mirror of
https://github.com/shadps4-emu/ext-cryptopp.git
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186 lines
5.1 KiB
C++
186 lines
5.1 KiB
C++
// authenc.cpp - originally written and placed in the public domain by Wei Dai
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#include "pch.h"
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#ifndef CRYPTOPP_IMPORTS
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#include "authenc.h"
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NAMESPACE_BEGIN(CryptoPP)
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void AuthenticatedSymmetricCipherBase::AuthenticateData(const byte *input, size_t len)
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{
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// UBsan finding with -std=c++03 using memcpy
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CRYPTOPP_ASSERT(input && len);
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if(!input || !len) return;
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unsigned int blockSize = AuthenticationBlockSize();
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unsigned int &num = m_bufferedDataLength;
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byte* data = m_buffer.begin();
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if (data && num) // process left over data
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{
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if (num+len >= blockSize)
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{
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memcpy(data+num, input, blockSize-num);
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AuthenticateBlocks(data, blockSize);
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input += (blockSize-num);
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len -= (blockSize-num);
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num = 0;
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// drop through and do the rest
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}
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else
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{
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memcpy(data+num, input, len);
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num += (unsigned int)len;
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return;
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}
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}
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// now process the input data in blocks of blockSize bytes and save the leftovers to m_data
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if (len >= blockSize)
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{
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size_t leftOver = AuthenticateBlocks(input, len);
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input += (len - leftOver);
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len = leftOver;
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}
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if (data && len)
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memcpy(data, input, len);
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num = (unsigned int)len;
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}
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void AuthenticatedSymmetricCipherBase::SetKey(const byte *userKey, size_t keylength, const NameValuePairs ¶ms)
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{
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m_bufferedDataLength = 0;
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m_state = State_Start;
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this->SetKeyWithoutResync(userKey, keylength, params);
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m_state = State_KeySet;
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size_t length;
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const byte *iv = GetIVAndThrowIfInvalid(params, length);
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if (iv)
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Resynchronize(iv, (int)length);
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}
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void AuthenticatedSymmetricCipherBase::Resynchronize(const byte *iv, int length)
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{
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if (m_state < State_KeySet)
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throw BadState(AlgorithmName(), "Resynchronize", "key is set");
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m_bufferedDataLength = 0;
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m_totalHeaderLength = m_totalMessageLength = m_totalFooterLength = 0;
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m_state = State_KeySet;
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Resync(iv, this->ThrowIfInvalidIVLength(length));
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m_state = State_IVSet;
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}
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void AuthenticatedSymmetricCipherBase::Update(const byte *input, size_t length)
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{
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// Part of original authenc.cpp code. Don't remove it.
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if (length == 0) {return;}
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switch (m_state)
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{
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case State_Start:
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case State_KeySet:
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throw BadState(AlgorithmName(), "Update", "setting key and IV");
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case State_IVSet:
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AuthenticateData(input, length);
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m_totalHeaderLength += length;
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break;
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case State_AuthUntransformed:
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case State_AuthTransformed:
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AuthenticateLastConfidentialBlock();
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m_bufferedDataLength = 0;
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m_state = State_AuthFooter;
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// fall through
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case State_AuthFooter:
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AuthenticateData(input, length);
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m_totalFooterLength += length;
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break;
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default:
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CRYPTOPP_ASSERT(false);
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}
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}
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void AuthenticatedSymmetricCipherBase::ProcessData(byte *outString, const byte *inString, size_t length)
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{
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if (m_state >= State_IVSet && length > MaxMessageLength()-m_totalMessageLength)
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throw InvalidArgument(AlgorithmName() + ": message length exceeds maximum");
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m_totalMessageLength += length;
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reswitch:
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switch (m_state)
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{
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case State_Start:
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case State_KeySet:
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throw BadState(AlgorithmName(), "ProcessData", "setting key and IV");
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case State_AuthFooter:
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throw BadState(AlgorithmName(), "ProcessData was called after footer input has started");
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case State_IVSet:
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AuthenticateLastHeaderBlock();
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m_bufferedDataLength = 0;
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m_state = AuthenticationIsOnPlaintext()==IsForwardTransformation() ? State_AuthUntransformed : State_AuthTransformed;
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goto reswitch;
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case State_AuthUntransformed:
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AuthenticateData(inString, length);
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AccessSymmetricCipher().ProcessData(outString, inString, length);
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break;
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case State_AuthTransformed:
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AccessSymmetricCipher().ProcessData(outString, inString, length);
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AuthenticateData(outString, length);
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break;
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default:
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CRYPTOPP_ASSERT(false);
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}
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}
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void AuthenticatedSymmetricCipherBase::TruncatedFinal(byte *mac, size_t macSize)
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{
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if (m_totalHeaderLength > MaxHeaderLength())
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throw InvalidArgument(AlgorithmName() + ": header length of " + IntToString(m_totalHeaderLength) + " exceeds the maximum of " + IntToString(MaxHeaderLength()));
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if (m_totalFooterLength > MaxFooterLength())
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{
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if (MaxFooterLength() == 0)
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throw InvalidArgument(AlgorithmName() + ": additional authenticated data (AAD) cannot be input after data to be encrypted or decrypted");
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else
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throw InvalidArgument(AlgorithmName() + ": footer length of " + IntToString(m_totalFooterLength) + " exceeds the maximum of " + IntToString(MaxFooterLength()));
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}
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switch (m_state)
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{
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case State_Start:
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case State_KeySet:
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throw BadState(AlgorithmName(), "TruncatedFinal", "setting key and IV");
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case State_IVSet:
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AuthenticateLastHeaderBlock();
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m_bufferedDataLength = 0;
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// fall through
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case State_AuthUntransformed:
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case State_AuthTransformed:
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AuthenticateLastConfidentialBlock();
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m_bufferedDataLength = 0;
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// fall through
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case State_AuthFooter:
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AuthenticateLastFooterBlock(mac, macSize);
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m_bufferedDataLength = 0;
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break;
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default:
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CRYPTOPP_ASSERT(false);
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}
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m_state = State_KeySet;
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}
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NAMESPACE_END
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#endif
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