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randombit / botan / 22073759886

16 Feb 2026 06:28PM UTC coverage: 90.025% (-0.02%) from 90.044%
22073759886

Pull #5348

github

web-flow
Merge 476498cbe into cff0123e7
Pull Request #5348: Improve use of test predicates

102324 of 113662 relevant lines covered (90.02%)

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79.88
/src/tests/tests.cpp
1
/*
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* (C) 2014,2015 Jack Lloyd
3
*
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* Botan is released under the Simplified BSD License (see license.txt)
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*/
6

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#include "tests.h"
8

9
#include <botan/hex.h>
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#include <botan/rng.h>
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#include <botan/symkey.h>
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#include <botan/internal/filesystem.h>
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#include <botan/internal/fmt.h>
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#include <botan/internal/loadstor.h>
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#include <botan/internal/parsing.h>
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#include <botan/internal/stl_util.h>
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#include <botan/internal/target_info.h>
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#include <chrono>
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#include <deque>
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#include <fstream>
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#include <iomanip>
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#include <set>
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#include <sstream>
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#include <unordered_set>
25

26
#if defined(BOTAN_HAS_BIGINT)
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   #include <botan/bigint.h>
28
#endif
29

30
#if defined(BOTAN_HAS_CPUID)
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   #include <botan/internal/cpuid.h>
32
#endif
33

34
#if defined(BOTAN_HAS_LEGACY_EC_POINT)
35
   #include <botan/ec_point.h>
36
#endif
37

38
#if defined(BOTAN_TARGET_OS_HAS_POSIX1)
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   #include <stdlib.h>
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   #include <unistd.h>
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#endif
42

43
#if defined(BOTAN_TARGET_OS_HAS_FILESYSTEM)
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   #include <version>
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   #if defined(__cpp_lib_filesystem)
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      #include <filesystem>
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   #endif
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#endif
49

50
#if defined(BOTAN_HAS_ECC_GROUP)
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   #include <botan/ec_group.h>
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#endif
53

54
namespace Botan_Tests {
55

56
Test_Error::Test_Error(std::string_view what) : std::runtime_error(std::string(what)) {}
2✔
57

58
Test::Test() = default;
420✔
59

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Test::~Test() = default;
566✔
61

62
Test::Result::Result(std::string_view who) : m_who(who), m_timestamp(Test::timestamp()) {}
81,198✔
63

64
Test::Result::Result(std::string_view who, const std::vector<Result>& downstream_results) : Result(who) {
14✔
65
   for(const auto& result : downstream_results) {
82✔
66
      merge(result, true /* ignore non-matching test names */);
68✔
67
   }
68
}
14✔
69

70
void Test::Result::merge(const Result& other, bool ignore_test_name) {
126,834✔
71
   if(who() != other.who()) {
126,834✔
72
      if(!ignore_test_name) {
73✔
73
         throw Test_Error("Merging tests from different sources");
×
74
      }
75

76
      // When deliberately merging results with different names, the code location is
77
      // likely inconsistent and must be discarded.
78
      m_where.reset();
73✔
79
   } else {
80
      m_where = other.m_where;
126,761✔
81
   }
82

83
   m_timestamp = std::min(m_timestamp, other.m_timestamp);
126,834✔
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   m_ns_taken += other.m_ns_taken;
126,834✔
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   m_tests_passed += other.m_tests_passed;
126,834✔
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   m_fail_log.insert(m_fail_log.end(), other.m_fail_log.begin(), other.m_fail_log.end());
126,834✔
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   m_log.insert(m_log.end(), other.m_log.begin(), other.m_log.end());
126,834✔
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}
126,834✔
89

90
void Test::Result::start_timer() {
1,192✔
91
   if(m_started == 0) {
1,192✔
92
      m_started = Test::timestamp();
2,384✔
93
   }
94
}
1,192✔
95

96
void Test::Result::end_timer() {
1,304✔
97
   if(m_started > 0) {
1,304✔
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      m_ns_taken += Test::timestamp() - m_started;
2,382✔
99
      m_started = 0;
1,191✔
100
   }
101
}
1,304✔
102

103
void Test::Result::test_note(std::string_view note, std::span<const uint8_t> context) {
12✔
104
   const std::string hex = Botan::hex_encode(context);
12✔
105
   return test_note(note, hex.c_str());
12✔
106
}
12✔
107

108
void Test::Result::test_note(std::string_view note, const char* extra) {
2,767✔
109
   if(!note.empty()) {
2,767✔
110
      std::ostringstream out;
2,767✔
111
      out << who() << " " << note;
2,767✔
112
      if(extra != nullptr) {
2,767✔
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         out << ": " << extra;
12✔
114
      }
115
      m_log.push_back(out.str());
2,767✔
116
   }
2,767✔
117
}
2,767✔
118

119
void Test::Result::note_missing(std::string_view whatever_sv) {
275✔
120
   static std::set<std::string> s_already_seen;
275✔
121

122
   const std::string whatever(whatever_sv);
275✔
123
   if(!s_already_seen.contains(whatever)) {
275✔
124
      test_note(Botan::fmt("Skipping tests due to missing {}", whatever));
5✔
125
      s_already_seen.insert(whatever);
275✔
126
   }
127
}
275✔
128

129
void Test::Result::require(std::string_view what, bool expr) {
322✔
130
   if(!test_is_true(what, expr)) {
322✔
131
      throw Test_Aborted(Botan::fmt("Test aborted, because required condition was not met: {}", what));
×
132
   }
133
}
322✔
134

135
Test::Result::ThrowExpectations::~ThrowExpectations() {
67,783✔
136
   BOTAN_ASSERT_NOMSG(m_consumed);
67,783✔
137
}
130,020✔
138

139
void Test::Result::ThrowExpectations::assert_that_success_is_not_expected() const {
62,237✔
140
   BOTAN_ASSERT_NOMSG(!m_expect_success);
62,048✔
141
}
62,048✔
142

143
Test::Result::ThrowExpectations& Test::Result::ThrowExpectations::expect_success() {
1,645✔
144
   BOTAN_ASSERT_NOMSG(!m_expected_message && !m_expected_exception_check_fn);
1,645✔
145
   m_expect_success = true;
1,645✔
146
   return *this;
1,645✔
147
}
148

149
Test::Result::ThrowExpectations& Test::Result::ThrowExpectations::expect_message(std::string_view message) {
189✔
150
   assert_that_success_is_not_expected();
189✔
151
   m_expected_message = message;
189✔
152
   return *this;
189✔
153
}
154

155
bool Test::Result::ThrowExpectations::check(std::string_view test_name, Test::Result& result) {
67,783✔
156
   m_consumed = true;
67,783✔
157

158
   try {
67,783✔
159
      m_fn();
67,783✔
160
      if(!m_expect_success) {
1,646✔
161
         return result.test_failure(Botan::fmt("{} failed to throw expected exception", test_name));
2✔
162
      }
163
   } catch(const std::exception& ex) {
66,137✔
164
      if(m_expect_success) {
66,135✔
165
         return result.test_failure(Botan::fmt("{} threw unexpected exception: {}", test_name, ex.what()));
1✔
166
      }
167
      if(m_expected_exception_check_fn && !m_expected_exception_check_fn(std::current_exception())) {
190,230✔
168
         return result.test_failure(Botan::fmt("{} threw unexpected exception: {}", test_name, ex.what()));
2✔
169
      }
170
      if(m_expected_message.has_value() && m_expected_message.value() != ex.what()) {
66,132✔
171
         return result.test_failure(Botan::fmt("{} threw exception with unexpected message (expected {} got {})",
1✔
172
                                               test_name,
173
                                               m_expected_message.value(),
1✔
174
                                               ex.what()));
2✔
175
      }
176
   } catch(...) {
66,137✔
177
      if(m_expect_success || m_expected_exception_check_fn || m_expected_message.has_value()) {
2✔
178
         return result.test_failure(Botan::fmt("{} threw unexpected unknown exception", test_name));
1✔
179
      }
180
   }
2✔
181

182
   return result.test_success();
67,776✔
183
}
184

185
bool Test::Result::test_throws(std::string_view what, std::function<void()> fn) {
3,916✔
186
   return ThrowExpectations(std::move(fn)).check(what, *this);
11,748✔
187
}
188

189
bool Test::Result::test_throws(std::string_view what, std::string_view expected, std::function<void()> fn) {
174✔
190
   return ThrowExpectations(std::move(fn)).expect_message(expected).check(what, *this);
522✔
191
}
192

193
bool Test::Result::test_no_throw(std::string_view what, std::function<void()> fn) {
1,645✔
194
   return ThrowExpectations(std::move(fn)).expect_success().check(what, *this);
4,935✔
195
}
196

197
bool Test::Result::test_success(std::string_view note) {
3,620,817✔
198
   if(Test::options().log_success()) {
3,620,801✔
199
      test_note(note);
×
200
   }
201
   ++m_tests_passed;
3,620,817✔
202
   return true;
67,776✔
203
}
204

205
bool Test::Result::test_failure(std::string_view what, std::string_view error) {
2✔
206
   return test_failure(Botan::fmt("{} {} with error {}", who(), what, error));
2✔
207
}
208

209
void Test::Result::test_failure(std::string_view what, const uint8_t buf[], size_t buf_len) {
×
210
   return test_failure(what, {buf, buf_len});
×
211
}
212

213
void Test::Result::test_failure(std::string_view what, std::span<const uint8_t> context) {
1✔
214
   test_failure(Botan::fmt("{} {} with value {}", who(), what, Botan::hex_encode(context)));
2✔
215
}
1✔
216

217
bool Test::Result::test_failure(const char* err) {
×
218
   return test_failure(std::string_view(err));
×
219
}
220

221
bool Test::Result::test_failure(std::string_view err) {
1✔
222
   return test_failure(std::string(err));
1✔
223
}
224

225
bool Test::Result::test_failure(std::string err) {
24✔
226
   m_fail_log.push_back(std::move(err));
24✔
227

228
   if(Test::options().abort_on_first_fail() && m_who != "Failing Test") {
24✔
229
      std::abort();
×
230
   }
231
   return false;
24✔
232
}
233

234
namespace {
235

236
bool same_contents(std::span<const uint8_t> x, std::span<const uint8_t> y) {
302,682✔
237
   if(x.size() != y.size()) {
1,437✔
238
      return false;
239
   }
240
   if(x.empty()) {
302,681✔
241
      return true;
242
   }
243

244
   return std::memcmp(x.data(), y.data(), x.size()) == 0;
301,249✔
245
}
246

247
}  // namespace
248

249
bool Test::Result::test_bin_ne(std::string_view what,
3,404✔
250
                               std::span<const uint8_t> produced,
251
                               std::span<const uint8_t> expected) {
252
   if(produced.size() == expected.size() && same_contents(produced, expected)) {
4,841✔
253
      return test_failure(Botan::fmt("{} {} produced matching bytes", who(), what));
1✔
254
   }
255
   return test_success();
3,403✔
256
}
257

258
bool Test::Result::test_bin_eq(std::string_view what,
556✔
259
                               std::span<const uint8_t> produced,
260
                               std::string_view expected_hex) {
261
   const std::vector<uint8_t> expected = Botan::hex_decode(expected_hex);
556✔
262
   return test_bin_eq(what, produced, expected);
556✔
263
}
556✔
264

265
bool Test::Result::test_bin_eq(std::string_view what,
301,245✔
266
                               std::span<const uint8_t> produced,
267
                               std::span<const uint8_t> expected) {
268
   if(same_contents(produced, expected)) {
601,057✔
269
      return test_success();
301,244✔
270
   }
271

272
   std::ostringstream err;
1✔
273

274
   err << who();
1✔
275

276
   err << " unexpected result for " << what;
1✔
277

278
   if(produced.size() != expected.size()) {
1✔
279
      err << " produced " << produced.size() << " bytes expected " << expected.size();
1✔
280
   }
281

282
   std::vector<uint8_t> xor_diff(std::min(produced.size(), expected.size()));
2✔
283
   size_t bytes_different = 0;
1✔
284

285
   for(size_t i = 0; i != xor_diff.size(); ++i) {
4✔
286
      xor_diff[i] = produced[i] ^ expected[i];
3✔
287
      if(xor_diff[i] > 0) {
3✔
288
         bytes_different++;
3✔
289
      }
290
   }
291

292
   err << "\nProduced: " << Botan::hex_encode(produced) << "\nExpected: " << Botan::hex_encode(expected);
1✔
293

294
   if(bytes_different > 0) {
1✔
295
      err << "\nXOR Diff: " << Botan::hex_encode(xor_diff);
1✔
296
   }
297

298
   return test_failure(err.str());
1✔
299
}
1✔
300

301
bool Test::Result::test_str_not_empty(std::string_view what, std::string_view produced) {
38,863✔
302
   if(produced.empty()) {
38,863✔
303
      return test_failure(what, "was empty");
1✔
304
   } else {
305
      return test_success();
38,862✔
306
   }
307
}
308

309
bool Test::Result::test_str_eq(std::string_view what, std::string_view produced, std::string_view expected) {
76,864✔
310
   if(produced == expected) {
76,864✔
311
      return test_success();
76,864✔
312
   } else {
313
      return test_failure(Botan::fmt("Assertion failure in {} {}: '{}' == '{}'", who(), what, produced, expected));
×
314
   }
315
}
316

317
bool Test::Result::test_str_ne(std::string_view what, std::string_view str1, std::string_view str2) {
17✔
318
   if(str1 != str2) {
17✔
319
      return test_success(Botan::fmt("{} != {}", str1, str2));
16✔
320
   } else {
321
      return test_failure(Botan::fmt("{} {} unexpectedly produced matching strings {}", who(), what, str1));
1✔
322
   }
323
}
324

325
bool Test::Result::test_i16_eq(std::string_view what, int16_t produced, int16_t expected) {
1,025✔
326
   return test_i32_eq(what, produced, expected);
1,025✔
327
}
328

329
bool Test::Result::test_i32_eq(std::string_view what, int32_t produced, int32_t expected) {
1,026✔
330
   if(produced == expected) {
1,026✔
331
      return test_success();
1,026✔
332
   } else {
333
      return test_failure(Botan::fmt("Assertion failure in {} {}: {} == {}", who(), what, produced, expected));
×
334
   }
335
}
336

337
bool Test::Result::test_u8_eq(uint8_t produced, uint8_t expected) {
214✔
338
   return test_sz_eq("comparison", produced, expected);
214✔
339
}
340

341
bool Test::Result::test_u8_eq(std::string_view what, uint8_t produced, uint8_t expected) {
49,385✔
342
   return test_sz_eq(what, produced, expected);
49,385✔
343
}
344

345
bool Test::Result::test_u16_eq(uint16_t produced, uint16_t expected) {
40✔
346
   return test_sz_eq("comparison", produced, expected);
40✔
347
}
348

349
bool Test::Result::test_u16_eq(std::string_view what, uint16_t produced, uint16_t expected) {
66,792✔
350
   return test_sz_eq(what, produced, expected);
66,792✔
351
}
352

353
bool Test::Result::test_u32_eq(uint32_t produced, uint32_t expected) {
16✔
354
   return test_sz_eq("comparison", produced, expected);
16✔
355
}
356

357
bool Test::Result::test_u32_eq(std::string_view what, uint32_t produced, uint32_t expected) {
4,196✔
358
   return test_sz_eq(what, produced, expected);
4,196✔
359
}
360

361
bool Test::Result::test_u64_eq(uint64_t produced, uint64_t expected) {
13✔
362
   return test_u64_eq("comparison", produced, expected);
13✔
363
}
364

365
bool Test::Result::test_u64_eq(std::string_view what, uint64_t produced, uint64_t expected) {
1,547✔
366
   if(produced == expected) {
1,547✔
367
      return test_success();
1,547✔
368
   } else {
369
      return test_failure(Botan::fmt("Assertion failure in {} {}: {} == {}", who(), what, produced, expected));
×
370
   }
371
}
372

373
bool Test::Result::test_sz_eq(std::string_view what, size_t produced, size_t expected) {
197,641✔
374
   if(produced == expected) {
197,641✔
375
      return test_success();
197,640✔
376
   } else {
377
      return test_failure(Botan::fmt("Assertion failure in {} {}: {} == {}", who(), what, produced, expected));
1✔
378
   }
379
}
380

381
bool Test::Result::test_sz_ne(std::string_view what, size_t produced, size_t expected) {
119✔
382
   if(produced != expected) {
119✔
383
      return test_success();
118✔
384
   } else {
385
      return test_failure(Botan::fmt("Assertion failure in {} {}: {} != {}", who(), what, produced, expected));
1✔
386
   }
387
}
388

389
bool Test::Result::test_sz_lt(std::string_view what, size_t produced, size_t expected) {
5,639✔
390
   if(produced < expected) {
5,639✔
391
      return test_success();
5,638✔
392
   } else {
393
      return test_failure(Botan::fmt("Assertion failure in {} {}: {} < {}", who(), what, produced, expected));
1✔
394
   }
395
}
396

397
bool Test::Result::test_sz_lte(std::string_view what, size_t produced, size_t expected) {
1,021,636✔
398
   if(produced <= expected) {
1,021,636✔
399
      return test_success();
1,021,635✔
400
   } else {
401
      return test_failure(Botan::fmt("Assertion failure in {} {}: {} <= {}", who(), what, produced, expected));
1✔
402
   }
403
}
404

405
bool Test::Result::test_sz_gt(std::string_view what, size_t produced, size_t expected) {
29,981✔
406
   if(produced > expected) {
29,981✔
407
      return test_success();
29,981✔
408
   } else {
409
      return test_failure(Botan::fmt("Assertion failure in {} {}: {} > {}", who(), what, produced, expected));
×
410
   }
411
}
412

413
bool Test::Result::test_sz_gte(std::string_view what, size_t produced, size_t expected) {
1,142,521✔
414
   if(produced >= expected) {
1,142,521✔
415
      return test_success();
1,142,520✔
416
   } else {
417
      return test_failure(Botan::fmt("Assertion failure in {} {}: {} >= {}", who(), what, produced, expected));
1✔
418
   }
419
}
420

421
bool Test::Result::test_opt_u8_eq(std::string_view what, std::optional<uint8_t> a, std::optional<uint8_t> b) {
1,215✔
422
   if(a.has_value() != b.has_value()) {
1,215✔
423
      std::ostringstream err;
×
424
      err << m_who << " " << what << " only one of a/b was nullopt";
×
425
      return test_failure(err.str());
×
426
   } else if(a.has_value() && b.has_value()) {
1,215✔
427
      return test_u8_eq(what, a.value(), b.value());
10✔
428
   } else {
429
      // both nullopt
430
      return test_success();
1,205✔
431
   }
432
}
433

434
bool Test::Result::test_opt_u64_eq(std::string_view what, std::optional<uint64_t> a, std::optional<uint64_t> b) {
9✔
435
   if(a.has_value() != b.has_value()) {
9✔
436
      std::ostringstream err;
×
437
      err << m_who << " " << what << " only one of a/b was nullopt";
×
438
      return test_failure(err.str());
×
439
   } else if(a.has_value() && b.has_value()) {
9✔
440
      return test_u64_eq(what, a.value(), b.value());
9✔
441
   } else {
442
      // both nullopt
443
      return test_success();
×
444
   }
445
}
446

447
#if defined(BOTAN_HAS_BIGINT)
448
bool Test::Result::test_bn_eq(std::string_view what, const BigInt& produced, const BigInt& expected) {
252,644✔
449
   if(produced == expected) {
252,644✔
450
      return test_success();
252,643✔
451
   } else {
452
      std::ostringstream err;
1✔
453
      err << who() << " " << what << " produced " << produced << " != expected value " << expected;
1✔
454
      return test_failure(err.str());
1✔
455
   }
1✔
456
}
457

458
bool Test::Result::test_bn_ne(std::string_view what, const BigInt& produced, const BigInt& expected) {
97✔
459
   if(produced != expected) {
97✔
460
      return test_success();
96✔
461
   } else {
462
      std::ostringstream err;
1✔
463
      err << who() << " " << what << " produced " << produced << " prohibited value";
1✔
464
      return test_failure(err.str());
1✔
465
   }
1✔
466
}
467
#endif
468

469
bool Test::Result::test_bool_eq(std::string_view what, bool produced, bool expected) {
361,519✔
470
   if(produced == expected) {
361,519✔
471
      return test_success();
361,519✔
472
   } else {
473
      if(expected == true) {
×
474
         return test_failure(Botan::fmt("Assertion failure in {}, {} was unexpectedly false", who(), what));
×
475
      } else {
476
         return test_failure(Botan::fmt("Assertion failure in {}, {} was unexpectedly true", who(), what));
×
477
      }
478
   }
479
}
480

481
bool Test::Result::test_is_true(std::string_view what, bool produced) {
227,942✔
482
   return test_bool_eq(what, produced, true);
227,942✔
483
}
484

485
bool Test::Result::test_is_false(std::string_view what, bool produced) {
126,006✔
486
   return test_bool_eq(what, produced, false);
126,006✔
487
}
488

489
bool Test::Result::test_rc_ok(std::string_view func, int rc) {
2,815✔
490
   if(rc != 0) {
2,815✔
491
      std::ostringstream err;
1✔
492
      err << m_who << " " << func << " unexpectedly failed with error code " << rc;
1✔
493
      return test_failure(err.str());
1✔
494
   }
1✔
495

496
   return test_success();
2,814✔
497
}
498

499
bool Test::Result::test_rc_fail(std::string_view func, std::string_view why, int rc) {
26✔
500
   if(rc == 0) {
26✔
501
      std::ostringstream err;
1✔
502
      err << m_who << " call to " << func << " unexpectedly succeeded expecting failure because " << why;
1✔
503
      return test_failure(err.str());
1✔
504
   }
1✔
505

506
   return test_success();
25✔
507
}
508

509
bool Test::Result::test_rc_init(std::string_view func, int rc) {
117✔
510
   if(rc == 0) {
117✔
511
      return test_success();
117✔
512
   } else {
513
      std::ostringstream msg;
×
514
      msg << m_who;
×
515
      msg << " " << func;
×
516

517
      // -40 is BOTAN_FFI_ERROR_NOT_IMPLEMENTED
518
      if(rc == -40) {
×
519
         msg << " returned not implemented";
×
520
      } else {
521
         msg << " unexpectedly failed with error code " << rc;
×
522
      }
523

524
      if(rc == -40) {
×
525
         this->test_note(msg.str());
×
526
      } else {
527
         this->test_failure(msg.str());
×
528
      }
529
      return false;
×
530
   }
×
531
}
532

533
bool Test::Result::test_rc(std::string_view func, int rc, int expected) {
421✔
534
   if(expected != rc) {
421✔
535
      std::ostringstream err;
1✔
536
      err << m_who;
1✔
537
      err << " call to " << func << " unexpectedly returned " << rc;
1✔
538
      err << " but expecting " << expected;
1✔
539
      return test_failure(err.str());
1✔
540
   }
1✔
541

542
   return test_success();
420✔
543
}
544

545
void Test::initialize(std::string test_name, CodeLocation location) {
420✔
546
   m_test_name = std::move(test_name);
420✔
547
   m_registration_location = location;
420✔
548
}
420✔
549

550
Botan::RandomNumberGenerator& Test::rng() const {
460,766✔
551
   if(!m_test_rng) {
460,766✔
552
      m_test_rng = Test::new_rng(m_test_name);
146✔
553
   }
554

555
   return *m_test_rng;
460,766✔
556
}
557

558
std::optional<std::string> Test::supported_ec_group_name(std::vector<std::string> preferred_groups) {
151✔
559
#if defined(BOTAN_HAS_ECC_GROUP)
560
   if(preferred_groups.empty()) {
151✔
561
      preferred_groups = {
149✔
562
         "secp256r1",
563
         "brainpool256r1",
564
         "secp384r1",
565
         "brainpool384r1",
566
         "secp521r1",
567
         "brainpool512r1",
568
      };
1,192✔
569
   }
570

571
   for(const auto& group : preferred_groups) {
151✔
572
      if(Botan::EC_Group::supports_named_group(group)) {
151✔
573
         return group;
151✔
574
      }
575
   }
576
#else
577
   BOTAN_UNUSED(preferred_groups);
578
#endif
579

580
   return std::nullopt;
×
581
}
298✔
582

583
std::vector<uint8_t> Test::mutate_vec(const std::vector<uint8_t>& v,
96,742✔
584
                                      Botan::RandomNumberGenerator& rng,
585
                                      bool maybe_resize,
586
                                      size_t min_offset) {
587
   std::vector<uint8_t> r = v;
96,742✔
588

589
   if(maybe_resize && (r.empty() || rng.next_byte() < 32)) {
110,321✔
590
      // TODO: occasionally truncate, insert at random index
591
      const size_t add = 1 + (rng.next_byte() % 16);
2,123✔
592
      r.resize(r.size() + add);
2,123✔
593
      rng.randomize(&r[r.size() - add], add);
2,123✔
594
   }
595

596
   if(r.size() > min_offset) {
96,742✔
597
      const size_t offset = std::max<size_t>(min_offset, rng.next_byte() % r.size());
95,204✔
598
      const uint8_t perturb = rng.next_nonzero_byte();
95,204✔
599
      r[offset] ^= perturb;
95,204✔
600
   }
601

602
   return r;
96,742✔
603
}
×
604

605
std::vector<std::string> Test::possible_providers(const std::string& /*alg*/) {
×
606
   return Test::provider_filter({"base"});
×
607
}
608

609
//static
610
std::string Test::format_time(uint64_t nanoseconds) {
1,470✔
611
   std::ostringstream o;
1,470✔
612

613
   if(nanoseconds > 1000000000) {
1,470✔
614
      o << std::setprecision(2) << std::fixed << nanoseconds / 1000000000.0 << " sec";
159✔
615
   } else {
616
      o << std::setprecision(2) << std::fixed << nanoseconds / 1000000.0 << " msec";
1,311✔
617
   }
618

619
   return o.str();
2,940✔
620
}
1,470✔
621

622
// TODO: this should move to `StdoutReporter`
623
std::string Test::Result::result_string() const {
2,556✔
624
   const bool verbose = Test::options().verbose();
2,556✔
625

626
   if(tests_run() == 0 && !verbose) {
2,556✔
627
      return "";
20✔
628
   }
629

630
   std::ostringstream report;
2,536✔
631

632
   report << who() << " ran ";
2,536✔
633

634
   if(tests_run() == 0) {
2,536✔
635
      report << "ZERO";
×
636
   } else {
637
      report << tests_run();
2,536✔
638
   }
639
   report << " tests";
2,536✔
640

641
   if(m_ns_taken > 0) {
2,536✔
642
      report << " in " << format_time(m_ns_taken);
2,938✔
643
   }
644

645
   if(tests_failed() > 0) {
2,536✔
646
      report << " " << tests_failed() << " FAILED";
24✔
647
   } else {
648
      report << " all ok";
2,512✔
649
   }
650

651
   report << "\n";
2,536✔
652

653
   for(size_t i = 0; i != m_fail_log.size(); ++i) {
2,560✔
654
      report << "Failure " << (i + 1) << ": " << m_fail_log[i];
24✔
655
      if(m_where) {
24✔
656
         report << " (at " << m_where->path << ":" << m_where->line << ")";
×
657
      }
658
      report << "\n";
24✔
659
   }
660

661
   if(!m_fail_log.empty() || tests_run() == 0 || verbose) {
2,536✔
662
      for(size_t i = 0; i != m_log.size(); ++i) {
24✔
663
         report << "Note " << (i + 1) << ": " << m_log[i] << "\n";
×
664
      }
665
   }
666

667
   return report.str();
2,536✔
668
}
2,536✔
669

670
namespace {
671

672
class Test_Registry {
673
   public:
674
      static Test_Registry& instance() {
1,282✔
675
         static Test_Registry registry;
1,283✔
676
         return registry;
1,282✔
677
      }
678

679
      void register_test(const std::string& category,
420✔
680
                         const std::string& name,
681
                         bool smoke_test,
682
                         bool needs_serialization,
683
                         std::function<std::unique_ptr<Test>()> maker_fn) {
684
         if(m_tests.contains(name)) {
420✔
685
            throw Test_Error("Duplicate registration of test '" + name + "'");
×
686
         }
687

688
         if(m_tests.contains(category)) {
420✔
689
            throw Test_Error("'" + category + "' cannot be used as category, test exists");
×
690
         }
691

692
         if(m_categories.contains(name)) {
420✔
693
            throw Test_Error("'" + name + "' cannot be used as test name, category exists");
×
694
         }
695

696
         if(smoke_test) {
420✔
697
            m_smoke_tests.push_back(name);
10✔
698
         }
699

700
         if(needs_serialization) {
420✔
701
            m_mutexed_tests.push_back(name);
21✔
702
         }
703

704
         m_tests.emplace(name, std::move(maker_fn));
420✔
705
         m_categories.emplace(category, name);
420✔
706
      }
420✔
707

708
      std::unique_ptr<Test> get_test(const std::string& test_name) const {
420✔
709
         auto i = m_tests.find(test_name);
420✔
710
         if(i != m_tests.end()) {
420✔
711
            return i->second();
420✔
712
         }
713
         return nullptr;
×
714
      }
715

716
      std::vector<std::string> registered_tests() const {
×
717
         std::vector<std::string> s;
×
718
         s.reserve(m_tests.size());
×
719
         for(auto&& i : m_tests) {
×
720
            s.push_back(i.first);
×
721
         }
722
         return s;
×
723
      }
×
724

725
      std::vector<std::string> registered_test_categories() const {
×
726
         std::set<std::string> s;
×
727
         for(auto&& i : m_categories) {
×
728
            s.insert(i.first);
×
729
         }
730
         return std::vector<std::string>(s.begin(), s.end());
×
731
      }
×
732

733
      std::vector<std::string> filter_registered_tests(const std::vector<std::string>& requested,
1✔
734
                                                       const std::vector<std::string>& to_be_skipped) {
735
         std::vector<std::string> result;
1✔
736

737
         std::set<std::string> to_be_skipped_set(to_be_skipped.begin(), to_be_skipped.end());
1✔
738
         // TODO: this is O(n^2), but we have a relatively small number of tests.
739
         auto insert_if_not_exists_and_not_skipped = [&](const std::string& test_name) {
421✔
740
            if(!Botan::value_exists(result, test_name) && !to_be_skipped_set.contains(test_name)) {
840✔
741
               result.push_back(test_name);
410✔
742
            }
743
         };
421✔
744

745
         if(requested.empty()) {
1✔
746
            /*
747
            If nothing was requested on the command line, run everything. First
748
            run the "essentials" to smoke test, then everything else in
749
            alphabetical order.
750
            */
751
            result = m_smoke_tests;
1✔
752
            for(const auto& [test_name, _] : m_tests) {
421✔
753
               insert_if_not_exists_and_not_skipped(test_name);
420✔
754
            }
755
         } else {
756
            for(const auto& r : requested) {
×
757
               if(m_tests.contains(r)) {
×
758
                  insert_if_not_exists_and_not_skipped(r);
×
759
               } else if(auto elems = m_categories.equal_range(r); elems.first != m_categories.end()) {
×
760
                  for(; elems.first != elems.second; ++elems.first) {
×
761
                     insert_if_not_exists_and_not_skipped(elems.first->second);
×
762
                  }
763
               } else {
764
                  throw Test_Error("Unknown test suite or category: " + r);
×
765
               }
766
            }
767
         }
768

769
         return result;
1✔
770
      }
1✔
771

772
      bool needs_serialization(const std::string& test_name) const {
441✔
773
         return Botan::value_exists(m_mutexed_tests, test_name);
21✔
774
      }
775

776
   private:
777
      Test_Registry() = default;
1✔
778

779
   private:
780
      std::map<std::string, std::function<std::unique_ptr<Test>()>> m_tests;
781
      std::multimap<std::string, std::string> m_categories;
782
      std::vector<std::string> m_smoke_tests;
783
      std::vector<std::string> m_mutexed_tests;
784
};
785

786
}  // namespace
787

788
// static Test:: functions
789

790
//static
791
void Test::register_test(const std::string& category,
420✔
792
                         const std::string& name,
793
                         bool smoke_test,
794
                         bool needs_serialization,
795
                         std::function<std::unique_ptr<Test>()> maker_fn) {
796
   Test_Registry::instance().register_test(category, name, smoke_test, needs_serialization, std::move(maker_fn));
840✔
797
}
420✔
798

799
//static
800
uint64_t Test::timestamp() {
180,117✔
801
   auto now = std::chrono::system_clock::now().time_since_epoch();
180,117✔
802
   return std::chrono::duration_cast<std::chrono::nanoseconds>(now).count();
2,383✔
803
}
804

805
//static
806
std::vector<Test::Result> Test::flatten_result_lists(std::vector<std::vector<Test::Result>> result_lists) {
4✔
807
   std::vector<Test::Result> results;
4✔
808
   for(auto& result_list : result_lists) {
26✔
809
      for(auto& result : result_list) {
71✔
810
         results.emplace_back(std::move(result));
49✔
811
      }
812
   }
813
   return results;
4✔
814
}
×
815

816
//static
817
std::vector<std::string> Test::registered_tests() {
×
818
   return Test_Registry::instance().registered_tests();
×
819
}
820

821
//static
822
std::vector<std::string> Test::registered_test_categories() {
×
823
   return Test_Registry::instance().registered_test_categories();
×
824
}
825

826
//static
827
std::unique_ptr<Test> Test::get_test(const std::string& test_name) {
420✔
828
   return Test_Registry::instance().get_test(test_name);
420✔
829
}
830

831
//static
832
bool Test::test_needs_serialization(const std::string& test_name) {
420✔
833
   return Test_Registry::instance().needs_serialization(test_name);
420✔
834
}
835

836
//static
837
std::vector<std::string> Test::filter_registered_tests(const std::vector<std::string>& requested,
1✔
838
                                                       const std::vector<std::string>& to_be_skipped) {
839
   return Test_Registry::instance().filter_registered_tests(requested, to_be_skipped);
1✔
840
}
841

842
//static
843
std::string Test::temp_file_name(const std::string& basename) {
21✔
844
   // TODO add a --tmp-dir option to the tests to specify where these files go
845

846
#if defined(BOTAN_TARGET_OS_HAS_POSIX1)
847

848
   // POSIX only calls for 6 'X' chars but OpenBSD allows arbitrary amount
849
   std::string mkstemp_basename = "/tmp/" + basename + ".XXXXXXXXXX";
42✔
850

851
   const int fd = ::mkstemp(mkstemp_basename.data());
21✔
852

853
   // error
854
   if(fd < 0) {
21✔
855
      return "";
×
856
   }
857

858
   ::close(fd);
21✔
859

860
   return mkstemp_basename;
21✔
861
#else
862
   // For now just create the temp in the current working directory
863
   return basename;
864
#endif
865
}
21✔
866

867
bool Test::copy_file(const std::string& from, const std::string& to) {
1✔
868
#if defined(BOTAN_TARGET_OS_HAS_FILESYSTEM) && defined(__cpp_lib_filesystem)
869
   std::error_code ec;  // don't throw, just return false on error
1✔
870
   return std::filesystem::copy_file(from, to, std::filesystem::copy_options::overwrite_existing, ec);
1✔
871
#else
872
   // TODO: implement fallbacks to POSIX or WIN32
873
   // ... but then again: it's 2023 and we're using C++20 :o)
874
   BOTAN_UNUSED(from, to);
875
   throw Botan::No_Filesystem_Access();
876
#endif
877
}
878

879
std::string Test::read_data_file(const std::string& path) {
38✔
880
   const std::string fsname = Test::data_file(path);
38✔
881
   std::ifstream file(fsname.c_str());
38✔
882
   if(!file.good()) {
38✔
883
      throw Test_Error("Error reading from " + fsname);
×
884
   }
885

886
   return std::string((std::istreambuf_iterator<char>(file)), std::istreambuf_iterator<char>());
76✔
887
}
38✔
888

889
std::vector<uint8_t> Test::read_binary_data_file(const std::string& path) {
34✔
890
   const std::string fsname = Test::data_file(path);
34✔
891
   std::ifstream file(fsname.c_str(), std::ios::binary);
34✔
892
   if(!file.good()) {
34✔
893
      throw Test_Error("Error reading from " + fsname);
×
894
   }
895

896
   std::vector<uint8_t> contents;
34✔
897

898
   while(file.good()) {
74✔
899
      std::vector<uint8_t> buf(4096);
40✔
900
      file.read(reinterpret_cast<char*>(buf.data()), buf.size());
40✔
901
      const size_t got = static_cast<size_t>(file.gcount());
40✔
902

903
      if(got == 0 && file.eof()) {
40✔
904
         break;
905
      }
906

907
      contents.insert(contents.end(), buf.data(), buf.data() + got);
40✔
908
   }
40✔
909

910
   return contents;
68✔
911
}
34✔
912

913
// static member variables of Test
914

915
// NOLINTNEXTLINE(*-avoid-non-const-global-variables)
916
Test_Options Test::m_opts;
917
// NOLINTNEXTLINE(*-avoid-non-const-global-variables)
918
std::string Test::m_test_rng_seed;
919

920
//static
921
void Test::set_test_options(const Test_Options& opts) {
1✔
922
   m_opts = opts;
1✔
923
}
1✔
924

925
namespace {
926

927
/*
928
* This is a fast, simple, deterministic PRNG that's used for running
929
* the tests. It is not intended to be cryptographically secure.
930
*/
931
class Testsuite_RNG final : public Botan::RandomNumberGenerator {
8✔
932
   public:
933
      std::string name() const override { return "Testsuite_RNG"; }
×
934

935
      void clear() override { m_x = 0; }
×
936

937
      bool accepts_input() const override { return true; }
×
938

939
      bool is_seeded() const override { return true; }
277,701✔
940

941
      void fill_bytes_with_input(std::span<uint8_t> output, std::span<const uint8_t> input) override {
10,243,019✔
942
         for(const auto byte : input) {
10,243,019✔
943
            mix(byte);
×
944
         }
945

946
         for(auto& byte : output) {
73,943,837✔
947
            byte = mix();
63,700,818✔
948
         }
949
      }
10,243,019✔
950

951
      Testsuite_RNG(std::string_view seed, std::string_view test_name) : m_x(0) {
277✔
952
         for(const char c : seed) {
8,310✔
953
            this->mix(static_cast<uint8_t>(c));
8,033✔
954
         }
955
         for(const char c : test_name) {
5,587✔
956
            this->mix(static_cast<uint8_t>(c));
5,310✔
957
         }
958
      }
277✔
959

960
   private:
961
      uint8_t mix(uint8_t input = 0) {
63,714,161✔
962
         m_x ^= input;
63,714,161✔
963
         m_x *= 0xF2E16957;
63,714,161✔
964
         m_x += 0xE50B590F;
63,714,161✔
965
         return static_cast<uint8_t>(m_x >> 27);
63,714,161✔
966
      }
967

968
      uint64_t m_x;
969
};
970

971
}  // namespace
972

973
//static
974
void Test::set_test_rng_seed(std::span<const uint8_t> seed, size_t epoch) {
1✔
975
   m_test_rng_seed = Botan::fmt("seed={} epoch={}", Botan::hex_encode(seed), epoch);
1✔
976
}
1✔
977

978
//static
979
std::unique_ptr<Botan::RandomNumberGenerator> Test::new_rng(std::string_view test_name) {
269✔
980
   return std::make_unique<Testsuite_RNG>(m_test_rng_seed, test_name);
269✔
981
}
982

983
//static
984
std::shared_ptr<Botan::RandomNumberGenerator> Test::new_shared_rng(std::string_view test_name) {
8✔
985
   return std::make_shared<Testsuite_RNG>(m_test_rng_seed, test_name);
8✔
986
}
987

988
//static
989
std::string Test::data_file(const std::string& file) {
773✔
990
   return options().data_dir() + "/" + file;
1,546✔
991
}
992

993
//static
994
std::string Test::data_dir(const std::string& subdir) {
1✔
995
   return options().data_dir() + "/" + subdir;
2✔
996
}
997

998
//static
999
std::vector<std::string> Test::files_in_data_dir(const std::string& subdir) {
393✔
1000
   auto fs = Botan::get_files_recursive(options().data_dir() + "/" + subdir);
1,179✔
1001
   if(fs.empty()) {
393✔
1002
      throw Test_Error("Test::files_in_data_dir encountered empty subdir " + subdir);
×
1003
   }
1004
   return fs;
393✔
1005
}
×
1006

1007
//static
1008
std::string Test::data_file_as_temporary_copy(const std::string& what) {
1✔
1009
   auto tmp_basename = what;
1✔
1010
   std::replace(tmp_basename.begin(), tmp_basename.end(), '/', '_');
1✔
1011
   auto temp_file = temp_file_name("tmp-" + tmp_basename);
1✔
1012
   if(temp_file.empty()) {
1✔
1013
      return "";
×
1014
   }
1015
   if(!Test::copy_file(data_file(what), temp_file)) {
1✔
1016
      return "";
×
1017
   }
1018
   return temp_file;
1✔
1019
}
1✔
1020

1021
//static
1022
std::vector<std::string> Test::provider_filter(const std::vector<std::string>& providers) {
49,047✔
1023
   if(m_opts.provider().empty()) {
49,047✔
1024
      return providers;
49,047✔
1025
   }
1026
   for(auto&& provider : providers) {
×
1027
      if(provider == m_opts.provider()) {
×
1028
         return std::vector<std::string>{provider};
×
1029
      }
1030
   }
1031
   return std::vector<std::string>{};
×
1032
}
×
1033

1034
std::string Test::random_password(Botan::RandomNumberGenerator& rng) {
222✔
1035
   const size_t len = 1 + rng.next_byte() % 32;
222✔
1036
   return Botan::hex_encode(rng.random_vec(len));
444✔
1037
}
1038

1039
size_t Test::random_index(Botan::RandomNumberGenerator& rng, size_t max) {
8,062✔
1040
   return Botan::load_be(rng.random_array<8>()) % max;
8,062✔
1041
}
1042

1043
void VarMap::clear() {
34,297✔
1044
   m_vars.clear();
×
1045
}
×
1046

1047
namespace {
1048

1049
bool varmap_pair_lt(const std::pair<std::string, std::string>& kv, const std::string& k) {
1,713,996✔
1050
   return kv.first < k;
1,713,996✔
1051
}
1052

1053
}  // namespace
1054

1055
void VarMap::add(const std::string& key, const std::string& value) {
156,283✔
1056
   auto i = std::lower_bound(m_vars.begin(), m_vars.end(), key, varmap_pair_lt);
156,283✔
1057

1058
   if(i != m_vars.end() && i->first == key) {
156,283✔
1059
      i->second = value;
44,405✔
1060
   } else {
1061
      m_vars.emplace(i, key, value);
111,878✔
1062
   }
1063
}
156,283✔
1064

1065
std::optional<std::string> VarMap::get_var(const std::string& key) const {
568,619✔
1066
   auto i = std::lower_bound(m_vars.begin(), m_vars.end(), key, varmap_pair_lt);
568,619✔
1067

1068
   if(i != m_vars.end() && i->first == key) {
568,619✔
1069
      return i->second;
498,714✔
1070
   } else {
1071
      return {};
69,905✔
1072
   }
1073
}
1074

1075
bool VarMap::has_key(const std::string& key) const {
213,622✔
1076
   return get_var(key).has_value();
213,622✔
1077
}
1078

1079
std::string VarMap::get_req_str(const std::string& key) const {
259,704✔
1080
   auto var = get_var(key);
259,704✔
1081
   if(var) {
259,704✔
1082
      return *var;
519,408✔
1083
   } else {
1084
      throw Test_Error("Test missing variable " + key);
×
1085
   }
1086
}
259,704✔
1087

1088
std::vector<std::vector<uint8_t>> VarMap::get_req_bin_list(const std::string& key) const {
12✔
1089
   const auto var = get_req_str(key);
12✔
1090

1091
   std::vector<std::vector<uint8_t>> bin_list;
12✔
1092

1093
   for(auto&& part : Botan::split_on(var, ',')) {
62✔
1094
      try {
50✔
1095
         bin_list.push_back(Botan::hex_decode(part));
100✔
1096
      } catch(std::exception& e) {
×
1097
         std::ostringstream oss;
×
1098
         oss << "Bad input '" << part << "'"
×
1099
             << " in binary list key " << key << " - " << e.what();
×
1100
         throw Test_Error(oss.str());
×
1101
      }
×
1102
   }
12✔
1103

1104
   return bin_list;
12✔
1105
}
12✔
1106

1107
std::vector<uint8_t> VarMap::get_req_bin(const std::string& key) const {
163,786✔
1108
   const auto var = get_req_str(key);
163,786✔
1109

1110
   try {
163,786✔
1111
      if(var.starts_with("0x")) {
163,786✔
1112
         if(var.size() % 2 == 0) {
×
1113
            return Botan::hex_decode(var.substr(2));
×
1114
         } else {
1115
            std::string z = var;
×
1116
            std::swap(z[0], z[1]);  // swap 0x to x0 then remove x
×
1117
            return Botan::hex_decode(z.substr(1));
×
1118
         }
×
1119
      } else {
1120
         return Botan::hex_decode(var);
163,786✔
1121
      }
1122
   } catch(std::exception& e) {
×
1123
      std::ostringstream oss;
×
1124
      oss << "Bad input '" << var << "'"
×
1125
          << " for key " << key << " - " << e.what();
×
1126
      throw Test_Error(oss.str());
×
1127
   }
×
1128
}
163,786✔
1129

1130
std::string VarMap::get_opt_str(const std::string& key, const std::string& def_value) const {
14,378✔
1131
   if(auto v = get_var(key)) {
14,378✔
1132
      return *v;
57✔
1133
   } else {
1134
      return def_value;
28,699✔
1135
   }
14,378✔
1136
}
1137

1138
bool VarMap::get_req_bool(const std::string& key) const {
39✔
1139
   const auto var = get_req_str(key);
39✔
1140

1141
   if(var == "true") {
39✔
1142
      return true;
1143
   } else if(var == "false") {
23✔
1144
      return false;
1145
   } else {
1146
      throw Test_Error("Invalid boolean for key '" + key + "' value '" + var + "'");
×
1147
   }
1148
}
39✔
1149

1150
size_t VarMap::get_req_sz(const std::string& key) const {
4,547✔
1151
   return Botan::to_u32bit(get_req_str(key));
4,547✔
1152
}
1153

1154
uint8_t VarMap::get_req_u8(const std::string& key) const {
17✔
1155
   const size_t s = this->get_req_sz(key);
17✔
1156
   if(s > 256) {
17✔
1157
      throw Test_Error("Invalid " + key + " expected uint8_t got " + std::to_string(s));
×
1158
   }
1159
   return static_cast<uint8_t>(s);
17✔
1160
}
1161

1162
uint32_t VarMap::get_req_u32(const std::string& key) const {
14✔
1163
   return static_cast<uint32_t>(get_req_sz(key));
14✔
1164
}
1165

1166
uint64_t VarMap::get_req_u64(const std::string& key) const {
17✔
1167
   const auto var = get_req_str(key);
17✔
1168
   try {
17✔
1169
      return std::stoull(var);
17✔
1170
   } catch(std::exception&) {
×
1171
      throw Test_Error("Invalid u64 value '" + var + "'");
×
1172
   }
×
1173
}
17✔
1174

1175
size_t VarMap::get_opt_sz(const std::string& key, const size_t def_value) const {
31,404✔
1176
   if(auto v = get_var(key)) {
31,404✔
1177
      return Botan::to_u32bit(*v);
12,244✔
1178
   } else {
1179
      return def_value;
1180
   }
31,404✔
1181
}
1182

1183
uint64_t VarMap::get_opt_u64(const std::string& key, const uint64_t def_value) const {
3,538✔
1184
   if(auto v = get_var(key)) {
3,538✔
1185
      try {
641✔
1186
         return std::stoull(*v);
3,538✔
1187
      } catch(std::exception&) {
×
1188
         throw Test_Error("Invalid u64 value '" + *v + "'");
×
1189
      }
×
1190
   } else {
1191
      return def_value;
1192
   }
3,538✔
1193
}
×
1194

1195
std::vector<uint8_t> VarMap::get_opt_bin(const std::string& key) const {
45,893✔
1196
   if(auto v = get_var(key)) {
45,893✔
1197
      try {
16,134✔
1198
         return Botan::hex_decode(*v);
16,134✔
1199
      } catch(std::exception&) {
×
1200
         throw Test_Error("Test invalid hex input '" + *v + "'" + +" for key " + key);
×
1201
      }
×
1202
   } else {
1203
      return {};
29,759✔
1204
   };
45,893✔
1205
}
×
1206

1207
#if defined(BOTAN_HAS_BIGINT)
1208
Botan::BigInt VarMap::get_req_bn(const std::string& key) const {
38,502✔
1209
   const auto var = get_req_str(key);
38,502✔
1210

1211
   try {
38,502✔
1212
      return Botan::BigInt(var);
38,502✔
1213
   } catch(std::exception&) {
×
1214
      throw Test_Error("Test invalid bigint input '" + var + "' for key " + key);
×
1215
   }
×
1216
}
38,502✔
1217

1218
Botan::BigInt VarMap::get_opt_bn(const std::string& key, const Botan::BigInt& def_value) const {
80✔
1219
   if(auto v = get_var(key)) {
80✔
1220
      try {
56✔
1221
         return Botan::BigInt(*v);
56✔
1222
      } catch(std::exception&) {
×
1223
         throw Test_Error("Test invalid bigint input '" + *v + "' for key " + key);
×
1224
      }
×
1225
   } else {
1226
      return def_value;
24✔
1227
   }
80✔
1228
}
×
1229
#endif
1230

1231
class Text_Based_Test::Text_Based_Test_Data {
1232
   public:
1233
      Text_Based_Test_Data(const std::string& data_src,
181✔
1234
                           const std::string& required_keys_str,
1235
                           const std::string& optional_keys_str) :
181✔
1236
            m_data_src(data_src) {
362✔
1237
         if(required_keys_str.empty()) {
181✔
1238
            throw Test_Error("Invalid test spec");
×
1239
         }
1240

1241
         m_required_keys = Botan::split_on(required_keys_str, ',');
181✔
1242
         std::vector<std::string> optional_keys = Botan::split_on(optional_keys_str, ',');
181✔
1243

1244
         m_all_keys.insert(m_required_keys.begin(), m_required_keys.end());
181✔
1245
         m_all_keys.insert(optional_keys.begin(), optional_keys.end());
181✔
1246
         m_output_key = m_required_keys.at(m_required_keys.size() - 1);
181✔
1247
      }
181✔
1248

1249
      std::string get_next_line();
1250

1251
      const std::string& current_source_name() const { return m_cur_src_name; }
×
1252

1253
      bool known_key(const std::string& key) const;
1254

1255
      const std::vector<std::string>& required_keys() const { return m_required_keys; }
48,404✔
1256

1257
      const std::string& output_key() const { return m_output_key; }
156,283✔
1258

1259
      const std::vector<std::string>& cpu_flags() const { return m_cpu_flags; }
48,265✔
1260

1261
      void set_cpu_flags(std::vector<std::string> flags) { m_cpu_flags = std::move(flags); }
21✔
1262

1263
      const std::string& initial_data_src_name() const { return m_data_src; }
181✔
1264

1265
   private:
1266
      std::string m_data_src;
1267
      std::vector<std::string> m_required_keys;
1268
      std::unordered_set<std::string> m_all_keys;
1269
      std::string m_output_key;
1270

1271
      bool m_first = true;
1272
      std::unique_ptr<std::istream> m_cur;
1273
      std::string m_cur_src_name;
1274
      std::deque<std::string> m_srcs;
1275
      std::vector<std::string> m_cpu_flags;
1276
};
1277

1278
Text_Based_Test::Text_Based_Test(const std::string& data_src,
181✔
1279
                                 const std::string& required_keys,
1280
                                 const std::string& optional_keys) :
181✔
1281
      m_data(std::make_unique<Text_Based_Test_Data>(data_src, required_keys, optional_keys)) {}
181✔
1282

1283
Text_Based_Test::~Text_Based_Test() = default;
181✔
1284

1285
std::string Text_Based_Test::Text_Based_Test_Data::get_next_line() {
157,290✔
1286
   while(true) {
157,548✔
1287
      if(m_cur == nullptr || m_cur->good() == false) {
157,548✔
1288
         if(m_srcs.empty()) {
450✔
1289
            if(m_first) {
362✔
1290
               if(m_data_src.ends_with(".vec")) {
181✔
1291
                  m_srcs.push_back(Test::data_file(m_data_src));
338✔
1292
               } else {
1293
                  const auto fs = Test::files_in_data_dir(m_data_src);
12✔
1294
                  m_srcs.assign(fs.begin(), fs.end());
12✔
1295
                  if(m_srcs.empty()) {
12✔
1296
                     throw Test_Error("Error reading test data dir " + m_data_src);
×
1297
                  }
1298
               }
12✔
1299

1300
               m_first = false;
181✔
1301
            } else {
1302
               return "";  // done
181✔
1303
            }
1304
         }
1305

1306
         m_cur = std::make_unique<std::ifstream>(m_srcs[0]);
357✔
1307
         m_cur_src_name = m_srcs[0];
269✔
1308

1309
#if defined(BOTAN_HAS_CPUID)
1310
         // Reinit cpuid on new file if needed
1311
         if(m_cpu_flags.empty() == false) {
269✔
1312
            m_cpu_flags.clear();
19✔
1313
            Botan::CPUID::initialize();
19✔
1314
         }
1315
#endif
1316

1317
         if(!m_cur->good()) {
269✔
1318
            throw Test_Error("Could not open input file '" + m_cur_src_name);
×
1319
         }
1320

1321
         m_srcs.pop_front();
269✔
1322
      }
1323

1324
      while(m_cur->good()) {
227,971✔
1325
         std::string line;
227,713✔
1326
         std::getline(*m_cur, line);
227,713✔
1327

1328
         if(line.empty()) {
227,713✔
1329
            continue;
55,323✔
1330
         }
1331

1332
         if(line[0] == '#') {
172,390✔
1333
            if(line.starts_with("#test ")) {
15,302✔
1334
               return line;
21✔
1335
            } else {
1336
               continue;
15,281✔
1337
            }
1338
         }
1339

1340
         return line;
157,088✔
1341
      }
227,713✔
1342
   }
1343
}
1344

1345
bool Text_Based_Test::Text_Based_Test_Data::known_key(const std::string& key) const {
156,283✔
1346
   return m_all_keys.contains(key);
156,283✔
1347
}
1348

1349
namespace {
1350

1351
// strips leading and trailing but not internal whitespace
1352
std::string strip_ws(const std::string& in) {
312,566✔
1353
   const char* whitespace = " ";
312,566✔
1354

1355
   const auto first_c = in.find_first_not_of(whitespace);
312,566✔
1356
   if(first_c == std::string::npos) {
312,566✔
1357
      return "";
1,034✔
1358
   }
1359

1360
   const auto last_c = in.find_last_not_of(whitespace);
311,532✔
1361

1362
   return in.substr(first_c, last_c - first_c + 1);
311,532✔
1363
}
1364

1365
std::vector<std::string> parse_cpuid_bits(const std::vector<std::string>& tok) {
21✔
1366
   std::vector<std::string> bits;
21✔
1367

1368
#if defined(BOTAN_HAS_CPUID)
1369
   for(size_t i = 1; i < tok.size(); ++i) {
106✔
1370
      if(auto bit = Botan::CPUID::bit_from_string(tok[i])) {
85✔
1371
         bits.push_back(bit->to_string());
98✔
1372
      }
1373
   }
1374
#else
1375
   BOTAN_UNUSED(tok);
1376
#endif
1377

1378
   return bits;
21✔
1379
}
×
1380

1381
}  // namespace
1382

1383
bool Text_Based_Test::skip_this_test(const std::string& /*header*/, const VarMap& /*vars*/) {
32,625✔
1384
   return false;
32,625✔
1385
}
1386

1387
std::vector<Test::Result> Text_Based_Test::run() {
181✔
1388
   std::vector<Test::Result> results;
181✔
1389

1390
   std::string header;
181✔
1391
   std::string header_or_name = m_data->initial_data_src_name();
181✔
1392
   VarMap vars;
181✔
1393
   size_t test_cnt = 0;
181✔
1394

1395
   while(true) {
157,290✔
1396
      const std::string line = m_data->get_next_line();
157,290✔
1397
      if(line.empty()) {
157,290✔
1398
         // EOF
1399
         break;
1400
      }
1401

1402
      if(line.starts_with("#test ")) {
157,109✔
1403
         std::vector<std::string> pragma_tokens = Botan::split_on(line.substr(6), ' ');
21✔
1404

1405
         if(pragma_tokens.empty()) {
21✔
1406
            throw Test_Error("Empty pragma found in " + m_data->current_source_name());
×
1407
         }
1408

1409
         if(pragma_tokens[0] != "cpuid") {
21✔
1410
            throw Test_Error("Unknown test pragma '" + line + "' in " + m_data->current_source_name());
×
1411
         }
1412

1413
         if(!Test_Registry::instance().needs_serialization(this->test_name())) {
42✔
1414
            throw Test_Error(Botan::fmt("'{}' used cpuid control but is not serialized", this->test_name()));
×
1415
         }
1416

1417
         m_data->set_cpu_flags(parse_cpuid_bits(pragma_tokens));
42✔
1418

1419
         continue;
21✔
1420
      } else if(line[0] == '#') {
157,109✔
1421
         throw Test_Error("Unknown test pragma '" + line + "' in " + m_data->current_source_name());
×
1422
      }
1423

1424
      if(line[0] == '[' && line[line.size() - 1] == ']') {
157,088✔
1425
         header = line.substr(1, line.size() - 2);
805✔
1426
         header_or_name = header;
805✔
1427
         test_cnt = 0;
805✔
1428
         vars.clear();
805✔
1429
         continue;
805✔
1430
      }
1431

1432
      const std::string test_id = "test " + std::to_string(test_cnt);
312,566✔
1433

1434
      auto equal_i = line.find_first_of('=');
156,283✔
1435

1436
      if(equal_i == std::string::npos) {
156,283✔
1437
         results.push_back(Test::Result::Failure(header_or_name, "invalid input '" + line + "'"));
×
1438
         continue;
×
1439
      }
1440

1441
      const std::string key = strip_ws(std::string(line.begin(), line.begin() + equal_i - 1));
312,566✔
1442
      const std::string val = strip_ws(std::string(line.begin() + equal_i + 1, line.end()));
312,566✔
1443

1444
      if(!m_data->known_key(key)) {
156,283✔
1445
         auto r = Test::Result::Failure(header_or_name, Botan::fmt("{} failed unknown key {}", test_id, key));
×
1446
         results.push_back(r);
×
1447
      }
×
1448

1449
      vars.add(key, val);
156,283✔
1450

1451
      if(key == m_data->output_key()) {
156,283✔
1452
         try {
48,404✔
1453
            for(const auto& req_key : m_data->required_keys()) {
245,618✔
1454
               if(!vars.has_key(req_key)) {
197,214✔
1455
                  auto r =
×
1456
                     Test::Result::Failure(header_or_name, Botan::fmt("{} missing required key {}", test_id, req_key));
×
1457
                  results.push_back(r);
×
1458
               }
×
1459
            }
1460

1461
            if(skip_this_test(header, vars)) {
48,404✔
1462
               continue;
139✔
1463
            }
1464

1465
            ++test_cnt;
48,265✔
1466

1467
            const uint64_t start = Test::timestamp();
48,265✔
1468

1469
            Test::Result result = run_one_test(header, vars);
48,265✔
1470
#if defined(BOTAN_HAS_CPUID)
1471
            if(!m_data->cpu_flags().empty()) {
48,265✔
1472
               for(const auto& cpuid_str : m_data->cpu_flags()) {
30,651✔
1473
                  if(const auto bit = Botan::CPUID::Feature::from_string(cpuid_str)) {
21,698✔
1474
                     if(Botan::CPUID::has(*bit)) {
21,698✔
1475
                        Botan::CPUID::clear_cpuid_bit(*bit);
16,586✔
1476
                        // now re-run the test
1477
                        result.merge(run_one_test(header, vars));
16,586✔
1478
                     }
1479
                  }
1480
               }
1481
               Botan::CPUID::initialize();
8,953✔
1482
            }
1483
#endif
1484
            result.set_ns_consumed(Test::timestamp() - start);
48,265✔
1485

1486
            if(result.tests_failed() > 0) {
48,265✔
1487
               std::ostringstream oss;
×
1488
               oss << "Test # " << test_cnt << " ";
×
1489
               if(!header.empty()) {
×
1490
                  oss << header << " ";
×
1491
               }
1492
               oss << "failed ";
×
1493

1494
               for(const auto& k : m_data->required_keys()) {
×
1495
                  oss << k << "=" << vars.get_req_str(k) << " ";
×
1496
               }
1497

1498
               result.test_note(oss.str());
×
1499
            }
×
1500
            results.push_back(result);
48,265✔
1501
         } catch(std::exception& e) {
48,265✔
1502
            std::ostringstream oss;
×
1503
            oss << "Test # " << test_cnt << " ";
×
1504
            if(!header.empty()) {
×
1505
               oss << header << " ";
×
1506
            }
1507

1508
            for(const auto& k : m_data->required_keys()) {
×
1509
               oss << k << "=" << vars.get_req_str(k) << " ";
×
1510
            }
1511

1512
            oss << "failed with exception '" << e.what() << "'";
×
1513

1514
            results.push_back(Test::Result::Failure(header_or_name, oss.str()));
×
1515
         }
×
1516

1517
         if(clear_between_callbacks()) {
48,265✔
1518
            vars.clear();
189,636✔
1519
         }
1520
      }
1521
   }
157,387✔
1522

1523
   if(results.empty()) {
181✔
1524
      return results;
1525
   }
1526

1527
   try {
181✔
1528
      std::vector<Test::Result> final_tests = run_final_tests();
181✔
1529
      results.insert(results.end(), final_tests.begin(), final_tests.end());
181✔
1530
   } catch(std::exception& e) {
181✔
1531
      results.push_back(Test::Result::Failure(header_or_name, "run_final_tests exception " + std::string(e.what())));
×
1532
   }
×
1533

1534
   return results;
1535
}
181✔
1536

1537
}  // namespace Botan_Tests
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