Counter Strike : Global Offensive Source Code
You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

601 lines
23 KiB

  1. // fipstest.cpp - written and placed in the public domain by Wei Dai
  2. #include "pch.h"
  3. #ifndef CRYPTOPP_IMPORTS
  4. #define CRYPTOPP_DEFAULT_NO_DLL
  5. #include "dll.h"
  6. #ifdef CRYPTOPP_WIN32_AVAILABLE
  7. #define _WIN32_WINNT 0x0400
  8. #include <windows.h>
  9. #if defined(_MSC_VER) && _MSC_VER >= 1400
  10. #ifdef _M_IX86
  11. #define _CRT_DEBUGGER_HOOK _crt_debugger_hook
  12. #else
  13. #define _CRT_DEBUGGER_HOOK __crt_debugger_hook
  14. #endif
  15. extern "C" {_CRTIMP void __cdecl _CRT_DEBUGGER_HOOK(int);}
  16. #endif
  17. #endif
  18. #include <iostream>
  19. NAMESPACE_BEGIN(CryptoPP)
  20. extern PowerUpSelfTestStatus g_powerUpSelfTestStatus;
  21. SecByteBlock g_actualMac;
  22. unsigned long g_macFileLocation = 0;
  23. // use a random dummy string here, to be searched/replaced later with the real MAC
  24. static const byte s_moduleMac[CryptoPP::HMAC<CryptoPP::SHA1>::DIGESTSIZE] = CRYPTOPP_DUMMY_DLL_MAC;
  25. CRYPTOPP_COMPILE_ASSERT(sizeof(s_moduleMac) == CryptoPP::SHA1::DIGESTSIZE);
  26. #ifdef CRYPTOPP_WIN32_AVAILABLE
  27. static HMODULE s_hModule = NULL;
  28. #endif
  29. const byte * CRYPTOPP_API GetActualMacAndLocation(unsigned int &macSize, unsigned int &fileLocation)
  30. {
  31. macSize = (unsigned int)g_actualMac.size();
  32. fileLocation = g_macFileLocation;
  33. return g_actualMac;
  34. }
  35. void KnownAnswerTest(RandomNumberGenerator &rng, const char *output)
  36. {
  37. EqualityComparisonFilter comparison;
  38. RandomNumberStore(rng, strlen(output)/2).TransferAllTo(comparison, "0");
  39. StringSource(output, true, new HexDecoder(new ChannelSwitch(comparison, "1")));
  40. comparison.ChannelMessageSeriesEnd("0");
  41. comparison.ChannelMessageSeriesEnd("1");
  42. }
  43. template <class CIPHER>
  44. void X917RNG_KnownAnswerTest(
  45. const char *key,
  46. const char *seed,
  47. const char *deterministicTimeVector,
  48. const char *output,
  49. CIPHER *dummy = NULL)
  50. {
  51. #ifdef OS_RNG_AVAILABLE
  52. std::string decodedKey, decodedSeed, decodedDeterministicTimeVector;
  53. StringSource(key, true, new HexDecoder(new StringSink(decodedKey)));
  54. StringSource(seed, true, new HexDecoder(new StringSink(decodedSeed)));
  55. StringSource(deterministicTimeVector, true, new HexDecoder(new StringSink(decodedDeterministicTimeVector)));
  56. AutoSeededX917RNG<CIPHER> rng(false, false);
  57. rng.Reseed((const byte *)decodedKey.data(), decodedKey.size(), (const byte *)decodedSeed.data(), (const byte *)decodedDeterministicTimeVector.data());
  58. KnownAnswerTest(rng, output);
  59. #else
  60. throw 0;
  61. #endif
  62. }
  63. void KnownAnswerTest(StreamTransformation &encryption, StreamTransformation &decryption, const char *plaintext, const char *ciphertext)
  64. {
  65. EqualityComparisonFilter comparison;
  66. StringSource(plaintext, true, new HexDecoder(new StreamTransformationFilter(encryption, new ChannelSwitch(comparison, "0"), StreamTransformationFilter::NO_PADDING)));
  67. StringSource(ciphertext, true, new HexDecoder(new ChannelSwitch(comparison, "1")));
  68. StringSource(ciphertext, true, new HexDecoder(new StreamTransformationFilter(decryption, new ChannelSwitch(comparison, "0"), StreamTransformationFilter::NO_PADDING)));
  69. StringSource(plaintext, true, new HexDecoder(new ChannelSwitch(comparison, "1")));
  70. comparison.ChannelMessageSeriesEnd("0");
  71. comparison.ChannelMessageSeriesEnd("1");
  72. }
  73. template <class CIPHER>
  74. void SymmetricEncryptionKnownAnswerTest(
  75. const char *key,
  76. const char *hexIV,
  77. const char *plaintext,
  78. const char *ecb,
  79. const char *cbc,
  80. const char *cfb,
  81. const char *ofb,
  82. const char *ctr,
  83. CIPHER *dummy = NULL)
  84. {
  85. std::string decodedKey;
  86. StringSource(key, true, new HexDecoder(new StringSink(decodedKey)));
  87. typename CIPHER::Encryption encryption((const byte *)decodedKey.data(), decodedKey.size());
  88. typename CIPHER::Decryption decryption((const byte *)decodedKey.data(), decodedKey.size());
  89. SecByteBlock iv(encryption.BlockSize());
  90. StringSource(hexIV, true, new HexDecoder(new ArraySink(iv, iv.size())));
  91. if (ecb)
  92. KnownAnswerTest(ECB_Mode_ExternalCipher::Encryption(encryption).Ref(), ECB_Mode_ExternalCipher::Decryption(decryption).Ref(), plaintext, ecb);
  93. if (cbc)
  94. KnownAnswerTest(CBC_Mode_ExternalCipher::Encryption(encryption, iv).Ref(), CBC_Mode_ExternalCipher::Decryption(decryption, iv).Ref(), plaintext, cbc);
  95. if (cfb)
  96. KnownAnswerTest(CFB_Mode_ExternalCipher::Encryption(encryption, iv).Ref(), CFB_Mode_ExternalCipher::Decryption(encryption, iv).Ref(), plaintext, cfb);
  97. if (ofb)
  98. KnownAnswerTest(OFB_Mode_ExternalCipher::Encryption(encryption, iv).Ref(), OFB_Mode_ExternalCipher::Decryption(encryption, iv).Ref(), plaintext, ofb);
  99. if (ctr)
  100. KnownAnswerTest(CTR_Mode_ExternalCipher::Encryption(encryption, iv).Ref(), CTR_Mode_ExternalCipher::Decryption(encryption, iv).Ref(), plaintext, ctr);
  101. }
  102. void KnownAnswerTest(HashTransformation &hash, const char *message, const char *digest)
  103. {
  104. EqualityComparisonFilter comparison;
  105. StringSource(digest, true, new HexDecoder(new ChannelSwitch(comparison, "1")));
  106. StringSource(message, true, new HashFilter(hash, new ChannelSwitch(comparison, "0")));
  107. comparison.ChannelMessageSeriesEnd("0");
  108. comparison.ChannelMessageSeriesEnd("1");
  109. }
  110. template <class HASH>
  111. void SecureHashKnownAnswerTest(const char *message, const char *digest, HASH *dummy = NULL)
  112. {
  113. HASH hash;
  114. KnownAnswerTest(hash, message, digest);
  115. }
  116. template <class MAC>
  117. void MAC_KnownAnswerTest(const char *key, const char *message, const char *digest, MAC *dummy = NULL)
  118. {
  119. std::string decodedKey;
  120. StringSource(key, true, new HexDecoder(new StringSink(decodedKey)));
  121. MAC mac((const byte *)decodedKey.data(), decodedKey.size());
  122. KnownAnswerTest(mac, message, digest);
  123. }
  124. template <class SCHEME>
  125. void SignatureKnownAnswerTest(const char *key, const char *message, const char *signature, SCHEME *dummy = NULL)
  126. {
  127. typename SCHEME::Signer signer(StringSource(key, true, new HexDecoder).Ref());
  128. typename SCHEME::Verifier verifier(signer);
  129. RandomPool rng;
  130. EqualityComparisonFilter comparison;
  131. StringSource(message, true, new SignerFilter(rng, signer, new ChannelSwitch(comparison, "0")));
  132. StringSource(signature, true, new HexDecoder(new ChannelSwitch(comparison, "1")));
  133. comparison.ChannelMessageSeriesEnd("0");
  134. comparison.ChannelMessageSeriesEnd("1");
  135. VerifierFilter verifierFilter(verifier, NULL, VerifierFilter::SIGNATURE_AT_BEGIN | VerifierFilter::THROW_EXCEPTION);
  136. StringSource(signature, true, new HexDecoder(new Redirector(verifierFilter, Redirector::DATA_ONLY)));
  137. StringSource(message, true, new Redirector(verifierFilter));
  138. }
  139. void EncryptionPairwiseConsistencyTest(const PK_Encryptor &encryptor, const PK_Decryptor &decryptor)
  140. {
  141. try
  142. {
  143. RandomPool rng;
  144. const char *testMessage ="test message";
  145. std::string ciphertext, decrypted;
  146. StringSource(
  147. testMessage,
  148. true,
  149. new PK_EncryptorFilter(
  150. rng,
  151. encryptor,
  152. new StringSink(ciphertext)));
  153. if (ciphertext == testMessage)
  154. throw 0;
  155. StringSource(
  156. ciphertext,
  157. true,
  158. new PK_DecryptorFilter(
  159. rng,
  160. decryptor,
  161. new StringSink(decrypted)));
  162. if (decrypted != testMessage)
  163. throw 0;
  164. }
  165. catch (...)
  166. {
  167. throw SelfTestFailure(encryptor.AlgorithmName() + ": pairwise consistency test failed");
  168. }
  169. }
  170. void SignaturePairwiseConsistencyTest(const PK_Signer &signer, const PK_Verifier &verifier)
  171. {
  172. try
  173. {
  174. RandomPool rng;
  175. StringSource(
  176. "test message",
  177. true,
  178. new SignerFilter(
  179. rng,
  180. signer,
  181. new VerifierFilter(verifier, NULL, VerifierFilter::THROW_EXCEPTION),
  182. true));
  183. }
  184. catch (...)
  185. {
  186. throw SelfTestFailure(signer.AlgorithmName() + ": pairwise consistency test failed");
  187. }
  188. }
  189. template <class SCHEME>
  190. void SignaturePairwiseConsistencyTest(const char *key, SCHEME *dummy = NULL)
  191. {
  192. typename SCHEME::Signer signer(StringSource(key, true, new HexDecoder).Ref());
  193. typename SCHEME::Verifier verifier(signer);
  194. SignaturePairwiseConsistencyTest(signer, verifier);
  195. }
  196. MessageAuthenticationCode * NewIntegrityCheckingMAC()
  197. {
  198. byte key[] = {0x47, 0x1E, 0x33, 0x96, 0x65, 0xB1, 0x6A, 0xED, 0x0B, 0xF8, 0x6B, 0xFD, 0x01, 0x65, 0x05, 0xCC};
  199. return new HMAC<SHA1>(key, sizeof(key));
  200. }
  201. bool IntegrityCheckModule(const char *moduleFilename, const byte *expectedModuleMac, SecByteBlock *pActualMac, unsigned long *pMacFileLocation)
  202. {
  203. std::auto_ptr<MessageAuthenticationCode> mac(NewIntegrityCheckingMAC());
  204. unsigned int macSize = mac->DigestSize();
  205. SecByteBlock tempMac;
  206. SecByteBlock &actualMac = pActualMac ? *pActualMac : tempMac;
  207. actualMac.resize(macSize);
  208. unsigned long tempLocation;
  209. unsigned long &macFileLocation = pMacFileLocation ? *pMacFileLocation : tempLocation;
  210. macFileLocation = 0;
  211. MeterFilter verifier(new HashFilter(*mac, new ArraySink(actualMac, actualMac.size())));
  212. // MeterFilter verifier(new FileSink("c:\\dt.tmp"));
  213. std::ifstream moduleStream;
  214. #ifdef CRYPTOPP_WIN32_AVAILABLE
  215. HMODULE h;
  216. {
  217. char moduleFilenameBuf[MAX_PATH] = "";
  218. if (moduleFilename == NULL)
  219. {
  220. #if (_MSC_VER >= 1400 && !defined(_STLPORT_VERSION)) // ifstream doesn't support wide filename on other compilers
  221. wchar_t wideModuleFilename[MAX_PATH];
  222. if (GetModuleFileNameW(s_hModule, wideModuleFilename, MAX_PATH) > 0)
  223. {
  224. moduleStream.open(wideModuleFilename, std::ios::in | std::ios::binary);
  225. h = GetModuleHandleW(wideModuleFilename);
  226. }
  227. else
  228. #endif
  229. {
  230. GetModuleFileNameA(s_hModule, moduleFilenameBuf, MAX_PATH);
  231. moduleFilename = moduleFilenameBuf;
  232. }
  233. }
  234. #endif
  235. if (moduleFilename != NULL)
  236. {
  237. moduleStream.open(moduleFilename, std::ios::in | std::ios::binary);
  238. #ifdef CRYPTOPP_WIN32_AVAILABLE
  239. h = GetModuleHandleA(moduleFilename);
  240. moduleFilename = NULL;
  241. }
  242. #endif
  243. }
  244. if (!moduleStream)
  245. {
  246. #ifdef CRYPTOPP_WIN32_AVAILABLE
  247. OutputDebugString("Crypto++ DLL integrity check failed. Cannot open file for reading.");
  248. #endif
  249. return false;
  250. }
  251. FileStore file(moduleStream);
  252. #ifdef CRYPTOPP_WIN32_AVAILABLE
  253. // try to hash from memory first
  254. const byte *memBase = (const byte *)h;
  255. const IMAGE_DOS_HEADER *ph = (IMAGE_DOS_HEADER *)memBase;
  256. const IMAGE_NT_HEADERS *phnt = (IMAGE_NT_HEADERS *)(memBase + ph->e_lfanew);
  257. const IMAGE_SECTION_HEADER *phs = IMAGE_FIRST_SECTION(phnt);
  258. DWORD nSections = phnt->FileHeader.NumberOfSections;
  259. size_t currentFilePos = 0;
  260. size_t checksumPos = (byte *)&phnt->OptionalHeader.CheckSum - memBase;
  261. size_t checksumSize = sizeof(phnt->OptionalHeader.CheckSum);
  262. size_t certificateTableDirectoryPos = (byte *)&phnt->OptionalHeader.DataDirectory[IMAGE_DIRECTORY_ENTRY_SECURITY] - memBase;
  263. size_t certificateTableDirectorySize = sizeof(phnt->OptionalHeader.DataDirectory[IMAGE_DIRECTORY_ENTRY_SECURITY]);
  264. size_t certificateTablePos = phnt->OptionalHeader.DataDirectory[IMAGE_DIRECTORY_ENTRY_SECURITY].VirtualAddress;
  265. size_t certificateTableSize = phnt->OptionalHeader.DataDirectory[IMAGE_DIRECTORY_ENTRY_SECURITY].Size;
  266. verifier.AddRangeToSkip(0, checksumPos, checksumSize);
  267. verifier.AddRangeToSkip(0, certificateTableDirectoryPos, certificateTableDirectorySize);
  268. verifier.AddRangeToSkip(0, certificateTablePos, certificateTableSize);
  269. while (nSections--)
  270. {
  271. switch (phs->Characteristics)
  272. {
  273. default:
  274. break;
  275. case IMAGE_SCN_CNT_CODE | IMAGE_SCN_MEM_EXECUTE | IMAGE_SCN_MEM_READ:
  276. case IMAGE_SCN_CNT_INITIALIZED_DATA | IMAGE_SCN_MEM_READ:
  277. unsigned int sectionSize = STDMIN(phs->SizeOfRawData, phs->Misc.VirtualSize);
  278. const byte *sectionMemStart = memBase + phs->VirtualAddress;
  279. unsigned int sectionFileStart = phs->PointerToRawData;
  280. size_t subSectionStart = 0, nextSubSectionStart;
  281. do
  282. {
  283. const byte *subSectionMemStart = sectionMemStart + subSectionStart;
  284. size_t subSectionFileStart = sectionFileStart + subSectionStart;
  285. size_t subSectionSize = sectionSize - subSectionStart;
  286. nextSubSectionStart = 0;
  287. unsigned int entriesToReadFromDisk[] = {IMAGE_DIRECTORY_ENTRY_IMPORT, IMAGE_DIRECTORY_ENTRY_IAT};
  288. for (unsigned int i=0; i<sizeof(entriesToReadFromDisk)/sizeof(entriesToReadFromDisk[0]); i++)
  289. {
  290. const IMAGE_DATA_DIRECTORY &entry = phnt->OptionalHeader.DataDirectory[entriesToReadFromDisk[i]];
  291. const byte *entryMemStart = memBase + entry.VirtualAddress;
  292. if (subSectionMemStart <= entryMemStart && entryMemStart < subSectionMemStart + subSectionSize)
  293. {
  294. subSectionSize = entryMemStart - subSectionMemStart;
  295. nextSubSectionStart = entryMemStart - sectionMemStart + entry.Size;
  296. }
  297. }
  298. #if defined(_MSC_VER) && _MSC_VER >= 1400
  299. // first byte of _CRT_DEBUGGER_HOOK gets modified in memory by the debugger invisibly, so read it from file
  300. if (IsDebuggerPresent())
  301. {
  302. if (subSectionMemStart <= (byte *)&_CRT_DEBUGGER_HOOK && (byte *)&_CRT_DEBUGGER_HOOK < subSectionMemStart + subSectionSize)
  303. {
  304. subSectionSize = (byte *)&_CRT_DEBUGGER_HOOK - subSectionMemStart;
  305. nextSubSectionStart = (byte *)&_CRT_DEBUGGER_HOOK - sectionMemStart + 1;
  306. }
  307. }
  308. #endif
  309. if (subSectionMemStart <= expectedModuleMac && expectedModuleMac < subSectionMemStart + subSectionSize)
  310. {
  311. // found stored MAC
  312. macFileLocation = (unsigned long)(subSectionFileStart + (expectedModuleMac - subSectionMemStart));
  313. verifier.AddRangeToSkip(0, macFileLocation, macSize);
  314. }
  315. file.TransferTo(verifier, subSectionFileStart - currentFilePos);
  316. verifier.Put(subSectionMemStart, subSectionSize);
  317. file.Skip(subSectionSize);
  318. currentFilePos = subSectionFileStart + subSectionSize;
  319. subSectionStart = nextSubSectionStart;
  320. } while (nextSubSectionStart != 0);
  321. }
  322. phs++;
  323. }
  324. #endif
  325. file.TransferAllTo(verifier);
  326. #ifdef CRYPTOPP_WIN32_AVAILABLE
  327. // if that fails (could be caused by debug breakpoints or DLL base relocation modifying image in memory),
  328. // hash from disk instead
  329. if (!VerifyBufsEqual(expectedModuleMac, actualMac, macSize))
  330. {
  331. OutputDebugString("In memory integrity check failed. This may be caused by debug breakpoints or DLL relocation.\n");
  332. moduleStream.clear();
  333. moduleStream.seekg(0);
  334. verifier.Initialize(MakeParameters(Name::OutputBuffer(), ByteArrayParameter(actualMac, (unsigned int)actualMac.size())));
  335. // verifier.Initialize(MakeParameters(Name::OutputFileName(), (const char *)"c:\\dt2.tmp"));
  336. verifier.AddRangeToSkip(0, checksumPos, checksumSize);
  337. verifier.AddRangeToSkip(0, certificateTableDirectoryPos, certificateTableDirectorySize);
  338. verifier.AddRangeToSkip(0, certificateTablePos, certificateTableSize);
  339. verifier.AddRangeToSkip(0, macFileLocation, macSize);
  340. FileStore(moduleStream).TransferAllTo(verifier);
  341. }
  342. #endif
  343. if (VerifyBufsEqual(expectedModuleMac, actualMac, macSize))
  344. return true;
  345. #ifdef CRYPTOPP_WIN32_AVAILABLE
  346. std::string hexMac;
  347. HexEncoder(new StringSink(hexMac)).PutMessageEnd(actualMac, actualMac.size());
  348. OutputDebugString((("Crypto++ DLL integrity check failed. Actual MAC is: " + hexMac) + "\n").c_str());
  349. #endif
  350. return false;
  351. }
  352. void DoPowerUpSelfTest(const char *moduleFilename, const byte *expectedModuleMac)
  353. {
  354. g_powerUpSelfTestStatus = POWER_UP_SELF_TEST_NOT_DONE;
  355. SetPowerUpSelfTestInProgressOnThisThread(true);
  356. try
  357. {
  358. if (FIPS_140_2_ComplianceEnabled() || expectedModuleMac != NULL)
  359. {
  360. if (!IntegrityCheckModule(moduleFilename, expectedModuleMac, &g_actualMac, &g_macFileLocation))
  361. throw 0; // throw here so we break in the debugger, this will be caught right away
  362. }
  363. // algorithm tests
  364. X917RNG_KnownAnswerTest<AES>(
  365. "2b7e151628aed2a6abf7158809cf4f3c", // key
  366. "000102030405060708090a0b0c0d0e0f", // seed
  367. "00000000000000000000000000000001", // time vector
  368. "D176EDD27493B0395F4D10546232B0693DC7061C03C3A554F09CECF6F6B46D945A"); // output
  369. SymmetricEncryptionKnownAnswerTest<DES_EDE3>(
  370. "385D7189A5C3D485E1370AA5D408082B5CCCCB5E19F2D90E",
  371. "C141B5FCCD28DC8A",
  372. "6E1BD7C6120947A464A6AAB293A0F89A563D8D40D3461B68",
  373. "64EAAD4ACBB9CEAD6C7615E7C7E4792FE587D91F20C7D2F4",
  374. "6235A461AFD312973E3B4F7AA7D23E34E03371F8E8C376C9",
  375. "E26BA806A59B0330DE40CA38E77A3E494BE2B212F6DD624B",
  376. "E26BA806A59B03307DE2BCC25A08BA40A8BA335F5D604C62",
  377. "E26BA806A59B03303C62C2EFF32D3ACDD5D5F35EBCC53371");
  378. SymmetricEncryptionKnownAnswerTest<SKIPJACK>(
  379. "1555E5531C3A169B2D65",
  380. "6EC9795701F49864",
  381. "00AFA48E9621E52E8CBDA312660184EDDB1F33D9DACDA8DA",
  382. "DBEC73562EFCAEB56204EB8AE9557EBF77473FBB52D17CD1",
  383. "0C7B0B74E21F99B8F2C8DF37879F6C044967F42A796DCA8B",
  384. "79FDDA9724E36CC2E023E9A5C717A8A8A7FDA465CADCBF63",
  385. "79FDDA9724E36CC26CACBD83C1ABC06EAF5B249BE5B1E040",
  386. "79FDDA9724E36CC211B0AEC607B95A96BCDA318440B82F49");
  387. SymmetricEncryptionKnownAnswerTest<AES>(
  388. "2b7e151628aed2a6abf7158809cf4f3c",
  389. "000102030405060708090a0b0c0d0e0f",
  390. "6bc1bee22e409f96e93d7e117393172aae2d8a571e03ac9c9eb76fac45af8e5130c81c46a35ce411e5fbc1191a0a52eff69f2445df4f9b17ad2b417be66c3710", // plaintext
  391. "3ad77bb40d7a3660a89ecaf32466ef97f5d3d58503b9699de785895a96fdbaaf43b1cd7f598ece23881b00e3ed0306887b0c785e27e8ad3f8223207104725dd4", // ecb
  392. "7649abac8119b246cee98e9b12e9197d5086cb9b507219ee95db113a917678b273bed6b8e3c1743b7116e69e222295163ff1caa1681fac09120eca307586e1a7", // cbc
  393. "3b3fd92eb72dad20333449f8e83cfb4ac8a64537a0b3a93fcde3cdad9f1ce58b26751f67a3cbb140b1808cf187a4f4dfc04b05357c5d1c0eeac4c66f9ff7f2e6", // cfb
  394. "3b3fd92eb72dad20333449f8e83cfb4a7789508d16918f03f53c52dac54ed8259740051e9c5fecf64344f7a82260edcc304c6528f659c77866a510d9c1d6ae5e", // ofb
  395. NULL);
  396. SymmetricEncryptionKnownAnswerTest<AES>(
  397. "2b7e151628aed2a6abf7158809cf4f3c",
  398. "f0f1f2f3f4f5f6f7f8f9fafbfcfdfeff",
  399. "6bc1bee22e409f96e93d7e117393172aae2d8a571e03ac9c9eb76fac45af8e5130c81c46a35ce411e5fbc1191a0a52eff69f2445df4f9b17ad2b417be66c3710",
  400. NULL,
  401. NULL,
  402. NULL,
  403. NULL,
  404. "874d6191b620e3261bef6864990db6ce9806f66b7970fdff8617187bb9fffdff5ae4df3edbd5d35e5b4f09020db03eab1e031dda2fbe03d1792170a0f3009cee"); // ctr
  405. SecureHashKnownAnswerTest<SHA1>(
  406. "abc",
  407. "A9993E364706816ABA3E25717850C26C9CD0D89D");
  408. SecureHashKnownAnswerTest<SHA224>(
  409. "abc",
  410. "23097d223405d8228642a477bda255b32aadbce4bda0b3f7e36c9da7");
  411. SecureHashKnownAnswerTest<SHA256>(
  412. "abc",
  413. "ba7816bf8f01cfea414140de5dae2223b00361a396177a9cb410ff61f20015ad");
  414. SecureHashKnownAnswerTest<SHA384>(
  415. "abc",
  416. "cb00753f45a35e8bb5a03d699ac65007272c32ab0eded1631a8b605a43ff5bed8086072ba1e7cc2358baeca134c825a7");
  417. SecureHashKnownAnswerTest<SHA512>(
  418. "abc",
  419. "ddaf35a193617abacc417349ae20413112e6fa4e89a97ea20a9eeee64b55d39a2192992a274fc1a836ba3c23a3feebbd454d4423643ce80e2a9ac94fa54ca49f");
  420. MAC_KnownAnswerTest<HMAC<SHA1> >(
  421. "303132333435363738393a3b3c3d3e3f40414243",
  422. "Sample #2",
  423. "0922d3405faa3d194f82a45830737d5cc6c75d24");
  424. const char *keyRSA1 =
  425. "30820150020100300d06092a864886f70d01010105000482013a3082013602010002400a66791dc6988168de7ab77419bb7fb0"
  426. "c001c62710270075142942e19a8d8c51d053b3e3782a1de5dc5af4ebe99468170114a1dfe67cdc9a9af55d655620bbab0203010001"
  427. "02400123c5b61ba36edb1d3679904199a89ea80c09b9122e1400c09adcf7784676d01d23356a7d44d6bd8bd50e94bfc723fa"
  428. "87d8862b75177691c11d757692df8881022033d48445c859e52340de704bcdda065fbb4058d740bd1d67d29e9c146c11cf61"
  429. "0220335e8408866b0fd38dc7002d3f972c67389a65d5d8306566d5c4f2a5aa52628b0220045ec90071525325d3d46db79695e9af"
  430. "acc4523964360e02b119baa366316241022015eb327360c7b60d12e5e2d16bdcd97981d17fba6b70db13b20b436e24eada590220"
  431. "2ca6366d72781dfa24d34a9a24cbc2ae927a9958af426563ff63fb11658a461d";
  432. const char *keyRSA2 =
  433. "30820273020100300D06092A864886F70D01010105000482025D3082025902010002818100D40AF9"
  434. "A2B713034249E5780056D70FC7DE75D76E44565AA6A6B8ED9646F3C19F9E254D72D7DE6E49DB2264"
  435. "0C1D05AB9E2A5F901D8F3FE1F7AE02CEE2ECCE54A40ABAE55A004692752E70725AEEE7CDEA67628A"
  436. "82A9239B4AB660C2BC56D9F01E90CBAAB9BF0FC8E17173CEFC5709A29391A7DDF3E0B758691AAF30"
  437. "725B292F4F020111027F18C0BA087D082C45D75D3594E0767E4820818EB35612B80CEAB8C880ACA5"
  438. "44B6876DFFEF85A576C0D45B551AFAA1FD63209CD745DF75C5A0F0B580296EA466CD0338207E4752"
  439. "FF4E7DB724D8AE18CE5CF4153BB94C27869FBB50E64F02546E4B02997A0B8623E64017CC770759C6"
  440. "695DB649EEFD829D688D441BCC4E7348F1024100EF86DD7AF3F32CDE8A9F6564E43A559A0C9F8BAD"
  441. "36CC25330548B347AC158A345631FA90F7B873C36EFFAE2F7823227A3F580B5DD18304D5932751E7"
  442. "43E9234F024100E2A039854B55688740E32A51DF4AF88613D91A371CF8DDD95D780A89D7CF2119A9"
  443. "54F1AC0F3DCDB2F6959926E6D9D37D8BC07A4C634DE6F16315BD5F0DAC340102407ECEEDB9903572"
  444. "1B76909F174BA6698DCA72953D957B22C0A871C8531EDE3A1BB52984A719BC010D1CA57A555DB83F"
  445. "6DE54CBAB932AEC652F38D497A6F3F30CF024100854F30E4FF232E6DADB2CD99926855F484255AB7"
  446. "01FBCDCB27EC426F33A7046972AA700ADBCA008763DF87440F52F4E070531AC385B55AAC1C2AE7DD"
  447. "8F9278F1024100C313F4AF9E4A9DE1253C21080CE524251560C111550772FD08690F13FBE658342E"
  448. "BD2D41C9DCB12374E871B1839E26CAE252E1AE3DAAD5F1EE1F42B4D0EE7581";
  449. SignatureKnownAnswerTest<RSASS<PKCS1v15, SHA1> >(
  450. keyRSA1,
  451. "Everyone gets Friday off.",
  452. "0610761F95FFD1B8F29DA34212947EC2AA0E358866A722F03CC3C41487ADC604A48FF54F5C6BEDB9FB7BD59F82D6E55D8F3174BA361B2214B2D74E8825E04E81");
  453. SignatureKnownAnswerTest<RSASS_ISO<SHA1> >(
  454. keyRSA2,
  455. "test",
  456. "32F6BA41C8930DE71EE67F2627172CC539EDE04267FDE03AC295E3C50311F26C3B275D3AF513AC96"
  457. "8EE493BAB7DA3A754661D1A7C4A0D1A2B7EE8B313AACD8CB8BFBC5C15EFB0EF15C86A9334A1E87AD"
  458. "291EB961B5CA0E84930429B28780816AA94F96FC2367B71E2D2E4866FA966795B147F00600E5207E"
  459. "2F189C883B37477C");
  460. SignaturePairwiseConsistencyTest<DSA>(
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
  462. SignaturePairwiseConsistencyTest<ECDSA<EC2N, SHA1> >(
  463. "302D020100301006072A8648CE3D020106052B8104000404163014020101040F0070337065E1E196980A9D00E37211");
  464. SignaturePairwiseConsistencyTest<ECDSA<ECP, SHA1> >(
  465. "3039020100301306072A8648CE3D020106082A8648CE3D030101041F301D02010104182BB8A13C8B867010BD9471D9E81FDB01ABD0538C64D6249A");
  466. SignaturePairwiseConsistencyTest<RSASS<PSS, SHA1> >(keyRSA1);
  467. }
  468. catch (...)
  469. {
  470. g_powerUpSelfTestStatus = POWER_UP_SELF_TEST_FAILED;
  471. goto done;
  472. }
  473. g_powerUpSelfTestStatus = POWER_UP_SELF_TEST_PASSED;
  474. done:
  475. SetPowerUpSelfTestInProgressOnThisThread(false);
  476. return;
  477. }
  478. #ifdef CRYPTOPP_WIN32_AVAILABLE
  479. void DoDllPowerUpSelfTest()
  480. {
  481. CryptoPP::DoPowerUpSelfTest(NULL, s_moduleMac);
  482. }
  483. #else
  484. void DoDllPowerUpSelfTest()
  485. {
  486. throw NotImplemented("DoDllPowerUpSelfTest() only available on Windows");
  487. }
  488. #endif // #ifdef CRYPTOPP_WIN32_AVAILABLE
  489. NAMESPACE_END
  490. #ifdef CRYPTOPP_WIN32_AVAILABLE
  491. // DllMain needs to be in the global namespace
  492. BOOL APIENTRY DllMain(HANDLE hModule,
  493. DWORD ul_reason_for_call,
  494. LPVOID lpReserved)
  495. {
  496. if (ul_reason_for_call == DLL_PROCESS_ATTACH)
  497. {
  498. CryptoPP::s_hModule = (HMODULE)hModule;
  499. CryptoPP::DoDllPowerUpSelfTest();
  500. }
  501. return TRUE;
  502. }
  503. #endif // #ifdef CRYPTOPP_WIN32_AVAILABLE
  504. #endif // #ifndef CRYPTOPP_IMPORTS