Coverage Report

Created: 2024-06-28 06:39

/src/nettle-with-mini-gmp/ecc-mul-a.c
Line
Count
Source (jump to first uncovered line)
1
/* ecc-mul-a.c
2
3
   Copyright (C) 2013 Niels Möller
4
5
   This file is part of GNU Nettle.
6
7
   GNU Nettle is free software: you can redistribute it and/or
8
   modify it under the terms of either:
9
10
     * the GNU Lesser General Public License as published by the Free
11
       Software Foundation; either version 3 of the License, or (at your
12
       option) any later version.
13
14
   or
15
16
     * the GNU General Public License as published by the Free
17
       Software Foundation; either version 2 of the License, or (at your
18
       option) any later version.
19
20
   or both in parallel, as here.
21
22
   GNU Nettle is distributed in the hope that it will be useful,
23
   but WITHOUT ANY WARRANTY; without even the implied warranty of
24
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
25
   General Public License for more details.
26
27
   You should have received copies of the GNU General Public License and
28
   the GNU Lesser General Public License along with this program.  If
29
   not, see http://www.gnu.org/licenses/.
30
*/
31
32
/* Development of Nettle's ECC support was funded by the .SE Internet Fund. */
33
34
#if HAVE_CONFIG_H
35
# include "config.h"
36
#endif
37
38
#include <assert.h>
39
40
#include "ecc.h"
41
#include "ecc-internal.h"
42
#include "nettle-internal.h"
43
44
/* Binary algorithm needs 6*ecc->p.size + scratch for ecc_add_jja.
45
   Current total is 12 ecc->p.size, at most 864 bytes.
46
47
   Window algorithm needs (3<<w) * ecc->p.size for the table,
48
   3*ecc->p.size for a temporary point, and scratch for
49
   ecc_add_jjj. */
50
51
#if ECC_MUL_A_WBITS == 0
52
void
53
ecc_mul_a (const struct ecc_curve *ecc,
54
     mp_limb_t *r,
55
     const mp_limb_t *np, const mp_limb_t *p,
56
     mp_limb_t *scratch)
57
{
58
#define tp scratch
59
#define pj (scratch + 3*ecc->p.size)
60
#define scratch_out (scratch + 6*ecc->p.size)
61
62
  int is_zero;
63
64
  unsigned i;
65
66
  ecc_a_to_j (ecc, pj, p);
67
  mpn_zero (r, 3*ecc->p.size);
68
  
69
  for (i = ecc->p.size, is_zero = 1; i-- > 0; )
70
    {
71
      mp_limb_t w = np[i] << (GMP_LIMB_BITS - GMP_NUMB_BITS);
72
      unsigned j;
73
74
      for (j = 0; j < GMP_NUMB_BITS; j++, w <<= 1)
75
  {
76
    int bit;
77
78
    ecc_dup_jj (ecc, r, r, scratch_out);
79
    ecc_add_jja (ecc, tp, r, pj, scratch_out);
80
81
    bit = w >> (GMP_LIMB_BITS - 1);
82
    /* If is_zero is set, r is the zero point,
83
       and ecc_add_jja produced garbage. */
84
    cnd_copy (is_zero, tp, pj, 3*ecc->p.size);
85
    is_zero &= 1 - bit;
86
    /* If we had a one-bit, use the sum. */
87
    cnd_copy (bit, r, tp, 3*ecc->p.size);
88
  }
89
    }
90
}
91
#else /* ECC_MUL_A_WBITS > 1 */
92
93
80.5k
#define TABLE_SIZE (1U << ECC_MUL_A_WBITS)
94
40.0k
#define TABLE_MASK (TABLE_SIZE - 1)
95
96
18.6k
#define TABLE(j) (table + (j) * 3*ecc->p.size)
97
98
static void
99
table_init (const struct ecc_curve *ecc,
100
      mp_limb_t *table, unsigned bits,
101
      const mp_limb_t *p,
102
      mp_limb_t *scratch)
103
503
{
104
503
  unsigned size = 1 << bits;
105
503
  unsigned j;
106
107
503
  mpn_zero (TABLE(0), 3*ecc->p.size);
108
503
  ecc_a_to_j (ecc, TABLE(1), p);
109
110
4.02k
  for (j = 2; j < size; j += 2)
111
3.52k
    {
112
3.52k
      ecc_dup_jj (ecc, TABLE(j), TABLE(j/2), scratch);
113
3.52k
      ecc_add_jja (ecc, TABLE(j+1), TABLE(j), TABLE(1), scratch);
114
3.52k
    }  
115
503
}
116
117
void
118
ecc_mul_a (const struct ecc_curve *ecc,
119
     mp_limb_t *r,
120
     const mp_limb_t *np, const mp_limb_t *p,
121
     mp_limb_t *scratch)
122
503
{
123
200k
#define tp scratch
124
41.5k
#define table (scratch + 3*ecc->p.size)
125
503
  mp_limb_t *scratch_out = table + (3*ecc->p.size << ECC_MUL_A_WBITS);
126
503
  int is_zero = 0;
127
128
  /* Avoid the mp_bitcnt_t type for compatibility with older GMP
129
     versions. */
130
503
  unsigned blocks = (ecc->p.bit_size + ECC_MUL_A_WBITS - 1) / ECC_MUL_A_WBITS;
131
503
  unsigned bit_index = (blocks-1) * ECC_MUL_A_WBITS;
132
133
503
  mp_size_t limb_index = bit_index / GMP_NUMB_BITS;
134
503
  unsigned shift = bit_index % GMP_NUMB_BITS;
135
503
  mp_limb_t w, bits;
136
137
503
  table_init (ecc, table, ECC_MUL_A_WBITS, p, scratch_out);
138
139
503
  w = np[limb_index];
140
503
  bits = w >> shift;
141
503
  if (limb_index < ecc->p.size - 1)
142
0
    bits |= np[limb_index + 1] << (GMP_NUMB_BITS - shift);
143
144
503
  assert (bits < TABLE_SIZE);
145
146
503
  mpn_sec_tabselect (r, table, 3*ecc->p.size, TABLE_SIZE, bits);
147
503
  is_zero = IS_ZERO_SMALL (bits);
148
149
503
  for (;;)
150
40.5k
    {
151
40.5k
      int bits_is_zero;
152
40.5k
      unsigned j;
153
40.5k
      if (shift >= ECC_MUL_A_WBITS)
154
37.9k
  {
155
37.9k
    shift -= ECC_MUL_A_WBITS;
156
37.9k
    bits = w >> shift;
157
37.9k
  }
158
2.63k
      else
159
2.63k
  {
160
2.63k
    if (limb_index == 0)
161
503
      {
162
503
        assert (shift == 0);
163
503
        break;
164
503
      }
165
2.13k
    bits = w << (ECC_MUL_A_WBITS - shift);
166
2.13k
    w = np[--limb_index];
167
2.13k
    shift = shift + GMP_NUMB_BITS - ECC_MUL_A_WBITS;
168
2.13k
    bits |= w >> shift;
169
2.13k
  }
170
200k
      for (j = 0; j < ECC_MUL_A_WBITS; j++)
171
160k
  ecc_dup_jj (ecc, r, r, scratch_out);
172
173
40.0k
      bits &= TABLE_MASK;
174
40.0k
      mpn_sec_tabselect (tp, table, 3*ecc->p.size, TABLE_SIZE, bits);
175
40.0k
      cnd_copy (is_zero, r, tp, 3*ecc->p.size);
176
40.0k
      ecc_add_jjj (ecc, tp, tp, r, scratch_out);
177
40.0k
      bits_is_zero = IS_ZERO_SMALL (bits);
178
179
      /* Use the sum when valid. ecc_add_jja produced garbage if
180
   is_zero or bits_is_zero. */
181
40.0k
      cnd_copy (1 - (bits_is_zero | is_zero), r, tp, 3*ecc->p.size);
182
40.0k
      is_zero &= bits_is_zero;
183
40.0k
    }
184
503
#undef table
185
503
#undef tp
186
503
}
187
188
#endif /* ECC_MUL_A_WBITS > 1 */