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randombit / botan / 13257645065

11 Feb 2025 07:10AM UTC coverage: 91.65% (-0.009%) from 91.659%
13257645065

Pull #4647

github

web-flow
Merge b9f3a0603 into f372b5a9e
Pull Request #4647: Avoid using mem_ops.h or assert.h in public headers

94860 of 103502 relevant lines covered (91.65%)

11460675.71 hits per line

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94.93
/src/lib/math/bigint/bigint.cpp
1
/*
2
* BigInt Base
3
* (C) 1999-2011,2012,2014,2019 Jack Lloyd
4
*
5
* Botan is released under the Simplified BSD License (see license.txt)
6
*/
7

8
#include <botan/bigint.h>
9

10
#include <botan/internal/bit_ops.h>
11
#include <botan/internal/ct_utils.h>
12
#include <botan/internal/loadstor.h>
13
#include <botan/internal/mp_core.h>
14
#include <botan/internal/rounding.h>
15

16
namespace Botan {
17

18
BigInt::BigInt(uint64_t n) {
554,708✔
19
   if constexpr(sizeof(word) == 8) {
554,708✔
20
      m_data.set_word_at(0, static_cast<word>(n));
554,708✔
21
   } else {
22
      m_data.set_word_at(1, static_cast<word>(n >> 32));
23
      m_data.set_word_at(0, static_cast<word>(n));
24
   }
25
}
554,708✔
26

27
//static
28
BigInt BigInt::from_u64(uint64_t n) {
134,717✔
29
   return BigInt(n);
134,717✔
30
}
31

32
//static
33
BigInt BigInt::from_word(word n) {
459,259✔
34
   BigInt bn;
459,259✔
35
   bn.set_word_at(0, n);
459,259✔
36
   return bn;
459,259✔
37
}
×
38

39
//static
40
BigInt BigInt::from_s32(int32_t n) {
162✔
41
   if(n >= 0) {
162✔
42
      return BigInt::from_u64(static_cast<uint64_t>(n));
2✔
43
   } else {
44
      return -BigInt::from_u64(static_cast<uint64_t>(-n));
160✔
45
   }
46
}
47

48
//static
49
BigInt BigInt::with_capacity(size_t size) {
17,121,031✔
50
   BigInt bn;
17,121,031✔
51
   bn.grow_to(size);
17,121,031✔
52
   return bn;
17,121,031✔
53
}
×
54

55
/*
56
* Construct a BigInt from a string
57
*/
58
BigInt::BigInt(std::string_view str) {
46,604✔
59
   Base base = Decimal;
46,604✔
60
   size_t markers = 0;
46,604✔
61
   bool negative = false;
46,604✔
62

63
   if(!str.empty() && str[0] == '-') {
46,604✔
64
      markers += 1;
65
      negative = true;
66
   }
67

68
   if(str.length() > markers + 2 && str[markers] == '0' && str[markers + 1] == 'x') {
46,604✔
69
      markers += 2;
70
      base = Hexadecimal;
71
   }
72

73
   *this = decode(cast_char_ptr_to_uint8(str.data()) + markers, str.length() - markers, base);
46,604✔
74

75
   if(negative) {
46,604✔
76
      set_sign(Negative);
890✔
77
   } else {
78
      set_sign(Positive);
46,159✔
79
   }
80
}
46,604✔
81

82
BigInt BigInt::from_string(std::string_view str) {
×
83
   return BigInt(str);
×
84
}
85

86
BigInt BigInt::from_bytes(std::span<const uint8_t> input) {
115,749✔
87
   BigInt r;
115,749✔
88
   r.assign_from_bytes(input);
115,749✔
89
   return r;
115,749✔
90
}
×
91

92
/*
93
* Construct a BigInt from an encoded BigInt
94
*/
95
BigInt::BigInt(const uint8_t input[], size_t length, Base base) {
4✔
96
   *this = decode(input, length, base);
4✔
97
}
4✔
98

99
//static
100
BigInt BigInt::from_bytes_with_max_bits(const uint8_t input[], size_t length, size_t max_bits) {
6,910✔
101
   const size_t input_bits = 8 * length;
6,910✔
102

103
   auto bn = BigInt::from_bytes(std::span{input, length});
6,910✔
104

105
   if(input_bits > max_bits) {
6,910✔
106
      const size_t bits_to_shift = input_bits - max_bits;
3,733✔
107

108
      bn >>= bits_to_shift;
3,733✔
109
   }
110

111
   return bn;
6,910✔
112
}
×
113

114
/*
115
* Construct a BigInt from an encoded BigInt
116
*/
117
BigInt::BigInt(RandomNumberGenerator& rng, size_t bits, bool set_high_bit) {
110,309✔
118
   randomize(rng, bits, set_high_bit);
110,309✔
119
}
110,309✔
120

121
uint8_t BigInt::byte_at(size_t n) const {
319,634✔
122
   return get_byte_var(sizeof(word) - (n % sizeof(word)) - 1, word_at(n / sizeof(word)));
319,634✔
123
}
124

125
int32_t BigInt::cmp_word(word other) const {
3,213,468✔
126
   if(is_negative()) {
3,213,468✔
127
      return -1;  // other is positive ...
128
   }
129

130
   const size_t sw = this->sig_words();
3,182,321✔
131
   if(sw > 1) {
3,182,321✔
132
      return 1;  // must be larger since other is just one word ...
133
   }
134

135
   return bigint_cmp(this->_data(), sw, &other, 1);
2,325,422✔
136
}
137

138
/*
139
* Comparison Function
140
*/
141
int32_t BigInt::cmp(const BigInt& other, bool check_signs) const {
1,400,592✔
142
   if(check_signs) {
1,400,592✔
143
      if(other.is_positive() && this->is_negative()) {
1,400,465✔
144
         return -1;
145
      }
146

147
      if(other.is_negative() && this->is_positive()) {
1,400,407✔
148
         return 1;
149
      }
150

151
      if(other.is_negative() && this->is_negative()) {
1,400,339✔
152
         return (-bigint_cmp(this->_data(), this->size(), other._data(), other.size()));
70✔
153
      }
154
   }
155

156
   return bigint_cmp(this->_data(), this->size(), other._data(), other.size());
1,400,396✔
157
}
158

159
bool BigInt::is_equal(const BigInt& other) const {
544,741✔
160
   if(this->sign() != other.sign()) {
544,741✔
161
      return false;
162
   }
163

164
   return bigint_ct_is_eq(this->_data(), this->sig_words(), other._data(), other.sig_words()).as_bool();
863,907✔
165
}
166

167
bool BigInt::is_less_than(const BigInt& other) const {
2,249,952✔
168
   if(this->is_negative() && other.is_positive()) {
2,249,952✔
169
      return true;
170
   }
171

172
   if(this->is_positive() && other.is_negative()) {
2,249,889✔
173
      return false;
174
   }
175

176
   if(other.is_negative() && this->is_negative()) {
2,249,828✔
177
      return bigint_ct_is_lt(other._data(), other.sig_words(), this->_data(), this->sig_words()).as_bool();
69✔
178
   }
179

180
   return bigint_ct_is_lt(this->_data(), this->sig_words(), other._data(), other.sig_words()).as_bool();
4,265,363✔
181
}
182

183
void BigInt::encode_words(word out[], size_t size) const {
829,832✔
184
   const size_t words = sig_words();
829,832✔
185

186
   if(words > size) {
829,832✔
187
      throw Encoding_Error("BigInt::encode_words value too large to encode");
×
188
   }
189

190
   clear_mem(out, size);
829,832✔
191
   copy_mem(out, _data(), words);
829,832✔
192
}
829,832✔
193

194
void BigInt::Data::set_to_zero() {
4,178,260✔
195
   m_reg.resize(m_reg.capacity());
4,178,260✔
196
   clear_mem(m_reg.data(), m_reg.size());
4,178,260✔
197
   m_sig_words = 0;
4,178,260✔
198
}
4,178,260✔
199

200
void BigInt::Data::mask_bits(size_t n) {
8,689,861✔
201
   if(n == 0) {
8,689,861✔
202
      return set_to_zero();
×
203
   }
204

205
   const size_t top_word = n / WordInfo<word>::bits;
8,689,861✔
206

207
   // if(top_word < sig_words()) ?
208
   if(top_word < size()) {
8,689,861✔
209
      const word mask = (static_cast<word>(1) << (n % WordInfo<word>::bits)) - 1;
8,651,824✔
210
      const size_t len = size() - (top_word + 1);
8,651,824✔
211
      if(len > 0) {
8,651,824✔
212
         clear_mem(&m_reg[top_word + 1], len);
8,544,662✔
213
      }
214
      m_reg[top_word] &= mask;
8,651,824✔
215
      invalidate_sig_words();
8,651,824✔
216
   }
217
}
218

219
size_t BigInt::Data::calc_sig_words() const {
108,209,761✔
220
   const size_t sz = m_reg.size();
108,209,761✔
221
   size_t sig = sz;
108,209,761✔
222

223
   word sub = 1;
108,209,761✔
224

225
   for(size_t i = 0; i != sz; ++i) {
2,057,731,721✔
226
      const word w = m_reg[sz - i - 1];
1,949,521,960✔
227
      sub &= ct_is_zero(w);
1,949,521,960✔
228
      sig -= sub;
1,949,521,960✔
229
   }
230

231
   /*
232
   * This depends on the data so is poisoned, but unpoison it here as
233
   * later conditionals are made on the size.
234
   */
235
   CT::unpoison(sig);
108,209,761✔
236

237
   return sig;
108,209,761✔
238
}
239

240
/*
241
* Return bits {offset...offset+length}
242
*/
243
uint32_t BigInt::get_substring(size_t offset, size_t length) const {
17,457,948✔
244
   if(length == 0 || length > 32) {
17,457,948✔
245
      throw Invalid_Argument("BigInt::get_substring invalid substring length");
×
246
   }
247

248
   const uint32_t mask = 0xFFFFFFFF >> (32 - length);
17,457,948✔
249

250
   const size_t word_offset = offset / WordInfo<word>::bits;
17,457,948✔
251
   const size_t wshift = (offset % WordInfo<word>::bits);
17,457,948✔
252

253
   /*
254
   * The substring is contained within one or at most two words. The
255
   * offset and length are not secret, so we can perform conditional
256
   * operations on those values.
257
   */
258
   const word w0 = word_at(word_offset);
17,457,948✔
259

260
   if(wshift == 0 || (offset + length) / WordInfo<word>::bits == word_offset) {
17,457,948✔
261
      return static_cast<uint32_t>(w0 >> wshift) & mask;
16,581,173✔
262
   } else {
263
      const word w1 = word_at(word_offset + 1);
876,775✔
264
      return static_cast<uint32_t>((w0 >> wshift) | (w1 << (WordInfo<word>::bits - wshift))) & mask;
876,775✔
265
   }
266
}
267

268
/*
269
* Convert this number to a uint32_t, if possible
270
*/
271
uint32_t BigInt::to_u32bit() const {
34,950✔
272
   if(is_negative()) {
34,950✔
273
      throw Encoding_Error("BigInt::to_u32bit: Number is negative");
×
274
   }
275
   if(bits() > 32) {
34,950✔
276
      throw Encoding_Error("BigInt::to_u32bit: Number is too big to convert");
15✔
277
   }
278

279
   uint32_t out = 0;
280
   for(size_t i = 0; i != 4; ++i) {
174,675✔
281
      out = (out << 8) | byte_at(3 - i);
139,740✔
282
   }
283
   return out;
34,935✔
284
}
285

286
/*
287
* Clear bit number n
288
*/
289
void BigInt::clear_bit(size_t n) {
76✔
290
   const size_t which = n / WordInfo<word>::bits;
76✔
291

292
   if(which < size()) {
76✔
293
      const word mask = ~(static_cast<word>(1) << (n % WordInfo<word>::bits));
76✔
294
      m_data.set_word_at(which, word_at(which) & mask);
76✔
295
   }
296
}
76✔
297

298
size_t BigInt::bytes() const {
430,618✔
299
   return round_up(bits(), 8) / 8;
430,618✔
300
}
301

302
size_t BigInt::top_bits_free() const {
2,537,357✔
303
   const size_t words = sig_words();
2,537,357✔
304

305
   const word top_word = word_at(words - 1);
2,537,357✔
306
   const size_t bits_used = high_bit(CT::value_barrier(top_word));
2,537,357✔
307
   CT::unpoison(bits_used);
2,537,357✔
308
   return WordInfo<word>::bits - bits_used;
2,537,357✔
309
}
310

311
size_t BigInt::bits() const {
2,209,211✔
312
   const size_t words = sig_words();
2,209,211✔
313

314
   if(words == 0) {
2,209,211✔
315
      return 0;
316
   }
317

318
   const size_t full_words = (words - 1) * WordInfo<word>::bits;
2,189,470✔
319
   const size_t top_bits = WordInfo<word>::bits - top_bits_free();
2,189,470✔
320

321
   return full_words + top_bits;
2,189,470✔
322
}
323

324
/*
325
* Return the negation of this number
326
*/
327
BigInt BigInt::operator-() const {
7,522✔
328
   BigInt x = (*this);
7,522✔
329
   x.flip_sign();
7,522✔
330
   return x;
7,522✔
331
}
×
332

333
size_t BigInt::reduce_below(const BigInt& p, secure_vector<word>& ws) {
21,593,235✔
334
   if(p.is_negative() || this->is_negative()) {
21,593,235✔
335
      throw Invalid_Argument("BigInt::reduce_below both values must be positive");
×
336
   }
337

338
   const size_t p_words = p.sig_words();
21,593,235✔
339

340
   if(size() < p_words + 1) {
21,593,235✔
341
      grow_to(p_words + 1);
9,303✔
342
   }
343

344
   if(ws.size() < p_words + 1) {
21,593,235✔
345
      ws.resize(p_words + 1);
347,887✔
346
   }
347

348
   clear_mem(ws.data(), ws.size());
21,593,235✔
349

350
   size_t reductions = 0;
21,593,235✔
351

352
   for(;;) {
34,514,951✔
353
      word borrow = bigint_sub3(ws.data(), _data(), p_words + 1, p._data(), p_words);
56,108,186✔
354
      if(borrow) {
56,108,186✔
355
         break;
356
      }
357

358
      ++reductions;
34,514,951✔
359
      swap_reg(ws);
34,514,951✔
360
   }
361

362
   return reductions;
21,593,235✔
363
}
364

365
void BigInt::ct_reduce_below(const BigInt& mod, secure_vector<word>& ws, size_t bound) {
8,643,934✔
366
   if(mod.is_negative() || this->is_negative()) {
8,643,934✔
367
      throw Invalid_Argument("BigInt::ct_reduce_below both values must be positive");
×
368
   }
369

370
   const size_t mod_words = mod.sig_words();
8,643,934✔
371

372
   grow_to(mod_words);
8,643,934✔
373

374
   const size_t sz = size();
8,643,934✔
375

376
   ws.resize(sz);
8,643,934✔
377

378
   clear_mem(ws.data(), sz);
8,643,934✔
379

380
   for(size_t i = 0; i != bound; ++i) {
25,931,802✔
381
      word borrow = bigint_sub3(ws.data(), _data(), sz, mod._data(), mod_words);
17,287,868✔
382

383
      CT::Mask<word>::is_zero(borrow).select_n(mutable_data(), ws.data(), _data(), sz);
34,575,736✔
384
   }
385
}
8,643,934✔
386

387
/*
388
* Return the absolute value of this number
389
*/
390
BigInt BigInt::abs() const {
1,657✔
391
   BigInt x = (*this);
1,657✔
392
   x.set_sign(Positive);
1,657✔
393
   return x;
1,657✔
394
}
395

396
/*
397
* Encode this number into bytes
398
*/
399
void BigInt::serialize_to(std::span<uint8_t> output) const {
296,478✔
400
   BOTAN_ARG_CHECK(this->bytes() <= output.size(), "Insufficient output space");
296,478✔
401

402
   this->binary_encode(output.data(), output.size());
296,254✔
403
}
296,254✔
404

405
/*
406
* Encode this number into bytes
407
*/
408
void BigInt::binary_encode(uint8_t output[], size_t len) const {
296,259✔
409
   const size_t full_words = len / sizeof(word);
296,259✔
410
   const size_t extra_bytes = len % sizeof(word);
296,259✔
411

412
   for(size_t i = 0; i != full_words; ++i) {
2,241,421✔
413
      const word w = word_at(i);
1,945,162✔
414
      store_be(w, output + (len - (i + 1) * sizeof(word)));
1,945,162✔
415
   }
416

417
   if(extra_bytes > 0) {
296,259✔
418
      const word w = word_at(full_words);
159,151✔
419

420
      for(size_t i = 0; i != extra_bytes; ++i) {
775,106✔
421
         output[extra_bytes - i - 1] = get_byte_var(sizeof(word) - i - 1, w);
615,955✔
422
      }
423
   }
424
}
296,259✔
425

426
/*
427
* Set this number to the value in buf
428
*/
429
void BigInt::assign_from_bytes(std::span<const uint8_t> bytes) {
950,615✔
430
   clear();
950,615✔
431

432
   const size_t length = bytes.size();
950,615✔
433
   const size_t full_words = length / sizeof(word);
950,615✔
434
   const size_t extra_bytes = length % sizeof(word);
950,615✔
435

436
   secure_vector<word> reg((round_up(full_words + (extra_bytes > 0 ? 1 : 0), 8)));
1,270,721✔
437

438
   for(size_t i = 0; i != full_words; ++i) {
5,753,859✔
439
      reg[i] = load_be<word>(bytes.last<sizeof(word)>());
4,803,244✔
440
      bytes = bytes.first(bytes.size() - sizeof(word));
4,803,244✔
441
   }
442

443
   if(!bytes.empty()) {
950,615✔
444
      BOTAN_ASSERT_NOMSG(extra_bytes == bytes.size());
630,509✔
445
      std::array<uint8_t, sizeof(word)> last_partial_word = {0};
630,509✔
446
      copy_mem(std::span{last_partial_word}.last(extra_bytes), bytes);
630,509✔
447
      reg[full_words] = load_be<word>(last_partial_word);
630,509✔
448
   }
449

450
   m_data.swap(reg);
950,615✔
451
}
950,615✔
452

453
void BigInt::ct_cond_add(bool predicate, const BigInt& value) {
3,044,752✔
454
   if(this->is_negative() || value.is_negative()) {
3,044,752✔
455
      throw Invalid_Argument("BigInt::ct_cond_add requires both values to be positive");
×
456
   }
457
   this->grow_to(1 + value.sig_words());
3,044,752✔
458

459
   bigint_cnd_add(static_cast<word>(predicate), this->mutable_data(), this->size(), value._data(), value.sig_words());
3,044,752✔
460
}
3,044,752✔
461

462
void BigInt::ct_shift_left(size_t shift) {
30,720✔
463
   auto shl_bit = [](const BigInt& a, BigInt& result) {
3,833,856✔
464
      BOTAN_DEBUG_ASSERT(a.size() + 1 == result.size());
3,803,136✔
465
      bigint_shl2(result.mutable_data(), a._data(), a.size(), 1);
3,803,136✔
466
      // shl2 may have shifted a bit into the next word, which must be dropped
467
      clear_mem(result.mutable_data() + result.size() - 1, 1);
3,803,136✔
468
   };
3,803,136✔
469

470
   auto shl_word = [](const BigInt& a, BigInt& result) {
3,833,856✔
471
      // the most significant word is not copied, aka. shifted out
472
      bigint_shl2(result.mutable_data(), a._data(), a.size() - 1 /* ignore msw */, WordInfo<word>::bits);
3,803,136✔
473
      // we left-shifted by a full word, the least significant word must be zero'ed
474
      clear_mem(result.mutable_data(), 1);
3,803,136✔
475
   };
3,803,136✔
476

477
   BOTAN_ASSERT_NOMSG(size() > 0);
30,720✔
478

479
   constexpr size_t bits_in_word = sizeof(word) * 8;
30,720✔
480
   const size_t word_shift = shift >> ceil_log2(bits_in_word);             // shift / bits_in_word
30,720✔
481
   const size_t bit_shift = shift & ((1 << ceil_log2(bits_in_word)) - 1);  // shift % bits_in_word
30,720✔
482
   const size_t iterations = std::max(size(), bits_in_word) - 1;           // uint64_t i; i << 64 is undefined behaviour
30,720✔
483

484
   // In every iteration, shift one bit and one word to the left and use the
485
   // shift results only when they are within the shift range.
486
   BigInt tmp;
30,720✔
487
   tmp.resize(size() + 1 /* to hold the shifted-out word */);
30,720✔
488
   for(size_t i = 0; i < iterations; ++i) {
3,833,856✔
489
      shl_bit(*this, tmp);
3,803,136✔
490
      ct_cond_assign(i < bit_shift, tmp);
3,803,136✔
491
      shl_word(*this, tmp);
3,803,136✔
492
      ct_cond_assign(i < word_shift, tmp);
3,803,136✔
493
   }
494
}
30,720✔
495

496
void BigInt::ct_cond_swap(bool predicate, BigInt& other) {
13,972,788✔
497
   const size_t max_words = std::max(size(), other.size());
13,972,788✔
498
   grow_to(max_words);
13,972,788✔
499
   other.grow_to(max_words);
13,972,788✔
500

501
   bigint_cnd_swap(static_cast<word>(predicate), this->mutable_data(), other.mutable_data(), max_words);
13,972,788✔
502
}
13,972,788✔
503

504
void BigInt::cond_flip_sign(bool predicate) {
53,436,112✔
505
   // This code is assuming Negative == 0, Positive == 1
506

507
   const auto mask = CT::Mask<uint8_t>::expand(predicate);
53,436,112✔
508

509
   const uint8_t current_sign = static_cast<uint8_t>(sign());
53,436,112✔
510

511
   const uint8_t new_sign = mask.select(current_sign ^ 1, current_sign);
53,436,112✔
512

513
   set_sign(static_cast<Sign>(new_sign));
53,436,112✔
514
}
53,436,112✔
515

516
void BigInt::ct_cond_assign(bool predicate, const BigInt& other) {
32,516,589✔
517
   const size_t t_words = size();
32,516,589✔
518
   const size_t o_words = other.size();
32,516,589✔
519

520
   if(o_words < t_words) {
32,516,589✔
521
      grow_to(o_words);
57,188✔
522
   }
523

524
   const size_t r_words = std::max(t_words, o_words);
32,516,589✔
525

526
   const auto mask = CT::Mask<word>::expand(predicate);
32,516,589✔
527

528
   for(size_t i = 0; i != r_words; ++i) {
2,147,483,647✔
529
      const word o_word = other.word_at(i);
2,147,483,647✔
530
      const word t_word = this->word_at(i);
2,147,483,647✔
531
      this->set_word_at(i, mask.select(o_word, t_word));
2,147,483,647✔
532
   }
533

534
   const auto same_sign = CT::Mask<word>::is_equal(sign(), other.sign()).as_choice();
32,516,589✔
535
   cond_flip_sign((mask.as_choice() && !same_sign).as_bool());
32,516,589✔
536
}
32,516,589✔
537

538
void BigInt::_const_time_poison() const {
3,060,336✔
539
   CT::poison(m_data.const_data(), m_data.size());
3,060,336✔
540
}
3,060,336✔
541

542
void BigInt::_const_time_unpoison() const {
46,645,792✔
543
   CT::unpoison(m_data.const_data(), m_data.size());
46,645,792✔
544
}
46,645,792✔
545

546
}  // namespace Botan
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