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Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -07001/*
2 * Copyright (C) 2021 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 <media/SensorPoseProvider.h>
18
19#define LOG_TAG "SensorPoseProvider"
20
21#include <inttypes.h>
22
23#include <future>
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070024#include <map>
25#include <thread>
26
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -070027#include <android-base/thread_annotations.h>
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070028#include <log/log_main.h>
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070029#include <sensor/SensorEventQueue.h>
30#include <sensor/SensorManager.h>
31#include <utils/Looper.h>
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070032
Ytai Ben-Tsvi54f07582021-09-13 12:09:42 -070033#include "QuaternionUtil.h"
34
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070035namespace android {
36namespace media {
37namespace {
38
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070039// Identifier to use for our event queue on the loop.
40// The number 19 is arbitrary, only useful if using multiple objects on the same looper.
41constexpr int kIdent = 19;
42
43static inline Looper* ALooper_to_Looper(ALooper* alooper) {
44 return reinterpret_cast<Looper*>(alooper);
45}
46
47static inline ALooper* Looper_to_ALooper(Looper* looper) {
48 return reinterpret_cast<ALooper*>(looper);
49}
50
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070051/**
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070052 * RAII-wrapper around SensorEventQueue, which unregisters it on destruction.
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070053 */
54class EventQueueGuard {
55 public:
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070056 EventQueueGuard(const sp<SensorEventQueue>& queue, Looper* looper) : mQueue(queue) {
57 mQueue->looper = Looper_to_ALooper(looper);
58 mQueue->requestAdditionalInfo = false;
59 looper->addFd(mQueue->getFd(), kIdent, ALOOPER_EVENT_INPUT, nullptr, nullptr);
60 }
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070061
62 ~EventQueueGuard() {
63 if (mQueue) {
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070064 ALooper_to_Looper(mQueue->looper)->removeFd(mQueue->getFd());
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070065 }
66 }
67
68 EventQueueGuard(const EventQueueGuard&) = delete;
69 EventQueueGuard& operator=(const EventQueueGuard&) = delete;
70
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070071 [[nodiscard]] SensorEventQueue* get() const { return mQueue.get(); }
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070072
73 private:
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070074 sp<SensorEventQueue> mQueue;
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070075};
76
77/**
78 * RAII-wrapper around an enabled sensor, which disables it upon destruction.
79 */
80class SensorEnableGuard {
81 public:
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070082 SensorEnableGuard(const sp<SensorEventQueue>& queue, int32_t sensor)
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070083 : mQueue(queue), mSensor(sensor) {}
84
85 ~SensorEnableGuard() {
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070086 if (mSensor != SensorPoseProvider::INVALID_HANDLE) {
87 int ret = mQueue->disableSensor(mSensor);
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070088 if (ret) {
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -070089 ALOGE("Failed to disable sensor: %s", strerror(ret));
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -070090 }
91 }
92 }
93
94 SensorEnableGuard(const SensorEnableGuard&) = delete;
95 SensorEnableGuard& operator=(const SensorEnableGuard&) = delete;
96
97 // Enable moving.
98 SensorEnableGuard(SensorEnableGuard&& other) : mQueue(other.mQueue), mSensor(other.mSensor) {
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -070099 other.mSensor = SensorPoseProvider::INVALID_HANDLE;
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700100 }
101
102 private:
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700103 sp<SensorEventQueue> const mQueue;
104 int32_t mSensor;
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700105};
106
107/**
108 * Streams the required events to a PoseListener, based on events originating from the Sensor stack.
109 */
110class SensorPoseProviderImpl : public SensorPoseProvider {
111 public:
112 static std::unique_ptr<SensorPoseProvider> create(const char* packageName, Listener* listener) {
113 std::unique_ptr<SensorPoseProviderImpl> result(
114 new SensorPoseProviderImpl(packageName, listener));
115 return result->waitInitFinished() ? std::move(result) : nullptr;
116 }
117
118 ~SensorPoseProviderImpl() override {
Ytai Ben-Tsvic29bad62021-09-09 10:22:52 -0700119 // Disable all active sensors.
120 mEnabledSensors.clear();
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700121 mLooper->wake();
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700122 mThread.join();
123 }
124
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700125 bool startSensor(int32_t sensor, std::chrono::microseconds samplingPeriod) override {
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700126 // Figure out the sensor's data format.
127 DataFormat format = getSensorFormat(sensor);
128 if (format == DataFormat::kUnknown) {
129 ALOGE("Unknown format for sensor %" PRId32, sensor);
130 return false;
131 }
132
133 {
134 std::lock_guard lock(mMutex);
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800135 mEnabledSensorsExtra.emplace(sensor, SensorExtra{ .format = format });
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700136 }
137
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700138 // Enable the sensor.
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700139 if (mQueue->enableSensor(sensor, samplingPeriod.count(), 0, 0)) {
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700140 ALOGE("Failed to enable sensor");
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700141 std::lock_guard lock(mMutex);
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800142 mEnabledSensorsExtra.erase(sensor);
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700143 return false;
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700144 }
145
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700146 mEnabledSensors.emplace(sensor, SensorEnableGuard(mQueue.get(), sensor));
147 return true;
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700148 }
149
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700150 void stopSensor(int handle) override {
151 mEnabledSensors.erase(handle);
152 std::lock_guard lock(mMutex);
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800153 mEnabledSensorsExtra.erase(handle);
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700154 }
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700155
156 private:
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700157 enum DataFormat {
158 kUnknown,
159 kQuaternion,
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800160 kRotationVectorsAndDiscontinuityCount,
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700161 };
162
163 struct PoseEvent {
164 Pose3f pose;
165 std::optional<Twist3f> twist;
166 bool isNewReference;
167 };
168
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800169 struct SensorExtra {
170 DataFormat format;
171 std::optional<int32_t> discontinuityCount;
172 };
173
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700174 sp<Looper> mLooper;
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700175 Listener* const mListener;
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700176 SensorManager* const mSensorManager;
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700177 std::thread mThread;
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700178 std::mutex mMutex;
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700179 std::map<int32_t, SensorEnableGuard> mEnabledSensors;
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800180 std::map<int32_t, SensorExtra> mEnabledSensorsExtra GUARDED_BY(mMutex);
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700181 sp<SensorEventQueue> mQueue;
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700182
183 // We must do some of the initialization operations on the worker thread, because the API relies
184 // on the thread-local looper. In addition, as a matter of convenience, we store some of the
185 // state on the stack.
186 // For that reason, we use a two-step initialization approach, where the ctor mostly just starts
187 // the worker thread and that thread would notify, via the promise below whenever initialization
188 // is finished, and whether it was successful.
189 std::promise<bool> mInitPromise;
190
191 SensorPoseProviderImpl(const char* packageName, Listener* listener)
192 : mListener(listener),
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700193 mSensorManager(&SensorManager::getInstanceForPackage(String16(packageName))),
194 mThread([this] { threadFunc(); }) {}
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700195
196 void initFinished(bool success) { mInitPromise.set_value(success); }
197
198 bool waitInitFinished() { return mInitPromise.get_future().get(); }
199
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700200 void threadFunc() {
Ytai Ben-Tsvid9125692021-08-24 08:53:38 -0700201 // Obtain looper.
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700202 mLooper = Looper::prepare(ALOOPER_PREPARE_ALLOW_NON_CALLBACKS);
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700203
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700204 // Create event queue.
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700205 mQueue = mSensorManager->createEventQueue();
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700206
Ytai Ben-Tsvic29bad62021-09-09 10:22:52 -0700207 if (mQueue == nullptr) {
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700208 ALOGE("Failed to create a sensor event queue");
209 initFinished(false);
210 return;
211 }
212
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700213 EventQueueGuard eventQueueGuard(mQueue, mLooper.get());
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700214
215 initFinished(true);
216
217 while (true) {
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700218 int ret = mLooper->pollOnce(-1 /* no timeout */, nullptr, nullptr, nullptr);
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700219
220 switch (ret) {
221 case ALOOPER_POLL_WAKE:
222 // Normal way to exit.
223 return;
224
225 case kIdent:
226 // Possible events on our queue.
227 break;
228
229 default:
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700230 ALOGE("Unexpected status out of Looper::pollOnce: %d", ret);
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700231 }
232
233 // Process an event.
234 ASensorEvent event;
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700235 ssize_t actual = mQueue->read(&event, 1);
236 if (actual > 0) {
237 mQueue->sendAck(&event, actual);
238 }
239 ssize_t size = mQueue->filterEvents(&event, actual);
240
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700241 if (size < 0 || size > 1) {
Ytai Ben-Tsvi9f12f172021-09-23 16:47:25 -0700242 ALOGE("Unexpected return value from SensorEventQueue::filterEvents: %zd", size);
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700243 break;
244 }
245 if (size == 0) {
246 // No events.
247 continue;
248 }
249
250 handleEvent(event);
251 }
252 }
253
254 void handleEvent(const ASensorEvent& event) {
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800255 PoseEvent value;
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700256 {
257 std::lock_guard lock(mMutex);
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800258 auto iter = mEnabledSensorsExtra.find(event.sensor);
259 if (iter == mEnabledSensorsExtra.end()) {
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700260 // This can happen if we have any pending events shortly after stopping.
261 return;
262 }
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800263 value = parseEvent(event, iter->second.format, &iter->second.discontinuityCount);
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700264 }
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700265 mListener->onPose(event.timestamp, event.sensor, value.pose, value.twist,
266 value.isNewReference);
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700267 }
268
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700269 DataFormat getSensorFormat(int32_t handle) {
270 std::optional<const Sensor> sensor = getSensorByHandle(handle);
271 if (!sensor) {
272 ALOGE("Sensor not found: %d", handle);
273 return DataFormat::kUnknown;
274 }
275 if (sensor->getType() == ASENSOR_TYPE_ROTATION_VECTOR ||
276 sensor->getType() == ASENSOR_TYPE_GAME_ROTATION_VECTOR) {
277 return DataFormat::kQuaternion;
278 }
279
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800280 if (sensor->getType() == ASENSOR_TYPE_HEAD_TRACKER) {
281 return DataFormat::kRotationVectorsAndDiscontinuityCount;
282 }
283
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700284 return DataFormat::kUnknown;
285 }
286
Andy Hunga461a002022-05-17 10:36:02 -0700287 std::optional<const Sensor> getSensorByHandle(int32_t handle) override {
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700288 const Sensor* const* list;
289 ssize_t size;
290
291 // Search static sensor list.
292 size = mSensorManager->getSensorList(&list);
293 if (size < 0) {
294 ALOGE("getSensorList failed with error code %zd", size);
295 return std::nullopt;
296 }
297 for (size_t i = 0; i < size; ++i) {
298 if (list[i]->getHandle() == handle) {
299 return *list[i];
300 }
301 }
302
303 // Search dynamic sensor list.
304 Vector<Sensor> dynList;
305 size = mSensorManager->getDynamicSensorList(dynList);
306 if (size < 0) {
307 ALOGE("getDynamicSensorList failed with error code %zd", size);
308 return std::nullopt;
309 }
310 for (size_t i = 0; i < size; ++i) {
311 if (dynList[i].getHandle() == handle) {
312 return dynList[i];
313 }
314 }
315
316 return std::nullopt;
317 }
318
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800319 static PoseEvent parseEvent(const ASensorEvent& event, DataFormat format,
320 std::optional<int32_t>* discontinutyCount) {
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700321 switch (format) {
322 case DataFormat::kQuaternion: {
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700323 Eigen::Quaternionf quat(event.data[3], event.data[0], event.data[1], event.data[2]);
Ytai Ben-Tsvi54f07582021-09-13 12:09:42 -0700324 // Adapt to different frame convention.
325 quat *= rotateX(-M_PI_2);
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700326 return PoseEvent{Pose3f(quat), std::optional<Twist3f>(), false};
327 }
328
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800329 case DataFormat::kRotationVectorsAndDiscontinuityCount: {
330 Eigen::Vector3f rotation = {event.head_tracker.rx, event.head_tracker.ry,
331 event.head_tracker.rz};
332 Eigen::Vector3f twist = {event.head_tracker.vx, event.head_tracker.vy,
Ytai Ben-Tsvi27bbea32022-01-28 18:01:06 -0800333 event.head_tracker.vz};
Ytai Ben-Tsvi87b06212022-01-20 16:52:03 -0800334 Eigen::Quaternionf quat = rotationVectorToQuaternion(rotation);
335 bool isNewReference =
336 !discontinutyCount->has_value() ||
337 discontinutyCount->value() != event.head_tracker.discontinuity_count;
338 *discontinutyCount = event.head_tracker.discontinuity_count;
339
340 return PoseEvent{Pose3f(quat), Twist3f(Eigen::Vector3f::Zero(), twist),
341 isNewReference};
342 }
343
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700344 default:
Ytai Ben-Tsvi2c694be2021-10-06 17:12:49 -0700345 LOG_ALWAYS_FATAL("Unexpected sensor type: %d", static_cast<int>(format));
Ytai Ben-Tsvi779d1ee2021-07-27 05:56:22 -0700346 }
347 }
348};
349
350} // namespace
351
352std::unique_ptr<SensorPoseProvider> SensorPoseProvider::create(const char* packageName,
353 Listener* listener) {
354 return SensorPoseProviderImpl::create(packageName, listener);
355}
356
357} // namespace media
358} // namespace android