Coverage Report

Created: 2026-09-28 07:04

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/sudo/lib/util/chacha_private.h
Line
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Source
1
/*
2
chacha-merged.c version 20080118
3
D. J. Bernstein
4
Public domain.
5
*/
6
7
/* $OpenBSD: chacha_private.h,v 1.2 2013/10/04 07:02:27 djm Exp $ */
8
9
typedef unsigned char u8;
10
typedef unsigned int u32;
11
12
typedef struct
13
{
14
  u32 input[16]; /* could be compressed */
15
} chacha_ctx;
16
17
232k
#define U8C(v) (v##U)
18
2.38M
#define U32C(v) (v##U)
19
20
232k
#define U8V(v) ((u8)(v) & U8C(0xFF))
21
2.38M
#define U32V(v) ((u32)(v) & U32C(0xFFFFFFFF))
22
23
#define ROTL32(v, n) \
24
1.16M
  (U32V((v) << (n)) | ((v) >> (32 - (n))))
25
26
#define U8TO32_LITTLE(p) \
27
3.22k
  (((u32)((p)[0])      ) | \
28
3.22k
   ((u32)((p)[1]) <<  8) | \
29
3.22k
   ((u32)((p)[2]) << 16) | \
30
3.22k
   ((u32)((p)[3]) << 24))
31
32
#define U32TO8_LITTLE(p, v) \
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58.1k
  do { \
34
58.1k
    (p)[0] = U8V((v)      ); \
35
58.1k
    (p)[1] = U8V((v) >>  8); \
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58.1k
    (p)[2] = U8V((v) >> 16); \
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58.1k
    (p)[3] = U8V((v) >> 24); \
38
58.1k
  } while (0)
39
40
1.16M
#define ROTATE(v,c) (ROTL32(v,c))
41
#define XOR(v,w) ((v) ^ (w))
42
1.22M
#define PLUS(v,w) (U32V((v) + (w)))
43
3.63k
#define PLUSONE(v) (PLUS((v),1))
44
45
#define QUARTERROUND(a,b,c,d) \
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290k
  a = PLUS(a,b); d = ROTATE(XOR(d,a),16); \
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290k
  c = PLUS(c,d); b = ROTATE(XOR(b,c),12); \
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290k
  a = PLUS(a,b); d = ROTATE(XOR(d,a), 8); \
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290k
  c = PLUS(c,d); b = ROTATE(XOR(b,c), 7);
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51
static const char sigma[16] = "expand 32-byte k";
52
static const char tau[16] = "expand 16-byte k";
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static void
55
chacha_keysetup(chacha_ctx *x,const u8 *k,u32 kbits,u32 ivbits)
56
230
{
57
230
  const char *constants;
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230
  x->input[4] = U8TO32_LITTLE(k + 0);
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230
  x->input[5] = U8TO32_LITTLE(k + 4);
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230
  x->input[6] = U8TO32_LITTLE(k + 8);
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230
  x->input[7] = U8TO32_LITTLE(k + 12);
63
230
  if (kbits == 256) { /* recommended */
64
230
    k += 16;
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230
    constants = sigma;
66
230
  } else { /* kbits == 128 */
67
0
    constants = tau;
68
0
  }
69
230
  x->input[8] = U8TO32_LITTLE(k + 0);
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230
  x->input[9] = U8TO32_LITTLE(k + 4);
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230
  x->input[10] = U8TO32_LITTLE(k + 8);
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230
  x->input[11] = U8TO32_LITTLE(k + 12);
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230
  x->input[0] = U8TO32_LITTLE(constants + 0);
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230
  x->input[1] = U8TO32_LITTLE(constants + 4);
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230
  x->input[2] = U8TO32_LITTLE(constants + 8);
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230
  x->input[3] = U8TO32_LITTLE(constants + 12);
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230
}
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static void
80
chacha_ivsetup(chacha_ctx *x,const u8 *iv)
81
230
{
82
230
  x->input[12] = 0;
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230
  x->input[13] = 0;
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230
  x->input[14] = U8TO32_LITTLE(iv + 0);
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230
  x->input[15] = U8TO32_LITTLE(iv + 4);
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230
}
87
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static void
89
chacha_encrypt_bytes(chacha_ctx *x,const u8 *m,u8 *c,u32 bytes)
90
227
{
91
227
  u32 x0, x1, x2, x3, x4, x5, x6, x7, x8, x9, x10, x11, x12, x13, x14, x15;
92
227
  u32 j0, j1, j2, j3, j4, j5, j6, j7, j8, j9, j10, j11, j12, j13, j14, j15;
93
227
  u8 *ctarget = NULL;
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227
  u8 tmp[64];
95
227
  u32 i;
96
97
227
  if (!bytes) return;
98
99
227
  j0 = x->input[0];
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227
  j1 = x->input[1];
101
227
  j2 = x->input[2];
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227
  j3 = x->input[3];
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227
  j4 = x->input[4];
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227
  j5 = x->input[5];
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227
  j6 = x->input[6];
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227
  j7 = x->input[7];
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227
  j8 = x->input[8];
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227
  j9 = x->input[9];
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227
  j10 = x->input[10];
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227
  j11 = x->input[11];
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227
  j12 = x->input[12];
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227
  j13 = x->input[13];
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227
  j14 = x->input[14];
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227
  j15 = x->input[15];
115
116
3.63k
  for (;;) {
117
3.63k
    if (bytes < 64) {
118
0
      for (i = 0;i < bytes;++i) tmp[i] = m[i];
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0
      m = tmp;
120
0
      ctarget = c;
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0
      c = tmp;
122
0
    }
123
3.63k
    x0 = j0;
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3.63k
    x1 = j1;
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3.63k
    x2 = j2;
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3.63k
    x3 = j3;
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3.63k
    x4 = j4;
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3.63k
    x5 = j5;
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3.63k
    x6 = j6;
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3.63k
    x7 = j7;
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3.63k
    x8 = j8;
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3.63k
    x9 = j9;
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3.63k
    x10 = j10;
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3.63k
    x11 = j11;
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3.63k
    x12 = j12;
136
3.63k
    x13 = j13;
137
3.63k
    x14 = j14;
138
3.63k
    x15 = j15;
139
39.9k
    for (i = 20;i > 0;i -= 2) {
140
36.3k
      QUARTERROUND( x0, x4, x8,x12)
141
36.3k
      QUARTERROUND( x1, x5, x9,x13)
142
36.3k
      QUARTERROUND( x2, x6,x10,x14)
143
36.3k
      QUARTERROUND( x3, x7,x11,x15)
144
36.3k
      QUARTERROUND( x0, x5,x10,x15)
145
36.3k
      QUARTERROUND( x1, x6,x11,x12)
146
36.3k
      QUARTERROUND( x2, x7, x8,x13)
147
36.3k
      QUARTERROUND( x3, x4, x9,x14)
148
36.3k
    }
149
3.63k
    x0 = PLUS(x0,j0);
150
3.63k
    x1 = PLUS(x1,j1);
151
3.63k
    x2 = PLUS(x2,j2);
152
3.63k
    x3 = PLUS(x3,j3);
153
3.63k
    x4 = PLUS(x4,j4);
154
3.63k
    x5 = PLUS(x5,j5);
155
3.63k
    x6 = PLUS(x6,j6);
156
3.63k
    x7 = PLUS(x7,j7);
157
3.63k
    x8 = PLUS(x8,j8);
158
3.63k
    x9 = PLUS(x9,j9);
159
3.63k
    x10 = PLUS(x10,j10);
160
3.63k
    x11 = PLUS(x11,j11);
161
3.63k
    x12 = PLUS(x12,j12);
162
3.63k
    x13 = PLUS(x13,j13);
163
3.63k
    x14 = PLUS(x14,j14);
164
3.63k
    x15 = PLUS(x15,j15);
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166
#ifndef KEYSTREAM_ONLY
167
    x0 = XOR(x0,U8TO32_LITTLE(m + 0));
168
    x1 = XOR(x1,U8TO32_LITTLE(m + 4));
169
    x2 = XOR(x2,U8TO32_LITTLE(m + 8));
170
    x3 = XOR(x3,U8TO32_LITTLE(m + 12));
171
    x4 = XOR(x4,U8TO32_LITTLE(m + 16));
172
    x5 = XOR(x5,U8TO32_LITTLE(m + 20));
173
    x6 = XOR(x6,U8TO32_LITTLE(m + 24));
174
    x7 = XOR(x7,U8TO32_LITTLE(m + 28));
175
    x8 = XOR(x8,U8TO32_LITTLE(m + 32));
176
    x9 = XOR(x9,U8TO32_LITTLE(m + 36));
177
    x10 = XOR(x10,U8TO32_LITTLE(m + 40));
178
    x11 = XOR(x11,U8TO32_LITTLE(m + 44));
179
    x12 = XOR(x12,U8TO32_LITTLE(m + 48));
180
    x13 = XOR(x13,U8TO32_LITTLE(m + 52));
181
    x14 = XOR(x14,U8TO32_LITTLE(m + 56));
182
    x15 = XOR(x15,U8TO32_LITTLE(m + 60));
183
#endif
184
185
3.63k
    j12 = PLUSONE(j12);
186
3.63k
    if (!j12) {
187
0
      j13 = PLUSONE(j13);
188
      /* stopping at 2^70 bytes per nonce is user's responsibility */
189
0
    }
190
191
3.63k
    U32TO8_LITTLE(c + 0,x0);
192
3.63k
    U32TO8_LITTLE(c + 4,x1);
193
3.63k
    U32TO8_LITTLE(c + 8,x2);
194
3.63k
    U32TO8_LITTLE(c + 12,x3);
195
3.63k
    U32TO8_LITTLE(c + 16,x4);
196
3.63k
    U32TO8_LITTLE(c + 20,x5);
197
3.63k
    U32TO8_LITTLE(c + 24,x6);
198
3.63k
    U32TO8_LITTLE(c + 28,x7);
199
3.63k
    U32TO8_LITTLE(c + 32,x8);
200
3.63k
    U32TO8_LITTLE(c + 36,x9);
201
3.63k
    U32TO8_LITTLE(c + 40,x10);
202
3.63k
    U32TO8_LITTLE(c + 44,x11);
203
3.63k
    U32TO8_LITTLE(c + 48,x12);
204
3.63k
    U32TO8_LITTLE(c + 52,x13);
205
3.63k
    U32TO8_LITTLE(c + 56,x14);
206
3.63k
    U32TO8_LITTLE(c + 60,x15);
207
208
3.63k
    if (bytes <= 64) {
209
227
      if (bytes < 64) {
210
0
        for (i = 0;i < bytes;++i) ctarget[i] = c[i];
211
0
      }
212
227
      x->input[12] = j12;
213
227
      x->input[13] = j13;
214
227
      return;
215
227
    }
216
3.40k
    bytes -= 64;
217
3.40k
    c += 64;
218
#ifndef KEYSTREAM_ONLY
219
    m += 64;
220
#endif
221
3.40k
  }
222
227
}