PIVX Core  5.6.99
P2P Digital Currency
crypto_tests.cpp
Go to the documentation of this file.
1 // Copyright (c) 2014 The Bitcoin Core developers
2 // Distributed under the MIT software license, see the accompanying
3 // file COPYING or http://www.opensource.org/licenses/mit-license.php.
4 
5 #include "random.h"
6 #include "utilstrencodings.h"
7 #include "test/test_pivx.h"
8 #include "crypter.h"
9 
10 #include <vector>
11 
12 #include <boost/test/unit_test.hpp>
13 
15 
17 {
18 public:
19 static void TestPassphraseSingle(const std::vector<unsigned char>& vchSalt, const SecureString& passphrase, uint32_t rounds,
20  const std::vector<unsigned char>& correctKey = std::vector<unsigned char>(),
21  const std::vector<unsigned char>& correctIV=std::vector<unsigned char>())
22 {
23  CCrypter crypt;
24  crypt.SetKeyFromPassphrase(passphrase, vchSalt, rounds, 0);
25 
26  if(!correctKey.empty())
27  BOOST_CHECK_MESSAGE(memcmp(crypt.vchKey.data(), correctKey.data(), crypt.vchKey.size()) == 0,
28  HexStr(crypt.vchKey) + std::string(" != ") + HexStr(correctKey));
29  if(!correctIV.empty())
30  BOOST_CHECK_MESSAGE(memcmp(crypt.vchIV.data(), correctIV.data(), crypt.vchIV.size()) == 0,
31  HexStr(crypt.vchIV) + std::string(" != ") + HexStr(correctIV));
32 
33 }
34 
35 static void TestPassphrase(const std::vector<unsigned char>& vchSalt, const SecureString& passphrase, uint32_t rounds,
36  const std::vector<unsigned char>& correctKey = std::vector<unsigned char>(),
37  const std::vector<unsigned char>& correctIV=std::vector<unsigned char>())
38 {
39  TestPassphraseSingle(vchSalt, passphrase, rounds, correctKey, correctIV);
40  for(SecureString::const_iterator i(passphrase.begin()); i != passphrase.end(); ++i)
41  TestPassphraseSingle(vchSalt, SecureString(i, passphrase.end()), rounds);
42 }
43 
44 
45 static void TestDecrypt(const CCrypter& crypt, const std::vector<unsigned char>& vchCiphertext,
46  const std::vector<unsigned char>& vchPlaintext = std::vector<unsigned char>())
47 {
48  CKeyingMaterial vchDecrypted;
49  crypt.Decrypt(vchCiphertext, vchDecrypted);
50  if (vchPlaintext.size())
51  BOOST_CHECK(CKeyingMaterial(vchPlaintext.begin(), vchPlaintext.end()) == vchDecrypted);
52 }
53 
54 static void TestEncryptSingle(const CCrypter& crypt, const CKeyingMaterial& vchPlaintext,
55  const std::vector<unsigned char>& vchCiphertextCorrect = std::vector<unsigned char>())
56 {
57  std::vector<unsigned char> vchCiphertext;
58  crypt.Encrypt(vchPlaintext, vchCiphertext);
59 
60  if (!vchCiphertextCorrect.empty())
61  BOOST_CHECK(vchCiphertext == vchCiphertextCorrect);
62 
63  const std::vector<unsigned char> vchPlaintext2(vchPlaintext.begin(), vchPlaintext.end());
64 
65  TestDecrypt(crypt, vchCiphertext, vchPlaintext2);
66 }
67 
68 static void TestEncrypt(const CCrypter& crypt, const std::vector<unsigned char>& vchPlaintextIn, \
69  const std::vector<unsigned char>& vchCiphertextCorrect = std::vector<unsigned char>())
70 {
71  TestEncryptSingle(crypt, CKeyingMaterial(vchPlaintextIn.begin(), vchPlaintextIn.end()), vchCiphertextCorrect);
72  for(std::vector<unsigned char>::const_iterator i(vchPlaintextIn.begin()); i != vchPlaintextIn.end(); ++i)
73  TestEncryptSingle(crypt, CKeyingMaterial(i, vchPlaintextIn.end()));
74 }
75 
76 };
77 
78 BOOST_AUTO_TEST_CASE(passphrase) {
79  // These are expensive.
80 
81  TestCrypter::TestPassphrase(ParseHex("0000deadbeef0000"), "test", 25000, \
82  ParseHex("fc7aba077ad5f4c3a0988d8daa4810d0d4a0e3bcb53af662998898f33df0556a"), \
83  ParseHex("cf2f2691526dd1aa220896fb8bf7c369"));
84 
85  std::string hash(GetRandHash().ToString());
86  std::vector<unsigned char> vchSalt(8);
87  GetRandBytes(vchSalt.data(), vchSalt.size());
88  uint32_t rounds = GetRandInt(30000);
89  if (rounds > 30000)
90  rounds = 30000;
91  TestCrypter::TestPassphrase(vchSalt, SecureString(hash.begin(), hash.end()), rounds);
92 }
93 
95  std::vector<unsigned char> vchSalt = ParseHex("0000deadbeef0000");
96  BOOST_CHECK(vchSalt.size() == WALLET_CRYPTO_SALT_SIZE);
97  CCrypter crypt;
98  crypt.SetKeyFromPassphrase("passphrase", vchSalt, 25000, 0);
99  TestCrypter::TestEncrypt(crypt, ParseHex("22bcade09ac03ff6386914359cfe885cfeb5f77ff0d670f102f619687453b29d"));
100 
101  for (int i = 0; i != 100; i++)
102  {
103  uint256 hash(GetRandHash());
104  TestCrypter::TestEncrypt(crypt, std::vector<unsigned char>(hash.begin(), hash.end()));
105  }
106 
107 }
108 
110  std::vector<unsigned char> vchSalt = ParseHex("0000deadbeef0000");
111  BOOST_CHECK(vchSalt.size() == WALLET_CRYPTO_SALT_SIZE);
112  CCrypter crypt;
113  crypt.SetKeyFromPassphrase("passphrase", vchSalt, 25000, 0);
114 
115  // Some corner cases the came up while testing
116  TestCrypter::TestDecrypt(crypt,ParseHex("795643ce39d736088367822cdc50535ec6f103715e3e48f4f3b1a60a08ef59ca"));
117  TestCrypter::TestDecrypt(crypt,ParseHex("de096f4a8f9bd97db012aa9d90d74de8cdea779c3ee8bc7633d8b5d6da703486"));
118  TestCrypter::TestDecrypt(crypt,ParseHex("32d0a8974e3afd9c6c3ebf4d66aa4e6419f8c173de25947f98cf8b7ace49449c"));
119  TestCrypter::TestDecrypt(crypt,ParseHex("e7c055cca2faa78cb9ac22c9357a90b4778ded9b2cc220a14cea49f931e596ea"));
120  TestCrypter::TestDecrypt(crypt,ParseHex("b88efddd668a6801d19516d6830da4ae9811988ccbaf40df8fbb72f3f4d335fd"));
121  TestCrypter::TestDecrypt(crypt,ParseHex("8cae76aa6a43694e961ebcb28c8ca8f8540b84153d72865e8561ddd93fa7bfa9"));
122 
123  for (int i = 0; i != 100; i++)
124  {
125  uint256 hash(GetRandHash());
126  TestCrypter::TestDecrypt(crypt, std::vector<unsigned char>(hash.begin(), hash.end()));
127  }
128 }
129 
Encryption/decryption context with key information.
Definition: crypter.h:84
bool Encrypt(const CKeyingMaterial &vchPlaintext, std::vector< unsigned char > &vchCiphertext) const
Definition: crypter.cpp:71
bool SetKeyFromPassphrase(const SecureString &strKeyData, const std::vector< unsigned char > &chSalt, const unsigned int nRounds, const unsigned int nDerivationMethod)
Definition: crypter.cpp:40
bool Decrypt(const std::vector< unsigned char > &vchCiphertext, CKeyingMaterial &vchPlaintext) const
Definition: crypter.cpp:88
std::vector< unsigned char, secure_allocator< unsigned char > > vchIV
Definition: crypter.h:88
std::vector< unsigned char, secure_allocator< unsigned char > > vchKey
Definition: crypter.h:87
static void TestPassphrase(const std::vector< unsigned char > &vchSalt, const SecureString &passphrase, uint32_t rounds, const std::vector< unsigned char > &correctKey=std::vector< unsigned char >(), const std::vector< unsigned char > &correctIV=std::vector< unsigned char >())
static void TestEncrypt(const CCrypter &crypt, const std::vector< unsigned char > &vchPlaintextIn, const std::vector< unsigned char > &vchCiphertextCorrect=std::vector< unsigned char >())
static void TestDecrypt(const CCrypter &crypt, const std::vector< unsigned char > &vchCiphertext, const std::vector< unsigned char > &vchPlaintext=std::vector< unsigned char >())
static void TestPassphraseSingle(const std::vector< unsigned char > &vchSalt, const SecureString &passphrase, uint32_t rounds, const std::vector< unsigned char > &correctKey=std::vector< unsigned char >(), const std::vector< unsigned char > &correctIV=std::vector< unsigned char >())
static void TestEncryptSingle(const CCrypter &crypt, const CKeyingMaterial &vchPlaintext, const std::vector< unsigned char > &vchCiphertextCorrect=std::vector< unsigned char >())
unsigned char * end()
Definition: uint256.h:68
unsigned char * begin()
Definition: uint256.h:63
256-bit opaque blob.
Definition: uint256.h:138
std::vector< unsigned char, secure_allocator< unsigned char > > CKeyingMaterial
Definition: crypter.h:63
const unsigned int WALLET_CRYPTO_SALT_SIZE
Definition: crypter.h:19
BOOST_AUTO_TEST_SUITE_END()
#define BOOST_FIXTURE_TEST_SUITE(a, b)
Definition: object.cpp:14
#define BOOST_CHECK(expr)
Definition: object.cpp:17
void GetRandBytes(unsigned char *buf, int num) noexcept
Overall design of the RNG and entropy sources.
Definition: random.cpp:579
uint256 GetRandHash() noexcept
Definition: random.cpp:596
int GetRandInt(int nMax) noexcept
Definition: random.cpp:591
std::basic_string< char, std::char_traits< char >, secure_allocator< char > > SecureString
Definition: secure.h:61
Basic testing setup.
Definition: test_pivx.h:51
BOOST_AUTO_TEST_CASE(ripemd160_testvectors)
std::string HexStr(const Span< const uint8_t > s)
Convert a span of bytes to a lower-case hexadecimal string.
std::vector< unsigned char > ParseHex(const char *psz)