mirror of
https://github.com/jakcron/nstool
synced 2024-11-26 23:49:36 +00:00
137 lines
No EOL
4 KiB
C++
137 lines
No EOL
4 KiB
C++
#include <sstream>
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#include <nx/HierarchicalIntegrityHeader.h>
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nx::HierarchicalIntegrityHeader::HierarchicalIntegrityHeader()
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{
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clear();
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}
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nx::HierarchicalIntegrityHeader::HierarchicalIntegrityHeader(const HierarchicalIntegrityHeader & other)
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{
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*this = other;
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}
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void nx::HierarchicalIntegrityHeader::operator=(const HierarchicalIntegrityHeader & other)
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{
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if (other.getBytes().size() != 0)
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{
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fromBytes(other.getBytes().data(), other.getBytes().size());
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}
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else
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{
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clear();
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mLayerInfo = other.mLayerInfo;
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mMasterHashList = other.mMasterHashList;
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}
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}
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bool nx::HierarchicalIntegrityHeader::operator==(const HierarchicalIntegrityHeader & other) const
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{
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return (mLayerInfo == other.mLayerInfo) \
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&& (mMasterHashList == other.mMasterHashList);
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}
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bool nx::HierarchicalIntegrityHeader::operator!=(const HierarchicalIntegrityHeader & other) const
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{
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return !(*this == other);
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}
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void nx::HierarchicalIntegrityHeader::toBytes()
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{
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throw fnd::Exception(kModuleName, "exportBinary() not implemented");
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}
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void nx::HierarchicalIntegrityHeader::fromBytes(const byte_t* data, size_t len)
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{
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std::stringstream error_str;
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// validate size for at least header
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if (len < sizeof(nx::sHierarchicalIntegrityHeader))
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{
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throw fnd::Exception(kModuleName, "Header too small");
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}
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const nx::sHierarchicalIntegrityHeader* hdr = (const nx::sHierarchicalIntegrityHeader*)data;
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// Validate Header Sig "IVFC"
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if (hdr->st_magic.get() != hierarchicalintegrity::kStructMagic)
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{
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throw fnd::Exception(kModuleName, "Invalid struct magic");
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}
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// Validate TypeId
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if (hdr->type_id.get() != nx::hierarchicalintegrity::kRomfsTypeId)
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{
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error_str.clear();
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error_str << "Unsupported type id (" << std::hex << hdr->type_id.get() << ")";
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throw fnd::Exception(kModuleName, error_str.str());
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}
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// Validate Layer Num
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if (hdr->layer_num.get() != hierarchicalintegrity::kDefaultLayerNum+1)
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{
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error_str.clear();
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error_str << "Invalid layer count. ";
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error_str << "(actual=" << std::dec << hdr->layer_num.get() << ", expected=" << nx::hierarchicalintegrity::kDefaultLayerNum+1 << ")";
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throw fnd::Exception(kModuleName, error_str.str());
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}
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// Get Sizes/Offsets
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size_t master_hash_offset = align((sizeof(nx::sHierarchicalIntegrityHeader) + sizeof(nx::sHierarchicalIntegrityLayerInfo) * hdr->layer_num.get()), nx::hierarchicalintegrity::kHeaderAlignLen);
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size_t total_size = master_hash_offset + hdr->master_hash_size.get();
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// Validate total size
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if (len < total_size)
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{
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throw fnd::Exception(kModuleName, "Header too small");
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}
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// copy to internal storage
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mRawBinary.alloc(total_size);
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memcpy(mRawBinary.data(), data, mRawBinary.size());
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// save layer info
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const nx::sHierarchicalIntegrityLayerInfo* layer_info = (const nx::sHierarchicalIntegrityLayerInfo*)(mRawBinary.data() + sizeof(nx::sHierarchicalIntegrityHeader));
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for (size_t i = 0; i < hierarchicalintegrity::kDefaultLayerNum; i++)
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{
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mLayerInfo.addElement({layer_info[i].offset.get(), layer_info[i].size.get(), layer_info[i].block_size.get()});
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}
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// save hash list
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const crypto::sha::sSha256Hash* hash_list = (const crypto::sha::sSha256Hash*)(mRawBinary.data() + master_hash_offset);
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for (size_t i = 0; i < hdr->master_hash_size.get()/sizeof(crypto::sha::sSha256Hash); i++)
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{
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mMasterHashList.addElement(hash_list[i]);
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}
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}
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const fnd::Vec<byte_t>& nx::HierarchicalIntegrityHeader::getBytes() const
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{
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return mRawBinary;
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}
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void nx::HierarchicalIntegrityHeader::clear()
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{
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mLayerInfo.clear();
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mMasterHashList.clear();
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}
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const fnd::List<nx::HierarchicalIntegrityHeader::sLayer>& nx::HierarchicalIntegrityHeader::getLayerInfo() const
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{
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return mLayerInfo;
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}
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void nx::HierarchicalIntegrityHeader::setLayerInfo(const fnd::List<sLayer>& layer_info)
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{
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mLayerInfo = layer_info;
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}
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const fnd::List<crypto::sha::sSha256Hash>& nx::HierarchicalIntegrityHeader::getMasterHashList() const
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{
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return mMasterHashList;
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}
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void nx::HierarchicalIntegrityHeader::setMasterHashList(const fnd::List<crypto::sha::sSha256Hash>& master_hash_list)
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{
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mMasterHashList = master_hash_list;
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} |