Change mqtt settings

This commit is contained in:
2020-08-15 19:33:52 +03:00
parent ca66527f1b
commit 679b4dd3a0
5 changed files with 439 additions and 700 deletions

View File

@@ -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;
}
}