ua_server_binary.c 18 KB

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  1. #include <stdio.h>
  2. #include "ua_server_internal.h"
  3. #include "ua_types_encoding_binary.h"
  4. #include "ua_transport_generated.h"
  5. #include "ua_services.h"
  6. #include "ua_statuscodes.h"
  7. #include "ua_securechannel_manager.h"
  8. #include "ua_session_manager.h"
  9. #include "ua_util.h"
  10. #include "ua_nodeids.h"
  11. /** Max size of messages that are allocated on the stack */
  12. #define MAX_STACK_MESSAGE 65536
  13. static UA_StatusCode UA_ByteStringArray_deleteMembers(UA_ByteStringArray *stringarray) {
  14. if(!stringarray)
  15. return UA_STATUSCODE_BADINTERNALERROR;
  16. for(UA_UInt32 i = 0;i < stringarray->stringsSize;i++)
  17. UA_String_deleteMembers(&stringarray->strings[i]);
  18. return UA_STATUSCODE_GOOD;
  19. }
  20. static void processHEL(UA_Connection *connection, const UA_ByteString *msg, size_t *pos) {
  21. UA_TcpHelloMessage helloMessage;
  22. if(UA_TcpHelloMessage_decodeBinary(msg, pos, &helloMessage) != UA_STATUSCODE_GOOD) {
  23. connection->close(connection);
  24. return;
  25. }
  26. connection->remoteConf.maxChunkCount = helloMessage.maxChunkCount;
  27. connection->remoteConf.maxMessageSize = helloMessage.maxMessageSize;
  28. connection->remoteConf.protocolVersion = helloMessage.protocolVersion;
  29. connection->remoteConf.recvBufferSize = helloMessage.receiveBufferSize;
  30. connection->remoteConf.sendBufferSize = helloMessage.sendBufferSize;
  31. connection->state = UA_CONNECTION_ESTABLISHED;
  32. // build acknowledge response
  33. UA_TcpAcknowledgeMessage ackMessage;
  34. ackMessage.protocolVersion = connection->localConf.protocolVersion;
  35. ackMessage.receiveBufferSize = connection->localConf.recvBufferSize;
  36. ackMessage.sendBufferSize = connection->localConf.sendBufferSize;
  37. ackMessage.maxMessageSize = connection->localConf.maxMessageSize;
  38. ackMessage.maxChunkCount = connection->localConf.maxChunkCount;
  39. UA_TcpMessageHeader ackHeader;
  40. ackHeader.messageTypeAndFinal = UA_MESSAGETYPEANDFINAL_ACKF;
  41. ackHeader.messageSize = UA_TcpAcknowledgeMessage_calcSizeBinary(&ackMessage) +
  42. UA_TcpMessageHeader_calcSizeBinary(&ackHeader);
  43. // The message is on the stack. That's ok since ack is very small.
  44. UA_ByteString ack_msg = (UA_ByteString){ .length = ackHeader.messageSize,
  45. .data = UA_alloca(ackHeader.messageSize) };
  46. size_t tmpPos = 0;
  47. UA_TcpMessageHeader_encodeBinary(&ackHeader, &ack_msg, &tmpPos);
  48. UA_TcpAcknowledgeMessage_encodeBinary(&ackMessage, &ack_msg, &tmpPos);
  49. UA_ByteStringArray answer_buf = { .stringsSize = 1, .strings = &ack_msg };
  50. // the string is freed internall in the (asynchronous) write
  51. connection->write(connection, answer_buf);
  52. UA_TcpHelloMessage_deleteMembers(&helloMessage);
  53. }
  54. static void processOPN(UA_Connection *connection, UA_Server *server, const UA_ByteString *msg,
  55. size_t *pos) {
  56. if(connection->state != UA_CONNECTION_ESTABLISHED) {
  57. connection->close(connection);
  58. return;
  59. }
  60. UA_UInt32 secureChannelId;
  61. UA_UInt32_decodeBinary(msg, pos, &secureChannelId);
  62. UA_AsymmetricAlgorithmSecurityHeader asymHeader;
  63. UA_AsymmetricAlgorithmSecurityHeader_decodeBinary(msg, pos, &asymHeader);
  64. UA_SequenceHeader seqHeader;
  65. UA_SequenceHeader_decodeBinary(msg, pos, &seqHeader);
  66. UA_NodeId requestType;
  67. UA_NodeId_decodeBinary(msg, pos, &requestType);
  68. if(requestType.identifier.numeric != 446) {
  69. connection->close(connection);
  70. return;
  71. }
  72. UA_OpenSecureChannelRequest r;
  73. UA_OpenSecureChannelResponse p;
  74. UA_OpenSecureChannelRequest_decodeBinary(msg, pos, &r);
  75. UA_OpenSecureChannelResponse_init(&p);
  76. Service_OpenSecureChannel(server, connection, &r, &p);
  77. /* Response */
  78. UA_SecureConversationMessageHeader respHeader;
  79. respHeader.messageHeader.messageTypeAndFinal = UA_MESSAGETYPEANDFINAL_OPNF;
  80. respHeader.messageHeader.messageSize = 0;
  81. respHeader.secureChannelId = p.securityToken.channelId;
  82. UA_NodeId responseType = UA_NODEID_STATIC(0, UA_NS0ID_OPENSECURECHANNELRESPONSE);
  83. responseType.identifier.numeric += UA_ENCODINGOFFSET_BINARY;
  84. respHeader.messageHeader.messageSize =
  85. UA_SecureConversationMessageHeader_calcSizeBinary(&respHeader)
  86. + UA_AsymmetricAlgorithmSecurityHeader_calcSizeBinary(&asymHeader)
  87. + UA_SequenceHeader_calcSizeBinary(&seqHeader)
  88. + UA_NodeId_calcSizeBinary(&responseType)
  89. + UA_OpenSecureChannelResponse_calcSizeBinary(&p);
  90. UA_ByteString resp_msg = (UA_ByteString){ .length = respHeader.messageHeader.messageSize,
  91. .data = UA_alloca(respHeader.messageHeader.messageSize) };
  92. size_t tmpPos = 0;
  93. UA_SecureConversationMessageHeader_encodeBinary(&respHeader, &resp_msg, &tmpPos);
  94. UA_AsymmetricAlgorithmSecurityHeader_encodeBinary(&asymHeader, &resp_msg, &tmpPos); // just mirror back
  95. UA_SequenceHeader_encodeBinary(&seqHeader, &resp_msg, &tmpPos); // just mirror back
  96. UA_NodeId_encodeBinary(&responseType, &resp_msg, &tmpPos);
  97. UA_OpenSecureChannelResponse_encodeBinary(&p, &resp_msg, &tmpPos);
  98. UA_OpenSecureChannelRequest_deleteMembers(&r);
  99. UA_OpenSecureChannelResponse_deleteMembers(&p);
  100. UA_AsymmetricAlgorithmSecurityHeader_deleteMembers(&asymHeader);
  101. connection->write(connection, (UA_ByteStringArray){ .stringsSize = 1, .strings = &resp_msg });
  102. }
  103. static void init_response_header(const UA_RequestHeader *p, UA_ResponseHeader *r) {
  104. r->requestHandle = p->requestHandle;
  105. r->serviceResult = UA_STATUSCODE_GOOD;
  106. r->stringTableSize = 0;
  107. r->timestamp = UA_DateTime_now();
  108. }
  109. // if the message is small enough, we allocate it on the stack and save a malloc
  110. #define ALLOC_MESSAGE(MESSAGE, SIZE) do { \
  111. UA_UInt32 messageSize = SIZE; \
  112. if(messageSize <= MAX_STACK_MESSAGE) { \
  113. messageOnStack = UA_TRUE; \
  114. *MESSAGE = (UA_ByteString){.length = messageSize, \
  115. .data = UA_alloca(messageSize)}; \
  116. } else \
  117. UA_ByteString_newMembers(MESSAGE, messageSize); \
  118. } while(0)
  119. #define INVOKE_SERVICE(TYPE) do { \
  120. UA_##TYPE##Request p; \
  121. UA_##TYPE##Response r; \
  122. if(UA_##TYPE##Request_decodeBinary(msg, pos, &p)) \
  123. return; \
  124. UA_##TYPE##Response_init(&r); \
  125. init_response_header(&p.requestHeader, &r.responseHeader); \
  126. Service_##TYPE(server, clientSession, &p, &r); \
  127. ALLOC_MESSAGE(message, UA_##TYPE##Response_calcSizeBinary(&r)); \
  128. UA_##TYPE##Response_encodeBinary(&r, message, &sendOffset); \
  129. UA_##TYPE##Request_deleteMembers(&p); \
  130. UA_##TYPE##Response_deleteMembers(&r); \
  131. responseType = requestType.identifier.numeric + 3; \
  132. } while(0)
  133. static void processMSG(UA_Connection *connection, UA_Server *server, const UA_ByteString *msg, size_t *pos) {
  134. // 1) Read in the securechannel
  135. UA_UInt32 secureChannelId;
  136. UA_UInt32_decodeBinary(msg, pos, &secureChannelId);
  137. UA_SecureChannel *clientChannel = connection->channel;
  138. UA_Session *clientSession = UA_NULL;
  139. #ifdef EXTENSION_STATELESS
  140. UA_SecureChannel dummyChannel;
  141. UA_SecureChannel_init(&dummyChannel);
  142. if(secureChannelId == 0 || !clientChannel){
  143. clientChannel = &dummyChannel;
  144. clientSession = &anonymousSession;
  145. }
  146. #endif
  147. if(!clientSession && clientChannel)
  148. clientSession = clientChannel->session;
  149. // 2) Read the security header
  150. UA_UInt32 tokenId;
  151. UA_UInt32_decodeBinary(msg, pos, &tokenId);
  152. UA_SequenceHeader sequenceHeader;
  153. if(UA_SequenceHeader_decodeBinary(msg, pos, &sequenceHeader))
  154. return;
  155. clientChannel->sequenceNumber = sequenceHeader.sequenceNumber;
  156. clientChannel->requestId = sequenceHeader.requestId;
  157. // todo
  158. //UA_SecureChannel_checkSequenceNumber(channel,sequenceHeader.sequenceNumber);
  159. //UA_SecureChannel_checkRequestId(channel,sequenceHeader.requestId);
  160. // 3) Read the nodeid of the request
  161. UA_NodeId requestType;
  162. if(UA_NodeId_decodeBinary(msg, pos, &requestType))
  163. return;
  164. if(requestType.identifierType != UA_NODEIDTYPE_NUMERIC) {
  165. // if the nodeidtype is numeric, we do not have to free anything
  166. UA_NodeId_deleteMembers(&requestType);
  167. return;
  168. }
  169. // 4) process the request
  170. UA_ByteString responseBufs[2]; // 0->header, 1->response payload
  171. UA_UInt32 responseType;
  172. UA_ByteString *header = &responseBufs[0];
  173. UA_ByteString *message = &responseBufs[1];
  174. UA_Boolean messageOnStack = UA_FALSE;
  175. size_t sendOffset = 0;
  176. #ifdef EXTENSION_STATELESS
  177. //only some calls allow to be stateless
  178. if(clientSession == &anonymousSession) {
  179. //subtract UA_ENCODINGOFFSET_BINARY for binary encoding
  180. switch(requestType.identifier.numeric - UA_ENCODINGOFFSET_BINARY) {
  181. case UA_NS0ID_READREQUEST:
  182. INVOKE_SERVICE(Read);
  183. break;
  184. case UA_NS0ID_WRITEREQUEST:
  185. INVOKE_SERVICE(Write);
  186. break;
  187. case UA_NS0ID_BROWSEREQUEST:
  188. INVOKE_SERVICE(Browse);
  189. break;
  190. default: {
  191. printf("SL_processMessage - stateless call for an unknown or not allowed request, namespace=%d, request=%d\n",
  192. requestType.namespaceIndex, requestType.identifier.numeric);
  193. UA_RequestHeader p;
  194. UA_ResponseHeader r;
  195. if(UA_RequestHeader_decodeBinary(msg, pos, &p))
  196. return;
  197. UA_ResponseHeader_init(&r);
  198. init_response_header(&p, &r);
  199. r.serviceResult = UA_STATUSCODE_BADSERVICEUNSUPPORTED;
  200. ALLOC_MESSAGE(message, UA_ResponseHeader_calcSizeBinary(&r));
  201. UA_ResponseHeader_encodeBinary(&r, message, &sendOffset);
  202. UA_RequestHeader_deleteMembers(&p);
  203. UA_ResponseHeader_deleteMembers(&r);
  204. responseType = UA_NS0ID_RESPONSEHEADER + UA_ENCODINGOFFSET_BINARY; }
  205. break;
  206. }
  207. } else {
  208. #endif
  209. //non-stateless service calls
  210. //subtract UA_ENCODINGOFFSET_BINARY for binary encoding
  211. switch(requestType.identifier.numeric - UA_ENCODINGOFFSET_BINARY) {
  212. case UA_NS0ID_GETENDPOINTSREQUEST: {
  213. UA_GetEndpointsRequest p;
  214. UA_GetEndpointsResponse r;
  215. if(UA_GetEndpointsRequest_decodeBinary(msg, pos, &p))
  216. return;
  217. UA_GetEndpointsResponse_init(&r);
  218. init_response_header(&p.requestHeader, &r.responseHeader);
  219. Service_GetEndpoints(server, &p, &r);
  220. ALLOC_MESSAGE(message, UA_GetEndpointsResponse_calcSizeBinary(&r));
  221. UA_GetEndpointsResponse_encodeBinary(&r, message, &sendOffset);
  222. UA_GetEndpointsRequest_deleteMembers(&p);
  223. UA_GetEndpointsResponse_deleteMembers(&r);
  224. responseType = requestType.identifier.numeric + 3;
  225. break;
  226. }
  227. case UA_NS0ID_CREATESESSIONREQUEST: {
  228. UA_CreateSessionRequest p;
  229. UA_CreateSessionResponse r;
  230. if(UA_CreateSessionRequest_decodeBinary(msg, pos, &p))
  231. return;
  232. UA_CreateSessionResponse_init(&r);
  233. init_response_header(&p.requestHeader, &r.responseHeader);
  234. Service_CreateSession(server, clientChannel, &p, &r);
  235. ALLOC_MESSAGE(message, UA_CreateSessionResponse_calcSizeBinary(&r));
  236. UA_CreateSessionResponse_encodeBinary(&r, message, &sendOffset);
  237. UA_CreateSessionRequest_deleteMembers(&p);
  238. UA_CreateSessionResponse_deleteMembers(&r);
  239. responseType = requestType.identifier.numeric + 3;
  240. break;
  241. }
  242. case UA_NS0ID_ACTIVATESESSIONREQUEST: {
  243. UA_ActivateSessionRequest p;
  244. UA_ActivateSessionResponse r;
  245. if(UA_ActivateSessionRequest_decodeBinary(msg, pos, &p))
  246. return;
  247. UA_ActivateSessionResponse_init(&r);
  248. init_response_header(&p.requestHeader, &r.responseHeader);
  249. Service_ActivateSession(server, clientChannel, &p, &r);
  250. ALLOC_MESSAGE(message, UA_ActivateSessionResponse_calcSizeBinary(&r));
  251. UA_ActivateSessionResponse_encodeBinary(&r, message, &sendOffset);
  252. UA_ActivateSessionRequest_deleteMembers(&p);
  253. UA_ActivateSessionResponse_deleteMembers(&r);
  254. responseType = requestType.identifier.numeric + 3;
  255. break;
  256. }
  257. case UA_NS0ID_CLOSESESSIONREQUEST: {
  258. UA_CloseSessionRequest p;
  259. UA_CloseSessionResponse r;
  260. if(UA_CloseSessionRequest_decodeBinary(msg, pos, &p))
  261. return;
  262. UA_CloseSessionResponse_init(&r);
  263. init_response_header(&p.requestHeader, &r.responseHeader);
  264. Service_CloseSession(server, &p, &r);
  265. ALLOC_MESSAGE(message, UA_CloseSessionResponse_calcSizeBinary(&r));
  266. UA_CloseSessionResponse_encodeBinary(&r, message, &sendOffset);
  267. UA_CloseSessionRequest_deleteMembers(&p);
  268. UA_CloseSessionResponse_deleteMembers(&r);
  269. responseType = requestType.identifier.numeric + 3;
  270. break;
  271. }
  272. case UA_NS0ID_READREQUEST:
  273. INVOKE_SERVICE(Read);
  274. break;
  275. case UA_NS0ID_WRITEREQUEST:
  276. INVOKE_SERVICE(Write);
  277. break;
  278. case UA_NS0ID_BROWSEREQUEST:
  279. INVOKE_SERVICE(Browse);
  280. break;
  281. case UA_NS0ID_ADDREFERENCESREQUEST:
  282. INVOKE_SERVICE(AddReferences);
  283. break;
  284. case UA_NS0ID_TRANSLATEBROWSEPATHSTONODEIDSREQUEST:
  285. INVOKE_SERVICE(TranslateBrowsePathsToNodeIds);
  286. break;
  287. default: {
  288. printf("SL_processMessage - unknown request, namespace=%d, request=%d\n",
  289. requestType.namespaceIndex, requestType.identifier.numeric);
  290. UA_RequestHeader p;
  291. UA_ResponseHeader r;
  292. if(UA_RequestHeader_decodeBinary(msg, pos, &p))
  293. return;
  294. UA_ResponseHeader_init(&r);
  295. init_response_header(&p, &r);
  296. r.serviceResult = UA_STATUSCODE_BADSERVICEUNSUPPORTED;
  297. ALLOC_MESSAGE(message, UA_ResponseHeader_calcSizeBinary(&r));
  298. UA_ResponseHeader_encodeBinary(&r, message, &sendOffset);
  299. UA_RequestHeader_deleteMembers(&p);
  300. UA_ResponseHeader_deleteMembers(&r);
  301. responseType = UA_NS0ID_RESPONSEHEADER + UA_ENCODINGOFFSET_BINARY;
  302. }
  303. break;
  304. }
  305. #ifdef EXTENSION_STATELESS
  306. }
  307. #endif
  308. // 5) Build the header
  309. UA_SecureConversationMessageHeader respHeader;
  310. respHeader.messageHeader.messageTypeAndFinal = UA_MESSAGETYPEANDFINAL_MSGF;
  311. respHeader.messageHeader.messageSize = 0;
  312. respHeader.secureChannelId = clientChannel->securityToken.channelId;
  313. UA_SymmetricAlgorithmSecurityHeader symSecHeader;
  314. symSecHeader.tokenId = clientChannel->securityToken.tokenId;
  315. UA_SequenceHeader seqHeader;
  316. seqHeader.sequenceNumber = clientChannel->sequenceNumber;
  317. seqHeader.requestId = clientChannel->requestId;
  318. UA_NodeId response_nodeid = { .namespaceIndex = 0, .identifierType = UA_NODEIDTYPE_NUMERIC,
  319. .identifier.numeric = responseType };
  320. UA_UInt32 headerSize =
  321. UA_SecureConversationMessageHeader_calcSizeBinary(&respHeader)
  322. + UA_SymmetricAlgorithmSecurityHeader_calcSizeBinary(&symSecHeader)
  323. + UA_SequenceHeader_calcSizeBinary(&seqHeader)
  324. + UA_NodeId_calcSizeBinary(&response_nodeid);
  325. *header = (UA_ByteString){ .length = headerSize, .data = UA_alloca(headerSize) };
  326. respHeader.messageHeader.messageSize = header->length + message->length;
  327. size_t rpos = 0;
  328. UA_SecureConversationMessageHeader_encodeBinary(&respHeader, header, &rpos);
  329. UA_SymmetricAlgorithmSecurityHeader_encodeBinary(&symSecHeader, header, &rpos);
  330. UA_SequenceHeader_encodeBinary(&seqHeader, header, &rpos);
  331. UA_NodeId_encodeBinary(&response_nodeid, header, &rpos);
  332. // todo: sign & encrypt
  333. // 6) Send it over the wire.
  334. UA_ByteStringArray responseBufArray;
  335. responseBufArray.strings = responseBufs;
  336. responseBufArray.stringsSize = 2;
  337. connection->write(connection, responseBufArray);
  338. if(!messageOnStack)
  339. UA_free(message->data);
  340. }
  341. static void processCLO(UA_Connection *connection, UA_Server *server, const UA_ByteString *msg,
  342. size_t *pos) {
  343. UA_UInt32 secureChannelId;
  344. UA_UInt32_decodeBinary(msg, pos, &secureChannelId);
  345. if(!connection->channel || connection->channel->securityToken.channelId != secureChannelId)
  346. return;
  347. Service_CloseSecureChannel(server, secureChannelId);
  348. }
  349. void UA_Server_processBinaryMessage(UA_Server *server, UA_Connection *connection, const UA_ByteString *msg) {
  350. size_t pos = 0;
  351. UA_TcpMessageHeader tcpMessageHeader;
  352. do {
  353. if(UA_TcpMessageHeader_decodeBinary(msg, &pos, &tcpMessageHeader) != UA_STATUSCODE_GOOD) {
  354. printf("ERROR: decoding of header failed \n");
  355. connection->close(connection);
  356. break;
  357. }
  358. size_t targetpos = pos - 8 + tcpMessageHeader.messageSize;
  359. switch(tcpMessageHeader.messageTypeAndFinal & 0xffffff) {
  360. case UA_MESSAGETYPEANDFINAL_HELF & 0xffffff:
  361. processHEL(connection, msg, &pos);
  362. break;
  363. case UA_MESSAGETYPEANDFINAL_OPNF & 0xffffff:
  364. processOPN(connection, server, msg, &pos);
  365. break;
  366. case UA_MESSAGETYPEANDFINAL_MSGF & 0xffffff:
  367. #ifndef EXTENSION_STATELESS
  368. if(connection->state == UA_CONNECTION_ESTABLISHED && connection->channel != UA_NULL)
  369. processMSG(connection, server, msg, &pos);
  370. else
  371. connection->close(connection);
  372. #else
  373. processMSG(connection, server, msg, &pos);
  374. #endif
  375. break;
  376. case UA_MESSAGETYPEANDFINAL_CLOF & 0xffffff:
  377. processCLO(connection, server, msg, &pos);
  378. connection->close(connection);
  379. return;
  380. }
  381. UA_TcpMessageHeader_deleteMembers(&tcpMessageHeader);
  382. if(pos != targetpos) {
  383. printf("The message size was not as announced or the message could not be processed, skipping to the end of the message.\n");
  384. pos = targetpos;
  385. }
  386. } while(msg->length > (UA_Int32)pos);
  387. }