Coverage Report

Created: 2026-02-14 07:18

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/cryptofuzz-fastmath/modules/wolfcrypt/bn_ops.cpp
Line
Count
Source
1
#include <cryptofuzz/util.h>
2
#include <cryptofuzz/repository.h>
3
#include <fuzzing/datasource/id.hpp>
4
#include <type_traits>
5
6
#include "bn_ops.h"
7
8
10.0k
#define GET_WHICH(max) uint8_t which = 0; try { which = ds.Get<uint8_t>(); which %= ((max)+1); } catch ( ... ) { }
9
42
#define GET_OPTIONAL_BN() (ds.Get<bool>() ? bn.GetDestPtr(3) : nullptr)
10
11
namespace cryptofuzz {
12
namespace module {
13
14
namespace wolfCrypt_detail {
15
    WC_RNG* GetRNG(void);
16
    WC_RNG* GetSystemRNG(void);
17
}
18
19
namespace wolfCrypt_bignum {
20
21
namespace wolfCrypt_bignum_detail {
22
23
    template <class ReturnType>
24
28.6k
    static ReturnType assertRet(const ReturnType ret) {
25
28.6k
        static_assert(std::is_same<ReturnType, int>());
26
27
28.6k
        if ( ret > 0 ) {
28
0
            CF_ASSERT(0, "Result of mp_* function is not negative or zero");
29
0
        }
30
31
28.6k
        return ret;
32
28.6k
    }
33
16.2k
#define MP_CHECK_EQ(expr, res) CF_CHECK_EQ(::cryptofuzz::module::wolfCrypt_bignum::wolfCrypt_bignum_detail::assertRet(expr), res);
34
35
3.23k
    static int compare(Bignum& A, Bignum& B, Datasource& ds) {
36
3.23k
        util::HintBignumOpt(A.ToDecString());
37
3.23k
        util::HintBignumOpt(B.ToDecString());
38
39
3.23k
        bool swap = false;
40
3.23k
        try {
41
3.23k
            swap = ds.Get<bool>();
42
3.23k
        } catch ( ... ) { }
43
44
3.23k
        if ( swap == false ) {
45
2.51k
            return mp_cmp(A.GetPtr(), B.GetPtr());
46
2.51k
        } else {
47
722
            const auto ret = mp_cmp(B.GetPtr(), A.GetPtr());
48
49
            /* Because the operands were swapped, invert the result */
50
722
            if ( ret == MP_LT ) {
51
295
                return MP_GT;
52
427
            } else if ( ret == MP_GT ) {
53
359
                return MP_LT;
54
359
            } else {
55
68
                return ret;
56
68
            }
57
722
        }
58
3.23k
    }
59
60
#if !defined(WOLFSSL_SP_MATH) && (!defined(USE_FAST_MATH) || defined(WOLFSSL_SP_MATH_ALL))
61
    static std::optional<int> isPowerOf2(Bignum& A, Datasource& ds) {
62
        std::optional<int> ret = std::nullopt;
63
        wolfCrypt_bignum::Bignum tmp(ds);
64
65
        auto numBits = mp_count_bits(A.GetPtr());
66
        CF_CHECK_GTE(numBits, 1);
67
        numBits--;
68
        MP_CHECK_EQ(mp_copy(A.GetPtr(), tmp.GetPtr()), MP_OKAY);
69
#if defined(USE_FAST_MATH) || defined(USE_INTEGER_HEAP_MATH)
70
        CF_NORET(mp_rshb(tmp.GetPtr(), numBits));
71
#else
72
        MP_CHECK_EQ(mp_rshb(tmp.GetPtr(), numBits), MP_OKAY);
73
#endif
74
        MP_CHECK_EQ(mp_mul_2d(tmp.GetPtr(), numBits, tmp.GetPtr()), MP_OKAY);
75
76
        {
77
            /* Use the nearest exponent of 2 as a hint for the mutator */
78
            const auto s = tmp.ToDecString();
79
80
            util::HintBignumOpt(s);
81
        }
82
83
        CF_CHECK_EQ(compare(A, tmp, ds), MP_EQ);
84
85
        ret = numBits;
86
end:
87
        return ret;
88
    }
89
#endif
90
91
    bool montgomery_reduce(
92
            fuzzing::datasource::Datasource& ds,
93
            mp_int* res,
94
            mp_int* a,
95
36
            const mp_digit b) {
96
36
        bool ret = false;
97
98
36
        bool which = false;
99
36
        try {
100
36
            which = ds.Get<bool>();
101
36
        } catch ( ... ) { }
102
103
36
        if ( which == false ) {
104
34
            MP_CHECK_EQ(mp_montgomery_reduce(res, a, b), MP_OKAY);
105
31
        } else {
106
2
            MP_CHECK_EQ(mp_montgomery_reduce_ct(res, a, b), MP_OKAY);
107
1
        }
108
109
32
        ret = true;
110
36
end:
111
112
36
        return ret;
113
32
    }
114
}
115
116
1.34k
bool Add::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
117
1.34k
    bool ret = false;
118
119
1.34k
    GET_WHICH(1);
120
1.34k
    switch ( which ) {
121
440
        case    0:
122
440
            MP_CHECK_EQ(mp_add(bn[0].GetPtr(), bn[1].GetPtr(), bn.GetResPtr()), MP_OKAY);
123
390
            CF_CHECK_TRUE(bn.CopyResult(res));
124
390
            ret = true;
125
390
            break;
126
902
        case    1:
127
902
            {
128
902
                const auto op = bn[1].AsUnsigned<mp_digit>();
129
902
                CF_CHECK_NE(op, std::nullopt);
130
807
                MP_CHECK_EQ(mp_add_d(bn[0].GetPtr(), *op, bn.GetResPtr()), MP_OKAY);
131
765
                CF_CHECK_TRUE(bn.CopyResult(res));
132
765
                ret = true;
133
765
            }
134
0
            break;
135
1.34k
    }
136
137
1.34k
end:
138
1.34k
    return ret;
139
1.34k
}
140
141
60
bool Sub::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
142
60
    bool ret = false;
143
144
#if defined(WOLFSSL_SP_MATH) || defined(WOLFSSL_SP_MATH_ALL)
145
    /* SP math cannot represent negative numbers, so ensure the result
146
     * of the subtracton is always >= 0.
147
     *
148
     * Still run the subtraction operation to see if this can cause
149
     * memory errors, but don't return the result.
150
     */
151
    bool negative = false;
152
    if ( wolfCrypt_bignum_detail::compare(bn[0], bn[1], ds) == MP_LT) {
153
        negative = true;
154
    }
155
#endif
156
157
60
    GET_WHICH(1);
158
60
    switch ( which ) {
159
36
        case    0:
160
36
            MP_CHECK_EQ(mp_sub(bn[0].GetPtr(), bn[1].GetPtr(), bn.GetResPtr()), MP_OKAY);
161
35
            CF_CHECK_TRUE(bn.CopyResult(res));
162
35
            ret = true;
163
35
            break;
164
24
        case    1:
165
24
            {
166
24
                const auto op = bn[1].AsUnsigned<mp_digit>();
167
24
                CF_CHECK_NE(op, std::nullopt);
168
15
                MP_CHECK_EQ(mp_sub_d(bn[0].GetPtr(), *op, bn.GetResPtr()), MP_OKAY);
169
12
                CF_CHECK_TRUE(bn.CopyResult(res));
170
12
                ret = true;
171
12
            }
172
0
            break;
173
60
    }
174
175
60
end:
176
#if defined(WOLFSSL_SP_MATH) || defined(WOLFSSL_SP_MATH_ALL)
177
    if ( negative == true ) {
178
        return false;
179
    }
180
#endif
181
60
    return ret;
182
60
}
183
184
293
bool Mul::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
185
293
    bool ret = false;
186
187
293
    GET_WHICH(3);
188
293
    switch ( which ) {
189
126
        case    0:
190
126
            MP_CHECK_EQ(mp_mul(bn[0].GetPtr(), bn[1].GetPtr(), bn.GetResPtr()), MP_OKAY);
191
118
            CF_CHECK_TRUE(bn.CopyResult(res));
192
118
            ret = true;
193
118
            break;
194
94
        case    1:
195
94
            {
196
94
                const auto op = bn[1].AsUnsigned<mp_digit>();
197
94
                CF_CHECK_NE(op, std::nullopt);
198
87
                MP_CHECK_EQ(mp_mul_d(bn[0].GetPtr(), *op, bn.GetResPtr()), MP_OKAY);
199
77
                CF_CHECK_TRUE(bn.CopyResult(res));
200
77
                ret = true;
201
77
            }
202
0
            break;
203
#if !defined(USE_FAST_MATH) && !defined(WOLFSSL_SP_MATH)
204
        case    2:
205
            util::HintBignum("2");
206
            CF_CHECK_EQ(mp_cmp_d(bn[1].GetPtr(), 2), MP_EQ);
207
            MP_CHECK_EQ(mp_mul_2(bn[0].GetPtr(), bn.GetResPtr()), MP_OKAY);
208
            CF_CHECK_TRUE(bn.CopyResult(res));
209
            ret = true;
210
            break;
211
#endif
212
54
        case    3:
213
54
            {
214
54
                const auto numBits = mp_cnt_lsb(bn[1].GetPtr());
215
54
                CF_CHECK_GTE(numBits, DIGIT_BIT);
216
31
                CF_CHECK_EQ(numBits % DIGIT_BIT, 0);
217
218
17
                wolfCrypt_bignum::Bignum multiplier(ds);
219
17
                MP_CHECK_EQ(mp_2expt(multiplier.GetPtr(), numBits), MP_OKAY);
220
16
                CF_CHECK_EQ(wolfCrypt_bignum_detail::compare(bn[1], multiplier, ds), MP_EQ);
221
222
14
                MP_CHECK_EQ(mp_lshd(bn.GetDestPtr(0), numBits / DIGIT_BIT), MP_OKAY);
223
13
                MP_CHECK_EQ(mp_copy(bn[0].GetPtr(), res.GetPtr()), MP_OKAY);
224
12
                ret = true;
225
12
            }
226
0
            break;
227
293
    }
228
229
293
end:
230
293
    return ret;
231
293
}
232
233
73
bool Div::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
234
73
    (void)ds;
235
73
    bool ret = false;
236
237
73
    GET_WHICH(3);
238
73
    switch ( which ) {
239
42
        case    0:
240
42
            {
241
42
                auto r = bn.GetResPtr();
242
42
                auto optional_bn = GET_OPTIONAL_BN();
243
42
                if ( optional_bn == r ) {
244
                    /* Prevent that the two result pointers are equal */
245
6
                    optional_bn = nullptr;
246
6
                }
247
42
                MP_CHECK_EQ(mp_div(bn[0].GetPtr(), bn[1].GetPtr(), r, optional_bn), MP_OKAY);
248
39
                CF_CHECK_TRUE(bn.CopyResult(res));
249
39
            }
250
0
            break;
251
23
        case    1:
252
23
#if !defined(WOLFSSL_SP_MATH)
253
23
            util::HintBignum("2");
254
23
            CF_CHECK_EQ(mp_cmp_d(bn[1].GetPtr(), 2), MP_EQ);
255
10
            MP_CHECK_EQ(mp_div_2(bn[0].GetPtr(), bn.GetResPtr()), MP_OKAY);
256
10
            CF_CHECK_TRUE(bn.CopyResult(res));
257
10
            break;
258
0
#endif
259
#if !defined(USE_FAST_MATH)
260
        case    2:
261
            {
262
                mp_digit remainder;
263
                util::HintBignum("3");
264
                CF_CHECK_EQ(mp_cmp_d(bn[1].GetPtr(), 3), MP_EQ);
265
                MP_CHECK_EQ(mp_div_3(bn[0].GetPtr(), bn.GetResPtr(), ds.Get<bool>() ? &remainder : nullptr), MP_OKAY);
266
                CF_CHECK_TRUE(bn.CopyResult(res));
267
            }
268
            break;
269
#endif
270
#if defined(WOLFSSL_SP_MATH_ALL)
271
        case    3:
272
            {
273
                const auto divisor = bn[1].AsUnsigned<mp_digit>();
274
                mp_digit remainder;
275
                CF_CHECK_NE(divisor, std::nullopt);
276
                MP_CHECK_EQ(mp_div_d(bn[0].GetPtr(), *divisor, bn.GetResPtr(), ds.Get<bool>() ? &remainder : nullptr), MP_OKAY);
277
                CF_CHECK_TRUE(bn.CopyResult(res));
278
            }
279
#endif
280
8
        default:
281
8
            goto end;
282
73
    }
283
284
    /* wolfCrypt uses different rounding logic with negative divisior.
285
     * The result is still computed, but don't return it
286
     */
287
33
    CF_CHECK_EQ(mp_isneg(bn[0].GetPtr()), 0);
288
289
23
    ret = true;
290
291
57
end:
292
57
    return ret;
293
23
}
294
295
671
bool ExpMod::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
296
671
    bool ret = false;
297
298
671
    try {
299
671
        switch ( ds.Get<uint8_t>() % 5 ) {
300
78
            case    0:
301
78
            {
302
78
                auto data = ds.GetData(0, 1024 / 8, 1024 / 8);
303
                /* Odd */
304
78
                data[1024 / 8 - 1] |= 1;
305
78
                util::HintBignum(util::BinToDec(data));
306
78
            }
307
78
            break;
308
69
            case    1:
309
69
            {
310
69
                auto data = ds.GetData(0, 1536 / 8, 1536 / 8);
311
69
                data[1536 / 8 - 1] |= 1;
312
69
                util::HintBignum(util::BinToDec(data));
313
69
            }
314
69
            break;
315
44
            case    2:
316
44
            {
317
44
                auto data = ds.GetData(0, 2048 / 8, 2048 / 8);
318
44
                data[2048 / 8 - 1] |= 1;
319
44
                util::HintBignum(util::BinToDec(data));
320
44
            }
321
44
            break;
322
67
            case    3:
323
67
            {
324
67
                auto data = ds.GetData(0, 3072 / 8, 3072 / 8);
325
67
                data[3072 / 8 - 1] |= 1;
326
67
                util::HintBignum(util::BinToDec(data));
327
67
            }
328
67
            break;
329
36
            case    4:
330
36
            {
331
36
                auto data = ds.GetData(0, 4096 / 8, 4096 / 8);
332
36
                data[4096 / 8 - 1] |= 1;
333
36
                util::HintBignum(util::BinToDec(data));
334
36
            }
335
36
            break;
336
671
        }
337
671
    } catch ( fuzzing::datasource::Datasource::OutOfData ) {
338
457
    }
339
340
671
    bool return_result = false;
341
342
#if defined(WOLFSSL_SP_MATH)
343
    return_result = true;
344
#else
345
671
    if (
346
671
            !mp_iszero(bn[1].GetPtr()) &&
347
671
            !mp_isneg(bn[0].GetPtr()) &&
348
671
            !mp_isneg(bn[1].GetPtr()) &&
349
469
            !mp_isneg(bn[2].GetPtr()) ) {
350
440
            return_result = true;
351
440
    }
352
671
#endif
353
354
355
671
    GET_WHICH(9);
356
671
    switch ( which ) {
357
419
        case    0:
358
419
            MP_CHECK_EQ(mp_exptmod(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
359
308
            CF_CHECK_TRUE(bn.CopyResult(res));
360
308
            break;
361
0
#if defined(WOLFSSL_SP_MATH_ALL) || defined(USE_FAST_MATH)
362
192
        case    1:
363
192
            MP_CHECK_EQ(mp_exptmod_nct(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
364
137
            CF_CHECK_TRUE(bn.CopyResult(res));
365
137
            break;
366
0
#endif
367
43
        case    2:
368
43
            MP_CHECK_EQ(mp_exptmod_ex(bn[0].GetPtr(), bn[1].GetPtr(), bn[1].GetPtr()->used, bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
369
25
            CF_CHECK_TRUE(bn.CopyResult(res));
370
25
            break;
371
#if defined(WOLFSSL_SP_MATH)
372
            /* ZD 15548 */
373
#if !defined(__aarch64__)
374
        case    3:
375
            MP_CHECK_EQ(sp_ModExp_1024(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
376
            CF_CHECK_TRUE(bn.CopyResult(res));
377
            break;
378
#endif
379
        case    4:
380
            MP_CHECK_EQ(sp_ModExp_1536(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
381
            CF_CHECK_TRUE(bn.CopyResult(res));
382
            break;
383
        case    5:
384
            MP_CHECK_EQ(sp_ModExp_2048(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
385
            CF_CHECK_TRUE(bn.CopyResult(res));
386
            break;
387
        case    6:
388
            MP_CHECK_EQ(sp_ModExp_3072(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
389
            CF_CHECK_TRUE(bn.CopyResult(res));
390
            break;
391
#if !defined(__i386__)
392
        case    7:
393
            MP_CHECK_EQ(sp_ModExp_4096(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
394
            CF_CHECK_TRUE(bn.CopyResult(res));
395
            break;
396
#endif
397
#endif
398
#if !defined(WOLFSSL_SP_MATH) && !defined(WOLFSSL_SP_MATH_ALL) && !defined(USE_FAST_MATH)
399
        case    8:
400
            MP_CHECK_EQ(mp_exptmod_fast(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr(), 0), MP_OKAY);
401
            CF_CHECK_TRUE(bn.CopyResult(res));
402
            break;
403
#endif
404
#if !defined(WOLFSSL_SP_MATH) && !defined(WOLFSSL_SP_MATH_ALL) && !defined(USE_FAST_MATH)
405
        case    9:
406
            {
407
                util::HintBignum("2");
408
                CF_CHECK_EQ(mp_cmp_d(bn[0].GetPtr(), 2), MP_EQ);
409
                MP_CHECK_EQ(mp_exptmod_base_2(bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
410
                CF_CHECK_TRUE(bn.CopyResult(res));
411
            }
412
            break;
413
#endif
414
17
        default:
415
17
            goto end;
416
671
    }
417
418
470
    CF_CHECK_TRUE(return_result);
419
420
334
    ret = true;
421
422
671
end:
423
671
    return ret;
424
334
}
425
426
593
bool Sqr::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
427
593
    (void)ds;
428
429
593
    bool ret = false;
430
431
593
    MP_CHECK_EQ(mp_sqr(bn[0].GetPtr(), bn.GetResPtr()), MP_OKAY);
432
498
    CF_CHECK_TRUE(bn.CopyResult(res));
433
434
498
    ret = true;
435
436
593
end:
437
593
    return ret;
438
498
}
439
440
2.19k
bool GCD::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
441
2.19k
    (void)ds;
442
2.19k
    (void)res;
443
2.19k
    (void)bn;
444
445
2.19k
    bool ret = false;
446
447
    /* mp_gcd does not support negative numbers */
448
2.19k
    CF_CHECK_NE(mp_cmp_d(bn[0].GetPtr(), 0), MP_LT);
449
2.16k
    CF_CHECK_NE(mp_cmp_d(bn[1].GetPtr(), 0), MP_LT);
450
451
2.12k
    MP_CHECK_EQ(mp_gcd(bn[0].GetPtr(), bn[1].GetPtr(), bn.GetResPtr()), MP_OKAY);
452
1.93k
    CF_CHECK_TRUE(bn.CopyResult(res));
453
454
1.93k
    ret = true;
455
456
2.19k
end:
457
2.19k
    return ret;
458
1.93k
}
459
460
2.51k
bool InvMod::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
461
2.51k
    (void)ds;
462
463
2.51k
    bool ret = false;
464
465
2.51k
    GET_WHICH(1);
466
467
2.51k
    switch ( which ) {
468
1.79k
        case    0:
469
1.79k
            MP_CHECK_EQ(mp_invmod(bn[0].GetPtr(), bn[1].GetPtr(), bn.GetResPtr()), MP_OKAY);
470
1.19k
            CF_CHECK_TRUE(bn.CopyResult(res));
471
1.19k
            break;
472
0
#define HAVE_MP_INVMOD_MONT_CT 1
473
474
#if defined(USE_INTEGER_HEAP_MATH)
475
 /* Heapmath does not have mp_invmod_mont_ct */
476
 #undef HAVE_MP_INVMOD_MONT_CT
477
#elif defined(WOLFSSL_SP_MATH) && !defined(WOLFSSL_SP_INVMOD_MONT_CT)
478
 /* SP math has mp_invmod_mont_ct only if WOLFSSL_SP_INVMOD_MONT_CT is defined */
479
 #undef HAVE_MP_INVMOD_MONT_CT
480
#endif
481
482
0
#if defined(HAVE_MP_INVMOD_MONT_CT)
483
719
        case    1:
484
719
            {
485
719
                mp_digit mp;
486
719
                wolfCrypt_bignum::Bignum tmp1(ds);
487
719
                wolfCrypt_bignum::Bignum tmp2(ds);
488
719
                int is_prime;
489
490
                /* Modulus must be > 2 and prime */
491
719
                CF_CHECK_EQ(mp_cmp_d(bn[1].GetPtr(), 2), MP_GT);
492
694
                MP_CHECK_EQ(mp_prime_is_prime_ex(bn[1].GetPtr(), 30, &is_prime, wolfCrypt_detail::GetRNG()), MP_OKAY);
493
544
                CF_CHECK_EQ(is_prime, 1);
494
495
405
                MP_CHECK_EQ(mp_montgomery_setup(bn[1].GetPtr(), &mp), MP_OKAY);
496
405
                MP_CHECK_EQ(mp_montgomery_calc_normalization(tmp1.GetPtr(), bn[1].GetPtr()), MP_OKAY);
497
399
                MP_CHECK_EQ(mp_mulmod(bn[0].GetPtr(), tmp1.GetPtr(), bn[1].GetPtr(), tmp2.GetPtr()), MP_OKAY);
498
379
                MP_CHECK_EQ(mp_invmod_mont_ct(tmp2.GetPtr(), bn[1].GetPtr(), res.GetPtr(), mp), MP_OKAY);
499
268
                CF_CHECK_TRUE(wolfCrypt_bignum_detail::montgomery_reduce(ds, res.GetPtr(), bn[1].GetPtr(), mp));
500
255
            }
501
0
            break;
502
0
#undef HAVE_MP_INVMOD_MONT_CT
503
0
#endif
504
505
#if !defined(USE_FAST_MATH) && !defined(WOLFSSL_SP_MATH)
506
#if 0
507
        case    2:
508
            MP_CHECK_EQ(mp_invmod_slow(bn[0].GetPtr(), bn[1].GetPtr(), res.GetPtr()), MP_OKAY);
509
            break;
510
#endif
511
#endif
512
0
        default:
513
0
            goto end;
514
2.51k
    }
515
516
1.45k
    ret = true;
517
518
2.51k
end:
519
2.51k
    return ret;
520
1.45k
}
521
522
1.12k
bool Cmp::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
523
1.12k
    bool ret = false;
524
525
1.12k
    int cmpRes = 0;
526
1.12k
    GET_WHICH(1);
527
1.12k
    switch ( which ) {
528
725
        case    0:
529
725
            cmpRes = wolfCrypt_bignum_detail::compare(bn[0], bn[1], ds);
530
725
            break;
531
401
        case    1:
532
401
            {
533
401
                const auto op = bn[1].AsUnsigned<mp_digit>();
534
401
                CF_CHECK_NE(op, std::nullopt);
535
283
                cmpRes = mp_cmp_d(bn[0].GetPtr(), *op);
536
283
            }
537
0
            break;
538
0
        default:
539
0
            goto end;
540
1.12k
    }
541
542
1.00k
    switch ( cmpRes ) {
543
314
        case    MP_GT:
544
314
            CF_CHECK_EQ( res.Set("1"), true);
545
308
            break;
546
531
        case    MP_LT:
547
531
            CF_CHECK_EQ( res.Set("-1"), true);
548
369
            break;
549
163
        case    MP_EQ:
550
163
            CF_CHECK_EQ( res.Set("0"), true);
551
153
            break;
552
0
        default:
553
0
            CF_ASSERT(0, "Compare result is not one of (MP_GT, MP_LT, MP_EQ)");
554
1.00k
    }
555
556
830
    ret = true;
557
558
1.12k
end:
559
1.12k
    return ret;
560
830
}
561
562
135
bool Abs::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
563
135
    (void)ds;
564
565
135
    bool ret = false;
566
567
135
    MP_CHECK_EQ(mp_abs(bn[0].GetPtr(), bn.GetResPtr()), MP_OKAY);
568
111
    CF_CHECK_TRUE(bn.CopyResult(res));
569
570
111
    ret = true;
571
572
135
end:
573
135
    return ret;
574
111
}
575
576
56
bool Neg::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
577
56
    (void)ds;
578
56
    bool ret = false;
579
580
#if defined(WOLFSSL_SP_MATH) || defined(WOLFSSL_SP_MATH_ALL)
581
    (void)res;
582
    (void)bn;
583
#else
584
56
    CF_CHECK_EQ(res.Set("0"), true);
585
50
    MP_CHECK_EQ(mp_sub(res.GetPtr(), bn[0].GetPtr(), res.GetPtr()), MP_OKAY);
586
587
49
    ret = true;
588
589
56
end:
590
56
#endif
591
592
56
    return ret;
593
49
}
594
595
545
bool RShift::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
596
545
    bool ret = false;
597
598
545
    std::optional<uint64_t> _numBits;
599
545
    int numBits;
600
601
545
    GET_WHICH(2);
602
545
    CF_CHECK_NE(_numBits = bn[1].AsUint64(), std::nullopt);
603
510
    CF_CHECK_LTE(_numBits, 2147483647);
604
605
427
    numBits = *_numBits;
606
607
427
    switch ( which ) {
608
308
        case    0:
609
308
            MP_CHECK_EQ(mp_copy(bn[0].GetPtr(), res.GetPtr()), MP_OKAY);
610
307
#if defined(USE_FAST_MATH) || defined(USE_INTEGER_HEAP_MATH)
611
307
            CF_NORET(mp_rshb(res.GetPtr(), numBits));
612
#else
613
            MP_CHECK_EQ(mp_rshb(res.GetPtr(), numBits), MP_OKAY);
614
#endif
615
307
            ret = true;
616
307
            break;
617
0
#if !defined(WOLFSSL_SP_MATH)
618
90
        case    1:
619
90
            MP_CHECK_EQ(mp_div_2d(bn[0].GetPtr(), numBits, res.GetPtr(), GET_OPTIONAL_BN()), MP_OKAY);
620
89
            ret = true;
621
89
            break;
622
0
#endif
623
0
#if !defined(WOLFSSL_SP_MATH)
624
29
        case    2:
625
29
            {
626
                /* Check if number of bits to shift is a multiple of a full digit */
627
29
                CF_CHECK_EQ(numBits % (sizeof(mp_digit) * 8), 0);
628
629
27
                MP_CHECK_EQ(mp_copy(bn[0].GetPtr(), res.GetPtr()), MP_OKAY);
630
631
26
                const auto numDigits = numBits / (sizeof(mp_digit) * 8);
632
26
                CF_NORET(mp_rshd(res.GetPtr(), numDigits));
633
634
26
                ret = true;
635
26
            }
636
0
            break;
637
427
#endif
638
427
    }
639
640
544
end:
641
642
544
    return ret;
643
427
}
644
645
335
bool LShift1::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
646
335
    (void)ds;
647
648
335
    bool ret = false;
649
650
#if defined(WOLFSSL_SP_MATH)
651
    (void)res;
652
    (void)bn;
653
#else
654
335
    MP_CHECK_EQ(mp_mul_2d(bn[0].GetPtr(), 1, bn.GetResPtr()), MP_OKAY);
655
282
    CF_CHECK_TRUE(bn.CopyResult(res));
656
657
282
    ret = true;
658
659
335
end:
660
335
#endif
661
662
335
    return ret;
663
282
}
664
665
18
bool IsNeg::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
666
18
    (void)ds;
667
668
18
    bool ret = false;
669
670
#if defined(WOLFSSL_SP_MATH) || defined(WOLFSSL_SP_MATH_ALL)
671
    (void)res;
672
    (void)bn;
673
#else
674
18
    CF_CHECK_EQ( res.Set( std::to_string(mp_isneg(bn[0].GetPtr()) ? 1 : 0) ), true);
675
676
18
    ret = true;
677
678
18
end:
679
18
#endif
680
18
    return ret;
681
18
}
682
683
235
bool IsEq::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
684
235
    bool ret = false;
685
686
235
    const bool isEq = wolfCrypt_bignum_detail::compare(bn[0], bn[1], ds) == MP_EQ;
687
235
    CF_CHECK_EQ( res.Set( std::to_string(isEq ? 1 : 0) ), true);
688
689
230
    ret = true;
690
691
235
end:
692
235
    return ret;
693
230
}
694
695
12
bool IsZero::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
696
12
    (void)ds;
697
698
12
    bool ret = false;
699
700
12
    CF_CHECK_EQ( res.Set( std::to_string(mp_iszero(bn[0].GetPtr()) ? 1 : 0) ), true);
701
702
12
    ret = true;
703
704
12
end:
705
12
    return ret;
706
12
}
707
708
166
bool IsOne::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
709
166
    (void)ds;
710
711
166
    bool ret = false;
712
713
166
    CF_CHECK_EQ( res.Set( std::to_string(mp_isone(bn[0].GetPtr()) ? 1 : 0) ), true);
714
715
165
    ret = true;
716
717
166
end:
718
166
    return ret;
719
165
}
720
721
298
bool MulMod::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
722
298
    (void)ds;
723
724
298
    bool ret = false;
725
726
298
    MP_CHECK_EQ(mp_mulmod(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
727
132
    CF_CHECK_TRUE(bn.CopyResult(res));
728
729
132
    ret = true;
730
731
298
end:
732
298
    return ret;
733
132
}
734
735
455
bool AddMod::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
736
455
    bool ret = false;
737
738
#if defined(WOLFSSL_SP_MATH)
739
    (void)ds;
740
    (void)res;
741
    (void)bn;
742
#else
743
455
    GET_WHICH(1);
744
455
    switch ( which ) {
745
232
        case    0:
746
232
            MP_CHECK_EQ(mp_addmod(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
747
139
            CF_CHECK_TRUE(bn.CopyResult(res));
748
139
            break;
749
223
        case    1:
750
            /* mp_addmod_ct does not support negative numbers */
751
223
            CF_CHECK_NE(mp_cmp_d(bn[0].GetPtr(), 0), MP_LT);
752
210
            CF_CHECK_NE(mp_cmp_d(bn[1].GetPtr(), 0), MP_LT);
753
198
            CF_CHECK_NE(mp_cmp_d(bn[2].GetPtr(), 0), MP_LT);
754
755
188
            CF_CHECK_EQ(wolfCrypt_bignum_detail::compare(bn[0], bn[1], ds), MP_LT)
756
152
            CF_CHECK_EQ(wolfCrypt_bignum_detail::compare(bn[1], bn[2], ds), MP_LT)
757
187
            MP_CHECK_EQ(mp_addmod_ct(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
758
187
            CF_CHECK_TRUE(bn.CopyResult(res));
759
82
            break;
760
0
        default:
761
0
            goto end;
762
455
    }
763
764
221
    ret = true;
765
766
455
end:
767
455
#endif
768
455
    return ret;
769
221
}
770
771
782
bool SubMod::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
772
782
    bool ret = false;
773
774
#if defined(WOLFSSL_SP_MATH)
775
    (void)ds;
776
    (void)res;
777
    (void)bn;
778
#else
779
782
    GET_WHICH(1);
780
782
    switch ( which ) {
781
537
        case    0:
782
537
            MP_CHECK_EQ(mp_submod(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
783
406
            CF_CHECK_TRUE(bn.CopyResult(res));
784
406
            break;
785
245
        case    1:
786
            /* mp_submod_ct does not support negative numbers */
787
245
            CF_CHECK_NE(mp_cmp_d(bn[0].GetPtr(), 0), MP_LT);
788
226
            CF_CHECK_NE(mp_cmp_d(bn[1].GetPtr(), 0), MP_LT);
789
211
            CF_CHECK_NE(mp_cmp_d(bn[2].GetPtr(), 0), MP_LT);
790
791
            /* mp_submod_ct documentation states that:
792
             *
793
             * A < modulo
794
             * B < modulo
795
             */
796
198
            CF_CHECK_EQ(wolfCrypt_bignum_detail::compare(bn[0], bn[2], ds), MP_LT)
797
160
            CF_CHECK_EQ(wolfCrypt_bignum_detail::compare(bn[1], bn[2], ds), MP_LT)
798
799
206
            MP_CHECK_EQ(mp_submod_ct(bn[0].GetPtr(), bn[1].GetPtr(), bn[2].GetPtr(), bn.GetResPtr()), MP_OKAY);
800
206
            CF_CHECK_TRUE(bn.CopyResult(res));
801
79
            break;
802
0
        default:
803
0
            goto end;
804
782
    }
805
806
485
    ret = true;
807
808
782
end:
809
782
#endif
810
782
    return ret;
811
485
}
812
813
368
bool SqrMod::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
814
368
    (void)ds;
815
816
368
    bool ret = false;
817
818
368
    MP_CHECK_EQ(mp_sqrmod(bn[0].GetPtr(), bn[1].GetPtr(), bn.GetResPtr()), MP_OKAY);
819
172
    CF_CHECK_TRUE(bn.CopyResult(res));
820
821
172
    ret = true;
822
823
368
end:
824
368
    return ret;
825
172
}
826
827
762
bool Bit::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
828
762
    (void)ds;
829
762
    bool ret = false;
830
831
#if defined(WOLFSSL_SP_MATH)
832
    (void)res;
833
    (void)bn;
834
#else
835
762
    std::optional<uint64_t> _bitPos;
836
#if defined(WOLFSSL_SP_MATH_ALL)
837
    unsigned int bitPos;
838
#else
839
762
    mp_digit bitPos;
840
762
#endif
841
762
    int isBitSet;
842
843
762
    CF_CHECK_NE(_bitPos = bn[1].AsUint64(), std::nullopt);
844
845
682
    bitPos = *_bitPos;
846
    /* Ensure no truncation has occurred */
847
682
    CF_CHECK_EQ(bitPos, *_bitPos);
848
849
465
    CF_CHECK_GTE(isBitSet = mp_is_bit_set(bn[0].GetPtr(), bitPos), 0);
850
396
    CF_CHECK_EQ( res.Set(isBitSet ? "1" : "0"), true);
851
852
394
    ret = true;
853
854
762
end:
855
762
#endif
856
762
    return ret;
857
394
}
858
859
61
bool CmpAbs::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
860
61
    (void)ds;
861
61
    (void)res;
862
61
    (void)bn;
863
864
    /* TODO */
865
866
61
    bool ret = false;
867
868
61
    return ret;
869
61
}
870
871
497
bool SetBit::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
872
497
    (void)ds;
873
497
    bool ret = false;
874
875
497
    std::optional<uint64_t> _bitPos;
876
497
    mp_digit bitPos;
877
878
497
    CF_CHECK_NE(_bitPos = bn[1].AsUint64(), std::nullopt);
879
880
477
    bitPos = *_bitPos;
881
    /* Ensure no truncation has occurred */
882
477
    CF_CHECK_EQ(bitPos, *_bitPos);
883
884
460
    MP_CHECK_EQ(mp_copy(bn[0].GetPtr(), res.GetPtr()), MP_OKAY);
885
447
    MP_CHECK_EQ(mp_set_bit(res.GetPtr(), bitPos), MP_OKAY);
886
887
399
    ret = true;
888
889
497
end:
890
497
    return ret;
891
399
}
892
893
600
bool LCM::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
894
#if \
895
    defined(WOLFSSL_SP_MATH) || \
896
    (defined(WOLFSSL_SP_MATH_ALL) && \
897
        !(!defined(NO_RSA) && defined(WOLFSSL_KEY_GEN) && !defined(WC_RSA_BLINDING)) \
898
    )
899
    (void)ds;
900
    (void)res;
901
    (void)bn;
902
    return false;
903
#else
904
600
    (void)ds;
905
906
600
    bool ret = false;
907
908
    /* mp_lcm does not support negative numbers */
909
600
    CF_CHECK_NE(mp_cmp_d(bn[0].GetPtr(), 0), MP_LT);
910
584
    CF_CHECK_NE(mp_cmp_d(bn[1].GetPtr(), 0), MP_LT);
911
912
567
    MP_CHECK_EQ(mp_lcm(bn[0].GetPtr(), bn[1].GetPtr(), bn.GetResPtr()), MP_OKAY);
913
480
    CF_CHECK_TRUE(bn.CopyResult(res));
914
915
480
    ret = true;
916
917
600
end:
918
600
    return ret;
919
480
#endif
920
480
}
921
922
144
bool Mod::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
923
144
    bool ret = false;
924
925
144
    GET_WHICH(4);
926
144
    switch ( which ) {
927
52
        case    0:
928
52
            MP_CHECK_EQ(mp_mod(bn[0].GetPtr(), bn[1].GetPtr(), bn.GetResPtr()), MP_OKAY);
929
31
            CF_CHECK_TRUE(bn.CopyResult(res));
930
31
            break;
931
0
#if !defined(WOLFSSL_SP_MATH)
932
46
        case    1:
933
46
            {
934
                /* Input must not be negative */
935
46
                CF_CHECK_NE(mp_cmp_d(bn[0].GetPtr(), 0), MP_LT);
936
937
43
                const auto op = bn[1].AsUnsigned<mp_digit>();
938
43
                CF_CHECK_NE(op, std::nullopt);
939
42
                mp_digit modResult;
940
42
                MP_CHECK_EQ(mp_mod_d(bn[0].GetPtr(), *op, &modResult), MP_OKAY);
941
34
                CF_CHECK_EQ(res.Set(std::to_string(modResult)), true);
942
30
            }
943
0
            break;
944
31
        case    2:
945
31
            {
946
                /* mp_div_2_mod_ct does not support negative numbers */
947
31
                CF_CHECK_NE(mp_cmp_d(bn[0].GetPtr(), 0), MP_LT);
948
28
                CF_CHECK_NE(mp_cmp_d(bn[0].GetPtr(), 0), MP_LT);
949
950
                /* bn[0] *= 2 */
951
28
                MP_CHECK_EQ(mp_mul_d(bn[0].GetPtr(), 2, bn.GetDestPtr(0)), MP_OKAY);
952
953
28
                CF_CHECK_EQ(wolfCrypt_bignum_detail::compare(bn[0], bn[1], ds), MP_LT)
954
28
                MP_CHECK_EQ(mp_div_2_mod_ct(bn[0].GetPtr(), bn[1].GetPtr(), bn.GetResPtr()), MP_OKAY);
955
24
                CF_CHECK_TRUE(bn.CopyResult(res));
956
12
            }
957
0
            break;
958
12
        case    3:
959
12
            {
960
12
                mp_digit mp;
961
12
                wolfCrypt_bignum::Bignum tmp(ds);
962
963
12
                MP_CHECK_EQ(mp_montgomery_setup(bn[1].GetPtr(), &mp), MP_OKAY);
964
9
                MP_CHECK_EQ(mp_montgomery_calc_normalization(tmp.GetPtr(), bn[1].GetPtr()), MP_OKAY);
965
8
                MP_CHECK_EQ(mp_mulmod(bn[0].GetPtr(), tmp.GetPtr(), bn[1].GetPtr(), res.GetPtr()), MP_OKAY);
966
4
                CF_CHECK_TRUE(wolfCrypt_bignum_detail::montgomery_reduce(ds, res.GetPtr(), bn[1].GetPtr(), mp));
967
2
            }
968
0
            break;
969
0
#endif
970
#if !defined(WOLFSSL_SP_MATH) && (!defined(USE_FAST_MATH) || defined(WOLFSSL_SP_MATH_ALL))
971
        case    4:
972
            {
973
                std::optional<int> exponent = std::nullopt;
974
975
                /* Negative modulo not supported */
976
                CF_CHECK_NE(mp_cmp_d(bn[1].GetPtr(), 0), MP_LT);
977
978
                CF_CHECK_NE(exponent = wolfCrypt_bignum_detail::isPowerOf2(bn[1], ds), std::nullopt);
979
980
                MP_CHECK_EQ(mp_mod_2d(bn[0].GetPtr(), *exponent, bn.GetResPtr()), MP_OKAY);
981
                CF_CHECK_TRUE(bn.CopyResult(res));
982
            }
983
            break;
984
#endif
985
3
        default:
986
3
            goto end;
987
144
    }
988
989
75
    ret = true;
990
991
144
end:
992
144
    return ret;
993
75
}
994
995
26
bool IsEven::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
996
26
    (void)ds;
997
998
26
    bool ret = false;
999
1000
26
    CF_CHECK_EQ(mp_iszero(bn[0].GetPtr()), false);
1001
1002
14
    CF_CHECK_EQ( res.Set( std::to_string(mp_iseven(bn[0].GetPtr()) ? 1 : 0) ), true);
1003
1004
11
    ret = true;
1005
1006
26
end:
1007
1008
26
    return ret;
1009
11
}
1010
1011
17
bool IsOdd::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1012
17
    (void)ds;
1013
1014
17
    bool ret = false;
1015
1016
17
    CF_CHECK_EQ( res.Set( std::to_string(mp_isodd(bn[0].GetPtr()) ? 1 : 0) ), true);
1017
1018
17
    ret = true;
1019
1020
17
end:
1021
1022
17
    return ret;
1023
17
}
1024
1025
127
bool MSB::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1026
127
    (void)ds;
1027
1028
127
    bool ret = false;
1029
1030
127
    const int bit = mp_leading_bit(bn[0].GetPtr());
1031
1032
127
    CF_ASSERT(bit == 0 || bit == 1, "mp_leading_bit result is not one of (0, 1)");
1033
1034
127
    CF_CHECK_EQ( res.Set( std::to_string(bit) ), true);
1035
1036
126
    ret = true;
1037
1038
127
end:
1039
1040
127
    return ret;
1041
126
}
1042
1043
128
bool NumBits::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1044
128
    (void)ds;
1045
1046
128
    bool ret = false;
1047
1048
128
    const auto numBits = mp_count_bits(bn[0].GetPtr());
1049
1050
128
    CF_ASSERT(numBits >= 0, "mp_count_bits result is negative");
1051
1052
128
    CF_CHECK_EQ( res.Set( std::to_string(numBits) ), true);
1053
1054
128
    ret = true;
1055
1056
128
end:
1057
128
    return ret;
1058
128
}
1059
1060
752
bool Set::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1061
752
    bool ret = false;
1062
1063
752
    GET_WHICH(3);
1064
752
    switch ( which ) {
1065
124
        case    0:
1066
124
            MP_CHECK_EQ(mp_copy(bn[0].GetPtr(), bn.GetResPtr()), MP_OKAY);
1067
108
            CF_CHECK_TRUE(bn.CopyResult(res));
1068
108
            ret = true;
1069
108
            break;
1070
179
        case    1:
1071
179
            {
1072
                /* See ZD 16084 */
1073
179
                CF_CHECK_LTE(mp_count_bits(bn[0].GetPtr()), DIGIT_BIT);
1074
1075
138
                const auto op = bn[0].AsUnsigned<mp_digit>();
1076
138
                CF_CHECK_NE(op, std::nullopt);
1077
126
                MP_CHECK_EQ(mp_set(bn.GetResPtr(), *op), MP_OKAY);
1078
126
                CF_CHECK_TRUE(bn.CopyResult(res));
1079
126
                ret = true;
1080
126
            }
1081
0
            break;
1082
177
        case    2:
1083
177
            {
1084
                /* mp_exch alters the value of bn[0], so invalidate the cache. */
1085
177
                bn.InvalidateCache();
1086
1087
                /* mp_exch always returns a value */
1088
177
                MP_CHECK_EQ(mp_exch(bn.GetResPtr(), bn[0].GetPtr()), MP_OKAY);
1089
108
                CF_CHECK_TRUE(bn.CopyResult(res));
1090
1091
108
                ret = true;
1092
108
            }
1093
0
            break;
1094
272
        case    3:
1095
272
            {
1096
272
                const auto op = bn[0].AsUnsigned<unsigned long>();
1097
272
                CF_CHECK_NE(op, std::nullopt);
1098
250
                MP_CHECK_EQ(mp_set_int(bn.GetResPtr(), *op), MP_OKAY);
1099
246
                CF_CHECK_TRUE(bn.CopyResult(res));
1100
246
                ret = true;
1101
246
            }
1102
0
            break;
1103
752
    }
1104
1105
752
end:
1106
752
    return ret;
1107
752
}
1108
1109
39
bool Exp2::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1110
39
    (void)ds;
1111
1112
39
    bool ret = false;
1113
1114
39
    const auto exponent = bn[0].AsUnsigned<unsigned int>();
1115
39
    CF_CHECK_NE(exponent, std::nullopt);
1116
36
#if defined(USE_FAST_MATH) && !defined(WOLFSSL_SP_MATH) && !defined(WOLFSSL_SP_MATH_ALL)
1117
36
    CF_CHECK_LT(*exponent / DIGIT_BIT, FP_SIZE);
1118
26
#endif
1119
26
    MP_CHECK_EQ(mp_2expt(bn.GetResPtr(), *exponent), MP_OKAY);
1120
26
    CF_CHECK_TRUE(bn.CopyResult(res));
1121
1122
26
    ret = true;
1123
1124
39
end:
1125
1126
39
    return ret;
1127
26
}
1128
1129
272
bool NumLSZeroBits::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1130
272
    (void)ds;
1131
1132
272
    bool ret = false;
1133
1134
#if (defined(USE_FAST_MATH) && !defined(HAVE_COMP_KEY))
1135
    (void)res;
1136
    (void)bn;
1137
#else
1138
272
    const auto numBits = mp_cnt_lsb(bn[0].GetPtr());
1139
1140
272
    CF_ASSERT(numBits >= 0, "mp_cnt_lsb result is negative");
1141
1142
272
    CF_CHECK_EQ( res.Set( std::to_string(numBits) ), true);
1143
1144
270
    ret = true;
1145
1146
272
end:
1147
272
#endif
1148
1149
272
    return ret;
1150
270
}
1151
1152
31
bool CondSet::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1153
31
    (void)ds;
1154
1155
31
    bool ret = false;
1156
1157
31
    const int doCopy = mp_iszero(bn[1].GetPtr()) ? 0 : 1;
1158
31
    CF_CHECK_EQ(res.Set("0"), true);
1159
28
    MP_CHECK_EQ(mp_cond_copy(bn[0].GetPtr(), doCopy, res.GetPtr()), MP_OKAY);
1160
1161
28
    ret = true;
1162
1163
31
end:
1164
31
    return ret;
1165
28
}
1166
1167
1.15k
bool Rand::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1168
1.15k
    (void)ds;
1169
1.15k
    (void)bn;
1170
1171
1.15k
    bool ret = false;
1172
1173
1.15k
    GET_WHICH(1);
1174
1.15k
    switch ( which ) {
1175
608
        case    0:
1176
608
            {
1177
608
                const auto len = ds.Get<uint16_t>() % 512;
1178
608
                MP_CHECK_EQ(mp_rand(res.GetPtr(), len, wolfCrypt_detail::GetRNG()), MP_OKAY);
1179
478
                ret = true;
1180
478
            }
1181
0
            break;
1182
542
        case    1:
1183
542
            {
1184
542
                const auto len = ds.Get<uint16_t>() % 100;
1185
542
                MP_CHECK_EQ(mp_rand_prime(res.GetPtr(), len, wolfCrypt_detail::GetRNG(), nullptr), MP_OKAY);
1186
80
                ret = true;
1187
80
            }
1188
0
            break;
1189
1.15k
    }
1190
1191
1.01k
end:
1192
1.01k
    return ret;
1193
1.15k
}
1194
1195
140
bool Zero::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1196
140
    (void)bn;
1197
1198
140
    GET_WHICH(1);
1199
140
    switch ( which ) {
1200
95
        case    0:
1201
95
            CF_NORET(mp_zero(res.GetPtr()));
1202
95
            break;
1203
45
        case    1:
1204
45
            CF_NORET(mp_forcezero(res.GetPtr()));
1205
45
            break;
1206
140
    }
1207
1208
140
    return true;
1209
140
}
1210
1211
983
bool Prime::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1212
983
    (void)bn;
1213
1214
983
    bool ret = false;
1215
1216
983
    uint16_t len = 2;
1217
983
    try {
1218
        /* Cap at 100; much larger will timeout */
1219
983
        len = ds.Get<uint16_t>() % 100;
1220
983
    } catch ( ... ) { }
1221
1222
1.73k
    MP_CHECK_EQ(mp_rand_prime(res.GetPtr(), len, wolfCrypt_detail::GetRNG(), nullptr), MP_OKAY);
1223
1224
1.73k
    ret = true;
1225
1226
1.73k
end:
1227
983
    return ret;
1228
1.73k
}
1229
1230
1.70k
bool IsPrime::Run(Datasource& ds, Bignum& res, BignumCluster& bn) const {
1231
1.70k
    (void)ds;
1232
1233
1.70k
    bool ret = false;
1234
1235
1.70k
    int r;
1236
1237
    /* Prevent timeouts */
1238
1.70k
    CF_CHECK_LTE(mp_count_bits(bn[0].GetPtr()), 1000);
1239
1240
    /* Must be system RNG; otherwise the fuzzer will PRNG seeds that will
1241
     * incorrectly regard a prime as composite.
1242
     */
1243
1.64k
    CF_CHECK_EQ(mp_prime_is_prime_ex(bn[0].GetPtr(), 256, &r, wolfCrypt_detail::GetSystemRNG()), MP_OKAY);
1244
1.55k
    CF_CHECK_EQ( res.Set( std::to_string(r) ), true);
1245
1246
1.55k
    ret = true;
1247
1248
1.70k
end:
1249
1.70k
    return ret;
1250
1.55k
}
1251
1252
1253
} /* namespace wolfCrypt_bignum */
1254
} /* namespace module */
1255
} /* namespace cryptofuzz */