243 lines
5.5 KiB
C++

#include "IPak.h"
#include "zlib.h"
#include "Exception/IPakLoadException.h"
#include "ObjContainer/IPak/IPakTypes.h"
#include "Utils/PathUtils.h"
#include "IPakStreamManager.h"
#include <sstream>
#include <vector>
ObjContainerRepository<IPak, Zone> IPak::Repository;
class IPak::Impl : public ObjContainerReferenceable
{
static const uint32_t MAGIC = 'IPAK';
static const uint32_t VERSION = 0x50000;
std::string m_path;
FileAPI::IFile* m_file;
bool m_initialized;
IPakSection* m_index_section;
IPakSection* m_data_section;
std::vector<IPakIndexEntry> m_index_entries;
IPakStreamManager m_stream_manager;
static uint32_t R_HashString(const char* str, uint32_t hash)
{
for (const char* pos = str; *pos; pos++)
{
hash = 33 * hash ^ (*pos | 0x20);
}
return hash;
}
bool ReadIndexSection()
{
m_file->Goto(m_index_section->offset);
IPakIndexEntry indexEntry{};
for (unsigned itemIndex = 0; itemIndex < m_index_section->itemCount; itemIndex++)
{
if (m_file->Read(&indexEntry, sizeof indexEntry, 1) != 1)
{
printf("Unexpected eof when trying to load index entry %u.\n", itemIndex);
return false;
}
m_index_entries.push_back(indexEntry);
}
std::sort(m_index_entries.begin(), m_index_entries.end(),
[](const IPakIndexEntry& entry1, const IPakIndexEntry& entry2)
{
return entry1.key.combinedKey < entry2.key.combinedKey;
});
return true;
}
bool ReadSection()
{
IPakSection section{};
if (m_file->Read(&section, sizeof section, 1) != 1)
{
printf("Unexpected eof when trying to load section.\n");
return false;
}
switch (section.type)
{
case 1:
m_index_section = new IPakSection(section);
break;
case 2:
m_data_section = new IPakSection(section);
break;
default:
break;
}
return true;
}
bool ReadHeader()
{
IPakHeader header{};
if (m_file->Read(&header, sizeof header, 1) != 1)
{
printf("Unexpected eof when trying to load header.\n");
return false;
}
if (header.magic != MAGIC)
{
printf("Invalid ipak magic '0x%x'.\n", header.magic);
return false;
}
if (header.version != VERSION)
{
printf("Unsupported ipak version '%u'.\n", header.version);
return false;
}
for (unsigned section = 0; section < header.sectionCount; section++)
{
if (!ReadSection())
return false;
}
if (m_index_section == nullptr)
{
printf("IPak does not contain an index section.\n");
return false;
}
if (m_data_section == nullptr)
{
printf("IPak does not contain a data section.\n");
return false;
}
if (!ReadIndexSection())
return false;
return true;
}
public:
Impl(std::string path, FileAPI::IFile* file)
: m_stream_manager(file)
{
m_path = std::move(path);
m_file = file;
m_initialized = false;
m_index_section = nullptr;
m_data_section = nullptr;
}
~Impl()
{
delete m_index_section;
m_index_section = nullptr;
delete m_data_section;
m_data_section = nullptr;
}
std::string GetName() override
{
return utils::Path::GetFilename(m_path);
}
bool Initialize()
{
if (m_initialized)
return true;
if (!ReadHeader())
return false;
m_initialized = true;
return true;
}
FileAPI::IFile* GetEntryData(const Hash nameHash, const Hash dataHash)
{
IPakIndexEntryKey wantedKey{};
wantedKey.nameHash = nameHash;
wantedKey.dataHash = dataHash;
for (auto& entry : m_index_entries)
{
if (entry.key.combinedKey == wantedKey.combinedKey)
{
return m_stream_manager.OpenStream(m_data_section->offset + entry.offset, entry.size);
}
else if (entry.key.combinedKey > wantedKey.combinedKey)
{
// The index entries are sorted so if the current entry is higher than the wanted entry we can cancel here
return nullptr;
}
}
return nullptr;
}
static Hash HashString(const std::string& str)
{
return R_HashString(str.c_str(), 0);
}
static Hash HashData(const void* data, const size_t dataSize)
{
return crc32(0, static_cast<const Bytef*>(data), dataSize);
}
};
IPak::IPak(std::string path, FileAPI::IFile* file)
{
m_impl = new Impl(std::move(path), file);
}
IPak::~IPak()
{
delete m_impl;
m_impl = nullptr;
}
std::string IPak::GetName()
{
return m_impl->GetName();
}
bool IPak::Initialize() const
{
return m_impl->Initialize();
}
FileAPI::IFile* IPak::GetEntryStream(const Hash nameHash, const Hash dataHash) const
{
return m_impl->GetEntryData(nameHash, dataHash);
}
IPak::Hash IPak::HashString(const std::string& str)
{
return Impl::HashString(str);
}
IPak::Hash IPak::HashData(const void* data, const size_t dataSize)
{
return Impl::HashData(data, dataSize);
}