fuzz coverage

Coverage Report

Created: 2025-09-17 22:41

/Users/eugenesiegel/btc/bitcoin/src/arith_uint256.cpp
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Count
Source (jump to first uncovered line)
1
// Copyright (c) 2009-2010 Satoshi Nakamoto
2
// Copyright (c) 2009-2022 The Bitcoin Core developers
3
// Distributed under the MIT software license, see the accompanying
4
// file COPYING or http://www.opensource.org/licenses/mit-license.php.
5
6
#include <arith_uint256.h>
7
8
#include <uint256.h>
9
#include <crypto/common.h>
10
11
#include <cassert>
12
13
template <unsigned int BITS>
14
base_uint<BITS>& base_uint<BITS>::operator<<=(unsigned int shift)
15
28.8M
{
16
28.8M
    base_uint<BITS> a(*this);
17
259M
    for (int i = 0; i < WIDTH; 
i++230M
)
18
230M
        pn[i] = 0;
19
28.8M
    int k = shift / 32;
20
28.8M
    shift = shift % 32;
21
259M
    for (int i = 0; i < WIDTH; 
i++230M
) {
22
230M
        if (i + k + 1 < WIDTH && 
shift != 0100M
)
23
100M
            pn[i + k + 1] |= (a.pn[i] >> (32 - shift));
24
230M
        if (i + k < WIDTH)
25
129M
            pn[i + k] |= (a.pn[i] << shift);
26
230M
    }
27
28.8M
    return *this;
28
28.8M
}
_ZN9base_uintILj256EElSEj
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Count
Source
15
28.8M
{
16
28.8M
    base_uint<BITS> a(*this);
17
259M
    for (int i = 0; i < WIDTH; 
i++230M
)
18
230M
        pn[i] = 0;
19
28.8M
    int k = shift / 32;
20
28.8M
    shift = shift % 32;
21
259M
    for (int i = 0; i < WIDTH; 
i++230M
) {
22
230M
        if (i + k + 1 < WIDTH && 
shift != 0100M
)
23
100M
            pn[i + k + 1] |= (a.pn[i] >> (32 - shift));
24
230M
        if (i + k < WIDTH)
25
129M
            pn[i + k] |= (a.pn[i] << shift);
26
230M
    }
27
28.8M
    return *this;
28
28.8M
}
Unexecuted instantiation: _ZN9base_uintILj6144EElSEj
29
30
template <unsigned int BITS>
31
base_uint<BITS>& base_uint<BITS>::operator>>=(unsigned int shift)
32
29.3M
{
33
29.3M
    base_uint<BITS> a(*this);
34
263M
    for (int i = 0; i < WIDTH; 
i++234M
)
35
234M
        pn[i] = 0;
36
29.3M
    int k = shift / 32;
37
29.3M
    shift = shift % 32;
38
263M
    for (int i = 0; i < WIDTH; 
i++234M
) {
39
234M
        if (i - k - 1 >= 0 && 
shift != 0201M
)
40
201M
            pn[i - k - 1] |= (a.pn[i] << (32 - shift));
41
234M
        if (i - k >= 0)
42
230M
            pn[i - k] |= (a.pn[i] >> shift);
43
234M
    }
44
29.3M
    return *this;
45
29.3M
}
_ZN9base_uintILj256EErSEj
Line
Count
Source
32
29.3M
{
33
29.3M
    base_uint<BITS> a(*this);
34
263M
    for (int i = 0; i < WIDTH; 
i++234M
)
35
234M
        pn[i] = 0;
36
29.3M
    int k = shift / 32;
37
29.3M
    shift = shift % 32;
38
263M
    for (int i = 0; i < WIDTH; 
i++234M
) {
39
234M
        if (i - k - 1 >= 0 && 
shift != 0201M
)
40
201M
            pn[i - k - 1] |= (a.pn[i] << (32 - shift));
41
234M
        if (i - k >= 0)
42
230M
            pn[i - k] |= (a.pn[i] >> shift);
43
234M
    }
44
29.3M
    return *this;
45
29.3M
}
Unexecuted instantiation: _ZN9base_uintILj6144EErSEj
46
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template <unsigned int BITS>
48
base_uint<BITS>& base_uint<BITS>::operator*=(uint32_t b32)
49
505k
{
50
505k
    uint64_t carry = 0;
51
4.54M
    for (int i = 0; i < WIDTH; 
i++4.04M
) {
52
4.04M
        uint64_t n = carry + (uint64_t)b32 * pn[i];
53
4.04M
        pn[i] = n & 0xffffffff;
54
4.04M
        carry = n >> 32;
55
4.04M
    }
56
505k
    return *this;
57
505k
}
58
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template <unsigned int BITS>
60
base_uint<BITS>& base_uint<BITS>::operator*=(const base_uint& b)
61
2.88M
{
62
2.88M
    base_uint<BITS> a;
63
25.9M
    for (int j = 0; j < WIDTH; 
j++23.1M
) {
64
23.1M
        uint64_t carry = 0;
65
127M
        for (int i = 0; i + j < WIDTH; 
i++103M
) {
66
103M
            uint64_t n = carry + a.pn[i + j] + (uint64_t)pn[j] * b.pn[i];
67
103M
            a.pn[i + j] = n & 0xffffffff;
68
103M
            carry = n >> 32;
69
103M
        }
70
23.1M
    }
71
2.88M
    *this = a;
72
2.88M
    return *this;
73
2.88M
}
_ZN9base_uintILj256EEmLERKS0_
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Count
Source
61
2.88M
{
62
2.88M
    base_uint<BITS> a;
63
25.9M
    for (int j = 0; j < WIDTH; 
j++23.1M
) {
64
23.1M
        uint64_t carry = 0;
65
127M
        for (int i = 0; i + j < WIDTH; 
i++103M
) {
66
103M
            uint64_t n = carry + a.pn[i + j] + (uint64_t)pn[j] * b.pn[i];
67
103M
            a.pn[i + j] = n & 0xffffffff;
68
103M
            carry = n >> 32;
69
103M
        }
70
23.1M
    }
71
2.88M
    *this = a;
72
2.88M
    return *this;
73
2.88M
}
Unexecuted instantiation: _ZN9base_uintILj6144EEmLERKS0_
74
75
template <unsigned int BITS>
76
base_uint<BITS>& base_uint<BITS>::operator/=(const base_uint& b)
77
14.4M
{
78
14.4M
    base_uint<BITS> div = b;     // make a copy, so we can shift.
79
14.4M
    base_uint<BITS> num = *this; // make a copy, so we can subtract.
80
14.4M
    *this = 0;                   // the quotient.
81
14.4M
    int num_bits = num.bits();
82
14.4M
    int div_bits = div.bits();
83
14.4M
    if (div_bits == 0)
84
0
        throw uint_error("Division by zero");
85
14.4M
    if (div_bits > num_bits) // the result is certainly 0.
86
0
        return *this;
87
14.4M
    int shift = num_bits - div_bits;
88
14.4M
    div <<= shift; // shift so that div and num align.
89
43.2M
    while (shift >= 0) {
90
28.8M
        if (num >= div) {
91
14.4M
            num -= div;
92
14.4M
            pn[shift / 32] |= (1U << (shift & 31)); // set a bit of the result.
93
14.4M
        }
94
28.8M
        div >>= 1; // shift back.
95
28.8M
        shift--;
96
28.8M
    }
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    // num now contains the remainder of the division.
98
14.4M
    return *this;
99
14.4M
}
_ZN9base_uintILj256EEdVERKS0_
Line
Count
Source
77
14.4M
{
78
14.4M
    base_uint<BITS> div = b;     // make a copy, so we can shift.
79
14.4M
    base_uint<BITS> num = *this; // make a copy, so we can subtract.
80
14.4M
    *this = 0;                   // the quotient.
81
14.4M
    int num_bits = num.bits();
82
14.4M
    int div_bits = div.bits();
83
14.4M
    if (div_bits == 0)
84
0
        throw uint_error("Division by zero");
85
14.4M
    if (div_bits > num_bits) // the result is certainly 0.
86
0
        return *this;
87
14.4M
    int shift = num_bits - div_bits;
88
14.4M
    div <<= shift; // shift so that div and num align.
89
43.2M
    while (shift >= 0) {
90
28.8M
        if (num >= div) {
91
14.4M
            num -= div;
92
14.4M
            pn[shift / 32] |= (1U << (shift & 31)); // set a bit of the result.
93
14.4M
        }
94
28.8M
        div >>= 1; // shift back.
95
28.8M
        shift--;
96
28.8M
    }
97
    // num now contains the remainder of the division.
98
14.4M
    return *this;
99
14.4M
}
Unexecuted instantiation: _ZN9base_uintILj6144EEdVERKS0_
100
101
template <unsigned int BITS>
102
int base_uint<BITS>::CompareTo(const base_uint<BITS>& b) const
103
6.95G
{
104
55.5G
    for (int i = WIDTH - 1; i >= 0; 
i--48.5G
) {
105
55.4G
        if (pn[i] < b.pn[i])
106
4.80G
            return -1;
107
50.6G
        if (pn[i] > b.pn[i])
108
2.06G
            return 1;
109
50.6G
    }
110
82.5M
    return 0;
111
6.95G
}
_ZNK9base_uintILj256EE9CompareToERKS0_
Line
Count
Source
103
6.95G
{
104
55.5G
    for (int i = WIDTH - 1; i >= 0; 
i--48.5G
) {
105
55.4G
        if (pn[i] < b.pn[i])
106
4.80G
            return -1;
107
50.6G
        if (pn[i] > b.pn[i])
108
2.06G
            return 1;
109
50.6G
    }
110
82.5M
    return 0;
111
6.95G
}
Unexecuted instantiation: _ZNK9base_uintILj6144EE9CompareToERKS0_
112
113
template <unsigned int BITS>
114
bool base_uint<BITS>::EqualTo(uint64_t b) const
115
14.4M
{
116
14.4M
    for (int i = WIDTH - 1; i >= 2; 
i--0
) {
117
14.4M
        if (pn[i])
118
14.4M
            return false;
119
14.4M
    }
120
0
    if (pn[1] != (b >> 32))
121
0
        return false;
122
0
    if (pn[0] != (b & 0xfffffffful))
123
0
        return false;
124
0
    return true;
125
0
}
126
127
template <unsigned int BITS>
128
double base_uint<BITS>::getdouble() const
129
684k
{
130
684k
    double ret = 0.0;
131
684k
    double fact = 1.0;
132
6.16M
    for (int i = 0; i < WIDTH; 
i++5.47M
) {
133
5.47M
        ret += fact * pn[i];
134
5.47M
        fact *= 4294967296.0;
135
5.47M
    }
136
684k
    return ret;
137
684k
}
138
139
template <unsigned int BITS>
140
std::string base_uint<BITS>::GetHex() const
141
38.8k
{
142
38.8k
    base_blob<BITS> b;
143
350k
    for (int x = 0; x < this->WIDTH; 
++x311k
) {
144
311k
        WriteLE32(b.begin() + x*4, this->pn[x]);
145
311k
    }
146
38.8k
    return b.GetHex();
147
38.8k
}
148
149
template <unsigned int BITS>
150
std::string base_uint<BITS>::ToString() const
151
0
{
152
0
    return GetHex();
153
0
}
154
155
template <unsigned int BITS>
156
unsigned int base_uint<BITS>::bits() const
157
29.3M
{
158
29.3M
    for (int pos = WIDTH - 1; pos >= 0; 
pos--0
) {
159
29.3M
        if (pn[pos]) {
160
44.2M
            for (int nbits = 31; nbits > 0; 
nbits--14.9M
) {
161
44.2M
                if (pn[pos] & 1U << nbits)
162
29.3M
                    return 32 * pos + nbits + 1;
163
44.2M
            }
164
0
            return 32 * pos + 1;
165
29.3M
        }
166
29.3M
    }
167
0
    return 0;
168
29.3M
}
_ZNK9base_uintILj256EE4bitsEv
Line
Count
Source
157
29.3M
{
158
29.3M
    for (int pos = WIDTH - 1; pos >= 0; 
pos--0
) {
159
29.3M
        if (pn[pos]) {
160
44.2M
            for (int nbits = 31; nbits > 0; 
nbits--14.9M
) {
161
44.2M
                if (pn[pos] & 1U << nbits)
162
29.3M
                    return 32 * pos + nbits + 1;
163
44.2M
            }
164
0
            return 32 * pos + 1;
165
29.3M
        }
166
29.3M
    }
167
0
    return 0;
168
29.3M
}
Unexecuted instantiation: _ZNK9base_uintILj6144EE4bitsEv
169
170
// Explicit instantiations for base_uint<256>
171
template class base_uint<256>;
172
173
// This implementation directly uses shifts instead of going
174
// through an intermediate MPI representation.
175
arith_uint256& arith_uint256::SetCompact(uint32_t nCompact, bool* pfNegative, bool* pfOverflow)
176
14.4M
{
177
14.4M
    int nSize = nCompact >> 24;
178
14.4M
    uint32_t nWord = nCompact & 0x007fffff;
179
14.4M
    if (nSize <= 3) {
180
0
        nWord >>= 8 * (3 - nSize);
181
0
        *this = nWord;
182
14.4M
    } else {
183
14.4M
        *this = nWord;
184
14.4M
        *this <<= 8 * (nSize - 3);
185
14.4M
    }
186
14.4M
    if (pfNegative)
187
14.4M
        *pfNegative = nWord != 0 && (nCompact & 0x00800000) != 0;
188
14.4M
    if (pfOverflow)
189
14.4M
        *pfOverflow = nWord != 0 && ((nSize > 34) ||
190
14.4M
                                     (nWord > 0xff && nSize > 33) ||
191
14.4M
                                     (nWord > 0xffff && nSize > 32));
192
14.4M
    return *this;
193
14.4M
}
194
195
uint32_t arith_uint256::GetCompact(bool fNegative) const
196
506k
{
197
506k
    int nSize = (bits() + 7) / 8;
198
506k
    uint32_t nCompact = 0;
199
506k
    if (nSize <= 3) {
200
0
        nCompact = GetLow64() << 8 * (3 - nSize);
201
506k
    } else {
202
506k
        arith_uint256 bn = *this >> 8 * (nSize - 3);
203
506k
        nCompact = bn.GetLow64();
204
506k
    }
205
    // The 0x00800000 bit denotes the sign.
206
    // Thus, if it is already set, divide the mantissa by 256 and increase the exponent.
207
506k
    if (nCompact & 0x00800000) {
208
0
        nCompact >>= 8;
209
0
        nSize++;
210
0
    }
211
506k
    assert((nCompact & ~0x007fffffU) == 0);
212
506k
    assert(nSize < 256);
213
506k
    nCompact |= nSize << 24;
214
506k
    nCompact |= (fNegative && 
(nCompact & 0x007fffff)0
?
0x008000000
: 0);
215
506k
    return nCompact;
216
506k
}
217
218
uint256 ArithToUint256(const arith_uint256 &a)
219
0
{
220
0
    uint256 b;
221
0
    for(int x=0; x<a.WIDTH; ++x)
222
0
        WriteLE32(b.begin() + x*4, a.pn[x]);
223
0
    return b;
224
0
}
225
arith_uint256 UintToArith256(const uint256 &a)
226
10.2M
{
227
10.2M
    arith_uint256 b;
228
92.3M
    for(int x=0; x<b.WIDTH; 
++x82.1M
)
229
82.1M
        b.pn[x] = ReadLE32(a.begin() + x*4);
230
10.2M
    return b;
231
10.2M
}
232
233
// Explicit instantiations for base_uint<6144> (used in test/fuzz/muhash.cpp).
234
template base_uint<6144>& base_uint<6144>::operator*=(const base_uint<6144>& b);
235
template base_uint<6144>& base_uint<6144>::operator/=(const base_uint<6144>& b);