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Peng Xueb4d6282015-12-10 18:02:41 -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 */
16
Arthur Ishiguro3e9afc12020-09-22 13:05:15 -070017#include <log/log.h>
Peng Xueb4d6282015-12-10 18:02:41 -080018#include <sys/socket.h>
19#include <utils/threads.h>
20
Mike Ma24743862020-01-29 00:36:55 -080021#include <android/util/ProtoOutputStream.h>
22#include <frameworks/base/core/proto/android/service/sensor_service.proto.h>
Mathias Agopian801ea092017-03-06 15:05:04 -080023#include <sensor/SensorEventQueue.h>
Peng Xueb4d6282015-12-10 18:02:41 -080024
25#include "vec.h"
26#include "SensorEventConnection.h"
Peng Xu755c4512016-04-07 23:15:14 -070027#include "SensorDevice.h"
Peng Xueb4d6282015-12-10 18:02:41 -080028
Peng Xue36e3472016-11-03 11:57:10 -070029#define UNUSED(x) (void)(x)
30
Peng Xueb4d6282015-12-10 18:02:41 -080031namespace android {
Anthony Stange07eb4212020-08-28 14:50:28 -040032namespace {
33
34// Used as the default value for the target SDK until it's obtained via getTargetSdkVersion.
35constexpr int kTargetSdkUnknown = 0;
36
37} // namespace
Peng Xueb4d6282015-12-10 18:02:41 -080038
39SensorService::SensorEventConnection::SensorEventConnection(
40 const sp<SensorService>& service, uid_t uid, String8 packageName, bool isDataInjectionMode,
Arthur Ishiguro340882c2021-02-18 15:17:44 -080041 const String16& opPackageName, const String16& attributionTag)
Peng Xueb4d6282015-12-10 18:02:41 -080042 : mService(service), mUid(uid), mWakeLockRefCount(0), mHasLooperCallbacks(false),
Yi Kong8f313e32018-07-17 14:13:29 -070043 mDead(false), mDataInjectionMode(isDataInjectionMode), mEventCache(nullptr),
Brian Stackae4053f2018-12-10 14:54:18 -080044 mCacheSize(0), mMaxCacheSize(0), mTimeOfLastEventDrop(0), mEventsDropped(0),
Arthur Ishiguro340882c2021-02-18 15:17:44 -080045 mPackageName(packageName), mOpPackageName(opPackageName), mAttributionTag(attributionTag),
46 mTargetSdk(kTargetSdkUnknown), mDestroyed(false) {
Anh Pham5198c992021-02-10 14:15:30 +010047 mUserId = multiuser_get_user_id(mUid);
Peng Xueb4d6282015-12-10 18:02:41 -080048 mChannel = new BitTube(mService->mSocketBufferSize);
49#if DEBUG_CONNECTIONS
50 mEventsReceived = mEventsSentFromCache = mEventsSent = 0;
51 mTotalAcksNeeded = mTotalAcksReceived = 0;
52#endif
53}
54
55SensorService::SensorEventConnection::~SensorEventConnection() {
56 ALOGD_IF(DEBUG_CONNECTIONS, "~SensorEventConnection(%p)", this);
Peng Xu8cbefd72017-07-10 16:41:08 -070057 destroy();
Peng Xueb4d6282015-12-10 18:02:41 -080058 mService->cleanupConnection(this);
Yi Kong8f313e32018-07-17 14:13:29 -070059 if (mEventCache != nullptr) {
George Burgess IV1866ed42018-01-21 12:14:09 -080060 delete[] mEventCache;
Peng Xueb4d6282015-12-10 18:02:41 -080061 }
Arthur Ishiguro3e9afc12020-09-22 13:05:15 -070062}
63
64void SensorService::SensorEventConnection::destroy() {
Peng Xu8cbefd72017-07-10 16:41:08 -070065 mDestroyed = true;
Peng Xueb4d6282015-12-10 18:02:41 -080066}
67
68void SensorService::SensorEventConnection::onFirstRef() {
69 LooperCallback::onFirstRef();
70}
71
72bool SensorService::SensorEventConnection::needsWakeLock() {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -070073 Mutex::Autolock _l(mConnectionLock);
Peng Xueb4d6282015-12-10 18:02:41 -080074 return !mDead && mWakeLockRefCount > 0;
75}
76
77void SensorService::SensorEventConnection::resetWakeLockRefCount() {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -070078 Mutex::Autolock _l(mConnectionLock);
Peng Xueb4d6282015-12-10 18:02:41 -080079 mWakeLockRefCount = 0;
80}
81
82void SensorService::SensorEventConnection::dump(String8& result) {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -070083 Mutex::Autolock _l(mConnectionLock);
Brian Stackbce04d72019-03-21 10:54:10 -070084 result.appendFormat("\tOperating Mode: ");
85 if (!mService->isWhiteListedPackage(getPackageName())) {
86 result.append("RESTRICTED\n");
87 } else if (mDataInjectionMode) {
88 result.append("DATA_INJECTION\n");
89 } else {
90 result.append("NORMAL\n");
91 }
Peng Xueb4d6282015-12-10 18:02:41 -080092 result.appendFormat("\t %s | WakeLockRefCount %d | uid %d | cache size %d | "
93 "max cache size %d\n", mPackageName.string(), mWakeLockRefCount, mUid, mCacheSize,
94 mMaxCacheSize);
Arthur Ishiguroad46c782020-03-26 11:24:43 -070095 for (auto& it : mSensorInfo) {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -070096 const FlushInfo& flushInfo = it.second;
Peng Xueb4d6282015-12-10 18:02:41 -080097 result.appendFormat("\t %s 0x%08x | status: %s | pending flush events %d \n",
Arthur Ishiguroad46c782020-03-26 11:24:43 -070098 mService->getSensorName(it.first).string(),
99 it.first,
Peng Xueb4d6282015-12-10 18:02:41 -0800100 flushInfo.mFirstFlushPending ? "First flush pending" :
101 "active",
102 flushInfo.mPendingFlushEventsToSend);
103 }
104#if DEBUG_CONNECTIONS
105 result.appendFormat("\t events recvd: %d | sent %d | cache %d | dropped %d |"
106 " total_acks_needed %d | total_acks_recvd %d\n",
107 mEventsReceived,
108 mEventsSent,
109 mEventsSentFromCache,
110 mEventsReceived - (mEventsSentFromCache + mEventsSent + mCacheSize),
111 mTotalAcksNeeded,
112 mTotalAcksReceived);
113#endif
114}
115
Mike Ma24743862020-01-29 00:36:55 -0800116/**
117 * Dump debugging information as android.service.SensorEventConnectionProto protobuf message using
118 * ProtoOutputStream.
119 *
120 * See proto definition and some notes about ProtoOutputStream in
121 * frameworks/base/core/proto/android/service/sensor_service.proto
122 */
123void SensorService::SensorEventConnection::dump(util::ProtoOutputStream* proto) const {
124 using namespace service::SensorEventConnectionProto;
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700125 Mutex::Autolock _l(mConnectionLock);
Mike Ma24743862020-01-29 00:36:55 -0800126
127 if (!mService->isWhiteListedPackage(getPackageName())) {
128 proto->write(OPERATING_MODE, OP_MODE_RESTRICTED);
129 } else if (mDataInjectionMode) {
130 proto->write(OPERATING_MODE, OP_MODE_DATA_INJECTION);
131 } else {
132 proto->write(OPERATING_MODE, OP_MODE_NORMAL);
133 }
134 proto->write(PACKAGE_NAME, std::string(mPackageName.string()));
135 proto->write(WAKE_LOCK_REF_COUNT, int32_t(mWakeLockRefCount));
136 proto->write(UID, int32_t(mUid));
137 proto->write(CACHE_SIZE, int32_t(mCacheSize));
138 proto->write(MAX_CACHE_SIZE, int32_t(mMaxCacheSize));
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700139 for (auto& it : mSensorInfo) {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700140 const FlushInfo& flushInfo = it.second;
Mike Ma24743862020-01-29 00:36:55 -0800141 const uint64_t token = proto->start(FLUSH_INFOS);
142 proto->write(FlushInfoProto::SENSOR_NAME,
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700143 std::string(mService->getSensorName(it.first)));
144 proto->write(FlushInfoProto::SENSOR_HANDLE, it.first);
Mike Ma24743862020-01-29 00:36:55 -0800145 proto->write(FlushInfoProto::FIRST_FLUSH_PENDING, flushInfo.mFirstFlushPending);
146 proto->write(FlushInfoProto::PENDING_FLUSH_EVENTS_TO_SEND,
147 flushInfo.mPendingFlushEventsToSend);
148 proto->end(token);
149 }
150#if DEBUG_CONNECTIONS
151 proto->write(EVENTS_RECEIVED, mEventsReceived);
152 proto->write(EVENTS_SENT, mEventsSent);
153 proto->write(EVENTS_CACHE, mEventsSentFromCache);
154 proto->write(EVENTS_DROPPED, mEventsReceived - (mEventsSentFromCache + mEventsSent +
155 mCacheSize));
156 proto->write(TOTAL_ACKS_NEEDED, mTotalAcksNeeded);
157 proto->write(TOTAL_ACKS_RECEIVED, mTotalAcksReceived);
158#endif
159}
160
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700161bool SensorService::SensorEventConnection::addSensor(int32_t handle) {
162 Mutex::Autolock _l(mConnectionLock);
Peng Xu755c4512016-04-07 23:15:14 -0700163 sp<SensorInterface> si = mService->getSensorInterfaceFromHandle(handle);
164 if (si == nullptr ||
Arthur Ishiguro883748c2020-10-28 13:18:02 -0700165 !canAccessSensor(si->getSensor(), "Add to SensorEventConnection: ", mOpPackageName) ||
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700166 mSensorInfo.count(handle) > 0) {
Peng Xueb4d6282015-12-10 18:02:41 -0800167 return false;
168 }
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700169 mSensorInfo[handle] = FlushInfo();
Peng Xu755c4512016-04-07 23:15:14 -0700170 return true;
Peng Xueb4d6282015-12-10 18:02:41 -0800171}
172
173bool SensorService::SensorEventConnection::removeSensor(int32_t handle) {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700174 Mutex::Autolock _l(mConnectionLock);
175 if (mSensorInfo.erase(handle) >= 0) {
176 return true;
177 }
178 return false;
Peng Xueb4d6282015-12-10 18:02:41 -0800179}
180
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700181std::vector<int32_t> SensorService::SensorEventConnection::getActiveSensorHandles() const {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700182 Mutex::Autolock _l(mConnectionLock);
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700183 std::vector<int32_t> list;
184 for (auto& it : mSensorInfo) {
185 list.push_back(it.first);
186 }
187 return list;
188}
189
Peng Xueb4d6282015-12-10 18:02:41 -0800190bool SensorService::SensorEventConnection::hasSensor(int32_t handle) const {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700191 Mutex::Autolock _l(mConnectionLock);
192 return mSensorInfo.count(handle) > 0;
Peng Xueb4d6282015-12-10 18:02:41 -0800193}
194
195bool SensorService::SensorEventConnection::hasAnySensor() const {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700196 Mutex::Autolock _l(mConnectionLock);
197 return mSensorInfo.size() ? true : false;
Peng Xueb4d6282015-12-10 18:02:41 -0800198}
199
200bool SensorService::SensorEventConnection::hasOneShotSensors() const {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700201 Mutex::Autolock _l(mConnectionLock);
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700202 for (auto &it : mSensorInfo) {
203 const int handle = it.first;
Peng Xu755c4512016-04-07 23:15:14 -0700204 sp<SensorInterface> si = mService->getSensorInterfaceFromHandle(handle);
205 if (si != nullptr && si->getSensor().getReportingMode() == AREPORTING_MODE_ONE_SHOT) {
Peng Xueb4d6282015-12-10 18:02:41 -0800206 return true;
207 }
208 }
209 return false;
210}
211
212String8 SensorService::SensorEventConnection::getPackageName() const {
213 return mPackageName;
214}
215
216void SensorService::SensorEventConnection::setFirstFlushPending(int32_t handle,
217 bool value) {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700218 Mutex::Autolock _l(mConnectionLock);
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700219 if (mSensorInfo.count(handle) > 0) {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700220 FlushInfo& flushInfo = mSensorInfo[handle];
Peng Xueb4d6282015-12-10 18:02:41 -0800221 flushInfo.mFirstFlushPending = value;
222 }
223}
224
225void SensorService::SensorEventConnection::updateLooperRegistration(const sp<Looper>& looper) {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700226 Mutex::Autolock _l(mConnectionLock);
Peng Xueb4d6282015-12-10 18:02:41 -0800227 updateLooperRegistrationLocked(looper);
228}
229
230void SensorService::SensorEventConnection::updateLooperRegistrationLocked(
231 const sp<Looper>& looper) {
232 bool isConnectionActive = (mSensorInfo.size() > 0 && !mDataInjectionMode) ||
233 mDataInjectionMode;
234 // If all sensors are unregistered OR Looper has encountered an error, we can remove the Fd from
235 // the Looper if it has been previously added.
236 if (!isConnectionActive || mDead) { if (mHasLooperCallbacks) {
237 ALOGD_IF(DEBUG_CONNECTIONS, "%p removeFd fd=%d", this,
238 mChannel->getSendFd());
239 looper->removeFd(mChannel->getSendFd()); mHasLooperCallbacks = false; }
240 return; }
241
242 int looper_flags = 0;
243 if (mCacheSize > 0) looper_flags |= ALOOPER_EVENT_OUTPUT;
244 if (mDataInjectionMode) looper_flags |= ALOOPER_EVENT_INPUT;
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700245 for (auto& it : mSensorInfo) {
246 const int handle = it.first;
Peng Xu755c4512016-04-07 23:15:14 -0700247 sp<SensorInterface> si = mService->getSensorInterfaceFromHandle(handle);
248 if (si != nullptr && si->getSensor().isWakeUpSensor()) {
Peng Xueb4d6282015-12-10 18:02:41 -0800249 looper_flags |= ALOOPER_EVENT_INPUT;
Peng Xueb4d6282015-12-10 18:02:41 -0800250 }
251 }
252
253 // If flags is still set to zero, we don't need to add this fd to the Looper, if the fd has
254 // already been added, remove it. This is likely to happen when ALL the events stored in the
255 // cache have been sent to the corresponding app.
256 if (looper_flags == 0) {
257 if (mHasLooperCallbacks) {
258 ALOGD_IF(DEBUG_CONNECTIONS, "removeFd fd=%d", mChannel->getSendFd());
259 looper->removeFd(mChannel->getSendFd());
260 mHasLooperCallbacks = false;
261 }
262 return;
263 }
264
265 // Add the file descriptor to the Looper for receiving acknowledegments if the app has
266 // registered for wake-up sensors OR for sending events in the cache.
Yi Kong8f313e32018-07-17 14:13:29 -0700267 int ret = looper->addFd(mChannel->getSendFd(), 0, looper_flags, this, nullptr);
Peng Xueb4d6282015-12-10 18:02:41 -0800268 if (ret == 1) {
269 ALOGD_IF(DEBUG_CONNECTIONS, "%p addFd fd=%d", this, mChannel->getSendFd());
270 mHasLooperCallbacks = true;
271 } else {
272 ALOGE("Looper::addFd failed ret=%d fd=%d", ret, mChannel->getSendFd());
273 }
274}
275
Stan Rokita29adc8c2020-07-06 17:38:03 -0700276bool SensorService::SensorEventConnection::incrementPendingFlushCountIfHasAccess(int32_t handle) {
277 if (hasSensorAccess()) {
278 Mutex::Autolock _l(mConnectionLock);
279 if (mSensorInfo.count(handle) > 0) {
280 FlushInfo& flushInfo = mSensorInfo[handle];
281 flushInfo.mPendingFlushEventsToSend++;
282 }
283 return true;
284 } else {
285 return false;
Peng Xueb4d6282015-12-10 18:02:41 -0800286 }
287}
288
289status_t SensorService::SensorEventConnection::sendEvents(
290 sensors_event_t const* buffer, size_t numEvents,
291 sensors_event_t* scratch,
Peng Xuded526e2016-08-12 16:39:44 -0700292 wp<const SensorEventConnection> const * mapFlushEventsToConnections) {
Peng Xueb4d6282015-12-10 18:02:41 -0800293 // filter out events not for this connection
Svet Ganove752a5c2018-01-15 17:14:20 -0800294
George Burgess IV1866ed42018-01-21 12:14:09 -0800295 std::unique_ptr<sensors_event_t[]> sanitizedBuffer;
Svet Ganove752a5c2018-01-15 17:14:20 -0800296
Peng Xueb4d6282015-12-10 18:02:41 -0800297 int count = 0;
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700298 Mutex::Autolock _l(mConnectionLock);
Peng Xueb4d6282015-12-10 18:02:41 -0800299 if (scratch) {
300 size_t i=0;
301 while (i<numEvents) {
302 int32_t sensor_handle = buffer[i].sensor;
303 if (buffer[i].type == SENSOR_TYPE_META_DATA) {
304 ALOGD_IF(DEBUG_CONNECTIONS, "flush complete event sensor==%d ",
305 buffer[i].meta_data.sensor);
306 // Setting sensor_handle to the correct sensor to ensure the sensor events per
307 // connection are filtered correctly. buffer[i].sensor is zero for meta_data
308 // events.
309 sensor_handle = buffer[i].meta_data.sensor;
310 }
311
Peng Xueb4d6282015-12-10 18:02:41 -0800312 // Check if this connection has registered for this sensor. If not continue to the
313 // next sensor_event.
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700314 if (mSensorInfo.count(sensor_handle) == 0) {
Peng Xueb4d6282015-12-10 18:02:41 -0800315 ++i;
316 continue;
317 }
318
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700319 FlushInfo& flushInfo = mSensorInfo[sensor_handle];
Peng Xueb4d6282015-12-10 18:02:41 -0800320 // Check if there is a pending flush_complete event for this sensor on this connection.
321 if (buffer[i].type == SENSOR_TYPE_META_DATA && flushInfo.mFirstFlushPending == true &&
Peng Xuded526e2016-08-12 16:39:44 -0700322 mapFlushEventsToConnections[i] == this) {
Peng Xueb4d6282015-12-10 18:02:41 -0800323 flushInfo.mFirstFlushPending = false;
324 ALOGD_IF(DEBUG_CONNECTIONS, "First flush event for sensor==%d ",
325 buffer[i].meta_data.sensor);
326 ++i;
327 continue;
328 }
329
330 // If there is a pending flush complete event for this sensor on this connection,
331 // ignore the event and proceed to the next.
332 if (flushInfo.mFirstFlushPending) {
333 ++i;
334 continue;
335 }
336
337 do {
338 // Keep copying events into the scratch buffer as long as they are regular
339 // sensor_events are from the same sensor_handle OR they are flush_complete_events
340 // from the same sensor_handle AND the current connection is mapped to the
341 // corresponding flush_complete_event.
342 if (buffer[i].type == SENSOR_TYPE_META_DATA) {
Peng Xuded526e2016-08-12 16:39:44 -0700343 if (mapFlushEventsToConnections[i] == this) {
Peng Xueb4d6282015-12-10 18:02:41 -0800344 scratch[count++] = buffer[i];
345 }
Peng Xueb4d6282015-12-10 18:02:41 -0800346 } else {
Brian Stackc225aa12019-04-19 09:30:25 -0700347 // Regular sensor event, just copy it to the scratch buffer after checking
348 // the AppOp.
349 if (hasSensorAccess() && noteOpIfRequired(buffer[i])) {
Anh Phamdf549ea2021-03-22 11:50:48 +0100350 scratch[count++] = buffer[i];
Svet Ganove752a5c2018-01-15 17:14:20 -0800351 }
Peng Xueb4d6282015-12-10 18:02:41 -0800352 }
Svet Ganove752a5c2018-01-15 17:14:20 -0800353 i++;
Peng Xueb4d6282015-12-10 18:02:41 -0800354 } while ((i<numEvents) && ((buffer[i].sensor == sensor_handle &&
355 buffer[i].type != SENSOR_TYPE_META_DATA) ||
356 (buffer[i].type == SENSOR_TYPE_META_DATA &&
357 buffer[i].meta_data.sensor == sensor_handle)));
358 }
359 } else {
Michael Groover5e1f60b2018-12-04 22:34:29 -0800360 if (hasSensorAccess()) {
Anh Phamdf549ea2021-03-22 11:50:48 +0100361 scratch = const_cast<sensors_event_t *>(buffer);
362 count = numEvents;
Svet Ganove752a5c2018-01-15 17:14:20 -0800363 } else {
Anh Phamdf549ea2021-03-22 11:50:48 +0100364 sanitizedBuffer.reset(new sensors_event_t[numEvents]);
365 scratch = sanitizedBuffer.get();
Svet Ganove752a5c2018-01-15 17:14:20 -0800366 for (size_t i = 0; i < numEvents; i++) {
367 if (buffer[i].type == SENSOR_TYPE_META_DATA) {
368 scratch[count++] = buffer[i++];
369 }
370 }
371 }
Peng Xueb4d6282015-12-10 18:02:41 -0800372 }
373
374 sendPendingFlushEventsLocked();
375 // Early return if there are no events for this connection.
376 if (count == 0) {
377 return status_t(NO_ERROR);
378 }
379
380#if DEBUG_CONNECTIONS
381 mEventsReceived += count;
382#endif
383 if (mCacheSize != 0) {
384 // There are some events in the cache which need to be sent first. Copy this buffer to
385 // the end of cache.
Brian Stack93432ad2018-11-27 18:28:48 -0800386 appendEventsToCacheLocked(scratch, count);
Peng Xueb4d6282015-12-10 18:02:41 -0800387 return status_t(NO_ERROR);
388 }
389
Svet Ganove752a5c2018-01-15 17:14:20 -0800390 int index_wake_up_event = -1;
Michael Groover5e1f60b2018-12-04 22:34:29 -0800391 if (hasSensorAccess()) {
Svet Ganove752a5c2018-01-15 17:14:20 -0800392 index_wake_up_event = findWakeUpSensorEventLocked(scratch, count);
393 if (index_wake_up_event >= 0) {
394 scratch[index_wake_up_event].flags |= WAKE_UP_SENSOR_EVENT_NEEDS_ACK;
395 ++mWakeLockRefCount;
Peng Xueb4d6282015-12-10 18:02:41 -0800396#if DEBUG_CONNECTIONS
Svet Ganove752a5c2018-01-15 17:14:20 -0800397 ++mTotalAcksNeeded;
Peng Xueb4d6282015-12-10 18:02:41 -0800398#endif
Svet Ganove752a5c2018-01-15 17:14:20 -0800399 }
Peng Xueb4d6282015-12-10 18:02:41 -0800400 }
401
402 // NOTE: ASensorEvent and sensors_event_t are the same type.
403 ssize_t size = SensorEventQueue::write(mChannel,
404 reinterpret_cast<ASensorEvent const*>(scratch), count);
405 if (size < 0) {
406 // Write error, copy events to local cache.
407 if (index_wake_up_event >= 0) {
408 // If there was a wake_up sensor_event, reset the flag.
409 scratch[index_wake_up_event].flags &= ~WAKE_UP_SENSOR_EVENT_NEEDS_ACK;
410 if (mWakeLockRefCount > 0) {
411 --mWakeLockRefCount;
412 }
413#if DEBUG_CONNECTIONS
414 --mTotalAcksNeeded;
415#endif
416 }
Yi Kong8f313e32018-07-17 14:13:29 -0700417 if (mEventCache == nullptr) {
Peng Xueb4d6282015-12-10 18:02:41 -0800418 mMaxCacheSize = computeMaxCacheSizeLocked();
419 mEventCache = new sensors_event_t[mMaxCacheSize];
420 mCacheSize = 0;
421 }
Brian Stack93432ad2018-11-27 18:28:48 -0800422 // Save the events so that they can be written later
423 appendEventsToCacheLocked(scratch, count);
Peng Xueb4d6282015-12-10 18:02:41 -0800424
425 // Add this file descriptor to the looper to get a callback when this fd is available for
426 // writing.
427 updateLooperRegistrationLocked(mService->getLooper());
428 return size;
429 }
430
431#if DEBUG_CONNECTIONS
432 if (size > 0) {
433 mEventsSent += count;
434 }
435#endif
436
437 return size < 0 ? status_t(size) : status_t(NO_ERROR);
438}
439
Michael Groover5e1f60b2018-12-04 22:34:29 -0800440bool SensorService::SensorEventConnection::hasSensorAccess() {
Arthur Ishiguro539c27c2020-04-13 09:47:59 -0700441 return mService->isUidActive(mUid)
442 && !mService->mSensorPrivacyPolicy->isSensorPrivacyEnabled();
Michael Groover5e1f60b2018-12-04 22:34:29 -0800443}
444
Brian Stackc225aa12019-04-19 09:30:25 -0700445bool SensorService::SensorEventConnection::noteOpIfRequired(const sensors_event_t& event) {
446 bool success = true;
447 const auto iter = mHandleToAppOp.find(event.sensor);
448 if (iter != mHandleToAppOp.end()) {
Anthony Stange07eb4212020-08-28 14:50:28 -0400449 if (mTargetSdk == kTargetSdkUnknown) {
450 // getTargetSdkVersion returns -1 if it fails so this operation should only be run once
451 // per connection and then cached. Perform this here as opposed to in the constructor to
452 // avoid log spam for NDK/VNDK clients that don't use sensors guarded with permissions
453 // and pass in invalid op package names.
454 mTargetSdk = SensorService::getTargetSdkVersion(mOpPackageName);
455 }
456
Brian Duddie457e6392020-06-19 11:38:29 -0700457 // Special handling for step count/detect backwards compatibility: if the app's target SDK
458 // is pre-Q, still permit delivering events to the app even if permission isn't granted
459 // (since this permission was only introduced in Q)
460 if ((event.type == SENSOR_TYPE_STEP_COUNTER || event.type == SENSOR_TYPE_STEP_DETECTOR) &&
461 mTargetSdk > 0 && mTargetSdk <= __ANDROID_API_P__) {
462 success = true;
463 } else {
Arthur Ishiguro883748c2020-10-28 13:18:02 -0700464 int32_t sensorHandle = event.sensor;
465 String16 noteMsg("Sensor event (");
466 noteMsg.append(String16(mService->getSensorStringType(sensorHandle)));
467 noteMsg.append(String16(")"));
Brian Duddie457e6392020-06-19 11:38:29 -0700468 int32_t appOpMode = mService->sAppOpsManager.noteOp(iter->second, mUid,
Arthur Ishiguro340882c2021-02-18 15:17:44 -0800469 mOpPackageName, mAttributionTag,
470 noteMsg);
Brian Duddie457e6392020-06-19 11:38:29 -0700471 success = (appOpMode == AppOpsManager::MODE_ALLOWED);
472 }
Brian Stackc225aa12019-04-19 09:30:25 -0700473 }
474 return success;
475}
476
Peng Xueb4d6282015-12-10 18:02:41 -0800477void SensorService::SensorEventConnection::reAllocateCacheLocked(sensors_event_t const* scratch,
478 int count) {
479 sensors_event_t *eventCache_new;
480 const int new_cache_size = computeMaxCacheSizeLocked();
481 // Allocate new cache, copy over events from the old cache & scratch, free up memory.
482 eventCache_new = new sensors_event_t[new_cache_size];
483 memcpy(eventCache_new, mEventCache, mCacheSize * sizeof(sensors_event_t));
484 memcpy(&eventCache_new[mCacheSize], scratch, count * sizeof(sensors_event_t));
485
486 ALOGD_IF(DEBUG_CONNECTIONS, "reAllocateCacheLocked maxCacheSize=%d %d", mMaxCacheSize,
487 new_cache_size);
488
George Burgess IV1866ed42018-01-21 12:14:09 -0800489 delete[] mEventCache;
Peng Xueb4d6282015-12-10 18:02:41 -0800490 mEventCache = eventCache_new;
491 mCacheSize += count;
492 mMaxCacheSize = new_cache_size;
493}
494
Brian Stack93432ad2018-11-27 18:28:48 -0800495void SensorService::SensorEventConnection::appendEventsToCacheLocked(sensors_event_t const* events,
496 int count) {
497 if (count <= 0) {
498 return;
499 } else if (mCacheSize + count <= mMaxCacheSize) {
500 // The events fit within the current cache: add them
501 memcpy(&mEventCache[mCacheSize], events, count * sizeof(sensors_event_t));
502 mCacheSize += count;
503 } else if (mCacheSize + count <= computeMaxCacheSizeLocked()) {
504 // The events fit within a resized cache: resize the cache and add the events
505 reAllocateCacheLocked(events, count);
506 } else {
507 // The events do not fit within the cache: drop the oldest events.
Brian Stack93432ad2018-11-27 18:28:48 -0800508 int freeSpace = mMaxCacheSize - mCacheSize;
509
510 // Drop up to the currently cached number of events to make room for new events
511 int cachedEventsToDrop = std::min(mCacheSize, count - freeSpace);
512
513 // New events need to be dropped if there are more new events than the size of the cache
514 int newEventsToDrop = std::max(0, count - mMaxCacheSize);
515
516 // Determine the number of new events to copy into the cache
517 int eventsToCopy = std::min(mMaxCacheSize, count);
518
Brian Stackae4053f2018-12-10 14:54:18 -0800519 constexpr nsecs_t kMinimumTimeBetweenDropLogNs = 2 * 1000 * 1000 * 1000; // 2 sec
520 if (events[0].timestamp - mTimeOfLastEventDrop > kMinimumTimeBetweenDropLogNs) {
521 ALOGW("Dropping %d cached events (%d/%d) to save %d/%d new events. %d events previously"
522 " dropped", cachedEventsToDrop, mCacheSize, mMaxCacheSize, eventsToCopy,
523 count, mEventsDropped);
524 mEventsDropped = 0;
525 mTimeOfLastEventDrop = events[0].timestamp;
526 } else {
527 // Record the number dropped
528 mEventsDropped += cachedEventsToDrop + newEventsToDrop;
529 }
530
Brian Stack93432ad2018-11-27 18:28:48 -0800531 // Check for any flush complete events in the events that will be dropped
532 countFlushCompleteEventsLocked(mEventCache, cachedEventsToDrop);
533 countFlushCompleteEventsLocked(events, newEventsToDrop);
534
535 // Only shift the events if they will not all be overwritten
536 if (eventsToCopy != mMaxCacheSize) {
537 memmove(mEventCache, &mEventCache[cachedEventsToDrop],
538 (mCacheSize - cachedEventsToDrop) * sizeof(sensors_event_t));
539 }
540 mCacheSize -= cachedEventsToDrop;
541
542 // Copy the events into the cache
543 memcpy(&mEventCache[mCacheSize], &events[newEventsToDrop],
544 eventsToCopy * sizeof(sensors_event_t));
545 mCacheSize += eventsToCopy;
546 }
547}
548
Peng Xueb4d6282015-12-10 18:02:41 -0800549void SensorService::SensorEventConnection::sendPendingFlushEventsLocked() {
550 ASensorEvent flushCompleteEvent;
551 memset(&flushCompleteEvent, 0, sizeof(flushCompleteEvent));
552 flushCompleteEvent.type = SENSOR_TYPE_META_DATA;
553 // Loop through all the sensors for this connection and check if there are any pending
554 // flush complete events to be sent.
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700555 for (auto& it : mSensorInfo) {
556 const int handle = it.first;
Peng Xu755c4512016-04-07 23:15:14 -0700557 sp<SensorInterface> si = mService->getSensorInterfaceFromHandle(handle);
558 if (si == nullptr) {
559 continue;
560 }
561
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700562 FlushInfo& flushInfo = it.second;
Peng Xueb4d6282015-12-10 18:02:41 -0800563 while (flushInfo.mPendingFlushEventsToSend > 0) {
Peng Xu755c4512016-04-07 23:15:14 -0700564 flushCompleteEvent.meta_data.sensor = handle;
565 bool wakeUpSensor = si->getSensor().isWakeUpSensor();
Peng Xueb4d6282015-12-10 18:02:41 -0800566 if (wakeUpSensor) {
567 ++mWakeLockRefCount;
568 flushCompleteEvent.flags |= WAKE_UP_SENSOR_EVENT_NEEDS_ACK;
569 }
570 ssize_t size = SensorEventQueue::write(mChannel, &flushCompleteEvent, 1);
571 if (size < 0) {
572 if (wakeUpSensor) --mWakeLockRefCount;
573 return;
574 }
575 ALOGD_IF(DEBUG_CONNECTIONS, "sent dropped flush complete event==%d ",
576 flushCompleteEvent.meta_data.sensor);
577 flushInfo.mPendingFlushEventsToSend--;
578 }
579 }
580}
581
582void SensorService::SensorEventConnection::writeToSocketFromCache() {
583 // At a time write at most half the size of the receiver buffer in SensorEventQueue OR
584 // half the size of the socket buffer allocated in BitTube whichever is smaller.
585 const int maxWriteSize = helpers::min(SensorEventQueue::MAX_RECEIVE_BUFFER_EVENT_COUNT/2,
586 int(mService->mSocketBufferSize/(sizeof(sensors_event_t)*2)));
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700587 Mutex::Autolock _l(mConnectionLock);
Peng Xueb4d6282015-12-10 18:02:41 -0800588 // Send pending flush complete events (if any)
589 sendPendingFlushEventsLocked();
590 for (int numEventsSent = 0; numEventsSent < mCacheSize;) {
591 const int numEventsToWrite = helpers::min(mCacheSize - numEventsSent, maxWriteSize);
Svet Ganove752a5c2018-01-15 17:14:20 -0800592 int index_wake_up_event = -1;
Michael Groover5e1f60b2018-12-04 22:34:29 -0800593 if (hasSensorAccess()) {
Svet Ganove752a5c2018-01-15 17:14:20 -0800594 index_wake_up_event =
595 findWakeUpSensorEventLocked(mEventCache + numEventsSent, numEventsToWrite);
596 if (index_wake_up_event >= 0) {
597 mEventCache[index_wake_up_event + numEventsSent].flags |=
598 WAKE_UP_SENSOR_EVENT_NEEDS_ACK;
599 ++mWakeLockRefCount;
Peng Xueb4d6282015-12-10 18:02:41 -0800600#if DEBUG_CONNECTIONS
Svet Ganove752a5c2018-01-15 17:14:20 -0800601 ++mTotalAcksNeeded;
Peng Xueb4d6282015-12-10 18:02:41 -0800602#endif
Svet Ganove752a5c2018-01-15 17:14:20 -0800603 }
Peng Xueb4d6282015-12-10 18:02:41 -0800604 }
605
606 ssize_t size = SensorEventQueue::write(mChannel,
607 reinterpret_cast<ASensorEvent const*>(mEventCache + numEventsSent),
608 numEventsToWrite);
609 if (size < 0) {
610 if (index_wake_up_event >= 0) {
611 // If there was a wake_up sensor_event, reset the flag.
612 mEventCache[index_wake_up_event + numEventsSent].flags &=
613 ~WAKE_UP_SENSOR_EVENT_NEEDS_ACK;
614 if (mWakeLockRefCount > 0) {
615 --mWakeLockRefCount;
616 }
617#if DEBUG_CONNECTIONS
618 --mTotalAcksNeeded;
619#endif
620 }
621 memmove(mEventCache, &mEventCache[numEventsSent],
622 (mCacheSize - numEventsSent) * sizeof(sensors_event_t));
623 ALOGD_IF(DEBUG_CONNECTIONS, "wrote %d events from cache size==%d ",
624 numEventsSent, mCacheSize);
625 mCacheSize -= numEventsSent;
626 return;
627 }
628 numEventsSent += numEventsToWrite;
629#if DEBUG_CONNECTIONS
630 mEventsSentFromCache += numEventsToWrite;
631#endif
632 }
633 ALOGD_IF(DEBUG_CONNECTIONS, "wrote all events from cache size=%d ", mCacheSize);
634 // All events from the cache have been sent. Reset cache size to zero.
635 mCacheSize = 0;
636 // There are no more events in the cache. We don't need to poll for write on the fd.
637 // Update Looper registration.
638 updateLooperRegistrationLocked(mService->getLooper());
639}
640
641void SensorService::SensorEventConnection::countFlushCompleteEventsLocked(
642 sensors_event_t const* scratch, const int numEventsDropped) {
643 ALOGD_IF(DEBUG_CONNECTIONS, "dropping %d events ", numEventsDropped);
644 // Count flushComplete events in the events that are about to the dropped. These will be sent
645 // separately before the next batch of events.
646 for (int j = 0; j < numEventsDropped; ++j) {
647 if (scratch[j].type == SENSOR_TYPE_META_DATA) {
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700648 if (mSensorInfo.count(scratch[j].meta_data.sensor) == 0) {
Peng Xu63fbab82017-06-20 12:41:33 -0700649 ALOGW("%s: sensor 0x%x is not found in connection",
650 __func__, scratch[j].meta_data.sensor);
651 continue;
652 }
653
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700654 FlushInfo& flushInfo = mSensorInfo[scratch[j].meta_data.sensor];
Peng Xueb4d6282015-12-10 18:02:41 -0800655 flushInfo.mPendingFlushEventsToSend++;
656 ALOGD_IF(DEBUG_CONNECTIONS, "increment pendingFlushCount %d",
657 flushInfo.mPendingFlushEventsToSend);
658 }
659 }
660 return;
661}
662
663int SensorService::SensorEventConnection::findWakeUpSensorEventLocked(
664 sensors_event_t const* scratch, const int count) {
665 for (int i = 0; i < count; ++i) {
666 if (mService->isWakeUpSensorEvent(scratch[i])) {
667 return i;
668 }
669 }
670 return -1;
671}
672
673sp<BitTube> SensorService::SensorEventConnection::getSensorChannel() const
674{
675 return mChannel;
676}
677
678status_t SensorService::SensorEventConnection::enableDisable(
679 int handle, bool enabled, nsecs_t samplingPeriodNs, nsecs_t maxBatchReportLatencyNs,
680 int reservedFlags)
681{
Arthur Ishiguro3e9afc12020-09-22 13:05:15 -0700682 if (mDestroyed) {
683 android_errorWriteLog(0x534e4554, "168211968");
684 return DEAD_OBJECT;
685 }
686
Peng Xueb4d6282015-12-10 18:02:41 -0800687 status_t err;
688 if (enabled) {
Anh Pham5198c992021-02-10 14:15:30 +0100689 nsecs_t requestedSamplingPeriodNs = samplingPeriodNs;
Anh Phamaf91a912021-02-10 14:10:53 +0100690 bool isSensorCapped = false;
691 sp<SensorInterface> si = mService->getSensorInterfaceFromHandle(handle);
692 if (si != nullptr) {
693 const Sensor& s = si->getSensor();
694 if (mService->isSensorInCappedSet(s.getType())) {
695 isSensorCapped = true;
696 }
697 }
698 if (isSensorCapped) {
699 err = mService->adjustSamplingPeriodBasedOnMicAndPermission(&samplingPeriodNs,
700 String16(mOpPackageName));
701 if (err != OK) {
702 return err;
703 }
704 }
Peng Xueb4d6282015-12-10 18:02:41 -0800705 err = mService->enable(this, handle, samplingPeriodNs, maxBatchReportLatencyNs,
706 reservedFlags, mOpPackageName);
Anh Pham5198c992021-02-10 14:15:30 +0100707 if (err == OK && isSensorCapped) {
Arthur Ishiguro8a628522021-09-22 14:10:16 -0700708 if ((requestedSamplingPeriodNs >= SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS) ||
709 !isRateCappedBasedOnPermission()) {
Anh Pham5198c992021-02-10 14:15:30 +0100710 mMicSamplingPeriodBackup[handle] = requestedSamplingPeriodNs;
711 } else {
712 mMicSamplingPeriodBackup[handle] = SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS;
713 }
714 }
Peng Xueb4d6282015-12-10 18:02:41 -0800715
716 } else {
717 err = mService->disable(this, handle);
Anh Pham5198c992021-02-10 14:15:30 +0100718 mMicSamplingPeriodBackup.erase(handle);
Peng Xueb4d6282015-12-10 18:02:41 -0800719 }
720 return err;
721}
722
Anh Phamaf91a912021-02-10 14:10:53 +0100723status_t SensorService::SensorEventConnection::setEventRate(int handle, nsecs_t samplingPeriodNs) {
Arthur Ishiguro3e9afc12020-09-22 13:05:15 -0700724 if (mDestroyed) {
725 android_errorWriteLog(0x534e4554, "168211968");
726 return DEAD_OBJECT;
727 }
728
Anh Pham5198c992021-02-10 14:15:30 +0100729 nsecs_t requestedSamplingPeriodNs = samplingPeriodNs;
Anh Phamaf91a912021-02-10 14:10:53 +0100730 bool isSensorCapped = false;
731 sp<SensorInterface> si = mService->getSensorInterfaceFromHandle(handle);
732 if (si != nullptr) {
733 const Sensor& s = si->getSensor();
734 if (mService->isSensorInCappedSet(s.getType())) {
735 isSensorCapped = true;
736 }
737 }
738 if (isSensorCapped) {
739 status_t err = mService->adjustSamplingPeriodBasedOnMicAndPermission(&samplingPeriodNs,
740 String16(mOpPackageName));
741 if (err != OK) {
742 return err;
743 }
744 }
Anh Pham5198c992021-02-10 14:15:30 +0100745 status_t ret = mService->setEventRate(this, handle, samplingPeriodNs, mOpPackageName);
746 if (ret == OK && isSensorCapped) {
Arthur Ishiguro8a628522021-09-22 14:10:16 -0700747 if ((requestedSamplingPeriodNs >= SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS) ||
748 !isRateCappedBasedOnPermission()) {
Anh Pham5198c992021-02-10 14:15:30 +0100749 mMicSamplingPeriodBackup[handle] = requestedSamplingPeriodNs;
750 } else {
751 mMicSamplingPeriodBackup[handle] = SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS;
752 }
753 }
754 return ret;
755}
756
757void SensorService::SensorEventConnection::onMicSensorAccessChanged(bool isMicToggleOn) {
758 if (isMicToggleOn) {
759 capRates();
760 } else {
761 uncapRates();
762 }
763}
764
765void SensorService::SensorEventConnection::capRates() {
766 Mutex::Autolock _l(mConnectionLock);
767 SensorDevice& dev(SensorDevice::getInstance());
768 for (auto &i : mMicSamplingPeriodBackup) {
769 int handle = i.first;
770 nsecs_t samplingPeriodNs = i.second;
771 if (samplingPeriodNs < SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS) {
772 if (hasSensorAccess()) {
773 mService->setEventRate(this, handle, SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS,
774 mOpPackageName);
775 } else {
776 // Update SensorDevice with the capped rate so that when sensor access is restored,
777 // the correct event rate is used.
778 dev.onMicSensorAccessChanged(this, handle,
779 SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS);
780 }
781 }
782 }
783}
784
785void SensorService::SensorEventConnection::uncapRates() {
786 Mutex::Autolock _l(mConnectionLock);
787 SensorDevice& dev(SensorDevice::getInstance());
788 for (auto &i : mMicSamplingPeriodBackup) {
789 int handle = i.first;
790 nsecs_t samplingPeriodNs = i.second;
791 if (samplingPeriodNs < SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS) {
792 if (hasSensorAccess()) {
793 mService->setEventRate(this, handle, samplingPeriodNs, mOpPackageName);
794 } else {
795 // Update SensorDevice with the uncapped rate so that when sensor access is
796 // restored, the correct event rate is used.
797 dev.onMicSensorAccessChanged(this, handle, samplingPeriodNs);
798 }
799 }
800 }
Peng Xueb4d6282015-12-10 18:02:41 -0800801}
802
803status_t SensorService::SensorEventConnection::flush() {
Arthur Ishiguro3e9afc12020-09-22 13:05:15 -0700804 if (mDestroyed) {
805 return DEAD_OBJECT;
806 }
807
Peng Xueb4d6282015-12-10 18:02:41 -0800808 return mService->flushSensor(this, mOpPackageName);
809}
810
Peng Xue36e3472016-11-03 11:57:10 -0700811int32_t SensorService::SensorEventConnection::configureChannel(int handle, int rateLevel) {
812 // SensorEventConnection does not support configureChannel, parameters not used
813 UNUSED(handle);
814 UNUSED(rateLevel);
815 return INVALID_OPERATION;
816}
817
Peng Xueb4d6282015-12-10 18:02:41 -0800818int SensorService::SensorEventConnection::handleEvent(int fd, int events, void* /*data*/) {
819 if (events & ALOOPER_EVENT_HANGUP || events & ALOOPER_EVENT_ERROR) {
820 {
821 // If the Looper encounters some error, set the flag mDead, reset mWakeLockRefCount,
822 // and remove the fd from Looper. Call checkWakeLockState to know if SensorService
823 // can release the wake-lock.
824 ALOGD_IF(DEBUG_CONNECTIONS, "%p Looper error %d", this, fd);
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700825 Mutex::Autolock _l(mConnectionLock);
Peng Xueb4d6282015-12-10 18:02:41 -0800826 mDead = true;
827 mWakeLockRefCount = 0;
828 updateLooperRegistrationLocked(mService->getLooper());
829 }
830 mService->checkWakeLockState();
831 if (mDataInjectionMode) {
832 // If the Looper has encountered some error in data injection mode, reset SensorService
833 // back to normal mode.
834 mService->resetToNormalMode();
835 mDataInjectionMode = false;
836 }
837 return 1;
838 }
839
840 if (events & ALOOPER_EVENT_INPUT) {
841 unsigned char buf[sizeof(sensors_event_t)];
842 ssize_t numBytesRead = ::recv(fd, buf, sizeof(buf), MSG_DONTWAIT);
843 {
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700844 Mutex::Autolock _l(mConnectionLock);
Peng Xu755c4512016-04-07 23:15:14 -0700845 if (numBytesRead == sizeof(sensors_event_t)) {
846 if (!mDataInjectionMode) {
847 ALOGE("Data injected in normal mode, dropping event"
848 "package=%s uid=%d", mPackageName.string(), mUid);
849 // Unregister call backs.
850 return 0;
851 }
852 sensors_event_t sensor_event;
853 memcpy(&sensor_event, buf, sizeof(sensors_event_t));
854 sp<SensorInterface> si =
855 mService->getSensorInterfaceFromHandle(sensor_event.sensor);
856 if (si == nullptr) {
857 return 1;
858 }
859
860 SensorDevice& dev(SensorDevice::getInstance());
861 sensor_event.type = si->getSensor().getType();
862 dev.injectSensorData(&sensor_event);
Peng Xueb4d6282015-12-10 18:02:41 -0800863#if DEBUG_CONNECTIONS
Peng Xu755c4512016-04-07 23:15:14 -0700864 ++mEventsReceived;
Peng Xueb4d6282015-12-10 18:02:41 -0800865#endif
Peng Xu755c4512016-04-07 23:15:14 -0700866 } else if (numBytesRead == sizeof(uint32_t)) {
867 uint32_t numAcks = 0;
868 memcpy(&numAcks, buf, numBytesRead);
lifr3ab0a1b2021-08-06 00:14:26 +0800869 // Check to ensure there are no read errors in recv, numAcks is always
Peng Xu755c4512016-04-07 23:15:14 -0700870 // within the range and not zero. If any of the above don't hold reset
871 // mWakeLockRefCount to zero.
872 if (numAcks > 0 && numAcks < mWakeLockRefCount) {
873 mWakeLockRefCount -= numAcks;
874 } else {
875 mWakeLockRefCount = 0;
876 }
Peng Xueb4d6282015-12-10 18:02:41 -0800877#if DEBUG_CONNECTIONS
Peng Xu755c4512016-04-07 23:15:14 -0700878 mTotalAcksReceived += numAcks;
Peng Xueb4d6282015-12-10 18:02:41 -0800879#endif
880 } else {
881 // Read error, reset wakelock refcount.
882 mWakeLockRefCount = 0;
883 }
884 }
885 // Check if wakelock can be released by sensorservice. mConnectionLock needs to be released
886 // here as checkWakeLockState() will need it.
887 if (mWakeLockRefCount == 0) {
888 mService->checkWakeLockState();
889 }
890 // continue getting callbacks.
891 return 1;
892 }
893
894 if (events & ALOOPER_EVENT_OUTPUT) {
895 // send sensor data that is stored in mEventCache for this connection.
896 mService->sendEventsFromCache(this);
897 }
898 return 1;
899}
900
901int SensorService::SensorEventConnection::computeMaxCacheSizeLocked() const {
902 size_t fifoWakeUpSensors = 0;
903 size_t fifoNonWakeUpSensors = 0;
Arthur Ishiguroad46c782020-03-26 11:24:43 -0700904 for (auto& it : mSensorInfo) {
905 sp<SensorInterface> si = mService->getSensorInterfaceFromHandle(it.first);
Peng Xu755c4512016-04-07 23:15:14 -0700906 if (si == nullptr) {
907 continue;
908 }
909 const Sensor& sensor = si->getSensor();
Peng Xueb4d6282015-12-10 18:02:41 -0800910 if (sensor.getFifoReservedEventCount() == sensor.getFifoMaxEventCount()) {
911 // Each sensor has a reserved fifo. Sum up the fifo sizes for all wake up sensors and
912 // non wake_up sensors.
913 if (sensor.isWakeUpSensor()) {
914 fifoWakeUpSensors += sensor.getFifoReservedEventCount();
915 } else {
916 fifoNonWakeUpSensors += sensor.getFifoReservedEventCount();
917 }
918 } else {
919 // Shared fifo. Compute the max of the fifo sizes for wake_up and non_wake up sensors.
920 if (sensor.isWakeUpSensor()) {
921 fifoWakeUpSensors = fifoWakeUpSensors > sensor.getFifoMaxEventCount() ?
922 fifoWakeUpSensors : sensor.getFifoMaxEventCount();
923
924 } else {
925 fifoNonWakeUpSensors = fifoNonWakeUpSensors > sensor.getFifoMaxEventCount() ?
926 fifoNonWakeUpSensors : sensor.getFifoMaxEventCount();
927
928 }
929 }
930 }
931 if (fifoWakeUpSensors + fifoNonWakeUpSensors == 0) {
932 // It is extremely unlikely that there is a write failure in non batch mode. Return a cache
933 // size that is equal to that of the batch mode.
934 // ALOGW("Write failure in non-batch mode");
935 return MAX_SOCKET_BUFFER_SIZE_BATCHED/sizeof(sensors_event_t);
936 }
937 return fifoWakeUpSensors + fifoNonWakeUpSensors;
938}
939
940} // namespace android
941