Coverage Report

Created: 2025-11-16 06:42

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/WasmEdge/lib/common/hash.cpp
Line
Count
Source
1
#include "common/hash.h"
2
#include "common/endian.h"
3
4
namespace {
5
6
46.3k
inline uint64_t mulMod(uint64_t A, uint64_t B, uint64_t M) noexcept {
7
46.3k
  uint64_t R = 0;
8
2.70M
  while (B) {
9
2.66M
    if (B & 1) {
10
1.33M
      uint64_t R2 = R + A;
11
1.33M
      if (R2 < R) {
12
106k
        R2 -= M;
13
106k
      }
14
1.33M
      R = R2 % M;
15
1.33M
    }
16
2.66M
    B >>= 1;
17
2.66M
    if (B) {
18
2.61M
      uint64_t A2 = A + A;
19
2.61M
      if (A2 < A) {
20
330k
        A2 -= M;
21
330k
      }
22
2.61M
      A = A2 % M;
23
2.61M
    }
24
2.66M
  }
25
46.3k
  return R;
26
46.3k
}
27
28
503
inline uint64_t powMod(uint64_t A, uint64_t B, uint64_t M) noexcept {
29
503
  uint64_t R = 1;
30
31.3k
  while (B) {
31
30.8k
    if (B & 1) {
32
15.5k
      R = mulMod(R, A, M);
33
15.5k
    }
34
30.8k
    B >>= 1;
35
30.8k
    if (B) {
36
30.3k
      A = mulMod(A, A, M);
37
30.3k
    }
38
30.8k
  }
39
503
  return R;
40
503
}
41
42
503
inline bool sprp(uint64_t N, uint64_t A) noexcept {
43
503
  uint64_t D = N - 1;
44
503
  uint8_t S = 0;
45
503
  while (!(D & 0xff)) {
46
0
    D >>= 8;
47
0
    S += 8;
48
0
  }
49
503
  if (!(D & 0xf)) {
50
45
    D >>= 4;
51
45
    S += 4;
52
45
  }
53
503
  if (!(D & 0x3)) {
54
242
    D >>= 2;
55
242
    S += 2;
56
242
  }
57
503
  if (!(D & 0x1)) {
58
333
    D >>= 1;
59
333
    S += 1;
60
333
  }
61
503
  uint64_t B = powMod(A, D, N);
62
503
  if ((B == 1) || (B == (N - 1))) {
63
128
    return true;
64
128
  }
65
375
  uint8_t R;
66
740
  for (R = 1; R < S; R++) {
67
429
    B = mulMod(B, B, N);
68
429
    if (B <= 1) {
69
0
      return false;
70
0
    }
71
429
    if (B == (N - 1)) {
72
64
      return true;
73
64
    }
74
429
  }
75
311
  return false;
76
375
}
77
78
327
inline bool isPrime(uint64_t N) noexcept {
79
327
  if (N < 2 || !(N & 1)) {
80
0
    return false;
81
0
  }
82
327
  if (N < 4) {
83
0
    return true;
84
0
  }
85
327
  if (!sprp(N, 2)) {
86
311
    return false;
87
311
  }
88
16
  if (N < 2047) {
89
0
    return true;
90
0
  }
91
16
  if (!sprp(N, 3)) {
92
0
    return false;
93
0
  }
94
16
  if (!sprp(N, 5)) {
95
0
    return false;
96
0
  }
97
16
  if (!sprp(N, 7)) {
98
0
    return false;
99
0
  }
100
16
  if (!sprp(N, 11)) {
101
0
    return false;
102
0
  }
103
16
  if (!sprp(N, 13)) {
104
0
    return false;
105
0
  }
106
16
  if (!sprp(N, 17)) {
107
0
    return false;
108
0
  }
109
16
  if (!sprp(N, 19)) {
110
0
    return false;
111
0
  }
112
16
  if (!sprp(N, 23)) {
113
0
    return false;
114
0
  }
115
16
  if (!sprp(N, 29)) {
116
0
    return false;
117
0
  }
118
16
  if (!sprp(N, 31)) {
119
0
    return false;
120
0
  }
121
16
  if (!sprp(N, 37)) {
122
0
    return false;
123
0
  }
124
16
  return true;
125
16
}
126
127
28.1k
inline int popcount(uint64_t X) noexcept {
128
28.1k
#if defined(__GNUC__) || defined(__INTEL_COMPILER) || defined(__clang__)
129
28.1k
  return __builtin_popcountll(X);
130
#elif defined(_MSC_VER) && defined(_WIN64)
131
#if defined(_M_X64)
132
  return static_cast<int>(_mm_popcnt_u64(X));
133
#else
134
  return static_cast<int>(_CountOneBits64(X));
135
#endif
136
#else
137
  X -= (X >> 1) & 0x5555555555555555;
138
  X = (X & 0x3333333333333333) + ((X >> 2) & 0x3333333333333333);
139
  X = (X + (X >> 4)) & 0x0f0f0f0f0f0f0f0f;
140
  X = (X * 0x0101010101010101) >> 56;
141
  return static_cast<int>(X);
142
#endif
143
28.1k
}
144
145
4
std::array<uint64_t, 4> generate() noexcept {
146
4
  std::array<uint64_t, 4> Secret;
147
4
  const std::array<uint8_t, 70> C = {
148
4
      0x0f, 0x17, 0x1b, 0x1d, 0x1e, 0x27, 0x2b, 0x2d, 0x2e, 0x33, 0x35, 0x36,
149
4
      0x39, 0x3a, 0x3c, 0x47, 0x4b, 0x4d, 0x4e, 0x53, 0x55, 0x56, 0x59, 0x5a,
150
4
      0x5c, 0x63, 0x65, 0x66, 0x69, 0x6a, 0x6c, 0x71, 0x72, 0x74, 0x78, 0x87,
151
4
      0x8b, 0x8d, 0x8e, 0x93, 0x95, 0x96, 0x99, 0x9a, 0x9c, 0xa3, 0xa5, 0xa6,
152
4
      0xa9, 0xaa, 0xac, 0xb1, 0xb2, 0xb4, 0xb8, 0xc3, 0xc5, 0xc6, 0xc9, 0xca,
153
4
      0xcc, 0xd1, 0xd2, 0xd4, 0xd8, 0xe1, 0xe2, 0xe4, 0xe8, 0xf0};
154
4
  std::uniform_int_distribution<uint64_t> Dist(
155
4
      UINT64_C(0), static_cast<uint64_t>(C.size() - 1));
156
20
  for (size_t I = 0; I < 4; I++) {
157
16
    bool Ok;
158
47.2k
    do {
159
47.2k
      Ok = true;
160
47.2k
      Secret[I] = 0;
161
424k
      for (size_t J = 0; J < 64; J += 8) {
162
377k
        Secret[I] |= static_cast<uint64_t>(C[Dist(WasmEdge::Hash::RandEngine)])
163
377k
                     << J;
164
377k
      }
165
47.2k
      if (Secret[I] % 2 == 0) {
166
23.8k
        Ok = false;
167
23.8k
        continue;
168
23.8k
      }
169
28.5k
      for (size_t J = 0; J < I; J++) {
170
28.1k
        if (popcount(Secret[J] ^ Secret[I]) != 32) {
171
23.0k
          Ok = false;
172
23.0k
          break;
173
23.0k
        }
174
28.1k
      }
175
23.3k
      if (Ok && !isPrime(Secret[I]))
176
311
        Ok = false;
177
47.2k
    } while (!Ok);
178
16
  }
179
4
  return Secret;
180
4
}
181
182
4.32M
inline uint64_t read(WasmEdge::Span<const std::byte, 8> Data) noexcept {
183
4.32M
  uint64_t V;
184
4.32M
  std::memcpy(&V, Data.data(), 8);
185
4.32M
  if constexpr (WasmEdge::Endian::native == WasmEdge::Endian::little) {
186
4.32M
    return V;
187
  } else {
188
    return WasmEdge::byteswap(V);
189
  }
190
4.32M
}
191
380k
inline uint64_t read(WasmEdge::Span<const std::byte, 4> Data) noexcept {
192
380k
  uint32_t V;
193
380k
  std::memcpy(&V, Data.data(), 4);
194
380k
  if constexpr (WasmEdge::Endian::native == WasmEdge::Endian::little) {
195
380k
    return V;
196
  } else {
197
    return WasmEdge::byteswap(V);
198
  }
199
380k
}
200
201
294k
inline uint64_t read_small(WasmEdge::Span<const std::byte> Data) noexcept {
202
294k
  return (static_cast<uint64_t>(Data[0]) << 56) |
203
294k
         (static_cast<uint64_t>(Data[Data.size() >> 1]) << 32) |
204
294k
         static_cast<uint64_t>(Data[Data.size() - 1]);
205
294k
}
206
207
static const std::array<uint64_t, 4> Secret = generate();
208
209
} // namespace
210
211
namespace WasmEdge::Hash {
212
213
418k
WASMEDGE_EXPORT uint64_t Hash::rapidHash(Span<const std::byte> Data) noexcept {
214
418k
  const auto Size = Data.size();
215
418k
  uint64_t Seed = Secret[3];
216
418k
  Seed ^= rapidMix(Seed ^ Secret[0], Secret[1]) ^ Size;
217
418k
  uint64_t A, B;
218
418k
  if (likely(Data.size() <= 16)) {
219
389k
    if (likely(Data.size() >= 4)) {
220
95.0k
      A = (read(Data.first<4>()) << 32) | read(Data.last<4>());
221
95.0k
      const uint64_t delta = ((Data.size() & 24) >> (Data.size() >> 3));
222
95.0k
      B = (read(Data.subspan(delta).first<4>()) << 32) |
223
95.0k
          read(Data.last(4 + delta).first<4>());
224
294k
    } else if (likely(Data.size() > 0)) {
225
294k
      A = read_small(Data);
226
294k
      B = 0;
227
294k
    } else {
228
58
      A = B = 0;
229
58
    }
230
389k
  } else {
231
29.6k
    if (unlikely(Data.size() > 48)) {
232
297
      uint64_t See1 = Seed, See2 = Seed;
233
350k
      while (likely(Data.size() >= 96)) {
234
350k
        Seed = rapidMix(read(Data.first<8>()) ^ Secret[0],
235
350k
                        read(Data.subspan<8>().first<8>()) ^ Seed);
236
350k
        See1 = rapidMix(read(Data.subspan<16>().first<8>()) ^ Secret[1],
237
350k
                        read(Data.subspan<24>().first<8>()) ^ See1);
238
350k
        See2 = rapidMix(read(Data.subspan<32>().first<8>()) ^ Secret[2],
239
350k
                        read(Data.subspan<40>().first<8>()) ^ See2);
240
350k
        Seed = rapidMix(read(Data.subspan<48>().first<8>()) ^ Secret[0],
241
350k
                        read(Data.subspan<56>().first<8>()) ^ Seed);
242
350k
        See1 = rapidMix(read(Data.subspan<64>().first<8>()) ^ Secret[1],
243
350k
                        read(Data.subspan<72>().first<8>()) ^ See1);
244
350k
        See2 = rapidMix(read(Data.subspan<80>().first<8>()) ^ Secret[2],
245
350k
                        read(Data.subspan<88>().first<8>()) ^ See2);
246
350k
        Data = Data.subspan<96>();
247
350k
      }
248
297
      if (unlikely(Data.size() >= 48)) {
249
129
        Seed = rapidMix(read(Data.first<8>()) ^ Secret[0],
250
129
                        read(Data.subspan<8>().first<8>()) ^ Seed);
251
129
        See1 = rapidMix(read(Data.subspan<16>().first<8>()) ^ Secret[1],
252
129
                        read(Data.subspan<24>().first<8>()) ^ See1);
253
129
        See2 = rapidMix(read(Data.subspan<32>().first<8>()) ^ Secret[2],
254
129
                        read(Data.subspan<40>().first<8>()) ^ See2);
255
129
        Data = Data.subspan<48>();
256
129
      }
257
258
297
      Seed ^= See1 ^ See2;
259
297
    }
260
29.6k
    if (Data.size() > 16) {
261
29.4k
      Seed = rapidMix(read(Data.first<8>()) ^ Secret[2],
262
29.4k
                      read(Data.subspan<8>().first<8>()) ^ Seed ^ Secret[1]);
263
29.4k
      if (Data.size() > 32)
264
2.16k
        Seed = rapidMix(read(Data.subspan<16>().first<8>()) ^ Secret[2],
265
2.16k
                        read(Data.subspan<24>().first<8>()) ^ Seed);
266
29.4k
    }
267
29.6k
    A = read(Data.last<16>().first<8>());
268
29.6k
    B = read(Data.last<8>());
269
29.6k
  }
270
418k
  A ^= Secret[1];
271
418k
  B ^= Seed;
272
418k
  rapidMum(A, B);
273
418k
  return rapidMix(A ^ Secret[0] ^ Size, B ^ Secret[1]);
274
418k
}
275
276
} // namespace WasmEdge::Hash