Coverage Report

Created: 2026-09-01 13:35

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/bitcoin/src/crypto/poly1305.cpp
Line
Count
Source
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// Copyright (c) 2019-present The Bitcoin Core developers
2
// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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5
#include <crypto/common.h>
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#include <crypto/poly1305.h>
7
8
namespace poly1305_donna {
9
10
// Based on the public domain implementation by Andrew Moon
11
// poly1305-donna-32.h from https://github.com/floodyberry/poly1305-donna
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13
17.2M
void poly1305_init(poly1305_context *st, const unsigned char key[32]) noexcept {
14
    /* r &= 0xffffffc0ffffffc0ffffffc0fffffff */
15
17.2M
    st->r[0] = (ReadLE32(&key[ 0])     ) & 0x3ffffff;
16
17.2M
    st->r[1] = (ReadLE32(&key[ 3]) >> 2) & 0x3ffff03;
17
17.2M
    st->r[2] = (ReadLE32(&key[ 6]) >> 4) & 0x3ffc0ff;
18
17.2M
    st->r[3] = (ReadLE32(&key[ 9]) >> 6) & 0x3f03fff;
19
17.2M
    st->r[4] = (ReadLE32(&key[12]) >> 8) & 0x00fffff;
20
21
    /* h = 0 */
22
17.2M
    st->h[0] = 0;
23
17.2M
    st->h[1] = 0;
24
17.2M
    st->h[2] = 0;
25
17.2M
    st->h[3] = 0;
26
17.2M
    st->h[4] = 0;
27
28
    /* save pad for later */
29
17.2M
    st->pad[0] = ReadLE32(&key[16]);
30
17.2M
    st->pad[1] = ReadLE32(&key[20]);
31
17.2M
    st->pad[2] = ReadLE32(&key[24]);
32
17.2M
    st->pad[3] = ReadLE32(&key[28]);
33
34
17.2M
    st->leftover = 0;
35
17.2M
    st->final = 0;
36
17.2M
}
37
38
18.1M
static void poly1305_blocks(poly1305_context *st, const unsigned char *m, size_t bytes) noexcept {
39
18.1M
    const uint32_t hibit = (st->final) ? 0 : (1UL << 24); /* 1 << 128 */
  Branch (39:28): [True: 274, False: 18.1M]
40
18.1M
    uint32_t r0,r1,r2,r3,r4;
41
18.1M
    uint32_t s1,s2,s3,s4;
42
18.1M
    uint32_t h0,h1,h2,h3,h4;
43
18.1M
    uint64_t d0,d1,d2,d3,d4;
44
18.1M
    uint32_t c;
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46
18.1M
    r0 = st->r[0];
47
18.1M
    r1 = st->r[1];
48
18.1M
    r2 = st->r[2];
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18.1M
    r3 = st->r[3];
50
18.1M
    r4 = st->r[4];
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52
18.1M
    s1 = r1 * 5;
53
18.1M
    s2 = r2 * 5;
54
18.1M
    s3 = r3 * 5;
55
18.1M
    s4 = r4 * 5;
56
57
18.1M
    h0 = st->h[0];
58
18.1M
    h1 = st->h[1];
59
18.1M
    h2 = st->h[2];
60
18.1M
    h3 = st->h[3];
61
18.1M
    h4 = st->h[4];
62
63
173M
    while (bytes >= POLY1305_BLOCK_SIZE) {
  Branch (63:12): [True: 155M, False: 18.1M]
64
        /* h += m[i] */
65
155M
        h0 += (ReadLE32(m+ 0)     ) & 0x3ffffff;
66
155M
        h1 += (ReadLE32(m+ 3) >> 2) & 0x3ffffff;
67
155M
        h2 += (ReadLE32(m+ 6) >> 4) & 0x3ffffff;
68
155M
        h3 += (ReadLE32(m+ 9) >> 6) & 0x3ffffff;
69
155M
        h4 += (ReadLE32(m+12) >> 8) | hibit;
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71
        /* h *= r */
72
155M
        d0 = ((uint64_t)h0 * r0) + ((uint64_t)h1 * s4) + ((uint64_t)h2 * s3) + ((uint64_t)h3 * s2) + ((uint64_t)h4 * s1);
73
155M
        d1 = ((uint64_t)h0 * r1) + ((uint64_t)h1 * r0) + ((uint64_t)h2 * s4) + ((uint64_t)h3 * s3) + ((uint64_t)h4 * s2);
74
155M
        d2 = ((uint64_t)h0 * r2) + ((uint64_t)h1 * r1) + ((uint64_t)h2 * r0) + ((uint64_t)h3 * s4) + ((uint64_t)h4 * s3);
75
155M
        d3 = ((uint64_t)h0 * r3) + ((uint64_t)h1 * r2) + ((uint64_t)h2 * r1) + ((uint64_t)h3 * r0) + ((uint64_t)h4 * s4);
76
155M
        d4 = ((uint64_t)h0 * r4) + ((uint64_t)h1 * r3) + ((uint64_t)h2 * r2) + ((uint64_t)h3 * r1) + ((uint64_t)h4 * r0);
77
78
        /* (partial) h %= p */
79
155M
                      c = (uint32_t)(d0 >> 26); h0 = (uint32_t)d0 & 0x3ffffff;
80
155M
        d1 += c;      c = (uint32_t)(d1 >> 26); h1 = (uint32_t)d1 & 0x3ffffff;
81
155M
        d2 += c;      c = (uint32_t)(d2 >> 26); h2 = (uint32_t)d2 & 0x3ffffff;
82
155M
        d3 += c;      c = (uint32_t)(d3 >> 26); h3 = (uint32_t)d3 & 0x3ffffff;
83
155M
        d4 += c;      c = (uint32_t)(d4 >> 26); h4 = (uint32_t)d4 & 0x3ffffff;
84
155M
        h0 += c * 5;  c =           (h0 >> 26); h0 =           h0 & 0x3ffffff;
85
155M
        h1 += c;
86
87
155M
        m += POLY1305_BLOCK_SIZE;
88
155M
        bytes -= POLY1305_BLOCK_SIZE;
89
155M
    }
90
91
18.1M
    st->h[0] = h0;
92
18.1M
    st->h[1] = h1;
93
18.1M
    st->h[2] = h2;
94
18.1M
    st->h[3] = h3;
95
18.1M
    st->h[4] = h4;
96
18.1M
}
97
98
17.2M
void poly1305_finish(poly1305_context *st, unsigned char mac[16]) noexcept {
99
17.2M
    uint32_t h0,h1,h2,h3,h4,c;
100
17.2M
    uint32_t g0,g1,g2,g3,g4;
101
17.2M
    uint64_t f;
102
17.2M
    uint32_t mask;
103
104
    /* process the remaining block */
105
17.2M
    if (st->leftover) {
  Branch (105:9): [True: 274, False: 17.1M]
106
274
        size_t i = st->leftover;
107
274
        st->buffer[i++] = 1;
108
2.68k
        for (; i < POLY1305_BLOCK_SIZE; i++) {
  Branch (108:16): [True: 2.40k, False: 274]
109
2.40k
            st->buffer[i] = 0;
110
2.40k
        }
111
274
        st->final = 1;
112
274
        poly1305_blocks(st, st->buffer, POLY1305_BLOCK_SIZE);
113
274
    }
114
115
    /* fully carry h */
116
17.2M
    h0 = st->h[0];
117
17.2M
    h1 = st->h[1];
118
17.2M
    h2 = st->h[2];
119
17.2M
    h3 = st->h[3];
120
17.2M
    h4 = st->h[4];
121
122
17.2M
                 c = h1 >> 26; h1 = h1 & 0x3ffffff;
123
17.2M
    h2 +=     c; c = h2 >> 26; h2 = h2 & 0x3ffffff;
124
17.2M
    h3 +=     c; c = h3 >> 26; h3 = h3 & 0x3ffffff;
125
17.2M
    h4 +=     c; c = h4 >> 26; h4 = h4 & 0x3ffffff;
126
17.2M
    h0 += c * 5; c = h0 >> 26; h0 = h0 & 0x3ffffff;
127
17.2M
    h1 +=     c;
128
129
    /* compute h + -p */
130
17.2M
    g0 = h0 + 5; c = g0 >> 26; g0 &= 0x3ffffff;
131
17.2M
    g1 = h1 + c; c = g1 >> 26; g1 &= 0x3ffffff;
132
17.2M
    g2 = h2 + c; c = g2 >> 26; g2 &= 0x3ffffff;
133
17.2M
    g3 = h3 + c; c = g3 >> 26; g3 &= 0x3ffffff;
134
17.2M
    g4 = h4 + c - (1UL << 26);
135
136
    /* select h if h < p, or h + -p if h >= p */
137
17.2M
    mask = (g4 >> ((sizeof(uint32_t) * 8) - 1)) - 1;
138
17.2M
    g0 &= mask;
139
17.2M
    g1 &= mask;
140
17.2M
    g2 &= mask;
141
17.2M
    g3 &= mask;
142
17.2M
    g4 &= mask;
143
17.2M
    mask = ~mask;
144
17.2M
    h0 = (h0 & mask) | g0;
145
17.2M
    h1 = (h1 & mask) | g1;
146
17.2M
    h2 = (h2 & mask) | g2;
147
17.2M
    h3 = (h3 & mask) | g3;
148
17.2M
    h4 = (h4 & mask) | g4;
149
150
    /* h = h % (2^128) */
151
17.2M
    h0 = ((h0      ) | (h1 << 26)) & 0xffffffff;
152
17.2M
    h1 = ((h1 >>  6) | (h2 << 20)) & 0xffffffff;
153
17.2M
    h2 = ((h2 >> 12) | (h3 << 14)) & 0xffffffff;
154
17.2M
    h3 = ((h3 >> 18) | (h4 <<  8)) & 0xffffffff;
155
156
    /* mac = (h + pad) % (2^128) */
157
17.2M
    f = (uint64_t)h0 + st->pad[0]            ; h0 = (uint32_t)f;
158
17.2M
    f = (uint64_t)h1 + st->pad[1] + (f >> 32); h1 = (uint32_t)f;
159
17.2M
    f = (uint64_t)h2 + st->pad[2] + (f >> 32); h2 = (uint32_t)f;
160
17.2M
    f = (uint64_t)h3 + st->pad[3] + (f >> 32); h3 = (uint32_t)f;
161
162
17.2M
    WriteLE32(mac +  0, h0);
163
17.2M
    WriteLE32(mac +  4, h1);
164
17.2M
    WriteLE32(mac +  8, h2);
165
17.2M
    WriteLE32(mac + 12, h3);
166
167
    /* zero out the state */
168
17.2M
    st->h[0] = 0;
169
17.2M
    st->h[1] = 0;
170
17.2M
    st->h[2] = 0;
171
17.2M
    st->h[3] = 0;
172
17.2M
    st->h[4] = 0;
173
17.2M
    st->r[0] = 0;
174
17.2M
    st->r[1] = 0;
175
17.2M
    st->r[2] = 0;
176
17.2M
    st->r[3] = 0;
177
17.2M
    st->r[4] = 0;
178
17.2M
    st->pad[0] = 0;
179
17.2M
    st->pad[1] = 0;
180
17.2M
    st->pad[2] = 0;
181
17.2M
    st->pad[3] = 0;
182
17.2M
}
183
184
86.0M
void poly1305_update(poly1305_context *st, const unsigned char *m, size_t bytes) noexcept {
185
86.0M
    size_t i;
186
187
    /* handle leftover */
188
86.0M
    if (st->leftover) {
  Branch (188:9): [True: 609k, False: 85.3M]
189
609k
        size_t want = (POLY1305_BLOCK_SIZE - st->leftover);
190
609k
        if (want > bytes) {
  Branch (190:13): [True: 1.31k, False: 608k]
191
1.31k
            want = bytes;
192
1.31k
        }
193
7.93M
        for (i = 0; i < want; i++) {
  Branch (193:21): [True: 7.32M, False: 609k]
194
7.32M
            st->buffer[st->leftover + i] = m[i];
195
7.32M
        }
196
609k
        bytes -= want;
197
609k
        m += want;
198
609k
        st->leftover += want;
199
609k
        if (st->leftover < POLY1305_BLOCK_SIZE) return;
  Branch (199:13): [True: 1.31k, False: 608k]
200
608k
        poly1305_blocks(st, st->buffer, POLY1305_BLOCK_SIZE);
201
608k
        st->leftover = 0;
202
608k
    }
203
204
    /* process full blocks */
205
86.0M
    if (bytes >= POLY1305_BLOCK_SIZE) {
  Branch (205:9): [True: 17.5M, False: 68.4M]
206
17.5M
        size_t want = (bytes & ~(POLY1305_BLOCK_SIZE - 1));
207
17.5M
        poly1305_blocks(st, m, want);
208
17.5M
        m += want;
209
17.5M
        bytes -= want;
210
17.5M
    }
211
212
    /* store leftover */
213
86.0M
    if (bytes) {
  Branch (213:9): [True: 608k, False: 85.3M]
214
3.02M
        for (i = 0; i < bytes; i++) {
  Branch (214:21): [True: 2.41M, False: 608k]
215
2.41M
            st->buffer[st->leftover + i] = m[i];
216
2.41M
        }
217
608k
        st->leftover += bytes;
218
608k
    }
219
86.0M
}
220
221
}  // namespace poly1305_donna