Coverage Report

Created: 2026-07-25 06:35

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/cryptofuzz/modules/botan/bn_ops.cpp
Line
Count
Source
1
#include <cryptofuzz/util.h>
2
#include <cryptofuzz/repository.h>
3
#include <fuzzing/datasource/id.hpp>
4
#include <botan/numthry.h>
5
#include <botan/reducer.h>
6
#include <botan/internal/divide.h>
7
#include <botan/internal/barrett.h>
8
#include <botan/internal/primality.h>
9
#include <botan/system_rng.h>
10
11
#include "bn_ops.h"
12
13
namespace cryptofuzz {
14
namespace module {
15
namespace Botan_bignum {
16
17
namespace detail {
18
458
    std::optional<size_t> To_size_t(const Bignum& bn) {
19
        /* TODO use #if */
20
21
458
        if ( sizeof(size_t) == 4 ) {
22
0
            try {
23
0
                return bn.ConstRef().to_u32bit();
24
0
            } catch ( ::Botan::Encoding_Error ) {
25
0
                return std::nullopt;
26
0
            }
27
458
        } else if ( sizeof(size_t) == 8 ) {
28
458
            if( bn.ConstRef().is_negative() ) {
29
16
                return std::nullopt;
30
16
            }
31
32
442
            if( bn.ConstRef().bits() > 64 ) {
33
35
                return std::nullopt;
34
35
            }
35
36
407
            uint64_t out = 0;
37
38
3.66k
            for (size_t i = 0; i != 8; ++i) {
39
3.25k
                out = (out << 8) | bn.ConstRef().byte_at(7-i);
40
3.25k
            }
41
42
407
            return out;
43
442
        } else {
44
0
            CF_UNREACHABLE();
45
0
        }
46
458
    }
47
}
48
49
#if !defined(CRYPTOFUZZ_BOTAN_IS_ORACLE)
50
 #define GET_UINT8_FOR_SWITCH() ds.Get<uint8_t>()
51
#else
52
235
 #define GET_UINT8_FOR_SWITCH() 0
53
#endif /* CRYPTOFUZZ_BOTAN_IS_ORACLE */
54
55
585
#define APPLY_MODULO if (modulo != std::nullopt) res = (res.ConstRef() % modulo->ConstRef())
56
57
155
bool Add::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
58
155
    (void)ds;
59
60
155
    res = bn[0].Ref() + bn[1].Ref();
61
62
155
    APPLY_MODULO;
63
64
155
    return true;
65
155
}
66
67
41
bool Sub::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
68
41
    (void)ds;
69
70
41
    res = bn[0].Ref() - bn[1].Ref();
71
72
41
    APPLY_MODULO;
73
74
41
    return true;
75
41
}
76
77
187
bool Mul::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
78
187
    (void)ds;
79
80
187
    res = bn[0].Ref() * bn[1].Ref();
81
82
187
    APPLY_MODULO;
83
84
187
    return true;
85
187
}
86
87
25
bool Div::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
88
25
    (void)modulo;
89
25
    (void)ds;
90
91
    /* Botan handles negative division different than
92
     * other libraries.
93
     */
94
25
    CF_CHECK_TRUE(bn[0].Ref() > 0);
95
13
    CF_CHECK_TRUE(bn[1].Ref() > 0);
96
97
9
    try {
98
9
        switch ( GET_UINT8_FOR_SWITCH() ) {
99
9
            case    0:
100
                /* / operator */
101
9
                res = bn[0].Ref() / bn[1].Ref();
102
9
                return true;
103
0
            case    1:
104
0
                {
105
0
                    CF_CHECK_TRUE(bn[1].Ref() != 0);
106
0
                    Bignum dummy;
107
0
                    /* noret */ ::Botan::vartime_divide(bn[0].Ref(), bn[1].Ref(), res.Ref(), dummy.Ref());
108
0
                }
109
0
                return true;
110
0
            case    2:
111
0
                {
112
0
                    CF_CHECK_GT(bn[1].Ref(), 0);
113
0
                    CF_CHECK_TRUE(bn[1].Ref() < 256);
114
0
                    ::Botan::word dummy;
115
0
                    CF_NORET(::Botan::ct_divide_word(bn[0].Ref(), bn[1].Ref().word_at(0), res.Ref(), dummy));
116
0
                }
117
0
                return true;
118
0
            case    3:
119
0
                CF_CHECK_TRUE(bn[1].Ref() != 0);
120
0
                res = ::Botan::ct_divide(bn[0].Ref(), bn[1].Ref());
121
0
                return true;
122
0
            case    4:
123
                /* /= operator */
124
0
                res = bn[0].Ref();
125
0
                res.Ref() /= bn[1].Ref();
126
0
                return true;
127
9
        }
128
9
    } catch ( fuzzing::datasource::Datasource::OutOfData ) {
129
0
        return false;
130
0
    } catch ( ::Botan::Invalid_Argument& e ) {
131
        /* Botan is expected to throw an exception when divisor is 0 */
132
0
        if ( bn[1].Ref() == 0 ) {
133
0
            return false;
134
0
        }
135
136
        /* Rethrow */
137
0
        throw e;
138
0
    }
139
140
16
end:
141
16
    return false;
142
9
}
143
144
161
bool Mod::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
145
161
    (void)modulo;
146
161
    (void)ds;
147
148
161
    try {
149
161
        switch ( GET_UINT8_FOR_SWITCH() ) {
150
161
            case    0:
151
161
                {
152
161
                    try {
153
161
                        const Botan::Modular_Reducer reducer(bn[1].Ref());
154
161
                        res = reducer.reduce(bn[0].Ref());
155
161
                    } catch ( ::Botan::Invalid_State& e ) {
156
                        /* Modular reducer is expected to throw an exception when modulo is 0 */
157
0
                        if ( bn[1].Ref() == 0 ) {
158
0
                            return false;
159
0
                        }
160
161
                        /* Rethrow */
162
0
                        throw e;
163
0
                    }
164
161
                }
165
155
                return true;
166
0
            case    1:
167
0
                res = ct_modulo(bn[0].Ref(), bn[1].Ref());
168
0
                return true;
169
0
            case    2:
170
                /* % operator */
171
0
                res = bn[0].Ref() % bn[1].Ref();
172
0
                return true;
173
0
            case    3:
174
                /* %= operator */
175
0
                {
176
0
                    res = bn[0].Ref();
177
178
0
                    const ::Botan::word modulo = bn[1].Ref().word_at(0);
179
180
                    /* Ensure no truncation occurred */
181
0
                    if ( modulo != bn[1].Ref() ) {
182
0
                        return false;
183
0
                    }
184
185
0
                    res = bn[0].Ref() %= modulo;
186
0
                }
187
0
                return true;
188
161
        }
189
161
    } catch ( fuzzing::datasource::Datasource::OutOfData ) {
190
0
        return false;
191
6
    } catch ( ::Botan::Invalid_Argument& e ) {
192
        /* Botan is expected to throw an exception when modulo is <= 0 */
193
6
        if ( bn[1].Ref() <= 0 ) {
194
6
            return false;
195
6
        }
196
197
        /* Rethrow */
198
0
        throw e;
199
6
    }
200
201
0
    return false;
202
161
}
203
204
113
bool Exp::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
205
113
    (void)ds;
206
207
113
    if ( modulo == std::nullopt ) {
208
113
        return false;
209
113
    }
210
211
0
    res = ::Botan::power_mod(bn[0].Ref(), bn[1].Ref(), modulo->ConstRef());
212
213
0
    return true;
214
113
}
215
216
1.05k
bool ExpMod::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
217
1.05k
    (void)modulo;
218
1.05k
    (void)ds;
219
220
    /* Exponent and modulus must be positive, according to the documentation */
221
1.05k
    if ( bn[1].Ref() < 0 || bn[2].Ref() <= 0 ) {
222
224
        return false;
223
224
    }
224
225
835
    res = ::Botan::power_mod(bn[0].Ref(), bn[1].Ref(), bn[2].Ref());
226
227
835
    return true;
228
1.05k
}
229
230
60
bool Sqr::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
231
60
    (void)ds;
232
233
60
    res = ::Botan::square(bn[0].Ref());
234
235
60
    APPLY_MODULO;
236
237
60
    return true;
238
60
}
239
240
97
bool GCD::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
241
97
    (void)modulo;
242
97
    (void)ds;
243
244
97
    res = ::Botan::gcd(bn[0].Ref(), bn[1].Ref());
245
246
97
    return true;
247
97
}
248
249
21
bool SqrMod::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
250
21
    (void)modulo;
251
21
    (void)ds;
252
253
21
    if ( bn[1].Ref().is_negative() ) {
254
1
        return false;
255
20
    } else {
256
20
        try {
257
20
            switch ( GET_UINT8_FOR_SWITCH() ) {
258
20
                case    0:
259
20
                    {
260
20
                        try {
261
20
                            ::Botan::Modular_Reducer mod(bn[1].Ref());
262
20
                            res = mod.square(bn[0].Ref());
263
20
                        } catch ( ::Botan::Invalid_State& e ) {
264
                            /* Modular reducer is expected to throw an exception when modulo is 0 */
265
0
                            if ( bn[1].Ref() == 0 ) {
266
0
                                return false;
267
0
                            }
268
269
                            /* Rethrow */
270
0
                            throw e;
271
0
                        }
272
20
                    }
273
11
                    break;
274
0
                case    1:
275
0
                    res = ::Botan::square(bn[0].Ref()) % bn[1].Ref();
276
0
                    break;
277
0
                default:
278
0
                    return false;
279
20
            }
280
20
        } catch ( fuzzing::datasource::Datasource::OutOfData ) {
281
0
            return false;
282
9
        } catch ( ::Botan::Invalid_Argument& e ) {
283
            /* Botan is expected to throw an exception when modulo is 0 */
284
9
            if ( bn[1].Ref() == 0 ) {
285
9
                return false;
286
9
            }
287
288
            /* Rethrow */
289
0
            throw e;
290
9
        }
291
20
    }
292
293
11
    return true;
294
21
}
295
296
409
bool InvMod::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
297
409
    (void)modulo;
298
409
    (void)ds;
299
300
409
    const auto mod = modulo == std::nullopt ? bn[1].ConstRef() : modulo->ConstRef();
301
302
409
    try {
303
409
        res = ::Botan::inverse_mod(bn[0].Ref(), mod);
304
409
    } catch ( ::Botan::Invalid_Argument& e ) {
305
        /* inverse_mod() is expected to throw an exception when modulo is 0 */
306
116
        if ( mod == 0 ) {
307
28
            return false;
308
28
        }
309
310
        /* inverse_mod() is expected to throw an exception when either argument is negative */
311
88
        if ( bn[0].Ref() < 0 || mod < 0 ) {
312
88
            return false;
313
88
        }
314
315
        /* Rethrow */
316
0
        throw e;
317
88
    }
318
319
293
    return true;
320
409
}
321
322
18
bool Cmp::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
323
18
    (void)modulo;
324
18
    (void)ds;
325
326
18
    if ( bn[0].Ref() < bn[1].Ref() ) {
327
10
        res = Bignum("-1");
328
10
    } else if ( bn[0].Ref() > bn[1].Ref() ) {
329
4
        res = 1;
330
4
    } else {
331
4
        res = 0;
332
4
    }
333
334
18
    return true;
335
18
}
336
337
305
bool LCM::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
338
305
    (void)modulo;
339
305
    (void)ds;
340
341
305
    try {
342
305
        res = ::Botan::lcm(bn[0].Ref(), bn[1].Ref());
343
305
    } catch ( ::Botan::Invalid_Argument& e ) {
344
        /* lcm() is expected to throw in these cases */
345
0
        if ( bn[0].Ref() == 0 || bn[1].Ref() == 0 ) {
346
0
            return false;
347
0
        }
348
349
        /* Rethrow */
350
0
        throw e;
351
0
    }
352
353
354
305
    return true;
355
305
}
356
357
36
bool Abs::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
358
36
    (void)modulo;
359
36
    (void)ds;
360
361
36
    res = ::Botan::abs(bn[0].Ref());
362
363
36
    return true;
364
36
}
365
366
85
bool Jacobi::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
367
85
    (void)modulo;
368
85
    (void)ds;
369
370
371
85
    int resInt;
372
373
85
    try {
374
85
        resInt = ::Botan::jacobi(bn[0].Ref(), bn[1].Ref());
375
85
    } catch ( ::Botan::Invalid_Argument& e ) {
376
        /* jacobi() is expected to throw in these cases */
377
3
        if ( (bn[1].Ref() % 2) == 0 || bn[1].Ref() <= 1 ) {
378
3
            return false;
379
3
        }
380
381
        /* Rethrow */
382
0
        throw e;
383
3
    }
384
385
82
    if ( resInt == -1 ) {
386
28
        res = Bignum("-1");
387
54
    } else {
388
54
        res = resInt;
389
54
    }
390
391
82
    return true;
392
85
}
393
394
40
bool Neg::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
395
40
    (void)modulo;
396
40
    (void)ds;
397
398
40
    res = -bn[0].Ref();
399
400
40
    return true;
401
40
}
402
403
188
bool IsPrime::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
404
188
    (void)modulo;
405
188
    (void)ds;
406
407
188
    if ( bn[0].Ref().is_negative() ) {
408
3
        return false;
409
3
    }
410
411
    /* Avoid time-outs */
412
185
    if ( bn[0].Ref().bytes() > 300 ) {
413
1
        return false;
414
1
    }
415
416
184
    auto mod_n = Botan::Barrett_Reduction::for_public_modulus(bn[0].Ref());
417
184
    if ( Botan::is_bailie_psw_probable_prime(bn[0].Ref(), mod_n) ) {
418
54
        res = 1;
419
130
    } else {
420
130
        res = 0;
421
130
    }
422
423
184
    return true;
424
185
}
425
426
118
bool RShift::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
427
118
    (void)ds;
428
429
118
    const auto count = detail::To_size_t(bn[1].Ref());
430
431
118
    if ( count == std::nullopt ) {
432
24
        return false;
433
24
    }
434
435
94
    Bignum toShift = bn[0];
436
94
    if ( modulo && bn[0].Ref() % 2 ) {
437
0
        toShift = toShift.Ref() + modulo->ConstRef();
438
0
    }
439
440
94
    res = toShift.Ref() >> *count;
441
442
94
    APPLY_MODULO;
443
444
94
    return true;
445
118
}
446
447
20
bool LShift1::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
448
20
    (void)ds;
449
450
20
    res = bn[0].Ref() << 1;
451
452
20
    APPLY_MODULO;
453
454
20
    return true;
455
20
}
456
457
8
bool IsNeg::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
458
8
    (void)modulo;
459
8
    (void)ds;
460
461
8
    res = bn[0].Ref() < 0 ? 1 : 0;
462
463
8
    return true;
464
8
}
465
466
92
bool IsEq::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
467
92
    (void)ds;
468
469
92
    auto A = modulo == std::nullopt ? bn[0] : bn[0].Ref() % modulo->ConstRef();
470
92
    auto B = modulo == std::nullopt ? bn[1] : bn[1].Ref() % modulo->ConstRef();
471
472
92
    res = A.Ref() == B.Ref() ? 1 : 0;
473
474
92
    return true;
475
92
}
476
477
60
bool IsGt::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
478
60
    (void)modulo;
479
60
    (void)ds;
480
481
60
    res = bn[0].Ref() > bn[1].Ref() ? 1 : 0;
482
483
60
    return true;
484
60
}
485
486
79
bool IsGte::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
487
79
    (void)modulo;
488
79
    (void)ds;
489
490
79
    res = bn[0].Ref() >= bn[1].Ref() ? 1 : 0;
491
492
79
    return true;
493
79
}
494
495
44
bool IsLt::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
496
44
    (void)modulo;
497
44
    (void)ds;
498
499
44
    res = bn[0].Ref() < bn[1].Ref() ? 1 : 0;
500
501
44
    return true;
502
44
}
503
504
93
bool IsLte::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
505
93
    (void)modulo;
506
93
    (void)ds;
507
508
93
    res = bn[0].Ref() <= bn[1].Ref() ? 1 : 0;
509
510
93
    return true;
511
93
}
512
513
12
bool IsEven::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
514
12
    (void)modulo;
515
12
    (void)ds;
516
517
12
    res = !(bn[0].Ref() % 2) ? 1 : 0;
518
519
12
    return true;
520
12
}
521
522
16
bool IsOdd::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
523
16
    (void)modulo;
524
16
    (void)ds;
525
526
16
    res = (bn[0].Ref() % 2) ? 1 : 0;
527
528
16
    return true;
529
16
}
530
531
11
bool IsZero::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
532
11
    (void)ds;
533
534
11
    auto A = modulo == std::nullopt ? bn[0] : bn[0].Ref() % modulo->ConstRef();
535
536
11
    res = A.Ref() == 0 ? 1 : 0;
537
538
11
    return true;
539
11
}
540
541
4
bool IsNotZero::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
542
4
    (void)modulo;
543
4
    (void)ds;
544
545
4
    res = bn[0].Ref() == 0 ? 0 : 1;
546
547
4
    return true;
548
4
}
549
550
54
bool IsOne::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
551
54
    (void)ds;
552
553
54
    auto A = modulo == std::nullopt ? bn[0] : bn[0].Ref() % modulo->ConstRef();
554
555
54
    res = A.Ref() == 1 ? 1 : 0;
556
557
54
    return true;
558
54
}
559
560
10
bool MulMod::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
561
10
    (void)modulo;
562
10
    (void)ds;
563
564
10
    try {
565
10
        switch ( GET_UINT8_FOR_SWITCH() ) {
566
10
            case    0:
567
10
                {
568
10
                    try {
569
10
                        ::Botan::Modular_Reducer mod(bn[2].Ref());
570
10
                        res = mod.multiply(bn[0].Ref(), bn[1].Ref());
571
10
                    } catch ( ::Botan::Invalid_State& e ) {
572
                        /* Modular reducer is expected to throw an exception when modulo is 0 */
573
0
                        if ( bn[2].Ref() == 0 ) {
574
0
                            return false;
575
0
                        }
576
577
                        /* Rethrow */
578
0
                        throw e;
579
0
                    }
580
10
                }
581
7
                break;
582
0
            case    1:
583
0
                res = (bn[0].Ref() * bn[1].Ref()) % bn[2].Ref();
584
0
                break;
585
0
            default:
586
0
                return false;
587
10
        }
588
10
    } catch ( fuzzing::datasource::Datasource::OutOfData ) {
589
0
        return false;
590
3
    } catch ( ::Botan::Invalid_Argument& e ) {
591
        /* Botan is expected to throw an exception when modulo is <= 0 */
592
3
        if ( bn[2].Ref() <= 0 ) {
593
3
            return false;
594
3
        }
595
596
        /* Rethrow */
597
0
        throw e;
598
3
    }
599
600
7
    return true;
601
10
}
602
603
106
bool Bit::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
604
106
    (void)modulo;
605
106
    (void)ds;
606
607
106
    const auto pos = detail::To_size_t(bn[1].Ref());
608
609
106
    if ( pos == std::nullopt ) {
610
10
        return false;
611
10
    }
612
613
96
    res = bn[0].Ref().get_bit(*pos) ? 1 : 0;
614
615
96
    return true;
616
106
}
617
618
7
bool CmpAbs::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
619
7
    (void)modulo;
620
7
    std::vector<Bignum> bnAbs = {bn[0].Ref().abs(), bn[1].Ref().abs()};
621
7
    auto cmp = std::make_unique<Cmp>();
622
623
7
    return cmp->Run(ds, res, bnAbs, modulo);
624
7
}
625
626
82
bool SetBit::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
627
82
    (void)modulo;
628
82
    (void)ds;
629
630
82
    res = bn[0].Ref();
631
632
82
    const auto pos = detail::To_size_t(bn[1].Ref());
633
634
82
    if ( pos == std::nullopt ) {
635
5
        return false;
636
5
    }
637
638
77
    res.Ref().set_bit(*pos);
639
640
77
    return true;
641
82
}
642
643
152
bool ClearBit::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
644
152
    (void)modulo;
645
152
    (void)ds;
646
647
152
    res = bn[0].Ref();
648
649
152
    const auto pos = detail::To_size_t(bn[1].Ref());
650
651
152
    if ( pos == std::nullopt ) {
652
12
        return false;
653
12
    }
654
655
140
    res.Ref().clear_bit(*pos);
656
657
140
    return true;
658
152
}
659
660
18
bool MulAdd::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
661
18
    (void)modulo;
662
18
    (void)ds;
663
664
18
    res = (bn[0].Ref()*bn[1].Ref()) + bn[2].Ref();
665
666
18
    return true;
667
18
}
668
669
30
bool MulDiv::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
670
30
    (void)modulo;
671
30
    (void)ds;
672
673
30
    if ( bn[2].Ref() == 0 ) {
674
2
        return false;
675
2
    }
676
677
28
    res = (bn[0].Ref()*bn[1].Ref()+1) / bn[2].Ref();
678
679
28
    return true;
680
30
}
681
682
101
bool MulDivCeil::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
683
101
    (void)modulo;
684
101
    (void)ds;
685
686
101
    if ( bn[2].Ref() <= 0 ) {
687
2
        return false;
688
2
    }
689
690
99
    const auto mulRes = bn[0].Ref() * bn[1].Ref();
691
99
    const auto modRes = mulRes % bn[2].Ref();
692
99
    res = mulRes / bn[2].Ref() + (modRes != 0 ? 1 : 0);
693
694
99
    return true;
695
101
}
696
697
8
bool Exp2::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
698
8
    (void)modulo;
699
8
    (void)ds;
700
701
8
    if ( bn[0].Ref() < 1 ) {
702
2
        return false;
703
2
    }
704
705
6
    const size_t exponent = bn[0].Ref().word_at(0) - 1;
706
707
6
    res = Bignum(2).Ref() << exponent;
708
709
6
    return true;
710
8
}
711
712
73
bool NumLSZeroBits::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
713
73
    (void)modulo;
714
73
    (void)ds;
715
716
73
    res = ::Botan::low_zero_bits(bn[0].Ref());
717
718
73
    return true;
719
73
}
720
721
520
bool Sqrt::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
722
520
    (void)ds;
723
724
520
    try {
725
520
        const auto res2 = ::Botan::is_perfect_square(bn[0].Ref());
726
520
        if ( res2 == 0 ) {
727
501
            return false;
728
501
        }
729
730
19
        res = res2;
731
19
    } catch ( ::Botan::Invalid_Argument& e ) {
732
        /* is_perfect_square() is expected to throw in this case */
733
8
        if ( bn[0].Ref() < 1 ) {
734
8
            return false;
735
8
        }
736
737
        /* Rethrow */
738
0
        throw e;
739
8
    }
740
741
11
    APPLY_MODULO;
742
743
11
    return true;
744
520
}
745
746
15
bool AddMod::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
747
15
    (void)modulo;
748
15
    (void)ds;
749
750
15
    try {
751
15
        switch ( GET_UINT8_FOR_SWITCH() ) {
752
15
            case    0:
753
15
                res = (bn[0].Ref() + bn[1].Ref()) % bn[2].Ref();
754
15
                break;
755
0
            case    1:
756
0
                {
757
0
                    if ( bn[0].Ref() >= bn[2].Ref() ) {
758
0
                        return false;
759
0
                    }
760
0
                    if ( bn[1].Ref() >= bn[2].Ref() ) {
761
0
                        return false;
762
0
                    }
763
764
0
                    ::Botan::secure_vector<::Botan::word> ws;
765
0
                    try {
766
0
                        res = bn[0].Ref().mod_add(bn[1].Ref(), bn[2].Ref(), ws);
767
0
                    } catch ( ::Botan::Invalid_Argument& e ) {
768
                        /* mod_add is expected to throw an exception when any argument is negative */
769
0
                        if ( bn[0].Ref() < 0 || bn[1].Ref() < 0 || bn[2].Ref() < 0) {
770
0
                            return false;
771
0
                        }
772
773
                        /* Rethrow */
774
0
                        throw e;
775
0
                    }
776
0
                }
777
0
                break;
778
0
            default:
779
0
                return false;
780
15
        }
781
15
    } catch ( fuzzing::datasource::Datasource::OutOfData ) {
782
0
        return false;
783
3
    } catch ( ::Botan::Invalid_Argument& e ) {
784
        /* Botan is expected to throw an exception when modulo is <= 0 */
785
3
        if ( bn[2].Ref() <= 0 ) {
786
3
            return false;
787
3
        }
788
789
        /* Rethrow */
790
0
        throw e;
791
3
    }
792
793
12
    return true;
794
15
}
795
796
20
bool SubMod::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
797
20
    (void)modulo;
798
20
    (void)ds;
799
800
20
    try {
801
20
        switch ( GET_UINT8_FOR_SWITCH() ) {
802
20
            case    0:
803
20
                res = (bn[0].Ref() - bn[1].Ref()) % bn[2].Ref();
804
20
                break;
805
0
            case    1:
806
0
                {
807
0
                    if ( bn[0].Ref() >= bn[2].Ref() ) {
808
0
                        return false;
809
0
                    }
810
0
                    if ( bn[1].Ref() >= bn[2].Ref() ) {
811
0
                        return false;
812
0
                    }
813
814
0
                    ::Botan::secure_vector<::Botan::word> ws;
815
0
                    try {
816
0
                        res = bn[0].Ref().mod_sub(bn[1].Ref(), bn[2].Ref(), ws);
817
0
                    } catch ( ::Botan::Invalid_Argument& e ) {
818
                        /* mod_sub is expected to throw an exception when any argument is negative */
819
0
                        if ( bn[0].Ref() < 0 || bn[1].Ref() < 0 || bn[2].Ref() < 0) {
820
0
                            return false;
821
0
                        }
822
823
                        /* Rethrow */
824
0
                        throw e;
825
0
                    }
826
0
                }
827
0
                break;
828
0
            default:
829
0
                return false;
830
20
        }
831
20
    } catch ( fuzzing::datasource::Datasource::OutOfData ) {
832
0
        return false;
833
4
    } catch ( ::Botan::Invalid_Argument& e ) {
834
        /* Botan is expected to throw an exception when modulo is <= 0 */
835
4
        if ( bn[2].Ref() <= 0 ) {
836
4
            return false;
837
4
        }
838
839
        /* Rethrow */
840
0
        throw e;
841
4
    }
842
843
16
    return true;
844
20
}
845
846
24
bool NumBits::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
847
24
    (void)ds;
848
849
24
    if ( modulo ) {
850
0
        res = (bn[0].Ref() % modulo->ConstRef()).bits();
851
24
    } else {
852
24
        res = bn[0].Ref().bits();
853
24
    }
854
855
24
    return true;
856
24
}
857
858
10
bool Set::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
859
10
    (void)modulo;
860
10
    (void)ds;
861
862
10
    res = bn[0].Ref();
863
864
10
    APPLY_MODULO;
865
866
10
    return true;
867
10
}
868
869
28
bool CondSet::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
870
28
    (void)modulo;
871
28
    (void)ds;
872
873
28
    res.Ref().ct_cond_assign(bn[1].Ref() != 0, bn[0].Ref());
874
875
28
    return true;
876
28
}
877
878
0
bool Ressol::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
879
0
    (void)ds;
880
881
0
    try {
882
0
        auto mod = modulo == std::nullopt ? bn[1] : *modulo;
883
884
0
        const auto r = ::Botan::sqrt_modulo_prime(bn[0].Ref(), mod.Ref());
885
886
0
        if ( r < 1 ) {
887
0
            if ( modulo != std::nullopt ) {
888
0
                res = 0;
889
0
                return true;
890
0
            } else {
891
0
                return false;
892
0
            }
893
0
        }
894
895
0
        if ( modulo != std::nullopt ) {
896
0
            res = ::Botan::square(r) % mod.Ref();
897
0
        }
898
899
0
        return true;
900
0
    } catch ( ::Botan::Invalid_Argument& e ) {
901
        /* Expected to throw if called with non-prime argument */
902
903
0
        return false;
904
0
    }
905
0
}
906
907
8
bool Not::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
908
8
    (void)ds;
909
910
8
    Bignum max;
911
912
8
    if ( modulo ) {
913
0
        max = *modulo;
914
8
    } else {
915
8
        const size_t numBits = bn[0].Ref().bits();
916
917
8
        if ( numBits == 0 ) {
918
1
            return false;
919
1
        }
920
921
7
        max = (::Botan::BigInt(1) << numBits) - 1;
922
7
    }
923
924
7
    res = max.Ref() - bn[0].Ref();
925
926
7
    APPLY_MODULO;
927
928
7
    return true;
929
8
}
930
931
319
bool Prime::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
932
319
    (void)ds;
933
319
    (void)bn;
934
319
    (void)modulo;
935
936
319
    ::Botan::System_RNG rng;
937
319
    res = Botan::random_prime(rng, (rand() % 512) + 2);
938
939
319
    return true;
940
319
}
941
942
40
bool RandRange::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
943
40
    (void)ds;
944
40
    (void)modulo;
945
946
40
    try {
947
40
        ::Botan::System_RNG rng;
948
40
        res = ::Botan::BigInt::random_integer(rng, bn[0].Ref(), bn[1].Ref());
949
40
    } catch ( ::Botan::Invalid_Argument ) {
950
13
        return false;
951
13
    }
952
953
27
    return true;
954
40
}
955
956
14
bool IsSquare::Run(Datasource& ds, Bignum& res, std::vector<Bignum>& bn, const std::optional<Bignum>& modulo) const {
957
14
    (void)ds;
958
959
14
    if ( modulo != std::nullopt ) {
960
0
        return false;
961
0
    }
962
963
14
    try {
964
14
        res = ::Botan::is_perfect_square(bn[0].Ref()) == 0 ? 0 : 1;
965
14
    } catch ( ::Botan::Invalid_Argument& e ) {
966
        /* is_perfect_square() is expected to throw in this case */
967
1
        if ( bn[0].Ref() < 1 ) {
968
1
            return false;
969
1
        }
970
971
        /* Rethrow */
972
0
        throw e;
973
1
    }
974
975
13
    return true;
976
14
}
977
978
} /* namespace Botan_bignum */
979
} /* namespace module */
980
} /* namespace cryptofuzz */