1 /*
2 * Copyright (C) 2019 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 "InputDevice.h"
20
21 #include <algorithm>
22
23 #include "CursorInputMapper.h"
24 #include "ExternalStylusInputMapper.h"
25 #include "InputReaderContext.h"
26 #include "JoystickInputMapper.h"
27 #include "KeyboardInputMapper.h"
28 #include "MultiTouchInputMapper.h"
29 #include "RotaryEncoderInputMapper.h"
30 #include "SingleTouchInputMapper.h"
31 #include "SwitchInputMapper.h"
32 #include "VibratorInputMapper.h"
33
34 namespace android {
35
InputDevice(InputReaderContext * context,int32_t id,int32_t generation,const InputDeviceIdentifier & identifier)36 InputDevice::InputDevice(InputReaderContext* context, int32_t id, int32_t generation,
37 const InputDeviceIdentifier& identifier)
38 : mContext(context),
39 mId(id),
40 mGeneration(generation),
41 mControllerNumber(0),
42 mIdentifier(identifier),
43 mClasses(0),
44 mSources(0),
45 mIsExternal(false),
46 mHasMic(false),
47 mDropUntilNextSync(false) {}
48
~InputDevice()49 InputDevice::~InputDevice() {}
50
isEnabled()51 bool InputDevice::isEnabled() {
52 if (!hasEventHubDevices()) {
53 return false;
54 }
55 // devices are either all enabled or all disabled, so we only need to check the first
56 auto& devicePair = mDevices.begin()->second;
57 auto& contextPtr = devicePair.first;
58 return contextPtr->isDeviceEnabled();
59 }
60
setEnabled(bool enabled,nsecs_t when)61 void InputDevice::setEnabled(bool enabled, nsecs_t when) {
62 if (enabled && mAssociatedDisplayPort && !mAssociatedViewport) {
63 ALOGW("Cannot enable input device %s because it is associated with port %" PRIu8 ", "
64 "but the corresponding viewport is not found",
65 getName().c_str(), *mAssociatedDisplayPort);
66 enabled = false;
67 }
68
69 if (isEnabled() == enabled) {
70 return;
71 }
72
73 // When resetting some devices, the driver needs to be queried to ensure that a proper reset is
74 // performed. The querying must happen when the device is enabled, so we reset after enabling
75 // but before disabling the device. See MultiTouchMotionAccumulator::reset for more information.
76 if (enabled) {
77 for_each_subdevice([](auto& context) { context.enableDevice(); });
78 reset(when);
79 } else {
80 reset(when);
81 for_each_subdevice([](auto& context) { context.disableDevice(); });
82 }
83 // Must change generation to flag this device as changed
84 bumpGeneration();
85 }
86
dump(std::string & dump,const std::string & eventHubDevStr)87 void InputDevice::dump(std::string& dump, const std::string& eventHubDevStr) {
88 InputDeviceInfo deviceInfo;
89 getDeviceInfo(&deviceInfo);
90
91 dump += StringPrintf(INDENT "Device %d: %s\n", deviceInfo.getId(),
92 deviceInfo.getDisplayName().c_str());
93 dump += StringPrintf(INDENT "%s", eventHubDevStr.c_str());
94 dump += StringPrintf(INDENT2 "Generation: %d\n", mGeneration);
95 dump += StringPrintf(INDENT2 "IsExternal: %s\n", toString(mIsExternal));
96 dump += StringPrintf(INDENT2 "AssociatedDisplayPort: ");
97 if (mAssociatedDisplayPort) {
98 dump += StringPrintf("%" PRIu8 "\n", *mAssociatedDisplayPort);
99 } else {
100 dump += "<none>\n";
101 }
102 dump += StringPrintf(INDENT2 "HasMic: %s\n", toString(mHasMic));
103 dump += StringPrintf(INDENT2 "Sources: 0x%08x\n", deviceInfo.getSources());
104 dump += StringPrintf(INDENT2 "KeyboardType: %d\n", deviceInfo.getKeyboardType());
105 dump += StringPrintf(INDENT2 "ControllerNum: %d\n", deviceInfo.getControllerNumber());
106
107 const std::vector<InputDeviceInfo::MotionRange>& ranges = deviceInfo.getMotionRanges();
108 if (!ranges.empty()) {
109 dump += INDENT2 "Motion Ranges:\n";
110 for (size_t i = 0; i < ranges.size(); i++) {
111 const InputDeviceInfo::MotionRange& range = ranges[i];
112 const char* label = getAxisLabel(range.axis);
113 char name[32];
114 if (label) {
115 strncpy(name, label, sizeof(name));
116 name[sizeof(name) - 1] = '\0';
117 } else {
118 snprintf(name, sizeof(name), "%d", range.axis);
119 }
120 dump += StringPrintf(INDENT3
121 "%s: source=0x%08x, "
122 "min=%0.3f, max=%0.3f, flat=%0.3f, fuzz=%0.3f, resolution=%0.3f\n",
123 name, range.source, range.min, range.max, range.flat, range.fuzz,
124 range.resolution);
125 }
126 }
127
128 for_each_mapper([&dump](InputMapper& mapper) { mapper.dump(dump); });
129 }
130
addEventHubDevice(int32_t eventHubId,bool populateMappers)131 void InputDevice::addEventHubDevice(int32_t eventHubId, bool populateMappers) {
132 if (mDevices.find(eventHubId) != mDevices.end()) {
133 return;
134 }
135 std::unique_ptr<InputDeviceContext> contextPtr(new InputDeviceContext(*this, eventHubId));
136 uint32_t classes = contextPtr->getDeviceClasses();
137 std::vector<std::unique_ptr<InputMapper>> mappers;
138
139 // Check if we should skip population
140 if (!populateMappers) {
141 mDevices.insert({eventHubId, std::make_pair(std::move(contextPtr), std::move(mappers))});
142 return;
143 }
144
145 // Switch-like devices.
146 if (classes & INPUT_DEVICE_CLASS_SWITCH) {
147 mappers.push_back(std::make_unique<SwitchInputMapper>(*contextPtr));
148 }
149
150 // Scroll wheel-like devices.
151 if (classes & INPUT_DEVICE_CLASS_ROTARY_ENCODER) {
152 mappers.push_back(std::make_unique<RotaryEncoderInputMapper>(*contextPtr));
153 }
154
155 // Vibrator-like devices.
156 if (classes & INPUT_DEVICE_CLASS_VIBRATOR) {
157 mappers.push_back(std::make_unique<VibratorInputMapper>(*contextPtr));
158 }
159
160 // Keyboard-like devices.
161 uint32_t keyboardSource = 0;
162 int32_t keyboardType = AINPUT_KEYBOARD_TYPE_NON_ALPHABETIC;
163 if (classes & INPUT_DEVICE_CLASS_KEYBOARD) {
164 keyboardSource |= AINPUT_SOURCE_KEYBOARD;
165 }
166 if (classes & INPUT_DEVICE_CLASS_ALPHAKEY) {
167 keyboardType = AINPUT_KEYBOARD_TYPE_ALPHABETIC;
168 }
169 if (classes & INPUT_DEVICE_CLASS_DPAD) {
170 keyboardSource |= AINPUT_SOURCE_DPAD;
171 }
172 if (classes & INPUT_DEVICE_CLASS_GAMEPAD) {
173 keyboardSource |= AINPUT_SOURCE_GAMEPAD;
174 }
175
176 if (keyboardSource != 0) {
177 mappers.push_back(
178 std::make_unique<KeyboardInputMapper>(*contextPtr, keyboardSource, keyboardType));
179 }
180
181 // Cursor-like devices.
182 if (classes & INPUT_DEVICE_CLASS_CURSOR) {
183 mappers.push_back(std::make_unique<CursorInputMapper>(*contextPtr));
184 }
185
186 // Touchscreens and touchpad devices.
187 if (classes & INPUT_DEVICE_CLASS_TOUCH_MT) {
188 mappers.push_back(std::make_unique<MultiTouchInputMapper>(*contextPtr));
189 } else if (classes & INPUT_DEVICE_CLASS_TOUCH) {
190 mappers.push_back(std::make_unique<SingleTouchInputMapper>(*contextPtr));
191 }
192
193 // Joystick-like devices.
194 if (classes & INPUT_DEVICE_CLASS_JOYSTICK) {
195 mappers.push_back(std::make_unique<JoystickInputMapper>(*contextPtr));
196 }
197
198 // External stylus-like devices.
199 if (classes & INPUT_DEVICE_CLASS_EXTERNAL_STYLUS) {
200 mappers.push_back(std::make_unique<ExternalStylusInputMapper>(*contextPtr));
201 }
202
203 // insert the context into the devices set
204 mDevices.insert({eventHubId, std::make_pair(std::move(contextPtr), std::move(mappers))});
205 // Must change generation to flag this device as changed
206 bumpGeneration();
207 }
208
removeEventHubDevice(int32_t eventHubId)209 void InputDevice::removeEventHubDevice(int32_t eventHubId) {
210 mDevices.erase(eventHubId);
211 }
212
configure(nsecs_t when,const InputReaderConfiguration * config,uint32_t changes)213 void InputDevice::configure(nsecs_t when, const InputReaderConfiguration* config,
214 uint32_t changes) {
215 mSources = 0;
216 mClasses = 0;
217 mControllerNumber = 0;
218
219 for_each_subdevice([this](InputDeviceContext& context) {
220 mClasses |= context.getDeviceClasses();
221 int32_t controllerNumber = context.getDeviceControllerNumber();
222 if (controllerNumber > 0) {
223 if (mControllerNumber && mControllerNumber != controllerNumber) {
224 ALOGW("InputDevice::configure(): composite device contains multiple unique "
225 "controller numbers");
226 }
227 mControllerNumber = controllerNumber;
228 }
229 });
230
231 mIsExternal = !!(mClasses & INPUT_DEVICE_CLASS_EXTERNAL);
232 mHasMic = !!(mClasses & INPUT_DEVICE_CLASS_MIC);
233
234 if (!isIgnored()) {
235 if (!changes) { // first time only
236 mConfiguration.clear();
237 for_each_subdevice([this](InputDeviceContext& context) {
238 PropertyMap configuration;
239 context.getConfiguration(&configuration);
240 mConfiguration.addAll(&configuration);
241 });
242 }
243
244 if (!changes || (changes & InputReaderConfiguration::CHANGE_KEYBOARD_LAYOUTS)) {
245 if (!(mClasses & INPUT_DEVICE_CLASS_VIRTUAL)) {
246 sp<KeyCharacterMap> keyboardLayout =
247 mContext->getPolicy()->getKeyboardLayoutOverlay(mIdentifier);
248 bool shouldBumpGeneration = false;
249 for_each_subdevice(
250 [&keyboardLayout, &shouldBumpGeneration](InputDeviceContext& context) {
251 if (context.setKeyboardLayoutOverlay(keyboardLayout)) {
252 shouldBumpGeneration = true;
253 }
254 });
255 if (shouldBumpGeneration) {
256 bumpGeneration();
257 }
258 }
259 }
260
261 if (!changes || (changes & InputReaderConfiguration::CHANGE_DEVICE_ALIAS)) {
262 if (!(mClasses & INPUT_DEVICE_CLASS_VIRTUAL)) {
263 std::string alias = mContext->getPolicy()->getDeviceAlias(mIdentifier);
264 if (mAlias != alias) {
265 mAlias = alias;
266 bumpGeneration();
267 }
268 }
269 }
270
271 if (!changes || (changes & InputReaderConfiguration::CHANGE_ENABLED_STATE)) {
272 auto it = config->disabledDevices.find(mId);
273 bool enabled = it == config->disabledDevices.end();
274 setEnabled(enabled, when);
275 }
276
277 if (!changes || (changes & InputReaderConfiguration::CHANGE_DISPLAY_INFO)) {
278 // In most situations, no port will be specified.
279 mAssociatedDisplayPort = std::nullopt;
280 mAssociatedViewport = std::nullopt;
281 // Find the display port that corresponds to the current input port.
282 const std::string& inputPort = mIdentifier.location;
283 if (!inputPort.empty()) {
284 const std::unordered_map<std::string, uint8_t>& ports = config->portAssociations;
285 const auto& displayPort = ports.find(inputPort);
286 if (displayPort != ports.end()) {
287 mAssociatedDisplayPort = std::make_optional(displayPort->second);
288 }
289 }
290
291 // If the device was explicitly disabled by the user, it would be present in the
292 // "disabledDevices" list. If it is associated with a specific display, and it was not
293 // explicitly disabled, then enable/disable the device based on whether we can find the
294 // corresponding viewport.
295 bool enabled = (config->disabledDevices.find(mId) == config->disabledDevices.end());
296 if (mAssociatedDisplayPort) {
297 mAssociatedViewport = config->getDisplayViewportByPort(*mAssociatedDisplayPort);
298 if (!mAssociatedViewport) {
299 ALOGW("Input device %s should be associated with display on port %" PRIu8 ", "
300 "but the corresponding viewport is not found.",
301 getName().c_str(), *mAssociatedDisplayPort);
302 enabled = false;
303 }
304 }
305
306 if (changes) {
307 // For first-time configuration, only allow device to be disabled after mappers have
308 // finished configuring. This is because we need to read some of the properties from
309 // the device's open fd.
310 setEnabled(enabled, when);
311 }
312 }
313
314 for_each_mapper([this, when, config, changes](InputMapper& mapper) {
315 mapper.configure(when, config, changes);
316 mSources |= mapper.getSources();
317 });
318
319 // If a device is just plugged but it might be disabled, we need to update some info like
320 // axis range of touch from each InputMapper first, then disable it.
321 if (!changes) {
322 setEnabled(config->disabledDevices.find(mId) == config->disabledDevices.end(), when);
323 }
324 }
325 }
326
reset(nsecs_t when)327 void InputDevice::reset(nsecs_t when) {
328 for_each_mapper([when](InputMapper& mapper) { mapper.reset(when); });
329
330 mContext->updateGlobalMetaState();
331
332 notifyReset(when);
333 }
334
process(const RawEvent * rawEvents,size_t count)335 void InputDevice::process(const RawEvent* rawEvents, size_t count) {
336 // Process all of the events in order for each mapper.
337 // We cannot simply ask each mapper to process them in bulk because mappers may
338 // have side-effects that must be interleaved. For example, joystick movement events and
339 // gamepad button presses are handled by different mappers but they should be dispatched
340 // in the order received.
341 for (const RawEvent* rawEvent = rawEvents; count != 0; rawEvent++) {
342 #if DEBUG_RAW_EVENTS
343 ALOGD("Input event: device=%d type=0x%04x code=0x%04x value=0x%08x when=%" PRId64,
344 rawEvent->deviceId, rawEvent->type, rawEvent->code, rawEvent->value, rawEvent->when);
345 #endif
346
347 if (mDropUntilNextSync) {
348 if (rawEvent->type == EV_SYN && rawEvent->code == SYN_REPORT) {
349 mDropUntilNextSync = false;
350 #if DEBUG_RAW_EVENTS
351 ALOGD("Recovered from input event buffer overrun.");
352 #endif
353 } else {
354 #if DEBUG_RAW_EVENTS
355 ALOGD("Dropped input event while waiting for next input sync.");
356 #endif
357 }
358 } else if (rawEvent->type == EV_SYN && rawEvent->code == SYN_DROPPED) {
359 ALOGI("Detected input event buffer overrun for device %s.", getName().c_str());
360 mDropUntilNextSync = true;
361 reset(rawEvent->when);
362 } else {
363 for_each_mapper_in_subdevice(rawEvent->deviceId, [rawEvent](InputMapper& mapper) {
364 mapper.process(rawEvent);
365 });
366 }
367 --count;
368 }
369 }
370
timeoutExpired(nsecs_t when)371 void InputDevice::timeoutExpired(nsecs_t when) {
372 for_each_mapper([when](InputMapper& mapper) { mapper.timeoutExpired(when); });
373 }
374
updateExternalStylusState(const StylusState & state)375 void InputDevice::updateExternalStylusState(const StylusState& state) {
376 for_each_mapper([state](InputMapper& mapper) { mapper.updateExternalStylusState(state); });
377 }
378
getDeviceInfo(InputDeviceInfo * outDeviceInfo)379 void InputDevice::getDeviceInfo(InputDeviceInfo* outDeviceInfo) {
380 outDeviceInfo->initialize(mId, mGeneration, mControllerNumber, mIdentifier, mAlias, mIsExternal,
381 mHasMic);
382 for_each_mapper(
383 [outDeviceInfo](InputMapper& mapper) { mapper.populateDeviceInfo(outDeviceInfo); });
384 }
385
getKeyCodeState(uint32_t sourceMask,int32_t keyCode)386 int32_t InputDevice::getKeyCodeState(uint32_t sourceMask, int32_t keyCode) {
387 return getState(sourceMask, keyCode, &InputMapper::getKeyCodeState);
388 }
389
getScanCodeState(uint32_t sourceMask,int32_t scanCode)390 int32_t InputDevice::getScanCodeState(uint32_t sourceMask, int32_t scanCode) {
391 return getState(sourceMask, scanCode, &InputMapper::getScanCodeState);
392 }
393
getSwitchState(uint32_t sourceMask,int32_t switchCode)394 int32_t InputDevice::getSwitchState(uint32_t sourceMask, int32_t switchCode) {
395 return getState(sourceMask, switchCode, &InputMapper::getSwitchState);
396 }
397
getState(uint32_t sourceMask,int32_t code,GetStateFunc getStateFunc)398 int32_t InputDevice::getState(uint32_t sourceMask, int32_t code, GetStateFunc getStateFunc) {
399 int32_t result = AKEY_STATE_UNKNOWN;
400 for (auto& deviceEntry : mDevices) {
401 auto& devicePair = deviceEntry.second;
402 auto& mappers = devicePair.second;
403 for (auto& mapperPtr : mappers) {
404 InputMapper& mapper = *mapperPtr;
405 if (sourcesMatchMask(mapper.getSources(), sourceMask)) {
406 // If any mapper reports AKEY_STATE_DOWN or AKEY_STATE_VIRTUAL, return that
407 // value. Otherwise, return AKEY_STATE_UP as long as one mapper reports it.
408 int32_t currentResult = (mapper.*getStateFunc)(sourceMask, code);
409 if (currentResult >= AKEY_STATE_DOWN) {
410 return currentResult;
411 } else if (currentResult == AKEY_STATE_UP) {
412 result = currentResult;
413 }
414 }
415 }
416 }
417 return result;
418 }
419
markSupportedKeyCodes(uint32_t sourceMask,size_t numCodes,const int32_t * keyCodes,uint8_t * outFlags)420 bool InputDevice::markSupportedKeyCodes(uint32_t sourceMask, size_t numCodes,
421 const int32_t* keyCodes, uint8_t* outFlags) {
422 bool result = false;
423 for_each_mapper([&result, sourceMask, numCodes, keyCodes, outFlags](InputMapper& mapper) {
424 if (sourcesMatchMask(mapper.getSources(), sourceMask)) {
425 result |= mapper.markSupportedKeyCodes(sourceMask, numCodes, keyCodes, outFlags);
426 }
427 });
428 return result;
429 }
430
vibrate(const nsecs_t * pattern,size_t patternSize,ssize_t repeat,int32_t token)431 void InputDevice::vibrate(const nsecs_t* pattern, size_t patternSize, ssize_t repeat,
432 int32_t token) {
433 for_each_mapper([pattern, patternSize, repeat, token](InputMapper& mapper) {
434 mapper.vibrate(pattern, patternSize, repeat, token);
435 });
436 }
437
cancelVibrate(int32_t token)438 void InputDevice::cancelVibrate(int32_t token) {
439 for_each_mapper([token](InputMapper& mapper) { mapper.cancelVibrate(token); });
440 }
441
cancelTouch(nsecs_t when)442 void InputDevice::cancelTouch(nsecs_t when) {
443 for_each_mapper([when](InputMapper& mapper) { mapper.cancelTouch(when); });
444 }
445
getMetaState()446 int32_t InputDevice::getMetaState() {
447 int32_t result = 0;
448 for_each_mapper([&result](InputMapper& mapper) { result |= mapper.getMetaState(); });
449 return result;
450 }
451
updateMetaState(int32_t keyCode)452 void InputDevice::updateMetaState(int32_t keyCode) {
453 for_each_mapper([keyCode](InputMapper& mapper) { mapper.updateMetaState(keyCode); });
454 }
455
bumpGeneration()456 void InputDevice::bumpGeneration() {
457 mGeneration = mContext->bumpGeneration();
458 }
459
notifyReset(nsecs_t when)460 void InputDevice::notifyReset(nsecs_t when) {
461 NotifyDeviceResetArgs args(mContext->getNextId(), when, mId);
462 mContext->getListener()->notifyDeviceReset(&args);
463 }
464
getAssociatedDisplayId()465 std::optional<int32_t> InputDevice::getAssociatedDisplayId() {
466 // Check if we had associated to the specific display.
467 if (mAssociatedViewport) {
468 return mAssociatedViewport->displayId;
469 }
470
471 // No associated display port, check if some InputMapper is associated.
472 return first_in_mappers<int32_t>(
473 [](InputMapper& mapper) { return mapper.getAssociatedDisplayId(); });
474 }
475
476 // returns the number of mappers associated with the device
getMapperCount()477 size_t InputDevice::getMapperCount() {
478 size_t count = 0;
479 for (auto& deviceEntry : mDevices) {
480 auto& devicePair = deviceEntry.second;
481 auto& mappers = devicePair.second;
482 count += mappers.size();
483 }
484 return count;
485 }
486
InputDeviceContext(InputDevice & device,int32_t eventHubId)487 InputDeviceContext::InputDeviceContext(InputDevice& device, int32_t eventHubId)
488 : mDevice(device),
489 mContext(device.getContext()),
490 mEventHub(device.getContext()->getEventHub()),
491 mId(eventHubId),
492 mDeviceId(device.getId()) {}
493
~InputDeviceContext()494 InputDeviceContext::~InputDeviceContext() {}
495
496 } // namespace android
497