mirror of
https://github.com/keymanapp/keyman.git
synced 2026-08-05 08:25:32 +00:00
593 lines
25 KiB
C++
593 lines
25 KiB
C++
#include "keymap.h"
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#include <xkbcommon/xkbcommon.h>
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/*
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static void PrintKeymapForCode(GdkKeymap *keymap, guint keycode)
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{
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GdkKeymapKey *maps;
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guint *keyvals;
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gint count;
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if (!gdk_keymap_get_entries_for_keycode(keymap, keycode, &maps, &keyvals, &count))
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return;
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// group0 D, group1 fr, group2, group3 US,
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for (int i = 0; i < count; i++) {
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//if (maps[i].level > 0 || maps[i].group > 1)
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// continue;
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wprintf(L" i=%d, keycode=%d, keyval=%d (%c), level=%d, group=%d\n",
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i, maps[i].keycode, keyvals[i], keyvals[i], maps[i].level, maps[i].group);
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}
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//xkb_keymap_key_get_syms_by_level(keymap, keycode, )
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g_free(keyvals);
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g_free(maps);
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}
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*/
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int write_US_ToVector( v_dw_3D &vec,std::string language, const char* text) {
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// _S2 relative path !!
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std::string FullPathName = "/usr/share/X11/xkb/symbols/" + language;
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const char* path = FullPathName.c_str();
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FILE* fp = fopen((path), "r");
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if ( !fp) {
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wprintf(L"ERROR: could not open file!\n");
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return 1;
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}
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// create 1D-vector of the complete line
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v_str_1D Vector_completeUS;
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if( createCompleteRow_US(Vector_completeUS,fp , text, language)) {
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wprintf(L"ERROR: can't Create complete row US \n");
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return 1;
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}
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// split contents of 1D Vector to 3D vector
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if( split_US_To_3D_Vector( vec,Vector_completeUS)) {
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return 1;
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}
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wprintf(L"\n ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++\n");
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wprintf(L" +++++++ dimensions of Vector after split_US_To_3D_Vector (languages..characters..shiftstates)\t\t %li..%li..%li\n", vec.size(), vec[0].size(),vec[0][0].size());
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fclose(fp);
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return 0;
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}
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bool createCompleteRow_US(v_str_1D &complete_List, FILE* fp, const char* text, std::string language) {
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// in the Configuration file we find the appopriate paragraph between "xkb_symbol <text>" and the next xkb_symbol
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// and then copy all rows starting with "key <" to a 1D-Vector
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int buffer_size = 512;
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char buffer[buffer_size];
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bool print_OK = false;
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const char* key = "key <";
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std::string str_txt(text);
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std::string xbk_mark = "xkb_symbol";
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// _S2 TODO define folder to store File in
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std::ofstream KeyboardFile("File_" + language + ".txt");
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KeyboardFile << "Keyboard" << text << "\n";
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if (fp) {
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while (fgets(buffer, buffer_size, fp) != NULL) {
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std::string str_buf(buffer);
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// stop when finding the mark xkb_symbol
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if (std::string(str_buf).find(xbk_mark) != std::string::npos)
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print_OK = false;
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// start when finding the mark xkb_symbol + correct layout
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if ((std::string(str_buf).find(str_txt) != std::string::npos))
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print_OK = true;
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// as long as we are in the same xkb_symbol layout block and find "key <" we push the whole line into a 1D-vector
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if ((print_OK) && (std::string(str_buf).find(key) != std::string::npos)) {
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complete_List.push_back(buffer);
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KeyboardFile << buffer;
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}
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}
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}
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complete_List.push_back(" key <SPCE> { [ space, space] };");
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complete_List.push_back(" key <AC12> { [ backslash, bar ] };");
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if (complete_List.size() <1) {
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wprintf(L"ERROR: can't create row from US \n");
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return 1;
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}
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return 0;
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}
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KMX_DWORD convertNamesToValue(std::wstring tok_wstr){
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std::map<std::wstring, KMX_DWORD > first;
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//initializing
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//first[L"grave"] 96 = /*FE50; ???*/;
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//first[L"apostrophe"] = /*27;*/;
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//first[L"braceleft"] = /*7B;*/;
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//first[L"braceright"] = /*7D ;*/;
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first[L"underscore"] = 95 /*5F;*/;
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first[L"plus"] = 43 /*2B;*/;
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first[L"semicolon"] = 59/*3B;*/;
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first[L"quotedbl"] = 34 /*22;*/;
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first[L"less"] = 60/* 3C;*/;
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first[L"greater"] = 62 /*3E ;*/;
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first[L"question"] = 63 /*3F*/;
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first[L"bar"] = 124 /*7C*/;
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first[L"exclam"] = 33;
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first[L"at"] = 64;
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first[L"numbersign"] = 35;
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first[L"dollar"] = 36;
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first[L"percent"] = 37;
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first[L"dead_circumflex"] = 94; /* _S2 ??? 0XFE52 */
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first[L"ampersand"] = 38;
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first[L"asterisk"] = 42;
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first[L"parenleft"] = 40;
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first[L"parenright"] = 41;
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first[L"equal"] = VK_EQUAL; /* BB = 187 */
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first[L"backslash"] = VK_BKSLASH; /* DC = 220 */
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first[L"bracketleft"] = VK_LBRKT; /* DB = 219 */
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first[L"bracketright"] = VK_RBRKT; /* DD = 221 */
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first[L"colon"] = VK_COLON; /* BA = 186 */
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first[L"comma"] = VK_COMMA; /* BC = 188 */
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first[L"period"] = VK_PERIOD; /* BE = 190 */
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first[L"slash"] = VK_SLASH; /* BF = 191 */
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first[L"ssharp"] = VK_xDF; /* DF = 223 ß */
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first[L"minus"] = VK_HYPHEN; /* BD = 189 ? */
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//first[L"dead_acute"] = VK_ACCENT; /* C0 = 192 ? */
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first[L"dead_grave"] = VK_ACCENT; /* C0 = 192 ? */
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first[L"space"] = VK_SPACE; /* 20 = 32 ? */
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// _S2 ?? VK_QUOTE, VK_OEM_102,
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if ( tok_wstr.size() == 1) {
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return (KMX_DWORD) ( *tok_wstr.c_str() );;
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}
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else {
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std::map<std::wstring, KMX_DWORD > ::iterator it;
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for (it = first.begin(); it != first.end(); ++it) {
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if (it->first == tok_wstr)
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return it->second;
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}
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}
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return returnIfCharInvalid;
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}
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int split_US_To_3D_Vector(v_dw_3D &all_US,v_str_1D completeList) {
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// 1: take the whole line of the 1D-Vector and remove unwanted characters.
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// 2: seperate the name e.g. key<AD06> from the shiftstates
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// 3: convert to KMX_DWORD
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// 4: push Names/Shiftstates to shift_states and then shift_states to All_US, our 3D-Vector holding all Elements
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std::vector<char> delim{' ', '[', ']', '}', ';', '\t', '\n'};
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char split_bracel = '{';
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char split_char_komma = ',';
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int Keycde;
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v_str_1D tokens;
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v_dw_1D tokens_dw;
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v_dw_2D shift_states;
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KMX_DWORD tokens_int;
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std::wstring tok_wstr;
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// loop through the whole vector
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for (int k = 0; k < (int)completeList.size() ; k++) {
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// remove all unwanted char
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for (int i = 0; i < (int) delim.size(); i++) {
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completeList[k].erase(remove(completeList[k].begin(), completeList[k].end(), delim[i]), completeList[k].end());
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}
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// only lines with ("key<.. are of interest
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if (completeList[k].find("key<") != std::string::npos) {
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//split off the key names
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std::istringstream split1(completeList[k]);
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for (std::string each; std::getline(split1, each, split_bracel); tokens.push_back(each));
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// replace keys names with Keycode (<AD06> with 21,...)
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Keycde = replace_PosKey_with_Keycode_use_Lin(tokens[0]);
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tokens[0] = std::to_string(Keycde);
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// seperate rest of the vector to its elements and push to 'tokens'
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std::istringstream split(tokens[1]);
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tokens.pop_back();
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for (std::string each; std::getline(split, each, split_char_komma); tokens.push_back(each));
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// now convert all to KMX_DWORD and fill tokens
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tokens_dw.push_back((KMX_DWORD) Keycde);
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for ( int i = 1; i< (int) tokens.size();i++) {
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// replace a name with a single character ( a -> a ; equal -> = )
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tokens_int = convertNamesToValue( wstring_from_string(tokens[i]));
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tokens_dw.push_back(tokens_int);
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}
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//wprintf(L" Keyval %i: %i (%c) --- %i (%c) \n", tokens_dw[0],tokens_dw[1],tokens_dw[1], tokens_dw[2], tokens_dw[2]);
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// now push result to shift_states
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shift_states.push_back(tokens_dw);
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tokens_dw.clear();
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tokens.clear();
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}
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}
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all_US.push_back(shift_states);
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if ( all_US.size() == 0) {
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wprintf(L"ERROR: Can't split US to 3D-Vector\n");
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return 1;
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}
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return 0;
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}
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int replace_PosKey_with_Keycode_use_Lin(std::string in) {
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int out = returnIfCharInvalid;
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// _S2 these are the Scancode-Values we use in Keyman ( = like the windows scancodes)
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// NAME IN SYMBOLS-FILE KEYCODE (LIN STYLE) (WIN STYLE) VK_US VK_DE
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if ( in == "key<TLDE>") out = 49; /* 0X VK_ */ // TOASK correct ???
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else if ( in == "key<AE01>") out = 10; /* 0X02 VK_1 */
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else if ( in == "key<AE02>") out = 11; /* 0X03 VK_2 */
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else if ( in == "key<AE03>") out = 12; /* 0X04 VK_3 */
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else if ( in == "key<AE04>") out = 13; /* 0X05 VK_4 */
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else if ( in == "key<AE05>") out = 14; /* 0X06 VK_5 */
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else if ( in == "key<AE06>") out = 15; /* 0X07 VK_6 */
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else if ( in == "key<AE07>") out = 16; /* 0X08 VK_7 */
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else if ( in == "key<AE08>") out = 17; /* 0X09 VK_8 */
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else if ( in == "key<AE09>") out = 18; /* 0X0A VK_9 */
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else if ( in == "key<AE10>") out = 19; /* 0X0B VK_0 */
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else if ( in == "key<AE11>") out = 20; /* 0X0C VK_MINUS de ẞ*/
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else if ( in == "key<AE12>") out = 21; /* 0X0D VK_EQUALS DE ' */
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else if ( in == "key<AD01>") out = 24; /* 0X10 VK_Q */
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else if ( in == "key<AD02>") out = 25; /* 0X11 VK_W */
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else if ( in == "key<AD03>") out = 26; /* 0X12 VK_E */
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else if ( in == "key<AD04>") out = 27; /* 0X13 VK_R */
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else if ( in == "key<AD05>") out = 28; /* 0X14 VK_T */
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else if ( in == "key<AD06>") out = 29; /* 0X15 VK_Y */
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else if ( in == "key<AD07>") out = 30; /* 0X16 VK_U */
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else if ( in == "key<AD08>") out = 31; /* 0X17 VK_I */
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else if ( in == "key<AD09>") out = 32; /* 0X18 VK_O */
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else if ( in == "key<AD10>") out = 33; /* 0X19 VK_P */
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else if ( in == "key<AD11>") out = 34; /* 0X1A VK_LEFTBRACE DE Ü */
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else if ( in == "key<AD12>") out = 35; /* 0X1B VK_RIGHTBRACE DE + */
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else if ( in == "key<AC01>") out = 38; /* 0X1E VK_A */
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else if ( in == "key<AC02>") out = 39; /* 0X1F VK_S */
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else if ( in == "key<AC03>") out = 40; /* 0X20 VK_D */
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else if ( in == "key<AC04>") out = 41; /* 0X21 VK_F */
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else if ( in == "key<AC05>") out = 42; /* 0X22 VK_G */
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else if ( in == "key<AC06>") out = 43; /* 0X23 VK_H */
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else if ( in == "key<AC07>") out = 44; /* 0X24 VK_J */
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else if ( in == "key<AC08>") out = 45; /* 0X25 VK_K */
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else if ( in == "key<AC09>") out = 46; /* 0X26 VK_L */
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else if ( in == "key<AC10>") out = 47; /* 0X27 VK_SEMICOLON DE Ö*/
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else if ( in == "key<AC11>") out = 48; /* 0X28 VK_APOSTROPHE DE Ä */
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else if ( in == "key<AC12>") out = 49; /* 0X29 VK_GRAVE DE # */
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else if ( in == "key<AB01>") out = 52; /* 0X2C VK_Z */
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else if ( in == "key<AB02>") out = 53; /* 0X2D VK_X */
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else if ( in == "key<AB03>") out = 54; /* 0X2E VK_C */
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else if ( in == "key<AB04>") out = 55; /* 0X2F VK_V */
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else if ( in == "key<AB05>") out = 56; /* 0X30 VK_B */
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else if ( in == "key<AB06>") out = 57; /* 0X31 VK_N */
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else if ( in == "key<AB07>") out = 58; /* 0X32 VK_M */
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else if ( in == "key<AB08>") out = 59; /* 0X33 VK_ COMMA */
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else if ( in == "key<AB09>") out = 60; /* 0X34 VK_DOT */
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else if ( in == "key<AB10>") out = 61; /* 0X35 VK_SLASH DE - */
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else if ( in == "key<BKSL>") out = 62; /* 0X36 VK_BKSLASH */
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else if ( in == "key<LSGT>") out = 63; /* 0X37 VK_RIGHTSHIFT */
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else if ( in == "key<SPCE>") out = 65; /* 0X20 ?? 39? VK_SPACE */
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return out;
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}
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v_dw_2D create_empty_2D( int dim_rows,int dim_shifts) {
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v_dw_1D shifts;
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v_dw_2D Vector_2D;
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for ( int i=0; i< dim_rows;i++) {
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for ( int j=0; j< dim_shifts;j++) {
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shifts.push_back(returnIfCharInvalid);
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}
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Vector_2D.push_back(shifts);
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shifts.clear();
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}
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return Vector_2D;
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}
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#if USE_GDK
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KMX_DWORD writeKeyvalsFromKeymap(GdkKeymap *keymap, guint keycode, int shift_state_pos);
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int append_other_ToVector(v_dw_3D &All_Vector,GdkKeymap * keymap) {
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// _S2 can go later
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//PrintKeymapForCode(keymap, 52);
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//Try_EberhardsXKB();
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//writeKeyvalsFromKeymap(keymap,1, 0);
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// create a 2D vector all filled with " " and push to 3D-Vector
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v_dw_2D Other_Vector2D = create_empty_2D(All_Vector[0].size(),All_Vector[0][0].size());
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if (Other_Vector2D.size() == 0) {
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wprintf(L"ERROR: can't create empty 2D-Vector\n");
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return 1;
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}
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All_Vector.push_back(Other_Vector2D);
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wprintf(L" +++++++ dimensions of Vector after append_other_ToVector\t\t\t\t\t\t %li..%li..%li\n", All_Vector.size(), All_Vector[0].size(),All_Vector[0][0].size());
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wprintf(L" ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++\n\n");
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if (All_Vector.size() < 2) {
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wprintf(L"ERROR: creation of 3D-Vector failed\n");
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return 1;
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}
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for(int i =0; i< (int) All_Vector[1].size();i++) {
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// get key name US stored in [0][i][0] and copy to name in "other"-block[1][i][0]
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All_Vector[1][i][0] = All_Vector[0][i][0];
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/*
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// get Keyvals of this key and copy to unshifted/shifted in "other"-block[1][i][1] / block[1][i][2]
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All_Vector[1][i][0+1] = getKeyvalsFromKeymap(keymap,keycode_map[All_Vector[0][i][0]],0); //shift state: unshifted:0
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All_Vector[1][i][1+1] = getKeyvalsFromKeymap(keymap,keycode_map[All_Vector[0][i][0]],1); //shift state: shifted:1
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KMX_DWORD inValue = All_Vector[0][i][0];
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KMX_DWORD KeycodeMapped_inValue = keycode_map[All_Vector[0][i][0]];
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KMX_DWORD resultOf_GETKEYVALS = getKeyvalsFromKeymap(keymap,keycode_map[All_Vector[0][i][0]],0);
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KMX_DWORD resultOf_GETKEYVALS_shift = getKeyvalsFromKeymap(keymap,keycode_map[All_Vector[0][i][0]],1);
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wprintf(L" inValue: %i -KeycodeMapped_inValue: %i, resultOf_GETKEYVALS: %i , resultOf_GETKEYVALS_shift: %i : %d (US): -- %i (%c) -- %i (%c) ---- (other): %i (%c) -- %i(%c) \n",inValue,KeycodeMapped_inValue,resultOf_GETKEYVALS,resultOf_GETKEYVALS_shift,(All_Vector[1][i][0]),All_Vector[0][i][1],All_Vector[0][i][1],All_Vector[0][i][2],All_Vector[0][i][2],All_Vector[1][i][1] ,All_Vector[1][i][1],All_Vector[1][i][2],All_Vector[1][i][2]);
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*/
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// get Keyvals of this key and copy to unshifted/shifted in "other"-block[1][i][1] / block[1][i][2]
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All_Vector[1][i][0+1] = getKeyvalsFromKeymap(keymap,All_Vector[0][i][0],0); //shift state: unshifted:0
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All_Vector[1][i][1+1] = getKeyvalsFromKeymap(keymap,All_Vector[0][i][0],1); //shift state: shifted:1
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KMX_DWORD inValue = All_Vector[0][i][0];
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KMX_DWORD KeycodeMapped_inValue = All_Vector[0][i][0];
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KMX_DWORD resultOf_GETKEYVALS = getKeyvalsFromKeymap(keymap,All_Vector[0][i][0],0);
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KMX_DWORD resultOf_GETKEYVALS_shift = getKeyvalsFromKeymap(keymap,All_Vector[0][i][0],1);
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//wprintf(L" inValue: %i -KeycodeMapped_inValue: %i, resultOf_GETKEYVALS: %i , resultOf_GETKEYVALS_shift: %i : %d (US): -- %i (%c) -- %i (%c) ---- (other): %i (%c) -- %i(%c) \n",inValue,KeycodeMapped_inValue,resultOf_GETKEYVALS,resultOf_GETKEYVALS_shift,(All_Vector[1][i][0]),All_Vector[0][i][1],All_Vector[0][i][1],All_Vector[0][i][2],All_Vector[0][i][2],All_Vector[1][i][1] ,All_Vector[1][i][1],All_Vector[1][i][2],All_Vector[1][i][2]);
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//wprintf(L" Keycodes US dw : %d (US): -- %i (%c) -- %i (%c) ---- (other): %i (%c) -- %i(%c) \n",(All_Vector[1][i][0]),All_Vector[0][i][1],All_Vector[0][i][1],All_Vector[0][i][2],All_Vector[0][i][2],All_Vector[1][i][1] ,All_Vector[1][i][1],All_Vector[1][i][2],All_Vector[1][i][2]);
|
|
//wprintf(L" Keycodes ->Other dw:-: %d (US): -- %i (%c) -- %i (%c) \n\n",(All_Vector[1][i][0]),All_Vector[1][i][1],All_Vector[1][i][1],All_Vector[1][i][2],All_Vector[1][i][2]);
|
|
int enxdfghj=9;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
bool InsertKeyvalsFromKeymap(v_dw_3D &All_Vector,GdkKeymap * keymap){
|
|
|
|
// get the keyvals using GDK and copy into All_Vector
|
|
for(int i =0; i< (int) All_Vector[1].size();i++) {
|
|
// get key name US stored in [0][i][0] and copy to name in "other"-block[1][i][0]
|
|
All_Vector[1][i][0] = All_Vector[0][i][0];
|
|
|
|
// get Keyvals of this key and copy to unshifted/shifted in "other"-block[1][i][1] / block[1][i][2]
|
|
All_Vector[1][i][0+1] = getKeyvalsFromKeymap(keymap,(All_Vector[1][i][0]),0); //shift state: unshifted:0
|
|
All_Vector[1][i][1+1] = getKeyvalsFromKeymap(keymap,(All_Vector[1][i][0]),1); //shift state: shifted:1
|
|
|
|
//wprintf(L" Keycodes US dw : %d (US): -- %i (%c) -- %i (%c) ---- (other): %i (%c) -- %i(%c) \n",(All_Vector[1][i][0]),All_Vector[0][i][1],All_Vector[0][i][1],All_Vector[0][i][2],All_Vector[0][i][2],All_Vector[1][i][1] ,All_Vector[1][i][1],All_Vector[1][i][2],All_Vector[1][i][2]);
|
|
//wprintf(L" Keycodes ->Other dw:-: %d (US): -- %i (%c) -- %i (%c) \n\n",(All_Vector[1][i][0]),All_Vector[1][i][1],All_Vector[1][i][1],All_Vector[1][i][2],All_Vector[1][i][2]);
|
|
}
|
|
}
|
|
|
|
// _S2 can go later
|
|
KMX_DWORD writeKeyvalsFromKeymap(GdkKeymap *keymap, guint keycode, int shift_state_pos) {
|
|
GdkKeymapKey *maps;
|
|
guint *keyvals;
|
|
gint count;
|
|
KMX_DWORD out;
|
|
for ( int ii =1; ii< 255;ii++) {
|
|
|
|
KMX_DWORD out = getKeyvalsFromKeymap(keymap,ii,0);
|
|
KMX_DWORD out2= getKeyvalsFromKeymap(keymap,ii,1);
|
|
wprintf(L" ii = %i --> keymap = %i (%c)..%i(%c) \n",ii, out,out, out2,out2);
|
|
}
|
|
|
|
}
|
|
|
|
KMX_DWORD getKeyvalsFromKeymap(GdkKeymap *keymap, guint keycode, int shift_state_pos) {
|
|
GdkKeymapKey *maps;
|
|
guint *keyvals;
|
|
gint count;
|
|
KMX_DWORD out;
|
|
|
|
if (!gdk_keymap_get_entries_for_keycode(keymap, keycode, &maps, &keyvals, &count))
|
|
return 0;
|
|
//if(!gdk_wayland_keymap_get_entries_for_keycode(keymap, keycode, &maps, &keyvals, &count))
|
|
// return 0; https://codebrowser.dev/gtk/gtk/gdk/wayland/gdkkeys-wayland.c.html
|
|
|
|
if (!(shift_state_pos < count))
|
|
return 0;
|
|
|
|
out =(KMX_DWORD) keyvals[shift_state_pos];
|
|
|
|
//wprintf(L" getKeyvalsFromKeymap: in %i -- out : %i \n", (int)keycode, out);
|
|
|
|
// _S2 if out of range of what ( ascii??) return 0 or other value ?
|
|
/*if (out > 255)
|
|
out = 0;*/
|
|
|
|
g_free(keyvals);
|
|
g_free(maps);
|
|
|
|
return out;
|
|
}
|
|
#endif
|
|
|
|
// _S2 not needed later
|
|
bool test(v_dw_3D &V) {
|
|
std::string extra = " ";
|
|
wprintf(L" +++++++ dimensions of whole Vector in test()\t\t\t\t\t\t\t %li..%li..%li\n", V.size(), V[0].size(),V[0][0].size());
|
|
wprintf(L"\n+++++++++ print some characters of US and Other +++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++\n");
|
|
|
|
for ( int k=0; k<(int)V[0].size(); k++) {
|
|
if(V[0][k][2] != V[1][k][2] )
|
|
extra = " *** ";
|
|
else
|
|
extra = " ";
|
|
|
|
if (V[0].size()>0) {
|
|
/*wprintf(L" row (US) ...... SC= %i .. %i (%c) .. %i (%c) .. --- ",V[0][k][0] , V[0][k][1] , V[0][k][1] , V[0][k][2] , V[0][k][2] );
|
|
wprintf(L" \n");
|
|
wprintf(L" row (Other)..... SC= %i .. %i (%c) .. %i (%c) .. %s \n", V[1][k][0] , V[1][k][1], V[1][k][1] , V[1][k][2], V[1][k][2] , extra.c_str());
|
|
wprintf(L" \n");*/
|
|
}
|
|
}
|
|
wprintf(L"++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++\n");
|
|
return true;
|
|
}
|
|
|
|
bool test_single(v_dw_3D &V) {
|
|
std::string extra = " ";
|
|
wprintf(L" +++++++ dimensions of single Vector in test_single()\t\t\t\t\t\t %li..%li..%li\n", V.size(), V[0].size(),V[0][0].size());
|
|
wprintf(L"\n +++++++++ print characters of SINGLE DW ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++\n");
|
|
|
|
for ( int k=0; k<(int)V[0].size(); k++) {
|
|
if (V[0].size()>0) {
|
|
wprintf(L" row (US) ...... %i .. %i (%c) .. %i (%c) ........ \n", V[0][k][0] , V[0][k][1] ,V[0][k][1] , V[0][k][2], V[0][k][2] );
|
|
}
|
|
}
|
|
wprintf(L" +++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++\n");
|
|
return true;
|
|
}
|
|
|
|
// _S2 ToDo something does not work yet
|
|
// query All_Vector
|
|
// return RETURN NON SHIFTED CHAR [1] the VirtualKey of the Other Keyboard for given Scancode
|
|
KMX_DWORD get_VirtualKey_Other_From_SC(KMX_DWORD SC , v_dw_3D &All_Vector){
|
|
|
|
// find correct row of char in US
|
|
for( int k=0; k< (int)All_Vector.size()-1;k++) {
|
|
for( int i=0; i< (int)All_Vector[1].size()-1;i++) {
|
|
|
|
// _S2 what if we use column 3(altgr) and 4 (shift+altgr) ??
|
|
|
|
if( SC < 65) {
|
|
// values for numbers are stored in column All_Vector[1][i][ 1 ]
|
|
if ( All_Vector[k][i][0] == SC ) {
|
|
//wprintf(L" SC= %i .. i= %i .. %i:\t\t %i(%c) (%i (%c) : %i (%c) ) --- \n",SC , i, All_Vector[k][i][0] , All_Vector[k][i][1] ,All_Vector[k][i][2],All_Vector[k][i][2] ,All_Vector[k][i][1] , All_Vector[k][i][2] , All_Vector[k][i][2] );
|
|
return All_Vector[k][i][1];
|
|
}
|
|
}
|
|
else {
|
|
// shifted values e.g. "Q" (=81) are stored in column All_Vector[1][i][ 2 ]
|
|
if ( All_Vector[k][i][0] == SC ) {
|
|
//wprintf(L" SC= %i .. i= %i .. %i:\t\t %i(%c) (%i (%c) : %i (%c) ) --- \n",SC , i, All_Vector[k][i][0] , All_Vector[k][i][1] ,All_Vector[1][i][2],All_Vector[1][i][2] ,All_Vector[k][i][1] , All_Vector[k][i][2] , All_Vector[k][i][2] );
|
|
return All_Vector[1][i][2];
|
|
}
|
|
}
|
|
|
|
if( IsKeyIn_VKMap(SC))
|
|
return SC; //_S2 what do I return if not found??
|
|
}
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
// return RETURN NON SHIFTED CHAR [1] the VirtualKey of the US Keyboard for given Scancode
|
|
KMX_DWORD get_VirtualKey_US_From_SC(KMX_DWORD SC , v_dw_3D &All_Vector){
|
|
// find correct row of char in US
|
|
for( int i=0; i< (int)All_Vector[0].size()-1;i++) {
|
|
if ( All_Vector[0][i][0] == SC ) {
|
|
//wprintf(L" SC= %i .. i= %i .. %i:\t\t %i (%c) : %i (%c) --- ",SC , i, All_Vector[0][i][0] , All_Vector[0][i][1] ,All_Vector[0][i][1] , All_Vector[0][i][2] , All_Vector[0][i][2] );
|
|
return All_Vector[0][i][1] ; // shouldn this be [0][i][2]?
|
|
//return All_Vector[0][i][2] ; // would be shifted version
|
|
}
|
|
}
|
|
return 0; //_S2 what do I return if not found??
|
|
}
|
|
|
|
// return the Scancode of for given VirtualKey of Other Keyboard
|
|
KMX_DWORD get_SC_From_VirtualKey_Other(KMX_DWORD VK_Other , v_dw_3D &All_Vector){
|
|
// find correct row of char in US
|
|
for( int i=0; i< (int)All_Vector[1].size()-1;i++) {
|
|
if ( All_Vector[1][i][1] == VK_Other ) {
|
|
//wprintf(L" SC= %i .. i= %i .. %i:\t\t %i (%c) : %i (%c) --- ",VK_Other , i, All_Vector[1][i][0] , All_Vector[1][i][1] ,All_Vector[1][i][1] , All_Vector[1][i][2] , All_Vector[1][i][2] );
|
|
return All_Vector[1][i][0] ;
|
|
}
|
|
}
|
|
return 0; //_S2 what do I return if not found??
|
|
}
|
|
|
|
// return the Scancode of for given VirtualKey of Other US
|
|
KMX_DWORD get_SC_From_VirtualKey_US(KMX_DWORD VK_US , v_dw_3D &All_Vector){
|
|
// find correct row of char in US
|
|
for( int i=0; i< (int)All_Vector[0].size()-1;i++) {
|
|
if ( All_Vector[0][i][2] == VK_US ) {
|
|
//wprintf(L" SC= %i .. i= %i .. %i:\t\t %i (%c) : %i (%c) --- \n",VK_US , i, All_Vector[0][i][0] , All_Vector[0][i][1] ,All_Vector[0][i][1] , All_Vector[0][i][2] , All_Vector[0][i][2] );
|
|
return All_Vector[0][i][0] ;
|
|
}
|
|
}
|
|
return 0; //_S2 what do I return if not found??
|
|
}
|
|
|
|
|
|
KMX_DWORD get_position_From_VirtualKey_Other(KMX_DWORD VK_Other , v_dw_3D &All_Vector){
|
|
// find correct row of char in US
|
|
for( int i=0; i< (int)All_Vector[0].size()-1;i++) {
|
|
if ( ( All_Vector[1][i][1] == VK_Other ) || ( All_Vector[1][i][2] == VK_Other )) {
|
|
//if ( ( All_Vector[0][i][1] == VK_US ) ) {
|
|
//wprintf(L" VK_Other= %i .. i= %i .. %i\t\t %i (%c) : %i (%c) +++ %i\t\t %i (%c) : %i (%c) \n",VK_Other , i,
|
|
// All_Vector[0][i][0] , All_Vector[0][i][1] ,All_Vector[0][i][1] , All_Vector[0][i][2] , All_Vector[0][i][2],
|
|
// All_Vector[1][i][0] , All_Vector[1][i][1] ,All_Vector[1][i][1] , All_Vector[1][i][2] , All_Vector[1][i][2] );
|
|
return i;
|
|
}
|
|
}
|
|
return 0; //_S2 what do I return if not found??
|
|
}
|
|
|
|
KMX_DWORD get_position_From_VirtualKey_Other_2(KMX_DWORD VK_Other , v_dw_3D &All_Vector){
|
|
|
|
return VK_Other; //_S2 what do I return if not found??
|
|
}
|
|
|
|
bool IsKeyIn_VKMap(UINT SC) {
|
|
for (int i=0; i< sizeof( KMX_VKMap)/sizeof( KMX_VKMap[0]); i++) {
|
|
if ( SC == KMX_VKMap[i])
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
|
|
const int Lin_KM__map(int i) {
|
|
|
|
// MAP:
|
|
// VK KEYMAN-STYLE -> KEYCODE LINUX-STYLE
|
|
// e.g 188 -> 59
|
|
//All_Vector_[ 1 ][ in which line of US did find the value 58 ][ take second or third column wherever I find 58 ]]
|
|
// finds 59th row (not value 59)
|
|
|
|
//if (i == 32 ) return ; /* */
|
|
if (i == 186 ) return 252; /* SEMI/COLON */
|
|
if (i == 187 ) return 43; /* */
|
|
if (i == 188 ) return 59; /* COMMA */
|
|
if (i == 189 ) return 45; /* */
|
|
if (i == 190 ) return 58; /* PERIOD */
|
|
if (i == 191 ) return 51; /* SLASH */
|
|
//if (i == 191 ) return 63; /* */
|
|
if (i == 192 ) return 246; /* */
|
|
if (i == 219 ) return 223; /* */
|
|
if (i == 220 ) return 92; /* BACKSLASH */
|
|
if (i == 221 ) return 180; /* */
|
|
if (i == 222 ) return 228; /* */
|
|
//if (i == 223 ) return ; /* */
|
|
if (i == 226 ) return 60; /* */
|
|
|
|
if (i == 65105 )
|
|
return 92; /* */
|
|
|
|
return i;
|
|
}
|