ua_transport_binary.c 5.9 KB

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  1. #include <memory.h>
  2. #include "ua_transport_binary.h"
  3. #include "ua_transport.h"
  4. #include "ua_transport_binary_secure.h"
  5. static UA_Int32 TL_check(TL_Connection* connection, UA_ByteString* msg) {
  6. if(msg->length > (UA_Int32) connection->localConf.maxMessageSize || msg->length > (UA_Int32) connection->remoteConf.maxMessageSize) {
  7. DBG_ERR(printf("TL_check - length error \n"));
  8. return UA_ERR_INCONSISTENT;
  9. }
  10. return UA_SUCCESS;
  11. }
  12. static UA_Int32 TL_handleHello(TL_Connection* connection, const UA_ByteString* msg, UA_Int32* pos) {
  13. UA_Int32 retval = UA_SUCCESS;
  14. UA_Int32 tmpPos = 0;
  15. UA_OPCUATcpHelloMessage helloMessage;
  16. if (connection->connectionState == CONNECTIONSTATE_CLOSED) {
  17. DBG_VERBOSE(printf("TL_handleHello - extracting header information \n"));
  18. UA_OPCUATcpHelloMessage_decodeBinary(msg,pos,&helloMessage);
  19. // memorize buffer info and change mode to established
  20. connection->remoteConf.protocolVersion = helloMessage.protocolVersion;
  21. connection->remoteConf.recvBufferSize = helloMessage.receiveBufferSize;
  22. connection->remoteConf.sendBufferSize = helloMessage.sendBufferSize;
  23. connection->remoteConf.maxMessageSize = helloMessage.maxMessageSize;
  24. connection->remoteConf.maxChunkCount = helloMessage.maxChunkCount;
  25. UA_String_copy(&(helloMessage.endpointUrl), &(connection->remoteEndpointUrl));
  26. UA_OPCUATcpHelloMessage_deleteMembers(&helloMessage);
  27. DBG_VERBOSE(printf("TL_handleHello - protocolVersion = %d \n",connection->remoteConf.protocolVersion));
  28. DBG_VERBOSE(printf("TL_handleHello - recvBufferSize = %d \n",connection->remoteConf.recvBufferSize));
  29. DBG_VERBOSE(printf("TL_handleHello - sendBufferSize = %d \n",connection->remoteConf.sendBufferSize));
  30. DBG_VERBOSE(printf("TL_handleHello - maxMessageSize = %d \n",connection->remoteConf.maxMessageSize));
  31. DBG_VERBOSE(printf("TL_handleHello - maxChunkCount = %d \n",connection->remoteConf.maxChunkCount));
  32. connection->connectionState = CONNECTIONSTATE_ESTABLISHED;
  33. // build acknowledge response
  34. UA_OPCUATcpAcknowledgeMessage ackMessage;
  35. ackMessage.protocolVersion = connection->localConf.protocolVersion;
  36. ackMessage.receiveBufferSize = connection->localConf.recvBufferSize;
  37. ackMessage.sendBufferSize = connection->localConf.sendBufferSize;
  38. ackMessage.maxMessageSize = connection->localConf.maxMessageSize;
  39. ackMessage.maxChunkCount = connection->localConf.maxChunkCount;
  40. UA_OPCUATcpMessageHeader ackHeader;
  41. ackHeader.messageType = UA_MESSAGETYPE_ACK;
  42. ackHeader.isFinal = 'F';
  43. // encode header and message to buffer
  44. tmpPos = 0;
  45. ackHeader.messageSize = UA_OPCUATcpAcknowledgeMessage_calcSize(&ackMessage) + UA_OPCUATcpMessageHeader_calcSize(&ackHeader);
  46. UA_ByteString *ack_msg;
  47. UA_alloc((void **)&ack_msg, sizeof(UA_ByteString));
  48. UA_ByteString_newMembers(ack_msg, ackHeader.messageSize);
  49. UA_OPCUATcpMessageHeader_encodeBinary(&ackHeader,&tmpPos,ack_msg);
  50. UA_OPCUATcpAcknowledgeMessage_encodeBinary(&ackMessage,&tmpPos,ack_msg);
  51. DBG_VERBOSE(printf("TL_handleHello - Size messageToSend = %d, pos=%d\n",ackHeader.messageSize, tmpPos));
  52. DBG_VERBOSE(UA_ByteString_printx("_handleHello - ack=", ack_msg));
  53. TL_Send(connection, (const UA_ByteString **) &ack_msg, 1);
  54. DBG_VERBOSE(printf("TL_handleHello - finished writing\n"));
  55. UA_ByteString_delete(ack_msg);
  56. } else {
  57. DBG_ERR(printf("TL_handleHello - wrong connection state \n"));
  58. retval = UA_ERROR_MULTIPLE_HEL;
  59. }
  60. return retval;
  61. }
  62. static UA_Int32 TL_handleOpen(TL_Connection* connection, const UA_ByteString* msg, UA_Int32* pos) {
  63. if (connection->connectionState == CONNECTIONSTATE_ESTABLISHED) {
  64. return SL_Channel_new(connection, msg, pos);
  65. }
  66. return UA_ERR_INVALID_VALUE;
  67. }
  68. static UA_Int32 TL_handleMsg(TL_Connection* connection, const UA_ByteString* msg, UA_Int32* pos) {
  69. SL_Channel* slc = connection->secureChannel;
  70. return SL_Process(slc,msg,pos);
  71. }
  72. static UA_Int32 TL_handleClo(TL_Connection* connection, const UA_ByteString* msg, UA_Int32* pos) {
  73. SL_Channel* slc = connection->secureChannel;
  74. connection->connectionState = CONNECTIONSTATE_CLOSE;
  75. connection->secureChannel = UA_NULL;
  76. slc->tlConnection = UA_NULL;
  77. return UA_SUCCESS;
  78. }
  79. UA_Int32 TL_Process(TL_Connection* connection, const UA_ByteString* msg) {
  80. UA_Int32 retval = UA_SUCCESS;
  81. UA_Int32 pos = 0;
  82. UA_OPCUATcpMessageHeader tcpMessageHeader;
  83. DBG_VERBOSE(printf("TL_Process - entered \n"));
  84. if ((retval = UA_OPCUATcpMessageHeader_decodeBinary(msg, &pos, &tcpMessageHeader)) == UA_SUCCESS) {
  85. printf("TL_Process - messageType=%.*s\n",3,msg->data);
  86. switch(tcpMessageHeader.messageType) {
  87. case UA_MESSAGETYPE_HEL:
  88. retval = TL_handleHello(connection, msg, &pos);
  89. break;
  90. case UA_MESSAGETYPE_OPN:
  91. retval = TL_handleOpen(connection, msg, &pos);
  92. break;
  93. case UA_MESSAGETYPE_MSG:
  94. retval = TL_handleMsg(connection, msg, &pos);
  95. break;
  96. case UA_MESSAGETYPE_CLO:
  97. retval = TL_handleClo(connection, msg, &pos);
  98. break;
  99. default: // dispatch processing to secureLayer
  100. retval = UA_ERR_INVALID_VALUE;
  101. break;
  102. }
  103. }
  104. /* if (retval != UA_SUCCESS) { */
  105. /* // FIXME: compose real error message */
  106. /* UA_ByteString errorMsg; */
  107. /* UA_ByteString *errorMsg_ptr = &errorMsg; */
  108. /* UA_ByteString_newMembers(&errorMsg,10); */
  109. /* TL_Send(connection,(const UA_ByteString **)&errorMsg_ptr, 1); */
  110. /* UA_ByteString_deleteMembers(&errorMsg); */
  111. /* } */
  112. UA_OPCUATcpMessageHeader_deleteMembers(&tcpMessageHeader);
  113. return retval;
  114. }
  115. /** respond to client request */
  116. UA_Int32 TL_Send(TL_Connection* connection, const UA_ByteString** gather_buf, UA_UInt32 gather_len) {
  117. UA_Int32 retval = UA_SUCCESS;
  118. DBG_VERBOSE(printf("TL_send - entered \n"));
  119. // if (TL_check(connection,msg,TL_CHECK_REMOTE) == UA_SUCCESS) {
  120. retval = connection->writerCallback(connection, gather_buf, gather_len);
  121. DBG_VERBOSE(printf("TL_send - exited \n"));
  122. //}
  123. /* else */
  124. /* { */
  125. /* DBG_ERR(printf("TL_send - ERROR: packet size greater than remote buffer size")); */
  126. /* retval = UA_ERROR; */
  127. /* } */
  128. return retval;
  129. }