blob: 33824f263e2a811f175fae06a467b4767e32aadc [file] [log] [blame]
Mathias Agopianfc328812010-07-14 23:41:37 -07001/*
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 */
Anh Phamaf91a912021-02-10 14:10:53 +010016#include <android-base/strings.h>
Brian Stack793f4642019-04-18 17:21:34 -070017#include <android/content/pm/IPackageManagerNative.h>
Mike Ma24743862020-01-29 00:36:55 -080018#include <android/util/ProtoOutputStream.h>
19#include <frameworks/base/core/proto/android/service/sensor_service.proto.h>
Svet Ganove752a5c2018-01-15 17:14:20 -080020#include <binder/ActivityManager.h>
Mathias Agopianfc328812010-07-14 23:41:37 -070021#include <binder/BinderService.h>
Mathias Agopian451beee2010-07-19 15:03:55 -070022#include <binder/IServiceManager.h>
Mathias Agopian1cb13462011-06-27 16:05:52 -070023#include <binder/PermissionCache.h>
Svet Ganove752a5c2018-01-15 17:14:20 -080024#include <binder/PermissionController.h>
Peng Xue36e3472016-11-03 11:57:10 -070025#include <cutils/ashmem.h>
Svet Ganove752a5c2018-01-15 17:14:20 -080026#include <cutils/misc.h>
Peng Xudd5c5cb2017-03-16 17:39:43 -070027#include <cutils/properties.h>
Mathias Agopianfc328812010-07-14 23:41:37 -070028#include <hardware/sensors.h>
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -070029#include <hardware_legacy/power.h>
Brian Duddie0eb46242018-02-15 15:02:29 -080030#include <log/log.h>
Greg Kaiser53ca2e02016-06-21 16:11:14 -070031#include <openssl/digest.h>
32#include <openssl/hmac.h>
33#include <openssl/rand.h>
Peng Xudd5c5cb2017-03-16 17:39:43 -070034#include <sensor/SensorEventQueue.h>
Michael Groover5e1f60b2018-12-04 22:34:29 -080035#include <sensorprivacy/SensorPrivacyManager.h>
Peng Xudd5c5cb2017-03-16 17:39:43 -070036#include <utils/SystemClock.h>
Greg Kaiser53ca2e02016-06-21 16:11:14 -070037
Mathias Agopian787ac1b2012-09-18 18:49:18 -070038#include "BatteryService.h"
Mathias Agopian984826c2011-05-17 22:54:42 -070039#include "CorrectedGyroSensor.h"
Mathias Agopianf001c922010-11-11 17:58:51 -080040#include "GravitySensor.h"
Tyler Trephanc7b92632021-07-21 10:39:38 -070041#include "LimitedAxesImuSensor.h"
Mathias Agopianf001c922010-11-11 17:58:51 -080042#include "LinearAccelerationSensor.h"
Mathias Agopian984826c2011-05-17 22:54:42 -070043#include "OrientationSensor.h"
Mathias Agopianf001c922010-11-11 17:58:51 -080044#include "RotationVectorSensor.h"
Mathias Agopian984826c2011-05-17 22:54:42 -070045#include "SensorFusion.h"
Peng Xu755c4512016-04-07 23:15:14 -070046#include "SensorInterface.h"
Peng Xueb4d6282015-12-10 18:02:41 -080047
Mathias Agopian984826c2011-05-17 22:54:42 -070048#include "SensorService.h"
Peng Xue36e3472016-11-03 11:57:10 -070049#include "SensorDirectConnection.h"
Peng Xueb4d6282015-12-10 18:02:41 -080050#include "SensorEventAckReceiver.h"
Peng Xu6a2d3a02015-12-21 12:00:23 -080051#include "SensorEventConnection.h"
Peng Xueb4d6282015-12-10 18:02:41 -080052#include "SensorRecord.h"
53#include "SensorRegistrationInfo.h"
Peng Xueb4d6282015-12-10 18:02:41 -080054
55#include <inttypes.h>
56#include <math.h>
Peng Xu98d30f62016-08-01 18:12:11 -070057#include <sched.h>
Peng Xueb4d6282015-12-10 18:02:41 -080058#include <stdint.h>
Peng Xueb4d6282015-12-10 18:02:41 -080059#include <sys/socket.h>
Greg Kaiser53ca2e02016-06-21 16:11:14 -070060#include <sys/stat.h>
61#include <sys/types.h>
62#include <unistd.h>
Mathias Agopianfc328812010-07-14 23:41:37 -070063
Andrew Lehmer3a602572021-03-25 15:19:56 -070064#include <ctime>
65#include <future>
66
Svet Ganove752a5c2018-01-15 17:14:20 -080067#include <private/android_filesystem_config.h>
68
Andrew Lehmer3a602572021-03-25 15:19:56 -070069using namespace std::chrono_literals;
70
Mathias Agopianfc328812010-07-14 23:41:37 -070071namespace android {
72// ---------------------------------------------------------------------------
73
Mathias Agopian33015422011-05-27 18:18:13 -070074/*
75 * Notes:
76 *
77 * - what about a gyro-corrected magnetic-field sensor?
Mathias Agopian33015422011-05-27 18:18:13 -070078 * - run mag sensor from time to time to force calibration
79 * - gravity sensor length is wrong (=> drift in linear-acc sensor)
80 *
81 */
82
Aravind Akella8ef3c892015-07-10 11:24:28 -070083const char* SensorService::WAKE_LOCK_NAME = "SensorService_wakelock";
Greg Kaiser53ca2e02016-06-21 16:11:14 -070084uint8_t SensorService::sHmacGlobalKey[128] = {};
85bool SensorService::sHmacGlobalKeyIsValid = false;
Brian Stack793f4642019-04-18 17:21:34 -070086std::map<String16, int> SensorService::sPackageTargetVersion;
87Mutex SensorService::sPackageTargetVersionLock;
Anthony Stange07eb4212020-08-28 14:50:28 -040088String16 SensorService::sSensorInterfaceDescriptorPrefix =
89 String16("android.frameworks.sensorservice@");
Brian Stack793f4642019-04-18 17:21:34 -070090AppOpsManager SensorService::sAppOpsManager;
Andrew Lehmer3a602572021-03-25 15:19:56 -070091std::atomic_uint64_t SensorService::curProxCallbackSeq(0);
92std::atomic_uint64_t SensorService::completedCallbackSeq(0);
Greg Kaiser53ca2e02016-06-21 16:11:14 -070093
94#define SENSOR_SERVICE_DIR "/data/system/sensor_service"
95#define SENSOR_SERVICE_HMAC_KEY_FILE SENSOR_SERVICE_DIR "/hmac_key"
Peng Xu98d30f62016-08-01 18:12:11 -070096#define SENSOR_SERVICE_SCHED_FIFO_PRIORITY 10
Greg Kaiser53ca2e02016-06-21 16:11:14 -070097
Aravind Akellaa9e6cc32015-04-16 18:57:31 -070098// Permissions.
Anh Phamaf91a912021-02-10 14:10:53 +010099static const String16 sAccessHighSensorSamplingRatePermission(
100 "android.permission.HIGH_SAMPLING_RATE_SENSORS");
Peng Xudd5c5cb2017-03-16 17:39:43 -0700101static const String16 sDumpPermission("android.permission.DUMP");
102static const String16 sLocationHardwarePermission("android.permission.LOCATION_HARDWARE");
Svet Ganove752a5c2018-01-15 17:14:20 -0800103static const String16 sManageSensorsPermission("android.permission.MANAGE_SENSORS");
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700104
Tyler Trephanc7b92632021-07-21 10:39:38 -0700105static bool isAutomotive() {
106 sp<IServiceManager> serviceManager = defaultServiceManager();
107 if (serviceManager.get() == nullptr) {
108 ALOGE("%s: unable to access native ServiceManager", __func__);
109 return false;
110 }
111
112 sp<content::pm::IPackageManagerNative> packageManager;
113 sp<IBinder> binder = serviceManager->waitForService(String16("package_native"));
114 packageManager = interface_cast<content::pm::IPackageManagerNative>(binder);
115 if (packageManager == nullptr) {
116 ALOGE("%s: unable to access native PackageManager", __func__);
117 return false;
118 }
119
120 bool isAutomotive = false;
121 binder::Status status =
122 packageManager->hasSystemFeature(String16("android.hardware.type.automotive"), 0,
123 &isAutomotive);
124 if (!status.isOk()) {
125 ALOGE("%s: hasSystemFeature failed: %s", __func__, status.exceptionMessage().c_str());
126 return false;
127 }
128
129 return isAutomotive;
130}
131
Mathias Agopianfc328812010-07-14 23:41:37 -0700132SensorService::SensorService()
Aravind Akella8a969552014-09-28 17:52:41 -0700133 : mInitCheck(NO_INIT), mSocketBufferSize(SOCKET_BUFFER_SIZE_NON_BATCHED),
Chris Kuiperdf11ff22021-10-12 16:30:01 -0700134 mWakeLockAcquired(false), mLastReportedProxIsActive(false) {
Jaekyun Seok2d7e3512018-03-28 19:12:11 +0900135 mUidPolicy = new UidPolicy(this);
Michael Groover5e1f60b2018-12-04 22:34:29 -0800136 mSensorPrivacyPolicy = new SensorPrivacyPolicy(this);
Mathias Agopianfc328812010-07-14 23:41:37 -0700137}
138
Greg Kaiser53ca2e02016-06-21 16:11:14 -0700139bool SensorService::initializeHmacKey() {
140 int fd = open(SENSOR_SERVICE_HMAC_KEY_FILE, O_RDONLY|O_CLOEXEC);
141 if (fd != -1) {
142 int result = read(fd, sHmacGlobalKey, sizeof(sHmacGlobalKey));
143 close(fd);
144 if (result == sizeof(sHmacGlobalKey)) {
145 return true;
146 }
147 ALOGW("Unable to read HMAC key; generating new one.");
148 }
149
150 if (RAND_bytes(sHmacGlobalKey, sizeof(sHmacGlobalKey)) == -1) {
151 ALOGW("Can't generate HMAC key; dynamic sensor getId() will be wrong.");
152 return false;
153 }
154
155 // We need to make sure this is only readable to us.
156 bool wroteKey = false;
157 mkdir(SENSOR_SERVICE_DIR, S_IRWXU);
158 fd = open(SENSOR_SERVICE_HMAC_KEY_FILE, O_WRONLY|O_CREAT|O_EXCL|O_CLOEXEC,
159 S_IRUSR|S_IWUSR);
160 if (fd != -1) {
161 int result = write(fd, sHmacGlobalKey, sizeof(sHmacGlobalKey));
162 close(fd);
163 wroteKey = (result == sizeof(sHmacGlobalKey));
164 }
165 if (wroteKey) {
166 ALOGI("Generated new HMAC key.");
167 } else {
168 ALOGW("Unable to write HMAC key; dynamic sensor getId() will change "
169 "after reboot.");
170 }
171 // Even if we failed to write the key we return true, because we did
172 // initialize the HMAC key.
173 return true;
174}
175
Peng Xu98d30f62016-08-01 18:12:11 -0700176// Set main thread to SCHED_FIFO to lower sensor event latency when system is under load
177void SensorService::enableSchedFifoMode() {
178 struct sched_param param = {0};
179 param.sched_priority = SENSOR_SERVICE_SCHED_FIFO_PRIORITY;
180 if (sched_setscheduler(getTid(), SCHED_FIFO | SCHED_RESET_ON_FORK, &param) != 0) {
181 ALOGE("Couldn't set SCHED_FIFO for SensorService thread");
182 }
183}
184
Peng Xu47e96012016-03-28 17:55:56 -0700185void SensorService::onFirstRef() {
Steve Blocka5512372011-12-20 16:23:08 +0000186 ALOGD("nuSensorService starting...");
Mathias Agopianf001c922010-11-11 17:58:51 -0800187 SensorDevice& dev(SensorDevice::getInstance());
Mathias Agopianfc328812010-07-14 23:41:37 -0700188
Greg Kaiser53ca2e02016-06-21 16:11:14 -0700189 sHmacGlobalKeyIsValid = initializeHmacKey();
190
Mathias Agopianf001c922010-11-11 17:58:51 -0800191 if (dev.initCheck() == NO_ERROR) {
Mathias Agopianf001c922010-11-11 17:58:51 -0800192 sensor_t const* list;
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700193 ssize_t count = dev.getSensorList(&list);
194 if (count > 0) {
Aravind Akellaf5047892015-07-20 17:29:33 -0700195 bool hasGyro = false, hasAccel = false, hasMag = false;
Tyler Trephanc7b92632021-07-21 10:39:38 -0700196 bool hasGyroUncalibrated = false;
197 bool hasAccelUncalibrated = false;
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700198 uint32_t virtualSensorsNeeds =
199 (1<<SENSOR_TYPE_GRAVITY) |
200 (1<<SENSOR_TYPE_LINEAR_ACCELERATION) |
Peng Xuf66684a2015-07-23 11:41:53 -0700201 (1<<SENSOR_TYPE_ROTATION_VECTOR) |
202 (1<<SENSOR_TYPE_GEOMAGNETIC_ROTATION_VECTOR) |
203 (1<<SENSOR_TYPE_GAME_ROTATION_VECTOR);
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700204
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700205 for (ssize_t i=0 ; i<count ; i++) {
Andrew Lehmer3a602572021-03-25 15:19:56 -0700206 bool useThisSensor = true;
Peng Xuf66684a2015-07-23 11:41:53 -0700207
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700208 switch (list[i].type) {
Aravind Akellaf5047892015-07-20 17:29:33 -0700209 case SENSOR_TYPE_ACCELEROMETER:
210 hasAccel = true;
211 break;
Tyler Trephanc7b92632021-07-21 10:39:38 -0700212 case SENSOR_TYPE_ACCELEROMETER_UNCALIBRATED:
213 hasAccelUncalibrated = true;
214 break;
Aravind Akellaf5047892015-07-20 17:29:33 -0700215 case SENSOR_TYPE_MAGNETIC_FIELD:
216 hasMag = true;
217 break;
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700218 case SENSOR_TYPE_GYROSCOPE:
219 hasGyro = true;
220 break;
Tyler Trephanc7b92632021-07-21 10:39:38 -0700221 case SENSOR_TYPE_GYROSCOPE_UNCALIBRATED:
222 hasGyroUncalibrated = true;
223 break;
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700224 case SENSOR_TYPE_GRAVITY:
225 case SENSOR_TYPE_LINEAR_ACCELERATION:
226 case SENSOR_TYPE_ROTATION_VECTOR:
Peng Xuf66684a2015-07-23 11:41:53 -0700227 case SENSOR_TYPE_GEOMAGNETIC_ROTATION_VECTOR:
228 case SENSOR_TYPE_GAME_ROTATION_VECTOR:
229 if (IGNORE_HARDWARE_FUSION) {
230 useThisSensor = false;
231 } else {
232 virtualSensorsNeeds &= ~(1<<list[i].type);
233 }
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700234 break;
Arthur Ishiguro2fd90a72021-11-12 17:24:41 +0000235 default:
236 break;
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700237 }
Peng Xuf66684a2015-07-23 11:41:53 -0700238 if (useThisSensor) {
Andrew Lehmer3a602572021-03-25 15:19:56 -0700239 if (list[i].type == SENSOR_TYPE_PROXIMITY) {
Chris Kuiperdf11ff22021-10-12 16:30:01 -0700240 SensorInterface* s = new ProximitySensor(list[i], *this);
241 registerSensor(s);
242 mProxSensorHandles.push_back(s->getSensor().getHandle());
Andrew Lehmer3a602572021-03-25 15:19:56 -0700243 } else {
Chris Kuiperdf11ff22021-10-12 16:30:01 -0700244 registerSensor(new HardwareSensor(list[i]));
Andrew Lehmer3a602572021-03-25 15:19:56 -0700245 }
Peng Xuf66684a2015-07-23 11:41:53 -0700246 }
Mathias Agopian50df2952010-07-19 19:09:10 -0700247 }
Mathias Agopianfc328812010-07-14 23:41:37 -0700248
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700249 // it's safe to instantiate the SensorFusion object here
250 // (it wants to be instantiated after h/w sensors have been
251 // registered)
Andreas Gamped4036b62015-07-28 13:49:04 -0700252 SensorFusion::getInstance();
Mathias Agopian984826c2011-05-17 22:54:42 -0700253
Tyler Trephanc7b92632021-07-21 10:39:38 -0700254 if ((hasGyro || hasGyroUncalibrated) && hasAccel && hasMag) {
Mathias Agopian03193062013-05-10 19:32:39 -0700255 // Add Android virtual sensors if they're not already
256 // available in the HAL
Peng Xu0cc8f802016-04-05 23:46:03 -0700257 bool needRotationVector =
258 (virtualSensorsNeeds & (1<<SENSOR_TYPE_ROTATION_VECTOR)) != 0;
Mathias Agopian03193062013-05-10 19:32:39 -0700259
Peng Xu0cc8f802016-04-05 23:46:03 -0700260 registerSensor(new RotationVectorSensor(), !needRotationVector, true);
261 registerSensor(new OrientationSensor(), !needRotationVector, true);
Mathias Agopian03193062013-05-10 19:32:39 -0700262
Peng Xu0cc8f802016-04-05 23:46:03 -0700263 // virtual debugging sensors are not for user
Peng Xu755c4512016-04-07 23:15:14 -0700264 registerSensor( new CorrectedGyroSensor(list, count), true, true);
265 registerSensor( new GyroDriftSensor(), true, true);
Mathias Agopian33264862012-06-28 19:46:54 -0700266 }
267
Tyler Trephanc7b92632021-07-21 10:39:38 -0700268 if (hasAccel && (hasGyro || hasGyroUncalibrated)) {
Peng Xu0cc8f802016-04-05 23:46:03 -0700269 bool needGravitySensor = (virtualSensorsNeeds & (1<<SENSOR_TYPE_GRAVITY)) != 0;
270 registerSensor(new GravitySensor(list, count), !needGravitySensor, true);
Peng Xuf66684a2015-07-23 11:41:53 -0700271
Pierre Fite-Georgel63daa662019-12-17 16:52:29 -0800272 bool needLinearAcceleration =
273 (virtualSensorsNeeds & (1<<SENSOR_TYPE_LINEAR_ACCELERATION)) != 0;
274 registerSensor(new LinearAccelerationSensor(list, count),
275 !needLinearAcceleration, true);
276
Peng Xu0cc8f802016-04-05 23:46:03 -0700277 bool needGameRotationVector =
278 (virtualSensorsNeeds & (1<<SENSOR_TYPE_GAME_ROTATION_VECTOR)) != 0;
279 registerSensor(new GameRotationVectorSensor(), !needGameRotationVector, true);
Peng Xuf66684a2015-07-23 11:41:53 -0700280 }
281
282 if (hasAccel && hasMag) {
Peng Xu0cc8f802016-04-05 23:46:03 -0700283 bool needGeoMagRotationVector =
284 (virtualSensorsNeeds & (1<<SENSOR_TYPE_GEOMAGNETIC_ROTATION_VECTOR)) != 0;
285 registerSensor(new GeoMagRotationVectorSensor(), !needGeoMagRotationVector, true);
Peng Xuf66684a2015-07-23 11:41:53 -0700286 }
287
Tyler Trephanc7b92632021-07-21 10:39:38 -0700288 if (isAutomotive()) {
289 if (hasAccel) {
290 registerSensor(new LimitedAxesImuSensor(list, count, SENSOR_TYPE_ACCELEROMETER),
291 /*isDebug=*/false, /*isVirtual=*/true);
292 }
293
294 if (hasGyro) {
295 registerSensor(new LimitedAxesImuSensor(list, count, SENSOR_TYPE_GYROSCOPE),
296 /*isDebug=*/false, /*isVirtual=*/true);
297 }
298
299 if (hasAccelUncalibrated) {
300 registerSensor(new LimitedAxesImuSensor(list, count,
301 SENSOR_TYPE_ACCELEROMETER_UNCALIBRATED),
302 /*isDebug=*/false, /*isVirtual=*/true);
303 }
304
305 if (hasGyroUncalibrated) {
306 registerSensor(new LimitedAxesImuSensor(list, count,
307 SENSOR_TYPE_GYROSCOPE_UNCALIBRATED),
308 /*isDebug=*/false, /*isVirtual=*/true);
309 }
310 }
311
Aravind Akella5466c3d2014-08-22 16:11:10 -0700312 // Check if the device really supports batching by looking at the FIFO event
313 // counts for each sensor.
314 bool batchingSupported = false;
Peng Xu0cc8f802016-04-05 23:46:03 -0700315 mSensors.forEachSensor(
316 [&batchingSupported] (const Sensor& s) -> bool {
317 if (s.getFifoMaxEventCount() > 0) {
318 batchingSupported = true;
319 }
320 return !batchingSupported;
321 });
Aravind Akella5466c3d2014-08-22 16:11:10 -0700322
323 if (batchingSupported) {
324 // Increase socket buffer size to a max of 100 KB for batching capabilities.
325 mSocketBufferSize = MAX_SOCKET_BUFFER_SIZE_BATCHED;
326 } else {
327 mSocketBufferSize = SOCKET_BUFFER_SIZE_NON_BATCHED;
328 }
329
330 // Compare the socketBufferSize value against the system limits and limit
331 // it to maxSystemSocketBufferSize if necessary.
Aravind Akella4c8b9512013-09-05 17:03:38 -0700332 FILE *fp = fopen("/proc/sys/net/core/wmem_max", "r");
333 char line[128];
Yi Kong8f313e32018-07-17 14:13:29 -0700334 if (fp != nullptr && fgets(line, sizeof(line), fp) != nullptr) {
Aravind Akella4c8b9512013-09-05 17:03:38 -0700335 line[sizeof(line) - 1] = '\0';
Aravind Akella5466c3d2014-08-22 16:11:10 -0700336 size_t maxSystemSocketBufferSize;
337 sscanf(line, "%zu", &maxSystemSocketBufferSize);
338 if (mSocketBufferSize > maxSystemSocketBufferSize) {
339 mSocketBufferSize = maxSystemSocketBufferSize;
Aravind Akella4c8b9512013-09-05 17:03:38 -0700340 }
341 }
Aravind Akella4c8b9512013-09-05 17:03:38 -0700342 if (fp) {
343 fclose(fp);
344 }
345
Aravind Akella9a844cf2014-02-11 18:58:52 -0800346 mWakeLockAcquired = false;
Aravind Akella56ae4262014-07-10 16:01:10 -0700347 mLooper = new Looper(false);
Aravind Akella8493b792014-09-08 15:45:47 -0700348 const size_t minBufferSize = SensorEventQueue::MAX_RECEIVE_BUFFER_EVENT_COUNT;
349 mSensorEventBuffer = new sensors_event_t[minBufferSize];
350 mSensorEventScratch = new sensors_event_t[minBufferSize];
Peng Xueb059472016-08-12 16:39:44 -0700351 mMapFlushEventsToConnections = new wp<const SensorEventConnection> [minBufferSize];
Aravind Akellaa9e6cc32015-04-16 18:57:31 -0700352 mCurrentOperatingMode = NORMAL;
Aravind Akella7830ef32014-10-07 14:13:12 -0700353
Aravind Akella18d6d512015-06-18 14:18:28 -0700354 mNextSensorRegIndex = 0;
355 for (int i = 0; i < SENSOR_REGISTRATIONS_BUF_SIZE; ++i) {
356 mLastNSensorRegistrations.push();
357 }
358
359 mInitCheck = NO_ERROR;
Aravind Akellab4373ac2014-10-29 17:55:20 -0700360 mAckReceiver = new SensorEventAckReceiver(this);
361 mAckReceiver->run("SensorEventAckReceiver", PRIORITY_URGENT_DISPLAY);
Aravind Akella7830ef32014-10-07 14:13:12 -0700362 run("SensorService", PRIORITY_URGENT_DISPLAY);
Peng Xu98d30f62016-08-01 18:12:11 -0700363
364 // priority can only be changed after run
365 enableSchedFifoMode();
Svet Ganove752a5c2018-01-15 17:14:20 -0800366
367 // Start watching UID changes to apply policy.
Svet Ganove752a5c2018-01-15 17:14:20 -0800368 mUidPolicy->registerSelf();
Michael Groover5e1f60b2018-12-04 22:34:29 -0800369
370 // Start watching sensor privacy changes
371 mSensorPrivacyPolicy->registerSelf();
Svet Ganove752a5c2018-01-15 17:14:20 -0800372 }
373 }
374}
375
Arthur Ishiguro539c27c2020-04-13 09:47:59 -0700376void SensorService::onUidStateChanged(uid_t uid, UidState state) {
377 SensorDevice& dev(SensorDevice::getInstance());
378
Brian Duddie967ce172019-06-10 11:08:27 -0700379 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
Arthur Ishiguro062b27b2020-04-13 08:04:49 -0700380 for (const sp<SensorEventConnection>& conn : connLock.getActiveConnections()) {
Brian Duddie967ce172019-06-10 11:08:27 -0700381 if (conn->getUid() == uid) {
Arthur Ishiguro539c27c2020-04-13 09:47:59 -0700382 dev.setUidStateForConnection(conn.get(), state);
Mathias Agopian7b2b32f2011-07-14 16:39:46 -0700383 }
Mathias Agopianfc328812010-07-14 23:41:37 -0700384 }
Arthur Ishiguroe3ed3d22020-04-13 10:29:44 -0700385
386 for (const sp<SensorDirectConnection>& conn : connLock.getDirectConnections()) {
387 if (conn->getUid() == uid) {
388 // Update sensor subscriptions if needed
389 bool hasAccess = hasSensorAccessLocked(conn->getUid(), conn->getOpPackageName());
390 conn->onSensorAccessChanged(hasAccess);
391 }
392 }
Chris Kuiper587ef9b2021-10-12 16:36:43 -0700393 checkAndReportProxStateChangeLocked();
Arthur Ishiguroe3ed3d22020-04-13 10:29:44 -0700394}
395
396bool SensorService::hasSensorAccess(uid_t uid, const String16& opPackageName) {
397 Mutex::Autolock _l(mLock);
398 return hasSensorAccessLocked(uid, opPackageName);
399}
400
401bool SensorService::hasSensorAccessLocked(uid_t uid, const String16& opPackageName) {
402 return !mSensorPrivacyPolicy->isSensorPrivacyEnabled()
403 && isUidActive(uid) && !isOperationRestrictedLocked(opPackageName);
Mathias Agopianfc328812010-07-14 23:41:37 -0700404}
405
Peng Xu0cc8f802016-04-05 23:46:03 -0700406const Sensor& SensorService::registerSensor(SensorInterface* s, bool isDebug, bool isVirtual) {
407 int handle = s->getSensor().getHandle();
Peng Xu6a2d3a02015-12-21 12:00:23 -0800408 int type = s->getSensor().getType();
Peng Xu0cc8f802016-04-05 23:46:03 -0700409 if (mSensors.add(handle, s, isDebug, isVirtual)){
Brian Stack4baa5be2018-09-18 14:03:13 -0700410 mRecentEvent.emplace(handle, new SensorServiceUtil::RecentEventLogger(type));
Peng Xu0cc8f802016-04-05 23:46:03 -0700411 return s->getSensor();
412 } else {
413 return mSensors.getNonSensor();
414 }
Mathias Agopianf001c922010-11-11 17:58:51 -0800415}
416
Peng Xu6a2d3a02015-12-21 12:00:23 -0800417const Sensor& SensorService::registerDynamicSensorLocked(SensorInterface* s, bool isDebug) {
Peng Xu0cc8f802016-04-05 23:46:03 -0700418 return registerSensor(s, isDebug);
Peng Xu2576cb62016-01-20 00:22:09 -0800419}
420
Peng Xu6a2d3a02015-12-21 12:00:23 -0800421bool SensorService::unregisterDynamicSensorLocked(int handle) {
Peng Xu0cc8f802016-04-05 23:46:03 -0700422 bool ret = mSensors.remove(handle);
Peng Xu6a2d3a02015-12-21 12:00:23 -0800423
424 const auto i = mRecentEvent.find(handle);
425 if (i != mRecentEvent.end()) {
426 delete i->second;
427 mRecentEvent.erase(i);
Peng Xu2576cb62016-01-20 00:22:09 -0800428 }
Peng Xu0cc8f802016-04-05 23:46:03 -0700429 return ret;
Peng Xu2576cb62016-01-20 00:22:09 -0800430}
431
Peng Xu0cc8f802016-04-05 23:46:03 -0700432const Sensor& SensorService::registerVirtualSensor(SensorInterface* s, bool isDebug) {
433 return registerSensor(s, isDebug, true);
Mathias Agopianfc328812010-07-14 23:41:37 -0700434}
435
Peng Xu47e96012016-03-28 17:55:56 -0700436SensorService::~SensorService() {
Peng Xu6a2d3a02015-12-21 12:00:23 -0800437 for (auto && entry : mRecentEvent) {
438 delete entry.second;
439 }
Svet Ganove752a5c2018-01-15 17:14:20 -0800440 mUidPolicy->unregisterSelf();
Michael Groover5e1f60b2018-12-04 22:34:29 -0800441 mSensorPrivacyPolicy->unregisterSelf();
Anh Pham5198c992021-02-10 14:15:30 +0100442 for (auto const& [userId, policy] : mMicSensorPrivacyPolicies) {
443 policy->unregisterSelf();
444 }
Peng Xu47e96012016-03-28 17:55:56 -0700445}
446
447status_t SensorService::dump(int fd, const Vector<String16>& args) {
Mathias Agopianfc328812010-07-14 23:41:37 -0700448 String8 result;
Peng Xudd5c5cb2017-03-16 17:39:43 -0700449 if (!PermissionCache::checkCallingPermission(sDumpPermission)) {
Peng Xueb4d6282015-12-10 18:02:41 -0800450 result.appendFormat("Permission Denial: can't dump SensorService from pid=%d, uid=%d\n",
Mathias Agopianfc328812010-07-14 23:41:37 -0700451 IPCThreadState::self()->getCallingPid(),
452 IPCThreadState::self()->getCallingUid());
Aravind Akella444f2672015-05-07 12:40:52 -0700453 } else {
Peng Xufba3c112016-09-08 12:36:59 -0700454 bool privileged = IPCThreadState::self()->getCallingUid() == 0;
Aravind Akella841a5922015-06-29 12:37:48 -0700455 if (args.size() > 2) {
Aravind Akella4949c502015-02-11 15:54:35 -0800456 return INVALID_OPERATION;
457 }
Brian Duddie967ce172019-06-10 11:08:27 -0700458 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
Aravind Akella4949c502015-02-11 15:54:35 -0800459 SensorDevice& dev(SensorDevice::getInstance());
Aravind Akella841a5922015-06-29 12:37:48 -0700460 if (args.size() == 2 && args[0] == String16("restrict")) {
Aravind Akella444f2672015-05-07 12:40:52 -0700461 // If already in restricted mode. Ignore.
462 if (mCurrentOperatingMode == RESTRICTED) {
463 return status_t(NO_ERROR);
464 }
465 // If in any mode other than normal, ignore.
466 if (mCurrentOperatingMode != NORMAL) {
467 return INVALID_OPERATION;
468 }
Peng Xue36e3472016-11-03 11:57:10 -0700469
Aravind Akellaa9e6cc32015-04-16 18:57:31 -0700470 mCurrentOperatingMode = RESTRICTED;
Michael Groover5e1f60b2018-12-04 22:34:29 -0800471 // temporarily stop all sensor direct report and disable sensors
Brian Duddie967ce172019-06-10 11:08:27 -0700472 disableAllSensorsLocked(&connLock);
Aravind Akella841a5922015-06-29 12:37:48 -0700473 mWhiteListedPackage.setTo(String8(args[1]));
Aravind Akella444f2672015-05-07 12:40:52 -0700474 return status_t(NO_ERROR);
475 } else if (args.size() == 1 && args[0] == String16("enable")) {
476 // If currently in restricted mode, reset back to NORMAL mode else ignore.
477 if (mCurrentOperatingMode == RESTRICTED) {
478 mCurrentOperatingMode = NORMAL;
Michael Groover5e1f60b2018-12-04 22:34:29 -0800479 // enable sensors and recover all sensor direct report
Brian Duddie967ce172019-06-10 11:08:27 -0700480 enableAllSensorsLocked(&connLock);
Aravind Akella444f2672015-05-07 12:40:52 -0700481 }
Aravind Akella841a5922015-06-29 12:37:48 -0700482 if (mCurrentOperatingMode == DATA_INJECTION) {
483 resetToNormalModeLocked();
484 }
485 mWhiteListedPackage.clear();
Aravind Akella444f2672015-05-07 12:40:52 -0700486 return status_t(NO_ERROR);
Aravind Akella841a5922015-06-29 12:37:48 -0700487 } else if (args.size() == 2 && args[0] == String16("data_injection")) {
488 if (mCurrentOperatingMode == NORMAL) {
489 dev.disableAllSensors();
490 status_t err = dev.setMode(DATA_INJECTION);
491 if (err == NO_ERROR) {
492 mCurrentOperatingMode = DATA_INJECTION;
493 } else {
494 // Re-enable sensors.
495 dev.enableAllSensors();
496 }
497 mWhiteListedPackage.setTo(String8(args[1]));
498 return NO_ERROR;
499 } else if (mCurrentOperatingMode == DATA_INJECTION) {
500 // Already in DATA_INJECTION mode. Treat this as a no_op.
501 return NO_ERROR;
502 } else {
503 // Transition to data injection mode supported only from NORMAL mode.
504 return INVALID_OPERATION;
505 }
Mike Ma24743862020-01-29 00:36:55 -0800506 } else if (args.size() == 1 && args[0] == String16("--proto")) {
507 return dumpProtoLocked(fd, &connLock);
Peng Xu0cc8f802016-04-05 23:46:03 -0700508 } else if (!mSensors.hasAnySensor()) {
Aravind Akellaee155ca2015-06-24 08:31:32 -0700509 result.append("No Sensors on the device\n");
Ashutosh Joshi53e5aa92017-07-19 09:52:57 -0700510 result.appendFormat("devInitCheck : %d\n", SensorDevice::getInstance().initCheck());
Aravind Akella444f2672015-05-07 12:40:52 -0700511 } else {
512 // Default dump the sensor list and debugging information.
Peng Xu0cc8f802016-04-05 23:46:03 -0700513 //
Brian Stack51498e62018-10-03 10:52:21 -0700514 timespec curTime;
515 clock_gettime(CLOCK_REALTIME, &curTime);
516 struct tm* timeinfo = localtime(&(curTime.tv_sec));
517 result.appendFormat("Captured at: %02d:%02d:%02d.%03d\n", timeinfo->tm_hour,
518 timeinfo->tm_min, timeinfo->tm_sec, (int)ns2ms(curTime.tv_nsec));
Peng Xu6a2d3a02015-12-21 12:00:23 -0800519 result.append("Sensor Device:\n");
520 result.append(SensorDevice::getInstance().dump().c_str());
521
522 result.append("Sensor List:\n");
Peng Xu0cc8f802016-04-05 23:46:03 -0700523 result.append(mSensors.dump().c_str());
Mathias Agopian3560fb22010-07-22 21:24:39 -0700524
Peng Xu6a2d3a02015-12-21 12:00:23 -0800525 result.append("Fusion States:\n");
Aravind Akella444f2672015-05-07 12:40:52 -0700526 SensorFusion::getInstance().dump(result);
Aravind Akella444f2672015-05-07 12:40:52 -0700527
Peng Xu0cc8f802016-04-05 23:46:03 -0700528 result.append("Recent Sensor events:\n");
Peng Xu6a2d3a02015-12-21 12:00:23 -0800529 for (auto&& i : mRecentEvent) {
530 sp<SensorInterface> s = mSensors.getInterface(i.first);
Peng Xufba3c112016-09-08 12:36:59 -0700531 if (!i.second->isEmpty()) {
532 if (privileged || s->getSensor().getRequiredPermission().isEmpty()) {
533 i.second->setFormat("normal");
534 } else {
535 i.second->setFormat("mask_data");
536 }
Peng Xu6a2d3a02015-12-21 12:00:23 -0800537 // if there is events and sensor does not need special permission.
538 result.appendFormat("%s: ", s->getSensor().getName().string());
539 result.append(i.second->dump().c_str());
540 }
541 }
Peng Xu0cc8f802016-04-05 23:46:03 -0700542
Aravind Akella444f2672015-05-07 12:40:52 -0700543 result.append("Active sensors:\n");
Brian Stackbce04d72019-03-21 10:54:10 -0700544 SensorDevice& dev = SensorDevice::getInstance();
Aravind Akella444f2672015-05-07 12:40:52 -0700545 for (size_t i=0 ; i<mActiveSensors.size() ; i++) {
546 int handle = mActiveSensors.keyAt(i);
Brian Stackbce04d72019-03-21 10:54:10 -0700547 if (dev.isSensorActive(handle)) {
548 result.appendFormat("%s (handle=0x%08x, connections=%zu)\n",
549 getSensorName(handle).string(),
550 handle,
551 mActiveSensors.valueAt(i)->getNumConnections());
552 }
Aravind Akella6c2664a2014-08-13 12:24:50 -0700553 }
554
Andreas Gamped4036b62015-07-28 13:49:04 -0700555 result.appendFormat("Socket Buffer size = %zd events\n",
Aravind Akella444f2672015-05-07 12:40:52 -0700556 mSocketBufferSize/sizeof(sensors_event_t));
Aravind Akella18d6d512015-06-18 14:18:28 -0700557 result.appendFormat("WakeLock Status: %s \n", mWakeLockAcquired ? "acquired" :
558 "not held");
Aravind Akella444f2672015-05-07 12:40:52 -0700559 result.appendFormat("Mode :");
560 switch(mCurrentOperatingMode) {
561 case NORMAL:
562 result.appendFormat(" NORMAL\n");
563 break;
564 case RESTRICTED:
Aravind Akella841a5922015-06-29 12:37:48 -0700565 result.appendFormat(" RESTRICTED : %s\n", mWhiteListedPackage.string());
Aravind Akella444f2672015-05-07 12:40:52 -0700566 break;
567 case DATA_INJECTION:
Aravind Akella841a5922015-06-29 12:37:48 -0700568 result.appendFormat(" DATA_INJECTION : %s\n", mWhiteListedPackage.string());
Mathias Agopianba02cd22013-07-03 16:20:57 -0700569 }
Michael Groover5e1f60b2018-12-04 22:34:29 -0800570 result.appendFormat("Sensor Privacy: %s\n",
571 mSensorPrivacyPolicy->isSensorPrivacyEnabled() ? "enabled" : "disabled");
Aravind Akella0e025c52014-06-03 19:19:57 -0700572
Brian Duddie967ce172019-06-10 11:08:27 -0700573 const auto& activeConnections = connLock.getActiveConnections();
574 result.appendFormat("%zd active connections\n", activeConnections.size());
575 for (size_t i=0 ; i < activeConnections.size() ; i++) {
576 result.appendFormat("Connection Number: %zu \n", i);
577 activeConnections[i]->dump(result);
Aravind Akella4c8b9512013-09-05 17:03:38 -0700578 }
Aravind Akella18d6d512015-06-18 14:18:28 -0700579
Brian Duddie967ce172019-06-10 11:08:27 -0700580 const auto& directConnections = connLock.getDirectConnections();
581 result.appendFormat("%zd direct connections\n", directConnections.size());
582 for (size_t i = 0 ; i < directConnections.size() ; i++) {
583 result.appendFormat("Direct connection %zu:\n", i);
584 directConnections[i]->dump(result);
Peng Xue36e3472016-11-03 11:57:10 -0700585 }
586
Aravind Akella18d6d512015-06-18 14:18:28 -0700587 result.appendFormat("Previous Registrations:\n");
588 // Log in the reverse chronological order.
589 int currentIndex = (mNextSensorRegIndex - 1 + SENSOR_REGISTRATIONS_BUF_SIZE) %
590 SENSOR_REGISTRATIONS_BUF_SIZE;
591 const int startIndex = currentIndex;
592 do {
593 const SensorRegistrationInfo& reg_info = mLastNSensorRegistrations[currentIndex];
594 if (SensorRegistrationInfo::isSentinel(reg_info)) {
595 // Ignore sentinel, proceed to next item.
596 currentIndex = (currentIndex - 1 + SENSOR_REGISTRATIONS_BUF_SIZE) %
597 SENSOR_REGISTRATIONS_BUF_SIZE;
598 continue;
599 }
Peng Xu51224682017-03-10 16:57:27 -0800600 result.appendFormat("%s\n", reg_info.dump().c_str());
Aravind Akella18d6d512015-06-18 14:18:28 -0700601 currentIndex = (currentIndex - 1 + SENSOR_REGISTRATIONS_BUF_SIZE) %
602 SENSOR_REGISTRATIONS_BUF_SIZE;
603 } while(startIndex != currentIndex);
Aravind Akella4c8b9512013-09-05 17:03:38 -0700604 }
Mathias Agopianfc328812010-07-14 23:41:37 -0700605 }
606 write(fd, result.string(), result.size());
607 return NO_ERROR;
608}
609
Mike Ma24743862020-01-29 00:36:55 -0800610/**
611 * Dump debugging information as android.service.SensorServiceProto protobuf message using
612 * ProtoOutputStream.
613 *
614 * See proto definition and some notes about ProtoOutputStream in
615 * frameworks/base/core/proto/android/service/sensor_service.proto
616 */
617status_t SensorService::dumpProtoLocked(int fd, ConnectionSafeAutolock* connLock) const {
618 using namespace service::SensorServiceProto;
619 util::ProtoOutputStream proto;
Mike Ma285aac12020-02-07 12:29:46 -0800620 proto.write(INIT_STATUS, int(SensorDevice::getInstance().initCheck()));
621 if (!mSensors.hasAnySensor()) {
622 return proto.flush(fd) ? OK : UNKNOWN_ERROR;
623 }
Mike Ma24743862020-01-29 00:36:55 -0800624 const bool privileged = IPCThreadState::self()->getCallingUid() == 0;
625
626 timespec curTime;
627 clock_gettime(CLOCK_REALTIME, &curTime);
628 proto.write(CURRENT_TIME_MS, curTime.tv_sec * 1000 + ns2ms(curTime.tv_nsec));
629
630 // Write SensorDeviceProto
631 uint64_t token = proto.start(SENSOR_DEVICE);
632 SensorDevice::getInstance().dump(&proto);
633 proto.end(token);
634
635 // Write SensorListProto
636 token = proto.start(SENSORS);
637 mSensors.dump(&proto);
638 proto.end(token);
639
640 // Write SensorFusionProto
641 token = proto.start(FUSION_STATE);
642 SensorFusion::getInstance().dump(&proto);
643 proto.end(token);
644
645 // Write SensorEventsProto
646 token = proto.start(SENSOR_EVENTS);
647 for (auto&& i : mRecentEvent) {
648 sp<SensorInterface> s = mSensors.getInterface(i.first);
649 if (!i.second->isEmpty()) {
650 i.second->setFormat(privileged || s->getSensor().getRequiredPermission().isEmpty() ?
651 "normal" : "mask_data");
652 const uint64_t mToken = proto.start(service::SensorEventsProto::RECENT_EVENTS_LOGS);
653 proto.write(service::SensorEventsProto::RecentEventsLog::NAME,
654 std::string(s->getSensor().getName().string()));
655 i.second->dump(&proto);
656 proto.end(mToken);
657 }
658 }
659 proto.end(token);
660
661 // Write ActiveSensorProto
662 SensorDevice& dev = SensorDevice::getInstance();
663 for (size_t i=0 ; i<mActiveSensors.size() ; i++) {
664 int handle = mActiveSensors.keyAt(i);
665 if (dev.isSensorActive(handle)) {
666 token = proto.start(ACTIVE_SENSORS);
667 proto.write(service::ActiveSensorProto::NAME,
668 std::string(getSensorName(handle).string()));
669 proto.write(service::ActiveSensorProto::HANDLE, handle);
670 proto.write(service::ActiveSensorProto::NUM_CONNECTIONS,
671 int(mActiveSensors.valueAt(i)->getNumConnections()));
672 proto.end(token);
673 }
674 }
675
676 proto.write(SOCKET_BUFFER_SIZE, int(mSocketBufferSize));
677 proto.write(SOCKET_BUFFER_SIZE_IN_EVENTS, int(mSocketBufferSize / sizeof(sensors_event_t)));
678 proto.write(WAKE_LOCK_ACQUIRED, mWakeLockAcquired);
679
680 switch(mCurrentOperatingMode) {
681 case NORMAL:
682 proto.write(OPERATING_MODE, OP_MODE_NORMAL);
683 break;
684 case RESTRICTED:
685 proto.write(OPERATING_MODE, OP_MODE_RESTRICTED);
686 proto.write(WHITELISTED_PACKAGE, std::string(mWhiteListedPackage.string()));
687 break;
688 case DATA_INJECTION:
689 proto.write(OPERATING_MODE, OP_MODE_DATA_INJECTION);
690 proto.write(WHITELISTED_PACKAGE, std::string(mWhiteListedPackage.string()));
691 break;
692 default:
693 proto.write(OPERATING_MODE, OP_MODE_UNKNOWN);
694 }
695 proto.write(SENSOR_PRIVACY, mSensorPrivacyPolicy->isSensorPrivacyEnabled());
696
697 // Write repeated SensorEventConnectionProto
698 const auto& activeConnections = connLock->getActiveConnections();
699 for (size_t i = 0; i < activeConnections.size(); i++) {
700 token = proto.start(ACTIVE_CONNECTIONS);
701 activeConnections[i]->dump(&proto);
702 proto.end(token);
703 }
704
705 // Write repeated SensorDirectConnectionProto
706 const auto& directConnections = connLock->getDirectConnections();
707 for (size_t i = 0 ; i < directConnections.size() ; i++) {
708 token = proto.start(DIRECT_CONNECTIONS);
709 directConnections[i]->dump(&proto);
710 proto.end(token);
711 }
712
713 // Write repeated SensorRegistrationInfoProto
714 const int startIndex = mNextSensorRegIndex;
715 int curr = startIndex;
716 do {
717 const SensorRegistrationInfo& reg_info = mLastNSensorRegistrations[curr];
718 if (SensorRegistrationInfo::isSentinel(reg_info)) {
719 // Ignore sentinel, proceed to next item.
720 curr = (curr + 1 + SENSOR_REGISTRATIONS_BUF_SIZE) % SENSOR_REGISTRATIONS_BUF_SIZE;
721 continue;
722 }
723 token = proto.start(PREVIOUS_REGISTRATIONS);
724 reg_info.dump(&proto);
725 proto.end(token);
726 curr = (curr + 1 + SENSOR_REGISTRATIONS_BUF_SIZE) % SENSOR_REGISTRATIONS_BUF_SIZE;
727 } while (startIndex != curr);
728
729 return proto.flush(fd) ? OK : UNKNOWN_ERROR;
730}
731
Michael Groover5e1f60b2018-12-04 22:34:29 -0800732void SensorService::disableAllSensors() {
Brian Duddie967ce172019-06-10 11:08:27 -0700733 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
734 disableAllSensorsLocked(&connLock);
Michael Groover5e1f60b2018-12-04 22:34:29 -0800735}
736
Brian Duddie967ce172019-06-10 11:08:27 -0700737void SensorService::disableAllSensorsLocked(ConnectionSafeAutolock* connLock) {
Michael Groover5e1f60b2018-12-04 22:34:29 -0800738 SensorDevice& dev(SensorDevice::getInstance());
Arthur Ishiguroe3ed3d22020-04-13 10:29:44 -0700739 for (const sp<SensorDirectConnection>& conn : connLock->getDirectConnections()) {
740 bool hasAccess = hasSensorAccessLocked(conn->getUid(), conn->getOpPackageName());
741 conn->onSensorAccessChanged(hasAccess);
Michael Groover5e1f60b2018-12-04 22:34:29 -0800742 }
743 dev.disableAllSensors();
Chris Kuiperdf11ff22021-10-12 16:30:01 -0700744 checkAndReportProxStateChangeLocked();
Michael Groover5e1f60b2018-12-04 22:34:29 -0800745 // Clear all pending flush connections for all active sensors. If one of the active
746 // connections has called flush() and the underlying sensor has been disabled before a
747 // flush complete event is returned, we need to remove the connection from this queue.
748 for (size_t i=0 ; i< mActiveSensors.size(); ++i) {
749 mActiveSensors.valueAt(i)->clearAllPendingFlushConnections();
750 }
751}
752
753void SensorService::enableAllSensors() {
Brian Duddie967ce172019-06-10 11:08:27 -0700754 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
755 enableAllSensorsLocked(&connLock);
Michael Groover5e1f60b2018-12-04 22:34:29 -0800756}
757
Brian Duddie967ce172019-06-10 11:08:27 -0700758void SensorService::enableAllSensorsLocked(ConnectionSafeAutolock* connLock) {
Michael Groover5e1f60b2018-12-04 22:34:29 -0800759 // sensors should only be enabled if the operating state is not restricted and sensor
760 // privacy is not enabled.
761 if (mCurrentOperatingMode == RESTRICTED || mSensorPrivacyPolicy->isSensorPrivacyEnabled()) {
762 ALOGW("Sensors cannot be enabled: mCurrentOperatingMode = %d, sensor privacy = %s",
763 mCurrentOperatingMode,
764 mSensorPrivacyPolicy->isSensorPrivacyEnabled() ? "enabled" : "disabled");
765 return;
766 }
767 SensorDevice& dev(SensorDevice::getInstance());
768 dev.enableAllSensors();
Arthur Ishiguroe3ed3d22020-04-13 10:29:44 -0700769 for (const sp<SensorDirectConnection>& conn : connLock->getDirectConnections()) {
770 bool hasAccess = hasSensorAccessLocked(conn->getUid(), conn->getOpPackageName());
771 conn->onSensorAccessChanged(hasAccess);
Michael Groover5e1f60b2018-12-04 22:34:29 -0800772 }
Chris Kuiperdf11ff22021-10-12 16:30:01 -0700773 checkAndReportProxStateChangeLocked();
Michael Groover5e1f60b2018-12-04 22:34:29 -0800774}
775
Anh Pham5198c992021-02-10 14:15:30 +0100776void SensorService::capRates(userid_t userId) {
777 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
778 for (const sp<SensorDirectConnection>& conn : connLock.getDirectConnections()) {
779 if (conn->getUserId() == userId) {
780 conn->onMicSensorAccessChanged(true);
781 }
782 }
783
784 for (const sp<SensorEventConnection>& conn : connLock.getActiveConnections()) {
785 if (conn->getUserId() == userId) {
786 conn->onMicSensorAccessChanged(true);
787 }
788 }
789}
790
791void SensorService::uncapRates(userid_t userId) {
792 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
793 for (const sp<SensorDirectConnection>& conn : connLock.getDirectConnections()) {
794 if (conn->getUserId() == userId) {
795 conn->onMicSensorAccessChanged(false);
796 }
797 }
798
799 for (const sp<SensorEventConnection>& conn : connLock.getActiveConnections()) {
800 if (conn->getUserId() == userId) {
801 conn->onMicSensorAccessChanged(false);
802 }
803 }
804}
Brian Duddie967ce172019-06-10 11:08:27 -0700805
Svet Ganove752a5c2018-01-15 17:14:20 -0800806// NOTE: This is a remote API - make sure all args are validated
807status_t SensorService::shellCommand(int in, int out, int err, Vector<String16>& args) {
808 if (!checkCallingPermission(sManageSensorsPermission, nullptr, nullptr)) {
809 return PERMISSION_DENIED;
810 }
karthik bharadwaj1b386582020-05-19 18:32:36 -0700811 if (args.size() == 0) {
812 return BAD_INDEX;
813 }
Svet Ganove752a5c2018-01-15 17:14:20 -0800814 if (in == BAD_TYPE || out == BAD_TYPE || err == BAD_TYPE) {
815 return BAD_VALUE;
816 }
Tanmay Patild33a1822019-04-11 18:38:55 -0700817 if (args[0] == String16("set-uid-state")) {
Svet Ganove752a5c2018-01-15 17:14:20 -0800818 return handleSetUidState(args, err);
Tanmay Patild33a1822019-04-11 18:38:55 -0700819 } else if (args[0] == String16("reset-uid-state")) {
Svet Ganove752a5c2018-01-15 17:14:20 -0800820 return handleResetUidState(args, err);
Tanmay Patild33a1822019-04-11 18:38:55 -0700821 } else if (args[0] == String16("get-uid-state")) {
Svet Ganove752a5c2018-01-15 17:14:20 -0800822 return handleGetUidState(args, out, err);
823 } else if (args.size() == 1 && args[0] == String16("help")) {
824 printHelp(out);
825 return NO_ERROR;
826 }
827 printHelp(err);
828 return BAD_VALUE;
829}
830
Tanmay Patild33a1822019-04-11 18:38:55 -0700831static status_t getUidForPackage(String16 packageName, int userId, /*inout*/uid_t& uid, int err) {
Svet Ganove752a5c2018-01-15 17:14:20 -0800832 PermissionController pc;
Tanmay Patild33a1822019-04-11 18:38:55 -0700833 uid = pc.getPackageUid(packageName, 0);
Svet Ganove752a5c2018-01-15 17:14:20 -0800834 if (uid <= 0) {
Tanmay Patild33a1822019-04-11 18:38:55 -0700835 ALOGE("Unknown package: '%s'", String8(packageName).string());
836 dprintf(err, "Unknown package: '%s'\n", String8(packageName).string());
Svet Ganove752a5c2018-01-15 17:14:20 -0800837 return BAD_VALUE;
838 }
Tanmay Patild33a1822019-04-11 18:38:55 -0700839
840 if (userId < 0) {
841 ALOGE("Invalid user: %d", userId);
842 dprintf(err, "Invalid user: %d\n", userId);
843 return BAD_VALUE;
844 }
845
846 uid = multiuser_get_uid(userId, uid);
847 return NO_ERROR;
848}
849
850status_t SensorService::handleSetUidState(Vector<String16>& args, int err) {
851 // Valid arg.size() is 3 or 5, args.size() is 5 with --user option.
852 if (!(args.size() == 3 || args.size() == 5)) {
853 printHelp(err);
854 return BAD_VALUE;
855 }
856
Svet Ganove752a5c2018-01-15 17:14:20 -0800857 bool active = false;
858 if (args[2] == String16("active")) {
859 active = true;
860 } else if ((args[2] != String16("idle"))) {
861 ALOGE("Expected active or idle but got: '%s'", String8(args[2]).string());
862 return BAD_VALUE;
863 }
Tanmay Patild33a1822019-04-11 18:38:55 -0700864
865 int userId = 0;
866 if (args.size() == 5 && args[3] == String16("--user")) {
867 userId = atoi(String8(args[4]));
868 }
869
870 uid_t uid;
871 if (getUidForPackage(args[1], userId, uid, err) != NO_ERROR) {
872 return BAD_VALUE;
873 }
874
Svet Ganove752a5c2018-01-15 17:14:20 -0800875 mUidPolicy->addOverrideUid(uid, active);
876 return NO_ERROR;
877}
878
879status_t SensorService::handleResetUidState(Vector<String16>& args, int err) {
Tanmay Patild33a1822019-04-11 18:38:55 -0700880 // Valid arg.size() is 2 or 4, args.size() is 4 with --user option.
881 if (!(args.size() == 2 || args.size() == 4)) {
882 printHelp(err);
Svet Ganove752a5c2018-01-15 17:14:20 -0800883 return BAD_VALUE;
884 }
Tanmay Patild33a1822019-04-11 18:38:55 -0700885
886 int userId = 0;
887 if (args.size() == 4 && args[2] == String16("--user")) {
888 userId = atoi(String8(args[3]));
889 }
890
891 uid_t uid;
892 if (getUidForPackage(args[1], userId, uid, err) == BAD_VALUE) {
893 return BAD_VALUE;
894 }
895
Svet Ganove752a5c2018-01-15 17:14:20 -0800896 mUidPolicy->removeOverrideUid(uid);
897 return NO_ERROR;
898}
899
900status_t SensorService::handleGetUidState(Vector<String16>& args, int out, int err) {
Tanmay Patild33a1822019-04-11 18:38:55 -0700901 // Valid arg.size() is 2 or 4, args.size() is 4 with --user option.
902 if (!(args.size() == 2 || args.size() == 4)) {
903 printHelp(err);
Svet Ganove752a5c2018-01-15 17:14:20 -0800904 return BAD_VALUE;
905 }
Tanmay Patild33a1822019-04-11 18:38:55 -0700906
907 int userId = 0;
908 if (args.size() == 4 && args[2] == String16("--user")) {
909 userId = atoi(String8(args[3]));
910 }
911
912 uid_t uid;
913 if (getUidForPackage(args[1], userId, uid, err) == BAD_VALUE) {
914 return BAD_VALUE;
915 }
916
Svet Ganove752a5c2018-01-15 17:14:20 -0800917 if (mUidPolicy->isUidActive(uid)) {
918 return dprintf(out, "active\n");
919 } else {
920 return dprintf(out, "idle\n");
921 }
922}
923
924status_t SensorService::printHelp(int out) {
925 return dprintf(out, "Sensor service commands:\n"
Tanmay Patild33a1822019-04-11 18:38:55 -0700926 " get-uid-state <PACKAGE> [--user USER_ID] gets the uid state\n"
927 " set-uid-state <PACKAGE> <active|idle> [--user USER_ID] overrides the uid state\n"
928 " reset-uid-state <PACKAGE> [--user USER_ID] clears the uid state override\n"
Svet Ganove752a5c2018-01-15 17:14:20 -0800929 " help print this message\n");
930}
931
Peng Xu0cc8f802016-04-05 23:46:03 -0700932//TODO: move to SensorEventConnection later
Aravind Akella9a844cf2014-02-11 18:58:52 -0800933void SensorService::cleanupAutoDisabledSensorLocked(const sp<SensorEventConnection>& connection,
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700934 sensors_event_t const* buffer, const int count) {
935 for (int i=0 ; i<count ; i++) {
936 int handle = buffer[i].sensor;
Aravind Akella8493b792014-09-08 15:45:47 -0700937 if (buffer[i].type == SENSOR_TYPE_META_DATA) {
938 handle = buffer[i].meta_data.sensor;
939 }
Aravind Akella0e025c52014-06-03 19:19:57 -0700940 if (connection->hasSensor(handle)) {
Peng Xu755c4512016-04-07 23:15:14 -0700941 sp<SensorInterface> si = getSensorInterfaceFromHandle(handle);
Aravind Akella0e025c52014-06-03 19:19:57 -0700942 // If this buffer has an event from a one_shot sensor and this connection is registered
943 // for this particular one_shot sensor, try cleaning up the connection.
Peng Xu755c4512016-04-07 23:15:14 -0700944 if (si != nullptr &&
Peng Xu0cc8f802016-04-05 23:46:03 -0700945 si->getSensor().getReportingMode() == AREPORTING_MODE_ONE_SHOT) {
946 si->autoDisable(connection.get(), handle);
Aravind Akella9a844cf2014-02-11 18:58:52 -0800947 cleanupWithoutDisableLocked(connection, handle);
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700948 }
Aravind Akellaa9e6cc32015-04-16 18:57:31 -0700949
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700950 }
Aravind Akellaa9e6cc32015-04-16 18:57:31 -0700951 }
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700952}
953
Peng Xu47e96012016-03-28 17:55:56 -0700954bool SensorService::threadLoop() {
Steve Blocka5512372011-12-20 16:23:08 +0000955 ALOGD("nuSensorService thread starting...");
Mathias Agopianfc328812010-07-14 23:41:37 -0700956
Peng Xueb4d6282015-12-10 18:02:41 -0800957 // each virtual sensor could generate an event per "real" event, that's why we need to size
958 // numEventMax much smaller than MAX_RECEIVE_BUFFER_EVENT_COUNT. in practice, this is too
959 // aggressive, but guaranteed to be enough.
Peng Xu0cc8f802016-04-05 23:46:03 -0700960 const size_t vcount = mSensors.getVirtualSensors().size();
Mathias Agopian90ed3e82013-09-09 23:36:25 -0700961 const size_t minBufferSize = SensorEventQueue::MAX_RECEIVE_BUFFER_EVENT_COUNT;
Peng Xu0cc8f802016-04-05 23:46:03 -0700962 const size_t numEventMax = minBufferSize / (1 + vcount);
Mathias Agopian90ed3e82013-09-09 23:36:25 -0700963
Mathias Agopianf001c922010-11-11 17:58:51 -0800964 SensorDevice& device(SensorDevice::getInstance());
Mathias Agopianfc328812010-07-14 23:41:37 -0700965
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700966 const int halVersion = device.getHalDeviceVersion();
Mathias Agopianfc328812010-07-14 23:41:37 -0700967 do {
Aravind Akella8493b792014-09-08 15:45:47 -0700968 ssize_t count = device.poll(mSensorEventBuffer, numEventMax);
969 if (count < 0) {
Brian Stack156da082018-10-01 15:58:53 -0700970 if(count == DEAD_OBJECT && device.isReconnecting()) {
971 device.reconnect();
972 continue;
973 } else {
974 ALOGE("sensor poll failed (%s)", strerror(-count));
975 break;
976 }
Mathias Agopianfc328812010-07-14 23:41:37 -0700977 }
Aravind Akella56ae4262014-07-10 16:01:10 -0700978
979 // Reset sensors_event_t.flags to zero for all events in the buffer.
980 for (int i = 0; i < count; i++) {
Aravind Akella8493b792014-09-08 15:45:47 -0700981 mSensorEventBuffer[i].flags = 0;
Aravind Akella56ae4262014-07-10 16:01:10 -0700982 }
Brian Duddie967ce172019-06-10 11:08:27 -0700983 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
Aravind Akellae148bc22014-09-24 22:12:58 -0700984
Aravind Akella9a844cf2014-02-11 18:58:52 -0800985 // Poll has returned. Hold a wakelock if one of the events is from a wake up sensor. The
986 // rest of this loop is under a critical section protected by mLock. Acquiring a wakeLock,
987 // sending events to clients (incrementing SensorEventConnection::mWakeLockRefCount) should
988 // not be interleaved with decrementing SensorEventConnection::mWakeLockRefCount and
989 // releasing the wakelock.
Brian Stackb7bfc0f2018-09-25 09:41:16 -0700990 uint32_t wakeEvents = 0;
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700991 for (int i = 0; i < count; i++) {
Aravind Akella8493b792014-09-08 15:45:47 -0700992 if (isWakeUpSensorEvent(mSensorEventBuffer[i])) {
Brian Stackb7bfc0f2018-09-25 09:41:16 -0700993 wakeEvents++;
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -0700994 }
995 }
996
Brian Stackb7bfc0f2018-09-25 09:41:16 -0700997 if (wakeEvents > 0) {
998 if (!mWakeLockAcquired) {
999 setWakeLockAcquiredLocked(true);
1000 }
1001 device.writeWakeLockHandled(wakeEvents);
Aravind Akella9a844cf2014-02-11 18:58:52 -08001002 }
Aravind Akella8493b792014-09-08 15:45:47 -07001003 recordLastValueLocked(mSensorEventBuffer, count);
Mathias Agopian94e8f682010-11-10 17:50:28 -08001004
Mathias Agopianf001c922010-11-11 17:58:51 -08001005 // handle virtual sensors
1006 if (count && vcount) {
Aravind Akella8493b792014-09-08 15:45:47 -07001007 sensors_event_t const * const event = mSensorEventBuffer;
Peng Xu755c4512016-04-07 23:15:14 -07001008 if (!mActiveVirtualSensors.empty()) {
Mathias Agopianf001c922010-11-11 17:58:51 -08001009 size_t k = 0;
Mathias Agopian984826c2011-05-17 22:54:42 -07001010 SensorFusion& fusion(SensorFusion::getInstance());
1011 if (fusion.isEnabled()) {
1012 for (size_t i=0 ; i<size_t(count) ; i++) {
1013 fusion.process(event[i]);
1014 }
1015 }
Mathias Agopiand1920ff2012-05-29 19:46:14 -07001016 for (size_t i=0 ; i<size_t(count) && k<minBufferSize ; i++) {
Peng Xu755c4512016-04-07 23:15:14 -07001017 for (int handle : mActiveVirtualSensors) {
Mathias Agopiand1920ff2012-05-29 19:46:14 -07001018 if (count + k >= minBufferSize) {
1019 ALOGE("buffer too small to hold all events: "
Mark Salyzyndb458612014-06-10 14:50:02 -07001020 "count=%zd, k=%zu, size=%zu",
Mathias Agopiand1920ff2012-05-29 19:46:14 -07001021 count, k, minBufferSize);
1022 break;
1023 }
Mathias Agopianf001c922010-11-11 17:58:51 -08001024 sensors_event_t out;
Peng Xu755c4512016-04-07 23:15:14 -07001025 sp<SensorInterface> si = mSensors.getInterface(handle);
1026 if (si == nullptr) {
1027 ALOGE("handle %d is not an valid virtual sensor", handle);
1028 continue;
1029 }
1030
Mathias Agopiand1920ff2012-05-29 19:46:14 -07001031 if (si->process(&out, event[i])) {
Aravind Akella8493b792014-09-08 15:45:47 -07001032 mSensorEventBuffer[count + k] = out;
Mathias Agopianf001c922010-11-11 17:58:51 -08001033 k++;
1034 }
1035 }
1036 }
1037 if (k) {
1038 // record the last synthesized values
Aravind Akella8493b792014-09-08 15:45:47 -07001039 recordLastValueLocked(&mSensorEventBuffer[count], k);
Mathias Agopianf001c922010-11-11 17:58:51 -08001040 count += k;
1041 // sort the buffer by time-stamps
Aravind Akella8493b792014-09-08 15:45:47 -07001042 sortEventBuffer(mSensorEventBuffer, count);
Mathias Agopianfc328812010-07-14 23:41:37 -07001043 }
1044 }
1045 }
1046
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001047 // handle backward compatibility for RotationVector sensor
1048 if (halVersion < SENSORS_DEVICE_API_VERSION_1_0) {
1049 for (int i = 0; i < count; i++) {
Aravind Akella8493b792014-09-08 15:45:47 -07001050 if (mSensorEventBuffer[i].type == SENSOR_TYPE_ROTATION_VECTOR) {
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001051 // All the 4 components of the quaternion should be available
1052 // No heading accuracy. Set it to -1
Aravind Akella8493b792014-09-08 15:45:47 -07001053 mSensorEventBuffer[i].data[4] = -1;
1054 }
1055 }
1056 }
1057
Brian Duddie967ce172019-06-10 11:08:27 -07001058 // Cache the list of active connections, since we use it in multiple places below but won't
1059 // modify it here
1060 const std::vector<sp<SensorEventConnection>> activeConnections = connLock.getActiveConnections();
1061
Aravind Akella8493b792014-09-08 15:45:47 -07001062 for (int i = 0; i < count; ++i) {
Peng Xu0cc8f802016-04-05 23:46:03 -07001063 // Map flush_complete_events in the buffer to SensorEventConnections which called flush
1064 // on the hardware sensor. mapFlushEventsToConnections[i] will be the
1065 // SensorEventConnection mapped to the corresponding flush_complete_event in
1066 // mSensorEventBuffer[i] if such a mapping exists (NULL otherwise).
Yi Kong8f313e32018-07-17 14:13:29 -07001067 mMapFlushEventsToConnections[i] = nullptr;
Aravind Akella8493b792014-09-08 15:45:47 -07001068 if (mSensorEventBuffer[i].type == SENSOR_TYPE_META_DATA) {
1069 const int sensor_handle = mSensorEventBuffer[i].meta_data.sensor;
1070 SensorRecord* rec = mActiveSensors.valueFor(sensor_handle);
Yi Kong8f313e32018-07-17 14:13:29 -07001071 if (rec != nullptr) {
Aravind Akella8493b792014-09-08 15:45:47 -07001072 mMapFlushEventsToConnections[i] = rec->getFirstPendingFlushConnection();
1073 rec->removeFirstPendingFlushConnection();
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001074 }
1075 }
Peng Xu2576cb62016-01-20 00:22:09 -08001076
1077 // handle dynamic sensor meta events, process registration and unregistration of dynamic
1078 // sensor based on content of event.
1079 if (mSensorEventBuffer[i].type == SENSOR_TYPE_DYNAMIC_SENSOR_META) {
1080 if (mSensorEventBuffer[i].dynamic_sensor_meta.connected) {
1081 int handle = mSensorEventBuffer[i].dynamic_sensor_meta.handle;
1082 const sensor_t& dynamicSensor =
1083 *(mSensorEventBuffer[i].dynamic_sensor_meta.sensor);
1084 ALOGI("Dynamic sensor handle 0x%x connected, type %d, name %s",
1085 handle, dynamicSensor.type, dynamicSensor.name);
1086
Peng Xu0cc8f802016-04-05 23:46:03 -07001087 if (mSensors.isNewHandle(handle)) {
Peng Xu6a2d3a02015-12-21 12:00:23 -08001088 const auto& uuid = mSensorEventBuffer[i].dynamic_sensor_meta.uuid;
Peng Xu47e96012016-03-28 17:55:56 -07001089 sensor_t s = dynamicSensor;
1090 // make sure the dynamic sensor flag is set
1091 s.flags |= DYNAMIC_SENSOR_MASK;
1092 // force the handle to be consistent
1093 s.handle = handle;
Peng Xu6a2d3a02015-12-21 12:00:23 -08001094
1095 SensorInterface *si = new HardwareSensor(s, uuid);
Peng Xu2576cb62016-01-20 00:22:09 -08001096
Peng Xu0cc8f802016-04-05 23:46:03 -07001097 // This will release hold on dynamic sensor meta, so it should be called
1098 // after Sensor object is created.
Peng Xu47e96012016-03-28 17:55:56 -07001099 device.handleDynamicSensorConnection(handle, true /*connected*/);
Peng Xu6a2d3a02015-12-21 12:00:23 -08001100 registerDynamicSensorLocked(si);
Peng Xu47e96012016-03-28 17:55:56 -07001101 } else {
1102 ALOGE("Handle %d has been used, cannot use again before reboot.", handle);
1103 }
Peng Xu2576cb62016-01-20 00:22:09 -08001104 } else {
1105 int handle = mSensorEventBuffer[i].dynamic_sensor_meta.handle;
1106 ALOGI("Dynamic sensor handle 0x%x disconnected", handle);
1107
1108 device.handleDynamicSensorConnection(handle, false /*connected*/);
Peng Xu6a2d3a02015-12-21 12:00:23 -08001109 if (!unregisterDynamicSensorLocked(handle)) {
Peng Xu2576cb62016-01-20 00:22:09 -08001110 ALOGE("Dynamic sensor release error.");
1111 }
1112
Brian Duddie967ce172019-06-10 11:08:27 -07001113 for (const sp<SensorEventConnection>& connection : activeConnections) {
1114 connection->removeSensor(handle);
Peng Xu2576cb62016-01-20 00:22:09 -08001115 }
1116 }
1117 }
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001118 }
1119
Aravind Akella9a844cf2014-02-11 18:58:52 -08001120 // Send our events to clients. Check the state of wake lock for each client and release the
1121 // lock if none of the clients need it.
1122 bool needsWakeLock = false;
Brian Duddie967ce172019-06-10 11:08:27 -07001123 for (const sp<SensorEventConnection>& connection : activeConnections) {
1124 connection->sendEvents(mSensorEventBuffer, count, mSensorEventScratch,
1125 mMapFlushEventsToConnections);
1126 needsWakeLock |= connection->needsWakeLock();
1127 // If the connection has one-shot sensors, it may be cleaned up after first trigger.
1128 // Early check for one-shot sensors.
1129 if (connection->hasOneShotSensors()) {
1130 cleanupAutoDisabledSensorLocked(connection, mSensorEventBuffer, count);
Mathias Agopianf001c922010-11-11 17:58:51 -08001131 }
1132 }
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001133
Aravind Akella9a844cf2014-02-11 18:58:52 -08001134 if (mWakeLockAcquired && !needsWakeLock) {
Aravind Akellab4373ac2014-10-29 17:55:20 -07001135 setWakeLockAcquiredLocked(false);
Aravind Akella9a844cf2014-02-11 18:58:52 -08001136 }
Aravind Akella8493b792014-09-08 15:45:47 -07001137 } while (!Thread::exitPending());
Mathias Agopianfc328812010-07-14 23:41:37 -07001138
Steve Block3c20fbe2012-01-05 23:22:43 +00001139 ALOGW("Exiting SensorService::threadLoop => aborting...");
Mathias Agopian1a623012011-11-09 17:50:15 -08001140 abort();
Mathias Agopianfc328812010-07-14 23:41:37 -07001141 return false;
1142}
1143
Aravind Akella56ae4262014-07-10 16:01:10 -07001144sp<Looper> SensorService::getLooper() const {
1145 return mLooper;
1146}
1147
Aravind Akellab4373ac2014-10-29 17:55:20 -07001148void SensorService::resetAllWakeLockRefCounts() {
Brian Duddie967ce172019-06-10 11:08:27 -07001149 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
1150 for (const sp<SensorEventConnection>& connection : connLock.getActiveConnections()) {
1151 connection->resetWakeLockRefCount();
Aravind Akellab4373ac2014-10-29 17:55:20 -07001152 }
Brian Duddie967ce172019-06-10 11:08:27 -07001153 setWakeLockAcquiredLocked(false);
Aravind Akellab4373ac2014-10-29 17:55:20 -07001154}
1155
1156void SensorService::setWakeLockAcquiredLocked(bool acquire) {
1157 if (acquire) {
1158 if (!mWakeLockAcquired) {
1159 acquire_wake_lock(PARTIAL_WAKE_LOCK, WAKE_LOCK_NAME);
1160 mWakeLockAcquired = true;
1161 }
1162 mLooper->wake();
1163 } else {
1164 if (mWakeLockAcquired) {
1165 release_wake_lock(WAKE_LOCK_NAME);
1166 mWakeLockAcquired = false;
1167 }
1168 }
1169}
1170
Aravind Akellab4373ac2014-10-29 17:55:20 -07001171bool SensorService::isWakeLockAcquired() {
1172 Mutex::Autolock _l(mLock);
1173 return mWakeLockAcquired;
1174}
1175
Aravind Akella56ae4262014-07-10 16:01:10 -07001176bool SensorService::SensorEventAckReceiver::threadLoop() {
1177 ALOGD("new thread SensorEventAckReceiver");
Aravind Akellab4373ac2014-10-29 17:55:20 -07001178 sp<Looper> looper = mService->getLooper();
Aravind Akella56ae4262014-07-10 16:01:10 -07001179 do {
Aravind Akellab4373ac2014-10-29 17:55:20 -07001180 bool wakeLockAcquired = mService->isWakeLockAcquired();
1181 int timeout = -1;
1182 if (wakeLockAcquired) timeout = 5000;
1183 int ret = looper->pollOnce(timeout);
1184 if (ret == ALOOPER_POLL_TIMEOUT) {
1185 mService->resetAllWakeLockRefCounts();
1186 }
Aravind Akella56ae4262014-07-10 16:01:10 -07001187 } while(!Thread::exitPending());
1188 return false;
1189}
1190
Aravind Akella9a844cf2014-02-11 18:58:52 -08001191void SensorService::recordLastValueLocked(
Aravind Akella4b847042014-03-03 19:02:46 -08001192 const sensors_event_t* buffer, size_t count) {
Aravind Akella4b847042014-03-03 19:02:46 -08001193 for (size_t i = 0; i < count; i++) {
Peng Xu2576cb62016-01-20 00:22:09 -08001194 if (buffer[i].type == SENSOR_TYPE_META_DATA ||
1195 buffer[i].type == SENSOR_TYPE_DYNAMIC_SENSOR_META ||
Peng Xu6a2d3a02015-12-21 12:00:23 -08001196 buffer[i].type == SENSOR_TYPE_ADDITIONAL_INFO) {
Peng Xu2576cb62016-01-20 00:22:09 -08001197 continue;
Mathias Agopian94e8f682010-11-10 17:50:28 -08001198 }
Peng Xu2576cb62016-01-20 00:22:09 -08001199
Peng Xu6a2d3a02015-12-21 12:00:23 -08001200 auto logger = mRecentEvent.find(buffer[i].sensor);
1201 if (logger != mRecentEvent.end()) {
1202 logger->second->addEvent(buffer[i]);
Peng Xu2576cb62016-01-20 00:22:09 -08001203 }
Mathias Agopian94e8f682010-11-10 17:50:28 -08001204 }
Mathias Agopian94e8f682010-11-10 17:50:28 -08001205}
1206
Peng Xu47e96012016-03-28 17:55:56 -07001207void SensorService::sortEventBuffer(sensors_event_t* buffer, size_t count) {
Mathias Agopianf001c922010-11-11 17:58:51 -08001208 struct compar {
1209 static int cmp(void const* lhs, void const* rhs) {
1210 sensors_event_t const* l = static_cast<sensors_event_t const*>(lhs);
1211 sensors_event_t const* r = static_cast<sensors_event_t const*>(rhs);
Mathias Agopiana5c106a2012-04-19 18:18:24 -07001212 return l->timestamp - r->timestamp;
Mathias Agopianf001c922010-11-11 17:58:51 -08001213 }
1214 };
1215 qsort(buffer, count, sizeof(sensors_event_t), compar::cmp);
1216}
1217
Mathias Agopian5d270722010-07-19 15:20:39 -07001218String8 SensorService::getSensorName(int handle) const {
Peng Xu0cc8f802016-04-05 23:46:03 -07001219 return mSensors.getName(handle);
Mathias Agopian5d270722010-07-19 15:20:39 -07001220}
1221
Arthur Ishiguro883748c2020-10-28 13:18:02 -07001222String8 SensorService::getSensorStringType(int handle) const {
1223 return mSensors.getStringType(handle);
1224}
1225
Aravind Akellab4099e72013-10-15 15:43:10 -07001226bool SensorService::isVirtualSensor(int handle) const {
Peng Xu755c4512016-04-07 23:15:14 -07001227 sp<SensorInterface> sensor = getSensorInterfaceFromHandle(handle);
1228 return sensor != nullptr && sensor->isVirtual();
Aravind Akellab4099e72013-10-15 15:43:10 -07001229}
1230
Aravind Akella9a844cf2014-02-11 18:58:52 -08001231bool SensorService::isWakeUpSensorEvent(const sensors_event_t& event) const {
Sean Wan7869e222014-07-14 17:07:33 -07001232 int handle = event.sensor;
1233 if (event.type == SENSOR_TYPE_META_DATA) {
1234 handle = event.meta_data.sensor;
1235 }
Peng Xu755c4512016-04-07 23:15:14 -07001236 sp<SensorInterface> sensor = getSensorInterfaceFromHandle(handle);
1237 return sensor != nullptr && sensor->getSensor().isWakeUpSensor();
Aravind Akella9a844cf2014-02-11 18:58:52 -08001238}
1239
Greg Kaiser53ca2e02016-06-21 16:11:14 -07001240int32_t SensorService::getIdFromUuid(const Sensor::uuid_t &uuid) const {
1241 if ((uuid.i64[0] == 0) && (uuid.i64[1] == 0)) {
1242 // UUID is not supported for this device.
1243 return 0;
1244 }
1245 if ((uuid.i64[0] == INT64_C(~0)) && (uuid.i64[1] == INT64_C(~0))) {
1246 // This sensor can be uniquely identified in the system by
1247 // the combination of its type and name.
1248 return -1;
1249 }
1250
1251 // We have a dynamic sensor.
1252
1253 if (!sHmacGlobalKeyIsValid) {
lifr3ab0a1b2021-08-06 00:14:26 +08001254 // Rather than risk exposing UUIDs, we slow down dynamic sensors.
Greg Kaiser53ca2e02016-06-21 16:11:14 -07001255 ALOGW("HMAC key failure; dynamic sensor getId() will be wrong.");
1256 return 0;
1257 }
1258
1259 // We want each app author/publisher to get a different ID, so that the
1260 // same dynamic sensor cannot be tracked across apps by multiple
1261 // authors/publishers. So we use both our UUID and our User ID.
1262 // Note potential confusion:
1263 // UUID => Universally Unique Identifier.
1264 // UID => User Identifier.
1265 // We refrain from using "uid" except as needed by API to try to
1266 // keep this distinction clear.
1267
1268 auto appUserId = IPCThreadState::self()->getCallingUid();
1269 uint8_t uuidAndApp[sizeof(uuid) + sizeof(appUserId)];
1270 memcpy(uuidAndApp, &uuid, sizeof(uuid));
1271 memcpy(uuidAndApp + sizeof(uuid), &appUserId, sizeof(appUserId));
1272
1273 // Now we use our key on our UUID/app combo to get the hash.
1274 uint8_t hash[EVP_MAX_MD_SIZE];
1275 unsigned int hashLen;
1276 if (HMAC(EVP_sha256(),
1277 sHmacGlobalKey, sizeof(sHmacGlobalKey),
1278 uuidAndApp, sizeof(uuidAndApp),
1279 hash, &hashLen) == nullptr) {
lifr3ab0a1b2021-08-06 00:14:26 +08001280 // Rather than risk exposing UUIDs, we slow down dynamic sensors.
Greg Kaiser53ca2e02016-06-21 16:11:14 -07001281 ALOGW("HMAC failure; dynamic sensor getId() will be wrong.");
1282 return 0;
1283 }
1284
1285 int32_t id = 0;
1286 if (hashLen < sizeof(id)) {
1287 // We never expect this case, but out of paranoia, we handle it.
1288 // Our 'id' length is already quite small, we don't want the
1289 // effective length of it to be even smaller.
1290 // Rather than risk exposing UUIDs, we cripple dynamic sensors.
1291 ALOGW("HMAC insufficient; dynamic sensor getId() will be wrong.");
1292 return 0;
1293 }
1294
1295 // This is almost certainly less than all of 'hash', but it's as secure
1296 // as we can be with our current 'id' length.
1297 memcpy(&id, hash, sizeof(id));
1298
1299 // Note at the beginning of the function that we return the values of
1300 // 0 and -1 to represent special cases. As a result, we can't return
1301 // those as dynamic sensor IDs. If we happened to hash to one of those
1302 // values, we change 'id' so we report as a dynamic sensor, and not as
1303 // one of those special cases.
1304 if (id == -1) {
1305 id = -2;
1306 } else if (id == 0) {
1307 id = 1;
1308 }
1309 return id;
1310}
1311
1312void SensorService::makeUuidsIntoIdsForSensorList(Vector<Sensor> &sensorList) const {
1313 for (auto &sensor : sensorList) {
1314 int32_t id = getIdFromUuid(sensor.getUuid());
1315 sensor.setId(id);
1316 }
1317}
1318
Anh Pham4e291332021-02-10 14:17:56 +01001319Vector<Sensor> SensorService::getSensorList(const String16& opPackageName) {
Mathias Agopian33264862012-06-28 19:46:54 -07001320 char value[PROPERTY_VALUE_MAX];
1321 property_get("debug.sensors", value, "0");
Aravind Akella70018042014-04-07 22:52:37 +00001322 const Vector<Sensor>& initialSensorList = (atoi(value)) ?
Peng Xu0cc8f802016-04-05 23:46:03 -07001323 mSensors.getUserDebugSensors() : mSensors.getUserSensors();
Aravind Akella70018042014-04-07 22:52:37 +00001324 Vector<Sensor> accessibleSensorList;
Anh Pham4e291332021-02-10 14:17:56 +01001325
1326 bool isCapped = isRateCappedBasedOnPermission(opPackageName);
Aravind Akella70018042014-04-07 22:52:37 +00001327 for (size_t i = 0; i < initialSensorList.size(); i++) {
1328 Sensor sensor = initialSensorList[i];
Anh Pham4e291332021-02-10 14:17:56 +01001329 if (isCapped && isSensorInCappedSet(sensor.getType())) {
1330 sensor.capMinDelayMicros(SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS / 1000);
1331 sensor.capHighestDirectReportRateLevel(SENSOR_SERVICE_CAPPED_SAMPLING_RATE_LEVEL);
1332 }
Nick Vaccaro2c588c52016-11-23 08:44:15 -08001333 accessibleSensorList.add(sensor);
Mathias Agopian33264862012-06-28 19:46:54 -07001334 }
Greg Kaiser53ca2e02016-06-21 16:11:14 -07001335 makeUuidsIntoIdsForSensorList(accessibleSensorList);
Aravind Akella70018042014-04-07 22:52:37 +00001336 return accessibleSensorList;
Mathias Agopianfc328812010-07-14 23:41:37 -07001337}
1338
Peng Xu47e96012016-03-28 17:55:56 -07001339Vector<Sensor> SensorService::getDynamicSensorList(const String16& opPackageName) {
Peng Xu2576cb62016-01-20 00:22:09 -08001340 Vector<Sensor> accessibleSensorList;
Peng Xu0cc8f802016-04-05 23:46:03 -07001341 mSensors.forEachSensor(
1342 [&opPackageName, &accessibleSensorList] (const Sensor& sensor) -> bool {
Peng Xu755c4512016-04-07 23:15:14 -07001343 if (sensor.isDynamicSensor()) {
1344 if (canAccessSensor(sensor, "getDynamicSensorList", opPackageName)) {
1345 accessibleSensorList.add(sensor);
1346 } else {
1347 ALOGI("Skipped sensor %s because it requires permission %s and app op %" PRId32,
1348 sensor.getName().string(),
1349 sensor.getRequiredPermission().string(),
1350 sensor.getRequiredAppOp());
1351 }
Peng Xu0cc8f802016-04-05 23:46:03 -07001352 }
1353 return true;
1354 });
Greg Kaiser53ca2e02016-06-21 16:11:14 -07001355 makeUuidsIntoIdsForSensorList(accessibleSensorList);
Peng Xu2576cb62016-01-20 00:22:09 -08001356 return accessibleSensorList;
1357}
1358
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001359sp<ISensorEventConnection> SensorService::createSensorEventConnection(const String8& packageName,
Arthur Ishiguro340882c2021-02-18 15:17:44 -08001360 int requestedMode, const String16& opPackageName, const String16& attributionTag) {
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001361 // Only 2 modes supported for a SensorEventConnection ... NORMAL and DATA_INJECTION.
1362 if (requestedMode != NORMAL && requestedMode != DATA_INJECTION) {
Yi Kong8f313e32018-07-17 14:13:29 -07001363 return nullptr;
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001364 }
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001365
1366 Mutex::Autolock _l(mLock);
Aravind Akella841a5922015-06-29 12:37:48 -07001367 // To create a client in DATA_INJECTION mode to inject data, SensorService should already be
1368 // operating in DI mode.
1369 if (requestedMode == DATA_INJECTION) {
Yi Kong8f313e32018-07-17 14:13:29 -07001370 if (mCurrentOperatingMode != DATA_INJECTION) return nullptr;
1371 if (!isWhiteListedPackage(packageName)) return nullptr;
Aravind Akella841a5922015-06-29 12:37:48 -07001372 }
1373
Mathias Agopian5307d172012-09-18 17:02:43 -07001374 uid_t uid = IPCThreadState::self()->getCallingUid();
Peng Xu58d450a2017-06-08 15:08:39 -07001375 pid_t pid = IPCThreadState::self()->getCallingPid();
1376
1377 String8 connPackageName =
1378 (packageName == "") ? String8::format("unknown_package_pid_%d", pid) : packageName;
1379 String16 connOpPackageName =
1380 (opPackageName == String16("")) ? String16(connPackageName) : opPackageName;
1381 sp<SensorEventConnection> result(new SensorEventConnection(this, uid, connPackageName,
Arthur Ishiguro340882c2021-02-18 15:17:44 -08001382 requestedMode == DATA_INJECTION, connOpPackageName, attributionTag));
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001383 if (requestedMode == DATA_INJECTION) {
Brian Duddie967ce172019-06-10 11:08:27 -07001384 mConnectionHolder.addEventConnectionIfNotPresent(result);
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001385 // Add the associated file descriptor to the Looper for polling whenever there is data to
1386 // be injected.
1387 result->updateLooperRegistration(mLooper);
1388 }
Mathias Agopianfc328812010-07-14 23:41:37 -07001389 return result;
1390}
1391
Aravind Akella841a5922015-06-29 12:37:48 -07001392int SensorService::isDataInjectionEnabled() {
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001393 Mutex::Autolock _l(mLock);
Aravind Akella841a5922015-06-29 12:37:48 -07001394 return (mCurrentOperatingMode == DATA_INJECTION);
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001395}
1396
Peng Xue36e3472016-11-03 11:57:10 -07001397sp<ISensorEventConnection> SensorService::createSensorDirectConnection(
1398 const String16& opPackageName, uint32_t size, int32_t type, int32_t format,
1399 const native_handle *resource) {
Brian Duddie967ce172019-06-10 11:08:27 -07001400 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
Peng Xue36e3472016-11-03 11:57:10 -07001401
Michael Groover5e1f60b2018-12-04 22:34:29 -08001402 // No new direct connections are allowed when sensor privacy is enabled
1403 if (mSensorPrivacyPolicy->isSensorPrivacyEnabled()) {
1404 ALOGE("Cannot create new direct connections when sensor privacy is enabled");
1405 return nullptr;
1406 }
1407
Peng Xue36e3472016-11-03 11:57:10 -07001408 struct sensors_direct_mem_t mem = {
1409 .type = type,
1410 .format = format,
1411 .size = size,
1412 .handle = resource,
1413 };
1414 uid_t uid = IPCThreadState::self()->getCallingUid();
1415
1416 if (mem.handle == nullptr) {
1417 ALOGE("Failed to clone resource handle");
1418 return nullptr;
1419 }
1420
1421 // check format
1422 if (format != SENSOR_DIRECT_FMT_SENSORS_EVENT) {
1423 ALOGE("Direct channel format %d is unsupported!", format);
1424 return nullptr;
1425 }
1426
1427 // check for duplication
Brian Duddie967ce172019-06-10 11:08:27 -07001428 for (const sp<SensorDirectConnection>& connection : connLock.getDirectConnections()) {
1429 if (connection->isEquivalent(&mem)) {
Peng Xuf88e2b92017-04-10 15:52:58 -07001430 ALOGE("Duplicate create channel request for the same share memory");
Peng Xue36e3472016-11-03 11:57:10 -07001431 return nullptr;
1432 }
1433 }
1434
1435 // check specific to memory type
1436 switch(type) {
1437 case SENSOR_DIRECT_MEM_TYPE_ASHMEM: { // channel backed by ashmem
Brian Duddie0eb46242018-02-15 15:02:29 -08001438 if (resource->numFds < 1) {
1439 ALOGE("Ashmem direct channel requires a memory region to be supplied");
1440 android_errorWriteLog(0x534e4554, "70986337"); // SafetyNet
1441 return nullptr;
1442 }
Peng Xue36e3472016-11-03 11:57:10 -07001443 int fd = resource->data[0];
Anthony Stange3de91192019-11-21 18:35:04 -05001444 if (!ashmem_valid(fd)) {
1445 ALOGE("Supplied Ashmem memory region is invalid");
1446 return nullptr;
1447 }
1448
Peng Xue36e3472016-11-03 11:57:10 -07001449 int size2 = ashmem_get_size_region(fd);
1450 // check size consistency
Brian Duddie0eb46242018-02-15 15:02:29 -08001451 if (size2 < static_cast<int64_t>(size)) {
Peng Xuf88e2b92017-04-10 15:52:58 -07001452 ALOGE("Ashmem direct channel size %" PRIu32 " greater than shared memory size %d",
1453 size, size2);
Peng Xue36e3472016-11-03 11:57:10 -07001454 return nullptr;
1455 }
1456 break;
1457 }
1458 case SENSOR_DIRECT_MEM_TYPE_GRALLOC:
Peng Xuf88e2b92017-04-10 15:52:58 -07001459 // no specific checks for gralloc
Peng Xue36e3472016-11-03 11:57:10 -07001460 break;
1461 default:
1462 ALOGE("Unknown direct connection memory type %d", type);
1463 return nullptr;
1464 }
1465
1466 native_handle_t *clone = native_handle_clone(resource);
1467 if (!clone) {
1468 return nullptr;
1469 }
1470
Brian Duddie967ce172019-06-10 11:08:27 -07001471 sp<SensorDirectConnection> conn;
Peng Xue36e3472016-11-03 11:57:10 -07001472 SensorDevice& dev(SensorDevice::getInstance());
1473 int channelHandle = dev.registerDirectChannel(&mem);
1474
1475 if (channelHandle <= 0) {
1476 ALOGE("SensorDevice::registerDirectChannel returns %d", channelHandle);
1477 } else {
1478 mem.handle = clone;
1479 conn = new SensorDirectConnection(this, uid, &mem, channelHandle, opPackageName);
1480 }
1481
1482 if (conn == nullptr) {
1483 native_handle_close(clone);
1484 native_handle_delete(clone);
1485 } else {
1486 // add to list of direct connections
1487 // sensor service should never hold pointer or sp of SensorDirectConnection object.
Brian Duddie967ce172019-06-10 11:08:27 -07001488 mConnectionHolder.addDirectConnection(conn);
Peng Xue36e3472016-11-03 11:57:10 -07001489 }
1490 return conn;
1491}
1492
Peng Xudd5c5cb2017-03-16 17:39:43 -07001493int SensorService::setOperationParameter(
Alexey Polyudov88711e82017-05-23 19:54:04 -07001494 int32_t handle, int32_t type,
1495 const Vector<float> &floats, const Vector<int32_t> &ints) {
Peng Xudd5c5cb2017-03-16 17:39:43 -07001496 Mutex::Autolock _l(mLock);
1497
Alexey Polyudov88711e82017-05-23 19:54:04 -07001498 if (!checkCallingPermission(sLocationHardwarePermission, nullptr, nullptr)) {
Peng Xudd5c5cb2017-03-16 17:39:43 -07001499 return PERMISSION_DENIED;
1500 }
1501
1502 bool isFloat = true;
Alexey Polyudov88711e82017-05-23 19:54:04 -07001503 bool isCustom = false;
Peng Xudd5c5cb2017-03-16 17:39:43 -07001504 size_t expectSize = INT32_MAX;
1505 switch (type) {
1506 case AINFO_LOCAL_GEOMAGNETIC_FIELD:
1507 isFloat = true;
1508 expectSize = 3;
1509 break;
1510 case AINFO_LOCAL_GRAVITY:
1511 isFloat = true;
1512 expectSize = 1;
1513 break;
1514 case AINFO_DOCK_STATE:
1515 case AINFO_HIGH_PERFORMANCE_MODE:
1516 case AINFO_MAGNETIC_FIELD_CALIBRATION:
1517 isFloat = false;
1518 expectSize = 1;
1519 break;
1520 default:
Alexey Polyudov88711e82017-05-23 19:54:04 -07001521 // CUSTOM events must only contain float data; it may have variable size
1522 if (type < AINFO_CUSTOM_START || type >= AINFO_DEBUGGING_START ||
1523 ints.size() ||
1524 sizeof(additional_info_event_t::data_float)/sizeof(float) < floats.size() ||
1525 handle < 0) {
1526 return BAD_VALUE;
1527 }
1528 isFloat = true;
1529 isCustom = true;
1530 expectSize = floats.size();
1531 break;
1532 }
1533
1534 if (!isCustom && handle != -1) {
1535 return BAD_VALUE;
Peng Xudd5c5cb2017-03-16 17:39:43 -07001536 }
1537
1538 // three events: first one is begin tag, last one is end tag, the one in the middle
1539 // is the payload.
1540 sensors_event_t event[3];
1541 int64_t timestamp = elapsedRealtimeNano();
1542 for (sensors_event_t* i = event; i < event + 3; i++) {
1543 *i = (sensors_event_t) {
1544 .version = sizeof(sensors_event_t),
Alexey Polyudov88711e82017-05-23 19:54:04 -07001545 .sensor = handle,
Peng Xudd5c5cb2017-03-16 17:39:43 -07001546 .type = SENSOR_TYPE_ADDITIONAL_INFO,
1547 .timestamp = timestamp++,
1548 .additional_info = (additional_info_event_t) {
1549 .serial = 0
1550 }
1551 };
1552 }
1553
1554 event[0].additional_info.type = AINFO_BEGIN;
1555 event[1].additional_info.type = type;
1556 event[2].additional_info.type = AINFO_END;
1557
1558 if (isFloat) {
1559 if (floats.size() != expectSize) {
1560 return BAD_VALUE;
1561 }
1562 for (size_t i = 0; i < expectSize; ++i) {
1563 event[1].additional_info.data_float[i] = floats[i];
1564 }
1565 } else {
1566 if (ints.size() != expectSize) {
1567 return BAD_VALUE;
1568 }
1569 for (size_t i = 0; i < expectSize; ++i) {
1570 event[1].additional_info.data_int32[i] = ints[i];
1571 }
1572 }
1573
1574 SensorDevice& dev(SensorDevice::getInstance());
1575 for (sensors_event_t* i = event; i < event + 3; i++) {
1576 int ret = dev.injectSensorData(i);
1577 if (ret != NO_ERROR) {
1578 return ret;
1579 }
1580 }
1581 return NO_ERROR;
1582}
1583
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001584status_t SensorService::resetToNormalMode() {
1585 Mutex::Autolock _l(mLock);
1586 return resetToNormalModeLocked();
1587}
1588
1589status_t SensorService::resetToNormalModeLocked() {
1590 SensorDevice& dev(SensorDevice::getInstance());
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001591 status_t err = dev.setMode(NORMAL);
Aniroop Mathurbfac17e2016-08-31 22:59:44 +05301592 if (err == NO_ERROR) {
1593 mCurrentOperatingMode = NORMAL;
1594 dev.enableAllSensors();
Chris Kuiperdf11ff22021-10-12 16:30:01 -07001595 checkAndReportProxStateChangeLocked();
Aniroop Mathurbfac17e2016-08-31 22:59:44 +05301596 }
Aravind Akellaa9e6cc32015-04-16 18:57:31 -07001597 return err;
1598}
1599
Peng Xu47e96012016-03-28 17:55:56 -07001600void SensorService::cleanupConnection(SensorEventConnection* c) {
Brian Duddie967ce172019-06-10 11:08:27 -07001601 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
Mathias Agopiandb5b4bc2011-02-03 14:52:47 -08001602 const wp<SensorEventConnection> connection(c);
Mathias Agopian7c1c5312010-07-21 15:59:50 -07001603 size_t size = mActiveSensors.size();
Mark Salyzyndb458612014-06-10 14:50:02 -07001604 ALOGD_IF(DEBUG_CONNECTIONS, "%zu active sensors", size);
Mathias Agopian7c1c5312010-07-21 15:59:50 -07001605 for (size_t i=0 ; i<size ; ) {
Mathias Agopiandb5b4bc2011-02-03 14:52:47 -08001606 int handle = mActiveSensors.keyAt(i);
1607 if (c->hasSensor(handle)) {
Mark Salyzyndb458612014-06-10 14:50:02 -07001608 ALOGD_IF(DEBUG_CONNECTIONS, "%zu: disabling handle=0x%08x", i, handle);
Peng Xu755c4512016-04-07 23:15:14 -07001609 sp<SensorInterface> sensor = getSensorInterfaceFromHandle(handle);
1610 if (sensor != nullptr) {
Mathias Agopiandb5b4bc2011-02-03 14:52:47 -08001611 sensor->activate(c, false);
Peng Xu755c4512016-04-07 23:15:14 -07001612 } else {
1613 ALOGE("sensor interface of handle=0x%08x is null!", handle);
Mathias Agopianf001c922010-11-11 17:58:51 -08001614 }
Aravind Akella8a969552014-09-28 17:52:41 -07001615 c->removeSensor(handle);
Mathias Agopiandb5b4bc2011-02-03 14:52:47 -08001616 }
1617 SensorRecord* rec = mActiveSensors.valueAt(i);
Mark Salyzyndb458612014-06-10 14:50:02 -07001618 ALOGE_IF(!rec, "mActiveSensors[%zu] is null (handle=0x%08x)!", i, handle);
Steve Blocka5512372011-12-20 16:23:08 +00001619 ALOGD_IF(DEBUG_CONNECTIONS,
Mark Salyzyndb458612014-06-10 14:50:02 -07001620 "removing connection %p for sensor[%zu].handle=0x%08x",
Mathias Agopiana1b7db92011-05-27 16:23:58 -07001621 c, i, handle);
1622
Mathias Agopiandb5b4bc2011-02-03 14:52:47 -08001623 if (rec && rec->removeConnection(connection)) {
Steve Blocka5512372011-12-20 16:23:08 +00001624 ALOGD_IF(DEBUG_CONNECTIONS, "... and it was the last connection");
Mathias Agopian7c1c5312010-07-21 15:59:50 -07001625 mActiveSensors.removeItemsAt(i, 1);
Peng Xu755c4512016-04-07 23:15:14 -07001626 mActiveVirtualSensors.erase(handle);
Mathias Agopian7c1c5312010-07-21 15:59:50 -07001627 delete rec;
1628 size--;
1629 } else {
1630 i++;
Mathias Agopianfc328812010-07-14 23:41:37 -07001631 }
Mathias Agopianfc328812010-07-14 23:41:37 -07001632 }
Aravind Akella8a969552014-09-28 17:52:41 -07001633 c->updateLooperRegistration(mLooper);
Brian Duddie967ce172019-06-10 11:08:27 -07001634 mConnectionHolder.removeEventConnection(connection);
Mathias Agopian787ac1b2012-09-18 18:49:18 -07001635 BatteryService::cleanup(c->getUid());
Aravind Akella9a844cf2014-02-11 18:58:52 -08001636 if (c->needsWakeLock()) {
Brian Duddie967ce172019-06-10 11:08:27 -07001637 checkWakeLockStateLocked(&connLock);
Aravind Akella9a844cf2014-02-11 18:58:52 -08001638 }
Peng Xu4f707f82016-09-26 11:28:32 -07001639
Brian Stack793f4642019-04-18 17:21:34 -07001640 {
1641 Mutex::Autolock packageLock(sPackageTargetVersionLock);
1642 auto iter = sPackageTargetVersion.find(c->mOpPackageName);
1643 if (iter != sPackageTargetVersion.end()) {
1644 sPackageTargetVersion.erase(iter);
1645 }
1646 }
1647
Peng Xu4f707f82016-09-26 11:28:32 -07001648 SensorDevice& dev(SensorDevice::getInstance());
1649 dev.notifyConnectionDestroyed(c);
Mathias Agopianfc328812010-07-14 23:41:37 -07001650}
1651
Peng Xue36e3472016-11-03 11:57:10 -07001652void SensorService::cleanupConnection(SensorDirectConnection* c) {
1653 Mutex::Autolock _l(mLock);
1654
1655 SensorDevice& dev(SensorDevice::getInstance());
1656 dev.unregisterDirectChannel(c->getHalChannelHandle());
Brian Duddie967ce172019-06-10 11:08:27 -07001657 mConnectionHolder.removeDirectConnection(c);
Peng Xue36e3472016-11-03 11:57:10 -07001658}
1659
Chris Kuiperdf11ff22021-10-12 16:30:01 -07001660void SensorService::checkAndReportProxStateChangeLocked() {
1661 if (mProxSensorHandles.empty()) return;
Andrew Lehmer3a602572021-03-25 15:19:56 -07001662
Chris Kuiperdf11ff22021-10-12 16:30:01 -07001663 SensorDevice& dev(SensorDevice::getInstance());
1664 bool isActive = false;
1665 for (auto& sensor : mProxSensorHandles) {
1666 if (dev.isSensorActive(sensor)) {
1667 isActive = true;
1668 break;
1669 }
1670 }
1671 if (isActive != mLastReportedProxIsActive) {
1672 notifyProximityStateLocked(isActive, mProximityActiveListeners);
1673 mLastReportedProxIsActive = isActive;
Andrew Lehmer3a602572021-03-25 15:19:56 -07001674 }
1675}
1676
1677void SensorService::notifyProximityStateLocked(
Chris Kuiperdf11ff22021-10-12 16:30:01 -07001678 const bool isActive,
Santos Cordon7ea287a2021-06-14 13:45:29 +01001679 const std::vector<sp<ProximityActiveListener>>& listeners) {
Santos Cordon7ea287a2021-06-14 13:45:29 +01001680 const uint64_t mySeq = ++curProxCallbackSeq;
1681 std::thread t([isActive, mySeq, listenersCopy = listeners]() {
1682 while (completedCallbackSeq.load() != mySeq - 1)
1683 std::this_thread::sleep_for(1ms);
1684 for (auto& listener : listenersCopy)
1685 listener->onProximityActive(isActive);
1686 completedCallbackSeq++;
1687 });
1688 t.detach();
Andrew Lehmer3a602572021-03-25 15:19:56 -07001689}
1690
1691status_t SensorService::addProximityActiveListener(const sp<ProximityActiveListener>& callback) {
1692 if (callback == nullptr) {
1693 return BAD_VALUE;
1694 }
1695
1696 Mutex::Autolock _l(mLock);
1697
1698 // Check if the callback was already added.
1699 for (const auto& cb : mProximityActiveListeners) {
1700 if (cb == callback) {
1701 return ALREADY_EXISTS;
1702 }
1703 }
1704
1705 mProximityActiveListeners.push_back(callback);
1706 std::vector<sp<ProximityActiveListener>> listener(1, callback);
Chris Kuiperdf11ff22021-10-12 16:30:01 -07001707 notifyProximityStateLocked(mLastReportedProxIsActive, listener);
Andrew Lehmer3a602572021-03-25 15:19:56 -07001708 return OK;
1709}
1710
1711status_t SensorService::removeProximityActiveListener(
1712 const sp<ProximityActiveListener>& callback) {
1713 if (callback == nullptr) {
1714 return BAD_VALUE;
1715 }
1716
1717 Mutex::Autolock _l(mLock);
1718
1719 for (auto iter = mProximityActiveListeners.begin();
1720 iter != mProximityActiveListeners.end();
1721 ++iter) {
1722 if (*iter == callback) {
1723 mProximityActiveListeners.erase(iter);
1724 return OK;
1725 }
1726 }
1727 return NAME_NOT_FOUND;
1728}
1729
Peng Xu755c4512016-04-07 23:15:14 -07001730sp<SensorInterface> SensorService::getSensorInterfaceFromHandle(int handle) const {
Peng Xu0cc8f802016-04-05 23:46:03 -07001731 return mSensors.getInterface(handle);
Peng Xu47e96012016-03-28 17:55:56 -07001732}
1733
Mathias Agopianfc328812010-07-14 23:41:37 -07001734status_t SensorService::enable(const sp<SensorEventConnection>& connection,
Svetoslavb412f6e2015-04-29 16:50:41 -07001735 int handle, nsecs_t samplingPeriodNs, nsecs_t maxBatchReportLatencyNs, int reservedFlags,
Peng Xu47e96012016-03-28 17:55:56 -07001736 const String16& opPackageName) {
Mathias Agopian50df2952010-07-19 19:09:10 -07001737 if (mInitCheck != NO_ERROR)
1738 return mInitCheck;
1739
Peng Xu755c4512016-04-07 23:15:14 -07001740 sp<SensorInterface> sensor = getSensorInterfaceFromHandle(handle);
1741 if (sensor == nullptr ||
1742 !canAccessSensor(sensor->getSensor(), "Tried enabling", opPackageName)) {
Aravind Akella70018042014-04-07 22:52:37 +00001743 return BAD_VALUE;
1744 }
1745
Brian Duddie967ce172019-06-10 11:08:27 -07001746 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
Peng Xue36e3472016-11-03 11:57:10 -07001747 if (mCurrentOperatingMode != NORMAL
Aravind Akella841a5922015-06-29 12:37:48 -07001748 && !isWhiteListedPackage(connection->getPackageName())) {
Aravind Akella4949c502015-02-11 15:54:35 -08001749 return INVALID_OPERATION;
1750 }
1751
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001752 SensorRecord* rec = mActiveSensors.valueFor(handle);
Yi Kong8f313e32018-07-17 14:13:29 -07001753 if (rec == nullptr) {
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001754 rec = new SensorRecord(connection);
1755 mActiveSensors.add(handle, rec);
1756 if (sensor->isVirtual()) {
Peng Xu755c4512016-04-07 23:15:14 -07001757 mActiveVirtualSensors.emplace(handle);
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001758 }
Brian Stack26029ee2019-04-22 17:25:49 -07001759
1760 // There was no SensorRecord for this sensor which means it was previously disabled. Mark
1761 // the recent event as stale to ensure that the previous event is not sent to a client. This
1762 // ensures on-change events that were generated during a previous sensor activation are not
1763 // erroneously sent to newly connected clients, especially if a second client registers for
1764 // an on-change sensor before the first client receives the updated event. Once an updated
1765 // event is received, the recent events will be marked as current, and any new clients will
1766 // immediately receive the most recent event.
1767 if (sensor->getSensor().getReportingMode() == AREPORTING_MODE_ON_CHANGE) {
1768 auto logger = mRecentEvent.find(handle);
1769 if (logger != mRecentEvent.end()) {
1770 logger->second->setLastEventStale();
1771 }
1772 }
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001773 } else {
1774 if (rec->addConnection(connection)) {
Aravind Akella9a844cf2014-02-11 18:58:52 -08001775 // this sensor is already activated, but we are adding a connection that uses it.
1776 // Immediately send down the last known value of the requested sensor if it's not a
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001777 // "continuous" sensor.
Aravind Akella0e025c52014-06-03 19:19:57 -07001778 if (sensor->getSensor().getReportingMode() == AREPORTING_MODE_ON_CHANGE) {
Aravind Akella9a844cf2014-02-11 18:58:52 -08001779 // NOTE: The wake_up flag of this event may get set to
1780 // WAKE_UP_SENSOR_EVENT_NEEDS_ACK if this is a wake_up event.
Peng Xu6a2d3a02015-12-21 12:00:23 -08001781
1782 auto logger = mRecentEvent.find(handle);
1783 if (logger != mRecentEvent.end()) {
Aravind Akella444f2672015-05-07 12:40:52 -07001784 sensors_event_t event;
Brian Stack0b858c12018-10-19 10:53:25 -07001785 // Verify that the last sensor event was generated from the current activation
1786 // of the sensor. If not, it is possible for an on-change sensor to receive a
1787 // sensor event that is stale if two clients re-activate the sensor
1788 // simultaneously.
1789 if(logger->second->populateLastEventIfCurrent(&event)) {
Aravind Akella444f2672015-05-07 12:40:52 -07001790 event.sensor = handle;
1791 if (event.version == sizeof(sensors_event_t)) {
1792 if (isWakeUpSensorEvent(event) && !mWakeLockAcquired) {
1793 setWakeLockAcquiredLocked(true);
1794 }
Yi Kong8f313e32018-07-17 14:13:29 -07001795 connection->sendEvents(&event, 1, nullptr);
Aravind Akella444f2672015-05-07 12:40:52 -07001796 if (!connection->needsWakeLock() && mWakeLockAcquired) {
Brian Duddie967ce172019-06-10 11:08:27 -07001797 checkWakeLockStateLocked(&connLock);
Aravind Akella444f2672015-05-07 12:40:52 -07001798 }
1799 }
Aravind Akella9a844cf2014-02-11 18:58:52 -08001800 }
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001801 }
1802 }
1803 }
1804 }
1805
Arthur Ishiguro062b27b2020-04-13 08:04:49 -07001806 if (connection->addSensor(handle)) {
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001807 BatteryService::enableSensor(connection->getUid(), handle);
1808 // the sensor was added (which means it wasn't already there)
1809 // so, see if this connection becomes active
Brian Duddie967ce172019-06-10 11:08:27 -07001810 mConnectionHolder.addEventConnectionIfNotPresent(connection);
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001811 } else {
1812 ALOGW("sensor %08x already enabled in connection %p (ignoring)",
1813 handle, connection.get());
1814 }
1815
Aniroop Mathurd8a5ce32016-06-01 22:17:05 +05301816 // Check maximum delay for the sensor.
Jim Kaye663720b2017-05-08 09:07:27 -07001817 nsecs_t maxDelayNs = sensor->getSensor().getMaxDelay() * 1000LL;
Aniroop Mathurd8a5ce32016-06-01 22:17:05 +05301818 if (maxDelayNs > 0 && (samplingPeriodNs > maxDelayNs)) {
1819 samplingPeriodNs = maxDelayNs;
1820 }
1821
Aravind Akella724d91d2013-06-27 12:04:23 -07001822 nsecs_t minDelayNs = sensor->getSensor().getMinDelayNs();
1823 if (samplingPeriodNs < minDelayNs) {
1824 samplingPeriodNs = minDelayNs;
1825 }
1826
Aravind Akella6c2664a2014-08-13 12:24:50 -07001827 ALOGD_IF(DEBUG_CONNECTIONS, "Calling batch handle==%d flags=%d"
1828 "rate=%" PRId64 " timeout== %" PRId64"",
Aravind Akella724d91d2013-06-27 12:04:23 -07001829 handle, reservedFlags, samplingPeriodNs, maxBatchReportLatencyNs);
1830
Aravind Akella4949c502015-02-11 15:54:35 -08001831 status_t err = sensor->batch(connection.get(), handle, 0, samplingPeriodNs,
Aravind Akella724d91d2013-06-27 12:04:23 -07001832 maxBatchReportLatencyNs);
Aravind Akella6c2664a2014-08-13 12:24:50 -07001833
Peng Xu20483c42015-10-26 15:14:43 -07001834 // Call flush() before calling activate() on the sensor. Wait for a first
1835 // flush complete event before sending events on this connection. Ignore
1836 // one-shot sensors which don't support flush(). Ignore on-change sensors
1837 // to maintain the on-change logic (any on-change events except the initial
1838 // one should be trigger by a change in value). Also if this sensor isn't
1839 // already active, don't call flush().
1840 if (err == NO_ERROR &&
Peng Xu2576cb62016-01-20 00:22:09 -08001841 sensor->getSensor().getReportingMode() == AREPORTING_MODE_CONTINUOUS &&
Aravind Akella5466c3d2014-08-22 16:11:10 -07001842 rec->getNumConnections() > 1) {
1843 connection->setFirstFlushPending(handle, true);
Aravind Akella4c8b9512013-09-05 17:03:38 -07001844 status_t err_flush = sensor->flush(connection.get(), handle);
Aravind Akella5466c3d2014-08-22 16:11:10 -07001845 // Flush may return error if the underlying h/w sensor uses an older HAL.
Aravind Akella6c2664a2014-08-13 12:24:50 -07001846 if (err_flush == NO_ERROR) {
Aravind Akella6c2664a2014-08-13 12:24:50 -07001847 rec->addPendingFlushConnection(connection.get());
Aravind Akella5466c3d2014-08-22 16:11:10 -07001848 } else {
1849 connection->setFirstFlushPending(handle, false);
Aravind Akella4c8b9512013-09-05 17:03:38 -07001850 }
1851 }
Aravind Akella724d91d2013-06-27 12:04:23 -07001852
1853 if (err == NO_ERROR) {
1854 ALOGD_IF(DEBUG_CONNECTIONS, "Calling activate on %d", handle);
1855 err = sensor->activate(connection.get(), true);
1856 }
1857
Aravind Akella8a969552014-09-28 17:52:41 -07001858 if (err == NO_ERROR) {
1859 connection->updateLooperRegistration(mLooper);
Peng Xu51224682017-03-10 16:57:27 -08001860
Brian Stack240d1d62019-05-17 09:49:39 -07001861 if (sensor->getSensor().getRequiredPermission().size() > 0 &&
1862 sensor->getSensor().getRequiredAppOp() >= 0) {
Brian Stackc225aa12019-04-19 09:30:25 -07001863 connection->mHandleToAppOp[handle] = sensor->getSensor().getRequiredAppOp();
1864 }
1865
Peng Xu51224682017-03-10 16:57:27 -08001866 mLastNSensorRegistrations.editItemAt(mNextSensorRegIndex) =
1867 SensorRegistrationInfo(handle, connection->getPackageName(),
1868 samplingPeriodNs, maxBatchReportLatencyNs, true);
Aravind Akella18d6d512015-06-18 14:18:28 -07001869 mNextSensorRegIndex = (mNextSensorRegIndex + 1) % SENSOR_REGISTRATIONS_BUF_SIZE;
Aravind Akella56ae4262014-07-10 16:01:10 -07001870 }
1871
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001872 if (err != NO_ERROR) {
Aravind Akella724d91d2013-06-27 12:04:23 -07001873 // batch/activate has failed, reset our state.
Mathias Agopianac9a96d2013-07-12 02:01:16 -07001874 cleanupWithoutDisableLocked(connection, handle);
Mathias Agopianfc328812010-07-14 23:41:37 -07001875 }
1876 return err;
1877}
1878
Peng Xu47e96012016-03-28 17:55:56 -07001879status_t SensorService::disable(const sp<SensorEventConnection>& connection, int handle) {
Mathias Agopian50df2952010-07-19 19:09:10 -07001880 if (mInitCheck != NO_ERROR)
1881 return mInitCheck;
1882
Mathias Agopianac9a96d2013-07-12 02:01:16 -07001883 Mutex::Autolock _l(mLock);
1884 status_t err = cleanupWithoutDisableLocked(connection, handle);
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001885 if (err == NO_ERROR) {
Peng Xu755c4512016-04-07 23:15:14 -07001886 sp<SensorInterface> sensor = getSensorInterfaceFromHandle(handle);
1887 err = sensor != nullptr ? sensor->activate(connection.get(), false) : status_t(BAD_VALUE);
Aravind Akella18d6d512015-06-18 14:18:28 -07001888
1889 }
1890 if (err == NO_ERROR) {
Peng Xu51224682017-03-10 16:57:27 -08001891 mLastNSensorRegistrations.editItemAt(mNextSensorRegIndex) =
1892 SensorRegistrationInfo(handle, connection->getPackageName(), 0, 0, false);
Aravind Akella18d6d512015-06-18 14:18:28 -07001893 mNextSensorRegIndex = (mNextSensorRegIndex + 1) % SENSOR_REGISTRATIONS_BUF_SIZE;
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001894 }
1895 return err;
1896}
1897
Mathias Agopianac9a96d2013-07-12 02:01:16 -07001898status_t SensorService::cleanupWithoutDisable(
1899 const sp<SensorEventConnection>& connection, int handle) {
Mathias Agopianfc328812010-07-14 23:41:37 -07001900 Mutex::Autolock _l(mLock);
Mathias Agopianac9a96d2013-07-12 02:01:16 -07001901 return cleanupWithoutDisableLocked(connection, handle);
1902}
1903
1904status_t SensorService::cleanupWithoutDisableLocked(
1905 const sp<SensorEventConnection>& connection, int handle) {
Mathias Agopianfc328812010-07-14 23:41:37 -07001906 SensorRecord* rec = mActiveSensors.valueFor(handle);
Mathias Agopianfc328812010-07-14 23:41:37 -07001907 if (rec) {
1908 // see if this connection becomes inactive
Mathias Agopian787ac1b2012-09-18 18:49:18 -07001909 if (connection->removeSensor(handle)) {
1910 BatteryService::disableSensor(connection->getUid(), handle);
1911 }
Mathias Agopianfc328812010-07-14 23:41:37 -07001912 if (connection->hasAnySensor() == false) {
Aravind Akella8a969552014-09-28 17:52:41 -07001913 connection->updateLooperRegistration(mLooper);
Brian Duddie967ce172019-06-10 11:08:27 -07001914 mConnectionHolder.removeEventConnection(connection);
Mathias Agopianfc328812010-07-14 23:41:37 -07001915 }
1916 // see if this sensor becomes inactive
1917 if (rec->removeConnection(connection)) {
1918 mActiveSensors.removeItem(handle);
Peng Xu755c4512016-04-07 23:15:14 -07001919 mActiveVirtualSensors.erase(handle);
Mathias Agopianfc328812010-07-14 23:41:37 -07001920 delete rec;
Mathias Agopianfc328812010-07-14 23:41:37 -07001921 }
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001922 return NO_ERROR;
Mathias Agopian7c1c5312010-07-21 15:59:50 -07001923 }
Jaikumar Ganesh4342fdf2013-04-08 16:43:12 -07001924 return BAD_VALUE;
Mathias Agopianfc328812010-07-14 23:41:37 -07001925}
1926
Mathias Agopian7c1c5312010-07-21 15:59:50 -07001927status_t SensorService::setEventRate(const sp<SensorEventConnection>& connection,
Peng Xu47e96012016-03-28 17:55:56 -07001928 int handle, nsecs_t ns, const String16& opPackageName) {
Mathias Agopian50df2952010-07-19 19:09:10 -07001929 if (mInitCheck != NO_ERROR)
1930 return mInitCheck;
1931
Peng Xu755c4512016-04-07 23:15:14 -07001932 sp<SensorInterface> sensor = getSensorInterfaceFromHandle(handle);
1933 if (sensor == nullptr ||
1934 !canAccessSensor(sensor->getSensor(), "Tried configuring", opPackageName)) {
Aravind Akella70018042014-04-07 22:52:37 +00001935 return BAD_VALUE;
1936 }
1937
Mathias Agopian1cd70002010-07-21 15:59:50 -07001938 if (ns < 0)
1939 return BAD_VALUE;
1940
Mathias Agopian62569ec2011-11-07 21:21:47 -08001941 nsecs_t minDelayNs = sensor->getSensor().getMinDelayNs();
1942 if (ns < minDelayNs) {
1943 ns = minDelayNs;
Mathias Agopianae09d652011-11-01 17:37:49 -07001944 }
1945
Mathias Agopianf001c922010-11-11 17:58:51 -08001946 return sensor->setDelay(connection.get(), handle, ns);
Mathias Agopianfc328812010-07-14 23:41:37 -07001947}
1948
Svetoslavb412f6e2015-04-29 16:50:41 -07001949status_t SensorService::flushSensor(const sp<SensorEventConnection>& connection,
1950 const String16& opPackageName) {
Aravind Akella70018042014-04-07 22:52:37 +00001951 if (mInitCheck != NO_ERROR) return mInitCheck;
Aravind Akella9e3adfc2014-09-03 15:48:05 -07001952 SensorDevice& dev(SensorDevice::getInstance());
1953 const int halVersion = dev.getHalDeviceVersion();
1954 status_t err(NO_ERROR);
1955 Mutex::Autolock _l(mLock);
1956 // Loop through all sensors for this connection and call flush on each of them.
Arthur Ishiguroad46c782020-03-26 11:24:43 -07001957 for (int handle : connection->getActiveSensorHandles()) {
Peng Xu755c4512016-04-07 23:15:14 -07001958 sp<SensorInterface> sensor = getSensorInterfaceFromHandle(handle);
1959 if (sensor == nullptr) {
1960 continue;
1961 }
Aravind Akella9e3adfc2014-09-03 15:48:05 -07001962 if (sensor->getSensor().getReportingMode() == AREPORTING_MODE_ONE_SHOT) {
1963 ALOGE("flush called on a one-shot sensor");
1964 err = INVALID_OPERATION;
1965 continue;
1966 }
Aravind Akella8493b792014-09-08 15:45:47 -07001967 if (halVersion <= SENSORS_DEVICE_API_VERSION_1_0 || isVirtualSensor(handle)) {
Aravind Akella9e3adfc2014-09-03 15:48:05 -07001968 // For older devices just increment pending flush count which will send a trivial
1969 // flush complete event.
Stan Rokita29adc8c2020-07-06 17:38:03 -07001970 if (!connection->incrementPendingFlushCountIfHasAccess(handle)) {
1971 ALOGE("flush called on an inaccessible sensor");
1972 err = INVALID_OPERATION;
1973 }
Aravind Akella9e3adfc2014-09-03 15:48:05 -07001974 } else {
Svetoslavb412f6e2015-04-29 16:50:41 -07001975 if (!canAccessSensor(sensor->getSensor(), "Tried flushing", opPackageName)) {
1976 err = INVALID_OPERATION;
1977 continue;
1978 }
Aravind Akella9e3adfc2014-09-03 15:48:05 -07001979 status_t err_flush = sensor->flush(connection.get(), handle);
1980 if (err_flush == NO_ERROR) {
1981 SensorRecord* rec = mActiveSensors.valueFor(handle);
Yi Kong8f313e32018-07-17 14:13:29 -07001982 if (rec != nullptr) rec->addPendingFlushConnection(connection);
Aravind Akella9e3adfc2014-09-03 15:48:05 -07001983 }
1984 err = (err_flush != NO_ERROR) ? err_flush : err;
1985 }
Aravind Akella70018042014-04-07 22:52:37 +00001986 }
Arthur Ishigurofb64fca2020-04-14 11:28:11 -07001987 return err;
Aravind Akella724d91d2013-06-27 12:04:23 -07001988}
Aravind Akella70018042014-04-07 22:52:37 +00001989
Svetoslavb412f6e2015-04-29 16:50:41 -07001990bool SensorService::canAccessSensor(const Sensor& sensor, const char* operation,
1991 const String16& opPackageName) {
Brian Stack793f4642019-04-18 17:21:34 -07001992 // Check if a permission is required for this sensor
1993 if (sensor.getRequiredPermission().length() <= 0) {
Aravind Akella70018042014-04-07 22:52:37 +00001994 return true;
Svetoslavb412f6e2015-04-29 16:50:41 -07001995 }
1996
Brian Stack793f4642019-04-18 17:21:34 -07001997 const int32_t opCode = sensor.getRequiredAppOp();
Brian Duddie457e6392020-06-19 11:38:29 -07001998 int targetSdkVersion = getTargetSdkVersion(opPackageName);
Brian Stack793f4642019-04-18 17:21:34 -07001999
Brian Stack793f4642019-04-18 17:21:34 -07002000 bool canAccess = false;
Brian Duddie457e6392020-06-19 11:38:29 -07002001 if (targetSdkVersion > 0 && targetSdkVersion <= __ANDROID_API_P__ &&
2002 (sensor.getType() == SENSOR_TYPE_STEP_COUNTER ||
2003 sensor.getType() == SENSOR_TYPE_STEP_DETECTOR)) {
2004 // Allow access to step sensors if the application targets pre-Q, which is before the
2005 // requirement to hold the AR permission to access Step Counter and Step Detector events
2006 // was introduced.
2007 canAccess = true;
2008 } else if (hasPermissionForSensor(sensor)) {
Brian Stack6a700f92019-05-08 17:02:53 -07002009 // Ensure that the AppOp is allowed, or that there is no necessary app op for the sensor
Arthur Ishiguro883748c2020-10-28 13:18:02 -07002010 if (opCode >= 0) {
2011 const int32_t appOpMode = sAppOpsManager.checkOp(opCode,
2012 IPCThreadState::self()->getCallingUid(), opPackageName);
2013 canAccess = (appOpMode == AppOpsManager::MODE_ALLOWED);
2014 } else {
Brian Stack793f4642019-04-18 17:21:34 -07002015 canAccess = true;
Brian Stack6a700f92019-05-08 17:02:53 -07002016 }
Brian Stack793f4642019-04-18 17:21:34 -07002017 }
2018
Arthur Ishiguro883748c2020-10-28 13:18:02 -07002019 if (!canAccess) {
Brian Duddie457e6392020-06-19 11:38:29 -07002020 ALOGE("%s %s a sensor (%s) without holding %s", String8(opPackageName).string(),
2021 operation, sensor.getName().string(), sensor.getRequiredPermission().string());
Brian Stack793f4642019-04-18 17:21:34 -07002022 }
2023
2024 return canAccess;
2025}
2026
2027bool SensorService::hasPermissionForSensor(const Sensor& sensor) {
Svetoslavb412f6e2015-04-29 16:50:41 -07002028 bool hasPermission = false;
Brian Stack793f4642019-04-18 17:21:34 -07002029 const String8& requiredPermission = sensor.getRequiredPermission();
Svetoslavb412f6e2015-04-29 16:50:41 -07002030
2031 // Runtime permissions can't use the cache as they may change.
2032 if (sensor.isRequiredPermissionRuntime()) {
2033 hasPermission = checkPermission(String16(requiredPermission),
2034 IPCThreadState::self()->getCallingPid(), IPCThreadState::self()->getCallingUid());
Aravind Akella70018042014-04-07 22:52:37 +00002035 } else {
Svetoslavb412f6e2015-04-29 16:50:41 -07002036 hasPermission = PermissionCache::checkCallingPermission(String16(requiredPermission));
2037 }
Brian Stack793f4642019-04-18 17:21:34 -07002038 return hasPermission;
2039}
Svetoslavb412f6e2015-04-29 16:50:41 -07002040
Brian Stack793f4642019-04-18 17:21:34 -07002041int SensorService::getTargetSdkVersion(const String16& opPackageName) {
Anthony Stange07eb4212020-08-28 14:50:28 -04002042 // Don't query the SDK version for the ISensorManager descriptor as it doesn't have one. This
2043 // descriptor tends to be used for VNDK clients, but can technically be set by anyone so don't
2044 // give it elevated privileges.
2045 if (opPackageName.startsWith(sSensorInterfaceDescriptorPrefix)) {
2046 return -1;
2047 }
2048
Brian Stack793f4642019-04-18 17:21:34 -07002049 Mutex::Autolock packageLock(sPackageTargetVersionLock);
2050 int targetSdkVersion = -1;
2051 auto entry = sPackageTargetVersion.find(opPackageName);
2052 if (entry != sPackageTargetVersion.end()) {
2053 targetSdkVersion = entry->second;
2054 } else {
2055 sp<IBinder> binder = defaultServiceManager()->getService(String16("package_native"));
2056 if (binder != nullptr) {
2057 sp<content::pm::IPackageManagerNative> packageManager =
2058 interface_cast<content::pm::IPackageManagerNative>(binder);
2059 if (packageManager != nullptr) {
2060 binder::Status status = packageManager->getTargetSdkVersionForPackage(
2061 opPackageName, &targetSdkVersion);
2062 if (!status.isOk()) {
2063 targetSdkVersion = -1;
2064 }
2065 }
Svetoslavb412f6e2015-04-29 16:50:41 -07002066 }
Brian Stack793f4642019-04-18 17:21:34 -07002067 sPackageTargetVersion[opPackageName] = targetSdkVersion;
Svetoslavb412f6e2015-04-29 16:50:41 -07002068 }
Brian Stack793f4642019-04-18 17:21:34 -07002069 return targetSdkVersion;
Aravind Akella70018042014-04-07 22:52:37 +00002070}
2071
Aravind Akella9a844cf2014-02-11 18:58:52 -08002072void SensorService::checkWakeLockState() {
Brian Duddie967ce172019-06-10 11:08:27 -07002073 ConnectionSafeAutolock connLock = mConnectionHolder.lock(mLock);
2074 checkWakeLockStateLocked(&connLock);
Aravind Akella9a844cf2014-02-11 18:58:52 -08002075}
2076
Brian Duddie967ce172019-06-10 11:08:27 -07002077void SensorService::checkWakeLockStateLocked(ConnectionSafeAutolock* connLock) {
Aravind Akella9a844cf2014-02-11 18:58:52 -08002078 if (!mWakeLockAcquired) {
2079 return;
2080 }
2081 bool releaseLock = true;
Brian Duddie967ce172019-06-10 11:08:27 -07002082 for (const sp<SensorEventConnection>& connection : connLock->getActiveConnections()) {
2083 if (connection->needsWakeLock()) {
2084 releaseLock = false;
2085 break;
Aravind Akella9a844cf2014-02-11 18:58:52 -08002086 }
2087 }
2088 if (releaseLock) {
Aravind Akellab4373ac2014-10-29 17:55:20 -07002089 setWakeLockAcquiredLocked(false);
2090 }
2091}
2092
2093void SensorService::sendEventsFromCache(const sp<SensorEventConnection>& connection) {
2094 Mutex::Autolock _l(mLock);
2095 connection->writeToSocketFromCache();
2096 if (connection->needsWakeLock()) {
2097 setWakeLockAcquiredLocked(true);
2098 }
2099}
2100
Aravind Akella4949c502015-02-11 15:54:35 -08002101bool SensorService::isWhiteListedPackage(const String8& packageName) {
Aravind Akella841a5922015-06-29 12:37:48 -07002102 return (packageName.contains(mWhiteListedPackage.string()));
Aravind Akella4949c502015-02-11 15:54:35 -08002103}
2104
Arthur Ishiguroe3ed3d22020-04-13 10:29:44 -07002105bool SensorService::isOperationRestrictedLocked(const String16& opPackageName) {
Brian Stack5180e462019-03-08 17:15:19 -08002106 if (mCurrentOperatingMode == RESTRICTED) {
Peng Xue36e3472016-11-03 11:57:10 -07002107 String8 package(opPackageName);
Arthur Ishiguroe3ed3d22020-04-13 10:29:44 -07002108 return !isWhiteListedPackage(package);
Peng Xue36e3472016-11-03 11:57:10 -07002109 }
Arthur Ishiguroe3ed3d22020-04-13 10:29:44 -07002110 return false;
Peng Xue36e3472016-11-03 11:57:10 -07002111}
2112
Svet Ganove752a5c2018-01-15 17:14:20 -08002113void SensorService::UidPolicy::registerSelf() {
2114 ActivityManager am;
2115 am.registerUidObserver(this, ActivityManager::UID_OBSERVER_GONE
2116 | ActivityManager::UID_OBSERVER_IDLE
2117 | ActivityManager::UID_OBSERVER_ACTIVE,
2118 ActivityManager::PROCESS_STATE_UNKNOWN,
2119 String16("android"));
2120}
2121
2122void SensorService::UidPolicy::unregisterSelf() {
2123 ActivityManager am;
2124 am.unregisterUidObserver(this);
2125}
2126
2127void SensorService::UidPolicy::onUidGone(__unused uid_t uid, __unused bool disabled) {
2128 onUidIdle(uid, disabled);
2129}
2130
2131void SensorService::UidPolicy::onUidActive(uid_t uid) {
2132 {
2133 Mutex::Autolock _l(mUidLock);
2134 mActiveUids.insert(uid);
2135 }
2136 sp<SensorService> service = mService.promote();
2137 if (service != nullptr) {
Arthur Ishiguro539c27c2020-04-13 09:47:59 -07002138 service->onUidStateChanged(uid, UID_STATE_ACTIVE);
Svet Ganove752a5c2018-01-15 17:14:20 -08002139 }
2140}
2141
2142void SensorService::UidPolicy::onUidIdle(uid_t uid, __unused bool disabled) {
2143 bool deleted = false;
2144 {
2145 Mutex::Autolock _l(mUidLock);
2146 if (mActiveUids.erase(uid) > 0) {
2147 deleted = true;
2148 }
2149 }
2150 if (deleted) {
2151 sp<SensorService> service = mService.promote();
2152 if (service != nullptr) {
Arthur Ishiguro539c27c2020-04-13 09:47:59 -07002153 service->onUidStateChanged(uid, UID_STATE_IDLE);
Svet Ganove752a5c2018-01-15 17:14:20 -08002154 }
2155 }
2156}
2157
2158void SensorService::UidPolicy::addOverrideUid(uid_t uid, bool active) {
2159 updateOverrideUid(uid, active, true);
2160}
2161
2162void SensorService::UidPolicy::removeOverrideUid(uid_t uid) {
2163 updateOverrideUid(uid, false, false);
2164}
2165
2166void SensorService::UidPolicy::updateOverrideUid(uid_t uid, bool active, bool insert) {
2167 bool wasActive = false;
2168 bool isActive = false;
2169 {
2170 Mutex::Autolock _l(mUidLock);
2171 wasActive = isUidActiveLocked(uid);
2172 mOverrideUids.erase(uid);
2173 if (insert) {
2174 mOverrideUids.insert(std::pair<uid_t, bool>(uid, active));
2175 }
2176 isActive = isUidActiveLocked(uid);
2177 }
2178 if (wasActive != isActive) {
2179 sp<SensorService> service = mService.promote();
2180 if (service != nullptr) {
Arthur Ishiguro539c27c2020-04-13 09:47:59 -07002181 service->onUidStateChanged(uid, isActive ? UID_STATE_ACTIVE : UID_STATE_IDLE);
Svet Ganove752a5c2018-01-15 17:14:20 -08002182 }
2183 }
2184}
2185
2186bool SensorService::UidPolicy::isUidActive(uid_t uid) {
2187 // Non-app UIDs are considered always active
2188 if (uid < FIRST_APPLICATION_UID) {
2189 return true;
2190 }
2191 Mutex::Autolock _l(mUidLock);
2192 return isUidActiveLocked(uid);
2193}
2194
2195bool SensorService::UidPolicy::isUidActiveLocked(uid_t uid) {
2196 // Non-app UIDs are considered always active
2197 if (uid < FIRST_APPLICATION_UID) {
2198 return true;
2199 }
2200 auto it = mOverrideUids.find(uid);
2201 if (it != mOverrideUids.end()) {
2202 return it->second;
2203 }
2204 return mActiveUids.find(uid) != mActiveUids.end();
2205}
2206
Arthur Ishiguro539c27c2020-04-13 09:47:59 -07002207bool SensorService::isUidActive(uid_t uid) {
2208 return mUidPolicy->isUidActive(uid);
2209}
2210
Anh Phamaf91a912021-02-10 14:10:53 +01002211bool SensorService::isRateCappedBasedOnPermission(const String16& opPackageName) {
2212 int targetSdk = getTargetSdkVersion(opPackageName);
Anh Phama5538232021-06-23 08:41:11 +02002213 bool hasSamplingRatePermission = checkPermission(sAccessHighSensorSamplingRatePermission,
2214 IPCThreadState::self()->getCallingPid(),
2215 IPCThreadState::self()->getCallingUid());
Anh Phamaf91a912021-02-10 14:10:53 +01002216 if (targetSdk < __ANDROID_API_S__ ||
2217 (targetSdk >= __ANDROID_API_S__ && hasSamplingRatePermission)) {
2218 return false;
2219 }
2220 return true;
2221}
2222
Anh Pham3dae77f2021-06-11 16:24:37 +02002223/**
2224 * Checks if a sensor should be capped according to HIGH_SAMPLING_RATE_SENSORS
2225 * permission.
2226 *
2227 * This needs to be kept in sync with the list defined on the Java side
2228 * in frameworks/base/core/java/android/hardware/SystemSensorManager.java
2229 */
Anh Phamaf91a912021-02-10 14:10:53 +01002230bool SensorService::isSensorInCappedSet(int sensorType) {
2231 return (sensorType == SENSOR_TYPE_ACCELEROMETER
2232 || sensorType == SENSOR_TYPE_ACCELEROMETER_UNCALIBRATED
2233 || sensorType == SENSOR_TYPE_GYROSCOPE
2234 || sensorType == SENSOR_TYPE_GYROSCOPE_UNCALIBRATED
2235 || sensorType == SENSOR_TYPE_MAGNETIC_FIELD
2236 || sensorType == SENSOR_TYPE_MAGNETIC_FIELD_UNCALIBRATED);
2237}
2238
2239status_t SensorService::adjustSamplingPeriodBasedOnMicAndPermission(nsecs_t* requestedPeriodNs,
2240 const String16& opPackageName) {
Anh Pham5198c992021-02-10 14:15:30 +01002241 uid_t uid = IPCThreadState::self()->getCallingUid();
Anh Phamaf91a912021-02-10 14:10:53 +01002242 if (*requestedPeriodNs >= SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS) {
2243 return OK;
2244 }
Arthur Ishiguro8a628522021-09-22 14:10:16 -07002245 bool shouldCapBasedOnPermission = isRateCappedBasedOnPermission(opPackageName);
Anh Phamaf91a912021-02-10 14:10:53 +01002246 if (shouldCapBasedOnPermission) {
2247 *requestedPeriodNs = SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS;
2248 if (isPackageDebuggable(opPackageName)) {
2249 return PERMISSION_DENIED;
2250 }
2251 return OK;
2252 }
Anh Pham5198c992021-02-10 14:15:30 +01002253 if (isMicSensorPrivacyEnabledForUid(uid)) {
2254 *requestedPeriodNs = SENSOR_SERVICE_CAPPED_SAMPLING_PERIOD_NS;
2255 return OK;
2256 }
Anh Phamaf91a912021-02-10 14:10:53 +01002257 return OK;
2258}
2259
2260status_t SensorService::adjustRateLevelBasedOnMicAndPermission(int* requestedRateLevel,
2261 const String16& opPackageName) {
2262 uid_t uid = IPCThreadState::self()->getCallingUid();
Anh Phamaf91a912021-02-10 14:10:53 +01002263 if (*requestedRateLevel <= SENSOR_SERVICE_CAPPED_SAMPLING_RATE_LEVEL) {
2264 return OK;
2265 }
Arthur Ishiguro8a628522021-09-22 14:10:16 -07002266 bool shouldCapBasedOnPermission = isRateCappedBasedOnPermission(opPackageName);
Anh Phamaf91a912021-02-10 14:10:53 +01002267 if (shouldCapBasedOnPermission) {
2268 *requestedRateLevel = SENSOR_SERVICE_CAPPED_SAMPLING_RATE_LEVEL;
2269 if (isPackageDebuggable(opPackageName)) {
2270 return PERMISSION_DENIED;
2271 }
2272 return OK;
2273 }
Anh Pham5198c992021-02-10 14:15:30 +01002274 if (isMicSensorPrivacyEnabledForUid(uid)) {
2275 *requestedRateLevel = SENSOR_SERVICE_CAPPED_SAMPLING_RATE_LEVEL;
2276 return OK;
2277 }
Anh Phamaf91a912021-02-10 14:10:53 +01002278 return OK;
2279}
2280
Michael Groover5e1f60b2018-12-04 22:34:29 -08002281void SensorService::SensorPrivacyPolicy::registerSelf() {
Anh Phamb04658b2021-03-22 18:17:17 +01002282 AutoCallerClear acc;
Michael Groover5e1f60b2018-12-04 22:34:29 -08002283 SensorPrivacyManager spm;
2284 mSensorPrivacyEnabled = spm.isSensorPrivacyEnabled();
2285 spm.addSensorPrivacyListener(this);
2286}
2287
2288void SensorService::SensorPrivacyPolicy::unregisterSelf() {
Anh Phamb04658b2021-03-22 18:17:17 +01002289 AutoCallerClear acc;
Michael Groover5e1f60b2018-12-04 22:34:29 -08002290 SensorPrivacyManager spm;
Evan Severson7bfa35e2021-05-19 16:10:29 -07002291 if (mIsIndividualMic) {
2292 spm.removeIndividualSensorPrivacyListener(
2293 SensorPrivacyManager::INDIVIDUAL_SENSOR_MICROPHONE, this);
2294 } else {
2295 spm.removeSensorPrivacyListener(this);
2296 }
Michael Groover5e1f60b2018-12-04 22:34:29 -08002297}
2298
2299bool SensorService::SensorPrivacyPolicy::isSensorPrivacyEnabled() {
2300 return mSensorPrivacyEnabled;
2301}
2302
2303binder::Status SensorService::SensorPrivacyPolicy::onSensorPrivacyChanged(bool enabled) {
2304 mSensorPrivacyEnabled = enabled;
2305 sp<SensorService> service = mService.promote();
Anh Pham5198c992021-02-10 14:15:30 +01002306
Michael Groover5e1f60b2018-12-04 22:34:29 -08002307 if (service != nullptr) {
Anh Pham5198c992021-02-10 14:15:30 +01002308 if (mIsIndividualMic) {
2309 if (enabled) {
2310 service->capRates(mUserId);
2311 } else {
2312 service->uncapRates(mUserId);
2313 }
Michael Groover5e1f60b2018-12-04 22:34:29 -08002314 } else {
Anh Pham5198c992021-02-10 14:15:30 +01002315 if (enabled) {
2316 service->disableAllSensors();
2317 } else {
2318 service->enableAllSensors();
2319 }
Michael Groover5e1f60b2018-12-04 22:34:29 -08002320 }
2321 }
2322 return binder::Status::ok();
2323}
Brian Duddie967ce172019-06-10 11:08:27 -07002324
Anh Pham5198c992021-02-10 14:15:30 +01002325status_t SensorService::SensorPrivacyPolicy::registerSelfForIndividual(int userId) {
2326 Mutex::Autolock _l(mSensorPrivacyLock);
Anh Phamb04658b2021-03-22 18:17:17 +01002327 AutoCallerClear acc;
Anh Pham5198c992021-02-10 14:15:30 +01002328 SensorPrivacyManager spm;
2329 status_t err = spm.addIndividualSensorPrivacyListener(userId,
2330 SensorPrivacyManager::INDIVIDUAL_SENSOR_MICROPHONE, this);
2331
2332 if (err != OK) {
2333 ALOGE("Cannot register a mic listener.");
2334 return err;
2335 }
2336 mSensorPrivacyEnabled = spm.isIndividualSensorPrivacyEnabled(userId,
2337 SensorPrivacyManager::INDIVIDUAL_SENSOR_MICROPHONE);
2338
2339 mIsIndividualMic = true;
2340 mUserId = userId;
2341 return OK;
2342}
2343
2344bool SensorService::isMicSensorPrivacyEnabledForUid(uid_t uid) {
2345 userid_t userId = multiuser_get_user_id(uid);
2346 if (mMicSensorPrivacyPolicies.find(userId) == mMicSensorPrivacyPolicies.end()) {
2347 sp<SensorPrivacyPolicy> userPolicy = new SensorPrivacyPolicy(this);
2348 if (userPolicy->registerSelfForIndividual(userId) != OK) {
2349 return false;
2350 }
2351 mMicSensorPrivacyPolicies[userId] = userPolicy;
2352 }
2353 return mMicSensorPrivacyPolicies[userId]->isSensorPrivacyEnabled();
2354}
2355
Brian Duddie967ce172019-06-10 11:08:27 -07002356SensorService::ConnectionSafeAutolock::ConnectionSafeAutolock(
2357 SensorService::SensorConnectionHolder& holder, Mutex& mutex)
2358 : mConnectionHolder(holder), mAutolock(mutex) {}
2359
2360template<typename ConnectionType>
2361const std::vector<sp<ConnectionType>>& SensorService::ConnectionSafeAutolock::getConnectionsHelper(
2362 const SortedVector<wp<ConnectionType>>& connectionList,
2363 std::vector<std::vector<sp<ConnectionType>>>* referenceHolder) {
2364 referenceHolder->emplace_back();
2365 std::vector<sp<ConnectionType>>& connections = referenceHolder->back();
2366 for (const wp<ConnectionType>& weakConnection : connectionList){
2367 sp<ConnectionType> connection = weakConnection.promote();
2368 if (connection != nullptr) {
2369 connections.push_back(std::move(connection));
2370 }
2371 }
2372 return connections;
2373}
2374
2375const std::vector<sp<SensorService::SensorEventConnection>>&
2376 SensorService::ConnectionSafeAutolock::getActiveConnections() {
2377 return getConnectionsHelper(mConnectionHolder.mActiveConnections,
2378 &mReferencedActiveConnections);
2379}
2380
2381const std::vector<sp<SensorService::SensorDirectConnection>>&
2382 SensorService::ConnectionSafeAutolock::getDirectConnections() {
2383 return getConnectionsHelper(mConnectionHolder.mDirectConnections,
2384 &mReferencedDirectConnections);
2385}
2386
2387void SensorService::SensorConnectionHolder::addEventConnectionIfNotPresent(
2388 const sp<SensorService::SensorEventConnection>& connection) {
2389 if (mActiveConnections.indexOf(connection) < 0) {
2390 mActiveConnections.add(connection);
2391 }
2392}
2393
2394void SensorService::SensorConnectionHolder::removeEventConnection(
2395 const wp<SensorService::SensorEventConnection>& connection) {
2396 mActiveConnections.remove(connection);
2397}
2398
2399void SensorService::SensorConnectionHolder::addDirectConnection(
2400 const sp<SensorService::SensorDirectConnection>& connection) {
2401 mDirectConnections.add(connection);
2402}
2403
2404void SensorService::SensorConnectionHolder::removeDirectConnection(
2405 const wp<SensorService::SensorDirectConnection>& connection) {
2406 mDirectConnections.remove(connection);
2407}
2408
2409SensorService::ConnectionSafeAutolock SensorService::SensorConnectionHolder::lock(Mutex& mutex) {
2410 return ConnectionSafeAutolock(*this, mutex);
2411}
2412
Anh Phamaf91a912021-02-10 14:10:53 +01002413bool SensorService::isPackageDebuggable(const String16& opPackageName) {
2414 bool debugMode = false;
2415 sp<IBinder> binder = defaultServiceManager()->getService(String16("package_native"));
2416 if (binder != nullptr) {
2417 sp<content::pm::IPackageManagerNative> packageManager =
2418 interface_cast<content::pm::IPackageManagerNative>(binder);
2419 if (packageManager != nullptr) {
2420 binder::Status status = packageManager->isPackageDebuggable(
2421 opPackageName, &debugMode);
2422 }
2423 }
2424 return debugMode;
2425}
Brian Duddie967ce172019-06-10 11:08:27 -07002426} // namespace android