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1 /*
2  * Copyright (C) 2010 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include "Macros.h"
18 
19 #include "InputReader.h"
20 
21 #include <android-base/stringprintf.h>
22 #include <errno.h>
23 #include <input/Keyboard.h>
24 #include <input/VirtualKeyMap.h>
25 #include <inttypes.h>
26 #include <limits.h>
27 #include <log/log.h>
28 #include <math.h>
29 #include <stddef.h>
30 #include <stdlib.h>
31 #include <unistd.h>
32 #include <utils/Errors.h>
33 #include <utils/Thread.h>
34 
35 #include "InputDevice.h"
36 
37 using android::base::StringPrintf;
38 
39 namespace android {
40 
41 // --- InputReader ---
42 
InputReader(std::shared_ptr<EventHubInterface> eventHub,const sp<InputReaderPolicyInterface> & policy,const sp<InputListenerInterface> & listener)43 InputReader::InputReader(std::shared_ptr<EventHubInterface> eventHub,
44                          const sp<InputReaderPolicyInterface>& policy,
45                          const sp<InputListenerInterface>& listener)
46       : mContext(this),
47         mEventHub(eventHub),
48         mPolicy(policy),
49         mGlobalMetaState(0),
50         mLedMetaState(AMETA_NUM_LOCK_ON),
51         mGeneration(1),
52         mNextInputDeviceId(END_RESERVED_ID),
53         mDisableVirtualKeysTimeout(LLONG_MIN),
54         mNextTimeout(LLONG_MAX),
55         mConfigurationChangesToRefresh(0) {
56     mQueuedListener = new QueuedInputListener(listener);
57 
58     { // acquire lock
59         std::scoped_lock _l(mLock);
60 
61         refreshConfigurationLocked(0);
62         updateGlobalMetaStateLocked();
63     } // release lock
64 }
65 
~InputReader()66 InputReader::~InputReader() {}
67 
start()68 status_t InputReader::start() {
69     if (mThread) {
70         return ALREADY_EXISTS;
71     }
72     mThread = std::make_unique<InputThread>(
73             "InputReader", [this]() { loopOnce(); }, [this]() { mEventHub->wake(); });
74     return OK;
75 }
76 
stop()77 status_t InputReader::stop() {
78     if (mThread && mThread->isCallingThread()) {
79         ALOGE("InputReader cannot be stopped from its own thread!");
80         return INVALID_OPERATION;
81     }
82     mThread.reset();
83     return OK;
84 }
85 
loopOnce()86 void InputReader::loopOnce() {
87     int32_t oldGeneration;
88     int32_t timeoutMillis;
89     bool inputDevicesChanged = false;
90     std::vector<InputDeviceInfo> inputDevices;
91     { // acquire lock
92         std::scoped_lock _l(mLock);
93 
94         oldGeneration = mGeneration;
95         timeoutMillis = -1;
96 
97         uint32_t changes = mConfigurationChangesToRefresh;
98         if (changes) {
99             mConfigurationChangesToRefresh = 0;
100             timeoutMillis = 0;
101             refreshConfigurationLocked(changes);
102         } else if (mNextTimeout != LLONG_MAX) {
103             nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
104             timeoutMillis = toMillisecondTimeoutDelay(now, mNextTimeout);
105         }
106     } // release lock
107 
108     size_t count = mEventHub->getEvents(timeoutMillis, mEventBuffer, EVENT_BUFFER_SIZE);
109 
110     { // acquire lock
111         std::scoped_lock _l(mLock);
112         mReaderIsAliveCondition.notify_all();
113 
114         if (count) {
115             processEventsLocked(mEventBuffer, count);
116         }
117 
118         if (mNextTimeout != LLONG_MAX) {
119             nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
120             if (now >= mNextTimeout) {
121 #if DEBUG_RAW_EVENTS
122                 ALOGD("Timeout expired, latency=%0.3fms", (now - mNextTimeout) * 0.000001f);
123 #endif
124                 mNextTimeout = LLONG_MAX;
125                 timeoutExpiredLocked(now);
126             }
127         }
128 
129         if (oldGeneration != mGeneration) {
130             inputDevicesChanged = true;
131             inputDevices = getInputDevicesLocked();
132         }
133     } // release lock
134 
135     // Send out a message that the describes the changed input devices.
136     if (inputDevicesChanged) {
137         mPolicy->notifyInputDevicesChanged(inputDevices);
138     }
139 
140     // Flush queued events out to the listener.
141     // This must happen outside of the lock because the listener could potentially call
142     // back into the InputReader's methods, such as getScanCodeState, or become blocked
143     // on another thread similarly waiting to acquire the InputReader lock thereby
144     // resulting in a deadlock.  This situation is actually quite plausible because the
145     // listener is actually the input dispatcher, which calls into the window manager,
146     // which occasionally calls into the input reader.
147     mQueuedListener->flush();
148 }
149 
processEventsLocked(const RawEvent * rawEvents,size_t count)150 void InputReader::processEventsLocked(const RawEvent* rawEvents, size_t count) {
151     for (const RawEvent* rawEvent = rawEvents; count;) {
152         int32_t type = rawEvent->type;
153         size_t batchSize = 1;
154         if (type < EventHubInterface::FIRST_SYNTHETIC_EVENT) {
155             int32_t deviceId = rawEvent->deviceId;
156             while (batchSize < count) {
157                 if (rawEvent[batchSize].type >= EventHubInterface::FIRST_SYNTHETIC_EVENT ||
158                     rawEvent[batchSize].deviceId != deviceId) {
159                     break;
160                 }
161                 batchSize += 1;
162             }
163 #if DEBUG_RAW_EVENTS
164             ALOGD("BatchSize: %zu Count: %zu", batchSize, count);
165 #endif
166             processEventsForDeviceLocked(deviceId, rawEvent, batchSize);
167         } else {
168             switch (rawEvent->type) {
169                 case EventHubInterface::DEVICE_ADDED:
170                     addDeviceLocked(rawEvent->when, rawEvent->deviceId);
171                     break;
172                 case EventHubInterface::DEVICE_REMOVED:
173                     removeDeviceLocked(rawEvent->when, rawEvent->deviceId);
174                     break;
175                 case EventHubInterface::FINISHED_DEVICE_SCAN:
176                     handleConfigurationChangedLocked(rawEvent->when);
177                     break;
178                 default:
179                     ALOG_ASSERT(false); // can't happen
180                     break;
181             }
182         }
183         count -= batchSize;
184         rawEvent += batchSize;
185     }
186 }
187 
addDeviceLocked(nsecs_t when,int32_t eventHubId)188 void InputReader::addDeviceLocked(nsecs_t when, int32_t eventHubId) {
189     if (mDevices.find(eventHubId) != mDevices.end()) {
190         ALOGW("Ignoring spurious device added event for eventHubId %d.", eventHubId);
191         return;
192     }
193 
194     InputDeviceIdentifier identifier = mEventHub->getDeviceIdentifier(eventHubId);
195     std::shared_ptr<InputDevice> device = createDeviceLocked(eventHubId, identifier);
196     device->configure(when, &mConfig, 0);
197     device->reset(when);
198 
199     if (device->isIgnored()) {
200         ALOGI("Device added: id=%d, eventHubId=%d, name='%s', descriptor='%s' "
201               "(ignored non-input device)",
202               device->getId(), eventHubId, identifier.name.c_str(), identifier.descriptor.c_str());
203     } else {
204         ALOGI("Device added: id=%d, eventHubId=%d, name='%s', descriptor='%s',sources=0x%08x",
205               device->getId(), eventHubId, identifier.name.c_str(), identifier.descriptor.c_str(),
206               device->getSources());
207     }
208 
209     mDevices.emplace(eventHubId, device);
210     // Add device to device to EventHub ids map.
211     const auto mapIt = mDeviceToEventHubIdsMap.find(device);
212     if (mapIt == mDeviceToEventHubIdsMap.end()) {
213         std::vector<int32_t> ids = {eventHubId};
214         mDeviceToEventHubIdsMap.emplace(device, ids);
215     } else {
216         mapIt->second.push_back(eventHubId);
217     }
218     bumpGenerationLocked();
219 
220     if (device->getClasses().test(InputDeviceClass::EXTERNAL_STYLUS)) {
221         notifyExternalStylusPresenceChangedLocked();
222     }
223 
224     // Sensor input device is noisy, to save power disable it by default.
225     // Input device is classified as SENSOR when any sub device is a SENSOR device, check Eventhub
226     // device class to disable SENSOR sub device only.
227     if (mEventHub->getDeviceClasses(eventHubId).test(InputDeviceClass::SENSOR)) {
228         mEventHub->disableDevice(eventHubId);
229     }
230 }
231 
removeDeviceLocked(nsecs_t when,int32_t eventHubId)232 void InputReader::removeDeviceLocked(nsecs_t when, int32_t eventHubId) {
233     auto deviceIt = mDevices.find(eventHubId);
234     if (deviceIt == mDevices.end()) {
235         ALOGW("Ignoring spurious device removed event for eventHubId %d.", eventHubId);
236         return;
237     }
238 
239     std::shared_ptr<InputDevice> device = std::move(deviceIt->second);
240     mDevices.erase(deviceIt);
241     // Erase device from device to EventHub ids map.
242     auto mapIt = mDeviceToEventHubIdsMap.find(device);
243     if (mapIt != mDeviceToEventHubIdsMap.end()) {
244         std::vector<int32_t>& eventHubIds = mapIt->second;
245         eventHubIds.erase(std::remove_if(eventHubIds.begin(), eventHubIds.end(),
246                                          [eventHubId](int32_t eId) { return eId == eventHubId; }),
247                           eventHubIds.end());
248         if (eventHubIds.size() == 0) {
249             mDeviceToEventHubIdsMap.erase(mapIt);
250         }
251     }
252     bumpGenerationLocked();
253 
254     if (device->isIgnored()) {
255         ALOGI("Device removed: id=%d, eventHubId=%d, name='%s', descriptor='%s' "
256               "(ignored non-input device)",
257               device->getId(), eventHubId, device->getName().c_str(),
258               device->getDescriptor().c_str());
259     } else {
260         ALOGI("Device removed: id=%d, eventHubId=%d, name='%s', descriptor='%s', sources=0x%08x",
261               device->getId(), eventHubId, device->getName().c_str(),
262               device->getDescriptor().c_str(), device->getSources());
263     }
264 
265     device->removeEventHubDevice(eventHubId);
266 
267     if (device->getClasses().test(InputDeviceClass::EXTERNAL_STYLUS)) {
268         notifyExternalStylusPresenceChangedLocked();
269     }
270 
271     if (device->hasEventHubDevices()) {
272         device->configure(when, &mConfig, 0);
273     }
274     device->reset(when);
275 }
276 
createDeviceLocked(int32_t eventHubId,const InputDeviceIdentifier & identifier)277 std::shared_ptr<InputDevice> InputReader::createDeviceLocked(
278         int32_t eventHubId, const InputDeviceIdentifier& identifier) {
279     auto deviceIt = std::find_if(mDevices.begin(), mDevices.end(), [identifier](auto& devicePair) {
280         return devicePair.second->getDescriptor().size() && identifier.descriptor.size() &&
281                 devicePair.second->getDescriptor() == identifier.descriptor;
282     });
283 
284     std::shared_ptr<InputDevice> device;
285     if (deviceIt != mDevices.end()) {
286         device = deviceIt->second;
287     } else {
288         int32_t deviceId = (eventHubId < END_RESERVED_ID) ? eventHubId : nextInputDeviceIdLocked();
289         device = std::make_shared<InputDevice>(&mContext, deviceId, bumpGenerationLocked(),
290                                                identifier);
291     }
292     device->addEventHubDevice(eventHubId);
293     return device;
294 }
295 
processEventsForDeviceLocked(int32_t eventHubId,const RawEvent * rawEvents,size_t count)296 void InputReader::processEventsForDeviceLocked(int32_t eventHubId, const RawEvent* rawEvents,
297                                                size_t count) {
298     auto deviceIt = mDevices.find(eventHubId);
299     if (deviceIt == mDevices.end()) {
300         ALOGW("Discarding event for unknown eventHubId %d.", eventHubId);
301         return;
302     }
303 
304     std::shared_ptr<InputDevice>& device = deviceIt->second;
305     if (device->isIgnored()) {
306         // ALOGD("Discarding event for ignored deviceId %d.", deviceId);
307         return;
308     }
309 
310     device->process(rawEvents, count);
311 }
312 
findInputDeviceLocked(int32_t deviceId)313 InputDevice* InputReader::findInputDeviceLocked(int32_t deviceId) {
314     auto deviceIt =
315             std::find_if(mDevices.begin(), mDevices.end(), [deviceId](const auto& devicePair) {
316                 return devicePair.second->getId() == deviceId;
317             });
318     if (deviceIt != mDevices.end()) {
319         return deviceIt->second.get();
320     }
321     return nullptr;
322 }
323 
timeoutExpiredLocked(nsecs_t when)324 void InputReader::timeoutExpiredLocked(nsecs_t when) {
325     for (auto& devicePair : mDevices) {
326         std::shared_ptr<InputDevice>& device = devicePair.second;
327         if (!device->isIgnored()) {
328             device->timeoutExpired(when);
329         }
330     }
331 }
332 
nextInputDeviceIdLocked()333 int32_t InputReader::nextInputDeviceIdLocked() {
334     return ++mNextInputDeviceId;
335 }
336 
handleConfigurationChangedLocked(nsecs_t when)337 void InputReader::handleConfigurationChangedLocked(nsecs_t when) {
338     // Reset global meta state because it depends on the list of all configured devices.
339     updateGlobalMetaStateLocked();
340 
341     // Enqueue configuration changed.
342     NotifyConfigurationChangedArgs args(mContext.getNextId(), when);
343     mQueuedListener->notifyConfigurationChanged(&args);
344 }
345 
refreshConfigurationLocked(uint32_t changes)346 void InputReader::refreshConfigurationLocked(uint32_t changes) {
347     mPolicy->getReaderConfiguration(&mConfig);
348     mEventHub->setExcludedDevices(mConfig.excludedDeviceNames);
349 
350     if (!changes) return;
351 
352     ALOGI("Reconfiguring input devices, changes=%s",
353           InputReaderConfiguration::changesToString(changes).c_str());
354     nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
355 
356     if (changes & InputReaderConfiguration::CHANGE_DISPLAY_INFO) {
357         updatePointerDisplayLocked();
358     }
359 
360     if (changes & InputReaderConfiguration::CHANGE_MUST_REOPEN) {
361         mEventHub->requestReopenDevices();
362     } else {
363         for (auto& devicePair : mDevices) {
364             std::shared_ptr<InputDevice>& device = devicePair.second;
365             device->configure(now, &mConfig, changes);
366         }
367     }
368 
369     if (changes & InputReaderConfiguration::CHANGE_POINTER_CAPTURE) {
370         const NotifyPointerCaptureChangedArgs args(mContext.getNextId(), now,
371                                                    mConfig.pointerCapture);
372         mQueuedListener->notifyPointerCaptureChanged(&args);
373     }
374 }
375 
updateGlobalMetaStateLocked()376 void InputReader::updateGlobalMetaStateLocked() {
377     mGlobalMetaState = 0;
378 
379     for (auto& devicePair : mDevices) {
380         std::shared_ptr<InputDevice>& device = devicePair.second;
381         mGlobalMetaState |= device->getMetaState();
382     }
383 }
384 
getGlobalMetaStateLocked()385 int32_t InputReader::getGlobalMetaStateLocked() {
386     return mGlobalMetaState;
387 }
388 
updateLedMetaStateLocked(int32_t metaState)389 void InputReader::updateLedMetaStateLocked(int32_t metaState) {
390     mLedMetaState = metaState;
391     for (auto& devicePair : mDevices) {
392         std::shared_ptr<InputDevice>& device = devicePair.second;
393         device->updateLedState(false);
394     }
395 }
396 
getLedMetaStateLocked()397 int32_t InputReader::getLedMetaStateLocked() {
398     return mLedMetaState;
399 }
400 
notifyExternalStylusPresenceChangedLocked()401 void InputReader::notifyExternalStylusPresenceChangedLocked() {
402     refreshConfigurationLocked(InputReaderConfiguration::CHANGE_EXTERNAL_STYLUS_PRESENCE);
403 }
404 
getExternalStylusDevicesLocked(std::vector<InputDeviceInfo> & outDevices)405 void InputReader::getExternalStylusDevicesLocked(std::vector<InputDeviceInfo>& outDevices) {
406     for (auto& devicePair : mDevices) {
407         std::shared_ptr<InputDevice>& device = devicePair.second;
408         if (device->getClasses().test(InputDeviceClass::EXTERNAL_STYLUS) && !device->isIgnored()) {
409             outDevices.push_back(device->getDeviceInfo());
410         }
411     }
412 }
413 
dispatchExternalStylusStateLocked(const StylusState & state)414 void InputReader::dispatchExternalStylusStateLocked(const StylusState& state) {
415     for (auto& devicePair : mDevices) {
416         std::shared_ptr<InputDevice>& device = devicePair.second;
417         device->updateExternalStylusState(state);
418     }
419 }
420 
disableVirtualKeysUntilLocked(nsecs_t time)421 void InputReader::disableVirtualKeysUntilLocked(nsecs_t time) {
422     mDisableVirtualKeysTimeout = time;
423 }
424 
shouldDropVirtualKeyLocked(nsecs_t now,int32_t keyCode,int32_t scanCode)425 bool InputReader::shouldDropVirtualKeyLocked(nsecs_t now, int32_t keyCode, int32_t scanCode) {
426     if (now < mDisableVirtualKeysTimeout) {
427         ALOGI("Dropping virtual key from device because virtual keys are "
428               "temporarily disabled for the next %0.3fms.  keyCode=%d, scanCode=%d",
429               (mDisableVirtualKeysTimeout - now) * 0.000001, keyCode, scanCode);
430         return true;
431     } else {
432         return false;
433     }
434 }
435 
getPointerControllerLocked(int32_t deviceId)436 std::shared_ptr<PointerControllerInterface> InputReader::getPointerControllerLocked(
437         int32_t deviceId) {
438     std::shared_ptr<PointerControllerInterface> controller = mPointerController.lock();
439     if (controller == nullptr) {
440         controller = mPolicy->obtainPointerController(deviceId);
441         mPointerController = controller;
442         updatePointerDisplayLocked();
443     }
444     return controller;
445 }
446 
updatePointerDisplayLocked()447 void InputReader::updatePointerDisplayLocked() {
448     std::shared_ptr<PointerControllerInterface> controller = mPointerController.lock();
449     if (controller == nullptr) {
450         return;
451     }
452 
453     std::optional<DisplayViewport> viewport =
454             mConfig.getDisplayViewportById(mConfig.defaultPointerDisplayId);
455     if (!viewport) {
456         ALOGW("Can't find the designated viewport with ID %" PRId32 " to update cursor input "
457               "mapper. Fall back to default display",
458               mConfig.defaultPointerDisplayId);
459         viewport = mConfig.getDisplayViewportById(ADISPLAY_ID_DEFAULT);
460     }
461     if (!viewport) {
462         ALOGE("Still can't find a viable viewport to update cursor input mapper. Skip setting it to"
463               " PointerController.");
464         return;
465     }
466 
467     controller->setDisplayViewport(*viewport);
468 }
469 
fadePointerLocked()470 void InputReader::fadePointerLocked() {
471     std::shared_ptr<PointerControllerInterface> controller = mPointerController.lock();
472     if (controller != nullptr) {
473         controller->fade(PointerControllerInterface::Transition::GRADUAL);
474     }
475 }
476 
requestTimeoutAtTimeLocked(nsecs_t when)477 void InputReader::requestTimeoutAtTimeLocked(nsecs_t when) {
478     if (when < mNextTimeout) {
479         mNextTimeout = when;
480         mEventHub->wake();
481     }
482 }
483 
bumpGenerationLocked()484 int32_t InputReader::bumpGenerationLocked() {
485     return ++mGeneration;
486 }
487 
getInputDevices() const488 std::vector<InputDeviceInfo> InputReader::getInputDevices() const {
489     std::scoped_lock _l(mLock);
490     return getInputDevicesLocked();
491 }
492 
getInputDevicesLocked() const493 std::vector<InputDeviceInfo> InputReader::getInputDevicesLocked() const {
494     std::vector<InputDeviceInfo> outInputDevices;
495     outInputDevices.reserve(mDeviceToEventHubIdsMap.size());
496 
497     for (const auto& [device, eventHubIds] : mDeviceToEventHubIdsMap) {
498         if (!device->isIgnored()) {
499             outInputDevices.push_back(device->getDeviceInfo());
500         }
501     }
502     return outInputDevices;
503 }
504 
getKeyCodeState(int32_t deviceId,uint32_t sourceMask,int32_t keyCode)505 int32_t InputReader::getKeyCodeState(int32_t deviceId, uint32_t sourceMask, int32_t keyCode) {
506     std::scoped_lock _l(mLock);
507 
508     return getStateLocked(deviceId, sourceMask, keyCode, &InputDevice::getKeyCodeState);
509 }
510 
getScanCodeState(int32_t deviceId,uint32_t sourceMask,int32_t scanCode)511 int32_t InputReader::getScanCodeState(int32_t deviceId, uint32_t sourceMask, int32_t scanCode) {
512     std::scoped_lock _l(mLock);
513 
514     return getStateLocked(deviceId, sourceMask, scanCode, &InputDevice::getScanCodeState);
515 }
516 
getSwitchState(int32_t deviceId,uint32_t sourceMask,int32_t switchCode)517 int32_t InputReader::getSwitchState(int32_t deviceId, uint32_t sourceMask, int32_t switchCode) {
518     std::scoped_lock _l(mLock);
519 
520     return getStateLocked(deviceId, sourceMask, switchCode, &InputDevice::getSwitchState);
521 }
522 
getStateLocked(int32_t deviceId,uint32_t sourceMask,int32_t code,GetStateFunc getStateFunc)523 int32_t InputReader::getStateLocked(int32_t deviceId, uint32_t sourceMask, int32_t code,
524                                     GetStateFunc getStateFunc) {
525     int32_t result = AKEY_STATE_UNKNOWN;
526     if (deviceId >= 0) {
527         InputDevice* device = findInputDeviceLocked(deviceId);
528         if (device && !device->isIgnored() && sourcesMatchMask(device->getSources(), sourceMask)) {
529             result = (device->*getStateFunc)(sourceMask, code);
530         }
531     } else {
532         for (auto& devicePair : mDevices) {
533             std::shared_ptr<InputDevice>& device = devicePair.second;
534             if (!device->isIgnored() && sourcesMatchMask(device->getSources(), sourceMask)) {
535                 // If any device reports AKEY_STATE_DOWN or AKEY_STATE_VIRTUAL, return that
536                 // value.  Otherwise, return AKEY_STATE_UP as long as one device reports it.
537                 int32_t currentResult = (device.get()->*getStateFunc)(sourceMask, code);
538                 if (currentResult >= AKEY_STATE_DOWN) {
539                     return currentResult;
540                 } else if (currentResult == AKEY_STATE_UP) {
541                     result = currentResult;
542                 }
543             }
544         }
545     }
546     return result;
547 }
548 
toggleCapsLockState(int32_t deviceId)549 void InputReader::toggleCapsLockState(int32_t deviceId) {
550     std::scoped_lock _l(mLock);
551     InputDevice* device = findInputDeviceLocked(deviceId);
552     if (!device) {
553         ALOGW("Ignoring toggleCapsLock for unknown deviceId %" PRId32 ".", deviceId);
554         return;
555     }
556 
557     if (device->isIgnored()) {
558         return;
559     }
560 
561     device->updateMetaState(AKEYCODE_CAPS_LOCK);
562 }
563 
hasKeys(int32_t deviceId,uint32_t sourceMask,size_t numCodes,const int32_t * keyCodes,uint8_t * outFlags)564 bool InputReader::hasKeys(int32_t deviceId, uint32_t sourceMask, size_t numCodes,
565                           const int32_t* keyCodes, uint8_t* outFlags) {
566     std::scoped_lock _l(mLock);
567 
568     memset(outFlags, 0, numCodes);
569     return markSupportedKeyCodesLocked(deviceId, sourceMask, numCodes, keyCodes, outFlags);
570 }
571 
markSupportedKeyCodesLocked(int32_t deviceId,uint32_t sourceMask,size_t numCodes,const int32_t * keyCodes,uint8_t * outFlags)572 bool InputReader::markSupportedKeyCodesLocked(int32_t deviceId, uint32_t sourceMask,
573                                               size_t numCodes, const int32_t* keyCodes,
574                                               uint8_t* outFlags) {
575     bool result = false;
576     if (deviceId >= 0) {
577         InputDevice* device = findInputDeviceLocked(deviceId);
578         if (device && !device->isIgnored() && sourcesMatchMask(device->getSources(), sourceMask)) {
579             result = device->markSupportedKeyCodes(sourceMask, numCodes, keyCodes, outFlags);
580         }
581     } else {
582         for (auto& devicePair : mDevices) {
583             std::shared_ptr<InputDevice>& device = devicePair.second;
584             if (!device->isIgnored() && sourcesMatchMask(device->getSources(), sourceMask)) {
585                 result |= device->markSupportedKeyCodes(sourceMask, numCodes, keyCodes, outFlags);
586             }
587         }
588     }
589     return result;
590 }
591 
requestRefreshConfiguration(uint32_t changes)592 void InputReader::requestRefreshConfiguration(uint32_t changes) {
593     std::scoped_lock _l(mLock);
594 
595     if (changes) {
596         bool needWake = !mConfigurationChangesToRefresh;
597         mConfigurationChangesToRefresh |= changes;
598 
599         if (needWake) {
600             mEventHub->wake();
601         }
602     }
603 }
604 
vibrate(int32_t deviceId,const VibrationSequence & sequence,ssize_t repeat,int32_t token)605 void InputReader::vibrate(int32_t deviceId, const VibrationSequence& sequence, ssize_t repeat,
606                           int32_t token) {
607     std::scoped_lock _l(mLock);
608 
609     InputDevice* device = findInputDeviceLocked(deviceId);
610     if (device) {
611         device->vibrate(sequence, repeat, token);
612     }
613 }
614 
cancelVibrate(int32_t deviceId,int32_t token)615 void InputReader::cancelVibrate(int32_t deviceId, int32_t token) {
616     std::scoped_lock _l(mLock);
617 
618     InputDevice* device = findInputDeviceLocked(deviceId);
619     if (device) {
620         device->cancelVibrate(token);
621     }
622 }
623 
isVibrating(int32_t deviceId)624 bool InputReader::isVibrating(int32_t deviceId) {
625     std::scoped_lock _l(mLock);
626 
627     InputDevice* device = findInputDeviceLocked(deviceId);
628     if (device) {
629         return device->isVibrating();
630     }
631     return false;
632 }
633 
getVibratorIds(int32_t deviceId)634 std::vector<int32_t> InputReader::getVibratorIds(int32_t deviceId) {
635     std::scoped_lock _l(mLock);
636 
637     InputDevice* device = findInputDeviceLocked(deviceId);
638     if (device) {
639         return device->getVibratorIds();
640     }
641     return {};
642 }
643 
disableSensor(int32_t deviceId,InputDeviceSensorType sensorType)644 void InputReader::disableSensor(int32_t deviceId, InputDeviceSensorType sensorType) {
645     std::scoped_lock _l(mLock);
646 
647     InputDevice* device = findInputDeviceLocked(deviceId);
648     if (device) {
649         device->disableSensor(sensorType);
650     }
651 }
652 
enableSensor(int32_t deviceId,InputDeviceSensorType sensorType,std::chrono::microseconds samplingPeriod,std::chrono::microseconds maxBatchReportLatency)653 bool InputReader::enableSensor(int32_t deviceId, InputDeviceSensorType sensorType,
654                                std::chrono::microseconds samplingPeriod,
655                                std::chrono::microseconds maxBatchReportLatency) {
656     std::scoped_lock _l(mLock);
657 
658     InputDevice* device = findInputDeviceLocked(deviceId);
659     if (device) {
660         return device->enableSensor(sensorType, samplingPeriod, maxBatchReportLatency);
661     }
662     return false;
663 }
664 
flushSensor(int32_t deviceId,InputDeviceSensorType sensorType)665 void InputReader::flushSensor(int32_t deviceId, InputDeviceSensorType sensorType) {
666     std::scoped_lock _l(mLock);
667 
668     InputDevice* device = findInputDeviceLocked(deviceId);
669     if (device) {
670         device->flushSensor(sensorType);
671     }
672 }
673 
getBatteryCapacity(int32_t deviceId)674 std::optional<int32_t> InputReader::getBatteryCapacity(int32_t deviceId) {
675     std::scoped_lock _l(mLock);
676 
677     InputDevice* device = findInputDeviceLocked(deviceId);
678     if (device) {
679         return device->getBatteryCapacity();
680     }
681     return std::nullopt;
682 }
683 
getBatteryStatus(int32_t deviceId)684 std::optional<int32_t> InputReader::getBatteryStatus(int32_t deviceId) {
685     std::scoped_lock _l(mLock);
686 
687     InputDevice* device = findInputDeviceLocked(deviceId);
688     if (device) {
689         return device->getBatteryStatus();
690     }
691     return std::nullopt;
692 }
693 
getLights(int32_t deviceId)694 std::vector<InputDeviceLightInfo> InputReader::getLights(int32_t deviceId) {
695     std::scoped_lock _l(mLock);
696 
697     InputDevice* device = findInputDeviceLocked(deviceId);
698     if (device == nullptr) {
699         return {};
700     }
701 
702     return device->getDeviceInfo().getLights();
703 }
704 
getSensors(int32_t deviceId)705 std::vector<InputDeviceSensorInfo> InputReader::getSensors(int32_t deviceId) {
706     std::scoped_lock _l(mLock);
707 
708     InputDevice* device = findInputDeviceLocked(deviceId);
709     if (device == nullptr) {
710         return {};
711     }
712 
713     return device->getDeviceInfo().getSensors();
714 }
715 
setLightColor(int32_t deviceId,int32_t lightId,int32_t color)716 bool InputReader::setLightColor(int32_t deviceId, int32_t lightId, int32_t color) {
717     std::scoped_lock _l(mLock);
718 
719     InputDevice* device = findInputDeviceLocked(deviceId);
720     if (device) {
721         return device->setLightColor(lightId, color);
722     }
723     return false;
724 }
725 
setLightPlayerId(int32_t deviceId,int32_t lightId,int32_t playerId)726 bool InputReader::setLightPlayerId(int32_t deviceId, int32_t lightId, int32_t playerId) {
727     std::scoped_lock _l(mLock);
728 
729     InputDevice* device = findInputDeviceLocked(deviceId);
730     if (device) {
731         return device->setLightPlayerId(lightId, playerId);
732     }
733     return false;
734 }
735 
getLightColor(int32_t deviceId,int32_t lightId)736 std::optional<int32_t> InputReader::getLightColor(int32_t deviceId, int32_t lightId) {
737     std::scoped_lock _l(mLock);
738 
739     InputDevice* device = findInputDeviceLocked(deviceId);
740     if (device) {
741         return device->getLightColor(lightId);
742     }
743     return std::nullopt;
744 }
745 
getLightPlayerId(int32_t deviceId,int32_t lightId)746 std::optional<int32_t> InputReader::getLightPlayerId(int32_t deviceId, int32_t lightId) {
747     std::scoped_lock _l(mLock);
748 
749     InputDevice* device = findInputDeviceLocked(deviceId);
750     if (device) {
751         return device->getLightPlayerId(lightId);
752     }
753     return std::nullopt;
754 }
755 
isInputDeviceEnabled(int32_t deviceId)756 bool InputReader::isInputDeviceEnabled(int32_t deviceId) {
757     std::scoped_lock _l(mLock);
758 
759     InputDevice* device = findInputDeviceLocked(deviceId);
760     if (device) {
761         return device->isEnabled();
762     }
763     ALOGW("Ignoring invalid device id %" PRId32 ".", deviceId);
764     return false;
765 }
766 
canDispatchToDisplay(int32_t deviceId,int32_t displayId)767 bool InputReader::canDispatchToDisplay(int32_t deviceId, int32_t displayId) {
768     std::scoped_lock _l(mLock);
769 
770     InputDevice* device = findInputDeviceLocked(deviceId);
771     if (!device) {
772         ALOGW("Ignoring invalid device id %" PRId32 ".", deviceId);
773         return false;
774     }
775 
776     if (!device->isEnabled()) {
777         ALOGW("Ignoring disabled device %s", device->getName().c_str());
778         return false;
779     }
780 
781     std::optional<int32_t> associatedDisplayId = device->getAssociatedDisplayId();
782     // No associated display. By default, can dispatch to all displays.
783     if (!associatedDisplayId) {
784         return true;
785     }
786 
787     if (*associatedDisplayId == ADISPLAY_ID_NONE) {
788         ALOGW("Device %s is associated with display ADISPLAY_ID_NONE.", device->getName().c_str());
789         return true;
790     }
791 
792     return *associatedDisplayId == displayId;
793 }
794 
dump(std::string & dump)795 void InputReader::dump(std::string& dump) {
796     std::scoped_lock _l(mLock);
797 
798     mEventHub->dump(dump);
799     dump += "\n";
800 
801     dump += StringPrintf("Input Reader State (Nums of device: %zu):\n",
802                          mDeviceToEventHubIdsMap.size());
803 
804     for (const auto& devicePair : mDeviceToEventHubIdsMap) {
805         const std::shared_ptr<InputDevice>& device = devicePair.first;
806         std::string eventHubDevStr = INDENT "EventHub Devices: [ ";
807         for (const auto& eId : devicePair.second) {
808             eventHubDevStr += StringPrintf("%d ", eId);
809         }
810         eventHubDevStr += "] \n";
811         device->dump(dump, eventHubDevStr);
812     }
813 
814     dump += INDENT "Configuration:\n";
815     dump += INDENT2 "ExcludedDeviceNames: [";
816     for (size_t i = 0; i < mConfig.excludedDeviceNames.size(); i++) {
817         if (i != 0) {
818             dump += ", ";
819         }
820         dump += mConfig.excludedDeviceNames[i];
821     }
822     dump += "]\n";
823     dump += StringPrintf(INDENT2 "VirtualKeyQuietTime: %0.1fms\n",
824                          mConfig.virtualKeyQuietTime * 0.000001f);
825 
826     dump += StringPrintf(INDENT2 "PointerVelocityControlParameters: "
827                                  "scale=%0.3f, lowThreshold=%0.3f, highThreshold=%0.3f, "
828                                  "acceleration=%0.3f\n",
829                          mConfig.pointerVelocityControlParameters.scale,
830                          mConfig.pointerVelocityControlParameters.lowThreshold,
831                          mConfig.pointerVelocityControlParameters.highThreshold,
832                          mConfig.pointerVelocityControlParameters.acceleration);
833 
834     dump += StringPrintf(INDENT2 "WheelVelocityControlParameters: "
835                                  "scale=%0.3f, lowThreshold=%0.3f, highThreshold=%0.3f, "
836                                  "acceleration=%0.3f\n",
837                          mConfig.wheelVelocityControlParameters.scale,
838                          mConfig.wheelVelocityControlParameters.lowThreshold,
839                          mConfig.wheelVelocityControlParameters.highThreshold,
840                          mConfig.wheelVelocityControlParameters.acceleration);
841 
842     dump += StringPrintf(INDENT2 "PointerGesture:\n");
843     dump += StringPrintf(INDENT3 "Enabled: %s\n", toString(mConfig.pointerGesturesEnabled));
844     dump += StringPrintf(INDENT3 "QuietInterval: %0.1fms\n",
845                          mConfig.pointerGestureQuietInterval * 0.000001f);
846     dump += StringPrintf(INDENT3 "DragMinSwitchSpeed: %0.1fpx/s\n",
847                          mConfig.pointerGestureDragMinSwitchSpeed);
848     dump += StringPrintf(INDENT3 "TapInterval: %0.1fms\n",
849                          mConfig.pointerGestureTapInterval * 0.000001f);
850     dump += StringPrintf(INDENT3 "TapDragInterval: %0.1fms\n",
851                          mConfig.pointerGestureTapDragInterval * 0.000001f);
852     dump += StringPrintf(INDENT3 "TapSlop: %0.1fpx\n", mConfig.pointerGestureTapSlop);
853     dump += StringPrintf(INDENT3 "MultitouchSettleInterval: %0.1fms\n",
854                          mConfig.pointerGestureMultitouchSettleInterval * 0.000001f);
855     dump += StringPrintf(INDENT3 "MultitouchMinDistance: %0.1fpx\n",
856                          mConfig.pointerGestureMultitouchMinDistance);
857     dump += StringPrintf(INDENT3 "SwipeTransitionAngleCosine: %0.1f\n",
858                          mConfig.pointerGestureSwipeTransitionAngleCosine);
859     dump += StringPrintf(INDENT3 "SwipeMaxWidthRatio: %0.1f\n",
860                          mConfig.pointerGestureSwipeMaxWidthRatio);
861     dump += StringPrintf(INDENT3 "MovementSpeedRatio: %0.1f\n",
862                          mConfig.pointerGestureMovementSpeedRatio);
863     dump += StringPrintf(INDENT3 "ZoomSpeedRatio: %0.1f\n", mConfig.pointerGestureZoomSpeedRatio);
864 
865     dump += INDENT3 "Viewports:\n";
866     mConfig.dump(dump);
867 }
868 
monitor()869 void InputReader::monitor() {
870     // Acquire and release the lock to ensure that the reader has not deadlocked.
871     std::unique_lock<std::mutex> lock(mLock);
872     mEventHub->wake();
873     mReaderIsAliveCondition.wait(lock);
874     // Check the EventHub
875     mEventHub->monitor();
876 }
877 
878 // --- InputReader::ContextImpl ---
879 
ContextImpl(InputReader * reader)880 InputReader::ContextImpl::ContextImpl(InputReader* reader)
881       : mReader(reader), mIdGenerator(IdGenerator::Source::INPUT_READER) {}
882 
updateGlobalMetaState()883 void InputReader::ContextImpl::updateGlobalMetaState() {
884     // lock is already held by the input loop
885     mReader->updateGlobalMetaStateLocked();
886 }
887 
getGlobalMetaState()888 int32_t InputReader::ContextImpl::getGlobalMetaState() {
889     // lock is already held by the input loop
890     return mReader->getGlobalMetaStateLocked();
891 }
892 
updateLedMetaState(int32_t metaState)893 void InputReader::ContextImpl::updateLedMetaState(int32_t metaState) {
894     // lock is already held by the input loop
895     mReader->updateLedMetaStateLocked(metaState);
896 }
897 
getLedMetaState()898 int32_t InputReader::ContextImpl::getLedMetaState() {
899     // lock is already held by the input loop
900     return mReader->getLedMetaStateLocked();
901 }
902 
disableVirtualKeysUntil(nsecs_t time)903 void InputReader::ContextImpl::disableVirtualKeysUntil(nsecs_t time) {
904     // lock is already held by the input loop
905     mReader->disableVirtualKeysUntilLocked(time);
906 }
907 
shouldDropVirtualKey(nsecs_t now,int32_t keyCode,int32_t scanCode)908 bool InputReader::ContextImpl::shouldDropVirtualKey(nsecs_t now, int32_t keyCode,
909                                                     int32_t scanCode) {
910     // lock is already held by the input loop
911     return mReader->shouldDropVirtualKeyLocked(now, keyCode, scanCode);
912 }
913 
fadePointer()914 void InputReader::ContextImpl::fadePointer() {
915     // lock is already held by the input loop
916     mReader->fadePointerLocked();
917 }
918 
getPointerController(int32_t deviceId)919 std::shared_ptr<PointerControllerInterface> InputReader::ContextImpl::getPointerController(
920         int32_t deviceId) {
921     // lock is already held by the input loop
922     return mReader->getPointerControllerLocked(deviceId);
923 }
924 
requestTimeoutAtTime(nsecs_t when)925 void InputReader::ContextImpl::requestTimeoutAtTime(nsecs_t when) {
926     // lock is already held by the input loop
927     mReader->requestTimeoutAtTimeLocked(when);
928 }
929 
bumpGeneration()930 int32_t InputReader::ContextImpl::bumpGeneration() {
931     // lock is already held by the input loop
932     return mReader->bumpGenerationLocked();
933 }
934 
getExternalStylusDevices(std::vector<InputDeviceInfo> & outDevices)935 void InputReader::ContextImpl::getExternalStylusDevices(std::vector<InputDeviceInfo>& outDevices) {
936     // lock is already held by whatever called refreshConfigurationLocked
937     mReader->getExternalStylusDevicesLocked(outDevices);
938 }
939 
dispatchExternalStylusState(const StylusState & state)940 void InputReader::ContextImpl::dispatchExternalStylusState(const StylusState& state) {
941     mReader->dispatchExternalStylusStateLocked(state);
942 }
943 
getPolicy()944 InputReaderPolicyInterface* InputReader::ContextImpl::getPolicy() {
945     return mReader->mPolicy.get();
946 }
947 
getListener()948 InputListenerInterface* InputReader::ContextImpl::getListener() {
949     return mReader->mQueuedListener.get();
950 }
951 
getEventHub()952 EventHubInterface* InputReader::ContextImpl::getEventHub() {
953     return mReader->mEventHub.get();
954 }
955 
getNextId()956 int32_t InputReader::ContextImpl::getNextId() {
957     return mIdGenerator.nextId();
958 }
959 
960 } // namespace android
961