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					266 lines
				
				8.8 KiB
			
		
		
			
		
	
	
					266 lines
				
				8.8 KiB
			| 
								 
											6 years ago
										 
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								/*
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								 * Copyright (C) 2008 The Android Open Source Project
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								 *
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								 * Licensed under the Apache License, Version 2.0 (the "License");
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								 * you may not use this file except in compliance with the License.
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								 * You may obtain a copy of the License at
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								 *
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								 *      http://www.apache.org/licenses/LICENSE-2.0
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								 *
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								 * Unless required by applicable law or agreed to in writing, software
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								 * distributed under the License is distributed on an "AS IS" BASIS,
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								 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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								 * See the License for the specific language governing permissions and
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								 * limitations under the License.
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								 */
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								#ifndef _LIBINPUT_KEY_CHARACTER_MAP_H
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								#define _LIBINPUT_KEY_CHARACTER_MAP_H
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								#include <stdint.h>
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								#if HAVE_ANDROID_OS
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								#include <binder/IBinder.h>
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								#endif
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								#include <input/Input.h>
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								#include <utils/Errors.h>
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								#include <utils/KeyedVector.h>
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								#include <utils/Tokenizer.h>
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								#include <utils/String8.h>
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								#include <utils/Unicode.h>
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								#include <utils/RefBase.h>
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								namespace android {
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								/**
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								 * Describes a mapping from Android key codes to characters.
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								 * Also specifies other functions of the keyboard such as the keyboard type
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								 * and key modifier semantics.
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								 *
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								 * This object is immutable after it has been loaded.
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								 */
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								class KeyCharacterMap : public RefBase {
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								public:
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								    enum KeyboardType {
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								        KEYBOARD_TYPE_UNKNOWN = 0,
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								        KEYBOARD_TYPE_NUMERIC = 1,
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								        KEYBOARD_TYPE_PREDICTIVE = 2,
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								        KEYBOARD_TYPE_ALPHA = 3,
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								        KEYBOARD_TYPE_FULL = 4,
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								        KEYBOARD_TYPE_SPECIAL_FUNCTION = 5,
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								        KEYBOARD_TYPE_OVERLAY = 6,
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								    };
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								    enum Format {
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								        // Base keyboard layout, may contain device-specific options, such as "type" declaration.
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								        FORMAT_BASE = 0,
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								        // Overlay keyboard layout, more restrictive, may be published by applications,
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								        // cannot override device-specific options.
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								        FORMAT_OVERLAY = 1,
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								        // Either base or overlay layout ok.
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								        FORMAT_ANY = 2,
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								    };
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								    // Substitute key code and meta state for fallback action.
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								    struct FallbackAction {
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								        int32_t keyCode;
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								        int32_t metaState;
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								    };
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								    /* Loads a key character map from a file. */
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								    static status_t load(const String8& filename, Format format, sp<KeyCharacterMap>* outMap);
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								    /* Loads a key character map from its string contents. */
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								    static status_t loadContents(const String8& filename,
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								            const char* contents, Format format, sp<KeyCharacterMap>* outMap);
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								    /* Combines a base key character map and an overlay. */
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								    static sp<KeyCharacterMap> combine(const sp<KeyCharacterMap>& base,
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								            const sp<KeyCharacterMap>& overlay);
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								    /* Returns an empty key character map. */
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								    static sp<KeyCharacterMap> empty();
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								    /* Gets the keyboard type. */
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								    int32_t getKeyboardType() const;
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								    /* Gets the primary character for this key as in the label physically printed on it.
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								     * Returns 0 if none (eg. for non-printing keys). */
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								    char16_t getDisplayLabel(int32_t keyCode) const;
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								    /* Gets the Unicode character for the number or symbol generated by the key
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								     * when the keyboard is used as a dialing pad.
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								     * Returns 0 if no number or symbol is generated.
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								     */
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								    char16_t getNumber(int32_t keyCode) const;
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								    /* Gets the Unicode character generated by the key and meta key modifiers.
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								     * Returns 0 if no character is generated.
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								     */
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								    char16_t getCharacter(int32_t keyCode, int32_t metaState) const;
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								    /* Gets the fallback action to use by default if the application does not
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								     * handle the specified key.
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								     * Returns true if an action was available, false if none.
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								     */
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								    bool getFallbackAction(int32_t keyCode, int32_t metaState,
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								            FallbackAction* outFallbackAction) const;
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								    /* Gets the first matching Unicode character that can be generated by the key,
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								     * preferring the one with the specified meta key modifiers.
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								     * Returns 0 if no matching character is generated.
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								     */
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								    char16_t getMatch(int32_t keyCode, const char16_t* chars,
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								            size_t numChars, int32_t metaState) const;
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								    /* Gets a sequence of key events that could plausibly generate the specified
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								     * character sequence.  Returns false if some of the characters cannot be generated.
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								     */
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								    bool getEvents(int32_t deviceId, const char16_t* chars, size_t numChars,
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								            Vector<KeyEvent>& outEvents) const;
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								    /* Maps a scan code and usage code to a key code, in case this key map overrides
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								     * the mapping in some way. */
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								    status_t mapKey(int32_t scanCode, int32_t usageCode, int32_t* outKeyCode) const;
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								    /* Tries to find a replacement key code for a given key code and meta state
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								     * in character map. */
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								    void tryRemapKey(int32_t scanCode, int32_t metaState,
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								            int32_t* outKeyCode, int32_t* outMetaState) const;
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								#if HAVE_ANDROID_OS
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								    /* Reads a key map from a parcel. */
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								    static sp<KeyCharacterMap> readFromParcel(Parcel* parcel);
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								    /* Writes a key map to a parcel. */
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								    void writeToParcel(Parcel* parcel) const;
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								#endif
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								protected:
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								    virtual ~KeyCharacterMap();
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								private:
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								    struct Behavior {
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								        Behavior();
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								        Behavior(const Behavior& other);
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								        /* The next behavior in the list, or NULL if none. */
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								        Behavior* next;
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								        /* The meta key modifiers for this behavior. */
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								        int32_t metaState;
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								        /* The character to insert. */
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								        char16_t character;
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								        /* The fallback keycode if the key is not handled. */
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								        int32_t fallbackKeyCode;
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								        /* The replacement keycode if the key has to be replaced outright. */
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								        int32_t replacementKeyCode;
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								    };
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								    struct Key {
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								        Key();
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								        Key(const Key& other);
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								        ~Key();
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								        /* The single character label printed on the key, or 0 if none. */
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								        char16_t label;
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								        /* The number or symbol character generated by the key, or 0 if none. */
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								        char16_t number;
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								        /* The list of key behaviors sorted from most specific to least specific
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								         * meta key binding. */
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								        Behavior* firstBehavior;
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								    };
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								    class Parser {
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								        enum State {
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								            STATE_TOP = 0,
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								            STATE_KEY = 1,
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								        };
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								        enum {
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								            PROPERTY_LABEL = 1,
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								            PROPERTY_NUMBER = 2,
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								            PROPERTY_META = 3,
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								        };
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								        struct Property {
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								            inline Property(int32_t property = 0, int32_t metaState = 0) :
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								                    property(property), metaState(metaState) { }
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								            int32_t property;
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								            int32_t metaState;
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								        };
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								        KeyCharacterMap* mMap;
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								        Tokenizer* mTokenizer;
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								        Format mFormat;
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								        State mState;
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								        int32_t mKeyCode;
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								    public:
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								        Parser(KeyCharacterMap* map, Tokenizer* tokenizer, Format format);
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								        ~Parser();
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								        status_t parse();
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								    private:
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								        status_t parseType();
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								        status_t parseMap();
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								        status_t parseMapKey();
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								        status_t parseKey();
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								        status_t parseKeyProperty();
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								        status_t finishKey(Key* key);
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								        status_t parseModifier(const String8& token, int32_t* outMetaState);
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								        status_t parseCharacterLiteral(char16_t* outCharacter);
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								    };
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								    static sp<KeyCharacterMap> sEmpty;
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								    KeyedVector<int32_t, Key*> mKeys;
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								    int mType;
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								    KeyedVector<int32_t, int32_t> mKeysByScanCode;
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								    KeyedVector<int32_t, int32_t> mKeysByUsageCode;
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								    KeyCharacterMap();
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								    KeyCharacterMap(const KeyCharacterMap& other);
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								    bool getKey(int32_t keyCode, const Key** outKey) const;
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								    bool getKeyBehavior(int32_t keyCode, int32_t metaState,
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								            const Key** outKey, const Behavior** outBehavior) const;
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								    static bool matchesMetaState(int32_t eventMetaState, int32_t behaviorMetaState);
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								    bool findKey(char16_t ch, int32_t* outKeyCode, int32_t* outMetaState) const;
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								    static status_t load(Tokenizer* tokenizer, Format format, sp<KeyCharacterMap>* outMap);
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								    static void addKey(Vector<KeyEvent>& outEvents,
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								            int32_t deviceId, int32_t keyCode, int32_t metaState, bool down, nsecs_t time);
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								    static void addMetaKeys(Vector<KeyEvent>& outEvents,
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								            int32_t deviceId, int32_t metaState, bool down, nsecs_t time,
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								            int32_t* currentMetaState);
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								    static bool addSingleEphemeralMetaKey(Vector<KeyEvent>& outEvents,
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								            int32_t deviceId, int32_t metaState, bool down, nsecs_t time,
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								            int32_t keyCode, int32_t keyMetaState,
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								            int32_t* currentMetaState);
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								    static void addDoubleEphemeralMetaKey(Vector<KeyEvent>& outEvents,
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								            int32_t deviceId, int32_t metaState, bool down, nsecs_t time,
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								            int32_t leftKeyCode, int32_t leftKeyMetaState,
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								            int32_t rightKeyCode, int32_t rightKeyMetaState,
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								            int32_t eitherKeyMetaState,
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								            int32_t* currentMetaState);
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								    static void addLockedMetaKey(Vector<KeyEvent>& outEvents,
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								            int32_t deviceId, int32_t metaState, nsecs_t time,
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								            int32_t keyCode, int32_t keyMetaState,
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								            int32_t* currentMetaState);
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								};
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								} // namespace android
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								#endif // _LIBINPUT_KEY_CHARACTER_MAP_H
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