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Mathias Agopian589ce852010-07-13 22:21:56 -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
17#include <stdint.h>
18#include <sys/types.h>
Aravind Akellad9441e42014-05-13 18:20:30 -070019#include <sys/limits.h>
Mathias Agopian589ce852010-07-13 22:21:56 -070020
21#include <utils/Errors.h>
22#include <utils/String8.h>
23#include <utils/Flattenable.h>
24
25#include <hardware/sensors.h>
26
27#include <gui/Sensor.h>
Aravind Akellad9441e42014-05-13 18:20:30 -070028#include <log/log.h>
Mathias Agopian589ce852010-07-13 22:21:56 -070029
30// ----------------------------------------------------------------------------
31namespace android {
32// ----------------------------------------------------------------------------
33
34Sensor::Sensor()
35 : mHandle(0), mType(0),
36 mMinValue(0), mMaxValue(0), mResolution(0),
Aravind Akella9a844cf2014-02-11 18:58:52 -080037 mPower(0), mMinDelay(0), mFifoReservedEventCount(0), mFifoMaxEventCount(0),
Aravind Akella0e025c52014-06-03 19:19:57 -070038 mMaxDelay(0), mFlags(0)
Mathias Agopian589ce852010-07-13 22:21:56 -070039{
40}
41
Aravind Akella724d91d2013-06-27 12:04:23 -070042Sensor::Sensor(struct sensor_t const* hwSensor, int halVersion)
Mathias Agopiana7352c92010-07-14 23:41:37 -070043{
44 mName = hwSensor->name;
45 mVendor = hwSensor->vendor;
Mathias Agopian2ebc4d62012-05-04 15:47:13 -070046 mVersion = hwSensor->version;
Mathias Agopiana7352c92010-07-14 23:41:37 -070047 mHandle = hwSensor->handle;
48 mType = hwSensor->type;
49 mMinValue = 0; // FIXME: minValue
50 mMaxValue = hwSensor->maxRange; // FIXME: maxValue
51 mResolution = hwSensor->resolution;
52 mPower = hwSensor->power;
Mathias Agopiana48bcf62010-07-29 16:51:38 -070053 mMinDelay = hwSensor->minDelay;
Aravind Akella0e025c52014-06-03 19:19:57 -070054 mFlags = 0;
Aravind Akella70018042014-04-07 22:52:37 +000055
Aravind Akella724d91d2013-06-27 12:04:23 -070056 // Set fifo event count zero for older devices which do not support batching. Fused
57 // sensors also have their fifo counts set to zero.
58 if (halVersion >= SENSORS_DEVICE_API_VERSION_1_1) {
59 mFifoReservedEventCount = hwSensor->fifoReservedEventCount;
60 mFifoMaxEventCount = hwSensor->fifoMaxEventCount;
Aravind Akellad35e3af2014-05-12 17:14:56 -070061 } else {
62 mFifoReservedEventCount = 0;
63 mFifoMaxEventCount = 0;
Aravind Akella70018042014-04-07 22:52:37 +000064 }
65
Aravind Akellad9441e42014-05-13 18:20:30 -070066 if (halVersion >= SENSORS_DEVICE_API_VERSION_1_3) {
67 if (hwSensor->maxDelay > INT_MAX) {
68 // Max delay is declared as a 64 bit integer for 64 bit architectures. But it should
69 // always fit in a 32 bit integer, log error and cap it to INT_MAX.
70 ALOGE("Sensor maxDelay overflow error %s %lld", mName.string(), hwSensor->maxDelay);
71 mMaxDelay = INT_MAX;
72 } else {
73 mMaxDelay = (int32_t) hwSensor->maxDelay;
74 }
75 } else {
76 // For older hals set maxDelay to 0.
77 mMaxDelay = 0;
78 }
79
Aravind Akella0e025c52014-06-03 19:19:57 -070080 // Ensure existing sensors have correct string type, required permissions and reporting mode.
Aravind Akella70018042014-04-07 22:52:37 +000081 switch (mType) {
82 case SENSOR_TYPE_ACCELEROMETER:
83 mStringType = SENSOR_STRING_TYPE_ACCELEROMETER;
Aravind Akella0e025c52014-06-03 19:19:57 -070084 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +000085 break;
86 case SENSOR_TYPE_AMBIENT_TEMPERATURE:
87 mStringType = SENSOR_STRING_TYPE_AMBIENT_TEMPERATURE;
Aravind Akella0e025c52014-06-03 19:19:57 -070088 mFlags |= SENSOR_FLAG_ON_CHANGE_MODE;
Aravind Akella70018042014-04-07 22:52:37 +000089 break;
90 case SENSOR_TYPE_GAME_ROTATION_VECTOR:
91 mStringType = SENSOR_STRING_TYPE_GAME_ROTATION_VECTOR;
Aravind Akella0e025c52014-06-03 19:19:57 -070092 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +000093 break;
94 case SENSOR_TYPE_GEOMAGNETIC_ROTATION_VECTOR:
95 mStringType = SENSOR_STRING_TYPE_GEOMAGNETIC_ROTATION_VECTOR;
Aravind Akella0e025c52014-06-03 19:19:57 -070096 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +000097 break;
98 case SENSOR_TYPE_GRAVITY:
99 mStringType = SENSOR_STRING_TYPE_GRAVITY;
Aravind Akella0e025c52014-06-03 19:19:57 -0700100 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000101 break;
102 case SENSOR_TYPE_GYROSCOPE:
103 mStringType = SENSOR_STRING_TYPE_GYROSCOPE;
Aravind Akella0e025c52014-06-03 19:19:57 -0700104 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000105 break;
106 case SENSOR_TYPE_GYROSCOPE_UNCALIBRATED:
107 mStringType = SENSOR_STRING_TYPE_GYROSCOPE_UNCALIBRATED;
Aravind Akella0e025c52014-06-03 19:19:57 -0700108 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000109 break;
110 case SENSOR_TYPE_HEART_RATE:
111 mStringType = SENSOR_STRING_TYPE_HEART_RATE;
112 mRequiredPermission = SENSOR_PERMISSION_BODY_SENSORS;
Aravind Akella0e025c52014-06-03 19:19:57 -0700113 mFlags |= SENSOR_FLAG_ON_CHANGE_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000114 break;
115 case SENSOR_TYPE_LIGHT:
116 mStringType = SENSOR_STRING_TYPE_LIGHT;
Aravind Akella0e025c52014-06-03 19:19:57 -0700117 mFlags |= SENSOR_FLAG_ON_CHANGE_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000118 break;
119 case SENSOR_TYPE_LINEAR_ACCELERATION:
120 mStringType = SENSOR_STRING_TYPE_LINEAR_ACCELERATION;
Aravind Akella0e025c52014-06-03 19:19:57 -0700121 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000122 break;
123 case SENSOR_TYPE_MAGNETIC_FIELD:
124 mStringType = SENSOR_STRING_TYPE_MAGNETIC_FIELD;
Aravind Akella0e025c52014-06-03 19:19:57 -0700125 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000126 break;
127 case SENSOR_TYPE_MAGNETIC_FIELD_UNCALIBRATED:
128 mStringType = SENSOR_STRING_TYPE_MAGNETIC_FIELD_UNCALIBRATED;
Aravind Akella0e025c52014-06-03 19:19:57 -0700129 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000130 break;
131 case SENSOR_TYPE_ORIENTATION:
132 mStringType = SENSOR_STRING_TYPE_ORIENTATION;
Aravind Akella0e025c52014-06-03 19:19:57 -0700133 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000134 break;
135 case SENSOR_TYPE_PRESSURE:
136 mStringType = SENSOR_STRING_TYPE_PRESSURE;
Aravind Akella0e025c52014-06-03 19:19:57 -0700137 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000138 break;
139 case SENSOR_TYPE_PROXIMITY:
140 mStringType = SENSOR_STRING_TYPE_PROXIMITY;
Aravind Akella0e025c52014-06-03 19:19:57 -0700141 mFlags |= (SENSOR_FLAG_ON_CHANGE_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella70018042014-04-07 22:52:37 +0000142 break;
143 case SENSOR_TYPE_RELATIVE_HUMIDITY:
144 mStringType = SENSOR_STRING_TYPE_RELATIVE_HUMIDITY;
Aravind Akella0e025c52014-06-03 19:19:57 -0700145 mFlags |= SENSOR_FLAG_ON_CHANGE_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000146 break;
147 case SENSOR_TYPE_ROTATION_VECTOR:
148 mStringType = SENSOR_STRING_TYPE_ROTATION_VECTOR;
Aravind Akella0e025c52014-06-03 19:19:57 -0700149 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000150 break;
151 case SENSOR_TYPE_SIGNIFICANT_MOTION:
152 mStringType = SENSOR_STRING_TYPE_SIGNIFICANT_MOTION;
Aravind Akella0e025c52014-06-03 19:19:57 -0700153 mFlags |= (SENSOR_FLAG_ONE_SHOT_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella70018042014-04-07 22:52:37 +0000154 break;
155 case SENSOR_TYPE_STEP_COUNTER:
156 mStringType = SENSOR_STRING_TYPE_STEP_COUNTER;
Aravind Akella0e025c52014-06-03 19:19:57 -0700157 mFlags |= SENSOR_FLAG_ON_CHANGE_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000158 break;
159 case SENSOR_TYPE_STEP_DETECTOR:
160 mStringType = SENSOR_STRING_TYPE_STEP_DETECTOR;
Aravind Akella0e025c52014-06-03 19:19:57 -0700161 mFlags |= SENSOR_FLAG_SPECIAL_REPORTING_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000162 break;
163 case SENSOR_TYPE_TEMPERATURE:
164 mStringType = SENSOR_STRING_TYPE_TEMPERATURE;
Aravind Akella0e025c52014-06-03 19:19:57 -0700165 mFlags |= SENSOR_FLAG_ON_CHANGE_MODE;
Aravind Akella70018042014-04-07 22:52:37 +0000166 break;
Aravind Akella9a844cf2014-02-11 18:58:52 -0800167 case SENSOR_TYPE_NON_WAKE_UP_PROXIMITY_SENSOR:
168 mStringType = SENSOR_STRING_TYPE_NON_WAKE_UP_PROXIMITY_SENSOR;
Aravind Akella0e025c52014-06-03 19:19:57 -0700169 mFlags |= SENSOR_FLAG_ON_CHANGE_MODE;
Aravind Akella9a844cf2014-02-11 18:58:52 -0800170 break;
171 case SENSOR_TYPE_WAKE_UP_ACCELEROMETER:
172 mStringType = SENSOR_STRING_TYPE_WAKE_UP_ACCELEROMETER;
Aravind Akella0e025c52014-06-03 19:19:57 -0700173 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800174 break;
175 case SENSOR_TYPE_WAKE_UP_MAGNETIC_FIELD:
176 mStringType = SENSOR_STRING_TYPE_WAKE_UP_MAGNETIC_FIELD;
Aravind Akella0e025c52014-06-03 19:19:57 -0700177 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800178 break;
179 case SENSOR_TYPE_WAKE_UP_ORIENTATION:
180 mStringType = SENSOR_STRING_TYPE_WAKE_UP_ORIENTATION;
Aravind Akella0e025c52014-06-03 19:19:57 -0700181 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800182 break;
183 case SENSOR_TYPE_WAKE_UP_GYROSCOPE:
184 mStringType = SENSOR_STRING_TYPE_WAKE_UP_GYROSCOPE;
Aravind Akella0e025c52014-06-03 19:19:57 -0700185 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800186 break;
187 case SENSOR_TYPE_WAKE_UP_LIGHT:
188 mStringType = SENSOR_STRING_TYPE_WAKE_UP_LIGHT;
Aravind Akella0e025c52014-06-03 19:19:57 -0700189 mFlags |= (SENSOR_FLAG_ON_CHANGE_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800190 break;
191 case SENSOR_TYPE_WAKE_UP_PRESSURE:
192 mStringType = SENSOR_STRING_TYPE_WAKE_UP_PRESSURE;
Aravind Akella0e025c52014-06-03 19:19:57 -0700193 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800194 break;
195 case SENSOR_TYPE_WAKE_UP_GRAVITY:
196 mStringType = SENSOR_STRING_TYPE_WAKE_UP_GRAVITY;
Aravind Akella0e025c52014-06-03 19:19:57 -0700197 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800198 break;
199 case SENSOR_TYPE_WAKE_UP_LINEAR_ACCELERATION:
200 mStringType = SENSOR_STRING_TYPE_WAKE_UP_LINEAR_ACCELERATION;
Aravind Akella0e025c52014-06-03 19:19:57 -0700201 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800202 break;
203 case SENSOR_TYPE_WAKE_UP_ROTATION_VECTOR:
204 mStringType = SENSOR_STRING_TYPE_WAKE_UP_ROTATION_VECTOR;
Aravind Akella0e025c52014-06-03 19:19:57 -0700205 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800206 break;
207 case SENSOR_TYPE_WAKE_UP_RELATIVE_HUMIDITY:
208 mStringType = SENSOR_STRING_TYPE_WAKE_UP_RELATIVE_HUMIDITY;
Aravind Akella0e025c52014-06-03 19:19:57 -0700209 mFlags |= (SENSOR_FLAG_SPECIAL_REPORTING_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800210 break;
211 case SENSOR_TYPE_WAKE_UP_AMBIENT_TEMPERATURE:
212 mStringType = SENSOR_STRING_TYPE_WAKE_UP_AMBIENT_TEMPERATURE;
Aravind Akella0e025c52014-06-03 19:19:57 -0700213 mFlags |= (SENSOR_FLAG_ON_CHANGE_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800214 break;
215 case SENSOR_TYPE_WAKE_UP_MAGNETIC_FIELD_UNCALIBRATED:
216 mStringType = SENSOR_STRING_TYPE_WAKE_UP_MAGNETIC_FIELD_UNCALIBRATED;
Aravind Akella0e025c52014-06-03 19:19:57 -0700217 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800218 break;
219 case SENSOR_TYPE_WAKE_UP_GAME_ROTATION_VECTOR:
220 mStringType = SENSOR_STRING_TYPE_WAKE_UP_GAME_ROTATION_VECTOR;
Aravind Akella0e025c52014-06-03 19:19:57 -0700221 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800222 break;
223 case SENSOR_TYPE_WAKE_UP_GYROSCOPE_UNCALIBRATED:
224 mStringType = SENSOR_STRING_TYPE_WAKE_UP_GYROSCOPE_UNCALIBRATED;
Aravind Akella0e025c52014-06-03 19:19:57 -0700225 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800226 break;
227 case SENSOR_TYPE_WAKE_UP_STEP_DETECTOR:
228 mStringType = SENSOR_STRING_TYPE_WAKE_UP_STEP_DETECTOR;
Aravind Akella0e025c52014-06-03 19:19:57 -0700229 mFlags |= (SENSOR_FLAG_SPECIAL_REPORTING_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800230 break;
231 case SENSOR_TYPE_WAKE_UP_STEP_COUNTER:
232 mStringType = SENSOR_STRING_TYPE_WAKE_UP_STEP_COUNTER;
Aravind Akella0e025c52014-06-03 19:19:57 -0700233 mFlags |= (SENSOR_FLAG_ON_CHANGE_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800234 break;
235 case SENSOR_TYPE_WAKE_UP_GEOMAGNETIC_ROTATION_VECTOR:
236 mStringType = SENSOR_STRING_TYPE_WAKE_UP_GEOMAGNETIC_ROTATION_VECTOR;
Aravind Akella0e025c52014-06-03 19:19:57 -0700237 mFlags |= (SENSOR_FLAG_CONTINUOUS_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800238 break;
239 case SENSOR_TYPE_WAKE_UP_HEART_RATE:
240 mStringType = SENSOR_STRING_TYPE_WAKE_UP_HEART_RATE;
241 mRequiredPermission = SENSOR_PERMISSION_BODY_SENSORS;
Aravind Akella0e025c52014-06-03 19:19:57 -0700242 mFlags |= (SENSOR_FLAG_ON_CHANGE_MODE | SENSOR_FLAG_WAKE_UP);
243 break;
244 case SENSOR_TYPE_WAKE_UP_TILT_DETECTOR:
245 mStringType = SENSOR_STRING_TYPE_WAKE_UP_TILT_DETECTOR;
246 mFlags |= (SENSOR_FLAG_SPECIAL_REPORTING_MODE | SENSOR_FLAG_WAKE_UP);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800247 break;
Etienne Le Grande284a902014-05-07 19:49:05 -0700248 case SENSOR_TYPE_WAKE_GESTURE:
249 mStringType = SENSOR_STRING_TYPE_WAKE_GESTURE;
Aravind Akella0e025c52014-06-03 19:19:57 -0700250 mFlags |= (SENSOR_FLAG_ONE_SHOT_MODE | SENSOR_FLAG_WAKE_UP);
Etienne Le Grande284a902014-05-07 19:49:05 -0700251 break;
Aravind Akella70018042014-04-07 22:52:37 +0000252 default:
Aravind Akella9a844cf2014-02-11 18:58:52 -0800253 // Only pipe the stringType, requiredPermission and flags for custom sensors.
Aravind Akella70018042014-04-07 22:52:37 +0000254 if (halVersion >= SENSORS_DEVICE_API_VERSION_1_2 && hwSensor->stringType) {
255 mStringType = hwSensor->stringType;
256 }
257 if (halVersion >= SENSORS_DEVICE_API_VERSION_1_2 && hwSensor->requiredPermission) {
258 mRequiredPermission = hwSensor->requiredPermission;
259 }
Aravind Akella0e025c52014-06-03 19:19:57 -0700260
Aravind Akella9a844cf2014-02-11 18:58:52 -0800261 if (halVersion >= SENSORS_DEVICE_API_VERSION_1_3) {
Aravind Akella0e025c52014-06-03 19:19:57 -0700262 mFlags = (int32_t) hwSensor->flags;
263 } else {
264 // This is an OEM defined sensor on an older HAL. Use minDelay to determine the
265 // reporting mode of the sensor.
266 if (mMinDelay > 0) {
267 mFlags |= SENSOR_FLAG_CONTINUOUS_MODE;
268 } else if (mMinDelay == 0) {
269 mFlags |= SENSOR_FLAG_ON_CHANGE_MODE;
270 } else if (mMinDelay < 0) {
271 mFlags |= SENSOR_FLAG_ONE_SHOT_MODE;
272 }
Aravind Akella9a844cf2014-02-11 18:58:52 -0800273 }
Aravind Akella70018042014-04-07 22:52:37 +0000274 break;
Aravind Akella724d91d2013-06-27 12:04:23 -0700275 }
Mathias Agopiana7352c92010-07-14 23:41:37 -0700276}
277
Mathias Agopian589ce852010-07-13 22:21:56 -0700278Sensor::~Sensor()
279{
280}
281
282const String8& Sensor::getName() const {
283 return mName;
284}
285
286const String8& Sensor::getVendor() const {
287 return mVendor;
288}
289
290int32_t Sensor::getHandle() const {
291 return mHandle;
292}
293
294int32_t Sensor::getType() const {
295 return mType;
296}
297
298float Sensor::getMinValue() const {
299 return mMinValue;
300}
301
302float Sensor::getMaxValue() const {
303 return mMaxValue;
304}
305
306float Sensor::getResolution() const {
307 return mResolution;
308}
309
310float Sensor::getPowerUsage() const {
311 return mPower;
312}
313
Mathias Agopiana48bcf62010-07-29 16:51:38 -0700314int32_t Sensor::getMinDelay() const {
315 return mMinDelay;
316}
317
Mathias Agopianb62013f2011-05-17 22:54:42 -0700318nsecs_t Sensor::getMinDelayNs() const {
319 return getMinDelay() * 1000;
320}
321
322int32_t Sensor::getVersion() const {
323 return mVersion;
324}
325
Aravind Akella724d91d2013-06-27 12:04:23 -0700326int32_t Sensor::getFifoReservedEventCount() const {
327 return mFifoReservedEventCount;
328}
329
330int32_t Sensor::getFifoMaxEventCount() const {
331 return mFifoMaxEventCount;
332}
333
Aravind Akella70018042014-04-07 22:52:37 +0000334const String8& Sensor::getStringType() const {
335 return mStringType;
336}
337
338const String8& Sensor::getRequiredPermission() const {
339 return mRequiredPermission;
340}
341
Aravind Akellad9441e42014-05-13 18:20:30 -0700342int32_t Sensor::getMaxDelay() const {
343 return mMaxDelay;
344}
345
Aravind Akella0e025c52014-06-03 19:19:57 -0700346int32_t Sensor::getFlags() const {
347 return mFlags;
348}
349
Aravind Akella9a844cf2014-02-11 18:58:52 -0800350bool Sensor::isWakeUpSensor() const {
Aravind Akella0e025c52014-06-03 19:19:57 -0700351 return mFlags & SENSOR_FLAG_WAKE_UP;
352}
353
354int32_t Sensor::getReportingMode() const {
355 return ((mFlags & REPORTING_MODE_MASK) >> REPORTING_MODE_SHIFT);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800356}
357
Mathias Agopiane1424282013-07-29 21:24:40 -0700358size_t Sensor::getFlattenedSize() const
Mathias Agopian589ce852010-07-13 22:21:56 -0700359{
Mathias Agopiane1424282013-07-29 21:24:40 -0700360 size_t fixedSize =
Mathias Agopian2ebc4d62012-05-04 15:47:13 -0700361 sizeof(int32_t) * 3 +
Mathias Agopiana48bcf62010-07-29 16:51:38 -0700362 sizeof(float) * 4 +
Aravind Akella0e025c52014-06-03 19:19:57 -0700363 sizeof(int32_t) * 5;
Mathias Agopiane1424282013-07-29 21:24:40 -0700364
365 size_t variableSize =
Aravind Akella70018042014-04-07 22:52:37 +0000366 sizeof(uint32_t) + FlattenableUtils::align<4>(mName.length()) +
367 sizeof(uint32_t) + FlattenableUtils::align<4>(mVendor.length()) +
368 sizeof(uint32_t) + FlattenableUtils::align<4>(mStringType.length()) +
369 sizeof(uint32_t) + FlattenableUtils::align<4>(mRequiredPermission.length());
Mathias Agopiane1424282013-07-29 21:24:40 -0700370
371 return fixedSize + variableSize;
Mathias Agopian589ce852010-07-13 22:21:56 -0700372}
373
Mathias Agopiane1424282013-07-29 21:24:40 -0700374status_t Sensor::flatten(void* buffer, size_t size) const {
375 if (size < getFlattenedSize()) {
376 return NO_MEMORY;
377 }
Mathias Agopian589ce852010-07-13 22:21:56 -0700378
Aravind Akella70018042014-04-07 22:52:37 +0000379 flattenString8(buffer, size, mName);
380 flattenString8(buffer, size, mVendor);
Mathias Agopiane1424282013-07-29 21:24:40 -0700381 FlattenableUtils::write(buffer, size, mVersion);
382 FlattenableUtils::write(buffer, size, mHandle);
383 FlattenableUtils::write(buffer, size, mType);
384 FlattenableUtils::write(buffer, size, mMinValue);
385 FlattenableUtils::write(buffer, size, mMaxValue);
386 FlattenableUtils::write(buffer, size, mResolution);
387 FlattenableUtils::write(buffer, size, mPower);
388 FlattenableUtils::write(buffer, size, mMinDelay);
Aravind Akella724d91d2013-06-27 12:04:23 -0700389 FlattenableUtils::write(buffer, size, mFifoReservedEventCount);
390 FlattenableUtils::write(buffer, size, mFifoMaxEventCount);
Aravind Akella70018042014-04-07 22:52:37 +0000391 flattenString8(buffer, size, mStringType);
392 flattenString8(buffer, size, mRequiredPermission);
Aravind Akellad9441e42014-05-13 18:20:30 -0700393 FlattenableUtils::write(buffer, size, mMaxDelay);
Aravind Akella0e025c52014-06-03 19:19:57 -0700394 FlattenableUtils::write(buffer, size, mFlags);
Mathias Agopian589ce852010-07-13 22:21:56 -0700395 return NO_ERROR;
396}
397
Mathias Agopiane1424282013-07-29 21:24:40 -0700398status_t Sensor::unflatten(void const* buffer, size_t size) {
Aravind Akella70018042014-04-07 22:52:37 +0000399 if (!unflattenString8(buffer, size, mName)) {
Mathias Agopiane1424282013-07-29 21:24:40 -0700400 return NO_MEMORY;
401 }
Aravind Akella70018042014-04-07 22:52:37 +0000402 if (!unflattenString8(buffer, size, mVendor)) {
Mathias Agopiane1424282013-07-29 21:24:40 -0700403 return NO_MEMORY;
404 }
Mathias Agopiane1424282013-07-29 21:24:40 -0700405
406 size_t fixedSize =
407 sizeof(int32_t) * 3 +
408 sizeof(float) * 4 +
Aravind Akella0e025c52014-06-03 19:19:57 -0700409 sizeof(int32_t) * 5;
Mathias Agopiane1424282013-07-29 21:24:40 -0700410 if (size < fixedSize) {
411 return NO_MEMORY;
412 }
413
414 FlattenableUtils::read(buffer, size, mVersion);
415 FlattenableUtils::read(buffer, size, mHandle);
416 FlattenableUtils::read(buffer, size, mType);
417 FlattenableUtils::read(buffer, size, mMinValue);
418 FlattenableUtils::read(buffer, size, mMaxValue);
419 FlattenableUtils::read(buffer, size, mResolution);
420 FlattenableUtils::read(buffer, size, mPower);
421 FlattenableUtils::read(buffer, size, mMinDelay);
Aravind Akella724d91d2013-06-27 12:04:23 -0700422 FlattenableUtils::read(buffer, size, mFifoReservedEventCount);
423 FlattenableUtils::read(buffer, size, mFifoMaxEventCount);
Aravind Akella70018042014-04-07 22:52:37 +0000424
425 if (!unflattenString8(buffer, size, mStringType)) {
426 return NO_MEMORY;
427 }
428 if (!unflattenString8(buffer, size, mRequiredPermission)) {
429 return NO_MEMORY;
430 }
Aravind Akellad9441e42014-05-13 18:20:30 -0700431 FlattenableUtils::read(buffer, size, mMaxDelay);
Aravind Akella0e025c52014-06-03 19:19:57 -0700432 FlattenableUtils::read(buffer, size, mFlags);
Mathias Agopian589ce852010-07-13 22:21:56 -0700433 return NO_ERROR;
434}
435
Aravind Akella70018042014-04-07 22:52:37 +0000436void Sensor::flattenString8(void*& buffer, size_t& size,
437 const String8& string8) {
438 uint32_t len = string8.length();
439 FlattenableUtils::write(buffer, size, len);
440 memcpy(static_cast<char*>(buffer), string8.string(), len);
441 FlattenableUtils::advance(buffer, size, FlattenableUtils::align<4>(len));
442}
443
444bool Sensor::unflattenString8(void const*& buffer, size_t& size, String8& outputString8) {
445 uint32_t len;
446 if (size < sizeof(len)) {
447 return false;
448 }
449 FlattenableUtils::read(buffer, size, len);
450 if (size < len) {
451 return false;
452 }
453 outputString8.setTo(static_cast<char const*>(buffer), len);
454 FlattenableUtils::advance(buffer, size, FlattenableUtils::align<4>(len));
455 return true;
456}
457
Mathias Agopian589ce852010-07-13 22:21:56 -0700458// ----------------------------------------------------------------------------
459}; // namespace android