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randombit / botan / 13481916413

23 Feb 2025 08:06AM UTC coverage: 91.694% (+0.008%) from 91.686%
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Merge pull request #4704 from randombit/jack/ffi-tidy

FFI cleanups

95826 of 104506 relevant lines covered (91.69%)

11201288.5 hits per line

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96.58
/src/tests/test_ffi.cpp
1
/*
2
* (C) 2015 Jack Lloyd
3
* (C) 2016 René Korthaus
4
* (C) 2018 Ribose Inc, Krzysztof Kwiatkowski
5
* (C) 2018 Ribose Inc
6
*
7
* Botan is released under the Simplified BSD License (see license.txt)
8
*/
9

10
#define BOTAN_NO_DEPRECATED_WARNINGS
11

12
#include "tests.h"
13
#include <botan/version.h>
14

15
#if defined(BOTAN_HAS_FFI)
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   #include <botan/ffi.h>
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   #include <botan/hex.h>
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   #include <botan/internal/fmt.h>
19
   #include <botan/internal/loadstor.h>
20
   #include <botan/internal/stl_util.h>
21
   #include <set>
22
#endif
23

24
#if defined(BOTAN_HAS_TPM2)
25
   #include <tss2/tss2_esys.h>
26
   #include <tss2/tss2_tctildr.h>
27
#endif
28

29
namespace Botan_Tests {
30

31
namespace {
32

33
#if defined(BOTAN_HAS_FFI)
34

35
   // NOLINTNEXTLINE(*-macro-usage)
36
   #define _TEST_FFI_STR_HELPER(x) #x
37
   // NOLINTNEXTLINE(*-macro-usage)
38
   #define _TEST_FFI_STR(x) _TEST_FFI_STR_HELPER(x)
39
   // NOLINTNEXTLINE(*-macro-usage)
40
   #define _TEST_FFI_SOURCE_LOCATION(func, file, line) (func " invoked at " file ":" _TEST_FFI_STR(line))
41

42
   // NOLINTNEXTLINE(*-macro-usage)
43
   #define TEST_FFI_OK(func, args) result.test_rc_ok(_TEST_FFI_SOURCE_LOCATION(#func, __FILE__, __LINE__), func args)
44
   // NOLINTNEXTLINE(*-macro-usage)
45
   #define TEST_FFI_INIT(func, args) \
46
      result.test_rc_init(_TEST_FFI_SOURCE_LOCATION(#func, __FILE__, __LINE__), func args)
47
   // NOLINTNEXTLINE(*-macro-usage)
48
   #define TEST_FFI_FAIL(msg, func, args) \
49
      result.test_rc_fail(_TEST_FFI_SOURCE_LOCATION(#func, __FILE__, __LINE__), msg, func args)
50
   // NOLINTNEXTLINE(*-macro-usage)
51
   #define TEST_FFI_RC(rc, func, args) \
52
      result.test_rc(_TEST_FFI_SOURCE_LOCATION(#func, __FILE__, __LINE__), rc, func args)
53

54
   // NOLINTNEXTLINE(*-macro-usage)
55
   #define REQUIRE_FFI_OK(func, args)                           \
56
      if(!TEST_FFI_OK(func, args)) {                            \
57
         result.test_note("Exiting test early due to failure"); \
58
         return;                                                \
59
      }
60

61
class FFI_Test : public Test {
49✔
62
   public:
63
      std::vector<Test::Result> run() override {
49✔
64
         Test::Result result(this->name());
49✔
65

66
         botan_rng_t rng;
49✔
67
         if(botan_rng_init(&rng, "system") != 0) {
49✔
68
            result.test_failure("Failed to init RNG");
×
69
            return {result};
×
70
         }
71

72
         result.start_timer();
49✔
73
         ffi_test(result, rng);
49✔
74
         result.end_timer();
49✔
75

76
         botan_rng_destroy(rng);
49✔
77

78
         return {result};
98✔
79
      }
98✔
80

81
   private:
82
      virtual std::string name() const = 0;
83
      virtual void ffi_test(Test::Result& result, botan_rng_t rng) = 0;
84
};
85

86
void ffi_test_pubkey_export(Test::Result& result, botan_pubkey_t pub, botan_privkey_t priv, botan_rng_t rng) {
11✔
87
   // export public key
88
   size_t pubkey_len = 0;
11✔
89
   TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
11✔
90
               botan_pubkey_export,
91
               (pub, nullptr, &pubkey_len, BOTAN_PRIVKEY_EXPORT_FLAG_DER));
92

93
   std::vector<uint8_t> pubkey(pubkey_len);
11✔
94
   TEST_FFI_OK(botan_pubkey_export, (pub, pubkey.data(), &pubkey_len, BOTAN_PRIVKEY_EXPORT_FLAG_DER));
11✔
95

96
   pubkey_len = 0;
11✔
97
   TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
11✔
98
               botan_pubkey_export,
99
               (pub, nullptr, &pubkey_len, BOTAN_PRIVKEY_EXPORT_FLAG_PEM));
100

101
   pubkey.resize(pubkey_len);
11✔
102
   TEST_FFI_OK(botan_pubkey_export, (pub, pubkey.data(), &pubkey_len, BOTAN_PRIVKEY_EXPORT_FLAG_PEM));
11✔
103

104
   // reimport exported public key
105
   botan_pubkey_t pub_copy;
11✔
106
   TEST_FFI_OK(botan_pubkey_load, (&pub_copy, pubkey.data(), pubkey_len));
11✔
107
   TEST_FFI_OK(botan_pubkey_check_key, (pub_copy, rng, 0));
11✔
108
   TEST_FFI_OK(botan_pubkey_destroy, (pub_copy));
11✔
109

110
   // export private key
111
   std::vector<uint8_t> privkey;
11✔
112
   size_t privkey_len = 0;
11✔
113

114
   // call with nullptr to query the length
115
   TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
11✔
116
               botan_privkey_export,
117
               (priv, nullptr, &privkey_len, BOTAN_PRIVKEY_EXPORT_FLAG_DER));
118

119
   privkey.resize(privkey_len);
11✔
120
   privkey_len = privkey.size();  // set buffer size
11✔
121

122
   TEST_FFI_OK(botan_privkey_export, (priv, privkey.data(), &privkey_len, BOTAN_PRIVKEY_EXPORT_FLAG_DER));
11✔
123

124
   privkey.resize(privkey_len);
11✔
125

126
   result.test_gte("Reasonable size", privkey.size(), 32);
11✔
127

128
   // reimport exported private key
129
   botan_privkey_t copy;
11✔
130
   TEST_FFI_OK(botan_privkey_load, (&copy, rng, privkey.data(), privkey.size(), nullptr));
11✔
131
   botan_privkey_destroy(copy);
11✔
132

133
   // Now again for PEM
134
   privkey_len = 0;
11✔
135

136
   TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
11✔
137
               botan_privkey_export,
138
               (priv, nullptr, &privkey_len, BOTAN_PRIVKEY_EXPORT_FLAG_PEM));
139

140
   privkey.resize(privkey_len);
11✔
141
   TEST_FFI_OK(botan_privkey_export, (priv, privkey.data(), &privkey_len, BOTAN_PRIVKEY_EXPORT_FLAG_PEM));
11✔
142

143
   TEST_FFI_OK(botan_privkey_load, (&copy, rng, privkey.data(), privkey.size(), nullptr));
11✔
144
   botan_privkey_destroy(copy);
11✔
145

146
   #if defined(BOTAN_HAS_AES) && defined(BOTAN_HAS_PKCS5_PBES2)
147
   const size_t pbkdf_iter = 1000;
11✔
148

149
   // export private key encrypted
150
   privkey_len = 0;
11✔
151
   TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
11✔
152
               botan_privkey_export_encrypted_pbkdf_iter,
153
               (priv, nullptr, &privkey_len, rng, "password", pbkdf_iter, "", "", BOTAN_PRIVKEY_EXPORT_FLAG_DER));
154

155
   privkey.resize(privkey_len);
11✔
156
   privkey_len = privkey.size();
11✔
157

158
   TEST_FFI_OK(
11✔
159
      botan_privkey_export_encrypted_pbkdf_iter,
160
      (priv, privkey.data(), &privkey_len, rng, "password", pbkdf_iter, "", "", BOTAN_PRIVKEY_EXPORT_FLAG_DER));
161

162
   // reimport encrypted private key
163
   botan_privkey_load(&copy, rng, privkey.data(), privkey.size(), "password");
11✔
164
   botan_privkey_destroy(copy);
11✔
165

166
   privkey_len = 0;
11✔
167
   TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
11✔
168
               botan_privkey_export_encrypted_pbkdf_iter,
169
               (priv, nullptr, &privkey_len, rng, "password", pbkdf_iter, "", "", BOTAN_PRIVKEY_EXPORT_FLAG_PEM));
170

171
   privkey.resize(privkey_len);
11✔
172
   TEST_FFI_OK(
11✔
173
      botan_privkey_export_encrypted_pbkdf_iter,
174
      (priv, privkey.data(), &privkey_len, rng, "password", pbkdf_iter, "", "", BOTAN_PRIVKEY_EXPORT_FLAG_PEM));
175

176
   privkey.resize(privkey_len * 2);
11✔
177
   privkey_len = privkey.size();
11✔
178
   const uint32_t pbkdf_msec = 100;
11✔
179
   size_t pbkdf_iters_out = 0;
11✔
180

181
      #if defined(BOTAN_HAS_SCRYPT)
182
   const std::string pbe_hash = "Scrypt";
11✔
183
      #else
184
   const std::string pbe_hash = "SHA-512";
185
      #endif
186

187
      #if defined(BOTAN_HAS_AEAD_GCM)
188
   const std::string pbe_cipher = "AES-256/GCM";
11✔
189
      #else
190
   const std::string pbe_cipher = "AES-256/CBC";
191
      #endif
192

193
   TEST_FFI_OK(botan_privkey_export_encrypted_pbkdf_msec,
11✔
194
               (priv,
195
                privkey.data(),
196
                &privkey_len,
197
                rng,
198
                "password",
199
                pbkdf_msec,
200
                &pbkdf_iters_out,
201
                pbe_cipher.c_str(),
202
                pbe_hash.c_str(),
203
                0));
204

205
   if(pbe_hash == "Scrypt") {
11✔
206
      result.test_eq("Scrypt iters set to zero in this API", pbkdf_iters_out, 0);
22✔
207
   } else {
208
      // PBKDF2 currently always rounds to multiple of 2000
209
      result.test_eq("Expected PBKDF2 iters", pbkdf_iters_out % 2000, 0);
×
210
   }
211

212
   privkey.resize(privkey_len);
11✔
213

214
   TEST_FFI_OK(botan_privkey_load, (&copy, rng, privkey.data(), privkey.size(), "password"));
11✔
215
   botan_privkey_destroy(copy);
11✔
216
   #endif
217

218
   // calculate fingerprint
219
   size_t strength = 0;
11✔
220
   TEST_FFI_OK(botan_pubkey_estimated_strength, (pub, &strength));
11✔
221
   result.test_gte("estimated strength", strength, 1);
11✔
222

223
   size_t fingerprint_len = 0;
11✔
224
   TEST_FFI_RC(
11✔
225
      BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE, botan_pubkey_fingerprint, (pub, "SHA-256", nullptr, &fingerprint_len));
226

227
   std::vector<uint8_t> fingerprint(fingerprint_len);
11✔
228
   TEST_FFI_OK(botan_pubkey_fingerprint, (pub, "SHA-256", fingerprint.data(), &fingerprint_len));
22✔
229
}
33✔
230

231
class FFI_Utils_Test final : public FFI_Test {
×
232
   public:
233
      std::string name() const override { return "FFI Utils"; }
1✔
234

235
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
236
         result.test_is_eq("FFI API version macro", uint32_t(BOTAN_FFI_API_VERSION), uint32_t(BOTAN_HAS_FFI));
1✔
237
         result.test_is_eq("FFI API version function", botan_ffi_api_version(), uint32_t(BOTAN_HAS_FFI));
1✔
238
         result.test_is_eq("Major version", botan_version_major(), Botan::version_major());
1✔
239
         result.test_is_eq("Minor version", botan_version_minor(), Botan::version_minor());
1✔
240
         result.test_is_eq("Patch version", botan_version_patch(), Botan::version_patch());
1✔
241
         result.test_is_eq("Botan version", botan_version_string(), Botan::version_cstr());
1✔
242
         result.test_is_eq("Botan version datestamp", botan_version_datestamp(), Botan::version_datestamp());
1✔
243
         result.test_is_eq("FFI supports its own version", botan_ffi_supports_api(botan_ffi_api_version()), 0);
1✔
244

245
         result.test_is_eq("FFI compile time time var matches botan_ffi_api_version",
1✔
246
                           botan_ffi_api_version(),
1✔
247
                           uint32_t(BOTAN_FFI_API_VERSION));
1✔
248

249
         result.test_is_eq("FFI supports 2.0 version", botan_ffi_supports_api(20150515), 0);
1✔
250
         result.test_is_eq("FFI supports 2.1 version", botan_ffi_supports_api(20170327), 0);
1✔
251
         result.test_is_eq("FFI supports 2.3 version", botan_ffi_supports_api(20170815), 0);
1✔
252
         result.test_is_eq("FFI supports 2.8 version", botan_ffi_supports_api(20180713), 0);
1✔
253

254
         result.test_is_eq("FFI doesn't support bogus version", botan_ffi_supports_api(20160229), -1);
1✔
255

256
         const std::vector<uint8_t> mem1 = {0xFF, 0xAA, 0xFF};
1✔
257
         const std::vector<uint8_t> mem2 = {0xFF, 0xA9, 0xFF};
1✔
258

259
         TEST_FFI_RC(0, botan_constant_time_compare, (mem1.data(), mem1.data(), mem1.size()));
1✔
260
         TEST_FFI_RC(-1, botan_constant_time_compare, (mem1.data(), mem2.data(), mem1.size()));
1✔
261

262
         std::vector<uint8_t> to_zero = {0xFF, 0xA0};
1✔
263
         TEST_FFI_OK(botan_scrub_mem, (to_zero.data(), to_zero.size()));
1✔
264
         result.confirm("scrub_memory zeros", to_zero[0] == 0 && to_zero[1] == 0);
2✔
265

266
         const std::vector<uint8_t> bin = {0xAA, 0xDE, 0x01};
1✔
267

268
         std::string outstr;
1✔
269
         std::vector<uint8_t> outbuf;
1✔
270

271
         outstr.resize(2 * bin.size());
1✔
272
         TEST_FFI_OK(botan_hex_encode, (bin.data(), bin.size(), &outstr[0], 0));
1✔
273
         result.test_eq("uppercase hex", outstr, "AADE01");
2✔
274

275
         TEST_FFI_OK(botan_hex_encode, (bin.data(), bin.size(), &outstr[0], BOTAN_FFI_HEX_LOWER_CASE));
1✔
276
         result.test_eq("lowercase hex", outstr, "aade01");
2✔
277
      }
4✔
278
};
279

280
class FFI_RNG_Test final : public FFI_Test {
×
281
   public:
282
      std::string name() const override { return "FFI RNG"; }
1✔
283

284
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
285
         // RNG test and initialization
286
         botan_rng_t rng;
1✔
287
         botan_rng_t system_rng;
1✔
288
         botan_rng_t hwrng_rng = nullptr;
1✔
289
         botan_rng_t null_rng;
1✔
290
         botan_rng_t custom_rng;
1✔
291
         botan_rng_t tpm2_rng = nullptr;
1✔
292

293
         botan_tpm2_ctx_t tpm2_ctx = nullptr;
1✔
294
         botan_tpm2_session_t tpm2_session = nullptr;
1✔
295

296
         TEST_FFI_FAIL("invalid rng type", botan_rng_init, (&rng, "invalid_type"));
2✔
297

298
         REQUIRE_FFI_OK(botan_rng_init, (&system_rng, "system"));
1✔
299
         REQUIRE_FFI_OK(botan_rng_init, (&null_rng, "null"));
1✔
300

301
         int rc = botan_rng_init(&hwrng_rng, "hwrng");
1✔
302
         result.confirm("Either success or not implemented", rc == 0 || rc == BOTAN_FFI_ERROR_NOT_IMPLEMENTED);
2✔
303

304
         std::vector<uint8_t> outbuf(512);
1✔
305

306
         rc = botan_rng_init(&rng, "user-threadsafe");
1✔
307
         result.confirm("Either success or not implemented", rc == 0 || rc == BOTAN_FFI_ERROR_NOT_IMPLEMENTED);
2✔
308

309
         if(rc != 0) {
1✔
310
            REQUIRE_FFI_OK(botan_rng_init, (&rng, "user"));
×
311
            REQUIRE_FFI_OK(botan_rng_destroy, (rng));
×
312
         }
313

314
         if(rc == 0) {
1✔
315
            TEST_FFI_OK(botan_rng_get, (rng, outbuf.data(), outbuf.size()));
1✔
316
            TEST_FFI_OK(botan_rng_reseed, (rng, 256));
1✔
317

318
            TEST_FFI_RC(BOTAN_FFI_ERROR_INVALID_OBJECT_STATE, botan_rng_reseed_from_rng, (rng, null_rng, 256));
1✔
319
            if(hwrng_rng) {
1✔
320
               TEST_FFI_OK(botan_rng_reseed_from_rng, (rng, hwrng_rng, 256));
2✔
321
            }
322
            TEST_FFI_RC(BOTAN_FFI_ERROR_INVALID_OBJECT_STATE, botan_rng_get, (null_rng, outbuf.data(), outbuf.size()));
1✔
323

324
            TEST_FFI_OK(botan_rng_destroy, (rng));
2✔
325
         }
326

327
         if(TEST_FFI_OK(botan_rng_init, (&rng, "user"))) {
1✔
328
            TEST_FFI_OK(botan_rng_get, (rng, outbuf.data(), outbuf.size()));
1✔
329
            TEST_FFI_OK(botan_rng_reseed, (rng, 256));
1✔
330

331
            TEST_FFI_OK(botan_rng_reseed_from_rng, (rng, system_rng, 256));
1✔
332

333
            uint8_t not_really_entropy[32] = {0};
1✔
334
            TEST_FFI_OK(botan_rng_add_entropy, (rng, not_really_entropy, 32));
2✔
335
         }
336

337
         uint8_t system_rng_buf[4096];
1✔
338
         TEST_FFI_OK(botan_system_rng_get, (system_rng_buf, sizeof(system_rng_buf)));
1✔
339

340
         size_t cb_counter = 0;
1✔
341

342
         auto custom_get_cb = +[](void* context, uint8_t* out, size_t out_len) -> int {
1✔
343
            for(size_t i = 0; i != out_len; ++i) {
344
               out[i] = 0x12;
345
            }
346
            (*(static_cast<size_t*>(context)))++;
347
            return 0;
348
         };
349

350
         auto custom_add_entropy_cb = +[](void* context, const uint8_t input[], size_t length) -> int {
1✔
351
            BOTAN_UNUSED(input, length);
352
            (*(static_cast<size_t*>(context)))++;
353
            return 0;
354
         };
355

356
         auto custom_destroy_cb = +[](void* context) -> void { (*(static_cast<size_t*>(context)))++; };
1✔
357

358
         if(TEST_FFI_OK(
1✔
359
               botan_rng_init_custom,
360
               (&custom_rng, "custom rng", &cb_counter, custom_get_cb, custom_add_entropy_cb, custom_destroy_cb))) {
361
            Botan::clear_mem(outbuf.data(), outbuf.size());
1✔
362
            TEST_FFI_OK(botan_rng_get, (custom_rng, outbuf.data(), outbuf.size()));
1✔
363
            result.test_eq("custom_get_cb called", cb_counter, 1);
1✔
364
            std::vector<uint8_t> pattern(outbuf.size(), 0x12);
1✔
365
            result.test_eq("custom_get_cb returned bytes", pattern, outbuf);
2✔
366

367
            TEST_FFI_OK(botan_rng_reseed, (custom_rng, 256));
1✔
368
            result.test_eq("custom_add_entropy_cb called", cb_counter, 2);
1✔
369

370
            TEST_FFI_OK(botan_rng_reseed_from_rng, (custom_rng, system_rng, 256));
1✔
371
            result.test_eq("custom_add_entropy_cb called", cb_counter, 3);
1✔
372

373
            uint8_t not_really_entropy[32] = {0};
1✔
374
            TEST_FFI_OK(botan_rng_add_entropy, (custom_rng, not_really_entropy, 32));
1✔
375
            result.test_eq("custom_add_entropy_cb called", cb_counter, 4);
1✔
376

377
            TEST_FFI_OK(botan_rng_destroy, (custom_rng));
1✔
378
            result.test_eq("custom_destroy_cb called", cb_counter, 5);
2✔
379
         }
1✔
380

381
   #ifdef BOTAN_HAS_JITTER_RNG
382
         botan_rng_t jitter_rng;
1✔
383
         if(TEST_FFI_OK(botan_rng_init, (&jitter_rng, "jitter"))) {
1✔
384
            std::vector<uint8_t> buf(256);
1✔
385
            TEST_FFI_OK(botan_rng_get, (jitter_rng, outbuf.data(), buf.size()));
1✔
386
            TEST_FFI_OK(botan_rng_destroy, (jitter_rng));
2✔
387
         }
1✔
388
   #endif
389

390
         const auto tcti_name = Test::options().tpm2_tcti_name().value_or("");
1✔
391
         const auto tcti_conf = Test::options().tpm2_tcti_conf().value_or("");
1✔
392
         if(tcti_name.empty() || tcti_name == "disabled") {
1✔
393
            result.test_note("TPM2 tests are disabled.");
×
394
         } else {
395
            auto tpm2_test_rng = [&](botan_tpm2_ctx_t tpm2_context) {
3✔
396
               // Create and use an RNG without a TPM2 session
397
               // (communication between application and TPM won't be encrypted)
398
               if(TEST_FFI_INIT(botan_tpm2_rng_init, (&tpm2_rng, tpm2_context, nullptr, nullptr, nullptr))) {
2✔
399
                  Botan::clear_mem(outbuf.data(), outbuf.size());
2✔
400

401
                  TEST_FFI_OK(botan_rng_get, (tpm2_rng, outbuf.data(), outbuf.size()));
2✔
402
                  TEST_FFI_OK(botan_rng_reseed, (tpm2_rng, 256));
2✔
403

404
                  TEST_FFI_OK(botan_rng_reseed_from_rng, (tpm2_rng, system_rng, 256));
2✔
405

406
                  uint8_t not_really_entropy[32] = {0};
2✔
407
                  TEST_FFI_OK(botan_rng_add_entropy, (tpm2_rng, not_really_entropy, 32));
2✔
408
                  TEST_FFI_OK(botan_rng_destroy, (tpm2_rng));
4✔
409
               }
410

411
               // Create an anonymous TPM2 session
412
               if(TEST_FFI_INIT(botan_tpm2_unauthenticated_session_init, (&tpm2_session, tpm2_context))) {
2✔
413
                  // Create and use an RNG with an anonymous TPM2 session
414
                  // (communication between application and TPM will be encrypted)
415
                  if(TEST_FFI_INIT(botan_tpm2_rng_init, (&tpm2_rng, tpm2_context, tpm2_session, nullptr, nullptr))) {
2✔
416
                     Botan::clear_mem(outbuf.data(), outbuf.size());
2✔
417

418
                     TEST_FFI_OK(botan_rng_get, (tpm2_rng, outbuf.data(), outbuf.size()));
2✔
419
                     TEST_FFI_OK(botan_rng_reseed, (tpm2_rng, 256));
2✔
420

421
                     TEST_FFI_OK(botan_rng_reseed_from_rng, (tpm2_rng, system_rng, 256));
2✔
422

423
                     uint8_t not_really_entropy[32] = {0};
2✔
424
                     TEST_FFI_OK(botan_rng_add_entropy, (tpm2_rng, not_really_entropy, 32));
2✔
425
                     TEST_FFI_OK(botan_rng_destroy, (tpm2_rng));
4✔
426
                  }
427

428
                  TEST_FFI_OK(botan_tpm2_session_destroy, (tpm2_session));
4✔
429
               }
430
            };
2✔
431

432
            if(TEST_FFI_INIT(botan_tpm2_ctx_init_ex, (&tpm2_ctx, tcti_name.c_str(), tcti_conf.c_str()))) {
1✔
433
               if(botan_tpm2_supports_crypto_backend() == 1) {
1✔
434
                  TEST_FFI_OK(botan_tpm2_ctx_enable_crypto_backend, (tpm2_ctx, system_rng));
1✔
435
                  result.test_note("TPM2 crypto backend enabled");
2✔
436
               } else {
437
                  result.test_note("TPM2 crypto backend not supported");
×
438
               }
439

440
               tpm2_test_rng(tpm2_ctx);
1✔
441
               TEST_FFI_OK(botan_tpm2_ctx_destroy, (tpm2_ctx));
2✔
442
            }
443

444
   #if defined(BOTAN_HAS_TPM2)
445
            TSS2_TCTI_CONTEXT* tcti_ctx;
1✔
446
            ESYS_CONTEXT* esys_ctx;
1✔
447

448
            if(TEST_FFI_INIT(Tss2_TctiLdr_Initialize_Ex, (tcti_name.c_str(), tcti_conf.c_str(), &tcti_ctx))) {
1✔
449
               if(TEST_FFI_INIT(Esys_Initialize, (&esys_ctx, tcti_ctx, nullptr /* ABI version */))) {
1✔
450
                  botan_tpm2_crypto_backend_state_t cbs = nullptr;
1✔
451

452
                  // enable the botan-based TSS2 crypto backend on a bare ESYS_CONTEXT
453
                  if(botan_tpm2_supports_crypto_backend() == 1) {
1✔
454
                     TEST_FFI_OK(botan_tpm2_enable_crypto_backend, (&cbs, esys_ctx, system_rng));
1✔
455
                     result.test_note("TPM2 crypto backend enabled");
2✔
456
                  } else {
457
                     result.test_note("TPM2 crypto backend not supported");
×
458
                  }
459

460
                  // initialize the Botan TPM2 FFI wrapper from the bare ESYS_CONTEXT
461
                  if(TEST_FFI_INIT(botan_tpm2_ctx_from_esys, (&tpm2_ctx, esys_ctx))) {
1✔
462
                     tpm2_test_rng(tpm2_ctx);
1✔
463
                     TEST_FFI_OK(botan_tpm2_ctx_destroy, (tpm2_ctx));
2✔
464
                  }
465

466
                  if(cbs != nullptr) {
1✔
467
                     TEST_FFI_OK(botan_tpm2_crypto_backend_state_destroy, (cbs));
2✔
468
                  }
469

470
                  Esys_Finalize(&esys_ctx);
1✔
471
               }
472
               Tss2_TctiLdr_Finalize(&tcti_ctx);
1✔
473
            }
474
   #endif
475
         }
476

477
         TEST_FFI_OK(botan_rng_destroy, (rng));
1✔
478
         TEST_FFI_OK(botan_rng_destroy, (null_rng));
1✔
479
         TEST_FFI_OK(botan_rng_destroy, (system_rng));
1✔
480
         TEST_FFI_OK(botan_rng_destroy, (hwrng_rng));
2✔
481
      }
2✔
482
};
483

484
class FFI_RSA_Cert_Test final : public FFI_Test {
×
485
   public:
486
      std::string name() const override { return "FFI RSA cert"; }
1✔
487

488
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
489
         botan_x509_cert_t cert;
1✔
490
         if(TEST_FFI_INIT(botan_x509_cert_load_file, (&cert, Test::data_file("x509/ocsp/randombit.pem").c_str()))) {
1✔
491
            TEST_FFI_RC(0, botan_x509_cert_hostname_match, (cert, "randombit.net"));
1✔
492
            TEST_FFI_RC(0, botan_x509_cert_hostname_match, (cert, "www.randombit.net"));
1✔
493
            TEST_FFI_RC(-1, botan_x509_cert_hostname_match, (cert, "*.randombit.net"));
1✔
494
            TEST_FFI_RC(-1, botan_x509_cert_hostname_match, (cert, "flub.randombit.net"));
1✔
495
            TEST_FFI_RC(-1, botan_x509_cert_hostname_match, (cert, "randombit.net.com"));
1✔
496

497
            botan_x509_cert_t copy;
1✔
498
            TEST_FFI_OK(botan_x509_cert_dup, (&copy, cert));
1✔
499
            TEST_FFI_RC(0, botan_x509_cert_hostname_match, (copy, "randombit.net"));
1✔
500

501
            TEST_FFI_OK(botan_x509_cert_destroy, (copy));
1✔
502
            TEST_FFI_OK(botan_x509_cert_destroy, (cert));
2✔
503
         }
504
      }
1✔
505
};
506

507
class FFI_ZFEC_Test final : public FFI_Test {
×
508
   public:
509
      std::string name() const override { return "FFI ZFEC"; }
1✔
510

511
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
512
         /* exercise a simple success case
513
          */
514

515
         // Select some arbitrary, valid encoding parameters.  There is
516
         // nothing special about them but some relationships between these
517
         // values and other inputs must hold.
518
         const size_t K = 3;
1✔
519
         const size_t N = 11;
1✔
520

521
         // The decoder needs to know the indexes of the blocks being passed
522
         // in to it.  This array must equal [0..N) for the logic in the
523
         // decoding loop below to hold.
524
         const std::vector<size_t> indexes = {0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10};
1✔
525

526
         // This will be the size of each encoded (or decoded) block.  This is
527
         // an arbitrary value but it must match up with the length of the
528
         // test data given in `input`.
529
         const size_t blockSize = 15;
1✔
530

531
         // K of the blocks are required so the total information represented
532
         // can be this multiple.  totalSize must be a multiple of K and it
533
         // always will be using this construction.
534
         const size_t totalSize = blockSize * K;
1✔
535

536
         // Here's the complete original input (plus a trailing NUL that we
537
         // won't pass through ZFEC).  These are arbitrary bytes.
538
         const uint8_t input[totalSize + 1] = "Does this work?AAAAAAAAAAAAAAAzzzzzzzzzzzzzzz";
1✔
539

540
         // Allocate memory for the encoding and decoding output parameters.
541
         std::vector<uint8_t> encoded_buf(N * blockSize);
1✔
542
         std::vector<uint8_t> decoded_buf(K * blockSize);
1✔
543

544
         std::vector<uint8_t*> encoded(N);
1✔
545
         for(size_t i = 0; i < N; ++i) {
12✔
546
            encoded[i] = &encoded_buf[i * blockSize];
11✔
547
         }
548
         std::vector<uint8_t*> decoded(K);
1✔
549
         for(size_t i = 0; i < K; ++i) {
4✔
550
            decoded[i] = &decoded_buf[i * blockSize];
3✔
551
         }
552

553
         // First encode the complete input string into N blocks where K are
554
         // required for reconstruction.  The N encoded blocks will end up in
555
         // `encoded`.
556
         if(!TEST_FFI_INIT(botan_zfec_encode, (K, N, input, totalSize, encoded.data()))) {
1✔
557
            return;
558
         }
559

560
         // Any K blocks can be decoded to reproduce the original input (split
561
         // across an array of K strings of blockSize bytes each).  This loop
562
         // only exercises decoding with consecutive blocks because it's
563
         // harder to pick non-consecutive blocks out for a test.
564
         for(size_t offset = 0; offset < N - K; ++offset) {
9✔
565
            result.test_note("About to decode with offset " + std::to_string(offset));
24✔
566
            // Pass in the K shares starting from `offset` (and their indexes)
567
            // so that we can try decoding a certain group of blocks here.  Any
568
            // K shares *should* work.
569
            REQUIRE_FFI_OK(botan_zfec_decode,
8✔
570
                           (K, N, indexes.data() + offset, encoded.data() + offset, blockSize, decoded.data()));
571

572
            // Check that the original input bytes have been written to the
573
            // output parameter.
574
            for(size_t k = 0, pos = 0; k < K; ++k, pos += blockSize) {
32✔
575
               TEST_FFI_RC(0, botan_constant_time_compare, (input + pos, decoded[k], blockSize));
48✔
576
            }
577
         }
578

579
         /* Exercise a couple basic failure cases, such as you encounter if
580
          * the caller supplies invalid parameters.  We don't try to
581
          * exhaustively prove invalid parameters are handled through this
582
          * interface since the implementation only passes them through to
583
          * ZFEC::{encode,decode} where the real checking is.  We just want to
584
          * see that errors can propagate.
585
          */
586
         TEST_FFI_FAIL("encode with out-of-bounds encoding parameters should have failed",
2✔
587
                       botan_zfec_encode,
588
                       (0, 0, nullptr, 0, nullptr));
589
         TEST_FFI_FAIL("decode with out-of-bounds encoding parameters should have failed",
2✔
590
                       botan_zfec_decode,
591
                       (0, 0, nullptr, nullptr, 0, nullptr));
592
      }
3✔
593
};
594

595
class FFI_CRL_Test final : public FFI_Test {
×
596
   public:
597
      std::string name() const override { return "FFI CRL"; }
1✔
598

599
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
600
         const char* crl_string =
1✔
601
            "-----BEGIN X509 CRL-----\n"
602
            "MIICoTCCAQkCAQEwDQYJKoZIhvcNAQELBQAwgZQxLTArBgNVBAMTJFVzYWJsZSBj\n"
603
            "ZXJ0IHZhbGlkYXRpb246IFRlbXBvcmFyeSBDQTE5MDcGA1UECxMwQ2VudHJlIGZv\n"
604
            "ciBSZXNlYXJjaCBvbiBDcnlwdG9ncmFwaHkgYW5kIFNlY3VyaXR5MRswGQYDVQQK\n"
605
            "ExJNYXNhcnlrIFVuaXZlcnNpdHkxCzAJBgNVBAYTAkNaGA8yMDUwMDIyNTE1MjE0\n"
606
            "MloYDzIwNTAwMjI1MTUyNDQxWjAAoDowODAfBgNVHSMEGDAWgBRKzxAvI4+rVVo/\n"
607
            "JzLigRznREyB+TAVBgNVHRQEDgIMXcr16yNys/gjeuCFMA0GCSqGSIb3DQEBCwUA\n"
608
            "A4IBgQCfxv/5REM/KUnzeVycph3dJr1Yrtxhc6pZmQ9pMzSW/nawLN3rUHm5oG44\n"
609
            "ZuQgjvzE4PnbU0/DNRu/4w3H58kgrctJHHXbbvkU3lf2ZZLh2wBl+EUh92+/COow\n"
610
            "ZyGB+jqj/XwB99hYUhrY6NLEWRz08kpgG6dnNMEU0uFqdQKWk0CQPnmgPRgDb8BW\n"
611
            "IuMBcjY7aF9XoCZFOqPYdEvUKzAo4QGCf7uJ7fNGS3LqvjaLjAHJseSr5/yR7Q9r\n"
612
            "nEdI38yKPbRj0tNHe7j+BbYg31C+X+AZZKJtlTg8GxYR3qfQio1kDgpZ3rQLzHY3\n"
613
            "ea2MLX/Kdx9cPSwh4KwlcDxQmQKoELb4EnZW1CScSBHi9HQyCBNyCkgkOBMGcJqz\n"
614
            "Ihq1dGeSf8eca9+Avk5kAQ3yjXK1TI2CDEi0msrXLr9XbgowXiOLLzR+rYkhQz+V\n"
615
            "RnIoBwjnrGoJoz636KS170SZCB9ARNs17WE4IvbJdZrTXNOGaVZCQUUpiLRj4ZSO\n"
616
            "Na/nobI=\n"
617
            "-----END X509 CRL-----";
618

619
         botan_x509_crl_t bytecrl;
1✔
620
         if(!TEST_FFI_INIT(botan_x509_crl_load, (&bytecrl, reinterpret_cast<const uint8_t*>(crl_string), 966))) {
1✔
621
            return;
×
622
         }
623

624
         botan_x509_crl_t crl;
1✔
625
         REQUIRE_FFI_OK(botan_x509_crl_load_file, (&crl, Test::data_file("x509/nist/root.crl").c_str()));
1✔
626

627
         botan_x509_cert_t cert1;
1✔
628
         REQUIRE_FFI_OK(botan_x509_cert_load_file, (&cert1, Test::data_file("x509/nist/test01/end.crt").c_str()));
1✔
629
         TEST_FFI_RC(-1, botan_x509_is_revoked, (crl, cert1));
1✔
630
         TEST_FFI_OK(botan_x509_cert_destroy, (cert1));
1✔
631

632
         botan_x509_cert_t cert2;
1✔
633
         REQUIRE_FFI_OK(botan_x509_cert_load_file, (&cert2, Test::data_file("x509/nist/test20/int.crt").c_str()));
1✔
634
         TEST_FFI_RC(0, botan_x509_is_revoked, (crl, cert2));
1✔
635
         TEST_FFI_RC(-1, botan_x509_is_revoked, (bytecrl, cert2));
1✔
636
         TEST_FFI_OK(botan_x509_cert_destroy, (cert2));
1✔
637

638
         TEST_FFI_OK(botan_x509_crl_destroy, (crl));
1✔
639
         TEST_FFI_OK(botan_x509_crl_destroy, (bytecrl));
2✔
640
      }
641
};
642

643
class FFI_Cert_Validation_Test final : public FFI_Test {
×
644
   public:
645
      std::string name() const override { return "FFI Cert Validation"; }
1✔
646

647
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
648
         botan_x509_cert_t root;
1✔
649
         int rc;
1✔
650

651
         if(!TEST_FFI_INIT(botan_x509_cert_load_file, (&root, Test::data_file("x509/nist/root.crt").c_str()))) {
1✔
652
            return;
×
653
         }
654

655
         botan_x509_cert_t end2;
1✔
656
         botan_x509_cert_t sub2;
1✔
657
         REQUIRE_FFI_OK(botan_x509_cert_load_file, (&end2, Test::data_file("x509/nist/test02/end.crt").c_str()));
1✔
658
         REQUIRE_FFI_OK(botan_x509_cert_load_file, (&sub2, Test::data_file("x509/nist/test02/int.crt").c_str()));
1✔
659

660
         TEST_FFI_RC(1, botan_x509_cert_verify, (&rc, end2, &sub2, 1, &root, 1, nullptr, 0, nullptr, 0));
1✔
661
         result.confirm("Validation test02 failed", rc == 5002);
2✔
662
         result.test_eq("Validation test02 status string", botan_x509_cert_validation_status(rc), "Signature error");
1✔
663

664
         TEST_FFI_RC(1, botan_x509_cert_verify, (&rc, end2, nullptr, 0, &root, 1, nullptr, 0, nullptr, 0));
1✔
665
         result.confirm("Validation test02 failed (missing int)", rc == 3000);
2✔
666
         result.test_eq(
1✔
667
            "Validation test02 status string", botan_x509_cert_validation_status(rc), "Certificate issuer not found");
668

669
         botan_x509_cert_t end7;
1✔
670
         botan_x509_cert_t sub7;
1✔
671
         REQUIRE_FFI_OK(botan_x509_cert_load_file, (&end7, Test::data_file("x509/nist/test07/end.crt").c_str()));
1✔
672
         REQUIRE_FFI_OK(botan_x509_cert_load_file, (&sub7, Test::data_file("x509/nist/test07/int.crt").c_str()));
1✔
673

674
         botan_x509_cert_t subs[2] = {sub2, sub7};
1✔
675
         TEST_FFI_RC(1, botan_x509_cert_verify, (&rc, end7, subs, 2, &root, 1, nullptr, 0, nullptr, 0));
1✔
676
         result.confirm("Validation test07 failed with expected error", rc == 1001);
2✔
677
         result.test_eq("Validation test07 status string",
1✔
678
                        botan_x509_cert_validation_status(rc),
679
                        "Hash function used is considered too weak for security");
680

681
         TEST_FFI_RC(0, botan_x509_cert_verify, (&rc, end7, subs, 2, &root, 1, nullptr, 80, nullptr, 0));
1✔
682
         result.confirm("Validation test07 passed", rc == 0);
2✔
683
         result.test_eq("Validation test07 status string", botan_x509_cert_validation_status(rc), "Verified");
1✔
684

685
         TEST_FFI_RC(1,
1✔
686
                     botan_x509_cert_verify_with_crl,
687
                     (&rc, end7, subs, 2, nullptr, 0, nullptr, 0, "x509/farce", 0, nullptr, 0));
688
         result.confirm("Validation test07 failed with expected error", rc == 3000);
2✔
689
         result.test_eq(
1✔
690
            "Validation test07 status string", botan_x509_cert_validation_status(rc), "Certificate issuer not found");
691

692
         botan_x509_crl_t rootcrl;
1✔
693

694
         REQUIRE_FFI_OK(botan_x509_crl_load_file, (&rootcrl, Test::data_file("x509/nist/root.crl").c_str()));
1✔
695
         TEST_FFI_RC(
1✔
696
            0, botan_x509_cert_verify_with_crl, (&rc, end7, subs, 2, &root, 1, &rootcrl, 1, nullptr, 80, nullptr, 0));
697
         result.confirm("Validation test07 with CRL passed", rc == 0);
2✔
698
         result.test_eq("Validation test07 with CRL status string", botan_x509_cert_validation_status(rc), "Verified");
1✔
699

700
         botan_x509_cert_t end20;
1✔
701
         botan_x509_cert_t sub20;
1✔
702
         botan_x509_crl_t sub20crl;
1✔
703
         REQUIRE_FFI_OK(botan_x509_cert_load_file, (&end20, Test::data_file("x509/nist/test20/end.crt").c_str()));
1✔
704
         REQUIRE_FFI_OK(botan_x509_cert_load_file, (&sub20, Test::data_file("x509/nist/test20/int.crt").c_str()));
1✔
705
         REQUIRE_FFI_OK(botan_x509_crl_load_file, (&sub20crl, Test::data_file("x509/nist/test20/int.crl").c_str()));
1✔
706
         botan_x509_crl_t crls[2] = {sub20crl, rootcrl};
1✔
707
         TEST_FFI_RC(
1✔
708
            1, botan_x509_cert_verify_with_crl, (&rc, end20, &sub20, 1, &root, 1, crls, 2, nullptr, 80, nullptr, 0));
709
         result.confirm("Validation test20 failed with expected error", rc == 5000);
2✔
710
         result.test_eq(
1✔
711
            "Validation test20 status string", botan_x509_cert_validation_status(rc), "Certificate is revoked");
712

713
         TEST_FFI_OK(botan_x509_cert_destroy, (end2));
1✔
714
         TEST_FFI_OK(botan_x509_cert_destroy, (sub2));
1✔
715
         TEST_FFI_OK(botan_x509_cert_destroy, (end7));
1✔
716
         TEST_FFI_OK(botan_x509_cert_destroy, (sub7));
1✔
717
         TEST_FFI_OK(botan_x509_cert_destroy, (end20));
1✔
718
         TEST_FFI_OK(botan_x509_cert_destroy, (sub20));
1✔
719
         TEST_FFI_OK(botan_x509_crl_destroy, (sub20crl));
1✔
720
         TEST_FFI_OK(botan_x509_cert_destroy, (root));
1✔
721
         TEST_FFI_OK(botan_x509_crl_destroy, (rootcrl));
2✔
722
      }
723
};
724

725
class FFI_ECDSA_Certificate_Test final : public FFI_Test {
×
726
   public:
727
      std::string name() const override { return "FFI ECDSA cert"; }
1✔
728

729
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
730
         botan_x509_cert_t cert;
1✔
731
         if(TEST_FFI_INIT(botan_x509_cert_load_file, (&cert, Test::data_file("x509/ecc/isrg-root-x2.pem").c_str()))) {
1✔
732
            size_t date_len = 0;
1✔
733
            TEST_FFI_RC(
1✔
734
               BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE, botan_x509_cert_get_time_starts, (cert, nullptr, &date_len));
735

736
            date_len = 8;
1✔
737
            TEST_FFI_RC(
1✔
738
               BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE, botan_x509_cert_get_time_starts, (cert, nullptr, &date_len));
739

740
            std::string date(date_len - 1, '0');
1✔
741
            TEST_FFI_OK(botan_x509_cert_get_time_starts, (cert, &date[0], &date_len));
1✔
742
            result.test_eq("cert valid from", date, "200904000000Z");
2✔
743

744
            date_len = 0;
1✔
745
            TEST_FFI_RC(
1✔
746
               BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE, botan_x509_cert_get_time_expires, (cert, nullptr, &date_len));
747

748
            date.resize(date_len - 1);
1✔
749
            TEST_FFI_OK(botan_x509_cert_get_time_expires, (cert, &date[0], &date_len));
1✔
750
            result.test_eq("cert valid until", date, "400917160000Z");
2✔
751

752
            uint64_t not_before = 0;
1✔
753
            TEST_FFI_OK(botan_x509_cert_not_before, (cert, &not_before));
1✔
754
            result.confirm("cert not before", not_before == 1599177600);
2✔
755

756
            uint64_t not_after = 0;
1✔
757
            TEST_FFI_OK(botan_x509_cert_not_after, (cert, &not_after));
1✔
758
            result.confirm("cert not after", not_after == 2231510400);
2✔
759

760
            size_t serial_len = 0;
1✔
761
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
762
                        botan_x509_cert_get_serial_number,
763
                        (cert, nullptr, &serial_len));
764

765
            std::vector<uint8_t> serial(serial_len);
1✔
766
            TEST_FFI_OK(botan_x509_cert_get_serial_number, (cert, serial.data(), &serial_len));
1✔
767
            result.test_eq("cert serial length", serial.size(), 16);
1✔
768
            result.test_eq("cert serial", Botan::hex_encode(serial), "41D29DD172EAEEA780C12C6CE92F8752");
2✔
769

770
            size_t fingerprint_len = 0;
1✔
771
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
772
                        botan_x509_cert_get_fingerprint,
773
                        (cert, "SHA-256", nullptr, &fingerprint_len));
774

775
            std::vector<uint8_t> fingerprint(fingerprint_len);
1✔
776
            TEST_FFI_OK(botan_x509_cert_get_fingerprint, (cert, "SHA-256", fingerprint.data(), &fingerprint_len));
1✔
777
            result.test_eq(
1✔
778
               "cert fingerprint",
779
               reinterpret_cast<const char*>(fingerprint.data()),
1✔
780
               "69:72:9B:8E:15:A8:6E:FC:17:7A:57:AF:B7:17:1D:FC:64:AD:D2:8C:2F:CA:8C:F1:50:7E:34:45:3C:CB:14:70");
781

782
            size_t key_id_len = 0;
1✔
783
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
784
                        botan_x509_cert_get_authority_key_id,
785
                        (cert, nullptr, &key_id_len));
786

787
            result.test_eq("No AKID", key_id_len, 0);
1✔
788

789
            key_id_len = 0;
1✔
790
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
791
                        botan_x509_cert_get_subject_key_id,
792
                        (cert, nullptr, &key_id_len));
793

794
            std::vector<uint8_t> key_id(key_id_len);
1✔
795
            TEST_FFI_OK(botan_x509_cert_get_subject_key_id, (cert, key_id.data(), &key_id_len));
1✔
796
            result.test_eq("cert subject key id",
3✔
797
                           Botan::hex_encode(key_id.data(), key_id.size(), true),
2✔
798
                           "7C4296AEDE4B483BFA92F89E8CCF6D8BA9723795");
799

800
            size_t pubkey_len = 0;
1✔
801
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
802
                        botan_x509_cert_get_public_key_bits,
803
                        (cert, nullptr, &pubkey_len));
804

805
            std::vector<uint8_t> pubkey(pubkey_len);
1✔
806
            TEST_FFI_OK(botan_x509_cert_get_public_key_bits, (cert, pubkey.data(), &pubkey_len));
1✔
807

808
   #if defined(BOTAN_HAS_ECDSA)
809
            botan_pubkey_t pub;
1✔
810
            if(TEST_FFI_OK(botan_x509_cert_get_public_key, (cert, &pub))) {
1✔
811
               TEST_FFI_RC(0, botan_pubkey_ecc_key_used_explicit_encoding, (pub));
1✔
812
               TEST_FFI_OK(botan_pubkey_destroy, (pub));
2✔
813
            }
814
   #endif
815

816
            size_t dn_len = 0;
1✔
817
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
818
                        botan_x509_cert_get_issuer_dn,
819
                        (cert, "Name", 0, nullptr, &dn_len));
820

821
            std::vector<uint8_t> dn(dn_len);
1✔
822
            TEST_FFI_OK(botan_x509_cert_get_issuer_dn, (cert, "Name", 0, dn.data(), &dn_len));
1✔
823
            result.test_eq("issuer dn", reinterpret_cast<const char*>(dn.data()), "ISRG Root X2");
1✔
824

825
            dn_len = 0;
1✔
826
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
827
                        botan_x509_cert_get_subject_dn,
828
                        (cert, "Name", 0, nullptr, &dn_len));
829

830
            dn.resize(dn_len);
1✔
831
            TEST_FFI_OK(botan_x509_cert_get_subject_dn, (cert, "Name", 0, dn.data(), &dn_len));
1✔
832
            result.test_eq("subject dn", reinterpret_cast<const char*>(dn.data()), "ISRG Root X2");
1✔
833

834
            size_t printable_len = 0;
1✔
835
            TEST_FFI_RC(
1✔
836
               BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE, botan_x509_cert_to_string, (cert, nullptr, &printable_len));
837

838
            std::string printable(printable_len - 1, '0');
1✔
839
            TEST_FFI_OK(botan_x509_cert_to_string, (cert, &printable[0], &printable_len));
1✔
840

841
            TEST_FFI_RC(0, botan_x509_cert_allowed_usage, (cert, KEY_CERT_SIGN));
1✔
842
            TEST_FFI_RC(0, botan_x509_cert_allowed_usage, (cert, CRL_SIGN));
1✔
843
            TEST_FFI_RC(1, botan_x509_cert_allowed_usage, (cert, DIGITAL_SIGNATURE));
1✔
844

845
            TEST_FFI_OK(botan_x509_cert_destroy, (cert));
2✔
846
         }
6✔
847
      }
1✔
848
};
849

850
class FFI_PKCS_Hashid_Test final : public FFI_Test {
×
851
   public:
852
      std::string name() const override { return "FFI PKCS hash id"; }
1✔
853

854
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
855
         std::vector<uint8_t> hash_id(64);
1✔
856
         size_t hash_id_len = hash_id.size();
1✔
857

858
         if(TEST_FFI_INIT(botan_pkcs_hash_id, ("SHA-256", hash_id.data(), &hash_id_len))) {
1✔
859
            result.test_eq("Expected SHA-256 PKCS hash id len", hash_id_len, 19);
1✔
860

861
            hash_id.resize(hash_id_len);
1✔
862
            result.test_eq("Expected SHA_256 PKCS hash id", hash_id, "3031300D060960864801650304020105000420");
1✔
863

864
            hash_id_len = 3;  // too short
1✔
865
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
2✔
866
                        botan_pkcs_hash_id,
867
                        ("SHA-256", hash_id.data(), &hash_id_len));
868
         }
869
      }
1✔
870
};
871

872
class FFI_CBC_Cipher_Test final : public FFI_Test {
×
873
   public:
874
      std::string name() const override { return "FFI CBC cipher"; }
1✔
875

876
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
877
         botan_cipher_t cipher_encrypt, cipher_decrypt;
1✔
878

879
         if(TEST_FFI_INIT(botan_cipher_init, (&cipher_encrypt, "AES-128/CBC/PKCS7", BOTAN_CIPHER_INIT_FLAG_ENCRYPT))) {
1✔
880
            size_t min_keylen = 0;
1✔
881
            size_t max_keylen = 0;
1✔
882
            TEST_FFI_OK(botan_cipher_query_keylen, (cipher_encrypt, &min_keylen, &max_keylen));
1✔
883
            result.test_int_eq(min_keylen, 16, "Min key length");
1✔
884
            result.test_int_eq(max_keylen, 16, "Max key length");
1✔
885

886
            // from https://github.com/geertj/bluepass/blob/master/tests/vectors/aes-cbc-pkcs7.txt
887
            const std::vector<uint8_t> plaintext =
1✔
888
               Botan::hex_decode("0397f4f6820b1f9386f14403be5ac16e50213bd473b4874b9bcbf5f318ee686b1d");
1✔
889
            const std::vector<uint8_t> symkey = Botan::hex_decode("898be9cc5004ed0fa6e117c9a3099d31");
1✔
890
            const std::vector<uint8_t> nonce = Botan::hex_decode("9dea7621945988f96491083849b068df");
1✔
891
            const std::vector<uint8_t> exp_ciphertext = Botan::hex_decode(
1✔
892
               "e232cd6ef50047801ee681ec30f61d53cfd6b0bca02fd03c1b234baa10ea82ac9dab8b960926433a19ce6dea08677e34");
1✔
893

894
            size_t output_written = 0;
1✔
895
            size_t input_consumed = 0;
1✔
896

897
            // Test that after clear or final the object can be reused
898
            for(size_t r = 0; r != 2; ++r) {
3✔
899
               size_t ctext_len;
2✔
900
               TEST_FFI_OK(botan_cipher_output_length, (cipher_encrypt, plaintext.size(), &ctext_len));
2✔
901
               result.test_eq("Expected size of padded message", ctext_len, plaintext.size() + 15);
2✔
902
               std::vector<uint8_t> ciphertext(ctext_len);
2✔
903

904
               size_t update_granularity = 0;
2✔
905
               size_t ideal_granularity = 0;
2✔
906
               size_t taglen = 0;
2✔
907

908
               TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_encrypt, &update_granularity));
2✔
909
               TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_encrypt, &ideal_granularity));
2✔
910
               TEST_FFI_OK(botan_cipher_get_tag_length, (cipher_encrypt, &taglen));
2✔
911

912
               result.test_eq(
2✔
913
                  "ideal granularity is a multiple of update granularity", ideal_granularity % update_granularity, 0);
914
               result.test_eq("not an AEAD, hence no tag", taglen, 0);
2✔
915

916
               TEST_FFI_OK(botan_cipher_set_key, (cipher_encrypt, symkey.data(), symkey.size()));
2✔
917
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, nonce.data(), nonce.size()));
2✔
918
               TEST_FFI_OK(botan_cipher_update,
2✔
919
                           (cipher_encrypt,
920
                            0,
921
                            ciphertext.data(),
922
                            ciphertext.size(),
923
                            &output_written,
924
                            plaintext.data(),
925
                            plaintext.size(),
926
                            &input_consumed));
927
               TEST_FFI_OK(botan_cipher_clear, (cipher_encrypt));
2✔
928

929
               TEST_FFI_OK(botan_cipher_set_key, (cipher_encrypt, symkey.data(), symkey.size()));
2✔
930
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, nonce.data(), nonce.size()));
2✔
931
               TEST_FFI_OK(botan_cipher_update,
2✔
932
                           (cipher_encrypt,
933
                            BOTAN_CIPHER_UPDATE_FLAG_FINAL,
934
                            ciphertext.data(),
935
                            ciphertext.size(),
936
                            &output_written,
937
                            plaintext.data(),
938
                            plaintext.size(),
939
                            &input_consumed));
940

941
               ciphertext.resize(output_written);
2✔
942
               result.test_eq("AES/CBC ciphertext", ciphertext, exp_ciphertext);
4✔
943

944
               if(TEST_FFI_OK(botan_cipher_init, (&cipher_decrypt, "AES-128/CBC", BOTAN_CIPHER_INIT_FLAG_DECRYPT))) {
2✔
945
                  size_t ptext_len;
2✔
946
                  TEST_FFI_OK(botan_cipher_output_length, (cipher_decrypt, ciphertext.size(), &ptext_len));
2✔
947
                  std::vector<uint8_t> decrypted(ptext_len);
2✔
948

949
                  TEST_FFI_RC(0, botan_cipher_is_authenticated, (cipher_encrypt));
2✔
950

951
                  TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_decrypt, &update_granularity));
2✔
952
                  TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_decrypt, &ideal_granularity));
2✔
953
                  TEST_FFI_OK(botan_cipher_get_tag_length, (cipher_decrypt, &taglen));
2✔
954

955
                  result.test_eq("ideal granularity is a multiple of update granularity (decrypt)",
2✔
956
                                 ideal_granularity % update_granularity,
957
                                 0);
958
                  result.test_eq("not an AEAD, hence no tag (decrypt)", taglen, 0);
2✔
959

960
                  TEST_FFI_OK(botan_cipher_set_key, (cipher_decrypt, symkey.data(), symkey.size()));
2✔
961
                  TEST_FFI_OK(botan_cipher_start, (cipher_decrypt, nonce.data(), nonce.size()));
2✔
962
                  TEST_FFI_OK(botan_cipher_update,
2✔
963
                              (cipher_decrypt,
964
                               BOTAN_CIPHER_UPDATE_FLAG_FINAL,
965
                               decrypted.data(),
966
                               decrypted.size(),
967
                               &output_written,
968
                               ciphertext.data(),
969
                               ciphertext.size(),
970
                               &input_consumed));
971

972
                  decrypted.resize(output_written);
2✔
973

974
                  result.test_eq("AES/CBC plaintext", decrypted, plaintext);
4✔
975

976
                  TEST_FFI_OK(botan_cipher_destroy, (cipher_decrypt));
4✔
977
               }
2✔
978
            }
2✔
979

980
            TEST_FFI_OK(botan_cipher_destroy, (cipher_encrypt));
2✔
981
         }
4✔
982
      }
1✔
983
};
984

985
class FFI_GCM_Test final : public FFI_Test {
×
986
   public:
987
      std::string name() const override { return "FFI GCM"; }
1✔
988

989
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
990
         botan_cipher_t cipher_encrypt, cipher_decrypt;
1✔
991

992
         if(TEST_FFI_INIT(botan_cipher_init, (&cipher_encrypt, "AES-128/GCM", BOTAN_CIPHER_INIT_FLAG_ENCRYPT))) {
1✔
993
            char namebuf[18];
1✔
994
            size_t name_len = 15;
1✔
995
            TEST_FFI_FAIL("output buffer too short", botan_cipher_name, (cipher_encrypt, namebuf, &name_len));
2✔
996
            result.test_eq("name len", name_len, 16);
1✔
997

998
            name_len = sizeof(namebuf);
1✔
999
            if(TEST_FFI_OK(botan_cipher_name, (cipher_encrypt, namebuf, &name_len))) {
1✔
1000
               result.test_eq("name len", name_len, 16);
1✔
1001
               result.test_eq("name", std::string(namebuf), "AES-128/GCM(16)");
2✔
1002
            }
1003

1004
            size_t min_keylen = 0;
1✔
1005
            size_t max_keylen = 0;
1✔
1006
            size_t nonce_len = 0;
1✔
1007
            size_t tag_len = 0;
1✔
1008
            size_t update_granularity = 0;
1✔
1009
            size_t ideal_granularity = 0;
1✔
1010

1011
            TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_encrypt, &update_granularity));
1✔
1012
            TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_encrypt, &ideal_granularity));
1✔
1013

1014
            result.test_eq(
1✔
1015
               "ideal granularity is a multiple of update granularity", ideal_granularity % update_granularity, 0);
1016

1017
            TEST_FFI_OK(botan_cipher_query_keylen, (cipher_encrypt, &min_keylen, &max_keylen));
1✔
1018
            result.test_int_eq(min_keylen, 16, "Min key length");
1✔
1019
            result.test_int_eq(max_keylen, 16, "Max key length");
1✔
1020

1021
            TEST_FFI_OK(botan_cipher_get_default_nonce_length, (cipher_encrypt, &nonce_len));
1✔
1022
            result.test_int_eq(nonce_len, 12, "Expected default GCM nonce length");
1✔
1023

1024
            TEST_FFI_OK(botan_cipher_get_tag_length, (cipher_encrypt, &tag_len));
1✔
1025
            result.test_int_eq(tag_len, 16, "Expected GCM tag length");
1✔
1026

1027
            TEST_FFI_RC(1, botan_cipher_is_authenticated, (cipher_encrypt));
1✔
1028

1029
            TEST_FFI_RC(1, botan_cipher_valid_nonce_length, (cipher_encrypt, 12));
1✔
1030
            // GCM accepts any nonce size except zero
1031
            TEST_FFI_RC(0, botan_cipher_valid_nonce_length, (cipher_encrypt, 0));
1✔
1032
            TEST_FFI_RC(1, botan_cipher_valid_nonce_length, (cipher_encrypt, 1));
1✔
1033
            TEST_FFI_RC(1, botan_cipher_valid_nonce_length, (cipher_encrypt, 100009));
1✔
1034

1035
            // NIST test vector
1036
            const std::vector<uint8_t> plaintext = Botan::hex_decode(
1✔
1037
               "D9313225F88406E5A55909C5AFF5269A86A7A9531534F7DA2E4C303D8A318A721C3C0C95956809532FCF0E2449A6B525B16AEDF5AA0DE657BA637B39");
1✔
1038

1039
            const std::vector<uint8_t> symkey = Botan::hex_decode("FEFFE9928665731C6D6A8F9467308308");
1✔
1040
            const std::vector<uint8_t> nonce = Botan::hex_decode("CAFEBABEFACEDBADDECAF888");
1✔
1041
            const std::vector<uint8_t> exp_ciphertext = Botan::hex_decode(
1✔
1042
               "42831EC2217774244B7221B784D0D49CE3AA212F2C02A4E035C17E2329ACA12E21D514B25466931C7D8F6A5AAC84AA051BA30B396A0AAC973D58E0915BC94FBC3221A5DB94FAE95AE7121A47");
1✔
1043
            const std::vector<uint8_t> aad = Botan::hex_decode("FEEDFACEDEADBEEFFEEDFACEDEADBEEFABADDAD2");
1✔
1044

1045
            std::vector<uint8_t> ciphertext(tag_len + plaintext.size());
1✔
1046

1047
            size_t output_written = 0;
1✔
1048
            size_t input_consumed = 0;
1✔
1049

1050
            // Test that after clear or final the object can be reused
1051
            for(size_t r = 0; r != 2; ++r) {
3✔
1052
               TEST_FFI_OK(botan_cipher_set_key, (cipher_encrypt, symkey.data(), symkey.size()));
2✔
1053

1054
               // First use a nonce of the AAD, and ensure reset works
1055
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, aad.data(), aad.size()));
2✔
1056
               TEST_FFI_OK(botan_cipher_reset, (cipher_encrypt));
2✔
1057

1058
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, nonce.data(), nonce.size()));
2✔
1059
               TEST_FFI_OK(botan_cipher_update,
2✔
1060
                           (cipher_encrypt,
1061
                            0,
1062
                            ciphertext.data(),
1063
                            ciphertext.size(),
1064
                            &output_written,
1065
                            plaintext.data(),
1066
                            plaintext.size(),
1067
                            &input_consumed));
1068
               TEST_FFI_OK(botan_cipher_clear, (cipher_encrypt));
2✔
1069

1070
               TEST_FFI_OK(botan_cipher_set_key, (cipher_encrypt, symkey.data(), symkey.size()));
2✔
1071
               TEST_FFI_OK(botan_cipher_set_associated_data, (cipher_encrypt, aad.data(), aad.size()));
2✔
1072
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, nonce.data(), nonce.size()));
2✔
1073
               TEST_FFI_OK(botan_cipher_update,
2✔
1074
                           (cipher_encrypt,
1075
                            BOTAN_CIPHER_UPDATE_FLAG_FINAL,
1076
                            ciphertext.data(),
1077
                            ciphertext.size(),
1078
                            &output_written,
1079
                            plaintext.data(),
1080
                            plaintext.size(),
1081
                            &input_consumed));
1082

1083
               ciphertext.resize(output_written);
2✔
1084
               result.test_eq("AES/GCM ciphertext", ciphertext, exp_ciphertext);
4✔
1085

1086
               if(TEST_FFI_OK(botan_cipher_init, (&cipher_decrypt, "AES-128/GCM", BOTAN_CIPHER_INIT_FLAG_DECRYPT))) {
2✔
1087
                  std::vector<uint8_t> decrypted(plaintext.size());
2✔
1088

1089
                  TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_decrypt, &update_granularity));
2✔
1090
                  TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_decrypt, &ideal_granularity));
2✔
1091

1092
                  result.test_eq("ideal granularity is a multiple of update granularity (decrypt)",
2✔
1093
                                 ideal_granularity % update_granularity,
1094
                                 0);
1095

1096
                  TEST_FFI_OK(botan_cipher_set_key, (cipher_decrypt, symkey.data(), symkey.size()));
2✔
1097
                  TEST_FFI_OK(botan_cipher_set_associated_data, (cipher_decrypt, aad.data(), aad.size()));
2✔
1098
                  TEST_FFI_OK(botan_cipher_start, (cipher_decrypt, nonce.data(), nonce.size()));
2✔
1099
                  TEST_FFI_OK(botan_cipher_update,
2✔
1100
                              (cipher_decrypt,
1101
                               BOTAN_CIPHER_UPDATE_FLAG_FINAL,
1102
                               decrypted.data(),
1103
                               decrypted.size(),
1104
                               &output_written,
1105
                               ciphertext.data(),
1106
                               ciphertext.size(),
1107
                               &input_consumed));
1108

1109
                  result.test_int_eq(input_consumed, ciphertext.size(), "All input consumed");
2✔
1110
                  result.test_int_eq(output_written, decrypted.size(), "Expected output size produced");
2✔
1111
                  result.test_eq("AES/GCM plaintext", decrypted, plaintext);
4✔
1112

1113
                  TEST_FFI_OK(botan_cipher_destroy, (cipher_decrypt));
4✔
1114
               }
2✔
1115
            }
1116

1117
            TEST_FFI_OK(botan_cipher_destroy, (cipher_encrypt));
2✔
1118
         }
6✔
1119
      }
1✔
1120
};
1121

1122
class FFI_ChaCha20Poly1305_Test final : public FFI_Test {
×
1123
   public:
1124
      std::string name() const override { return "FFI ChaCha20Poly1305"; }
1✔
1125

1126
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
1127
         botan_cipher_t cipher_encrypt, cipher_decrypt;
1✔
1128

1129
         if(TEST_FFI_INIT(botan_cipher_init, (&cipher_encrypt, "ChaCha20Poly1305", BOTAN_CIPHER_INIT_FLAG_ENCRYPT))) {
1✔
1130
            std::array<char, 17> namebuf;
1✔
1131
            size_t name_len = 15;
1✔
1132
            TEST_FFI_FAIL("output buffer too short", botan_cipher_name, (cipher_encrypt, namebuf.data(), &name_len));
2✔
1133
            result.test_eq("name len", name_len, 17);
1✔
1134

1135
            name_len = namebuf.size();
1✔
1136
            if(TEST_FFI_OK(botan_cipher_name, (cipher_encrypt, namebuf.data(), &name_len))) {
1✔
1137
               result.test_eq("name len", name_len, 17);
1✔
1138
               result.test_eq("name", std::string(namebuf.data()), "ChaCha20Poly1305");
2✔
1139
            }
1140

1141
            size_t min_keylen = 0;
1✔
1142
            size_t max_keylen = 0;
1✔
1143
            size_t nonce_len = 0;
1✔
1144
            size_t tag_len = 0;
1✔
1145
            size_t update_granularity = 0;
1✔
1146
            size_t ideal_granularity = 0;
1✔
1147

1148
            TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_encrypt, &update_granularity));
1✔
1149
            TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_encrypt, &ideal_granularity));
1✔
1150

1151
            result.test_eq(
1✔
1152
               "ideal granularity is a multiple of update granularity", ideal_granularity % update_granularity, 0);
1153

1154
            TEST_FFI_OK(botan_cipher_query_keylen, (cipher_encrypt, &min_keylen, &max_keylen));
1✔
1155
            result.test_int_eq(min_keylen, 32, "Min key length");
1✔
1156
            result.test_int_eq(max_keylen, 32, "Max key length");
1✔
1157

1158
            TEST_FFI_OK(botan_cipher_get_default_nonce_length, (cipher_encrypt, &nonce_len));
1✔
1159
            result.test_int_eq(nonce_len, 12, "Expected default ChaCha20Poly1305 nonce length");
1✔
1160

1161
            TEST_FFI_OK(botan_cipher_get_tag_length, (cipher_encrypt, &tag_len));
1✔
1162
            result.test_int_eq(tag_len, 16, "Expected Chacha20Poly1305 tag length");
1✔
1163

1164
            TEST_FFI_RC(1, botan_cipher_is_authenticated, (cipher_encrypt));
1✔
1165

1166
            // From RFC 7539
1167
            const std::vector<uint8_t> plaintext = Botan::hex_decode(
1✔
1168
               "4C616469657320616E642047656E746C656D656E206F662074686520636C617373206F66202739393A204966204920636F756C64206F6666657220796F75206F6E6C79206F6E652074697020666F7220746865206675747572652C2073756E73637265656E20776F756C642062652069742E");
1✔
1169
            const std::vector<uint8_t> symkey =
1✔
1170
               Botan::hex_decode("808182838485868788898A8B8C8D8E8F909192939495969798999A9B9C9D9E9F");
1✔
1171
            const std::vector<uint8_t> nonce = Botan::hex_decode("070000004041424344454647");
1✔
1172
            const std::vector<uint8_t> exp_ciphertext = Botan::hex_decode(
1✔
1173
               "D31A8D34648E60DB7B86AFBC53EF7EC2A4ADED51296E08FEA9E2B5A736EE62D63DBEA45E8CA9671282FAFB69DA92728B1A71DE0A9E060B2905D6A5B67ECD3B3692DDBD7F2D778B8C9803AEE328091B58FAB324E4FAD675945585808B4831D7BC3FF4DEF08E4B7A9DE576D26586CEC64B61161AE10B594F09E26A7E902ECBD0600691");
1✔
1174
            const std::vector<uint8_t> aad = Botan::hex_decode("50515253C0C1C2C3C4C5C6C7");
1✔
1175

1176
            std::vector<uint8_t> ciphertext(tag_len + plaintext.size());
1✔
1177

1178
            size_t output_written = 0;
1✔
1179
            size_t input_consumed = 0;
1✔
1180

1181
            // Test that after clear or final the object can be reused
1182
            for(size_t r = 0; r != 2; ++r) {
3✔
1183
               TEST_FFI_OK(botan_cipher_set_key, (cipher_encrypt, symkey.data(), symkey.size()));
2✔
1184

1185
               // First use a nonce of the AAD, and ensure reset works
1186
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, aad.data(), aad.size()));
2✔
1187
               TEST_FFI_OK(botan_cipher_reset, (cipher_encrypt));
2✔
1188

1189
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, nonce.data(), nonce.size()));
2✔
1190
               TEST_FFI_OK(botan_cipher_update,
2✔
1191
                           (cipher_encrypt,
1192
                            0,
1193
                            ciphertext.data(),
1194
                            ciphertext.size(),
1195
                            &output_written,
1196
                            plaintext.data(),
1197
                            plaintext.size(),
1198
                            &input_consumed));
1199
               TEST_FFI_OK(botan_cipher_clear, (cipher_encrypt));
2✔
1200

1201
               TEST_FFI_OK(botan_cipher_set_key, (cipher_encrypt, symkey.data(), symkey.size()));
2✔
1202
               TEST_FFI_OK(botan_cipher_set_associated_data, (cipher_encrypt, aad.data(), aad.size()));
2✔
1203
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, nonce.data(), nonce.size()));
2✔
1204
               TEST_FFI_OK(botan_cipher_update,
2✔
1205
                           (cipher_encrypt,
1206
                            BOTAN_CIPHER_UPDATE_FLAG_FINAL,
1207
                            ciphertext.data(),
1208
                            ciphertext.size(),
1209
                            &output_written,
1210
                            plaintext.data(),
1211
                            plaintext.size(),
1212
                            &input_consumed));
1213

1214
               ciphertext.resize(output_written);
2✔
1215
               result.test_eq("AES/GCM ciphertext", ciphertext, exp_ciphertext);
4✔
1216

1217
               if(TEST_FFI_OK(botan_cipher_init,
2✔
1218
                              (&cipher_decrypt, "ChaCha20Poly1305", BOTAN_CIPHER_INIT_FLAG_DECRYPT))) {
1219
                  std::vector<uint8_t> decrypted(plaintext.size());
2✔
1220

1221
                  TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_decrypt, &update_granularity));
2✔
1222
                  TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_decrypt, &ideal_granularity));
2✔
1223

1224
                  result.test_eq("ideal granularity is a multiple of update granularity (decrypt)",
2✔
1225
                                 ideal_granularity % update_granularity,
1226
                                 0);
1227

1228
                  TEST_FFI_OK(botan_cipher_set_key, (cipher_decrypt, symkey.data(), symkey.size()));
2✔
1229
                  TEST_FFI_OK(botan_cipher_set_associated_data, (cipher_decrypt, aad.data(), aad.size()));
2✔
1230
                  TEST_FFI_OK(botan_cipher_start, (cipher_decrypt, nonce.data(), nonce.size()));
2✔
1231
                  TEST_FFI_OK(botan_cipher_update,
2✔
1232
                              (cipher_decrypt,
1233
                               BOTAN_CIPHER_UPDATE_FLAG_FINAL,
1234
                               decrypted.data(),
1235
                               decrypted.size(),
1236
                               &output_written,
1237
                               ciphertext.data(),
1238
                               ciphertext.size(),
1239
                               &input_consumed));
1240

1241
                  result.test_int_eq(input_consumed, ciphertext.size(), "All input consumed");
2✔
1242
                  result.test_int_eq(output_written, decrypted.size(), "Expected output size produced");
2✔
1243
                  result.test_eq("AES/GCM plaintext", decrypted, plaintext);
4✔
1244

1245
                  TEST_FFI_OK(botan_cipher_destroy, (cipher_decrypt));
4✔
1246
               }
2✔
1247
            }
1248

1249
            TEST_FFI_OK(botan_cipher_destroy, (cipher_encrypt));
2✔
1250
         }
6✔
1251
      }
1✔
1252
};
1253

1254
class FFI_EAX_Test final : public FFI_Test {
×
1255
   public:
1256
      std::string name() const override { return "FFI EAX"; }
1✔
1257

1258
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
1259
         botan_cipher_t cipher_encrypt, cipher_decrypt;
1✔
1260

1261
         if(TEST_FFI_INIT(botan_cipher_init, (&cipher_encrypt, "AES-128/EAX", BOTAN_CIPHER_INIT_FLAG_ENCRYPT))) {
1✔
1262
            size_t min_keylen = 0;
1✔
1263
            size_t max_keylen = 0;
1✔
1264
            size_t mod_keylen = 0;
1✔
1265
            size_t nonce_len = 0;
1✔
1266
            size_t tag_len = 0;
1✔
1267
            size_t update_granularity = 0;
1✔
1268
            size_t ideal_granularity = 0;
1✔
1269

1270
            TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_encrypt, &update_granularity));
1✔
1271
            TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_encrypt, &ideal_granularity));
1✔
1272

1273
            result.test_eq(
1✔
1274
               "ideal granularity is a multiple of update granularity", ideal_granularity % update_granularity, 0);
1275

1276
            TEST_FFI_OK(botan_cipher_query_keylen, (cipher_encrypt, &min_keylen, &max_keylen));
1✔
1277
            result.test_int_eq(min_keylen, 16, "Min key length");
1✔
1278
            result.test_int_eq(max_keylen, 16, "Max key length");
1✔
1279

1280
            TEST_FFI_OK(botan_cipher_get_keyspec, (cipher_encrypt, &min_keylen, &max_keylen, &mod_keylen));
1✔
1281
            result.test_int_eq(min_keylen, 16, "Min key length");
1✔
1282
            result.test_int_eq(max_keylen, 16, "Max key length");
1✔
1283
            result.test_int_eq(mod_keylen, 1, "Mod key length");
1✔
1284

1285
            TEST_FFI_OK(botan_cipher_get_default_nonce_length, (cipher_encrypt, &nonce_len));
1✔
1286
            result.test_int_eq(nonce_len, 12, "Expected default EAX nonce length");
1✔
1287

1288
            TEST_FFI_OK(botan_cipher_get_tag_length, (cipher_encrypt, &tag_len));
1✔
1289
            result.test_int_eq(tag_len, 16, "Expected EAX tag length");
1✔
1290

1291
            TEST_FFI_RC(1, botan_cipher_is_authenticated, (cipher_encrypt));
1✔
1292

1293
            TEST_FFI_RC(1, botan_cipher_valid_nonce_length, (cipher_encrypt, 12));
1✔
1294
            // EAX accepts any nonce size...
1295
            TEST_FFI_RC(1, botan_cipher_valid_nonce_length, (cipher_encrypt, 0));
1✔
1296

1297
            const std::vector<uint8_t> plaintext =
1✔
1298
               Botan::hex_decode("0000000000000000000000000000000011111111111111111111111111111111");
1✔
1299
            const std::vector<uint8_t> symkey = Botan::hex_decode("000102030405060708090a0b0c0d0e0f");
1✔
1300
            const std::vector<uint8_t> nonce = Botan::hex_decode("3c8cc2970a008f75cc5beae2847258c2");
1✔
1301
            const std::vector<uint8_t> exp_ciphertext = Botan::hex_decode(
1✔
1302
               "3c441f32ce07822364d7a2990e50bb13d7b02a26969e4a937e5e9073b0d9c968db90bdb3da3d00afd0fc6a83551da95e");
1✔
1303

1304
            std::vector<uint8_t> ciphertext(tag_len + plaintext.size());
1✔
1305

1306
            size_t output_written = 0;
1✔
1307
            size_t input_consumed = 0;
1✔
1308

1309
            // Test that after clear or final the object can be reused
1310
            for(size_t r = 0; r != 2; ++r) {
3✔
1311
               TEST_FFI_OK(botan_cipher_set_key, (cipher_encrypt, symkey.data(), symkey.size()));
2✔
1312
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, nonce.data(), nonce.size()));
2✔
1313
               TEST_FFI_OK(botan_cipher_update,
2✔
1314
                           (cipher_encrypt,
1315
                            0,
1316
                            ciphertext.data(),
1317
                            ciphertext.size(),
1318
                            &output_written,
1319
                            plaintext.data(),
1320
                            plaintext.size(),
1321
                            &input_consumed));
1322
               TEST_FFI_OK(botan_cipher_clear, (cipher_encrypt));
2✔
1323

1324
               TEST_FFI_OK(botan_cipher_set_key, (cipher_encrypt, symkey.data(), symkey.size()));
2✔
1325
               TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, nonce.data(), nonce.size()));
2✔
1326
               TEST_FFI_OK(botan_cipher_update,
2✔
1327
                           (cipher_encrypt,
1328
                            BOTAN_CIPHER_UPDATE_FLAG_FINAL,
1329
                            ciphertext.data(),
1330
                            ciphertext.size(),
1331
                            &output_written,
1332
                            plaintext.data(),
1333
                            plaintext.size(),
1334
                            &input_consumed));
1335

1336
               ciphertext.resize(output_written);
2✔
1337
               result.test_eq("AES/EAX ciphertext", ciphertext, exp_ciphertext);
4✔
1338

1339
               if(TEST_FFI_OK(botan_cipher_init, (&cipher_decrypt, "AES-128/EAX", BOTAN_CIPHER_INIT_FLAG_DECRYPT))) {
2✔
1340
                  std::vector<uint8_t> decrypted(plaintext.size());
2✔
1341

1342
                  TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_decrypt, &update_granularity));
2✔
1343
                  TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_decrypt, &ideal_granularity));
2✔
1344

1345
                  result.test_eq("ideal granularity is a multiple of update granularity (decrypt)",
2✔
1346
                                 ideal_granularity % update_granularity,
1347
                                 0);
1348

1349
                  TEST_FFI_OK(botan_cipher_set_key, (cipher_decrypt, symkey.data(), symkey.size()));
2✔
1350
                  TEST_FFI_OK(botan_cipher_start, (cipher_decrypt, nonce.data(), nonce.size()));
2✔
1351
                  TEST_FFI_OK(botan_cipher_update,
2✔
1352
                              (cipher_decrypt,
1353
                               BOTAN_CIPHER_UPDATE_FLAG_FINAL,
1354
                               decrypted.data(),
1355
                               decrypted.size(),
1356
                               &output_written,
1357
                               ciphertext.data(),
1358
                               ciphertext.size(),
1359
                               &input_consumed));
1360

1361
                  result.test_int_eq(input_consumed, ciphertext.size(), "All input consumed");
2✔
1362
                  result.test_int_eq(output_written, decrypted.size(), "Expected output size produced");
2✔
1363
                  result.test_eq("AES/EAX plaintext", decrypted, plaintext);
4✔
1364

1365
                  TEST_FFI_OK(botan_cipher_destroy, (cipher_decrypt));
4✔
1366
               }
2✔
1367
            }
1368

1369
            TEST_FFI_OK(botan_cipher_destroy, (cipher_encrypt));
2✔
1370
         }
5✔
1371
      }
1✔
1372
};
1373

1374
class FFI_AEAD_Test final : public FFI_Test {
×
1375
   public:
1376
      std::string name() const override { return "FFI AEAD"; }
1✔
1377

1378
      void ffi_test(Test::Result& merged_result, botan_rng_t rng) override {
1✔
1379
         botan_cipher_t cipher_encrypt, cipher_decrypt;
1✔
1380

1381
         std::array<std::string, 5> aeads = {
1✔
1382
            "AES-128/GCM", "ChaCha20Poly1305", "AES-128/EAX", "AES-256/SIV", "AES-128/CCM"};
1✔
1383

1384
         for(const std::string& aead : aeads) {
6✔
1385
            Test::Result result(Botan::fmt("AEAD {}", aead));
5✔
1386

1387
            if(!TEST_FFI_INIT(botan_cipher_init, (&cipher_encrypt, aead.c_str(), BOTAN_CIPHER_INIT_FLAG_ENCRYPT))) {
5✔
1388
               continue;
×
1389
            }
1390

1391
            if(!botan_cipher_is_authenticated(cipher_encrypt)) {
5✔
1392
               result.test_failure("Cipher " + aead + " claims is not authenticated");
×
1393
               botan_cipher_destroy(cipher_encrypt);
×
1394
               continue;
×
1395
            }
1396

1397
            size_t min_keylen = 0;
5✔
1398
            size_t max_keylen = 0;
5✔
1399
            size_t update_granularity = 0;
5✔
1400
            size_t ideal_granularity = 0;
5✔
1401
            size_t noncelen = 0;
5✔
1402
            size_t taglen = 0;
5✔
1403
            constexpr size_t pt_multiplier = 5;
5✔
1404
            TEST_FFI_OK(botan_cipher_query_keylen, (cipher_encrypt, &min_keylen, &max_keylen));
5✔
1405
            TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_encrypt, &update_granularity));
5✔
1406
            TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_encrypt, &ideal_granularity));
5✔
1407
            TEST_FFI_OK(botan_cipher_get_default_nonce_length, (cipher_encrypt, &noncelen));
5✔
1408
            TEST_FFI_OK(botan_cipher_get_tag_length, (cipher_encrypt, &taglen));
5✔
1409

1410
            result.test_eq(
5✔
1411
               "ideal granularity is a multiple of update granularity", ideal_granularity % update_granularity, 0);
1412

1413
            std::vector<uint8_t> key(max_keylen);
5✔
1414
            TEST_FFI_OK(botan_rng_get, (rng, key.data(), key.size()));
5✔
1415
            TEST_FFI_OK(botan_cipher_set_key, (cipher_encrypt, key.data(), key.size()));
5✔
1416

1417
            std::vector<uint8_t> nonce(noncelen);
5✔
1418
            TEST_FFI_OK(botan_rng_get, (rng, nonce.data(), nonce.size()));
5✔
1419
            TEST_FFI_OK(botan_cipher_start, (cipher_encrypt, nonce.data(), nonce.size()));
5✔
1420

1421
            std::vector<uint8_t> plaintext(ideal_granularity * pt_multiplier);
5✔
1422
            std::vector<uint8_t> ciphertext(ideal_granularity * pt_multiplier + taglen);
5✔
1423
            TEST_FFI_OK(botan_rng_get, (rng, plaintext.data(), plaintext.size()));
5✔
1424

1425
            std::vector<uint8_t> dummy_buffer(1024);
5✔
1426
            TEST_FFI_OK(botan_rng_get, (rng, dummy_buffer.data(), dummy_buffer.size()));
5✔
1427
            std::vector<uint8_t> dummy_buffer_reference = dummy_buffer;
5✔
1428

1429
            const bool requires_entire_message = botan_cipher_requires_entire_message(cipher_encrypt);
5✔
1430
            result.test_eq(
5✔
1431
               "requires entire message", requires_entire_message, (aead == "AES-256/SIV" || aead == "AES-128/CCM"));
5✔
1432

1433
            std::span<const uint8_t> pt_slicer(plaintext);
5✔
1434
            std::span<uint8_t> ct_stuffer(ciphertext);
5✔
1435

1436
            // Process data that is explicitly a multiple of the ideal
1437
            // granularity and therefore should be aligned with the cipher's
1438
            // internal block size.
1439
            for(size_t i = 0; i < pt_multiplier; ++i) {
30✔
1440
               size_t output_written = 0;
25✔
1441
               size_t input_consumed = 0;
25✔
1442

1443
               auto pt_chunk = pt_slicer.first(ideal_granularity);
25✔
1444

1445
               // The existing implementation won't consume any bytes from the
1446
               // input if there is no space in the output buffer. Even when
1447
               // the cipher is a mode that won't produce any output until the
1448
               // entire message is processed. Hence, give it some dummy buffer.
1449
               BOTAN_ASSERT_NOMSG(dummy_buffer.size() > ideal_granularity);
25✔
1450
               auto ct_chunk = (requires_entire_message) ? std::span(dummy_buffer).first(ideal_granularity)
25✔
1451
                                                         : ct_stuffer.first(ideal_granularity);
1452

1453
               TEST_FFI_OK(botan_cipher_update,
25✔
1454
                           (cipher_encrypt,
1455
                            0 /* don't finalize */,
1456
                            ct_chunk.data(),
1457
                            ct_chunk.size(),
1458
                            &output_written,
1459
                            pt_chunk.data(),
1460
                            pt_chunk.size(),
1461
                            &input_consumed));
1462

1463
               result.test_gt("some input consumed", input_consumed, 0);
25✔
1464
               result.test_lte("at most, all input consumed", input_consumed, pt_chunk.size());
25✔
1465
               pt_slicer = pt_slicer.subspan(input_consumed);
25✔
1466

1467
               if(requires_entire_message) {
25✔
1468
                  result.test_eq("no output produced", output_written, 0);
20✔
1469
               } else {
1470
                  result.test_eq("all bytes produced", output_written, input_consumed);
15✔
1471
                  ct_stuffer = ct_stuffer.subspan(output_written);
15✔
1472
               }
1473
            }
1474

1475
            // Trying to pull a part of the authentication tag should fail,
1476
            // as we must consume the entire tag in a single invocation to
1477
            // botan_cipher_update().
1478
            size_t final_output_written = 42;
5✔
1479
            size_t final_input_consumed = 1337;
5✔
1480
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
5✔
1481
                        botan_cipher_update,
1482
                        (cipher_encrypt,
1483
                         BOTAN_CIPHER_UPDATE_FLAG_FINAL,
1484
                         dummy_buffer.data(),
1485
                         3, /* not enough to hold any reasonable auth'n tag */
1486
                         &final_output_written,
1487
                         pt_slicer.data(),  // remaining bytes (typically 0)
1488
                         pt_slicer.size(),
1489
                         &final_input_consumed));
1490

1491
            const size_t expected_final_size = requires_entire_message ? ciphertext.size() : taglen + pt_slicer.size();
5✔
1492

1493
            result.test_eq("remaining bytes consumed in bogus final", final_input_consumed, pt_slicer.size());
5✔
1494
            result.test_eq("required buffer size is written in bogus final", final_output_written, expected_final_size);
5✔
1495

1496
            auto final_ct_chunk = ct_stuffer.first(expected_final_size);
5✔
1497

1498
            TEST_FFI_OK(botan_cipher_update,
5✔
1499
                        (cipher_encrypt,
1500
                         BOTAN_CIPHER_UPDATE_FLAG_FINAL,
1501
                         final_ct_chunk.data(),
1502
                         final_ct_chunk.size(),
1503
                         &final_output_written,
1504
                         nullptr,  // no more input
1505
                         0,
1506
                         &final_input_consumed));
1507

1508
            result.test_eq("no bytes consumed in final", final_input_consumed, 0);
5✔
1509
            result.test_eq("final bytes written", final_output_written, expected_final_size);
5✔
1510
            result.test_eq("dummy buffer unchanged", dummy_buffer, dummy_buffer_reference);
10✔
1511

1512
            TEST_FFI_OK(botan_cipher_destroy, (cipher_encrypt));
5✔
1513

1514
            // ----------------------------------------------------------------
1515

1516
            TEST_FFI_INIT(botan_cipher_init, (&cipher_decrypt, aead.c_str(), BOTAN_CIPHER_INIT_FLAG_DECRYPT));
5✔
1517

1518
            TEST_FFI_OK(botan_cipher_get_update_granularity, (cipher_decrypt, &update_granularity));
5✔
1519
            TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (cipher_decrypt, &ideal_granularity));
5✔
1520

1521
            result.test_eq("ideal granularity is a multiple of update granularity (decrypt)",
5✔
1522
                           ideal_granularity % update_granularity,
1523
                           0);
1524

1525
            TEST_FFI_OK(botan_cipher_set_key, (cipher_decrypt, key.data(), key.size()));
5✔
1526
            TEST_FFI_OK(botan_cipher_start, (cipher_decrypt, nonce.data(), nonce.size()));
5✔
1527

1528
            std::vector<uint8_t> decrypted(plaintext.size());
5✔
1529

1530
            std::span<const uint8_t> ct_slicer(ciphertext);
5✔
1531
            std::span<uint8_t> pt_stuffer(decrypted);
5✔
1532

1533
            // Process data that is explicitly a multiple of the ideal
1534
            // granularity and therefore should be aligned with the cipher's
1535
            // internal block size.
1536
            for(size_t i = 0; i < pt_multiplier; ++i) {
30✔
1537
               size_t output_written = 42;
25✔
1538
               size_t input_consumed = 1337;
25✔
1539

1540
               auto ct_chunk = ct_slicer.first(ideal_granularity);
25✔
1541

1542
               // The existing implementation won't consume any bytes from the
1543
               // input if there is no space in the output buffer. Even when
1544
               // the cipher is a mode that won't produce any output until the
1545
               // entire message is processed. Hence, give it some dummy buffer.
1546
               auto pt_chunk = (requires_entire_message) ? std::span(dummy_buffer).first(ideal_granularity)
25✔
1547
                                                         : pt_stuffer.first(ideal_granularity);
1548

1549
               TEST_FFI_OK(botan_cipher_update,
25✔
1550
                           (cipher_decrypt,
1551
                            0 /* don't finalize */,
1552
                            pt_chunk.data(),
1553
                            pt_chunk.size(),
1554
                            &output_written,
1555
                            ct_chunk.data(),
1556
                            ct_chunk.size(),
1557
                            &input_consumed));
1558

1559
               result.test_gt("some input consumed", input_consumed, 0);
25✔
1560
               result.test_lte("at most, all input consumed", input_consumed, ct_chunk.size());
25✔
1561
               ct_slicer = ct_slicer.subspan(input_consumed);
25✔
1562

1563
               if(requires_entire_message) {
25✔
1564
                  result.test_eq("no output produced", output_written, 0);
20✔
1565
               } else {
1566
                  result.test_eq("all bytes produced", output_written, input_consumed);
15✔
1567
                  pt_stuffer = pt_stuffer.subspan(output_written);
15✔
1568
               }
1569
            }
1570

1571
            const size_t expected_final_size_dec = requires_entire_message ? plaintext.size() : pt_stuffer.size();
5✔
1572
            auto pt_chunk = pt_stuffer.first(expected_final_size_dec);
5✔
1573

1574
            size_t final_output_written_dec = 42;
5✔
1575
            size_t final_input_consumed_dec = 1337;
5✔
1576

1577
            TEST_FFI_OK(botan_cipher_update,
5✔
1578
                        (cipher_decrypt,
1579
                         BOTAN_CIPHER_UPDATE_FLAG_FINAL,
1580
                         pt_chunk.data(),
1581
                         pt_chunk.size(),
1582
                         &final_output_written_dec,
1583
                         ct_slicer.data(),  // remaining bytes (typically 0)
1584
                         ct_slicer.size(),
1585
                         &final_input_consumed_dec));
1586

1587
            result.test_eq("remaining bytes consumed in final (decrypt)", final_input_consumed_dec, ct_slicer.size());
5✔
1588
            result.test_eq("bytes written in final (decrypt)", final_output_written_dec, expected_final_size_dec);
5✔
1589
            result.test_eq("dummy buffer unchanged", dummy_buffer, dummy_buffer_reference);
10✔
1590

1591
            result.test_eq("decrypted plaintext", decrypted, plaintext);
10✔
1592

1593
            TEST_FFI_OK(botan_cipher_destroy, (cipher_decrypt));
5✔
1594

1595
            merged_result.merge(result, true /* ignore names */);
5✔
1596
         }
35✔
1597
      }
1✔
1598
};
1599

1600
class FFI_StreamCipher_Test final : public FFI_Test {
×
1601
   public:
1602
      std::string name() const override { return "FFI stream ciphers"; }
1✔
1603

1604
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
1605
         botan_cipher_t ctr;
1✔
1606

1607
         if(TEST_FFI_INIT(botan_cipher_init, (&ctr, "AES-128/CTR-BE", BOTAN_CIPHER_INIT_FLAG_ENCRYPT))) {
1✔
1608
            const std::vector<uint8_t> key = Botan::hex_decode("2B7E151628AED2A6ABF7158809CF4F3C");
1✔
1609
            const std::vector<uint8_t> nonce = Botan::hex_decode("F0F1F2F3F4F5F6F7F8F9FAFBFCFDFF");
1✔
1610
            const std::vector<uint8_t> pt = Botan::hex_decode(
1✔
1611
               "AE2D8A571E03AC9C9EB76FAC45AF8E5130C81C46A35CE411E5FBC1191A0A52EFF69F2445DF4F9B17AD2B417BE66C3710");
1✔
1612
            const std::vector<uint8_t> exp_ct = Botan::hex_decode(
1✔
1613
               "9806F66B7970FDFF8617187BB9FFFDFF5AE4DF3EDBD5D35E5B4F09020DB03EAB1E031DDA2FBE03D1792170A0F3009CEE");
1✔
1614

1615
            std::vector<uint8_t> ct(pt.size());
1✔
1616

1617
            size_t update_granularity = 0;
1✔
1618
            size_t ideal_granularity = 0;
1✔
1619

1620
            TEST_FFI_OK(botan_cipher_get_update_granularity, (ctr, &update_granularity));
1✔
1621
            TEST_FFI_OK(botan_cipher_get_ideal_update_granularity, (ctr, &ideal_granularity));
1✔
1622

1623
            result.test_eq(
1✔
1624
               "ideal granularity is a multiple of update granularity", ideal_granularity % update_granularity, 0);
1625

1626
            TEST_FFI_RC(0, botan_cipher_is_authenticated, (ctr));
1✔
1627

1628
            size_t input_consumed = 0;
1✔
1629
            size_t output_written = 0;
1✔
1630

1631
            TEST_FFI_OK(botan_cipher_set_key, (ctr, key.data(), key.size()));
1✔
1632
            TEST_FFI_OK(botan_cipher_start, (ctr, nonce.data(), nonce.size()));
1✔
1633

1634
            // Test partial updates...
1635
            TEST_FFI_OK(botan_cipher_update,
1✔
1636
                        (ctr, 0, ct.data(), ct.size(), &output_written, pt.data(), 5, &input_consumed));
1637

1638
            result.test_int_eq(output_written, 5, "Expected output written");
1✔
1639
            result.test_int_eq(input_consumed, 5, "Expected input consumed");
1✔
1640

1641
            TEST_FFI_OK(botan_cipher_update,
1✔
1642
                        (ctr, 0, &ct[5], ct.size() - 5, &output_written, &pt[5], pt.size() - 5, &input_consumed));
1643

1644
            result.test_int_eq(output_written, ct.size() - 5, "Expected output written");
1✔
1645
            result.test_int_eq(input_consumed, pt.size() - 5, "Expected input consumed");
1✔
1646
            result.test_eq("AES-128/CTR ciphertext", ct, exp_ct);
2✔
1647

1648
            TEST_FFI_OK(botan_cipher_destroy, (ctr));
2✔
1649
         }
5✔
1650
      }
1✔
1651
};
1652

1653
class FFI_HashFunction_Test final : public FFI_Test {
×
1654
   public:
1655
      std::string name() const override { return "FFI hash"; }
1✔
1656

1657
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
1658
         const char* input_str = "ABC";
1✔
1659

1660
         botan_hash_t hash;
1✔
1661
         TEST_FFI_FAIL("invalid hash name", botan_hash_init, (&hash, "SHA-255", 0));
2✔
1662
         TEST_FFI_FAIL("invalid flags", botan_hash_init, (&hash, "SHA-256", 1));
2✔
1663

1664
         if(TEST_FFI_INIT(botan_hash_init, (&hash, "SHA-256", 0))) {
1✔
1665
            char namebuf[10];
1✔
1666
            size_t name_len = 7;
1✔
1667
            TEST_FFI_FAIL("output buffer too short", botan_hash_name, (hash, namebuf, &name_len));
2✔
1668
            result.test_eq("name len", name_len, 8);
1✔
1669

1670
            name_len = sizeof(namebuf);
1✔
1671
            if(TEST_FFI_OK(botan_hash_name, (hash, namebuf, &name_len))) {
1✔
1672
               result.test_eq("name len", name_len, 8);
1✔
1673
               result.test_eq("name", std::string(namebuf), "SHA-256");
2✔
1674
            }
1675

1676
            size_t block_size;
1✔
1677
            if(TEST_FFI_OK(botan_hash_block_size, (hash, &block_size))) {
1✔
1678
               result.test_eq("hash block size", block_size, 64);
2✔
1679
            }
1680

1681
            size_t output_len;
1✔
1682
            if(TEST_FFI_OK(botan_hash_output_length, (hash, &output_len))) {
1✔
1683
               result.test_eq("hash output length", output_len, 32);
1✔
1684

1685
               std::vector<uint8_t> outbuf(output_len);
1✔
1686

1687
               // Test that after clear or final the object can be reused
1688
               for(size_t r = 0; r != 2; ++r) {
3✔
1689
                  TEST_FFI_OK(botan_hash_update, (hash, reinterpret_cast<const uint8_t*>(input_str), 1));
2✔
1690
                  TEST_FFI_OK(botan_hash_clear, (hash));
2✔
1691

1692
                  TEST_FFI_OK(botan_hash_update,
2✔
1693
                              (hash, reinterpret_cast<const uint8_t*>(input_str), std::strlen(input_str)));
1694
                  TEST_FFI_OK(botan_hash_final, (hash, outbuf.data()));
2✔
1695

1696
                  result.test_eq(
4✔
1697
                     "SHA-256 output", outbuf, "B5D4045C3F466FA91FE2CC6ABE79232A1A57CDF104F7A26E716E0A1E2789DF78");
1698
               }
1699

1700
               // Test botan_hash_copy_state
1701
               const char* msg = "message digest";
1✔
1702
               const char* expected = "F7846F55CF23E14EEBEAB5B4E1550CAD5B509E3348FBC4EFA3A1413D393CB650";
1✔
1703
               TEST_FFI_OK(botan_hash_clear, (hash));
1✔
1704
               TEST_FFI_OK(botan_hash_update, (hash, reinterpret_cast<const uint8_t*>(&msg[0]), 1));
1✔
1705
               botan_hash_t fork;
1✔
1706
               if(TEST_FFI_OK(botan_hash_copy_state, (&fork, hash))) {
1✔
1707
                  TEST_FFI_OK(botan_hash_update,
1✔
1708
                              (fork, reinterpret_cast<const uint8_t*>(&msg[1]), std::strlen(msg) - 2));
1709

1710
                  TEST_FFI_OK(botan_hash_update,
1✔
1711
                              (hash, reinterpret_cast<const uint8_t*>(&msg[1]), std::strlen(msg) - 1));
1712
                  TEST_FFI_OK(botan_hash_final, (hash, outbuf.data()));
1✔
1713
                  result.test_eq("hashing split", outbuf, expected);
1✔
1714

1715
                  TEST_FFI_OK(botan_hash_update,
1✔
1716
                              (fork, reinterpret_cast<const uint8_t*>(&msg[std::strlen(msg) - 1]), 1));
1717
                  TEST_FFI_OK(botan_hash_final, (fork, outbuf.data()));
1✔
1718
                  result.test_eq("hashing split", outbuf, expected);
1✔
1719

1720
                  TEST_FFI_OK(botan_hash_destroy, (fork));
2✔
1721
               }
1722
            }
1✔
1723

1724
            TEST_FFI_OK(botan_hash_destroy, (hash));
2✔
1725
         }
1726
      }
1✔
1727
};
1728

1729
class FFI_MAC_Test final : public FFI_Test {
×
1730
   public:
1731
      std::string name() const override { return "FFI MAC"; }
1✔
1732

1733
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
1734
         const char* input_str = "ABC";
1✔
1735

1736
         // MAC test
1737
         botan_mac_t mac;
1✔
1738
         TEST_FFI_FAIL("bad flag", botan_mac_init, (&mac, "HMAC(SHA-256)", 1));
2✔
1739
         TEST_FFI_FAIL("bad name", botan_mac_init, (&mac, "HMAC(SHA-259)", 0));
2✔
1740

1741
         if(TEST_FFI_INIT(botan_mac_init, (&mac, "HMAC(SHA-256)", 0))) {
1✔
1742
            char namebuf[16];
1✔
1743
            size_t name_len = 13;
1✔
1744
            TEST_FFI_FAIL("output buffer too short", botan_mac_name, (mac, namebuf, &name_len));
2✔
1745
            result.test_eq("name len", name_len, 14);
1✔
1746

1747
            name_len = sizeof(namebuf);
1✔
1748
            if(TEST_FFI_OK(botan_mac_name, (mac, namebuf, &name_len))) {
1✔
1749
               result.test_eq("name len", name_len, 14);
1✔
1750
               result.test_eq("name", std::string(namebuf), "HMAC(SHA-256)");
2✔
1751
            }
1752

1753
            size_t min_keylen = 0, max_keylen = 0, mod_keylen = 0;
1✔
1754
            TEST_FFI_RC(0, botan_mac_get_keyspec, (mac, nullptr, nullptr, nullptr));
1✔
1755
            TEST_FFI_RC(0, botan_mac_get_keyspec, (mac, &min_keylen, nullptr, nullptr));
1✔
1756
            TEST_FFI_RC(0, botan_mac_get_keyspec, (mac, nullptr, &max_keylen, nullptr));
1✔
1757
            TEST_FFI_RC(0, botan_mac_get_keyspec, (mac, nullptr, nullptr, &mod_keylen));
1✔
1758

1759
            result.test_eq("Expected min keylen", min_keylen, 0);
1✔
1760
            result.test_eq("Expected max keylen", max_keylen, 4096);
1✔
1761
            result.test_eq("Expected mod keylen", mod_keylen, 1);
1✔
1762

1763
            size_t output_len;
1✔
1764
            if(TEST_FFI_OK(botan_mac_output_length, (mac, &output_len))) {
1✔
1765
               result.test_eq("MAC output length", output_len, 32);
1✔
1766

1767
               const uint8_t mac_key[] = {0xAA, 0xBB, 0xCC, 0xDD};
1✔
1768
               std::vector<uint8_t> outbuf(output_len);
1✔
1769

1770
               // Test that after clear or final the object can be reused
1771
               for(size_t r = 0; r != 2; ++r) {
3✔
1772
                  TEST_FFI_OK(botan_mac_set_key, (mac, mac_key, sizeof(mac_key)));
2✔
1773
                  TEST_FFI_OK(botan_mac_update,
2✔
1774
                              (mac, reinterpret_cast<const uint8_t*>(input_str), std::strlen(input_str)));
1775
                  TEST_FFI_OK(botan_mac_clear, (mac));
2✔
1776

1777
                  TEST_FFI_OK(botan_mac_set_key, (mac, mac_key, sizeof(mac_key)));
2✔
1778
                  TEST_FFI_OK(botan_mac_update,
2✔
1779
                              (mac, reinterpret_cast<const uint8_t*>(input_str), std::strlen(input_str)));
1780
                  TEST_FFI_OK(botan_mac_final, (mac, outbuf.data()));
2✔
1781

1782
                  result.test_eq(
4✔
1783
                     "HMAC output", outbuf, "1A82EEA984BC4A7285617CC0D05F1FE1D6C96675924A81BC965EE8FF7B0697A7");
1784
               }
1785
            }
1✔
1786

1787
            TEST_FFI_OK(botan_mac_destroy, (mac));
2✔
1788
         }
1789
      }
1✔
1790
};
1791

1792
class FFI_Scrypt_Test final : public FFI_Test {
×
1793
   public:
1794
      std::string name() const override { return "FFI Scrypt"; }
1✔
1795

1796
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
1797
         std::vector<uint8_t> output(24);
1✔
1798
         const uint8_t salt[8] = {0};
1✔
1799
         const char* pass = "password";
1✔
1800

1801
         if(TEST_FFI_INIT(botan_scrypt, (output.data(), output.size(), pass, salt, sizeof(salt), 8, 1, 1))) {
1✔
1802
            result.test_eq("scrypt output", output, "4B9B888D695288E002CC4F9D90808A4D296A45CE4471AFBB");
1✔
1803

1804
            size_t N, r, p;
1✔
1805
            TEST_FFI_OK(botan_pwdhash_timed,
1✔
1806
                        ("Scrypt", 50, &r, &p, &N, output.data(), output.size(), "bunny", 5, salt, sizeof(salt)));
1807

1808
            std::vector<uint8_t> cmp(output.size());
1✔
1809

1810
            TEST_FFI_OK(botan_pwdhash, ("Scrypt", N, r, p, cmp.data(), cmp.size(), "bunny", 5, salt, sizeof(salt)));
1✔
1811
            result.test_eq("recomputed scrypt", cmp, output);
2✔
1812
         }
1✔
1813
      }
1✔
1814
};
1815

1816
class FFI_KDF_Test final : public FFI_Test {
×
1817
   public:
1818
      std::string name() const override { return "FFI KDF"; }
1✔
1819

1820
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
1821
         std::vector<uint8_t> outbuf;
1✔
1822

1823
         const std::string passphrase = "ltexmfeyylmlbrsyikaw";
1✔
1824

1825
         const std::vector<uint8_t> pbkdf_salt = Botan::hex_decode("ED1F39A0A7F3889AAF7E60743B3BC1CC2C738E60");
1✔
1826
         const size_t pbkdf_out_len = 10;
1✔
1827
         const size_t pbkdf_iterations = 1000;
1✔
1828

1829
         outbuf.resize(pbkdf_out_len);
1✔
1830

1831
         if(TEST_FFI_INIT(botan_pbkdf,
1✔
1832
                          ("PBKDF2(SHA-1)",
1833
                           outbuf.data(),
1834
                           outbuf.size(),
1835
                           passphrase.c_str(),
1836
                           pbkdf_salt.data(),
1837
                           pbkdf_salt.size(),
1838
                           pbkdf_iterations))) {
1839
            result.test_eq("PBKDF output", outbuf, "027AFADD48F4BE8DCC4F");
1✔
1840

1841
            size_t iters_10ms, iters_100ms;
1✔
1842

1843
            TEST_FFI_OK(botan_pbkdf_timed,
1✔
1844
                        ("PBKDF2(SHA-1)",
1845
                         outbuf.data(),
1846
                         outbuf.size(),
1847
                         passphrase.c_str(),
1848
                         pbkdf_salt.data(),
1849
                         pbkdf_salt.size(),
1850
                         10,
1851
                         &iters_10ms));
1852
            TEST_FFI_OK(botan_pbkdf_timed,
1✔
1853
                        ("PBKDF2(SHA-1)",
1854
                         outbuf.data(),
1855
                         outbuf.size(),
1856
                         passphrase.c_str(),
1857
                         pbkdf_salt.data(),
1858
                         pbkdf_salt.size(),
1859
                         100,
1860
                         &iters_100ms));
1861

1862
            result.test_note("PBKDF timed 10 ms " + std::to_string(iters_10ms) + " iterations " + "100 ms " +
5✔
1863
                             std::to_string(iters_100ms) + " iterations");
4✔
1864
         }
1865

1866
         const std::vector<uint8_t> kdf_secret = Botan::hex_decode("92167440112E");
1✔
1867
         const std::vector<uint8_t> kdf_salt = Botan::hex_decode("45A9BEDED69163123D0348F5185F61ABFB1BF18D6AEA454F");
1✔
1868
         const size_t kdf_out_len = 18;
1✔
1869
         outbuf.resize(kdf_out_len);
1✔
1870

1871
         if(TEST_FFI_INIT(botan_kdf,
1✔
1872
                          ("KDF2(SHA-1)",
1873
                           outbuf.data(),
1874
                           outbuf.size(),
1875
                           kdf_secret.data(),
1876
                           kdf_secret.size(),
1877
                           kdf_salt.data(),
1878
                           kdf_salt.size(),
1879
                           nullptr,
1880
                           0))) {
1881
            result.test_eq("KDF output", outbuf, "3A5DC9AA1C872B4744515AC2702D6396FC2A");
2✔
1882
         }
1883

1884
         size_t out_len = 64;
1✔
1885
         std::string outstr;
1✔
1886
         outstr.resize(out_len);
1✔
1887

1888
         int rc =
1✔
1889
            botan_bcrypt_generate(reinterpret_cast<uint8_t*>(&outstr[0]), &out_len, passphrase.c_str(), rng, 4, 0);
1✔
1890

1891
         if(rc == 0) {
1✔
1892
            result.test_eq("bcrypt output size", out_len, 61);
1✔
1893

1894
            TEST_FFI_OK(botan_bcrypt_is_valid, (passphrase.c_str(), outstr.data()));
1✔
1895
            TEST_FFI_FAIL("bad password", botan_bcrypt_is_valid, ("nope", outstr.data()));
2✔
1896
         }
1897
      }
5✔
1898
};
1899

1900
class FFI_Blockcipher_Test final : public FFI_Test {
×
1901
   public:
1902
      std::string name() const override { return "FFI block ciphers"; }
1✔
1903

1904
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
1905
         botan_block_cipher_t cipher;
1✔
1906

1907
         if(TEST_FFI_INIT(botan_block_cipher_init, (&cipher, "AES-128"))) {
1✔
1908
            char namebuf[10];
1✔
1909
            size_t name_len = 7;
1✔
1910
            TEST_FFI_FAIL("output buffer too short", botan_block_cipher_name, (cipher, namebuf, &name_len));
2✔
1911
            result.test_eq("name len", name_len, 8);
1✔
1912

1913
            name_len = sizeof(namebuf);
1✔
1914
            if(TEST_FFI_OK(botan_block_cipher_name, (cipher, namebuf, &name_len))) {
1✔
1915
               result.test_eq("name len", name_len, 8);
1✔
1916
               result.test_eq("name", std::string(namebuf), "AES-128");
2✔
1917
            }
1918

1919
            const std::vector<uint8_t> zero16(16, 0);
1✔
1920
            std::vector<uint8_t> block(16, 0);
1✔
1921

1922
            TEST_FFI_OK(botan_block_cipher_clear, (cipher));
1✔
1923

1924
            TEST_FFI_RC(
1✔
1925
               BOTAN_FFI_ERROR_KEY_NOT_SET, botan_block_cipher_encrypt_blocks, (cipher, block.data(), block.data(), 1));
1926
            TEST_FFI_RC(
1✔
1927
               BOTAN_FFI_ERROR_KEY_NOT_SET, botan_block_cipher_decrypt_blocks, (cipher, block.data(), block.data(), 1));
1928

1929
            TEST_FFI_RC(BOTAN_FFI_ERROR_NULL_POINTER, botan_block_cipher_encrypt_blocks, (cipher, nullptr, nullptr, 0));
1✔
1930
            TEST_FFI_RC(BOTAN_FFI_ERROR_NULL_POINTER, botan_block_cipher_decrypt_blocks, (cipher, nullptr, nullptr, 0));
1✔
1931

1932
            TEST_FFI_RC(16, botan_block_cipher_block_size, (cipher));
1✔
1933

1934
            size_t min_keylen = 0, max_keylen = 0, mod_keylen = 0;
1✔
1935
            TEST_FFI_RC(0, botan_block_cipher_get_keyspec, (cipher, nullptr, nullptr, nullptr));
1✔
1936
            TEST_FFI_RC(0, botan_block_cipher_get_keyspec, (cipher, &min_keylen, nullptr, nullptr));
1✔
1937
            TEST_FFI_RC(0, botan_block_cipher_get_keyspec, (cipher, nullptr, &max_keylen, nullptr));
1✔
1938
            TEST_FFI_RC(0, botan_block_cipher_get_keyspec, (cipher, nullptr, nullptr, &mod_keylen));
1✔
1939

1940
            result.test_eq("Expected min keylen", min_keylen, 16);
1✔
1941
            result.test_eq("Expected max keylen", max_keylen, 16);
1✔
1942
            result.test_eq("Expected mod keylen", mod_keylen, 1);
1✔
1943

1944
            TEST_FFI_OK(botan_block_cipher_set_key, (cipher, zero16.data(), zero16.size()));
1✔
1945

1946
            TEST_FFI_OK(botan_block_cipher_encrypt_blocks, (cipher, block.data(), block.data(), 1));
1✔
1947
            result.test_eq("AES-128 encryption works", block, "66E94BD4EF8A2C3B884CFA59CA342B2E");
1✔
1948

1949
            TEST_FFI_OK(botan_block_cipher_encrypt_blocks, (cipher, block.data(), block.data(), 1));
1✔
1950
            result.test_eq("AES-128 encryption works", block, "F795BD4A52E29ED713D313FA20E98DBC");
1✔
1951

1952
            TEST_FFI_OK(botan_block_cipher_decrypt_blocks, (cipher, block.data(), block.data(), 1));
1✔
1953
            result.test_eq("AES-128 decryption works", block, "66E94BD4EF8A2C3B884CFA59CA342B2E");
1✔
1954

1955
            TEST_FFI_OK(botan_block_cipher_decrypt_blocks, (cipher, block.data(), block.data(), 1));
1✔
1956
            result.test_eq("AES-128 decryption works", block, "00000000000000000000000000000000");
1✔
1957

1958
            TEST_FFI_OK(botan_block_cipher_clear, (cipher));
1✔
1959
            botan_block_cipher_destroy(cipher);
1✔
1960
         }
2✔
1961
      }
1✔
1962
};
1963

1964
class FFI_ErrorHandling_Test final : public FFI_Test {
×
1965
   public:
1966
      std::string name() const override { return "FFI error handling"; }
1✔
1967

1968
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
1969
         // delete of null is ok/ignored
1970
         TEST_FFI_RC(0, botan_hash_destroy, (nullptr));
1✔
1971

1972
   #if !defined(BOTAN_HAS_SANITIZER_UNDEFINED)
1973
         // Confirm that botan_x_destroy checks the argument type
1974
         botan_mp_t mp;
1✔
1975
         botan_mp_init(&mp);
1✔
1976
         TEST_FFI_RC(BOTAN_FFI_ERROR_INVALID_OBJECT, botan_hash_destroy, (reinterpret_cast<botan_hash_t>(mp)));
1✔
1977
         TEST_FFI_RC(0, botan_mp_destroy, (mp));
1✔
1978
   #endif
1979

1980
         std::set<std::string> errors;
1✔
1981
         for(int i = -100; i != 50; ++i) {
151✔
1982
            const char* err = botan_error_description(i);
150✔
1983
            result.confirm("Never a null pointer", err != nullptr);
300✔
1984

1985
            if(err) {
150✔
1986
               std::string s(err);
150✔
1987

1988
               if(s != "Unknown error") {
150✔
1989
                  result.confirm("No duplicate messages", !errors.contains(s));
42✔
1990
                  errors.insert(s);
21✔
1991
               }
1992
            }
150✔
1993
         }
1994
      }
1✔
1995
};
1996

1997
class FFI_Base64_Test final : public FFI_Test {
×
1998
   public:
1999
      std::string name() const override { return "FFI base64"; }
1✔
2000

2001
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
2002
         const uint8_t bin[9] = {0x16, 0x8a, 0x1f, 0x06, 0xe9, 0xe7, 0xcb, 0xdd, 0x34};
1✔
2003
         char out_buf[1024] = {0};
1✔
2004

2005
         size_t out_len = sizeof(out_buf);
1✔
2006
         TEST_FFI_OK(botan_base64_encode, (bin, sizeof(bin), out_buf, &out_len));
1✔
2007

2008
         result.test_eq("encoded string", out_buf, "FoofBunny900");
1✔
2009

2010
         out_len -= 1;
1✔
2011
         TEST_FFI_RC(
1✔
2012
            BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE, botan_base64_encode, (bin, sizeof(bin), out_buf, &out_len));
2013

2014
         const char* base64 = "U3VjaCBiYXNlNjQgd293IQ==";
1✔
2015
         uint8_t out_bin[1024] = {0};
1✔
2016

2017
         out_len = 3;
1✔
2018
         TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
2019
                     botan_base64_decode,
2020
                     (base64, strlen(base64), out_bin, &out_len));
2021

2022
         result.test_eq("output length", out_len, 18);
1✔
2023

2024
         out_len = sizeof(out_bin);
1✔
2025
         TEST_FFI_OK(botan_base64_decode, (base64, strlen(base64), out_bin, &out_len));
1✔
2026

2027
         result.test_eq(
3✔
2028
            "decoded string", std::string(reinterpret_cast<const char*>(out_bin), out_len), "Such base64 wow!");
2✔
2029
      }
1✔
2030
};
2031

2032
class FFI_Hex_Test final : public FFI_Test {
×
2033
   public:
2034
      std::string name() const override { return "FFI hex"; }
1✔
2035

2036
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
2037
         const uint8_t bin[4] = {0xDE, 0xAD, 0xBE, 0xEF};
1✔
2038
         char hex_buf[16] = {0};
1✔
2039

2040
         TEST_FFI_OK(botan_hex_encode, (bin, sizeof(bin), hex_buf, 0));
1✔
2041

2042
         result.test_eq("encoded string", hex_buf, "DEADBEEF");
1✔
2043

2044
         const char* hex = "67657420796572206A756D626F20736872696D70";
1✔
2045
         uint8_t out_bin[1024] = {0};
1✔
2046
         size_t out_len = 5;
1✔
2047

2048
         TEST_FFI_RC(
1✔
2049
            BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE, botan_hex_decode, (hex, strlen(hex), out_bin, &out_len));
2050

2051
         out_len = sizeof(out_bin);
1✔
2052
         TEST_FFI_OK(botan_hex_decode, (hex, strlen(hex), out_bin, &out_len));
1✔
2053

2054
         result.test_eq(
3✔
2055
            "decoded string", std::string(reinterpret_cast<const char*>(out_bin), out_len), "get yer jumbo shrimp");
2✔
2056
      }
1✔
2057
};
2058

2059
class FFI_MP_Test final : public FFI_Test {
×
2060
   public:
2061
      std::string name() const override { return "FFI MP"; }
1✔
2062

2063
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
2064
         char str_buf[1024] = {0};
1✔
2065
         size_t str_len = 0;
1✔
2066

2067
         botan_mp_t x;
1✔
2068
         botan_mp_init(&x);
1✔
2069
         TEST_FFI_RC(0, botan_mp_is_odd, (x));
1✔
2070
         TEST_FFI_RC(1, botan_mp_is_even, (x));
1✔
2071
         TEST_FFI_RC(0, botan_mp_is_negative, (x));
1✔
2072
         TEST_FFI_RC(1, botan_mp_is_positive, (x));
1✔
2073
         TEST_FFI_RC(1, botan_mp_is_zero, (x));
1✔
2074
         botan_mp_destroy(x);
1✔
2075

2076
         botan_mp_init(&x);
1✔
2077
         size_t bn_bytes = 0;
1✔
2078
         TEST_FFI_OK(botan_mp_num_bytes, (x, &bn_bytes));
1✔
2079
         result.test_eq("Expected size for MP 0", bn_bytes, 0);
1✔
2080

2081
         botan_mp_set_from_int(x, 5);
1✔
2082
         TEST_FFI_OK(botan_mp_num_bytes, (x, &bn_bytes));
1✔
2083
         result.test_eq("Expected size for MP 5", bn_bytes, 1);
1✔
2084

2085
         botan_mp_add_u32(x, x, 75);
1✔
2086
         TEST_FFI_OK(botan_mp_num_bytes, (x, &bn_bytes));
1✔
2087
         result.test_eq("Expected size for MP 80", bn_bytes, 1);
1✔
2088

2089
         str_len = sizeof(str_buf);
1✔
2090
         TEST_FFI_OK(botan_mp_to_str, (x, 10, str_buf, &str_len));
1✔
2091
         result.test_eq("botan_mp_add", std::string(str_buf), "80");
2✔
2092

2093
         botan_mp_sub_u32(x, x, 80);
1✔
2094
         TEST_FFI_RC(1, botan_mp_is_zero, (x));
1✔
2095
         botan_mp_add_u32(x, x, 259);
1✔
2096
         TEST_FFI_OK(botan_mp_num_bytes, (x, &bn_bytes));
1✔
2097
         result.test_eq("Expected size for MP 259", bn_bytes, 2);
1✔
2098

2099
         str_len = sizeof(str_buf);
1✔
2100
         TEST_FFI_OK(botan_mp_to_str, (x, 10, str_buf, &str_len));
1✔
2101
         result.test_eq("botan_mp_add", std::string(str_buf), "259");
2✔
2102

2103
         TEST_FFI_RC(1, botan_mp_is_odd, (x));
1✔
2104
         TEST_FFI_RC(0, botan_mp_is_even, (x));
1✔
2105
         TEST_FFI_RC(0, botan_mp_is_negative, (x));
1✔
2106
         TEST_FFI_RC(1, botan_mp_is_positive, (x));
1✔
2107
         TEST_FFI_RC(0, botan_mp_is_zero, (x));
1✔
2108

2109
         {
1✔
2110
            botan_mp_t zero;
1✔
2111
            botan_mp_init(&zero);
1✔
2112
            int cmp;
1✔
2113
            TEST_FFI_OK(botan_mp_cmp, (&cmp, x, zero));
1✔
2114
            result.confirm("bigint_mp_cmp(+, 0)", cmp == 1);
2✔
2115

2116
            TEST_FFI_OK(botan_mp_cmp, (&cmp, zero, x));
1✔
2117
            result.confirm("bigint_mp_cmp(0, +)", cmp == -1);
2✔
2118

2119
            TEST_FFI_RC(0, botan_mp_is_negative, (x));
1✔
2120
            TEST_FFI_RC(1, botan_mp_is_positive, (x));
1✔
2121
            TEST_FFI_OK(botan_mp_flip_sign, (x));
1✔
2122
            TEST_FFI_RC(1, botan_mp_is_negative, (x));
1✔
2123
            TEST_FFI_RC(0, botan_mp_is_positive, (x));
1✔
2124

2125
            // test no negative zero
2126
            TEST_FFI_RC(0, botan_mp_is_negative, (zero));
1✔
2127
            TEST_FFI_RC(1, botan_mp_is_positive, (zero));
1✔
2128
            TEST_FFI_OK(botan_mp_flip_sign, (zero));
1✔
2129
            TEST_FFI_RC(0, botan_mp_is_negative, (zero));
1✔
2130
            TEST_FFI_RC(1, botan_mp_is_positive, (zero));
1✔
2131

2132
            TEST_FFI_OK(botan_mp_cmp, (&cmp, x, zero));
1✔
2133
            result.confirm("bigint_mp_cmp(-, 0)", cmp == -1);
2✔
2134

2135
            TEST_FFI_OK(botan_mp_cmp, (&cmp, zero, x));
1✔
2136
            result.confirm("bigint_mp_cmp(0, -)", cmp == 1);
2✔
2137

2138
            TEST_FFI_OK(botan_mp_cmp, (&cmp, zero, zero));
1✔
2139
            result.confirm("bigint_mp_cmp(0, 0)", cmp == 0);
2✔
2140

2141
            TEST_FFI_OK(botan_mp_cmp, (&cmp, x, x));
1✔
2142
            result.confirm("bigint_mp_cmp(x, x)", cmp == 0);
2✔
2143

2144
            TEST_FFI_OK(botan_mp_flip_sign, (x));
1✔
2145

2146
            botan_mp_destroy(zero);
1✔
2147
         }
2148

2149
         size_t x_bits = 0;
1✔
2150
         TEST_FFI_OK(botan_mp_num_bits, (x, &x_bits));
1✔
2151
         result.test_eq("botan_mp_num_bits", x_bits, 9);
1✔
2152

2153
         TEST_FFI_OK(botan_mp_to_hex, (x, str_buf));
1✔
2154
         result.test_eq("botan_mp_to_hex", std::string(str_buf), "0x0103");
2✔
2155

2156
         uint32_t x_32;
1✔
2157
         TEST_FFI_OK(botan_mp_to_uint32, (x, &x_32));
1✔
2158
         result.test_eq("botan_mp_to_uint32", size_t(x_32), size_t(0x103));
1✔
2159

2160
         TEST_FFI_RC(1, botan_mp_get_bit, (x, 1));
1✔
2161
         TEST_FFI_RC(0, botan_mp_get_bit, (x, 87));
1✔
2162
         TEST_FFI_OK(botan_mp_set_bit, (x, 87));
1✔
2163
         TEST_FFI_RC(1, botan_mp_get_bit, (x, 87));
1✔
2164
         TEST_FFI_OK(botan_mp_to_hex, (x, str_buf));
1✔
2165
         result.test_eq("botan_mp_set_bit", std::string(str_buf), "0x8000000000000000000103");
2✔
2166

2167
         TEST_FFI_OK(botan_mp_clear_bit, (x, 87));
1✔
2168
         TEST_FFI_OK(botan_mp_to_hex, (x, str_buf));
1✔
2169
         result.test_eq("botan_mp_set_bit", std::string(str_buf), "0x0103");
2✔
2170

2171
         botan_mp_t y;
1✔
2172
         TEST_FFI_OK(botan_mp_init, (&y));
1✔
2173
         TEST_FFI_OK(botan_mp_set_from_int, (y, 0x1234567));
1✔
2174

2175
         botan_mp_t r;
1✔
2176
         botan_mp_init(&r);
1✔
2177

2178
         TEST_FFI_OK(botan_mp_add, (r, x, y));
1✔
2179
         str_len = sizeof(str_buf);
1✔
2180
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2181
         result.test_eq("botan_mp_add", std::string(str_buf), "19089002");
2✔
2182

2183
         TEST_FFI_OK(botan_mp_mul, (r, x, y));
1✔
2184
         str_len = sizeof(str_buf);
1✔
2185
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2186
         result.test_eq("botan_mp_mul", std::string(str_buf), "4943984437");
2✔
2187
         TEST_FFI_RC(0, botan_mp_is_negative, (r));
1✔
2188

2189
         botan_mp_t q;
1✔
2190
         botan_mp_init(&q);
1✔
2191
         TEST_FFI_OK(botan_mp_div, (q, r, y, x));
1✔
2192

2193
         str_len = sizeof(str_buf);
1✔
2194
         TEST_FFI_OK(botan_mp_to_str, (q, 10, str_buf, &str_len));
1✔
2195
         result.test_eq("botan_mp_div_q", std::string(str_buf), "73701");
2✔
2196

2197
         str_len = sizeof(str_buf);
1✔
2198
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2199
         result.test_eq("botan_mp_div_r", std::string(str_buf), "184");
2✔
2200

2201
         TEST_FFI_OK(botan_mp_set_from_str, (y, "4943984437"));
1✔
2202
         TEST_FFI_OK(botan_mp_sub, (r, x, y));
1✔
2203
         str_len = sizeof(str_buf);
1✔
2204
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2205
         result.test_eq("botan_mp_sub", std::string(str_buf), "-4943984178");
2✔
2206
         TEST_FFI_RC(1, botan_mp_is_negative, (r));
1✔
2207

2208
         TEST_FFI_OK(botan_mp_lshift, (r, x, 39));
1✔
2209
         str_len = sizeof(str_buf);
1✔
2210
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2211
         result.test_eq("botan_mp_lshift", std::string(str_buf), "142386755796992");
2✔
2212

2213
         TEST_FFI_OK(botan_mp_rshift, (r, r, 3));
1✔
2214
         str_len = sizeof(str_buf);
1✔
2215
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2216
         result.test_eq("botan_mp_rshift", std::string(str_buf), "17798344474624");
2✔
2217

2218
         TEST_FFI_OK(botan_mp_gcd, (r, x, y));
1✔
2219
         str_len = sizeof(str_buf);
1✔
2220
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2221
         result.test_eq("botan_mp_gcd", std::string(str_buf), "259");
2✔
2222

2223
         botan_mp_t p;
1✔
2224
         botan_mp_init(&p);
1✔
2225
         const uint8_t M127[] = {
1✔
2226
            0x7f, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
2227
         TEST_FFI_OK(botan_mp_from_bin, (p, M127, sizeof(M127)));
1✔
2228
         TEST_FFI_RC(1, botan_mp_is_prime, (p, rng, 64));
1✔
2229

2230
         size_t p_bits = 0;
1✔
2231
         TEST_FFI_OK(botan_mp_num_bits, (p, &p_bits));
1✔
2232
         result.test_eq("botan_mp_num_bits", p_bits, 127);
1✔
2233

2234
         TEST_FFI_OK(botan_mp_mod_inverse, (r, x, p));
1✔
2235
         str_len = sizeof(str_buf);
1✔
2236
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2237
         result.test_eq("botan_mp_mod_inverse", std::string(str_buf), "40728777507911553541948312086427855425");
2✔
2238

2239
         TEST_FFI_OK(botan_mp_powmod, (r, x, r, p));
1✔
2240
         str_len = sizeof(str_buf);
1✔
2241
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2242
         result.test_eq("botan_mp_powmod", std::string(str_buf), "40550417419160441638948180641668117560");
2✔
2243

2244
         TEST_FFI_OK(botan_mp_num_bytes, (r, &bn_bytes));
1✔
2245
         result.test_eq("botan_mp_num_bytes", bn_bytes, 16);
1✔
2246

2247
         std::vector<uint8_t> bn_buf;
1✔
2248
         bn_buf.resize(bn_bytes);
1✔
2249
         botan_mp_to_bin(r, bn_buf.data());
1✔
2250
         result.test_eq("botan_mp_to_bin", bn_buf, "1E81B9EFE0BE1902F6D03F9F5E5FB438");
1✔
2251

2252
         TEST_FFI_OK(botan_mp_set_from_mp, (y, r));
1✔
2253
         TEST_FFI_OK(botan_mp_mod_mul, (r, x, y, p));
1✔
2254
         str_len = sizeof(str_buf);
1✔
2255
         TEST_FFI_OK(botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2256
         result.test_eq("botan_mp_mod_mul", std::string(str_buf), "123945920473931248854653259523111998693");
2✔
2257

2258
         str_len = 0;
1✔
2259
         TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE, botan_mp_to_str, (r, 10, str_buf, &str_len));
1✔
2260

2261
         size_t x_bytes;
1✔
2262
         botan_mp_rand_bits(x, rng, 512);
1✔
2263
         TEST_FFI_OK(botan_mp_num_bytes, (x, &x_bytes));
1✔
2264
         result.test_lte("botan_mp_num_bytes", x_bytes, 512 / 8);
1✔
2265

2266
         TEST_FFI_OK(botan_mp_set_from_radix_str, (x, "909A", 16));
1✔
2267
         TEST_FFI_OK(botan_mp_to_uint32, (x, &x_32));
1✔
2268
         result.test_eq("botan_mp_set_from_radix_str(16)", x_32, static_cast<size_t>(0x909A));
1✔
2269

2270
         TEST_FFI_OK(botan_mp_set_from_radix_str, (x, "9098135", 10));
1✔
2271
         TEST_FFI_OK(botan_mp_to_uint32, (x, &x_32));
1✔
2272
         result.test_eq("botan_mp_set_from_radix_str(10)", x_32, static_cast<size_t>(9098135));
1✔
2273

2274
         botan_mp_destroy(p);
1✔
2275
         botan_mp_destroy(x);
1✔
2276
         botan_mp_destroy(y);
1✔
2277
         botan_mp_destroy(r);
1✔
2278
         botan_mp_destroy(q);
1✔
2279
      }
1✔
2280
};
2281

2282
class FFI_FPE_Test final : public FFI_Test {
×
2283
   public:
2284
      std::string name() const override { return "FFI FPE"; }
1✔
2285

2286
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
2287
         const uint8_t key[10] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 10};
1✔
2288

2289
         botan_mp_t n;
1✔
2290
         botan_mp_init(&n);
1✔
2291
         botan_mp_set_from_str(n, "1000000000");
1✔
2292

2293
         botan_fpe_t fpe;
1✔
2294
         if(!TEST_FFI_INIT(botan_fpe_fe1_init, (&fpe, n, key, sizeof(key), 5, 0))) {
1✔
2295
            botan_mp_destroy(n);
×
2296
            return;
×
2297
         }
2298

2299
         botan_mp_t x;
1✔
2300
         botan_mp_init(&x);
1✔
2301
         botan_mp_set_from_str(x, "178051120");
1✔
2302

2303
         TEST_FFI_OK(botan_fpe_encrypt, (fpe, x, nullptr, 0));
1✔
2304

2305
         uint32_t xval = 0;
1✔
2306
         TEST_FFI_OK(botan_mp_to_uint32, (x, &xval));
1✔
2307
         result.test_eq("Expected FPE ciphertext", xval, size_t(605648666));
1✔
2308

2309
         TEST_FFI_OK(botan_fpe_encrypt, (fpe, x, nullptr, 0));
1✔
2310
         TEST_FFI_OK(botan_fpe_decrypt, (fpe, x, nullptr, 0));
1✔
2311
         TEST_FFI_OK(botan_fpe_decrypt, (fpe, x, nullptr, 0));
1✔
2312

2313
         TEST_FFI_OK(botan_mp_to_uint32, (x, &xval));
1✔
2314
         result.test_eq("FPE round trip", xval, size_t(178051120));
1✔
2315

2316
         TEST_FFI_OK(botan_fpe_destroy, (fpe));
1✔
2317
         TEST_FFI_OK(botan_mp_destroy, (x));
1✔
2318
         TEST_FFI_OK(botan_mp_destroy, (n));
2✔
2319
      }
2320
};
2321

2322
class FFI_TOTP_Test final : public FFI_Test {
×
2323
   public:
2324
      std::string name() const override { return "FFI TOTP"; }
1✔
2325

2326
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
2327
         const std::vector<uint8_t> key = Botan::hex_decode("3132333435363738393031323334353637383930");
1✔
2328
         const size_t digits = 8;
1✔
2329
         const size_t timestep = 30;
1✔
2330
         botan_totp_t totp;
1✔
2331

2332
         if(!TEST_FFI_INIT(botan_totp_init, (&totp, key.data(), key.size(), "SHA-1", digits, timestep))) {
1✔
2333
            return;
×
2334
         }
2335

2336
         uint32_t code;
1✔
2337
         TEST_FFI_OK(botan_totp_generate, (totp, &code, 59));
1✔
2338
         result.confirm("TOTP code", code == 94287082);
2✔
2339

2340
         TEST_FFI_OK(botan_totp_generate, (totp, &code, 1111111109));
1✔
2341
         result.confirm("TOTP code 2", code == 7081804);
2✔
2342

2343
         TEST_FFI_OK(botan_totp_check, (totp, 94287082, 59 + 60, 60));
1✔
2344
         TEST_FFI_RC(1, botan_totp_check, (totp, 94287082, 59 + 31, 1));
1✔
2345
         TEST_FFI_RC(1, botan_totp_check, (totp, 94287082, 59 + 61, 1));
1✔
2346

2347
         TEST_FFI_OK(botan_totp_destroy, (totp));
2✔
2348
      }
1✔
2349
};
2350

2351
class FFI_HOTP_Test final : public FFI_Test {
×
2352
   public:
2353
      std::string name() const override { return "FFI HOTP"; }
1✔
2354

2355
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
2356
         const std::vector<uint8_t> key = Botan::hex_decode("3132333435363738393031323334353637383930");
1✔
2357
         const size_t digits = 6;
1✔
2358

2359
         botan_hotp_t hotp;
1✔
2360
         uint32_t hotp_val;
1✔
2361

2362
         if(!TEST_FFI_INIT(botan_hotp_init, (&hotp, key.data(), key.size(), "SHA-1", digits))) {
1✔
2363
            return;
×
2364
         }
2365

2366
         TEST_FFI_OK(botan_hotp_generate, (hotp, &hotp_val, 0));
1✔
2367
         result.confirm("Valid value for counter 0", hotp_val == 755224);
2✔
2368
         TEST_FFI_OK(botan_hotp_generate, (hotp, &hotp_val, 1));
1✔
2369
         result.confirm("Valid value for counter 0", hotp_val == 287082);
2✔
2370
         TEST_FFI_OK(botan_hotp_generate, (hotp, &hotp_val, 2));
1✔
2371
         result.confirm("Valid value for counter 0", hotp_val == 359152);
2✔
2372
         TEST_FFI_OK(botan_hotp_generate, (hotp, &hotp_val, 0));
1✔
2373
         result.confirm("Valid value for counter 0", hotp_val == 755224);
2✔
2374

2375
         uint64_t next_ctr = 0;
1✔
2376

2377
         TEST_FFI_OK(botan_hotp_check, (hotp, &next_ctr, 755224, 0, 0));
1✔
2378
         result.confirm("HOTP resync", next_ctr == 1);
2✔
2379
         TEST_FFI_OK(botan_hotp_check, (hotp, nullptr, 359152, 2, 0));
1✔
2380
         TEST_FFI_RC(1, botan_hotp_check, (hotp, nullptr, 359152, 1, 0));
1✔
2381
         TEST_FFI_OK(botan_hotp_check, (hotp, &next_ctr, 359152, 0, 2));
1✔
2382
         result.confirm("HOTP resync", next_ctr == 3);
2✔
2383

2384
         TEST_FFI_OK(botan_hotp_destroy, (hotp));
2✔
2385
      }
1✔
2386
};
2387

2388
class FFI_Keywrap_Test final : public FFI_Test {
×
2389
   public:
2390
      std::string name() const override { return "FFI Keywrap"; }
1✔
2391

2392
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
2393
         const uint8_t key[16] = {0};
1✔
2394
         const uint8_t kek[16] = {0xFF, 0};
1✔
2395

2396
         uint8_t wrapped[16 + 8] = {0};
1✔
2397
         size_t wrapped_keylen = sizeof(wrapped);
1✔
2398

2399
         if(TEST_FFI_INIT(botan_key_wrap3394, (key, sizeof(key), kek, sizeof(kek), wrapped, &wrapped_keylen))) {
1✔
2400
            const uint8_t expected_wrapped_key[16 + 8] = {0x04, 0x13, 0x37, 0x39, 0x82, 0xCF, 0xFA, 0x31,
1✔
2401
                                                          0x81, 0xCA, 0x4F, 0x59, 0x74, 0x4D, 0xED, 0x29,
2402
                                                          0x1F, 0x3F, 0xE5, 0x24, 0x00, 0x1B, 0x93, 0x20};
2403

2404
            result.test_eq("Expected wrapped keylen size", wrapped_keylen, 16 + 8);
1✔
2405

2406
            result.test_eq(
1✔
2407
               nullptr, "Wrapped key", wrapped, wrapped_keylen, expected_wrapped_key, sizeof(expected_wrapped_key));
2408

2409
            uint8_t dec_key[16] = {0};
1✔
2410
            size_t dec_keylen = sizeof(dec_key);
1✔
2411
            TEST_FFI_OK(botan_key_unwrap3394, (wrapped, sizeof(wrapped), kek, sizeof(kek), dec_key, &dec_keylen));
1✔
2412

2413
            result.test_eq(nullptr, "Unwrapped key", dec_key, dec_keylen, key, sizeof(key));
2✔
2414
         }
2415
      }
1✔
2416
};
2417

2418
class FFI_XMSS_Test final : public FFI_Test {
×
2419
   public:
2420
      std::string name() const override { return "FFI XMSS"; }
1✔
2421

2422
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
2423
         botan_privkey_t priv;
1✔
2424
         if(TEST_FFI_INIT(botan_privkey_create, (&priv, "XMSS", "XMSS-SHA2_10_256", rng))) {
1✔
2425
            TEST_FFI_OK(botan_privkey_check_key, (priv, rng, 0));
1✔
2426

2427
            TEST_FFI_RC(BOTAN_FFI_ERROR_NULL_POINTER, botan_privkey_stateful_operation, (priv, nullptr));
1✔
2428
            TEST_FFI_RC(BOTAN_FFI_ERROR_NULL_POINTER, botan_privkey_remaining_operations, (priv, nullptr));
1✔
2429

2430
            int stateful;
1✔
2431
            TEST_FFI_OK(botan_privkey_stateful_operation, (priv, &stateful));
1✔
2432
            result.confirm("key is stateful", stateful, true);
2✔
2433

2434
            uint64_t remaining;
1✔
2435
            TEST_FFI_OK(botan_privkey_remaining_operations, (priv, &remaining));
1✔
2436
            result.confirm("key has remaining operations", remaining == 1024, true);
2✔
2437

2438
            TEST_FFI_OK(botan_privkey_destroy, (priv));
2✔
2439
         }
2440
      }
1✔
2441
};
2442

2443
class FFI_RSA_Test final : public FFI_Test {
×
2444
   public:
2445
      std::string name() const override { return "FFI RSA"; }
1✔
2446

2447
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
2448
         botan_privkey_t priv;
1✔
2449

2450
         if(TEST_FFI_INIT(botan_privkey_create_rsa, (&priv, rng, 1024))) {
1✔
2451
            TEST_FFI_OK(botan_privkey_check_key, (priv, rng, 0));
1✔
2452

2453
            int stateful;
1✔
2454
            TEST_FFI_OK(botan_privkey_stateful_operation, (priv, &stateful));
1✔
2455
            result.confirm("key is not stateful", stateful, false);
2✔
2456

2457
            uint64_t remaining;
1✔
2458
            TEST_FFI_FAIL("key is not stateful", botan_privkey_remaining_operations, (priv, &remaining));
2✔
2459

2460
            botan_pubkey_t pub;
1✔
2461
            TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
1✔
2462
            TEST_FFI_OK(botan_pubkey_check_key, (pub, rng, 0));
1✔
2463

2464
            ffi_test_pubkey_export(result, pub, priv, rng);
1✔
2465

2466
            botan_mp_t p, q, d, n, e;
1✔
2467
            botan_mp_init(&p);
1✔
2468
            botan_mp_init(&q);
1✔
2469
            botan_mp_init(&d);
1✔
2470
            botan_mp_init(&n);
1✔
2471
            botan_mp_init(&e);
1✔
2472

2473
            TEST_FFI_RC(BOTAN_FFI_ERROR_BAD_PARAMETER, botan_privkey_get_field, (p, priv, "quux"));
1✔
2474
            TEST_FFI_RC(BOTAN_FFI_ERROR_BAD_PARAMETER, botan_pubkey_get_field, (p, pub, "quux"));
1✔
2475

2476
            TEST_FFI_OK(botan_privkey_rsa_get_p, (p, priv));
1✔
2477
            TEST_FFI_OK(botan_privkey_rsa_get_q, (q, priv));
1✔
2478
            TEST_FFI_OK(botan_privkey_rsa_get_d, (d, priv));
1✔
2479
            TEST_FFI_OK(botan_privkey_rsa_get_e, (e, priv));
1✔
2480
            TEST_FFI_OK(botan_privkey_rsa_get_n, (n, priv));
1✔
2481

2482
            // Confirm same (e,n) values in public key
2483
            {
1✔
2484
               botan_mp_t pub_e, pub_n;
1✔
2485
               botan_mp_init(&pub_e);
1✔
2486
               botan_mp_init(&pub_n);
1✔
2487
               TEST_FFI_OK(botan_pubkey_rsa_get_e, (pub_e, pub));
1✔
2488
               TEST_FFI_OK(botan_pubkey_rsa_get_n, (pub_n, pub));
1✔
2489

2490
               TEST_FFI_RC(1, botan_mp_equal, (pub_e, e));
1✔
2491
               TEST_FFI_RC(1, botan_mp_equal, (pub_n, n));
1✔
2492
               botan_mp_destroy(pub_e);
1✔
2493
               botan_mp_destroy(pub_n);
1✔
2494
            }
2495

2496
            TEST_FFI_RC(1, botan_mp_is_prime, (p, rng, 64));
1✔
2497
            TEST_FFI_RC(1, botan_mp_is_prime, (q, rng, 64));
1✔
2498

2499
            // Test p != q
2500
            TEST_FFI_RC(0, botan_mp_equal, (p, q));
1✔
2501

2502
            // Test p * q == n
2503
            botan_mp_t x;
1✔
2504
            botan_mp_init(&x);
1✔
2505
            TEST_FFI_OK(botan_mp_mul, (x, p, q));
1✔
2506

2507
            TEST_FFI_RC(1, botan_mp_equal, (x, n));
1✔
2508
            botan_mp_destroy(x);
1✔
2509

2510
            botan_privkey_t loaded_privkey;
1✔
2511
            // First try loading a bogus key and verify check_key fails
2512
            TEST_FFI_OK(botan_privkey_load_rsa, (&loaded_privkey, n, d, q));
1✔
2513
            TEST_FFI_RC(-1, botan_privkey_check_key, (loaded_privkey, rng, 0));
1✔
2514
            botan_privkey_destroy(loaded_privkey);
1✔
2515

2516
            TEST_FFI_OK(botan_privkey_load_rsa, (&loaded_privkey, p, q, e));
1✔
2517
            TEST_FFI_OK(botan_privkey_check_key, (loaded_privkey, rng, 0));
1✔
2518

2519
            botan_pubkey_t loaded_pubkey;
1✔
2520
            TEST_FFI_OK(botan_pubkey_load_rsa, (&loaded_pubkey, n, e));
1✔
2521
            TEST_FFI_OK(botan_pubkey_check_key, (loaded_pubkey, rng, 0));
1✔
2522

2523
            botan_mp_destroy(p);
1✔
2524
            botan_mp_destroy(q);
1✔
2525
            botan_mp_destroy(d);
1✔
2526
            botan_mp_destroy(e);
1✔
2527
            botan_mp_destroy(n);
1✔
2528

2529
            size_t pkcs1_len = 0;
1✔
2530
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
2531
                        botan_privkey_rsa_get_privkey,
2532
                        (loaded_privkey, nullptr, &pkcs1_len, BOTAN_PRIVKEY_EXPORT_FLAG_DER));
2533

2534
            std::vector<uint8_t> pkcs1(pkcs1_len);
1✔
2535
            TEST_FFI_OK(botan_privkey_rsa_get_privkey,
1✔
2536
                        (loaded_privkey, pkcs1.data(), &pkcs1_len, BOTAN_PRIVKEY_EXPORT_FLAG_DER));
2537

2538
            botan_privkey_t privkey_from_pkcs1;
1✔
2539
            TEST_FFI_OK(botan_privkey_load_rsa_pkcs1, (&privkey_from_pkcs1, pkcs1.data(), pkcs1_len));
1✔
2540
            TEST_FFI_OK(botan_privkey_destroy, (privkey_from_pkcs1));
1✔
2541

2542
            pkcs1_len = 0;
1✔
2543
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
2544
                        botan_privkey_rsa_get_privkey,
2545
                        (loaded_privkey, nullptr, &pkcs1_len, BOTAN_PRIVKEY_EXPORT_FLAG_PEM));
2546
            pkcs1.resize(pkcs1_len);
1✔
2547
            TEST_FFI_OK(botan_privkey_rsa_get_privkey,
1✔
2548
                        (loaded_privkey, pkcs1.data(), &pkcs1_len, BOTAN_PRIVKEY_EXPORT_FLAG_PEM));
2549

2550
            char namebuf[32] = {0};
1✔
2551
            size_t name_len = sizeof(namebuf);
1✔
2552
            if(TEST_FFI_OK(botan_pubkey_algo_name, (loaded_pubkey, namebuf, &name_len))) {
1✔
2553
               result.test_eq("algo name", std::string(namebuf), "RSA");
2✔
2554
            }
2555

2556
            name_len = sizeof(namebuf);
1✔
2557
            if(TEST_FFI_OK(botan_privkey_algo_name, (loaded_privkey, namebuf, &name_len))) {
1✔
2558
               result.test_eq("algo name", std::string(namebuf), "RSA");
2✔
2559
            }
2560

2561
            botan_pk_op_encrypt_t encrypt;
1✔
2562
            if(TEST_FFI_INIT(botan_pk_op_encrypt_create, (&encrypt, loaded_pubkey, "OAEP(SHA-256)", 0))) {
1✔
2563
               std::vector<uint8_t> plaintext(32);
1✔
2564
               TEST_FFI_OK(botan_rng_get, (rng, plaintext.data(), plaintext.size()));
1✔
2565

2566
               size_t ctext_len;
1✔
2567
               TEST_FFI_OK(botan_pk_op_encrypt_output_length, (encrypt, plaintext.size(), &ctext_len));
1✔
2568
               std::vector<uint8_t> ciphertext(ctext_len);
1✔
2569

2570
               if(TEST_FFI_OK(botan_pk_op_encrypt,
1✔
2571
                              (encrypt, rng, ciphertext.data(), &ctext_len, plaintext.data(), plaintext.size()))) {
2572
                  ciphertext.resize(ctext_len);
1✔
2573

2574
                  botan_pk_op_decrypt_t decrypt;
1✔
2575
                  if(TEST_FFI_OK(botan_pk_op_decrypt_create, (&decrypt, priv, "OAEP(SHA-256)", 0))) {
1✔
2576
                     size_t decrypted_len;
1✔
2577
                     TEST_FFI_OK(botan_pk_op_decrypt_output_length, (decrypt, ciphertext.size(), &decrypted_len));
1✔
2578
                     std::vector<uint8_t> decrypted(decrypted_len);
1✔
2579
                     TEST_FFI_OK(botan_pk_op_decrypt,
1✔
2580
                                 (decrypt, decrypted.data(), &decrypted_len, ciphertext.data(), ciphertext.size()));
2581
                     decrypted.resize(decrypted_len);
1✔
2582

2583
                     result.test_eq("RSA plaintext", decrypted, plaintext);
2✔
2584
                  }
1✔
2585

2586
                  TEST_FFI_OK(botan_pk_op_decrypt_destroy, (decrypt));
2✔
2587
               }
2588

2589
               TEST_FFI_OK(botan_pk_op_encrypt_destroy, (encrypt));
2✔
2590
            }
2✔
2591

2592
            TEST_FFI_OK(botan_pubkey_destroy, (loaded_pubkey));
1✔
2593
            TEST_FFI_OK(botan_pubkey_destroy, (pub));
1✔
2594
            TEST_FFI_OK(botan_privkey_destroy, (loaded_privkey));
1✔
2595
            TEST_FFI_OK(botan_privkey_destroy, (priv));
2✔
2596
         }
1✔
2597
      }
1✔
2598
};
2599

2600
class FFI_DSA_Test final : public FFI_Test {
×
2601
   public:
2602
      std::string name() const override { return "FFI DSA"; }
1✔
2603

2604
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
2605
         botan_privkey_t priv;
1✔
2606

2607
         if(TEST_FFI_INIT(botan_privkey_create, (&priv, "DSA", "dsa/jce/1024", rng))) {
1✔
2608
            do_dsa_test(priv, rng, result);
1✔
2609
         }
2610

2611
         if(TEST_FFI_INIT(botan_privkey_create_dsa, (&priv, rng, 1024, 160))) {
1✔
2612
            do_dsa_test(priv, rng, result);
1✔
2613
         }
2614
      }
1✔
2615

2616
   private:
2617
      static void do_dsa_test(botan_privkey_t priv, botan_rng_t rng, Test::Result& result) {
2✔
2618
         TEST_FFI_OK(botan_privkey_check_key, (priv, rng, 0));
2✔
2619

2620
         botan_pubkey_t pub;
2✔
2621
         TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
2✔
2622
         TEST_FFI_OK(botan_pubkey_check_key, (pub, rng, 0));
2✔
2623

2624
         ffi_test_pubkey_export(result, pub, priv, rng);
2✔
2625

2626
         botan_mp_t p, q, g, x, y;
2✔
2627
         botan_mp_init(&p);
2✔
2628
         botan_mp_init(&q);
2✔
2629
         botan_mp_init(&g);
2✔
2630
         botan_mp_init(&x);
2✔
2631
         botan_mp_init(&y);
2✔
2632

2633
         TEST_FFI_OK(botan_privkey_dsa_get_x, (x, priv));
2✔
2634
         TEST_FFI_OK(botan_pubkey_dsa_get_g, (g, pub));
2✔
2635
         TEST_FFI_OK(botan_pubkey_dsa_get_p, (p, pub));
2✔
2636
         TEST_FFI_OK(botan_pubkey_dsa_get_q, (q, pub));
2✔
2637
         TEST_FFI_OK(botan_pubkey_dsa_get_y, (y, pub));
2✔
2638

2639
         botan_mp_t cmp;
2✔
2640
         botan_mp_init(&cmp);
2✔
2641
         TEST_FFI_RC(BOTAN_FFI_ERROR_BAD_PARAMETER, botan_privkey_get_field, (cmp, priv, "quux"));
2✔
2642

2643
         TEST_FFI_OK(botan_privkey_get_field, (cmp, priv, "x"));
2✔
2644
         TEST_FFI_RC(1, botan_mp_equal, (cmp, x));
2✔
2645

2646
         TEST_FFI_OK(botan_privkey_get_field, (cmp, priv, "y"));
2✔
2647
         TEST_FFI_RC(1, botan_mp_equal, (cmp, y));
2✔
2648

2649
         TEST_FFI_OK(botan_privkey_get_field, (cmp, priv, "p"));
2✔
2650
         TEST_FFI_RC(1, botan_mp_equal, (cmp, p));
2✔
2651
         botan_mp_destroy(cmp);
2✔
2652

2653
         botan_privkey_t loaded_privkey;
2✔
2654
         TEST_FFI_OK(botan_privkey_load_dsa, (&loaded_privkey, p, q, g, x));
2✔
2655
         TEST_FFI_OK(botan_privkey_check_key, (loaded_privkey, rng, 0));
2✔
2656

2657
         botan_pubkey_t loaded_pubkey;
2✔
2658
         TEST_FFI_OK(botan_pubkey_load_dsa, (&loaded_pubkey, p, q, g, y));
2✔
2659
         TEST_FFI_OK(botan_pubkey_check_key, (loaded_pubkey, rng, 0));
2✔
2660

2661
         botan_mp_destroy(p);
2✔
2662
         botan_mp_destroy(q);
2✔
2663
         botan_mp_destroy(g);
2✔
2664
         botan_mp_destroy(y);
2✔
2665
         botan_mp_destroy(x);
2✔
2666

2667
         botan_pk_op_sign_t signer;
2✔
2668

2669
         std::vector<uint8_t> message(6, 6);
2✔
2670
         std::vector<uint8_t> signature;
2✔
2671

2672
         if(TEST_FFI_OK(botan_pk_op_sign_create, (&signer, loaded_privkey, "SHA-256", 0))) {
2✔
2673
            // TODO: break input into multiple calls to update
2674
            TEST_FFI_OK(botan_pk_op_sign_update, (signer, message.data(), message.size()));
2✔
2675

2676
            size_t sig_len;
2✔
2677
            TEST_FFI_OK(botan_pk_op_sign_output_length, (signer, &sig_len));
2✔
2678
            signature.resize(sig_len);
2✔
2679

2680
            size_t output_sig_len = sig_len;
2✔
2681
            TEST_FFI_OK(botan_pk_op_sign_finish, (signer, rng, signature.data(), &output_sig_len));
2✔
2682
            result.test_lte("Output length is upper bound", output_sig_len, sig_len);
2✔
2683
            signature.resize(output_sig_len);
2✔
2684

2685
            TEST_FFI_OK(botan_pk_op_sign_destroy, (signer));
4✔
2686
         }
2687

2688
         botan_pk_op_verify_t verifier = nullptr;
2✔
2689

2690
         if(!signature.empty() && TEST_FFI_OK(botan_pk_op_verify_create, (&verifier, pub, "SHA-256", 0))) {
4✔
2691
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2692
            TEST_FFI_OK(botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2✔
2693

2694
            // TODO: randomize this
2695
            signature[0] ^= 1;
2✔
2696
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2697
            TEST_FFI_RC(
2✔
2698
               BOTAN_FFI_INVALID_VERIFIER, botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2699

2700
            message[0] ^= 1;
2✔
2701
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2702
            TEST_FFI_RC(
2✔
2703
               BOTAN_FFI_INVALID_VERIFIER, botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2704

2705
            signature[0] ^= 1;
2✔
2706
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2707
            TEST_FFI_RC(
2✔
2708
               BOTAN_FFI_INVALID_VERIFIER, botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2709

2710
            message[0] ^= 1;
2✔
2711
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2712
            TEST_FFI_OK(botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2✔
2713

2714
            TEST_FFI_OK(botan_pk_op_verify_destroy, (verifier));
4✔
2715
         }
2716

2717
         TEST_FFI_OK(botan_pubkey_destroy, (loaded_pubkey));
2✔
2718
         TEST_FFI_OK(botan_pubkey_destroy, (pub));
2✔
2719
         TEST_FFI_OK(botan_privkey_destroy, (loaded_privkey));
2✔
2720
         TEST_FFI_OK(botan_privkey_destroy, (priv));
4✔
2721
      }
4✔
2722
};
2723

2724
class FFI_ECDSA_Test final : public FFI_Test {
×
2725
   public:
2726
      std::string name() const override { return "FFI ECDSA"; }
1✔
2727

2728
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
2729
         static const char* kCurve = "secp384r1";
1✔
2730
         botan_privkey_t priv;
1✔
2731
         botan_pubkey_t pub;
1✔
2732

2733
         if(!TEST_FFI_INIT(botan_privkey_create_ecdsa, (&priv, rng, kCurve))) {
1✔
2734
            return;
×
2735
         }
2736

2737
         TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
1✔
2738
         ffi_test_pubkey_export(result, pub, priv, rng);
1✔
2739

2740
         // Check key load functions
2741
         botan_mp_t private_scalar, public_x, public_y;
1✔
2742
         botan_mp_init(&private_scalar);
1✔
2743
         botan_mp_init(&public_x);
1✔
2744
         botan_mp_init(&public_y);
1✔
2745

2746
         TEST_FFI_RC(BOTAN_FFI_ERROR_BAD_PARAMETER, botan_privkey_get_field, (private_scalar, priv, "quux"));
1✔
2747
         TEST_FFI_RC(BOTAN_FFI_ERROR_BAD_PARAMETER, botan_pubkey_get_field, (private_scalar, pub, "quux"));
1✔
2748

2749
         TEST_FFI_OK(botan_privkey_get_field, (private_scalar, priv, "x"));
1✔
2750
         TEST_FFI_OK(botan_pubkey_get_field, (public_x, pub, "public_x"));
1✔
2751
         TEST_FFI_OK(botan_pubkey_get_field, (public_y, pub, "public_y"));
1✔
2752

2753
         botan_privkey_t loaded_privkey;
1✔
2754
         botan_pubkey_t loaded_pubkey;
1✔
2755
         TEST_FFI_OK(botan_privkey_load_ecdsa, (&loaded_privkey, private_scalar, kCurve));
1✔
2756
         TEST_FFI_OK(botan_pubkey_load_ecdsa, (&loaded_pubkey, public_x, public_y, kCurve));
1✔
2757
         TEST_FFI_OK(botan_privkey_check_key, (loaded_privkey, rng, 0));
1✔
2758
         TEST_FFI_OK(botan_pubkey_check_key, (loaded_pubkey, rng, 0));
1✔
2759

2760
         char namebuf[32] = {0};
1✔
2761
         size_t name_len = sizeof(namebuf);
1✔
2762

2763
         TEST_FFI_OK(botan_pubkey_algo_name, (pub, &namebuf[0], &name_len));
1✔
2764
         result.test_eq(namebuf, namebuf, "ECDSA");
1✔
2765

2766
         std::vector<uint8_t> message(1280), signature;
1✔
2767
         TEST_FFI_OK(botan_rng_get, (rng, message.data(), message.size()));
1✔
2768

2769
         for(uint32_t flags = 0; flags <= 1; ++flags) {
3✔
2770
            botan_pk_op_sign_t signer;
2✔
2771
            if(TEST_FFI_INIT(botan_pk_op_sign_create, (&signer, loaded_privkey, "SHA-384", flags))) {
2✔
2772
               // TODO: break input into multiple calls to update
2773
               TEST_FFI_OK(botan_pk_op_sign_update, (signer, message.data(), message.size()));
2✔
2774

2775
               size_t sig_len;
2✔
2776
               TEST_FFI_OK(botan_pk_op_sign_output_length, (signer, &sig_len));
2✔
2777

2778
               signature.resize(sig_len);
2✔
2779

2780
               size_t output_sig_len = signature.size();
2✔
2781
               TEST_FFI_OK(botan_pk_op_sign_finish, (signer, rng, signature.data(), &output_sig_len));
2✔
2782
               signature.resize(output_sig_len);
2✔
2783

2784
               TEST_FFI_OK(botan_pk_op_sign_destroy, (signer));
4✔
2785
            }
2786

2787
            botan_pk_op_verify_t verifier = nullptr;
2✔
2788

2789
            if(!signature.empty() && TEST_FFI_OK(botan_pk_op_verify_create, (&verifier, pub, "SHA-384", flags))) {
4✔
2790
               TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2791
               TEST_FFI_OK(botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2✔
2792

2793
               // TODO: randomize this
2794
               signature[0] ^= 1;
2✔
2795
               TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2796
               TEST_FFI_RC(BOTAN_FFI_INVALID_VERIFIER,
2✔
2797
                           botan_pk_op_verify_finish,
2798
                           (verifier, signature.data(), signature.size()));
2799

2800
               message[0] ^= 1;
2✔
2801
               TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2802
               TEST_FFI_RC(BOTAN_FFI_INVALID_VERIFIER,
2✔
2803
                           botan_pk_op_verify_finish,
2804
                           (verifier, signature.data(), signature.size()));
2805

2806
               signature[0] ^= 1;
2✔
2807
               TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2808
               TEST_FFI_RC(BOTAN_FFI_INVALID_VERIFIER,
2✔
2809
                           botan_pk_op_verify_finish,
2810
                           (verifier, signature.data(), signature.size()));
2811

2812
               message[0] ^= 1;
2✔
2813
               TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
2✔
2814
               TEST_FFI_OK(botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2✔
2815

2816
               TEST_FFI_OK(botan_pk_op_verify_destroy, (verifier));
4✔
2817
            }
2818
         }
2819

2820
         TEST_FFI_OK(botan_mp_destroy, (private_scalar));
1✔
2821
         TEST_FFI_OK(botan_mp_destroy, (public_x));
1✔
2822
         TEST_FFI_OK(botan_mp_destroy, (public_y));
1✔
2823
         TEST_FFI_OK(botan_pubkey_destroy, (pub));
1✔
2824
         TEST_FFI_OK(botan_privkey_destroy, (priv));
1✔
2825
         TEST_FFI_OK(botan_privkey_destroy, (loaded_privkey));
1✔
2826
         TEST_FFI_OK(botan_pubkey_destroy, (loaded_pubkey));
2✔
2827
      }
2✔
2828
};
2829

2830
class FFI_SM2_Sig_Test final : public FFI_Test {
×
2831
   public:
2832
      std::string name() const override { return "FFI SM2 Sig"; }
1✔
2833

2834
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
2835
         static const char* kCurve = "sm2p256v1";
1✔
2836
         const std::string sm2_ident = "SM2 Ident Field";
1✔
2837
         botan_privkey_t priv;
1✔
2838
         botan_pubkey_t pub;
1✔
2839
         botan_privkey_t loaded_privkey;
1✔
2840
         botan_pubkey_t loaded_pubkey;
1✔
2841

2842
         if(!TEST_FFI_INIT(botan_privkey_create, (&priv, "SM2_Sig", kCurve, rng))) {
1✔
2843
            return;
2844
         }
2845

2846
         TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
1✔
2847
         ffi_test_pubkey_export(result, pub, priv, rng);
1✔
2848

2849
         uint8_t za[32];
1✔
2850
         size_t sizeof_za = sizeof(za);
1✔
2851
         TEST_FFI_OK(botan_pubkey_sm2_compute_za, (za, &sizeof_za, "Ident", "SM3", pub));
1✔
2852

2853
         // Check key load functions
2854
         botan_mp_t private_scalar, public_x, public_y;
1✔
2855
         botan_mp_init(&private_scalar);
1✔
2856
         botan_mp_init(&public_x);
1✔
2857
         botan_mp_init(&public_y);
1✔
2858

2859
         TEST_FFI_OK(botan_privkey_get_field, (private_scalar, priv, "x"));
1✔
2860
         TEST_FFI_OK(botan_pubkey_get_field, (public_x, pub, "public_x"));
1✔
2861
         TEST_FFI_OK(botan_pubkey_get_field, (public_y, pub, "public_y"));
1✔
2862
         REQUIRE_FFI_OK(botan_privkey_load_sm2, (&loaded_privkey, private_scalar, kCurve));
1✔
2863
         REQUIRE_FFI_OK(botan_pubkey_load_sm2, (&loaded_pubkey, public_x, public_y, kCurve));
1✔
2864
         TEST_FFI_OK(botan_privkey_check_key, (loaded_privkey, rng, 0));
1✔
2865
         TEST_FFI_OK(botan_pubkey_check_key, (loaded_pubkey, rng, 0));
1✔
2866

2867
         char namebuf[32] = {0};
1✔
2868
         size_t name_len = sizeof(namebuf);
1✔
2869

2870
         TEST_FFI_OK(botan_pubkey_algo_name, (pub, &namebuf[0], &name_len));
1✔
2871
         result.test_eq(namebuf, namebuf, "SM2");
1✔
2872

2873
         std::vector<uint8_t> message(1280), signature;
1✔
2874
         TEST_FFI_OK(botan_rng_get, (rng, message.data(), message.size()));
1✔
2875
         botan_pk_op_sign_t signer;
1✔
2876
         if(TEST_FFI_OK(botan_pk_op_sign_create, (&signer, loaded_privkey, sm2_ident.c_str(), 0))) {
1✔
2877
            // TODO: break input into multiple calls to update
2878
            TEST_FFI_OK(botan_pk_op_sign_update, (signer, message.data(), message.size()));
1✔
2879

2880
            size_t sig_len;
1✔
2881
            TEST_FFI_OK(botan_pk_op_sign_output_length, (signer, &sig_len));
1✔
2882

2883
            signature.resize(sig_len);
1✔
2884

2885
            TEST_FFI_OK(botan_pk_op_sign_finish, (signer, rng, signature.data(), &sig_len));
1✔
2886
            signature.resize(sig_len);
1✔
2887

2888
            TEST_FFI_OK(botan_pk_op_sign_destroy, (signer));
2✔
2889
         }
2890

2891
         botan_pk_op_verify_t verifier = nullptr;
1✔
2892

2893
         if(!signature.empty() && TEST_FFI_OK(botan_pk_op_verify_create, (&verifier, pub, sm2_ident.c_str(), 0))) {
2✔
2894
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
1✔
2895
            TEST_FFI_OK(botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
1✔
2896

2897
            // TODO: randomize this
2898
            signature[0] ^= 1;
1✔
2899
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
1✔
2900
            TEST_FFI_RC(
1✔
2901
               BOTAN_FFI_INVALID_VERIFIER, botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2902

2903
            message[0] ^= 1;
1✔
2904
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
1✔
2905
            TEST_FFI_RC(
1✔
2906
               BOTAN_FFI_INVALID_VERIFIER, botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2907

2908
            signature[0] ^= 1;
1✔
2909
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
1✔
2910
            TEST_FFI_RC(
1✔
2911
               BOTAN_FFI_INVALID_VERIFIER, botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
2912

2913
            message[0] ^= 1;
1✔
2914
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
1✔
2915
            TEST_FFI_OK(botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
1✔
2916

2917
            TEST_FFI_OK(botan_pk_op_verify_destroy, (verifier));
2✔
2918
         }
2919

2920
         TEST_FFI_OK(botan_mp_destroy, (private_scalar));
1✔
2921
         TEST_FFI_OK(botan_mp_destroy, (public_x));
1✔
2922
         TEST_FFI_OK(botan_mp_destroy, (public_y));
1✔
2923
         TEST_FFI_OK(botan_pubkey_destroy, (pub));
1✔
2924
         TEST_FFI_OK(botan_privkey_destroy, (priv));
1✔
2925
         TEST_FFI_OK(botan_privkey_destroy, (loaded_privkey));
1✔
2926
         TEST_FFI_OK(botan_pubkey_destroy, (loaded_pubkey));
2✔
2927
      }
2✔
2928
};
2929

2930
class FFI_SM2_Enc_Test final : public FFI_Test {
×
2931
   public:
2932
      std::string name() const override { return "FFI SM2 Enc"; }
1✔
2933

2934
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
2935
         static const char* kCurve = "sm2p256v1";
1✔
2936
         botan_privkey_t priv;
1✔
2937
         botan_pubkey_t pub;
1✔
2938
         botan_privkey_t loaded_privkey;
1✔
2939
         botan_pubkey_t loaded_pubkey;
1✔
2940

2941
         if(!TEST_FFI_INIT(botan_privkey_create, (&priv, "SM2_Enc", kCurve, rng))) {
1✔
2942
            return;
×
2943
         }
2944

2945
         TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
1✔
2946
         ffi_test_pubkey_export(result, pub, priv, rng);
1✔
2947

2948
         uint8_t za[32];
1✔
2949
         size_t sizeof_za = sizeof(za);
1✔
2950
         TEST_FFI_OK(botan_pubkey_sm2_compute_za, (za, &sizeof_za, "Ident", "SM3", pub));
1✔
2951

2952
         // Check key load functions
2953
         botan_mp_t private_scalar, public_x, public_y;
1✔
2954
         botan_mp_init(&private_scalar);
1✔
2955
         botan_mp_init(&public_x);
1✔
2956
         botan_mp_init(&public_y);
1✔
2957

2958
         TEST_FFI_OK(botan_privkey_get_field, (private_scalar, priv, "x"));
1✔
2959
         TEST_FFI_OK(botan_pubkey_get_field, (public_x, pub, "public_x"));
1✔
2960
         TEST_FFI_OK(botan_pubkey_get_field, (public_y, pub, "public_y"));
1✔
2961
         REQUIRE_FFI_OK(botan_privkey_load_sm2_enc, (&loaded_privkey, private_scalar, kCurve));
1✔
2962
         REQUIRE_FFI_OK(botan_pubkey_load_sm2_enc, (&loaded_pubkey, public_x, public_y, kCurve));
1✔
2963
         TEST_FFI_OK(botan_privkey_check_key, (loaded_privkey, rng, 0));
1✔
2964
         TEST_FFI_OK(botan_pubkey_check_key, (loaded_pubkey, rng, 0));
1✔
2965

2966
         char namebuf[32] = {0};
1✔
2967
         size_t name_len = sizeof(namebuf);
1✔
2968

2969
         TEST_FFI_OK(botan_pubkey_algo_name, (pub, &namebuf[0], &name_len));
1✔
2970
         result.test_eq(namebuf, namebuf, "SM2");
1✔
2971

2972
         std::vector<uint8_t> message(32);
1✔
2973

2974
         std::vector<uint8_t> ciphertext;
1✔
2975
         TEST_FFI_OK(botan_rng_get, (rng, message.data(), message.size()));
1✔
2976

2977
         botan_pk_op_encrypt_t enc;
1✔
2978
         if(TEST_FFI_OK(botan_pk_op_encrypt_create, (&enc, loaded_pubkey, "", 0))) {
1✔
2979
            size_t ctext_len;
1✔
2980
            TEST_FFI_OK(botan_pk_op_encrypt_output_length, (enc, message.size(), &ctext_len));
1✔
2981

2982
            ciphertext.resize(ctext_len);
1✔
2983
            TEST_FFI_OK(botan_pk_op_encrypt, (enc, rng, ciphertext.data(), &ctext_len, message.data(), message.size()));
1✔
2984
            ciphertext.resize(ctext_len);
1✔
2985

2986
            botan_pk_op_decrypt_t dec;
1✔
2987
            TEST_FFI_OK(botan_pk_op_decrypt_create, (&dec, loaded_privkey, "", 0));
1✔
2988

2989
            std::vector<uint8_t> recovered(message.size());
1✔
2990
            size_t recovered_len = recovered.size();
1✔
2991

2992
            TEST_FFI_OK(botan_pk_op_decrypt,
1✔
2993
                        (dec, recovered.data(), &recovered_len, ciphertext.data(), ciphertext.size()));
2994

2995
            botan_pk_op_decrypt_destroy(dec);
1✔
2996
         }
1✔
2997
         botan_pk_op_encrypt_destroy(enc);
1✔
2998

2999
         TEST_FFI_OK(botan_mp_destroy, (private_scalar));
1✔
3000
         TEST_FFI_OK(botan_mp_destroy, (public_x));
1✔
3001
         TEST_FFI_OK(botan_mp_destroy, (public_y));
1✔
3002
         TEST_FFI_OK(botan_pubkey_destroy, (pub));
1✔
3003
         TEST_FFI_OK(botan_privkey_destroy, (priv));
1✔
3004
         TEST_FFI_OK(botan_privkey_destroy, (loaded_privkey));
1✔
3005
         TEST_FFI_OK(botan_pubkey_destroy, (loaded_pubkey));
2✔
3006
      }
2✔
3007
};
3008

3009
class FFI_ECDH_Test final : public FFI_Test {
×
3010
   public:
3011
      std::string name() const override { return "FFI ECDH"; }
1✔
3012

3013
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
3014
         botan_privkey_t priv1;
1✔
3015
         if(!TEST_FFI_INIT(botan_privkey_create_ecdh, (&priv1, rng, "secp256r1"))) {
1✔
3016
            return;
×
3017
         }
3018

3019
         botan_privkey_t priv2;
1✔
3020
         REQUIRE_FFI_OK(botan_privkey_create_ecdh, (&priv2, rng, "secp256r1"));
1✔
3021

3022
         botan_pubkey_t pub1;
1✔
3023
         REQUIRE_FFI_OK(botan_privkey_export_pubkey, (&pub1, priv1));
1✔
3024

3025
         botan_pubkey_t pub2;
1✔
3026
         REQUIRE_FFI_OK(botan_privkey_export_pubkey, (&pub2, priv2));
1✔
3027

3028
         /* Reload key-pair1 in order to test functions for key loading */
3029
         botan_mp_t private_scalar, public_x, public_y;
1✔
3030
         botan_mp_init(&private_scalar);
1✔
3031
         botan_mp_init(&public_x);
1✔
3032
         botan_mp_init(&public_y);
1✔
3033

3034
         TEST_FFI_OK(botan_privkey_get_field, (private_scalar, priv1, "x"));
1✔
3035
         TEST_FFI_OK(botan_pubkey_get_field, (public_x, pub1, "public_x"));
1✔
3036
         TEST_FFI_OK(botan_pubkey_get_field, (public_y, pub1, "public_y"));
1✔
3037

3038
         botan_privkey_t loaded_privkey1;
1✔
3039
         botan_pubkey_t loaded_pubkey1;
1✔
3040
         REQUIRE_FFI_OK(botan_privkey_load_ecdh, (&loaded_privkey1, private_scalar, "secp256r1"));
1✔
3041
         REQUIRE_FFI_OK(botan_pubkey_load_ecdh, (&loaded_pubkey1, public_x, public_y, "secp256r1"));
1✔
3042
         TEST_FFI_OK(botan_privkey_check_key, (loaded_privkey1, rng, 0));
1✔
3043
         TEST_FFI_OK(botan_pubkey_check_key, (loaded_pubkey1, rng, 0));
1✔
3044

3045
         ffi_test_pubkey_export(result, loaded_pubkey1, priv1, rng);
1✔
3046
         ffi_test_pubkey_export(result, pub2, priv2, rng);
1✔
3047

3048
   #if defined(BOTAN_HAS_KDF2) && defined(BOTAN_HAS_SHA_256)
3049
         constexpr bool has_kdf2_sha256 = true;
1✔
3050
   #else
3051
         constexpr bool has_kdf2_sha256 = false;
3052
   #endif
3053

3054
         const char* kdf = has_kdf2_sha256 ? "KDF2(SHA-256)" : "Raw";
1✔
3055
         constexpr size_t salt_len = has_kdf2_sha256 ? 32 : 0;
1✔
3056

3057
         botan_pk_op_ka_t ka1;
1✔
3058
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_create, (&ka1, loaded_privkey1, kdf, 0));
1✔
3059
         botan_pk_op_ka_t ka2;
1✔
3060
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_create, (&ka2, priv2, kdf, 0));
1✔
3061

3062
         size_t pubkey1_len = 0;
1✔
3063
         TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
3064
                     botan_pk_op_key_agreement_export_public,
3065
                     (priv1, nullptr, &pubkey1_len));
3066
         std::vector<uint8_t> pubkey1(pubkey1_len);
1✔
3067
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_export_public, (priv1, pubkey1.data(), &pubkey1_len));
1✔
3068
         size_t pubkey2_len = 0;
1✔
3069
         TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
3070
                     botan_pk_op_key_agreement_export_public,
3071
                     (priv2, nullptr, &pubkey2_len));
3072
         std::vector<uint8_t> pubkey2(pubkey2_len);
1✔
3073
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_export_public, (priv2, pubkey2.data(), &pubkey2_len));
1✔
3074

3075
         std::vector<uint8_t> salt(salt_len);
1✔
3076
         TEST_FFI_OK(botan_rng_get, (rng, salt.data(), salt.size()));
1✔
3077

3078
         const size_t shared_key_len = 32;
1✔
3079

3080
         std::vector<uint8_t> key1(shared_key_len);
1✔
3081
         size_t key1_len = key1.size();
1✔
3082
         TEST_FFI_OK(botan_pk_op_key_agreement,
1✔
3083
                     (ka1, key1.data(), &key1_len, pubkey2.data(), pubkey2.size(), salt.data(), salt.size()));
3084

3085
         std::vector<uint8_t> key2(shared_key_len);
1✔
3086
         size_t key2_len = key2.size();
1✔
3087
         TEST_FFI_OK(botan_pk_op_key_agreement,
1✔
3088
                     (ka2, key2.data(), &key2_len, pubkey1.data(), pubkey1.size(), salt.data(), salt.size()));
3089

3090
         result.test_eq("shared ECDH key", key1, key2);
2✔
3091

3092
         TEST_FFI_OK(botan_mp_destroy, (private_scalar));
1✔
3093
         TEST_FFI_OK(botan_mp_destroy, (public_x));
1✔
3094
         TEST_FFI_OK(botan_mp_destroy, (public_y));
1✔
3095
         TEST_FFI_OK(botan_pk_op_key_agreement_destroy, (ka1));
1✔
3096
         TEST_FFI_OK(botan_pk_op_key_agreement_destroy, (ka2));
1✔
3097
         TEST_FFI_OK(botan_privkey_destroy, (priv1));
1✔
3098
         TEST_FFI_OK(botan_privkey_destroy, (priv2));
1✔
3099
         TEST_FFI_OK(botan_pubkey_destroy, (pub1));
1✔
3100
         TEST_FFI_OK(botan_pubkey_destroy, (pub2));
1✔
3101
         TEST_FFI_OK(botan_privkey_destroy, (loaded_privkey1));
1✔
3102
         TEST_FFI_OK(botan_pubkey_destroy, (loaded_pubkey1));
2✔
3103
      }
5✔
3104
};
3105

3106
class FFI_McEliece_Test final : public FFI_Test {
×
3107
   public:
3108
      std::string name() const override { return "FFI McEliece"; }
1✔
3109

3110
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
3111
         botan_privkey_t priv;
1✔
3112
         if(TEST_FFI_INIT(botan_privkey_create_mceliece, (&priv, rng, 2048, 50))) {
1✔
3113
            botan_pubkey_t pub;
1✔
3114
            TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
1✔
3115

3116
            ffi_test_pubkey_export(result, pub, priv, rng);
1✔
3117

3118
            char namebuf[32] = {0};
1✔
3119
            size_t name_len = sizeof(namebuf);
1✔
3120
            if(TEST_FFI_OK(botan_pubkey_algo_name, (pub, namebuf, &name_len))) {
1✔
3121
               result.test_eq("algo name", std::string(namebuf), "McEliece");
2✔
3122
            }
3123

3124
            // TODO test KEM
3125

3126
            TEST_FFI_OK(botan_pubkey_destroy, (pub));
1✔
3127
            TEST_FFI_OK(botan_privkey_destroy, (priv));
2✔
3128
         }
3129
      }
1✔
3130
};
3131

3132
class FFI_Ed25519_Test final : public FFI_Test {
×
3133
   public:
3134
      std::string name() const override { return "FFI Ed25519"; }
1✔
3135

3136
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
3137
         botan_pubkey_t pub;
1✔
3138
         botan_privkey_t priv;
1✔
3139

3140
         // From draft-koch-eddsa-for-openpgp-04
3141
         const std::vector<uint8_t> seed =
1✔
3142
            Botan::hex_decode("1a8b1ff05ded48e18bf50166c664ab023ea70003d78d9e41f5758a91d850f8d2");
1✔
3143
         const std::vector<uint8_t> pubkey =
1✔
3144
            Botan::hex_decode("3f098994bdd916ed4053197934e4a87c80733a1280d62f8010992e43ee3b2406");
1✔
3145
         const std::vector<uint8_t> message = Botan::hex_decode("4f70656e504750040016080006050255f95f9504ff0000000c");
1✔
3146
         const std::vector<uint8_t> exp_sig = Botan::hex_decode(
1✔
3147
            "56f90cca98e2102637bd983fdb16c131dfd27ed82bf4dde5606e0d756aed3366"
3148
            "d09c4fa11527f038e0f57f2201d82f2ea2c9033265fa6ceb489e854bae61b404");
1✔
3149

3150
         if(!TEST_FFI_INIT(botan_privkey_load_ed25519, (&priv, seed.data()))) {
1✔
3151
            return;
×
3152
         }
3153

3154
         uint8_t retr_privkey[64];
1✔
3155
         TEST_FFI_OK(botan_privkey_ed25519_get_privkey, (priv, retr_privkey));
1✔
3156

3157
         result.test_eq(nullptr, "Public key matches", retr_privkey + 32, 32, pubkey.data(), pubkey.size());
1✔
3158

3159
         TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
1✔
3160

3161
         uint8_t retr_pubkey[32];
1✔
3162
         TEST_FFI_OK(botan_pubkey_ed25519_get_pubkey, (pub, retr_pubkey));
1✔
3163
         result.test_eq(nullptr, "Public key matches", retr_pubkey, 32, pubkey.data(), pubkey.size());
1✔
3164

3165
         TEST_FFI_OK(botan_pubkey_destroy, (pub));
1✔
3166
         TEST_FFI_OK(botan_pubkey_load_ed25519, (&pub, pubkey.data()));
1✔
3167

3168
         botan_pk_op_sign_t signer;
1✔
3169
         std::vector<uint8_t> signature;
1✔
3170

3171
         if(TEST_FFI_OK(botan_pk_op_sign_create, (&signer, priv, "SHA-256", 0))) {
1✔
3172
            TEST_FFI_OK(botan_pk_op_sign_update, (signer, message.data(), message.size()));
1✔
3173

3174
            size_t sig_len;
1✔
3175
            TEST_FFI_OK(botan_pk_op_sign_output_length, (signer, &sig_len));
1✔
3176

3177
            signature.resize(sig_len);
1✔
3178

3179
            TEST_FFI_OK(botan_pk_op_sign_finish, (signer, rng, signature.data(), &sig_len));
1✔
3180
            signature.resize(sig_len);
1✔
3181

3182
            TEST_FFI_OK(botan_pk_op_sign_destroy, (signer));
2✔
3183
         }
3184

3185
         result.test_eq("Expected signature", signature, exp_sig);
2✔
3186

3187
         botan_pk_op_verify_t verifier;
1✔
3188

3189
         if(TEST_FFI_OK(botan_pk_op_verify_create, (&verifier, pub, "SHA-256", 0))) {
1✔
3190
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message.data(), message.size()));
1✔
3191
            TEST_FFI_OK(botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
1✔
3192

3193
            TEST_FFI_OK(botan_pk_op_verify_destroy, (verifier));
2✔
3194
         }
3195

3196
         TEST_FFI_OK(botan_pubkey_destroy, (pub));
1✔
3197
         TEST_FFI_OK(botan_privkey_destroy, (priv));
2✔
3198
      }
5✔
3199
};
3200

3201
class FFI_Ed448_Test final : public FFI_Test {
×
3202
   public:
3203
      std::string name() const override { return "FFI Ed448"; }
1✔
3204

3205
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
3206
         botan_pubkey_t pub;
1✔
3207
         botan_privkey_t priv;
1✔
3208

3209
         // RFC 8032: Testvector Ed448, 1 octet
3210
         const auto sk = Botan::hex_decode(
1✔
3211
            "c4eab05d357007c632f3dbb48489924d552b08fe0c353a0d4a1f00acda2c463afbea67c5e8d2877c5e3bc397a659949ef8021e954e0a12274e");
1✔
3212
         const auto pk_ref = Botan::hex_decode(
1✔
3213
            "43ba28f430cdff456ae531545f7ecd0ac834a55d9358c0372bfa0c6c6798c0866aea01eb00742802b8438ea4cb82169c235160627b4c3a9480");
1✔
3214
         const auto msg = Botan::hex_decode("03");
1✔
3215
         const auto sig_ref = Botan::hex_decode(
1✔
3216
            "26b8f91727bd62897af15e41eb43c377efb9c610d48f2335cb0bd0087810f4352541b143c4b981b7e18f62de8ccdf633fc1bf037ab7cd779805e0dbcc0aae1cbcee1afb2e027df36bc04dcecbf154336c19f0af7e0a6472905e799f1953d2a0ff3348ab21aa4adafd1d234441cf807c03a00");
1✔
3217

3218
         if(!TEST_FFI_INIT(botan_privkey_load_ed448, (&priv, sk.data()))) {
1✔
3219
            return;
×
3220
         }
3221

3222
         std::vector<uint8_t> retr_privkey(57);
1✔
3223
         TEST_FFI_OK(botan_privkey_ed448_get_privkey, (priv, retr_privkey.data()));
1✔
3224
         result.test_is_eq("Private key matches", retr_privkey, sk);
1✔
3225

3226
         TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
1✔
3227

3228
         std::vector<uint8_t> retr_pubkey(57);
1✔
3229
         TEST_FFI_OK(botan_pubkey_ed448_get_pubkey, (pub, retr_pubkey.data()));
1✔
3230
         result.test_is_eq("Public key matches", retr_pubkey, pk_ref);
1✔
3231

3232
         TEST_FFI_OK(botan_pubkey_destroy, (pub));
1✔
3233
         TEST_FFI_OK(botan_pubkey_load_ed448, (&pub, pk_ref.data()));
1✔
3234

3235
         botan_pk_op_sign_t signer;
1✔
3236
         std::vector<uint8_t> signature;
1✔
3237

3238
         if(TEST_FFI_OK(botan_pk_op_sign_create, (&signer, priv, "Pure", 0))) {
1✔
3239
            TEST_FFI_OK(botan_pk_op_sign_update, (signer, msg.data(), msg.size()));
1✔
3240

3241
            size_t sig_len;
1✔
3242
            TEST_FFI_OK(botan_pk_op_sign_output_length, (signer, &sig_len));
1✔
3243

3244
            signature.resize(sig_len);
1✔
3245

3246
            TEST_FFI_OK(botan_pk_op_sign_finish, (signer, rng, signature.data(), &sig_len));
1✔
3247
            signature.resize(sig_len);
1✔
3248

3249
            TEST_FFI_OK(botan_pk_op_sign_destroy, (signer));
2✔
3250
         }
3251

3252
         result.test_eq("Expected signature", signature, sig_ref);
2✔
3253

3254
         botan_pk_op_verify_t verifier;
1✔
3255

3256
         if(TEST_FFI_OK(botan_pk_op_verify_create, (&verifier, pub, "Pure", 0))) {
1✔
3257
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, msg.data(), msg.size()));
1✔
3258
            TEST_FFI_OK(botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
1✔
3259

3260
            TEST_FFI_OK(botan_pk_op_verify_destroy, (verifier));
2✔
3261
         }
3262

3263
         TEST_FFI_OK(botan_pubkey_destroy, (pub));
1✔
3264
         TEST_FFI_OK(botan_privkey_destroy, (priv));
2✔
3265
      }
7✔
3266
};
3267

3268
class FFI_X25519_Test final : public FFI_Test {
×
3269
   public:
3270
      std::string name() const override { return "FFI X25519"; }
1✔
3271

3272
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
3273
         // From RFC 8037
3274

3275
         const std::vector<uint8_t> a_pub_bits =
1✔
3276
            Botan::hex_decode("de9edb7d7b7dc1b4d35b61c2ece435373f8343c85b78674dadfc7e146f882b4f");
1✔
3277
         const std::vector<uint8_t> b_priv_bits =
1✔
3278
            Botan::hex_decode("77076d0a7318a57d3c16c17251b26645df4c2f87ebc0992ab177fba51db92c2a");
1✔
3279
         const std::vector<uint8_t> b_pub_bits =
1✔
3280
            Botan::hex_decode("8520f0098930a754748b7ddcb43ef75a0dbf3a0d26381af4eba4a98eaa9b4e6a");
1✔
3281
         const std::vector<uint8_t> shared_secret_bits =
1✔
3282
            Botan::hex_decode("4a5d9d5ba4ce2de1728e3bf480350f25e07e21c947d19e3376f09b3c1e161742");
1✔
3283

3284
         botan_privkey_t b_priv;
1✔
3285
         if(!TEST_FFI_INIT(botan_privkey_load_x25519, (&b_priv, b_priv_bits.data()))) {
1✔
3286
            return;
3287
         }
3288

3289
         std::vector<uint8_t> privkey_read(32);
1✔
3290
         TEST_FFI_OK(botan_privkey_x25519_get_privkey, (b_priv, privkey_read.data()));
1✔
3291
         result.test_eq("X25519 private key", privkey_read, b_priv_bits);
2✔
3292

3293
         std::vector<uint8_t> pubkey_read(32);
1✔
3294

3295
         botan_pubkey_t b_pub;
1✔
3296
         TEST_FFI_OK(botan_privkey_export_pubkey, (&b_pub, b_priv));
1✔
3297
         TEST_FFI_OK(botan_pubkey_x25519_get_pubkey, (b_pub, pubkey_read.data()));
1✔
3298
         result.test_eq("X25519 public key b", pubkey_read, b_pub_bits);
2✔
3299

3300
         botan_pubkey_t a_pub;
1✔
3301
         TEST_FFI_OK(botan_pubkey_load_x25519, (&a_pub, a_pub_bits.data()));
1✔
3302
         TEST_FFI_OK(botan_pubkey_x25519_get_pubkey, (a_pub, pubkey_read.data()));
1✔
3303
         result.test_eq("X25519 public key a", pubkey_read, a_pub_bits);
2✔
3304

3305
         botan_pk_op_ka_t ka;
1✔
3306
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_create, (&ka, b_priv, "Raw", 0));
1✔
3307

3308
         std::vector<uint8_t> shared_output(32);
1✔
3309
         size_t shared_len = shared_output.size();
1✔
3310
         TEST_FFI_OK(botan_pk_op_key_agreement,
1✔
3311
                     (ka, shared_output.data(), &shared_len, a_pub_bits.data(), a_pub_bits.size(), nullptr, 0));
3312

3313
         result.test_eq("Shared secret matches expected", shared_secret_bits, shared_output);
2✔
3314

3315
         TEST_FFI_OK(botan_pubkey_destroy, (a_pub));
1✔
3316
         TEST_FFI_OK(botan_pubkey_destroy, (b_pub));
1✔
3317
         TEST_FFI_OK(botan_privkey_destroy, (b_priv));
1✔
3318
         TEST_FFI_OK(botan_pk_op_key_agreement_destroy, (ka));
2✔
3319
      }
7✔
3320
};
3321

3322
class FFI_X448_Test final : public FFI_Test {
×
3323
   public:
3324
      std::string name() const override { return "FFI X448"; }
1✔
3325

3326
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
3327
         // From RFC 7748 Section 6.2
3328
         const auto a_pub_ref = Botan::hex_decode(
1✔
3329
            "9b08f7cc31b7e3e67d22d5aea121074a273bd2b83de09c63faa73d2c22c5d9bbc836647241d953d40c5b12da88120d53177f80e532c41fa0");
1✔
3330
         const auto b_priv_ref = Botan::hex_decode(
1✔
3331
            "1c306a7ac2a0e2e0990b294470cba339e6453772b075811d8fad0d1d6927c120bb5ee8972b0d3e21374c9c921b09d1b0366f10b65173992d");
1✔
3332
         const auto b_pub_ref = Botan::hex_decode(
1✔
3333
            "3eb7a829b0cd20f5bcfc0b599b6feccf6da4627107bdb0d4f345b43027d8b972fc3e34fb4232a13ca706dcb57aec3dae07bdc1c67bf33609");
1✔
3334
         const auto shared_secret_ref = Botan::hex_decode(
1✔
3335
            "07fff4181ac6cc95ec1c16a94a0f74d12da232ce40a77552281d282bb60c0b56fd2464c335543936521c24403085d59a449a5037514a879d");
1✔
3336

3337
         botan_privkey_t b_priv;
1✔
3338
         if(!TEST_FFI_INIT(botan_privkey_load_x448, (&b_priv, b_priv_ref.data()))) {
1✔
3339
            return;
3340
         }
3341

3342
         std::vector<uint8_t> privkey_read(56);
1✔
3343
         TEST_FFI_OK(botan_privkey_x448_get_privkey, (b_priv, privkey_read.data()));
1✔
3344
         result.test_eq("X448 private key", privkey_read, b_priv_ref);
2✔
3345

3346
         std::vector<uint8_t> pubkey_read(56);
1✔
3347

3348
         botan_pubkey_t b_pub;
1✔
3349
         TEST_FFI_OK(botan_privkey_export_pubkey, (&b_pub, b_priv));
1✔
3350
         TEST_FFI_OK(botan_pubkey_x448_get_pubkey, (b_pub, pubkey_read.data()));
1✔
3351
         result.test_eq("X448 public key b", pubkey_read, b_pub_ref);
2✔
3352

3353
         botan_pubkey_t a_pub;
1✔
3354
         TEST_FFI_OK(botan_pubkey_load_x448, (&a_pub, a_pub_ref.data()));
1✔
3355
         TEST_FFI_OK(botan_pubkey_x448_get_pubkey, (a_pub, pubkey_read.data()));
1✔
3356
         result.test_eq("X448 public key a", pubkey_read, a_pub_ref);
2✔
3357

3358
         botan_pk_op_ka_t ka;
1✔
3359
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_create, (&ka, b_priv, "Raw", 0));
1✔
3360

3361
         std::vector<uint8_t> shared_output(56);
1✔
3362
         size_t shared_len = shared_output.size();
1✔
3363
         TEST_FFI_OK(botan_pk_op_key_agreement,
1✔
3364
                     (ka, shared_output.data(), &shared_len, a_pub_ref.data(), a_pub_ref.size(), nullptr, 0));
3365

3366
         result.test_eq("Shared secret matches expected", shared_secret_ref, shared_output);
2✔
3367

3368
         TEST_FFI_OK(botan_pubkey_destroy, (a_pub));
1✔
3369
         TEST_FFI_OK(botan_pubkey_destroy, (b_pub));
1✔
3370
         TEST_FFI_OK(botan_privkey_destroy, (b_priv));
1✔
3371
         TEST_FFI_OK(botan_pk_op_key_agreement_destroy, (ka));
2✔
3372
      }
7✔
3373
};
3374

3375
/**
3376
 * Helper class for testing "view"-style API functions that take a callback
3377
 * that gets passed a variable-length buffer of bytes.
3378
 *
3379
 * Example:
3380
 *   botan_privkey_t priv;
3381
 *   ViewBytesSink sink;
3382
 *   botan_privkey_view_raw(priv, sink.delegate(), sink.callback());
3383
 *   std::cout << hex_encode(sink.get()) << std::endl;
3384
 */
3385
class ViewBytesSink final {
×
3386
   public:
3387
      void* delegate() { return this; }
3388

3389
      botan_view_bin_fn callback() { return &write_fn; }
199✔
3390

3391
      const std::vector<uint8_t>& get() { return m_buf; }
3392

3393
   private:
3394
      static int write_fn(void* ctx, const uint8_t buf[], size_t len) {
199✔
3395
         if(!ctx || !buf) {
199✔
3396
            return BOTAN_FFI_ERROR_NULL_POINTER;
3397
         }
3398

3399
         auto* sink = static_cast<ViewBytesSink*>(ctx);
199✔
3400
         sink->m_buf.assign(buf, buf + len);
199✔
3401

3402
         return 0;
199✔
3403
      }
3404

3405
   private:
3406
      std::vector<uint8_t> m_buf;
3407
};
3408

3409
/**
3410
 * Base class for roundtrip tests of FFI bindings for Key Encapsulation Mechanisms.
3411
 */
3412
class FFI_KEM_Roundtrip_Test : public FFI_Test {
3✔
3413
   protected:
3414
      using privkey_loader_fn_t = int (*)(botan_privkey_t*, const uint8_t[], size_t, const char*);
3415
      using pubkey_loader_fn_t = int (*)(botan_pubkey_t*, const uint8_t[], size_t, const char*);
3416

3417
   protected:
3418
      virtual const char* algo() const = 0;
3419
      virtual privkey_loader_fn_t private_key_load_function() const = 0;
3420
      virtual pubkey_loader_fn_t public_key_load_function() const = 0;
3421
      virtual std::vector<const char*> modes() const = 0;
3422

3423
   public:
3424
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
3✔
3425
         for(auto mode : modes()) {
34✔
3426
            // generate a key pair
3427
            botan_privkey_t priv;
31✔
3428
            botan_pubkey_t pub;
31✔
3429
            if(!TEST_FFI_INIT(botan_privkey_create, (&priv, algo(), mode, rng))) {
31✔
3430
               continue;
×
3431
            }
3432
            TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
31✔
3433

3434
            // raw-encode the key pair
3435
            ViewBytesSink priv_bytes;
31✔
3436
            ViewBytesSink pub_bytes;
31✔
3437
            TEST_FFI_OK(botan_privkey_view_raw, (priv, priv_bytes.delegate(), priv_bytes.callback()));
31✔
3438
            TEST_FFI_OK(botan_pubkey_view_raw, (pub, pub_bytes.delegate(), pub_bytes.callback()));
31✔
3439

3440
            // decode the key pair from raw encoding
3441
            botan_privkey_t priv_loaded;
31✔
3442
            botan_pubkey_t pub_loaded;
31✔
3443
            TEST_FFI_OK(private_key_load_function(),
31✔
3444
                        (&priv_loaded, priv_bytes.get().data(), priv_bytes.get().size(), mode));
3445
            TEST_FFI_OK(public_key_load_function(),
31✔
3446
                        (&pub_loaded, pub_bytes.get().data(), pub_bytes.get().size(), mode));
3447

3448
            // re-encode and compare to the first round
3449
            ViewBytesSink priv_bytes2;
31✔
3450
            ViewBytesSink pub_bytes2;
31✔
3451
            TEST_FFI_OK(botan_privkey_view_raw, (priv_loaded, priv_bytes2.delegate(), priv_bytes2.callback()));
31✔
3452
            TEST_FFI_OK(botan_pubkey_view_raw, (pub_loaded, pub_bytes2.delegate(), pub_bytes2.callback()));
31✔
3453
            result.test_eq("private key encoding", priv_bytes.get(), priv_bytes2.get());
62✔
3454
            result.test_eq("public key encoding", pub_bytes.get(), pub_bytes2.get());
62✔
3455

3456
            // KEM encryption (using the loaded public key)
3457
            botan_pk_op_kem_encrypt_t kem_enc;
31✔
3458
            TEST_FFI_OK(botan_pk_op_kem_encrypt_create, (&kem_enc, pub_loaded, "Raw"));
31✔
3459

3460
            // explicitly query output lengths
3461
            size_t shared_key_length = 0;
31✔
3462
            size_t ciphertext_length = 0;
31✔
3463
            TEST_FFI_OK(botan_pk_op_kem_encrypt_shared_key_length, (kem_enc, 0, &shared_key_length));
31✔
3464
            TEST_FFI_OK(botan_pk_op_kem_encrypt_encapsulated_key_length, (kem_enc, &ciphertext_length));
31✔
3465

3466
            // check that insufficient buffer space is handled correctly
3467
            size_t shared_key_length_out = 0;
31✔
3468
            size_t ciphertext_length_out = 0;
31✔
3469
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
31✔
3470
                        botan_pk_op_kem_encrypt_create_shared_key,
3471
                        (kem_enc,
3472
                         rng,
3473
                         nullptr /* no salt */,
3474
                         0,
3475
                         0 /* default key length */,
3476
                         nullptr,
3477
                         &shared_key_length_out,
3478
                         nullptr,
3479
                         &ciphertext_length_out));
3480

3481
            // TODO: should this report both lengths for usage convenience?
3482
            result.confirm("at least one buffer length is reported",
62✔
3483
                           shared_key_length_out == shared_key_length || ciphertext_length_out == ciphertext_length);
31✔
3484

3485
            // allocate buffers (with additional space) and perform the actual encryption
3486
            shared_key_length_out = shared_key_length * 2;
31✔
3487
            ciphertext_length_out = ciphertext_length * 2;
31✔
3488
            Botan::secure_vector<uint8_t> shared_key(shared_key_length_out);
31✔
3489
            std::vector<uint8_t> ciphertext(ciphertext_length_out);
31✔
3490
            TEST_FFI_OK(botan_pk_op_kem_encrypt_create_shared_key,
31✔
3491
                        (kem_enc,
3492
                         rng,
3493
                         nullptr /* no salt */,
3494
                         0,
3495
                         0 /* default key length */,
3496
                         shared_key.data(),
3497
                         &shared_key_length_out,
3498
                         ciphertext.data(),
3499
                         &ciphertext_length_out));
3500
            result.test_eq("shared key length", shared_key_length, shared_key_length_out);
31✔
3501
            result.test_eq("ciphertext length", ciphertext_length, ciphertext_length_out);
31✔
3502
            shared_key.resize(shared_key_length_out);
31✔
3503
            ciphertext.resize(ciphertext_length_out);
31✔
3504
            TEST_FFI_OK(botan_pk_op_kem_encrypt_destroy, (kem_enc));
31✔
3505

3506
            // KEM decryption (using the generated private key)
3507
            botan_pk_op_kem_decrypt_t kem_dec;
31✔
3508
            TEST_FFI_OK(botan_pk_op_kem_decrypt_create, (&kem_dec, priv, "Raw"));
31✔
3509
            size_t shared_key_length2 = 0;
31✔
3510
            TEST_FFI_OK(botan_pk_op_kem_decrypt_shared_key_length, (kem_dec, shared_key_length, &shared_key_length2));
31✔
3511
            result.test_eq("shared key lengths are consistent", shared_key_length, shared_key_length2);
31✔
3512

3513
            // check that insufficient buffer space is handled correctly
3514
            shared_key_length_out = 0;
31✔
3515
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
31✔
3516
                        botan_pk_op_kem_decrypt_shared_key,
3517
                        (kem_dec,
3518
                         nullptr /* no salt */,
3519
                         0,
3520
                         ciphertext.data(),
3521
                         ciphertext.size(),
3522
                         0 /* default length */,
3523
                         nullptr,
3524
                         &shared_key_length_out));
3525
            result.test_eq("reported buffer length requirement", shared_key_length, shared_key_length_out);
31✔
3526

3527
            // allocate buffer (double the size) and perform the actual decryption
3528
            shared_key_length_out = shared_key_length * 2;
31✔
3529
            Botan::secure_vector<uint8_t> shared_key2(shared_key_length_out);
31✔
3530
            TEST_FFI_OK(botan_pk_op_kem_decrypt_shared_key,
31✔
3531
                        (kem_dec,
3532
                         nullptr /* no salt */,
3533
                         0,
3534
                         ciphertext.data(),
3535
                         ciphertext.size(),
3536
                         0 /* default length */,
3537
                         shared_key2.data(),
3538
                         &shared_key_length_out));
3539
            result.test_eq("shared key output length", shared_key_length, shared_key_length_out);
31✔
3540
            shared_key2.resize(shared_key_length_out);
31✔
3541
            TEST_FFI_OK(botan_pk_op_kem_decrypt_destroy, (kem_dec));
31✔
3542

3543
            // final check and clean up
3544
            result.test_eq("shared keys match", shared_key, shared_key2);
62✔
3545

3546
            TEST_FFI_OK(botan_pubkey_destroy, (pub));
31✔
3547
            TEST_FFI_OK(botan_pubkey_destroy, (pub_loaded));
31✔
3548
            TEST_FFI_OK(botan_privkey_destroy, (priv));
31✔
3549
            TEST_FFI_OK(botan_privkey_destroy, (priv_loaded));
62✔
3550
         }
217✔
3551
      }
3✔
3552
};
3553

3554
/**
3555
 * Base class for roundtrip tests of FFI bindings for Signature Mechanisms.
3556
 */
3557
class FFI_Signature_Roundtrip_Test : public FFI_Test {
2✔
3558
   protected:
3559
      using privkey_loader_fn_t = int (*)(botan_privkey_t*, const uint8_t[], size_t, const char*);
3560
      using pubkey_loader_fn_t = int (*)(botan_pubkey_t*, const uint8_t[], size_t, const char*);
3561

3562
   protected:
3563
      virtual const char* algo() const = 0;
3564
      virtual privkey_loader_fn_t private_key_load_function() const = 0;
3565
      virtual pubkey_loader_fn_t public_key_load_function() const = 0;
3566
      virtual std::vector<const char*> modes() const = 0;
3567
      virtual const char* hash_algo_or_padding() const = 0;
3568

3569
   public:
3570
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
2✔
3571
         const std::vector<uint8_t> message1 = {'H', 'e', 'l', 'l', 'o', ' '};
2✔
3572
         const std::vector<uint8_t> message2 = {'W', 'o', 'r', 'l', 'd', '!'};
2✔
3573

3574
         for(auto mode : modes()) {
17✔
3575
            // generate a key pair
3576
            botan_privkey_t priv;
15✔
3577
            botan_pubkey_t pub;
15✔
3578
            if(!TEST_FFI_INIT(botan_privkey_create, (&priv, algo(), mode, rng))) {
15✔
3579
               continue;
×
3580
            }
3581
            TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
15✔
3582

3583
            // raw-encode the key pair
3584
            ViewBytesSink priv_bytes;
15✔
3585
            ViewBytesSink pub_bytes;
15✔
3586
            TEST_FFI_OK(botan_privkey_view_raw, (priv, priv_bytes.delegate(), priv_bytes.callback()));
15✔
3587
            TEST_FFI_OK(botan_pubkey_view_raw, (pub, pub_bytes.delegate(), pub_bytes.callback()));
15✔
3588

3589
            // decode the key pair from raw encoding
3590
            botan_privkey_t priv_loaded;
15✔
3591
            botan_pubkey_t pub_loaded;
15✔
3592
            TEST_FFI_OK(private_key_load_function(),
15✔
3593
                        (&priv_loaded, priv_bytes.get().data(), priv_bytes.get().size(), mode));
3594
            TEST_FFI_OK(public_key_load_function(),
15✔
3595
                        (&pub_loaded, pub_bytes.get().data(), pub_bytes.get().size(), mode));
3596

3597
            // re-encode and compare to the first round
3598
            ViewBytesSink priv_bytes2;
15✔
3599
            ViewBytesSink pub_bytes2;
15✔
3600
            TEST_FFI_OK(botan_privkey_view_raw, (priv_loaded, priv_bytes2.delegate(), priv_bytes2.callback()));
15✔
3601
            TEST_FFI_OK(botan_pubkey_view_raw, (pub_loaded, pub_bytes2.delegate(), pub_bytes2.callback()));
15✔
3602
            result.test_eq("private key encoding", priv_bytes.get(), priv_bytes2.get());
30✔
3603
            result.test_eq("public key encoding", pub_bytes.get(), pub_bytes2.get());
30✔
3604

3605
            // Signature Creation (using the loaded private key)
3606
            botan_pk_op_sign_t signer;
15✔
3607
            TEST_FFI_OK(botan_pk_op_sign_create, (&signer, priv_loaded, hash_algo_or_padding(), 0));
15✔
3608

3609
            // explicitly query the signature output length
3610
            size_t sig_output_length = 0;
15✔
3611
            TEST_FFI_OK(botan_pk_op_sign_output_length, (signer, &sig_output_length));
15✔
3612

3613
            // pass a message to the signer
3614
            TEST_FFI_OK(botan_pk_op_sign_update, (signer, message1.data(), message1.size()));
15✔
3615
            TEST_FFI_OK(botan_pk_op_sign_update, (signer, message2.data(), message2.size()));
15✔
3616

3617
            // check that insufficient buffer space is handled correctly
3618
            size_t sig_output_length_out = 0;
15✔
3619
            TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
15✔
3620
                        botan_pk_op_sign_finish,
3621
                        (signer, rng, nullptr, &sig_output_length_out));
3622
            result.test_eq("reported sig lengths are equal", sig_output_length, sig_output_length_out);
15✔
3623

3624
            // Recreate signer and try again
3625
            TEST_FFI_OK(botan_pk_op_sign_destroy, (signer));
15✔
3626
            TEST_FFI_OK(botan_pk_op_sign_create, (&signer, priv_loaded, hash_algo_or_padding(), 0));
15✔
3627
            TEST_FFI_OK(botan_pk_op_sign_update, (signer, message1.data(), message1.size()));
15✔
3628
            TEST_FFI_OK(botan_pk_op_sign_update, (signer, message2.data(), message2.size()));
15✔
3629

3630
            // allocate buffers (with additional space) and perform the actual signing
3631
            sig_output_length_out = sig_output_length * 2;
15✔
3632
            Botan::secure_vector<uint8_t> signature(sig_output_length_out);
15✔
3633
            TEST_FFI_OK(botan_pk_op_sign_finish, (signer, rng, signature.data(), &sig_output_length_out));
15✔
3634
            result.test_eq("signature length", sig_output_length, sig_output_length_out);
15✔
3635
            signature.resize(sig_output_length_out);
15✔
3636
            TEST_FFI_OK(botan_pk_op_sign_destroy, (signer));
15✔
3637

3638
            // Signature verification (using the generated public key)
3639
            botan_pk_op_verify_t verifier;
15✔
3640
            TEST_FFI_OK(botan_pk_op_verify_create, (&verifier, pub, hash_algo_or_padding(), 0));
15✔
3641
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message1.data(), message1.size()));
15✔
3642
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message2.data(), message2.size()));
15✔
3643

3644
            // Verify signature
3645
            TEST_FFI_OK(botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
15✔
3646
            TEST_FFI_OK(botan_pk_op_verify_destroy, (verifier));
15✔
3647

3648
            // Verify signature with wrong message (only first half)
3649
            TEST_FFI_OK(botan_pk_op_verify_create, (&verifier, pub, hash_algo_or_padding(), 0));
15✔
3650
            TEST_FFI_OK(botan_pk_op_verify_update, (verifier, message1.data(), message1.size()));
15✔
3651
            TEST_FFI_RC(
15✔
3652
               BOTAN_FFI_INVALID_VERIFIER, botan_pk_op_verify_finish, (verifier, signature.data(), signature.size()));
3653
            TEST_FFI_OK(botan_pk_op_verify_destroy, (verifier));
15✔
3654

3655
            // Cleanup
3656
            TEST_FFI_OK(botan_pubkey_destroy, (pub));
15✔
3657
            TEST_FFI_OK(botan_pubkey_destroy, (pub_loaded));
15✔
3658
            TEST_FFI_OK(botan_privkey_destroy, (priv));
15✔
3659
            TEST_FFI_OK(botan_privkey_destroy, (priv_loaded));
30✔
3660
         }
77✔
3661
      }
4✔
3662
};
3663

3664
class FFI_Kyber512_Test final : public FFI_Test {
×
3665
   public:
3666
      std::string name() const override { return "FFI Kyber512"; }
1✔
3667

3668
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
3669
         const std::vector<uint8_t> a_pub_bits = Botan::hex_decode(
1✔
3670
            "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");
1✔
3671
         const std::vector<uint8_t> b_priv_bits = Botan::hex_decode(
1✔
3672
            "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");
1✔
3673
         const std::vector<uint8_t> b_pub_bits = Botan::hex_decode(
1✔
3674
            "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");
1✔
3675

3676
         botan_privkey_t b_priv;
1✔
3677
         if(!TEST_FFI_INIT(botan_privkey_load_kyber, (&b_priv, b_priv_bits.data(), 1632))) {
1✔
3678
            return;
×
3679
         }
3680

3681
         ViewBytesSink privkey_read;
1✔
3682
         ViewBytesSink privkey_read_raw;
1✔
3683
         TEST_FFI_OK(botan_privkey_view_kyber_raw_key, (b_priv, privkey_read.delegate(), privkey_read.callback()));
1✔
3684
         TEST_FFI_OK(botan_privkey_view_raw, (b_priv, privkey_read_raw.delegate(), privkey_read_raw.callback()));
1✔
3685
         result.test_eq("kyber512 private key", privkey_read.get(), b_priv_bits);
2✔
3686
         result.test_eq("kyber512 private key raw", privkey_read_raw.get(), b_priv_bits);
2✔
3687

3688
         ViewBytesSink pubkey_read;
1✔
3689
         ViewBytesSink pubkey_read_raw;
1✔
3690

3691
         botan_pubkey_t b_pub;
1✔
3692
         TEST_FFI_OK(botan_privkey_export_pubkey, (&b_pub, b_priv));
1✔
3693
         TEST_FFI_OK(botan_pubkey_view_kyber_raw_key, (b_pub, pubkey_read.delegate(), pubkey_read.callback()));
1✔
3694
         TEST_FFI_OK(botan_pubkey_view_raw, (b_pub, pubkey_read_raw.delegate(), pubkey_read_raw.callback()));
1✔
3695
         result.test_eq("kyber512 public key b", pubkey_read.get(), b_pub_bits);
2✔
3696
         result.test_eq("kyber512 raw public key b", pubkey_read_raw.get(), b_pub_bits);
2✔
3697

3698
         botan_pubkey_t a_pub;
1✔
3699
         TEST_FFI_OK(botan_pubkey_load_kyber, (&a_pub, a_pub_bits.data(), 800));
1✔
3700
         TEST_FFI_OK(botan_pubkey_view_kyber_raw_key, (a_pub, pubkey_read.delegate(), pubkey_read.callback()));
1✔
3701
         result.test_eq("kyber512 public key a", pubkey_read.get(), a_pub_bits);
2✔
3702

3703
         TEST_FFI_OK(botan_pubkey_destroy, (a_pub));
1✔
3704
         TEST_FFI_OK(botan_pubkey_destroy, (b_pub));
1✔
3705
         TEST_FFI_OK(botan_privkey_destroy, (b_priv));
2✔
3706
      }
7✔
3707
};
3708

3709
class FFI_Kyber768_Test final : public FFI_Test {
×
3710
   public:
3711
      std::string name() const override { return "FFI Kyber768"; }
1✔
3712

3713
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
3714
         const std::vector<uint8_t> a_pub_bits = Botan::hex_decode(
1✔
3715
            "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");
1✔
3716
         const std::vector<uint8_t> b_priv_bits = Botan::hex_decode(
1✔
3717
            "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");
1✔
3718
         const std::vector<uint8_t> b_pub_bits = Botan::hex_decode(
1✔
3719
            "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");
1✔
3720

3721
         botan_privkey_t b_priv;
1✔
3722
         if(!TEST_FFI_INIT(botan_privkey_load_kyber, (&b_priv, b_priv_bits.data(), 2400))) {
1✔
3723
            return;
×
3724
         }
3725

3726
         ViewBytesSink privkey_read;
1✔
3727
         ViewBytesSink privkey_read_raw;
1✔
3728
         TEST_FFI_OK(botan_privkey_view_kyber_raw_key, (b_priv, privkey_read.delegate(), privkey_read.callback()));
1✔
3729
         TEST_FFI_OK(botan_privkey_view_raw, (b_priv, privkey_read_raw.delegate(), privkey_read_raw.callback()));
1✔
3730
         result.test_eq("kyber768 private key", privkey_read.get(), b_priv_bits);
2✔
3731
         result.test_eq("kyber768 private key raw", privkey_read_raw.get(), b_priv_bits);
2✔
3732

3733
         ViewBytesSink pubkey_read;
1✔
3734
         ViewBytesSink pubkey_read_raw;
1✔
3735

3736
         botan_pubkey_t b_pub;
1✔
3737
         TEST_FFI_OK(botan_privkey_export_pubkey, (&b_pub, b_priv));
1✔
3738
         TEST_FFI_OK(botan_pubkey_view_kyber_raw_key, (b_pub, pubkey_read.delegate(), pubkey_read.callback()));
1✔
3739
         TEST_FFI_OK(botan_pubkey_view_raw, (b_pub, pubkey_read_raw.delegate(), pubkey_read_raw.callback()));
1✔
3740
         result.test_eq("kyber768 public key b", pubkey_read.get(), b_pub_bits);
2✔
3741
         result.test_eq("kyber768 public key raw b", pubkey_read_raw.get(), b_pub_bits);
2✔
3742

3743
         botan_pubkey_t a_pub;
1✔
3744
         TEST_FFI_OK(botan_pubkey_load_kyber, (&a_pub, a_pub_bits.data(), 1184));
1✔
3745
         TEST_FFI_OK(botan_pubkey_view_kyber_raw_key, (a_pub, pubkey_read.delegate(), pubkey_read.callback()));
1✔
3746
         result.test_eq("kyber768 public key a", pubkey_read.get(), a_pub_bits);
2✔
3747

3748
         TEST_FFI_OK(botan_pubkey_destroy, (a_pub));
1✔
3749
         TEST_FFI_OK(botan_pubkey_destroy, (b_pub));
1✔
3750
         TEST_FFI_OK(botan_privkey_destroy, (b_priv));
2✔
3751
      }
7✔
3752
};
3753

3754
class FFI_Kyber1024_Test final : public FFI_Test {
×
3755
   public:
3756
      std::string name() const override { return "FFI Kyber1024"; }
1✔
3757

3758
      void ffi_test(Test::Result& result, botan_rng_t /*unused*/) override {
1✔
3759
         const std::vector<uint8_t> a_pub_bits = Botan::hex_decode(
1✔
3760
            "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");
1✔
3761
         const std::vector<uint8_t> b_priv_bits = Botan::hex_decode(
1✔
3762
            "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");
1✔
3763
         const std::vector<uint8_t> b_pub_bits = Botan::hex_decode(
1✔
3764
            "93bc837be699d5279dac78c9d49818ebc91d4ff6cb54b294e4c378d8eb584f561d21ca87b7c77b1c551f52112ba72c4b6514bb286856e89b48b0a62bad093894474b246a515f849056c9aeb572060ee11b93e236204a8ff1784ede0c3f4c0cd0cdb2a50bd4bcb1225c0dd2caa8a129fdcb01f0e1a75da465b6b8742e4946dbe3ab21ca6c4e592d398a5700375b7b770c17e117663b51313824854585ece4a1520c59a513555f548afdc6748eb9b770b7af8adc9b3c1861efc00ebde93f91fa1539c3411ec9b154c93d1f508b9714cdd0aaabcb436951aa54978b84faa8bd838c29a12657a6389fa658237326bf80e44cff183d9c9107d30c7b4df83908a8badbc1bb5328ae61e6451291710408196261bb913b285c168fe5c7456cd74970377330139beb4c8b4c00c5954254a748308bc30f3a1ccabed83628422e5515b294e80bfed024902a81518c0e6827caa13230016b72aec10d31aab9f9b072652486c3b779c845804d001b223b4065667a5e318b4e0b27c41a099168ce763ac245c1c26354cfc8214cacf01dc8c99c5fc855639cb7486a7a6b71766d62369ee6349f521591344fb8026099fc055c3a0ca2002271c9361f52acaf4675a97b3593f3447b284ad69a9711501411e14e48f080e2a0bceba07a02f79dc15c3c971c1e671a66bf7144395a94d08c46603c4369b25b38d924693492f6500745cb1d2a037e2cd814fac70d8254aea4526e061648d227350dec1ba6305299a45bde4029a9f63e4f62acb5246ba8b54208a37b98fa77e4b720f02b18969635cc16cb6e236ff78111b621cab0339c60b529a9207c94a74925aa3d177636a6d205d72b429f614d452358b98582e42c2f3a32c94202a8625a760483807bbac74c083a7a786ae7b46aff3810a5318e3f479e67e83b4c94587d345ffda17273a55e0432281c670e36b76539263636445e4d110fa1c92b2e65b1ee993b26c41c8c66b181206ff559728993503e7611fa0ca24156642d29a52cbb6aeff88fa1bb790b4344472503ae77967d11a904550a95cc47c3435f1e44b4b890cf5dc4cbd7486a6cab60d1a6622e40c67e854ed0e6a0c4c2aa92a29731e69bc6b3ca9e83893df4bdb37338055bc16bc7cd875b0691d0212109b77236b10b0c72b7a76e9ce346061028be3271c480435e2482d3d2733ed619c2d3698d29a3225a7731a62db4f214a0b11569e91895fbccb8a92d18f94d307a542ff96d2ce8c2bbaa8fab948c83365162268124cabe934b3a5e6530b7f74397a980c243bdce2989747565dd9ba65a7498aa7c3ee711c3be239e93cb45134c082a900cc951756afa42e74a65001822cab95f41798fdef89ea8a751740842e2f7a271e98dbd5158d7455fe9b9cdcd0a0f68c91e59b00979673a1deabf8d213971f994c0bb08899a91e0b896319b9fc69651e3453b14d1cc94462341548fc81c643ab0b10303c7be2c3458b226d0e45f58b21658a853b84615ac5234da9bc5699646fc53c0df907f9a3c598dab6c409b7884a7a84e1a51c2caa80779cd86b77314dabae85caa28972bb6503273a82eb96ab24af6bb0ad0c9ba07ce24216696e265206abc9e147ceef1ad2e343d17aabbc4803496366c7afb53f604c92323c70be5c1e3f601c215c888f3ab239c72aba0634a2901a71891f5d072d41b524e410c7f276ff1109878d7196b5615f1f50c13976257600a821909cb36cf8d2857a2f801cf258913f56a5153234640b9e61bbd4e7b69f83a1eb8ac6b92cb841e808b700aa784a733451048211797563cccc748c9fbb54b3b65445cba676149c7ae9a9a2ecab6599b8505bc561ad85d8c052ed9669e50e684270c86f1cb4fd6708a6746c643392c8a088477dc8bf58ba4a54a8b79e523fc19a28bd47d7e5a334d8296ec86c7f52b7e73b475a0716422953cdd8a8aed0b3a84dc8425145c240c55870240a23977215b364c5596286bc496728717c329dd4b5d0b310980bc0b3f591a2d5cb2c9eaccfa1c7d3a096fc11091a4007a0f23a59782699c3171da53bc7b914f26c95391d6445073a1bd7a44691bafab9c9aceccc7ec389255c3a0ff24c71b30b6bf80c010803383485a7b295991d759cefbae257bbdee1806818565ebd09bf814c98686bbf44a0b14d28735f79ca2261bf9a31b2ca090c7667168b26c99bf8461495793bbb1b12ca369c825cb31d68731326bf4764b416bb333");
1✔
3765

3766
         botan_privkey_t b_priv;
1✔
3767
         if(!TEST_FFI_INIT(botan_privkey_load_kyber, (&b_priv, b_priv_bits.data(), 3168))) {
1✔
3768
            return;
×
3769
         }
3770

3771
         ViewBytesSink privkey_read;
1✔
3772
         ViewBytesSink privkey_read_raw;
1✔
3773
         TEST_FFI_OK(botan_privkey_view_kyber_raw_key, (b_priv, privkey_read.delegate(), privkey_read.callback()));
1✔
3774
         TEST_FFI_OK(botan_privkey_view_raw, (b_priv, privkey_read_raw.delegate(), privkey_read_raw.callback()));
1✔
3775
         result.test_eq("kyber1024 private key", privkey_read.get(), b_priv_bits);
2✔
3776
         result.test_eq("kyber1024 private key raw", privkey_read_raw.get(), b_priv_bits);
2✔
3777

3778
         ViewBytesSink pubkey_read;
1✔
3779
         ViewBytesSink pubkey_read_raw;
1✔
3780

3781
         botan_pubkey_t b_pub;
1✔
3782
         TEST_FFI_OK(botan_privkey_export_pubkey, (&b_pub, b_priv));
1✔
3783
         TEST_FFI_OK(botan_pubkey_view_kyber_raw_key, (b_pub, pubkey_read.delegate(), pubkey_read.callback()));
1✔
3784
         TEST_FFI_OK(botan_pubkey_view_raw, (b_pub, pubkey_read_raw.delegate(), pubkey_read_raw.callback()));
1✔
3785
         result.test_eq("kyber1024 public key b", pubkey_read.get(), b_pub_bits);
2✔
3786
         result.test_eq("kyber1024 public key raw b", pubkey_read_raw.get(), b_pub_bits);
2✔
3787

3788
         botan_pubkey_t a_pub;
1✔
3789
         TEST_FFI_OK(botan_pubkey_load_kyber, (&a_pub, a_pub_bits.data(), 1568));
1✔
3790
         TEST_FFI_OK(botan_pubkey_view_kyber_raw_key, (a_pub, pubkey_read.delegate(), pubkey_read.callback()));
1✔
3791
         result.test_eq("kyber1024 public key a", pubkey_read.get(), a_pub_bits);
2✔
3792

3793
         TEST_FFI_OK(botan_pubkey_destroy, (a_pub));
1✔
3794
         TEST_FFI_OK(botan_pubkey_destroy, (b_pub));
1✔
3795
         TEST_FFI_OK(botan_privkey_destroy, (b_priv));
2✔
3796
      }
7✔
3797
};
3798

3799
class FFI_ML_KEM_Test final : public FFI_KEM_Roundtrip_Test {
×
3800
   public:
3801
      std::string name() const override { return "FFI ML-KEM"; }
1✔
3802

3803
   private:
3804
      const char* algo() const override { return "ML-KEM"; }
3✔
3805

3806
      privkey_loader_fn_t private_key_load_function() const override { return botan_privkey_load_ml_kem; }
3✔
3807

3808
      pubkey_loader_fn_t public_key_load_function() const override { return botan_pubkey_load_ml_kem; }
3✔
3809

3810
      std::vector<const char*> modes() const override { return {"ML-KEM-512", "ML-KEM-768", "ML-KEM-1024"}; }
1✔
3811
};
3812

3813
class FFI_FrodoKEM_Test final : public FFI_KEM_Roundtrip_Test {
×
3814
   public:
3815
      std::string name() const override { return "FFI FrodoKEM"; }
1✔
3816

3817
   protected:
3818
      const char* algo() const override { return "FrodoKEM"; }
12✔
3819

3820
      privkey_loader_fn_t private_key_load_function() const override { return botan_privkey_load_frodokem; }
12✔
3821

3822
      pubkey_loader_fn_t public_key_load_function() const override { return botan_pubkey_load_frodokem; }
12✔
3823

3824
      std::vector<const char*> modes() const override {
1✔
3825
         return std::vector{
1✔
3826
            "FrodoKEM-640-SHAKE",
3827
            "FrodoKEM-976-SHAKE",
3828
            "FrodoKEM-1344-SHAKE",
3829
            "eFrodoKEM-640-SHAKE",
3830
            "eFrodoKEM-976-SHAKE",
3831
            "eFrodoKEM-1344-SHAKE",
3832
            "FrodoKEM-640-AES",
3833
            "FrodoKEM-976-AES",
3834
            "FrodoKEM-1344-AES",
3835
            "eFrodoKEM-640-AES",
3836
            "eFrodoKEM-976-AES",
3837
            "eFrodoKEM-1344-AES",
3838
         };
1✔
3839
      }
3840
};
3841

3842
class FFI_ML_DSA_Test final : public FFI_Signature_Roundtrip_Test {
×
3843
   public:
3844
      std::string name() const override { return "FFI ML-DSA"; }
1✔
3845

3846
   private:
3847
      const char* algo() const override { return "ML-DSA"; }
3✔
3848

3849
      privkey_loader_fn_t private_key_load_function() const override { return botan_privkey_load_ml_dsa; }
3✔
3850

3851
      pubkey_loader_fn_t public_key_load_function() const override { return botan_pubkey_load_ml_dsa; }
3✔
3852

3853
      std::vector<const char*> modes() const override {
1✔
3854
         return {
1✔
3855
            "ML-DSA-4x4",
3856
            "ML-DSA-6x5",
3857
            "ML-DSA-8x7",
3858
         };
1✔
3859
      }
3860

3861
      const char* hash_algo_or_padding() const override { return ""; }
12✔
3862
};
3863

3864
class FFI_SLH_DSA_Test final : public FFI_Signature_Roundtrip_Test {
×
3865
   public:
3866
      std::string name() const override { return "FFI SLH-DSA"; }
1✔
3867

3868
   private:
3869
      const char* algo() const override { return "SLH-DSA"; }
12✔
3870

3871
      privkey_loader_fn_t private_key_load_function() const override { return botan_privkey_load_slh_dsa; }
12✔
3872

3873
      pubkey_loader_fn_t public_key_load_function() const override { return botan_pubkey_load_slh_dsa; }
12✔
3874

3875
      std::vector<const char*> modes() const override {
1✔
3876
         auto modes = std::vector{
1✔
3877
            "SLH-DSA-SHA2-128f",
3878
            "SLH-DSA-SHAKE-128f",
3879
            "SLH-DSA-SHA2-192f",
3880
            "SLH-DSA-SHAKE-192f",
3881
            "SLH-DSA-SHA2-256f",
3882
            "SLH-DSA-SHAKE-256f",
3883
         };
1✔
3884

3885
         if(Test::run_long_tests()) {
1✔
3886
            modes = Botan::concat(modes,
3✔
3887
                                  std::vector{
1✔
3888
                                     "SLH-DSA-SHA2-128s",
3889
                                     "SLH-DSA-SHA2-192s",
3890
                                     "SLH-DSA-SHA2-256s",
3891
                                     "SLH-DSA-SHAKE-128s",
3892
                                     "SLH-DSA-SHAKE-192s",
3893
                                     "SLH-DSA-SHAKE-256s",
3894
                                  });
2✔
3895
         }
3896

3897
         return modes;
1✔
3898
      }
×
3899

3900
      const char* hash_algo_or_padding() const override { return ""; }
48✔
3901
};
3902

3903
class FFI_Classic_McEliece_Test final : public FFI_KEM_Roundtrip_Test {
×
3904
   public:
3905
      std::string name() const override { return "FFI Classic McEliece"; }
1✔
3906

3907
   protected:
3908
      const char* algo() const override { return "ClassicMcEliece"; }
16✔
3909

3910
      privkey_loader_fn_t private_key_load_function() const override { return botan_privkey_load_classic_mceliece; }
16✔
3911

3912
      pubkey_loader_fn_t public_key_load_function() const override { return botan_pubkey_load_classic_mceliece; }
16✔
3913

3914
      std::vector<const char*> modes() const override {
1✔
3915
         auto modes = std::vector{
1✔
3916
            "348864f",
3917
            "460896f",
3918
         };
1✔
3919
         if(Test::run_long_tests()) {
1✔
3920
            modes = Botan::concat(modes,
3✔
3921
                                  std::vector{
1✔
3922
                                     "348864",
3923
                                     "460896",
3924
                                     "6688128",
3925
                                     "6688128f",
3926
                                     "6688128pc",
3927
                                     "6688128pcf",
3928
                                     "6960119",
3929
                                     "6960119f",
3930
                                     "6960119pc",
3931
                                     "6960119pcf",
3932
                                     "8192128",
3933
                                     "8192128f",
3934
                                     "8192128pc",
3935
                                     "8192128pcf",
3936
                                  });
2✔
3937
         }
3938
         return modes;
1✔
3939
      }
×
3940
};
3941

3942
class FFI_ElGamal_Test final : public FFI_Test {
×
3943
   public:
3944
      std::string name() const override { return "FFI ElGamal"; }
1✔
3945

3946
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
3947
         botan_privkey_t priv;
1✔
3948

3949
         if(TEST_FFI_INIT(botan_privkey_create, (&priv, "ElGamal", "modp/ietf/1024", rng))) {
1✔
3950
            do_elgamal_test(priv, rng, result);
1✔
3951
         }
3952

3953
         if(TEST_FFI_INIT(botan_privkey_create_elgamal, (&priv, rng, 1024, 160))) {
1✔
3954
            do_elgamal_test(priv, rng, result);
1✔
3955
         }
3956
      }
1✔
3957

3958
   private:
3959
      static void do_elgamal_test(botan_privkey_t priv, botan_rng_t rng, Test::Result& result) {
2✔
3960
         TEST_FFI_OK(botan_privkey_check_key, (priv, rng, 0));
2✔
3961

3962
         botan_pubkey_t pub;
2✔
3963
         TEST_FFI_OK(botan_privkey_export_pubkey, (&pub, priv));
2✔
3964
         TEST_FFI_OK(botan_pubkey_check_key, (pub, rng, 0));
2✔
3965

3966
         ffi_test_pubkey_export(result, pub, priv, rng);
2✔
3967
         botan_mp_t p, g, x, y;
2✔
3968
         botan_mp_init(&p);
2✔
3969
         botan_mp_init(&g);
2✔
3970
         botan_mp_init(&x);
2✔
3971
         botan_mp_init(&y);
2✔
3972

3973
         TEST_FFI_OK(botan_pubkey_get_field, (p, pub, "p"));
2✔
3974
         TEST_FFI_OK(botan_pubkey_get_field, (g, pub, "g"));
2✔
3975
         TEST_FFI_OK(botan_pubkey_get_field, (y, pub, "y"));
2✔
3976
         TEST_FFI_OK(botan_privkey_get_field, (x, priv, "x"));
2✔
3977

3978
         size_t p_len = 0;
2✔
3979
         TEST_FFI_OK(botan_mp_num_bytes, (p, &p_len));
2✔
3980

3981
         botan_privkey_t loaded_privkey;
2✔
3982
         TEST_FFI_OK(botan_privkey_load_elgamal, (&loaded_privkey, p, g, x));
2✔
3983

3984
         botan_pubkey_t loaded_pubkey;
2✔
3985
         TEST_FFI_OK(botan_pubkey_load_elgamal, (&loaded_pubkey, p, g, y));
2✔
3986

3987
         botan_mp_destroy(p);
2✔
3988
         botan_mp_destroy(g);
2✔
3989
         botan_mp_destroy(y);
2✔
3990
         botan_mp_destroy(x);
2✔
3991

3992
         std::vector<uint8_t> plaintext(16, 0xFF);
2✔
3993
         std::vector<uint8_t> ciphertext;
2✔
3994
         std::vector<uint8_t> decryption;
2✔
3995

3996
   #if defined(BOTAN_HAS_OAEP) && defined(BOTAN_HAS_SHA2_32)
3997
         const std::string padding = "OAEP(SHA-256)";
2✔
3998
   #else
3999
         const std::string padding = "Raw";
4000
   #endif
4001

4002
         // Test encryption
4003
         botan_pk_op_encrypt_t op_enc;
2✔
4004
         if(TEST_FFI_OK(botan_pk_op_encrypt_create, (&op_enc, loaded_pubkey, padding.c_str(), 0))) {
2✔
4005
            size_t ctext_len;
2✔
4006
            TEST_FFI_OK(botan_pk_op_encrypt_output_length, (op_enc, plaintext.size(), &ctext_len));
2✔
4007
            ciphertext.resize(ctext_len);
2✔
4008
            TEST_FFI_OK(botan_pk_op_encrypt,
2✔
4009
                        (op_enc, rng, ciphertext.data(), &ctext_len, plaintext.data(), plaintext.size()));
4010
            ciphertext.resize(ctext_len);
2✔
4011
            TEST_FFI_OK(botan_pk_op_encrypt_destroy, (op_enc));
4✔
4012
         }
4013

4014
         // Test decryption
4015
         botan_pk_op_decrypt_t op_dec;
2✔
4016
         if(TEST_FFI_OK(botan_pk_op_decrypt_create, (&op_dec, loaded_privkey, padding.c_str(), 0))) {
2✔
4017
            size_t ptext_len;
2✔
4018
            TEST_FFI_OK(botan_pk_op_decrypt_output_length, (op_dec, ciphertext.size(), &ptext_len));
2✔
4019
            decryption.resize(ptext_len);
2✔
4020
            TEST_FFI_OK(botan_pk_op_decrypt,
2✔
4021
                        (op_dec, decryption.data(), &ptext_len, ciphertext.data(), ciphertext.size()));
4022
            decryption.resize(ptext_len);
2✔
4023
            TEST_FFI_OK(botan_pk_op_decrypt_destroy, (op_dec));
4✔
4024
         }
4025

4026
         result.test_eq("decryption worked", decryption, plaintext);
4✔
4027

4028
         TEST_FFI_OK(botan_pubkey_destroy, (loaded_pubkey));
2✔
4029
         TEST_FFI_OK(botan_pubkey_destroy, (pub));
2✔
4030
         TEST_FFI_OK(botan_privkey_destroy, (loaded_privkey));
2✔
4031
         TEST_FFI_OK(botan_privkey_destroy, (priv));
4✔
4032
      }
8✔
4033
};
4034

4035
class FFI_DH_Test final : public FFI_Test {
×
4036
   public:
4037
      std::string name() const override { return "FFI DH"; }
1✔
4038

4039
      void ffi_test(Test::Result& result, botan_rng_t rng) override {
1✔
4040
         botan_privkey_t priv1;
1✔
4041
         if(!TEST_FFI_INIT(botan_privkey_create_dh, (&priv1, rng, "modp/ietf/2048"))) {
1✔
4042
            return;
×
4043
         }
4044

4045
         botan_privkey_t priv2;
1✔
4046
         REQUIRE_FFI_OK(botan_privkey_create_dh, (&priv2, rng, "modp/ietf/2048"));
1✔
4047

4048
         botan_pubkey_t pub1;
1✔
4049
         REQUIRE_FFI_OK(botan_privkey_export_pubkey, (&pub1, priv1));
1✔
4050

4051
         botan_pubkey_t pub2;
1✔
4052
         REQUIRE_FFI_OK(botan_privkey_export_pubkey, (&pub2, priv2));
1✔
4053

4054
         // Reload key-pair1 in order to test functions for key loading
4055
         botan_mp_t private_x, public_g, public_p, public_y;
1✔
4056

4057
         botan_mp_init(&private_x);
1✔
4058
         botan_mp_init(&public_g);
1✔
4059
         botan_mp_init(&public_p);
1✔
4060
         botan_mp_init(&public_y);
1✔
4061

4062
         TEST_FFI_OK(botan_privkey_get_field, (private_x, priv1, "x"));
1✔
4063
         TEST_FFI_OK(botan_pubkey_get_field, (public_g, pub1, "g"));
1✔
4064
         TEST_FFI_OK(botan_pubkey_get_field, (public_p, pub1, "p"));
1✔
4065
         TEST_FFI_OK(botan_pubkey_get_field, (public_y, pub1, "y"));
1✔
4066

4067
         botan_privkey_t loaded_privkey1;
1✔
4068
         botan_pubkey_t loaded_pubkey1;
1✔
4069
         TEST_FFI_OK(botan_privkey_load_dh, (&loaded_privkey1, public_p, public_g, private_x));
1✔
4070
         TEST_FFI_OK(botan_pubkey_load_dh, (&loaded_pubkey1, public_p, public_g, public_y));
1✔
4071

4072
         TEST_FFI_OK(botan_privkey_check_key, (loaded_privkey1, rng, 0));
1✔
4073
         TEST_FFI_OK(botan_pubkey_check_key, (loaded_pubkey1, rng, 0));
1✔
4074

4075
         botan_mp_t loaded_public_g, loaded_public_p, loaded_public_y;
1✔
4076
         botan_mp_init(&loaded_public_g);
1✔
4077
         botan_mp_init(&loaded_public_p);
1✔
4078
         botan_mp_init(&loaded_public_y);
1✔
4079

4080
         TEST_FFI_OK(botan_pubkey_get_field, (loaded_public_g, loaded_pubkey1, "g"));
1✔
4081
         TEST_FFI_OK(botan_pubkey_get_field, (loaded_public_p, loaded_pubkey1, "p"));
1✔
4082
         TEST_FFI_OK(botan_pubkey_get_field, (loaded_public_y, loaded_pubkey1, "y"));
1✔
4083

4084
         int cmp;
1✔
4085

4086
         TEST_FFI_OK(botan_mp_cmp, (&cmp, loaded_public_g, public_g));
1✔
4087
         result.confirm("bigint_mp_cmp(g, g)", cmp == 0);
2✔
4088

4089
         TEST_FFI_OK(botan_mp_cmp, (&cmp, loaded_public_p, public_p));
1✔
4090
         result.confirm("bigint_mp_cmp(p, p)", cmp == 0);
2✔
4091

4092
         TEST_FFI_OK(botan_mp_cmp, (&cmp, loaded_public_y, public_y));
1✔
4093
         result.confirm("bigint_mp_cmp(y, y)", cmp == 0);
2✔
4094

4095
         botan_pk_op_ka_t ka1;
1✔
4096
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_create, (&ka1, loaded_privkey1, "Raw", 0));
1✔
4097
         botan_pk_op_ka_t ka2;
1✔
4098
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_create, (&ka2, priv2, "Raw", 0));
1✔
4099

4100
         size_t pubkey1_len = 0;
1✔
4101
         TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
4102
                     botan_pk_op_key_agreement_export_public,
4103
                     (priv1, nullptr, &pubkey1_len));
4104
         std::vector<uint8_t> pubkey1(pubkey1_len);
1✔
4105
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_export_public, (priv1, pubkey1.data(), &pubkey1_len));
1✔
4106
         size_t pubkey2_len = 0;
1✔
4107
         TEST_FFI_RC(BOTAN_FFI_ERROR_INSUFFICIENT_BUFFER_SPACE,
1✔
4108
                     botan_pk_op_key_agreement_export_public,
4109
                     (priv2, nullptr, &pubkey2_len));
4110
         std::vector<uint8_t> pubkey2(pubkey2_len);
1✔
4111
         REQUIRE_FFI_OK(botan_pk_op_key_agreement_export_public, (priv2, pubkey2.data(), &pubkey2_len));
1✔
4112

4113
         const size_t shared_key_len = 256;
1✔
4114

4115
         std::vector<uint8_t> key1(shared_key_len);
1✔
4116
         size_t key1_len = key1.size();
1✔
4117

4118
         TEST_FFI_OK(botan_pk_op_key_agreement,
1✔
4119
                     (ka1, key1.data(), &key1_len, pubkey2.data(), pubkey2.size(), nullptr, 0));
4120

4121
         std::vector<uint8_t> key2(shared_key_len);
1✔
4122
         size_t key2_len = key2.size();
1✔
4123

4124
         TEST_FFI_OK(botan_pk_op_key_agreement,
1✔
4125
                     (ka2, key2.data(), &key2_len, pubkey1.data(), pubkey1.size(), nullptr, 0));
4126

4127
         result.test_eq("shared DH key", key1, key2);
2✔
4128

4129
         TEST_FFI_OK(botan_mp_destroy, (private_x));
1✔
4130
         TEST_FFI_OK(botan_mp_destroy, (public_p));
1✔
4131
         TEST_FFI_OK(botan_mp_destroy, (public_g));
1✔
4132
         TEST_FFI_OK(botan_mp_destroy, (public_y));
1✔
4133

4134
         TEST_FFI_OK(botan_mp_destroy, (loaded_public_p));
1✔
4135
         TEST_FFI_OK(botan_mp_destroy, (loaded_public_g));
1✔
4136
         TEST_FFI_OK(botan_mp_destroy, (loaded_public_y));
1✔
4137

4138
         TEST_FFI_OK(botan_pk_op_key_agreement_destroy, (ka1));
1✔
4139
         TEST_FFI_OK(botan_pk_op_key_agreement_destroy, (ka2));
1✔
4140
         TEST_FFI_OK(botan_privkey_destroy, (priv1));
1✔
4141
         TEST_FFI_OK(botan_privkey_destroy, (priv2));
1✔
4142
         TEST_FFI_OK(botan_pubkey_destroy, (pub1));
1✔
4143
         TEST_FFI_OK(botan_pubkey_destroy, (pub2));
1✔
4144
         TEST_FFI_OK(botan_privkey_destroy, (loaded_privkey1));
1✔
4145
         TEST_FFI_OK(botan_pubkey_destroy, (loaded_pubkey1));
2✔
4146
      }
4✔
4147
};
4148

4149
BOTAN_REGISTER_TEST("ffi", "ffi_utils", FFI_Utils_Test);
4150
BOTAN_REGISTER_TEST("ffi", "ffi_rng", FFI_RNG_Test);
4151
BOTAN_REGISTER_TEST("ffi", "ffi_rsa_cert", FFI_RSA_Cert_Test);
4152
BOTAN_REGISTER_TEST("ffi", "ffi_zfec", FFI_ZFEC_Test);
4153
BOTAN_REGISTER_TEST("ffi", "ffi_crl", FFI_CRL_Test);
4154
BOTAN_REGISTER_TEST("ffi", "ffi_cert_validation", FFI_Cert_Validation_Test);
4155
BOTAN_REGISTER_TEST("ffi", "ffi_ecdsa_certificate", FFI_ECDSA_Certificate_Test);
4156
BOTAN_REGISTER_TEST("ffi", "ffi_pkcs_hashid", FFI_PKCS_Hashid_Test);
4157
BOTAN_REGISTER_TEST("ffi", "ffi_cbc_cipher", FFI_CBC_Cipher_Test);
4158
BOTAN_REGISTER_TEST("ffi", "ffi_gcm", FFI_GCM_Test);
4159
BOTAN_REGISTER_TEST("ffi", "ffi_chacha", FFI_ChaCha20Poly1305_Test);
4160
BOTAN_REGISTER_TEST("ffi", "ffi_eax", FFI_EAX_Test);
4161
BOTAN_REGISTER_TEST("ffi", "ffi_aead", FFI_AEAD_Test);
4162
BOTAN_REGISTER_TEST("ffi", "ffi_streamcipher", FFI_StreamCipher_Test);
4163
BOTAN_REGISTER_TEST("ffi", "ffi_hashfunction", FFI_HashFunction_Test);
4164
BOTAN_REGISTER_TEST("ffi", "ffi_mac", FFI_MAC_Test);
4165
BOTAN_REGISTER_TEST("ffi", "ffi_scrypt", FFI_Scrypt_Test);
4166
BOTAN_REGISTER_TEST("ffi", "ffi_kdf", FFI_KDF_Test);
4167
BOTAN_REGISTER_TEST("ffi", "ffi_blockcipher", FFI_Blockcipher_Test);
4168
BOTAN_REGISTER_TEST("ffi", "ffi_errorhandling", FFI_ErrorHandling_Test);
4169
BOTAN_REGISTER_TEST("ffi", "ffi_base64", FFI_Base64_Test);
4170
BOTAN_REGISTER_TEST("ffi", "ffi_hex", FFI_Hex_Test);
4171
BOTAN_REGISTER_TEST("ffi", "ffi_mp", FFI_MP_Test);
4172
BOTAN_REGISTER_TEST("ffi", "ffi_fpe", FFI_FPE_Test);
4173
BOTAN_REGISTER_TEST("ffi", "ffi_totp", FFI_TOTP_Test);
4174
BOTAN_REGISTER_TEST("ffi", "ffi_hotp", FFI_HOTP_Test);
4175
BOTAN_REGISTER_TEST("ffi", "ffi_keywrap", FFI_Keywrap_Test);
4176
BOTAN_REGISTER_TEST("ffi", "ffi_xmss", FFI_XMSS_Test);
4177
BOTAN_REGISTER_TEST("ffi", "ffi_rsa", FFI_RSA_Test);
4178
BOTAN_REGISTER_TEST("ffi", "ffi_dsa", FFI_DSA_Test);
4179
BOTAN_REGISTER_TEST("ffi", "ffi_ecdsa", FFI_ECDSA_Test);
4180
BOTAN_REGISTER_TEST("ffi", "ffi_sm2_sig", FFI_SM2_Sig_Test);
4181
BOTAN_REGISTER_TEST("ffi", "ffi_sm2_enc", FFI_SM2_Enc_Test);
4182
BOTAN_REGISTER_TEST("ffi", "ffi_ecdh", FFI_ECDH_Test);
4183
BOTAN_REGISTER_TEST("ffi", "ffi_mceliece", FFI_McEliece_Test);
4184
BOTAN_REGISTER_TEST("ffi", "ffi_ed25519", FFI_Ed25519_Test);
4185
BOTAN_REGISTER_TEST("ffi", "ffi_ed448", FFI_Ed448_Test);
4186
BOTAN_REGISTER_TEST("ffi", "ffi_x25519", FFI_X25519_Test);
4187
BOTAN_REGISTER_TEST("ffi", "ffi_x448", FFI_X448_Test);
4188
BOTAN_REGISTER_TEST("ffi", "ffi_kyber512", FFI_Kyber512_Test);
4189
BOTAN_REGISTER_TEST("ffi", "ffi_kyber768", FFI_Kyber768_Test);
4190
BOTAN_REGISTER_TEST("ffi", "ffi_kyber1024", FFI_Kyber1024_Test);
4191
BOTAN_REGISTER_TEST("ffi", "ffi_ml_kem", FFI_ML_KEM_Test);
4192
BOTAN_REGISTER_TEST("ffi", "ffi_ml_dsa", FFI_ML_DSA_Test);
4193
BOTAN_REGISTER_TEST("ffi", "ffi_slh_dsa", FFI_SLH_DSA_Test);
4194
BOTAN_REGISTER_TEST("ffi", "ffi_frodokem", FFI_FrodoKEM_Test);
4195
BOTAN_REGISTER_TEST("ffi", "ffi_cmce", FFI_Classic_McEliece_Test);
4196
BOTAN_REGISTER_TEST("ffi", "ffi_elgamal", FFI_ElGamal_Test);
4197
BOTAN_REGISTER_TEST("ffi", "ffi_dh", FFI_DH_Test);
4198

4199
#endif
4200

4201
}  // namespace
4202

4203
}  // namespace Botan_Tests
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