Bitcoin Core  31.0.0
P2P Digital Currency
crypter.cpp
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1 // Copyright (c) 2022-present 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 
6 #include <test/fuzz/fuzz.h>
7 #include <test/fuzz/util.h>
9 #include <wallet/crypter.h>
10 
11 namespace wallet {
12 namespace {
13 
14 void initialize_crypter()
15 {
16  static const auto testing_setup = MakeNoLogFileContext<const TestingSetup>();
17 }
18 
19 FUZZ_TARGET(crypter, .init = initialize_crypter)
20 {
22  FuzzedDataProvider fuzzed_data_provider(buffer.data(), buffer.size());
23  bool good_data{true};
24 
25  CCrypter crypt;
26  // These values are regularly updated within `CallOneOf`
27  std::vector<unsigned char> cipher_text_ed;
28  CKeyingMaterial plain_text_ed;
29  const std::vector<unsigned char> random_key = ConsumeFixedLengthByteVector(fuzzed_data_provider, WALLET_CRYPTO_KEY_SIZE);
30 
33  SecureString secure_string(random_string.begin(), random_string.end());
34 
35  const unsigned int derivation_method = fuzzed_data_provider.ConsumeBool() ? 0 : fuzzed_data_provider.ConsumeIntegral<unsigned int>();
36 
37  // Limiting the value of rounds since it is otherwise uselessly expensive and causes a timeout when fuzzing.
38  crypt.SetKeyFromPassphrase(/*key_data=*/secure_string,
41  /*derivation_method=*/derivation_method);
42  }
43 
44  CKey random_ckey;
45  random_ckey.Set(random_key.begin(), random_key.end(), /*fCompressedIn=*/fuzzed_data_provider.ConsumeBool());
46  if (!random_ckey.IsValid()) return;
47  CPubKey pubkey{random_ckey.GetPubKey()};
48 
50  {
51  CallOneOf(
53  [&] {
54  const std::vector<unsigned char> random_vector = ConsumeFixedLengthByteVector(fuzzed_data_provider, WALLET_CRYPTO_KEY_SIZE);
55  plain_text_ed = CKeyingMaterial(random_vector.begin(), random_vector.end());
56  },
57  [&] {
59  },
60  [&] {
61  (void)crypt.Encrypt(plain_text_ed, cipher_text_ed);
62  },
63  [&] {
64  (void)crypt.Decrypt(cipher_text_ed, plain_text_ed);
65  },
66  [&] {
67  const CKeyingMaterial master_key(random_key.begin(), random_key.end());;
68  (void)EncryptSecret(master_key, plain_text_ed, pubkey.GetHash(), cipher_text_ed);
69  },
70  [&] {
71  std::optional<CPubKey> random_pub_key{ConsumeDeserializable<CPubKey>(fuzzed_data_provider)};
72  if (!random_pub_key) {
73  good_data = false;
74  return;
75  }
76  pubkey = *random_pub_key;
77  },
78  [&] {
79  const CKeyingMaterial master_key(random_key.begin(), random_key.end());
80  CKey key;
81  (void)DecryptKey(master_key, cipher_text_ed, pubkey, key);
82  });
83  }
84 }
85 } // namespace
86 } // namespace wallet
std::vector< B > ConsumeFixedLengthByteVector(FuzzedDataProvider &fuzzed_data_provider, const size_t length) noexcept
Returns a byte vector of specified size regardless of the number of remaining bytes available from th...
Definition: util.h:252
CPubKey GetPubKey() const
Compute the public key from a private key.
Definition: key.cpp:183
FUZZ_TARGET(coin_grinder)
std::basic_string< char, std::char_traits< char >, secure_allocator< char > > SecureString
Definition: secure.h:53
#define LIMITED_WHILE(condition, limit)
Can be used to limit a theoretically unbounded loop.
Definition: fuzz.h:22
std::vector< B > ConsumeRandomLengthByteVector(FuzzedDataProvider &fuzzed_data_provider, const std::optional< size_t > &max_length=std::nullopt) noexcept
Definition: util.h:57
std::string random_string(uint32_t length)
Definition: test_kernel.cpp:29
bool DecryptKey(const CKeyingMaterial &master_key, const std::span< const unsigned char > crypted_secret, const CPubKey &pub_key, CKey &key)
Definition: crypter.cpp:132
std::string ConsumeRandomLengthString(size_t max_length)
An encapsulated public key.
Definition: pubkey.h:33
void Set(const T pbegin, const T pend, bool fCompressedIn)
Initialize using begin and end iterators to byte data.
Definition: key.h:104
void SeedRandomStateForTest(SeedRand seedtype)
Seed the global RNG state for testing and log the seed value.
Definition: random.cpp:19
bool EncryptSecret(const CKeyingMaterial &vMasterKey, const CKeyingMaterial &vchPlaintext, const uint256 &nIV, std::vector< unsigned char > &vchCiphertext)
Definition: crypter.cpp:111
static constexpr unsigned int DEFAULT_DERIVE_ITERATIONS
Default/minimum number of key derivation rounds.
Definition: crypter.h:48
FuzzedDataProvider & fuzzed_data_provider
Definition: fees.cpp:38
const unsigned int WALLET_CRYPTO_KEY_SIZE
Definition: crypter.h:14
size_t CallOneOf(FuzzedDataProvider &fuzzed_data_provider, Callables... callables)
Definition: util.h:35
An encapsulated private key.
Definition: key.h:35
T ConsumeIntegralInRange(T min, T max)
Seed with a compile time constant of zeros.
const unsigned int WALLET_CRYPTO_SALT_SIZE
Definition: crypter.h:15
std::vector< unsigned char, secure_allocator< unsigned char > > CKeyingMaterial
Definition: crypter.h:63
bool IsValid() const
Check whether this private key is valid.
Definition: key.h:124