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https://github.com/shadps4-emu/ext-cryptopp.git
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5603661eec
We tweaked ChaCha to arrive at the IETF's implementation specified by RFC 7539. We are not sure how to handle block counter wrap. At the moment the caller is responsible for managing it. We were not able to find a reference implementation so we disable SIMD implementations like SSE, AVX, NEON and Power4. We need the wide block tests for corner cases to ensure our implementation is correct.
103 lines
3.6 KiB
C++
103 lines
3.6 KiB
C++
// regtest2.cpp - originally written and placed in the public domain by Wei Dai
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// regtest.cpp split into 3 files due to OOM kills by JW
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// in April 2017. A second split occured in July 2018.
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#define CRYPTOPP_ENABLE_NAMESPACE_WEAK 1
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#include "cryptlib.h"
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#include "factory.h"
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#include "bench.h"
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#include "cpu.h"
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// For MAC's
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#include "hmac.h"
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#include "cmac.h"
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#include "dmac.h"
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#include "vmac.h"
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#include "ttmac.h"
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// Ciphers
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#include "md5.h"
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#include "keccak.h"
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#include "sha.h"
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#include "sha3.h"
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#include "blake2.h"
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#include "ripemd.h"
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#include "poly1305.h"
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#include "siphash.h"
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#include "panama.h"
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// Stream ciphers
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#include "arc4.h"
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#include "seal.h"
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#include "wake.h"
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#include "chacha.h"
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#include "salsa.h"
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#include "rabbit.h"
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#include "hc128.h"
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#include "hc256.h"
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#include "panama.h"
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#include "sosemanuk.h"
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// Block for CMAC
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#include "aes.h"
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#include "des.h"
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// Aggressive stack checking with VS2005 SP1 and above.
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#if (_MSC_FULL_VER >= 140050727)
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# pragma strict_gs_check (on)
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#endif
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#if CRYPTOPP_MSC_VERSION
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# pragma warning(disable: 4505 4355)
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#endif
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USING_NAMESPACE(CryptoPP)
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// MAC ciphers
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void RegisterFactories2()
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{
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RegisterDefaultFactoryFor<MessageAuthenticationCode, HMAC<Weak::MD5> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, HMAC<RIPEMD160> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, HMAC<SHA1> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, HMAC<SHA224> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, HMAC<SHA256> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, HMAC<SHA384> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, HMAC<SHA512> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, TTMAC>();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, VMAC<AES> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, VMAC<AES, 64> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, Weak::PanamaMAC<LittleEndian> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, Weak::PanamaMAC<BigEndian> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, CMAC<AES> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, DMAC<AES> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, Poly1305<AES> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, CMAC<DES_EDE3> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, BLAKE2s>();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, BLAKE2b>();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, SipHash<2,4> >();
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RegisterDefaultFactoryFor<MessageAuthenticationCode, SipHash<4,8> >();
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}
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// Stream ciphers
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void RegisterFactories3()
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{
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RegisterSymmetricCipherDefaultFactories<Weak::MARC4>();
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RegisterSymmetricCipherDefaultFactories<SEAL<> >();
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RegisterSymmetricCipherDefaultFactories<SEAL<LittleEndian> >();
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RegisterSymmetricCipherDefaultFactories<WAKE_OFB<LittleEndian> >();
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RegisterSymmetricCipherDefaultFactories<WAKE_OFB<BigEndian> >();
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RegisterSymmetricCipherDefaultFactories<PanamaCipher<LittleEndian> >();
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RegisterSymmetricCipherDefaultFactories<PanamaCipher<BigEndian> >();
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RegisterSymmetricCipherDefaultFactories<Salsa20>();
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RegisterSymmetricCipherDefaultFactories<XSalsa20>();
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RegisterSymmetricCipherDefaultFactories<ChaCha>();
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RegisterSymmetricCipherDefaultFactories<ChaChaTLS>();
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RegisterSymmetricCipherDefaultFactories<Sosemanuk>();
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RegisterSymmetricCipherDefaultFactories<Rabbit>();
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RegisterSymmetricCipherDefaultFactories<RabbitWithIV>();
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RegisterSymmetricCipherDefaultFactories<HC128>();
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RegisterSymmetricCipherDefaultFactories<HC256>();
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}
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