MiLightHttpServer.cpp 11 KB

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  1. #include <FS.h>
  2. #include <WiFiUdp.h>
  3. #include <IntParsing.h>
  4. #include <Settings.h>
  5. #include <MiLightHttpServer.h>
  6. #include <MiLightRadioConfig.h>
  7. #include <GithubDownloader.h>
  8. void MiLightHttpServer::begin() {
  9. applySettings(settings);
  10. server.on("/", HTTP_GET, handleServeFile(WEB_INDEX_FILENAME, "text/html", DEFAULT_INDEX_PAGE));
  11. server.on("/settings", HTTP_GET, handleServeFile(SETTINGS_FILE, "application/json"));
  12. server.on("/settings", HTTP_PUT, [this]() { handleUpdateSettings(); });
  13. server.on("/settings", HTTP_POST, [this]() { server.send(200, "text/plain", "success"); }, handleUpdateFile(SETTINGS_FILE));
  14. server.on("/radio_configs", HTTP_GET, [this]() { handleGetRadioConfigs(); });
  15. server.onPattern("/gateway_traffic/:type", HTTP_GET, [this](const UrlTokenBindings* b) { handleListenGateway(b); });
  16. server.onPattern("/gateways/:device_id/:type/:group_id", HTTP_PUT, [this](const UrlTokenBindings* b) { handleUpdateGroup(b); });
  17. server.onPattern("/send_raw/:type", HTTP_PUT, [this](const UrlTokenBindings* b) { handleSendRaw(b); });
  18. server.onPattern("/download_update/:component", HTTP_GET, [this](const UrlTokenBindings* b) { handleDownloadUpdate(b); });
  19. server.on("/web", HTTP_POST, [this]() { server.send(200, "text/plain", "success"); }, handleUpdateFile(WEB_INDEX_FILENAME));
  20. server.on("/about", HTTP_GET, [this]() { handleAbout(); });
  21. server.on("/system", HTTP_POST, [this]() { handleSystemPost(); });
  22. server.on("/firmware", HTTP_POST,
  23. [this](){
  24. server.sendHeader("Connection", "close");
  25. server.sendHeader("Access-Control-Allow-Origin", "*");
  26. server.send(200, "text/plain", (Update.hasError())?"FAIL":"OK");
  27. ESP.restart();
  28. },
  29. [this](){
  30. HTTPUpload& upload = server.upload();
  31. if(upload.status == UPLOAD_FILE_START){
  32. WiFiUDP::stopAll();
  33. uint32_t maxSketchSpace = (ESP.getFreeSketchSpace() - 0x1000) & 0xFFFFF000;
  34. if(!Update.begin(maxSketchSpace)){//start with max available size
  35. Update.printError(Serial);
  36. }
  37. } else if(upload.status == UPLOAD_FILE_WRITE){
  38. if(Update.write(upload.buf, upload.currentSize) != upload.currentSize){
  39. Update.printError(Serial);
  40. }
  41. } else if(upload.status == UPLOAD_FILE_END){
  42. if(Update.end(true)){ //true to set the size to the current progress
  43. } else {
  44. Update.printError(Serial);
  45. }
  46. }
  47. yield();
  48. }
  49. );
  50. server.begin();
  51. }
  52. void MiLightHttpServer::handleClient() {
  53. server.handleClient();
  54. }
  55. void MiLightHttpServer::handleSystemPost() {
  56. DynamicJsonBuffer buffer;
  57. JsonObject& request = buffer.parse(server.arg("plain"));
  58. if (request.containsKey("command")) {
  59. if (request["command"] == "restart") {
  60. Serial.println("Restarting...");
  61. server.send(200, "text/plain", "true");
  62. delay(100);
  63. ESP.restart();
  64. }
  65. }
  66. }
  67. void MiLightHttpServer::handleDownloadUpdate(const UrlTokenBindings* bindings) {
  68. GithubDownloader* downloader = new GithubDownloader();
  69. const String& component = bindings->get("component");
  70. if (component.equalsIgnoreCase("web")) {
  71. Serial.println("Attempting to update web UI...");
  72. bool result = false;
  73. size_t tries = 0;
  74. while (!result && tries++ <= MAX_DOWNLOAD_ATTEMPTS) {
  75. result = downloader->downloadFile(
  76. MILIGHT_GITHUB_USER,
  77. MILIGHT_GITHUB_REPO,
  78. MILIGHT_REPO_WEB_PATH,
  79. WEB_INDEX_FILENAME
  80. );
  81. }
  82. Serial.println("Download complete!");
  83. if (result) {
  84. server.sendHeader("Location", "/");
  85. server.send(302);
  86. } else {
  87. server.send(500, "text/plain", "Failed to download update from Github. Check serial logs for more information.");
  88. }
  89. } else {
  90. String body = String("Unknown component: ") + component;
  91. server.send(400, "text/plain", body);
  92. }
  93. delete downloader;
  94. }
  95. void MiLightHttpServer::applySettings(Settings& settings) {
  96. if (settings.hasAuthSettings()) {
  97. server.requireAuthentication(settings.adminUsername, settings.adminPassword);
  98. } else {
  99. server.disableAuthentication();
  100. }
  101. milightClient->setResendCount(settings.packetRepeats);
  102. }
  103. void MiLightHttpServer::onSettingsSaved(SettingsSavedHandler handler) {
  104. this->settingsSavedHandler = handler;
  105. }
  106. void MiLightHttpServer::handleAbout() {
  107. DynamicJsonBuffer buffer;
  108. JsonObject& response = buffer.createObject();
  109. response["version"] = MILIGHT_HUB_VERSION;
  110. response["variant"] = FIRMWARE_VARIANT;
  111. String body;
  112. response.printTo(body);
  113. server.send(200, "application", body);
  114. }
  115. void MiLightHttpServer::handleGetRadioConfigs() {
  116. DynamicJsonBuffer buffer;
  117. JsonArray& arr = buffer.createArray();
  118. for (size_t i = 0; i < MiLightRadioConfig::NUM_CONFIGS; i++) {
  119. const MiLightRadioConfig* config = MiLightRadioConfig::ALL_CONFIGS[i];
  120. arr.add(config->name);
  121. }
  122. String body;
  123. arr.printTo(body);
  124. server.send(200, "application/json", body);
  125. }
  126. ESP8266WebServer::THandlerFunction MiLightHttpServer::handleServeFile(
  127. const char* filename,
  128. const char* contentType,
  129. const char* defaultText) {
  130. return [this, filename, contentType, defaultText]() {
  131. if (!serveFile(filename)) {
  132. if (defaultText) {
  133. server.send(200, contentType, defaultText);
  134. } else {
  135. server.send(404);
  136. }
  137. }
  138. };
  139. }
  140. bool MiLightHttpServer::serveFile(const char* file, const char* contentType) {
  141. if (SPIFFS.exists(file)) {
  142. File f = SPIFFS.open(file, "r");
  143. server.streamFile(f, contentType);
  144. f.close();
  145. return true;
  146. }
  147. return false;
  148. }
  149. ESP8266WebServer::THandlerFunction MiLightHttpServer::handleUpdateFile(const char* filename) {
  150. return [this, filename]() {
  151. HTTPUpload& upload = server.upload();
  152. if (upload.status == UPLOAD_FILE_START) {
  153. updateFile = SPIFFS.open(filename, "w");
  154. } else if(upload.status == UPLOAD_FILE_WRITE){
  155. if (updateFile.write(upload.buf, upload.currentSize) != upload.currentSize) {
  156. Serial.println("Error updating web file");
  157. }
  158. } else if (upload.status == UPLOAD_FILE_END) {
  159. updateFile.close();
  160. }
  161. };
  162. }
  163. void MiLightHttpServer::handleUpdateSettings() {
  164. DynamicJsonBuffer buffer;
  165. const String& rawSettings = server.arg("plain");
  166. JsonObject& parsedSettings = buffer.parse(rawSettings);
  167. if (parsedSettings.success()) {
  168. settings.patch(parsedSettings);
  169. settings.save();
  170. this->applySettings(settings);
  171. this->settingsSavedHandler();
  172. server.send(200, "application/json", "true");
  173. } else {
  174. server.send(400, "application/json", "\"Invalid JSON\"");
  175. }
  176. }
  177. void MiLightHttpServer::handleListenGateway(const UrlTokenBindings* bindings) {
  178. bool available = false;
  179. MiLightRadioConfig* config = MiLightRadioConfig::fromString(bindings->get("type"));
  180. if (config == NULL) {
  181. String body = "Unknown device type: ";
  182. body += bindings->get("type");
  183. server.send(400, "text/plain", body);
  184. return;
  185. }
  186. milightClient->prepare(*config, 0, 0);
  187. while (!available) {
  188. if (!server.clientConnected()) {
  189. return;
  190. }
  191. if (milightClient->available()) {
  192. available = true;
  193. }
  194. yield();
  195. }
  196. uint8_t packet[config->getPacketLength()];
  197. milightClient->read(packet);
  198. String response = "Packet received (";
  199. response += String(sizeof(packet)) + " bytes)";
  200. response += ":\n";
  201. char ppBuffer[200];
  202. milightClient->formatPacket(packet, ppBuffer);
  203. response += String(ppBuffer);
  204. response += "\n\n";
  205. server.send(200, "text/plain", response);
  206. }
  207. void MiLightHttpServer::handleUpdateGroup(const UrlTokenBindings* urlBindings) {
  208. DynamicJsonBuffer buffer;
  209. JsonObject& request = buffer.parse(server.arg("plain"));
  210. if (!request.success()) {
  211. server.send(400, "text/plain", "Invalid JSON");
  212. return;
  213. }
  214. const uint16_t deviceId = parseInt<uint16_t>(urlBindings->get("device_id"));
  215. const uint8_t groupId = urlBindings->get("group_id").toInt();
  216. MiLightRadioConfig* config = MiLightRadioConfig::fromString(urlBindings->get("type"));
  217. if (config == NULL) {
  218. String body = "Unknown device type: ";
  219. body += urlBindings->get("type");
  220. server.send(400, "text/plain", body);
  221. return;
  222. }
  223. milightClient->setResendCount(
  224. settings.httpRepeatFactor * settings.packetRepeats
  225. );
  226. milightClient->prepare(*config, deviceId, groupId);
  227. if (request.containsKey("status")) {
  228. const String& statusStr = request.get<String>("status");
  229. MiLightStatus status = (statusStr == "on" || statusStr == "true") ? ON : OFF;
  230. milightClient->updateStatus(status);
  231. }
  232. if (request.containsKey("command")) {
  233. if (request["command"] == "unpair") {
  234. milightClient->unpair();
  235. }
  236. if (request["command"] == "pair") {
  237. milightClient->pair();
  238. }
  239. if (request["command"] == "set_white") {
  240. milightClient->updateColorWhite();
  241. }
  242. if (request["command"] == "level_up") {
  243. milightClient->increaseBrightness();
  244. }
  245. if (request["command"] == "level_down") {
  246. milightClient->decreaseBrightness();
  247. }
  248. if (request["command"] == "temperature_up") {
  249. milightClient->increaseTemperature();
  250. }
  251. if (request["command"] == "temperature_down") {
  252. milightClient->decreaseTemperature();
  253. }
  254. if (request["command"] == "next_mode") {
  255. milightClient->nextMode();
  256. }
  257. if (request["command"] == "previous_mode") {
  258. milightClient->previousMode();
  259. }
  260. if (request["command"] == "mode_speed_down") {
  261. milightClient->modeSpeedDown();
  262. }
  263. if (request["command"] == "mode_speed_up") {
  264. milightClient->modeSpeedUp();
  265. }
  266. }
  267. if (request.containsKey("hue")) {
  268. milightClient->updateHue(request["hue"]);
  269. }
  270. if (request.containsKey("level")) {
  271. milightClient->updateBrightness(request["level"]);
  272. }
  273. if (request.containsKey("temperature")) {
  274. milightClient->updateTemperature(request["temperature"]);
  275. }
  276. if (request.containsKey("saturation")) {
  277. milightClient->updateSaturation(request["saturation"]);
  278. }
  279. if (request.containsKey("mode")) {
  280. milightClient->updateMode(request["mode"]);
  281. }
  282. milightClient->setResendCount(settings.packetRepeats);
  283. server.send(200, "application/json", "true");
  284. }
  285. void MiLightHttpServer::handleSendRaw(const UrlTokenBindings* bindings) {
  286. DynamicJsonBuffer buffer;
  287. JsonObject& request = buffer.parse(server.arg("plain"));
  288. MiLightRadioConfig* config = MiLightRadioConfig::fromString(bindings->get("type"));
  289. if (config == NULL) {
  290. String body = "Unknown device type: ";
  291. body += bindings->get("type");
  292. server.send(400, "text/plain", body);
  293. return;
  294. }
  295. uint8_t packet[config->getPacketLength()];
  296. const String& hexPacket = request["packet"];
  297. hexStrToBytes<uint8_t>(hexPacket.c_str(), hexPacket.length(), packet, config->getPacketLength());
  298. size_t numRepeats = MILIGHT_DEFAULT_RESEND_COUNT;
  299. if (request.containsKey("num_repeats")) {
  300. numRepeats = request["num_repeats"];
  301. }
  302. milightClient->prepare(*config, 0, 0);
  303. for (size_t i = 0; i < numRepeats; i++) {
  304. milightClient->write(packet);
  305. }
  306. server.send(200, "text/plain", "true");
  307. }