Change mqtt settings
This commit is contained in:
@@ -1,5 +1,4 @@
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#include <Arduino.h>
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//#include <ESP_EEPROM.h>
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#include <ArduinoOTA.h>
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#include <Ticker.h>
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#include <AsyncMqttClient.h>
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@@ -24,79 +23,18 @@ Ticker wifiReconnectTimer;
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unsigned long cRun = 0;
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unsigned long lastSense;
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uint16_t nSec = 0;
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uint8_t lamp, lampP;
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//uint8_t lamp, lampP;
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uint8_t light;
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void connectToWifi() {
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Serial.println("Connecting to Wi-Fi...");
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WiFi.begin(ssid, password);
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}
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bool switchLight(uint8_t nLamp, int state, bool pub);
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void connectToWifi();
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void connectToMqtt();
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void onWifiConnect(const WiFiEventStationModeGotIP& event);
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void onWifiDisconnect(const WiFiEventStationModeDisconnected& event);
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void onMqttConnect(bool sessionPresent);
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void onMqttDisconnect(AsyncMqttClientDisconnectReason reason);
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void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total);
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void connectToMqtt() {
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Serial.println("Connecting to MQTT...");
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mqttClient.connect();
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}
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void onWifiConnect(const WiFiEventStationModeGotIP& event) {
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Serial.println("Connected to Wi-Fi.");
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Serial.print("IP: ");
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Serial.println(WiFi.localIP());
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connectToMqtt();
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digitalWrite(LED_WF, HIGH);
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}
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void onWifiDisconnect(const WiFiEventStationModeDisconnected& event) {
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Serial.println("Disconnected from Wi-Fi.");
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mqttReconnectTimer.detach(); // ensure we don't reconnect to MQTT while reconnecting to Wi-Fi
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wifiReconnectTimer.once(2, connectToWifi);
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digitalWrite(LED_WF, LOW);
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}
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void onMqttConnect(bool sessionPresent) {
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Serial.println("Connected to MQTT.");
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Serial.print("Session present: ");
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Serial.println(sessionPresent);
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mqttClient.subscribe("/home/kuh/lighttbl_set", 0);
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mqttClient.publish("/home/kuh/lighttbl", 0, false, light ? "1" : "0");
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digitalWrite(LED_MQ, HIGH);
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}
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void onMqttDisconnect(AsyncMqttClientDisconnectReason reason) {
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//Serial.println("Disconnected from MQTT.");
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if (WiFi.isConnected()) {
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mqttReconnectTimer.once(2, connectToMqtt);
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}
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digitalWrite(LED_MQ, LOW);
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}
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void onMqttSubscribe(uint16_t packetId, uint8_t qos) {
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Serial.println("Subscribe acknowledged.");
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Serial.print(" packetId: ");
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Serial.println(packetId);
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Serial.print(" qos: ");
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Serial.println(qos);
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}
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void onMqttUnsubscribe(uint16_t packetId) {
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Serial.println("Unsubscribe acknowledged.");
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Serial.print(" packetId: ");
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Serial.println(packetId);
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}
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void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total) {
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if(strcmp(topic, "/home/kuh/lighttbl_set") == 0){
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light = atoi(payload);
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digitalWrite(LAMP, light);
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mqttClient.publish("/home/kuh/lighttbl", 0, false, light ? "1" : "0");
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}
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}
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void onMqttPublish(uint16_t packetId) {
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Serial.println("Publish acknowledged.");
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Serial.print(" packetId: ");
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Serial.println(packetId);
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}
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void setup() {
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Serial.begin(9600);
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@@ -132,14 +70,9 @@ void setup() {
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mqttClient.onConnect(onMqttConnect);
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mqttClient.onDisconnect(onMqttDisconnect);
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mqttClient.onSubscribe(onMqttSubscribe);
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mqttClient.onUnsubscribe(onMqttUnsubscribe);
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mqttClient.onMessage(onMqttMessage);
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mqttClient.onPublish(onMqttPublish);
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mqttClient.setServer(mqtt_server, 1883);
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// EEPROM.begin(16);
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// EEPROM.get(0, lamp);
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pinMode(LAMP, OUTPUT);
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pinMode(LED_WF, OUTPUT);
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@@ -150,12 +83,11 @@ void setup() {
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digitalWrite(LED_WF, LOW);
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digitalWrite(LED_MQ, LOW);
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digitalWrite(LED_WRK, LOW);
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digitalWrite(LAMP, LOW);
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Serial.println("Connect to WiFi");
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connectToWifi();
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lastSense = millis();
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light = false;
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Serial.println("Loop");
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}
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void loop() {
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@@ -163,13 +95,9 @@ void loop() {
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ArduinoOTA.handle();
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if(digitalRead(SENS) == 0){
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if(lastSense + 3000 < millis()){
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if(lastSense + 2999 < millis()){
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lastSense = millis();
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light = !light;
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digitalWrite(LAMP, light);
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mqttClient.publish("/home/kuh/lighttbl", 0, false, light ? "1" : "0");
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Serial.println("Change state");
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Serial.println(light);
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switchLight(LAMP, !digitalRead(LAMP), true);
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}
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}
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if(cRun + 999 < millis()){
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@@ -182,10 +110,54 @@ void loop() {
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char v[11];
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itoa(millis(), v, 10);
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mqttClient.publish("/home/kuh/ltblmillis", 0, false, v);
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Serial.print("Millis: ");
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Serial.println(millis());
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}
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nSec = 0;
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}
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}
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}
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bool switchLight(uint8_t nLamp, int state, bool pub)
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{
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digitalWrite(nLamp, state);
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if (pub) mqttClient.publish("/home/kuh/lighttbl", 0, false, state ? "1" : "0");
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return state;
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}
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void connectToWifi() {
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WiFi.begin(ssid, password);
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}
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void connectToMqtt() {
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mqttClient.connect();
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}
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void onWifiConnect(const WiFiEventStationModeGotIP& event) {
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connectToMqtt();
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digitalWrite(LED_WF, HIGH);
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}
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void onWifiDisconnect(const WiFiEventStationModeDisconnected& event) {
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mqttReconnectTimer.detach(); // ensure we don't reconnect to MQTT while reconnecting to Wi-Fi
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wifiReconnectTimer.once(2, connectToWifi);
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digitalWrite(LED_WF, LOW);
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}
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void onMqttConnect(bool sessionPresent) {
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mqttClient.publish("/home/kuh/lighttbl", 0, false, digitalRead(LAMP) == 1 ? "1" : "0");
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mqttClient.subscribe("/home/kuh/lighttbl", 0);
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digitalWrite(LED_MQ, HIGH);
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}
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void onMqttDisconnect(AsyncMqttClientDisconnectReason reason) {
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if (WiFi.isConnected()) {
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mqttReconnectTimer.once(2, connectToMqtt);
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}
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digitalWrite(LED_MQ, LOW);
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}
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void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total) {
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if(strcmp(topic, "/home/kuh/lighttbl") == 0){
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if (atoi(payload) == 1) switchLight(LAMP, 1, false);//lStat2 = true;
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else switchLight(LAMP, 0, false);//lStat2 = false;
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}
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}
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@@ -18,6 +18,7 @@ Ticker wifiReconnectTimer;
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bool lStat1, oldLStat1;
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bool lStat2, oldLStat2;
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bool rcv;
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unsigned long cRun;
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#define B_LED (16)
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#define R_LED1 (4)
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@@ -28,57 +29,15 @@ unsigned long cRun;
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Bounce l1 = Bounce();
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Bounce l2 = Bounce();
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void connectToWifi() {
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WiFi.begin(ssid, password);
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}
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bool switchLight(uint8_t nLamp, int state, bool pub);
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void connectToWifi();
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void connectToMqtt();
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void onWifiConnect(const WiFiEventStationModeGotIP& event);
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void onWifiDisconnect(const WiFiEventStationModeDisconnected& event);
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void onMqttConnect(bool sessionPresent);
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void onMqttDisconnect(AsyncMqttClientDisconnectReason reason);
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void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total);
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void connectToMqtt() {
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mqttClient.connect();
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}
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void onWifiConnect(const WiFiEventStationModeGotIP& event) {
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connectToMqtt();
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}
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void onWifiDisconnect(const WiFiEventStationModeDisconnected& event) {
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mqttReconnectTimer.detach(); // ensure we don't reconnect to MQTT while reconnecting to Wi-Fi
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wifiReconnectTimer.once(2, connectToWifi);
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}
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void onMqttConnect(bool sessionPresent) {
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mqttClient.subscribe("/home/bigroom/lamp1_set", 0);
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mqttClient.subscribe("/home/bigroom/lamp2_set", 0);
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mqttClient.publish("/home/bigroom/lamp1", 0, false, lStat1 ? "1" : "0");
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mqttClient.publish("/home/bigroom/lamp2", 0, false, lStat2 ? "1" : "0");
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digitalWrite(B_LED, LOW);
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}
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void onMqttDisconnect(AsyncMqttClientDisconnectReason reason) {
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if (WiFi.isConnected()) {
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mqttReconnectTimer.once(2, connectToMqtt);
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}
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digitalWrite(B_LED, HIGH);
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}
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void onMqttSubscribe(uint16_t packetId, uint8_t qos) {
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}
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void onMqttUnsubscribe(uint16_t packetId) {
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}
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void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total) {
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if(strcmp(topic, "/home/bigroom/lamp1_set") == 0){
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if (atoi(payload) == 1) lStat1 = true;
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else lStat1 = false;
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}
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if(strcmp(topic, "/home/bigroom/lamp2_set") == 0){
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if (atoi(payload) == 1) lStat2 = true;
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else lStat2 = false;
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}
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}
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void onMqttPublish(uint16_t packetId) {
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}
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void setup() {
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WiFi.mode(WIFI_STA);
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@@ -122,6 +81,7 @@ void setup() {
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EEPROM.get(1, lStat2);
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oldLStat1 = lStat1;
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oldLStat2 = lStat2;
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rcv = false;
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// Serial.print("Lamp1: ");
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// Serial.println(lStat1);
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digitalWrite(R_LED1, lStat1);
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@@ -133,10 +93,10 @@ void setup() {
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mqttClient.onConnect(onMqttConnect);
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mqttClient.onDisconnect(onMqttDisconnect);
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mqttClient.onSubscribe(onMqttSubscribe);
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mqttClient.onUnsubscribe(onMqttUnsubscribe);
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// mqttClient.onSubscribe(onMqttSubscribe);
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// mqttClient.onUnsubscribe(onMqttUnsubscribe);
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mqttClient.onMessage(onMqttMessage);
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mqttClient.onPublish(onMqttPublish);
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// mqttClient.onPublish(onMqttPublish);
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mqttClient.setServer(mqtt_server, 1883);
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mqttClient.setClientId("SW_Bigroom");
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@@ -150,25 +110,33 @@ void loop() {
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l1.update();
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l2.update();
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if(l1.fell()){
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lStat1 = !lStat1;
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switchLight(R_LED1, !digitalRead(R_LED1), true);
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//lStat1 = !lStat1;
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}
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if(l2.fell()){
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lStat2 = !lStat2;
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}
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if(lStat1 != oldLStat1){
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digitalWrite(R_LED1, lStat1);
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oldLStat1 = lStat1;
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mqttClient.publish("/home/bigroom/lamp1", 0, false, lStat1 ? "1" : "0");
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EEPROM.put(0, lStat1);
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EEPROM.commit();
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}
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if(lStat2 != oldLStat2){
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digitalWrite(R_LED2, lStat2);
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oldLStat2 = lStat2;
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mqttClient.publish("/home/bigroom/lamp2", 0, false, lStat2 ? "1" : "0");
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EEPROM.put(1, lStat2);
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EEPROM.commit();
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switchLight(R_LED2, !digitalRead(R_LED2), true);
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//lStat2 = !lStat2;
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}
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// if(lStat1 != oldLStat1){
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// digitalWrite(R_LED1, lStat1);
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// oldLStat1 = lStat1;
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// if(!rcv)
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// mqttClient.publish("/home/bigroom/lamp1", 0, false, lStat1 ? "1" : "0");
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// else
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// rcv = false;
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// EEPROM.put(0, lStat1);
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// EEPROM.commit();
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// }
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// if(lStat2 != oldLStat2){
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// digitalWrite(R_LED2, lStat2);
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// oldLStat2 = lStat2;
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// if(!rcv)
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// mqttClient.publish("/home/bigroom/lamp2", 0, false, lStat2 ? "1" : "0");
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// else
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// rcv = false;
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// EEPROM.put(1, lStat2);
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// EEPROM.commit();
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// }
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if (cRun + 9999 < millis()){
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cRun = millis();
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char v[11];
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@@ -177,4 +145,61 @@ void loop() {
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}
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}
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bool switchLight(uint8_t nLamp, int state, bool pub)
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{
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digitalWrite(nLamp, state);
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EEPROM.put(nLamp == R_LED1 ? 0 : 1, state);
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EEPROM.commit();
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String topic = "/home/bigroom/lamp";
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char n = nLamp == R_LED1 ? '1' : '2';
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if (pub) mqttClient.publish(String(topic + n).c_str(), 0, false, state ? "1" : "0");
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return state;
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}
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void connectToWifi() {
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WiFi.begin(ssid, password);
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}
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void connectToMqtt() {
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mqttClient.connect();
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}
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void onWifiConnect(const WiFiEventStationModeGotIP& event) {
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connectToMqtt();
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}
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void onWifiDisconnect(const WiFiEventStationModeDisconnected& event) {
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mqttReconnectTimer.detach(); // ensure we don't reconnect to MQTT while reconnecting to Wi-Fi
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wifiReconnectTimer.once(2, connectToWifi);
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}
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void onMqttConnect(bool sessionPresent) {
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mqttClient.publish("/home/bigroom/lamp1", 0, false, lStat1 ? "1" : "0");
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mqttClient.publish("/home/bigroom/lamp2", 0, false, lStat2 ? "1" : "0");
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mqttClient.subscribe("/home/bigroom/lamp1", 0);
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mqttClient.subscribe("/home/bigroom/lamp2", 0);
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digitalWrite(B_LED, LOW);
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}
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void onMqttDisconnect(AsyncMqttClientDisconnectReason reason) {
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if (WiFi.isConnected()) {
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mqttReconnectTimer.once(2, connectToMqtt);
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}
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digitalWrite(B_LED, HIGH);
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}
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void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total) {
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if(String(topic) == "/home/bigroom/lamp1"){
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if (atoi(payload) == 1) switchLight(R_LED1, 1, false);
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//lStat1 = true;
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else switchLight(R_LED1, 0, false);
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//lStat1 = false;
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//rcv = true;
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}
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if(String(topic) == "/home/bigroom/lamp2"){
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if (atoi(payload) == 1) switchLight(R_LED2, 1, false);
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//lStat1 = true;
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else switchLight(R_LED2, 0, false);
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}
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}
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@@ -22,92 +22,25 @@ WiFiEventHandler wifiConnectHandler;
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WiFiEventHandler wifiDisconnectHandler;
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Ticker wifiReconnectTimer;
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bool lStat1, oldLStat1;
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bool lStat2, oldLStat2;
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//bool lStat1, oldLStat1;
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//bool lStat2, oldLStat2;
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unsigned long cRun;
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//bool rcv;
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#define B_LED (1)
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#define R_LED (12)
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#define BUTT (5)
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bool led = false;
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//bool led = false;
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OneButton button(BUTT);
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bool switchLight(uint8_t nLamp, int state, bool pub);
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void connectToWifi();
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void connectToMqtt();
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void onWifiConnect(const WiFiEventStationModeGotIP& event);
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void onWifiDisconnect(const WiFiEventStationModeDisconnected& event);
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void onMqttConnect(bool sessionPresent);
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void onMqttDisconnect(AsyncMqttClientDisconnectReason reason);
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void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total);
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void connectToWifi() {
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//Serial.println("Connecting to Wi-Fi...");
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WiFi.begin(ssid, password);
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}
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void connectToMqtt() {
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//Serial.println("Connecting to MQTT...");
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mqttClient.connect();
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}
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void onWifiConnect(const WiFiEventStationModeGotIP& event) {
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//Serial.println("Connected to Wi-Fi.");
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//Serial.print("IP: ");
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//Serial.println(WiFi.localIP());
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connectToMqtt();
|
||||
}
|
||||
|
||||
void onWifiDisconnect(const WiFiEventStationModeDisconnected& event) {
|
||||
//Serial.println("Disconnected from Wi-Fi.");
|
||||
mqttReconnectTimer.detach(); // ensure we don't reconnect to MQTT while reconnecting to Wi-Fi
|
||||
wifiReconnectTimer.once(2, connectToWifi);
|
||||
}
|
||||
|
||||
void onMqttConnect(bool sessionPresent) {
|
||||
// Serial.println("Connected to MQTT.");
|
||||
// Serial.print("Session present: ");
|
||||
// Serial.println(sessionPresent);
|
||||
//uint16_t packetIdSub =
|
||||
mqttClient.subscribe("/home/kor/lamp1_set", 0);
|
||||
// Serial.print("Subscribing Lamp1, packetId: ");
|
||||
// Serial.println(packetIdSub);
|
||||
//packetIdSub = mqttClient.subscribe("/home/kor/lamp2_set", 1);
|
||||
//Serial.print("Subscribing Lamp2, packetId: ");
|
||||
//Serial.println(packetIdSub);
|
||||
mqttClient.publish("/home/kor/lamp1", 0, false, lStat1 ? "1" : "0");
|
||||
//Serial.println("Publishing at Lamp 1");
|
||||
//mqttClient.publish("/home/kor/lamp2", 1, false, lStat2 ? "1" : "0");
|
||||
//Serial.println("Publishing at Lamp 2");
|
||||
digitalWrite(B_LED, LOW);
|
||||
}
|
||||
|
||||
void onMqttDisconnect(AsyncMqttClientDisconnectReason reason) {
|
||||
//Serial.println("Disconnected from MQTT.");
|
||||
|
||||
if (WiFi.isConnected()) {
|
||||
mqttReconnectTimer.once(2, connectToMqtt);
|
||||
}
|
||||
digitalWrite(B_LED, HIGH);
|
||||
}
|
||||
|
||||
void onMqttSubscribe(uint16_t packetId, uint8_t qos) {
|
||||
// Serial.println("Subscribe acknowledged.");
|
||||
// Serial.print(" packetId: ");
|
||||
// Serial.println(packetId);
|
||||
// Serial.print(" qos: ");
|
||||
// Serial.println(qos);
|
||||
}
|
||||
|
||||
void onMqttUnsubscribe(uint16_t packetId) {
|
||||
// Serial.println("Unsubscribe acknowledged.");
|
||||
// Serial.print(" packetId: ");
|
||||
// Serial.println(packetId);
|
||||
}
|
||||
|
||||
void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total) {
|
||||
if(strcmp(topic, "/home/kor/lamp1_set") == 0){
|
||||
if (atoi(payload) == 1) lStat1 = true;
|
||||
else lStat1 = false;
|
||||
}
|
||||
}
|
||||
|
||||
void onMqttPublish(uint16_t packetId) {
|
||||
// Serial.println("Publish acknowledged.");
|
||||
// Serial.print(" packetId: ");
|
||||
// Serial.println(packetId);
|
||||
}
|
||||
|
||||
// void ICACHE_RAM_ATTR sw_func()
|
||||
// {
|
||||
@@ -116,18 +49,21 @@ void onMqttPublish(uint16_t packetId) {
|
||||
|
||||
void oneClick()
|
||||
{
|
||||
lStat1 = !lStat1;
|
||||
switchLight(R_LED, !digitalRead(R_LED), true);
|
||||
//lStat1 = !lStat1;
|
||||
}
|
||||
|
||||
void longPress()
|
||||
{
|
||||
lStat1 = false;
|
||||
mqttClient.publish("/home/bigroom/lamp1_set", 0, false, "0");
|
||||
mqttClient.publish("/home/bigroom/lamp2_set", 0, false, "0");
|
||||
mqttClient.publish("/home/midroom/lamp1_set", 0, false, "0");
|
||||
mqttClient.publish("/home/midroom/lamp2_set", 0, false, "0");
|
||||
mqttClient.publish("/home/smallroom/lamp1_set", 0, false, "0");
|
||||
mqttClient.publish("/home/smallroom/lamp2_set", 0, false, "0");
|
||||
//lStat1 = false;
|
||||
switchLight(R_LED, 0, true);
|
||||
mqttClient.publish("/home/bigroom/lamp1", 0, false, "0");
|
||||
mqttClient.publish("/home/bigroom/lamp2", 0, false, "0");
|
||||
mqttClient.publish("/home/midroom/lamp1", 0, false, "0");
|
||||
mqttClient.publish("/home/midroom/lamp2", 0, false, "0");
|
||||
mqttClient.publish("/home/smallroom/lamp1", 0, false, "0");
|
||||
mqttClient.publish("/home/smallroom/lamp2", 0, false, "0");
|
||||
mqttClient.publish("/home/kuh/lighttbl", 0, false, "0");
|
||||
}
|
||||
|
||||
void setup() {
|
||||
@@ -165,11 +101,12 @@ void setup() {
|
||||
pinMode(R_LED, OUTPUT);
|
||||
pinMode(BUTT, INPUT_PULLUP);
|
||||
EEPROM.begin(16);
|
||||
EEPROM.get(0, lStat1);
|
||||
oldLStat1 = lStat1;
|
||||
uint8_t lstat = 0;
|
||||
EEPROM.get(0, lstat);
|
||||
//oldLStat1 = lStat1;
|
||||
// Serial.print("Lamp1: ");
|
||||
// Serial.println(lStat1);
|
||||
digitalWrite(R_LED, lStat1);
|
||||
digitalWrite(R_LED, lstat);
|
||||
//oldLStat2 = lStat2;
|
||||
|
||||
wifiConnectHandler = WiFi.onStationModeGotIP(onWifiConnect);
|
||||
@@ -177,10 +114,10 @@ void setup() {
|
||||
|
||||
mqttClient.onConnect(onMqttConnect);
|
||||
mqttClient.onDisconnect(onMqttDisconnect);
|
||||
mqttClient.onSubscribe(onMqttSubscribe);
|
||||
mqttClient.onUnsubscribe(onMqttUnsubscribe);
|
||||
// mqttClient.onSubscribe(onMqttSubscribe);
|
||||
// mqttClient.onUnsubscribe(onMqttUnsubscribe);
|
||||
mqttClient.onMessage(onMqttMessage);
|
||||
mqttClient.onPublish(onMqttPublish);
|
||||
// mqttClient.onPublish(onMqttPublish);
|
||||
mqttClient.setServer(mqtt_server, 1883);
|
||||
mqttClient.setClientId("SW_Koridor");
|
||||
|
||||
@@ -198,13 +135,16 @@ void setup() {
|
||||
void loop() {
|
||||
ArduinoOTA.handle();
|
||||
button.tick();
|
||||
if(lStat1 != oldLStat1){
|
||||
digitalWrite(R_LED, lStat1);
|
||||
oldLStat1 = lStat1;
|
||||
mqttClient.publish("/home/kor/lamp1", 0, false, lStat1 ? "1" : "0");
|
||||
EEPROM.put(0, lStat1);
|
||||
EEPROM.commit();
|
||||
}
|
||||
// if(lStat1 != oldLStat1){
|
||||
// digitalWrite(R_LED, lStat1);
|
||||
// oldLStat1 = lStat1;
|
||||
// if(!rcv)
|
||||
// mqttClient.publish("/home/kor/lamp1", 0, false, lStat1 ? "1" : "0");
|
||||
// else
|
||||
// rcv = false;
|
||||
// EEPROM.put(0, lStat1);
|
||||
// EEPROM.commit();
|
||||
// }
|
||||
if (cRun + 9999 < millis()){
|
||||
cRun = millis();
|
||||
char v[11];
|
||||
@@ -213,3 +153,77 @@ void loop() {
|
||||
}
|
||||
}
|
||||
|
||||
bool switchLight(uint8_t nLamp, int state, bool pub)
|
||||
{
|
||||
digitalWrite(nLamp, state);
|
||||
EEPROM.put(0, state);
|
||||
EEPROM.commit();
|
||||
if (pub) mqttClient.publish("/home/kor/lamp1", 0, false, state ? "1" : "0");
|
||||
return state;
|
||||
}
|
||||
|
||||
void connectToWifi() {
|
||||
//Serial.println("Connecting to Wi-Fi...");
|
||||
WiFi.begin(ssid, password);
|
||||
}
|
||||
|
||||
void connectToMqtt() {
|
||||
//Serial.println("Connecting to MQTT...");
|
||||
mqttClient.connect();
|
||||
}
|
||||
|
||||
void onWifiConnect(const WiFiEventStationModeGotIP& event) {
|
||||
//Serial.println("Connected to Wi-Fi.");
|
||||
//Serial.print("IP: ");
|
||||
//Serial.println(WiFi.localIP());
|
||||
connectToMqtt();
|
||||
}
|
||||
|
||||
void onWifiDisconnect(const WiFiEventStationModeDisconnected& event) {
|
||||
//Serial.println("Disconnected from Wi-Fi.");
|
||||
mqttReconnectTimer.detach(); // ensure we don't reconnect to MQTT while reconnecting to Wi-Fi
|
||||
wifiReconnectTimer.once(2, connectToWifi);
|
||||
}
|
||||
|
||||
void onMqttConnect(bool sessionPresent) {
|
||||
mqttClient.publish("/home/kor/lamp1", 0, false, digitalRead(R_LED) == 1 ? "1" : "0");
|
||||
mqttClient.subscribe("/home/kor/lamp1", 0);
|
||||
digitalWrite(B_LED, LOW);
|
||||
}
|
||||
|
||||
void onMqttDisconnect(AsyncMqttClientDisconnectReason reason) {
|
||||
//Serial.println("Disconnected from MQTT.");
|
||||
|
||||
if (WiFi.isConnected()) {
|
||||
mqttReconnectTimer.once(2, connectToMqtt);
|
||||
}
|
||||
digitalWrite(B_LED, HIGH);
|
||||
}
|
||||
|
||||
void onMqttSubscribe(uint16_t packetId, uint8_t qos) {
|
||||
// Serial.println("Subscribe acknowledged.");
|
||||
// Serial.print(" packetId: ");
|
||||
// Serial.println(packetId);
|
||||
// Serial.print(" qos: ");
|
||||
// Serial.println(qos);
|
||||
}
|
||||
|
||||
void onMqttUnsubscribe(uint16_t packetId) {
|
||||
// Serial.println("Unsubscribe acknowledged.");
|
||||
// Serial.print(" packetId: ");
|
||||
// Serial.println(packetId);
|
||||
}
|
||||
|
||||
void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total) {
|
||||
if(strcmp(topic, "/home/kor/lamp1") == 0){
|
||||
if (atoi(payload) == 1) switchLight(R_LED, 1, false);//lStat1 = true;
|
||||
else switchLight(R_LED, 0, false);//lStat1 = false;
|
||||
//rcv = true;
|
||||
}
|
||||
}
|
||||
|
||||
void onMqttPublish(uint16_t packetId) {
|
||||
// Serial.println("Publish acknowledged.");
|
||||
// Serial.print(" packetId: ");
|
||||
// Serial.println(packetId);
|
||||
}
|
||||
|
||||
@@ -16,70 +16,29 @@ WiFiEventHandler wifiConnectHandler;
|
||||
WiFiEventHandler wifiDisconnectHandler;
|
||||
Ticker wifiReconnectTimer;
|
||||
|
||||
bool lStat1, oldLStat1;
|
||||
bool lStat2, oldLStat2;
|
||||
// bool lStat1, oldLStat1;
|
||||
// bool lStat2, oldLStat2;
|
||||
// bool rcv;
|
||||
unsigned long cRun;
|
||||
#define B_LED (16)
|
||||
#define R_LED1 (4)
|
||||
#define R_LED2 (13)
|
||||
#define BUTT1 (14)
|
||||
#define BUTT2 (12)
|
||||
bool led = false;
|
||||
//bool led = false;
|
||||
|
||||
Bounce l1 = Bounce();
|
||||
Bounce l2 = Bounce();
|
||||
|
||||
void connectToWifi() {
|
||||
WiFi.begin(ssid, password);
|
||||
}
|
||||
bool switchLight(uint8_t nLamp, int state, bool pub);
|
||||
void connectToWifi();
|
||||
void connectToMqtt();
|
||||
void onWifiConnect(const WiFiEventStationModeGotIP& event);
|
||||
void onWifiDisconnect(const WiFiEventStationModeDisconnected& event);
|
||||
void onMqttConnect(bool sessionPresent);
|
||||
void onMqttDisconnect(AsyncMqttClientDisconnectReason reason);
|
||||
void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total);
|
||||
|
||||
void connectToMqtt() {
|
||||
mqttClient.connect();
|
||||
}
|
||||
|
||||
void onWifiConnect(const WiFiEventStationModeGotIP& event) {
|
||||
connectToMqtt();
|
||||
}
|
||||
|
||||
void onWifiDisconnect(const WiFiEventStationModeDisconnected& event) {
|
||||
mqttReconnectTimer.detach(); // ensure we don't reconnect to MQTT while reconnecting to Wi-Fi
|
||||
wifiReconnectTimer.once(2, connectToWifi);
|
||||
}
|
||||
|
||||
void onMqttConnect(bool sessionPresent) {
|
||||
mqttClient.subscribe("/home/midroom/lamp1_set", 0);
|
||||
mqttClient.subscribe("/home/midroom/lamp2_set", 0);
|
||||
mqttClient.publish("/home/midroom/lamp1", 0, false, lStat1 ? "1" : "0");
|
||||
mqttClient.publish("/home/midroom/lamp2", 0, false, lStat2 ? "1" : "0");
|
||||
digitalWrite(B_LED, LOW);
|
||||
}
|
||||
|
||||
void onMqttDisconnect(AsyncMqttClientDisconnectReason reason) {
|
||||
if (WiFi.isConnected()) {
|
||||
mqttReconnectTimer.once(2, connectToMqtt);
|
||||
}
|
||||
digitalWrite(B_LED, HIGH);
|
||||
}
|
||||
|
||||
void onMqttSubscribe(uint16_t packetId, uint8_t qos) {
|
||||
}
|
||||
|
||||
void onMqttUnsubscribe(uint16_t packetId) {
|
||||
}
|
||||
|
||||
void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total) {
|
||||
if(strcmp(topic, "/home/midroom/lamp1_set") == 0){
|
||||
if (atoi(payload) == 1) lStat1 = true;
|
||||
else lStat1 = false;
|
||||
}
|
||||
if(strcmp(topic, "/home/midroom/lamp2_set") == 0){
|
||||
if (atoi(payload) == 1) lStat2 = true;
|
||||
else lStat2 = false;
|
||||
}
|
||||
}
|
||||
|
||||
void onMqttPublish(uint16_t packetId) {
|
||||
}
|
||||
|
||||
void setup() {
|
||||
WiFi.mode(WIFI_STA);
|
||||
@@ -118,26 +77,19 @@ void setup() {
|
||||
l2.attach(BUTT2);
|
||||
|
||||
|
||||
uint8_t stat = 0;
|
||||
EEPROM.begin(16);
|
||||
EEPROM.get(0, lStat1);
|
||||
EEPROM.get(1, lStat2);
|
||||
oldLStat1 = lStat1;
|
||||
oldLStat2 = lStat2;
|
||||
// Serial.print("Lamp1: ");
|
||||
// Serial.println(lStat1);
|
||||
digitalWrite(R_LED1, lStat1);
|
||||
digitalWrite(R_LED2, lStat2);
|
||||
//oldLStat2 = lStat2;
|
||||
EEPROM.get(0, stat);
|
||||
digitalWrite(R_LED1, stat);
|
||||
EEPROM.get(1, stat);
|
||||
digitalWrite(R_LED2, stat);
|
||||
|
||||
wifiConnectHandler = WiFi.onStationModeGotIP(onWifiConnect);
|
||||
wifiDisconnectHandler = WiFi.onStationModeDisconnected(onWifiDisconnect);
|
||||
|
||||
mqttClient.onConnect(onMqttConnect);
|
||||
mqttClient.onDisconnect(onMqttDisconnect);
|
||||
mqttClient.onSubscribe(onMqttSubscribe);
|
||||
mqttClient.onUnsubscribe(onMqttUnsubscribe);
|
||||
mqttClient.onMessage(onMqttMessage);
|
||||
mqttClient.onPublish(onMqttPublish);
|
||||
mqttClient.setServer(mqtt_server, 1883);
|
||||
|
||||
connectToWifi();
|
||||
@@ -150,244 +102,63 @@ void loop() {
|
||||
l1.update();
|
||||
l2.update();
|
||||
if(l1.fell()){
|
||||
lStat1 = !lStat1;
|
||||
switchLight(R_LED1, !digitalRead(R_LED1), true);
|
||||
}
|
||||
if(l2.fell()){
|
||||
lStat2 = !lStat2;
|
||||
switchLight(R_LED2, !digitalRead(R_LED2), true);
|
||||
}
|
||||
if(lStat1 != oldLStat1){
|
||||
digitalWrite(R_LED1, lStat1);
|
||||
oldLStat1 = lStat1;
|
||||
mqttClient.publish("/home/midroom/lamp1", 0, false, lStat1 ? "1" : "0");
|
||||
EEPROM.put(0, lStat1);
|
||||
}
|
||||
|
||||
bool switchLight(uint8_t nLamp, int state, bool pub)
|
||||
{
|
||||
digitalWrite(nLamp, state);
|
||||
EEPROM.put(nLamp == R_LED1 ? 0 : 1, state);
|
||||
EEPROM.commit();
|
||||
}
|
||||
if(lStat2 != oldLStat2){
|
||||
digitalWrite(R_LED2, lStat2);
|
||||
oldLStat2 = lStat2;
|
||||
mqttClient.publish("/home/midroom/lamp2", 0, false, lStat2 ? "1" : "0");
|
||||
EEPROM.put(1, lStat2);
|
||||
EEPROM.commit();
|
||||
}
|
||||
String topic = "/home/midroom/lamp";
|
||||
char n = nLamp == R_LED1 ? '1' : '2';
|
||||
if (pub) mqttClient.publish(String(topic + n).c_str(), 0, false, state ? "1" : "0");
|
||||
return state;
|
||||
}
|
||||
|
||||
void connectToWifi() {
|
||||
WiFi.begin(ssid, password);
|
||||
}
|
||||
|
||||
void connectToMqtt() {
|
||||
mqttClient.connect();
|
||||
}
|
||||
|
||||
void onWifiConnect(const WiFiEventStationModeGotIP& event) {
|
||||
connectToMqtt();
|
||||
}
|
||||
|
||||
/////////////////////////////////////////////////////
|
||||
void onWifiDisconnect(const WiFiEventStationModeDisconnected& event) {
|
||||
mqttReconnectTimer.detach(); // ensure we don't reconnect to MQTT while reconnecting to Wi-Fi
|
||||
wifiReconnectTimer.once(2, connectToWifi);
|
||||
}
|
||||
|
||||
void onMqttConnect(bool sessionPresent) {
|
||||
mqttClient.publish("/home/midroom/lamp1", 0, false, digitalRead(R_LED1) == 1 ? "1" : "0");
|
||||
mqttClient.publish("/home/midroom/lamp2", 0, false, digitalRead(R_LED2) == 1 ? "1" : "0");
|
||||
mqttClient.subscribe("/home/midroom/lamp1", 0);
|
||||
mqttClient.subscribe("/home/midroom/lamp2", 0);
|
||||
digitalWrite(B_LED, LOW);
|
||||
}
|
||||
|
||||
// /*********
|
||||
// Руи Сантос (Rui Santos)
|
||||
// Более подробно о проекте на: http://randomnerdtutorials.com
|
||||
// Пример в IDE Arduino: File > Examples > Arduino OTA > BasicOTA.ino
|
||||
// (Файл > Примеры > Arduino OTA > BasicOTA.ino)
|
||||
// *********/
|
||||
// #include <Arduino.h>
|
||||
// #include <ESP8266WiFi.h>
|
||||
// #include <ESP8266mDNS.h>
|
||||
// #include <WiFiUdp.h>
|
||||
// #include <ArduinoOTA.h>
|
||||
// #include <Bounce2.h>
|
||||
// #include <PubSubClient.h>
|
||||
// #include <ESP_EEPROM.h>
|
||||
void onMqttDisconnect(AsyncMqttClientDisconnectReason reason) {
|
||||
if (WiFi.isConnected()) {
|
||||
mqttReconnectTimer.once(2, connectToMqtt);
|
||||
}
|
||||
digitalWrite(B_LED, HIGH);
|
||||
}
|
||||
|
||||
// // замените значения в этих константах на те,
|
||||
// // что соответствуют вашей сети:
|
||||
// const char* ssid = "wf-home";
|
||||
// const char* password = "0ndthnrf";
|
||||
// const char* mqtt_server = "192.168.1.250";
|
||||
// //unsigned long int cRun;
|
||||
// bool lStat1;
|
||||
// bool lStat2;
|
||||
// #define B_LED 16
|
||||
// //bool led = false;
|
||||
|
||||
// Bounce l1 = Bounce();
|
||||
// Bounce l2 = Bounce();
|
||||
|
||||
// WiFiClient espClient;
|
||||
// PubSubClient client(espClient);
|
||||
|
||||
// void callback(char* topic, byte* payload, unsigned int length) {
|
||||
// Serial.print("Message arrived [");
|
||||
// Serial.print(topic);
|
||||
// Serial.print("] ");
|
||||
// for (unsigned int i = 0; i < length; i++) {
|
||||
// Serial.print((char)payload[i]);
|
||||
// }
|
||||
// Serial.println();
|
||||
// if(strcmp(topic, "/home/midroom/lamp1_set") == 0){
|
||||
// if ((char)payload[0] == '1') lStat1 = true;
|
||||
// else lStat1 = false;
|
||||
// EEPROM.put(0, lStat1);
|
||||
// EEPROM.commit();
|
||||
// Serial.print("Lamp 1: ");
|
||||
// Serial.println(lStat1);
|
||||
// if (client.connected())
|
||||
// client.publish("/home/midroom/lamp1", lStat1 ? "1" : "0");
|
||||
// //setLamp(0);
|
||||
// }
|
||||
// if(strcmp(topic, "/home/midroom/lamp2_set") == 0){
|
||||
// if ((char)payload[0] == '1') lStat2 = true;
|
||||
// else lStat2 = false;
|
||||
// //setLamp(1);
|
||||
// EEPROM.put(1, lStat2);
|
||||
// EEPROM.commit();
|
||||
// Serial.print("Lamp 2: ");
|
||||
// Serial.println(lStat2);
|
||||
// if (client.connected())
|
||||
// client.publish("/home/midroom/lamp2", lStat2 ? "1" : "0");
|
||||
// }
|
||||
|
||||
// // Switch on the LED if an 1 was received as first character
|
||||
// //if ((char)payload[0] == '1') {
|
||||
// //digitalWrite(LED_BUILTIN, LOW); // Turn the LED on (Note that LOW is the voltage level
|
||||
// // but actually the LED is on; this is because
|
||||
// // it is active low on the ESP-01)
|
||||
// //} else {
|
||||
// //digitalWrite(LED_BUILTIN, HIGH); // Turn the LED off by making the voltage HIGH
|
||||
// //}
|
||||
// }
|
||||
|
||||
// void reconnect() {
|
||||
// // Loop until we're reconnected
|
||||
// int cntConn = 0;
|
||||
// while (!client.connected() && cntConn < 5) {
|
||||
// Serial.print("Attempting MQTT connection...");
|
||||
// // Create a random client ID
|
||||
// String clientId = "SwitchMidRoom";
|
||||
// //clientId += String(random(0xffff), HEX);
|
||||
// // Attempt to connect
|
||||
// if (client.connect(clientId.c_str())) {
|
||||
// Serial.println("connected");
|
||||
// // Once connected, publish an announcement...
|
||||
// //client.publish("outTopic", "hello world");
|
||||
// // ... and resubscribe
|
||||
// client.subscribe("/home/midroom/lamp1_set");
|
||||
// client.subscribe("/home/midroom/lamp2_set");
|
||||
// digitalWrite(B_LED, LOW);
|
||||
// } else {
|
||||
// Serial.print("failed, rc=");
|
||||
// Serial.print(client.state());
|
||||
// Serial.println(" try again in 5 seconds");
|
||||
// digitalWrite(B_LED, HIGH);
|
||||
// // Wait 5 seconds before retrying
|
||||
// //delay(5000);
|
||||
// }
|
||||
// cntConn++;
|
||||
// }
|
||||
// }
|
||||
|
||||
// void setup() {
|
||||
// Serial.begin(9600);
|
||||
// Serial.println("Booting"); // "Загрузка"
|
||||
// WiFi.mode(WIFI_STA);
|
||||
// WiFi.hostname("SW-MidRoom");
|
||||
// WiFi.begin(ssid, password);
|
||||
// int cntConn = 0;
|
||||
// while ((WiFi.waitForConnectResult() != WL_CONNECTED) && cntConn < 5) {
|
||||
// Serial.println("Connection Failed! Rebooting...");
|
||||
// // "Соединиться не удалось! Перезагрузка..."
|
||||
// delay(1000);
|
||||
// cntConn++;
|
||||
// ESP.restart();
|
||||
// }
|
||||
|
||||
// // строчка для номера порта по умолчанию
|
||||
// // можно вписать «8266»:
|
||||
// // ArduinoOTA.setPort(8266);
|
||||
|
||||
// // строчка для названия хоста по умолчанию;
|
||||
// // можно вписать «esp8266-[ID чипа]»:
|
||||
// // ArduinoOTA.setHostname("myesp8266");
|
||||
|
||||
// // строчка для аутентификации
|
||||
// // (по умолчанию никакой аутентификации не будет):
|
||||
// // ArduinoOTA.setPassword((const char *)"123");
|
||||
|
||||
// ArduinoOTA.onStart([]() {
|
||||
// Serial.println("Start"); // "Начало OTA-апдейта"
|
||||
|
||||
// });
|
||||
// ArduinoOTA.onEnd([]() {
|
||||
// Serial.println("\nEnd"); // "Завершение OTA-апдейта"
|
||||
// });
|
||||
// ArduinoOTA.onProgress([](unsigned int progress, unsigned int total) {
|
||||
// Serial.printf("Progress: %u%%\r", (progress / (total / 100)));
|
||||
// });
|
||||
// ArduinoOTA.onError([](ota_error_t error) {
|
||||
// Serial.printf("Error[%u]: ", error);
|
||||
// if (error == OTA_AUTH_ERROR) Serial.println("Auth Failed");
|
||||
// // "Ошибка при аутентификации"
|
||||
// else if (error == OTA_BEGIN_ERROR) Serial.println("Begin Failed");
|
||||
// // "Ошибка при начале OTA-апдейта"
|
||||
// else if (error == OTA_CONNECT_ERROR) Serial.println("Connect Failed");
|
||||
// // "Ошибка при подключении"
|
||||
// else if (error == OTA_RECEIVE_ERROR) Serial.println("Receive Failed");
|
||||
// // "Ошибка при получении данных"
|
||||
// else if (error == OTA_END_ERROR) Serial.println("End Failed");
|
||||
// // "Ошибка при завершении OTA-апдейта"
|
||||
// });
|
||||
// ArduinoOTA.begin();
|
||||
// Serial.println("Ready"); // "Готово"
|
||||
// Serial.print("IP address: "); // "IP-адрес: "
|
||||
// Serial.println(WiFi.localIP());
|
||||
// //pinMode(0, INPUT_PULLUP);
|
||||
// //l1.attach(0);
|
||||
// pinMode(B_LED, OUTPUT);
|
||||
// pinMode(4, OUTPUT);
|
||||
// pinMode(13, OUTPUT);
|
||||
// pinMode(14, INPUT);
|
||||
// l1.attach(14);
|
||||
// pinMode(12, INPUT);
|
||||
// l2.attach(12);
|
||||
// lStat1 = false;
|
||||
// lStat2 = false;
|
||||
// client.setServer(mqtt_server, 1883);
|
||||
// client.setCallback(callback);
|
||||
// EEPROM.begin(16);
|
||||
// EEPROM.get(0, lStat1);
|
||||
// EEPROM.get(1, lStat2);
|
||||
|
||||
// //cRun = millis();
|
||||
// }
|
||||
|
||||
// void loop() {
|
||||
// ArduinoOTA.handle();
|
||||
|
||||
// digitalWrite(4, lStat1);
|
||||
// digitalWrite(13, lStat2);
|
||||
// if (!client.connected()) {
|
||||
// reconnect();
|
||||
// }
|
||||
// client.loop();
|
||||
|
||||
// l1.update();
|
||||
// l2.update();
|
||||
// if(l1.fell()){
|
||||
// lStat1 = !lStat1;
|
||||
// //digitalWrite(4, lStat1);
|
||||
// EEPROM.put(0, lStat1);
|
||||
// EEPROM.commit();
|
||||
// Serial.print("Lamp 1: ");
|
||||
// Serial.println(lStat1);
|
||||
// if (client.connected())
|
||||
// client.publish("/home/midroom/lamp1", String(lStat1).c_str());
|
||||
// }
|
||||
// if(l2.fell()){
|
||||
// lStat2 = !lStat2;
|
||||
// //digitalWrite(13, lStat2);
|
||||
// EEPROM.put(1, lStat2);
|
||||
// EEPROM.commit();
|
||||
// Serial.print("Lamp 2: ");
|
||||
// Serial.println(lStat2);
|
||||
// if (client.connected())
|
||||
// client.publish("/home/midroom/lamp2", String(lStat2).c_str());
|
||||
// }
|
||||
// // if(cRun + 500 < millis()){
|
||||
// // digitalWrite(B_LED, led);
|
||||
// // led = !led;
|
||||
// // cRun = millis();
|
||||
// // }
|
||||
// }
|
||||
void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total) {
|
||||
if(strcmp(topic, "/home/midroom/lamp1") == 0){
|
||||
if (atoi(payload) == 1) switchLight(R_LED1, 1, false);//lStat1 = true;
|
||||
else switchLight(R_LED1, 0, false);//lStat1 = false;
|
||||
}
|
||||
if(strcmp(topic, "/home/midroom/lamp2") == 0){
|
||||
if (atoi(payload) == 1) switchLight(R_LED2, 1, false);//lStat2 = true;
|
||||
else switchLight(R_LED2, 0, false);//lStat2 = false;
|
||||
}
|
||||
}
|
||||
|
||||
@@ -22,19 +22,113 @@ WiFiEventHandler wifiConnectHandler;
|
||||
WiFiEventHandler wifiDisconnectHandler;
|
||||
Ticker wifiReconnectTimer;
|
||||
|
||||
bool lStat1, oldLStat1;
|
||||
bool lStat2, oldLStat2;
|
||||
unsigned long cRun;
|
||||
// bool lStat1, oldLStat1;
|
||||
// bool lStat2, oldLStat2;
|
||||
// bool rcv;
|
||||
//unsigned long cRun;
|
||||
#define B_LED (1)
|
||||
#define R_LED1 (14)
|
||||
#define R_LED2 (13)
|
||||
#define BUTT1 (4)
|
||||
#define BUTT2 (3)
|
||||
bool led = false;
|
||||
//bool led = false;
|
||||
|
||||
Bounce l1 = Bounce();
|
||||
Bounce l2 = Bounce();
|
||||
|
||||
bool switchLight(uint8_t nLamp, int state, bool pub);
|
||||
void connectToWifi();
|
||||
void connectToMqtt();
|
||||
void onWifiConnect(const WiFiEventStationModeGotIP& event);
|
||||
void onWifiDisconnect(const WiFiEventStationModeDisconnected& event);
|
||||
void onMqttConnect(bool sessionPresent);
|
||||
void onMqttDisconnect(AsyncMqttClientDisconnectReason reason);
|
||||
void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total);
|
||||
|
||||
void setup() {
|
||||
//Serial.begin(9600);
|
||||
//Serial.println("Booting"); // "Загрузка"
|
||||
WiFi.mode(WIFI_STA);
|
||||
WiFi.hostname("SW-SmallRoom");
|
||||
ArduinoOTA.onStart([]() {
|
||||
// Serial.println("Start"); // "Начало OTA-апдейта"
|
||||
});
|
||||
ArduinoOTA.onEnd([]() {
|
||||
// Serial.println("\nEnd"); // "Завершение OTA-апдейта"
|
||||
});
|
||||
ArduinoOTA.onProgress([](unsigned int progress, unsigned int total) {
|
||||
// Serial.printf("Progress: %u%%\r", (progress / (total / 100)));
|
||||
});
|
||||
ArduinoOTA.onError([](ota_error_t error) {
|
||||
// Serial.printf("Error[%u]: ", error);
|
||||
// if (error == OTA_AUTH_ERROR) Serial.println("Auth Failed");
|
||||
// // "Ошибка при аутентификации"
|
||||
// else if (error == OTA_BEGIN_ERROR) Serial.println("Begin Failed");
|
||||
// // "Ошибка при начале OTA-апдейта"
|
||||
// else if (error == OTA_CONNECT_ERROR) Serial.println("Connect Failed");
|
||||
// // "Ошибка при подключении"
|
||||
// else if (error == OTA_RECEIVE_ERROR) Serial.println("Receive Failed");
|
||||
// // "Ошибка при получении данных"
|
||||
// else if (error == OTA_END_ERROR) Serial.println("End Failed");
|
||||
// // "Ошибка при завершении OTA-апдейта"
|
||||
});
|
||||
ArduinoOTA.begin();
|
||||
|
||||
pinMode(B_LED, FUNCTION_3);
|
||||
pinMode(B_LED, OUTPUT);
|
||||
digitalWrite(B_LED, HIGH);
|
||||
pinMode(R_LED1, OUTPUT);
|
||||
pinMode(BUTT1, INPUT_PULLUP);
|
||||
pinMode(R_LED2, OUTPUT);
|
||||
pinMode(BUTT2, FUNCTION_3);
|
||||
pinMode(BUTT2, INPUT_PULLUP);
|
||||
l1.attach(BUTT1);
|
||||
l2.attach(BUTT2);
|
||||
|
||||
EEPROM.begin(16);
|
||||
uint8_t stat = 0;
|
||||
EEPROM.get(0, stat);
|
||||
digitalWrite(R_LED1, stat);
|
||||
EEPROM.get(1, stat);
|
||||
digitalWrite(R_LED2, stat);
|
||||
|
||||
wifiConnectHandler = WiFi.onStationModeGotIP(onWifiConnect);
|
||||
wifiDisconnectHandler = WiFi.onStationModeDisconnected(onWifiDisconnect);
|
||||
|
||||
mqttClient.onConnect(onMqttConnect);
|
||||
mqttClient.onDisconnect(onMqttDisconnect);
|
||||
mqttClient.onMessage(onMqttMessage);
|
||||
mqttClient.setServer(mqtt_server, 1883);
|
||||
mqttClient.setClientId("SmallRoomSW");
|
||||
|
||||
connectToWifi();
|
||||
|
||||
// cRun = millis();
|
||||
}
|
||||
|
||||
void loop() {
|
||||
ArduinoOTA.handle();
|
||||
l1.update();
|
||||
l2.update();
|
||||
if(l1.fell()){
|
||||
switchLight(R_LED1, !digitalRead(R_LED1), true);
|
||||
}
|
||||
if(l2.fell()){
|
||||
switchLight(R_LED2, !digitalRead(R_LED2), true);
|
||||
}
|
||||
}
|
||||
|
||||
bool switchLight(uint8_t nLamp, int state, bool pub)
|
||||
{
|
||||
digitalWrite(nLamp, state);
|
||||
EEPROM.put(nLamp == R_LED1 ? 0 : 1, state);
|
||||
EEPROM.commit();
|
||||
String topic = "/home/smallroom/lamp";
|
||||
char n = nLamp == R_LED1 ? '1' : '2';
|
||||
if (pub) mqttClient.publish(String(topic + n).c_str(), 0, false, state ? "1" : "0");
|
||||
return state;
|
||||
}
|
||||
|
||||
void connectToWifi() {
|
||||
//Serial.println("Connecting to Wi-Fi...");
|
||||
WiFi.begin(ssid, password);
|
||||
@@ -59,165 +153,28 @@ void onWifiDisconnect(const WiFiEventStationModeDisconnected& event) {
|
||||
}
|
||||
|
||||
void onMqttConnect(bool sessionPresent) {
|
||||
// Serial.println("Connected to MQTT.");
|
||||
// Serial.print("Session present: ");
|
||||
// Serial.println(sessionPresent);
|
||||
//uint16_t packetIdSub =
|
||||
mqttClient.subscribe("/home/smallroom/lamp1_set", 0);
|
||||
mqttClient.subscribe("/home/smallroom/lamp2_set", 0);
|
||||
// Serial.print("Subscribing Lamp1, packetId: ");
|
||||
// Serial.println(packetIdSub);
|
||||
//packetIdSub = mqttClient.subscribe("/home/kor/lamp2_set", 1);
|
||||
//Serial.print("Subscribing Lamp2, packetId: ");
|
||||
//Serial.println(packetIdSub);
|
||||
mqttClient.publish("/home/smallroom/lamp1", 0, false, lStat1 ? "1" : "0");
|
||||
mqttClient.publish("/home/smallroom/lamp2", 0, false, lStat2 ? "1" : "0");
|
||||
//Serial.println("Publishing at Lamp 1");
|
||||
//mqttClient.publish("/home/kor/lamp2", 1, false, lStat2 ? "1" : "0");
|
||||
//Serial.println("Publishing at Lamp 2");
|
||||
mqttClient.publish("/home/smallroom/lamp1", 0, false, digitalRead(R_LED1) == 1 ? "1" : "0");
|
||||
mqttClient.publish("/home/smallroom/lamp2", 0, false, digitalRead(R_LED2) == 1 ? "1" : "0");
|
||||
mqttClient.subscribe("/home/smallroom/lamp1", 0);
|
||||
mqttClient.subscribe("/home/smallroom/lamp2", 0);
|
||||
digitalWrite(B_LED, LOW);
|
||||
}
|
||||
|
||||
void onMqttDisconnect(AsyncMqttClientDisconnectReason reason) {
|
||||
//Serial.println("Disconnected from MQTT.");
|
||||
|
||||
if (WiFi.isConnected()) {
|
||||
mqttReconnectTimer.once(2, connectToMqtt);
|
||||
}
|
||||
digitalWrite(B_LED, HIGH);
|
||||
}
|
||||
|
||||
void onMqttSubscribe(uint16_t packetId, uint8_t qos) {
|
||||
// Serial.println("Subscribe acknowledged.");
|
||||
// Serial.print(" packetId: ");
|
||||
// Serial.println(packetId);
|
||||
// Serial.print(" qos: ");
|
||||
// Serial.println(qos);
|
||||
}
|
||||
|
||||
void onMqttUnsubscribe(uint16_t packetId) {
|
||||
// Serial.println("Unsubscribe acknowledged.");
|
||||
// Serial.print(" packetId: ");
|
||||
// Serial.println(packetId);
|
||||
}
|
||||
|
||||
void onMqttMessage(char* topic, char* payload, AsyncMqttClientMessageProperties properties, size_t len, size_t index, size_t total) {
|
||||
if(strcmp(topic, "/home/smallroom/lamp1_set") == 0){
|
||||
if (atoi(payload) == 1) lStat1 = true;
|
||||
else lStat1 = false;
|
||||
if(strcmp(topic, "/home/smallroom/lamp1") == 0){
|
||||
if (atoi(payload) == 1) switchLight(R_LED1, 1, false);//lStat1 = true;
|
||||
else switchLight(R_LED1, 0, false);//lStat1 = false;
|
||||
}
|
||||
if(strcmp(topic, "/home/smallroom/lamp2_set") == 0){
|
||||
if (atoi(payload) == 1) lStat2 = true;
|
||||
else lStat2 = false;
|
||||
}
|
||||
}
|
||||
|
||||
void onMqttPublish(uint16_t packetId) {
|
||||
// Serial.println("Publish acknowledged.");
|
||||
// Serial.print(" packetId: ");
|
||||
// Serial.println(packetId);
|
||||
}
|
||||
|
||||
void setup() {
|
||||
//Serial.begin(9600);
|
||||
//Serial.println("Booting"); // "Загрузка"
|
||||
WiFi.mode(WIFI_STA);
|
||||
WiFi.hostname("SW-SmallRoom1");
|
||||
ArduinoOTA.onStart([]() {
|
||||
// Serial.println("Start"); // "Начало OTA-апдейта"
|
||||
});
|
||||
ArduinoOTA.onEnd([]() {
|
||||
// Serial.println("\nEnd"); // "Завершение OTA-апдейта"
|
||||
});
|
||||
ArduinoOTA.onProgress([](unsigned int progress, unsigned int total) {
|
||||
// Serial.printf("Progress: %u%%\r", (progress / (total / 100)));
|
||||
});
|
||||
ArduinoOTA.onError([](ota_error_t error) {
|
||||
// Serial.printf("Error[%u]: ", error);
|
||||
// if (error == OTA_AUTH_ERROR) Serial.println("Auth Failed");
|
||||
// // "Ошибка при аутентификации"
|
||||
// else if (error == OTA_BEGIN_ERROR) Serial.println("Begin Failed");
|
||||
// // "Ошибка при начале OTA-апдейта"
|
||||
// else if (error == OTA_CONNECT_ERROR) Serial.println("Connect Failed");
|
||||
// // "Ошибка при подключении"
|
||||
// else if (error == OTA_RECEIVE_ERROR) Serial.println("Receive Failed");
|
||||
// // "Ошибка при получении данных"
|
||||
// else if (error == OTA_END_ERROR) Serial.println("End Failed");
|
||||
// // "Ошибка при завершении OTA-апдейта"
|
||||
});
|
||||
ArduinoOTA.begin();
|
||||
|
||||
|
||||
|
||||
|
||||
pinMode(B_LED, FUNCTION_3);
|
||||
pinMode(B_LED, OUTPUT);
|
||||
digitalWrite(B_LED, HIGH);
|
||||
pinMode(R_LED1, OUTPUT);
|
||||
pinMode(BUTT1, INPUT_PULLUP);
|
||||
pinMode(R_LED2, OUTPUT);
|
||||
pinMode(BUTT2, FUNCTION_3);
|
||||
pinMode(BUTT2, INPUT_PULLUP);
|
||||
l1.attach(BUTT1);
|
||||
l2.attach(BUTT2);
|
||||
|
||||
|
||||
EEPROM.begin(16);
|
||||
EEPROM.get(0, lStat1);
|
||||
EEPROM.get(1, lStat2);
|
||||
oldLStat1 = lStat1;
|
||||
oldLStat2 = lStat2;
|
||||
// Serial.print("Lamp1: ");
|
||||
// Serial.println(lStat1);
|
||||
digitalWrite(R_LED1, lStat1);
|
||||
digitalWrite(R_LED2, lStat2);
|
||||
//oldLStat2 = lStat2;
|
||||
|
||||
wifiConnectHandler = WiFi.onStationModeGotIP(onWifiConnect);
|
||||
wifiDisconnectHandler = WiFi.onStationModeDisconnected(onWifiDisconnect);
|
||||
|
||||
mqttClient.onConnect(onMqttConnect);
|
||||
mqttClient.onDisconnect(onMqttDisconnect);
|
||||
mqttClient.onSubscribe(onMqttSubscribe);
|
||||
mqttClient.onUnsubscribe(onMqttUnsubscribe);
|
||||
mqttClient.onMessage(onMqttMessage);
|
||||
mqttClient.onPublish(onMqttPublish);
|
||||
mqttClient.setServer(mqtt_server, 1883);
|
||||
|
||||
connectToWifi();
|
||||
|
||||
cRun = millis();
|
||||
}
|
||||
|
||||
void loop() {
|
||||
ArduinoOTA.handle();
|
||||
l1.update();
|
||||
l2.update();
|
||||
if(l1.fell()){
|
||||
lStat1 = !lStat1;
|
||||
}
|
||||
if(l2.fell()){
|
||||
lStat2 = !lStat2;
|
||||
}
|
||||
if(lStat1 != oldLStat1){
|
||||
digitalWrite(R_LED1, lStat1);
|
||||
oldLStat1 = lStat1;
|
||||
mqttClient.publish("/home/smallroom/lamp1", 0, false, lStat1 ? "1" : "0");
|
||||
// Serial.println("Publishing at Lamp 1");
|
||||
EEPROM.put(0, lStat1);
|
||||
EEPROM.commit();
|
||||
// Serial.print("Lamp 1: ");
|
||||
// Serial.println(lStat1);
|
||||
}
|
||||
if(lStat2 != oldLStat2){
|
||||
digitalWrite(R_LED2, lStat2);
|
||||
oldLStat2 = lStat2;
|
||||
mqttClient.publish("/home/smallroom/lamp2", 0, false, lStat2 ? "1" : "0");
|
||||
// Serial.println("Publishing at Lamp 1");
|
||||
EEPROM.put(1, lStat2);
|
||||
EEPROM.commit();
|
||||
// Serial.print("Lamp 1: ");
|
||||
// Serial.println(lStat1);
|
||||
if(strcmp(topic, "/home/smallroom/lamp2") == 0){
|
||||
if (atoi(payload) == 1) switchLight(R_LED2, 1, false);//lStat2 = true;
|
||||
else switchLight(R_LED2, 0, false);//lStat2 = false;
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user