Searched refs:acceleration (Results 1 - 9 of 9) sorted by relevance

/hardware/akm/AK8975_FS/libsensors/
H A DAdxlSensor.cpp70 mPendingEvent.acceleration.x = ADXL_UNIT_CONVERSION(absinfo.value);
73 mPendingEvent.acceleration.y = ADXL_UNIT_CONVERSION(absinfo.value);
76 mPendingEvent.acceleration.z = ADXL_UNIT_CONVERSION(absinfo.value);
202 mPendingEvent.acceleration.x = ADXL_UNIT_CONVERSION(value);
204 mPendingEvent.acceleration.y = ADXL_UNIT_CONVERSION(value);
206 mPendingEvent.acceleration.z = ADXL_UNIT_CONVERSION(value);
H A DKionixSensor.cpp66 mPendingEvent.acceleration.x = KIONIX_UNIT_CONVERSION(absinfo.value);
69 mPendingEvent.acceleration.y = KIONIX_UNIT_CONVERSION(absinfo.value);
72 mPendingEvent.acceleration.z = KIONIX_UNIT_CONVERSION(absinfo.value);
180 mPendingEvent.acceleration.x = KIONIX_UNIT_CONVERSION(value);
182 mPendingEvent.acceleration.y = KIONIX_UNIT_CONVERSION(value);
184 mPendingEvent.acceleration.z = KIONIX_UNIT_CONVERSION(value);
H A DAkmSensor.cpp48 mPendingEvents[Accelerometer].acceleration.status = SENSOR_STATUS_ACCURACY_HIGH;
245 acc[0] = (int16_t)(data->acceleration.x / GRAVITY_EARTH * AKSC_LSG);
246 acc[1] = (int16_t)(data->acceleration.y / GRAVITY_EARTH * AKSC_LSG);
247 acc[2] = (int16_t)(data->acceleration.z / GRAVITY_EARTH * AKSC_LSG);
278 mPendingEvents[Accelerometer].acceleration.x = value * CONVERT_A;
282 mPendingEvents[Accelerometer].acceleration.y = value * CONVERT_A;
286 mPendingEvents[Accelerometer].acceleration.z = value * CONVERT_A;
/hardware/invensense/60xx/libsensors/
H A DMPLSensor.cpp611 res = inv_get_float_array(INV_ACCELS, s->acceleration.v);
612 //res = inv_get_accel_float(s->acceleration.v);
613 s->acceleration.v[0] = s->acceleration.v[0] * 9.81;
614 s->acceleration.v[1] = s->acceleration.v[1] * 9.81;
615 s->acceleration.v[2] = s->acceleration.v[2] * 9.81;
616 //ALOGV_IF(EXTRA_VERBOSE, "accel data: %f %f %f", s->acceleration.v[0], s->acceleration
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/hardware/libhardware/include/hardware/
H A Dsensors.h241 * All values are in SI units (m/s^2) and measure the acceleration of the
349 * Indicates the linear acceleration of the device in device coordinates,
530 * For example, a sharp turn or strong acceleration while driving a car should not trigger a tilt
531 * event, even though the angle of the average acceleration might vary by more than 35 degrees.
716 /* acceleration values are in meter per second per second (m/s^2) */
717 sensors_vec_t acceleration; member in union:sensors_event_t::__anon1315::__anon1316
/hardware/invensense/6515/libsensors_iio/
H A DMPLSensor.cpp399 mPendingEvents[RotationVector].acceleration.status
405 mPendingEvents[GameRotationVector].acceleration.status
411 mPendingEvents[LinearAccel].acceleration.status
417 mPendingEvents[Gravity].acceleration.status = SENSOR_STATUS_ACCURACY_HIGH;
432 mPendingEvents[Accelerometer].acceleration.status
466 mPendingEvents[GeomagneticRotationVector].acceleration.status
472 mSmEvents.acceleration.status = SENSOR_STATUS_UNRELIABLE;
477 mSdEvents.acceleration.status = SENSOR_STATUS_UNRELIABLE;
482 mScEvents.acceleration.status = SENSOR_STATUS_UNRELIABLE;
2581 s->acceleration
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/hardware/invensense/65xx/libsensors_iio/
H A DMPLSensor.cpp509 mPendingEvents[RotationVector].acceleration.status
515 mPendingEvents[GameRotationVector].acceleration.status
521 mPendingEvents[LinearAccel].acceleration.status
527 mPendingEvents[Gravity].acceleration.status = SENSOR_STATUS_ACCURACY_HIGH;
542 mPendingEvents[Accelerometer].acceleration.status
574 mPendingEvents[GeomagneticRotationVector].acceleration.status
2526 s->acceleration.v, &s->acceleration.status, &s->timestamp);
2528 s->acceleration.v[0], s->acceleration
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/hardware/libhardware/tests/hardware/
H A Dstruct-offset.cpp76 CHECK_MEMBER_AT(sensors_event_t, acceleration, 24, 24);
/hardware/invensense/60xx/libsensors_iio/
H A DMPLSensor.cpp1227 s->acceleration.v, &status, &s->timestamp);
1229 s->acceleration.v[0], s->acceleration.v[1], s->acceleration.v[2],

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