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