blob: 4c64e59615c2172b2d120cdcdfd244385352d828 [file] [log] [blame]
Arthur Ishiguro24804dc2021-11-12 17:17:09 +00001/*
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 "HidlSensorHalWrapper.h"
18#include "android/hardware/sensors/2.0/types.h"
19#include "android/hardware/sensors/2.1/ISensorsCallback.h"
20#include "android/hardware/sensors/2.1/types.h"
21#include "convertV2_1.h"
22
23#include <android-base/logging.h>
24
25using android::hardware::hidl_vec;
26using android::hardware::sensors::V1_0::RateLevel;
27using android::hardware::sensors::V1_0::Result;
28using android::hardware::sensors::V1_0::SharedMemFormat;
29using android::hardware::sensors::V1_0::SharedMemInfo;
30using android::hardware::sensors::V1_0::SharedMemType;
31using android::hardware::sensors::V2_0::EventQueueFlagBits;
32using android::hardware::sensors::V2_0::WakeLockQueueFlagBits;
33using android::hardware::sensors::V2_1::Event;
34using android::hardware::sensors::V2_1::ISensorsCallback;
35using android::hardware::sensors::V2_1::implementation::convertFromSensorEvent;
36using android::hardware::sensors::V2_1::implementation::convertToNewEvents;
37using android::hardware::sensors::V2_1::implementation::convertToNewSensorInfos;
38using android::hardware::sensors::V2_1::implementation::convertToSensor;
39using android::hardware::sensors::V2_1::implementation::ISensorsWrapperV1_0;
40using android::hardware::sensors::V2_1::implementation::ISensorsWrapperV2_0;
41using android::hardware::sensors::V2_1::implementation::ISensorsWrapperV2_1;
42
43namespace android {
44
45namespace {
46
47status_t statusFromResult(Result result) {
48 switch (result) {
49 case Result::OK:
50 return OK;
51 case Result::BAD_VALUE:
52 return BAD_VALUE;
53 case Result::PERMISSION_DENIED:
54 return PERMISSION_DENIED;
55 case Result::INVALID_OPERATION:
56 return INVALID_OPERATION;
57 case Result::NO_MEMORY:
58 return NO_MEMORY;
59 }
60}
61
62template <typename EnumType>
63constexpr typename std::underlying_type<EnumType>::type asBaseType(EnumType value) {
64 return static_cast<typename std::underlying_type<EnumType>::type>(value);
65}
66
67enum EventQueueFlagBitsInternal : uint32_t {
68 INTERNAL_WAKE = 1 << 16,
69};
70
71} // anonymous namespace
72
73void SensorsHalDeathReceiver::serviceDied(
74 uint64_t /* cookie */, const wp<::android::hidl::base::V1_0::IBase>& /* service */) {
75 ALOGW("Sensors HAL died, attempting to reconnect.");
76 mHidlSensorHalWrapper->prepareForReconnect();
77}
78
Arthur Ishiguroffef6682021-12-25 17:31:17 +000079struct HidlSensorsCallback : public ISensorsCallback {
Arthur Ishiguro24804dc2021-11-12 17:17:09 +000080 using Result = ::android::hardware::sensors::V1_0::Result;
81 using SensorInfo = ::android::hardware::sensors::V2_1::SensorInfo;
82
Arthur Ishiguroffef6682021-12-25 17:31:17 +000083 HidlSensorsCallback(ISensorHalWrapper::SensorDeviceCallback* sensorDeviceCallback) {
Arthur Ishiguro24804dc2021-11-12 17:17:09 +000084 mSensorDeviceCallback = sensorDeviceCallback;
85 }
86
87 Return<void> onDynamicSensorsConnected_2_1(
88 const hidl_vec<SensorInfo>& dynamicSensorsAdded) override {
89 std::vector<sensor_t> sensors;
90 for (const android::hardware::sensors::V2_1::SensorInfo& info : dynamicSensorsAdded) {
91 sensor_t sensor;
92 convertToSensor(info, &sensor);
93 sensors.push_back(sensor);
94 }
95
96 mSensorDeviceCallback->onDynamicSensorsConnected(sensors);
97 return Return<void>();
98 }
99
100 Return<void> onDynamicSensorsConnected(
101 const hidl_vec<android::hardware::sensors::V1_0::SensorInfo>& dynamicSensorsAdded)
102 override {
103 return onDynamicSensorsConnected_2_1(convertToNewSensorInfos(dynamicSensorsAdded));
104 }
105
106 Return<void> onDynamicSensorsDisconnected(
107 const hidl_vec<int32_t>& dynamicSensorHandlesRemoved) override {
108 mSensorDeviceCallback->onDynamicSensorsDisconnected(dynamicSensorHandlesRemoved);
109 return Return<void>();
110 }
111
112private:
113 ISensorHalWrapper::SensorDeviceCallback* mSensorDeviceCallback;
114};
115
116bool HidlSensorHalWrapper::supportsPolling() {
117 return mSensors->supportsPolling();
118}
119
120bool HidlSensorHalWrapper::supportsMessageQueues() {
121 return mSensors->supportsMessageQueues();
122}
123
124bool HidlSensorHalWrapper::connect(SensorDeviceCallback* callback) {
125 mSensorDeviceCallback = callback;
126 bool ret = connectHidlService();
127 if (mEventQueueFlag != nullptr) {
128 mEventQueueFlag->wake(asBaseType(INTERNAL_WAKE));
129 }
130 return ret;
131}
132
133void HidlSensorHalWrapper::prepareForReconnect() {
134 mReconnecting = true;
135 if (mEventQueueFlag != nullptr) {
136 mEventQueueFlag->wake(asBaseType(INTERNAL_WAKE));
137 }
138}
139
140ssize_t HidlSensorHalWrapper::poll(sensors_event_t* buffer, size_t count) {
141 ssize_t err;
142 int numHidlTransportErrors = 0;
143 bool hidlTransportError = false;
144
145 do {
Arthur Ishiguro65b59812021-12-26 19:09:54 +0000146 auto ret = mSensors->poll(count,
147 [&](auto result, const auto& events,
148 const auto& dynamicSensorsAdded) {
149 if (result == Result::OK) {
150 convertToSensorEvents(convertToNewEvents(events),
151 convertToNewSensorInfos(
152 dynamicSensorsAdded),
153 buffer);
154 err = (ssize_t)events.size();
155 } else {
156 err = statusFromResult(result);
157 }
158 });
Arthur Ishiguro24804dc2021-11-12 17:17:09 +0000159
160 if (ret.isOk()) {
161 hidlTransportError = false;
162 } else {
163 hidlTransportError = true;
164 numHidlTransportErrors++;
165 if (numHidlTransportErrors > 50) {
166 // Log error and bail
167 ALOGE("Max Hidl transport errors this cycle : %d", numHidlTransportErrors);
168 handleHidlDeath(ret.description());
169 } else {
170 std::this_thread::sleep_for(std::chrono::milliseconds(10));
171 }
172 }
173 } while (hidlTransportError);
174
175 if (numHidlTransportErrors > 0) {
176 ALOGE("Saw %d Hidl transport failures", numHidlTransportErrors);
177 HidlTransportErrorLog errLog(time(nullptr), numHidlTransportErrors);
178 mHidlTransportErrors.add(errLog);
179 mTotalHidlTransportErrors++;
180 }
181
182 return err;
183}
184
185ssize_t HidlSensorHalWrapper::pollFmq(sensors_event_t* buffer, size_t maxNumEventsToRead) {
186 ssize_t eventsRead = 0;
187 size_t availableEvents = mSensors->getEventQueue()->availableToRead();
188
189 if (availableEvents == 0) {
190 uint32_t eventFlagState = 0;
191
192 // Wait for events to become available. This is necessary so that the Event FMQ's read() is
193 // able to be called with the correct number of events to read. If the specified number of
194 // events is not available, then read() would return no events, possibly introducing
195 // additional latency in delivering events to applications.
196 if (mEventQueueFlag != nullptr) {
197 mEventQueueFlag->wait(asBaseType(EventQueueFlagBits::READ_AND_PROCESS) |
198 asBaseType(INTERNAL_WAKE),
199 &eventFlagState);
200 }
201 availableEvents = mSensors->getEventQueue()->availableToRead();
202
203 if ((eventFlagState & asBaseType(INTERNAL_WAKE)) && mReconnecting) {
204 ALOGD("Event FMQ internal wake, returning from poll with no events");
205 return DEAD_OBJECT;
206 }
207 }
208
209 size_t eventsToRead = std::min({availableEvents, maxNumEventsToRead, mEventBuffer.size()});
210 if (eventsToRead > 0) {
211 if (mSensors->getEventQueue()->read(mEventBuffer.data(), eventsToRead)) {
212 // Notify the Sensors HAL that sensor events have been read. This is required to support
213 // the use of writeBlocking by the Sensors HAL.
214 if (mEventQueueFlag != nullptr) {
215 mEventQueueFlag->wake(asBaseType(EventQueueFlagBits::EVENTS_READ));
216 }
217
218 for (size_t i = 0; i < eventsToRead; i++) {
219 convertToSensorEvent(mEventBuffer[i], &buffer[i]);
Arthur Ishiguro24804dc2021-11-12 17:17:09 +0000220 }
221 eventsRead = eventsToRead;
222 } else {
223 ALOGW("Failed to read %zu events, currently %zu events available", eventsToRead,
224 availableEvents);
225 }
226 }
227
228 return eventsRead;
229}
230
231std::vector<sensor_t> HidlSensorHalWrapper::getSensorsList() {
232 std::vector<sensor_t> sensorsFound;
233 if (mSensors != nullptr) {
234 checkReturn(mSensors->getSensorsList([&](const auto& list) {
235 for (size_t i = 0; i < list.size(); i++) {
236 sensor_t sensor;
237 convertToSensor(list[i], &sensor);
238 sensorsFound.push_back(sensor);
239
240 // Only disable all sensors on HAL 1.0 since HAL 2.0
241 // handles this in its initialize method
242 if (!mSensors->supportsMessageQueues()) {
243 checkReturn(mSensors->activate(list[i].sensorHandle, 0 /* enabled */));
244 }
245 }
246 }));
247 }
248
249 return sensorsFound;
250}
251
252status_t HidlSensorHalWrapper::setOperationMode(SensorService::Mode mode) {
253 if (mSensors == nullptr) return NO_INIT;
254 return checkReturnAndGetStatus(
255 mSensors->setOperationMode(static_cast<hardware::sensors::V1_0::OperationMode>(mode)));
256}
257
258status_t HidlSensorHalWrapper::activate(int32_t sensorHandle, bool enabled) {
259 if (mSensors == nullptr) return NO_INIT;
260 return checkReturnAndGetStatus(mSensors->activate(sensorHandle, enabled));
261}
262
263status_t HidlSensorHalWrapper::batch(int32_t sensorHandle, int64_t samplingPeriodNs,
264 int64_t maxReportLatencyNs) {
265 if (mSensors == nullptr) return NO_INIT;
266 return checkReturnAndGetStatus(
267 mSensors->batch(sensorHandle, samplingPeriodNs, maxReportLatencyNs));
268}
269
270status_t HidlSensorHalWrapper::flush(int32_t sensorHandle) {
271 if (mSensors == nullptr) return NO_INIT;
272 return checkReturnAndGetStatus(mSensors->flush(sensorHandle));
273}
274
275status_t HidlSensorHalWrapper::injectSensorData(const sensors_event_t* event) {
276 if (mSensors == nullptr) return NO_INIT;
277
278 Event ev;
279 convertFromSensorEvent(*event, &ev);
280 return checkReturnAndGetStatus(mSensors->injectSensorData(ev));
281}
282
283status_t HidlSensorHalWrapper::registerDirectChannel(const sensors_direct_mem_t* memory,
284 int32_t* /*channelHandle*/) {
285 if (mSensors == nullptr) return NO_INIT;
286
287 SharedMemType type;
288 switch (memory->type) {
289 case SENSOR_DIRECT_MEM_TYPE_ASHMEM:
290 type = SharedMemType::ASHMEM;
291 break;
292 case SENSOR_DIRECT_MEM_TYPE_GRALLOC:
293 type = SharedMemType::GRALLOC;
294 break;
295 default:
296 return BAD_VALUE;
297 }
298
299 SharedMemFormat format;
300 if (memory->format != SENSOR_DIRECT_FMT_SENSORS_EVENT) {
301 return BAD_VALUE;
302 }
303 format = SharedMemFormat::SENSORS_EVENT;
304
305 SharedMemInfo mem = {
306 .type = type,
307 .format = format,
308 .size = static_cast<uint32_t>(memory->size),
309 .memoryHandle = memory->handle,
310 };
311
312 status_t ret;
313 checkReturn(mSensors->registerDirectChannel(mem, [&ret](auto result, auto channelHandle) {
314 if (result == Result::OK) {
315 ret = channelHandle;
316 } else {
317 ret = statusFromResult(result);
318 }
319 }));
320 return ret;
321}
322
323status_t HidlSensorHalWrapper::unregisterDirectChannel(int32_t channelHandle) {
324 if (mSensors == nullptr) return NO_INIT;
325 return checkReturnAndGetStatus(mSensors->unregisterDirectChannel(channelHandle));
326}
327
328status_t HidlSensorHalWrapper::configureDirectChannel(int32_t sensorHandle, int32_t channelHandle,
329 const struct sensors_direct_cfg_t* config) {
330 if (mSensors == nullptr) return NO_INIT;
331
332 RateLevel rate;
333 switch (config->rate_level) {
334 case SENSOR_DIRECT_RATE_STOP:
335 rate = RateLevel::STOP;
336 break;
337 case SENSOR_DIRECT_RATE_NORMAL:
338 rate = RateLevel::NORMAL;
339 break;
340 case SENSOR_DIRECT_RATE_FAST:
341 rate = RateLevel::FAST;
342 break;
343 case SENSOR_DIRECT_RATE_VERY_FAST:
344 rate = RateLevel::VERY_FAST;
345 break;
346 default:
347 return BAD_VALUE;
348 }
349
350 status_t ret;
351 checkReturn(mSensors->configDirectReport(sensorHandle, channelHandle, rate,
352 [&ret, rate](auto result, auto token) {
353 if (rate == RateLevel::STOP) {
354 ret = statusFromResult(result);
355 } else {
356 if (result == Result::OK) {
357 ret = token;
358 } else {
359 ret = statusFromResult(result);
360 }
361 }
362 }));
363
364 return ret;
365}
366
367void HidlSensorHalWrapper::writeWakeLockHandled(uint32_t count) {
368 if (mWakeLockQueue->write(&count)) {
369 mWakeLockQueueFlag->wake(asBaseType(WakeLockQueueFlagBits::DATA_WRITTEN));
370 } else {
371 ALOGW("Failed to write wake lock handled");
372 }
373}
374
Arthur Ishiguro24804dc2021-11-12 17:17:09 +0000375status_t HidlSensorHalWrapper::checkReturnAndGetStatus(const hardware::Return<Result>& ret) {
376 checkReturn(ret);
377 return (!ret.isOk()) ? DEAD_OBJECT : statusFromResult(ret);
378}
379
380void HidlSensorHalWrapper::handleHidlDeath(const std::string& detail) {
381 if (!mSensors->supportsMessageQueues()) {
382 // restart is the only option at present.
383 LOG_ALWAYS_FATAL("Abort due to ISensors hidl service failure, detail: %s.", detail.c_str());
384 } else {
385 ALOGD("ISensors HAL died, death recipient will attempt reconnect");
386 }
387}
388
389bool HidlSensorHalWrapper::connectHidlService() {
390 HalConnectionStatus status = connectHidlServiceV2_1();
391 if (status == HalConnectionStatus::DOES_NOT_EXIST) {
392 status = connectHidlServiceV2_0();
393 }
394
395 if (status == HalConnectionStatus::DOES_NOT_EXIST) {
396 status = connectHidlServiceV1_0();
397 }
398 return (status == HalConnectionStatus::CONNECTED);
399}
400
401ISensorHalWrapper::HalConnectionStatus HidlSensorHalWrapper::connectHidlServiceV1_0() {
402 // SensorDevice will wait for HAL service to start if HAL is declared in device manifest.
403 size_t retry = 10;
404 HalConnectionStatus connectionStatus = HalConnectionStatus::UNKNOWN;
405
406 while (retry-- > 0) {
407 sp<android::hardware::sensors::V1_0::ISensors> sensors =
408 android::hardware::sensors::V1_0::ISensors::getService();
409 if (sensors == nullptr) {
410 // no sensor hidl service found
411 connectionStatus = HalConnectionStatus::DOES_NOT_EXIST;
412 break;
413 }
414
415 mSensors = new ISensorsWrapperV1_0(sensors);
416 mRestartWaiter->reset();
417 // Poke ISensor service. If it has lingering connection from previous generation of
418 // system server, it will kill itself. There is no intention to handle the poll result,
419 // which will be done since the size is 0.
420 if (mSensors->poll(0, [](auto, const auto&, const auto&) {}).isOk()) {
421 // ok to continue
422 connectionStatus = HalConnectionStatus::CONNECTED;
423 break;
424 }
425
426 // hidl service is restarting, pointer is invalid.
427 mSensors = nullptr;
428 connectionStatus = HalConnectionStatus::FAILED_TO_CONNECT;
429 ALOGI("%s unsuccessful, remaining retry %zu.", __FUNCTION__, retry);
430 mRestartWaiter->wait();
431 }
432
433 return connectionStatus;
434}
435
436ISensorHalWrapper::HalConnectionStatus HidlSensorHalWrapper::connectHidlServiceV2_0() {
437 HalConnectionStatus connectionStatus = HalConnectionStatus::UNKNOWN;
438 sp<android::hardware::sensors::V2_0::ISensors> sensors =
439 android::hardware::sensors::V2_0::ISensors::getService();
440
441 if (sensors == nullptr) {
442 connectionStatus = HalConnectionStatus::DOES_NOT_EXIST;
443 } else {
444 mSensors = new ISensorsWrapperV2_0(sensors);
445 connectionStatus = initializeHidlServiceV2_X();
446 }
447
448 return connectionStatus;
449}
450
451ISensorHalWrapper::HalConnectionStatus HidlSensorHalWrapper::connectHidlServiceV2_1() {
452 HalConnectionStatus connectionStatus = HalConnectionStatus::UNKNOWN;
453 sp<android::hardware::sensors::V2_1::ISensors> sensors =
454 android::hardware::sensors::V2_1::ISensors::getService();
455
456 if (sensors == nullptr) {
457 connectionStatus = HalConnectionStatus::DOES_NOT_EXIST;
458 } else {
459 mSensors = new ISensorsWrapperV2_1(sensors);
460 connectionStatus = initializeHidlServiceV2_X();
461 }
462
463 return connectionStatus;
464}
465
466ISensorHalWrapper::HalConnectionStatus HidlSensorHalWrapper::initializeHidlServiceV2_X() {
467 HalConnectionStatus connectionStatus = HalConnectionStatus::UNKNOWN;
468
469 mWakeLockQueue =
470 std::make_unique<WakeLockQueue>(SensorEventQueue::MAX_RECEIVE_BUFFER_EVENT_COUNT,
471 true /* configureEventFlagWord */);
472
473 hardware::EventFlag::deleteEventFlag(&mEventQueueFlag);
474 hardware::EventFlag::createEventFlag(mSensors->getEventQueue()->getEventFlagWord(),
475 &mEventQueueFlag);
476
477 hardware::EventFlag::deleteEventFlag(&mWakeLockQueueFlag);
478 hardware::EventFlag::createEventFlag(mWakeLockQueue->getEventFlagWord(), &mWakeLockQueueFlag);
479
480 CHECK(mSensors != nullptr && mWakeLockQueue != nullptr && mEventQueueFlag != nullptr &&
481 mWakeLockQueueFlag != nullptr);
482
Arthur Ishiguroffef6682021-12-25 17:31:17 +0000483 mCallback = sp<HidlSensorsCallback>::make(mSensorDeviceCallback);
Arthur Ishiguro24804dc2021-11-12 17:17:09 +0000484 status_t status =
485 checkReturnAndGetStatus(mSensors->initialize(*mWakeLockQueue->getDesc(), mCallback));
486
487 if (status != NO_ERROR) {
488 connectionStatus = HalConnectionStatus::FAILED_TO_CONNECT;
489 ALOGE("Failed to initialize Sensors HAL (%s)", strerror(-status));
490 } else {
491 connectionStatus = HalConnectionStatus::CONNECTED;
492 mSensorsHalDeathReceiver = new SensorsHalDeathReceiver(this);
493 mSensors->linkToDeath(mSensorsHalDeathReceiver, 0 /* cookie */);
494 }
495
496 return connectionStatus;
497}
498
499void HidlSensorHalWrapper::convertToSensorEvent(const Event& src, sensors_event_t* dst) {
500 android::hardware::sensors::V2_1::implementation::convertToSensorEvent(src, dst);
Arthur Ishiguro24804dc2021-11-12 17:17:09 +0000501}
502
Arthur Ishiguro65b59812021-12-26 19:09:54 +0000503void HidlSensorHalWrapper::convertToSensorEvents(const hidl_vec<Event>& src,
504 const hidl_vec<SensorInfo>& dynamicSensorsAdded,
505 sensors_event_t* dst) {
Arthur Ishiguro24804dc2021-11-12 17:17:09 +0000506 if (dynamicSensorsAdded.size() > 0 && mCallback != nullptr) {
507 mCallback->onDynamicSensorsConnected_2_1(dynamicSensorsAdded);
508 }
509
510 for (size_t i = 0; i < src.size(); ++i) {
Arthur Ishiguro65b59812021-12-26 19:09:54 +0000511 convertToSensorEvent(src[i], &dst[i]);
Arthur Ishiguro24804dc2021-11-12 17:17:09 +0000512 }
513}
514
Arthur Ishiguro24804dc2021-11-12 17:17:09 +0000515} // namespace android