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randombit / botan / 12974071678

26 Jan 2025 11:09AM UTC coverage: 91.258% (+0.005%) from 91.253%
12974071678

Pull #4598

github

web-flow
Merge 11606640d into 6477d8711
Pull Request #4598: Cleanup EC_Group and DL_Group construction

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87.85
/src/lib/pubkey/ec_group/ec_group.cpp
1
/*
2
* ECC Domain Parameters
3
*
4
* (C) 2007 Falko Strenzke, FlexSecure GmbH
5
* (C) 2008,2018,2024 Jack Lloyd
6
* (C) 2018 Tobias Niemann
7
*
8
* Botan is released under the Simplified BSD License (see license.txt)
9
*/
10

11
#include <botan/ec_group.h>
12

13
#include <botan/ber_dec.h>
14
#include <botan/der_enc.h>
15
#include <botan/mutex.h>
16
#include <botan/numthry.h>
17
#include <botan/pem.h>
18
#include <botan/reducer.h>
19
#include <botan/rng.h>
20
#include <botan/internal/ec_inner_data.h>
21
#include <botan/internal/fmt.h>
22
#include <botan/internal/primality.h>
23
#include <vector>
24

25
namespace Botan {
26

27
class EC_Group_Data_Map final {
28
   public:
29
      EC_Group_Data_Map() = default;
30

31
      size_t clear() {
1,770✔
32
         lock_guard_type<mutex_type> lock(m_mutex);
1,770✔
33
         size_t count = m_registered_curves.size();
1,770✔
34
         m_registered_curves.clear();
1,770✔
35
         return count;
1,770✔
36
      }
1,770✔
37

38
      std::shared_ptr<EC_Group_Data> lookup(const OID& oid) {
21,748✔
39
         lock_guard_type<mutex_type> lock(m_mutex);
21,748✔
40

41
         for(auto i : m_registered_curves) {
160,438✔
42
            if(i->oid() == oid) {
159,247✔
43
               return i;
20,557✔
44
            }
45
         }
159,247✔
46

47
         // Not found, check hardcoded data
48
         std::shared_ptr<EC_Group_Data> data = EC_Group::EC_group_info(oid);
1,191✔
49

50
         if(data) {
1,191✔
51
            for(auto curve : m_registered_curves) {
2,270✔
52
               if(curve->oid().empty() == true && curve->params_match(*data)) {
1,132✔
53
                  curve->set_oid(oid);
×
54
                  return curve;
×
55
               }
56
            }
1,132✔
57

58
            m_registered_curves.push_back(data);
1,138✔
59
            return data;
1,138✔
60
         }
61

62
         // Nope, unknown curve
63
         return std::shared_ptr<EC_Group_Data>();
53✔
64
      }
22,939✔
65

66
      std::shared_ptr<EC_Group_Data> lookup_or_create(const BigInt& p,
96✔
67
                                                      const BigInt& a,
68
                                                      const BigInt& b,
69
                                                      const BigInt& g_x,
70
                                                      const BigInt& g_y,
71
                                                      const BigInt& order,
72
                                                      const BigInt& cofactor,
73
                                                      const OID& oid,
74
                                                      EC_Group_Source source) {
75
         lock_guard_type<mutex_type> lock(m_mutex);
96✔
76

77
         for(auto i : m_registered_curves) {
1,596✔
78
            /*
79
            * The params may be the same but you are trying to register under a
80
            * different OID than the one we are using, so using a different
81
            * group, since EC_Group's model assumes a single OID per group.
82
            */
83
            if(!oid.empty() && !i->oid().empty() && i->oid() != oid) {
1,578✔
84
               continue;
694✔
85
            }
86

87
            const bool same_oid = !oid.empty() && i->oid() == oid;
884✔
88
            const bool same_params = i->params_match(p, a, b, g_x, g_y, order, cofactor);
884✔
89

90
            /*
91
            * If the params and OID are the same then we are done, just return
92
            * the already registered curve obj.
93
            */
94
            if(same_params && same_oid) {
884✔
95
               return i;
33✔
96
            }
97

98
            /*
99
            * If same params and the new OID is empty, then that's ok too
100
            */
101
            if(same_params && oid.empty()) {
851✔
102
               return i;
45✔
103
            }
104

105
            /*
106
            * Check for someone trying to reuse an already in-use OID
107
            */
108
            if(same_oid && !same_params) {
806✔
109
               throw Invalid_Argument("Attempting to register a curve using OID " + oid.to_string() +
×
110
                                      " but a distinct curve is already registered using that OID");
×
111
            }
112

113
            /*
114
            * If the same curve was previously created without an OID but is now
115
            * being registered again using an OID, save that OID.
116
            */
117
            if(same_params && i->oid().empty() && !oid.empty()) {
806✔
118
               i->set_oid(oid);
×
119
               return i;
×
120
            }
121
         }
1,578✔
122

123
         /*
124
         Not found in current list, so we need to create a new entry
125

126
         If an OID is set, try to look up relative our static tables to detect a duplicate
127
         registration under an OID
128
         */
129

130
         auto new_group = EC_Group_Data::create(p, a, b, g_x, g_y, order, cofactor, oid, source);
18✔
131

132
         if(oid.has_value()) {
18✔
133
            std::shared_ptr<EC_Group_Data> data = EC_Group::EC_group_info(oid);
7✔
134
            if(data != nullptr && !new_group->params_match(*data)) {
7✔
135
               throw Invalid_Argument("Attempting to register an EC group under OID of hardcoded group");
×
136
            }
137
         } else {
7✔
138
            // Here try to use the order as a hint to look up the group id, to identify common groups
139
            const OID oid_from_store = EC_Group::EC_group_identity_from_order(order);
11✔
140
            if(oid_from_store.has_value()) {
11✔
141
               std::shared_ptr<EC_Group_Data> data = EC_Group::EC_group_info(oid_from_store);
8✔
142

143
               /*
144
               If EC_group_identity_from_order returned an OID then looking up that OID
145
               must always return a result.
146
               */
147
               BOTAN_ASSERT_NOMSG(data != nullptr);
8✔
148

149
               /*
150
               It is possible (if unlikely) that someone is registering another group
151
               that happens to have an order equal to that of a well known group -
152
               so verify all values before assigning the OID.
153
               */
154
               if(new_group->params_match(*data)) {
8✔
155
                  new_group->set_oid(oid_from_store);
6✔
156
               }
157
            }
8✔
158
         }
11✔
159

160
         m_registered_curves.push_back(new_group);
18✔
161
         return new_group;
18✔
162
      }
114✔
163

164
   private:
165
      mutex_type m_mutex;
166
      std::vector<std::shared_ptr<EC_Group_Data>> m_registered_curves;
167
};
168

169
//static
170
EC_Group_Data_Map& EC_Group::ec_group_data() {
23,614✔
171
   /*
172
   * This exists purely to ensure the allocator is constructed before g_ec_data,
173
   * which ensures that its destructor runs after ~g_ec_data is complete.
174
   */
175

176
   static Allocator_Initializer g_init_allocator;
23,614✔
177
   static EC_Group_Data_Map g_ec_data;
23,614✔
178
   return g_ec_data;
23,614✔
179
}
180

181
//static
182
size_t EC_Group::clear_registered_curve_data() {
1,770✔
183
   return ec_group_data().clear();
1,770✔
184
}
185

186
//static
187
std::shared_ptr<EC_Group_Data> EC_Group::load_EC_group_info(const char* p_str,
1,146✔
188
                                                            const char* a_str,
189
                                                            const char* b_str,
190
                                                            const char* g_x_str,
191
                                                            const char* g_y_str,
192
                                                            const char* order_str,
193
                                                            const OID& oid) {
194
   const BigInt p(p_str);
1,146✔
195
   const BigInt a(a_str);
1,146✔
196
   const BigInt b(b_str);
1,146✔
197
   const BigInt g_x(g_x_str);
1,146✔
198
   const BigInt g_y(g_y_str);
1,146✔
199
   const BigInt order(order_str);
1,146✔
200
   const BigInt cofactor(1);  // implicit
1,146✔
201

202
   return EC_Group_Data::create(p, a, b, g_x, g_y, order, cofactor, oid, EC_Group_Source::Builtin);
1,146✔
203
}
8,022✔
204

205
//static
206
std::pair<std::shared_ptr<EC_Group_Data>, bool> EC_Group::BER_decode_EC_group(std::span<const uint8_t> bits,
6,388✔
207
                                                                              EC_Group_Source source) {
208
   BER_Decoder ber(bits);
6,388✔
209

210
   auto next_obj_type = ber.peek_next_object().type_tag();
6,388✔
211

212
   if(next_obj_type == ASN1_Type::ObjectId) {
6,380✔
213
      OID oid;
6,048✔
214
      ber.decode(oid);
6,048✔
215

216
      auto data = ec_group_data().lookup(oid);
6,006✔
217
      if(!data) {
6,006✔
218
         throw Decoding_Error(fmt("Unknown namedCurve OID '{}'", oid.to_string()));
106✔
219
      }
220

221
      return std::make_pair(data, false);
5,953✔
222
   } else if(next_obj_type == ASN1_Type::Sequence) {
6,433✔
223
      BigInt p, a, b, order, cofactor;
329✔
224
      std::vector<uint8_t> base_pt;
329✔
225
      std::vector<uint8_t> seed;
329✔
226

227
      ber.start_sequence()
329✔
228
         .decode_and_check<size_t>(1, "Unknown ECC param version code")
635✔
229
         .start_sequence()
307✔
230
         .decode_and_check(OID("1.2.840.10045.1.1"), "Only prime ECC fields supported")
614✔
231
         .decode(p)
306✔
232
         .end_cons()
306✔
233
         .start_sequence()
580✔
234
         .decode_octet_string_bigint(a)
306✔
235
         .decode_octet_string_bigint(b)
305✔
236
         .decode_optional_string(seed, ASN1_Type::BitString, ASN1_Type::BitString)
303✔
237
         .end_cons()
303✔
238
         .decode(base_pt, ASN1_Type::OctetString)
300✔
239
         .decode(order)
293✔
240
         .decode(cofactor)
292✔
241
         .end_cons()
292✔
242
         .verify_end();
291✔
243

244
      if(p.bits() < 112 || p.bits() > 521) {
291✔
245
         throw Decoding_Error("ECC p parameter is invalid size");
132✔
246
      }
247

248
      Modular_Reducer mod_p(p);
159✔
249
      if(p.is_negative() || !is_bailie_psw_probable_prime(p, mod_p)) {
157✔
250
         throw Decoding_Error("ECC p parameter is not a prime");
32✔
251
      }
252

253
      if(a.is_negative() || a >= p) {
250✔
254
         throw Decoding_Error("Invalid ECC a parameter");
9✔
255
      }
256

257
      if(b <= 0 || b >= p) {
232✔
258
         throw Decoding_Error("Invalid ECC b parameter");
55✔
259
      }
260

261
      if(order <= 0 || order >= 2 * p || !is_bailie_psw_probable_prime(order)) {
179✔
262
         throw Decoding_Error("Invalid ECC order parameter");
2✔
263
      }
264

265
      if(cofactor <= 0 || cofactor >= 16) {
116✔
266
         throw Decoding_Error("Invalid ECC cofactor parameter");
3✔
267
      }
268

269
      const size_t p_bytes = p.bytes();
56✔
270
      if(base_pt.size() != 1 + p_bytes && base_pt.size() != 1 + 2 * p_bytes) {
56✔
271
         throw Decoding_Error("Invalid ECC base point encoding");
×
272
      }
273

274
      auto [g_x, g_y] = [&]() {
55✔
275
         const uint8_t hdr = base_pt[0];
56✔
276

277
         if(hdr == 0x04 && base_pt.size() == 1 + 2 * p_bytes) {
56✔
278
            BigInt x = BigInt::decode(&base_pt[1], p_bytes);
55✔
279
            BigInt y = BigInt::decode(&base_pt[p_bytes + 1], p_bytes);
55✔
280

281
            if(x < p && y < p) {
55✔
282
               return std::make_pair(x, y);
55✔
283
            }
284
         } else if((hdr == 0x02 || hdr == 0x03) && base_pt.size() == 1 + p_bytes) {
111✔
285
            BigInt x = BigInt::decode(&base_pt[1], p_bytes);
×
286
            BigInt y = sqrt_modulo_prime(((x * x + a) * x + b) % p, p);
×
287

288
            if(x < p && y >= 0) {
×
289
               const bool y_mod_2 = (hdr & 0x01) == 1;
×
290
               if(y.get_bit(0) != y_mod_2) {
×
291
                  y = p - y;
×
292
               }
293

294
               return std::make_pair(x, y);
×
295
            }
296
         }
×
297

298
         throw Decoding_Error("Invalid ECC base point encoding");
1✔
299
      }();
56✔
300

301
      auto y2 = mod_p.square(g_y);
55✔
302
      auto x3_ax_b = mod_p.reduce(mod_p.cube(g_x) + mod_p.multiply(a, g_x) + b);
220✔
303
      if(y2 != x3_ax_b) {
55✔
304
         throw Decoding_Error("Invalid ECC base point");
×
305
      }
306

307
      auto data = ec_group_data().lookup_or_create(p, a, b, g_x, g_y, order, cofactor, OID(), source);
55✔
308
      return std::make_pair(data, true);
55✔
309
   } else if(next_obj_type == ASN1_Type::Null) {
2,518✔
310
      throw Decoding_Error("Decoding ImplicitCA ECC parameters is not supported");
1✔
311
   } else {
312
      throw Decoding_Error(
2✔
313
         fmt("Unexpected tag {} while decoding ECC domain params", asn1_tag_to_string(next_obj_type)));
4✔
314
   }
315
}
6,388✔
316

317
EC_Group::EC_Group() = default;
×
318

319
EC_Group::~EC_Group() = default;
133,086✔
320

321
EC_Group::EC_Group(const EC_Group&) = default;
48,363✔
322

323
EC_Group& EC_Group::operator=(const EC_Group&) = default;
×
324

325
// Internal constructor
326
EC_Group::EC_Group(std::shared_ptr<EC_Group_Data>&& data) : m_data(std::move(data)) {}
15,686✔
327

328
//static
329
EC_Group EC_Group::from_OID(const OID& oid) {
71✔
330
   auto data = ec_group_data().lookup(oid);
71✔
331

332
   if(!data) {
71✔
333
      throw Invalid_Argument(fmt("No EC_Group associated with OID '{}'", oid.to_string()));
×
334
   }
335

336
   return EC_Group(std::move(data));
71✔
337
}
71✔
338

339
//static
340
EC_Group EC_Group::from_name(std::string_view name) {
15,615✔
341
   std::shared_ptr<EC_Group_Data> data;
15,615✔
342

343
   if(auto oid = OID::from_name(name)) {
15,615✔
344
      data = ec_group_data().lookup(oid.value());
31,230✔
345
   }
×
346

347
   if(!data) {
15,615✔
348
      throw Invalid_Argument(fmt("Unknown EC_Group '{}'", name));
×
349
   }
350

351
   return EC_Group(std::move(data));
15,615✔
352
}
15,615✔
353

354
EC_Group::EC_Group(std::string_view str) {
61✔
355
   if(str.empty()) {
61✔
356
      return;  // no initialization / uninitialized
357
   }
358

359
   try {
61✔
360
      const OID oid = OID::from_string(str);
61✔
361
      if(oid.has_value()) {
56✔
362
         m_data = ec_group_data().lookup(oid);
56✔
363
      }
364
   } catch(...) {}
61✔
365

366
   if(m_data == nullptr) {
61✔
367
      if(str.size() > 30 && str.substr(0, 29) == "-----BEGIN EC PARAMETERS-----") {
5✔
368
         // OK try it as PEM ...
369
         const auto ber = PEM_Code::decode_check_label(str, "EC PARAMETERS");
5✔
370

371
         auto data = BER_decode_EC_group(ber, EC_Group_Source::ExternalSource);
5✔
372
         this->m_data = data.first;
5✔
373
         this->m_explicit_encoding = data.second;
5✔
374
      }
10✔
375
   }
376

377
   if(m_data == nullptr) {
61✔
378
      throw Invalid_Argument(fmt("Unknown ECC group '{}'", str));
×
379
   }
380
}
×
381

382
//static
383
EC_Group EC_Group::from_PEM(std::string_view pem) {
1✔
384
   const auto ber = PEM_Code::decode_check_label(pem, "EC PARAMETERS");
1✔
385
   return EC_Group(ber);
1✔
386
}
1✔
387

388
EC_Group::EC_Group(const BigInt& p,
3✔
389
                   const BigInt& a,
390
                   const BigInt& b,
391
                   const BigInt& base_x,
392
                   const BigInt& base_y,
393
                   const BigInt& order,
394
                   const BigInt& cofactor,
395
                   const OID& oid) {
3✔
396
   m_data =
3✔
397
      ec_group_data().lookup_or_create(p, a, b, base_x, base_y, order, cofactor, oid, EC_Group_Source::ExternalSource);
3✔
398
}
3✔
399

400
EC_Group::EC_Group(const OID& oid,
47✔
401
                   const BigInt& p,
402
                   const BigInt& a,
403
                   const BigInt& b,
404
                   const BigInt& base_x,
405
                   const BigInt& base_y,
406
                   const BigInt& order) {
47✔
407
   BOTAN_ARG_CHECK(oid.has_value(), "An OID is required for creating an EC_Group");
47✔
408

409
   // TODO(Botan4) remove this and require 192 bits minimum
410
#if defined(BOTAN_DISABLE_DEPRECATED_FEATURES)
411
   constexpr size_t p_bits_lower_bound = 192;
412
#else
413
   constexpr size_t p_bits_lower_bound = 128;
47✔
414
#endif
415

416
   BOTAN_ARG_CHECK(p.bits() >= p_bits_lower_bound, "EC_Group p too small");
47✔
417
   BOTAN_ARG_CHECK(p.bits() <= 521, "EC_Group p too large");
47✔
418

419
   if(p.bits() == 521) {
47✔
420
      const auto p521 = BigInt::power_of_2(521) - 1;
2✔
421
      BOTAN_ARG_CHECK(p == p521, "EC_Group with p of 521 bits must be 2**521-1");
1✔
422
   } else if(p.bits() == 239) {
47✔
423
      const auto x962_p239 = []() {
18✔
424
         BigInt p239;
3✔
425
         for(size_t i = 0; i != 239; ++i) {
720✔
426
            if(i < 47 || ((i >= 94) && (i != 143))) {
717✔
427
               p239.set_bit(i);
717✔
428
            }
429
         }
430
         return p239;
3✔
431
      }();
3✔
432

433
      BOTAN_ARG_CHECK(p == x962_p239, "EC_Group with p of 239 bits must be the X9.62 prime");
3✔
434
   } else {
3✔
435
      BOTAN_ARG_CHECK(p.bits() % 32 == 0, "EC_Group p must be a multiple of 32 bits");
43✔
436
   }
437

438
   BOTAN_ARG_CHECK(p % 4 == 3, "EC_Group p must be congruent to 3 modulo 4");
44✔
439

440
   BOTAN_ARG_CHECK(a >= 0 && a < p, "EC_Group a is invalid");
84✔
441
   BOTAN_ARG_CHECK(b > 0 && b < p, "EC_Group b is invalid");
84✔
442
   BOTAN_ARG_CHECK(base_x >= 0 && base_x < p, "EC_Group base_x is invalid");
84✔
443
   BOTAN_ARG_CHECK(base_y >= 0 && base_y < p, "EC_Group base_y is invalid");
84✔
444
   BOTAN_ARG_CHECK(p.bits() == order.bits(), "EC_Group p and order must have the same number of bits");
42✔
445

446
   Modular_Reducer mod_p(p);
39✔
447
   BOTAN_ARG_CHECK(is_bailie_psw_probable_prime(p, mod_p), "EC_Group p is not prime");
39✔
448
   BOTAN_ARG_CHECK(is_bailie_psw_probable_prime(order), "EC_Group order is not prime");
39✔
449

450
   // This catches someone "ignoring" a cofactor and just trying to
451
   // provide the subgroup order
452
   BOTAN_ARG_CHECK((p - order).abs().bits() <= (p.bits() / 2) + 1, "Hasse bound invalid");
117✔
453

454
   // Check that 4*a^3 + 27*b^2 != 0
455
   const auto discriminant = mod_p.reduce(mod_p.multiply(4, mod_p.cube(a)) + mod_p.multiply(27, mod_p.square(b)));
273✔
456
   BOTAN_ARG_CHECK(discriminant != 0, "EC_Group discriminant is invalid");
39✔
457

458
   // Check that the generator (base_x,base_y) is on the curve; y^2 = x^3 + a*x + b
459
   auto y2 = mod_p.square(base_y);
39✔
460
   auto x3_ax_b = mod_p.reduce(mod_p.cube(base_x) + mod_p.multiply(a, base_x) + b);
157✔
461
   BOTAN_ARG_CHECK(y2 == x3_ax_b, "EC_Group generator is not on the curve");
39✔
462

463
   BigInt cofactor(1);
38✔
464

465
   m_data =
38✔
466
      ec_group_data().lookup_or_create(p, a, b, base_x, base_y, order, cofactor, oid, EC_Group_Source::ExternalSource);
38✔
467
}
164✔
468

469
EC_Group::EC_Group(std::span<const uint8_t> ber) {
6,383✔
470
   auto data = BER_decode_EC_group(ber, EC_Group_Source::ExternalSource);
6,383✔
471
   m_data = data.first;
6,003✔
472
   m_explicit_encoding = data.second;
6,003✔
473
}
6,383✔
474

475
const EC_Group_Data& EC_Group::data() const {
119,836✔
476
   if(m_data == nullptr) {
119,836✔
477
      throw Invalid_State("EC_Group uninitialized");
×
478
   }
479
   return *m_data;
119,836✔
480
}
481

482
size_t EC_Group::get_p_bits() const {
1,284✔
483
   return data().p_bits();
1,284✔
484
}
485

486
size_t EC_Group::get_p_bytes() const {
13,604✔
487
   return data().p_bytes();
13,604✔
488
}
489

490
size_t EC_Group::get_order_bits() const {
1,147✔
491
   return data().order_bits();
1,147✔
492
}
493

494
size_t EC_Group::get_order_bytes() const {
27,836✔
495
   return data().order_bytes();
27,836✔
496
}
497

498
const BigInt& EC_Group::get_p() const {
26,557✔
499
   return data().p();
26,557✔
500
}
501

502
const BigInt& EC_Group::get_a() const {
458✔
503
   return data().a();
458✔
504
}
505

506
const BigInt& EC_Group::get_b() const {
346✔
507
   return data().b();
346✔
508
}
509

510
#if defined(BOTAN_HAS_LEGACY_EC_POINT)
511
const EC_Point& EC_Group::get_base_point() const {
677✔
512
   return data().base_point();
677✔
513
}
514

515
const EC_Point& EC_Group::generator() const {
×
516
   return data().base_point();
×
517
}
518

519
bool EC_Group::verify_public_element(const EC_Point& point) const {
×
520
   //check that public point is not at infinity
521
   if(point.is_zero()) {
×
522
      return false;
523
   }
524

525
   //check that public point is on the curve
526
   if(point.on_the_curve() == false) {
×
527
      return false;
528
   }
529

530
   //check that public point has order q
531
   if((point * get_order()).is_zero() == false) {
×
532
      return false;
533
   }
534

535
   if(has_cofactor()) {
×
536
      if((point * get_cofactor()).is_zero()) {
×
537
         return false;
538
      }
539
   }
540

541
   return true;
542
}
543

544
#endif
545

546
const BigInt& EC_Group::get_order() const {
7,903✔
547
   return data().order();
7,903✔
548
}
549

550
const BigInt& EC_Group::get_g_x() const {
979✔
551
   return data().g_x();
979✔
552
}
553

554
const BigInt& EC_Group::get_g_y() const {
979✔
555
   return data().g_y();
979✔
556
}
557

558
const BigInt& EC_Group::get_cofactor() const {
208✔
559
   return data().cofactor();
208✔
560
}
561

562
bool EC_Group::has_cofactor() const {
11,808✔
563
   return data().has_cofactor();
11,808✔
564
}
565

566
const OID& EC_Group::get_curve_oid() const {
24,595✔
567
   return data().oid();
24,595✔
568
}
569

570
EC_Group_Source EC_Group::source() const {
134✔
571
   return data().source();
134✔
572
}
573

574
std::vector<uint8_t> EC_Group::DER_encode() const {
1,321✔
575
   const auto& der_named_curve = data().der_named_curve();
1,321✔
576
   // TODO(Botan4) this can be removed because an OID will always be defined
577
   if(der_named_curve.empty()) {
1,321✔
578
      throw Encoding_Error("Cannot encode EC_Group as OID because OID not set");
×
579
   }
580

581
   return der_named_curve;
1,321✔
582
}
583

584
std::vector<uint8_t> EC_Group::DER_encode(EC_Group_Encoding form) const {
1,263✔
585
   if(form == EC_Group_Encoding::Explicit) {
1,263✔
586
      std::vector<uint8_t> output;
31✔
587
      DER_Encoder der(output);
31✔
588
      const size_t ecpVers1 = 1;
31✔
589
      const OID curve_type("1.2.840.10045.1.1");  // prime field
31✔
590

591
      const size_t p_bytes = get_p_bytes();
31✔
592

593
      const auto generator = EC_AffinePoint::generator(*this).serialize_uncompressed();
31✔
594

595
      der.start_sequence()
31✔
596
         .encode(ecpVers1)
31✔
597
         .start_sequence()
31✔
598
         .encode(curve_type)
31✔
599
         .encode(get_p())
31✔
600
         .end_cons()
31✔
601
         .start_sequence()
31✔
602
         .encode(get_a().serialize(p_bytes), ASN1_Type::OctetString)
31✔
603
         .encode(get_b().serialize(p_bytes), ASN1_Type::OctetString)
62✔
604
         .end_cons()
31✔
605
         .encode(generator, ASN1_Type::OctetString)
31✔
606
         .encode(get_order())
31✔
607
         .encode(get_cofactor())
31✔
608
         .end_cons();
31✔
609
      return output;
31✔
610
   } else if(form == EC_Group_Encoding::NamedCurve) {
1,263✔
611
      return this->DER_encode();
1,232✔
612
   } else if(form == EC_Group_Encoding::ImplicitCA) {
×
613
      return {0x00, 0x05};
×
614
   } else {
615
      throw Internal_Error("EC_Group::DER_encode: Unknown encoding");
×
616
   }
617
}
618

619
std::string EC_Group::PEM_encode() const {
1✔
620
   const std::vector<uint8_t> der = DER_encode(EC_Group_Encoding::Explicit);
1✔
621
   return PEM_Code::encode(der, "EC PARAMETERS");
1✔
622
}
1✔
623

624
bool EC_Group::operator==(const EC_Group& other) const {
48✔
625
   if(m_data == other.m_data) {
48✔
626
      return true;  // same shared rep
627
   }
628

629
   return (get_p() == other.get_p() && get_a() == other.get_a() && get_b() == other.get_b() &&
×
630
           get_g_x() == other.get_g_x() && get_g_y() == other.get_g_y() && get_order() == other.get_order() &&
×
631
           get_cofactor() == other.get_cofactor());
×
632
}
633

634
bool EC_Group::verify_group(RandomNumberGenerator& rng, bool strong) const {
134✔
635
   const bool is_builtin = source() == EC_Group_Source::Builtin;
134✔
636

637
   if(is_builtin && !strong) {
134✔
638
      return true;
639
   }
640

641
   // TODO(Botan4) this can probably all be removed once the deprecated EC_Group
642
   // constructor is removed, since at that point it no longer becomes possible
643
   // to create an EC_Group which fails to satisfy these conditions
644

645
   const BigInt& p = get_p();
28✔
646
   const BigInt& a = get_a();
28✔
647
   const BigInt& b = get_b();
28✔
648
   const BigInt& order = get_order();
28✔
649

650
   if(p <= 3 || order <= 0) {
56✔
651
      return false;
×
652
   }
653
   if(a < 0 || a >= p) {
56✔
654
      return false;
×
655
   }
656
   if(b <= 0 || b >= p) {
56✔
657
      return false;
×
658
   }
659

660
   const size_t test_prob = 128;
28✔
661
   const bool is_randomly_generated = is_builtin;
28✔
662

663
   //check if field modulus is prime
664
   if(!is_prime(p, rng, test_prob, is_randomly_generated)) {
28✔
665
      return false;
666
   }
667

668
   //check if order is prime
669
   if(!is_prime(order, rng, test_prob, is_randomly_generated)) {
28✔
670
      return false;
671
   }
672

673
   //compute the discriminant: 4*a^3 + 27*b^2 which must be nonzero
674
   const Modular_Reducer mod_p(p);
28✔
675

676
   const BigInt discriminant = mod_p.reduce(mod_p.multiply(4, mod_p.cube(a)) + mod_p.multiply(27, mod_p.square(b)));
196✔
677

678
   if(discriminant == 0) {
28✔
679
      return false;
680
   }
681

682
   //check for valid cofactor
683
   if(get_cofactor() < 1) {
28✔
684
      return false;
685
   }
686

687
#if defined(BOTAN_HAS_LEGACY_EC_POINT)
688
   const EC_Point& base_point = get_base_point();
28✔
689
   //check if the base point is on the curve
690
   if(!base_point.on_the_curve()) {
28✔
691
      return false;
692
   }
693
   if((base_point * get_cofactor()).is_zero()) {
56✔
694
      return false;
695
   }
696
   //check if order of the base point is correct
697
   if(!(base_point * order).is_zero()) {
28✔
698
      return false;
699
   }
700
#endif
701

702
   // check the Hasse bound (roughly)
703
   if((p - get_cofactor() * order).abs().bits() > (p.bits() / 2) + 1) {
112✔
704
      return false;
705
   }
706

707
   return true;
708
}
28✔
709

710
EC_Group::Mul2Table::Mul2Table(const EC_AffinePoint& h) : m_tbl(h._group()->make_mul2_table(h._inner())) {}
13,259✔
711

712
EC_Group::Mul2Table::~Mul2Table() = default;
13,259✔
713

714
std::optional<EC_AffinePoint> EC_Group::Mul2Table::mul2_vartime(const EC_Scalar& x, const EC_Scalar& y) const {
2,124✔
715
   auto pt = m_tbl->mul2_vartime(x._inner(), y._inner());
2,124✔
716
   if(pt) {
2,124✔
717
      return EC_AffinePoint::_from_inner(std::move(pt));
4,248✔
718
   } else {
719
      return {};
×
720
   }
721
}
2,124✔
722

723
bool EC_Group::Mul2Table::mul2_vartime_x_mod_order_eq(const EC_Scalar& v,
23,004✔
724
                                                      const EC_Scalar& x,
725
                                                      const EC_Scalar& y) const {
726
   return m_tbl->mul2_vartime_x_mod_order_eq(v._inner(), x._inner(), y._inner());
23,004✔
727
}
728

729
bool EC_Group::Mul2Table::mul2_vartime_x_mod_order_eq(const EC_Scalar& v,
22,833✔
730
                                                      const EC_Scalar& c,
731
                                                      const EC_Scalar& x,
732
                                                      const EC_Scalar& y) const {
733
   return this->mul2_vartime_x_mod_order_eq(v, c * x, c * y);
22,833✔
734
}
735

736
}  // namespace Botan
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