libcmo21/LibCmo/VTReader.cpp

239 lines
7.9 KiB
C++
Raw Normal View History

2023-02-11 15:29:51 +08:00
#include "VTUtils.hpp"
#if defined(LIBCMO_OS_WIN32)
#define ZLIB_WINAPI
#include "zconf.h"
#endif
#include "VTStruct.hpp"
#include <zlib.h>
2023-02-08 22:57:31 +08:00
namespace LibCmo {
2023-02-11 15:29:51 +08:00
CKERROR CKFile::Load(CKSTRING u8_filename, /*CKObjectArray list, */ CK_LOAD_FLAGS flags) {
CKERROR result = this->OpenFile(u8_filename, flags);
if (result == CKERROR::CKERR_OK || result == CKERROR::CKERR_PLUGINSMISSING) {
result = this->LoadFileData();
}
return result;
}
CKERROR CKFile::OpenFile(CKSTRING u8_filename, CK_LOAD_FLAGS flags) {
this->ClearData();
if (u8_filename == nullptr) return CKERROR::CKERR_INVALIDPARAMETER;
this->m_FileName = u8_filename;
2023-02-14 21:31:18 +08:00
this->m_MappedFile = new(std::nothrow) VxMemoryMappedFile(this->m_FileName.c_str());
if (this->m_MappedFile == nullptr) return CKERROR::CKERR_OUTOFMEMORY;
2023-02-11 15:29:51 +08:00
if (!this->m_MappedFile->IsValid()) return CKERROR::CKERR_INVALIDFILE;
2023-02-14 21:31:18 +08:00
// MARK: CKContext::SetLastCmoLoaded
2023-02-11 15:29:51 +08:00
return this->OpenMemory(this->m_MappedFile->GetBase(), this->m_MappedFile->GetFileSize(), flags);
}
CKERROR CKFile::OpenMemory(void* MemoryBuffer, size_t BufferSize, CK_LOAD_FLAGS Flags) {
if (MemoryBuffer == nullptr) return CKERROR::CKERR_INVALIDPARAMETER;
// compare magic words
if (BufferSize < 0x20 || memcmp(MemoryBuffer, "Nemo", 4u)) return CKERROR::CKERR_INVALIDFILE;
2023-02-14 21:31:18 +08:00
this->m_Parser = new(std::nothrow) CKBufferParser(MemoryBuffer, BufferSize, false);
if (this->m_Parser == nullptr) return CKERROR::CKERR_OUTOFMEMORY;
// MARK: eliminate check of m_Parser->m_ReaderBegin
2023-02-11 15:29:51 +08:00
2023-02-14 21:31:18 +08:00
// MARK: dword_2405F6C0 = 0;
2023-02-11 15:29:51 +08:00
this->m_Flags = Flags;
this->m_IndexByClassId.resize(static_cast<size_t>(CK_CLASSID::CKCID_MAXCLASSID));
return this->ReadFileHeaders(&(this->m_Parser));
}
CKERROR CKFile::ReadFileHeaders(CKBufferParser** ParserPtr) {
CKBufferParser* parser = *ParserPtr;
this->m_IncludedFiles.clear();
// ========== read header1 ==========
CKDWORD fhdr1[8];
CKDWORD fhdr2[8];
if (parser->GetSize() < sizeof(fhdr1)) return CKERROR::CKERR_INVALIDFILE;
2023-02-14 21:31:18 +08:00
parser->ReadAndMove(fhdr1, sizeof(fhdr1));
2023-02-11 15:29:51 +08:00
if (fhdr1[5]) { // it seems that there is a ZERO checker?
memset(fhdr1, 0, sizeof(fhdr1));
}
// check outdated
if (fhdr1[4] > 9) return CKERROR::CKERR_OBSOLETEVIRTOOLS;
// ========== read header2 ==========
// file ver < 5 do not have second header
if (fhdr1[4] < 5) {
memset(fhdr2, 0, sizeof(fhdr2));
} else {
if (parser->GetSize() < sizeof(fhdr1) + sizeof(fhdr2)) return CKERROR::CKERR_INVALIDFILE;
2023-02-14 21:31:18 +08:00
parser->ReadAndMove(fhdr2, sizeof(fhdr2));
2023-02-11 15:29:51 +08:00
}
// forcely reset too big product ver
if (fhdr2[5] >= 12) {
fhdr2[5] = 0;
fhdr2[6] = 0x1010000;
}
// ========== assign value ==========
this->m_FileInfo.ProductVersion = fhdr2[5];
this->m_FileInfo.ProductBuild = fhdr2[6];
this->m_FileInfo.FileWriteMode = static_cast<CK_FILE_WRITEMODE>(fhdr1[6]);
this->m_FileInfo.CKVersion = fhdr1[3];
this->m_FileInfo.FileVersion = fhdr1[4];
this->m_FileInfo.FileSize = parser->GetSize();
this->m_FileInfo.ManagerCount = fhdr2[2];
this->m_FileInfo.ObjectCount = fhdr2[3];
this->m_FileInfo.MaxIDSaved = fhdr2[4];
this->m_FileInfo.Hdr1PackSize = fhdr1[7];
this->m_FileInfo.Hdr1UnPackSize = fhdr2[7];
this->m_FileInfo.DataPackSize = fhdr2[0];
this->m_FileInfo.DataUnPackSize = fhdr2[1];
this->m_FileInfo.Crc = fhdr1[2];
2023-02-11 15:29:51 +08:00
// ========== crc and body unpacker ==========
if (this->m_FileInfo.FileVersion >= 8) {
// crc checker for file ver >= 8
// reset crc field of header
fhdr1[2] = 0;
// compute crc
uLong gotten_crc = adler32(0u, reinterpret_cast<const Bytef*>(&fhdr1), sizeof(fhdr1));
parser->SetCursor(sizeof(fhdr1));
gotten_crc = adler32(gotten_crc, reinterpret_cast<const Bytef*>(parser->GetPtr()), sizeof(fhdr2));
parser->MoveCursor(sizeof(fhdr2));
gotten_crc = adler32(gotten_crc, reinterpret_cast<const Bytef*>(parser->GetPtr()), this->m_FileInfo.Hdr1PackSize);
parser->MoveCursor(this->m_FileInfo.Hdr1PackSize);
gotten_crc = adler32(gotten_crc, reinterpret_cast<const Bytef*>(parser->GetPtr()), this->m_FileInfo.DataPackSize);
parser->SetCursor(sizeof(fhdr1) + sizeof(fhdr2));
if (gotten_crc != static_cast<uLong>(this->m_FileInfo.Crc)) return CKERROR::CKERR_FILECRCERROR;
// compare size to decide wheher use compress feature
void* decomp_buffer = CKUnPackData(this->m_FileInfo.Hdr1UnPackSize, parser->GetPtr(), this->m_FileInfo.Hdr1PackSize);
if (decomp_buffer != nullptr) {
2023-02-14 21:31:18 +08:00
parser = new(std::nothrow) CKBufferParser(decomp_buffer, this->m_FileInfo.Hdr1UnPackSize, true);
if (parser == nullptr) {
free(decomp_buffer);
return CKERROR::CKERR_OUTOFMEMORY;
}
2023-02-11 15:29:51 +08:00
}
}
// ========== object list read ==========
// file ver >= 7 have this features
if (this->m_FileInfo.FileVersion >= 7) {
// apply max id saved
this->m_SaveIDMax = this->m_FileInfo.MaxIDSaved;
// resize
this->m_FileObject.resize(this->m_FileInfo.ObjectCount);
// read data
2023-02-14 21:31:18 +08:00
for (auto& fileobj : this->m_FileObject) {
2023-02-11 15:29:51 +08:00
// setup useless fields
2023-02-14 21:31:18 +08:00
fileobj.ObjPtr = nullptr;
fileobj.Data = nullptr;
2023-02-11 15:29:51 +08:00
// read basic fields
2023-02-14 21:31:18 +08:00
parser->ReadAndMove(&(fileobj.Object), sizeof(CK_ID));
parser->ReadAndMove(&(fileobj.ObjectCid), sizeof(CK_CLASSID));
parser->ReadAndMove(&(fileobj.FileIndex), sizeof(CKDWORD));
2023-02-11 15:29:51 +08:00
CKDWORD namelen;
2023-02-14 21:31:18 +08:00
parser->ReadAndMove(&namelen, sizeof(CKDWORD));
2023-02-11 15:29:51 +08:00
if (namelen != 0) {
2023-02-14 21:31:18 +08:00
fileobj.Name.resize(namelen);
parser->ReadAndMove(fileobj.Name.data(), namelen);
2023-02-11 15:29:51 +08:00
}
}
}
2023-02-14 21:31:18 +08:00
// ========== dep list read ==========
// file ver >= 8 have this feature
bool noDepLost = true;
if (this->m_FileInfo.FileVersion >= 8) {
// get size and resize
CKDWORD depSize;
parser->ReadAndMove(&depSize, sizeof(CKDWORD));
this->m_PluginDep.resize(depSize);
CKDWORD guid_size;
for (auto& dep : this->m_PluginDep) {
// read category
parser->ReadAndMove(&(dep.m_PluginCategory), sizeof(CK_PLUGIN_TYPE));
// get size and resize
parser->ReadAndMove(&guid_size, sizeof(CKDWORD));
dep.m_Guids.resize(guid_size);
dep.ValidGuids.resize(guid_size);
// read data
if (guid_size != 0) {
parser->ReadAndMove(dep.m_Guids.data(), sizeof(CKGUID)* guid_size);
}
// extra load flag
if (EnumHelper::FlagEnumHas(this->m_Flags, CK_LOAD_FLAGS::CK_LOAD_CHECKDEPENDENCIES)) {
for (size_t i = 0u; i < dep.m_Guids.size(); ++i) {
// MARK: CKPluginManager::FindComponent
bool plgEntryIsNull = true;
if (plgEntryIsNull) {
noDepLost = false;
dep.ValidGuids[i] = false;
} else {
dep.ValidGuids[i] = true;
}
}
}
}
}
// ========== included file list read ==========
// file ver >= 8 have this feature
if (this->m_FileInfo.FileVersion >= 8) {
// MARK: i don't knwo what is this!
int32_t unknowIncludedFileFlag;
parser->ReadAndMove(&unknowIncludedFileFlag, sizeof(int32_t));
if (unknowIncludedFileFlag > 0) {
// read included file size and resize
CKDWORD includedFileCount;
parser->ReadAndMove(&includedFileCount, sizeof(CKDWORD));
this->m_IncludedFiles.resize(includedFileCount);
unknowIncludedFileFlag -= 4;
}
// backward pos
parser->SetCursor(unknowIncludedFileFlag);
}
// ========== read data ==========
// restore old parser if needed
if (parser != *ParserPtr) {
delete parser;
parser = *ParserPtr;
parser->MoveCursor(this->m_FileInfo.Hdr1PackSize);
}
// MARK: dword_2405F6BC, dword_2405F6B8 set
if (!(EnumHelper::FlagEnumHas(this->m_Flags, CK_LOAD_FLAGS::CK_LOAD_CHECKDEPENDENCIES) &&
this->m_FileInfo.FileVersion < 8)) {
// we have read all header. return result
return noDepLost ? CKERROR::CKERR_OK : CKERROR::CKERR_PLUGINSMISSING;
} // however, if we need check dep, and, we have not read dep list. continue read them.
2023-02-08 22:57:31 +08:00
return CKERROR::CKERR_OK;
}
2023-02-11 15:29:51 +08:00
CKERROR CKFile::ReadFileData(CKBufferParser** ParserPtr) {
2023-02-08 22:57:31 +08:00
return CKERROR::CKERR_OK;
}
2023-02-11 15:29:51 +08:00
CKERROR CKFile::LoadFileData(void/*CKObjectArray list*/) {
return CKERROR::CKERR_OK;
}
2023-02-08 22:57:31 +08:00
}