359 lines
7.1 KiB
Arduino
359 lines
7.1 KiB
Arduino
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#include "Sodaq_RN2483.h"
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#include "Arduino.h"
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#define debugSerial SerialUSB
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#define loraSerial Serial1
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/* The number of the device: 1,2,3,4 */
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#define deviceNo 2
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#define beePin ENABLE_PIN_IO
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#define LOUDNESS_SENSOR 0
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#define LIGHT_SENSOR 2
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#define WATER_SENSOR 6
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#define BUZZER 8
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#define MAGNETIC_SWITCH 12
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#define TEMPERATURE 13
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int loudness;
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void BLUE() {
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digitalWrite(LED_RED, HIGH);
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digitalWrite(LED_GREEN, HIGH);
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digitalWrite(LED_BLUE, LOW);
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}
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void RED() {
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digitalWrite(LED_RED, LOW);
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digitalWrite(LED_GREEN, HIGH);
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digitalWrite(LED_BLUE, HIGH);
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}
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void YELLOW() {
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digitalWrite(LED_RED, LOW);
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digitalWrite(LED_GREEN, LOW);
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digitalWrite(LED_BLUE, HIGH);
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}
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void WHITE() {
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digitalWrite(LED_RED, LOW);
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digitalWrite(LED_GREEN, LOW);
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digitalWrite(LED_BLUE, LOW);
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}
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void GREEN() {
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digitalWrite(LED_RED, HIGH);
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digitalWrite(LED_GREEN, LOW);
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digitalWrite(LED_BLUE, HIGH);
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}
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void CLEAR() {
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digitalWrite(LED_RED, HIGH);
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digitalWrite(LED_GREEN, HIGH);
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digitalWrite(LED_BLUE, HIGH);
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}
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void blink(int length) {
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switch(deviceNo) {
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case 1:
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BLUE();
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break;
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case 2:
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RED();
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break;
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case 3:
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GREEN();
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break;
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case 4:
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WHITE();
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break;
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}
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delay(length);
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CLEAR();
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}
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void beep(int howlong) {
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buzzOn();
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delay(howlong);
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buzzOff();
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}
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void buzzOn() {
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digitalWrite(BUZZER, HIGH);
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}
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void buzzOff() {
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digitalWrite(BUZZER, LOW);
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}
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void setupLED() {
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pinMode(LED_RED, OUTPUT);
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pinMode(LED_GREEN, OUTPUT);
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pinMode(LED_BLUE, OUTPUT);
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}
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uint8_t DevEUI[8] = { 0x9c, 0xd9, 0x0b, 0xb5, 0x2b, 0x6a, 0x1d, deviceNo };
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// TTN
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uint8_t AppEUI[8] = { 0x70, 0xB3, 0xD5, 0x7E, 0xD0, 0x00, 0x0E, 0x9e };
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// F1B165CF06B156B0BB6970FC209602EA
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uint8_t AppKey[16] = { 0xF1, 0xB1, 0x65, 0xCF,
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0x06, 0xB1, 0x56, 0xB0, 0xBB,
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0x69, 0x70, 0xFC, 0x20, 0x96,
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0x02, 0xEA };
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uint8_t counter;
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void setupLoRaOTAA(){
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if (LoRaBee.initOTA(loraSerial, DevEUI, AppEUI, AppKey, true))
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{
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debugSerial.println("Communication to LoRaBEE successful.");
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}
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else
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{
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debugSerial.println("OTAA Setup failed!");
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}
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}
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int setupLoudness()
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{
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loudness = 0;
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// pinMode(LOUDNESS_SENSOR, INPUT);
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}
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int readLoudness()
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{
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return analogRead(LOUDNESS_SENSOR);
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}
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int readLight()
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{
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int sensorValue = analogRead(LIGHT_SENSOR);
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return map(sensorValue, 11, 27333, 0, 413);
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}
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void setupWater() {
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pinMode(WATER_SENSOR, INPUT);
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}
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boolean hasWater()
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{
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if(digitalRead(WATER_SENSOR) == LOW) {
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return true;
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} else {
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return false;
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}
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}
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void setupTemp() {
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pinMode(TEMPERATURE, INPUT);
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}
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float readTemp()
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{
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float temperature;
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int B=4250; //B value of the thermistor
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float resistance;
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int a;
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a=analogRead(TEMPERATURE);
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resistance=(float)(1023-a)*10000/a; //get the resistance of the sensor;
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temperature=1/(log(resistance/10000)/B+1/298.15)-273.15;//convert to temperature via datasheet ;
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return temperature;
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}
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void setupBuzzer()
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{
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pinMode(BUZZER, OUTPUT);
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}
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void setupMagnet()
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{
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pinMode(MAGNETIC_SWITCH, INPUT);
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}
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boolean isMagnetic()
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{
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if(digitalRead(MAGNETIC_SWITCH) == HIGH)
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return true;
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else
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return false;
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}
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void setup() {
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//Power up the LoRaBEE - on loraone/sodaq one
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pinMode(ENABLE_PIN_IO, OUTPUT); // ONE
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digitalWrite(beePin, HIGH); // ONE
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delay(3000);
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/* Enable the pins 2/3, 6/7 and 8/9 */
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pinMode(11, OUTPUT);
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digitalWrite(11, HIGH);
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while ((!SerialUSB) && (millis() < 10000)){
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// Wait 10 seconds for the Serial Monitor
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}
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//Set baud rate
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debugSerial.begin(57600);
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loraSerial.begin(LoRaBee.getDefaultBaudRate());
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// Debug output from LoRaBee
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// LoRaBee.setDiag(debugSerial); // optional
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setupLED();
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blink(60);
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/* used for blinking */
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counter=0;
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setupLoudness();
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//connect to the LoRa Network
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setupLoRa();
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/* setupWater();
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setupBuzzer();
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setupMagnet(); */
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}
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void setupLoRa(){
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setupLoRaOTAA();
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}
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void sendPacket(String packet){
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switch (LoRaBee.sendReqAck(1, (uint8_t*)packet.c_str(), packet.length(), 8))
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{
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case NoError:
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debugSerial.println("Successful transmission.");
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break;
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case NoResponse:
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debugSerial.println("There was no response from the device.");
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setupLoRa();
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break;
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case Timeout:
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debugSerial.println("Connection timed-out. Check your serial connection to the device! Sleeping for 20sec.");
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delay(20000);
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break;
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case PayloadSizeError:
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debugSerial.println("The size of the payload is greater than allowed. Transmission failed!");
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break;
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case InternalError:
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debugSerial.println("Oh No! This shouldn't happen. Something is really wrong! Try restarting the device!\r\nThe network connection will reset.");
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setupLoRa();
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break;
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case Busy:
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debugSerial.println("The device is busy. Sleeping for 10 extra seconds.");
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delay(10000);
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break;
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case NetworkFatalError:
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debugSerial.println("There is a non-recoverable error with the network connection. You should re-connect.\r\nThe network connection will reset.");
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setupLoRa();
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break;
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case NotConnected:
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debugSerial.println("The device is not connected to the network. Please connect to the network before attempting to send data.\r\nThe network connection will reset.");
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setupLoRa();
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break;
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case NoAcknowledgment:
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debugSerial.println("There was no acknowledgment sent back!");
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// When you this message you are probaly out of range of the network.
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break;
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default:
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break;
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}
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}
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void loop() {
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/* Announce begin of code */
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blink(20); delay(50);
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blink(20); delay(50);
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blink(20); delay(50);
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loudness = readLoudness();
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String data_loudness = String("loudness=" + String(loudness, DEC));
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debugSerial.println(data_loudness);
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/* String data_light = String("light=" + String(readLight(), 3));
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debugSerial.println(data_light); */
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/* String data_temp = String("temp=" + String(readTemp(), 3));
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debugSerial.println(data_temp);*/
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/*
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String data_water;
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if(hasWater()) {
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data_water = String("water=1");
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buzzOn();
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} else {
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data_water = String("water=0");
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buzzOff();
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}
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debugSerial.println(data_water);
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String data_magnet;
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if(isMagnetic()) {
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data_magnet = String("magnet=1");
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} else {
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data_magnet = String("magnet=0");
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}
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debugSerial.println(data_magnet);
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*/
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// sendPacket(data_loudness);
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blink(20); delay(2980);
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/*sendPacket(data_temp);
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blink(20); delay(2980);
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sendPacket(data_light);
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blink(20); delay(2980);
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sendPacket(data_water);
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blink(20); delay(2980);
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sendPacket(data_magnet);*/
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/* Blink long after sending packet
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if(counter >= 10) {
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// Beep(20);
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blink(20);
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delay(10);
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blink(20);
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sendPacket(data_temp);
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blink(500);
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sendPacket(data_loudness);
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blink(500);
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sendPacket(data_light);
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blink(500);
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sendPacket(data_water);
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blink(500);
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sendPacket(data_magnet);
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counter = 0;
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} else {
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blink(30);
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counter++;
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}
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*/
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// delay(1000);
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}
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