mirror of
https://github.com/jakcron/nstool.git
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134 lines
3.9 KiB
C++
134 lines
3.9 KiB
C++
#pragma once
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#include <nx/xci.h>
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#include <fnd/MemoryBlob.h>
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#include <fnd/List.h>
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#include <fnd/ISerialiseableBinary.h>
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namespace nx
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{
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class XciHeader :
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public fnd::ISerialiseableBinary
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{
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public:
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XciHeader();
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XciHeader(const XciHeader& other);
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XciHeader(const byte_t* bytes, size_t len);
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bool operator==(const XciHeader& other) const;
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bool operator!=(const XciHeader& other) const;
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void operator=(const XciHeader& other);
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// to be used after export
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const byte_t* getBytes() const;
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size_t getSize() const;
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// export/import binary
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void exportBinary();
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void importBinary(const byte_t* bytes, size_t len);
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// variables
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void clear();
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uint32_t getRomAreaStartPage() const;
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void setRomAreaStartPage(uint32_t startPage);
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uint32_t getBackupAreaStartPage() const;
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void setBackupAreaStartPage(uint32_t startPage);
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byte_t getKekIndex() const;
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void setKekIndex(byte_t kekIndex);
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byte_t getTitleKeyDecIndex() const;
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void setTitleKeyDecIndex(byte_t index);
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byte_t getRomSizeType() const;
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void setRomSizeType(byte_t romSizeType);
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byte_t getCardHeaderVersion() const;
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void setCardHeaderVersion(byte_t version);
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byte_t getFlags() const;
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void setFlags(byte_t flags);
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uint64_t getPackageId() const;
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void setPackageId(uint64_t id);
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uint32_t getValidDataEndPage() const;
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void setValidDataEndPage(uint32_t page);
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const crypto::aes::sAesIvCtr& getAesCbcIv() const;
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void setAesCbcIv(const crypto::aes::sAesIvCtr& iv);
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uint64_t getPartitionFsAddress() const;
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void setPartitionFsAddress(uint64_t address);
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uint64_t getPartitionFsSize() const;
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void setPartitionFsSize(uint64_t size);
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const crypto::sha::sSha256Hash& getPartitionFsHash() const;
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void setPartitionFsHash(const crypto::sha::sSha256Hash& hash);
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const crypto::sha::sSha256Hash& getInitialDataHash() const;
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void setInitialDataHash(const crypto::sha::sSha256Hash& hash);
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uint32_t getSelSec() const;
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void setSelSec(uint32_t sel_sec);
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uint32_t getSelT1Key() const;
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void setSelT1Key(uint32_t sel_t1_key);
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uint32_t getSelKey() const;
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void setSelKey(uint32_t sel_key);
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uint32_t getLimAreaPage() const;
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void setLimAreaPage(uint32_t page);
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uint32_t getFwVerMajor() const;
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void setFwVerMajor(uint32_t ver);
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uint32_t getFwVerMinor() const;
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void setFwVerMinor(uint32_t ver);
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uint32_t getAccCtrl1() const;
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void setAccCtrl1(uint32_t acc_ctrl_1);
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uint32_t getWait1TimeRead() const;
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void setWait1TimeRead(uint32_t seconds);
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uint32_t getWait2TimeRead() const;
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void setWait2TimeRead(uint32_t seconds);
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uint32_t getWait1TimeWrite() const;
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void setWait1TimeWrite(uint32_t seconds);
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uint32_t getWait2TimeWrite() const;
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void setWait2TimeWrite(uint32_t seconds);
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uint32_t getFwMode() const;
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void setFwMode(uint32_t fw_mode);
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uint32_t getUppVersion() const;
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void setUppVersion(uint32_t version);
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const byte_t* getUppHash() const;
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void setUppHash(const byte_t* hash);
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uint64_t getUppId() const;
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void setUppId(uint64_t id);
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private:
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const std::string kModuleName = "XCI_HEADER";
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// binary
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fnd::MemoryBlob mBinaryBlob;
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// data
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uint32_t mRomAreaStartPage;
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uint32_t mBackupAreaStartPage;
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byte_t mKekIndex;
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byte_t mTitleKeyDecIndex;
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byte_t mRomSize;
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byte_t mCardHeaderVersion;
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byte_t mFlags;
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uint64_t mPackageId;
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uint32_t mValidDataEndPage;
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crypto::aes::sAesIvCtr mAesCbcIv;
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uint64_t mPartitionFsHeaderAddress;
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uint64_t mPartitionFsHeaderSize;
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crypto::sha::sSha256Hash mPartitionFsHeaderHash;
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crypto::sha::sSha256Hash mInitialDataHash;
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uint32_t mSelSec;
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uint32_t mSelT1Key;
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uint32_t mSelKey;
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uint32_t mLimAreaPage;
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// Encrypted Data
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uint32_t mFwVersion[2];
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uint32_t mAccCtrl1;
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uint32_t mWait1TimeRead;
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uint32_t mWait2TimeRead;
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uint32_t mWait1TimeWrite;
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uint32_t mWait2TimeWrite;
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uint32_t mFwMode;
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uint32_t mUppVersion;
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byte_t mUppHash[8];
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uint64_t mUppId;
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// helpers
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bool isEqual(const XciHeader& other) const;
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void copyFrom(const XciHeader& other);
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};
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} |