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Michael Wrightd02c5b62014-02-10 15:10:22 -08001/*
2 * Copyright (C) 2010 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#ifndef _UI_INPUT_READER_H
18#define _UI_INPUT_READER_H
19
20#include "EventHub.h"
21#include "PointerControllerInterface.h"
22#include "InputListener.h"
23
Santos Cordon06936fe2017-04-05 10:37:00 -070024#include <input/DisplayViewport.h>
Michael Wrightd02c5b62014-02-10 15:10:22 -080025#include <input/Input.h>
26#include <input/VelocityControl.h>
27#include <input/VelocityTracker.h>
28#include <ui/DisplayInfo.h>
29#include <utils/KeyedVector.h>
30#include <utils/threads.h>
31#include <utils/Timers.h>
32#include <utils/RefBase.h>
33#include <utils/String8.h>
34#include <utils/BitSet.h>
35
36#include <stddef.h>
37#include <unistd.h>
38
39// Maximum supported size of a vibration pattern.
40// Must be at least 2.
41#define MAX_VIBRATE_PATTERN_SIZE 100
42
43// Maximum allowable delay value in a vibration pattern before
44// which the delay will be truncated.
45#define MAX_VIBRATE_PATTERN_DELAY_NSECS (1000000 * 1000000000LL)
46
47namespace android {
48
49class InputDevice;
50class InputMapper;
51
52/*
Michael Wrightd02c5b62014-02-10 15:10:22 -080053 * Input reader configuration.
54 *
55 * Specifies various options that modify the behavior of the input reader.
56 */
57struct InputReaderConfiguration {
58 // Describes changes that have occurred.
59 enum {
60 // The pointer speed changed.
61 CHANGE_POINTER_SPEED = 1 << 0,
62
63 // The pointer gesture control changed.
64 CHANGE_POINTER_GESTURE_ENABLEMENT = 1 << 1,
65
66 // The display size or orientation changed.
67 CHANGE_DISPLAY_INFO = 1 << 2,
68
69 // The visible touches option changed.
70 CHANGE_SHOW_TOUCHES = 1 << 3,
71
72 // The keyboard layouts must be reloaded.
73 CHANGE_KEYBOARD_LAYOUTS = 1 << 4,
74
75 // The device name alias supplied by the may have changed for some devices.
76 CHANGE_DEVICE_ALIAS = 1 << 5,
77
Jason Gerecke12d6baa2014-01-27 18:34:20 -080078 // The location calibration matrix changed.
Michael Wright842500e2015-03-13 17:32:02 -070079 CHANGE_TOUCH_AFFINE_TRANSFORMATION = 1 << 6,
80
81 // The presence of an external stylus has changed.
82 CHANGE_EXTERNAL_STYLUS_PRESENCE = 1 << 7,
Jason Gerecke12d6baa2014-01-27 18:34:20 -080083
Vladislav Kaznacheev78f97b32016-12-15 18:14:58 -080084 // The pointer capture mode has changed.
85 CHANGE_POINTER_CAPTURE = 1 << 8,
86
Michael Wrightd02c5b62014-02-10 15:10:22 -080087 // All devices must be reopened.
88 CHANGE_MUST_REOPEN = 1 << 31,
89 };
90
91 // Gets the amount of time to disable virtual keys after the screen is touched
92 // in order to filter out accidental virtual key presses due to swiping gestures
93 // or taps near the edge of the display. May be 0 to disable the feature.
94 nsecs_t virtualKeyQuietTime;
95
96 // The excluded device names for the platform.
97 // Devices with these names will be ignored.
98 Vector<String8> excludedDeviceNames;
99
100 // Velocity control parameters for mouse pointer movements.
101 VelocityControlParameters pointerVelocityControlParameters;
102
103 // Velocity control parameters for mouse wheel movements.
104 VelocityControlParameters wheelVelocityControlParameters;
105
106 // True if pointer gestures are enabled.
107 bool pointerGesturesEnabled;
108
109 // Quiet time between certain pointer gesture transitions.
110 // Time to allow for all fingers or buttons to settle into a stable state before
111 // starting a new gesture.
112 nsecs_t pointerGestureQuietInterval;
113
114 // The minimum speed that a pointer must travel for us to consider switching the active
115 // touch pointer to it during a drag. This threshold is set to avoid switching due
116 // to noise from a finger resting on the touch pad (perhaps just pressing it down).
117 float pointerGestureDragMinSwitchSpeed; // in pixels per second
118
119 // Tap gesture delay time.
120 // The time between down and up must be less than this to be considered a tap.
121 nsecs_t pointerGestureTapInterval;
122
123 // Tap drag gesture delay time.
124 // The time between the previous tap's up and the next down must be less than
125 // this to be considered a drag. Otherwise, the previous tap is finished and a
126 // new tap begins.
127 //
128 // Note that the previous tap will be held down for this entire duration so this
129 // interval must be shorter than the long press timeout.
130 nsecs_t pointerGestureTapDragInterval;
131
132 // The distance in pixels that the pointer is allowed to move from initial down
133 // to up and still be called a tap.
134 float pointerGestureTapSlop; // in pixels
135
136 // Time after the first touch points go down to settle on an initial centroid.
137 // This is intended to be enough time to handle cases where the user puts down two
138 // fingers at almost but not quite exactly the same time.
139 nsecs_t pointerGestureMultitouchSettleInterval;
140
141 // The transition from PRESS to SWIPE or FREEFORM gesture mode is made when
142 // at least two pointers have moved at least this far from their starting place.
143 float pointerGestureMultitouchMinDistance; // in pixels
144
145 // The transition from PRESS to SWIPE gesture mode can only occur when the
146 // cosine of the angle between the two vectors is greater than or equal to than this value
147 // which indicates that the vectors are oriented in the same direction.
148 // When the vectors are oriented in the exactly same direction, the cosine is 1.0.
149 // (In exactly opposite directions, the cosine is -1.0.)
150 float pointerGestureSwipeTransitionAngleCosine;
151
152 // The transition from PRESS to SWIPE gesture mode can only occur when the
153 // fingers are no more than this far apart relative to the diagonal size of
154 // the touch pad. For example, a ratio of 0.5 means that the fingers must be
155 // no more than half the diagonal size of the touch pad apart.
156 float pointerGestureSwipeMaxWidthRatio;
157
158 // The gesture movement speed factor relative to the size of the display.
159 // Movement speed applies when the fingers are moving in the same direction.
160 // Without acceleration, a full swipe of the touch pad diagonal in movement mode
161 // will cover this portion of the display diagonal.
162 float pointerGestureMovementSpeedRatio;
163
164 // The gesture zoom speed factor relative to the size of the display.
165 // Zoom speed applies when the fingers are mostly moving relative to each other
166 // to execute a scale gesture or similar.
167 // Without acceleration, a full swipe of the touch pad diagonal in zoom mode
168 // will cover this portion of the display diagonal.
169 float pointerGestureZoomSpeedRatio;
170
171 // True to show the location of touches on the touch screen as spots.
172 bool showTouches;
173
Vladislav Kaznacheev78f97b32016-12-15 18:14:58 -0800174 // True if pointer capture is enabled.
175 bool pointerCapture;
176
Michael Wrightd02c5b62014-02-10 15:10:22 -0800177 InputReaderConfiguration() :
178 virtualKeyQuietTime(0),
179 pointerVelocityControlParameters(1.0f, 500.0f, 3000.0f, 3.0f),
180 wheelVelocityControlParameters(1.0f, 15.0f, 50.0f, 4.0f),
181 pointerGesturesEnabled(true),
182 pointerGestureQuietInterval(100 * 1000000LL), // 100 ms
183 pointerGestureDragMinSwitchSpeed(50), // 50 pixels per second
184 pointerGestureTapInterval(150 * 1000000LL), // 150 ms
185 pointerGestureTapDragInterval(150 * 1000000LL), // 150 ms
186 pointerGestureTapSlop(10.0f), // 10 pixels
187 pointerGestureMultitouchSettleInterval(100 * 1000000LL), // 100 ms
188 pointerGestureMultitouchMinDistance(15), // 15 pixels
189 pointerGestureSwipeTransitionAngleCosine(0.2588f), // cosine of 75 degrees
190 pointerGestureSwipeMaxWidthRatio(0.25f),
191 pointerGestureMovementSpeedRatio(0.8f),
192 pointerGestureZoomSpeedRatio(0.3f),
193 showTouches(false) { }
194
Santos Cordon06936fe2017-04-05 10:37:00 -0700195 bool getDisplayViewport(ViewportType viewportType, const String8* displayId,
196 DisplayViewport* outViewport) const;
197 void setPhysicalDisplayViewport(ViewportType viewportType, const DisplayViewport& viewport);
198 void setVirtualDisplayViewports(const Vector<DisplayViewport>& viewports);
199
200
201 void dump(String8& dump) const;
202 void dumpViewport(String8& dump, const DisplayViewport& viewport) const;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800203
204private:
205 DisplayViewport mInternalDisplay;
206 DisplayViewport mExternalDisplay;
Santos Cordon06936fe2017-04-05 10:37:00 -0700207 Vector<DisplayViewport> mVirtualDisplays;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800208};
209
210
Jason Gereckeaf126fb2012-05-10 14:22:47 -0700211struct TouchAffineTransformation {
212 float x_scale;
213 float x_ymix;
214 float x_offset;
215 float y_xmix;
216 float y_scale;
217 float y_offset;
218
219 TouchAffineTransformation() :
220 x_scale(1.0f), x_ymix(0.0f), x_offset(0.0f),
221 y_xmix(0.0f), y_scale(1.0f), y_offset(0.0f) {
222 }
223
Jason Gerecke489fda82012-09-07 17:19:40 -0700224 TouchAffineTransformation(float xscale, float xymix, float xoffset,
225 float yxmix, float yscale, float yoffset) :
226 x_scale(xscale), x_ymix(xymix), x_offset(xoffset),
227 y_xmix(yxmix), y_scale(yscale), y_offset(yoffset) {
228 }
229
Jason Gereckeaf126fb2012-05-10 14:22:47 -0700230 void applyTo(float& x, float& y) const;
231};
232
233
Michael Wrightd02c5b62014-02-10 15:10:22 -0800234/*
235 * Input reader policy interface.
236 *
237 * The input reader policy is used by the input reader to interact with the Window Manager
238 * and other system components.
239 *
240 * The actual implementation is partially supported by callbacks into the DVM
241 * via JNI. This interface is also mocked in the unit tests.
242 *
243 * These methods must NOT re-enter the input reader since they may be called while
244 * holding the input reader lock.
245 */
246class InputReaderPolicyInterface : public virtual RefBase {
247protected:
248 InputReaderPolicyInterface() { }
249 virtual ~InputReaderPolicyInterface() { }
250
251public:
252 /* Gets the input reader configuration. */
253 virtual void getReaderConfiguration(InputReaderConfiguration* outConfig) = 0;
254
255 /* Gets a pointer controller associated with the specified cursor device (ie. a mouse). */
256 virtual sp<PointerControllerInterface> obtainPointerController(int32_t deviceId) = 0;
257
258 /* Notifies the input reader policy that some input devices have changed
259 * and provides information about all current input devices.
260 */
261 virtual void notifyInputDevicesChanged(const Vector<InputDeviceInfo>& inputDevices) = 0;
262
263 /* Gets the keyboard layout for a particular input device. */
264 virtual sp<KeyCharacterMap> getKeyboardLayoutOverlay(
265 const InputDeviceIdentifier& identifier) = 0;
266
267 /* Gets a user-supplied alias for a particular input device, or an empty string if none. */
268 virtual String8 getDeviceAlias(const InputDeviceIdentifier& identifier) = 0;
Jason Gerecke12d6baa2014-01-27 18:34:20 -0800269
270 /* Gets the affine calibration associated with the specified device. */
271 virtual TouchAffineTransformation getTouchAffineTransformation(
Jason Gerecke71b16e82014-03-10 09:47:59 -0700272 const String8& inputDeviceDescriptor, int32_t surfaceRotation) = 0;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800273};
274
275
276/* Processes raw input events and sends cooked event data to an input listener. */
277class InputReaderInterface : public virtual RefBase {
278protected:
279 InputReaderInterface() { }
280 virtual ~InputReaderInterface() { }
281
282public:
283 /* Dumps the state of the input reader.
284 *
285 * This method may be called on any thread (usually by the input manager). */
286 virtual void dump(String8& dump) = 0;
287
288 /* Called by the heatbeat to ensures that the reader has not deadlocked. */
289 virtual void monitor() = 0;
290
291 /* Runs a single iteration of the processing loop.
292 * Nominally reads and processes one incoming message from the EventHub.
293 *
294 * This method should be called on the input reader thread.
295 */
296 virtual void loopOnce() = 0;
297
298 /* Gets information about all input devices.
299 *
300 * This method may be called on any thread (usually by the input manager).
301 */
302 virtual void getInputDevices(Vector<InputDeviceInfo>& outInputDevices) = 0;
303
304 /* Query current input state. */
305 virtual int32_t getScanCodeState(int32_t deviceId, uint32_t sourceMask,
306 int32_t scanCode) = 0;
307 virtual int32_t getKeyCodeState(int32_t deviceId, uint32_t sourceMask,
308 int32_t keyCode) = 0;
309 virtual int32_t getSwitchState(int32_t deviceId, uint32_t sourceMask,
310 int32_t sw) = 0;
311
Andrii Kulian763a3a42016-03-08 10:46:16 -0800312 /* Toggle Caps Lock */
313 virtual void toggleCapsLockState(int32_t deviceId) = 0;
314
Michael Wrightd02c5b62014-02-10 15:10:22 -0800315 /* Determine whether physical keys exist for the given framework-domain key codes. */
316 virtual bool hasKeys(int32_t deviceId, uint32_t sourceMask,
317 size_t numCodes, const int32_t* keyCodes, uint8_t* outFlags) = 0;
318
319 /* Requests that a reconfiguration of all input devices.
320 * The changes flag is a bitfield that indicates what has changed and whether
321 * the input devices must all be reopened. */
322 virtual void requestRefreshConfiguration(uint32_t changes) = 0;
323
324 /* Controls the vibrator of a particular input device. */
325 virtual void vibrate(int32_t deviceId, const nsecs_t* pattern, size_t patternSize,
326 ssize_t repeat, int32_t token) = 0;
327 virtual void cancelVibrate(int32_t deviceId, int32_t token) = 0;
328};
329
Michael Wright842500e2015-03-13 17:32:02 -0700330struct StylusState {
331 /* Time the stylus event was received. */
332 nsecs_t when;
333 /* Pressure as reported by the stylus, normalized to the range [0, 1.0]. */
334 float pressure;
335 /* The state of the stylus buttons as a bitfield (e.g. AMOTION_EVENT_BUTTON_SECONDARY). */
336 uint32_t buttons;
337 /* Which tool type the stylus is currently using (e.g. AMOTION_EVENT_TOOL_TYPE_ERASER). */
338 int32_t toolType;
339
340 void copyFrom(const StylusState& other) {
341 when = other.when;
342 pressure = other.pressure;
343 buttons = other.buttons;
344 toolType = other.toolType;
345 }
346
347 void clear() {
348 when = LLONG_MAX;
349 pressure = 0.f;
350 buttons = 0;
351 toolType = AMOTION_EVENT_TOOL_TYPE_UNKNOWN;
352 }
353};
354
Michael Wrightd02c5b62014-02-10 15:10:22 -0800355
356/* Internal interface used by individual input devices to access global input device state
357 * and parameters maintained by the input reader.
358 */
359class InputReaderContext {
360public:
361 InputReaderContext() { }
362 virtual ~InputReaderContext() { }
363
364 virtual void updateGlobalMetaState() = 0;
365 virtual int32_t getGlobalMetaState() = 0;
366
367 virtual void disableVirtualKeysUntil(nsecs_t time) = 0;
368 virtual bool shouldDropVirtualKey(nsecs_t now,
369 InputDevice* device, int32_t keyCode, int32_t scanCode) = 0;
370
371 virtual void fadePointer() = 0;
372
373 virtual void requestTimeoutAtTime(nsecs_t when) = 0;
374 virtual int32_t bumpGeneration() = 0;
375
Michael Wrightb85401d2015-04-17 18:35:15 +0100376 virtual void getExternalStylusDevices(Vector<InputDeviceInfo>& outDevices) = 0;
377 virtual void dispatchExternalStylusState(const StylusState& outState) = 0;
Michael Wright842500e2015-03-13 17:32:02 -0700378
Michael Wrightd02c5b62014-02-10 15:10:22 -0800379 virtual InputReaderPolicyInterface* getPolicy() = 0;
380 virtual InputListenerInterface* getListener() = 0;
381 virtual EventHubInterface* getEventHub() = 0;
382};
383
384
385/* The input reader reads raw event data from the event hub and processes it into input events
386 * that it sends to the input listener. Some functions of the input reader, such as early
387 * event filtering in low power states, are controlled by a separate policy object.
388 *
389 * The InputReader owns a collection of InputMappers. Most of the work it does happens
390 * on the input reader thread but the InputReader can receive queries from other system
391 * components running on arbitrary threads. To keep things manageable, the InputReader
392 * uses a single Mutex to guard its state. The Mutex may be held while calling into the
393 * EventHub or the InputReaderPolicy but it is never held while calling into the
394 * InputListener.
395 */
396class InputReader : public InputReaderInterface {
397public:
398 InputReader(const sp<EventHubInterface>& eventHub,
399 const sp<InputReaderPolicyInterface>& policy,
400 const sp<InputListenerInterface>& listener);
401 virtual ~InputReader();
402
403 virtual void dump(String8& dump);
404 virtual void monitor();
405
406 virtual void loopOnce();
407
408 virtual void getInputDevices(Vector<InputDeviceInfo>& outInputDevices);
409
410 virtual int32_t getScanCodeState(int32_t deviceId, uint32_t sourceMask,
411 int32_t scanCode);
412 virtual int32_t getKeyCodeState(int32_t deviceId, uint32_t sourceMask,
413 int32_t keyCode);
414 virtual int32_t getSwitchState(int32_t deviceId, uint32_t sourceMask,
415 int32_t sw);
416
Andrii Kulian763a3a42016-03-08 10:46:16 -0800417 virtual void toggleCapsLockState(int32_t deviceId);
418
Michael Wrightd02c5b62014-02-10 15:10:22 -0800419 virtual bool hasKeys(int32_t deviceId, uint32_t sourceMask,
420 size_t numCodes, const int32_t* keyCodes, uint8_t* outFlags);
421
422 virtual void requestRefreshConfiguration(uint32_t changes);
423
424 virtual void vibrate(int32_t deviceId, const nsecs_t* pattern, size_t patternSize,
425 ssize_t repeat, int32_t token);
426 virtual void cancelVibrate(int32_t deviceId, int32_t token);
427
428protected:
429 // These members are protected so they can be instrumented by test cases.
430 virtual InputDevice* createDeviceLocked(int32_t deviceId, int32_t controllerNumber,
431 const InputDeviceIdentifier& identifier, uint32_t classes);
432
433 class ContextImpl : public InputReaderContext {
434 InputReader* mReader;
435
436 public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -0700437 explicit ContextImpl(InputReader* reader);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800438
439 virtual void updateGlobalMetaState();
440 virtual int32_t getGlobalMetaState();
441 virtual void disableVirtualKeysUntil(nsecs_t time);
442 virtual bool shouldDropVirtualKey(nsecs_t now,
443 InputDevice* device, int32_t keyCode, int32_t scanCode);
444 virtual void fadePointer();
445 virtual void requestTimeoutAtTime(nsecs_t when);
446 virtual int32_t bumpGeneration();
Michael Wright842500e2015-03-13 17:32:02 -0700447 virtual void getExternalStylusDevices(Vector<InputDeviceInfo>& outDevices);
448 virtual void dispatchExternalStylusState(const StylusState& outState);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800449 virtual InputReaderPolicyInterface* getPolicy();
450 virtual InputListenerInterface* getListener();
451 virtual EventHubInterface* getEventHub();
452 } mContext;
453
454 friend class ContextImpl;
455
456private:
457 Mutex mLock;
458
459 Condition mReaderIsAliveCondition;
460
461 sp<EventHubInterface> mEventHub;
462 sp<InputReaderPolicyInterface> mPolicy;
463 sp<QueuedInputListener> mQueuedListener;
464
465 InputReaderConfiguration mConfig;
466
467 // The event queue.
468 static const int EVENT_BUFFER_SIZE = 256;
469 RawEvent mEventBuffer[EVENT_BUFFER_SIZE];
470
471 KeyedVector<int32_t, InputDevice*> mDevices;
472
473 // low-level input event decoding and device management
474 void processEventsLocked(const RawEvent* rawEvents, size_t count);
475
476 void addDeviceLocked(nsecs_t when, int32_t deviceId);
477 void removeDeviceLocked(nsecs_t when, int32_t deviceId);
478 void processEventsForDeviceLocked(int32_t deviceId, const RawEvent* rawEvents, size_t count);
479 void timeoutExpiredLocked(nsecs_t when);
480
481 void handleConfigurationChangedLocked(nsecs_t when);
482
483 int32_t mGlobalMetaState;
484 void updateGlobalMetaStateLocked();
485 int32_t getGlobalMetaStateLocked();
486
Michael Wright842500e2015-03-13 17:32:02 -0700487 void notifyExternalStylusPresenceChanged();
488 void getExternalStylusDevicesLocked(Vector<InputDeviceInfo>& outDevices);
489 void dispatchExternalStylusState(const StylusState& state);
490
Michael Wrightd02c5b62014-02-10 15:10:22 -0800491 void fadePointerLocked();
492
493 int32_t mGeneration;
494 int32_t bumpGenerationLocked();
495
496 void getInputDevicesLocked(Vector<InputDeviceInfo>& outInputDevices);
497
498 nsecs_t mDisableVirtualKeysTimeout;
499 void disableVirtualKeysUntilLocked(nsecs_t time);
500 bool shouldDropVirtualKeyLocked(nsecs_t now,
501 InputDevice* device, int32_t keyCode, int32_t scanCode);
502
503 nsecs_t mNextTimeout;
504 void requestTimeoutAtTimeLocked(nsecs_t when);
505
506 uint32_t mConfigurationChangesToRefresh;
507 void refreshConfigurationLocked(uint32_t changes);
508
509 // state queries
510 typedef int32_t (InputDevice::*GetStateFunc)(uint32_t sourceMask, int32_t code);
511 int32_t getStateLocked(int32_t deviceId, uint32_t sourceMask, int32_t code,
512 GetStateFunc getStateFunc);
513 bool markSupportedKeyCodesLocked(int32_t deviceId, uint32_t sourceMask, size_t numCodes,
514 const int32_t* keyCodes, uint8_t* outFlags);
515};
516
517
518/* Reads raw events from the event hub and processes them, endlessly. */
519class InputReaderThread : public Thread {
520public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -0700521 explicit InputReaderThread(const sp<InputReaderInterface>& reader);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800522 virtual ~InputReaderThread();
523
524private:
525 sp<InputReaderInterface> mReader;
526
527 virtual bool threadLoop();
528};
529
530
531/* Represents the state of a single input device. */
532class InputDevice {
533public:
534 InputDevice(InputReaderContext* context, int32_t id, int32_t generation, int32_t
535 controllerNumber, const InputDeviceIdentifier& identifier, uint32_t classes);
536 ~InputDevice();
537
538 inline InputReaderContext* getContext() { return mContext; }
539 inline int32_t getId() const { return mId; }
540 inline int32_t getControllerNumber() const { return mControllerNumber; }
541 inline int32_t getGeneration() const { return mGeneration; }
542 inline const String8& getName() const { return mIdentifier.name; }
Jason Gerecke12d6baa2014-01-27 18:34:20 -0800543 inline const String8& getDescriptor() { return mIdentifier.descriptor; }
Michael Wrightd02c5b62014-02-10 15:10:22 -0800544 inline uint32_t getClasses() const { return mClasses; }
545 inline uint32_t getSources() const { return mSources; }
546
547 inline bool isExternal() { return mIsExternal; }
548 inline void setExternal(bool external) { mIsExternal = external; }
549
Tim Kilbourn063ff532015-04-08 10:26:18 -0700550 inline void setMic(bool hasMic) { mHasMic = hasMic; }
551 inline bool hasMic() const { return mHasMic; }
552
Michael Wrightd02c5b62014-02-10 15:10:22 -0800553 inline bool isIgnored() { return mMappers.isEmpty(); }
554
555 void dump(String8& dump);
556 void addMapper(InputMapper* mapper);
557 void configure(nsecs_t when, const InputReaderConfiguration* config, uint32_t changes);
558 void reset(nsecs_t when);
559 void process(const RawEvent* rawEvents, size_t count);
560 void timeoutExpired(nsecs_t when);
Michael Wright842500e2015-03-13 17:32:02 -0700561 void updateExternalStylusState(const StylusState& state);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800562
563 void getDeviceInfo(InputDeviceInfo* outDeviceInfo);
564 int32_t getKeyCodeState(uint32_t sourceMask, int32_t keyCode);
565 int32_t getScanCodeState(uint32_t sourceMask, int32_t scanCode);
566 int32_t getSwitchState(uint32_t sourceMask, int32_t switchCode);
567 bool markSupportedKeyCodes(uint32_t sourceMask, size_t numCodes,
568 const int32_t* keyCodes, uint8_t* outFlags);
569 void vibrate(const nsecs_t* pattern, size_t patternSize, ssize_t repeat, int32_t token);
570 void cancelVibrate(int32_t token);
Jeff Brownc9aa6282015-02-11 19:03:28 -0800571 void cancelTouch(nsecs_t when);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800572
573 int32_t getMetaState();
Andrii Kulian763a3a42016-03-08 10:46:16 -0800574 void updateMetaState(int32_t keyCode);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800575
576 void fadePointer();
577
578 void bumpGeneration();
579
580 void notifyReset(nsecs_t when);
581
582 inline const PropertyMap& getConfiguration() { return mConfiguration; }
583 inline EventHubInterface* getEventHub() { return mContext->getEventHub(); }
584
585 bool hasKey(int32_t code) {
586 return getEventHub()->hasScanCode(mId, code);
587 }
588
589 bool hasAbsoluteAxis(int32_t code) {
590 RawAbsoluteAxisInfo info;
591 getEventHub()->getAbsoluteAxisInfo(mId, code, &info);
592 return info.valid;
593 }
594
595 bool isKeyPressed(int32_t code) {
596 return getEventHub()->getScanCodeState(mId, code) == AKEY_STATE_DOWN;
597 }
598
599 int32_t getAbsoluteAxisValue(int32_t code) {
600 int32_t value;
601 getEventHub()->getAbsoluteAxisValue(mId, code, &value);
602 return value;
603 }
604
605private:
606 InputReaderContext* mContext;
607 int32_t mId;
608 int32_t mGeneration;
609 int32_t mControllerNumber;
610 InputDeviceIdentifier mIdentifier;
611 String8 mAlias;
612 uint32_t mClasses;
613
614 Vector<InputMapper*> mMappers;
615
616 uint32_t mSources;
617 bool mIsExternal;
Tim Kilbourn063ff532015-04-08 10:26:18 -0700618 bool mHasMic;
Michael Wrightd02c5b62014-02-10 15:10:22 -0800619 bool mDropUntilNextSync;
620
621 typedef int32_t (InputMapper::*GetStateFunc)(uint32_t sourceMask, int32_t code);
622 int32_t getState(uint32_t sourceMask, int32_t code, GetStateFunc getStateFunc);
623
624 PropertyMap mConfiguration;
625};
626
627
628/* Keeps track of the state of mouse or touch pad buttons. */
629class CursorButtonAccumulator {
630public:
631 CursorButtonAccumulator();
632 void reset(InputDevice* device);
633
634 void process(const RawEvent* rawEvent);
635
636 uint32_t getButtonState() const;
637
638private:
639 bool mBtnLeft;
640 bool mBtnRight;
641 bool mBtnMiddle;
642 bool mBtnBack;
643 bool mBtnSide;
644 bool mBtnForward;
645 bool mBtnExtra;
646 bool mBtnTask;
647
648 void clearButtons();
649};
650
651
652/* Keeps track of cursor movements. */
653
654class CursorMotionAccumulator {
655public:
656 CursorMotionAccumulator();
657 void reset(InputDevice* device);
658
659 void process(const RawEvent* rawEvent);
660 void finishSync();
661
662 inline int32_t getRelativeX() const { return mRelX; }
663 inline int32_t getRelativeY() const { return mRelY; }
664
665private:
666 int32_t mRelX;
667 int32_t mRelY;
668
669 void clearRelativeAxes();
670};
671
672
673/* Keeps track of cursor scrolling motions. */
674
675class CursorScrollAccumulator {
676public:
677 CursorScrollAccumulator();
678 void configure(InputDevice* device);
679 void reset(InputDevice* device);
680
681 void process(const RawEvent* rawEvent);
682 void finishSync();
683
684 inline bool haveRelativeVWheel() const { return mHaveRelWheel; }
685 inline bool haveRelativeHWheel() const { return mHaveRelHWheel; }
686
687 inline int32_t getRelativeX() const { return mRelX; }
688 inline int32_t getRelativeY() const { return mRelY; }
689 inline int32_t getRelativeVWheel() const { return mRelWheel; }
690 inline int32_t getRelativeHWheel() const { return mRelHWheel; }
691
692private:
693 bool mHaveRelWheel;
694 bool mHaveRelHWheel;
695
696 int32_t mRelX;
697 int32_t mRelY;
698 int32_t mRelWheel;
699 int32_t mRelHWheel;
700
701 void clearRelativeAxes();
702};
703
704
705/* Keeps track of the state of touch, stylus and tool buttons. */
706class TouchButtonAccumulator {
707public:
708 TouchButtonAccumulator();
709 void configure(InputDevice* device);
710 void reset(InputDevice* device);
711
712 void process(const RawEvent* rawEvent);
713
714 uint32_t getButtonState() const;
715 int32_t getToolType() const;
716 bool isToolActive() const;
717 bool isHovering() const;
718 bool hasStylus() const;
719
720private:
721 bool mHaveBtnTouch;
722 bool mHaveStylus;
723
724 bool mBtnTouch;
725 bool mBtnStylus;
726 bool mBtnStylus2;
727 bool mBtnToolFinger;
728 bool mBtnToolPen;
729 bool mBtnToolRubber;
730 bool mBtnToolBrush;
731 bool mBtnToolPencil;
732 bool mBtnToolAirbrush;
733 bool mBtnToolMouse;
734 bool mBtnToolLens;
735 bool mBtnToolDoubleTap;
736 bool mBtnToolTripleTap;
737 bool mBtnToolQuadTap;
738
739 void clearButtons();
740};
741
742
743/* Raw axis information from the driver. */
744struct RawPointerAxes {
745 RawAbsoluteAxisInfo x;
746 RawAbsoluteAxisInfo y;
747 RawAbsoluteAxisInfo pressure;
748 RawAbsoluteAxisInfo touchMajor;
749 RawAbsoluteAxisInfo touchMinor;
750 RawAbsoluteAxisInfo toolMajor;
751 RawAbsoluteAxisInfo toolMinor;
752 RawAbsoluteAxisInfo orientation;
753 RawAbsoluteAxisInfo distance;
754 RawAbsoluteAxisInfo tiltX;
755 RawAbsoluteAxisInfo tiltY;
756 RawAbsoluteAxisInfo trackingId;
757 RawAbsoluteAxisInfo slot;
758
759 RawPointerAxes();
760 void clear();
761};
762
763
764/* Raw data for a collection of pointers including a pointer id mapping table. */
765struct RawPointerData {
766 struct Pointer {
767 uint32_t id;
768 int32_t x;
769 int32_t y;
770 int32_t pressure;
771 int32_t touchMajor;
772 int32_t touchMinor;
773 int32_t toolMajor;
774 int32_t toolMinor;
775 int32_t orientation;
776 int32_t distance;
777 int32_t tiltX;
778 int32_t tiltY;
779 int32_t toolType; // a fully decoded AMOTION_EVENT_TOOL_TYPE constant
780 bool isHovering;
781 };
782
783 uint32_t pointerCount;
784 Pointer pointers[MAX_POINTERS];
785 BitSet32 hoveringIdBits, touchingIdBits;
786 uint32_t idToIndex[MAX_POINTER_ID + 1];
787
788 RawPointerData();
789 void clear();
790 void copyFrom(const RawPointerData& other);
791 void getCentroidOfTouchingPointers(float* outX, float* outY) const;
792
793 inline void markIdBit(uint32_t id, bool isHovering) {
794 if (isHovering) {
795 hoveringIdBits.markBit(id);
796 } else {
797 touchingIdBits.markBit(id);
798 }
799 }
800
801 inline void clearIdBits() {
802 hoveringIdBits.clear();
803 touchingIdBits.clear();
804 }
805
806 inline const Pointer& pointerForId(uint32_t id) const {
807 return pointers[idToIndex[id]];
808 }
809
810 inline bool isHovering(uint32_t pointerIndex) {
811 return pointers[pointerIndex].isHovering;
812 }
813};
814
815
816/* Cooked data for a collection of pointers including a pointer id mapping table. */
817struct CookedPointerData {
818 uint32_t pointerCount;
819 PointerProperties pointerProperties[MAX_POINTERS];
820 PointerCoords pointerCoords[MAX_POINTERS];
821 BitSet32 hoveringIdBits, touchingIdBits;
822 uint32_t idToIndex[MAX_POINTER_ID + 1];
823
824 CookedPointerData();
825 void clear();
826 void copyFrom(const CookedPointerData& other);
827
828 inline const PointerCoords& pointerCoordsForId(uint32_t id) const {
829 return pointerCoords[idToIndex[id]];
830 }
831
Michael Wright842500e2015-03-13 17:32:02 -0700832 inline PointerCoords& editPointerCoordsWithId(uint32_t id) {
833 return pointerCoords[idToIndex[id]];
834 }
835
836 inline PointerProperties& editPointerPropertiesWithId(uint32_t id) {
837 return pointerProperties[idToIndex[id]];
838 }
839
Michael Wright53dca3a2015-04-23 17:39:53 +0100840 inline bool isHovering(uint32_t pointerIndex) const {
Michael Wrightd02c5b62014-02-10 15:10:22 -0800841 return hoveringIdBits.hasBit(pointerProperties[pointerIndex].id);
842 }
Michael Wright842500e2015-03-13 17:32:02 -0700843
Michael Wright53dca3a2015-04-23 17:39:53 +0100844 inline bool isTouching(uint32_t pointerIndex) const {
Michael Wright842500e2015-03-13 17:32:02 -0700845 return touchingIdBits.hasBit(pointerProperties[pointerIndex].id);
846 }
Michael Wrightd02c5b62014-02-10 15:10:22 -0800847};
848
849
850/* Keeps track of the state of single-touch protocol. */
851class SingleTouchMotionAccumulator {
852public:
853 SingleTouchMotionAccumulator();
854
855 void process(const RawEvent* rawEvent);
856 void reset(InputDevice* device);
857
858 inline int32_t getAbsoluteX() const { return mAbsX; }
859 inline int32_t getAbsoluteY() const { return mAbsY; }
860 inline int32_t getAbsolutePressure() const { return mAbsPressure; }
861 inline int32_t getAbsoluteToolWidth() const { return mAbsToolWidth; }
862 inline int32_t getAbsoluteDistance() const { return mAbsDistance; }
863 inline int32_t getAbsoluteTiltX() const { return mAbsTiltX; }
864 inline int32_t getAbsoluteTiltY() const { return mAbsTiltY; }
865
866private:
867 int32_t mAbsX;
868 int32_t mAbsY;
869 int32_t mAbsPressure;
870 int32_t mAbsToolWidth;
871 int32_t mAbsDistance;
872 int32_t mAbsTiltX;
873 int32_t mAbsTiltY;
874
875 void clearAbsoluteAxes();
876};
877
878
879/* Keeps track of the state of multi-touch protocol. */
880class MultiTouchMotionAccumulator {
881public:
882 class Slot {
883 public:
884 inline bool isInUse() const { return mInUse; }
885 inline int32_t getX() const { return mAbsMTPositionX; }
886 inline int32_t getY() const { return mAbsMTPositionY; }
887 inline int32_t getTouchMajor() const { return mAbsMTTouchMajor; }
888 inline int32_t getTouchMinor() const {
889 return mHaveAbsMTTouchMinor ? mAbsMTTouchMinor : mAbsMTTouchMajor; }
890 inline int32_t getToolMajor() const { return mAbsMTWidthMajor; }
891 inline int32_t getToolMinor() const {
892 return mHaveAbsMTWidthMinor ? mAbsMTWidthMinor : mAbsMTWidthMajor; }
893 inline int32_t getOrientation() const { return mAbsMTOrientation; }
894 inline int32_t getTrackingId() const { return mAbsMTTrackingId; }
895 inline int32_t getPressure() const { return mAbsMTPressure; }
896 inline int32_t getDistance() const { return mAbsMTDistance; }
897 inline int32_t getToolType() const;
898
899 private:
900 friend class MultiTouchMotionAccumulator;
901
902 bool mInUse;
903 bool mHaveAbsMTTouchMinor;
904 bool mHaveAbsMTWidthMinor;
905 bool mHaveAbsMTToolType;
906
907 int32_t mAbsMTPositionX;
908 int32_t mAbsMTPositionY;
909 int32_t mAbsMTTouchMajor;
910 int32_t mAbsMTTouchMinor;
911 int32_t mAbsMTWidthMajor;
912 int32_t mAbsMTWidthMinor;
913 int32_t mAbsMTOrientation;
914 int32_t mAbsMTTrackingId;
915 int32_t mAbsMTPressure;
916 int32_t mAbsMTDistance;
917 int32_t mAbsMTToolType;
918
919 Slot();
920 void clear();
921 };
922
923 MultiTouchMotionAccumulator();
924 ~MultiTouchMotionAccumulator();
925
926 void configure(InputDevice* device, size_t slotCount, bool usingSlotsProtocol);
927 void reset(InputDevice* device);
928 void process(const RawEvent* rawEvent);
929 void finishSync();
930 bool hasStylus() const;
931
932 inline size_t getSlotCount() const { return mSlotCount; }
933 inline const Slot* getSlot(size_t index) const { return &mSlots[index]; }
934
935private:
936 int32_t mCurrentSlot;
937 Slot* mSlots;
938 size_t mSlotCount;
939 bool mUsingSlotsProtocol;
940 bool mHaveStylus;
941
942 void clearSlots(int32_t initialSlot);
943};
944
945
946/* An input mapper transforms raw input events into cooked event data.
947 * A single input device can have multiple associated input mappers in order to interpret
948 * different classes of events.
949 *
950 * InputMapper lifecycle:
951 * - create
952 * - configure with 0 changes
953 * - reset
954 * - process, process, process (may occasionally reconfigure with non-zero changes or reset)
955 * - reset
956 * - destroy
957 */
958class InputMapper {
959public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -0700960 explicit InputMapper(InputDevice* device);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800961 virtual ~InputMapper();
962
963 inline InputDevice* getDevice() { return mDevice; }
964 inline int32_t getDeviceId() { return mDevice->getId(); }
965 inline const String8 getDeviceName() { return mDevice->getName(); }
966 inline InputReaderContext* getContext() { return mContext; }
967 inline InputReaderPolicyInterface* getPolicy() { return mContext->getPolicy(); }
968 inline InputListenerInterface* getListener() { return mContext->getListener(); }
969 inline EventHubInterface* getEventHub() { return mContext->getEventHub(); }
970
971 virtual uint32_t getSources() = 0;
972 virtual void populateDeviceInfo(InputDeviceInfo* deviceInfo);
973 virtual void dump(String8& dump);
974 virtual void configure(nsecs_t when, const InputReaderConfiguration* config, uint32_t changes);
975 virtual void reset(nsecs_t when);
976 virtual void process(const RawEvent* rawEvent) = 0;
977 virtual void timeoutExpired(nsecs_t when);
978
979 virtual int32_t getKeyCodeState(uint32_t sourceMask, int32_t keyCode);
980 virtual int32_t getScanCodeState(uint32_t sourceMask, int32_t scanCode);
981 virtual int32_t getSwitchState(uint32_t sourceMask, int32_t switchCode);
982 virtual bool markSupportedKeyCodes(uint32_t sourceMask, size_t numCodes,
983 const int32_t* keyCodes, uint8_t* outFlags);
984 virtual void vibrate(const nsecs_t* pattern, size_t patternSize, ssize_t repeat,
985 int32_t token);
986 virtual void cancelVibrate(int32_t token);
Jeff Brownc9aa6282015-02-11 19:03:28 -0800987 virtual void cancelTouch(nsecs_t when);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800988
989 virtual int32_t getMetaState();
Andrii Kulian763a3a42016-03-08 10:46:16 -0800990 virtual void updateMetaState(int32_t keyCode);
Michael Wrightd02c5b62014-02-10 15:10:22 -0800991
Michael Wright842500e2015-03-13 17:32:02 -0700992 virtual void updateExternalStylusState(const StylusState& state);
993
Michael Wrightd02c5b62014-02-10 15:10:22 -0800994 virtual void fadePointer();
995
996protected:
997 InputDevice* mDevice;
998 InputReaderContext* mContext;
999
1000 status_t getAbsoluteAxisInfo(int32_t axis, RawAbsoluteAxisInfo* axisInfo);
1001 void bumpGeneration();
1002
1003 static void dumpRawAbsoluteAxisInfo(String8& dump,
1004 const RawAbsoluteAxisInfo& axis, const char* name);
Michael Wright842500e2015-03-13 17:32:02 -07001005 static void dumpStylusState(String8& dump, const StylusState& state);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001006};
1007
1008
1009class SwitchInputMapper : public InputMapper {
1010public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -07001011 explicit SwitchInputMapper(InputDevice* device);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001012 virtual ~SwitchInputMapper();
1013
1014 virtual uint32_t getSources();
1015 virtual void process(const RawEvent* rawEvent);
1016
1017 virtual int32_t getSwitchState(uint32_t sourceMask, int32_t switchCode);
Michael Wrightbcbf97e2014-08-29 14:31:32 -07001018 virtual void dump(String8& dump);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001019
1020private:
Michael Wrightbcbf97e2014-08-29 14:31:32 -07001021 uint32_t mSwitchValues;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001022 uint32_t mUpdatedSwitchMask;
1023
1024 void processSwitch(int32_t switchCode, int32_t switchValue);
1025 void sync(nsecs_t when);
1026};
1027
1028
1029class VibratorInputMapper : public InputMapper {
1030public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -07001031 explicit VibratorInputMapper(InputDevice* device);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001032 virtual ~VibratorInputMapper();
1033
1034 virtual uint32_t getSources();
1035 virtual void populateDeviceInfo(InputDeviceInfo* deviceInfo);
1036 virtual void process(const RawEvent* rawEvent);
1037
1038 virtual void vibrate(const nsecs_t* pattern, size_t patternSize, ssize_t repeat,
1039 int32_t token);
1040 virtual void cancelVibrate(int32_t token);
1041 virtual void timeoutExpired(nsecs_t when);
1042 virtual void dump(String8& dump);
1043
1044private:
1045 bool mVibrating;
1046 nsecs_t mPattern[MAX_VIBRATE_PATTERN_SIZE];
1047 size_t mPatternSize;
1048 ssize_t mRepeat;
1049 int32_t mToken;
1050 ssize_t mIndex;
1051 nsecs_t mNextStepTime;
1052
1053 void nextStep();
1054 void stopVibrating();
1055};
1056
1057
1058class KeyboardInputMapper : public InputMapper {
1059public:
1060 KeyboardInputMapper(InputDevice* device, uint32_t source, int32_t keyboardType);
1061 virtual ~KeyboardInputMapper();
1062
1063 virtual uint32_t getSources();
1064 virtual void populateDeviceInfo(InputDeviceInfo* deviceInfo);
1065 virtual void dump(String8& dump);
1066 virtual void configure(nsecs_t when, const InputReaderConfiguration* config, uint32_t changes);
1067 virtual void reset(nsecs_t when);
1068 virtual void process(const RawEvent* rawEvent);
1069
1070 virtual int32_t getKeyCodeState(uint32_t sourceMask, int32_t keyCode);
1071 virtual int32_t getScanCodeState(uint32_t sourceMask, int32_t scanCode);
1072 virtual bool markSupportedKeyCodes(uint32_t sourceMask, size_t numCodes,
1073 const int32_t* keyCodes, uint8_t* outFlags);
1074
1075 virtual int32_t getMetaState();
Andrii Kulian763a3a42016-03-08 10:46:16 -08001076 virtual void updateMetaState(int32_t keyCode);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001077
1078private:
1079 struct KeyDown {
1080 int32_t keyCode;
1081 int32_t scanCode;
1082 };
1083
1084 uint32_t mSource;
1085 int32_t mKeyboardType;
1086
1087 int32_t mOrientation; // orientation for dpad keys
1088
1089 Vector<KeyDown> mKeyDowns; // keys that are down
1090 int32_t mMetaState;
1091 nsecs_t mDownTime; // time of most recent key down
1092
1093 int32_t mCurrentHidUsage; // most recent HID usage seen this packet, or 0 if none
1094
1095 struct LedState {
1096 bool avail; // led is available
1097 bool on; // we think the led is currently on
1098 };
1099 LedState mCapsLockLedState;
1100 LedState mNumLockLedState;
1101 LedState mScrollLockLedState;
1102
1103 // Immutable configuration parameters.
1104 struct Parameters {
1105 bool hasAssociatedDisplay;
1106 bool orientationAware;
Michael Wrightdcfcf5d2014-03-17 12:58:21 -07001107 bool handlesKeyRepeat;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001108 } mParameters;
1109
1110 void configureParameters();
1111 void dumpParameters(String8& dump);
1112
1113 bool isKeyboardOrGamepadKey(int32_t scanCode);
1114
Dmitry Torokhov0faaa0b2015-09-24 13:13:55 -07001115 void processKey(nsecs_t when, bool down, int32_t scanCode, int32_t usageCode);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001116
Andrii Kulian763a3a42016-03-08 10:46:16 -08001117 bool updateMetaStateIfNeeded(int32_t keyCode, bool down);
1118
Michael Wrightd02c5b62014-02-10 15:10:22 -08001119 ssize_t findKeyDown(int32_t scanCode);
1120
1121 void resetLedState();
1122 void initializeLedState(LedState& ledState, int32_t led);
1123 void updateLedState(bool reset);
1124 void updateLedStateForModifier(LedState& ledState, int32_t led,
1125 int32_t modifier, bool reset);
1126};
1127
1128
1129class CursorInputMapper : public InputMapper {
1130public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -07001131 explicit CursorInputMapper(InputDevice* device);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001132 virtual ~CursorInputMapper();
1133
1134 virtual uint32_t getSources();
1135 virtual void populateDeviceInfo(InputDeviceInfo* deviceInfo);
1136 virtual void dump(String8& dump);
1137 virtual void configure(nsecs_t when, const InputReaderConfiguration* config, uint32_t changes);
1138 virtual void reset(nsecs_t when);
1139 virtual void process(const RawEvent* rawEvent);
1140
1141 virtual int32_t getScanCodeState(uint32_t sourceMask, int32_t scanCode);
1142
1143 virtual void fadePointer();
1144
1145private:
1146 // Amount that trackball needs to move in order to generate a key event.
1147 static const int32_t TRACKBALL_MOVEMENT_THRESHOLD = 6;
1148
1149 // Immutable configuration parameters.
1150 struct Parameters {
1151 enum Mode {
1152 MODE_POINTER,
Vladislav Kaznacheev78f97b32016-12-15 18:14:58 -08001153 MODE_POINTER_RELATIVE,
Michael Wrightd02c5b62014-02-10 15:10:22 -08001154 MODE_NAVIGATION,
1155 };
1156
1157 Mode mode;
1158 bool hasAssociatedDisplay;
1159 bool orientationAware;
1160 } mParameters;
1161
1162 CursorButtonAccumulator mCursorButtonAccumulator;
1163 CursorMotionAccumulator mCursorMotionAccumulator;
1164 CursorScrollAccumulator mCursorScrollAccumulator;
1165
1166 int32_t mSource;
1167 float mXScale;
1168 float mYScale;
1169 float mXPrecision;
1170 float mYPrecision;
1171
1172 float mVWheelScale;
1173 float mHWheelScale;
1174
1175 // Velocity controls for mouse pointer and wheel movements.
1176 // The controls for X and Y wheel movements are separate to keep them decoupled.
1177 VelocityControl mPointerVelocityControl;
1178 VelocityControl mWheelXVelocityControl;
1179 VelocityControl mWheelYVelocityControl;
1180
1181 int32_t mOrientation;
1182
1183 sp<PointerControllerInterface> mPointerController;
1184
1185 int32_t mButtonState;
1186 nsecs_t mDownTime;
1187
1188 void configureParameters();
1189 void dumpParameters(String8& dump);
1190
1191 void sync(nsecs_t when);
1192};
1193
1194
Prashant Malani1941ff52015-08-11 18:29:28 -07001195class RotaryEncoderInputMapper : public InputMapper {
1196public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -07001197 explicit RotaryEncoderInputMapper(InputDevice* device);
Prashant Malani1941ff52015-08-11 18:29:28 -07001198 virtual ~RotaryEncoderInputMapper();
1199
1200 virtual uint32_t getSources();
1201 virtual void populateDeviceInfo(InputDeviceInfo* deviceInfo);
1202 virtual void dump(String8& dump);
1203 virtual void configure(nsecs_t when, const InputReaderConfiguration* config, uint32_t changes);
1204 virtual void reset(nsecs_t when);
1205 virtual void process(const RawEvent* rawEvent);
1206
1207private:
1208 CursorScrollAccumulator mRotaryEncoderScrollAccumulator;
1209
1210 int32_t mSource;
Prashant Malanidae627a2016-01-11 17:08:18 -08001211 float mScalingFactor;
Prashant Malani1941ff52015-08-11 18:29:28 -07001212
1213 void sync(nsecs_t when);
1214};
1215
Michael Wrightd02c5b62014-02-10 15:10:22 -08001216class TouchInputMapper : public InputMapper {
1217public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -07001218 explicit TouchInputMapper(InputDevice* device);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001219 virtual ~TouchInputMapper();
1220
1221 virtual uint32_t getSources();
1222 virtual void populateDeviceInfo(InputDeviceInfo* deviceInfo);
1223 virtual void dump(String8& dump);
1224 virtual void configure(nsecs_t when, const InputReaderConfiguration* config, uint32_t changes);
1225 virtual void reset(nsecs_t when);
1226 virtual void process(const RawEvent* rawEvent);
1227
1228 virtual int32_t getKeyCodeState(uint32_t sourceMask, int32_t keyCode);
1229 virtual int32_t getScanCodeState(uint32_t sourceMask, int32_t scanCode);
1230 virtual bool markSupportedKeyCodes(uint32_t sourceMask, size_t numCodes,
1231 const int32_t* keyCodes, uint8_t* outFlags);
1232
1233 virtual void fadePointer();
Jeff Brownc9aa6282015-02-11 19:03:28 -08001234 virtual void cancelTouch(nsecs_t when);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001235 virtual void timeoutExpired(nsecs_t when);
Michael Wright842500e2015-03-13 17:32:02 -07001236 virtual void updateExternalStylusState(const StylusState& state);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001237
1238protected:
1239 CursorButtonAccumulator mCursorButtonAccumulator;
1240 CursorScrollAccumulator mCursorScrollAccumulator;
1241 TouchButtonAccumulator mTouchButtonAccumulator;
1242
1243 struct VirtualKey {
1244 int32_t keyCode;
1245 int32_t scanCode;
1246 uint32_t flags;
1247
1248 // computed hit box, specified in touch screen coords based on known display size
1249 int32_t hitLeft;
1250 int32_t hitTop;
1251 int32_t hitRight;
1252 int32_t hitBottom;
1253
1254 inline bool isHit(int32_t x, int32_t y) const {
1255 return x >= hitLeft && x <= hitRight && y >= hitTop && y <= hitBottom;
1256 }
1257 };
1258
1259 // Input sources and device mode.
1260 uint32_t mSource;
1261
1262 enum DeviceMode {
1263 DEVICE_MODE_DISABLED, // input is disabled
1264 DEVICE_MODE_DIRECT, // direct mapping (touchscreen)
1265 DEVICE_MODE_UNSCALED, // unscaled mapping (touchpad)
1266 DEVICE_MODE_NAVIGATION, // unscaled mapping with assist gesture (touch navigation)
1267 DEVICE_MODE_POINTER, // pointer mapping (pointer)
1268 };
1269 DeviceMode mDeviceMode;
1270
1271 // The reader's configuration.
1272 InputReaderConfiguration mConfig;
1273
1274 // Immutable configuration parameters.
1275 struct Parameters {
1276 enum DeviceType {
1277 DEVICE_TYPE_TOUCH_SCREEN,
1278 DEVICE_TYPE_TOUCH_PAD,
1279 DEVICE_TYPE_TOUCH_NAVIGATION,
1280 DEVICE_TYPE_POINTER,
1281 };
1282
1283 DeviceType deviceType;
1284 bool hasAssociatedDisplay;
1285 bool associatedDisplayIsExternal;
1286 bool orientationAware;
1287 bool hasButtonUnderPad;
Santos Cordon06936fe2017-04-05 10:37:00 -07001288 String8 uniqueDisplayId;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001289
1290 enum GestureMode {
Amirhossein Simjour3dd617b2015-10-09 10:39:48 -04001291 GESTURE_MODE_SINGLE_TOUCH,
1292 GESTURE_MODE_MULTI_TOUCH,
Michael Wrightd02c5b62014-02-10 15:10:22 -08001293 };
1294 GestureMode gestureMode;
Jeff Brownc5e24422014-02-26 18:48:51 -08001295
1296 bool wake;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001297 } mParameters;
1298
1299 // Immutable calibration parameters in parsed form.
1300 struct Calibration {
1301 // Size
1302 enum SizeCalibration {
1303 SIZE_CALIBRATION_DEFAULT,
1304 SIZE_CALIBRATION_NONE,
1305 SIZE_CALIBRATION_GEOMETRIC,
1306 SIZE_CALIBRATION_DIAMETER,
1307 SIZE_CALIBRATION_BOX,
1308 SIZE_CALIBRATION_AREA,
1309 };
1310
1311 SizeCalibration sizeCalibration;
1312
1313 bool haveSizeScale;
1314 float sizeScale;
1315 bool haveSizeBias;
1316 float sizeBias;
1317 bool haveSizeIsSummed;
1318 bool sizeIsSummed;
1319
1320 // Pressure
1321 enum PressureCalibration {
1322 PRESSURE_CALIBRATION_DEFAULT,
1323 PRESSURE_CALIBRATION_NONE,
1324 PRESSURE_CALIBRATION_PHYSICAL,
1325 PRESSURE_CALIBRATION_AMPLITUDE,
1326 };
1327
1328 PressureCalibration pressureCalibration;
1329 bool havePressureScale;
1330 float pressureScale;
1331
1332 // Orientation
1333 enum OrientationCalibration {
1334 ORIENTATION_CALIBRATION_DEFAULT,
1335 ORIENTATION_CALIBRATION_NONE,
1336 ORIENTATION_CALIBRATION_INTERPOLATED,
1337 ORIENTATION_CALIBRATION_VECTOR,
1338 };
1339
1340 OrientationCalibration orientationCalibration;
1341
1342 // Distance
1343 enum DistanceCalibration {
1344 DISTANCE_CALIBRATION_DEFAULT,
1345 DISTANCE_CALIBRATION_NONE,
1346 DISTANCE_CALIBRATION_SCALED,
1347 };
1348
1349 DistanceCalibration distanceCalibration;
1350 bool haveDistanceScale;
1351 float distanceScale;
1352
1353 enum CoverageCalibration {
1354 COVERAGE_CALIBRATION_DEFAULT,
1355 COVERAGE_CALIBRATION_NONE,
1356 COVERAGE_CALIBRATION_BOX,
1357 };
1358
1359 CoverageCalibration coverageCalibration;
1360
1361 inline void applySizeScaleAndBias(float* outSize) const {
1362 if (haveSizeScale) {
1363 *outSize *= sizeScale;
1364 }
1365 if (haveSizeBias) {
1366 *outSize += sizeBias;
1367 }
1368 if (*outSize < 0) {
1369 *outSize = 0;
1370 }
1371 }
1372 } mCalibration;
1373
Jason Gereckeaf126fb2012-05-10 14:22:47 -07001374 // Affine location transformation/calibration
1375 struct TouchAffineTransformation mAffineTransform;
1376
Michael Wrightd02c5b62014-02-10 15:10:22 -08001377 RawPointerAxes mRawPointerAxes;
1378
Michael Wright842500e2015-03-13 17:32:02 -07001379 struct RawState {
1380 nsecs_t when;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001381
Michael Wright842500e2015-03-13 17:32:02 -07001382 // Raw pointer sample data.
1383 RawPointerData rawPointerData;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001384
Michael Wright842500e2015-03-13 17:32:02 -07001385 int32_t buttonState;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001386
Michael Wright842500e2015-03-13 17:32:02 -07001387 // Scroll state.
1388 int32_t rawVScroll;
1389 int32_t rawHScroll;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001390
Michael Wright842500e2015-03-13 17:32:02 -07001391 void copyFrom(const RawState& other) {
1392 when = other.when;
1393 rawPointerData.copyFrom(other.rawPointerData);
1394 buttonState = other.buttonState;
1395 rawVScroll = other.rawVScroll;
1396 rawHScroll = other.rawHScroll;
1397 }
1398
1399 void clear() {
1400 when = 0;
1401 rawPointerData.clear();
1402 buttonState = 0;
1403 rawVScroll = 0;
1404 rawHScroll = 0;
1405 }
1406 };
1407
1408 struct CookedState {
1409 // Cooked pointer sample data.
1410 CookedPointerData cookedPointerData;
1411
1412 // Id bits used to differentiate fingers, stylus and mouse tools.
1413 BitSet32 fingerIdBits;
1414 BitSet32 stylusIdBits;
1415 BitSet32 mouseIdBits;
1416
Michael Wright7b159c92015-05-14 14:48:03 +01001417 int32_t buttonState;
1418
Michael Wright842500e2015-03-13 17:32:02 -07001419 void copyFrom(const CookedState& other) {
1420 cookedPointerData.copyFrom(other.cookedPointerData);
1421 fingerIdBits = other.fingerIdBits;
1422 stylusIdBits = other.stylusIdBits;
1423 mouseIdBits = other.mouseIdBits;
Michael Wright7b159c92015-05-14 14:48:03 +01001424 buttonState = other.buttonState;
Michael Wright842500e2015-03-13 17:32:02 -07001425 }
1426
1427 void clear() {
1428 cookedPointerData.clear();
1429 fingerIdBits.clear();
1430 stylusIdBits.clear();
1431 mouseIdBits.clear();
Michael Wright7b159c92015-05-14 14:48:03 +01001432 buttonState = 0;
Michael Wright842500e2015-03-13 17:32:02 -07001433 }
1434 };
1435
1436 Vector<RawState> mRawStatesPending;
1437 RawState mCurrentRawState;
1438 CookedState mCurrentCookedState;
1439 RawState mLastRawState;
1440 CookedState mLastCookedState;
1441
1442 // State provided by an external stylus
1443 StylusState mExternalStylusState;
1444 int64_t mExternalStylusId;
Michael Wright43fd19f2015-04-21 19:02:58 +01001445 nsecs_t mExternalStylusFusionTimeout;
Michael Wright842500e2015-03-13 17:32:02 -07001446 bool mExternalStylusDataPending;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001447
1448 // True if we sent a HOVER_ENTER event.
1449 bool mSentHoverEnter;
1450
Michael Wright842500e2015-03-13 17:32:02 -07001451 // Have we assigned pointer IDs for this stream
1452 bool mHavePointerIds;
1453
Michael Wright8e812822015-06-22 16:18:21 +01001454 // Is the current stream of direct touch events aborted
1455 bool mCurrentMotionAborted;
1456
Michael Wrightd02c5b62014-02-10 15:10:22 -08001457 // The time the primary pointer last went down.
1458 nsecs_t mDownTime;
1459
1460 // The pointer controller, or null if the device is not a pointer.
1461 sp<PointerControllerInterface> mPointerController;
1462
1463 Vector<VirtualKey> mVirtualKeys;
1464
1465 virtual void configureParameters();
1466 virtual void dumpParameters(String8& dump);
1467 virtual void configureRawPointerAxes();
1468 virtual void dumpRawPointerAxes(String8& dump);
1469 virtual void configureSurface(nsecs_t when, bool* outResetNeeded);
1470 virtual void dumpSurface(String8& dump);
1471 virtual void configureVirtualKeys();
1472 virtual void dumpVirtualKeys(String8& dump);
1473 virtual void parseCalibration();
1474 virtual void resolveCalibration();
1475 virtual void dumpCalibration(String8& dump);
Jason Gerecke12d6baa2014-01-27 18:34:20 -08001476 virtual void updateAffineTransformation();
Michael Wright842500e2015-03-13 17:32:02 -07001477 virtual void dumpAffineTransformation(String8& dump);
1478 virtual void resolveExternalStylusPresence();
1479 virtual bool hasStylus() const = 0;
1480 virtual bool hasExternalStylus() const;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001481
Michael Wright842500e2015-03-13 17:32:02 -07001482 virtual void syncTouch(nsecs_t when, RawState* outState) = 0;
Michael Wrightd02c5b62014-02-10 15:10:22 -08001483
1484private:
1485 // The current viewport.
1486 // The components of the viewport are specified in the display's rotated orientation.
1487 DisplayViewport mViewport;
1488
1489 // The surface orientation, width and height set by configureSurface().
1490 // The width and height are derived from the viewport but are specified
1491 // in the natural orientation.
1492 // The surface origin specifies how the surface coordinates should be translated
1493 // to align with the logical display coordinate space.
1494 // The orientation may be different from the viewport orientation as it specifies
1495 // the rotation of the surface coordinates required to produce the viewport's
1496 // requested orientation, so it will depend on whether the device is orientation aware.
1497 int32_t mSurfaceWidth;
1498 int32_t mSurfaceHeight;
1499 int32_t mSurfaceLeft;
1500 int32_t mSurfaceTop;
1501 int32_t mSurfaceOrientation;
1502
1503 // Translation and scaling factors, orientation-independent.
1504 float mXTranslate;
1505 float mXScale;
1506 float mXPrecision;
1507
1508 float mYTranslate;
1509 float mYScale;
1510 float mYPrecision;
1511
1512 float mGeometricScale;
1513
1514 float mPressureScale;
1515
1516 float mSizeScale;
1517
1518 float mOrientationScale;
1519
1520 float mDistanceScale;
1521
1522 bool mHaveTilt;
1523 float mTiltXCenter;
1524 float mTiltXScale;
1525 float mTiltYCenter;
1526 float mTiltYScale;
1527
Michael Wright842500e2015-03-13 17:32:02 -07001528 bool mExternalStylusConnected;
1529
Michael Wrightd02c5b62014-02-10 15:10:22 -08001530 // Oriented motion ranges for input device info.
1531 struct OrientedRanges {
1532 InputDeviceInfo::MotionRange x;
1533 InputDeviceInfo::MotionRange y;
1534 InputDeviceInfo::MotionRange pressure;
1535
1536 bool haveSize;
1537 InputDeviceInfo::MotionRange size;
1538
1539 bool haveTouchSize;
1540 InputDeviceInfo::MotionRange touchMajor;
1541 InputDeviceInfo::MotionRange touchMinor;
1542
1543 bool haveToolSize;
1544 InputDeviceInfo::MotionRange toolMajor;
1545 InputDeviceInfo::MotionRange toolMinor;
1546
1547 bool haveOrientation;
1548 InputDeviceInfo::MotionRange orientation;
1549
1550 bool haveDistance;
1551 InputDeviceInfo::MotionRange distance;
1552
1553 bool haveTilt;
1554 InputDeviceInfo::MotionRange tilt;
1555
1556 OrientedRanges() {
1557 clear();
1558 }
1559
1560 void clear() {
1561 haveSize = false;
1562 haveTouchSize = false;
1563 haveToolSize = false;
1564 haveOrientation = false;
1565 haveDistance = false;
1566 haveTilt = false;
1567 }
1568 } mOrientedRanges;
1569
1570 // Oriented dimensions and precision.
1571 float mOrientedXPrecision;
1572 float mOrientedYPrecision;
1573
1574 struct CurrentVirtualKeyState {
1575 bool down;
1576 bool ignored;
1577 nsecs_t downTime;
1578 int32_t keyCode;
1579 int32_t scanCode;
1580 } mCurrentVirtualKey;
1581
1582 // Scale factor for gesture or mouse based pointer movements.
1583 float mPointerXMovementScale;
1584 float mPointerYMovementScale;
1585
1586 // Scale factor for gesture based zooming and other freeform motions.
1587 float mPointerXZoomScale;
1588 float mPointerYZoomScale;
1589
1590 // The maximum swipe width.
1591 float mPointerGestureMaxSwipeWidth;
1592
1593 struct PointerDistanceHeapElement {
1594 uint32_t currentPointerIndex : 8;
1595 uint32_t lastPointerIndex : 8;
1596 uint64_t distance : 48; // squared distance
1597 };
1598
1599 enum PointerUsage {
1600 POINTER_USAGE_NONE,
1601 POINTER_USAGE_GESTURES,
1602 POINTER_USAGE_STYLUS,
1603 POINTER_USAGE_MOUSE,
1604 };
1605 PointerUsage mPointerUsage;
1606
1607 struct PointerGesture {
1608 enum Mode {
1609 // No fingers, button is not pressed.
1610 // Nothing happening.
1611 NEUTRAL,
1612
1613 // No fingers, button is not pressed.
1614 // Tap detected.
1615 // Emits DOWN and UP events at the pointer location.
1616 TAP,
1617
1618 // Exactly one finger dragging following a tap.
1619 // Pointer follows the active finger.
1620 // Emits DOWN, MOVE and UP events at the pointer location.
1621 //
1622 // Detect double-taps when the finger goes up while in TAP_DRAG mode.
1623 TAP_DRAG,
1624
1625 // Button is pressed.
1626 // Pointer follows the active finger if there is one. Other fingers are ignored.
1627 // Emits DOWN, MOVE and UP events at the pointer location.
1628 BUTTON_CLICK_OR_DRAG,
1629
1630 // Exactly one finger, button is not pressed.
1631 // Pointer follows the active finger.
1632 // Emits HOVER_MOVE events at the pointer location.
1633 //
1634 // Detect taps when the finger goes up while in HOVER mode.
1635 HOVER,
1636
1637 // Exactly two fingers but neither have moved enough to clearly indicate
1638 // whether a swipe or freeform gesture was intended. We consider the
1639 // pointer to be pressed so this enables clicking or long-pressing on buttons.
1640 // Pointer does not move.
1641 // Emits DOWN, MOVE and UP events with a single stationary pointer coordinate.
1642 PRESS,
1643
1644 // Exactly two fingers moving in the same direction, button is not pressed.
1645 // Pointer does not move.
1646 // Emits DOWN, MOVE and UP events with a single pointer coordinate that
1647 // follows the midpoint between both fingers.
1648 SWIPE,
1649
1650 // Two or more fingers moving in arbitrary directions, button is not pressed.
1651 // Pointer does not move.
1652 // Emits DOWN, POINTER_DOWN, MOVE, POINTER_UP and UP events that follow
1653 // each finger individually relative to the initial centroid of the finger.
1654 FREEFORM,
1655
1656 // Waiting for quiet time to end before starting the next gesture.
1657 QUIET,
1658 };
1659
1660 // Time the first finger went down.
1661 nsecs_t firstTouchTime;
1662
1663 // The active pointer id from the raw touch data.
1664 int32_t activeTouchId; // -1 if none
1665
1666 // The active pointer id from the gesture last delivered to the application.
1667 int32_t activeGestureId; // -1 if none
1668
1669 // Pointer coords and ids for the current and previous pointer gesture.
1670 Mode currentGestureMode;
1671 BitSet32 currentGestureIdBits;
1672 uint32_t currentGestureIdToIndex[MAX_POINTER_ID + 1];
1673 PointerProperties currentGestureProperties[MAX_POINTERS];
1674 PointerCoords currentGestureCoords[MAX_POINTERS];
1675
1676 Mode lastGestureMode;
1677 BitSet32 lastGestureIdBits;
1678 uint32_t lastGestureIdToIndex[MAX_POINTER_ID + 1];
1679 PointerProperties lastGestureProperties[MAX_POINTERS];
1680 PointerCoords lastGestureCoords[MAX_POINTERS];
1681
1682 // Time the pointer gesture last went down.
1683 nsecs_t downTime;
1684
1685 // Time when the pointer went down for a TAP.
1686 nsecs_t tapDownTime;
1687
1688 // Time when the pointer went up for a TAP.
1689 nsecs_t tapUpTime;
1690
1691 // Location of initial tap.
1692 float tapX, tapY;
1693
1694 // Time we started waiting for quiescence.
1695 nsecs_t quietTime;
1696
1697 // Reference points for multitouch gestures.
1698 float referenceTouchX; // reference touch X/Y coordinates in surface units
1699 float referenceTouchY;
1700 float referenceGestureX; // reference gesture X/Y coordinates in pixels
1701 float referenceGestureY;
1702
1703 // Distance that each pointer has traveled which has not yet been
1704 // subsumed into the reference gesture position.
1705 BitSet32 referenceIdBits;
1706 struct Delta {
1707 float dx, dy;
1708 };
1709 Delta referenceDeltas[MAX_POINTER_ID + 1];
1710
1711 // Describes how touch ids are mapped to gesture ids for freeform gestures.
1712 uint32_t freeformTouchToGestureIdMap[MAX_POINTER_ID + 1];
1713
1714 // A velocity tracker for determining whether to switch active pointers during drags.
1715 VelocityTracker velocityTracker;
1716
1717 void reset() {
1718 firstTouchTime = LLONG_MIN;
1719 activeTouchId = -1;
1720 activeGestureId = -1;
1721 currentGestureMode = NEUTRAL;
1722 currentGestureIdBits.clear();
1723 lastGestureMode = NEUTRAL;
1724 lastGestureIdBits.clear();
1725 downTime = 0;
1726 velocityTracker.clear();
1727 resetTap();
1728 resetQuietTime();
1729 }
1730
1731 void resetTap() {
1732 tapDownTime = LLONG_MIN;
1733 tapUpTime = LLONG_MIN;
1734 }
1735
1736 void resetQuietTime() {
1737 quietTime = LLONG_MIN;
1738 }
1739 } mPointerGesture;
1740
1741 struct PointerSimple {
1742 PointerCoords currentCoords;
1743 PointerProperties currentProperties;
1744 PointerCoords lastCoords;
1745 PointerProperties lastProperties;
1746
1747 // True if the pointer is down.
1748 bool down;
1749
1750 // True if the pointer is hovering.
1751 bool hovering;
1752
1753 // Time the pointer last went down.
1754 nsecs_t downTime;
1755
1756 void reset() {
1757 currentCoords.clear();
1758 currentProperties.clear();
1759 lastCoords.clear();
1760 lastProperties.clear();
1761 down = false;
1762 hovering = false;
1763 downTime = 0;
1764 }
1765 } mPointerSimple;
1766
1767 // The pointer and scroll velocity controls.
1768 VelocityControl mPointerVelocityControl;
1769 VelocityControl mWheelXVelocityControl;
1770 VelocityControl mWheelYVelocityControl;
1771
Michael Wright842500e2015-03-13 17:32:02 -07001772 void resetExternalStylus();
Michael Wright43fd19f2015-04-21 19:02:58 +01001773 void clearStylusDataPendingFlags();
Michael Wright842500e2015-03-13 17:32:02 -07001774
Michael Wrightd02c5b62014-02-10 15:10:22 -08001775 void sync(nsecs_t when);
1776
1777 bool consumeRawTouches(nsecs_t when, uint32_t policyFlags);
Michael Wright842500e2015-03-13 17:32:02 -07001778 void processRawTouches(bool timeout);
1779 void cookAndDispatch(nsecs_t when);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001780 void dispatchVirtualKey(nsecs_t when, uint32_t policyFlags,
1781 int32_t keyEventAction, int32_t keyEventFlags);
1782
1783 void dispatchTouches(nsecs_t when, uint32_t policyFlags);
1784 void dispatchHoverExit(nsecs_t when, uint32_t policyFlags);
1785 void dispatchHoverEnterAndMove(nsecs_t when, uint32_t policyFlags);
Michael Wright7b159c92015-05-14 14:48:03 +01001786 void dispatchButtonRelease(nsecs_t when, uint32_t policyFlags);
1787 void dispatchButtonPress(nsecs_t when, uint32_t policyFlags);
1788 const BitSet32& findActiveIdBits(const CookedPointerData& cookedPointerData);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001789 void cookPointerData();
Michael Wright8e812822015-06-22 16:18:21 +01001790 void abortTouches(nsecs_t when, uint32_t policyFlags);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001791
1792 void dispatchPointerUsage(nsecs_t when, uint32_t policyFlags, PointerUsage pointerUsage);
1793 void abortPointerUsage(nsecs_t when, uint32_t policyFlags);
1794
1795 void dispatchPointerGestures(nsecs_t when, uint32_t policyFlags, bool isTimeout);
1796 void abortPointerGestures(nsecs_t when, uint32_t policyFlags);
1797 bool preparePointerGestures(nsecs_t when,
1798 bool* outCancelPreviousGesture, bool* outFinishPreviousGesture,
1799 bool isTimeout);
1800
1801 void dispatchPointerStylus(nsecs_t when, uint32_t policyFlags);
1802 void abortPointerStylus(nsecs_t when, uint32_t policyFlags);
1803
1804 void dispatchPointerMouse(nsecs_t when, uint32_t policyFlags);
1805 void abortPointerMouse(nsecs_t when, uint32_t policyFlags);
1806
1807 void dispatchPointerSimple(nsecs_t when, uint32_t policyFlags,
1808 bool down, bool hovering);
1809 void abortPointerSimple(nsecs_t when, uint32_t policyFlags);
1810
Michael Wright842500e2015-03-13 17:32:02 -07001811 bool assignExternalStylusId(const RawState& state, bool timeout);
1812 void applyExternalStylusButtonState(nsecs_t when);
1813 void applyExternalStylusTouchState(nsecs_t when);
1814
Michael Wrightd02c5b62014-02-10 15:10:22 -08001815 // Dispatches a motion event.
1816 // If the changedId is >= 0 and the action is POINTER_DOWN or POINTER_UP, the
1817 // method will take care of setting the index and transmuting the action to DOWN or UP
1818 // it is the first / last pointer to go down / up.
1819 void dispatchMotion(nsecs_t when, uint32_t policyFlags, uint32_t source,
Michael Wright7b159c92015-05-14 14:48:03 +01001820 int32_t action, int32_t actionButton,
1821 int32_t flags, int32_t metaState, int32_t buttonState, int32_t edgeFlags,
Michael Wrightd02c5b62014-02-10 15:10:22 -08001822 const PointerProperties* properties, const PointerCoords* coords,
1823 const uint32_t* idToIndex, BitSet32 idBits,
1824 int32_t changedId, float xPrecision, float yPrecision, nsecs_t downTime);
1825
1826 // Updates pointer coords and properties for pointers with specified ids that have moved.
1827 // Returns true if any of them changed.
1828 bool updateMovedPointers(const PointerProperties* inProperties,
1829 const PointerCoords* inCoords, const uint32_t* inIdToIndex,
1830 PointerProperties* outProperties, PointerCoords* outCoords,
1831 const uint32_t* outIdToIndex, BitSet32 idBits) const;
1832
1833 bool isPointInsideSurface(int32_t x, int32_t y);
1834 const VirtualKey* findVirtualKeyHit(int32_t x, int32_t y);
1835
Michael Wright842500e2015-03-13 17:32:02 -07001836 static void assignPointerIds(const RawState* last, RawState* current);
Santos Cordon06936fe2017-04-05 10:37:00 -07001837
1838 const char* modeToString(DeviceMode deviceMode);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001839};
1840
1841
1842class SingleTouchInputMapper : public TouchInputMapper {
1843public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -07001844 explicit SingleTouchInputMapper(InputDevice* device);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001845 virtual ~SingleTouchInputMapper();
1846
1847 virtual void reset(nsecs_t when);
1848 virtual void process(const RawEvent* rawEvent);
1849
1850protected:
Michael Wright842500e2015-03-13 17:32:02 -07001851 virtual void syncTouch(nsecs_t when, RawState* outState);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001852 virtual void configureRawPointerAxes();
1853 virtual bool hasStylus() const;
1854
1855private:
1856 SingleTouchMotionAccumulator mSingleTouchMotionAccumulator;
1857};
1858
1859
1860class MultiTouchInputMapper : public TouchInputMapper {
1861public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -07001862 explicit MultiTouchInputMapper(InputDevice* device);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001863 virtual ~MultiTouchInputMapper();
1864
1865 virtual void reset(nsecs_t when);
1866 virtual void process(const RawEvent* rawEvent);
1867
1868protected:
Michael Wright842500e2015-03-13 17:32:02 -07001869 virtual void syncTouch(nsecs_t when, RawState* outState);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001870 virtual void configureRawPointerAxes();
1871 virtual bool hasStylus() const;
1872
1873private:
1874 MultiTouchMotionAccumulator mMultiTouchMotionAccumulator;
1875
1876 // Specifies the pointer id bits that are in use, and their associated tracking id.
1877 BitSet32 mPointerIdBits;
1878 int32_t mPointerTrackingIdMap[MAX_POINTER_ID + 1];
1879};
1880
Michael Wright842500e2015-03-13 17:32:02 -07001881class ExternalStylusInputMapper : public InputMapper {
1882public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -07001883 explicit ExternalStylusInputMapper(InputDevice* device);
Michael Wright842500e2015-03-13 17:32:02 -07001884 virtual ~ExternalStylusInputMapper() = default;
1885
1886 virtual uint32_t getSources();
1887 virtual void populateDeviceInfo(InputDeviceInfo* deviceInfo);
1888 virtual void dump(String8& dump);
1889 virtual void configure(nsecs_t when, const InputReaderConfiguration* config, uint32_t changes);
1890 virtual void reset(nsecs_t when);
1891 virtual void process(const RawEvent* rawEvent);
1892 virtual void sync(nsecs_t when);
1893
1894private:
1895 SingleTouchMotionAccumulator mSingleTouchMotionAccumulator;
1896 RawAbsoluteAxisInfo mRawPressureAxis;
1897 TouchButtonAccumulator mTouchButtonAccumulator;
1898
1899 StylusState mStylusState;
1900};
1901
Michael Wrightd02c5b62014-02-10 15:10:22 -08001902
1903class JoystickInputMapper : public InputMapper {
1904public:
Chih-Hung Hsieh6d2ede12016-09-01 11:28:23 -07001905 explicit JoystickInputMapper(InputDevice* device);
Michael Wrightd02c5b62014-02-10 15:10:22 -08001906 virtual ~JoystickInputMapper();
1907
1908 virtual uint32_t getSources();
1909 virtual void populateDeviceInfo(InputDeviceInfo* deviceInfo);
1910 virtual void dump(String8& dump);
1911 virtual void configure(nsecs_t when, const InputReaderConfiguration* config, uint32_t changes);
1912 virtual void reset(nsecs_t when);
1913 virtual void process(const RawEvent* rawEvent);
1914
1915private:
1916 struct Axis {
1917 RawAbsoluteAxisInfo rawAxisInfo;
1918 AxisInfo axisInfo;
1919
1920 bool explicitlyMapped; // true if the axis was explicitly assigned an axis id
1921
1922 float scale; // scale factor from raw to normalized values
1923 float offset; // offset to add after scaling for normalization
1924 float highScale; // scale factor from raw to normalized values of high split
1925 float highOffset; // offset to add after scaling for normalization of high split
1926
1927 float min; // normalized inclusive minimum
1928 float max; // normalized inclusive maximum
1929 float flat; // normalized flat region size
1930 float fuzz; // normalized error tolerance
1931 float resolution; // normalized resolution in units/mm
1932
1933 float filter; // filter out small variations of this size
1934 float currentValue; // current value
1935 float newValue; // most recent value
1936 float highCurrentValue; // current value of high split
1937 float highNewValue; // most recent value of high split
1938
1939 void initialize(const RawAbsoluteAxisInfo& rawAxisInfo, const AxisInfo& axisInfo,
1940 bool explicitlyMapped, float scale, float offset,
1941 float highScale, float highOffset,
1942 float min, float max, float flat, float fuzz, float resolution) {
1943 this->rawAxisInfo = rawAxisInfo;
1944 this->axisInfo = axisInfo;
1945 this->explicitlyMapped = explicitlyMapped;
1946 this->scale = scale;
1947 this->offset = offset;
1948 this->highScale = highScale;
1949 this->highOffset = highOffset;
1950 this->min = min;
1951 this->max = max;
1952 this->flat = flat;
1953 this->fuzz = fuzz;
1954 this->resolution = resolution;
1955 this->filter = 0;
1956 resetValue();
1957 }
1958
1959 void resetValue() {
1960 this->currentValue = 0;
1961 this->newValue = 0;
1962 this->highCurrentValue = 0;
1963 this->highNewValue = 0;
1964 }
1965 };
1966
1967 // Axes indexed by raw ABS_* axis index.
1968 KeyedVector<int32_t, Axis> mAxes;
1969
1970 void sync(nsecs_t when, bool force);
1971
1972 bool haveAxis(int32_t axisId);
1973 void pruneAxes(bool ignoreExplicitlyMappedAxes);
1974 bool filterAxes(bool force);
1975
1976 static bool hasValueChangedSignificantly(float filter,
1977 float newValue, float currentValue, float min, float max);
1978 static bool hasMovedNearerToValueWithinFilteredRange(float filter,
1979 float newValue, float currentValue, float thresholdValue);
1980
1981 static bool isCenteredAxis(int32_t axis);
1982 static int32_t getCompatAxis(int32_t axis);
1983
1984 static void addMotionRange(int32_t axisId, const Axis& axis, InputDeviceInfo* info);
1985 static void setPointerCoordsAxisValue(PointerCoords* pointerCoords, int32_t axis,
1986 float value);
1987};
1988
1989} // namespace android
1990
1991#endif // _UI_INPUT_READER_H