mirror of
https://github.com/1dot13/source.git
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. clip surface coordinates before blitting . track surface data pointer, to identify the surface's clip rectangle . editor : test if item index is smaller than the number of items . other minor updates . update png loader to work with new appdata.xml structure . VFS updates . fix radar maps : write to <userprofile>\RADARMAPS * New Map Editor Release (Build: 3023) git-svn-id: https://ja2svn.mooo.com/source/ja2/trunk/GameSource/ja2_v1.13/Build@3023 3b4a5df2-a311-0410-b5c6-a8a6f20db521
479 lines
13 KiB
C++
479 lines
13 KiB
C++
#include "ParserTools.h"
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#include "Tools.h"
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#include "../vfs.h"
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#include "../File/vfs_file.h"
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#include "../vfs_file_raii.h"
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/*************************************************************************************/
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/*************************************************************************************/
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CReadLine::CReadLine(vfs::tReadableFile& rFile)
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: _file(rFile), _buffer_pos(0), _eof(false)
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{
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memset(_buffer,0,sizeof(_buffer));
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FillBuffer();
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vfs::UByte utf8bom[3] = {0xef,0xbb,0xbf};
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if(memcmp(utf8bom, &_buffer[0],3) == 0)
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{
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_buffer_pos += 3;
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}
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};
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bool CReadLine::FillBuffer()
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{
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if(!_eof)
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{
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// reading can be done byte-wise or line-wise.
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// we have no control over this here, so we have to account for both cases.
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vfs::UInt32 read = 0;
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// fill the buffer from the start, BUFFER_SIZE charactes at max (_buffer has BUFFER_SIZE+1 elements)
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_eof = !_file.Read(&_buffer[0],BUFFER_SIZE,read);
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// if read() fails, it means that we are at the end of the file,
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// but we probably have read a couple of valid bytes, so we need to do one last 'correct' run
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// bite-wise read files usually terminate a line with \n (or \r\n on WIN32)
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// line-wise read files just returns 0-terminated string
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// always terminate the string with 0
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_buffer[read] = 0;
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_buffer_pos = 0;
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_buffer_last = read;
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return true;
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}
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return false;
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}
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bool CReadLine::FromBuffer(std::string& line)
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{
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bool done = false;
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while(!done)
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{
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if(_buffer_pos < _buffer_last)
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{
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// start where we left last time
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vfs::Byte *temp = &_buffer[_buffer_pos];
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vfs::UInt32 start_pos = _buffer_pos;
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// go until we hit 0. since our buffer is always 0 terminated, the second test should be redundant.
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while(*temp && (_buffer_pos < _buffer_last))
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{
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// stop when we find a line terminator
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if(*temp == '\n' || *temp == '\r' /* || *temp == '\0' */)
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{
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break;
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}
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temp++;
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_buffer_pos++;
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}
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// need to append substring, as we might have refilles the buffer (because there was no \n or \r\n terminator)
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line.append( (char*)&_buffer[start_pos], _buffer_pos - start_pos );
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// if we reach the (real) end of the buffer (that always terminate with 0), this means
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// that there was no line terminator and that we have to refill the buffer.
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if( _buffer_pos < BUFFER_SIZE && (*temp == '\n' || *temp == '\r' || *temp == 0) )
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{
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// found the line terminator
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if(*temp == '\r')
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{
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// the \r is most probably followed by \n. 'swallow' both characters
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*temp++;
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_buffer_pos++;
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if( (_buffer_pos < BUFFER_SIZE) && (*temp == '\n' || *temp == 0) )
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{
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// increase buffer position, so that we can start with a valid character in the next run
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_buffer_pos++;
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return true;
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}
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else
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{
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done = !FillBuffer();
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}
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}
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else if(*temp == '\n' || *temp == 0)
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{
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// increase buffer position, so that we can start with a valid character in the next run
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_buffer_pos++;
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return true;
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}
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}
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else
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{
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done = !FillBuffer();
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}
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}
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else
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{
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done = !FillBuffer();
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}
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}
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return false;
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}
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bool CReadLine::GetLine(std::string& line)
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{
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line.clear();
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return FromBuffer(line);
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}
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/*************************************************************************************/
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/*************************************************************************************/
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CSplitStringList::CSplitStringList(utf8string const& sList)
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: m_sList(sList), iCurrent(0),iNext(0)
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{};
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CSplitStringList::~CSplitStringList()
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{};
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bool CSplitStringList::NextListEntry(utf8string &sEntry)
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{
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if(iNext >= 0)
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{
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iNext = m_sList.c_wcs().find_first_of(L",",iCurrent+1);
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if(iNext > iCurrent)
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{
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sEntry.r_wcs().assign(vfs::TrimString(m_sList,iCurrent,iNext-1).c_wcs());
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iCurrent = iNext+1;
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}
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else
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{
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// last or only entry
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sEntry.r_wcs().assign(vfs::TrimString(m_sList,iCurrent,m_sList.length()).c_wcs());
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}
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return true;
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}
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return false;
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}
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/*************************************************************************************/
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/*************************************************************************************/
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CTransferRules::CTransferRules()
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: m_eDefaultAction(ACCEPT)
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{};
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bool CTransferRules::InitFromTxtFile(vfs::Path const& sPath)
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{
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// try to open via VirtualFileSystem
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if(GetVFS()->FileExists(sPath))
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{
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return InitFromTxtFile(GetVFS()->GetRFile(sPath));
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}
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else
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{
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// file doesn't exist or VFS not initialized yet
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vfs::IBaseFile* pFile = new vfs::CTextFile(sPath);
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if(pFile)
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{
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bool success = InitFromTxtFile(vfs::tReadableFile::Cast(pFile));
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delete pFile;
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return success;
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}
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}
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return false;
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}
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bool CTransferRules::InitFromTxtFile(vfs::tReadableFile* pFile)
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{
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if(pFile && pFile->OpenRead())
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{
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vfs::COpenReadFile rfile(pFile);
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std::string sBuffer;
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vfs::UInt32 line_counter = 0;
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CReadLine rl(*pFile);
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while(rl.GetLine(sBuffer))
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{
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line_counter++;
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// very simple parsing : key = value
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if(!sBuffer.empty())
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{
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// remove leading white spaces
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int iStart = sBuffer.find_first_not_of(" \t",0);
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char first = sBuffer.at(iStart);
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switch(first)
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{
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case '!':
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case ';':
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case '#':
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// comment -> do nothing
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break;
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default:
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int iEnd = sBuffer.find_first_of(" \t", iStart);
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if(iEnd != std::string::npos)
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{
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SRule rule;
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std::string action = sBuffer.substr(iStart, iEnd - iStart);
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if( StrCmp::Equal(action, "deny") )
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{
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rule.action = CTransferRules::DENY;
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}
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else if( StrCmp::Equal(action, "accept") )
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{
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rule.action = CTransferRules::ACCEPT;
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}
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else
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{
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std::wstring trybuffer = L"Invalid UTF-8 character in string";
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IGNOREEXCEPTION( trybuffer = utf8string(sBuffer).c_wcs() ); /* just make sure we don't break off when string conversion fails */
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std::wstringstream wss;
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wss << L"Unknown action in file \"" << pFile->GetFullPath()().c_wcs()
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<< L", line " << line_counter << " : " << utf8string(sBuffer).c_wcs();
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THROWEXCEPTION(wss.str().c_str());
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}
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try
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{
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rule.pattern = vfs::Path(vfs::TrimString(sBuffer, iEnd, sBuffer.length()));
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}
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catch(CBasicException& ex)
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{
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std::wstringstream wss;
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wss << L"Could not convert string, invalid utf8 encoding in file \"" << pFile->GetFullPath()().c_wcs()
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<< L"\", line " << line_counter;
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RETHROWEXCEPTION(wss.str().c_str(),&ex);
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}
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m_listRules.push_back(rule);
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}
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break;
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}; // end switch
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} // end if (empty)
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} // end while(!eof)
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return true;
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}
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return false;
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}
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void CTransferRules::SetDefaultAction(CTransferRules::EAction act)
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{
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m_eDefaultAction = act;
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}
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CTransferRules::EAction CTransferRules::GetDefaultAction()
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{
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return m_eDefaultAction;
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}
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CTransferRules::EAction CTransferRules::ApplyRule(utf8string const& sStr)
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{
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tPatternList::iterator sit = m_listRules.begin();
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for(; sit != m_listRules.end(); ++sit)
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{
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if(MatchPattern(sit->pattern(), sStr))
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{
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return sit->action;
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}
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}
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return m_eDefaultAction;
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}
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/*************************************************************************************/
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/*************************************************************************************/
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#ifdef USE_CODE_PAGE
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typedef vfs::UInt16 UINT16;
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extern UINT16 gsKeyTranslationTable[1024];
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CodePageReader::EMode CodePageReader::ExtractMode(std::string const &readStr, size_t startPos)
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{
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vfs::Int32 iEqual = readStr.find_first_of("=",startPos);
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if(iEqual < 0)
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{
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return Error;
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}
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// extract keyword
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std::string key = vfs::TrimString(readStr,0,iEqual-1);
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if(!StrCmp::Equal(key, "mode"))
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{
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return Error;
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}
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// extract mode
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EMode mode = Error;
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std::string sMode = vfs::TrimString(readStr,iEqual+1,readStr.size());
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if(StrCmp::Equal(sMode, "normal"))
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{
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mode = Normal;
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}
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else if(StrCmp::Equal(sMode, "shift"))
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{
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mode = Shift;
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}
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else if(StrCmp::Equal(sMode, "ctrl"))
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{
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mode = Ctrl;
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}
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else if(StrCmp::Equal(sMode, "alt"))
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{
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mode = Alt;
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}
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return mode;
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}
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bool CodePageReader::ExtractCode(std::string const& str, int iStart, vfs::UInt32& rInsertPoint, utf8string::str_t& u8s)
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{
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vfs::Int32 iEqual = str.find_first_of("=",iStart);
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if(iEqual < 0)
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{
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return false;
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}
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// extract insert point
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std::string sip = vfs::TrimString(str,0,iEqual-1);
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if(!ConvertTo<vfs::UInt32>(sip, rInsertPoint))
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{
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return false;
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}
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utf8string::str_t u8temp;
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IGNOREEXCEPTION(utf8string::as_utf16(str.substr(iEqual, str.length()-iEqual), u8temp));
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vfs::Int32 iCodeStart, iCodeEnd;
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iCodeStart = u8temp.find_first_of(L"{", 0);
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if(iCodeStart < 0)
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{
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return false;
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}
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iCodeEnd = u8temp.find_last_of(L"}");
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if(iCodeEnd < 0)
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{
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return false;
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}
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u8s = u8temp.substr(iCodeStart+1, iCodeEnd-iCodeStart-1);
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return true;
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}
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void CodePageReader::ReadCodePage(vfs::Path const& codepagefile)
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{
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if(!GetVFS()->FileExists(codepagefile))
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{
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return;
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}
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vfs::COpenReadFile rfile(codepagefile);
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CReadLine rline(rfile.file());
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std::string sBuffer;
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vfs::UInt32 line_counter = 0;
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EMode mode = Normal;
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while(rline.GetLine(sBuffer))
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{
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line_counter++;
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// very simple parsing : key = value
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if(!sBuffer.empty())
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{
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// remove leading white spaces
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int iStart = sBuffer.find_first_not_of(" \t",0);
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char first = sBuffer.at(iStart);
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switch(first)
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{
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case '!':
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case ';':
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case '#':
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// comment -> do nothing
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break;
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case 'm':
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mode = ExtractMode(sBuffer,iStart);
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if(mode == Error)
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{
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utf8string::str_t u8s;
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IGNOREEXCEPTION(utf8string::as_utf16(sBuffer, u8s));
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std::wstringstream wss;
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wss << L"Could not determine mode from line [" << line_counter << L"] : " << u8s;
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THROWEXCEPTION(wss.str().c_str());
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}
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break;
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default:
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utf8string::str_t u8s;
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vfs::UInt32 uiInsertPoint;
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if(!ExtractCode(sBuffer, iStart,uiInsertPoint,u8s))
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{
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continue;
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}
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if(mode == Shift) uiInsertPoint += 256;
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else if(mode == Ctrl) uiInsertPoint += 512;
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else if(mode == Alt) uiInsertPoint += 768;
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if(uiInsertPoint >= 1023)
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{
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continue;
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}
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for(unsigned int i=0; i < u8s.length(); ++i)
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{
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if(uiInsertPoint+i < 1024)
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{
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gsKeyTranslationTable[uiInsertPoint+i] = u8s.at(i);
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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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/*************************************************************************************/
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/*************************************************************************************/
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#include <set>
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namespace charSet
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{
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static std::map<ECharSet,std::set<wchar_t> > _sets;
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};
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inline bool TestSet(int char_set, charSet::ECharSet es, wchar_t wc)
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{
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if(char_set & es)
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{
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std::set<wchar_t>& wcset = charSet::_sets[es];
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return wcset.find(wc) != wcset.end();
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}
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return false;
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}
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bool charSet::IsFromSet(char wc, unsigned int char_set)
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{
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return charSet::IsFromSet((wchar_t)wc, char_set);
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}
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bool charSet::IsFromSet(int wc, unsigned int char_set)
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{
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return charSet::IsFromSet((wchar_t)wc, char_set);
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}
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bool charSet::IsFromSet(unsigned int wc, unsigned int char_set)
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{
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return charSet::IsFromSet((wchar_t)wc, char_set);
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}
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bool charSet::IsFromSet(wchar_t wc, unsigned int char_set)
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{
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bool inSet = false;
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if( inSet |= TestSet(char_set, charSet::CS_SPACE, wc)) return true;
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if( inSet |= TestSet(char_set, charSet::CS_ALPHA_LC, wc)) return true;
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if( inSet |= TestSet(char_set, charSet::CS_ALPHA_UC, wc)) return true;
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if( inSet |= TestSet(char_set, charSet::CS_NUMERIC, wc)) return true;
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if( inSet |= TestSet(char_set, charSet::CS_SPECIAL_ALPHA_LC, wc)) return true;
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if( inSet |= TestSet(char_set, charSet::CS_SPECIAL_ALPHA_UC, wc)) return true;
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if( inSet |= TestSet(char_set, charSet::CS_SPECIAL_NON_CHAR, wc)) return true;
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return false;
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}
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void charSet::AddToCharSet(ECharSet eset, std::wstring cset)
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{
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std::set<wchar_t>& wcset = charSet::_sets[eset];
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for(unsigned int i = 0; i < cset.length(); ++i)
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{
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wcset.insert(cset.at(i));
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}
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}
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void charSet::InitializeCharSets()
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{
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charSet::AddToCharSet(charSet::CS_SPACE, L" ");
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charSet::AddToCharSet(charSet::CS_ALPHA_LC, L"abcdefghijklmnopqrstuvwxyz");
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charSet::AddToCharSet(charSet::CS_ALPHA_UC, L"ABCDEFGHIJKLMNOPQRSTUVWXYZ");
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charSet::AddToCharSet(charSet::CS_NUMERIC, L"0123456789");
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charSet::AddToCharSet(charSet::CS_SPECIAL_ALPHA_LC, L"äöüßáàâéèêóòôúùô");
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charSet::AddToCharSet(charSet::CS_SPECIAL_ALPHA_UC, L"ÄÖÜÁÀÂÉÈÊÓÒÔÚÙÛ");
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charSet::AddToCharSet(charSet::CS_SPECIAL_NON_CHAR, L"~*+-_.,:;'´`#°^!\"§$%&/()=?\\{}[]");
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}
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#endif // USE_CODE_PAGE
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/*************************************************************************************/
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/*************************************************************************************/
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