIL_COND_V_MSG(len < 4, false, "Not enough response headers. Got: " + itos(len) + ", expected >= 4.");
  389. Vector<String> req = psa[0].split(" ", false);
  390. ERR_FAIL_COND_V_MSG(req.size() < 2, false, "Invalid protocol or status code. Got '" + psa[0] + "', expected 'HTTP/1.1 101'.");
  391. // Wrong protocol
  392. ERR_FAIL_COND_V_MSG(req[0] != "HTTP/1.1", false, "Invalid protocol. Got: '" + req[0] + "', expected 'HTTP/1.1'.");
  393. ERR_FAIL_COND_V_MSG(req[1] != "101", false, "Invalid status code. Got: '" + req[1] + "', expected '101'.");
  394. HashMap<String, String> headers;
  395. for (int i = 1; i < len; i++) {
  396. Vector<String> header = psa[i].split(":", false, 1);
  397. ERR_FAIL_COND_V_MSG(header.size() != 2, false, "Invalid header -> " + psa[i] + ".");
  398. String name = header[0].to_lower();
  399. String value = header[1].strip_edges();
  400. if (headers.has(name)) {
  401. headers[name] += "," + value;
  402. } else {
  403. headers[name] = value;
  404. }
  405. }
  406. #define WSL_CHECK(NAME, VALUE) \
  407. ERR_FAIL_COND_V_MSG(!headers.has(NAME) || headers[NAME].to_lower() != VALUE, false, \
  408. "Missing or invalid header '" + String(NAME) + "'. Expected value '" + VALUE + "'.");
  409. #define WSL_CHECK_NC(NAME, VALUE) \
  410. ERR_FAIL_COND_V_MSG(!headers.has(NAME) || headers[NAME] != VALUE, false, \
  411. "Missing or invalid header '" + String(NAME) + "'. Expected value '" + VALUE + "'.");
  412. WSL_CHECK("connection", "upgrade");
  413. WSL_CHECK("upgrade", "websocket");
  414. WSL_CHECK_NC("sec-websocket-accept", _compute_key_response(session_key));
  415. #undef WSL_CHECK_NC
  416. #undef WSL_CHECK
  417. if (supported_protocols.size() == 0) {
  418. // We didn't request a custom protocol
  419. ERR_FAIL_COND_V_MSG(headers.has("sec-websocket-protocol"), false, "Received unrequested sub-protocol -> " + headers["sec-websocket-protocol"]);
  420. } else {
  421. // We requested at least one custom protocol but didn't receive one
  422. ERR_FAIL_COND_V_MSG(!headers.has("sec-websocket-protocol"), false, "Requested sub-protocol(s) but received none.");
  423. // Check received sub-protocol was one of those requested.
  424. selected_protocol = headers["sec-websocket-protocol"];
  425. bool valid = false;
  426. for (int i = 0; i < supported_protocols.size(); i++) {
  427. if (supported_protocols[i] != selected_protocol) {
  428. continue;
  429. }
  430. valid = true;
  431. break;
  432. }
  433. if (!valid) {
  434. ERR_FAIL_V_MSG(false, "Received unrequested sub-protocol -> " + selected_protocol);
  435. return false;
  436. }
  437. }
  438. return true;
  439. }
  440. Error WSLPeer::connect_to_url(const String &p_url, Ref<TLSOptions> p_options) {
  441. ERR_FAIL_COND_V(wsl_ctx || tcp.is_valid(), ERR_ALREADY_IN_USE);
  442. ERR_FAIL_COND_V(p_url.is_empty(), ERR_INVALID_PARAMETER);
  443. ERR_FAIL_COND_V(p_options.is_valid() && p_options->is_server(), ERR_INVALID_PARAMETER);
  444. _clear();
  445. String host;
  446. String path;
  447. String scheme;
  448. int port = 0;
  449. Error err = p_url.parse_url(scheme, host, port, path);
  450. ERR_FAIL_COND_V_MSG(err != OK, err, "Invalid URL: " + p_url);
  451. if (scheme.is_empty()) {
  452. scheme = "ws://";
  453. }
  454. ERR_FAIL_COND_V_MSG(scheme != "ws://" && scheme != "wss://", ERR_INVALID_PARAMETER, vformat("Invalid protocol: \"%s\" (must be either \"ws://\" or \"wss://\").", scheme));
  455. use_tls = false;
  456. if (scheme == "wss://") {
  457. use_tls = true;
  458. }
  459. if (port == 0) {
  460. port = use_tls ? 443 : 80;
  461. }
  462. if (path.is_empty()) {
  463. path = "/";
  464. }
  465. requested_url = p_url;
  466. requested_host = host;
  467. if (p_options.is_valid()) {
  468. tls_options = p_options;
  469. } else {
  470. tls_options = TLSOptions::client();
  471. }
  472. tcp.instantiate();
  473. resolver.start(host, port);
  474. resolver.try_next_candidate(tcp);
  475. if (tcp->get_status() != StreamPeerTCP::STATUS_CONNECTING && tcp->get_status() != StreamPeerTCP::STATUS_CONNECTED && !resolver.has_more_candidates()) {
  476. _clear();
  477. return FAILED;
  478. }
  479. connection = tcp;
  480. // Prepare handshake request.
  481. session_key = _generate_key();
  482. String request = "GET " + path + " HTTP/1.1\r\n";
  483. String port_string;
  484. if ((port != 80 && !use_tls) || (port != 443 && use_tls)) {
  485. port_string = ":" + itos(port);
  486. }
  487. request += "Host: " + host + port_string + "\r\n";
  488. request += "Upgrade: websocket\r\n";
  489. request += "Connection: Upgrade\r\n";
  490. request += "Sec-WebSocket-Key: " + session_key + "\r\n";
  491. request += "Sec-WebSocket-Version: 13\r\n";
  492. if (supported_protocols.size() > 0) {
  493. request += "Sec-WebSocket-Protocol: ";
  494. for (int i = 0; i < supported_protocols.size(); i++) {
  495. if (i != 0) {
  496. request += ",";
  497. }
  498. request += supported_protocols[i];
  499. }
  500. request += "\r\n";
  501. }
  502. for (int i = 0; i < handshake_headers.size(); i++) {
  503. request += handshake_headers[i] + "\r\n";
  504. }
  505. request += "\r\n";
  506. CharString cs = request.utf8();
  507. handshake_buffer->put_data((const uint8_t *)cs.get_data(), cs.length());
  508. handshake_buffer->seek(0);
  509. ready_state = STATE_CONNECTING;
  510. is_server = false;
  511. return OK;
  512. }
  513. ///
  514. /// Callback functions.
  515. ///
  516. ssize_t WSLPeer::_wsl_recv_callback(wslay_event_context_ptr ctx, uint8_t *data, size_t len, int flags, void *user_data) {
  517. WSLPeer *peer = (WSLPeer *)user_data;
  518. Ref<StreamPeer> conn = peer->connection;
  519. if (conn.is_null()) {
  520. wslay_event_set_error(ctx, WSLAY_ERR_CALLBACK_FAILURE);
  521. return -1;
  522. }
  523. int read = 0;
  524. Error err = conn->get_partial_data(data, len, read);
  525. if (err != OK) {
  526. print_verbose("Websocket get data error: " + itos(err) + ", read (should be 0!): " + itos(read));
  527. wslay_event_set_error(ctx, WSLAY_ERR_CALLBACK_FAILURE);
  528. return -1;
  529. }
  530. if (read == 0) {
  531. wslay_event_set_error(ctx, WSLAY_ERR_WOULDBLOCK);
  532. return -1;
  533. }
  534. return read;
  535. }
  536. ssize_t WSLPeer::_wsl_send_callback(wslay_event_context_ptr ctx, const uint8_t *data, size_t len, int flags, void *user_data) {
  537. WSLPeer *peer = (WSLPeer *)user_data;
  538. Ref<StreamPeer> conn = peer->connection;
  539. if (conn.is_null()) {
  540. wslay_event_set_error(ctx, WSLAY_ERR_CALLBACK_FAILURE);
  541. return -1;
  542. }
  543. int sent = 0;
  544. Error err = conn->put_partial_data(data, len, sent);
  545. if (err != OK) {
  546. wslay_event_set_error(ctx, WSLAY_ERR_CALLBACK_FAILURE);
  547. return -1;
  548. }
  549. if (sent == 0) {
  550. wslay_event_set_error(ctx, WSLAY_ERR_WOULDBLOCK);
  551. return -1;
  552. }
  553. return sent;
  554. }
  555. int WSLPeer::_wsl_genmask_callback(wslay_event_context_ptr ctx, uint8_t *buf, size_t len, void *user_data) {
  556. ERR_FAIL_COND_V(!_static_rng, WSLAY_ERR_CALLBACK_FAILURE);
  557. Error err = _static_rng->get_random_bytes(buf, len);
  558. ERR_FAIL_COND_V(err != OK, WSLAY_ERR_CALLBACK_FAILURE);
  559. return 0;
  560. }
  561. void WSLPeer::_wsl_msg_recv_callback(wslay_event_context_ptr ctx, const struct wslay_event_on_msg_recv_arg *arg, void *user_data) {
  562. WSLPeer *peer = (WSLPeer *)user_data;
  563. uint8_t op = arg->opcode;
  564. if (op == WSLAY_CONNECTION_CLOSE) {
  565. // Close request or confirmation.
  566. peer->close_code = arg->status_code;
  567. size_t len = arg->msg_length;
  568. peer->close_reason = "";
  569. if (len > 2 /* first 2 bytes = close code */) {
  570. peer->close_reason.parse_utf8((char *)arg->msg + 2, len - 2);
  571. }
  572. if (peer->ready_state == STATE_OPEN) {
  573. peer->ready_state = STATE_CLOSING;
  574. }
  575. return;
  576. }
  577. if (peer->ready_state == STATE_CLOSING) {
  578. return;
  579. }
  580. if (op == WSLAY_TEXT_FRAME || op == WSLAY_BINARY_FRAME) {
  581. // Message.
  582. uint8_t is_string = arg->opcode == WSLAY_TEXT_FRAME ? 1 : 0;
  583. peer->in_buffer.write_packet(arg->msg, arg->msg_length, &is_string);
  584. }
  585. // Ping or pong.
  586. }
  587. wslay_event_callbacks WSLPeer::_wsl_callbacks = {
  588. _wsl_recv_callback,
  589. _wsl_send_callback,
  590. _wsl_genmask_callback,
  591. nullptr, /* on_frame_recv_start_callback */
  592. nullptr, /* on_frame_recv_callback */
  593. nullptr, /* on_frame_recv_end_callback */
  594. _wsl_msg_recv_callback
  595. };
  596. String WSLPeer::_generate_key() {
  597. // Random key
  598. Vector<uint8_t> bkey;
  599. int len = 16; // 16 bytes, as per RFC
  600. bkey.resize(len);
  601. _wsl_genmask_callback(nullptr, bkey.ptrw(), len, nullptr);
  602. return CryptoCore::b64_encode_str(bkey.ptrw(), len);
  603. }
  604. String WSLPeer::_compute_key_response(String p_key) {
  605. String key = p_key + "258EAFA5-E914-47DA-95CA-C5AB0DC85B11"; // Magic UUID as per RFC
  606. Vector<uint8_t> sha = key.sha1_buffer();
  607. return CryptoCore::b64_encode_str(sha.ptr(), sha.size());
  608. }
  609. void WSLPeer::poll() {
  610. // Nothing to do.
  611. if (ready_state == STATE_CLOSED) {
  612. return;
  613. }
  614. if (ready_state == STATE_CONNECTING) {
  615. if (is_server) {
  616. _do_server_handshake();
  617. } else {
  618. _do_client_handshake();
  619. }
  620. }
  621. if (ready_state == STATE_OPEN || ready_state == STATE_CLOSING) {
  622. ERR_FAIL_COND(!wsl_ctx);
  623. int err = 0;
  624. if ((err = wslay_event_recv(wsl_ctx)) != 0 || (err = wslay_event_send(wsl_ctx)) != 0) {
  625. // Error close.
  626. print_verbose("Websocket (wslay) poll error: " + itos(err));
  627. wslay_event_context_free(wsl_ctx);
  628. wsl_ctx = nullptr;
  629. close(-1);
  630. return;
  631. }
  632. if (wslay_event_get_close_sent(wsl_ctx) && wslay_event_get_close_received(wsl_ctx)) {
  633. // Clean close.
  634. wslay_event_context_free(wsl_ctx);
  635. wsl_ctx = nullptr;
  636. close(-1);
  637. return;
  638. }
  639. }
  640. }
  641. Error WSLPeer::_send(const uint8_t *p_buffer, int p_buffer_size, wslay_opcode p_opcode) {
  642. ERR_FAIL_COND_V(ready_state != STATE_OPEN, FAILED);
  643. ERR_FAIL_COND_V(wslay_event_get_queued_msg_count(wsl_ctx) >= (uint32_t)max_queued_packets, ERR_OUT_OF_MEMORY);
  644. ERR_FAIL_COND_V(outbound_buffer_size > 0 && (wslay_event_get_queued_msg_length(wsl_ctx) + p_buffer_size > (uint32_t)outbound_buffer_size), ERR_OUT_OF_MEMORY);
  645. struct wslay_event_msg msg;
  646. msg.opcode = p_opcode;
  647. msg.msg = p_buffer;
  648. msg.msg_length = p_buffer_size;
  649. // Queue & send message.
  650. if (wslay_event_queue_msg(wsl_ctx, &msg) != 0 || wslay_event_send(wsl_ctx) != 0) {
  651. close(-1);
  652. return FAILED;
  653. }
  654. return OK;
  655. }
  656. Error WSLPeer::send(const uint8_t *p_buffer, int p_buffer_size, WriteMode p_mode) {
  657. wslay_opcode opcode = p_mode == WRITE_MODE_TEXT ? WSLAY_TEXT_FRAME : WSLAY_BINARY_FRAME;
  658. return _send(p_buffer, p_buffer_size, opcode);
  659. }
  660. Error WSLPeer::put_packet(const uint8_t *p_buffer, int p_buffer_size) {
  661. return _send(p_buffer, p_buffer_size, WSLAY_BINARY_FRAME);
  662. }
  663. Error WSLPeer::get_packet(const uint8_t **r_buffer, int &r_buffer_size) {
  664. r_buffer_size = 0;
  665. ERR_FAIL_COND_V(ready_state != STATE_OPEN, FAILED);
  666. if (in_buffer.packets_left() == 0) {
  667. return ERR_UNAVAILABLE;
  668. }
  669. int read = 0;
  670. uint8_t *rw = packet_buffer.ptrw();
  671. in_buffer.read_packet(rw, packet_buffer.size(), &was_string, read);
  672. *r_buffer = rw;
  673. r_buffer_size = read;
  674. return OK;
  675. }
  676. int WSLPeer::get_available_packet_count() const {
  677. if (ready_state != STATE_OPEN) {
  678. return 0;
  679. }
  680. return in_buffer.packets_left();
  681. }
  682. int WSLPeer::get_current_outbound_buffered_amount() const {
  683. if (ready_state != STATE_OPEN) {
  684. return 0;
  685. }
  686. return wslay_event_get_queued_msg_length(wsl_ctx);
  687. }
  688. void WSLPeer::close(int p_code, String p_reason) {
  689. if (p_code < 0) {
  690. // Force immediate close.
  691. ready_state = STATE_CLOSED;
  692. }
  693. if (ready_state == STATE_OPEN && !wslay_event_get_close_sent(wsl_ctx)) {
  694. CharString cs = p_reason.utf8();
  695. wslay_event_queue_close(wsl_ctx, p_code, (uint8_t *)cs.ptr(), cs.length());
  696. wslay_event_send(wsl_ctx);
  697. ready_state = STATE_CLOSING;
  698. } else if (ready_state == STATE_CONNECTING || ready_state == STATE_CLOSED) {
  699. ready_state = STATE_CLOSED;
  700. connection.unref();
  701. if (tcp.is_valid()) {
  702. tcp->disconnect_from_host();
  703. tcp.unref();
  704. }
  705. }
  706. in_buffer.clear();
  707. packet_buffer.resize(0);
  708. }
  709. IPAddress WSLPeer::get_connected_host() const {
  710. ERR_FAIL_COND_V(tcp.is_null(), IPAddress());
  711. return tcp->get_connected_host();
  712. }
  713. uint16_t WSLPeer::get_connected_port() const {
  714. ERR_FAIL_COND_V(tcp.is_null(), 0);
  715. return tcp->get_connected_port();
  716. }
  717. String WSLPeer::get_selected_protocol() const {
  718. return selected_protocol;
  719. }
  720. String WSLPeer::get_requested_url() const {
  721. return requested_url;
  722. }
  723. void WSLPeer::set_no_delay(bool p_enabled) {
  724. ERR_FAIL_COND(tcp.is_null());
  725. tcp->set_no_delay(p_enabled);
  726. }
  727. void WSLPeer::_clear() {
  728. // Connection info.
  729. ready_state = STATE_CLOSED;
  730. is_server = false;
  731. connection.unref();
  732. if (tcp.is_valid()) {
  733. tcp->disconnect_from_host();
  734. tcp.unref();
  735. }
  736. if (wsl_ctx) {
  737. wslay_event_context_free(wsl_ctx);
  738. wsl_ctx = nullptr;
  739. }
  740. resolver.stop();
  741. requested_url.clear();
  742. requested_host.clear();
  743. pending_request = true;
  744. handshake_buffer->clear();
  745. selected_protocol.clear();
  746. session_key.clear();
  747. // Pending packets info.
  748. was_string = 0;
  749. in_buffer.clear();
  750. packet_buffer.clear();
  751. // Close code info.
  752. close_code = -1;
  753. close_reason.clear();
  754. }
  755. WSLPeer::WSLPeer() {
  756. handshake_buffer.instantiate();
  757. }
  758. WSLPeer::~WSLPeer() {
  759. close(-1);
  760. }
  761. #endif // WEB_ENABLED