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Mathias Agopiane1c61d32012-03-23 14:19:36 -07001/*
2 * Copyright (C) 2010 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -070017/**
Leon Scroggins III4883c522020-01-30 15:10:11 -050018 * Structures and functions to receive and process sensor events in
19 * native code.
20 *
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -070021 * @addtogroup Sensor
22 * @{
23 */
24
25/**
26 * @file sensor.h
27 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -070028
29#ifndef ANDROID_SENSOR_H
30#define ANDROID_SENSOR_H
31
32/******************************************************************
33 *
34 * IMPORTANT NOTICE:
35 *
36 * This file is part of Android's set of stable system headers
37 * exposed by the Android NDK (Native Development Kit).
38 *
39 * Third-party source AND binary code relies on the definitions
40 * here to be FROZEN ON ALL UPCOMING PLATFORM RELEASES.
41 *
42 * - DO NOT MODIFY ENUMS (EXCEPT IF YOU ADD NEW 32-BIT VALUES)
43 * - DO NOT MODIFY CONSTANTS OR FUNCTIONAL MACROS
44 * - DO NOT CHANGE THE SIGNATURE OF FUNCTIONS IN ANY WAY
45 * - DO NOT CHANGE THE LAYOUT OR SIZE OF STRUCTURES
46 */
47
Ady Abraham2a6c1862022-07-28 22:54:19 +000048// This file is included by modules that have host support but android/looper.h is not supported
49// on host. __REMOVED_IN needs to be defined in order for android/looper.h to be compiled.
50#ifndef __BIONIC__
51#define __REMOVED_IN(x) __attribute__((deprecated))
52#endif
Mathias Agopiane1c61d32012-03-23 14:19:36 -070053#include <android/looper.h>
54
Dan Albert8f860fd2017-04-25 12:24:28 -070055#include <stdbool.h>
Peng Xuda8385c2017-02-28 20:19:47 -080056#include <sys/types.h>
57#include <math.h>
58#include <stdint.h>
59
Elliott Hughes23e82b42021-01-26 14:55:48 -080060#if !defined(__INTRODUCED_IN)
61#define __INTRODUCED_IN(__api_level) /* nothing */
62#endif
63#if !defined(__DEPRECATED_IN)
64#define __DEPRECATED_IN(__api_level) __attribute__((__deprecated__))
65#endif
66
Mathias Agopiane1c61d32012-03-23 14:19:36 -070067#ifdef __cplusplus
68extern "C" {
69#endif
70
Peng Xu47cddca2017-02-15 23:31:22 -080071typedef struct AHardwareBuffer AHardwareBuffer;
Mathias Agopiane1c61d32012-03-23 14:19:36 -070072
Peng Xuda8385c2017-02-28 20:19:47 -080073#define ASENSOR_RESOLUTION_INVALID (nanf(""))
74#define ASENSOR_FIFO_COUNT_INVALID (-1)
75#define ASENSOR_DELAY_INVALID INT32_MIN
Brian Stack8228fa72019-01-04 14:15:13 -080076#define ASENSOR_INVALID (-1)
Peng Xuda8385c2017-02-28 20:19:47 -080077
Elliott Hughesf78be362018-01-23 15:33:56 -080078/* (Keep in sync with hardware/sensors-base.h and Sensor.java.) */
79
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -070080/**
81 * Sensor types.
Elliott Hughesf78be362018-01-23 15:33:56 -080082 *
83 * See
84 * [android.hardware.SensorEvent#values](https://developer.android.com/reference/android/hardware/SensorEvent.html#values)
85 * for detailed explanations of the data returned for each of these types.
Mathias Agopiane1c61d32012-03-23 14:19:36 -070086 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -070087enum {
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -070088 /**
Peng Xu37317b62017-03-07 17:49:31 -080089 * Invalid sensor type. Returned by {@link ASensor_getType} as error value.
90 */
91 ASENSOR_TYPE_INVALID = -1,
92 /**
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -070093 * {@link ASENSOR_TYPE_ACCELEROMETER}
94 * reporting-mode: continuous
95 *
96 * All values are in SI units (m/s^2) and measure the acceleration of the
97 * device minus the force of gravity.
98 */
Johan Euphrosine7d319fc2015-08-20 18:13:43 -070099 ASENSOR_TYPE_ACCELEROMETER = 1,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700100 /**
101 * {@link ASENSOR_TYPE_MAGNETIC_FIELD}
102 * reporting-mode: continuous
103 *
104 * All values are in micro-Tesla (uT) and measure the geomagnetic
105 * field in the X, Y and Z axis.
106 */
Johan Euphrosine7d319fc2015-08-20 18:13:43 -0700107 ASENSOR_TYPE_MAGNETIC_FIELD = 2,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700108 /**
109 * {@link ASENSOR_TYPE_GYROSCOPE}
110 * reporting-mode: continuous
111 *
112 * All values are in radians/second and measure the rate of rotation
113 * around the X, Y and Z axis.
114 */
Johan Euphrosine7d319fc2015-08-20 18:13:43 -0700115 ASENSOR_TYPE_GYROSCOPE = 4,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700116 /**
117 * {@link ASENSOR_TYPE_LIGHT}
118 * reporting-mode: on-change
119 *
120 * The light sensor value is returned in SI lux units.
121 */
Johan Euphrosine7d319fc2015-08-20 18:13:43 -0700122 ASENSOR_TYPE_LIGHT = 5,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700123 /**
Elliott Hughesf78be362018-01-23 15:33:56 -0800124 * {@link ASENSOR_TYPE_PRESSURE}
125 *
126 * The pressure sensor value is returned in hPa (millibar).
127 */
128 ASENSOR_TYPE_PRESSURE = 6,
129 /**
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700130 * {@link ASENSOR_TYPE_PROXIMITY}
131 * reporting-mode: on-change
132 *
133 * The proximity sensor which turns the screen off and back on during calls is the
134 * wake-up proximity sensor. Implement wake-up proximity sensor before implementing
135 * a non wake-up proximity sensor. For the wake-up proximity sensor set the flag
136 * SENSOR_FLAG_WAKE_UP.
137 * The value corresponds to the distance to the nearest object in centimeters.
138 */
Johan Euphrosine7d319fc2015-08-20 18:13:43 -0700139 ASENSOR_TYPE_PROXIMITY = 8,
140 /**
Elliott Hughesf78be362018-01-23 15:33:56 -0800141 * {@link ASENSOR_TYPE_GRAVITY}
142 *
143 * All values are in SI units (m/s^2) and measure the direction and
144 * magnitude of gravity. When the device is at rest, the output of
145 * the gravity sensor should be identical to that of the accelerometer.
146 */
147 ASENSOR_TYPE_GRAVITY = 9,
148 /**
Johan Euphrosine7d319fc2015-08-20 18:13:43 -0700149 * {@link ASENSOR_TYPE_LINEAR_ACCELERATION}
150 * reporting-mode: continuous
151 *
152 * All values are in SI units (m/s^2) and measure the acceleration of the
153 * device not including the force of gravity.
154 */
Elliott Hughesf78be362018-01-23 15:33:56 -0800155 ASENSOR_TYPE_LINEAR_ACCELERATION = 10,
156 /**
157 * {@link ASENSOR_TYPE_ROTATION_VECTOR}
158 */
159 ASENSOR_TYPE_ROTATION_VECTOR = 11,
160 /**
161 * {@link ASENSOR_TYPE_RELATIVE_HUMIDITY}
162 *
163 * The relative humidity sensor value is returned in percent.
164 */
165 ASENSOR_TYPE_RELATIVE_HUMIDITY = 12,
166 /**
167 * {@link ASENSOR_TYPE_AMBIENT_TEMPERATURE}
168 *
169 * The ambient temperature sensor value is returned in Celcius.
170 */
171 ASENSOR_TYPE_AMBIENT_TEMPERATURE = 13,
172 /**
173 * {@link ASENSOR_TYPE_MAGNETIC_FIELD_UNCALIBRATED}
174 */
175 ASENSOR_TYPE_MAGNETIC_FIELD_UNCALIBRATED = 14,
176 /**
177 * {@link ASENSOR_TYPE_GAME_ROTATION_VECTOR}
178 */
179 ASENSOR_TYPE_GAME_ROTATION_VECTOR = 15,
180 /**
181 * {@link ASENSOR_TYPE_GYROSCOPE_UNCALIBRATED}
182 */
183 ASENSOR_TYPE_GYROSCOPE_UNCALIBRATED = 16,
184 /**
185 * {@link ASENSOR_TYPE_SIGNIFICANT_MOTION}
186 */
187 ASENSOR_TYPE_SIGNIFICANT_MOTION = 17,
188 /**
189 * {@link ASENSOR_TYPE_STEP_DETECTOR}
190 */
191 ASENSOR_TYPE_STEP_DETECTOR = 18,
192 /**
193 * {@link ASENSOR_TYPE_STEP_COUNTER}
194 */
195 ASENSOR_TYPE_STEP_COUNTER = 19,
196 /**
197 * {@link ASENSOR_TYPE_GEOMAGNETIC_ROTATION_VECTOR}
198 */
199 ASENSOR_TYPE_GEOMAGNETIC_ROTATION_VECTOR = 20,
200 /**
201 * {@link ASENSOR_TYPE_HEART_RATE}
202 */
203 ASENSOR_TYPE_HEART_RATE = 21,
204 /**
205 * {@link ASENSOR_TYPE_POSE_6DOF}
206 */
207 ASENSOR_TYPE_POSE_6DOF = 28,
208 /**
209 * {@link ASENSOR_TYPE_STATIONARY_DETECT}
210 */
211 ASENSOR_TYPE_STATIONARY_DETECT = 29,
212 /**
213 * {@link ASENSOR_TYPE_MOTION_DETECT}
214 */
215 ASENSOR_TYPE_MOTION_DETECT = 30,
216 /**
217 * {@link ASENSOR_TYPE_HEART_BEAT}
218 */
219 ASENSOR_TYPE_HEART_BEAT = 31,
220 /**
Erik Staatsb1f77952022-03-25 11:49:58 -0700221 * A constant describing a dynamic sensor meta event sensor.
222 *
223 * A sensor event of this type is received when a dynamic sensor is added to or removed from
224 * the system. This sensor type should always use special trigger report mode.
225 */
226 ASENSOR_TYPE_DYNAMIC_SENSOR_META = 32,
227 /**
Brian Stackccd88432019-01-08 17:04:18 -0800228 * This sensor type is for delivering additional sensor information aside
229 * from sensor event data.
230 *
231 * Additional information may include:
232 * - {@link ASENSOR_ADDITIONAL_INFO_INTERNAL_TEMPERATURE}
233 * - {@link ASENSOR_ADDITIONAL_INFO_SAMPLING}
234 * - {@link ASENSOR_ADDITIONAL_INFO_SENSOR_PLACEMENT}
235 * - {@link ASENSOR_ADDITIONAL_INFO_UNTRACKED_DELAY}
236 * - {@link ASENSOR_ADDITIONAL_INFO_VEC3_CALIBRATION}
237 *
238 * This type will never bind to a sensor. In other words, no sensor in the
239 * sensor list can have the type {@link ASENSOR_TYPE_ADDITIONAL_INFO}.
240 *
241 * If a device supports the sensor additional information feature, it will
242 * report additional information events via {@link ASensorEvent} and will
gfanc150ea12021-04-14 09:27:55 -0700243 * have the type of {@link ASensorEvent} set to
244 * {@link ASENSOR_TYPE_ADDITIONAL_INFO} and the sensor of {@link ASensorEvent} set
Brian Stackccd88432019-01-08 17:04:18 -0800245 * to the handle of the reporting sensor.
246 *
247 * Additional information reports consist of multiple frames ordered by
248 * {@link ASensorEvent#timestamp}. The first frame in the report will have
249 * a {@link AAdditionalInfoEvent#type} of
250 * {@link ASENSOR_ADDITIONAL_INFO_BEGIN}, and the last frame in the report
251 * will have a {@link AAdditionalInfoEvent#type} of
252 * {@link ASENSOR_ADDITIONAL_INFO_END}.
253 *
254 */
255 ASENSOR_TYPE_ADDITIONAL_INFO = 33,
256 /**
Elliott Hughesf78be362018-01-23 15:33:56 -0800257 * {@link ASENSOR_TYPE_LOW_LATENCY_OFFBODY_DETECT}
258 */
259 ASENSOR_TYPE_LOW_LATENCY_OFFBODY_DETECT = 34,
260 /**
261 * {@link ASENSOR_TYPE_ACCELEROMETER_UNCALIBRATED}
262 */
263 ASENSOR_TYPE_ACCELEROMETER_UNCALIBRATED = 35,
Anthony Stangefdb1fc82020-01-16 15:02:48 -0500264 /**
265 * {@link ASENSOR_TYPE_HINGE_ANGLE}
Anthony Stanged7a703c2020-02-18 12:02:22 -0500266 * reporting-mode: on-change
267 *
268 * The hinge angle sensor value is returned in degrees.
Anthony Stangefdb1fc82020-01-16 15:02:48 -0500269 */
270 ASENSOR_TYPE_HINGE_ANGLE = 36,
Brian Duddie573da3b2021-12-10 14:34:07 -0800271 /**
272 * {@link ASENSOR_TYPE_HEAD_TRACKER}
273 * reporting-mode: continuous
274 *
Brian Duddie4a4d0462022-05-09 16:49:49 -0700275 * Measures the orientation and rotational velocity of a user's head. Only for internal use
276 * within the Android system.
Brian Duddie573da3b2021-12-10 14:34:07 -0800277 */
278 ASENSOR_TYPE_HEAD_TRACKER = 37,
Eva Chenc0420b72021-04-09 15:44:12 -0700279 /**
280 * {@link ASENSOR_TYPE_ACCELEROMETER_LIMITED_AXES}
281 * reporting-mode: continuous
282 *
283 * The first three values are in SI units (m/s^2) and measure the acceleration of the device
284 * minus the force of gravity. The last three values indicate which acceleration axes are
285 * supported. A value of 1.0 means supported and a value of 0 means not supported.
286 */
287 ASENSOR_TYPE_ACCELEROMETER_LIMITED_AXES = 38,
288 /**
289 * {@link ASENSOR_TYPE_GYROSCOPE_LIMITED_AXES}
290 * reporting-mode: continuous
291 *
292 * The first three values are in radians/second and measure the rate of rotation around the X,
293 * Y and Z axis. The last three values indicate which rotation axes are supported. A value of
294 * 1.0 means supported and a value of 0 means not supported.
295 */
296 ASENSOR_TYPE_GYROSCOPE_LIMITED_AXES = 39,
297 /**
298 * {@link ASENSOR_TYPE_ACCELEROMETER_LIMITED_AXES_UNCALIBRATED}
299 * reporting-mode: continuous
300 *
301 * The first three values are in SI units (m/s^2) and measure the acceleration of the device
302 * minus the force of gravity. The middle three values represent the estimated bias for each
303 * axis. The last three values indicate which acceleration axes are supported. A value of 1.0
304 * means supported and a value of 0 means not supported.
305 */
306 ASENSOR_TYPE_ACCELEROMETER_LIMITED_AXES_UNCALIBRATED = 40,
307 /**
308 * {@link ASENSOR_TYPE_GYROSCOPE_LIMITED_AXES_UNCALIBRATED}
309 * reporting-mode: continuous
310 *
311 * The first three values are in radians/second and measure the rate of rotation around the X,
312 * Y and Z axis. The middle three values represent the estimated drift around each axis in
313 * rad/s. The last three values indicate which rotation axes are supported. A value of 1.0 means
314 * supported and a value of 0 means not supported.
315 */
316 ASENSOR_TYPE_GYROSCOPE_LIMITED_AXES_UNCALIBRATED = 41,
Eva Chen72c71042022-01-10 21:07:51 -0800317 /**
318 * {@link ASENSOR_TYPE_HEADING}
319 * reporting-mode: continuous
320 *
321 * A heading sensor measures the direction in which the device is pointing
322 * relative to true north in degrees.
323 */
324 ASENSOR_TYPE_HEADING = 42,
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700325};
326
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700327/**
328 * Sensor accuracy measure.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700329 */
330enum {
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700331 /** no contact */
Etienne Le Grand630e31d2014-05-22 17:15:08 -0700332 ASENSOR_STATUS_NO_CONTACT = -1,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700333 /** unreliable */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700334 ASENSOR_STATUS_UNRELIABLE = 0,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700335 /** low accuracy */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700336 ASENSOR_STATUS_ACCURACY_LOW = 1,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700337 /** medium accuracy */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700338 ASENSOR_STATUS_ACCURACY_MEDIUM = 2,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700339 /** high accuracy */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700340 ASENSOR_STATUS_ACCURACY_HIGH = 3
341};
342
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700343/**
Aravind Akella0e025c52014-06-03 19:19:57 -0700344 * Sensor Reporting Modes.
345 */
346enum {
Peng Xu37317b62017-03-07 17:49:31 -0800347 /** invalid reporting mode */
348 AREPORTING_MODE_INVALID = -1,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700349 /** continuous reporting */
Aravind Akella0e025c52014-06-03 19:19:57 -0700350 AREPORTING_MODE_CONTINUOUS = 0,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700351 /** reporting on change */
Aravind Akella0e025c52014-06-03 19:19:57 -0700352 AREPORTING_MODE_ON_CHANGE = 1,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700353 /** on shot reporting */
Aravind Akella0e025c52014-06-03 19:19:57 -0700354 AREPORTING_MODE_ONE_SHOT = 2,
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700355 /** special trigger reporting */
Peng Xu37317b62017-03-07 17:49:31 -0800356 AREPORTING_MODE_SPECIAL_TRIGGER = 3
Aravind Akella0e025c52014-06-03 19:19:57 -0700357};
358
Peng Xu47cddca2017-02-15 23:31:22 -0800359/**
360 * Sensor Direct Report Rates.
361 */
362enum {
363 /** stopped */
364 ASENSOR_DIRECT_RATE_STOP = 0,
365 /** nominal 50Hz */
366 ASENSOR_DIRECT_RATE_NORMAL = 1,
367 /** nominal 200Hz */
368 ASENSOR_DIRECT_RATE_FAST = 2,
369 /** nominal 800Hz */
370 ASENSOR_DIRECT_RATE_VERY_FAST = 3
371};
372
373/**
374 * Sensor Direct Channel Type.
375 */
376enum {
377 /** shared memory created by ASharedMemory_create */
378 ASENSOR_DIRECT_CHANNEL_TYPE_SHARED_MEMORY = 1,
379 /** AHardwareBuffer */
380 ASENSOR_DIRECT_CHANNEL_TYPE_HARDWARE_BUFFER = 2
381};
382
Brian Stackccd88432019-01-08 17:04:18 -0800383/**
384 * Sensor Additional Info Types.
385 *
386 * Used to populate {@link AAdditionalInfoEvent#type}.
387 */
388enum {
389 /** Marks the beginning of additional information frames */
390 ASENSOR_ADDITIONAL_INFO_BEGIN = 0,
391
392 /** Marks the end of additional information frames */
393 ASENSOR_ADDITIONAL_INFO_END = 1,
394
395 /**
396 * Estimation of the delay that is not tracked by sensor timestamps. This
397 * includes delay introduced by sensor front-end filtering, data transport,
398 * etc.
399 * float[2]: delay in seconds, standard deviation of estimated value
400 */
401 ASENSOR_ADDITIONAL_INFO_UNTRACKED_DELAY = 0x10000,
402
403 /** float: Celsius temperature */
404 ASENSOR_ADDITIONAL_INFO_INTERNAL_TEMPERATURE,
405
406 /**
407 * First three rows of a homogeneous matrix, which represents calibration to
408 * a three-element vector raw sensor reading.
409 * float[12]: 3x4 matrix in row major order
410 */
411 ASENSOR_ADDITIONAL_INFO_VEC3_CALIBRATION,
412
413 /**
414 * Location and orientation of sensor element in the device frame: origin is
415 * the geometric center of the mobile device screen surface; the axis
416 * definition corresponds to Android sensor definitions.
417 * float[12]: 3x4 matrix in row major order
418 */
419 ASENSOR_ADDITIONAL_INFO_SENSOR_PLACEMENT,
420
421 /**
422 * float[2]: raw sample period in seconds,
423 * standard deviation of sampling period
424 */
425 ASENSOR_ADDITIONAL_INFO_SAMPLING,
426};
427
Aravind Akella0e025c52014-06-03 19:19:57 -0700428/*
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700429 * A few useful constants
430 */
431
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700432/** Earth's gravity in m/s^2 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700433#define ASENSOR_STANDARD_GRAVITY (9.80665f)
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700434/** Maximum magnetic field on Earth's surface in uT */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700435#define ASENSOR_MAGNETIC_FIELD_EARTH_MAX (60.0f)
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700436/** Minimum magnetic field on Earth's surface in uT*/
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700437#define ASENSOR_MAGNETIC_FIELD_EARTH_MIN (30.0f)
438
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700439/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700440 * A sensor event.
441 */
442
Peng Xu70b98382017-08-07 14:09:11 -0700443/* NOTE: changes to these structs have to be backward compatible */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700444typedef struct ASensorVector {
445 union {
446 float v[3];
447 struct {
448 float x;
449 float y;
450 float z;
451 };
452 struct {
453 float azimuth;
454 float pitch;
455 float roll;
456 };
457 };
458 int8_t status;
459 uint8_t reserved[3];
460} ASensorVector;
461
Aravind Akella724d91d2013-06-27 12:04:23 -0700462typedef struct AMetaDataEvent {
463 int32_t what;
464 int32_t sensor;
465} AMetaDataEvent;
466
467typedef struct AUncalibratedEvent {
Peng Xu9e720462016-01-26 18:48:54 -0800468 union {
469 float uncalib[3];
470 struct {
471 float x_uncalib;
472 float y_uncalib;
473 float z_uncalib;
474 };
Aravind Akella724d91d2013-06-27 12:04:23 -0700475 };
Peng Xu9e720462016-01-26 18:48:54 -0800476 union {
477 float bias[3];
478 struct {
479 float x_bias;
480 float y_bias;
481 float z_bias;
482 };
Aravind Akella724d91d2013-06-27 12:04:23 -0700483 };
Aravind Akella724d91d2013-06-27 12:04:23 -0700484} AUncalibratedEvent;
485
Etienne Le Grand630e31d2014-05-22 17:15:08 -0700486typedef struct AHeartRateEvent {
Peng Xu9e720462016-01-26 18:48:54 -0800487 float bpm;
488 int8_t status;
Etienne Le Grand630e31d2014-05-22 17:15:08 -0700489} AHeartRateEvent;
490
Peng Xu2576cb62016-01-20 00:22:09 -0800491typedef struct ADynamicSensorEvent {
Peng Xu9e720462016-01-26 18:48:54 -0800492 int32_t connected;
493 int32_t handle;
Peng Xu2576cb62016-01-20 00:22:09 -0800494} ADynamicSensorEvent;
495
Brian Stackccd88432019-01-08 17:04:18 -0800496typedef struct AAdditionalInfoEvent {
gfan5d5faa42021-04-12 15:14:29 -0700497 /**
498 * Event type, such as ASENSOR_ADDITIONAL_INFO_BEGIN, ASENSOR_ADDITIONAL_INFO_END and others.
499 * Refer to {@link ASENSOR_TYPE_ADDITIONAL_INFO} for the expected reporting behavior.
500 */
Peng Xu9e720462016-01-26 18:48:54 -0800501 int32_t type;
502 int32_t serial;
503 union {
504 int32_t data_int32[14];
505 float data_float[14];
506 };
507} AAdditionalInfoEvent;
508
Brian Duddie573da3b2021-12-10 14:34:07 -0800509typedef struct AHeadTrackerEvent {
510 /**
511 * The fields rx, ry, rz are an Euler vector (rotation vector, i.e. a vector
512 * whose direction indicates the axis of rotation and magnitude indicates
513 * the angle to rotate around that axis) representing the transform from
514 * the (arbitrary, possibly slowly drifting) reference frame to the
515 * head frame. Expressed in radians. Magnitude of the vector must be
516 * in the range [0, pi], while the value of individual axes are
517 * in the range [-pi, pi].
518 */
519 float rx;
520 float ry;
521 float rz;
522
523 /**
524 * The fields vx, vy, vz are an Euler vector (rotation vector) representing
525 * the angular velocity of the head (relative to itself), in radians per
526 * second. The direction of this vector indicates the axis of rotation, and
527 * the magnitude indicates the rate of rotation.
528 */
529 float vx;
530 float vy;
531 float vz;
532
533 /**
534 * This value changes each time the reference frame is suddenly and
535 * significantly changed, for example if an orientation filter algorithm
536 * used for determining the orientation has had its state reset.
537 */
538 int32_t discontinuity_count;
539} AHeadTrackerEvent;
540
Eva Chenc0420b72021-04-09 15:44:12 -0700541typedef struct ALimitedAxesImuEvent {
542 union {
543 float calib[3];
544 struct {
545 float x;
546 float y;
547 float z;
548 };
549 };
550 union {
551 float supported[3];
552 struct {
553 float x_supported;
554 float y_supported;
555 float z_supported;
556 };
557 };
558} ALimitedAxesImuEvent;
559
560typedef struct ALimitedAxesImuUncalibratedEvent {
561 union {
562 float uncalib[3];
563 struct {
564 float x_uncalib;
565 float y_uncalib;
566 float z_uncalib;
567 };
568 };
569 union {
570 float bias[3];
571 struct {
572 float x_bias;
573 float y_bias;
574 float z_bias;
575 };
576 };
577 union {
578 float supported[3];
579 struct {
580 float x_supported;
581 float y_supported;
582 float z_supported;
583 };
584 };
585} ALimitedAxesImuUncalibratedEvent;
586
Eva Chen72c71042022-01-10 21:07:51 -0800587typedef struct AHeadingEvent {
588 /**
589 * The direction in which the device is pointing relative to true north in
590 * degrees. The value must be between 0.0 (inclusive) and 360.0 (exclusive),
591 * with 0 indicating north, 90 east, 180 south, and 270 west.
592 */
593 float heading;
594 /**
595 * Accuracy is defined at 68% confidence. In the case where the underlying
596 * distribution is assumed Gaussian normal, this would be considered one
597 * standard deviation. For example, if the heading returns 60 degrees, and
598 * accuracy returns 10 degrees, then there is a 68 percent probability of
599 * the true heading being between 50 degrees and 70 degrees.
600 */
601 float accuracy;
602} AHeadingEvent;
603
Devin Moored0470682022-11-29 19:12:55 +0000604// LINT.IfChange
gfan5d5faa42021-04-12 15:14:29 -0700605/**
606 * Information that describes a sensor event, refer to
607 * <a href="/reference/android/hardware/SensorEvent">SensorEvent</a> for additional
608 * documentation.
Devin Moored0470682022-11-29 19:12:55 +0000609 *
610 * NOTE: changes to this struct has to be backward compatible and reflected in
611 * sensors_event_t
gfan5d5faa42021-04-12 15:14:29 -0700612 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700613typedef struct ASensorEvent {
614 int32_t version; /* sizeof(struct ASensorEvent) */
gfan5d5faa42021-04-12 15:14:29 -0700615 int32_t sensor; /** The sensor that generates this event */
gfanc150ea12021-04-14 09:27:55 -0700616 int32_t type; /** Sensor type for the event, such as {@link ASENSOR_TYPE_ACCELEROMETER} */
gfan5d5faa42021-04-12 15:14:29 -0700617 int32_t reserved0; /** do not use */
618 /**
619 * The time in nanoseconds at which the event happened, and its behavior
620 * is identical to <a href="/reference/android/hardware/SensorEvent#timestamp">
621 * SensorEvent::timestamp</a> in Java API.
622 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700623 int64_t timestamp;
624 union {
Mathias Agopianba02cd22013-07-03 16:20:57 -0700625 union {
626 float data[16];
627 ASensorVector vector;
628 ASensorVector acceleration;
Brian Duddiee02c0662021-03-16 09:53:20 -0700629 ASensorVector gyro;
Mathias Agopianba02cd22013-07-03 16:20:57 -0700630 ASensorVector magnetic;
631 float temperature;
632 float distance;
633 float light;
634 float pressure;
Aravind Akella724d91d2013-06-27 12:04:23 -0700635 float relative_humidity;
Brian Duddiee02c0662021-03-16 09:53:20 -0700636 AUncalibratedEvent uncalibrated_acceleration;
Aravind Akella724d91d2013-06-27 12:04:23 -0700637 AUncalibratedEvent uncalibrated_gyro;
638 AUncalibratedEvent uncalibrated_magnetic;
639 AMetaDataEvent meta_data;
Etienne Le Grand630e31d2014-05-22 17:15:08 -0700640 AHeartRateEvent heart_rate;
Peng Xu2576cb62016-01-20 00:22:09 -0800641 ADynamicSensorEvent dynamic_sensor_meta;
Peng Xu9e720462016-01-26 18:48:54 -0800642 AAdditionalInfoEvent additional_info;
Brian Duddie573da3b2021-12-10 14:34:07 -0800643 AHeadTrackerEvent head_tracker;
Eva Chenc0420b72021-04-09 15:44:12 -0700644 ALimitedAxesImuEvent limited_axes_imu;
645 ALimitedAxesImuUncalibratedEvent limited_axes_imu_uncalibrated;
Eva Chen72c71042022-01-10 21:07:51 -0800646 AHeadingEvent heading;
Mathias Agopianba02cd22013-07-03 16:20:57 -0700647 };
648 union {
649 uint64_t data[8];
650 uint64_t step_counter;
651 } u64;
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700652 };
Aravind Akella9a844cf2014-02-11 18:58:52 -0800653
654 uint32_t flags;
655 int32_t reserved1[3];
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700656} ASensorEvent;
Devin Moored0470682022-11-29 19:12:55 +0000657// LINT.ThenChange (hardware/libhardware/include/hardware/sensors.h)
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700658
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700659struct ASensorManager;
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700660/**
661 * {@link ASensorManager} is an opaque type to manage sensors and
662 * events queues.
663 *
664 * {@link ASensorManager} is a singleton that can be obtained using
665 * ASensorManager_getInstance().
666 *
667 * This file provides a set of functions that uses {@link
668 * ASensorManager} to access and list hardware sensors, and
669 * create and destroy event queues:
670 * - ASensorManager_getSensorList()
671 * - ASensorManager_getDefaultSensor()
672 * - ASensorManager_getDefaultSensorEx()
673 * - ASensorManager_createEventQueue()
674 * - ASensorManager_destroyEventQueue()
675 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700676typedef struct ASensorManager ASensorManager;
677
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700678
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700679struct ASensorEventQueue;
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700680/**
681 * {@link ASensorEventQueue} is an opaque type that provides access to
682 * {@link ASensorEvent} from hardware sensors.
683 *
684 * A new {@link ASensorEventQueue} can be obtained using ASensorManager_createEventQueue().
685 *
686 * This file provides a set of functions to enable and disable
687 * sensors, check and get events, and set event rates on a {@link
688 * ASensorEventQueue}.
689 * - ASensorEventQueue_enableSensor()
690 * - ASensorEventQueue_disableSensor()
691 * - ASensorEventQueue_hasEvents()
692 * - ASensorEventQueue_getEvents()
693 * - ASensorEventQueue_setEventRate()
Brian Stack65089d52019-01-11 10:52:07 -0800694 * - ASensorEventQueue_requestAdditionalInfoEvents()
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700695 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700696typedef struct ASensorEventQueue ASensorEventQueue;
697
698struct ASensor;
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700699/**
700 * {@link ASensor} is an opaque type that provides information about
701 * an hardware sensors.
702 *
703 * A {@link ASensor} pointer can be obtained using
704 * ASensorManager_getDefaultSensor(),
705 * ASensorManager_getDefaultSensorEx() or from a {@link ASensorList}.
706 *
707 * This file provides a set of functions to access properties of a
708 * {@link ASensor}:
709 * - ASensor_getName()
710 * - ASensor_getVendor()
711 * - ASensor_getType()
712 * - ASensor_getResolution()
713 * - ASensor_getMinDelay()
714 * - ASensor_getFifoMaxEventCount()
715 * - ASensor_getFifoReservedEventCount()
716 * - ASensor_getStringType()
717 * - ASensor_getReportingMode()
718 * - ASensor_isWakeUpSensor()
Brian Stack8228fa72019-01-04 14:15:13 -0800719 * - ASensor_getHandle()
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700720 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700721typedef struct ASensor ASensor;
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700722/**
723 * {@link ASensorRef} is a type for constant pointers to {@link ASensor}.
724 *
725 * This is used to define entry in {@link ASensorList} arrays.
726 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700727typedef ASensor const* ASensorRef;
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700728/**
729 * {@link ASensorList} is an array of reference to {@link ASensor}.
730 *
731 * A {@link ASensorList} can be initialized using ASensorManager_getSensorList().
732 */
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700733typedef ASensorRef const* ASensorList;
734
735/*****************************************************************************/
736
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700737/**
Svet Ganov5fa32d42015-05-07 10:50:59 -0700738 * Get a reference to the sensor manager. ASensorManager is a singleton
739 * per package as different packages may have access to different sensors.
740 *
741 * Deprecated: Use ASensorManager_getInstanceForPackage(const char*) instead.
742 *
743 * Example:
744 *
745 * ASensorManager* sensorManager = ASensorManager_getInstance();
746 *
747 */
Elliott Hughes23e82b42021-01-26 14:55:48 -0800748ASensorManager* ASensorManager_getInstance() __DEPRECATED_IN(26);
Svet Ganov5fa32d42015-05-07 10:50:59 -0700749
Peng Xu80df0162017-08-05 19:00:23 -0700750/**
Svet Ganov5fa32d42015-05-07 10:50:59 -0700751 * Get a reference to the sensor manager. ASensorManager is a singleton
752 * per package as different packages may have access to different sensors.
753 *
754 * Example:
755 *
Peng Xu80df0162017-08-05 19:00:23 -0700756 * ASensorManager* sensorManager = ASensorManager_getInstanceForPackage("foo.bar.baz");
Svet Ganov5fa32d42015-05-07 10:50:59 -0700757 *
Elliott Hughes3d70e532019-10-29 08:59:39 -0700758 * Available since API level 26.
Svet Ganov5fa32d42015-05-07 10:50:59 -0700759 */
Elliott Hughes9db409b2018-06-18 12:28:46 -0700760ASensorManager* ASensorManager_getInstanceForPackage(const char* packageName) __INTRODUCED_IN(26);
Svet Ganov5fa32d42015-05-07 10:50:59 -0700761
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700762/**
Erik Staatsd35a5742022-02-04 06:37:58 -0800763 * Returns the list of available sensors. The returned list is owned by the
764 * sensor manager and will not change between calls to this function.
765 *
766 * \param manager the {@link ASensorManager} instance obtained from
767 * {@link ASensorManager_getInstanceForPackage}.
768 * \param list the returned list of sensors.
769 * \return positive number of returned sensors or negative error code.
770 * BAD_VALUE: manager is NULL.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700771 */
772int ASensorManager_getSensorList(ASensorManager* manager, ASensorList* list);
773
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700774/**
Erik Staatsd35a5742022-02-04 06:37:58 -0800775 * Returns the list of available dynamic sensors. If there are no dynamic
776 * sensors available, returns nullptr in list.
777 *
778 * Each time this is called, the previously returned list is deallocated and
779 * must no longer be used.
780 *
Erik Staatsb1f77952022-03-25 11:49:58 -0700781 * Clients should call this if they receive a sensor update from
782 * {@link ASENSOR_TYPE_DYNAMIC_SENSOR_META} indicating the sensors have changed.
783 * If this happens, previously received lists from this method will be stale.
784 *
Erik Staatsd35a5742022-02-04 06:37:58 -0800785 * Available since API level 33.
786 *
787 * \param manager the {@link ASensorManager} instance obtained from
788 * {@link ASensorManager_getInstanceForPackage}.
789 * \param list the returned list of dynamic sensors.
790 * \return positive number of returned sensors or negative error code.
791 * BAD_VALUE: manager is NULL.
792 */
793ssize_t ASensorManager_getDynamicSensorList(
794 ASensorManager* manager, ASensorList* list) __INTRODUCED_IN(33);
795
796/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700797 * Returns the default sensor for the given type, or NULL if no sensor
Aravind Akellab37ba392014-08-05 14:53:07 -0700798 * of that type exists.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700799 */
800ASensor const* ASensorManager_getDefaultSensor(ASensorManager* manager, int type);
801
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700802/**
Aravind Akellab37ba392014-08-05 14:53:07 -0700803 * Returns the default sensor with the given type and wakeUp properties or NULL if no sensor
804 * of this type and wakeUp properties exists.
Elliott Hughes3d70e532019-10-29 08:59:39 -0700805 *
806 * Available since API level 21.
Aravind Akellab37ba392014-08-05 14:53:07 -0700807 */
Elliott Hughes9db409b2018-06-18 12:28:46 -0700808ASensor const* ASensorManager_getDefaultSensorEx(ASensorManager* manager, int type, bool wakeUp) __INTRODUCED_IN(21);
Aravind Akellab37ba392014-08-05 14:53:07 -0700809
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700810/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700811 * Creates a new sensor event queue and associate it with a looper.
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700812 *
813 * "ident" is a identifier for the events that will be returned when
814 * calling ALooper_pollOnce(). The identifier must be >= 0, or
815 * ALOOPER_POLL_CALLBACK if providing a non-NULL callback.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700816 */
817ASensorEventQueue* ASensorManager_createEventQueue(ASensorManager* manager,
818 ALooper* looper, int ident, ALooper_callbackFunc callback, void* data);
819
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700820/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700821 * Destroys the event queue and free all resources associated to it.
822 */
823int ASensorManager_destroyEventQueue(ASensorManager* manager, ASensorEventQueue* queue);
824
Peng Xu47cddca2017-02-15 23:31:22 -0800825/**
826 * Create direct channel based on shared memory
827 *
828 * Create a direct channel of {@link ASENSOR_DIRECT_CHANNEL_TYPE_SHARED_MEMORY} to be used
829 * for configuring sensor direct report.
830 *
Elliott Hughes3d70e532019-10-29 08:59:39 -0700831 * Available since API level 26.
832 *
Peng Xu47cddca2017-02-15 23:31:22 -0800833 * \param manager the {@link ASensorManager} instance obtained from
834 * {@link ASensorManager_getInstanceForPackage}.
835 * \param fd file descriptor representing a shared memory created by
836 * {@link ASharedMemory_create}
837 * \param size size to be used, must be less or equal to size of shared memory.
838 *
839 * \return a positive integer as a channel id to be used in
840 * {@link ASensorManager_destroyDirectChannel} and
841 * {@link ASensorManager_configureDirectReport}, or value less or equal to 0 for failures.
842 */
Elliott Hughes9db409b2018-06-18 12:28:46 -0700843int ASensorManager_createSharedMemoryDirectChannel(ASensorManager* manager, int fd, size_t size) __INTRODUCED_IN(26);
Peng Xu47cddca2017-02-15 23:31:22 -0800844
845/**
846 * Create direct channel based on AHardwareBuffer
847 *
848 * Create a direct channel of {@link ASENSOR_DIRECT_CHANNEL_TYPE_HARDWARE_BUFFER} type to be used
849 * for configuring sensor direct report.
850 *
Elliott Hughes3d70e532019-10-29 08:59:39 -0700851 * Available since API level 26.
852 *
Peng Xu47cddca2017-02-15 23:31:22 -0800853 * \param manager the {@link ASensorManager} instance obtained from
854 * {@link ASensorManager_getInstanceForPackage}.
855 * \param buffer {@link AHardwareBuffer} instance created by {@link AHardwareBuffer_allocate}.
856 * \param size the intended size to be used, must be less or equal to size of buffer.
857 *
858 * \return a positive integer as a channel id to be used in
859 * {@link ASensorManager_destroyDirectChannel} and
860 * {@link ASensorManager_configureDirectReport}, or value less or equal to 0 for failures.
861 */
862int ASensorManager_createHardwareBufferDirectChannel(
Elliott Hughes9db409b2018-06-18 12:28:46 -0700863 ASensorManager* manager, AHardwareBuffer const * buffer, size_t size) __INTRODUCED_IN(26);
Peng Xu47cddca2017-02-15 23:31:22 -0800864
865/**
866 * Destroy a direct channel
867 *
gfan5d5faa42021-04-12 15:14:29 -0700868 * Destroy a direct channel previously created by using one of
869 * ASensorManager_create*DirectChannel() derivative functions.
870 * Note that the buffer used for creating the direct channel does not get destroyed with
871 * ASensorManager_destroyDirectChannel and has to be closed or released separately.
Peng Xu47cddca2017-02-15 23:31:22 -0800872 *
Elliott Hughes3d70e532019-10-29 08:59:39 -0700873 * Available since API level 26.
874 *
Peng Xu47cddca2017-02-15 23:31:22 -0800875 * \param manager the {@link ASensorManager} instance obtained from
876 * {@link ASensorManager_getInstanceForPackage}.
877 * \param channelId channel id (a positive integer) returned from
878 * {@link ASensorManager_createSharedMemoryDirectChannel} or
879 * {@link ASensorManager_createHardwareBufferDirectChannel}.
880 */
Elliott Hughes9db409b2018-06-18 12:28:46 -0700881void ASensorManager_destroyDirectChannel(ASensorManager* manager, int channelId) __INTRODUCED_IN(26);
Peng Xu47cddca2017-02-15 23:31:22 -0800882
883/**
884 * Configure direct report on channel
885 *
886 * Configure sensor direct report on a direct channel: set rate to value other than
887 * {@link ASENSOR_DIRECT_RATE_STOP} so that sensor event can be directly
Peng Xuec53d022017-04-06 18:02:29 -0700888 * written into the shared memory region used for creating the buffer. It returns a positive token
889 * which can be used for identify sensor events from different sensors on success. Calling with rate
890 * {@link ASENSOR_DIRECT_RATE_STOP} will stop direct report of the sensor specified in the channel.
Peng Xu47cddca2017-02-15 23:31:22 -0800891 *
892 * To stop all active sensor direct report configured to a channel, set sensor to NULL and rate to
893 * {@link ASENSOR_DIRECT_RATE_STOP}.
894 *
895 * In order to successfully configure a direct report, the sensor has to support the specified rate
896 * and the channel type, which can be checked by {@link ASensor_getHighestDirectReportRateLevel} and
897 * {@link ASensor_isDirectChannelTypeSupported}, respectively.
898 *
899 * Example:
Peng Xu47cddca2017-02-15 23:31:22 -0800900 *
Peng Xu80df0162017-08-05 19:00:23 -0700901 * ASensorManager *manager = ...;
902 * ASensor *sensor = ...;
903 * int channelId = ...;
904 *
905 * ASensorManager_configureDirectReport(manager, sensor, channel_id, ASENSOR_DIRECT_RATE_FAST);
Peng Xu47cddca2017-02-15 23:31:22 -0800906 *
Elliott Hughes3d70e532019-10-29 08:59:39 -0700907 * Available since API level 26.
908 *
Peng Xu47cddca2017-02-15 23:31:22 -0800909 * \param manager the {@link ASensorManager} instance obtained from
910 * {@link ASensorManager_getInstanceForPackage}.
911 * \param sensor a {@link ASensor} to denote which sensor to be operate. It can be NULL if rate
912 * is {@link ASENSOR_DIRECT_RATE_STOP}, denoting stopping of all active sensor
913 * direct report.
914 * \param channelId channel id (a positive integer) returned from
915 * {@link ASensorManager_createSharedMemoryDirectChannel} or
916 * {@link ASensorManager_createHardwareBufferDirectChannel}.
gfan5d5faa42021-04-12 15:14:29 -0700917 * \param rate one of predefined ASENSOR_DIRECT_RATE_... that is supported by the sensor.
Peng Xuec53d022017-04-06 18:02:29 -0700918 * \return positive token for success or negative error code.
Peng Xu47cddca2017-02-15 23:31:22 -0800919 */
Elliott Hughes9db409b2018-06-18 12:28:46 -0700920int ASensorManager_configureDirectReport(ASensorManager* manager,
921 ASensor const* sensor, int channelId, int rate) __INTRODUCED_IN(26);
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700922
923/*****************************************************************************/
924
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700925/**
Peng Xu80df0162017-08-05 19:00:23 -0700926 * Enable the selected sensor with sampling and report parameters
927 *
928 * Enable the selected sensor at a specified sampling period and max batch report latency.
929 * To disable sensor, use {@link ASensorEventQueue_disableSensor}.
930 *
931 * \param queue {@link ASensorEventQueue} for sensor event to be report to.
932 * \param sensor {@link ASensor} to be enabled.
933 * \param samplingPeriodUs sampling period of sensor in microseconds.
gfan5d5faa42021-04-12 15:14:29 -0700934 * \param maxBatchReportLatencyUs maximum time interval between two batches of sensor events are
Peng Xu80df0162017-08-05 19:00:23 -0700935 * delievered in microseconds. For sensor streaming, set to 0.
936 * \return 0 on success or a negative error code on failure.
Aniroop Mathurda94fd82015-11-03 01:47:46 +0530937 */
938int ASensorEventQueue_registerSensor(ASensorEventQueue* queue, ASensor const* sensor,
Peng Xuda8385c2017-02-28 20:19:47 -0800939 int32_t samplingPeriodUs, int64_t maxBatchReportLatencyUs);
Aniroop Mathurda94fd82015-11-03 01:47:46 +0530940
941/**
Peng Xu80df0162017-08-05 19:00:23 -0700942 * Enable the selected sensor at default sampling rate.
943 *
944 * Start event reports of a sensor to specified sensor event queue at a default rate.
945 *
946 * \param queue {@link ASensorEventQueue} for sensor event to be report to.
947 * \param sensor {@link ASensor} to be enabled.
948 *
949 * \return 0 on success or a negative error code on failure.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700950 */
951int ASensorEventQueue_enableSensor(ASensorEventQueue* queue, ASensor const* sensor);
952
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700953/**
Peng Xu80df0162017-08-05 19:00:23 -0700954 * Disable the selected sensor.
955 *
956 * Stop event reports from the sensor to specified sensor event queue.
957 *
958 * \param queue {@link ASensorEventQueue} to be changed
959 * \param sensor {@link ASensor} to be disabled
960 * \return 0 on success or a negative error code on failure.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700961 */
962int ASensorEventQueue_disableSensor(ASensorEventQueue* queue, ASensor const* sensor);
963
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700964/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700965 * Sets the delivery rate of events in microseconds for the given sensor.
Peng Xu80df0162017-08-05 19:00:23 -0700966 *
967 * This function has to be called after {@link ASensorEventQueue_enableSensor}.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700968 * Note that this is a hint only, generally event will arrive at a higher
969 * rate. It is an error to set a rate inferior to the value returned by
970 * ASensor_getMinDelay().
Peng Xu80df0162017-08-05 19:00:23 -0700971 *
972 * \param queue {@link ASensorEventQueue} to which sensor event is delivered.
973 * \param sensor {@link ASensor} of which sampling rate to be updated.
974 * \param usec sensor sampling period (1/sampling rate) in microseconds
975 * \return 0 on sucess or a negative error code on failure.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700976 */
977int ASensorEventQueue_setEventRate(ASensorEventQueue* queue, ASensor const* sensor, int32_t usec);
978
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700979/**
Peng Xu80df0162017-08-05 19:00:23 -0700980 * Determine if a sensor event queue has pending event to be processed.
981 *
982 * \param queue {@link ASensorEventQueue} to be queried
983 * \return 1 if the queue has events; 0 if it does not have events;
984 * or a negative value if there is an error.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700985 */
986int ASensorEventQueue_hasEvents(ASensorEventQueue* queue);
987
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -0700988/**
Peng Xu80df0162017-08-05 19:00:23 -0700989 * Retrieve pending events in sensor event queue
990 *
991 * Retrieve next available events from the queue to a specified event array.
992 *
993 * \param queue {@link ASensorEventQueue} to get events from
gfan5d5faa42021-04-12 15:14:29 -0700994 * \param events pointer to an array of {@link ASensorEvent}.
Peng Xu80df0162017-08-05 19:00:23 -0700995 * \param count max number of event that can be filled into array event.
996 * \return number of events returned on success; negative error code when
997 * no events are pending or an error has occurred.
Mathias Agopiane1c61d32012-03-23 14:19:36 -0700998 *
999 * Examples:
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001000 *
Peng Xu80df0162017-08-05 19:00:23 -07001001 * ASensorEvent event;
1002 * ssize_t numEvent = ASensorEventQueue_getEvents(queue, &event, 1);
1003 *
1004 * ASensorEvent eventBuffer[8];
1005 * ssize_t numEvent = ASensorEventQueue_getEvents(queue, eventBuffer, 8);
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001006 *
1007 */
Peng Xuda8385c2017-02-28 20:19:47 -08001008ssize_t ASensorEventQueue_getEvents(ASensorEventQueue* queue, ASensorEvent* events, size_t count);
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001009
Brian Stack65089d52019-01-11 10:52:07 -08001010/**
1011 * Request that {@link ASENSOR_TYPE_ADDITIONAL_INFO} events to be delivered on
1012 * the given {@link ASensorEventQueue}.
1013 *
gfan5d5faa42021-04-12 15:14:29 -07001014 * Sensor data events are always delivered to the {@link ASensorEventQueue}.
Brian Stack65089d52019-01-11 10:52:07 -08001015 *
1016 * The {@link ASENSOR_TYPE_ADDITIONAL_INFO} events will be returned through
1017 * {@link ASensorEventQueue_getEvents}. The client is responsible for checking
1018 * {@link ASensorEvent#type} to determine the event type prior to handling of
1019 * the event.
1020 *
1021 * The client must be tolerant of any value for
1022 * {@link AAdditionalInfoEvent#type}, as new values may be defined in the future
1023 * and may delivered to the client.
1024 *
Elliott Hughes3d70e532019-10-29 08:59:39 -07001025 * Available since API level 29.
1026 *
Brian Stack65089d52019-01-11 10:52:07 -08001027 * \param queue {@link ASensorEventQueue} to configure
1028 * \param enable true to request {@link ASENSOR_TYPE_ADDITIONAL_INFO} events,
1029 * false to stop receiving events
1030 * \return 0 on success or a negative error code on failure
1031 */
Elliott Hughes3d70e532019-10-29 08:59:39 -07001032int ASensorEventQueue_requestAdditionalInfoEvents(ASensorEventQueue* queue, bool enable) __INTRODUCED_IN(29);
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001033
1034/*****************************************************************************/
1035
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001036/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001037 * Returns this sensor's name (non localized)
1038 */
1039const char* ASensor_getName(ASensor const* sensor);
1040
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001041/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001042 * Returns this sensor's vendor's name (non localized)
1043 */
1044const char* ASensor_getVendor(ASensor const* sensor);
1045
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001046/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001047 * Return this sensor's type
1048 */
1049int ASensor_getType(ASensor const* sensor);
1050
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001051/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001052 * Returns this sensors's resolution
1053 */
1054float ASensor_getResolution(ASensor const* sensor);
1055
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001056/**
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001057 * Returns the minimum delay allowed between events in microseconds.
1058 * A value of zero means that this sensor doesn't report events at a
1059 * constant rate, but rather only when a new data is available.
1060 */
1061int ASensor_getMinDelay(ASensor const* sensor);
1062
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001063/**
Aravind Akella70018042014-04-07 22:52:37 +00001064 * Returns the maximum size of batches for this sensor. Batches will often be
1065 * smaller, as the hardware fifo might be used for other sensors.
Elliott Hughes3d70e532019-10-29 08:59:39 -07001066 *
1067 * Available since API level 21.
Aravind Akella70018042014-04-07 22:52:37 +00001068 */
Elliott Hughes9db409b2018-06-18 12:28:46 -07001069int ASensor_getFifoMaxEventCount(ASensor const* sensor) __INTRODUCED_IN(21);
Aravind Akella70018042014-04-07 22:52:37 +00001070
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001071/**
Aravind Akella70018042014-04-07 22:52:37 +00001072 * Returns the hardware batch fifo size reserved to this sensor.
Elliott Hughes3d70e532019-10-29 08:59:39 -07001073 *
1074 * Available since API level 21.
Aravind Akella70018042014-04-07 22:52:37 +00001075 */
Elliott Hughes9db409b2018-06-18 12:28:46 -07001076int ASensor_getFifoReservedEventCount(ASensor const* sensor) __INTRODUCED_IN(21);
Aravind Akella70018042014-04-07 22:52:37 +00001077
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001078/**
Aravind Akella70018042014-04-07 22:52:37 +00001079 * Returns this sensor's string type.
Elliott Hughes3d70e532019-10-29 08:59:39 -07001080 *
1081 * Available since API level 21.
Aravind Akella70018042014-04-07 22:52:37 +00001082 */
Elliott Hughes9db409b2018-06-18 12:28:46 -07001083const char* ASensor_getStringType(ASensor const* sensor) __INTRODUCED_IN(21);
Aravind Akella70018042014-04-07 22:52:37 +00001084
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001085/**
Aravind Akella0e025c52014-06-03 19:19:57 -07001086 * Returns the reporting mode for this sensor. One of AREPORTING_MODE_* constants.
Elliott Hughes3d70e532019-10-29 08:59:39 -07001087 *
1088 * Available since API level 21.
Aravind Akella0e025c52014-06-03 19:19:57 -07001089 */
Elliott Hughes9db409b2018-06-18 12:28:46 -07001090int ASensor_getReportingMode(ASensor const* sensor) __INTRODUCED_IN(21);
Aravind Akella0e025c52014-06-03 19:19:57 -07001091
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001092/**
Aravind Akellab37ba392014-08-05 14:53:07 -07001093 * Returns true if this is a wake up sensor, false otherwise.
Elliott Hughes3d70e532019-10-29 08:59:39 -07001094 *
1095 * Available since API level 21.
Aravind Akellab37ba392014-08-05 14:53:07 -07001096 */
Elliott Hughes9db409b2018-06-18 12:28:46 -07001097bool ASensor_isWakeUpSensor(ASensor const* sensor) __INTRODUCED_IN(21);
Aravind Akellab37ba392014-08-05 14:53:07 -07001098
Peng Xu47cddca2017-02-15 23:31:22 -08001099/**
1100 * Test if sensor supports a certain type of direct channel.
1101 *
Elliott Hughes3d70e532019-10-29 08:59:39 -07001102 * Available since API level 26.
1103 *
Peng Xu47cddca2017-02-15 23:31:22 -08001104 * \param sensor a {@link ASensor} to denote the sensor to be checked.
1105 * \param channelType Channel type constant, either
gfan5d5faa42021-04-12 15:14:29 -07001106 * {@link ASENSOR_DIRECT_CHANNEL_TYPE_SHARED_MEMORY}
Peng Xu47cddca2017-02-15 23:31:22 -08001107 * or {@link ASENSOR_DIRECT_CHANNEL_TYPE_HARDWARE_BUFFER}.
1108 * \returns true if sensor supports the specified direct channel type.
1109 */
Elliott Hughes9db409b2018-06-18 12:28:46 -07001110bool ASensor_isDirectChannelTypeSupported(ASensor const* sensor, int channelType) __INTRODUCED_IN(26);
1111
Peng Xu47cddca2017-02-15 23:31:22 -08001112/**
Elliott Hughes3d70e532019-10-29 08:59:39 -07001113 * Get the highest direct rate level that a sensor supports.
1114 *
1115 * Available since API level 26.
Peng Xu47cddca2017-02-15 23:31:22 -08001116 *
1117 * \param sensor a {@link ASensor} to denote the sensor to be checked.
1118 *
1119 * \return a ASENSOR_DIRECT_RATE_... enum denoting the highest rate level supported by the sensor.
1120 * If return value is {@link ASENSOR_DIRECT_RATE_STOP}, it means the sensor
1121 * does not support direct report.
1122 */
Elliott Hughes9db409b2018-06-18 12:28:46 -07001123int ASensor_getHighestDirectReportRateLevel(ASensor const* sensor) __INTRODUCED_IN(26);
Peng Xu47cddca2017-02-15 23:31:22 -08001124
Brian Stack8228fa72019-01-04 14:15:13 -08001125/**
1126 * Returns the sensor's handle.
1127 *
1128 * The handle identifies the sensor within the system and is included in the
gfanc150ea12021-04-14 09:27:55 -07001129 * sensor field of {@link ASensorEvent}, including those sent with type
Brian Stack8228fa72019-01-04 14:15:13 -08001130 * {@link ASENSOR_TYPE_ADDITIONAL_INFO}.
1131 *
1132 * A sensor's handle is able to be used to map {@link ASENSOR_TYPE_ADDITIONAL_INFO} events to the
1133 * sensor that generated the event.
1134 *
1135 * It is important to note that the value returned by {@link ASensor_getHandle} is not the same as
gfan5d5faa42021-04-12 15:14:29 -07001136 * the value returned by the Java API <a href="/reference/android/hardware/Sensor#getId()">
1137 * android.hardware.Sensor's getId()</a> and no mapping exists between the values.
Elliott Hughes3d70e532019-10-29 08:59:39 -07001138 *
1139 * Available since API level 29.
Brian Stack8228fa72019-01-04 14:15:13 -08001140 */
Elliott Hughes3d70e532019-10-29 08:59:39 -07001141int ASensor_getHandle(ASensor const* sensor) __INTRODUCED_IN(29);
Brian Stack8228fa72019-01-04 14:15:13 -08001142
Mathias Agopiane1c61d32012-03-23 14:19:36 -07001143#ifdef __cplusplus
1144};
1145#endif
1146
1147#endif // ANDROID_SENSOR_H
Johan Euphrosinebf6d5e02015-03-27 17:15:43 -07001148
1149/** @} */