Wemos D1 Mini Frimware zur Steuerung einer RGBW-LED-Lampe
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LEDLamp.ino 8.8KB

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  1. #include "Arduino.h"
  2. #include <ESP8266WebServer.h>
  3. #include <WebSocketsServer.h>
  4. #include <ESP8266mDNS.h>
  5. #include <EEPROM.h>
  6. #include <DNSServer.h>
  7. #include <ArduinoJson.h>
  8. #include <Adafruit_Neopixel.h>
  9. #include "States.h"
  10. #include "Commands.h"
  11. #include "ConfigManager.h"
  12. #include "HtmlPages.h"
  13. #include "LEDStripManager.h"
  14. #include "TimerManager.h"
  15. AppState state = STATE_BOOT;
  16. #define LED_COUNT 12 // Nbr of LEDs on stripe TODO: move to eeprom, configurable over wifi
  17. unsigned long connectStart = 0;
  18. const byte DNS_PORT = 53;
  19. // AP Daten
  20. const char *ap_ssid = "Wemos_Setup";
  21. const char *ap_pass = "admin123";
  22. ESP8266WebServer webServer(80);
  23. WebSocketsServer webSocket(81);
  24. DNSServer dnsServer;
  25. ConfigManager configManager;
  26. LEDStripManager ledMngr(LED_COUNT, LED_STRIP_DATA_PIN, configManager, webSocket);
  27. TimerManager timerManager(configManager);
  28. // ---------- CAPTIVE PORTAL PAGE ----------
  29. void handleSetupPage() {
  30. String mac = WiFi.macAddress();
  31. String html = getSetupPage(mac);
  32. webServer.send(200, "text/html", html);
  33. }
  34. // ---------- Wemos Control PAGE ----------
  35. void handleSTAControlPage() {
  36. String mac = WiFi.macAddress();
  37. String html = getSTAControlPage(mac);
  38. webServer.send(200, "text/html", html);
  39. }
  40. // ---------- SAVE ----------
  41. void handleSave() {
  42. Config cfg;
  43. cfg.version = CONFIG_VERSION;
  44. cfg = configManager.setToDefaultWiFiConfig(cfg);
  45. cfg = configManager.setToDefaultLEDConfig(cfg);
  46. cfg = configManager.setToDefaultTimerConfig(cfg);
  47. String ssid = webServer.arg("ssid");
  48. String pass = webServer.arg("pass");
  49. ssid.toCharArray(cfg.ssid, sizeof(cfg.ssid));
  50. pass.toCharArray(cfg.pass, sizeof(cfg.pass));
  51. cfg.wifiValid = true;
  52. configManager.saveConfig(cfg);
  53. webServer.send(200, "text/html", getConnectionSuccessPage());
  54. delay(1500);
  55. ESP.restart();
  56. }
  57. // ---------- NOT FOUND (CAPTIVE REDIRECT) ----------
  58. void handleNotFound() {
  59. webServer.sendHeader("Location", "http://192.168.4.1/", true);
  60. webServer.send(302, "text/plain", "");
  61. }
  62. // ---------- START ACCESS POINT ----------
  63. void startAP() {
  64. WiFi.mode(WIFI_AP);
  65. WiFi.setSleepMode(WIFI_NONE_SLEEP);
  66. WiFi.softAP(ap_ssid, ap_pass);
  67. delay(500);
  68. IPAddress apIP = WiFi.softAPIP();
  69. Serial.print("AP IP: ");
  70. Serial.println(apIP);
  71. // DNS: ALLE Domains auf ESP IP umleiten
  72. dnsServer.start(DNS_PORT, "*", apIP);
  73. // Webserver Routes
  74. webServer.on("/", handleSetupPage);
  75. webServer.on("/save", HTTP_POST, handleSave);
  76. webServer.onNotFound(handleNotFound);
  77. webServer.begin();
  78. Serial.println("Captive Portal gestartet");
  79. }
  80. void webSocketEvent(uint8_t num, WStype_t type, uint8_t *payload, size_t length) {
  81. switch (type) {
  82. case WStype_CONNECTED: {
  83. IPAddress ip = webSocket.remoteIP(num);
  84. Serial.printf("WS Client %u verbunden von %d.%d.%d.%d\n", num, ip[0], ip[1], ip[2], ip[3]);
  85. webSocket.sendTXT(num, "Connected");
  86. if (digitalRead(LED_STRIP_POWER_PIN) == HIGH) {
  87. webSocket.sendTXT(num, "LED ON");
  88. } else {
  89. webSocket.sendTXT(num, "LED OFF");
  90. }
  91. break;
  92. }
  93. case WStype_DISCONNECTED:
  94. Serial.printf("WS Client %u getrennt\n", num);
  95. break;
  96. case WStype_TEXT: {
  97. String msg = String((char*) payload);
  98. Serial.print("WS empfangen: ");
  99. Serial.println(msg);
  100. JsonDocument doc; // e.g: {"cmd":"SWITCH_LED","val":"on"}
  101. deserializeJson(doc, msg);
  102. const char *cmd = doc["cmd"];
  103. if (strToCommand(cmd) == CMD_ESP_RESTART) {
  104. ESP.restart();
  105. } else if (strToCommand(cmd) == CMD_GET_CONFIG) {
  106. JsonDocument doc;
  107. String json;
  108. configManager.getConfig(doc);
  109. serializeJson(doc, json);
  110. webSocket.sendTXT(num, json);
  111. } else if (strToCommand(cmd) == CMD_SWITCH_LED) {
  112. const char *value = doc["val"];
  113. if (strcmp(value, "on") == 0) {
  114. Serial.println("LED ON");
  115. ledMngr.on();
  116. delay(20);
  117. if (digitalRead(LED_STRIP_POWER_PIN) == HIGH) {
  118. webSocket.sendTXT(num, "LED ON");
  119. }
  120. } else if (strcmp(value, "off") == 0) {
  121. Serial.println("LED OFF");
  122. ledMngr.off();
  123. delay(20);
  124. if (digitalRead(LED_STRIP_POWER_PIN) == LOW) {
  125. webSocket.sendTXT(num, "LED OFF");
  126. }
  127. }
  128. } else if (strToCommand(cmd) == CMD_CHG_MODE) {
  129. const char *value = doc["val"];
  130. LEDModes mode = parseMode(value);
  131. ledMngr.onModeChange(mode);
  132. } else if (strToCommand(cmd) == CMD_CHG_COLOR) {
  133. const char *value = doc["val"];
  134. const char *color = doc["clr"];
  135. unsigned int r, g, b, w;
  136. if (sscanf(color, "%u,%u,%u,%u", &r, &g, &b, &w) == 4) {
  137. ledMngr.onColorChange(value, r, g, b, w);
  138. }
  139. } else if (strToCommand(cmd) == CMD_CHG_BRIGHTNESS) {
  140. const char *value = doc["val"];
  141. unsigned int br;
  142. if (sscanf(value, "%u", &br) == 1) {
  143. ledMngr.onBrightnessChange(br);
  144. }
  145. } else if (strToCommand(cmd) == CMD_CHG_CFG_PARAM) {
  146. const char *value = doc["val"];
  147. const char *amount = doc["amt"];
  148. uint32_t amountVal;
  149. if (sscanf(amount, "%u", &amountVal) == 1) {
  150. ledMngr.onCfgParamChange(value, amountVal);
  151. }
  152. } else if (strToCommand(cmd) == CMD_CHG_TIMER) {
  153. const char *status = doc["status"];
  154. timerManager.onTimerStatusChange(status);
  155. } else if (strToCommand(cmd) == CMD_CHG_TIMER_INTERVAL) {
  156. const char *interval = doc["interval"];
  157. const char *timerange = doc["timerange"];
  158. timerManager.onTimerIntervalChange(interval, timerange);
  159. } else if (strToCommand(cmd) == CMD_RESET_WIFI_CFG) {
  160. resetWifiConfiguration(num);
  161. } else {
  162. String s = "ACK UNKNOWN: " + msg;
  163. webSocket.sendTXT(num, s);
  164. }
  165. break;
  166. }
  167. default:
  168. break;
  169. }
  170. }
  171. void resetWifiConfiguration(uint8_t num) {
  172. Config cfg = configManager.getConfig();
  173. String ssid = "";
  174. String pass = "";
  175. ssid.toCharArray(cfg.ssid, sizeof(cfg.ssid));
  176. pass.toCharArray(cfg.pass, sizeof(cfg.pass));
  177. cfg.wifiValid = false;
  178. configManager.saveConfig(cfg);
  179. webSocket.sendTXT(num, "Wifi_Reset_Success");
  180. delay(200);
  181. EEPROM.commit();
  182. ESP.restart();
  183. }
  184. void setState(AppState newState) {
  185. Serial.printf("STATE %s -> %s\n", stateToString(state), stateToString(newState));
  186. state = newState;
  187. }
  188. void handleBoot() {
  189. if (configManager.getConfig().wifiValid) {
  190. WiFi.mode(WIFI_STA);
  191. WiFi.begin(configManager.getConfig().ssid, configManager.getConfig().pass);
  192. setState(STATE_CONNECTING);
  193. }
  194. else {
  195. startAP();
  196. setState(STATE_AP_MODE);
  197. }
  198. }
  199. void handleConnecting() {
  200. if (WiFi.status() == WL_CONNECTED) {
  201. WiFi.setAutoReconnect(true);
  202. WiFi.persistent(true);
  203. startSTAWebServer();
  204. setState(STATE_STA_MODE);
  205. return;
  206. }
  207. if (millis() - connectStart > 10000) {
  208. Serial.println("Connect Timeout");
  209. startAP();
  210. setState(STATE_AP_MODE);
  211. }
  212. }
  213. void handleAPMode() {
  214. dnsServer.processNextRequest();
  215. webServer.handleClient();
  216. }
  217. void handleSTAMode() {
  218. webServer.handleClient();
  219. webSocket.loop();
  220. MDNS.update();
  221. static uint32_t lastNtpCheck = 0;
  222. uint32_t now = millis();
  223. if (WiFi.status() != WL_CONNECTED) {
  224. Serial.println("WLAN verloren");
  225. WiFi.begin(configManager.getConfig().ssid, configManager.getConfig().pass);
  226. connectStart = millis();
  227. setState(STATE_CONNECTING);
  228. return;
  229. }
  230. if (configManager.getConfig().timer.on) {
  231. if (now - lastNtpCheck >= 5000) {
  232. lastNtpCheck = now;
  233. if (timerManager.isNowInTimeInterval()) {
  234. if (ledMngr.isOn()) {
  235. ledMngr.off();
  236. }
  237. } else {
  238. if (!ledMngr.isOn()) {
  239. ledMngr.on();
  240. }
  241. }
  242. }
  243. }
  244. driveLEDStrip();
  245. }
  246. void handleError() {
  247. ledMngr.off();
  248. }
  249. void startSTAWebServer() {
  250. Serial.println("Starte STA Services");
  251. // Webseite
  252. webServer.on("/", handleSTAControlPage);
  253. // optional
  254. webServer.on("/save", HTTP_POST, handleSave);
  255. webServer.begin();
  256. // WebSocket
  257. webSocket.begin();
  258. webSocket.onEvent(webSocketEvent);
  259. Serial.print("HTTP Server: http://");
  260. Serial.println(WiFi.localIP());
  261. Serial.print("WebSocket: ws://");
  262. Serial.print(WiFi.localIP());
  263. Serial.println(":81/");
  264. String macAddressStr = WiFi.macAddress();
  265. if (MDNS.begin("LEDLamp")) {
  266. Serial.println("mDNS gestartet");
  267. MDNS.addService("http", "tcp", 80);
  268. MDNS.addService("ws", "tcp", 81);
  269. MDNS.addService("LEDLamp", "tcp", 80);
  270. MDNS.addServiceTxt("LEDLamp", "tcp", "name", "LED Lamp [" + macAddressStr + "]");
  271. }
  272. }
  273. void driveLEDStrip() {
  274. Config cfg = configManager.getConfig();
  275. switch (cfg.mode) {
  276. case LM_RAINBOW:
  277. ledMngr.setBrightness(cfg.brightness);
  278. ledMngr.rainbow();
  279. break;
  280. case LM_FLASH:
  281. ledMngr.flash();
  282. break;
  283. case LM_SPECTRAL:
  284. ledMngr.doSpectral();
  285. break;
  286. case LM_FADING:
  287. ledMngr.fade();
  288. break;
  289. default:
  290. break;
  291. }
  292. }
  293. // ---------- SETUP ----------
  294. void setup() {
  295. Serial.begin(115200);
  296. configManager.loadConfig();
  297. ledMngr.begin();
  298. timerManager.begin();
  299. setState(STATE_BOOT);
  300. connectStart = millis();
  301. }
  302. // ---------- LOOP ----------
  303. void loop() {
  304. switch (state) {
  305. case STATE_BOOT:
  306. handleBoot();
  307. break;
  308. case STATE_AP_MODE:
  309. handleAPMode();
  310. break;
  311. case STATE_CONNECTING:
  312. handleConnecting();
  313. break;
  314. case STATE_STA_MODE:
  315. handleSTAMode();
  316. break;
  317. case STATE_ERROR:
  318. handleError();
  319. break;
  320. }
  321. }