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trunk fmt
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@ -544,7 +544,6 @@ void setup()
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SCANNER_TO_SENSORS_MAP(ScanI2C::DeviceType::VEML7700, meshtastic_TelemetrySensorType_VEML7700)
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SCANNER_TO_SENSORS_MAP(ScanI2C::DeviceType::SHT4X, meshtastic_TelemetrySensorType_SHT4X)
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i2cScanner.reset();
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#ifdef HAS_SDCARD
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@ -246,54 +246,53 @@ bool EnvironmentTelemetryModule::sendTelemetry(NodeNum dest, bool phoneOnly)
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if (sht31Sensor.hasSensor()) {
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valid = valid && sht31Sensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (lps22hbSensor.hasSensor()) {
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valid = valid && lps22hbSensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (shtc3Sensor.hasSensor()) {
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valid = valid && shtc3Sensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (bmp085Sensor.hasSensor()) {
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valid = valid && bmp085Sensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (bmp280Sensor.hasSensor()) {
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valid = valid && bmp280Sensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (bme280Sensor.hasSensor()) {
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valid = valid && bme280Sensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (bme680Sensor.hasSensor()) {
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valid = valid && bme680Sensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (mcp9808Sensor.hasSensor()) {
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valid = valid && mcp9808Sensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (ina219Sensor.hasSensor()) {
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valid = valid && ina219Sensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (ina260Sensor.hasSensor()) {
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valid = valid && ina260Sensor.getMetrics(&m);
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hasSensor = true;
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}
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}
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if (veml7700Sensor.hasSensor()) {
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valid = valid && veml7700Sensor.getMetrics(&m);
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hasSensor = true;
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}
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if (rcwl9620Sensor.hasSensor()){
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}
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if (rcwl9620Sensor.hasSensor()) {
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valid = valid && rcwl9620Sensor.getMetrics(&m);
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hasSensor = true;
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}
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valid = valid && hasSensor;
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if (valid) {
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LOG_INFO("(Sending): barometric_pressure=%f, current=%f, gas_resistance=%f, relative_humidity=%f, temperature=%f, "
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"lux=%f\n",
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@ -30,21 +30,21 @@ void VEML7700Sensor::setup() {}
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* @param corrected if true, apply non-linear correction
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* @return lux value
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*/
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float VEML7700Sensor::computeLux(uint16_t rawALS, bool corrected) {
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float lux = getResolution() * rawALS;
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if (corrected)
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lux = (((6.0135e-13 * lux - 9.3924e-9) * lux + 8.1488e-5) * lux + 1.0023) *
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lux;
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return lux;
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float VEML7700Sensor::computeLux(uint16_t rawALS, bool corrected)
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{
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float lux = getResolution() * rawALS;
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if (corrected)
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lux = (((6.0135e-13 * lux - 9.3924e-9) * lux + 8.1488e-5) * lux + 1.0023) * lux;
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return lux;
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}
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/*!
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* @brief Determines resolution for current gain and integration time
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* settings.
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*/
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float VEML7700Sensor::getResolution(void) {
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return MAX_RES * (IT_MAX / veml7700.getIntegrationTimeValue()) *
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(GAIN_MAX / veml7700.getGainValue());
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float VEML7700Sensor::getResolution(void)
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{
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return MAX_RES * (IT_MAX / veml7700.getIntegrationTimeValue()) * (GAIN_MAX / veml7700.getGainValue());
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}
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bool VEML7700Sensor::getMetrics(meshtastic_Telemetry *measurement)
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@ -53,10 +53,8 @@ bool VEML7700Sensor::getMetrics(meshtastic_Telemetry *measurement)
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measurement->variant.environment_metrics.lux = veml7700.readLux(VEML_LUX_AUTO);
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white = veml7700.readWhite(true);
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measurement->variant.environment_metrics.white_lux = computeLux(white, white > 100);
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LOG_INFO("white lux %f, als lux %f\n",
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measurement->variant.environment_metrics.white_lux,
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measurement->variant.environment_metrics.lux);
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LOG_INFO("white lux %f, als lux %f\n", measurement->variant.environment_metrics.white_lux,
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measurement->variant.environment_metrics.lux);
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return true;
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}
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