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452 lines
12 KiB
452 lines
12 KiB
/****************************************************************************
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HAUTO.CPP
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Owner: cslim
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Copyright (c) 1997-1999 Microsoft Corporation
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Hangul composition state machine class
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History:
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14-JUL-1999 cslim Copied from IME98 source tree
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*****************************************************************************/
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#if !defined (__HAUTOMATA_H__)
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#define __HAUTOMATA_H__
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#include "debug.h"
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// Number of each component
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#define NUM_OF_CHOSUNG 19
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#define NUM_OF_JUNGSUNG 21
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#define NUM_OF_JONGSUNG 28
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#define NUM_OF_DOUBLE_CHOSUNG 5
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#define NUM_OF_DOUBLE_JUNGSUNG 7
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#define NUM_OF_DOUBLE_JONGSUNG_2BEOL 11
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#define NUM_OF_DOUBLE_JONGSUNG_3BEOL 13
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#define UNICODE_HANGUL_BASE 0xAC00
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#define UNICODE_HANGUL_END 0xD7A3
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#define UNICODE_HANGUL_COMP_JAMO_START 0x3131
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#define UNICODE_HANGUL_COMP_JAMO_VOWEL_START 0x314F
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#define UNICODE_HANGUL_COMP_JAMO_END 0x3163
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#define UNICODE_HANGUL_COMP_JAMO_START_FILL 0x3130
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#define UNICODE_HANGUL_COMP_JAMO_SIOT 0x3145
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///////////////////////////////////////////
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// HANGUL Jaso inernal difinitions
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// ChoSung
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#define _KIYEOK_ 1 // 'ぁ'
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#define _SSANGKIYEOK_ 2 // 'あ'
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#define _NIEUN_ 3 // 'い'
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#define _TIKEUT_ 4 // 'ぇ'
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#define _SSANGTIKEUT_ 5 // 'え'
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#define _RIEUL_ 6 // 'ぉ'
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#define _MIEUM_ 7 // 'け'
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#define _PIEUP_ 8 // 'げ'
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#define _SSANGPIEUP_ 9 // 'こ'
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#define _SIOS_ 10 // 'さ'
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#define _SSANGSIOS_ 11 // 'ざ'
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#define _IEUNG_ 12 // 'し'
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#define _CIEUC_ 13 // 'じ'
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#define _SSANGCIEUC_ 14 // 'す'
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#define _CHIEUCH_ 15 // 'ず'
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#define _KHIEUKH_ 16 // 'せ'
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#define _THIEUTH_ 17 // 'ぜ'
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#define _PHIEUPH_ 18 // 'そ'
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#define _HIEUH_ 19 // 'ぞ'
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// JungSung
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#define _A_ 1 // 'た'
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#define _AE_ 2 // 'だ'
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#define _YA_ 3 // 'ち'
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#define _YAE_ 4 // 'ぢ'
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#define _EO_ 5 // 'っ'
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#define _E_ 6 // 'つ'
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#define _YEO_ 7 // 'づ'
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#define _YE_ 8 // 'て'
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#define _O_ 9 // 'で'
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#define _WA_ 10 // 'と'
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#define _WAE_ 11 // 'ど'
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#define _OE_ 12 // 'な'
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#define _YO_ 13 // 'に'
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#define _U_ 14 // 'ぬ'
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#define _WEO_ 15 // 'ね'
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#define _WE_ 16 // 'の'
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#define _WI_ 17 // 'は'
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#define _YU_ 18 // 'ば'
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#define _EU_ 19 // 'ぱ'
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#define _YI_ 20 // 'ひ'
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#define _I_ 21 // 'び'
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////////////////////////////////////////
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// JongSung
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#define _JONG_KIYEOK_ 1 // 'ぁ'
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#define _JONG_SSANGKIYEOK_ 2 // 'あ'
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#define _JONG_KIYEOK_SIOS 3
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#define _JONG_NIEUN_ 4 // 'い'
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#define _JONG_NIEUN_CHIEUCH_ 5 // 'い'
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#define _JONG_NIEUN_HIEUH_ 6 // 'い'
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#define _JONG_TIKEUT_ 7 // 'ぇ'
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#define _JONG_RIEUL_ 8 // 'ぉ'
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#define _JONG_RIEUL_KIYEOK_ 9 // 'ぉ'
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#define _JONG_RIEUL_MIUM_ 10 // 'ぉ'
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#define _JONG_RIEUL_PIEUP_ 11 // 'ぉ'
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#define _JONG_RIEUL_SIOS_ 12 // 'ぉ'
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#define _JONG_RIEUL_THIEUTH_ 13 // 'ぉ'
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#define _JONG_RIEUL_PHIEUPH_ 14 // 'ぉ'
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#define _JONG_RIEUL_HIEUH_ 15 // 'ぉ'
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#define _JONG_MIEUM_ 16 // 'け'
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#define _JONG_PIEUP_ 17 // 'げ'
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#define _JONG_PIEUP_SIOS 18 // 'げ'
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#define _JONG_SIOS_ 19 // 'さ'
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#define _JONG_SSANGSIOS_ 20 // 'ざ'
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#define _JONG_IEUNG_ 21 // 'し'
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#define _JONG_CIEUC_ 22 // 'じ'
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#define _JONG_CHIEUCH_ 23 // 'ず'
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#define _JONG_KHIEUKH_ 24 // 'せ'
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#define _JONG_THIEUTH_ 25 // 'ぜ'
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#define _JONG_PHIEUPH_ 26 // 'そ'
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#define _JONG_HIEUH_ 27 // 'ぞ'
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//
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const int MaxInterimStackSize = 6; // Maximum stack size is 6.
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// At most 6 key input
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// to complete one Hangul Char.
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// ex) ��(3 beolsik)
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enum HAutomataReturnState
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{
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HAUTO_NONHANGULKEY,
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HAUTO_COMPOSITION, // Hagul still in interim state.
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HAUTO_COMPLETE, // One hangul char completed and have chars
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// will takeover as next input.
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HAUTO_IMPOSSIBLE
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};
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const WORD H_HANGUL = 0x8000;
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/////////////////////////////////////////////////////////////////////////////
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// CHangulAutomata Abstract Class
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//
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class CHangulAutomata
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{
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public:
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CHangulAutomata() { InitState(); }
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// Attributes
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public:
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// Operations
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public:
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void InitState()
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{
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m_CurState = m_NextState = 0;
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m_wInternalCode = 0;
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m_Chosung = m_Jungsung = m_Jongsung = 0;
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m_wcComposition = m_wcComplete = L'\0';
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InterimStack.Init();
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}
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virtual HAutomataReturnState Machine(UINT KeyCode, int iShift) = 0;
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virtual BOOL IsInputKey(UINT KeyCode, int iShift) = 0;
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virtual BOOL IsHangulKey(UINT KeyCode, int iShift) = 0;
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virtual WORD GetKeyMap(UINT KeyCode, int iShift) = 0;
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virtual BOOL SetCompositionChar(WCHAR wcComp) = 0;
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static WORD GetEnglishKeyMap(UINT KeyCode, int iShift) { return bETable[KeyCode][iShift]; }
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BOOL BackSpace();
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BOOL MakeComplete();
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WCHAR GetCompositionChar() { return m_wcComposition; }
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WCHAR GetCompleteChar() { return m_wcComplete; }
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// Implementation
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public:
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virtual ~CHangulAutomata() {}
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protected:
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void MakeComposition();
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BOOL MakeComplete(WORD wcComplete);
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WORD FindChosungComb(WORD wPrevCode);
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WORD FindJunsungComb(WORD wPrevCode);
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virtual WORD FindJonsungComb(WORD wPrevCode) = 0;
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void SeparateDJung(LPWORD pJungSung);
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void SeparateDJong(LPWORD pJongSung);
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virtual HAutomataReturnState Input(WORD InternalCode) = 0;
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//
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struct InterimStackEntry
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{
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WORD m_wInternalCode;
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WORD m_CurState;
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WORD m_Chosung, m_Jungsung, m_Jongsung;
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WCHAR m_wcCode;
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};
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///////////////////////////////////////////////////////////////////////////
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//
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class CInterimStack
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{
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protected:
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InterimStackEntry m_StackBuffer[MaxInterimStackSize];
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int m_sp; // Stack pointer
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public:
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CInterimStack() { m_sp = 0; }
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~CInterimStack() {}
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void Init() { m_sp = 0; }
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void Push(InterimStackEntry& InterimEntry);
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void Push(WORD wInternalCode, WORD CurState,
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WORD Chosung, WORD Jungsung, WORD Jongsung, WCHAR wcCode);
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InterimStackEntry* CInterimStack::Pop()
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{
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DbgAssert(m_sp > 0);
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return &m_StackBuffer[--m_sp];
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}
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InterimStackEntry* CInterimStack::GetTop()
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{
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DbgAssert(m_sp > 0);
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return &m_StackBuffer[m_sp-1];
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}
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BOOL IsEmpty() { return m_sp == 0; }
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};
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///////////////////////////////////////////////////////////////////////////
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CInterimStack InterimStack;
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protected:
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WORD m_CurState, m_NextState;
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WORD m_wInternalCode, m_Chosung, m_Jungsung, m_Jongsung;
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WCHAR m_wcComposition;
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WCHAR m_wcComplete;
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//
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const static BYTE bETable[256][2];
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const static BYTE Cho2Jong[NUM_OF_CHOSUNG+1];
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const static BYTE Jong2Cho[NUM_OF_JONGSUNG];
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};
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/////////////////////////////////////////////////////////////////////////////
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// CHangulAutomata2 Keyboard layout #1 (2 beolsik)
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//
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class CHangulAutomata2 : public CHangulAutomata
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{
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public:
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CHangulAutomata2() { }
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// Attributes
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public:
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// Operations
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public:
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HAutomataReturnState Machine(UINT KeyCode, int iShift);
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BOOL IsInputKey(UINT KeyCode, int iShift);
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BOOL IsHangulKey(UINT KeyCode, int iShift);
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WORD GetKeyMap(UINT KeyCode, int iShift);
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BOOL SetCompositionChar(WCHAR wcComp);
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// Implementation
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public:
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~CHangulAutomata2() { }
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protected:
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WORD FindJonsungComb(WORD wPrevCode);
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HAutomataReturnState Input(WORD InternalCode);
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protected:
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// This enum should be matched with m_NextState
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// DO NOT change without changing _Transistion_state !
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enum _Transistion_state { FINAL=8, TAKEOVER=9, FIND=10 };
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static const WORD m_NextStateTbl[8][5];
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static const WORD H_CONSONANT, H_VOWEL, H_DOUBLE, H_ONLYCHO;
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static WORD wHTable[256][2];
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static BYTE rgbDJongTbl[NUM_OF_DOUBLE_JONGSUNG_2BEOL+1][3];
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};
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/////////////////////////////////////////////////////////////////////////////
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// CHangulAutomata3 Keyboard layout #2 (3 beolsik)
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class CHangulAutomata3 : public CHangulAutomata
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{
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public:
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CHangulAutomata3() {}
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// Attributes
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public:
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// Operations
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public:
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HAutomataReturnState Machine(UINT KeyCode, int iShift);
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BOOL IsInputKey(UINT KeyCode, int iShift);
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BOOL IsHangulKey(UINT KeyCode, int iShift);
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WORD GetKeyMap(UINT KeyCode, int iShift);
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BOOL SetCompositionChar(WCHAR wcComp);
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// Implementation
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public:
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~CHangulAutomata3() { }
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protected:
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WORD FindJonsungComb(WORD wPrevCode);
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HAutomataReturnState Input(WORD InternalCode);
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protected:
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enum _Transistion_state { FINAL=11, FIND=12 };
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static const WORD m_NextStateTbl[11][6];
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static const WORD H_CHOSUNG, H_JUNGSUNG, H_JONGSUNG, H_DOUBLE;
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static WORD wHTable[256][2];
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static BYTE rgbDJongTbl[NUM_OF_DOUBLE_JONGSUNG_3BEOL+1][3];
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};
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/////////////////////////////////////////////////////////////////////////////
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// CHangulAutomata3 Keyboard layout #3 (3 beolsik final)
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class CHangulAutomata3Final : public CHangulAutomata3
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{
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public:
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CHangulAutomata3Final() {}
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// Attributes
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public:
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// Operations
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public:
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HAutomataReturnState Machine(UINT KeyCode, int iShift) ;
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BOOL IsInputKey(UINT KeyCode, int iShift);
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BOOL IsHangulKey(UINT KeyCode, int iShift);
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WORD GetKeyMap(UINT KeyCode, int iShift);
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// Implementation
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public:
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~CHangulAutomata3Final() { }
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protected:
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static WORD wHTable[256][2];
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};
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///////////////////////////////////////////////////////////////////////////////
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// Inline functions
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inline
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void CHangulAutomata::CInterimStack::Push(InterimStackEntry& InterimEntry)
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{
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DbgAssert(m_sp<MaxInterimStackSize);
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m_StackBuffer[m_sp++] = InterimEntry;
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}
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inline
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void CHangulAutomata::CInterimStack::Push(WORD wInternalCode, WORD CurState,
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WORD Chosung, WORD Jungsung, WORD Jongsung, WCHAR wcCode)
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{
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DbgAssert(m_sp<=5);
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m_StackBuffer[m_sp].m_wInternalCode = wInternalCode;
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m_StackBuffer[m_sp].m_CurState = CurState;
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m_StackBuffer[m_sp].m_Chosung = Chosung;
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m_StackBuffer[m_sp].m_Jungsung = Jungsung;
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m_StackBuffer[m_sp].m_Jongsung = Jongsung;
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m_StackBuffer[m_sp++].m_wcCode = wcCode;
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}
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// CHangulAutomata2
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inline
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HAutomataReturnState CHangulAutomata2::Machine(UINT KeyCode, int iShift)
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{
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return (Input(wHTable[KeyCode][iShift]));
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}
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inline
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BOOL CHangulAutomata2::IsInputKey(UINT KeyCode, int iShift)
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{
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if (KeyCode<256)
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return (wHTable[KeyCode][iShift]);
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else
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return fFalse;
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}
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inline
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BOOL CHangulAutomata2::IsHangulKey(UINT KeyCode, int iShift)
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{
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if (KeyCode<256)
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return (wHTable[KeyCode][iShift]) & H_HANGUL;
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else
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return fFalse;
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}
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inline
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WORD CHangulAutomata2::GetKeyMap(UINT KeyCode, int iShift)
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{
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if (KeyCode<256)
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return (wHTable[KeyCode][iShift]);
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else
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return fFalse;
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}
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// CHangulAutomata3
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inline
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HAutomataReturnState CHangulAutomata3::Machine(UINT KeyCode, int iShift)
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{
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DbgAssert(KeyCode<256);
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return (Input(wHTable[KeyCode][iShift]));
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}
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inline
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BOOL CHangulAutomata3::IsInputKey(UINT KeyCode, int iShift)
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{
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if (KeyCode<256)
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return (wHTable[KeyCode][iShift]);
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else
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return fFalse;
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}
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inline
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BOOL CHangulAutomata3::IsHangulKey(UINT KeyCode, int iShift)
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{
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if (KeyCode<256)
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return (wHTable[KeyCode][iShift]) & H_HANGUL;
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else
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return fFalse;
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}
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inline
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WORD CHangulAutomata3::GetKeyMap(UINT KeyCode, int iShift)
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{
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if (KeyCode<256)
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return (wHTable[KeyCode][iShift]);
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else
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return 0;
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}
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// CHangulAutomata3Final
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inline
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HAutomataReturnState CHangulAutomata3Final::Machine(UINT KeyCode, int iShift)
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{
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DbgAssert(KeyCode<256);
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return (Input(wHTable[KeyCode][iShift]));
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}
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inline
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BOOL CHangulAutomata3Final::IsInputKey(UINT KeyCode, int iShift)
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{
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if (KeyCode<256)
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return (wHTable[KeyCode][iShift]);
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else
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return fFalse;
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}
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inline
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BOOL CHangulAutomata3Final::IsHangulKey(UINT KeyCode, int iShift)
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{
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if (KeyCode<256)
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return (wHTable[KeyCode][iShift]) & H_HANGUL;
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else
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return fFalse;
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}
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inline
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WORD CHangulAutomata3Final::GetKeyMap(UINT KeyCode, int iShift)
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{
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if (KeyCode<256)
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return (wHTable[KeyCode][iShift]);
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else
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return 0;
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}
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#endif // !defined (__HAUTOMATA_H__)
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