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195
deepSleep.ino
195
deepSleep.ino
@ -1,4 +1,3 @@
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#include <vector>
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#include <ESP8266WiFi.h>
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#include <ESP8266WiFi.h>
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extern "C" {
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extern "C" {
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#include "user_interface.h" // Required for wifi_station_connect() to work
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#include "user_interface.h" // Required for wifi_station_connect() to work
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@ -6,28 +5,7 @@ extern "C" {
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#include "Adafruit_MQTT.h"
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#include "Adafruit_MQTT.h"
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#include "Adafruit_MQTT_Client.h"
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#include "Adafruit_MQTT_Client.h"
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#include <DHT.h>
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#define USE_BME680
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#ifdef USE_BME680
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#include <Adafruit_Sensor.h>
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#include "Adafruit_BME680.h"
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#define BME_SCK 13
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#define BME_MISO 12
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#define BME_MOSI 11
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#define BME_CS 10
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#define SEALEVELPRESSURE_HPA (1013.25)
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Adafruit_BME680 bme; // I2C
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#define BME_TEMPERATURE_FEED_FORMAT "/feeds/mathieu/portable/bme/temperature"
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#define BME_HUMIDITY_FEED_FORMAT "/feeds/mathieu/portable/bme/humidity"
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#define BME_VOLTAGE_FEED_FORMAT "/feeds/mathieu/portable/bme/voltage"
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#define BME_PRESSURE_FEED_FORMAT "/feeds/mathieu/portable/bme/pressure"
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#define BME_GAZ_FEED_FORMAT "/feeds/mathieu/portable/bme/gaz"
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#endif
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// if bigger than 4295, modem will wake up anyway? c.f. forceSleepBegin.
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// if bigger than 4295, modem will wake up anyway? c.f. forceSleepBegin.
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// https://www.espressif.com/sites/default/files/documentation/2c-esp8266_non_os_sdk_api_reference_en.pdf
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// https://www.espressif.com/sites/default/files/documentation/2c-esp8266_non_os_sdk_api_reference_en.pdf
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@ -35,16 +13,11 @@ Adafruit_BME680 bme; // I2C
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// should stick on 64bits when mul by 1000000 -> shoudl be smaller than ~18000.10^9 ~580000year
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// should stick on 64bits when mul by 1000000 -> shoudl be smaller than ~18000.10^9 ~580000year
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#define SLEEP_TIME_SECOND 10*60
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#define SLEEP_TIME_SECOND 10*60
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#ifdef USE_DHT
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#include <DHT.h>
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#define DHTTYPE DHT11
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#define DHTTYPE DHT11
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#define DHTPIN D3
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#define DHTPIN D3
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#define DHT_POWER_PIN 13
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#define DHT_POWER_PIN 13
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DHT dht(DHTPIN, DHTTYPE);
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DHT dht(DHTPIN, DHTTYPE);
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#define TEMPERATURE_FEED_FORMAT "/feeds/mathieu/portable/temperature"
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#define HUMIDITY_FEED_FORMAT "/feeds/mathieu/portable/humidity"
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#define VOLTAGE_FEED_FORMAT "/feeds/mathieu/portable/voltage"
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#endif
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#define FPM_SLEEP_MAX_TIME 0xFFFFFFF // Could be replace by ESP.deepSleepMax() -> https://thingpulse.com/max-deep-sleep-for-esp8266/
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#define FPM_SLEEP_MAX_TIME 0xFFFFFFF // Could be replace by ESP.deepSleepMax() -> https://thingpulse.com/max-deep-sleep-for-esp8266/
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@ -52,6 +25,9 @@ DHT dht(DHTPIN, DHTTYPE);
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#define MQTT_USERNAME "XXXXXX"
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#define MQTT_USERNAME "XXXXXX"
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#define MQTT_PASSWD "XXXXX"
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#define MQTT_PASSWD "XXXXX"
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#define MQTT_PORT 1883
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#define MQTT_PORT 1883
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#define TEMPERATURE_FEED_FORMAT "/feeds/mathieu/portable/temperature"
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#define HUMIDITY_FEED_FORMAT "/feeds/mathieu/portable/humidity"
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#define VOLTAGE_FEED_FORMAT "/feeds/mathieu/portable/voltage"
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WiFiClient client;
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WiFiClient client;
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Adafruit_MQTT_Client *mqtt;
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Adafruit_MQTT_Client *mqtt;
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@ -59,38 +35,21 @@ Adafruit_MQTT_Publish *mqtt_temp;
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Adafruit_MQTT_Publish *mqtt_pressure;
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Adafruit_MQTT_Publish *mqtt_pressure;
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Adafruit_MQTT_Publish *mqtt_voltage;
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Adafruit_MQTT_Publish *mqtt_voltage;
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//const char *ssid = "AndroidAP-Mathieu";
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const char *ssid = "XXXXX";
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//const char *password = "bonjourwifi";
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const char *password = "XXXXX";
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const char *ssid = "freebox_sarah";
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const char *password = "barca2grenada";
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uint8_t bssid[6] = {0x14, 0x0C, 0x76, 0xB1, 0x37, 0x32};
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uint8_t bssid[6] = {0x14, 0x0C, 0x76, 0xB1, 0x37, 0x32};
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int32_t channel = 11; //0 for Auto
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int32_t channel = 11; //0 for Auto
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ADC_MODE(ADC_VCC);
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ADC_MODE(ADC_VCC);
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void setup()
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void setup()
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{
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{
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Serial.begin(115200);
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Serial.print("\nRunning\n");
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#ifdef USE_DHT
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// Power on DHT11
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// Power on DHT11
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pinMode(DHT_POWER_PIN, OUTPUT);
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pinMode(DHT_POWER_PIN, OUTPUT);
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digitalWrite(DHT_POWER_PIN, HIGH);
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//digitalWrite(DHT_POWER_PIN, HIGH);
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#endif
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// put your setup code here, to run once:
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Serial.begin(115200);
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Serial.print("\nRunning\n");
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#ifdef USE_BME680
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if (!bme.begin()) {
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Serial.println("Could not find a valid BME680 sensor, check wiring!");
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while (1);
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}
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// Set up oversampling and filter initialization
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bme.setTemperatureOversampling(BME680_OS_8X);
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bme.setHumidityOversampling(BME680_OS_2X);
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bme.setPressureOversampling(BME680_OS_4X);
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bme.setIIRFilterSize(BME680_FILTER_SIZE_3);
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bme.setGasHeater(0, 0); // 320*C for 150 ms or 0, 0 to disable it. Results are not reliable with deep sleep so disable it
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#endif
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}
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}
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// ESP.deepSleep( X, WAKE_RF_DISABLED ); disable the radio interface and it can't be
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// ESP.deepSleep( X, WAKE_RF_DISABLED ); disable the radio interface and it can't be
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@ -119,12 +78,8 @@ int WiFiOff() // vs WiFi.forceSleepBegin();
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return wifi_fpm_do_sleep(FPM_SLEEP_MAX_TIME);
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return wifi_fpm_do_sleep(FPM_SLEEP_MAX_TIME);
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}
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}
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struct mqttInfo {
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int mqttConnect(float h, float t)
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float value;
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{
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char *topic;
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};
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int mqttConnect(std::vector<struct mqttInfo> tab) {
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mqtt = new Adafruit_MQTT_Client(&client, MQTT_SERVER, MQTT_PORT,
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mqtt = new Adafruit_MQTT_Client(&client, MQTT_SERVER, MQTT_PORT,
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MQTT_USERNAME, MQTT_USERNAME, MQTT_PASSWD);
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MQTT_USERNAME, MQTT_USERNAME, MQTT_PASSWD);
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uint8_t retries = 3;
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uint8_t retries = 3;
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@ -139,91 +94,20 @@ int mqttConnect(std::vector<struct mqttInfo> tab) {
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}
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}
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}
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}
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Serial.println("Sending mqtt info");
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Serial.println("Sending mqtt info");
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for (auto info : tab) {
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mqtt_temp = new Adafruit_MQTT_Publish(mqtt, TEMPERATURE_FEED_FORMAT, 0);
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Serial.print("publishing ");
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mqtt_pressure = new Adafruit_MQTT_Publish(mqtt, HUMIDITY_FEED_FORMAT, 0);
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Serial.print(info.value);
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mqtt_voltage = new Adafruit_MQTT_Publish(mqtt, VOLTAGE_FEED_FORMAT, 0);
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Serial.print(" for ");
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if (!mqtt_temp->publish(t)) {
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Serial.println(info.topic);
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Serial.println("failed to send temp");
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Adafruit_MQTT_Publish client(mqtt, info.topic, 0);
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if (!client.publish(info.value))
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Serial.println("Fail :(");
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}
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}
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//Do we need this ? Wifi will be cut anyway
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mqtt_pressure->publish(h);
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mqtt_voltage->publish(ESP.getVcc());
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mqtt->disconnect();
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mqtt->disconnect();
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return 0;
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return 0;
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}
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}
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int doBMEMeasure() {
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int doMeasure()
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#ifdef USE_BME680
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if (! bme.performReading()) {
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Serial.println("Failed to perform reading :(");
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return -1;
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}
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Serial.print("Temperature = ");
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Serial.print(bme.temperature);
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Serial.println(" *C");
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Serial.print("Pressure = ");
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Serial.print(bme.pressure / 100.0);
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Serial.println(" hPa");
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Serial.print("Humidity = ");
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Serial.print(bme.humidity);
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Serial.println(" %");
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Serial.print("Gas = ");
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Serial.print(bme.gas_resistance / 1000.0);
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Serial.println(" KOhms");
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std::vector<struct mqttInfo> bmeInfo;
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bmeInfo.push_back({bme.humidity, BME_HUMIDITY_FEED_FORMAT});
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bmeInfo.push_back({bme.temperature, BME_TEMPERATURE_FEED_FORMAT});
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bmeInfo.push_back({bme.pressure / 100.0, BME_PRESSURE_FEED_FORMAT});
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//bmeInfo.push_back({bme.gas_resistance / 1000.0, BME_GAZ_FEED_FORMAT});
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bmeInfo.push_back({(float)ESP.getVcc(), BME_VOLTAGE_FEED_FORMAT});
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wifiConnect();
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mqttConnect(bmeInfo);
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if (WiFiOff()) {
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//if (WiFi.forceSleepBegin(0)) {
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Serial.println("Fail to set sleep mode");
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}
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#else
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return 0;
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#endif
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}
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int wifiConnect() {
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WiFiOn();
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//WiFi.forceSleepWake();
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IPAddress ip(192, 168, 0, 251);
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IPAddress gateway(192, 168, 0, 254);
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IPAddress subnet(255, 255, 255, 0);
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WiFi.config(ip, gateway, subnet);
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WiFi.begin(ssid, password, channel, bssid);
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int retry = 10;
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while (WiFi.status() != WL_CONNECTED) {
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delay(100);
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Serial.print(".");
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if (retry < 0)
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continue;
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retry --;
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}
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Serial.println("");
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Serial.println("WiFi connected");
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Serial.println("IP address: ");
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Serial.println(WiFi.localIP());
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return 0;
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}
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int doDHTMeasure()
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{
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{
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#ifdef USE_DHT
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// Wait for DHT to be ready
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delay(2000);
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float h = dht.readHumidity();
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float h = dht.readHumidity();
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// Read temperature as Celsius (the default)
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// Read temperature as Celsius (the default)
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float t = dht.readTemperature();
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float t = dht.readTemperature();
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@ -247,27 +131,40 @@ int doDHTMeasure()
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Serial.print(hic);
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Serial.print(hic);
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Serial.print(" *C ");
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Serial.print(" *C ");
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std::vector<struct mqttInfo> dhtInfo;
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WiFiOn();
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dhtInfo.push_back({h, HUMIDITY_FEED_FORMAT});
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//WiFi.forceSleepWake();
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dhtInfo.push_back({t, TEMPERATURE_FEED_FORMAT});
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IPAddress ip(192, 168, 0, 251);
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dhtInfo.push_back({(float)ESP.getVcc(), VOLTAGE_FEED_FORMAT});
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IPAddress gateway(192, 168, 0, 254);
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IPAddress subnet(255, 255, 255, 0);
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WiFi.config(ip, gateway, subnet);
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WiFi.begin(ssid, password, channel, bssid);
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wifiConnect();
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int retry = 10;
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mqttConnect(dhtInfo);
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while (WiFi.status() != WL_CONNECTED) {
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delay(100);
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Serial.print(".");
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if (retry < 0)
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continue;
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retry --;
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}
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Serial.println("");
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Serial.println("WiFi connected");
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Serial.println("IP address: ");
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Serial.println(WiFi.localIP());
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mqttConnect(h, t);
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if (WiFiOff()) {
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if (WiFiOff()) {
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//if (WiFi.forceSleepBegin(0)) {
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//if (WiFi.forceSleepBegin(0)) {
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Serial.println("Fail to set sleep mode");
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Serial.println("Fail to set sleep mode");
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}
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}
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return 0;
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return 0;
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#else
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return 0;
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#endif
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}
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}
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void loop()
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void loop()
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{
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{
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doDHTMeasure();
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// Wait for DHT to be ready
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doBMEMeasure();
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delay(2000);
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doMeasure();
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ESP.deepSleep(SLEEP_TIME_SECOND * 1000000, WAKE_RF_DEFAULT);
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ESP.deepSleep(SLEEP_TIME_SECOND * 1000000, WAKE_RF_DEFAULT);
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}
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}
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