mirror of
https://github.com/airgradienthq/arduino.git
synced 2025-07-03 03:16:30 +02:00
PRO v9 (C3 Version), added LED config
This commit is contained in:
@ -1,16 +1,25 @@
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#include "PMS.h"
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#include <HardwareSerial.h>
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#include <Wire.h>
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#include "s8_uart.h"
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#include <HTTPClient.h>
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#include <WiFiManager.h>
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#include <Adafruit_NeoPixel.h>
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#include <EEPROM.h>
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#include "SHTSensor.h"
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#include <SensirionI2CSgp41.h>
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#include <NOxGasIndexAlgorithm.h>
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#include <VOCGasIndexAlgorithm.h>
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#include <U8g2lib.h>
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@ -32,7 +41,7 @@ PMS pms1(Serial0);
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PMS::DATA data1;
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S8_UART* sensor_S8;
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S8_UART * sensor_S8;
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S8_sensor sensor;
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// time in seconds needed for NOx conditioning
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@ -56,12 +65,14 @@ boolean inUSAQI = false;
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// Display Position
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boolean displayTop = true;
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// use RGB LED Bar
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boolean useRGBledBar = true;
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// set to true if you want to connect to wifi. You have 60 seconds to connect. Then it will go into an offline mode.
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boolean connectWIFI=true;
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boolean connectWIFI = true;
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int loopCount = 0;
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unsigned long currentMillis = 0;
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const int oledInterval = 5000;
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@ -91,34 +102,26 @@ unsigned long previousTempHum = 0;
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float temp = 0;
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int hum = 0;
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int buttonConfig=0;
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int buttonConfig = 0;
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int lastState = LOW;
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int currentState;
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unsigned long pressedTime = 0;
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unsigned long pressedTime = 0;
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unsigned long releasedTime = 0;
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void setup() {
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if (DEBUG) {
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Serial.begin(115200);
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// see https://github.com/espressif/arduino-esp32/issues/6983
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Serial.setTxTimeoutMs(0); // <<<====== solves the delay issue
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}
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Wire.begin(I2C_SDA, I2C_SCL);
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pixels.begin();
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pixels.clear();
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for(int i=0; i<11; i++) {
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pixels.setPixelColor(i, pixels.Color(255, 255, 255));
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pixels.show();
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delay(100);
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if (DEBUG) {
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Serial.begin(115200);
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// see https://github.com/espressif/arduino-esp32/issues/6983
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Serial.setTxTimeoutMs(0); // <<<====== solves the delay issue
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}
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Serial1.begin(9600, SERIAL_8N1, 0, 1);
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Serial0.begin(9600);
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Serial.println("Hello");
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u8g2.begin();
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Wire.begin(I2C_SDA, I2C_SCL);
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pixels.begin();
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pixels.clear();
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Serial1.begin(9600, SERIAL_8N1, 0, 1);
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Serial0.begin(9600);
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u8g2.begin();
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updateOLED2("Warming Up", "Serial Number:", String(getNormalizedMac()));
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sgp41.begin(Wire);
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@ -126,38 +129,27 @@ void setup() {
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sht.init(Wire);
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sht.setAccuracy(SHTSensor::SHT_ACCURACY_MEDIUM);
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sensor_S8 = new S8_UART(Serial1);
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//init Watchdog
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pinMode(2, OUTPUT);
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digitalWrite(2, LOW);
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// Check if S8 is available
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sensor_S8->get_firmware_version(sensor.firm_version);
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int len = strlen(sensor.firm_version);
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if (len == 0) {
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debugln("SenseAir S8 CO2 sensor not found!");
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}
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// Show basic S8 sensor info
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// debugln(">>> SenseAir S8 NDIR CO2 sensor <<<");
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// sensor.sensor_id = sensor_S8->get_sensor_ID();
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sensor_S8 = new S8_UART(Serial1);
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EEPROM.begin(512);
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delay(500);
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// push button
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pinMode(9, INPUT_PULLUP);
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// push button
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pinMode(9, INPUT_PULLUP);
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buttonConfig = String(EEPROM.read(addr)).toInt();
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if (buttonConfig>3) buttonConfig=0;
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buttonConfig = String(EEPROM.read(addr)).toInt();
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if (buttonConfig > 3) buttonConfig = 0;
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delay(400);
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setConfig();
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Serial.println("buttonConfig: "+String(buttonConfig));
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updateOLED2("Press Button", "Now for", "Config Menu");
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delay(2000);
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// pinMode(D7, INPUT_PULLUP);
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Serial.println("buttonConfig: " + String(buttonConfig));
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updateOLED2("Press Button", "Now for", "Config Menu");
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delay(2000);
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currentState = digitalRead(9);
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if (currentState == LOW)
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{
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if (currentState == LOW) {
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updateOLED2("Entering", "Config Menu", "");
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delay(3000);
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lastState = HIGH;
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@ -165,14 +157,13 @@ buttonConfig = String(EEPROM.read(addr)).toInt();
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inConf();
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}
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countdown(3);
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countdown(3);
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if (connectWIFI)
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{
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connectToWifi();
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if (connectWIFI) {
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connectToWifi();
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}
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sendPing();
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updateOLED2("Warming Up", "Serial Number:", String(getNormalizedMac()));
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sendPing();
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updateOLED2("Warming Up", "Serial Number:", String(getNormalizedMac()));
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}
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void loop() {
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@ -185,135 +176,129 @@ void loop() {
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sendToServer();
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}
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void updateTVOC()
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{
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uint16_t error;
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char errorMessage[256];
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uint16_t defaultRh = 0x8000;
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uint16_t defaultT = 0x6666;
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uint16_t srawVoc = 0;
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uint16_t srawNox = 0;
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uint16_t defaultCompenstaionRh = 0x8000; // in ticks as defined by SGP41
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uint16_t defaultCompenstaionT = 0x6666; // in ticks as defined by SGP41
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uint16_t compensationRh = 0; // in ticks as defined by SGP41
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uint16_t compensationT = 0; // in ticks as defined by SGP41
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void updateTVOC() {
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uint16_t error;
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char errorMessage[256];
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uint16_t defaultRh = 0x8000;
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uint16_t defaultT = 0x6666;
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uint16_t srawVoc = 0;
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uint16_t srawNox = 0;
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uint16_t defaultCompenstaionRh = 0x8000; // in ticks as defined by SGP41
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uint16_t defaultCompenstaionT = 0x6666; // in ticks as defined by SGP41
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uint16_t compensationRh = 0; // in ticks as defined by SGP41
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uint16_t compensationT = 0; // in ticks as defined by SGP41
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delay(1000);
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delay(1000);
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compensationT = static_cast<uint16_t>((temp + 45) * 65535 / 175);
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compensationRh = static_cast<uint16_t>(hum * 65535 / 100);
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compensationT = static_cast < uint16_t > ((temp + 45) * 65535 / 175);
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compensationRh = static_cast < uint16_t > (hum * 65535 / 100);
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if (conditioning_s > 0) {
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error = sgp41.executeConditioning(compensationRh, compensationT, srawVoc);
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conditioning_s--;
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} else {
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error = sgp41.measureRawSignals(compensationRh, compensationT, srawVoc,
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srawNox);
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}
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if (conditioning_s > 0) {
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error = sgp41.executeConditioning(compensationRh, compensationT, srawVoc);
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conditioning_s--;
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} else {
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error = sgp41.measureRawSignals(compensationRh, compensationT, srawVoc,
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srawNox);
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}
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if (currentMillis - previousTVOC >= tvocInterval) {
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previousTVOC += tvocInterval;
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TVOC = voc_algorithm.process(srawVoc);
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NOX = nox_algorithm.process(srawNox);
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Serial.println(String(TVOC));
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}
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if (currentMillis - previousTVOC >= tvocInterval) {
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previousTVOC += tvocInterval;
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TVOC = voc_algorithm.process(srawVoc);
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NOX = nox_algorithm.process(srawNox);
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Serial.println(String(TVOC));
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}
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}
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void updateCo2()
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{
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if (currentMillis - previousCo2 >= co2Interval) {
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previousCo2 += co2Interval;
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Co2 = sensor_S8->get_co2();
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Serial.println(String(Co2));
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}
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void updateCo2() {
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if (currentMillis - previousCo2 >= co2Interval) {
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previousCo2 += co2Interval;
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Co2 = sensor_S8 -> get_co2();
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Serial.println(String(Co2));
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setRGBledCO2color(Co2);
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}
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}
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void updatePm()
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{
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if (currentMillis - previousPm >= pmInterval) {
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previousPm += pmInterval;
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if (pms1.readUntil(data1, 2000)) {
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void updatePm() {
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if (currentMillis - previousPm >= pmInterval) {
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previousPm += pmInterval;
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if (pms1.readUntil(data1, 2000)) {
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pm01 = data1.PM_AE_UG_1_0;
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pm25 = data1.PM_AE_UG_2_5;
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pm10 = data1.PM_AE_UG_10_0;
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pm03PCount = data1.PM_RAW_0_3;
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}
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}
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}
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}
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void updateTempHum()
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{
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if (currentMillis - previousTempHum >= tempHumInterval) {
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previousTempHum += tempHumInterval;
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void updateTempHum() {
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if (currentMillis - previousTempHum >= tempHumInterval) {
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previousTempHum += tempHumInterval;
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if (sht.readSample()) {
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if (sht.readSample()) {
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temp = sht.getTemperature();
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hum = sht.getHumidity();
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} else {
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Serial.print("Error in readSample()\n");
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}
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}
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} else {
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Serial.print("Error in readSample()\n");
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}
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}
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}
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void updateOLED() {
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if (currentMillis - previousOled >= oledInterval) {
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previousOled += oledInterval;
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if (currentMillis - previousOled >= oledInterval) {
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previousOled += oledInterval;
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String ln3;
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String ln1;
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if (inUSAQI) {
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ln1 = "AQI:" + String(PM_TO_AQI_US(pm25)) + " CO2:" + String(Co2);
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ln1 = "AQI:" + String(PM_TO_AQI_US(pm25)) + " CO2:" + String(Co2);
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} else {
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ln1 = "PM:" + String(pm25) + " CO2:" + String(Co2);
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ln1 = "PM:" + String(pm25) + " CO2:" + String(Co2);
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}
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String ln2 = "TVOC:" + String(TVOC) + " NOX:" + String(NOX);
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String ln2 = "TVOC:" + String(TVOC) + " NOX:" + String(NOX);
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if (inF) {
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ln3 = "F:" + String((temp* 9 / 5) + 32) + " H:" + String(hum)+"%";
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} else {
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ln3 = "C:" + String(temp) + " H:" + String(hum)+"%";
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}
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updateOLED2(ln1, ln2, ln3);
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}
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if (inF) {
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ln3 = "F:" + String((temp * 9 / 5) + 32) + " H:" + String(hum) + "%";
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} else {
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ln3 = "C:" + String(temp) + " H:" + String(hum) + "%";
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}
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updateOLED2(ln1, ln2, ln3);
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}
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}
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void inConf(){
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void inConf() {
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setConfig();
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currentState = digitalRead(9);
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if (currentState){
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if (currentState) {
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Serial.println("currentState: high");
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} else {
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Serial.println("currentState: low");
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}
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if(lastState == HIGH && currentState == LOW) {
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if (lastState == HIGH && currentState == LOW) {
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pressedTime = millis();
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}
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else if(lastState == LOW && currentState == HIGH) {
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} else if (lastState == LOW && currentState == HIGH) {
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releasedTime = millis();
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long pressDuration = releasedTime - pressedTime;
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if( pressDuration < 1000 ) {
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buttonConfig=buttonConfig+1;
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if (buttonConfig>3) buttonConfig=0;
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if (pressDuration < 1000) {
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buttonConfig = buttonConfig + 1;
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if (buttonConfig > 3) buttonConfig = 0;
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}
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}
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if (lastState == LOW && currentState == LOW){
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long passedDuration = millis() - pressedTime;
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if( passedDuration > 4000 ) {
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updateOLED2("Saved", "Release", "Button Now");
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delay(1000);
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updateOLED2("Rebooting", "in", "5 seconds");
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delay(5000);
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EEPROM.write(addr, char(buttonConfig));
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EEPROM.commit();
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delay(1000);
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ESP.restart();
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if (lastState == LOW && currentState == LOW) {
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long passedDuration = millis() - pressedTime;
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if (passedDuration > 4000) {
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updateOLED2("Saved", "Release", "Button Now");
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delay(1000);
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updateOLED2("Rebooting", "in", "5 seconds");
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delay(5000);
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EEPROM.write(addr, char(buttonConfig));
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EEPROM.commit();
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delay(1000);
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ESP.restart();
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}
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}
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@ -322,44 +307,43 @@ void inConf(){
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inConf();
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}
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void setConfig() {
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if (buttonConfig == 0) {
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updateOLED2("Temp. in C", "PM in ug/m3", "Long Press Saves");
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u8g2.setDisplayRotation(U8G2_R0);
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inF = false;
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inUSAQI = false;
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u8g2.setDisplayRotation(U8G2_R0);
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inF = false;
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inUSAQI = false;
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}
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if (buttonConfig == 1) {
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if (buttonConfig == 1) {
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updateOLED2("Temp. in C", "PM in US AQI", "Long Press Saves");
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u8g2.setDisplayRotation(U8G2_R0);
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inF = false;
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inUSAQI = true;
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u8g2.setDisplayRotation(U8G2_R0);
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inF = false;
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inUSAQI = true;
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} else if (buttonConfig == 2) {
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updateOLED2("Temp. in F", "PM in ug/m3", "Long Press Saves");
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u8g2.setDisplayRotation(U8G2_R0);
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inF = true;
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inUSAQI = false;
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} else if (buttonConfig == 3) {
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||||
inF = true;
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||||
inUSAQI = false;
|
||||
} else if (buttonConfig == 3) {
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updateOLED2("Temp. in F", "PM in US AQI", "Long Press Saves");
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u8g2.setDisplayRotation(U8G2_R0);
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inF = true;
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inUSAQI = true;
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u8g2.setDisplayRotation(U8G2_R0);
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inF = true;
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inUSAQI = true;
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}
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}
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||||
|
||||
void switchLED(boolean ledON) {
|
||||
if (ledON) {
|
||||
digitalWrite(10, HIGH);
|
||||
if (ledON) {
|
||||
digitalWrite(10, HIGH);
|
||||
} else {
|
||||
digitalWrite(10, LOW);
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||||
}
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}
|
||||
|
||||
void sendPing(){
|
||||
String payload = "{\"wifi\":" + String(WiFi.RSSI())
|
||||
+ ", \"boot\":" + loopCount
|
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+ "}";
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||||
void sendPing() {
|
||||
String payload = "{\"wifi\":" + String(WiFi.RSSI()) +
|
||||
", \"boot\":" + loopCount +
|
||||
"}";
|
||||
}
|
||||
|
||||
void updateOLED2(String ln1, String ln2, String ln3) {
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@ -367,49 +351,48 @@ void updateOLED2(String ln1, String ln2, String ln3) {
|
||||
u8g2.firstPage();
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||||
u8g2.firstPage();
|
||||
do {
|
||||
u8g2.setFont(u8g2_font_t0_16_tf);
|
||||
u8g2.drawStr(1, 10, String(ln1).c_str());
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u8g2.drawStr(1, 30, String(ln2).c_str());
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||||
u8g2.drawStr(1, 50, String(ln3).c_str());
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||||
} while ( u8g2.nextPage() );
|
||||
u8g2.setFont(u8g2_font_t0_16_tf);
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||||
u8g2.drawStr(1, 10, String(ln1).c_str());
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||||
u8g2.drawStr(1, 30, String(ln2).c_str());
|
||||
u8g2.drawStr(1, 50, String(ln3).c_str());
|
||||
} while (u8g2.nextPage());
|
||||
}
|
||||
|
||||
void sendToServer() {
|
||||
if (currentMillis - previoussendToServer >= sendToServerInterval) {
|
||||
previoussendToServer += sendToServerInterval;
|
||||
String payload = "{\"wifi\":" + String(WiFi.RSSI())
|
||||
+ (Co2 < 0 ? "" : ", \"rco2\":" + String(Co2))
|
||||
+ (pm01 < 0 ? "" : ", \"pm01\":" + String(pm01))
|
||||
+ (pm25 < 0 ? "" : ", \"pm02\":" + String(pm25))
|
||||
+ (pm10 < 0 ? "" : ", \"pm10\":" + String(pm10))
|
||||
+ (pm03PCount < 0 ? "" : ", \"pm003_count\":" + String(pm03PCount))
|
||||
+ (TVOC < 0 ? "" : ", \"tvoc_index\":" + String(TVOC))
|
||||
+ (NOX < 0 ? "" : ", \"nox_index\":" + String(NOX))
|
||||
+ ", \"atmp\":" + String(temp)
|
||||
+ (hum < 0 ? "" : ", \"rhum\":" + String(hum))
|
||||
+ ", \"boot\":" + loopCount
|
||||
+ "}";
|
||||
if (currentMillis - previoussendToServer >= sendToServerInterval) {
|
||||
previoussendToServer += sendToServerInterval;
|
||||
String payload = "{\"wifi\":" + String(WiFi.RSSI()) +
|
||||
(Co2 < 0 ? "" : ", \"rco2\":" + String(Co2)) +
|
||||
(pm01 < 0 ? "" : ", \"pm01\":" + String(pm01)) +
|
||||
(pm25 < 0 ? "" : ", \"pm02\":" + String(pm25)) +
|
||||
(pm10 < 0 ? "" : ", \"pm10\":" + String(pm10)) +
|
||||
(pm03PCount < 0 ? "" : ", \"pm003_count\":" + String(pm03PCount)) +
|
||||
(TVOC < 0 ? "" : ", \"tvoc_index\":" + String(TVOC)) +
|
||||
(NOX < 0 ? "" : ", \"nox_index\":" + String(NOX)) +
|
||||
", \"atmp\":" + String(temp) +
|
||||
(hum < 0 ? "" : ", \"rhum\":" + String(hum)) +
|
||||
", \"boot\":" + loopCount +
|
||||
"}";
|
||||
|
||||
if(WiFi.status()== WL_CONNECTED){
|
||||
Serial.println(payload);
|
||||
String POSTURL = APIROOT + "sensors/airgradient:" + String(getNormalizedMac()) + "/measures";
|
||||
Serial.println(POSTURL);
|
||||
WiFiClient client;
|
||||
HTTPClient http;
|
||||
http.begin(client, POSTURL);
|
||||
http.addHeader("content-type", "application/json");
|
||||
int httpCode = http.POST(payload);
|
||||
String response = http.getString();
|
||||
Serial.println(httpCode);
|
||||
Serial.println(response);
|
||||
http.end();
|
||||
resetWatchdog();
|
||||
loopCount++;
|
||||
}
|
||||
else {
|
||||
Serial.println("WiFi Disconnected");
|
||||
}
|
||||
}
|
||||
if (WiFi.status() == WL_CONNECTED) {
|
||||
Serial.println(payload);
|
||||
String POSTURL = APIROOT + "sensors/airgradient:" + String(getNormalizedMac()) + "/measures";
|
||||
Serial.println(POSTURL);
|
||||
WiFiClient client;
|
||||
HTTPClient http;
|
||||
http.begin(client, POSTURL);
|
||||
http.addHeader("content-type", "application/json");
|
||||
int httpCode = http.POST(payload);
|
||||
String response = http.getString();
|
||||
Serial.println(httpCode);
|
||||
Serial.println(response);
|
||||
http.end();
|
||||
resetWatchdog();
|
||||
loopCount++;
|
||||
} else {
|
||||
Serial.println("WiFi Disconnected");
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
void countdown(int from) {
|
||||
@ -423,46 +406,45 @@ void countdown(int from) {
|
||||
}
|
||||
|
||||
void resetWatchdog() {
|
||||
digitalWrite(2, HIGH);
|
||||
delay(20);
|
||||
digitalWrite(2, LOW);
|
||||
Serial.println("Watchdog reset");
|
||||
digitalWrite(2, HIGH);
|
||||
delay(20);
|
||||
digitalWrite(2, LOW);
|
||||
}
|
||||
|
||||
// Wifi Manager
|
||||
void connectToWifi() {
|
||||
WiFiManager wifiManager;
|
||||
switchLED(true);
|
||||
//WiFi.disconnect(); //to delete previous saved hotspot
|
||||
String HOTSPOT = "AG-" + String(getNormalizedMac());
|
||||
wifiManager.setTimeout(180);
|
||||
|
||||
|
||||
if (!wifiManager.autoConnect((const char * ) HOTSPOT.c_str())) {
|
||||
void connectToWifi() {
|
||||
WiFiManager wifiManager;
|
||||
switchLED(true);
|
||||
//WiFi.disconnect(); //to delete previous saved hotspot
|
||||
String HOTSPOT = "AG-" + String(getNormalizedMac());
|
||||
wifiManager.setTimeout(180);
|
||||
if (!wifiManager.autoConnect((const char * ) HOTSPOT.c_str())) {
|
||||
switchLED(false);
|
||||
Serial.println("failed to connect and hit timeout");
|
||||
delay(6000);
|
||||
}
|
||||
Serial.println("failed to connect and hit timeout");
|
||||
delay(6000);
|
||||
}
|
||||
|
||||
}
|
||||
|
||||
void debug(String msg) {
|
||||
if (DEBUG)
|
||||
Serial.print(msg);
|
||||
Serial.print(msg);
|
||||
}
|
||||
|
||||
void debug(int msg) {
|
||||
if (DEBUG)
|
||||
Serial.print(msg);
|
||||
Serial.print(msg);
|
||||
}
|
||||
|
||||
void debugln(String msg) {
|
||||
if (DEBUG)
|
||||
Serial.println(msg);
|
||||
Serial.println(msg);
|
||||
}
|
||||
|
||||
void debugln(int msg) {
|
||||
if (DEBUG)
|
||||
Serial.println(msg);
|
||||
Serial.println(msg);
|
||||
}
|
||||
|
||||
String getNormalizedMac() {
|
||||
@ -472,6 +454,68 @@ String getNormalizedMac() {
|
||||
return mac;
|
||||
}
|
||||
|
||||
void setRGBledCO2color(int co2Value) {
|
||||
if (co2Value < 800) setRGBledColor('g');
|
||||
if (co2Value >= 800 && co2Value < 1000) setRGBledColor('y');
|
||||
if (co2Value >= 1000 && co2Value < 1500) setRGBledColor('o');
|
||||
if (co2Value >= 1500 && co2Value < 2000) setRGBledColor('r');
|
||||
if (co2Value >= 2000 && co2Value < 3000) setRGBledColor('p');
|
||||
if (co2Value >= 3000 && co2Value < 10000) setRGBledColor('b');
|
||||
}
|
||||
|
||||
void setRGBledColor(char color) {
|
||||
if (useRGBledBar) {
|
||||
//pixels.clear();
|
||||
switch (color) {
|
||||
case 'g':
|
||||
for (int i = 0; i < 11; i++) {
|
||||
pixels.setPixelColor(i, pixels.Color(0, 255, 0));
|
||||
delay(100);
|
||||
pixels.show();
|
||||
}
|
||||
break;
|
||||
case 'y':
|
||||
for (int i = 0; i < 11; i++) {
|
||||
pixels.setPixelColor(i, pixels.Color(255, 255, 0));
|
||||
delay(100);
|
||||
pixels.show();
|
||||
}
|
||||
break;
|
||||
case 'o':
|
||||
for (int i = 0; i < 11; i++) {
|
||||
pixels.setPixelColor(i, pixels.Color(255, 128, 0));
|
||||
delay(100);
|
||||
pixels.show();
|
||||
}
|
||||
break;
|
||||
case 'r':
|
||||
for (int i = 0; i < 11; i++) {
|
||||
pixels.setPixelColor(i, pixels.Color(255, 0, 0));
|
||||
delay(100);
|
||||
pixels.show();
|
||||
}
|
||||
break;
|
||||
case 'p':
|
||||
for (int i = 0; i < 11; i++) {
|
||||
pixels.setPixelColor(i, pixels.Color(153, 0, 153));
|
||||
delay(100);
|
||||
pixels.show();
|
||||
}
|
||||
break;
|
||||
case 'b':
|
||||
for (int i = 0; i < 11; i++) {
|
||||
pixels.setPixelColor(i, pixels.Color(102, 0, 0));
|
||||
delay(100);
|
||||
pixels.show();
|
||||
}
|
||||
break;
|
||||
default:
|
||||
// if nothing else matches, do the default
|
||||
// default is optional
|
||||
break;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Calculate PM2.5 US AQI
|
||||
int PM_TO_AQI_US(int pm02) {
|
||||
|
Reference in New Issue
Block a user