mirror of
https://github.com/keymanapp/keyman.git
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590 lines
19 KiB
C++
Executable file
590 lines
19 KiB
C++
Executable file
/*
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Name: mc_import_rules
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Copyright: Copyright (C) SIL International.
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Documentation:
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Description:
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Create Date: 3 Aug 2014
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Modified Date: 6 Feb 2015
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Authors: mcdurdin
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Related Files:
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Dependencies:
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Bugs:
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Todo:
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Notes:
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History: 03 Aug 2014 - mcdurdin - I4327 - V9.0 - Mnemonic layout compiler follow-up
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03 Aug 2014 - mcdurdin - I4353 - V9.0 - mnemonic layout recompiler mixes up deadkey rules
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31 Dec 2014 - mcdurdin - I4550 - V9.0 - logical flaw in mnemonic layout recompiler means that AltGr base keys are never processed
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06 Feb 2015 - mcdurdin - I4552 - V9.0 - Add mnemonic recompile option to ignore deadkeys
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*/
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#include <vector>
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#include <string>
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#include <stdio.h>
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#include "mc_kmxfile.h"
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#include "keymap.h"
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const int KMX_ShiftStateMap[] = {
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ISVIRTUALKEY,
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ISVIRTUALKEY | K_SHIFTFLAG,
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ISVIRTUALKEY | K_CTRLFLAG,
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ISVIRTUALKEY | K_SHIFTFLAG | K_CTRLFLAG,
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0,
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0,
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ISVIRTUALKEY | RALTFLAG,
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ISVIRTUALKEY | RALTFLAG | K_SHIFTFLAG,
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0,
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0};
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DeadKey::DeadKey(KMX_WCHAR deadCharacter) {
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this->m_deadchar = deadCharacter;
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}
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KMX_WCHAR DeadKey::KMX_DeadCharacter() {
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return this->m_deadchar;
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}
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void DeadKey::KMX_AddDeadKeyRow(KMX_WCHAR baseCharacter, KMX_WCHAR combinedCharacter) {
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this->m_rgbasechar.push_back(baseCharacter);
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this->m_rgcombchar.push_back(combinedCharacter);
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}
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bool DeadKey::KMX_ContainsBaseCharacter(KMX_WCHAR baseCharacter) {
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std::vector<KMX_WCHAR>::iterator it;
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for (it = this->m_rgbasechar.begin(); it < m_rgbasechar.end(); it++) {
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if (*it == baseCharacter) {
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return true;
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}
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}
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return false;
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}
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int KMX_ToUnicodeEx(guint keycode, PKMX_WCHAR pwszBuff, int shift_state_pos, int caps, GdkKeymap* keymap) {
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GdkKeymapKey* maps;
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guint* keyvals;
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gint count;
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if (u16len(pwszBuff) < 1)
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return 0;
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if (!gdk_keymap_get_entries_for_keycode(keymap, keycode, &maps, &keyvals, &count))
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return 0;
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if (!(ensureValidInputForKeyboardTranslation(shift_state_pos, count, keycode)))
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return 0;
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KMX_DWORD keyVal = (KMX_DWORD)KMX_get_KeyVal_From_KeyCode(keymap, keycode, ShiftState(shift_state_pos), caps);
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std::u16string str = convert_DeadkeyValues_To_U16str(keyVal);
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pwszBuff[0] = *(PKMX_WCHAR)str.c_str();
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g_free(keyvals);
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g_free(maps);
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if ((keyVal >= deadkey_min) && (keyVal <= deadkey_max)) // deadkeys
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return -1;
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else if (gdk_keyval_to_unicode(keyVal) == 0) // NO UNICODE
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return 0;
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else // usable char
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return 1;
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}
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KMX_WCHAR KMX_DeadKeyMap( int index, std::vector<DeadKey*>* deadkeys, int deadkeyBase, std::vector<KMX_DeadkeyMapping>* deadkeyMappings) { // I4327 // I4353
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for (size_t i = 0; i < deadkeyMappings->size(); i++) {
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if ((*deadkeyMappings)[i].deadkey == index) {
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return (*deadkeyMappings)[i].dkid;
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}
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}
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for (size_t i = 0; i < deadkeys->size(); i++) {
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if ((*deadkeys)[i]->KMX_DeadCharacter() == index) {
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return (KMX_WCHAR) (deadkeyBase + i);
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}
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}
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return 0xFFFF;
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}
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class KMX_VirtualKey {
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private:
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UINT m_vk;
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UINT m_sc;
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bool m_rgfDeadKey[10][2];
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std::u16string m_rgss[10][2];
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public:
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KMX_VirtualKey(UINT scanCode) {
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this->m_vk = KMX_get_VKUS_From_KeyCodeUnderlying(scanCode);
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this->m_sc = scanCode;
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memset(this->m_rgfDeadKey, 0, sizeof(this->m_rgfDeadKey));
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}
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UINT VK() {
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return this->m_vk;
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}
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UINT SC() {
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return this->m_sc;
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}
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std::u16string KMX_GetShiftState(ShiftState shiftState, bool capsLock) {
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return this->m_rgss[(UINT)shiftState][(capsLock ? 1 : 0)];
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}
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void KMX_SetShiftState(ShiftState shiftState, std::u16string value, bool isDeadKey, bool capsLock) {
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this->m_rgfDeadKey[(UINT)shiftState][(capsLock ? 1 : 0)] = isDeadKey;
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this->m_rgss[(UINT)shiftState][(capsLock ? 1 : 0)] = value;
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}
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bool KMX_IsSGCAPS() {
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std::u16string stBase = this->KMX_GetShiftState(Base, false);
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std::u16string stShift = this->KMX_GetShiftState(Shft, false);
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std::u16string stCaps = this->KMX_GetShiftState(Base, true);
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std::u16string stShiftCaps = this->KMX_GetShiftState(Shft, true);
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return (
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((stCaps.size() > 0) && (stBase.compare(stCaps) != 0) && (stShift.compare(stCaps) != 0)) ||
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((stShiftCaps.size() > 0) && (stBase.compare(stShiftCaps) != 0) && (stShift.compare(stShiftCaps) != 0)));
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}
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bool KMX_IsCapsEqualToShift() {
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std::u16string stBase = this->KMX_GetShiftState(Base, false);
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std::u16string stShift = this->KMX_GetShiftState(Shft, false);
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std::u16string stCaps = this->KMX_GetShiftState(Base, true);
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return ((stBase.size() > 0) && (stShift.size() > 0) && (stBase.compare(stShift) != 0) && (stShift.compare(stCaps) == 0));
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}
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bool KMX_IsAltGrCapsEqualToAltGrShift() {
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std::u16string stBase = this->KMX_GetShiftState(MenuCtrl, false);
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std::u16string stShift = this->KMX_GetShiftState(ShftMenuCtrl, false);
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std::u16string stCaps = this->KMX_GetShiftState(MenuCtrl, true);
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return ((stBase.size() > 0) && (stShift.size() > 0) && (stBase.compare(stShift) != 0) && (stShift.compare(stCaps) == 0));
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}
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bool KMX_IsXxxxGrCapsEqualToXxxxShift() {
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std::u16string stBase = this->KMX_GetShiftState(Xxxx, false);
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std::u16string stShift = this->KMX_GetShiftState(ShftXxxx, false);
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std::u16string stCaps = this->KMX_GetShiftState(Xxxx, true);
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return ((stBase.size() > 0) && (stShift.size() > 0) && (stBase.compare(stShift) != 0) && (stShift.compare(stCaps) == 0));
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}
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bool KMX_IsEmpty() {
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for (int i = 0; i < 10; i++) {
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for (int j = 0; j <= 1; j++) {
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if (this->KMX_GetShiftState((ShiftState)i, (j == 1)).size() > 0) {
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return (false);
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}
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}
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}
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return true;
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}
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bool KMX_IsKeymanUsedKey() {
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return (this->m_vk >= 0x20 && this->m_vk <= 0x5F) || (this->m_vk >= 0x88);
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}
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UINT KMX_GetShiftStateValue(int capslock, int caps, ShiftState ss) {
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return KMX_ShiftStateMap[(int)ss] | (capslock ? (caps ? CAPITALFLAG : NOTCAPITALFLAG) : 0);
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}
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int KMX_GetKeyCount(int MaxShiftState) {
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int nkeys = 0;
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// Get the CAPSLOCK value
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for (int ss = 0; ss <= MaxShiftState; ss++) {
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if (ss == Menu || ss == ShftMenu) {
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// Alt and Shift+Alt don't work, so skip them
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continue;
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}
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for (int caps = 0; caps <= 1; caps++) {
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std::u16string st = this->KMX_GetShiftState((ShiftState)ss, (caps == 1));
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if (st.size() == 0) {
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// No character assigned here
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} else if (this->m_rgfDeadKey[(int)ss][caps]) {
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// It's a dead key, append an @ sign.
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nkeys++;
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} else {
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bool isvalid = true;
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for (size_t ich = 0; ich < st.size(); ich++) {
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if (st[ich] < 0x20 || st[ich] == 0x7F) {
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isvalid = false;
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wprintf(L"invalid for: %i\n", st[ich]);
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break;
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}
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}
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if (isvalid) {
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nkeys++;
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}
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}
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}
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}
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return nkeys;
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}
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bool KMX_LayoutRow(int MaxShiftState, LPKMX_KEY key, std::vector<DeadKey*>* deadkeys, int deadkeyBase, BOOL bDeadkeyConversion, vec_dword_3D& all_vector, GdkKeymap* keymap) { // I4552
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// Get the CAPSLOCK value
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int capslock = (this->KMX_IsCapsEqualToShift() ? 1 : 0) | (this->KMX_IsSGCAPS() ? 2 : 0) |
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(this->KMX_IsAltGrCapsEqualToAltGrShift() ? 4 : 0) | (this->KMX_IsXxxxGrCapsEqualToXxxxShift() ? 8 : 0);
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for (int ss = 0; ss <= MaxShiftState; ss++) {
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if (ss == Menu || ss == ShftMenu) {
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// Alt and Shift+Alt don't work, so skip them
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continue;
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}
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for (int caps = 0; caps <= 1; caps++) {
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std::u16string st = this->KMX_GetShiftState((ShiftState)ss, (caps == 1));
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PKMX_WCHAR p;
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if (st.size() == 0) {
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// No character assigned here
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} else if (this->m_rgfDeadKey[(int)ss][caps]) {
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// It's a dead key, append an @ sign.
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key->dpContext = new KMX_WCHAR[1];
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*key->dpContext = 0;
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key->ShiftFlags = this->KMX_GetShiftStateValue(capslock, caps, (ShiftState)ss);
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// we already use VK_US so no need to convert it as we do on windows
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key->Key = this->VK();
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key->Line = 0;
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if (bDeadkeyConversion) { // I4552
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p = key->dpOutput = new KMX_WCHAR[2];
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*p++ = st[0];
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*p = 0;
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} else {
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p = key->dpOutput = new KMX_WCHAR[4];
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*p++ = UC_SENTINEL;
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*p++ = CODE_DEADKEY;
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*p++ = KMX_DeadKeyMap(st[0], deadkeys, deadkeyBase, &KMX_FDeadkeys); // I4353
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*p = 0;
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}
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key++;
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} else {
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bool isvalid = true;
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for (size_t ich = 0; ich < st.size(); ich++) {
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if (st[ich] < 0x20 || st[ich] == 0x7F) {
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isvalid = false;
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wprintf(L"invalid 16 for: %i\n", st[ich]);
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break;
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}
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}
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if (isvalid) {
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// this is different to mcompile windows !!!!
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// this->m_sc stores SC-US = SCUnderlying
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// this->m_vk stores VK-US ( not underlying !!)
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// key->Key stores VK-US ( not underlying !!)
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// key->dpOutput stores character Underlying
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KMX_DWORD SC_Underlying = KMX_get_KeyCodeUnderlying_From_KeyCodeUS(keymap, all_vector, this->SC(), (ShiftState)ss, caps);
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key->Key = KMX_get_VKUS_From_KeyCodeUnderlying(SC_Underlying);
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key->Line = 0;
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key->ShiftFlags = this->KMX_GetShiftStateValue(capslock, caps, (ShiftState)ss);
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key->dpContext = new KMX_WCHAR;
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*key->dpContext = 0;
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p = key->dpOutput = new KMX_WCHAR[st.size() + 1];
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for (size_t ich = 0; ich < st.size(); ich++) {
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*p++ = st[ich];
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}
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*p = 0;
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key++;
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}
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}
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}
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}
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return true;
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}
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};
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class KMX_Loader {
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private:
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KMX_BYTE lpKeyStateNull[256];
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UINT m_XxxxVk;
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public:
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KMX_Loader() {
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m_XxxxVk = 0;
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memset(lpKeyStateNull, 0, sizeof(lpKeyStateNull));
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}
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UINT Get_XxxxVk() {
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return m_XxxxVk;
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}
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void Set_XxxxVk(UINT value) {
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m_XxxxVk = value;
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}
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ShiftState KMX_MaxShiftState() {
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return (Get_XxxxVk() == 0 ? ShftMenuCtrl : ShftXxxx);
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}
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bool KMX_IsControlChar(char16_t ch) {
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return (ch < 0x0020) || (ch >= 0x007F && ch <= 0x009F);
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}
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};
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int KMX_GetMaxDeadkeyIndex(KMX_WCHAR* p) {
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int n = 0;
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while (p && *p) {
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if (*p == UC_SENTINEL && *(p + 1) == CODE_DEADKEY)
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n = std::max(n, (int)*(p + 2));
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p = KMX_incxstr(p);
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}
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return n;
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}
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bool KMX_ImportRules(LPKMX_KEYBOARD kp, vec_dword_3D& all_vector, GdkKeymap** keymap, std::vector<KMX_DeadkeyMapping>* FDeadkeys, KMX_BOOL bDeadkeyConversion) { // I4353 // I4552
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KMX_Loader loader;
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std::vector<KMX_VirtualKey*> rgKey; //= new VirtualKey[256];
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std::vector<DeadKey*> alDead;
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std::vector<DeadKey*> alDead_byBasechar = create_deadkeys_by_basechar();
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rgKey.resize(256);
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// Scroll through the Scan Code (SC) values and get the valid Virtual Key (VK)
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// values in it. Then, store the SC in each valid VK so it can act as both a
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// flag that the VK is valid, and it can store the SC value.
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for (UINT sc = 0x01; sc <= 0x7f; sc++) {
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// fills m_vk with the VK of the US keyboard
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// ( mcompile win uses MapVirtualKeyEx() to fill m_vk with the VK of the Underlying keyboard)
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// Linux can get a VK for the US Keyboard using USVirtualKeyToScanCode/ScanCodeToUSVirtualKey
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// Linux cannot get a VK for the underling Keyboard
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// this "connection" is possible only when using all_vector
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KMX_VirtualKey* key = new KMX_VirtualKey(sc);
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if ((key->VK() != 0)) {
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rgKey[key->VK()] = key;
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} else {
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delete key;
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}
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}
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/* _S2 TODO I assume we do not need those...
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rgKey[VK_DIVIDE] = new KMX_VirtualKey(hkl, VK_DIVIDE);
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rgKey[VK_CANCEL] = new KMX_VirtualKey(hkl, VK_CANCEL);
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rgKey[VK_DECIMAL] = new KMX_VirtualKey(hkl, VK_DECIMAL);*/
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// in this part we skip shiftstates 4, 5, 8, 9
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for (UINT iKey = 0; iKey < rgKey.size(); iKey++) {
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if (rgKey[iKey] != NULL) {
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KMX_WCHAR sbBuffer[256]; // Scratchpad we use many places
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for (ShiftState ss = Base; ss <= loader.KMX_MaxShiftState(); ss = (ShiftState)((int)ss + 1)) {
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if (ss == Menu || ss == ShftMenu) {
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// Alt and Shift+Alt don't work, so skip them (ss 4+5)
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continue;
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}
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KMX_DWORD kc_us = (KMX_DWORD)KMX_get_KeyCodeUnderlying_From_VKUS(iKey);
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for (int caps = 0; caps <= 1; caps++) {
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int rc = KMX_ToUnicodeEx(kc_us, sbBuffer, ss, caps, *keymap);
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if (rc > 0) {
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if (*sbBuffer == 0) {
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rgKey[iKey]->KMX_SetShiftState(ss, u"", false, (caps)); // different to windows since behavior on Linux is different
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} else {
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if ((ss == Ctrl || ss == ShftCtrl)) {
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continue;
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}
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sbBuffer[rc] = 0;
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rgKey[iKey]->KMX_SetShiftState(ss, sbBuffer, false, (caps)); // different to windows since behavior on Linux is different
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}
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} else if (rc < 0) {
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sbBuffer[2] = 0;
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rgKey[iKey]->KMX_SetShiftState(ss, sbBuffer, true, (caps)); // different to windows since behavior on Linux is different
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refine_alDead(sbBuffer[0], alDead, alDead_byBasechar);
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}
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}
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}
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}
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}
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//-------------------------------------------------------------
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// Now that we've collected the key data, we need to
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// translate it to kmx and append to the existing keyboard
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//-------------------------------------------------------------
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int nDeadkey = 0;
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LPKMX_GROUP gp = new KMX_GROUP[kp->cxGroupArray + 4]; // leave space for old
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memcpy(gp, kp->dpGroupArray, sizeof(KMX_GROUP) * kp->cxGroupArray);
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//
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// Find the current highest deadkey index
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//
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kp->dpGroupArray = gp;
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for (UINT i = 0; i < kp->cxGroupArray; i++, gp++) {
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// if(gp->fUsingKeys && gp->dpNoMatch == NULL) { // I4550
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// WCHAR *p = gp->dpNoMatch = new WCHAR[4];
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// *p++ = UC_SENTINEL;
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// *p++ = CODE_USE;
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// *p++ = (WCHAR)(kp->cxGroupArray + 1);
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// *p = 0;
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//}
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LPKMX_KEY kkp = gp->dpKeyArray;
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for (UINT j = 0; j < gp->cxKeyArray; j++, kkp++) {
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nDeadkey = std::max(nDeadkey, KMX_GetMaxDeadkeyIndex(kkp->dpContext));
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nDeadkey = std::max(nDeadkey, KMX_GetMaxDeadkeyIndex(kkp->dpOutput));
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}
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}
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kp->cxGroupArray++;
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gp = &kp->dpGroupArray[kp->cxGroupArray - 1];
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// calculate the required size of `gp->dpKeyArray`
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UINT nkeys = 0;
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for (UINT iKey = 0; iKey < rgKey.size(); iKey++) {
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if ((rgKey[iKey] != NULL) && rgKey[iKey]->KMX_IsKeymanUsedKey() && (!rgKey[iKey]->KMX_IsEmpty())) {
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nkeys += rgKey[iKey]->KMX_GetKeyCount(loader.KMX_MaxShiftState());
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}
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}
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gp->fUsingKeys = TRUE;
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gp->dpMatch = NULL;
|
|
gp->dpName = NULL;
|
|
gp->dpNoMatch = NULL;
|
|
gp->cxKeyArray = nkeys;
|
|
gp->dpKeyArray = new KMX_KEY[gp->cxKeyArray];
|
|
|
|
nDeadkey++; // ensure a 1-based index above the max deadkey value already in the keyboard
|
|
|
|
//
|
|
// Fill in the new rules
|
|
//
|
|
nkeys = 0;
|
|
for (UINT iKey = 0; iKey < rgKey.size(); iKey++) {
|
|
if ((rgKey[iKey] != NULL) && rgKey[iKey]->KMX_IsKeymanUsedKey() && (!rgKey[iKey]->KMX_IsEmpty())) {
|
|
if (rgKey[iKey]->KMX_LayoutRow(loader.KMX_MaxShiftState(), &gp->dpKeyArray[nkeys], &alDead, nDeadkey, bDeadkeyConversion, all_vector, *keymap)) { // I4552
|
|
nkeys += rgKey[iKey]->KMX_GetKeyCount(loader.KMX_MaxShiftState());
|
|
}
|
|
}
|
|
}
|
|
|
|
gp->cxKeyArray = nkeys;
|
|
|
|
//
|
|
// Add nomatch control to each terminating 'using keys' group // I4550
|
|
//
|
|
LPKMX_GROUP gp2 = kp->dpGroupArray;
|
|
for (UINT i = 0; i < kp->cxGroupArray - 1; i++, gp2++) {
|
|
if (gp2->fUsingKeys && gp2->dpNoMatch == NULL) {
|
|
KMX_WCHAR* p = gp2->dpNoMatch = new KMX_WCHAR[4];
|
|
*p++ = UC_SENTINEL;
|
|
*p++ = CODE_USE;
|
|
*p++ = (KMX_WCHAR)(kp->cxGroupArray);
|
|
*p = 0;
|
|
|
|
// I4550 - Each place we have a nomatch > use(baselayout) (this last group), we need to add all
|
|
// the AltGr and ShiftAltGr combinations as rules to allow them to be matched as well. Yes, this
|
|
// loop is not very efficient but it's not worthy of optimisation.
|
|
//
|
|
UINT j;
|
|
LPKMX_KEY kkp;
|
|
for (j = 0, kkp = gp->dpKeyArray; j < gp->cxKeyArray; j++, kkp++) {
|
|
if ((kkp->ShiftFlags & (K_CTRLFLAG | K_ALTFLAG | LCTRLFLAG | LALTFLAG | RCTRLFLAG | RALTFLAG)) != 0) {
|
|
gp2->cxKeyArray++;
|
|
LPKMX_KEY kkp2 = new KMX_KEY[gp2->cxKeyArray];
|
|
memcpy(kkp2, gp2->dpKeyArray, sizeof(KMX_KEY) * (gp2->cxKeyArray - 1));
|
|
gp2->dpKeyArray = kkp2;
|
|
kkp2 = &kkp2[gp2->cxKeyArray - 1];
|
|
kkp2->dpContext = new KMX_WCHAR;
|
|
*kkp2->dpContext = 0;
|
|
kkp2->Key = kkp->Key;
|
|
kkp2->ShiftFlags = kkp->ShiftFlags;
|
|
kkp2->Line = 0;
|
|
KMX_WCHAR* p = kkp2->dpOutput = new KMX_WCHAR[4];
|
|
*p++ = UC_SENTINEL;
|
|
*p++ = CODE_USE;
|
|
*p++ = (KMX_WCHAR)(kp->cxGroupArray);
|
|
*p = 0;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// If we have deadkeys, then add a new group to translate the deadkeys per the deadkey tables
|
|
// We only do this if not in deadkey conversion mode
|
|
//
|
|
|
|
if (alDead.size() > 0 && !bDeadkeyConversion) { // I4552
|
|
kp->cxGroupArray++;
|
|
|
|
KMX_WCHAR* p = gp->dpMatch = new KMX_WCHAR[4];
|
|
*p++ = UC_SENTINEL;
|
|
*p++ = CODE_USE;
|
|
*p++ = (KMX_WCHAR)kp->cxGroupArray;
|
|
*p = 0;
|
|
|
|
gp++;
|
|
|
|
gp->fUsingKeys = FALSE;
|
|
gp->dpMatch = NULL;
|
|
gp->dpName = NULL;
|
|
gp->dpNoMatch = NULL;
|
|
gp->cxKeyArray = alDead.size();
|
|
LPKMX_KEY kkp = gp->dpKeyArray = new KMX_KEY[alDead.size()];
|
|
|
|
LPKMX_STORE sp = new KMX_STORE[kp->cxStoreArray + alDead.size() * 2];
|
|
memcpy(sp, kp->dpStoreArray, sizeof(KMX_STORE) * kp->cxStoreArray);
|
|
|
|
kp->dpStoreArray = sp;
|
|
|
|
sp = &sp[kp->cxStoreArray];
|
|
int nStoreBase = kp->cxStoreArray;
|
|
kp->cxStoreArray += alDead.size() * 2;
|
|
|
|
for (UINT i = 0; i < alDead.size(); i++) {
|
|
DeadKey* dk = alDead[i];
|
|
|
|
sp->dpName = NULL;
|
|
sp->dwSystemID = 0;
|
|
sp->dpString = new KMX_WCHAR[dk->KMX_Count() + 1];
|
|
for (int j = 0; j < dk->KMX_Count(); j++)
|
|
sp->dpString[j] = dk->KMX_GetBaseCharacter(j);
|
|
sp->dpString[dk->KMX_Count()] = 0;
|
|
sp++;
|
|
|
|
sp->dpName = NULL;
|
|
sp->dwSystemID = 0;
|
|
sp->dpString = new KMX_WCHAR[dk->KMX_Count() + 1];
|
|
for (int j = 0; j < dk->KMX_Count(); j++)
|
|
sp->dpString[j] = dk->KMX_GetCombinedCharacter(j);
|
|
sp->dpString[dk->KMX_Count()] = 0;
|
|
sp++;
|
|
|
|
kkp->Line = 0;
|
|
kkp->ShiftFlags = 0;
|
|
kkp->Key = 0;
|
|
KMX_WCHAR* p = kkp->dpContext = new KMX_WCHAR[8];
|
|
*p++ = UC_SENTINEL;
|
|
*p++ = CODE_DEADKEY;
|
|
*p++ = KMX_DeadKeyMap(dk->KMX_DeadCharacter(), &alDead, nDeadkey, FDeadkeys); // I4353
|
|
// *p++ = nDeadkey+i;
|
|
*p++ = UC_SENTINEL;
|
|
*p++ = CODE_ANY;
|
|
*p++ = nStoreBase + i * 2 + 1;
|
|
*p = 0;
|
|
|
|
p = kkp->dpOutput = new KMX_WCHAR[5];
|
|
*p++ = UC_SENTINEL;
|
|
*p++ = CODE_INDEX;
|
|
*p++ = nStoreBase + i * 2 + 2;
|
|
*p++ = 2;
|
|
*p = 0;
|
|
kkp++;
|
|
}
|
|
}
|
|
|
|
return true;
|
|
}
|