opcua_secureLayer.c 17 KB

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  1. #include <stdio.h>
  2. #include <memory.h> // memcpy
  3. #include "opcua.h"
  4. #include "opcua_transportLayer.h"
  5. #include "opcua_secureLayer.h"
  6. #include "UA_stackInternalTypes.h"
  7. #define SIZE_SECURECHANNEL_HEADER 12
  8. #define SIZE_SEQHEADER_HEADER 8
  9. UA_Int32 SL_send(UA_SL_Channel* channel, UA_ByteString const * responseMessage, UA_Int32 type) {
  10. UA_UInt32 sequenceNumber;
  11. UA_UInt32 requestId;
  12. UA_Int32 pos;
  13. UA_ByteString responsePacket;
  14. UA_Int32 packetSize;
  15. UA_Int32 sizePadding;
  16. UA_Int32 sizeSignature;
  17. // FIXME: this is a to dumb method to determine asymmetric algorithm setting
  18. UA_Int32 isAsym = (type == 449);
  19. pos = 0;
  20. //sequence header
  21. sequenceNumber = channel->sequenceHeader.sequenceNumber;
  22. requestId = channel->sequenceHeader.requestId;
  23. sizePadding = 0;
  24. sizeSignature = 0;
  25. packetSize = SIZE_SECURECHANNEL_HEADER + SIZE_SEQHEADER_HEADER
  26. + (isAsym ?
  27. UA_AsymmetricAlgorithmSecurityHeader_calcSize(
  28. &(channel->localAsymAlgSettings)) :
  29. UA_SymmetricAlgorithmSecurityHeader_calcSize(
  30. &(channel->securityToken.tokenId)))
  31. + responseMessage->length + sizePadding + sizeSignature;
  32. //get memory for response
  33. UA_alloc((void**)&(responsePacket.data), packetSize);
  34. responsePacket.length = packetSize;
  35. /*---encode Secure Conversation Message Header ---*/
  36. if (isAsym) {
  37. //encode MessageType - OPN message
  38. responsePacket.data[0] = 'O';
  39. responsePacket.data[1] = 'P';
  40. responsePacket.data[2] = 'N';
  41. } else {
  42. //encode MessageType - MSG message
  43. responsePacket.data[0] = 'M';
  44. responsePacket.data[1] = 'S';
  45. responsePacket.data[2] = 'G';
  46. }
  47. pos += 3;
  48. responsePacket.data[3] = 'F';
  49. pos += 1;
  50. UA_Int32_encode(&packetSize, &pos, responsePacket.data);
  51. UA_UInt32_encode(&(channel->securityToken.secureChannelId),
  52. &pos, responsePacket.data);
  53. /*---encode Algorithm Security Header ---*/
  54. if (isAsym) {
  55. UA_AsymmetricAlgorithmSecurityHeader_encode(
  56. &(channel->localAsymAlgSettings), &pos,
  57. responsePacket.data);
  58. } else {
  59. UA_SymmetricAlgorithmSecurityHeader_encode(
  60. &(channel->securityToken.tokenId), &pos,
  61. responsePacket.data);
  62. }
  63. /*---encode Sequence Header ---*/
  64. UA_UInt32_encode(&sequenceNumber, &pos, responsePacket.data);
  65. UA_UInt32_encode(&requestId, &pos, responsePacket.data);
  66. /*---add encoded Message ---*/
  67. UA_memcpy(&(responsePacket.data[pos]), responseMessage->data,
  68. responseMessage->length);
  69. /* sign Data*/
  70. /* encrypt Data*/
  71. /* send Data */
  72. TL_send(channel->tlConnection, &responsePacket);
  73. UA_ByteString_deleteMembers(&responsePacket);
  74. return UA_SUCCESS;
  75. }
  76. UA_Int32 SL_check(UA_SL_Channel* channel, UA_ByteString* msg) {
  77. return UA_NO_ERROR;
  78. }
  79. UA_Int32 SL_createSecurityToken(UA_SL_Channel* channel, UA_Int32 lifeTime) {
  80. return UA_NO_ERROR;
  81. }
  82. #define START_HANDLER(TYPE) \
  83. UA_Int32 UA_SL_handle##TYPE##Request(UA_SL_Channel *channel, void const* request, void* response) { \
  84. UA_Int32 retval = UA_SUCCESS; \
  85. printf("UA_SL_handle%sRequest\n",#TYPE ); \
  86. UA_##TYPE##Request* p = (UA_##TYPE##Request*) request; \
  87. UA_##TYPE##Response* r = (UA_##TYPE##Response*) response; \
  88. #define END_HANDLER \
  89. return retval; \
  90. } \
  91. START_HANDLER(GetEndpoints)
  92. UA_String_printx("endpointUrl=", &(p->endpointUrl));
  93. r->endpointsSize = 1;
  94. UA_Array_new((void**) &(r->endpoints),r->endpointsSize,UA_ENDPOINTDESCRIPTION);
  95. UA_String_copy(&(channel->tlConnection->localEndpointUrl),&(r->endpoints[0]->endpointUrl));
  96. UA_String_copycstring("http://open62541.info/applications/4711",&(r->endpoints[0]->server.applicationUri));
  97. UA_String_copycstring("http://open62541.info/product/release",&(r->endpoints[0]->server.productUri));
  98. // FIXME: This should be a feature of the application
  99. UA_LocalizedText_copycstring("The open62541 application",&(r->endpoints[0]->server.applicationName));
  100. // FIXME: This should be a feature of the application and an enum
  101. r->endpoints[0]->server.applicationType = 0; // Server
  102. // all the other strings are empty by initialization
  103. END_HANDLER
  104. START_HANDLER(CreateSession)
  105. UA_String_printf("CreateSession Service - endpointUrl=", &(p->endpointUrl));
  106. // FIXME: create session
  107. r->sessionId.encodingByte = UA_NODEIDTYPE_FOURBYTE;
  108. r->sessionId.namespace = 1;
  109. r->sessionId.identifier.numeric = 666;
  110. END_HANDLER
  111. START_HANDLER(ActivateSession)
  112. #pragma GCC diagnostic ignored "-Wunused-variable"
  113. // FIXME: activate session
  114. END_HANDLER
  115. START_HANDLER(CloseSession)
  116. #pragma GCC diagnostic ignored "-Wunused-variable"
  117. // FIXME: close session
  118. END_HANDLER
  119. START_HANDLER(Browse)
  120. #pragma GCC diagnostic ignored "-Wunused-variable"
  121. UA_NodeId_printf("BrowseService - view=",&(p->view.viewId));
  122. UA_Int32 i = 0;
  123. for (i=0;i<p->nodesToBrowseSize;i++) {
  124. UA_NodeId_printf("BrowseService - nodesToBrowse=", &(p->nodesToBrowse[i]->nodeId));
  125. }
  126. END_HANDLER
  127. START_HANDLER(Read)
  128. #pragma GCC diagnostic ignored "-Wunused-variable"
  129. UA_Int32 i = 0;
  130. for (i=0;i<p->nodesToReadSize;i++) {
  131. UA_NodeId_printf("ReadService - nodesToRed=", &(p->nodesToRead[i]->nodeId));
  132. }
  133. END_HANDLER
  134. START_HANDLER(CreateSubscription)
  135. // FIXME: Subscription
  136. #pragma GCC diagnostic ignored "-Wunused-variable"
  137. END_HANDLER
  138. START_HANDLER(CreateMonitoredItems)
  139. // FIXME: Subscription
  140. #pragma GCC diagnostic ignored "-Wunused-variable"
  141. END_HANDLER
  142. START_HANDLER(SetPublishingMode)
  143. // FIXME: Subscription
  144. #pragma GCC diagnostic ignored "-Wunused-variable"
  145. END_HANDLER
  146. START_HANDLER(Publish)
  147. // FIXME: Subscription
  148. #pragma GCC diagnostic ignored "-Wunused-variable"
  149. END_HANDLER
  150. UA_Int32 UA_SL_handleCloseSecureChannelRequest(UA_SL_Channel *channel, void const * request, void* response) {
  151. UA_Int32 retval = UA_SUCCESS;
  152. // 62451 Part 6 Chapter 7.1.4 - The server does not send a CloseSecureChannel response
  153. channel->connectionState = connectionState_CLOSE;
  154. return retval;
  155. }
  156. START_HANDLER(OpenSecureChannel)
  157. if (p->clientProtocolVersion != channel->tlConnection->remoteConf.protocolVersion) {
  158. printf("SL_processMessage - error protocol version \n");
  159. //TODO ERROR_Bad_ProtocolVersionUnsupported
  160. }
  161. switch (p->requestType) {
  162. case UA_SECURITYTOKEN_ISSUE:
  163. if (channel->connectionState == connectionState_ESTABLISHED) {
  164. printf("SL_processMessage - multiple security token request");
  165. //TODO return ERROR
  166. retval = UA_ERROR;
  167. break;
  168. }
  169. printf("SL_processMessage - TODO: create new token for a new SecureChannel\n");
  170. // SL_createNewToken(connection);
  171. break;
  172. case UA_SECURITYTOKEN_RENEW:
  173. if (channel->connectionState == connectionState_CLOSED) {
  174. printf("SL_processMessage - renew token request received, but no secureChannel was established before");
  175. //TODO return ERROR
  176. retval = UA_ERROR;
  177. break;
  178. }
  179. printf("TODO: create new token for an existing SecureChannel\n");
  180. break;
  181. }
  182. switch (p->securityMode) {
  183. case UA_SECURITYMODE_INVALID:
  184. channel->remoteNonce.data = NULL;
  185. channel->remoteNonce.length = -1;
  186. printf("SL_processMessage - client demands no security \n");
  187. break;
  188. case UA_SECURITYMODE_SIGN:
  189. printf("SL_processMessage - client demands signed \n");
  190. //TODO check if senderCertificate and ReceiverCertificateThumbprint are present
  191. break;
  192. case UA_SECURITYMODE_SIGNANDENCRYPT:
  193. printf("SL_processMessage - client demands signed & encrypted \n");
  194. //TODO check if senderCertificate and ReceiverCertificateThumbprint are present
  195. break;
  196. }
  197. channel->connectionState = connectionState_ESTABLISHED;
  198. if (p->requestHeader.returnDiagnostics != 0) {
  199. printf("SL_openSecureChannel - diagnostics demanded by the client\n");
  200. printf("SL_openSecureChannel - retrieving diagnostics not implemented!\n");
  201. //TODO fill with demanded information part 4, 7.8 - Table 123
  202. r->responseHeader.serviceDiagnostics.encodingMask = 0;
  203. } else {
  204. r->responseHeader.serviceDiagnostics.encodingMask = 0;
  205. }
  206. r->serverProtocolVersion = channel->tlConnection->localConf.protocolVersion;
  207. r->securityToken.channelId = channel->securityToken.secureChannelId;
  208. r->securityToken.tokenId = channel->securityToken.tokenId;
  209. r->securityToken.revisedLifetime = channel->securityToken.revisedLifetime;
  210. UA_ByteString_copy(&(channel->localNonce), &(r->serverNonce));
  211. END_HANDLER
  212. typedef struct T_UA_SL_handleRequestTableEntry {
  213. UA_Int32 requestNodeId;
  214. UA_Int32 requestDataTypeId;
  215. UA_Int32 responseNodeId;
  216. UA_Int32 responseDataTypeId;
  217. UA_Int32 (*handleRequest)(UA_SL_Channel*,void const*,void*);
  218. } UA_SL_handleRequestTableEntry;
  219. UA_SL_handleRequestTableEntry hrt[] = {
  220. {452, UA_CLOSESECURECHANNELREQUEST, 0, 0 , UA_SL_handleCloseSecureChannelRequest},
  221. {446, UA_OPENSECURECHANNELREQUEST , 449, UA_OPENSECURECHANNELRESPONSE , UA_SL_handleOpenSecureChannelRequest},
  222. {428, UA_GETENDPOINTSREQUEST , 431, UA_GETENDPOINTSRESPONSE , UA_SL_handleGetEndpointsRequest},
  223. {461, UA_CREATESESSIONREQUEST , 464, UA_CREATESESSIONRESPONSE , UA_SL_handleCreateSessionRequest},
  224. {467, UA_ACTIVATESESSIONREQUEST , 470, UA_ACTIVATESESSIONRESPONSE , UA_SL_handleActivateSessionRequest},
  225. {473, UA_CLOSESESSIONREQUEST , 476, UA_CLOSESESSIONRESPONSE , UA_SL_handleCloseSessionRequest},
  226. {527, UA_BROWSEREQUEST , 530, UA_BROWSERESPONSE , UA_SL_handleBrowseRequest},
  227. {631, UA_READREQUEST , 634, UA_READRESPONSE , UA_SL_handleReadRequest},
  228. {787, UA_CREATESUBSCRIPTIONREQUEST, 790, UA_CREATESUBSCRIPTIONRESPONSE, UA_SL_handleCreateSubscriptionRequest},
  229. {751, UA_CREATEMONITOREDITEMSREQUEST,754,UA_CREATEMONITOREDITEMSRESPONSE, UA_SL_handleCreateMonitoredItemsRequest},
  230. {799, UA_SETPUBLISHINGMODEREQUEST , 802, UA_SETPUBLISHINGMODERESPONSE , UA_SL_handleSetPublishingModeRequest},
  231. {826, UA_PUBLISHREQUEST , 829, UA_PUBLISHRESPONSE , UA_SL_handlePublishRequest}
  232. };
  233. UA_SL_handleRequestTableEntry* getHRTEntry(UA_Int32 methodNodeId) {
  234. UA_UInt32 i = 0;
  235. for (i=0;i< sizeof(hrt)/sizeof(UA_SL_handleRequestTableEntry);i++) {
  236. if (methodNodeId == hrt[i].requestNodeId) {
  237. return &hrt[i];
  238. }
  239. }
  240. return UA_NULL;
  241. }
  242. UA_Int32 UA_ResponseHeader_initFromRequest(UA_RequestHeader const * p, UA_ResponseHeader * r) {
  243. r->requestHandle = p->requestHandle;
  244. r->serviceResult = UA_STATUSCODE_GOOD;
  245. r->stringTableSize = 0;
  246. r->timestamp = UA_DateTime_now();
  247. return UA_SUCCESS;
  248. }
  249. /** this function manages all the generic stuff for the request-response game */
  250. UA_Int32 UA_SL_handleRequest(UA_SL_Channel *channel, UA_ByteString* msg) {
  251. UA_Int32 retval = UA_SUCCESS;
  252. UA_Int32 pos = 0;
  253. // Every Message starts with a NodeID which names the serviceRequestType
  254. UA_NodeId serviceRequestType;
  255. UA_NodeId_decode(msg->data, &pos, &serviceRequestType);
  256. UA_NodeId_printf("SL_processMessage - serviceRequestType=", &serviceRequestType);
  257. UA_SL_handleRequestTableEntry* hrte = getHRTEntry(serviceRequestType.identifier.numeric);
  258. if (hrte == UA_NULL) {
  259. printf("SL_processMessage - unknown request, namespace=%d, request=%d\n",
  260. serviceRequestType.namespace,serviceRequestType.identifier.numeric);
  261. retval = UA_ERROR;
  262. } else {
  263. void * requestObj = UA_NULL;
  264. void * responseObj = UA_NULL;
  265. UA_[hrte->requestDataTypeId].new(&requestObj);
  266. UA_[hrte->requestDataTypeId].decode(msg->data, &pos, requestObj);
  267. if (hrte->responseDataTypeId > 0) {
  268. UA_[hrte->responseDataTypeId].new(&responseObj);
  269. UA_ResponseHeader_initFromRequest((UA_RequestHeader*)requestObj, (UA_ResponseHeader*)responseObj);
  270. }
  271. if ((retval = hrte->handleRequest(channel, requestObj, responseObj)) == UA_SUCCESS) {
  272. if (hrte->responseDataTypeId > 0) {
  273. UA_NodeId responseType;
  274. responseType.encodingByte = UA_NODEIDTYPE_FOURBYTE;
  275. responseType.namespace = 0;
  276. responseType.identifier.numeric = hrte->responseNodeId;
  277. UA_ByteString response;
  278. UA_ByteString_newMembers(&response, UA_NodeId_calcSize(&responseType) + UA_[hrte->responseDataTypeId].calcSize(responseObj));
  279. UA_Int32 pos = 0;
  280. UA_NodeId_encode(&responseType, &pos, response.data);
  281. UA_[hrte->responseDataTypeId].encode(responseObj, &pos, response.data);
  282. SL_send(channel, &response, responseType.identifier.numeric);
  283. UA_NodeId_deleteMembers(&responseType);
  284. UA_ByteString_deleteMembers(&response);
  285. }
  286. } else {
  287. // FIXME: send error message
  288. }
  289. // finally
  290. retval |= UA_[hrte->requestDataTypeId].delete(requestObj);
  291. if (hrte->responseDataTypeId > 0) {
  292. UA_[hrte->responseDataTypeId].delete(responseObj);
  293. }
  294. }
  295. return retval;
  296. }
  297. // FIXME: we need to associate secure channels with the connection
  298. UA_SL_Channel slc;
  299. /* inits a connection object for secure channel layer */
  300. UA_Int32 UA_SL_Channel_init(UA_SL_Channel *channel) {
  301. UA_AsymmetricAlgorithmSecurityHeader_init(
  302. &(channel->localAsymAlgSettings));
  303. UA_ByteString_copy(&UA_ByteString_securityPoliceNone,
  304. &(channel->localAsymAlgSettings.securityPolicyUri));
  305. UA_alloc((void**)&(channel->localNonce.data),
  306. sizeof(UA_Byte));
  307. channel->localNonce.length = 1;
  308. channel->connectionState = connectionState_CLOSED;
  309. channel->sequenceHeader.requestId = 0;
  310. channel->sequenceHeader.sequenceNumber = 1;
  311. UA_String_init(&(channel->secureChannelId));
  312. channel->securityMode = UA_SECURITYMODE_INVALID;
  313. //TODO set a valid start secureChannelId number
  314. channel->securityToken.secureChannelId = 25;
  315. //TODO set a valid start TokenId
  316. channel->securityToken.tokenId = 1;
  317. return UA_SUCCESS;
  318. }
  319. UA_Int32 UA_SL_Channel_new(UA_TL_connection *connection, UA_ByteString* msg, UA_Int32* pos) {
  320. UA_Int32 retval = UA_SUCCESS;
  321. UA_SecureConversationMessageHeader secureConvHeader;
  322. DBG_VERBOSE(printf("UA_SL_Channel_new - entered\n"));
  323. // FIXME: generate new secure channel
  324. UA_SL_Channel_init(&slc);
  325. connection->secureChannel = &slc;
  326. connection->secureChannel->tlConnection = connection;
  327. UA_SecureConversationMessageHeader_decode(msg->data, pos, &secureConvHeader);
  328. // connection->secureChannel->secureChannelId = secureConvHeader.secureChannelId;
  329. UA_AsymmetricAlgorithmSecurityHeader_decode(msg->data, pos, &(connection->secureChannel->remoteAsymAlgSettings));
  330. //TODO check that the sequence number is smaller than MaxUInt32 - 1024
  331. UA_SequenceHeader_decode(msg->data, pos, &(connection->secureChannel->sequenceHeader));
  332. connection->secureChannel->securityToken.tokenId = 4711;
  333. UA_ByteString_printf("SL_receive - AAS_Header.ReceiverThumbprint=",
  334. &(connection->secureChannel->remoteAsymAlgSettings.receiverCertificateThumbprint));
  335. UA_ByteString_printf("SL_receive - AAS_Header.SecurityPolicyUri=",
  336. &(connection->secureChannel->remoteAsymAlgSettings.securityPolicyUri));
  337. UA_ByteString_printf("SL_receive - AAS_Header.SenderCertificate=",
  338. &(connection->secureChannel->remoteAsymAlgSettings.senderCertificate));
  339. printf("UA_SL_Channel_new - SequenceHeader.RequestId=%d\n",connection->secureChannel->sequenceHeader.requestId);
  340. printf("UA_SL_Channel_new - SequenceHeader.SequenceNr=%d\n",connection->secureChannel->sequenceHeader.sequenceNumber);
  341. printf("UA_SL_Channel_new - SecurityToken.tokenID=%d\n",connection->secureChannel->securityToken.tokenId);
  342. // FIXME: reject
  343. // if (secureConvHeader.secureChannelId != 0) {
  344. // UA_Int32 iTmp = UA_ByteString_compare(
  345. // &(connection->secureLayer.remoteAsymAlgSettings.senderCertificate),
  346. // &(asymAlgSecHeader.senderCertificate));
  347. // if (iTmp != UA_EQUAL) {
  348. // printf("SL_receive - UA_ERROR_BadSecureChannelUnknown \n");
  349. // //TODO return UA_ERROR_BadSecureChannelUnknown
  350. // }
  351. // } else {
  352. // //TODO invalid securechannelId
  353. // }
  354. UA_ByteString slMessage;
  355. slMessage.data = &(msg->data[*pos]);
  356. slMessage.length = msg->length - *pos;
  357. retval |= UA_SL_handleRequest(connection->secureChannel, &slMessage);
  358. return retval;
  359. }
  360. /**
  361. * process the rest of the header. TL already processed
  362. * MessageType (OPN,MSG,...), isFinal and MessageSize.
  363. * UA_SL_process cares for secureChannelId, XASHeader and sequenceHeader
  364. *
  365. * */
  366. UA_Int32 UA_SL_process(UA_SL_Channel* connection, UA_ByteString* msg, UA_Int32* pos) {
  367. DBG_VERBOSE(printf("UA_SL_process - entered \n"));
  368. UA_UInt32 secureChannelId;
  369. if (connection->connectionState == connectionState_ESTABLISHED) {
  370. UA_UInt32_decode(msg->data,pos,&secureChannelId);
  371. //FIXME: we assume SAS, need to check if AAS or SAS
  372. UA_SymmetricAlgorithmSecurityHeader symAlgSecHeader;
  373. // if (connection->securityMode == UA_MESSAGESECURITYMODE_NONE) {
  374. UA_SymmetricAlgorithmSecurityHeader_decode(msg->data, pos, &symAlgSecHeader);
  375. // } else {
  376. // // FIXME:
  377. // }
  378. printf("UA_SL_process - securityToken received=%d, expected=%d\n",secureChannelId,connection->securityToken.secureChannelId);
  379. if (secureChannelId == connection->securityToken.secureChannelId) {
  380. UA_SequenceHeader_decode(msg->data, pos, &(connection->sequenceHeader));
  381. // process message
  382. UA_ByteString slMessage;
  383. slMessage.data = &(msg->data[*pos]);
  384. slMessage.length = msg->length - *pos;
  385. UA_SL_handleRequest(&slc, &slMessage);
  386. } else {
  387. //TODO generate ERROR_Bad_SecureChannelUnkown
  388. }
  389. }
  390. return UA_SUCCESS;
  391. }