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Jeff Brown5912f952013-07-01 19:10:31 -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 */
16
17#ifndef _LIBINPUT_INPUT_H
18#define _LIBINPUT_INPUT_H
19
20/**
21 * Native input event structures.
22 */
23
24#include <android/input.h>
Michael Wrightd0bd3912014-03-19 12:06:10 -070025#include <utils/BitSet.h>
Jeff Brown5912f952013-07-01 19:10:31 -070026#include <utils/KeyedVector.h>
Jeff Brown5912f952013-07-01 19:10:31 -070027#include <utils/RefBase.h>
28#include <utils/String8.h>
Michael Wrightd0bd3912014-03-19 12:06:10 -070029#include <utils/Timers.h>
30#include <utils/Vector.h>
Jeff Brown5912f952013-07-01 19:10:31 -070031
Jeff Brown5912f952013-07-01 19:10:31 -070032/*
33 * Additional private constants not defined in ndk/ui/input.h.
34 */
35enum {
36 /* Signifies that the key is being predispatched */
37 AKEY_EVENT_FLAG_PREDISPATCH = 0x20000000,
38
39 /* Private control to determine when an app is tracking a key sequence. */
40 AKEY_EVENT_FLAG_START_TRACKING = 0x40000000,
41
42 /* Key event is inconsistent with previously sent key events. */
43 AKEY_EVENT_FLAG_TAINTED = 0x80000000,
44};
45
46enum {
47 /* Motion event is inconsistent with previously sent motion events. */
48 AMOTION_EVENT_FLAG_TAINTED = 0x80000000,
49};
50
51enum {
52 /* Used when a motion event is not associated with any display.
53 * Typically used for non-pointer events. */
54 ADISPLAY_ID_NONE = -1,
55
56 /* The default display id. */
57 ADISPLAY_ID_DEFAULT = 0,
58};
59
60enum {
61 /*
62 * Indicates that an input device has switches.
63 * This input source flag is hidden from the API because switches are only used by the system
64 * and applications have no way to interact with them.
65 */
66 AINPUT_SOURCE_SWITCH = 0x80000000,
67};
68
Michael Wright962a1082013-10-17 17:35:53 -070069enum {
70 /**
71 * Constants for LEDs. Hidden from the API since we don't actually expose a way to interact
72 * with LEDs to developers
73 *
74 * NOTE: If you add LEDs here, you must also add them to KeycodeLabels.h
75 */
76
77 ALED_NUM_LOCK = 0x00,
78 ALED_CAPS_LOCK = 0x01,
79 ALED_SCROLL_LOCK = 0x02,
80 ALED_COMPOSE = 0x03,
81 ALED_KANA = 0x04,
82 ALED_SLEEP = 0x05,
83 ALED_SUSPEND = 0x06,
84 ALED_MUTE = 0x07,
85 ALED_MISC = 0x08,
86 ALED_MAIL = 0x09,
87 ALED_CHARGING = 0x0a,
88 ALED_CONTROLLER_1 = 0x10,
89 ALED_CONTROLLER_2 = 0x11,
90 ALED_CONTROLLER_3 = 0x12,
91 ALED_CONTROLLER_4 = 0x13,
92};
93
Michael Wright9b04f862013-10-18 17:53:50 -070094/* Maximum number of controller LEDs we support */
95#define MAX_CONTROLLER_LEDS 4
96
Jeff Brown5912f952013-07-01 19:10:31 -070097/*
98 * SystemUiVisibility constants from View.
99 */
100enum {
101 ASYSTEM_UI_VISIBILITY_STATUS_BAR_VISIBLE = 0,
102 ASYSTEM_UI_VISIBILITY_STATUS_BAR_HIDDEN = 0x00000001,
103};
104
105/*
106 * Maximum number of pointers supported per motion event.
107 * Smallest number of pointers is 1.
108 * (We want at least 10 but some touch controllers obstensibly configured for 10 pointers
109 * will occasionally emit 11. There is not much harm making this constant bigger.)
110 */
111#define MAX_POINTERS 16
112
113/*
114 * Maximum pointer id value supported in a motion event.
115 * Smallest pointer id is 0.
116 * (This is limited by our use of BitSet32 to track pointer assignments.)
117 */
118#define MAX_POINTER_ID 31
119
120/*
121 * Declare a concrete type for the NDK's input event forward declaration.
122 */
123struct AInputEvent {
124 virtual ~AInputEvent() { }
125};
126
127/*
128 * Declare a concrete type for the NDK's input device forward declaration.
129 */
130struct AInputDevice {
131 virtual ~AInputDevice() { }
132};
133
134
135namespace android {
136
137#ifdef HAVE_ANDROID_OS
138class Parcel;
139#endif
140
141/*
142 * Flags that flow alongside events in the input dispatch system to help with certain
143 * policy decisions such as waking from device sleep.
144 *
145 * These flags are also defined in frameworks/base/core/java/android/view/WindowManagerPolicy.java.
146 */
147enum {
148 /* These flags originate in RawEvents and are generally set in the key map.
149 * NOTE: If you edit these flags, also edit labels in KeycodeLabels.h. */
150
151 POLICY_FLAG_WAKE = 0x00000001,
152 POLICY_FLAG_WAKE_DROPPED = 0x00000002,
153 POLICY_FLAG_SHIFT = 0x00000004,
154 POLICY_FLAG_CAPS_LOCK = 0x00000008,
155 POLICY_FLAG_ALT = 0x00000010,
156 POLICY_FLAG_ALT_GR = 0x00000020,
157 POLICY_FLAG_MENU = 0x00000040,
158 POLICY_FLAG_LAUNCHER = 0x00000080,
159 POLICY_FLAG_VIRTUAL = 0x00000100,
160 POLICY_FLAG_FUNCTION = 0x00000200,
161
162 POLICY_FLAG_RAW_MASK = 0x0000ffff,
163
164 /* These flags are set by the input dispatcher. */
165
166 // Indicates that the input event was injected.
167 POLICY_FLAG_INJECTED = 0x01000000,
168
169 // Indicates that the input event is from a trusted source such as a directly attached
170 // input device or an application with system-wide event injection permission.
171 POLICY_FLAG_TRUSTED = 0x02000000,
172
173 // Indicates that the input event has passed through an input filter.
174 POLICY_FLAG_FILTERED = 0x04000000,
175
176 // Disables automatic key repeating behavior.
177 POLICY_FLAG_DISABLE_KEY_REPEAT = 0x08000000,
178
179 /* These flags are set by the input reader policy as it intercepts each event. */
180
Jeff Browndb19e462014-04-08 19:55:38 -0700181 // Indicates that the device was in an interactive state when the
182 // event was intercepted.
183 POLICY_FLAG_INTERACTIVE = 0x20000000,
Jeff Brown5912f952013-07-01 19:10:31 -0700184
185 // Indicates that the event should be dispatched to applications.
186 // The input event should still be sent to the InputDispatcher so that it can see all
187 // input events received include those that it will not deliver.
188 POLICY_FLAG_PASS_TO_USER = 0x40000000,
189};
190
191/*
192 * Pointer coordinate data.
193 */
194struct PointerCoords {
195 enum { MAX_AXES = 14 }; // 14 so that sizeof(PointerCoords) == 64
196
197 // Bitfield of axes that are present in this structure.
198 uint64_t bits;
199
200 // Values of axes that are stored in this structure packed in order by axis id
201 // for each axis that is present in the structure according to 'bits'.
202 float values[MAX_AXES];
203
204 inline void clear() {
Michael Wrightd0bd3912014-03-19 12:06:10 -0700205 BitSet64::clear(bits);
206 }
207
208 bool isEmpty() const {
209 return BitSet64::isEmpty(bits);
Jeff Brown5912f952013-07-01 19:10:31 -0700210 }
211
212 float getAxisValue(int32_t axis) const;
213 status_t setAxisValue(int32_t axis, float value);
214
215 void scale(float scale);
Jeff Browned4d28d2014-02-11 14:28:48 -0800216 void applyOffset(float xOffset, float yOffset);
Jeff Brown5912f952013-07-01 19:10:31 -0700217
218 inline float getX() const {
219 return getAxisValue(AMOTION_EVENT_AXIS_X);
220 }
221
222 inline float getY() const {
223 return getAxisValue(AMOTION_EVENT_AXIS_Y);
224 }
225
226#ifdef HAVE_ANDROID_OS
227 status_t readFromParcel(Parcel* parcel);
228 status_t writeToParcel(Parcel* parcel) const;
229#endif
230
231 bool operator==(const PointerCoords& other) const;
232 inline bool operator!=(const PointerCoords& other) const {
233 return !(*this == other);
234 }
235
236 void copyFrom(const PointerCoords& other);
237
238private:
239 void tooManyAxes(int axis);
240};
241
242/*
243 * Pointer property data.
244 */
245struct PointerProperties {
246 // The id of the pointer.
247 int32_t id;
248
249 // The pointer tool type.
250 int32_t toolType;
251
252 inline void clear() {
253 id = -1;
254 toolType = 0;
255 }
256
257 bool operator==(const PointerProperties& other) const;
258 inline bool operator!=(const PointerProperties& other) const {
259 return !(*this == other);
260 }
261
262 void copyFrom(const PointerProperties& other);
263};
264
265/*
266 * Input events.
267 */
268class InputEvent : public AInputEvent {
269public:
270 virtual ~InputEvent() { }
271
272 virtual int32_t getType() const = 0;
273
274 inline int32_t getDeviceId() const { return mDeviceId; }
275
276 inline int32_t getSource() const { return mSource; }
277
278 inline void setSource(int32_t source) { mSource = source; }
279
280protected:
281 void initialize(int32_t deviceId, int32_t source);
282 void initialize(const InputEvent& from);
283
284 int32_t mDeviceId;
285 int32_t mSource;
286};
287
288/*
289 * Key events.
290 */
291class KeyEvent : public InputEvent {
292public:
293 virtual ~KeyEvent() { }
294
295 virtual int32_t getType() const { return AINPUT_EVENT_TYPE_KEY; }
296
297 inline int32_t getAction() const { return mAction; }
298
299 inline int32_t getFlags() const { return mFlags; }
300
301 inline void setFlags(int32_t flags) { mFlags = flags; }
302
303 inline int32_t getKeyCode() const { return mKeyCode; }
304
305 inline int32_t getScanCode() const { return mScanCode; }
306
307 inline int32_t getMetaState() const { return mMetaState; }
308
309 inline int32_t getRepeatCount() const { return mRepeatCount; }
310
311 inline nsecs_t getDownTime() const { return mDownTime; }
312
313 inline nsecs_t getEventTime() const { return mEventTime; }
314
315 // Return true if this event may have a default action implementation.
316 static bool hasDefaultAction(int32_t keyCode);
317 bool hasDefaultAction() const;
318
319 // Return true if this event represents a system key.
320 static bool isSystemKey(int32_t keyCode);
321 bool isSystemKey() const;
322
323 void initialize(
324 int32_t deviceId,
325 int32_t source,
326 int32_t action,
327 int32_t flags,
328 int32_t keyCode,
329 int32_t scanCode,
330 int32_t metaState,
331 int32_t repeatCount,
332 nsecs_t downTime,
333 nsecs_t eventTime);
334 void initialize(const KeyEvent& from);
335
336protected:
337 int32_t mAction;
338 int32_t mFlags;
339 int32_t mKeyCode;
340 int32_t mScanCode;
341 int32_t mMetaState;
342 int32_t mRepeatCount;
343 nsecs_t mDownTime;
344 nsecs_t mEventTime;
345};
346
347/*
348 * Motion events.
349 */
350class MotionEvent : public InputEvent {
351public:
352 virtual ~MotionEvent() { }
353
354 virtual int32_t getType() const { return AINPUT_EVENT_TYPE_MOTION; }
355
356 inline int32_t getAction() const { return mAction; }
357
358 inline int32_t getActionMasked() const { return mAction & AMOTION_EVENT_ACTION_MASK; }
359
360 inline int32_t getActionIndex() const {
361 return (mAction & AMOTION_EVENT_ACTION_POINTER_INDEX_MASK)
362 >> AMOTION_EVENT_ACTION_POINTER_INDEX_SHIFT;
363 }
364
365 inline void setAction(int32_t action) { mAction = action; }
366
367 inline int32_t getFlags() const { return mFlags; }
368
369 inline void setFlags(int32_t flags) { mFlags = flags; }
370
371 inline int32_t getEdgeFlags() const { return mEdgeFlags; }
372
373 inline void setEdgeFlags(int32_t edgeFlags) { mEdgeFlags = edgeFlags; }
374
375 inline int32_t getMetaState() const { return mMetaState; }
376
377 inline void setMetaState(int32_t metaState) { mMetaState = metaState; }
378
379 inline int32_t getButtonState() const { return mButtonState; }
380
381 inline float getXOffset() const { return mXOffset; }
382
383 inline float getYOffset() const { return mYOffset; }
384
385 inline float getXPrecision() const { return mXPrecision; }
386
387 inline float getYPrecision() const { return mYPrecision; }
388
389 inline nsecs_t getDownTime() const { return mDownTime; }
390
391 inline void setDownTime(nsecs_t downTime) { mDownTime = downTime; }
392
393 inline size_t getPointerCount() const { return mPointerProperties.size(); }
394
395 inline const PointerProperties* getPointerProperties(size_t pointerIndex) const {
396 return &mPointerProperties[pointerIndex];
397 }
398
399 inline int32_t getPointerId(size_t pointerIndex) const {
400 return mPointerProperties[pointerIndex].id;
401 }
402
403 inline int32_t getToolType(size_t pointerIndex) const {
404 return mPointerProperties[pointerIndex].toolType;
405 }
406
407 inline nsecs_t getEventTime() const { return mSampleEventTimes[getHistorySize()]; }
408
409 const PointerCoords* getRawPointerCoords(size_t pointerIndex) const;
410
411 float getRawAxisValue(int32_t axis, size_t pointerIndex) const;
412
413 inline float getRawX(size_t pointerIndex) const {
414 return getRawAxisValue(AMOTION_EVENT_AXIS_X, pointerIndex);
415 }
416
417 inline float getRawY(size_t pointerIndex) const {
418 return getRawAxisValue(AMOTION_EVENT_AXIS_Y, pointerIndex);
419 }
420
421 float getAxisValue(int32_t axis, size_t pointerIndex) const;
422
423 inline float getX(size_t pointerIndex) const {
424 return getAxisValue(AMOTION_EVENT_AXIS_X, pointerIndex);
425 }
426
427 inline float getY(size_t pointerIndex) const {
428 return getAxisValue(AMOTION_EVENT_AXIS_Y, pointerIndex);
429 }
430
431 inline float getPressure(size_t pointerIndex) const {
432 return getAxisValue(AMOTION_EVENT_AXIS_PRESSURE, pointerIndex);
433 }
434
435 inline float getSize(size_t pointerIndex) const {
436 return getAxisValue(AMOTION_EVENT_AXIS_SIZE, pointerIndex);
437 }
438
439 inline float getTouchMajor(size_t pointerIndex) const {
440 return getAxisValue(AMOTION_EVENT_AXIS_TOUCH_MAJOR, pointerIndex);
441 }
442
443 inline float getTouchMinor(size_t pointerIndex) const {
444 return getAxisValue(AMOTION_EVENT_AXIS_TOUCH_MINOR, pointerIndex);
445 }
446
447 inline float getToolMajor(size_t pointerIndex) const {
448 return getAxisValue(AMOTION_EVENT_AXIS_TOOL_MAJOR, pointerIndex);
449 }
450
451 inline float getToolMinor(size_t pointerIndex) const {
452 return getAxisValue(AMOTION_EVENT_AXIS_TOOL_MINOR, pointerIndex);
453 }
454
455 inline float getOrientation(size_t pointerIndex) const {
456 return getAxisValue(AMOTION_EVENT_AXIS_ORIENTATION, pointerIndex);
457 }
458
459 inline size_t getHistorySize() const { return mSampleEventTimes.size() - 1; }
460
461 inline nsecs_t getHistoricalEventTime(size_t historicalIndex) const {
462 return mSampleEventTimes[historicalIndex];
463 }
464
465 const PointerCoords* getHistoricalRawPointerCoords(
466 size_t pointerIndex, size_t historicalIndex) const;
467
468 float getHistoricalRawAxisValue(int32_t axis, size_t pointerIndex,
469 size_t historicalIndex) const;
470
471 inline float getHistoricalRawX(size_t pointerIndex, size_t historicalIndex) const {
472 return getHistoricalRawAxisValue(
473 AMOTION_EVENT_AXIS_X, pointerIndex, historicalIndex);
474 }
475
476 inline float getHistoricalRawY(size_t pointerIndex, size_t historicalIndex) const {
477 return getHistoricalRawAxisValue(
478 AMOTION_EVENT_AXIS_Y, pointerIndex, historicalIndex);
479 }
480
481 float getHistoricalAxisValue(int32_t axis, size_t pointerIndex, size_t historicalIndex) const;
482
483 inline float getHistoricalX(size_t pointerIndex, size_t historicalIndex) const {
484 return getHistoricalAxisValue(
485 AMOTION_EVENT_AXIS_X, pointerIndex, historicalIndex);
486 }
487
488 inline float getHistoricalY(size_t pointerIndex, size_t historicalIndex) const {
489 return getHistoricalAxisValue(
490 AMOTION_EVENT_AXIS_Y, pointerIndex, historicalIndex);
491 }
492
493 inline float getHistoricalPressure(size_t pointerIndex, size_t historicalIndex) const {
494 return getHistoricalAxisValue(
495 AMOTION_EVENT_AXIS_PRESSURE, pointerIndex, historicalIndex);
496 }
497
498 inline float getHistoricalSize(size_t pointerIndex, size_t historicalIndex) const {
499 return getHistoricalAxisValue(
500 AMOTION_EVENT_AXIS_SIZE, pointerIndex, historicalIndex);
501 }
502
503 inline float getHistoricalTouchMajor(size_t pointerIndex, size_t historicalIndex) const {
504 return getHistoricalAxisValue(
505 AMOTION_EVENT_AXIS_TOUCH_MAJOR, pointerIndex, historicalIndex);
506 }
507
508 inline float getHistoricalTouchMinor(size_t pointerIndex, size_t historicalIndex) const {
509 return getHistoricalAxisValue(
510 AMOTION_EVENT_AXIS_TOUCH_MINOR, pointerIndex, historicalIndex);
511 }
512
513 inline float getHistoricalToolMajor(size_t pointerIndex, size_t historicalIndex) const {
514 return getHistoricalAxisValue(
515 AMOTION_EVENT_AXIS_TOOL_MAJOR, pointerIndex, historicalIndex);
516 }
517
518 inline float getHistoricalToolMinor(size_t pointerIndex, size_t historicalIndex) const {
519 return getHistoricalAxisValue(
520 AMOTION_EVENT_AXIS_TOOL_MINOR, pointerIndex, historicalIndex);
521 }
522
523 inline float getHistoricalOrientation(size_t pointerIndex, size_t historicalIndex) const {
524 return getHistoricalAxisValue(
525 AMOTION_EVENT_AXIS_ORIENTATION, pointerIndex, historicalIndex);
526 }
527
528 ssize_t findPointerIndex(int32_t pointerId) const;
529
530 void initialize(
531 int32_t deviceId,
532 int32_t source,
533 int32_t action,
534 int32_t flags,
535 int32_t edgeFlags,
536 int32_t metaState,
537 int32_t buttonState,
538 float xOffset,
539 float yOffset,
540 float xPrecision,
541 float yPrecision,
542 nsecs_t downTime,
543 nsecs_t eventTime,
544 size_t pointerCount,
545 const PointerProperties* pointerProperties,
546 const PointerCoords* pointerCoords);
547
548 void copyFrom(const MotionEvent* other, bool keepHistory);
549
550 void addSample(
551 nsecs_t eventTime,
552 const PointerCoords* pointerCoords);
553
554 void offsetLocation(float xOffset, float yOffset);
555
556 void scale(float scaleFactor);
557
Jeff Brown5a2f68e2013-07-15 17:28:19 -0700558 // Apply 3x3 perspective matrix transformation.
559 // Matrix is in row-major form and compatible with SkMatrix.
560 void transform(const float matrix[9]);
Jeff Brown5912f952013-07-01 19:10:31 -0700561
Jeff Brown5a2f68e2013-07-15 17:28:19 -0700562#ifdef HAVE_ANDROID_OS
Jeff Brown5912f952013-07-01 19:10:31 -0700563 status_t readFromParcel(Parcel* parcel);
564 status_t writeToParcel(Parcel* parcel) const;
565#endif
566
567 static bool isTouchEvent(int32_t source, int32_t action);
568 inline bool isTouchEvent() const {
569 return isTouchEvent(mSource, mAction);
570 }
571
572 // Low-level accessors.
573 inline const PointerProperties* getPointerProperties() const {
574 return mPointerProperties.array();
575 }
576 inline const nsecs_t* getSampleEventTimes() const { return mSampleEventTimes.array(); }
577 inline const PointerCoords* getSamplePointerCoords() const {
578 return mSamplePointerCoords.array();
579 }
580
581protected:
582 int32_t mAction;
583 int32_t mFlags;
584 int32_t mEdgeFlags;
585 int32_t mMetaState;
586 int32_t mButtonState;
587 float mXOffset;
588 float mYOffset;
589 float mXPrecision;
590 float mYPrecision;
591 nsecs_t mDownTime;
592 Vector<PointerProperties> mPointerProperties;
593 Vector<nsecs_t> mSampleEventTimes;
594 Vector<PointerCoords> mSamplePointerCoords;
595};
596
597/*
598 * Input event factory.
599 */
600class InputEventFactoryInterface {
601protected:
602 virtual ~InputEventFactoryInterface() { }
603
604public:
605 InputEventFactoryInterface() { }
606
607 virtual KeyEvent* createKeyEvent() = 0;
608 virtual MotionEvent* createMotionEvent() = 0;
609};
610
611/*
612 * A simple input event factory implementation that uses a single preallocated instance
613 * of each type of input event that are reused for each request.
614 */
615class PreallocatedInputEventFactory : public InputEventFactoryInterface {
616public:
617 PreallocatedInputEventFactory() { }
618 virtual ~PreallocatedInputEventFactory() { }
619
620 virtual KeyEvent* createKeyEvent() { return & mKeyEvent; }
621 virtual MotionEvent* createMotionEvent() { return & mMotionEvent; }
622
623private:
624 KeyEvent mKeyEvent;
625 MotionEvent mMotionEvent;
626};
627
628/*
629 * An input event factory implementation that maintains a pool of input events.
630 */
631class PooledInputEventFactory : public InputEventFactoryInterface {
632public:
633 PooledInputEventFactory(size_t maxPoolSize = 20);
634 virtual ~PooledInputEventFactory();
635
636 virtual KeyEvent* createKeyEvent();
637 virtual MotionEvent* createMotionEvent();
638
639 void recycle(InputEvent* event);
640
641private:
642 const size_t mMaxPoolSize;
643
644 Vector<KeyEvent*> mKeyEventPool;
645 Vector<MotionEvent*> mMotionEventPool;
646};
647
648} // namespace android
649
650#endif // _LIBINPUT_INPUT_H