opcuaClient.c 6.2 KB

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  1. /*
  2. C ECHO client example using sockets
  3. */
  4. #include <stdio.h> //printf
  5. #include <string.h> //strlen
  6. #include <sys/socket.h> //socket
  7. #include <arpa/inet.h> //inet_addr
  8. #include <unistd.h> // for close
  9. #include <stdlib.h> // pulls in declaration of malloc, free
  10. #include "ua_transport_generated.h"
  11. #include "ua_namespace_0.h"
  12. UA_Int32 sendHello(UA_Int32 sock)
  13. {
  14. UA_ByteString *message;
  15. UA_ByteString_new(&message);
  16. UA_ByteString_newMembers(message,1000);
  17. UA_UInt32 offset = 0;
  18. UA_String endpointUrl;
  19. UA_String_copycstring("opc.tcp://134.130.125.48:16663",&endpointUrl);
  20. UA_TcpMessageHeader messageHeader;
  21. UA_TcpHelloMessage hello;
  22. messageHeader.isFinal = 'F';
  23. messageHeader.messageType = UA_MESSAGETYPE_HEL;
  24. hello.endpointUrl = endpointUrl;
  25. hello.maxChunkCount = 1;
  26. hello.maxMessageSize = 16777216;
  27. hello.protocolVersion = 0;
  28. hello.receiveBufferSize = 65536;
  29. hello.sendBufferSize = 65536;
  30. messageHeader.messageSize = UA_TcpHelloMessage_calcSizeBinary((UA_TcpHelloMessage const*) &hello) +
  31. UA_TcpMessageHeader_calcSizeBinary((UA_TcpMessageHeader const*)&messageHeader);
  32. UA_TcpMessageHeader_encodeBinary((UA_TcpMessageHeader const*) &messageHeader, message, &offset);
  33. UA_TcpHelloMessage_encodeBinary((UA_TcpHelloMessage const*) &hello, message, &offset);
  34. UA_Int32 sendret = send(sock , message->data, offset , 0);
  35. UA_ByteString_delete(message);
  36. free(endpointUrl.data);
  37. if(sendret <0)
  38. {
  39. return 1;
  40. }
  41. return 0;
  42. }
  43. int sendOpenSecureChannel(UA_Int32 sock)
  44. {
  45. UA_ByteString *message;
  46. UA_ByteString_new(&message);
  47. UA_ByteString_newMembers(message,1000);
  48. UA_UInt32 offset = 0;
  49. UA_TcpMessageHeader msghdr;
  50. msghdr.isFinal = 'F';
  51. msghdr.messageType = UA_MESSAGETYPE_OPN;
  52. msghdr.messageSize = 133;
  53. UA_TcpMessageHeader_encodeBinary(&msghdr,message,&offset);
  54. UA_UInt32 secureChannelId = 0;
  55. UA_UInt32_encodeBinary(&secureChannelId,message,&offset);
  56. UA_String securityPolicy;
  57. UA_String_copycstring("http://opcfoundation.org/UA/SecurityPolicy#None",&securityPolicy);
  58. UA_String_encodeBinary(&securityPolicy,message,&offset);
  59. UA_String senderCert;
  60. senderCert.data = UA_NULL;
  61. senderCert.length = -1;
  62. UA_String_encodeBinary(&senderCert,message,&offset);
  63. UA_String receiverCertThumb;
  64. receiverCertThumb.data = UA_NULL;
  65. receiverCertThumb.length = -1;
  66. UA_String_encodeBinary(&receiverCertThumb,message,&offset);
  67. UA_UInt32 sequenceNumber = 51;
  68. UA_UInt32_encodeBinary(&sequenceNumber,message,&offset);
  69. UA_UInt32 requestId = 1;
  70. UA_UInt32_encodeBinary(&requestId,message,&offset);
  71. UA_NodeId type;
  72. type.identifier.numeric = 446;
  73. type.identifierType = UA_NODEIDTYPE_NUMERIC;
  74. type.namespaceIndex = 0;
  75. UA_NodeId_encodeBinary(&type,message,&offset);
  76. UA_OpenSecureChannelRequest opnSecRq;
  77. UA_OpenSecureChannelRequest_init(&opnSecRq);
  78. opnSecRq.requestHeader.timestamp = UA_DateTime_now();
  79. UA_ByteString_newMembers(&opnSecRq.clientNonce,1);
  80. opnSecRq.clientNonce.data[0] = 0;
  81. opnSecRq.clientProtocolVersion = 0;
  82. opnSecRq.requestedLifetime = 30000;
  83. opnSecRq.securityMode = UA_SECURITYMODE_NONE;
  84. opnSecRq.requestType = UA_SECURITYTOKENREQUESTTYPE_ISSUE;
  85. UA_OpenSecureChannelRequest_encodeBinary(&opnSecRq,message,&offset);
  86. UA_Int32 sendret = send(sock , message->data, offset , 0);
  87. UA_ByteString_delete(message);
  88. free(securityPolicy.data);
  89. if(sendret<0)
  90. {
  91. printf("send opensecurechannel failed");
  92. return 1;
  93. }
  94. return 0;
  95. }
  96. int main(int argc , char *argv[])
  97. {
  98. int sock;
  99. struct sockaddr_in server;
  100. UA_Byte server_reply[2000];
  101. //Create socket
  102. sock = socket(AF_INET , SOCK_STREAM , 0);
  103. if (sock == -1)
  104. {
  105. printf("Could not create socket");
  106. }
  107. server.sin_addr.s_addr = inet_addr("134.130.125.48");
  108. server.sin_family = AF_INET;
  109. server.sin_port = htons( 16663 );
  110. //Connect to remote server
  111. if (connect(sock , (struct sockaddr *)&server , sizeof(server)) < 0)
  112. {
  113. perror("connect failed. Error");
  114. return 1;
  115. }
  116. sendHello(sock);
  117. int received = recv(sock , server_reply , 2000 , 0);
  118. sendOpenSecureChannel(sock);
  119. /*
  120. UA_TcpMessageHeader reqTcpHeader;
  121. UA_UInt32 reqSecureChannelId = 0;
  122. UA_UInt32 reqTokenId = 0;
  123. UA_SequenceHeader reqSequenceHeader;
  124. UA_NodeId reqRequestType;
  125. UA_ReadRequest req;
  126. UA_RequestHeader reqHeader;
  127. UA_NodeId reqHeaderAuthToken;
  128. UA_ExtensionObject reqHeaderAdditionalHeader;
  129. UA_NodeId_init(&reqRequestType);
  130. reqRequestType.identifierType = UA_NODEIDTYPE_NUMERIC;
  131. reqRequestType.identifier.numeric = 631; //read request
  132. UA_ReadRequest_init(&req);
  133. req.requestHeader = reqHeader;
  134. UA_RequestHeader_init(&(req.requestHeader));
  135. req.requestHeader.authenticationToken = reqHeaderAuthToken;
  136. UA_NodeId_init(&(req.requestHeader.authenticationToken));
  137. req.requestHeader.additionalHeader = reqHeaderAdditionalHeader;
  138. UA_ExtensionObject_init(&(req.requestHeader.additionalHeader));
  139. UA_Array_new((void **)&req.nodesToRead, 1, &UA_.types[UA_READVALUEID]);
  140. req.nodesToReadSize = 1;
  141. UA_ReadValueId_init(&(req.nodesToRead[0]));
  142. req.nodesToRead[0].attributeId = 13; //UA_ATTRIBUTEID_VALUE
  143. UA_NodeId_init(&(req.nodesToRead[0].nodeId));
  144. req.nodesToRead[0].nodeId.identifierType = UA_NODEIDTYPE_NUMERIC;
  145. req.nodesToRead[0].nodeId.identifier.numeric = 2255;
  146. UA_QualifiedName_init(&(req.nodesToRead[0].dataEncoding));
  147. messageEncodedLength = UA_TcpMessageHeader_calcSizeBinary(&reqTcpHeader) +
  148. UA_UInt32_calcSizeBinary(&reqSecureChannelId)+
  149. UA_UInt32_calcSizeBinary(&reqTokenId)+
  150. UA_SequenceHeader_calcSizeBinary(&reqSequenceHeader)+
  151. UA_NodeId_calcSizeBinary(&reqRequestType) +
  152. UA_ReadRequest_calcSizeBinary(&req);
  153. UA_TcpMessageHeader_init(&reqTcpHeader);
  154. reqTcpHeader.messageType = UA_MESSAGETYPE_MSG;
  155. reqTcpHeader.messageSize = messageEncodedLength;
  156. reqTcpHeader.isFinal = 'F';
  157. UA_TcpMessageHeader_encodeBinary(&reqTcpHeader, &message, &messagepos);
  158. UA_UInt32_encodeBinary(&reqSecureChannelId, &message, &messagepos);
  159. UA_UInt32_encodeBinary(&reqTokenId, &message, &messagepos);
  160. UA_SequenceHeader_encodeBinary(&reqSequenceHeader, &message, &messagepos);
  161. UA_NodeId_encodeBinary(&reqRequestType, &message, &messagepos);
  162. UA_ReadRequest_encodeBinary(&req, &message, &messagepos);
  163. */
  164. //Send some data
  165. //Receive a reply from the server
  166. received = recv(sock , server_reply , 2000 , 0);
  167. if(received < 0)
  168. {
  169. puts("recv failed");
  170. return 1;
  171. }
  172. for(int i=0;i<received;i++){
  173. //show only printable ascii
  174. if(server_reply[i] >= 32 && server_reply[i]<= 126)
  175. printf("%c",server_reply[i]);
  176. }
  177. printf("\n");
  178. close(sock);
  179. return 0;
  180. }