Example #1
0
        override public void handleMessage(CANMessage a_message)
        {
            if (_queue == null)
            {
                _queue = new CANMessage[16];
                _receiveMessageIndex = 0;
                _readMessageIndex    = 0;
            }

            // add the message to a queue for later processing ...
            // the queue is a ringbuffer for CANMessage objects.
            // X objects are supported
            // we need a receive and a read pointer for this to work properly
            messageReceived = false;
            //_queue[_receiveMessageIndex] = a_message;
            _queue[_receiveMessageIndex] = new CANMessage();
            _queue[_receiveMessageIndex].setData(a_message.getData());
            _queue[_receiveMessageIndex].setID(a_message.getID());
            _queue[_receiveMessageIndex].setLength(a_message.getLength());

            _receiveMessageIndex++;
            if (_receiveMessageIndex > _queue.Length - 1)
            {
                _receiveMessageIndex = 0;                                          // make it circular
            }
            //DetermineSize();


            /*
             * lock (m_canMessage)
             * {
             *  if (a_message.getID() == m_waitMsgID)
             *  {
             *      m_canMessage = a_message;
             *      messageReceived = true;
             *  }
             * }
             * if (messageReceived)
             * {
             *  m_resetEvent.Set();
             * }*/
        }
Example #2
0
        public override void handleMessage(CANMessage a_message)
        {
            if (_queue == null)
            {
                _queue = new CANMessage[16];
                _receiveMessageIndex = 0;
                _readMessageIndex = 0;
            }

            // add the message to a queue for later processing ...
            // the queue is a ringbuffer for CANMessage objects.
            // X objects are supported
            // we need a receive and a read pointer for this to work properly
            messageReceived = false;
            //_queue[_receiveMessageIndex] = a_message;
            _queue[_receiveMessageIndex] = new CANMessage();
            _queue[_receiveMessageIndex].setData(a_message.getData());
            _queue[_receiveMessageIndex].setID(a_message.getID());
            _queue[_receiveMessageIndex].setLength(a_message.getLength());

            _receiveMessageIndex++;
            if(_receiveMessageIndex > _queue.Length - 1) _receiveMessageIndex = 0; // make it circular

            //DetermineSize();

            /*
            lock (m_canMessage)
            {
                if (a_message.getID() == m_waitMsgID)
                {
                    m_canMessage = a_message;
                    messageReceived = true;
                }
            }
            if (messageReceived)
            {
                m_resetEvent.Set();
            }*/
        }
        public override bool sendMessage(CANMessage a_message)
        {
            string sendString = "  ";


            for (uint i = 0; i < a_message.getLength(); i++) // leave out the length field, the ELM chip assigns that for us
            {
                //if (i <= 7)
                {
                    sendString += a_message.getCanData(i).ToString("X2");
                }

                /*else
                 * {
                 *  sendString += "00"; // fill with zeros
                 * }*/
            }

            sendString += "\r";
            if (m_serialPort.IsOpen)
            {
                m_serialPort.Write(sendString);
                //Console.WriteLine("TX: " + sendString);
            }

            // bitrate = 38400bps -> 3840 bytes per second
            // sending each byte will take 0.2 ms approx
            Thread.Sleep(a_message.getLength()); // sleep length ms

            //            Thread.Sleep(10);
            //receiveString = "49 01 01 00 00 00 31 \n\r49 02 02 44 34 47 50 \n\r49 02 03 30 30 52 35 \n\r49 02 04 25 42";// m_serialPort.ReadTo(">");

            /*receiveString = m_serialPort.ReadTo(">");
             * char[] chrArray = receiveString.ToCharArray();
             * byte[] reply = new byte[0xFF];
             * int insertPos = 1;
             * int index = 0;
             * string subString = "";
             * while (receiveString.Length > 4)
             * {
             *
             *  //Remove first three bytes
             *
             *  //TODO. Remove Mode and PIDs
             *  for (int i = 0; i < 3; i++)
             *  {
             *      index = receiveString.IndexOf(" ");
             *      receiveString = receiveString.Remove(0, index + 1);
             *  }
             *  //Read data for the rest of the row.
             *  for (int i = 0; i < 4; i++)
             *  {
             *      index = receiveString.IndexOf(" ");
             *      if (index == 0) //Last row not 4 bytes of data.
             *      {
             *          continue;
             *      }
             *      subString = receiveString.Substring(0, index);
             *      reply[insertPos] = (byte)Convert.ToInt16("0x" + subString, 16);
             *      insertPos++;
             *      receiveString = receiveString.Remove(0, index + 1);
             *  }
             *
             * }
             *
             * reply[0] = (byte)insertPos; //Length
             *
             * r_reply = new KWPReply(reply, a_request.getNrOfPID());
             * return RequestResult.NoError;*/
            return(true); // remove after implementation
        }
Example #4
0
        public override bool sendMessage(CANMessage a_message)
        {
            string sendString = "  ";

            for (uint i = 0; i < a_message.getLength(); i++) // leave out the length field, the ELM chip assigns that for us
            {
                //if (i <= 7)
                {
                    sendString += a_message.getCanData(i).ToString("X2");
                }
                /*else
                {
                    sendString += "00"; // fill with zeros
                }*/
            }

            sendString += "\r";
            if (m_serialPort.IsOpen)
            {

                m_serialPort.Write(sendString);
                //Console.WriteLine("TX: " + sendString);
            }

            // bitrate = 38400bps -> 3840 bytes per second
            // sending each byte will take 0.2 ms approx
            Thread.Sleep(a_message.getLength()); // sleep length ms

            //            Thread.Sleep(10);
            //receiveString = "49 01 01 00 00 00 31 \n\r49 02 02 44 34 47 50 \n\r49 02 03 30 30 52 35 \n\r49 02 04 25 42";// m_serialPort.ReadTo(">");
            /*receiveString = m_serialPort.ReadTo(">");
            char[] chrArray = receiveString.ToCharArray();
            byte[] reply = new byte[0xFF];
            int insertPos = 1;
            int index = 0;
            string subString = "";
            while (receiveString.Length > 4)
            {

                //Remove first three bytes

                //TODO. Remove Mode and PIDs
                for (int i = 0; i < 3; i++)
                {
                    index = receiveString.IndexOf(" ");
                    receiveString = receiveString.Remove(0, index + 1);
                }
                //Read data for the rest of the row.
                for (int i = 0; i < 4; i++)
                {
                    index = receiveString.IndexOf(" ");
                    if (index == 0) //Last row not 4 bytes of data.
                    {
                        continue;
                    }
                    subString = receiveString.Substring(0, index);
                    reply[insertPos] = (byte)Convert.ToInt16("0x" + subString, 16);
                    insertPos++;
                    receiveString = receiveString.Remove(0, index + 1);
                }

            }

            reply[0] = (byte)insertPos; //Length

            r_reply = new KWPReply(reply, a_request.getNrOfPID());
            return RequestResult.NoError;*/
            return true; // remove after implementation
        }
Example #5
0
 /*private void AddToCanTrace(string line)
 {
     if (m_EnableCanLog)
     {
         DateTime dtnow = DateTime.Now;
         using (StreamWriter sw = new StreamWriter(System.Windows.Forms.Application.StartupPath + "\\CanTraceCANUSBDevice.txt", true))
         {
             sw.WriteLine(dtnow.ToString("dd/MM/yyyy HH:mm:ss") + " - " + line);
         }
     }
 }*/
 /// <summary>
 /// sendMessage send a CANMessage.
 /// </summary>
 /// <param name="a_message">A CANMessage.</param>
 /// <returns>true on success, othewise false.</returns>
 public override bool sendMessage(CANMessage a_message)
 {
     LAWICEL.CANMsg msg = new LAWICEL.CANMsg();
     msg.id = a_message.getID();
     msg.len = a_message.getLength();
     msg.flags = a_message.getFlags();
     msg.flags = LAWICEL.CANMSG_EXTENDED; // Test for now
     msg.data = a_message.getData();
     int writeResult;
     //AddToCanTrace("Sending message");
     AddToCanTrace("TX: " + msg.id.ToString("X6") + " " + msg.data.ToString("X16"));
     writeResult = LAWICEL.canusb_Write(m_deviceHandle, ref msg);
     if (writeResult == LAWICEL.ERROR_CANUSB_OK)
     {
         //AddToCanTrace("Message sent successfully");
         txCount++;
         bitsPerSecond += 109;
         return true;
     }
     else
     {
         errCount++;
         switch (writeResult)
         {
             case LAWICEL.ERROR_CANUSB_COMMAND_SUBSYSTEM:
                 AddToCanTrace("Message failed to send: ERROR_CANUSB_COMMAND_SUBSYSTEM");
                 break;
             case LAWICEL.ERROR_CANUSB_INVALID_PARAM:
                 AddToCanTrace("Message failed to send: ERROR_CANUSB_INVALID_PARAM");
                 break;
             case LAWICEL.ERROR_CANUSB_NO_MESSAGE:
                 AddToCanTrace("Message failed to send: ERROR_CANUSB_NO_MESSAGE");
                 break;
             case LAWICEL.ERROR_CANUSB_NOT_OPEN:
                 AddToCanTrace("Message failed to send: ERROR_CANUSB_NOT_OPEN");
                 break;
             case LAWICEL.ERROR_CANUSB_OPEN_SUBSYSTEM:
                 AddToCanTrace("Message failed to send: ERROR_CANUSB_OPEN_SUBSYSTEM");
                 break;
             case LAWICEL.ERROR_CANUSB_TX_FIFO_FULL:
                 AddToCanTrace("Message failed to send: ERROR_CANUSB_TX_FIFO_FULL");
                 break;
             default:
                 AddToCanTrace("Message failed to send: " + writeResult.ToString());
                 break;
         }
         return false;
     }
 }
Example #6
0
        //-------------------------------------------------------------------------
        //-------------------------------------------------------------------------
        /**
        Sends a 11 bit CAN data frame.

        @param      msg         CAN message

        @return                 success (true/false)
        */
        public override bool sendMessage(CANMessage msg)
        {
            //Console.WriteLine("TX: " + msg.getID().ToString("X4") + " " + msg.getData().ToString("X16"));
            this.AddToCanTrace("Sending message: " + msg.getID().ToString("X4") + " " + msg.getData().ToString("X16") + " " + msg.getLength().ToString("X2"));

            try
            {
            Combi.caCombiAdapter.caCANFrame frame;
            frame.id = msg.getID();
            frame.length = msg.getLength();
            frame.data = msg.getData();
            frame.is_extended = 0;
            frame.is_remote = 0;

            this.combi.CAN_SendMessage(ref frame);

            this.AddToCanTrace("Message sent successfully");
            return true;
            }

            catch (Exception e)
            {
            this.AddToCanTrace("Message failed to send: " + e.Message);
            return false;
            }
        }