mirror of
https://github.com/vcmi/vcmi.git
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505 lines
12 KiB
C++
505 lines
12 KiB
C++
/*
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* CGeneralTextHandler.cpp, part of VCMI engine
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*
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* Authors: listed in file AUTHORS in main folder
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*
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* License: GNU General Public License v2.0 or later
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* Full text of license available in license.txt file, in main folder
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*
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*/
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#include "StdInc.h"
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#include "CGeneralTextHandler.h"
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#include <boost/locale.hpp>
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#include "filesystem/Filesystem.h"
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#include "CConfigHandler.h"
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#include "CModHandler.h"
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#include "GameConstants.h"
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#include "VCMI_Lib.h"
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size_t Unicode::getCharacterSize(char firstByte)
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{
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// length of utf-8 character can be determined from 1st byte by counting number of highest bits set to 1:
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// 0xxxxxxx -> 1 - ASCII chars
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// 110xxxxx -> 2
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// 11110xxx -> 4 - last allowed in current standard
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// 1111110x -> 6 - last allowed in original standard
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if ((ui8)firstByte < 0x80)
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return 1; // ASCII
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size_t ret = 0;
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for (size_t i=0; i<8; i++)
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{
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if (((ui8)firstByte & (0x80 >> i)) != 0)
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ret++;
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else
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break;
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}
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return ret;
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}
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bool Unicode::isValidCharacter(const char * character, size_t maxSize)
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{
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// can't be first byte in UTF8
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if ((ui8)character[0] >= 0x80 && (ui8)character[0] < 0xC0)
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return false;
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// first character must follow rules checked in getCharacterSize
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size_t size = getCharacterSize((ui8)character[0]);
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if ((ui8)character[0] > 0xF4)
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return false; // above maximum allowed in standard (UTF codepoints are capped at 0x0010FFFF)
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if (size > maxSize)
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return false;
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// remaining characters must have highest bit set to 1
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for (size_t i = 1; i < size; i++)
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{
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if (((ui8)character[i] & 0x80) == 0)
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return false;
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}
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return true;
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}
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bool Unicode::isValidASCII(const std::string & text)
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{
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for (const char & ch : text)
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if (ui8(ch) >= 0x80 )
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return false;
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return true;
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}
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bool Unicode::isValidASCII(const char * data, size_t size)
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{
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for (size_t i=0; i<size; i++)
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if (ui8(data[i]) >= 0x80 )
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return false;
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return true;
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}
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bool Unicode::isValidString(const std::string & text)
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{
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for (size_t i=0; i<text.size(); i += getCharacterSize(text[i]))
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{
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if (!isValidCharacter(text.data() + i, text.size() - i))
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return false;
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}
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return true;
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}
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bool Unicode::isValidString(const char * data, size_t size)
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{
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for (size_t i=0; i<size; i += getCharacterSize(data[i]))
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{
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if (!isValidCharacter(data + i, size - i))
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return false;
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}
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return true;
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}
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static std::string getSelectedEncoding()
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{
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return settings["general"]["encoding"].String();
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}
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std::string Unicode::toUnicode(const std::string &text)
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{
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return toUnicode(text, getSelectedEncoding());
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}
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std::string Unicode::toUnicode(const std::string &text, const std::string &encoding)
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{
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return boost::locale::conv::to_utf<char>(text, encoding);
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}
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std::string Unicode::fromUnicode(const std::string & text)
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{
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return fromUnicode(text, getSelectedEncoding());
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}
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std::string Unicode::fromUnicode(const std::string &text, const std::string &encoding)
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{
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return boost::locale::conv::from_utf<char>(text, encoding);
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}
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void Unicode::trimRight(std::string & text, const size_t amount)
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{
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if(text.empty())
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return;
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//todo: more efficient algorithm
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for(int i = 0; i< amount; i++){
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auto b = text.begin();
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auto e = text.end();
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size_t lastLen = 0;
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size_t len = 0;
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while (b != e) {
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lastLen = len;
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size_t n = getCharacterSize(*b);
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if(!isValidCharacter(&(*b),e-b))
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{
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logGlobal->error("Invalid UTF8 sequence");
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break;//invalid sequence will be trimmed
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}
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len += n;
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b += n;
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}
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text.resize(lastLen);
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}
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}
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//Helper for string -> float conversion
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class LocaleWithComma: public std::numpunct<char>
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{
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protected:
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char do_decimal_point() const override
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{
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return ',';
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}
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};
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CLegacyConfigParser::CLegacyConfigParser(std::string URI)
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{
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init(CResourceHandler::get()->load(ResourceID(URI, EResType::TEXT)));
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}
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CLegacyConfigParser::CLegacyConfigParser(const std::unique_ptr<CInputStream> & input)
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{
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init(input);
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}
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void CLegacyConfigParser::init(const std::unique_ptr<CInputStream> & input)
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{
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data.reset(new char[input->getSize()]);
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input->read((ui8*)data.get(), input->getSize());
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curr = data.get();
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end = curr + input->getSize();
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}
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std::string CLegacyConfigParser::extractQuotedPart()
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{
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assert(*curr == '\"');
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curr++; // skip quote
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char * begin = curr;
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while (curr != end && *curr != '\"' && *curr != '\t')
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curr++;
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return std::string(begin, curr++); //increment curr to close quote
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}
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std::string CLegacyConfigParser::extractQuotedString()
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{
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assert(*curr == '\"');
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std::string ret;
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while (true)
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{
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ret += extractQuotedPart();
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// double quote - add it to string and continue quoted part
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if (curr < end && *curr == '\"')
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{
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ret += '\"';
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}
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//extract normal part
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else if(curr < end && *curr != '\t' && *curr != '\r')
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{
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char * begin = curr;
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while (curr < end && *curr != '\t' && *curr != '\r' && *curr != '\"')//find end of string or next quoted part start
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curr++;
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ret += std::string(begin, curr);
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if(curr>=end || *curr != '\"')
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return ret;
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}
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else // end of string
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return ret;
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}
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}
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std::string CLegacyConfigParser::extractNormalString()
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{
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char * begin = curr;
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while (curr < end && *curr != '\t' && *curr != '\r')//find end of string
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curr++;
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return std::string(begin, curr);
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}
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std::string CLegacyConfigParser::readRawString()
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{
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if (curr >= end || *curr == '\n')
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return "";
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std::string ret;
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if (*curr == '\"')
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ret = extractQuotedString();// quoted text - find closing quote
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else
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ret = extractNormalString();//string without quotes - copy till \t or \r
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curr++;
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return ret;
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}
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std::string CLegacyConfigParser::readString()
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{
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// do not convert strings that are already in ASCII - this will only slow down loading process
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std::string str = readRawString();
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if (Unicode::isValidASCII(str))
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return str;
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return Unicode::toUnicode(str);
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}
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float CLegacyConfigParser::readNumber()
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{
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std::string input = readRawString();
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std::istringstream stream(input);
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if(input.find(',') != std::string::npos) // code to handle conversion with comma as decimal separator
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stream.imbue(std::locale(std::locale(), new LocaleWithComma()));
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float result;
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if ( !(stream >> result) )
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return 0;
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return result;
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}
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bool CLegacyConfigParser::isNextEntryEmpty() const
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{
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char * nextSymbol = curr;
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while (nextSymbol < end && *nextSymbol == ' ')
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nextSymbol++; //find next meaningfull symbol
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return nextSymbol >= end || *nextSymbol == '\n' || *nextSymbol == '\r' || *nextSymbol == '\t';
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}
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bool CLegacyConfigParser::endLine()
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{
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while (curr < end && *curr != '\n')
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readString();
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curr++;
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return curr < end;
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}
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void CGeneralTextHandler::readToVector(std::string sourceName, std::vector<std::string> &dest)
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{
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CLegacyConfigParser parser(sourceName);
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do
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{
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dest.push_back(parser.readString());
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}
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while (parser.endLine());
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}
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CGeneralTextHandler::CGeneralTextHandler()
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{
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readToVector("DATA/VCDESC.TXT", victoryConditions);
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readToVector("DATA/LCDESC.TXT", lossCondtions);
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readToVector("DATA/TCOMMAND.TXT", tcommands);
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readToVector("DATA/HALLINFO.TXT", hcommands);
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readToVector("DATA/CASTINFO.TXT", fcommands);
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readToVector("DATA/ADVEVENT.TXT", advobtxt);
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readToVector("DATA/XTRAINFO.TXT", xtrainfo);
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readToVector("DATA/RESTYPES.TXT", restypes);
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readToVector("DATA/TERRNAME.TXT", terrainNames);
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readToVector("DATA/RANDSIGN.TXT", randsign);
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readToVector("DATA/CRGEN1.TXT", creGens);
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readToVector("DATA/CRGEN4.TXT", creGens4);
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readToVector("DATA/OVERVIEW.TXT", overview);
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readToVector("DATA/ARRAYTXT.TXT", arraytxt);
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readToVector("DATA/PRISKILL.TXT", primarySkillNames);
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readToVector("DATA/JKTEXT.TXT", jktexts);
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readToVector("DATA/TVRNINFO.TXT", tavernInfo);
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readToVector("DATA/RANDTVRN.TXT", tavernRumors);
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readToVector("DATA/TURNDUR.TXT", turnDurations);
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readToVector("DATA/HEROSCRN.TXT", heroscrn);
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readToVector("DATA/TENTCOLR.TXT", tentColors);
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readToVector("DATA/SKILLLEV.TXT", levels);
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localizedTexts = JsonNode(ResourceID("config/translate.json", EResType::TEXT));
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{
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CLegacyConfigParser parser("DATA/GENRLTXT.TXT");
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parser.endLine();
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do
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{
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allTexts.push_back(parser.readString());
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}
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while (parser.endLine());
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}
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{
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CLegacyConfigParser parser("DATA/HELP.TXT");
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do
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{
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std::string first = parser.readString();
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std::string second = parser.readString();
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zelp.push_back(std::make_pair(first, second));
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}
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while (parser.endLine());
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}
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{
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CLegacyConfigParser nameParser("DATA/MINENAME.TXT");
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CLegacyConfigParser eventParser("DATA/MINEEVNT.TXT");
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do
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{
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std::string name = nameParser.readString();
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std::string event = eventParser.readString();
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mines.push_back(std::make_pair(name, event));
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}
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while (nameParser.endLine() && eventParser.endLine());
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}
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{
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CLegacyConfigParser parser("DATA/PLCOLORS.TXT");
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do
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{
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std::string color = parser.readString();
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colors.push_back(color);
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color[0] = toupper(color[0]);
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capColors.push_back(color);
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}
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while (parser.endLine());
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}
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{
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CLegacyConfigParser parser("DATA/SEERHUT.TXT");
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//skip header
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parser.endLine();
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for (int i = 0; i < 6; ++i)
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seerEmpty.push_back(parser.readString());
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parser.endLine();
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quests.resize(10);
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for (int i = 0; i < 9; ++i) //9 types of quests
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{
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quests[i].resize(5);
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for (int j = 0; j < 5; ++j)
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{
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parser.readString(); //front description
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for (int k = 0; k < 6; ++k)
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quests[i][j].push_back(parser.readString());
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parser.endLine();
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}
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}
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quests[9].resize(1);
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for (int k = 0; k < 6; ++k) //Time limit
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{
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quests[9][0].push_back(parser.readString());
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}
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parser.endLine();
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parser.endLine(); // empty line
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parser.endLine(); // header
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for (int i = 0; i < 48; ++i)
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{
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seerNames.push_back(parser.readString());
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parser.endLine();
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}
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}
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{
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CLegacyConfigParser parser("DATA/CAMPTEXT.TXT");
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//skip header
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parser.endLine();
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std::string text;
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do
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{
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text = parser.readString();
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if (!text.empty())
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campaignMapNames.push_back(text);
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}
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while (parser.endLine() && !text.empty());
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for (size_t i=0; i<campaignMapNames.size(); i++)
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{
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do // skip empty space and header
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{
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text = parser.readString();
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}
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while (parser.endLine() && text.empty());
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campaignRegionNames.push_back(std::vector<std::string>());
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do
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{
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text = parser.readString();
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if (!text.empty())
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campaignRegionNames.back().push_back(text);
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}
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while (parser.endLine() && !text.empty());
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}
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}
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if (VLC->modh->modules.STACK_EXP)
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{
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CLegacyConfigParser parser("DATA/ZCREXP.TXT");
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parser.endLine();//header
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for (size_t iter=0; iter<325; iter++)
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{
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parser.readString(); //ignore 1st column with description
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zcrexp.push_back(parser.readString());
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parser.endLine();
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}
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// line 325 - some weird formatting here
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zcrexp.push_back(parser.readString());
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parser.readString();
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parser.endLine();
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do // rest of file can be read normally
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{
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parser.readString(); //ignore 1st column with description
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zcrexp.push_back(parser.readString());
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}
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while (parser.endLine());
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}
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if (VLC->modh->modules.COMMANDERS)
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{
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try
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{
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CLegacyConfigParser parser("DATA/ZNPC00.TXT");
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parser.endLine();//header
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do
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{
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znpc00.push_back(parser.readString());
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} while (parser.endLine());
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}
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catch (const std::runtime_error &)
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{
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logGlobal->warn("WoG file ZNPC00.TXT containing commander texts was not found");
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}
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}
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}
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int32_t CGeneralTextHandler::pluralText(const int32_t textIndex, const int32_t count) const
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{
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if(textIndex == 0)
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return 0;
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else if(textIndex < 0)
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return -textIndex;
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else if(count == 1)
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return textIndex;
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else
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return textIndex + 1;
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}
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