mirror of https://github.com/AxioDL/metaforce.git
191 lines
5.4 KiB
C++
191 lines
5.4 KiB
C++
#include "hecl/Blender/SDNARead.hpp"
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#include <cstring>
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#include <string>
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#include "hecl/hecl.hpp"
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#include <athena/FileReader.hpp>
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#include <athena/MemoryReader.hpp>
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#include <zlib.h>
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namespace hecl::blender {
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void SDNABlock::SDNAStruct::computeOffsets(const SDNABlock& block) {
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atUint32 offset = 0;
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for (SDNAField& f : fields) {
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const auto& name = block.names[f.name];
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f.offset = offset;
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if (name.front() == '*') {
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offset += 8;
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} else {
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atUint32 length = block.tlens[f.type];
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auto bracket = name.find('[');
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if (bracket != std::string::npos)
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length *= strtoul(name.data() + bracket + 1, nullptr, 10);
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offset += length;
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}
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}
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}
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const SDNABlock::SDNAStruct::SDNAField* SDNABlock::SDNAStruct::lookupField(const SDNABlock& block,
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const char* n) const {
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for (const SDNAField& field : fields) {
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const auto& name = block.names[field.name];
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auto bracket = name.find('[');
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if (bracket != std::string::npos) {
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if (!name.compare(0, bracket, n))
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return &field;
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} else if (name == n)
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return &field;
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}
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return nullptr;
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}
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const SDNABlock::SDNAStruct* SDNABlock::lookupStruct(const char* n, atUint32& idx) const {
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idx = 0;
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for (const SDNAStruct& strc : strcs) {
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const auto& name = types[strc.type];
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if (name == n)
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return &strc;
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++idx;
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}
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return nullptr;
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}
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void SDNARead::enumerate(const std::function<bool(const FileBlock& block, athena::io::MemoryReader& r)>& func) const {
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athena::io::MemoryReader r(m_data.data(), m_data.size());
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r.seek(12);
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while (r.position() < r.length()) {
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FileBlock block;
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block.read(r);
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if (block.type == FOURCC('ENDB'))
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break;
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athena::io::MemoryReader r2(m_data.data() + r.position(), block.size);
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if (!func(block, r2))
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break;
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r.seek(block.size);
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}
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}
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SDNARead::SDNARead(std::string_view path) {
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athena::io::FileReader r(path);
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if (r.hasError())
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return;
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atUint64 length = r.length();
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char magicBuf[7];
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r.readUBytesToBuf(magicBuf, 7);
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r.seek(0, athena::SeekOrigin::Begin);
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if (strncmp(magicBuf, "BLENDER", 7)) {
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/* Try gzip decompression */
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std::unique_ptr<uint8_t[]> compBuf(new uint8_t[4096]);
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m_data.resize((length * 2 + 4095) & ~4095);
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z_stream zstrm = {};
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inflateInit2(&zstrm, 16 + MAX_WBITS);
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zstrm.next_out = (Bytef*)m_data.data();
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zstrm.avail_out = m_data.size();
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zstrm.total_out = 0;
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atUint64 rs;
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while ((rs = r.readUBytesToBuf(compBuf.get(), 4096))) {
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int inflateRet;
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zstrm.next_in = compBuf.get();
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zstrm.avail_in = rs;
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while (zstrm.avail_in) {
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if (!zstrm.avail_out) {
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zstrm.avail_out = m_data.size();
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m_data.resize(zstrm.avail_out * 2);
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zstrm.next_out = (Bytef*)m_data.data() + zstrm.avail_out;
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}
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inflateRet = inflate(&zstrm, Z_NO_FLUSH);
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if (inflateRet == Z_STREAM_END)
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break;
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if (inflateRet != Z_OK) {
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inflateEnd(&zstrm);
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m_data = std::vector<uint8_t>();
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return;
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}
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}
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if (inflateRet == Z_STREAM_END)
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break;
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}
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inflateEnd(&zstrm);
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if (strncmp((char*)m_data.data(), "BLENDER", 7)) {
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m_data = std::vector<uint8_t>();
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return;
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}
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} else {
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m_data.resize(length);
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r.readUBytesToBuf(m_data.data(), length);
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}
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enumerate([this](const FileBlock& block, athena::io::MemoryReader& r) {
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if (block.type == FOURCC('DNA1')) {
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m_sdnaBlock.read(r);
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for (SDNABlock::SDNAStruct& s : m_sdnaBlock.strcs)
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s.computeOffsets(m_sdnaBlock);
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return false;
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}
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return true;
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});
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}
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BlendType GetBlendType(std::string_view path) {
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SDNARead r(path);
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if (!r)
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return BlendType::None;
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atUint32 idPropIdx;
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const auto* idPropStruct = r.sdnaBlock().lookupStruct("IDProperty", idPropIdx);
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if (!idPropStruct)
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return BlendType::None;
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const auto* typeField = idPropStruct->lookupField(r.sdnaBlock(), "type");
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if (!typeField)
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return BlendType::None;
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atUint32 typeOffset = typeField->offset;
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const auto* nameField = idPropStruct->lookupField(r.sdnaBlock(), "name");
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if (!nameField)
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return BlendType::None;
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atUint32 nameOffset = nameField->offset;
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const auto* dataField = idPropStruct->lookupField(r.sdnaBlock(), "data");
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if (!dataField)
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return BlendType::None;
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atUint32 dataOffset = dataField->offset;
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atUint32 idPropDataIdx;
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const auto* idPropDataStruct = r.sdnaBlock().lookupStruct("IDPropertyData", idPropDataIdx);
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if (!idPropDataStruct)
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return BlendType::None;
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const auto* valField = idPropDataStruct->lookupField(r.sdnaBlock(), "val");
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if (!valField)
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return BlendType::None;
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atUint32 valOffset = dataOffset + valField->offset;
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BlendType ret = BlendType::None;
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r.enumerate(
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[idPropIdx, typeOffset, nameOffset, valOffset, &ret](const FileBlock& block, athena::io::MemoryReader& r) {
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if (block.type == FOURCC('DATA') && block.sdnaIdx == idPropIdx) {
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r.seek(typeOffset, athena::SeekOrigin::Begin);
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if (r.readUByte() != 1)
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return true;
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r.seek(nameOffset, athena::SeekOrigin::Begin);
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if (r.readString() != "hecl_type")
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return true;
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r.seek(valOffset, athena::SeekOrigin::Begin);
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ret = BlendType(r.readUint32Little());
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return false;
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}
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return true;
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});
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return ret;
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}
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} // namespace hecl::blender
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