1 /* 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 #ifndef ANDROID_SENSOR_DEVICE_H 18 #define ANDROID_SENSOR_DEVICE_H 19 20 #include "SensorDeviceUtils.h" 21 #include "SensorService.h" 22 #include "SensorServiceUtils.h" 23 #include "ISensorsWrapper.h" 24 25 #include <fmq/MessageQueue.h> 26 #include <sensor/SensorEventQueue.h> 27 #include <sensor/Sensor.h> 28 #include <stdint.h> 29 #include <sys/types.h> 30 #include <utils/KeyedVector.h> 31 #include <utils/Singleton.h> 32 #include <utils/String8.h> 33 #include <utils/Timers.h> 34 35 #include <string> 36 #include <unordered_map> 37 #include <algorithm> //std::max std::min 38 39 #include "RingBuffer.h" 40 41 // --------------------------------------------------------------------------- 42 43 namespace android { 44 45 // --------------------------------------------------------------------------- 46 class SensorsHalDeathReceivier : public android::hardware::hidl_death_recipient { 47 virtual void serviceDied(uint64_t cookie, 48 const wp<::android::hidl::base::V1_0::IBase>& service) override; 49 }; 50 51 class SensorDevice : public Singleton<SensorDevice>, 52 public SensorServiceUtil::Dumpable { 53 public: 54 class HidlTransportErrorLog { 55 public: 56 HidlTransportErrorLog()57 HidlTransportErrorLog() { 58 mTs = 0; 59 mCount = 0; 60 } 61 HidlTransportErrorLog(time_t ts,int count)62 HidlTransportErrorLog(time_t ts, int count) { 63 mTs = ts; 64 mCount = count; 65 } 66 toString()67 String8 toString() const { 68 String8 result; 69 struct tm *timeInfo = localtime(&mTs); 70 result.appendFormat("%02d:%02d:%02d :: %d", timeInfo->tm_hour, timeInfo->tm_min, 71 timeInfo->tm_sec, mCount); 72 return result; 73 } 74 75 private: 76 time_t mTs; // timestamp of the error 77 int mCount; // number of transport errors observed 78 }; 79 80 ~SensorDevice(); 81 void prepareForReconnect(); 82 void reconnect(); 83 84 ssize_t getSensorList(sensor_t const** list); 85 86 void handleDynamicSensorConnection(int handle, bool connected); 87 status_t initCheck() const; 88 int getHalDeviceVersion() const; 89 90 ssize_t poll(sensors_event_t* buffer, size_t count); 91 void writeWakeLockHandled(uint32_t count); 92 93 status_t activate(void* ident, int handle, int enabled); 94 status_t batch(void* ident, int handle, int flags, int64_t samplingPeriodNs, 95 int64_t maxBatchReportLatencyNs); 96 // Call batch with timeout zero instead of calling setDelay() for newer devices. 97 status_t setDelay(void* ident, int handle, int64_t ns); 98 status_t flush(void* ident, int handle); 99 status_t setMode(uint32_t mode); 100 101 bool isDirectReportSupported() const; 102 int32_t registerDirectChannel(const sensors_direct_mem_t *memory); 103 void unregisterDirectChannel(int32_t channelHandle); 104 int32_t configureDirectChannel(int32_t sensorHandle, 105 int32_t channelHandle, const struct sensors_direct_cfg_t *config); 106 107 void disableAllSensors(); 108 void enableAllSensors(); 109 void autoDisable(void *ident, int handle); 110 111 status_t injectSensorData(const sensors_event_t *event); 112 void notifyConnectionDestroyed(void *ident); 113 114 using Result = ::android::hardware::sensors::V1_0::Result; 115 hardware::Return<void> onDynamicSensorsConnected( 116 const hardware::hidl_vec<hardware::sensors::V2_1::SensorInfo> &dynamicSensorsAdded); 117 hardware::Return<void> onDynamicSensorsDisconnected( 118 const hardware::hidl_vec<int32_t> &dynamicSensorHandlesRemoved); 119 120 void setUidStateForConnection(void* ident, SensorService::UidState state); 121 isReconnecting()122 bool isReconnecting() const { 123 return mReconnecting; 124 } 125 126 bool isSensorActive(int handle) const; 127 128 // Dumpable 129 virtual std::string dump() const override; 130 virtual void dump(util::ProtoOutputStream* proto) const override; 131 private: 132 friend class Singleton<SensorDevice>; 133 134 sp<::android::hardware::sensors::V2_1::implementation::ISensorsWrapperBase> mSensors; 135 Vector<sensor_t> mSensorList; 136 std::unordered_map<int32_t, sensor_t*> mConnectedDynamicSensors; 137 138 static const nsecs_t MINIMUM_EVENTS_PERIOD = 1000000; // 1000 Hz 139 mutable Mutex mLock; // protect mActivationCount[].batchParams 140 // fixed-size array after construction 141 142 // Struct to store all the parameters(samplingPeriod, maxBatchReportLatency and flags) from 143 // batch call. For continous mode clients, maxBatchReportLatency is set to zero. 144 struct BatchParams { 145 nsecs_t mTSample, mTBatch; BatchParamsBatchParams146 BatchParams() : mTSample(INT64_MAX), mTBatch(INT64_MAX) {} BatchParamsBatchParams147 BatchParams(nsecs_t tSample, nsecs_t tBatch): mTSample(tSample), mTBatch(tBatch) {} 148 bool operator != (const BatchParams& other) { 149 return !(mTSample == other.mTSample && mTBatch == other.mTBatch); 150 } 151 // Merge another parameter with this one. The updated mTSample will be the min of the two. 152 // The update mTBatch will be the min of original mTBatch and the apparent batch period 153 // of the other. the apparent batch is the maximum of mTBatch and mTSample, mergeBatchParams154 void merge(const BatchParams &other) { 155 mTSample = std::min(mTSample, other.mTSample); 156 mTBatch = std::min(mTBatch, std::max(other.mTBatch, other.mTSample)); 157 } 158 }; 159 160 // Store batch parameters in the KeyedVector and the optimal batch_rate and timeout in 161 // bestBatchParams. For every batch() call corresponding params are stored in batchParams 162 // vector. A continuous mode request is batch(... timeout=0 ..) followed by activate(). A batch 163 // mode request is batch(... timeout > 0 ...) followed by activate(). 164 // Info is a per-sensor data structure which contains the batch parameters for each client that 165 // has registered for this sensor. 166 struct Info { 167 BatchParams bestBatchParams; 168 // Key is the unique identifier(ident) for each client, value is the batch parameters 169 // requested by the client. 170 KeyedVector<void*, BatchParams> batchParams; 171 172 // Flag to track if the sensor is active 173 bool isActive = false; 174 175 // Sets batch parameters for this ident. Returns error if this ident is not already present 176 // in the KeyedVector above. 177 status_t setBatchParamsForIdent(void* ident, int flags, int64_t samplingPeriodNs, 178 int64_t maxBatchReportLatencyNs); 179 // Finds the optimal parameters for batching and stores them in bestBatchParams variable. 180 void selectBatchParams(); 181 // Removes batchParams for an ident and re-computes bestBatchParams. Returns the index of 182 // the removed ident. If index >=0, ident is present and successfully removed. 183 ssize_t removeBatchParamsForIdent(void* ident); 184 hasBatchParamsForIdentInfo185 bool hasBatchParamsForIdent(void* ident) const { 186 return batchParams.indexOfKey(ident) >= 0; 187 } 188 189 /** 190 * @return The number of active clients of this sensor. 191 */ 192 int numActiveClients() const; 193 }; 194 DefaultKeyedVector<int, Info> mActivationCount; 195 196 // Keep track of any hidl transport failures 197 SensorServiceUtil::RingBuffer<HidlTransportErrorLog> mHidlTransportErrors; 198 int mTotalHidlTransportErrors; 199 200 /** 201 * Enums describing the reason why a client was disabled. 202 */ 203 enum DisabledReason : uint8_t { 204 // UID becomes idle (e.g. app goes to background). 205 DISABLED_REASON_UID_IDLE = 0, 206 207 // Sensors are restricted for all clients. 208 DISABLED_REASON_SERVICE_RESTRICTED, 209 DISABLED_REASON_MAX, 210 }; 211 212 static_assert(DisabledReason::DISABLED_REASON_MAX < sizeof(uint8_t) * CHAR_BIT); 213 214 // Use this map to determine which client is activated or deactivated. 215 std::unordered_map<void *, uint8_t> mDisabledClients; 216 217 void addDisabledReasonForIdentLocked(void* ident, DisabledReason reason); 218 void removeDisabledReasonForIdentLocked(void* ident, DisabledReason reason); 219 220 SensorDevice(); 221 bool connectHidlService(); 222 void initializeSensorList(); 223 void reactivateSensors(const DefaultKeyedVector<int, Info>& previousActivations); 224 static bool sensorHandlesChanged(const Vector<sensor_t>& oldSensorList, 225 const Vector<sensor_t>& newSensorList); 226 static bool sensorIsEquivalent(const sensor_t& prevSensor, const sensor_t& newSensor); 227 228 enum HalConnectionStatus { 229 CONNECTED, // Successfully connected to the HAL 230 DOES_NOT_EXIST, // Could not find the HAL 231 FAILED_TO_CONNECT, // Found the HAL but failed to connect/initialize 232 UNKNOWN, 233 }; 234 HalConnectionStatus connectHidlServiceV1_0(); 235 HalConnectionStatus connectHidlServiceV2_0(); 236 HalConnectionStatus connectHidlServiceV2_1(); 237 HalConnectionStatus initializeHidlServiceV2_X(); 238 239 ssize_t pollHal(sensors_event_t* buffer, size_t count); 240 ssize_t pollFmq(sensors_event_t* buffer, size_t count); 241 status_t activateLocked(void* ident, int handle, int enabled); 242 status_t batchLocked(void* ident, int handle, int flags, int64_t samplingPeriodNs, 243 int64_t maxBatchReportLatencyNs); 244 245 status_t updateBatchParamsLocked(int handle, Info& info); 246 status_t doActivateHardwareLocked(int handle, bool enable); 247 248 void handleHidlDeath(const std::string &detail); 249 template<typename T> checkReturn(const Return<T> & ret)250 void checkReturn(const Return<T>& ret) { 251 if (!ret.isOk()) { 252 handleHidlDeath(ret.description()); 253 } 254 } 255 status_t checkReturnAndGetStatus(const Return<Result>& ret); 256 //TODO(b/67425500): remove waiter after bug is resolved. 257 sp<SensorDeviceUtils::HidlServiceRegistrationWaiter> mRestartWaiter; 258 259 bool isClientDisabled(void* ident) const; 260 bool isClientDisabledLocked(void* ident) const; 261 std::vector<void *> getDisabledClientsLocked() const; 262 263 bool clientHasNoAccessLocked(void* ident) const; 264 265 using Event = hardware::sensors::V2_1::Event; 266 using SensorInfo = hardware::sensors::V2_1::SensorInfo; 267 268 void convertToSensorEvent(const Event &src, sensors_event_t *dst); 269 270 void convertToSensorEventsAndQuantize( 271 const hardware::hidl_vec<Event> &src, 272 const hardware::hidl_vec<SensorInfo> &dynamicSensorsAdded, 273 sensors_event_t *dst); 274 275 float getResolutionForSensor(int sensorHandle); 276 277 bool mIsDirectReportSupported; 278 279 typedef hardware::MessageQueue<uint32_t, hardware::kSynchronizedReadWrite> WakeLockQueue; 280 std::unique_ptr<WakeLockQueue> mWakeLockQueue; 281 282 hardware::EventFlag* mEventQueueFlag; 283 hardware::EventFlag* mWakeLockQueueFlag; 284 285 std::array<Event, SensorEventQueue::MAX_RECEIVE_BUFFER_EVENT_COUNT> mEventBuffer; 286 287 sp<SensorsHalDeathReceivier> mSensorsHalDeathReceiver; 288 std::atomic_bool mReconnecting; 289 }; 290 291 // --------------------------------------------------------------------------- 292 }; // namespace android 293 294 #endif // ANDROID_SENSOR_DEVICE_H 295