Input.h revision 5912f95d26f77d2b6df13e1f2672e48e3f9b871c
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#ifndef _LIBINPUT_INPUT_H
18#define _LIBINPUT_INPUT_H
19
20/**
21 * Native input event structures.
22 */
23
24#include <android/input.h>
25#include <utils/Vector.h>
26#include <utils/KeyedVector.h>
27#include <utils/Timers.h>
28#include <utils/RefBase.h>
29#include <utils/String8.h>
30
31#ifdef HAVE_ANDROID_OS
32class SkMatrix;
33#endif
34
35/*
36 * Additional private constants not defined in ndk/ui/input.h.
37 */
38enum {
39    /* Signifies that the key is being predispatched */
40    AKEY_EVENT_FLAG_PREDISPATCH = 0x20000000,
41
42    /* Private control to determine when an app is tracking a key sequence. */
43    AKEY_EVENT_FLAG_START_TRACKING = 0x40000000,
44
45    /* Key event is inconsistent with previously sent key events. */
46    AKEY_EVENT_FLAG_TAINTED = 0x80000000,
47};
48
49enum {
50    /* Motion event is inconsistent with previously sent motion events. */
51    AMOTION_EVENT_FLAG_TAINTED = 0x80000000,
52};
53
54enum {
55    /* Used when a motion event is not associated with any display.
56     * Typically used for non-pointer events. */
57    ADISPLAY_ID_NONE = -1,
58
59    /* The default display id. */
60    ADISPLAY_ID_DEFAULT = 0,
61};
62
63enum {
64    /*
65     * Indicates that an input device has switches.
66     * This input source flag is hidden from the API because switches are only used by the system
67     * and applications have no way to interact with them.
68     */
69    AINPUT_SOURCE_SWITCH = 0x80000000,
70};
71
72/*
73 * SystemUiVisibility constants from View.
74 */
75enum {
76    ASYSTEM_UI_VISIBILITY_STATUS_BAR_VISIBLE = 0,
77    ASYSTEM_UI_VISIBILITY_STATUS_BAR_HIDDEN = 0x00000001,
78};
79
80/*
81 * Maximum number of pointers supported per motion event.
82 * Smallest number of pointers is 1.
83 * (We want at least 10 but some touch controllers obstensibly configured for 10 pointers
84 * will occasionally emit 11.  There is not much harm making this constant bigger.)
85 */
86#define MAX_POINTERS 16
87
88/*
89 * Maximum pointer id value supported in a motion event.
90 * Smallest pointer id is 0.
91 * (This is limited by our use of BitSet32 to track pointer assignments.)
92 */
93#define MAX_POINTER_ID 31
94
95/*
96 * Declare a concrete type for the NDK's input event forward declaration.
97 */
98struct AInputEvent {
99    virtual ~AInputEvent() { }
100};
101
102/*
103 * Declare a concrete type for the NDK's input device forward declaration.
104 */
105struct AInputDevice {
106    virtual ~AInputDevice() { }
107};
108
109
110namespace android {
111
112#ifdef HAVE_ANDROID_OS
113class Parcel;
114#endif
115
116/*
117 * Flags that flow alongside events in the input dispatch system to help with certain
118 * policy decisions such as waking from device sleep.
119 *
120 * These flags are also defined in frameworks/base/core/java/android/view/WindowManagerPolicy.java.
121 */
122enum {
123    /* These flags originate in RawEvents and are generally set in the key map.
124     * NOTE: If you edit these flags, also edit labels in KeycodeLabels.h. */
125
126    POLICY_FLAG_WAKE = 0x00000001,
127    POLICY_FLAG_WAKE_DROPPED = 0x00000002,
128    POLICY_FLAG_SHIFT = 0x00000004,
129    POLICY_FLAG_CAPS_LOCK = 0x00000008,
130    POLICY_FLAG_ALT = 0x00000010,
131    POLICY_FLAG_ALT_GR = 0x00000020,
132    POLICY_FLAG_MENU = 0x00000040,
133    POLICY_FLAG_LAUNCHER = 0x00000080,
134    POLICY_FLAG_VIRTUAL = 0x00000100,
135    POLICY_FLAG_FUNCTION = 0x00000200,
136
137    POLICY_FLAG_RAW_MASK = 0x0000ffff,
138
139    /* These flags are set by the input dispatcher. */
140
141    // Indicates that the input event was injected.
142    POLICY_FLAG_INJECTED = 0x01000000,
143
144    // Indicates that the input event is from a trusted source such as a directly attached
145    // input device or an application with system-wide event injection permission.
146    POLICY_FLAG_TRUSTED = 0x02000000,
147
148    // Indicates that the input event has passed through an input filter.
149    POLICY_FLAG_FILTERED = 0x04000000,
150
151    // Disables automatic key repeating behavior.
152    POLICY_FLAG_DISABLE_KEY_REPEAT = 0x08000000,
153
154    /* These flags are set by the input reader policy as it intercepts each event. */
155
156    // Indicates that the screen was off when the event was received and the event
157    // should wake the device.
158    POLICY_FLAG_WOKE_HERE = 0x10000000,
159
160    // Indicates that the screen was dim when the event was received and the event
161    // should brighten the device.
162    POLICY_FLAG_BRIGHT_HERE = 0x20000000,
163
164    // Indicates that the event should be dispatched to applications.
165    // The input event should still be sent to the InputDispatcher so that it can see all
166    // input events received include those that it will not deliver.
167    POLICY_FLAG_PASS_TO_USER = 0x40000000,
168};
169
170/*
171 * Pointer coordinate data.
172 */
173struct PointerCoords {
174    enum { MAX_AXES = 14 }; // 14 so that sizeof(PointerCoords) == 64
175
176    // Bitfield of axes that are present in this structure.
177    uint64_t bits;
178
179    // Values of axes that are stored in this structure packed in order by axis id
180    // for each axis that is present in the structure according to 'bits'.
181    float values[MAX_AXES];
182
183    inline void clear() {
184        bits = 0;
185    }
186
187    float getAxisValue(int32_t axis) const;
188    status_t setAxisValue(int32_t axis, float value);
189
190    void scale(float scale);
191
192    inline float getX() const {
193        return getAxisValue(AMOTION_EVENT_AXIS_X);
194    }
195
196    inline float getY() const {
197        return getAxisValue(AMOTION_EVENT_AXIS_Y);
198    }
199
200#ifdef HAVE_ANDROID_OS
201    status_t readFromParcel(Parcel* parcel);
202    status_t writeToParcel(Parcel* parcel) const;
203#endif
204
205    bool operator==(const PointerCoords& other) const;
206    inline bool operator!=(const PointerCoords& other) const {
207        return !(*this == other);
208    }
209
210    void copyFrom(const PointerCoords& other);
211
212private:
213    void tooManyAxes(int axis);
214};
215
216/*
217 * Pointer property data.
218 */
219struct PointerProperties {
220    // The id of the pointer.
221    int32_t id;
222
223    // The pointer tool type.
224    int32_t toolType;
225
226    inline void clear() {
227        id = -1;
228        toolType = 0;
229    }
230
231    bool operator==(const PointerProperties& other) const;
232    inline bool operator!=(const PointerProperties& other) const {
233        return !(*this == other);
234    }
235
236    void copyFrom(const PointerProperties& other);
237};
238
239/*
240 * Input events.
241 */
242class InputEvent : public AInputEvent {
243public:
244    virtual ~InputEvent() { }
245
246    virtual int32_t getType() const = 0;
247
248    inline int32_t getDeviceId() const { return mDeviceId; }
249
250    inline int32_t getSource() const { return mSource; }
251
252    inline void setSource(int32_t source) { mSource = source; }
253
254protected:
255    void initialize(int32_t deviceId, int32_t source);
256    void initialize(const InputEvent& from);
257
258    int32_t mDeviceId;
259    int32_t mSource;
260};
261
262/*
263 * Key events.
264 */
265class KeyEvent : public InputEvent {
266public:
267    virtual ~KeyEvent() { }
268
269    virtual int32_t getType() const { return AINPUT_EVENT_TYPE_KEY; }
270
271    inline int32_t getAction() const { return mAction; }
272
273    inline int32_t getFlags() const { return mFlags; }
274
275    inline void setFlags(int32_t flags) { mFlags = flags; }
276
277    inline int32_t getKeyCode() const { return mKeyCode; }
278
279    inline int32_t getScanCode() const { return mScanCode; }
280
281    inline int32_t getMetaState() const { return mMetaState; }
282
283    inline int32_t getRepeatCount() const { return mRepeatCount; }
284
285    inline nsecs_t getDownTime() const { return mDownTime; }
286
287    inline nsecs_t getEventTime() const { return mEventTime; }
288
289    // Return true if this event may have a default action implementation.
290    static bool hasDefaultAction(int32_t keyCode);
291    bool hasDefaultAction() const;
292
293    // Return true if this event represents a system key.
294    static bool isSystemKey(int32_t keyCode);
295    bool isSystemKey() const;
296
297    void initialize(
298            int32_t deviceId,
299            int32_t source,
300            int32_t action,
301            int32_t flags,
302            int32_t keyCode,
303            int32_t scanCode,
304            int32_t metaState,
305            int32_t repeatCount,
306            nsecs_t downTime,
307            nsecs_t eventTime);
308    void initialize(const KeyEvent& from);
309
310protected:
311    int32_t mAction;
312    int32_t mFlags;
313    int32_t mKeyCode;
314    int32_t mScanCode;
315    int32_t mMetaState;
316    int32_t mRepeatCount;
317    nsecs_t mDownTime;
318    nsecs_t mEventTime;
319};
320
321/*
322 * Motion events.
323 */
324class MotionEvent : public InputEvent {
325public:
326    virtual ~MotionEvent() { }
327
328    virtual int32_t getType() const { return AINPUT_EVENT_TYPE_MOTION; }
329
330    inline int32_t getAction() const { return mAction; }
331
332    inline int32_t getActionMasked() const { return mAction & AMOTION_EVENT_ACTION_MASK; }
333
334    inline int32_t getActionIndex() const {
335        return (mAction & AMOTION_EVENT_ACTION_POINTER_INDEX_MASK)
336                >> AMOTION_EVENT_ACTION_POINTER_INDEX_SHIFT;
337    }
338
339    inline void setAction(int32_t action) { mAction = action; }
340
341    inline int32_t getFlags() const { return mFlags; }
342
343    inline void setFlags(int32_t flags) { mFlags = flags; }
344
345    inline int32_t getEdgeFlags() const { return mEdgeFlags; }
346
347    inline void setEdgeFlags(int32_t edgeFlags) { mEdgeFlags = edgeFlags; }
348
349    inline int32_t getMetaState() const { return mMetaState; }
350
351    inline void setMetaState(int32_t metaState) { mMetaState = metaState; }
352
353    inline int32_t getButtonState() const { return mButtonState; }
354
355    inline float getXOffset() const { return mXOffset; }
356
357    inline float getYOffset() const { return mYOffset; }
358
359    inline float getXPrecision() const { return mXPrecision; }
360
361    inline float getYPrecision() const { return mYPrecision; }
362
363    inline nsecs_t getDownTime() const { return mDownTime; }
364
365    inline void setDownTime(nsecs_t downTime) { mDownTime = downTime; }
366
367    inline size_t getPointerCount() const { return mPointerProperties.size(); }
368
369    inline const PointerProperties* getPointerProperties(size_t pointerIndex) const {
370        return &mPointerProperties[pointerIndex];
371    }
372
373    inline int32_t getPointerId(size_t pointerIndex) const {
374        return mPointerProperties[pointerIndex].id;
375    }
376
377    inline int32_t getToolType(size_t pointerIndex) const {
378        return mPointerProperties[pointerIndex].toolType;
379    }
380
381    inline nsecs_t getEventTime() const { return mSampleEventTimes[getHistorySize()]; }
382
383    const PointerCoords* getRawPointerCoords(size_t pointerIndex) const;
384
385    float getRawAxisValue(int32_t axis, size_t pointerIndex) const;
386
387    inline float getRawX(size_t pointerIndex) const {
388        return getRawAxisValue(AMOTION_EVENT_AXIS_X, pointerIndex);
389    }
390
391    inline float getRawY(size_t pointerIndex) const {
392        return getRawAxisValue(AMOTION_EVENT_AXIS_Y, pointerIndex);
393    }
394
395    float getAxisValue(int32_t axis, size_t pointerIndex) const;
396
397    inline float getX(size_t pointerIndex) const {
398        return getAxisValue(AMOTION_EVENT_AXIS_X, pointerIndex);
399    }
400
401    inline float getY(size_t pointerIndex) const {
402        return getAxisValue(AMOTION_EVENT_AXIS_Y, pointerIndex);
403    }
404
405    inline float getPressure(size_t pointerIndex) const {
406        return getAxisValue(AMOTION_EVENT_AXIS_PRESSURE, pointerIndex);
407    }
408
409    inline float getSize(size_t pointerIndex) const {
410        return getAxisValue(AMOTION_EVENT_AXIS_SIZE, pointerIndex);
411    }
412
413    inline float getTouchMajor(size_t pointerIndex) const {
414        return getAxisValue(AMOTION_EVENT_AXIS_TOUCH_MAJOR, pointerIndex);
415    }
416
417    inline float getTouchMinor(size_t pointerIndex) const {
418        return getAxisValue(AMOTION_EVENT_AXIS_TOUCH_MINOR, pointerIndex);
419    }
420
421    inline float getToolMajor(size_t pointerIndex) const {
422        return getAxisValue(AMOTION_EVENT_AXIS_TOOL_MAJOR, pointerIndex);
423    }
424
425    inline float getToolMinor(size_t pointerIndex) const {
426        return getAxisValue(AMOTION_EVENT_AXIS_TOOL_MINOR, pointerIndex);
427    }
428
429    inline float getOrientation(size_t pointerIndex) const {
430        return getAxisValue(AMOTION_EVENT_AXIS_ORIENTATION, pointerIndex);
431    }
432
433    inline size_t getHistorySize() const { return mSampleEventTimes.size() - 1; }
434
435    inline nsecs_t getHistoricalEventTime(size_t historicalIndex) const {
436        return mSampleEventTimes[historicalIndex];
437    }
438
439    const PointerCoords* getHistoricalRawPointerCoords(
440            size_t pointerIndex, size_t historicalIndex) const;
441
442    float getHistoricalRawAxisValue(int32_t axis, size_t pointerIndex,
443            size_t historicalIndex) const;
444
445    inline float getHistoricalRawX(size_t pointerIndex, size_t historicalIndex) const {
446        return getHistoricalRawAxisValue(
447                AMOTION_EVENT_AXIS_X, pointerIndex, historicalIndex);
448    }
449
450    inline float getHistoricalRawY(size_t pointerIndex, size_t historicalIndex) const {
451        return getHistoricalRawAxisValue(
452                AMOTION_EVENT_AXIS_Y, pointerIndex, historicalIndex);
453    }
454
455    float getHistoricalAxisValue(int32_t axis, size_t pointerIndex, size_t historicalIndex) const;
456
457    inline float getHistoricalX(size_t pointerIndex, size_t historicalIndex) const {
458        return getHistoricalAxisValue(
459                AMOTION_EVENT_AXIS_X, pointerIndex, historicalIndex);
460    }
461
462    inline float getHistoricalY(size_t pointerIndex, size_t historicalIndex) const {
463        return getHistoricalAxisValue(
464                AMOTION_EVENT_AXIS_Y, pointerIndex, historicalIndex);
465    }
466
467    inline float getHistoricalPressure(size_t pointerIndex, size_t historicalIndex) const {
468        return getHistoricalAxisValue(
469                AMOTION_EVENT_AXIS_PRESSURE, pointerIndex, historicalIndex);
470    }
471
472    inline float getHistoricalSize(size_t pointerIndex, size_t historicalIndex) const {
473        return getHistoricalAxisValue(
474                AMOTION_EVENT_AXIS_SIZE, pointerIndex, historicalIndex);
475    }
476
477    inline float getHistoricalTouchMajor(size_t pointerIndex, size_t historicalIndex) const {
478        return getHistoricalAxisValue(
479                AMOTION_EVENT_AXIS_TOUCH_MAJOR, pointerIndex, historicalIndex);
480    }
481
482    inline float getHistoricalTouchMinor(size_t pointerIndex, size_t historicalIndex) const {
483        return getHistoricalAxisValue(
484                AMOTION_EVENT_AXIS_TOUCH_MINOR, pointerIndex, historicalIndex);
485    }
486
487    inline float getHistoricalToolMajor(size_t pointerIndex, size_t historicalIndex) const {
488        return getHistoricalAxisValue(
489                AMOTION_EVENT_AXIS_TOOL_MAJOR, pointerIndex, historicalIndex);
490    }
491
492    inline float getHistoricalToolMinor(size_t pointerIndex, size_t historicalIndex) const {
493        return getHistoricalAxisValue(
494                AMOTION_EVENT_AXIS_TOOL_MINOR, pointerIndex, historicalIndex);
495    }
496
497    inline float getHistoricalOrientation(size_t pointerIndex, size_t historicalIndex) const {
498        return getHistoricalAxisValue(
499                AMOTION_EVENT_AXIS_ORIENTATION, pointerIndex, historicalIndex);
500    }
501
502    ssize_t findPointerIndex(int32_t pointerId) const;
503
504    void initialize(
505            int32_t deviceId,
506            int32_t source,
507            int32_t action,
508            int32_t flags,
509            int32_t edgeFlags,
510            int32_t metaState,
511            int32_t buttonState,
512            float xOffset,
513            float yOffset,
514            float xPrecision,
515            float yPrecision,
516            nsecs_t downTime,
517            nsecs_t eventTime,
518            size_t pointerCount,
519            const PointerProperties* pointerProperties,
520            const PointerCoords* pointerCoords);
521
522    void copyFrom(const MotionEvent* other, bool keepHistory);
523
524    void addSample(
525            nsecs_t eventTime,
526            const PointerCoords* pointerCoords);
527
528    void offsetLocation(float xOffset, float yOffset);
529
530    void scale(float scaleFactor);
531
532#ifdef HAVE_ANDROID_OS
533    void transform(const SkMatrix* matrix);
534
535    status_t readFromParcel(Parcel* parcel);
536    status_t writeToParcel(Parcel* parcel) const;
537#endif
538
539    static bool isTouchEvent(int32_t source, int32_t action);
540    inline bool isTouchEvent() const {
541        return isTouchEvent(mSource, mAction);
542    }
543
544    // Low-level accessors.
545    inline const PointerProperties* getPointerProperties() const {
546        return mPointerProperties.array();
547    }
548    inline const nsecs_t* getSampleEventTimes() const { return mSampleEventTimes.array(); }
549    inline const PointerCoords* getSamplePointerCoords() const {
550            return mSamplePointerCoords.array();
551    }
552
553protected:
554    int32_t mAction;
555    int32_t mFlags;
556    int32_t mEdgeFlags;
557    int32_t mMetaState;
558    int32_t mButtonState;
559    float mXOffset;
560    float mYOffset;
561    float mXPrecision;
562    float mYPrecision;
563    nsecs_t mDownTime;
564    Vector<PointerProperties> mPointerProperties;
565    Vector<nsecs_t> mSampleEventTimes;
566    Vector<PointerCoords> mSamplePointerCoords;
567};
568
569/*
570 * Input event factory.
571 */
572class InputEventFactoryInterface {
573protected:
574    virtual ~InputEventFactoryInterface() { }
575
576public:
577    InputEventFactoryInterface() { }
578
579    virtual KeyEvent* createKeyEvent() = 0;
580    virtual MotionEvent* createMotionEvent() = 0;
581};
582
583/*
584 * A simple input event factory implementation that uses a single preallocated instance
585 * of each type of input event that are reused for each request.
586 */
587class PreallocatedInputEventFactory : public InputEventFactoryInterface {
588public:
589    PreallocatedInputEventFactory() { }
590    virtual ~PreallocatedInputEventFactory() { }
591
592    virtual KeyEvent* createKeyEvent() { return & mKeyEvent; }
593    virtual MotionEvent* createMotionEvent() { return & mMotionEvent; }
594
595private:
596    KeyEvent mKeyEvent;
597    MotionEvent mMotionEvent;
598};
599
600/*
601 * An input event factory implementation that maintains a pool of input events.
602 */
603class PooledInputEventFactory : public InputEventFactoryInterface {
604public:
605    PooledInputEventFactory(size_t maxPoolSize = 20);
606    virtual ~PooledInputEventFactory();
607
608    virtual KeyEvent* createKeyEvent();
609    virtual MotionEvent* createMotionEvent();
610
611    void recycle(InputEvent* event);
612
613private:
614    const size_t mMaxPoolSize;
615
616    Vector<KeyEvent*> mKeyEventPool;
617    Vector<MotionEvent*> mMotionEventPool;
618};
619
620} // namespace android
621
622#endif // _LIBINPUT_INPUT_H
623