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[NcaProcess] Identify Sparse partitions and explain they are not supported.
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@ -12,7 +12,6 @@
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#include <nn/hac/RomFsMetaGenerator.h>
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#include <nn/hac/RomFsMetaGenerator.h>
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#include <nn/hac/CombinedFsMetaGenerator.h>
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#include <nn/hac/CombinedFsMetaGenerator.h>
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nstool::NcaProcess::NcaProcess() :
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nstool::NcaProcess::NcaProcess() :
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mModuleName("nstool::NcaProcess"),
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mModuleName("nstool::NcaProcess"),
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mFile(),
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mFile(),
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@ -238,12 +237,6 @@ void nstool::NcaProcess::generatePartitionConfiguration()
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throw tc::Exception(mModuleName, fmt::format("NCA FS Header [{:d}] Version({:d}): UNSUPPORTED", partition.header_index, fs_header.version.unwrap()));
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throw tc::Exception(mModuleName, fmt::format("NCA FS Header [{:d}] Version({:d}): UNSUPPORTED", partition.header_index, fs_header.version.unwrap()));
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}
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}
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// detect compacted partition (sparse layer)
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if (fs_header.sparse_info.generation.unwrap() != 0)
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{
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// TODO
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}
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// setup AES-CTR
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// setup AES-CTR
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nn::hac::ContentArchiveUtil::getNcaPartitionAesCtr(&fs_header, info.aes_ctr.data());
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nn::hac::ContentArchiveUtil::getNcaPartitionAesCtr(&fs_header, info.aes_ctr.data());
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@ -256,86 +249,55 @@ void nstool::NcaProcess::generatePartitionConfiguration()
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if (info.hash_type == nn::hac::nca::HashType::HierarchicalSha256)
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if (info.hash_type == nn::hac::nca::HashType::HierarchicalSha256)
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{
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{
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info.hierarchicalsha256_hdr.fromBytes(fs_header.hash_info.data(), fs_header.hash_info.size());
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info.hierarchicalsha256_hdr.fromBytes(fs_header.hash_info.data(), fs_header.hash_info.size());
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/*
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nn::hac::HierarchicalSha256Header hdr;
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// import raw data
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hdr.fromBytes(fs_header.hash_info.data(), fs_header.hash_info.size());
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for (size_t i = 0; i < hdr.getLayerInfo().size(); i++)
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{
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nn::hac::HierarchicalValidatedStream::StreamInfo::LayerInfo layer;
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layer.offset = hdr.getLayerInfo()[i].offset;
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layer.size = hdr.getLayerInfo()[i].size;
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layer.block_size = hdr.getHashBlockSize();
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if (i + 1 == hdr.getLayerInfo().size())
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{
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info.hashed_stream_info.data_layer_info = layer;
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}
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else
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{
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info.hashed_stream_info.hash_layer_info.push_back(layer);
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}
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}
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info.hashed_stream_info.master_hash_data = tc::ByteData(hdr.getMasterHash().data(), hdr.getMasterHash().size());
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info.hashed_stream_info.align_partial_block_to_blocksize = false;
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*/
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}
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}
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else if (info.hash_type == nn::hac::nca::HashType::HierarchicalIntegrity)
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else if (info.hash_type == nn::hac::nca::HashType::HierarchicalIntegrity)
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{
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{
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info.hierarchicalintegrity_hdr.fromBytes(fs_header.hash_info.data(), fs_header.hash_info.size());
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info.hierarchicalintegrity_hdr.fromBytes(fs_header.hash_info.data(), fs_header.hash_info.size());
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/*
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// info.hash_tree_meta.importData(fs_header.hash_info, nn::hac::nca::kHashInfoLen, LayeredIntegrityMetadata::HASH_TYPE_INTEGRITY);
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nn::hac::HierarchicalIntegrityHeader hdr;
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hdr.fromBytes(fs_header.hash_info.data(), fs_header.hash_info.size());
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for (size_t i = 0; i < hdr.getLayerInfo().size(); i++)
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{
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nn::hac::HierarchicalValidatedStream::StreamInfo::LayerInfo layer;
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layer.offset = hdr.getLayerInfo()[i].offset;
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layer.size = hdr.getLayerInfo()[i].size;
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layer.block_size = (1 << hdr.getLayerInfo()[i].block_size);
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if (i + 1 == hdr.getLayerInfo().size())
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{
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info.hashed_stream_info.data_layer_info = layer;
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}
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else
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{
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info.hashed_stream_info.hash_layer_info.push_back(layer);
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}
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}
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info.hashed_stream_info.master_hash_data = tc::ByteData(hdr.getMasterHashList().size() * sizeof(nn::hac::detail::sha256_hash_t));
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for (size_t i = 0; i < hdr.getMasterHashList().size(); i++)
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{
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((nn::hac::detail::sha256_hash_t*)info.hashed_stream_info.master_hash_data.data())[i] = hdr.getMasterHashList()[i];
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}
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info.hashed_stream_info.align_partial_block_to_blocksize = false;
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*/
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}
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}
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// create reader
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// create reader
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try
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try
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{
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{
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// create reader based on encryption type0
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// handle partition encryption and partition compaction (sparse layer)
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if (info.enc_type == nn::hac::nca::EncryptionType::None)
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if (fs_header.sparse_info.generation.unwrap() != 0)
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{
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{
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info.reader = std::make_shared<tc::io::SubStream>(tc::io::SubStream(mFile, info.offset, info.size));
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throw tc::Exception("SparseStorage: Not currently supported.");
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}
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else if (info.enc_type == nn::hac::nca::EncryptionType::AesCtr)
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{
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if (mContentKey.aes_ctr.isNull())
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throw tc::Exception(mModuleName, "AES-CTR Key was not determined");
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//info.reader = new fnd::OffsetAdjustedIFile(new fnd::AesCtrWrappedIFile(mFile, mContentKey.aes_ctr.get(), info.aes_ctr), info.offset, info.size);
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info.reader = std::make_shared<tc::crypto::Aes128CtrEncryptedStream>(tc::crypto::Aes128CtrEncryptedStream(mFile, mContentKey.aes_ctr.get(), info.aes_ctr));
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info.reader = std::make_shared<tc::io::SubStream>(tc::io::SubStream(info.reader, info.offset, info.size));
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}
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else if (info.enc_type == nn::hac::nca::EncryptionType::AesXts || info.enc_type == nn::hac::nca::EncryptionType::AesCtrEx)
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{
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throw tc::Exception(mModuleName, fmt::format("EncryptionType({:s}): UNSUPPORTED", nn::hac::ContentArchiveUtil::getEncryptionTypeAsString(info.enc_type)));
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}
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}
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else
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else
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{
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{
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throw tc::Exception(mModuleName, fmt::format("EncryptionType({:s}): UNKNOWN", nn::hac::ContentArchiveUtil::getEncryptionTypeAsString(info.enc_type)));
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// create raw partition
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info.reader = std::make_shared<tc::io::SubStream>(tc::io::SubStream(mFile, info.offset, info.size));
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// handle encryption if required reader based on encryption type
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if (info.enc_type == nn::hac::nca::EncryptionType::None)
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{
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// no encryption so do nothing
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//info.reader = info.reader;
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}
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else if (info.enc_type == nn::hac::nca::EncryptionType::AesCtr)
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{
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if (mContentKey.aes_ctr.isNull())
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throw tc::Exception(mModuleName, "AES-CTR Key was not determined");
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// get partition key
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nn::hac::detail::aes128_key_t partition_key = mContentKey.aes_ctr.get();
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// get partition counter
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nn::hac::detail::aes_iv_t partition_ctr = info.aes_ctr;
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tc::crypto::detail::incr_counter<16>(partition_ctr.data(), info.offset>>4);
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// create decryption stream
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info.reader = std::make_shared<tc::crypto::Aes128CtrEncryptedStream>(tc::crypto::Aes128CtrEncryptedStream(info.reader, partition_key, partition_ctr));
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}
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else if (info.enc_type == nn::hac::nca::EncryptionType::AesXts || info.enc_type == nn::hac::nca::EncryptionType::AesCtrEx)
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{
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throw tc::Exception(mModuleName, fmt::format("EncryptionType({:s}): UNSUPPORTED", nn::hac::ContentArchiveUtil::getEncryptionTypeAsString(info.enc_type)));
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}
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else
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{
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throw tc::Exception(mModuleName, fmt::format("EncryptionType({:s}): UNKNOWN", nn::hac::ContentArchiveUtil::getEncryptionTypeAsString(info.enc_type)));
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}
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}
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}
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// filter out unrecognised hash types, and hash based readers
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// filter out unrecognised hash types, and hash based readers
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