check_securechannel.c 27 KB

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  1. /* This Source Code Form is subject to the terms of the Mozilla Public
  2. * License, v. 2.0. If a copy of the MPL was not distributed with this
  3. * file, You can obtain one at http://mozilla.org/MPL/2.0/. */
  4. #include <stdio.h>
  5. #include <stdlib.h>
  6. #include <src_generated/ua_types_generated.h>
  7. #include <ua_types_encoding_binary.h>
  8. #include <src_generated/ua_transport_generated_encoding_binary.h>
  9. #include <src_generated/ua_transport_generated.h>
  10. #include <ua_types.h>
  11. #include <src_generated/ua_types_generated_encoding_binary.h>
  12. #include <ua_plugin_securitypolicy.h>
  13. #include <src_generated/ua_transport_generated_handling.h>
  14. #include "testing_networklayers.h"
  15. #include "testing_policy.h"
  16. #include "ua_securechannel.h"
  17. #include "check.h"
  18. #define UA_BYTESTRING_STATIC(s) {sizeof(s)-1, (UA_Byte*)(s)}
  19. // Some default testing sizes. Can be overwritten in testing functions.
  20. #define DEFAULT_SYM_ENCRYPTION_BLOCK_SIZE 2
  21. #define DEFAULT_SYM_SIGNING_KEY_LENGTH 3
  22. #define DEFAULT_SYM_ENCRYPTION_KEY_LENGTH 5
  23. #define DEFAULT_ASYM_REMOTE_SIGNATURE_SIZE 7
  24. #define DEFAULT_ASYM_LOCAL_SIGNATURE_SIZE 11
  25. #define DEFAULT_SYM_SIGNATURE_SIZE 13
  26. #define DEFAULT_ASYM_REMOTE_PLAINTEXT_BLOCKSIZE 256
  27. #define DEFAULT_ASYM_REMOTE_BLOCKSIZE 256
  28. UA_SecureChannel testChannel;
  29. UA_ByteString dummyCertificate = UA_BYTESTRING_STATIC("DUMMY CERTIFICATE DUMMY CERTIFICATE DUMMY CERTIFICATE");
  30. UA_SecurityPolicy dummyPolicy;
  31. UA_Connection testingConnection;
  32. UA_ByteString sentData;
  33. static funcs_called fCalled;
  34. static key_sizes keySizes;
  35. static void
  36. setup_secureChannel(void) {
  37. TestingPolicy(&dummyPolicy, dummyCertificate, &fCalled, &keySizes);
  38. UA_SecureChannel_init(&testChannel);
  39. UA_SecureChannel_setSecurityPolicy(&testChannel, &dummyPolicy, &dummyCertificate);
  40. testingConnection = createDummyConnection(65535, &sentData);
  41. UA_Connection_attachSecureChannel(&testingConnection, &testChannel);
  42. testChannel.connection = &testingConnection;
  43. }
  44. static void
  45. teardown_secureChannel(void) {
  46. UA_SecureChannel_deleteMembersCleanup(&testChannel);
  47. dummyPolicy.deleteMembers(&dummyPolicy);
  48. testingConnection.close(&testingConnection);
  49. }
  50. static void
  51. setup_funcs_called(void) {
  52. memset(&fCalled, 0, sizeof(struct funcs_called));
  53. }
  54. static void
  55. teardown_funcs_called(void) {
  56. memset(&fCalled, 0, sizeof(struct funcs_called));
  57. }
  58. static void
  59. setup_key_sizes(void) {
  60. memset(&keySizes, 0, sizeof(struct key_sizes));
  61. keySizes.sym_sig_keyLen = DEFAULT_SYM_SIGNING_KEY_LENGTH;
  62. keySizes.sym_enc_blockSize = DEFAULT_SYM_ENCRYPTION_BLOCK_SIZE;
  63. keySizes.sym_enc_keyLen = DEFAULT_SYM_ENCRYPTION_KEY_LENGTH;
  64. keySizes.sym_sig_size = DEFAULT_SYM_SIGNATURE_SIZE;
  65. keySizes.asym_lcl_sig_size = DEFAULT_ASYM_LOCAL_SIGNATURE_SIZE;
  66. keySizes.asym_rmt_sig_size = DEFAULT_ASYM_REMOTE_SIGNATURE_SIZE;
  67. keySizes.asym_rmt_ptext_blocksize = DEFAULT_ASYM_REMOTE_PLAINTEXT_BLOCKSIZE;
  68. keySizes.asym_rmt_blocksize = DEFAULT_ASYM_REMOTE_BLOCKSIZE;
  69. keySizes.asym_rmt_enc_key_size = 2048;
  70. keySizes.asym_lcl_enc_key_size = 1024;
  71. }
  72. static void
  73. teardown_key_sizes(void) {
  74. memset(&keySizes, 0, sizeof(struct key_sizes));
  75. }
  76. START_TEST(SecureChannel_initAndDelete)
  77. {
  78. TestingPolicy(&dummyPolicy, dummyCertificate, &fCalled, &keySizes);
  79. UA_StatusCode retval;
  80. UA_SecureChannel channel;
  81. UA_SecureChannel_init(&channel);
  82. retval = UA_SecureChannel_setSecurityPolicy(&channel, &dummyPolicy, &dummyCertificate);
  83. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected StatusCode to be good");
  84. ck_assert_msg(channel.state == UA_SECURECHANNELSTATE_FRESH, "Expected state to be fresh");
  85. ck_assert_msg(fCalled.newContext, "Expected newContext to have been called");
  86. ck_assert_msg(fCalled.makeCertificateThumbprint, "Expected makeCertificateThumbprint to have been called");
  87. ck_assert_msg(channel.securityPolicy == &dummyPolicy, "SecurityPolicy not set correctly");
  88. UA_SecureChannel_deleteMembersCleanup(&channel);
  89. ck_assert_msg(fCalled.deleteContext, "Expected deleteContext to have been called");
  90. dummyPolicy.deleteMembers(&dummyPolicy);
  91. }END_TEST
  92. START_TEST(SecureChannel_generateNewKeys)
  93. {
  94. UA_StatusCode retval = UA_SecureChannel_generateNewKeys(&testChannel);
  95. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected Statuscode to be good");
  96. ck_assert_msg(fCalled.generateKey, "Expected generateKey to have been called");
  97. ck_assert_msg(fCalled.setLocalSymEncryptingKey, "Expected setLocalSymEncryptingKey to have been called");
  98. ck_assert_msg(fCalled.setLocalSymSigningKey, "Expected setLocalSymSigningKey to have been called");
  99. ck_assert_msg(fCalled.setLocalSymIv, "Expected setLocalSymIv to have been called");
  100. ck_assert_msg(fCalled.setRemoteSymEncryptingKey, "Expected setRemoteSymEncryptingKey to have been called");
  101. ck_assert_msg(fCalled.setRemoteSymSigningKey, "Expected setRemoteSymSigningKey to have been called");
  102. ck_assert_msg(fCalled.setRemoteSymIv, "Expected setRemoteSymIv to have been called");
  103. }END_TEST
  104. START_TEST(SecureChannel_revolveTokens)
  105. {
  106. // Fake that no token was issued by setting 0
  107. testChannel.nextSecurityToken.tokenId = 0;
  108. UA_StatusCode retval = UA_SecureChannel_revolveTokens(&testChannel);
  109. ck_assert_msg(retval == UA_STATUSCODE_BADSECURECHANNELTOKENUNKNOWN,
  110. "Expected failure because tokenId 0 signifies that no token was issued");
  111. // Fake an issued token by setting an id
  112. testChannel.nextSecurityToken.tokenId = 10;
  113. retval = UA_SecureChannel_revolveTokens(&testChannel);
  114. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected function to return GOOD");
  115. ck_assert_msg(fCalled.generateKey,
  116. "Expected generateKey to be called because new keys need to be generated,"
  117. "when switching to the next token.");
  118. UA_ChannelSecurityToken testToken;
  119. UA_ChannelSecurityToken_init(&testToken);
  120. ck_assert_msg(memcmp(&testChannel.nextSecurityToken, &testToken, sizeof(UA_ChannelSecurityToken)) == 0,
  121. "Expected the next securityToken to be freshly initialized");
  122. ck_assert_msg(testChannel.securityToken.tokenId == 10, "Expected token to have been copied");
  123. }END_TEST
  124. static void
  125. createDummyResponse(UA_OpenSecureChannelResponse *response) {
  126. UA_OpenSecureChannelResponse_init(response);
  127. memset(response, 0, sizeof(UA_OpenSecureChannelResponse));
  128. }
  129. START_TEST(SecureChannel_sendAsymmetricOPNMessage_withoutConnection)
  130. {
  131. UA_OpenSecureChannelResponse dummyResponse;
  132. createDummyResponse(&dummyResponse);
  133. testChannel.securityMode = UA_MESSAGESECURITYMODE_NONE;
  134. // Remove connection to provoke error
  135. UA_Connection_detachSecureChannel(testChannel.connection);
  136. testChannel.connection = NULL;
  137. UA_StatusCode retval = UA_SecureChannel_sendAsymmetricOPNMessage(&testChannel, 42, &dummyResponse,
  138. &UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE]);
  139. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure without a connection");
  140. }END_TEST
  141. START_TEST(SecureChannel_sendAsymmetricOPNMessage_invalidParameters)
  142. {
  143. UA_OpenSecureChannelResponse dummyResponse;
  144. createDummyResponse(&dummyResponse);
  145. UA_StatusCode retval = UA_SecureChannel_sendAsymmetricOPNMessage(&testChannel, 42, NULL,
  146. &UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE]);
  147. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure");
  148. retval = UA_SecureChannel_sendAsymmetricOPNMessage(&testChannel, 42, &dummyResponse, NULL);
  149. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure");
  150. }END_TEST
  151. START_TEST(SecureChannel_sendAsymmetricOPNMessage_SecurityModeInvalid)
  152. {
  153. // Configure our channel correctly for OPN messages and setup dummy message
  154. UA_OpenSecureChannelResponse dummyResponse;
  155. createDummyResponse(&dummyResponse);
  156. testChannel.securityMode = UA_MESSAGESECURITYMODE_INVALID;
  157. UA_StatusCode retval = UA_SecureChannel_sendAsymmetricOPNMessage(&testChannel, 42, &dummyResponse,
  158. &UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE]);
  159. ck_assert_msg(retval == UA_STATUSCODE_BADSECURITYMODEREJECTED, "Expected SecurityMode rejected error");
  160. }
  161. END_TEST
  162. START_TEST(SecureChannel_sendAsymmetricOPNMessage_SecurityModeNone)
  163. {
  164. // Configure our channel correctly for OPN messages and setup dummy message
  165. UA_OpenSecureChannelResponse dummyResponse;
  166. createDummyResponse(&dummyResponse);
  167. testChannel.securityMode = UA_MESSAGESECURITYMODE_NONE;
  168. UA_StatusCode retval = UA_SecureChannel_sendAsymmetricOPNMessage(&testChannel, 42, &dummyResponse,
  169. &UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE]);
  170. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected function to succeed");
  171. ck_assert_msg(!fCalled.asym_enc, "Message encryption was called but should not have been");
  172. ck_assert_msg(!fCalled.asym_sign, "Message signing was called but should not have been");
  173. }
  174. END_TEST
  175. START_TEST(SecureChannel_sendAsymmetricOPNMessage_SecurityModeSign)
  176. {
  177. // Configure our channel correctly for OPN messages and setup dummy message
  178. UA_OpenSecureChannelResponse dummyResponse;
  179. createDummyResponse(&dummyResponse);
  180. testChannel.securityMode = UA_MESSAGESECURITYMODE_SIGN;
  181. UA_StatusCode retval = UA_SecureChannel_sendAsymmetricOPNMessage(&testChannel, 42, &dummyResponse,
  182. &UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE]);
  183. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected function to succeed");
  184. ck_assert_msg(fCalled.asym_enc, "Expected message to have been encrypted but it was not");
  185. ck_assert_msg(fCalled.asym_sign, "Expected message to have been signed but it was not");
  186. }END_TEST
  187. START_TEST(SecureChannel_sendAsymmetricOPNMessage_SecurityModeSignAndEncrypt)
  188. {
  189. // Configure our channel correctly for OPN messages and setup dummy message
  190. UA_OpenSecureChannelResponse dummyResponse;
  191. createDummyResponse(&dummyResponse);
  192. testChannel.securityMode = UA_MESSAGESECURITYMODE_SIGNANDENCRYPT;
  193. UA_StatusCode retval = UA_SecureChannel_sendAsymmetricOPNMessage(&testChannel, 42, &dummyResponse,
  194. &UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE]);
  195. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected function to succeed");
  196. ck_assert_msg(fCalled.asym_enc, "Expected message to have been encrypted but it was not");
  197. ck_assert_msg(fCalled.asym_sign, "Expected message to have been signed but it was not");
  198. }END_TEST
  199. START_TEST(SecureChannel_sendAsymmetricOPNMessage_sentDataIsValid)
  200. {
  201. UA_OpenSecureChannelResponse dummyResponse;
  202. createDummyResponse(&dummyResponse);
  203. testChannel.securityMode = UA_MESSAGESECURITYMODE_SIGNANDENCRYPT;
  204. UA_UInt32 requestId = UA_UInt32_random();
  205. UA_StatusCode retval = UA_SecureChannel_sendAsymmetricOPNMessage(&testChannel, requestId, &dummyResponse,
  206. &UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE]);
  207. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected function to succeed");
  208. size_t offset = 0;
  209. UA_SecureConversationMessageHeader header;
  210. UA_SecureConversationMessageHeader_decodeBinary(&sentData, &offset, &header);
  211. UA_AsymmetricAlgorithmSecurityHeader asymSecurityHeader;
  212. UA_AsymmetricAlgorithmSecurityHeader_decodeBinary(&sentData, &offset, &asymSecurityHeader);
  213. ck_assert_msg(UA_ByteString_equal(&dummyCertificate, &asymSecurityHeader.senderCertificate),
  214. "Expected the certificate to be equal to the one used by the secureChannel");
  215. ck_assert_msg(UA_ByteString_equal(&testChannel.securityPolicy->policyUri,
  216. &asymSecurityHeader.securityPolicyUri),
  217. "Expected securityPolicyUri to be equal to the one used by the secureChannel");
  218. UA_ByteString thumbPrint = {20, testChannel.remoteCertificateThumbprint};
  219. ck_assert_msg(UA_ByteString_equal(&thumbPrint,
  220. &asymSecurityHeader.receiverCertificateThumbprint),
  221. "Expected receiverCertificateThumbprint to be equal to the one set in the secureChannel");
  222. for(size_t i = offset; i < header.messageHeader.messageSize; ++i) {
  223. sentData.data[i] = (UA_Byte)((sentData.data[i] - 1) % (UA_BYTE_MAX + 1));
  224. }
  225. UA_SequenceHeader sequenceHeader;
  226. UA_SequenceHeader_decodeBinary(&sentData, &offset, &sequenceHeader);
  227. ck_assert_msg(sequenceHeader.requestId == requestId, "Expected requestId to be %i but was %i",
  228. requestId,
  229. sequenceHeader.requestId);
  230. UA_NodeId original = UA_NODEID_NUMERIC(0, UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE].binaryEncodingId);
  231. UA_NodeId requestTypeId;
  232. UA_NodeId_decodeBinary(&sentData, &offset, &requestTypeId);
  233. ck_assert_msg(UA_NodeId_equal(&original, &requestTypeId), "Expected nodeIds to be equal");
  234. UA_OpenSecureChannelResponse sentResponse;
  235. UA_OpenSecureChannelResponse_decodeBinary(&sentData, &offset, &sentResponse);
  236. ck_assert_msg(memcmp(&sentResponse, &dummyResponse, sizeof(UA_OpenSecureChannelResponse)) == 0,
  237. "Expected the sent response to be equal to the one supplied to the send function");
  238. UA_Byte paddingByte = sentData.data[offset];
  239. size_t paddingSize = (size_t)paddingByte;
  240. for(size_t i = 0; i <= paddingSize; ++i) {
  241. ck_assert_msg(sentData.data[offset + i] == paddingByte,
  242. "Expected padding byte %i to be %i but got value %i",
  243. i, paddingByte, sentData.data[offset + i]);
  244. }
  245. ck_assert_msg(sentData.data[offset + paddingSize + 1] == '*', "Expected first byte of signature");
  246. UA_SecureConversationMessageHeader_deleteMembers(&header);
  247. UA_AsymmetricAlgorithmSecurityHeader_deleteMembers(&asymSecurityHeader);
  248. UA_SequenceHeader_deleteMembers(&sequenceHeader);
  249. UA_OpenSecureChannelResponse_deleteMembers(&sentResponse);
  250. }
  251. END_TEST
  252. START_TEST(Securechannel_sendAsymmetricOPNMessage_extraPaddingPresentWhenKeyLargerThan2048Bits)
  253. {
  254. keySizes.asym_rmt_enc_key_size = 4096;
  255. keySizes.asym_rmt_blocksize = 4096;
  256. keySizes.asym_rmt_ptext_blocksize = 4096;
  257. UA_OpenSecureChannelResponse dummyResponse;
  258. createDummyResponse(&dummyResponse);
  259. testChannel.securityMode = UA_MESSAGESECURITYMODE_SIGNANDENCRYPT;
  260. UA_UInt32 requestId = UA_UInt32_random();
  261. UA_StatusCode retval = UA_SecureChannel_sendAsymmetricOPNMessage(&testChannel, requestId, &dummyResponse,
  262. &UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE]);
  263. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected function to succeed");
  264. size_t offset = 0;
  265. UA_SecureConversationMessageHeader header;
  266. UA_SecureConversationMessageHeader_decodeBinary(&sentData, &offset, &header);
  267. UA_AsymmetricAlgorithmSecurityHeader asymSecurityHeader;
  268. UA_AsymmetricAlgorithmSecurityHeader_decodeBinary(&sentData, &offset, &asymSecurityHeader);
  269. ck_assert_msg(UA_ByteString_equal(&dummyCertificate, &asymSecurityHeader.senderCertificate),
  270. "Expected the certificate to be equal to the one used by the secureChannel");
  271. ck_assert_msg(UA_ByteString_equal(&testChannel.securityPolicy->policyUri,
  272. &asymSecurityHeader.securityPolicyUri),
  273. "Expected securityPolicyUri to be equal to the one used by the secureChannel");
  274. UA_ByteString thumbPrint = {20, testChannel.remoteCertificateThumbprint};
  275. ck_assert_msg(UA_ByteString_equal(&thumbPrint,
  276. &asymSecurityHeader.receiverCertificateThumbprint),
  277. "Expected receiverCertificateThumbprint to be equal to the one set in the secureChannel");
  278. for(size_t i = offset; i < header.messageHeader.messageSize; ++i) {
  279. sentData.data[i] = (UA_Byte)((sentData.data[i] - 1) % (UA_BYTE_MAX + 1));
  280. }
  281. UA_SequenceHeader sequenceHeader;
  282. UA_SequenceHeader_decodeBinary(&sentData, &offset, &sequenceHeader);
  283. ck_assert_msg(sequenceHeader.requestId == requestId, "Expected requestId to be %i but was %i",
  284. requestId,
  285. sequenceHeader.requestId);
  286. UA_NodeId original = UA_NODEID_NUMERIC(0, UA_TYPES[UA_TYPES_OPENSECURECHANNELRESPONSE].binaryEncodingId);
  287. UA_NodeId requestTypeId;
  288. UA_NodeId_decodeBinary(&sentData, &offset, &requestTypeId);
  289. ck_assert_msg(UA_NodeId_equal(&original, &requestTypeId), "Expected nodeIds to be equal");
  290. UA_OpenSecureChannelResponse sentResponse;
  291. UA_OpenSecureChannelResponse_decodeBinary(&sentData, &offset, &sentResponse);
  292. ck_assert_msg(memcmp(&sentResponse, &dummyResponse, sizeof(UA_OpenSecureChannelResponse)) == 0,
  293. "Expected the sent response to be equal to the one supplied to the send function");
  294. UA_Byte paddingByte = sentData.data[offset];
  295. UA_Byte extraPaddingByte = sentData.data[sentData.length - keySizes.asym_lcl_sig_size - 1];
  296. size_t paddingSize = (size_t)paddingByte;
  297. paddingSize |= extraPaddingByte << 8;
  298. for(size_t i = 0; i <= paddingSize; ++i) {
  299. ck_assert_msg(sentData.data[offset + i] == paddingByte,
  300. "Expected padding byte %i to be %i but got value %i",
  301. i,
  302. paddingByte,
  303. sentData.data[offset + i]);
  304. }
  305. ck_assert_msg(sentData.data[offset + paddingSize + 1] == extraPaddingByte,
  306. "Expected extra padding byte to be %i but got %i",
  307. extraPaddingByte, sentData.data[offset + paddingSize + 1]);
  308. ck_assert_msg(sentData.data[offset + paddingSize + 2] == '*',
  309. "Expected first byte 42 of signature but got %i",
  310. sentData.data[offset + paddingSize + 2]);
  311. UA_SecureConversationMessageHeader_deleteMembers(&header);
  312. UA_AsymmetricAlgorithmSecurityHeader_deleteMembers(&asymSecurityHeader);
  313. UA_SequenceHeader_deleteMembers(&sequenceHeader);
  314. UA_OpenSecureChannelResponse_deleteMembers(&sentResponse);
  315. }END_TEST
  316. START_TEST(SecureChannel_sendSymmetricMessage)
  317. {
  318. // initialize dummy message
  319. UA_ReadRequest dummyMessage;
  320. UA_ReadRequest_init(&dummyMessage);
  321. UA_DataType dummyType = UA_TYPES[UA_TYPES_READREQUEST];
  322. UA_StatusCode retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_MSG,
  323. &dummyMessage, &dummyType);
  324. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected success");
  325. // TODO: expand test
  326. }
  327. END_TEST
  328. START_TEST(SecureChannel_sendSymmetricMessage_modeNone)
  329. {
  330. // initialize dummy message
  331. UA_ReadRequest dummyMessage;
  332. UA_ReadRequest_init(&dummyMessage);
  333. UA_DataType dummyType = UA_TYPES[UA_TYPES_READREQUEST];
  334. testChannel.securityMode = UA_MESSAGESECURITYMODE_NONE;
  335. UA_StatusCode retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_MSG,
  336. &dummyMessage, &dummyType);
  337. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected success");
  338. ck_assert_msg(!fCalled.sym_sign, "Expected message to not have been signed");
  339. ck_assert_msg(!fCalled.sym_enc, "Expected message to not have been encrypted");
  340. }
  341. END_TEST
  342. START_TEST(SecureChannel_sendSymmetricMessage_modeSign)
  343. {
  344. // initialize dummy message
  345. UA_ReadRequest dummyMessage;
  346. UA_ReadRequest_init(&dummyMessage);
  347. UA_DataType dummyType = UA_TYPES[UA_TYPES_READREQUEST];
  348. testChannel.securityMode = UA_MESSAGESECURITYMODE_SIGN;
  349. UA_StatusCode retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_MSG,
  350. &dummyMessage, &dummyType);
  351. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected success");
  352. ck_assert_msg(fCalled.sym_sign, "Expected message to have been signed");
  353. ck_assert_msg(!fCalled.sym_enc, "Expected message to not have been encrypted");
  354. }
  355. END_TEST
  356. START_TEST(SecureChannel_sendSymmetricMessage_modeSignAndEncrypt)
  357. {
  358. // initialize dummy message
  359. UA_ReadRequest dummyMessage;
  360. UA_ReadRequest_init(&dummyMessage);
  361. UA_DataType dummyType = UA_TYPES[UA_TYPES_READREQUEST];
  362. testChannel.securityMode = UA_MESSAGESECURITYMODE_SIGNANDENCRYPT;
  363. UA_StatusCode retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_MSG,
  364. &dummyMessage, &dummyType);
  365. ck_assert_msg(retval == UA_STATUSCODE_GOOD, "Expected success");
  366. ck_assert_msg(fCalled.sym_sign, "Expected message to have been signed");
  367. ck_assert_msg(fCalled.sym_enc, "Expected message to have been encrypted");
  368. }
  369. END_TEST
  370. START_TEST(SecureChannel_sendSymmetricMessage_invalidParameters)
  371. {
  372. // initialize dummy message
  373. UA_ReadRequest dummyMessage;
  374. UA_ReadRequest_init(&dummyMessage);
  375. UA_DataType dummyType = UA_TYPES[UA_TYPES_READREQUEST];
  376. UA_StatusCode retval = UA_SecureChannel_sendSymmetricMessage(NULL, 42, UA_MESSAGETYPE_MSG,
  377. &dummyMessage, &dummyType);
  378. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure");
  379. retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_HEL, &dummyMessage, &dummyType);
  380. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure");
  381. retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_ACK, &dummyMessage, &dummyType);
  382. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure");
  383. retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_ERR, &dummyMessage, &dummyType);
  384. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure");
  385. retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_OPN, &dummyMessage, &dummyType);
  386. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure");
  387. retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_MSG, NULL, &dummyType);
  388. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure");
  389. retval = UA_SecureChannel_sendSymmetricMessage(&testChannel, 42, UA_MESSAGETYPE_MSG, &dummyMessage, NULL);
  390. ck_assert_msg(retval != UA_STATUSCODE_GOOD, "Expected failure");
  391. }
  392. END_TEST
  393. static Suite *
  394. testSuite_SecureChannel(void) {
  395. Suite *s = suite_create("SecureChannel");
  396. TCase *tc_initAndDelete = tcase_create("Initialize and delete Securechannel");
  397. tcase_add_checked_fixture(tc_initAndDelete, setup_funcs_called, teardown_funcs_called);
  398. tcase_add_checked_fixture(tc_initAndDelete, setup_key_sizes, teardown_key_sizes);
  399. tcase_add_test(tc_initAndDelete, SecureChannel_initAndDelete);
  400. suite_add_tcase(s, tc_initAndDelete);
  401. TCase *tc_generateNewKeys = tcase_create("Test generateNewKeys function");
  402. tcase_add_checked_fixture(tc_generateNewKeys, setup_funcs_called, teardown_funcs_called);
  403. tcase_add_checked_fixture(tc_generateNewKeys, setup_key_sizes, teardown_key_sizes);
  404. tcase_add_checked_fixture(tc_generateNewKeys, setup_secureChannel, teardown_secureChannel);
  405. tcase_add_test(tc_generateNewKeys, SecureChannel_generateNewKeys);
  406. suite_add_tcase(s, tc_generateNewKeys);
  407. TCase *tc_revolveTokens = tcase_create("Test revolveTokens function");
  408. tcase_add_checked_fixture(tc_revolveTokens, setup_funcs_called, teardown_funcs_called);
  409. tcase_add_checked_fixture(tc_revolveTokens, setup_key_sizes, teardown_key_sizes);
  410. tcase_add_checked_fixture(tc_revolveTokens, setup_secureChannel, teardown_secureChannel);
  411. tcase_add_test(tc_revolveTokens, SecureChannel_revolveTokens);
  412. suite_add_tcase(s, tc_revolveTokens);
  413. TCase *tc_sendAsymmetricOPNMessage = tcase_create("Test sendAsymmetricOPNMessage function");
  414. tcase_add_checked_fixture(tc_sendAsymmetricOPNMessage, setup_funcs_called, teardown_funcs_called);
  415. tcase_add_checked_fixture(tc_sendAsymmetricOPNMessage, setup_key_sizes, teardown_key_sizes);
  416. tcase_add_checked_fixture(tc_sendAsymmetricOPNMessage, setup_secureChannel, teardown_secureChannel);
  417. tcase_add_test(tc_sendAsymmetricOPNMessage, SecureChannel_sendAsymmetricOPNMessage_withoutConnection);
  418. tcase_add_test(tc_sendAsymmetricOPNMessage, SecureChannel_sendAsymmetricOPNMessage_invalidParameters);
  419. tcase_add_test(tc_sendAsymmetricOPNMessage, SecureChannel_sendAsymmetricOPNMessage_SecurityModeInvalid);
  420. tcase_add_test(tc_sendAsymmetricOPNMessage, SecureChannel_sendAsymmetricOPNMessage_SecurityModeNone);
  421. tcase_add_test(tc_sendAsymmetricOPNMessage, SecureChannel_sendAsymmetricOPNMessage_SecurityModeSign);
  422. tcase_add_test(tc_sendAsymmetricOPNMessage, SecureChannel_sendAsymmetricOPNMessage_SecurityModeSignAndEncrypt);
  423. tcase_add_test(tc_sendAsymmetricOPNMessage, SecureChannel_sendAsymmetricOPNMessage_sentDataIsValid);
  424. tcase_add_test(tc_sendAsymmetricOPNMessage,
  425. Securechannel_sendAsymmetricOPNMessage_extraPaddingPresentWhenKeyLargerThan2048Bits);
  426. suite_add_tcase(s, tc_sendAsymmetricOPNMessage);
  427. TCase *tc_sendSymmetricMessage = tcase_create("Test sendSymmetricMessage function");
  428. tcase_add_checked_fixture(tc_sendSymmetricMessage, setup_funcs_called, teardown_funcs_called);
  429. tcase_add_checked_fixture(tc_sendSymmetricMessage, setup_key_sizes, teardown_key_sizes);
  430. tcase_add_checked_fixture(tc_sendSymmetricMessage, setup_secureChannel, teardown_secureChannel);
  431. tcase_add_test(tc_sendSymmetricMessage, SecureChannel_sendSymmetricMessage);
  432. tcase_add_test(tc_sendSymmetricMessage, SecureChannel_sendSymmetricMessage_invalidParameters);
  433. tcase_add_test(tc_sendSymmetricMessage, SecureChannel_sendSymmetricMessage_modeNone);
  434. tcase_add_test(tc_sendSymmetricMessage, SecureChannel_sendSymmetricMessage_modeSign);
  435. tcase_add_test(tc_sendSymmetricMessage, SecureChannel_sendSymmetricMessage_modeSignAndEncrypt);
  436. suite_add_tcase(s, tc_sendSymmetricMessage);
  437. return s;
  438. }
  439. int
  440. main(void) {
  441. Suite *s = testSuite_SecureChannel();
  442. SRunner *sr = srunner_create(s);
  443. srunner_set_fork_status(sr, CK_NOFORK);
  444. srunner_run_all(sr, CK_NORMAL);
  445. int number_failed = srunner_ntests_failed(sr);
  446. srunner_free(sr);
  447. return (number_failed == 0) ? EXIT_SUCCESS : EXIT_FAILURE;
  448. }