• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
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 #pragma once
18 
19 #pragma GCC system_header
20 
21 /**
22  * Native input event structures.
23  */
24 
25 #include <android/input.h>
26 #ifdef __linux__
27 #include <android/os/IInputConstants.h>
28 #endif
29 #include <android/os/PointerIconType.h>
30 #include <math.h>
31 #include <stdint.h>
32 #include <ui/LogicalDisplayId.h>
33 #include <ui/Transform.h>
34 #include <utils/BitSet.h>
35 #include <utils/Timers.h>
36 #include <array>
37 #include <limits>
38 #include <queue>
39 
40 /*
41  * Additional private constants not defined in ndk/ui/input.h.
42  */
43 enum {
44 
45     /* This event was generated or modified by accessibility service. */
46     AKEY_EVENT_FLAG_IS_ACCESSIBILITY_EVENT =
47             android::os::IInputConstants::INPUT_EVENT_FLAG_IS_ACCESSIBILITY_EVENT,
48 
49     /* Signifies that the key is being predispatched */
50     AKEY_EVENT_FLAG_PREDISPATCH = 0x20000000,
51 
52     /* Private control to determine when an app is tracking a key sequence. */
53     AKEY_EVENT_FLAG_START_TRACKING = 0x40000000,
54 
55     /* Key event is inconsistent with previously sent key events. */
56     AKEY_EVENT_FLAG_TAINTED = android::os::IInputConstants::INPUT_EVENT_FLAG_TAINTED,
57 };
58 
59 enum {
60     // AMOTION_EVENT_FLAG_WINDOW_IS_OBSCURED is defined in include/android/input.h
61     /**
62      * This flag indicates that the window that received this motion event is partly
63      * or wholly obscured by another visible window above it.  This flag is set to true
64      * even if the event did not directly pass through the obscured area.
65      * A security sensitive application can check this flag to identify situations in which
66      * a malicious application may have covered up part of its content for the purpose
67      * of misleading the user or hijacking touches.  An appropriate response might be
68      * to drop the suspect touches or to take additional precautions to confirm the user's
69      * actual intent.
70      */
71     AMOTION_EVENT_FLAG_WINDOW_IS_PARTIALLY_OBSCURED =
72             android::os::IInputConstants::MOTION_EVENT_FLAG_WINDOW_IS_PARTIALLY_OBSCURED,
73     AMOTION_EVENT_FLAG_HOVER_EXIT_PENDING =
74             android::os::IInputConstants::MOTION_EVENT_FLAG_HOVER_EXIT_PENDING,
75     /**
76      * This flag indicates that the event has been generated by a gesture generator. It
77      * provides a hint to the GestureDetector to not apply any touch slop.
78      */
79     AMOTION_EVENT_FLAG_IS_GENERATED_GESTURE =
80             android::os::IInputConstants::MOTION_EVENT_FLAG_IS_GENERATED_GESTURE,
81 
82     /**
83      * This flag indicates that the event will not cause a focus change if it is directed to an
84      * unfocused window, even if it an ACTION_DOWN. This is typically used with pointer
85      * gestures to allow the user to direct gestures to an unfocused window without bringing it
86      * into focus.
87      */
88     AMOTION_EVENT_FLAG_NO_FOCUS_CHANGE =
89             android::os::IInputConstants::MOTION_EVENT_FLAG_NO_FOCUS_CHANGE,
90 
91     /**
92      * This event was generated or modified by accessibility service.
93      */
94     AMOTION_EVENT_FLAG_IS_ACCESSIBILITY_EVENT =
95             android::os::IInputConstants::INPUT_EVENT_FLAG_IS_ACCESSIBILITY_EVENT,
96 
97     AMOTION_EVENT_FLAG_TARGET_ACCESSIBILITY_FOCUS =
98             android::os::IInputConstants::MOTION_EVENT_FLAG_TARGET_ACCESSIBILITY_FOCUS,
99 
100     /* Motion event is inconsistent with previously sent motion events. */
101     AMOTION_EVENT_FLAG_TAINTED = android::os::IInputConstants::INPUT_EVENT_FLAG_TAINTED,
102 
103     /** Private flag, not used in Java. */
104     AMOTION_EVENT_PRIVATE_FLAG_SUPPORTS_ORIENTATION =
105             android::os::IInputConstants::MOTION_EVENT_PRIVATE_FLAG_SUPPORTS_ORIENTATION,
106 
107     /** Private flag, not used in Java. */
108     AMOTION_EVENT_PRIVATE_FLAG_SUPPORTS_DIRECTIONAL_ORIENTATION = android::os::IInputConstants::
109             MOTION_EVENT_PRIVATE_FLAG_SUPPORTS_DIRECTIONAL_ORIENTATION,
110 
111     /** Mask for all private flags that are not used in Java. */
112     AMOTION_EVENT_PRIVATE_FLAG_MASK = AMOTION_EVENT_PRIVATE_FLAG_SUPPORTS_ORIENTATION |
113             AMOTION_EVENT_PRIVATE_FLAG_SUPPORTS_DIRECTIONAL_ORIENTATION,
114 };
115 
116 /**
117  * Allowed VerifiedKeyEvent flags. All other flags from KeyEvent do not get verified.
118  * These values must be kept in sync with VerifiedKeyEvent.java
119  */
120 constexpr int32_t VERIFIED_KEY_EVENT_FLAGS =
121         AKEY_EVENT_FLAG_CANCELED | AKEY_EVENT_FLAG_IS_ACCESSIBILITY_EVENT;
122 
123 /**
124  * Allowed VerifiedMotionEventFlags. All other flags from MotionEvent do not get verified.
125  * These values must be kept in sync with VerifiedMotionEvent.java
126  */
127 constexpr int32_t VERIFIED_MOTION_EVENT_FLAGS = AMOTION_EVENT_FLAG_WINDOW_IS_OBSCURED |
128         AMOTION_EVENT_FLAG_WINDOW_IS_PARTIALLY_OBSCURED | AMOTION_EVENT_FLAG_IS_ACCESSIBILITY_EVENT;
129 
130 /**
131  * This flag indicates that the point up event has been canceled.
132  * Typically this is used for palm event when the user has accidental touches.
133  * TODO(b/338143308): Add this to NDK
134  */
135 constexpr int32_t AMOTION_EVENT_FLAG_CANCELED =
136         android::os::IInputConstants::INPUT_EVENT_FLAG_CANCELED;
137 
138 enum {
139     /*
140      * Indicates that an input device has switches.
141      * This input source flag is hidden from the API because switches are only used by the system
142      * and applications have no way to interact with them.
143      */
144     AINPUT_SOURCE_SWITCH = 0x80000000,
145 };
146 
147 enum {
148     /**
149      * Constants for LEDs. Hidden from the API since we don't actually expose a way to interact
150      * with LEDs to developers
151      *
152      * NOTE: If you add LEDs here, you must also add them to InputEventLabels.h
153      */
154 
155     ALED_NUM_LOCK = 0x00,
156     ALED_CAPS_LOCK = 0x01,
157     ALED_SCROLL_LOCK = 0x02,
158     ALED_COMPOSE = 0x03,
159     ALED_KANA = 0x04,
160     ALED_SLEEP = 0x05,
161     ALED_SUSPEND = 0x06,
162     ALED_MUTE = 0x07,
163     ALED_MISC = 0x08,
164     ALED_MAIL = 0x09,
165     ALED_CHARGING = 0x0a,
166     ALED_CONTROLLER_1 = 0x10,
167     ALED_CONTROLLER_2 = 0x11,
168     ALED_CONTROLLER_3 = 0x12,
169     ALED_CONTROLLER_4 = 0x13,
170 };
171 
172 /* Maximum number of controller LEDs we support */
173 #define MAX_CONTROLLER_LEDS 4
174 
175 /*
176  * Maximum number of pointers supported per motion event.
177  * Smallest number of pointers is 1.
178  * (We want at least 10 but some touch controllers obstensibly configured for 10 pointers
179  * will occasionally emit 11.  There is not much harm making this constant bigger.)
180  */
181 static constexpr size_t MAX_POINTERS = 16;
182 
183 /*
184  * Maximum number of samples supported per motion event.
185  */
186 #define MAX_SAMPLES UINT16_MAX
187 
188 /*
189  * Maximum pointer id value supported in a motion event.
190  * Smallest pointer id is 0.
191  * (This is limited by our use of BitSet32 to track pointer assignments.)
192  */
193 #define MAX_POINTER_ID 31
194 
195 /*
196  * Declare a concrete type for the NDK's input event forward declaration.
197  */
198 struct AInputEvent {
~AInputEventAInputEvent199     virtual ~AInputEvent() {}
200     bool operator==(const AInputEvent&) const = default;
201 };
202 
203 /*
204  * Declare a concrete type for the NDK's input device forward declaration.
205  */
206 struct AInputDevice {
~AInputDeviceAInputDevice207     virtual ~AInputDevice() { }
208 };
209 
210 
211 namespace android {
212 
213 class Parcel;
214 
215 /*
216  * Apply the given transform to the point without applying any translation/offset.
217  */
218 vec2 transformWithoutTranslation(const ui::Transform& transform, const vec2& xy);
219 
220 /*
221  * Transform an angle on the x-y plane. An angle of 0 radians corresponds to "north" or
222  * pointing upwards in the negative Y direction, a positive angle points towards the right, and a
223  * negative angle points towards the left.
224  *
225  * If the angle represents a direction that needs to be preserved, set isDirectional to true to get
226  * an output range of [-pi, pi]. If the angle's direction does not need to be preserved, set
227  * isDirectional to false to get an output range of [-pi/2, pi/2].
228  */
229 float transformAngle(const ui::Transform& transform, float angleRadians, bool isDirectional);
230 
231 /**
232  * The type of the InputEvent.
233  * This should have 1:1 correspondence with the values of anonymous enum defined in input.h.
234  */
235 enum class InputEventType {
236     KEY = AINPUT_EVENT_TYPE_KEY,
237     MOTION = AINPUT_EVENT_TYPE_MOTION,
238     FOCUS = AINPUT_EVENT_TYPE_FOCUS,
239     CAPTURE = AINPUT_EVENT_TYPE_CAPTURE,
240     DRAG = AINPUT_EVENT_TYPE_DRAG,
241     TOUCH_MODE = AINPUT_EVENT_TYPE_TOUCH_MODE,
242     ftl_first = KEY,
243     ftl_last = TOUCH_MODE,
244 };
245 
246 std::string inputEventSourceToString(int32_t source);
247 
248 bool isFromSource(uint32_t source, uint32_t test);
249 
250 /**
251  * The pointer tool type.
252  */
253 enum class ToolType {
254     UNKNOWN = AMOTION_EVENT_TOOL_TYPE_UNKNOWN,
255     FINGER = AMOTION_EVENT_TOOL_TYPE_FINGER,
256     STYLUS = AMOTION_EVENT_TOOL_TYPE_STYLUS,
257     MOUSE = AMOTION_EVENT_TOOL_TYPE_MOUSE,
258     ERASER = AMOTION_EVENT_TOOL_TYPE_ERASER,
259     PALM = AMOTION_EVENT_TOOL_TYPE_PALM,
260     ftl_first = UNKNOWN,
261     ftl_last = PALM,
262 };
263 
264 /**
265  * The state of the key. This should have 1:1 correspondence with the values of anonymous enum
266  * defined in input.h
267  */
268 enum class KeyState {
269     UNKNOWN = AKEY_STATE_UNKNOWN,
270     UP = AKEY_STATE_UP,
271     DOWN = AKEY_STATE_DOWN,
272     VIRTUAL = AKEY_STATE_VIRTUAL,
273     ftl_first = UNKNOWN,
274     ftl_last = VIRTUAL,
275 };
276 
277 /**
278  * The keyboard type. This should have 1:1 correspondence with the values of anonymous enum
279  * defined in input.h
280  */
281 enum class KeyboardType {
282     NONE = AINPUT_KEYBOARD_TYPE_NONE,
283     NON_ALPHABETIC = AINPUT_KEYBOARD_TYPE_NON_ALPHABETIC,
284     ALPHABETIC = AINPUT_KEYBOARD_TYPE_ALPHABETIC,
285 };
286 
287 bool isStylusToolType(ToolType toolType);
288 
289 struct PointerProperties;
290 
291 bool isStylusEvent(uint32_t source, const std::vector<PointerProperties>& properties);
292 
293 /*
294  * Flags that flow alongside events in the input dispatch system to help with certain
295  * policy decisions such as waking from device sleep.
296  *
297  * These flags are also defined in frameworks/base/core/java/android/view/WindowManagerPolicy.java.
298  */
299 enum {
300     /* These flags originate in RawEvents and are generally set in the key map.
301      * NOTE: If you want a flag to be able to set in a keylayout file, then you must add it to
302      * InputEventLabels.h as well. */
303 
304     // Indicates that the event should wake the device.
305     POLICY_FLAG_WAKE = 0x00000001,
306 
307     // Indicates that the key is virtual, such as a capacitive button, and should
308     // generate haptic feedback.  Virtual keys may be suppressed for some time
309     // after a recent touch to prevent accidental activation of virtual keys adjacent
310     // to the touch screen during an edge swipe.
311     POLICY_FLAG_VIRTUAL = 0x00000002,
312 
313     // Indicates that the key is the special function modifier.
314     POLICY_FLAG_FUNCTION = 0x00000004,
315 
316     // Indicates that the key represents a special gesture that has been detected by
317     // the touch firmware or driver.  Causes touch events from the same device to be canceled.
318     // This policy flag prevents key events from changing touch mode state.
319     POLICY_FLAG_GESTURE = 0x00000008,
320 
321     // Indicates that key usage mapping represents a fallback mapping.
322     // Fallback mappings cannot be used to definitively determine whether a device
323     // supports a key code. For example, a HID device can report a key press
324     // as a HID usage code if it is not mapped to any linux key code in the kernel.
325     // However, we cannot know which HID usage codes that device supports from
326     // userspace through the evdev. We can use fallback mappings to convert HID
327     // usage codes to Android key codes without needing to know if a device can
328     // actually report the usage code.
329     POLICY_FLAG_FALLBACK_USAGE_MAPPING = 0x00000010,
330 
331     POLICY_FLAG_RAW_MASK = 0x0000ffff,
332 
333     POLICY_FLAG_INJECTED_FROM_ACCESSIBILITY =
334             android::os::IInputConstants::POLICY_FLAG_INJECTED_FROM_ACCESSIBILITY,
335 
336     /* These flags are set by the input dispatcher. */
337 
338     // Indicates that the input event was injected.
339     POLICY_FLAG_INJECTED = 0x01000000,
340 
341     // Indicates that the input event is from a trusted source such as a directly attached
342     // input device or an application with system-wide event injection permission.
343     POLICY_FLAG_TRUSTED = 0x02000000,
344 
345     // Indicates that the input event has passed through an input filter.
346     POLICY_FLAG_FILTERED = 0x04000000,
347 
348     // Disables automatic key repeating behavior.
349     POLICY_FLAG_DISABLE_KEY_REPEAT = 0x08000000,
350 
351     /* These flags are set by the input reader policy as it intercepts each event. */
352 
353     // Indicates that the device was in an interactive state when the
354     // event was intercepted.
355     POLICY_FLAG_INTERACTIVE = 0x20000000,
356 
357     // Indicates that the event should be dispatched to applications.
358     // The input event should still be sent to the InputDispatcher so that it can see all
359     // input events received include those that it will not deliver.
360     POLICY_FLAG_PASS_TO_USER = 0x40000000,
361 };
362 
363 /**
364  * Classifications of the current gesture, if available.
365  */
366 enum class MotionClassification : uint8_t {
367     /**
368      * No classification is available.
369      */
370     NONE = AMOTION_EVENT_CLASSIFICATION_NONE,
371     /**
372      * Too early to classify the current gesture. Need more events. Look for changes in the
373      * upcoming motion events.
374      */
375     AMBIGUOUS_GESTURE = AMOTION_EVENT_CLASSIFICATION_AMBIGUOUS_GESTURE,
376     /**
377      * The current gesture likely represents a user intentionally exerting force on the touchscreen.
378      */
379     DEEP_PRESS = AMOTION_EVENT_CLASSIFICATION_DEEP_PRESS,
380     /**
381      * The current gesture represents the user swiping with two fingers on a touchpad.
382      */
383     TWO_FINGER_SWIPE = AMOTION_EVENT_CLASSIFICATION_TWO_FINGER_SWIPE,
384     /**
385      * The current gesture represents the user swiping with three or more fingers on a touchpad.
386      * Unlike two-finger swipes, these are only to be handled by the system UI, which is why they
387      * have a separate constant from two-finger swipes.
388      */
389     MULTI_FINGER_SWIPE = AMOTION_EVENT_CLASSIFICATION_MULTI_FINGER_SWIPE,
390     /**
391      * The current gesture represents the user pinching with two fingers on a touchpad. The gesture
392      * is centered around the current cursor position.
393      */
394     PINCH = AMOTION_EVENT_CLASSIFICATION_PINCH,
395 };
396 
397 /**
398  * String representation of MotionClassification
399  */
400 const char* motionClassificationToString(MotionClassification classification);
401 
402 /**
403  * Portion of FrameMetrics timeline of interest to input code.
404  */
405 enum GraphicsTimeline : size_t {
406     /** Time when the app sent the buffer to SurfaceFlinger. */
407     GPU_COMPLETED_TIME = 0,
408 
409     /** Time when the frame was presented on the display */
410     PRESENT_TIME = 1,
411 
412     /** Total size of the 'GraphicsTimeline' array. Must always be last. */
413     SIZE = 2
414 };
415 
416 /**
417  * Generator of unique numbers used to identify input events.
418  *
419  * Layout of ID:
420  *     |--------------------------|---------------------------|
421  *     |   2 bits for source      | 30 bits for random number |
422  *     |--------------------------|---------------------------|
423  */
424 class IdGenerator {
425 private:
426     static constexpr uint32_t SOURCE_SHIFT = 30;
427 
428 public:
429     // Used to divide integer space to ensure no conflict among these sources./
430     enum class Source : int32_t {
431         INPUT_READER = static_cast<int32_t>(0x0u << SOURCE_SHIFT),
432         INPUT_DISPATCHER = static_cast<int32_t>(0x1u << SOURCE_SHIFT),
433         OTHER = static_cast<int32_t>(0x3u << SOURCE_SHIFT), // E.g. app injected events
434     };
435     IdGenerator(Source source);
436 
437     int32_t nextId() const;
438 
439     // Extract source from given id.
getSource(int32_t id)440     static inline Source getSource(int32_t id) { return static_cast<Source>(SOURCE_MASK & id); }
441 
442 private:
443     const Source mSource;
444 
445     static constexpr int32_t SOURCE_MASK = static_cast<int32_t>(0x3u << SOURCE_SHIFT);
446 };
447 
448 /**
449  * Invalid value for cursor position. Used for non-mouse events, tests and injected events. Don't
450  * use it for direct comparison with any other value, because NaN isn't equal to itself according to
451  * IEEE 754. Use isnan() instead to check if a cursor position is valid.
452  */
453 constexpr float AMOTION_EVENT_INVALID_CURSOR_POSITION = std::numeric_limits<float>::quiet_NaN();
454 
455 /*
456  * Pointer coordinate data.
457  */
458 struct PointerCoords {
459     enum { MAX_AXES = 30 }; // 30 so that sizeof(PointerCoords) == 136
460 
461     // Bitfield of axes that are present in this structure.
462     uint64_t bits __attribute__((aligned(8)));
463 
464     // Values of axes that are stored in this structure packed in order by axis id
465     // for each axis that is present in the structure according to 'bits'.
466     std::array<float, MAX_AXES> values;
467 
468     // Whether these coordinate data were generated by resampling.
469     bool isResampled;
470 
471     static_assert(sizeof(bool) == 1); // Ensure padding is correctly sized.
472     uint8_t empty[7];
473 
clearPointerCoords474     inline void clear() {
475         BitSet64::clear(bits);
476         isResampled = false;
477     }
478 
isEmptyPointerCoords479     bool isEmpty() const {
480         return BitSet64::isEmpty(bits);
481     }
482 
483     float getAxisValue(int32_t axis) const;
484     status_t setAxisValue(int32_t axis, float value);
485 
486     // Scale the pointer coordinates according to a global scale and a
487     // window scale. The global scale will be applied to TOUCH/TOOL_MAJOR/MINOR
488     // axes, however the window scaling will not.
489     void scale(float globalScale, float windowXScale, float windowYScale);
490 
getXPointerCoords491     inline float getX() const {
492         return getAxisValue(AMOTION_EVENT_AXIS_X);
493     }
494 
getYPointerCoords495     inline float getY() const {
496         return getAxisValue(AMOTION_EVENT_AXIS_Y);
497     }
498 
getXYValuePointerCoords499     vec2 getXYValue() const { return vec2(getX(), getY()); }
500 
501     status_t readFromParcel(Parcel* parcel);
502     status_t writeToParcel(Parcel* parcel) const;
503 
504     bool operator==(const PointerCoords& other) const;
505     inline bool operator!=(const PointerCoords& other) const {
506         return !(*this == other);
507     }
508 
copyFromPointerCoords509     inline void copyFrom(const PointerCoords& other) { *this = other; }
510     PointerCoords& operator=(const PointerCoords&) = default;
511 
512 private:
513     void tooManyAxes(int axis);
514 };
515 
516 /*
517  * Pointer property data.
518  */
519 struct PointerProperties {
520     // The id of the pointer.
521     int32_t id;
522 
523     // The pointer tool type.
524     ToolType toolType;
525 
clearPointerProperties526     inline void clear() {
527         id = -1;
528         toolType = ToolType::UNKNOWN;
529     }
530 
531     bool operator==(const PointerProperties& other) const = default;
532     inline bool operator!=(const PointerProperties& other) const {
533         return !(*this == other);
534     }
535 
536     PointerProperties& operator=(const PointerProperties&) = default;
537 };
538 
539 std::ostream& operator<<(std::ostream& out, const PointerProperties& properties);
540 
541 // TODO(b/211379801) : Use a strong type from ftl/mixins.h instead
542 using DeviceId = int32_t;
543 
544 /*
545  * Input events.
546  */
547 class InputEvent : public AInputEvent {
548 public:
~InputEvent()549     virtual ~InputEvent() { }
550 
551     virtual InputEventType getType() const = 0;
552 
getId()553     inline int32_t getId() const { return mId; }
554 
getDeviceId()555     inline DeviceId getDeviceId() const { return mDeviceId; }
556 
getSource()557     inline uint32_t getSource() const { return mSource; }
558 
setSource(uint32_t source)559     inline void setSource(uint32_t source) { mSource = source; }
560 
getDisplayId()561     inline ui::LogicalDisplayId getDisplayId() const { return mDisplayId; }
562 
setDisplayId(ui::LogicalDisplayId displayId)563     inline void setDisplayId(ui::LogicalDisplayId displayId) { mDisplayId = displayId; }
564 
getHmac()565     inline std::array<uint8_t, 32> getHmac() const { return mHmac; }
566 
567     static int32_t nextId();
568 
569     bool operator==(const InputEvent&) const = default;
570 
571 protected:
572     void initialize(int32_t id, DeviceId deviceId, uint32_t source, ui::LogicalDisplayId displayId,
573                     std::array<uint8_t, 32> hmac);
574 
575     void initialize(const InputEvent& from);
576 
577     int32_t mId;
578     DeviceId mDeviceId;
579     uint32_t mSource;
580     ui::LogicalDisplayId mDisplayId{ui::LogicalDisplayId::INVALID};
581     std::array<uint8_t, 32> mHmac;
582 };
583 
584 std::ostream& operator<<(std::ostream& out, const InputEvent& event);
585 
586 /*
587  * Key events.
588  */
589 class KeyEvent : public InputEvent {
590 public:
~KeyEvent()591     virtual ~KeyEvent() { }
592 
getType()593     InputEventType getType() const override { return InputEventType::KEY; }
594 
getAction()595     inline int32_t getAction() const { return mAction; }
596 
getFlags()597     inline int32_t getFlags() const { return mFlags; }
598 
setFlags(int32_t flags)599     inline void setFlags(int32_t flags) { mFlags = flags; }
600 
getKeyCode()601     inline int32_t getKeyCode() const { return mKeyCode; }
602 
getScanCode()603     inline int32_t getScanCode() const { return mScanCode; }
604 
getMetaState()605     inline int32_t getMetaState() const { return mMetaState; }
606 
getRepeatCount()607     inline int32_t getRepeatCount() const { return mRepeatCount; }
608 
getDownTime()609     inline nsecs_t getDownTime() const { return mDownTime; }
610 
getEventTime()611     inline nsecs_t getEventTime() const { return mEventTime; }
612 
613     static const char* getLabel(int32_t keyCode);
614     static std::optional<int> getKeyCodeFromLabel(const char* label);
615 
616     void initialize(int32_t id, DeviceId deviceId, uint32_t source, ui::LogicalDisplayId displayId,
617                     std::array<uint8_t, 32> hmac, int32_t action, int32_t flags, int32_t keyCode,
618                     int32_t scanCode, int32_t metaState, int32_t repeatCount, nsecs_t downTime,
619                     nsecs_t eventTime);
620     void initialize(const KeyEvent& from);
621 
622     static const char* actionToString(int32_t action);
623 
624     bool operator==(const KeyEvent&) const = default;
625 
626 protected:
627     int32_t mAction;
628     int32_t mFlags;
629     int32_t mKeyCode;
630     int32_t mScanCode;
631     int32_t mMetaState;
632     int32_t mRepeatCount;
633     nsecs_t mDownTime;
634     nsecs_t mEventTime;
635 };
636 
637 std::ostream& operator<<(std::ostream& out, const KeyEvent& event);
638 
639 /*
640  * Motion events.
641  */
642 class MotionEvent : public InputEvent {
643 public:
~MotionEvent()644     virtual ~MotionEvent() { }
645 
getType()646     InputEventType getType() const override { return InputEventType::MOTION; }
647 
getAction()648     inline int32_t getAction() const { return mAction; }
649 
getActionMasked(int32_t action)650     static int32_t getActionMasked(int32_t action) { return action & AMOTION_EVENT_ACTION_MASK; }
651 
getActionMasked()652     inline int32_t getActionMasked() const { return getActionMasked(mAction); }
653 
getActionIndex(int32_t action)654     static uint8_t getActionIndex(int32_t action) {
655         return (action & AMOTION_EVENT_ACTION_POINTER_INDEX_MASK) >>
656                 AMOTION_EVENT_ACTION_POINTER_INDEX_SHIFT;
657     }
658 
getActionIndex()659     inline int32_t getActionIndex() const { return getActionIndex(mAction); }
660 
setAction(int32_t action)661     inline void setAction(int32_t action) { mAction = action; }
662 
getFlags()663     inline int32_t getFlags() const { return mFlags; }
664 
setFlags(int32_t flags)665     inline void setFlags(int32_t flags) { mFlags = flags; }
666 
getEdgeFlags()667     inline int32_t getEdgeFlags() const { return mEdgeFlags; }
668 
setEdgeFlags(int32_t edgeFlags)669     inline void setEdgeFlags(int32_t edgeFlags) { mEdgeFlags = edgeFlags; }
670 
getMetaState()671     inline int32_t getMetaState() const { return mMetaState; }
672 
setMetaState(int32_t metaState)673     inline void setMetaState(int32_t metaState) { mMetaState = metaState; }
674 
getButtonState()675     inline int32_t getButtonState() const { return mButtonState; }
676 
setButtonState(int32_t buttonState)677     inline void setButtonState(int32_t buttonState) { mButtonState = buttonState; }
678 
getClassification()679     inline MotionClassification getClassification() const { return mClassification; }
680 
getActionButton()681     inline int32_t getActionButton() const { return mActionButton; }
682 
setActionButton(int32_t button)683     inline void setActionButton(int32_t button) { mActionButton = button; }
684 
getTransform()685     inline const ui::Transform& getTransform() const { return mTransform; }
686 
687     std::optional<ui::Rotation> getSurfaceRotation() const;
688 
getXPrecision()689     inline float getXPrecision() const { return mXPrecision; }
690 
getYPrecision()691     inline float getYPrecision() const { return mYPrecision; }
692 
getRawXCursorPosition()693     inline float getRawXCursorPosition() const { return mRawXCursorPosition; }
694 
695     float getXCursorPosition() const;
696 
getRawYCursorPosition()697     inline float getRawYCursorPosition() const { return mRawYCursorPosition; }
698 
699     float getYCursorPosition() const;
700 
701     void setCursorPosition(float x, float y);
702 
getRawTransform()703     inline const ui::Transform& getRawTransform() const { return mRawTransform; }
704 
isValidCursorPosition(float x,float y)705     static inline bool isValidCursorPosition(float x, float y) { return !isnan(x) && !isnan(y); }
706 
getDownTime()707     inline nsecs_t getDownTime() const { return mDownTime; }
708 
setDownTime(nsecs_t downTime)709     inline void setDownTime(nsecs_t downTime) { mDownTime = downTime; }
710 
getPointerCount()711     inline size_t getPointerCount() const { return mPointerProperties.size(); }
712 
getPointerProperties(size_t pointerIndex)713     inline const PointerProperties* getPointerProperties(size_t pointerIndex) const {
714         return &mPointerProperties[pointerIndex];
715     }
716 
getPointerId(size_t pointerIndex)717     inline int32_t getPointerId(size_t pointerIndex) const {
718         return mPointerProperties[pointerIndex].id;
719     }
720 
getToolType(size_t pointerIndex)721     inline ToolType getToolType(size_t pointerIndex) const {
722         return mPointerProperties[pointerIndex].toolType;
723     }
724 
getEventTime()725     inline nsecs_t getEventTime() const { return mSampleEventTimes[getHistorySize()]; }
726 
727     /**
728      * The actual raw pointer coords: whatever comes from the input device without any external
729      * transforms applied.
730      */
731     const PointerCoords* getRawPointerCoords(size_t pointerIndex) const;
732 
733     /**
734      * This is the raw axis value. However, for X/Y axes, this currently applies a "compat-raw"
735      * transform because many apps (incorrectly) assumed that raw == oriented-screen-space.
736      * "compat raw" is raw coordinates with screen rotation applied.
737      */
738     float getRawAxisValue(int32_t axis, size_t pointerIndex) const;
739 
getRawX(size_t pointerIndex)740     inline float getRawX(size_t pointerIndex) const {
741         return getRawAxisValue(AMOTION_EVENT_AXIS_X, pointerIndex);
742     }
743 
getRawY(size_t pointerIndex)744     inline float getRawY(size_t pointerIndex) const {
745         return getRawAxisValue(AMOTION_EVENT_AXIS_Y, pointerIndex);
746     }
747 
748     float getAxisValue(int32_t axis, size_t pointerIndex) const;
749 
750     /**
751      * Get the X coordinate of the latest sample in this MotionEvent for pointer 'pointerIndex'.
752      * Identical to calling getHistoricalX(pointerIndex, getHistorySize()).
753      */
getX(size_t pointerIndex)754     inline float getX(size_t pointerIndex) const {
755         return getAxisValue(AMOTION_EVENT_AXIS_X, pointerIndex);
756     }
757 
758     /**
759      * Get the Y coordinate of the latest sample in this MotionEvent for pointer 'pointerIndex'.
760      * Identical to calling getHistoricalX(pointerIndex, getHistorySize()).
761      */
getY(size_t pointerIndex)762     inline float getY(size_t pointerIndex) const {
763         return getAxisValue(AMOTION_EVENT_AXIS_Y, pointerIndex);
764     }
765 
getPressure(size_t pointerIndex)766     inline float getPressure(size_t pointerIndex) const {
767         return getAxisValue(AMOTION_EVENT_AXIS_PRESSURE, pointerIndex);
768     }
769 
getSize(size_t pointerIndex)770     inline float getSize(size_t pointerIndex) const {
771         return getAxisValue(AMOTION_EVENT_AXIS_SIZE, pointerIndex);
772     }
773 
getTouchMajor(size_t pointerIndex)774     inline float getTouchMajor(size_t pointerIndex) const {
775         return getAxisValue(AMOTION_EVENT_AXIS_TOUCH_MAJOR, pointerIndex);
776     }
777 
getTouchMinor(size_t pointerIndex)778     inline float getTouchMinor(size_t pointerIndex) const {
779         return getAxisValue(AMOTION_EVENT_AXIS_TOUCH_MINOR, pointerIndex);
780     }
781 
getToolMajor(size_t pointerIndex)782     inline float getToolMajor(size_t pointerIndex) const {
783         return getAxisValue(AMOTION_EVENT_AXIS_TOOL_MAJOR, pointerIndex);
784     }
785 
getToolMinor(size_t pointerIndex)786     inline float getToolMinor(size_t pointerIndex) const {
787         return getAxisValue(AMOTION_EVENT_AXIS_TOOL_MINOR, pointerIndex);
788     }
789 
getOrientation(size_t pointerIndex)790     inline float getOrientation(size_t pointerIndex) const {
791         return getAxisValue(AMOTION_EVENT_AXIS_ORIENTATION, pointerIndex);
792     }
793 
getHistorySize()794     inline size_t getHistorySize() const { return mSampleEventTimes.size() - 1; }
795 
getHistoricalEventTime(size_t historicalIndex)796     inline nsecs_t getHistoricalEventTime(size_t historicalIndex) const {
797         return mSampleEventTimes[historicalIndex];
798     }
799 
800     /**
801      * The actual raw pointer coords: whatever comes from the input device without any external
802      * transforms applied.
803      */
804     const PointerCoords* getHistoricalRawPointerCoords(
805             size_t pointerIndex, size_t historicalIndex) const;
806 
807     /**
808      * This is the raw axis value. However, for X/Y axes, this currently applies a "compat-raw"
809      * transform because many apps (incorrectly) assumed that raw == oriented-screen-space.
810      * "compat raw" is raw coordinates with screen rotation applied.
811      */
812     float getHistoricalRawAxisValue(int32_t axis, size_t pointerIndex,
813             size_t historicalIndex) const;
814 
getHistoricalRawX(size_t pointerIndex,size_t historicalIndex)815     inline float getHistoricalRawX(size_t pointerIndex, size_t historicalIndex) const {
816         return getHistoricalRawAxisValue(
817                 AMOTION_EVENT_AXIS_X, pointerIndex, historicalIndex);
818     }
819 
getHistoricalRawY(size_t pointerIndex,size_t historicalIndex)820     inline float getHistoricalRawY(size_t pointerIndex, size_t historicalIndex) const {
821         return getHistoricalRawAxisValue(
822                 AMOTION_EVENT_AXIS_Y, pointerIndex, historicalIndex);
823     }
824 
825     float getHistoricalAxisValue(int32_t axis, size_t pointerIndex, size_t historicalIndex) const;
826 
getHistoricalX(size_t pointerIndex,size_t historicalIndex)827     inline float getHistoricalX(size_t pointerIndex, size_t historicalIndex) const {
828         return getHistoricalAxisValue(
829                 AMOTION_EVENT_AXIS_X, pointerIndex, historicalIndex);
830     }
831 
getHistoricalY(size_t pointerIndex,size_t historicalIndex)832     inline float getHistoricalY(size_t pointerIndex, size_t historicalIndex) const {
833         return getHistoricalAxisValue(
834                 AMOTION_EVENT_AXIS_Y, pointerIndex, historicalIndex);
835     }
836 
getHistoricalPressure(size_t pointerIndex,size_t historicalIndex)837     inline float getHistoricalPressure(size_t pointerIndex, size_t historicalIndex) const {
838         return getHistoricalAxisValue(
839                 AMOTION_EVENT_AXIS_PRESSURE, pointerIndex, historicalIndex);
840     }
841 
getHistoricalSize(size_t pointerIndex,size_t historicalIndex)842     inline float getHistoricalSize(size_t pointerIndex, size_t historicalIndex) const {
843         return getHistoricalAxisValue(
844                 AMOTION_EVENT_AXIS_SIZE, pointerIndex, historicalIndex);
845     }
846 
getHistoricalTouchMajor(size_t pointerIndex,size_t historicalIndex)847     inline float getHistoricalTouchMajor(size_t pointerIndex, size_t historicalIndex) const {
848         return getHistoricalAxisValue(
849                 AMOTION_EVENT_AXIS_TOUCH_MAJOR, pointerIndex, historicalIndex);
850     }
851 
getHistoricalTouchMinor(size_t pointerIndex,size_t historicalIndex)852     inline float getHistoricalTouchMinor(size_t pointerIndex, size_t historicalIndex) const {
853         return getHistoricalAxisValue(
854                 AMOTION_EVENT_AXIS_TOUCH_MINOR, pointerIndex, historicalIndex);
855     }
856 
getHistoricalToolMajor(size_t pointerIndex,size_t historicalIndex)857     inline float getHistoricalToolMajor(size_t pointerIndex, size_t historicalIndex) const {
858         return getHistoricalAxisValue(
859                 AMOTION_EVENT_AXIS_TOOL_MAJOR, pointerIndex, historicalIndex);
860     }
861 
getHistoricalToolMinor(size_t pointerIndex,size_t historicalIndex)862     inline float getHistoricalToolMinor(size_t pointerIndex, size_t historicalIndex) const {
863         return getHistoricalAxisValue(
864                 AMOTION_EVENT_AXIS_TOOL_MINOR, pointerIndex, historicalIndex);
865     }
866 
getHistoricalOrientation(size_t pointerIndex,size_t historicalIndex)867     inline float getHistoricalOrientation(size_t pointerIndex, size_t historicalIndex) const {
868         return getHistoricalAxisValue(
869                 AMOTION_EVENT_AXIS_ORIENTATION, pointerIndex, historicalIndex);
870     }
871 
isResampled(size_t pointerIndex,size_t historicalIndex)872     inline bool isResampled(size_t pointerIndex, size_t historicalIndex) const {
873         return getHistoricalRawPointerCoords(pointerIndex, historicalIndex)->isResampled;
874     }
875 
876     ssize_t findPointerIndex(int32_t pointerId) const;
877 
878     void initialize(int32_t id, DeviceId deviceId, uint32_t source, ui::LogicalDisplayId displayId,
879                     std::array<uint8_t, 32> hmac, int32_t action, int32_t actionButton,
880                     int32_t flags, int32_t edgeFlags, int32_t metaState, int32_t buttonState,
881                     MotionClassification classification, const ui::Transform& transform,
882                     float xPrecision, float yPrecision, float rawXCursorPosition,
883                     float rawYCursorPosition, const ui::Transform& rawTransform, nsecs_t downTime,
884                     nsecs_t eventTime, size_t pointerCount,
885                     const PointerProperties* pointerProperties, const PointerCoords* pointerCoords);
886 
887     void copyFrom(const MotionEvent* other, bool keepHistory);
888 
889     // Initialize this event by keeping only the pointers from "other" that are in splitPointerIds.
890     void splitFrom(const MotionEvent& other, std::bitset<MAX_POINTER_ID + 1> splitPointerIds,
891                    int32_t newEventId);
892 
893     void addSample(
894             nsecs_t eventTime,
895             const PointerCoords* pointerCoords);
896 
897     void offsetLocation(float xOffset, float yOffset);
898 
899     /**
900      * Get the X offset of this motion event relative to the origin of the raw coordinate space.
901      *
902      * In practice, this is the delta that was added to the raw screen coordinates (i.e. in logical
903      * display space) to adjust for the absolute position of the containing windows and views.
904      */
905     float getRawXOffset() const;
906 
907     /**
908      * Get the Y offset of this motion event relative to the origin of the raw coordinate space.
909      *
910      * In practice, this is the delta that was added to the raw screen coordinates (i.e. in logical
911      * display space) to adjust for the absolute position of the containing windows and views.
912      */
913     float getRawYOffset() const;
914 
915     void scale(float globalScaleFactor);
916 
917     // Set 3x3 perspective matrix transformation.
918     // Matrix is in row-major form and compatible with SkMatrix.
919     void transform(const std::array<float, 9>& matrix);
920 
921     // Apply 3x3 perspective matrix transformation only to content (do not modify mTransform).
922     // Matrix is in row-major form and compatible with SkMatrix.
923     void applyTransform(const std::array<float, 9>& matrix);
924 
925     status_t readFromParcel(Parcel* parcel);
926     status_t writeToParcel(Parcel* parcel) const;
927 
928     static bool isTouchEvent(uint32_t source, int32_t action);
isTouchEvent()929     inline bool isTouchEvent() const {
930         return isTouchEvent(mSource, mAction);
931     }
932 
933     // Low-level accessors.
getPointerProperties()934     inline const PointerProperties* getPointerProperties() const {
935         return mPointerProperties.data();
936     }
getSampleEventTimes()937     inline const nsecs_t* getSampleEventTimes() const { return mSampleEventTimes.data(); }
getSamplePointerCoords()938     inline const PointerCoords* getSamplePointerCoords() const {
939         return mSamplePointerCoords.data();
940     }
941 
942     static const char* getLabel(int32_t axis);
943     static std::optional<int> getAxisFromLabel(const char* label);
944 
945     static std::string actionToString(int32_t action);
946 
947     static std::tuple<int32_t /*action*/, std::vector<PointerProperties>,
948                       std::vector<PointerCoords>>
949     split(int32_t action, int32_t flags, int32_t historySize, const std::vector<PointerProperties>&,
950           const std::vector<PointerCoords>&, std::bitset<MAX_POINTER_ID + 1> splitPointerIds);
951 
952     // MotionEvent will transform various axes in different ways, based on the source. For
953     // example, the x and y axes will not have any offsets/translations applied if it comes from a
954     // relative mouse device (since SOURCE_RELATIVE_MOUSE is a non-pointer source). These methods
955     // are used to apply these transformations for different axes.
956     static vec2 calculateTransformedXY(uint32_t source, const ui::Transform&, const vec2& xy);
957     static float calculateTransformedAxisValue(int32_t axis, uint32_t source, int32_t flags,
958                                                const ui::Transform&, const PointerCoords&);
959     static void calculateTransformedCoordsInPlace(PointerCoords& coords, uint32_t source,
960                                                   int32_t flags, const ui::Transform&);
961     static PointerCoords calculateTransformedCoords(uint32_t source, int32_t flags,
962                                                     const ui::Transform&, const PointerCoords&);
963     // The rounding precision for transformed motion events.
964     static constexpr float ROUNDING_PRECISION = 0.001f;
965 
966     bool operator==(const MotionEvent&) const;
967     inline bool operator!=(const MotionEvent& o) const { return !(*this == o); };
968 
969 protected:
970     int32_t mAction;
971     int32_t mActionButton;
972     int32_t mFlags;
973     int32_t mEdgeFlags;
974     int32_t mMetaState;
975     int32_t mButtonState;
976     MotionClassification mClassification;
977     ui::Transform mTransform;
978     float mXPrecision;
979     float mYPrecision;
980     float mRawXCursorPosition;
981     float mRawYCursorPosition;
982     ui::Transform mRawTransform;
983     nsecs_t mDownTime;
984     std::vector<PointerProperties> mPointerProperties;
985     std::vector<nsecs_t> mSampleEventTimes;
986     std::vector<PointerCoords> mSamplePointerCoords;
987 };
988 
989 std::ostream& operator<<(std::ostream& out, const MotionEvent& event);
990 
991 /*
992  * Focus events.
993  */
994 class FocusEvent : public InputEvent {
995 public:
~FocusEvent()996     virtual ~FocusEvent() {}
997 
getType()998     InputEventType getType() const override { return InputEventType::FOCUS; }
999 
getHasFocus()1000     inline bool getHasFocus() const { return mHasFocus; }
1001 
1002     void initialize(int32_t id, bool hasFocus);
1003 
1004     void initialize(const FocusEvent& from);
1005 
1006 protected:
1007     bool mHasFocus;
1008 };
1009 
1010 /*
1011  * Capture events.
1012  */
1013 class CaptureEvent : public InputEvent {
1014 public:
~CaptureEvent()1015     virtual ~CaptureEvent() {}
1016 
getType()1017     InputEventType getType() const override { return InputEventType::CAPTURE; }
1018 
getPointerCaptureEnabled()1019     inline bool getPointerCaptureEnabled() const { return mPointerCaptureEnabled; }
1020 
1021     void initialize(int32_t id, bool pointerCaptureEnabled);
1022 
1023     void initialize(const CaptureEvent& from);
1024 
1025 protected:
1026     bool mPointerCaptureEnabled;
1027 };
1028 
1029 /*
1030  * Drag events.
1031  */
1032 class DragEvent : public InputEvent {
1033 public:
~DragEvent()1034     virtual ~DragEvent() {}
1035 
getType()1036     InputEventType getType() const override { return InputEventType::DRAG; }
1037 
isExiting()1038     inline bool isExiting() const { return mIsExiting; }
1039 
getX()1040     inline float getX() const { return mX; }
1041 
getY()1042     inline float getY() const { return mY; }
1043 
1044     void initialize(int32_t id, float x, float y, bool isExiting);
1045 
1046     void initialize(const DragEvent& from);
1047 
1048 protected:
1049     bool mIsExiting;
1050     float mX, mY;
1051 };
1052 
1053 /*
1054  * Touch mode events.
1055  */
1056 class TouchModeEvent : public InputEvent {
1057 public:
~TouchModeEvent()1058     virtual ~TouchModeEvent() {}
1059 
getType()1060     InputEventType getType() const override { return InputEventType::TOUCH_MODE; }
1061 
isInTouchMode()1062     inline bool isInTouchMode() const { return mIsInTouchMode; }
1063 
1064     void initialize(int32_t id, bool isInTouchMode);
1065 
1066     void initialize(const TouchModeEvent& from);
1067 
1068 protected:
1069     bool mIsInTouchMode;
1070 };
1071 
1072 /**
1073  * Base class for verified events.
1074  * Do not create a VerifiedInputEvent explicitly.
1075  * Use helper functions to create them from InputEvents.
1076  */
1077 struct __attribute__((__packed__)) VerifiedInputEvent {
1078     enum class Type : int32_t {
1079         KEY = AINPUT_EVENT_TYPE_KEY,
1080         MOTION = AINPUT_EVENT_TYPE_MOTION,
1081     };
1082 
1083     Type type;
1084     DeviceId deviceId;
1085     nsecs_t eventTimeNanos;
1086     uint32_t source;
1087     ui::LogicalDisplayId displayId;
1088 };
1089 
1090 /**
1091  * Same as KeyEvent, but only contains the data that can be verified.
1092  * If you update this class, you must also update VerifiedKeyEvent.java
1093  */
1094 struct __attribute__((__packed__)) VerifiedKeyEvent : public VerifiedInputEvent {
1095     int32_t action;
1096     int32_t flags;
1097     nsecs_t downTimeNanos;
1098     int32_t keyCode;
1099     int32_t scanCode;
1100     int32_t metaState;
1101     int32_t repeatCount;
1102 };
1103 
1104 /**
1105  * Same as MotionEvent, but only contains the data that can be verified.
1106  * If you update this class, you must also update VerifiedMotionEvent.java
1107  */
1108 struct __attribute__((__packed__)) VerifiedMotionEvent : public VerifiedInputEvent {
1109     float rawX;
1110     float rawY;
1111     int32_t actionMasked;
1112     int32_t flags;
1113     nsecs_t downTimeNanos;
1114     int32_t metaState;
1115     int32_t buttonState;
1116 };
1117 
1118 VerifiedKeyEvent verifiedKeyEventFromKeyEvent(const KeyEvent& event);
1119 VerifiedMotionEvent verifiedMotionEventFromMotionEvent(const MotionEvent& event);
1120 
1121 /*
1122  * Input event factory.
1123  */
1124 class InputEventFactoryInterface {
1125 protected:
~InputEventFactoryInterface()1126     virtual ~InputEventFactoryInterface() { }
1127 
1128 public:
InputEventFactoryInterface()1129     InputEventFactoryInterface() { }
1130 
1131     virtual KeyEvent* createKeyEvent() = 0;
1132     virtual MotionEvent* createMotionEvent() = 0;
1133     virtual FocusEvent* createFocusEvent() = 0;
1134     virtual CaptureEvent* createCaptureEvent() = 0;
1135     virtual DragEvent* createDragEvent() = 0;
1136     virtual TouchModeEvent* createTouchModeEvent() = 0;
1137 };
1138 
1139 /*
1140  * A simple input event factory implementation that uses a single preallocated instance
1141  * of each type of input event that are reused for each request.
1142  */
1143 class PreallocatedInputEventFactory : public InputEventFactoryInterface {
1144 public:
PreallocatedInputEventFactory()1145     PreallocatedInputEventFactory() { }
~PreallocatedInputEventFactory()1146     virtual ~PreallocatedInputEventFactory() { }
1147 
createKeyEvent()1148     virtual KeyEvent* createKeyEvent() override { return &mKeyEvent; }
createMotionEvent()1149     virtual MotionEvent* createMotionEvent() override { return &mMotionEvent; }
createFocusEvent()1150     virtual FocusEvent* createFocusEvent() override { return &mFocusEvent; }
createCaptureEvent()1151     virtual CaptureEvent* createCaptureEvent() override { return &mCaptureEvent; }
createDragEvent()1152     virtual DragEvent* createDragEvent() override { return &mDragEvent; }
createTouchModeEvent()1153     virtual TouchModeEvent* createTouchModeEvent() override { return &mTouchModeEvent; }
1154 
1155 private:
1156     KeyEvent mKeyEvent;
1157     MotionEvent mMotionEvent;
1158     FocusEvent mFocusEvent;
1159     CaptureEvent mCaptureEvent;
1160     DragEvent mDragEvent;
1161     TouchModeEvent mTouchModeEvent;
1162 };
1163 
1164 /*
1165  * An input event factory implementation that maintains a pool of input events.
1166  */
1167 class PooledInputEventFactory : public InputEventFactoryInterface {
1168 public:
1169     explicit PooledInputEventFactory(size_t maxPoolSize = 20);
1170     virtual ~PooledInputEventFactory();
1171 
1172     virtual KeyEvent* createKeyEvent() override;
1173     virtual MotionEvent* createMotionEvent() override;
1174     virtual FocusEvent* createFocusEvent() override;
1175     virtual CaptureEvent* createCaptureEvent() override;
1176     virtual DragEvent* createDragEvent() override;
1177     virtual TouchModeEvent* createTouchModeEvent() override;
1178 
1179     void recycle(InputEvent* event);
1180 
1181 private:
1182     const size_t mMaxPoolSize;
1183 
1184     std::queue<std::unique_ptr<KeyEvent>> mKeyEventPool;
1185     std::queue<std::unique_ptr<MotionEvent>> mMotionEventPool;
1186     std::queue<std::unique_ptr<FocusEvent>> mFocusEventPool;
1187     std::queue<std::unique_ptr<CaptureEvent>> mCaptureEventPool;
1188     std::queue<std::unique_ptr<DragEvent>> mDragEventPool;
1189     std::queue<std::unique_ptr<TouchModeEvent>> mTouchModeEventPool;
1190 };
1191 
1192 /**
1193  * An input event factory implementation that simply creates the input events on the heap, when
1194  * needed. The caller is responsible for destroying the returned references.
1195  * It is recommended that the caller wrap these return values into std::unique_ptr.
1196  */
1197 class DynamicInputEventFactory : public InputEventFactoryInterface {
1198 public:
DynamicInputEventFactory()1199     explicit DynamicInputEventFactory(){};
~DynamicInputEventFactory()1200     ~DynamicInputEventFactory(){};
1201 
createKeyEvent()1202     KeyEvent* createKeyEvent() override { return new KeyEvent(); };
createMotionEvent()1203     MotionEvent* createMotionEvent() override { return new MotionEvent(); };
createFocusEvent()1204     FocusEvent* createFocusEvent() override { return new FocusEvent(); };
createCaptureEvent()1205     CaptureEvent* createCaptureEvent() override { return new CaptureEvent(); };
createDragEvent()1206     DragEvent* createDragEvent() override { return new DragEvent(); };
createTouchModeEvent()1207     TouchModeEvent* createTouchModeEvent() override { return new TouchModeEvent(); };
1208 };
1209 
1210 /*
1211  * Describes a unique request to enable or disable Pointer Capture.
1212  */
1213 struct PointerCaptureRequest {
1214 public:
PointerCaptureRequestPointerCaptureRequest1215     inline PointerCaptureRequest() : window(), seq(0) {}
PointerCaptureRequestPointerCaptureRequest1216     inline PointerCaptureRequest(sp<IBinder> window, uint32_t seq) : window(window), seq(seq) {}
1217     inline bool operator==(const PointerCaptureRequest& other) const {
1218         return window == other.window && seq == other.seq;
1219     }
isEnablePointerCaptureRequest1220     inline bool isEnable() const { return window != nullptr; }
1221 
1222     // The requesting window.
1223     // If the request is to enable the capture, this is the input token of the window that requested
1224     // pointer capture. Otherwise, this is nullptr.
1225     sp<IBinder> window;
1226 
1227     // The sequence number for the request.
1228     uint32_t seq;
1229 };
1230 
1231 /* Pointer icon styles.
1232  * Must match the definition in android.view.PointerIcon.
1233  *
1234  * Due to backwards compatibility and public api constraints, this is a duplicate (but type safe)
1235  * definition of PointerIcon.java.
1236  */
1237 enum class PointerIconStyle : int32_t {
1238     TYPE_CUSTOM = static_cast<int32_t>(::android::os::PointerIconType::CUSTOM),
1239     TYPE_NULL = static_cast<int32_t>(::android::os::PointerIconType::TYPE_NULL),
1240     TYPE_NOT_SPECIFIED = static_cast<int32_t>(::android::os::PointerIconType::NOT_SPECIFIED),
1241     TYPE_ARROW = static_cast<int32_t>(::android::os::PointerIconType::ARROW),
1242     TYPE_CONTEXT_MENU = static_cast<int32_t>(::android::os::PointerIconType::CONTEXT_MENU),
1243     TYPE_HAND = static_cast<int32_t>(::android::os::PointerIconType::HAND),
1244     TYPE_HELP = static_cast<int32_t>(::android::os::PointerIconType::HELP),
1245     TYPE_WAIT = static_cast<int32_t>(::android::os::PointerIconType::WAIT),
1246     TYPE_CELL = static_cast<int32_t>(::android::os::PointerIconType::CELL),
1247     TYPE_CROSSHAIR = static_cast<int32_t>(::android::os::PointerIconType::CROSSHAIR),
1248     TYPE_TEXT = static_cast<int32_t>(::android::os::PointerIconType::TEXT),
1249     TYPE_VERTICAL_TEXT = static_cast<int32_t>(::android::os::PointerIconType::VERTICAL_TEXT),
1250     TYPE_ALIAS = static_cast<int32_t>(::android::os::PointerIconType::ALIAS),
1251     TYPE_COPY = static_cast<int32_t>(::android::os::PointerIconType::COPY),
1252     TYPE_NO_DROP = static_cast<int32_t>(::android::os::PointerIconType::NO_DROP),
1253     TYPE_ALL_SCROLL = static_cast<int32_t>(::android::os::PointerIconType::ALL_SCROLL),
1254     TYPE_HORIZONTAL_DOUBLE_ARROW =
1255             static_cast<int32_t>(::android::os::PointerIconType::HORIZONTAL_DOUBLE_ARROW),
1256     TYPE_VERTICAL_DOUBLE_ARROW =
1257             static_cast<int32_t>(::android::os::PointerIconType::VERTICAL_DOUBLE_ARROW),
1258     TYPE_TOP_RIGHT_DOUBLE_ARROW =
1259             static_cast<int32_t>(::android::os::PointerIconType::TOP_RIGHT_DOUBLE_ARROW),
1260     TYPE_TOP_LEFT_DOUBLE_ARROW =
1261             static_cast<int32_t>(::android::os::PointerIconType::TOP_LEFT_DOUBLE_ARROW),
1262     TYPE_ZOOM_IN = static_cast<int32_t>(::android::os::PointerIconType::ZOOM_IN),
1263     TYPE_ZOOM_OUT = static_cast<int32_t>(::android::os::PointerIconType::ZOOM_OUT),
1264     TYPE_GRAB = static_cast<int32_t>(::android::os::PointerIconType::GRAB),
1265     TYPE_GRABBING = static_cast<int32_t>(::android::os::PointerIconType::GRABBING),
1266     TYPE_HANDWRITING = static_cast<int32_t>(::android::os::PointerIconType::HANDWRITING),
1267 
1268     TYPE_SPOT_HOVER = static_cast<int32_t>(::android::os::PointerIconType::SPOT_HOVER),
1269     TYPE_SPOT_TOUCH = static_cast<int32_t>(::android::os::PointerIconType::SPOT_TOUCH),
1270     TYPE_SPOT_ANCHOR = static_cast<int32_t>(::android::os::PointerIconType::SPOT_ANCHOR),
1271 };
1272 
1273 } // namespace android
1274