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 "DebugConfig.h"
18 #include "input/InputDevice.h"
19
20 #include "InputState.h"
21
22 #include <cinttypes>
23 #include "InputDispatcher.h"
24
25 namespace android::inputdispatcher {
26
InputState(const IdGenerator & idGenerator)27 InputState::InputState(const IdGenerator& idGenerator) : mIdGenerator(idGenerator) {}
28
~InputState()29 InputState::~InputState() {}
30
isHovering(DeviceId deviceId,uint32_t source,ui::LogicalDisplayId displayId) const31 bool InputState::isHovering(DeviceId deviceId, uint32_t source,
32 ui::LogicalDisplayId displayId) const {
33 for (const MotionMemento& memento : mMotionMementos) {
34 if (memento.deviceId == deviceId && memento.source == source &&
35 memento.displayId == displayId && memento.hovering) {
36 return true;
37 }
38 }
39 return false;
40 }
41
trackKey(const KeyEntry & entry,int32_t flags)42 bool InputState::trackKey(const KeyEntry& entry, int32_t flags) {
43 switch (entry.action) {
44 case AKEY_EVENT_ACTION_UP: {
45 if (entry.flags & AKEY_EVENT_FLAG_FALLBACK) {
46 std::erase_if(mFallbackKeys,
47 [&entry](const auto& item) { return item.second == entry.keyCode; });
48 }
49 ssize_t index = findKeyMemento(entry);
50 if (index >= 0) {
51 mKeyMementos.erase(mKeyMementos.begin() + index);
52 return true;
53 }
54 /* FIXME: We can't just drop the key up event because that prevents creating
55 * popup windows that are automatically shown when a key is held and then
56 * dismissed when the key is released. The problem is that the popup will
57 * not have received the original key down, so the key up will be considered
58 * to be inconsistent with its observed state. We could perhaps handle this
59 * by synthesizing a key down but that will cause other problems.
60 *
61 * So for now, allow inconsistent key up events to be dispatched.
62 *
63 #if DEBUG_OUTBOUND_EVENT_DETAILS
64 ALOGD("Dropping inconsistent key up event: deviceId=%d, source=%08x, "
65 "keyCode=%d, scanCode=%d",
66 entry.deviceId, entry.source, entry.keyCode, entry.scanCode);
67 #endif
68 return false;
69 */
70 return true;
71 }
72
73 case AKEY_EVENT_ACTION_DOWN: {
74 ssize_t index = findKeyMemento(entry);
75 if (index >= 0) {
76 mKeyMementos.erase(mKeyMementos.begin() + index);
77 }
78 addKeyMemento(entry, flags);
79 return true;
80 }
81
82 default:
83 return true;
84 }
85 }
86
87 /**
88 * Return:
89 * true if the incoming event was correctly tracked,
90 * false if the incoming event should be dropped.
91 */
trackMotion(const MotionEntry & entry,int32_t flags)92 bool InputState::trackMotion(const MotionEntry& entry, int32_t flags) {
93 // Don't track non-pointer events
94 if (!isFromSource(entry.source, AINPUT_SOURCE_CLASS_POINTER)) {
95 // This is a focus-dispatched event; we don't track its state.
96 return true;
97 }
98
99 if (!input_flags::enable_multi_device_same_window_stream()) {
100 if (!mMotionMementos.empty()) {
101 const MotionMemento& lastMemento = mMotionMementos.back();
102 if (isStylusEvent(lastMemento.source, lastMemento.pointerProperties) &&
103 !isStylusEvent(entry.source, entry.pointerProperties)) {
104 // We already have a stylus stream, and the new event is not from stylus.
105 return false;
106 }
107 }
108 }
109
110 int32_t actionMasked = entry.action & AMOTION_EVENT_ACTION_MASK;
111 switch (actionMasked) {
112 case AMOTION_EVENT_ACTION_UP:
113 case AMOTION_EVENT_ACTION_CANCEL: {
114 ssize_t index = findMotionMemento(entry, /*hovering=*/false);
115 if (index >= 0) {
116 mMotionMementos.erase(mMotionMementos.begin() + index);
117 return true;
118 }
119
120 return false;
121 }
122
123 case AMOTION_EVENT_ACTION_DOWN: {
124 ssize_t index = findMotionMemento(entry, /*hovering=*/false);
125 if (index >= 0) {
126 mMotionMementos.erase(mMotionMementos.begin() + index);
127 }
128 addMotionMemento(entry, flags, /*hovering=*/false);
129 return true;
130 }
131
132 case AMOTION_EVENT_ACTION_POINTER_UP:
133 case AMOTION_EVENT_ACTION_POINTER_DOWN:
134 case AMOTION_EVENT_ACTION_MOVE: {
135 if (entry.source & AINPUT_SOURCE_CLASS_NAVIGATION) {
136 // Trackballs can send MOVE events with a corresponding DOWN or UP. There's no need
137 // to generate cancellation events for these since they're based in relative rather
138 // than absolute units.
139 return true;
140 }
141
142 ssize_t index = findMotionMemento(entry, /*hovering=*/false);
143
144 if (entry.source & AINPUT_SOURCE_CLASS_JOYSTICK) {
145 // Joysticks can send MOVE events without a corresponding DOWN or UP. Since all
146 // joystick axes are normalized to [-1, 1] we can trust that 0 means it's neutral.
147 // Any other value and we need to track the motion so we can send cancellation
148 // events for anything generating fallback events (e.g. DPad keys for joystick
149 // movements).
150 if (index >= 0) {
151 if (entry.pointerCoords[0].isEmpty()) {
152 mMotionMementos.erase(mMotionMementos.begin() + index);
153 } else {
154 MotionMemento& memento = mMotionMementos[index];
155 memento.setPointers(entry);
156 }
157 } else if (!entry.pointerCoords[0].isEmpty()) {
158 addMotionMemento(entry, flags, /*hovering=*/false);
159 }
160
161 // Joysticks and trackballs can send MOVE events without corresponding DOWN or UP.
162 return true;
163 }
164
165 if (index >= 0) {
166 MotionMemento& memento = mMotionMementos[index];
167 if (memento.firstNewPointerIdx < 0) {
168 memento.setPointers(entry);
169 return true;
170 }
171 }
172
173 return false;
174 }
175
176 case AMOTION_EVENT_ACTION_HOVER_EXIT: {
177 ssize_t index = findMotionMemento(entry, /*hovering=*/true);
178 if (index >= 0) {
179 mMotionMementos.erase(mMotionMementos.begin() + index);
180 return true;
181 }
182
183 return false;
184 }
185
186 case AMOTION_EVENT_ACTION_HOVER_ENTER:
187 case AMOTION_EVENT_ACTION_HOVER_MOVE: {
188 ssize_t index = findMotionMemento(entry, /*hovering=*/true);
189 if (index >= 0) {
190 mMotionMementos.erase(mMotionMementos.begin() + index);
191 }
192 addMotionMemento(entry, flags, /*hovering=*/true);
193 return true;
194 }
195
196 default:
197 return true;
198 }
199 }
200
201 std::optional<std::pair<std::vector<PointerProperties>, std::vector<PointerCoords>>>
getPointersOfLastEvent(const MotionEntry & entry,bool hovering) const202 InputState::getPointersOfLastEvent(const MotionEntry& entry, bool hovering) const {
203 ssize_t index = findMotionMemento(entry, hovering);
204 if (index == -1) {
205 return std::nullopt;
206 }
207 return std::make_pair(mMotionMementos[index].pointerProperties,
208 mMotionMementos[index].pointerCoords);
209 }
210
findKeyMemento(const KeyEntry & entry) const211 ssize_t InputState::findKeyMemento(const KeyEntry& entry) const {
212 for (size_t i = 0; i < mKeyMementos.size(); i++) {
213 const KeyMemento& memento = mKeyMementos[i];
214 if (memento.deviceId == entry.deviceId && memento.source == entry.source &&
215 memento.displayId == entry.displayId && memento.keyCode == entry.keyCode &&
216 memento.scanCode == entry.scanCode) {
217 return i;
218 }
219 }
220 return -1;
221 }
222
findMotionMemento(const MotionEntry & entry,bool hovering) const223 ssize_t InputState::findMotionMemento(const MotionEntry& entry, bool hovering) const {
224 for (size_t i = 0; i < mMotionMementos.size(); i++) {
225 const MotionMemento& memento = mMotionMementos[i];
226 if (memento.deviceId == entry.deviceId && memento.source == entry.source &&
227 memento.displayId == entry.displayId && memento.hovering == hovering) {
228 return i;
229 }
230 }
231 return -1;
232 }
233
addKeyMemento(const KeyEntry & entry,int32_t flags)234 void InputState::addKeyMemento(const KeyEntry& entry, int32_t flags) {
235 KeyMemento memento;
236 memento.deviceId = entry.deviceId;
237 memento.source = entry.source;
238 memento.displayId = entry.displayId;
239 memento.keyCode = entry.keyCode;
240 memento.scanCode = entry.scanCode;
241 memento.metaState = entry.metaState;
242 memento.flags = flags;
243 memento.downTime = entry.downTime;
244 memento.policyFlags = entry.policyFlags;
245 mKeyMementos.push_back(memento);
246 }
247
addMotionMemento(const MotionEntry & entry,int32_t flags,bool hovering)248 void InputState::addMotionMemento(const MotionEntry& entry, int32_t flags, bool hovering) {
249 MotionMemento memento;
250 memento.deviceId = entry.deviceId;
251 memento.source = entry.source;
252 memento.displayId = entry.displayId;
253 memento.flags = flags;
254 memento.xPrecision = entry.xPrecision;
255 memento.yPrecision = entry.yPrecision;
256 memento.xCursorPosition = entry.xCursorPosition;
257 memento.yCursorPosition = entry.yCursorPosition;
258 memento.downTime = entry.downTime;
259 memento.setPointers(entry);
260 memento.hovering = hovering;
261 memento.policyFlags = entry.policyFlags;
262 mMotionMementos.push_back(memento);
263 }
264
setPointers(const MotionEntry & entry)265 void InputState::MotionMemento::setPointers(const MotionEntry& entry) {
266 pointerProperties.clear();
267 pointerCoords.clear();
268
269 for (uint32_t i = 0; i < entry.getPointerCount(); i++) {
270 if (MotionEvent::getActionMasked(entry.action) == AMOTION_EVENT_ACTION_POINTER_UP) {
271 // In POINTER_UP events, the pointer is leaving. Since the action is not stored,
272 // this departing pointer should not be recorded.
273 const uint8_t actionIndex = MotionEvent::getActionIndex(entry.action);
274 if (i == actionIndex) {
275 continue;
276 }
277 }
278 pointerProperties.push_back(entry.pointerProperties[i]);
279 pointerCoords.push_back(entry.pointerCoords[i]);
280 }
281 }
282
mergePointerStateTo(MotionMemento & other) const283 void InputState::MotionMemento::mergePointerStateTo(MotionMemento& other) const {
284 for (uint32_t i = 0; i < getPointerCount(); i++) {
285 if (other.firstNewPointerIdx < 0) {
286 other.firstNewPointerIdx = other.getPointerCount();
287 }
288 other.pointerProperties.push_back(pointerProperties[i]);
289 other.pointerCoords.push_back(pointerCoords[i]);
290 }
291 }
292
getPointerCount() const293 size_t InputState::MotionMemento::getPointerCount() const {
294 return pointerProperties.size();
295 }
296
shouldCancelPreviousStream(const MotionEntry & motionEntry) const297 bool InputState::shouldCancelPreviousStream(const MotionEntry& motionEntry) const {
298 if (!isFromSource(motionEntry.source, AINPUT_SOURCE_CLASS_POINTER)) {
299 // This is a focus-dispatched event that should not affect the previous stream.
300 return false;
301 }
302
303 // New MotionEntry pointer event is coming in.
304
305 // If this is a new gesture, and it's from a different device, then, in general, we will cancel
306 // the current gesture.
307 // However, because stylus should be preferred over touch, we need to treat some cases in a
308 // special way.
309 if (mMotionMementos.empty()) {
310 // There is no ongoing pointer gesture, so there is nothing to cancel
311 return false;
312 }
313
314 const MotionMemento& lastMemento = mMotionMementos.back();
315 const int32_t actionMasked = MotionEvent::getActionMasked(motionEntry.action);
316
317 // For compatibility, only one input device can be active at a time in the same window.
318 if (lastMemento.deviceId == motionEntry.deviceId) {
319 // In general, the same device should produce self-consistent streams so nothing needs to
320 // be canceled. But there is one exception:
321 // Sometimes ACTION_DOWN is received without a corresponding HOVER_EXIT. To account for
322 // that, cancel the previous hovering stream
323 if (actionMasked == AMOTION_EVENT_ACTION_DOWN && lastMemento.hovering) {
324 return true;
325 }
326
327 // If the stream changes its source, just cancel the current gesture to be safe. It's
328 // possible that the app isn't handling source changes properly
329 if (motionEntry.source != lastMemento.source) {
330 LOG(INFO) << "Canceling stream: last source was "
331 << inputEventSourceToString(lastMemento.source) << " and new event is "
332 << motionEntry;
333 return true;
334 }
335
336 // If the injection is happening into two different displays, the same injected device id
337 // could be going into both. And at this time, if mirroring is active, the same connection
338 // would receive different events from each display. Since the TouchStates are per-display,
339 // it's unlikely that those two streams would be consistent with each other. Therefore,
340 // cancel the previous gesture if the display id changes.
341 if (motionEntry.displayId != lastMemento.displayId) {
342 LOG(INFO) << "Canceling stream: last displayId was " << lastMemento.displayId
343 << " and new event is " << motionEntry;
344 return true;
345 }
346
347 return false;
348 }
349
350 if (!input_flags::enable_multi_device_same_window_stream()) {
351 if (isStylusEvent(lastMemento.source, lastMemento.pointerProperties)) {
352 // A stylus is already active.
353 if (isStylusEvent(motionEntry.source, motionEntry.pointerProperties) &&
354 actionMasked == AMOTION_EVENT_ACTION_DOWN) {
355 // If this new event is from a different device, then cancel the old
356 // stylus and allow the new stylus to take over, but only if it's going down.
357 // Otherwise, they will start to race each other.
358 return true;
359 }
360
361 // Keep the current stylus gesture.
362 return false;
363 }
364
365 // Cancel the current gesture if this is a start of a new gesture from a new device.
366 if (actionMasked == AMOTION_EVENT_ACTION_DOWN ||
367 actionMasked == AMOTION_EVENT_ACTION_HOVER_ENTER) {
368 return true;
369 }
370 }
371 // By default, don't cancel any events.
372 return false;
373 }
374
cancelConflictingInputStream(const MotionEntry & motionEntry)375 std::unique_ptr<EventEntry> InputState::cancelConflictingInputStream(
376 const MotionEntry& motionEntry) {
377 if (!shouldCancelPreviousStream(motionEntry)) {
378 return {};
379 }
380
381 const MotionMemento& memento = mMotionMementos.back();
382
383 // Cancel the last device stream
384 std::unique_ptr<MotionEntry> cancelEntry =
385 createCancelEntryForMemento(memento, motionEntry.eventTime);
386
387 if (!trackMotion(*cancelEntry, cancelEntry->flags)) {
388 LOG(FATAL) << "Generated inconsistent cancel event!";
389 }
390 return cancelEntry;
391 }
392
createCancelEntryForMemento(const MotionMemento & memento,nsecs_t eventTime) const393 std::unique_ptr<MotionEntry> InputState::createCancelEntryForMemento(const MotionMemento& memento,
394 nsecs_t eventTime) const {
395 const int32_t action =
396 memento.hovering ? AMOTION_EVENT_ACTION_HOVER_EXIT : AMOTION_EVENT_ACTION_CANCEL;
397 int32_t flags = memento.flags;
398 if (action == AMOTION_EVENT_ACTION_CANCEL) {
399 flags |= AMOTION_EVENT_FLAG_CANCELED;
400 }
401 return std::make_unique<MotionEntry>(mIdGenerator.nextId(), /*injectionState=*/nullptr,
402 eventTime, memento.deviceId, memento.source,
403 memento.displayId, memento.policyFlags, action,
404 /*actionButton=*/0, flags, AMETA_NONE,
405 /*buttonState=*/0, MotionClassification::NONE,
406 AMOTION_EVENT_EDGE_FLAG_NONE, memento.xPrecision,
407 memento.yPrecision, memento.xCursorPosition,
408 memento.yCursorPosition, memento.downTime,
409 memento.pointerProperties, memento.pointerCoords);
410 }
411
synthesizeCancelationEvents(nsecs_t currentTime,const CancelationOptions & options)412 std::vector<std::unique_ptr<EventEntry>> InputState::synthesizeCancelationEvents(
413 nsecs_t currentTime, const CancelationOptions& options) {
414 std::vector<std::unique_ptr<EventEntry>> events;
415 for (KeyMemento& memento : mKeyMementos) {
416 if (shouldCancelKey(memento, options)) {
417 events.push_back(
418 std::make_unique<KeyEntry>(mIdGenerator.nextId(), /*injectionState=*/nullptr,
419 currentTime, memento.deviceId, memento.source,
420 memento.displayId, memento.policyFlags,
421 AKEY_EVENT_ACTION_UP,
422 memento.flags | AKEY_EVENT_FLAG_CANCELED,
423 memento.keyCode, memento.scanCode, memento.metaState,
424 /*repeatCount=*/0, memento.downTime));
425 }
426 }
427
428 for (const MotionMemento& memento : mMotionMementos) {
429 if (shouldCancelMotion(memento, options)) {
430 if (options.pointerIds == std::nullopt) {
431 events.push_back(createCancelEntryForMemento(memento, currentTime));
432 } else {
433 std::vector<std::unique_ptr<MotionEntry>> pointerCancelEvents =
434 synthesizeCancelationEventsForPointers(memento, options.pointerIds.value(),
435 currentTime);
436 events.insert(events.end(), std::make_move_iterator(pointerCancelEvents.begin()),
437 std::make_move_iterator(pointerCancelEvents.end()));
438 }
439 }
440 }
441 return events;
442 }
443
synthesizePointerDownEvents(nsecs_t currentTime)444 std::vector<std::unique_ptr<EventEntry>> InputState::synthesizePointerDownEvents(
445 nsecs_t currentTime) {
446 std::vector<std::unique_ptr<EventEntry>> events;
447 for (MotionMemento& memento : mMotionMementos) {
448 if (!isFromSource(memento.source, AINPUT_SOURCE_CLASS_POINTER)) {
449 continue;
450 }
451
452 if (memento.firstNewPointerIdx < 0) {
453 continue;
454 }
455
456 std::vector<PointerProperties> pointerProperties;
457 std::vector<PointerCoords> pointerCoords;
458
459 // We will deliver all pointers the target already knows about
460 for (uint32_t i = 0; i < static_cast<uint32_t>(memento.firstNewPointerIdx); i++) {
461 pointerProperties.push_back(memento.pointerProperties[i]);
462 pointerCoords.push_back(memento.pointerCoords[i]);
463 }
464
465 // We will send explicit events for all pointers the target doesn't know about
466 for (uint32_t i = static_cast<uint32_t>(memento.firstNewPointerIdx);
467 i < memento.getPointerCount(); i++) {
468 pointerProperties.push_back(memento.pointerProperties[i]);
469 pointerCoords.push_back(memento.pointerCoords[i]);
470
471 const size_t pointerCount = pointerProperties.size();
472
473 // Down only if the first pointer, pointer down otherwise
474 const int32_t action = (pointerCount <= 1)
475 ? AMOTION_EVENT_ACTION_DOWN
476 : AMOTION_EVENT_ACTION_POINTER_DOWN
477 | (i << AMOTION_EVENT_ACTION_POINTER_INDEX_SHIFT);
478
479 events.push_back(
480 std::make_unique<MotionEntry>(mIdGenerator.nextId(), /*injectionState=*/nullptr,
481 currentTime, memento.deviceId, memento.source,
482 memento.displayId, memento.policyFlags, action,
483 /*actionButton=*/0, memento.flags, AMETA_NONE,
484 /*buttonState=*/0, MotionClassification::NONE,
485 AMOTION_EVENT_EDGE_FLAG_NONE, memento.xPrecision,
486 memento.yPrecision, memento.xCursorPosition,
487 memento.yCursorPosition, memento.downTime,
488 pointerProperties, pointerCoords));
489 }
490
491 memento.firstNewPointerIdx = INVALID_POINTER_INDEX;
492 }
493
494 return events;
495 }
496
synthesizeCancelationEventsForPointers(const MotionMemento & memento,std::bitset<MAX_POINTER_ID+1> pointerIds,nsecs_t currentTime)497 std::vector<std::unique_ptr<MotionEntry>> InputState::synthesizeCancelationEventsForPointers(
498 const MotionMemento& memento, std::bitset<MAX_POINTER_ID + 1> pointerIds,
499 nsecs_t currentTime) {
500 std::vector<std::unique_ptr<MotionEntry>> events;
501 std::vector<uint32_t> canceledPointerIndices;
502
503 for (uint32_t pointerIdx = 0; pointerIdx < memento.getPointerCount(); pointerIdx++) {
504 uint32_t pointerId = uint32_t(memento.pointerProperties[pointerIdx].id);
505 if (pointerIds.test(pointerId)) {
506 canceledPointerIndices.push_back(pointerIdx);
507 }
508 }
509
510 if (canceledPointerIndices.size() == memento.getPointerCount()) {
511 // We are cancelling all pointers.
512 events.emplace_back(createCancelEntryForMemento(memento, currentTime));
513 return events;
514 }
515
516 // If we aren't canceling all pointers, we need to generate ACTION_POINTER_UP with
517 // FLAG_CANCELED for each of the canceled pointers. For each event, we must remove the
518 // previously canceled pointers from PointerProperties and PointerCoords, and update
519 // pointerCount appropriately. For convenience, sort the canceled pointer indices in
520 // descending order so that we can just slide the remaining pointers to the beginning of
521 // the array when a pointer is canceled.
522 std::sort(canceledPointerIndices.begin(), canceledPointerIndices.end(),
523 std::greater<uint32_t>());
524
525 std::vector<PointerProperties> pointerProperties = memento.pointerProperties;
526 std::vector<PointerCoords> pointerCoords = memento.pointerCoords;
527 for (const uint32_t pointerIdx : canceledPointerIndices) {
528 if (pointerProperties.size() <= 1) {
529 LOG(FATAL) << "Unexpected code path for canceling all pointers!";
530 }
531 const int32_t action = AMOTION_EVENT_ACTION_POINTER_UP |
532 (pointerIdx << AMOTION_EVENT_ACTION_POINTER_INDEX_SHIFT);
533 events.push_back(
534 std::make_unique<MotionEntry>(mIdGenerator.nextId(), /*injectionState=*/nullptr,
535 currentTime, memento.deviceId, memento.source,
536 memento.displayId, memento.policyFlags, action,
537 /*actionButton=*/0,
538 memento.flags | AMOTION_EVENT_FLAG_CANCELED,
539 AMETA_NONE, /*buttonState=*/0,
540 MotionClassification::NONE,
541 AMOTION_EVENT_EDGE_FLAG_NONE, memento.xPrecision,
542 memento.yPrecision, memento.xCursorPosition,
543 memento.yCursorPosition, memento.downTime,
544 pointerProperties, pointerCoords));
545
546 // Cleanup pointer information
547 pointerProperties.erase(pointerProperties.begin() + pointerIdx);
548 pointerCoords.erase(pointerCoords.begin() + pointerIdx);
549 }
550 return events;
551 }
552
clear()553 void InputState::clear() {
554 mKeyMementos.clear();
555 mMotionMementos.clear();
556 mFallbackKeys.clear();
557 }
558
mergePointerStateTo(InputState & other)559 void InputState::mergePointerStateTo(InputState& other) {
560 for (size_t i = 0; i < mMotionMementos.size(); i++) {
561 MotionMemento& memento = mMotionMementos[i];
562 // Since we support split pointers we need to merge touch events
563 // from the same source + device + screen.
564 if (isFromSource(memento.source, AINPUT_SOURCE_CLASS_POINTER)) {
565 bool merged = false;
566 for (size_t j = 0; j < other.mMotionMementos.size(); j++) {
567 MotionMemento& otherMemento = other.mMotionMementos[j];
568 if (memento.deviceId == otherMemento.deviceId &&
569 memento.source == otherMemento.source &&
570 memento.displayId == otherMemento.displayId) {
571 memento.mergePointerStateTo(otherMemento);
572 merged = true;
573 break;
574 }
575 }
576 if (!merged) {
577 memento.firstNewPointerIdx = 0;
578 other.mMotionMementos.push_back(memento);
579 }
580 }
581 }
582 }
583
getFallbackKey(int32_t originalKeyCode)584 std::optional<int32_t> InputState::getFallbackKey(int32_t originalKeyCode) {
585 auto it = mFallbackKeys.find(originalKeyCode);
586 if (it == mFallbackKeys.end()) {
587 return {};
588 }
589 return it->second;
590 }
591
setFallbackKey(int32_t originalKeyCode,int32_t fallbackKeyCode)592 void InputState::setFallbackKey(int32_t originalKeyCode, int32_t fallbackKeyCode) {
593 mFallbackKeys.insert_or_assign(originalKeyCode, fallbackKeyCode);
594 }
595
removeFallbackKey(int32_t originalKeyCode)596 void InputState::removeFallbackKey(int32_t originalKeyCode) {
597 mFallbackKeys.erase(originalKeyCode);
598 }
599
shouldCancelKey(const KeyMemento & memento,const CancelationOptions & options)600 bool InputState::shouldCancelKey(const KeyMemento& memento, const CancelationOptions& options) {
601 if (options.keyCode && memento.keyCode != options.keyCode.value()) {
602 return false;
603 }
604
605 if (options.deviceId && memento.deviceId != options.deviceId.value()) {
606 return false;
607 }
608
609 if (options.displayId && memento.displayId != options.displayId.value()) {
610 return false;
611 }
612
613 switch (options.mode) {
614 case CancelationOptions::Mode::CANCEL_ALL_EVENTS:
615 case CancelationOptions::Mode::CANCEL_NON_POINTER_EVENTS:
616 return true;
617 case CancelationOptions::Mode::CANCEL_FALLBACK_EVENTS:
618 return memento.flags & AKEY_EVENT_FLAG_FALLBACK;
619 default:
620 return false;
621 }
622 }
623
shouldCancelMotion(const MotionMemento & memento,const CancelationOptions & options)624 bool InputState::shouldCancelMotion(const MotionMemento& memento,
625 const CancelationOptions& options) {
626 if (options.deviceId && memento.deviceId != options.deviceId.value()) {
627 return false;
628 }
629
630 if (options.displayId && memento.displayId != options.displayId.value()) {
631 return false;
632 }
633
634 switch (options.mode) {
635 case CancelationOptions::Mode::CANCEL_ALL_EVENTS:
636 return true;
637 case CancelationOptions::Mode::CANCEL_POINTER_EVENTS:
638 return memento.source & AINPUT_SOURCE_CLASS_POINTER;
639 case CancelationOptions::Mode::CANCEL_NON_POINTER_EVENTS:
640 return !(memento.source & AINPUT_SOURCE_CLASS_POINTER);
641 default:
642 return false;
643 }
644 }
645
operator <<(std::ostream & out,const InputState & state)646 std::ostream& operator<<(std::ostream& out, const InputState& state) {
647 if (!state.mMotionMementos.empty()) {
648 out << "mMotionMementos: ";
649 for (const InputState::MotionMemento& memento : state.mMotionMementos) {
650 out << "{deviceId= " << memento.deviceId << ", hovering=" << memento.hovering << "}, ";
651 }
652 }
653 return out;
654 }
655
656 } // namespace android::inputdispatcher
657