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https://github.com/jakcron/nstool.git
synced 2024-12-22 10:45:28 +00:00
[nx] Style change in NcaHeader, also exportBinary() implemented in NcaHeader.
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parent
70145ce354
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fad0cb828f
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@ -3,27 +3,52 @@
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void NcaHeader::exportBinary()
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void NcaHeader::exportBinary()
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{
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{
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// TODO: implement export
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mBinaryBlob.alloc(sizeof(sNcaHeader));
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sNcaHeader* hdr = (sNcaHeader*)mBinaryBlob.data();
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hdr->set_signature(kNcaSig.c_str());
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hdr->set_block_size(kDefaultBlockSize);
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hdr->set_nca_size(mNcaSize);
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hdr->set_program_id(mProgramId);
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hdr->set_unk0(mUnk0);
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// TODO: properly reconstruct NCA layout? atm in hands of user
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for (size_t i = 0; i < mSections.size(); i++)
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{
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// determine section index
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u8 section = mSections.size() - 1 - i;
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hdr->section(section).set_start(mSections[i].start_blk);
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hdr->section(section).set_end(mSections[i].end_blk);
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hdr->section(section).set_key_type(mSections[i].key_type);
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hdr->section_hash(section) = mSections[i].hash;
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}
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for (size_t i = 0; i < kAesKeyNum; i++)
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{
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hdr->aes_key(i) = mAesKeys[i];
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}
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}
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}
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void NcaHeader::importBinary(const u8 * bytes)
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void NcaHeader::importBinary(const u8 * bytes)
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{
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{
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clearVariables();
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clearVariables();
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binary_blob_.alloc(sizeof(sNcaHeader));
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mBinaryBlob.alloc(sizeof(sNcaHeader));
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memcpy(binary_blob_.data(), bytes, sizeof(sNcaHeader));
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memcpy(mBinaryBlob.data(), bytes, sizeof(sNcaHeader));
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sNcaHeader* hdr = (sNcaHeader*)binary_blob_.data();
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sNcaHeader* hdr = (sNcaHeader*)mBinaryBlob.data();
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if (memcmp(hdr->signature(), kNcaSig.c_str(), 4) != 0)
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if (memcmp(hdr->signature(), kNcaSig.c_str(), 4) != 0)
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{
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{
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throw fnd::Exception(kModuleName, "NCA header corrupt");
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throw fnd::Exception(kModuleName, "NCA header corrupt");
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}
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}
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block_size_ = hdr->block_size();
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mBlockSize = hdr->block_size();
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nca_size_ = hdr->nca_size();
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mNcaSize = hdr->nca_size();
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program_id_ = hdr->program_id();
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mProgramId = hdr->program_id();
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unk0_ = hdr->unk0();
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mUnk0 = hdr->unk0();
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for (size_t i = 0; i < kSectionNum; i++)
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for (size_t i = 0; i < kSectionNum; i++)
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{
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{
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@ -34,87 +59,87 @@ void NcaHeader::importBinary(const u8 * bytes)
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if (hdr->section(section).start() == 0 && hdr->section(section).end() == 0) continue;
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if (hdr->section(section).start() == 0 && hdr->section(section).end() == 0) continue;
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// add high level struct
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// add high level struct
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sections_.push_back({ hdr->section(section).start(), hdr->section(section).end(), blockNumToSize(hdr->section(section).start()), blockNumToSize(hdr->section(section).end()- hdr->section(section).start()), hdr->section(section).key_type(), hdr->section_hash(section) });
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mSections.push_back({ hdr->section(section).start(), hdr->section(section).end(), blockNumToSize(hdr->section(section).start()), blockNumToSize(hdr->section(section).end()- hdr->section(section).start()), hdr->section(section).key_type(), hdr->section_hash(section) });
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}
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}
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for (size_t i = 0; i < kAesKeyNum; i++)
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for (size_t i = 0; i < kAesKeyNum; i++)
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{
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{
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aes_keys_.push_back(hdr->aes_key(i));
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mAesKeys.push_back(hdr->aes_key(i));
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}
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}
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}
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}
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u64 NcaHeader::getNcaSize() const
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u64 NcaHeader::getNcaSize() const
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{
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{
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return nca_size_;
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return mNcaSize;
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}
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}
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void NcaHeader::setNcaSize(u64 size)
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void NcaHeader::setNcaSize(u64 size)
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{
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{
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nca_size_ = size;
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mNcaSize = size;
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}
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}
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u64 NcaHeader::getProgramId() const
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u64 NcaHeader::getProgramId() const
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{
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{
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return program_id_;
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return mProgramId;
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}
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}
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void NcaHeader::setProgramId(u64 program_id)
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void NcaHeader::setProgramId(u64 program_id)
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{
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{
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program_id_ = program_id;
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mProgramId = program_id;
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}
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}
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u32 NcaHeader::getUnk() const
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u32 NcaHeader::getUnk() const
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{
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{
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return unk0_;
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return mUnk0;
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}
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}
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const std::vector<NcaHeader::sSection>& NcaHeader::getSections() const
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const std::vector<NcaHeader::sSection>& NcaHeader::getSections() const
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{
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{
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return sections_;
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return mSections;
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}
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}
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void NcaHeader::addSection(const sSection & section)
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void NcaHeader::addSection(const sSection & section)
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{
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{
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if (sections_.size() >= kSectionNum)
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if (mSections.size() >= kSectionNum)
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{
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{
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throw fnd::Exception(kModuleName, "Too many NCA sections");
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throw fnd::Exception(kModuleName, "Too many NCA sections");
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}
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}
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sections_.push_back(section);
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mSections.push_back(section);
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}
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}
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const std::vector<crypto::aes::sAes128Key>& NcaHeader::getAesKeys() const
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const std::vector<crypto::aes::sAes128Key>& NcaHeader::getAesKeys() const
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{
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{
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return aes_keys_;
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return mAesKeys;
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}
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}
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void NcaHeader::addKey(const crypto::aes::sAes128Key & key)
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void NcaHeader::addKey(const crypto::aes::sAes128Key & key)
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{
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{
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if (aes_keys_.size() >= kAesKeyNum)
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if (mAesKeys.size() >= kAesKeyNum)
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{
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{
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throw fnd::Exception(kModuleName, "Too many NCA aes keys");
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throw fnd::Exception(kModuleName, "Too many NCA aes keys");
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}
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}
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aes_keys_.push_back(key);
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mAesKeys.push_back(key);
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}
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}
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void NcaHeader::clearVariables()
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void NcaHeader::clearVariables()
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{
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{
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block_size_ = 0;
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mBlockSize = 0;
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nca_size_ = 0;
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mNcaSize = 0;
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program_id_ = 0;
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mProgramId = 0;
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unk0_ = 0;
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mUnk0 = 0;
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sections_.clear();
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mSections.clear();
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aes_keys_.clear();
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mAesKeys.clear();
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}
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}
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u64 NcaHeader::blockNumToSize(u32 block_num) const
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u64 NcaHeader::blockNumToSize(u32 block_num) const
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{
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{
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return block_num*block_size_;
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return block_num*mBlockSize;
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}
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}
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u32 NcaHeader::sizeToBlockNum(u64 real_size) const
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u32 NcaHeader::sizeToBlockNum(u64 real_size) const
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{
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{
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return align(real_size, block_size_)/block_size_;
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return align(real_size, mBlockSize)/mBlockSize;
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}
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}
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NcaHeader::NcaHeader()
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NcaHeader::NcaHeader()
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@ -134,10 +159,10 @@ NcaHeader::NcaHeader(const u8 * bytes)
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const u8 * NcaHeader::getBytes() const
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const u8 * NcaHeader::getBytes() const
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{
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{
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return binary_blob_.data();
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return mBinaryBlob.data();
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}
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}
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size_t NcaHeader::getSize() const
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size_t NcaHeader::getSize() const
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{
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{
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return binary_blob_.size();
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return mBinaryBlob.size();
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}
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}
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@ -45,6 +45,7 @@ public:
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private:
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private:
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const std::string kModuleName = "NCA_HEADER";
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const std::string kModuleName = "NCA_HEADER";
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const std::string kNcaSig = "NCA2";
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const std::string kNcaSig = "NCA2";
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static const size_t kDefaultBlockSize = 0x200;
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static const size_t kSectionNum = 4;
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static const size_t kSectionNum = 4;
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static const size_t kAesKeyNum = 4;
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static const size_t kAesKeyNum = 4;
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@ -108,15 +109,15 @@ private:
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#pragma pack (pop)
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#pragma pack (pop)
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// binary
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// binary
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fnd::MemoryBlob binary_blob_;
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fnd::MemoryBlob mBinaryBlob;
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// data
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// data
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u16 block_size_;
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u16 mBlockSize;
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u64 nca_size_;
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u64 mNcaSize;
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u64 program_id_;
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u64 mProgramId;
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u32 unk0_;
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u32 mUnk0;
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std::vector<sSection> sections_;
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std::vector<sSection> mSections;
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std::vector<crypto::aes::sAes128Key> aes_keys_;
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std::vector<crypto::aes::sAes128Key> mAesKeys;
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void clearVariables();
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void clearVariables();
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u64 blockNumToSize(u32 block_num) const;
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u64 blockNumToSize(u32 block_num) const;
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