Files
taverne-client-source/DumpProto/dump_proto/lzo.cpp
T

249 lines
4.9 KiB
C++

//#include "common.h"
#include <stdlib.h>
#include <string.h>
#include <stdio.h>
#include "lzo.h"
#include "tea.h"
CLZO asdfasdfasdfasdf;
#define MAKEFOURCC(ch0, ch1, ch2, ch3) \
((DWORD)(BYTE)(ch0) | ((DWORD)(BYTE)(ch1) << 8) | \
((DWORD)(BYTE)(ch2) << 16) | ((DWORD)(BYTE)(ch3) << 24 ))
DWORD CLZObject::ms_dwFourCC = MAKEFOURCC('M', 'C', 'O', 'Z');
CLZObject::CLZObject()
{
Initialize();
}
void CLZObject::Initialize()
{
m_pHeader = NULL;
m_pbBuffer = NULL;
m_dwBufferSize = 0;
m_pbIn = NULL;
m_bCompressed = false;
}
void CLZObject::Clear()
{
if (m_pbBuffer)
delete [] m_pbBuffer;
Initialize();
}
CLZObject::~CLZObject()
{
Clear();
}
DWORD CLZObject::GetSize()
{
assert(m_pHeader);
if (m_bCompressed)
{
if (m_pHeader->dwEncryptSize)
return sizeof(THeader) + sizeof(DWORD) + m_pHeader->dwEncryptSize;
else
return sizeof(THeader) + sizeof(DWORD) + m_pHeader->dwCompressedSize;
}
else
return m_pHeader->dwRealSize;
}
void CLZObject::BeginCompress(const void * pvIn, UINT uiInLen)
{
m_pbIn = (const BYTE *) pvIn;
// sizeof(SHeader) +
// 암호화를 위한 fourCC 4바이트
// 압축된 후 만들어질 수 있는 최대 용량 +
// 암호화를 위한 8 바이트
m_dwBufferSize = sizeof(THeader) + sizeof(DWORD) + (uiInLen + uiInLen / 64 + 16 + 3) + 8;
m_pbBuffer = new BYTE[m_dwBufferSize];
memset(m_pbBuffer, 0, m_dwBufferSize);
m_pHeader = (THeader *) m_pbBuffer;
m_pHeader->dwFourCC = ms_dwFourCC;
m_pHeader->dwEncryptSize = m_pHeader->dwCompressedSize = m_pHeader->dwRealSize = 0;
m_pHeader->dwRealSize = uiInLen;
}
bool CLZObject::Compress()
{
UINT iOutLen;
BYTE * pbBuffer;
pbBuffer = m_pbBuffer + sizeof(THeader);
*(DWORD *) pbBuffer = ms_dwFourCC;
pbBuffer += sizeof(DWORD);
int r = lzo1x_1_compress((BYTE *) m_pbIn, m_pHeader->dwRealSize, pbBuffer, &iOutLen, CLZO::instance().GetWorkMemory());
if (LZO_E_OK != r)
{
fprintf(stderr, "LZO: lzo1x_compress failed\n");
return false;
}
m_pHeader->dwCompressedSize = iOutLen;
m_bCompressed = true;
return true;
}
bool CLZObject::BeginDecompress(const void * pvIn)
{
THeader * pHeader = (THeader *) pvIn;
if (pHeader->dwFourCC != ms_dwFourCC)
{
fprintf(stderr, "LZObject: not a valid data");
return false;
}
m_pHeader = pHeader;
m_pbIn = (const BYTE *) pvIn + (sizeof(THeader) + sizeof(DWORD));
m_pbBuffer = new BYTE[pHeader->dwRealSize];
memset(m_pbBuffer, 0, pHeader->dwRealSize);
return true;
}
bool CLZObject::Decompress(DWORD * pdwKey)
{
UINT uiSize;
int r;
if (m_pHeader->dwEncryptSize)
{
BYTE * pbDecryptedBuffer = Decrypt(pdwKey);
if (*(DWORD *) pbDecryptedBuffer != ms_dwFourCC)
{
fprintf(stderr, "LZObject: key incorrect");
return false;
}
if (LZO_E_OK != (r = lzo1x_decompress(pbDecryptedBuffer + sizeof(DWORD), m_pHeader->dwCompressedSize, m_pbBuffer, &uiSize, NULL)))
{
fprintf(stderr, "LZObject: Decompress failed(decrypt) ret %d\n", r);
return false;
}
delete [] pbDecryptedBuffer;
}
else
{
uiSize = m_pHeader->dwRealSize;
if (LZO_E_OK != (r = lzo1x_decompress_safe(m_pbIn, m_pHeader->dwCompressedSize, m_pbBuffer, &uiSize, NULL)))
{
fprintf(stderr, "LZObject: Decompress failed : ret %d, CompressedSize %d\n", r, m_pHeader->dwCompressedSize);
return false;
}
}
if (uiSize != m_pHeader->dwRealSize)
{
fprintf(stderr, "LZObject: Size differs");
return false;
}
return true;
}
bool CLZObject::Encrypt(DWORD * pdwKey)
{
if (!m_bCompressed)
{
assert(!"not compressed yet");
return false;
}
BYTE * pbBuffer = m_pbBuffer + sizeof(THeader);
m_pHeader->dwEncryptSize = tea_encrypt((DWORD *) pbBuffer, (const DWORD *) pbBuffer, pdwKey, m_pHeader->dwCompressedSize + 19);
return true;
}
BYTE * CLZObject::Decrypt(DWORD * pdwKey)
{
assert(m_pbBuffer);
BYTE * pbDecryptBuffer = new BYTE[m_pHeader->dwEncryptSize];
tea_encrypt((DWORD *) pbDecryptBuffer, (const DWORD *) (m_pbIn - sizeof(DWORD)), pdwKey, m_pHeader->dwEncryptSize);
return pbDecryptBuffer;
}
CLZO::CLZO() : m_pWorkMem(NULL)
{
if (lzo_init() != LZO_E_OK)
{
fprintf(stderr, "LZO: cannot initialize\n");
return;
}
m_pWorkMem = (BYTE *) malloc(LZO1X_MEM_COMPRESS);
if (NULL == m_pWorkMem)
{
fprintf(stderr, "LZO: cannot alloc memory\n");
return;
}
}
CLZO::~CLZO()
{
if (m_pWorkMem)
{
free(m_pWorkMem);
m_pWorkMem = NULL;
}
}
bool CLZO::CompressMemory(CLZObject & rObj, const void * pIn, UINT uiInLen)
{
rObj.BeginCompress(pIn, uiInLen);
return rObj.Compress();
}
bool CLZO::CompressEncryptedMemory(CLZObject & rObj, const void * pIn, UINT uiInLen, DWORD * pdwKey)
{
rObj.BeginCompress(pIn, uiInLen);
if (rObj.Compress())
{
if (rObj.Encrypt(pdwKey))
return true;
return false;
}
return false;
}
bool CLZO::Decompress(CLZObject & rObj, const BYTE * pbBuf, DWORD * pdwKey)
{
if (!rObj.BeginDecompress(pbBuf))
return false;
if (!rObj.Decompress(pdwKey))
return false;
return true;
}
BYTE * CLZO::GetWorkMemory()
{
return m_pWorkMem;
}