Coverage Report

Created: 2026-09-12 06:55

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl41/crypto/bn/bn_nist.c
Line
Count
Source
1
/*
2
 * Copyright 2002-2026 The OpenSSL Project Authors. All Rights Reserved.
3
 *
4
 * Licensed under the Apache License 2.0 (the "License").  You may not use
5
 * this file except in compliance with the License.  You can obtain a copy
6
 * in the file LICENSE in the source distribution or at
7
 * https://www.openssl.org/source/license.html
8
 */
9
10
#include "bn_local.h"
11
#include "internal/cryptlib.h"
12
13
0
#define BN_NIST_192_TOP (192 + BN_BITS2 - 1) / BN_BITS2
14
3.37M
#define BN_NIST_224_TOP (224 + BN_BITS2 - 1) / BN_BITS2
15
0
#define BN_NIST_256_TOP (256 + BN_BITS2 - 1) / BN_BITS2
16
437k
#define BN_NIST_384_TOP (384 + BN_BITS2 - 1) / BN_BITS2
17
1.86M
#define BN_NIST_521_TOP (521 + BN_BITS2 - 1) / BN_BITS2
18
19
/* pre-computed tables are "carry-less" values of modulus*(i+1) */
20
#if BN_BITS2 == 64
21
static const BN_ULONG _nist_p_192[][BN_NIST_192_TOP] = {
22
    { 0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFEULL, 0xFFFFFFFFFFFFFFFFULL },
23
    { 0xFFFFFFFFFFFFFFFEULL, 0xFFFFFFFFFFFFFFFDULL, 0xFFFFFFFFFFFFFFFFULL },
24
    { 0xFFFFFFFFFFFFFFFDULL, 0xFFFFFFFFFFFFFFFCULL, 0xFFFFFFFFFFFFFFFFULL }
25
};
26
27
static const BN_ULONG _nist_p_192_sqr[] = {
28
    0x0000000000000001ULL, 0x0000000000000002ULL, 0x0000000000000001ULL,
29
    0xFFFFFFFFFFFFFFFEULL, 0xFFFFFFFFFFFFFFFDULL, 0xFFFFFFFFFFFFFFFFULL
30
};
31
32
static const BN_ULONG _nist_p_224[][BN_NIST_224_TOP] = {
33
    { 0x0000000000000001ULL, 0xFFFFFFFF00000000ULL,
34
        0xFFFFFFFFFFFFFFFFULL, 0x00000000FFFFFFFFULL },
35
    { 0x0000000000000002ULL, 0xFFFFFFFE00000000ULL,
36
        0xFFFFFFFFFFFFFFFFULL, 0x00000001FFFFFFFFULL } /* this one is
37
                                                        * "carry-full" */
38
};
39
40
static const BN_ULONG _nist_p_224_sqr[] = {
41
    0x0000000000000001ULL, 0xFFFFFFFE00000000ULL,
42
    0xFFFFFFFFFFFFFFFFULL, 0x0000000200000000ULL,
43
    0x0000000000000000ULL, 0xFFFFFFFFFFFFFFFEULL,
44
    0xFFFFFFFFFFFFFFFFULL
45
};
46
47
static const BN_ULONG _nist_p_256[][BN_NIST_256_TOP] = {
48
    { 0xFFFFFFFFFFFFFFFFULL, 0x00000000FFFFFFFFULL,
49
        0x0000000000000000ULL, 0xFFFFFFFF00000001ULL },
50
    { 0xFFFFFFFFFFFFFFFEULL, 0x00000001FFFFFFFFULL,
51
        0x0000000000000000ULL, 0xFFFFFFFE00000002ULL },
52
    { 0xFFFFFFFFFFFFFFFDULL, 0x00000002FFFFFFFFULL,
53
        0x0000000000000000ULL, 0xFFFFFFFD00000003ULL },
54
    { 0xFFFFFFFFFFFFFFFCULL, 0x00000003FFFFFFFFULL,
55
        0x0000000000000000ULL, 0xFFFFFFFC00000004ULL },
56
    { 0xFFFFFFFFFFFFFFFBULL, 0x00000004FFFFFFFFULL,
57
        0x0000000000000000ULL, 0xFFFFFFFB00000005ULL },
58
};
59
60
static const BN_ULONG _nist_p_256_sqr[] = {
61
    0x0000000000000001ULL, 0xFFFFFFFE00000000ULL,
62
    0xFFFFFFFFFFFFFFFFULL, 0x00000001FFFFFFFEULL,
63
    0x00000001FFFFFFFEULL, 0x00000001FFFFFFFEULL,
64
    0xFFFFFFFE00000001ULL, 0xFFFFFFFE00000002ULL
65
};
66
67
static const BN_ULONG _nist_p_384[][BN_NIST_384_TOP] = {
68
    { 0x00000000FFFFFFFFULL, 0xFFFFFFFF00000000ULL, 0xFFFFFFFFFFFFFFFEULL,
69
        0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL },
70
    { 0x00000001FFFFFFFEULL, 0xFFFFFFFE00000000ULL, 0xFFFFFFFFFFFFFFFDULL,
71
        0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL },
72
    { 0x00000002FFFFFFFDULL, 0xFFFFFFFD00000000ULL, 0xFFFFFFFFFFFFFFFCULL,
73
        0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL },
74
    { 0x00000003FFFFFFFCULL, 0xFFFFFFFC00000000ULL, 0xFFFFFFFFFFFFFFFBULL,
75
        0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL },
76
    { 0x00000004FFFFFFFBULL, 0xFFFFFFFB00000000ULL, 0xFFFFFFFFFFFFFFFAULL,
77
        0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL },
78
};
79
80
static const BN_ULONG _nist_p_384_sqr[] = {
81
    0xFFFFFFFE00000001ULL, 0x0000000200000000ULL, 0xFFFFFFFE00000000ULL,
82
    0x0000000200000000ULL, 0x0000000000000001ULL, 0x0000000000000000ULL,
83
    0x00000001FFFFFFFEULL, 0xFFFFFFFE00000000ULL, 0xFFFFFFFFFFFFFFFDULL,
84
    0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL
85
};
86
87
static const BN_ULONG _nist_p_521[] = {
88
    0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL,
89
    0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL,
90
    0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL,
91
    0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL,
92
    0x00000000000001FFULL
93
};
94
95
static const BN_ULONG _nist_p_521_sqr[] = {
96
    0x0000000000000001ULL, 0x0000000000000000ULL, 0x0000000000000000ULL,
97
    0x0000000000000000ULL, 0x0000000000000000ULL, 0x0000000000000000ULL,
98
    0x0000000000000000ULL, 0x0000000000000000ULL, 0xFFFFFFFFFFFFFC00ULL,
99
    0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL,
100
    0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL, 0xFFFFFFFFFFFFFFFFULL,
101
    0xFFFFFFFFFFFFFFFFULL, 0x000000000003FFFFULL
102
};
103
#elif BN_BITS2 == 32
104
static const BN_ULONG _nist_p_192[][BN_NIST_192_TOP] = {
105
    { 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFE, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF },
106
    { 0xFFFFFFFE, 0xFFFFFFFF, 0xFFFFFFFD, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF },
107
    { 0xFFFFFFFD, 0xFFFFFFFF, 0xFFFFFFFC, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF }
108
};
109
110
static const BN_ULONG _nist_p_192_sqr[] = {
111
    0x00000001, 0x00000000, 0x00000002, 0x00000000, 0x00000001, 0x00000000,
112
    0xFFFFFFFE, 0xFFFFFFFF, 0xFFFFFFFD, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF
113
};
114
115
static const BN_ULONG _nist_p_224[][BN_NIST_224_TOP] = {
116
    { 0x00000001, 0x00000000, 0x00000000, 0xFFFFFFFF,
117
        0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF },
118
    { 0x00000002, 0x00000000, 0x00000000, 0xFFFFFFFE,
119
        0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF }
120
};
121
122
static const BN_ULONG _nist_p_224_sqr[] = {
123
    0x00000001, 0x00000000, 0x00000000, 0xFFFFFFFE,
124
    0xFFFFFFFF, 0xFFFFFFFF, 0x00000000, 0x00000002,
125
    0x00000000, 0x00000000, 0xFFFFFFFE, 0xFFFFFFFF,
126
    0xFFFFFFFF, 0xFFFFFFFF
127
};
128
129
static const BN_ULONG _nist_p_256[][BN_NIST_256_TOP] = {
130
    { 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0x00000000,
131
        0x00000000, 0x00000000, 0x00000001, 0xFFFFFFFF },
132
    { 0xFFFFFFFE, 0xFFFFFFFF, 0xFFFFFFFF, 0x00000001,
133
        0x00000000, 0x00000000, 0x00000002, 0xFFFFFFFE },
134
    { 0xFFFFFFFD, 0xFFFFFFFF, 0xFFFFFFFF, 0x00000002,
135
        0x00000000, 0x00000000, 0x00000003, 0xFFFFFFFD },
136
    { 0xFFFFFFFC, 0xFFFFFFFF, 0xFFFFFFFF, 0x00000003,
137
        0x00000000, 0x00000000, 0x00000004, 0xFFFFFFFC },
138
    { 0xFFFFFFFB, 0xFFFFFFFF, 0xFFFFFFFF, 0x00000004,
139
        0x00000000, 0x00000000, 0x00000005, 0xFFFFFFFB },
140
};
141
142
static const BN_ULONG _nist_p_256_sqr[] = {
143
    0x00000001, 0x00000000, 0x00000000, 0xFFFFFFFE,
144
    0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFE, 0x00000001,
145
    0xFFFFFFFE, 0x00000001, 0xFFFFFFFE, 0x00000001,
146
    0x00000001, 0xFFFFFFFE, 0x00000002, 0xFFFFFFFE
147
};
148
149
static const BN_ULONG _nist_p_384[][BN_NIST_384_TOP] = {
150
    { 0xFFFFFFFF, 0x00000000, 0x00000000, 0xFFFFFFFF, 0xFFFFFFFE, 0xFFFFFFFF,
151
        0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF },
152
    { 0xFFFFFFFE, 0x00000001, 0x00000000, 0xFFFFFFFE, 0xFFFFFFFD, 0xFFFFFFFF,
153
        0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF },
154
    { 0xFFFFFFFD, 0x00000002, 0x00000000, 0xFFFFFFFD, 0xFFFFFFFC, 0xFFFFFFFF,
155
        0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF },
156
    { 0xFFFFFFFC, 0x00000003, 0x00000000, 0xFFFFFFFC, 0xFFFFFFFB, 0xFFFFFFFF,
157
        0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF },
158
    { 0xFFFFFFFB, 0x00000004, 0x00000000, 0xFFFFFFFB, 0xFFFFFFFA, 0xFFFFFFFF,
159
        0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF },
160
};
161
162
static const BN_ULONG _nist_p_384_sqr[] = {
163
    0x00000001, 0xFFFFFFFE, 0x00000000, 0x00000002, 0x00000000, 0xFFFFFFFE,
164
    0x00000000, 0x00000002, 0x00000001, 0x00000000, 0x00000000, 0x00000000,
165
    0xFFFFFFFE, 0x00000001, 0x00000000, 0xFFFFFFFE, 0xFFFFFFFD, 0xFFFFFFFF,
166
    0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF
167
};
168
169
static const BN_ULONG _nist_p_521[] = { 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF,
170
    0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF,
171
    0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF,
172
    0xFFFFFFFF, 0x000001FF };
173
174
static const BN_ULONG _nist_p_521_sqr[] = {
175
    0x00000001, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000,
176
    0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000, 0x00000000,
177
    0x00000000, 0x00000000, 0x00000000, 0x00000000, 0xFFFFFC00, 0xFFFFFFFF,
178
    0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF,
179
    0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF, 0xFFFFFFFF,
180
    0xFFFFFFFF, 0xFFFFFFFF, 0x0003FFFF
181
};
182
#else
183
#error "unsupported BN_BITS2"
184
#endif
185
186
static const BIGNUM ossl_bignum_nist_p_192 = {
187
    (BN_ULONG *)_nist_p_192[0],
188
    BN_NIST_192_TOP,
189
    BN_NIST_192_TOP,
190
    0,
191
    BN_FLG_STATIC_DATA
192
};
193
194
static const BIGNUM ossl_bignum_nist_p_224 = {
195
    (BN_ULONG *)_nist_p_224[0],
196
    BN_NIST_224_TOP,
197
    BN_NIST_224_TOP,
198
    0,
199
    BN_FLG_STATIC_DATA
200
};
201
202
static const BIGNUM ossl_bignum_nist_p_256 = {
203
    (BN_ULONG *)_nist_p_256[0],
204
    BN_NIST_256_TOP,
205
    BN_NIST_256_TOP,
206
    0,
207
    BN_FLG_STATIC_DATA
208
};
209
210
static const BIGNUM ossl_bignum_nist_p_384 = {
211
    (BN_ULONG *)_nist_p_384[0],
212
    BN_NIST_384_TOP,
213
    BN_NIST_384_TOP,
214
    0,
215
    BN_FLG_STATIC_DATA
216
};
217
218
static const BIGNUM ossl_bignum_nist_p_521 = {
219
    (BN_ULONG *)_nist_p_521,
220
    BN_NIST_521_TOP,
221
    BN_NIST_521_TOP,
222
    0,
223
    BN_FLG_STATIC_DATA
224
};
225
226
const BIGNUM *BN_get0_nist_prime_192(void)
227
0
{
228
0
    return &ossl_bignum_nist_p_192;
229
0
}
230
231
const BIGNUM *BN_get0_nist_prime_224(void)
232
0
{
233
0
    return &ossl_bignum_nist_p_224;
234
0
}
235
236
const BIGNUM *BN_get0_nist_prime_256(void)
237
0
{
238
0
    return &ossl_bignum_nist_p_256;
239
0
}
240
241
const BIGNUM *BN_get0_nist_prime_384(void)
242
0
{
243
0
    return &ossl_bignum_nist_p_384;
244
0
}
245
246
const BIGNUM *BN_get0_nist_prime_521(void)
247
0
{
248
0
    return &ossl_bignum_nist_p_521;
249
0
}
250
251
/*
252
 * To avoid more recent compilers (specifically clang-14) from treating this
253
 * code as a violation of the strict aliasing conditions and omitting it, this
254
 * cannot be declared as a function.  Moreover, the dst parameter cannot be
255
 * cached in a local since this no longer references the union and again falls
256
 * foul of the strict aliasing criteria.  Refer to #18225 for the initial
257
 * diagnostics and llvm/llvm-project#55255 for the later discussions with the
258
 * LLVM developers.  The problem boils down to if an array in the union is
259
 * converted to a pointer or if it is used directly.
260
 *
261
 * This function was inlined regardless, so there is no space cost to be
262
 * paid for making it a macro.
263
 */
264
#define nist_cp_bn_0(dst, src_in, top, max) \
265
606k
    {                                       \
266
606k
        int ii;                             \
267
606k
        const BN_ULONG *src = src_in;       \
268
606k
                                            \
269
3.83M
        for (ii = 0; ii < top; ii++)        \
270
3.22M
            (dst)[ii] = src[ii];            \
271
769k
        for (; ii < max; ii++)              \
272
606k
            (dst)[ii] = 0;                  \
273
606k
    }
274
275
static void nist_cp_bn(BN_ULONG *dst, const BN_ULONG *src, int top)
276
606k
{
277
606k
    int i;
278
279
3.99M
    for (i = 0; i < top; i++)
280
3.38M
        dst[i] = src[i];
281
606k
}
282
283
#if BN_BITS2 == 64
284
#define bn_cp_64(to, n, from, m) ((to)[n] = ((m) >= 0) ? ((from)[m]) : 0)
285
#define bn_64_set_0(to, n) (to)[n] = (BN_ULONG)0
286
/*
287
 * two following macros are implemented under assumption that they
288
 * are called in a sequence with *ascending* n, i.e. as they are...
289
 */
290
8.19M
#define bn_cp_32_naked(to, n, from, m) (((n) & 1) ? (to[(n) / 2] |= ((m) & 1) ? (from[(m) / 2] & BN_MASK2h) : (from[(m) / 2] << 32)) \
291
8.19M
                                                  : (to[(n) / 2] = ((m) & 1) ? (from[(m) / 2] >> 32) : (from[(m) / 2] & BN_MASK2l)))
292
3.75M
#define bn_32_set_0(to, n) (((n) & 1) ? (to[(n) / 2] &= BN_MASK2l) : (to[(n) / 2] = 0));
293
11.9M
#define bn_cp_32(to, n, from, m) ((m) >= 0) ? bn_cp_32_naked(to, n, from, m) : bn_32_set_0(to, n)
294
#if defined(L_ENDIAN)
295
#if defined(__arch64__)
296
#define NIST_INT64 long
297
#else
298
121k
#define NIST_INT64 long long
299
#endif
300
#endif
301
#else
302
#define bn_cp_64(to, n, from, m)                      \
303
    {                                                 \
304
        bn_cp_32(to, (n) * 2, from, (m) * 2);         \
305
        bn_cp_32(to, (n) * 2 + 1, from, (m) * 2 + 1); \
306
    }
307
#define bn_64_set_0(to, n)            \
308
    {                                 \
309
        bn_32_set_0(to, (n) * 2);     \
310
        bn_32_set_0(to, (n) * 2 + 1); \
311
    }
312
#define bn_cp_32(to, n, from, m) ((to)[n] = ((m) >= 0) ? ((from)[m]) : 0)
313
#define bn_32_set_0(to, n) (to)[n] = (BN_ULONG)0;
314
#if defined(_WIN32) && !defined(__GNUC__)
315
#define NIST_INT64 __int64
316
#elif defined(BN_LLONG)
317
#define NIST_INT64 long long
318
#endif
319
#endif /* BN_BITS2 != 64 */
320
321
#ifdef NIST_INT64
322
/* Helpers to load/store a 32-bit word (uint32_t) from/into a memory
323
 * location and avoid potential aliasing issue.  */
324
static ossl_inline uint32_t load_u32(const void *ptr)
325
1.45M
{
326
1.45M
    uint32_t tmp;
327
328
1.45M
    memcpy(&tmp, ptr, sizeof(tmp));
329
1.45M
    return tmp;
330
1.45M
}
331
332
static ossl_inline void store_lo32(void *ptr, NIST_INT64 val)
333
1.45M
{
334
    /* A cast is needed for big-endian system: on a 32-bit BE system
335
     * NIST_INT64 may be defined as well if the compiler supports 64-bit
336
     * long long.  */
337
1.45M
    uint32_t tmp = (uint32_t)val;
338
339
1.45M
    memcpy(ptr, &tmp, sizeof(tmp));
340
1.45M
}
341
#endif /* NIST_INT64 */
342
343
#define nist_set_192(to, from, a1, a2, a3) \
344
    {                                      \
345
        bn_cp_64(to, 0, from, (a3) - 3);   \
346
        bn_cp_64(to, 1, from, (a2) - 3);   \
347
        bn_cp_64(to, 2, from, (a1) - 3);   \
348
    }
349
350
int BN_nist_mod_192(BIGNUM *r, const BIGNUM *a, const BIGNUM *field,
351
    BN_CTX *ctx)
352
0
{
353
0
    int top = a->top, i;
354
0
    int carry;
355
0
    register BN_ULONG *r_d, *a_d = a->d;
356
0
    union {
357
0
        BN_ULONG bn[BN_NIST_192_TOP];
358
0
        unsigned int ui[BN_NIST_192_TOP * sizeof(BN_ULONG) / sizeof(unsigned int)];
359
0
    } buf;
360
0
    BN_ULONG c_d[BN_NIST_192_TOP], *res;
361
0
    static const BIGNUM ossl_bignum_nist_p_192_sqr = {
362
0
        (BN_ULONG *)_nist_p_192_sqr,
363
0
        OSSL_NELEM(_nist_p_192_sqr),
364
0
        OSSL_NELEM(_nist_p_192_sqr),
365
0
        0, BN_FLG_STATIC_DATA
366
0
    };
367
368
0
    field = &ossl_bignum_nist_p_192; /* just to make sure */
369
370
0
    if (BN_is_negative(a) || BN_ucmp(a, &ossl_bignum_nist_p_192_sqr) >= 0)
371
0
        return BN_nnmod(r, a, field, ctx);
372
373
0
    i = BN_ucmp(field, a);
374
0
    if (i == 0) {
375
0
        BN_zero(r);
376
0
        return 1;
377
0
    } else if (i > 0)
378
0
        return (r == a) ? 1 : (BN_copy(r, a) != NULL);
379
380
0
    if (r != a) {
381
0
        if (!bn_wexpand(r, BN_NIST_192_TOP))
382
0
            return 0;
383
0
        r_d = r->d;
384
0
        nist_cp_bn(r_d, a_d, BN_NIST_192_TOP);
385
0
    } else
386
0
        r_d = a_d;
387
388
0
    nist_cp_bn_0(buf.bn, a_d + BN_NIST_192_TOP, top - BN_NIST_192_TOP,
389
0
        BN_NIST_192_TOP);
390
391
0
#if defined(NIST_INT64)
392
0
    {
393
0
        NIST_INT64 acc; /* accumulator */
394
0
        unsigned int *rp = (unsigned int *)r_d;
395
0
        const unsigned int *bp = (const unsigned int *)buf.ui;
396
397
0
        acc = load_u32(&rp[0]);
398
0
        acc += bp[3 * 2 - 6];
399
0
        acc += bp[5 * 2 - 6];
400
0
        store_lo32(&rp[0], acc);
401
0
        acc >>= 32;
402
403
0
        acc += load_u32(&rp[1]);
404
0
        acc += bp[3 * 2 - 5];
405
0
        acc += bp[5 * 2 - 5];
406
0
        store_lo32(&rp[1], acc);
407
0
        acc >>= 32;
408
409
0
        acc += load_u32(&rp[2]);
410
0
        acc += bp[3 * 2 - 6];
411
0
        acc += bp[4 * 2 - 6];
412
0
        acc += bp[5 * 2 - 6];
413
0
        store_lo32(&rp[2], acc);
414
0
        acc >>= 32;
415
416
0
        acc += load_u32(&rp[3]);
417
0
        acc += bp[3 * 2 - 5];
418
0
        acc += bp[4 * 2 - 5];
419
0
        acc += bp[5 * 2 - 5];
420
0
        store_lo32(&rp[3], acc);
421
0
        acc >>= 32;
422
423
0
        acc += load_u32(&rp[4]);
424
0
        acc += bp[4 * 2 - 6];
425
0
        acc += bp[5 * 2 - 6];
426
0
        store_lo32(&rp[4], acc);
427
0
        acc >>= 32;
428
429
0
        acc += load_u32(&rp[5]);
430
0
        acc += bp[4 * 2 - 5];
431
0
        acc += bp[5 * 2 - 5];
432
0
        store_lo32(&rp[5], acc);
433
434
0
        carry = (int)(acc >> 32);
435
0
    }
436
#else
437
    {
438
        BN_ULONG t_d[BN_NIST_192_TOP];
439
440
        nist_set_192(t_d, buf.bn, 0, 3, 3);
441
        carry = (int)bn_add_words(r_d, r_d, t_d, BN_NIST_192_TOP);
442
        nist_set_192(t_d, buf.bn, 4, 4, 0);
443
        carry += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_192_TOP);
444
        nist_set_192(t_d, buf.bn, 5, 5, 5)
445
            carry
446
            += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_192_TOP);
447
    }
448
#endif
449
0
    if (carry > 0)
450
0
        carry = (int)bn_sub_words(r_d, r_d, _nist_p_192[carry - 1],
451
0
            BN_NIST_192_TOP);
452
0
    else
453
0
        carry = 1;
454
455
    /*
456
     * we need 'if (carry==0 || result>=modulus) result-=modulus;'
457
     * as comparison implies subtraction, we can write
458
     * 'tmp=result-modulus; if (!carry || !borrow) result=tmp;'
459
     * this is what happens below, but without explicit if:-) a.
460
     */
461
0
    res = (bn_sub_words(c_d, r_d, _nist_p_192[0], BN_NIST_192_TOP) && carry)
462
0
        ? r_d
463
0
        : c_d;
464
0
    nist_cp_bn(r_d, res, BN_NIST_192_TOP);
465
0
    r->top = BN_NIST_192_TOP;
466
0
    bn_correct_top(r);
467
468
0
    return 1;
469
0
}
470
471
typedef BN_ULONG (*bn_addsub_f)(BN_ULONG *, const BN_ULONG *,
472
    const BN_ULONG *, int);
473
474
#define nist_set_224(to, from, a1, a2, a3, a4, a5, a6, a7) \
475
1.70M
    {                                                      \
476
1.70M
        bn_cp_32(to, 0, from, (a7) - 7);                   \
477
1.70M
        bn_cp_32(to, 1, from, (a6) - 7);                   \
478
1.70M
        bn_cp_32(to, 2, from, (a5) - 7);                   \
479
1.70M
        bn_cp_32(to, 3, from, (a4) - 7);                   \
480
1.70M
        bn_cp_32(to, 4, from, (a3) - 7);                   \
481
1.70M
        bn_cp_32(to, 5, from, (a2) - 7);                   \
482
1.70M
        bn_cp_32(to, 6, from, (a1) - 7);                   \
483
1.70M
    }
484
485
int BN_nist_mod_224(BIGNUM *r, const BIGNUM *a, const BIGNUM *field,
486
    BN_CTX *ctx)
487
344k
{
488
344k
    int top = a->top, i;
489
344k
    int carry;
490
344k
    BN_ULONG *r_d, *a_d = a->d;
491
344k
    union {
492
344k
        BN_ULONG bn[BN_NIST_224_TOP];
493
344k
        unsigned int ui[BN_NIST_224_TOP * sizeof(BN_ULONG) / sizeof(unsigned int)];
494
344k
    } buf;
495
344k
    BN_ULONG c_d[BN_NIST_224_TOP], *res;
496
344k
    bn_addsub_f adjust;
497
344k
    static const BIGNUM ossl_bignum_nist_p_224_sqr = {
498
344k
        (BN_ULONG *)_nist_p_224_sqr,
499
344k
        OSSL_NELEM(_nist_p_224_sqr),
500
344k
        OSSL_NELEM(_nist_p_224_sqr),
501
344k
        0, BN_FLG_STATIC_DATA
502
344k
    };
503
504
344k
    field = &ossl_bignum_nist_p_224; /* just to make sure */
505
506
344k
    if (BN_is_negative(a) || BN_ucmp(a, &ossl_bignum_nist_p_224_sqr) >= 0)
507
0
        return BN_nnmod(r, a, field, ctx);
508
509
344k
    i = BN_ucmp(field, a);
510
344k
    if (i == 0) {
511
0
        BN_zero(r);
512
0
        return 1;
513
344k
    } else if (i > 0)
514
3.58k
        return (r == a) ? 1 : (BN_copy(r, a) != NULL);
515
516
341k
    if (r != a) {
517
0
        if (!bn_wexpand(r, BN_NIST_224_TOP))
518
0
            return 0;
519
0
        r_d = r->d;
520
0
        nist_cp_bn(r_d, a_d, BN_NIST_224_TOP);
521
0
    } else
522
341k
        r_d = a_d;
523
524
341k
#if BN_BITS2 == 64
525
    /* copy upper 256 bits of 448 bit number ... */
526
341k
    nist_cp_bn_0(c_d, a_d + (BN_NIST_224_TOP - 1),
527
341k
        top - (BN_NIST_224_TOP - 1), BN_NIST_224_TOP);
528
    /* ... and right shift by 32 to obtain upper 224 bits */
529
341k
    nist_set_224(buf.bn, c_d, 14, 13, 12, 11, 10, 9, 8);
530
    /* truncate lower part to 224 bits too */
531
341k
    r_d[BN_NIST_224_TOP - 1] &= BN_MASK2l;
532
#else
533
    nist_cp_bn_0(buf.bn, a_d + BN_NIST_224_TOP, top - BN_NIST_224_TOP,
534
        BN_NIST_224_TOP);
535
#endif
536
537
#if defined(NIST_INT64) && BN_BITS2 != 64
538
    {
539
        NIST_INT64 acc; /* accumulator */
540
        unsigned int *rp = (unsigned int *)r_d;
541
        const unsigned int *bp = (const unsigned int *)buf.ui;
542
543
        acc = rp[0];
544
        acc -= bp[7 - 7];
545
        acc -= bp[11 - 7];
546
        rp[0] = (unsigned int)acc;
547
        acc >>= 32;
548
549
        acc += rp[1];
550
        acc -= bp[8 - 7];
551
        acc -= bp[12 - 7];
552
        rp[1] = (unsigned int)acc;
553
        acc >>= 32;
554
555
        acc += rp[2];
556
        acc -= bp[9 - 7];
557
        acc -= bp[13 - 7];
558
        rp[2] = (unsigned int)acc;
559
        acc >>= 32;
560
561
        acc += rp[3];
562
        acc += bp[7 - 7];
563
        acc += bp[11 - 7];
564
        acc -= bp[10 - 7];
565
        rp[3] = (unsigned int)acc;
566
        acc >>= 32;
567
568
        acc += rp[4];
569
        acc += bp[8 - 7];
570
        acc += bp[12 - 7];
571
        acc -= bp[11 - 7];
572
        rp[4] = (unsigned int)acc;
573
        acc >>= 32;
574
575
        acc += rp[5];
576
        acc += bp[9 - 7];
577
        acc += bp[13 - 7];
578
        acc -= bp[12 - 7];
579
        rp[5] = (unsigned int)acc;
580
        acc >>= 32;
581
582
        acc += rp[6];
583
        acc += bp[10 - 7];
584
        acc -= bp[13 - 7];
585
        rp[6] = (unsigned int)acc;
586
587
        carry = (int)(acc >> 32);
588
    }
589
#else
590
341k
    {
591
341k
        BN_ULONG t_d[BN_NIST_224_TOP];
592
593
341k
        nist_set_224(t_d, buf.bn, 10, 9, 8, 7, 0, 0, 0);
594
341k
        carry = (int)bn_add_words(r_d, r_d, t_d, BN_NIST_224_TOP);
595
341k
        nist_set_224(t_d, buf.bn, 0, 13, 12, 11, 0, 0, 0);
596
341k
        carry += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_224_TOP);
597
341k
        nist_set_224(t_d, buf.bn, 13, 12, 11, 10, 9, 8, 7);
598
341k
        carry -= (int)bn_sub_words(r_d, r_d, t_d, BN_NIST_224_TOP);
599
341k
        nist_set_224(t_d, buf.bn, 0, 0, 0, 0, 13, 12, 11);
600
341k
        carry -= (int)bn_sub_words(r_d, r_d, t_d, BN_NIST_224_TOP);
601
602
341k
#if BN_BITS2 == 64
603
341k
        carry = (int)(r_d[BN_NIST_224_TOP - 1] >> 32);
604
341k
#endif
605
341k
    }
606
341k
#endif
607
341k
    adjust = bn_sub_words;
608
341k
    if (carry > 0) {
609
147k
        carry = (int)bn_sub_words(r_d, r_d, _nist_p_224[carry - 1],
610
147k
            BN_NIST_224_TOP);
611
147k
#if BN_BITS2 == 64
612
147k
        carry = (int)(~(r_d[BN_NIST_224_TOP - 1] >> 32)) & 1;
613
147k
#endif
614
193k
    } else if (carry < 0) {
615
        /*
616
         * it's a bit more complicated logic in this case. if bn_add_words
617
         * yields no carry, then result has to be adjusted by unconditionally
618
         * *adding* the modulus. but if it does, then result has to be
619
         * compared to the modulus and conditionally adjusted by
620
         * *subtracting* the latter.
621
         */
622
11.2k
        carry = (int)bn_add_words(r_d, r_d, _nist_p_224[-carry - 1],
623
11.2k
            BN_NIST_224_TOP);
624
11.2k
        adjust = carry ? bn_sub_words : bn_add_words;
625
11.2k
    } else
626
182k
        carry = 1;
627
628
    /* otherwise it's effectively same as in BN_nist_mod_192... */
629
341k
    res = ((*adjust)(c_d, r_d, _nist_p_224[0], BN_NIST_224_TOP) && carry)
630
341k
        ? r_d
631
341k
        : c_d;
632
341k
    nist_cp_bn(r_d, res, BN_NIST_224_TOP);
633
341k
    r->top = BN_NIST_224_TOP;
634
341k
    bn_correct_top(r);
635
636
341k
    return 1;
637
341k
}
638
639
#define nist_set_256(to, from, a1, a2, a3, a4, a5, a6, a7, a8) \
640
    {                                                          \
641
        bn_cp_32(to, 0, from, (a8) - 8);                       \
642
        bn_cp_32(to, 1, from, (a7) - 8);                       \
643
        bn_cp_32(to, 2, from, (a6) - 8);                       \
644
        bn_cp_32(to, 3, from, (a5) - 8);                       \
645
        bn_cp_32(to, 4, from, (a4) - 8);                       \
646
        bn_cp_32(to, 5, from, (a3) - 8);                       \
647
        bn_cp_32(to, 6, from, (a2) - 8);                       \
648
        bn_cp_32(to, 7, from, (a1) - 8);                       \
649
    }
650
651
int BN_nist_mod_256(BIGNUM *r, const BIGNUM *a, const BIGNUM *field,
652
    BN_CTX *ctx)
653
0
{
654
0
    int i, top = a->top;
655
0
    int carry = 0;
656
0
    register BN_ULONG *a_d = a->d, *r_d;
657
0
    union {
658
0
        BN_ULONG bn[BN_NIST_256_TOP];
659
0
        unsigned int ui[BN_NIST_256_TOP * sizeof(BN_ULONG) / sizeof(unsigned int)];
660
0
    } buf;
661
0
    BN_ULONG c_d[BN_NIST_256_TOP], *res;
662
0
    bn_addsub_f adjust;
663
0
    static const BIGNUM ossl_bignum_nist_p_256_sqr = {
664
0
        (BN_ULONG *)_nist_p_256_sqr,
665
0
        OSSL_NELEM(_nist_p_256_sqr),
666
0
        OSSL_NELEM(_nist_p_256_sqr),
667
0
        0, BN_FLG_STATIC_DATA
668
0
    };
669
670
0
    field = &ossl_bignum_nist_p_256; /* just to make sure */
671
672
0
    if (BN_is_negative(a) || BN_ucmp(a, &ossl_bignum_nist_p_256_sqr) >= 0)
673
0
        return BN_nnmod(r, a, field, ctx);
674
675
0
    i = BN_ucmp(field, a);
676
0
    if (i == 0) {
677
0
        BN_zero(r);
678
0
        return 1;
679
0
    } else if (i > 0)
680
0
        return (r == a) ? 1 : (BN_copy(r, a) != NULL);
681
682
0
    if (r != a) {
683
0
        if (!bn_wexpand(r, BN_NIST_256_TOP))
684
0
            return 0;
685
0
        r_d = r->d;
686
0
        nist_cp_bn(r_d, a_d, BN_NIST_256_TOP);
687
0
    } else
688
0
        r_d = a_d;
689
690
0
    nist_cp_bn_0(buf.bn, a_d + BN_NIST_256_TOP, top - BN_NIST_256_TOP,
691
0
        BN_NIST_256_TOP);
692
693
0
#if defined(NIST_INT64)
694
0
    {
695
0
        NIST_INT64 acc; /* accumulator */
696
0
        unsigned int *rp = (unsigned int *)r_d;
697
0
        const unsigned int *bp = (const unsigned int *)buf.ui;
698
699
0
        acc = load_u32(&rp[0]);
700
0
        acc += bp[8 - 8];
701
0
        acc += bp[9 - 8];
702
0
        acc -= bp[11 - 8];
703
0
        acc -= bp[12 - 8];
704
0
        acc -= bp[13 - 8];
705
0
        acc -= bp[14 - 8];
706
0
        store_lo32(&rp[0], acc);
707
0
        acc >>= 32;
708
709
0
        acc += load_u32(&rp[1]);
710
0
        acc += bp[9 - 8];
711
0
        acc += bp[10 - 8];
712
0
        acc -= bp[12 - 8];
713
0
        acc -= bp[13 - 8];
714
0
        acc -= bp[14 - 8];
715
0
        acc -= bp[15 - 8];
716
0
        store_lo32(&rp[1], acc);
717
0
        acc >>= 32;
718
719
0
        acc += load_u32(&rp[2]);
720
0
        acc += bp[10 - 8];
721
0
        acc += bp[11 - 8];
722
0
        acc -= bp[13 - 8];
723
0
        acc -= bp[14 - 8];
724
0
        acc -= bp[15 - 8];
725
0
        store_lo32(&rp[2], acc);
726
0
        acc >>= 32;
727
728
0
        acc += load_u32(&rp[3]);
729
0
        acc += bp[11 - 8];
730
0
        acc += bp[11 - 8];
731
0
        acc += bp[12 - 8];
732
0
        acc += bp[12 - 8];
733
0
        acc += bp[13 - 8];
734
0
        acc -= bp[15 - 8];
735
0
        acc -= bp[8 - 8];
736
0
        acc -= bp[9 - 8];
737
0
        store_lo32(&rp[3], acc);
738
0
        acc >>= 32;
739
740
0
        acc += load_u32(&rp[4]);
741
0
        acc += bp[12 - 8];
742
0
        acc += bp[12 - 8];
743
0
        acc += bp[13 - 8];
744
0
        acc += bp[13 - 8];
745
0
        acc += bp[14 - 8];
746
0
        acc -= bp[9 - 8];
747
0
        acc -= bp[10 - 8];
748
0
        store_lo32(&rp[4], acc);
749
0
        acc >>= 32;
750
751
0
        acc += load_u32(&rp[5]);
752
0
        acc += bp[13 - 8];
753
0
        acc += bp[13 - 8];
754
0
        acc += bp[14 - 8];
755
0
        acc += bp[14 - 8];
756
0
        acc += bp[15 - 8];
757
0
        acc -= bp[10 - 8];
758
0
        acc -= bp[11 - 8];
759
0
        store_lo32(&rp[5], acc);
760
0
        acc >>= 32;
761
762
0
        acc += load_u32(&rp[6]);
763
0
        acc += bp[14 - 8];
764
0
        acc += bp[14 - 8];
765
0
        acc += bp[15 - 8];
766
0
        acc += bp[15 - 8];
767
0
        acc += bp[14 - 8];
768
0
        acc += bp[13 - 8];
769
0
        acc -= bp[8 - 8];
770
0
        acc -= bp[9 - 8];
771
0
        store_lo32(&rp[6], acc);
772
0
        acc >>= 32;
773
774
0
        acc += load_u32(&rp[7]);
775
0
        acc += bp[15 - 8];
776
0
        acc += bp[15 - 8];
777
0
        acc += bp[15 - 8];
778
0
        acc += bp[8 - 8];
779
0
        acc -= bp[10 - 8];
780
0
        acc -= bp[11 - 8];
781
0
        acc -= bp[12 - 8];
782
0
        acc -= bp[13 - 8];
783
0
        store_lo32(&rp[7], acc);
784
785
0
        carry = (int)(acc >> 32);
786
0
    }
787
#else
788
    {
789
        BN_ULONG t_d[BN_NIST_256_TOP];
790
791
        /*
792
         * S1
793
         */
794
        nist_set_256(t_d, buf.bn, 15, 14, 13, 12, 11, 0, 0, 0);
795
        /*
796
         * S2
797
         */
798
        nist_set_256(c_d, buf.bn, 0, 15, 14, 13, 12, 0, 0, 0);
799
        carry = (int)bn_add_words(t_d, t_d, c_d, BN_NIST_256_TOP);
800
        /* left shift */
801
        {
802
            register BN_ULONG *ap, t, c;
803
            ap = t_d;
804
            c = 0;
805
            for (i = BN_NIST_256_TOP; i != 0; --i) {
806
                t = *ap;
807
                *(ap++) = ((t << 1) | c) & BN_MASK2;
808
                c = (t & BN_TBIT) ? 1 : 0;
809
            }
810
            carry <<= 1;
811
            carry |= c;
812
        }
813
        carry += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_256_TOP);
814
        /*
815
         * S3
816
         */
817
        nist_set_256(t_d, buf.bn, 15, 14, 0, 0, 0, 10, 9, 8);
818
        carry += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_256_TOP);
819
        /*
820
         * S4
821
         */
822
        nist_set_256(t_d, buf.bn, 8, 13, 15, 14, 13, 11, 10, 9);
823
        carry += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_256_TOP);
824
        /*
825
         * D1
826
         */
827
        nist_set_256(t_d, buf.bn, 10, 8, 0, 0, 0, 13, 12, 11);
828
        carry -= (int)bn_sub_words(r_d, r_d, t_d, BN_NIST_256_TOP);
829
        /*
830
         * D2
831
         */
832
        nist_set_256(t_d, buf.bn, 11, 9, 0, 0, 15, 14, 13, 12);
833
        carry -= (int)bn_sub_words(r_d, r_d, t_d, BN_NIST_256_TOP);
834
        /*
835
         * D3
836
         */
837
        nist_set_256(t_d, buf.bn, 12, 0, 10, 9, 8, 15, 14, 13);
838
        carry -= (int)bn_sub_words(r_d, r_d, t_d, BN_NIST_256_TOP);
839
        /*
840
         * D4
841
         */
842
        nist_set_256(t_d, buf.bn, 13, 0, 11, 10, 9, 0, 15, 14);
843
        carry -= (int)bn_sub_words(r_d, r_d, t_d, BN_NIST_256_TOP);
844
    }
845
#endif
846
    /* see BN_nist_mod_224 for explanation */
847
0
    adjust = bn_sub_words;
848
0
    if (carry > 0)
849
0
        carry = (int)bn_sub_words(r_d, r_d, _nist_p_256[carry - 1],
850
0
            BN_NIST_256_TOP);
851
0
    else if (carry < 0) {
852
0
        carry = (int)bn_add_words(r_d, r_d, _nist_p_256[-carry - 1],
853
0
            BN_NIST_256_TOP);
854
0
        adjust = carry ? bn_sub_words : bn_add_words;
855
0
    } else
856
0
        carry = 1;
857
858
0
    res = ((*adjust)(c_d, r_d, _nist_p_256[0], BN_NIST_256_TOP) && carry)
859
0
        ? r_d
860
0
        : c_d;
861
0
    nist_cp_bn(r_d, res, BN_NIST_256_TOP);
862
0
    r->top = BN_NIST_256_TOP;
863
0
    bn_correct_top(r);
864
865
0
    return 1;
866
0
}
867
868
#define nist_set_384(to, from, a1, a2, a3, a4, a5, a6, a7, a8, a9, a10, a11, a12) \
869
    {                                                                             \
870
        bn_cp_32(to, 0, from, (a12) - 12);                                        \
871
        bn_cp_32(to, 1, from, (a11) - 12);                                        \
872
        bn_cp_32(to, 2, from, (a10) - 12);                                        \
873
        bn_cp_32(to, 3, from, (a9) - 12);                                         \
874
        bn_cp_32(to, 4, from, (a8) - 12);                                         \
875
        bn_cp_32(to, 5, from, (a7) - 12);                                         \
876
        bn_cp_32(to, 6, from, (a6) - 12);                                         \
877
        bn_cp_32(to, 7, from, (a5) - 12);                                         \
878
        bn_cp_32(to, 8, from, (a4) - 12);                                         \
879
        bn_cp_32(to, 9, from, (a3) - 12);                                         \
880
        bn_cp_32(to, 10, from, (a2) - 12);                                        \
881
        bn_cp_32(to, 11, from, (a1) - 12);                                        \
882
    }
883
884
int BN_nist_mod_384(BIGNUM *r, const BIGNUM *a, const BIGNUM *field,
885
    BN_CTX *ctx)
886
122k
{
887
122k
    int i, top = a->top;
888
122k
    int carry = 0;
889
122k
    register BN_ULONG *r_d, *a_d = a->d;
890
122k
    union {
891
122k
        BN_ULONG bn[BN_NIST_384_TOP];
892
122k
        unsigned int ui[BN_NIST_384_TOP * sizeof(BN_ULONG) / sizeof(unsigned int)];
893
122k
    } buf;
894
122k
    BN_ULONG c_d[BN_NIST_384_TOP], *res;
895
122k
    bn_addsub_f adjust;
896
122k
    static const BIGNUM ossl_bignum_nist_p_384_sqr = {
897
122k
        (BN_ULONG *)_nist_p_384_sqr,
898
122k
        OSSL_NELEM(_nist_p_384_sqr),
899
122k
        OSSL_NELEM(_nist_p_384_sqr),
900
122k
        0, BN_FLG_STATIC_DATA
901
122k
    };
902
903
122k
    field = &ossl_bignum_nist_p_384; /* just to make sure */
904
905
122k
    if (BN_is_negative(a) || BN_ucmp(a, &ossl_bignum_nist_p_384_sqr) >= 0)
906
0
        return BN_nnmod(r, a, field, ctx);
907
908
122k
    i = BN_ucmp(field, a);
909
122k
    if (i == 0) {
910
0
        BN_zero(r);
911
0
        return 1;
912
122k
    } else if (i > 0)
913
1.74k
        return (r == a) ? 1 : (BN_copy(r, a) != NULL);
914
915
121k
    if (r != a) {
916
0
        if (!bn_wexpand(r, BN_NIST_384_TOP))
917
0
            return 0;
918
0
        r_d = r->d;
919
0
        nist_cp_bn(r_d, a_d, BN_NIST_384_TOP);
920
0
    } else
921
121k
        r_d = a_d;
922
923
121k
    nist_cp_bn_0(buf.bn, a_d + BN_NIST_384_TOP, top - BN_NIST_384_TOP,
924
121k
        BN_NIST_384_TOP);
925
926
121k
#if defined(NIST_INT64)
927
121k
    {
928
121k
        NIST_INT64 acc; /* accumulator */
929
121k
        unsigned int *rp = (unsigned int *)r_d;
930
121k
        const unsigned int *bp = (const unsigned int *)buf.ui;
931
932
121k
        acc = load_u32(&rp[0]);
933
121k
        acc += bp[12 - 12];
934
121k
        acc += bp[21 - 12];
935
121k
        acc += bp[20 - 12];
936
121k
        acc -= bp[23 - 12];
937
121k
        store_lo32(&rp[0], acc);
938
121k
        acc >>= 32;
939
940
121k
        acc += load_u32(&rp[1]);
941
121k
        acc += bp[13 - 12];
942
121k
        acc += bp[22 - 12];
943
121k
        acc += bp[23 - 12];
944
121k
        acc -= bp[12 - 12];
945
121k
        acc -= bp[20 - 12];
946
121k
        store_lo32(&rp[1], acc);
947
121k
        acc >>= 32;
948
949
121k
        acc += load_u32(&rp[2]);
950
121k
        acc += bp[14 - 12];
951
121k
        acc += bp[23 - 12];
952
121k
        acc -= bp[13 - 12];
953
121k
        acc -= bp[21 - 12];
954
121k
        store_lo32(&rp[2], acc);
955
121k
        acc >>= 32;
956
957
121k
        acc += load_u32(&rp[3]);
958
121k
        acc += bp[15 - 12];
959
121k
        acc += bp[12 - 12];
960
121k
        acc += bp[20 - 12];
961
121k
        acc += bp[21 - 12];
962
121k
        acc -= bp[14 - 12];
963
121k
        acc -= bp[22 - 12];
964
121k
        acc -= bp[23 - 12];
965
121k
        store_lo32(&rp[3], acc);
966
121k
        acc >>= 32;
967
968
121k
        acc += load_u32(&rp[4]);
969
121k
        acc += bp[21 - 12];
970
121k
        acc += bp[21 - 12];
971
121k
        acc += bp[16 - 12];
972
121k
        acc += bp[13 - 12];
973
121k
        acc += bp[12 - 12];
974
121k
        acc += bp[20 - 12];
975
121k
        acc += bp[22 - 12];
976
121k
        acc -= bp[15 - 12];
977
121k
        acc -= bp[23 - 12];
978
121k
        acc -= bp[23 - 12];
979
121k
        store_lo32(&rp[4], acc);
980
121k
        acc >>= 32;
981
982
121k
        acc += load_u32(&rp[5]);
983
121k
        acc += bp[22 - 12];
984
121k
        acc += bp[22 - 12];
985
121k
        acc += bp[17 - 12];
986
121k
        acc += bp[14 - 12];
987
121k
        acc += bp[13 - 12];
988
121k
        acc += bp[21 - 12];
989
121k
        acc += bp[23 - 12];
990
121k
        acc -= bp[16 - 12];
991
121k
        store_lo32(&rp[5], acc);
992
121k
        acc >>= 32;
993
994
121k
        acc += load_u32(&rp[6]);
995
121k
        acc += bp[23 - 12];
996
121k
        acc += bp[23 - 12];
997
121k
        acc += bp[18 - 12];
998
121k
        acc += bp[15 - 12];
999
121k
        acc += bp[14 - 12];
1000
121k
        acc += bp[22 - 12];
1001
121k
        acc -= bp[17 - 12];
1002
121k
        store_lo32(&rp[6], acc);
1003
121k
        acc >>= 32;
1004
1005
121k
        acc += load_u32(&rp[7]);
1006
121k
        acc += bp[19 - 12];
1007
121k
        acc += bp[16 - 12];
1008
121k
        acc += bp[15 - 12];
1009
121k
        acc += bp[23 - 12];
1010
121k
        acc -= bp[18 - 12];
1011
121k
        store_lo32(&rp[7], acc);
1012
121k
        acc >>= 32;
1013
1014
121k
        acc += load_u32(&rp[8]);
1015
121k
        acc += bp[20 - 12];
1016
121k
        acc += bp[17 - 12];
1017
121k
        acc += bp[16 - 12];
1018
121k
        acc -= bp[19 - 12];
1019
121k
        store_lo32(&rp[8], acc);
1020
121k
        acc >>= 32;
1021
1022
121k
        acc += load_u32(&rp[9]);
1023
121k
        acc += bp[21 - 12];
1024
121k
        acc += bp[18 - 12];
1025
121k
        acc += bp[17 - 12];
1026
121k
        acc -= bp[20 - 12];
1027
121k
        store_lo32(&rp[9], acc);
1028
121k
        acc >>= 32;
1029
1030
121k
        acc += load_u32(&rp[10]);
1031
121k
        acc += bp[22 - 12];
1032
121k
        acc += bp[19 - 12];
1033
121k
        acc += bp[18 - 12];
1034
121k
        acc -= bp[21 - 12];
1035
121k
        store_lo32(&rp[10], acc);
1036
121k
        acc >>= 32;
1037
1038
121k
        acc += load_u32(&rp[11]);
1039
121k
        acc += bp[23 - 12];
1040
121k
        acc += bp[20 - 12];
1041
121k
        acc += bp[19 - 12];
1042
121k
        acc -= bp[22 - 12];
1043
121k
        store_lo32(&rp[11], acc);
1044
1045
121k
        carry = (int)(acc >> 32);
1046
121k
    }
1047
#else
1048
    {
1049
        BN_ULONG t_d[BN_NIST_384_TOP];
1050
1051
        /*
1052
         * S1
1053
         */
1054
        nist_set_256(t_d, buf.bn, 0, 0, 0, 0, 0, 23 - 4, 22 - 4, 21 - 4);
1055
        /* left shift */
1056
        {
1057
            register BN_ULONG *ap, t, c;
1058
            ap = t_d;
1059
            c = 0;
1060
            for (i = 3; i != 0; --i) {
1061
                t = *ap;
1062
                *(ap++) = ((t << 1) | c) & BN_MASK2;
1063
                c = (t & BN_TBIT) ? 1 : 0;
1064
            }
1065
            *ap = c;
1066
        }
1067
        carry = (int)bn_add_words(r_d + (128 / BN_BITS2), r_d + (128 / BN_BITS2),
1068
            t_d, BN_NIST_256_TOP);
1069
        /*
1070
         * S2
1071
         */
1072
        carry += (int)bn_add_words(r_d, r_d, buf.bn, BN_NIST_384_TOP);
1073
        /*
1074
         * S3
1075
         */
1076
        nist_set_384(t_d, buf.bn, 20, 19, 18, 17, 16, 15, 14, 13, 12, 23, 22,
1077
            21);
1078
        carry += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_384_TOP);
1079
        /*
1080
         * S4
1081
         */
1082
        nist_set_384(t_d, buf.bn, 19, 18, 17, 16, 15, 14, 13, 12, 20, 0, 23,
1083
            0);
1084
        carry += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_384_TOP);
1085
        /*
1086
         * S5
1087
         */
1088
        nist_set_384(t_d, buf.bn, 0, 0, 0, 0, 23, 22, 21, 20, 0, 0, 0, 0);
1089
        carry += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_384_TOP);
1090
        /*
1091
         * S6
1092
         */
1093
        nist_set_384(t_d, buf.bn, 0, 0, 0, 0, 0, 0, 23, 22, 21, 0, 0, 20);
1094
        carry += (int)bn_add_words(r_d, r_d, t_d, BN_NIST_384_TOP);
1095
        /*
1096
         * D1
1097
         */
1098
        nist_set_384(t_d, buf.bn, 22, 21, 20, 19, 18, 17, 16, 15, 14, 13, 12,
1099
            23);
1100
        carry -= (int)bn_sub_words(r_d, r_d, t_d, BN_NIST_384_TOP);
1101
        /*
1102
         * D2
1103
         */
1104
        nist_set_384(t_d, buf.bn, 0, 0, 0, 0, 0, 0, 0, 23, 22, 21, 20, 0);
1105
        carry -= (int)bn_sub_words(r_d, r_d, t_d, BN_NIST_384_TOP);
1106
        /*
1107
         * D3
1108
         */
1109
        nist_set_384(t_d, buf.bn, 0, 0, 0, 0, 0, 0, 0, 23, 23, 0, 0, 0);
1110
        carry -= (int)bn_sub_words(r_d, r_d, t_d, BN_NIST_384_TOP);
1111
    }
1112
#endif
1113
    /* see BN_nist_mod_224 for explanation */
1114
121k
    adjust = bn_sub_words;
1115
121k
    if (carry > 0)
1116
70.0k
        carry = (int)bn_sub_words(r_d, r_d, _nist_p_384[carry - 1],
1117
70.0k
            BN_NIST_384_TOP);
1118
51.1k
    else if (carry < 0) {
1119
3.36k
        carry = (int)bn_add_words(r_d, r_d, _nist_p_384[-carry - 1],
1120
3.36k
            BN_NIST_384_TOP);
1121
3.36k
        adjust = carry ? bn_sub_words : bn_add_words;
1122
3.36k
    } else
1123
47.7k
        carry = 1;
1124
1125
121k
    res = ((*adjust)(c_d, r_d, _nist_p_384[0], BN_NIST_384_TOP) && carry)
1126
121k
        ? r_d
1127
121k
        : c_d;
1128
121k
    nist_cp_bn(r_d, res, BN_NIST_384_TOP);
1129
121k
    r->top = BN_NIST_384_TOP;
1130
121k
    bn_correct_top(r);
1131
1132
121k
    return 1;
1133
121k
}
1134
1135
2.58M
#define BN_NIST_521_RSHIFT (521 % BN_BITS2)
1136
1.29M
#define BN_NIST_521_LSHIFT (BN_BITS2 - BN_NIST_521_RSHIFT)
1137
143k
#define BN_NIST_521_TOP_MASK ((BN_ULONG)BN_MASK2 >> BN_NIST_521_LSHIFT)
1138
1139
int BN_nist_mod_521(BIGNUM *r, const BIGNUM *a, const BIGNUM *field,
1140
    BN_CTX *ctx)
1141
147k
{
1142
147k
    int top = a->top, i;
1143
147k
    BN_ULONG *r_d, *a_d = a->d, t_d[BN_NIST_521_TOP], val, tmp, *res;
1144
147k
    static const BIGNUM ossl_bignum_nist_p_521_sqr = {
1145
147k
        (BN_ULONG *)_nist_p_521_sqr,
1146
147k
        OSSL_NELEM(_nist_p_521_sqr),
1147
147k
        OSSL_NELEM(_nist_p_521_sqr),
1148
147k
        0, BN_FLG_STATIC_DATA
1149
147k
    };
1150
1151
147k
    field = &ossl_bignum_nist_p_521; /* just to make sure */
1152
1153
147k
    if (BN_is_negative(a) || BN_ucmp(a, &ossl_bignum_nist_p_521_sqr) >= 0)
1154
0
        return BN_nnmod(r, a, field, ctx);
1155
1156
147k
    i = BN_ucmp(field, a);
1157
147k
    if (i == 0) {
1158
0
        BN_zero(r);
1159
0
        return 1;
1160
147k
    } else if (i > 0)
1161
3.31k
        return (r == a) ? 1 : (BN_copy(r, a) != NULL);
1162
1163
143k
    if (r != a) {
1164
0
        if (!bn_wexpand(r, BN_NIST_521_TOP))
1165
0
            return 0;
1166
0
        r_d = r->d;
1167
0
        nist_cp_bn(r_d, a_d, BN_NIST_521_TOP);
1168
0
    } else
1169
143k
        r_d = a_d;
1170
1171
    /* upper 521 bits, copy ... */
1172
143k
    nist_cp_bn_0(t_d, a_d + (BN_NIST_521_TOP - 1),
1173
143k
        top - (BN_NIST_521_TOP - 1), BN_NIST_521_TOP);
1174
    /* ... and right shift */
1175
1.29M
    for (val = t_d[0], i = 0; i < BN_NIST_521_TOP - 1; i++) {
1176
#if 0
1177
        /*
1178
         * MSC ARM compiler [version 2013, presumably even earlier,
1179
         * much earlier] miscompiles this code, but not one in
1180
         * #else section. See RT#3541.
1181
         */
1182
        tmp = val >> BN_NIST_521_RSHIFT;
1183
        val = t_d[i + 1];
1184
        t_d[i] = (tmp | val << BN_NIST_521_LSHIFT) & BN_MASK2;
1185
#else
1186
1.15M
        t_d[i] = (val >> BN_NIST_521_RSHIFT | (tmp = t_d[i + 1]) << BN_NIST_521_LSHIFT) & BN_MASK2;
1187
1.15M
        val = tmp;
1188
1.15M
#endif
1189
1.15M
    }
1190
143k
    t_d[i] = val >> BN_NIST_521_RSHIFT;
1191
    /* lower 521 bits */
1192
143k
    r_d[i] &= BN_NIST_521_TOP_MASK;
1193
1194
143k
    bn_add_words(r_d, r_d, t_d, BN_NIST_521_TOP);
1195
143k
    res = bn_sub_words(t_d, r_d, _nist_p_521,
1196
143k
              BN_NIST_521_TOP)
1197
143k
        ? r_d
1198
143k
        : t_d;
1199
143k
    nist_cp_bn(r_d, res, BN_NIST_521_TOP);
1200
143k
    r->top = BN_NIST_521_TOP;
1201
143k
    bn_correct_top(r);
1202
1203
143k
    return 1;
1204
143k
}
1205
1206
int (*BN_nist_mod_func(const BIGNUM *p))(BIGNUM *r, const BIGNUM *a,
1207
    const BIGNUM *field, BN_CTX *ctx)
1208
0
{
1209
0
    if (BN_ucmp(&ossl_bignum_nist_p_192, p) == 0)
1210
0
        return BN_nist_mod_192;
1211
0
    if (BN_ucmp(&ossl_bignum_nist_p_224, p) == 0)
1212
0
        return BN_nist_mod_224;
1213
0
    if (BN_ucmp(&ossl_bignum_nist_p_256, p) == 0)
1214
0
        return BN_nist_mod_256;
1215
0
    if (BN_ucmp(&ossl_bignum_nist_p_384, p) == 0)
1216
0
        return BN_nist_mod_384;
1217
0
    if (BN_ucmp(&ossl_bignum_nist_p_521, p) == 0)
1218
0
        return BN_nist_mod_521;
1219
0
    return 0;
1220
0
}