#include "../mesh/generated/telemetry.pb.h" #include "configuration.h" #include "TelemetrySensor.h" #include "BME680Sensor.h" #include 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; } status = bme680.begin(nodeTelemetrySensorsMap[sensorType]); return initI2CSensor(); } void BME680Sensor::setup() { // Set up oversampling and filter initialization bme680.setTemperatureOversampling(BME680_OS_8X); bme680.setHumidityOversampling(BME680_OS_2X); bme680.setPressureOversampling(BME680_OS_4X); bme680.setIIRFilterSize(BME680_FILTER_SIZE_3); bme680.setGasHeater(320, 150); // 320*C for 150 ms } bool BME680Sensor::getMetrics(Telemetry *measurement) { measurement->variant.environment_metrics.temperature = bme680.readTemperature(); measurement->variant.environment_metrics.relative_humidity = bme680.readHumidity(); measurement->variant.environment_metrics.barometric_pressure = bme680.readPressure() / 100.0F; measurement->variant.environment_metrics.gas_resistance = bme680.readGas() / 1000.0; return true; }