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[es] Add es::SignatureBlock
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53
lib/libes/include/es/SignatureBlock.h
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53
lib/libes/include/es/SignatureBlock.h
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#pragma once
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#include <string>
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#include <fnd/MemoryBlob.h>
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#include <fnd/ISerialiseableBinary.h>
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#include <es/sign.h>
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namespace es
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{
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class SignatureBlock
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: public fnd::ISerialiseableBinary
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{
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public:
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SignatureBlock();
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SignatureBlock(const SignatureBlock& other);
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void operator=(const SignatureBlock& other);
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bool operator==(const SignatureBlock& other) const;
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bool operator!=(const SignatureBlock& other) const;
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void importBinary(byte_t* src, size_t size);
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void exportBinary();
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const byte_t* getBytes() const;
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size_t getSize() const;
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void clear();
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es::sign::SignType getSignType() const;
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void setSignType(es::sign::SignType type);
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bool isLittleEndian() const;
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void setLittleEndian(bool isLE);
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const fnd::MemoryBlob& getSignature() const;
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void setSignature(const fnd::MemoryBlob& signature);
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private:
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const std::string kModuleName = "SIGNATURE_BLOCK";
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// raw binary
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fnd::MemoryBlob mBinaryBlob;
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// variables
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es::sign::SignType mSignType;
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bool mIsLittleEndian;
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fnd::MemoryBlob mSignature;
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// helpers
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bool isEqual(const SignatureBlock& other) const;
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void copyFrom(const SignatureBlock& other);
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};
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}
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197
lib/libes/source/SignatureBlock.cpp
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197
lib/libes/source/SignatureBlock.cpp
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#include <es/SignatureBlock.h>
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es::SignatureBlock::SignatureBlock()
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{
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clear();
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}
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es::SignatureBlock::SignatureBlock(const SignatureBlock& other)
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{
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copyFrom(other);
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}
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void es::SignatureBlock::operator=(const SignatureBlock& other)
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{
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copyFrom(other);
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}
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bool es::SignatureBlock::operator==(const SignatureBlock& other) const
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{
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return isEqual(other);
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}
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bool es::SignatureBlock::operator!=(const SignatureBlock& other) const
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{
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return !(*this == other);
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}
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void es::SignatureBlock::importBinary(byte_t* src, size_t size)
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{
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clear();
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size_t totalSize = 0;
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size_t sigSize = 0;
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uint32_t signType = 0;
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// try Big Endian sign type
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signType = ((be_uint32_t*)src)->get();
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switch (signType)
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{
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case (sign::SIGN_RSA4096_SHA1):
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case (sign::SIGN_RSA4096_SHA256):
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totalSize = sizeof(sRsa4096SignBlock);
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sigSize = crypto::rsa::kRsa4096Size;
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break;
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case (sign::SIGN_RSA2048_SHA1):
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case (sign::SIGN_RSA2048_SHA256):
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totalSize = sizeof(sRsa2048SignBlock);
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sigSize = crypto::rsa::kRsa2048Size;
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break;
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case (sign::SIGN_ECDSA240_SHA1):
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case (sign::SIGN_ECDSA240_SHA256):
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totalSize = sizeof(sEcdsa240SignBlock);
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sigSize = sign::kEcdsaSigSize;
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break;
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}
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// try Big Endian sign type
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if (totalSize == 0)
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{
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signType = ((le_uint32_t*)src)->get();
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switch (signType)
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{
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case (sign::SIGN_RSA4096_SHA1):
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case (sign::SIGN_RSA4096_SHA256):
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totalSize = sizeof(sRsa4096SignBlock);
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sigSize = crypto::rsa::kRsa4096Size;
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break;
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case (sign::SIGN_RSA2048_SHA1):
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case (sign::SIGN_RSA2048_SHA256):
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totalSize = sizeof(sRsa2048SignBlock);
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sigSize = crypto::rsa::kRsa2048Size;
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break;
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case (sign::SIGN_ECDSA240_SHA1):
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case (sign::SIGN_ECDSA240_SHA256):
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totalSize = sizeof(sEcdsa240SignBlock);
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sigSize = sign::kEcdsaSigSize;
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break;
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default:
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throw fnd::Exception(kModuleName, "Unknown signature type");
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}
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mIsLittleEndian = true;
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}
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if (totalSize > size)
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{
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throw fnd::Exception(kModuleName, "Certificate too small");
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}
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mBinaryBlob.alloc(totalSize);
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memcpy(mBinaryBlob.getBytes(), src, totalSize);
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mSignType = (sign::SignType)signType;
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mSignature.alloc(sigSize);
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memcpy(mSignature.getBytes(), mBinaryBlob.getBytes() + 4, sigSize);
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}
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void es::SignatureBlock::exportBinary()
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{
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size_t totalSize = 0;
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size_t sigSize = 0;
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switch (mSignType)
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{
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case (sign::SIGN_RSA4096_SHA1):
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case (sign::SIGN_RSA4096_SHA256):
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totalSize = sizeof(sRsa4096SignBlock);
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sigSize = crypto::rsa::kRsa4096Size;
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break;
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case (sign::SIGN_RSA2048_SHA1):
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case (sign::SIGN_RSA2048_SHA256):
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totalSize = sizeof(sRsa2048SignBlock);
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sigSize = crypto::rsa::kRsa2048Size;
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break;
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case (sign::SIGN_ECDSA240_SHA1):
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case (sign::SIGN_ECDSA240_SHA256):
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totalSize = sizeof(sEcdsa240SignBlock);
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sigSize = sign::kEcdsaSigSize;
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break;
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default:
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throw fnd::Exception(kModuleName, "Unknown signature type");
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}
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if (mSignature.getSize() != sigSize)
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throw fnd::Exception(kModuleName, "Signature size is incorrect");
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// commit to binary
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mBinaryBlob.alloc(totalSize);
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if (mIsLittleEndian)
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*(le_uint32_t*)(mBinaryBlob.getBytes()) = mSignType;
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else
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*(be_uint32_t*)(mBinaryBlob.getBytes()) = mSignType;
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memcpy(mBinaryBlob.getBytes() + 4, mSignature.getBytes(), sigSize);
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}
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const byte_t* es::SignatureBlock::getBytes() const
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{
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return mBinaryBlob.getBytes();
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}
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size_t es::SignatureBlock::getSize() const
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{
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return mBinaryBlob.getSize();
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}
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void es::SignatureBlock::clear()
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{
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mBinaryBlob.clear();
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mSignType = sign::SIGN_RSA4096_SHA1;
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mIsLittleEndian = false;
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mSignature.clear();
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}
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es::sign::SignType es::SignatureBlock::getSignType() const
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{
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return mSignType;
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}
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void es::SignatureBlock::setSignType(es::sign::SignType type)
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{
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mSignType = type;
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}
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bool es::SignatureBlock::isLittleEndian() const
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{
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return mIsLittleEndian;
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}
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void es::SignatureBlock::setLittleEndian(bool isLE)
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{
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mIsLittleEndian = isLE;
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}
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const fnd::MemoryBlob& es::SignatureBlock::getSignature() const
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{
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return mSignature;
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}
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void es::SignatureBlock::setSignature(const fnd::MemoryBlob& signature)
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{
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mSignature = signature;
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}
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bool es::SignatureBlock::isEqual(const SignatureBlock& other) const
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{
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return (mSignType == other.mSignType) \
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&& (mIsLittleEndian == other.mIsLittleEndian) \
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&& (mSignature == other.mSignature);
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}
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void es::SignatureBlock::copyFrom(const SignatureBlock& other)
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{
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mBinaryBlob = other.mBinaryBlob;
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mSignType = other.mSignType;
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mIsLittleEndian = other.mIsLittleEndian;
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mSignature = other.mSignature;
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}
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