Fork of the espurna firmware for `mhsw` switches
You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

681 lines
19 KiB

6 years ago
6 years ago
6 years ago
6 years ago
6 years ago
6 years ago
6 years ago
6 years ago
6 years ago
6 years ago
6 years ago
6 years ago
  1. /*
  2. WEBSOCKET MODULE
  3. Copyright (C) 2016-2019 by Xose Pérez <xose dot perez at gmail dot com>
  4. */
  5. #if WEB_SUPPORT
  6. #include <vector>
  7. #include "system.h"
  8. #include "web.h"
  9. #include "ws.h"
  10. #include "ws_internal.h"
  11. #include "libs/WebSocketIncommingBuffer.h"
  12. AsyncWebSocket _ws("/ws");
  13. Ticker _ws_defer;
  14. uint32_t _ws_last_update = 0;
  15. // -----------------------------------------------------------------------------
  16. // WS callbacks
  17. // -----------------------------------------------------------------------------
  18. ws_callbacks_t& ws_callbacks_t::onVisible(ws_on_send_callback_f cb) {
  19. on_visible.push_back(cb);
  20. return *this;
  21. }
  22. ws_callbacks_t& ws_callbacks_t::onConnected(ws_on_send_callback_f cb) {
  23. on_connected.push_back(cb);
  24. return *this;
  25. }
  26. ws_callbacks_t& ws_callbacks_t::onData(ws_on_send_callback_f cb) {
  27. on_data.push_back(cb);
  28. return *this;
  29. }
  30. ws_callbacks_t& ws_callbacks_t::onAction(ws_on_action_callback_f cb) {
  31. on_action.push_back(cb);
  32. return *this;
  33. }
  34. ws_callbacks_t& ws_callbacks_t::onKeyCheck(ws_on_keycheck_callback_f cb) {
  35. on_keycheck.push_back(cb);
  36. return *this;
  37. }
  38. ws_callbacks_t _ws_callbacks;
  39. std::queue<ws_data_t> _ws_client_data;
  40. // -----------------------------------------------------------------------------
  41. // WS authentication
  42. // -----------------------------------------------------------------------------
  43. ws_ticket_t _ws_tickets[WS_BUFFER_SIZE];
  44. void _onAuth(AsyncWebServerRequest *request) {
  45. webLog(request);
  46. if (!webAuthenticate(request)) return request->requestAuthentication();
  47. IPAddress ip = request->client()->remoteIP();
  48. unsigned long now = millis();
  49. unsigned short index;
  50. for (index = 0; index < WS_BUFFER_SIZE; index++) {
  51. if (_ws_tickets[index].ip == ip) break;
  52. if (_ws_tickets[index].timestamp == 0) break;
  53. if (now - _ws_tickets[index].timestamp > WS_TIMEOUT) break;
  54. }
  55. if (index == WS_BUFFER_SIZE) {
  56. request->send(429);
  57. } else {
  58. _ws_tickets[index].ip = ip;
  59. _ws_tickets[index].timestamp = now;
  60. request->send(200, "text/plain", "OK");
  61. }
  62. }
  63. bool _wsAuth(AsyncWebSocketClient * client) {
  64. IPAddress ip = client->remoteIP();
  65. unsigned long now = millis();
  66. unsigned short index = 0;
  67. for (index = 0; index < WS_BUFFER_SIZE; index++) {
  68. if ((_ws_tickets[index].ip == ip) && (now - _ws_tickets[index].timestamp < WS_TIMEOUT)) break;
  69. }
  70. if (index == WS_BUFFER_SIZE) {
  71. return false;
  72. }
  73. return true;
  74. }
  75. // -----------------------------------------------------------------------------
  76. // Debug
  77. // -----------------------------------------------------------------------------
  78. #if DEBUG_WEB_SUPPORT
  79. ws_debug_t _ws_debug(WS_DEBUG_MSG_BUFFER);
  80. void ws_debug_t::send(const bool connected) {
  81. if (!connected && flush) {
  82. clear();
  83. return;
  84. }
  85. if (!flush) return;
  86. // ref: http://arduinojson.org/v5/assistant/
  87. // {"weblog": {"msg":[...],"pre":[...]}}
  88. DynamicJsonBuffer jsonBuffer(2*JSON_ARRAY_SIZE(messages.size()) + JSON_OBJECT_SIZE(1) + JSON_OBJECT_SIZE(2));
  89. JsonObject& root = jsonBuffer.createObject();
  90. JsonObject& weblog = root.createNestedObject("weblog");
  91. JsonArray& msg = weblog.createNestedArray("msg");
  92. JsonArray& pre = weblog.createNestedArray("pre");
  93. for (auto& message : messages) {
  94. pre.add(message.first.c_str());
  95. msg.add(message.second.c_str());
  96. }
  97. wsSend(root);
  98. clear();
  99. }
  100. bool wsDebugSend(const char* prefix, const char* message) {
  101. if (!wsConnected()) return false;
  102. _ws_debug.add(prefix, message);
  103. return true;
  104. }
  105. #endif
  106. // Check the existing setting before saving it
  107. // TODO: this should know of the default values, somehow?
  108. // TODO: move webPort handling somewhere else?
  109. bool _wsStore(const String& key, const String& value) {
  110. if (key == "webPort") {
  111. if ((value.toInt() == 0) || (value.toInt() == 80)) {
  112. return delSetting(key);
  113. }
  114. }
  115. if (!hasSetting(key) || value != getSetting(key)) {
  116. return setSetting(key, value);
  117. }
  118. return false;
  119. }
  120. // -----------------------------------------------------------------------------
  121. // Store indexed key (key0, key1, etc.) from array
  122. // -----------------------------------------------------------------------------
  123. bool _wsStore(const String& key, JsonArray& values) {
  124. bool changed = false;
  125. unsigned char index = 0;
  126. for (auto& element : values) {
  127. const auto value = element.as<String>();
  128. const auto keyobj = settings_key_t {key, index};
  129. if (!hasSetting(keyobj) || value != getSetting(keyobj)) {
  130. setSetting(keyobj, value);
  131. changed = true;
  132. }
  133. ++index;
  134. }
  135. // Delete further values
  136. for (unsigned char next_index=index; next_index < SETTINGS_MAX_LIST_COUNT; ++next_index) {
  137. if (!delSetting({key, next_index})) break;
  138. changed = true;
  139. }
  140. return changed;
  141. }
  142. bool _wsCheckKey(const String& key, JsonVariant& value) {
  143. for (auto& callback : _ws_callbacks.on_keycheck) {
  144. if (callback(key.c_str(), value)) return true;
  145. // TODO: remove this to call all OnKeyCheckCallbacks with the
  146. // current key/value
  147. }
  148. return false;
  149. }
  150. void _wsParse(AsyncWebSocketClient *client, uint8_t * payload, size_t length) {
  151. //DEBUG_MSG_P(PSTR("[WEBSOCKET] Parsing: %s\n"), length ? (char*) payload : "");
  152. // Get client ID
  153. uint32_t client_id = client->id();
  154. // Check early for empty object / nothing
  155. if ((length == 0) || (length == 1)) {
  156. return;
  157. }
  158. if ((length == 3) && (strcmp((char*) payload, "{}") == 0)) {
  159. return;
  160. }
  161. // Parse JSON input
  162. // TODO: json buffer should be pretty efficient with the non-const payload,
  163. // most of the space is taken by the object key references
  164. DynamicJsonBuffer jsonBuffer(512);
  165. JsonObject& root = jsonBuffer.parseObject((char *) payload);
  166. if (!root.success()) {
  167. DEBUG_MSG_P(PSTR("[WEBSOCKET] JSON parsing error\n"));
  168. wsSend_P(client_id, PSTR("{\"message\": 3}"));
  169. return;
  170. }
  171. // Check actions -----------------------------------------------------------
  172. const char* action = root["action"];
  173. if (action) {
  174. if (strcmp(action, "ping") == 0) {
  175. wsSend_P(client_id, PSTR("{\"pong\": 1}"));
  176. return;
  177. }
  178. DEBUG_MSG_P(PSTR("[WEBSOCKET] Requested action: %s\n"), action);
  179. if (strcmp(action, "reboot") == 0) {
  180. deferredReset(100, CUSTOM_RESET_WEB);
  181. return;
  182. }
  183. if (strcmp(action, "reconnect") == 0) {
  184. _ws_defer.once_ms(100, wifiDisconnect);
  185. return;
  186. }
  187. if (strcmp(action, "factory_reset") == 0) {
  188. DEBUG_MSG_P(PSTR("\n\nFACTORY RESET\n\n"));
  189. resetSettings();
  190. deferredReset(100, CUSTOM_RESET_FACTORY);
  191. return;
  192. }
  193. JsonObject& data = root["data"];
  194. if (data.success()) {
  195. // Callbacks
  196. for (auto& callback : _ws_callbacks.on_action) {
  197. callback(client_id, action, data);
  198. }
  199. // Restore configuration via websockets
  200. if (strcmp(action, "restore") == 0) {
  201. if (settingsRestoreJson(data)) {
  202. wsSend_P(client_id, PSTR("{\"message\": 5}"));
  203. } else {
  204. wsSend_P(client_id, PSTR("{\"message\": 4}"));
  205. }
  206. }
  207. return;
  208. }
  209. };
  210. // Check configuration -----------------------------------------------------
  211. JsonObject& config = root["config"];
  212. if (config.success()) {
  213. DEBUG_MSG_P(PSTR("[WEBSOCKET] Parsing configuration data\n"));
  214. String adminPass;
  215. bool save = false;
  216. for (auto kv: config) {
  217. bool changed = false;
  218. String key = kv.key;
  219. JsonVariant& value = kv.value;
  220. // Check password
  221. if (key == "adminPass") {
  222. if (!value.is<JsonArray&>()) continue;
  223. JsonArray& values = value.as<JsonArray&>();
  224. if (values.size() != 2) continue;
  225. if (values[0].as<String>().equals(values[1].as<String>())) {
  226. String password = values[0].as<String>();
  227. if (password.length() > 0) {
  228. setSetting(key, password);
  229. save = true;
  230. wsSend_P(client_id, PSTR("{\"action\": \"reload\"}"));
  231. }
  232. } else {
  233. wsSend_P(client_id, PSTR("{\"message\": 7}"));
  234. }
  235. continue;
  236. }
  237. if (!_wsCheckKey(key, value)) {
  238. delSetting(key);
  239. continue;
  240. }
  241. // Store values
  242. if (value.is<JsonArray&>()) {
  243. if (_wsStore(key, value.as<JsonArray&>())) changed = true;
  244. } else {
  245. if (_wsStore(key, value.as<String>())) changed = true;
  246. }
  247. // Update flags if value has changed
  248. if (changed) {
  249. save = true;
  250. }
  251. }
  252. // Save settings
  253. if (save) {
  254. // Callbacks
  255. espurnaReload();
  256. // Persist settings
  257. saveSettings();
  258. wsSend_P(client_id, PSTR("{\"message\": 8}"));
  259. } else {
  260. wsSend_P(client_id, PSTR("{\"message\": 9}"));
  261. }
  262. }
  263. }
  264. void _wsUpdate(JsonObject& root) {
  265. root["heap"] = getFreeHeap();
  266. root["uptime"] = getUptime();
  267. root["rssi"] = WiFi.RSSI();
  268. root["loadaverage"] = systemLoadAverage();
  269. #if ADC_MODE_VALUE == ADC_VCC
  270. root["vcc"] = ESP.getVcc();
  271. #endif
  272. #if NTP_SUPPORT
  273. if (ntpSynced()) root["now"] = now();
  274. #endif
  275. }
  276. void _wsResetUpdateTimer() {
  277. _ws_last_update = millis() + WS_UPDATE_INTERVAL;
  278. }
  279. void _wsDoUpdate(const bool connected) {
  280. if (!connected) return;
  281. if (millis() - _ws_last_update > WS_UPDATE_INTERVAL) {
  282. _ws_last_update = millis();
  283. wsSend(_wsUpdate);
  284. }
  285. }
  286. bool _wsOnKeyCheck(const char * key, JsonVariant& value) {
  287. if (strncmp(key, "ws", 2) == 0) return true;
  288. if (strncmp(key, "admin", 5) == 0) return true;
  289. if (strncmp(key, "hostname", 8) == 0) return true;
  290. if (strncmp(key, "desc", 4) == 0) return true;
  291. if (strncmp(key, "webPort", 7) == 0) return true;
  292. return false;
  293. }
  294. void _wsOnConnected(JsonObject& root) {
  295. char chipid[7];
  296. snprintf_P(chipid, sizeof(chipid), PSTR("%06X"), ESP.getChipId());
  297. root["webMode"] = WEB_MODE_NORMAL;
  298. root["app_name"] = APP_NAME;
  299. root["app_version"] = APP_VERSION;
  300. root["app_build"] = buildTime();
  301. #if defined(APP_REVISION)
  302. root["app_revision"] = APP_REVISION;
  303. #endif
  304. root["manufacturer"] = MANUFACTURER;
  305. root["chipid"] = String(chipid);
  306. root["mac"] = WiFi.macAddress();
  307. root["bssid"] = WiFi.BSSIDstr();
  308. root["channel"] = WiFi.channel();
  309. root["device"] = DEVICE;
  310. root["hostname"] = getSetting("hostname");
  311. root["desc"] = getSetting("desc");
  312. root["network"] = getNetwork();
  313. root["deviceip"] = getIP();
  314. root["sketch_size"] = ESP.getSketchSize();
  315. root["free_size"] = ESP.getFreeSketchSpace();
  316. root["sdk"] = ESP.getSdkVersion();
  317. root["core"] = getCoreVersion();
  318. root["btnDelay"] = getSetting("btnDelay", BUTTON_DBLCLICK_DELAY);
  319. root["webPort"] = getSetting("webPort", WEB_PORT);
  320. root["wsAuth"] = getSetting("wsAuth", 1 == WS_AUTHENTICATION);
  321. root["hbMode"] = getSetting("hbMode", HEARTBEAT_MODE);
  322. root["hbInterval"] = getSetting("hbInterval", HEARTBEAT_INTERVAL);
  323. }
  324. void wsSend(JsonObject& root) {
  325. // TODO: avoid serializing twice?
  326. size_t len = root.measureLength();
  327. AsyncWebSocketMessageBuffer* buffer = _ws.makeBuffer(len);
  328. if (buffer) {
  329. root.printTo(reinterpret_cast<char*>(buffer->get()), len + 1);
  330. _ws.textAll(buffer);
  331. }
  332. }
  333. void wsSend(uint32_t client_id, JsonObject& root) {
  334. AsyncWebSocketClient* client = _ws.client(client_id);
  335. if (client == nullptr) return;
  336. // TODO: avoid serializing twice?
  337. size_t len = root.measureLength();
  338. AsyncWebSocketMessageBuffer* buffer = _ws.makeBuffer(len);
  339. if (buffer) {
  340. root.printTo(reinterpret_cast<char*>(buffer->get()), len + 1);
  341. client->text(buffer);
  342. }
  343. }
  344. void _wsConnected(uint32_t client_id) {
  345. const bool changePassword = (USE_PASSWORD && WEB_FORCE_PASS_CHANGE)
  346. ? getAdminPass().equals(ADMIN_PASS)
  347. : false;
  348. if (changePassword) {
  349. StaticJsonBuffer<JSON_OBJECT_SIZE(1)> jsonBuffer;
  350. JsonObject& root = jsonBuffer.createObject();
  351. root["webMode"] = WEB_MODE_PASSWORD;
  352. wsSend(client_id, root);
  353. return;
  354. }
  355. wsPostAll(client_id, _ws_callbacks.on_visible);
  356. wsPostSequence(client_id, _ws_callbacks.on_connected);
  357. wsPostSequence(client_id, _ws_callbacks.on_data);
  358. }
  359. void _wsEvent(AsyncWebSocket * server, AsyncWebSocketClient * client, AwsEventType type, void * arg, uint8_t *data, size_t len){
  360. if (type == WS_EVT_CONNECT) {
  361. client->_tempObject = nullptr;
  362. #ifndef NOWSAUTH
  363. if (!_wsAuth(client)) {
  364. wsSend_P(client->id(), PSTR("{\"message\": 10}"));
  365. DEBUG_MSG_P(PSTR("[WEBSOCKET] Validation check failed\n"));
  366. client->close();
  367. return;
  368. }
  369. #endif
  370. IPAddress ip = client->remoteIP();
  371. DEBUG_MSG_P(PSTR("[WEBSOCKET] #%u connected, ip: %d.%d.%d.%d, url: %s\n"), client->id(), ip[0], ip[1], ip[2], ip[3], server->url());
  372. _wsConnected(client->id());
  373. _wsResetUpdateTimer();
  374. wifiReconnectCheck();
  375. client->_tempObject = new WebSocketIncommingBuffer(_wsParse, true);
  376. } else if(type == WS_EVT_DISCONNECT) {
  377. DEBUG_MSG_P(PSTR("[WEBSOCKET] #%u disconnected\n"), client->id());
  378. if (client->_tempObject) {
  379. delete (WebSocketIncommingBuffer *) client->_tempObject;
  380. }
  381. wifiReconnectCheck();
  382. } else if(type == WS_EVT_ERROR) {
  383. DEBUG_MSG_P(PSTR("[WEBSOCKET] #%u error(%u): %s\n"), client->id(), *((uint16_t*)arg), (char*)data);
  384. } else if(type == WS_EVT_PONG) {
  385. DEBUG_MSG_P(PSTR("[WEBSOCKET] #%u pong(%u): %s\n"), client->id(), len, len ? (char*) data : "");
  386. } else if(type == WS_EVT_DATA) {
  387. //DEBUG_MSG_P(PSTR("[WEBSOCKET] #%u data(%u): %s\n"), client->id(), len, len ? (char*) data : "");
  388. if (!client->_tempObject) return;
  389. WebSocketIncommingBuffer *buffer = (WebSocketIncommingBuffer *)client->_tempObject;
  390. AwsFrameInfo * info = (AwsFrameInfo*)arg;
  391. buffer->data_event(client, info, data, len);
  392. }
  393. }
  394. // TODO: make this generic loop method to queue important ws messages?
  395. // or, if something uses ticker / async ctx to send messages,
  396. // it needs a retry mechanism built into the callback object
  397. void _wsHandleClientData(const bool connected) {
  398. if (!connected && !_ws_client_data.empty()) {
  399. _ws_client_data.pop();
  400. return;
  401. }
  402. if (_ws_client_data.empty()) return;
  403. auto& data = _ws_client_data.front();
  404. // client_id == 0 means we need to send the message to every client
  405. if (data.client_id) {
  406. AsyncWebSocketClient* ws_client = _ws.client(data.client_id);
  407. if (!ws_client) {
  408. _ws_client_data.pop();
  409. return;
  410. }
  411. // wait until we can send the next batch of messages
  412. // XXX: enforce that callbacks send only one message per iteration
  413. if (ws_client->queueIsFull()) {
  414. return;
  415. }
  416. }
  417. // XXX: block allocation will try to create *2 next time,
  418. // likely failing and causing wsSend to reference empty objects
  419. // XXX: arduinojson6 will not do this, but we may need to use per-callback buffers
  420. constexpr const size_t BUFFER_SIZE = 3192;
  421. DynamicJsonBuffer jsonBuffer(BUFFER_SIZE);
  422. JsonObject& root = jsonBuffer.createObject();
  423. data.send(root);
  424. if (data.client_id) {
  425. wsSend(data.client_id, root);
  426. } else {
  427. wsSend(root);
  428. }
  429. yield();
  430. if (data.done()) {
  431. _ws_client_data.pop();
  432. }
  433. }
  434. void _wsLoop() {
  435. const bool connected = wsConnected();
  436. _wsDoUpdate(connected);
  437. _wsHandleClientData(connected);
  438. #if DEBUG_WEB_SUPPORT
  439. _ws_debug.send(connected);
  440. #endif
  441. }
  442. // -----------------------------------------------------------------------------
  443. // Public API
  444. // -----------------------------------------------------------------------------
  445. bool wsConnected() {
  446. return (_ws.count() > 0);
  447. }
  448. bool wsConnected(uint32_t client_id) {
  449. return _ws.hasClient(client_id);
  450. }
  451. ws_callbacks_t& wsRegister() {
  452. return _ws_callbacks;
  453. }
  454. void wsSend(ws_on_send_callback_f callback) {
  455. if (_ws.count() > 0) {
  456. DynamicJsonBuffer jsonBuffer(512);
  457. JsonObject& root = jsonBuffer.createObject();
  458. callback(root);
  459. wsSend(root);
  460. }
  461. }
  462. void wsSend(const char * payload) {
  463. if (_ws.count() > 0) {
  464. _ws.textAll(payload);
  465. }
  466. }
  467. void wsSend_P(PGM_P payload) {
  468. if (_ws.count() > 0) {
  469. char buffer[strlen_P(payload)];
  470. strcpy_P(buffer, payload);
  471. _ws.textAll(buffer);
  472. }
  473. }
  474. void wsSend(uint32_t client_id, ws_on_send_callback_f callback) {
  475. AsyncWebSocketClient* client = _ws.client(client_id);
  476. if (client == nullptr) return;
  477. DynamicJsonBuffer jsonBuffer(512);
  478. JsonObject& root = jsonBuffer.createObject();
  479. callback(root);
  480. wsSend(client_id, root);
  481. }
  482. void wsSend(uint32_t client_id, const char * payload) {
  483. _ws.text(client_id, payload);
  484. }
  485. void wsSend_P(uint32_t client_id, PGM_P payload) {
  486. char buffer[strlen_P(payload)];
  487. strcpy_P(buffer, payload);
  488. _ws.text(client_id, buffer);
  489. }
  490. void wsPost(const ws_on_send_callback_f& cb) {
  491. _ws_client_data.emplace(cb);
  492. }
  493. void wsPost(uint32_t client_id, const ws_on_send_callback_f& cb) {
  494. _ws_client_data.emplace(client_id, cb);
  495. }
  496. void wsPostAll(uint32_t client_id, const ws_on_send_callback_list_t& cbs) {
  497. _ws_client_data.emplace(client_id, cbs, ws_data_t::ALL);
  498. }
  499. void wsPostAll(const ws_on_send_callback_list_t& cbs) {
  500. _ws_client_data.emplace(0, cbs, ws_data_t::ALL);
  501. }
  502. void wsPostSequence(uint32_t client_id, const ws_on_send_callback_list_t& cbs) {
  503. _ws_client_data.emplace(client_id, cbs, ws_data_t::SEQUENCE);
  504. }
  505. void wsPostSequence(uint32_t client_id, ws_on_send_callback_list_t&& cbs) {
  506. _ws_client_data.emplace(client_id, std::forward<ws_on_send_callback_list_t>(cbs), ws_data_t::SEQUENCE);
  507. }
  508. void wsPostSequence(const ws_on_send_callback_list_t& cbs) {
  509. _ws_client_data.emplace(0, cbs, ws_data_t::SEQUENCE);
  510. }
  511. void wsSetup() {
  512. _ws.onEvent(_wsEvent);
  513. webServer()->addHandler(&_ws);
  514. // CORS
  515. const String webDomain = getSetting("webDomain", WEB_REMOTE_DOMAIN);
  516. DefaultHeaders::Instance().addHeader("Access-Control-Allow-Origin", webDomain);
  517. if (!webDomain.equals("*")) {
  518. DefaultHeaders::Instance().addHeader("Access-Control-Allow-Credentials", "true");
  519. }
  520. webServer()->on("/auth", HTTP_GET, _onAuth);
  521. wsRegister()
  522. .onConnected(_wsOnConnected)
  523. .onKeyCheck(_wsOnKeyCheck);
  524. espurnaRegisterLoop(_wsLoop);
  525. }
  526. #endif // WEB_SUPPORT