mirror of
https://github.com/shadps4-emu/ext-cryptopp.git
synced 2024-11-30 13:20:30 +00:00
394 lines
11 KiB
C++
394 lines
11 KiB
C++
// validate.h - originally written and placed in the public domain by Wei Dai
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// CryptoPP::Test namespace added by JW in February 2017
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#ifndef CRYPTOPP_VALIDATE_H
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#define CRYPTOPP_VALIDATE_H
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#include "cryptlib.h"
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#include "misc.h"
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#include "files.h"
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#include "argnames.h"
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#include "algparam.h"
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#include "hex.h"
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#include <iostream>
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#include <sstream>
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#include <iomanip>
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#include <ctime>
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#include <cctype>
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NAMESPACE_BEGIN(CryptoPP)
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NAMESPACE_BEGIN(Test)
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// A hint to help locate TestData/ and TestVectors/ after install. Due to
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// execve the path can be malicious. If the path is ficticous then we move
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// onto the next potential path. Also note we only read from the path; we
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// never write through it. Storage for the string is in test.cpp.
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extern std::string g_argvPathHint;
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bool ValidateAll(bool thorough);
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bool TestSettings();
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bool TestOS_RNG();
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// bool TestSecRandom();
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bool TestRandomPool();
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#if !defined(NO_OS_DEPENDENCE)
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bool TestAutoSeededX917();
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#endif
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#if (CRYPTOPP_BOOL_X86 || CRYPTOPP_BOOL_X32 || CRYPTOPP_BOOL_X64)
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bool TestRDRAND();
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bool TestRDSEED();
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bool TestPadlockRNG();
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#endif
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#if (CRYPTOPP_BOOL_PPC32 || CRYPTOPP_BOOL_PPC64)
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bool TestDARN();
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#endif
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bool ValidateBaseCode();
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bool ValidateEncoder();
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bool ValidateCRC32();
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bool ValidateCRC32C();
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bool ValidateAdler32();
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bool ValidateMD2();
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bool ValidateMD4();
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bool ValidateMD5();
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bool ValidateSHA();
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bool ValidateSHA2();
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bool ValidateSHA3();
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bool ValidateSHAKE(); // output <= r, where r is blocksize
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bool ValidateSHAKE_XOF(); // output > r, needs hand crafted tests
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bool ValidateKeccak();
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bool ValidateTiger();
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bool ValidateRIPEMD();
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bool ValidatePanama();
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bool ValidateWhirlpool();
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bool ValidateSM3();
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bool ValidateBLAKE2s();
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bool ValidateBLAKE2b();
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bool ValidatePoly1305();
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bool ValidateSipHash();
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bool ValidateHMAC();
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bool ValidateTTMAC();
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bool ValidateCipherModes();
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bool ValidatePBKDF();
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bool ValidateHKDF();
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bool ValidateScrypt();
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bool ValidateDES();
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bool ValidateIDEA();
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bool ValidateSAFER();
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bool ValidateRC2();
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bool ValidateARC4();
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bool ValidateRC5();
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bool ValidateBlowfish();
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bool ValidateBlowfishCompat();
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bool ValidateThreeWay();
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bool ValidateGOST();
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bool ValidateSHARK();
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bool ValidateSEAL();
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bool ValidateCAST();
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bool ValidateSquare();
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bool ValidateSKIPJACK();
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bool ValidateRC6();
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bool ValidateMARS();
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bool ValidateRijndael();
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bool ValidateTwofish();
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bool ValidateSerpent();
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bool ValidateSHACAL2();
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bool ValidateARIA();
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bool ValidateSIMECK();
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bool ValidateCHAM();
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bool ValidateHIGHT();
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bool ValidateLEA();
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bool ValidateSIMON();
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bool ValidateSPECK();
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bool ValidateCamellia();
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bool ValidateHC128();
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bool ValidateHC256();
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bool ValidateRabbit();
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bool ValidateSalsa();
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bool ValidateChaCha();
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bool ValidateChaChaTLS();
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bool ValidateSosemanuk();
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bool ValidateVMAC();
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bool ValidateCCM();
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bool ValidateGCM();
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bool ValidateXTS();
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bool ValidateCMAC();
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bool ValidateBBS();
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bool ValidateDH();
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bool ValidateMQV();
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bool ValidateHMQV();
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bool ValidateFHMQV();
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bool ValidateRSA();
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bool ValidateElGamal();
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bool ValidateDLIES();
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bool ValidateNR();
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bool ValidateDSA(bool thorough);
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bool ValidateLUC();
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bool ValidateLUC_DL();
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bool ValidateLUC_DH();
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bool ValidateXTR_DH();
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bool ValidateRabin();
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bool ValidateRW();
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bool ValidateECP();
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bool ValidateEC2N();
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bool ValidateECDSA();
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bool ValidateECDSA_RFC6979();
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bool ValidateECGDSA(bool thorough);
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bool ValidateESIGN();
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bool ValidateHashDRBG();
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bool ValidateHmacDRBG();
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bool TestX25519();
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bool TestEd25519();
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bool ValidateX25519();
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bool ValidateEd25519();
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bool ValidateNaCl();
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// If CRYPTOPP_DEBUG or CRYPTOPP_COVERAGE is in effect, then perform additional tests
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#if (defined(CRYPTOPP_DEBUG) || defined(CRYPTOPP_COVERAGE)) && !defined(CRYPTOPP_IMPORTS)
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# define CRYPTOPP_EXTENDED_VALIDATION 1
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#endif
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#if defined(CRYPTOPP_EXTENDED_VALIDATION)
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// http://github.com/weidai11/cryptopp/issues/92
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bool TestSecBlock();
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// http://github.com/weidai11/cryptopp/issues/64
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bool TestPolynomialMod2();
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// http://github.com/weidai11/cryptopp/issues/336
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bool TestIntegerBitops();
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// http://github.com/weidai11/cryptopp/issues/602
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bool TestIntegerOps();
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// http://github.com/weidai11/cryptopp/issues/360
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bool TestRounding();
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// http://github.com/weidai11/cryptopp/issues/242
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bool TestHuffmanCodes();
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// http://github.com/weidai11/cryptopp/issues/346
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bool TestASN1Parse();
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// https://github.com/weidai11/cryptopp/pull/334
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bool TestStringSink();
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// Additional tests due to no coverage
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bool TestCompressors();
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bool TestEncryptors();
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bool TestMersenne();
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bool TestSharing();
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# if defined(CRYPTOPP_ALTIVEC_AVAILABLE)
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bool TestAltivecOps();
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# endif
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#endif
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class FixedRNG : public RandomNumberGenerator
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{
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public:
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FixedRNG(BufferedTransformation &source) : m_source(source) {}
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void GenerateBlock(byte *output, size_t size)
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{
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m_source.Get(output, size);
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}
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private:
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BufferedTransformation &m_source;
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};
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// Safer functions on Windows for C&A, http://github.com/weidai11/cryptopp/issues/55
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inline std::string TimeToString(const time_t& t)
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{
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#if (CRYPTOPP_MSC_VERSION >= 1400)
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tm localTime;
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char timeBuf[64];
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errno_t err;
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err = ::localtime_s(&localTime, &t);
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CRYPTOPP_ASSERT(err == 0);
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err = ::asctime_s(timeBuf, sizeof(timeBuf), &localTime);
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CRYPTOPP_ASSERT(err == 0);
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std::string str(err == 0 ? timeBuf : "");
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#elif defined(__MINGW32__) || defined(__MINGW64__)
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char* timeString = ::asctime(::localtime(&t));
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std::string str(timeString ? timeString : "");
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#elif (_POSIX_C_SOURCE >= 1 || _XOPEN_SOURCE || _BSD_SOURCE || _SVID_SOURCE || defined(_POSIX_SOURCE))
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tm localTime;
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char timeBuf[64];
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char* timeString = ::asctime_r(::localtime_r(&t, &localTime), timeBuf);
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std::string str(timeString ? timeString : "");
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#else
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char* timeString = ::asctime(::localtime(&t));
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std::string str(timeString ? timeString : "");
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#endif
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// Cleanup whitespace
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std::string::size_type pos = 0;
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while (!str.empty() && std::isspace(str[str.length()-1]))
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{str.erase(str.end()-1);}
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while (!str.empty() && std::string::npos != (pos = str.find(" ", pos)))
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{str.erase(pos, 1);}
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return str;
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}
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// Coverity finding
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template <class T, bool NON_NEGATIVE>
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inline T StringToValue(const std::string& str)
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{
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std::istringstream iss(str);
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// Arbitrary, but we need to clear a Coverity finding TAINTED_SCALAR
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if (iss.str().length() > 25)
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throw InvalidArgument(str + "' is too long");
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T value;
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iss >> std::noskipws >> value;
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// Use fail(), not bad()
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if (iss.fail())
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throw InvalidArgument(str + "' is not a value");
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if (NON_NEGATIVE && value < 0)
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throw InvalidArgument(str + "' is negative");
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return value;
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}
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// Coverity finding
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template<>
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inline int StringToValue<int, true>(const std::string& str)
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{
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Integer n(str.c_str());
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long l = n.ConvertToLong();
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int r;
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if (!SafeConvert(l, r))
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throw InvalidArgument(str + "' is not an integer value");
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return r;
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}
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inline std::string AddSeparator(std::string str)
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{
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if (str.empty()) return "";
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const char last = str[str.length()-1];
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if (last != '/' && last != '\\')
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return str + "/";
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return str;
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}
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// Use CRYPTOPP_DATA_DIR last. The problem this sidesteps is, finding an
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// old version of Crypto++ library in CRYPTOPP_DATA_DIR when the library
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// has been staged in DESTDIR. Using CRYPTOPP_DATA_DIR first only works
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// as expected when CRYPTOPP_DATA_DIR is empty before an install. We
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// encountered this problem rather quickly during testing of Crypto++ 8.1
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// when Crypto++ 8.0 was installed locally. It took some time to realize
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// where the old test data was coming from.
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static std::string GetDataDir()
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{
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std::ifstream file;
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std::string name, filename = "TestData/usage.dat";
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#ifndef CRYPTOPP_DISABLE_DATA_DIR_SEARCH
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// Look in $ORIGIN/../share/. This is likely a Linux install directory.
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name = AddSeparator(g_argvPathHint) + std::string("../share/cryptopp/") + filename;
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file.open(name.c_str());
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if (file.is_open())
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return AddSeparator(g_argvPathHint) + std::string("../share/cryptopp/");
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#endif
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#ifndef CRYPTOPP_DISABLE_DATA_DIR_SEARCH
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// Look in current working directory
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name = AddSeparator(g_argvPathHint) + filename;
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file.open(name.c_str());
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if (file.is_open())
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return AddSeparator(g_argvPathHint);
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#endif
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#ifdef CRYPTOPP_DATA_DIR
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// Honor CRYPTOPP_DATA_DIR. This is likely an install directory if it is not "./".
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name = AddSeparator(CRYPTOPP_DATA_DIR) + filename;
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file.open(name.c_str());
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if (file.is_open())
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return AddSeparator(CRYPTOPP_DATA_DIR);
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#endif
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return "./";
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}
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inline std::string DataDir(const std::string& filename)
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{
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std::string name;
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std::ifstream file;
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#if CRYPTOPP_CXX11_STATIC_INIT
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static std::string path = AddSeparator(GetDataDir());
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name = path + filename;
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file.open(name.c_str());
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if (file.is_open())
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return name;
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#else
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// Avoid static initialization problems
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name = AddSeparator(GetDataDir()) + filename;
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file.open(name.c_str());
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if (file.is_open())
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return name;
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#endif
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// This will cause the expected exception in the caller
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return filename;
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}
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// Definition in test.cpp
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RandomNumberGenerator& GlobalRNG();
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// Definition in datatest.cpp
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bool RunTestDataFile(const char *filename, const NameValuePairs &overrideParameters=g_nullNameValuePairs, bool thorough=true);
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// Definitions in validat6.cpp
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bool CryptoSystemValidate(PK_Decryptor &priv, PK_Encryptor &pub, bool thorough = false);
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bool SimpleKeyAgreementValidate(SimpleKeyAgreementDomain &d);
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bool AuthenticatedKeyAgreementWithRolesValidate(AuthenticatedKeyAgreementDomain &initiator, AuthenticatedKeyAgreementDomain &recipient);
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bool AuthenticatedKeyAgreementValidate(AuthenticatedKeyAgreementDomain &d);
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bool SignatureValidate(PK_Signer &priv, PK_Verifier &pub, bool thorough = false);
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// Miscellaneous PK definitions in validat6.cpp
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// Key Agreement definitions in validat7.cpp
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// Encryption and Decryption definitions in validat8.cpp
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// Sign and Verify definitions in validat9.cpp
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bool ValidateECP();
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bool ValidateEC2N();
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bool ValidateRSA_Encrypt();
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bool ValidateRSA_Sign();
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bool ValidateLUC_Encrypt();
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bool ValidateLUC_Sign();
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bool ValidateLUC_DL_Encrypt();
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bool ValidateLUC_DL_Sign();
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bool ValidateRabin_Encrypt();
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bool ValidateRabin_Sign();
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bool ValidateECP();
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bool ValidateECP_Agreement();
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bool ValidateECP_Encrypt();
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bool ValidateECP_Sign();
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bool ValidateECP_Legacy_Encrypt();
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bool ValidateEC2N_Legacy_Encrypt();
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bool ValidateECP_NULLDigest_Encrypt();
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bool ValidateEC2N();
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bool ValidateEC2N_Agreement();
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bool ValidateEC2N_Encrypt();
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bool ValidateEC2N_Sign();
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NAMESPACE_END // Test
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NAMESPACE_END // CryptoPP
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#endif
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