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Mathias Agopianf001c922010-11-11 17:58:51 -08001/*
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 */
Brian Stacka28e9212018-09-19 15:20:30 -070016
Peng Xu3889e6e2017-03-02 19:10:38 -080017#include "SensorDevice.h"
Brian Stacka28e9212018-09-19 15:20:30 -070018
Brian Stackbbab1ea2018-10-01 10:49:07 -070019#include "android/hardware/sensors/2.0/ISensorsCallback.h"
Brian Stacka28e9212018-09-19 15:20:30 -070020#include "android/hardware/sensors/2.0/types.h"
Peng Xu3889e6e2017-03-02 19:10:38 -080021#include "SensorService.h"
Mathias Agopianf001c922010-11-11 17:58:51 -080022
Steven Morelandd15c0302016-12-20 11:14:50 -080023#include <android-base/logging.h>
Peng Xu3889e6e2017-03-02 19:10:38 -080024#include <sensors/convert.h>
Steven Moreland2716e112018-02-23 14:57:20 -080025#include <cutils/atomic.h>
Ashutosh Joshi5cafc1e2017-02-09 21:44:04 +000026#include <utils/Errors.h>
27#include <utils/Singleton.h>
Steven Morelandd3335112016-12-20 11:14:50 -080028
Peng Xu3889e6e2017-03-02 19:10:38 -080029#include <chrono>
30#include <cinttypes>
31#include <thread>
Steven Morelandd15c0302016-12-20 11:14:50 -080032
Brian Stack12f4d322018-09-14 16:18:59 -070033using namespace android::hardware::sensors;
Steven Morelandd15c0302016-12-20 11:14:50 -080034using namespace android::hardware::sensors::V1_0;
35using namespace android::hardware::sensors::V1_0::implementation;
Brian Stackbbab1ea2018-10-01 10:49:07 -070036using android::hardware::sensors::V2_0::ISensorsCallback;
Brian Stacka28e9212018-09-19 15:20:30 -070037using android::hardware::sensors::V2_0::EventQueueFlagBits;
Peng Xu1a00e2d2017-09-27 23:08:30 -070038using android::hardware::hidl_vec;
Brian Stack6c49e6f2018-09-24 15:44:32 -070039using android::hardware::Return;
Peng Xu1a00e2d2017-09-27 23:08:30 -070040using android::SensorDeviceUtils::HidlServiceRegistrationWaiter;
Peng Xu2bec6232016-07-01 17:13:10 -070041
Mathias Agopianf001c922010-11-11 17:58:51 -080042namespace android {
43// ---------------------------------------------------------------------------
Mathias Agopianf001c922010-11-11 17:58:51 -080044
45ANDROID_SINGLETON_STATIC_INSTANCE(SensorDevice)
46
Steven Morelandd15c0302016-12-20 11:14:50 -080047static status_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;
Mathias Agopianf001c922010-11-11 17:58:51 -080059 }
60}
61
Brian Stack156da082018-10-01 15:58:53 -070062template<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
67// Used internally by the framework to wake the Event FMQ. These values must start after
68// the last value of EventQueueFlagBits
69enum EventQueueFlagBitsInternal : uint32_t {
70 INTERNAL_WAKE = 1 << 16,
71};
72
Brian Stack574cda32018-10-01 11:18:51 -070073void SensorsHalDeathReceivier::serviceDied(
74 uint64_t /* cookie */,
75 const wp<::android::hidl::base::V1_0::IBase>& /* service */) {
76 ALOGW("Sensors HAL died, attempting to reconnect.");
Brian Stack156da082018-10-01 15:58:53 -070077 SensorDevice::getInstance().prepareForReconnect();
Brian Stack574cda32018-10-01 11:18:51 -070078}
79
Brian Stackbbab1ea2018-10-01 10:49:07 -070080struct SensorsCallback : public ISensorsCallback {
81 using Result = ::android::hardware::sensors::V1_0::Result;
82 Return<void> onDynamicSensorsConnected(
83 const hidl_vec<SensorInfo> &dynamicSensorsAdded) override {
84 return SensorDevice::getInstance().onDynamicSensorsConnected(dynamicSensorsAdded);
85 }
86
87 Return<void> onDynamicSensorsDisconnected(
88 const hidl_vec<int32_t> &dynamicSensorHandlesRemoved) override {
89 return SensorDevice::getInstance().onDynamicSensorsDisconnected(
90 dynamicSensorHandlesRemoved);
91 }
92};
93
Peng Xu1a00e2d2017-09-27 23:08:30 -070094SensorDevice::SensorDevice()
Brian Stack156da082018-10-01 15:58:53 -070095 : mHidlTransportErrors(20),
96 mRestartWaiter(new HidlServiceRegistrationWaiter()),
97 mReconnecting(false) {
Peng Xua8fad9b2017-03-17 12:20:27 -070098 if (!connectHidlService()) {
99 return;
100 }
Ashutosh Joshifea2d262017-04-19 23:27:49 -0700101
Brian Stack156da082018-10-01 15:58:53 -0700102 initializeSensorList();
103
104 mIsDirectReportSupported =
105 (checkReturn(mSensors->unregisterDirectChannel(-1)) != Result::INVALID_OPERATION);
106}
107
108void SensorDevice::initializeSensorList() {
Ashutosh Joshifea2d262017-04-19 23:27:49 -0700109 float minPowerMa = 0.001; // 1 microAmp
110
Peng Xua8fad9b2017-03-17 12:20:27 -0700111 checkReturn(mSensors->getSensorsList(
112 [&](const auto &list) {
113 const size_t count = list.size();
114
115 mActivationCount.setCapacity(count);
116 Info model;
117 for (size_t i=0 ; i < count; i++) {
118 sensor_t sensor;
119 convertToSensor(list[i], &sensor);
Ashutosh Joshifea2d262017-04-19 23:27:49 -0700120 // Sanity check and clamp power if it is 0 (or close)
121 if (sensor.power < minPowerMa) {
122 ALOGE("Reported power %f not deemed sane, clamping to %f",
123 sensor.power, minPowerMa);
124 sensor.power = minPowerMa;
125 }
Peng Xua8fad9b2017-03-17 12:20:27 -0700126 mSensorList.push_back(sensor);
127
128 mActivationCount.add(list[i].sensorHandle, model);
129
130 checkReturn(mSensors->activate(list[i].sensorHandle, 0 /* enabled */));
131 }
132 }));
Peng Xua8fad9b2017-03-17 12:20:27 -0700133}
134
Brian Stacka28e9212018-09-19 15:20:30 -0700135SensorDevice::~SensorDevice() {
136 if (mEventQueueFlag != nullptr) {
137 hardware::EventFlag::deleteEventFlag(&mEventQueueFlag);
138 mEventQueueFlag = nullptr;
139 }
140}
141
Peng Xua8fad9b2017-03-17 12:20:27 -0700142bool SensorDevice::connectHidlService() {
Brian Stack979887b2018-09-19 15:27:48 -0700143 HalConnectionStatus status = connectHidlServiceV2_0();
144 if (status == HalConnectionStatus::DOES_NOT_EXIST) {
145 status = connectHidlServiceV1_0();
Brian Stack12f4d322018-09-14 16:18:59 -0700146 }
Brian Stack979887b2018-09-19 15:27:48 -0700147 return (status == HalConnectionStatus::CONNECTED);
Brian Stack12f4d322018-09-14 16:18:59 -0700148}
149
Brian Stack979887b2018-09-19 15:27:48 -0700150SensorDevice::HalConnectionStatus SensorDevice::connectHidlServiceV1_0() {
Peng Xu1a00e2d2017-09-27 23:08:30 -0700151 // SensorDevice will wait for HAL service to start if HAL is declared in device manifest.
Peng Xu3889e6e2017-03-02 19:10:38 -0800152 size_t retry = 10;
Brian Stack979887b2018-09-19 15:27:48 -0700153 HalConnectionStatus connectionStatus = HalConnectionStatus::UNKNOWN;
Steven Morelandd15c0302016-12-20 11:14:50 -0800154
Peng Xu1a00e2d2017-09-27 23:08:30 -0700155 while (retry-- > 0) {
Brian Stack12f4d322018-09-14 16:18:59 -0700156 sp<V1_0::ISensors> sensors = V1_0::ISensors::getService();
157 if (sensors == nullptr) {
Peng Xu1a00e2d2017-09-27 23:08:30 -0700158 // no sensor hidl service found
Brian Stack979887b2018-09-19 15:27:48 -0700159 connectionStatus = HalConnectionStatus::DOES_NOT_EXIST;
Peng Xua8fad9b2017-03-17 12:20:27 -0700160 break;
Peng Xu3889e6e2017-03-02 19:10:38 -0800161 }
Peng Xu1a00e2d2017-09-27 23:08:30 -0700162
Brian Stack12f4d322018-09-14 16:18:59 -0700163 mSensors = new SensorServiceUtil::SensorsWrapperV1_0(sensors);
Peng Xu1a00e2d2017-09-27 23:08:30 -0700164 mRestartWaiter->reset();
165 // Poke ISensor service. If it has lingering connection from previous generation of
166 // system server, it will kill itself. There is no intention to handle the poll result,
167 // which will be done since the size is 0.
168 if(mSensors->poll(0, [](auto, const auto &, const auto &) {}).isOk()) {
169 // ok to continue
Brian Stack979887b2018-09-19 15:27:48 -0700170 connectionStatus = HalConnectionStatus::CONNECTED;
Peng Xu1a00e2d2017-09-27 23:08:30 -0700171 break;
172 }
173
174 // hidl service is restarting, pointer is invalid.
175 mSensors = nullptr;
Brian Stack979887b2018-09-19 15:27:48 -0700176 connectionStatus = HalConnectionStatus::FAILED_TO_CONNECT;
Peng Xu1a00e2d2017-09-27 23:08:30 -0700177 ALOGI("%s unsuccessful, remaining retry %zu.", __FUNCTION__, retry);
178 mRestartWaiter->wait();
Steven Morelandd15c0302016-12-20 11:14:50 -0800179 }
Brian Stack979887b2018-09-19 15:27:48 -0700180
181 return connectionStatus;
Steven Morelandd15c0302016-12-20 11:14:50 -0800182}
183
Brian Stack979887b2018-09-19 15:27:48 -0700184SensorDevice::HalConnectionStatus SensorDevice::connectHidlServiceV2_0() {
185 HalConnectionStatus connectionStatus = HalConnectionStatus::UNKNOWN;
Brian Stack12f4d322018-09-14 16:18:59 -0700186 sp<V2_0::ISensors> sensors = V2_0::ISensors::getService();
Brian Stack979887b2018-09-19 15:27:48 -0700187
188 if (sensors == nullptr) {
189 connectionStatus = HalConnectionStatus::DOES_NOT_EXIST;
190 } else {
Brian Stack12f4d322018-09-14 16:18:59 -0700191 mSensors = new SensorServiceUtil::SensorsWrapperV2_0(sensors);
192
Brian Stack979887b2018-09-19 15:27:48 -0700193 mEventQueue = std::make_unique<EventMessageQueue>(
194 SensorEventQueue::MAX_RECEIVE_BUFFER_EVENT_COUNT,
195 true /* configureEventFlagWord */);
196
197 mWakeLockQueue = std::make_unique<WakeLockQueue>(
198 SensorEventQueue::MAX_RECEIVE_BUFFER_EVENT_COUNT,
199 true /* configureEventFlagWord */);
200
Brian Stacka28e9212018-09-19 15:20:30 -0700201 hardware::EventFlag::createEventFlag(mEventQueue->getEventFlagWord(), &mEventQueueFlag);
202
Brian Stack979887b2018-09-19 15:27:48 -0700203 CHECK(mSensors != nullptr && mEventQueue != nullptr &&
Brian Stacka28e9212018-09-19 15:20:30 -0700204 mWakeLockQueue != nullptr && mEventQueueFlag != nullptr);
Brian Stack979887b2018-09-19 15:27:48 -0700205
Brian Stack6c49e6f2018-09-24 15:44:32 -0700206 status_t status = StatusFromResult(checkReturn(mSensors->initialize(
Brian Stack979887b2018-09-19 15:27:48 -0700207 *mEventQueue->getDesc(),
Brian Stack6c49e6f2018-09-24 15:44:32 -0700208 *mWakeLockQueue->getDesc(),
Brian Stackbbab1ea2018-10-01 10:49:07 -0700209 new SensorsCallback())));
Brian Stack979887b2018-09-19 15:27:48 -0700210
211 if (status != NO_ERROR) {
212 connectionStatus = HalConnectionStatus::FAILED_TO_CONNECT;
Brian Stack6c49e6f2018-09-24 15:44:32 -0700213 ALOGE("Failed to initialize Sensors HAL (%s)", strerror(-status));
Brian Stack979887b2018-09-19 15:27:48 -0700214 } else {
215 connectionStatus = HalConnectionStatus::CONNECTED;
Brian Stack574cda32018-10-01 11:18:51 -0700216 mSensorsHalDeathReceiver = new SensorsHalDeathReceivier();
217 sensors->linkToDeath(mSensorsHalDeathReceiver, 0 /* cookie */);
Brian Stack979887b2018-09-19 15:27:48 -0700218 }
Brian Stack12f4d322018-09-14 16:18:59 -0700219 }
Brian Stack979887b2018-09-19 15:27:48 -0700220
221 return connectionStatus;
Brian Stack12f4d322018-09-14 16:18:59 -0700222}
223
Brian Stack156da082018-10-01 15:58:53 -0700224void SensorDevice::prepareForReconnect() {
225 mReconnecting = true;
226
227 // Wake up the polling thread so it returns and allows the SensorService to initiate
228 // a reconnect.
229 mEventQueueFlag->wake(asBaseType(INTERNAL_WAKE));
230}
231
232void SensorDevice::reconnect() {
233 Mutex::Autolock _l(mLock);
234 mSensors = nullptr;
235
236 auto previousActivations = mActivationCount;
237 auto previousSensorList = mSensorList;
238
239 mActivationCount.clear();
240 mSensorList.clear();
241
242 if (connectHidlServiceV2_0() == HalConnectionStatus::CONNECTED) {
243 initializeSensorList();
244
245 if (sensorHandlesChanged(previousSensorList, mSensorList)) {
246 LOG_ALWAYS_FATAL("Sensor handles changed, cannot re-enable sensors.");
247 } else {
248 reactivateSensors(previousActivations);
249 }
250 }
251 mReconnecting = false;
252}
253
254bool SensorDevice::sensorHandlesChanged(const Vector<sensor_t>& oldSensorList,
255 const Vector<sensor_t>& newSensorList) {
256 bool didChange = false;
257
258 if (oldSensorList.size() != newSensorList.size()) {
259 didChange = true;
260 }
261
262 for (size_t i = 0; i < newSensorList.size() && !didChange; i++) {
263 bool found = false;
264 const sensor_t& newSensor = newSensorList[i];
265 for (size_t j = 0; j < oldSensorList.size() && !found; j++) {
266 const sensor_t& prevSensor = oldSensorList[j];
267 if (prevSensor.handle == newSensor.handle) {
268 found = true;
269 if (!sensorIsEquivalent(prevSensor, newSensor)) {
270 didChange = true;
271 }
272 }
273 }
274
275 if (!found) {
276 // Could not find the new sensor in the old list of sensors, the lists must
277 // have changed.
278 didChange = true;
279 }
280 }
281 return didChange;
282}
283
284bool SensorDevice::sensorIsEquivalent(const sensor_t& prevSensor, const sensor_t& newSensor) {
285 bool equivalent = true;
286 if (prevSensor.handle != newSensor.handle ||
287 (strcmp(prevSensor.vendor, newSensor.vendor) != 0) ||
288 (strcmp(prevSensor.stringType, newSensor.stringType) != 0) ||
289 (strcmp(prevSensor.requiredPermission, newSensor.requiredPermission) != 0) ||
290 (prevSensor.version != newSensor.version) ||
291 (prevSensor.type != newSensor.type) ||
292 (std::abs(prevSensor.maxRange - newSensor.maxRange) > 0.001f) ||
293 (std::abs(prevSensor.resolution - newSensor.resolution) > 0.001f) ||
294 (std::abs(prevSensor.power - newSensor.power) > 0.001f) ||
295 (prevSensor.minDelay != newSensor.minDelay) ||
296 (prevSensor.fifoReservedEventCount != newSensor.fifoReservedEventCount) ||
297 (prevSensor.fifoMaxEventCount != newSensor.fifoMaxEventCount) ||
298 (prevSensor.maxDelay != newSensor.maxDelay) ||
299 (prevSensor.flags != newSensor.flags)) {
300 equivalent = false;
301 }
302 return equivalent;
303}
304
305void SensorDevice::reactivateSensors(const DefaultKeyedVector<int, Info>& previousActivations) {
306 for (size_t i = 0; i < mSensorList.size(); i++) {
307 int handle = mSensorList[i].handle;
308 ssize_t activationIndex = previousActivations.indexOfKey(handle);
309 if (activationIndex < 0 || previousActivations[activationIndex].numActiveClients() <= 0) {
310 continue;
311 }
312
313 const Info& info = previousActivations[activationIndex];
314 for (size_t j = 0; j < info.batchParams.size(); j++) {
315 const BatchParams& batchParams = info.batchParams[j];
316 status_t res = batchLocked(info.batchParams.keyAt(j), handle, 0 /* flags */,
317 batchParams.mTSample, batchParams.mTBatch);
318
319 if (res == NO_ERROR) {
320 activateLocked(info.batchParams.keyAt(j), handle, true /* enabled */);
321 }
322 }
323 }
324}
325
Peng Xu2576cb62016-01-20 00:22:09 -0800326void SensorDevice::handleDynamicSensorConnection(int handle, bool connected) {
Peng Xua8fad9b2017-03-17 12:20:27 -0700327 // not need to check mSensors because this is is only called after successful poll()
Peng Xu2576cb62016-01-20 00:22:09 -0800328 if (connected) {
329 Info model;
330 mActivationCount.add(handle, model);
Peng Xu3889e6e2017-03-02 19:10:38 -0800331 checkReturn(mSensors->activate(handle, 0 /* enabled */));
Peng Xu2576cb62016-01-20 00:22:09 -0800332 } else {
333 mActivationCount.removeItem(handle);
334 }
335}
336
Peng Xu6a2d3a02015-12-21 12:00:23 -0800337std::string SensorDevice::dump() const {
Peng Xua8fad9b2017-03-17 12:20:27 -0700338 if (mSensors == nullptr) return "HAL not initialized\n";
Mathias Agopianf001c922010-11-11 17:58:51 -0800339
Peng Xu6a2d3a02015-12-21 12:00:23 -0800340 String8 result;
Peng Xua8fad9b2017-03-17 12:20:27 -0700341 result.appendFormat("Total %zu h/w sensors, %zu running:\n",
342 mSensorList.size(), mActivationCount.size());
Ashutosh Joshi96b12d82017-03-15 16:27:12 -0700343
Peng Xua8fad9b2017-03-17 12:20:27 -0700344 Mutex::Autolock _l(mLock);
345 for (const auto & s : mSensorList) {
346 int32_t handle = s.handle;
347 const Info& info = mActivationCount.valueFor(handle);
348 if (info.batchParams.isEmpty()) continue;
349
350 result.appendFormat("0x%08x) active-count = %zu; ", handle, info.batchParams.size());
351
352 result.append("sampling_period(ms) = {");
353 for (size_t j = 0; j < info.batchParams.size(); j++) {
Peng Xu2bec6232016-07-01 17:13:10 -0700354 const BatchParams& params = info.batchParams[j];
355 result.appendFormat("%.1f%s", params.mTSample / 1e6f,
Peng Xua8fad9b2017-03-17 12:20:27 -0700356 j < info.batchParams.size() - 1 ? ", " : "");
357 }
Peng Xu2bec6232016-07-01 17:13:10 -0700358 result.appendFormat("}, selected = %.2f ms; ", info.bestBatchParams.mTSample / 1e6f);
Peng Xua8fad9b2017-03-17 12:20:27 -0700359
360 result.append("batching_period(ms) = {");
361 for (size_t j = 0; j < info.batchParams.size(); j++) {
Peng Xu2bec6232016-07-01 17:13:10 -0700362 const BatchParams& params = info.batchParams[j];
363 result.appendFormat("%.1f%s", params.mTBatch / 1e6f,
Peng Xua8fad9b2017-03-17 12:20:27 -0700364 j < info.batchParams.size() - 1 ? ", " : "");
365 }
Peng Xu2bec6232016-07-01 17:13:10 -0700366 result.appendFormat("}, selected = %.2f ms\n", info.bestBatchParams.mTBatch / 1e6f);
Ashutosh Joshi96b12d82017-03-15 16:27:12 -0700367 }
368
Peng Xu6a2d3a02015-12-21 12:00:23 -0800369 return result.string();
Mathias Agopianf001c922010-11-11 17:58:51 -0800370}
371
372ssize_t SensorDevice::getSensorList(sensor_t const** list) {
Steven Morelandd15c0302016-12-20 11:14:50 -0800373 *list = &mSensorList[0];
374
375 return mSensorList.size();
Mathias Agopianf001c922010-11-11 17:58:51 -0800376}
377
378status_t SensorDevice::initCheck() const {
Peng Xu1a00e2d2017-09-27 23:08:30 -0700379 return mSensors != nullptr ? NO_ERROR : NO_INIT;
Mathias Agopianf001c922010-11-11 17:58:51 -0800380}
381
382ssize_t SensorDevice::poll(sensors_event_t* buffer, size_t count) {
Brian Stack156da082018-10-01 15:58:53 -0700383 if (mSensors == nullptr) return NO_INIT;
384
Brian Stacka28e9212018-09-19 15:20:30 -0700385 ssize_t eventsRead = 0;
386 if (mSensors->supportsMessageQueues()) {
387 eventsRead = pollFmq(buffer, count);
388 } else if (mSensors->supportsPolling()) {
389 eventsRead = pollHal(buffer, count);
390 } else {
391 ALOGE("Must support polling or FMQ");
392 eventsRead = -1;
393 }
394 return eventsRead;
395}
396
397ssize_t SensorDevice::pollHal(sensors_event_t* buffer, size_t count) {
Steven Morelandd15c0302016-12-20 11:14:50 -0800398 ssize_t err;
Ashutosh Joshi96b12d82017-03-15 16:27:12 -0700399 int numHidlTransportErrors = 0;
400 bool hidlTransportError = false;
Steven Morelandd15c0302016-12-20 11:14:50 -0800401
Ashutosh Joshi96b12d82017-03-15 16:27:12 -0700402 do {
403 auto ret = mSensors->poll(
404 count,
405 [&](auto result,
406 const auto &events,
407 const auto &dynamicSensorsAdded) {
408 if (result == Result::OK) {
409 convertToSensorEvents(events, dynamicSensorsAdded, buffer);
410 err = (ssize_t)events.size();
411 } else {
412 err = StatusFromResult(result);
413 }
414 });
415
416 if (ret.isOk()) {
417 hidlTransportError = false;
418 } else {
419 hidlTransportError = true;
420 numHidlTransportErrors++;
421 if (numHidlTransportErrors > 50) {
422 // Log error and bail
423 ALOGE("Max Hidl transport errors this cycle : %d", numHidlTransportErrors);
424 handleHidlDeath(ret.description());
425 } else {
426 std::this_thread::sleep_for(std::chrono::milliseconds(10));
427 }
428 }
429 } while (hidlTransportError);
430
431 if(numHidlTransportErrors > 0) {
432 ALOGE("Saw %d Hidl transport failures", numHidlTransportErrors);
Yi Kong8f313e32018-07-17 14:13:29 -0700433 HidlTransportErrorLog errLog(time(nullptr), numHidlTransportErrors);
Ashutosh Joshi96b12d82017-03-15 16:27:12 -0700434 mHidlTransportErrors.add(errLog);
435 mTotalHidlTransportErrors++;
436 }
Steven Morelandd15c0302016-12-20 11:14:50 -0800437
438 return err;
Mathias Agopianf001c922010-11-11 17:58:51 -0800439}
440
Brian Stacka28e9212018-09-19 15:20:30 -0700441ssize_t SensorDevice::pollFmq(sensors_event_t* buffer, size_t maxNumEventsToRead) {
Brian Stacka28e9212018-09-19 15:20:30 -0700442 ssize_t eventsRead = 0;
443 size_t availableEvents = mEventQueue->availableToRead();
444
445 if (availableEvents == 0) {
446 uint32_t eventFlagState = 0;
447
448 // Wait for events to become available. This is necessary so that the Event FMQ's read() is
449 // able to be called with the correct number of events to read. If the specified number of
450 // events is not available, then read() would return no events, possibly introducing
451 // additional latency in delivering events to applications.
Brian Stack156da082018-10-01 15:58:53 -0700452 mEventQueueFlag->wait(asBaseType(EventQueueFlagBits::READ_AND_PROCESS) |
453 asBaseType(INTERNAL_WAKE), &eventFlagState);
Brian Stacka28e9212018-09-19 15:20:30 -0700454 availableEvents = mEventQueue->availableToRead();
455
Brian Stack156da082018-10-01 15:58:53 -0700456 if ((eventFlagState & asBaseType(EventQueueFlagBits::READ_AND_PROCESS)) &&
457 availableEvents == 0) {
Brian Stacka28e9212018-09-19 15:20:30 -0700458 ALOGW("Event FMQ wake without any events");
459 }
Brian Stack156da082018-10-01 15:58:53 -0700460
461 if ((eventFlagState & asBaseType(INTERNAL_WAKE)) && mReconnecting) {
462 ALOGD("Event FMQ internal wake, returning from poll with no events");
463 return DEAD_OBJECT;
464 }
Brian Stacka28e9212018-09-19 15:20:30 -0700465 }
466
467 size_t eventsToRead = std::min({availableEvents, maxNumEventsToRead, mEventBuffer.size()});
468 if (eventsToRead > 0) {
469 if (mEventQueue->read(mEventBuffer.data(), eventsToRead)) {
470 for (size_t i = 0; i < eventsToRead; i++) {
471 convertToSensorEvent(mEventBuffer[i], &buffer[i]);
472 }
473 eventsRead = eventsToRead;
474 } else {
475 ALOGW("Failed to read %zu events, currently %zu events available",
476 eventsToRead, availableEvents);
477 }
478 }
479
480 return eventsRead;
481}
482
Brian Stack6c49e6f2018-09-24 15:44:32 -0700483Return<void> SensorDevice::onDynamicSensorsConnected(
484 const hidl_vec<SensorInfo> &dynamicSensorsAdded) {
485 // Allocate a sensor_t structure for each dynamic sensor added and insert
486 // it into the dictionary of connected dynamic sensors keyed by handle.
487 for (size_t i = 0; i < dynamicSensorsAdded.size(); ++i) {
488 const SensorInfo &info = dynamicSensorsAdded[i];
489
490 auto it = mConnectedDynamicSensors.find(info.sensorHandle);
491 CHECK(it == mConnectedDynamicSensors.end());
492
493 sensor_t *sensor = new sensor_t();
494 convertToSensor(info, sensor);
495
496 mConnectedDynamicSensors.insert(
497 std::make_pair(sensor->handle, sensor));
498 }
499
500 return Return<void>();
501}
502
503Return<void> SensorDevice::onDynamicSensorsDisconnected(
504 const hidl_vec<int32_t> &dynamicSensorHandlesRemoved) {
505 (void) dynamicSensorHandlesRemoved;
506 // TODO: Currently dynamic sensors do not seem to be removed
507 return Return<void>();
508}
509
Brian Stackb7bfc0f2018-09-25 09:41:16 -0700510void SensorDevice::writeWakeLockHandled(uint32_t count) {
Brian Stack156da082018-10-01 15:58:53 -0700511 if (mSensors != nullptr && mSensors->supportsMessageQueues() &&
512 !mWakeLockQueue->write(&count)) {
Brian Stackb7bfc0f2018-09-25 09:41:16 -0700513 ALOGW("Failed to write wake lock handled");
514 }
515}
516
Mathias Agopianac9a96d2013-07-12 02:01:16 -0700517void SensorDevice::autoDisable(void *ident, int handle) {
Jaikumar Ganesh4c01b1a2013-04-16 15:52:23 -0700518 Mutex::Autolock _l(mLock);
Peng Xu042baec2017-08-09 19:28:27 -0700519 ssize_t activationIndex = mActivationCount.indexOfKey(handle);
520 if (activationIndex < 0) {
521 ALOGW("Handle %d cannot be found in activation record", handle);
522 return;
523 }
524 Info& info(mActivationCount.editValueAt(activationIndex));
Aravind Akella724d91d2013-06-27 12:04:23 -0700525 info.removeBatchParamsForIdent(ident);
Jaikumar Ganesh4c01b1a2013-04-16 15:52:23 -0700526}
527
Peng Xu6a2d3a02015-12-21 12:00:23 -0800528status_t SensorDevice::activate(void* ident, int handle, int enabled) {
Peng Xua8fad9b2017-03-17 12:20:27 -0700529 if (mSensors == nullptr) return NO_INIT;
Steven Morelandd15c0302016-12-20 11:14:50 -0800530
Brian Stack156da082018-10-01 15:58:53 -0700531 Mutex::Autolock _l(mLock);
532 return activateLocked(ident, handle, enabled);
533}
534
535status_t SensorDevice::activateLocked(void* ident, int handle, int enabled) {
Mathias Agopianf001c922010-11-11 17:58:51 -0800536 bool actuateHardware = false;
537
Brian Stack156da082018-10-01 15:58:53 -0700538 status_t err(NO_ERROR);
539
Peng Xu042baec2017-08-09 19:28:27 -0700540 ssize_t activationIndex = mActivationCount.indexOfKey(handle);
541 if (activationIndex < 0) {
542 ALOGW("Handle %d cannot be found in activation record", handle);
543 return BAD_VALUE;
544 }
545 Info& info(mActivationCount.editValueAt(activationIndex));
Mathias Agopiana1b7db92011-05-27 16:23:58 -0700546
Steve Blocka5512372011-12-20 16:23:08 +0000547 ALOGD_IF(DEBUG_CONNECTIONS,
Mark Salyzyndb458612014-06-10 14:50:02 -0700548 "SensorDevice::activate: ident=%p, handle=0x%08x, enabled=%d, count=%zu",
Aravind Akella724d91d2013-06-27 12:04:23 -0700549 ident, handle, enabled, info.batchParams.size());
Mathias Agopiana1b7db92011-05-27 16:23:58 -0700550
Mathias Agopianf001c922010-11-11 17:58:51 -0800551 if (enabled) {
Mark Salyzyndb458612014-06-10 14:50:02 -0700552 ALOGD_IF(DEBUG_CONNECTIONS, "enable index=%zd", info.batchParams.indexOfKey(ident));
Mathias Agopiana1b7db92011-05-27 16:23:58 -0700553
Aravind Akella4949c502015-02-11 15:54:35 -0800554 if (isClientDisabledLocked(ident)) {
Peng Xu966fa882016-09-01 16:13:15 -0700555 ALOGE("SensorDevice::activate, isClientDisabledLocked(%p):true, handle:%d",
556 ident, handle);
Aravind Akella4949c502015-02-11 15:54:35 -0800557 return INVALID_OPERATION;
558 }
559
Aravind Akella724d91d2013-06-27 12:04:23 -0700560 if (info.batchParams.indexOfKey(ident) >= 0) {
Aravind Akella4949c502015-02-11 15:54:35 -0800561 if (info.numActiveClients() == 1) {
Aravind Akella724d91d2013-06-27 12:04:23 -0700562 // This is the first connection, we need to activate the underlying h/w sensor.
563 actuateHardware = true;
564 }
Mathias Agopian50b66762010-11-29 17:26:51 -0800565 } else {
Aravind Akella724d91d2013-06-27 12:04:23 -0700566 // Log error. Every activate call should be preceded by a batch() call.
567 ALOGE("\t >>>ERROR: activate called without batch");
Mathias Agopianf001c922010-11-11 17:58:51 -0800568 }
569 } else {
Mark Salyzyndb458612014-06-10 14:50:02 -0700570 ALOGD_IF(DEBUG_CONNECTIONS, "disable index=%zd", info.batchParams.indexOfKey(ident));
Mathias Agopiana1b7db92011-05-27 16:23:58 -0700571
Steven Morelandd15c0302016-12-20 11:14:50 -0800572 // If a connected dynamic sensor is deactivated, remove it from the
573 // dictionary.
574 auto it = mConnectedDynamicSensors.find(handle);
575 if (it != mConnectedDynamicSensors.end()) {
576 delete it->second;
577 mConnectedDynamicSensors.erase(it);
578 }
579
Aravind Akella724d91d2013-06-27 12:04:23 -0700580 if (info.removeBatchParamsForIdent(ident) >= 0) {
Aravind Akella4949c502015-02-11 15:54:35 -0800581 if (info.numActiveClients() == 0) {
Aravind Akella724d91d2013-06-27 12:04:23 -0700582 // This is the last connection, we need to de-activate the underlying h/w sensor.
Mathias Agopian50b66762010-11-29 17:26:51 -0800583 actuateHardware = true;
Aravind Akella724d91d2013-06-27 12:04:23 -0700584 } else {
Steven Morelandd15c0302016-12-20 11:14:50 -0800585 // Call batch for this sensor with the previously calculated best effort
586 // batch_rate and timeout. One of the apps has unregistered for sensor
587 // events, and the best effort batch parameters might have changed.
588 ALOGD_IF(DEBUG_CONNECTIONS,
Peng Xu2bec6232016-07-01 17:13:10 -0700589 "\t>>> actuating h/w batch 0x%08x %" PRId64 " %" PRId64, handle,
590 info.bestBatchParams.mTSample, info.bestBatchParams.mTBatch);
Peng Xu3889e6e2017-03-02 19:10:38 -0800591 checkReturn(mSensors->batch(
Peng Xu2bec6232016-07-01 17:13:10 -0700592 handle, info.bestBatchParams.mTSample, info.bestBatchParams.mTBatch));
Mathias Agopian50b66762010-11-29 17:26:51 -0800593 }
594 } else {
595 // sensor wasn't enabled for this ident
596 }
Aravind Akella4949c502015-02-11 15:54:35 -0800597
598 if (isClientDisabledLocked(ident)) {
599 return NO_ERROR;
600 }
Mathias Agopianf001c922010-11-11 17:58:51 -0800601 }
Mathias Agopian50b66762010-11-29 17:26:51 -0800602
Mathias Agopianf001c922010-11-11 17:58:51 -0800603 if (actuateHardware) {
Aravind Akella4949c502015-02-11 15:54:35 -0800604 ALOGD_IF(DEBUG_CONNECTIONS, "\t>>> actuating h/w activate handle=%d enabled=%d", handle,
605 enabled);
Peng Xu3889e6e2017-03-02 19:10:38 -0800606 err = StatusFromResult(checkReturn(mSensors->activate(handle, enabled)));
Aravind Akella724d91d2013-06-27 12:04:23 -0700607 ALOGE_IF(err, "Error %s sensor %d (%s)", enabled ? "activating" : "disabling", handle,
608 strerror(-err));
Mathias Agopiana1b7db92011-05-27 16:23:58 -0700609
Aravind Akella724d91d2013-06-27 12:04:23 -0700610 if (err != NO_ERROR && enabled) {
611 // Failure when enabling the sensor. Clean up on failure.
612 info.removeBatchParamsForIdent(ident);
Mathias Agopianac9a96d2013-07-12 02:01:16 -0700613 }
Mathias Agopianf001c922010-11-11 17:58:51 -0800614 }
615
Mathias Agopianf001c922010-11-11 17:58:51 -0800616 return err;
617}
618
Steven Morelandd15c0302016-12-20 11:14:50 -0800619status_t SensorDevice::batch(
620 void* ident,
621 int handle,
622 int flags,
623 int64_t samplingPeriodNs,
624 int64_t maxBatchReportLatencyNs) {
Peng Xua8fad9b2017-03-17 12:20:27 -0700625 if (mSensors == nullptr) return NO_INIT;
Aravind Akella724d91d2013-06-27 12:04:23 -0700626
627 if (samplingPeriodNs < MINIMUM_EVENTS_PERIOD) {
628 samplingPeriodNs = MINIMUM_EVENTS_PERIOD;
629 }
Peng Xu2bec6232016-07-01 17:13:10 -0700630 if (maxBatchReportLatencyNs < 0) {
631 maxBatchReportLatencyNs = 0;
632 }
Aravind Akella724d91d2013-06-27 12:04:23 -0700633
Aravind Akella724d91d2013-06-27 12:04:23 -0700634 ALOGD_IF(DEBUG_CONNECTIONS,
Mark Salyzyndb458612014-06-10 14:50:02 -0700635 "SensorDevice::batch: ident=%p, handle=0x%08x, flags=%d, period_ns=%" PRId64 " timeout=%" PRId64,
Aravind Akella724d91d2013-06-27 12:04:23 -0700636 ident, handle, flags, samplingPeriodNs, maxBatchReportLatencyNs);
637
638 Mutex::Autolock _l(mLock);
Brian Stack156da082018-10-01 15:58:53 -0700639 return batchLocked(ident, handle, flags, samplingPeriodNs, maxBatchReportLatencyNs);
640}
641
642status_t SensorDevice::batchLocked(void* ident, int handle, int flags, int64_t samplingPeriodNs,
643 int64_t maxBatchReportLatencyNs) {
Peng Xu042baec2017-08-09 19:28:27 -0700644 ssize_t activationIndex = mActivationCount.indexOfKey(handle);
645 if (activationIndex < 0) {
646 ALOGW("Handle %d cannot be found in activation record", handle);
647 return BAD_VALUE;
648 }
649 Info& info(mActivationCount.editValueAt(activationIndex));
Aravind Akella724d91d2013-06-27 12:04:23 -0700650
651 if (info.batchParams.indexOfKey(ident) < 0) {
Peng Xu2bec6232016-07-01 17:13:10 -0700652 BatchParams params(samplingPeriodNs, maxBatchReportLatencyNs);
Aravind Akella724d91d2013-06-27 12:04:23 -0700653 info.batchParams.add(ident, params);
654 } else {
655 // A batch has already been called with this ident. Update the batch parameters.
656 info.setBatchParamsForIdent(ident, flags, samplingPeriodNs, maxBatchReportLatencyNs);
657 }
658
659 BatchParams prevBestBatchParams = info.bestBatchParams;
660 // Find the minimum of all timeouts and batch_rates for this sensor.
661 info.selectBatchParams();
662
663 ALOGD_IF(DEBUG_CONNECTIONS,
Mark Salyzyndb458612014-06-10 14:50:02 -0700664 "\t>>> curr_period=%" PRId64 " min_period=%" PRId64
665 " curr_timeout=%" PRId64 " min_timeout=%" PRId64,
Peng Xu2bec6232016-07-01 17:13:10 -0700666 prevBestBatchParams.mTSample, info.bestBatchParams.mTSample,
667 prevBestBatchParams.mTBatch, info.bestBatchParams.mTBatch);
Aravind Akella724d91d2013-06-27 12:04:23 -0700668
669 status_t err(NO_ERROR);
670 // If the min period or min timeout has changed since the last batch call, call batch.
671 if (prevBestBatchParams != info.bestBatchParams) {
Peng Xu2bec6232016-07-01 17:13:10 -0700672 ALOGD_IF(DEBUG_CONNECTIONS, "\t>>> actuating h/w BATCH 0x%08x %" PRId64 " %" PRId64, handle,
673 info.bestBatchParams.mTSample, info.bestBatchParams.mTBatch);
Steven Morelandd15c0302016-12-20 11:14:50 -0800674 err = StatusFromResult(
Peng Xu3889e6e2017-03-02 19:10:38 -0800675 checkReturn(mSensors->batch(
Peng Xu2bec6232016-07-01 17:13:10 -0700676 handle, info.bestBatchParams.mTSample, info.bestBatchParams.mTBatch)));
Aravind Akella724d91d2013-06-27 12:04:23 -0700677 if (err != NO_ERROR) {
Peng Xu2bec6232016-07-01 17:13:10 -0700678 ALOGE("sensor batch failed %p 0x%08x %" PRId64 " %" PRId64 " err=%s",
679 mSensors.get(), handle, info.bestBatchParams.mTSample,
680 info.bestBatchParams.mTBatch, strerror(-err));
Aravind Akella724d91d2013-06-27 12:04:23 -0700681 info.removeBatchParamsForIdent(ident);
682 }
683 }
684 return err;
685}
686
Peng Xu6a2d3a02015-12-21 12:00:23 -0800687status_t SensorDevice::setDelay(void* ident, int handle, int64_t samplingPeriodNs) {
Peng Xu2bec6232016-07-01 17:13:10 -0700688 return batch(ident, handle, 0, samplingPeriodNs, 0);
Mathias Agopian667102f2011-09-14 16:43:34 -0700689}
690
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700691int SensorDevice::getHalDeviceVersion() const {
Peng Xua8fad9b2017-03-17 12:20:27 -0700692 if (mSensors == nullptr) return -1;
Steven Morelandd15c0302016-12-20 11:14:50 -0800693 return SENSORS_DEVICE_API_VERSION_1_4;
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700694}
695
Aravind Akella9a844cf2014-02-11 18:58:52 -0800696status_t SensorDevice::flush(void* ident, int handle) {
Peng Xua8fad9b2017-03-17 12:20:27 -0700697 if (mSensors == nullptr) return NO_INIT;
Aravind Akella4949c502015-02-11 15:54:35 -0800698 if (isClientDisabled(ident)) return INVALID_OPERATION;
Aravind Akella724d91d2013-06-27 12:04:23 -0700699 ALOGD_IF(DEBUG_CONNECTIONS, "\t>>> actuating h/w flush %d", handle);
Peng Xu3889e6e2017-03-02 19:10:38 -0800700 return StatusFromResult(checkReturn(mSensors->flush(handle)));
Aravind Akella724d91d2013-06-27 12:04:23 -0700701}
702
Aravind Akella4949c502015-02-11 15:54:35 -0800703bool SensorDevice::isClientDisabled(void* ident) {
704 Mutex::Autolock _l(mLock);
705 return isClientDisabledLocked(ident);
706}
707
708bool SensorDevice::isClientDisabledLocked(void* ident) {
709 return mDisabledClients.indexOf(ident) >= 0;
710}
711
712void SensorDevice::enableAllSensors() {
Peng Xua8fad9b2017-03-17 12:20:27 -0700713 if (mSensors == nullptr) return;
Aravind Akella4949c502015-02-11 15:54:35 -0800714 Mutex::Autolock _l(mLock);
715 mDisabledClients.clear();
Peng Xu966fa882016-09-01 16:13:15 -0700716 ALOGI("cleared mDisabledClients");
Aravind Akella4949c502015-02-11 15:54:35 -0800717 for (size_t i = 0; i< mActivationCount.size(); ++i) {
718 Info& info = mActivationCount.editValueAt(i);
719 if (info.batchParams.isEmpty()) continue;
720 info.selectBatchParams();
721 const int sensor_handle = mActivationCount.keyAt(i);
722 ALOGD_IF(DEBUG_CONNECTIONS, "\t>> reenable actuating h/w sensor enable handle=%d ",
723 sensor_handle);
Steven Morelandd15c0302016-12-20 11:14:50 -0800724 status_t err = StatusFromResult(
Peng Xu3889e6e2017-03-02 19:10:38 -0800725 checkReturn(mSensors->batch(
Steven Morelandd15c0302016-12-20 11:14:50 -0800726 sensor_handle,
Peng Xu2bec6232016-07-01 17:13:10 -0700727 info.bestBatchParams.mTSample,
728 info.bestBatchParams.mTBatch)));
Steven Morelandd15c0302016-12-20 11:14:50 -0800729 ALOGE_IF(err, "Error calling batch on sensor %d (%s)", sensor_handle, strerror(-err));
Aravind Akella4949c502015-02-11 15:54:35 -0800730
731 if (err == NO_ERROR) {
Steven Morelandd15c0302016-12-20 11:14:50 -0800732 err = StatusFromResult(
Peng Xu3889e6e2017-03-02 19:10:38 -0800733 checkReturn(mSensors->activate(sensor_handle, 1 /* enabled */)));
Aravind Akella4949c502015-02-11 15:54:35 -0800734 ALOGE_IF(err, "Error activating sensor %d (%s)", sensor_handle, strerror(-err));
735 }
Aravind Akella4949c502015-02-11 15:54:35 -0800736 }
737}
738
739void SensorDevice::disableAllSensors() {
Peng Xua8fad9b2017-03-17 12:20:27 -0700740 if (mSensors == nullptr) return;
Aravind Akella4949c502015-02-11 15:54:35 -0800741 Mutex::Autolock _l(mLock);
Peng Xua8fad9b2017-03-17 12:20:27 -0700742 for (size_t i = 0; i< mActivationCount.size(); ++i) {
Aravind Akella4949c502015-02-11 15:54:35 -0800743 const Info& info = mActivationCount.valueAt(i);
744 // Check if this sensor has been activated previously and disable it.
745 if (info.batchParams.size() > 0) {
746 const int sensor_handle = mActivationCount.keyAt(i);
747 ALOGD_IF(DEBUG_CONNECTIONS, "\t>> actuating h/w sensor disable handle=%d ",
748 sensor_handle);
Peng Xu3889e6e2017-03-02 19:10:38 -0800749 checkReturn(mSensors->activate(sensor_handle, 0 /* enabled */));
Steven Morelandd15c0302016-12-20 11:14:50 -0800750
Aravind Akella4949c502015-02-11 15:54:35 -0800751 // Add all the connections that were registered for this sensor to the disabled
752 // clients list.
Svetoslavb412f6e2015-04-29 16:50:41 -0700753 for (size_t j = 0; j < info.batchParams.size(); ++j) {
Aravind Akella4949c502015-02-11 15:54:35 -0800754 mDisabledClients.add(info.batchParams.keyAt(j));
Peng Xu966fa882016-09-01 16:13:15 -0700755 ALOGI("added %p to mDisabledClients", info.batchParams.keyAt(j));
Aravind Akella4949c502015-02-11 15:54:35 -0800756 }
757 }
758 }
759}
760
Steven Morelandd15c0302016-12-20 11:14:50 -0800761status_t SensorDevice::injectSensorData(
762 const sensors_event_t *injected_sensor_event) {
Peng Xua8fad9b2017-03-17 12:20:27 -0700763 if (mSensors == nullptr) return NO_INIT;
Steven Morelandd15c0302016-12-20 11:14:50 -0800764 ALOGD_IF(DEBUG_CONNECTIONS,
765 "sensor_event handle=%d ts=%" PRId64 " data=%.2f, %.2f, %.2f %.2f %.2f %.2f",
766 injected_sensor_event->sensor,
767 injected_sensor_event->timestamp, injected_sensor_event->data[0],
768 injected_sensor_event->data[1], injected_sensor_event->data[2],
769 injected_sensor_event->data[3], injected_sensor_event->data[4],
770 injected_sensor_event->data[5]);
771
772 Event ev;
773 convertFromSensorEvent(*injected_sensor_event, &ev);
774
Peng Xu3889e6e2017-03-02 19:10:38 -0800775 return StatusFromResult(checkReturn(mSensors->injectSensorData(ev)));
Aravind Akellaa9e6cc32015-04-16 18:57:31 -0700776}
777
778status_t SensorDevice::setMode(uint32_t mode) {
Peng Xua8fad9b2017-03-17 12:20:27 -0700779 if (mSensors == nullptr) return NO_INIT;
780 return StatusFromResult(
781 checkReturn(mSensors->setOperationMode(
782 static_cast<hardware::sensors::V1_0::OperationMode>(mode))));
783}
Steven Morelandd15c0302016-12-20 11:14:50 -0800784
Peng Xua8fad9b2017-03-17 12:20:27 -0700785int32_t SensorDevice::registerDirectChannel(const sensors_direct_mem_t* memory) {
786 if (mSensors == nullptr) return NO_INIT;
787 Mutex::Autolock _l(mLock);
788
789 SharedMemType type;
790 switch (memory->type) {
791 case SENSOR_DIRECT_MEM_TYPE_ASHMEM:
792 type = SharedMemType::ASHMEM;
793 break;
794 case SENSOR_DIRECT_MEM_TYPE_GRALLOC:
795 type = SharedMemType::GRALLOC;
796 break;
797 default:
798 return BAD_VALUE;
799 }
800
801 SharedMemFormat format;
802 if (memory->format != SENSOR_DIRECT_FMT_SENSORS_EVENT) {
803 return BAD_VALUE;
804 }
805 format = SharedMemFormat::SENSORS_EVENT;
806
807 SharedMemInfo mem = {
808 .type = type,
809 .format = format,
810 .size = static_cast<uint32_t>(memory->size),
811 .memoryHandle = memory->handle,
812 };
813
814 int32_t ret;
815 checkReturn(mSensors->registerDirectChannel(mem,
816 [&ret](auto result, auto channelHandle) {
817 if (result == Result::OK) {
818 ret = channelHandle;
819 } else {
820 ret = StatusFromResult(result);
821 }
822 }));
823 return ret;
824}
825
826void SensorDevice::unregisterDirectChannel(int32_t channelHandle) {
827 if (mSensors == nullptr) return;
828 Mutex::Autolock _l(mLock);
829 checkReturn(mSensors->unregisterDirectChannel(channelHandle));
830}
831
832int32_t SensorDevice::configureDirectChannel(int32_t sensorHandle,
833 int32_t channelHandle, const struct sensors_direct_cfg_t *config) {
834 if (mSensors == nullptr) return NO_INIT;
835 Mutex::Autolock _l(mLock);
836
837 RateLevel rate;
838 switch(config->rate_level) {
839 case SENSOR_DIRECT_RATE_STOP:
840 rate = RateLevel::STOP;
841 break;
842 case SENSOR_DIRECT_RATE_NORMAL:
843 rate = RateLevel::NORMAL;
844 break;
845 case SENSOR_DIRECT_RATE_FAST:
846 rate = RateLevel::FAST;
847 break;
848 case SENSOR_DIRECT_RATE_VERY_FAST:
849 rate = RateLevel::VERY_FAST;
850 break;
851 default:
852 return BAD_VALUE;
853 }
854
855 int32_t ret;
856 checkReturn(mSensors->configDirectReport(sensorHandle, channelHandle, rate,
857 [&ret, rate] (auto result, auto token) {
858 if (rate == RateLevel::STOP) {
859 ret = StatusFromResult(result);
860 } else {
861 if (result == Result::OK) {
862 ret = token;
863 } else {
864 ret = StatusFromResult(result);
865 }
866 }
867 }));
868
869 return ret;
Aravind Akellaa9e6cc32015-04-16 18:57:31 -0700870}
871
Mathias Agopian667102f2011-09-14 16:43:34 -0700872// ---------------------------------------------------------------------------
873
Brian Stack156da082018-10-01 15:58:53 -0700874int SensorDevice::Info::numActiveClients() const {
Aravind Akella4949c502015-02-11 15:54:35 -0800875 SensorDevice& device(SensorDevice::getInstance());
876 int num = 0;
877 for (size_t i = 0; i < batchParams.size(); ++i) {
878 if (!device.isClientDisabledLocked(batchParams.keyAt(i))) {
879 ++num;
880 }
881 }
882 return num;
883}
884
Peng Xu2bec6232016-07-01 17:13:10 -0700885status_t SensorDevice::Info::setBatchParamsForIdent(void* ident, int,
Aravind Akella724d91d2013-06-27 12:04:23 -0700886 int64_t samplingPeriodNs,
887 int64_t maxBatchReportLatencyNs) {
888 ssize_t index = batchParams.indexOfKey(ident);
Mathias Agopian667102f2011-09-14 16:43:34 -0700889 if (index < 0) {
Peng Xu2bec6232016-07-01 17:13:10 -0700890 ALOGE("Info::setBatchParamsForIdent(ident=%p, period_ns=%" PRId64
891 " timeout=%" PRId64 ") failed (%s)",
Aravind Akella724d91d2013-06-27 12:04:23 -0700892 ident, samplingPeriodNs, maxBatchReportLatencyNs, strerror(-index));
Mathias Agopian667102f2011-09-14 16:43:34 -0700893 return BAD_INDEX;
894 }
Aravind Akella724d91d2013-06-27 12:04:23 -0700895 BatchParams& params = batchParams.editValueAt(index);
Peng Xu2bec6232016-07-01 17:13:10 -0700896 params.mTSample = samplingPeriodNs;
897 params.mTBatch = maxBatchReportLatencyNs;
Mathias Agopian667102f2011-09-14 16:43:34 -0700898 return NO_ERROR;
899}
900
Aravind Akella724d91d2013-06-27 12:04:23 -0700901void SensorDevice::Info::selectBatchParams() {
Peng Xu2bec6232016-07-01 17:13:10 -0700902 BatchParams bestParams; // default to max Tsample and max Tbatch
Aravind Akella4949c502015-02-11 15:54:35 -0800903 SensorDevice& device(SensorDevice::getInstance());
Aravind Akella724d91d2013-06-27 12:04:23 -0700904
Aravind Akella4949c502015-02-11 15:54:35 -0800905 for (size_t i = 0; i < batchParams.size(); ++i) {
Peng Xu2bec6232016-07-01 17:13:10 -0700906 if (device.isClientDisabledLocked(batchParams.keyAt(i))) {
907 continue;
Aravind Akella724d91d2013-06-27 12:04:23 -0700908 }
Peng Xu2bec6232016-07-01 17:13:10 -0700909 bestParams.merge(batchParams[i]);
910 }
911 // if mTBatch <= mTSample, it is in streaming mode. set mTbatch to 0 to demand this explicitly.
912 if (bestParams.mTBatch <= bestParams.mTSample) {
913 bestParams.mTBatch = 0;
Mathias Agopianf001c922010-11-11 17:58:51 -0800914 }
Aravind Akella724d91d2013-06-27 12:04:23 -0700915 bestBatchParams = bestParams;
916}
917
918ssize_t SensorDevice::Info::removeBatchParamsForIdent(void* ident) {
919 ssize_t idx = batchParams.removeItem(ident);
920 if (idx >= 0) {
921 selectBatchParams();
922 }
923 return idx;
Mathias Agopianf001c922010-11-11 17:58:51 -0800924}
925
Peng Xu4f707f82016-09-26 11:28:32 -0700926void SensorDevice::notifyConnectionDestroyed(void* ident) {
927 Mutex::Autolock _l(mLock);
928 mDisabledClients.remove(ident);
929}
930
Peng Xu53632542017-01-23 20:06:27 -0800931bool SensorDevice::isDirectReportSupported() const {
Steven Morelandd15c0302016-12-20 11:14:50 -0800932 return mIsDirectReportSupported;
Peng Xu53632542017-01-23 20:06:27 -0800933}
Steven Morelandd15c0302016-12-20 11:14:50 -0800934
935void SensorDevice::convertToSensorEvent(
936 const Event &src, sensors_event_t *dst) {
937 ::android::hardware::sensors::V1_0::implementation::convertToSensorEvent(
938 src, dst);
939
940 if (src.sensorType == SensorType::DYNAMIC_SENSOR_META) {
941 const DynamicSensorInfo &dyn = src.u.dynamic;
942
943 dst->dynamic_sensor_meta.connected = dyn.connected;
944 dst->dynamic_sensor_meta.handle = dyn.sensorHandle;
945 if (dyn.connected) {
946 auto it = mConnectedDynamicSensors.find(dyn.sensorHandle);
947 CHECK(it != mConnectedDynamicSensors.end());
948
949 dst->dynamic_sensor_meta.sensor = it->second;
950
951 memcpy(dst->dynamic_sensor_meta.uuid,
952 dyn.uuid.data(),
953 sizeof(dst->dynamic_sensor_meta.uuid));
954 }
955 }
956}
957
958void SensorDevice::convertToSensorEvents(
959 const hidl_vec<Event> &src,
960 const hidl_vec<SensorInfo> &dynamicSensorsAdded,
961 sensors_event_t *dst) {
Steven Morelandd15c0302016-12-20 11:14:50 -0800962
Brian Stack6c49e6f2018-09-24 15:44:32 -0700963 if (dynamicSensorsAdded.size() > 0) {
964 onDynamicSensorsConnected(dynamicSensorsAdded);
Steven Morelandd15c0302016-12-20 11:14:50 -0800965 }
966
967 for (size_t i = 0; i < src.size(); ++i) {
968 convertToSensorEvent(src[i], &dst[i]);
969 }
970}
971
Peng Xu3889e6e2017-03-02 19:10:38 -0800972void SensorDevice::handleHidlDeath(const std::string & detail) {
Brian Stack156da082018-10-01 15:58:53 -0700973 if (!SensorDevice::getInstance().mSensors->supportsMessageQueues()) {
974 // restart is the only option at present.
975 LOG_ALWAYS_FATAL("Abort due to ISensors hidl service failure, detail: %s.", detail.c_str());
976 } else {
977 ALOGD("ISensors HAL died, death recipient will attempt reconnect");
978 }
Peng Xu3889e6e2017-03-02 19:10:38 -0800979}
980
Mathias Agopianf001c922010-11-11 17:58:51 -0800981// ---------------------------------------------------------------------------
982}; // namespace android