Coverage Report

Created: 2026-09-12 06:55

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl35/crypto/ffc/ffc_params_generate.c
Line
Count
Source
1
/*
2
 * Copyright 2019-2026 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
/*
11
 * For the prime check..
12
 * FIPS 186-4 Section C.3 Table C.1
13
 * Returns the minimum number of Miller Rabin iterations for a L,N pair
14
 * (where L = len(p), N = len(q))
15
 *   L   N                Min
16
 * 1024  160              40
17
 * 2048  224              56
18
 * 2048  256              56
19
 * 3072  256              64
20
 *
21
 * BN_check_prime() uses:
22
 *  64 iterations for L <= 2048 OR
23
 * 128 iterations for L > 2048
24
 * So this satisfies the requirement.
25
 */
26
27
#include <string.h> /* memset */
28
#include <openssl/sha.h> /* SHA_DIGEST_LENGTH */
29
#include <openssl/rand.h>
30
#include <openssl/err.h>
31
#include <openssl/dherr.h>
32
#include <openssl/dsaerr.h>
33
#include "crypto/bn.h"
34
#include "internal/ffc.h"
35
36
/*
37
 * Verify that the passed in L, N pair for DH or DSA is valid.
38
 * Returns 0 if invalid, otherwise it returns the security strength.
39
 */
40
41
#ifdef FIPS_MODULE
42
static int ffc_validate_LN(size_t L, size_t N, int type, int verify)
43
{
44
    if (type == FFC_PARAM_TYPE_DH) {
45
        /* Valid DH L,N parameters from SP800-56Ar3 5.5.1 Table 1 */
46
        if (L == 2048 && (N == 224 || N == 256))
47
            return 112;
48
#ifndef OPENSSL_NO_DH
49
        ERR_raise(ERR_LIB_DH, DH_R_BAD_FFC_PARAMETERS);
50
#endif
51
    } else if (type == FFC_PARAM_TYPE_DSA) {
52
        /* Valid DSA L,N parameters from FIPS 186-4 Section 4.2 */
53
        /* In fips mode 1024/160 can only be used for verification */
54
        if (verify && L == 1024 && N == 160)
55
            return 80;
56
        if (L == 2048 && (N == 224 || N == 256))
57
            return 112;
58
        if (L == 3072 && N == 256)
59
            return 128;
60
#ifndef OPENSSL_NO_DSA
61
        ERR_raise(ERR_LIB_DSA, DSA_R_BAD_FFC_PARAMETERS);
62
#endif
63
    }
64
    return 0;
65
}
66
#else
67
static int ffc_validate_LN(size_t L, size_t N, int type, int verify)
68
621
{
69
621
    if (type == FFC_PARAM_TYPE_DH) {
70
        /* Allow legacy 1024/160 in non fips mode */
71
0
        if (L == 1024 && N == 160)
72
0
            return 80;
73
        /* Valid DH L,N parameters from SP800-56Ar3 5.5.1 Table 1 */
74
0
        if (L == 2048 && (N == 224 || N == 256))
75
0
            return 112;
76
0
#ifndef OPENSSL_NO_DH
77
0
        ERR_raise(ERR_LIB_DH, DH_R_BAD_FFC_PARAMETERS);
78
0
#endif
79
621
    } else if (type == FFC_PARAM_TYPE_DSA) {
80
621
        if (N > 512) {
81
0
#ifndef OPENSSL_NO_DSA
82
0
            ERR_raise_data(ERR_LIB_DSA, DSA_R_BAD_FFC_PARAMETERS,
83
0
                "N is %zu, but the maximum supported N is 512", N);
84
0
#endif
85
0
            return 0;
86
0
        }
87
621
        if (L >= 3072 && N >= 256)
88
52
            return 128;
89
569
        if (L >= 2048 && N >= 224)
90
32
            return 112;
91
537
        if (L >= 1024 && N >= 160)
92
418
            return 80;
93
119
#ifndef OPENSSL_NO_DSA
94
537
        ERR_raise(ERR_LIB_DSA, DSA_R_BAD_FFC_PARAMETERS);
95
119
#endif
96
119
    }
97
119
    return 0;
98
621
}
99
#endif /* FIPS_MODULE */
100
101
/* FIPS186-4 A.2.1 Unverifiable Generation of Generator g */
102
static int generate_unverifiable_g(BN_CTX *ctx, BN_MONT_CTX *mont, BIGNUM *g,
103
    BIGNUM *hbn, const BIGNUM *p,
104
    const BIGNUM *e, const BIGNUM *pm1,
105
    int *hret)
106
0
{
107
0
    int h = 2;
108
109
    /* Step (2): choose h (where 1 < h)*/
110
0
    if (!BN_set_word(hbn, h))
111
0
        return 0;
112
113
0
    for (;;) {
114
        /* Step (3): g = h^e % p */
115
0
        if (!BN_mod_exp_mont(g, hbn, e, p, ctx, mont))
116
0
            return 0;
117
        /* Step (4): Finish if g > 1 */
118
0
        if (BN_cmp(g, BN_value_one()) > 0)
119
0
            break;
120
121
        /* Step (2) Choose any h in the range 1 < h < (p-1) */
122
0
        if (!BN_add_word(hbn, 1) || BN_cmp(hbn, pm1) >= 0)
123
0
            return 0;
124
0
        ++h;
125
0
    }
126
0
    *hret = h;
127
0
    return 1;
128
0
}
129
130
/*
131
 * FIPS186-4 A.2 Generation of canonical generator g.
132
 *
133
 * It requires the following values as input:
134
 *   'evpmd' digest, 'p' prime, 'e' cofactor, gindex and seed.
135
 * tmp is a passed in temporary BIGNUM.
136
 * mont is used in a BN_mod_exp_mont() with a modulus of p.
137
 * Returns a value in g.
138
 */
139
static int generate_canonical_g(BN_CTX *ctx, BN_MONT_CTX *mont,
140
    const EVP_MD *evpmd, BIGNUM *g, BIGNUM *tmp,
141
    const BIGNUM *p, const BIGNUM *e,
142
    int gindex, unsigned char *seed, size_t seedlen)
143
0
{
144
0
    int ret = 0;
145
0
    int counter = 1;
146
0
    unsigned char md[EVP_MAX_MD_SIZE];
147
0
    EVP_MD_CTX *mctx = NULL;
148
0
    int mdsize;
149
150
0
    mdsize = EVP_MD_get_size(evpmd);
151
0
    if (mdsize <= 0)
152
0
        return 0;
153
154
0
    mctx = EVP_MD_CTX_new();
155
0
    if (mctx == NULL)
156
0
        return 0;
157
158
    /*
159
     * A.2.3 Step (4) & (5)
160
     * A.2.4 Step (6) & (7)
161
     * counter = 0; counter += 1
162
     */
163
0
    for (counter = 1; counter <= 0xFFFF; ++counter) {
164
        /*
165
         * A.2.3 Step (7) & (8) & (9)
166
         * A.2.4 Step (9) & (10) & (11)
167
         * W = Hash(seed || "ggen" || index || counter)
168
         * g = W^e % p
169
         */
170
0
        static const unsigned char ggen[4] = { 0x67, 0x67, 0x65, 0x6e };
171
172
0
        md[0] = (unsigned char)(gindex & 0xff);
173
0
        md[1] = (unsigned char)((counter >> 8) & 0xff);
174
0
        md[2] = (unsigned char)(counter & 0xff);
175
0
        if (!EVP_DigestInit_ex(mctx, evpmd, NULL)
176
0
            || !EVP_DigestUpdate(mctx, seed, seedlen)
177
0
            || !EVP_DigestUpdate(mctx, ggen, sizeof(ggen))
178
0
            || !EVP_DigestUpdate(mctx, md, 3)
179
0
            || !EVP_DigestFinal_ex(mctx, md, NULL)
180
0
            || (BN_bin2bn(md, mdsize, tmp) == NULL)
181
0
            || !BN_mod_exp_mont(g, tmp, e, p, ctx, mont))
182
0
            break; /* exit on failure */
183
        /*
184
         * A.2.3 Step (10)
185
         * A.2.4 Step (12)
186
         * Found a value for g if (g >= 2)
187
         */
188
0
        if (BN_cmp(g, BN_value_one()) > 0) {
189
0
            ret = 1;
190
0
            break; /* found g */
191
0
        }
192
0
    }
193
0
    EVP_MD_CTX_free(mctx);
194
0
    return ret;
195
0
}
196
197
/* Generation of p is the same for FIPS 186-4 & FIPS 186-2 */
198
static int generate_p(BN_CTX *ctx, const EVP_MD *evpmd, int max_counter, int n,
199
    unsigned char *buf, size_t buf_len, const BIGNUM *q,
200
    BIGNUM *p, int L, BN_GENCB *cb, int *counter,
201
    int *res)
202
0
{
203
0
    int ret = -1;
204
0
    int i, j, k, r;
205
0
    unsigned char md[EVP_MAX_MD_SIZE];
206
0
    int mdsize;
207
0
    BIGNUM *W, *X, *tmp, *c, *test;
208
209
0
    BN_CTX_start(ctx);
210
0
    W = BN_CTX_get(ctx);
211
0
    X = BN_CTX_get(ctx);
212
0
    c = BN_CTX_get(ctx);
213
0
    test = BN_CTX_get(ctx);
214
0
    tmp = BN_CTX_get(ctx);
215
0
    if (tmp == NULL)
216
0
        goto err;
217
218
0
    if (!BN_lshift(test, BN_value_one(), L - 1))
219
0
        goto err;
220
221
0
    mdsize = EVP_MD_get_size(evpmd);
222
0
    if (mdsize <= 0)
223
0
        goto err;
224
225
    /* A.1.1.2 Step (10) AND
226
     * A.1.1.2 Step (12)
227
     * offset = 1 (this is handled below)
228
     */
229
    /*
230
     * A.1.1.2 Step (11) AND
231
     * A.1.1.3 Step (13)
232
     */
233
0
    for (i = 0; i <= max_counter; i++) {
234
0
        if ((i != 0) && !BN_GENCB_call(cb, 0, i))
235
0
            goto err;
236
237
0
        BN_zero(W);
238
        /* seed_tmp buffer contains "seed + offset - 1" */
239
0
        for (j = 0; j <= n; j++) {
240
            /* obtain "seed + offset + j" by incrementing by 1: */
241
0
            for (k = (int)buf_len - 1; k >= 0; k--) {
242
0
                buf[k]++;
243
0
                if (buf[k] != 0)
244
0
                    break;
245
0
            }
246
            /*
247
             * A.1.1.2 Step (11.1) AND
248
             * A.1.1.3 Step (13.1)
249
             * tmp = V(j) = Hash((seed + offset + j) % 2^seedlen)
250
             */
251
0
            if (!EVP_Digest(buf, buf_len, md, NULL, evpmd, NULL)
252
0
                || (BN_bin2bn(md, mdsize, tmp) == NULL)
253
                /*
254
                 * A.1.1.2 Step (11.2)
255
                 * A.1.1.3 Step (13.2)
256
                 * W += V(j) * 2^(outlen * j)
257
                 */
258
0
                || !BN_lshift(tmp, tmp, (mdsize << 3) * j)
259
0
                || !BN_add(W, W, tmp))
260
0
                goto err;
261
0
        }
262
263
        /*
264
         * A.1.1.2 Step (11.3) AND
265
         * A.1.1.3 Step (13.3)
266
         * X = W + 2^(L-1) where W < 2^(L-1)
267
         */
268
0
        if (!BN_mask_bits(W, L - 1)
269
0
            || !BN_copy(X, W)
270
0
            || !BN_add(X, X, test)
271
            /*
272
             * A.1.1.2 Step (11.4) AND
273
             * A.1.1.3 Step (13.4)
274
             * c = X mod 2q
275
             */
276
0
            || !BN_lshift1(tmp, q)
277
0
            || !BN_mod(c, X, tmp, ctx)
278
            /*
279
             * A.1.1.2 Step (11.5) AND
280
             * A.1.1.3 Step (13.5)
281
             * p = X - (c - 1)
282
             */
283
0
            || !BN_sub(tmp, c, BN_value_one())
284
0
            || !BN_sub(p, X, tmp))
285
0
            goto err;
286
287
        /*
288
         * A.1.1.2 Step (11.6) AND
289
         * A.1.1.3 Step (13.6)
290
         * if (p < 2 ^ (L-1)) continue
291
         * This makes sure the top bit is set.
292
         */
293
0
        if (BN_cmp(p, test) >= 0) {
294
            /*
295
             * A.1.1.2 Step (11.7) AND
296
             * A.1.1.3 Step (13.7)
297
             * Test if p is prime
298
             * (This also makes sure the bottom bit is set)
299
             */
300
0
            r = BN_check_prime(p, ctx, cb);
301
            /* A.1.1.2 Step (11.8) : Return if p is prime */
302
0
            if (r > 0) {
303
0
                *counter = i;
304
0
                ret = 1; /* return success */
305
0
                goto err;
306
0
            }
307
0
            if (r != 0)
308
0
                goto err;
309
0
        }
310
        /* Step (11.9) : offset = offset + n + 1 is done auto-magically */
311
0
    }
312
    /* No prime P found */
313
0
    ret = 0;
314
0
    *res |= FFC_CHECK_P_NOT_PRIME;
315
0
err:
316
0
    BN_CTX_end(ctx);
317
0
    return ret;
318
0
}
319
320
static int generate_q_fips186_4(BN_CTX *ctx, BIGNUM *q, const EVP_MD *evpmd,
321
    int qsize, unsigned char *seed, size_t seedlen,
322
    int generate_seed, int *retm, int *res,
323
    BN_GENCB *cb)
324
0
{
325
0
    int ret = 0, r;
326
0
    int m = *retm;
327
0
    unsigned char md[EVP_MAX_MD_SIZE];
328
0
    int mdsize = EVP_MD_get_size(evpmd);
329
0
    unsigned char *pmd;
330
0
    OSSL_LIB_CTX *libctx = ossl_bn_get_libctx(ctx);
331
332
0
    if (mdsize <= 0)
333
0
        goto err;
334
335
    /* find q */
336
0
    for (;;) {
337
0
        if (!BN_GENCB_call(cb, 0, m++))
338
0
            goto err;
339
340
        /* A.1.1.2 Step (5) : generate seed with size seed_len */
341
0
        if (generate_seed
342
0
            && RAND_bytes_ex(libctx, seed, seedlen, 0) <= 0)
343
0
            goto err;
344
        /*
345
         * A.1.1.2 Step (6) AND
346
         * A.1.1.3 Step (7)
347
         * U = Hash(seed) % (2^(N-1))
348
         */
349
0
        if (!EVP_Digest(seed, seedlen, md, NULL, evpmd, NULL))
350
0
            goto err;
351
        /* Take least significant bits of md */
352
0
        if (mdsize > qsize)
353
0
            pmd = md + mdsize - qsize;
354
0
        else
355
0
            pmd = md;
356
0
        if (mdsize < qsize)
357
0
            memset(md + mdsize, 0, qsize - mdsize);
358
359
        /*
360
         * A.1.1.2 Step (7) AND
361
         * A.1.1.3 Step (8)
362
         * q = U + 2^(N-1) + (1 - U %2) (This sets top and bottom bits)
363
         */
364
0
        pmd[0] |= 0x80;
365
0
        pmd[qsize - 1] |= 0x01;
366
0
        if (!BN_bin2bn(pmd, qsize, q))
367
0
            goto err;
368
369
        /*
370
         * A.1.1.2 Step (8) AND
371
         * A.1.1.3 Step (9)
372
         * Test if q is prime
373
         */
374
0
        r = BN_check_prime(q, ctx, cb);
375
0
        if (r > 0) {
376
0
            ret = 1;
377
0
            goto err;
378
0
        }
379
        /*
380
         * A.1.1.3 Step (9) : If the provided seed didn't produce a prime q
381
         * return an error.
382
         */
383
0
        if (!generate_seed) {
384
0
            *res |= FFC_CHECK_Q_NOT_PRIME;
385
0
            goto err;
386
0
        }
387
0
        if (r != 0)
388
0
            goto err;
389
        /* A.1.1.2 Step (9) : if q is not prime, try another q */
390
0
    }
391
0
err:
392
0
    *retm = m;
393
0
    return ret;
394
0
}
395
396
static int generate_q_fips186_2(BN_CTX *ctx, BIGNUM *q, const EVP_MD *evpmd,
397
    unsigned char *buf, unsigned char *seed,
398
    size_t qsize, int generate_seed, int *retm,
399
    int *res, BN_GENCB *cb)
400
0
{
401
0
    unsigned char buf2[EVP_MAX_MD_SIZE];
402
0
    unsigned char md[EVP_MAX_MD_SIZE];
403
0
    int i, r, ret = 0, m = *retm;
404
0
    OSSL_LIB_CTX *libctx = ossl_bn_get_libctx(ctx);
405
406
    /* find q */
407
0
    for (;;) {
408
        /* step 1 */
409
0
        if (!BN_GENCB_call(cb, 0, m++))
410
0
            goto err;
411
412
0
        if (generate_seed && RAND_bytes_ex(libctx, seed, qsize, 0) <= 0)
413
0
            goto err;
414
415
0
        memcpy(buf, seed, qsize);
416
0
        memcpy(buf2, seed, qsize);
417
418
        /* precompute "SEED + 1" for step 7: */
419
0
        for (i = (int)qsize - 1; i >= 0; i--) {
420
0
            buf[i]++;
421
0
            if (buf[i] != 0)
422
0
                break;
423
0
        }
424
425
        /* step 2 */
426
0
        if (!EVP_Digest(seed, qsize, md, NULL, evpmd, NULL))
427
0
            goto err;
428
0
        if (!EVP_Digest(buf, qsize, buf2, NULL, evpmd, NULL))
429
0
            goto err;
430
0
        for (i = 0; i < (int)qsize; i++)
431
0
            md[i] ^= buf2[i];
432
433
        /* step 3 */
434
0
        md[0] |= 0x80;
435
0
        md[qsize - 1] |= 0x01;
436
0
        if (!BN_bin2bn(md, (int)qsize, q))
437
0
            goto err;
438
439
        /* step 4 */
440
0
        r = BN_check_prime(q, ctx, cb);
441
0
        if (r > 0) {
442
            /* Found a prime */
443
0
            ret = 1;
444
0
            goto err;
445
0
        }
446
0
        if (r != 0)
447
0
            goto err; /* Exit if error */
448
        /* Try another iteration if it wasn't prime - was in old code.. */
449
0
        generate_seed = 1;
450
0
    }
451
0
err:
452
0
    *retm = m;
453
0
    return ret;
454
0
}
455
456
static const char *default_mdname(size_t N)
457
2.14k
{
458
2.14k
    if (N == 160)
459
595
        return "SHA1";
460
1.54k
    else if (N == 224)
461
14
        return "SHA-224";
462
1.53k
    else if (N == 256)
463
85
        return "SHA-256";
464
1.44k
    return NULL;
465
2.14k
}
466
467
/*
468
 * FIPS 186-4 FFC parameter generation (as defined in Appendix A).
469
 * The same code is used for validation (when validate_flags != 0)
470
 *
471
 * The primes p & q are generated/validated using:
472
 *   A.1.1.2 Generation of probable primes p & q using approved hash.
473
 *   A.1.1.3 Validation of generated probable primes
474
 *
475
 * Generator 'g' has 2 types in FIPS 186-4:
476
 *   (1) A.2.1 unverifiable generation of generator g.
477
 *       A.2.2 Assurance of the validity of unverifiable generator g.
478
 *   (2) A.2.3 Verifiable Canonical Generation of the generator g.
479
 *       A.2.4 Validation for Canonical Generation of the generator g.
480
 *
481
 * Notes:
482
 * (1) is only a partial validation of g, The validation of (2) requires
483
 * the seed and index used during generation as input.
484
 *
485
 * params: used to pass in values for generation and validation.
486
 * params->md: is the digest to use, If this value is NULL, then the digest is
487
 *   chosen using the value of N.
488
 * params->flags:
489
 *  For validation one of:
490
 *   -FFC_PARAM_FLAG_VALIDATE_PQ
491
 *   -FFC_PARAM_FLAG_VALIDATE_G
492
 *   -FFC_PARAM_FLAG_VALIDATE_PQG
493
 *  For generation of p & q:
494
 *   - This is skipped if p & q are passed in.
495
 *   - If the seed is passed in then generation of p & q uses this seed (and if
496
 *     this fails an error will occur).
497
 *   - Otherwise the seed is generated, and values of p & q are generated and
498
 *     the value of seed and counter are optionally returned.
499
 *  For the generation of g (after the generation of p, q):
500
 *   - If the seed has been generated or passed in and a valid gindex is passed
501
 *     in then canonical generation of g is used otherwise unverifiable
502
 *     generation of g is chosen.
503
 *  For validation of p & q:
504
 *   - p, q, and the seed and counter used for generation must be passed in.
505
 *  For validation of g:
506
 *   - For a partial validation : p, q and g are required.
507
 *   - For a canonical validation : the gindex and seed used for generation are
508
 *     also required.
509
 * mode: The mode - either FFC_PARAM_MODE_GENERATE or FFC_PARAM_MODE_VERIFY.
510
 * type: The key type - FFC_PARAM_TYPE_DSA or FFC_PARAM_TYPE_DH.
511
 * L: is the size of the prime p in bits (e.g 2048)
512
 * N: is the size of the prime q in bits (e.g 256)
513
 * res: A returned failure reason (One of FFC_CHECK_XXXX),
514
 *      or 0 for general failures.
515
 * cb: A callback (can be NULL) that is called during different phases
516
 *
517
 * Returns:
518
 *   - FFC_PARAM_RET_STATUS_FAILED: if there was an error, or validation failed.
519
 *   - FFC_PARAM_RET_STATUS_SUCCESS if the generation or validation succeeded.
520
 *   - FFC_PARAM_RET_STATUS_UNVERIFIABLE_G if the validation of G succeeded,
521
 *     but G is unverifiable.
522
 */
523
int ossl_ffc_params_FIPS186_4_gen_verify(OSSL_LIB_CTX *libctx,
524
    FFC_PARAMS *params, int mode, int type,
525
    size_t L, size_t N, int *res,
526
    BN_GENCB *cb)
527
2.14k
{
528
2.14k
    int ok = FFC_PARAM_RET_STATUS_FAILED;
529
2.14k
    unsigned char *seed = NULL, *seed_tmp = NULL;
530
2.14k
    int mdsize, counter = 0, pcounter = 0, r = 0;
531
2.14k
    size_t seedlen = 0;
532
2.14k
    BIGNUM *tmp, *pm1, *e, *test;
533
2.14k
    BIGNUM *g = NULL, *q = NULL, *p = NULL;
534
2.14k
    BN_MONT_CTX *mont = NULL;
535
2.14k
    int n = 0, m = 0, qsize;
536
2.14k
    int canonical_g = 0, hret = 0;
537
2.14k
    BN_CTX *ctx = NULL;
538
2.14k
    EVP_MD_CTX *mctx = NULL;
539
2.14k
    EVP_MD *md = NULL;
540
2.14k
    int verify = (mode == FFC_PARAM_MODE_VERIFY);
541
2.14k
    unsigned int flags = verify ? params->flags : 0;
542
2.14k
    const char *def_name;
543
544
2.14k
    *res = 0;
545
546
2.14k
    if (params->mdname != NULL) {
547
0
        md = EVP_MD_fetch(libctx, params->mdname, params->mdprops);
548
2.14k
    } else {
549
2.14k
        if (N == 0)
550
259
            N = (L >= 2048 ? SHA256_DIGEST_LENGTH : SHA_DIGEST_LENGTH) * 8;
551
2.14k
        def_name = default_mdname(N);
552
2.14k
        if (def_name == NULL) {
553
1.44k
            *res = FFC_CHECK_INVALID_Q_VALUE;
554
1.44k
            goto err;
555
1.44k
        }
556
694
        md = EVP_MD_fetch(libctx, def_name, params->mdprops);
557
694
    }
558
694
    if (md == NULL)
559
0
        goto err;
560
694
    mdsize = EVP_MD_get_size(md);
561
694
    if (mdsize <= 0)
562
0
        goto err;
563
564
694
    if (N == 0)
565
0
        N = mdsize * 8;
566
694
    qsize = N >> 3;
567
568
    /*
569
     * A.1.1.2 Step (1) AND
570
     * A.1.1.3 Step (3)
571
     * Check that the L,N pair is an acceptable pair.
572
     */
573
694
    if (L <= N || !ffc_validate_LN(L, N, type, verify)) {
574
192
        *res = FFC_CHECK_BAD_LN_PAIR;
575
192
        goto err;
576
192
    }
577
578
502
    mctx = EVP_MD_CTX_new();
579
502
    if (mctx == NULL)
580
0
        goto err;
581
582
502
    if ((ctx = BN_CTX_new_ex(libctx)) == NULL)
583
0
        goto err;
584
585
502
    BN_CTX_start(ctx);
586
502
    g = BN_CTX_get(ctx);
587
502
    pm1 = BN_CTX_get(ctx);
588
502
    e = BN_CTX_get(ctx);
589
502
    test = BN_CTX_get(ctx);
590
502
    tmp = BN_CTX_get(ctx);
591
502
    if (tmp == NULL)
592
0
        goto err;
593
594
502
    seedlen = params->seedlen;
595
502
    if (seedlen == 0)
596
502
        seedlen = (size_t)mdsize;
597
    /* If the seed was passed in - use this value as the seed */
598
502
    if (params->seed != NULL)
599
0
        seed = params->seed;
600
601
502
    if (!verify) {
602
        /* For generation: p & q must both be NULL or NON-NULL */
603
0
        if ((params->p == NULL) != (params->q == NULL)) {
604
0
            *res = FFC_CHECK_INVALID_PQ;
605
0
            goto err;
606
0
        }
607
502
    } else {
608
        /* Validation of p,q requires seed and counter to be valid */
609
502
        if ((flags & FFC_PARAM_FLAG_VALIDATE_PQ) != 0) {
610
0
            if (seed == NULL || params->pcounter < 0) {
611
0
                *res = FFC_CHECK_MISSING_SEED_OR_COUNTER;
612
0
                goto err;
613
0
            }
614
0
        }
615
502
        if ((flags & FFC_PARAM_FLAG_VALIDATE_G) != 0) {
616
            /* validation of g also requires g to be set */
617
502
            if (params->g == NULL) {
618
0
                *res = FFC_CHECK_INVALID_G;
619
0
                goto err;
620
0
            }
621
502
        }
622
502
    }
623
624
    /*
625
     * If p & q are passed in and
626
     *   validate_flags = 0 then skip the generation of PQ.
627
     *   validate_flags = VALIDATE_G then also skip the validation of PQ.
628
     */
629
502
    if (params->p != NULL && ((flags & FFC_PARAM_FLAG_VALIDATE_PQ) == 0)) {
630
        /* p and q already exists so only generate g */
631
502
        p = params->p;
632
502
        q = params->q;
633
502
        goto g_only;
634
        /* otherwise fall through to validate p & q */
635
502
    }
636
637
    /* p & q will be used for generation and validation */
638
0
    p = BN_CTX_get(ctx);
639
0
    q = BN_CTX_get(ctx);
640
0
    if (q == NULL)
641
0
        goto err;
642
643
    /*
644
     * A.1.1.2 Step (2) AND
645
     * A.1.1.3 Step (6)
646
     * Return invalid if seedlen  < N
647
     */
648
0
    if ((seedlen * 8) < N) {
649
0
        *res = FFC_CHECK_INVALID_SEED_SIZE;
650
0
        goto err;
651
0
    }
652
653
0
    seed_tmp = OPENSSL_malloc(seedlen);
654
0
    if (seed_tmp == NULL)
655
0
        goto err;
656
657
0
    if (seed == NULL) {
658
        /* Validation requires the seed to be supplied */
659
0
        if (verify) {
660
0
            *res = FFC_CHECK_MISSING_SEED_OR_COUNTER;
661
0
            goto err;
662
0
        }
663
        /* if the seed is not supplied then alloc a seed buffer */
664
0
        seed = OPENSSL_malloc(seedlen);
665
0
        if (seed == NULL)
666
0
            goto err;
667
0
    }
668
669
    /* A.1.1.2 Step (11): max loop count = 4L - 1 */
670
0
    counter = 4 * L - 1;
671
    /* Validation requires the counter to be supplied */
672
0
    if (verify) {
673
        /* A.1.1.3 Step (4) : if (counter > (4L -1)) return INVALID */
674
0
        if (params->pcounter > counter) {
675
0
            *res = FFC_CHECK_INVALID_COUNTER;
676
0
            goto err;
677
0
        }
678
0
        counter = params->pcounter;
679
0
    }
680
681
    /*
682
     * A.1.1.2 Step (3) AND
683
     * A.1.1.3 Step (10)
684
     * n = floor(L / hash_outlen) - 1
685
     */
686
0
    n = (L - 1) / (mdsize << 3);
687
688
    /* Calculate 2^(L-1): Used in step A.1.1.2 Step (11.3) */
689
0
    if (!BN_lshift(test, BN_value_one(), L - 1))
690
0
        goto err;
691
692
0
    for (;;) {
693
0
        if (!generate_q_fips186_4(ctx, q, md, qsize, seed, seedlen,
694
0
                seed != params->seed, &m, res, cb))
695
0
            goto err;
696
        /* A.1.1.3 Step (9): Verify that q matches the expected value */
697
0
        if (verify && (BN_cmp(q, params->q) != 0)) {
698
0
            *res = FFC_CHECK_Q_MISMATCH;
699
0
            goto err;
700
0
        }
701
0
        if (!BN_GENCB_call(cb, 2, 0))
702
0
            goto err;
703
0
        if (!BN_GENCB_call(cb, 3, 0))
704
0
            goto err;
705
706
0
        memcpy(seed_tmp, seed, seedlen);
707
0
        r = generate_p(ctx, md, counter, n, seed_tmp, seedlen, q, p, L,
708
0
            cb, &pcounter, res);
709
0
        if (r > 0)
710
0
            break; /* found p */
711
0
        if (r < 0)
712
0
            goto err;
713
        /*
714
         * A.1.1.3 Step (14):
715
         * If we get here we failed to get a p for the given seed. If the
716
         * seed is not random then it needs to fail (as it will always fail).
717
         */
718
0
        if (seed == params->seed) {
719
0
            *res = FFC_CHECK_P_NOT_PRIME;
720
0
            goto err;
721
0
        }
722
0
    }
723
0
    if (!BN_GENCB_call(cb, 2, 1))
724
0
        goto err;
725
    /*
726
     * Gets here if we found p.
727
     * A.1.1.3 Step (14): return error if i != counter OR computed_p != known_p.
728
     */
729
0
    if (verify && (pcounter != counter || (BN_cmp(p, params->p) != 0)))
730
0
        goto err;
731
732
    /* If validating p & q only then skip the g validation test */
733
0
    if ((flags & FFC_PARAM_FLAG_VALIDATE_PQG) == FFC_PARAM_FLAG_VALIDATE_PQ)
734
0
        goto pass;
735
502
g_only:
736
502
    if ((mont = BN_MONT_CTX_new()) == NULL)
737
0
        goto err;
738
502
    if (!BN_MONT_CTX_set(mont, p, ctx))
739
200
        goto err;
740
741
302
    if (((flags & FFC_PARAM_FLAG_VALIDATE_G) != 0)
742
302
        && !ossl_ffc_params_validate_unverifiable_g(ctx, mont, p, q, params->g,
743
302
            tmp, res))
744
248
        goto err;
745
746
    /*
747
     * A.2.1 Step (1) AND
748
     * A.2.3 Step (3) AND
749
     * A.2.4 Step (5)
750
     * e = (p - 1) / q (i.e- Cofactor 'e' is given by p = q * e + 1)
751
     */
752
54
    if (!(BN_sub(pm1, p, BN_value_one()) && BN_div(e, NULL, pm1, q, ctx)))
753
53
        goto err;
754
755
    /* Canonical g requires a seed and index to be set */
756
1
    if ((seed != NULL) && (params->gindex != FFC_UNVERIFIABLE_GINDEX)) {
757
0
        canonical_g = 1;
758
0
        if (!generate_canonical_g(ctx, mont, md, g, tmp, p, e,
759
0
                params->gindex, seed, seedlen)) {
760
0
            *res = FFC_CHECK_INVALID_G;
761
0
            goto err;
762
0
        }
763
        /* A.2.4 Step (13): Return valid if computed_g == g */
764
0
        if (verify && BN_cmp(g, params->g) != 0) {
765
0
            *res = FFC_CHECK_G_MISMATCH;
766
0
            goto err;
767
0
        }
768
1
    } else if (!verify) {
769
0
        if (!generate_unverifiable_g(ctx, mont, g, tmp, p, e, pm1, &hret))
770
0
            goto err;
771
0
    }
772
773
1
    if (!BN_GENCB_call(cb, 3, 1))
774
0
        goto err;
775
776
1
    if (!verify) {
777
0
        if (p != params->p) {
778
0
            BN_free(params->p);
779
0
            params->p = BN_dup(p);
780
0
        }
781
0
        if (q != params->q) {
782
0
            BN_free(params->q);
783
0
            params->q = BN_dup(q);
784
0
        }
785
0
        if (g != params->g) {
786
0
            BN_free(params->g);
787
0
            params->g = BN_dup(g);
788
0
        }
789
0
        if (params->p == NULL || params->q == NULL || params->g == NULL)
790
0
            goto err;
791
0
        if (!ossl_ffc_params_set_validate_params(params, seed, seedlen,
792
0
                pcounter))
793
0
            goto err;
794
0
        params->h = hret;
795
0
    }
796
1
pass:
797
1
    if ((flags & FFC_PARAM_FLAG_VALIDATE_G) != 0 && (canonical_g == 0))
798
        /* Return for the case where g is partially valid */
799
1
        ok = FFC_PARAM_RET_STATUS_UNVERIFIABLE_G;
800
0
    else
801
0
        ok = FFC_PARAM_RET_STATUS_SUCCESS;
802
2.14k
err:
803
2.14k
    if (seed != params->seed)
804
0
        OPENSSL_free(seed);
805
2.14k
    OPENSSL_free(seed_tmp);
806
2.14k
    if (ctx != NULL)
807
502
        BN_CTX_end(ctx);
808
2.14k
    BN_CTX_free(ctx);
809
2.14k
    BN_MONT_CTX_free(mont);
810
2.14k
    EVP_MD_CTX_free(mctx);
811
2.14k
    EVP_MD_free(md);
812
2.14k
    return ok;
813
1
}
814
815
/* Note this function is only used for verification in fips mode */
816
int ossl_ffc_params_FIPS186_2_gen_verify(OSSL_LIB_CTX *libctx,
817
    FFC_PARAMS *params, int mode, int type,
818
    size_t L, size_t N, int *res,
819
    BN_GENCB *cb)
820
0
{
821
0
    int ok = FFC_PARAM_RET_STATUS_FAILED;
822
0
    unsigned char seed[SHA256_DIGEST_LENGTH];
823
0
    unsigned char buf[SHA256_DIGEST_LENGTH];
824
0
    BIGNUM *r0, *test, *tmp, *g = NULL, *q = NULL, *p = NULL;
825
0
    BN_MONT_CTX *mont = NULL;
826
0
    EVP_MD *md = NULL;
827
0
    int md_size;
828
0
    size_t qsize;
829
0
    int n = 0, m = 0;
830
0
    int counter = 0, pcounter = 0, use_random_seed;
831
0
    int rv;
832
0
    BN_CTX *ctx = NULL;
833
0
    int hret = -1;
834
0
    unsigned char *seed_in = params->seed;
835
0
    size_t seed_len = params->seedlen;
836
0
    int verify = (mode == FFC_PARAM_MODE_VERIFY);
837
0
    unsigned int flags = verify ? params->flags : 0;
838
0
    const char *def_name;
839
840
0
    *res = 0;
841
842
0
    if (params->mdname != NULL) {
843
0
        md = EVP_MD_fetch(libctx, params->mdname, params->mdprops);
844
0
    } else {
845
0
        if (N == 0)
846
0
            N = (L >= 2048 ? SHA256_DIGEST_LENGTH : SHA_DIGEST_LENGTH) * 8;
847
0
        def_name = default_mdname(N);
848
0
        if (def_name == NULL) {
849
0
            *res = FFC_CHECK_INVALID_Q_VALUE;
850
0
            goto err;
851
0
        }
852
0
        md = EVP_MD_fetch(libctx, def_name, params->mdprops);
853
0
    }
854
0
    if (md == NULL)
855
0
        goto err;
856
0
    md_size = EVP_MD_get_size(md);
857
0
    if (md_size <= 0)
858
0
        goto err;
859
0
    if (N == 0)
860
0
        N = md_size * 8;
861
0
    qsize = N >> 3;
862
863
    /*
864
     * The original spec allowed L = 512 + 64*j (j = 0.. 8)
865
     * https://nvlpubs.nist.gov/nistpubs/SpecialPublications/NIST.SP.800-131Ar2.pdf
866
     * says that 512 can be used for legacy verification.
867
     */
868
0
    if (L < 512) {
869
0
        *res = FFC_CHECK_BAD_LN_PAIR;
870
0
        goto err;
871
0
    }
872
0
    if (qsize != SHA_DIGEST_LENGTH
873
0
        && qsize != SHA224_DIGEST_LENGTH
874
0
        && qsize != SHA256_DIGEST_LENGTH) {
875
        /* invalid q size */
876
0
        *res = FFC_CHECK_INVALID_Q_VALUE;
877
0
        goto err;
878
0
    }
879
880
0
    L = (L + 63) / 64 * 64;
881
882
0
    if (seed_in != NULL) {
883
0
        if (seed_len < qsize) {
884
0
            *res = FFC_CHECK_INVALID_SEED_SIZE;
885
0
            goto err;
886
0
        }
887
        /* Only consume as much seed as is expected. */
888
0
        if (seed_len > qsize)
889
0
            seed_len = qsize;
890
0
        memcpy(seed, seed_in, seed_len);
891
0
    }
892
893
0
    ctx = BN_CTX_new_ex(libctx);
894
0
    if (ctx == NULL)
895
0
        goto err;
896
897
0
    BN_CTX_start(ctx);
898
899
0
    r0 = BN_CTX_get(ctx);
900
0
    g = BN_CTX_get(ctx);
901
0
    q = BN_CTX_get(ctx);
902
0
    p = BN_CTX_get(ctx);
903
0
    tmp = BN_CTX_get(ctx);
904
0
    test = BN_CTX_get(ctx);
905
0
    if (test == NULL)
906
0
        goto err;
907
908
0
    if (!BN_lshift(test, BN_value_one(), L - 1))
909
0
        goto err;
910
911
0
    if (!verify) {
912
        /* For generation: p & q must both be NULL or NON-NULL */
913
0
        if ((params->p != NULL) != (params->q != NULL)) {
914
0
            *res = FFC_CHECK_INVALID_PQ;
915
0
            goto err;
916
0
        }
917
0
    } else {
918
0
        if ((flags & FFC_PARAM_FLAG_VALIDATE_PQ) != 0) {
919
            /* Validation of p,q requires seed and counter to be valid */
920
0
            if (seed_in == NULL || params->pcounter < 0) {
921
0
                *res = FFC_CHECK_MISSING_SEED_OR_COUNTER;
922
0
                goto err;
923
0
            }
924
0
        }
925
0
        if ((flags & FFC_PARAM_FLAG_VALIDATE_G) != 0) {
926
            /* validation of g also requires g to be set */
927
0
            if (params->g == NULL) {
928
0
                *res = FFC_CHECK_INVALID_G;
929
0
                goto err;
930
0
            }
931
0
        }
932
0
    }
933
934
0
    if (params->p != NULL && ((flags & FFC_PARAM_FLAG_VALIDATE_PQ) == 0)) {
935
        /* p and q already exists so only generate g */
936
0
        p = params->p;
937
0
        q = params->q;
938
0
        goto g_only;
939
        /* otherwise fall through to validate p and q */
940
0
    }
941
942
0
    use_random_seed = (seed_in == NULL);
943
0
    for (;;) {
944
0
        if (!generate_q_fips186_2(ctx, q, md, buf, seed, qsize,
945
0
                use_random_seed, &m, res, cb))
946
0
            goto err;
947
948
0
        if (!BN_GENCB_call(cb, 2, 0))
949
0
            goto err;
950
0
        if (!BN_GENCB_call(cb, 3, 0))
951
0
            goto err;
952
953
        /* step 6 */
954
0
        n = (L - 1) / 160;
955
0
        counter = 4 * L - 1; /* Was 4096 */
956
        /* Validation requires the counter to be supplied */
957
0
        if (verify) {
958
0
            if (params->pcounter > counter) {
959
0
                *res = FFC_CHECK_INVALID_COUNTER;
960
0
                goto err;
961
0
            }
962
0
            counter = params->pcounter;
963
0
        }
964
965
0
        rv = generate_p(ctx, md, counter, n, buf, qsize, q, p, L, cb,
966
0
            &pcounter, res);
967
0
        if (rv > 0)
968
0
            break; /* found it */
969
0
        if (rv == -1)
970
0
            goto err;
971
        /* This is what the old code did - probably not a good idea! */
972
0
        use_random_seed = 1;
973
0
    }
974
975
0
    if (!BN_GENCB_call(cb, 2, 1))
976
0
        goto err;
977
978
0
    if (verify) {
979
0
        if (pcounter != counter) {
980
0
            *res = FFC_CHECK_COUNTER_MISMATCH;
981
0
            goto err;
982
0
        }
983
0
        if (BN_cmp(p, params->p) != 0) {
984
0
            *res = FFC_CHECK_P_MISMATCH;
985
0
            goto err;
986
0
        }
987
0
    }
988
    /* If validating p & q only then skip the g validation test */
989
0
    if ((flags & FFC_PARAM_FLAG_VALIDATE_PQG) == FFC_PARAM_FLAG_VALIDATE_PQ)
990
0
        goto pass;
991
0
g_only:
992
0
    if ((mont = BN_MONT_CTX_new()) == NULL)
993
0
        goto err;
994
0
    if (!BN_MONT_CTX_set(mont, p, ctx))
995
0
        goto err;
996
997
0
    if (!verify) {
998
        /* We now need to generate g */
999
        /* set test = p - 1 */
1000
0
        if (!BN_sub(test, p, BN_value_one()))
1001
0
            goto err;
1002
        /* Set r0 = (p - 1) / q */
1003
0
        if (!BN_div(r0, NULL, test, q, ctx))
1004
0
            goto err;
1005
0
        if (!generate_unverifiable_g(ctx, mont, g, tmp, p, r0, test, &hret))
1006
0
            goto err;
1007
0
    } else if (((flags & FFC_PARAM_FLAG_VALIDATE_G) != 0)
1008
0
        && !ossl_ffc_params_validate_unverifiable_g(ctx, mont, p, q,
1009
0
            params->g, tmp,
1010
0
            res)) {
1011
0
        goto err;
1012
0
    }
1013
1014
0
    if (!BN_GENCB_call(cb, 3, 1))
1015
0
        goto err;
1016
1017
0
    if (!verify) {
1018
0
        if (p != params->p) {
1019
0
            BN_free(params->p);
1020
0
            params->p = BN_dup(p);
1021
0
        }
1022
0
        if (q != params->q) {
1023
0
            BN_free(params->q);
1024
0
            params->q = BN_dup(q);
1025
0
        }
1026
0
        if (g != params->g) {
1027
0
            BN_free(params->g);
1028
0
            params->g = BN_dup(g);
1029
0
        }
1030
0
        if (params->p == NULL || params->q == NULL || params->g == NULL)
1031
0
            goto err;
1032
0
        if (!ossl_ffc_params_set_validate_params(params, seed, qsize, pcounter))
1033
0
            goto err;
1034
0
        params->h = hret;
1035
0
    }
1036
0
pass:
1037
0
    if ((flags & FFC_PARAM_FLAG_VALIDATE_G) != 0)
1038
0
        ok = FFC_PARAM_RET_STATUS_UNVERIFIABLE_G;
1039
0
    else
1040
0
        ok = FFC_PARAM_RET_STATUS_SUCCESS;
1041
0
err:
1042
0
    if (ctx != NULL)
1043
0
        BN_CTX_end(ctx);
1044
0
    BN_CTX_free(ctx);
1045
0
    BN_MONT_CTX_free(mont);
1046
0
    EVP_MD_free(md);
1047
0
    return ok;
1048
0
}
1049
1050
int ossl_ffc_params_FIPS186_4_generate(OSSL_LIB_CTX *libctx, FFC_PARAMS *params,
1051
    int type, size_t L, size_t N,
1052
    int *res, BN_GENCB *cb)
1053
0
{
1054
0
    return ossl_ffc_params_FIPS186_4_gen_verify(libctx, params,
1055
0
        FFC_PARAM_MODE_GENERATE,
1056
0
        type, L, N, res, cb);
1057
0
}
1058
1059
/* This should no longer be used in FIPS mode */
1060
int ossl_ffc_params_FIPS186_2_generate(OSSL_LIB_CTX *libctx, FFC_PARAMS *params,
1061
    int type, size_t L, size_t N,
1062
    int *res, BN_GENCB *cb)
1063
0
{
1064
0
    if (!ossl_ffc_params_FIPS186_2_gen_verify(libctx, params,
1065
0
            FFC_PARAM_MODE_GENERATE,
1066
0
            type, L, N, res, cb))
1067
0
        return 0;
1068
1069
0
    ossl_ffc_params_enable_flags(params, FFC_PARAM_FLAG_VALIDATE_LEGACY, 1);
1070
0
    return 1;
1071
0
}