Bitcoin Core  26.1.0
P2P Digital Currency
serialize_tests.cpp
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1 // Copyright (c) 2012-2022 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 <hash.h>
6 #include <serialize.h>
7 #include <streams.h>
9 #include <util/strencodings.h>
10 
11 #include <stdint.h>
12 #include <string>
13 
14 #include <boost/test/unit_test.hpp>
15 
16 BOOST_FIXTURE_TEST_SUITE(serialize_tests, BasicTestingSetup)
17 
19 {
20 protected:
21  int intval;
22  bool boolval;
23  std::string stringval;
24  char charstrval[16];
26 public:
27  CSerializeMethodsTestSingle() = default;
28  CSerializeMethodsTestSingle(int intvalin, bool boolvalin, std::string stringvalin, const uint8_t* charstrvalin, const CTransactionRef& txvalin) : intval(intvalin), boolval(boolvalin), stringval(std::move(stringvalin)), txval(txvalin)
29  {
30  memcpy(charstrval, charstrvalin, sizeof(charstrval));
31  }
32 
34  {
35  READWRITE(obj.intval);
36  READWRITE(obj.boolval);
37  READWRITE(obj.stringval);
38  READWRITE(obj.charstrval);
39  READWRITE(obj.txval);
40  }
41 
42  bool operator==(const CSerializeMethodsTestSingle& rhs) const
43  {
44  return intval == rhs.intval &&
45  boolval == rhs.boolval &&
46  stringval == rhs.stringval &&
47  strcmp(charstrval, rhs.charstrval) == 0 &&
48  *txval == *rhs.txval;
49  }
50 };
51 
53 {
54 public:
56 
58  {
59  READWRITE(obj.intval, obj.boolval, obj.stringval, obj.charstrval, obj.txval);
60  }
61 };
62 
64 {
65  BOOST_CHECK_EQUAL(sizeof(unsigned char), GetSerializeSize((unsigned char)0, 0));
66  BOOST_CHECK_EQUAL(sizeof(int8_t), GetSerializeSize(int8_t(0), 0));
67  BOOST_CHECK_EQUAL(sizeof(uint8_t), GetSerializeSize(uint8_t(0), 0));
68  BOOST_CHECK_EQUAL(sizeof(int16_t), GetSerializeSize(int16_t(0), 0));
69  BOOST_CHECK_EQUAL(sizeof(uint16_t), GetSerializeSize(uint16_t(0), 0));
70  BOOST_CHECK_EQUAL(sizeof(int32_t), GetSerializeSize(int32_t(0), 0));
71  BOOST_CHECK_EQUAL(sizeof(uint32_t), GetSerializeSize(uint32_t(0), 0));
72  BOOST_CHECK_EQUAL(sizeof(int64_t), GetSerializeSize(int64_t(0), 0));
73  BOOST_CHECK_EQUAL(sizeof(uint64_t), GetSerializeSize(uint64_t(0), 0));
74  // Bool is serialized as uint8_t
75  BOOST_CHECK_EQUAL(sizeof(uint8_t), GetSerializeSize(bool(0), 0));
76 
77  // Sanity-check GetSerializeSize and c++ type matching
78  BOOST_CHECK_EQUAL(GetSerializeSize((unsigned char)0, 0), 1U);
79  BOOST_CHECK_EQUAL(GetSerializeSize(int8_t(0), 0), 1U);
80  BOOST_CHECK_EQUAL(GetSerializeSize(uint8_t(0), 0), 1U);
81  BOOST_CHECK_EQUAL(GetSerializeSize(int16_t(0), 0), 2U);
82  BOOST_CHECK_EQUAL(GetSerializeSize(uint16_t(0), 0), 2U);
83  BOOST_CHECK_EQUAL(GetSerializeSize(int32_t(0), 0), 4U);
84  BOOST_CHECK_EQUAL(GetSerializeSize(uint32_t(0), 0), 4U);
85  BOOST_CHECK_EQUAL(GetSerializeSize(int64_t(0), 0), 8U);
86  BOOST_CHECK_EQUAL(GetSerializeSize(uint64_t(0), 0), 8U);
87  BOOST_CHECK_EQUAL(GetSerializeSize(bool(0), 0), 1U);
88 }
89 
91 {
92  // encode
93 
94  DataStream ss{};
95  DataStream::size_type size = 0;
96  for (int i = 0; i < 100000; i++) {
99  BOOST_CHECK(size == ss.size());
100  }
101 
102  for (uint64_t i = 0; i < 100000000000ULL; i += 999999937) {
103  ss << VARINT(i);
104  size += ::GetSerializeSize(VARINT(i), 0);
105  BOOST_CHECK(size == ss.size());
106  }
107 
108  // decode
109  for (int i = 0; i < 100000; i++) {
110  int j = -1;
112  BOOST_CHECK_MESSAGE(i == j, "decoded:" << j << " expected:" << i);
113  }
114 
115  for (uint64_t i = 0; i < 100000000000ULL; i += 999999937) {
116  uint64_t j = std::numeric_limits<uint64_t>::max();
117  ss >> VARINT(j);
118  BOOST_CHECK_MESSAGE(i == j, "decoded:" << j << " expected:" << i);
119  }
120 }
121 
122 BOOST_AUTO_TEST_CASE(varints_bitpatterns)
123 {
124  DataStream ss{};
125  ss << VARINT_MODE(0, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "00"); ss.clear();
126  ss << VARINT_MODE(0x7f, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "7f"); ss.clear();
127  ss << VARINT_MODE(int8_t{0x7f}, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "7f"); ss.clear();
128  ss << VARINT_MODE(0x80, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "8000"); ss.clear();
129  ss << VARINT(uint8_t{0x80}); BOOST_CHECK_EQUAL(HexStr(ss), "8000"); ss.clear();
130  ss << VARINT_MODE(0x1234, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "a334"); ss.clear();
131  ss << VARINT_MODE(int16_t{0x1234}, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "a334"); ss.clear();
132  ss << VARINT_MODE(0xffff, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "82fe7f"); ss.clear();
133  ss << VARINT(uint16_t{0xffff}); BOOST_CHECK_EQUAL(HexStr(ss), "82fe7f"); ss.clear();
134  ss << VARINT_MODE(0x123456, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "c7e756"); ss.clear();
135  ss << VARINT_MODE(int32_t{0x123456}, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "c7e756"); ss.clear();
136  ss << VARINT(0x80123456U); BOOST_CHECK_EQUAL(HexStr(ss), "86ffc7e756"); ss.clear();
137  ss << VARINT(uint32_t{0x80123456U}); BOOST_CHECK_EQUAL(HexStr(ss), "86ffc7e756"); ss.clear();
138  ss << VARINT(0xffffffff); BOOST_CHECK_EQUAL(HexStr(ss), "8efefefe7f"); ss.clear();
139  ss << VARINT_MODE(0x7fffffffffffffffLL, VarIntMode::NONNEGATIVE_SIGNED); BOOST_CHECK_EQUAL(HexStr(ss), "fefefefefefefefe7f"); ss.clear();
140  ss << VARINT(0xffffffffffffffffULL); BOOST_CHECK_EQUAL(HexStr(ss), "80fefefefefefefefe7f"); ss.clear();
141 }
142 
144 {
145  DataStream ss{};
146  std::vector<char>::size_type i, j;
147 
148  for (i = 1; i <= MAX_SIZE; i *= 2)
149  {
150  WriteCompactSize(ss, i-1);
151  WriteCompactSize(ss, i);
152  }
153  for (i = 1; i <= MAX_SIZE; i *= 2)
154  {
155  j = ReadCompactSize(ss);
156  BOOST_CHECK_MESSAGE((i-1) == j, "decoded:" << j << " expected:" << (i-1));
157  j = ReadCompactSize(ss);
158  BOOST_CHECK_MESSAGE(i == j, "decoded:" << j << " expected:" << i);
159  }
160 }
161 
162 static bool isCanonicalException(const std::ios_base::failure& ex)
163 {
164  std::ios_base::failure expectedException("non-canonical ReadCompactSize()");
165 
166  // The string returned by what() can be different for different platforms.
167  // Instead of directly comparing the ex.what() with an expected string,
168  // create an instance of exception to see if ex.what() matches
169  // the expected explanatory string returned by the exception instance.
170  return strcmp(expectedException.what(), ex.what()) == 0;
171 }
172 
174 {
175  std::vector<uint8_t> vec1{1, 0, 0, 1, 1, 1, 0, 0, 0, 0, 1, 0, 0, 1, 1, 0, 0, 0, 1, 1, 1, 1, 0, 1, 0, 0, 1};
176  std::vector<bool> vec2{1, 0, 0, 1, 1, 1, 0, 0, 0, 0, 1, 0, 0, 1, 1, 0, 0, 0, 1, 1, 1, 1, 0, 1, 0, 0, 1};
177 
178  BOOST_CHECK(vec1 == std::vector<uint8_t>(vec2.begin(), vec2.end()));
179  BOOST_CHECK((HashWriter{} << vec1).GetHash() == (HashWriter{} << vec2).GetHash());
180 }
181 
182 BOOST_AUTO_TEST_CASE(noncanonical)
183 {
184  // Write some non-canonical CompactSize encodings, and
185  // make sure an exception is thrown when read back.
186  DataStream ss{};
187  std::vector<char>::size_type n;
188 
189  // zero encoded with three bytes:
190  ss << Span{"\xfd\x00\x00"}.first(3);
191  BOOST_CHECK_EXCEPTION(ReadCompactSize(ss), std::ios_base::failure, isCanonicalException);
192 
193  // 0xfc encoded with three bytes:
194  ss << Span{"\xfd\xfc\x00"}.first(3);
195  BOOST_CHECK_EXCEPTION(ReadCompactSize(ss), std::ios_base::failure, isCanonicalException);
196 
197  // 0xfd encoded with three bytes is OK:
198  ss << Span{"\xfd\xfd\x00"}.first(3);
199  n = ReadCompactSize(ss);
200  BOOST_CHECK(n == 0xfd);
201 
202  // zero encoded with five bytes:
203  ss << Span{"\xfe\x00\x00\x00\x00"}.first(5);
204  BOOST_CHECK_EXCEPTION(ReadCompactSize(ss), std::ios_base::failure, isCanonicalException);
205 
206  // 0xffff encoded with five bytes:
207  ss << Span{"\xfe\xff\xff\x00\x00"}.first(5);
208  BOOST_CHECK_EXCEPTION(ReadCompactSize(ss), std::ios_base::failure, isCanonicalException);
209 
210  // zero encoded with nine bytes:
211  ss << Span{"\xff\x00\x00\x00\x00\x00\x00\x00\x00"}.first(9);
212  BOOST_CHECK_EXCEPTION(ReadCompactSize(ss), std::ios_base::failure, isCanonicalException);
213 
214  // 0x01ffffff encoded with nine bytes:
215  ss << Span{"\xff\xff\xff\xff\x01\x00\x00\x00\x00"}.first(9);
216  BOOST_CHECK_EXCEPTION(ReadCompactSize(ss), std::ios_base::failure, isCanonicalException);
217 }
218 
219 BOOST_AUTO_TEST_CASE(class_methods)
220 {
221  int intval(100);
222  bool boolval(true);
223  std::string stringval("testing");
224  const uint8_t charstrval[16]{"testing charstr"};
225  CMutableTransaction txval;
226  CTransactionRef tx_ref{MakeTransactionRef(txval)};
227  CSerializeMethodsTestSingle methodtest1(intval, boolval, stringval, charstrval, tx_ref);
228  CSerializeMethodsTestMany methodtest2(intval, boolval, stringval, charstrval, tx_ref);
229  CSerializeMethodsTestSingle methodtest3;
230  CSerializeMethodsTestMany methodtest4;
232  BOOST_CHECK(methodtest1 == methodtest2);
233  ss << methodtest1;
234  ss >> methodtest4;
235  ss << methodtest2;
236  ss >> methodtest3;
237  BOOST_CHECK(methodtest1 == methodtest2);
238  BOOST_CHECK(methodtest2 == methodtest3);
239  BOOST_CHECK(methodtest3 == methodtest4);
240 
242  ss2 << intval << boolval << stringval << charstrval << txval;
243  ss2 >> methodtest3;
244  BOOST_CHECK(methodtest3 == methodtest4);
245  {
246  DataStream ds;
247  const std::string in{"ab"};
248  ds << Span{in} << std::byte{'c'};
249  std::array<std::byte, 2> out;
250  std::byte out_3;
251  ds >> Span{out} >> out_3;
252  BOOST_CHECK_EQUAL(out.at(0), std::byte{'a'});
253  BOOST_CHECK_EQUAL(out.at(1), std::byte{'b'});
254  BOOST_CHECK_EQUAL(out_3, std::byte{'c'});
255  }
256 }
257 
258 enum class BaseFormat {
259  RAW,
260  HEX,
261 };
262 
264 class Base
265 {
266 public:
267  uint8_t m_base_data;
268 
269  Base() : m_base_data(17) {}
270  explicit Base(uint8_t data) : m_base_data(data) {}
271 
272  template <typename Stream>
273  void Serialize(Stream& s) const
274  {
275  if (s.GetParams() == BaseFormat::RAW) {
276  s << m_base_data;
277  } else {
278  s << Span{HexStr(Span{&m_base_data, 1})};
279  }
280  }
281 
282  template <typename Stream>
283  void Unserialize(Stream& s)
284  {
285  if (s.GetParams() == BaseFormat::RAW) {
286  s >> m_base_data;
287  } else {
288  std::string hex{"aa"};
289  s >> Span{hex}.first(hex.size());
290  m_base_data = TryParseHex<uint8_t>(hex).value().at(0);
291  }
292  }
293 };
294 
296 {
297 public:
299 
300  enum class DerivedFormat {
301  LOWER,
302  UPPER,
304 };
305 
306 class Derived : public Base
307 {
308 public:
309  std::string m_derived_data;
310 
312  {
313  READWRITE(WithParams(fmt.m_base_format, AsBase<Base>(obj)));
314 
315  if (ser_action.ForRead()) {
316  std::string str;
317  s >> str;
318  SER_READ(obj, obj.m_derived_data = str);
319  } else {
320  s << (fmt.m_derived_format == DerivedAndBaseFormat::DerivedFormat::LOWER ?
321  ToLower(obj.m_derived_data) :
322  ToUpper(obj.m_derived_data));
323  }
324  }
325 };
326 
327 BOOST_AUTO_TEST_CASE(with_params_base)
328 {
329  Base b{0x0F};
330 
331  DataStream stream;
332 
333  stream << WithParams(BaseFormat::RAW, b);
334  BOOST_CHECK_EQUAL(stream.str(), "\x0F");
335 
336  b.m_base_data = 0;
337  stream >> WithParams(BaseFormat::RAW, b);
338  BOOST_CHECK_EQUAL(b.m_base_data, 0x0F);
339 
340  stream.clear();
341 
342  stream << WithParams(BaseFormat::HEX, b);
343  BOOST_CHECK_EQUAL(stream.str(), "0f");
344 
345  b.m_base_data = 0;
346  stream >> WithParams(BaseFormat::HEX, b);
347  BOOST_CHECK_EQUAL(b.m_base_data, 0x0F);
348 }
349 
350 BOOST_AUTO_TEST_CASE(with_params_vector_of_base)
351 {
352  std::vector<Base> v{Base{0x0F}, Base{0xFF}};
353 
354  DataStream stream;
355 
356  stream << WithParams(BaseFormat::RAW, v);
357  BOOST_CHECK_EQUAL(stream.str(), "\x02\x0F\xFF");
358 
359  v[0].m_base_data = 0;
360  v[1].m_base_data = 0;
361  stream >> WithParams(BaseFormat::RAW, v);
362  BOOST_CHECK_EQUAL(v[0].m_base_data, 0x0F);
363  BOOST_CHECK_EQUAL(v[1].m_base_data, 0xFF);
364 
365  stream.clear();
366 
367  stream << WithParams(BaseFormat::HEX, v);
368  BOOST_CHECK_EQUAL(stream.str(), "\x02"
369  "0fff");
370 
371  v[0].m_base_data = 0;
372  v[1].m_base_data = 0;
373  stream >> WithParams(BaseFormat::HEX, v);
374  BOOST_CHECK_EQUAL(v[0].m_base_data, 0x0F);
375  BOOST_CHECK_EQUAL(v[1].m_base_data, 0xFF);
376 }
377 
378 BOOST_AUTO_TEST_CASE(with_params_derived)
379 {
380  Derived d;
381  d.m_base_data = 0x0F;
382  d.m_derived_data = "xY";
383 
385 
386  DataStream stream;
387 
390  stream << WithParams(fmt, d);
391 
394  stream << WithParams(fmt, d);
395 
396  BOOST_CHECK_EQUAL(stream.str(), "\x0F\x02xy"
397  "0f\x02XY");
398 }
399 
std::shared_ptr< const CTransaction > CTransactionRef
Definition: transaction.h:421
CONSTEXPR_IF_NOT_DEBUG Span< C > first(std::size_t count) const noexcept
Definition: span.h:204
#define VARINT(obj)
Definition: serialize.h:522
(Un)serialize a number as raw byte or 2 hexadecimal chars.
BOOST_AUTO_TEST_CASE(sizes)
uint64_t ReadCompactSize(Stream &is, bool range_check=true)
Decode a CompactSize-encoded variable-length integer.
Definition: serialize.h:361
void WriteCompactSize(CSizeComputer &os, uint64_t nSize)
Definition: serialize.h:1121
BaseFormat
SERIALIZE_METHODS(CSerializeMethodsTestMany, obj)
void Unserialize(Stream &s)
size_t GetSerializeSize(const T &t, int nVersion=0)
Definition: serialize.h:1127
Basic testing setup.
Definition: setup_common.h:49
static bool isCanonicalException(const std::ios_base::failure &ex)
bool operator==(const CSerializeMethodsTestSingle &rhs) const
vector_type::size_type size_type
Definition: streams.h:201
#define VARINT_MODE(obj, mode)
Definition: serialize.h:521
std::string HexStr(const Span< const uint8_t > s)
Convert a span of bytes to a lower-case hexadecimal string.
Double ended buffer combining vector and stream-like interfaces.
Definition: streams.h:192
A writer stream (for serialization) that computes a 256-bit hash.
Definition: hash.h:101
BOOST_AUTO_TEST_SUITE_END()
static auto WithParams(const Params &params, T &&t)
Return a wrapper around t that (de)serializes it with specified parameter params. ...
Definition: serialize.h:1191
enum DerivedAndBaseFormat::DerivedFormat m_derived_format
static CTransactionRef MakeTransactionRef(Tx &&txIn)
Definition: transaction.h:422
void Serialize(Stream &s) const
std::string ToLower(std::string_view str)
Returns the lowercase equivalent of the given string.
std::string str() const
Definition: streams.h:214
void clear()
Definition: streams.h:233
#define BOOST_CHECK_EQUAL(v1, v2)
Definition: object.cpp:18
static const int PROTOCOL_VERSION
network protocol versioning
Definition: version.h:12
std::string m_derived_data
static constexpr uint64_t MAX_SIZE
The maximum size of a serialized object in bytes or number of elements (for eg vectors) when the size...
Definition: serialize.h:32
A mutable version of CTransaction.
Definition: transaction.h:379
uint8_t m_base_data
#define SER_READ(obj, code)
Definition: serialize.h:170
A Span is an object that can refer to a contiguous sequence of objects.
Definition: solver.h:20
#define READWRITE(...)
Definition: serialize.h:169
CSerializeMethodsTestSingle(int intvalin, bool boolvalin, std::string stringvalin, const uint8_t *charstrvalin, const CTransactionRef &txvalin)
SERIALIZE_METHODS(CSerializeMethodsTestSingle, obj)
SERIALIZE_METHODS_PARAMS(Derived, obj, DerivedAndBaseFormat, fmt)
#define BOOST_CHECK(expr)
Definition: object.cpp:17
Base(uint8_t data)
std::string ToUpper(std::string_view str)
Returns the uppercase equivalent of the given string.