Refactor ifdef's to be less verbose and better to read
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f4139b27c8
commit
2f9bae5622
2 changed files with 36 additions and 42 deletions
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@ -1,5 +1,3 @@
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// Standard ESP8266 libs
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// Standard ESP8266 libs
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#include <ESP8266mDNS.h>
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#include <ESP8266mDNS.h>
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#include <ESP8266HTTPUpdateServer.h>
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#include <ESP8266HTTPUpdateServer.h>
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@ -28,7 +26,7 @@
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#include "config.h"
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#include "config.h"
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// IMPORTANT: If you compile the sourcecode and it can't find this file, this is
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// IMPORTANT: If you compile the sourcecode and it can't find this file, this is
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// indended :) You need to create a config_user.h with your own settings. Use the
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// intentional :) You need to create a config_user.h with your own settings. Use the
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// config_user.h.example as a starting point.
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// config_user.h.example as a starting point.
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#include "config_user.h"
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#include "config_user.h"
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@ -70,6 +68,13 @@ String localIP = "127.0.0.1";
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#endif
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#endif
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//*************************************************************************//
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//*************************************************************************//
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void debug(String x) {
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#ifdef DEBUG
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Serial.println(x);
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#endif
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}
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void setup() {
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void setup() {
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// Erase WiFi Credentials (maybe this will work ...)
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// Erase WiFi Credentials (maybe this will work ...)
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@ -101,17 +106,13 @@ void setup() {
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wifiManager.setTimeout(WIFI_CONFIG_PORTAL_TIMEOUT_S); // the time in seconds to wait for the user to configure the device
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wifiManager.setTimeout(WIFI_CONFIG_PORTAL_TIMEOUT_S); // the time in seconds to wait for the user to configure the device
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if (!wifiManager.autoConnect(wifiName.c_str(), "DEADBEEF")) {
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if (!wifiManager.autoConnect(wifiName.c_str(), "DEADBEEF")) {
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#ifdef DEBUG
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debug("WiFi connection failed, going into deep sleep ...");
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Serial.println("WiFi connection failed, going into deep sleep ...");
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#endif
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// If autoconnect to WLAN failed and no client connected, go to deep sleep
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// If autoconnect to WLAN failed and no client connected, go to deep sleep
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ESP.deepSleep(POWERSAVING_SLEEP_S * 1000000, WAKE_RF_DEFAULT);
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ESP.deepSleep(POWERSAVING_SLEEP_S * 1000000, WAKE_RF_DEFAULT);
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delay(100);
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delay(100);
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}
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}
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#ifdef DEBUG
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debug("Connected!");
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Serial.println("Connected!");
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#endif
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// Init variables to influxdb config - doesn't talk to database
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// Init variables to influxdb config - doesn't talk to database
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influxdb.opendb(INFLUXDB_DB, INFLUXDB_USER, INFLUXDB_PASS);
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influxdb.opendb(INFLUXDB_DB, INFLUXDB_USER, INFLUXDB_PASS);
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@ -122,17 +123,16 @@ void setup() {
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apds_connected = true;
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apds_connected = true;
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apds.enableColor(true);
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apds.enableColor(true);
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}
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}
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#ifdef DEBUG2
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Serial.println("Connected!");
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debug("APDS Connected!");
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#endif
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//Temperature + pressure
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//Temperature + pressure
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bool status = bme.begin(BME_ADDRESS);
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bool status = bme.begin(BME_ADDRESS);
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if (!status) {
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if (!status) {
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#ifdef DEBUG
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debug("Could not find a valid BME280 sensor, check wiring!");
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Serial.println("Could not find a valid BME280 sensor, check wiring!");
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#endif
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//#warning TODO: FIXME while (1);
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//#warning TODO: FIXME while (1);
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}
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}
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debug("BME Connected!");
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#ifdef WEBUPDATER_FEATURE
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#ifdef WEBUPDATER_FEATURE
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#ifndef BATTERY_POWERED
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#ifndef BATTERY_POWERED
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@ -145,6 +145,7 @@ void setup() {
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delay(100);
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delay(100);
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#ifdef BATTERY_POWERED
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#ifdef BATTERY_POWERED
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debug("battery powered");
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_loop();
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_loop();
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digitalWrite(STATUS_LED_PIN, LOW);
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digitalWrite(STATUS_LED_PIN, LOW);
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@ -154,9 +155,8 @@ void setup() {
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WiFi.mode(WIFI_OFF);
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WiFi.mode(WIFI_OFF);
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WiFi.forceSleepBegin();
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WiFi.forceSleepBegin();
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#ifdef DEBUG
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debug("deep sleep");
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Serial.println("deep sleep");
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#endif
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// the ESP.deepSleep requires microseconds as input, after the sleep the system will run into the setup routine
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// the ESP.deepSleep requires microseconds as input, after the sleep the system will run into the setup routine
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ESP.deepSleep(POWERSAVING_SLEEP_S * 1000000, WAKE_RF_DEFAULT);
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ESP.deepSleep(POWERSAVING_SLEEP_S * 1000000, WAKE_RF_DEFAULT);
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delay(100);
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delay(100);
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@ -169,10 +169,8 @@ void setup() {
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void criticalBatCheck() {
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void criticalBatCheck() {
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float volt = getBatteryVoltage();
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float volt = getBatteryVoltage();
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if (volt <= BAT_EMERGENCY_DEEPSLEEP_VOLTAGE) {
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if (volt <= BAT_EMERGENCY_DEEPSLEEP_VOLTAGE) {
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#ifdef DEBUG
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debug("Bat Voltage: " + String(volt) + " V");
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Serial.println("Bat Voltage: " + String(volt) + " V");
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debug("Low battery, going into deep sleep.");
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Serial.println("Low battery, going into deep sleep.");
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#endif
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// Casting to an unsigned int, so it fits into the integer range
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// Casting to an unsigned int, so it fits into the integer range
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ESP.deepSleep(1U * EMERGENCY_SLEEP_S * 1000000); // battery low, shutting down
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ESP.deepSleep(1U * EMERGENCY_SLEEP_S * 1000000); // battery low, shutting down
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delay(100);
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delay(100);
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@ -230,9 +228,12 @@ void loop() {
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void _loop() {
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void _loop() {
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#ifndef BATTERY_POWERED
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#ifndef BATTERY_POWERED
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if (UPDATE_SENSOR_INTERVAL_S * 1000 / DELAY_LOOP_MS <= update_sensor_cnt) {
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if (UPDATE_SENSOR_INTERVAL_S * 1000 / DELAY_LOOP_MS > update_sensor_cnt) {
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update_sensor_cnt = 0;
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return;
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}
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#endif
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#endif
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update_sensor_cnt = 0;
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currentSensorData[SENSOR_TEMPERATURE] = fetchTemperature();
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currentSensorData[SENSOR_TEMPERATURE] = fetchTemperature();
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currentSensorData[SENSOR_HUMIDITY] = fetchHumidity();
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currentSensorData[SENSOR_HUMIDITY] = fetchHumidity();
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if (apds_connected) {
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if (apds_connected) {
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@ -258,18 +259,17 @@ void _loop() {
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currentSensorData[SENSOR_ESAVEMODE] = ENERGY_SAVE_MODE_ENABLED;
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currentSensorData[SENSOR_ESAVEMODE] = ENERGY_SAVE_MODE_ENABLED;
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}
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}
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#endif
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#endif
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#ifdef DEBUG
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Serial.println("");
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debug("");
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//Serial.println("Current readings:");
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debug("Current readings:");
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Serial.println("Temperature: " + String(currentSensorData[SENSOR_TEMPERATURE]) + " °C");
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debug("Temperature: " + String(currentSensorData[SENSOR_TEMPERATURE]) + " °C");
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Serial.println("Humidity: " + String(currentSensorData[SENSOR_HUMIDITY]) + " %");
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debug("Humidity: " + String(currentSensorData[SENSOR_HUMIDITY]) + " %");
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Serial.println("Light: " + String(currentSensorData[SENSOR_LIGHT]) + " Lux");
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debug("Light: " + String(currentSensorData[SENSOR_LIGHT]) + " Lux");
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Serial.println("Windspeed: " + String(currentSensorData[SENSOR_WINDSPEED]) + " km/h");
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debug("Windspeed: " + String(currentSensorData[SENSOR_WINDSPEED]) + " km/h");
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Serial.println("Pressure: " + String(currentSensorData[SENSOR_PRESSURE]) + " hPa");
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debug("Pressure: " + String(currentSensorData[SENSOR_PRESSURE]) + " hPa");
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Serial.println("Bat Voltage: " + String(currentSensorData[SENSOR_BAT_VOLTAGE]) + " V");
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debug("Bat Voltage: " + String(currentSensorData[SENSOR_BAT_VOLTAGE]) + " V");
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Serial.println("Bat charge state: " + String(currentSensorData[SENSOR_BATCHARGESTATE]));
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debug("Bat charge state: " + String(currentSensorData[SENSOR_BATCHARGESTATE]));
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Serial.println("Energy saving: " + String(currentSensorData[SENSOR_ESAVEMODE]));
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debug("Energy saving: " + String(currentSensorData[SENSOR_ESAVEMODE]));
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#endif
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delay(100);
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delay(100);
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@ -278,10 +278,6 @@ void _loop() {
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#ifdef WEBUPDATER_FEATURE
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#ifdef WEBUPDATER_FEATURE
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setSensorData(DEVICE_NAME, localIP, currentSensorData);
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setSensorData(DEVICE_NAME, localIP, currentSensorData);
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#endif
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#endif
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#ifndef BATTERY_POWERED
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}
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#endif
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}
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}
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//*************************************************************************//
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//*************************************************************************//
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@ -4,12 +4,10 @@ int anemometerRotations = 0;
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unsigned long currentTime = 0;
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unsigned long currentTime = 0;
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float fetchTemperature() {
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float fetchTemperature() {
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//return 10;
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return bme.readTemperature();
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return bme.readTemperature();
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}
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}
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float fetchPressure() {
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float fetchPressure() {
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//return 10;
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return bme.readPressure() / 100.0F;
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return bme.readPressure() / 100.0F;
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}
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}
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