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firmware/src/modules/Telemetry/Sensor/BME680Sensor.cpp

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#include "../mesh/generated/telemetry.pb.h"
#include "configuration.h"
#include "TelemetrySensor.h"
#include "BME680Sensor.h"
#include <Adafruit_BME680.h>
BME680Sensor::BME680Sensor() :
TelemetrySensor(TelemetrySensorType_BME680, "BME680")
{
}
int32_t BME680Sensor::runOnce() {
DEBUG_MSG("Init sensor: %s\n", sensorName);
if (!hasSensor()) {
return DEFAULT_SENSOR_MINIMUM_WAIT_TIME_BETWEEN_READS;
}
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status = bme680.begin(nodeTelemetrySensorsMap[sensorType], false);
// Set up oversampling and filter initialization
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bme680.setTemperatureOversampling(BME68X_OS_1X);
bme680.setHumidityOversampling(BME68X_OS_1X);
bme680.setPressureOversampling(BME68X_OS_1X);
bme680.setIIRFilterSize(BME68X_FILTER_OFF);
bme680.setODR(BME68X_ODR_1000_MS);
// BME68X_FORCED_MODE is done in Lib Init already
bme680.setGasHeater(320, 150); // 320*C for 150 ms
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return initI2CSensor();
}
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void BME680Sensor::setup() { }
bool BME680Sensor::getMetrics(Telemetry *measurement) {
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bme680.performReading();
measurement->variant.environment_metrics.temperature = bme680.temperature;
measurement->variant.environment_metrics.relative_humidity = bme680.humidity;
measurement->variant.environment_metrics.barometric_pressure = bme680.pressure / 100.0F;
measurement->variant.environment_metrics.gas_resistance = bme680.gas_resistance / 1000.0;
return true;
}